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
D1-36_00001	1158		COG4948	L-talarate/galactarate dehydratase	ATGCAAGACCTGACTCACTCGCCCTCGGCCGATGATGACCGTATCGCCTGGATTCGTGTTGCTTCGGTTTTCCTGCCGCTGGCCAATCCTATCAGTGACGCCAAAGTGCTGACCGGTCGGCAAAAGCCGATGACCGAGATCGCCATGCTGTTCGTCGAAATCCAGACCAGGGATGGCCATCATGGCCTGGGATTCAGCTATTCCAAGCGCGCCGGCGGCCCCGGGCAGTTTGCCCACGCCCGGGAACTTGCCCCTGGCCTGATAGGCGAGAATCCCAGCGATATCGCCAAGCTCTGGGACAAGCTGTGCTGGGCCGGGGCTTCGGTGGGCCGCAGCGGCCTGGCGACCCAAGCCATTGGCGCCTTCGATGTGGCGCTTTGGGACCTGAAAGCGAAGCGGGCCAATCTCTCATTGGCGCGACTGCTCGGAGCCCACCGTGATTCGGTCCAGTGTTACAACACGTCCGGCGGTTTTTTGCATACACCGCTTGAGCAATTAATGATCAATACCGACATCTCTCGAGAAAAAGGCATTGGCGGTATCAAGCTCAAGGTGGGCCAGCCGGATCAGGCGCTGGACCTGCACCGTGTCAGCACCATCCGCAAGCACCTGGGTGATGCGTTCCCGCTGATGGTCGATGCCAACCAGCAGTGGGACCGGCCCACCGCGCAACGGATGTGCCGCCAGTTGGAACAATACAACCTGGTGTGGATCGAGGAACCGCTCGATTGCTATGACGCCGAAGGTCATGCCGCCCTGGCCCAGCAATTCGACACGCCGATCGCCACTGGCGAGATGCTGACCAGCGTGGCCGAGCACTGGGAATTCATAAAACTGCGCGCCGCCGATTACCTCATGCCCGATGCACCGCGTGTCGGCGGCATCACGCCTTATCTGAAAGTCCAGGCAGCGGCTGAACAAGCGGGGCTGATGATCGCGCCACATTTTGCGATGGAGCTGCATATCCATCTAGCCGCCACCTACAGTCGCGAGCCTTGGGTCGAACATTTCGAATGGCTGGAGCCGTTATTCAACGAACGCATGGAAACCCGCGACGGAAGAATGCTGGTGCCGACCCGGCCTGGCCTTGGGCTGTCGTTGAGCGAACGTGTGGCGGGATGGACGGCGGACCAGGTTGAGATCGGGCGGCGTCCATGA	MQDLTHSPSADDDRIAWIRVASVFLPLANPISDAKVLTGRQKPMTEIAMLFVEIQTRDGHHGLGFSYSKRAGGPGQFAHARELAPGLIGENPSDIAKLWDKLCWAGASVGRSGLATQAIGAFDVALWDLKAKRANLSLARLLGAHRDSVQCYNTSGGFLHTPLEQLMINTDISREKGIGGIKLKVGQPDQALDLHRVSTIRKHLGDAFPLMVDANQQWDRPTAQRMCRQLEQYNLVWIEEPLDCYDAEGHAALAQQFDTPIATGEMLTSVAEHWEFIKLRAADYLMPDAPRVGGITPYLKVQAAAEQAGLMIAPHFAMELHIHLAATYSREPWVEHFEWLEPLFNERMETRDGRMLVPTRPGLGLSLSERVAGWTADQVEIGRRP	PGPT0018185_109	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_TALARATE_DEGRADATION,PGPT0018185-talrD_galrD-K20023	NA	NA
D1-36_00002	1521			hypothetical protein	ATGATTGAACTCATGCAACAAGGCTTCGGGGCCATACTCACACCCTACGTTTTCATCATCATCCTCCTTGGGGTGGCGGTGGGGATTGTCTTCGGTGCGGTGCCCGGGCTATCAGCCACCATGGCCATCGCGCTGTGTCTGCCACTGACTTATTCGATGGGGCCTGGCACGGGCCTGGCCCTGCTGGTCGCGCTGTTCGTCGGCGCCACCTCGGGAGGGTTGATATCGGCGATATTGCTCAACATACCGGGAACGCCGGCCTCCATTGCGACGACGTTCGATGGCTGGCCGTTGATGAAACAAGGCCACGGCGTCAAGGCCCTCGGGATTGGCGTGGTGTTCTCGTTCCTGGGCACGATTTTCAGCATTGCCGCGCTGATGTTCATCGCCCCGATCCTGGCTGATCTGGCGCTGAGCTTTGGCCCACACGAATATTTTTCCATTGCGATTTTCTCGCTGACGTTGATCGCTACGCTGTCCACCGGCTCCTTGGTCAAAGGGTTGTTTGCCGGTGCCCTGGGCTTTGCCTTCTCCACCGTGGGGATCGCCCCGGTCGAGGCCATCCGCCGTTTTACCTTTGATCTGCCGAGTCTCAATGGCGGCTTTGCCATGCTCACGGTCATGATCGGTATGTTCGCGGTTGCCGAAGTGCTGAAGTTCGCCGAAAGCGCACGCCTGAGCCACCGGGCCAAACCGCAGCACGTCAGCATGAAAGGCGTGAAAGGCTTTGGTTTCTCGATGAAGGAATTCGTCGGCCAGCTGCCCAATGCCACCCGTTCATCCCTGATCGGCCTGGGTATTGGCATCCTGCCCGGCATCGGTGCCGGTACGTCGAACATCGTCTCTTACATCGTTGCCAAGAAACGCTCCAAGACCCCGGAAGAGTTCGGTAAAGGCAAGATCGACGGTGTGGTGGCCAGCGAAACGGCAAACAACGCCGGTATCGGTGGGGCGATGATTCCGCTGCTGACCCTTGGCATTCCCGGCGATACCACCACAGCGGTCATGCTGGGTGGCTTCATGATCCACGGGATCCAGCCCGGGCCCCTGCTATTCATCAGCCAGGCACCGTTGGTCTACACGATCTTCGCCGCGCTGATCCTCGCTTCCGTGATGATGCTGGTGCTGGAGTTCTATGGCCTGCGCATGTTCATCAAATTGCTGGCGGTGCCCAAGCACATCCTGTTGCCGATCATCCTGGTGCTCTGCGTCGTCGGCGCCTTTGGCTTGAACAGTCGGATCTTCGACGTCTGGGCGGTGCTGCTGTTTGGCTTGCTGGGCTATGGATTCGTCAAGAGCGGTTTGCCGATCGCGCCTTTCATCATTGGCTTCATTCTCGGTCCCATGGCGGAAACCAACCTGCGCCGGGGCCTGATGTTGTCCGATGGGAATTTCAGCGGCTTCCTCGCCAACCCTATCTCGGCCGGTTTCCTGATTTTGGCCGCCGCCTCGATTTCCTGGCACCTGGTTACCGTGATCCGTCAAAAGAAAAGCGCCGCCATCGAGTTGATGCGCAGCTAG	MIELMQQGFGAILTPYVFIIILLGVAVGIVFGAVPGLSATMAIALCLPLTYSMGPGTGLALLVALFVGATSGGLISAILLNIPGTPASIATTFDGWPLMKQGHGVKALGIGVVFSFLGTIFSIAALMFIAPILADLALSFGPHEYFSIAIFSLTLIATLSTGSLVKGLFAGALGFAFSTVGIAPVEAIRRFTFDLPSLNGGFAMLTVMIGMFAVAEVLKFAESARLSHRAKPQHVSMKGVKGFGFSMKEFVGQLPNATRSSLIGLGIGILPGIGAGTSNIVSYIVAKKRSKTPEEFGKGKIDGVVASETANNAGIGGAMIPLLTLGIPGDTTTAVMLGGFMIHGIQPGPLLFISQAPLVYTIFAALILASVMMLVLEFYGLRMFIKLLAVPKHILLPIILVLCVVGAFGLNSRIFDVWAVLLFGLLGYGFVKSGLPIAPFIIGFILGPMAETNLRRGLMLSDGNFSGFLANPISAGFLILAAASISWHLVTVIRQKKSAAIELMRS	PGPT0017350_1081	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017350-tctA-K07793	NA	NA
D1-36_00003	474			hypothetical protein	ATGGATTCCTATAAAAGAAACGAGCTGATCGCCGGCCTGGCCATGCTCGGCGCTGGCGTGGCTTATCTGGTGTTGACCTTGAACCTGCCACGTCGCGGGACGGTCGATGCCGCGTTTGTGCCCTGGGTGCTCGCCGTGTCGCTGTGCCTGTTGGGCGCGCTGCAATTGTGGGCTTGGCGAAAGCTGCCGAACAAAAGTGCCGAACCCGCGGAAAAACCCGAGGCGATCGATTACCCAACGGTCTTCAAATCCCTGGCGTTGGTGCTGCTGTATACAGCGCTGATGGAGCCGGTGGGTTTCGTGATCACGACTGTGCTTTATCTCTATGCCCAGTTCATCGTACTGACCCCTGCGGAACAGAAAATCAAGCACCTGCAATACGGGCTGATCGCGGTCGTCTCGTCGGTGTTGATCTTTTACATCTTCCGCCATGGCTTCGACTTGCTCCTGCCGGTCGGTTTATTGGATTTCTAG	MDSYKRNELIAGLAMLGAGVAYLVLTLNLPRRGTVDAAFVPWVLAVSLCLLGALQLWAWRKLPNKSAEPAEKPEAIDYPTVFKSLALVLLYTALMEPVGFVITTVLYLYAQFIVLTPAEQKIKHLQYGLIAVVSSVLIFYIFRHGFDLLLPVGLLDF	PGPT0017355_1508	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017355-tctB-K07794	NA	NA
D1-36_00004	972			hypothetical protein	ATGAAGAAAAAACTCTATGCCTCACTGCTCGCGTCTTTCCTGAGCCTGACTGCCGGGACGGCGATCGCTGCCGATGCCAGCGACTGGCCAAATCGTCCGATACAGGTGGTGGTGATCGCCAACGCTGGCGGTGACACCGATTTCAACGCACGCATGATGGCCAAGTACTTCACCAAGGTCACCGGCAAGACCATGGTGGTCACCAACATGGCCGGCGGGGGCGGCACCATCGCCGCCGATGCGGTGAAGAGCGCGGCGCCCGATGGCAACACCATTCTTTTCACCCACACCGGCCAGTTGATCGTCAATGAAGTGGCGGGGCTGTCCGAAGACCGTTTCGATGCGTTTGATATCTCCTGCATCGCTGGCGTCGACAAAGGCGCGGTGTTCGTCTCGGCCAAGAGCTCGGGCATCGACAGCCTCGACCAACTGATTGAAACAGCCAAGGCCAAGCCCGGCACCATCACCTACGGCACCGAGATGGGCAACTTCTCCCACCTGCAAGGCTTGATGTTTGAAAAGCTCGCCGGCGTGAAATTGAAAATGGTGGACAGCGGCACCGTCTCGGAAAAGATCGTCGCCTTGCTGGGCAAGCGGATCGATCTGGGGGCCATCAGCTATGGTTCGGTCCAGGATTACATTTCCAGCGGCAAGATGACCGCCCTGGGCCAACCCAACGCCGAGCGCAACGCGCTGCTGGGTGACGTCAAGACGTTCAAGGAGCAAGGCGTGGACCTGGTTCTGGACAAGCCTTACGTCGTCGCGTTCCCGAAAGGCACCGACCCGGCCATCGTCAAGAAAATGGCCGAAACCATGAAAAAAATCACCGAAGAACCTGAATACGCCGAAGAGCTGAAAAAGTCGTTCAAACAGCCGGTCAGTTTCCAGGGCACCGAAGAAGCCATTGCCACGTTGAACAAAACCCGCGACAGCTTCATGCAGTTCAAGGACGAGATGCGTAAGGCTAAATAA	MKKKLYASLLASFLSLTAGTAIAADASDWPNRPIQVVVIANAGGDTDFNARMMAKYFTKVTGKTMVVTNMAGGGGTIAADAVKSAAPDGNTILFTHTGQLIVNEVAGLSEDRFDAFDISCIAGVDKGAVFVSAKSSGIDSLDQLIETAKAKPGTITYGTEMGNFSHLQGLMFEKLAGVKLKMVDSGTVSEKIVALLGKRIDLGAISYGSVQDYISSGKMTALGQPNAERNALLGDVKTFKEQGVDLVLDKPYVVAFPKGTDPAIVKKMAETMKKITEEPEYAEELKKSFKQPVSFQGTEEAIATLNKTRDSFMQFKDEMRKAK	PGPT0017360_2386	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017360-tctC-K07795	NA	NA
D1-36_00005	336			hypothetical protein	TTGGGAGCGATCTCTGCGCTCGTATCCCCGAGCCTCGAAAAACTCGGGCGCCGTGTCGGTCAGAAGATGAAGGCTCAGGGCGCCATCGACGGCAGCTATACCCTCAAGCGCTTGCAACAACAAAGTGCCAGCCCCAGATTTTCTCTGATTAGCCACGACGATCAGCGAGCGAAGAAGGCGCGCACCGCCGTTTCCTTCAATACCCCCGAACCCCAGCTCGGCTTCTCCACGGTGAAAGGAATAAAAGATTCGATCGGGCTGCAGAAGGTCCTGGGTTGGCAATCCCGCTGCGCTCAAATGAGCAGCCATCCCTTGGATTTGATCAGCATCAAGTAA	MGAISALVSPSLEKLGRRVGQKMKAQGAIDGSYTLKRLQQQSASPRFSLISHDDQRAKKARTAVSFNTPEPQLGFSTVKGIKDSIGLQKVLGWQSRCAQMSSHPLDLISIK				NA	NA	NA	NA	NA
D1-36_00006	357	arsR1	COG0640	Arsenic resistance transcriptional regulator ArsR1	ATGCAGGAACCCCTGACACCCCTCGCCCTTTTCAAGTGTCTTGCTGACGAAACCCGAGCCCGGATGACCTTGCTGATTGCCCGTGAGGGCGAGCTTTGCGTATGCGAGCTCACCTGCGCGCTGGACGTGAGTCAGCCGAAGATCTCCAGACACCTGGCACAACTGCGTGAAGCGGGAGTCCTCATGGACCGGCGCCAAGGTCAATGGGTTTATTACCGGCTACACCCGTCTCTGCCTGAATGGGTGGGCGTCATGCTCAAGGGTATTGTTGATGCGAACGAGGAATGGTTGAGCACCGATGCGCTGCGTCTCGCAGAAATGGGCGAGCGGCCGCAGAGCCTGACCGCCTGTGCCTGA	MQEPLTPLALFKCLADETRARMTLLIAREGELCVCELTCALDVSQPKISRHLAQLREAGVLMDRRQGQWVYYRLHPSLPEWVGVMLKGIVDANEEWLSTDALRLAEMGERPQSLTACA	PGPT0004735_1540	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE_SYSTEM,PGPT0004735-arsR-K03892	NA	NA
D1-36_00007	1284	arsB	COG1055	Arsenical pump membrane protein	ATGCTGATCGCATTTCTGATTTTTCTGGTGACGATTGTTCTCGTCATCTGGCAGCCAAAAGGTTTGGGTGTGGGTTGGAGCGCCGCTCTAGGGGCTCTCGTGGCGCTGCTGGCAGGTGTCGTGAGCGTGTCCGATATCCCCGTGGTGTGGCAGATCGTATGGAATGCGACTGCGACCTTCATCGCCGTCATCATCATCAGCCTGTTGCTGGATGAGGCGGGATTCTTCGAGTGGTCGGCGTTGCACGTGGCCCGTTGGGGCAACGGTAGCAGTCGTAAATTGTTCGCCTTCATCATCCTGCTGGGGGCGGCGGTATCGGCCCTGTTCGCCAATGACGGCGCGGCGCTGATTTTGACTCCGATCGTCATCGCGATGCTTTTGGCCCTGCGCTTTTCGCCGGCCGCTACGTTGGCGTTCGTCATGGCGGCGGGATTCATCGCTGATACCGCGAGCTTGCCTTTGGTCGTATCCAATCTGGTGAATATTGTTTCCGCTGATTATTTCAACATCGGCTTCAGCGAGTACGCTGCCGTCATGGTGCCGGTGAACCTGGTCAGTGTCGCAGCGACCCTGGTCATGCTGCTGTGGTTCTTTCGCAACGATTTGCCACGTACGTATGAGCTTGATCAGTTGAAGGCCCCCGAGGCGGCCATCCGCGACAAGGCGACGTTTATTGCAGGCTGGTGGGTACTGGGTTTGTTGCTGATCGGTTTCTTCGTTATCGAGCCGCTGGGCGTCCCGATAAGCGCCATAGCCGCCGTCTGCGCGTTTATTCTTTATCTGATCGCCGCCCGTGGGCACGTTATTTCGACTCGCAAGGTACTAAGAGAAGCACCTTGGCAGGTCGTAGTGTTTTCGCTGGGAATGTATCTCGTGGTCTATGGCATGCGTAACGCTGGCCTCACCGATTACCTGGCGCAGATTCTCAATGTCTTCGCTGGTTATGGCGTGTGGGGAGCGGCGTTTGGGACAGGGCTGCTGGCCGCAGGTCTTTCCTCGGTCATGAACAACATGCCCACTGTTTTGGTGGGAGCACTGTCGATCCACTCCACAGAGGCTACCGGTGTCATCCGCGAGGCCATGGTCTACGCCAACGTCATCGGCTGCGACCTGGGACCGAAAATCACTCCTATCGGCAGCCTCGCCACCTTGTTGTGGCTGCATGTGCTGGCGCGCAAGAACATCGTCATCACCTGGGGCTATTACTTTCGCACCGGCATCGTCCTGACGTTGCCAATCCTGCTTGCCACCCTGGCCGCATTGGCCATCCGCCTGAGCTTTTGA	MLIAFLIFLVTIVLVIWQPKGLGVGWSAALGALVALLAGVVSVSDIPVVWQIVWNATATFIAVIIISLLLDEAGFFEWSALHVARWGNGSSRKLFAFIILLGAAVSALFANDGAALILTPIVIAMLLALRFSPAATLAFVMAAGFIADTASLPLVVSNLVNIVSADYFNIGFSEYAAVMVPVNLVSVAATLVMLLWFFRNDLPRTYELDQLKAPEAAIRDKATFIAGWWVLGLLLIGFFVIEPLGVPISAIAAVCAFILYLIAARGHVISTRKVLREAPWQVVVFSLGMYLVVYGMRNAGLTDYLAQILNVFAGYGVWGAAFGTGLLAAGLSSVMNNMPTVLVGALSIHSTEATGVIREAMVYANVIGCDLGPKITPIGSLATLLWLHVLARKNIVITWGYYFRTGIVLTLPILLATLAALAIRLSF	PGPT0004710_1026	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE_SYSTEM,PGPT0004710-arsB|arsenical_pump_membrane_protein-K03893	NA	NA
D1-36_00008	471	arsC	COG0394	Arsenate reductase	ATGAAAGTCTTGTTCATGTGCACCCACAACAGCTGCCGCAGCATTTTGTCCGAGGCGTTGTTCAATCACTTGGCACCCTCCGGTATGGAGGCTGTCAGTTCAGGCAGCTTTCCCAGCGGCAAGGTCAATGAACGGGCACTGAAGACACTGCAAGCCGCCGGTATTCCCACTGTCGGTCTTTCGAGCAAGGCGTCGGATGCCTTCGAAAGCGCCCCCCCCGATATCGTCATTACCGTGTGCGATCGCGCAGCCGGCGAGGCCTGCCCGATCTTCTTCGGCCCGTCACTCAAAGCCCATTGGGGCCTGGCCGATCCCTCTGCGGCAACGGGGAGCGAGGCGCAGATCGAGGAAGCCTTCCAAAACACTGTGGCGAAAATTGATGAGCGGGTACGCGCTTTCTTTGCGCTGCCTTTGCAACAAATGAGCCCGGAAGAATTGAAAGGAGAGCTAGCCCGCATCGGCTCGCTCTGA	MKVLFMCTHNSCRSILSEALFNHLAPSGMEAVSSGSFPSGKVNERALKTLQAAGIPTVGLSSKASDAFESAPPDIVITVCDRAAGEACPIFFGPSLKAHWGLADPSAATGSEAQIEEAFQNTVAKIDERVRAFFALPLQQMSPEELKGELARIGSL	PGPT0004715_1526	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0004715-arsC-K03741	NA	NA
D1-36_00009	714	arsH	COG0431	NADPH-dependent FMN reductase ArsH	ATGAACGACAACCTGCCAAATATTCAATCAGAGCTGATGGATCTCCCGTCGCTTGAGCGGCTGGAGCCCAAGGATCCTTCTACTCACAAACCGCGCATGCTCCTACTGTATGGATCAACCCGTCAGCGCTCATTCAGTCGTCTTCTTGTCCAGGAAGCAGCCCGCCTGTTGGAGGAACTCGGCGCCGAGGTCCACATTTTCGATCCGTCCGGGCTGCCGTTGCCGGATGACGCTCCCGACTCACATGAAAAGGTGCTTGAGCTTCGCAAGCTGATGCAATGGTCCGAAGGCCAGGTATGGTGTTCGCCTGAGCGCCACGGCTCGATGAGCGCCGTTTTCAAGGCACAGATCGACTGGGTAGCACTGGCGATCGGGTCCGTGCGCCCAACCCAAGGCAAGACCCTGGCGGTGCTACAGGTCTGTGGCGGTTCGCAGTCCTTCAACGTAGTGAATCAGTTGCGAGTGTTAGGCCGCTGGATGCGCATGTTCACTATCCCTAACCAGTCTTCGGTACCTAAAGCCTTCCTGGAATTCGACGATGCCGGGCGTATGAAGCCCTCGTCCTTCTATGATCGGTTGGTCGATGTGATGGAAGAACTGATGAAGTTCACGCTGCTGCTGCGCGATCGCCAGGACTATTTGGTTGACCGCTACTCCGAGCGCAAGGAGTCGGCGGAGGAGCTTTCCAAACGGGTCAACCTTCGGTCCATTTGA	MNDNLPNIQSELMDLPSLERLEPKDPSTHKPRMLLLYGSTRQRSFSRLLVQEAARLLEELGAEVHIFDPSGLPLPDDAPDSHEKVLELRKLMQWSEGQVWCSPERHGSMSAVFKAQIDWVALAIGSVRPTQGKTLAVLQVCGGSQSFNVVNQLRVLGRWMRMFTIPNQSSVPKAFLEFDDAGRMKPSSFYDRLVDVMEELMKFTLLLRDRQDYLVDRYSERKESAEELSKRVNLRSI	PGPT0004730_691	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE_SYSTEM,PGPT0004730-arsH-K11811	NA	NA
D1-36_00010	1833	glmS	COG0449	Glutamine--fructose-6-phosphate aminotransferase [isomerizing]	ATGTGTGGAATTGTCGGCGCCGTTGCTGAGCGCAACATCACGGCCATCCTGCTTGAAGGCCTCAAGCGTCTTGAATACCGCGGCTACGACAGTGCCGGCGTGGCGGTATTCACCCAAGACGCAAAACTTGAGCGTGTGCGGCGCCCGGGAAAAGTCAGCGAGTTGGAACGGGCACTGGACGCTGAGCCGCTGATCGGTCGCCTGGGTATCGCCCATACCCGCTGGGCCACCCATGGCGCACCGTGCGAGCGTAACGCCCACCCACATTTCTCCGGCGACCTGGCGGTGGTGCACAACGGCATCATCGAGAACTACGAGGCCTTGCGCGAACAACTCAAGGCACTCGGCTATGTGTTCACCTCGGACACCGACACCGAAGTCATTGCCCATTTGCTCACCCACAAGCTCAAGGACCTGGTGGACCTGACCGTAGCGCTCAAGGCCACGGTCAAGGAACTCCATGGCGCTTATGGCCTGGCGGTGATCAACGCCAAACAACCGGATCGCCTCGTGGCGGCCCGCAGTGGCAGCCCGTTGGTGATCGGCCTGGGCCTGGGGGAGAACTTCCTGGCTTCCGATCAACTGGCGCTGCGCCAGGTCACCGATCGCTTCATGTACCTGGAAGAAGGCGATATCGCCGAGATCCGCCGCGACAGCGTGCAGATCTGGGACCTTGACGGCAAGGAAGTCGAGCGCGAGGTGGTGCAATACCGCGACGGCGCAGAAGCCGCCGACAAGGGCGAGTTCCGGCATTACATGCTCAAGGAAATCCATGAACAACCGGCCGTGGTGCAGCGCACCCTCGAAGGCCGTCTGAGCCAGGATCAAGTGCTGGTGCAGGCCTTCGGTCCGCAAGCCGCCGAGCTGTTCGCCAAAGTGCGCAATGTGCAGATTGTCGCCTGCGGCACCAGCTATCACGCCGGCATGGTCGCGCGTTACTGGCTCGAAGAGCTGGCCGGTATCCCCTGCCAGGTCGAAGTCGCCAGCGAGTTCCGCTATCGCAAAGTTGTCGTGCAGCCCGACACCCTGTTCGTGACCATTTCCCAGTCTGGCGAAACCGCGGATACCCTGGCTGCCCTGCGCAACGCCAAGGAGTTGGGCTTCCTCGCCAGCCTGGCGATCTGCAACGTCGGCATCAGCTCGCTGGTGCGCGAGTCTGATCTGACCCTGCTGACCCAGGCCGGTCGGGAAATCGGCGTGGCGTCGACCAAGGCATTCACCACGCAGTTGGTGGGCCTGCTGTTGCTGACGCTGTCCCTGGGCCAGGTGCGCGGCACGCTGGGCGAGGGCGTCGAAGCCAAGCTTGTCGAGGAACTGCGTCGCTTGCCGGCTCGCCTGGGTGAAGCCTTGGCGATGGACAGCACCGTGGAAAAAATCGCCGAGCTGTTCGCCGAGAAGAACCACACCTTGTTCCTGGGTCGTGGTGCGCAATTCCCGGTGGCAATGGAAGGCGCCCTGAAGCTCAAGGAAATTTCCTATATTCACGCCGAGGCGTATCCGGCCGGTGAACTCAAGCACGGCCCGTTGGCCCTGGTGGATAACGACATGCCGGTGGTCACCGTGGCGCCGAACAACGAGCTGCTGGAAAAGCTCAAGTCGAACCTGCAGGAAGTACGCGCCCGTGGCGGCCAATTGGTGGTCTTCGCCGATGAGAAGGCTGGCATGACCAACGGCGAAGGTACCCATGTGGTACACATGCCGCACATCCACGACATCCTGTCGCCGATCCTCTACACCATCCCGCTGCAATTGCTGTCGTACTACGTGGCGGTGCTCAAGGGCACCGACGTGGACCAGCCGCGGAATTTGGCGAAGTCTGTGACGGTGGAGTGA	MCGIVGAVAERNITAILLEGLKRLEYRGYDSAGVAVFTQDAKLERVRRPGKVSELERALDAEPLIGRLGIAHTRWATHGAPCERNAHPHFSGDLAVVHNGIIENYEALREQLKALGYVFTSDTDTEVIAHLLTHKLKDLVDLTVALKATVKELHGAYGLAVINAKQPDRLVAARSGSPLVIGLGLGENFLASDQLALRQVTDRFMYLEEGDIAEIRRDSVQIWDLDGKEVEREVVQYRDGAEAADKGEFRHYMLKEIHEQPAVVQRTLEGRLSQDQVLVQAFGPQAAELFAKVRNVQIVACGTSYHAGMVARYWLEELAGIPCQVEVASEFRYRKVVVQPDTLFVTISQSGETADTLAALRNAKELGFLASLAICNVGISSLVRESDLTLLTQAGREIGVASTKAFTTQLVGLLLLTLSLGQVRGTLGEGVEAKLVEELRRLPARLGEALAMDSTVEKIAELFAEKNHTLFLGRGAQFPVAMEGALKLKEISYIHAEAYPAGELKHGPLALVDNDMPVVTVAPNNELLEKLKSNLQEVRARGGQLVVFADEKAGMTNGEGTHVVHMPHIHDILSPILYTIPLQLLSYYVAVLKGTDVDQPRNLAKSVTVE	PGPT0017630_2782	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULATION_METABOLISM,PGPT0017630-glmS|nodM-K00820	NA	NA
D1-36_00011	777	srlR	COG1349	Glucitol operon repressor	ATGTCCAAGCGCAACACACCACAACGTCGCCACAATATCCTCGTCCTGCTTCAAGAGCAGGGCGAGGTCAGCGTGGACGAATTGGCCAAGCGCTTCGAAACCTCCGAAGTTACGATTCGCAAGGACCTCGCCGCCCTGGAGACCAATGGCTTGCTGTTGCGTCGTTACGGTGGCGCGGTACCAATGCCTCAGGAGCTGGTGGCGGATAACGCCCAGAGTGTCTCCAAGTTCAAACACGCCATTGCCGGGGCCGCCGTGAAGCGGATCCGCGAGCATGCGCGCATCATCATCGACAGCGGCAGCACCACGGCGGCCATGATTCCTCAACTCGGCAATCAGCCGGGACTGGTGGTGATGACCAATTCCCTGCACGTCGCCAGCGCCTTGAGCGAGCTGGAGCACGAGCCGGTGCTGTTGATGACCGGTGGCACCTGGGACCCGCATTCGGAATCCTTCCAGGGCCAGGTCGCCGAGCAAGTGCTGCGTTCCTACGACTTCGACCAGTTGTTCATCGGTGCCGACGGCATCGACCTGGCGCGCGGCACCACCACTTTCAACGAACTGCTGGGCCTGAGCCGTGTGATGGCTGAGGTTGCACGCGAAGTGATCGTGATGGTGGAGGCCGATAAGATCGGTCGCAAGATACCCAACCTGGAACTGCCGTGGAGCAGCGTCCATACCCTCATTACCGATGATCGCCTGCCCGTGGAGGCACGCGACCAGATTCAGGCCCGCGGCATCAATCTGATCTGCGCACCTGTCAGCCAGGAGAAATAA	MSKRNTPQRRHNILVLLQEQGEVSVDELAKRFETSEVTIRKDLAALETNGLLLRRYGGAVPMPQELVADNAQSVSKFKHAIAGAAVKRIREHARIIIDSGSTTAAMIPQLGNQPGLVVMTNSLHVASALSELEHEPVLLMTGGTWDPHSESFQGQVAEQVLRSYDFDQLFIGADGIDLARGTTTFNELLGLSRVMAEVAREVIVMVEADKIGRKIPNLELPWSSVHTLITDDRLPVEARDQIQARGINLICAPVSQEK	PGPT0017955_624	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_TAGATOSE_DEGRADATION,PGPT0017955-agaR-K02081	NA	NA
D1-36_00012	1368	glmU_1		Bifunctional protein GlmU	ATGTCTCTCGAAATCGTTATTCTCGCGGCCGGTCAAGGCACCCGCATGCGTTCGGCGCTGCCCAAGGTCTTGCACCCGGTCGCCGGCAATTCCATGTTGGGCCATGTTATCCACAGCGCCCGACAACTTGATCCACAGCGCATCCATGTGGTGATCGGTCACGGTGCCGACGCGGTGCGTGAGCGCCTGGCGGCGGATGACCTGAATTTCGTCTTGCAGGACAAACAACTGGGTACCGGCCACGCCGTGGCTCAGGCTGTGCCATTCATTACTGCCGATACGGTGTTGATTCTCTACGGCGATGTGCCGCTGATTGAAGTCGACACGTTGCAACGTCTGCTCAAGCACGTCGCGCCACAACAACTGGGCCTGTTGACCGTCGAGCTGGATGATCCGACCGGCTATGGCCGCATTGTGCGCAATGCCGACGGTCAGGTGATAGCGATCGTCGAGCAAAAAGACGCCAACGAAGCCCAGCGCGCGATTACCGAGGGCAACACCGGGATTCTTGCCGTGCCGGCCGAGCGCCTGGGCGACTGGATGAGTCGTCTGTCGAACAACAATGCCCAGGGCGAGTACTACCTGACCGACGTGATCGCCATGGCCGTAGCCGATGGCCTGGTCGTCGCCACCGAGCAGCCGCTGGACGCCATGGAAGTGCAGGGCGCCAACGATCGCCGACAACTGGCCGAGCTGGAGCGCCACTATCAATTGCGCGCCGCCCGCCGCCTGATGGCTCAAGGCGTGACCCTGCGCGATCCGGCTCGTTTTGACGTACGCGGTGAAGTCAGCGTGGGGCGCGACGTGGTCATCGATATCAATGTCATCCTCGAAGGCAAGGTCATCATTGAAGATGACGTGGTCATCGGCCCGAACTGCGTGATCAAGGACAGCACCCTGCGCAAGGGTGTGGTGATCAAGGCGAACAGTCACCTCGAAGGCGCGGTGATGGGGGAAGGCTCCGACGCGGGTCCGTTTGCCCGCCTGCGCCCGGGCACTGTGCTGGAAGCCCGTGCCCATGTGGGTAACTTCGTTGAACTGAAGAATGCCCACATGGGCGAGGGCGCGAAGGCGGGCCACCTGACCTACTTGGGGGACGCTGAAGTCGGCGCCCGCACCAACATTGGCGCCGGTACCATTACGTGCAACTACGATGGCGCCAACAAATGGAAAACCGTGCTGGGCGAAGACGTCTTCATTGGCTCCAACAACTCACTGGTGGCGCCTGTGGATATCTCCAGTGGGGCGACCACGGCTGCTGGTTCGACCGTTACCCAGAATGTGGATAACGGCCAATTGGCCGTGGCACGCGCCCGCCAGCGCAACATCGACGGCTGGAAGCGTCCGGTAAAGATCAAGAAGCCCTGA	MSLEIVILAAGQGTRMRSALPKVLHPVAGNSMLGHVIHSARQLDPQRIHVVIGHGADAVRERLAADDLNFVLQDKQLGTGHAVAQAVPFITADTVLILYGDVPLIEVDTLQRLLKHVAPQQLGLLTVELDDPTGYGRIVRNADGQVIAIVEQKDANEAQRAITEGNTGILAVPAERLGDWMSRLSNNNAQGEYYLTDVIAMAVADGLVVATEQPLDAMEVQGANDRRQLAELERHYQLRAARRLMAQGVTLRDPARFDVRGEVSVGRDVVIDINVILEGKVIIEDDVVIGPNCVIKDSTLRKGVVIKANSHLEGAVMGEGSDAGPFARLRPGTVLEARAHVGNFVELKNAHMGEGAKAGHLTYLGDAEVGARTNIGAGTITCNYDGANKWKTVLGEDVFIGSNNSLVAPVDISSGATTAAGSTVTQNVDNGQLAVARARQRNIDGWKRPVKIKKP	PGPT0018955_2446	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-GLUCOSAMINE_MODIFICATION,PGPT0018955-glmU-K04042	NA	NA
D1-36_00013	426	atpC	COG0355	ATP synthase epsilon chain	ATGGCTATGACAGTCCATTGCGATATCGTCAGTGCGGAAGGGGAAATCTTCTCCGGTCTGGTCGAGTTTGTGGTTGCGCACGGTGAGCTGGGTGATCTGGGTATCACCATGGGTCACGCACCGTTGATCACCAGCTTGAAGCCAGGTCCGATTACTCTGACCAAGCAGGGCGGGGACAAGGAGGTGTTCTACATCTCCGGTGGTTTCCTCGAGGTTCAGCCGAACATGGTCAAGGTCCTTGCCGACACCGTGCAACGTGCTGCCGACCTGGACGAAGCCTCCGCTCAGGAAGCCGTCAAGGCTGCCGAGAAGGCCCTGAACGAAAAAGGCGCAGACTTCGACTACGGTTCTGCTGCTGCACGTCTGGCCGAGGCCGCAGCCCAGCTGCGTACCGTCCAGCAGATCCGCAAGAAGTTCGGCGGCTAA	MAMTVHCDIVSAEGEIFSGLVEFVVAHGELGDLGITMGHAPLITSLKPGPITLTKQGGDKEVFYISGGFLEVQPNMVKVLADTVQRAADLDEASAQEAVKAAEKALNEKGADFDYGSAAARLAEAAAQLRTVQQIRKKFGG	PGPT0014295_639	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014295-atpC-K02114	NA	NA
D1-36_00014	1377	atpD	COG0055	ATP synthase subunit beta	ATGAGTAGCGGACGTATCGTTCAAATCATCGGCGCCGTTATCGACGTGGAATTCCCACGCGACAGCGTACCGAGCATCTACGACGCCTTGAAGGTTCAAGGCGCCGAAACCACCCTGGAAGTTCAGCAGCAGCTGGGCGACGGCGTGGTTCGTACCATTGCGATGGGCTCCACCGAAGGCTTGAAGCGCGGTCTGGACGTCAACAACACTGGCGCAGCCATCTCCGTACCGGTCGGTAAAGCGACTCTCGGCCGGATCATGGACGTACTGGGCAACCCGATCGACGAAGCTGGCCCGATCGACACCGAAGAGCGTTGGGGCATTCACCGTCCTGCGCCATCCTTCGCTGAACAGGCCGGTGGCAACGAGCTGCTGGAAACAGGCATCAAGGTTATCGACCTGGTCTGCCCGTTCGCCAAGGGCGGTAAAGTCGGTCTGTTCGGTGGTGCCGGTGTGGGCAAGACCGTAAACATGATGGAACTGATCCGTAACATCGCCATCGAGCACAGCGGTTATTCCGTGTTCGCCGGTGTGGGTGAGCGTACTCGTGAGGGTAACGACTTCTACCACGAGATGAAGGATTCCAACGTTCTGGACAAAGTGGCGCTGGTCTACGGCCAGATGAACGAGCCGCCGGGAAACCGTCTGCGCGTAGCCCTGACCGGCCTGACCATGGCCGAGAAGTTCCGTGACGAAGGTAACGACGTTCTGCTGTTCGTCGACAACATCTACCGTTACACCCTGGCCGGTACCGAAGTATCCGCATTGCTGGGCCGTATGCCTTCGGCAGTAGGTTACCAGCCGACCCTGGCTGAAGAGATGGGCGTGCTGCAAGAGCGCATCACTTCGACCAAGCAAGGTTCGATCACTTCGATCCAAGCGGTATACGTACCAGCGGACGACTTGACCGACCCGTCGCCAGCGACCACCTTCGCCCACTTGGACGCCACCGTCGTTCTGTCCCGTGACATCGCTTCCCTGGGTATCTACCCAGCGGTAGACCCACTGGACTCGACTTCGCGCCAGCTGGACCCGAACGTGATCGGCCAGGAGCACTACGACACCGCTCGCGGCGTTCAGTACGTGCTGCAGCGTTACAAAGAGCTGAAGGACATCATCGCGATCCTGGGTATGGATGAACTGTCGGAAACCGACAAGCAGTTGGTATCCCGCGCTCGTAAGATCCAGCGCTTCTTGTCGCAACCGTTCTTCGTGGCTGAAGTCTTCACCGGTGCATCGGGTAAATACGTTTCCCTGAAAGACACCATTGCTGGCTTCAAAGGCATCCTCAACGGTGACTACGACCACCTGCCAGAACAAGCGTTCTACATGGTCGGCGGCATCGAAGAAGCGATCGAGAAAGCCAAGAAACTGTAA	MSSGRIVQIIGAVIDVEFPRDSVPSIYDALKVQGAETTLEVQQQLGDGVVRTIAMGSTEGLKRGLDVNNTGAAISVPVGKATLGRIMDVLGNPIDEAGPIDTEERWGIHRPAPSFAEQAGGNELLETGIKVIDLVCPFAKGGKVGLFGGAGVGKTVNMMELIRNIAIEHSGYSVFAGVGERTREGNDFYHEMKDSNVLDKVALVYGQMNEPPGNRLRVALTGLTMAEKFRDEGNDVLLFVDNIYRYTLAGTEVSALLGRMPSAVGYQPTLAEEMGVLQERITSTKQGSITSIQAVYVPADDLTDPSPATTFAHLDATVVLSRDIASLGIYPAVDPLDSTSRQLDPNVIGQEHYDTARGVQYVLQRYKELKDIIAILGMDELSETDKQLVSRARKIQRFLSQPFFVAEVFTGASGKYVSLKDTIAGFKGILNGDYDHLPEQAFYMVGGIEEAIEKAKKL	PGPT0014296_4540	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014296-atpD-K02112	NA	NA
D1-36_00015	861	atpG	COG0224	ATP synthase gamma chain	ATGGCAGGCGCAAAAGAGATTCGCAGTAAGATTGCGAGCATCAAAAGCACGCAAAAGATTACCAGCGCCATGGAAAAAGTGGCGGTCAGCAAAATGCGCAAGGCACAAATGCGCATGGCTGCTAGCCGTCCTTATGCGGAGCGCATCCGCCAGGTGATTGGTCATCTGGCCAACGCCAACCCGGAATACCGTCACCCGTTCATGATCGAACGCGCCATCAAGCGCGTCGGTTACGTTGTGGTGAGCAGTGACCGTGGTCTGTGCGGTGGCTTGAACACCAACCTGTTCAAGGCCCTGGTCAAGGACATGGCGGTAAACCGCGAACAAGGCGTCGAGATCGATCTGTGCGTGGTCGGTAGCAAGGGTGCGGCTTTCTTCCGCAACTTCGGCGGTAACGTCGTCGCTGCTATCAGCCACCTGGGTGAAGAACCGTCGATCAATGATTTGATCGGCAGCGTCAAGGTGATGCTGGATGCTTACCTGGAAGGCCGGATCGACCGCCTGTCCGTGGTATCCAACAAGTTCATCAACACCATGACGCAACAGCCGACCGTGGAGCAGTTGATTCCACTGGTGGCGACCCCGGAACAGGAACTCAAGCACCACTGGGACTATCTCTACGAACCGGATGCCAAGGAGCTGCTCGACGGCTTGATGGTCCGCTACGTGGAGTCGCAGGTCTACCAGGCGGTGGTCGAGAACAACGCAGCTGAACAAGCGGCGCGGATGATCGCGATGAAGAACGCTACCGACAACGCCGGTGATTTGATCAGCGATTTGCAGCTGATCTACAACAAGGCGCGTCAGGCTGCGATCACCCAAGAGATCTCGGAAATCGTCGGCGGCGCTGCCGCGGTTTAA	MAGAKEIRSKIASIKSTQKITSAMEKVAVSKMRKAQMRMAASRPYAERIRQVIGHLANANPEYRHPFMIERAIKRVGYVVVSSDRGLCGGLNTNLFKALVKDMAVNREQGVEIDLCVVGSKGAAFFRNFGGNVVAAISHLGEEPSINDLIGSVKVMLDAYLEGRIDRLSVVSNKFINTMTQQPTVEQLIPLVATPEQELKHHWDYLYEPDAKELLDGLMVRYVESQVYQAVVENNAAEQAARMIAMKNATDNAGDLISDLQLIYNKARQAAITQEISEIVGGAAAV	PGPT0014297_4311	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014297-atpG-K02115	NA	NA
D1-36_00016	1545	atpA		ATP synthase subunit alpha	ATGCAGCAACTCAATCCTTCCGAAATAAGTGAAATTATCAAGGGCCGCATCGAAAAGCTCGATGTGACCTCCCAAGCCCGTAACGAAGGCACTGTCGTCAGCGTATCTGACGGCATCGTGCGGATTCACGGTCTGGCCGACGTCATGTACGGCGAGATGATCGAGTTTCCGGGCGGCGTCTACGGTATGGCCCTCAACCTGGAGCAAGACTCTGTAGGTGCCGTGGTACTGGGCGCGTACACGACTCTGGCTGAAGGCATGAGCGCCAAGTGCACCGGCCGCATCCTCGAGGTTCCTGTCGGTAAGGAACTGCTGGGTCGCGTTGTCGACGCACTGGGTAACCCTGTCGACGGCAAAGGTCCGCTGAACAACACCGAGACCGACGCGGTCGAGAAAGTTGCTCCTGGCGTGATCTGGCGTAAGTCGGTAGACCAGCCTGTACAGACTGGCTACAAGGCTGTCGATGCCATGATTCCTGTCGGCCGTGGCCAGCGTGAGCTGATCATCGGTGACCGTCAGATCGGTAAGACCGCTCTGGCGATCGACGCGATCATCAACCAGAAAAACAGCGGCATCTTCTGCGTCTACGTAGCAATCGGTCAGAAGCAATCGACCATCGCCAACGTGGTTCGCAAACTGGAAGAAAACGGTGCACTGGCCAACACTATCATCGTTGCCGCCAGCGCCTCCGAATCGGCTGCCCTTCAGTTCCTGGCACCGTACTCCGGTTGCACCATGGGCGAATACTTCCGCGACCGCGGTGAAGACGCGCTGATCGTTTATGACGATCTGTCCAAGCAAGCAGTGGCCTACCGCCAGATTTCCCTGCTGCTGCGCCGTCCACCAGGCCGTGAAGCCTACCCAGGCGACGTGTTCTATCTCCACTCCCGTCTGCTGGAGCGCGCATCCCGCGTTTCGGAAGAGTACGTAGAGAAGTTCACCAACGGCGCAGTGACTGGCAAGACCGGTTCCCTGACCGCGCTGCCGATCATCGAAACCCAGGCTGGCGACGTTTCCGCGTTCGTTCCGACCAACGTGATTTCCATCACCGACGGTCAGATCTTCCTGGAATCGGCCATGTTCAACTCGGGCATCCGTCCTGCTGTGAACGCCGGTGTTTCGGTATCCCGTGTGGGTGGTGCCGCTCAGACCAAGATCATCAAGAAGCTGTCCGGTGGTATCCGTACCGCCCTGGCTCAGTACCGTGAACTGGCGGCATTCGCCCAGTTCGCTTCTGACCTGGACGAAGCGACCCGTAAGCAACTTGAGCATGGTCAGCGCGTTACCGAGCTGATGAAGCAGAAGCAATACGCACCGATGTCGATCGCTGACATGGCGCTGTCGCTGTATGCCGCTGAGCGTGGGTTCCTGACTGACATTGAAATCGCCAAGATCGGCAGCTTCGAACAAGCGCTGATTGCTTTCTTCAACCGCGATCACGCCGATTTGATGGCCAAGATCAACGTGAAGGGTGACTTCAATGACGAAATCGACGCTGGCCTCAAAGCCGGCATCGAGAAGTTCAAGGCCACCCAAACCTGGTAA	MQQLNPSEISEIIKGRIEKLDVTSQARNEGTVVSVSDGIVRIHGLADVMYGEMIEFPGGVYGMALNLEQDSVGAVVLGAYTTLAEGMSAKCTGRILEVPVGKELLGRVVDALGNPVDGKGPLNNTETDAVEKVAPGVIWRKSVDQPVQTGYKAVDAMIPVGRGQRELIIGDRQIGKTALAIDAIINQKNSGIFCVYVAIGQKQSTIANVVRKLEENGALANTIIVAASASESAALQFLAPYSGCTMGEYFRDRGEDALIVYDDLSKQAVAYRQISLLLRRPPGREAYPGDVFYLHSRLLERASRVSEEYVEKFTNGAVTGKTGSLTALPIIETQAGDVSAFVPTNVISITDGQIFLESAMFNSGIRPAVNAGVSVSRVGGAAQTKIIKKLSGGIRTALAQYRELAAFAQFASDLDEATRKQLEHGQRVTELMKQKQYAPMSIADMALSLYAAERGFLTDIEIAKIGSFEQALIAFFNRDHADLMAKINVKGDFNDEIDAGLKAGIEKFKATQTW	PGPT0014298_1882	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014298-atpA-K02111	NA	NA
D1-36_00017	537	atpH_1	COG0712	ATP synthase subunit delta	ATGGCAGAACTGACCACGTTGGCCCGACCTTACGCTAAGGCGGCCTTCGAGCACGCTCAGGCCCACCAGCAACTGGCCAATTGGTCAGCCATGCTCGGCCTGGCAGCAGCGGTGTCGCAAGACGACACCATGCAGCGCGTGCTCAAGGCCCCGCGACTGACGAGCGCAGAAAAGGCCGCCACGTTCATTGACGTGTGCGGCGACAAGTTCGATGCCAAGGCACAGAATTTCATCCACGTCGTTGCCGAAAACGACCGTCTCCCGCTTCTGCCGGAGATCGCCGCACTGTTCGACCTGTACAAGGCCGAGCAGGAGAAGTCGGTAGACGTGGAAGTGACCAGTGCTTTTGCATTGAACCAAGAACAGCAAGACAAACTCGCCAAGGTTCTCAGTGCACGACTCAACCGGGAAGTGCGCCTGCAAGTCGAGGAAGACAAGTCCCTGATAGGGGGCGTTGTAATCCGCGCCGGCGACCTGGTTATCGATGGCTCGATTCGCGGCAAAATCGCGAAACTTGCCGAAGCATTGAAATCTTGA	MAELTTLARPYAKAAFEHAQAHQQLANWSAMLGLAAAVSQDDTMQRVLKAPRLTSAEKAATFIDVCGDKFDAKAQNFIHVVAENDRLPLLPEIAALFDLYKAEQEKSVDVEVTSAFALNQEQQDKLAKVLSARLNREVRLQVEEDKSLIGGVVIRAGDLVIDGSIRGKIAKLAEALKS	PGPT0014299_3500	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014299-atpH-K02113	NA	NA
D1-36_00018	471	atpF	COG0711	ATP synthase subunit b	GTGAACATTAATGCGACCCTGATTGGCCAGTCCGTTGCGTTCCTGATTTTTGTACTGTTCTGCATGAAGTTCGTATGGCCTCCGGTCATTGCGGCATTGCACGAACGTCAAAAGAAGATCGCTGATGGTCTGGACGCTGCCAGCCGAGCAGCTCGCGACCTGGAGTTGGCCCATGAGAAAGTGGGTCAGCAACTGCGCGAAGCGAAAGCTCAGGCAGCTGAAATCATCGAGCAAGCCAAGAAGCGCGGTACGCAGATTGTCGACGAAGCCCGTGAACAGGCTCGCGTCGAAGCTGACCGTGTGAAGGCTCAGGCTCAAGCCGAGATCGAACAGGAACTCAACAGTGTCAAAGACGCGCTGCGCGCCCAAGTGGGTAGCCTGGCCGTTGGCGGTGCTTCGAAGATCCTGGGTGCCACAATCGATCAAAACGCGCACGCAGAGCTGGTAAACCAACTGGCTGCTGAAATCTAA	MNINATLIGQSVAFLIFVLFCMKFVWPPVIAALHERQKKIADGLDAASRAARDLELAHEKVGQQLREAKAQAAEIIEQAKKRGTQIVDEAREQARVEADRVKAQAQAEIEQELNSVKDALRAQVGSLAVGGASKILGATIDQNAHAELVNQLAAEI	PGPT0014301_5228	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014301-atpF-K02109	NA	NA
D1-36_00019	258	atpH_2		ATP synthase subunit c	ATGGAAACTGTAGTTGGTCTAACCGCTATCGCTGTTGCACTGTTGATCGGCCTGGGCGCACTGGGTACCGCAATTGGTTTCGGCCTGTTGGGCGGCAAGTTCCTGGAAGGCGCTGCGCGTCAGCCAGAAATGGTTCCAATGCTGCAAGTCAAAATGTTCATCGTTGCCGGTCTGCTCGACGCCGTAACCATGATCGGTGTTGGTATCGCGCTGTTCTTCACCTTTGCGAACCCGTTCGTTGGTCAGATCGCTGGCTGA	METVVGLTAIAVALLIGLGALGTAIGFGLLGGKFLEGAARQPEMVPMLQVKMFIVAGLLDAVTMIGVGIALFFTFANPFVGQIAG	PGPT0014302_988	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014302-atpE-K02110	NA	NA
D1-36_00020	870	atpB	COG0356	ATP synthase subunit a	ATGGCAGAAACAACCGCTTCGGGCTATATCCAGCACCACTTGCAGAACCTGACCTTCGGGCAGCTACCTAACGGCAGCTGGGGCTTTGCTCACACCGCAGCAGAAGCCAAGGAAATGGGCTTCTGGGCTTTCCACGTCGATACCCTCGGCTGGTCGGTCGCGTTGGGTCTGATCTTCGTTTTCCTTTTCCGCATGGCGGCGAAAAAAGCGACTTCCGGTCAGCCAGGTGCACTGCAGAACTTCGTTGAAGTATTGGTCGAATTCGTCGATGGCAGCGTGAAAGACAGCTTCCATGGCCGTAGCCCGGTGATCGCACCGCTGGCACTGACCATCTTCGTCTGGGTGTTCCTGATGAACGCCATCGACCTGGTACCGGTCGACTGGATTCCTCAGCTGGCCATCCTGATCTCCGGCGATGCCCATATCCCGTTCCGCGCCGTGTCGACCACCGACCCGAACGCGACCCTGGGCATGGCGTTCTCGGTTTTCGCACTGATCATTTTCTACAGCATCAAGGTCAAGGGCATCGGCGGCTTCATCGGCGAACTGACCCTTCACCCGTTCGGCAGCAAGAACATCCTTGTTCAGGCCCTGCTGATTCCGGTGAACTTCCTCCTGGAATTCGTGACCCTGATCGCCAAGCCAATCTCTCTGGCCCTGCGTCTGTTCGGCAACATGTATGCCGGCGAGCTGGTGTTCATCCTGATCGCTGTGATGTTCGGCAGCGGCCTGCTCTGGCTCAGCGGCCTGGGCGTGGTGCTGCAATGGGCGTGGGCTGTGTTCCACATCCTGATCATCACCTTGCAGGCGTTCATCTTCATGATGCTGACCATCGTCTACCTGTCGATGGCGCACGAAGAAAACCATTAA	MAETTASGYIQHHLQNLTFGQLPNGSWGFAHTAAEAKEMGFWAFHVDTLGWSVALGLIFVFLFRMAAKKATSGQPGALQNFVEVLVEFVDGSVKDSFHGRSPVIAPLALTIFVWVFLMNAIDLVPVDWIPQLAILISGDAHIPFRAVSTTDPNATLGMAFSVFALIIFYSIKVKGIGGFIGELTLHPFGSKNILVQALLIPVNFLLEFVTLIAKPISLALRLFGNMYAGELVFILIAVMFGSGLLWLSGLGVVLQWAWAVFHILIITLQAFIFMMLTIVYLSMAHEENH	PGPT0014303_769	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014303-atpB-K02108	NA	NA
D1-36_00021	408			hypothetical protein	ATGGAAACACGCACGCCAAACCGCTTGCCGTTCCATCGTCTGGCAGTTTTCCCGGTGTTGATGGCCCAGTTCGTCGTTGTATTGATCGCCGCGTTGGCGCTTTGGCAATGGAAGGGAGTCGTCGCCGGATACTCGGGTCTTTGCGGAGGCCTGATAGCCTTGCTTCCCAATATTTACTTCGCTCACAGGGCATTTCGGTTTTCCGGCGCCCGAGCAGCCCAGGCTATCGTCCGGTCTTTTTATGCCGGCGAGGCGGGGAAACTGATTTTGACGGCAGTGCTGTTTGCGCTGACGTTCGCAGGTGTGAAGCCACTGGCGCCGCTGGCTGTATTCGGCGTGTTCCTGCTGACCCAGATGGTCAGTTGGTTCGCTCCCCTGCTAATGAGAACAAGACTTTCGAGACCTTAG	METRTPNRLPFHRLAVFPVLMAQFVVVLIAALALWQWKGVVAGYSGLCGGLIALLPNIYFAHRAFRFSGARAAQAIVRSFYAGEAGKLILTAVLFALTFAGVKPLAPLAVFGVFLLTQMVSWFAPLLMRTRLSRP	PGPT0030480_748	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-ENERGY_METABOLISM	PUTATIVE-ATP_SYNTHASE_ACITIVTY,PGPT0030480-atpI-K02116
D1-36_00022	873	parB	COG1475	putative chromosome-partitioning protein ParB	ATGGCCGTCAAGAAACGAGGTCTCGGACGTGGACTGGATGCGCTGCTCAGCGGTCCGACTGTCAGTTCGCTGGAAGAGCAGGCCGTGCAGGCCGATCACCGTGAATTGCAGCATTTGCCCCTGGACCTGATCCAGCGTGGCAAATACCAGCCGCGCCGGGACATGGATCCGCAGGCGCTGGAGGAACTGGCCCAGTCGATCAAGACGCAGGGGGTGATGCAACCGATCGTGGTGCGGCCGATTGCCGATGGGCGTTTCGAGATCATCGCTGGCGAACGCCGCTGGCGCGCCAGCCAGCAGGCCGGACAGGAAACCATTCCGGCGATGGTCCGCGATGTGCCGGACGAGACTGCAATCGCCATGGCGCTGATCGAGAACATCCAGCGCGAAGACCTCAACCCTATCGAAGAAGCCGTGGCCCTGCAGCGCTTGCAGCAGGAATTCCAGCTGACCCAGCAACAAGTCGCCGAAGCGGTGGGCAAGTCTCGCGTGACAGTGGCGAACCTGCTGCGGTTGATCGCGTTGCCAGAGGTCATCAAGACCATGTTGTCCCACGGCGACCTGGAAATGGGACATGCCCGGGCATTGCTCGGTTTGCCGGAGAATCAACAGGTTGAAGGGGCGCGACATGTTGTCGCACGCGGCCTGACCGTGCGCCAAACCGAGGCACTGGTTCGTCAATGGCTGAGCGGTAAACCTGCGCCTGTCGAAGCACCAAAACCCGATCCGGATATCGCTCGTCTTGAGCAGCGCCTGGCCGAGCGCCTGGGCTCTGCCGTGCAGATTCGCCATGGAAAGAAGGGCAAGGGTCAGCTGGTGATCGGTTATAACTCCCTCGATGAGCTGCAAGGTGTTCTTGCGCACATTCGCTGA	MAVKKRGLGRGLDALLSGPTVSSLEEQAVQADHRELQHLPLDLIQRGKYQPRRDMDPQALEELAQSIKTQGVMQPIVVRPIADGRFEIIAGERRWRASQQAGQETIPAMVRDVPDETAIAMALIENIQREDLNPIEEAVALQRLQQEFQLTQQQVAEAVGKSRVTVANLLRLIALPEVIKTMLSHGDLEMGHARALLGLPENQQVEGARHVVARGLTVRQTEALVRQWLSGKPAPVEAPKPDPDIARLEQRLAERLGSAVQIRHGKKGKGQLVIGYNSLDELQGVLAHIR	PGPT0014815_6887	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014815-parB|spo0J|yyaA-K03497	NA	NA
D1-36_00023	798	parA		Chromosome partitioning protein ParA	ATGGCTAAGGTATTCGCAATAGCGAACCAGAAAGGTGGTGTGGGCAAGACCACCACCTGCATCAACCTCGCAGCATCCCTGGTCGCCACCAAGCGCCGGGTGCTGTTGATCGACCTCGATCCACAGGGCAACGCCACCATGGGTAGCGGTGTGGATAAACATGGCTTGGAAAACTCCATCTACGACGTCTTGATCGGCGAATGCGATCTGGGCCAGGCCATGCACTTCTCCGAACATGGCGGTTATCAACTGCTGCCGGCCAACCGCGACCTGACGGCGGCCGAAGTGGTGCTGTTGGAAATGCAGATGAAGGAAAGCCGCCTGCGCAGCGCGCTGGCGCCGGTCCGCGAGAATTACGACTACATCCTGATCGACTGCCCACCGTCGCTGTCGATGTTGACCCTCAACGCCTTGGTGGCCGCCGATGGGGTGATTATCCCCATGCAGTGCGAGTACTTTGCCCTTGAAGGGTTGAGCGACCTTGTGGATAACATCAAGCGTATCGCTGAATTGCTGAACCCGGACCTGAAGGTCGAGGGACTGTTGCGGACCATGTACGACCCGCGCCTGAGCCTGATGAACGATGTTTCTGCCCAGCTCAAGGAGCATTTCGGCGAGCAGCTCTACGATACGGTCATCCCGCGCAACATCCGTCTGGCCGAAGCGCCGAGCTACGGCATGCCGGCCCTGGCGTACGATAAACAATCGCGCGGCGCGCTGGCTTACCTGGCGCTGGCAGGCGAGATGGTTCGCCGCCAACGTCGTCAACCACGCATCGCTGCAGCCCAGCCAACTTAA	MAKVFAIANQKGGVGKTTTCINLAASLVATKRRVLLIDLDPQGNATMGSGVDKHGLENSIYDVLIGECDLGQAMHFSEHGGYQLLPANRDLTAAEVVLLEMQMKESRLRSALAPVRENYDYILIDCPPSLSMLTLNALVAADGVIIPMQCEYFALEGLSDLVDNIKRIAELLNPDLKVEGLLRTMYDPRLSLMNDVSAQLKEHFGEQLYDTVIPRNIRLAEAPSYGMPALAYDKQSRGALAYLALAGEMVRRQRRQPRIAAAQPT				NA	NA	NA	NA	NA
D1-36_00024	636	rsmG	COG0357	Ribosomal RNA small subunit methyltransferase G	ATGGTCACCTCGCAACACGCTGAAGAGTTATCCACAGGTGCCCGCCAGCTCGGCGTGAGCCTGAGCGAAGCCCAGCATGCGCAACTGCTGGGCTATCTGGCGCTGTTGATCAAGTGGAACAAGGCCTACAACCTGACCGCGGTACGCGATCCCGACGAGATGGTTTCGCGGCATCTGCTCGACAGTCTGAGTGTGATGTCCTTCGTCGAGAACGGTCGGTGGCTGGACGTTGGCAGTGGCGGTGGCATGCCGGGCATCCCGCTGGCAATCCTGTTTCCGGATTCTCAAGTGACCTGCCTGGACAGCAACGGCAAGAAAACCCGCTTCCTGACCCAGGTCAAACTCGAACTCAAACTGGATAACCTCCAGGTTATCCACAGCCGCGTCGAAGCTTTCCAGCCTGAAAAGCCTTTCAACGGAATCATCTCAAGGGCTTTCAGCAGCATGGAGAACTTCAGCAACTGGACGCGCCACCTTGGCGACGCCAATACGCGCTGGCTGGCAATGAAGGGCGTTCATCCGGCCGATGAGCTGGTAGCATTGCCGGCAGACTTCCACCTCGATAGCGAACACGCCTTGGCCGTACCCGGTTGCCAAGGCCAACGCCATCTGCTGATACTGCGCCGCACGGCATGA	MVTSQHAEELSTGARQLGVSLSEAQHAQLLGYLALLIKWNKAYNLTAVRDPDEMVSRHLLDSLSVMSFVENGRWLDVGSGGGMPGIPLAILFPDSQVTCLDSNGKKTRFLTQVKLELKLDNLQVIHSRVEAFQPEKPFNGIISRAFSSMENFSNWTRHLGDANTRWLAMKGVHPADELVALPADFHLDSEHALAVPGCQGQRHLLILRRTA				NA	NA	NA	NA	NA
D1-36_00025	1899	mnmG	COG0445	tRNA uridine 5-carboxymethylaminomethyl modification enzyme MnmG	GTGGATTTCCCTTCCCGTTTTGAAGTGATCGTCATCGGCGGCGGTCATGCCGGTACCGAGGCAGCACTTGCATCAGCACGCATGGGCGCTAAAACCCTGCTGCTGACGCATAACGTGGAAACCCTCGGTGCCATGAGCTGCAACCCCGCCATTGGTGGCATCGGCAAGAGCCACCTGGTCAAGGAAATCGACGCCCTTGGCGGTGCGATGGCCATGGCCACGGATAAAGGGGGCATTCAGTTTCGCGTGTTGAACAGCCGCAAGGGCCCAGCCGTGCGCGCCACCCGCGCCCAGGCCGATCGAGTCCTGTACAAGGCCGCTGTCCGTGAAATCCTGGAAAACCAGCCGAACCTGTGGATATTTCAACAAGCAGCCGATGACCTGATCGTCGAGCAGGACCAAGTACGCGGTGTCGTCACGCAAATGGGTCTGCGTTTCTTCGCCGATTCCGTGGTGTTGACCACCGGGACCTTCCTCGGGGGACTTATCCACATCGGTTTGCAGAATTTTTCCGGCGGTCGCGCTGGTGATCCTCCATCGATCGCCCTGGCCCAGCGCCTGCGTGAACTGCCGCTGCGTGTTGGTCGGTTGAAAACCGGTACACCACCGCGTATCGACGGCAAGTCGGTGGATTTTTCGGTGATGACCGAGCAACCTGGCGATACTCCGATCCCGGTGATGTCGTTCATGGGCAACAAGGAACAGCATCCACGGCAGGTCAGTTGCTGGATCACCCATACCAACGCTCGCACCCACGAAATCATCGCGGCGAACCTCGATCGTTCGCCGATGTATTCCGCTGCTGGTGAAATCGAAGGTGTCGGCCCCCGCTATTGCCCGTCGATCGAAGACAAGATCCATCGTTTTGCCGACAAGGAAAGCCATCAGGTGTTCATCGAACCGGAAGGTTTGACCACCCATGAGCTGTATCCGAACGGGATATCCACAAGTCTGCCGTTCGACGTGCAATTGCAGATCGTGCAATCGATCCGTGGCATGGAGAACGCGCACATCGTGCGTCCGGGTTATGCGATCGAGTACGACTACTTCGATCCGCGCGATCTGAAGTACAGCCTGGAAACCAAAGTTATCGGCGGGCTGTTCTTCGCCGGACAGATCAACGGCACCACCGGCTACGAAGAAGCGGGTGCCCAGGGTTTGCTCGCCGGAGCCAACGCCGCACTGCTCGCCAAGGGTAAGGAAGCCTGGTGCCCGCGCCGTGATGAGGCGTACATCGGTGTTCTGGTGGACGACCTGATTACCCTGGGTACTCAGGAACCGTATCGGATGTTCACCTCCCGCGCCGAATATCGCCTGATCCTGCGTGAAGACAACGCCGATCTGCGTCTGACTGAAAAAGGGCGTGAACTGGGCTTGGTGGATGACGTGCGTTGGGCCGCGTTCTGCAAGAAGCGCGAAAGTATCGAGCTGGAAGAGCAGCGCCTGAAAAGTACCTGGGTTCGCCCGGGCACCGAACAGGGCGATGCGATTGCAGCTCGGTTCGGTACGCCGTTGACCCACGAATACAACCTGCTCAACTTGTTGAGCCGTCCGGAAATCGATTACGCCGGGCTGGTGGAAGTGACCGGTCAAGGTGCGGAGGATCCGCAAGTCGCCGAACAGGTCGAAATCAAGACCAAATACGCCGGTTACATCGACCGCCAGCAGGATGAAATCGCTCGCTTGCGCGCCAGCGAAGACACCAAATTGCCTGTGGATATCGATTACACCGGCATCTCCGGATTGTCGAAAGAGATCCAGAGCAAACTCGGTGCGACGCGGCCAGAGACCCTGGGCCAGGCCTCGCGCATTCCCGGCGTCACGCCGGCGGCCATTTCACTGTTGATGATTCATTTGAAAAAACGCGGCGCGGGCCGCCAGTTGGAGCAGAGCGCTTGA	MDFPSRFEVIVIGGGHAGTEAALASARMGAKTLLLTHNVETLGAMSCNPAIGGIGKSHLVKEIDALGGAMAMATDKGGIQFRVLNSRKGPAVRATRAQADRVLYKAAVREILENQPNLWIFQQAADDLIVEQDQVRGVVTQMGLRFFADSVVLTTGTFLGGLIHIGLQNFSGGRAGDPPSIALAQRLRELPLRVGRLKTGTPPRIDGKSVDFSVMTEQPGDTPIPVMSFMGNKEQHPRQVSCWITHTNARTHEIIAANLDRSPMYSAAGEIEGVGPRYCPSIEDKIHRFADKESHQVFIEPEGLTTHELYPNGISTSLPFDVQLQIVQSIRGMENAHIVRPGYAIEYDYFDPRDLKYSLETKVIGGLFFAGQINGTTGYEEAGAQGLLAGANAALLAKGKEAWCPRRDEAYIGVLVDDLITLGTQEPYRMFTSRAEYRLILREDNADLRLTEKGRELGLVDDVRWAAFCKKRESIELEEQRLKSTWVRPGTEQGDAIAARFGTPLTHEYNLLNLLSRPEIDYAGLVEVTGQGAEDPQVAEQVEIKTKYAGYIDRQQDEIARLRASEDTKLPVDIDYTGISGLSKEIQSKLGATRPETLGQASRIPGVTPAAISLLMIHLKKRGAGRQLEQSA				NA	NA	NA	NA	NA
D1-36_00026	1371	mnmE	COG0486	tRNA modification GTPase MnmE	ATGAGCGCACCGCGTGAAACCATCGCCGCCGTTGCCACCGCTCAAGGTCGCGGCGGTGTCGGCATCGTCCGTATTTCGGGGCCGTTGGCCAGTGTCGCGGCCAACGCGATCAGCGGTCGTGAGCTCAGACCGAGGTTTGCCCATTACGGCCCGTTCTTCGATTCGCAGCGGCAAGTGCTCGATGAAGGGCTGGCCTTGTATTTCCCGGGGCCTAACTCATTCACCGGTGAAGATGTGTTGGAGCTGCAGGGCCACGGCGGCCCGGTTGTCCTGGACATGTTGCTCCAGCGTTGCCTCGAGCTGGGCTGTCGCCTGGCGCGGCCGGGGGAATTCAGCGAACGAGCATTCCTCAACGACAAACTCGACCTGGCCCAGGCCGAGGCCATTGCCGATCTCATCGAAGCGAGCTCCGCGCAAGCGGCACGTAATGCGTTGCGCTCGTTGCAAGGGGCATTTTCACAGCGTGTGCATAACCTCACCGAGCAACTGATCGGCCTACGCATCTACGTCGAGGCCGCAATCGATTTCCCCGAAGAGGAAATCGACTTTCTCGCCGATGGCCACGTGCTGAGCATGCTCGATAAGGTCCGCGATGAATTATCCACAGTCCTGCGTGAAGCTGGGCAGGGTGCCTTGCTCCGTGACGGGATGACAGTGGTGATTGCCGGTCGGCCGAACGCCGGCAAATCCAGTCTGCTTAACGCCTTAGCCGGTCGCGAAGCAGCGATCGTCACCGAGATTGCCGGCACCACCCGAGACATCCTGCGCGAACATATCCACATCGATGGAATGCCTCTGCACGTGGTGGACACCGCTGGATTGCGCGACACCGATGACCAGGTCGAAAAAATTGGTGTTGAACGTGCCCTGAAGGCCATCAGTGAAGCCGACCGTGTATTGCTGGTGGTGGACGCGACTGCGCCGGAAGCGGACGATCCTTTTGCCTTGTGGCCTGAGTTCCTCCAAGTTCGCCCGGATCCATCGAAAGTCACGCTGATTCGTAACAAGGCTGACCTGACCGGGGAGGCGATTGCCCTCGAAGTCAGCGACGACGGCCACGTGACCATCAGCCTAAGCGCGAAATCAGCGGGCGAGGGGCTGGAATTGCTGCGCGACCATCTCAAGGCTTGCATGGGTTATGAACAGACCTCGGAGAGCAGCTTCAGCGCCAGGCGCAGACACCTCGAAGCACTGCGCCACGCCAGCGCGGCCTTGGAGCACGGCCGCGCACAATTGACCTTGGCGGGGGCAGGAGAACTGCTGGCAGAAGATCTTCGCCAGGCTCAACAGTTCCTCGGGGAAATTACCGGCGCCTTCAGCTCTGATGATCTGTTGGGGCGGATCTTTTCCAGCTTCTGCATCGGTAAATAA	MSAPRETIAAVATAQGRGGVGIVRISGPLASVAANAISGRELRPRFAHYGPFFDSQRQVLDEGLALYFPGPNSFTGEDVLELQGHGGPVVLDMLLQRCLELGCRLARPGEFSERAFLNDKLDLAQAEAIADLIEASSAQAARNALRSLQGAFSQRVHNLTEQLIGLRIYVEAAIDFPEEEIDFLADGHVLSMLDKVRDELSTVLREAGQGALLRDGMTVVIAGRPNAGKSSLLNALAGREAAIVTEIAGTTRDILREHIHIDGMPLHVVDTAGLRDTDDQVEKIGVERALKAISEADRVLLVVDATAPEADDPFALWPEFLQVRPDPSKVTLIRNKADLTGEAIALEVSDDGHVTISLSAKSAGEGLELLRDHLKACMGYEQTSESSFSARRRHLEALRHASAALEHGRAQLTLAGAGELLAEDLRQAQQFLGEITGAFSSDDLLGRIFSSFCIGK				NA	NA	NA	NA	NA
D1-36_00027	1683	yidC		Membrane protein insertase YidC	ATGGATATCAAACGCACGATCCTGATCGTCGCCCTGGCAATCGTGTCCTACGTCATGGTCCTTAAATGGAACCAGGACTACGGCCAGGCTGCCCTGCCGACTCAGAATGTTGCAGCCAGCAATACCGCACCGAGCCTGCCGGATGCTCCAGTTGGCAACAACGCTGCCAACAATGACGACATCCCACGCGCGGCAAGCGATACCAGCGCTCCTGCCGAAGCCCCAGTGGCCGTAAGCAAAGATCTCATCCAGATCAAGACGGACGTGCTCGAGCTGGCAATCGACCCACAAGGTGGTGACGTCGCGCAGCTGAAGCTGCCGCTGTACCCACGTCGTCAGGATCATCCGGAAATTCCGTTCCAGTTGTTCGACAACGGTAACGAGCGCACCTATCTGGCCCAAAGTGGCCTGATCGGTACCAACGGTCCGGATTCGAACCCGGCCGGTCGCCCGATCTACTCTGCCGAGAAGAAGACTTATCAACTGGCTGACGGTCAGGACCAACTGGTCGTGGACCTGAAGTTCAGCAAGGACGGCGTCAACTACATCAAACGTTTCACTGTGAAACGTGGCATGTACGACGTAACCGTCTCTTATCTGATCGACAACCAGAGCGCCCAACCTTGGTCCGGTGCGATGTTCGCGCAACTCAAGCGTGATGCCAGCGACGATCCATCCTCCAGCACCGCCACCGGCACCGCGACTTACCTGGGCGCTGCCCTGTGGACAAGTTCGGAGCCGTACAAAAAAGTGTCCATGAAGGACATGGACAAGGCTCAGCTCAAGGAAACCGTCCAAGGTGGCTGGGTTGCCTGGCTGCAGCACTATTTTGTAACTGCGTGGATCCCGCAAAAAGGCGACAGTAACGTCGTCCAGACGCGTAAAGACAGCAAAGGCAACTTCATCATCGGTTATACCGGCCCGACATTGACTGCCGCGCCCGGTGCAAAAGCCGAAACGAGCGCCGTTCTGTATGCCGGTCCAAAAAGCCAGGCCGTGCTGAAAGAGTTGTCCCCAGGTCTGGAATTGACTGTTGACTATGGCTTCCTTTGGTTCATTGCCCAGCCAATCTTCTGGCTGCTGCAACATATCCACAGCATCGTCGGCAACTGGGGTTGGTCGATCATCTTCCTGACCATGCTGATCAAGGGGATCTTCTTCCCGCTGTCGGCTGCCAGCTACAAATCGATGGCACGGATGCGTGCAGTGGCGCCGAAACTGGCCGCCCTGAAAGAACAACATGGCGATGACCGGCAGAAAATGTCTCAGGCCATGATGGAGTTGTACAAGAAGGAGAAGATCAACCCGCTGGGTGGTTGCTTGCCGATTCTTGTACAAATGCCTGTGTTCCTCGCGCTTTACTGGGTCTTGCTGGAAAGCGTGGAGATGCGCCAGGCTCCGTTCATGCTGTGGATTACGGACCTGTCGATCAAGGATCCGTTCTTCATCCTGCCGATCATCATGGGCGCCACCATGTTCATCCAGCAGCAGCTGAACCCGACACCTCCGGACCCGATGCAGGCGAAGGTCATGAAAATGATGCCAATCATCTTCACCTTCTTCTTCCTGTGGTTCCCGGCGGGTCTTGTGCTGTACTGGGTTGTGAACAACGTGCTGTCGATCACCCAGCAGTGGTACATCACGCGTAAGATCGAAGCGGCTACGAAAAAAGCCGAGGCGTAA	MDIKRTILIVALAIVSYVMVLKWNQDYGQAALPTQNVAASNTAPSLPDAPVGNNAANNDDIPRAASDTSAPAEAPVAVSKDLIQIKTDVLELAIDPQGGDVAQLKLPLYPRRQDHPEIPFQLFDNGNERTYLAQSGLIGTNGPDSNPAGRPIYSAEKKTYQLADGQDQLVVDLKFSKDGVNYIKRFTVKRGMYDVTVSYLIDNQSAQPWSGAMFAQLKRDASDDPSSSTATGTATYLGAALWTSSEPYKKVSMKDMDKAQLKETVQGGWVAWLQHYFVTAWIPQKGDSNVVQTRKDSKGNFIIGYTGPTLTAAPGAKAETSAVLYAGPKSQAVLKELSPGLELTVDYGFLWFIAQPIFWLLQHIHSIVGNWGWSIIFLTMLIKGIFFPLSAASYKSMARMRAVAPKLAALKEQHGDDRQKMSQAMMELYKKEKINPLGGCLPILVQMPVFLALYWVLLESVEMRQAPFMLWITDLSIKDPFFILPIIMGATMFIQQQLNPTPPDPMQAKVMKMMPIIFTFFFLWFPAGLVLYWVVNNVLSITQQWYITRKIEAATKKAEA	PGPT0024530_1700	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
D1-36_00028	477	rnpA		Ribonuclease P protein component	ATGGTCGTGCCGTCCTGTCGCGTCGTCGCGCCAAAGGTCGTGCGCGTCTGGCAGTTTGATAATCCGGCACTGGAGGTGAGTCAGGACTTCAGTCGGGAAAAGCGTCTGCTTACCCCCCGGCATTTCAAGGCAGTCTTTGACTCCCCTACCGGCAAGGTTCCGGGGAAAAATCTCCTGCTCCTTGCGCGCAGTAACGATCTCGATCACCCCCGACTTGGGCTGGTTATCGGGAAAAAGAGCGTTAAGCTCTCCGTTCAGCGCAATCGCCTCAAGCGTTTGATGCGCGAATCGTTTCGCCTGAATCAGGATTCACTGGTGGGGTGGGACATTGTGATCGTTGCGCGCAAAGGTTTGGGTGACGTAGAAAACCCCGAATTGATTCAGCATTTCGGCAAGCTCTGGAAACGTCTGGCCCGTAACAAGCCAGCACCAGCAGCCAACACCGAAACTGTAGGGGTAGACAGTACCGATGCGTAA	MVVPSCRVVAPKVVRVWQFDNPALEVSQDFSREKRLLTPRHFKAVFDSPTGKVPGKNLLLLARSNDLDHPRLGLVIGKKSVKLSVQRNRLKRLMRESFRLNQDSLVGWDIVIVARKGLGDVENPELIQHFGKLWKRLARNKPAPAANTETVGVDSTDA				NA	NA	NA	NA	NA
D1-36_00029	1533	dnaA	COG0593	Chromosomal replication initiator protein DnaA	ATGTCCGTGTCAGTGGAACTTTGGCAGCAGTGCGTGGAGCTTTTGCGCGATGAGCTGCCTGCCCAACAATTCAACACTTGGATCCGTCCACTACAGGTCGAAGCCGAAGGCGACGAGTTGCGTGTCTATGCACCGAACCGTTTCGTCCTCGACTGGGTCAACGAAAAGTACCTGGGCCGGGTCATGGAACTGCTTGATGAGCATGGCAATGGCATGGCGCCTGCGTTGTCCTTATTAATAGGCAGCAAACGTAGCTCCGCCCCCCGCGCCGCGCCCAACGCGCCGCTGGCTGCTGCTGCATCACAGGCCCAGCAGGCCGCGCCGGTACCGGTCAACAACCATGCCGCCCCAGCGCCCGCGCCAGCCCCGAGCAAGCGCAATGCACAAAAAGTCGCCGAGGTCAGTGAAGAGCCTTCCCGGGACAGCTTCGACCCGATGGCCGGGGCGAGCTCCCAGCAGGCGCCGGTGCGTACCGAACAACGCACCGTCCAGGTCGAAGGCGCACTGAAGCACACCAGCTATCTGAACCGGACCTTTACCTTCGAGAATTTCGTTGAAGGTAAATCCAACCAATTGGCTCGCGCCGCGGCCTGGCAGGTGGCGGATAACCCCAAGCACGGCTACAACCCGCTCTTTCTTTATGGCGGCGTCGGCCTGGGTAAGACCCACTTGATGCATGCGGTGGGCAACCATCTATTAAAGAAGAACCCGAACGCCAAGGTTGTGTACCTGCATTCCGAGCGTTTCGTGGCCGATATGGTCAAGGCGTTGCAGCTCAATGCTATCAACGAGTTCAAGCGTTTCTACCGTTCGGTCGACGCCTTGCTGATCGACGACATTCAATTCTTCGCTCGCAAGGAACGTTCACAGGAAGAGTTCTTCCACACCTTCAACGCATTGCTTGAAGGCGGGCAGCAAGTCATTCTCACCAGCGACCGCTACCCGAAAGAGATCGAAGGCCTTGAGGAACGCCTCAAGTCGCGTTTCGGTTGGGGCCTGACGGTGGCCGTCGAGCCGCCTGAGCTGGAAACCCGGGTCGCGATCCTGATGAAGAAAGCCGATCAGGCCAAGGTCGAGCTTCCTCATGACGCCGCGTTCTTCATCGCCCAGCGTATTCGCTCGAACGTGCGTGAGCTTGAAGGTGCCCTCAAGCGGGTGATCGCCCATTCCCATTTCATGGGCCGCGATATCACCATCGAGCTGATCCGCGAGTCGTTAAAGGACCTGCTGGCGCTTCAGGACAAACTGGTGTCTGTGGATAACATTCAGCGTACCGTTGCTGAATATTACAAAATCAAGATTTCCGACCTGCTTTCGAAACGTCGTTCACGTTCGGTGGCTCGACCGCGACAGGTGGCCATGGCCTTGTCCAAGGAACTGACCAACCACAGCCTGCCGGAAATCGGCGACGTGTTTGGTGGACGCGATCACACCACGGTGCTGCACGCCTGCCGCAAGATCAACGAACTTAAGGAATCCGACGCGGACATCCGCGAGGACTACAAGAACCTGCTGCGTACATTGACCACTTGA	MSVSVELWQQCVELLRDELPAQQFNTWIRPLQVEAEGDELRVYAPNRFVLDWVNEKYLGRVMELLDEHGNGMAPALSLLIGSKRSSAPRAAPNAPLAAAASQAQQAAPVPVNNHAAPAPAPAPSKRNAQKVAEVSEEPSRDSFDPMAGASSQQAPVRTEQRTVQVEGALKHTSYLNRTFTFENFVEGKSNQLARAAAWQVADNPKHGYNPLFLYGGVGLGKTHLMHAVGNHLLKKNPNAKVVYLHSERFVADMVKALQLNAINEFKRFYRSVDALLIDDIQFFARKERSQEEFFHTFNALLEGGQQVILTSDRYPKEIEGLEERLKSRFGWGLTVAVEPPELETRVAILMKKADQAKVELPHDAAFFIAQRIRSNVRELEGALKRVIAHSHFMGRDITIELIRESLKDLLALQDKLVSVDNIQRTVAEYYKIKISDLLSKRRSRSVARPRQVAMALSKELTNHSLPEIGDVFGGRDHTTVLHACRKINELKESDADIREDYKNLLRTLTT	PGPT0014800_839	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-PILUS|FIMBRIAE_SYSTEM	MOTILITY-PILUS_SYSTEM,PGPT0014800-dnaA-K02313	NA	NA
D1-36_00030	1104	dnaN	COG0592	Beta sliding clamp	ATGCATTTCACCATTCAACGCGAAGCCCTGTTGAAACCCCTGCAACTGGTCGCGGGCGTCGTCGAACGCCGCCAGACCTTGCCGGTACTTTCCAACGTGCTGCTGGTTGTCGAAGGCCAGCAATTGTCGCTGACCGGTACCGACCTGGAAGTCGAGCTGGTTGGTCGTGTCCAACTCGAAGAGCCGGCCGATCCGGGCTCCATCACCGTGCCTGCGCGTAAGCTGATGGATATTTGCAAGAGCCTGCCAAACGATGCGCTGATCGATATCAAGGTTGATGAGCAAAAGCTCGTCGTCAAGGCTGGTCGCAGCCGTTTCACTTTGTCGACCCTGCCGGCCAACGATTTCCCGACGGTCGAGGAAGGCCCGGGATCGCTGACTTGCAGCCTGGAGCAGAGCAAGCTGCGCCGCCTGATCGAGCGCACCAGTTTCGCCATGGCCCAGCAGGATGTGCGTTATTACCTCAACGGCATGCTGTTGGAAGTGTCTGCCGGGATCATCCGCGCCGTGGCTACCGACGGTCATCGCTTGGCGATGTGCTCGATGCAGGCTGATATCGGTCAGCCGGATCGCCATCAGGTAATCGTGCCGCGTAAGGGCATCCTGGAGCTGGCCCGTCTGCTGACCGAGCCGGACGGCAACGTCAGCATCGTGTTGGGTCAGCACCACATCCGCGCCACGACTGGCGAGTTCACTTTCACGTCGAAACTGGTGGACGGCAAGTTCCCCGATTACGAGCGTGTGCTGCCAAAAGGTGGTGACAAGCTGGTACTGGGCGATCGCCAAGCGCTGCGCGAAGCGTTCAGCCGTACCGCGATCCTCTCCAACGAAAAATACCGCGGCATTCGTTTGCAGTTGGCCAACGGGCAGCTGAAGATCCAGGCGAACAACCCCGAGCAGGAAGAAGCGGAAGAAGAAGTCGGCGTGGACTACAACGGCGGCTCCCTGGAAATCGGCTTCAACGTCAGCTATCTGCTGGACGTGCTGGGCGTGATGACCACCGAGCAAGTGCGTCTGATCTTGTCCGACTCCAACAGCAGTGCGCTGGTGCAGGAGTCTGATAACGACGATTCGGCTTACGTTGTCATGCCGATGCGTCTGTAA	MHFTIQREALLKPLQLVAGVVERRQTLPVLSNVLLVVEGQQLSLTGTDLEVELVGRVQLEEPADPGSITVPARKLMDICKSLPNDALIDIKVDEQKLVVKAGRSRFTLSTLPANDFPTVEEGPGSLTCSLEQSKLRRLIERTSFAMAQQDVRYYLNGMLLEVSAGIIRAVATDGHRLAMCSMQADIGQPDRHQVIVPRKGILELARLLTEPDGNVSIVLGQHHIRATTGEFTFTSKLVDGKFPDYERVLPKGGDKLVLGDRQALREAFSRTAILSNEKYRGIRLQLANGQLKIQANNPEQEEAEEEVGVDYNGGSLEIGFNVSYLLDVLGVMTTEQVRLILSDSNSSALVQESDNDDSAYVVMPMRL				NA	NA	NA	NA	NA
D1-36_00031	1104	recF	COG1195	DNA replication and repair protein RecF	ATGTCCTTAAGTCGCGTCTCGGTCACCGCGGTGCGCAATCTGCACCCGGTGACCTTCTCCCCTTCCCCCCGCATCAATATTCTTTACGGCGCCAACGGCAGCGGCAAGACCAGCGTGCTGGAAGCCGTGCACCTGCTTGGGCTTGCCCGTTCGTTTCGCAGCACCCGTCTGTTGCCGGTCATTCAGTACGACCAACTGGCGTGTACGGTGTTTGGCCAAGTGGAACTGGCGGAAGGCGGCCATAGTGCCCTGGGGATCTCGCGGGACCGGCAAGGCGAGTTCCAGATCCGTATTGATGGGCAGAACGCCCGCAGCGCGGCCCAACTGGCCGAGATCTTGCCGTTGCAGCTGATCAACCCGGACAGCTTCCGTTTGTTGGAAGGCGCCCCCAAGATCCGCCGACAGTTTCTGGACTGGGGCGTGTTCCACGTGGAACCGCGTTTCATGGCGACCTGGCAACGCTTGCAGAAGGCGCTGCGCCAGCGAAACTCTTGGCTGCGGCATGGTACACTTGACGCCGTTTCGCAAGCGGTTTGGGACAAGGAACTGTGCCAGGCCAGCGCTGAAATCGATGAATACCGCCGCGCTTACATCAAAGCCTTGAAACCGGTCTTCGAGCAGACCTTGAGCGAACTGGTTGAGCTTGAGGGCCTGACGCTCAGCTATTACCGAGGCTGGGATAAGGACCGGGAATTGAGTGCCGTGCTGGCTGGCTCGCTGCAGCGCGACCAGCAGATGGGTCACACCCAGGCTGGACCTCAACGCGCTGACCTGCGGCTTCGATTGGGCGCGCATAATGCCGCGGACATCTTGTCCCGGGGGCAACAGAAGTTGGTGGTGTGCGCCTTGCGTATCGCCCAAGGGCATCTGGTCAGCCAGGCCCGCCGCGGCCAGTGTATTTATCTGGTGGATGACCTGCCGTCCGAGCTGGACGAAGCCCACCGTCGGGCGTTATGCCGCTTGCTGGAAGACTTACGCTGCCAAGTGTTCATCACTTGTGTAGACCACGAATTATTGAGGGAAGGCTGGCAGACGGAAACGCCAGTCGCTCTGTTCCACGTGGAACAGGGCCGTATCACCCAGACCCACGACCATCGGGAGTGA	MSLSRVSVTAVRNLHPVTFSPSPRINILYGANGSGKTSVLEAVHLLGLARSFRSTRLLPVIQYDQLACTVFGQVELAEGGHSALGISRDRQGEFQIRIDGQNARSAAQLAEILPLQLINPDSFRLLEGAPKIRRQFLDWGVFHVEPRFMATWQRLQKALRQRNSWLRHGTLDAVSQAVWDKELCQASAEIDEYRRAYIKALKPVFEQTLSELVELEGLTLSYYRGWDKDRELSAVLAGSLQRDQQMGHTQAGPQRADLRLRLGAHNAADILSRGQQKLVVCALRIAQGHLVSQARRGQCIYLVDDLPSELDEAHRRALCRLLEDLRCQVFITCVDHELLREGWQTETPVALFHVEQGRITQTHDHRE				NA	NA	NA	NA	NA
D1-36_00032	2418	gyrB	COG0187	DNA gyrase subunit B	TTGAGCGAAGAAAATACGTACGACTCAACGAGCATTAAAGTGCTGAAAGGCCTGGATGCCGTACGCAAACGTCCCGGTATGTACATTGGCGACACTGATGATGGTAGCGGCCTGCACCACATGGTGTTCGAGGTGGTCGACAACTCCATCGACGAAGCCCTCGCCGGCCATTGCGACGACATCAGCATCATCATCCACCCGGATGAGTCCATCACCGTTCGTGACAACGGCCGTGGCATCCCGGTGGACGTACACAAAGAGGAAGGTGTTTCCGCTGCCGAGGTCATCATGACCGTCCTCCACGCAGGCGGGAAATTCGACGATAACTCCTACAAGGTTTCCGGCGGGTTGCACGGCGTAGGTGTTTCGGTGGTGAACGCACTGTCCGAAGAACTGGTGCTGACCGTTCGCCGCAGCGGCAAGATCTGGGAACAGACTTATGTCCATGGCGTGCCCCAGGCACCGATGGCGATCGTTGGCGACAGCGAGACCACGGGCACCCAGATCCACTTCAAGGCTTCCAGCGAAACCTTCAAGAACATCCATTTCAGCTGGGACATCCTGGCCAAGCGGATTCGTGAACTGTCCTTCCTCAACTCCGGTGTCGGCATCGTCCTCAAGGACGAGCGCAGCGGCAAGGAAGAGCTGTTCAAGTATGAAGGCGGCCTGCGTGCGTTCGTTGAATACCTGAACACCAACAAGACTGCGGTCAACCAGGTGTTCCACTTCAATGTGCAGCGCGACGACGGCATCGGTGTGGAAATCGCCCTGCAGTGGAACGACAGCTTCAACGAGAACCTGTTGTGTTTCACCAACAATATCCCGCAGCGCGACGGCGGAACCCACCTGGTGGGCTTCCGTTCGGCGCTCACGCGTAACTTGAACAACTACATCGAACAGGAAGGCCTGGCGAAGAAGCATAAGGTCGCCACTACCGGTGACGATGCCCGTGAAGGCTTGACCGCGATCATTTCGGTCAAGGTGCCCGATCCGAAATTCAGCTCCCAGACGAAGGACAAGCTGGTGTCTTCCGAAGTGAAGACTGCGGTCGAACAGGAAATGGGGAAATACTTCTCTGACTTCCTGCTGGAGAACCCCAACGAAGCCAAGCTGGTGGTCGGCAAGATGATCGACGCCGCCCGCGCCCGTGAAGCGGCGCGCAAGGCTCGTGAGATGACTCGCCGCAAAGGCGCGCTGGACATCGCGGGCCTGCCGGGCAAACTGGCGGACTGCCAGGAAAAGGACCCTGCCCTGTCCGAGCTGTACCTCGTGGAAGGTGACTCTGCTGGTGGTTCCGCCAAGCAGGGTCGTAACCGTCGCACCCAGGCCATCCTGCCGTTGAAAGGCAAGATCCTCAACGTCGAGAAAGCGCGCTTCGACAAGATGATTTCCTCCCAGGAAGTCGGCACGCTTATCACCGCGCTGGGCTGTGGCATCGGCCGTGAAGAGTACAACATCGACAAGCTGCGCTATCACAACATCATCATCATGACCGACGCTGACGTTGACGGTTCGCACATCCGCACCCTGCTGCTGACGTTCTTCTTCCGTCAGTTGCCGGAGCTGATCGAGCGCGGCTACATCTATATCGCCCAACCACCGTTGTACAAGGTCAAGAAAGGCAAGCAAGAGCAATACATCAAAGACGACGACGCCATGGAAGAGTACATGACGCAGTCGGCCCTGGAAGACGCGAGCCTGCACCTGAACGAAGATGCGCCGGGCATTTCCGGTGAAGCCCTTGAGCGCCTGGTGAATGACTTCCGCCTGGTAATGAAGACCCTCAAGCGTCTGTCGCGTCTGTATCCGCAGGAACTGACCGAGCACTTCATCTACCTGCCGGCCGTAAGCCTGGAGCAACTGTCCGATCACGCTGCCATGCAGGATTGGCTGGCCCAGTATGAAGTCCGCCTGCGTACCGTGGAAAAATCCGGCCTGGTCTACAAGGCCAGCCTGCGTGAAGACCGTGAACGCAACGTATGGCTGCCTGAAGTCGAACTGATTTCCCACGGCCTGTCGAACTACGTCACCTTCAACCGCGACTTCTTCAGCAGCAACGACTACAAGACGGTCGTCTCTCTCGGCGCTCAGTTGAGCACGCTGCTAGACGAAGGGGCTTACATCCAGCGCGGTGAGCGCAAGAAGTCCGTGACTGAGTTCAAAGAAGCCCTTGAATGGCTGATGGCTGAAAGCACCAAGCGCCACACCATCCAGCGATACAAAGGGCTGGGCGAGATGAACCCGGACCAACTGTGGGAAACCACCATGGACCCGGGCTCGCGTCGCATGCTGAAAGTCACCATCGAAGACGCCATTGGCGCGGACCAGATCTTCAATACCCTGATGGGGGATGCGGTCGAGCCACGTCGTGACTTCATCGAGAGCAACGCATTGGCGGTATCCAACCTGGATTTCTGA	MSEENTYDSTSIKVLKGLDAVRKRPGMYIGDTDDGSGLHHMVFEVVDNSIDEALAGHCDDISIIIHPDESITVRDNGRGIPVDVHKEEGVSAAEVIMTVLHAGGKFDDNSYKVSGGLHGVGVSVVNALSEELVLTVRRSGKIWEQTYVHGVPQAPMAIVGDSETTGTQIHFKASSETFKNIHFSWDILAKRIRELSFLNSGVGIVLKDERSGKEELFKYEGGLRAFVEYLNTNKTAVNQVFHFNVQRDDGIGVEIALQWNDSFNENLLCFTNNIPQRDGGTHLVGFRSALTRNLNNYIEQEGLAKKHKVATTGDDAREGLTAIISVKVPDPKFSSQTKDKLVSSEVKTAVEQEMGKYFSDFLLENPNEAKLVVGKMIDAARAREAARKAREMTRRKGALDIAGLPGKLADCQEKDPALSELYLVEGDSAGGSAKQGRNRRTQAILPLKGKILNVEKARFDKMISSQEVGTLITALGCGIGREEYNIDKLRYHNIIIMTDADVDGSHIRTLLLTFFFRQLPELIERGYIYIAQPPLYKVKKGKQEQYIKDDDAMEEYMTQSALEDASLHLNEDAPGISGEALERLVNDFRLVMKTLKRLSRLYPQELTEHFIYLPAVSLEQLSDHAAMQDWLAQYEVRLRTVEKSGLVYKASLREDRERNVWLPEVELISHGLSNYVTFNRDFFSSNDYKTVVSLGAQLSTLLDEGAYIQRGERKKSVTEFKEALEWLMAESTKRHTIQRYKGLGEMNPDQLWETTMDPGSRRMLKVTIEDAIGADQIFNTLMGDAVEPRRDFIESNALAVSNLDF				NA	NA	NA	NA	NA
D1-36_00033	735			hypothetical protein	ATGCGTGTCGCCATACTGGATGACGAACCGGCCGAACTACGCCGGGTGGAACAGACACTGCAACAGATCCCCGGAAGGGGCGAGCAAGCCTGGACACTGCATAGTTTCGAACGAAGCGAAGATCTGTTGCGCCAATTGCGCCGCGAAACATTCGACCTGCTGATACTCGACTGGCAGTTGCCGGATATCAGCGGACTGTCTTTGCTTCGCTGGACACGCGAGCACATGGACTCACCACCGGCTGCCATCATGCTCACCAGCCGTGACGGCGAGCACGACATTGTCCAAGCCCTTAATGCCGGTGCCGACGACTACGTCAGCAAGCCATTCCGTCCCAATGAACTCAAGGCCCGGGTTACGGCAGTACTGCGCCGTCATAACCTGCAACGCATACCGACCAGTGATGTCTTGGTATTCAACGACCTCGAATTCGACGACGCGGAACTCACGGTTACCCGCGCTGGCATTCCCATCAGCCTGACTGAACGAGAATATCGCCTGGCTCGCTGCCTGTTCGCCAACCTCGGGCGGCCACTGTCCCGGGAGTATTTTTATGAACGCTTCTGGACCCACGAGGAAATGACCTCGTCCCGTCCGCTCGACACCCACATCTACCGCTTGCGCAACAAACTAGGGCTGACGGCGGATCGGGGCTGGCAGTTGCTGACTATCTATGGATATGGATATCGTCTGGAGAGCGTGGCGGCGGGCAGCGAGGCTTGCGAAGCGAGTTAG	MRVAILDDEPAELRRVEQTLQQIPGRGEQAWTLHSFERSEDLLRQLRRETFDLLILDWQLPDISGLSLLRWTREHMDSPPAAIMLTSRDGEHDIVQALNAGADDYVSKPFRPNELKARVTAVLRRHNLQRIPTSDVLVFNDLEFDDAELTVTRAGIPISLTEREYRLARCLFANLGRPLSREYFYERFWTHEEMTSSRPLDTHIYRLRNKLGLTADRGWQLLTIYGYGYRLESVAAGSEACEAS				NA	NA	NA	NA	NA
D1-36_00034	1515	sasA_1		Adaptive-response sensory-kinase SasA	ATGAGCAACCCGCGTCGCCATGAAAGTCGTGAACCCACCCAAGTCCAACGGTTGTTTCGTCGTTGGGTTCGCGAATGGTTGTGGATAAGTCTTCTCCTGTTGCCAACGACCGCGTTGATATCGTATTGCGTGCATTCGGATCGCGATGGGACGGTCGCCGCCTTGTTATCAACATGTCTGGTGGGCTGCGTCCTGGGTTCGCTGCTGTTGCGCCCGCGCTTTGCCCTGGGAACGACAGTGGCAGGTATGGCAGCGGCCCTACTCGTAAGCCTGTTGCTGGACGCGCAGGGTAGGTCGTGGTCGCCGGCACCTAGCCTGCTGGGCATGCTCGGCGGTTATCTGATCTGGAACTGGCGGCGCTTGAGCGTGGTGCTGGCTTATTTTGGTTGGGAGTTGGCACGCCTGGATGCGGAGCCGAAGGTATTCCCGGAGCGTCGTCGCGCGTCCTATATCGGCAGTGATGGTCTACAAGGACAAGTCATGGCGTTGGAACAGGCCATGAATCGCACGCGGGACACGCGACGTTTTATTGCCGACGGCCTGGAGTATTTGCCGGTGGCGACGATGATCAGCGATCCGCAAGGCAACATACTGCTCGGCAATCGCAAGGCCCGTGAGTTGTTCGATCATGCCCTGGTGGGCGCGGATGTGCTGGAAGCACTGGCACGGCTGGGTTATCCCGCATTGGCGCACTCCCCTGCCCACCGATTGTCCACATTGCCGTTGGTTGAGTTTCGCGACATACGTGAACGCAGCCTGCGGCTGGAAAGAGCTGCGCTGCTGCCAGTTGATGGGGACGTCCCTATCGGTTGGCTGATGAGCCTGACGGACCTGAGCGCCGAGCGGGCGGCCGAAGAGCAGCGCAGTGTCATGCTCCGCTTCCTTTCCCATGACCTGCGCGCCCCCCACTCGGCCATCCTGGCGCTGCTCGATGTGCATCGGCATGACGCAGGGGCTGAAAATCCACTGTTCGACCAGATCGAGCGCCAGGTCCGTCGTGCCTTGGACCTGACTGACGGGTTCGTCCAATTGGCCAAGGCTGAATCAGACGCCTACCAGTTCCGGCCGACGCTGTTTGCAATGCTGGTCCTGGACGTCATCGACCAGGCATTACCCATCGCCCAGGCCAAGAACATCCATCTGCAATACCAACTGGATGATGACGAAGCGACAGTTAACGCCGATCAACCCCTGCTGACTCGCGCGCTCTTCAACTTGCTGGAAAACGCCATCAAATACAGCACGAGCGAAACCTGTATTTCACTGCATGTGCGATGTGCGGAGGGTTGGTTGACTTGCGATGTGGTTGACCAAGGCAAAGGCATCGATGCCGGGGAGCTGCCAGACCTGTTCATTCAGTATCGACGCTTTTCTTCAGCTCATGGCGTGGATGGCATTGGCCTGGGACTGTCCATGGTCAAGGCAGTCGTCGATCATCACGGCGGGGAGATTGAATGCCGTAGCGAAGTGGGGGAAGGGACAACCTTCAGCTTGCGATTTCCGCTGTTGAGCTAA	MSNPRRHESREPTQVQRLFRRWVREWLWISLLLLPTTALISYCVHSDRDGTVAALLSTCLVGCVLGSLLLRPRFALGTTVAGMAAALLVSLLLDAQGRSWSPAPSLLGMLGGYLIWNWRRLSVVLAYFGWELARLDAEPKVFPERRRASYIGSDGLQGQVMALEQAMNRTRDTRRFIADGLEYLPVATMISDPQGNILLGNRKARELFDHALVGADVLEALARLGYPALAHSPAHRLSTLPLVEFRDIRERSLRLERAALLPVDGDVPIGWLMSLTDLSAERAAEEQRSVMLRFLSHDLRAPHSAILALLDVHRHDAGAENPLFDQIERQVRRALDLTDGFVQLAKAESDAYQFRPTLFAMLVLDVIDQALPIAQAKNIHLQYQLDDDEATVNADQPLLTRALFNLLENAIKYSTSETCISLHVRCAEGWLTCDVVDQGKGIDAGELPDLFIQYRRFSSAHGVDGIGLGLSMVKAVVDHHGGEIECRSEVGEGTTFSLRFPLLS	PGPT0002705_1427	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATE_METABOLISM	P-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002705-phoR-K07636	NA	NA
D1-36_00035	795			hypothetical protein	ATGGTAAACGCCGCTATGTCGATACTGCAGGCCATCAGAAGCTTCCTCTTTTACCTGCTGCTGGGCACCAGTTCCTTGTTGTGGTGCACGCTGAGTTTTTTTGTCGCACCGTTCATGTCGTTCAGGACGCGCTACCGCTTCATCAACGTCTACTGGTGCCGCTGCGCACTTTGGCTAAGCAAGGTGTTCCTGGGCATTCGTTACGAAGTGAAGGGTGCCGAGAACGTGCCCGACCGGCCTTGCGTCATCCAGTCCAACCATCAGAGCACTTGGGAAACCTTCTTTCTTTCGGCCTATTTCGAGCCATTGAGCCAGGTCCTCAAGCGCGAGCTGCTGTTCGTACCGTTCTTCGGCTGGGCCATGGCGATGCTGCGCCCGATCGCGATTGATCGCGACAACCCCAAGGTTGCGCTCAAGCAAGTGGCGCAAAAAGGCGATGAGCTGCTGAAGGACAACGTCTGGGTCCTCATTTTTCCCGAAGGCACCCGCGTGCCCTATGGGACGATCGGAAAGTTCTCCCGCAGCGGTTCGGCGTTGGCTGTAAATGCAGGCCTGCCGGTGCTGCCGATTGCACACAATGCCGGAAAATTCTGGCCAAAGACGGGCTGGATCAGAACGCCTGGAACCATCACCGTGGTCATCGGCGCACCGATGTATGCAGAGGGCAGCGGCCCCCGGGCAATCGCTGAGCTCAACGACCGCGTCCAGGCCTGGAACGAACAGACGCAAAGGGATTTGGGTTCGCTACCATCAGCCCCCGCCGCACCGGCAACGCCGGACACGCTAGCTGTCTGA	MVNAAMSILQAIRSFLFYLLLGTSSLLWCTLSFFVAPFMSFRTRYRFINVYWCRCALWLSKVFLGIRYEVKGAENVPDRPCVIQSNHQSTWETFFLSAYFEPLSQVLKRELLFVPFFGWAMAMLRPIAIDRDNPKVALKQVAQKGDELLKDNVWVLIFPEGTRVPYGTIGKFSRSGSALAVNAGLPVLPIAHNAGKFWPKTGWIRTPGTITVVIGAPMYAEGSGPRAIAELNDRVQAWNEQTQRDLGSLPSAPAAPATPDTLAV	PGPT0024380_1389	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024380-plsC-K00655	NA	NA
D1-36_00036	534	gmhB	COG0241	D-glycero-beta-D-manno-heptose-1,7-bisphosphate 7-phosphatase	TTGAAACTGCTGATTCTCGATCGGGACGGCGTGATCAATCACGATTCCGATGCTTACATCAAATCGGTGGAGGAATGGTTGCCGATCCCCGGTTCCATCGAGGCCATTGCGCAGTTGAGCAAGGCCGGCTGGACGGTGGCGGTGGCCACCAACCAGTCGGGCATTGCCCGCGGTTACTACGAGCTAACCGTCCTGGACGCCATGCACGAGCGCTTGCGCGAGCTGGTGGCCGAGCAGGGCGGTGAAATCGGCCTGATCGTTTATTGTCCGCACGGGCCGGACGAGGGCTGCGATTGCCGCAAGCCCAAGCCCGGCATGTTGAAAACCATCGCCACGCATTATGACGTTGCGCTGGCGGGCGTATGGTTCGTTGGCGACAGCCTCGGTGACCTGGAGGCGGCCAAGGCCGTCGATTGTCAGCCAGTTTTAGTAAAGACCGGGAAAGGCGAGAAGACTCTGGGCAAGACCCTACCGGTGGGCACCTTGATATTTGACGACCTGGCGGCGATTGCCGCTGAACTTATCCACAACTAG	MKLLILDRDGVINHDSDAYIKSVEEWLPIPGSIEAIAQLSKAGWTVAVATNQSGIARGYYELTVLDAMHERLRELVAEQGGEIGLIVYCPHGPDEGCDCRKPKPGMLKTIATHYDVALAGVWFVGDSLGDLEAAKAVDCQPVLVKTGKGEKTLGKTLPVGTLIFDDLAAIAAELIHN	PGPT0023035_1791	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-MANNO-HEPTOSE|-PHOSPHATE_MODIFICATION,PGPT0023035-gmhB|yaeD-K03273	NA	NA
D1-36_00037	2055	glyS	COG0751	Glycine--tRNA ligase beta subunit	ATGAGTGCTCAAGATTTTCTGGTTGAACTGGGCACCGAAGAATTGCCACCCAAAGCCCTGAACACCCTGGCCGATGCGTTCCTGGCCGGCATCGAAAAAGGCCTGCAAGCCGCTGGCCTGAACTTCGAAACCAAGCACGTCTATGCCGCGCCGCGCCGCCTGGCCGTGCTGATCACCGCCCTGGAAACCCAGCAGCCGGACCGCAGCATCAACCTCGACGGCCCGCCACGCCAGGCCGCGTTCGATGCCGATGGCAACCCGACCCAGGCCGCCCTGGGCTTCGCCAAGAAGTGCGGCGTGGACCTGAGCGAGATCGACCAGAGCGGTCCGAAGCTGCGCTACAGCCAGAGCATCAAGGGCAAGCCGACCGCCAGCCTGTTGCCGACCATTGTCGAAGATTCCCTGAACGACCTGCCGATTCCCAAGCGCATGCGCTGGGCCGCGCGCAAGGAAGAGTTCGTGCGTCCGACCCAATGGCTGGTGATGCTGCTCGGCGACGAGGTCATCGATTGCACGATCCTGGCGCAGAAGGCCGGTCGCGATTCCCGTGGTCACCGTTTCCATCATCCTCAGAGCGTACGCATCACGTCGCCGGCCAACTACCTGGCCGACCTGCGCGCCGCCTATGTGCTGGCCGACGCCAACGAGCGCCGCGAGCTGATCAGCAAGCGCACCGAAGAGCTGGCGACCAGCCAGGAAGGCACGGCAATCGTGCCGGCCAACCTGCTGGACGAAGTGACCGCGCTGGTGGAATGGCCGGTGCCGCTGGTGTGCTCGTTCGAGGAACGCTTCCTTGAAGTGCCGCAGGAAGCACTGATCACCACCATGCAGGACAACCAGAAGTACTTCTGCCTGCTGGACGCGGAGGGCAAGCTGCTGCCTCGCTTCATCACCGTGGCCAACATCGAAAGCAAGGACCCGCAGCAGATCATCGCCGGTAACGAGAAAGTGGTTCGCCCGCGCCTGACAGACGCTGAGTTCTTCTTCAAGCAAGACAAGAAACAATCCCTGGAAAGCTTCAACCAGCGTTTGCAGAACGTGGTTTTCCAGGAAAAGCTCGGCAGCGTCTACGACAAGGCCGAGCGTGTCTCCAGGCTGGCGGCATTCATTGCCCCACGCATCGGCGGTGACGCCCAGCGCGCGGCCCGTGCCGGCATTCTTTCCAAGTGCGACCTGTCCACCGAGATGGTTGGTGAGTTTCCGGAGATGCAGGGCATCGCCGGTTATTACTACGCCCTTAACGATGGCGAGCCGCAAGACGTGGCACTGGCCCTGAACGAGCAGTACATGCCGCGCGGTGCCGGCGCTGAGTTGCCAACCACCTTGACCGGTGCGGCCGTGGCGATCGCCGACAAGCTCGACACCCTGGTCGGGATCTTCGGTATCGGCATGCTGCCCACTGGCAGCAAGGACCCGTACGCACTGCGTCGCGCGGCGCTGGGCGTGTTGCGCATCCTGATCGACAAGCAGCTGGACCTGGACCTGAACGACGCCGTGGCCTTCGCCGTGAATGCGTTCGGCAGCAAGGTCAAGGCTGCCGGCCTGGCCGATGCGGTGCTTGAATTCATCTTCGACCGCCTGCGTGCGCGTTATGAAGACGAAGGCGTCGACGTCGCGACCTACCTGTCGGTGCGCGCCCTGAAGCCGGGCTCCGCCCTGGATTTCGACCAACGTGTACAGGCGGTGCAGGCGTTCCGCAAACTGCCGGAAGCCGCTGCGCTGGCGGCGGTGAACAAGCGTGTATCGAACCTGCTGGGCAAAGCCGAAGGCAATATCGCGGCCACCGTCGAGGCCAAGTACTTCGACAACGCCAACGAGTTTTCCCTGTATTCGGCGATCCAGCAGGCAGACCAGGCGGTCCAACCGATGGCGGCGGCGCGCCAGTACAGCGAAACCCTGGCACGCCTGGCAGCGTTGCGCGAACCGGTGGATGCGTTTTTTGAGGCGGTAATGGTCAACGCTGAAGACGCCAACGTACGGGCCAACCGCTATGCACTGCTGGCGCGTCTGCGCGGGTTGTTCCTTGGTGTTGCCGATATTTCGCTGCTGGGGTAA	MSAQDFLVELGTEELPPKALNTLADAFLAGIEKGLQAAGLNFETKHVYAAPRRLAVLITALETQQPDRSINLDGPPRQAAFDADGNPTQAALGFAKKCGVDLSEIDQSGPKLRYSQSIKGKPTASLLPTIVEDSLNDLPIPKRMRWAARKEEFVRPTQWLVMLLGDEVIDCTILAQKAGRDSRGHRFHHPQSVRITSPANYLADLRAAYVLADANERRELISKRTEELATSQEGTAIVPANLLDEVTALVEWPVPLVCSFEERFLEVPQEALITTMQDNQKYFCLLDAEGKLLPRFITVANIESKDPQQIIAGNEKVVRPRLTDAEFFFKQDKKQSLESFNQRLQNVVFQEKLGSVYDKAERVSRLAAFIAPRIGGDAQRAARAGILSKCDLSTEMVGEFPEMQGIAGYYYALNDGEPQDVALALNEQYMPRGAGAELPTTLTGAAVAIADKLDTLVGIFGIGMLPTGSKDPYALRRAALGVLRILIDKQLDLDLNDAVAFAVNAFGSKVKAAGLADAVLEFIFDRLRARYEDEGVDVATYLSVRALKPGSALDFDQRVQAVQAFRKLPEAAALAAVNKRVSNLLGKAEGNIAATVEAKYFDNANEFSLYSAIQQADQAVQPMAAARQYSETLARLAALREPVDAFFEAVMVNAEDANVRANRYALLARLRGLFLGVADISLLG				NA	NA	NA	NA	NA
D1-36_00038	1020	glyQ	COG0752	Glycine--tRNA ligase alpha subunit	GTGCGCACGAACGAATCGGGTATACTCCCGCTCTTTAAATCGCAGCCCAAGAAACAGGTGAATTTCGTGAGCCAGCCTACGCCAGCCGTGCGTACCTTCCAAGACTTGATCCTCGCCCTCCAGCAATACTGGGCCGAGCAAGGTTGCGTGGTACTTCAGCCCTACGATATGGAAGTAGGCGCCGGCACTTTCCACACTGCCACGTTTCTGCGTGCCATCGGCCCGGAAACCTGGAACGCCGCTTATGTGCAGCCCAGCCGCCGCCCGACTGACGGCCGCTACGGCGAAAACCCGAACCGCCTGCAGCATTACTACCAGTTCCAGGTGGTCCTGAAGCCGAACCCGGAGAACTTCCAGGAACTGTACCTGGGCTCCCTCAAGCACGTGGGCCTCGACCCGTTGGTGCACGACATTCGTTTCGTCGAAGACAACTGGGAATCGCCAACCCTGGGCGCCTGGGGCCTGGGCTGGGAAGTCTGGCTCAACGGCATGGAAGTGACCCAGTTCACCTACTTCCAGCAGGCGGGCGGTATCGAGTGCTACCCGGTCACCGGCGAGATCACCTATGGTCTCGAGCGCCTGGCCATGTACCTGCAGGGCGTGGATTCGGTCTATGACCTGGTGTGGGCCGACGGCCCGTTCGGCAAAGTGACCTATGGCGACGTGTTCCACCAGAACGAAGTGGAGCAGTCGACCTATAACTTCGAACACGCCAATGTCGACAAGCTGTTCGAACTGTTCGATTTCTACGAAAGCGAAGCCAAGCGCCTGATCGAACTGGACCAGCCGCTGCCGCTGCCGAGCTATGAAATGGTGTTGAAGGCATCCCATACCTTCAACCTGCTGGATGCGCGCCGGGCGATTTCCGTGACCGCGCGCCAGCAATACATCCTGCGTGTACGCACCCTGGCGCGTTCCGTTGCGCAAGCCTACCTGCTGGCCCGTGCCAAGCTGGGCTTCCCGATGGCGACCCCGGACCTGCGTGATGAAGTGTTGGCTAAGCTGGAGGCTGCACAATGA	MRTNESGILPLFKSQPKKQVNFVSQPTPAVRTFQDLILALQQYWAEQGCVVLQPYDMEVGAGTFHTATFLRAIGPETWNAAYVQPSRRPTDGRYGENPNRLQHYYQFQVVLKPNPENFQELYLGSLKHVGLDPLVHDIRFVEDNWESPTLGAWGLGWEVWLNGMEVTQFTYFQQAGGIECYPVTGEITYGLERLAMYLQGVDSVYDLVWADGPFGKVTYGDVFHQNEVEQSTYNFEHANVDKLFELFDFYESEAKRLIELDQPLPLPSYEMVLKASHTFNLLDARRAISVTARQQYILRVRTLARSVAQAYLLARAKLGFPMATPDLRDEVLAKLEAAQ				NA	NA	NA	NA	NA
D1-36_00039	558	tag	COG2818	DNA-3-methyladenine glycosylase 1	ATGCCACGCTGCTTTTGGTGTTCCGAAGATCCGTTGTACATGGCTTATCACGATCAAGAGTGGGGCACGCCGCTGCGCGATGCGCAGGGTCTGTTCGAGTTGCTTTTGCTCGAAGGGTTCCAGGCAGGGCTGTCCTGGATCACTGTTTTGCGCAAACGCGAGCGCTACCGGCAAGTGTTGTACGGCTTCGATGTGCAACGGGTGGCGCAGATGAGCGACGCGGAAATCGATGAACTGATGCTCGACCCCGGCATCATCCGCAACCGTCTCAAGCTCAAGGCTGCACGCTGTAATGCCCAGGCCTGGCTGGCCCTGGAAGACCCGGTGGCATTCTTTTGGTCGTTCGTGGACGGCAAACCCATTGTCAACCATTTCAAGGACCGCACCGAAGTGCCAGCCATCACGCCTGAGGCGTTGGCGATGAGCAAAGGCCTGAAAAAACTCGGGTTCACCTTTGTCGGGCCGACTATTTGCTATGCGCTGATGCAGGCCTCGGGCATGGTCATGGACCACACCCAAGACTGCGACCGCTACGCCGAGTTGGTAAACGGCGGTTAG	MPRCFWCSEDPLYMAYHDQEWGTPLRDAQGLFELLLLEGFQAGLSWITVLRKRERYRQVLYGFDVQRVAQMSDAEIDELMLDPGIIRNRLKLKAARCNAQAWLALEDPVAFFWSFVDGKPIVNHFKDRTEVPAITPEALAMSKGLKKLGFTFVGPTICYALMQASGMVMDHTQDCDRYAELVNGG				NA	NA	NA	NA	NA
D1-36_00040	888	lpxL_1	COG1560	Lipid A biosynthesis lauroyltransferase	GTGGATAAGTTGAAAGGCGCCTTGCTGGTCGGCGCTCTGCGGTTGTTTGCGTTGCTGCCCTGGCGAGCGGTGCAGGCGGTGGGCTCGGCCATCGGCTGGCTCATGTGGAAATTTCCCAACCGCTCCCGCGATGTGGTGCGGATCAACCTCGCCAAATGCTTTCCCGAGATGGACCCCGCCGAGCGCGAACGCCTGGTGGGCCAGAGCCTCAAGGACATCGGCAAGTCTCTGACCGAAAGCGCCTGCGCCTGGATCTGGCCGGCCCAGCGCTCCATCGAACTGGTGCGCGAAGTCGAAGGCCTGGAGGTGCTGAAAGAAGCCCTGGCCTCGGGCAAGGGCGTGGTTGGCATCACCAGCCATCTGGGCAACTGGGAAGTGCTCAACCACTTCTATTGCAGCCAGTGCAAACCGATCATTTTCTACCGTCCGCCCAAGCTCAAGGCGGTGGACGAATTGCTGCAGAAGCAACGCGTGCAACTGGGCAACAAGGTCGCGGCGTCCACCAAGGAAGGCATCCTCAGCGTCATCAAGGAAGTGCGCAAGGGCGGCCAGGTGGGGATCCCCGCCGATCCGGAGCCGTCCGAATCCGCCGGCATCTTCGTGCCCTTCTTCGCCACCCAGGCCCTGACCAGCAAGTTCGTGCCGAACATGCTCGCTGGCGGTAAAGCAGTGGGCGTGTTCCTTCATGCCCTGCGCCTGCCGGACGGCTCCGGCTACAAAGTCATCCTCGAAGCCGCCCCCGACGCAATGTACAGCACCGACACCGAAACCTCCTGCGCCGCCATGAGCCAAGTGGTGGAACGCTACGTACGCGCCTACCCGAGCCAGTACATGTGGAGCATGAAACGCTTCAAGAAACGCCCGCCGGGCGAGGCGCGGTGGTACTGA	MDKLKGALLVGALRLFALLPWRAVQAVGSAIGWLMWKFPNRSRDVVRINLAKCFPEMDPAERERLVGQSLKDIGKSLTESACAWIWPAQRSIELVREVEGLEVLKEALASGKGVVGITSHLGNWEVLNHFYCSQCKPIIFYRPPKLKAVDELLQKQRVQLGNKVAASTKEGILSVIKEVRKGGQVGIPADPEPSESAGIFVPFFATQALTSKFVPNMLAGGKAVGVFLHALRLPDGSGYKVILEAAPDAMYSTDTETSCAAMSQVVERYVRAYPSQYMWSMKRFKKRPPGEARWY	PGPT0013315_2563	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LIPID_A_METABOLISM,PGPT0013315-lpxL|htrB-K02517	NA	NA
D1-36_00041	789	fabG_1		3-oxoacyl-[acyl-carrier-protein] reductase FabG	ATGAACATCGACTTCACCGGACGTCACGTCCTGGTCACCGGTTCCACCAGCGGTATCGGTTTCGCGACCGCCAAAGGCTTCCTGGAAGCCGGCGCCCATGTGGTCATCAACGGTCGCAGCGAGAGCAGCGTGGAGGATGCGTTGCAGCGCCTGGGCAATCTTGCTTCCAGGGCGACAGGTTTTGTTGGCGATCTCAGCAACGAAGCTGGCTGCCAAGCGCTGATCGCCAGGCATCCGAGCTTCGATATCGTCATCAACAACCTGGGCATTTTCAAACAGGAGGACTTCTTCGAGACGCCGGACAGCGAATGGCAGCGTTTCTTCGAAACCAACGTGATGTCCGGTGTGCGTGTTTCCAGGGCTTACGCACAGGGTATGGTCGAGCGCGGTTGGGGACGGATCGTGTTTGTCTCGTCGGAGTCGGGCGTGAACATTCCCGCCGACATGATCCACTACGGCTTCACCAAGACCGCCCAGCTTTCAATTGCTCGCGGCCTGGCCAAACGCCTCGCCGGCACGGGCGTGACGGTGAACTCGGTGTTGCCTGGGCCGACACTGTCCGAAGGCGTTGCCCAAATGCTCCAGGCAGACGTCGAGCGCAGCGGGGAAAGCCTGGAAAAGGTCGCGGCAGACTTCGTCAACGAGCATCGCAGCACCTCGATCATCCAGCGCGCGGCGCGCGTCGAGGAAGTCGCCAACATGATCATCTACGCTAGCTCGGAACAGGCCTCGGCTACCACCGGCGCGGCGTTGCGTGTGGATGGTGGCGTGGTGGATAGCATCGTTTAG	MNIDFTGRHVLVTGSTSGIGFATAKGFLEAGAHVVINGRSESSVEDALQRLGNLASRATGFVGDLSNEAGCQALIARHPSFDIVINNLGIFKQEDFFETPDSEWQRFFETNVMSGVRVSRAYAQGMVERGWGRIVFVSSESGVNIPADMIHYGFTKTAQLSIARGLAKRLAGTGVTVNSVLPGPTLSEGVAQMLQADVERSGESLEKVAADFVNEHRSTSIIQRAARVEEVANMIIYASSEQASATTGAALRVDGGVVDSIV	PGPT0003180_3276	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
D1-36_00042	174			hypothetical protein	ATGAACACTCTTAGCAAAATACTCGTTGGCTCGCTTCTGGCTCTGTCCCTCGGCAATGCGTTCGCGACTCCCTTTGTTCAACCCACGTTCGCTGAGGGGGGGTCGGATCGGCTGATCGAAAGCCGGGTCGCTGAAGGCGGCTCGGATCGGCTGATCGAAAATCGCGTAGCCTAA	MNTLSKILVGSLLALSLGNAFATPFVQPTFAEGGSDRLIESRVAEGGSDRLIENRVA				NA	NA	NA	NA	NA
D1-36_00043	420	ohrB_1	COG1764	Organic hydroperoxide resistance protein OhrB	ATGAACGTTCTTTACACCGCAGTCGCAACCTCCACCGGTGGCCGTGATGGCCGTGCTGTTTCCAGCGACAAAATCCTCGACGTGAAACTGGCCACTCCAAAAGCCTTGGGCGGCGCCGGAGGGGAAGCTACCAACCCCGAGCAATTGTTCGCAGCGGGTTACTCGGCCTGCTTCATCGGCGCGCTGAAATTTGTCGCCAGCCAAAGCAAACGCAGCATTCCGGCTGACGCTTCGATCACGGCCCATGTCGGCATTGGCCAGATCCCTGGTGGTTTCGGCCTGGACATCGACCTGCACATCAGCCTGCCAGGCCTGGATCAAGCCGATGCTCAAGCGCTGGTCGATGCGGCTCACCAGGTTTGCCCGTACTCCAACGCGACACGCGGCAATGTCGACGTTCGTTTGCACATCACCGTCTAA	MNVLYTAVATSTGGRDGRAVSSDKILDVKLATPKALGGAGGEATNPEQLFAAGYSACFIGALKFVASQSKRSIPADASITAHVGIGQIPGGFGLDIDLHISLPGLDQADAQALVDAAHQVCPYSNATRGNVDVRLHITV	PGPT0013160_3583	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
D1-36_00044	1125			hypothetical protein	ATGGATGGCCCAAGATTGCGCAATGGCCAGGATTTTGTAATAGCCGAGCAGGTTCGAACAGATCGGTTGCAGCAACTGTTTCGCCAGTCTGTTTCTGCGGTTTTCGGTAGTTACCTGGCTGCCATCATGTTGAGTTGGCTGTGTTGGGATCGGTTTGACCACAACACTATCGCTTGGTGGCTATTAATCCTGACCGCATCGACGCTGTTGCGTATCGCGATGTTCATAGCCTATCTGCGCAGCGACGAAAGTGAGCGTACGCCACAACGCTGGGAGCGCAGGTACTGGGTCACGCTAGTGCTATCCGCCAGCATCTGGGGCGGTGGTGCGTTCATGCTGATGCCAGCGGACGATCTGTTGTCCCAGGCACTGGTCATGCTGTTTACCGTGGGCATGTCTGTCAGTGCGGTGTCCTGCTATTCGGCTTACCGCGATATGACCCTGGCCTCCATTGGCCTGGTGCTGTTCCCGTGCACCGTCTGGCTGCTCTTTCAACCGTCTCCGATTCAAGTCGGCATGGCACTTTCAATCTTGGTGTTCGCGGCATTTGCCGCTCGCGCCACGCACAAAATGTCCCAAGCCCTGGAAATTGCCTTTCGTCTCACCCGTGAGATGGAACAGGCAAACAGCATCTCCACCCGTGCCGCACAAACCGATGAACTGACCGGCCTGAAGAGTCGGCGGGCTTTTTTTGAGCATGCCCAGCAGCTCTATGATGAATGTAAGAGCAACCGGTTAGGGTTGTGCGCAGTCATGCTGGATATGGATCACTTCAAGCACATCAACGACACCTACGGCCACCAAGTCGGGGATCAGGTTTTACGCGAGATGGGGACGGTGATCAGTTCGTCGTTTCGGGCGACGGATATACATGGCCGGCTCGGTGGGGAAGAGTTCGCCATTCTGCTTCCAGACACTTCAATCGAGGTCGCTACCCAGATTGCAGAACAGCTCATCGATGCCATTGCGGGTTTGATGATCGAGCCTGTTCACGGCATATCAGCCAGTCTCGGCGTCGCGTCGACGGAGGCCTGCAATAAGGATCTCCATAGCTTGATGAACGATGCGGATAAGGCCCTGTATCGGGCAAAAGCGCTGGGGCGTAATCGAGTGGCTGTTGCTTAG	MDGPRLRNGQDFVIAEQVRTDRLQQLFRQSVSAVFGSYLAAIMLSWLCWDRFDHNTIAWWLLILTASTLLRIAMFIAYLRSDESERTPQRWERRYWVTLVLSASIWGGGAFMLMPADDLLSQALVMLFTVGMSVSAVSCYSAYRDMTLASIGLVLFPCTVWLLFQPSPIQVGMALSILVFAAFAARATHKMSQALEIAFRLTREMEQANSISTRAAQTDELTGLKSRRAFFEHAQQLYDECKSNRLGLCAVMLDMDHFKHINDTYGHQVGDQVLREMGTVISSSFRATDIHGRLGGEEFAILLPDTSIEVATQIAEQLIDAIAGLMIEPVHGISASLGVASTEACNKDLHSLMNDADKALYRAKALGRNRVAVA	PGPT0026005_84	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
D1-36_00045	258			hypothetical protein	ATGGTTCAGTCAGATCAGGACATCAATGATCAATACAAGAAGACGATGAGCGCGCTGAATCCGGATCAAAAGAAAAAAGTGAAAGCCGCTCAGATCCAGTGGATCAAGACTCGTGACAACGCCTGTTCCAACGATGGCCTGCTCTACTTGGACTGTGCCAATGAGAAGACTGAGGCGCGTATCGTCATACTCAAGGCTATCGAGCGCGAATGCCGTGCCGCCGGTTGCGACGACGCGAAGCTGTCGCAGGTCGAGTAA	MVQSDQDINDQYKKTMSALNPDQKKKVKAAQIQWIKTRDNACSNDGLLYLDCANEKTEARIVILKAIERECRAAGCDDAKLSQVE				NA	NA	NA	NA	NA
D1-36_00046	771	metQ_1	COG1464	Methionine-binding lipoprotein MetQ	ATGAAAAAACTACTGGTTGCCTTCGCTGCCGCCGCAGCGTTCTCTGCCCACGCCGATACCCTGACCGTCGCGGCCACGCCGGTCCCCCATGCGGAAATCCTCGAATTCGTCAAACCGGCGCTGGCGAACGAAGGCGTGGACCTCAAGGTCAAGGTCTTCACCGACTACATCCAGCCGAACGTACAGGTGGCTGAAAAGCGCCTGGACGCCAACTTCTTCCAGCACCAGCCGTACCTGGATGAGTTCAACAAAGCCAAGGGCACGCACTTGGTGAGCGTGGCGGGTGTGCACCTGGAGCCACTGGGCGCGTATTCGAGCAAATACAAAAAGCTGGAAGAACTGCCAGGCGGCGCCAACGTGGTGATTCCTAACGACGCCACCAACGGCGGCCGTGCGCTGTTGCTGTTGGCGAAGGCTGGGGTGATCACGTTGAAGGATTCGAACAATATCCTGTCGACCACCAAAGACATCGTTGAAAACCCGAAGGACCTGAAGTTCCGTGAGCTGGAAGCCGCGACCATTCCGCGGGTACTGACCCAGGTGGATCTGGCTCTGATCAATACCAACTATGCGTTGGAAGCCAAGCTTGATCCTTCCAAGGATGCGTTGGTGATTGAAGGTAACGACTCGCCTTATGTGAACATCCTCGTTGCCCGTCCGGACGACAAGGACAGTGAGGCGATGAAGAAGCTGGTGGCGGCTTTGCATACGCCGGAAGTGAAGAAATTCATTTTGGAGAAGTACAAAGGGGCGGTTTTGCCGGCGTTTTGA	MKKLLVAFAAAAAFSAHADTLTVAATPVPHAEILEFVKPALANEGVDLKVKVFTDYIQPNVQVAEKRLDANFFQHQPYLDEFNKAKGTHLVSVAGVHLEPLGAYSSKYKKLEELPGGANVVIPNDATNGGRALLLLAKAGVITLKDSNNILSTTKDIVENPKDLKFRELEAATIPRVLTQVDLALINTNYALEAKLDPSKDALVIEGNDSPYVNILVARPDDKDSEAMKKLVAALHTPEVKKFILEKYKGAVLPAF	PGPT0020510_5710	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020510-metQ-K02073	NA	NA
D1-36_00047	675	metP	COG2011	Methionine import system permease protein MetP	ATGGAACTGTTGAGTTCGTTCTTCTCCAATATCGACTGGCTGGAAATCTGGCTGGCCACCGGCGACACCTTCCTGATGCTGTTCGGTTCGCTGCTGTTCACCGTGCTGCTCGGCTTGCCCCTGGGCGTGTTGCTGTTTCTGTGCAGCCCGCGCCAGTTGCTCGAAGCCCGCGGCGTTTATGCTCTGCTGTCGCTGGTCGTAAACATCCTGCGTTCGCTGCCATTCATCATCCTGTTGATCGTGATGATCCCGTTCACGGTGTTGATCACCGGCACCTCCCTGGGCGTGGCCGGCGCGATCCCACCGCTGGTGGTCGGCGCCACCCCGTTCTTCGCTCGCCTGGTGGAAACGGCACTGCGCGAAGTGGATCGCGGCATCATCGAAGCGACCCAGGCCATGGGCGCCACCACGCGGCAGATCATCGTCAACGCCTTGCTGCCGGAAGCCCGCCCGGGCATTTTTGCAGCGATTACGGTGACAGCCATTACGCTGGTGTCCTACACGGCCATGGCCGGTGTGGTCGGCGCCGGTGGTCTGGGCGACCTGGCGATCCGCTTCGGTTACCAGCGTTTCCAGACCGATGTCATGGTCGTCACCGTGGTGTTGCTGCTGGTTCTGGTTCAGGTTCTGCAAACCGTGGGCGACAAACTGGTTGTGCATTTCTCTAGAAAATAA	MELLSSFFSNIDWLEIWLATGDTFLMLFGSLLFTVLLGLPLGVLLFLCSPRQLLEARGVYALLSLVVNILRSLPFIILLIVMIPFTVLITGTSLGVAGAIPPLVVGATPFFARLVETALREVDRGIIEATQAMGATTRQIIVNALLPEARPGIFAAITVTAITLVSYTAMAGVVGAGGLGDLAIRFGYQRFQTDVMVVTVVLLLVLVQVLQTVGDKLVVHFSRK	PGPT0020515_1293	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020515-metI-K02072	NA	NA
D1-36_00048	1008	metN_1	COG1135	Methionine import ATP-binding protein MetN	GTGATCGAGTTTCAAAACGTCCATAAAACCTACCGGGTTGCCGGTAGGGATATCCCCGCCCTGCATCCGACCAGCCTGACAATCGAGAACGGTCAGGTCTTCGGCCTCATCGGCCATTCCGGTGCAGGAAAAAGTACCCTGCTGCGCCTGATCAATCGCCTGGAAGATTCCACGGGCGGCAAGATCATCGTCGATGGTGAAGAAGTCACCGCCCTGGACGCCAGCGGCCTGCGCCGTTTCCGTCAACAGGTCGGGATGATCTTCCAGCACTTCAACCTGCTGGCATCCAAGACTGTCGCCGACAACGTGGCGCTGCCGCTGACGCTGGCGGGCGAATTGTCCCGCAGCGAAATCGACCGGCGCGTCGCCGAGCTGCTGGCGCGGGTAGGGCTTTCAGACCATGCCCGCAAATACCCGGCGCAATTGTCCGGCGGCCAGAAGCAGCGCGTCGGCATCGCCCGTGCCCTGGCGACTAAACCCAAGATTCTGCTTTGCGACGAAGCCACCAGTGCCCTTGACCCGCAGACCACCGCCTCGGTGCTGCAACTGCTGGCGGAGATCAACCGCGAGCTGAAGCTGACTATCGTTTTGATCACCCACGAAATGGACGTGATCCGCCGAGTGTGCGATCAAGTGGCGGTGATGGACGCTGGCGTAATCGTCGAGCAAGGCCCGGTGGCCGACGTGTTCCTGCACCCCAAGCACCCGACCACCAAACGTTTCGTCCAGGAAGACGAGCAGATCGACGAAAGCGAACAGCGCGACGATTTCGCCCACGTCCCAGGACGCATCGTGCGTCTGACGTTCCAAGGCGATGCGACCTACGCGCCGTTGCTCGGCACCGTCGCCCGGGAGACCGGCGTGGACTACAGCATCCTGGCGGGACGTATCGACCGCATCAAAGACACCCCCTACGGGCAACTGACCCTCGCCATCACCGGCGGTGACATGGAGGCGGCGTTCGCCCGCTTCACCGCGGCCGATGTCCACATGGAGGTGCTGCGCTAA	MIEFQNVHKTYRVAGRDIPALHPTSLTIENGQVFGLIGHSGAGKSTLLRLINRLEDSTGGKIIVDGEEVTALDASGLRRFRQQVGMIFQHFNLLASKTVADNVALPLTLAGELSRSEIDRRVAELLARVGLSDHARKYPAQLSGGQKQRVGIARALATKPKILLCDEATSALDPQTTASVLQLLAEINRELKLTIVLITHEMDVIRRVCDQVAVMDAGVIVEQGPVADVFLHPKHPTTKRFVQEDEQIDESEQRDDFAHVPGRIVRLTFQGDATYAPLLGTVARETGVDYSILAGRIDRIKDTPYGQLTLAITGGDMEAAFARFTAADVHMEVLR	PGPT0020520_3428	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020520-metN-K02071	NA	NA
D1-36_00049	2136	katE	COG0753	Catalase HPII	ATGAGCACTAAAAAGCCTGCCGCCCCTAGCCAACTGGCCGGGACCGATACCTTGGATCGCACCAACACCAACGCCAAGCTCGAAAGCCTGGAGCAGTTTCGCTCCGATGCCACGGAACAGGCGCTGCGCACAAACCAGGGCGTAAAAATCGCCGATAACCAGAACACCCTGCGTGCCGGCGCCCGTGGGCCATCGTTGCTGGAAGATTTCATCATGCGTGAGAAAATCACGCACTTTGACCATGAGCGGATCCCGGAGCGCATCGTCCATGCCCGCGGGACCGGTGCCCATGGCTACTTTCAGGCCTATGAATCACATGCGGCCCTGACCAAGGCTGGTTTCCTGCAAGACCCCAATAAAAAAACGCCTGTGTTCGTGCGTTTTTCCACCGTGCAGGGTCCACGCGGTTCCGGTGACACCGTACGGGACGTGCGCGGTTTTGCCGTGAAATTTTTCACCGACGAGGGCAACTTCGACCTGGTGGGCAACAACATGCCGGTATTTTTCATCCAGGACGCGGTGAAATTTCCAGATTTTGTCCACGCGGTGAAACCCGAGCCCCATAACGAAATCCCCACCGGTGGCTCGGCCCACGACACCTTTTGGGATTTTGTCTCATTGGTTCCGGAATCTGCTCACATGGTGATATGGGCCATGTCCGACAGGGCGATTCCAAAGAGCCTGCGCACGATGCAGGGTTTTGGCGTGCACACCTTCCGTATGATCAACGCTGAAGGGCGCAGCAGCTTCGTCAAATTCCACTGGCGGCCCAAGGCGGGCACTTGTTCCCTGGTGTGGGACGAAGCCCAGAAGCTTGCAGGCAAGGACACCGATTATCATCGTCGCGATCTTTGGGAATCCATCGAGATGGGCGACTACCCCGAGTGGGAGTTCGGCGTTCAGATCGTTGCCGAGGAAGACGAGCATAAATTCGACTTCGACTTGCTCGACCCGACCAAGATCATCCCAGAAGAACTTGTGCCCATTACCCCGTTGGGCAAGATGGTACTGAACCGCAACCCGGACAACTTCTTCGCCGAGGTGGAGCAGATTGCGTTCTGCCCAGGACATATCGTGCCGGGCATCGACTTCACCAACGACCCATTGCTGCAAGGACGGCTGTTTTCATACACCGATACGCAGATCAGCCGACTCGGCGGCCCGAATTTTCATGAGCTGCCTATTAACCGCGCCATCACGCCCGTGCACAACGGCCAACGTGATGCGATGCACCGCACCACCATCGATAAAGGGCGCGCGTCCTACGAGCCGAACTCCATCGACGGTGGCTGGCCGAAGGAAACCCCGCCAGGTCCTCAAGATGGCGGTTTCGAAAGCTATCCGGAGCGTATCGACGCCCACAAGATCCGCCAGCGCAGCGATTCGTTCGGTGATCATTTCTCCCAGGCTCGGCTGTTCTACAAGAGCATGAGCGCCCACGAACAAGAGCACATTATCGCGGCCTATAGCTTCGAGCTGGGCAAGGTGGAGCGCGAGTTCATCAGGGCGAGGCAGGTAAACGAGATTCTCGCCAATATCGATCTGGAGTTGGCCGGGCGCGTTGCGAAAAACCTCGGCTTGCCGGCACCCACCGCGTGTACGGTCGATGTTCCGACGCCTTCGTTGCAGCAGTCCCCGGCATTGAGCCAGGCGAACCTGCTGTCCGGCGACATCAAGACGCGCAAGGTCGCGGTGTTGGTGGCGAATGGCGTCGACGGCGCGATCATCGATGCGCTCAAAAAGGCGCTGGAGGCAGAAGGCGCCCACGCGAAGATCCTTGGTCCGACGTCCGCTCCGGTGACGGCGGCCAACGGACAAACGCTGCCGGTGGATGCTTCGATGGAAGGCCTGCCGTCGATTGCCTTCGACGCGGTGTTTGTGCCGGGTGGCGTGGAGTCGATCAAAGCCTTGAGTGCCGATGGGGTGGCGTTGCACTACCTGTTGGAAGCTTACAAACACCTCAAGGCCATTGCGCTGCATGGCGAAGCCCGGCAGTTGTTGGTGTTGTTGAAGCTAGAGGCGGACGCAGGGTTGATTCCGGATGCCGACGCGAGCAAGTTCCAGGCGTTTTTTGACGCGATTGCTCAACATCGGGTTTGGGCGCGTGAGGCTAAGGCCAAGGCGGTTCCGGCCTAA	MSTKKPAAPSQLAGTDTLDRTNTNAKLESLEQFRSDATEQALRTNQGVKIADNQNTLRAGARGPSLLEDFIMREKITHFDHERIPERIVHARGTGAHGYFQAYESHAALTKAGFLQDPNKKTPVFVRFSTVQGPRGSGDTVRDVRGFAVKFFTDEGNFDLVGNNMPVFFIQDAVKFPDFVHAVKPEPHNEIPTGGSAHDTFWDFVSLVPESAHMVIWAMSDRAIPKSLRTMQGFGVHTFRMINAEGRSSFVKFHWRPKAGTCSLVWDEAQKLAGKDTDYHRRDLWESIEMGDYPEWEFGVQIVAEEDEHKFDFDLLDPTKIIPEELVPITPLGKMVLNRNPDNFFAEVEQIAFCPGHIVPGIDFTNDPLLQGRLFSYTDTQISRLGGPNFHELPINRAITPVHNGQRDAMHRTTIDKGRASYEPNSIDGGWPKETPPGPQDGGFESYPERIDAHKIRQRSDSFGDHFSQARLFYKSMSAHEQEHIIAAYSFELGKVEREFIRARQVNEILANIDLELAGRVAKNLGLPAPTACTVDVPTPSLQQSPALSQANLLSGDIKTRKVAVLVANGVDGAIIDALKKALEAEGAHAKILGPTSAPVTAANGQTLPVDASMEGLPSIAFDAVFVPGGVESIKALSADGVALHYLLEAYKHLKAIALHGEARQLLVLLKLEADAGLIPDADASKFQAFFDAIAQHRVWAREAKAKAVPA	PGPT0014380_822	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0014380-katE|CAT|catB|srpA-K03781	NA	NA
D1-36_00050	711			hypothetical protein	ATGAAGCCGTTCGCCTCCCGTTATCTGCTCCTTGTCGCGTTTTCCCTGCTGGGCGCCTGCCAGAGCACGCCGCCGGTCACCCAAGCCCCTGATACGCGGGGTCCGGCCCTCGCGCAGCTGCAACAGAGCCTGGCCGGCAATGAATTGGCCACCGCCGAAGATCAATTGGCAACGTTGCAGGCTCAATCGCCGGAAGACCCATCGTTGGAGCCTTACCAGCGTCAACTGGCCGAGGCGTACTTGCGCCGTAGCCAGATCGATCTGCAGAAAGGCGATGTAAATGCCGCCGCCACGGCCCTTAGCCGAGCTCGCGCCCTGATGCCAAAGGCGCCGGCGCTTACCGGCGAAGTCAACAGCGCGATTGCCGAAGCGCGTAAAGCCGACCTGGAAAAAGCCGAGGCCGATCTCAAGGCCGCCGAAGCCAAGCCGGTCGCCAAAATGATCGATCCGAGCGCACCCAGCACAACAGTCGCGTTGAATCTAGGTGATATTCGGCAAATGCGTCATCAACTGGACGCCATCGCCGCAGATATTGTGAATTTCAAGTGTGATGTCAGCATCCAGGTGCCGCGCACCGATGATTACCCTTGGTTGGCGACATTGCTGAGCAAACGAGTCAAGAAGCTAGATCCTGGGTTCGATCTGAAACTGCGCAAGCAAATTTTGCGCAACGTGCCTGCGCAGTTGGTCCTAACTCCGCGCAAGCCCTGA	MKPFASRYLLLVAFSLLGACQSTPPVTQAPDTRGPALAQLQQSLAGNELATAEDQLATLQAQSPEDPSLEPYQRQLAEAYLRRSQIDLQKGDVNAAATALSRARALMPKAPALTGEVNSAIAEARKADLEKAEADLKAAEAKPVAKMIDPSAPSTTVALNLGDIRQMRHQLDAIAADIVNFKCDVSIQVPRTDDYPWLATLLSKRVKKLDPGFDLKLRKQILRNVPAQLVLTPRKP				NA	NA	NA	NA	NA
D1-36_00051	789	znuB_1	COG1108	High-affinity zinc uptake system membrane protein ZnuB	ATGGCTGATTTTCTGTTGTATGCCCTGCTTGCAGGCTTGGCCCTCGCGCTCGTGGCTGGTCCACTGGGCTCGTTCGTGGTCTGGCGGCGCATGGCATATTTTGGCGACACCTTGTCCCATGCGGCGCTTCTGGGCGTGGCCCTGGGTTTCCTGCTGGACGTCAGTCCCGCAGTGGCCGTTACCGTCGGCTGCCTATTGCTGGCGGTGGTGCTGGTGACCCTGCAACAGCGCCAGCCGCTGGCGTCCGACACGTTGCTGGGCATCTTGGCCCCCAGCACCCTGTCCTTGGGATTGGTGGTGCTGAGCTTCATGCGTGACGTCCGTATCGACCTGATGGCCTATCTGTTCGGTGACCTGCTGGCGATCAGCCCGGCGGATCTCTCTTGGATCCTCGGCGGCAGCGCGGCGGTATTGGCGTTGCTCGTGGCGCTGTGGCGTCCGCTGCTGGCGGTCACGGTCCATGAGGAGCTGGCGCGGGTCGAAGGTTTGCCCGTGGTGGGCCTGCGTTTGGCGCTGATGCTGTTGATCGCGGTTGTCATTGCGGTGGCGATGAAGATCGTCGGTGTGTTGCTGATTACTTCGTTGCTGATCATTCCGGCGGCTGCGGCACAGCGTCACGCTCGCTCGCCCGAGCAGATGGCCCTGGGCGCGAGCCTGCTGGGCATGCTCGCCGTATGTGGCGGGCTGGCACTTTCATGGTTCAAGGACACCCCGGCCGGCCCGTCCATCGTGGTCAGCGCCGCGGCGTTGTTTCTGCTGAGTTTTGTCCTACCCCGTCGAGGGGTGTAG	MADFLLYALLAGLALALVAGPLGSFVVWRRMAYFGDTLSHAALLGVALGFLLDVSPAVAVTVGCLLLAVVLVTLQQRQPLASDTLLGILAPSTLSLGLVVLSFMRDVRIDLMAYLFGDLLAISPADLSWILGGSAAVLALLVALWRPLLAVTVHEELARVEGLPVVGLRLALMLLIAVVIAVAMKIVGVLLITSLLIIPAAAAQRHARSPEQMALGASLLGMLAVCGGLALSWFKDTPAGPSIVVSAAALFLLSFVLPRRGV	PGPT0004225_2332	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ZINK_RESISTANCE	ZINK_RESISTANCE-ZNU_TRANSPORT_SYSTEM,PGPT0004225-znuB-K09816	NA	NA
D1-36_00052	783	znuC	COG1121	Zinc import ATP-binding protein ZnuC	ATGAGCAACGCGTTGATCCGCCTCGACCAGGTGGCCGTGACGTTCGCCGGGCAGAGCGTGCTGGACAACATCCATTTAAGCGTCGAACCGGGGCAGATCGTGACCTTGATCGGCCCCAACGGCGCCGGCAAGACCACCCTGGTGCGCGCCGTGCTGGGTTTGCTCAAGCCAAACAGCGGCAGCGTCTGGCGCAAACCCAAGTTGCGCGTCGGCTACATGCCGCAAAAACTCCACGTCGATCCGACCTTGCCGCTTTCGGTCCTGCGCTTCCTGCGCCTGGTGCCAGGCGTCGATCGCGAGCGAGCCTTGGCGGCGCTGAAGGAAGTCGGCGCCGAGCAAGTGATCGACAGTCCGGTGCAAAGTGTTTCCGGGGGCGAGATGCAGCGTGTATTGCTGGCCCGGGCCCTGCTACGCGAGCCGGAGTTATTGGTGCTCGACGAGCCCGTGCAAGGCGTCGATGTCGCGGGACAGGCCGAGCTATACAGCTTGATCACCCGCCTGCGCGACCGCCATGGTTGCGGCGTGTTAATGGTCTCCCACGATCTTCATTTGGTCATGAGCACCACCGACCAAGTGGTGTGCCTCAACCGCCACGTCTGCTGCTCCGGCCACCCCGAACAAGTCAGCGGTGATCCAGCATTCGTCGAATTGTTCGGAAAGAACGCACAGAGCCTGGCGATTTATCACCACCACCATGACCATGCCCATGACCTGCACGGTTCGGTGGTCAGCGCCCCTTCTGCTTCCGATCATGTTCATGGAGACGGCTGCAAGCATGGCTGA	MSNALIRLDQVAVTFAGQSVLDNIHLSVEPGQIVTLIGPNGAGKTTLVRAVLGLLKPNSGSVWRKPKLRVGYMPQKLHVDPTLPLSVLRFLRLVPGVDRERALAALKEVGAEQVIDSPVQSVSGGEMQRVLLARALLREPELLVLDEPVQGVDVAGQAELYSLITRLRDRHGCGVLMVSHDLHLVMSTTDQVVCLNRHVCCSGHPEQVSGDPAFVELFGKNAQSLAIYHHHHDHAHDLHGSVVSAPSASDHVHGDGCKHG	PGPT0004230_805	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ZINK_RESISTANCE	ZINK_RESISTANCE-ZNU_TRANSPORT_SYSTEM,PGPT0004230-znuC-K09817	NA	NA
D1-36_00053	483	zur	COG0735	Zinc uptake regulation protein	ATGCCTATCACACCCCTTGCCAGTCGTCCCCACGATCACTCCCACTGCGTGCACAGCGCACTGTCCGAGGCCGACGCCATCTGCGCGCGCCAAGGGTTGCGCCTGACCGCCCTGCGTCGGCGCGTGCTGGAATTGGTCTGGCAAAGCCACAAGCCGCTGGGTGCATATGACATCCTCGCGGTGCTCAGCGAGCAGGACGGCCGACGGGCCGCGCCGCCGACCGTCTACCGTGCGTTGGACTTCCTGCTGGAAAACGGCTTGGTGCATCGCATCTCGTCGCTGAATGCCTTCGTCGGCTGCAACCACCCGGAGCACGCCCACCAGGGCCAGTTCCTGATCTGTCGCGAATGCCATGCGGCGATCGAGCTTGAACAAAAATCCATCAGCGACGCGATCATCGCCAGCGCCAAGGAGGTCGGCTTCGTGGTCGACACCCAGACCGTCGAAGTGGTCGGACTCTGCTCCGGCTGCCAGGGGGCCTGA	MPITPLASRPHDHSHCVHSALSEADAICARQGLRLTALRRRVLELVWQSHKPLGAYDILAVLSEQDGRRAAPPTVYRALDFLLENGLVHRISSLNAFVGCNHPEHAHQGQFLICRECHAAIELEQKSISDAIIASAKEVGFVVDTQTVEVVGLCSGCQGA	PGPT0003905_802	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTUDRUG_RELATED_REGULATION,PGPT0003905-zur-K09823	NA	NA
D1-36_00054	933	znuA	COG4531	High-affinity zinc uptake system protein ZnuA	GTGTCCCGAATTTTTTCGCTCTTTGTCGCTTTTGTCGCAAGTTTTCTGCTGATCGGCCCGGTCCAGGCGGACGTCAAGGTACTCACCAGCATCAAGCCGCTGCAATTGATTGCCGCCGCGGTGCAGGACGGCGTGGCAGTTCCGCAGGTATTGCTACCGCCGGGGGCTTCGCCCCATCACTATGCGTTGCGGCCATCCGATGTACGCAAGGTGCAATCGGTGGATTTGCTCTACTGGATCGGCCCAGACATGGAAGGTTTCCTACCGCGTGTGCTGAATGGTCGTACCTTGCCTTCCATCGCGGTCCAGGACTTGCCGGGGCTCAAGTTGCGTCATTTCGCCGAGGACAGCGCGTCCCACGAGGATCATGACCATGATCAGGGCGATGACCACGATCACGACCACCGCCCCGGCACCGTGGATGCCCACCTGTGGCTTTCGCCGCACAATGCGCGGGTGATCGCCGCCAGGATGGCGGCTGACCTGAGCGCTGCGGATCCGGCGAACGCTGCCCGTTACCAAGGCAACCTCAAGGGCTTCAACCAGCGTCTCGATGCGTTGGATACACGCCTCAAGGCCCGCCTGGCCGGGGTCGCGGGCAAACCTTATTTTGTCTTTCACGAGGCGTTCGATTATTTCGAAGACACTTACGGCCTCAAGCACGCCGGTGTGTTCGCCGTGGCCGCCGAAGTGCAGCCCGGAGCCCAGCATGTGGCGGCGATGCGCACGCGCTTGCAAGCGGTAGGCAAGACCTGCGTCTTCAGCGAGCCGCCGTTGCGCCCGCGCCTGGCCGAAACCCTGGTGGCCGGGTTGCCGGTGAAACTGGCGGAGCTGGACGCACTGGGCGGCTACACCCCTGCGACGGCGCAAGGATATGAGCAGCTGTTGGAAAAGTTGGGCAATGATCTGGCGGGGTGTCTGGAGTCGTTATAA	MSRIFSLFVAFVASFLLIGPVQADVKVLTSIKPLQLIAAAVQDGVAVPQVLLPPGASPHHYALRPSDVRKVQSVDLLYWIGPDMEGFLPRVLNGRTLPSIAVQDLPGLKLRHFAEDSASHEDHDHDQGDDHDHDHRPGTVDAHLWLSPHNARVIAARMAADLSAADPANAARYQGNLKGFNQRLDALDTRLKARLAGVAGKPYFVFHEAFDYFEDTYGLKHAGVFAVAAEVQPGAQHVAAMRTRLQAVGKTCVFSEPPLRPRLAETLVAGLPVKLAELDALGGYTPATAQGYEQLLEKLGNDLAGCLESL	PGPT0004220_2127	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_FACILITATING_PROTEIN	ROOT_COLONIZATION-ZINK_TRANSPORT_LIPOPROTEIN,PGPT0004220-znuA-K09815	NA	NA
D1-36_00055	1011	thrB	COG2334	Homoserine kinase	ATGCCGCTCTCGACTTCAACCGGCGCTCGCTGCAGAGCGCCCGTACTGGCAGTTTTAACCATGTCTGTGTTCACGCCCCTGGCTCGGCCCGAGCTGGAAACCTTTCTCGCCCCTTACGGGCTCGGCCGCCTGCTTGACTTCCAGGGGATCGCCGCTGGCAGCGAAAACACCAATTTTTTCATCAGCCTTGAGCGGGGCGAATTCGTCCTGACCCTGGTCGAGCGCGGCCCGGTGCAGGAAATGCCGTTCTTCATCGAGCTGCTGGACGTGCTGCACGACGCCAACCTGCCGGTGCCCTACGCACTGCGCACCACCGACGGCGTTGCGTTGCGTGAACTGGCCGGCAAACCGGCACTGCTGCAACCGCGCCTGGCCGGCAAGCACATCAAGCAGGCCAATTCGCAGCATTGCGCGCAGGTCGGCGAATTGCTCGCACACCTGCACCTGGCGACACGCGACAAAATGATCAAGCGCAAGACCGATCGCGGCCTCGACTGGATGCAGGAGGAGGGTGCCAAGCTGTTGTCGCGCCTCGATGCCGAAGCCCATCGGCTGCTGGAAACAGCGCTGGACGAGATCTCGCTGCAAAAGGTCGGCATCCTCGCGCTGCCTCGCGCCAACATCCACGCGGACCTGTTCCGCGACAACGCGATGTTCGAAGGCACGCACCTGACCGGATTGATCGATTTCTACAACGCCTGCTCCGGGCCGATGCTTTATGACGTCGCCATCGCCTTGAATGACTGGTGTTCGGACGATGACGGCGTGCTCGACGGTCCCCGGGCAAGAGCACTGCTGGGGGCCTACGCCGCGCTACGGCCGTTCACCGCCGCCGAGGCGCAGCTGTGGCCGACCATGCTGCGCGTGGCGTGCGTGCGGTTCTGGTTGTCGCGGTTGATCGCCGCCGAATCGTTTGCCGGGCAGGATGTGTTGATTCACGATCCCATGGAGTTCCAGCAGCGCTTGGCGCAGCGGCAGACGGTTCATGCGTTGTTGCCGTTCGCCCTATAA	MPLSTSTGARCRAPVLAVLTMSVFTPLARPELETFLAPYGLGRLLDFQGIAAGSENTNFFISLERGEFVLTLVERGPVQEMPFFIELLDVLHDANLPVPYALRTTDGVALRELAGKPALLQPRLAGKHIKQANSQHCAQVGELLAHLHLATRDKMIKRKTDRGLDWMQEEGAKLLSRLDAEAHRLLETALDEISLQKVGILALPRANIHADLFRDNAMFEGTHLTGLIDFYNACSGPMLYDVAIALNDWCSDDDGVLDGPRARALLGAYAALRPFTAAEAQLWPTMLRVACVRFWLSRLIAAESFAGQDVLIHDPMEFQQRLAQRQTVHALLPFAL	PGPT0020285_1062	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_SERINE_DEGRADATION,PGPT0020285-thrB2-K02204	NA	NA
D1-36_00056	288			hypothetical protein	ATGCGTACACTAAATCGCCTGTTACTCGCTGGTTTGTTTGCATTCACCCCGATAGCCGTCATGGCAGCGGATGACGCTCCCTCGGCGGACCCGGATGTCACTATCCGCACCGAAGGCGATAAAACCATCCAGGAATATCGGCAAAACGGCTTTTTGTACGCGATCAAGGTCACGCCCAAGAACGGCAAGCCTTATTTCCTGGTACGCGCCGACGGCACCGATGCAAATTTCATCCGCTCGGACCAGCCGGATATGCTGATCCCTTCGTGGAAAATCTTTGAGTGGTAA	MRTLNRLLLAGLFAFTPIAVMAADDAPSADPDVTIRTEGDKTIQEYRQNGFLYAIKVTPKNGKPYFLVRADGTDANFIRSDQPDMLIPSWKIFEW				NA	NA	NA	NA	NA
D1-36_00057	2769	polA	COG0258	DNA polymerase I	ATGAGCCAAGCCCCCCTCGTCCTGGTGGACGGTTCTTCTTATCTGTACCGCGCCTTTCACGCGCTGCCACCGCTGACCACCTCCAAAGGCCTGCCGACCGGTGCGGTCAAGGGCGTGCTGAACATGCTCAAGAGCCTGCGCAAGCAGTATCCGGACAGCCCATTCGCGGTGGTATTCGACGCAAAGGGTGGGACATTTCGCGATGCGCTGTACGCTGAATATAAAGCCAACCGCCCAAGCATGCCCGACGACATGCGCGTGCAGATCGAACCGCTGCACGCCAGCGTCAAGGCCCTGGGTTTCCCACTGCTGTGCGTGGACAACGTCGAAGCCGACGACGTGATCGGCACCCTGGCCCGTAGCAGTGCCGCCGCCGACCGGCCTGTGGTGATCTCCACTGGCGACAAGGACATGGCGCAACTGGTCGATGGGCACATTACCTTGGTCAATACGATGACCGGTAGTGCGCTGGACGTGGCTGGCGTGAAGGAGAAGTTTGGCGTCGCTCCAGAGCAGATCATCGATTACCTGGCGTTGATGGGCGATTCTTCCGACAACATCCCGGGCGTTCCGGGTATCGGACCGAAGACCGCGTCCGGCCTGTTGGTAGGCGTCAACGGCGGCCTGACCGAGCTGTATGCGCAACTGGACATCGTTGCCACGCTGCCGATTCGCGGCGCCAAGACGTTGGCTGCCAAGTTGGAAGAACACAAGGAAATGGCGTTTCTTTCCTACGAACTGGCGACCATCAAGACAGACGTGCCCCTGGATATCGGCCTTGACGACCTGCAGATGGGCTCGCCGGATCACGAAAAGCTCGCCGAGTTGTATACGCTGCTGGAATTCAAGAGCTGGTTCGAAGAGAACCAGCGCGACGCCAAGCGTGCCGGCCAGGATATCGTGGAAGTCAACGAAGAGCCGGCGGCGGGTATCGAGAAGAAGTACGAGGTCATCCTTGATCAGGCCAGCTTCGATGCGTGGCTGGCGAAGCTGGAGCAGGCGCCGCTGTTTTCCCTGGTGACACAAACCAATGGTGGGGATGCGCAGCACTCTCAACTGGTGGGGTTGTCGTTCTCCGTGGCCCCTTTCGAGGCGGCCTACATCCCGCTGACCCATTCCTACATGGGCGTGCCGGAGCAATTGGATCGTGACACAGTGCTCAAGGCGCTCAAGCCTTTGCTGGAAAATCCGCATAAGCTCAAAGTCGGTCAGCATGCCAAGTTCGAAACCAACATCCTGGCTAATTGCGCCATCGATGGCGACCAAAACAACGGCATCCTGGTGCAGGGCATCGTCTTCGACACCATGCTGGAGTCCTACGTACTGGATTCCACGGCGACCCGTCACGATATGGACAGCCTGGCGCTGAAATATCTGGGGCAGAGCAAGACCGATATCCAGGACATCGCCGGCAAAGGCGTCAAACAGCTGAGCTTCGACCAGATTTCACTTGAGCTGGCGGGCCCGTACGCGGCCGAAGACGCCGACGTGACCTTCCGCCTGCACCAGGCCTTGCAAGAAAAACTGGCCGTCACGCCAAGCCTGGGCAAGGTGCTCAACGAGATCGAAATGCCGTTGATGCCGGTCCTGGCGCGCATCGAGCGCCAAGGGGCGCTGGTGGATGCCAACCTGCTCGGCGTACAGAGTGTCGAGCTGGGTGACAAATTGGTGGCGCTGGAGCGTGAGGCGTTTGCCATTGCCGGTGAGGAATTCAACCTGGGCTCGCCCAAGCAATTGGGCGTGATCCTGTACGAAAAGCTCGGCTTGCCGGTGCTCAGCAAAACCGCCAAGGGCCAGGCATCGACCGCCGAAGCAGTGCTTGCCGAGCTGGCGGAGCAGGATTACCCGCTGCCCAAGGTGCTGATGCAGTACCGCTCGTTGAGCAAGCTCAAGAGCACCTACACCGATCGCCTGCCGGAGCAGATCAACAGCCGCACCGGACGCGTCCATACCAACTACCAGCAGGCCGTCGCCGCGACCGGGCGTTTGTCATCCATAGACCCGAACCTGCAGAACATTCCTATCCGCACCGCGGAAGGCCGTCGGATTCGTCAGGCATTCGTCGCGCCCAAAGGCTACAAGCTGTTGGCGGCGGACTACTCGCAGATCGAGCTGCGGATCATGGCGCACCTGGCTAAGGATGAAGGGTTGCTCCATGCCTTTCGCAACGACCTGGACGTGCACCGCGCCACTGCTGCCGAAGTATTCGGCGTAGAGCTGGAGGCGGTGACCCATGATCAGCGACGCAGCGCCAAGGCAATCAATTTCGGTTTGATCTACGGCATGAGCGCCTTCGGCCTGGCCAAGCAGATCGGTGTCGATCGCAAGCAGTCCCAGGCTTACATCGATCGCTACTTCACCCGTTATCCCGGTGTGTTGGAGTACATGGAGCGCACCCGCGCACAGGCCGCCGAACAAGGTTTCGTCGAAACCATTTTCGGTCGCCGGTTGTACCTGCCGGACATCAACGCGAAAAACCCGGCCCTGCGCAAAGGCGCCGAGCGCACCGCCATCAACGCGCCGATGCAAGGCACGGCGGCCGACATCATCAAGAAAGCCATGGTTGCCGTGGATGGCTGGCTGAGCGCGTCAGGGCTGGATGCGAAAGTCATCCTGCAGGTCCACGACGAACTGGTTCTGGAAGTGCGTGAAGACCTGGTCGACCAGGTGAGTGTGGAAATCCGCCAGCACATGAGCGCCGCGGCTAAGTTGGACGTGCCGCTGCTGGTGGAAGTGGGCGTGGGCAATAACTGGGACGAGGCACACTGA	MSQAPLVLVDGSSYLYRAFHALPPLTTSKGLPTGAVKGVLNMLKSLRKQYPDSPFAVVFDAKGGTFRDALYAEYKANRPSMPDDMRVQIEPLHASVKALGFPLLCVDNVEADDVIGTLARSSAAADRPVVISTGDKDMAQLVDGHITLVNTMTGSALDVAGVKEKFGVAPEQIIDYLALMGDSSDNIPGVPGIGPKTASGLLVGVNGGLTELYAQLDIVATLPIRGAKTLAAKLEEHKEMAFLSYELATIKTDVPLDIGLDDLQMGSPDHEKLAELYTLLEFKSWFEENQRDAKRAGQDIVEVNEEPAAGIEKKYEVILDQASFDAWLAKLEQAPLFSLVTQTNGGDAQHSQLVGLSFSVAPFEAAYIPLTHSYMGVPEQLDRDTVLKALKPLLENPHKLKVGQHAKFETNILANCAIDGDQNNGILVQGIVFDTMLESYVLDSTATRHDMDSLALKYLGQSKTDIQDIAGKGVKQLSFDQISLELAGPYAAEDADVTFRLHQALQEKLAVTPSLGKVLNEIEMPLMPVLARIERQGALVDANLLGVQSVELGDKLVALEREAFAIAGEEFNLGSPKQLGVILYEKLGLPVLSKTAKGQASTAEAVLAELAEQDYPLPKVLMQYRSLSKLKSTYTDRLPEQINSRTGRVHTNYQQAVAATGRLSSIDPNLQNIPIRTAEGRRIRQAFVAPKGYKLLAADYSQIELRIMAHLAKDEGLLHAFRNDLDVHRATAAEVFGVELEAVTHDQRRSAKAINFGLIYGMSAFGLAKQIGVDRKQSQAYIDRYFTRYPGVLEYMERTRAQAAEQGFVETIFGRRLYLPDINAKNPALRKGAERTAINAPMQGTAADIIKKAMVAVDGWLSASGLDAKVILQVHDELVLEVREDLVDQVSVEIRQHMSAAAKLDVPLLVEVGVGNNWDEAH				NA	NA	NA	NA	NA
D1-36_00059	642	engB	COG0218	putative GTP-binding protein EngB	ATGCAACTGAAGAACCCCATCCTTGGCCTGTGCCAACAGTCCACCTTCATGCTCAGCGCTGCCAAAGTCGATCAATGCCCTGACGACGAAGGTTTCGAAGTGGCTTTCGCCGGACGTTCCAACGCTGGCAAGTCCAGCGCGCTGAACACCCTGACCCATGCAAGCCTGGCGCGCACCTCGAAAACCCCAGGTCGCACGCAGCTCTTGAACTTCTTCAAGCTAGACGATGAACGCCGTTTGGTCGACCTGCCGGGCTACGGTTATGCCAAGGTGCCAATCCCGCTCAAACAGCACTGGCAACGTCACCTGGAAGCTTACCTGGGTAGCCGCGAGAGTTTGAAAGGCCTGATTCTGATGATGGATATCCGCCATCCGATGACCGACTTCGACCTGCTGATGCTCGATTGGGCCGTTGCCAGCGGCATGCCGATGCACATCTTGCTGACCAAGGCCGACAAGCTCACTTACGGCGCGGCAAAGAACACCCTTCTCAAAGTGCAATCGGAGATCCGTAAGGGTTGGGGCGACACGATTACTATCCAGTTGTTCTCTGCCCCCAAGCGCATGGGGCTGGAAGAGGCCTACACGGTATTGGCCGATTGGATGGAGCTGGCGGACAAGGGCGGCGAGGCGGCTGAATAG	MQLKNPILGLCQQSTFMLSAAKVDQCPDDEGFEVAFAGRSNAGKSSALNTLTHASLARTSKTPGRTQLLNFFKLDDERRLVDLPGYGYAKVPIPLKQHWQRHLEAYLGSRESLKGLILMMDIRHPMTDFDLLMLDWAVASGMPMHILLTKADKLTYGAAKNTLLKVQSEIRKGWGDTITIQLFSAPKRMGLEEAYTVLADWMELADKGGEAAE	PGPT0003655_8	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003655-hemB-K01698	NA	NA
D1-36_00060	291			hypothetical protein	ATGACGAAATGGCTGCTAGCTGCCGGTGTCTTGATGCCGCTTTACAGCGCTCAGGCTACACAGGATCCGGAAGCTGTGTACAACCGTGTTTGTGGTGCCTGTCATTCCGGCCAACTACCCATGGCGCCTCGCAAGGGTGACCAGGAAGCTTGGACGCCGAGGTTGGCGAAAGGTATGGGGACGCTGGTGCAACACGTGACCCAGGGTTTCAAGGCGATGCCGCCGCGTGGTTTGTGCATGGACTGCAGTGCCGAGGATTACCAAGCCATCATCCAGTGGATGAGCGAGTAA	MTKWLLAAGVLMPLYSAQATQDPEAVYNRVCGACHSGQLPMAPRKGDQEAWTPRLAKGMGTLVQHVTQGFKAMPPRGLCMDCSAEDYQAIIQWMSE				NA	NA	NA	NA	NA
D1-36_00061	612	cc4	COG2863	Cytochrome c4	ATGAACAAACTGATCGTGAGTCTGCTGTTGACCTTGGGGATATCCGGCGTAGCCCACGCCGCTGGCGATGCCGCCGCCGGTCAGGCGAAAGCGGCCGTATGCGGGGCCTGCCACGGTCCGGATGGCAATAGCATGGCGCCCAACTTTCCAAAACTGGCGGGCCAGGGTGAGCGCTACCTGACCAAGCAGCTGAAGGAAATCAGGGATGGCAAGCGTGTCGTCCTGGAAATGACCGGCCTGCTGAACAACCTGAACGATCAGGATCTGGCGGACCTCGCGGCGTATTTCGCCAGCCAGAAGGGCAGCGTTGGCGCCGCCGATCCAAAACTAGTGGCTCGCGGCGAAGCGCTGTTCCGCGGTGGCAACCTGGAAAAAGGCCTCCCAGCCTGCACCGGGTGCCACTCCCCTGACGGCAAGGGCAACGCCGCTGCCGGTTTCCCACACCTGGGCGGCCAGCATGCCCAGTACATCACCAAGCAACTCACCGATTTCCGCAAGGAAGAAGGTGGTCGCGCCAACGATGGCGACGCGATGACCATGCGTACGATTGCTCGCAAGCTGAGCGACGAAGACATCGCGGCCGTTTCCAGCTACATCCAGGGCCTGCACTGA	MNKLIVSLLLTLGISGVAHAAGDAAAGQAKAAVCGACHGPDGNSMAPNFPKLAGQGERYLTKQLKEIRDGKRVVLEMTGLLNNLNDQDLADLAAYFASQKGSVGAADPKLVARGEALFRGGNLEKGLPACTGCHSPDGKGNAAAGFPHLGGQHAQYITKQLTDFRKEEGGRANDGDAMTMRTIARKLSDEDIAAVSSYIQGLH				NA	NA	NA	NA	NA
D1-36_00062	642	dsbA	COG0526	Thiol:disulfide interchange protein DsbA	ATGCGTAATCTGATCATCAGCGCCGCGCTCGTCGCCGCCAGCCTGTTCGGCGTGACTGCCCAAGCAGCTGAAGCACCCGCCGCGCCTTATGTCGAATTGGCCAACCCCGTGCCGGTAGCAGTGCCTGGCAAGGTCGAGGTCGTGGAGCTGTTCTGGTACGGCTGCCCGCATTGCTACGCATTCGAGCCTGTGATCAATCCATGGGCTGAAAAGCTGCCTTCGGACGTGAATTTCGTGCGCATTCCCGCCATGTTCGGCGGCCCATGGGACGCTCACGGCCAGATGTTCCTGACCCTCGAGGCCATGGGCGTCGAGCATCAGGTTCACGCTGCAGTGTTCAACGCGATCCAGAAAGAAGGCAAGAAGCTCACCAAGAAAGAAGACATGGCTGAGTTCCTCGCAACCCAGGGCGTCGACAAGGATAAGTTCCTGGCCACGTTTGATTCCTTTGCTATTCAGGGACAGATCAAGAAGGCCCGTGAGCTGGCGAAGAAATACGAAATCACCGGCGTACCGACCATGGTCGTCAATGGCAAATACCGCTTTGACATCGGCTCCGCTGGCGGCGCGAACGAAGCGCTGCAACTGGCGGACACGCTGATCGCCAAAGAGCGAGCGGCCACCAAGGCTGCTGCCAACTAA	MRNLIISAALVAASLFGVTAQAAEAPAAPYVELANPVPVAVPGKVEVVELFWYGCPHCYAFEPVINPWAEKLPSDVNFVRIPAMFGGPWDAHGQMFLTLEAMGVEHQVHAAVFNAIQKEGKKLTKKEDMAEFLATQGVDKDKFLATFDSFAIQGQIKKARELAKKYEITGVPTMVVNGKYRFDIGSAGGANEALQLADTLIAKERAATKAAAN	PGPT0015115_756	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015115-dsbA-K03673	NA	NA
D1-36_00063	879			hypothetical protein	ATGGCCCGCTGGAGTACCGAGCGCATCGTTGGCCTGCACGAACCGCGGGTCAACGAGCACCATGTCGCCTCCACGGGCCTGCCGGCGGACAGCCGCCTGCGGTTGCTCAGTTTTAATATCCAGGTCGGCATCAGCACCGAGCGCTACCGGCACTACCTGACCCGGGGCTGGCAACATCTGCTACCCCATACGGGACGCGCCGGTAACCTGCAAAAGATAGGCGACCTGCTGAAAGACTTCGACCTGGTTGCCTTGCAGGAAGCCGATGGCGGAAGCCTGCGCTCCGGCTACATCAATCAAGTCGAACACCTTGCCCATCTTGGTGCGTTCCCCTACTGGTACCAACAACTCAATCGCAACCTCGGCCGGCTCGGCCAGCACAGCAACGGCGTGCTGAGTCGCCTGCGACCGTGGGCGATCGAAGACCATCCGCTACCAGGCCCCAAGGGGCGTGGAGCGATCCTGGCGCGCTTCGGCGAAGGTCCGGAGGCGCTGATTGTGGTGATGATGCACTTGGCTCTCGGGGCTCGCACCCGAACGATGCAGTTGGCCTACATTCGCGAACTGATCGGCGGCTACAAGCACCAGGTGCTGATGGGCGACATGAACACCCACGCCAATGACTTGCTCCAGACGTCGCCACTGCGCGACCTTGGCCTGCTCGCCCCGCAGCTCGAAGCCACGTTTCCCAGCTGGCGCCCCCAGCGCTGCCTGGACCATATCCTGCTGAGCCCGACCTTGACCCTCGAACGCGTCGAAGTATTGGCCCAGCCCATTTCCGATCACCTGCCGGTCGCGGTCGAAATACGTCTGCCGGGTTCGCTCACGGCCGACGCATTCCCTGCGCTGAGTCCTTCCCCTTGCGGACCCGATGAATGA	MARWSTERIVGLHEPRVNEHHVASTGLPADSRLRLLSFNIQVGISTERYRHYLTRGWQHLLPHTGRAGNLQKIGDLLKDFDLVALQEADGGSLRSGYINQVEHLAHLGAFPYWYQQLNRNLGRLGQHSNGVLSRLRPWAIEDHPLPGPKGRGAILARFGEGPEALIVVMMHLALGARTRTMQLAYIRELIGGYKHQVLMGDMNTHANDLLQTSPLRDLGLLAPQLEATFPSWRPQRCLDHILLSPTLTLERVEVLAQPISDHLPVAVEIRLPGSLTADAFPALSPSPCGPDE				NA	NA	NA	NA	NA
D1-36_00064	2034			hypothetical protein	ATGAGCGACGACGCCGAACGCTGGAGAGAGAAGTACCTCAAGAGCATCGAACAACAGGAAAAGCTTGAGCGCCGCTGGGACGCTCGGCTCGACTTGCTGCGTCGAGGCCTGGTGCGCAGCACCTTGGCCGCCGAGGGTACCGACCGGGCCGTAGACCAGTGCATGAAAGAGATGCGCGAGGTGGTGCGCACCGACGACATGGACGCCGCCCTCGCCGCCTTGCTGCCGCGCCTGGAGAAAGCCGTACTCGATTCCGAACAGCGCCGCGAGACGCGTGTGGACCAAATGAGCGCCGCGTTGACCGCGTTGGTCGCCCAGTTGCAATCCTTGCCGCTGCCGAAGGAAGTCAGCCGGCCATTGAAGAAGTTCTCCAAGCAATTGGATGCCCGGGTCGGCCAGGCGCGGGAAATCCCATTATTGCTCAGCGAATTGAGCGGCTTGCAGGGCAAGGCGCTGAGCGCGCTGGAAACGCCGGATCAGCCGAGCCGGCCCGGTCTGCTGCAACGGCTGTTCGGTGGGCACGGTCACGATGAGGTGCCCGTCCAGCCCCAGCCGTCCGAGCCGGCCCGGTCCAGCCCGACGCCTGAGACGGATGCCGCGGCGCTGGCGCCTGCGCAACCGGCAGTCGAGACGGTATCCATCGCACCTGCCCCCACCCCATTAGCGGAGCAAGACCACGCAGCCACCGTGCCAGAAACGGGGCCGGTCGCGGTAACGGAGCCGGCAGATGAACCGCAAGACGAGCCTGCACCGCAGCCCGAGCCGGAAGCCAGCACCCAGGTAGCCCAGGCCGCCGTCGAACCATCCCCGGTCCTCGCCGAGCACGCCGAACCCGGTACCGTGCTGGAAAACCCGGACGAGCTGGTGCCAGAGGCGTCAACGCAGCCGCTTGAGGAAATACCCCTTGCTGTCGAAGAGCCCGTCGAGCTCCCCGCATCGGTCGATCCCGATGAGGCTCATTACGCCCTGCCAGACTCGCCGGAACCCTCCTACAGCTCGGTCGCCAGGCATATCGAAGACACCCTGCTGGGCTTGCTTGGCGATCTGACGTTGCCCGAGCGTCATCGGCCCCAGGCGGAAGCCATGCGAGAGCGTTTGCGCAACGGTTTGAACTGGTATGAGTTGTTGCCGATCCTCGACGATCTGGCGGTGCTTATGTTGGCGATCACTGACAGCGGCCAGCACGAGTTTGAAGCTTATCTGCAACGACTCAACGATCGTCTGGAGTCATTCCAAAGCACGCTGCAAGCCGCCAGCGATGACCATGCCGACAATCTTTCGGCCTCCAGGGAAATGGACTCCCAGATCCGCGAGCAAGTGGATGGCCTGCAGAGCAGCATGCAGCAAGCCGATGACCTGGAAGGCCTCAAGCAAGTGCTGGAAAACCATTTGGAAGGGCTGCTGGGTACGATGGATGAACATCGCAAGCAGCGTGACCAGCGTGAGAAGGACGTTTCGATTCGCCTGAAAAGCCTGGCCGAGCGCGTTGCGTTGATGGAGCAGGACGCTCTGATCGTGCGCGAGAACCTGGAGGAGCAGCGGCAAAAGGCCTTGATCGATCCGCTGACCGGCCTGCCCAACCGCGCAGCCTGGAGCGAGCGTCTCGAACGGGAAGTCGACCAGTGGCAGCGGCACGGCAATAGCCTGTTGATCGCCATGCTCGACCTCGATCACTTCAAGCGGATCAATGACAACTACGGTCACTTGGCCGGCGACCGGGTACTCAAGCTCATTGCCTCGGTCCTGCGCAAGCGTATCCGCGGCAGTGACTTCATCGCCCGCTTTGGCGGCGAGGAGTTCGTCCTGCTGGTGCCAGACACACCTCTCGCGGCCGGCGCAAAACTGGCCGAGGTATTGCGCGCGGCCATCGAGGCCTGTCCGTTTCATTTCAAGGGCGAGCCAGTGACAATCACGGTGTCGATGGGCATGACGGCCTTCAAGCCGGGGGAACGCAGCGAGCTGGTGCTCAAACGAGCCGATGAGGCGTTGTATCGGGCAAAAAATGCCGGGCGTAACCGAGTGGAGCTAGGCTGA	MSDDAERWREKYLKSIEQQEKLERRWDARLDLLRRGLVRSTLAAEGTDRAVDQCMKEMREVVRTDDMDAALAALLPRLEKAVLDSEQRRETRVDQMSAALTALVAQLQSLPLPKEVSRPLKKFSKQLDARVGQAREIPLLLSELSGLQGKALSALETPDQPSRPGLLQRLFGGHGHDEVPVQPQPSEPARSSPTPETDAAALAPAQPAVETVSIAPAPTPLAEQDHAATVPETGPVAVTEPADEPQDEPAPQPEPEASTQVAQAAVEPSPVLAEHAEPGTVLENPDELVPEASTQPLEEIPLAVEEPVELPASVDPDEAHYALPDSPEPSYSSVARHIEDTLLGLLGDLTLPERHRPQAEAMRERLRNGLNWYELLPILDDLAVLMLAITDSGQHEFEAYLQRLNDRLESFQSTLQAASDDHADNLSASREMDSQIREQVDGLQSSMQQADDLEGLKQVLENHLEGLLGTMDEHRKQRDQREKDVSIRLKSLAERVALMEQDALIVRENLEEQRQKALIDPLTGLPNRAAWSERLEREVDQWQRHGNSLLIAMLDLDHFKRINDNYGHLAGDRVLKLIASVLRKRIRGSDFIARFGGEEFVLLVPDTPLAAGAKLAEVLRAAIEACPFHFKGEPVTITVSMGMTAFKPGERSELVLKRADEALYRAKNAGRNRVELG				NA	NA	NA	NA	NA
D1-36_00065	792	amiD_1	COG3023	N-acetylmuramoyl-L-alanine amidase AmiD	ATGTTCTTTGCCATGAAACTTATCCCGCTTCTTGCTTCGCTGCTCCTACTGGCCGGTTGTGCGAGCGGCCCCCGGCTCGATACCAGCCACCCATCGGTCAACCACGACAGCCGTGCCCAATACATCGTGGTGCACTACACCTCGGCTTCGCTTGAACGTTCGTTGTCCCTGCTGACCCACGGCGAAGTCAGCGCTCACTACCTGATAGGGGACGATAAGGACGCGACCATCTACAAGCTGGTGGACGAAAACCGGCGCGCCTGGCACGCCGGGGAAAGCGAGTGGCAAGGCCGGACCTGGCTCAACTCCAGCTCCATTGGGATCGAGATCGTCAATCCGGGCTATATCGACACGGCCACCGGCCGCCTCTGGTACCCCTACAGCGAAGCTCAGGTGCAATCGTTGATCGCCTTGCTCAAGGATATTACTCGGCGTAACGCGATCAACCCGGTCAATATCATTGGCCATAGCGACATTGCCCCCAACCGCAAGCTGGATCCCGGTCCGTTGTTTCCCTGGAAGCGACTCGCGCAGGCAGGCCTGGGCGTCTGGCCGGACGAGGGGGCGGTCGCGCGCCAGCAGGCTGCCTATGGCGCTGAGTTGCCGGCCGCCAGTTGGTTCCAGGCCGAGCTGGCCCGCCTTGGCTACCCGACACCCCGCACCGGTGAATGGGATGTCGCCACCCACCAGGTACTGGCCGCCTTCCAGATGCGCTACCGGCCGGCCCGGTTCGATGGCTCGCCAGACGCGCAAAGCGCGGCGATTTTGCAGGTGCTCAATCAGACAAAATAA	MFFAMKLIPLLASLLLLAGCASGPRLDTSHPSVNHDSRAQYIVVHYTSASLERSLSLLTHGEVSAHYLIGDDKDATIYKLVDENRRAWHAGESEWQGRTWLNSSSIGIEIVNPGYIDTATGRLWYPYSEAQVQSLIALLKDITRRNAINPVNIIGHSDIAPNRKLDPGPLFPWKRLAQAGLGVWPDEGAVARQQAAYGAELPAASWFQAELARLGYPTPRTGEWDVATHQVLAAFQMRYRPARFDGSPDAQSAAILQVLNQTK	PGPT0024155_632	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_AMIDASE_ACTIVITY,PGPT0024155-amiD-K11066	NA	NA
D1-36_00066	1617	pdeB	COG4943	putative cyclic di-GMP phosphodiesterase PdeB	ATGATGACGGCTGCGCGCGAAACCCTGCAGAGCTGGCTCCATCGCCCTATTTTCCTGGCGATGACGGCGGCTGCCCTAAGTACCGTGTTGTTGCTGGCGGGCAGCCTGTTTGTCGTCATGCAACAGATCCAACAGCGTGAAAGCGATCAGATGAATGCCCAAGGCGAGCGTTTCCTGCAGCGCCTGGAACAACTTTTCGGCCAACTGCGCGAAAGCCTCGATGACCTGCAGGCACAACCGCTGCGTGGCTGTAACGACGACATGATCGCCACCTTGCAGCAGGTGAGTTTCAATTATCGGTTCGTCTACGAGGCGGCTTATATCGACAGCTCCGGCATGTGCTCCAGTCGTCCGCGCCAGAGCGCTTTGTCGCTGGCACGAGCGCCTGACTTGCGGGGCCCCGCCTACAGCTATTGGCTCAATACCACCACGGAGCCCGACGAGAACCGTGCTGCGTTGATGTTGGGGCGCGGAAATTTCCGAGTGGCAACGTCTCGCGGCCACCTGACCGATGTGGTCGACCTGCCGCCGGGCAGCAGCCTGCTCGTCGTCCTGGATGCTGGCGAGCGGGCCATTCCAGTCCTAGGCACCGAACAGCGCTGGCCACCGACGGAGCCGTGGCCACCGAAAAGCAAAAACGCTTTGCAAGTCACCAAGCATCGGTTGATCTACCGAATGCCGACCGATAACCCGGAATACCAATTGGTGCTGATTGCGCCCCGTAACGGCGTACGCATTCCGGCCAACGCCTGGTGGATGCTGCCTATCAGCCTGGTGCTGGGGCTGGGCATTGGTTTCCAAGTCTTTTTACTCGCGCGCCAGCGTCAGTCCATGGATGCCGAGTTGCACGGTGCTATCCGACGCGGCGAGTTGCAGGTGCTCTATCAACCGATCTTCGATCTACACAGCCGCAACTGCGTAGGCGCCGAGGCCTTGCTGCGCTGGCGCCGGCCGGACGGCACCCTGACCAGCCCGGATCTGTTTATTCCGATGGCGGAGGACACCGGGCAGATCCGCCAGATCACCGATTTTGTCCTCCAGCGGTTGTTCGACCAGTTGGGCCAGCTGTTGCGGGCCAATCCGCACCTCTACATTTCCGTGAACCTGGCAGCCTGCGACGTGATGGTGCCGCGTATCGGCGATGTGATCGCCCGGCTGCTGGCGATGCATCGTGTGTCGGCGCACCAGATTGCCTTCGAAGTCACCGAGCGTGGCCTGGTCGACGTGCTCGTCGCTCGCGATAACCTGCAATCGTTGCGCGACGTAGGGCATCAGGTATTGATCGATGACTTCGGCACCGGCTATTGCAGCCTGGCTTACTTGCAGACACTGCCGGTGGACTGCCTGAAGATCGACAAGGCGTTCATCGACGCGTTGGGGCACGACGCCGCCAGCAGTGGCGTGGCCCCGCACATCATCCGCATGGCCCACGCGCTGGAGCTCAAGGTCATCGCCGAAGGCATCGAGCACGAGGCACAGGCGTCTTATTTGAGCAGCGAGGGCGTGAAGTTCGGTCAGGGTTGGTTGTTTGCCCACGCGCTCAGCGCGGTGCAGCTCATCGAGTTGATCACTCGCGGTCGCCGTCTGGTCGGGCGACGCATGGATGACGAGGCGTGA	MMTAARETLQSWLHRPIFLAMTAAALSTVLLLAGSLFVVMQQIQQRESDQMNAQGERFLQRLEQLFGQLRESLDDLQAQPLRGCNDDMIATLQQVSFNYRFVYEAAYIDSSGMCSSRPRQSALSLARAPDLRGPAYSYWLNTTTEPDENRAALMLGRGNFRVATSRGHLTDVVDLPPGSSLLVVLDAGERAIPVLGTEQRWPPTEPWPPKSKNALQVTKHRLIYRMPTDNPEYQLVLIAPRNGVRIPANAWWMLPISLVLGLGIGFQVFLLARQRQSMDAELHGAIRRGELQVLYQPIFDLHSRNCVGAEALLRWRRPDGTLTSPDLFIPMAEDTGQIRQITDFVLQRLFDQLGQLLRANPHLYISVNLAACDVMVPRIGDVIARLLAMHRVSAHQIAFEVTERGLVDVLVARDNLQSLRDVGHQVLIDDFGTGYCSLAYLQTLPVDCLKIDKAFIDALGHDAASSGVAPHIIRMAHALELKVIAEGIEHEAQASYLSSEGVKFGQGWLFAHALSAVQLIELITRGRRLVGRRMDDEA				NA	NA	NA	NA	NA
D1-36_00067	1791	kinB	COG5000	Alginate biosynthesis sensor protein KinB	ATGAAACTGGCGATGAAGCTGCGCACACGGTTGTTCCTCAGCATTTCGGCGCTGATCACAGTGGCGCTGCTAGGGCTATTGCTGGGACTGGTCAGCGTAATGCAGATGGCCAACACCCAAGAACAATCCGTTCGCGACAACTTCGTGCTGCTGGACCTGGGCCTCAAGCTCCGTCAGACACTGGGCGACCAGTTGATGATCATGCTCGACGAAACCCCCAACCTGGCGGCGCTGGAAGCGTCCAAGCGCCAGTATTTCGAGTTGCTGGACGAAGGCATCGCTCAGGAACAGCGATCGGACGAACCCGCCACCAGCTTCAGCCGCGCCAGAGCCGACTACATCAGCTTTCTCGCGGCTTTCGATGCTTCTCTGCAGCAACCCAAACATCTTGCCAACATTCAGGCGCTCACCGATAAGTTCAACGTATTACGTGGAGGCTTGATCGAGGGCTATCGCCATGCCCTGAACAAAATCAGCGAAACCCAGGACCGCGCCCGCGAACGTGCCCTATTGATTTCAGGCCTGCTGGGGCTGGTGGGGCTGGCGGTGCTGATCATCGGCTTCGTGACGGCCCATGGCATCGCCCGGCGCTTTGGCGCGCCGATCGAGGCGTTGGTCGCGGCGGCTGACGATATAGGTCAAGGCAATTTCGAGGTGACGCTGCCAATCTCCTCGGCGGCGGAGCTGAACTTGCTGAGCCGGCGCTTCGGCATCATGGCCCAGGCGCTGCGCGAACATCAGGCGACCAATGTGGAGGAGCTACTCGCCGGCCAGCAACGCCTGCAAGCGGTACTCGACAGCATTGACGATGGCTTGTTGATGATTGACCGCCAAGGTCGGCTCGAGCATCTCAACCCCGTGGCGCAACGCCAATTGGGCTGGGACCAGGAGCGACTGGGACAAGGGCTCGGGGAAGCGCTTGGACGGGTCGAGCTGGACGACGAGTTGCAGCTGGTCCTGCGCGGCGGCACACAAGAGCGGGCGCCGGACGACCTGAGCATCGAAGTCGATGGCGAGTCGCGTGTGCTGACCTACAGCCTCACGCCGGTCATCCATACCCAAGGGCAGATTCTCGGCGCGGTGATGGTGCTGCATGACGTCACCGAGCAACGCGCCTTCGAACGGGTGCGCAGTGAATTCGTCCTGCGGGCCTCCCACGAATTGCGCACCCCCGTTACGGGCATGCACATGGCCTTCGGACTGCTGCAGGAGCGCATGCATTTTCCTCGAGAGTCCCGTGAAGCGGATCTACTCAATACCGTCAACGAAGAAATGCAGCGGTTGATGCAGCTCATCAATGACTTGCTCAACTTCTCTCGCTACCAGAACGGCTTGCAGAAACTCACCCTGGCGCCATGCTCCATCGAAGAACTGTTGGAAGCCGCCAGGATGCGCTTTGCCGCACAAGCGCAAGCGAAAGGTATCGAATTACTCGTCGAGATCCAGGGTCCGCTGCCGCGCCTGCATGCCGATGCGGCGCAACTGGACCGAGTGCTGGACAACCTCATCGATAACGCGATGCGCCACACCAACGATGACGGCCAGATCCGATTGCAAGCCCGACGCCATGGCGAACGGGTAATCATCAGCGTCGAAGATAACGGCGAGGGGATTGCTTATGGCCAGCAAGGACGGATCTTCGAGCCCTTCGTCCAGGTTGGGCGCAAAAAGGGCGGCGCCGGCCTCGGCCTGGCCCTGTGCAAGGAGATCGTCCAGCTTCACGGAGGACGCATGGGCGTGTACTCAAGGCCAGGGCAGGGCACCCAGTTCTACATGGCCCTGACGGTCTGA	MKLAMKLRTRLFLSISALITVALLGLLLGLVSVMQMANTQEQSVRDNFVLLDLGLKLRQTLGDQLMIMLDETPNLAALEASKRQYFELLDEGIAQEQRSDEPATSFSRARADYISFLAAFDASLQQPKHLANIQALTDKFNVLRGGLIEGYRHALNKISETQDRARERALLISGLLGLVGLAVLIIGFVTAHGIARRFGAPIEALVAAADDIGQGNFEVTLPISSAAELNLLSRRFGIMAQALREHQATNVEELLAGQQRLQAVLDSIDDGLLMIDRQGRLEHLNPVAQRQLGWDQERLGQGLGEALGRVELDDELQLVLRGGTQERAPDDLSIEVDGESRVLTYSLTPVIHTQGQILGAVMVLHDVTEQRAFERVRSEFVLRASHELRTPVTGMHMAFGLLQERMHFPRESREADLLNTVNEEMQRLMQLINDLLNFSRYQNGLQKLTLAPCSIEELLEAARMRFAAQAQAKGIELLVEIQGPLPRLHADAAQLDRVLDNLIDNAMRHTNDDGQIRLQARRHGERVIISVEDNGEGIAYGQQGRIFEPFVQVGRKKGGAGLGLALCKEIVQLHGGRMGVYSRPGQGTQFYMALTV	PGPT0026150_100	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_EXTERNAL_SIGNAL_SENSING,PGPT0026150-kinB-K11383	NA	NA
D1-36_00068	1347	algB	COG2204	Alginate biosynthesis transcriptional regulatory protein AlgB	ATGGAATCCGCCACCGAGCATCAAGGCCGCATTCTGCTGGTAGACGACGAGTCCGCCATCCTGCGTACCTTCCGTTATTGCCTGGAAGACGAGGGCTATAGCGTCGCTACCGCCAACAGTGCCGCACAGGCCGAAGCCTTGCTGCAACGCCAGGTATTCGACTTGTGCTTCCTGGACCTGCGCCTGGGCGAAGACAACGGTCTCGACGTATTGGGACAGATGCGAATCCAGGCACCCTGGATGCGCGTCGTTATCGTGACAGCTCATTCCGCCGTGGACACGGCCGTCGACGCGATCCAGGCCGGCGCCGCCGATTATCTGGTCAAGCCTTGCAGCCCGGACCAACTGCGGCTGGCGACCGCCAAGCAACTGGAGGTACGCCAACTGTCCGCCAGGCTCGAAGCCCTGGAAGGAGAAATGCGTAAGCCTAAGGACGGCCTGGACTCCCACAGCCCAGCGATGAAGGTTGTCCTCGAAACCGCTCGGCAGGTTGCCAGCACGGACGCCAATATCCTGATCCTCGGCGAGTCCGGCACCGGGAAGGGCGAACTGGCGCGGGCGATCCACGGCTGGAGCAAGCGCGCGAAGAAGTCCTGCGTCACCATCAACTGCCCATCGCTGACCACCGAACTGATGGAAAGCGAGTTGTTCGGCCACAGCCGCGGCGCGTTCACGGGTGCCAGCGAAAGCACGCTGGGGCGGGTCAACCAAGCGGACGGCGGCACGCTGTTTCTTGATGAAATTGGCGATTTTCCCCTCGCGTTGCAGCCAAAATTGCTGCGTTTCATCCAAGACAAGGAATACGAGCGGGTTGGCGATCCGGTGACCCGACGTGCCGACGTCCGCATCCTCGCCGCCACCAACCTCAATCTGGAGGACATGGTGCGCGATGGACGGTTTCGCGAGGACCTCTTGTACCGCCTGAACGTCATTACCCTGCACCTGCCACCCCTGCGCGAACGCGCCGAGGACATCCTGACCCTCGCCGATCGCTTCCTGGCGCGCTTCGTCAAAGAATACGCCCGTCCGGCACGGGGCTTCAGCGATGAGGCACGCGAAGCGCTGCTAGGCTACCGCTGGCCGGGCAACATTCGCGAGCTGCGCAACGTGGTCGAGCGCGCCAGCATCATCTGCCCTCAGGAGAAGGTTGAAATCAGTCACTTGGGCATGGCCGAGCAACCGATCAACAACGCTCCGCGTATCGGTGCCGCGCTGAGTCTCGACGAACTGGAGAAGGCGCACATCGGTGCAGTGCTCGCCACTGCCGACACCCTTGACCAGGCCGCCAAGACCCTGGGCATCGACGCGTCCACGCTGTATCGCAAACGCAAGCAATACAACCTGTGA	MESATEHQGRILLVDDESAILRTFRYCLEDEGYSVATANSAAQAEALLQRQVFDLCFLDLRLGEDNGLDVLGQMRIQAPWMRVVIVTAHSAVDTAVDAIQAGAADYLVKPCSPDQLRLATAKQLEVRQLSARLEALEGEMRKPKDGLDSHSPAMKVVLETARQVASTDANILILGESGTGKGELARAIHGWSKRAKKSCVTINCPSLTTELMESELFGHSRGAFTGASESTLGRVNQADGGTLFLDEIGDFPLALQPKLLRFIQDKEYERVGDPVTRRADVRILAATNLNLEDMVRDGRFREDLLYRLNVITLHLPPLRERAEDILTLADRFLARFVKEYARPARGFSDEAREALLGYRWPGNIRELRNVVERASIICPQEKVEISHLGMAEQPINNAPRIGAALSLDELEKAHIGAVLATADTLDQAAKTLGIDASTLYRKRKQYNL	PGPT0026155_98	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_EXTERNAL_SIGNAL_SENSING,PGPT0026155-algB-K11384	NA	NA
D1-36_00069	288			hypothetical protein	ATGAATCGTCAAGTTGCCGCCCAATTTCGCATTACCCGCCTGCATATCCAGCAGGGGCTGTGGGCTTTTGTCGCGTTGCTGGTCACGCTTGTAGCGGGTCAGCAATTGATGCTCTGGCATGAAAGCCAGAAGCCGGAAGCTCCACTGGTATCCACCTACCGTGCCCCGCAAACCCATTTCAGTGCCGCCAGTACGCTGGCGCAGGAATCCGCTTCGATGCGGATGATGGAAGTTGACCAGGCGCAGCCTCTCTCGGAAATGCCTCGTGAAGAGCGCTGGGTGTTCTGA	MNRQVAAQFRITRLHIQQGLWAFVALLVTLVAGQQLMLWHESQKPEAPLVSTYRAPQTHFSAASTLAQESASMRMMEVDQAQPLSEMPREERWVF				NA	NA	NA	NA	NA
D1-36_00070	165			hypothetical protein	ATGTTGAGCTGGGCTATTACCTTCCTGATTATTGCCATCATCGCCGCTGTATTGGGCTTCGGTGGTATCGCAGGCACCGCCACGGGCATCGCCAAGATTCTCTTTGTCGTGTTCCTGGTGATGTTCATCGCATCGTTCTTCTTTGGCCGTCGTGGCCGAGGCTGA	MLSWAITFLIIAIIAAVLGFGGIAGTATGIAKILFVVFLVMFIASFFFGRRGRG				NA	NA	NA	NA	NA
D1-36_00071	465	ivy		Inhibitor of vertebrate lysozyme	ATGAGCGTGACTCTTAAAGGACTGGCCGCCGCCCTGCTGTTGGGCGGCAGTGCCATGGCAATGGCTGCCAACGACGGTCAAATGCGGGTCAACCAATTGCTGCAGTCGGACACGCAATATCGCGAGACTTGGCAGCAGGTCGTCAAGAAGGAAGAACGTCTGCCCGAATGGGTGATGAACCTGACGGGCGATGCAGAGCAAATGAACGCGGTCGAAGAGGACGGCGACAAGTATCTGGTCGGGCCGTTGTGCGAGACTCAGGCCACTTGCAAGAGCAAACGCCTGTTCGTCGCCTTCAGCTTCGATAAAGACGAAGCTTATGCCCTGTTGGTGGAGGTGCCCGCAGGCCTGCCGGCCGATAAGTCGCCGACCCGTCACGCGGACTATCGCTTTCTTGGCAATCCCGATGAAGGTATGCAAGAACTGTTAATGGAACAGCTCAAGAAAGATCCTAACTGGTACTGA	MSVTLKGLAAALLLGGSAMAMAANDGQMRVNQLLQSDTQYRETWQQVVKKEERLPEWVMNLTGDAEQMNAVEEDGDKYLVGPLCETQATCKSKRLFVAFSFDKDEAYALLVEVPAGLPADKSPTRHADYRFLGNPDEGMQELLMEQLKKDPNWY				NA	NA	NA	NA	NA
D1-36_00073	1332	gltP	COG1301	Proton/glutamate-aspartate symporter	ATGAAGAAGGCAAAACTAAGCCTCGCCTGGCAAATCCTCATCGGTCTGGTGCTCGGGATTGCAATCGGCGCGCTGCTCAACCATTTCAGTGCCGAAAAGGCCTGGTGGATCAGCAACGTGCTGCAACCGGCAGGCGATATCTTTATCCGTCTGATCAAGATGATCGTGATTCCCATCGTGATCTCCTCGCTGATCGTTGGCATCGCCGGCGTAGGCGACGCCAAGAAACTCGGGCGGATCGGCTTCAAGACCATCGTCTATTTCGAGATCGTGACCACCATCGCCATCGTCGTCGGCCTGCTCTTGGCGAATTTCTTCCAGCCGGGCAACGGCATCGACATGAGCACCCTGGGTACGGTGGATATCTCCAAGTACCAGGCCACGGCGGCCGAGGTCCAGCATGAGCATGCGTTTGTCCAGACGATCCTCAACCTGATCCCGTCGAACATTTTCGCGGCCGTCGCTCGCGGCGAAATGTTGCCGATCATCTTCTTCTCCGTCCTGTTCGGCCTTGGTTTGTCCAGCCTGCAATCGGACCTGCGCGATCCTCTGGTGAAGATGTTCCAGGGCGTGTCGGAGAGCATGTTCAAAGTCACCCACATGATCATGAAGTACGCGCCGATCGGTGTGTTCGCCCTGATCGCCGTGACGGTGGCCAACTTCGGTTTCGCTTCCCTGTTGCCGCTGGCGAAGCTGGTGATCCTGGTTTATGTCGCCATCGCCTTCTTCGCCTTCGTGGTGCTGGGCCTGATCGCTCGGGTGTTCGGCTTCTCGGTGATCAAGCTGATGCGCATCTTCAAGGATGAGCTGGTGCTGGCCTACTCCACCGCCAGTTCCGAAACGGTGTTGCCGCGGGTTATCGAAAAGATGGAAGCGTATGGGGCGCCAAAGGCTATCTGCAGTTTCGTGGTGCCTACCGGCTACTCGTTCAACCTTGACGGTTCGACGCTGTACCAGAGCATCGCCGCGATCTTTATCGCCCAGCTCTATGGCATCGACCTGTCCATCGGCCAGCAGTTGATGCTGGTATTGACCTTGATGGTGACCTCCAAGGGCATCGCTGGTGTGCCGGGCGTGTCCTTCGTGGTGCTGCTGGCCACACTGGGCAGCGTTGGCATTCCACTGGAAGGCCTGGCGTTCATCGCCGGTGTCGACCGCATCATGGACATGGCCCGTACGGCGCTGAACGTGATCGGAAACGCCTTGGCCGTGTTGGTCATTTCCCGTTGGGAAGGCATGTACGACGATGCCAAGGGCCAGCGCTACTGGAATTCTTTGCCGCACTGGCGCAGCAAGGAGCCGTTGCCGGCAGGGGAAACTTCCAGCCGCTGA	MKKAKLSLAWQILIGLVLGIAIGALLNHFSAEKAWWISNVLQPAGDIFIRLIKMIVIPIVISSLIVGIAGVGDAKKLGRIGFKTIVYFEIVTTIAIVVGLLLANFFQPGNGIDMSTLGTVDISKYQATAAEVQHEHAFVQTILNLIPSNIFAAVARGEMLPIIFFSVLFGLGLSSLQSDLRDPLVKMFQGVSESMFKVTHMIMKYAPIGVFALIAVTVANFGFASLLPLAKLVILVYVAIAFFAFVVLGLIARVFGFSVIKLMRIFKDELVLAYSTASSETVLPRVIEKMEAYGAPKAICSFVVPTGYSFNLDGSTLYQSIAAIFIAQLYGIDLSIGQQLMLVLTLMVTSKGIAGVPGVSFVVLLATLGSVGIPLEGLAFIAGVDRIMDMARTALNVIGNALAVLVISRWEGMYDDAKGQRYWNSLPHWRSKEPLPAGETSSR	PGPT0000805_194	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-AMMONIUM_ASSIMILATION|USAGE	N-AQUISITION-GLUTAMATE_TRANSPORT,PGPT0000805-gltP|gltT-K11102	NA	NA
D1-36_00074	1230			hypothetical protein	ATGCTCAATGGCCTGTGGCTTGGCTTCTTTATCGTGGCAGCCGTGTCCGCACTGGCGCAGTGGCTGATTGGCGGCAACGCCGGGATCTTCGCCGCCATGGTGGAAAGCATCTTTGCCATGGCCAAGCTGTCGGTGGAAGTCATGGTCCTGCTGTTCGGCACCCTGACCCTTTGGCTGGGGTTCCTGCGCATCGCTGAAAAAGCCGGCATCGTCGACTGGCTCGCCAAGGCCCTCGGGCCGCTGTTTCTTCGTTTGATGCCGGAAGTCCCAGCCGGTCACCCGGCGATTGGCCTGATCACCCTCAATTTCGCGGCCAATGGCCTGGGCCTGGACAACGCCGCCACGCCCATCGGCCTCAAGGCCATGCGCGCCCTGCAGGATCTGAATCCCAGCCCGACCATCGCCAGCAATGCGCAGATTCTGTTTCTGGTGCTCAATGCATCGTCGCTGACCCTGCTGCCGGTGACCATCTTCATGTACCGCGCCCAGCAAGGCGCGCCGGACCCGACCCTGGTGTTCTTGCCGATCCTGCTCGCCACCAGTGCCTCGACCCTGATGGGGCTGCTGTCCGTGGCATTCATGCAACGTCTGCGCCTGTGGGATCCGGTGGTCCTCGCCTACCTGGTCCCGGGCGCGCTGGCGCTGGGCGGCTTCATGGCGCTGCTGGCCACGCTTTCGGCCACGGCGCTGGCGGGGCTGTCCTCGATCCTCGGGAACCTGACTTTGTTTGGCTTGATCATCCTGTTCCTGGTGGTGGGCGCGCTGCGCAAGGTCAAGGTGTACGAAACCTTCGTTGAAGGCGCCAAGGAAGGGTTCGATGTTGCCAAGAACCTGCTGCCGTACCTGGTGGCGATGCTGTGTGCCGTCGGTGTGCTGCGGGCCTCCGGAGCGCTGGATTTCGGCCTGGACGGTATTCGGCACCTGGCCCAGTGGGCTGGCTGGGACACGCGTTTCGTCGATGCGTTGCCCACTGCCATGGTCAAGCCGTTTTCCGGCAGCGCCGCCCGGGCGATGCTGATCGAAACCATGAAGACCTCTGGGGTAGACAGCTTCCCTGCCCTGGTGGCGGCGACGATTCAGGGCAGCACCGAAACCACTTTCTATGTGTTGGCGGTCTATTTCGGCGCGGTGGGCATCCAGCGAGCGCGCCATGCGGTGGGTTGTGCCCTGCTGGCGGAGCTGGCCGGTGTGGTGGCGGCGATCGGGGTTTGTTACTGGTTCTTTGGCTGA	MLNGLWLGFFIVAAVSALAQWLIGGNAGIFAAMVESIFAMAKLSVEVMVLLFGTLTLWLGFLRIAEKAGIVDWLAKALGPLFLRLMPEVPAGHPAIGLITLNFAANGLGLDNAATPIGLKAMRALQDLNPSPTIASNAQILFLVLNASSLTLLPVTIFMYRAQQGAPDPTLVFLPILLATSASTLMGLLSVAFMQRLRLWDPVVLAYLVPGALALGGFMALLATLSATALAGLSSILGNLTLFGLIILFLVVGALRKVKVYETFVEGAKEGFDVAKNLLPYLVAMLCAVGVLRASGALDFGLDGIRHLAQWAGWDTRFVDALPTAMVKPFSGSAARAMLIETMKTSGVDSFPALVAATIQGSTETTFYVLAVYFGAVGIQRARHAVGCALLAELAGVVAAIGVCYWFFG				NA	NA	NA	NA	NA
D1-36_00075	1008			hypothetical protein	ATGCCGAACCTGACTCATTTAATCCAGCGCATTATCGAACTGATGAAGCGCTACCCAGGGGTCATCGCGCTCGGCGGCTTCATTTCCGGGGTCGGCAGTTTCATGCTGGTGGATCGCCAGCAAGGCCTGGCGACCTGGATCGCCATCATGATGCTGGTGAGCTGGCTCTGGCTGATGCTGGAGAACAGCCTGACCCGGTTGTTCACACGGATTTTCAAACGGGAAATTCCCCAGCCGCTGTTGCGTTACGCCACGCAAATGATTCATCAGGAAAGCCTGTTTTTTGTCTTGCCGTTTTTCTTCATCACCACCACCTGGAACAGCAGCCAACTGATCTTCACTGGCCTGCTCGCGGCGGCGGCATTGGTCTCGATCACCGACCCCCTGTATTACAAATGGCTGGCGCCGCGGCGATGGGCTTTCCTGGCGTTGCACACCCTGACGCTGTTCGCGGCGTTGCTGACCGCCCTGCCAGTGATCCTGCACCTGACCACCGACCAGAGCTTCAAGCTGGCATTGGGCATCGCCATGCTGTTGTCATTCCCGAGCCTGGCTTCGATCTTTCCAATCCGTACCGTGCGCAACGCCCTGGCCATCCTGTGCATCACCTTGGGCATTGGCGCCGCCGGTTGGGTGCTGCGCTCCTGGGTACCGCCCGCCACGCTCTGGATGACCGAGGTGGCGATCAGCACCCAAGTGGAAGATCGCACGCCTGGCGCCAGCCTCAAGGAAGTCAGCGCCGCCCAGATTCGCAGCAATGGCCTGTACGCCTACACCGCCATCAATGCGCCGCGAGGCCTGGACGAGCGGATCTACCATGTCTGGCAATTCAACGGCAAAGAAGTGGACCGCATCGCTTTGGACATTCACGGAGGGCGCAAGGAAGGCTATCGCGCCTGGACCCACAAGCAGAATTTCCCCGGCGACCCGACAGGCAAATGGCAAGTGCGGGTGCTGACCGAGAATGGCCAGATGATCGGCGTGCTGCGGTTCAAGGTGACGGAATAA	MPNLTHLIQRIIELMKRYPGVIALGGFISGVGSFMLVDRQQGLATWIAIMMLVSWLWLMLENSLTRLFTRIFKREIPQPLLRYATQMIHQESLFFVLPFFFITTTWNSSQLIFTGLLAAAALVSITDPLYYKWLAPRRWAFLALHTLTLFAALLTALPVILHLTTDQSFKLALGIAMLLSFPSLASIFPIRTVRNALAILCITLGIGAAGWVLRSWVPPATLWMTEVAISTQVEDRTPGASLKEVSAAQIRSNGLYAYTAINAPRGLDERIYHVWQFNGKEVDRIALDIHGGRKEGYRAWTHKQNFPGDPTGKWQVRVLTENGQMIGVLRFKVTE				NA	NA	NA	NA	NA
D1-36_00076	1389			hypothetical protein	ATGCGTTGTCTGCTACTCGTCCTGCTTTTGTTCGGTTCCCTACCCGTCGTTGCCCAGGATCGCTTCCAGGTCGAGGGATATACGTTGCCCAACGGCATGCAGTTGTTGCTCAAGCCCGGCACGGAACGTGGACATGTGGCGATTCGGTTGGTGGTCGGCGTGGGCCTCGATGATTTCAGCTGCGCCGACAAGGAACTGCCACACCTGCTCGAACATGTGCTGTTCAGCGGCGTCGACGATACCGGCGAGGGCGGCCTGGAAGAGCGCATGCAGGCGCTGGGTGGCGAATGGAACGCCTTCACCAGCAACGCCGACACGACGTTTGTCATCGAGGCGCCAGCGCGCAATCAACGCAAAGTCCTGGACTTGTTGCTGGCATTGCTGACCCGTACCCGAATTGACGCAAAGAATCTGGAAGCGGCCAAACGGGTGGTAGAGCGCGAGGATGGCGGCCATTACACCCATCTGCAACGCTGGCTCGACCGCCAGGACCTGGGCCACAAAGCCAGCAACCAACTGGCCGTGGAACTGGGCTTGCGTTGTGCGGAACGGGCCGAGGTCGAACGCTTTACCGTCGCCCAACTGGAACAGGTGCGCAAGGCTTGGTACGCGCCCAATAACATGACGTTGATCGTCGTAGGTGACCTCGATCGATTGCTGCCGGCCTATCTGGAACGCGCCTTCGGCGAGCTCGAACCGGTCGAACCCAGCGTCCATGAACCGCTGGCGCAGATCCGCTACAGCGCGGTGACCAAGCGCAACCTGATTCGTGGGCTGGTCGGCGACAGCGCCAAGCTTCACTGGCTGTTCCCGGAGCCGGTGCTGGAGCAACAACATGATGAAACCTTCGACCTGCTCAAGGATTACCTGGATTGGGCGCTCTACCGGCAACTGCGCCTGGCTGACGGCCTGTCCTATGGCCCGTGGGTGGAGCGGGACGTCTTCGGCGGCGTCGGTTTCCTGAGCCTCAACGCCGACCTGGCCCGCGAGGACCTGCCCCCGGCCGAACACGCGCTCGAGACGCTGCGCAACACGTTGTTGAGGGACGGCCTGGACCCCGAGAGTTTCGTGCGGATAAAGCGTGCCGCCATTGCCCATCAGTCCTGGGCGGTCCAAGGCAACAGCGCACTGGCCGACTATTACTGGAGCGCCCTGGGCGACTACGAAGACGGCCGCTTCGCCAACCCAGCCGAGCGCCTGCAGGCAGTCAGCCTGGAACAGGCCAACCTGGCCCTGCGTGAGCTGCTCAAGGACCCAGGCTATTTGCGCATCGAGAAGCCGCTGCTCAGCGATGACGAACTTGTCTGGACACTCGGCGGGTTGGTGGCGGTTCTGCTGGGGCTGGTGGCCTGGCTGATACGGCGCAGGCATCGACGGGACCCGGAATGA	MRCLLLVLLLFGSLPVVAQDRFQVEGYTLPNGMQLLLKPGTERGHVAIRLVVGVGLDDFSCADKELPHLLEHVLFSGVDDTGEGGLEERMQALGGEWNAFTSNADTTFVIEAPARNQRKVLDLLLALLTRTRIDAKNLEAAKRVVEREDGGHYTHLQRWLDRQDLGHKASNQLAVELGLRCAERAEVERFTVAQLEQVRKAWYAPNNMTLIVVGDLDRLLPAYLERAFGELEPVEPSVHEPLAQIRYSAVTKRNLIRGLVGDSAKLHWLFPEPVLEQQHDETFDLLKDYLDWALYRQLRLADGLSYGPWVERDVFGGVGFLSLNADLAREDLPPAEHALETLRNTLLRDGLDPESFVRIKRAAIAHQSWAVQGNSALADYYWSALGDYEDGRFANPAERLQAVSLEQANLALRELLKDPGYLRIEKPLLSDDELVWTLGGLVAVLLGLVAWLIRRRHRRDPE				NA	NA	NA	NA	NA
D1-36_00077	1659			hypothetical protein	ATGCTGACCCTGCTGAATCTACTTTCCGCCGTGGCCTTGCTGATCTGGGGCACGCATATCGTCCGGACCGGCATCTTGCGGGTCTACGGCTCGAACCTGCGCCATGTCATTGGCCAGAACATGTCCAGGCGCTGGCTGGCGTTCATCGCCGGCATCATGGTCACGGCCATGGTCCAGAGCAGCAATGCCACGGCGATGCTCGTCACTTCCTTCGTCGGCCAGGGCCTGATGGCATTGACCCCTGCCCTGGCGACCATGCTCGGTGCGGACGTCGGCACCGCATTGATGGCCCGGGTGCTGACCCTGGACCTGTCGTGGCTGTCGCCGCTGCTGATCTTCCTCGGAGTGATTTTTTTCCTCTCGCGCAAACAGACCCGCGTCGGCCAGATGGGCCGGGTCTCCATCGGCCTGGGCCTGATCATCCTGGCCCTGCAATTGATTGTCGAAGCCGCCGCGCCGATCACCCAGGCCCAGGGCGTGAAGGTGATTTTCGCCTCGTTGACCGGCGACATCCTGCTCGATGCCTTGGTGGGTGCGCTGTTCGCAATGATTTCCTATTCCAGCCTGGCGGCGGTTTTGCTGACCGCGACCCTCGCCGGCGCTGCGGTGATCAGCTTGCCAGTCGCCATCGGCCTGGTGATCGGTGCCAATATCGGCAGCGGCGTGCTGGCGTTCCTCAGCACCAGCATGCAGAACGCCGCCGGACGCCAGGTGGCGCTGGGCAGCCTGTTGTACAAGCTGATCGGCCTGCTGCTGATCATTCCGGTACTCGACCCGCTGGTGGGTTGGCTGGACGGCCTGGATTTCAGCCCCCAGGAAACCGTCATTGGCTTTCATTTGCTCTATAACACCGTGCGTTGCCTGGTGCTGTTGCCCAGCGTCGGACCGATGGCCAGGCTCTGTGCCTGGCTGCTGCCGGAACGACCGCAAGCCAATGGCAAAGCCACGTCACGGCACCTGGACCCCGCCGCCCTCGCCACACCAAGCCTGGCGCTGGCGAACGCCGCGCGGGAAACCCTGCGCATTGGCGACCTGATCGAAAACATGCTCGAGGCCATGCTCGGCGTGCTACGAGGCGAGCAAACGGCGATCACTCAACAACTGCGCAGCATGAGCGATGACGTCGAAGCGCTGTGCAGCGCCATCAAGCTCTACATGGCGCAAATGCCTCGTGAAGATCTTAGTGAACAGGACAGTCGCCGCTGGGCGGAAATCATCGAGCTGGCGATCAACCTCAAACTGGCCAGTGACCTCATCGAACGCATGTTGCGCAAGGTCCAGCAGCAGAAGACCTCCCAACGCCGCTCATTCTCTGACGTGGGCCTGGAAGAATTGGCGGGACTGCACAGCCATCTGATCGCTAACCTGCGCCTGGGATTGTCGGTCTTCCTCAGTGCCGATCGGGAAAGTGCTCGCCAATTGCTGCGCGAGAAACGGCGCTTTCGCGCGCAGGAACGACGGATGGCCCACGCCCATGTCAGCCGCTTGCAGCGCAAAGTAGTGCAAAGCCTTGAGACGAGTTCCCTTCACTTGGAACTGATCGCCGACATGCGGCGCTTGAATTCGTTGTTCTGCGGCAGCGCCTATGTGGTGCTGGAAACATCCGAGATCGGCGCCCTGTCCGCCGACGAAATGTCCGACATCACCCATTCGCCTTGA	MLTLLNLLSAVALLIWGTHIVRTGILRVYGSNLRHVIGQNMSRRWLAFIAGIMVTAMVQSSNATAMLVTSFVGQGLMALTPALATMLGADVGTALMARVLTLDLSWLSPLLIFLGVIFFLSRKQTRVGQMGRVSIGLGLIILALQLIVEAAAPITQAQGVKVIFASLTGDILLDALVGALFAMISYSSLAAVLLTATLAGAAVISLPVAIGLVIGANIGSGVLAFLSTSMQNAAGRQVALGSLLYKLIGLLLIIPVLDPLVGWLDGLDFSPQETVIGFHLLYNTVRCLVLLPSVGPMARLCAWLLPERPQANGKATSRHLDPAALATPSLALANAARETLRIGDLIENMLEAMLGVLRGEQTAITQQLRSMSDDVEALCSAIKLYMAQMPREDLSEQDSRRWAEIIELAINLKLASDLIERMLRKVQQQKTSQRRSFSDVGLEELAGLHSHLIANLRLGLSVFLSADRESARQLLREKRRFRAQERRMAHAHVSRLQRKVVQSLETSSLHLELIADMRRLNSLFCGSAYVVLETSEIGALSADEMSDITHSP	PGPT0002650_1092	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SODIUM_TRANSPORT,PGPT0002650-yjbB-K03324	NA	NA
D1-36_00078	768			hypothetical protein	ATGGAATGGCTGACCAACCCGGAAATATGGGTTGCCTTCTTTACCCTGACCGCCCTGGAAATTGTCCTGGGCATCGATAACATCATCATGATCTCGATCCTGGTCAGCCGCATGCCCAAGCACATGCAGGCGCGCACCCGGATTTTCGGCTTGGCGCTGGCGATGATCACGCGGATCCTGTTGCTGCTGTCGATCACCTGGGTCATGCGCCTGACCGCCGATCTGTTCGAAGTGTTCGGCCAGGGCATCTCCGGTCGTGACCTGATCCTGTTCTTCGGTGGCTTGTTCCTGCTGTGGAAAAGCTCCCAGGAGATGTACCACGCGCTGGAAGGCGAGGAAGAAAGCAGCGATGAGCCGTCGGTCAAGGGTGGCAACTTCATCTACACCATCATCCAGATCGCAATCATCGACATCGTGTTCTCCCTGGACTCGGTCATCACCGCCGTGGGCATGGTTTCCCACGTACCGGTCATGGTGGCGGCAATCATCGTTGCCGTCCTGGTGATGATGCTGGCTTCGGGCACCATCAGCACGTTCATCGACAAGCACCCGTCGCTGAAGATGCTGGCGCTGTCGTTCCTGCTGGTGGTCGGTACCGTGCTGATCGCCGAATCGTTCGACGTGCACGTGCCCAAGGGCTACGTCTACTTCGCCATGGCGTTCTCGCTGGCAGTGGAAGCGATCAACATCAAGATGCGCACAGCGATTGCTCGCAAGCGCAAGCAACAGGATCCGGTGAAACTGCGCAAGGATGTCCCGGGTCAGTAA	MEWLTNPEIWVAFFTLTALEIVLGIDNIIMISILVSRMPKHMQARTRIFGLALAMITRILLLLSITWVMRLTADLFEVFGQGISGRDLILFFGGLFLLWKSSQEMYHALEGEEESSDEPSVKGGNFIYTIIQIAIIDIVFSLDSVITAVGMVSHVPVMVAAIIVAVLVMMLASGTISTFIDKHPSLKMLALSFLLVVGTVLIAESFDVHVPKGYVYFAMAFSLAVEAINIKMRTAIARKRKQQDPVKLRKDVPGQ				NA	NA	NA	NA	NA
D1-36_00079	1308	citN_1	COG2851	Citrate transporter	ATGCTGACTTTCCTTGGCTTTGCCATGGTCATCACGTTCATGTTCCTGATCATGACCAAGCGCCTTTCCGCGCTGATCGCCTTGATCATCATCCCGATCCTGTTCGCCCTGTTCGGCGGTTTTGCACCGAAGATCGGCCCGATGATGCTCGAAGGCATCACCAAGCTCGCCCCTACCGGGGTGATGCTGATGTTTGCGATTCTCTATTTCGCCCTGATGATCGACTCCGGCCTGTTCGACCCGGCCGTTCGCAAGATCCTCAAGCTGGTCAAGGGCGACCCGTTGAAAGTTTCGGTCGGTACCGCCGTTCTGGCGCTCGTCGTTTCCCTTGATGGTGACGGCGCGACCACTTACATGATCTGCGTGGCCGCGATGCTGCCGCTCTACAGCCGCATCGGCATGAGTCCAAGGATCATGGCTGGCCTGATCATCCTCGCCGGCGGCGTGATGAACATGACCCCCTGGGGCGGCCCGACCGCCCGGGCGGCCAGTGCGCTGCATGTGGATCCGTCCGACATCTTCGTGCCGATGATTCCCGCCATGTTGGCCGGCGTCGTGGCGATCCTGGCGATTGCCTACATGTACGGCAAACGCGAGCGTGCGCGCCTGGGTGAATTGCACCTGGCGGGCGACGAAATGGACCACAGCGAAATCAGCGTTTCCCAGTTCCCGGACGCCCGCCGTCCGAAGCTGATCTGGTTCAACGGCGCGCTGACCCTGGTCTTGATGTGCACCCTGATCGCCGGCCTGTTGCCGCTGCCCGTGCTGTTCATGGTGGCGTTCAGTATTGCGATGATCGTCAACTATCCGTGCCTGCAGCAGCAGAAGGACCGCGTCGCGGCCCACGCCGGCAGCGTCCTGGCGGTGGTCGGGCTGATTTTCGCGGCGGGGATCTTCACCGGCATCCTGTCCGGCACCGGCATGGTCGACGCCATGTCCAAGAGCCTGCTGGCGGTCATCCCGGACTTCCTCGGCCCGTACCTGGCGGTCATCACCGCGCTGGTGAGCATGCCGTTCACTTTCTTCATGTCGAACGATGCATTTTATTACGGGGTGTTACCAGTTCTGGCGGAAGCGGCCAGCCATTACGGCATCACTGGCGTCGAGATGGCCCGTGCCTCCATCGTTGGCCAGCCCGTCCACCTGCTGAGCCCGCTGGTTCCGTCGACTTACCTGCTGGTAGCCTTGGCCGGTATCGAATTCGGCGATCACCAGCGCTTCACCTTGAAGTGGGCAGTACTGGTTTGCCTGTGCATAATGTTCGCCGCCTTGCTGATGGGGATTTTTCCGCTGTTCAGCACTCTATAA	MLTFLGFAMVITFMFLIMTKRLSALIALIIIPILFALFGGFAPKIGPMMLEGITKLAPTGVMLMFAILYFALMIDSGLFDPAVRKILKLVKGDPLKVSVGTAVLALVVSLDGDGATTYMICVAAMLPLYSRIGMSPRIMAGLIILAGGVMNMTPWGGPTARAASALHVDPSDIFVPMIPAMLAGVVAILAIAYMYGKRERARLGELHLAGDEMDHSEISVSQFPDARRPKLIWFNGALTLVLMCTLIAGLLPLPVLFMVAFSIAMIVNYPCLQQQKDRVAAHAGSVLAVVGLIFAAGIFTGILSGTGMVDAMSKSLLAVIPDFLGPYLAVITALVSMPFTFFMSNDAFYYGVLPVLAEAASHYGITGVEMARASIVGQPVHLLSPLVPSTYLLVALAGIEFGDHQRFTLKWAVLVCLCIMFAALLMGIFPLFSTL	PGPT0001500_725	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_CITRATE_TRANSPORT,PGPT0001500-TC_CITMHS|CitMHS_family|citN-K03300	NA	NA
D1-36_00080	660			hypothetical protein	ATGAAAAACGCGGAAACCCCGGTTATCAAAGTGGTGCTTTATGGTGCCATGAGCAGCCTCGGCAGTGCGTTGATGGCTGAACTGCTGCGACGACAGCATGAAGTCATCGCCATTCTGGATGACCTTACCGCCCTGGCCCCACGCCCGGGACTGCGGGCCAAGACCGGCGATCTGTTCGACCCGGAGCGGGTCAAGCAAAGCGTCGCCGGTGTCAGCGCCGTCGTATGCCTGTTGAACGCACCAGGATTGCCGATGAACAGCGAGCAGGTGGAGCGCACATTGATTCCCGGCCCGGTGGAGCAAGTCCTGGCGGTGGACGCGTTGATTGCCGGCATGCAAGCGGTGAACATTTCACGGTTGTTTTTGGTGGGTGACTTTGCGGTGCTCGACGAAGAACAAGCCGACGACGACTTGCAGCGCCATGCCGCCGAAGAAGTGCTTGATGCTCTGAAGAACAGCACGCTGCAGTGGACCCTGATCAACGCGCCCTATGCCGCGCCAGGCTTGGGCATCGAACACTTCAGCCAGGTCAGTACCAGCCTCGAGCCGGGCCTGGCCGAAACCCTGGAGCGGCTCAACCGCGTGGCCGTCGGCATCGCCGATGAGCTGCGCTTGAACCTGCATGTGGGCGAGCACGTCAGTTTTGTCACGGCCGTGTAG	MKNAETPVIKVVLYGAMSSLGSALMAELLRRQHEVIAILDDLTALAPRPGLRAKTGDLFDPERVKQSVAGVSAVVCLLNAPGLPMNSEQVERTLIPGPVEQVLAVDALIAGMQAVNISRLFLVGDFAVLDEEQADDDLQRHAAEEVLDALKNSTLQWTLINAPYAAPGLGIEHFSQVSTSLEPGLAETLERLNRVAVGIADELRLNLHVGEHVSFVTAV	PGPT0020900_144	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
D1-36_00081	951	gcvA_1		Glycine cleavage system transcriptional activator	ATGTATGAAGCCTTGGGTGACCTCTCCCTGGACCTGTTCCGTGTCTTCGAATCAGCGGCTCGCCAGCAAAGCTTCACCGCGGCCGCAATCGAGCTGGGCACCACGCAGCCGGCCATCAGCCAGCAGATCAAACGTTTGGAAGAACAGCTGGGCACGCGGCTGTTTGACCGCATCTATCGAGGCATCGAGCTGACTGAAGCCGGCACGCTGCTGTTCGAGCAAGTCCAGACCGGTTTGCAAAGCATCGATGCGGGTCTGAATGCGATCACCGCCCAGCACCAGCACGAAGTGCTGCAAGTGGCGACGGACTTTGCCTTTGCCGCTTATTGGCTGATGCCTCGGCTGCATCGGTTTCACGCAGCCAATCCCCAGGTGGATGTGAGCCTGGTGACCAGCGAGCGCAACCACAACATGCTCCGTACCGATATTGACGTTGCAGTGTTGTTCGGCGATGGGCGCTTCAAACAAGGCGAAAGTCGCTGGCTGTTCAGCGAAGAAGTTTTCCCTGTATGCAGTCCGCTGCTGCTCGGAGAACGTCCCCTGCCCTTGCCCGCCCAGGCCTTGGCGGAATTCCCGTTGCTGCACCTGCGCGCGGGCAACAGCAGCAACTGGTTCGACTGGAGTGGTGTGTTTCGCGAATTAGGCATCAACTCGCCGCCAGCGCCCGGGCAGTTGCGCTTCGACAATTACACGCTGCTCATCCAGGCGGCGATCGGCGGCCAGGGCGTCGCCATCGGCTGGCGACACCTTGTGGATAACTTGCTGGCCCAAGGATTGTTGTGTCGTCCGATCGCCCAAACGGTGCTGTCCCGGCTGGGTTATTACGTGGTCTTGCCCCAGCGCAAGCGCCGCGGTGTTCTTATCAAGTTGTTCGTGGATTGGTTGATGGAAGAACAGGCCAACAGCGCCGAGTCGCTCACTGGCTTGCCGCTGCCTTCCATCGCCGTTTGA	MYEALGDLSLDLFRVFESAARQQSFTAAAIELGTTQPAISQQIKRLEEQLGTRLFDRIYRGIELTEAGTLLFEQVQTGLQSIDAGLNAITAQHQHEVLQVATDFAFAAYWLMPRLHRFHAANPQVDVSLVTSERNHNMLRTDIDVAVLFGDGRFKQGESRWLFSEEVFPVCSPLLLGERPLPLPAQALAEFPLLHLRAGNSSNWFDWSGVFRELGINSPPAPGQLRFDNYTLLIQAAIGGQGVAIGWRHLVDNLLAQGLLCRPIAQTVLSRLGYYVVLPQRKRRGVLIKLFVDWLMEEQANSAESLTGLPLPSIAV	PGPT0026360_4049	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566	NA	NA
D1-36_00082	1527	betC	COG3119	Choline-sulfatase	ATGGAATGCCGCGAATACATGAAGCGCAAGAACATTCTTTTCATCATGGCCGATCAAATGGCCGCGCCAATGTTGCCGATCTATGGTCCGTCGCCCATCAAGTTGCCGAACCTGTCCCGCCTGGCCGACCAGGGCGTGGTGTTCGATGCCGCGTATTGCAACAGTCCGTTGTGCGCGCCGTCACGCTTTACCCTGGTGAGCGGCCAGTTGCCAAGCAAGATTGGCGCCTACGACAACGCGGCGGATTTCCCAGGGGACGTTCCGACGTATGCCCACTACCTGCGCCGCCTCGGCTACCGCACGGCGTTGTCTGGCAAGATGCATTTTTGCGGACCGGACCAGCTGCACGGCTACGAAGAACGTCTGACCAGTGACATCTATCCTGCCGACTACGGCTGGGCCGTGAATTGGGATGAGCCGGATGTGCGGCCGAGCTGGTATCACAACATGTCATCGGTGTTGCAGGCCGGCCCGTGCGTACGGACCAATCAGCTGGACTTCGATGAAGAGGTGGTGTTCAAGGCCCAGCAATACTTGTTCGACCACATCCGCGAGGACGGCGACCAGCCGTTTTGCCTAACGGTATCGATGACACACCCACACGATCCGTACACGATTCCCAAGGCATTTTGGGATTTGTATGACGACAACGAGATCCCACTGCCGCAAACCCCGGCGCAGGCTGAACTCGATCCGCATTCCCAGCGCCTGCTCAAGGTCTATGATCTTTGGGATAAGCCGCTGCCTGTGGATAAGATCCGCGATGCTCGTCGAGCGTATTTCGGGGCGTGCAGCTACATCGACAGCAATGTCGGCAAGTTGCTGCAAACCCTGGAGGACACCGGGCTGATCGACGACACCATCGTCGTCTTCTCCGGCGATCATGGGGATATGCTCGGCGAAAAGGGGCTGTGGTACAAAATGCACTGGTTCGAAATGGCCGCTCGGGTACCGTTGTTGATCAGTGCCCCGGGGCAGTTCGCCAATCGCCGTGTCGGTGCGGCTGTGTCCACCGCCGACCTGCTGCCGACCCTGGTTGAACTGGCCGGCGGTACGCTGGAGCCAGGTCTGCCACTGGACGGCCGTTCGCTGGTGCCGCATCTGCAAGGGCAGGGCGGACATGATGAGGTCTTCGGCGAATACATGGCTGAAGGCACGATCAGTCCGTTGATGATGATCCGTCGCGGCCCGTGGAAATTCATCTATAGCGAGGATGATCCATGCCTGCTGTTCGATCTACGCAACGATCCCAAGGAGCAGCAAGACCTCAGCCAATCGCCCGAACATCAGTCACTGTTTGCTGATTTTCTCGCCGAAGCGCGGGCCAAATGGGACATTCCGACGATTCATCAACAGGTACTCGCCAGCCAGCGACGTCGACGTTTCGTCGCCCATGCGCTGACCCTGGGCAAACTCAAGAGCTGGGATCACCAGCCGCTGGTGGACGCCAGCCAGCAGTACATGCGCAACCACATCGATCTGGACGATCTGGAGCGCAAGGCCCGTTATCCACAACCCTGCCAATAA	MECREYMKRKNILFIMADQMAAPMLPIYGPSPIKLPNLSRLADQGVVFDAAYCNSPLCAPSRFTLVSGQLPSKIGAYDNAADFPGDVPTYAHYLRRLGYRTALSGKMHFCGPDQLHGYEERLTSDIYPADYGWAVNWDEPDVRPSWYHNMSSVLQAGPCVRTNQLDFDEEVVFKAQQYLFDHIREDGDQPFCLTVSMTHPHDPYTIPKAFWDLYDDNEIPLPQTPAQAELDPHSQRLLKVYDLWDKPLPVDKIRDARRAYFGACSYIDSNVGKLLQTLEDTGLIDDTIVVFSGDHGDMLGEKGLWYKMHWFEMAARVPLLISAPGQFANRRVGAAVSTADLLPTLVELAGGTLEPGLPLDGRSLVPHLQGQGGHDEVFGEYMAEGTISPLMMIRRGPWKFIYSEDDPCLLFDLRNDPKEQQDLSQSPEHQSLFADFLAEARAKWDIPTIHQQVLASQRRRRFVAHALTLGKLKSWDHQPLVDASQQYMRNHIDLDDLERKARYPQPCQ	PGPT0013620_255	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_CHOLINE-O-SULFATE|PHOSPHORYLCHOLINE_UTILIZATION,PGPT0013620-betC-K01133	NA	NA
D1-36_00083	921			hypothetical protein	ATGCAAAAGTTATCCACAGTACTGGCCGCCGGGCTGTTGGCGTTGAGCAGTGTTTCGGCGTGGGCCGAGCAAAGCTGCGAGACGGTCAAAATGGCTGACCCGGGCTGGAGCGACATCGCTGCGACCAACGCCATCACCGGTTTCCTGCTGGAAGGCATGGGTTACAAGCCCAAGGTCGATACGCTTGCCGTGCCGATTACGTTTGGCGGCCTGAAAGATGGTCAGGTCGATGTGTTCCTGGGTAACTGGATGCCGGCGCAGCAGGGCTTCTATGACAAATTCGTGGCCAACGGTGATGTTACGCAACTCGCCAAGAACCTTGATGGCACTGAATTCACCCTGGCGGTGCCCGATTATGTCTGGGACGCAGGCGTGCATAACTTTGCCGACCTGAACAAATTCGCGGACAAGTTCGACAAGAAGATCTACGGCATCGGGTCCGGTGCCCCGGCCAACCTTTCCCTGAAAGAAATCATCAAGACCAACGATTTCGGCATGGGCGAATGGAAGCTGGTGGAGTCCAGCGAACAGGCCATGTTGGCGGAAGTCTCCCGGGCGGTGAAAAAACAGAAGTTCGTGACCTTCCTCGGCTGGACCCCGCACCCGATGAACGTGCAGCTGAAGATGCACTACCTCAAGGGCGGCGAGAAATATTTCGGCGACACCGGCAGCGTGTACACCTTGACGCGCAAAGGTTATGCACAGGCCTGCCCGAACGTTGGCAAACTGCTGACCAACCTGAGCTTCACCCAGGAAATGGAAAACAGCATCATGGCTGAGGTGGTGACCAAGAAAGTCAGCAACGCCGACGCGGCCAAGGCCTGGATCAAGGCTAATCCAACGGTGCTGGATAAATGGCTGGATGGCGTGAAGACCGTTGACGGTAAGGACGCGCTGGCGGCGGTGAAGGCCAAGCTCTGA	MQKLSTVLAAGLLALSSVSAWAEQSCETVKMADPGWSDIAATNAITGFLLEGMGYKPKVDTLAVPITFGGLKDGQVDVFLGNWMPAQQGFYDKFVANGDVTQLAKNLDGTEFTLAVPDYVWDAGVHNFADLNKFADKFDKKIYGIGSGAPANLSLKEIIKTNDFGMGEWKLVESSEQAMLAEVSRAVKKQKFVTFLGWTPHPMNVQLKMHYLKGGEKYFGDTGSVYTLTRKGYAQACPNVGKLLTNLSFTQEMENSIMAEVVTKKVSNADAAKAWIKANPTVLDKWLDGVKTVDGKDALAAVKAKL	PGPT0013640_2953	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
D1-36_00084	1569	dauA_1	COG0659	C4-dicarboxylic acid transporter DauA	ATGGCAATCCCCACGCGCCATTCGCTGTTTCCATTCCTGAGCTGGCTACCCCGGCAGACGCGCGCCAGTGTCGGCCGTGACCTGGTTGTCGGCCTCAGCGGTGCGATCCTCGCGCTGCCGCAGTCCATTGCCTACGCCCTGATTGCCGGATTGCCACCCGAGTACGGACTGTACGCGGCGATCGTGCCGGTGCTGATCGCCTGCCTGTGGGGTTCGTCGTGGCATTTGATCTGCGGTCCTACGGCGGCGATCTCCATTGTCCTGTACGCCACGGTCAGTCCCCTGGCCGTTCCGGCAACCCAGGACTACATCACGCTGATCCTCTTGCTGACGGTCTTGGCGGGTATTTTCCAATGGCTGCTCGGGTTGTTGCGGTTCGGGGCGCTGGTCAATTTTGTCTCGCATTCGGTGGTGCTGGGTTTCACCTTGGGCGCAGCGGTGGTCATTGCCTTGGGGCAACTGCCGAACCTGCTGGGCCTGGACCTGCCGAACGAAGCCACGGCGTTGAAAAGCTTGCTTATGTTGTTCAACCACATCGCAGCTGTGGATAAGCCTTCGCTGTTGTTGGGACTGGGCACCCTGGCGCTGGGCATTGTGCTCAAGCGCTTGCTGCCACGCTGGCCAAGCCTGTTGATAACTTTGGTCATCAGCAGCCTGGTGGTCTGGGTGTGGCCGGCGATGTTCGGGCATGTGGCGTTGGTTAGCGCCTTTGTCGGGCGCCTGCCGCCGTTCACACCGCTGCCGCTGGACCTGGAATTGATCTTGCGCCTGTTGCCCGGTGCCGTGGCGGTGGGCATGCTCGGGCTGGTGACCAGTCTGTCCATTGCCCGGTCGCTGTCGGTCCGCTCCGGGCAGTTGCTCGATGCGAATCAGGAGGTGAGGGCGCAGGGTCTTTCCAATATTGTTGGAGGTCTTTTCGCAGGATCGTTGTCAGCCGGTTCCTTCACTCGCTCGGGCCTCAGCTACGAGGCTGGCGCCTGCTCGCCCCTGGCCGGGATGTTTTCGGCATTGTGGGTAGCGCTGTTTGCCGTTGCCGGCGCGAAATTGATCGCGCACATTCCGATTCCCGCCATGGCCGGCAGCATCCTGCTGATCGCCTGGGGCCTGGTGGACCATCGCGGCATCCGGGCTTTGTACCGGGTGAGTCGCTCCGAATTCCTGGTCATGGGCCTGACCTGCCTGGCCACGCTGTTGCTGGAATTGCAAACCGCTATCTACGCCGGCGTGCTCGCCTCGCTGTTTTTCTACCTCAAGCGCACCTCCCAGCCACGTGTATACCATAGCCGCGAAGGCGAGGCGGACATCTTGCGGGTGGGCGGCTCGATCTTTTTCGGCGCCAGTCATTATTTGCAGGTGCGTTTGCAGCGTATGCAGGCGCAACGGGTGGTGATCGACGCCCAGCAGATCAACTTCATCGATTATTCGGGCGTGGAAATGCTCCATCAGGAAGCCCGGCGGTTGCGCGGCCAGGGGCGTAGCCTGACCTTGCGTGGGGCAAGACCGCAGGTGGTGGAGGAACTGCTGAAACTGGAAGGAGCGCAGGCGTGCCCGATTCACTTCGAAGAATAG	MAIPTRHSLFPFLSWLPRQTRASVGRDLVVGLSGAILALPQSIAYALIAGLPPEYGLYAAIVPVLIACLWGSSWHLICGPTAAISIVLYATVSPLAVPATQDYITLILLLTVLAGIFQWLLGLLRFGALVNFVSHSVVLGFTLGAAVVIALGQLPNLLGLDLPNEATALKSLLMLFNHIAAVDKPSLLLGLGTLALGIVLKRLLPRWPSLLITLVISSLVVWVWPAMFGHVALVSAFVGRLPPFTPLPLDLELILRLLPGAVAVGMLGLVTSLSIARSLSVRSGQLLDANQEVRAQGLSNIVGGLFAGSLSAGSFTRSGLSYEAGACSPLAGMFSALWVALFAVAGAKLIAHIPIPAMAGSILLIAWGLVDHRGIRALYRVSRSEFLVMGLTCLATLLLELQTAIYAGVLASLFFYLKRTSQPRVYHSREGEADILRVGGSIFFGASHYLQVRLQRMQAQRVVIDAQQINFIDYSGVEMLHQEARRLRGQGRSLTLRGARPQVVEELLKLEGAQACPIHFEE	PGPT0003020_3868	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SULFATE|THIOSULFATE_TRANSPORT,PGPT0003020-TC_SULP-K03321	NA	NA
D1-36_00085	822	aroE_1	COG0169	Shikimate dehydrogenase (NADP(+))	ATGGACCGCTACGTTGTAATGGGTAACCCGATCGGCCACAGCAAGTCGCCAATGATCCATCGCCTGTTTGCCGAGCAGACCGGGCAGGTGCTGGACTACAGCACGTTGCTGGCACCCTTGGAGGATTTTGCCGGTTGCGCCCGGGAATTTTTCCGCGAGGGCCGTGGGGCGAACGTCACCGTGCCGTTCAAGGAAGACGCCTTCCGCCTGGCTGACAGCTTGACCGACCGGGCGCAGCGCGCCGGGGCGGTCAACACCTTGAGCAAACTGGTCGACGGCCGCCTCTTGGGCGACAACACCGACGGTGCGGGGCTGGTGCGGGACCTGACCGTCAACGCCGGTTTCAGCCTCAAGGGCAAGCGCATCCTCTTGCTCGGCGCCGGCGGTGCGGTGCGCGGCGCCTTGGAACCGCTGCTGGCCGAAGCACCGGCGTCGGTGATCATCGCCAATCGGACGGTGGAAAAAGCCGAGTTGCTGGCTGAGCTGTTCGCCGACCTGGGCCCGGTCTCGGCCAGTGGTTTTGATTGGTTGAAGGAGCCGGTAGACCTGGTCATCAACGCCACGTCCGCCAGCCTGACGGGCGATGTACCGCCGATTGCCGCAAGCCTGATCGAGCCGGGCCAGACGTTCTGCTACGACATGATGTACAGCAAGGAGCCGACATCCTTCTGCCGCTGGGCCCGAGAACATGGCGCGGCGGTGGCGATGGACGGCCTGGGCATGCTGGCCGAGCAGGCGGGCGAAGCGTTCTACCTGTGGCGCGGGGTACGCCCGGATACGGCGCCGGTGCTGGCCGAGTTGCGTCGTCAGTTGGCGCTATAA	MDRYVVMGNPIGHSKSPMIHRLFAEQTGQVLDYSTLLAPLEDFAGCAREFFREGRGANVTVPFKEDAFRLADSLTDRAQRAGAVNTLSKLVDGRLLGDNTDGAGLVRDLTVNAGFSLKGKRILLLGAGGAVRGALEPLLAEAPASVIIANRTVEKAELLAELFADLGPVSASGFDWLKEPVDLVINATSASLTGDVPPIAASLIEPGQTFCYDMMYSKEPTSFCRWAREHGAAVAMDGLGMLAEQAGEAFYLWRGVRPDTAPVLAELRRQLAL	PGPT0012890_4050	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
D1-36_00086	915	hemF	COG0408	Oxygen-dependent coproporphyrinogen-III oxidase	ATGACTACTCGCACCGAGGCCGTGAAAGCCTATCTGCTGGACCTGCAAGACCGCATCTGCGCGGCACTGGAAACCGAGGACGGTGGCACTCGCTTCGTCGAGGACGCCTGGACCCGGCCAGCCGGAGGTGGCGGTCGTACGCGAGTGATCGAAAACGGCACGGTGATCGAAAAGGGCGGCGTCAACTTTTCCCACGTCTTCGGCAGCGGTCTCCCACCGTCAGCCAGTGCCCACCGGCCTGAGCTGGCCGGGCGCGGCTTCGAAGCCCTGGGCGTGTCACTGGTTATCCACCCCCACAACCCCCATGTGCCGACGTCCCACGCCAACGTGCGCTTTTTCATCGCCGAAAAGGAAGGCGAGGAGCCGGTCTGGTGGTTTGGCGGTGGCTTCGACCTGACGCCTTATTACGGCGTGGAAGAAGATTGCGTGCATTGGCACCGCATTGCCCAGCAAGCCTGCGAACCGTTCGGCCCGGATATCTATTCGCGCTACAAGGCCTGGTGCGACAGCTACTTCCACATCAAGCACCGCAACGAGCCCCGGGGCATCGGCGGCCTGTTCTTCGATGACCTGAACGAGTGGGACTTCGACACCAGCTTCGCCTTCATGCGCGCCATTGGCGATGCCTACATCGATGCGTACCTGCCAATCGTGCGACGTCGCAAGGATGACAAGTTCACGGCCAAGCAGCGGGAATTCCAGGAGTTCCGCCGTGGACGCTACGTGGAATTCAACCTGGTCTATGACCGAGGCACGCTGTTTGGCCTGCAATCGGGCGGGCGTACCGAGTCGATCCTGATGTCCCTGCCGCCGCAGGTCCGCTGGAGTTATGACTGGAAAGCCGAACCGGGCAGCGAAGAGGCTCGCCTGACCGAGTACTTCCTGCAGGATCGCGATTGGCTGGCCACGGTCTGA	MTTRTEAVKAYLLDLQDRICAALETEDGGTRFVEDAWTRPAGGGGRTRVIENGTVIEKGGVNFSHVFGSGLPPSASAHRPELAGRGFEALGVSLVIHPHNPHVPTSHANVRFFIAEKEGEEPVWWFGGGFDLTPYYGVEEDCVHWHRIAQQACEPFGPDIYSRYKAWCDSYFHIKHRNEPRGIGGLFFDDLNEWDFDTSFAFMRAIGDAYIDAYLPIVRRRKDDKFTAKQREFQEFRRGRYVEFNLVYDRGTLFGLQSGGRTESILMSLPPQVRWSYDWKAEPGSEEARLTEYFLQDRDWLATV	PGPT0003205_1676	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003205-hemF-K00228	NA	NA
D1-36_00087	978	qorA_1	COG0604	Quinone oxidoreductase 1	ATGGCCAAACGCATCCAGTTCAGTTCCCACGGCGGCCCAGACGTACTTGAGTTCGTGGATTACCAGCCCGCCGAGCTCGCTCCGCAACAGGTCCGCGTGAGCAACAAGGCCATCGGCCTGAACTTCATCGACACCTATTACCGCAGTGGCCTTTATCCGCCACCGGCCTTGCCGTCGGGGCTCGGTGCGGAGGGCGCGGGTGTGGTCGAGGCCGTTGGTTCGGACGTCACGCGTTTCAAGGTCGGTGACCGCGTCGCCTACGGCAGTGGTCCGCTGGGGGCGTACAGCGATGTCCACGTATTGCCCGAGGCCAATCTGGTCCACTTGCCCGAGGCCATCAGCTTCGAACAGGCTGCCGGGGTAATGCTCAAAGGCCTGACCGTGCAATACCTGCTGCGTCAGACTTACGAGCTCAAGGGCGGCGAGACTGTTCTGTTCCACGCCGCCGCCGGTGGCGTGGGCTCCTTGGCCTGCCAATGGGCCAAGGCTTTGGGCGTAAAACTGATCGGCACTGTCAGCTCGGCGGAAAAAGCCGCCATCGCCAGATCCCATGGCGCCTGGGAAGTCATCGACTACAGCAAGGAAAACGTCGTACAGCGCGTGCTGGAATTGACTGACGGCAAGAAAGTCCCAGTGGTGTACGACGGGGTTGGCAAAGACACTTGGCTGACGTCGTTGGATTGCACGGCGCCGCGTGGCCTGGTGGTGAGCTTCGGCAATGCTTCTGGTGCGGTGGACGGCGTGAACCTGGGGATTCTCTCGGCCAAGGGCTCGCTGTACGTCACCCGCCCGACCCTGGCGACCTACGCCAACAATGCCGAAAACCTGCAGCGCATGGCCGATGAGCTGTTCGGGATGATCGCCAGTGGCAAGCTCAGCGTGGATATCAATCAGCGATTCCCGCTGGCTGAAGCGGCCAAGGCGCATACCGAATTGTCGGCGCGGCGGACGACGGGGTCGACGATCCTCCTGCCCTGA	MAKRIQFSSHGGPDVLEFVDYQPAELAPQQVRVSNKAIGLNFIDTYYRSGLYPPPALPSGLGAEGAGVVEAVGSDVTRFKVGDRVAYGSGPLGAYSDVHVLPEANLVHLPEAISFEQAAGVMLKGLTVQYLLRQTYELKGGETVLFHAAAGGVGSLACQWAKALGVKLIGTVSSAEKAAIARSHGAWEVIDYSKENVVQRVLELTDGKKVPVVYDGVGKDTWLTSLDCTAPRGLVVSFGNASGAVDGVNLGILSAKGSLYVTRPTLATYANNAENLQRMADELFGMIASGKLSVDINQRFPLAEAAKAHTELSARRTTGSTILLP	PGPT0013255_6221	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344	NA	NA
D1-36_00088	558	tsaC	COG0009	Threonylcarbamoyl-AMP synthase	ATGGTCAACAGTTGGCGTGTGCAACAAGCCGCGCGAGAAATTCGCGCCGGGGCGGTGATTGCCTATCCAACCGAAGCGGTCTGGGGCCTGGGTTGCGATCCGTGGAACGAGGATGCGGTGGAGCGTCTGTTGGCTATCAAGTCCCGAAGGCCCGACAAGGGCTTGATACTCGTGGCTGACAACATTCGCCAGTTCGACTTTCTGTTCGAAGACTTCCCCGAAACCTGGATGGACCGCATGGCCAGCACCTGGCCGGGGCCCAATACCTGGCTGGTGCCGCACCAGGATCTGTTGCCGGAGTGGATCACCGGCGTGCATGACACCGTTGCGCTGCGGGTCAGCGATCATCCAATCGTCCGTGACTTGTGCTCGTTGATCGGCCCGCTGGTCTCCACGTCGGCCAACCCACAAGGCCGGCCGGCGGCGCGCACGCGCATCCGCGTCGAACAGTATTTCCGCGGCCAGCTCGATCTGGTGCTGGGCGGTAACCTGGGCGGGCGCAAGAACCCGAGCGTGATTCGTGATTTGGCGACGGGCAAGGTGGTGCGCCCGGACTGA	MVNSWRVQQAAREIRAGAVIAYPTEAVWGLGCDPWNEDAVERLLAIKSRRPDKGLILVADNIRQFDFLFEDFPETWMDRMASTWPGPNTWLVPHQDLLPEWITGVHDTVALRVSDHPIVRDLCSLIGPLVSTSANPQGRPAARTRIRVEQYFRGQLDLVLGGNLGGRKNPSVIRDLATGKVVRPD				NA	NA	NA	NA	NA
D1-36_00089	1095			hypothetical protein	ATGCCATTGCCTGAATCTGCTTCGGTTCCGCCTGCGGAACTAGAGGCCCGTCTGCGCTTGCATCGCTTGCCGGAACTGGGGCCTAAACGTTTCATGACCCTGATGGAGGCTTTTGGCCCAGCGTCCAAAGCCATCAGCGCACCGGCCAGCGCATGGCGGGCGCTGGGGTTGCCGGCCACGTGCGCCGAGGCCCGACGCGCCCCGCAAATACGCGACGGTGCCGCCCACGCACTGGCCTGGCTAGACGGTCCGGCCCAGCATTTATTGATGTGGGACCAGCCTGACTACCCCGCTTTGCTCGCTCAGATCAGCGACGCGCCCCCGCTGCTGATGGTCGCGGGCGACGCCTCGATCCTGGAAAAACCGCAGCTGGCCATGGTCGGCAGTCGCCGGGCATCCCGCCCGGGCATGGATACGGCGGCGGCATTTTCTCGAAGCCTGGCCGGCGCCGGTTTTGTCATTACCAGCGGCCTGGCCTTGGGCATCGACGCCGCTGCCCATCAAGCGGCACTGGATGTCGGCGGGCAAACCATCGGCGTGCTGGGCACCGGCCTCGAAAATTTTTATCCACAGCGCAATCGACGGCTGGCGGAGGCAATGATTGCCCAGGGCAGCGCGGTGATATCGGAGTTTCCGCTGGACGCAGCGCCCAACGCCGGCAACTTCCCGCGTCGAAACCGGATCATCAGCGGCTTATCCCTCGGCGTGCTCGTGGTCGAAGCCAGTGTCGCGAGCGGTTCGCTGATCACCGCCCGGCTGGCGGCGGAACAGGGTCGCGAGGTGTATGCCATTCCAGGGTCGATTCATCATCCTGGGGCCAGAGGTTGTCACCAACTGATCCGCGACGGGGCGGCGCTGGTGGAAACTGTCGAGCACATTCTCGAAGCGTTGCGCGGTTGGCAGCGGCTGCCGCTGGCCGCCGAGGCTGTGCCCGTGACCCATCCGCTGCTGCGCCTGCTGCATGCCGCACCGCTGAGCAGCGAGGCGTTGGCCGACGCCAGCGGCTGGGGTCTGCCCAAGGTGCTGGCGGCGTTGACCGAGCTGGAAATGGAGGGACGCGCCATTTGTGACAGCGGTCGTTGGTTCGCACGCTAG	MPLPESASVPPAELEARLRLHRLPELGPKRFMTLMEAFGPASKAISAPASAWRALGLPATCAEARRAPQIRDGAAHALAWLDGPAQHLLMWDQPDYPALLAQISDAPPLLMVAGDASILEKPQLAMVGSRRASRPGMDTAAAFSRSLAGAGFVITSGLALGIDAAAHQAALDVGGQTIGVLGTGLENFYPQRNRRLAEAMIAQGSAVISEFPLDAAPNAGNFPRRNRIISGLSLGVLVVEASVASGSLITARLAAEQGREVYAIPGSIHHPGARGCHQLIRDGAALVETVEHILEALRGWQRLPLAAEAVPVTHPLLRLLHAAPLSSEALADASGWGLPKVLAALTELEMEGRAICDSGRWFAR				NA	NA	NA	NA	NA
D1-36_00090	1026			hypothetical protein	ATGAGGAAATCACTACTCGCCCTGCTGCTCCTGGCTTCGGCCGGTATCGCGCACGGGCAAGTGCAACTTCGGGAAGGTTTTCCCCAGCAATACACAGTGGTGACGGGTGACACGCTGTGGGACATTTCCGGCAAATACCTGCGCGAACCATGGAAATGGCCCGAGCTGTGGCAGGCCAACCCGCAGATCGAAAACCCCAACCTGATCTACCCCGGCGACACCCTGTCGCTGGTCTACATCAACGGCCAGCCGCGCCTGACCCTCAATCGCGGCACCTCACGCGGCACCATCAAGCTGTCGCCTCGCATTCGCAGTTCACCGGTGGCTGACGCGATCCCGAGCATTCCGCTGCAGGCCATTAACAGTTTTTTGCTGAGCAACCGCATCGTTGACACGGCGGAAGATTTCAACAAGGCACCCTACGTCGTTGCAGGCGACGCCGAACGAGTGCTCAGCGGCACCGGCGACCGGATCTTCGCCCGCGGCAACTTCGACACAAGCCAGCCGGCCTACGGCATCTTCCGCCAGGGTAAGGTCTACACCGATCCCGAGACCAAGGAGTTTCTGGGCATCAATGCCGATGACATCGGCAGCGGTGAAATCGTTGCCACCGAAGGCGATGTCACGACACTGGCCCTGCGACGGACCACGCAAGAGGTACGCCTGGGCGATCGCCTGTTCAGCGGCGAAGAGCGCTCGATCAATTCGACTTTCATGCCCAGCGCGCCGAAATCGGACATCCAGGGGCTCATCCTCGACGTACCCCGTGGCGTAACGCAGATCGGCGCGATGGACGTGGTGACGCTGAACAAGGGGCGGCGCGACGGGCTGGTTGAGGGCAACGTTCTGGCCGTGATGAAGACCGGCGAAACCGTGCGTGACCGTATTACCGGTGCATCGGTAAAAATCCCGGACGAACGCGCCGGCCTGCTGATGGTATTCCGCACCTACGACAAACTCAGTTATGGCCTGGTGCTGTACGCCTCGCGATCGCTGGCGATACTCGACAAGGTGCGCAATCCGTAA	MRKSLLALLLLASAGIAHGQVQLREGFPQQYTVVTGDTLWDISGKYLREPWKWPELWQANPQIENPNLIYPGDTLSLVYINGQPRLTLNRGTSRGTIKLSPRIRSSPVADAIPSIPLQAINSFLLSNRIVDTAEDFNKAPYVVAGDAERVLSGTGDRIFARGNFDTSQPAYGIFRQGKVYTDPETKEFLGINADDIGSGEIVATEGDVTTLALRRTTQEVRLGDRLFSGEERSINSTFMPSAPKSDIQGLILDVPRGVTQIGAMDVVTLNKGRRDGLVEGNVLAVMKTGETVRDRITGASVKIPDERAGLLMVFRTYDKLSYGLVLYASRSLAILDKVRNP				NA	NA	NA	NA	NA
D1-36_00091	507	def_1	COG0242	Peptide deformylase	ATGGCCATTTTGAACATTCTCGAATTTCCGGACCCGCGCCTGCGCACTATCGCCAAACCGGTGGCTGTAGTGGACGACGAAGTGCGTCAGCTGGTCGATGACATGTTTGAAACAATGTATGAGGCGCCAGGCATCGGCCTCGCCGCGACCCAGGTCAACGTGCACAAGCGTATCGTCGTCATGGACCTCTCCGAAGACCGCAGCGAGCCCCGGGTGTTCATCAACCCCGAGTTCGAAACGCTCACCGACGAGATGGAGCAGTACCAGGAAGGCTGCCTTTCGGTGCCGGGCTTCTACGAAAACGTCGACCGTCCGCAGAAGGTCAAGATCAAAGCCCTGGACCGCGACGGCCAGCCTTACGAGTTGATCGCCGAAGGCCTGCTGGCGGTGTGCATCCAGCATGAATGCGACCACCTCAACGGCAAGCTGTTCGTCGATTACCTGTCTAATCTCAAGCGTGACCGGATCAAGAAAAAACTGGAGAAGATCCATCGCCAGAACGCTTGA	MAILNILEFPDPRLRTIAKPVAVVDDEVRQLVDDMFETMYEAPGIGLAATQVNVHKRIVVMDLSEDRSEPRVFINPEFETLTDEMEQYQEGCLSVPGFYENVDRPQKVKIKALDRDGQPYELIAEGLLAVCIQHECDHLNGKLFVDYLSNLKRDRIKKKLEKIHRQNA	PGPT0008125_24	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008125-fmt-K00604	NA	NA
D1-36_00092	960	fmt	COG0223	Methionyl-tRNA formyltransferase	ATGACTGAGCCACTGCGCATCGTCTTTGCCGGCACTCCCGAATTTGCCGCCGAACACCTCAAGGCCCTGCTGGCCAGCCCCCATGAAATTGTCGCGGTCTATACCCAGCCGGATCGTCCTGCCGGTCGCGGACAGAAACTGATGCCCAGCCCGGTCAAGCAGCTTGCCTTGGAGCACGGCTTGCAAGTCCTGCAACCGCCGACCCTGCGCGATGCCCAGGCCCAAGCAGAACTGGCGGCGCTGGAGCCGGATTTGATGGTGGTGGTTGCCTACGGCCTGATCCTGCCGCAAGTGGTGCTGGATATCCCGCGCCTGGGTTGCATAAACAGCCACGCCTCGCTGCTGCCGCGCTGGCGCGGTGCCGCGCCGATCCAGCGCGCCGTGCAGGCGGGCGATGCCGAGAGCGGCGTGACCGTCATGCGCATGGAAGCAGGCCTGGACACCGGGCCGATGCTGCTCAAGGTCAGCACCCCCATTGGCGCCGAAGACACCGGTGGCAGCCTGCACGACCGCCTCGCGCTGATCGGCCCGCCAGCGGTGGTCCAGGCCATTGCCGGCCTGGCCGCCGGCACGCTGGAAGGCGAAGTGCAGGATGACAGCCTCGCCACCTACGCGCACAAACTGAACAAGGACGAAGCCCGCATCGACTGGAGCCGCCCGGCCGTTGAGCTGGAACGGCTGGTGCGCGCCTTCAACCCTTGGCCGATCTGCCACAGCACCTTGAACGGCGAAGCCCTGAAAGTGCTGGCGGCCAGTTGCGCCGAAGGGAAGGGCGCACCGGGAGAAATCCTCAGTGCCAGCAAGGACGGCCTCGTTGTCGCGTGTGGCGATCAAGCATTGTGTCTGACACGTCTGCAATTGCCCGGCGGCAAGGCGCTGGGCTTCAGCGACTTGTTCAACAGCCGTCGTGAGAAATTTGCCATCGGCACCGTCCTCGGCCAAGCGGCGGACGCTTCATGA	MTEPLRIVFAGTPEFAAEHLKALLASPHEIVAVYTQPDRPAGRGQKLMPSPVKQLALEHGLQVLQPPTLRDAQAQAELAALEPDLMVVVAYGLILPQVVLDIPRLGCINSHASLLPRWRGAAPIQRAVQAGDAESGVTVMRMEAGLDTGPMLLKVSTPIGAEDTGGSLHDRLALIGPPAVVQAIAGLAAGTLEGEVQDDSLATYAHKLNKDEARIDWSRPAVELERLVRAFNPWPICHSTLNGEALKVLAASCAEGKGAPGEILSASKDGLVVACGDQALCLTRLQLPGGKALGFSDLFNSRREKFAIGTVLGQAADAS	PGPT0008125_1551	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008125-fmt-K00604	NA	NA
D1-36_00093	1311	rsmB	COG0144	Ribosomal RNA small subunit methyltransferase B	ATGAATCCCCGTTTGGCTGCCGCCAAGGCACTTGCCGCTGTACTCAGCGGGAAAGCCTCGCTGAACAGTTCCCTGCCGGCGCAGCTGGACAAGGTTGAGGACCGTGATCGCGGTTTCACCCAAGACCTGGCGTTCGGCACCGCCCGTTGGCAGCCGCGGCTGTCGGCCCTGGCTGCCAAGCTGTTGCAGAAGCCGTTCAAGGCCGCCGATGCCGACGTCGAAGCGCTGCTGCTGGTGGGGCTCTATCAACTGCTCTACACCCGCGTCCCCGCCCACGCCGCCATCGGCGAAACCGTGGGCTGCGCCGACAAGCTGAAAAAGCCCTGGGCCAAGGCCCTGCTCAATGCCGTGCTGCGCCGCGCCCAACGGGAAAGCGAAACTCTGCTGGGTGAACTGGAACACGACCCGGTGGTGCGCACCGCCCACCCGCGCTGGTTGCAGAAATCCCTCAAGGCCTTCTGGCCCGAGCAATGGGAAGCCATCTGCGCGGCGAACAATGCCCACCCGCCGATGATCCTGCGGGTCAACCGTCGCCACCATACCCGCGATGCCTACCTGGCGTTGCTGGGCGAGGCGGGCATCCCGGCCATCCCGTGCCAGTACAGCCGCGACGGCATCGTGCTGGAAACTCCCGGCGATGTGCGTGCACTGCCGGGCTTCGCCGAGGGCTGGATCAGCGTCCAGGACGAAGCCGCGCAATTGGCCGCCGACCTGCTGGAGCTGGCGCCCGGCCAACGGGTGCTGGACGCCTGTTGCGCGCCGGGTGGCAAGACTTGTCACATCCTCGAGGCCGAGCCGAAACTGGCCGGCGTGGTGGCCGTGGACCTGGAAGCCAAGCGCCTGGTGCGAGTGAAGGAAAACCTTGAGCGCCTGGGCCTGGACGCCGAACTATTCGCCGCCGACGGTCGCGACACGGCTGCGTGGTGGGACGGCAAGCCGTTCCAGCGCATCCTGTTGGACGCACCTTGCTCGGCCACCGGCGTGATCCGTCGCCATCCGGACATCAAGCTCACCCGGCAGCCGGACGACATTGCCGCATTGGCCGTGTTGCAAGGCGAACTGCTTGATGCCATGTGGTCGACCCTGGACGTGGGCGGCATGCTGCTCTACGCCACCTGCTCGACTTTGCCGACGGAAAACACCGAAGTGATCGAAGCATTCCTCGCTCGCACGCCGGGTGCCCGTGAGCTGGACATTGCCACCCAGGCTGGCATCAAGCAGCCCCATGGCCGGCAGTTGTTGGCCCAGGACGGCGGGCACGACGGGTTCTATTACGCCAAGCTGATCAAAATCGCCGCCGCACGCGGTTAA	MNPRLAAAKALAAVLSGKASLNSSLPAQLDKVEDRDRGFTQDLAFGTARWQPRLSALAAKLLQKPFKAADADVEALLLVGLYQLLYTRVPAHAAIGETVGCADKLKKPWAKALLNAVLRRAQRESETLLGELEHDPVVRTAHPRWLQKSLKAFWPEQWEAICAANNAHPPMILRVNRRHHTRDAYLALLGEAGIPAIPCQYSRDGIVLETPGDVRALPGFAEGWISVQDEAAQLAADLLELAPGQRVLDACCAPGGKTCHILEAEPKLAGVVAVDLEAKRLVRVKENLERLGLDAELFAADGRDTAAWWDGKPFQRILLDAPCSATGVIRRHPDIKLTRQPDDIAALAVLQGELLDAMWSTLDVGGMLLYATCSTLPTENTEVIEAFLARTPGARELDIATQAGIKQPHGRQLLAQDGGHDGFYYAKLIKIAAARG				NA	NA	NA	NA	NA
D1-36_00094	1374	trkA	COG0569	Trk system potassium uptake protein TrkA	ATGAAAATCATCATCCTGGGTGCAGGGCAGGTTGGCGGCTCGCTGGCGGAACACCTCGCCAGCGAGGCCAACGACATCACCGTGGTCGACACCGACGGCGAACGCCTGCGCGACCTCGGCGACCGTCTCGACATTCGTACGGTACAAGGGCGCGGCTCCTTGCCGACGGTATTGCGCCAGGCCGGCGCCGACGACGCCGACATGCTGGTGGCGGTGACCAACAGCGACGAAACCAACATGGTCGCCTGCCAGGTCGCCCACACGTTGTTTCACACCCCGACCAAAATCGCCCGGGTTCGCGAAGGGGCCTACCTGACCCGCGCCGACCTGTTCGACAACGAAGCGATCCCGGTGGACGTGCTGATCAGCCCCGAGCAGGTGGTGACCAACTACATCAAGCGCCTGATCGAACACCCCGGTGCCCTGCAAGTGATCGATTTTGCCGAGAGCAAGGCGCAACTGGTGGCGGTCAAGGCCTACTACGGCGGACCGCTGGTGGGCCAGCAACTGCGCCAATTGCGCGAGCACATGCCCAATGTCGAGACCCGCGTGGCAGCGATTTTCCGCCGTGACCGGCCGATCCTGCCCCAGGGCGACACCGTGATCGAAGCCGATGACGAAGTCTTCTTCATCGCCGCCAAAGCGAATATTCGCGCGGTCATGAGCGAAATGCGCCGCCTCGACGAAAACTACAAACGCATCGTCATCGCCGGCGGCGGCCAGATCGGCGAACGCCTGGCCGAAGCCATCGAAAGCCGCTACCAAGTCAAGATCATCGAGATGAACCCGGCACGCTGCCGCTACCTCTCCGACACCCTCGACAGCACCGTGGTGCTGCAGGGCAGCGCCTCCGACCGCGACCTGCTGCTGGAAGAAAACATCGCCGACGCCGACATCTTCCTGGCCCTGACCAACGATGACGAAGCCAACATCATGTCCTCGCTCCTGGCCAAGCGCCTGGGGGCCAGGAAGGTCATGACCATCATCAACAACCCGGCCTACGTCGACCTGATCCAGGGCGGCGACATCGACATCGCCATCAGCCCGCAACTGGCAACCATCGGCACCTTGCTGGCCCACGTGCGCCGCGGCGACATCGTCAGCGTCCACTCCCTGCGCCGCGGCGCGGCCGAAGCCATCGAGGCGATTGCCCATGGCGACGCCAAATCCAGCAAAGTCATCGGCAAAGCCATCCGCGACATCGGCCTGCCGCCCGGCACCACCATCGGCGCCATCATCCGCGACGAAGAAGTGCTCATCGCCCACGACGATACCGTGATCCAGACCGGCGACCATGTGATCCTGTTCCTGGTGGATAAGAAGCACATTCGTGATGTGGAGAAGCTGTTCCATGTGGGGTTGAGCTTTTTCTGA	MKIIILGAGQVGGSLAEHLASEANDITVVDTDGERLRDLGDRLDIRTVQGRGSLPTVLRQAGADDADMLVAVTNSDETNMVACQVAHTLFHTPTKIARVREGAYLTRADLFDNEAIPVDVLISPEQVVTNYIKRLIEHPGALQVIDFAESKAQLVAVKAYYGGPLVGQQLRQLREHMPNVETRVAAIFRRDRPILPQGDTVIEADDEVFFIAAKANIRAVMSEMRRLDENYKRIVIAGGGQIGERLAEAIESRYQVKIIEMNPARCRYLSDTLDSTVVLQGSASDRDLLLEENIADADIFLALTNDDEANIMSSLLAKRLGARKVMTIINNPAYVDLIQGGDIDIAISPQLATIGTLLAHVRRGDIVSVHSLRRGAAEAIEAIAHGDAKSSKVIGKAIRDIGLPPGTTIGAIIRDEEVLIAHDDTVIQTGDHVILFLVDKKHIRDVEKLFHVGLSFF	PGPT0002710_1074	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002710-trkA|ktrA-K03499	NA	NA
D1-36_00095	312			hypothetical protein	ATGCTCGACTCCCTGGAAAAAATGCTCGCCAAGGGCATGGACAGCGCCCTCCTGCGCTTCGGCCTCGGCAAAGGCTACCTAGACCTAGGCGAATTCCCCCGCGCCGCCGAACACCTCCAACGCTGCGTCGAATTCGACCCGAAGTACTCCGCCGCATGGAAACTACTGGGCAAGGCCCACCAAGGCCAAGGCGACGCCGCCGCAGCCCGCCAAGCCTGGGAACAAGGGTTGGAGGCCGCACGGGCTCATGGCGACAAACAGGCTGAAAAGGAAATGACCGTGTTCCTCAAAAAACTGGATCGCCACTCCTGA	MLDSLEKMLAKGMDSALLRFGLGKGYLDLGEFPRAAEHLQRCVEFDPKYSAAWKLLGKAHQGQGDAAAARQAWEQGLEAARAHGDKQAEKEMTVFLKKLDRHS				NA	NA	NA	NA	NA
D1-36_00096	243			hypothetical protein	ATGTCCGAAATTACTCAATTGGCCATTGCCTTGGTGGTGTCCTTTCTGCTTGATCGATTCCTCAAGCCCTATCTGCTACGCAAGTGGCTAGGCGTGGTGTTGATGGCTGCGGGTGCGGTTGGCTGTTTTGTGGCAGGTCAGACCCGTGTGTTGGGATTTGATCTGGGGTTGCTGTCGGTTTTTGCCGTGGTGATAGGGATGGGGTTGTTCATGAAGCGGCGGCGGTTTGAGGAGGTTGGCTGA	MSEITQLAIALVVSFLLDRFLKPYLLRKWLGVVLMAAGAVGCFVAGQTRVLGFDLGLLSVFAVVIGMGLFMKRRRFEEVG				NA	NA	NA	NA	NA
D1-36_00097	708			hypothetical protein	ATGCGCATTGCAGTGTTGGCCCTGGTCCTCACGCTGTTCGGCTGCGCTAGCGCGTCGGACCCGCCGAGGGGCGAGGGTGGCGGTTGGCGGTCCTTCTATGTGGTGAATCATGGCCTGCATACTGGGTTGGTGATTGCGCGCTCCGATCTGCTTCAAGTGCTTCCCGCACTGGTCGAAGCATTCAGCGAAGGCGACTTCGTTGAGTTCGGCTGGGGTGACGAGGATTTCTACCGAGCCCCACAAGCCACCTTGAGCCTCGCCCTGGGAGCCTTGTTCGGGTCGACGGCAACCGTGCTGCATGCGGTCAAAATTGACGGGGACCCGAGGCGGCGTTTCACCGCAAGCGAGGTCATCGAGGTGCGGGTGACGGAGGACGGCTACCGACGACTGCTCGCGTTCGTGGCCGGGACCTTCACCCGCTCAGCGACGGGCACCTTGGTGGTGCTCGGGCCTGGCCTGTATGGAGAGAGCCGGTTCTACCAGGCCGAGGGTCACTATTCGCTGTTTTATACCTGCAATACCTGGGTCGCAGAGGCGCTGGCCGCGAGCAACTGCCCAATGTCGCCCGTAGCGGTGATTACGGCGGGGAACGTCATGTCGCAGTTGCGCCGAGCGACAGCGGTCGGCGCTTTTTGCGGGCTCGCCCCCACAGTGGGCGGCGTTGGGCTCGGTGTTCGGTTCGACACATCCCCCCTCGCGTGGAAGTGA	MRIAVLALVLTLFGCASASDPPRGEGGGWRSFYVVNHGLHTGLVIARSDLLQVLPALVEAFSEGDFVEFGWGDEDFYRAPQATLSLALGALFGSTATVLHAVKIDGDPRRRFTASEVIEVRVTEDGYRRLLAFVAGTFTRSATGTLVVLGPGLYGESRFYQAEGHYSLFYTCNTWVAEALAASNCPMSPVAVITAGNVMSQLRRATAVGAFCGLAPTVGGVGLGVRFDTSPLAWK				NA	NA	NA	NA	NA
D1-36_00098	2193	fcuA		Ferrichrome receptor FcuA	ATGCTATTTCCATTTCGCCTTACGTTGCTCGCTGCGTGCTGCTCAGTCAGTTTTCTTGCCCAGGCGGCAGCGCCTATTGAATTGGGCGTGACCGACGTTACTGCCGATGCGATTAAAACCAATTCCAACACGTTATCGGCGCCCTATGCGGGGGGGCAGGTGGCGAGGGGAGGCCAGATGGGGGTGCTGGGCAATCAGGACAACATGGATGTCCCGTTCGTGATGACCAGTTACACCTCGCAGTTGATTGAAGATCAGCAAGCGGAAGACGTGGGTGATGTGCTGCTCAATGATCCGTCGGTGCGTCAGTCCTATGGGTTTGGTAACCAATCCCAGGTGTTCGTGATTCGAGGCCTGCCGCTTGCCAGCGACGACATTTCCTACAACGGGCTGTACGGCGTTTTACCGCGCCAAATTCTGTCGACGGATGTGATCGAGCGCGTCGAGGTGTTCAAGGGGCCCAACGCGTTCATCAACGGCGTCAGCCCGACGGGTTCGGGTCTTGGGGGCGGTGTCAATTTGCAGCCCAAGCGCGCGGAGGATGTCCCGACTCGTCGCTATACGCAGGACATCAGCACCGATGGCCGCATGGGCGAGCATTTGGATATCGGGCAGCGGTTCGGCGAGGACAATCGGTTTGGCGCCAGGTTGAACCTGAGCCAGCGCGAAGGTGAAACAGCGATCGACAACCAGGATCAGCGCGCAAAGTTGTTCGTTGCTGGCTTGGACTATCGAGGTGACGACTTCCGCGTTTCCACCGATTTCGGCTACCAGAAACAGCGTATCAATGGACTGCGTAACTCTGTAAACATCGGCAACGCCACGCGCATTCCCACGGCTCCGGATGCGAGTCACAATTATGGACAGGACTGGACTTACTCCGAAACCGAAGACACCTTCGGCATGGTTCGTGGCGATTGGGACTTGAACGAAAACTGGACCGCCTACCTGGCTGGCGGTGTAAAGCACACCCGAGAAACTGGGGTATACGCCACACCGACGCTGGTCGGCAATAACGGTGTCGCGACGATCGGTGGCTCAGAAATTCCACACAACGAAGACAACACATCGTTCAGTGGCGGGCTGAACGGGCGCTTCAACACGGGACCTGTTTCCCACCAGGTTGCGATCGGCGGCTCAACTATCTGGACCGAGCAGGAAAACGCCTACACTTTCTATCGTCCCGTTACCGGCAACAGCAATCTCTACGACACCCCAACGCTACCCAAGCCGACCGCGGTGTCCAGCACCGGCGGTGAAATGGGCGATCCCGGGGTGACCGGCAAAACCCGCAACCGTAGCCTAGCGATTTCCGACACGTTGGGCTTGTTCGATGACAAATTGCTGGTCACTTATGGTGTCCGTCGTCAGCAGTTGCGTGTCGAAAACTATAAGTACGATGGCACCACCTCAAACGGTGTAGCCAATCCAGCAAACGACGGCAGCCGTAGCACGCCCTACGATGAAGCCGTTACCACGCCTGTCTACGGCATTGTCTACAAGCCTGTGGAGAACGTGTCGCTCTACGCCAACCGAATCGAAGGCCTTGCAAAAGGGCCAGTGGCTTCCGGTTCAGGCATCACCAACCTGGGCCAAGCCTTTCCCCCGGGCCGCACAAAACAGTTGGAAGCGGGCATCAAGCTGGACATGCAGACCTTCGGTGCCAACGTGGGTGTTTTCCGTATCGAGAAACCTTCCGATGGCTACGTCGACAACGCGCAGAACCTCTATGTGCGTGACGGTGAGCAGGTCAACAAAGGGCTGGAGATCAGCGTATTCGGCGAGCCCATCGAAGGTCTCCGGTTGATGGCCGGCGGCACCCGAATGACGTCCGAACTCAAAAAAACTGCGGGCGGTTTCAACGATGGCAACCACGCCATTGGCGTGCCAACGTTCCAGCTCAATGCCAGCGTGGATTGGGATGTCCCAGGCCTCGAAGGCGCCGCGCTCAGCGCGAGGATGTTGCGCACGGGCGGGCAGTACGCGGATCAGGCTAACAACTTGAGCTTGCCGACCTGGAACCGGTTCGACGCGGGCGCACGTTATAAGATGAAATTCGTAGAGAAAGACCTGACGTTGCGCGTCAATGTGGAAAACATTACCGACAAGAACTACTGGGCCTCGGCGAACGGCGGCTATCTTTCGCAGGGTGATCCGCGCTTGGTGAAGTTTTCTGGGACTATTGATTTCTGA	MLFPFRLTLLAACCSVSFLAQAAAPIELGVTDVTADAIKTNSNTLSAPYAGGQVARGGQMGVLGNQDNMDVPFVMTSYTSQLIEDQQAEDVGDVLLNDPSVRQSYGFGNQSQVFVIRGLPLASDDISYNGLYGVLPRQILSTDVIERVEVFKGPNAFINGVSPTGSGLGGGVNLQPKRAEDVPTRRYTQDISTDGRMGEHLDIGQRFGEDNRFGARLNLSQREGETAIDNQDQRAKLFVAGLDYRGDDFRVSTDFGYQKQRINGLRNSVNIGNATRIPTAPDASHNYGQDWTYSETEDTFGMVRGDWDLNENWTAYLAGGVKHTRETGVYATPTLVGNNGVATIGGSEIPHNEDNTSFSGGLNGRFNTGPVSHQVAIGGSTIWTEQENAYTFYRPVTGNSNLYDTPTLPKPTAVSSTGGEMGDPGVTGKTRNRSLAISDTLGLFDDKLLVTYGVRRQQLRVENYKYDGTTSNGVANPANDGSRSTPYDEAVTTPVYGIVYKPVENVSLYANRIEGLAKGPVASGSGITNLGQAFPPGRTKQLEAGIKLDMQTFGANVGVFRIEKPSDGYVDNAQNLYVRDGEQVNKGLEISVFGEPIEGLRLMAGGTRMTSELKKTAGGFNDGNHAIGVPTFQLNASVDWDVPGLEGAALSARMLRTGGQYADQANNLSLPTWNRFDAGARYKMKFVEKDLTLRVNVENITDKNYWASANGGYLSQGDPRLVKFSGTIDF	PGPT0003790_18213	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014	NA	NA
D1-36_00099	636			hypothetical protein	ATGACTCGAACCCAGAAAACCGTCTTCATCCTCGCGGCCGTGATCGCACTGATCCTCGGCCTGACCATCAACAAGGTGCTGTCCAGCAAAGGCCAGGGTGACCCGACCGCATTGATCGACGCCGGCATCATCCTGCTGCCGCAAAGCCGCAACCTGCCGGATGTGAAAATGACCGACCAGGACGGCCAGCCCGTGGCGATGGATGGGCTGAAAGACAAGTGGAGCCTGCTGTTCTTCGGCTACACCTTCTGCCCGGACATCTGCCCAACCACCCTCGCCCAACTGCGCCAGATCAAAAGCGAACTGCCGCCCGAGGCTGTGGCCAAGTTGCAGGTCGTATTGGTAAGCGTCGACCCGAACCGCGACACCCCCAAGCAACTCAAGCAATACCTGGGTTACTTCGATCCGCAATTCAAAGGCTTGACCGCTTCATCGGTGGAAGACCTGCAGAAACTGGCGAATGCGGTGAGCATCCCGTTCATCCCGGCGGACACCAGCAAACCCAACTACACCGTCGATCACAGCGGCAACCTTGCCGTGATTGGACCGGACGGCAAGCAACGCGGGTTTATTCGGGCGCCGTTGAATAACCAGAAGTTGGTGGCGCAGTTGCCGGAGATGCTCAAGCGCAAATGA	MTRTQKTVFILAAVIALILGLTINKVLSSKGQGDPTALIDAGIILLPQSRNLPDVKMTDQDGQPVAMDGLKDKWSLLFFGYTFCPDICPTTLAQLRQIKSELPPEAVAKLQVVLVSVDPNRDTPKQLKQYLGYFDPQFKGLTASSVEDLQKLANAVSIPFIPADTSKPNYTVDHSGNLAVIGPDGKQRGFIRAPLNNQKLVAQLPEMLKRK				NA	NA	NA	NA	NA
D1-36_00100	900	ctaB	COG0109	Protoheme IX farnesyltransferase	ATGGCAACCTTGACCGGTGAACGCCACAGCCAGGCGATCTGGCGCGATTACCTGGAGCTGACCAAGCCCAAAGTAGTGGTATTGATGCTGATCACCTCGCTGGTCGGCATGTTTCTCGCGACCCGCGCCGGAGTGCCGTGGACGGTCCTTGTATTCGGCAACCTGGGCATCGCGCTGTGCGCAGGTGGCGCGGCCGCGGTGAACCACGTGGTGGATCGGCGTATCGACGCGGTGATGGCCCGCACCCATAAGCGGCCGCTGGCCGAAGGGCGGGTCTCGCCCGCCGCTGCACTGACCTTCGCCCTGGCGCTGGCCGTCGCCGGGCAAGCCATGTTGCTGATCTTTACCAACCCACTGACCGCCTGGCTGACCCTCGCCTCGCTCCTCGGTTACGCCGTGATCTACACCGGCTTCCTCAAGCGGGCAACGCCGCAGAACATCGTCATCGGCGGCCTCGCCGGCGCCGCTCCGCCGCTGCTGGGCTGGGTGGCGGCCACCGGACACGTCAGCGCCGAACCGCTGTTGCTGGTGTTGATCATCTTCGCCTGGACGCCGCCGCACTTCTGGGCCCTGGCGATTCATCGCAAGGAGGAATACGCCAAGGCCGACATCCCGATGCTGCCGGTGACCCACGGCGAGCACTACACCAAGATCCACATCCTGTTGTACACCTTGGTGCTGCTGGCGGTGAGCCTGATGCCGTTCGTGATCCAGATGAGCGGGTTGATCTACCTGGTTTGTGCGCTAGTGCTGGGTGCCCGGTTTCTGCAATGGGCCGTGGTGTTGTACCGTGGCAGTCGGCCGCACGCGGCGATCAATACGTTCAAGTACTCTATCTGGTACTTGTTCCTGCTGTTCATCGCCCTGCTCGTTGATCACTACTTACTGTTGAGCCTATGA	MATLTGERHSQAIWRDYLELTKPKVVVLMLITSLVGMFLATRAGVPWTVLVFGNLGIALCAGGAAAVNHVVDRRIDAVMARTHKRPLAEGRVSPAAALTFALALAVAGQAMLLIFTNPLTAWLTLASLLGYAVIYTGFLKRATPQNIVIGGLAGAAPPLLGWVAATGHVSAEPLLLVLIIFAWTPPHFWALAIHRKEEYAKADIPMLPVTHGEHYTKIHILLYTLVLLAVSLMPFVIQMSGLIYLVCALVLGARFLQWAVVLYRGSRPHAAINTFKYSIWYLFLLFIALLVDHYLLLSL	PGPT0008520_3023	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
D1-36_00101	1080	ctaA		Heme A synthase	ATGGCCAAGCCTGGATTTCGCCTCGCGCTGTTCGCCACGTTGCTGGCATTGATTGTCGTACTGTTAGGCGCCTACACCCGCCTGACTCACGCCGGCCTCGGTTGCCCCGACTGGCCGGGTTGCTACGGATTCATCAGCGTACCCAAGGGCGAAGCCCAACTGGCCCATGCCGAATTGCATTTCCCCGACGCCCCGGTTGAGGCCCATAAAGGCTGGAACGAGATGGTCCACCGGTATTTCGCCGGTGCCTTGGCGCTGATGATTGCCGCGCTGGCCGCCCGGGCCTGGACGAACCGTCGTCACCCTGGCTTGCCATTGAAATTGCCACTGTTTCTCCTCGCCGTTGTGTTCGCGCAAGCGGCGTTCGGCATGTGGACCGTGACGTTGAAGCTCTGGCCTCAAGTCGTCACCGGTCATCTGCTGGGCGGGTTCGCGACGTTGAGCCTGTTGTTTCTGCTTACCCTGAGATTGTCCGGCGTGTTGCCGGCGCTGACCGTGCCCAAGCGCCTGCAACATTGGGCCACGGCCGGGCTGCTGCTGGTGATCGGCCAGATCGCCTTGGGCGGCTGGGTCAGTTCCAACTACGCCGCGGTGGCCTGCATCGACTTCCCCACCTGCCATGGTGAATGGATGCCGCCCGCCGATTTCGCCAACGGCTTTCACCTGACCCAGCACATCGGCCCGAACTACCTGGGCGGGCAACTGGACAGCGACGCCCGTACCGCCATCCATGTGACCCATCGCATCGGCGCGTTACTGGTGACTGTGGTGCTGCTTGGGCTGGCTTGGCAACTGAAAACGGTGGGCATGACCCGACTGGCGGGGCTGGTCCTCACCGCGCTGGTCGCGCAAATTACATTAGGTATAAGCAACGTCGTGTTTCATCTGCCGCTGCCGGTGGCCGTGGCCCACAACGCCGGGGGCGCCGCCCTGCTGCTGACCCTGGTGCTGGTCAATTATCACGCCCGCACCAGCCTGGTCCGGGTACGGCACCACGTCCCGCTGCGCTGGCGCTTCAATCCGCCCAAACACGGCGTCGCCCCCATTACGATTAAAGGAGAGATGCCATGGCAACCTTGA	MAKPGFRLALFATLLALIVVLLGAYTRLTHAGLGCPDWPGCYGFISVPKGEAQLAHAELHFPDAPVEAHKGWNEMVHRYFAGALALMIAALAARAWTNRRHPGLPLKLPLFLLAVVFAQAAFGMWTVTLKLWPQVVTGHLLGGFATLSLLFLLTLRLSGVLPALTVPKRLQHWATAGLLLVIGQIALGGWVSSNYAAVACIDFPTCHGEWMPPADFANGFHLTQHIGPNYLGGQLDSDARTAIHVTHRIGALLVTVVLLGLAWQLKTVGMTRLAGLVLTALVAQITLGISNVVFHLPLPVAVAHNAGGAALLLTLVLVNYHARTSLVRVRHHVPLRWRFNPPKHGVAPITIKGEMPWQP	PGPT0008525_1335	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008525-ctaA-K02259	NA	NA
D1-36_00102	594			hypothetical protein	ATGGGAAGCACCATGAATCCAACCAACACGTCTGAAGCGCCCGATGCACGCAGCCGCCGCAAGGGCCGCGTGCAATTGCTGTTGATTGTGCTGGGCGTGATCGGCCCGATGATCCTCGCCACCGGCATGTACAAATTCCAGTTCTGGGTCCCCGACAGCCGCAGCTACCACGGCGAGTTGATCGGCAACGGCCAGTCTCGCGCCGACATCGGCGTGCAGGCCGACGAGCAGCGCTGGCAGATCCTGGTGACGGCCCCTCAAGAGTGCTCGGTGGACTGCCGCCAGCTGGTCTACCTGGCCCGGCAAGTGCAGATCGGCCTGGGCCGCGAAGCCGGCCGCGCCAGCCATGCCCTGGCCATCGCGCAACCACTGGACAGCGAGTACGACGCCCAGCTGCAGCGCGAATATCCCCAGCTGCAACGCTACCCACTGGATCTGCCTGCCTATCAGAAAGGCGCCCAGGGTTCCGGCGGCGCCCAGCTGTGGATCATCGATCCCCACAGCAACCTAGTGCTGCGCTACGACGCCCGGGTCAAGGGCAAGGATTTGCTCAACGACCTGCGGCACCTGCTGAAACTGTCGAACATCGGATGA	MGSTMNPTNTSEAPDARSRRKGRVQLLLIVLGVIGPMILATGMYKFQFWVPDSRSYHGELIGNGQSRADIGVQADEQRWQILVTAPQECSVDCRQLVYLARQVQIGLGREAGRASHALAIAQPLDSEYDAQLQREYPQLQRYPLDLPAYQKGAQGSGGAQLWIIDPHSNLVLRYDARVKGKDLLNDLRHLLKLSNIG				NA	NA	NA	NA	NA
D1-36_00103	738			hypothetical protein	ATGAAAGGCTTCCGGCCGGGCATCGTGCCGTCACTCGTGGTGGCCGTGCTGGTGCCGGTGATGGTGTGCCTGGGGTTCTGGCAAATGAGCCGGGGCGAACAGAAACGTGTGCTCATGGACACTTATGCCGAGCGCCGCGTGGCCAAGCCGATGGACAGCGTCGAGCTTTCGGATACGACGGATCCGGCCTTTCGACCGGTCAGCCTGCGTGGCCAATTCGACGCCGATCACAGCCTGCTCCTGGACAACCGCCAGCACGACGGCAAGGTGGGCGTCGAACTGCTGCAGCCGTTCCTCGATCACGCCAGCGGGCTTTGGCTGCTGGTCAATCGTGGCTGGCTGCCCTGGCCGGATCGCCGCACCCCGCCAGTCTTCAGCACACCTGAACAGACTGTCGACCTTCAAGCCTGGGTCTACGTCGCACCCGGCGCCACGTTCCAACTTCACGCCGACCCGGCAAGCGCACCGTGGCCGCGGCTGGTCACCACCATCGAACCGCAGAAACTCTGGGCAGAACTGGACCGTGGCGGCTTCGCTTACGAACTAAGACAACAAAGCGGCCCCGGCGCCTACCGGACCGATTGGCCGGTGGTTGCCATGGGTCCGGAAAAACACCTCGGCTATGCCGTGCAGTGGTTCGCCATGGCGGCGGCGCTGTTCGGCCTTTTCCTCTATCTCGGATGGCACAACGCAGGGAGACACCATGGGAAGCACCATGAATCCAACCAACACGTCTGA	MKGFRPGIVPSLVVAVLVPVMVCLGFWQMSRGEQKRVLMDTYAERRVAKPMDSVELSDTTDPAFRPVSLRGQFDADHSLLLDNRQHDGKVGVELLQPFLDHASGLWLLVNRGWLPWPDRRTPPVFSTPEQTVDLQAWVYVAPGATFQLHADPASAPWPRLVTTIEPQKLWAELDRGGFAYELRQQSGPGAYRTDWPVVAMGPEKHLGYAVQWFAMAAALFGLFLYLGWHNAGRHHGKHHESNQHV				NA	NA	NA	NA	NA
D1-36_00104	204			hypothetical protein	ATGCTCAAAGCAGCCATCGCCCTGATGCTGATCGCCACGGTTGCCAGCCTGTTCAGCGGCTTGTTTTTTCTGGTCAAGGACCAAAGCGATTCCAATCGCCTGGTCATCGCCCTGGCAATTCGCGTGGCCTTGGCCGCTGTGACCGTCGGCTTGATTGCGTGGGGCTTTTTCAGCGGCCAGTTGGTGTCGCATGCTCCTTGGTAA	MLKAAIALMLIATVASLFSGLFFLVKDQSDSNRLVIALAIRVALAAVTVGLIAWGFFSGQLVSHAPW				NA	NA	NA	NA	NA
D1-36_00105	888	ctaE	COG1845	Cytochrome c oxidase subunit 3	ATGGCAACTCATGAGCACTACTACGTTCCGGCCCAGAGCAAATGGCCGATCATCGCCACGGTCGGGATGTTCGTCACGGTGTATGGGCTGGCGACCTGGTTCAACGACCTGAAGGCGGCACGCCCGGACTCCAACGGCCCGCTGATCTTTTTCGTCGGCGGCCTGTTGGTGGCCTACATGTTGTTCGGCTGGTTTGGCGCCGTCATCAAGGAAAGCCGCGCCGGGCTGTACAGCGCGCAGCTCGATCGCTCGTTTCGCTGGGGCATGAGCTGGTTCATCTTTTCCGAAGTGATGTTCTTCGTGGCGTTCTTCGGCGCGTTGTTTTACGTACGAGTGGTGTCGGCGCCCGGTCTGGCCGGTGAAGGCAGCAAGGGTTTGTCGGAGATGCTGTGGCCGAACTTCGAATACGTCTGGCCGTTGTTGAACAACCCGGATCCCAAACTCTTCCCACCGCCCAAGGACGTGATCAGCCCTTGGGGCTTGCCGCTGCTCAATACCATCCTGCTGGTCAGTTCCAGCGTCACCGTGACCATCGCCCACCACGCCCTGAAGAAAGGCCATCGCGGCGCATTGAAGGTGTGGCTGGCGATCACCGTGCTGCTGGGTTGCGCGTTCCTGGGCTTCCAGGCCGAGGAATACATCCACGCCTATAAAGAGCTGGGCCTGACGTTGGGCTCGGGGATCTACGGCGCGACGTTCTTCATGCTCACCGGTTTCCACGGCGCCCACGTCACCATCGGCACGATCATCCTGTTCGTGATGCTGATGCGCATCATGCGGGGGCACTTCGACAACGAGCATCAGTTCGGCTTCGAGGCCGCGAGCTGGTACTGGCACTTCGTCGATGTGGTGTGGATCGGCTTGTTCTTCTTCGTCTACATACTCTGA	MATHEHYYVPAQSKWPIIATVGMFVTVYGLATWFNDLKAARPDSNGPLIFFVGGLLVAYMLFGWFGAVIKESRAGLYSAQLDRSFRWGMSWFIFSEVMFFVAFFGALFYVRVVSAPGLAGEGSKGLSEMLWPNFEYVWPLLNNPDPKLFPPPKDVISPWGLPLLNTILLVSSSVTVTIAHHALKKGHRGALKVWLAITVLLGCAFLGFQAEEYIHAYKELGLTLGSGIYGATFFMLTGFHGAHVTIGTIILFVMLMRIMRGHFDNEHQFGFEAASWYWHFVDVVWIGLFFFVYIL	PGPT0004035_312	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FoxABCD,PGPT0004035-coxC|ctaE-K02276	NA	NA
D1-36_00106	552	ctaG	COG3175	Cytochrome c oxidase assembly protein CtaG	ATGGCTGATTCAATCTCGCTGAAGAAACTGGTCACCCGCCTGCTGCTGGTAGTGGTGGCCATGTTCATCTTCGGGTTTGCCCTGGTGCCGATCTACGACGTGATGTGCAAGGCGTTCGGCATCAACGGCAAGACCGGTGGGCAGTACGAAGGCGTGCAGACGGTGGATGAATCACGGCAGGTGCGGGTGCAATTCCTGTCGACCAACGCAGTGGACATGGTCTGGGATTTCTACCCCAAGGGCGATCAACTGGTGGTCAAGCCGGGGGCAGTGAACGAAATGGTGTTCGTCGCCCACAATCCCACCGACCGGCCGATGAGCGCCCAGGCAGTTCCGAGCATCTCGCCGAGCACGGCGGCGGCGTATTTCCACAAGACCGAATGTTTTTGTTTTACCCAGCAAGTGCTGCAACCCGGCGAACGCATCGAGATGCCCATGCGCTTCATCGTCGACCGGGACATGCCCAAGGAAGTGAAGCATCTGACGCTGTCCTACACGCTGTTCGATATCACTGCTCGTCATCCTCCGGTGGCTCTAAACACTGACCGATAG	MADSISLKKLVTRLLLVVVAMFIFGFALVPIYDVMCKAFGINGKTGGQYEGVQTVDESRQVRVQFLSTNAVDMVWDFYPKGDQLVVKPGAVNEMVFVAHNPTDRPMSAQAVPSISPSTAAAYFHKTECFCFTQQVLQPGERIEMPMRFIVDRDMPKEVKHLTLSYTLFDITARHPPVALNTDR				NA	NA	NA	NA	NA
D1-36_00107	1587	ctaD	COG0843	Cytochrome c oxidase subunit 1	ATGAGTGCTGTGATCGATGACCACGGTCATGCCGACCACGCCCACGGCCCCGCCAAGGGCCTGATGCGCTGGGTGCTGACCACCAACCACAAGGACATCGGCACGCTGTACCTGTGGTTCGCGTTCTCCATGTTCCTGCTGGGCGGCTCGTTCGCCATGGTGATCCGCGCCGAGCTGTTCCAGCCCGGTTTGCAGATCGTACAGCCGGAGTTCTTCAACCAGATGACCACCATGCATGGCCTGGTGATGGTCTTCGGCGCGGTGATGCCGGCCTTCGTCGGCCTTGCCAACTGGATGGTGCCGCTGATGATCGGCGCGCCGGACATGGCCCTGCCACGCATGAACAACTTCAGTTTCTGGCTGTTGCCCGCGGCGTTCCTGATGCTGGTCTCGACGCTGTTCACACCGGGGGGTGGGCCGAATTTCGGCTGGACATTCTATGCGCCGCTGTCCACCACCTATGCGCCGGAAAGCGTGACGTTTTTCATCTTCGCCATCCACCTGATGGGCATCAGCTCGATCATGGGCGCGATCAATGTGGTCGCCACCATCCTCAACCTGCGCGCCCCCGGCATGACCTTGATGAAAATGCCGCTGTTCGTCTGGACCTGGCTGATCACCGCGTTTTTGCTGATCGCAGTCATGCCGGTGCTGGCCGGCTGCGTGACGATGATGCTGATGGACATCCACTTCGGCACCAGCTTCTTCAGTGCCGCCGGCGGCGGTGACCCGGTGCTGTTCCAGCATGTGTTCTGGTTCTTCGGCCACCCCGAAGTGTACATCATGATCCTGCCGGCCTTCGGTGCCGTCAGCTCGATCATCCCGGCGTTCTCGCGCAAGCCACTGTTCGGCTACACCTCGATGGTCTACGCCACGGCCGCCATTGCGTTCCTGTCGTTCATCGTCTGGGCGCACCACATGTTCGTGGTCGGCATCCCGCTGGTGGGCGAGTTGTTCTTCATGTACGCGACCCTGCTGATCGCCGTGCCCACCGGGGTGAAGGTGTTCAACTGGGCCAGCACCATGTGGCAGGGCTCGCTGACCTTCGAGACGCCGATGCTGTTCGCCGTGGCGTTCGTGATCCTGTTTTCAATCGGCGGCTTCTCCGGGCTCATGCTCGCCATCGCCCCGGCGGACTTCCAGTACCAAGACACCTACTTTGTGGTCGCGCATTTCCACTACGTGCTGGTGCCCGGCGCGATCTTCGGGATTTTCGCCTCGGCGTACTACTGGCTGCCGAAATGGACCGGCCACATGTACGACGAAACCCTCGGCAAGCTGCACTTCTGGCTCTCGTTCATCGGCATGAACATGGCGTTCTTCCCGATGCACTTCGTGGGCCTGGCGGGCATGCCCCGGCGGATTCCCGACTACAACCTGCAGTTCGCCGACTTCAACATGGTTTCGTCCATCGGCGCGTTCATGTTCGGCACCACGCAGATCTTCTTCCTGTTCATCGTGATCAAGACCATCCGCGGCGGCGAGCCAGCCCCGGCCAAGCCGTGGGATGGCGCCGAAGGGCTGGAGTGGAGCGTGCCGTCGCCGGCGCCCTATCACACGTTTACTACGCCGCCGGAAGTGAAATAG	MSAVIDDHGHADHAHGPAKGLMRWVLTTNHKDIGTLYLWFAFSMFLLGGSFAMVIRAELFQPGLQIVQPEFFNQMTTMHGLVMVFGAVMPAFVGLANWMVPLMIGAPDMALPRMNNFSFWLLPAAFLMLVSTLFTPGGGPNFGWTFYAPLSTTYAPESVTFFIFAIHLMGISSIMGAINVVATILNLRAPGMTLMKMPLFVWTWLITAFLLIAVMPVLAGCVTMMLMDIHFGTSFFSAAGGGDPVLFQHVFWFFGHPEVYIMILPAFGAVSSIIPAFSRKPLFGYTSMVYATAAIAFLSFIVWAHHMFVVGIPLVGELFFMYATLLIAVPTGVKVFNWASTMWQGSLTFETPMLFAVAFVILFSIGGFSGLMLAIAPADFQYQDTYFVVAHFHYVLVPGAIFGIFASAYYWLPKWTGHMYDETLGKLHFWLSFIGMNMAFFPMHFVGLAGMPRRIPDYNLQFADFNMVSSIGAFMFGTTQIFFLFIVIKTIRGGEPAPAKPWDGAEGLEWSVPSPAPYHTFTTPPEVK	PGPT0004025_3954	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FoxABCD,PGPT0004025-foxA|coxA|ctaD-K02274	NA	NA
D1-36_00108	1128			hypothetical protein	ATGACGCGACATCCACACGTATGGATGGGCCTCCTGTTGTGGTCGATTTTCAGTCAGGCGCAAGCGGCCTGGACTGTGAATATGGCGCCTGGAGCGACACAGATCAGCAATGCAGTGTTCGACCTTCACATGACCATTTTCTGGATCTGTGTGGTCATCGGCATCATCGTCTTCGGCGCCATGTTCTGGTCGATGATGATGCACCGCCGCTCAACCGGCCAGAATGCCGCGCACTTCCACGAAAACACCCGCGTCGAAATCCTCTGGACCATCGTGCCCTTCCTGATCCTGGTGCTGATGGCGATCCCTGCCACAGCCACGCTGATCAAGATGTACGACTCCAGCGAGTCGGAGATCGACATCCAGGTCACCGGCTATCAATGGAAGTGGCACTACAAATACCTGGGCCAGGACGTCGAGTTCTTCAGCAACCTGGCGACCCCCGCCGAACAGATCAACAACCAGAGCACCAAGGGCGAGCACTACCTGCTGGAAGTCGACAAGCCGCTGGTGCTGCCGGTCGATGCCAAGGTGCGCTTTCTGGTGACCTCCGCCGACGTGATCCACTCCTGGTGGGTGCCGGCCTTCGCGGTCAAGCGCGACGCTATTCCAGGGTTCGTCAACGAAGCCTGGACCCGCGTCGACAAGCCCGGCATCTATCGCGGCCAATGCGCCGAGTTGTGTGGCAAGGACCATGGCTTCATGCCGATCGTGGTAGAGGTCAAGAGCAAACCCGACTACGAGAAATGGCTGGGCGAACGCAAGGCCGAAGCCGCGCAGCTTAAAGAGTTGACCAGCAAGGAGTGGACGCGCGAAGAACTCGTCGAGCGTGGCGACAAGGTCTACCACACCACATGCGTGGCATGTCACCAGGCCGAAGGCCAGGGCTTGCCGCCGATGTTCCCGGCGCTCAAGGGCTCGAAAATCGCCACCGGGCCAATCAAGGATCACTTGAACATCGTCTTCCATGGCAAGCCCGGCACCTCCATGGCGGCGTTCGGCAAACAGTTGTCGGAAGTCGATATCGCGGCGGTCGTGACCTATGAACGCAACGCCTGGGGCAACAACAAGGGCGACATGGTCACGCCTAAAGAAGTGCTGGAACTCAAACAGGCAGAAAGCCAATGA	MTRHPHVWMGLLLWSIFSQAQAAWTVNMAPGATQISNAVFDLHMTIFWICVVIGIIVFGAMFWSMMMHRRSTGQNAAHFHENTRVEILWTIVPFLILVLMAIPATATLIKMYDSSESEIDIQVTGYQWKWHYKYLGQDVEFFSNLATPAEQINNQSTKGEHYLLEVDKPLVLPVDAKVRFLVTSADVIHSWWVPAFAVKRDAIPGFVNEAWTRVDKPGIYRGQCAELCGKDHGFMPIVVEVKSKPDYEKWLGERKAEAAQLKELTSKEWTREELVERGDKVYHTTCVACHQAEGQGLPPMFPALKGSKIATGPIKDHLNIVFHGKPGTSMAAFGKQLSEVDIAAVVTYERNAWGNNKGDMVTPKEVLELKQAESQ	PGPT0004030_768	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FoxABCD,PGPT0004030-foxB|coxB|ctaC-K02275	NA	NA
D1-36_00109	651			hypothetical protein	ATGAACACCGCCGCATTGCGCGAGCAGATCCAAAAAGCCCTGCAACATGAGGCCGAGACCGGCCTGTTGAGCCGTCAGTTGACGGCGCAGTTACCAACGCTGCACCCCGCCATTCAGTTGCCGGATGCGAACGCCAATGACGTCCTGGCGAGATTTGTCGCCGCCTACATCAACGAAGTGCCTGACCTGCTGGATGCAGCCAATGTCGTTGCCAGGGAGGCGGGTATCGAGTCGCAAATCAAACCCGTACTGAAAATTGCCGAGCAGTACTTTCTCCAGCCACCGACCATCACGGCCGGGCATGTCGGGCTCAACAGCCTGCTCGACGAAGCCTATCTGGCGCACCGGTTCGTCGAAGAGGTGAACGACCTCTACATCAAGCATTTCGGCCAGCCGCTGATTCCGTTGGACATGACGGTCGCCAACCTGATCGCCCACCAATTGATCGGTGAGGCGTTTGCCAACCAGCTCGATGAAGTGGTGCATCACACGTTCGATGAGTTGCTCAACGACGAGACGTTTGCGTTGGAGTCGGTGGAAGCCTATCGCGAGAAGCTCAGCAGCCCGGAGACCGGCGCGGCCTGGAAGCGCTGGCCGTGCATGTCCCGTCGCTTGGGCGTGGGCCTGGAGCTGGATCAGCCGGCGGCTTGA	MNTAALREQIQKALQHEAETGLLSRQLTAQLPTLHPAIQLPDANANDVLARFVAAYINEVPDLLDAANVVAREAGIESQIKPVLKIAEQYFLQPPTITAGHVGLNSLLDEAYLAHRFVEEVNDLYIKHFGQPLIPLDMTVANLIAHQLIGEAFANQLDEVVHHTFDELLNDETFALESVEAYREKLSSPETGAAWKRWPCMSRRLGVGLELDQPAA				NA	NA	NA	NA	NA
D1-36_00110	1530			hypothetical protein	ATGCGTGCTGCTCAATTAAAAGCTGTTCTGCCACGGGAGCTGTTGGCTTCGGTGGTTGTATTCCTCGTGGCGCTGCCATTGTGCATGGGCATTGCCATCGCATCAGGCCTGCCACCGGCCAAGGGCCTGATTACCGGGATCATCGGTGGTTTGGTGGTGGGTTTTCTGGCGGGCTCCAAGCTGCAAGTCAGCGGTCCGGCCGCCGGGTTGGCGGTGTTGGTTTTCGAACTGGTGCGCCAGCATGGCGTGGCCATGCTCGGGCCGATCCTGTTGTTGGCCGGCCTTCTGCAACTGTTGGCCGGACGCTTTCGCCTCGGGTGCTGGTTCCGGGTCACCGCGCCTGCGGTGGTGTACGGCATGCTCGCCGGTATCGGCGTGCTGATCGTGTTGTCCCAGGTCCATGTGATGCTCGACGCAGCGCCCAAGCCTTCCGGCCTGGACAACCTGGCGGCATTCCCTGCGGCAGTCGCCCAGGCCTTGCCGTCGTTCGGCTGGCAGGCCGGCTTGCTGGGCCTTTCGACGATCGCGGTGATGTGGCTATGGGAAAAGTTCCGGCCCCATAGCCTGCGCTTCATTCCTGGCGCGCTGCTGGGCGTCGGCCTGGCAACCGTCGCGAGCCTGCTGCTGGCGTTGCAGGTCAAGCGCGTAGAAGTCCCGGAAAACATGGCCGAAGCCATCGACTGGCTGCGCCCGGCGGATCTGCTGAACCTGGCCGATCCAACGCTGCTGATCGCGGCCTTCGCGGTCGCCTTCATCGCCAGCGCCGAAACCCTGCTGTCGGCGGCCGCCGTGGACCGCATGCACAGCGGCGAACGGGCGGATTTCGACCGGGAATTGTCGGCGCAAGGTATCGGCAACATGCTCTGCGGCCTGCTCGGCGCCTTGCCCATGACCGGCGTGATCGTGCGCAGCTCGGCCAATGTCCAGGCCGGCGCGACCACGCGGATGTCGACGATCTTCCACGGCTTGTGGTTGCTGCTGTTCGTGCTGTTGCTGTCGAGCGTGCTGCAAAGCATTCCGGTGGCGAGCCTGGCGGGTGTGCTGGTCTATACCGGTTTCAAGCTGGTGGACATCAAGGCGTTCCGCAGCCTCGGTCGTTATGGGCGGATGCCCATGTTCACCTATGCCGCGACGGCACTGGCGATCATCTTCACCGACCTGTTGACCGGTGTACTGGTCGGTTTCGGCCTGACCCTGGTGAAGCTGGCCTGGAAAGCTTCGCGCCTGAAAATCAGCCTGATCGACCTGCCACAGGAAGGCGAGATGGAACTGCGATTGGTGGGTGCGGCAACCTTCCTCAAGGTTCCGGCCTTGACCCAGGTACTGGGTACCATTCCCGAAGGCGCGACGGTGCATGTGCCGCTCAATAATCTGAGCTACATCGATCACTCGTGCCTGGAGTTGCTCGAAGAATGGGGCCGGGCGAACGCCAGCAAGGGTTCGAAGCTGCTGATTGAATCCCGCGGGCTCAAGCGCCGGTTGGAAGGGCGGTTGCGCACGACGGTGGGGGTTGGCGCAGCCTCTGCCTGA	MRAAQLKAVLPRELLASVVVFLVALPLCMGIAIASGLPPAKGLITGIIGGLVVGFLAGSKLQVSGPAAGLAVLVFELVRQHGVAMLGPILLLAGLLQLLAGRFRLGCWFRVTAPAVVYGMLAGIGVLIVLSQVHVMLDAAPKPSGLDNLAAFPAAVAQALPSFGWQAGLLGLSTIAVMWLWEKFRPHSLRFIPGALLGVGLATVASLLLALQVKRVEVPENMAEAIDWLRPADLLNLADPTLLIAAFAVAFIASAETLLSAAAVDRMHSGERADFDRELSAQGIGNMLCGLLGALPMTGVIVRSSANVQAGATTRMSTIFHGLWLLLFVLLLSSVLQSIPVASLAGVLVYTGFKLVDIKAFRSLGRYGRMPMFTYAATALAIIFTDLLTGVLVGFGLTLVKLAWKASRLKISLIDLPQEGEMELRLVGAATFLKVPALTQVLGTIPEGATVHVPLNNLSYIDHSCLELLEEWGRANASKGSKLLIESRGLKRRLEGRLRTTVGVGAASA	PGPT0002415_395	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	K-SOLUBILISATION-OTHER_ACID_METABOLISMS	K-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002415-cynT|can-K01673	NA	NA
D1-36_00111	732	cynT	COG0288	Carbonic anhydrase 1	ATGAGTGACAAGGATAAACAGCCGTTGGCTGCGTCGGCTTCAGCCCAACCCCAGGCGGAAACCGCCGATGCAGCGCTGCAGCACATTGTTGACGGCTTTTTGCATTTCCATCACGAGATCTTTCCCCAGCAGGAAGAGCTCTTCAAGAAACTCGCCACCGCCCAGAAGCCCCGGGCGATGTTCATCACCTGCGCCGATTCGCGCATCGTGCCCGAGTTGATCACCCATAGCTCTCCTGGCGACCTGTTCGTGACCCGTAACGTCGGCAACGTCGTTCCGCCTTACGGCCAGATGAACGGCGGTGTTTCCACCGCCATCGAATACGCCGTGCTCGCCCTCGGCGTGCAGCACATCATCGTCTGCGGCCACTCCGATTGCGGCGCCATGCGTGCCGTGCTCAACCCCGATACCTTGGAAAAAATGCCGACGGTCAAGGCCTGGCTGCGCCACGCCGAAGTCGCCAAGACCATGGTCCATGACAACTGCCCGTGCGGTGACGAGAAGCAGACCATGCCTGTCCTCACCGAAGAGAACGTGATCGCGCAGTTGCAGCATTTGCGAACGCACCCCTCGGTGGCTTCTCGCATGGCCAGCGGCCAGTTGTTCATCCATGGCTGGGTGTACAACATCGAGACCAGCGAGATCAAAGCCTTTGACGCGGACCGGGGCTGTTTCCTGCCGCTCGATGGCAGCCATCCGATACCGGTGGCGACGCCCAAAGCGCGCTTCTAA	MSDKDKQPLAASASAQPQAETADAALQHIVDGFLHFHHEIFPQQEELFKKLATAQKPRAMFITCADSRIVPELITHSSPGDLFVTRNVGNVVPPYGQMNGGVSTAIEYAVLALGVQHIIVCGHSDCGAMRAVLNPDTLEKMPTVKAWLRHAEVAKTMVHDNCPCGDEKQTMPVLTEENVIAQLQHLRTHPSVASRMASGQLFIHGWVYNIETSEIKAFDADRGCFLPLDGSHPIPVATPKARF	PGPT0002415_1757	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	K-SOLUBILISATION-OTHER_ACID_METABOLISMS	K-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002415-cynT|can-K01673	NA	NA
D1-36_00112	1059			hypothetical protein	ATGTCCGTCCCTCTTCCGCCCCGTGGCCGCGGCACCGCCACCAATCCGCATAACCGTTTCGCCCCAAGCCGTTCGGTGGCCGAGGATGATGGCTGGTACCAGGAAGTACCGCCGACCCAGGGCACCGAAGTACGCATCGAAACCGCCAAGACCATCATCACCCGCAACACTTCCACCGACATCCCTTTCGATCGCTCGATCAACCCCTACCGAGGCTGCGAACACGGTTGCATCTATTGTTATGCCAGGCCCAGCCATGCCTACTGGGACATGTCGCCCGGGCTCGATTTCGAAACGAAGCTGATCGCCAAGACCAACGCCGCCGACGTGCTGGAGCAACAATTGGCCCGGCGCGGCTACCAGTGCGCGCCGATCGCCCTGGGTTCCAACACCGACCCCTACCAGCCGATCGAACGCGAGCAACGCATTACCCGGCGGATTCTCGAGGTGTTGCTGCGTCATCGGCACCCGGTGACCATCGTCACCAAAGGCTCGTTGATCCTGCGGGACCTGGACCTGTTGACCGAACTGGCCCGGCAACGCCTCGTACACGTGATGATCAGCCTCACCACGCTGGACGATGAGCTCAAGCGCATTCTCGAACCCCGCGCGGCCGCGCCCAGCGCACGGCTTCGGGCCATAAGGGTCATGCGCGAGGCGGGTATCAAGGTGGGGGTGCTGTGTGCGCCAATGATTCCGATGATCAACGACAGCGAGATCGAAAGCCTGCTGGCCGAAGCCCATGCCGCCGGCGCGCAGACCGCCGCCTATGTCATGTTGCGCCTGCCACTGGAAGTGGCGCCGCTGTTCGAGGAGTGGTTGCAGGCGCACTACCCGCAGCGCGCCGCCCATGTGTTGAGCCTGGTGCGCCAGAGTCGCGGCGGTGAGCTGTACGACAGCCGGTTTGGCGTACGGATGCGCGGCGAAGGCCCGTTTGCCGATCTGCTGGCGCAGCGTTTCGCTAAAACGATTAAGCGATTGGGAATGGATCGACGCGACGGTTACGATCTTGATTGCGATGCCTTCTGTCCGCCGGGGCGACAGATGTCATTGATTTAA	MSVPLPPRGRGTATNPHNRFAPSRSVAEDDGWYQEVPPTQGTEVRIETAKTIITRNTSTDIPFDRSINPYRGCEHGCIYCYARPSHAYWDMSPGLDFETKLIAKTNAADVLEQQLARRGYQCAPIALGSNTDPYQPIEREQRITRRILEVLLRHRHPVTIVTKGSLILRDLDLLTELARQRLVHVMISLTTLDDELKRILEPRAAAPSARLRAIRVMREAGIKVGVLCAPMIPMINDSEIESLLAEAHAAGAQTAAYVMLRLPLEVAPLFEEWLQAHYPQRAAHVLSLVRQSRGGELYDSRFGVRMRGEGPFADLLAQRFAKTIKRLGMDRRDGYDLDCDAFCPPGRQMSLI				NA	NA	NA	NA	NA
D1-36_00113	891	ubiA	COG0382	4-hydroxybenzoate octaprenyltransferase	ATGTACGTGCAACTGCTCAAATCCTTGAACCGCCTCAATCCGCGGGCCTGGGACTTCGTGCAACTGACGCGCATGGACAAGCCCATCGGTATTTATCTGCTGCTGTGGCCGACGTTGTGGGCGCTGTGGATCGCCGGTGAGGGTTCGCCATCCCTGGCCAACATCGTGATTTTTATTCTCGGCGTGGTACTGACCCGTGCCGGCGGCTGCGTGATCAACGACTGGGCCGACCGCAAGGTGGACGGCCACGTCAAGCGCACCGAACAGCGTCCATTGGTGAGCGGCAAGATCAGCTCCAGGGAAGCGCTGGTGTTCTTCGCGGTGCTGATGAGCGTGAGCTTCCTGCTGGTGCTGTGCACCAATGCGCCGACGATTCTGTTGTCCTTGGGCGGGTTGGCTTTGGCCTTCAGCTACCCGTTCATGAAGCGCTATACCTATTACCCCCAAGTGGTGCTGGGCGCGGCGTTTTCGTGGGGCATGCCGATGGCCTTCACCGCCGAAACCGGCCATTTGCCGGCGGCCGCCTGGTTGCTGTACATCGCTAACCTGCTGTGGACGGTGGGCTACGACACCTATTACGCCATGACCGACCGGGACGATGATTTGAAAATTGGCGTGAAATCCACGGCGATCCTGTTCGGCGATGCCGACCGGGTGATCATCCTCACGCTGCAAGGCCTGGCCCTGGCTTGCCTGTTGCTGGCCGGGTCGACATTCAAGCTCGGTGGCTGGTTTCACCTGGGATTGGTGGCCGCTGCCGCGTGTTTCGCCTGGGAGTTCTGGTACACCCGCAGCAAGGATCGGATGCGCTGCTTTAAGGCGTTCTTGCACAACCATTGGGCCGGGTTGGCGATTTTCGTGGGGATTGTGCTGGACTATGGGTTGCGCTGA	MYVQLLKSLNRLNPRAWDFVQLTRMDKPIGIYLLLWPTLWALWIAGEGSPSLANIVIFILGVVLTRAGGCVINDWADRKVDGHVKRTEQRPLVSGKISSREALVFFAVLMSVSFLLVLCTNAPTILLSLGGLALAFSYPFMKRYTYYPQVVLGAAFSWGMPMAFTAETGHLPAAAWLLYIANLLWTVGYDTYYAMTDRDDDLKIGVKSTAILFGDADRVIILTLQGLALACLLLAGSTFKLGGWFHLGLVAAAACFAWEFWYTRSKDRMRCFKAFLHNHWAGLAIFVGIVLDYGLR	PGPT0009515_1297	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009515-ubiA-K03179	NA	NA
D1-36_00114	483	ubiC	COG3161	Chorismate pyruvate-lyase	ATGGACTGGCTGTTTGACCAAGGCTCCCTGACCCGGCGCCTGACCGGCCTGTCGGACGATCACTTCAGCGTGACGCCGCTGTTCGAAGGCTGGCAGCCGTTGCGCGCCGATGAGTGTGCCGCGCTGGACCTGGCCGAGGGCAGCGAGGGCTGGGTGCGCGAGGTGTACCTGCGCGGCCACGGCCAGCCTTGGGTGTTTGCCCGCAGCGTGGCGGCGCGCAGCGCGTTGCAGGGCGACGGCTTGCGGATGGACGAACTGGGCAGCCGCTCGTTGGGCGAGCTGCTGTTTTGTGACCAGGCGTTCCAGCGTCGGGCGATCGAGGTCTGCCACTACCCGAGCGAATGGTTGCCGGCAGAGGTCCGCGTCACCGCGTTGTGGGGCCGTCGTTCACGTTTTGATCGCGGCACGTTGAGCGTACTGGTGGCGGAGGTGTTTCTGCCGAGCATGTGGACAGTCGCTCGCGCCTATTCGGAGAATTGCTGA	MDWLFDQGSLTRRLTGLSDDHFSVTPLFEGWQPLRADECAALDLAEGSEGWVREVYLRGHGQPWVFARSVAARSALQGDGLRMDELGSRSLGELLFCDQAFQRRAIEVCHYPSEWLPAEVRVTALWGRRSRFDRGTLSVLVAEVFLPSMWTVARAYSENC	PGPT0009525_452	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009525-ubiC-K03181	NA	NA
D1-36_00115	168	rubA1	COG1773	Rubredoxin-1	ATGAAGAAGTGGCAATGTATTGTCTGTGGCCTGATCTACAACGAAGCTGACGGTTGGCCTGACGATGGCATCGCGCCCGGCACTCGCTGGGAAGACGTACCGCAAGACTGGCTGTGCCCGGACTGCGGCGTCGGCAAAATGGATTTCGAAATGATCGAAATCAACTGA	MKKWQCIVCGLIYNEADGWPDDGIAPGTRWEDVPQDWLCPDCGVGKMDFEMIEIN	PGPT0021900_23	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021900-rubB|alkT-K05297	NA	NA
D1-36_00116	1149	alkT	COG1251	Rubredoxin-NAD(+) reductase	ATGAGCGCACCTGTCGTCATCGTCGGCACTGGCCTGGCCGGTTACAACCTGGCCCGGGAATTTCGCAAGCTCGACAGCGAAACCCCGTTGCTGCTGATAACCGCGGACGACGGCCGCTCCTACTCCAAGCCGATGCTCTCCACGGGCTTCGGCAAGAACAAAGACGCCGATGGCCTGAGCATGGCCGAGCCAGGCGCGATGGCCGAGCAACTGAATGCCGAGGTACGCACCCACACGCGCATCAGCGGCATCGACCCGGGCCACAAGCGCCTGTGGATCGGCGAAGAAGCAGTGAGCTATCGCGACTTGGTGCTGGCCTGGGGCGCTGAAACCGTGCGCGTGCCGGTGCAAGGCGACGCGGCGGACCTGATCTTCCCCATCAACGACCTGGAAGACTACGCCCGCTTTCGCGCCGCCGCCGCTGGCAAGCGCCGGGTGCTGCTGCTAGGCGCCGGCCTGATCGGCTGCGAATTTGCCAACGACCTGATCCTGGGTGGCTATGAAGTAGAACTGGTCGCCCCATGCGAGCAAGTCATGCCGACGCTGCTGCACCCGGCGGCCGCCGCAGCGGTACAGGCCGGGTTGGAAAGCCTTGGCGCGCGGTTCCACCTCGGCCCGGTGCTCAATCGCCTGCAACGGGTGGCCGACGGTTTGGAAGCGCACCTATCGGACGGCCAAGTGATCGCCTGCGACCTGGTGGTCTCGGCCATCGGTCTGCGCCCGCGCATCGACCTGGCGGCCGCCGCCGGCCTGGTGGTCAATCGCGGCGTCGTGGTGGATCGTCATCTGAAGACTTCCCACGCCAATATCTACGCCTTGGGCGACTGCGCCGAAGTCGATGGCTTGAACCTGCTCTACGTGATGCCGCTGATGAGTTGCGCGCGCGCCCTGGCCCAAACCCTGGCCGGCAACCCCACCGCCGTAGGCTACGGCGCCATGCCGATCACGGTGAAAACCCCGGTGTGCCCATTGGTGGTTTCGCCACCACCACGGGGTAGCGAAGGCGTGTGGAGCGTCGAAGGGCAAGGCGCCGACATCAAGGCCCTGTGCCGCGACGCCCAAGGCAATCTGCTGGGCTACGCCCTGACCGGTGCGGCGGTGATGGAAAAACTGGCGTTGAACAAGCAGCTTCCAGCCCTGCTGGCGTAA	MSAPVVIVGTGLAGYNLAREFRKLDSETPLLLITADDGRSYSKPMLSTGFGKNKDADGLSMAEPGAMAEQLNAEVRTHTRISGIDPGHKRLWIGEEAVSYRDLVLAWGAETVRVPVQGDAADLIFPINDLEDYARFRAAAAGKRRVLLLGAGLIGCEFANDLILGGYEVELVAPCEQVMPTLLHPAAAAAVQAGLESLGARFHLGPVLNRLQRVADGLEAHLSDGQVIACDLVVSAIGLRPRIDLAAAAGLVVNRGVVVDRHLKTSHANIYALGDCAEVDGLNLLYVMPLMSCARALAQTLAGNPTAVGYGAMPITVKTPVCPLVVSPPPRGSEGVWSVEGQGADIKALCRDAQGNLLGYALTGAAVMEKLALNKQLPALLA	PGPT0021900_344	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021900-rubB|alkT-K05297	NA	NA
D1-36_00117	276	hupB_1	COG0776	DNA-binding protein HU-beta	ATGCGTAAACCAGAACTCGCTGCCGCCATCGCGGAAAAAGCAGACCTCACCAAAGAACAAGCCAACCGCGTCCTCAACGCCGTCCTCGAAGAAATTACCGGCGCCCTGCACCGCAAGGACAGCGTCACTCTGGTCGGCTTCGGCACCTTCCTGCAGCGCCACCGCGGCGCCCGCACCGGCAAGAACCCACAAACCGGCGAGCCAGTGAAGATCAAGGCCAGCAACACCGTTGCGTTCAAGCCGGGCAAGTCTTTGAAGGACAGCGTTAACCCGTAA	MRKPELAAAIAEKADLTKEQANRVLNAVLEEITGALHRKDSVTLVGFGTFLQRHRGARTGKNPQTGEPVKIKASNTVAFKPGKSLKDSVNP				NA	NA	NA	NA	NA
D1-36_00118	363			hypothetical protein	ATGTTCAAAATCACTCCAAACCCTCCAGAAGCAGATCCCAACTCTCCTTATCTGGACGGCCTTAACGCCAAAAAACTCGACGACGCCGCTAAGCGAGCATTGGATTTTCATCTAAAGCCCAAATCACCAAGACCTAAAGAAACCATCCAACCCGGCCAGTTATTCACCGTCGTAAAAGATATCGACAACGAATGCCTGCTGGTCAACCTCAGCGAAACCCTCGCTTCAGCTGATGCGATGGTCAATGAACTGGCTTTCGATATGGAAGGGTCCAACCGCCATGTCCTATTGGGCATCCAGCAATTGATCGAGCTGAGTTCGTTGCTGGCTAACCGTGCATTGGATAACGTCGATCCCCGATAG	MFKITPNPPEADPNSPYLDGLNAKKLDDAAKRALDFHLKPKSPRPKETIQPGQLFTVVKDIDNECLLVNLSETLASADAMVNELAFDMEGSNRHVLLGIQQLIELSSLLANRALDNVDPR				NA	NA	NA	NA	NA
D1-36_00120	771	yfcA_1	COG0730	putative membrane transporter protein YfcA	ATGGATTATGAATTCGCTTTGATAGTGCTGGGCTTTTTCGCTTTCTGCGGAGGGTTGATAGATGCGGCAGTGGGTGGTGGCGGCCTCGTACAGCTTCCCGCGCTTTTACATGCTTTACCTCAGCAAAGTCTAGCCACAATTTTCGGGACTAATAAAGTAGCGGTTTTGGCGGGCAACCTTTCCTCAGTATTTAGCTATTTGAAAAGAATAAAAATTATATGGAGGCTCATGCTTCCGACGATGGCCTCGGCATTTATATGTGCCTTTTTAGGGGCGGCTTCGGTATCTGTAGTACCTAAGAAAATAATGGAGTTTGTTGTTTTTTTTATTCTAATAGCGATGACTGCATATATTTTCAAAGAAAAAAATCTCGGCCTAGTAAACACCGGAAAACACTGCAGAACCAGGGAGATTCTATTAGGAGTGTTGTTCGGGGGTTTGGTCGGATTTTATGACGGCGTCTTTGGCCCTGGAAGCGGAAGTCTATTGCTTTTCATATTTGTTAAATATTTCGGCTTCGATTTTTTAAATGCATCTGCATCTGCAAAGCTGGTCAACTTGGTTACTTTTACCGCAGCGCTAGTATTTTTTGTTCCGTCTGGAAATGTTTTGTGGGCCGTGGGTGGCGTTATTGCTCTGTGCAATATCGCTGGATCGCTCACTGGAGTTTTTTTAGCGCTACGCTACGGGAGTGGTTTCATAAGAAAGTTTTTTCTTGTACTACTTTTATTTTTGATAGGTCGAATGGGGCTTAACTTGTTTCAAAATTGA	MDYEFALIVLGFFAFCGGLIDAAVGGGGLVQLPALLHALPQQSLATIFGTNKVAVLAGNLSSVFSYLKRIKIIWRLMLPTMASAFICAFLGAASVSVVPKKIMEFVVFFILIAMTAYIFKEKNLGLVNTGKHCRTREILLGVLFGGLVGFYDGVFGPGSGSLLLFIFVKYFGFDFLNASASAKLVNLVTFTAALVFFVPSGNVLWAVGGVIALCNIAGSLTGVFLALRYGSGFIRKFFLVLLLFLIGRMGLNLFQN				NA	NA	NA	NA	NA
D1-36_00121	981			hypothetical protein	ATGAGCTCAGCATTATCGCAAATTCGTTTTGAGGCAAATAAGCATAAGTACATGCGAGATTTTGGTGAGATATTTATTGAGGCGCTGCCAAAGCATGTAAAAAACCTGAAAATACCTGGACGAGCTATATGTGATGATCATAGAAGGGAACCTATACTGGCGCAGATTACGGACATAGCGGATCTGCAGGGCGCGATGCTTGAAGTACTTTTCCACCCCATTACAAAGGAAGCTCAATTCCATACGGAAAATGCCTTTAACGCTTTCCTATGCAAAACCACAGCCGATTCCTCAGTTATGAAATTTTTTAACGGGTGGAACGAAACTCACAGAACCACCAGCTTAGTATCAGGCAAAATTATCATGCGATTATCAGCAGATGCGATATCGGTTCCTATCGAGAAACAAGCTGGTTATCACAACGTCTTGGCACATATGCATGAAGTCGCTAAAGATGATTTTGGGCTCGGCCATCAGGGACATGATGGTATGTATGATTACATGGCCAAAGCCTTTGGCGCAAAAACATGGGTTGAAAACCAATATAAAGTTGAAGAGTGTAACGATTTTTCGAAGTTTCTATATGCAACTGGAGTGGCCGAACACAAATCGGCGCTGAATTCAGTCGAACATGAAGAATCCATTATGGATGCAATGATGGTATCCATCGCATCAGAACTTTGGAATGGGCAGGAGTATAACTACATTGCTCAGAAAATAGAGGACAAGCTATTCAGCATTGATCCTTCGCTGAGCACTAACGCTAAGGATTTTCGTAACGCAAAAGCGTACATAATGGGACATTCTGGCGACGTGGAGAATAAGCATGGTTTGCATGCCTTGGCCGCTGCGCAGTCGTATGGACGCACAGTAGGCCTAAATTTTAAAATTGGGCGATTGAAAGGTATTATGCTCAATTACAACGAACGAGTAGGACGATCTTTTGAAGCTATGCATCGCGCTTTAACCTCAGCCCCGTAA	MSSALSQIRFEANKHKYMRDFGEIFIEALPKHVKNLKIPGRAICDDHRREPILAQITDIADLQGAMLEVLFHPITKEAQFHTENAFNAFLCKTTADSSVMKFFNGWNETHRTTSLVSGKIIMRLSADAISVPIEKQAGYHNVLAHMHEVAKDDFGLGHQGHDGMYDYMAKAFGAKTWVENQYKVEECNDFSKFLYATGVAEHKSALNSVEHEESIMDAMMVSIASELWNGQEYNYIAQKIEDKLFSIDPSLSTNAKDFRNAKAYIMGHSGDVENKHGLHALAAAQSYGRTVGLNFKIGRLKGIMLNYNERVGRSFEAMHRALTSAP				NA	NA	NA	NA	NA
D1-36_00122	870	gltR_1	COG0583	HTH-type transcriptional regulator GltR	ATGGAGCTTTCGCAGCTAATTATGTTCAAGGCTGTCGCCGATCAAGGTAGTATTATTCGCGCCTCCGAAGTGCTGCACTGTGTTCCGTCAAACATCACAAACCGAATAAAGCTTTTAGAAAAGGAGCTTGGGGTCTCGTTATTCATAAGGAAAGGTAGAGGACTAATCATTAGCCCTTCAGGGCGTTTATTTCTTGGCTATACTAATAAAATATTGTCGTTGTGTCAGGAAGCCCAGAGGGCTCTAAGCGCTGACTCAGAACCAACCGGAAGTTTAAAAATTGGTGCTATAGAGTCGTCCGCTACAGGTAGGCTTCCAAAATTGTTATCAAAATATCACTACACCTATCCTTCTGTGCAGATGCAATTTAGCACGGGGGAGTGGCCCAAACTATTAGATGATGTGGTTAATCATAAGCTGGATGGCGCAGTCATTGCTGTTACTCACCAGCATCCCGAGATTGATAGTATCGAAATTTATAAAGAGGAGCTTGTATTGATAGCTTCTCCAGCGACGGGGTTAATACATGAGCCAGCAAATTTGAACGGAATCAATATGTTTATGTGGCCAGAGGGGTGCCCTTATAGAAAGGCTTTGATAACGTGGTTGAATGCTCATGGTGTGTCTAGCTCCATAACCAGTATAGCCAGTTATGGAACCATTCTTGGTTGCGTGAGTTCGGGGGCTGGTGTTTCCTTAGTTTCGAGGGGGGTATTCGAGCAATTTAATCAGATCGGGAATATTCGAGGCTACGTTTTTGACGATTTACCCTCTGTACCTAATTTTTTTATTTGGAATAAGAATCTTGGGTTCCATAGTGCTAAGGACGCATTCGCGGCTTTATTAAGCGAAGAGCTGGGAGATTTATAG	MELSQLIMFKAVADQGSIIRASEVLHCVPSNITNRIKLLEKELGVSLFIRKGRGLIISPSGRLFLGYTNKILSLCQEAQRALSADSEPTGSLKIGAIESSATGRLPKLLSKYHYTYPSVQMQFSTGEWPKLLDDVVNHKLDGAVIAVTHQHPEIDSIEIYKEELVLIASPATGLIHEPANLNGINMFMWPEGCPYRKALITWLNAHGVSSSITSIASYGTILGCVSSGAGVSLVSRGVFEQFNQIGNIRGYVFDDLPSVPNFFIWNKNLGFHSAKDAFAALLSEELGDL				NA	NA	NA	NA	NA
D1-36_00123	1029			hypothetical protein	TTGTTTCCGGCCTTCCTGCTTTTGTTACTCAACGGTTGTACAAGCGTCGGTTATTACGGCCAGCTCGCCAGCGGACAATGGCGACTGCTGCAAGCACGCGAGCCCATCGACCGGGTCATTGCCGACCCCACCCGTGATTCCGGATTGCGCACCCATCTGGCTCAGGCCCGTGAGGCCCGCGCATTCGCCAGCACACACCTGCACCTGCCCGACAACCAGAGCTATCGCCTGTACGCGGACATCGGCCGCCCCTTTGTCGTCTGGAACGTCTTCGCCACCCCGGAGTTTTCCCTGGCCCCGCTCACCCACTGTTTTCCCATCGCCGGTTGCGTGGCGTATCGGGGCTATTACAGCCAGGGCGCCGCCCGGGGTGAGGCCGCTTTGCAGCGTTTGCGAGGCATGGATGTGTCGATTGCCGGCGTAGAGGCCTACTCGACGCTGGGCTGGTTCGACGACCCGATCCTCAGTTCGATGCTGCATTGGGGCGACGAACGCCTGGCGACGCTGATCTTTCATGAACTGGCGCACCAACGCGTCTACGTGAAGGACGACACGGAATTCAACGAATCATTCGCCACCTTCGTCGAGCAGGAAGGCACCCGCCAATGGCGCGCCCATCGCGGCCTGGCGCCGGACAACGGCAACCGATTGCGCCAGCGCGACCAGTTCATCCAGTTGATCCTCGACACCCGCCAACGGCTGGAAACCCTCTACGCTCAACCCCTACCGACCGAGCAGATGCGCCAACGCAAAGCCGAGGAATTCGAACGCCTGCGCGCCGACTACGCGCACCTACGCGACAGCCAATGGGCCGGCGACAAACGCTACGACGCCTGGATCTACGCGCCCCTGAACAACGCCCGAATATTGCCGTTCGGCCTGTACGACCAATGGGTGCCGGCGTTCGGGGCGTTATTCAAGCGTGAGGGCGAGGATTGGCTGGCGTTTTACAGCGCGGTGGAAAAACTCGGCCGCTTGCCAACCGTAGAGCGCAAGGCAGCGCTGAAGGCGCTGGCCTCAACCAATTGA	MFPAFLLLLLNGCTSVGYYGQLASGQWRLLQAREPIDRVIADPTRDSGLRTHLAQAREARAFASTHLHLPDNQSYRLYADIGRPFVVWNVFATPEFSLAPLTHCFPIAGCVAYRGYYSQGAARGEAALQRLRGMDVSIAGVEAYSTLGWFDDPILSSMLHWGDERLATLIFHELAHQRVYVKDDTEFNESFATFVEQEGTRQWRAHRGLAPDNGNRLRQRDQFIQLILDTRQRLETLYAQPLPTEQMRQRKAEEFERLRADYAHLRDSQWAGDKRYDAWIYAPLNNARILPFGLYDQWVPAFGALFKREGEDWLAFYSAVEKLGRLPTVERKAALKALASTN				NA	NA	NA	NA	NA
D1-36_00124	414			hypothetical protein	ATGCGCGTGTTGATGCTGACAAGTGGCCTGTTGCTGCTGACCGGCTGTGCCGGTTTGCCCGATCCAGATCCCTCCCAGGCGTGGATTGACCTAGGTAACCATCGGGACACGGCGTTGCAAGCGTTGGAAGTCGATGACAAGGCATCCATCGACCGGCGTTATTTCGAGGTTCAACCGGGTAGCCATGAGCTGACGGTGCGTTATCAATTTGCCGTGGAGCCGGGCAACATCGGGCCAGATGCCGAGCCGCTGTGGCGCGATTGCCGGTTGAACGTAAAATTCAAGGATTTCAACGCGGGCCAGCGCTATCAGTTGCAAGCCGGCAGTATCGGGTTCCGGCCGTGGGCCAAGCTTTACGACCAACAGCGCAACGTGGTGGGCCAAGGCACGCCGGCAGGCTGCCAGCAAAGCTGA	MRVLMLTSGLLLLTGCAGLPDPDPSQAWIDLGNHRDTALQALEVDDKASIDRRYFEVQPGSHELTVRYQFAVEPGNIGPDAEPLWRDCRLNVKFKDFNAGQRYQLQAGSIGFRPWAKLYDQQRNVVGQGTPAGCQQS				NA	NA	NA	NA	NA
D1-36_00125	429			hypothetical protein	ATGCGCCTACCCACGTTGTTTTTGGCTCTTGCGACATTGAGCGGATGCGCGACGAGCCCATTGCCCGAGATGGACCCGAACATGGCCTGGGTCGACTTCGCCACCCCTATGCCGGGCGGCAAGCTGCTGATGGCTGAAAGCCTGGACGGCCAGCGGCTGCGGGACGGACGCTTTTTTCAGGTTTCACCCGGTAGCCACGAACTCAAGGTGCGCTTCGACTTCGAGGTGTTCGGCGCGGGCGGTGGGCTGGGCATGATGAACGACCCGAAGGAACGGCTGTGCTATCTGATCGTGCGCTACGACCATTTCGAGGCCGGCCAGCGTTATCGCCTGGAGGCTCGTAATCTGGCGTACTCCCCCAGTGCCCGGCTCTATAACGCCAAGCGTGAAATCGTTGCCGAGGATCGAAAGGCCAATTGTTTGATGTAG	MRLPTLFLALATLSGCATSPLPEMDPNMAWVDFATPMPGGKLLMAESLDGQRLRDGRFFQVSPGSHELKVRFDFEVFGAGGGLGMMNDPKERLCYLIVRYDHFEAGQRYRLEARNLAYSPSARLYNAKREIVAEDRKANCLM				NA	NA	NA	NA	NA
D1-36_00126	234			hypothetical protein	ATGAAACGTTTGGCCTTGGCAGTCATCGGTTGCGCACTGACCACATCGGCCCTCGCGGCACCCAAGCCCTGCGAAGAATTGAAAGCAGAGATCGAAGCCAAGATCCAGGCCGCAAACGTGTCCTCATACACCTTGGAAATCGTCACCAACGACGAAGTCCACGACCAGAACATGGTGGTGGGCAGTTGCGATAACGGCACCAAGAAAATCATCTACCAGAAGAACGACCGCTAG	MKRLALAVIGCALTTSALAAPKPCEELKAEIEAKIQAANVSSYTLEIVTNDEVHDQNMVVGSCDNGTKKIIYQKNDR				NA	NA	NA	NA	NA
D1-36_00127	432	osmC	COG1764	Peroxiredoxin OsmC	ATGGCTATCGTCAAGAAAGCATCGGCTCACTGGGAAGGTGACCTGAAGACTGGCATAGGCTCCATCTCCACGGAAACCGGCGTGTTGCGCGAAGCGCCCTATGGTTTCAAGGCACGTTTTGAAGGCGGCAAGGGCACCAACCCTGAAGAACTGATCGGCGCGGCCCACGCGGGCTGCTTCTCCATGGCGTTTTCGATGATCCTTGGCGACGCTGGGCTCAAGGCCGACAGCATCGACACCAACGCCGAAGTGACCCTGGACCAGGTCGACGGCGGCTTTGCGATCACCGCGATCAAGCTGATTCTCAAAGCCAAGATTCCCGGCGCCAGCCAACAGCAATTTGAAGAGCTGAGCAACAAGGCCAAGGAAGGTTGCCCGGTTTCCAAGGTGCTCAACGCCGACATCACCCTGGACGCGACCCTGGTGAATTGA	MAIVKKASAHWEGDLKTGIGSISTETGVLREAPYGFKARFEGGKGTNPEELIGAAHAGCFSMAFSMILGDAGLKADSIDTNAEVTLDQVDGGFAITAIKLILKAKIPGASQQQFEELSNKAKEGCPVSKVLNADITLDATLVN	PGPT0013160_959	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
D1-36_00128	1002			hypothetical protein	ATGAAACAGCTGTCCGAAGTTAAATTTTCAACCCTCGACCTTGTGCCCGTCCGCGCTGACGGCAATGCAGCCCAGTCCCTGCGCAATTCGCTGGATTTGGCGCAGCACGTGGAAAAGTTTGGCTACACCCGTTTCTGGGTGGCGGAACACCACAACATGGACGGCATCGCCAGCTCCGCGACGGCGGTGCTGCTGGGCTACCTGGCGGGGGGGACGTCGACCATCCGCGTCGGCTCGGGCGGGGTGATGCTGCCCAACCACGCACCGTTGGTGATCGCCGAACAGTTCGGCACCTTGGAAAGTCTGTTTCCGGGCCGGATCGACCTTGGGTTGGGACGCGCCCCCGGTTCCGACCAGATGACCGCGCGTGCACTACGCCGCGAACGCTCCGGCAGTGCTGATGATTTCCCTGATGACGTGGCCGAACTGATGCGCTATCTCGGCCCGCGTACCCCTGACCAACGCATCATCGCCATGCCCGGCACGGGAACGAATGTACCGGTGTGGCTGTTGGGTTCTAGCCTGTTCAGTGCGCAGTTGGCCGGGGAGCGCGGTTTGCCCTACGCGTTCGCCTCCCATTTCGCACCGCGGTTCATGCACGAGGCGATTCGTGTTTATCGCAATCACTTCCAACCGTCGGCCGTACTCGACAAGCCGTACGTGATGCTCGGGGTGCCTTTGGTGGCGGCTGACACGGACGAGCAGGCCGATTACCTGGCGACGTCGGTGTACCAGCGGATCCTGGCATTGATGCGCGGCCAGAGCCTGGTGCAGCGCCCGCCGGTGGAAACCATGAATGGTCTATGGCTGCCCCATGAGAAGGAAGCGGTGGGGGATTTCCTTGGCCTGGCCATGATTGGCGGTCCTCAGAAGATCCGCGCCAGGTTGGAGGTGTTGATCGAACAGACTCAGGCCGATGAGCTGATCTTCACCAGCGACCTCTATGAGCACGCCGACCGCCTGCACTCGTATGAACTGCTGGCACAGGTCATGAAAGGCTGA	MKQLSEVKFSTLDLVPVRADGNAAQSLRNSLDLAQHVEKFGYTRFWVAEHHNMDGIASSATAVLLGYLAGGTSTIRVGSGGVMLPNHAPLVIAEQFGTLESLFPGRIDLGLGRAPGSDQMTARALRRERSGSADDFPDDVAELMRYLGPRTPDQRIIAMPGTGTNVPVWLLGSSLFSAQLAGERGLPYAFASHFAPRFMHEAIRVYRNHFQPSAVLDKPYVMLGVPLVAADTDEQADYLATSVYQRILALMRGQSLVQRPPVETMNGLWLPHEKEAVGDFLGLAMIGGPQKIRARLEVLIEQTQADELIFTSDLYEHADRLHSYELLAQVMKG	PGPT0030680_2	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MOBILE_ELEMENTS	CE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030680-putative_transposase-K07496	NA	NA
D1-36_00129	225			hypothetical protein	ATGAAGAAGTTGATGGTGGCCCTGGGTTTGCTGAGCCTTGCGGGTACTGCGTTTGCGGCCGGCAAGCCATGCGAGGAGTTGAAAAGCGAAATCGCAGCGAAGCTCGATACCAAAGGCGTGTCGGGTTATTCGCTGGAGATCGTCGATAAAGGTGCAGCGGGTGACGGAAAAGTCGTCGGCACCTGTGAGGGCGGTTCGAAAGAAATCGTCTACATACGCGGCTGA	MKKLMVALGLLSLAGTAFAAGKPCEELKSEIAAKLDTKGVSGYSLEIVDKGAAGDGKVVGTCEGGSKEIVYIRG				NA	NA	NA	NA	NA
D1-36_00130	216		COG3360	Dodecin	ATGAGTGATCACCACACGTACAAAAAAGTCGAGCTGGTCGGTTCGTCTCCCACCAGCATTGAAGACGCCATCAACAATGCCCTGGCCGAGGCCAGCAAGAGCCTCAAGCACTTGGAATGGTTCGAAGTCACGGAAACCCGGGGCCACATCGAAAATGGCCGGGCCGCGCACTTCCAGGTGACCATCAAGGTTGGGTTCCGGATCGCCAACAGCTGA	MSDHHTYKKVELVGSSPTSIEDAINNALAEASKSLKHLEWFEVTETRGHIENGRAAHFQVTIKVGFRIANS				NA	NA	NA	NA	NA
D1-36_00131	327	yqjD_1	COG4575	putative protein YqjD	ATGGCCAGCACTTCGTTACGCAAAGCCTCGTTGCAAAGCATGGAAGCGGAGATCGAGAGTCTGCTCAAGTCGTTGGAAAGCCTGAAGGACGACGCGTCGGACGAGTCGCGTAGGACGCTCAAGTCGCTTAAGGCAAATGCCGAAAGCGCACTGAAACATTCTCGGCATCTGCTCAGCGATGCGTATGAAGAGGTGAAGGTGAAAACCCGCGAAACCGGGATCGCCACGCGCGACTACGCTCAGGAACATCCATGGACCACCGCTGGCGTTGCCGTTGGCGCACTGGGTCTGTTGGCCGCTTACTTGTTGTGCAAGCGCGGTAACTAG	MASTSLRKASLQSMEAEIESLLKSLESLKDDASDESRRTLKSLKANAESALKHSRHLLSDAYEEVKVKTRETGIATRDYAQEHPWTTAGVAVGALGLLAAYLLCKRGN				NA	NA	NA	NA	NA
D1-36_00132	894	trpI		HTH-type transcriptional regulator TrpI	ATGAGCCATGATCTGCCACCGCTCAACGCCCTGCGTGCCTTCGAGGCCACTGCCCGCCTGAACAGCGTAAGCCAGGCGGCGGAACAGCTGCACGTCACCCACGGCGCGGTTAGTCGACAACTCAAAGTGCTGGAAGAGCACTTGGGGATCAGCCTGTTCGTCAAGGATGGGCGAGGCTTGAAACTCACAGATGCGGGACTGCGCCTGCGTGACGCCAGCGCCGATGCGTTCGAGCGCCTGCGCACCGTTTGCGCCGAGCTGACCCAAAGCACAGCGGACGCCCCGTTCGTGTTGGGCTGCTCGGGAAGCTTGTTGGCGCGTTGGTTCATCCCCCGCCTGGGCAGGCTCAATGCCGATCTGCCTGATTTGCGCCTGCACCTGTCCGCAGGTGAGGGCGACCTCGACCCGAGGCGCCCAGGGCTGGACGCCCTACTGGTATTCGCCGAACCACCCTGGCCGGCAGACATGCAGGTGTATGAACTGGCCAGCGAGCGGATCGGGCCGGTGATGAGCCCGCATTACGCGGGCTTTGCCCGCTTGCGCAATGCATCCGCCACTGCGCTGCTGAGCGAACCGCTGTTGCACACCACCTCACGCCCCCAGGCCTGGCCCACTTGGGCACGGCAAAATGCCCTGGAACCCCAGGCATTGAAGTTAGGGCAAGGTTTCGAACATTTGTATTATTTGCTGGAGGCGGCCGTGGCCGGGCTTGGCGTGGCGATCGCCCCCGAGCCCCTGGTGACCGAGGACCTGCGGGCTGGTCGCCTGGTCGCGCCATGGGGGTTCGGTGAAACTCCCGCACGACTGGCGCTATGGTTGCCCAAGCGCGCCGCAGACGGGCGCGCCCGGCAATTGGCGCAGTGGCTCAGGCATGAGCTGAACCCATCGAACTAG	MSHDLPPLNALRAFEATARLNSVSQAAEQLHVTHGAVSRQLKVLEEHLGISLFVKDGRGLKLTDAGLRLRDASADAFERLRTVCAELTQSTADAPFVLGCSGSLLARWFIPRLGRLNADLPDLRLHLSAGEGDLDPRRPGLDALLVFAEPPWPADMQVYELASERIGPVMSPHYAGFARLRNASATALLSEPLLHTTSRPQAWPTWARQNALEPQALKLGQGFEHLYYLLEAAVAGLGVAIAPEPLVTEDLRAGRLVAPWGFGETPARLALWLPKRAADGRARQLAQWLRHELNPSN	PGPT0026360_663	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566	NA	NA
D1-36_00133	1233	trpB	COG0133	Tryptophan synthase beta chain	ATGACCCAGCCTACGACCCCTTTCAACCTGCGCAGCGGTCCCGATGCCAACGGCCTGTTTGGCGCGTTCGGCGGCCGTTATGTCGCGGAAACGCTGATGCCGCTGATCCTTGATCTGGCCCGTGAATACGAAACGGCAAAGGAAGATCCTGCGTTCATCGAGGAATTGGCCTACTTCCAACGGGACTATGTGGGTCGTCCAAGCCCGCTGTATTTCGCCGAGCGCCTGACGGAGTTCTGCGGCGGCGCGAAGATCTACCTCAAGCGTGAAGAACTGAATCACACGGGCGCGCACAAGATCAACAACTGCATCGGCCAGATCCTGCTGGCGCGGCGCATGGGCAAGAAACGCATTATCGCCGAGACCGGCGCCGGCATGCATGGGGTGGCCACTGCCACCGTGGCCGCTCGTTTTGGCCTGGACTGCGTAATCTATATGGGCACCACCGACATCGAGCGCCAGCAGGCTAACGTGTTTCGGATGAAGCTGCTTGGCGCCGAAGTCATCCCCGTGATCGCCGGTACCGGCACACTCAAGGATGCGATGAACGAGGCGCTGCGTGACTGGGTGACCAACGTCGACAGCACGTTTTACTTGATCGGCACTGTAGCCGGCCCGCACCCCTATCCAGAGATGGTCCGCGACTTCCAAGCCGTGATCGGCAAGGAAACCCGTGACCAGCTGCAAGCCCAGGAGGGTCGTCTGCCGGACAGCCTGGTGGCGTGCATCGGCGGTGGCTCCAATGCCATGGGCCTGTTCCACCCATTCCTCGATGACAAGAGCGTTGAAATCATTGGAGTCGAAGCGGCGGGCTACGGCATCGAGACCGGCAAGCATGCGGCGAGCCTGAACGGTGGGGTTCCAGGCGTGCTGCACGGTAATCGTACCTTCCTGTTGCAGGATGAGGACGGCCAGATCATCGACGCGCATTCGATCTCTGCTGGCCTCGACTACCCCGGCATTGGCCCTGAACACGCCTGGTTGCATGACATTGGCCGCGTCCAATACACCTCCGTCACCGATGCCGAAGCTTTGGAAGCGTTCCATAAATGCTGCCGCCTGGAAGGGATTATTCCTGCCTTGGAGAGTGCCCATGCCTTGGCTGAAGTGTTCAAGCGCGCGCCAAACCTGCCCAAGGATCACCTGATGGTGGTCAACCTGTCCGGCCGTGGCGATAAAGACATGCAAACCGTGATGCACCACATGGAACAGTCCCAGCAGGAGAAACACTGA	MTQPTTPFNLRSGPDANGLFGAFGGRYVAETLMPLILDLAREYETAKEDPAFIEELAYFQRDYVGRPSPLYFAERLTEFCGGAKIYLKREELNHTGAHKINNCIGQILLARRMGKKRIIAETGAGMHGVATATVAARFGLDCVIYMGTTDIERQQANVFRMKLLGAEVIPVIAGTGTLKDAMNEALRDWVTNVDSTFYLIGTVAGPHPYPEMVRDFQAVIGKETRDQLQAQEGRLPDSLVACIGGGSNAMGLFHPFLDDKSVEIIGVEAAGYGIETGKHAASLNGGVPGVLHGNRTFLLQDEDGQIIDAHSISAGLDYPGIGPEHAWLHDIGRVQYTSVTDAEALEAFHKCCRLEGIIPALESAHALAEVFKRAPNLPKDHLMVVNLSGRGDKDMQTVMHHMEQSQQEKH	PGPT0007075_1597	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
D1-36_00134	813	trpA	COG0159	Tryptophan synthase alpha chain	ATGAGCCGCCTGCAAACCCGTTTTGCCGAACTCAAACAACAGAACCGTGCCGCCCTGGTGACGTTTGTCACGGCTGGCGATCCGGGCTACGACACGTCGCTGGCGATCCTCAAGGGCCTGCCTGCCGCCGGCGCCGATGTTATTGAGTTGGGCATGCCGTTCACCGATCCGATGGCCGACGGCCCGGCAATCCAATTGGCGAACATTCGTGCCTTGGGCGCCCAGCAGAACCTGGCGAAAACCCTGCAGATGGTTCGGGAGTTCCGCAAGGACAATACCGAGACGCCGCTGGTGCTGATGGGGTACTTCAACCCCATCCATCGTTATGGCGTGCAGCGTTTCATCGGCGAAGCGCTGGATAGCGGTGTCGATGGCCTGATCGTCGTGGACATGCCACCCGAGCACAACAGCGAACTGTGCGAGCCGGCCCAGGCTGCCGGCCTGGATTTCATCCGTCTGACGACGCCAACCACCGATGATGTGCGTTTGCCGACCGTGCTCAACGGCAGCTCGGGGTTCGTTTATTACGTGTCGGTCGCGGGTGTGACCGGTGCCGGTGCCGCGACGCTGGAGCATGTAGAAGAAGCGGTGGCGCGTCTGCGTCGGCATACCGATCTGCCGATCAGCATTGGCTTCGGTATTCGCACCCCGGAACAGGCGGCAGCCATCGCCCGGTTGGCCGACGGCGTAGTGGTCGGCTCCGCGCTGATCGACCATATCGCCAGCGCCGATACGTCGGAACAGGCGATTGATGGTGTGTTGAGCTTGTGCGCGGCCTTGGCTGATGGTGTACGTAAGGCGCGTCTTGGCTGA	MSRLQTRFAELKQQNRAALVTFVTAGDPGYDTSLAILKGLPAAGADVIELGMPFTDPMADGPAIQLANIRALGAQQNLAKTLQMVREFRKDNTETPLVLMGYFNPIHRYGVQRFIGEALDSGVDGLIVVDMPPEHNSELCEPAQAAGLDFIRLTTPTTDDVRLPTVLNGSSGFVYYVSVAGVTGAGAATLEHVEEAVARLRRHTDLPISIGFGIRTPEQAAAIARLADGVVVGSALIDHIASADTSEQAIDGVLSLCAALADGVRKARLG	PGPT0007070_1767	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
D1-36_00135	1962			hypothetical protein	GTGAGGCGGCTGGCCGCCTGGCTGACTGCCGGGGTTGTGCTGCTTCTGAGCGGCACAGCCCAGGCCGGTCTCCAGTTACATCTCAATAGCGATGGCTTGAGCCCGGCACAACAACAGGCCAGCCAGGCACTGCTCGATGAAGCCATGCAGGCATTGCCGCCACGCTTCATCGAGCGACTGGACCGGCGCATCGATGTCGGCTGGACCGATCGGATGCCCGCAAACGCCTACGGCCAGGCTTCATTGGTGTCGCAGTTGGACTTGAACCGGAACCTGCTGGACAGCCTCACCGATGGCAGCGCCGCCAAGCAAAAGACCTTGCGCCCCCACGGCACCGTGCGGCGCGAAATGCTCGCTACCGTGCTGCACGAACTGACTCATATCTATGACCGCTCGCGCCTTTGGCCAAATGCCGAACGTGTGCTGATCCAACGCTGTACTCGGCGTAACAGCAGCGCCGGGCTGATCGGCATGACGGATGAGTGCAGAGGCCAGAACGACCGGCGCTTCACGCTCAGCGATGATCCTCGCCTGCTGGATCTCGCCGGCTGGCCGCAGTATGTGGGCCGTCGCGGCGAACGCGAGCAGCACAACCGTCAGGTTGCCCGCAGCCCGGACCTCTATGAGACGAGCAGTCCCAAGGAGTTCGTCGCGGTCAATATGGAGTATTTCCTCCTCGATCCAAGCTACGCCTGCCGACGTCCCGCGCTGTATCGCTATTACCGTGAGCACTTTGGCTGGGCGCCCGCCGCCAAGGACACCTGCTCCACGTCGTTCGCCTTTCTCAATGCCGGCAATGATTTTGCCAAGACACCACTGGGCAAGGTCGATCCGGAACGCGTCTATGCCATCGACTACCTGTTGGCTGAAGCCAACCAGAACTGGGTCAGCCGTTGGGGCCATAGCATGCTCCGCCTGGTGATATGCGCACCGGGCCGTCCACGTGGGCCAGATTGCCGATTGGATCTGGACCAACACCTGGTGCTTTCGTACCGCGCCTTCGTAGGCGACGTTCAGCTGTCGAGTTGGGACGGCCTGGTAGGCAAATACCCGTCGCGTCTGTTCGTACTGCCGTTGGCCCAGGTCATCGACGAGTACACCAAGACCGAACTGCGCAGCCTGGCGTCGGTGCCCCTCAAGCTGTCGCGCACCGAAATCGAAGAAACGGTCGAACACGCCGCCGAAATGCATTGGAGCTATGACGGCAACTATTACTTCCTCTCCAATAATTGCGCGGTAGAAAGCTTGAAGCTGCTGCGCAGCGGCAGTAATAACGAACAGCTCAAAGGCCTGGACAGCATCATGCCCAACGGTCTGCTGGAAGTGCTCAAGGGCCGTGGCTTGGCCGACACCAGTGTGCTGGATGATCCCAAGGAAGCCTTGCGCCTGGGTTACCGCTTCGACTCATTCCGCGAACGCTACCAAGCCATGTTCGACGTTCTGAAAAAACGCCTGCCGATACGGCAACAAACCGTCGAAGACTGGCTCGCGCTGGACGCTGCAGAACGCCGCGTTTGGTTTGAACAGGCCGACCTGCGCACCAGCGCGGCATTGCTATTGCTGGAACAGGCCAGTTTCCGTCGGCAATTGCTGCTCGCCCAGGATGAAGTCAAACAGCGCTACCTTGGCGCGCGTGAGCTTCAAAACGGTGGCATGGAGAGAGCCAACGCGACGTTGCAACAGATTCTCGCCAATAGCGGCTTCCTGAGCCGTCCGGCCGAACTGCTGGGCAGCAGCGGCTACGGATTGCCACAACCCAGCGAATGGCAGCGATTGGAATCGGAAAGCAGCCTGCGCCAGAAACAGCTTCAAACGCTGACCGGCGACCTGGATAAGGAAGTCAGGGCATTGCTTGAACCGAGCCGCGCTGCTGAAATCGCCGCGAGCGAGGCCAATGTGAAGGAGATCGGCGAACATCTGCGCAAGCTGCACAAAGCCGCAGGTGGGTTGGAGTTGCCGTGA	MRRLAAWLTAGVVLLLSGTAQAGLQLHLNSDGLSPAQQQASQALLDEAMQALPPRFIERLDRRIDVGWTDRMPANAYGQASLVSQLDLNRNLLDSLTDGSAAKQKTLRPHGTVRREMLATVLHELTHIYDRSRLWPNAERVLIQRCTRRNSSAGLIGMTDECRGQNDRRFTLSDDPRLLDLAGWPQYVGRRGEREQHNRQVARSPDLYETSSPKEFVAVNMEYFLLDPSYACRRPALYRYYREHFGWAPAAKDTCSTSFAFLNAGNDFAKTPLGKVDPERVYAIDYLLAEANQNWVSRWGHSMLRLVICAPGRPRGPDCRLDLDQHLVLSYRAFVGDVQLSSWDGLVGKYPSRLFVLPLAQVIDEYTKTELRSLASVPLKLSRTEIEETVEHAAEMHWSYDGNYYFLSNNCAVESLKLLRSGSNNEQLKGLDSIMPNGLLEVLKGRGLADTSVLDDPKEALRLGYRFDSFRERYQAMFDVLKKRLPIRQQTVEDWLALDAAERRVWFEQADLRTSAALLLLEQASFRRQLLLAQDEVKQRYLGARELQNGGMERANATLQQILANSGFLSRPAELLGSSGYGLPQPSEWQRLESESSLRQKQLQTLTGDLDKEVRALLEPSRAAEIAASEANVKEIGEHLRKLHKAAGGLELP				NA	NA	NA	NA	NA
D1-36_00136	321			hypothetical protein	ATGCGTAGCCCGCTGATTGCTGCCGCCCTTGGCCTGCTGGTGTTGGCCGATGTGGCCCAGGCACATACCCTGGTAGCCACCAGTAACATCATCGTTCGCGCCTCCCAGCGTTCGATTGATTTCACCTCTGACACCACCACATCCATTCGTGACTCAAAGATTGTCCGCGAAGCTCACGATGACGCTGCCAGCTTCGTCGCCAGCAACGGCGAGATTCGTGGCGCTCATCTCGAAGCGGCTTTCCAGACATTGCGTACCCGCGTACCGGAAGCCCGCGACGCCAGCGACCAGGTTCTCGCCGAAGCTATCCTCGCATTGTGA	MRSPLIAAALGLLVLADVAQAHTLVATSNIIVRASQRSIDFTSDTTTSIRDSKIVREAHDDAASFVASNGEIRGAHLEAAFQTLRTRVPEARDASDQVLAEAILAL				NA	NA	NA	NA	NA
D1-36_00137	309			hypothetical protein	ATGCGTTTTTACTCAAAACTTTACAGCGCCTGTTTATTCACAGTTTTTTGCTGGTCTGTCCCGGCCCATGCCTTCGATGTGTCCACTCAACAAGTGGTCGCCAGTGGCTACGCCACGAGCCTGGTGACCTCCGCACCCTTCGACAATAAACGAGTCGTCGCCGCTCGTGATGACGCCGCCGCGTTCATTGCCAGCGAAGGACAATTCCGAGGTCCGCAATTGGAGTCGGCCCTGGACTACCTGCGCCGGAACCAGCCGAAACTTCACGCCAGCGACCTTGAACTGGCACAGGCAATTCTCGTCCAATAA	MRFYSKLYSACLFTVFCWSVPAHAFDVSTQQVVASGYATSLVTSAPFDNKRVVAARDDAAAFIASEGQFRGPQLESALDYLRRNQPKLHASDLELAQAILVQ				NA	NA	NA	NA	NA
D1-36_00138	318			hypothetical protein	ATGTCCCGTCTTCGCCTGCTCAGCGCAGTAGCGCTGTTGGCCGTAGCTGCCCAGTCCAACGCCAGCAGCTTCATCGTCACCACCGACTCCATTGTCGGCGCCCTCAAGGCCACGTCCGACGTAACCTCCGATGCAACCTCATCACTGCGTGACAATAAAATCGTTCAAGCCGCACGTGACGACGCCGCCAGCTTCGTGGCCAGCGAAGGCGCTATCCGCGGTGTGAAACTGGAGAGTGCATTGGATTACATCCGCCAGCAGGCACCGCAGCTCAACGCCACCGATGCGCAGCTTGCACAGGCCATCCTGGTAATCTGA	MSRLRLLSAVALLAVAAQSNASSFIVTTDSIVGALKATSDVTSDATSSLRDNKIVQAARDDAASFVASEGAIRGVKLESALDYIRQQAPQLNATDAQLAQAILVI				NA	NA	NA	NA	NA
D1-36_00139	216			hypothetical protein	ATGGAACGTACACTCAGTTCCGAGCTGTTTTTCGAAGACAAAGCTGAACAAAACCAGGCTTCCATGCCTCTTCGCGTTATCGCTAACCTGATGCTGTGGCAGCGCCGCATTGCCAGCCGCCATCAATTGGCCCGTCTGGATTCGCGCCTGCTGGCAGATGCCGGTATCAGCGAAGCACAGCGCTACGAAGAGCTGAGCAAGCCGTTCTGGCGCTAA	MERTLSSELFFEDKAEQNQASMPLRVIANLMLWQRRIASRHQLARLDSRLLADAGISEAQRYEELSKPFWR				NA	NA	NA	NA	NA
D1-36_00140	1239	cat1	COG0427	Succinyl-CoA:coenzyme A transferase	ATGCCCTTCCAGGTGGACAGCACCCTACGCAAGGCCATCAACGCAGGCGAGGTGATGTTCATCGACCAGCATCTTTCGGAAACCGTCGAACAGATGCGTAACGCCCAGCTCACGTTGCCAGATATTGCCGTGATCGAAGCGGTGGCGATCACCGAGCAAGGTCATATCGTGCCGACCACGTCGGTAGGTAACTCCGCCAGCTTTGCGATCTTCGCCAAGCAAGTGATCGTCGAGATCAACCTGGCCCATAATCCAGATTTGGAAGGCCTGCACGACATTTACATCCCCAGCTATCGTCCAACTCGCCTGCCGATCCCCCTGGTGAAGGTTGACGACCGTATCGGCAGCACCGCCATCCCGATCCCACCGGACAAAATCGCCGCCATTGTCATCTCCCAACAATCAGATTCCCCTTCGACGGTCTTGCCGCCGGACGACGACACCCAGGCCATCGCCGACCATCTGATCAGCTTTTTCAAGCAAGAAGTCGCGGCCGGGCGCATGACCAACAAGCTTGGCCCTCTGCAGGCCGGCATCGGCAGCATTGCCAACGCAGTGATGTGCGGATTGATCGACTCTCCGTTTGAAGAACTGACCATGTATTCCGAGGTATTGCAGGACTCCACATTCGACCTCATCGACGCCGGCAAGCTGAGTTTCGCCTCTGGCAGCTCCATTACGTTGTCCGCTCGGCGCAACACGGATGTCTTTGGGAATCTGGCGAAATACAAGGACAAACTGGTGCTGCGCCCGCAGGAGATCTCCAACCATCCGGAGGTAGTGCGACGCCTGGGCATCATCGGCATCAACACGGCGCTGGAATTCGACCTGTATGGCAACGTCAACTCGACTCACGTATGCGGCACGCGAATGATGAATGGCATTGGGGGTTCGGGGGATTTTGCCAGGAACGCACACTTGGCTATTTTCGTGACCAAATCCATTGCCAAGGGCGGCGCCATTTCCAGCGTCGTTCCGATGGTCAGCCATGTGGACCATACCGAGCATGATGTCGACATCCTGGTGACCGAGATTGGACTGGCTGACTTGCGGGGCTTGGCGCCACGCGAACGGGCGCGGGCGATCATCGAAAACTGCGTGCATCCATCCTATCGCCAGGCATTGAACGAGTACTTCCAGGCGGCAAGCGCTTTGGGCGGACATACGCCGCATATTTTGCGGGACGCACTCAGCTGGCACATGAACCTGGAAGCAACCGGACGCATGCTTGCGGTTTGA	MPFQVDSTLRKAINAGEVMFIDQHLSETVEQMRNAQLTLPDIAVIEAVAITEQGHIVPTTSVGNSASFAIFAKQVIVEINLAHNPDLEGLHDIYIPSYRPTRLPIPLVKVDDRIGSTAIPIPPDKIAAIVISQQSDSPSTVLPPDDDTQAIADHLISFFKQEVAAGRMTNKLGPLQAGIGSIANAVMCGLIDSPFEELTMYSEVLQDSTFDLIDAGKLSFASGSSITLSARRNTDVFGNLAKYKDKLVLRPQEISNHPEVVRRLGIIGINTALEFDLYGNVNSTHVCGTRMMNGIGGSGDFARNAHLAIFVTKSIAKGGAISSVVPMVSHVDHTEHDVDILVTEIGLADLRGLAPRERARAIIENCVHPSYRQALNEYFQAASALGGHTPHILRDALSWHMNLEATGRMLAV	PGPT0001545_854	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001545-aarC|cat1-K18118	NA	NA
D1-36_00141	222			Succinyl-CoA:acetate CoA-transferase	ATGTACCGTGATCGCATCCGCCTGCCTTCGTTGTTGAATAAAGTGATGAGCGCTGCCGAGGCAGCCTTGCTCGTTGAAGACGGAATGACCGTCGGCATGAGCGGCTTTACCCGCGCCGGAGAAGCGAAGGCCGTGCCGCACGCACTGGCCGAACGCGCCAAGGTCACGCCGTTGAAAATCAGCCTGATGACCGGAGCAAGCCTGGGCAACGATCTGGATTAG	MYRDRIRLPSLLNKVMSAAEAALLVEDGMTVGMSGFTRAGEAKAVPHALAERAKVTPLKISLMTGASLGNDLD	PGPT0001545_893	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001545-aarC|cat1-K18118	NA	NA
D1-36_00142	1437	pntB	COG1282	NAD(P) transhydrogenase subunit beta	ATGAGCATGAACCTGGTAACGACGCTCTACCTGATTGCGTCCATCTGCTTCATCCAAGCCCTCAAAGGCCTGTCGCACCCTACCACCTCCCGTCGCGGCAACCTGTTCGGCATGCTCGGCATGGCATTGGCGGTGCTTACTACCGTCGGACTTATCTACAAACTGGGAGCCGAGCTGGCGACCGCCGGCATTGGTTATGTCATCGTTGGCTTGTTGATCGGCGGCACCGCCGGTTCGATCATGGCCAAGCGTGTCGAGATGACCAAGATGCCGGAGCTGGTGGCGTTCATGCACAGCATGATCGGCCTAGCGGCGGTGTTCATTGCCATCGCCGCTGTCGTCGAGCCGCAATCGCTGGGCATCGTCAAGCAATTGGGGGATTCGATTCCGGCGGGTAACCGTCTGGAGCTGTTCCTTGGCGCGGCAATCGGCGCAATCACGTTCTCCGGTTCGGTGATCGCCTTCGGCAAGCTGTCGGGCAAGTACAAGTTCCGCCTGTTCCAAGGCGCTCCGGTGCAGTTTGGCGGTCAGCACAAGCTCAACCTGATCCTGGGCCTCGCCACACTGGGCCTGGGCCTGGCTTTCATGTTCACCGGCAACCTCGGCGCATTCGCCTTGATGCTGGCCCTGGCGTTTGTCCTGGGCGTGCTGATCATCATCCCGATCGGCGGTGCGGACATGCCGGTGGTGGTCTCGATGCTCAACAGCTATTCCGGTTGGGCCGCAGCAGGCATCGGCTTCTCGCTGAACAACTCGATGCTGATTATTGCAGGCTCGTTGGTGGGTTCGAGCGGCGCGATCCTCTCGTACATCATGTGCAAGGCGATGAACCGCTCGTTCTTCAACGTACTGCTCGGCGGTTTCGGCAACGCCGCAGATGCTGCTGGCCCGGCAGGCTCCAAAGAAGCCCGCCCAGTGAAATCCGGCTCGGCTGACGACGCGACTTTCCTGCTGACCAACGCCGATACGGTGATCATCGTTCCAGGCTACGGCTTGGCGGTCGCCCGGGCGCAGCACGCGTTGAAAGAACTGACCGAGAAGCTGACCCACCACGGCGTGACGGTGAAATACGCAATCCACCCGGTTGCCGGTCGTATGCCCGGCCACATGAACGTCCTGCTGGCCGAGGCCGAAGTGCCTTACGACCAGGTATTCGAGATGGAAGACATCAACTCCGAGTTCGGCCAGGCCGACGTGGTGTTGGTGCTGGGCGCCAACGACGTGGTCAACCCGGCGGCGAAGAACGATCCGAAGTCGCCGATTGCCGGCATGCCGATTCTTGAGGCGTTCAAGGCCAAGACCATCATCGTCAACAAGCGCTCGATGGCCAGCGGTTATGCCGGCCTGGACAACGAGCTGTTCTATCTCGACAAGACCATGATGGTGTTCGGCGACGCCAAGAAGGTCATCGAAGACATGGTCAAAGCAGTGGAATAA	MSMNLVTTLYLIASICFIQALKGLSHPTTSRRGNLFGMLGMALAVLTTVGLIYKLGAELATAGIGYVIVGLLIGGTAGSIMAKRVEMTKMPELVAFMHSMIGLAAVFIAIAAVVEPQSLGIVKQLGDSIPAGNRLELFLGAAIGAITFSGSVIAFGKLSGKYKFRLFQGAPVQFGGQHKLNLILGLATLGLGLAFMFTGNLGAFALMLALAFVLGVLIIIPIGGADMPVVVSMLNSYSGWAAAGIGFSLNNSMLIIAGSLVGSSGAILSYIMCKAMNRSFFNVLLGGFGNAADAAGPAGSKEARPVKSGSADDATFLLTNADTVIIVPGYGLAVARAQHALKELTEKLTHHGVTVKYAIHPVAGRMPGHMNVLLAEAEVPYDQVFEMEDINSEFGQADVVLVLGANDVVNPAAKNDPKSPIAGMPILEAFKAKTIIVNKRSMASGYAGLDNELFYLDKTMMVFGDAKKVIEDMVKAVE	PGPT0013505_695	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013505-pntB-K00325	NA	NA
D1-36_00143	324	pntA	COG3288	NAD(P) transhydrogenase subunit alpha	ATGGAAGAGCTTATCTCCCCCGGTATCTACAACCTGATCATCTTTGTGCTGGCCATTTATGTCGGTTACCACGTGGTCTGGAACGTAACGCCTGCGCTGCATACGCCGCTGATGGCGGTGACCAACGCCATTTCGGCCATCGTGATCGTCGGCGCGATGCTCGCCGCCGCCCTGACCGTAACGCCTCTGGGCAAGACCATGGGTACTCTCGCCGTGGCCCTGGCTGCGGTGAACGTGTTCGGTGGCTTCCTGGTGACGCGCCGCATGCTCGAGATGTTCAAGAAAAAAGCCCCGAAAGCCGTAAAAGAAGAGGCGCCCAAGTAA	MEELISPGIYNLIIFVLAIYVGYHVVWNVTPALHTPLMAVTNAISAIVIVGAMLAAALTVTPLGKTMGTLAVALAAVNVFGGFLVTRRMLEMFKKKAPKAVKEEAPK	PGPT0013500_3143	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013500-pntA-K00324	NA	NA
D1-36_00144	1122	pntAA	COG3288	NAD(P) transhydrogenase subunit alpha part 1	GTGCACATTGGTGTTCCCCTCGAAACCCAAACGGGTGAAACACGGGTTGCTGCTACCCCGGAAACCATCAAGAAGCTCATCGGCCAAGGCCATAAGGTTACTGTTCAAAGCGGCGCCGGTATCAAGGCCAGCGTGGTCGACAGTGCTTACGAAGCGGCGGGCGCAACTATTGGCAGCGCCAGCGATGCGTTCGGGGCCGAACTGATCCTCAAGGTGGTCGCCCCCAGCGATAGCGAACTGGGGCTGATCAAGAGCGGCAGCGTTCTGGTGGGCATGCTCAATCCGTTCAATAACGAGACCATTACCAAGCTGGCCGAGCGCGGCATTACCGCATTCGCCCTTGAGGCCGCCCCACGCACGTCCCGGGCCCAAAGCCTGGATGTGTTGTCGTCTCAAGCGAACATTGCCGGGTATAAGGCCGTGCTGCTGGCCGCCCATCATTATCCACGCTTCATGCCGATGCTGATGACAGCGGCGGGCACCGTGAAAGCGGCGCGAGTATTGATCCTTGGCGCCGGTGTGGCGGGGCTACAGGCAATTGCCACGGCCAAGCGCCTGGGTGCTGTGATCGAGGCTTCGGATGTGCGGCCCGCGGTAAAGGAACAAATCGAATCCCTCGGCGCCAAGTTCGTCGACGTGCCTTACGAAACCGACGAAGAGCGTGAATGCGCCGTCGGCGTTGGAGGTTACGCCCGGCCCATGCCTGCCAGCTGGATGCAGCGTCAGGCCCAGGCTGTGCACGAGCGCGCCAAACAAGCTGACATTGTCATTACCACGGCACTGATTCCGGGCCGCAAGGCACCGACGCTGCTAAGCGCCGAAACCGTCGCGCAAATGAAACCCGGCTCGGTGGTCATCGACCTCGCGGCAGCCCAGGGCGGCAATTGCCCGCTGACCGTGGCCGACCAGGTGGTTGTCGAGAACGGCGTCACCATCGTCGGCCCGACCAACCTGGCTGGCGAAGTCGCGGCCGATGCCTCGGCGCTGTACGCCCGTAACCTGCTGGACTTCCTGAAGCTGGTCTTCACCAAGGAAGGCCAGTTCGACGTGAACCTGGAAGACGACATCGTCGCAGCGTGCCTGATGTGCCGCGACGGCCAAGTCATCCGCAAAAACGCCTAA	MHIGVPLETQTGETRVAATPETIKKLIGQGHKVTVQSGAGIKASVVDSAYEAAGATIGSASDAFGAELILKVVAPSDSELGLIKSGSVLVGMLNPFNNETITKLAERGITAFALEAAPRTSRAQSLDVLSSQANIAGYKAVLLAAHHYPRFMPMLMTAAGTVKAARVLILGAGVAGLQAIATAKRLGAVIEASDVRPAVKEQIESLGAKFVDVPYETDEERECAVGVGGYARPMPASWMQRQAQAVHERAKQADIVITTALIPGRKAPTLLSAETVAQMKPGSVVIDLAAAQGGNCPLTVADQVVVENGVTIVGPTNLAGEVAADASALYARNLLDFLKLVFTKEGQFDVNLEDDIVAACLMCRDGQVIRKNA	PGPT0013500_2176	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013500-pntA-K00324	NA	NA
D1-36_00145	897	gcvA_2		Glycine cleavage system transcriptional activator	ATGCGCCGCAAGATTCCCAGCACCGCCGCCCTGGTCAGCTTCGAGGCCGCGGCCCGCCATGAAAGCTTTACCAAGGCCGCGCAAGAGCTTTCGCTCACACAGGGCGCGATATGCCGACAGGTTGCCAGCCTGGAAGAGTTTCTGAGCGTGGAACTCTTTCGACGTTCAAGGCGCGGCGTAAAGTTGACCGAAGCAGGGCTTTCCTACAGTCGTCGGATTGCCATGCAGCTGGACGCGGTCGAGCGTGACACTCTGTCAGTCATGGGCCATACCGGCGCGAACGTCATCGAGCTGGCGGTAGTGCCAACATTCGGTACGCAATGGTTGTTGCCACGGCTGAAGGATTTTCAAAAACAGCACCCCGAAGTTACGGTCAACCTGACCAACCGAACACGCCCTTTCCTCTTTGCCGACACCGATTTTGATGCCGCCATCTATTTCGGCGATGCCGATTGGTCCGGTACCGAATCCCACAAGTTGATGGGCGAAAACCCGATGCCGGTATGCAGCCCGGCATTACTGGGAAACCGAAAGGCGCTGACACCGGAGGCTATTGCTCAATTGCCACTGCTTCAGCAGACCACCCGCCCCTATGCATGGCGCCAATGGTTCAGCTCGCAGGAGCTGAACATTGCACGGGACCTGACAGGCCCGCGTTATGAACTATTCTCGATGTTGGCCCAAGCAGCCATGCATGACATGGGAATCGCGTTGATCCCGCCTTTTCTGATCCAGCGCGAACTGGCGGAGGGTCGTTTGGTAATCGCCAATCGCAATGCATTGTCGAGCATCAAGGCGTATTACCTGATGATTCCCGAACGAAAGGTGAAATCTGCTTCGCTTCAGGCGTTTCGCGACTGGCTGGTAAACCAAGCCAAGGGCTATCTCCTTGAATAG	MRRKIPSTAALVSFEAAARHESFTKAAQELSLTQGAICRQVASLEEFLSVELFRRSRRGVKLTEAGLSYSRRIAMQLDAVERDTLSVMGHTGANVIELAVVPTFGTQWLLPRLKDFQKQHPEVTVNLTNRTRPFLFADTDFDAAIYFGDADWSGTESHKLMGENPMPVCSPALLGNRKALTPEAIAQLPLLQQTTRPYAWRQWFSSQELNIARDLTGPRYELFSMLAQAAMHDMGIALIPPFLIQRELAEGRLVIANRNALSSIKAYYLMIPERKVKSASLQAFRDWLVNQAKGYLLE	PGPT0026360_3476	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566	NA	NA
D1-36_00146	1182	mmgC_1	COG1960	Acyl-CoA dehydrogenase	ATGGCCGGTAAAGCGAGCTTCAACTGGATCGACCCACTGTTGTTGGATCAGCAGCTCACAGAAGAAGAGCGAATGATTCGTGACACCGCCGAACAATTTGCCCAGCAGAAGCTCGCGCCTCGAGTGCTGGAAGCGTTCCGTCATGAAAAGACCGACCCGGCGATTTTTCGTGAAATGGGCGAAGTGGGCCTGCTGGGGGCGACCATTCCCGAGCAATACGGTGGCAGCGGATTGAACTATGTCAGCTATGGCCTTATTGCCAGGGAAGTGGAGCGCGTCGATTCCGGCTATCGCTCGATGATGAGCGTGCAATCCTCGCTGGTCATGGTGCCCATCAATGAATTCGGGACCGAGGCGCAAAAACAGAAATATTTACCGAAGCTAGCTTCGGGCGAATGGATCGGCTGTTTCGGCCTGACTGAGCCAAACCACGGTTCCGACCCGGGCGCGATGATTACTCGCGCGCGGAAAGTGGAAGGCGGCTACAGCTTGACGGGTAGCAAGATGTGGATCACCAACAGCCCGATCGCTGACGTGTTTGTCGTCTGGGGCAAAGACGACGCTGGCGATATCCGCGGCTTCGTCCTGGAAAAAGGCTGGAAAGGCCTGAGTGCGCCGGCTATTCACGGCAAGGTCGGGCTGCGCGCGTCGATTACTGGCGAAATCGTCATGGACAATGTATTCGTTCCGGAGGAGAACATCTTTCCAGACGTCCGAGGCCTGAAGGGGCCGTTTACTTGCCTGAACTCGGCACGCTATGGCATCTCCTGGGGGGCGTTGGGGGCCGCTGAGTTTTGCTGGCACACCGCCCGCCAGTACACGCTTGATCGGCAACAGTTCGGACGCCCGTTGGCGGCAAATCAGTTGATCCAGAAGAAGCTGGCCGACATGCAGACGGAAATCACCCTCGCGCTGCAAGGCTGCTTGCGTTTGGGGCGCATGAAAGACGAGGGCTCGGCTGCGGTGGAGATTACCTCGATCATGAAGCGTAATTCTTGCGGTAAATCTCTGGATATCGCGCGCATGGCCCGTGACATGTTGGGCGGCAACGGTATATCCGACGAATTCGGCATTGCTCGTCACCTAGTGAACCTGGAAGTGGTGAATACCTACGAAGGCACCCATGATGTCCATGCGCTGATCCTGGGGCGCGCGCAAACCGGTATTCAGGCGTTCTATTAA	MAGKASFNWIDPLLLDQQLTEEERMIRDTAEQFAQQKLAPRVLEAFRHEKTDPAIFREMGEVGLLGATIPEQYGGSGLNYVSYGLIAREVERVDSGYRSMMSVQSSLVMVPINEFGTEAQKQKYLPKLASGEWIGCFGLTEPNHGSDPGAMITRARKVEGGYSLTGSKMWITNSPIADVFVVWGKDDAGDIRGFVLEKGWKGLSAPAIHGKVGLRASITGEIVMDNVFVPEENIFPDVRGLKGPFTCLNSARYGISWGALGAAEFCWHTARQYTLDRQQFGRPLAANQLIQKKLADMQTEITLALQGCLRLGRMKDEGSAAVEITSIMKRNSCGKSLDIARMARDMLGGNGISDEFGIARHLVNLEVVNTYEGTHDVHALILGRAQTGIQAFY	PGPT0021815_2019	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
D1-36_00147	1221	uctC		Acetyl-CoA:oxalate CoA-transferase	ATGGGCGCGCTTTCGCATCTGAGGGTATTGGATTTATCAAGGGTCCTGGCCGGGCCTTGGGCTGGGCAGATCCTGGCGGACCTGGGCGCGGATGTCATCAAGGTCGAGCGCCCTGGCAATGGCGATGATACGCGTGCGTGGGGCCCGCCCTTCCTTAAGGACGCTTACGGCGAGAACACGACCGAGGCGGCTTATTACCTAGCGGCCAATCGCAACAAGCAATCGGTCACGATCGATTTTACTCGCCCCGAGGGCCAGAAGCTGATCCTAGAGCTAGCGGCGAAGTCCGACATTCTGATCGAAAACTTCAAGGTGGGTGGACTCGCTGCCTATGGCCTGGATTACGACTCGATAAAGGCTATCAATCCGCAGTTGATCTATTGTTCGATCACCGGTTTTGGCCAGACGGGGCCATATGCCAAGCGCGCCGGGTATGACTTCATGATCCAAGGGCTGGGAGGCTTGATGAGCCTTACCGGTCGACCGGAAGGGGAAGAGGGAGCTGGGCCGGTGAAAGTCGGTGTTGCATTGACGGATATTCTGACCGGCTTGTATTCGACCGCTGCCATCCTGGCGGCGTTGGCTCATCGCGACCATGCCGGCGGTGGGCAGCATATCGATATGGCTTTGCTGGATGTTCAGGTGGCATGCCTGGCCAACCAGGCAATGAATTACCTGACCACAGGCAGTGCGCCGAAGCGGTTGGGAAATGCGCATCCCAATATCGTGCCTTACCAAGATTTTCCCACAGCTGATGGTGACTTCATCCTTACGGTGGGTAACGACGGTCAATTTCGAAAATTCGCCGAGGTCGCCGGCCAACCGCAGTGGGCCGATGATCCCCGGTTCGCGACGAACAAGATGCGAGTGGCGAACCGGGCGGCACTGATCCCGTTGATTCGCCAGGCGACGGTATTCAAGACGACTTCCGAGTGGGTGGTTCAGTTGGAGCAAGCCGGAGTGCCGTGTGGCCCTATCAACGATTTGGCCCAGGTGTTTGCCGATCCTCAGGTGCAGGCTCGCGGGTTGGCGATCGAGTTGCCCCACCTGTTGGCCGGTACAGTGCCGCAAGTAGCCAGTCCTATTCGCTTGTCCGATACGCCGATTGAATATAGAAACGCGCCTCCCTTATTAGGCGAACATACGATGGAGGTGTTGCAGCGGGTACTGGGGCTGGATATTGCAGCGATAGCGACCTTGCGGGACTCCGGCGTCCTGTAG	MGALSHLRVLDLSRVLAGPWAGQILADLGADVIKVERPGNGDDTRAWGPPFLKDAYGENTTEAAYYLAANRNKQSVTIDFTRPEGQKLILELAAKSDILIENFKVGGLAAYGLDYDSIKAINPQLIYCSITGFGQTGPYAKRAGYDFMIQGLGGLMSLTGRPEGEEGAGPVKVGVALTDILTGLYSTAAILAALAHRDHAGGGQHIDMALLDVQVACLANQAMNYLTTGSAPKRLGNAHPNIVPYQDFPTADGDFILTVGNDGQFRKFAEVAGQPQWADDPRFATNKMRVANRAALIPLIRQATVFKTTSEWVVQLEQAGVPCGPINDLAQVFADPQVQARGLAIELPHLLAGTVPQVASPIRLSDTPIEYRNAPPLLGEHTMEVLQRVLGLDIAAIATLRDSGVL	PGPT0002130_447	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0002130-frc|yfdW-K07749	NA	NA
D1-36_00154	636			hypothetical protein	ATGAAAAACCCTTATGCTCCCGGCTTCTGGTGCGCTATTGCGGCGTTGGTACTGCTTTCGGCCACCTATTTCTATGGCGTCATGCTGACTCATCAGCTCGATAAAGCGCTGATTTTCCTTGATAGCGCGTCCGCGCTGATCGGTGTCATATCCATCGCAGTTGTCGCCTGGGCCTCGATGCAAGGCCAGCGCATCAAGAAAAAACAGCTCGAGCAAGGCAAGACCCTGGTGTTGATATGGGACACCAAGGTCGCGCTGCGTCGGGTCGAGACGGTGTTTGATCGCTATTTCTGGGGCAGCTATTGGCAGCCAGGTCGCACGTTCCAAGAGGTCATGGGAGAGCTCACGGGTACACCGTTGGAAAAAAGTCTCGAAGCCTTGAAAATCCAATGCGCGGCCTTGGACGAGCAGGTCGCGCAAGATGATTGGCACTGGCTCAACAACGCTCGTGAACTGTGCGATGTCGCCAATGCCATGGCTAGGGAACGTTACCAGTTGGATTTCTGTGATGGGCGTGCCGACTCGTCGAGTACGGCGGTGATCAATCGTGATTTCGAGGTACTGGTATACACCTGGACGGCACGGCTCAAGACATTTGATCACCAACTGGACGAGATCGAAGTCCAATATTCGTAG	MKNPYAPGFWCAIAALVLLSATYFYGVMLTHQLDKALIFLDSASALIGVISIAVVAWASMQGQRIKKKQLEQGKTLVLIWDTKVALRRVETVFDRYFWGSYWQPGRTFQEVMGELTGTPLEKSLEALKIQCAALDEQVAQDDWHWLNNARELCDVANAMARERYQLDFCDGRADSSSTAVINRDFEVLVYTWTARLKTFDHQLDEIEVQYS				NA	NA	NA	NA	NA
D1-36_00155	1506	ydgA	COG5339	Protein YdgA	ATGAATAAATCAGCAAGCGTACTTCTCGGAATCGTTGTGGTTATCGGCGCTATCAGTGCGGGCGGCGCCTGGTATACCGGGACGAAGCTTGAAGGAGTTTTGAATACAGCCATTGCCGACAGCAACAAGCAATTGCAAACGGCTTTGGCCGGGTCCAACGGTACCGCTTCGATCGAGCTGGTTTCCTTGGATCGTGGAACATTCAGCAGCACTGCGCATTACCGCCTCAAAGGTGAAGGCGAAATGTTTGGTGGCGAATCCGTTGAATTGCTGTTCGTTGATAACATCGAACACGGCCCGCTACCGGTTTCCCGGCTGATGACGCTCAAATGGTTGCCGGTCATGGCTACCAGCCACACCGAACTTGAGCGGACTCCGCTGACCGAAAAATGGTTTGTTGCCGCCAAGGATAAATCGCCGCTCAAAGGCGTTTTCAACCTCGGCTACGATCAGTCCACAAACGGTACATTCGAACTGCTCCCGCTGGATACCAAGCTGGACGAACAATCCCAGCTCATCTTTTCCGGCCTGAAAATCGACGTGGCAGCCAGCGCCCAAGCAGAGAAGATCAAGGCCGACGGTTATATGGACAGTTTCAAACTGAGCACCGTCGCCGAAGATCAAACACCGGTGCAAATCGAGCTTAGCGGTCTGACATTGGCCAGCAACCTGACCAAGAGCACCTACGGCTACTACATGGGTGATAACACCCTGCTGCTGAGTAACAGCAAGACCAGTTTCGGCGAACAGAAATCAGTGCTGGGCCTGAAGAATTTCGAAATGAAGAACAACAGCTCCGAAAAGGGTACCAGCGCTTCGGGGCGTGCCGACTACAAGATCGGTGAGTTGTCTTTCAACGATAAGGTCATTGGTTCGGCGCAGATGGCGGTAAGCCTGAAGAACCTGGATATTCCCGCAACCATGTCGCTGATGCAGGTCTACCAAGCCAAACTGCAGCCATACGAAAAAGCTGCTGCCGAGGCCGCTGAAGCGGGCGAGCCAGCGCCAGAGCTGAATTTGACCGAGGCCGAAGAGGCGCAGGTCAAGGCCGATCTGGAGAAACTCCTGGCGGGCGCCCCACAAGTGGCCCTGGAGAACCTCTCGTTTAATACGGCTAACGGTGAAAGCCGCGCGAGCCTGGTCGTAGACCTGGCCAAGCCACAATCGATGGATCTGCCGCCGGATGAACTAGGCCGTCAATTGCTCGCCCTGCTGGATTTCAAAGTGAAGGTGTCCAAGCCGATGCTTGTGGACCTGCTGACCGTGCAGGCGCAGATGGAAGGCCAGACAGACGCCAAACTGATCGCCGACCAGGCCACTGCCACCAGCGATATGTTCAGCGCCATGGCTGTGGGTACGGAGCTGGCGAAGCTGGAAGGCAACGACGTGGTCACCAACTTGCACTACGCCAACAATCAAGTGGATTTCAACGGACAGAAAATGACCGTTGAACAATTCTCGGCATTTGTGATGAGTAAGTTGGGCGGCGGCGTCGCCGTTCAGTAA	MNKSASVLLGIVVVIGAISAGGAWYTGTKLEGVLNTAIADSNKQLQTALAGSNGTASIELVSLDRGTFSSTAHYRLKGEGEMFGGESVELLFVDNIEHGPLPVSRLMTLKWLPVMATSHTELERTPLTEKWFVAAKDKSPLKGVFNLGYDQSTNGTFELLPLDTKLDEQSQLIFSGLKIDVAASAQAEKIKADGYMDSFKLSTVAEDQTPVQIELSGLTLASNLTKSTYGYYMGDNTLLLSNSKTSFGEQKSVLGLKNFEMKNNSSEKGTSASGRADYKIGELSFNDKVIGSAQMAVSLKNLDIPATMSLMQVYQAKLQPYEKAAAEAAEAGEPAPELNLTEAEEAQVKADLEKLLAGAPQVALENLSFNTANGESRASLVVDLAKPQSMDLPPDELGRQLLALLDFKVKVSKPMLVDLLTVQAQMEGQTDAKLIADQATATSDMFSAMAVGTELAKLEGNDVVTNLHYANNQVDFNGQKMTVEQFSAFVMSKLGGGVAVQ				NA	NA	NA	NA	NA
D1-36_00156	2484	pgaA		Poly-beta-1,6-N-acetyl-D-glucosamine export protein	ATGCCGCGTACTGTGGGTCCCTTTATTCGATTCGGTTTGCGCCCGTTGTTTCGCGTCGCGCTGTGCAGCCAGTTGTGCTTGCCGCTGGCGGCGTTTGCCGATGCCGCCTATGACCAAATGGTGCTTGATGCCCGTTCGGGCGATTACACGCCCGCACTGGCCGTGTTGCGCCAAGTTCCGGCGGGGCAGGCCAGTACCGCGCAAATCAGCGATCACTTGCAGATCGCCAGCTGGGCTGGTCTCGATGCCGAGGTGGTGAAGGTCTACGAAACCCAAGGCCGTTACCGCGAGTTACCGGTCCAGGCGCTGACCGCAGCGGCCCGCTCCTATCGCAACCTCCAGCGTTGGGATCCGGCGATTGAGCTGTATCGTCGAGCCCTGGCCATCGAACCACGAAATGCGGACCTGCAACTGGGCCTGGCCCTGACCCAGGCCGACGCCGGCAAACCCGACGAAGCCGTCAGCCGTGCCAAGGTCCTGGTTGCCGCCAAGCCCGAAGATCCGATGCGCCGGTTGGCGTTGGGCTATGCACTGACGCGCGCTGACAATCCCCACGAAGCCCTGTTCCAATACGATCAAGCCTTCATCCGTGCCGGTAGCAACAAGCCTGAAGTCGCGCGCGAATACATTCATGCGCTGCAGCGTGCCAGGTTGCCTGAACCGGCGTTGCGCCTGGCCCGTCTTCAGCCTGGGCTGATCGACCGCGGCGTGCAGCGCCGGCTTGAAGGCGATGTGGCGGCTGAACGGGTGCGTCTGGCGGATATGGCCAGCCGCAGCGAAAAGGAGCGCTTTGTCATCGCTGACCGCGCGTTGGCCGATTACGACAAACTGCTCGCCACCTGGACGCCAGTGGCCGAGGCCCATGAGGACGTGCTGCGGTGGCGAATCGACCGCATGGGAGCCCTCAACGCCCGCGCTCGCCGGGCAGAGGTGATCGCCGAATACCAGAAGCTGGTCGCTGAAGGTATCAGCATTCCGACTTATGCCTTGCGCTGGGTGGCCTCTTCTTATCTTGAGCAACGTGAGCCGGAAATAGCCGTCGAGCTGTACCGCCGTGTACTGACCGCGCCGGATGCCGACCCTGCGGACCGTTTCGAAGACAGCACCGCGCTCTACTACGCCTTGCTGGAAAGCGAAAAGTCCGAAGAGGCCCGCGCGCTGGCCGAAGATCTGGCTAAATCACAGCCGTCTCGGGTGGAGCTCAAGGGATTGCCAATCGGTAACCCCAACGACGAGTGGATGGATGCGCAGATGCTTGCCGCTCAAGCAGGCACTTATGGCGCTGACCTGCCCTCCGCCGAAACGCGTCTGGAAAGTCTCATCTACCAAGCCCCTGGCCACATCGGCCTGCGCCTGGCCCAGGCCGACCTGTATCAAGCCCGTGACTGGCCGCGGCGTTCAGAAAGCCTGCTCAAGGAAATCGAGACCACGACACCGCGCAATCGCGACCTGGAAGTCGCCCAGGCTCGCGCGGCGATGGACCTGCAGGAATGGCGGCAGATGGACGCGCTTACCGACGACGTGGTCGCCCGTTATCCGGAGAATGCCCACGTCAAACGCCTGCAACGTCAGCGTGAAGTTCATGACATGGCTGAATTGCGCATCGAAGCCTACACCGGCAAAAGCTACGGCGGTGGCAACGGCGATGCCGGCGCGGTGACCGGTAGCCGGGACTTTGGTATCGAAACGTTGCTCTACAGCCCGCCCATTGACGAAGACTGGCGGCTATTCGGCGGTGCCGGCTACGCCACTGGCGACTTTGAGGAAGGCACCGGCCATCATCGCTGGCAGCGCTTGGGCGTGGAGCGGCGTACCCGCGACATGACTCTGGAAGCGGAAGTCTCCAACCACTCGTACGGCTCCGGCGACAAGCAAGGCGCGCGCGTGGCCGTGGCCCGGGACATCAACGATCACTGGCAGTACGGCGGCAGCCTGGATTACCTCTCGGCCGAGACACCGTTGCGAGCTCTCAACAGCGGTATTCGCGCCAATGGCGGGAGCGGTTTCGTCCGCTGGCGCGCCAATGAAAGCCGCGAATGGCGGCTGGCTGTGAGCCCGTCCCATTTCAGCGACGGCAACAATCGCCTGGAGACCCTGCTGACCGGCCGCGAGGGCATCTACAGCGCTCCACGCCTGCAGGTGGAGCTGGGACTGGAAGTGGGTGCCAGCCGCAACAGCGGTTCCGAAGAAGTGCCGTACTTCAATCCGAAGTCGGACTTCAGCGTCATGCCGACCGTGAGCGCCAATCACGTGCTGTACCGCCGTTACGAAACCACTTGGAGCCAGCAATTCCAAGTCGGCGCCGGCACCTACAGCCAGCGCGACTACAACACCGGTGCCATGGGGTTGCTCGGCTACGGCCAACGCTTGCTCTGGAACGATGTGCTCGAAGCCGGGGCCGCGCTGAGCTGGCTCAACCGCCCTTACGACGGCGATCGTGAAAGCGATCTGCGCCTGCTTGTCGATCTCACCTACCGCTTCTAG	MPRTVGPFIRFGLRPLFRVALCSQLCLPLAAFADAAYDQMVLDARSGDYTPALAVLRQVPAGQASTAQISDHLQIASWAGLDAEVVKVYETQGRYRELPVQALTAAARSYRNLQRWDPAIELYRRALAIEPRNADLQLGLALTQADAGKPDEAVSRAKVLVAAKPEDPMRRLALGYALTRADNPHEALFQYDQAFIRAGSNKPEVAREYIHALQRARLPEPALRLARLQPGLIDRGVQRRLEGDVAAERVRLADMASRSEKERFVIADRALADYDKLLATWTPVAEAHEDVLRWRIDRMGALNARARRAEVIAEYQKLVAEGISIPTYALRWVASSYLEQREPEIAVELYRRVLTAPDADPADRFEDSTALYYALLESEKSEEARALAEDLAKSQPSRVELKGLPIGNPNDEWMDAQMLAAQAGTYGADLPSAETRLESLIYQAPGHIGLRLAQADLYQARDWPRRSESLLKEIETTTPRNRDLEVAQARAAMDLQEWRQMDALTDDVVARYPENAHVKRLQRQREVHDMAELRIEAYTGKSYGGGNGDAGAVTGSRDFGIETLLYSPPIDEDWRLFGGAGYATGDFEEGTGHHRWQRLGVERRTRDMTLEAEVSNHSYGSGDKQGARVAVARDINDHWQYGGSLDYLSAETPLRALNSGIRANGGSGFVRWRANESREWRLAVSPSHFSDGNNRLETLLTGREGIYSAPRLQVELGLEVGASRNSGSEEVPYFNPKSDFSVMPTVSANHVLYRRYETTWSQQFQVGAGTYSQRDYNTGAMGLLGYGQRLLWNDVLEAGAALSWLNRPYDGDRESDLRLLVDLTYRF	PGPT0023475_71	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-POLY-N-ACETYL-GLUCOSAMINE_METABOLISM	CE-EPS-POLY-N_ACETYL-GLUCOSAMINE_BIOSYNTHESIS,PGPT0023475-pgaA-K11935	NA	NA
D1-36_00157	1998	pgaB	COG0726	Poly-beta-1,6-N-acetyl-D-glucosamine N-deacetylase	ATGCCCGTCATTTCGCGATTCATCCTTCTGCTGGGAGTCTTGCTGATCAGCGCTTGTGCCCAGCAAGCCCCGGCGTTCGCGCCACCTTCGCAACGGCCGGTCGCGGCGAACGATGCCCCGTGGCCGAAAAACCATGTGCTGGGTATTGCCTACCATGATGTCGAAGACCGCGACCCCGACCAGGGCCTGGTAGCCGTGCGCACTGAGCGCCTGATTGAACAGCTGGCCTGGCTGCGTGAAAACAATTACCAGGCGGTCACGGTCGACCAGATCATCGCTGCCCGCAACGGCGGACCGCAACTGCCGCCGCGTGCGGTGTTGCTGAGTTTCGACGATGGCTACTCAAGCTTCTATACGCGCGTCATGCCGATCTTGCGAGCCTACAACTGGCCGGCAATCCTGGCCCCGGTCGGCAGTTGGGTCGACACGCCGATGAACCAGAATGTGGATTTCGCCGGTGTGCCGCGCAAGCGTTCCGAGTTCCTCACGTGGGAGCAGATTCGCGAGATTTCGAAATCGGGCCTGGTGGAAATCGCGGCCCACACCGACGCCAACCACAAAGGCGTGCTCGCCAATCCCCAAGGAAACCAACAGCCGGCGGCAACTACCCGGCTCTATGATGCCGTGACCGGTCGCTATGAGAGCGAGGCCGATTTCCAGGCGCGTATGCGCAAAGACGTGGCGGCTATTTCAGACAAGATCCGCAAGGTGGTCGGCTACAGCCCGCGTGTCTGGGTGTGGCCTTACGGCGAGGCCGACGGCACCGCATTGCAAGTGATCGGCAGCCAGGGTTACCAGATGGCCCTGACCCTGGAAGATGGCCTCGACAGCCTCGATAACCTGATGAGTGGACCGCGCTTCCTGGTCGCATCCGATCCGGATGGTGCTCACTTCGCCGAAAGTATCGCGTCAGTGCAGACGATCGACCCGATGCGGGTGGTCCACGTCGACCTGGATTACGTCTACGATTCTGACCCCGTGCAGCAGGAGGCCAACGTCGGCAAACTGGTCCAGCGCATCTATGACCTGGGCGCCAACACGGTGTTCTTGCAAGCGTTCGCCGATCCAAAAGGCGATGGTCTGGTCCACTCGCTGTACTTTCCTAACCGCCACCTGCCGGTGCGCGCCGATCTGTTCGACCGCGTTGCATGGCAATTGCGCACCCGGGCCAACGTCAAGGTCTATGCGTGGATGCCGGTACTCAGTTTTGCCCTGGATTCGAAGTTGCCGCGCGTGCAGCGCTGGGATCCGGAGACCGGCAAGACGGGCGTCGCCCCAGACCAATATGTACGCCTGTCGCCGTTCGACCCGAACGTGCGAAAGATCATCGGCGAGATCTACGAGGACATGGCGCGGATGAGCTCGGTGGACGGCGTTCTTTATCATGACGATGCCGTGTTCTCCGACTTCGAGGACGCCGGCCCCGCCGCGATGAAAGTGTACGCCGCCCATGGCTTGCCGCAATCGATCGCTGCCCTGCGCGATGACCCTGCCGCCATGCAGCGTTGGACTCGCTTCAAGAGCCGCTACCTGATCGACTTCACCGCCGAGCTCACCGCCAAGGTCCGGGCGATACGTGGCCCGCAGGTGCGCACGGCGCGCAACATCTTTGCCGAACCGATGCTCAACCCGGAAAGCGAAGCCTGGTTCGCCCAGAACCTTGACGATTTCCTCGCCGCCTACGACTGGACGGCGCCGATGGCCATGCCCCTGATGGAAAAACAGACCCGCGAACAGTCGGGGCCCTGGCTGGAGCGATTGGTGGAAACCATCAAGGCTCGCCCCGGTGCACTCAAGCGCACGGTGTTCGAACTGCAAGCCCGTGATTGGCACAGCAAGCCAGTGGCAGACATCGAGGGCGAACAACTGGCCGACTGGATGGGGCGCCTCAAGCGCCAGGGCGTGACCAGTTTCGGCTACTACCCGGACAATTTCATCGAAGACCAGCCCGCCGTGAAAGCCGTGCGGCCGGCGCTCTCCAACAAGTGGAATCCTTGA	MPVISRFILLLGVLLISACAQQAPAFAPPSQRPVAANDAPWPKNHVLGIAYHDVEDRDPDQGLVAVRTERLIEQLAWLRENNYQAVTVDQIIAARNGGPQLPPRAVLLSFDDGYSSFYTRVMPILRAYNWPAILAPVGSWVDTPMNQNVDFAGVPRKRSEFLTWEQIREISKSGLVEIAAHTDANHKGVLANPQGNQQPAATTRLYDAVTGRYESEADFQARMRKDVAAISDKIRKVVGYSPRVWVWPYGEADGTALQVIGSQGYQMALTLEDGLDSLDNLMSGPRFLVASDPDGAHFAESIASVQTIDPMRVVHVDLDYVYDSDPVQQEANVGKLVQRIYDLGANTVFLQAFADPKGDGLVHSLYFPNRHLPVRADLFDRVAWQLRTRANVKVYAWMPVLSFALDSKLPRVQRWDPETGKTGVAPDQYVRLSPFDPNVRKIIGEIYEDMARMSSVDGVLYHDDAVFSDFEDAGPAAMKVYAAHGLPQSIAALRDDPAAMQRWTRFKSRYLIDFTAELTAKVRAIRGPQVRTARNIFAEPMLNPESEAWFAQNLDDFLAAYDWTAPMAMPLMEKQTREQSGPWLERLVETIKARPGALKRTVFELQARDWHSKPVADIEGEQLADWMGRLKRQGVTSFGYYPDNFIEDQPAVKAVRPALSNKWNP	PGPT0023480_203	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-POLY-N-ACETYL-GLUCOSAMINE_METABOLISM	CE-EPS-POLY-N_ACETYL-GLUCOSAMINE_BIOSYNTHESIS,PGPT0023480-pgaB-K11931	NA	NA
D1-36_00158	1356	pgaC	COG1215	Poly-beta-1,6-N-acetyl-D-glucosamine synthase	ATGCTTGACAGACTGCTCGCCGTCCTGGTGCTGGCGATCGTCCTTGGGGTGCCCCTGGGCCTGATCTTCCTGGTTACCGGGCAATTCCTGATGGACTTCGTGTTCTTCTACCCGCTGTTCATGTCCGGCCTATGGATCGCTGGAGGCCTGTATTTCTGGCTGCACTGGGAGCGTCACTGGCCGTGGAAGGACGACACGTTGCCGCCGCCCCTGGCCGGCGAGCCGCTGATCAGCATCCTGGTCCCGTGCTTCAACGAAGGCGACAACGTTGCCGACACGATTCACGCAGCGCTGGGCCAGCATTATCCGAACATTGAAGTCATCGCCATCAACGACGGCTCCAAGGACAACACCGCCGAGGTGCTCGATCGACTGGCCGTCGAAGACCCGCGCTTGCGCGTGCTGCACCTGGCGGAAAACCAGGGCAAGGCCGTGGCCCTGCGTATGGGCGCCATCGCCGCACGCAGTGAATACCTGGTGTGTATCGACGGCGACGCGCTGTTGGCGCCCAACACCTGCGCCTACTTGGTAGCGCCGATGCTTGACAACGCCCGCCTTGGCGCGGTGACCGGCAACCCGCGCATCCGCACCCGTTCGACGTTGGTGGGCCGGGTCCAGGTCGGCGAGTTTTCCTCGATCATCGGTTTGATCAAGCGCACCCAGCGGGTTTTCGGGCGGATCTTTACCGTGTCCGGCGTAATCGTCGCGTTCCGTCGCACGGCCCTGCACCGGGTCGGCTACTGGAGCCCGGACATGATCACCGAGGACATCGACATCAGCTGGAAGCTGCAACTGGACCACTGGAGCATTTTCTACGAGCCACGCGCCCTGTGCTGGATCCTCATGCCCGAAACCTTGCGGGGCCTGTGGCGGCAGCGGCTGCGTTGGGCCCAGGGTGGCGCCGAGGTGCTGTTCAAGAACATCCGCGGCATCTGGCAATACCGTCACCGCTACCTGTGGCCGCTGCTGTTCGAATACTGCCTGTCCACCGGTTGGGCGTTCACCTTCCTGCTGTCAGTGATCTTCTGGGGAGCCGGTAAATTCGTCGAGATGCCAGCCGCCATCGCCGTGGACCACTTGATGCCGCCGGCTTTCACCGGCCTGTTGCTGGCGGTGGTGTGCCTGATGCAATTCGCGGTGAGCATTCTGATCGACCGTCGCTACGAAAAGGGCCTGTGGCACATCATGTTCTGGGTGGTCTGGTACCCCCTGGTGTTCTGGCTGATCAGTTTGTTCACCACGCTGGTGAGTTTCCCCAAGGTGCTGTTCGGACAGCATCAGAAACGCGCGCGCTGGATCAGCCCGGATCGCGGGATCAAACCGTTCGATGACGAAGAAGAGGAAGTGATCCGATGA	MLDRLLAVLVLAIVLGVPLGLIFLVTGQFLMDFVFFYPLFMSGLWIAGGLYFWLHWERHWPWKDDTLPPPLAGEPLISILVPCFNEGDNVADTIHAALGQHYPNIEVIAINDGSKDNTAEVLDRLAVEDPRLRVLHLAENQGKAVALRMGAIAARSEYLVCIDGDALLAPNTCAYLVAPMLDNARLGAVTGNPRIRTRSTLVGRVQVGEFSSIIGLIKRTQRVFGRIFTVSGVIVAFRRTALHRVGYWSPDMITEDIDISWKLQLDHWSIFYEPRALCWILMPETLRGLWRQRLRWAQGGAEVLFKNIRGIWQYRHRYLWPLLFEYCLSTGWAFTFLLSVIFWGAGKFVEMPAAIAVDHLMPPAFTGLLLAVVCLMQFAVSILIDRRYEKGLWHIMFWVVWYPLVFWLISLFTTLVSFPKVLFGQHQKRARWISPDRGIKPFDDEEEEVIR	PGPT0023485_256	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-POLY-N-ACETYL-GLUCOSAMINE_METABOLISM	CE-EPS-POLY-N_ACETYL-GLUCOSAMINE_BIOSYNTHESIS,PGPT0023485-pgaC|icaA-K11936	NA	NA
D1-36_00159	504			hypothetical protein	ATGAAAATTATCAGGACCCGCCAGCGGCCTTTTCTGGTGATCATCGACGTGCTCTTTACGGTACTGGCGTGGGTTGGACTGTTGTACCTGCTGGTGAACGGTCTGTGGCCGCTGTTTGACAGCCACGCGGGCCCGCGTCTGGGCGGTTCATTGTTCGACACCCTGGGGACGTTGCAGATCTACGGCTGGATCGCGTTGGTCAACGCAATCATCCTGATCAGCTGGGCGCGCTATCAACAGCGCAAGAGCCGTAGCTTCGCCCAGCGTAGGCTGCCAAGGCCCGCAGTGGACGACCAGGGGCTGAGTGCCAGTTTCAAATTGACTGGCGAACGTCTGGAAACGCTGCGCCAGCCAGGTTCGAAGATCATCCATAACAATCAGGACGGCGATATCAGCCACGTCGTGCCGCATTTCCACTTGTTGGGCCCGGACTTGCAACCGCCGCCCCTGGCGCCGCTGGAGCGACCGCAGATCATTCATCTGCCGGCGGATCATTCGGCGTAA	MKIIRTRQRPFLVIIDVLFTVLAWVGLLYLLVNGLWPLFDSHAGPRLGGSLFDTLGTLQIYGWIALVNAIILISWARYQQRKSRSFAQRRLPRPAVDDQGLSASFKLTGERLETLRQPGSKIIHNNQDGDISHVVPHFHLLGPDLQPPPLAPLERPQIIHLPADHSA	PGPT0023490_41	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-POLY-N-ACETYL-GLUCOSAMINE_METABOLISM	CE-EPS-POLY-N_ACETYL-GLUCOSAMINE_BIOSYNTHESIS,PGPT0023490-pgaD-K11937	NA	NA
D1-36_00160	1533	hcaD		3-phenylpropionate/cinnamic acid dioxygenase ferredoxin--NAD(+) reductase component	ATGCCCATGCATCAAGTCGCCCGCCTCGCTGATGTGCGAGAAGATCGCGGCCTCGAAGTGACCCTCAACGACGCGCCCATCCTGCTGTTACGGGCTGGAGGGCAAGTGCGGGCGTTCCAAGGCAAGTGCCCGCACGCCGGGGCGCCTTTGGCCAAGGGCGCCGTATGCCACGGAAGGCTGATCTGCCCCTGGCACAAAGCGGCGTTTCGCGCTGAAGACGGCGCCCTGTGCGAGCCGCCGGCCCTCGACAGCCTGGAGCGTTACCACGTCGAGGTGCGAGGCGAAGAAGTCTGGGTCGATGACCAACCACTGCCGGCCGAAAAAGTCCCCCCCGCCGATGACCCGCGCACGTTTGTCATCGTCGGCGCCGGCGCGGCGGGCACGGCATGCGCGGCGGCGTTGCGCGAGAAGGGTTTCGGCGGCCGGATCCAGCTGATCGACCGCGAGGCCGAGGCCGGCTACGACCGGACGGTGTTAAGCAAATATGTACTGGCTGGCGACATGGCTGCGGACGAAACTCCGCCTCTGCGCGATGAAACTTATTTCAGCCAACAACGCATCGAACGGCGCCACGGCCAAGTGACCGGCCTTGATGTCAATGCGCGTCGGATCCGCCTCGCCGACGGTCAATCACTGGGTTACGACGCCCTGTTGATTGCCACTGGCGGCGAACCCAAGACGCTGGATCTGCCCGGTATCGACTTGCCGCAAGTCCTGATGCTGCGCTCCTTGGCCGATACACGGCGGATTCTCGAACATGCGCAGCCGGGGCAACGAGCCGTGATCATCGGCGACAGTTTCATTGCGATGGAGGTCGCCTCCTCCCTGCGCAAACGCGAACTCAGCGTCACCGTCCTGGCTCGTCACCCAGTGCCGTTCGCGGCGCAGTTCGGCGACAGTATCGGCAAGGCGATCCTGGCTCGGCACCGGGCCAATGGCGTGGTGTATCACACCGACGGCGAAGCAGCGCGGATCGAGGGTACGGGCAAAGTACACACCGTGGTGCTGGATAACGGCCAACGCTTTGAGGCGGACCTGGTCATCGTCGGCGTCGGCGTGCGCCCGGCCACGGAGCCGTTCGCCAACCTGCCACGGGAGAAAGACCAATCGTTGATTGTCGACGACGGCATGCGCGTGGCCGACGGCGTCTGGGCCGTGGGTGATATCGCGACCTTCCCCCTCAACGGCCAGCCCCAGCGCATCGAACATTGGCGGCTGGCCCAGCAACAGGCCCGCATCGCCGCGACGAACATGCTCGGTGGTGAAGAACATTACCTGGACGTGCCGTTCTTCTGGACCTATCACTTCGGCAAACGCTACGACTATCTGGGCCATGCCGAGGAATGGGACGAAGTGCAATTCAAGGGCACGCCCGAGCATCCGCCCTTTATCGCGCTGCTCGGCAAGGACGGCCTGGTCGTGGCGGTCGTGGCCTGCGATGAAGGCCGGGCGATGGCGGCACTGGCCCAGCGCATGAAACAACCGCTGCCTGTGGATGAAGCTTGGCGGCTGGTCCGGGATTTTTCGATGTAG	MPMHQVARLADVREDRGLEVTLNDAPILLLRAGGQVRAFQGKCPHAGAPLAKGAVCHGRLICPWHKAAFRAEDGALCEPPALDSLERYHVEVRGEEVWVDDQPLPAEKVPPADDPRTFVIVGAGAAGTACAAALREKGFGGRIQLIDREAEAGYDRTVLSKYVLAGDMAADETPPLRDETYFSQQRIERRHGQVTGLDVNARRIRLADGQSLGYDALLIATGGEPKTLDLPGIDLPQVLMLRSLADTRRILEHAQPGQRAVIIGDSFIAMEVASSLRKRELSVTVLARHPVPFAAQFGDSIGKAILARHRANGVVYHTDGEAARIEGTGKVHTVVLDNGQRFEADLVIVGVGVRPATEPFANLPREKDQSLIVDDGMRVADGVWAVGDIATFPLNGQPQRIEHWRLAQQQARIAATNMLGGEEHYLDVPFFWTYHFGKRYDYLGHAEEWDEVQFKGTPEHPPFIALLGKDGLVVAVVACDEGRAMAALAQRMKQPLPVDEAWRLVRDFSM	PGPT0028500_465	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,PGPT0028500-hcaD_like-K22747	NA	NA
D1-36_00161	558			hypothetical protein	ATGACCCGATTGACTTCCTTTTCCTCCTGGCTCGCGGCCGTCACCCTCGTGCTGTGCGCACAGGGAGTCCAGGCCGAAGAGCGTTTTACCCTGAGCATTCCCGGCGTGTCGGACGACCGCCTCTTCACCGCAGCGGCCGCCAGCGACGCCAACCAATGTGGCGGCAAGAATATTTCCCCGGCCCTGAGCTGGAATGCCGGCCCGCCTGGCACCCTCAGCTACGCCATCGTCATGCTCGACCCCGACGGCCAGCGTGGACAAGGCGTAGATCATTGGGTCCATTATGGAATCAAGGCCAGCACCCGACAGATTCCGACAGGCGCGGGCACCAAATCCACGCTTGAGGGCATGAGCGGCATCAACAGCAAAAACACCCACGGCTACATCGGACCGTGCCCGCCCGTGGGTGACAGCGCCCACCATTACCTGATCCAGATTTTCGCCCTGGACCTGCCGCCCGACGCCCTGCCTGCCGGCCTCACACGGGCCCAATTGATGGAAAAACTCAAGGGTCACGTCCTGCGCAACAGCAGCGTGGTGCGCCGCTATCACCGTTGA	MTRLTSFSSWLAAVTLVLCAQGVQAEERFTLSIPGVSDDRLFTAAAASDANQCGGKNISPALSWNAGPPGTLSYAIVMLDPDGQRGQGVDHWVHYGIKASTRQIPTGAGTKSTLEGMSGINSKNTHGYIGPCPPVGDSAHHYLIQIFALDLPPDALPAGLTRAQLMEKLKGHVLRNSSVVRRYHR				NA	NA	NA	NA	NA
D1-36_00162	174			hypothetical protein	ATGACGCAGAAAACCGACGGCATCGCCCGCCTCAAGAATTGCCCCACCAAGGGCGACGAAATACGCCGGGCCATCGCCCAGAGCCGCAAGGATTTCTTGCCAGCTGACGAGGCCGCGGACGCCGAGCCAGGCCAATCGTCGGTGCAGCCCGCGGACAAGGGGCCCGCTGCCTGA	MTQKTDGIARLKNCPTKGDEIRRAIAQSRKDFLPADEAADAEPGQSSVQPADKGPAA				NA	NA	NA	NA	NA
D1-36_00163	1314	proP_1		Proline/betaine transporter	ATGACTGCCACCACTCATTTGCCAGACGCCCGGTTCAACCGATCCGACTACAGGACCCTGGGCCTCGCCGCCCTTGGCGGTGCGCTGGAAATCTACGATTTCATCATTTTTGTCTTCTTCGCCCTGACCCTCAGCCAGCTGTTTTTCCCACCGGAAATGCCCGAGTGGCTGCGCTTGCTGCAAAGCTTCGGAATTTTCGCCACCGGCTATCTGGCACGGCCCTTGGGCGGGATTCTCATGGCGCACTTTGCCGATCGCCTGGGGCGCAAGCGGGTGTTCAGCCTGAGCATTGTCATGATGGCATTGCCCTGCCTGCTCATCGGCGTGATGCCGACGTACGCGCAAATCGGTTATTTCGCCCCGTTGCTGTTGCTGGCGCTGCGTATCCTGCAAGGCGCGGCGGTCGGCGGGGAAGTGCCCAGCGCCTGGGTCTTCGTCGCTGAACATGCGCCACTGAAACATCGAGGTTATGCCTTGGGCTTTCTCCAGGCGGGCCTGACCTTCGGCTATCTGCTTGGCGCCCTGACCGCCACGGCGCTGGCGCGGATTTATACCCCGGCGGAAATCCTTGACTACGCGTGGCGCCTGCCATTCCTGCTGGGCGGGGTATTCGGTGTGATTGGCGTCTGGCTGCGCCGCTGGCTGAGCGAAACGCCGATCTTCATGGCGCTGCAAGCCAATCGCGAAGGCGCGGCGGAATTGCCGCTGCGCACGGTCCTGCGCGACCATCGCCACGCCTTGCTGCCCGCCGCGATTCTCACCTGCGTGCTGACCTCTGCTGTGGTGGTATTTGTGGTCATCACCCCGACCGTGATGCAGAAGAGCTTCGGCCTGACCCCTGGCCACACTTTCGCCCTGAGCAGCCTCGGCATCGTTTTCCTGAACATCGGCTGCGTCCTGGCCGGCCTCATCGTCGACCGCATCGGCGCCTGGCGCACGGTGATGCTGTATAGCCTGCTGCTGCCCGTGGGCATCGCCGTGCTCTTCGCCAGCCTGATCAGCGGCAGCGCGTGGCTGGGCCTGGCCTACGCTATCGCCGGCTTGGGTTGCGGTGTAGTCGGCGCGGTGCCTTCGGTGATGGTGAGCCTGTTTCCGGCAAAAATCCGTGTATCTGGCATCTCGTTTACCTACAACATCGCCTACGCGCTGTGGGCGAGCATCACGCCGTTGGTGCTGATTGCTTTGGTGCCGTGGAGTCCTTGGGTGTGCGTGGGGTACTGCGTAGTGATGGGCGCGCTGGGCGTCGGCGCGGCGGCTTATTTTCCGAAACGGCACACGAAGTCTGTCCAGCCCTCGCTGGTGTGCGAATCGTGA	MTATTHLPDARFNRSDYRTLGLAALGGALEIYDFIIFVFFALTLSQLFFPPEMPEWLRLLQSFGIFATGYLARPLGGILMAHFADRLGRKRVFSLSIVMMALPCLLIGVMPTYAQIGYFAPLLLLALRILQGAAVGGEVPSAWVFVAEHAPLKHRGYALGFLQAGLTFGYLLGALTATALARIYTPAEILDYAWRLPFLLGGVFGVIGVWLRRWLSETPIFMALQANREGAAELPLRTVLRDHRHALLPAAILTCVLTSAVVVFVVITPTVMQKSFGLTPGHTFALSSLGIVFLNIGCVLAGLIVDRIGAWRTVMLYSLLLPVGIAVLFASLISGSAWLGLAYAIAGLGCGVVGAVPSVMVSLFPAKIRVSGISFTYNIAYALWASITPLVLIALVPWSPWVCVGYCVVMGALGVGAAAYFPKRHTKSVQPSLVCES				NA	NA	NA	NA	NA
D1-36_00164	1677			hypothetical protein	ATGTCCCGCCCACTGTCTTTTATGCGTCCTGCCGCCCAGGGTTTTGCTGTCACCATGCTGGTGACGTTGGCCGGTTGTGGGTTGTCTTCGTCTCACGAAGCGGCCAAGTCAGCCGAGCCGGTGGCCGTGGCGCCCAGTGTTGTACCGCAAGGCGAGATCGCCGAAGTGCGCCAGTCGACGGCCAAGCGCATGCTCATGAAACCGGCACCAATGCCTGCCCCAAGCGTGGCGAACGATGCCGTCGCCGCGGGTTACCGCGCCGAGTCGCGCGAGCAGTACGAAAAGCTGCCGGACAATCCCATCCATAGCGTTGCCGAAACGCCGGTCTCGACCTTCAGCGTGGATGTCGATACCGGCAGCTATGCCAATGTGCGACGTCTGCTCAACCAAGGCAGCCTGCCGCCCGAGGGCGCCGTGCGCTTGGAGGAGATGGTCAACTACTTCTCTTACCATTACGCCTTGCCCACCGATGGTTCGCCGTTTGGCGTGACTACCGAAGTCGCGCCGTCGCCATGGAATCCTCATACCCGTCTGTTGCGCATCGGCATCAAGGCGTCCGACCGCGCCGTGGCGGAGCTGGCCCCGGCCAATCTGGTGTTCCTGGTGGACGTGTCCGGTTCCATGGACCGTCGTGAAGGGCTGCCGCTGGTCAAAAGCACGTTGAAACTGCTGGTGGATCAATTGCGCGATCAGGACCGCGTATCGCTGGTGGTTTATGCCGGCGAATCCCGCGTGGTGCTCAAGCCCACTCCGGGCAGCGACAAAGTGAAGATCCGCAACGCCATCGATCAGCTGAACGCTGGCGGTTCAACCGCGGGGGCCTCGGGCATCGAACTGGCCTATCAAATGGCCCGGGAAAGCTTCATCGACAAGGGCATCAACCGCATCCTGCTGGCCACCGACGGTGACTTCAACGTCGGCATCAGTGATTTCGACAGCCTCAAGCAGATGGCGGTGGATCAGCGTAAAAGTGGCGTATCCCTGACAACGCTAGGCTTTGGTGTGGATAACTACAACGAACACCTGATGGAGCAATTGGCTGACGCCGGCGATGGTAACTACGCCTATATCGACAACTTGCTCGAAGCCCGCAAGGTCCTGGTGGATCAGCTCAGTTCGACGCTTGCGGTAGTGGCGCGGGACGTGAAGTTGCAGGTGGAGTTCAACCCGGCCCAGGTCAGCGAATATCGCTTGCTGGGTTATGAAAACCGCGCATTGAAACGTGAGGATTTCAACAATGACAAAGTCGACGCGGGCGAGATTGGCGCAGGGCACACGGTGACGGCGTTGTACGAAATTGTTCCGAAGGGGGAGAAGGGCTGGCTGGAGCCGCTGCGTTATGGCAACGCATCGAAGTCGGATGGCAAGGCCGGCGAACTGGCCATGTTACGTGTACGCTACAAACCGGCCGAGGGCGGCAACAGTCGCTTGATCGAGCATCCAATCGCCAGCGCGCAAAGCGAAAAACAACCCAGCGATGACCTGCGCTTCGCGGCGTCCGTGGCGGCCTTCGCCCAGCAACTCAAGGGCGATGGACGCTACACAGGCGCGATGAGCCTGAAGGACACCGCACAACTGGCGCGGTCGGCCCGTGGCGATGACCCGTTCGGGTTGCGCGCCGAGTTTGTGCAGTTGGTGGAGCTTGCGCAGAGCCTTGAACCTGCGGCCAGGCGCTGA	MSRPLSFMRPAAQGFAVTMLVTLAGCGLSSSHEAAKSAEPVAVAPSVVPQGEIAEVRQSTAKRMLMKPAPMPAPSVANDAVAAGYRAESREQYEKLPDNPIHSVAETPVSTFSVDVDTGSYANVRRLLNQGSLPPEGAVRLEEMVNYFSYHYALPTDGSPFGVTTEVAPSPWNPHTRLLRIGIKASDRAVAELAPANLVFLVDVSGSMDRREGLPLVKSTLKLLVDQLRDQDRVSLVVYAGESRVVLKPTPGSDKVKIRNAIDQLNAGGSTAGASGIELAYQMARESFIDKGINRILLATDGDFNVGISDFDSLKQMAVDQRKSGVSLTTLGFGVDNYNEHLMEQLADAGDGNYAYIDNLLEARKVLVDQLSSTLAVVARDVKLQVEFNPAQVSEYRLLGYENRALKREDFNNDKVDAGEIGAGHTVTALYEIVPKGEKGWLEPLRYGNASKSDGKAGELAMLRVRYKPAEGGNSRLIEHPIASAQSEKQPSDDLRFAASVAAFAQQLKGDGRYTGAMSLKDTAQLARSARGDDPFGLRAEFVQLVELAQSLEPAARR	PGPT0014015_2139	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-CHLORIDE_TRANSPORT,PGPT0014015-yfbK-K07114	NA	NA
D1-36_00165	600	rpoE	COG1595	ECF RNA polymerase sigma factor RpoE	ATGACCAGAAAGGAGTTCGTCACCGACATGCCCGCTGCGCTTGATTCACCCAGCGACGAATCGCTGCTGGCCCGCTACCGAGATGGCGACGGGGCTTGTTTCGAAGCCCTGTATGCCCGCCATCGCCAAGGGCTTTATCGGTTCCTCGTGTCCTTGAGCAACAAGGCCGAACTGGCCGAGGAAATCTTCCAGGACACCTGGCTCAGCCTGATTCGCAGCACGACCCAGCCACAAGGACGGGCGAGTTTTCGTACATGGCTGTTCCAGATTGCCCGCAACCGCTTGATTGACCACTGGCGCAAGCATGGCGTCCACAACCCGTTGCACGACAGTTATGACGAGCAACTGCATGTCCAGCCCGACGACACCGGCGGCCCCGAGCAACAACTGAGCCTGAGTCGCGACCAGGCGCGTCTCGACGCCGCGTTGCAGGCCTTGCCCGAGGATCAGCGGGAAATCTTCCTGCTGCGTCTGCATGGCGACCTGGAACTGCCGCAGATCGCCGCACTGACCGGCGCCCCACTGGAAACGGTGAAAAGCCGCTTGCGTTACGCCCAACAGAAATTGCACCGGCTGTTGGCCGAGGAGGTACCCGCATGA	MTRKEFVTDMPAALDSPSDESLLARYRDGDGACFEALYARHRQGLYRFLVSLSNKAELAEEIFQDTWLSLIRSTTQPQGRASFRTWLFQIARNRLIDHWRKHGVHNPLHDSYDEQLHVQPDDTGGPEQQLSLSRDQARLDAALQALPEDQREIFLLRLHGDLELPQIAALTGAPLETVKSRLRYAQQKLHRLLAEEVPA	PGPT0014960_4039	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
D1-36_00166	618			hypothetical protein	ATGATCGACCCCAAACACGCTCCGGATGCAGACGACAAAATATTGATCGAGCATTTGCGTCAGCACGCCAGCGGCGAACCGCCGGCCTCGCTAGACGCCTTTATCCTGGCCACCGCCCGACGCGAAGCTCCGGCGCCCGTGCCAAGCCTGTGGCAGCGCTGGTTGCAAGCTTGTCAGCGGCCACGTTGGCAGATGGCATTCGCCACGGTCGCCGGTGTGGCGCTGATGATCGGCCTGGCGCTGCGCTCACCCCTGCCTCACGATGAGTTGGCCGCACCCGCGTCGATCGAGTTTTCTGCCGACCAGCAAAAGTCAGCCGTCGCCGCCGCAGCACCGCCGGCCATGCCCGCCCCGGCCCCGATCGCCCGCATGGCGCCCCAGGGCGAGCTGGCCCGAGCCCCGGCCAGCCCTGTGCAATTGTTGGCGGAAAAGCCAGCGACGAAAATGAGCAAATCCGCACCCGCGGCACTGCCATCGCTGGAGCAGGGCTTGATGGAAATCCTGCAATTGCGGCAGGCAGGAGATAGCAAGGCCGCTGATGAAAAACTGCTGGCGCTGCACAAACGTTTTCCCAAGGAGGACTTGCCGGCGCGGTTGGAGGCTTTGCGTGAGCGTTGA	MIDPKHAPDADDKILIEHLRQHASGEPPASLDAFILATARREAPAPVPSLWQRWLQACQRPRWQMAFATVAGVALMIGLALRSPLPHDELAAPASIEFSADQQKSAVAAAAPPAMPAPAPIARMAPQGELARAPASPVQLLAEKPATKMSKSAPAALPSLEQGLMEILQLRQAGDSKAADEKLLALHKRFPKEDLPARLEALRER				NA	NA	NA	NA	NA
D1-36_00168	1443	davD_1	COG1012	Glutarate-semialdehyde dehydrogenase	ATGCAGCTTAAAGACACCCAGTTGTTCCGCCAGCAAGCCTTTATCGATGGCGCTTGGGTCGATGCGGACAATGGTCAGACGATCAAGGTCACCAACCCGGCTACGGGCGAAGTGCTGGGCACTGTGCCAAAGATGGGCGCTGCCGAAACCCGTCGTGCGATCGAAGCCGCCGACAAGGCGCTGCCGGCCTGGCGTGCGTTGACCGCCAAGGAGCGCGCCAACAAGCTGCGTCGCTGGTACGAATTGCTGATTGAAAACCAGGACGATCTCGGTCGCCTGATGACCCTTGAACAGGGTAAGCCGCTGGCCGAAGCCAAGGGCGAAATCGCTTACGCCGCCTCCTTTATCGAATGGTTCGCCGAAGAAGCCAAGCGCATCTACGGTGACGTGATTCCCGGCCACCAGCCCGACAAACGCCTGATCGTGATCAAGCAGCCGATCGGCGTGACCGCTGCCATTACTCCATGGAACTTCCCGGCTGCGATGATCACCCGCAAGGCCGGCCCGGCCCTGGCCGCCGGTTGCACCATGGTCATCAAGCCCGCTTCGCAAACCCCTTTCTCGGCCCTGGCCCTGGTTGAACTGGCGCACCGTGCCGGCATTCCGCAAGGCGTGCTGAGCGTGGTTACCGGCAGCGCAGGCGATATCGGCGGCGAGCTGACCAGCAACCCAATCGTGCGCAAGCTGTCTTTCACTGGCTCGACCGAGATCGGCCGCCAGTTGATGGCCGAATGTGCCAAGGACATCAAGAAGGTTTCCCTGGAACTGGGCGGCAACGCGCCATTCATCGTGTTTGACGACGCGGACCTGGATAAGGCTGTCGAGGGCGCGATCATTTCCAAATACCGTAACAACGGCCAGACCTGCGTCTGCGCCAACCGCCTGTACATCCAGGATTCGGTGTACGACGCGTTTGCCGAGAAACTCAAGGCAGCGGTTGCCAAGCTCAAGATCGGCAATGGCCTGGAAGACGGCACCACCACCGGCCCGTTGATCGACGAGAAAGCGGTCGCCAAGGTTCAGGAGCACATCGCCGATGCCGTTGGCAAAGGCGCGACCGTGCTGGCGGGCGGCAAGCAGATGGAAGGCAACTTCTTCGAGCCGACCATCCTGACCAACGTGCCGAAAACCGCCGCCGTGGCGAAGGAAGAAACCTTCGGCCCGCTGGCGCCGCTGTTCCGCTTCAAAGACGAAGCCGAAGTGATCGCGATGTCCAACGACACCGAGTTCGGCCTGGCCTCGTACTTCTATGCCCGCGATCTGGGCCGTGTGTTCCGTGTGGCCGAAGCCCTGGAATACGGAATGGTCGGCGTCAACACCGGGTTGATCTCCAATGAAGTCGCGCCGTTCGGCGGCATCAAAGCTTCGGGCCTGGGCCGTGAAGGCTCCAAGTACGGCATCGAGGACTACCTGGAAATCAAATACCTCTGCCTGGGTATCTGA	MQLKDTQLFRQQAFIDGAWVDADNGQTIKVTNPATGEVLGTVPKMGAAETRRAIEAADKALPAWRALTAKERANKLRRWYELLIENQDDLGRLMTLEQGKPLAEAKGEIAYAASFIEWFAEEAKRIYGDVIPGHQPDKRLIVIKQPIGVTAAITPWNFPAAMITRKAGPALAAGCTMVIKPASQTPFSALALVELAHRAGIPQGVLSVVTGSAGDIGGELTSNPIVRKLSFTGSTEIGRQLMAECAKDIKKVSLELGGNAPFIVFDDADLDKAVEGAIISKYRNNGQTCVCANRLYIQDSVYDAFAEKLKAAVAKLKIGNGLEDGTTTGPLIDEKAVAKVQEHIADAVGKGATVLAGGKQMEGNFFEPTILTNVPKTAAVAKEETFGPLAPLFRFKDEAEVIAMSNDTEFGLASYFYARDLGRVFRVAEALEYGMVGVNTGLISNEVAPFGGIKASGLGREGSKYGIEDYLEIKYLCLGI	PGPT0001580_4259	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_TRIGONELLINE_USAGE	PLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135	NA	NA
D1-36_00170	1278	davT_1	COG0160	5-aminovalerate aminotransferase DavT	ATGAGCAAGACTAACGCTGACTTGATGGCCCGCCGTACCGCCGCTGTTCCCCGTGGCGTCGGCCAGATCCACCCGATCTTCGCCGAATCGGCAAAGAACGCTACCGTAACGGACGTTGAAGGTCGCGAATTCATCGACTTCGCCGGCGGCATCGCCGTGCTGAACACCGGCCACGTGCATCCGAAAATCATCGCCGCCGTGACCGAGCAGCTGAACAAGCTGACCCACACCTGTTTCCAGGTCCTGGCCTACGAGCCGTACGTGGAACTGTGCGAAAAAATCAACGCCAAGGTTCCTGGTGACTTCGCAAAGAAAACCTTGCTGGTCACCACTGGTTCCGAAGCGGTGGAAAATGCCGTGAAAATCGCCCGCGCCGCCACTGGCCGTGCCGGTGTGATCGCGTTCACCGGCGCTTACCACGGTCGTACCATGATGACCCTGGGCCTGACCGGTAAAGTCGTACCGTACTCGGCCGGCATGGGCCTGATGCCCGGCGGTATCTTCCGCGCGCTTTACCCGAACGAATTGCATGGTGTGAGCATCGACGACTCCATCGCCAGCATCGAGCGCATCTTCAAGAACGATGCCGAGCCACGCGACATTGCCGCCATCATCATCGAGCCGGTTCAGGGCGAGGGTGGTTTCTATGTGGCGCCGAAAGCGTTCATGAAGCGCCTGCGCGCCTTGTGCGACCAACACGGCATCCTGCTGATCGCTGACGAAGTGCAGACCGGTGCCGGCCGTACCGGAACTTTCTTCGCCATGGAGCAGATGGGCGTTGCCGCCGACCTGACTACCTTCGCCAAGTCCATCGCCGGCGGCTTCCCGTTGGCCGGTGTCTGTGGCAAGGCCGAATACATGGATGCCATTGCACCGGGCGGCCTGGGCGGCACCTACGCGGGTAGCCCGATTGCCTGTGCCGCCGCGCTGGCGGTGATGGAGGTGTTCGAAGAAGAACATCTGCTGGATCGCTGCAAGGCCGTTGGCGAGCGCTTGGTGACCGGCCTCAAGGCCATCCAGAAGAAATACCCGGTCATTGGCGAAGTGCGTGCCCTGGGCGCGATGATTGCCGTGGAGCTGTTCGAAAATGGCGACACCCACAAGCCGAACGCTGCGGCAGTGGCCCAGGTTGTGGCCAAGGCCCGGGACAAGGGCCTGATTCTGCTGTCCTGCGGCACCTACGGCAACGTCCTGCGGGTGCTGGTACCGCTGACCTCGCCGGACGAGCAGTTGGACAAAGGCCTGGCGATCATCGAAGAATGCTTCTCCGAGCTCTGA	MSKTNADLMARRTAAVPRGVGQIHPIFAESAKNATVTDVEGREFIDFAGGIAVLNTGHVHPKIIAAVTEQLNKLTHTCFQVLAYEPYVELCEKINAKVPGDFAKKTLLVTTGSEAVENAVKIARAATGRAGVIAFTGAYHGRTMMTLGLTGKVVPYSAGMGLMPGGIFRALYPNELHGVSIDDSIASIERIFKNDAEPRDIAAIIIEPVQGEGGFYVAPKAFMKRLRALCDQHGILLIADEVQTGAGRTGTFFAMEQMGVAADLTTFAKSIAGGFPLAGVCGKAEYMDAIAPGGLGGTYAGSPIACAAALAVMEVFEEEHLLDRCKAVGERLVTGLKAIQKKYPVIGEVRALGAMIAVELFENGDTHKPNAAAVAQVVAKARDKGLILLSCGTYGNVLRVLVPLTSPDEQLDKGLAIIEECFSEL	PGPT0007655_83	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	INSECTICIDAL_COMPOUNDS	INSECTICIDAL-GAMMA-AMINOBUTYRIC_ACID_BIOSYNTHESIS,PGPT0007655-davT|gabT-K14268	NA	NA
D1-36_00171	1215	rssB_1		Regulator of RpoS	ATGACGGCTGTGGATTTACCCGCTGGACCGCGCGTATTGATTGCCGAGGCCGATCCAGCGTCTAGAGAATTGCTGGAGCAAGCGGTGTCAGAGGTGCGTTGCGACGCCCGGGTGCAGACCTGTGGCGAAGGAAAGCAGGCGCTGGAGCTGCTGGCCCAAGACCCATACGACTTGGTCATCGCCGACTGGGAACTGCCGGGCGTCGATGGCTTGAGCATCTTGCGCGGTTTGCGTCAGCAGCGCCGCTCCCCCGTGTTGCCATTCATCCTGGTGAGCCAGCGCAACGACAGCGCCAGCGTGCGGGAGGTATTGCCGCTGGCGCCGGCGGCGTACCTGACCAAACCCTTGAACCGGGAAAACCTGACCCAGCGCCTGCAAGGGCTGCTCTTGAGTGGTGAAGACACCTCCAATGCCGCGCCCATCCCAGGACCAGCGCTGACATTGGCGACTTTCCTGGAGCGTCGACGGGATCTGGCCGAAGGCGCGCCGTTGATGACCGATGTGCAAGTGGCGATCAAGCGTAGCCTCAATCCCGGTGGGCTGGATCTGAAACTGCTGGAAGATGAGATCCGCACCGACCCGCAGATCACCGCAGTGCTGATCGCCGCGGCCAACAGTGCTGCCCAGCACCAGGGCGGCGGCCCCGTACAGACCGTAGCCCAGGCGTTGCACCAGCTCGGTACCGGGCAAAGCATGAATCTGATTCTCGGCCTGACGCTCAAGCGCTGTGCCCGGCTGAGTGTCCCTTGCCTGGCGGACTATGCCGAACGGTATTGGGAATTGTCGCTGCACACCGCCGAGTACGCCCGGACCATGGCCCGCCTGCTCGACTTGGATCAGGAGCGCTGCTATTGCGCCGGCCTGTTGCATCGCTTGGGCGACTTGGCGCTGTTGCGCTGTCTGGAAGAGTGGAAGCAAGCCGGTGGTGAGCTGGATGAGCCCGAGGAGGTCGGGGATTCGCTCGAAGCGTTCGGCGCTGGCTTCGGCTCGGCACTGCGCGCCCGCTGGCGGCTGCCGCTGGAGCTGCGGGAATTGATCGCAGCGGTCTATGGCTTGGGTGGCGGGGTCTATTCCCGCGAGGCGCTGGTGATGAACATGGCCGCGCAACTGGCCCATCTGCCATCCCAGCAAGGCCTGGAAGAACTGGCTCGGGGCCGCACGGCGCGATTGTTGAAGATCGGGCTGCCGGAATTGATGCGGCTGCGCCGTCAGTAA	MTAVDLPAGPRVLIAEADPASRELLEQAVSEVRCDARVQTCGEGKQALELLAQDPYDLVIADWELPGVDGLSILRGLRQQRRSPVLPFILVSQRNDSASVREVLPLAPAAYLTKPLNRENLTQRLQGLLLSGEDTSNAAPIPGPALTLATFLERRRDLAEGAPLMTDVQVAIKRSLNPGGLDLKLLEDEIRTDPQITAVLIAAANSAAQHQGGGPVQTVAQALHQLGTGQSMNLILGLTLKRCARLSVPCLADYAERYWELSLHTAEYARTMARLLDLDQERCYCAGLLHRLGDLALLRCLEEWKQAGGELDEPEEVGDSLEAFGAGFGSALRARWRLPLELRELIAAVYGLGGGVYSREALVMNMAAQLAHLPSQQGLEELARGRTARLLKIGLPELMRLRRQ				NA	NA	NA	NA	NA
D1-36_00172	990			hypothetical protein	ATGGTCGATAAGAACCTACAGGATTCATCCCAGCCGCATTGGCCCGAAGCGGCCCAGACACTCATGGCGCTGATGCACGCCCAGGGCGAAGTTGCGCGCCTGAGCGAGCGGGAGCAGCTGTTCAGTTCGCTGTTGGTCAGCGTCAACGCGGTGCTGTGGGCATTCAATTGGGAAACCCGGCAAGTACTGTACGTCAGCCCGGCTTACGAGCGGATTTTCGGCCGGCCTGCGGGCCTGGTGCTGGCCGACTACAACGAATGGCGCGACGCCATCTACCCGGACGACCTGGACTACGCCGAGCGCAGCCTGGCGGAAGTGCTGGTCAAAGGCGCCGTCGAAGATCGCGAGTACCGGATCATCGCCGCCGATGGCCAGATTCGTTGGCTCAGCGACAAATGCTTCATCAACCGTCAGGCTGATCCGGGCCAACCGGTGATCGTCGTCGGCATTGCCGAAGACATCACCGAGAAAAAGCTGCTCGAAAGCGAACTTCAGCGCCTGGCGACCACCGACGTACTGACCCAGAGCAGCAACCGCCGCCACTTCTTCGAATGCGCCCATCGTGAATTTGAGCAGGCACGGTTGCAAGGCACCCCCATGGCGTTCCTGCTGCTCGACATCGATGATTTCAAGTTGATCAACGATACCTACGGCCATCAAGAAGGCGATACGGTATTGCAGAAGATCGCAGAGAGCGGACGCAGCGTGCTCAGGCGCGGTGACTTGTTCGGGCGGATCGGCGGTGAAGAGTTCGCCGCTGTGTTTCCAGGCTGCCCACCGGACATGGCGCTGCAGGTCGCTGAACGCCTGCAACGGGAAATTCAACGCCTGGCGTTCCGCTGTGGCGAGCAAAACTTCGGCATCACCGTCAGCCAGGGCCTGACCGGTATCACCGCCGAAGACCAGACCCTCGACAGCCTGTTCTCCCGCGCCGACGCGGCCATGTACGAGGCCAAGCGTCAGGGGAAGAACCGCATCATCGCAGTTTGA	MVDKNLQDSSQPHWPEAAQTLMALMHAQGEVARLSEREQLFSSLLVSVNAVLWAFNWETRQVLYVSPAYERIFGRPAGLVLADYNEWRDAIYPDDLDYAERSLAEVLVKGAVEDREYRIIAADGQIRWLSDKCFINRQADPGQPVIVVGIAEDITEKKLLESELQRLATTDVLTQSSNRRHFFECAHREFEQARLQGTPMAFLLLDIDDFKLINDTYGHQEGDTVLQKIAESGRSVLRRGDLFGRIGGEEFAAVFPGCPPDMALQVAERLQREIQRLAFRCGEQNFGITVSQGLTGITAEDQTLDSLFSRADAAMYEAKRQGKNRIIAV				NA	NA	NA	NA	NA
D1-36_00173	1185			hypothetical protein	ATGTGGTACGAAGGTTTTCTTGGCTTGTCGCCCTGGTCGCTGGTGGCAGTCACCCTGCTGATGACCCACGTGACGATCATCAGCGTCACGGTCTACCTGCACCGTTATTCGGCTCACCGTTCCCTGGAACTGAACGCCGGTCTCAAACATTTCTTCCGCTTCTGGCTGTGGCTGACCACGGCGCAGAACACCCGCGAGTGGACGGCCATCCACCGCAAGCACCACGCCAAATGCGAAACCGAGGATGACCCTCACAGCCCGGTCGTCAAAGGCTTGTCCACGGTGCTGCGCAAAGGCGCCGAGCTGTACCGCGCCGAGGCGCAAAACCTGGAAACCCTGCGCATCTACGGCAAGAATTGCCCCGACGACTGGATCGAACGCAACCTCTATAGCCGTTTCCCGTTGTTGGGCGTAGCGATCATGGGCGTCATCGACCTGCTGCTTTTCGGCACCATCGGCATCACCATCTGGGCCATCCAGATGATGTGGATTCCTGTCTGGGCCGCTGGCGTGGTCAATGGCCTGGGCCATGCCGTGGGCTATCGCAACTTCGAGTGCCGCGACGCGGCGACCAACCTGGTGCCATGGGGCATCCTCATCGGCGGCGAAGAACTGCACAACAACCACCACACCTACCCCAACTCGGCCAAGCTGTCGGTGCGCAAATGGGAATTCGACCTGGGCTGGGCCTGGATCAAGGTCTTCAGCTTCCTGCGCCTGGCGAAGGTTCAGCGGGTCGCGCCGATTGCCCACCGGGTCGAAGGCAAGGGCCATCTGGACATGGACACCGCCATGGCGATCCTCAACAACCGTTTCCAGATCATGGCCCAGTATCGCCGGCTGGTCATCGCGCCGCTGGTCAAGCAGGAACTGGAAAAGGTCGATCACTCGGTCCGCCATCAGTTCCATCGGGCCAAACGCCTGCTGTCCCGGGAAACCAGCCTGTTGGATGACCGCCACCATGTGCGTATCCAGAACATGCTGGAGCATAGCCAGGCGCTGAAGGTGATCTACGAAAAACGCCTGGCCTTGCAGCAGATCTGGGTCAAGACCAGCAGCAACGGCCACGACATGCTCGCCGCCATCAAGGAATGGGTCCACGAAGCGGAAGCCAGTGGCATCCAGTCCCTGCGCGACTTCGCCGACCAGCTCAAGACCTATTCGCTGCGCCCTGCCACGGCCTGA	MWYEGFLGLSPWSLVAVTLLMTHVTIISVTVYLHRYSAHRSLELNAGLKHFFRFWLWLTTAQNTREWTAIHRKHHAKCETEDDPHSPVVKGLSTVLRKGAELYRAEAQNLETLRIYGKNCPDDWIERNLYSRFPLLGVAIMGVIDLLLFGTIGITIWAIQMMWIPVWAAGVVNGLGHAVGYRNFECRDAATNLVPWGILIGGEELHNNHHTYPNSAKLSVRKWEFDLGWAWIKVFSFLRLAKVQRVAPIAHRVEGKGHLDMDTAMAILNNRFQIMAQYRRLVIAPLVKQELEKVDHSVRHQFHRAKRLLSRETSLLDDRHHVRIQNMLEHSQALKVIYEKRLALQQIWVKTSSNGHDMLAAIKEWVHEAEASGIQSLRDFADQLKTYSLRPATA	PGPT0012215_919	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	FUNGICIDAL_COMPOUNDS|ANTIBIOTICS	FUNGICIDAL-MOTILITY-MEDIATED_DEFENSE_SIGNALLING,PGPT0012215-desC-K00507	NA	NA
D1-36_00174	1908			hypothetical protein	ATGACCAACTCTCAACGCACCGCCATGCGCGGGGCATTGATTTACCTTCTGCTATCCGTTGCCTGGCTGCAGCTGGTTGGTTATTTACTGAGCAGTTTCTTCGATGATTCCGCCGACCGGCTTCGCTGGCAACTGATCAACGGTTATGCCTGGGCGCTGGTCAGCGCCGTGCTGATTTTCATGGCTCGGGTGCGCATCGCGCGTGGTTTGCTCAGGGGCGAGGGCACTGTCGATCGTGAGCGATTGCGCCAGGCCGCCGCTGTCTTCGATTGCACCCGCGAAGGGGTCCTGGTCACGGACCGTCAAGGCCTGATCGTGCATGTCAATCCAGCGTTCATGGCGATCACCGGTTACGCCCGCGACGAGGTGCTGGGCCGTCAACCCAACCTGTTCAAGTCCGGCCGGCATGGCCCGGCGTTCTACCGGGAAATGTTCGCTTCGCTGTCCAGCCGTGGCGAATGGAGCGGCGAAATCTGGAACCGCCGCAAAAGCGGAGAGATTTATCCGCAATGGCAGACCATCCGTGCCGTTGTCGATGACGAGGGCGAAGTCAGTCAATACGTGGCGGTGTTTTCCGACATCAGTGCAATCAAGGATTCGGAGCATGAGCTGGCGCACCTGGCCCATCACGACCCGCTGACCGGCCTGCCCAATCGCCTGCTTTTTTGCGACCGCACCGAGCAAACCGTGGCTTCGGCGCAGCTTCACAAGCGTGGGTGCGCGCTGCTGCTGTTGGATCTCGACCACTTCAAGAACATCAACGATAGCCTCGGCCATGCCGTGGGAGATGAATTACTCAAAAGCGTGGCCCAGCGCTTTCTCGGGTTGTTCGCGCCGGGCATCACCCTGGCCCGGCTAGGCGGCGATGAGTTCGCGGTGGTGGTGGAAAATTGTTCTCAGCCAGGGCAGGCGGCGGCCTTGGCCAGGCGCATCCTTGATGTATTGAAAGAGCCTTTGCAGCTCGGCGGACAGTCGCTGTTTATCAACGCCAGCATCGGTATCAGCCTGTTTCCCGGCGACGCTCTCAGCGCCGAGCAATTGCTGCGCAACGCCGATTCGGCACTGTTCAAGGCCAAGAGCAGTGGGCGCGATGGGTATGCCTTGTATACCGAAGAACTCACCACCCATGCCCAACAGCGGGTGGAGATCGGGTTCGAGCTGCGACGCGCGCTACAGCAAGACGAACTGCGTGTGCATTACCAACCGGTACACGACCTGGCGACCAGCCGTCTGGTCGGGGTCGAGGCCTTGGTACGCTGGGAGCATCCCACGCGTGGGCTGGTGTCGCCGGCCGAGTTCATTCCCATCGCCGAGCGTACGGGGCTGATCGCCCAGATCGATGCCTGGGTCATGAAGCAGGCCTGTCGCCAGATGGGAGAGTGGCAGCAGGCCGGGGTGGTGCTGTCGTTCGTGGCGGTCAATGTCTCCAGCCGCCTGTTCGCACGTCGCGAATTGTATGAGCAAGTCGCCCGCGTGCTGCACGAGACTGGCCTTGACCCGGCCCTGCTCGAATTGGAAGTCACCGAAAGCGCAGTCATGGAAGACCCGGAAGTCGCGCTGGAACAAATGCACCGTTTGCGCGAATTGGGCGTGCGCCTGGCCATCGATGACTTCGGCACGGGTTATTCATCGCTGCTGCGGCTCAAGCGTTTGCCGGTGCAGAAACTGAAGATCGACCAGGGGTTTGTCGCCGGGTTGCCCTGGGATGAAGATGACGCGGCGATCGTTCGCGTGATCATCGCCCTGGCTCACAGCATGGGCATGCAGGTGCATGCCGAGGGCATTGAACAACAGGAGCAAGCGGCGTTTCTGCTGGGCCAGGCGTGTGAGCTGGGGCAGGGATATTGGTTTGGCCGGCCGGTGGCTGCGTCGCAGTTGGATTGGGATCGGGCGCCGGTGATTGCCTGA	MTNSQRTAMRGALIYLLLSVAWLQLVGYLLSSFFDDSADRLRWQLINGYAWALVSAVLIFMARVRIARGLLRGEGTVDRERLRQAAAVFDCTREGVLVTDRQGLIVHVNPAFMAITGYARDEVLGRQPNLFKSGRHGPAFYREMFASLSSRGEWSGEIWNRRKSGEIYPQWQTIRAVVDDEGEVSQYVAVFSDISAIKDSEHELAHLAHHDPLTGLPNRLLFCDRTEQTVASAQLHKRGCALLLLDLDHFKNINDSLGHAVGDELLKSVAQRFLGLFAPGITLARLGGDEFAVVVENCSQPGQAAALARRILDVLKEPLQLGGQSLFINASIGISLFPGDALSAEQLLRNADSALFKAKSSGRDGYALYTEELTTHAQQRVEIGFELRRALQQDELRVHYQPVHDLATSRLVGVEALVRWEHPTRGLVSPAEFIPIAERTGLIAQIDAWVMKQACRQMGEWQQAGVVLSFVAVNVSSRLFARRELYEQVARVLHETGLDPALLELEVTESAVMEDPEVALEQMHRLRELGVRLAIDDFGTGYSSLLRLKRLPVQKLKIDQGFVAGLPWDEDDAAIVRVIIALAHSMGMQVHAEGIEQQEQAAFLLGQACELGQGYWFGRPVAASQLDWDRAPVIA	PGPT0023624_129	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-GGDEF|EAL|PAC|PAS-DOMAIN-CONTAINING_PROTEIN,PGPT0023624-GGDEF|EAL|PAC|PAS_domain_containing_protein-NA	NA	NA
D1-36_00175	183			hypothetical protein	ATGAGCGCATCCCTACGTAGCGTTGACGGCCAGGACGAAGCAACCATCTTGCGCGAGATCCAGAGCGCATTGCGTGACCTGCGCTTTGGCGCGGTGGAAATCACGGTGCACAACGCGCAGGTGGTCCAGATCGAGCGCAAGGAAAAATTCCGCCTGCAGCAACCGAGTCAGAAACCGAGTTAA	MSASLRSVDGQDEATILREIQSALRDLRFGAVEITVHNAQVVQIERKEKFRLQQPSQKPS				NA	NA	NA	NA	NA
D1-36_00176	1014	sbp_1	COG1613	Sulfate-binding protein	ATGTCGTCGATTCGCCGTTATGCCTTGGCCGCCCTGGCCAGCGCTGTTTTTGCAGGTTCCGCGGTTGCCAAGGATTACGAGCTGCTCAACGTGTCCTACGACCCGACCCGCGAGTTGTATCAAGAGTACAACGCCGAATTCGCCAGTTTCTGGAAGAAAGCGCATCCGGATGACACGGTGAAGATCCAACAGTCCCACGGCGGCTCGGGCAAGCAAGGCCGGGCGGTGATCGATGGTCTGCGCGCCGACGTGGTGACCCTGGCCCTGGCCGGCGACATCGACGAAATCGCCAAGCTGGGCAAATCCCTGCCAGCGGACTGGCAAACACGCCTGCCAGATGCCAGCACGCCTTACACTTCGACCATCGTCTTCTTGGTGCGCAAGGGCAACCCCAAGGGCATCAAGGATTGGGGCGACCTGATCAAGGATGACGTGTCGGTCATCACACCGAACCCGAAAACCTCCGGCGGCGCTCGCTGGAACTTCCTCGCCGCTTGGGCCTATGGCTTGAAAGCCAACGGTGGCGACGAGGCCAAGGCCAAGGAATATGTGCAAGCGCTGTTCAAGCACGTGCCGATCCTGGACACCGGCGCCCGCGGTTCGACTATCACGTTCGTCAACAACGGCCAGGGCGATGTGTTGCTGGCTTGGGAAAACGAAGCCTTCCTGGCGCTGAAAGAAGACGGTGGCGCCGACAAGTTCGATATCGTCGTGCCGTCGCTGTCGATCCTCGCCGAACCGCCGGTGGCGGTTGTGGACAAGAATGCCGAGAAAAAAGGTAATGCCGAGATCGCCCAGGCGTACCTCAAGCACCTGTACAGCCCGGCCGGCCAGGAAATTGCCGCGAAGAACTACTATCGCCCGCGTGACAAGGACGTGGCCGCCAAGTATTCCCGCCAGTTCCCGAAGGTGGAGCTGGTGACCATCGATAAGGACTTCGGCGGCTGGAAAACTGCCCAGCCGAAATTCTTCAACGATGGCGGTGTGTTCGACCAGATCTATCAGGCGCAGTAA	MSSIRRYALAALASAVFAGSAVAKDYELLNVSYDPTRELYQEYNAEFASFWKKAHPDDTVKIQQSHGGSGKQGRAVIDGLRADVVTLALAGDIDEIAKLGKSLPADWQTRLPDASTPYTSTIVFLVRKGNPKGIKDWGDLIKDDVSVITPNPKTSGGARWNFLAAWAYGLKANGGDEAKAKEYVQALFKHVPILDTGARGSTITFVNNGQGDVLLAWENEAFLALKEDGGADKFDIVVPSLSILAEPPVAVVDKNAEKKGNAEIAQAYLKHLYSPAGQEIAAKNYYRPRDKDVAAKYSRQFPKVELVTIDKDFGGWKTAQPKFFNDGGVFDQIYQAQ	PGPT0003015_1119	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SULFATE|THIOSULFATE_TRANSPORT,PGPT0003015-sbp-K23163	NA	NA
D1-36_00177	819	cysT	COG0555	Sulfate transport system permease protein CysT	ATGTCGCGTCGCATATCCCCCGTCATACCCGGCTTCGGGCTGACGCTGGGCTACACCCTGGTGTACCTCAGTCTGATTGTGCTCATACCCCTGGCGGCGATGTTCGTGCATGCCGCCCAACTCACCTGGGATCAGTTCTGGGCGATTATCTCGGCGCCGCGGGTGCTGGCTGCCTTGAAGCTCAGCTTCGGCACCGCGCTGTGTGCCGCGATCATCAACGGCGTGATCGGCACGCTGCTGGCTTGGGTGCTGGTGCGCTACACCTTCCCCGGCCGCAAGGTCATCGATGCGATGATCGACCTGCCCTTCGCCCTGCCCACCGCCGTGGCCGGTATCGCGCTGACGGCGTTGTATGCGCCGACCGGCCTGGTTGGCCAGTTCGCCACCGACCTGGGTTTCAAGATCGCCTACACCCCGCTGGGCATTACCCTGGCGCTGACCTTCGTGACGCTGCCGTTCGTAGTGCGCACGGTGCAACCGGTGCTGGCCGACATTCCTCGTGAGGTCGAAGAGGCCGCTGCTTGCCTAGGGGCGAAACCCTGGCAGGTGTTCCGACACATCCTGATGCCCGCGCTGTTGCCGGCCTGGTTGACCGGGTTCGCCCTGGCTTTCGCCCGTGGCGTGGGCGAGTACGGCTCGGTGATTTTCATCGCCGGCAACATGCCGATGAAAACCGAGATCCTGCCGCTGCTGATCATGGTCAAGCTCGACCAATACGACTACACCGGCGCCACTTCCATCGGCGTGCTGATGCTGGTGGTTTCCTTCGTCCTGTTGCTGCTGATCAACTTGCTGCAGCGGCGCATCGAAACCCCATAA	MSRRISPVIPGFGLTLGYTLVYLSLIVLIPLAAMFVHAAQLTWDQFWAIISAPRVLAALKLSFGTALCAAIINGVIGTLLAWVLVRYTFPGRKVIDAMIDLPFALPTAVAGIALTALYAPTGLVGQFATDLGFKIAYTPLGITLALTFVTLPFVVRTVQPVLADIPREVEEAAACLGAKPWQVFRHILMPALLPAWLTGFALAFARGVGEYGSVIFIAGNMPMKTEILPLLIMVKLDQYDYTGATSIGVLMLVVSFVLLLLINLLQRRIETP	PGPT0003000_1639	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0003000-cysT|cysU-K02046	NA	NA
D1-36_00178	870	cysW_1	COG4208	Sulfate transport system permease protein CysW	ATGTCCCAATCGTCTATTTCCGCCGCTTCCACCAACGCCGCCCGTCGCGGCAGCGCGACGTCGCGGCGCGTGCTGATTGGCCTCGGCTGGCTGATCTTTGCGCTGTTTCTGCTGCTGCCGTTGTTCGTCGTCGTGTCCCAGGGCTTGAAGTCCGGCCTTGGGACGTTCTTCGCGGCAATCTTTGAGCCTGACGCCTTATCGGCGCTCAAACTCACGGTGTTCGCGGTGTTGATTTCGGTGCCGCTGAACCTGGTGTTCGGCGTGAGCGCCGCGTGGTGCGTGAGTAAATATTCATTCCGCGGCAAGAGCATGCTGGTGACGCTGATCGACCTGCCGTTCTCGGTGTCGCCAGTGATCGCGGGCCTGGTCTACGTGCTCATGTTCGGCGCCCAGGGGCTTTTCGGGCCGTGGCTGTCGGATCACGACATCCAGATCGTGTTTGCGCTGCCGGGCATCGTCCTGGCGACGATCTTCGTCACGGTGCCGTTCGTGGCCCGTGAGCTGATCCCGCTGATGCAGGAACAAGGCACCCAGGAAGAAGAGGCCGCGCGCCTGCTCGGCGCCAATGGCTGGCAGATGTTCTGGCATGTCACCGTGCCGAACATCAAGTGGGGCCTGATCTATGGCGTGGTGCTGTGTACCGCCCGGGCCATGGGCGAGTTCGGCGCGGTGTCGGTGGTGTCCGGGCACATTCGGGGGGTGACCAACACCCTGCCGCTGCACGTCGAGATCCTCTACAACGAATACAACCACGTGGCCGCGTTCGCCGTGGCGAGCCTGTTGCTGATCCTGGCGCTCTTCATCCTGCTGCTCAAGCAGTGGAGCGAAAACCGAATCAACCGCCTGCGCGCCAGCGCCGCGGAGGAATAA	MSQSSISAASTNAARRGSATSRRVLIGLGWLIFALFLLLPLFVVVSQGLKSGLGTFFAAIFEPDALSALKLTVFAVLISVPLNLVFGVSAAWCVSKYSFRGKSMLVTLIDLPFSVSPVIAGLVYVLMFGAQGLFGPWLSDHDIQIVFALPGIVLATIFVTVPFVARELIPLMQEQGTQEEEAARLLGANGWQMFWHVTVPNIKWGLIYGVVLCTARAMGEFGAVSVVSGHIRGVTNTLPLHVEILYNEYNHVAAFAVASLLLILALFILLLKQWSENRINRLRASAAEE	PGPT0003005_1052	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0003005-cysW-K02047	NA	NA
D1-36_00179	990	cysA	COG1118	Sulfate/thiosulfate import ATP-binding protein CysA	ATGTCGATCGAAGTCCGTAACGTCAGCAAGAATTTCAACGCCTTCCGGGCCCTGGACGACATCAGCCTGGACATCCAGAGCGGTGAGCTGGTGGCGCTGCTCGGGCCATCGGGTTGCGGCAAGACCACCTTGCTGCGGATCATTGCCGGCCTCGAGACGCCGGACCAGGGCAACATCGTCTTCCATGGCGAGGACGTGTCCGGCCACGATGTGCGCGATCGTAACGTCGGGTTCGTGTTCCAGCACTACGCCTTGTTCCGCCACATGACCGTGTTCGATAACGTCGCGTTCGGCCTGCGCATGAAGCCCAAGGGCCAGCGCCCGAGCGAAAGCCAGATCGCGACCAAGGTCCACGAATTGCTGAACATGGTGCAACTGGACTGGCTCGCCGACCGCTACCCCGAGCAGCTGTCCGGCGGCCAGCGCCAGCGTATCGCGTTGGCCCGCGCCCTGGCGGTGGAGCCCAAGGTATTGCTGCTGGACGAACCATTTGGCGCCCTCGACGCCAAGGTCCGCAAGGAACTGCGCCGCTGGCTGGCGCGGCTGCACGAGGACATCAACCTGACGTCGGTGTTCGTCACCCACGACCAGGAAGAAGCCATGGAAGTCGCCGATCGGATCGTGGTGATGAACAAGGGCGTGATCGAGCAGATCGGCTCGCCGGGCGACGTTTACGAAAACCCGGCCAGCGACTTCGTGTATCACTTCCTCGGGGATTCGAACCGCCTGCACTTGGGTGAGGACCGGCATGTGCTGTTCCGTCCTCACGAAGTCTCGCTGTCGCGCTCGGAACTGGAGGACCACCACGCCGCCGAGGTGCGCGACATTCGTCCACTGGGCGCCACCACGCGGGTGACCCTGAAAGTGGAAGGCCAGAGCGAGCTGATCGAGGCCGAAGTGGTGAAGGACCACGACAGCCTGGTGGGGTTGTCGAAGGGCGAAACGTTGTTCTTCAAGCCGAAGGTCTGGCAGAAAGTCTCCAACCTTTAA	MSIEVRNVSKNFNAFRALDDISLDIQSGELVALLGPSGCGKTTLLRIIAGLETPDQGNIVFHGEDVSGHDVRDRNVGFVFQHYALFRHMTVFDNVAFGLRMKPKGQRPSESQIATKVHELLNMVQLDWLADRYPEQLSGGQRQRIALARALAVEPKVLLLDEPFGALDAKVRKELRRWLARLHEDINLTSVFVTHDQEEAMEVADRIVVMNKGVIEQIGSPGDVYENPASDFVYHFLGDSNRLHLGEDRHVLFRPHEVSLSRSELEDHHAAEVRDIRPLGATTRVTLKVEGQSELIEAEVVKDHDSLVGLSKGETLFFKPKVWQKVSNL	PGPT0002990_1616	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002990-cysA-K02045	NA	NA
D1-36_00180	1362			hypothetical protein	ATGAGAATGGAAGTCAGTCGGCACGGCCCTTTCGGTTGTGCCTTGTTAAGCGTTCTGTTGAGTCCTTCTGCCAGCGCCGCCCCCACGTTGTCTCCCCAGATACCTTTCGATGTCACGGTCACCGAACCGGTTTCACTCTCCAGCCTGCAAGCCAATTTCGATGATTTGTCATGGCAGACCTTCATCGCTCTGAATTGGCCGGCCCTGGACAATGGCAACCCCAATACCGGCGTCACCATCGGAAAACAAGACGGGGCAACGGTTTGGGAAAGTTGGAAAGAGAGCTACCAGATTTTTCGTGCGAAAGGGCAGGCACCACTGCCTTGGAATGCGCCGGCGACCCTGCCTGAAGCGTGTAAGTCACTCAAGTCCGGCCGCCTGTTACAACAAATGGGTAAGGTGCCCGACGTGCTGGATGAATTTATCCAGCCCTTCGAGAGCGGTCCGCTGGTGGATCAGAACGGCGTGTATACGCGCAATGAAATCGTGGTCAACCAATCGATGTTCGACGGGATCGTAAACAACGGCCTGTACAGCATCGAAGGCCAGCAGCAGTTCTTCGCCGCGAACCCGAACAACACCGTGGCATTCAGCTGTGGTTCTACCAAGAGCCAGGAAGTCGGCGCGGTGATGGTGAAGGCGTCGTGGAAAGTGCTCGGTCCCAGCGACAAACGACAGGATTTCCATACGGTCGATGCCCTGGTCTACACGCCGGGCAACAGCGACCCGGGTAAAGGGCCGATCGTGGAGGAATCGTGCGTGTCCGAGCCGGTCGGGTTGGTGGGGTTGCACATGGTCCACAAAACCGCCAATGCGGCCCAATGGGTCTGGTCGACTTTCGAGCACGTAAAAAACGTTCCTGAAAAAACCACGCCCGTCGGACAGCGCACGGGCCCTTATCTGTTCTATAACGCCGATAGCCAGAGCGCCATCAATCAGCCTCCGCCACGGCCGTGGAACCCGGCGGTCAAGGCGACGCCTTCGCAAATCGTGCGGGAAGTGCCACTGACCGAGGCGACGAAGACGCTCAACGCCTCCTATCAAGCGCTGTTGCGTACGGCCAATCCACAAAGTGTCTGGGCGAACTATCAGCTGATCAGCACCCAGTGGCCTTCAGACCCGCCGAAGGATTGCCAGGTATCGGCCGCCAACCCGCTGGGTAGCCCAGCGCCGTCGTTCCTGGCCAACGCCACGCTGGAAACCTATATCCAGGGCACCGTTCCCCAGGCGTCCTCCAGCTGCATGGCGTGTCACGGCAATGCGGCGACCCATGTCACCGAATCGCCGCGCACCAGTTTTGCGGACTTCACCTATTTGCTCGAACGCGCACAGTCCACCAGTGGGCAAGGAGCCAAGCAATGA	MRMEVSRHGPFGCALLSVLLSPSASAAPTLSPQIPFDVTVTEPVSLSSLQANFDDLSWQTFIALNWPALDNGNPNTGVTIGKQDGATVWESWKESYQIFRAKGQAPLPWNAPATLPEACKSLKSGRLLQQMGKVPDVLDEFIQPFESGPLVDQNGVYTRNEIVVNQSMFDGIVNNGLYSIEGQQQFFAANPNNTVAFSCGSTKSQEVGAVMVKASWKVLGPSDKRQDFHTVDALVYTPGNSDPGKGPIVEESCVSEPVGLVGLHMVHKTANAAQWVWSTFEHVKNVPEKTTPVGQRTGPYLFYNADSQSAINQPPPRPWNPAVKATPSQIVREVPLTEATKTLNASYQALLRTANPQSVWANYQLISTQWPSDPPKDCQVSAANPLGSPAPSFLANATLETYIQGTVPQASSSCMACHGNAATHVTESPRTSFADFTYLLERAQSTSGQGAKQ				NA	NA	NA	NA	NA
D1-36_00181	513			hypothetical protein	ATGAGTACCAATCTGGACAATTTCGTAGGCCTGTCGTCGGCCCTGATCGGCATTTCGGCCGATCGTCTGGCGCCGCAGATCGACCCGGTCGGTCTGCCGCCGATCTTTCTCGATTACGTGACTGCGCGCATTTCTTCTGACGTGCTCAACGCGTTGCTGACTCAGTACGCCACCCTGGCGGCCGACCATGTACCGCCCGACCAGATTGCCGAGCAAATACTGAAATTCAATATGCAGCCGACGATACCTGACACCGTGCTGGCGGCGCGCTCGATCATGAAGCTGTGGTTGCTAGGCGTCTGGTATCAGCCGTTCGATAGGCTGCCTTTCAAGAAGGACGATTCGGCGGTGGTATCCGACCAGGCCTACATCCACAGCTGGGCCTGGAAGATTGCCCAGGCCCACCCGATGGGCTACAGCGAATCGTTTTTTGGCTACTGGAACAGCACGCCCCCAAGCCTTGAGGATTTGACCGGCGTGCCCGCCAACGGACAGCAAGGAGCGTCGTCATGA	MSTNLDNFVGLSSALIGISADRLAPQIDPVGLPPIFLDYVTARISSDVLNALLTQYATLAADHVPPDQIAEQILKFNMQPTIPDTVLAARSIMKLWLLGVWYQPFDRLPFKKDDSAVVSDQAYIHSWAWKIAQAHPMGYSESFFGYWNSTPPSLEDLTGVPANGQQGASS				NA	NA	NA	NA	NA
D1-36_00182	2202	fdhL		Fructose dehydrogenase large subunit	ATGAGTACTGAACAAGCAGAAGTGGTGATCGTTGGCGCAGGTCTGGCCGGCAGCATTATTGCCTATCAGTTGGGCATGGCGGGTATTGAGGTATTGGTACTTGAATCGGGGCCAGAGATACCGGTCAATCGCGCTCAGTATCTGGAGCGTTTCTATACCGCGACGCTGAAGACCCCAGAGTCACCCTACCCCCCGAGCACAACGCTGGACCCACACCTCACCGGGCCGGCCAAGCTGAACGCTCCGCGAGCAACCATTGCCGACCTGCTCAATGACAACTGGAACAAACCGGCGGTCAGCTACCTGGTACAAAAAGGCCCGCTGCCCTTCACAAGTACTTATGAACGGGTAGGTGGCGGCACGACATGGCATTGGGTGGGCACCTGTCTGCGCATGGTGCCGAACGATTTTCGTCTGAGGTCGAAATATGGCGTCGGGGTGGACTGGCCGATTGGCTATGACGATCTGCAAAGCGCCTACTGCCGGGCGGAAGCGGAAATCGGGGTGTCTGCCAACGTTGCCGACCAAGCCTATCTGGGCATGACCTTTCCTGAAGGTTATGCGTTCCCGATGCACAGCATTCCGTTATCCCTGGTCGATGGCAGCTTTGTCGCCGCCGTCACGGGGCAGACGTTCGATAATTTGCCGCTGGTGGTCAGCCCGACGCCGGCCGGGCGCAACTCTCAGCCTTATGCCGGGCGCCGGGTATGCGCCGGTAACACCAACTGCACGCCGATCTGTCCGATCCAGGCCAAGTACGACGCCACCGTGACCATGAACAAGGCCTTGGCCACTGGCAAGGTCCGAGTGCTTTATCGGACCGTGGCCAGCAAGGTAACCGTTGGTGATGATCACAACGTAAGCGGCGTCGAGTTCATGCAGTATCAGTTGGAAGACGGTCCCAAGACCGGAACCGGCGTGGCCGTTGCAAAGCGCTATGTGATCGCCGCCCATGCGATCGAAACACCGAAACTGTTGCTCAACTCCAAGACTGACGTTTGGTCCAATGGTGTCGCCAACAGCAGCGGGCAAGTAGGTCGCAGCCTGGCTGACCATCCCATTTATCTGGCCTGGGGGCTCATGCCCGAGGGCAAGGCGATCTTTCCTTATCGGGGACCGTTGTCGACGGCAGGCATCGAAAGCCTGCGCGACGGCGCCTTTCGCAGCGACCGCGCGGCGTGGCGCATCGAAATTGGTAACGAAGGGTGGAACTGGCCGGCCGGTGATCCCTACACAACGGTCGCCGACTTTATCGACGGGACGAATGTAGGGAAGACCAACCCGAGCAACAAACTGCTATCGGGAACGGCGCTGGTGCGCAAGCTCAACGACGTCTTCACCCGCCAGTTCCGGGTTGGCTTTTTGGTGGAGCAGGTGGAGAAAGATCCCGATCACTCCGAGAGTTATATCCAGCCCTCGACGGATAACCTCACGGATGGGCTCGGCATTGTTCGGCCGGAAATCCATTACGACCTCTCCGACTACACCAGGAAAGGTTTCCAGCAGGCGAAAATATTGGCGACGCACATCATTGAGGACCTGCTCGGTGGTACGGAACTGACGGACATCATCGGGCCTGGATGTTTCACTTACGATGGCGTGCCCTACAGCTTCCAGGGCGCCGGTCATTTGATGGGCACCTATCGCATGGGCGATGACCCCGCCAAGTCGGTCGTCGATAAACACCAGCGCAGTTGGGACCACAAGAACCTGTTCCTGGTGGGCGATGGCGTCTTCCCAAGTACCGGTACCTCGAACCCGAGTCTGACAATCGCCGCGCTGTCGTTCCAGGCCGGGGATACACTGGCCAATGACCTGCGGGCGGTGACGATGCAGGTTCAATCCAACAAGGCCTGGCAGGGCACCGGTGTGCAGCTCAACGCCCAGGTTCCGCGTGTGGTTCGCTATGTCAGCGGCCAGTGGTGCGCCAGCAAAGAGGGTGGGATGGTGGATGGAAACGGTGGCTCGCGGCACATCACCTATTCCAGCTATACGTTGCCCGGCGCGGCTGAAGGTGCGTTGATCGGCCGGGTGGGCGACGGCGGGACGCCGTTTCTGATTGGTGATCGGGCGCAGCTACCCGTGAATCAACAGGGGGAGCTGCAACTGTGCATCAACGATGACTTGACGAGACAGCATGGCGCCGGCCTGACCGACAATGTTGGCGCGCTGACGATTCGGGTCGAGTTCGGTTCGCTGTAA	MSTEQAEVVIVGAGLAGSIIAYQLGMAGIEVLVLESGPEIPVNRAQYLERFYTATLKTPESPYPPSTTLDPHLTGPAKLNAPRATIADLLNDNWNKPAVSYLVQKGPLPFTSTYERVGGGTTWHWVGTCLRMVPNDFRLRSKYGVGVDWPIGYDDLQSAYCRAEAEIGVSANVADQAYLGMTFPEGYAFPMHSIPLSLVDGSFVAAVTGQTFDNLPLVVSPTPAGRNSQPYAGRRVCAGNTNCTPICPIQAKYDATVTMNKALATGKVRVLYRTVASKVTVGDDHNVSGVEFMQYQLEDGPKTGTGVAVAKRYVIAAHAIETPKLLLNSKTDVWSNGVANSSGQVGRSLADHPIYLAWGLMPEGKAIFPYRGPLSTAGIESLRDGAFRSDRAAWRIEIGNEGWNWPAGDPYTTVADFIDGTNVGKTNPSNKLLSGTALVRKLNDVFTRQFRVGFLVEQVEKDPDHSESYIQPSTDNLTDGLGIVRPEIHYDLSDYTRKGFQQAKILATHIIEDLLGGTELTDIIGPGCFTYDGVPYSFQGAGHLMGTYRMGDDPAKSVVDKHQRSWDHKNLFLVGDGVFPSTGTSNPSLTIAALSFQAGDTLANDLRAVTMQVQSNKAWQGTGVQLNAQVPRVVRYVSGQWCASKEGGMVDGNGGSRHITYSSYTLPGAAEGALIGRVGDGGTPFLIGDRAQLPVNQQGELQLCINDDLTRQHGAGLTDNVGALTIRVEFGSL				NA	NA	NA	NA	NA
D1-36_00183	525			hypothetical protein	ATGAAAAGCCTCGTCGATCACCTCAGTCAATACGCGGCCTACCACCGCGACCCGCGTAACATCGTCAGTCATTTCATCGGGATTCCGCTGATCTTCATCGCCGTCGCGGTGCTGTTGTCCCGGCCCGGATGGCCGGTTGGCGCGGTCCTGGTTTCCCCGGCGCTGCTGGTGGCGATGGCGAGTGCCTGGTTCTATCTGCGCCTGGAGTTGCGCCTGGGTGTGTTGATGACGGTGCTGCTGGGCCTAGCCATCTGGCTGGGCCAGGTACTCGCCGCGCAAAGCACAACGGTGTGGCTAGGCAGCGGCCTGGGCATGTTCGTGGTGGGCTGGGTGATTCAGTTCGTCGGTCATTACTACGAAGGGCGCAAACCGGCGTTCGTCGATGACCTGACCGGGTTGATCGTCGGGCCGTTGTTTGTGGTGGTCGAGGCGGGTTTTTTGCTGGGACTCAGAAACGATCTGAAACAGGCCATCGAGGAGCGCGCAGGTCCGGTGGCCCTGCGCAACCAACGTTCGACGGTGTGA	MKSLVDHLSQYAAYHRDPRNIVSHFIGIPLIFIAVAVLLSRPGWPVGAVLVSPALLVAMASAWFYLRLELRLGVLMTVLLGLAIWLGQVLAAQSTTVWLGSGLGMFVVGWVIQFVGHYYEGRKPAFVDDLTGLIVGPLFVVVEAGFLLGLRNDLKQAIEERAGPVALRNQRSTV				NA	NA	NA	NA	NA
D1-36_00184	687	crp	COG0664	CRP-like cAMP-activated global transcriptional regulator	ATGAATACCCATCCCTGGCACTCGCATTTGATGGTCGGTCACTGGTACAGCCATCTGCCTGCTGAGTTACAGCATAGCCTGCTGGACATGTCGCGAGTGCGTCGCCTGGCGCCCGGCCAGCGGCTGTTCCAGCGCGGCGATGCACCGTGCGGCCTGTACGCGGTGCTCGAAGGCGCGGTGCGTATCGGCGCGGTCAGCGAGCAGGGCAAGGAAGCGCTGCTGAGCGTGGTGGAGGCGCCGCATTGGTTCGGTGAAATCTGCCTGTTCGATGGACAACCGCGGACCCATGATGCGGTGGGCGTCGGCCAATGCACATTGCTGCATTTGCCACAGGCTGCGCTGTTGGCTTTTCTTGAAGCACAACCCGTTTATTGGCGTCATCTTGCCTTGTTGATGAGCCACAAACTGCGCCTGACCTTCATCAACCTTGAACACCTGAGCCTGATGCCCGCCCCGGCCCGCGTGGCCCACCGCTTGCTGATGATCGCCGAAGGCTACGGCGAAATCGAACCGGCGCGCCGGGTCTTGCCACTGCCCCAGGAGCAACTGGCGATGATGCTTTCCCTGTCGCGCCAGACCACCAACCAGATCCTCAAGGATTTGCAGGGGCAGGGCATTGTTCACCTCAGTTATGGTGAGATCGAAATCCTCGACATCGAACGGTTGCGAGCCCTGACCACAATCTGA	MNTHPWHSHLMVGHWYSHLPAELQHSLLDMSRVRRLAPGQRLFQRGDAPCGLYAVLEGAVRIGAVSEQGKEALLSVVEAPHWFGEICLFDGQPRTHDAVGVGQCTLLHLPQAALLAFLEAQPVYWRHLALLMSHKLRLTFINLEHLSLMPAPARVAHRLLMIAEGYGEIEPARRVLPLPQEQLAMMLSLSRQTTNQILKDLQGQGIVHLSYGEIEILDIERLRALTTI	PGPT0015075_2255	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
D1-36_00185	1005			putative HTH-type transcriptional regulator	ATGACCGAACCCACTTCCCTCGCCAGCTGGACCCGCGCCCTGCGCAAACAGCTCGATGCACTGGGCCTGGACAGCCAAGCCCTGTGCGTGAAGGCGGGCCTGGACCCCGTGTTGATGGACGACCCGAACGCCCGCTACCCGCTCTCGGCCACCACGCGCCTGTGGACGCTGGCGGTGCAGGCCAGCGGCGATCCGGCGATCGGCTTGCGGGTGTCGCGCTTCGTCAGCCCCACCACGTTCCATGCACTGGGCTACGCCCTGGTAGCCAGCGGCAGCTTGCGTGAAGTGTTCGAGCGCATCGTGCGGTATCACCCGGTGGTCAGCGATGCGCTGACCTTGCAGCTGAGCCGCGGCGATGACCGTTATCGCTTCAGCCTCGATGTACCGGCGGGACGCCCCGCTCCCGCCTTCGAGGCCATCGACGCGGTTGCCGCGATCTACGTGCGCACCTGCCGCAACCGGCTGGGTCGCGACTACGCACCGCTGGCCGTCTACCTGCGCCGCCCGGAACCGCTGGACCCGAGCCCATGGCACAAGGTTTTTCGCGCACCGGTGCATTTCGACGCCGGCCAGGATTGCCTGGAATTCAACCTCCTGGATTTCGACAGCCACCTGGACGACGCGAACCCGGAGCTGGCCGAACACAACGAAACCGTGCTCAAGCGCACCCTCGCCCAGCTTCAGCCGCTGACTTGGGAACGCAAGGTCCGCGCCGCCATCGAAGCCCAGTTGCCCGAAGGCGAACCCAGCGCCGAACGCATCGCCCAAACCATGCATCTGAGCCTGCGCAGCCTGCAGCGACACCTGGCCGACGAAGGCTGCCGCTTCGATGCGCTGCTCAATGAATGCCGGGAGAATCTGGCGCTGCTGCATCTGCGCGATCCGCAGTGCTCGCTGAGCGAGGTCAGCTATCTGCTGGGTTTCGCCGACACCAGCAGCTTCAGCCGCGCGTTCAAGCGCTGGACAGGCATGACGCCGGGCCAGTTTCGGGATGGGTTGCGCTGA	MTEPTSLASWTRALRKQLDALGLDSQALCVKAGLDPVLMDDPNARYPLSATTRLWTLAVQASGDPAIGLRVSRFVSPTTFHALGYALVASGSLREVFERIVRYHPVVSDALTLQLSRGDDRYRFSLDVPAGRPAPAFEAIDAVAAIYVRTCRNRLGRDYAPLAVYLRRPEPLDPSPWHKVFRAPVHFDAGQDCLEFNLLDFDSHLDDANPELAEHNETVLKRTLAQLQPLTWERKVRAAIEAQLPEGEPSAERIAQTMHLSLRSLQRHLADEGCRFDALLNECRENLALLHLRDPQCSLSEVSYLLGFADTSSFSRAFKRWTGMTPGQFRDGLR				NA	NA	NA	NA	NA
D1-36_00186	1074			hypothetical protein	ATGCACGGCACTTGCGCAAGCCCCGAGCGATTGAATGCACAACAGCGAGCCGCCCACATTCGCCAGGTTGTCCTGGCCCGAGGTGAGGAATTGCGTCGGCGCTACCCGATCCTGCAGCACCAGGACGCGCTGGGCGCAGGCATCCTGGCGTTCGCCCTGGCCGGGATGATCGGCTCGGCGCTGCTCTACATCAACGGTCACCTGGCCGGTTGGGCTTGCCTGCTGCTCAACGCGTTTTTCGCCTCGCTGACCCACGAGTTGGAACATGACCTGATCCACAGCATGTACTTCCGCAAGCAACGCGTTCCCCATAACGTGATGATGGGTCTGGTGTGGCTGGCGCGGCCCAGCACCATCAACCCATGGATCCGCCGTCATCTGCACCTCAACCATCACAAAGTATCCGGCAGCGAAGCGGACCTGGAAGAGCGGGCGATTACCAACGGTGAGCCGTGGGGATTGGCGCGTTTGCTGATGGTGGGTGACAACGTGATGTCGGCGTTCATCCGCCTCCTGCGAGCCAAGACCTGGGCGCACAAGCGCAGCATCCTCAAGCGTACGCTGAAGGTGTACTTCCCACTGGCACTGCTGCATTGGGGCGCCTGGTACGTGTTCCTTGGTTTTCATGGGGCCAACGCTGTGGCCGGACTACTGGGCGCTTCCATCGACTGGTCGGCCAATACCCTGGCGACGATGCACATCATCGACATCGCCGCCGTGGTGATCATCGGCCCGAATGTGCTGCGCACCTTTTGCCTGCACTTCATCAGTTCGAACATGCATTACTACGGCGACATCGAGCCGGGCAATGTCATCCAGCAGACCCAAGTGTTGAACCCCTGGTGGCTGTGGCCGTTGCAGGCGTTCTGCTTCAACTTCGGCAGCAGCCATGGCATTCATCATTTCGTGGTGAAGGAGCCGTTCTACATCCGGCAGATGACGGTGCCGGTGGCTCATGAGGTGATGCGGGAGATGGGCGTGCGGTTCAACGATTTCGGCACGTTCGGGCGGGCGAATCGGTTTGCCGGTGAGGAAGGCGTTGTGAGGGAAGAGGCGAAGGCCGTTCAGGCCTGA	MHGTCASPERLNAQQRAAHIRQVVLARGEELRRRYPILQHQDALGAGILAFALAGMIGSALLYINGHLAGWACLLLNAFFASLTHELEHDLIHSMYFRKQRVPHNVMMGLVWLARPSTINPWIRRHLHLNHHKVSGSEADLEERAITNGEPWGLARLLMVGDNVMSAFIRLLRAKTWAHKRSILKRTLKVYFPLALLHWGAWYVFLGFHGANAVAGLLGASIDWSANTLATMHIIDIAAVVIIGPNVLRTFCLHFISSNMHYYGDIEPGNVIQQTQVLNPWWLWPLQAFCFNFGSSHGIHHFVVKEPFYIRQMTVPVAHEVMREMGVRFNDFGTFGRANRFAGEEGVVREEAKAVQA				NA	NA	NA	NA	NA
D1-36_00187	2505	fhuA_1	COG1629	Ferrichrome outer membrane transporter/phage receptor	ATGACTGAGCGCGTAACCCTCAAGACCTCCTTCGGCTGTTCCTCGCAAACCAGCCCTTTGCGCCAAACCGTCCACGCCGCACTGCTGAGCACCGCACTGGGCGTCAGCGCCGTGCCGATGCTCGCTGTCGCCGCGCAGGACGGCGTCACGGCCAGCCGTCAGAGCTACAACATCGCGGCAGGCCCGTTGAACGAGGTGCTGAATCAGTTCGCGCGCCAGGCCGGGATTACCCTGGCGAGCACCCCCGAGCAAACCGCTGGCCGCCAGTCGCCTGGGCTCAAAGGTGACTACTCGGCGGACCAGGCCTTGGACCAGTTGCTCAGCGGTTCGGGGCTGATTGCGGTCGGCCAGGAAGGCAGCGGCTACGTATTGCAGGCCCAGGCCGGGGACAGTGCACTGGCACTGCCGACCACTGACGTCAAGGGCTTCGCCCTGGGTAACGCCTTGGGCAGCATGGCGGGCTACAACGCCACCCACAGCCAAGTCGCGACCAAGACCAGTACCGCCCTGCGAGAGACTTCACAAAGCGTATCGGTGGTGACGCGCGAGCAAATGGACGACCAGGGCGCGCAGACCGTATCCCAGGCGATGCGCTACACCCCCGGCGTGCTGACCAACCCCTACGGTGCGACCCATCGCTACGATTACGTGGCCATGCGCGGCTTCAACGACGGCTCGGTGGATAACATCTACCTCGACGGCCTCAAGTCCATGGGCGACAGCGGCACCTACAGTTCCATGCAGGTCGACCCGTACTTTCTCGAGCGCGTCGACATCCTCAAGGGCCCGTCGTCGGTGCTGTATGGCCGCAGTTCTCCGGGCGGCCTGGTGGCGCTCACCAGCAAAAAACCGCTTTATGAGGCCTACCACCAGGTCCAGGCCACCGTCGGCACCCAGGGCCAGCGCGGCGTGGGCTTCGACTTCAGCGGGCCGGTGGACGATGAAAAACGCATCGCCTATCGCCTGATCGGCCTGGCGGACACCTCCGATACCCAGTTCGATCACAACAAAGAAAAGCGCTTCACCCTGGCGCCCACCGTCAGCATCGACTTCACCGAGGACACCTCGCTGACCCTGCAAGCCTACCTGCAGCACGAACCCGACGGCGGCTACCATGGCGGCGTACCGGCCGACGGCGCACTGCACCCGCGCAACGGTCGGCGGATCTCGGAAAATTTCTTCGAAGGCGAGCCCGGCGTCGACGTTTACGAACGTGATCAGCAGTCGTTCGGTTATCAATTCGAACACCGTTTCAACGATGTCTTCACCGCCCGGCAAAACTTCCGCTACCTGGACTCCGACGTCACCAACAATCAGGTCTATGCCTTCGGCTGGACCAGCCCCACCAGCAACGAGTTGAACCGTTACTACACCGGCGCCGATGAAAAGCTGCATTCGTTCATCGTCGATAACATGCTGCAGGCCGAATTTTTCACCGGCGCGACCAAGCACACCGTGCTGATGGGCGCGGACTACCAGCGGCGCAAGACCGTGGTCGACTGGACCAGCGGCAGCCTCGCCCCGATCAACGCCTTCGACCCGGTCTACGGAAACTCGGCGATCACCAACGTCAGCGCGACCAGCTACGTGCGACGCCTGGAGCAGACCGGTGTCTATCTGCAAGACCTGATCGAAATGGACAAGTGGCGCTTCTCCCTGGGCCTGCGCCAGGACTGGGTCGAAACTTCGGATGAAAACCGCATCGCCGAAGCTGGTCGCCCTGAAGGCACCGAGATCAATGACAAGCGCACCAAGCTCACCGGCCGCGTCGGAGCGCTGTACCTGTTCGACAACGGCCTGGCCCCGTACATCAGCTACTCGGAGTCGTTCAACCCCAACTCCTACGCCGACAGCGCTGGCAATCCACTGGCGCCCACCGACGGCAAGCAGTGGGAACTGGGCTTGAAGTACCAACCGCCAGGCACCGATGATTTGTACACCGCCTCGCTGTTCCGCATCGATCAGGAAAACCTCGCGACCAAGCTGCCCCAGGAAAATTTCTATCGCGCCGTCGGCGCCGTTCGTTCCCAAGGGCTGGAACTGGAAGCGCACGTACAGTTGACCGAGCAGTTCAAAGTGCTGGGCAGCTACACCTTCACCGACATCGAATATTCGAAGTCGATGGTCAGCACTCTGAGCACCCCGACCAACATCATCGAAAACAAAGGCAACTCACCGACCCAGGCCCCGCGCCACATGGCCTCGGTGTGGGCGGACTACAAGTTCGACAGCGGCACGCTCGATGGCTTGCGACTGGGCGGCGGCGTGCGTTATGTCGGCTACAGTTGGGTCGATGCGGAGAACACCATGAAGGTGCCGTCCTACACGTTGTTCGATGCGTCGGTGGGGTATGACCTGGGCAAGGTCGGCTTGAAGGGCGTGGACGTGCGCCTGAACGCGAACAACCTGACCAACGAAACCTACGTCGCCTCGTGCGCCAGCCTGAACTTCTGCTACATGGGCGAAGAGCGCAATGTGGCGGCTACTGTGAGTTATCAGTTCTGA	MTERVTLKTSFGCSSQTSPLRQTVHAALLSTALGVSAVPMLAVAAQDGVTASRQSYNIAAGPLNEVLNQFARQAGITLASTPEQTAGRQSPGLKGDYSADQALDQLLSGSGLIAVGQEGSGYVLQAQAGDSALALPTTDVKGFALGNALGSMAGYNATHSQVATKTSTALRETSQSVSVVTREQMDDQGAQTVSQAMRYTPGVLTNPYGATHRYDYVAMRGFNDGSVDNIYLDGLKSMGDSGTYSSMQVDPYFLERVDILKGPSSVLYGRSSPGGLVALTSKKPLYEAYHQVQATVGTQGQRGVGFDFSGPVDDEKRIAYRLIGLADTSDTQFDHNKEKRFTLAPTVSIDFTEDTSLTLQAYLQHEPDGGYHGGVPADGALHPRNGRRISENFFEGEPGVDVYERDQQSFGYQFEHRFNDVFTARQNFRYLDSDVTNNQVYAFGWTSPTSNELNRYYTGADEKLHSFIVDNMLQAEFFTGATKHTVLMGADYQRRKTVVDWTSGSLAPINAFDPVYGNSAITNVSATSYVRRLEQTGVYLQDLIEMDKWRFSLGLRQDWVETSDENRIAEAGRPEGTEINDKRTKLTGRVGALYLFDNGLAPYISYSESFNPNSYADSAGNPLAPTDGKQWELGLKYQPPGTDDLYTASLFRIDQENLATKLPQENFYRAVGAVRSQGLELEAHVQLTEQFKVLGSYTFTDIEYSKSMVSTLSTPTNIIENKGNSPTQAPRHMASVWADYKFDSGTLDGLRLGGGVRYVGYSWVDAENTMKVPSYTLFDASVGYDLGKVGLKGVDVRLNANNLTNETYVASCASLNFCYMGEERNVAATVSYQF	PGPT0003790_7342	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014	NA	NA
D1-36_00188	999	fecR_1	COG3712	Protein FecR	ATGAAGATTGAGCCGATCGACCCGCCCTCGCGCGGTCGAGGTCCTTCGCAACTGGTGGTCAAGCAAGCGATCCATTGGCTGCTGCGCCTGCGCAACCATGCCGCCAATCCGATCCTTCGCCAACAGTGCGACGCCTGGCGCATCGCCCATCACGATCACGAATTGGCTTGGCAACGGGTGCAATCGCTGCACAGCGAACTCACCTCCAACCTGCGCGCCGTGCCCAGTGCTCATATTGCCCTCGACACCCTGGAGGCCAGCGCCCAGCGCCTCGGTCGACGCCAGGCCCTGAAATTGTTGTCCGGCGTCGCCGTGGTGGGCGCCGCCGCATGGCTGGGCAAGGACCTAGGCTGGCAGCCGTGGCGTGCCGACTTCGCCACTGCCACGGGCGAACGACGCGGTTTCCAATTGCCGGACGGTACACGACTTGAACTCAACACCCGCAGCGCCGCCGACCTCGACTATACCGCCAGCCAGCGTCTGATCACGTTGACCCGCGGCGAAATCATGGTCACCTGTGGCCGAGACCCAGGACGCCCGCTGCTGGTGAAAAGCCGAGAGGGTCTGTTCGAAGGACTGGAAGGGCGCTTCGTCGTGCGCCAGGACAGCGGCTGCACGCGTCTGAGCGTCACCAGCGGCCGGGTCGCCATTCGCTCACATCGCAACAGCGAGGGCGCGCCGATCCACGTGGAGGCAGGGCAAAGCTACCTCGTCAGTTCATCGACAGCGACCCTGGCGCCGCCCCTGGACATGGACGCCGGCGCCTGGGCGGACGGCTTGATCGTGACGCGCAACATGCGCCTGGAAGACTTCCTCAACGAGGTCGGCCGCTACCGCCGGGGCTGTCTGAGATGCGCCGCCTCGGCCGCGGACCTGCGCTTGTCCGGAGTCTTCCGCCTGGATGACATCGACAAAATGCTGGCCGTGCTCCCCCGCACGCTGCCCGTGCAGCTGCATTATCGAACCCGCTGGTGGGTCACGGTGGAACGTGCGGCCTGA	MKIEPIDPPSRGRGPSQLVVKQAIHWLLRLRNHAANPILRQQCDAWRIAHHDHELAWQRVQSLHSELTSNLRAVPSAHIALDTLEASAQRLGRRQALKLLSGVAVVGAAAWLGKDLGWQPWRADFATATGERRGFQLPDGTRLELNTRSAADLDYTASQRLITLTRGEIMVTCGRDPGRPLLVKSREGLFEGLEGRFVVRQDSGCTRLSVTSGRVAIRSHRNSEGAPIHVEAGQSYLVSSSTATLAPPLDMDAGAWADGLIVTRNMRLEDFLNEVGRYRRGCLRCAASAADLRLSGVFRLDDIDKMLAVLPRTLPVQLHYRTRWWVTVERAA	PGPT0003910_3172	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165	NA	NA
D1-36_00189	501	fecI_1	COG1595	putative RNA polymerase sigma factor FecI	ATGTCCTCCCCCCAGTTAGCAGTACAGGCGCTTTATTGCAGCCATCACGGCTGGCTCCACACATGGCTGCGCCACCGACTGGGCAACGCCGCCGATGCGGCTGACCTGGCCCAGGACACCTTCGTGCGCCTGCTGCAACGCACCGAACGCCTGGAACTCACGGCACCGCGCGCCTTCCTGCGCACCATCGCGCAGGGCTTGGTGATCGATCACTGGCGCCGGGAAGAAATAGAACGCGCCTACCTCGAAACCATCGCGCATCTGCCGCAGGCCCAGATCCCAAGTGCCGAAGCCCAAGCCCTGATCCTCGAACTGCTGGAGGGCATTTCCCGCATGCTCGACGGCCTCAAGCCGAAAGTACGCAGGGCGTTCCTGCTTGCACAGTGTGACGGCATGACCCACAAGCAGATCGCCGAGCAAATGGGCATCTCGCTTCGGTCGGTGGAGCGGTACGTCGCCGATGCGCTGTACCACTGCTACGTGCTGCGCTATGAAGATTGA	MSSPQLAVQALYCSHHGWLHTWLRHRLGNAADAADLAQDTFVRLLQRTERLELTAPRAFLRTIAQGLVIDHWRREEIERAYLETIAHLPQAQIPSAEAQALILELLEGISRMLDGLKPKVRRAFLLAQCDGMTHKQIAEQMGISLRSVERYVADALYHCYVLRYED	PGPT0003900_364	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003900-prhI|fecI-K23514	NA	NA
D1-36_00190	1881	mcpA_1	COG0840	Methyl-accepting chemotaxis protein McpA	ATGAATCTTAAGTTCAGCCACAAAATCCTCTTGGCCGCCTCTGGTGTGGTGGTGTTGGCTTTTGCCCTGTTCACGCTCTACAACGATTACCTGCAACGCAATACCATCGGTCGCAGCCTGGAATCCTCCATCGAGCAATCCGGTGACCTGACGGCCAGCAGCATCCAGAACTGGATGAGCGGGCGGGTGCTGGTGTTGGAAAACCTGGCTCAGAACATCGCACACCAAGGGGCGAGCGCCGATTTGCCTGGGCTCGTGGACCAGCCGGCGTTGACCTCGAACTTCCAGTTCACCTACGTGGGCCAGAACACCGGCGTGTTCACTCAACGACCTGACGCGAAGATGCCCGACGGTTACGACCCGCGTCAGCGCCCTTGGTACAAACAGGCCGTGGCCGCCGATAAAACCATGCTGACCCCACCCTACGCGGCGGCAGTGGGCGGCCTGGTGGTGACCATTGCCCTGCCGGTCAAGCACAACGGTGAATTGTTGGGCGTGGTGGGTGGTGACCTGAGCCTGGAAACCCTCGTGAAAATCATCAACTCCGTGGACTTTGGCGGGATCGGTCATGCGTTTTTGGTCAGTGGCGACGGCCAGGTCATCGTCAGCCCGGACAAAGACCATGTAATGAAAAACCTCAAGGACATCTACCCCGGCACCCCTGTGCGTATCGGCAAGGGCATCCAGGAAGTTGAGCTGAACGGGGAGGACCGCATCCTTTCGTTCACCCCGGTGGCAGGTTTGCCGGGCGCCGAGTGGTATATCGGCCTGTCGATCGACAAGGCCAAGGCCTACGCACCGCTGAGCCATTTCCGTACGTCTGCGTTGATTGCGATGTTCATTGCAGTGGCTGCGATTGCGTTGCTGCTGAGTCTGCTCATCCAGGTGTTGATGCGCCCGCTCACCACCATGGGCCGCGCCATGCAGGACATCGCCCAGGGTGAAGGCGACCTGACCCGGCGCCTCGTGGTGCAGGGCAAGGACGAATTCGCGGTATTGGGAGGGTCGTTCAACCAGTTCGTGGAACGTATCCACGCGTCGATCGCCGAAGTGTCTTCCGCCACGCGTCAGGTGCATGACCTGTCGCAACGGGTGATGACATCTTCCAACGCCTCCCTGGTTGGATCGGATGAGCAGAGCGCGCGCACCAATAGCGTGGCCGCCGCGATCAATCAGTTGGGCGCCGCGACCCAGGAAATCGCCCGTAACGCCGCCGATGCCTCGCAACACGCCAGTGGCGCCAGCGAGCAAGCGGACGATGGTCGTCAGGTGGTGGAAAAAACCATCCAGGCCATGACCGAGCTGTCACAGAAAATCAGCCTGTCGTGCACCCAGATCGAAACCCTGAACGCCAGCACCGACAACATCGGGCACATCCTGGACGTGATCAAGGGCATCTCCCAGCAAACCAACTTGCTAGCCTTGAACGCCGCCATCGAAGCGGCCCGTGCCGGTGAAGCCGGACGTGGTTTTGCGGTGGTGGCCGATGAAGTGCGCAACCTGGCGCACCGCACCCAGGAGTCGGCTGAAGAGATTCACAAGATGATCACCTCGCTGCAAGTCGGCTCCCGTGAAGCGGTGACCACGATGAACGCGAGCCAGGCTTCCAGCGAGGAGAGCGTGGAAGTGGCGAACCAGGCCGGCTTGCGCTTGGTCAGCGTGACCCAGCGCATCGGCGAAATCGACGGCATGAACCAATCCGTGGCCGCCGCGACCGAGCAACAGACAGCCGTGGTGGAGACCCTCAACATGGACGTCACGCACATCAATACGTTGAACCAGCAAAGCGTCGCCAACCTCAACGAAACCCTGAAGGATTGCGATGCCTTGTCGCAGCAGGCCAATCGATTGAAGCAACTGGTGGACAGCTTCAAGATCTGA	MNLKFSHKILLAASGVVVLAFALFTLYNDYLQRNTIGRSLESSIEQSGDLTASSIQNWMSGRVLVLENLAQNIAHQGASADLPGLVDQPALTSNFQFTYVGQNTGVFTQRPDAKMPDGYDPRQRPWYKQAVAADKTMLTPPYAAAVGGLVVTIALPVKHNGELLGVVGGDLSLETLVKIINSVDFGGIGHAFLVSGDGQVIVSPDKDHVMKNLKDIYPGTPVRIGKGIQEVELNGEDRILSFTPVAGLPGAEWYIGLSIDKAKAYAPLSHFRTSALIAMFIAVAAIALLLSLLIQVLMRPLTTMGRAMQDIAQGEGDLTRRLVVQGKDEFAVLGGSFNQFVERIHASIAEVSSATRQVHDLSQRVMTSSNASLVGSDEQSARTNSVAAAINQLGAATQEIARNAADASQHASGASEQADDGRQVVEKTIQAMTELSQKISLSCTQIETLNASTDNIGHILDVIKGISQQTNLLALNAAIEAARAGEAGRGFAVVADEVRNLAHRTQESAEEIHKMITSLQVGSREAVTTMNASQASSEESVEVANQAGLRLVSVTQRIGEIDGMNQSVAAATEQQTAVVETLNMDVTHINTLNQQSVANLNETLKDCDALSQQANRLKQLVDSFKI	PGPT0015710_11603	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_00191	465			hypothetical protein	ATGAGTGCTTTTCAACCCGACACCCTGATCAAGAACCCTCAAGCCTGCCATGTCGAAACCTCGGTGCAAGTGCCCGCCGACGCCGCGCGCGTCTGGGAAGTGGTGGGCGACTTCGGCGGGTTCAACCGCTTTATTCCAGCCCTTGAATACATCGAAATGACTGGCGACGGCGTGCGTTCGCTGCGCAAGAAATTCTTCCGCGACGGACAAAACCTGGTGGTGGAGCAACTCAACAGCCGCGATGACCAGGCCATGCACATGACCTGGACGCTGATCTACAACACCCTCGGCATCGACAACCTCTGGGCGGCGATGCGCGTCGAGCCCCTGGGAGACAGCCGCTGCCGCGCCACCTGGACCATCATCGCCGACCACACCGAGGTGCACACACGGGAAGGGTTCAGGGATTTCCTGCAAGGGTTCGCCGATGAGGCGATGGGAAATGTGGTGAAGATGTTCGCCTGA	MSAFQPDTLIKNPQACHVETSVQVPADAARVWEVVGDFGGFNRFIPALEYIEMTGDGVRSLRKKFFRDGQNLVVEQLNSRDDQAMHMTWTLIYNTLGIDNLWAAMRVEPLGDSRCRATWTIIADHTEVHTREGFRDFLQGFADEAMGNVVKMFA				NA	NA	NA	NA	NA
D1-36_00192	3426	lgrD_1		Linear gramicidin synthase subunit D	ATGAGACGCCTCGAAATCGCAATGTCTGGCCACAGCCAGGCCCTGGCCGAACTGGCCCGGGAACTTGAACGACACGGCCACGCCGTCGTGGGTCCACAATCACCGGCCGGCGACCGCGCGATCGACCTGTTGATCGACGATGGTACGGCGCCAGGGACCATCGAGGCTGGTGTTGAGCTCCGGCTGCGCGTGGCATTCCAGGAAGCGCCCGGCCAGGCATTGCCGCGGCCGGTGGTGTTTTTCCGTGACGCAGCGCAGCGACTGCTGGTCCACGAAGTGATCACCACGCCGAGCGACGGCAACGGCCAGTCGCTGCGCCAGCAGGCAATAACGGCAATCGTCGAGCACGGCGCACGGCTGGTCAGTCATCTGTCACGCGATGAGCACGGTTTCGATCAGTGGCCGACGGCCCCGCACGAGCCCATCGACCAACCCGAGCACGGGCTCGATGCGTTGGAGCCGCTGGCCTTCAAACACTGCCTTAACCGGCCCGCCGTACCTTGGCTGCTGGCGGCTGCAAAAATGCCTGTCATGCACAGCATCGAGCAGCGCATGCTCGACGACGCATCGCAGCCTGCCCTGTGGGTCGAGGGTCAGCTCATCGACTACAGGACCTTGCGCAATTGGGTGTTGCGGTTGCAGGAGGCCATAACGGCAAGCCTGGGAAGAGCAACCGATCATCCACGGGTGATCGCCGTGTGCCTGCCCAAATCCGCGCAGCTGTATGCTGCAATTCTTGCGGTGCTGGGGTGCGGGGCGGTGTACCTGCCGCTGGACCCGCAACACCCGGCGCAACGCCGGCGGTTCATCCTCGACAACGCCAAGGCCGATCTCTTGTTGCACGATGGCGACAGCGACCTGGGCGATAGCCCGACGCCGATGCTGAATGTCCATCGGCTATCTTCGTCCAAGCCTGGCTTCCCGGCCTCGACGATTCGCCGCGTGGTGAATGCCGACGAACCAGCCGTGGCGATCTACACCTCCGGCACCACCGGCCAGCCCAAGGGGGTCCTGCTCAGCCACCGCAACCTCAGCCATTTCTGCGCCTGGTACGCAGATCATGTCGAGCTGCGGCGCGACAGCCGAGCGTTGCAGTTTTCCACCATCAACTTCGACGCATCGTTGCTGGACATCTTGCCGACCTTCATCCAAGGCGGAGTGCTGGTGGTGCCCAGCGAGGATCAGCGCCGCGACCCGCAGCGACTGGAGTCGTTGATGCGTGAACAGCGCGTCAGCCATGCCTTCCTGCCGCCCGCGCTGTTGAGCGTCATGCCGCTGGAGGCGTCATTGGGGCTGGTGCACCTGATCACTGGCGGGGACGTCTGCGAGCCGTACGTGATCGAGCGACTGGCGCCGCAGTGCCGGTTTCACAATATCTACGGCCCGACGGAAACCACGGTATTGGCCACCACGCGGCAATTCGCCGTGGGCGATAACAACCGCAACCTCGGTATACCCATCGGCAATGCCCGCGTGCTCATCCTCGACGAACATTTGCAACCGGTGCCCCAGGGCACACCCGGCGAGCTGTACATCGCAGGGCCTGGAGTCGGCCTGGGGTACCTGAACGATCCAGTGCTGACCAGCAGCCGTTATCTCGACCTGACGCTGCCCAACGAGCAAGCGCTGCGGGTCTATCGCACGGGGGATATCGGCCAGTGGACCGACGACGGGATCGAGCTGTGCGGCCGCCGCGACAACCAGGTCAAGATCCGCGGCTTTCGGGTCGAGCCCGAGGAGATCGAGCATTGCCTGCGCGACAGCCAAGTGTTTCGCCAGGTGGCGGTGGGGGTCGACGAGCGCCGGCGGATCCTGGCGTTCCTGGCGAACCCCGTGGACGATCGACCCGGCGCGGCCCTCAACGCCTTGCGCCAGCATGTGCAGGATTCGCTGCCGAGCTACATGCACCCGGCGGCCTATGTAGAGCTGCCCAGCCTGCCTTACACCAGCAACGGCAAGGTCGATCGCCGGGCATTGCTGGCGTCGGCGGGATCGGTCCAGGCAGGAGCTCAAGGGCGCCAGCCACAAAATGCATTGCAAACCCAGCTCCGACAGCTATGGGCCGAGCTGCTGCAGTTGCCAGCCGAGGACATCGCCACCGACGAGAGTTTTTTCAACCTTGGCGGGCATTCGATCCTGCTTTCGCAGCTGCTGTTGAGTCTCAGGCAGACGTTCGGTCGCAGCCTGTCGATCAACCGCTTCATTGAAGCACCGACGCTGATCACCTTGGCGAAGTTGCTCGATGCCCCCGACCAGAGCGATGCACCCTCGCTGAGCCCCCAGGCTTTCATCGACGCCGAAGCCGAACTCAACCTCGCTCCACTGCCCATCAGCCAGAGCGGTGATGTGCATAAAGTGGTCGTGACCGGCGCCAACAGTTTTCTCGGCGTGCATATCGTCGAAGCGTTGCTGGCGTGGGGGGCCACGGAAGTGGCGTGCCTGGTGCGTGAATCCGGCGGGCAAAGCGCGGCCCAGCGGTTCGCCCAGGCCCTGCGGGAAAATCGCCTGGAGCATCTGGACCTGAGCCGTGTCAGCGTCTACGCCGCCGACATCACCCAGCCACAACTGGGCTTGCCGGACGACACCTACCAGCGGATCGACAGCACGTTCGGCGCGTTGGTGCACAACGCCGCCCATGTCAATCACGTGCTCGACTACGAGTCCCTGGCGCGGGACAACGTCGAGCCCATCTTCGAATGCCTGCGGCTGTGCGAAGGGCGCAGCAAGAAAATCTTCAACTTCGTCTCGACGCTGTCGGCCTCCAGCACCCTGGACGCTAATGGGCAGGTGCTGGAGCAGCCAGCAGCAAGGACACCGCCGATCTACATCAAGAATGGCTACAACCTGTCCAAATGGGTCGGCGAGCGGATTCTGCAACGGGCCCGGGACCTTGGCGTCCGGGTCAATCTGTTCCGTCCCGGCAACATCAGCTTCAACAGCCAGACCGGGGTCTGCCAGCCCCACAAGAACCGCTTGATGCTGATGCTCAAGGGATCGATCCAGCTCGGCCAGGTGCCGGATCTGTCGCTCAATTTCGACCTGATGCCGGTGGACTTCCTGGCCCGTTTCATCGCCTTCCACGCCAGCCGTTACCAACCCAACCAGGCCGTGTTCAACCTGCACAACCCCGAACCCTTGAGCTGGGACGCCTATGTGGCGTCGTTCCGCGACAGTGGCCGGGAATTCGCGCTGGTCAGTGTCGCGGACTGGCAACAGCAGCTGGCGCGGGTCGATACCGACAACGCGCTGTTCGGCGTGCTGGGTTTCTACCTCAACGGCTTCGAAGAGGACATCGGCGACATCTCCCTGATCCGCCATGACAACGCCCGGTCCGGCGTGAGGCAGATGGGCACCCGTTACCCGGAAAAGTCCCCGGCCCTGCTGCGCCGCGGTGCTGATTACCTCAAGGCCATCGATTTCATCTGA	MRRLEIAMSGHSQALAELARELERHGHAVVGPQSPAGDRAIDLLIDDGTAPGTIEAGVELRLRVAFQEAPGQALPRPVVFFRDAAQRLLVHEVITTPSDGNGQSLRQQAITAIVEHGARLVSHLSRDEHGFDQWPTAPHEPIDQPEHGLDALEPLAFKHCLNRPAVPWLLAAAKMPVMHSIEQRMLDDASQPALWVEGQLIDYRTLRNWVLRLQEAITASLGRATDHPRVIAVCLPKSAQLYAAILAVLGCGAVYLPLDPQHPAQRRRFILDNAKADLLLHDGDSDLGDSPTPMLNVHRLSSSKPGFPASTIRRVVNADEPAVAIYTSGTTGQPKGVLLSHRNLSHFCAWYADHVELRRDSRALQFSTINFDASLLDILPTFIQGGVLVVPSEDQRRDPQRLESLMREQRVSHAFLPPALLSVMPLEASLGLVHLITGGDVCEPYVIERLAPQCRFHNIYGPTETTVLATTRQFAVGDNNRNLGIPIGNARVLILDEHLQPVPQGTPGELYIAGPGVGLGYLNDPVLTSSRYLDLTLPNEQALRVYRTGDIGQWTDDGIELCGRRDNQVKIRGFRVEPEEIEHCLRDSQVFRQVAVGVDERRRILAFLANPVDDRPGAALNALRQHVQDSLPSYMHPAAYVELPSLPYTSNGKVDRRALLASAGSVQAGAQGRQPQNALQTQLRQLWAELLQLPAEDIATDESFFNLGGHSILLSQLLLSLRQTFGRSLSINRFIEAPTLITLAKLLDAPDQSDAPSLSPQAFIDAEAELNLAPLPISQSGDVHKVVVTGANSFLGVHIVEALLAWGATEVACLVRESGGQSAAQRFAQALRENRLEHLDLSRVSVYAADITQPQLGLPDDTYQRIDSTFGALVHNAAHVNHVLDYESLARDNVEPIFECLRLCEGRSKKIFNFVSTLSASSTLDANGQVLEQPAARTPPIYIKNGYNLSKWVGERILQRARDLGVRVNLFRPGNISFNSQTGVCQPHKNRLMLMLKGSIQLGQVPDLSLNFDLMPVDFLARFIAFHASRYQPNQAVFNLHNPEPLSWDAYVASFRDSGREFALVSVADWQQQLARVDTDNALFGVLGFYLNGFEEDIGDISLIRHDNARSGVRQMGTRYPEKSPALLRRGADYLKAIDFI				NA	NA	NA	NA	NA
D1-36_00193	933			hypothetical protein	ATGAACGCCATTCAATACCAATCATTCGCCGACGCCTGGGAAAGCCGGGCGACGATCCGTACCCGGCCACGGCGCCGGGTCGAGGATGACGACAAGCTGATCTTTCCCATGAGCCGCCAACCCATGGTGCACAGCCAGACCTTCCTGACCCATTGCCCGCAATTGCGTGATTTTGTCCTGGTGCAGAGTCTCTACAAGTTCATCAACGACGTGGTGATTTTCGAGACCGAGCTGGTGGATCACACCGCCCGGCGCATCGCCAAGAACCGCTTTGGCATCGAGTTTCCGTTCGCCTGTCGCTATGACGCGATGACCGTGGTGGTGGACGAGGACTACCACGCGCTGGTGGCGATGGACTTCATGCAGCAAACCATCGACATGACCGGCATCGCACCGATCCCGTTGCCCCAGCAGATCGAGCTCAGCCGTGCCATTCCGGCCACGCTGGCGCGAACACCGGAGCATCTGCTCAGCGCCGTGGAGTTGGTCTGCATCGCCATCGCCGAAAACACCGTGACCAACGAAGTGGCAGCCTTTGCCCGGGACGACTCGGTCAAGGCCTCGATCAAGGGGCTCATGGCCGATCACCTGCAGGATGAGGGACGCCACTCCGGTTTCTGGACGCGGCTGGTACAGATTTACTGGCGCGCCGCGCCCGAAGAGGACCGCGAGATGATTGCGCGGCTGATGCCCGGTTTCATCGCCGATTACCTGGCGAGCGACCTGCAGCAGGCGTTCGATTTCGAGCTGATCAACCACTTGCCGATCGACGAATCGGCACGCCAGTCGCTGCGCGAAGACGCCCGGGCGCTGGCTTATCCCATCAACCGTTTTCACCCGTTGGTGGGCAACATCACGCGGTTCTTCCGCGGCAGCTCGATGCTGGCGTCAGCCTGCGTGCGCGATGCCCTGGCCGACTACCTGACCCCATGA	MNAIQYQSFADAWESRATIRTRPRRRVEDDDKLIFPMSRQPMVHSQTFLTHCPQLRDFVLVQSLYKFINDVVIFETELVDHTARRIAKNRFGIEFPFACRYDAMTVVVDEDYHALVAMDFMQQTIDMTGIAPIPLPQQIELSRAIPATLARTPEHLLSAVELVCIAIAENTVTNEVAAFARDDSVKASIKGLMADHLQDEGRHSGFWTRLVQIYWRAAPEEDREMIARLMPGFIADYLASDLQQAFDFELINHLPIDESARQSLREDARALAYPINRFHPLVGNITRFFRGSSMLASACVRDALADYLTP				NA	NA	NA	NA	NA
D1-36_00194	777			hypothetical protein	ATGCAGCCAACCAAAGAACAACTATCTCTGAAAAAACACGAACTTGGTGAACACCCGGTTTTTTCCGAAATAACATCAATCGACCTGTTGCGCCGTTTTATGGAAAGCCACGTTTTCGCCGTGTGGGACTTCATGTCCCTGACCAAGCGGCTGCAAAGGGAACTGACCTGCATCCAACTGCCGTGGCTGCCACCCGCCGACCCCCATGCCGCGCGTCTGATCAACGAAATCGTTCTGGGAGAAGAATCCGACGACCGTCCTGGTGCCGGTTATTGCAGCCATTTCGAACTGTATCTGGACGCCATGCGCGAGGTAGGCGCGGACACCCAGGCGATTGAACAATTCATCGCCCTGCAGCAAGAAGGCGTCAGCCCCGAAACCGCGCTGGACAGCGTCGAGGTAGAACCGGCCGCCGCGCGCTTCGTGCGCCAGACCCTGCACACCGCCCTGCACGCCCCGGCCCACAGCGTGGCCGCCGCGTTCGTGCATGGGCGCGAAAGCGTCATCCCGCAGATGTTCCAGCGGATGCTGGACGCCTGGGGTATCGGCCTGGATCAGGCACCGACGTTTCGTTATTACCTGCAACGCCATATCGAGGTGGACTCCGAAGACCACGGCCCGGCGGCGGAAAAATTGCTGGCGCGGCTGATCGATGGCGACCCGCAGCGCGAGCGCGAGGTCCTCGCCGCTGCCCTCGCTGCCGTCCACAGCCGCACAGCCTTGTGGGATGGCCTGCGCCTGAGCATGACCCAGCCGGTTGCGCAGGTGACGCCATGA	MQPTKEQLSLKKHELGEHPVFSEITSIDLLRRFMESHVFAVWDFMSLTKRLQRELTCIQLPWLPPADPHAARLINEIVLGEESDDRPGAGYCSHFELYLDAMREVGADTQAIEQFIALQQEGVSPETALDSVEVEPAAARFVRQTLHTALHAPAHSVAAAFVHGRESVIPQMFQRMLDAWGIGLDQAPTFRYYLQRHIEVDSEDHGPAAEKLLARLIDGDPQREREVLAAALAAVHSRTALWDGLRLSMTQPVAQVTP				NA	NA	NA	NA	NA
D1-36_00195	681	gntR_1		putative D-xylose utilization operon transcriptional repressor	GTGACACAGAAGCCCAAACCACTCAGCACTATTCAGGTCAACGGGCCCATCCCCGCTGCCCAGGCCCGCGCAATCATTGAAAGCGCTTTGCGCGAAGCCATTCTCGACGGGCGACTGCCAAGCGGCACAGCGTTGCGCCAGCAGGAATTGGCAGACCTGTTCGGTGTCAGCCGCATGCCGGTACGCGAAGCGTTGCGCCAGCTCGAAGCGCAGTCATTGCTCAACGTGGTCCAGCACAAGGGCGCGGTGGTAGCCCCGCTGATTACCAGCAATGCAGTCGAAACCTACGCCTTGCGGTCGGTCCTCGAAGCCTTCGCCCTGCGCTTGTCCATTCCCCTGCTAGACGACAATGACCTGGCCATGGCCGCCGAATACATCGAGCAATTGGAAGGCCAAGTTGATTATGCGCAGATCGCCAAGCTCAACCGTCTATTCCACATGTCGCTTTACCATAAGGCGCCCAACGCCAAGCTGTTGGACCTGATCGAACATGAGCTCAATGAAGAAGAACGTTTCCTGCGCTTTCACCTTTCGACCATGGGTTTGGGTGAGCTCACCCAGTGTGACCATCGCGCGATACTCGCCGCGGCGGTAGCCAAAGACATCGACCAAGCGGTTCATCTGCTTGAAGAGCACCTCGAGAAAGCCTCGGCCACCATGCGCCTGTACCTGAAGCAATAG	MTQKPKPLSTIQVNGPIPAAQARAIIESALREAILDGRLPSGTALRQQELADLFGVSRMPVREALRQLEAQSLLNVVQHKGAVVAPLITSNAVETYALRSVLEAFALRLSIPLLDDNDLAMAAEYIEQLEGQVDYAQIAKLNRLFHMSLYHKAPNAKLLDLIEHELNEEERFLRFHLSTMGLGELTQCDHRAILAAAVAKDIDQAVHLLEEHLEKASATMRLYLKQ				NA	NA	NA	NA	NA
D1-36_00196	690			hypothetical protein	TTGGCTGCACCTTCCCCGGTCCTCAGGTCCTTGCGCTGGCTGTGTTCGGCATTTTTGCTGGCAGGCCTGATGCTGGGCGGCCTGCGAGCCGACTGGGACTTTGCGCAGATAAGCCGGCGGGCGCAAGCGTTATATGGACCGCTGGGCGACGGGCAGCAGCGGATCGACGCGTGGCAGCAGTTGCTGGCAACCCAGAAGCAGATTCCTGAGCTTGCACAGCTCAAGGTGGTGAACCTGTTCTTCAACAAACAGGTGCGCTACGTGGAAGACCTCGATTTGTGGCATGAGACCGATTATTGGGAAACCCCGATCCAGGCCCTGTGGAAGGGCGCGGGCGATTGCGAGGACTACGCCATCGCCAAGTATTTCAGCCTGCGCCATCTAGGGGTTTCCAGTGACAAGCTGCGCATCACCTACGTCAAGGCGTTGCGGCAGAACCGCGCGCACATGGTGCTGACGTATTACGCCACCCCCGATGCCATGCCGCTGGTACTCGATAGCCTGATCGACGGCATCCAGCCGGCCAGCCAGCGAACCGACTTGCTGCCGGTCTACTCTTTCAATGCCGAAGGGCTGTGGCTGTCAGGCAAGGGCAACAAGAAAGTGGGCGACACCAAGCGCCTGTCCCGGTGGCAGGATGTGTTGAAGAAAATGCAGGCCGAAGGTTTCCCGGTCGAGACGACTAACTAG	MAAPSPVLRSLRWLCSAFLLAGLMLGGLRADWDFAQISRRAQALYGPLGDGQQRIDAWQQLLATQKQIPELAQLKVVNLFFNKQVRYVEDLDLWHETDYWETPIQALWKGAGDCEDYAIAKYFSLRHLGVSSDKLRITYVKALRQNRAHMVLTYYATPDAMPLVLDSLIDGIQPASQRTDLLPVYSFNAEGLWLSGKGNKKVGDTKRLSRWQDVLKKMQAEGFPVETTN	PGPT0022238_1	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_I_SECRETION_SYSTEMS	CE-TSS1-ADHESIN_TRANSPORT,PGPT0022238-lapP-NA	NA	NA
D1-36_00197	1947			hypothetical protein	ATGTCTTTGTTCAAACAGCTGTTGATCGCTATCTGTCTGTTCCTGGTGGTTGCCTTCAGCGGCAGCTTCATGGTCAGCCTGGAGAGTTCGCGGACCCAGTACGTCAATCAGCTGCGTTCCCATGCCCAGGACGCGGCCACGGCGCTGGCGCTGTCGTTGACGCCGAACATCGACGACCCGGCGATGGTCGAGCTGATGGTCAGTTCGATCTTCGACAGCGGCTACTACGCCAGCATCCGCGTGGTCGACGTGACAAACGACAAGACCCTGGCCGAGCGCACCGGCACCCCGGATGCCGGCAATGTACCGCAGTGGTTTATCAAGCTCATCGGCCTTGAGCCGGCCGGCGGCGATGCGATTGTCAGCCGCGGTTGGGAACAGGCGGCGCGGGTCGAAGTGGTCAGCCACCCGATGTTCGCCCTCGCCAAGCTGTGGCAGAGCGCGCTGGGCAGTCTGGGCTGGTTGTTGCTGTGCGGCGCCGTGAGCGCGGTGCTGGGAGCCTTGCTGCTGCGTCGCCAGCTCAAGCCGCTGGACTACATGGTTCACCAGTCCCACGCCATCGCCCGACGTGAGTTTTTGAGCCTGCCGGAGCTGCCGCGCACACCTGAATTGCGGCGTGTGGTCCAGGCGATGAACCAGATGGTCGAGAAGCTCAAGGCGCTGTTCCAGGAACAGGCCGAGCGCAGTGAAAAACTGCGGGTGGAGTCCTATCAGGACAACCTCACGGGGCTGGCCAATCGACGGTATTTCGAGATGCAGTTGCATGCGCGGGTGAGCAACCCGGAACAGGCCAGTTCCGGTTATCTGTTGTTGTTGCGGGTCAAGGACCTCGCCGGTCTGAACCAGCGGCTGGGCGGGCAGCGCACCGATCAGTTGCTCAAAGCCGTGGGCGAGCAGTTGTCGCGTGAGTGCGCTCGCTACCCGGAAACCCATAATCTGGTGACGCGGATACGCGGTGGGGAGTTCGCGGTGCTGGCACCCGGGCTGGTGCGCGAGGAGGCGCTGCAGCTGGCGCAGAATCTGGAAGGCGCGCTGGCGAGTTTGCACGCCACCGGCGCGACCGACGTGGCATCGGTGGCGTCCATCGGGCTCGCTCCGTTCGTTCATGGCGACTCGCCGCAGGCAGTGCTCCAGCTTGGCGACCAGGCACTGGCCCAGGCCGAAAGCCAGGGCGAACCCGGCTGGGCCTGCCTGGAGCATAGCGCGTCCGCCAGCGTGGGCGATGATCACCACGCCTGGCACCAACTGCTCGATCAGGCCTTGGGCAATCAACGCTTCGAACTGTACTTCCAGCCGGTGGTAGCGGCTCAGGACACCCAGGTCGTGCTGCACTACAAAGTGCTGTCGCGGCTGCTTGACGACCAAGGCCAGACCATCCCCGCCGGACGCTTCCTGCCTTGGCTGGAGCGCTTCGGCTGGACCGCGCGCCTGGACCGCTTGATGCTCGAACAGGTGCTCAAGCAGATGGCCGGGCACGAACAATCCCTGGCGCTCAACCTGTCTTCCGCGACCCTGGCCGATCCTCAGGCGTTGAACAAGGTCTTTGAAATCCTGCGGGCTCACTCCAGCCTTGGGCCGCGCCTGACCTTGGAGATTGGTGAAGAGCAACTGCCCGAGCAAGCGGTGTTGGAGCAGTTGACCCGGCAGTTGCGCGAGCTTGGTTTTTCCTTGAGCCTGCAGCGCTTTGGTGGGCGGTTCAGCATGATTGGCAACCTGTCGCGGCTGGGGTTGGCCTATCTGAAGATTGACGGTAGCTACATTCGTGCGATCGACCAGGAAAGTGACAAGCGTTTGTTCATCGAGGCCATCCAGCGTGCTGCTCACAGTATCGACCTGCCGTTGATTGCTGAGCGGGTGGAGACGGAAGGGGAGTTGGCGGTGATTCGTGAGATGGGGTTGTTTGGGGTTCAGGGGCAGTTGGTGGGTGAGCCTAAGCGTTGGGGGTGA	MSLFKQLLIAICLFLVVAFSGSFMVSLESSRTQYVNQLRSHAQDAATALALSLTPNIDDPAMVELMVSSIFDSGYYASIRVVDVTNDKTLAERTGTPDAGNVPQWFIKLIGLEPAGGDAIVSRGWEQAARVEVVSHPMFALAKLWQSALGSLGWLLLCGAVSAVLGALLLRRQLKPLDYMVHQSHAIARREFLSLPELPRTPELRRVVQAMNQMVEKLKALFQEQAERSEKLRVESYQDNLTGLANRRYFEMQLHARVSNPEQASSGYLLLLRVKDLAGLNQRLGGQRTDQLLKAVGEQLSRECARYPETHNLVTRIRGGEFAVLAPGLVREEALQLAQNLEGALASLHATGATDVASVASIGLAPFVHGDSPQAVLQLGDQALAQAESQGEPGWACLEHSASASVGDDHHAWHQLLDQALGNQRFELYFQPVVAAQDTQVVLHYKVLSRLLDDQGQTIPAGRFLPWLERFGWTARLDRLMLEQVLKQMAGHEQSLALNLSSATLADPQALNKVFEILRAHSSLGPRLTLEIGEEQLPEQAVLEQLTRQLRELGFSLSLQRFGGRFSMIGNLSRLGLAYLKIDGSYIRAIDQESDKRLFIEAIQRAAHSIDLPLIAERVETEGELAVIREMGLFGVQGQLVGEPKRWG	PGPT0022237_10	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_I_SECRETION_SYSTEMS	CE-TSS1-ADHESIN_TRANSPORT,PGPT0022237-lapD-NA	NA	NA
D1-36_00199	264			hypothetical protein	ATGGCCCAACGCGGCTATCCCGGCATCCATGCCGGGATACCCACTACGCAATGCCTGCGTTCGGCCATCGTGGTTAACGGGGCCTGGCAGATCAAAAGCAAAAGCAAAAGCAAAGCAAAGCAAAGCAAAGCAAAGCAAAGCAAAGCAAAGCAAAGCAAAGCAAAGCGAAAGCGAGGCGGCGGTATGGCCGACCTGGGTCTCCTGGTCGTACTCCAATTGTGGGAGCGAGCCTGCTCGCGAAGGCGGAGGGTCAGTTTCCGCTGA	MAQRGYPGIHAGIPTTQCLRSAIVVNGAWQIKSKSKSKAKQSKAKQSKAKQSKAKRKRGGGMADLGLLVVLQLWERACSRRRRVSFR				NA	NA	NA	NA	NA
D1-36_00200	177			hypothetical protein	ATGGCCCAGCGCGGCTACCTCGGCATCCATGCCGAGGTACCCACTGCGCAAGGCCTGCGTTCGGCCATCGTGGTTAACGGGGCCTTCCAGATCAAGATCAAGATCAAGATCAAGATCCAAAGCAGGAGCAGGAGCAGGAGCAGGAGCAGGAGCAGGAGCATCTCGGCACTTATTTAG	MAQRGYLGIHAEVPTAQGLRSAIVVNGAFQIKIKIKIKIQSRSRSRSRSRSRSISALI				NA	NA	NA	NA	NA
D1-36_00202	339			hypothetical protein	ATGTTTTATGTGCAACGCGATGCACAAGGCCTGCTGGTGCGCGTGGAAGCCACCGCTTACGCCGAGGCCACCGAGACCTTGCCGGCCGACAACCATGAGATCCAGGACTGGTTCGCCAACCAGGCGGTAGAAAACAGCCTCAAGCAACTCAAGCAAAGCGACCTGGAGATGATCCGGGTACTCGATGACTTGATCCAGGTGCTGACCAGCAAAGGCGTCATCCGCGTCACCGACCTGCCACCAGCTGCCCAGGCCAAGCTGATGGACCGCAACCAGGCCCGTGAAGCGCTGGGTGGGTTGAGTCGGTTGATCGATGACGATGAGAAGGGGTTGATCTAG	MFYVQRDAQGLLVRVEATAYAEATETLPADNHEIQDWFANQAVENSLKQLKQSDLEMIRVLDDLIQVLTSKGVIRVTDLPPAAQAKLMDRNQAREALGGLSRLIDDDEKGLI				NA	NA	NA	NA	NA
D1-36_00203	11508			hypothetical protein	ATGAGCAGTGTTATTGCCGTCGTCAAAAGCATTGTTGGTCAGGTTTTCGCCGTATCCCCCGAGGGTATTCGGCGCGTACTCATTGAAGGCGACCGCCTTAACGTGGGCGACCAGTTGGACACCGGCCCTGCCGGTGCCGTCACATTGGAGCTGGCCGATGGCCGCTCGCTGGACCTGGGCCGGGACACCCAATGGAGCGCCAATGCTGCGGACTCCTCCACTGATCTGGAACAGGCCGCCGCCCAAGCCGCGCCCTCGGTAGACGAACTGCAACAAGCCATCGCCGCGGGCGTCGACCCGACGACCGCCCTGGAAGCCACCGCTGCCGGCCCAACCGCTGCTGGCACGGGCGGTGCGGCCGGTGGTGGCCACAGCTTCGTCGTACTGGATGCCACGGCTGGCAGCGTCGATCCGACAATCGGTTTTCCCACGGAAGGACTCGCCGCGGCTGCCGCCACCGATGACAACATCCTGGGTGGTGACACCACTGCCGATACGACCGCCAACGCCGTGCTCAATGCGACCATGACGCTGAGCGCCACGCCGACCCTGACCGAGGCCGGCGGCGTGCTGGTCTACACCGCGACCGTCACCCAGGCGCCGCTGACCAACCTGACCGTGACCTTGTCCAACGGTGCAGTCATCGTCATTCCAGCCGGACAACTGACCGGCAGCGTCAATGTGCCGCTCGCGCCGAACGACACGGTCTATAACGACCCAAGCCAGATCAGCGTGACTGTCACCGGCACCACCGGCGGCAGCGGCATCGCCGTGACCGTACCCACCACGCCCGCCGTTACCCAGATCACCGACACCGTCGACACCACCACCGTCACCCTGAGCGCAGGCGACACCGTTACCGAAGGCGGTCAGATCACTTACACCGCCACGCTGACCAATCCGGCCCAGACGCCAGTGACCGTGACCTTGAGCAACGGCTCGGTCATCACCATTGCCGCCGGCCAGACCACCGGCACCGTCGCTGTCGATACCCCGCCGAACGATGTCTACAACAATGGCAGTACTGTCAGCACCACCATTACTGGCGCAACTGGGGGTAACTTCGAGAACCTGGTTCCGAATACGGCGCCTGCGGTCACGACGATCACTGATTCGCTTGACACCACCACCGTGACGCTGACCGCCAACCCAACCGTGAATGAAAACGGCACGATCACTTACACCGCTACCTTGACGGGTGCCGATGGAAAGCCGATCACTGCCCAGAATGGTCCGGTTACCGTGACCTTGGACAGTGGTAAAACCATCACTATTGCAGCCGGCGCGAGCTCGGGTGTGTTGGATGTGGCAGTGGGCAACGACGTCTACCAAGGCCCAACCACCGTCACCGAGTCGATCAAAGACGCATCCGGCGGCAACCTGGAAGCCATCGCGCCTAACACGACGCCAGTCAGCACCGTGGTCAGCGATGTCAACGACACCACTACCGTGACGCTGACCGCTAACCCAACCGTGAATGAAAACGGCACGATCACCTACACCGCCACCTTGACGGGCGCCGATGGCAAGCCCGTCACTGCGCAGAACGGTCCGGTCACCGTGACCTTGGACAGCGGCAAGACCATCACCATCGCAGCCGGCGCGAGCTCGGGTGTGTTGGATGTAGCGGTCGGCAACGACGTGTACCAAGGCCCTACCACTGTCACCGAGTCGATCAAAGACGCATCCGGCGGCAATCTCGAAGCCATCGCGCCGAACACGACTCCAGTGAGCACCGTGGTCAGCGACGTTAACGACACGACCACCGTGACGCTGACCGCTAACCCGACCGTGAATGAAAACGGCACGATCACTTATACCGCGACCCTGACCGGTGCCGATGGCAAGCCCGTTACCGCGCAAAATGGTCCTGTAACGGTCACGCTCGAAAGCGGTAAGACGATCACCATCGCAGCGGGCGCAAGCTCGGGCGTATTGGATGTGGCAGTGGGCAACGACGTCTACCAAGGCCCAACGACGGTTACTGAATCGATTGCCTCGGCATCCGGCGGCAACCTCGAAGCCATCGCGCCGAACACCGCTCCGGTCAGCACTATCGTCAGCGACGTTAACGACACGACCACCGTGACGCTGACCGCCAACCCAACCGTGAATGAAAACGGCACGATCACCTACACCGCCACGCTGACGGGTGCCGATGGCAAGCCGGTCACTGCGCAAAATGGTCCGGTTACCGTGACCTTGGACAGTGGTAAAACCATCACTATCGCAGCCGGAGCGAGCTCGGGTGTCTTGGATGTAGCGGTCGGCAACGACGTCTACCAAGGCCCTACGACGGTTACTGAATCGATTGCCTCGGCATCCGGCGGCAACCTGGAAGCCATTGCGCCTAACACCACGCCAGTCAGCACCGTGGTCAGCGACGTCAACGACACCACCACTGTGACGCTGACCGCTAACCCAACCGTGAACGAAAACGGCACGATCACTTATACCGCCACGCTGACGGGTGCCGATGGCAAACCCGTCACTGCTCAGAACGGTCCGGTTACCGTGACGCTGGAAAGCGGTAAAACCATCACCATCGCAGCCGGTGCAAGCTCGGGTGTGTTGGATGTGGCGGTCGGCAACGACGTTTATCAAGGCCCTACGACGGTTACTGAATCGATTGCCTCGGCATCCGGCGGCAACCTCGAAGCCATCGCACCGAACACCACGCCAGTCAGTACTGTGGTCAGCGATGTTAACGACACGACGACCGTGACGTTGACCGCGAACCCAACCGTGAACGAAAACGGCACGATCACTTACACCGCCACCCTAACCGGTGCCGATGGCAAGCCCGTCACTGCCCAGAATGGTCCTGTAACGGTCACGCTCGAAAGCGGCAAGACGATTACCATCGCAGCCGGTGCAAGTTCGGGCGTGTTGGACGTGGCGGTCGGCAACGACGTCTACCAAGGCCCAACCACCGTCACCGAGTCGATCAAAGACGCATCCGGCGGCAACCTCGAAGCCATCGCGCCTAACACGACGCCAGTGAGCACCGTGGTCAGCGATGTCAACGACACAACCACTGTGACGCTGACGGCTAACCCGACCGTGAACGAAAACGGCACGATCACCTACACCGCCACCCTGACCGGTGCCGATGGCAAACCGGTCACTGCGCAGAACGGTCCGGTCACCGTGACCTTGGACAGCGGTAAGACCATCACCATCGCAGCGGGCGCAAGCTCGGGTGTGTTGGATGTAGCGGTCGGCAACGACGTGTACCAAGGTCCAACCACCGTCACCGAGTCGATCAAAGACGCATCCGGTGGCAACCTCGAAGCTATCGCACCGAACACCACGCCAGTCAGCACTGTGGTCAGCGATGTCAACGACACCACCACCGTGACGCTGACCGCTAACCCGACCGTGAACGAAAACGGCACGATCACCTACACCGCCACCCTTACCGGCGCCGATGGCAAGCCAGTCACTGCGCAGAACGGTCCTGTAACGGTCACGCTCGAAAGCGGTAAGACGATCACCATCGCAGCGGGCGCAAGCTCGGGTGTGTTGGATGTGGCAGTGGGCAACGACGTCTACCAAGGTCCAACGACGGTTACTGAATCGATTGCCTCGGCATCCGGCGGCAACCTCGAAGCCATCGCGCCTAACACGACGCCAGTCAGCACTGTGGTCAGCGACGTCAACGACACGACTACCGTGACGCTGACGGCTAACCCGACCGTGAACGAAAACGGCACGATCACCTACACCGCCACCCTGACCGGTGCCGATGGCAAACCGGTCACTGCGCAGAACGGTCCGGTCACCGTGACCTTGGACAGCGGTAAGACCATCACCATCGCAGCGGGCGCAAGCTCGGGTGTGTTGGATGTAGCGGTCGGCAACGACGTGTACCAAGGTCCAACCACCGTCACCGAGTCGATCAAAGACGCATCCGGTGGCAACCTCGAAGCCATCGCACCGAACACCACGCCAGTCAGCACTGTGGTCAGCGACGTCAACGACACGACCACCGTGACGCTGACCGCGAATCCGACCGTGAACGAAAACGGCACGATCACTTACACCGCCACGCTGACGGGTGCCGATGGCAAACCCGTCACTGCTCAGAACGGTCCGGTTACCGTGACGCTGGAAAGCGGTAAAACCATCACCATCGCAGCGGGCGCAAGCTCGGGTGTGTTGGATGTAGCGGTTGGCAACGACGTGTACCAAGGCCCTACGACGGTTACTGAATCGATTGCCTCGGCATCCGGTGGCAACCTCGAAGCCATCGCGCCGAACACCGCTCCGGTCAGCACTATCGTCAGCGACGTCAACGACACGACCACCGTGACGCTGACCGCGAATCCGACCGTGAACGAAAACGGCACGATCACTTATACCGCCACCTTGACCGGTGCCGATGGCAAGCCCGTTACCGCGCAAAATGGTCCGGTTACCGTGACCCTGGACAGCGGTAAGACCATCACCATCGCAGCCGGCGCGAGCTCGGGTGTGTTGGATGTAGCGGTCGGCAACGACGTGTACCAAGGCCCTACCACTGTCACCGAGTCGATCAAAGACGCATCCGGCGGCAATCTCGAAGCCATCGCGCCGAACACGACTCCAGTGAGCACCGTGGTCAGCGACGTTAACGACACGACCACCGTGACGCTGACCGCTAACCCGACCGTGAACGAAAACGGCACGATCACCTACACCGCTACCCTGACCGGTGCCGATGGCAAGCCCGTTACCGCGCAAAATGGTCCTGTAACGGTCACGCTCGAAAGCGGCAAGACCATCACCATCGCAGCCGGTGCAAGCTCAGGCGTGTTGGATGTGGCGGTCGGCAACGACGTCTACCAAGGTCCAACCACCGTCACCGAGTCGATCAAAGACGCATCCGGCGGCAACCTCGAAGCCATCGCGCCGAACACGACGCCAGTCAGCACCGTGGTCAGCGACGTTAACGACACGACCACCGTGACGCTGACCGCTAACCCGACCGTGAATGAAAACGGCACGATCACTTACACCGCCACCCTGACCGGTGCCGATGGCAAGCCGGTCACTGCGCAAAATGGTCCGGTTACCGTGACCTTGGACAGTGGTAAGACAATCACCATCGCAGCCGGCGCAAGCTCGGGTGTGTTGGATGTAGCGGTCGGCAACGACGTCTACCAAGGTCCAACCACCGTCACCGAGTCGATCAAAGACGCATCCGGCGGCAACCTGGAAGCCATCGCACCTAACACTACGCCAGTCAGCACTGTGGTCAGCGACGTTAACGACACGACCACTGTGACGCTGACCGCAAATCCGACCGTGAACGAAAACGGCACGATCACTTACACCGCCACGCTGACCGGTGCCGATGGCAAACCGGTCACTGCCCAGAATGGTCCAGTTACCGTGACCTTGGACAGTGGTAAAACCATCACCATCGCAGCCGGTGCAAGCTCGGGTGTGTTGGATGTGGCGGTAGGCAACGACGTCTACCAAGGCCCTACGACGGTTACTGAATCGATTGCCTCGGCATCCGGCGGCAACCTCGAAGCCATCGCACCGAACACCACGCCAGTCAGCACTGTGGTCAGCGACGTCAACGACACGACCACCGTGACGCTGACCGCGAATCCGACCGTGAACGAAAACGGCACGATCACTTACACCGCCACGCTGACCGGTGCCGATGGCAAACCGGTCACTGCCCAGAATGGTCCAGTTACCGTGACCTTGGACAGCGGTAAAACCATCACCATCGCAGCCGGTGCAAGCTCGGGTGTGTTGGATGTAGCGGTTAGCAACGACGTCTACCAAGGCCCTACCACTGTCACCGAGTCGATCAAAGATGCAACCGGTGGCAACCTCGAAGCCATCGCGCCTAACACGACGCCAGTGAGCACTGTGGTCAGCGATGTCAACGACACCACTACCGTGACGCTGACCGCGAATCCGACCGTGAACGAAAACGGCACGATCACTTATACCGCCACGCTGACGGGTGCCGATGGCAAGCCCGTTACCGCGCAAAATGGTCCTGTAACGGTCACGCTCGAAAGCGGTAAGACGATCACCATCGCAGCGGGCGCAAGCTCGGGCGTATTGGATGTAGCGGTCGGCAACGACGTGTACCAGGGCCCTACCACTGTCACCGAGTCGATCAAAGATGCAACAGGTGGCAACCTCGAAGCCATCGCGCCGAACACGACGCCAGTCAGCACCGTGGTCAGCGACGTTAACGACACGACCACCGTGACGCTGACCGCTAACCCGACCGTGAACGAAAACGGCACGATCACCTACACCGCTACCCTGACCGGTGCCGATGGAAAGCCGGTCACTGCGCAGAATGGTCCGGTTACCGTGACCTTGGACAGTGGTAAAACCATCACCATCGCAGCCGGTGCAAGCTCGGGTGTGTTGGATGTAGCGGTTGGCAACGACGTCTACCAAGGTCCAACGACGGTTACCGAATCGATTGCCTCGGCATCCGGTGGCAACCTCGAAGCCATCGCACCGAACACCGCTCCGGTCAGCACTATCGTCAGCGATGTCAACGACACCACTACCGTGACGCTGACCGCCAACCCAACCGTGAACGAAAACGGCACGATCACCTACACCGCGACCTTGACCGGTGCCGATGGCAAGCCCGTTACCGCGCAAAATGGTCCTGTAACGGTCACGCTCGAAAGCGGCAAGACCATCACCATCGCAGCCGGTGCAAGCTCGGGTGTGTTGGATGTGGCGGTCGGCAACGACGTTTATCAAGGCCCTACGACGGTTACTGAATCGATTGCCTCGGCATCCGGCGGCAACCTCGAAGCCATCGCACCGAACACCACGCCAGTCAGCACTGTGGTCAGCGACGTCAACGACACGACCACCGTGACGCTGACCGCGAATCCGACCGTGAACGAAAACGGCACGATCACTTATACCGCCACGCTGACGGGTGCCGATGGCAAACCCGTCACTGCCCAGAACGGTCCTGTAACGGTCACGCTCGAAAGCGGTAAGATGATCACCATCGCAGCGGGCGCAAGCTCGGGCGTATTGGATGTGGCAGTGGGCAACGACGTCTACCAAGGTCCAACGACGGTTACTGAATCGATTGCCTCGGCATCCGGCGGCAACCTGGAAGCCATCGCACCTAACACCGCTCCGGTCAGCACTATCGTCAGCGACGTCAACGACACGACCGCTGTGACGTTGACCGCTAACCCGACCGTGAACGAAAACGGCACGATCACTTATACCGCCACGCTGACGGGTGCCGATGGCAAGCCGGTCACTGCGCAAAATGGTCCGGTTACCGTGACCTTGGACAGTGGTAAAACCATCACCATCGCAGCCGGCGCAAGCTCGGGTGTGTTGGATGTGGCAGTGGGCAACGACGTCTACCAAGGCCCAACGACGGTTACTGAATCGATTGCCTCGGCATCCGGCGGCAACCTGGAAGCCATTGCGCCTAACACCACGCCAGTCAGCACCGTGGTCAGCGACGTCAACGACACCACCACCGTGACGCTGACCGCTAACCCAACCGTGAACGAAAACGGCACGATCACTTACACCGCTACCCTGACCGGTGCCGATGGCAAGCCCGTTACCGCGCAAAATGGTCCTGTAACGGTCACGCTCGAAAGCGGTAAGACAATCACCATCGCAGCCGGCGCAAGCTCTGGCGTGCTCAATGTCGCGGTCGGTAACGATGTCTATACCGGTGCGCCGTCCATTACCGAGTCGATCAAATCTGCATCCGGTGGCAATCTGGAAGCCATCGTCGTTGATAAGACTGGCGCATCGACTGCTGTAGGCGACACCGTCGACAACACCACTGTCAGCATCACCGGCAGCTCATCGGTCACCGAAGGCCAGGCGGCTACCTATACCGTCAGCCTGACGAACCCGGCGCAAACCGAGGTGACGGTGAAGATCGTCTACAGCGGCACTGCCGCCGACGGCTCGGACTTCACGGGCGTTTACACCGTGAAGATCCCGGCCAATGCCACCAGCGCCAACTTCAACGTGGCAACCCTGGACGACAAGATCACCGAAGGCACGGAAAACTTCGTGGTCAAGATCGACTCCGCCACCGGCGGTAACTTCGAGCATCTGGCGGTCAGCGGGACCAACGGCAGTGTCAGCACCTCGATCATCGACAACGATGCGGCGCCGGTGCTCGACCTGGATGCCAACAACTCCAGTGGCAAGACCGGTGCCGATTACCAGGTGACCTTCACCGAAGGCACCACCGGCCCAGGCGTGTCGATTGGCGATACCGACCTGAAGATCACCGATCCGGACAGCACCATGCTGACCGGCGCCACCATTGTGCTGACCAACCGTCAGCCTGGCGATCATCTGAACCTGGGCAATAGCGTCAACGGCATCAGCATCAACGCCAACAGCACCGACGGCAAGGTCGTCCTGACGCTGACGGGCAATGCGACGCTGGCCGATTATATGCAGCAGATCAAGAACATCAGCTTCATCAACAACAGCGAAGACCCGAGCAGCGTACCGCGCGTCATCACCGTGACGGTGACCGACGGCGCAAGCTACTCCAACACCGCCACTACCACGGTAAACGTGGTCGGCGTCAACGATGCACCGGTGGCCGCCGGTGGTTCGGTGACCGGTACCGAGGACACTTCGCTGGTCCTCGGCTGGTCGACCTTCGGCGTCAGCGACGTGGACAGCTCCGCCGCCAGCCAGGGCGTGAAAATCACCGGGTTGCCAGGCGATGGCAAGTTGCAGTACCTAGATGGCGCGACCTGGAAGAACGTTGCCAACAACCAGACCTTCACCAAGGCCGACATCGACGCCGGCAAGTTGCGCTTCACCCCGGATGCCAACGAATCCGGTGCCAATGGTTATGGCGGCAGCGGCGTGGGCAACAAGCAGGCTGACTACGCGCAGATCAAATTCCAGCCAACCGACGGCCAGGCCCTGGGCAACACCGGCACCGTGAAGATCGACATCACGCCAACCGCCGACGCGCCGACCCTCAACGTAGCCGGCAACAACGTGACCTCCACCGGCCTGATCAAGGAAGTCTGGACCGGGCTGTCGGGCCTGGGCACCGATGGCAACGGCGCGCCGTCGGGCACGCTCAAGTCAGTGATCGATGCCGCCGGCACGCCGAACAGCAGCACCAACGTGAGCAACGTGCAGAACGACGGCAACGTCAATCCGGGCACCGCGTCGAAGACCTCGGGGCTGATTTTCCTGGAAGCCGGCAAGATCTATACCTTCAGCGGCACCGGCGATGACAGCCTGCTGGTGACCATTGGTGGCAAGGACGTGGCGGGCATTACCTGGGGCGCCGGTGGCAAGCTCAATGGTTCGTTCACCCCGACCACCAGCGGCTACTACACCCTGGACATCTACCACCACAACCAGACCGGCCCGGGCAGCTATGACGTGAACCTGTCGGTCAACGGCAGCACGCCCGTGGACCTGAGCAGCGCCGGCATACCGCTCTATACCGGCGTCGCCGACCTGACGAACGCTGGCGTGTCCGTTTCCGACCTGCACGGCACCAATGGCGAAGGCTACTACGACGGCTTCAAGCTCAACGAAGGCGCCGAAGGCGGCAGCGTGAACCTGTCGAAGATCACCACCGCCCTGACCGACACCGACGGTTCCGAAAGCTTGAGCGTGAAGATCGGCGGCATGCCTGAAGGCAGCGTCCTGAGTGACGGCGCGGGTCACACCGCAACCGTGGGAGCCAACGGCGAAGCCTCGGTTACCGGCTGGAACCTTGGCAGCCTCAACCTGACGCCGCCGACCTATTTCAACGGCCAGATCAACCTGACAGTGACGTCGACCTCCACCGAAACCCTCGGCGGGTCGGCGACGACCACGGCACAAATCCCGGTGACGGTGCATCCGGCGGTCTACAACGCTGCGACAGCCACTTCCGGCAGTGACAACGTCACCGGCACCGACGGCAACGACATCGTGGTCGCCGACATCGGCGGCCTGACCGTGGTGCCGGGCGTCAACTACAACATCGCGTTCATGGTCGACAGCTCCGGCAGCATGAGCTCGTCTTCCGTTACCGCCGCGAAGAACTCGCTGACCCAGGTGTTCAACACGCTCAAGCAGAGCATGGGCAGCAACTCCGGGACGGTAAATATTTTCCTGGCGGACTTCGATAATCAGGTCAACAAAAACGTTGCGGTCAACCTCAACGACCCGAACGCGCTGACACTGCTCAAGAGCGTACTCGACTCGATGGTGTCCGGCGGCAATACCAACTATGAAGATGTGTTCAAGACCACCGCAAACTTCTTCAACAGCACCCAAGCCCTGAGTAATACCGGTGCGAAGAACCTGACGTACTTCATCACCGACGGTGAGCCAACGCGCTACCAGTCCGGCGAAGAGACGAACCCAGTGTTGTACGGCACCGTCAAGCTCGACGACGTCCTGAGCGCGGCCAACTACACCGTTGGCAAGTACTACACCCAGACGATCGACAGCACACACAAATTCATCATCGACGAAAATGGGGACATGTTCCTGTCGATCAAGAACGGCAAGAATTGGAATGAAGACTACGTCGGCACGGTGCATGCCGAGGGCAACGGCACGTTCGAGTTCTCCAAACTGGACGGCGGCTGGTGGGGCGACGCCTCGGCAGCAGTCAGCTCAACGGCCAGCTTCACCCTGCTCAAAGGCTTGAGCAACGTTGAAGCCATCGGCCTGAACAACAGCGTGACGCTGAACGACCTCAAGCCCTACGACTCGGACGGCAAGCCGCAAACCAACATCGACCCCAAGGACCTGGCCAACTCGATCATCGGCCACACCGAAGCGACGATGCCGGGAGCCGATACGGTCAACGGCGCGGACGGCAACGACATCCTGTTCGGCGACCTGGTGAGTTTCAACGGCATCGCCGGCGAGGGTTACCAGGCCATCCAATCGTTTGTCGCCCAACAAAGCGGCGCGGACGTCAGCAAGGTCACCACCAGCAACGTGCACCAGTACATCACCGAACACTACACCGCGTTCGATGTGTCCGGCGCACATGACGGCAACGACACCCTGCTGGGCGGTGCCGGCAACGACATCATCTTCGGTCAGGGCGGCAAGGACTTGCTGGACGGTGGTAAGGGCAATGACATCCTGCTCGGCGGCAGCGGTGCCGATACCCTGATTGGCGGCACGGGCAACGACACCCTGATCGGTGGCCTGGGCGGCGACACGTTTGTCTGGAAAGCCGGCGACACCGGCAATGACGTGATCAAGGACTTCAAGGCCGGCGACGGTGACCGGATCGACCTGCGGGACCTGTTGCAGGGCGAAACCGGCAGCACCATCGACCACTTCCTGAAAATCAGCACGGTCGATGGCGTGTCCTCCTTGCAAGTCAGCACCACCGGCCAGTTCAACGCGGCCAACGGTGCGGCGGCGACGCCAGACGTGACGATCAAGCTGGAAGGCAACAACTGGTCGAACATCAACCTGAACTCGCTGATCGCCGGCAGTGATCCGACCATCAAGATCGATCACAACAACAGCTGA	MSSVIAVVKSIVGQVFAVSPEGIRRVLIEGDRLNVGDQLDTGPAGAVTLELADGRSLDLGRDTQWSANAADSSTDLEQAAAQAAPSVDELQQAIAAGVDPTTALEATAAGPTAAGTGGAAGGGHSFVVLDATAGSVDPTIGFPTEGLAAAAATDDNILGGDTTADTTANAVLNATMTLSATPTLTEAGGVLVYTATVTQAPLTNLTVTLSNGAVIVIPAGQLTGSVNVPLAPNDTVYNDPSQISVTVTGTTGGSGIAVTVPTTPAVTQITDTVDTTTVTLSAGDTVTEGGQITYTATLTNPAQTPVTVTLSNGSVITIAAGQTTGTVAVDTPPNDVYNNGSTVSTTITGATGGNFENLVPNTAPAVTTITDSLDTTTVTLTANPTVNENGTITYTATLTGADGKPITAQNGPVTVTLDSGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIKDASGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLDSGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIKDASGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLESGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIASASGGNLEAIAPNTAPVSTIVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLDSGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIASASGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLESGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIASASGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLESGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIKDASGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLDSGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIKDASGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLESGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIASASGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLDSGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIKDASGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLESGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIASASGGNLEAIAPNTAPVSTIVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLDSGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIKDASGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLESGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIKDASGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLDSGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIKDASGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLDSGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIASASGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLDSGKTITIAAGASSGVLDVAVSNDVYQGPTTVTESIKDATGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLESGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIKDATGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLDSGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIASASGGNLEAIAPNTAPVSTIVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLESGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIASASGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLESGKMITIAAGASSGVLDVAVGNDVYQGPTTVTESIASASGGNLEAIAPNTAPVSTIVSDVNDTTAVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLDSGKTITIAAGASSGVLDVAVGNDVYQGPTTVTESIASASGGNLEAIAPNTTPVSTVVSDVNDTTTVTLTANPTVNENGTITYTATLTGADGKPVTAQNGPVTVTLESGKTITIAAGASSGVLNVAVGNDVYTGAPSITESIKSASGGNLEAIVVDKTGASTAVGDTVDNTTVSITGSSSVTEGQAATYTVSLTNPAQTEVTVKIVYSGTAADGSDFTGVYTVKIPANATSANFNVATLDDKITEGTENFVVKIDSATGGNFEHLAVSGTNGSVSTSIIDNDAAPVLDLDANNSSGKTGADYQVTFTEGTTGPGVSIGDTDLKITDPDSTMLTGATIVLTNRQPGDHLNLGNSVNGISINANSTDGKVVLTLTGNATLADYMQQIKNISFINNSEDPSSVPRVITVTVTDGASYSNTATTTVNVVGVNDAPVAAGGSVTGTEDTSLVLGWSTFGVSDVDSSAASQGVKITGLPGDGKLQYLDGATWKNVANNQTFTKADIDAGKLRFTPDANESGANGYGGSGVGNKQADYAQIKFQPTDGQALGNTGTVKIDITPTADAPTLNVAGNNVTSTGLIKEVWTGLSGLGTDGNGAPSGTLKSVIDAAGTPNSSTNVSNVQNDGNVNPGTASKTSGLIFLEAGKIYTFSGTGDDSLLVTIGGKDVAGITWGAGGKLNGSFTPTTSGYYTLDIYHHNQTGPGSYDVNLSVNGSTPVDLSSAGIPLYTGVADLTNAGVSVSDLHGTNGEGYYDGFKLNEGAEGGSVNLSKITTALTDTDGSESLSVKIGGMPEGSVLSDGAGHTATVGANGEASVTGWNLGSLNLTPPTYFNGQINLTVTSTSTETLGGSATTTAQIPVTVHPAVYNAATATSGSDNVTGTDGNDIVVADIGGLTVVPGVNYNIAFMVDSSGSMSSSSVTAAKNSLTQVFNTLKQSMGSNSGTVNIFLADFDNQVNKNVAVNLNDPNALTLLKSVLDSMVSGGNTNYEDVFKTTANFFNSTQALSNTGAKNLTYFITDGEPTRYQSGEETNPVLYGTVKLDDVLSAANYTVGKYYTQTIDSTHKFIIDENGDMFLSIKNGKNWNEDYVGTVHAEGNGTFEFSKLDGGWWGDASAAVSSTASFTLLKGLSNVEAIGLNNSVTLNDLKPYDSDGKPQTNIDPKDLANSIIGHTEATMPGADTVNGADGNDILFGDLVSFNGIAGEGYQAIQSFVAQQSGADVSKVTTSNVHQYITEHYTAFDVSGAHDGNDTLLGGAGNDIIFGQGGKDLLDGGKGNDILLGGSGADTLIGGTGNDTLIGGLGGDTFVWKAGDTGNDVIKDFKAGDGDRIDLRDLLQGETGSTIDHFLKISTVDGVSSLQVSTTGQFNAANGAAATPDVTIKLEGNNWSNINLNSLIAGSDPTIKIDHNNS	PGPT0022180_17	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_RELATED_GENES	CE-BIOFILM-SURFACE_PROTEIN,PGPT0022180-lapA-K12549	NA	NA
D1-36_00204	1350	bepC_1		Outer membrane efflux protein BepC	ATGCGTTCGCATCTGCTCAAGGCTTTACCTTTCGCCCTCGCCGCCAGTTTCGTACAAGCACAAACCTTGCCGCAGGCCATGCAACAAGCATTGGATGTTCATCCGGAAATCCAGGCGGGCGTGAACAGTCGCCTGGCGGCGGATTATCAGCTCAAGGCTGCCAAGGGCGGCTACCTGCCTAGAGTGGACCTCGCAGCCGGGTACGGCCGTGAAGGCACCGACAGCGTGACCACCCGTTCGGGCACCAATAATCATTGGGAAACCTTGAACCGCAGTGAGTCGAGCCTGCGCCTGTCGCAAATGGTTTTTGACGGTTTTGCGACGTCCAGCGAAGTGGGGCGTCAACAAGCCAACGTCAATGCCCGTGCCTATTCCTTGCTCGACGCCTCTGAGCGCACTGGCTTGACCGTGGCCCAGGTGTACCTGGACGTGCTGACCCGTCGCGAATTCGTGCGCCTGGCCGAGGAAAACCTCAAAAGCCACGAACGCATCTTCGATCAGATCAAGCTGCGCACCTCCCGTGGCGTAGGCAGCGGCGCCGACCTGGACCAGGCCGAAGCGCGCATGGCCCAGGCCCGCAATAACCTCATCACCGAACAGACCAATCTGGCCGACGCCGAGACCAATTACCTCAGCGCCGTCGGCCAACTGCCGGATCAATTGGAGCGTCCCGCCGACTTTATGGCGCTGCTGCCGGCCAACCTCACCGAAGCCCGCGCCCAGATGCTAGACAACAGCCCGGTGCTGCGTTCGGCCGAAGCGGATATCGCCGCTGCCGAGCAGCAGTACGCGGCCGCCAAGTCGAGCTTCTATCCGCGCTTCGACGCAGAGCTGGGTCGCACCGCCGACAATGACCTGGACGGCCAGAACGGCCACAACAATGAATGGCAAGCCATGCTGCGCATGCGCTTCAACCTGTACGCCGGTGGCAGTAACAAGGCCGACCTGGAATCCAAGTCCTACCTGTCCAACCAGGCGCTGGATATCCGCAACAACGCGCTGCGCCAGTTGAACGAAGAATTGGGCCTGGCCTGGAACGCGTTGAACAACGCCAACGCCCAAGTGCCGATCGCCCAGCAATACGTCGACCGCAGCGCCAACGTGCGCACGGCCTATCAGAAGCAGTTCAGCCTCGGCGAGCGTACCTTGCTCGACTTGCTCGACAGCGAAAACGAGTTGTTTAGCGCTTCCCGTCGCCTGGCGGAAATCAAGAACGTGCAGCTGTTCACCCAGTACCGGATCAAGGCAACCATGGGCCAGTTGCTGAAAAGCCAGGGTGTGGTCGCGCCGTTGGCATCGGTTGTGCAGAACGACGTGAAACCCAAGGTCCAGTTACCTGGGATGAATTGA	MRSHLLKALPFALAASFVQAQTLPQAMQQALDVHPEIQAGVNSRLAADYQLKAAKGGYLPRVDLAAGYGREGTDSVTTRSGTNNHWETLNRSESSLRLSQMVFDGFATSSEVGRQQANVNARAYSLLDASERTGLTVAQVYLDVLTRREFVRLAEENLKSHERIFDQIKLRTSRGVGSGADLDQAEARMAQARNNLITEQTNLADAETNYLSAVGQLPDQLERPADFMALLPANLTEARAQMLDNSPVLRSAEADIAAAEQQYAAAKSSFYPRFDAELGRTADNDLDGQNGHNNEWQAMLRMRFNLYAGGSNKADLESKSYLSNQALDIRNNALRQLNEELGLAWNALNNANAQVPIAQQYVDRSANVRTAYQKQFSLGERTLLDLLDSENELFSASRRLAEIKNVQLFTQYRIKATMGQLLKSQGVVAPLASVVQNDVKPKVQLPGMN	PGPT0022235_899	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_I_SECRETION_SYSTEMS	CE-TSS1-ADHESIN_TRANSPORT,PGPT0022235-lapE-K12543	NA	NA
D1-36_00205	2157	ltxB	COG2274	Leukotoxin export ATP-binding protein LtxB	GTGGAATCAGAAGTCAGTCCAGTCGAACTAGTTCATGACCCGCGCACGCTGCACGACGACCCATTGTTGGATGGTTTGCTGGCGCTTTGCATGCTGCATCAGAAGCCTGCCAGCGCGGCGATGCTCACCACCGGCCTGCCGTTGCCCAAGCAACGGCTGAGCGTCGAATTATTGTCGCGTGCGGCGGCCCGTGCCGGTCTGCAAGGCCGGGTGCTGCAGCGCAAGCTTGAACAAATCCCCGCCATTGCAATGCCCGCCCTGTTGCTGCTTAAGGAAGGCCGCAGCGCCGTGCTGCTGGGCTGGGCCGGGGACGGCCAGGCGCGCTTGCTGCTCAGCGAAAGCGAAGGCGGCGAAGTCACGGTGAGCCATGAGCTGCTTGCCGACGACTACAGCGGCAAAGTTTTTTTCGCCCAACCGCAGCATAAATTTGACGTCAACCACGGCACGCTCATTCCCCGCGCGCGATCCTGGTTTCGCGACACGCTCAAGCGTTCCCGCTGGCTGTACGCCGACGCCATCGCCGCCAGCCTGTTGATCAACATCATCGCCATGGCCGCTCCGCTGTTCGTGATGAACGTCTACGATCGCGTGGTGCCGAACCAGGCCGAGTCGACGCTGTGGGTACTCGCCGTCGGGATCACCGGCGCCTATGTGTTCGACCTGATCCTGAAAATGCTGCGCAGCTTGTGCCTGGATTTGGCGGGCAAGAAAACCGACTTGATCATTTCGGCGACGCTGTTCGAGCGCATCGTCGGCATGGCCATGAAATACCGCCCTGCGCGGGTGGGCAGCTTTGCCCAGAATATTCATGAGTTCCAGAGCCTGCGGGATTTCCTTGCCTCGCTGACCCTCACCAGCCTGATCGACCTGCCGTTCACCCTGCTGATCTTCATGGTCATCGCGATCCTCGGTGGGCATCTGGTGTGGATTCCGGTGCTGGCGTTCCCGATTGCCTTGCTGATCGGTTATGCGTTGCAAAAGCCTCTGGTCGCGACCATGGAGCGCACCATGGCCTTGGGCGCCGAGCGTCAATCCAGCCTGATCGAAACCCTCGCCGGCCTGGATGCGGTGAAGGTCAACAACGCCGAGAGTGAGCGGCAATATCAGTGGGAACAAACCATCGGCACCCTGGGCCGTCTCGAACTGCGGGTGAAAATGCTGTCCGGCCTGGCGATGAACATCACCTTGCTGATCCAGCAACTGGCCGGGGTGATCATGATCGTCTTCGGTGTCTACCAGATCATCGCCGGCAACCTGAGCATGGGCGGGTTGATAGCTTGCTACATGCTCAGCGGTCGTGCCCTGAGCCCATTGGCGTCGCTGTCGGGCTTGTTGACCCGTTACCAGCAGGCGCGGGTGACCATGACGTCTGTCGATCAAATGATGGAGCTGCCCCAGGAACGCAATTTCGAAGAGCGTCCGCTTAGCCGCAAGGTCTTGCAGGGTGCAGTTGAATGCCGGCAGTTGAATTTCACCTACCCGAACCAGCAGAACCCCGCGTTGAAGAACATCAACCTGGTGATCAAACCGGGCGAAAAGATCGGCATCATCGGCCGCAGTGGCTCGGGCAAAAGCTCGCTCGCCAAGTTGCTGGTGGGTCTGTACCAGCCTGACGACGGCGCGTTGCTGGTGGACGGCGTGGACATTCGCCAGATCGACGTCAGCGAGCTGCGTTACAACATTGGCTATGTGCCCCAGGACATCCAGTTGTTGGCCGGCACCCTGCGCGACAACCTGACCTCCGGCGCCCGTTACGTCGAAGACGAATTGGTGCTCCAGGCTGCGGAACTGGCAGGCGTACACGAGTTCGCACGCCTGCATCCGCAAGGCTACGAGCTGCAAGTGGGCGAGCGGGGGCAGAACCTGTCCGGCGGCCAGCGCCAGAACGTCGCCCTGGCTCGCGCGTTGCTACTCAATCCGCCCATCCTGTTGCTGGACGAACCTACCAGCGCCATGGACAACACCGGCGAAGAACGCTTGAAGCAGCGCTTGGCCGCCGTGGTGGAAAACAAGACGGTGCTGTTGGTGACGCACCGGGCGTCGTTGCTGTCGCTGGTGGATCGCCTGTTGGTGGTCGACCGAGGGCAGATCCTCGCCGACGGTCCCAAGGCCGCCGTGATGGAAGCGTTGAAAAAGGGGCAGATCAGTGTTGCTTAA	MESEVSPVELVHDPRTLHDDPLLDGLLALCMLHQKPASAAMLTTGLPLPKQRLSVELLSRAAARAGLQGRVLQRKLEQIPAIAMPALLLLKEGRSAVLLGWAGDGQARLLLSESEGGEVTVSHELLADDYSGKVFFAQPQHKFDVNHGTLIPRARSWFRDTLKRSRWLYADAIAASLLINIIAMAAPLFVMNVYDRVVPNQAESTLWVLAVGITGAYVFDLILKMLRSLCLDLAGKKTDLIISATLFERIVGMAMKYRPARVGSFAQNIHEFQSLRDFLASLTLTSLIDLPFTLLIFMVIAILGGHLVWIPVLAFPIALLIGYALQKPLVATMERTMALGAERQSSLIETLAGLDAVKVNNAESERQYQWEQTIGTLGRLELRVKMLSGLAMNITLLIQQLAGVIMIVFGVYQIIAGNLSMGGLIACYMLSGRALSPLASLSGLLTRYQQARVTMTSVDQMMELPQERNFEERPLSRKVLQGAVECRQLNFTYPNQQNPALKNINLVIKPGEKIGIIGRSGSGKSSLAKLLVGLYQPDDGALLVDGVDIRQIDVSELRYNIGYVPQDIQLLAGTLRDNLTSGARYVEDELVLQAAELAGVHEFARLHPQGYELQVGERGQNLSGGQRQNVALARALLLNPPILLLDEPTSAMDNTGEERLKQRLAAVVENKTVLLVTHRASLLSLVDRLLVVDRGQILADGPKAAVMEALKKGQISVA	PGPT0022225_883	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_I_SECRETION_SYSTEMS	CE-TSS1-ADHESIN_TRANSPORT,PGPT0022225-lapB-K12541	NA	NA
D1-36_00206	1338	prsE_1		Type I secretion system membrane fusion protein PrsE	GTGGGCCGCTATTTCAAGGGTTCCGACTCGCTGCATGGCCAACCGCTGCCCGAGGTCAACAAGGCACTGATCGAGGACGCCCCGCGAGTGGTGCGCCTGACGATCTGGGGCATCATCGGCTTCTTTGTGTTCTTGGTGCTGTGGGCCAACTTCGCTGAGATCGACGAAGTGACCAAGGGCGACGGCAAGGCAATCCCATCGTCCAAGATCCAGAAGATCCAGAACCTGGAAGGTGGCATCGTCGCTGAGCTGTTCATCAAGGAAGGGCAGATCGTCGAGGCTGGCGCGCCGCTGATTCGCCTGGACGACACGCGGTTTGTCTCCAATGTCGGGGAAACCGAGGCCGATCGCCTGTCGATGCTGCTGCGGGTCGAGCGCCTGAGCGCCGAGGTTGAAGATAGACCGCTGAATTTTCCGGCCGATGTGCTCGAGGCCGTACCGGGCCAGGCCGCCAGCGAAGAGTCGTTGTACATCAGCCGTCGCCAGCAACTGCACGATGAGATCGGTGGCTTGCAGGAGCAGTTGATCCAGCGCCAGCAGGAGCTGCGCGAGTTCGTGTCCAAGCAGGCGCAGTACCGCTCCGGCCTGGCGCTGCAACGCCAGGAAATCAACATGTCCGAGCCGCTGGTGGCCCAAGGCGCGGTGTCGCCGGTGGAGGTGCTGCGGCTCAAGCGCGCCGAAGTCGAGACCCGCGGGCAACTGGACGCCACGACGCTGGCGATTCCTCGCGCCGAGTCGGCCATCAAGGAAGTGCAGCGCAAGATCGACGAGACCCGCGGTAAATTCCGCAGCGAAGCCTTGACCCAACTCAACGAAGCGCGCACCGACCTGAACAAGGCCCAGGCCACCGGCAAGGCCCTGGAAGACCGCGTGAGCCGGACTCTGGTGACGTCGCCGGTGCGCGGCATCGTCAACAAAATGCTGGTGAACACCATCGGTGGCGTGATCCAGCCGGGTAGCGACCTGGTGGAGATCGTGCCGCTGGACGACACCATCCTGGTGGAGGCGAAAATCCGTCCCCAGGACATCGCCTTCCTGCACCCCGGCCAGGACGCCACGGTGAAATTCACGGCTTACGACTACACCATCTATGGCGGGCTGAAAGCCAAGCTGGAACAGATCGGCGCCGACACCATCACCGATGAAGACAAGAAAAGCACTTACTACATCATCAAGCTGCGCACCGAGCGTAGCCACCTGGGCACGCCTGAAAAGCCGTTGCTGATCATCCCGGGGATGGTGGCGTCAGTGGACATCATCACCGGCAAGAAAACCGTGCTCAGCTACCTGCTCAAGCCGATCGTCAAAGCCCGGGCCGAGGCTTTGCACGAGCGGTAA	MGRYFKGSDSLHGQPLPEVNKALIEDAPRVVRLTIWGIIGFFVFLVLWANFAEIDEVTKGDGKAIPSSKIQKIQNLEGGIVAELFIKEGQIVEAGAPLIRLDDTRFVSNVGETEADRLSMLLRVERLSAEVEDRPLNFPADVLEAVPGQAASEESLYISRRQQLHDEIGGLQEQLIQRQQELREFVSKQAQYRSGLALQRQEINMSEPLVAQGAVSPVEVLRLKRAEVETRGQLDATTLAIPRAESAIKEVQRKIDETRGKFRSEALTQLNEARTDLNKAQATGKALEDRVSRTLVTSPVRGIVNKMLVNTIGGVIQPGSDLVEIVPLDDTILVEAKIRPQDIAFLHPGQDATVKFTAYDYTIYGGLKAKLEQIGADTITDEDKKSTYYIIKLRTERSHLGTPEKPLLIIPGMVASVDIITGKKTVLSYLLKPIVKARAEALHER	PGPT0022230_572	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_I_SECRETION_SYSTEMS	CE-TSS1-ADHESIN_TRANSPORT,PGPT0022230-lapC-K12542	NA	NA
D1-36_00207	903	tauD_1	COG2175	Alpha-ketoglutarate-dependent taurine dioxygenase	ATGTCAGCCGTCTCTTTTTCTCCAGATTCAAATGCCGCGAACATCGCGCCGCAGTCGTTCGAGATCCGTCCATTCCCCGATGCCGTAGGCGCCGAGATTATCGGCCTGGACCTGTCCCGGCCCATCGACGACCAGGATTTCTCTCGCATCCACCGCGCCCACCTCGACTATCACGTGGTGGTGTTCCGCGACCAACGCATCACCCCCGAACAGCACATCGCCTTCAGCCGTCGTTTTGGCGTGCTGCAGATCCATGTGCTCAAGCAGTTCCTGCTGGCCGGGCATCCGGAAATCCTCATCGTTTCCAACATCATCGAAAACGGCCAATCCGTCGGCCTTGGGGACGCCGGCAAGTTCTGGCATTCGGACCTTTCCTATAAGCAATTGCCCAGCCTCGGCTCGATGCTCCATGCCCAGGAGCTGCCGAGCGAAGGCGGCGATACGCTATTCGCTGACATGCACAAGGCCTGGGACGGTTTGCCCGAAACGCTGCGGAAGGCGGTCGAGGGCCGTTCGGCGGCGCATTCCTACACGGCGCGCTACAGCGAGACCAAATTCGAAGGCAACTGGCGCCCGACGTTGACGCCAGAGCAACTGGCCCAGGTGGCCGAAGTGGTGCATCCAATCGTCCGCACCCACCCGGAAACCGGGCGTAAAGCGTTGTTCGTCAGCGAGGGCTTCACCACCCGCATCGTTGGTTTTCCAGAGGATGAAAGCACCGCAATCCTGACGCAGCTGTATGCCCACAGCGTGCTGCCCCAGAACATCTATCGCCATCAATGGCAGCCCCACGACCTGGTGTTCTGGGACAACCGCTCGCTGATCCACTTGGCAGCCGGTTGCCCGAGCCATCTGCGTCGCAAGCTGTACCGCACCACCATCCAGGGCGACGCCCCTTTCTGA	MSAVSFSPDSNAANIAPQSFEIRPFPDAVGAEIIGLDLSRPIDDQDFSRIHRAHLDYHVVVFRDQRITPEQHIAFSRRFGVLQIHVLKQFLLAGHPEILIVSNIIENGQSVGLGDAGKFWHSDLSYKQLPSLGSMLHAQELPSEGGDTLFADMHKAWDGLPETLRKAVEGRSAAHSYTARYSETKFEGNWRPTLTPEQLAQVAEVVHPIVRTHPETGRKALFVSEGFTTRIVGFPEDESTAILTQLYAHSVLPQNIYRHQWQPHDLVFWDNRSLIHLAAGCPSHLRRKLYRTTIQGDAPF	PGPT0002940_405	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_TAURINE_UTILIZATION,PGPT0002940-tauD-K03119	NA	NA
D1-36_00208	1026			hypothetical protein	ATGTCCAAACGCCTTGTTTTTGCACCGTTGGCCGCAGCTATCGGCCTGGGGCTCAGCCTGCTCGCCGGCAGCCTGATCGCGCCGGCCAGCGCCCACGCCGAAGGCGAGATTCGCATCGCCGAGCAGTTCGGCATCGTTTACTTGTTGTTGAACGTGGTTCGCGACCAGCAACTGATCGAGAAACACGGTAAGGAGGAGGGCATCGATATCAAGGTCGACTGGACCCAACTATCGGGCGGTGCGGCGGTCAACGATGCGTTGTTGTCGGGCTCCATCGACATTGCCGGGGCCGGTGTCGGGCCGTTGTTGACGGTCTGGGACCGCACCCGTGGCAAGCAGAACGTCAAGGCCGTGGCATCCTTGGGCAATTTCCCCTATTACCTGCTGAGCAACAACCCGACCGTCAAGACCATCGCTGACTTCACCGAGAAGGACCGCATCGCGGTGCCGGCGGTGGGCGTGTCGGTGCAATCGCGGTTCTTGCAACTGGCCGCCGCCAAGCAGTGGGGCGACAAGGATTTCAATCGTCTCGACAAGTACACCCTGGCCGTCCCGCACCCGGACGCCACGGCCGCGCTGATTGCCGGCGGCACCGAGTTGACCGGGCACTTTTCCAACCCGCCGTTCCAGGATCAGGCCCTGCAAAACCCCAACGTCCACGTCGTACTCAATTCCTATGACGTGCTCGGGCCGAACTCGCCCACCGTACTGTTCGCCACCGAAAAATTCCGTGATGAAAACCCGAAGACGTACAAGGCGTTCATCGAGGCCCTGACCGAGGCCGCCGAGTTTGCCCAGAATGACAAAGGCGCGGCGGCGGACACTTACCTGCGGGTGACAAAGGCCAAGATTGACCGCGCGACCTTGCTCAAGATCATCGAAAACCCCCAGATCGAATTCACCGTCACGCCGAAGAACACTTACCCATTGGCTGAGTTCCTCTACCACGTCGGTGCGATCAAGAACAAACCGGCCTCCTGGGAAGATTATTTCTTCCAGGACGCAAAACCGTTACAGGGGAGCTGA	MSKRLVFAPLAAAIGLGLSLLAGSLIAPASAHAEGEIRIAEQFGIVYLLLNVVRDQQLIEKHGKEEGIDIKVDWTQLSGGAAVNDALLSGSIDIAGAGVGPLLTVWDRTRGKQNVKAVASLGNFPYYLLSNNPTVKTIADFTEKDRIAVPAVGVSVQSRFLQLAAAKQWGDKDFNRLDKYTLAVPHPDATAALIAGGTELTGHFSNPPFQDQALQNPNVHVVLNSYDVLGPNSPTVLFATEKFRDENPKTYKAFIEALTEAAEFAQNDKGAAADTYLRVTKAKIDRATLLKIIENPQIEFTVTPKNTYPLAEFLYHVGAIKNKPASWEDYFFQDAKPLQGS	PGPT0001135_3781	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-RELATED_FUNCTIONS	N-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051	NA	NA
D1-36_00209	861	nrtD_1	COG1116	Nitrate import ATP-binding protein NrtD	ATGAACGCGCCATTGCAAGGCCACGCGGCCAGCAACGCCACCCGCACCGACACCGCGTTGCTGGCGGTGGACAACGTCAGCCTGGAATACCGCACCCCGCAGCGTGTGGTGCGGGCTACCCATCAAGTCAGTTTCGAAGTCGATCCGGCGGACCGTTTTGTACTGCTCGGCCCGTCCGGGTGCGGCAAGTCCACGCTGCTCAAGGCCATCGGCGGTTTCATCGCGCCGAGTGAAGGCGAGATCCGATTGCAAGGCCAAACCGTCAACGCGCCGGGTCCGGACCGGATCGTCGTGTTCCAGGAGTTCGACCAACTGCCGCCCTGGAAAAGTGTCAAGCAGAACGTGATGTTCGCGCTGCTGGCTTCGGGCACGCTCAAGCGTCGCGAAGCCGAAGAGCGGGCGCTGCACTATCTCGACAAAGTGGGGCTGGCGGCGTTTGCCGATGCCTACCCCCACACCTTGTCGGGGGGCATGAAGGCCCGTGTCGCGATTGCCCGGGCGCTGGCGATGCAGCCGAAAATCCTGTTGATGGACGAGCCCTTCGCCGCACTCGATGCCCTGACCCGGCGCAAAATGCAGGAAGAATTGTTGCTGCTCTGGGAGGAGGTGCGTTTCACCCTGCTGTTCGTCACTCACTCCATCGAGGAGGCGCTGGTGGTGGGCAATCGTATTCTGCTGTTGTCGCCGCACCCGGGACGGGTCCGGGCGGAAATCCACAGCCATCAATACGATCTGCACAGCCTTGGCGGCGTGGGTTTCCAGCACACGGCACGGCGGATTCATTCGTTGCTGTTCGAGCAAGGCCAGTCGCCGGACGTCGAGCGTGAGCTGGGGTTTGCCGATATCCGTATCGCGTATTGA	MNAPLQGHAASNATRTDTALLAVDNVSLEYRTPQRVVRATHQVSFEVDPADRFVLLGPSGCGKSTLLKAIGGFIAPSEGEIRLQGQTVNAPGPDRIVVFQEFDQLPPWKSVKQNVMFALLASGTLKRREAEERALHYLDKVGLAAFADAYPHTLSGGMKARVAIARALAMQPKILLMDEPFAALDALTRRKMQEELLLLWEEVRFTLLFVTHSIEEALVVGNRILLLSPHPGRVRAEIHSHQYDLHSLGGVGFQHTARRIHSLLFEQGQSPDVERELGFADIRIAY	PGPT0001140_1235	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-RELATED_FUNCTIONS	N-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049	NA	NA
D1-36_00210	867			hypothetical protein	ATGAGCCAGTTATTGCCAGTGCGCGAAGAATACGAAGTCGATCTGCAACCGCTGACCCACGTGCCGCTGGAGCGGGAGTTGCCCTTGGGCCAGCGCCTGTGGCAACAGGGTTGGCTGCGCAAAAGCCTGATCCTGATAGCGCTGGCGGTGCTGTGGGAGGGCGTGGCGCGTTACCAGAACAACGATTTGCTGCTGCCGAGCTTCCTGCAAACCGCCAACGCGTTGTACGACGGTTTGCTCAGCGGCGAGCTGCTGGGCAAGGTGTGGATTTCCCTGGTGGTGCTGCTCAAGGGGTATTTGCTGGGCATCGTCCTGGCGTTTGGCCTGACCACCCTGGCGGTGTCGACGCAGTTGGGCCGCGACCTGCTTAGCACGTTGACGTCGATGTTCAATCCACTGCCAGCTATCGCCCTGTTGCCGCTGGCGCTGTTGTGGTTCGGCCTGGGACAGAACAGCCTGATTTTCGTGCTGGTGCATTCAGTGCTGTGGGCGCTGGCGTTGAATATGTATGCGGGGTTTCTGGGCGTGTCCGAAACGCTGCGCATGGCCGGGCGCAACTATGGGCTCAAGGGCCTGCGCTTTGTGCTGTTCATCCTCATCCCGGCCGCGTTGCCGTCGATCCTCGCCGGACTGAAGATCGGCTGGGCCTTCGCCTGGCGCACCCTTATCGCTGCCGAACTGGTGTTCGGCGCCACTAGCGGCAAGGGCGGTTTGGGCTGGTACATCTTCCAGAACCGCAACGAGCTGTACACCGACAAGGTGTTTGCCGGTTTGGCGGTGGTGATCCTGATCGGGCTGCTCGTCGAGAACCTGGTGTTCGACAGTCTGGAGCGGGTGACGGTGAAGCGTTGGGGGATGCAGCGTTGA	MSQLLPVREEYEVDLQPLTHVPLERELPLGQRLWQQGWLRKSLILIALAVLWEGVARYQNNDLLLPSFLQTANALYDGLLSGELLGKVWISLVVLLKGYLLGIVLAFGLTTLAVSTQLGRDLLSTLTSMFNPLPAIALLPLALLWFGLGQNSLIFVLVHSVLWALALNMYAGFLGVSETLRMAGRNYGLKGLRFVLFILIPAALPSILAGLKIGWAFAWRTLIAAELVFGATSGKGGLGWYIFQNRNELYTDKVFAGLAVVILIGLLVENLVFDSLERVTVKRWGMQR	PGPT0001145_2755	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-RELATED_FUNCTIONS	N-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050	NA	NA
D1-36_00211	894			hypothetical protein	ATGGGGTTCGCCACAAAACCCCTGTGGAAAGGGTGCTGGTTCGGTGACCGACGACTGTCGCAGCCGTTCTTCGGCGATGCCGTGGAAGAAGCCCTGCGCTTGCCCTTCAACCTGGTGTTCCGCCGCCAGACACCCTTGGACGTCCTGGGCCAATGGCAGCGACAGAGCCCCGGCCTGGCGCCCAGCGCATTCATCTTCCATGCCTCCCGATGCGGCTCGACACTGATCAGCCAGATGCTCGCCCAACTGGATGACCACATCGTCATCTCGGAGCCGCCGCCCCTGGATGCGCTGCTGCGCAGTGATTTGCCGCCTGCCGGACGGCGCGTGGCGCTCAAGGGCTTGGTGTCGGCCTATGGGCAGCGCCGTCGAGGTGGGGAGCAACGGCTGGTGATCAAGCTCGACGCCTGGAACATCGGCGAATTGGCGCTGTTGCGCGAATGTTTTCCCGATACGCCTCGGCTGTTCCTGTACCGCGATCCGCTGGAAATTGCCGTCTCCCATCTGCGCCGCCCTGGCATGCACATGGTGCCGGGGTTGATCGGGGCGAGCGTGCTCGACGATGAATTACCCTTCGTCAGCCAGGAAGATTTCATCTCGCGTCGGGTGGGCCGTTTGTTGGCGACAGGTCTGGAGCACTGCCAGGCGTTTGCCGCAATGGCGGTGGACTACACCGAACTGCCCGAGGCGATGACGGGAAGGCTGGCGGCGTTTTTCGGGCTTGATGATGAGCAACGCAGGCGAGTGTTCGCAAAAGTGGGGCAGCATGCCAAGCAGCCGGCGCAGGCGTTCACTGGCGACAGCGAGGACAAGCGCCGGGAGGCTTCGGCGCTGTTGCATGAGCGGGTCAGGTGTTACGCGCAGGCACCCTATGAAGCGTTGAGATCGTTGTAG	MGFATKPLWKGCWFGDRRLSQPFFGDAVEEALRLPFNLVFRRQTPLDVLGQWQRQSPGLAPSAFIFHASRCGSTLISQMLAQLDDHIVISEPPPLDALLRSDLPPAGRRVALKGLVSAYGQRRRGGEQRLVIKLDAWNIGELALLRECFPDTPRLFLYRDPLEIAVSHLRRPGMHMVPGLIGASVLDDELPFVSQEDFISRRVGRLLATGLEHCQAFAAMAVDYTELPEAMTGRLAAFFGLDDEQRRRVFAKVGQHAKQPAQAFTGDSEDKRREASALLHERVRCYAQAPYEALRSL				NA	NA	NA	NA	NA
D1-36_00212	246			hypothetical protein	ATGGAAACCCCGATCCATAACCTTCCCGCGCTGTTCAAACAACTCGGCCTGCCCGACGACGCCGTCAGCATTGATCAATTCATCGCCAGCCACTCGCCGCTCAAGCCCGAATTGCATCTTGCCGACGCATTCTTCTGGAACGAGAGCCAGCGGCAATTGCTGCGTGATGAAATTCTCGAAGATGCCGATTGGGCGGTGGTGGTGGATCAGCTCGACGTGCTGCTGCGCAAGGGCCGAAGTGGTTGA	METPIHNLPALFKQLGLPDDAVSIDQFIASHSPLKPELHLADAFFWNESQRQLLRDEILEDADWAVVVDQLDVLLRKGRSG				NA	NA	NA	NA	NA
D1-36_00213	582			hypothetical protein	ATGCGCAACGAATCGATTCGCTACCTGATCGTGCCGGGCTGGCAAGGATCGCCAGACAATCATTGGCAAACCCACTGGCAGGCCAGCCTGCCCAATAGCACCCGGGTCGAACAGGCTGACTGGTTGACGCCACGCCGAGAAGATTGGGTCGCCGCGCTGGCAGAAGCCATCGCCGCTGACAGCACGCCGGTGATTCTCATCGCGCACAGCCTGGGTTGCATCACGGTTGCCCATTGGGCTGCTACAGCTCCGGTGCAGCTGTTACGACAGGTGCGCGCCGCGTTGCTCGTGGCACCGGCGGATGTGGAGCGGCCGGCCTGCGCCCCGGCGTTGCGCAATTTCGCGCCGATCCCGACGAACCTGCTGCCATTCCCCAGCCAAGTGGTCAGTTCCGACAACGACGCGGCAGTCAGTGCCCCGCGCGCGCTGGAGCTTGCACGCAACTGGGGGGCCGAGGCCGGGATTCTGGCGGGGGCCGGGCATATCAACGTGAAGTCCGGACATCAGCGTTGGGAGCAGGGTTTCGCTTATCTCTACCGCCTGCAAACGCGCATGGAGCATCACGCCCTGCGTCGTGCCTGA	MRNESIRYLIVPGWQGSPDNHWQTHWQASLPNSTRVEQADWLTPRREDWVAALAEAIAADSTPVILIAHSLGCITVAHWAATAPVQLLRQVRAALLVAPADVERPACAPALRNFAPIPTNLLPFPSQVVSSDNDAAVSAPRALELARNWGAEAGILAGAGHINVKSGHQRWEQGFAYLYRLQTRMEHHALRRA				NA	NA	NA	NA	NA
D1-36_00214	936	sfnR	COG1221	Sigma54-dependent transcriptional activator SfnR	ATGACCTTGCACGAAACCTTTGGCCAGCCATTGCTGACCTTTCCCGACTCGGAAAAAAGCCCGCTGAGCATCCGCGCCAAGGCGCTGGTTTTCGTCGACCCACGTTCGCGGCAGTTACGCCAGGAGCTGGAGCGATTGGCACCGCGCTCGGTCTCGGTGTTGATCCGCGGCGAAACCGGCACCGGCAAGGAGCTGTTGGCCAGGCACATCCATCGCGAAAGCAATCGGGGCGGGTTGTTTGTCTCAGTCAATTGCGGCGCCATCAGCCCTACTTACGCCGATGCCGAGTTGTTTGGCTACGCCGCTGGCAGCCATAGCGGTTCAGCCAGCAGCCGGGCGGGGTGGTTCGGCTCGGCCAACGGCGGCACGCTTTACCTGGACGAGATTGGCGACTTGCCGTTGCCGATCCAGATCAAATTGCTGGCGGCCCTGGAGAACCATGAGGTCACGCGCGTTGGCGCTCACCAGCCCAGTCCGGTGGACGTACGCCTGGTCGCGGCCACCAGTATCGATCTGGCGCAAGCGGTGTCGGCTGGAAAATTCCATGATCGGCTCTACCACTACCTTTGCGAGGGTCAGCTTGAGCTGCCGGCCTTGCGCGAAAGAGTGGGCGACATCCTGTCCCTGGCCGAATACTTCTTGGGCATCTACAGCCAGCGGCTTGGTTTGACGGTGCCGCTGATCAGTGAAGCGGCGCAGCATGCCCTTGAGGGGCACAGCTGGCCGGGTAATACCCGTGAGTTGGAAAACGTCATTCACTTTGCATTGCTGGTGAGCACGGGGGACGAGATTTTGCCGGAGCATTTGAACCTGCCGTCCCGGCCAACGGCCCTGGGACTGATCGACCGCCAGGCGGCGCAGGTTATCGCCCAGGGCTCGGAAACCGAACGCCTGGCCCTCAAAGCGTTGCTCGTTCAATTGAGCCAAACGCTCTAG	MTLHETFGQPLLTFPDSEKSPLSIRAKALVFVDPRSRQLRQELERLAPRSVSVLIRGETGTGKELLARHIHRESNRGGLFVSVNCGAISPTYADAELFGYAAGSHSGSASSRAGWFGSANGGTLYLDEIGDLPLPIQIKLLAALENHEVTRVGAHQPSPVDVRLVAATSIDLAQAVSAGKFHDRLYHYLCEGQLELPALRERVGDILSLAEYFLGIYSQRLGLTVPLISEAAQHALEGHSWPGNTRELENVIHFALLVSTGDEILPEHLNLPSRPTALGLIDRQAAQVIAQGSETERLALKALLVQLSQTL	PGPT0030455_16	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_REGULATION,PGPT0030455-sfa3-K11917	NA	NA
D1-36_00215	783	metQ_2	COG1464	D-methionine-binding lipoprotein MetQ	ATGAAAAAGGTTCTGTTGTTCACCGCATTGGCGGCAGCCCTCACCTCGGGCCTGGTCCAGGCCGCAGAGAAGCTGGTCGTCGCAGCCACCCCGGTACCCCACGCCGAAATCCTTGAGCTGATCAAGCCAGCCCTCGCCAAAGAAGGCGTGGACCTGGTGATCAAGGTTTTTACCGACTACGTTCAACCCAACGTACAGGTTGACCAAAAGCGCCTGGACGCCAACTACTTCCAGACCCTGCCGTACCTCAAGAGCTTCAACGAAGGCAAAGGCACTGATCTGGTAACCGTAATCGGCGTGCACGTCGAACCGTTTGGCGGCTACTCGAAAAAGGTCAAGAGCCTGGCTGAGCTGAAGGACGGCGCAACCATCGCCATCCCTAACGAAGGCAGCAACAGCGGCCGGGCCCTGATCCTGCTGCAGAAGGCTGGCCTGATCAAACTCAAGGATCCGAAAAACGCCTTGGCGACGCCGAAAGACATCGCCGAGAACCCGAAGAACTTCAAGTTCAAGGAATTGGAATCGGCCATGTTGCCGCGCGTGCTGGATCAGGTTGACCTGGACATGATCAACACCAACTACGCCTTGGAAGCAGGCCTGAACCCGGCCAAGGACGCCTTGGTGATCGAAGGTTCGGATTCGCCTTACGTGAACTTCCTGGTCGCCCGTCCGGACAACAAGGACAGCGACGCCATCCAGAAACTGGCCAAGGCCCTGACCAGCCCGGAAGTGAAGGCGTTCATCGAGAAGAAGTACAGCGGCGCGGTACTGCCGGCGTTCTGA	MKKVLLFTALAAALTSGLVQAAEKLVVAATPVPHAEILELIKPALAKEGVDLVIKVFTDYVQPNVQVDQKRLDANYFQTLPYLKSFNEGKGTDLVTVIGVHVEPFGGYSKKVKSLAELKDGATIAIPNEGSNSGRALILLQKAGLIKLKDPKNALATPKDIAENPKNFKFKELESAMLPRVLDQVDLDMINTNYALEAGLNPAKDALVIEGSDSPYVNFLVARPDNKDSDAIQKLAKALTSPEVKAFIEKKYSGAVLPAF	PGPT0020510_5340	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020510-metQ-K02073	NA	NA
D1-36_00216	96			hypothetical protein	ATGGCTGACGTGAAAGTGCCGCAGCGACTGGAACCGCAGGAAATAGTCAAATTATTGGTGGCGTTGCGCCGGGCGTTGAAGACCAGGGTGGCCTGA	MADVKVPQRLEPQEIVKLLVALRRALKTRVA				NA	NA	NA	NA	NA
D1-36_00217	666	glnP_1	COG0765	putative glutamine ABC transporter permease protein GlnP	ATGAACTTCGATTACGCTTTTATCCTCAGCACCCTCCCGGCGTTTCTCAAGGCTGTGGGCGTGACGCTGCAGGTCGGTCTTATCGCCATCGTAACGTCGCTGCTGGTGGCGCTGGTCAACGCGACGATCCTGGTGCTGCGCACGCCTTATCTGCAACGCCTGGTGGGGTTGTATGTGGAACTGGCCCGCAACACACCGCTGCTTATCCAGCTCTTCTTCGTCTATTTCGCCTTGCCGGTGCTGGGCATCAAGATCTCGGGGTTTGCGGCGGCGATCATCACCATGACCTTCCTGGGCGGCGCCTACCTCACGGAAGTGCTGCGGGCCGGCGTGGATGCTGTGCCCCAGGCGCAACTGGAGTCCGGTCGCTCCATCGGGCTGTCCCACGGGCAATTGCTGCGCTACGTGATCCTGCCGCAGGCCGGAATCCTCAGCCTGCCGTCACTGTTCGCCAATTTCATTTTCCTGCTGAAGGAGACCACCGTGGTCTCGGCCGTGGCGGTGCCGGAGATTCTCTACACCACCAAAAGCTACATCGCGCTCTACTACAAGACCTACGAAATGCTCGCCGTGCTGACGCTGATCTGCGTGCTGCTGTTTTTGCCGCTGTCGCTGTTGCTCAGCCGTCTGGAAAGGAGGCTCCAGCATGGCCAGTTCGGGTCTTGA	MNFDYAFILSTLPAFLKAVGVTLQVGLIAIVTSLLVALVNATILVLRTPYLQRLVGLYVELARNTPLLIQLFFVYFALPVLGIKISGFAAAIITMTFLGGAYLTEVLRAGVDAVPQAQLESGRSIGLSHGQLLRYVILPQAGILSLPSLFANFIFLLKETTVVSAVAVPEILYTTKSYIALYYKTYEMLAVLTLICVLLFLPLSLLLSRLERRLQHGQFGS	PGPT0020795_8373	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
D1-36_00218	660	glnP_2	COG0765	Glutamine transport system permease protein GlnP	ATGGCCAGTTCGGGTCTTGAGTTGCTGTGGGTGTCGTTGCCGCAACTGGGCGAGGGCGCCGTCCAAACCTTGTCGATTTCCTTTCTGGGAATCGCCTTCAGCACTGTTGGCGGCGTGCTTTATGGCGTGTTGCGGACATTGGGCGTGAAGTGGCTGGACGCCGTCCTGCGGGTCTATCTGGAGCTGTTTCGGGCGATTCCGGTGCTGGTCTGGTTGTACCTGCTGTTTTTCGGTCTGCCGATTCTTTTCGGCCTGAGCATTCCAAGCTTCTGGTGTGCCGTCCTGGTGTTGTCGTCGTGGGGCGCCAGTGAGGTCGGCGAAGTGGTGCGCGGCGCCTTGCATTCGCTGCCGCGGGGCCAACGGGAGGCGGGCTTGTCGATTGGGCTGAACGGGCCGCAACTCTACGGCCATGTGCTGCTGCCACAAGCGCTCAGGCGCATGACGCCGCCGACCATCAACGTCTACACCCGCATCATCAAGACCAGCTCCCTGGCCGTGCTGATCGGCGTGGTGGACGTGATCAAGGTCGGCCAGCAGATCATCGAGCGTACCTACGAATCCGTGCTGATTTACGGCGCGCTGTTCCTGTTTTTCTTTTTCATCTGCTACCCGCTCTCGGCCGCCTCGCGCGTGTTGGAGCGGCGCTGGACGCAAGCATGA	MASSGLELLWVSLPQLGEGAVQTLSISFLGIAFSTVGGVLYGVLRTLGVKWLDAVLRVYLELFRAIPVLVWLYLLFFGLPILFGLSIPSFWCAVLVLSSWGASEVGEVVRGALHSLPRGQREAGLSIGLNGPQLYGHVLLPQALRRMTPPTINVYTRIIKTSSLAVLIGVVDVIKVGQQIIERTYESVLIYGALFLFFFFICYPLSAASRVLERRWTQA	PGPT0020795_9320	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
D1-36_00219	783	glnQ_1	COG1126	Glutamine transport ATP-binding protein GlnQ	ATGAGCGCATTGATCGAGTTCAAGGGTTTCAACAAGTTTTTCGGCGAACAGCAGGTGCTCGACGGCATCGACCTGCACGTGAAGACTGGCGAAGTGATCGTCATCCTCGGCCCCAGCGGTTGCGGCAAAAGTACCTTGCTGCGTTGCCTTAACGGCCTGGAAGTGGCCCACGGTGGCAGCCTGGCATTTGCCGGACGCGAGCTGCTGGACAAAGGCACCGATTGGCGCGAAGTGCGGCAACAGATCGGCATGGTGTTCCAGAGCTACCACTTGTTCCCGCACATGAGCGTGCTCGACAACGTGCTGCTCGGCCCGGTCAAGGTGCAAAAACGCGACCGCCGCGAAGCGCGCGCCCAGGCCGAAGCCCTGCTGGCGCGGGTGGGCCTGCTGGACAAGCGCGATGCCTTCCCGCGCCAGCTCTCTGGCGGCCAGCAGCAACGCATCGCCATCGTGCGTTCGCTGTGCATGAACCCCAAGGTCATGTTGTTCGATGAAGTCACCGCCGCCCTCGATCCGGAAATGGTCAAGGAGGTGCTGGACGTCATCCAGGGCCTGGCTCGCGAAGGCATGACCCTACTGATCGTCACCCACGAAATGGCGTTCGCCCGTGCCGTGGCTGACCGCATTGTGTTCATGGATGCCGGGCGCATCCTTGAACAAAACCCTCCCGAGATTTTCTTTACGAACCCGCAAACCGCACGAGCGCAGCAGTTCCTGGAGAAGTTCTCCTACGTCGCCGCACTACCCAACACGACTCAAACAAAGGAACTGGAACTGTCATGA	MSALIEFKGFNKFFGEQQVLDGIDLHVKTGEVIVILGPSGCGKSTLLRCLNGLEVAHGGSLAFAGRELLDKGTDWREVRQQIGMVFQSYHLFPHMSVLDNVLLGPVKVQKRDRREARAQAEALLARVGLLDKRDAFPRQLSGGQQQRIAIVRSLCMNPKVMLFDEVTAALDPEMVKEVLDVIQGLAREGMTLLIVTHEMAFARAVADRIVFMDAGRILEQNPPEIFFTNPQTARAQQFLEKFSYVAALPNTTQTKELELS	PGPT0020790_1621	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
D1-36_00220	882	glnH	COG0834	ABC transporter glutamine-binding protein GlnH	ATGAAAACTGCCAAGTCTTCTCTGCTGCTATTGCCATTGCTCGCTGTTGCGCTGCTGGCCGGCTGCAATAAAACCGAAGAACCGCCGAAGCCGAACACCGCCAGCCAGAGCAGCGCGCCAGCCGGCTACCTGGAAAAAATCAAGGCGCGGGACAAGCTGATCGTCGGCGTCTTTACGGACAAGCCGCCGTTTGGTTTTGTCGACGAGGCGGGGCGGTATGTAGGCTTCGATACCGACATCGGTCGTCGATTTGCCAAGGACCTGCTTGGCGATGAAAACAAGGTCGAGTTTGTGGCGGTCGAGCCGGCGAGCCGGATTCCGTTCCTGCAAAGTGACAAGGTCGACCTGATCCTGGCGAACATGACCGTGACCCCGGAGCGCAAGGAAGCGGTGGAGTTCACCAATCCGAATCTGAAGGTCGCGGTACAGGCGCTGGTGCCGCAGGCCAGCACGGTGAAAAGCCTTGATGACCTGGCGACCCGCACCACCATTGTCACGACCGGTACGACGGCGGATATCTGGCTGACCAAGAATCACCCGGATTGGAAACTGCTCAAGTTCGAGAAAAATTCCGAGTCCTTGCAAGCATTGGCCAACGGCCGTGGCGATGCCTATGCCCAGGACAATCTGGTGCTGTTCAGTTGGGCCAAGCAGAACCCCGGCTATCGGGTGCTTGAGCAGACACTGGGCGCCGAAGCGCCGATCGCACCGGCGGTGAAGAAGGGCAATGTCGAGCTGCGTGATTGGGTCAATGCCGAGTTGGCGAAGCTGGGGGAAGAGAAATACCTGCTCAAGCTGTACGACCAATATGTGCGCAAGGAACTGAGCGATGACACCAAGCCTGAGAGCGTGATTGTCGAGGGGGGTAAGTGGCAGGGGTGA	MKTAKSSLLLLPLLAVALLAGCNKTEEPPKPNTASQSSAPAGYLEKIKARDKLIVGVFTDKPPFGFVDEAGRYVGFDTDIGRRFAKDLLGDENKVEFVAVEPASRIPFLQSDKVDLILANMTVTPERKEAVEFTNPNLKVAVQALVPQASTVKSLDDLATRTTIVTTGTTADIWLTKNHPDWKLLKFEKNSESLQALANGRGDAYAQDNLVLFSWAKQNPGYRVLEQTLGAEAPIAPAVKKGNVELRDWVNAELAKLGEEKYLLKLYDQYVRKELSDDTKPESVIVEGGKWQG	PGPT0020800_3680	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
D1-36_00221	1161			hypothetical protein	ATGCTCAAGACATTGGCGGTGGCCAACTACCGATCCATCAATAAATTGGTCATCCCGTTGGGTCGGTTGAACTTGATCACCGGCCCTAACGGCAGCGGCAAATCCAATCTGTACAGGGCCTTGCGACTGTTGGCGGAGACGGCACAGGGCGGAGTGGTAAATGCCTTGGCCCGTGAAGGCGGGCTGGATTCGACCTTCTGGGCCGGCCCCGAAGAAATCAGCCGGCGCATGCGCAACGGCGAAGTGCCAGTGCAGGCGGTCGTGCGTCAGGGCACCAAGCGCCTGCGCCTGGGATTCGCCGGTGAAGACTTCAGCTATTCGATCGCGCTCGGCCTGCCAGCGCCCAGTCAATCGGCGTTTTCACTGGACCCGGAAATCAAGCGCGAGTGCATCTGGGCCGGCCCCGTGTTCCGACCGGCCAGCCTGCTGGTGGACCGCAACGGGCCGATGGTCCGTGCCCGCGAAGGCCGTTCGTGGGATGTCCTGTCCCAGCACACCCCGACCTTCGATAGCCTGTTCGACCAGGTCGGCAGCCTGCATGCTTCGCCGGAAGTGCTGCAAATGCGTGAATTCATCCGCCGCTGGCGCTTCTATGATCACTTTCGCAGCGACGCCGACGCCCCGGTGCGCCAACCGCAACTGGGCACACGCACACCGGTGTTGCATCACGATGGGCGCGATTTGGCCGCAGCCCTCCAGACCATTTTTGAAATCGGTGACGTCGACGCGTTGCATGGGGCCATCGGCGATGCGTTCCCCGGTGCCCATCTGCACATCGACAAGCTGCAAGGCGGACGTTTCGCCATTGCGTTCCAGCAACACGGCCTGCTACGGCCGCTGACCGCCGCCGAACTGTCGGACGGGACCCTTCGCTACCTGCTGCTCGTGGCCGCGCTGCTCACACCGCGACCGCCGTCGCTGATGGTGCTCAACGAACCGGAAACCAGCCTGCACCCCGACCTGTTGCCGGCCCTGGCGCGCTTGATCATCCGCGCTTCGGCCAGTTGCCAGGTCTGGGTCGTATCCCACGCCTCGCGCCTGATTGCCGCGCTGGAACAGGATGAGGACTGCAATTGCATCGTGCTGGATAAAGATTTTGGGCAGACCGGGATTGCCGGGCAGCGCGCGCTGGATGAGCCGGCGTGGCATTGGCCGGACTAG	MLKTLAVANYRSINKLVIPLGRLNLITGPNGSGKSNLYRALRLLAETAQGGVVNALAREGGLDSTFWAGPEEISRRMRNGEVPVQAVVRQGTKRLRLGFAGEDFSYSIALGLPAPSQSAFSLDPEIKRECIWAGPVFRPASLLVDRNGPMVRAREGRSWDVLSQHTPTFDSLFDQVGSLHASPEVLQMREFIRRWRFYDHFRSDADAPVRQPQLGTRTPVLHHDGRDLAAALQTIFEIGDVDALHGAIGDAFPGAHLHIDKLQGGRFAIAFQQHGLLRPLTAAELSDGTLRYLLLVAALLTPRPPSLMVLNEPETSLHPDLLPALARLIIRASASCQVWVVSHASRLIAALEQDEDCNCIVLDKDFGQTGIAGQRALDEPAWHWPD				NA	NA	NA	NA	NA
D1-36_00222	1104	mdtE		Multidrug resistance protein MdtE	ATGACTGGTCCCGGAATCAAATTGATTGTTGGCTTGGGCGTGTGTGCGTTGTTGACGGGGTGCGGTGATAAGAAACCCGAGGAAAAAGCCTTGCCACGGGTGTTCATACAGCAAGCCACGCCCAGCGAATACGCGGCCTCCGTGACGCTGACCGGCGATGTCCAGGCCCGCGTTCAGGCCGACCTCTCGTTTCGCGTGAGCGGCAAGATCATCGAGCGCAAGGTTGACGTCGGTGACCGGGTCTCGGCCCGGCAAGTGTTGGCCCGGCTCGATCCTCGCGACTTGCAGACCAACGTCGACTCCGCCGAAGCCCAGGTGGCCGCCGAACAGGCGCGGGTCAAGCAGAGCGCCGCCGCCTTCGTGCGCCAGCAAAAGCTCTTGCCCAAAGGCTATACCAGCCAGAGTGAATACGACGCGGCCCAGGCTCAACTGCGCAGTAGCCAGAGCGCGATGACGGCGGCCCAGGCACAACTGGCCAATGCTCGCGAACAGCTGAGCTACACCGCGCTGATCGCCGAGGCGCCTGGCATCATCACGGCACGCCAGGCGGAAGTCGGCCAGGTGGTCCAGGCCACCGAGCCGATCTTCAGCCTGGCCAGGGACGGTGAACGTGACGCAGTGTTCAACATCTATGAATCTCTGCTGCGCGAACCGCCGTCGGACCCGGCTATCACCATTAGTCTGCTGGACAACCCTGCTATCAAGACCACCGGTACGGTGCGTGAGATCACCCCGGCGGTGTCCGCCGAGACCGGCACCGTGCAGGTCAAGGTCACGCTTCATGACTTGCCTGAAGGCATGCGCCTGGGATCCGTGGTCAGCGCCACGGCCAAGTCCGCCGGAAAGACGGCCGTGGAACTGCCCTGGTCGGCACTGACCAAGAACCTCAGCGAGCCCGCCGTGTGGCTGGTGGACGACGAAGGCAAGGCGCAATTGCATACGGTCACGGTCGGTCGTTACTTGACCGGCAAGGTCATCATCAGCGACGGGCTCAAGGGCGGCGAGAAGGTCATCATTGCTGGCGGGCAGCTGCTCCATCCTGGCGTGCGCGTTGAGGTCGCCGAAAACAATTACGCCAAAGCCCCGACAGGAGCCCAGCCATGA	MTGPGIKLIVGLGVCALLTGCGDKKPEEKALPRVFIQQATPSEYAASVTLTGDVQARVQADLSFRVSGKIIERKVDVGDRVSARQVLARLDPRDLQTNVDSAEAQVAAEQARVKQSAAAFVRQQKLLPKGYTSQSEYDAAQAQLRSSQSAMTAAQAQLANAREQLSYTALIAEAPGIITARQAEVGQVVQATEPIFSLARDGERDAVFNIYESLLREPPSDPAITISLLDNPAIKTTGTVREITPAVSAETGTVQVKVTLHDLPEGMRLGSVVSATAKSAGKTAVELPWSALTKNLSEPAVWLVDDEGKAQLHTVTVGRYLTGKVIISDGLKGGEKVIIAGGQLLHPGVRVEVAENNYAKAPTGAQP	PGPT0029130_140	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029130-triA-K21136	NA	NA
D1-36_00223	1065	mdtA_1		Multidrug resistance protein MdtA	ATGAAGCGCTTATGGATGGTCTTGGCCGGCCTGCTGCTGGCCGCCTGTTCGAAGGAAGAGGCGCCGCCGGAGCCGGTGCGACCGGTGTTGTCAATCGAAGTCCGGGCTTTGGACCAACAGGCGCTGGGACGTTTCGCGGGGAATATCCAGGCGCGTTACGAGACCAACGTGGGGTTCCGGGTGCCGGGCCGCATTGCCAGCCGCAACGTCGATGTCGGCGCCGAGGTGAAGAAGGGCGACCTGCTCGCGACACTCGATCCCACTGATCAGCAGAACCAATTGCGCGCTGCCCAAGGCGATCTCGCGCGGATCCAGGCGCAGTACATCAATGCCCAGGCCAACGCTCGCCGGCAGCAACAATTATTCGACCGAGGGGTCGGTGCCCAGGCGCAACTGGACATCGCCCAGACGGACCTGAAAACCACCGCGGCGTCCCTGGAGCAGGCCCGGGCCTCGGTGGAGCAAGCCCGCGATCAGCTCAACTACAGCGAGCTGCATACCGACCATGACGCTGTTGTCACGGCCTGGAATGCCGAGGCGGGGCAAGTGGTGACCGCCGGCCAGCAAGTAGTGACCCTGGCCCGGCCCGACGTGAAGGAAGCGGTGATCGACCTGCCTGCCGGGCTGGCCGAGCGCCTGCCCGAGGACGTGGTGTTCGAAGTCGCCGCGCAACTGGACCCGGCGACCCGCACCACGGCCATCGTGCGCGAAATCGAGCCCCAGGCCCAGAGCGCCACCCGCACCCGTCGCGCGCGCCTGACGCTGACCGATACTCCACCGGGATTTCGCCTGGGCACGGCGATCAGCGTGACCCTGAGCTCGGCCATCGAGCCACGCATCGAACTGCCTCTCAGCGCCTTGCAAGAGGTTGATGGCAAGTCGCGAATCTGGCTGATCAACCCGCAGGACCAGACGGTTTCGCCACGGGACGTGCAGGTGCTGGAACGGTCGGACGGCTCGGTGTTGGTGGCCAACGGCATCAAGCCCGGCGACCGCGTGGTCAGCGCTGGCGTGAACAGTCTCCAGCCGGGGCAAAAAGTGAAACTCGACGAGGAAGCACGATGA	MKRLWMVLAGLLLAACSKEEAPPEPVRPVLSIEVRALDQQALGRFAGNIQARYETNVGFRVPGRIASRNVDVGAEVKKGDLLATLDPTDQQNQLRAAQGDLARIQAQYINAQANARRQQQLFDRGVGAQAQLDIAQTDLKTTAASLEQARASVEQARDQLNYSELHTDHDAVVTAWNAEAGQVVTAGQQVVTLARPDVKEAVIDLPAGLAERLPEDVVFEVAAQLDPATRTTAIVREIEPQAQSATRTRRARLTLTDTPPGFRLGTAISVTLSSAIEPRIELPLSALQEVDGKSRIWLINPQDQTVSPRDVQVLERSDGSVLVANGIKPGDRVVSAGVNSLQPGQKVKLDEEAR	PGPT0029135_468	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029135-triB-K21137	NA	NA
D1-36_00224	3048	czcA		Cobalt-zinc-cadmium resistance protein CzcA	ATGAAAGGGCCTTTCAACTTATCGGAATGGGCCCTGCGGCATCAGTCGTTCGTGTGGTACCTGATGTTCGTCGCGTTGCTGATGGGCGTGTTTTCGTACCTGAATCTGGGCCGCGAAGAGGACCCCTCGTTCACCATCAAGACCATGGTCATCCAGACGCGCTGGCCTGGCGCGACCCAGGAAGAAACCCTCAAGCAGGTCACGGACCGCATCGAGAAAAAACTCGAAGAGCTCGACTCCCTCGATTATGTGAAGAGCTACACCCGACCCGGGGAATCGACGGTATTCGTCTATCTGCGCGATACCACTGGCGCCGAAGAGATTCCCGAGATCTGGTACCAGGTCCGCAAGAAGATCAACGACATTCGCGGCGATTTCCCGGAAGGCCTCCAAGGGCCGGGATTCAATGACGAGTTCGGTGACGTCTATGGCTCGGTGTACGCCTTCACCGGCGACGGCTTGTCGATGCGTCAGTTGCGTGACTACGTGGAGCAAGTACGTGCCGAGATCCGCGAGGTGCCTGGCCTGGGCAAGGTGGAAATGGTCGGCGAGCAGGACGAAGTGCTGTACCTGAATTTCTCCACCCGCAAACTCGCGGCGCTGGGAATCGACCAGCGCCAAGTGGTGCAGAGCCTGCAATCGCAGAACGCGGTGACCCCGGCCGGTGTGATCGACGCCGGGCCAGAGCGGATTTCCGTGCGCACCTCGGGCCAGTTCCAGTCGGAAAAGGACCTGGCCAACGTCAACCTGCGACTCAACGACCGCTTTTATCGACTGGCCGACATCGCCGATATCCGCCGTGGCTACGTCGACCCCGCCACACCGATGTTCCGCTTCAACGGCACGCCGGCCATTGGCTTGGCCATCGCCATGAAGAAGGGCGGCAACATCCAGGAATTCGGCAAGGCCCTGCATGCACGCATGAACGAACTGACCGCCGACCTTCCGGTGGGCGTCGGCGTGCACACGGTGTCGGACCAGGCCGAAGTGGTGGAGGAGGCCGTCGGCGGCTTCACCAGCGCGTTGTTCGAGGCGGTGATCATCGTGCTCGTCGTCAGTTTCATCAGCCTCGGCATCCGGGCGGGGCTGGTGGTGGCCTGCTCGATCCCGCTGGTGTTGGCGATGGTTTTTGTCTTCATGGAATACAGCGGCATCACCATGCAGCGGATCTCCCTCGGCGCGCTGATCATCGCCCTGGGCCTGCTGGTGGACGATGCAATGATCACCGTGGAGATGATGGTCACCCGCTTGGAGAAAGGCGACACCAAGGACCAGGCCGCCACCTTTGCCTATACCTCGACCGCCTTCCCCATGCTCACCGGGACCCTGGTCACCGTGGCCGGTTTCGTGCCCATCGGCCTGAACGCCAGTTCGGCGGGCGAATACACCTTCACCCTGTTCGCCGTGATTGCCGTGGCGATGCTGGTGTCATGGATCGTCGCGGTGCTGTTTGCGCCGGTGATCGGCGTGCACATCCTGAGTACCAACATCAAACCCCACAGCGCCGAGCCGGGGCGCATTGGTCGGGCCTTCAACGGTGGCCTGTTGTGGGCGATGCGCAATCGCTGGTGGGCCATTGGCATCACGGTGTTGCTGTTTGCGTTGGCGGTGTTCTGCATGCGCTTCGTGCAGAACCAGTTCTTCCCGTCCTCGGACCGCCCAGAGATCCTGGTGGACCTCAACCTGCCGCAGAACGCCTCGATGGACGAGACGCGCAAGGCGGTCGATCGCCTGGAAGCGACCCTCAAGGATGACCCGGACATCGCGCGCTGGAGTACTTACATCGGCGAAGGCGCGATTCGTTTCTATCTGCCGCTGGACCAACAGCTTCAAAATCCGTACTACGCGCAACTGGTGATCGTCAGCAAGGGCCTGGAGTCGCGCGCGGCCCTGACCGAACGTCTGCAGAAACGCCTGCGGGAGGATTTCGTCGGCATTGGCAGCTACGTGCAGGCCCTGGAAATGGGCCCGCCGGTGGGCCGTCCGATCCAGTATCGCGTCAGCGGCAAGGACATCGACCAGGTGCGCAAGCACGCCATCGAGCTGGCCACCGAGCTGGACAAGAACTCCCACATCGGCGAAATCATCTACGACTGGAACGAGCCAGGCAAAGTGCTGCGCATCGACATCGCCCAAGACAAGGCGCGGCAACTGGGCTTGTCTTCGGACGATGTCGCCCGGCTGATGAACAGCATCGTCAGCGGCTCGCCGGTGACCCAGGTCAACGACGATATCTACCTGATCGACGTGGTAGGGCGCGCCGAAGACGCCGAGCGCGGCTCGCCGGAAACCCTGCAGAACCTGCAGATCGTTACCCCGAGCGGCACGTCAATTCCATTGCTGGCCTTCGCCACGGTGCGTTACGAGCTGGAGCAGCCGCTGGTATGGCGTCGCGACCGCAAGCCCACCATCACCATCAAGGCCGCCGTGCGCGATGAAATCCAGCCCACGGACCTGGTGCGGCAACTGCAACCGGACATCGACAAATTCGCCGCCAAATTGCCAGTGGGCTACAAGATCGCCACCGGCGGTACGGTGGAAGAAAGCAGCAAGGCCCAAGGGCCAATCGCCAGCGTTGTGCCGCTGATGCTGTTCTTGATGGCGACGTTCCTCATGATCCAGCTGCACAGCGTGCAGAAGCTGTTTCTGGTGGCGAGCGTCGCGCCGTTGGGCCTGATTGGCGTGGTGCTGGCGCTGGTGCCGACGGGCACGCCCATGGGCTTCGTGGCGATCCTCGGCATCCTCGCGCTGATCGGCATCATCATCCGTAACTCGGTGATCCTGGTGACCCAGATCGATGAGTATGAGCGTGACGGCTACGAGCCGTGGGACGCCGTGGTGGAAGCCACCGAGCATCGGCGTCGGCCGATCCTGCTGACAGCTGCCGCGGCGAGCCTGGGGATGATCCCGATTGCCCGGGAAGTGTTCTGGGGGCCGATGGCCTACGCGATGATCGGCGGCATCATCGTCGCCACGCTGCTGACGCTGCTGTTCCTGCCGGCGTTGTACGTGGCTTGGTACAAGATCCGCGAGCCGAAGCGTGATTGA	MKGPFNLSEWALRHQSFVWYLMFVALLMGVFSYLNLGREEDPSFTIKTMVIQTRWPGATQEETLKQVTDRIEKKLEELDSLDYVKSYTRPGESTVFVYLRDTTGAEEIPEIWYQVRKKINDIRGDFPEGLQGPGFNDEFGDVYGSVYAFTGDGLSMRQLRDYVEQVRAEIREVPGLGKVEMVGEQDEVLYLNFSTRKLAALGIDQRQVVQSLQSQNAVTPAGVIDAGPERISVRTSGQFQSEKDLANVNLRLNDRFYRLADIADIRRGYVDPATPMFRFNGTPAIGLAIAMKKGGNIQEFGKALHARMNELTADLPVGVGVHTVSDQAEVVEEAVGGFTSALFEAVIIVLVVSFISLGIRAGLVVACSIPLVLAMVFVFMEYSGITMQRISLGALIIALGLLVDDAMITVEMMVTRLEKGDTKDQAATFAYTSTAFPMLTGTLVTVAGFVPIGLNASSAGEYTFTLFAVIAVAMLVSWIVAVLFAPVIGVHILSTNIKPHSAEPGRIGRAFNGGLLWAMRNRWWAIGITVLLFALAVFCMRFVQNQFFPSSDRPEILVDLNLPQNASMDETRKAVDRLEATLKDDPDIARWSTYIGEGAIRFYLPLDQQLQNPYYAQLVIVSKGLESRAALTERLQKRLREDFVGIGSYVQALEMGPPVGRPIQYRVSGKDIDQVRKHAIELATELDKNSHIGEIIYDWNEPGKVLRIDIAQDKARQLGLSSDDVARLMNSIVSGSPVTQVNDDIYLIDVVGRAEDAERGSPETLQNLQIVTPSGTSIPLLAFATVRYELEQPLVWRRDRKPTITIKAAVRDEIQPTDLVRQLQPDIDKFAAKLPVGYKIATGGTVEESSKAQGPIASVVPLMLFLMATFLMIQLHSVQKLFLVASVAPLGLIGVVLALVPTGTPMGFVAILGILALIGIIIRNSVILVTQIDEYERDGYEPWDAVVEATEHRRRPILLTAAAASLGMIPIAREVFWGPMAYAMIGGIIVATLLTLLFLPALYVAWYKIREPKRD	PGPT0029140_388	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029140-triC-K21134	NA	NA
D1-36_00225	2220	cadA_1		Cadmium-transporting ATPase	ATGAGCGATTCCCTTCACCTTCATAACCCCGACCACGGCCACGGCCACGGGCATTCCTGCTGTGCTGCAAAAGCAGCACCGTCGGTGGTCAACCTCGGCAAAACACCGACGGACGGTGCGCGGCTGAGCAGCTTTCGCATCCAAGCCATGGATTGCCCCACCGAGCAAACGCTGATCCAGAACAAACTCGGCAAGCTCGAAGGTGTGCAACAGCTGGAATTCAACCTGATCAACCGAGTATTGGGCGTGACCCACGACTTGCCCAACGACACCCCGATCATCAAAGCGATCGAGTCCCTCGGAATGCAAGCCGAGGCGTTGGCCGACGGCCAGGATAACCCCACCCACACCCCACCCGCCCCAGCCAAGCCCTGGTGGCCGCTGGCGTTGTCCGGCGTCACGGCACTGGCTGCCGAGGTGATCCATTTCACCAGTGCCGCGCCTGATTGGGTGGTTGCCCTGGTCGCGCTGGTGTCGATTCTCAGCGGCGGCCTCGACACCTACAAGAAGGGCTGGATTGCCCTGAAAAACCTCAACTTGAACATCAACGCCTTGATGAGCATTGCCGTGACCGGCGCCGTGCTCATCGGCCAATGGCCGGAAGCGGCGATGGTGATGTTCCTGTTTACCGTGGCCGAGCTGATCGAGGCGAAATCCCTCGACCGGGCGCGCAACGCCATCAGCGGCCTGATGCAAATGACGCCGGAGCAAGCCACGGTGCAACAGGCCGACGGCACGTGGCAGGTAGAGGACGTAAAAACCATCGCCCTCGGCGCAAGGGTGCGGGTTCGTCCTGGCGAGCGGGTTGGGCTGGACGGTGACGTGGTCGCTGGACGCTCGACCATCGATCAGGCACCCATTACCGGTGAAAGCCTGCCGGTGGAAAAAACCGTGGGCGACAAAGTGTTCGCCGGCACGATCAACCAGGCCGGCGAGCTGGAATACACCGTGACCGCCGTCGCCGACCAGTCCACCCTGGCGCGGATCATTCACGCCGTGGAGCAAGCCCAGGGTTCCCGGGCGCCGACCCAGCGTTTCGTTGATCAATTCTCGAAAATCTACACCCCGGCGGTGTTTGCCCTGGCCCTGGCCATGGCGGTCATCCCACCGCTGTTCATGGACGCGAGCTGGTTCGACTGGATCTACCGCGCACTGGTCCTGCTGGTGGTGGCCTGTCCTTGTGCGCTGGTGATTTCCACCCCGGTGACCATCGTCAGCGGCCTGGCGGCTGCGGCGCGCAAAGGCATATTGGTCAAGGGCGGCGTTTACCTTGAGGGTGGCCACAAACTCGATTATCTGGCTTTGGACAAGACCGGCACGATTACCCATGGCAAACCGGTACAGACCGATTACGTGCTGCTGGACCCGGCTCTGGAGACGGCGGTCCCGGCCCTGGCCGCCAGCCTCGCGGCGCGCTCAGACCATCCGGTATCCCAGGCGATTGCCGAGGCGGCTGTGGATAAAAACCAGCCGCAGCAGACTGTGGATAACTTTGCGGCGCTCCCTGGCCGCGGCGTCCGCGGCGACATTGGTGGCCAGACCTATCACCTGGGCAATCATCGCCTGGTGGAAGACCTTGGCCACTGCTCCCCTGAGCTTGAAGAGAAGCTCTTCGCCCTGGAAAAACAAGGCAAGTCCGTGGTGCTGCTGCTCGACAGCACAAAACCCTTGGCGCTGTTTGCCGTCGCGGACACCGTCAAGGATTCCAGCCGCGAAGCCATCCGGCAACTGCATGACCTGGGTATCAAGACGGTGATGCTGACCGGCGACAATGCCCACACCGCCGAAGCGATCGCTAGGCAGGTGGGCATAGATCAGGCCCGAGGCGACCTGCTGCCAGAGGACAAGCTACACGCCATCGAAAGTCTTTACGCCCAAGGCCACCGCGTCGGCATGGTCGGCGACGGCATCAACGACGCCCCGGCGCTTGCCCGCTCGGAAATCGGTTTCGCCATGGCGGCGGCCGGCACCGACACGGCCATCGAGACCGCCGACGTGGCCTTGATGGACGATGACCTGCGCAAGATTCCGGCATTCATCCGGCTGTCGCGGCAGACGTCCAGTATCCTGAAGCAGAACATCATCCTGGCGCTGGTCATCAAGGCGATCTTTCTCGGCGTCACCTTCGCCGGGTTAGCCACCATGTGGATGGCGGTGTTTGCCGACATGGGGGTGAGTCTGCTGGTGGTGTTCAATGGGTTGCGGTTGTTGCGCAAGTAA	MSDSLHLHNPDHGHGHGHSCCAAKAAPSVVNLGKTPTDGARLSSFRIQAMDCPTEQTLIQNKLGKLEGVQQLEFNLINRVLGVTHDLPNDTPIIKAIESLGMQAEALADGQDNPTHTPPAPAKPWWPLALSGVTALAAEVIHFTSAAPDWVVALVALVSILSGGLDTYKKGWIALKNLNLNINALMSIAVTGAVLIGQWPEAAMVMFLFTVAELIEAKSLDRARNAISGLMQMTPEQATVQQADGTWQVEDVKTIALGARVRVRPGERVGLDGDVVAGRSTIDQAPITGESLPVEKTVGDKVFAGTINQAGELEYTVTAVADQSTLARIIHAVEQAQGSRAPTQRFVDQFSKIYTPAVFALALAMAVIPPLFMDASWFDWIYRALVLLVVACPCALVISTPVTIVSGLAAAARKGILVKGGVYLEGGHKLDYLALDKTGTITHGKPVQTDYVLLDPALETAVPALAASLAARSDHPVSQAIAEAAVDKNQPQQTVDNFAALPGRGVRGDIGGQTYHLGNHRLVEDLGHCSPELEEKLFALEKQGKSVVLLLDSTKPLALFAVADTVKDSSREAIRQLHDLGIKTVMLTGDNAHTAEAIARQVGIDQARGDLLPEDKLHAIESLYAQGHRVGMVGDGINDAPALARSEIGFAMAAAGTDTAIETADVALMDDDLRKIPAFIRLSRQTSSILKQNIILALVIKAIFLGVTFAGLATMWMAVFADMGVSLLVVFNGLRLLRK	PGPT0004200_1735	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_LEAD_RESISTANCE	LEAD_RESISTANCE-PBR_TRANSPORT_SYSTEM,PGPT0004200-zntA|cadA-K01534	NA	NA
D1-36_00226	447	merR1		Mercuric resistance operon regulatory protein	ATGAAAATCGGAGAACTGGCGAAAATCACCGGCTGCCAGGTGGAAACCATCCGCTACTACGAACGTGAGGGCCTGTTGCCGGAGCCGGCCCGCAGCGACGGCAATTACCGCGTCTACACCCAGGCCCATGCCGAGCGGCTGACGTTCATCCGCAACTGCCGCACCTTGGACATGACCCTGGAAGAAATCCGCAGCCTCCTGGCCCTGCGCGACAGCCCCCAGGACCAGTGCGAAAGCGTCAATGCACTGATCGACGAGCACATCCATCACGTCAAGGCCCGCATCGATGGCCTGATGGCGTTGCAGGCACAACTGATCGACCTGCGCCATCGCTGTGGCGAAGGGCCGGATCTGGACCAATGTGGGATTTTGCAGCGGCTGGAAGTCAGTGGCGCGGTGGCGCCGGATGTGGAGCATTCCCATGTAGGCAGGAGCCATGGGCATTGA	MKIGELAKITGCQVETIRYYEREGLLPEPARSDGNYRVYTQAHAERLTFIRNCRTLDMTLEEIRSLLALRDSPQDQCESVNALIDEHIHHVKARIDGLMALQAQLIDLRHRCGEGPDLDQCGILQRLEVSGAVAPDVEHSHVGRSHGH	PGPT0004288_5	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_LEAD_RESISTANCE	LEAD_RESISTANCE-LEAD_HOMEOSTASIS,PGPT0004288-pbrR-NA	NA	NA
D1-36_00227	972	thyA	COG0207	Thymidylate synthase	ATGAAGCAATATCTCGATCTGGTGGCCCACGTCATCAAGAACGGCACCAAGCAAGCCAACCGCACCGGCGTGAACACCATCAGCTTCCCCGGCGCCATGCTGCGCTATGACCTGAAGGAAGGCTTTCCCGCCATCACCACCCGCAAGATGGCCTTCAAGTCGGCCATCGGCGAGATGTGCGGTTTCCTCCGTGGCGTGAACAACGCCGCCGAGTTCCGCGCCCTGGGCTGCAAGGTCTGGGACCAGAACGCCAACGAAAACGCCCAATGGCTGGCCAACCCATTCCGCCAGGGCGAAGACGACCTGGGCGAGATCTACGGCGTGCAATGGCGCAAATGGCCGGCGTACAAACAGATCCCCCTGAGCAACCCGGCGGCCATCGAGCAGACGCTCGTCCAGGGTTACCGCCAGATCGCCGAGGGCGAAGAAAACGGCCAAGCCTACGTGGTGCTGTACAAAGCCATCGACCAGGTTCGCCAGTGCGTCGACACCATCATCAAGGACCCGGGCAGCCGGCGCATCCTGTTCCACGGCTGGAACTGCGCCCAGCTCGATGAAATGGCATTGCCGCCGTGCCATTTGCTCTACCAGTTCCACCCGAATGTCGAGACGAAGGAAATCTCCCTGACCCTCTACATCCGCTCCAACGACCTGGGCCTGGGCACGCCATTCAACCTCACCGAGGGCGCCGCGCTGCTGAGCCTGATCGGTCGCCTGACTGGCTACATGCCGCGCTGGTTCACCTATTTCATCGGCGATGCCCACGTCTATGAAAACCACCTGGACATGCTCAACGAACAGCTCACCCGCGAGCCGTTCCCGATGCCCAAGCTGGTGATTTCCGAGCGCGTGCCGGAATTTGCCAAGACCGGCGTGTACCAGCCGGAGTGGCTGGAACAGGTGGAGCCAAGCGATTTTTCCCTGGAAGGCTACCAGCACCATGCGCCGATGACCGCGCCGATGGCGGTCTAA	MKQYLDLVAHVIKNGTKQANRTGVNTISFPGAMLRYDLKEGFPAITTRKMAFKSAIGEMCGFLRGVNNAAEFRALGCKVWDQNANENAQWLANPFRQGEDDLGEIYGVQWRKWPAYKQIPLSNPAAIEQTLVQGYRQIAEGEENGQAYVVLYKAIDQVRQCVDTIIKDPGSRRILFHGWNCAQLDEMALPPCHLLYQFHPNVETKEISLTLYIRSNDLGLGTPFNLTEGAALLSLIGRLTGYMPRWFTYFIGDAHVYENHLDMLNEQLTREPFPMPKLVISERVPEFAKTGVYQPEWLEQVEPSDFSLEGYQHHAPMTAPMAV	PGPT0008145_512	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0008145-thyA-K00560	NA	NA
D1-36_00228	810	lgt	COG0682	Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase	ATGCTGCCTTACCCGCAGATCGATCCGGTGGCCCTGGCCATCGGTCCACTGAAAATCCACTGGTACGGCCTGATGTACCTGATCGGTATCGGTGGCGCCTGGCTGCTGGCGTCGCGGCGGCTCAACCGCTTCGACCCGACCTGGAACAAGGAAAAGCTCTCCGACCTGGTGTTCTGGTTGTCCATGGGGGTGATCGTCGGCGGACGCCTGGGCTACGTCCTGTTCTACGACCTGAGCGCCTATCTGGCCAACCCGACGTTGATATTCGAAGTCTGGAAGGGCGGCATGTCATTCCACGGTGGGTTCATCGGCGTGATGCTGGCGGCGCTGTGGTTTGGCAAGCGCAACAACAAATCGTTTTTCGAGCTGATGGACTTCGTCGCGCCGATGGTGCCGATCGGTCTGGGGGCCGGGCGCATCGGCAACTTCATCAATGCCGAGCTGTGGGGCAAGCCGACCGACGTACCGTGGGCGATGGTCTTCCCACCGTTCAGTGACCCGTCGCAGTTGCCGCGCCACCCGTCGCAGCTCTATCAATTCGCCCTCGAAGGCGTGGCACTCTTCCTGATTCTCTGGCTGTTTTCGCGCAAGCCGCGACCAACCATGGCGGTATCGGGCATGTTCGCGCTGTTCTATGGCATCTTTCGCTTCATCGTCGAGTTCGTCCGCGTCCCGGACGCCCAGCTCGGCTATCTGGCGTGGAACTGGCTGACCATGGGCCAGGTGCTGTGCCTGCCGATGATCATTGGCGGTCTGGCGCTGATCTGGCTGGCCTATCGTCGCGCGCCGGCTGCAGTGGCCAAGGTTTAA	MLPYPQIDPVALAIGPLKIHWYGLMYLIGIGGAWLLASRRLNRFDPTWNKEKLSDLVFWLSMGVIVGGRLGYVLFYDLSAYLANPTLIFEVWKGGMSFHGGFIGVMLAALWFGKRNNKSFFELMDFVAPMVPIGLGAGRIGNFINAELWGKPTDVPWAMVFPPFSDPSQLPRHPSQLYQFALEGVALFLILWLFSRKPRPTMAVSGMFALFYGIFRFIVEFVRVPDAQLGYLAWNWLTMGQVLCLPMIIGGLALIWLAYRRAPAAVAKV				NA	NA	NA	NA	NA
D1-36_00229	801			hypothetical protein	ATGGTCGAGGCAACGCTGGTGGAATTTGTGCTCTATCTGCTGCTCGGCGCCTGTGCCGGAGTGCTGGCCGGGCTGTTCGGCGTGGGGGGCGGCATGATCATCGTCCCGGTGTTGGTGTTCAGTTTTACCCTGCAGGGGTTCGATCCGCAGGTGTTGACGCACCTGGCCGTGGGCACTTCCCTGGCGTCGATCATCTTCACTTCGGTGAATGCCGTGCGCGAGCATCATCGAAAAGGGGCCGTACGCTGGCAGATCTTTACCTGGATGACCGTCGGGATCCTGATCGGTGCCGGTTTCGGCGCGATCACCGCCGAAGCGATTTCCGGTCCGCACCTGCAAAAGATCATTGGTGTGTTCGCCATGCTCGTCGCCGCGCAACTGGCCTTGGATTTCAAGCCAAAGGCCAGCCGCACGGTACCGGGCAAGGTTGGCTTGTCCCTGGCCGGTACGGTGGTCGGCTGGGCCTCGGCGATTTTTGGCATCGGTGGCGGTTCGCTGACCGTACCGTTCCTGACCTGGCGCAGCGTACCGATGCAACAAGCGGTGGCGACTTCTTCGGCCTGTGGATTGCCCATCGCCCTGGTCAGTGCGTTAAGTTTCATGATTCTGGGGTGGCAGGATCCACTGTTGCCACCCCATAGTCTCGGTTTTGTGTATTTGCCGGCGCTGCTGGGCATCGCCCTGACGAGCATGGTCTTCGCTCGCGTCGGCGCGAGATTGGCCCACCGTTTGTCGCCGCGCTTGCTCAAGCGGCTGTTCGCCGCCTTGCTGTTCAGCGTGGGCTTGAGTTTCCTGCTCTGA	MVEATLVEFVLYLLLGACAGVLAGLFGVGGGMIIVPVLVFSFTLQGFDPQVLTHLAVGTSLASIIFTSVNAVREHHRKGAVRWQIFTWMTVGILIGAGFGAITAEAISGPHLQKIIGVFAMLVAAQLALDFKPKASRTVPGKVGLSLAGTVVGWASAIFGIGGGSLTVPFLTWRSVPMQQAVATSSACGLPIALVSALSFMILGWQDPLLPPHSLGFVYLPALLGIALTSMVFARVGARLAHRLSPRLLKRLFAALLFSVGLSFLL				NA	NA	NA	NA	NA
D1-36_00230	747			hypothetical protein	ATGTGCCTGATCGTATTTGCCTGGCGTCCCGGCCACGCCCAGCCGCTGATCGTCGCGGCCAACCGCGACGAGTTCTACGCGCGACCGACCTTGCCCCTGGCCCAGTGGCCCGAGGCGCCCCATGTCCATGCCGGTCGTGACCTGGAGGCTGGCGGCACCTGGCTTGGCGTAGGTGCCGGTGCTCGCTTCGCGGCCCTGACCAACATCCGCGACCCCGGTCAGCTACCAGCATTCAAGTCTCGCGGCGAGCTGGTGGCGCGGTTCCTGATCGGGGATCTGTCGATCGCTGATTATCTAAGCGACGTGGTGCCGCGTGCCGGCGAGTACGGCGGCTTCAACCTGCTGCTTGGCGACGGCACGCAGCTGTGGCACTACAACGCACGCGATGCCCGACCTCAGCCGTTGGCTGAAGGGGTCTATGGCTTGTCGAACGCTGGGCTGAACACGCCTTGGCCCAAGTTGCTCAAGGCCCGGGCTGCGTTGAGTGAGGTATTGCATGACCCGCACCCCCAGGCCTTGCTGGCGCTGTTGAGCGATCCGCAACCGGCCCCAGTGGCCGAGTTGCCGGACACTGGTGTGGGGCTGGCGACGGAAATGCTGCTGTCGAGTGTCTTCATCGCCAGCCCGGCCTACGGGACGCGGGCGAGCACGGCGCTGATCGTCCATGCCGATGGAACGCGGCAGATGGTCGAGCGCAGTTTCGGGCCCCATGGGGGGCATTTGGGGGAGGTGGAGCTGATCGTTTGA	MCLIVFAWRPGHAQPLIVAANRDEFYARPTLPLAQWPEAPHVHAGRDLEAGGTWLGVGAGARFAALTNIRDPGQLPAFKSRGELVARFLIGDLSIADYLSDVVPRAGEYGGFNLLLGDGTQLWHYNARDARPQPLAEGVYGLSNAGLNTPWPKLLKARAALSEVLHDPHPQALLALLSDPQPAPVAELPDTGVGLATEMLLSSVFIASPAYGTRASTALIVHADGTRQMVERSFGPHGGHLGEVELIV				NA	NA	NA	NA	NA
D1-36_00231	2280	ptsP	COG3605	Phosphoenolpyruvate-dependent phosphotransferase system	ATGCTCAATACGCTGCGCAAGATCGTCCAGGAAGTTAACGCCGCCAAGGATCTCAAGGCGGCGTTGGGCATTATTGTATTGCGCGTCAAAGAGGCCATGGGCAGCCAAGTCTGCTCGGTCTACCTGCTTGACCCCGAGACCAACCGTTTTGTGCTCATGGCCACCGAGGGCTTGAACAAGCGCTCCATCGGCAAGGTCAGCATGGCGCCCAATGAAGGCTTGGTCGGCCTGGTCGGCACGCGGGAAGAACCCCTGAACCTTGAAAACGCCGCGGACCACCCGCGCTACCGCTACTTCGCGGAAACGGGTGAAGAGCGCTATGCGTCTTTCCTCGGCGCGCCGATCATTCACCACCGCCGCGTCGTCGGCGTGTTGGTCATCCAGCAGAAAGAGCGCCGCCAGTTCGATGAGGGTGAAGAAGCCTTCCTCGTCACCATGAGCGCGCAACTGGCCGGGGTTATCGCCCATGCCGAGGCCACCGGTTCGATCAGCGGCCTTGGCCGCCAGGGCAAGGGCATCCAGGAAGCCAAGTTCGTCGGCGTGCCAGGTTCCCCGGGCGCGGCGGTGGGCACCGCAGTGGTCATGTTGCCGCCCGCCGACCTCGATGTGGTGCCTGACAAGGCCATCGCCGACATCGACGCCGAGCTCGGTTTGTTCAAGACCGCCATCGAAGGCGTGCGGGCCGACATGCGTGCCCTTTCGGCCAAGCTGGCGACGCAGTTGCGCCCCGAAGAGCGCGCGCTGTTCGACGTTTACCTGATGATGCTTGACGATGCGTCCCTGGGCAGCGAAGTCACCACGGTCATCAAGACCGGCCAATGGGCCCAGGGCGCGTTGCGCCAGGTGGTGACCGACCACGTCAATCGTTTCGAGTTGATGGACGACGCCTACCTGCGCGAGCGCGCCTCCGACGTCAAGGACCTCGGTCGGCGGTTGCTGGCTTATTTGCAGCAAGAGCGCCAGCAGACCCTGGTCTATCCCGACAACACCATCCTGGTGAGCGAGGAGTTGACCCCGGCGATGCTCGGCGAAGTGCCGGAGGGCAAGCTGGCGGGCCTGGTCTCGGTGCTCGGTTCGGGCAACTCCCACGTGGCGATCCTGGCCCGGGCGATGGGCATCCCGACGGTCATGGGCGTGGTGGACCTGCCGTACTCCAAAGTCGACGGCATCCAGATGATCGTCGACGGCTACCACGGCGAGGTCTACACCAACCCCAGCGACGTGCTGCGCAAGCAGTTCGCCGACGTGGTGGAAGAAGAAAAGCAACTGTCCCTGGGACTCGATGCGCTGAAGGACCTGCCGTGCGTGACGCTCGACGGCCACCGCATGCCGCTGTGGGTCAATACCGGCCTGCTGGCCGATGTCGCCCGGGCGCAGAAACGTGGCGCCGAGGGCGTGGGCCTGTATCGCACCGAAGTGCCGTTCATGATCAACCAGCGCTTCCCCAGCGAAAAGGAACAGCTGGCGATCTACCGCGAGCAACTGTCGGCGTTCCATCCGCAGCCGGTGACCATGCGCAGCCTGGACATTGGCGGCGACAAATCCCTGTCCTATTTCCCGATCAAGGAAGACAACCCCTTCCTCGGCTGGCGCGGCATTCGCGTGACGCTCGACCACCCGGAAATCTTCCTGGTCCAGGCGCGCGCGATGCTCAAGGCCAGCGAAGGCCTGAACAACCTGCGCATCCTGTTGCCGATGATTTCCGGCACCCATGAGCTGGAAGAAGCGCTGCACCTGATTCACCGGGCCTGGGGCGAAGTGCGCGATGAAGGCACCGACGTGCCGATGCCACCCGTCGGGGTAATGATCGAAATTCCGGCGGCGGTGTACCAGACCAAGGAACTGGCGCGGCAGGTGGACTTCCTGTCGGTAGGCTCCAACGACCTGACCCAGTATTTGCTGGCCGTGGACCGCAACAACCCTCGGGTGGCCGACCTGTACGACTACCTGCACCCGGCGGTGCTGCAGGCCCTGCAGACAGTGGTCCGTGATGCCCATGCAGAAGGCAAGCCGGTGAGCATCTGCGGCGAAATGGCCGGCGACCCGGCGGCGGCGGTGCTGCTGATGGCGATGGGCTTCGACAGCCTGTCGATGAACGCCACCAACCTGCCGAAAGTGAAGTGGATGCTGCGCCAGATCAACCTCAGCAAGGCCCAGGAACTGCTGGCGGAGCTGATGACCATCGACAATCCGCAGGTGATCCACAGCTCCTTGCAGTTGGCGCTGAAGAACCTTGGGTTGGCGCGGATGATCAATCCGGCTTCGAGCAAGACGCTCTGA	MLNTLRKIVQEVNAAKDLKAALGIIVLRVKEAMGSQVCSVYLLDPETNRFVLMATEGLNKRSIGKVSMAPNEGLVGLVGTREEPLNLENAADHPRYRYFAETGEERYASFLGAPIIHHRRVVGVLVIQQKERRQFDEGEEAFLVTMSAQLAGVIAHAEATGSISGLGRQGKGIQEAKFVGVPGSPGAAVGTAVVMLPPADLDVVPDKAIADIDAELGLFKTAIEGVRADMRALSAKLATQLRPEERALFDVYLMMLDDASLGSEVTTVIKTGQWAQGALRQVVTDHVNRFELMDDAYLRERASDVKDLGRRLLAYLQQERQQTLVYPDNTILVSEELTPAMLGEVPEGKLAGLVSVLGSGNSHVAILARAMGIPTVMGVVDLPYSKVDGIQMIVDGYHGEVYTNPSDVLRKQFADVVEEEKQLSLGLDALKDLPCVTLDGHRMPLWVNTGLLADVARAQKRGAEGVGLYRTEVPFMINQRFPSEKEQLAIYREQLSAFHPQPVTMRSLDIGGDKSLSYFPIKEDNPFLGWRGIRVTLDHPEIFLVQARAMLKASEGLNNLRILLPMISGTHELEEALHLIHRAWGEVRDEGTDVPMPPVGVMIEIPAAVYQTKELARQVDFLSVGSNDLTQYLLAVDRNNPRVADLYDYLHPAVLQALQTVVRDAHAEGKPVSICGEMAGDPAAAVLLMAMGFDSLSMNATNLPKVKWMLRQINLSKAQELLAELMTIDNPQVIHSSLQLALKNLGLARMINPASSKTL	PGPT0002030_253	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0002030-ptsP-K08484	NA	NA
D1-36_00232	480	rppH_1	COG0494	RNA pyrophosphohydrolase	GTGATCGATCCCGATGGTTTCCGTCCCAATGTGGGGATCATTCTTACGAATGATGCTGGGCAGGTGCTATGGGCACGCCGTATCAATCAAGACGCCTGGCAGTTTCCCCAGGGTGGGATCAACCCCCAGGAGACGCCGGAAGAAGCTTTGTACCGTGAGTTGAATGAAGAAGTCGGGCTGGAGCGCGAAGATGTCGAAATACTCGCCTGCACCCGAGGCTGGTTGCGCTATCGTTTGCCGCAACGCCTGGTCAGGACGCACAGCCAACCGCTGTGCATCGGCCAGAAGCAGAAATGGTTTCTCCTGCGCCTGATCTCCAATGAGCAGCGGGTGCGGATGGATTTGACCGGTAAACCGGAGTTCGATGGCTGGCGCTGGGTCAGTTATTGGTATCCGTTGGGCCAGGTGGTGACATTCAAGCGCGAGGTGTATCGACGCGCTCTCAAAGAGCTTGCCCCGCGCCTGCTGACGCGCGACTGA	MIDPDGFRPNVGIILTNDAGQVLWARRINQDAWQFPQGGINPQETPEEALYRELNEEVGLEREDVEILACTRGWLRYRLPQRLVRTHSQPLCIGQKQKWFLLRLISNEQRVRMDLTGKPEFDGWRWVSYWYPLGQVVTFKREVYRRALKELAPRLLTRD				NA	NA	NA	NA	NA
D1-36_00233	657		COG0560	putative phosphatase	ATGCGGCTGGCTTTATTCGACTTGGACAACACGCTGCTGGGCGGTGACAGCGATCACGCCTGGGGCGATTACCTGTGCGAACGCGGCTTCCTCGATGCCGTGAGCTACAAGGCACGCAACGATGAGTTCTACCAGGACTACCTGGCGGGTAAGCTCGACAACGCCGCGTACCTGAATTTTTGCCTGGAAATCCTGGGTCGTACCGAGATGGAAGTGCTGGCACAGTGGCACCTCGATTACATGCGCGACTGCATCGAACCTATCGTATTGCCCCAAGCGATCGCGCTGTTGAAGAAACACCGTGACGCCGGCGACAAACTGGTGATCATCACCGCCACCAATCGCTTCGTCACCGCGCCGATCGCCGAGCGACTCGGGGTAGAAACCCTGATCGCCACCGAATGCGAGATGATCGATGGCCGTTACAGTGGCCGCAGCACCGACATTCCCTGCTTTCGCGAGGGCAAGGTGACCCGGTTGAACCGTTGGCTGGAAGAGACTGGGTATTGCCTCGACGATAGCTACTTTTATAGCGATTCGATGAACGACCTGCCGTTGCTGGAAGCGGTGACGCATCCGGTGGCGGTCGACCCGGACCCGAACCTTCGGGCCGAGGCCCAGAAGCGTGGTTGGCCGGTCATCAGTCTGCGCGACTGA	MRLALFDLDNTLLGGDSDHAWGDYLCERGFLDAVSYKARNDEFYQDYLAGKLDNAAYLNFCLEILGRTEMEVLAQWHLDYMRDCIEPIVLPQAIALLKKHRDAGDKLVIITATNRFVTAPIAERLGVETLIATECEMIDGRYSGRSTDIPCFREGKVTRLNRWLEETGYCLDDSYFYSDSMNDLPLLEAVTHPVAVDPDPNLRAEAQKRGWPVISLRD	PGPT0015285_14	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,PGPT0015285-nodU-K00612	NA	NA
D1-36_00234	468			hypothetical protein	ATGAGCATCTACCTGCTGTTGAAAACCCTGCACATCCTGTCTTCCACCATCCTGTTCGGCCTGGGCGCGGGGTCTGCCTACTACGCGCTCCGGGCCTGGCGCAGCGGCAAGGTTGAAGTCATCGCCGTCACCTTCAAGCATCTGGTTTTCGCCGATTGGGCATTCACCGCCACCACCGCCGTATTTCAGCCACTGAGCGGACTGGCCCTGATGCACATCGCCGGCTGGCAATTGCAACAGAGCTGGTTGGTGTGGAGCATCGGCCTTTATTGCCTGGCGGGCGCCTGCTGGCTGCCAGTGGTCTGGTTGCAGATCCGCGTACACAAGATGGCCGAGCAAGCCTTGCGGGACGGCACACCCATGCCAATCAAGGCCGCCACCTACATGCGCTGGTGGTTTGCGCTGGGCTGGCCGGCGTTCCTGGCATTCATGGCGATTTTCTACCTGATGGTAGCCAAGCCCGCGTAA	MSIYLLLKTLHILSSTILFGLGAGSAYYALRAWRSGKVEVIAVTFKHLVFADWAFTATTAVFQPLSGLALMHIAGWQLQQSWLVWSIGLYCLAGACWLPVVWLQIRVHKMAEQALRDGTPMPIKAATYMRWWFALGWPAFLAFMAIFYLMVAKPA				NA	NA	NA	NA	NA
D1-36_00235	1257			hypothetical protein	ATGAAAATCCTACTGGTGGGAGGCAGCGGCTTTATTGGACGCCACCTGCTGAGGGCGCTGCACGGCGCCGGCCACTCGATCATCGCGACCCGTCGTGAACCCGGGCCGCCGAGTTCGCCTGGGGTTGAATGGCGGCAGCTGGATCTCGGCGTATTGTCGGCCGACCCGGCACATTTCGTCCTCCCTACGGACGTTGATTTGCTGATCAACGCGGCCGGCTTGCTCAGCGTGGATGCCCAGGCGCTGAGTCTGGTCCAGGATCGTGGCGCGTGCGCGTTGTTCGAGCAGGCCGCACGCCGTGGCGTTCGCATCTTGCAGATTTCCGCACTGGGCGCGAGCGCTCAATCCGACGTGCCGTTCCTGGCAAGCAAGGGACGGGCTGACGAATATCTGTCCAGCCTCCACATCCCATCGGTTGTGCTGCGGCCTTCGTTGGTGGTGGGGCCAGGCGGCGCGAGCAGTGGCTGGATGGAGGGCCTTTCACCGTGGCCACTGATTCCCTTGCTGGATCTGACGGCGCGCATCCAACCCGTGCACATCGATGACCTGACGGGCGCGGTGCTCGCCCTGCTGCGGCAATGGCCAACCGAGTCGGTGGTGGTGCCGCTGGTGGGACCCGAGCCGATGACGCTGGCCCGGCTCATCGATCATTTGCGAGCCGCGCAGGGCTGGGCGCCGGCACGCTACATCAAGGCGCCTGCGCTGTTGACCGAAGTGGGCAGCCGGATGGGGGACCGGTTCGGCTGGCGAGCGTTGAACCGGCAAAGCGTGGCCCTGGCACAACGGGACAACCTGGCCGACCCCGAGGTGCTCGCATCAATCTGCGGATATCACGCCGCCCCCGTACAGACCCGCTTGCAGGGATGGCCCGCCGTCGCCCAGAGCAGCCTTCGGGCGATCCGCCCGTTGATGCTGGCGGTGCTCGCACTCATCTGGCTGGGAACCGCCGTGGTATGCCTCGGCCCAGGCTTCGACTGGGGCCTGCGCATCATGGCCGAAGCCGGCGTGTACGGCGCCTGGGCCAAGCTTGCGGTCGTCAGCGGCGCGCTGCTTGATGGCGCGCTGGGCGTGGGCATGCTGTTCAAACGCTGGCGCCAACAGGCATTGCGGCTGCAGTTGGGTCTGATGCTCGGCTATACGCTGTGCATCAGCTTTATCCTGCCGCACTATTGGTTCGACCCTTTTGCGGCTGTCGCCAAGAATCTGGTATTGGTAGTCGCGACGTTATGGTTGCTTTGGACTGAGCCCCGCCGATGA	MKILLVGGSGFIGRHLLRALHGAGHSIIATRREPGPPSSPGVEWRQLDLGVLSADPAHFVLPTDVDLLINAAGLLSVDAQALSLVQDRGACALFEQAARRGVRILQISALGASAQSDVPFLASKGRADEYLSSLHIPSVVLRPSLVVGPGGASSGWMEGLSPWPLIPLLDLTARIQPVHIDDLTGAVLALLRQWPTESVVVPLVGPEPMTLARLIDHLRAAQGWAPARYIKAPALLTEVGSRMGDRFGWRALNRQSVALAQRDNLADPEVLASICGYHAAPVQTRLQGWPAVAQSSLRAIRPLMLAVLALIWLGTAVVCLGPGFDWGLRIMAEAGVYGAWAKLAVVSGALLDGALGVGMLFKRWRQQALRLQLGLMLGYTLCISFILPHYWFDPFAAVAKNLVLVVATLWLLWTEPRR				NA	NA	NA	NA	NA
D1-36_00236	414			hypothetical protein	ATGGAAACTCTGCTGACCTTGAAAATCCTGCACGTCGCGGCCACGGTCTTGCTTCTGGCTTGCGCTGCAAGCCTAGCCGTTGTGGCCTGGCGCAAACGCAGCGAGGCACCAAGCTGCACGCTGCGGCGCCCTTGGCTGCTGGCGTGGGGCACGATGCTGGTCTGCATGCTGAGCATGCCGTTTACCGGCTGGTGGCTGGTTCATCTGGTGGGCTGGCCGCTGGGGCAAACCTGGCTGCTGGGTTCCAGCGTGATCTACACCGTGGCGGCGCTTTGCGTTTTCTGGCTGCTGGCACGGCTCAACCGCCTGCGCATGGGCAACGGTGGCGGCGGCAGGTTTACCCTGGCATTGGCGATCATCGGTGGCGTCGGCTTCCTGTCCATCGCCGCATTGATGGGTGCCAAACCGATCTAA	METLLTLKILHVAATVLLLACAASLAVVAWRKRSEAPSCTLRRPWLLAWGTMLVCMLSMPFTGWWLVHLVGWPLGQTWLLGSSVIYTVAALCVFWLLARLNRLRMGNGGGGRFTLALAIIGGVGFLSIAALMGAKPI				NA	NA	NA	NA	NA
D1-36_00237	1515	ilvA_1	COG1171	L-threonine dehydratase biosynthetic IlvA	ATGCTTGAACAGTACGTCAAAAAGATCCTCACCTCGCGCGTTTACGACGTTGCCGTAGAAACCCCGCTGCAGACCGCCCGCCAGCTCTCCGAACGGCTGGGCAACGAGGTCTGGCTCAAGCGTGAAGACTTGCAGCCGGTGTTCTCGTTCAAGATTCGCGGGGCCTACAACAAGCTGACCCAGCTCACCGACGAAGAGCGCGCCCGTGGCGTGGTCACGGCCTCGGCGGGCAACCATGCCCAGGGCCTGGCGCTGGCCGCCAAGGTGTTGGGGGTCAAGGCCACCATCGTCATGCCCAAGACCACGCCGGAAATCAAAGTCGAGGGCGTGCGCTCCCGGGGCGGCAAAGTGGTGTTGCATGGCGATTCGTTCCCCGAGGCCCTGGCCTATTCGTTGAAACTGGTCGACGAAAAAGGCTACGTCTACATTCATCCCTATGACGATCCTCACACCATTGCCGGGCAGGGCACCGTGGCGATGGAAATCCTGCGCCAGCACCCGGGGCGCCTGGACGCGATATTCGTCCCGGTGGGCGGTGGCGGGCTGATCGCAGGCATCGCGGCCTACGTGAAATACCTGCGCCCCGAGATCAAGATCATCGGCGTCGAACCGGACGATTCGAACTGCCTGCAAGCGGCCATGGCTGCTGGCGAACGCGTGGTCCTGCCAACCGTGGGCCTGTTCGCCGATGGCGTGGCGGTGGCACAGATCGGCCAGCACACCTTCGATATCTGCAAGCACTACGTGGATGAAGTCATCACCGTCAGTACCGACGAGATCTGCGCAGCGATCAAGGATATCTACGACGATACCCGCTCGATCACCGAACCTGCCGGCGCCTTGGGTGTTGCCGGCATCAAGAAGTATGTCGAGACACGCAGCATCAGCGGCCAGACGCTGGTGGCCATCGATTCCGGCGCCAACGTCAACTTCGACCGCCTGCGCCACGTGGCCGAGCGCGCCGAACTGGGCGAAGGCCGCGAGGCGATCATCGCCGTGACCATCCCCGAGAAGCCGGGCAGCTTCAAGGCGTTCTGCGAGGCCATCGGCAAACGCCAGATCACCGAATTCAACTACCGCTACAACACCGGCAGCGAAGCGCACATCTTCGTAGGCGTGCAGACGCATCCGGAAAACGACCCGCGCAGCAAGCTGATTGCCAGCCTGACCGAGCAAGGCTTCCCGGTGCTGGACCTGACCGACAATGAACTGGCCAAGTTGCACATTCGCCACATGGTCGGCGGCCATGCCGCTCACGTCATCGACGAGGTGGTCCTGCGTTTCGAATTCCCGGAACGCCCGGGGGCGCTGTTCAACTTCCTCAATAAACTGGGCGGGCGCTGGAACATCTCGATGTTCCACTACCGCAACCATGGCGCGGCGGATGGCCGCGTGGTCGCCGGGCTGCAAGTGCCTCACGATGAGCGCCACCTGGTGCCGGCCGCCCTAGAGGAAATCGGCTATCCGTACTGGGATGAAAGCGATAACCCGGCCTATCAGCTGTTTCTCGGCTGA	MLEQYVKKILTSRVYDVAVETPLQTARQLSERLGNEVWLKREDLQPVFSFKIRGAYNKLTQLTDEERARGVVTASAGNHAQGLALAAKVLGVKATIVMPKTTPEIKVEGVRSRGGKVVLHGDSFPEALAYSLKLVDEKGYVYIHPYDDPHTIAGQGTVAMEILRQHPGRLDAIFVPVGGGGLIAGIAAYVKYLRPEIKIIGVEPDDSNCLQAAMAAGERVVLPTVGLFADGVAVAQIGQHTFDICKHYVDEVITVSTDEICAAIKDIYDDTRSITEPAGALGVAGIKKYVETRSISGQTLVAIDSGANVNFDRLRHVAERAELGEGREAIIAVTIPEKPGSFKAFCEAIGKRQITEFNYRYNTGSEAHIFVGVQTHPENDPRSKLIASLTEQGFPVLDLTDNELAKLHIRHMVGGHAAHVIDEVVLRFEFPERPGALFNFLNKLGGRWNISMFHYRNHGAADGRVVAGLQVPHDERHLVPAALEEIGYPYWDESDNPAYQLFLG	PGPT0001960_1705	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
D1-36_00238	675	rpiA	COG0120	Ribose-5-phosphate isomerase A	ATGACCCAGGATCAACTCAAACAGGCCGTGGCCCAGGCCGCTGTCGACCTCATCCTCCCGAAACTGGATGACAAGAGCATCGTCGGGGTCGGCACCGGCTCTACCGCCAATTGCTTCATCGACGCCTTGGCGCAGCACAAAGGCGCGTTCGACGGCGCGGTCGCCAGCTCCGAAGCCACCGCCGCGCGCCTCAAGGGCCACGGGATCCCAGTGTACGAGCTCAACACCGTGAGCGACCTGGAGTTCTACATCGACGGCGCCGACGAAAGCGACGCGCACTTGAACCTGATCAAGGGCGGCGGTGCGGCCCTGACTCGCGAGAAGATCGTTGCGGCCGTCGCCAAGACGTTCATCTGCATCGCCGATGCCAGCAAACTGGTCCCGGTGCTCGGCGCGTTCCCGCTGCCGGTGGAAGTCATCCCGATGGCCCGCAGCCACGTTGCCCGGCAATTGGTGAAGCTGGGCGGCGATCCGGTGTATCGCGAAGGCGTGCTGACCGATAACGGCAACATCATCCTTGACGTGCATAACCTGCAGATCACCAATCCGGTTGAACTGGAAAGCCAGATCAACGCCATCGTTGGCGTAGTCACCAACGGCTTGTTCGCCGCTCGCCCGGCGGATGTGCTGTTGTTGGGGACTGCTGATGGCGTGAAGACCCTGCGGGCGGAATAA	MTQDQLKQAVAQAAVDLILPKLDDKSIVGVGTGSTANCFIDALAQHKGAFDGAVASSEATAARLKGHGIPVYELNTVSDLEFYIDGADESDAHLNLIKGGGAALTREKIVAAVAKTFICIADASKLVPVLGAFPLPVEVIPMARSHVARQLVKLGGDPVYREGVLTDNGNIILDVHNLQITNPVELESQINAIVGVVTNGLFAARPADVLLLGTADGVKTLRAE	PGPT0017390_2647	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017390-rpiA-K01807	NA	NA
D1-36_00239	915	yjiK	COG3204	putative protein YjiK	ATGCGCCGACTTGCCCGTCCAAGACCCCTGATCCTACTGTTGCTGTCGATTACCCTGATTGGATTAATCGCAGCCGGGCAATACCTGCGTCTGTTCGAGCGCGCCTGGTTCAATTTCAATACGCTCTGGCACACCCTTGGCGAGCAGGCCATTGCCCTGGACCAATACCAGGTCACGGTACAAGCTCAAGTCATCGAAGGCCTGGACGACGACGTTTCCGCGCTGACGTTCGATCCGATCCGCAAAAGCCTCTTCACCGTCACCAACAAGAATGCCGAGCTGATCGAGCTGTCACTGGAAGGCAAGATTCTGCGACGCATCGCCCTGGTCGGCTTTGGCGACCCGGAAGCGGTGGAATTCATCAGCGAGAACATCTACGTCATTACCGACGAACGTCAGCAGCGCCTGATCAAGATCCACCTGGAAGAAGACACCCGCTTCCTGGACGCGGCCGATGCCGAGCAAATGACACTCGGCGTGCACATGAGCGGCAACAAGGGTTTCGAAGGGCTGGCCTATGACTCCATCGGCAAGCGGCTGTTCGTCGCCAAGGAACGCGACCCGATGCTGATTTATGAAGTACACGGATTTCCCCACCACAATCCGGAAAAATCCTACGCTGTCCACGTAATCAACAACCCCAAGCGCGATGCAGGACTGTTCGTGCGCGATCTCTCCAGCCTGCAATACGACGAACGCAGCGGCCATCTGCTGGCGCTGTCCGATGAGTCGCGGTTGATTATCGAGTTGGATATCGATGGTCGGCCGTTAAGCACGCTGTCGTTGAGCAAGGGCCGCCACGGACTGGAGAAAACCATTCCCCAACCGGAAGGCTTGGCCATGGATGACGATGGCAATCTGTATGTGGTGAGCGAGCCGAATCTGTTCTATGTGTTCAAGAAGCCGCAGCCTTGA	MRRLARPRPLILLLLSITLIGLIAAGQYLRLFERAWFNFNTLWHTLGEQAIALDQYQVTVQAQVIEGLDDDVSALTFDPIRKSLFTVTNKNAELIELSLEGKILRRIALVGFGDPEAVEFISENIYVITDERQQRLIKIHLEEDTRFLDAADAEQMTLGVHMSGNKGFEGLAYDSIGKRLFVAKERDPMLIYEVHGFPHHNPEKSYAVHVINNPKRDAGLFVRDLSSLQYDERSGHLLALSDESRLIIELDIDGRPLSTLSLSKGRHGLEKTIPQPEGLAMDDDGNLYVVSEPNLFYVFKKPQP				NA	NA	NA	NA	NA
D1-36_00240	927			hypothetical protein	ATGGCCAAGACCCAAACCCTGCCCACCTCCGTCCGCCGTGCTCGCTTCGGCTTGCCCTGGTATGCCTGGCTGCTGCTGGCCGCAATCGCTGCCTATGGCCTGGCGTTCGCGATGCATTGGGATGACCGGGGCCGGCTCTGGGTATCGGAACGCTTCGAAAGCCCGGCCCAACGCCAGGAAAGCATCTGGTTGCCCGACTATCGCGCCGTGATCGACGCCAAGCCCCTGCCTGGCATGGAAAAGGACGAGGCTTCCGACGTCACCTACAACCCGCAGACCAAGACGCTGTTCGCGGTCATGGGCAAGAATCCGTTCCTGGCGGAGCTGACCCTGCAAGGCGACGTGCTGCGCAAGATGCCATTGGTGGGCTGGAACAATCCCGAAGGCGTGACCTATATGGAAAATGGCCTGCTGGCCATTACCGATGAGCGAAACCACACCCTGTCGATCGTCCAGGTCGATGCCAATACCCAAACGCTGAACAGCAAGGACTTTCCCCAATACGACCTTGGCGCGTCACAGAACCAGAACAAAGGGTTCGAGGCGATCGTCTGGGATCCGCGCAATCAACAACTGGTGCTGGGCGAAGAGCGCCCGCCAGCCTTGTTCACATGGAAAAGTGACGGCAGCCAATTGCTCAAGGGCGACAAGCAGATCCATGTCAGCGATGAACTGGACCTGCGCAACCTGTCCGCCCTGGCGATCGATCCTCGTACGGGACATATGCTGTTGCTGTCAGCCGACTCCCATCTATTGCTGGAACTGGATGCAGAAGGCGAACAGGTCAGCTTCATGACGCTGTTGGGAGGCTTCAACGGACTGAAAGATACGGTTCCCCGCGCCGAAGGCGTCACCGTCGATGAAGCGGGCAACCTATATATGGTCAGCGAGCCGAACCTGTTCTATCGTTTCGAAAAACAACGCTGA	MAKTQTLPTSVRRARFGLPWYAWLLLAAIAAYGLAFAMHWDDRGRLWVSERFESPAQRQESIWLPDYRAVIDAKPLPGMEKDEASDVTYNPQTKTLFAVMGKNPFLAELTLQGDVLRKMPLVGWNNPEGVTYMENGLLAITDERNHTLSIVQVDANTQTLNSKDFPQYDLGASQNQNKGFEAIVWDPRNQQLVLGEERPPALFTWKSDGSQLLKGDKQIHVSDELDLRNLSALAIDPRTGHMLLLSADSHLLLELDAEGEQVSFMTLLGGFNGLKDTVPRAEGVTVDEAGNLYMVSEPNLFYRFEKQR				NA	NA	NA	NA	NA
D1-36_00241	666	ycgM	COG0179	putative protein YcgM	ATGAGCTATCAGCACCAGTATGTCGACGGTACGCGTATTCATTTCCCGGTGGGCAAAGTAGTGTGCATCGGCCGCAACTATGCCGAACACGCCAAGGAACTGGATAACCCGGTGCCCACCGAACCGCTGCTGTTCATCAAGCCAGGCAGCTGCGTGGTGCCGTTGGAAGGCGGCTTCAGCATTCCCGCCGACCGCGGCTCGGTGCACTACGAAGCGGAAATCGCCGTGCTGATCGGCAAGCCACTGTCCACCAAGCCCAGCGTTGAAGAAGTACTGGACGCCATTTCCGGCTTCGCCCCGGCCCTGGACCTGACCCTGCGGGACAAGCAGGCCGAACTAAAGGCCAAGGGGTTGCCATGGGAAGTCGCCAAGTCCTTCGACGGCGCGGCAGTGATCGCTCCCTTTGTCTCGAACGCCACGTTTGCCGACCTGACCGATATTCCCGTTCGCCTGACCATCAACGGCGAAGTCCGCCAGGACGGCAACAGCAGCCTGATGCTCAACCCCATCGTGCCGATGATCCAGTACATGGCCGGCTGCTTCTCGCTTCAGGCCGGAGACGTCATTCTCACGGGCACCCCGGCGGGCGTCGGGCCGCTGAACATTGGCGATGAACTGGTGCTGGAACTGCCTGGGGCGAGCCGCTTCGAAAGCAGCGTTCGCTAA	MSYQHQYVDGTRIHFPVGKVVCIGRNYAEHAKELDNPVPTEPLLFIKPGSCVVPLEGGFSIPADRGSVHYEAEIAVLIGKPLSTKPSVEEVLDAISGFAPALDLTLRDKQAELKAKGLPWEVAKSFDGAAVIAPFVSNATFADLTDIPVRLTINGEVRQDGNSSLMLNPIVPMIQYMAGCFSLQAGDVILTGTPAGVGPLNIGDELVLELPGASRFESSVR	PGPT0001625_435	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001625-ycgM-K01557	NA	NA
D1-36_00242	1419		COG0277	putative FAD-linked oxidoreductase	ATGAATTGTTCGAGAGTTCTGTCGATGACCAATCCTGCCGTGATAGATGAGCTGAAGACCCTGGTTGAGCCTGGCAAAGTTTTGACCGATGCCGACTCCCTGAATGCTTACGGCAAGGATTGGACCAAGCATTACGCGCCCGCACCGATCGCCATTGTGTTTCCAAAGACCACCGAACAAGTCCAGGCCATTGTGCGCTGGGCCAACGCGCACAAAGTCGCGTTGGTGCCATCGGGCGGGCGTACCGGCCTCTCCGCCGCCGCCGTCGCGGCGAATGGCGAGGTGGTCGTGTCATTCGACTACATGAACCAGATCCTCGATGTGAACCTGACCGACCGCACCGCCGTATGCCAGCCGGGCGTGGTCACCGAACAGTTGCAGAACAAGGCTGAAGAACATGGGCTCTACTATCCGGTGGACTTCGCTTCGGCAGGTTCGAGCCAGATTGGCGGCAATATCGGCACCAATGCTGGCGGGATCAAGGTCATTCGCTACGGCATGACCCGCAACTGGGTGGCGGGCATGAAGGTCGTGACGGGCAAGGGCGACGTGCTGGAACTGAACAAGGACCTGATCAAGAACGCCACCGGCTATGACTTGCGGCAGCTGTTCATCGGCGCCGAGGGCACCCTTGGTTTCGTGGTCGAAGCCACCATGCGCCTGGACCGCGCGCCGAAAAACCTCACCGCCATGGTGCTCGGCACGCCGGACTTCGACTCGATCATGCCGGTACTGCACGCATTCCAAGGCAAGCTGGACCTGACCGCCTTTGAATTTTTCTCCGACAAGGCCCTGGCCAAGGTCCTCGACCGTGGCGACGTCCCGGCCCCGTTCGAAACCGACTGCCCTTTCTACGCCCTGTTGGAATTCGAAGCCACCACCGAAGAAGTCGCCAACCACGCCCTGGAGACTTTCGAGCACTGCGTCGAACAAGGCTGGGTACTGGACGGCGTAATGAGCCAGAGCGAAACCCAACTGCAAAACCTGTGGAAGCTGCGCGAGTACATCTCCGAGACCATTTCCCACTGGACGCCGTACAAAAACGATATTTCGGTAACCGTCTCCAAAGTCCCGGGCTTCTTGCGCGAAATCGACGCGATTGTCGGCGAACACTACCCAGACTTTGAAATAGTCTGGTTCGGCCACATCGGCGACGGCAACCTGCACCTGAACATCCTCAAGCCGGAAAACCTGAGCAAGGATGAGTTCTTCGCTAAATGCGCGACGGTGAACAAATGGGTCTTTGAAACCGTCGAGAAGTACAACGGTTCAATCTCCGCCGAACACGGCGTGGGCATGACCAAACGCGACTACCTCACGTACAGTCGCTCTGCGGTTGAAATCGAATACATGAAAGCCGTGAAGTCGGTGTTCGACCCGAACGGCATCATGAACCCAGGCAAGATTTTCGCGGTTTGA	MNCSRVLSMTNPAVIDELKTLVEPGKVLTDADSLNAYGKDWTKHYAPAPIAIVFPKTTEQVQAIVRWANAHKVALVPSGGRTGLSAAAVAANGEVVVSFDYMNQILDVNLTDRTAVCQPGVVTEQLQNKAEEHGLYYPVDFASAGSSQIGGNIGTNAGGIKVIRYGMTRNWVAGMKVVTGKGDVLELNKDLIKNATGYDLRQLFIGAEGTLGFVVEATMRLDRAPKNLTAMVLGTPDFDSIMPVLHAFQGKLDLTAFEFFSDKALAKVLDRGDVPAPFETDCPFYALLEFEATTEEVANHALETFEHCVEQGWVLDGVMSQSETQLQNLWKLREYISETISHWTPYKNDISVTVSKVPGFLREIDAIVGEHYPDFEIVWFGHIGDGNLHLNILKPENLSKDEFFAKCATVNKWVFETVEKYNGSISAEHGVGMTKRDYLTYSRSAVEIEYMKAVKSVFDPNGIMNPGKIFAV				NA	NA	NA	NA	NA
D1-36_00243	1230	serA	COG0111	D-3-phosphoglycerate dehydrogenase	ATGAGCAAGACTTCTCTCGATAAGAGCAAGATCAAGTTCCTTCTTCTCGAAGGCGTCCACCAATCGGCTGTCGACGTCCTCAAGTCGGCGGGCTACACCAGCATCGAGTACATCACCAGTTCTCTGCCGGAAGCCCAGCTCAAGGAAAAGATCGCCGATGCTCACTTCATCGGTATTCGCTCCCGTACGCAACTGACTGAAGAGATCTTCGACCACGCCAAGAAACTGGTGGCGGTCGGCTGCTTCTGCATCGGCACCAACCAGGTGGACCTCAACGCGGCTCGCGAACGCGGTATCGCGGTGTTCAATGCGCCGTATTCCAACACCCGTTCCGTTGCCGAACTGGTGCTGGCCGAGGCGATCCTGCTGTTGCGCGGCATCCCCGAGAAGAACGCTTCCTGCCACCGTGGCGGCTGGATCAAGAGCGCGGCCAATTCCTTCGAGATCCGCGGCAAGAAGCTGGGTATCGTCGGCTACGGCTCGATCGGTACTCAATTGTCGGTACTGGCTGAAGGCCTTGGCATGCAGGTGTTTTTCTACGACACCGTGACCAAGCTGCCGTTGGGCAACGCGACCCAGGTCAACGACTTGCACGAATTGCTGGGCATGTCCGACATCGTCACCCTGCACGTGCCGGAAACCCCGGCCACCCAGTGGATGATCGGTGAAAAGGAAATCCGCGCCATCAAGAAAGGCGGGATCCTGATCAACGCCGCTCGCGGCACCGTGGTCAAGCTCGACGCACTGGCCGAAGCGATCAAGGACAAGCACCTGATCGGCGCGGCGATCGATGTGTTCCCGGTGGAGCCTCGCTCCAACGATGACATCTTCGAAAGCCCGCTGCGTGGCCTGGACAACGTGATCCTGACCCCGCACATCGGCGGTTCCACCGCTGAAGCCCAGGCCAACATCGGTCTGGAAGTGGCTGAAAAACTGGTCAAGTACAGCGACAACGGTACCTCGGTATCGTCGGTGAACTTCCCGGAAGTGGCTTTGCCGGCCCACCCTGGCAAGCACCGCCTGCTGCACATCCACGAAAACATTCCGGGTGTGATGAGCGAGATCAACAAAGTCTTCGCGGAAAACGGCATCAACATTTCCGGTCAGTTCCTGCAGACCAACGAGAAAGTCGGCTACGTCGTGATCGACGTCGATGCCGAATACTCGGACCTGGCCCAAGAGAAGTTGCAGCACATCAACGGCACCATTCGTTGCCGCGTGCTGTTCTAA	MSKTSLDKSKIKFLLLEGVHQSAVDVLKSAGYTSIEYITSSLPEAQLKEKIADAHFIGIRSRTQLTEEIFDHAKKLVAVGCFCIGTNQVDLNAARERGIAVFNAPYSNTRSVAELVLAEAILLLRGIPEKNASCHRGGWIKSAANSFEIRGKKLGIVGYGSIGTQLSVLAEGLGMQVFFYDTVTKLPLGNATQVNDLHELLGMSDIVTLHVPETPATQWMIGEKEIRAIKKGGILINAARGTVVKLDALAEAIKDKHLIGAAIDVFPVEPRSNDDIFESPLRGLDNVILTPHIGGSTAEAQANIGLEVAEKLVKYSDNGTSVSSVNFPEVALPAHPGKHRLLHIHENIPGVMSEINKVFAENGINISGQFLQTNEKVGYVVIDVDAEYSDLAQEKLQHINGTIRCRVLF	PGPT0009155_3878	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009155-serA-K00058	NA	NA
D1-36_00244	426			hypothetical protein	ATGAAAAGTTTTATGTCACGTGCGGCGTTGGCCGGTTTGTTGCTCGGAACTTCGATGCTGGCGACAGCGGCAACCCCGGCGCCCAAAGGTGCAGAAGTATTCATCGTTTCTCCTGAAGACGGTGCCACCGTCAGCCAAGAGTTCAAGGTCAAGTTCGGCGTCAAGAATATTGCACTTGCCCCGGCGGGCGACGTGACCAAGAACACCGGCCATCACCACCTGCTGATCGATGTCGATGATCTGCCTGCCGAGGGCACGCCGATTCCGACCGACCCCCACCACATGCATTTTGGCAAGGCGCAAACCGAAGCCACGATCAAACTGGCGCCGGGCAAACACACCTTGCAATTGATCCTGGGCGACAGCGGCCATATGCCGTTCGACCCGTCGATCATGTCCGAAAAGATCACGGTGAACGTCGAGTAA	MKSFMSRAALAGLLLGTSMLATAATPAPKGAEVFIVSPEDGATVSQEFKVKFGVKNIALAPAGDVTKNTGHHHLLIDVDDLPAEGTPIPTDPHHMHFGKAQTEATIKLAPGKHTLQLILGDSGHMPFDPSIMSEKITVNVE				NA	NA	NA	NA	NA
D1-36_00245	567	mltF_1		Membrane-bound lytic murein transglycosylase F	ATGCGTTTCCTGCCTGGCCTGATCTGCCTGCTACCTCTGTTGAGCCCTCTGGCCCATGCGGAACTGATCGACGACGTCAACGACCGTGGCGAGTTGCGAATCGCCCTCGAGGCCAACACCGCGCCGTTCAATTTCAAGGAGGACGGCAAGCTCACCGGTTTCGAAGTAGAGCTGGGCGAAATGCTCGCGGGCGAGCTCGATGTACGCCCTGATTTTGTCGTCACCGATGCGGCGGATCTGTTGTCCGGCGTGGAAAGCGGCAAGTACGACGTCGCCATCAACCACATAGCAATGACCCCGGAGTTGGCGGAACGTTTCGATACCAGCGCTACTTATAGCCAACCGGATGCGCAATTGCTGGCAAGCAAGGATGAGGCGCAACGTCCTCTGGTCCTGGCGCAGTCTTTCCAGCCGGAAGAGAAAAAAAGCCCGGCGCCGAGCCTGGTGATTCCGTTCCAGAAGGGCAATCCTGCGTTCAAGGCGAGCCTGGACAACGCCTTGGGGCGGATCAAGGACGATGGACGGCTGGAGCGGTTGTCGCAGAAGTGGTTGCTCAAGCAAGGGTGA	MRFLPGLICLLPLLSPLAHAELIDDVNDRGELRIALEANTAPFNFKEDGKLTGFEVELGEMLAGELDVRPDFVVTDAADLLSGVESGKYDVAINHIAMTPELAERFDTSATYSQPDAQLLASKDEAQRPLVLAQSFQPEEKKSPAPSLVIPFQKGNPAFKASLDNALGRIKDDGRLERLSQKWLLKQG	PGPT0015635_1748	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
D1-36_00246	627	tam_1		Trans-aconitate 2-methyltransferase	ATGAAACACACCGCCGACGATCTGCAGTCCATCACCGCCACGACCCTTGGCCATTACAACGCCGTGGCGGAGAGTTTTCGCGAAGGCACCCGCGATCATGACGTCAGCCAGAACATCGACGCCCTGCTGCGACACATCCAAGGCCAGGCGCCGTTCCATATCCTCGATTTCGGCTGCGGCCCTGGGCGTGATCTTCGCACCTTCACGGCCATGGGCCATGTCGCGGTGGGCCTCGACGGTTCGAGCGAATTCGCGCGCATGGCCCGCCAGGACAGCGGATGCGAGGTGTGGCAACAGGATTTCCTGCAACTCGATCTGCCGGCGGAGCGTTTCGACGGGATCTTCGCCAACGCCGTCCTGTTCCACATCCCTGTGCAGGAGCTGCCGCGCGTGCTCAAGCAATTACACGCCACGCTCAAGCCCGGCGGCGTGCTGTTCAGCTCAAACCCCCGGGGCGAAAACCAGGAAGGCTGGAACGGCCAACGCTTTGGCGCGTATCACGACCTCGCGGCCTGGCGCGTGTCGCTCACGCAGGCGGGTTTTGTGGAGCTGGAGCATTACTACCGGCCGGCGGGGCTGCCGCGAGAGCAGCAGCCTTGGTTGGCGAGCGTATGGCGCAAGATTTGA	MKHTADDLQSITATTLGHYNAVAESFREGTRDHDVSQNIDALLRHIQGQAPFHILDFGCGPGRDLRTFTAMGHVAVGLDGSSEFARMARQDSGCEVWQQDFLQLDLPAERFDGIFANAVLFHIPVQELPRVLKQLHATLKPGGVLFSSNPRGENQEGWNGQRFGAYHDLAAWRVSLTQAGFVELEHYYRPAGLPREQQPWLASVWRKI				NA	NA	NA	NA	NA
D1-36_00247	645	metI	COG2011	D-methionine transport system permease protein MetI	ATGTGGTTTGACCGATTGCTGCAGGGCTTCATCGACACGTTCCTCATGGTTGGCGTGTCGTCGCTGATCGCGTTGCTGGCGGGCATTCCGCTGGCGGTGATACTGGTCACAAGCGGCAAGGGCGGCATCTATGAGGCGCCCGCCTTGAACAAGGCCCTGGGCGGGTTTGTGAATTTGTTCCGCTCGATCCCCTTCCTGATTCTCATGGTGGCGCTGATTCCGTTCACCCGATTGATTGTCGGCACCACCTATGGCGTATGGGCCGCGGTGGTGCCGCTGACGATTGCCGCCACGCCGTTTTTTGCGCGTATCGCCGAAGTCAGCTTGCGGGAAGTTGACCATGGCCTGATCGAAGCGGCCCAGGCCATGGGTTGCCGGCGCTGGCACATCGTCTGGCATGTGCTGCTACCCGAAGCGCTGCCCGGCATCGTCGGCGGCTTTACCATCACGCTGGTGACCATGATCAACTCATCGGCCATGGCCGGGGCGATCGGTGCCGGAGGCCTGGGCGACATTGCCTACCGCTACGGTTACCAGCGTTTCGACAGCCAGATCATGCTCACGGTGATCGTGTTGCTGGTGGCATTGGTGGCGATGATTCAATTGGGCGGGGATCGGTTGGCGCGGGGGCTGAACAAGCGCTGA	MWFDRLLQGFIDTFLMVGVSSLIALLAGIPLAVILVTSGKGGIYEAPALNKALGGFVNLFRSIPFLILMVALIPFTRLIVGTTYGVWAAVVPLTIAATPFFARIAEVSLREVDHGLIEAAQAMGCRRWHIVWHVLLPEALPGIVGGFTITLVTMINSSAMAGAIGAGGLGDIAYRYGYQRFDSQIMLTVIVLLVALVAMIQLGGDRLARGLNKR	PGPT0020515_3795	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020515-metI-K02072	NA	NA
D1-36_00248	1125	metN_2	COG1135	Methionine import ATP-binding protein MetN	ATGAGTGCCGTCAACGCTCGACTCCGTCATGAAGCCCCAGCGCCCCACGTCGCCGACCAGACCGAGCTGCATCCAGAACTGAACCGTGCCCATGTGCGCTTCATCGGCCTCGGCAAAACCTACCCTGGCACCCAGGGCCCGGTGCCCGCGCTGCAAGGCATCGACCTGGCGATCCAGCGCGGCGAGGTCTTTGGCATCATCGGCCGCAGTGGCGCGGGCAAGTCCTCGCTGATCCGCACCATCAACCGCCTCGAACAACCCACCAGCGGACGGGTGCTGATCGATCAGGTGGACATCGGCGAGTTCGATGAAGATCGTCTCGTGGAGCTGCGCCGGCGCATCGGCATGATCTTCCAGCACTTCAACCTGATGTCGGCCAAGACGGTGTGGCAGAACGTCGAGCTGCCGCTCAAGGTTGCCGGCGTGCCCAAGGAACAACGTCTGCACAAGGTTCGCGAATTGTTGGAACTGGTCGGCCTGCAAGGTAAGCACGGCGCCTATCCGGCGCAGCTCTCGGGCGGTCAGAAGCAGCGTGTCGGGATTGCCCGGGCGCTGGTCCATGACCCGCAGATCCTGTTGTGCGACGAGGCCACCTCGGCGCTCGATCCGGAAACGACTCAATCGATCCTCGGTTTGCTGCGTGAGATCAACCAGCGGCTGGGCCTGACCATCGTGCTGATTACCCATGAAATGGCGGTCATCCGCGAAGTCTGCGACCGGGTGGTGGTGCTCGAACAAGGACGGATCGTCGAACAAGGGCCGGTCTGGGAAGTCTTCGGCAACCCGCAGCATGCCGTCAGCCGCACGCTCCTGGCGCCGTTGCAGCACGCACTGCCCGAGGAACTGCAAAGCCGCTTGCAACCCCACCCGACCTCCGCGGACGCAGCCACTGTACTGCGCCTGCAATTCACGGGGCACAGCGGCGACGAACCAGACCTCGCGGCCCTGTTCAGTGCCCTGGGTGGACGGGTACGGCTGCTGCACGGCGGCCTGGAAAGAATTCAAGGCCACGGGCTGGGGCAGTTGCTGCTGGCGGTGAGCGGGTCGTCATGGGGCGCTGATGAACTGCGTCAACGTGCGGGCAACTGGGCACAACGGGTGGAGGTGTTGGGTTATGTGGTTTGA	MSAVNARLRHEAPAPHVADQTELHPELNRAHVRFIGLGKTYPGTQGPVPALQGIDLAIQRGEVFGIIGRSGAGKSSLIRTINRLEQPTSGRVLIDQVDIGEFDEDRLVELRRRIGMIFQHFNLMSAKTVWQNVELPLKVAGVPKEQRLHKVRELLELVGLQGKHGAYPAQLSGGQKQRVGIARALVHDPQILLCDEATSALDPETTQSILGLLREINQRLGLTIVLITHEMAVIREVCDRVVVLEQGRIVEQGPVWEVFGNPQHAVSRTLLAPLQHALPEELQSRLQPHPTSADAATVLRLQFTGHSGDEPDLAALFSALGGRVRLLHGGLERIQGHGLGQLLLAVSGSSWGADELRQRAGNWAQRVEVLGYVV	PGPT0020520_236	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020520-metN-K02071	NA	NA
D1-36_00249	810	metQ_3	COG1464	D-methionine-binding lipoprotein MetQ	ATGACCAAGCACTTCCTCACTCTGCCAGTCAGAACCCTGGCCCTGGCTCTCGGCCTGTTCAGCTCGGCATTGTTCGCCGCCGACGCCCCGTTGAAAATCGGCACCACCGCTGCGTTCGCCATTCCCTTGGAGGCCGCCGTCGAAGAGGCCGGCAAACAAGGCCTGAAAGTCGAACTGGTGGAATTCAGCGACTGGATTGCGCCTAACGTCAGCCTCGCTTCGGGCGACATCGACGTGAATTATTTCCAGCACATACCGTTCCTGGAGAACGCCAAGGCCGCCGCCGGTTTCGACCTGGTGCCGTTCGCACCGGGAATCATCAACAACGTAGGCCTCTATTCGAAGAAATACAAAAGCTTCGACGAGCTGCCCGAAGGCGCCAGCGTCGCCATTGCCAACGATCCGATCAACAGCGGACGCGGTTTGCAATTGCTGGCCAAGGCCGGACTGATCCAGCTCAAGCCGGGCGTCGGCTACAAGGCCACCGAAGAGGACATCATCGCCAACCCAAAGAAGCTCAAGATACTGCAAGTCGAAGCCGTGCAGTTGGTGCGTGCCTATGAAGACGCGGATCTGGTACAAGGTTATCCAGCCTACATTCGCCTCGCGAACACCTTCGACGCGACGTCTGCCTTGCTCTTCGACGGCCTCGACCACAAGGAATATGTCATCCAGTTCGTGATCCAGCCCAAGAGCGAGAACGATCCAAGGCTGATCAAGTTCGTCGACATTTACCAACACTCACCTGCCGTGCGCGCGGCCCTGGACAAGGCCCATGGCAAGCTCTACCAAGCCGGCTGGGAAGGCTGA	MTKHFLTLPVRTLALALGLFSSALFAADAPLKIGTTAAFAIPLEAAVEEAGKQGLKVELVEFSDWIAPNVSLASGDIDVNYFQHIPFLENAKAAAGFDLVPFAPGIINNVGLYSKKYKSFDELPEGASVAIANDPINSGRGLQLLAKAGLIQLKPGVGYKATEEDIIANPKKLKILQVEAVQLVRAYEDADLVQGYPAYIRLANTFDATSALLFDGLDHKEYVIQFVIQPKSENDPRLIKFVDIYQHSPAVRAALDKAHGKLYQAGWEG	PGPT0020510_4229	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020510-metQ-K02073	NA	NA
D1-36_00250	1359	dmoA		Dimethyl-sulfide monooxygenase	ATGGCGGCCGGCAAGAAAAAAATCCTCCTCAACGCGTTCAACATGAACTGCATCGGGCACATCAACCACGGTCTGTGGACCCATCCAGAGGACACCTCTACCCAGTTCAACACCATTGAATACTGGACCGGGCTGGCCCAGTTGCTGGAGCGAGGTTTGTTCGACGGGTTGTTCATTGCCGATATCGTCGGGGTCTATGACGTTTACCAGCAGTCCGTGGACGTCACGCTGAAAGAATCGATTCAACTGCCGGTCAACGACCCGTTGCTGCTGGTATCGGCAATGGCCGCAGTGACGAAAAACCTCGGCTTTGGCCTCACCGCCAACTTGACCTACGAACCGCCGTACCTGTTCGCCCGGCGCATGAGCACGCTGGACCACCTGAGCCGCGGACGGGTTGGCTGGAACATCGTCACCGGCTACCTGGACAGCGCCGCCAAGGCCATGGGCCTTACCGCGCAGGTCGAGCACGACCGGCGCTACGACCAGGCCGACGAGTACCTGCAAGTGCTCTACAAGCTATGGGAAGGCAGTTGGGAAGACGACGCGGTCATCAACGATCGCGAGCAGCGGATTTATGCCCGGCCAGAGAAGGTGCACAAGGTCCAGCATCAGGGGGAGTTCTATCAGATCGAGGGTTATCACCTCTGCGAGCCCTCGCCACAGCGCACGCCGGTACTGTTCCAGGCGGGCAGCTCCGAGCGGGGCCTGCTGTTCGCTGGGCGCCATGCGGAGTGCGTGTTCATCAGTGGCCAGAACAAACCGGCGACCAAGGTCCAGGTGGACAAGGTCCGCGCCAGCGCCCTCGCGGCTGGGCGCCATGCCGAAGACATCAAAGTGTTCATGGGCCTGAACGTGATCGTCGGCGAAACCGAAGCGGCGGCCTGGACCAAGCATGCCGAGTACCTGGGCTACGCCAGCGCCGAGGCCGGAGTGGCGCATTTCTCCGCCTCGACGGGCATTGATTTTGCCGAGTACGAACTGGACGAACCGATCCAGTACGTGAAGAGCAACGCCATCCAGTCCGCCACCAAGACCCTGCAAAACAACGACTGGACCCGACGCAGATTGCTGGAGCAACACGCCTTGGGCGGTCGCTACATCACGGTGGTCGGCTCGCCCGAACAGGTCGCCGATGAGCTGGAATCCTGGATCGCCGAAACCGGCCTCGACGGCTTCAACCTGACCCGCATCGTCACGCCGCAAAGTTACCTGGACTTCATCGACCTGGTGATTCCCGAGCTGCAGCGACGCGGGTCGTACAAGACCGAATACGACGATGGCACGTTGCGGGAAAAGCTGTTTCACGGGGGGGCTCATTTGCCCGAACAACATACCGGCTCAACCTACCGGCACTGA	MAAGKKKILLNAFNMNCIGHINHGLWTHPEDTSTQFNTIEYWTGLAQLLERGLFDGLFIADIVGVYDVYQQSVDVTLKESIQLPVNDPLLLVSAMAAVTKNLGFGLTANLTYEPPYLFARRMSTLDHLSRGRVGWNIVTGYLDSAAKAMGLTAQVEHDRRYDQADEYLQVLYKLWEGSWEDDAVINDREQRIYARPEKVHKVQHQGEFYQIEGYHLCEPSPQRTPVLFQAGSSERGLLFAGRHAECVFISGQNKPATKVQVDKVRASALAAGRHAEDIKVFMGLNVIVGETEAAAWTKHAEYLGYASAEAGVAHFSASTGIDFAEYELDEPIQYVKSNAIQSATKTLQNNDWTRRRLLEQHALGGRYITVVGSPEQVADELESWIAETGLDGFNLTRIVTPQSYLDFIDLVIPELQRRGSYKTEYDDGTLREKLFHGGAHLPEQHTGSTYRH	PGPT0003040_11	DIRECT EFFECT	BIO-FERTILIZATION	SULFUR_ASSIMILATION|MINERALIZATION	S-ASSSIMILATION-SULFUR_METABOLISM	S-METABOLISM-ALKANESULFONATE_DEGRADATION,PGPT0003040-ssuD-K04091	NA	NA
D1-36_00251	1194	soxC_1		Dibenzothiophene desulfurization enzyme C	ATGACGTTTTCCCAACACGTCGCGGTGATCACCAGCGATGAACAAGCCTTGATTGTCGCCAGCGACCTGGCTGATGACTTCAAACGCGACAGTGCCCTGCGCGACCGCGAACGGCGTCTGCCTCTTGCGGAGCTGGAAGCGTTCACTCGCGCGGGCCTTTGGGGCATCAGCGTGCCCAAGGCCTACGGCGGTGCGGGCGTATCCAACGTCACGCTGGCCAAGGTCATCGCGCTGATCTCACAGGCCGATGGTTCGCTCGGCCAGATTCCGCAAAATCATTTCTATGCATTGGAAGTGCTGCGGGTTAACGGCAGCGAGGCCCAGAAGCAACGGCTGTACGCCGAGGTGCTGGCCGGCCAGCGGTTTGGCAACGCCCTGGCGGAGCTCGGGACGAGGACGGCCCATGACCGCATCACCCAACTGCGTCGCGACGGCGAGGCCTATCGCATCAATGGCCGCAAGTTCTACGCCACCGGGGCGATCTATGCCCAGCGCATCCCCACCTCCGTGGTGGATGAAAACGGCGTGCAACAGTTGGCGTTCGTCCCGCGCAGCAGCAAGGGCCTGACGGTGATCGACGACTGGAGCGGTTTCGGCCAGCGCACCACCGGCAGCGGCTCGGTGGTGTTCGAGGATGTCCTTGTCGATGCCGAAGACATCGTGCCCTTCCAGAGCGCCTTCGAACGCCCAACGCCGGTAGGCCCGTTGGCGCAGATCCTCCACGCCGCCATCGACGCCGGCATCGCCCGCGCCGCCTATGAAGACGCCCTGCATTTTGTCCGCAGCAAAACCCGTCCGTGGATCGACGCCACCAGCGACGTCGCCACCCAGGACCCGCATACTCTTAAAAGCTTCGGCCACCTGAGCATTCGCCTGCATGCCGCCGAAGCCTTGCTGGAACGCGCCGGTGAACTTCTTGACCGCGCCCAGGCCGACACGAACGCAGAAACGGTGGCGGCGGCCTCGATCGCCGTGGCCGAAGCCCGGGCCCTCAGCACTGAAATTTCCCTCGCCGCCGGCAGCACGCTGTTCGAACTGGCCGGCAGCCAGGCGACCCTGGCCGAACATGGCCTCGACCGCCACTGGCGCAACGCCCGAGTGCACACCCTGCACGACCCGGTGCGCTGGAAGTATCACGCGGTCGGCAACTTCTACCTCAACGATGAAAAACCGCCGCTGCGGGGGACAATCTGA	MTFSQHVAVITSDEQALIVASDLADDFKRDSALRDRERRLPLAELEAFTRAGLWGISVPKAYGGAGVSNVTLAKVIALISQADGSLGQIPQNHFYALEVLRVNGSEAQKQRLYAEVLAGQRFGNALAELGTRTAHDRITQLRRDGEAYRINGRKFYATGAIYAQRIPTSVVDENGVQQLAFVPRSSKGLTVIDDWSGFGQRTTGSGSVVFEDVLVDAEDIVPFQSAFERPTPVGPLAQILHAAIDAGIARAAYEDALHFVRSKTRPWIDATSDVATQDPHTLKSFGHLSIRLHAAEALLERAGELLDRAQADTNAETVAAASIAVAEARALSTEISLAAGSTLFELAGSQATLAEHGLDRHWRNARVHTLHDPVRWKYHAVGNFYLNDEKPPLRGTI				NA	NA	NA	NA	NA
D1-36_00252	1242	soxC_2		Dibenzothiophene desulfurization enzyme C	ATGTCCGATCTGGCCCAGCCGAAGGTCCAGAGCGACCTGGACATCGCCCCATCACTGCTGCCGGCGCAGGTGCTGCGCACCGATGCCGAAGCAATCAAAGCTGCCCATGAACTGGCGCAATTGGCGCGCCAGCAAGCTGCGCGTCGCGACCAGCAACGCAAGCTGCCCTGGTCGGAAATCGAGCAATTCACCCGCAGCGGGCTCGGCAGCATTGCCGTGCCCCGCGATTACGGTGGCCCGCAAGTCTCCTGCGTCACGATCGCCGAGGTGTTTGCAATCATTTGCGCTGCCGATCCGGCCCTTGGTCAGATTCCCCAAAACCAGTTCGGCGTGCTCCAGCTGATTCTTGCCACGGGCACCGAGCGGCAGAAGAGATTGCTTCTCCAAAGCGTGCTGGAAGGCTGGCGCATCGGCAATGCCGGACCGGAGCGCGGCACCCGCAACACCTTGGAACTCAAGGCACGGATCACGGCCGACGGTGACGGCTATGTCATCAACGGGCAGAAGTTCTATTCCACCGGTGCGCTGTTCGCCCATTGGGTCGCCGTCAAGGCCTTGAATGAGGAGGGTCGTCAGGTATTGGCGTTCGTGCGGCGCGGCACACCGGGCCTGCGGATCGTTGATGACTGGTCGGGCTTCGGCCAGCGCACCACGGCCAGTGGCACGGTGCTGCTGAACGATGTGCGGGTCGACGCCGAGCTGGTACTGGACAACTGGCGCATCAACGACACGCCCAACGTGCAAGGAGCATTTTCGCAACTGATCCAGGCCGCTATTGACCTGGGCATCGCCCGCGGCGCCATCGACGATGCCATCGACTTCGTGCGCAAACGCTCGCGCCCCTGGATCGACGCCAACGTCGAGCGGGCCAGTGACGATCTGTATGTCATCGCCGATGTCGGCAAGCTGAAGATCGAACTGCACGCCGCCGAGGCTTTGCTGCGCAAGGCCGGGCAGGTGCTTGACCAGGTCAATGCCGCGCCGATCACCGAACAGTCCGCCGCCCGCGCCTCGATAGCCGTCGCCGAAGCCAAGGTCCTGACCACCGAAATCGCCCTGCACGCCAGCGAGAAACTGTTCGAGCTGGCCGGCAGCCGCGCCACCCTCGCTGAATTCAACCTTGATCGCCACTGGCGCAACGCACGGGTCCACACCCTGCACGACCCCGTGCGCTGGAAATACCACGCGGTCGGCGATTACCGCCTGAACGGCACCTTGCCTGCCCGGCACTCCTGGATTTGA	MSDLAQPKVQSDLDIAPSLLPAQVLRTDAEAIKAAHELAQLARQQAARRDQQRKLPWSEIEQFTRSGLGSIAVPRDYGGPQVSCVTIAEVFAIICAADPALGQIPQNQFGVLQLILATGTERQKRLLLQSVLEGWRIGNAGPERGTRNTLELKARITADGDGYVINGQKFYSTGALFAHWVAVKALNEEGRQVLAFVRRGTPGLRIVDDWSGFGQRTTASGTVLLNDVRVDAELVLDNWRINDTPNVQGAFSQLIQAAIDLGIARGAIDDAIDFVRKRSRPWIDANVERASDDLYVIADVGKLKIELHAAEALLRKAGQVLDQVNAAPITEQSAARASIAVAEAKVLTTEIALHASEKLFELAGSRATLAEFNLDRHWRNARVHTLHDPVRWKYHAVGDYRLNGTLPARHSWI				NA	NA	NA	NA	NA
D1-36_00253	762			hypothetical protein	ATGACATGTACGTCGCATACCCCTGAGTTGCCCGCGCCCACCTTGGCCAGCAGCGGCATCAATATCACCAGCGCCGCGCATCTGGAGGTCGTTGTAGCGCCCTATCCCGGAATGGATCCGGGGGATCTGGTCGAATTATTCTGGGACAACTGCTACGTCGGCTCCCGCCTGCTTACAGAATCGGACCTGCGCGCAAGCATTTGCCTGCGGGTACCGGAGAGTTTCATCGTCAACGGGACCTCCCGCGTCCACTACCGCGTCATGCAAATCGGACGCGGGCCGGCGCTGTCCGCGGCGCGACAGGTTCAGGTCAAGCTGGACTGCCCCGGTGGCCAACCGTCGGCCTTGACCGGTGATGAAAACCAGAGCCTGGCGCCGGTGCGGATCCCGGAAACCATCCGCCGCCAAGGCGTGAACCCGAACCAGATCAGACGTGGCGTGCCGGTGACGATCGAGCCCTACCTGAACATGGCCGCCGACGATGCGATTACCGTGCGTTGGGGCGACGTGCGCATGGACCTGCCAAGGATCAAGCCTTGTGAAGTAGGCCAACCGGTCCACGTCTGGGTTCCGCCGGAAGTCATCATGGAAGCGGGCGAGGACCTGCGTCTGGAAGTGACCTATTGCATCATCGACCGGGTGGGCAACAATTCCCGCTGGGCTCCGCCGCGTACGTTGAAGATCGGTTGCGCCAACCCGTATCTGAAGAATCCGCCGACAGACCTGCTCGTGGCCGCTGAACCGCGACGCCGGGCGCCGTGA	MTCTSHTPELPAPTLASSGINITSAAHLEVVVAPYPGMDPGDLVELFWDNCYVGSRLLTESDLRASICLRVPESFIVNGTSRVHYRVMQIGRGPALSAARQVQVKLDCPGGQPSALTGDENQSLAPVRIPETIRRQGVNPNQIRRGVPVTIEPYLNMAADDAITVRWGDVRMDLPRIKPCEVGQPVHVWVPPEVIMEAGEDLRLEVTYCIIDRVGNNSRWAPPRTLKIGCANPYLKNPPTDLLVAAEPRRRAP				NA	NA	NA	NA	NA
D1-36_00254	762	artM	COG1126	Arginine transport ATP-binding protein ArtM	ATGATTGTCGTGGAAAAACTGACAAAGCAGTTCAAGGGCCAGGTGGTGCTCAACGGCATCGACTTGAAGATCGAAGAAGGCGAAGTGGTTGCGATCATCGGCCCCAGCGGTTCGGGCAAGACGACCTTCCTGCGCTGCCTGAATTTCCTCGAAGAGCCCAGCAGCGGTCGGATCAAGGTCGGCGACATCGAGATCGATGGCAGTCGCCCTTTGAACCAGCAGCAGGGCCTGGTGCGTCGTTTGCGCCAGCAGGTCGGTTTCGTGTTCCAGAACTTCAATCTGTTCCCCCACCGCACCGCGCTGGAGAACGTCACCGAAGGCCCGATCGTGGTGAAAAAGACGCCCCGTGCCGACGCCGAAGCGCTGGGTCGCAAACTGTTGGCAAAAGTCGGCTTGGCCGGCAAGGAAAACGCCTATCCAAGGCGCCTGTCCGGTGGCCAGCAACAGCGCGTGGCAATCGCCCGGGCGCTGGCGATGGAACCGGCGGTGATCCTCTTCGACGAGCCCACCTCGGCCCTCGACCCGGAACTGGTGGGTGAAGTATTGGCAACCATTCGTGGCTTGGCCGAAGAAAAACGCACCATGGTCATCGTGACCCACGAGATGGGCTTCGCCCGGGATGTGGCAAACCGCGTGGTGTTCTTCGACAAAGGCGTGATCGTTGAACAAGGCGAAGCCAAGGCATTGTTTGAAGCACCGAAAGAAGAGCGTACCCGACAGTTCCTCAGCAAGTTCCTCTCAGCCGGACACGGCACGCACTAA	MIVVEKLTKQFKGQVVLNGIDLKIEEGEVVAIIGPSGSGKTTFLRCLNFLEEPSSGRIKVGDIEIDGSRPLNQQQGLVRRLRQQVGFVFQNFNLFPHRTALENVTEGPIVVKKTPRADAEALGRKLLAKVGLAGKENAYPRRLSGGQQQRVAIARALAMEPAVILFDEPTSALDPELVGEVLATIRGLAEEKRTMVIVTHEMGFARDVANRVVFFDKGVIVEQGEAKALFEAPKEERTRQFLSKFLSAGHGTH	PGPT0020720_316	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
D1-36_00255	666	yecS_1	COG0765	L-cystine transport system permease protein YecS	ATGGAAGCAGCTCTTCAACTCGCGTTGGACTCCGCGCCCTTCCTGCTCAAGGGCGCGTATTACACCGTCATCCTCAGCCTGGGCGGGATGTTCTTCGGCTTGTTGCTGGGGTTCGGCCTGGCGCTGATGCGCCTGTCTCGTCTCACAGCGGTCAACTGGACAGCCCGCGCCTACGTGTCGTTCTTTCGCGGCACGCCGTTGCTCGTGCAGTTATTCCTGATCTACTACGGGTTGCCGCAGCTGGGGGTCGAGCTGGACCCGCTTCCAGCGGCGCTGATCGGTTTCTCGCTGAACATGGCGGCCTATGCCTGTGAGATCCTGCGGGCCGCCATCAGCTCCATCGAGCGGGGCCAGTGGGAAGCGGCGGCGAGCATCGGGATGACCCGTGCCCAGACTCTGCGTCGGGCCATTTTGCCGCAAGCCGCGCGTACGGCCCTGCCACCGCTGGGCAACAGCTTCATCTCCCTGGTCAAGGACACCGCGCTGGCGGCGACTATCCAGGTGCCGGAGCTGTTCCGTCAGGCGCAATTGATCACCGCCCGTACCTTCGAAATCTTCACCATGTATCTTGCCGCCGCGCTGATCTACTGGGTTCTCGCCACCGTGCTTTCGCACTTGCAGAACGTATTGGAAGCTCGGGTCAATCGGCACGACCAGGAGTCCTGA	MEAALQLALDSAPFLLKGAYYTVILSLGGMFFGLLLGFGLALMRLSRLTAVNWTARAYVSFFRGTPLLVQLFLIYYGLPQLGVELDPLPAALIGFSLNMAAYACEILRAAISSIERGQWEAAASIGMTRAQTLRRAILPQAARTALPPLGNSFISLVKDTALAATIQVPELFRQAQLITARTFEIFTMYLAAALIYWVLATVLSHLQNVLEARVNRHDQES	PGPT0020715_1113	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
D1-36_00256	801	fliY_1	COG0834	L-cystine-binding protein FliY	ATGAATTTTTCCGCATTACGTCGCAACCTGCTGGTGGGTTCGCTGGGCCTGGTACTGGGCGCCGGCCTGCTGGGGCAAGCGGTTGCCGGTGAGCAACTGCAAAACATCAAGGACGCTGGTGAAATCAAGATCGGCCTGGAAGGCACGTACCCACCGTTCAGCTTCGTTGACGCCGACGGCAAGCTGAACGGTTTCGAAGTGGAATTTTCCGAAGCCCTGGCCAAGGAGCTGGGTGTGAAGGTCAAGCTGCAGACCACCCCATGGGCAGGCATCCTCGCGGCACTGGAATCCAAGCGCCTGGACGCTGTGGTCAATCAGGTGACCATTTCTGAAGAACGCAAGAAGAAATACGACTTCTCGGAGCCGTACACTGTTTCCGGCATTCAAGCGCTGGTCCTGACCAAGAAAGCTGGCGAGCTGAACATCAAGGAAGCCGCTGACCTGGGCGGTAAAAAAGTCGGCGTTGGCTTGGGCACCAACTACGAACAGTGGGTCAAGGCCAACGTGCCTACCGCCGATGTACGCACTTACGAAGATGACCCGAGCAAGTTCCAGGACCTGCGCGTTGGCCGCATCGACGCCATCCTGATCGACCGCCTCGCCGCGCTGGAATACGCCAAGAAAGCCAAGGACACGACCGCCGCCGGCAAAGCCTTCTCTCGCCAGGAGGCCGGTATCGCCCTGCGCAAAGGCGAGCCTGAGTTGTTGGCCGCCGTGAACAAAGCCATAGAAAAACTGCGCGCCGACGGCACGCTGAAAAAACTGTCGGAAAAATATTTCAACGCTGACGTCACCCAATAA	MNFSALRRNLLVGSLGLVLGAGLLGQAVAGEQLQNIKDAGEIKIGLEGTYPPFSFVDADGKLNGFEVEFSEALAKELGVKVKLQTTPWAGILAALESKRLDAVVNQVTISEERKKKYDFSEPYTVSGIQALVLTKKAGELNIKEAADLGGKKVGVGLGTNYEQWVKANVPTADVRTYEDDPSKFQDLRVGRIDAILIDRLAALEYAKKAKDTTAAGKAFSRQEAGIALRKGEPELLAAVNKAIEKLRADGTLKKLSEKYFNADVTQ	PGPT0015635_829	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
D1-36_00257	993	dcyD	COG2515	D-cysteine desulfhydrase	ATGATCAAAGAACAGCTGTCCCGCTTTCATCGTCTCGACCTGCTCGGTCATCCGACACCGCTGGAAAAACTTGAACGCCTCTCCCAATGGCTCGGCCGCGAGGTCTACATCAAGCGCGACGACCTGACGCCCTTGGCACTGGGCGGCAACAAGCTGCGCAAACTTGAATACCTGGGCGCCGACGCGTTGGCCCAAGGTGCCGATACCCTCATCACCGCGGGCGCGATCCAGTCCAACCATGTCCGCCAGACGGCTGCCTTGGCCGCCAGGCTGGGCCTGGGTTGCGTGGCGCTGCTGGAAAACCCCATCGGCACCGACGACAGCAATTACCTGGGTAACGGCAATCGACTGCTGCTTGACCTGTTCGACGCGAAAGTCGAATTGGTGGATAACCTGGATAACGCCGACGATCAATTGCAGGCCCTCGCTGGCCGCCTGCGCAGCAACGGGAAAAAACCCTACCTGGTGCCGATCGGTGGTTCGAACGCCCTCGGCGCACTGGGATATGTCCGTGCTGGGCTGGAGCTGGCCGAACAGATCAAGGACACCGGTATCGATTTCGCCGCCGTCGTGCTGGCCTCGGGCAGTGCCGGAACCCACAGCGGCCTGGCGCTGGCCTTGAGCGAAAGCCTGCCCGCGCTTCCGGTCATTGGCGTGACGGTTTCCCGTAGCGAAGAAGATCAATTCCCCAAGGTCCAGGGCCTGGCCGAACGCACGGCGCAGCTGTTGGATGTCGCCGTCCCGCAAGCCTTCAAAGTGAACCTGTGGGATGAATACTTTGCTCCCCGCTACGGCGAACCCAGCGCCGGCACGCTGGCGGCGGTCAAGCTACTGGCGAGCCAGGAAGGGCTTTTGCTCGACCCGGTCTACACCGGCAAGGCCATGGCGGGCCTGCTCGACGGCATTGGTCGCGACCGCTTCGACGAGGGCCCGATCATCTTCCTTCACACCGGTGGTGCGCCGGCATTGTTTGCCTACAACGCGGCGTTTTGA	MIKEQLSRFHRLDLLGHPTPLEKLERLSQWLGREVYIKRDDLTPLALGGNKLRKLEYLGADALAQGADTLITAGAIQSNHVRQTAALAARLGLGCVALLENPIGTDDSNYLGNGNRLLLDLFDAKVELVDNLDNADDQLQALAGRLRSNGKKPYLVPIGGSNALGALGYVRAGLELAEQIKDTGIDFAAVVLASGSAGTHSGLALALSESLPALPVIGVTVSRSEEDQFPKVQGLAERTAQLLDVAVPQAFKVNLWDEYFAPRYGEPSAGTLAAVKLLASQEGLLLDPVYTGKAMAGLLDGIGRDRFDEGPIIFLHTGGAPALFAYNAAF	PGPT0002000_167	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0002000-cuyA-K17950	NA	NA
D1-36_00258	2001	betT2	COG1292	Osmo-dependent choline transporter BetT2	ATGAGCACTTCGTCCCTCCCACCCAGCGGCCTGGTCCGCATGAATCCGCCAGTGTTTTATTTCTCGGCGACCTTCATCCTGCTGTTCGGCCTGGTTGTCATCACGCTGCCCAAGCAGGCCGGCGCGTGGCTTCTGGCGGCCCAGAACTGGGCGGCCAACACGGTCGGTTGGTATTACTTGCTGGCGATGACCCTGTATCTGATTTTCGTGGTAGTCACTGCATTGTCCGGCTACGGCAAGATCAAGCTCGGAGCCGACCACGACGAACCCGAGTTCAGTTACCTGTCCTGGGCCGGCATGTTGTTCGCCGCCGGGATCAGCATCACGTTGTTCTTCTTTTGCGTTTCGGAGCCGCTGACCCATCTGGTCCAGCCCCCCCAAGGGGAGGCCGGCACCGCCGATGCGGCGCGCCAGGCCATGCAGATCCTATTCCTGCACTGGGGCTTGCACGGCTGGGGCGTCTTTGCATTCGTCGGCATGGCCCTGGCGTACTTCGCCTACCGGCACAATTTGCCGTTGGCCTTGCGGTCGGCGTTGTACCCGCTGATCGGCAAGCGCATCAATGGCCCGATCGGTTATGCAGTGGACGGCTTCGGCATCATTGCGACCGTGTTCGGCCTGGGCGCGGACATGGGGTTTGGAGTGCTGCACCTCAATTCCGGGCTGGATTACCTGTTCGGCATCGCTCACACGCAGTGGATCCAGGTTGGCCTGATCGTACTGATGATGGGGGCGGCAATCATCGTCGCCGTGGCGGGTGTCGACAAAGGCGTGCGGGTCATGTCCGACATCAACATGCTGCTGGCCTGCGCACTGTTGTTGTTTGTGCTGTTCGCCGGCCCGACACAGCACCTGCTCAACACGCTGATCCAGAACCTGGGGGACTACCTCGGCGCGCTGCCGATGAAAAGTTTCGACCTGTACGCCTACAACAAGCCCAGTGACTGGCTGGGCGGCTGGACCGTTTTCTACTGGGCGTGGTGGATCGCCTGGTCGCCGTTCGTGGGGCTGTTTATCGCACGGATTTCCCGTGGCCGTACGATCCGCGAATTCGTGTTTGGCGTGCTTTTGATTCCACTGGGTTTCACCCTGGCGTGGATGTCGATCTTCGGCAACAGTGCCCTCGACCAGGTACTGAACCATGGCATGAGTGCCTTGGGCATGTCCGCCCTGGAAAACCCGTCGATGAGCCTTTACCTGCTGCTGGAAACCTATCCGTGGAGCAAGACGGTGATCGCGGTCACGGTGTTTATCAGCTTCGTGTTTTTTGTCACGTCCGCCGATTCAGGCACCGTGGTGCTTTCGACATTGTCTGCCAAGGGTGGCAGCCCCGATGAAGACGGGCCGAAATGGCTGCGTGTGTTCTGGGGGGCGATGACCGCCCTGGTGACCAGTGCCTTGCTGTTTTCCGGGAGTATCGATGCGCTCAAGTCAGCGGTGGTGCTGACGTCGTTGCCGTTCTCCATGATTCTTTTGCTGATGATGTGGGGGCTGCACAAGGCGTTCTATCTCGAATCCCAGAAGCAGATTGCGCAATTGCATTCCCTCGCGCCGGTGGCGGGGTCTCGCCGGGGCACGGGCGGCTGGCGCCAGCGTCTGAGCCAGGCGGTGCATTTCCCTTCCCGGGACGAGGTGTACCGTTTCCTGGACACCACGGTGCGCCCTGCCATTGAAGAAGTGAAAGCGGTGTTCGCTGAAAAAGGCCTGGCGGTGATGACCCAGCCAGACCCGGCCAACGACAGCGTCAGCCTAGAGATCGGCCACGGCGAGCAGCATCCGTTCATCTACCAGGTGCAGATGCGCGGCTACTTCACGCCGTCCTTCGCCCGGGGCGGCATGGGCTCCAAGCAGATCAACAACCGGCGTTACTACCGAGCCGAGGTGCACCTGAGCGAAGGCAGCCAGGATTACGACCTGGTGGGCTACTCCAAGGAGCAGGTCATCAACGACATCCTCGATCAGTACGAACGCCATATGCAGTTCTTGCATCTGGTGCGCTGA	MSTSSLPPSGLVRMNPPVFYFSATFILLFGLVVITLPKQAGAWLLAAQNWAANTVGWYYLLAMTLYLIFVVVTALSGYGKIKLGADHDEPEFSYLSWAGMLFAAGISITLFFFCVSEPLTHLVQPPQGEAGTADAARQAMQILFLHWGLHGWGVFAFVGMALAYFAYRHNLPLALRSALYPLIGKRINGPIGYAVDGFGIIATVFGLGADMGFGVLHLNSGLDYLFGIAHTQWIQVGLIVLMMGAAIIVAVAGVDKGVRVMSDINMLLACALLLFVLFAGPTQHLLNTLIQNLGDYLGALPMKSFDLYAYNKPSDWLGGWTVFYWAWWIAWSPFVGLFIARISRGRTIREFVFGVLLIPLGFTLAWMSIFGNSALDQVLNHGMSALGMSALENPSMSLYLLLETYPWSKTVIAVTVFISFVFFVTSADSGTVVLSTLSAKGGSPDEDGPKWLRVFWGAMTALVTSALLFSGSIDALKSAVVLTSLPFSMILLLMMWGLHKAFYLESQKQIAQLHSLAPVAGSRRGTGGWRQRLSQAVHFPSRDEVYRFLDTTVRPAIEEVKAVFAEKGLAVMTQPDPANDSVSLEIGHGEQHPFIYQVQMRGYFTPSFARGGMGSKQINNRRYYRAEVHLSEGSQDYDLVGYSKEQVINDILDQYERHMQFLHLVR	PGPT0013600_893	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013600-opuD|ytfQ-K05020	NA	NA
D1-36_00259	741	fabG_2		3-oxoacyl-[acyl-carrier-protein] reductase FabG	ATGACTGTTCCAAACTTCAAAGTTGCCATTGTCACCGGCGCCTCGCGCGGCATCGGTGCAGAGATTGCCAAGCAACTGGCCACTGACGGTTTCGCCGTCGCCGTCAACTTCGCCAGCAGTGCCACCGAAGCCTCCAGGCTGGTCGTGCAGTTGCGCCAGGCCGGTCACCAGGCCATAGCGGTGAAGGCCGACGTGTCGGTTGCCGCCGATGTCAGCCGGATGTTCGATGAAGTCGAAGCACAGCTGGGCAAGGTCGATGTGTTGATCAACAACGCAGGCATCCTCCAGGTCATGCCCTTGGCACAGCACAGCGATGAGCTGTTCGACCGCACGTTTGCAATCAATACCCGGGGCACGTTCAACACCTTGCGCGAAGCCGCGACCCGGCTGAACGACGGCGGCCGAATCGTGAATTTTTCCAGCAGCACCGTGGGCCTGAACCTGCCTGGCTATTCGGTGTACATAGCCAGCAAGGCCGCGGTGGAGTCGCTGACCCAGGTGTTTGCCAAGGAACTGCGCGGCCGCCAGATCACGGTCAATGCCGTGGCCCCGGGGCCGGTCGCCACCGAGCTGTTCATGCACGGAAAAAGCGAAGAGCAGGTGCAGCACTACGCGAAGATGCCGCCCTTGGAGCGCCTCGGCCAGCCGGAAGACATTGCCAGCATCGTGTCTTTCCTGGCCAGCCCGGCTGCCGGCTGGGTGAACGGGCAGATCCTGCGGGCCAATGGTGGGCTGGTCTGA	MTVPNFKVAIVTGASRGIGAEIAKQLATDGFAVAVNFASSATEASRLVVQLRQAGHQAIAVKADVSVAADVSRMFDEVEAQLGKVDVLINNAGILQVMPLAQHSDELFDRTFAINTRGTFNTLREAATRLNDGGRIVNFSSSTVGLNLPGYSVYIASKAAVESLTQVFAKELRGRQITVNAVAPGPVATELFMHGKSEEQVQHYAKMPPLERLGQPEDIASIVSFLASPAAGWVNGQILRANGGLV	PGPT0003180_16718	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
D1-36_00260	891	pgrR_1		HTH-type transcriptional regulator PgrR	ATGGATCAGGTCAAGGCCATGCGGGTATTTGTCCGCATCTACGAGCGCAGCAGTTTCACCCTGGCCGCTGAAGATTTGAGCATGCCCCGGGCGACGCTGACCCACACGCTCAATCAGTTCGAGGCCTGGTTGGGGGTGCGTTTGCTGGAGCGCAGCACCCGCAAGGTACGCCCGACCCTTGATGGCGAAGCCTATTACCCGCGATGCGTGCAGTTGCTGGCCGAGCTGGAGGAAGCCGAACTGGCGTTTCGCGGCGTGGCGCCCAAAGGCAAGCTGAGGGTGGACCTGCACGGAACCCAGGCGCGATATTTCGTGATCCCGGCGCTGCCGCAATTCATGGCTCGCTACCCCGAAATAGAATTGTTCATCAGCGAGGCGGATCGTTTCGTCGACCTGATTGCCGAAGGCGTTGATTGCGTCGTGCGTTCCGGCACGTTGGCGGATTCGTCATTGATTGGCCGGCGCGTCGCCAATCTTCGGCAGATCACTTGCGCCAGTCCTGCTTACCTTCGCCGGCACGGTGAGCCGAAAAGCCTCGCGGATCTGAAACATCACAAAGCGGTGAATTACGTCTCGCGCAGTACCGGCAAGCTGTATCCGTTCGAGTTCATGGTCGAGGGCGAACTCAAGGAAGTGCCGATCGGGGGCACGTTGTCAGTGTCCGGCGCGGAAATCTACGCCGCGTCGGCCATCGCCGGGATGGGCCTGATCCAATGCCCGCATTACCGGATGGAGGAGCCGATCCGGCAGGGTCTGATCCAGGAAGTCCTCGCCGCGACTCCACCACCTTCCATGCCAGTGTCGGTGCTCTATCCGCACAACCGACACATGTCGTCACGGGTGCGAGTGTTCGTGGATTGGGTGGCCCAGGTGTTTGCGCAGGCGCGTTAA	MDQVKAMRVFVRIYERSSFTLAAEDLSMPRATLTHTLNQFEAWLGVRLLERSTRKVRPTLDGEAYYPRCVQLLAELEEAELAFRGVAPKGKLRVDLHGTQARYFVIPALPQFMARYPEIELFISEADRFVDLIAEGVDCVVRSGTLADSSLIGRRVANLRQITCASPAYLRRHGEPKSLADLKHHKAVNYVSRSTGKLYPFEFMVEGELKEVPIGGTLSVSGAEIYAASAIAGMGLIQCPHYRMEEPIRQGLIQEVLAATPPPSMPVSVLYPHNRHMSSRVRVFVDWVAQVFAQAR	PGPT0028940_567	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028940-bpeT-K18900	NA	NA
D1-36_00261	1038	gpr	COG0667	L-glyceraldehyde 3-phosphate reductase	ATGACCTACACCGCTGCGCAAAACCGCTACGAGTCCATTCCCTATCGCCGCGTCGGGCGCAGCGGGCTGGTGCTTCCGGCCCTGTCACTCGGCTTGTGGCACAACTTCGGCGACAGTACGCCGATCGATACTCAGCGAGCCTTGCTGCGCACGGCATTCGACCTGGGCATCAACCATTTCGACCTCGCCAACAACTACGGCCCGCCCTATGGCAGCGCCGAAATCAATTTCGGTCGGCTGTTGCGTGAAGATTTCAAGCAGTACCGCGATGAACTGATCATCTCCAGCAAGGCCGGCTGGGACATGTGGCCCGGCCCTTATGGACAGGGCGGCGGTTCGCGCAAATACGTGCTCGCCAGCCTCGACCAGAGCCTGCAACGCTTGGGCGTGGATTACGTGGACATTTTCTACTCCCACCGTTTCGATCCCGACACGCCACTGGAGGAAACAGCCAGCGCCCTCGCCACGGCCGTGCAACAGGGCAAGGCTTTGTACATAGGCATCTCTTCGTATTCGGGCGTGAAGACCCGGGAAATGGCCGCGCTGCTCAAGGAATGGAAAGTCCCGCTGCTGATCCACCAGCCGGCCTACAACCTGCTCAATCGCTGGGTGGAAAAAGACCTGCTGGACGCTACCGAGGAGCTCGGCACTGGCGTCATCGCTTTCACGCCGCTGGCCCAGGGACTGCTGACCGACAAGTATCTCAAGGGCATTCCGGCCGATGCGCGGGTGAATCGCCCGGGCGGTGGCTCGTTGCAAGCGTCGCATCTGTCGGATGAAAATATCGCCCACGTTCGCGCCCTCAACGAAATCGCCCAGCGTCGCGGCCAAAGCCTGGCTCAAATGGCCCTGGCCTGGACGCTGCGCGATCCACGTGTCACCTCGGCCCTGATCGGCGCGAGCCGGCCGGAGCAGATCGTCGAGAACGTCGGGGCGTTGCAGAACCTCAACTTCAGCGCCGAAGAACTGGCCGAGATCGACCGGTTTGCCCAGGAGGGTGGGATTAACCTGTGGGAGAAGCCTTCGACAGCGGAGTAA	MTYTAAQNRYESIPYRRVGRSGLVLPALSLGLWHNFGDSTPIDTQRALLRTAFDLGINHFDLANNYGPPYGSAEINFGRLLREDFKQYRDELIISSKAGWDMWPGPYGQGGGSRKYVLASLDQSLQRLGVDYVDIFYSHRFDPDTPLEETASALATAVQQGKALYIGISSYSGVKTREMAALLKEWKVPLLIHQPAYNLLNRWVEKDLLDATEELGTGVIAFTPLAQGLLTDKYLKGIPADARVNRPGGGSLQASHLSDENIAHVRALNEIAQRRGQSLAQMALAWTLRDPRVTSALIGASRPEQIVENVGALQNLNFSAEELAEIDRFAQEGGINLWEKPSTAE	PGPT0008285_529	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-HYDROXYACETONE_VOLATILE_BIOSYNTHESIS,PGPT0008285-yghZ-K19265	NA	NA
D1-36_00262	843	tauD_2	COG2175	Alpha-ketoglutarate-dependent taurine dioxygenase	ATGAGCCGCCCGACCACTACCCCTTTAAGCATTGCCATCGGCGCGCAGATCAACGGGATCGACATCAGCCAACCGCTGAGTCCGCAAGACCGGGATTTCGTCGAGCAGGCATTGCTGGAACATCAGGTACTGTTTTTCCGCGACCAGCCGATCGAACCACCGCAACAGGCACGTTTCGCGGCGTATTTCGGTGACCTGCACATCCATCCGATCTACCCCAACATACCGGAGCAGCCTGAAGTGCTGGTGCTCGACACCGCCGTCACCGACGTTCGCGATAACGCGGTGTGGCACACCGACGTGACCTTCTTGCCGACACCCGCCCTGGGCGCGGTGCTCAGCGCCAAGCTGCTGCCGGCGTTTGGCGGCGACACGTTATGGGCCAGCGGCATTGCAGCCTACGAAGCGTTGTCGGCGCCGTTGAAAAGTTTGCTGGAAGGTCTGACAGCGACCCACGATTTCACCCGTTCATTTCCGCTGGAGCGCTTCGGCAACTCGCCTGAAGACCTGGTGCGCTGGGAGGAAGCACGGCGCAAGAACCCGCCGTTGTCCCATCCAGTAATACGTACTCATCCAGTGAGCGGCCGCCGCTCGCTGTTCGTCAACGAAGGCTTTACCACCCGAATCAACGAGCTATCGGAAACCGAAAGCGAGGCGATCCTGAAACTGCTGTTCGCCCACGCCACCCGACCGGAGTTCACCGTTCGTTGGCGCTGGCAGGTCAACGACGTGGCGTTCTGGGATAACCGCGTGACCCAGCATTTCGCCGTGGACGACTACCGTCCCGCCCGGCGCGTGATGCACCGGGCGACGGTGTTGGGGGATGTGCCGTTTTTCAGGTGA	MSRPTTTPLSIAIGAQINGIDISQPLSPQDRDFVEQALLEHQVLFFRDQPIEPPQQARFAAYFGDLHIHPIYPNIPEQPEVLVLDTAVTDVRDNAVWHTDVTFLPTPALGAVLSAKLLPAFGGDTLWASGIAAYEALSAPLKSLLEGLTATHDFTRSFPLERFGNSPEDLVRWEEARRKNPPLSHPVIRTHPVSGRRSLFVNEGFTTRINELSETESEAILKLLFAHATRPEFTVRWRWQVNDVAFWDNRVTQHFAVDDYRPARRVMHRATVLGDVPFFR	PGPT0002940_1272	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_TAURINE_UTILIZATION,PGPT0002940-tauD-K03119	NA	NA
D1-36_00263	840	ssuC_1	COG0600	Putative aliphatic sulfonates transport permease protein SsuC	ATGAGCAGCTATGAAATTCCAGCCGTGGCCGGCGATGCCGTGAATTCGCACGCGGCCGCACCCGCTCGACGCAGGCTGAGCACACGCTGGATCAGCGGCCTGACATTGGTGGTGTTGCTGTTTCTCTGGTGGGCGATCACCGCCACCGGGCTGATCGAACCGCTGTTCCTGCCGCCGCCCTCCGCCGTGCTGCAGAAGGGTTGGCTGCTGGCAACCAGCGGCTACATGGACTCGACACTCTGGCAACACCTGGGCGCAAGCCTCGGCCGGATTGGCCTGGGCCTGTTGTTCGCGGTGCTGACAGCGGTGCCGGTGGGCATCGCCATCGGCGCCAATCGTATTGCCCGTGGCGTGCTCGATCCGCTGATCGAATTCTATCGGCCGATCCCTCCCCTGGCTTACTTGCCGCTGATCGTGATCTGGTGCGGCATCGGCGAGCTGTCGAAAGTCCTGCTGATCTACCTGGCGATCTTCGCCCCGACCGCCATCGCTACGGCCACCGGCGTGCGCACCGTCGACCCGGCCAGATTGCGCGCCGCGCAGTCCCTGGGCGCCTCGCGGACGCAATTGATTCGTCATGTGATCGTACCCAGCGCCTTGCCCGACATTCTTACCGGCATTCGCATCGGCCTGGGCGTGGGTTGGTCGACGCTGGTCGCCGCTGAACTGATCGCAGCCACCAGTGGCCTGGGATTCATGGTGCAGTCGGCGGCGCAATTCCTGGTCACCGATGTCGTGGTTCTGGGAATCCTGGTGATCGCAGTGATCGCCTTCGCCATGGAGATGGGCCTGCGCGCCCTGCAACGCAAACTGGTGCCATGGCACGGCCAGGCTCACTGA	MSSYEIPAVAGDAVNSHAAAPARRRLSTRWISGLTLVVLLFLWWAITATGLIEPLFLPPPSAVLQKGWLLATSGYMDSTLWQHLGASLGRIGLGLLFAVLTAVPVGIAIGANRIARGVLDPLIEFYRPIPPLAYLPLIVIWCGIGELSKVLLIYLAIFAPTAIATATGVRTVDPARLRAAQSLGASRTQLIRHVIVPSALPDILTGIRIGLGVGWSTLVAAELIAATSGLGFMVQSAAQFLVTDVVVLGILVIAVIAFAMEMGLRALQRKLVPWHGQAH	PGPT0002950_466	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_TAURINE_TRANSPORT,PGPT0002950-tauB-K15552	NA	NA
D1-36_00264	795	tauB	COG4525	Taurine import ATP-binding protein TauB	ATGGCCTTGCTACAGCTGGAGCGCATCAGCGCACAGTACCCCGGCGCCACGAAACCGGTACTGGCGGATATTTCGTTGACCCTGGGTCCACAGCAGTTGCTGGTCGCCCTCGGGCCATCCGGCAGTGGCAAGACGTCGTTGCTGAACCTGATTGCCGGGTTCGTCGAGCCCAGCGCCGGGCAAATCACCTTGGACGGCGTGCCAGTGTCAGGCCCGGGCGCCGAACGTGGCGTGGTGTTCCAGGACGATGCGTTGCTGCCTTGGCAGGACGTGCTGGCAAACGTCGGGTTTGGCCTGGAACTGGCCGGGGTCGCGAGAGAAAAACGCGAGGCTCGCGCCCGGGAAATGCTTGCCTTGGTGGACCTGGCCGGGTTCGAAAAGCGTCGCGTCTGGCAGCTGTCTGGCGGTCAGAAGCAACGCGTCGGCCTGGCCCGCGCGCTGGCGGCCGATCCACGGGTAATGTTGATGGACGAACCGTTCGGAGCCCTGGACGCCTTCACCCGCGAGCAGATGCAGGAACTGCTGCTGCAGGTCTGGCAGCGCACCGCCAAACCGGTGTTCCTGATTACCCACGACATCGAAGAAGCCGTGTTCCTGGCGACCGACCTGATTTTGCTGGCGCCCGATCCCGGGCGGATCGTCGAGCGGCTGAGCCTGGATTTCGGCCACCGCTACGGCGCTGGCGAATCGGCCCGGTCGATCAAGTCCGATCCACGCTTCATCGAGACCCGCGAGCACGTGCTCGCCAGAGTGTTTTCCCAACGCAGCGCCACTCGACAACAGGAGCGCGCATGA	MALLQLERISAQYPGATKPVLADISLTLGPQQLLVALGPSGSGKTSLLNLIAGFVEPSAGQITLDGVPVSGPGAERGVVFQDDALLPWQDVLANVGFGLELAGVAREKREARAREMLALVDLAGFEKRRVWQLSGGQKQRVGLARALAADPRVMLMDEPFGALDAFTREQMQELLLQVWQRTAKPVFLITHDIEEAVFLATDLILLAPDPGRIVERLSLDFGHRYGAGESARSIKSDPRFIETREHVLARVFSQRSATRQQERA	PGPT0002955_302	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_TAURINE_TRANSPORT,PGPT0002955-tauC-K10831	NA	NA
D1-36_00265	978	tauA	COG4521	Taurine-binding periplasmic protein	ATGTCTTTGAGTTTCCCCCTTCGCCTTCTCGCAGCCGCCTCCCTGGCCGCGGCGAGTTTTTTCGCACAGGCAACCGACCTGACCGTCGCCTACCAGACCACCGTGGACCCGGCGAAAGTCGCCCAAGCCGATGGCGCGTATGAAAAAGCCACCCAGGCCAAGATCGCCTGGCGCAAGTTCGACAACGGCGCCGATATCATCGCCGCCATCGCCTCGGGCGATGTGCAGATCGGCTACCTCGGCTCCAGCCCGCTGACCGCCGCGATCACTCGTAAGGTGCCAGTAGAAACATTCCTCATCGCGACGCAGATCGGCGCCGCCGAAGCCTTGGTGGCCCGTGACGGCTCCGGCATCAAGACCCCGCAAGACCTGATCGGCAAGAAGATCGCCGTGCCGTTTGTTTCCACCGGCCATTACAGCCTGCTCGCCGCGCTGAAACACTGGAATATCGACCCATCGAAAGTCACCGTGCTCAACCTCGCCCCACCGGCCATCATCGCGGCGTGGAAACGCGGCGACATCGACGCCACCTACGTCTGGGACCCAGCCCTGGGCGTGGCCAAGGAAAACGGCAAGGTGCTGATTACCTCTGCGGAACTGGCGCAATTTGGCGCACCGACCTTCGACGCATGGATCGTGCGCAAGGACTTCGCCCAGCAGCACCCTGAAATCGTCACGGCTTTCGCAAAAGTCACCCTGGATGCCTATGCCCAATACCGCAAGGACCCACTAGCCTGGCTGGCCGATGCGTCCAACATCGACAAGCTGGTGAAGCTATCCGGGGCCAAGGCCAGCGATATCCCGCTGTTGTTGCAAGGCAACGTATTCCCCCTGGCCGCAGACCAGGTGCTGAGCCTCGGCGCCCCAACCACCCAGGCGATAACCAACACCGCCGCGTTCCTCAAGGAGCAAGGCAAGGTCGAAGCCGTACTGCCGGATTACGCACCGTACGTCAGCGCCAAGTACATCACTCGCTGA	MSLSFPLRLLAAASLAAASFFAQATDLTVAYQTTVDPAKVAQADGAYEKATQAKIAWRKFDNGADIIAAIASGDVQIGYLGSSPLTAAITRKVPVETFLIATQIGAAEALVARDGSGIKTPQDLIGKKIAVPFVSTGHYSLLAALKHWNIDPSKVTVLNLAPPAIIAAWKRGDIDATYVWDPALGVAKENGKVLITSAELAQFGAPTFDAWIVRKDFAQQHPEIVTAFAKVTLDAYAQYRKDPLAWLADASNIDKLVKLSGAKASDIPLLLQGNVFPLAADQVLSLGAPTTQAITNTAAFLKEQGKVEAVLPDYAPYVSAKYITR	PGPT0002945_707	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_TAURINE_TRANSPORT,PGPT0002945-tauA-K15551	NA	NA
D1-36_00266	1584	gshA	COG2918	Glutamate--cysteine ligase	TTGAGCGACCTTTTAAACCGCCGCCTGGCCCTGCTCGGCGAGCGCGCCAACCTCTCCCTGCTCGAGCAGTGCCTGCACGGTATCGAACGTGAATGCCTGCGTGTCACCGACAACGGGCGCCTGGCGCAGACGCCGCACCCGCAAGCCCTGGGCTCGGCGCTGACCAACGAACAGATCACCACCGACTATTCCGAGTCGCTGCTGGAATTCATCACGCCGGCCCTGGCCAACCCGGCTGATACCCTGCGCAGCCTCGACAGGATCCACCGGTTTGTCTACAGCAAGCTCGGCGACGAATACCTGTGGAGCCCTTCGATGCCGTGTCCGCTGCCGGCTGAGGAGGAGATTCCGATCGCCTATTACGGCACCTCGAACATCGGTCGGCTCAAGTATGTCTATCGCAAGGGTCTGGCCCTGCGTTACGGCAAGACCATGCAATGCATCGCCGGGATCCACTACAACTTTTCCCTGCCGGAAAAGCTCTGGCCCCTGCTGCGCCAGGACGAAGCCAGCGATCTGAGCGACCGGGATTTCCAGTCGTCGGCCTATATCGCCCTGATCCGCAATTTCCGGCGCTACAGCTGGCTATTGATGTACCTGTTCGGCGCCTCGCCGGCCCTCGACGCCGGTTTCCTGCGTGGCCGACCGCATCAGCTGGAACAATTGGACCCGGACACCTTGTACCTGCCCTATGCCACCAGCCTGCGCATGAGCGACCTGGGTTACCAGAGCAACGCCCAGGCCGGCCTGACGCCTTGCTACAACGACCTGGCAAGCTACACCGATAGCCTGCGCAAGGCTGTGGCAACGCCGTATGCGCCGTATGTCGAGATTGGCACTCACCAGAACGGCGAATGGGTGCAGCTCAACACCAACATCCTGCAGATCGAAAACGAGTACTACTCCAACATCCGCCCCAAGCGCGTGACCTACACCGGGGAGCGACCGATCCAGGCGCTGATGGCCCGTGGCATCCAGTACGTCGAAGTACGTTGCCTGGACATCAACCCGTTCTTGCCGATGGGCATCGACCTGACCGAATCGCGGTTCCTCGATGCGTTCCTCTTGTATTGCGGCCTCGACGACAGCCCGCAATTGGAAAACAACGAGTGCAGCAACGCCACCAGCAACTTCCTGACGGTGGTCAAGGAAGGCCGCAAGCCAGGCCTGCAATTGCAGCGCCAGGGTGAATCGGTGGACATGCAAGCCTGGGCCCTGGAATTGCTGGACAAGATCGCCCCGCTGGCGGCACTGCTCGACCAAAGCCAAGGTGGTGATGACCACCGCCAGGCGCTGGACGCCCAACTGGCAAAAGTCCGCGACCCATTCCTCACGCCATCCGCCCGGGTACTGGCGGCCATGGCCGAACACAAGGAAAGCTTCGCCCAGTTCTCCCTGCGCCAGAGCAAGGCCCACGCCGAGTTTTTCCGCGCAGAGCCACTGTCGGCCGATGAAATAATTGCCTTCGAGGAAAATGCTCGGCGATCCCTGGTCCAGCAAACCGAGTTGGAGCAGAACGAAGTGGGTGATTTCGACGTGTTCGTGGGGTCGTACCAGGCGAGCATTCTAGCGATCAGTAACTGA	MSDLLNRRLALLGERANLSLLEQCLHGIERECLRVTDNGRLAQTPHPQALGSALTNEQITTDYSESLLEFITPALANPADTLRSLDRIHRFVYSKLGDEYLWSPSMPCPLPAEEEIPIAYYGTSNIGRLKYVYRKGLALRYGKTMQCIAGIHYNFSLPEKLWPLLRQDEASDLSDRDFQSSAYIALIRNFRRYSWLLMYLFGASPALDAGFLRGRPHQLEQLDPDTLYLPYATSLRMSDLGYQSNAQAGLTPCYNDLASYTDSLRKAVATPYAPYVEIGTHQNGEWVQLNTNILQIENEYYSNIRPKRVTYTGERPIQALMARGIQYVEVRCLDINPFLPMGIDLTESRFLDAFLLYCGLDDSPQLENNECSNATSNFLTVVKEGRKPGLQLQRQGESVDMQAWALELLDKIAPLAALLDQSQGGDDHRQALDAQLAKVRDPFLTPSARVLAAMAEHKESFAQFSLRQSKAHAEFFRAEPLSADEIIAFEENARRSLVQQTELEQNEVGDFDVFVGSYQASILAISN	PGPT0013035_707	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013035-gshA|ybdK-K01919	NA	NA
D1-36_00267	384	paaI	COG2050	Acyl-coenzyme A thioesterase PaaI	ATGGACGCGCCAGCCGGGTTGGTGGAGAGCGCGTTTTTCAAGCTGCTCGGCTGCCGTTTGCACAGCCTTGGGGACGGGGTGGCGCAAGTCACCCTGGACCTGGCCCCCGAATTGCGTAATCGCGGCGGCAAGCTGCACGGTGGCGCGCTGTTCAGCCTGGTGGACATCGCCATGGGCCTGGCCTGCTCCAGTGTCCATGGCTTCGACCAGCAGTCTGCGACCATCGAATGCAAGATCAACTACATCCGCGCCGTGTCCGACGGCGAGGTGTTGTGCACCGCCCGGGTCATCCACCCGGGCCGGCGCACATTGGTGGTCGAGGCCGATGTGATGCAAGGCGACAAGCTGGTCGCAAAAGCGCAAGGCACGTTCGCTGTCCTATAG	MDAPAGLVESAFFKLLGCRLHSLGDGVAQVTLDLAPELRNRGGKLHGGALFSLVDIAMGLACSSVHGFDQQSATIECKINYIRAVSDGEVLCTARVIHPGRRTLVVEADVMQGDKLVAKAQGTFAVL				NA	NA	NA	NA	NA
D1-36_00268	2325	yhgF	COG2183	Protein YhgF	ATGGACAGCATCAACAGCCGCATCGCCGAGGAACTCGGCGTCCGCCCACAACAGGTCGAAGCGGCCGTCGCGCTACTCGATGAAGGCTCCACGGTCCCTTTCATCGCCCGTTACCGGAAAGAAGTGACAGGCAGCCTCGATGACACTCAATTGCGTCATCTGGAAGAGCGCCTGCGCTACCTGCGTGAACTCGACGAACGGCGCATCAGCATCCTGGCGAGCATCCAGGAGCAGGGCAAGCTGACCCCGCAACTCGAACGCGACATCAAGCTGGCCGACACCAAGACCCGCCTCGAAGACTTGTACCTGCCCTACAAGCAAAAGCGCCGCACCAAGGGCCAGATCGCCCTGGAAGCCGGCCTCGGCGAGCTGGCCGACGGCCTGTTCAACGACCCGACCCTCGTCCCGGAAACCGAAGCCGCGCGTTTTATCGATGCGGAAAAAGGCGTGGCGGACGTAAAGGCCGCGCTGGAAGGCGCCAAGTACATCCTCATGGAGCGTTTCGCTGAAGACGCCAACCTGCTGGAAAAGCTGCGTAACTTCCTCAAGCAGGAGGCGACCCTCAGCGCCCGCGTCATCGCCGGCAAAGAGGAGGAAGGCGCCAAGTTCCGCGACTACTTCGAGCACGACGAACCGCTCAAGAGCATGCCGTCCCACCGTGCCCTGGCGATTTTCCGTGGCCGCAACGAAGGCATTCTCAGCTCCGCGCTGAAGGTCGGCGAAGAACTGCCCGGCACCATGCACCCGTGCGAAGGCATGATCGCCCAGCAATTCGGCATCCAGAACCAGAACCGCGCCGCCGACACATGGCTGGCCGAGGTGGTGCGCTGGACCTGGAAGGTCAAGCTCTATACCCACCTGGAAACCGACTTGCTCGGTGAGTTGCGCGATAACGCCGAGACCGAGGCGATCAACGTATTCGCCCACAACCTGCACGACCTGCTGTTGGCCGCGCCGGCCGGCCCCCGCGCCACTCTGGGCCTGGACCCGGGCCTGCGCACCGGTTGCAAGGTAGCGGTCGTCGATTCAACCGGTAAGTTGCTGGACCACGCCACGGTCTACCCGCACGTGCCGCACAACAAATGGGACCAGACCCTCGCGGTGCTCGCCGCCCTGTGCGCCAAGCATTCGGTGGACCTGATCGCTATCGGCAACGGCACCGCCAGCCGCGAGACCGACAAGCTGGCAGCGGAACTGATCAAGAAATACCCGGCCATGAAAATGACCAAGGTCATGGTCTCCGAAGCCGGTGCTTCTGTTTATTCGGCGTCGGAACTGGCTTCGAAGGAATTCCCGGACCTGGACGTGTCGATCCGTGGCGCGGTGTCGATCGCCCGTCGCCTGCAGGACCCACTGGCGGAACTGGTGAAGATCGATCCGAAATCCATCGGTGTCGGTCAATACCAGCACGACGTGTCCCAACTGAAACTGGCCCGTGGCCTGGACGCCGTGGTGGAGGATTGCGTGAACGCCGTGGGTGTGGACGTGAACACCGCTTCGGTGGCACTGCTGGCGCGGATTTCCGGCCTGAACGCGACACTCGCGCAGAACATTGTCACCCACCGTGACGAACATGGCGCGTTCAAGACCCGCGCCGCGTTGAAGAAAGTCCCGCGCCTGGGTGAAAAAACCTTCGAACAAGCCGCCGGCTTCCTGCGCGTCATGAACGGCGACAACCCGCTCGACTCCTCGGCGGTCCACCCGGAAGCGTATCCGCTGGTGCAACGCATCGCCGCCCAGACCGACCGCGACATCCGCTCGCTGATCGGCGACGCCGCGTTCCTCAAGCGCCTGGACCCGAAGAAATTCACCGACGAAACCTTCGGCCTGCCCACCGTGACCGACATTCTGCAAGAGCTGGAGAAGCCGGGCCGCGACCCGCGTCCGGAGTTCAAGACCGCCGAATTCCAGGAAGGCGTCGAAGACCTCAAGGACTTGCAACCGGGCATGATCCTCGAAGGCGTGGTCACCAACGTGACCAACTTCGGCGCGTTCGTTGATATCGGCGTGCACCAGGACGGCCTGGTACACATCTCGGCACTGTCGGAAAAATTCATCAAGGACCCGCGCGAAGCCGTGAAGGCCGGCGACGTGGTGAAAGTGAAGGTCATGGAAGTCGATATCCCGCGCAAACGCGTTGGCCTGTCGATGCGCATGAGTGACACGCCGGGTGAGAAGGTCGACGGTGCCCGCGGTGCTCGCCCAGGCGCCGCCCCACGCCAGTCGCAGAACACCGCGCCCCGCAAGGAAACCGCCACGGCGGCCCCGGCGAACAACGCCATGGCCTCGCTGTTCGCCAACGCCAAGCAATTGAAGAAACGCTGA	MDSINSRIAEELGVRPQQVEAAVALLDEGSTVPFIARYRKEVTGSLDDTQLRHLEERLRYLRELDERRISILASIQEQGKLTPQLERDIKLADTKTRLEDLYLPYKQKRRTKGQIALEAGLGELADGLFNDPTLVPETEAARFIDAEKGVADVKAALEGAKYILMERFAEDANLLEKLRNFLKQEATLSARVIAGKEEEGAKFRDYFEHDEPLKSMPSHRALAIFRGRNEGILSSALKVGEELPGTMHPCEGMIAQQFGIQNQNRAADTWLAEVVRWTWKVKLYTHLETDLLGELRDNAETEAINVFAHNLHDLLLAAPAGPRATLGLDPGLRTGCKVAVVDSTGKLLDHATVYPHVPHNKWDQTLAVLAALCAKHSVDLIAIGNGTASRETDKLAAELIKKYPAMKMTKVMVSEAGASVYSASELASKEFPDLDVSIRGAVSIARRLQDPLAELVKIDPKSIGVGQYQHDVSQLKLARGLDAVVEDCVNAVGVDVNTASVALLARISGLNATLAQNIVTHRDEHGAFKTRAALKKVPRLGEKTFEQAAGFLRVMNGDNPLDSSAVHPEAYPLVQRIAAQTDRDIRSLIGDAAFLKRLDPKKFTDETFGLPTVTDILQELEKPGRDPRPEFKTAEFQEGVEDLKDLQPGMILEGVVTNVTNFGAFVDIGVHQDGLVHISALSEKFIKDPREAVKAGDVVKVKVMEVDIPRKRVGLSMRMSDTPGEKVDGARGARPGAAPRQSQNTAPRKETATAAPANNAMASLFANAKQLKKR				NA	NA	NA	NA	NA
D1-36_00269	741	ompR_1		Transcriptional regulatory protein OmpR	ATGAGCAGCACCGCACAAACTGCTGAAGGCGAAAAAATTCTGATTGTTGACGACGATCCAGGGCTGAGCAGCCTGCTGGAGCGCTTTTTCGTCAGCAAGGGTTACCGAGCCCGCACTGTACCGAACACGGAGCAAATGGACCGTCTGTTGGCCCGTGAGGTTTTCAACCTCGTCGTCCTCGACCTGATGCTGCCCGGTGAAGACGGCTTGACCGCCTGTCGTCGCCTGCGCGGCGCGAACAACCAGATCCCGATCATCATGCTGACCGCCAAGGGCGACGAGCTGAGCCGTATCAAGGGCCTTGAACTGGGCGCCGACGATTACCTGGCCAAGCCGTTCAATCCGGACGAGCTGATGGCGCGGGTCAAGGCGGTCTTGCGTCGCCAGTCGGCGCCGGTGCCGGGCGCGCCGGGCAGCGAAGACGAAAGCGTCACCTTCGGCGACTATGAACTGTCGCTGGCCACCCGCGAGCTCAAGCGCGGCGACGAGGTACACATGCTCACCACCGGTGAGTTCGCGGTCCTCAAGGCTTTGGTGATGAACGCTCGCCAGCCGCTGACCCGAGACAAGCTGATGAATTTGGCCCGTGGCCGGGAATGGGATGCGCTGGAGCGTTCCATCGACGTGCAGATTTCCCGCTTGCGCCGGATGATCGAGCCCGATCCATCCAAGCCGCGTTATATCCAGACCGTCTGGGGCGTAGGCTACGTATTCGTGCCGGATGGCGCCGCCAGCAAGTGA	MSSTAQTAEGEKILIVDDDPGLSSLLERFFVSKGYRARTVPNTEQMDRLLAREVFNLVVLDLMLPGEDGLTACRRLRGANNQIPIIMLTAKGDELSRIKGLELGADDYLAKPFNPDELMARVKAVLRRQSAPVPGAPGSEDESVTFGDYELSLATRELKRGDEVHMLTTGEFAVLKALVMNARQPLTRDKLMNLARGREWDALERSIDVQISRLRRMIEPDPSKPRYIQTVWGVGYVFVPDGAASK	PGPT0012985_278	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
D1-36_00270	1314	envZ		Osmolarity sensor protein EnvZ	ATGAAAACCCCCGTTTGGTTCCCCCAGAGTTTCTTTTCCCGCACCCTCTGGCTGGTGCTCATCGTCGTGCTTTTTTCCAAGGCGCTGACGTTGGTCTACCTGCTGATGAACGAAGACGTGCTGGTGGACCGCCAATACAGTCACGGCGTTGCCTTGACATTGCGGGCCTACTGGGCGGCCGACGAAACCAATCGAGCAAAGATTGCCGAGGCGGCAACATTGATCCGGGTGGTCGGAGCCGGCGTGCCGGAAGGCGAGCAGCACTGGCCATACAGCGAGATCTATCAGCGGCAGATGCAGGCCGAGTTGGGCGCCGACACCGAGGTGCGATTGCGCATGCACTCGCCGCCGGCATTGTGGGTGCGCGCTCCAAGCCTTGGGGATGGTTGGCTGAAGGTTCCGCTGTACCCCCATCCATTGCGGGGCCAGAAGATCTGGAACGTGCTGGGCTGGTTCCTGGCGATCGGCCTGCTTTCGACGGCTTCGGCGTGGATCTTCGTCAGCCAGCTCAACCAACCGCTCAAACGCCTCGTGTACGCCGCCCGGCAATTGGGCCAGGGGCGTAGTGTACGGTTGCCGATCAGCGATACGCCCAGCGAGATGACCGAGGTGTACCGCGCCTTCAACCAGATGGCCGAGGATGTCGAGCAGGCCGGACGCGAGCGTGAGCTGATGCTTGCAGGGGTCTCCCATGACTTGCGCACGCCCCTGACCCGGTTGCGGTTATCGCTGGAGTTGATGGGCGAGCACACCGACCTGACTGATGAAATGGTCCGCGATATCGAAGACATGGACGCGATTCTTGACCAGTTCCTGGCATTCATTCGCGACGGTCGTGATGAGTCGGTGGAAGAAGTCGATCTCAGCGACCTGGTTCGGGAGGTGGCTGCACCCTATAACCAGAACGAAGAGAAGGTCCACCTGCGCCTGGAGCCGATCCAGCCGTTCCCGCTACGTCGCGTATCGATGAAGCGCCTGCTGAACAACCTGATCGGCAACGCCCTGAACCATGCAGGCACAGGTGTGGAAGTGGCCGCCTACGTTTCGGGCGATACCAGCGCGCCCTACGTCGTGCTGAGCGTCATGGACCGAGGCGCCGGCATCGATCCGTCGGAATTGGAGGCCATTTTCAATCCGTTCACACGAGGCGATCGCGCCCGGGGGGGAAAGGGCACGGGACTGGGCCTGGCGATCGTCAAGCGCATCGCCTCGATGCACGGCGGCAACGTCGAGCTGCGCAATCGCGTGGGCGGCGGACTGGAAGCGCGGGTGCGGCTGCCGTTGGGCTTGATGTTGCCTCGGGATGCGGTGTAG	MKTPVWFPQSFFSRTLWLVLIVVLFSKALTLVYLLMNEDVLVDRQYSHGVALTLRAYWAADETNRAKIAEAATLIRVVGAGVPEGEQHWPYSEIYQRQMQAELGADTEVRLRMHSPPALWVRAPSLGDGWLKVPLYPHPLRGQKIWNVLGWFLAIGLLSTASAWIFVSQLNQPLKRLVYAARQLGQGRSVRLPISDTPSEMTEVYRAFNQMAEDVEQAGRERELMLAGVSHDLRTPLTRLRLSLELMGEHTDLTDEMVRDIEDMDAILDQFLAFIRDGRDESVEEVDLSDLVREVAAPYNQNEEKVHLRLEPIQPFPLRRVSMKRLLNNLIGNALNHAGTGVEVAAYVSGDTSAPYVVLSVMDRGAGIDPSELEAIFNPFTRGDRARGGKGTGLGLAIVKRIASMHGGNVELRNRVGGGLEARVRLPLGLMLPRDAV	PGPT0012975_1346	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OSMOLARITY_SIGNALLING,PGPT0012975-envZ-K07638	NA	NA
D1-36_00271	906	rimK	COG0189	Ribosomal protein S6--L-glutamate ligase	ATGAAGATCGCTGTGCTGTCGCGAAACCCGCGTCTGTATTCCACCCGCCGCCTGGTCGAGGCCGGGACCGAGCGTGGCCATGAAATGGTGGTGATCGATACCCTGCGCGCCTACATGAACATTGCCAGCCACAAGCCGCAAATCCATTACCGCGGCAAGCCGCTGGAAGGCTTCGATGCGGTGATCCCGCGTATCGGCGCGTCGGTGACCTTCTACGGTTGCGCGGTATTGCGCCAGTTCGAAATGATGGGGGTGTATCCCCTCAATGAGTCCGTTGCGATTGCCCGCTCGCGAGACAAGCTGCGCTCGCTGCAATTGCTGTCTCGGCGTGGCATCGGCTTGCCCGTGACCGGCTTCGCCCACTCTCCAGATGACATTCCCGACCTGATCGCCATGGTCAATGGCGCGCCTCTGGTTATCAAGGTATTGGAGGGCACCCAGGGCATTGGCGTGGTGCTGTGCGAAACCGCAACGGCGGCGGAGTCGGTGATCGAAGCATTCATGGGCCTGAAGCAGAACATCATGGTCCAGGAATACATCAAGGAAGCCGGGGGCGCGGACATTCGTTGCTTCGTGGTCGGCGACAAAGTAATCGCGTCGATGAAGCGCCAGGCCAAGCCAGGGGAGTTTCGCTCCAACCTGCATCGCGGCGGCAGCGCAAGCCTGATCAAGATCACGCCGGAAGAGCGTATGACCGCCCTGCGTGCAGCCAAGGTCATGGGGCTGGCGGTGGCTGGCGTGGACATCCTGCGCTCCAATCACGGGCCGCTGGTGATGGAAGTCAACTCCTCGCCAGGCCTGGAAGGCATCGAGACCACCACCAGCAAGAACGTGGCAGGGATCATCATCGAGCACCTGGAGAAAAACGGCGGGCCGAACATGACCCGGACCAAGGGCAAGGGGTAA	MKIAVLSRNPRLYSTRRLVEAGTERGHEMVVIDTLRAYMNIASHKPQIHYRGKPLEGFDAVIPRIGASVTFYGCAVLRQFEMMGVYPLNESVAIARSRDKLRSLQLLSRRGIGLPVTGFAHSPDDIPDLIAMVNGAPLVIKVLEGTQGIGVVLCETATAAESVIEAFMGLKQNIMVQEYIKEAGGADIRCFVVGDKVIASMKRQAKPGEFRSNLHRGGSASLIKITPEERMTALRAAKVMGLAVAGVDILRSNHGPLVMEVNSSPGLEGIETTTSKNVAGIIIEHLEKNGGPNMTRTKGKG				NA	NA	NA	NA	NA
D1-36_00272	483			hypothetical protein	TTGAAGACTTTCGACCATCTGACCGTTGTCGGTCTGCGCGAGTGGGTGGCGCTCCCTGATCTGGGAGTCGCCGGGCTACGGGCAAAAATCGACACCGGCGCCAGCACCTCGAGCCTGCACGCCACCGACATCGAGCCATTCGAGCGTGACGGCGAAAAATGGGTGCGCTTCACCGCGCACCTCGGCACCGTCGTGCAACTGCGCCATCGCCGCTGCGAAGCACCCTTGGTGGCGCGCAAGACCATCAAGAGCTCCAACGGCCACGCCCAGGTCCGCTATGTGATCAGCACCACGCTGGCGTTGGGCGATCGGTTCTGGCGGGTCGAATTCACCCTCGCCTGCCGCAAATCCATGCGTTATCGCCTGTTGCTGGGTTCCAAGGCCTTGATCGACGGCCAGTTGGTGGTCAATCCAGGCATCAAATACGTTCAAGACAAGCCGGCATTCCCGGTATCCACTACCTCTGCCACAGGTGTTGCATGA	MKTFDHLTVVGLREWVALPDLGVAGLRAKIDTGASTSSLHATDIEPFERDGEKWVRFTAHLGTVVQLRHRRCEAPLVARKTIKSSNGHAQVRYVISTTLALGDRFWRVEFTLACRKSMRYRLLLGSKALIDGQLVVNPGIKYVQDKPAFPVSTTSATGVA				NA	NA	NA	NA	NA
D1-36_00273	405	hslR	COG1188	Heat shock protein 15	GTGGCACAAAAAAGCGAAGAGGATGACAAGGTCCGTCTCGATAAATGGTTGTGGGCGGCACGATTCTATAAAACCCGTGCCTTGGCCAAGGCTGCCATTGAAAGCGGCAAGGTCCATCACCGGGGCGAACGATGCAAGCCTGGCAAAGAGCCACGTATCGGTGATGAATACGTCATTCGAACAGGCTTCGACGAAAAAACGGTGGTCGTCGAAGCGTTGTCCATCGTGCGTCGCGGCGCGCCGCAGGCTCAAACGCTATACCGCGAGACCGAAGCCAGCGTCGCCAAGCGCGAAGCGGCAGCCGCCCAACGCAAGGCCGGTGCCCTGGGTGTGAGCACCGATGGCAAGCCCAGCAAGAAACAACGGCGAGACCTGTTCAAGTTCCATGGGAGCAACAGCGAGTAA	MAQKSEEDDKVRLDKWLWAARFYKTRALAKAAIESGKVHHRGERCKPGKEPRIGDEYVIRTGFDEKTVVVEALSIVRRGAPQAQTLYRETEASVAKREAAAAQRKAGALGVSTDGKPSKKQRRDLFKFHGSNSE	PGPT0014620_879	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014620-hslR|yrfH-K04762	NA	NA
D1-36_00274	903	hslO	COG1281	33 kDa chaperonin	ATGACTGATTTACCGGATACCGACTACACCCAACGTTTCATCTTCGATGACAGCGACGCCCGTGGCGAGCTGGTAGCGTTGGAGCGTAGCTACGCCGAAGTCCTCGCCAAGCACCCCTATCCGGAGCCGGTCGCGCAGTTGCTCGGCGAGTTGATGGCCGCCGCGGCGCTGCTGGTGGGTACCTTGAAATTCGATGGCTTGTTGATTCTCCAGGCCCGTTCCGAAGGCCCGGTGCCATTGTTGATGATCGAGTGTTCGAGCGAGCGTGAGATCCGAGGCCTGGCCCGTTATCACGCCGAGCAGATCGCCCCCGACGCGACACTCTCCGACCTGATGCCCAATGGTGTTTTGGCCCTGACGGTCGACCCGAGCCATGGCAAGCGCTACCAAGGCATTGTCGATCTCGACGGCGCAACGCTGGCCGAGTGCTTCACCAACTACTTCGTCATGTCCCAGCAGACCAACACACGCTTCTGGCTGTACGCCGACGGGCGGCGTGCCCGCGGCCTGCTGTTGCAGCAATTGCCGGCCGACCGCATTCGTGATTCGGAAGAACGTGATGCCAGCTGGCAACACGTCACCGCTCTCGCCAGCACCTTGAGCGCCGATGAGCTGCTGGGCCTGGACAACGAAACCATCCTGCATCGCCTCTACCACGAAGAACAGGTTCGCCTGTTCGAAGGCCAGCCGTTACGCTTCAAATGCAGTTGCTCCCGTGAACGTTCCGGCAATGCGTTGGTCAGTCTGGGTCTGGAAGATGCGCAGCAATTGGTGATCGAGCATGGCGGCGCCATCGAAATCGATTGCCAGTTTTGCAATGAGCGCTACCTGTTCGATGCCGCGGACATCGCCCAATTGTTCGCCGGTGCGGGTGTCGACACACCGTCAGATACTCGTCACTAA	MTDLPDTDYTQRFIFDDSDARGELVALERSYAEVLAKHPYPEPVAQLLGELMAAAALLVGTLKFDGLLILQARSEGPVPLLMIECSSEREIRGLARYHAEQIAPDATLSDLMPNGVLALTVDPSHGKRYQGIVDLDGATLAECFTNYFVMSQQTNTRFWLYADGRRARGLLLQQLPADRIRDSEERDASWQHVTALASTLSADELLGLDNETILHRLYHEEQVRLFEGQPLRFKCSCSRERSGNALVSLGLEDAQQLVIEHGGAIEIDCQFCNERYLFDAADIAQLFAGAGVDTPSDTRH	PGPT0014645_1090	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014645-hsp33|hslO-K04083	NA	NA
D1-36_00275	1545	pckA	COG1866	Phosphoenolpyruvate carboxykinase (ATP)	ATGACGCAAGCCAATAACGCCGTGTACACCGATCTGAGTGTCGATGATCTGGTTAAAGAAGCCCTGAATCGCGGTGAAGGCGAGCTTGCCGATACTGGCGCGCTGGTTGTACGTACCGGTCATCGTACCGGTCGTTCGCCAGTGGACCGTTTCATTGTGGAAGAGCCAACCACCCAGCACGCCATTGCCTGGGGCCCGATCAACCGCAAGTTCCCGGCTGACAAGTTCGATGCCTTGTGGAACCGCGTCGCAGCCTACCTGGGCGAGCGCGAGCGTTTTGTCTCCCACGTGCATGTAGGTTCCGATCCTGCGCACTACCTGCCGGTCAAGATGACCACCGAGACTGCCTGGCACAACCTGTTCGGCCGCTGCCTGTTCATCAACCCCGAGCAATACAACGCCGGCGGCAAGGACGAATGGCAGATCCTCAACGCGCCGAACTTCGTCTGCGAGCCTGAGCGCGACGGCACCAACTCCGACGGTACCGTGATCATCAACTTCGTGGCCAAGAAAGTGCTGATTGCAGGCATGCGCTATGCCGGCGAGATGAAGAAAGCCCTGTTCTCCGTGCAGAACTTCCTGCTGCCGGCCGCCGACGTGCTGCCGATGCACTGCGCCGCGAACATGGGCGAAGAAGGCGACGTGACCCTGTTCTTCGGCCTGTCGGGCACTGGCAAGACCACCCTGTCCGCCGATGAAAGCCGCTACCTGATCGGTGACGACGAGCACGGTTGGGGCGTGGGCGTGGTCTTCAACATCGAAGGCGGTTGCTATGCCAAGTGCATCGACCTGTCTGAGAAGAACGAGCCGGTCATCTGGAAAGCCATCCAGCACGGTGCCGTACTGGAAAACGTGGTCCTGGATCCGGTCACCAAGAAAGCCGACTATGCCGACGACAGCCTGACCCAGAACAGCCGCGCCGCCTACCCGCGTGAGCTGATCGAAAAACGCGCACCAAAAAACCTCGGTGGCGAGCCAAACGCCGTGATCTTCCTGACCTGCGACCTGACCGGCGTACTGCCACCTGTGTCGATCCTCAGCGAAGAACAAGCCGCCTACCACTTCCTGTCCGGCTACACCGCACTGGTGGGCTCGACCGAAATGGGTTCGGGCAGCGGCATCAAGTCGACTTTCTCCACCTGCTTCGGCGCGCCGTTCTTCCCGCGTCCAGCCGGTGAATACGCTGAGCTGCTGATCAAGCGCATCCGTGGTTTCGGCTCCAAGGTCTACCTGGTCAACACCGGCTGGACCGGCGGCGGCTACGGCGTCGGCAAGCGCTTCAACATCCCGACCACCCGTGCGGTGATCGCAGCGATCCAGAGCGGCGCGCTGATCGGTGCTGAAACCGAACACCTGGACATCATCAACCTGGACGTGCCGCTGGCCGTCCCAGGCGTCGAGACTGGCCTGTTGAACCCACGCAATACCTGGGCCGACAAGGCCGCCTACGACGAAGCGGCCAAGGCATTGGCCGGTCTGTTCATCGAAAACTTCAAGAAGTTCGAAGTGAGCGATGCGATCAAGGCGGCAGGTCCACAGCTGTAA	MTQANNAVYTDLSVDDLVKEALNRGEGELADTGALVVRTGHRTGRSPVDRFIVEEPTTQHAIAWGPINRKFPADKFDALWNRVAAYLGERERFVSHVHVGSDPAHYLPVKMTTETAWHNLFGRCLFINPEQYNAGGKDEWQILNAPNFVCEPERDGTNSDGTVIINFVAKKVLIAGMRYAGEMKKALFSVQNFLLPAADVLPMHCAANMGEEGDVTLFFGLSGTGKTTLSADESRYLIGDDEHGWGVGVVFNIEGGCYAKCIDLSEKNEPVIWKAIQHGAVLENVVLDPVTKKADYADDSLTQNSRAAYPRELIEKRAPKNLGGEPNAVIFLTCDLTGVLPPVSILSEEQAAYHFLSGYTALVGSTEMGSGSGIKSTFSTCFGAPFFPRPAGEYAELLIKRIRGFGSKVYLVNTGWTGGGYGVGKRFNIPTTRAVIAAIQSGALIGAETEHLDIINLDVPLAVPGVETGLLNPRNTWADKAAYDEAAKALAGLFIENFKKFEVSDAIKAAGPQL	PGPT0001405_2646	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001405-pckA-K01610	NA	NA
D1-36_00276	1236			hypothetical protein	ATGGCGAAAGGTAAAAGCGATATCCCTCAGGTCTGGGAGTACCGCGGTGGCGAAAGGCGCTACAGAGTCCTGCGGGACATGACCCCGGGCGAGCTGGCAAAAAGAGACGCCGATTTTAAAGCCCATGAGGACATGCTCGTTCGGCAAGAGGAATACATGAGCCAGCGGCTGGGCCAGACAAGCCAGAGGGATGCACCGAGCATCAAGGGCTGTGTGTTCGCCAAATCCTGCGAACTGCCCGATGCAATCATCGACTATCACAATCCAACCGGTTACATCCCGACGGAACTGCTGAGCGCCTATGGTGCGTTCAAATTGTTGGGCGGTCGGGAGGTTGACGCGTCAGGCTGCGTACCGCTGAAGACCATCAGCGGAGCGTTACCGGCGAGTTTTGGCACGCTCGCACTGGGTGGGACCGCTTTGGCCTCCCTTGGCGCTGGCGCGACGGTCACGGCACCCGTGGCGGCCGGCGCGCTGGTGGGGTTGGTGGGGCTGCTGATGCCTTCGAACCTGGGCGATGGTTCGCTGTACACCGAAGAGCAACTAAGGTCCCTTGAAAAAGCGCGCAGCCGGGTTCGCCTACATGTCGAAACCCAGGCCGACGGGACGCTGAAAGGGTATGGCTACAACACCCAGTCAAGACGCGACTGGGAGATGATCCCGGTGGTGACATTCCAGGCGCATGGCGAGCAGCAAGTGGCAGATTTTGGCGATGGGGTCGAGTTGATCTGGACGCCGGCGGTGGACCCTTGCGCGACGTTGGGCATCCCAGCTTTGGAGGCTGCGCCACAGGCGCCGCGTATCTGGATCTTCCCGCCGACACCCATGGCGGACAGCATTATCGTCAATCCGATTTATCCACCGGAATACAAGGATTTCATTCTTGTGTTTCCGGTGGGCTCTGGGGTTTCGCCGTTATATATAGTTTTGAGTGTTCGGCGCAAAGGGTTGCCGGAGGCAGGGCATGATTACCATCGGGCACCAAAGACAGAGGAGATTACTGGATTTGCTGACTTGAAGATCGCCAAACAAAAGACCCCTCGTCAAGGTGGGGGCGGTTTTCGCGAACGGTGGACCGATTCCAAAAAAAGAACTATTTATGAGTGGGATTTCATGCACGGTGAGTTGGAGGCATACCGTGCTAGTGATGGAAGCCATCTAGGTTCGTTTGACTATTTAACGGGCGAGCAACTAGATCGTCCGAAACCGAATCGTAATATTAAAAAATATTTGTGA	MAKGKSDIPQVWEYRGGERRYRVLRDMTPGELAKRDADFKAHEDMLVRQEEYMSQRLGQTSQRDAPSIKGCVFAKSCELPDAIIDYHNPTGYIPTELLSAYGAFKLLGGREVDASGCVPLKTISGALPASFGTLALGGTALASLGAGATVTAPVAAGALVGLVGLLMPSNLGDGSLYTEEQLRSLEKARSRVRLHVETQADGTLKGYGYNTQSRRDWEMIPVVTFQAHGEQQVADFGDGVELIWTPAVDPCATLGIPALEAAPQAPRIWIFPPTPMADSIIVNPIYPPEYKDFILVFPVGSGVSPLYIVLSVRRKGLPEAGHDYHRAPKTEEITGFADLKIAKQKTPRQGGGGFRERWTDSKKRTIYEWDFMHGELEAYRASDGSHLGSFDYLTGEQLDRPKPNRNIKKYL				NA	NA	NA	NA	NA
D1-36_00277	255	cim		Cloacin immunity protein	ATGGGTCTAAAGCTAAAACTAAGTTGGTATGACAAAGAAACCGAGCTAGGCGAAGGGCGCGAATATTCACAGGATTTTGGCGACGATTCACGGGTGCTTGTTGAGCTGGGGGTGCCTGTAGAAAACAACATTAACGTGGGTGGATTTAATGTTGATGACAAATGGGCTGAGATATTACAGCCCCATTTTGAACATGTTCTAAATCTAACGCTGTATGACTATCAAGTCTCTTTTGATTATCGAGATGAGTGGTGA	MGLKLKLSWYDKETELGEGREYSQDFGDDSRVLVELGVPVENNINVGGFNVDDKWAEILQPHFEHVLNLTLYDYQVSFDYRDEW				NA	NA	NA	NA	NA
D1-36_00278	159			hypothetical protein	ATGTTGAAGAAACTGACGTTACCTACCGTCCTGATCACAAGCCTCTTGCTAGGCGCGTGCATGAGGCTGCCCGAAGTGCCACCAATGCTTTCTGGAGTGGAAATGCCAATTGTAGTTCCCGCGGCCTCGTTACCTTACGCTCACCACTCATCTCGATAA	MLKKLTLPTVLITSLLLGACMRLPEVPPMLSGVEMPIVVPAASLPYAHHSSR				NA	NA	NA	NA	NA
D1-36_00279	1227	fadB_1		Fatty acid oxidation complex subunit alpha	ATGAGCCAGACATCCTTCGATATCCAGCGCGCCGCCGTGGTCGGCGCAGGCACCATGGGGCGGGGCATCGTGATGTGCCTGGCCAACGCTGGCGTTACGGTGCAGTGGGTCGATAACAATCCACAAATGCTGGAGCAGGCGCTGGCCACGGTGGCCGAGACCTACGCCCATAACGTACGCCAGGGCCGACTCGAACAAAGCGAAGCCGACGCCAGGATCGCCCGTATTGCGCGGGCGCAGGACTACGCGGCGATCCGCAACGTGGACCTGGTCATTGAAGCGGTCTACGAGAACCTCGAACTCAAGCAGAAGATATTTCGCGAGCTGGACGGCATGCTCAAGCCCGAGGCGATCCTGGCAAGTAACACCTCGGCGCTGGATATCGATGCCATTGCCGCCGCCACGCGTCGGCCAACGCAAGTGCTGGGCCTGCACTTCTTCAGCCCGGCGCACATCATGAAGTTGTTGGAGATCGTGCGCGGCGCACAAACGGCCAAGGCTGTGCTGGACGCTGCCCTGGCGCTGGGCAAGCGCATGGGCAAGGTGAGCGTGGTGTCGGGCAATTGTCACGGCTTCATCGGCAACCGAATGCTTCATCCCTATGTGCTGGAGGCGCGAAAGATGTTGTTGGAGGGTGCGTTCCCCCATCAGGTGGATGCGGCGCTGCAGGGCTTTGGTTTCGCCATGGGGCCGTTTCGCATGTACGACGTGGTCGGTATCGATCTGGAGTGGCGCGCGCGGGAGCTGGCGGGCCAAGGGCAGGATGCCCCCGAGGTGCAGGTGGACAACCGCTTGTGCGAGTTGGGTCGGTTCGGCCAGAAAAGTGGCAACGGTTATTACCACTATGAGCCGGGCAGCCGGCAGGCTGAACACGATGTAGAAGTCGATGCGCTGGTGCAGCGGGTCAGCGAGGACCTGGGTTTCCAGCGGCGTGACATCGACGCCGATGAGATCCTCGAACGCTGCTTGCTGGCGCTGGTCAACGAAGGTGCGAAGATTCTCCAGGAAGGCATTGCCGAGTCGTCCCACGATATCGACCTGGTGTATCTCAACGGCTATGGCTTCCCGGCTGACAAGGGCGGCCCGATGGCCTGGGCTGATCAGCAAGGCCTTGCGGACATCCATGCACGCTTGGTGGACCTTGAGACGAAGCAGGGGGATCAATGGAAGCCTGCTCGCCTGATCGGAGAGTTGGCGGCGCAAGGCAAGGGTTTCTCGCAGCGATAA	MSQTSFDIQRAAVVGAGTMGRGIVMCLANAGVTVQWVDNNPQMLEQALATVAETYAHNVRQGRLEQSEADARIARIARAQDYAAIRNVDLVIEAVYENLELKQKIFRELDGMLKPEAILASNTSALDIDAIAAATRRPTQVLGLHFFSPAHIMKLLEIVRGAQTAKAVLDAALALGKRMGKVSVVSGNCHGFIGNRMLHPYVLEARKMLLEGAFPHQVDAALQGFGFAMGPFRMYDVVGIDLEWRARELAGQGQDAPEVQVDNRLCELGRFGQKSGNGYYHYEPGSRQAEHDVEVDALVQRVSEDLGFQRRDIDADEILERCLLALVNEGAKILQEGIAESSHDIDLVYLNGYGFPADKGGPMAWADQQGLADIHARLVDLETKQGDQWKPARLIGELAAQGKGFSQR	PGPT0008395_2374	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008395-fadN-K07516	NA	NA
D1-36_00280	420			hypothetical protein	ATGCCCCAGCGCACCGAGTACTTTCATTTCCAGCCGGTGACTACGCGCTGGCACGACAACGATGTGTACGGTCACGTCAATAACGTCACCTACTACAGCTTTTTCGATACGGCGGTGAATACCTACCTGATCGAGGCCGGTGGACTGGATATCCATGACGGCGAAGTAGTGGGTTTCGTGGTGAGTTCAGCCTGCGACTATTTTGCATCGATCGCATTTCCGGACCGGATCGAGATCGGCCTGCGGGTCGCCAAGCTGGGCAACAGTTCGGTGCAATACGAGCTGGCGGTGTTCAAGGAGAACGAGCAGGAGGCCTGCGCGGCGGGGCGCTTCGTGCATGTGTTCGTGGACCGGATGTCGAATCAGCCAGTGCCGATCCCGGGTCGGCTACGCGAGGCATTGGAACGATTGGTACCCTGA	MPQRTEYFHFQPVTTRWHDNDVYGHVNNVTYYSFFDTAVNTYLIEAGGLDIHDGEVVGFVVSSACDYFASIAFPDRIEIGLRVAKLGNSSVQYELAVFKENEQEACAAGRFVHVFVDRMSNQPVPIPGRLREALERLVP	PGPT0001850_4839	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0001850-ybgC-K07107	NA	NA
D1-36_00281	483			hypothetical protein	ATGAAGTTCTCCTCCATTCTCTTGTTGTCCCTTGGCCTGGTCAGTGGCGTCGCGTCTGCCGGCGGTACCGCCGAAGCAGGTGTAGGCGGCGCATTGGGCGGGGTTTTGGGTTCGGTCGTCGGCCAGTCCCTGGGCGGCAACACCGGCTCCACTATCGGCGCGGCCCTGGGCGGCGCGGGCGGTAGCGCAGTCGGCGCAGACAAACATAGCCGCGGCGAAGCGGCAATCGGCGGCGCACTGGGTGCAGCCGGCGGTAACGTGGTCGGCCGCAGCGTGGGCGGCTCCACGGGCAGCCTGATCGGTGCCGCAGCGGGCGGTGGCGCCGGTGGCGCACTGGGTAACTACATGGGCAAGGACGACGATGACGACCGTTACGAAGGTCGCCGTAGCGATCGCCGCTACTACCGCGATGGCCACCGGGGCCGCGGTCATGCCTACGGACATCGCAAGCACAAGCACAAGCATCGCTATCACGACGATTGA	MKFSSILLLSLGLVSGVASAGGTAEAGVGGALGGVLGSVVGQSLGGNTGSTIGAALGGAGGSAVGADKHSRGEAAIGGALGAAGGNVVGRSVGGSTGSLIGAAAGGGAGGALGNYMGKDDDDDRYEGRRSDRRYYRDGHRGRGHAYGHRKHKHKHRYHDD				NA	NA	NA	NA	NA
D1-36_00283	2349	ydeP	COG0243	Protein YdeP	GTGAGCAATTATCAACAAGCCAACCAGAAACCCGCACCGCGCTACAAACCCTACAAGGGCCCAGCCGGTGGTTGGGGCGCGCTGATCAGCGTTGCCCAGGCCTGGCTGACCAGCGATAACGCGCTGAAAAACATCCGCATGATGCTCAAGACCAACCAGAACGGCGGCTTCGATTGCCCTGGCTGCGCCTGGGGTGATTCGCCGGAAAGCGGCATGGTGAAGTTCTGTGAGAACGGCGCCAAGGCGGTGAACTGGGAAGCGACCAAACGTCGTGTCGACGCCGCTTTTTTTGCCAAGCACAGCGTCACGTCATTGCTCGAGCAGAGTGACTACTGGCTTGAATACCAGGGGCGCCTGACGGAGCCGATGCAATACGACGCGCAAACCGACCGCTACAAGCCCATCAGCTGGGATGCGGCATTTGCGTTGATCGGCAAGCATCTGCAGGGACTGTCCAACCCGAACGAGGCCGAGTTCTACACCTCGGGCCGGGCCAGCAACGAGGCAGCCTATCTGTATCAATTGTTTGTGCGCGCGTACGGCACCAACAATTTCCCCGATTGTTCGAACATGTGCCATGAGGCCAGCGGTGTAGCCCTGTCCCAGAGTGTGGGTGTTGGCAAAGGCACGGTGACATTTGACGACTTCGAGCATGCCGACGCGATCTTCGTCTGGGGCCAGAACCCCGGCACCAACCACCCACGGATGCTCGAACCGCTGCGCGAAGCCGTGAAGCGCGGCGCCCAGGTCGTATGCATCAACCCGCTGAAAGAGCGTGGCCTGGAGCGCTTCCAGCATCCGCAACACCCGCTGGAAATGCTAACCAACGGTGATAAACCCACCAATACCGCGTATTTCCGTCCAGCCCTGGGCGGAGACATGGCCGTGCTGCGCGGCATGGCGAAGTTCCTGCTGCAATGGGAGCGTGAAGCACAGAACAGCGGCGGCCCCGCAGTATTCGACCATGGGTTCCTCAACGAACACAGCGTCGATGTCCTGGAATACCTGGCGGTCGTCGATGACACCCCATGGGAACAAATCGCCGAACAATCAGGCCTGACCCTGGCCGAGATCGAGCAGGCCGCGCGCATGTACGCCAAAGCCAGCAACGTGATCATGTGCTGGGCGATGGGCATTACCCAGCACCGCCATTCCGTCGCGACCATCCAGGAAATCGCCAACCTGATGATGCTGCGTGGCAACATCGGCAAGCCAGGCGCGGGGCTTTGCCCGGTGCGAGGGCACAGTAATGTGCAGGGCGACCGGACCATGGGCATCAACGAGCGTCCGCCCGTTGCGTTCCTCGACGCGCTGGAGCGGCGTTTCCAGTTCAAGGTGCCGCGTGAAAACGGCCATAACGTAGTCGAGGCGATCCACGCCATGGCCGAGGGCCGGGCCAAGGTATTTATCGCCTTGGGCGGCAATTTCGCCCAGGCTACTCCCGATAGCCACCGCACCTTCCAGGCCCTGCGCAATTGTGACCTGACCGTACAGATCAGCACCAAGCTCAACCGCAGTCATCTGGCCCACGGGAAAGATGCGTTGATCCTGCCGTGCCTCGGTCGCACCGACATCGACCTGCAAGCCGAAGGCTCCCAGGCCGTGACCGTGGAAGACTCGTTCAGCATGGTCCACGCCTCCAATGGCCAATTGCAGCCGTTGTCGAACCAGATGCGTTCGGAGCCGTGGATCATCGCCGGCATCGCTGCCGCCACGCTGGGCAGCCGTCCGGTGGATTGGAACTGGCTCGTGGCCGATTACAGCCGCATCCGCGACCTGATCGCCGAGACCATCCCCGGCTTCAAGGACTTCAACCAGAAACTCAAGAATCCCGGTGGCTTCTATCTGGGCAACAGTGCCGGTGCCCGTCGCTGGAACACACCGTCGGGCCGCGCCAACTTCAAGCCCAACCGGTTGCCGACCGACCTGCTCCACGAGCGGACCCGAGCCACAGGGCAATTGCCGGACCTGATCCTGCAATCCATGCGCTCCCACGACCAGTACAACACCACCATCTACGGCCTCGATGATCGCTATCGCGGTGTGAAAGGCCAGCGTGACGTACTGTTCGTCAACGAAGCGGACATCATCCGACTGGGCTTCAAACCCGGGCAAAAGGCCGACATCGTTTCCCTGTGGGACGACGGACGCGAGCGGCGGGTCAAAGGGTTTACCTTGCTGGCCTTCGACATCCCGGCCGGACAGGCCGCCGCCTACTACCCGGAAGTGAACCCGCTGGTACCCTTGGAAAGTACCGGTGACGGCAGCCACACCCCGACCTCGAAGTTCGTGGCGATCCGTCTGGAAGCGGCGAGCGAGAACGGGCTGATCATGGCCAAATCGGCCTGA	MSNYQQANQKPAPRYKPYKGPAGGWGALISVAQAWLTSDNALKNIRMMLKTNQNGGFDCPGCAWGDSPESGMVKFCENGAKAVNWEATKRRVDAAFFAKHSVTSLLEQSDYWLEYQGRLTEPMQYDAQTDRYKPISWDAAFALIGKHLQGLSNPNEAEFYTSGRASNEAAYLYQLFVRAYGTNNFPDCSNMCHEASGVALSQSVGVGKGTVTFDDFEHADAIFVWGQNPGTNHPRMLEPLREAVKRGAQVVCINPLKERGLERFQHPQHPLEMLTNGDKPTNTAYFRPALGGDMAVLRGMAKFLLQWEREAQNSGGPAVFDHGFLNEHSVDVLEYLAVVDDTPWEQIAEQSGLTLAEIEQAARMYAKASNVIMCWAMGITQHRHSVATIQEIANLMMLRGNIGKPGAGLCPVRGHSNVQGDRTMGINERPPVAFLDALERRFQFKVPRENGHNVVEAIHAMAEGRAKVFIALGGNFAQATPDSHRTFQALRNCDLTVQISTKLNRSHLAHGKDALILPCLGRTDIDLQAEGSQAVTVEDSFSMVHASNGQLQPLSNQMRSEPWIIAGIAAATLGSRPVDWNWLVADYSRIRDLIAETIPGFKDFNQKLKNPGGFYLGNSAGARRWNTPSGRANFKPNRLPTDLLHERTRATGQLPDLILQSMRSHDQYNTTIYGLDDRYRGVKGQRDVLFVNEADIIRLGFKPGQKADIVSLWDDGRERRVKGFTLLAFDIPAGQAAAYYPEVNPLVPLESTGDGSHTPTSKFVAIRLEAASENGLIMAKSA	PGPT0019635_3094	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_FORMATE_UTILIZATION,PGPT0019635-fdoG|fdhF|fdwA-K00123	NA	NA
D1-36_00284	840	fdhD	COG1526	Sulfur carrier protein FdhD	ATGAACGACAAGCCTCAGGCCTGTCCAGTGCCTGACGTGGAACCTTCCACGCCAGCCGCCAGCCAGAGCTATCGCTACTGCAACCTGGAGCACTTCGAATCGGCCAGCGCCGCGCTGGCCGAGGAAGTGGCGTTGGCCATTGCCTATAACGGCATCAGCCAAGCGGTGATGCTGGTCACGCCAACCGATCTCGAGGATTTTATCGTCGGGTTCAGCCTGGGCAGCGGCATCATCGAGGATCCAGCGGACATTTACGACTTGCAACTGAGCGGCGCCGGTTCGGCCCAATATGCCCAGGTCACCATCGCCAATCGCGCCTTCTGGAATCTCAAGGAGCAACGTCGCCAAATGGCCGGCACCAGTGGCTGCGGACTCTGTGGCGTGGAAGCCGTGGAACAGGCGCTGCCCGACCTCAAGTCGCTGCCCGGGGCACCCTTGCCACCAGCGCAATGGCTCGATGGCCTGCGTCAACGCATCAGCCAGTTCCAGCCCCTGGGCCAGCACTGTGGCGCCGTCCATGCGGCATTGTTCATGAACGCCAACGGCGAGTTGCTGATGGGCCGCGAAGACATTGGCCGGCACAACGCTCTCGATAAATTGATCGGCGCGTTGATCCGTCAGCAAATCCCGGTGGCTGGTGGCGTGGCAATCGTCACCAGCCGTTGCAGTCTCGAATTGATCCAGAAAGTACTGCGCGCCGGCATCCAGACGTTGGTCAGCCTGTCGTCGCCCACGGGCCTTGCCGTGCAATGGGCCCGCCAACACAACCTCAACCTCATCCACCTGCCGCAAAAAAGTGCGCCGCGGGTCTATAGCCCTGCGATGGAGAAACAAGCGTGA	MNDKPQACPVPDVEPSTPAASQSYRYCNLEHFESASAALAEEVALAIAYNGISQAVMLVTPTDLEDFIVGFSLGSGIIEDPADIYDLQLSGAGSAQYAQVTIANRAFWNLKEQRRQMAGTSGCGLCGVEAVEQALPDLKSLPGAPLPPAQWLDGLRQRISQFQPLGQHCGAVHAALFMNANGELLMGREDIGRHNALDKLIGALIRQQIPVAGGVAIVTSRCSLELIQKVLRAGIQTLVSLSSPTGLAVQWARQHNLNLIHLPQKSAPRVYSPAMEKQA	PGPT0019920_1	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATION	PLANT_DERIVED_PHENYLACETATE_DEGRADATION,PGPT0019920-padA-K18360	NA	NA
D1-36_00285	888	cynR_1		HTH-type transcriptional regulator CynR	ATGGACATCAAGCAGCTGAAATTTCTCATCGCGCTCGACGAAACCCGCCACTTCGGCCAGGCTGCCGCCCGTTGTCACATCACCCAACCCACCCTGTCGATGCGTTTGCGCAGCCTGGAAGAAGAGCTGGGCCTTCCGTTGGTCAACCGCGGCCAGCGTTTCGAGGGTTTTACCGCGCCAGGCGAACGGGTGCTGGCTTGGGCACGCACAGTGCTGGCGGCCTATGACGGGCTTCAGGCCGAAGCGGCGGCCTGCCGTGGCAACCTGGTGGGTACGCTGCGCCTGGGCGTGGTGCCGCTGTCGGATTTCGACCCGCTGTCGATGATGCAACGCCTGCACACCGAGCACCCGAGCCTGCGCTTCGAATTATCGTCTTTGAGTTCGGAGCGCATCCTCGAACAATTGGCGAACAACCGCATCGACCTGGGCATTTCCTACATGGAACGCCTGGATAACGAGCGCTTCGAATCCTTGCCCTTCAGCCACACCCGCATGGGCCTGCTGTACGACCAGCGGTTTTTCTTTTTTGGCGAAGAACCGCTGAGATGGGAATCACTGGTTGAACTGCCCCTGGGCATGCTCACCAGCGGCATGCATTTTCGCCAATCCATCGATCACGCGTTTCATAGCCGAGGCCTTGCACCTCAACCGTTGCTGCAAACCGACGCCGTGCATCAATTGCTGCAAGCGGTGCATGGCGGATTGTGCTGCGCGGTGGTCCCATTGGACAGCGGACTGAACGTCATGACCGAGGACTTGCGCATCCAGCCCATCGAAAACGCCCAAACCCTTGTTCCGCTTGGGCTGATCATGCGGCGCGGGGCTCCGCGCTCGGCGTTGGCGGAGGCTTGTTTCGCCCTTTACCAGAAATCAATAACCTTTCCTTGA	MDIKQLKFLIALDETRHFGQAAARCHITQPTLSMRLRSLEEELGLPLVNRGQRFEGFTAPGERVLAWARTVLAAYDGLQAEAAACRGNLVGTLRLGVVPLSDFDPLSMMQRLHTEHPSLRFELSSLSSERILEQLANNRIDLGISYMERLDNERFESLPFSHTRMGLLYDQRFFFFGEEPLRWESLVELPLGMLTSGMHFRQSIDHAFHSRGLAPQPLLQTDAVHQLLQAVHGGLCCAVVPLDSGLNVMTEDLRIQPIENAQTLVPLGLIMRRGAPRSALAEACFALYQKSITFP				NA	NA	NA	NA	NA
D1-36_00286	441	kbp	COG1652	Potassium binding protein Kbp	ATGAGTCTTTTTAGTTTTGTGAAGGAGGCGGGTGAGAAACTTATCGATCTCCTGACCCCCGGTAATGCCAATGCCGGTGAGCAATTGAAGGAGCACATCAGTAAAGTCGGGCTGGGCAACCCCAATATCCAAGCGACCGTTGAAGGTGACAAAGTCATCGTGACCGGTGAAGTCTCGAGCCAGGAGGAAAAAGAAAAGGTCCTGCTGGCTGTGGGCAATATCCAAGGTGTCGGCAGTGTTGACGATCAGATCACCGTGACTGGGCCGGTAGCGCAGGCCGCACGTTTCGTAACCGTGAAGAAGGGTGACACGCTCAGCGCCATATCCAAGGCCGAGTACGGTGACGCCAACAAGTACAACAAGATCTTTGAAGCCAACAAGCCGATGCTTTCGCACCCAGACAAAATCTATCCGGGGCAGGTGCTGCGTATTCCGGAATAG	MSLFSFVKEAGEKLIDLLTPGNANAGEQLKEHISKVGLGNPNIQATVEGDKVIVTGEVSSQEEKEKVLLAVGNIQGVGSVDDQITVTGPVAQAARFVTVKKGDTLSAISKAEYGDANKYNKIFEANKPMLSHPDKIYPGQVLRIPE				NA	NA	NA	NA	NA
D1-36_00287	663	yrfG	COG1011	GMP/IMP nucleotidase YrfG	ATGGCCTCGTTGCCTTGGCACGCGATCGACACGGTCCTGCTGGACATGGACGGCACCCTGCTGGACCTGCATTACGACAACCATTTCTGGCTGGAACACCTGCCTCAGCGCTACGCCGAACTGCATGGCGTCAGCCGCGCGATGGCCGAGATGGAGCTGCAACCGCTGTTCGAGCGCAACGCCGGCCAGTTGCAGTGGTACTGCCTGGACTTCTGGAGCGCGGAGCTGAAGCTGCCGGTGCGCGAATTGAAACTGGAAACCGCCCACCTGATCGCCCTGCGCCCCGATGCCGATACGTTCCTGGCAGCGATCCAAAGGGCCGGCAAACGCGTCGTGATGATCACTAACGCCCATCGAGACTCGCTGTCGCTGAAGCTGGAGCGTATCGAGCTCGCCCCGTATTTCGAGCGTTTGATCAGCTCTCACGATTACGGTTTCCCCAAGGAGAACCCGCAGTTCTGGGATGCCTTGCAAGCCGACCTGGACTTCGACCCCGCTCGCAGCCTGTTCATTGACGATACCTTGCCAGTCTTGCGCAGCGCCCGTGATTTTGGCATCGCGCATCTGCTGGCGGTCAGCGAACCGGACAGCCGCAAGGGGCCGAAGGATACCGGGGAATTCGAAGCGGTCGGGGATTATCGGGATTTGATTGCCGGGCTTTGA	MASLPWHAIDTVLLDMDGTLLDLHYDNHFWLEHLPQRYAELHGVSRAMAEMELQPLFERNAGQLQWYCLDFWSAELKLPVRELKLETAHLIALRPDADTFLAAIQRAGKRVVMITNAHRDSLSLKLERIELAPYFERLISSHDYGFPKENPQFWDALQADLDFDPARSLFIDDTLPVLRSARDFGIAHLLAVSEPDSRKGPKDTGEFEAVGDYRDLIAGL	PGPT0013415_525	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013415-yrfG-K20881	NA	NA
D1-36_00288	567	nudE	COG0494	ADP compounds hydrolase NudE	ATGCGCCAGAAACCCACCATACTCGACCGACGGATCGTCGCCACCAGCCGCCTGTTTTGCGTGGAAGAAATGAAGCTGCGTTTTTCCAATGGTGTGGAGCGCACTTACGAGCGTTTGGCGGCCAAGAGCCCTGGCTACGGCGCGGTGATGATTGTTGCGATGCTCGACGCCGACCATGCCGTGCTGGTGGAAGAGTATTGTGGCGGTACCGACGCTTATGAGTGGTCATTGCCCAAGGGTTTGGTCGAGCCGGGCGAAGACGTGCTGGCGGCGGCCGAGCGCGAGCTCAAGGAAGAGGCCGGTTTTGGCGCGCGTCAGCTGGAACACCTGACGGAGCTGTCGTTGTCGCCTGGCTACATGAGCCAGAAGATCCAAGTGGTGCTGGCGACCGACCTGTATGAAGAGCGGCTGGAGGGCGACGAACCCGAGCCGATGCGAGTGGACAAGATCAACCTGGGCGAGCTCTCGGCCCTTGCACAAAATCCCCAATTCACCGAGGGACGGGCGCTGGCGGCGTTGTATCTGGCTCGCGACCTGCTGACCCAGCGTGGAGCCTACCTGCCATGA	MRQKPTILDRRIVATSRLFCVEEMKLRFSNGVERTYERLAAKSPGYGAVMIVAMLDADHAVLVEEYCGGTDAYEWSLPKGLVEPGEDVLAAAERELKEEAGFGARQLEHLTELSLSPGYMSQKIQVVLATDLYEERLEGDEPEPMRVDKINLGELSALAQNPQFTEGRALAALYLARDLLTQRGAYLP	PGPT0021615_123	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021615-nudE-K08312	NA	NA
D1-36_00289	828	cysQ	COG1218	3'(2'),5'-bisphosphate nucleotidase CysQ	ATGATTTTTCCTCACCCGCTGATGGTCCCGGTGATCGAACTGGCGCTTCGGGCCGGCGCGGCAATCCTGCCGTTCTGGCGCGCCGATGTAGAAGTTGCGCACAAGGCGGATGAATCGCCTGTAACCGCCGCGGACATGGCCGCCCACGATGTCATCGTCGCTGGATTGACCGCGCTGGCGCCGGATATTCCGATCCTCTCCGAGGAGGACGCCGATATCGCGCAAAGCGTCCGCGCTACCTGGAAACGCTGGTGGCTGGTGGACCCGCTGGATGGCACCAAGGAATTCATCTCGGGCAGTGAAGAGTTCACCGTCAACATCGCCTTGGTCGAAGAGGGGCGGGTGGTGTTCGGCGTGGTCTCGATGCCCACCAATGGCCGTTTCTACGTCGGTGGCGTGGGGCTGGGGGCCTGGCGTGGCGAGAAAGGCGTCGAGCCTTCGCCGATCACGGTGCGTAACGCGCTGGCGCCTGGAGACGCTTTTACCGTGGTCGCCAGCCGGCGCCACACCAGTGCGGAGCAGGAGCGCCTATTGGCCGGCTTGAGTGAGAGCCTCGGCGCCTTGCAACTGACCAACATCGGCAGTTCGCTGAAATTCTGCCTGTTGGCTGAAGGCGCCGCCGATTGTTACCCCCGTTTGGCGCCAACGTCTCAGTGGGACACCGCCGCCGCCCAGGGCGTACTCGAAGGAGCGGGCGGCGAGGTGCTGGACCTGAGCGGCGAACCGTTCCGCTATCCACCGCGCGAGTCGCTGTTGAATGCTTCGTTCCTGGCGCTGCCGGCGAAAGCGGCGTGGCGTGGGAAGCTGTTGGAGCTTGCCCGCTCTTGA	MIFPHPLMVPVIELALRAGAAILPFWRADVEVAHKADESPVTAADMAAHDVIVAGLTALAPDIPILSEEDADIAQSVRATWKRWWLVDPLDGTKEFISGSEEFTVNIALVEEGRVVFGVVSMPTNGRFYVGGVGLGAWRGEKGVEPSPITVRNALAPGDAFTVVASRRHTSAEQERLLAGLSESLGALQLTNIGSSLKFCLLAEGAADCYPRLAPTSQWDTAAAQGVLEGAGGEVLDLSGEPFRYPPRESLLNASFLALPAKAAWRGKLLELARS	PGPT0002975_1441	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002975-cysQ-K01082	NA	NA
D1-36_00290	456			hypothetical protein	ATGAACCGCGACAGCCATTATCTGGAAACGATCCTGCACCGGGACATCCCATTGACCCGGGACATGGGCCTGAAGGTGCTCCAATGGCAGGCCCGCCAGCTGCGTCTGTTCCTGCCGCTCGAGGCCAACGTCAACCACAAGAGCACCATGTTCGGGGGGAGCCTGTATTGCGGCGCGGTGCTGGGTGGCTGGGGCTGGTTGCACCTGGCCTTGCGCGAGGAGGGAGTCGAAGACGGACACATCGTGATCCAGGAAGGGCAGATCAGCTATCCGCTGCCCGTGACCCGAGACGCAACCGTCATTTGCGACGCGCCCGATGAAAAGACCTGGAAACGTTTCGTGGCGACTTATAAGCGCTACGGGCGGGCGCGGCTGGCATTACAAACGCGGGTGTTGAACGTCGACAGCGAGAATGTGGCGGTGCAATTCGAAGGGCAATACGTTTTGCACCGCTGA	MNRDSHYLETILHRDIPLTRDMGLKVLQWQARQLRLFLPLEANVNHKSTMFGGSLYCGAVLGGWGWLHLALREEGVEDGHIVIQEGQISYPLPVTRDATVICDAPDEKTWKRFVATYKRYGRARLALQTRVLNVDSENVAVQFEGQYVLHR				NA	NA	NA	NA	NA
D1-36_00291	1392	dctD_1		C4-dicarboxylate transport transcriptional regulatory protein DctD	ATGACCATCGAAAACCAGATTGAGGTGGTGCTGATCGACGACGATCCCCACCTGCGTCAGGCCCTGAGCCAGACCCTCGACCTGGCTGGGCTGAAAATCCTGCCACTGGGCGAGGCCAACGGCCTGGCCGGGCAACTGCCGAGGGATTGGCCAGGCGTGGTGGTCAGCGATATCCGCATGCCCGGCATGGACGGCCTGGAACTGCTGGGCCAACTGCACGCCCAGGACCCGGACCTGCCAGTGCTGCTGATTACCGGCCATGGCGATGTACCGCTGGCCGTGCAGGCAATGCGCGCCGGGGCCTACGACTTTCTCGAAAAACCCTTTGCCAGCGATCATCTGCTCGACAGTGTGCGTCGGGCCCTGGCTTTGCGGCGCCTGGTCCTGGATAACCGCAGCCTGCGCCTGGCCCTCAGCGATCGCCATGAACTCAGCGCCCGGCTGGTAGGACAATCGTCGCCCATGTTGCGCCTGCGCGAGCAGATCGGTGCCTTGGCAGCGACGCGCGCCGACGTGTTGATCCTGGGTGAAACCGGCGCCGGCAAGGAAGTGGTCGCCCGCGCGCTGCACGATCTCTCGAGTCGACGCAACGGGCCGTTCGTGGCGATCAACGCCGGCGCTTTGGCCGAGTCGGTGGTTGAAAGCGAACTGTTCGGCCACGAACCCGGCGCCTTCACCGGCGCGCAGAAGCGCCGTATCGGCAAATTCGAATTCGCCAATGGCGGCACGTTGTTTCTCGATGAAATCGAAAGCATGAGCCTGGACGTGCAGGTCAAATTGCTTCGCCTGCTGCAAGAGCGGGTGGTGGAACGACTGGGTGGCAATCAGCAGATCCCCCTGGACATCCGTATCGTCGCCGCCACCAAGGAAGACCTGCGCCAGGCCGCCGATCAAGGCCGCTTTCGCGCCGACTTGTATTACCGGCTGAATGTCGCGCCGCTGCGCATACCGCCGTTGCGCGAGCGCGGTGAGGACGTGCTGATGCTGTTCCAGCATTTTGCCGATGAGGCCAGCGCCCGTCATGGCCTGCCGCCCCACGAACTGCTACCGGCCCACCGGGCGCTGTTGTTGCGCCATGACTGGCCGGGCAACGTACGCGAATTGCAGAACGCCGCCGAGCGTTTCGCCCTGGGCCTGGAGCTGGCCCTGGATAGCAGCACGCCGGAAGGCCAGCCAGGCGCCCCGGTGCAAACCGTCAGCGGCGGTTTGAGCGAGCAGGTTGAGAACTTCGAAAAAACCCTCATAGCCGCCGAGCTGGCACGGCCTCACAGTTCAGTGCGCAGCCTTGCCGAAGCGTTGGGCATTCCACGCAAAACCCTGCACGACAAGCTGCGCAAGCATGGACTGGCCTTCGGCGACAATAGCCCAGGCCAGGCCGACGATTCCGATTGA	MTIENQIEVVLIDDDPHLRQALSQTLDLAGLKILPLGEANGLAGQLPRDWPGVVVSDIRMPGMDGLELLGQLHAQDPDLPVLLITGHGDVPLAVQAMRAGAYDFLEKPFASDHLLDSVRRALALRRLVLDNRSLRLALSDRHELSARLVGQSSPMLRLREQIGALAATRADVLILGETGAGKEVVARALHDLSSRRNGPFVAINAGALAESVVESELFGHEPGAFTGAQKRRIGKFEFANGGTLFLDEIESMSLDVQVKLLRLLQERVVERLGGNQQIPLDIRIVAATKEDLRQAADQGRFRADLYYRLNVAPLRIPPLRERGEDVLMLFQHFADEASARHGLPPHELLPAHRALLLRHDWPGNVRELQNAAERFALGLELALDSSTPEGQPGAPVQTVSGGLSEQVENFEKTLIAAELARPHSSVRSLAEALGIPRKTLHDKLRKHGLAFGDNSPGQADDSD	PGPT0017310_82	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017310-dctD-K10126	NA	NA
D1-36_00292	1809	dctB_1		C4-dicarboxylate transport sensor protein DctB	ATGACCTCCACCCTCCCCCGCAGACCTCGTTGGCGCAGCCTGGCGTTGCTCGCGCTGTGCCTGGCACCGTTGCTGTGGCCGCTTGAGCATCTGGCCGAGCGTTACTACCGCAGCGAACTGGCCGGGCAGAACAGACAGACACTCGACCTCTACGTCGCCAACCTGCTGGGGACGTTGCACCGCTACGAAGTACTGCCCCAGATACTCGGCGAGCTTCCGGCCCTGCGCGCGGCCTTGTCGACGCCGGACGATGGCGTCACCCAGGGCAATGCCAACCGGTTATTGAAAAACATCAGCGCCCAGACCGGCGCCGAGGTCATGTACCTGATGGACGCCACGGGCAAGACCCTGGCGGCGTCTAACTGGGATAAGCACGACAGCTTCGTCGGTCGCAATTTCGCCTTTCGCCCTTATTACATCGAGGCCATGGCCGGGCGCCTGGGACGTTTTTTCGGCCTGGGCACCACATCGGGCAAACGCGGTTATTTCTTCGCTGCCGCCGTGCATGATCGCGAAAAAGTCATCGGCGTATTGGTGGTCAAGGTGGACCTGGACCACACCGAAAGCCTATGGGGCAAAACGCCTGAACAGCTCTTGGTGACCGACCACAACGGCGTGGTCATTCTCACCTCGCGCCAGGAATGGCGTTTCCGCTCGACGCGGCCCCTGAGCGATCCGGAAAGCAAGGCGATCAGCGCGATACAACCCTACCCTACCCGTGACCCCAAGCCGCTCAACCTGGACCCCAATGCCTGGCTGACCCAGACCCAGGCCATCGAAGAAACCGGCTGGAATGTGAGCATCCTGGCCCCGCGCACCCTGATTGACCGCCCGGTGCGCACGGTGGTCGTCATCGGCGGCGCGGCATTGCTGGTCTTGATGCTGTTGCTCGGGTTGATGATGCAGCGCAGGCGCCACTACCTGGAAAGAATCGCCTTCGAGGCCAAGGCCCGTCATGAATTGGAGGGCCGCGTCGCGGAACGCACCAGCGACCTGGAGGGCCTCAACCGTCGTCTCAAGCAAGAGGTGCTGGAACGCGAGCACGCCCAGCAGGAACTGGTCCGTGCCCAGGATGATTTGGTGCAGGCCGGCAAGTTGTCGGCGCTCGGCACCATGTCGGCCAGCATCAGCCATGAACTCAACCAACCGTTGGCGGCGATCAGAAGTTATGCCGAAAACGCAGAAATACTGCTCGATCACCAACGCACCGACGACGCCCGTGGCAACCTCAAGCTGATCAACGAACTGACCGGGCGCATGGCGTCGATCATCGCTCACCTGCGCGCCTTCGCGCGCCGCGACCGCCACGCCCCGGAAAGCGTCGCGCTGCAACCGGCGCTGGACGATGCCCTTGCCTTGCTCGCCAAACGTCGGCGCAGCATGGAAGTGGAGTTGATCCGTGACCTGCCCGCCGCCACCTTGTGGGTCGAGGCCGGTGAAACACGCCTGCGCCAGGTGCTGGGCAACCTGCTGGCCAATGCCCTGGATGCCCTGACTGAAAAAGGTCCGCCGCGTAGACTCTGGCTCAGTGCCCAGGCGACCGAAACCGGCGTCAACCTGTACATCCGCGATAACGGCCCGGGTTTCTGCATGGAAGCCCTCGGCCGCGCCGGTGAGCCGTTCTACACCACCAAGACTCGCACCCAGGGCCTTGGCCTGGGGCTGGCAATCTGCGACACCCTGATGCGCGCCTTCGGCGGCGAATTGTTGTTCGCCAACCACAAGGAAGGCGGCGCCCTGATTACCCTGAAGCTGCGGGCGGGTGCGCCCGGGGTGAGCCTGCAACCGTCCGAGGACCGTAGTGTATGA	MTSTLPRRPRWRSLALLALCLAPLLWPLEHLAERYYRSELAGQNRQTLDLYVANLLGTLHRYEVLPQILGELPALRAALSTPDDGVTQGNANRLLKNISAQTGAEVMYLMDATGKTLAASNWDKHDSFVGRNFAFRPYYIEAMAGRLGRFFGLGTTSGKRGYFFAAAVHDREKVIGVLVVKVDLDHTESLWGKTPEQLLVTDHNGVVILTSRQEWRFRSTRPLSDPESKAISAIQPYPTRDPKPLNLDPNAWLTQTQAIEETGWNVSILAPRTLIDRPVRTVVVIGGAALLVLMLLLGLMMQRRRHYLERIAFEAKARHELEGRVAERTSDLEGLNRRLKQEVLEREHAQQELVRAQDDLVQAGKLSALGTMSASISHELNQPLAAIRSYAENAEILLDHQRTDDARGNLKLINELTGRMASIIAHLRAFARRDRHAPESVALQPALDDALALLAKRRRSMEVELIRDLPAATLWVEAGETRLRQVLGNLLANALDALTEKGPPRRLWLSAQATETGVNLYIRDNGPGFCMEALGRAGEPFYTTKTRTQGLGLGLAICDTLMRAFGGELLFANHKEGGALITLKLRAGAPGVSLQPSEDRSV	PGPT0017305_754	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017305-dctB-K10125	NA	NA
D1-36_00293	882	rfbD_1	COG1091	dTDP-4-dehydrorhamnose reductase	ATGAGTACTTCCTCGCGCATCTTGATCATCGGCCGGAACGGCCAGGTCTCCCAAGCCCTTCAAAAGCGCCTGGCCGGCATCGGCGAACTGACGGTGCTGGGCAGCAGCCAGCTCGACATGGCCCGACCCGATCACCTGCGCGCGCCTATCGAGGCGGCGCGGCCCGACCTGATCATCAACGCCGCCGCCCATACGGCGGTCGACCAGGCCGAGAGCGAGGCGCAGCGGGCCTTCGCCATCAATGCCATCGCACCGGGCGTGCTCGCCCAGGCGGCGCTCGAACTGGGCGTGCCGCTGATCCACTACTCCACCGATTATGTCTTCGACGGTCGCAAGCACACCCCCTACACCGAGGACGACGCGCCCAACCCGCTGAGTGTCTACGGTCGCAGCAAGCTGGCGGGCGAAGAGGCCATCCGCCAGGCGGGCGGAGAGCATCTGATCCTGCGCACCAGTTGGGTGTATTCCAACGCGGGACGCAATTTCCTGTTGACCATGCAGCGCCTGCTGCAGGAAAAGCCCCATCTGCGCGTCGTCTCGGACCAGATCGGCGCACCGACCTGGGCGGGGACAATCGCCGAGAGCACCGCGAAGCTGATCGAGCGCTGGCAAGCTGGGCAACGCGGCGCCTGGGGCACCTATCACCTGACAGCCCAGGGCCAGACATCCTGGTTCGGATTCGCCCAAGCCATCGGTGAACACCTGGTCGAGCAGCACAAATCCTGCGCCGTGCTTGAAGCCATCGCATCGAGCGAATACCCGACCCCGGCGCCGCGTCCGTTGAACTCGCGCCTGGACTGCACCCGGCTGGCCAGGGAGTGGGGCGTGAGCCAACCAGACTGGCGAAGCGCGTTGCAGCAGTGCCTTGCCGGGCAAGCCTAG	MSTSSRILIIGRNGQVSQALQKRLAGIGELTVLGSSQLDMARPDHLRAPIEAARPDLIINAAAHTAVDQAESEAQRAFAINAIAPGVLAQAALELGVPLIHYSTDYVFDGRKHTPYTEDDAPNPLSVYGRSKLAGEEAIRQAGGEHLILRTSWVYSNAGRNFLLTMQRLLQEKPHLRVVSDQIGAPTWAGTIAESTAKLIERWQAGQRGAWGTYHLTAQGQTSWFGFAQAIGEHLVEQHKSCAVLEAIASSEYPTPAPRPLNSRLDCTRLAREWGVSQPDWRSALQQCLAGQA	PGPT0022630_2184	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
D1-36_00294	546	rmlC	COG1898	dTDP-4-dehydrorhamnose 3,5-epimerase	TTGAATGTCATCGCCTCGCGACTGCCGGAAGTCTTGATCCTCGAGCCGAAGGTCTTCGGCGATGATCGCGGCTTCTTCTATGAAAGTTTCAATGCCCAGGCATTCACCGAAGCCACGGGGCGCACGGTGCAGTTCGTCCAGGACAACCATTCGCGCTCGGCCAAGGGCGTGCTGCGCGGCCTGCATTATCAGATCGAACAAACCCAGGGAAAACTCGTGCGCGTCACCGCCGGCGAGGTACTCGACGTTGCGGTGGACATTCGCCGCAGCTCGCCGACATTCGGCCAGTGGGCCAGCGTACGCCTGTCGGGACAGAACCATCGGCAGCTGTGGATTCCCCCTGGATTTGCCCACGGTTTTGTCGTACTGAGCGACTCGGCGGACTTTCTCTACAAGACCACCGATTACTACGCCCCGTCAGCCGAGCGCTGCATTCGCTGGGACGACCCCGACCTGGCGATTGACTGGGAGTTGCCAGGCGCACCGATCCTGTCGCCCAAGGACCAGGCCGGCAAGGCCCTGCATGAGGCCGATCTGTTCCCATGA	MNVIASRLPEVLILEPKVFGDDRGFFYESFNAQAFTEATGRTVQFVQDNHSRSAKGVLRGLHYQIEQTQGKLVRVTAGEVLDVAVDIRRSSPTFGQWASVRLSGQNHRQLWIPPGFAHGFVVLSDSADFLYKTTDYYAPSAERCIRWDDPDLAIDWELPGAPILSPKDQAGKALHEADLFP	PGPT0014300_3401	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
D1-36_00295	876	rffH	COG1209	Glucose-1-phosphate thymidylyltransferase 2	ATGATGAAAGGCATTGTTCTGGCCGGCGGTTCCGGCACGCGGCTGCATCCGATCACCCTCGGGGTTTCCAAGCAGTTGTTGCCGGTCTACGACAAGCCGATGATCTATTACCCGATCTCGGTACTGATGCTCGCCGGCATCAAGGAAATCCTGATCATCTCCACCCCGCAGGACCTGCCCCAATATCGAAATCTGCTGGGCGATGGCGCCCAGTTCGGCGTTCATTTCAGCTACGCCGAGCAGCCGACCCCCGACGGTCTGGCCCAGGCTTTCCTGATTGGCGAGCAGTTCATCGGCAATGATCCGGTCTGCCTGATCCTGGGTGACAACATTTTTCATGGCCAACATTTCGGCGAACAATTGCAGACCGCCGTCAACCGCCCACGCGGTGCGACGGTGTTCGGTTATTGGGTCAAGGATCCCGAGCGTTTCGGCGTGATCGACTTCGATCCCGAAGGACGCGCCGTCTCCATCGAAGAAAAACCCGCCGCCCCCAAGTCCAGCTATGCGGTGACCGGCCTGTATTTCTACGACAACGACGTCATACAGATCGCCAAAGCCATCAAGCCGTCCAAACGAGGCGAACTGGAGATTACCGACGTCAACAATGCCTATCTGCAACGAGGGGACTTGCATGTCGAGCGCTTTGGCCGCGGCTTTGCCTGGCTGGACACCGGCACCCATGACAGCCTGCTGGAAGCCTCGCAATACGTTCAGACCATTGAGCATCGCCAAGGCCTGAAGGTCGCATGCCTGGAAGAAATCGCCTATCAACAGGGCTGGGTCAGCCGCGAGCACGTATTGGAGCGCGCCAGTTACTTCGGCAAGACCGGCTACGGCCAATACCTGTTCAAGATTGCCGGAGAAACACGTTGA	MMKGIVLAGGSGTRLHPITLGVSKQLLPVYDKPMIYYPISVLMLAGIKEILIISTPQDLPQYRNLLGDGAQFGVHFSYAEQPTPDGLAQAFLIGEQFIGNDPVCLILGDNIFHGQHFGEQLQTAVNRPRGATVFGYWVKDPERFGVIDFDPEGRAVSIEEKPAAPKSSYAVTGLYFYDNDVIQIAKAIKPSKRGELEITDVNNAYLQRGDLHVERFGRGFAWLDTGTHDSLLEASQYVQTIEHRQGLKVACLEEIAYQQGWVSREHVLERASYFGKTGYGQYLFKIAGETR	PGPT0022600_3037	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
D1-36_00296	1083	rffG	COG1088	dTDP-glucose 4,6-dehydratase 2	ATGCGCATTCTCATCACCGGCGGTGCCGGCTTCATCGGCTCGGCTCTCATACGGCATTTGATTCTTGATACCGAGCACCAGGTCCTGAACCTCGACAAGCTGACCTACGCTGGCAACCTGGAGTCGCTGAGCAGCATTGATCACGACAGCCGCTACGAATTCGTGCAGGCGGACATCGCCGATCAAGCAACGATCAGCGCGGTGCTGGCGCGGTTCAAACCTGACGCAATCATGCACCTGGCCGCCGAATCCCATGTGGACCGCTCCATCGACGGTCCGGCGGACTTCATCCAGACCAACATCGTCGGCACCTATAGCTTGCTCGAAGCAACCCGTGCCTATTGGCAGGCCCTGGCCGAACCGCAAAAACGGGCGTTTCGTTTCCACCATATTTCCACCGACGAAGTGTATGGCGACCTGCACGGCGTCGATGACCTGTTCACCGAAACCACCGCCTACGCCCCCAGCTCGCCTTACTCAGCCAGCAAGGCAGCGTCCGATCACCTGGTCCGGGCCTGGCAGCGCACCTACGGCTTGCCCGTGCTGCTGACCAACTGCTCGAACAACTACGGGCCGTTCCACTTCCCCGAGAAGCTGATCCCGCTGGTCATCCTCAATGCGCTGGCGGGCAAGCCGTTGCCTGTCTATGGCGACGGCCAGCAAGTGCGCGACTGGCTCTACGTCGAAGACCACGCCCGGGCGCTGCTCAAAGTCGTGACGGAAGGTGTAGTCGGCGAGACTTACAACATTGGTGGCCATAATGAGCAGAAGAACATCGATGTCGTGCGCAACATCTGTGCGCTGCTCGAAGAACTCGCGCCCCATAAACCCGAGGGCGTCGAGCGCTATGCGGACCTGATTACCTTCGTCAAGGATCGTCCCGGGCATGACCTGCGCTACGCTATTGACGCCGGCAAGATCGAACGGGAGCTGGGCTGGACCCCTCGGGAAACCTTCGAGACCGGGCTGCGCAAGACCGTGCAGTGGTATCTGGAGAACCTGCTGTGGTGCCGGCGCGTGCAGGATGGCAGCTATCAAGGCGAGCGCCTTGGCTCGCTCGAAAACAAGGATACGATTGCATGA	MRILITGGAGFIGSALIRHLILDTEHQVLNLDKLTYAGNLESLSSIDHDSRYEFVQADIADQATISAVLARFKPDAIMHLAAESHVDRSIDGPADFIQTNIVGTYSLLEATRAYWQALAEPQKRAFRFHHISTDEVYGDLHGVDDLFTETTAYAPSSPYSASKAASDHLVRAWQRTYGLPVLLTNCSNNYGPFHFPEKLIPLVILNALAGKPLPVYGDGQQVRDWLYVEDHARALLKVVTEGVVGETYNIGGHNEQKNIDVVRNICALLEELAPHKPEGVERYADLITFVKDRPGHDLRYAIDAGKIERELGWTPRETFETGLRKTVQWYLENLLWCRRVQDGSYQGERLGSLENKDTIA	PGPT0022625_587	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
D1-36_00297	2913	argD_1		Acetylornithine/succinyldiaminopimelate aminotransferase	ATGCCGCTCGCTACGTTGGTTCACCGTGCCAGTTTGCCAAGCCCACAGATCAGCGCCGAACAGGCGTTGGTGCTGCTGCGCTCGAATTACGGACTCAGCGGTGACCTGCGACCCCTCGGCAGCCATCAGGATCTCAATTACCGCGTCGACAGCGACCGCGGGCGGTTCGTATTGAAGATTTGCCACGGCAACTATGCCGTCCAGGAGCTCCAGGCCCAGCATGCCGCGCTCAAGGCGCTGGCCGGGCATGGCGCGGTAAAGGTGCCTGCGGTCATGGCGGCCAGCAATGGCGAGGACCTGTTGACGCTTGAGGTCGACGGGCAAACCGTTCACGTGCGGTTGCTGGAGTACATCGAGGGCCAGTCCCTGACCCAGCTCAAGCATCTTTCCCGCGACCTGGTGACAGGGCTGGGGCGCGTGTGTGCCGAGATGGACGTGGCCCTCGCTGCGTTCGATCATCCCGGCCTGGATCGCACATTGCAGTGGGACGCGCGTCATGCGCCGGCCTTGATCGATCATTTGCTGCCCGTCATCAAGGATGAACAACGACGCCGATTGATCGCCGAGGCGGCGCAACAGGCCGAACGGCGTTTGCAACCACTCAAGGAAAGCCTGCCGGTGCAAGCGATCCACATGGACATCACCGATGACAACGTGGTCTGGCAGCGGGACGCCCTGCGCCAATGGCAACTGCAAGGCGTCATCGATTTCGGTGACCTGATCCGCACCTGGCGTATCACCGATCTGTCGGTAACCTGCGCGGCCCTGCTGCATCACGCCGATGGGGACCCGTTTTTCATCCTGCCGGCGATCCGCGCCTACCACCGCGTCAATCCGTTGCAACGCGAAGAACTCATGGCGCTTTGGCCGTTGATTGTCGCCCGCGCCGCGGTGCTGGTGCTCAGCGGTGAGCAACAAGTGGCTATCGATCCGGGCAATGAATACTCCCGTGACAATCTTCAACATGAATGGGAGATCTTCGATGTTGCCCATTCAGTGCCGCTCGAGTTGATGGAGGCGGCGATTCTCACCGCCGCCGGCCACAGCCTGCCGCCTTTCGCCAACGAGGGTTTCGCGCCGTTGTTGCCGAGTTTGGTCGGGCGAGATTTCGCCCTGATCGACCTCGGCGTCCTGAGCCCGCATTTCGAGGCCGGCAATTGGGAGCAGGCGGGAATCGACCAGCGCCTGCTGAGCGAAGCGGCTGCGGTGCATGGATTGGCGGCCAGCCGCTACGGGCAATATCGGCTTTCACGCACCCGTCCGGACAGTGCCGTCGAGCCCGATACCTTTCCATTGCACGTGGAATTGCATGTGCCCCACGGTACGCCGTTGGCGTCGCCCTTCGCCGGGGTTGTGCACAAGGATGCCAATGGCTTGCTGCGGCTCGACGGCCCGCAACTGAGCTTGCATGTGTGGGGCGTGTCTTCGTCGCTGCGTTCCGGGGCCTCGTTGACCAAAGGCCAGGCACTTGGCGAAGTGGCTGGCCCTTTGCGGGTCCAACTGTGCCGAGGTGAACATCTGGCGCCGCCGCTGTTCTGTGCGCCGTCGAGGGCGCCGGCTTGGCAGGCGCTTTGCCCCTCGCCCGCGGCGTTGCTGGGGCTGGCTTGCGATGCTGAGCCGGAAATCGACCCCGAGGCGCTCCTGGCCCGTCGCGATGCGAGTTTCGCCCGGTCGCAAAAACACTACTACGTCGACCCGCCACGCATCGAGCGCGGCTGGCGCAATCACCTGATCGACATGCAGGGCCGCTCCTATCTGGACATGCTCAACAACGTCGCGGTGTTGGGGCACGGCCATCCGCGCATGGCGGCGGTTGCGGCCCGGCAGTGGTCGCTGCTCAATACCAACTCGCGCTTTCACTATGCGGCGATCGCCGAGTTTTCCGAGCGCCTGCTGGCGCTGGCACCGCCGAACATGGACCGGGTGTTTCTGGTCAACAGCGGCACCGAGGCCAATGACCTGGCGATCCGCCTGGCCTGGGCCTACAGCGGCGGGCGCGACATGCTCAGCGTGCTGGAGGCCTATCACGGATGGTCGGTGGCGGCGGACGCGGTCTCGACGTCCATCGCCGACAACCCCCAGGCCCTCAGCAGCCGTCCAGACTGGGTGCACCCGGTGACAGCGCCGAACACTTATCGTGGTGAATTCCGCGGGGTCGACAGTGCGCCAGACTACGTGCGCAGCGTCGAGCACAACCTGGCGAAAATCGCCGAGCAGAAACGCCAGCTCGCCGGTTTCATTTGCGAGCCTGTGTATGGAAACGCCGGCGGCATCGCATTGCCGCCAGGCTACCTGAAGCAGGTGTATGCCATGGTGCGCGAGCGTGGCGGTGTCTGCATCGCCGACGAGGTGCAGGTTGGCTACGGGCGCATGGGCGAGTTTTTCTGGGGCTTCGAAGAGCAAGGCGTGGTGCCGGATATCATCACCATGGCCAAGGGCATGGGCAACGGCCAGCCACTGGGGGCAGTGATCACCCGCCGGGAGATCGCTGAGGCGCTGGAAGCCGAGGGGTATTTCTTCTCTTCCGCAGGCGGCAGTCCGGTCAGTTGCCAGATCGGCATGGCCGTGCTGGATGTCATGGAAGAAGAAAAGCTGTGGGAAAACGCCAGGGTGGTCGGAGGACATTTCAAGGCCCGCCTGGAGGCGTTGATCGACCGGTATCCGCTGGTCGGAGCGGTGCATGGTTCGGGGTTTTACCTGGGAGTGGAATTGATCCGCAACCGCGACACCCTCGAACCGGCCACTGAAGAAACAACGGCGCTGTGCGATCGTTTGCGCGAGCTGGGTATCTTCATGCAGCCGACCGGTGATTACCTCAACATCCTCAAGATCAAGCCGCCGATGGTCACCACGCGTCAAAGCGTGGATTTCTTCGTCGATATGCTGGCGAAGGTGTTGGAGGAGGGGTTGTAG	MPLATLVHRASLPSPQISAEQALVLLRSNYGLSGDLRPLGSHQDLNYRVDSDRGRFVLKICHGNYAVQELQAQHAALKALAGHGAVKVPAVMAASNGEDLLTLEVDGQTVHVRLLEYIEGQSLTQLKHLSRDLVTGLGRVCAEMDVALAAFDHPGLDRTLQWDARHAPALIDHLLPVIKDEQRRRLIAEAAQQAERRLQPLKESLPVQAIHMDITDDNVVWQRDALRQWQLQGVIDFGDLIRTWRITDLSVTCAALLHHADGDPFFILPAIRAYHRVNPLQREELMALWPLIVARAAVLVLSGEQQVAIDPGNEYSRDNLQHEWEIFDVAHSVPLELMEAAILTAAGHSLPPFANEGFAPLLPSLVGRDFALIDLGVLSPHFEAGNWEQAGIDQRLLSEAAAVHGLAASRYGQYRLSRTRPDSAVEPDTFPLHVELHVPHGTPLASPFAGVVHKDANGLLRLDGPQLSLHVWGVSSSLRSGASLTKGQALGEVAGPLRVQLCRGEHLAPPLFCAPSRAPAWQALCPSPAALLGLACDAEPEIDPEALLARRDASFARSQKHYYVDPPRIERGWRNHLIDMQGRSYLDMLNNVAVLGHGHPRMAAVAARQWSLLNTNSRFHYAAIAEFSERLLALAPPNMDRVFLVNSGTEANDLAIRLAWAYSGGRDMLSVLEAYHGWSVAADAVSTSIADNPQALSSRPDWVHPVTAPNTYRGEFRGVDSAPDYVRSVEHNLAKIAEQKRQLAGFICEPVYGNAGGIALPPGYLKQVYAMVRERGGVCIADEVQVGYGRMGEFFWGFEEQGVVPDIITMAKGMGNGQPLGAVITRREIAEALEAEGYFFSSAGGSPVSCQIGMAVLDVMEEEKLWENARVVGGHFKARLEALIDRYPLVGAVHGSGFYLGVELIRNRDTLEPATEETTALCDRLRELGIFMQPTGDYLNILKIKPPMVTTRQSVDFFVDMLAKVLEEGL				NA	NA	NA	NA	NA
D1-36_00298	879			N-carbamoyl-D-amino acid hydrolase	ATGAGCCGTATCGTTACCGTAGCCGCTACTCAAATGGCCTGTTCCTGGGATCTTGAAGCCAATATCGAGACCGCCGAAAAGCTCGTTCGCCAGGCCGCTGCCCAAGGCGCGCAGGTTATCCTCCTCCAGGAACTGTTCGAGACGCCCTACTTCTGCCAGAAGCCGAACCCGGATTACCTGCAGTTGGCAACGCCGGTCGATGAGAACATCGCCATCAAGCACTTCCAGAAACTTGCCGAGGAGCTGCAGGTCGTGTTGCCTATCAGTTTTTTTGAACTGGCCGGCCGGGCGCGCTTCAACAGTATTGCCATCATTGATGCCGATGGACGGAACCTGGGCGTCTACCGCAAGAGCCATATCCCGGACGGTCCTGGCTATCATGAAAAGTATTATTTCAATCCTGGCGACACCGGTTTCAAAGTATGGGATACCCGCTACGCAAAGATTGGCGTAGGCATTTGCTGGGATCAGTGGTTCCCGGAATGCGCCCGCAGCATGGCGCTGCAAGGCGCGGAGATCCTGCTGTATCCGACCGCTATCGGCAGCGAGCCGCACGACAAGACCATCTCGTCGCGCGATCACTGGCAACGCGTGCAACAGGGTCATGCGGGCGCCAACCTTATGCCGCTGATGGCCAGCAATCGCATCGGCAACGAAGAGCAGGATGGCTACGACATCACGTTCTACGGCTCGTCGTTCATTGCTGATCAGTTTGGCGAGAAGGTCCAGGAATTGGACGAAACCGAAGAAGGCGTGCTGGTGCATAGCTTCGACCTTGACGAGCTGGAACACATTCGCAGTGCCTGGGGCACTTTCCGTGATCGACGGCCGAACCTGTACGGCGCGATCAAAACCCTCGACGGCTCACTGGAGTCCTGA	MSRIVTVAATQMACSWDLEANIETAEKLVRQAAAQGAQVILLQELFETPYFCQKPNPDYLQLATPVDENIAIKHFQKLAEELQVVLPISFFELAGRARFNSIAIIDADGRNLGVYRKSHIPDGPGYHEKYYFNPGDTGFKVWDTRYAKIGVGICWDQWFPECARSMALQGAEILLYPTAIGSEPHDKTISSRDHWQRVQQGHAGANLMPLMASNRIGNEEQDGYDITFYGSSFIADQFGEKVQELDETEEGVLVHSFDLDELEHIRSAWGTFRDRRPNLYGAIKTLDGSLES	PGPT0008885_670	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
D1-36_00299	1107	aguA	COG2957	Agmatine deiminase	ATGACAACTTTGCACAGCACTCCGCGCGCGGACGGTTTCCACATGCCCGCCGAATGGGCGACTCAGACTCAGGTCTGGATGATCTGGCCCGAGCGCCCGGACAACTGGCGCCTGGGCGGCAAGCCGGCGCAGGCTGCCCATGTCGCGGTCGCCAAGGCCATCGCCCGTTTCGAGCCGGTGACCGTTGCGGTGTCCGCTGCTCAGTATGAAAACGCCCGGGCGCGCCTCGATGTGCCGAATATTCGTTTGGTGGAAATGTCCAGCGATGACGCCTGGGTCCGGGATACCGGCCCGACGTTCGTCGTCAATGACAACGGCGAAGTTCGCGGCGTCGATTGGGATTTCAACGCCTGGGGCGGGTTCGACGGTGGGCTGTACTCGCCGTGGAATCGCGATTCACAAGTGGCCGGCAAGATTCTCGAAATCGAGCGCAGCCCGCGCTATCGCACCGAAGGTTTTGTACTCGAAGGCGGTTCGATCCACGTCGATGGCGAAGGCACGTTGATCACCACCGAAGAATGCCTGCTCAACCGCAATCGCAACCCGCACATGAGCCGCGACGACATCGAGGCAGTGCTCAGCGCCCAGTTGGCGGTAGACAAGATCATCTGGCTGCCGGACGGCCTGTTCAATGATGAAACCGATGGCCACGTGGATAACTTTTGCTGCTACGTGCGCCCTGGTGAAGTGCTGCTCGCCTGGACCGACGATCCGCAGGACCCCAATCATGCCCGCTGCCATGGGGCGATGGAGGTGCTGCGAAACAGCACCGACGCCAAGGGGCGCCCGTTCACAGTGCATAAAATGCCGATCCCTGGGCCGTTGTACGCCACCGAGGAAGAATGCTCGGGCGTTGACGCGGTGGAAGGATCCCAGGAGCGCAATCCGACTGTGCGCCTGGCCGGTTCCTACGTGAACTTCCTGATCGTCAACGGCGGCATCATTGCCCCGAGTTTCGATGACCCGCTGGACGGTCCGGCCAAGGACCTGCTGCAAAGCCTGTTTCCGGAGCATGAAGTGGTCATGGTACCGGGTCGGGAACTGTTACTGGGAGGCGGAAACATCCATTGCCTTACCCAACAGCAGCCGGCGCCGCGCATAAAATGA	MTTLHSTPRADGFHMPAEWATQTQVWMIWPERPDNWRLGGKPAQAAHVAVAKAIARFEPVTVAVSAAQYENARARLDVPNIRLVEMSSDDAWVRDTGPTFVVNDNGEVRGVDWDFNAWGGFDGGLYSPWNRDSQVAGKILEIERSPRYRTEGFVLEGGSIHVDGEGTLITTEECLLNRNRNPHMSRDDIEAVLSAQLAVDKIIWLPDGLFNDETDGHVDNFCCYVRPGEVLLAWTDDPQDPNHARCHGAMEVLRNSTDAKGRPFTVHKMPIPGPLYATEEECSGVDAVEGSQERNPTVRLAGSYVNFLIVNGGIIAPSFDDPLDGPAKDLLQSLFPEHEVVMVPGRELLLGGGNIHCLTQQQPAPRIK				NA	NA	NA	NA	NA
D1-36_00300	201			hypothetical protein	ATGAACATGATTAGCGAGCGCACATGCCATCCTTTGGCTGTAAATGGTGAGTCGCTTCAAGCCGTGGCGCAGTGGTTGAAATCCAACGGAACGCGTCAGATCAGGGAACCTGATCCGCGCCGGATGATCATGGAACGCTACCCCGCTGGCCTGTTCAGCGAGGCTGAGCTGGAAGCGTTGTGGGATGTGATGCAAGGATAG	MNMISERTCHPLAVNGESLQAVAQWLKSNGTRQIREPDPRRMIMERYPAGLFSEAELEALWDVMQG				NA	NA	NA	NA	NA
D1-36_00301	1287	oprD_1		Porin D	ATGTTGAACAAGCGCTTTACTTTGATAGCACTGGGGATATTGAGCAGCACACAAGCCATGGCCAACGACCAGGCTGAATCCAAGGGGTTCGTTGAAGACAGCAGCCTGAAAGTGCTGTTGCGCAACGCCTACATCAGTCGCGACTACAAGGACGGCAACCGGGACAAGGCCGAATGGGGCCAAGCGGCCATCGGTACGTTCTCGTCCGGCTTCACCCAAGGCACCGTGGGCGTAGGCGTGGACGCCTTCGGCCTGTACGCACTGCGCCTGGACGGCGGCAAGGGGCGCACCGGTGCGCAAGGCATCGACTTTTTCAAGAAGGGTGACAGTGGCAACGCCGCCGACGACCTGTCCAAGTTCGGTGCCGCGGTGAAGTTCCGGGTTTCCAACACGGTGCTGGCCTACGGTGACCAGATGCCGGCCCTGCCGGTGTTGAACTATGACAACTCGCGCCTGCTGCCGGAAAGCTACACCGGCACGCTGATCACCTCCAAGGAAATCAAAGGCCTTGAACTGAACGCAGGCCGCTTCACTGCCGAGTCGCGCAAGAGCGCCGAAGGTCGTGACAGTGGTGGTCTGAAGTCGATCAACGTGTTGGGCGGCAGCTATCAGTTCACCGAGCAGTTCAAGGCTTCGCTCTACGCCTCGGATGTCGAAGACGTCTTGAAGAAGCAATACGTGAATGCCAACTACGTGTTCCCATTGGCCAAGGATCAGTCCTTGACGCTGGACTTCAACGGTTATCGCACCAAGCTGGACAACAGCTACGTTCGCGAAAACAACGTCACCGGGGACGACAATAAGATCTGGAGCCTGGCGGCGACCTTCGCCACCGGCCCGCACAGCTTCACGCTCGCCCATCAGCGCAGCACCGGCGACAGCAACCTCGGCTACGCCTACGGTGGCTACCAGCGTGACCAGAACCGTGTCGGTGATGGCGGCAATACCATCTACCTGGCCAACTCGTACTGGTCGGACTTCAACGCCGAAGACGAGCGCAGCTGGCAATTGGGCTATGGCCTGGATTTCACCACCTTCGGTGTACCGGGCCTGACTTATAACGTGGCCTATGTGCGTGGCGATAACATCACCACCTCCACCAGCGAAGGCGGTACCGAGCGCGAGATCTTCAACCAGTTCAAGTACGTGGTCCAGGGCGGACCGGCCAAAGACTTGAGCGTGCGGTTGCGCAGCTCGTTCCTGCGCGTGTCGCAGAAGTCCAGTGAGTACAACGTCAGCGGTAATGAACTGCGGGTGTTCGTGGATTATCCGATCAATGTCTTTTGA	MLNKRFTLIALGILSSTQAMANDQAESKGFVEDSSLKVLLRNAYISRDYKDGNRDKAEWGQAAIGTFSSGFTQGTVGVGVDAFGLYALRLDGGKGRTGAQGIDFFKKGDSGNAADDLSKFGAAVKFRVSNTVLAYGDQMPALPVLNYDNSRLLPESYTGTLITSKEIKGLELNAGRFTAESRKSAEGRDSGGLKSINVLGGSYQFTEQFKASLYASDVEDVLKKQYVNANYVFPLAKDQSLTLDFNGYRTKLDNSYVRENNVTGDDNKIWSLAATFATGPHSFTLAHQRSTGDSNLGYAYGGYQRDQNRVGDGGNTIYLANSYWSDFNAEDERSWQLGYGLDFTTFGVPGLTYNVAYVRGDNITTSTSEGGTEREIFNQFKYVVQGGPAKDLSVRLRSSFLRVSQKSSEYNVSGNELRVFVDYPINVF	PGPT0028135_220	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028135-oprD-K18093	NA	NA
D1-36_00302	759			hypothetical protein	ATGACGACCCTGGCGTTCAAGACCCTCGACCCCATCGCCTGGCTGGCCCAACAGCCCCTGCGGGAAAACGAACACCTTTACCTGATCATTAGCGCGGCGAGCGATACGGACGCCCTGGGGACCTATCGCCTGAGCGGACCTAGCCATCCGCTCCTGCCTATCTGGAGCGAAACGCCCTATTCCACCTGGCATGCGGTAATGCCCTACGTCACGAAACTCGCCCCCGACTCAACGTTCCTGCCATGGATTACCGAAACCGACGCCCTCGATTGGGGCTGGCTTGCTGTCTCCCGTTGTGAACCGGAGGAGGTGCTGGGGCATCTGCGCAGCCTGACGCAAGTGAAAATGCCGAAAGGTCGCGAGGTGTTTTTCCGGTTTTGGGATGGACGTTTCATCTATCCGATCCTTGAAGGCCTGGGAGACGACGCCCAAGCCTTGCTACCGGTGTTCGAACGGTATTTGATCAATGGCAAACCGCTGGAAGCAAGCCCGAGGAAGGTGCCGATGGTCCAGGATTGGCCATGGTGGGAAGTACCGCAAGGGTTACTCGATGCTTTAGCCGAGCAGGACCAGTCTGCGCCGATCGACAATCTGATGCAGTGGCTCGAAGAAGAACATCCTGATATCCATTGCGCATGGCCCAGGAGTGTTCTCAAGCGCAAGGTGAGCTATTTTTCAAAGCTCATGGGCGCTGAAGCCAATCCACAGCAAACCCTGCTTGATGTCCTGCGCCTTGAACAGAAAACGGTCTTGGAATAA	MTTLAFKTLDPIAWLAQQPLRENEHLYLIISAASDTDALGTYRLSGPSHPLLPIWSETPYSTWHAVMPYVTKLAPDSTFLPWITETDALDWGWLAVSRCEPEEVLGHLRSLTQVKMPKGREVFFRFWDGRFIYPILEGLGDDAQALLPVFERYLINGKPLEASPRKVPMVQDWPWWEVPQGLLDALAEQDQSAPIDNLMQWLEEEHPDIHCAWPRSVLKRKVSYFSKLMGAEANPQQTLLDVLRLEQKTVLE				NA	NA	NA	NA	NA
D1-36_00303	747			hypothetical protein	ATGATCGTTTTGAACAGGGAAGTGGGCGAAGCGCTAAGACGTGACAAATACGTCAACGTCCGCGGTGGAGACTTCAATCTCTACGGTCATTTCGGCGATTTTGTCCGGCTGACCAAAAGCTGGGAAAATATGGAGCCCGACAGCTATTACGGCCAGACCGAGTCAGGCATGCGTTTTCGCCGCTACAGCGATTTCGAATACAACCCCACGACTCGTGAACTCAAGCAGCTCGAACACCGAGCCTATGTCCAGTCCAAGGCCAACAACAGCTACGTGGGCGGATTGGAGCGGCACTTCCAGGATTTCTCCAATGAAGTGATCAATTCTCCGGTGATGCGCAGCCTGATCGACACAGACTTCGACGTGTACAAAAACGTCCTGCCCCAGGAATTGCATGACGAAATCTGGCAATGCCAGATCCATCAGATCCGCATCGAGATCAAGCCGGGCAAGCAATTGGAAATCACCCCGGAAGGCATCCATTGCGACGGCTATCCGTTCAGCGGCGTCCATTTCTGGGGCCGAAATAACGTGTCCGGTGCAGAAAGCCGTCTCTACAGCCCTCAGGAAGAACAACTGGCGGCAACCACTTACGAGGATATCCTCGATACGACATTCTTCCTCGATCGGGACATGCGCCATTATGTGACCCCGGCGCGCAATATCCACAGCCATGAAATGGCGTTCAGGCAGATTCTGGCGATCTCCTTCTCGCGGCCCGGGACCGCTTTTGACATTGTTCGCTGA	MIVLNREVGEALRRDKYVNVRGGDFNLYGHFGDFVRLTKSWENMEPDSYYGQTESGMRFRRYSDFEYNPTTRELKQLEHRAYVQSKANNSYVGGLERHFQDFSNEVINSPVMRSLIDTDFDVYKNVLPQELHDEIWQCQIHQIRIEIKPGKQLEITPEGIHCDGYPFSGVHFWGRNNVSGAESRLYSPQEEQLAATTYEDILDTTFFLDRDMRHYVTPARNIHSHEMAFRQILAISFSRPGTAFDIVR				NA	NA	NA	NA	NA
D1-36_00304	438			hypothetical protein	ATGGACGATTCGGTGCAGCAAGTCCTGTTGCGCCGAGCCATGGTCAGGGACGCGGAGCGACTGGAGCAGTTTTTCCGGGGTTTTGCCGAGGTGTCATTCTGCGAGTGGCAGGATGCGCGGTTCCTGCGCGGTGTGTTGTTGCAGGACACCACCACCGCCTACATGGCATTCGATGCGATGGGTGAAGTCGTCGGCGCGGTCATCGGCGGCATGCTGGGCACTCGAGGCACTATCAATCACCTGGCGGTCAGCCCGAGGCATCGTACCCAAGGCCTGGGCCAGCGTCTGGTGGAAGCGGCATCGGCGGATATGAAACGCGTGGGTGTACTGCGCATGTTTCTGTTCGTCGACGATGCCAACCTGGCTGGCAAGCGCTTCTGGGCCGCCCAGGGGTTCTGCGAGCCTCAGGGTGAAATCACTTTCGAGAGGGATTTATGA	MDDSVQQVLLRRAMVRDAERLEQFFRGFAEVSFCEWQDARFLRGVLLQDTTTAYMAFDAMGEVVGAVIGGMLGTRGTINHLAVSPRHRTQGLGQRLVEAASADMKRVGVLRMFLFVDDANLAGKRFWAAQGFCEPQGEITFERDL				NA	NA	NA	NA	NA
D1-36_00305	714	ygaZ	COG1296	Inner membrane protein YgaZ	ATGAACAAGACTTCCAGCCAGCCGCTGGTGGTCGAACCACAAGCCTCGCGAACCTTCGCTGAAGCCAGTCCGGTAGTTGCGGGTTATTTCACGGTTTCGTTTGTGTTCGGCCTGATGGCGGTGAATGCTGGGCTGCCATTGTGGCTGCCAGTTGCGATGTGCCTGTTCGTCTACGCAGGCGCCTCGCAGTTCGCTGCGCTGGCGCTGATTTCCAGCGGTGCGTCGTTGACCACGATCGTGCTCACCACGTTCCTGATCAATGCGCGCCACATGCTCATGTCCGTCTATATGGCCAAGGCATTACGGGCGTTGGGGCTCAGTCGGTTCGAGCGCTGGTGCTACGCGGCGGGGCTTACGGACGAGTCGTTCGCCTTCCACAGCGTCAAGCTGGGTAGCGGGGCCCCGGTCAGCTTGCGCTACCTGATTGGCTTCAACCTTTTTTGCCATGCGTCCTGGGTATTGGGCGGCTTGTTGGGGGCCATCTGCGCGCAATATGCAGCGCACCTGATCAAATATCAGCTCGATTACGCCCTGACAGCCATGATGCTCTACGTCCTGGTTTCGCTGTGCAATACGCGCAACAAACTGATTGCGGCTCTGGCGGCGGTCGTCTGCATGGGCGTGCTCAGCCTGGCGGGCAATTCACCGTTCAACGTATTCATCGCCACGTTTGTTGGCTGCGGGGTGGGCGTATGCCTGACCAAACGTTCCTGA	MNKTSSQPLVVEPQASRTFAEASPVVAGYFTVSFVFGLMAVNAGLPLWLPVAMCLFVYAGASQFAALALISSGASLTTIVLTTFLINARHMLMSVYMAKALRALGLSRFERWCYAAGLTDESFAFHSVKLGSGAPVSLRYLIGFNLFCHASWVLGGLLGAICAQYAAHLIKYQLDYALTAMMLYVLVSLCNTRNKLIAALAAVVCMGVLSLAGNSPFNVFIATFVGCGVGVCLTKRS				NA	NA	NA	NA	NA
D1-36_00306	318			hypothetical protein	ATGCCTGACCAAACGTTCCTGATCCTTGTCGTTGTGTTGATGATGGCCGTGACCTTCCTGCCGCGGGCATTGCCATTGCAAGTCAATACGGAAAACTGGCCACCCTTCGTCGCCCGCGCGCTGGAATACCTGCCGGTAGCGATTGTCGCCGCCATCAGCCTGACTCCGTTGTTGATCAAGGATCAACAGATACAAATCGACCGCCCTGAGTTCTATGCTGCGATTCCGACACTGCTATGTGCGTATTTCAGCCGCAACCTGTTTCTCAGTGTGGCGGTGGGCACGGCGTCGTATATCGCGCTCGGTTCGTTCCTGTAG	MPDQTFLILVVVLMMAVTFLPRALPLQVNTENWPPFVARALEYLPVAIVAAISLTPLLIKDQQIQIDRPEFYAAIPTLLCAYFSRNLFLSVAVGTASYIALGSFL				NA	NA	NA	NA	NA
D1-36_00307	924	hdfR_1		HTH-type transcriptional regulator HdfR	ATGGATAGCAGAACCTTACGCAATCTCATGCGCATCATGCAGACCGGCTCGTTGTCGGCCGCCGCGGAACAGTCGTGCCTTACGGTGCAGGCATTGGCGGCGCAATTGAACAAGGTTGAGGAACAGTTCGGGTTCCGGTTGTTTCGTCGCTCGAACAAAGGCCTGACATTGACGACCCAAGGCTCTGAGTTGACGCCTTTCATGGATCAGGTTTTGGCGGCCACTCGGCAACTCGAAGAAAAGGTCGCGGCGCTCAAGGCCCCCAGGCAACGGAGCCTTAAAGTGGCGCTCAACACGACGCTTACGCCCGATTTCAATCGACGCATGATCGATCGCCTGATCGCGGTTTTTCCTGAATACCAGCTGGAGTTCAGTTATGCCGAGTCGATGGAGAACCTGAGCAAGCTGAAGAACGAGCATTTCGACCTGGCGATCCTGATCGGCCAACAAAGCGGTTTCACCAGTATCCCGATGCCGGATGTGCAAGTGCAGGTGGTCGGGGCCCATTGCGGTAACCACGATGACTCCCTTGGCTTGCTCGTCGACAAATTCCAGGTGCGCCCTGCGCAGGAATGCCCGTATTCCCACAGCTTCTTGCGTTTTCTCGACGCGGGTCTCGGCGAATACGGACCCAGCCAGAGGATGGTGTATTCCTGCAGCGAAACGCTGACCTTGTCGCTGATCACCCAGCTCGACGGCCTGGGGCTTGTCTCCAGGGACGCGGCGATGCGCAACGGCTTGGCCATCTTCCCGGATTTCGAAGACTTCCTGGAAGTGCGCCTGGCGGTTAACAATCCCGAGCTTTGCGACCAGGCGCTGCACGATGTGGTAGACCTGACGCTACAGGAACGAACCGAGCGCGATATACGACGCCGTGCCCACCGCCACACTGAGAAACAGGTTGCGGCTGAAATACGCACATAG	MDSRTLRNLMRIMQTGSLSAAAEQSCLTVQALAAQLNKVEEQFGFRLFRRSNKGLTLTTQGSELTPFMDQVLAATRQLEEKVAALKAPRQRSLKVALNTTLTPDFNRRMIDRLIAVFPEYQLEFSYAESMENLSKLKNEHFDLAILIGQQSGFTSIPMPDVQVQVVGAHCGNHDDSLGLLVDKFQVRPAQECPYSHSFLRFLDAGLGEYGPSQRMVYSCSETLTLSLITQLDGLGLVSRDAAMRNGLAIFPDFEDFLEVRLAVNNPELCDQALHDVVDLTLQERTERDIRRRAHRHTEKQVAAEIRT				NA	NA	NA	NA	NA
D1-36_00308	411			hypothetical protein	ATGGCGACCTCTTCGATTACCTTGAGTACCCAGCAACAATTGGACTCCCCGGATGCGGGTCGAGTCGCTTTGAAGTTTTTCTTCAATCTGATGGAGTTGTGGGGCTGCAGCGTCGAGCAGCAGCGCACCTTGTTGGGAAAAGTAGGAAACACGACCTTTTACAAGTACAAGCAGTTACCCGAAAACGTCAGGCTGCCGCGAGACACCCTTGAGCGCATCTCATACCTGATGGGTATCCATAAAGCCCTGAGCATCATTTTCAGCAACAGCCGCGACCGTGTGTATCAATGGGTCAGCAGCCCCAATGCTGCCGCGCCGTTCAACGGTCAGTCAGCGCTGTCGTACATGTTGGCCGGGCGGGTGGTGGATATTGCCGATGTGCGGCGGTACCTCGACGGAGTACGTGGTTGA	MATSSITLSTQQQLDSPDAGRVALKFFFNLMELWGCSVEQQRTLLGKVGNTTFYKYKQLPENVRLPRDTLERISYLMGIHKALSIIFSNSRDRVYQWVSSPNAAAPFNGQSALSYMLAGRVVDIADVRRYLDGVRG				NA	NA	NA	NA	NA
D1-36_00309	678			hypothetical protein	ATGGCGCCGCCTCTGGCGGAACCGCAATGGAAACGGGCCTATCGGATCGTCAATAGCAGTTTCCCGCCGATCACCCTGTTTGAAGATGTGCTCGATCCGCAAGACCTCGCCACCGCCTATGCGTTAGAAGCTTTGACCAATGATCGGCTCATGGAAGAAGCCGGCGTGCTCTCCAGGGTTCGTCCTGAAGATCGCGTTTCGGGTCCTGGTTCGTCACCCGTGATGGCGGCATTTACCCATATCGGCAAAAGCAGCCGTTTCAGCGATGGCACGTTTGGCGTCTATTACGCTGCCAGCAGCCAGGAAGCGGCCATTGCCGAGACGTGTTACCACCAGGCTCGGTTCTTGGGGGCGACCAACGAGCCGGACCTGGAATTGACCATGCGTACCTATGTCAACCAGGTCGTCAGACCCCTGCACGACATCCGCCACGATTATCCGCATCTGCACAATCCAGACCCCACGGCCTATGGCCCGTCCCAGGTATTTGCCCGGGAGTTGCGCGCAACCTTGTCCTGGGGGCTTTTGTATAACAGCGTCCGCCTGCCTGGTCACGAATGCATCGCCGCGTTCCGGCCGCCGGCGGTGTCGATTCCGGTGCAGGGCAAGCATATTCGTTATGTCTGGAGCGCCCAGAAACGGGAAATATCGTTTGTGTTTGAGGTAAATCAGGTGTGA	MAPPLAEPQWKRAYRIVNSSFPPITLFEDVLDPQDLATAYALEALTNDRLMEEAGVLSRVRPEDRVSGPGSSPVMAAFTHIGKSSRFSDGTFGVYYAASSQEAAIAETCYHQARFLGATNEPDLELTMRTYVNQVVRPLHDIRHDYPHLHNPDPTAYGPSQVFARELRATLSWGLLYNSVRLPGHECIAAFRPPAVSIPVQGKHIRYVWSAQKREISFVFEVNQV				NA	NA	NA	NA	NA
D1-36_00310	1608			hypothetical protein	ATGAAGATCCGCACCAAAGTCATAGGCTCGGGGTTGGTCAGTCTTTCCTTTGCGTTGCTGCTCGGCGGGATCGGATTGTGGGGCTATCACTCCATGACCGAGGCCCTGGTGCAGAACGAGACCAGTATTTCGGCCATGCGCAAGCACATGGAGGCGGACATGATGCACGACGCCATTCGTGCCGATGTGTTGGCCGCTCTGTTGGTGACGCCAGGGGATGCAAAGGGCGCGAAGGAGGTGCTGGAGGGGTTCGATGAGCATACGCAGCGGATGCGCAAGGTTATCGCCGAGAATGCCGAGGCGAAGTTGCCAGGGGATGTCTCCAGGGCAATTGGCGAACTCAAACCGCAAGTCGAAACATACATCGATAAAGCCAAGCAGATCATCGGCAAGGCGCTGGGCGGCGCCCTGGATGCCCACGCGCTGCGGGCAGAATTCGACGGCGCATTCTCAGCATTGGAAGAACGCAACGAGGCGGTCAGCGAACTGATCGAAAACCAGGCGCAATCATCCCGCGAACATCAGGACAAGAGTATCCAGACCTCGGAGCGCTGGCTGTTCGTGACTTTGCTGGCGACCTGTGTCGCCCTGGCGCTGTTGTCCTGGAGCCTGCTCCGGGCCGTGCTCACCCCACTGAACAAGATCATCCTCAATACCCAGGCGATTTCCCAAGGCGATCTGCAGCGTTCGATGGGAACACAAAGCCAGGATGAACTCGGTCAGCTGCAGGGTGTGATCGAACAGATGCAAATCAATCTGCGGCAGATGATCGCCACCATTCGCGGTCAGAGCGATGAGTTGCATGGCACGTCACGGAATCTGGGCGATACGGCGCGGCAGATTGTCTCCAGCGCCGACCAGCAGGCCCAGAGCGCCACCAGCATGGCGGCGAGCATGGAGCAAATGATGGCGAACATAAGCCAGATCCATCAGCACGCCGACAGTGCGCGGACCATTTCGGCGCAGTCAGAACAACTGGCGAGCAGCGGTGGGCAGGTGATCCTTGGCGTGGTGGAAGGGATGAATCGGATCGCCGAAGTGGTCGCCCAGTCGTCCAGCAAAATCACCGCGCTGGATGCATCGTCCGAGGACATCCATTCCATTATCCAGGTGATCAAGAGCATCGCCGAACAGACCAATCTGCTGGCCCTCAACGCAGCCATCGAGGCCGCTCGCGCCGGCGAGGCGGGCCGCGGCTTTGCGGTGGTGGCCGACGAGGTACGCAACCTGGCGGCGCGCACGACGCAATCCACCCAGGAAATCACCGCGATGATCGAGCGCATCCAATCAAGCGCACGAGATGCGGTGGCGAACATGCAGGCCTGTGTCAGTCGAGTGGACGAAGGCGTGAACCTGGCGCAGCAGGCCGGGGTTTCTATCAGTGAAATCCGCACAGGCGCCCGGCATGCCGCCGAAGTGGTGGAGGAAATTTCCCAGACCATCGCCGAGCAATCAAAAGCCAGCGATGAGATGGCCCAACGGGTGGAGTCGATCGCCGAGCAGTCTAGGGAAAACACCCGCTCGATCCACGATTTGACGAAAACGGCAGATCATTTGAACGATGCCGCAGGCTCGATGCAGGCTTCGGTGCAGCAGTTCAAGATATGA	MKIRTKVIGSGLVSLSFALLLGGIGLWGYHSMTEALVQNETSISAMRKHMEADMMHDAIRADVLAALLVTPGDAKGAKEVLEGFDEHTQRMRKVIAENAEAKLPGDVSRAIGELKPQVETYIDKAKQIIGKALGGALDAHALRAEFDGAFSALEERNEAVSELIENQAQSSREHQDKSIQTSERWLFVTLLATCVALALLSWSLLRAVLTPLNKIILNTQAISQGDLQRSMGTQSQDELGQLQGVIEQMQINLRQMIATIRGQSDELHGTSRNLGDTARQIVSSADQQAQSATSMAASMEQMMANISQIHQHADSARTISAQSEQLASSGGQVILGVVEGMNRIAEVVAQSSSKITALDASSEDIHSIIQVIKSIAEQTNLLALNAAIEAARAGEAGRGFAVVADEVRNLAARTTQSTQEITAMIERIQSSARDAVANMQACVSRVDEGVNLAQQAGVSISEIRTGARHAAEVVEEISQTIAEQSKASDEMAQRVESIAEQSRENTRSIHDLTKTADHLNDAAGSMQASVQQFKI	PGPT0015710_22460	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_00311	666			hypothetical protein	ATGGGGCAGCATTGGCTTGAGCGGATAAAAGGGGCTACTTGCAGCCCAGCGGGAGCAATCTCCCTCGCCACGGGTTTGGGTCAGACCAACCGCGCACCGCCATCGATGTTCAGCGTGGCGCCGTTCATGAACGTGTTAGTCATCAGGAAAACCGTAGCCGCGCCTGCTTCAGCGGCAGTGCCCACGCGATGCAGCGGCAGCACCTGCTCCCATGCGCGAACGTACGCATCGCGCCCCTCACCCAAGGCTTTGCTGAAGATAGGCGTATCGATCGGGCCTGGAGACAGCGTGCGCCAGCGATGCGGTGGCTGCGGTGCTCGCCGCTGGCGGTGGCATCGGCATCTCACCCACTTATGTTGCCGCACCCTATGTCGCCCGGGGAGAACTGACGCCATTGTTTCCACAATTTGCCGTCGACCGTTCCTCCATTACCGCTTTGTGGCCGGAGAGCCGTCGGGGAAGCCCGAACGTCAAGGCGTTCGTGGGTTTTCTGAACGAACTGTTTCCTACCCCTACGCCATGGGACGAGATCGTCGCGAAGGGCGCCCTGACCTTTTCCTGAAATGTCTGCTTCCGGCTCACTGCGGGAAAGAAGGACGGCTTCGCAGCCCAACGGGAGCAAGCTCTCTCACCACCGGCTCATCCAATCATTTCTCCCGCCGATAG	MGQHWLERIKGATCSPAGAISLATGLGQTNRAPPSMFSVAPFMNVLVIRKTVAAPASAAVPTRCSGSTCSHARTYASRPSPKALLKIGVSIGPGDSVRQRCGGCGARRWRWHRHLTHLCCRTLCRPGRTDAIVSTICRRPFLHYRFVAGEPSGKPERQGVRGFSERTVSYPYAMGRDRREGRPDLFLKCLLPAHCGKEGRLRSPTGASSLTTGSSNHFSRR				NA	NA	NA	NA	NA
D1-36_00312	279			hypothetical protein	ATGACCCATCCCAAAGACCTCAAAACCCCAGGCCTAACCCCCTTCTCCTACCACTCCGACCGCCCGCTATTCCGCGTCAACAACGGCATCCCCATTGACGAAGCCCTATCCCACGCTTCCGACCTGCTCCACGTCGCCAAAGTCCTCGCCGAGGAAGCGGCGATGATTCGCGGCACGGATCGGTATGCCTGGGCTTCGTATTATTTGCAGGATATGAGCAAGGCCGTCATTGATGACGTGGTGAAGGTGCTGGAGGCGCCGGGGAGTCATCCGGTTTAA	MTHPKDLKTPGLTPFSYHSDRPLFRVNNGIPIDEALSHASDLLHVAKVLAEEAAMIRGTDRYAWASYYLQDMSKAVIDDVVKVLEAPGSHPV				NA	NA	NA	NA	NA
D1-36_00313	240	relB	COG3077	Antitoxin RelB	ATGGCTTCCATCAACGTTCGTATCGACGACGACCTCAAGGCGCGTGCATACCGCGAGCTGGAAAAGCTCGGCGTCACCCCTTCTGAGCTGATGCGCCAAGCTCTGCAATACGTAGCGGAGCGCGGCCAGTTGCCGTTCAAGCCCGTCCTGATGACCGAGGACGATGAAGCCCTGATCGCAACGGTGCGCGAGCGACTCGCAGCCCCGCAGCGGGTTAAGGTTTCGCTAGATGACCTATAA	MASINVRIDDDLKARAYRELEKLGVTPSELMRQALQYVAERGQLPFKPVLMTEDDEALIATVRERLAAPQRVKVSLDDL	PGPT0027435_272	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-RelE|StbE-RelB|StbD_TOXIN-ANTITOXIN_SYSTEM,PGPT0027435-antitoxin_relB|pasA-K18918	NA	NA
D1-36_00314	291	relE	COG2026	mRNA interferase toxin RelE	ATGACCTATAACCTCGAATTCGATGCACGGGCGCTAAAGGAATGGCAAAAGCTAGGGAATACCGTCCGTGAGCAGCTCAAAAAGAAGCTCACGACGATCCTGGCCAATCCGCGCATCGAAGCAAACCGACTGCATGCCTTTCCTGATTGCTACAAGATTAAGCTGCGGAGCAGCGGTTATCGGCTGGTTTATCAGGTGATTGATCATGAGGTCGTGGTGTTTGTCGTGGCCGTCGAGAAACGTGAACGAGATCAGGTTTATCGGAAAGCGGCTGAGCGATTAGGTGGTTGA	MTYNLEFDARALKEWQKLGNTVREQLKKKLTTILANPRIEANRLHAFPDCYKIKLRSSGYRLVYQVIDHEVVVFVVAVEKRERDQVYRKAAERLGG	PGPT0027425_486	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-RelE|StbE-RelB|StbD_TOXIN-ANTITOXIN_SYSTEM,PGPT0027425-toxin_relE_2|stbE|pasB-K06218	NA	NA
D1-36_00315	666			hypothetical protein	ATGAAGGGCCATGGCATCGAGCATGGAAAGCACTGTTTCCATTTGAGTTGGCAAGAGGTGGTTGCTCACGACCACGCAGGTGAGAAACATATCGCTGACGTGAAGCGCCCCGACGGCACAGTAATTGAGCTTCATAACTCACCGATGAGCATCGAAGAAATGTTCAGTCGAGAGCAGTTCTATGGGGAGAAAATGATTTGGATTGTGAACGGAGAAAAATTCAAGGAGTACATTCAGATAGGTGATGCTTTACCACCCCCCGATCATCCCGCGATACAAGACTTTGAGTTGGCTTTACCGATCTACTCCCAATGGAACAAATGGCGCCAGCCCCCCTGTTTCGATGGCAGCGGTCTTATGTACTTTCGTCGTAGCGATCTTGCAGCCAATGCTGAGAGAGGAGCTTTACATCTTGGGTATCCAGCTCGTGAACTAGGCGACCTGATGAGCGGCACTTACGAAGGGCACCACTGCTGGGCCTGGAAGAATGCGCGCGAAGTCTGGTTGAGCGCTCGCCACACTGTGATATTCGATTTCGGGACGGAGCAAATGTGGGCGATTACTCGGTATGGAGCAGATGGACGCTTGAGTCTCCAGCGAACATCTCGAACTGGCCTGATACGGTCGCTTCTGTCAGGAGCAGCACCAGCTATCGGAGGCCACTGA	MKGHGIEHGKHCFHLSWQEVVAHDHAGEKHIADVKRPDGTVIELHNSPMSIEEMFSREQFYGEKMIWIVNGEKFKEYIQIGDALPPPDHPAIQDFELALPIYSQWNKWRQPPCFDGSGLMYFRRSDLAANAERGALHLGYPARELGDLMSGTYEGHHCWAWKNAREVWLSARHTVIFDFGTEQMWAITRYGADGRLSLQRTSRTGLIRSLLSGAAPAIGGH				NA	NA	NA	NA	NA
D1-36_00316	903			hypothetical protein	ATGGCCGGAAAACAAATAAAATCAAATGAGCAGAAACGACAGACTCGAGAATTGTCATTTCAAGTAGCATGCCTGAATATTGTACTGCAACCTCACTCCAAGCAAAAATATGTCAACCTTTTTGAGACTATATACTCATCCAAGCTTGACTCAAAAGTTAGAGGTGATGACGCCCTAATGCTTGGGTCTTTCTATAAAAGCGAGAGCTCTAAGGAAGCTTACGTAGGAGAGTTTTATAAATTCCTGAAGCTCGATGAAGCAGAAGACTGGTTCAATACATTAAGCATGGATTCCGCCTCAAAAAAAGATGTTAAGGGAATAATTATACCAAGCCATCTGAAGCCACATTTTAAAAAAATCCCATACGTGTTTTTTCCTGATCAACACAAGCTGTTTTTCATTACTCAAAAAGCCAAGTTAAGCCTCTCTCCAAATATGATCATGAGATTTTTTGAAAACATCTCTGAGCGAGGTGATTTGGCCGACTTTGGCGAATTAAAAGTTACTGTTGAGCCAAAGCTGGGCTCAACGAAGAACCTTTTTTCCCTTCCTCGAATCTCACATCTTGAGCTTGAAATATATAAGCCCAACCCTGATGACCACAAAAATCTTGATGGGGACGTGTTGGATAGGCTCAAGAGAATGAACGCAAAAAAAGAAGTACTCCAATATTTTGAGGCCGGGTCGGAAGGGCTGAAGCCTGACCAACAATTGAAGGCCCTGGCAAAAGTCGCCGCCTCGAATGGAGAGGTCAATATCAAAGGACGCAACCAGCAGGGGGAAGTTGTCTTCTTGTCTTCTAAGGACTTCCCCATGAAAGTTCAGACCAGCTATAATTCTGAAATTCAATCTGAACAAAATGCTTTAGTCGAAAAAGCCGAAGAAATTCGCAGGGAAATGTAA	MAGKQIKSNEQKRQTRELSFQVACLNIVLQPHSKQKYVNLFETIYSSKLDSKVRGDDALMLGSFYKSESSKEAYVGEFYKFLKLDEAEDWFNTLSMDSASKKDVKGIIIPSHLKPHFKKIPYVFFPDQHKLFFITQKAKLSLSPNMIMRFFENISERGDLADFGELKVTVEPKLGSTKNLFSLPRISHLELEIYKPNPDDHKNLDGDVLDRLKRMNAKKEVLQYFEAGSEGLKPDQQLKALAKVAASNGEVNIKGRNQQGEVVFLSSKDFPMKVQTSYNSEIQSEQNALVEKAEEIRREM				NA	NA	NA	NA	NA
D1-36_00317	585			hypothetical protein	ATGTTCAAAGAGTTGATAGACTCATATAAAGGAACAATTGAATTATGGGCTGAGTTCTGGAGCCTGTACGGTGGTATTCGTTCTCTTGTGGTGTCTATTTACTTTGGCGGCGCGATTATTATAACCATGCTTAGCTTCGGGCTTTGGACAAAGCCAGGATGGTGGGACATAGTCATAGGAGCTATCCCCACATTACTTGGCTTTACTCTCGCTGGTCTGGCTGTTTTCATGAGCATGGATTCAGGCTTTAGCAAAATTATCGCCGGAGGTAGCAAACCGAAAAGCCCTTCACCGTTTCTCTCGCTTATATCTTCGTTTGTACATTTTATTCTGGTGCAAACGATTGCTCTTTTTTATGCTTTGATTTCAAAATCGCTTAGCTTTACTCTGCCAAACATGCCTGAATGGTATTATCGAATCATGTCGTTCATGACGCCTGTCGCAGGCGCTATCGGATTTTTAATATTCATATATGCCATCATGCTTGTGGTGGCGGCTACATTTTCCATATTTAGAAGTAGCAAATGGTTTGAAGCGTACATTGATCAACTAAACACGGAAACCGATAGCAACAAGGGGCCATGA	MFKELIDSYKGTIELWAEFWSLYGGIRSLVVSIYFGGAIIITMLSFGLWTKPGWWDIVIGAIPTLLGFTLAGLAVFMSMDSGFSKIIAGGSKPKSPSPFLSLISSFVHFILVQTIALFYALISKSLSFTLPNMPEWYYRIMSFMTPVAGAIGFLIFIYAIMLVVAATFSIFRSSKWFEAYIDQLNTETDSNKGP				NA	NA	NA	NA	NA
D1-36_00318	147			hypothetical protein	ATGGAAACTCAATCGTTAGGTGAAAATCCACAGCCGGCCAACGCGTGCTGCGCCTTAATTTATAGTTTGGCGTTGACTCAGGAACAGGCGGTGCTTGCACACAGCCAGGCTAAAAGCGAGCGGGGATCACAGTTAAACGATGCCTGA	METQSLGENPQPANACCALIYSLALTQEQAVLAHSQAKSERGSQLNDA				NA	NA	NA	NA	NA
D1-36_00319	642	ligA_1		DNA ligase	ATGGACCTACACAACGAATTCGAAAACAGCAAATTCTTCCACCAGTCCCGCATCGATCGGCGTGCCGCCGATGCCCTGGTCGGGCTGGCCGCTGGCATCACGGCGGACGGCGTCGTGAACACCCACGAAGCGATCTTTTTAAAGCAGTGGTTGGAAAACAACCTCGCTCATTTGAATGACCCGGTGATCAATTTGTTGTACTCGCGTTTGGCGTCCATGCTTCAGGACGATGCCCTGGACCCGGATGAGTCTCTTGAGCTGCTTAACATCCTGAGTAGTTTCTCTGGCGTGGGCATTGATAGACCCCAGGTCGGCGGTGCAGCTGCCTTCGCTCCGACAGACCTTCCGTTCAACTCGCCCGTCCCTGACTTGGTGTGGGACGGCCGTACATTTGTATTCACAGGCGTCATGGCCTACGGGCCGCGCAAAAATTGTCAGGCTCTGGTCGAGGAGCGTGGCGGTTTGATTGGGGGCGGGGTGAGTAAGAAGGTGCATTATCTGGTGGTCGGCAGCGTGGGTAATGAGCAGTGGCGCCACAGTACCTACGGAACGAAGATCATGATGGCAGTGGAGCTGCGGGAAGCGGTTGCTTCGATTGCCATTGTGGGTGAGGATCACTGGCAGAAGATGTTGTTTGGTTGA	MDLHNEFENSKFFHQSRIDRRAADALVGLAAGITADGVVNTHEAIFLKQWLENNLAHLNDPVINLLYSRLASMLQDDALDPDESLELLNILSSFSGVGIDRPQVGGAAAFAPTDLPFNSPVPDLVWDGRTFVFTGVMAYGPRKNCQALVEERGGLIGGGVSKKVHYLVVGSVGNEQWRHSTYGTKIMMAVELREAVASIAIVGEDHWQKMLFG				NA	NA	NA	NA	NA
D1-36_00321	1230			hypothetical protein	ATGCCTGCCAAGGGCGCTGACAGCCAAGTGCTGACGGGTGAAGCATTGCTCACCCGTTTCACCGCGCTGGATGCGTTTCTTACAACGCACCAGTCACTATGGAAGCCTCGGCCCTTCACGCATCTGCAATTGCCTTGGGAAACGTCCCACCCGGAATTGGCCCGATGGCTACGCGAGCGTTCGCTGGACGCAGCGGAAAACGACCATCATCAACCATGGTTGATTGAGAGCGCGCCAGCGCCATTCCCGGAACTGGCTGCTCTCTCCCGGGCATTGAGCGCCGTGGCTGAATTGCCGGCCAACTCGCTCGAAGCTCCCAGCCATCGCCTCAACGTCGACGTACCCGGGCGCAAATGGCAGCAGATAGAAGCCTTCGCCAGCCGCCTGCGCTTCACCACCCCACCGATCCATTGGCTCGATTGGTGCGCCGGTAAAGGCCACCTTGGCCGGCGCCTGTTGCAGGATGGACAACAACTGACCTGCCTGGAACACGACCCCGCCTTGGTCGCCAGCGGCCAGTTGCTGAGCCAACGCCATCACCTGCCCGCCACGCACTCGCAACAAGACGTATTGGCGGCAGACGCAAACCAGGCGCTGCGCCCCAGACACACCCCGGTGGCTCTGCACGCTTGCGGCGACTTGCATGTGCGCCTGATGCGTCTGGCCAGCGCCGCTGGCTGCGCACAATTGGCTATCGCGCCGTGCTGCTACAACCGCATCAGCACCTCGGAATATCAGCCGCTGTCCGACGCCGCAAAAGGCTCTGCCCTACAACTGTCGCTCGACGATCTCAGCCTGCCGCAGACCGAGACCGTCACCGCAGGCGCCCGCGTAAGAAGACAACGGGACCAATCCATGGCCTGGCGCCTGGGTTTCGACCTGCTGCAACGTCAAATCAGAGGGGGCGACGACTACCTGCCTACTCCCTCGTTGCCCAGCGTCTGGCTGGAAAAATCCTTCGCCCAGTACTGCACCGACCTGGCTGCCCTGAAAGACTTATCCACAATCGGCACGCCTGATTGGGTCGCCCTGGAAGCAGCCGGCCACCAACGTTTGGCCGAGGTGCGTAACCTGGAATTGATGCGAGGCCTTTTCCGCCGCCCCCTGGAGCTTTGGCTGGTCTTGGACCGGGCACTTTTCCTTACTCAAAAAGGCTACAACGTCCGCCTTGGCACCTTCTGCGAGACACCTCTGACACCGCGCAACCTGCTGTTGCTGGCAGAACGTTAA	MPAKGADSQVLTGEALLTRFTALDAFLTTHQSLWKPRPFTHLQLPWETSHPELARWLRERSLDAAENDHHQPWLIESAPAPFPELAALSRALSAVAELPANSLEAPSHRLNVDVPGRKWQQIEAFASRLRFTTPPIHWLDWCAGKGHLGRRLLQDGQQLTCLEHDPALVASGQLLSQRHHLPATHSQQDVLAADANQALRPRHTPVALHACGDLHVRLMRLASAAGCAQLAIAPCCYNRISTSEYQPLSDAAKGSALQLSLDDLSLPQTETVTAGARVRRQRDQSMAWRLGFDLLQRQIRGGDDYLPTPSLPSVWLEKSFAQYCTDLAALKDLSTIGTPDWVALEAAGHQRLAEVRNLELMRGLFRRPLELWLVLDRALFLTQKGYNVRLGTFCETPLTPRNLLLLAER				NA	NA	NA	NA	NA
D1-36_00322	690	occM_1		Octopine transport system permease protein OccM	ATGAACTGGGATGTCATCATCAAATGGCTGCCGAAACTGGCCCAGGGCGCCACGCTTACACTGGAGCTGGTGGCCATCGCGGTGATCGCCGGCTTGCTGCTGGCGATCCCATTGGGTATCGCCCGTTCATCGCGGCTGTGGTACGTGCGGGCGTTTCCCTACGCCTACATCTTCTTTTTCCGTGGTACGCCACTGTTGGTCCAGTTGTTCCTGGTCTATTACGGCCTGGCACAGTTCGATGCCGTGCGCAGCAGCGCGCTGTGGCCGTATCTGCGGGACCCGTTCTGGTGCGCCACGGCCACCATGACCCTGCACACCGCCGCCTACATCGCCGAGATCCTGCGCGGCGCCATCCAGGCCATTCCCCGCGGCGAAATCGAAGCCGCACGAGCCTTGGGCATGTCGCGGCCCAAGGCGCTGTTCTACATCATGCTGCCCCGGGCCGCGCGCATCGGCTTGCCCGCCTACAGCAACGAAGTGATCCTGATGCTCAAGGCCAGCGCCTTGGCAAGCACGGTGACCCTGCTGGAACTCACCGGCATGGCGCGCACCATCATTGCCAGGACCTACATGCCAGTGGAGATTTTCTTCGCGGCCGGCATGTTCTACCTGCTGATGTCCTTCGTACTGGTGCAAGGCTTCAAGCAGCTTGAACGCTGGCTGCGCGTCGATGCCTGCCAAGGGCGCTGA	MNWDVIIKWLPKLAQGATLTLELVAIAVIAGLLLAIPLGIARSSRLWYVRAFPYAYIFFFRGTPLLVQLFLVYYGLAQFDAVRSSALWPYLRDPFWCATATMTLHTAAYIAEILRGAIQAIPRGEIEAARALGMSRPKALFYIMLPRAARIGLPAYSNEVILMLKASALASTVTLLELTGMARTIIARTYMPVEIFFAAGMFYLLMSFVLVQGFKQLERWLRVDACQGR	PGPT0020540_108	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0020540-PA5155-K23057	NA	NA
D1-36_00323	696	artQ_1	COG4215	Arginine ABC transporter permease protein ArtQ	ATGATGATCGACCTCTACGGATTCGGCCCGGCGCTAGCCGCCGGCGCGCTGATGACCGTCAAGCTGGCCCTTTCGGCTCTCTGCCTGGGGCTGGTGCTCGGCCTGCTCGGCGCCTTGGCCAAGACCTCCCCGTACAAGCCGTTGCAATGGCTTGGCGGCACCTATTCGACACTGGTCCGCGGCATTCCGGAATTGCTCTGGGTGCTGTTGATCTACTTCGGTACCGTCAACCTGATGCGTGCCTTGGGTGAATATTTCGGCAATCCCGACCTAGCCCTCAATGCCTTCGCCGCCGGCGTCATCGCCCTCGGCCTATGCTTTGGCGCCTACGCCACCGAAGTATTTCGCGGTGCGATCCTGGCGATACCCAAGGGGCACCGTGAAGCCGGCGTGGCGCTTGGCCTGTCGAAATGGCGGATCTTCACCCGATTGATCCTGCCGCAGATGTGGCGCATCGCCCTGCCCGGCCTGGGCAATCTGTTCATGATCCTCATGAAGGATACCGCACTGGTTTCGGTGATCGGCCTGGAAGAAATCATGCGCCACGCGCAAATCGGCGTGACCATTTCCAAGCAACCGTTCACTTTTTATATGGTCGCAGCGCTTATGTATCTGGGCCTGACGGTGCTCGCCATGATCGGCATGCACCTGCTGGAAAAACGCGCCGCCCGCGGCTTTGCCAGGAGCACCCAATGA	MMIDLYGFGPALAAGALMTVKLALSALCLGLVLGLLGALAKTSPYKPLQWLGGTYSTLVRGIPELLWVLLIYFGTVNLMRALGEYFGNPDLALNAFAAGVIALGLCFGAYATEVFRGAILAIPKGHREAGVALGLSKWRIFTRLILPQMWRIALPGLGNLFMILMKDTALVSVIGLEEIMRHAQIGVTISKQPFTFYMVAALMYLGLTVLAMIGMHLLEKRAARGFARSTQ	PGPT0020535_89	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0020535-PA5154-K23056	NA	NA
D1-36_00324	753	artJ_1	COG0834	ABC transporter arginine-binding protein 1	ATGCAGACCTACAGGAAATTCTTTTTGGCTGCTGCCGCCAGCCTGGTCTTCTCGGCCAACGTCATGGCGGCCGACAAACTGAAAATGGGCATCGAGGCGGCCTATCCGCCGTTCAATAACAAGGATGCCAGCGGCCAGGTCGTAGGCTTCGATAAAGACATCGGCGACGCGCTGTGCGCCAAGATGAAAGTTGAATGTGAAGTGGTCACTTCCGACTGGGACGGCATCATTCCGGCCTTGATGGCCCAAAAGTTCGATTTCCTGATTTCTTCGTTGTCGATCAACGAAGAGCGCAAGCAGGCCGTTGATTTCACCGACCCGTACTACTCCAACAAGCTGCAGTTCATTGCGCCGAAAAACGTCGAGTTCAAAGTCGATAAAGATTCCCTCAAGGGCAAGGTCATCGGAGCCCAGCGTTCCACCCTGGCTGGTACCTGGATGGAGGACAACATGGAAGGCGTCGAACTGAAACTCTACGATACCCAGGAAAACGCCTATCTGGACCTGACCTCCGGCCGCGTTGACGGGATCCTGGCGGACAAATACGTGAACTACGACTGGCTGAAAACCGACGCCGGCCGTGCCTATGAGTTCAAGGGCGACCCAGTGGTGGAAGGCGACAAGATCGCCATTGCAGTGCGCAAGGGTAATGACGAACTGCGCAACAAACTGAATGCCGCGCTTAAGGAAATCGTTGCCGACGGCACCTATAAAAAGATCAACGACAAGTACTTCCCGTTTAGCATCTATTGA	MQTYRKFFLAAAASLVFSANVMAADKLKMGIEAAYPPFNNKDASGQVVGFDKDIGDALCAKMKVECEVVTSDWDGIIPALMAQKFDFLISSLSINEERKQAVDFTDPYYSNKLQFIAPKNVEFKVDKDSLKGKVIGAQRSTLAGTWMEDNMEGVELKLYDTQENAYLDLTSGRVDGILADKYVNYDWLKTDAGRAYEFKGDPVVEGDKIAIAVRKGNDELRNKLNAALKEIVADGTYKKINDKYFPFSIY	PGPT0020530_157	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0020530-PA5153-K23055	NA	NA
D1-36_00325	774	occP		Octopine permease ATP-binding protein P	ATGGCCCAGGCCACGCCCGCGCTTGAAATCCGCAACTTGCACAAACGCTACGCAAAGCTGGAGGTGCTCAAAGGCGTCTCGCTGACCGCTCGCGACGGTGACGTGATCTCGATCCTGGGTTCCTCCGGCTCCGGCAAGTCCACGTTTTTGCGTTGCATCAATCTGCTGGAAAATCCCAACCAGGGTCAGATTCTGGTCGCAGGCGAGGAGCTCAAGCTCAAGGCTGCCAAAAACGGTGAGCTGATTGCCGCCGATGGCAAACAGATCAATCGCATGCGCAGCAAGATTGGTTTTGTATTTCAAAACTTTAATCTCTGGCCGCACATGAGCGTGCTCGACAACATCATCGAAGCCCCGCGCCGCGTGCTGGGCCAGAGCAAGGCCGAAGCCGTGGAAGTGGCCGAAGCCTTGCTGGCCAAGGTCGGCATTGCTGACAAGCGCCACGCCTACCCTGCCGAACTGTCCGGCGGCCAGCAACAACGTGCCGCCATCGCCCGCACATTGGCGATGCAACCTAAAGTCATTCTGTTCGACGAGCCGACTTCTGCCCTTGACCCGGAAATGGTCCAGGAAGTACTAAGCGTGATCCGCGCCCTCGCCGAAGAAGGTCGTACCATGCTGCTCGTAACCCACGAGATGGGCTTCGCCCGCCAGGTATCGAGCGAAGTCGTGTTCCTTCACCAAGGGCTGGTCGAGGAGCAAGGGTCGCCACAGCAGGTCTTCGAAAACCCGCTTTCGGCGCGCTGCAAACAATTCATGTCCAGCAACCGCTAA	MAQATPALEIRNLHKRYAKLEVLKGVSLTARDGDVISILGSSGSGKSTFLRCINLLENPNQGQILVAGEELKLKAAKNGELIAADGKQINRMRSKIGFVFQNFNLWPHMSVLDNIIEAPRRVLGQSKAEAVEVAEALLAKVGIADKRHAYPAELSGGQQQRAAIARTLAMQPKVILFDEPTSALDPEMVQEVLSVIRALAEEGRTMLLVTHEMGFARQVSSEVVFLHQGLVEEQGSPQQVFENPLSARCKQFMSSNR	PGPT0020545_91	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0020545-PA5152-K23058	NA	NA
D1-36_00326	438			hypothetical protein	ATGAAGTTGCTATATTGCCCCATCGTTCTGGGTGCGCTGCTTTTTCCCATCATGCTCAACGCCACCAACCTCGCGCCCATCGACAACGCAGGCGTCCAGGTCCAGCCCATGCAACAGAACGGTATCAGCTACCTGTCCGGCGGTATCGGCGAAGACGAAGCCCGGGCCATCGAACAGGCCCAGGGCTACAACCTGCACATGACTTTTGCGATCGGCCCGGAGGGCAAATACGTCCCGGATGTGGAGGTGACCGTGCAGAGCTCAACGGGACAGACATTGCTGACGCTCAGCGACGCAGGCCCATTGGTGTATGTACAACTGCCGCCGGGCAGTTACAGCGTGATAGCGACGCGTAACGGCGAGGAGCGTCGCGACACCGCCAAAGTGGGCAGCGGAGCCGCGCGCAAGCTAGTGTTCCATTGGAACAGCAGCGAGTAG	MKLLYCPIVLGALLFPIMLNATNLAPIDNAGVQVQPMQQNGISYLSGGIGEDEARAIEQAQGYNLHMTFAIGPEGKYVPDVEVTVQSSTGQTLLTLSDAGPLVYVQLPPGSYSVIATRNGEERRDTAKVGSGAARKLVFHWNSSE				NA	NA	NA	NA	NA
D1-36_00327	447			hypothetical protein	ATGGCCTCACTGAACAAACAGCAGAAACGCGCCAAGCGCGCCAAAGACAAAGCCAAGCAAATCCGTATGACCGGGCGCAAATCCATCCCGATGTACGGCGATCCGGCTCACGCCACTGCCCAGCCGCCGGTCTATGTGCTGGAGCTATTCGCCAAGTTGCGTGAAGCCGAGGCCGTCAGCCGCAGCCAGATGCTCGACACGCTGCTTGCCGACGTCAGCGAAATGATCATCGAGCGTCCGGGCCTGCTGGACCTCAAGAACGCGGAAAACGAGGGCATGGCCGCCACCAACCTGGCCGCCGATATGCTGGTGGACTACCGCATGTGGGCCGACGACATGGACCGCGAGGCCGCCCAGCGCTGGCTCAGCACGCCGGAATTCATCAAGGATTTCAGCGAGGCGCTGGACCGTTATCGCCAATCCATGGAAGAGCCCGCCAGCGAGTAA	MASLNKQQKRAKRAKDKAKQIRMTGRKSIPMYGDPAHATAQPPVYVLELFAKLREAEAVSRSQMLDTLLADVSEMIIERPGLLDLKNAENEGMAATNLAADMLVDYRMWADDMDREAAQRWLSTPEFIKDFSEALDRYRQSMEEPASE				NA	NA	NA	NA	NA
D1-36_00328	2235	cph1		Phytochrome-like protein cph1	ATGAAACCGGAAAACCAAGAAGCCTTCGAAGAATTGCTGGCCAATTGCGCAGACGAACCGATCCGCTTCCCCGGGGCCATCCAGCCTCACGGCGTATTGCTGATGCTGTCCGAGCCTGATTTCGTGATCCGCCAGGTCAGCGCAAACGCGCAACAACTGACAGGGTATGATCCTCAAGAGCTTCTCGGTCTGCCCCTGGATGCACTGTTTGGGCAGGAACAGGCCGCAACCCTTCTGGAAGCTTTCCGCACCGAAACTGAAAGAGACAACGTTCCGCTCGACATCGTAGTGAACCAGCAGCGCTTCGACGCCCTGATCCACCGCCATCAGGGCGCCTTGGTTGTCGAACTGGAACAGCACCTGACCGACTACCGCCCCGAGGGCGTCAATGGCGAGGCCAACCTGGGCCGCATGCTGCAGCGTCTGCAAAGCGCGAAAACGCTCCAGGCTTTGTACGAAATCAGCGTGCGGGAGATCCAGGCCATGACCGGATACGACCGCGTCCTGATTTATCGTTTCGAGGAAGGAGGCCACGGGCAAGTCATTGCCGAGGCCAGCGCGCCTTCGATGGAGCTCTACAAGGGCTTGTTTTTCCCAGCATCGGACATTCCGGAACAGGCTCGCGAGCTGTATCGCACCAACTGGTTGCGCATCATCCCCAACGCCGACTACACGCCGGTACCGCTGATGCCCGAGCTGCGCCCCGATACGCAGGCGCCACTGGACTTGAGCTTTTCCACGCTGCGCAGCGTCTCGCCGATTCACCGTCAATACATGAAGAACATGGGCGTGTTGTCATCCATGAGCATCTCGCTGATGAAAGGCGAGCAATTATGGGGATTGATCAGCTGCGGCAACCGCCAGCCGCTGCATGTTCCCCACCAAATGCGCATGGCCTGTCAGACGATCGGCCAGATCCTCTCACTGCAGATCAGTGCGATGGAGGCTCTTGAACTGGCAGGGCAACGGGACGCCAAGCTCGAAGACCTCGGGGCGCTTGCCACTCTCATGGCCGAATCCAGCGAAAACGTCTTTGACAGTCTGTCCCACGACCCACAGCGTCTGATGGAACTCACCGGGGCCAATGGCGTTGCGATCATCGAGGACAACAAGCTGCATCGGCACGGACAGTGCCCGGAACCGGAGCAGATTCGTGAATTGCACAAATGGATAATGGAAACCGACCAACCGGTTTTTGCTCACCATAACCTGGGCGAAATTTTCGCGCCGGCCAAGGCTTATCCGGAGGTTGCGAGCGGTGTGCTGGCGATTCATCTGCCCAAGCCAGTGGAAAATGGCGTGCTGTGGTTCCGCCCCGAGGTCAAGCAAACCATCAATTGGAGCGGTGACCCTCAAAAACCCCTCGACCTGGAGCAAAGCGCGACCGGACTACGCTTACGCCCGAGGACGTCGTTCGAAATCTGGAAAGTCGAAATGGGGGGCATCAGTACCAAATGGAGCCATGGCGATGTATTCGCCGCCAACGACCTGCGGCGCTCGGCCCTGGAAAACGACTTGGCACGGCAAGTTCGCAAGGAGCGCCAGGCGGTGCAGGCCCGGGATGAGTTGGTTGCAGTCGTGTCCCATGATTTGCGCAACCCGATGACGGTCATTTCCATGCTGTGCGGCATGATGCAAAAGGCTTTCAGCTCCGATGGCTCCCACAGCTCGAAGCGAATTTCTTCGGCCATCGATACCATGCAGCAGGCCGCCAGCCGTATGAATTCGCTCCTGGAAGACCTTCTCGACACCTCGCGCATCGACGCCGGCCGCTACACCATCCACCCCAAGCCGATGGACGTGAGCCAGATATTCGAAGACGCGTGTTCATTACTGACGCCGCTGGCCTCTGCCAAGGCCATCGATATCTCTTTCCACGCCGAACCCAACCTCAGGATCAACGCGGACCCGGAGCGATTGTTCCAGGTGCTGTCCAATCTGATTGGCAATGCCATCAAGTTCACGCCGCAGAAAGGTAGCGTAGGTATCAGCGCAATGTCGGTAGGCGATGAGATCGTATTCAGTGTCCGCGACACTGGTGAGGGCATCGCGCCAGAACAACTGCCTCATGTTTTCGACCGTTACTGGACCACCAAGGACGGCAACCCGAACGGCACCGGCCTCGGACTTTATATTTCCAAGGGGATTGTCCAGGCTCATGGCGGTAAACTGCAGGCCGAAAGCCAGCCAGGCAAAGGCAGCGAATTCCGCTTCACCGTGCCGAAAATCGATTGA	MKPENQEAFEELLANCADEPIRFPGAIQPHGVLLMLSEPDFVIRQVSANAQQLTGYDPQELLGLPLDALFGQEQAATLLEAFRTETERDNVPLDIVVNQQRFDALIHRHQGALVVELEQHLTDYRPEGVNGEANLGRMLQRLQSAKTLQALYEISVREIQAMTGYDRVLIYRFEEGGHGQVIAEASAPSMELYKGLFFPASDIPEQARELYRTNWLRIIPNADYTPVPLMPELRPDTQAPLDLSFSTLRSVSPIHRQYMKNMGVLSSMSISLMKGEQLWGLISCGNRQPLHVPHQMRMACQTIGQILSLQISAMEALELAGQRDAKLEDLGALATLMAESSENVFDSLSHDPQRLMELTGANGVAIIEDNKLHRHGQCPEPEQIRELHKWIMETDQPVFAHHNLGEIFAPAKAYPEVASGVLAIHLPKPVENGVLWFRPEVKQTINWSGDPQKPLDLEQSATGLRLRPRTSFEIWKVEMGGISTKWSHGDVFAANDLRRSALENDLARQVRKERQAVQARDELVAVVSHDLRNPMTVISMLCGMMQKAFSSDGSHSSKRISSAIDTMQQAASRMNSLLEDLLDTSRIDAGRYTIHPKPMDVSQIFEDACSLLTPLASAKAIDISFHAEPNLRINADPERLFQVLSNLIGNAIKFTPQKGSVGISAMSVGDEIVFSVRDTGEGIAPEQLPHVFDRYWTTKDGNPNGTGLGLYISKGIVQAHGGKLQAESQPGKGSEFRFTVPKID				NA	NA	NA	NA	NA
D1-36_00329	609			hypothetical protein	ATGCCTGCACCGTCCGCCCCTCCGCCCTCCCTGATCCAGGCATTGCGGACTGAAACCGCTGAACTGCACATTGCCCTGGAGAAACGCTTGCCGTTTTTCTCGGAGCAACTGGATCTAGGCCTGTACCGGCGCTTGATAGCGGCATACCACGGTTTTTATGAGCCACTGGAACGTCGCCTCCATATTCTCGCGCTGACGCCGACGGGGCTGGACCAATCCCTACGCATCAAGCTGCCGGTGCTACGAGCGGATCTCATGGCGCTGGGTCTGGACGAAATGGCGATTGACTCGCTGCCCGTCTGCCAACTCCTGCCGCAGATTGATTCTCCGGCCGCCGCCCTCGGCGTTTCCTATGTGCTGGAAGGCGCAACATTGGGCGGACAGATCCTGCGACGCAGGGTGGCCGAACAGTTAGGTCTTGATTCATCCAGCGGTGCCGCTTTCCTCGACGTTTATGGAGAACTTACCGGCCGGCGCTGGAAGGATTTTCTTCAGTATCTAGGTGACCGGAACCTTGGCGACGACCAGACGCTCGAAGCCACACGCGCTGCCAAGGCGACATTCATCTGTTTTGAACGCTGGCTGGCCAGTCAGGAGGTTCTGTTATGA	MPAPSAPPPSLIQALRTETAELHIALEKRLPFFSEQLDLGLYRRLIAAYHGFYEPLERRLHILALTPTGLDQSLRIKLPVLRADLMALGLDEMAIDSLPVCQLLPQIDSPAAALGVSYVLEGATLGGQILRRRVAEQLGLDSSSGAAFLDVYGELTGRRWKDFLQYLGDRNLGDDQTLEATRAAKATFICFERWLASQEVLL				NA	NA	NA	NA	NA
D1-36_00330	408			hypothetical protein	ATGTCATCGGCGAACAAACAGCACAAACGCAGCCAGCGCGCGAAGGCGAAAGCCAAGAACAACCGCATTCAGCGTGCTGCTGCGCCAAACGATTTCCTTGACCCGAACGATGAGCGCATCGACTTGGAAACCGTGGACTTGTCGGATCTGTTCCGACTCATGAGCGCCGCCGAAAAGGTCAGCCAGAAAGCCATGTGCGAAGCATTCCTGGCACATCCGCTGCTGGCGCTCGTGTTGGAACAGGAGGGCGAAGAAGAGGCCACCGACTTCATCATCACTGCATTGATCGAGTACCGTCGCCTGACCACGGGTGTCGATGAGCAGACCGCGCTGGATTGGGTGGAAAGCAAGCAATTCCAAGCCGACTATGTGGCCGCATCCCAAGCACTGAGCCAAGGCCAAGCCTGA	MSSANKQHKRSQRAKAKAKNNRIQRAAAPNDFLDPNDERIDLETVDLSDLFRLMSAAEKVSQKAMCEAFLAHPLLALVLEQEGEEEATDFIITALIEYRRLTTGVDEQTALDWVESKQFQADYVAASQALSQGQA				NA	NA	NA	NA	NA
D1-36_00331	330			hypothetical protein	ATGGACATCACTGGCATCCCCTTCGGCACCACCGATTGGTCCACCATCGAGCCCACCGAGCATAAGGGCATTACCGGAACCGCTTATTGGCGAACGCGGCAGTTCGGGAGCATTCGGGTACGGATGGTGGAATACACCGCCGGTTACCTGGCCGACCATTGGTGCACCAAGGGCCATATCCTGTTTTGCCTAAAGGGCGAGCTCGATACCGAGCTCGAAGACGGCCGGCAATTTCTGCTCAAGCCAGGCATGAGCTACCAGGTGGCGGACCAGGCCGAGCCCCATCGGTCTTCGACTTCATCAGGGGCCACGCTCTTCATAGTCGATTGA	MDITGIPFGTTDWSTIEPTEHKGITGTAYWRTRQFGSIRVRMVEYTAGYLADHWCTKGHILFCLKGELDTELEDGRQFLLKPGMSYQVADQAEPHRSSTSSGATLFIVD				NA	NA	NA	NA	NA
D1-36_00333	273		COG2924	putative Fe(2+)-trafficking protein	ATGACCCGCACCATCATGTGCCGCAAGTACAAAGAAGAACTGGAAGGCCTGGAACGCGCGCCGTTCCCGGGCGCCAAAGGCCAGGACATCTACGACAACGTCTCGGCCAAGGCCTGGGGCGATTGGCAGAAACACCAGACCCTGCTGATCAACGAAAAACGCCTGAACATGATGAACGCCGAAGATCGCAAATACCTTCAAGGCGAGATGGAGAAGTTCTTTTCCGGCGAAGAATACGCCAAGGCCGAAGGCTACGTGCCGCCGTCCGAATAA	MTRTIMCRKYKEELEGLERAPFPGAKGQDIYDNVSAKAWGDWQKHQTLLINEKRLNMMNAEDRKYLQGEMEKFFSGEEYAKAEGYVPPSE				NA	NA	NA	NA	NA
D1-36_00334	1068	mutY	COG1194	Adenine DNA glycosylase	ATGACATCCGAGCAGTTTTCCGCCGCGGTACTGGATTGGTTCGACCGCCATGGACGCCACGATCTGCCCTGGCAACAGGGCATCACGCCTTATCGGGTGTGGGTCTCGGAAATCATGCTGCAGCAGACCCAGGTCAGCACCGTGCTCAATTACTTCGACCGGTTCATGGCCGCCCTGCCAACGGTCCAGGCTCTCGCCGACGCGCCGGAGGATGAAGTGCTGCATCTGTGGACCGGATTGGGCTACTACACCCGTGCACGCAATCTGCAGAAAACAGCGAAAATCGTCGTGGAGCAATACGCCGGGGAATTCCCCCGGGATGTGGTAAAGCTCACCGAACTGCCGGGGATCGGCCTGTCCACCGCTGGCGCCATCGCCAGCATCAGCATGGACCTGCGGGCACCGATCCTCGATGGCAACGTCAAGCGGGTGCTGGCGCGTTTCACCGCCCAGGAAGGCTACCCGGGCGAACCCAAGGTTGCTAAACAGCTATGGGCCACCGCCGAGCGCTTCACGCCGCAAGACCGCGTCAACGCTTACACCCAGGCGATGATGGACCTGGGGGCCACGCTGTGTACCCGCAGCAAGCCCAGTTGCCTGTTGTGTCCGCTCAAAAAAGGTTGCGAGGCGCATATGCTGGGCCTGGAAACCCGCTACCCGATTCCCAAGCCACGCAAGGAAGTGCCCAAGAAGCGCACCTTGATGCCCATGCTGGCCAATCGCGAGGGCGCCATCTTGCTTTACCGTCGCCCATCCACCGGCTTATGGGGCGGCTTGTGGAGTCTGCCGGAACTCGATGGCCTGGATGATCTGCAGCACCTGGCCTTGCAACATTCCCTGGAGCTGGGCCCGCAACAGGCAATGCCAGACCTGATACACACCTTCAGCCACTTCCAGTTGGCAATCGAACCCTGGCTGGTCCGGGTCCGGGAAACCGGCCACCACGTGGCCGAGGCCGACTGGCTCTGGTATAACCTCGCCACCCCGCCGCGCCTGGGCCTTGCCGCCCCGGTCAAAACCTTGCTCGAACGCGCGGCCGCCGTATTGAATGCAGGAGAGTTGCAATGA	MTSEQFSAAVLDWFDRHGRHDLPWQQGITPYRVWVSEIMLQQTQVSTVLNYFDRFMAALPTVQALADAPEDEVLHLWTGLGYYTRARNLQKTAKIVVEQYAGEFPRDVVKLTELPGIGLSTAGAIASISMDLRAPILDGNVKRVLARFTAQEGYPGEPKVAKQLWATAERFTPQDRVNAYTQAMMDLGATLCTRSKPSCLLCPLKKGCEAHMLGLETRYPIPKPRKEVPKKRTLMPMLANREGAILLYRRPSTGLWGGLWSLPELDGLDDLQHLALQHSLELGPQQAMPDLIHTFSHFQLAIEPWLVRVRETGHHVAEADWLWYNLATPPRLGLAAPVKTLLERAAAVLNAGELQ				NA	NA	NA	NA	NA
D1-36_00335	2226			hypothetical protein	ATGAAAGCGTTCGGCAAAATCCTGGGTCTGGTACTTCTCGGGCTGTTGCTGATCATTGTGGCCCTGGGCTTTGCCCTGACCCACCTCTTCGATCCCAACGACTATAAAGAAGAGATCCGCCAGATAGCCCGCGATAAAGCCCACATCGAGCTGACACTCAATGGGGACATCGGTTGGAGCCTGTTCCCATGGCTGGGTCTGGAACTGCACGAAGCCAGTGTCGCCACCCTGGCCAACCCAACCCAACCTTTCGCCGACCTTCAGATGCTCGGGCTGTCTGTCCGGGTGATGCCGCTGCTGCGCCGCGAAGTGCAGATGAGCGATGTCCGGGTCGAAGGCCTGAACCTACGCCTGAACCGTGACAAGAGCGGCCACGGCAACTGGGAAGATATCGGCAAGGCGCCCACCTCCGCATCCACCCAGGAAGCACCAACGCCCGTCGAACAATCCACCCCGCCGGCCAGCGCACCGGCAGAAAAGCCGGCCCAGCCAACACGGTTGGACATCGACAGCCTGACCGTGAACAACGCCCGAGTGGAATACACCGACGAGCAGACCGGCAAGCAGTTCAGTGCCGAAAGCATCCAGTTGAGCACCGGCCCGATCCATGACGCTACCAACATCCCGGTTACCCTCACGGCGTTCCTGTCCAGCAACCAGCCGGCCGTCCGCGTGCGCACCGAGGTCACTGGCGAACTGCGCTTCGAACGCGCTTTGCAGCGCTATCGGTTCGAAGACCTGAAGCTGTCCGGCGAAGCCACCGGCGATCCCTTGCAGGGCAAGACCGTGAGTTTCGCGGCCCAAGGGCAACTTTCCCTGGATAAAGCGGCAAACGTCGCCGAGTGGACCGGGATCAAGCTTTCCCTCAACCAACTGCGTGCACTGGGCGAGTTGAAGGTCAACGACCTCGACAAGACACCACAACTGAATGGCGGCATTTCGATTGCTCAATTCGACTTGGCAAAGTTTGTCGACAGCGTTGGCCAAAAACTGCCAGCCATGGCGGAGGGCAGCCTGAGCAAGGTCGAACTGGCGAGCCGCATTGCCGGCACGCCGAACAGTGTCGAGCTCAACGACATCAACTTGAAGGTCGACGACAGCAGTTTCAGCGGCCGTATCGCTGTGGAAGACTTTGCCAAACAGGCCCTGCGCGTGCAGCTCAAGGCCGATACGTTCAACGTCGACCGCTACCTGCCGCCAAAGTCCGCCGAAGCCGACAGCTCCAAGGCAGCCCGCGAGGCCGAAGTCAGCAACACCGAGGCCAGTGCCATGGCCGGCGCCGGCAGCACACCCCTGCCAAGCGCTCCAACCCAAGGCGCCTGGAGCAATGATCGGCTGTTTCCGGTGGAGCGCCTGAGCAAGCTGGACATCGATGCCGACCTGACCTTCGGCCAACTGACCCTCGACAAACTGCCGATCCAGAACGCCGCGCTCAAGGCGACCGGCCTGGGTGGCCTGTTGACTCTGGAGAACCTGCGCGGCGACTTGTACAGCGGCAACTTTGAAACCAAGGGCACCCTGGACGTACGGCAGCCTACGCCACAGTTGAGCCTGCAAACCCGCATCAACCGGGTGCCGGCAGAGAAAATCATCGAAAGCCAAGGCAAGAATCCGCCGGTCAAGGGTCTGGTCACGCTCAACAGCGCGATCACCGCCAACGGCAACAGCCAAAAAGCCCTGATCGATAGCCTTAATGGCACGGCCGGTTTCGTCATCAACGATGGCGTATTGCTCAATGCCAATCTTGAACAGCAACTGTGCAAAGGCATCGCCACGCTGAACCGCAAGTCACTCACTGGCGAACCTCGCGGCAAGGACACGCCGTTCCAGCAGCTCAACGGCAACCTCACTTTCACCAACGGCGTTGCCCACAACCCAGACCTGAAAGTCCGCATTCCCGGCATGACCGTCAACGGCAACGGCGACATCGACCTGCGCGTGCTGGGCATGGACTACCGCGTCGGCGTGATCGTCGAAGGCGACAAGAGCGACATGCCCGACCCTGCCTGCCAGGTCAACGAACGCTACGTCGACGTCGAGTGGCCGTTGCGCTGCCGCGGCCCGCTGGAGTTGGGTGCCAAAGCCTGCCGCCTGGACAACGATGGGCTGGGCAAGGTCGCGGCGAAACTGGCCGGAGACCGCCTCGGCGACAAGATTGACGAGAAGCTGGGCGACAAAGTCAGCCCTGAGCTCAAAGACGCGCTCAAGGGGCTGTTCAAGCGATGA	MKAFGKILGLVLLGLLLIIVALGFALTHLFDPNDYKEEIRQIARDKAHIELTLNGDIGWSLFPWLGLELHEASVATLANPTQPFADLQMLGLSVRVMPLLRREVQMSDVRVEGLNLRLNRDKSGHGNWEDIGKAPTSASTQEAPTPVEQSTPPASAPAEKPAQPTRLDIDSLTVNNARVEYTDEQTGKQFSAESIQLSTGPIHDATNIPVTLTAFLSSNQPAVRVRTEVTGELRFERALQRYRFEDLKLSGEATGDPLQGKTVSFAAQGQLSLDKAANVAEWTGIKLSLNQLRALGELKVNDLDKTPQLNGGISIAQFDLAKFVDSVGQKLPAMAEGSLSKVELASRIAGTPNSVELNDINLKVDDSSFSGRIAVEDFAKQALRVQLKADTFNVDRYLPPKSAEADSSKAAREAEVSNTEASAMAGAGSTPLPSAPTQGAWSNDRLFPVERLSKLDIDADLTFGQLTLDKLPIQNAALKATGLGGLLTLENLRGDLYSGNFETKGTLDVRQPTPQLSLQTRINRVPAEKIIESQGKNPPVKGLVTLNSAITANGNSQKALIDSLNGTAGFVINDGVLLNANLEQQLCKGIATLNRKSLTGEPRGKDTPFQQLNGNLTFTNGVAHNPDLKVRIPGMTVNGNGDIDLRVLGMDYRVGVIVEGDKSDMPDPACQVNERYVDVEWPLRCRGPLELGAKACRLDNDGLGKVAAKLAGDRLGDKIDEKLGDKVSPELKDALKGLFKR				NA	NA	NA	NA	NA
D1-36_00336	399	panZ		PanD regulatory factor	ATGCCCATCGTTGTCGAGCACCTGAATGAAGCCACTCGTCAGGACGAGCAGGATCTGCAGAAAATCTATCGGGACGCGCCGGTCTGGCTGTTCGAGCCGTTCAGCGACGCCGCGCGACTCATAGAGAGATGTCTCGAGGAAGGCTCGTTGATCGCGGCACGCTTCAACGATCGCCTGCTCGGCGCAGCACGACTGCAACGGCACCAGAACGTCTGGCGCTTGTCCCACCTATGCGTGCGAAACGTCACTCGCCGCCGGGGCGTGGCGGAACGGCTGGTGAGCGAAGCCCGGAGGATGGCTGAGCAAGGCAACGCCGAGCTGCGACTGCAGGCGCCTGCCGGGCATCTGGAAGCCCAGGCCTTGGCGGCGAAATTGAAATTACCGCTGGATGTCGACTAG	MPIVVEHLNEATRQDEQDLQKIYRDAPVWLFEPFSDAARLIERCLEEGSLIAARFNDRLLGAARLQRHQNVWRLSHLCVRNVTRRRGVAERLVSEARRMAEQGNAELRLQAPAGHLEAQALAAKLKLPLDVD				NA	NA	NA	NA	NA
D1-36_00337	1662			hypothetical protein	ATGAGCACGAGCATCACGGCGGACGGCATCGCCGACCAGCCTGCGTTCCTCTCCAAGGAACGTATCATCGCCAAGCCCGGATTCAACCGGTGGCTGGTTCCACCGGCCGCGTTGGCCATCCACCTCTGCATCGGCATGGCCTATGGCTTCTCGGTGTTCTGGTTGCCACTGTCCAAGGCCTTGGGTATCACCAAGCCTGTCGCCTGTGCACCGGATATGAGCTTTATCTCGCAAGTCTTTTCGTCCCAATGTGACTGGCCGATCTCCATGCTCGGCTGGATCTACACCCTGTTCTTCATCTTCCTGGGCTGCTCGGCAGCCATCTGGGGCGGCTGGCTGGAACACGCCGGGCCACGCAAGGCCGGCGTTGTTTCGGCATTGTGCTGGTGCGGTGGCCTGCTGATTTCCGCGTTGGGTATCTATACCCACCAGATCTGGCTGATGTGGGTCGGTTCCGGTGTGATCGGCGGCATTGGCCTGGGCCTGGGCTATATCTCGCCAGTCTCGACGCTGATCAAATGGTTCCCGGACAAGCGCGGCATGGCGACCGGCATGGCGATCATGGGCTTTGGTGGCGGTGCGATGGTCGGTGCTCCACTGGCTGCGGCGCTGATGAGCCATTTCGCTACGCCGACCGAGGTGGGTGTCTGGCAGAGCTTCCTGGTGATGGCCGCGATCTACTTCGTGTTCATGATCGGTGGCGCCTTGTCGTACCGCGTTCCGCCAACCGGTTGGAAGCCTGAAGGCTGGACCCCGGCACCGAAGAAAGCCGCGAACGCGATGATCACTCATCGTCACGTTCACGTGAACGTTGCCTGGAAAACCCCGCAGTTCCGCCTGGTATGGCTGGTGCTGTGCCTGAACGTATCCGCCGGTATCGGCATCCTGGGCATGGCTTCGCCACTGCTGCAGGAAGTGTTTGGCGGCAAACTGCTGGGCAACGACCTGCCTTTCGGTCAGCTGGACGCCGTGCAACTGGGCCAGATCGCTGCCATTGCGGCCGGTTTCACCGGTCTGTTGAGCCTGTTCAACATCGGTGGCCGGTTCTTCTGGGCGTCCTTCTCGGACTACCTGGGCCGTAAAAACACCTACTTCGTGTTCTTCGCATTGGGTGTTGCCCTGTACGCGTTGATCCCGAACCTGGGTCACTTGGGCAGTATCGCGCTGTTCGTGGCGGCGTTCTGCATCATCCTGTCGATGTACGGCGGCGGTTTCGCAACCGTGCCGGCCTACCTGGCGGACCTGTTCGGTACGCAAATGGTTGGCGCGATCCACGGTCGTCTGCTGACGGCGTGGGCGGCGGCAGGCGTGCTGGGCCCGGTTCTGGTGAACTACTTGCGTGAATATCAGCTGAGCATCGGCGTCGAGCGTGCCGCGGCCTATGACATCACCTTGTACATCCTGGCCGGCCTGCTGGTGCTGGGTTTCCTGTGTAACCTGATGGTCCGTCCGGTCGCCGACAAGTATTTCATGACCGACGCCGAACTGGCCGCTGAACAGGCGCTGGGCCATGACAAGGGCGCCGACAGCACCACTTCGCTGGAATGGAAAGCCGCGCCGGGCACCAAGCCTTTGGCAATCGCCGCCTGGCTGGTGGTGGGCATTCCGTTGGCGTGGGGTGTGTGGGTGACCCTGCAGAAGACGGCGGTGTTGTTCCGTTAA	MSTSITADGIADQPAFLSKERIIAKPGFNRWLVPPAALAIHLCIGMAYGFSVFWLPLSKALGITKPVACAPDMSFISQVFSSQCDWPISMLGWIYTLFFIFLGCSAAIWGGWLEHAGPRKAGVVSALCWCGGLLISALGIYTHQIWLMWVGSGVIGGIGLGLGYISPVSTLIKWFPDKRGMATGMAIMGFGGGAMVGAPLAAALMSHFATPTEVGVWQSFLVMAAIYFVFMIGGALSYRVPPTGWKPEGWTPAPKKAANAMITHRHVHVNVAWKTPQFRLVWLVLCLNVSAGIGILGMASPLLQEVFGGKLLGNDLPFGQLDAVQLGQIAAIAAGFTGLLSLFNIGGRFFWASFSDYLGRKNTYFVFFALGVALYALIPNLGHLGSIALFVAAFCIILSMYGGGFATVPAYLADLFGTQMVGAIHGRLLTAWAAAGVLGPVLVNYLREYQLSIGVERAAAYDITLYILAGLLVLGFLCNLMVRPVADKYFMTDAELAAEQALGHDKGADSTTSLEWKAAPGTKPLAIAAWLVVGIPLAWGVWVTLQKTAVLFR	PGPT0017235_863	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_OXALATE_TRANSPORT,PGPT0017235-oxlT-K08177	NA	NA
D1-36_00338	594	hisB	COG0131	Histidine biosynthesis bifunctional protein HisB	ATGGCCGAACGTAAGGCGTCTGTCGAGCGCGACACTCTGGAAACCCAGATCAAAGCCTCGATCAACCTGGATGGCACCGGAAAGGCCCGGTTTGATATCGGCGTGCCTTTTCTTGAGCACATGCTGGACCAGATCGCCCGTCACGGGCTGATCGACCTGGACATCGTCAGCAAGGGCGACCTGCATATCGACGACCACCACACGGTGGAAGACGTCGGTATCACCTTGGGCCAGGCCTTCACCCAGGCCATCGGCGACAAAAAAGGCATCCGTCGCTACGGCCATGCCTACGTGCCGCTCGATGAAGCGCTGTCGCGCGTGGTCATCGACTTCTCCGGCCGCCCTGGCCTGCAAATGCATGTGCCGTACACCCGTGCCACCGTCGGCGGCTTCGACGTTGACCTGTTCCAGGAATTCTTCCAGGGCTTCGTCAACCACGCCAACGTGACCCTGCACATCGACAACCTGCGCGGGCACAACACCCATCACCAGATCGAAACCGTGTTCAAGGCCTTTGGCCGCGCGCTGCGCATGGCGGTGGAGCTCGATGACCGCATGGCCGGCCAGATGCCTTCCACCAAGGGCGTGCTGTAA	MAERKASVERDTLETQIKASINLDGTGKARFDIGVPFLEHMLDQIARHGLIDLDIVSKGDLHIDDHHTVEDVGITLGQAFTQAIGDKKGIRRYGHAYVPLDEALSRVVIDFSGRPGLQMHVPYTRATVGGFDVDLFQEFFQGFVNHANVTLHIDNLRGHNTHHQIETVFKAFGRALRMAVELDDRMAGQMPSTKGVL	PGPT0020305_19	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817	NA	NA
D1-36_00339	639	hisH	COG0118	Imidazole glycerol phosphate synthase subunit HisH	ATGCAGACGGTCGCGGTTATCGATTACGGCATGGGCAACCTGCACTCGGTGGCCAAGGCCCTCGAGCACGTGGGCGCCGGCAAGGTGCTGATCACCAGCGAAGCCGATGTGATTCGCGAAGCCGACCGCGTGGTGTTCCCCGGTGTCGGCGCGATTCGTGATTGCATGGCCGAGATTCGTCGCCTGGGCTTCGACAAGCTGGTGCACGAAGTCAGCCAGGATCGGCCGTTCCTCGGCATCTGCGTGGGCATGCAGGCTTTGCTCGATCGCAGCGAAGAGAACGATGGCGTCGATTGCATTTCGCTGTTCCCCGGCCAGGTAAAGTTTTTCGGCAAGGGCCTGCATGAGGATGGCGAACATCTGAAAGTCCCGCACATGGGCTGGAACGAAGTGAAGCAGGCGGTCGATCATCCCCTGTGGCACAACATCCCGGACCTGGCGCGCTTCTACTTCGTGCACAGCTACTACATCGCCGCCGGCAACGCGCGGCAGGTGGTGGGCAGCGGTCACTATGGCGTCGATTTCGCCGCGGCCCTGGCCGATGGTTCGCGCTTCGCCGTGCAGTTCCATCCGGAGAAGAGCCATACCCATGGCCTGCAGCTATTGCAGAACTTCGCCGCATGGGACGGACGCTGGTAA	MQTVAVIDYGMGNLHSVAKALEHVGAGKVLITSEADVIREADRVVFPGVGAIRDCMAEIRRLGFDKLVHEVSQDRPFLGICVGMQALLDRSEENDGVDCISLFPGQVKFFGKGLHEDGEHLKVPHMGWNEVKQAVDHPLWHNIPDLARFYFVHSYYIAAGNARQVVGSGHYGVDFAAALADGSRFAVQFHPEKSHTHGLQLLQNFAAWDGRW				NA	NA	NA	NA	NA
D1-36_00340	255			hypothetical protein	ATGGCACGCAAGAAACCGCCGATCCTCACCCTCACGCCTGAGCAGGAAAGTGAAGCGAACCGCAAGATCCAGCGGTTCATGGAGGAACGTTTCGAGCTGGACCTGGGCTCGTTCGAAGCGGCGGAAATTCTTGACCTGTTTACCCGCGAAATTGCTCCGCACTATTACAACAGGGCGATTTTCGATGTGCAGGCGCACCTTAAAGAAAGGTTCGAAAGCATTGAAAGCGACTTGTGGGCGCTCGAGAAAAACTGA	MARKKPPILTLTPEQESEANRKIQRFMEERFELDLGSFEAAEILDLFTREIAPHYYNRAIFDVQAHLKERFESIESDLWALEKN				NA	NA	NA	NA	NA
D1-36_00341	738	hisA	COG0106	1-(5-phosphoribosyl)-5-[(5-phosphoribosylamino)methylideneamino] imidazole-4-carboxamide isomerase	ATGCTGATTATCCCCGCTATCGATCTCAAGGACGGCGCTTGCGTACGTCTGCGCCAGGGCCGCATGGAAGACTCCACGGTGTTTTCCGATGACCCGGTGAGCATGGCCGCCAAGTGGGTGGAGGGCGGCTGCCGTCGCCTGCATCTGGTTGACCTGAACGGTGCTTTCGAAGGCCAGCCGGTCAATGGCGAAGTGGTCACGGCCATCGCCAAGCGCTATCCGAACCTGCCGATCCAGATCGGTGGCGGCATCCGCTCGCTGGAAACTATCGAGCACTACGTCAAAGCTGGCGTGAGCTACGTGATCATCGGCACCAAGGCCGTGAAAGACCCGGCTTTCGTCGCTGAAGCCTGTCGCGCGTTCCCTGGCAAAATCATCGTTGGCCTGGATGCCAAAGACGGTTTCGTCGCCACCGATGGCTGGGCTGAAATCAGCTCCGTGCAGGTCATCGATCTGGCCAAGCAGTTTGAAGCCGACGGCGTGTCCTCGATCGTTTATACCGACATCGCCAAAGACGGCATGATGCAGGGCTGCAACGTACCGTTCACCGCTGCGCTGGCCGCTGCCACCAAGATCCCGGTGATCGCTTCCGGTGGCATCCATAATCTGGGTGACATCAAGTCGCTGCTCGACGCCAAGGCACCGGGCATCATCGGCGCAATCACCGGGCGTGCGATCTATGAGGGCACCCTCGACGTCGCTGAAGCGCAAGCTTTCTGCGATTCCTACAAAGGCTGA	MLIIPAIDLKDGACVRLRQGRMEDSTVFSDDPVSMAAKWVEGGCRRLHLVDLNGAFEGQPVNGEVVTAIAKRYPNLPIQIGGGIRSLETIEHYVKAGVSYVIIGTKAVKDPAFVAEACRAFPGKIIVGLDAKDGFVATDGWAEISSVQVIDLAKQFEADGVSSIVYTDIAKDGMMQGCNVPFTAALAAATKIPVIASGGIHNLGDIKSLLDAKAPGIIGAITGRAIYEGTLDVAEAQAFCDSYKG				NA	NA	NA	NA	NA
D1-36_00342	771	hisF	COG0107	Imidazole glycerol phosphate synthase subunit HisF	ATGGCGCTGGCCAAACGCATCATCCCTTGCCTGGACGTGGACAACGGCCGGGTGGTCAAGGGCGTCAAATTCGAGAACATCCGTGACGCCGGCGACCCGGTGGAAATTGCTCGCCGCTACGACGAGCAGGGTGCCGATGAGATTACCTTCCTCGACATCACGGCCAGTGTCGATGGCCGCGATACCACACTGCATACCGTCGAGCGCATGGCCAGCCAGGTGTTCATCCCGCTGACCGTGGGCGGCGGCGTGCGCTCCGTTCAGGACATCCGCAACCTGCTCAATGCCGGGGCGGACAAGGTGTCGATCAATACCGCCGCGGTGTTCAACCCCGAATTTGTCGGTGAAGCAGCGCAGCACTTCGGCTCGCAGTGCATCGTCGTGGCCATCGACGCGAAGAAGGTTTCCGCCCCCGGCGAAACCCCGCGCTGGGAAATCTTCACCCATGGTGGGCGCAAACCCACGGGGCTGGACGCTGTTGAATGGGCAAAGAAAATGGAAGCCCTGGGCGCCGGTGAGATCCTGCTGACCAGCATGGACCAGGACGGCATGAAAAACGGCTTCGACCTGGGCGTCACCCGCGCCATCAGCGATGCACTGGGCATTCCAGTCATCGCTTCCGGCGGTGTCGGCAACCTGCAGCACTTGGCTGACGGCATTCTCGAAGGTCACGCCAGTGCGGTATTGGCGGCGAGTATCTTCCACTTCGGCGAGTACACCGTGCCGGAGGCCAAAGCTTATATGGCGCAGCGCGGTATCTGCATTCGATAG	MALAKRIIPCLDVDNGRVVKGVKFENIRDAGDPVEIARRYDEQGADEITFLDITASVDGRDTTLHTVERMASQVFIPLTVGGGVRSVQDIRNLLNAGADKVSINTAAVFNPEFVGEAAQHFGSQCIVVAIDAKKVSAPGETPRWEIFTHGGRKPTGLDAVEWAKKMEALGAGEILLTSMDQDGMKNGFDLGVTRAISDALGIPVIASGGVGNLQHLADGILEGHASAVLAASIFHFGEYTVPEAKAYMAQRGICIR	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
D1-36_00343	1500			hypothetical protein	ATGAGATCGATCTTATTTCCCTTAATGGCCGTGCTGTGCGTGTCGGCTTTGCAAGGTATTGCTCACAGCAAGGACTATGGCGATGGCCTGCAAAACTTCGCAGCGTCCAGGGTCTTGGAAAATGCGGATGGCAAATATGACCATTGGCGAGGCATCGGTCGGCTGTATACCGACAGTTATTGCACCGCCACACTGCTCGATACTCAGGATTCCACTGTGGCCGGACCAACGCCCGCCTATGTGGTCACCACGGGTTTCTGTACGAGGCAAATCGACGAAAGCAACATGACGGACACCCCCATAAGCGGCCACATCTATTTCAGTTACTTCGCTGACACCTTGTTATTCCAGATCTACCCGGTAAAAAAAGTGGCATGGCGGAGTATGCATGGCACCAATCTTTCTATCATCGAGCTGAACGTCAGCCTTCAGGAACTCATCAGGGCCGGTATAAAACCATTGAAATTGGCCCAGGGACAGCCGACTGATGGAACCGATGTGTTGACGGTAGGAGCCTCGTTGGGTTTTCCAAAGAACACACTGCGCATGGCCGCGTGCACACTGCAATCTGCCGACGAGGTCATCAAAGGTCAGTTTGTCTGGCGAAACAACATAATGAATCAATGCTCGGATCTGGCGGGAGGCAGTGAAGGAGGCCCCATCCTTGATCGTTACACCAACGAGATTGTCGGTGTGCTGAACACCAGTGCCACACCCGAGGGCTTCACCCCATGCGAATGGTATGTGCCTTGTATGCGCACCAACAGTGGCTATAAACCAATCCCCGACAACCACTATGGAACTTCAACGGCTTTTCTCAACGGGTGCTTCGTGCAAGGCCATCTGGTCAAGGACGTGACGGCATCTTGCGCGCTTTACCCGTCATTTTCCGTTGACCTGGAAAAAAACAGCCCGGCGCGGTATCAGCGTCTTGTAAAACAGCCTGACGGGACCATAGCAATCCCGACTTGGAACTACCGCTTCAAGATCAGCACTGCCTTTTATCGCCACAAGACAGTTCGTACCGCAAAGCACTGCGAAAACGGCCAAAACTATAGCGATCCAATCAGCTCGGTCGACGCGTTTATAGACACTGATATCGGCACTCAGCCAGGCGTCTATTTCCTATGCATTATTGGTGTTGACTCCTCGGGACCGGCAGAGCCACTCACTACCCTTTCGCTGCCGGTAGAAATCCTGGACGGCGCTCCGACAGCCCAGCCAAATCTGTCGATCTACGCGGGCATCGGAGTCGCACTGGAACAATCCGAGGATCAATACCATACCTACGCCATCAAGTTCGGCCCGCCGGAAACGACAGACTGCACTGAAGCGCAAGAGTACGAACCCTATGACCAGAGAGGTTATTTGTTCGAAAACGAAGAACTGCCGCAGAAATTCTGCAGCATCGCTTACGACAAAATGAATCAGGAATCCAAGCCCAGGGAAGACTTGCTAAGTCCTGCCACAAGCCGGCAGGAGACCAGCCCGACACTCTGA	MRSILFPLMAVLCVSALQGIAHSKDYGDGLQNFAASRVLENADGKYDHWRGIGRLYTDSYCTATLLDTQDSTVAGPTPAYVVTTGFCTRQIDESNMTDTPISGHIYFSYFADTLLFQIYPVKKVAWRSMHGTNLSIIELNVSLQELIRAGIKPLKLAQGQPTDGTDVLTVGASLGFPKNTLRMAACTLQSADEVIKGQFVWRNNIMNQCSDLAGGSEGGPILDRYTNEIVGVLNTSATPEGFTPCEWYVPCMRTNSGYKPIPDNHYGTSTAFLNGCFVQGHLVKDVTASCALYPSFSVDLEKNSPARYQRLVKQPDGTIAIPTWNYRFKISTAFYRHKTVRTAKHCENGQNYSDPISSVDAFIDTDIGTQPGVYFLCIIGVDSSGPAEPLTTLSLPVEILDGAPTAQPNLSIYAGIGVALEQSEDQYHTYAIKFGPPETTDCTEAQEYEPYDQRGYLFENEELPQKFCSIAYDKMNQESKPREDLLSPATSRQETSPTL				NA	NA	NA	NA	NA
D1-36_00344	756			hypothetical protein	ATGTTCAGACGTTTGGTTTTCTTTCTTGCCGGCACCGTGCTGTTGTTCATCAACGGGGCGCAGGCTCAAGAACATCGCGATGTCGGCGTGGTATTGCTGACGGAAAATTTCCCGCCATACAACATGGCCAAGAACGGCAAGAACTTCGCCCAGGACGAAAACATCCATGGCATCGCCGTGGACATCGTGCGCGAGATCTTCAAGCGCGCCGACATTACTTACAGCCTGACATTGCGCTTTCCTTGGGAACGAATCTACAAGCTCGCCCTGGAGAAACCCGGCTACGGGGTGTTCGTCACGGCGCGGTTGCCGGAGCGCGAGAAACTCTTCAAATGGGTCGGCCCTATCGGCCCGGACGACTGGGTCATGCTAGCCAAGGCAGACAGCAAAATTGCCCTAGACTCGCTTGAGCAGGCGCGTGAATACAAGATTGGCGCCTACAAGGGCGACGCTATTGCCGAGACATTGGCCAAGCAAGGACTCAAGCCTGTCGTCGTGTTGCGCGATCAGGACAACGCCAGGAAGCTGATCAGCGGCCAGATCGATCTGTGGGCCACCGGAGACCCGGCCGGGCGTTACCTGGCGCGGCAGGAAGGAGTTAGCGATCTCAAGACCGTGCTGCGATTCAACAGTGCCGAGCTGTACCTGGCGTTGAACAAGGACGTGCCGGACGATGTGGTTGCCCGACTCCAAGCGGCCCTGGACGAACTGCGCAAGGACGGTACGGTGGACGCGATCATGGCGCGGTATCTCTAA	MFRRLVFFLAGTVLLFINGAQAQEHRDVGVVLLTENFPPYNMAKNGKNFAQDENIHGIAVDIVREIFKRADITYSLTLRFPWERIYKLALEKPGYGVFVTARLPEREKLFKWVGPIGPDDWVMLAKADSKIALDSLEQAREYKIGAYKGDAIAETLAKQGLKPVVVLRDQDNARKLISGQIDLWATGDPAGRYLARQEGVSDLKTVLRFNSAELYLALNKDVPDDVVARLQAALDELRKDGTVDAIMARYL	PGPT0020800_14244	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
D1-36_00345	780			hypothetical protein	ATGTTCCGGCGGTTTACCTTCGTCCTGCTGTGCCTGCTGGCGGGAGCCGTTAACGCGGCGCCCGCTACACCTTCTTCGCCGCATAAGGCGTACCTGAGCCTGATTATCGACGACCTGGGGCAAAACCTGCCTCGGGATCTCCGGGTACTGGCCCTCCCTGGGCCCGTCACCGCTGCGATCATGCCCGACACACCCCATGCCGCCGAACTTGCCCGCGAAGCCCATCGCGCCGGCAAACTGGTCATGCTCCACATGCCCATGGACCCGGCCAACGGGCCGTTCGCCTGGCATCCGGAACTGCCTGTCGAAGAACTGGGCAAGCGCCTGGACGCCGCGTTTGCCGCAGTGCCCTATACCAGCGGCGTCAACAACCACATGGGTAGCCGCATGACCGCCCAACCCAGGGCCATGGCGTGGTTGATGGCGAACCTGCAACAGCGGCACAAGTTTTTCGTCGACAGCCGCACCAGCGCCCAGACGGTCGCCGGCGCCGAGGCCCAGAAAATCGGCCTCGCCAGCGTGTCGCGGGATGTGTTCCTGGATGACGAGCGCACCGAAGCAGCCATCGCCCATCAGCTCCAGACCGCCATCGACCTGGCCCGCCGGCAGGGCTCGGCCGTGATGATCGGCCACCCCTACCCACAGACCCTGGCGGTACTCGAACGCGAACTACCCAAGCTCAAGGCTCAGGGCATCGAATGGATCGACATAAAATCGATGATCAGCCTGCGCAGCAACCGAGCAATGGCCGGGCATGGGAAAGATGGGGTTTATCGGTAG	MFRRFTFVLLCLLAGAVNAAPATPSSPHKAYLSLIIDDLGQNLPRDLRVLALPGPVTAAIMPDTPHAAELAREAHRAGKLVMLHMPMDPANGPFAWHPELPVEELGKRLDAAFAAVPYTSGVNNHMGSRMTAQPRAMAWLMANLQQRHKFFVDSRTSAQTVAGAEAQKIGLASVSRDVFLDDERTEAAIAHQLQTAIDLARRQGSAVMIGHPYPQTLAVLERELPKLKAQGIEWIDIKSMISLRSNRAMAGHGKDGVYR				NA	NA	NA	NA	NA
D1-36_00346	1317	ctpB	COG0793	Carboxy-terminal processing protease CtpB	ATGCTGCATTTGTCCCGCCTCACCTCGCTGGCCCTGACGATCGCCCTCGTGATCGGCGCGCCCCTGGCCTTCGCCGCCGAACCGGCCCCGTCGGCACCCGCCGCCACCGCCGCGACCACCAAGGCTCCGCTGCCGCTGGACGAACTGCGCACCTTCGCCGAGGTCATGGACCGGATCAAGGCTGCCTACGTCGAGCCCGTGGATGACAAACAGCTGCTGGAAAACGCCATCAAAGGCATGCTCAGCAACCTTGACCCGCACTCGGCCTACCTGGGGCCGGAGGATTTTGCCGAGTTGCAGGAAAGCACCAGTGGCGAGTTCGGCGGCCTGGGTATCGAAGTCGGCAGCGAAGACGGCTTCGTCAAAGTCGTCTCGCCAATCGACGATACGCCCGCTTCCAAGGCCGGCATCCAGGCCGGTGACTTCATCGTCAAGATCAACGGCCAGCCGACACGCGGCCAGAGCATGACCGAAGCCGTAGACAAGATGCGCGGCAAGATCGGCCAGAAAATCACCCTGACGCTGGTGCGCGACGGCGGCACGCCATTCGACGTGACCCTCACGCGAGCGGTCATCCAGGTCAGGAGCGTGAAGAGCCAGTTGTTGGAGTCGGGCTACGGCTACATCCGCATCACGCAGTTCCAAGTCAAGACCGGCGAAGAAGTCGCCAAGGCCCTGGCCAAGTTGCGCAAGGACAACGGCAAGAAGCTCAACGGGCTGGTTCTGGACCTGCGCAACAACCCCGGCGGCGTCCTGCAATCGGCCGTCGAGGTGGTGGATCACTTCATCACCAAGGGCCTGATCGTCTACACCAAGGGGCGCATTGCCAATTCCGAGCTGCGCTTCTCGGCCACTGGCAACGACCTGAGCGAAGCCGTGCCATTGGTGGTGCTGATCAACGGCGGCAGTGCCTCGGCCTCGGAAATCGTCGCCGGCGCCCTGCAGGACCAGAAACGCGGCGTGGTCATGGGCACCACCAGTTTTGGCAAGGGCTCGGTGCAGACCGTGTTGCCGCTGAACAACGATCGAGCGTTGAAGATCACCACCGCGCTGTACTTCACCCCTAACGGCCGCTCCATCCAGGCCCAGGGCATCGTTCCGGACATCGAAGTGCGCAAGGCCAAGATCACCAGCGAAGCGGACAGCGAATACTTCAAGGAAGCCGACCTGCAAGGTCACTTGGGCAATGGCAACGGCGGCGCCGACAAGCCGACCGGTTCCGGTGCCAAGGCCAAGCCAATGCCGCAGGACGACGACTATCAGTTGGCCCAGGCCTTGAGCTTGCTCAAGGGGTTGAACATCACTTCCGGCCGCTGA	MLHLSRLTSLALTIALVIGAPLAFAAEPAPSAPAATAATTKAPLPLDELRTFAEVMDRIKAAYVEPVDDKQLLENAIKGMLSNLDPHSAYLGPEDFAELQESTSGEFGGLGIEVGSEDGFVKVVSPIDDTPASKAGIQAGDFIVKINGQPTRGQSMTEAVDKMRGKIGQKITLTLVRDGGTPFDVTLTRAVIQVRSVKSQLLESGYGYIRITQFQVKTGEEVAKALAKLRKDNGKKLNGLVLDLRNNPGGVLQSAVEVVDHFITKGLIVYTKGRIANSELRFSATGNDLSEAVPLVVLINGGSASASEIVAGALQDQKRGVVMGTTSFGKGSVQTVLPLNNDRALKITTALYFTPNGRSIQAQGIVPDIEVRKAKITSEADSEYFKEADLQGHLGNGNGGADKPTGSGAKAKPMPQDDDYQLAQALSLLKGLNITSGR	PGPT0015095_5769	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0015095-prc|ctpA-K03797	NA	NA
D1-36_00347	1293	envC	COG4942	Murein hydrolase activator EnvC	ATGCTCCGCGTCCTGATAGCCCTTGTCCTGACCTGCCTGCTCCAACCGGCCTTCGCCGACGAGCGCGCGCAAACCCAACAGCAGTTGGAAGCCACGCGCCAGGACATCGCCGAGCTGAAGAAACTGCTGGGCAAGCTGCAGGAAGAAAAATCCAGTGTGCAGAAAGACTTGCGCGGCACCGAGACCGAGATGGGCAAGCTGGAGAAGCAGGTCGAGGCCCTGCAGAAAGAGCTGAAGAAAAGCGAATCCGAGCTGCAACGGCTCGATGGAGAGAAAAAAAAACTCCAGAGCGCGCGCACTGAACAGCAAAAGCTGATCGCGATCCAGGCCCGAGCGGCCTACCAGAACGGTCGCCAGGAATACCTCAAGCTGCTCCTCAACCAGCAGAATCCCGAGAAATTCGCCCGCACCCTCACTTATTACGACTACCTGAGCCAGGCACGCCTGGAACAGCTCAAAAATTTCAACGAAACCCTGCGCCAACTGGCCAATGTCGAAAAAGACATCGAGTTGCAGCAAGCCCAATTGCTGGTCCAGAAAAGCAGTCTCGACACCCAGCGCGAAGAACTCGAGAAAGTCCGCAAGGAGCGCCAGGTTGCCCTGGCCAAACTCAATGACGACGTGAAAGCCCGCGACAGCAAGCTCAAGGCCCGCGAGCAAGACCAGGCCGAACTGGCCAACGTCTTGAAGACGATCGAGGAAACACTGGCCCGCCAGGCCCGAGAGGCTGAAGAAGCGCGCCAGAAAGCGCTGATCGCCCAGCAGGAAGCCGAAAAAAAGCGTTTACGTGAAGCCCAGGCCGACGCGGACGCCGGCGACGCGCCGCGCAAACCTGCAAAATCGAGCCCCGGCACGCTGGTTTCCAGCGGTGGAGAAACCTTCGGCGGTGCTTTTGGTTCGGCCCGGGGAAAACTTCCATGGCCGGTCAATGGTCGATTGCTTGCGCGCTTCGGTGAAACCCGCGGCGACGATACCCGCACCAAGTGGGACGGCGTGATGATCAGCGCCTCCGCCGGCAGCCAGGTGCACGCCGTGCATGGCGGGCGCGTGGTGTTTGCCGATTGGCTGCGCGGCGCCGGCCTGTTGGTGATTCTCGACCACGGCAACGGTTACTTGAGCCTGTACGGCCACAACCAGACGCTGCTCAAGGCGGCGGGCGATGTGGTCAAGGCCGGCGAGTCCATCTCCACGGTCGGCAACAGTGGCGGGCAGGATACGCCAGCACTGTATTTCGCTATTCGTCAGCAGGGTCGCCCCAGCGACCCGGCCCAATGGTGTCGTGCGCAAGGATAA	MLRVLIALVLTCLLQPAFADERAQTQQQLEATRQDIAELKKLLGKLQEEKSSVQKDLRGTETEMGKLEKQVEALQKELKKSESELQRLDGEKKKLQSARTEQQKLIAIQARAAYQNGRQEYLKLLLNQQNPEKFARTLTYYDYLSQARLEQLKNFNETLRQLANVEKDIELQQAQLLVQKSSLDTQREELEKVRKERQVALAKLNDDVKARDSKLKAREQDQAELANVLKTIEETLARQAREAEEARQKALIAQQEAEKKRLREAQADADAGDAPRKPAKSSPGTLVSSGGETFGGAFGSARGKLPWPVNGRLLARFGETRGDDTRTKWDGVMISASAGSQVHAVHGGRVVFADWLRGAGLLVILDHGNGYLSLYGHNQTLLKAAGDVVKAGESISTVGNSGGQDTPALYFAIRQQGRPSDPAQWCRAQG	PGPT0023855_803	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-MUREIN-ENDOPEPTIDASE_ACTIVITY|LIPOPROTEIN,PGPT0023855-envC-K22719	NA	NA
D1-36_00348	1530	gpmI	COG0696	2,3-bisphosphoglycerate-independent phosphoglycerate mutase	ATGACTACCACGCCTAAACCTTTGGTCCTGATGATTCTGGACGGCTTCGGTCACAGTGACAGCCACGAATCCAACGCCGTATACGCGGCCAGGAAGCCTGTGCTCGATCGCCTGTGGGCCACCGTGCCGAACGGCTTGATCTCCGGCAGCGGCATGGACGTCGGCCTGCCGGACGGGCAGATGGGCAACTCCGAGGTCGGCCACATGAACCTCGGCGCGGGCCGCGTGGTTTACCAGGACTTTACCCGCGTGACCAAGTCGATCCGCGACGGCGATTTCTTCGAAAACCCCACCATCTGCGCCGCCGTGGACAAAGCCGTGGCCGCTGGCAAGGCCGTGCACTTCATGGGCCTGCTGTCGGACGGCGGCGTGCACAGCCACCAGGACCACCTGGTCGCCATGGCCGAACTCGCTGCCAAGCGCGGCGCCCAGAACATCTACCTGCACGCCTTCCTCGATGGCCGCGACACGCCGCCCAAGAGCGCCGAGTCGTCGATCAAAGTACTGGACGACACCTTCAAGGCGTTGGGCAAGGGCCGGATCGCCAGCCTGATCGGCCGTTATTTCGCCATGGACCGTGACAATCGCTGGGACCGCGTCGCCCAGGCCTACAACCTGATCGTCGACGGCAATGCCGAATTCCATGCCGCCACCGCGCAAGAGGGTCTGCAAGCGGCTTATGAACGCGGCGAAAGCGACGAATTCGTCAAGGCCACCACCCTCGGCGAGCCGGTAAAAGTCGAAGACGGCGACGCCGTGGTGTTCATGAACTTCCGTGCCGACCGTGCCCGCGAACTGACCCGCGTATTTGTCGAAGATGATTTCAAGGAATTCGACCGCGCCCGCCAGCCGAAACTGGCCGGCTTCGTGATGCTGACTCAATACGCCGCCAGCATTCCCGCGCCATCCGCCTTTGCCGCCGGCAGCCTGGACAACGTGCTGGGCGACTACTTGGCGAAAAACGGCAAGACCCAGCTGCGCATCGCCGAAACCGAAAAGTACGCCCACGTGACGTTCTTCTTCTCCGGTGGCCGTGAAGAACCCTTCCCGGGCGAAGAACGCATCCTGATCCCCTCGCCGAAAGTCGCCACCTATGACCTGCAGCCGGAAATGAGCGCGCCGGAAGTGACCGACCGCATCGTCGATGCCATCGAGAACCAGCGCTACGACGTAATCGTGGTCAACTACGCCAACGGCGACATGGTGGGCCATAGCGGCGTGTTCGAGGCGGCGGTCAAGGCCGTTGAATGCTTGGACACCTGCGTGGGTCGCATCGTCGACGCCTTGGAAAAAGTAGGCGGCGAAGCCCTGATCACGGCGGACCATGGCAATGTCGAGCAAATGTCCGATGAGTCCACCGGCCAGGCCCACACCGCCCACACCACCGAGCCGGTGCCGTTCATTTATGTCGGCAAGCGCGACTTCAAGGTCCGCGACGGCGGCGTGCTGGCTGACGTGGCACCGACCATGCTGATGTTGCTGGGCATGGAGAAACCGGCGGAGATGACCGGGACTTCGATCCTGGTCTGA	MTTTPKPLVLMILDGFGHSDSHESNAVYAARKPVLDRLWATVPNGLISGSGMDVGLPDGQMGNSEVGHMNLGAGRVVYQDFTRVTKSIRDGDFFENPTICAAVDKAVAAGKAVHFMGLLSDGGVHSHQDHLVAMAELAAKRGAQNIYLHAFLDGRDTPPKSAESSIKVLDDTFKALGKGRIASLIGRYFAMDRDNRWDRVAQAYNLIVDGNAEFHAATAQEGLQAAYERGESDEFVKATTLGEPVKVEDGDAVVFMNFRADRARELTRVFVEDDFKEFDRARQPKLAGFVMLTQYAASIPAPSAFAAGSLDNVLGDYLAKNGKTQLRIAETEKYAHVTFFFSGGREEPFPGEERILIPSPKVATYDLQPEMSAPEVTDRIVDAIENQRYDVIVVNYANGDMVGHSGVFEAAVKAVECLDTCVGRIVDALEKVGGEALITADHGNVEQMSDESTGQAHTAHTTEPVPFIYVGKRDFKVRDGGVLADVAPTMLMLLGMEKPAEMTGTSILV	PGPT0018040_2253	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018040-gpmI-K15633	NA	NA
D1-36_00349	414	yibN	COG0607	putative protein YibN	ATGGTTGCTCACCTGATTGAATTTGCCACTAACCACTACATTCTCGTCGGTATCTTCGTCGTACTGCTGGCTTTGCTGGTTGCCCACACGATGCAGGGCGGCGGTCGCAGCCTGAGCACTGGCGAGCTGACCGCGCTGGTCAACAAGGACGCCGGCGTCGTGGTCGATATTCGTCCGAGCAAGGACTACGCCGCCGGTCACATTGTCGGCGCGCTGAACATCCCTCAGGACAAACTGGTCGCACGCGTAGGCGAACTGGAAAAGCACAAGGCCAAGACGGTGATCCTGGTCGACGCCCAAGGCCAGCAGGCCGGGACCCTCGCCCGCGAACTGATGAAGTCCGGCTTCACCGCCGCCAAACTGTCCGGTGGCGTTGCAAGCTGGAAAGCCGACAATCTGCCCCTGGTGAAGTGA	MVAHLIEFATNHYILVGIFVVLLALLVAHTMQGGGRSLSTGELTALVNKDAGVVVDIRPSKDYAAGHIVGALNIPQDKLVARVGELEKHKAKTVILVDAQGQQAGTLARELMKSGFTAAKLSGGVASWKADNLPLVK				NA	NA	NA	NA	NA
D1-36_00350	255	grxC	COG0695	Glutaredoxin 3	ATGCCCCACGTTGTTGTCTATTCCAGCGATTACTGCCCCTACTGCTCCCGAGCCAAGCACTTGCTCCAAAGCAAAGGCGTGGCTTTCGAAGAGATCAAGGTCGACGGCAAGCCGCAACTGCGCGCCGAAATGACCCAGAAGGCCCGGCGTACTTCCGTGCCGCAGATCTGGATCGGCGGCACTCACGTGGGCGGTTGCGATGACCTGTATGCCTTGGAGCGCGCCGGCAAGCTTGACGCGCTGCTCAAGGCTTGA	MPHVVVYSSDYCPYCSRAKHLLQSKGVAFEEIKVDGKPQLRAEMTQKARRTSVPQIWIGGTHVGGCDDLYALERAGKLDALLKA	PGPT0013201_4336	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-CHAPERONES,PGPT0013201-grxC-K03676	NA	NA
D1-36_00351	483	secB	COG1952	Protein-export protein SecB	ATGACTGACCAACAGAACACTGCTGCCACTGAAGAAGAAGCCGCACCGCAATTCTCCTTGCAGCGCATCTATGTCCGTGACCTGTCCTTCGAGGCCCCGAAAAGCCCGGCGATCTTTCGTCAGCAGTGGGAGCCGAGCGTGGCCCTGGACCTGAACACCCGTCAGAAAGCCCTGGAAGAAGATTTCCACGAAGTGGTGCTGACCCTGTCCGTGACCGTGAAAAACGGTGACGAAGTGGCGTTCATTGCCGAAGTCCAGCAAGCCGGTATCTTCCTGATCAAGAACCTCGACGCCGCTTCGATGAGCCACACCCTGGGCGCCTTCTGCCCGAACATCCTGTTCCCTTACGCTCGCGAAACCCTGGACAGCCTGGTGACCCGCGGTTCGTTCCCGGCCCTGATGCTGGCTCCGGTGAACTTCGATGCTCTGTACGCACAAGAGCTGCAGCGCATGCAAGAGGAAGGCGGCGCGACCGTTCAGTAA	MTDQQNTAATEEEAAPQFSLQRIYVRDLSFEAPKSPAIFRQQWEPSVALDLNTRQKALEEDFHEVVLTLSVTVKNGDEVAFIAEVQQAGIFLIKNLDAASMSHTLGAFCPNILFPYARETLDSLVTRGSFPALMLAPVNFDALYAQELQRMQEEGGATVQ	PGPT0025745_939	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0025745-secB-K03071	NA	NA
D1-36_00352	456	trmL	COG0219	tRNA (cytidine(34)-2'-O)-methyltransferase	ATGTTTCACGTCATCCTTTTTCAACCGGAAATACCGCCCAATACCGGCAACGTCATCAGGCTGTGCGCCAACAGCGGCTGCCACCTGCATTTGATCGAACCACTGGGCTTCGAGATGGACGACAAGCGCCTGCGCCGCGCGGGCCTCGATTATCACGAGTATGCCACTTTGCAGCGGCACGCCGACCTCGCCAGTTGCCTGGAAAGCCTGGGGCACCCACGTCTGTTCGCGTTCACCACCAAGGGTTCACGGCCGTTTCATGACGCCAGTTTCGTCGCCGGTGATGCGTTTCTGTTCGGCCCCGAAAGTCGCGGCCTGCCGGCCGATGTGCTCGACGCCCTGCCGGCGGAACAGCGCCTGCGCCTGCCGATGCGCGAAGGCTGCCGCAGCCTGAACCTGTCCAACACCGTGGCAGTGGCGGTTTACGAGGCGTGGCGGCAGAACGGCTTCCGGTAA	MFHVILFQPEIPPNTGNVIRLCANSGCHLHLIEPLGFEMDDKRLRRAGLDYHEYATLQRHADLASCLESLGHPRLFAFTTKGSRPFHDASFVAGDAFLFGPESRGLPADVLDALPAEQRLRLPMREGCRSLNLSNTVAVAVYEAWRQNGFR	PGPT0013375_29	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013375-pncB-K00763	NA	NA
D1-36_00353	366			hypothetical protein	GTGCTGGGCTCGCTGGCGATCTTCGGCATGATGGTCGGGCTAATGATCGGCCGTCTGACCACGCCTGACCCCAGTGCGCTGCAACAGATCGAGGCGGGCGATGGCGTGTTGGTAGCCTGGTTCAACAATGAACCCAAGCTCCACGGGGAAATCGTCGACGGCTCCGTGGCACTGTTGTTCCAGGCCGAAGGTCGACCGCAGAAGGGCCAGCTCAAGCTCAACGGCAAGGACGTGAATTGGCGGGTGCGGTTGAGTGACAAGGGGCTGTTGCTGACGCTGGTGGCGGCGCGTCCGTTGCGAGGGGAATGGGCCGGCAGCGAAGTCGATGACCGCTGGCGGCTGGAGATCCGTCTCCAAGAGCAATAA	MLGSLAIFGMMVGLMIGRLTTPDPSALQQIEAGDGVLVAWFNNEPKLHGEIVDGSVALLFQAEGRPQKGQLKLNGKDVNWRVRLSDKGLLLTLVAARPLRGEWAGSEVDDRWRLEIRLQEQ				NA	NA	NA	NA	NA
D1-36_00355	1437	glnG	COG2204	DNA-binding transcriptional regulator NtrC	ATGAGCCGTAGTGAAACCGTGTGGATCGTCGATGACGACCGTTCTATCCGCTGGGTCCTGGAAAAAGCCTTGCAACAGGAAGGCATGACCACCCAGAGCTTCGACAGCGCCGATGGGGTGATGAGCCGCCTGGCCCGTCAGCAGCCGGACGTCATCATCTCCGACATCCGCATGCCCGGCGCCAGTGGCCTGGACCTGCTGGCCAGGATCCGCGAGCAGCATCCGCGCTTGCCGGTGATCATAATGACCGCTCATTCGGACCTGGACAGCGCTGTCGCGTCCTACCAGGGCGGTGCGTTCGAATACCTGCCCAAGCCGTTCGACGTCGACGAAGCCGTGTCCCTGGTCAAGCGCGCCAACCAGCATGCCCAGGAACAACAAGGCCTGGAAGAAGTGCCAGCCCTGGCCCGCACCCCGGAAATCATCGGCGAAGCGCCGGCGATGCAGGAAGTGTTTCGCGCCATCGGCCGCCTGAGCCATTCCAACATCACCGTGCTGATCAACGGCGAGTCGGGCACTGGCAAGGAATTGGTTGCCCATGCCCTCCACCGTCACAGTCCCCGGGCGGCGTCGCCATTCATTGCTTTGAACATGGCGGCGATTCCCAAGGATCTGATGGAATCCGAGCTGTTCGGCCATGAAAAAGGTGCGTTTACCGGCGCGGCCAACCTTCGACGCGGACGCTTCGAACAGGCCGATGGCGGCACCTTGTTCCTTGACGAAATCGGCGACATGCCGGCCGACACCCAGACCCGCCTGCTTCGGGTATTGGCGGACGGTGAGTTCTATCGCGTGGGCGGCCATACGCCGGTCAAAGTGGATGTGCGGATCATCGCCGCGACCCACCAGAACCTGGAAACCCTGGTCCACGCCGGTAAATTCCGGGAAGACTTGTTCCATCGCCTGAACGTGATCCGCATCCACATACCGCGCCTGGCCGACCGCCGCGAAGACATCCCGACCCTGGCCCGGCATTTCCTTGGCCGTGCCGCTCAGGAACTGGCCGTGGAGCCCAAGCTGCTCAAGAGCGAAACCGAGGAATACCTCAAGAACCTGCCATGGCCCGGCAACGTGCGCCAATTGGAGAACACTTGCCGCTGGATCACGGTAATGGCTTCGGGGCGCGAAGTGCATATCAGCGACCTGCCACCCGAGCTGTTGAGCCTGCCACAAGATTCGGCGCCGGTGACCAATTGGGAACAGGCCCTGCGCCAGTGGGCCGACCAGGCGTTGGCCCGCGGCCAATCGAGCCTGCTGGACAGCGCCGTGCCGAGCTTCGAACGCATCATGATCGAGACCGCCCTCAAGCACACCGCCGGCCGCCGCCGCGACGCCGCCGTGCTGCTGGGCTGGGGCCGCAATACCTTGACCCGCAAGATCAAGGAATTGGGGATGAAGGTCGATGGTGGGGATGATGATGAGGGAGATGAGGGTTGA	MSRSETVWIVDDDRSIRWVLEKALQQEGMTTQSFDSADGVMSRLARQQPDVIISDIRMPGASGLDLLARIREQHPRLPVIIMTAHSDLDSAVASYQGGAFEYLPKPFDVDEAVSLVKRANQHAQEQQGLEEVPALARTPEIIGEAPAMQEVFRAIGRLSHSNITVLINGESGTGKELVAHALHRHSPRAASPFIALNMAAIPKDLMESELFGHEKGAFTGAANLRRGRFEQADGGTLFLDEIGDMPADTQTRLLRVLADGEFYRVGGHTPVKVDVRIIAATHQNLETLVHAGKFREDLFHRLNVIRIHIPRLADRREDIPTLARHFLGRAAQELAVEPKLLKSETEEYLKNLPWPGNVRQLENTCRWITVMASGREVHISDLPPELLSLPQDSAPVTNWEQALRQWADQALARGQSSLLDSAVPSFERIMIETALKHTAGRRRDAAVLLGWGRNTLTRKIKELGMKVDGGDDDEGDEG	PGPT0000685_821	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000685-ntrC|glnG-K07712	NA	NA
D1-36_00356	1086	glnL	COG3852	Sensory histidine kinase/phosphatase NtrB	ATGACCATTAGCGACGCACTACACCGCTTGCTGCTCGACAATCTCACCACCGCGACCATCCTGCTCGACGCCGAACTGCGCCTTGAGTACATGAACCCGGCGGCGGAGATGCTCTTGGCTGTCAGTGGCCAGCGCAGCCATGGGCAGTTCATCAGCGAACTGTTTACTGAATCCGCCGAAGCGCTCAACTCCCTGCGCCAGGCCGTCGAGCAGGCCCACCCATTCACCAAGCGCGAAGCCATGCTTACCGCCCTGACCGGCCAGACCCTGACCGTCGACTACGCGGTAACGCCTATCCTGAACAACCACGCCACCCTCCTGTTGCTCGAAGTCCATCCCCGTGATCGCCTGCTGCGCATCACCAAGGAAGAGGCGCAATTGTCCAAGCAGGAAACCAGCAAGATGCTGGTGCGCGGCCTCGCCCACGAGATCAAGAATCCGCTTGGCGGCATACGTGGCGCGGCGCAGTTGCTCGCCCGTGAGCTGCCGGAAGAAAGCCTCAAGGACTACACCAACGTCATCATCGAAGAAGCCGACCGCCTGCGGAACCTGGTGGACCGCATGCTCGGCTCGAACAAGCTTCCGTCCCTGGCGATGTGCAACGTCCACGAAGTGCTGGAGCGCGTCAGCAGCCTGGTCGAAGCGGAAAGCCAGGGCTGCATCACGTTGGTGCGCGACTACGACCCGAGCATTCCCGACGTCCTGATCGACCGCGAGCAGATGATCCAGGCCGTGCTGAACATCGTGCGCAACGCCATGCAGGCCATCAGCAGCCAGAACGAGCTGCGCCTGGGCCGCATCAGCCTTCGCACCCGCGCCATGCGCCAGTTCACCATCGGCCATGTGCGTCATCGCCTGGTGACCAAGATCGAAATCATCGACAACGGCCCGGGGATCCCTGCCGAGCTGCAGGAAACCATCTTCTTTCCCATGGTCAGCGGCCGCCCGGACGGTACCGGGCTGGGGCTGTCCATCACCCAGAACATCATCAGTCAGCATCAGGGCTTGATCGAATGTGAAAGCCACCCTGGCCACACCACTTTCTCGATCTTCCTGCCACTGGAACAAGGAGCCACATCGACATGA	MTISDALHRLLLDNLTTATILLDAELRLEYMNPAAEMLLAVSGQRSHGQFISELFTESAEALNSLRQAVEQAHPFTKREAMLTALTGQTLTVDYAVTPILNNHATLLLLEVHPRDRLLRITKEEAQLSKQETSKMLVRGLAHEIKNPLGGIRGAAQLLARELPEESLKDYTNVIIEEADRLRNLVDRMLGSNKLPSLAMCNVHEVLERVSSLVEAESQGCITLVRDYDPSIPDVLIDREQMIQAVLNIVRNAMQAISSQNELRLGRISLRTRAMRQFTIGHVRHRLVTKIEIIDNGPGIPAELQETIFFPMVSGRPDGTGLGLSITQNIISQHQGLIECESHPGHTTFSIFLPLEQGATST	PGPT0000680_688	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000680-ntrB|glnL-K07708	NA	NA
D1-36_00357	627			hypothetical protein	TTGAGCCGCTGGTTACTCGCCGCAGCCCTGCTGTTGAGCGCATCGCCGGGCCTGGCGCAGGTCTATACCTACATCGACGCCCAGGGCAATCGTGTCTTCACCGACCAGCCCCGCCCCGGCAATGCCAAGAAACTGCAGCTATCACCGGGCAACCGGATGCAGGCGCCGCCCCCGGGTACAACCTCAACGGCGCCACCGGAGGAACCGCGACCCGAACCATTGTTTCGTTACGAGATGCTCCGGCTGCTGATTCCCGAACCGGACGCCACGATACGCAGCACCGCCGGGGAGCTGATCGTCACCGCCACCAGCGAACCCGGCCTGCAGAAAGGCCATCGCTACCGCCTGCTGCTGGATGGCAAACCCACCGGCGCCGCAGGGCCCAGCCCGGTATTCGCGTTGAAGAATATCGACCGTGGCAGCCATCAACTGGCGGTTGAAATCCTCGATGAGCAAGACCGTATCGTCGAACGCACCGCCAACCAACCCTTCCACATGCAGCGCATGTCCCTGGCACAGAAGCGCCGCGTCAAACCTTGTACAAAGGCCGATTACGGCCAACGTCCCGAATGCCCGCTCGCCGACAAGCCCAAGGAAGAAGAAAGCAGCATCCTGCCGTTCTTCTAA	MSRWLLAAALLLSASPGLAQVYTYIDAQGNRVFTDQPRPGNAKKLQLSPGNRMQAPPPGTTSTAPPEEPRPEPLFRYEMLRLLIPEPDATIRSTAGELIVTATSEPGLQKGHRYRLLLDGKPTGAAGPSPVFALKNIDRGSHQLAVEILDEQDRIVERTANQPFHMQRMSLAQKRRVKPCTKADYGQRPECPLADKPKEEESSILPFF				NA	NA	NA	NA	NA
D1-36_00358	516			hypothetical protein	ATGGGTCGCGGTTCAATTCTCCTTTTATTGCTGCTGACGCTGCCCGCCGCCGCGCAGATCTACAAATACACCGACGCCAACGGCAACACCGCCTACAGCAACCAGCCGCCCGACGGCGTGCCGGCCCAGGCGGTGGAGTTGCCGCCGCTCAACAGCGTTGAAACCCAGGCTCCGACCACCCCGGAAACGCCCGCACCTGCGCAAAACAACGACGCGCCGCGCAACGCCTACGACCTGCTGGAACTGACCGACATTCCAACCGATGAGGCCCTGCGCGCCAACAATGGCACCTTCACCGTCGGCGTTCGGACACAACCGCGCCTGCAAAGCCCCCATCTGTTCAGGTTGCTGCTGGACGGCCAGCCCTATGGCCAGCCTAGCAATGTGCCACGGCTGCAATTGATGAACATCGATCGCGGCGAGCACAGCCTCGCAGTCCAGGTCATCGACGGCGAGCGCCTGGTGCAGCAGAGCGAAACCGTCACCTTCACCGTGCAGCGGGTACACGTTCCTTGA	MGRGSILLLLLLTLPAAAQIYKYTDANGNTAYSNQPPDGVPAQAVELPPLNSVETQAPTTPETPAPAQNNDAPRNAYDLLELTDIPTDEALRANNGTFTVGVRTQPRLQSPHLFRLLLDGQPYGQPSNVPRLQLMNIDRGEHSLAVQVIDGERLVQQSETVTFTVQRVHVP				NA	NA	NA	NA	NA
D1-36_00359	597			hypothetical protein	ATGATGGTGCGCCGCTTCCCTTACAAGACGAGATCGCCAATGACTTCCCGCTTGAAGATTTGCCTCGCCCTGTCTGCCGCACTGCTGTGTTCCACAGCCGAGGCCAGCAACGCCCCCGACGCCCTGACGCCGTTGCTCAATGCCATCGGCGAACGCCTGCTGATCGCAGATCAAGTGGCATTGAGCAAATGGGACAGTGGCAAACCCGTAGAGGACCGTCCGCGCGAGCGCGAAGTCATTGCCGCCGCCGTGGCCCAGGCGCCCACCTACAAGCTGAACGGCGAGACGGTGGAGGCGTTTTTCGCCGCCCAGATAGAAGCCAACAAACTGGTCCAATACATCAACTTGTCCGACTGGGCCCTGGACGGCAAGGCGCCAGACCTGCCGCGCCCGGACCTGGTAGGCGAGATCCGCCCTAAACTCGACCGCCTGCAAAAACGCCTGCTGCAACAACTGGCCGACTTCGCGCCCTACCGCACCGATCCACAGTGCCCGCAATGGCTGGCCCAGGCCACCCACCACAACAAACAGCACCCGGTGCACCGGCTGGCCCTGATCCGGGCAACCGGCGGACTGTGTATCTCCCCGAAATCCTGA	MMVRRFPYKTRSPMTSRLKICLALSAALLCSTAEASNAPDALTPLLNAIGERLLIADQVALSKWDSGKPVEDRPREREVIAAAVAQAPTYKLNGETVEAFFAAQIEANKLVQYINLSDWALDGKAPDLPRPDLVGEIRPKLDRLQKRLLQQLADFAPYRTDPQCPQWLAQATHHNKQHPVHRLALIRATGGLCISPKS				NA	NA	NA	NA	NA
D1-36_00360	1407	glnA		Glutamine synthetase	ATGTCGAAGTCGGTTCAACTCATCAAAGATCATGACGTCAAGTGGATTGATCTGCGCTTCACTGACACCAAAGGCACTCAACATCACGTGACCATGCCGGCCCGTGATGCGCTGGACGACGAATTCTTCGAAATCGGCAAGATGTTCGACGGTTCTTCCATCTCCGGCTGGAAAGGCATCGAAGCCTCCGACATGATCCTGATGCCGGACGACGAAACCGCCGTCCTGGACCCGTTCACCGAAGAGCCGACCCTGATCCTGGTCTGCGACATCATCGAACCTTCGACCATGCAAGGTTATGACCGCGACCCACGCGCCATTGCCCACCGCGCCGAGGAATACCTGAAGTCCACCGGTATCGGCGACACCGCTTTCTTCGGTCCAGAGCCTGAGTTCTTCATCTTTGACTCGGTCAAGTTCAAGTCCGATATCTCCGGCTCCATGTTCAAGATCTTCTCCGAACAAGGTTCGTGGATGTCCGACCAGGACGTGGAAGGCGGCAACAAAGGCCACCGTCCAGGTATCAAAGGCGGCTACTTCCCGGTTCCACCGTTCGACTTCGACCACGAAATCCGTACCTCCATGTGCAACGCACTGGAAGAAATGGGCCAGACCGTCGAAGTTCACCACCACGAAGTGGCAACTGCCGGCCAGAACGAAATCGGTGTGAAATTCAACACACTGGTGAAGAAGGCTGACGAAGTCCAGACCCTGAAGTACTGCGTACACAACGTTGCCGACGCCTACGGCCGCACCGCGACCTTCATGCCGAAGCCTCTGTACGGCGACAACGGTTCGGGCATGCACGTGCACATGTCGATCTCCAAGGACGGCAAGAACACCTTCGCTGGCGAAGGTTATGCCGGTCTGTCGGACACTGCCCTGTACTTCATCGGTGGCATCATCAAGCACGGTAAGGCCCTGAACGGCTTCACCAACCCGTCGACCAACTCCTACAAGCGTCTGGTACCAGGCTTCGAAGCCCCGGTCATGCTGGCCTACTCGGCTCGCAACCGTTCCGCCTCGATCCGTATCCCTTACGTTAACAGCCCAAAAGCCCGCCGTATCGAAGCGCGCTTCCCGGATCCGGCTGCCAACCCATACCTGGCCTTCGCTGCACTGATGATGGCCGGCCTGGACGGTATCCAGAACAAGATCCACCCTGGCGATGCCGCTGACAAAAACCTGTATGACCTGCCGCCTGAAGAGGCCAAGGAAATCCCACAGGTTTGTGGCAGCCTGAAAGAAGCCCTGGAAGAGCTGGACAAGGGCCGTGCGTTCCTGACCAAGGGCGGCGTATTCAGCGATGACTTCATCGACGCTTACATCGCACTGAAAAGCGAAGAAGAAATCAAGGTTCGCACCTTCGTACACCCACTGGAATACGAGCTGTACTACAGCTGCTGA	MSKSVQLIKDHDVKWIDLRFTDTKGTQHHVTMPARDALDDEFFEIGKMFDGSSISGWKGIEASDMILMPDDETAVLDPFTEEPTLILVCDIIEPSTMQGYDRDPRAIAHRAEEYLKSTGIGDTAFFGPEPEFFIFDSVKFKSDISGSMFKIFSEQGSWMSDQDVEGGNKGHRPGIKGGYFPVPPFDFDHEIRTSMCNALEEMGQTVEVHHHEVATAGQNEIGVKFNTLVKKADEVQTLKYCVHNVADAYGRTATFMPKPLYGDNGSGMHVHMSISKDGKNTFAGEGYAGLSDTALYFIGGIIKHGKALNGFTNPSTNSYKRLVPGFEAPVMLAYSARNRSASIRIPYVNSPKARRIEARFPDPAANPYLAFAALMMAGLDGIQNKIHPGDAADKNLYDLPPEEAKEIPQVCGSLKEALEELDKGRAFLTKGGVFSDDFIDAYIALKSEEEIKVRTFVHPLEYELYYSC	PGPT0000645_4402	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
D1-36_00361	1455	thiI	COG0301	tRNA sulfurtransferase	ATGAAACTAATCGTAAAAGTCTTCCCCGAGATCACCATCAAGAGCCGCCCGGTACGGATGCGTTTCATCCGCCAGTTGGCCAAGAACATCCGTGCCGTGCTCCGTGACCTGGACCCGGCCGTGGTGGTGAACGGTGTGTGGGACAACCTCGAACTGGAAACCCGCGTCAGCGAACCCAAGCTGCTGAAGGAAATGACCGAGCGCCTGAGCTGCATGCCGGGCATCGCGCATTTCCTGCAAGTTGACGAGTACCCGCTGGGGGACTTCGACGATATCCTCGCCAAGTGCATGCTCCATTATGGTGATGCACTGGCCGGAAAGATCTTTTCGGTCCGCTGCAAGCGCGCCGGCAAGCACCCGTTCAGTTCCATGGACGTGGAACGTTATGTCGGCAGCCAGCTGCGCCGGCAGTGCGGCGCCGCCGGGATTTCGCTGAAAGATCCGCAGGTTGAAGTGCGCATCGAAATTCGCGACCAGCGGTTGTTCGTGATCCACAGCCAGCACGACAGCATCGGCGGTTACCCGTTGGGGTCACTGGAGCAAACGCTGGTGCTGATGTCCGGTGGCTTCGATTCCACCGTCGCCGCTTACCAGATCATGCGTCGCGGCCTGATGAGCCATTTCTGCTTCTTCAACCTCGGCGGGCGCGCCCATGAGCTGGGCGTGATGGAAGTGGCGCACTTCATCTGGAAGAAGTACGGCAGCTCCCAGCGCGTGTTATTTGTGAGCGTGCCGTTCGAAGAAGTCCTGGGCGAGATTCTCGGCAAAGTCGATAACAGTCATATGGGCGTCATTTTGAAGCGTATGATGTTGCGTGCCGCGACGAGCATCGCCGACCGGCTGCACATCGACGCGCTGGTGACCGGCGAGGCGATTTCCCAGGTATCGAGCCAGACGCTGCCGAACCTGTCGGTAATCGACTGCGTGACCGAGAAACTCGTGCTGCGCCCGCTGATCGCCAGCCACAAGCAGGACATCATCGACACGGCGAACGAGATCGGCACCGCCGATTTCGCCCGGCACATGCCCGAGTACTGCGGGGTCATCTCGGTCAATCCGAAGACGGCGGCCAAGCGCGGGCGCGTGGAGCACGAAGAGAAAGAATTCGACATGGCGGTACTCGAGCGCGCGATCGAGAACGCCAGGCTGGTACCGATCGATCGGGTCATCGACGAATTGGGCCAGGACATCCAGATTGAAGAAGTCGGCGAAGCGCTGGCCGGTCAGATCATCATCGACATCCGTCACCCGGACGATGCTGAGGACGACCCGCTGAGCATCGCCGGCGTCGAGGTACAAACGATGCCGTTCTATGCAGTGAACGCGCGTTTCAAGGAACTGGACCCTACTCGCCAGTACCTGCTGTATTGCGACAAAGGCGTGATGAGTCGCCTGCATGCTCACCATTTGCTCAGTGAGGGGCATGCCAATGTGCGCGTTTATCGACCGAGCTAA	MKLIVKVFPEITIKSRPVRMRFIRQLAKNIRAVLRDLDPAVVVNGVWDNLELETRVSEPKLLKEMTERLSCMPGIAHFLQVDEYPLGDFDDILAKCMLHYGDALAGKIFSVRCKRAGKHPFSSMDVERYVGSQLRRQCGAAGISLKDPQVEVRIEIRDQRLFVIHSQHDSIGGYPLGSLEQTLVLMSGGFDSTVAAYQIMRRGLMSHFCFFNLGGRAHELGVMEVAHFIWKKYGSSQRVLFVSVPFEEVLGEILGKVDNSHMGVILKRMMLRAATSIADRLHIDALVTGEAISQVSSQTLPNLSVIDCVTEKLVLRPLIASHKQDIIDTANEIGTADFARHMPEYCGVISVNPKTAAKRGRVEHEEKEFDMAVLERAIENARLVPIDRVIDELGQDIQIEEVGEALAGQIIIDIRHPDDAEDDPLSIAGVEVQTMPFYAVNARFKELDPTRQYLLYCDKGVMSRLHAHHLLSEGHANVRVYRPS	PGPT0008940_220	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B1|THIAMIN_METABOLISM	ISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008940-thiI-K03151	NA	NA
D1-36_00362	90			hypothetical protein	ATGTGCGCGTTTATCGACCGAGCTAAGTGCCCGGGGCTGTTTGCCTGTGGCCTGCGTCACCGGCCCCCCGACGCCGCCGACACGCTGTAA	MCAFIDRAKCPGLFACGLRHRPPDAADTL				NA	NA	NA	NA	NA
D1-36_00363	1821	typA	COG1217	GTP-binding protein TypA/BipA	GTGATCGAAAATCTACGCAACATCGCCATCATTGCTCACGTTGACCATGGTAAGACCACCCTGGTAGACAAACTCTTGCGTCAATCCGGCACCCTGGAGCGCAACGAGCTCAACGACGAGCGCGTGATGGACTCCAACGACCAGGAAAAAGAGCGCGGTATTACCATCCTGGCGAAAAACACCGCCATCAACTGGAACGGCTACCACATCAACATCGTGGACACCCCGGGCCACGCCGACTTCGGTGGTGAAGTAGAGCGCGTGATGTCGATGGTCGACTCCGTGCTGCTGCTGGTTGACGCCCAGGACGGCCCTATGCCGCAAACCCGTTTCGTGACCAAGAAGGCCTTCGAAGCCGGCCTGCGTCCGATCGTGTGCATCAACAAGGTTGACCGTCCAGGCGCGCGTCCGGACTGGGTTCTGGATCAGATCTTCGACCTGTTCGACAACCTGGGCGCCACCGAAGAACAGCTGGACTTCAAAGTCGTCTACGCCTCGGCCCTGAACGGCATTGCCGGTCTGGACCACACCGACATGGCTGAAGACATGACCCCGCTGTACCAGTCGATCGTCGACAACGTACCTGCACCGGCCGTTGACCGTGACGGTCCGTTCCAGATGCAGATCTCGGCACTGGACTACAACAGCTTCCTGGGTGTGATCGGTGTTGGCCGTATCGCCCGTGGTCGCGTCAAGCCGAACACCCCGGTCGTGGCTATCGGCGCCGACGGCAAGCGCCGCAACGGTCGTATCCTGAAGCTGATGGGTCACCATGGCCTGCACCGCGTTGACGTCGAAGAAGCTGCCGCCGGCGACATCGTCTGCATCAGCGGTATGGACTCGCTGTTCATCTCCGACACCCTGTGCCACCCGGACACCGTTGAAGCGATGAAGCCGTTGACCGTCGACGAGCCGACCGTTTCCATGACCTTCCAGGTCAACGACTCGCCATTCTGCGGTAAAGAAGGCAAGTTCGTGACGTCCCGTAACATCAAGGAACGTCTGGACAAAGAGCTGCTGTACAACGTTGCACTGCGCGTTGAAGAAGGCGACTCGGCTGATAAGTTCAAGGTTTCCGGCCGTGGCGAACTGCACCTTTCGGTACTGATCGAAACCATGCGTCGCGAAGGCTTCGAAATGGCTGTAGGCCGTCCGGAAGTGATCATCCGTCTGGTTGACGGCGTGAAGCACGAACCGTTCGAAAACGTCACCATCGACCTGCCGGAAGAATCCCAGGGCAAGGTGATGGAAGAGATGGGCCTGCGTAAGGGCGACCTGACCAACATGGTGCCGGATGGCAAAGGCCGTGTACGTCTGGAATACAACATCCCTGCTCGCGGTCTGATCGGTTTCCGTAACCAGTTCCTGACCCTGACCAACGGTGCTGGCATCCTGACCTCGATCTTCGACCGTTACGACGTGATGAAGTCGGGCGACATGTCCGGCCGTCAGAATGGCGTTCTGGTTTCGGTTGAAACCGGTAAGGCACTGACCTACTCCCTGGAAACTCTCCAGGCGCGTGGCAAGCTGTTCGTCGAGCACGGCCAGGAAATCTACGGCGGCCAGATCGTTGGTCTGAACAGCCGTGACAACGACCTGGGCGTGAACCCTACCAAGGGCAAGAAGCTCGACAACATGCGTGCTTCGGGTAAAGACGAAACCATCGCCCTGGTTCCACCTGTTCGCTTCACTCTGGAACAGGCCCTGGAATTCATCCAGGATGACGAGCTGTGCGAAGTGACGCCTAAGTCGATCCGCCTGCGCAAGAAGATCCTGGACGAAAGCGAGCGTACCCGCGCCGCCAAGAAAGCCAAGGCCTGA	MIENLRNIAIIAHVDHGKTTLVDKLLRQSGTLERNELNDERVMDSNDQEKERGITILAKNTAINWNGYHINIVDTPGHADFGGEVERVMSMVDSVLLLVDAQDGPMPQTRFVTKKAFEAGLRPIVCINKVDRPGARPDWVLDQIFDLFDNLGATEEQLDFKVVYASALNGIAGLDHTDMAEDMTPLYQSIVDNVPAPAVDRDGPFQMQISALDYNSFLGVIGVGRIARGRVKPNTPVVAIGADGKRRNGRILKLMGHHGLHRVDVEEAAAGDIVCISGMDSLFISDTLCHPDTVEAMKPLTVDEPTVSMTFQVNDSPFCGKEGKFVTSRNIKERLDKELLYNVALRVEEGDSADKFKVSGRGELHLSVLIETMRREGFEMAVGRPEVIIRLVDGVKHEPFENVTIDLPEESQGKVMEEMGLRKGDLTNMVPDGKGRVRLEYNIPARGLIGFRNQFLTLTNGAGILTSIFDRYDVMKSGDMSGRQNGVLVSVETGKALTYSLETLQARGKLFVEHGQEIYGGQIVGLNSRDNDLGVNPTKGKKLDNMRASGKDETIALVPPVRFTLEQALEFIQDDELCEVTPKSIRLRKKILDESERTRAAKKAKA	PGPT0023720_3341	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0023720-typA|bipA-K06207	NA	NA
D1-36_00364	438			hypothetical protein	ATGATGAAGCCCAACCTGATCGCCGCCGCGGAGATCGACCGACTCGATACCTGGGCCAAGTACTCCGCCCCGATGTGCGGTTCCTGCGTGTCGAGCTGCTGCACGCTGCCGGTGGAGGTGAAGATCAAGGATCTGATCCGGATTGGCATCGTCGATGAGTTCGAACTGGGCGACCCGCCGAAGAACATCGCCAAGCGCCTGCAAAAGGAAGGGATCGTCGAGCGCTACAACCAGAAATCGGAAATCTTCACGTTGCAACGCATGAGCAACAACGATTGCCTGTACCTGGACCGAAAGAGCCGGCTGTGCACCATCTATGAGAAGCGCCCGGACACCTGCCGCAACCATCCACGGGTCGGGCCACGGCCGGGTTATTGCGCGTACAAGCCCAAGGAAGTGGAGCGCGAGCGGAATCCGCGGACGCTGGACAAATTTTGA	MMKPNLIAAAEIDRLDTWAKYSAPMCGSCVSSCCTLPVEVKIKDLIRIGIVDEFELGDPPKNIAKRLQKEGIVERYNQKSEIFTLQRMSNNDCLYLDRKSRLCTIYEKRPDTCRNHPRVGPRPGYCAYKPKEVERERNPRTLDKF				NA	NA	NA	NA	NA
D1-36_00365	2451	malP	COG0058	Maltodextrin phosphorylase	ATGACTCAAGAACCACTTGTTCGCGAAGCTGAGGTTGCGGCATTTCGCGACGCTGTGTTGACCAAACTCACTTATGCCGTCGGCAAGGATCCCGATCATGCGTTTGATCACGATTGGTTCGAAGCCATCGCCCTTGCCGCCCGCGACCACATGGTCGAACACTGGATGGACCACACGCGGCAGATCTACCGCAAGGGCCAGAAGCGTGTCTATTACCTCTCCTTGGAATTCCTCATCGGCCGCCTGCTCTACGACAGCCTGAGCAACCTCGGCCTGCTGGACACCGCCCGCGAAGCGCTGACCGAGCTGGGTGTCGACCTGGAACGCATCCGTCTGCTGGAGCCCGACGCGGCCCTGGGCAACGGCGGCCTTGGCCGTCTGGCGGCGTGCTTCATGGAAAGCATGTCGACACTGGGTATCGCCGGTCATGGCTACGGTATTCGTTACGAACACGGCTTGTTCCGCCAGGCGATTGTCGATGGCTGGCAACAGGAGCAGACCGAGCACTGGCTGGATTTCGGCAACCCCTGGGAATTCGAGCGGCCTGAAGTCGTCTACCCAATCGGCTTTGGCGGCAGCGTCGAAACCGTCACCGACGAAACCGGCAAGACTCGCCAGGTGTGGTCCCCGGCCGAAACCGTGCGGGCCATCGCCTATGACACGCCGGTGGTCGGCTGGCGCGGCGCGAGCGTCAATACCCTGCGCCTGTGGCGTGCCCGGGCCATGGAAGAACTGCACCTGGAGCGCTTCAATGCCGGCGACCACCTCGGCGCCGTAGCCGAAGTGGCCCGGGCCGAAAGTATTTCCCGCGTGCTGTATCCGGCCGACAGCACCGAGGCCGGCCAGGAGTTGCGCCTGCGCCAGGAGTACTTCTTTGTCGCCGCTTCGCTGCAGGACTTGCTGCGTCGTCATCGCAACATGCACACCTCGGTGCTGACCCTGGGCGATCACGCGGCGATCCAGCTCAACGACACGCACCCGTCCATTGCCGTGGCCGAGCTGATGCGCCAATTGGTGGACGTCTACGATGTGGCGTGGGACGCGGCCTGGCAGATCACCCAGGACACACTGTCCTACACCAACCACACGTTGCTGCCTGAGGCCCTGGAAACCTGGCCGGTAGGGTTGATGGAGCGCATGCTGCCTCGGCACATGCAGATCATCTACCTGATCAACGCCCAGCACATCGATTCGCTGCGGGCCAAGGGCGTGCATGATTTCGACGTGCTGCGCTCGGTGTCGCTGATCGAGGAAGACAACGGTCGCCGGGTGCGCATGGGCAACCTGGCGTTCCTCGGCTCCCACAGCGTCAACGGCGTGTCCGGGTTGCACACCCAGTTGATGCGCAGCACGGTGTTCTCCGAGCTGCACAAGCTCTATCCAGAGCGAATCAACAACAAGACGAACGGCATCACTTTCCGCCGCTGGCTGTTCCAGGCCAACGCTGAATTGACCTCGATGATGGTCGACGCTCTGGGGCCTGGCGTGCTCGACAACCCCGAGGAACGGCTGATCGAGCTGGAGCCGTTCGCCGACAAGCCGGCGTTCCGCAAGCAGTTCGCCGAGCAGCGCCTGCACAGCAAGAAAGCCTTGGCTTACTTGATTCACGAGCGCCTGGGCATCGCCGTCAACCCGGCGGCGATGTTCGACGTGCAGGTCAAGCGCATCCACGAGTACAAACGCCAGTTGCTCAACCTGCTGCACACCGTGGCGCTGTACCAGGCGATTCGTGCCGAGCCGGAAGTGGACTGGGTACCGCGGGTAAAGATCTTCGCCGGCAAGGCCGCCGCCAGTTACCACCAGGCCAAGCTGATCATCAAGCTGACCAACGACATCGCCCGGGTGGTGAACAACGACCCGACCGTGCGCGGTCTGCTCAAAGTGGTTTTCCTGCCCAACTACAACGTCAGCCTGGCCGAAAGCATCATTCCGGCGGCGGACTTGTCGGAGCAGATTTCCACCGCCGGTTTCGAGGCGTCGGGCACCAGTAATATGAAGTTCGGCCTCAACGGCGCGCTGACCATCGGCACCATGGATGGCGCTAACGTGGAGATGCACGAGCGCGTCGGCGATGAGCACATGTTCATCTTCGGCCTGACTGCCGAGCAGGTGGAAGCGCGCAAGCGCAACGGTGAGTTCAGCGCCGCGCCGGACATCGCCGCCTCCCATCGCCTCAACGATGTGTTGCAGGCGATTCGGGGCGGGGTGTTTTCCCCGGACGATCCGATGCGCTACACCGGATTGGTGGATTCGCTGGTGGACTACGACCGCTTCCTGGTCTGCGCCGATTTCGATGCCTACTGGAACGCCCAGGTGAAGGTCGAAGAGAAGTGGCACGACTCCAAGCAATGGTGGCGCTCGGCGGTGCTCAACACCGCGCGCATGGGCTGGTTCTCCTCGGACCGGACCATTCGCGAATACGCCACCGATATCTGGAAAGCGCTGGAATAA	MTQEPLVREAEVAAFRDAVLTKLTYAVGKDPDHAFDHDWFEAIALAARDHMVEHWMDHTRQIYRKGQKRVYYLSLEFLIGRLLYDSLSNLGLLDTAREALTELGVDLERIRLLEPDAALGNGGLGRLAACFMESMSTLGIAGHGYGIRYEHGLFRQAIVDGWQQEQTEHWLDFGNPWEFERPEVVYPIGFGGSVETVTDETGKTRQVWSPAETVRAIAYDTPVVGWRGASVNTLRLWRARAMEELHLERFNAGDHLGAVAEVARAESISRVLYPADSTEAGQELRLRQEYFFVAASLQDLLRRHRNMHTSVLTLGDHAAIQLNDTHPSIAVAELMRQLVDVYDVAWDAAWQITQDTLSYTNHTLLPEALETWPVGLMERMLPRHMQIIYLINAQHIDSLRAKGVHDFDVLRSVSLIEEDNGRRVRMGNLAFLGSHSVNGVSGLHTQLMRSTVFSELHKLYPERINNKTNGITFRRWLFQANAELTSMMVDALGPGVLDNPEERLIELEPFADKPAFRKQFAEQRLHSKKALAYLIHERLGIAVNPAAMFDVQVKRIHEYKRQLLNLLHTVALYQAIRAEPEVDWVPRVKIFAGKAAASYHQAKLIIKLTNDIARVVNNDPTVRGLLKVVFLPNYNVSLAESIIPAADLSEQISTAGFEASGTSNMKFGLNGALTIGTMDGANVEMHERVGDEHMFIFGLTAEQVEARKRNGEFSAAPDIAASHRLNDVLQAIRGGVFSPDDPMRYTGLVDSLVDYDRFLVCADFDAYWNAQVKVEEKWHDSKQWWRSAVLNTARMGWFSSDRTIREYATDIWKALE	PGPT0018545_3070	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
D1-36_00366	3624			hypothetical protein	ATGCAATGGATTTTGACACTGTTGGGCCTGGCACTCGGCTGGGTGGTGGACGAGTCGTTCGCCGATGCGCTGATAGGCGCGTTGGTCGGGCTCGGCATCGCCCAGTCGTTTCGACTGGGGCGCTTGGGTATCCAGGCGGCCAAGCAACAAATCCTGTTGCAAGAGGCCCAGCAGAGTCTGCTCACCTTGGAAGCGCGGCTGGCGGTGCTCGAACGCGGCAAGGCCGCCCAGCCGAGTGATCCGGCGCCGGCGGCCGAGGCCGTCGCGCCCCAGGCTCCAAAACCCGAAGCCCGCACCGAGCCGGAGCTGGTCTGGGAACTGCCGCCAGACCTCGAACCCATCTCCGTCATGAGCACCCAGGCCAGCCAGCCGTTGCCTGATGAAATCTGGAGCCCTGCGCCGGCCGCTTCCAGCCGTCCCTCCAATCGTGACTTTGCGCCGTTGCCCCTTGAATCGACGTCGCCTGCGCCTGCGGTTCCCCGTGGCCCGAATCTGCTCGATCGCGCCATCACCGCCGCGCGCAACTGGCTGTTCGGCGGTAATACCGTGTTGCGGGTCGGGGTGGTGTTGTTATTCCTCGGCCTGGCATTCCTGTTGCGCTACGCCACCGAAGGCATGGTGGTGCCGATCGAATTGCGCTATGCCGGCGTCGCGGCCAGCGCGCTGGGCCTGTTGGGCCTGGGCTGGTGGTTGCGCCAACGTAACAACAGTTATGCATTGATGCTCCAAGGCACGGGCATTGCGGTGCTGTACCTGACCGTGTTTGCCGCCATGCGCCTGCATCCATTGCTCGATTCCAAGGCAGCGCTGGCCTTGCTGGTGGCGGTCACGGTGTTCTCGGCGATCCTGGCGGTCACCCAGAATGCCATGGGCCTGGCGGCGGCCGCGGCGCTGGGCGGGTTTGCCGCGCCGATCCTCACCTCCACCGGCAGTGGCAACCACGTCGGGCTGTTCAGCTATTTCATCCTGCTCAACGCCGGCATCCTCGCGATTGCTTGGTTCAAAGCCTGGCGCCTGCTCAACCTGATTGGCTTTGTTGGTACTTTCGGCATTGGTTTCGCCTGGGGTTTGCGTTCCTATACGCCGGAATTGTTGTGGAGCACCGAACCGTTCCTCATTGTGTTTTTCCTGATGTATTTGGTGATCGGCTTGCTGTTCACCCGGCGCAAGCTGATGGAAATGAGCGATGGACCCGACGATGACAGCCGCGATGCGATGTTGCGCTGGTCGGCCCGCAAGGGTGACTACGTCGATGGCAGCATGCTGTTCGGCCCTCCGTTGGTAGGCTTCGGTTTGCAGTTCGCGTTGGTCCAGCACCTGGAATTCGCCGCAGCGTTCAGTGCTTTGGCCCTGGGCATGATCTACATGGGTCTGGCCCGCGTATTGATGGGCGGTCGCGCCGTGCTGCTGGCTGAAACCTGCCTCGCCTTGGGCGTGATTTTCAGCAGTCTGGCGATTCCGCTCGGCCTCGATGCCCGTTGGACTGCCGCGGCATGGGCGGTGGAGGGCGCCGGCATCTTCTGGCTGGGCCTGCGCCAACAACGGCCCTTCGCGCGAGTCTTTGCCCTGTTGCTGCAATTGGGTTCGGCGCTGGCCTTCGTCAGCGAATTGCATTCAGGTGAAGGCAGCCTGCTGGAAGGTTCGTGGCTGGGTGCGTTGATGCTCGGTGGTGCCTTGCTGTTCAGCTTCTATCAGTCGCGCAAGGCAGAGCCTGACCATATCGCGAGCTGGGAGCGCCAGGGCCAACCCGTGCTGGCGGTGCTGGGCCTGGGCTTCCTTTATTTGCTGGCTCCTCTGTTCTTCTCCACCCACGGCACCGCCATCGCTTGGGCATTGGCCGGCCTGGCGACGCTGTTCGTTGGCCTGCGCCTGCAATCACGTAGCTTCTTGTTTACGGCGTTCGCCGTGCAACTGCTGGGCGGTGCGTTGTTCCTGGTGCGCCTGCAAGGTGCGGACGGGGATTCGACGGCCGTGTTCAGCGCTGGCTGGAGCGGTTTGCTCAGTGCTTCGCTGATTGGCCTGGCATTGATCGGCGGCATGCTGCTGGCGGCGCGCGACGACATGGTGCGCAACGATGTGCGGTTGCTGCGTGGCTTGTCGGTGGTGTTGCTGGCGGGACTGGTGCTGATCAATCTCGCGGTGCTCTTCGTCCTGCCTTGGCAAACGGCGAGCGGCGTGTGGGCGGCCAGCGGCCTGTTGATCATCTGGTTGAGCCTGTACCTGAAGCAGCGGGTGAGTTTTGTCTTTGGCTTGCTGCTGCAATTGCTGGGCGGTGCGGCGTTCCTCACTGCGGGGCCGGCGCTGTTGGGGGCGCTCGATGCCGAGGATCTTCGCCCGCTGGCCCACAGCGGTTTCTGGACACCATTGGTTCTGGGACTGGCGGCGCTGGTGGGTGCATGGCGGCTGCAACGGGCGCATTCGGCGAAGGAGCTCGACGCCTTGAGTTTGCGGCGCCTGTCCGAGCTGTTGCTGATTTGGGGTGCCGGTTGGTGGGCGCTGGCATGGGTCAGCGAAGTGCTGCGCTTTGCCCCGGCCAACCTGCAAGGCAGCTTGTTGCTGATGGTGGCGGCGGCCAGCGTGGCGGTGTGGAGCGTCTTGTCGCTGCGTTTGAAATGGCCGGCGCTGGGGCTGTTGGGCACCTTGCTGATCCCGGCGGCGGGCTGTGTGCTGGTGGCGACCGGGCACAGCCGTTACCACCCGGCGGCGGATTTCGGTTGGCTGGCCTGGCTTGCGGTGTTCGCCGTGCATTTCATGTCCTTGAAACGGCTCGCGCCGATACTGCCGGCCCAGGCGCGCAGTACGGCTCATGTGCTCGGCTGCTGGCTGCTGATGACGGTGTTGATGCTGGAGCTGCGTTACGGCCTGCTGTTGCTGTCTGAGCAATACAACGCCTGGCGCTGGTTGGCCTGGGCGATCCTGCCGAGCCTTTACCTGGTGCTGGTGTCAACGCCGCGCAGCTTGCCCTGGCCGGTATCGGCTCAACCGCGCGAATACCGAGTCTACGCGGCGGCACCGATGGCGCTGTTGATGCTCGGTTGGTTCTGGCTGACCAACACCTTCAGTGACGGCAACTCTGAGCCACTGCCCTATGTGCCGTTGCTCAATCCCTTGGAGCTGGGCCTGCTGTTCGCCTTGTTCGGTATTTACGTGTGGGCCCGCAACGCCGTGGAGCAGTCGACAAACCGTTGGAGTCGCGTCGGGCATATCGCTCAGTTGACCGCCGGTGTGTCGCTGTTCGCGTTCTTCACTGCCGTGGTGATGCGCTGTGCGCACCAGTGGATGGGGGTTGCGTACGAACTGGATGCGTTGCTTGAATCCATGTTCGTGCAGGCCGGTCTGTCCATCGTCTGGACCTTGATTGCCTTGGGCCTGATGATCGGCGGTCACCTGCGCCATCGCCGTGAGGTGTGGCTGATCGGCGCCGCGTTGATTGCTGTCGTCGTGGCCAAGCTGTTCTTCGTCGAATTGAGTAACCGTGGCGGTCTGGCGCGGATCGTGTCGTTTATTGGGGTGGGCGTGTTGTTGCTGGTGGTCGGCTATTTTGCGCCGCTGCCACCGAAACGTCCGGAGCCGGCCGCCGATGCCGAGCCGCCGATGCCTGTCAGTGAGGGAGTGTCGTCTTGA	MQWILTLLGLALGWVVDESFADALIGALVGLGIAQSFRLGRLGIQAAKQQILLQEAQQSLLTLEARLAVLERGKAAQPSDPAPAAEAVAPQAPKPEARTEPELVWELPPDLEPISVMSTQASQPLPDEIWSPAPAASSRPSNRDFAPLPLESTSPAPAVPRGPNLLDRAITAARNWLFGGNTVLRVGVVLLFLGLAFLLRYATEGMVVPIELRYAGVAASALGLLGLGWWLRQRNNSYALMLQGTGIAVLYLTVFAAMRLHPLLDSKAALALLVAVTVFSAILAVTQNAMGLAAAAALGGFAAPILTSTGSGNHVGLFSYFILLNAGILAIAWFKAWRLLNLIGFVGTFGIGFAWGLRSYTPELLWSTEPFLIVFFLMYLVIGLLFTRRKLMEMSDGPDDDSRDAMLRWSARKGDYVDGSMLFGPPLVGFGLQFALVQHLEFAAAFSALALGMIYMGLARVLMGGRAVLLAETCLALGVIFSSLAIPLGLDARWTAAAWAVEGAGIFWLGLRQQRPFARVFALLLQLGSALAFVSELHSGEGSLLEGSWLGALMLGGALLFSFYQSRKAEPDHIASWERQGQPVLAVLGLGFLYLLAPLFFSTHGTAIAWALAGLATLFVGLRLQSRSFLFTAFAVQLLGGALFLVRLQGADGDSTAVFSAGWSGLLSASLIGLALIGGMLLAARDDMVRNDVRLLRGLSVVLLAGLVLINLAVLFVLPWQTASGVWAASGLLIIWLSLYLKQRVSFVFGLLLQLLGGAAFLTAGPALLGALDAEDLRPLAHSGFWTPLVLGLAALVGAWRLQRAHSAKELDALSLRRLSELLLIWGAGWWALAWVSEVLRFAPANLQGSLLLMVAAASVAVWSVLSLRLKWPALGLLGTLLIPAAGCVLVATGHSRYHPAADFGWLAWLAVFAVHFMSLKRLAPILPAQARSTAHVLGCWLLMTVLMLELRYGLLLLSEQYNAWRWLAWAILPSLYLVLVSTPRSLPWPVSAQPREYRVYAAAPMALLMLGWFWLTNTFSDGNSEPLPYVPLLNPLELGLLFALFGIYVWARNAVEQSTNRWSRVGHIAQLTAGVSLFAFFTAVVMRCAHQWMGVAYELDALLESMFVQAGLSIVWTLIALGLMIGGHLRHRREVWLIGAALIAVVVAKLFFVELSNRGGLARIVSFIGVGVLLLVVGYFAPLPPKRPEPAADAEPPMPVSEGVSS				NA	NA	NA	NA	NA
D1-36_00367	1371			hypothetical protein	TTGAGTCGCAAGTTAAGTCGAATCGGGTTGGGCGTGGTCGGGCTGTGGGCAGCCTTGTCGGCGACGGCGCAGGAGCAACCGCAGGATTTTGCCCATCAGGTGCCGTTGGCCTTGAGCGGCGAGGGGCCGTGGTATCGCTTGCCGTTACCGTTGGACGTCCAGTTGCAGGCGCGGCAAACCGACCTCAGTGACCTGCGGGTCTTCAACGCCGCCGGGCAGGCCCAGGCCTATGCGTTGTTGCGCGAGTCGGCTCAGAGCCGGGAGAATCGCACCCTCACCGATGTGAAGTGGTTCCCGTTGTACAACGCCGCGGACGACAGCGAGCGCGCGCCCAGCGTGCGGGTGCAATCGAACGCCAACGGCACGTTGGTGCAAGTGCAGCCGTCCAGCCGACTCGAAGCGGGGGAAGAAGAACTGCGCGGCTGGCTGCTCGATGCCAGCGCAATCAAGGCACCGTTGCAGCAGTTGATTCTCGACTGGACCAGCGAGCGCGACGGCTTCCAGCGCTTCACCATCGAAGCCAGCGATGACTTGCAGCATTGGCAGGCCTGGGGGGAAGGGCAGGTCGCCCGGCTGACATTTGCCGATGAGCGGGTCGAGCAGCACGAAGTGAACCTGCCCGGGCAATCGGCGCGGTACTTGCGGTTGCTGTGGGATTCTCCGTCCTCGGCGCCGGTGCTGACCTCAGCCCAACTGCAAAGCGCCAGCCGCGAAAGCCTGCCGCTGCCGTTGGTCTGGTCGCAACCGCTTGCCGGCAATACGACGAAGGCCGGTGAGTACACATGGCAGTTGCCGATGGGGCTGGACATCGAGCAGGTGCAGGTGGAGCTCAGCCAGGCCAACAGCCTGGCGCCGGTGACCCTGGCCGGTCGCCGTGAAAGCAGCCATCCGTGGCAGCCGATGGGCGGTGGCTTGCTCTATCGCCTGACCCAGAACGGTCAGGACGTGCAGCAAAACCAGCTGCAGTTGTCCGGCCAGACCGTTCAACAATTGAAGCTGACGGTGGATGAGCGCGGCGGCGGTCTGGGCACCGAAGCGCCTGCGCTGCGTTTTGCCGTGCGTGCGACCCAGGTGGTGTTCCTGGCACGGGGCGAAGGGCCATACCAGCTGGCACTGGGCAGCGCGACGGTAAAGGCGGCCAACTTGCCGTTGACCACGCTGATTCCGGATTACAAACCGTCACGCCTGGCGGCGCTGGGTGCGGCGAAGGTGAACGGAACCACTACGTTGACGCCAACGGTTGAAGCGGTGCCTGCGGTCGTTGACACCAACTGGAAGAAAATGGGCTTGTGGGCGGTGTTGCTACTGAGCGTGCTGTTCCTCGCGGCGATGGCGTTCAGCCTGTTGCGCAAGCCGCCGGTCAAGAACTGA	MSRKLSRIGLGVVGLWAALSATAQEQPQDFAHQVPLALSGEGPWYRLPLPLDVQLQARQTDLSDLRVFNAAGQAQAYALLRESAQSRENRTLTDVKWFPLYNAADDSERAPSVRVQSNANGTLVQVQPSSRLEAGEEELRGWLLDASAIKAPLQQLILDWTSERDGFQRFTIEASDDLQHWQAWGEGQVARLTFADERVEQHEVNLPGQSARYLRLLWDSPSSAPVLTSAQLQSASRESLPLPLVWSQPLAGNTTKAGEYTWQLPMGLDIEQVQVELSQANSLAPVTLAGRRESSHPWQPMGGGLLYRLTQNGQDVQQNQLQLSGQTVQQLKLTVDERGGGLGTEAPALRFAVRATQVVFLARGEGPYQLALGSATVKAANLPLTTLIPDYKPSRLAALGAAKVNGTTTLTPTVEAVPAVVDTNWKKMGLWAVLLLSVLFLAAMAFSLLRKPPVKN				NA	NA	NA	NA	NA
D1-36_00368	1011	fbp_1	COG0158	Fructose-1,6-bisphosphatase class 1	ATGTCCCGCGTTACCTTGAGTCGCTATTTGATTGAGCAGACCCGCAGCAACAATACCCCTGCCGATCTGCGCTTTTTGATCGAAGTGGTGGCGCGTGCATGCAAGGAGATCAGCCACGCCGTGTCCAAGGGCGCGCTGGGCGGTGTCCTGGGCAGCATGGGCACCGAGAACGTGCAGGGCGAAGTGCAGAAGAAGCTCGACGTGCTCTCCAACGAAATCCTGCTGGAAGCCAACGAGTGGGGCGGTCACCTGGCCGGCATGGCGTCCGAGGAAATGGACAATGCCTACCAGATCCCGGGCAAATACCCGAAAGGCGCCTACCTGCTGGTATTCGACCCGTTGGACGGCTCGTCGAACATCGACATCAATGCGCCGGTCGGCACAATCTTCTCGGTACTGCGTTGCCCGAACGAATACCTGAGCCAGAACGAAGCCTTGAATGAAAAGGCCTTCCTGCAGCCCGGCACCGAGCAAGTCGCCGCCGGTTACGCCATCTACGGTCCTCAGACCATGCTGGTGCTGACCCTGGGCGACGGCGTGAAAGGCTTCACCCTGGACCGCGAGATGGGCAGTTTCGTCCTGACCCACGAAGACATCACCATTCCTGAAACCACCCAGGAATTCGCCATCAACATGTCCAACCAGCGTCACTGGGAAGCTCCGGTACAACGCTACGTCAGCGAGTTGCTGGCCGGTGAAGAAGGCCCGCTGAAAAAGAACTACAACATGCGCTGGGTGGCCGCGATGGTTGCCGATGTACACCGCATCCTGACCCGAGGCGGTCTGTTCATGTACCCGCGCGACAGCCGCGAGCCGTCCAAGCCGGGCAAGCTGCGCCTGATGTACGAAGCCAACCCGATGTCGTTCCTGGTAGAGCAGGCGGGTGGCGCTTCCACCGACGGTCGCCAGCGCATCCTCGACATCAAGCCTGAGGGCCTGCACCAGCGAGTTGCGGTATTCCTCGGTTCGAAAGAAGAAGTGGCACGCGCCACGGCTTACCACAAGGAGTAA	MSRVTLSRYLIEQTRSNNTPADLRFLIEVVARACKEISHAVSKGALGGVLGSMGTENVQGEVQKKLDVLSNEILLEANEWGGHLAGMASEEMDNAYQIPGKYPKGAYLLVFDPLDGSSNIDINAPVGTIFSVLRCPNEYLSQNEALNEKAFLQPGTEQVAAGYAIYGPQTMLVLTLGDGVKGFTLDREMGSFVLTHEDITIPETTQEFAINMSNQRHWEAPVQRYVSELLAGEEGPLKKNYNMRWVAAMVADVHRILTRGGLFMYPRDSREPSKPGKLRLMYEANPMSFLVEQAGGASTDGRQRILDIKPEGLHQRVAVFLGSKEEVARATAYHKE	PGPT0017665_1788	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017665-fbp|cbbFC-K03841	NA	NA
D1-36_00369	597			hypothetical protein	ATGACCGGGCCTTGGCAGCCGTTGCTCGATTGGTGGTTTGGCACAGCCCAAACGCCGGACGAAATAGCGGCTGACAAGGGCAAGCTGTGGTTTGGCAAAGGCCATGATCGCCAGGCGCAAGAGCGCTTCGGCGAACAGGTCGAGCAAGCACTGGCCGGCGGATTGACCGATTGGGCGCAACGCCCGGAAGGTTGGCTGGCCCTGGTGCTGCTACTGGATCAGCTCCCGCGTATGATCTTTCGCAACACGCCCAAAAGCTTTTCCGGCGACTTGCGTGCCCAAGCGTTGGTGGCCCAAGGCCTGACGGCAGGTTTCGACCAGCAACTGCGGCCAATCCAGCGTGTCTTCATCTACCTCGTCCTCGAACATTGCGAAAACCTCGCGGTGCAGAACGAAGCCGTGTCGCGGTTCGTCAAACTGGTCCGGGAGCAACCCGAGGCGCAGCGCGCGGTGTTCGAAGACAACCTGGATTATGCCGAACGGCATCAGAAGATCATTGCCCGGTTCGGACGTTTTCCCCATCGCAATGCGGTGTTGGGGCGTGAATCCACGGCGGATGAGCTGGAGTTTTTGAGCAGGCCTGGGTCCAGGTTCTAA	MTGPWQPLLDWWFGTAQTPDEIAADKGKLWFGKGHDRQAQERFGEQVEQALAGGLTDWAQRPEGWLALVLLLDQLPRMIFRNTPKSFSGDLRAQALVAQGLTAGFDQQLRPIQRVFIYLVLEHCENLAVQNEAVSRFVKLVREQPEAQRAVFEDNLDYAERHQKIIARFGRFPHRNAVLGRESTADELEFLSRPGSRF				NA	NA	NA	NA	NA
D1-36_00370	990			IS66 family transposase ISPsy43	ATGCAACCGCTGCTGATCATGGGCCGCGCCATGCATGACATCGCCGAAGGCGAAGGCGACCTGACCCGCCGCCTGACCATCCACGGCCATGATGAATTCGGCGCGCTGGGCACTTCGTTCAACCGTTTCGTCGAGCGTATCCACGCTTCGATCCGCGAAGTGGCTTCCGCAACGGGCCAGGTCAATGAAGTCGCCCTGCGTGTCGTCAGCGCCTCCAATTCGTCGATGTACAACTCCGACCAGCAAGCCTCGCGCACCAGCAGCGTGGCCGCGGCCATCAACCAGCTTGGCGCCGCAGCCCAGGAAATTGCCCAGAATGCCGCCCTCGCCTCGCAGCACTCCAGCGAGGCCCGCAACCTGGCCGAAGATGGCCAGCAAGTGGTGGATAAAACCATCACGGCGATGCAACAGCTGTCAGCCAAGATCAGCGATTCTTGCGGCAACATCGAAACCCTGAACAGCAACACGGTGAACATCGGCCAGATTCTCGAAGTGATCACCAGCATTTCCCAGCAGACCAACCTGCTTGCCCTGAACGCCGCCATCGAAGCGGCCCGGGCCGGTGAAGCCGGTCGCGGCTTCGCGGTCGTCGCCGACGAAGTGCGCAACCTGGCCCACCGCACCCAGGATTCGGCGCAGCAAGTGCAGAAGATGATCGAAGAGTTGCAAGTCGGCGCGCGGGAAGCGGTGCTGACCATGACCGATAGCCAGCGCCAGAGCGAAAGCAGCGTCGGCATCGCCAACCAGGCCGGCGAACGACTGGGCAGCGTGACCCAGCGCATCGGCGAGATCGACGGCATGAACCAGTCCGTGGCCACCGCCACCGAAGAACAGACCGCCGTGGTGGAATCGATCAACGTCGACATCAATGAAATCAACACGCTGAACCAGGAAGGCGTGGAAAACCTGCAAGCCACCTTGCGGGCCTGTTCCGACCTGGAACAGCAGGCGGCGCGGTTGAAGCAGTTGGTGGGTAGTTTCCGGATCTAG	MQPLLIMGRAMHDIAEGEGDLTRRLTIHGHDEFGALGTSFNRFVERIHASIREVASATGQVNEVALRVVSASNSSMYNSDQQASRTSSVAAAINQLGAAAQEIAQNAALASQHSSEARNLAEDGQQVVDKTITAMQQLSAKISDSCGNIETLNSNTVNIGQILEVITSISQQTNLLALNAAIEAARAGEAGRGFAVVADEVRNLAHRTQDSAQQVQKMIEELQVGAREAVLTMTDSQRQSESSVGIANQAGERLGSVTQRIGEIDGMNQSVATATEEQTAVVESINVDINEINTLNQEGVENLQATLRACSDLEQQAARLKQLVGSFRI	PGPT0015710_11673	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_00371	891	pctC	COG0840	Methyl-accepting chemotaxis protein PctC	ATGAAATTTAGCCACAAAATCCTGTTGGCTGCCGCCCTTGTGGTGGCCGTCGCATTCGCCTGTTTCATCCTGTTCAACGATTACCGCCAACGACAAAGTCTGTATTCCAGCACCGAGACCTCCATGCAGGAGATCGGCAGCCTGACCAGCCGCAATATCCAGACGTGGGTCGAAGGCCGGATCCAACTGCTGCAATCGCTGGCCCAGCAAATCGCCATCGATGGCAGCAGTGCCGACAGCCTGAAACGCGCGGTGGGCCTGCCTGCCTACACCGGCAATTTTCAGCTCAGCTATTTTGGCGGCACCGACGGCGTAATGTTTTCGGTGCCGGCCGGCAATCGCGCCGCCGACTACGACCCGCGCGCCCGTGGCTGGTACAAGGCCGCCAACAGCGCCCAACAGACCGTCGTCACCGAACCCTACATCGCCGCGTCTTCGGGCAAGCTTGTGATCACCGTTGCCACGCCGGTACAGCGCCAGAACCAGATGATCGGCGTGGCGGGGGCGGACATCGACCTGACCAGCGTCAGCGCCATCATCAACTCGCTGAACTTCGGCGGACATGGTCATGCGTTCATCGTCAGCGCCGATGGCAAGATCCTCGTCCACCCTGACAGCAAGCGCGTGCTCAAGACCCTCGCCGAGGCCTATCCCAACGGTGCGCCGCAAGTCAGCCCGGGCATGAAGGAAGTCGAGCTCGACGGCAAGACCCAGTTCATTTCCTTTACCCGAGTCGCCGGCGTACCCGGCGCCGACTGGTACGTGGCGCTGGTGCTCGACAAGAGCGCGGCGCTGGCGATGCTCAGCGAGTTCCGCACCTCGGCCCTGATTGCCATGGTCATTGCCGTGGTGTTCATCATCGCCCTGCTGAGGTGCTCATCCGTGTATTGA	MKFSHKILLAAALVVAVAFACFILFNDYRQRQSLYSSTETSMQEIGSLTSRNIQTWVEGRIQLLQSLAQQIAIDGSSADSLKRAVGLPAYTGNFQLSYFGGTDGVMFSVPAGNRAADYDPRARGWYKAANSAQQTVVTEPYIAASSGKLVITVATPVQRQNQMIGVAGADIDLTSVSAIINSLNFGGHGHAFIVSADGKILVHPDSKRVLKTLAEAYPNGAPQVSPGMKEVELDGKTQFISFTRVAGVPGADWYVALVLDKSAALAMLSEFRTSALIAMVIAVVFIIALLRCSSVY	PGPT0015710_11719	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_00372	255			hypothetical protein	ATGTCGCTGCGATCTATCGCCCTGCTGTTCATGTGCGTCGTATTGACCGCATGCAGCAAGGTCAACCAGGAAAACTACTCGAAGCTGTCGGCGGGCATGCCCAAGGCCGAAGTCGAGACGTTGCTGGGGAAGCCGACTGACTGTTCGGGCGCGCTCGGCATGTCCAGCTGCACCTGGGGCGACCAGAAAAGCTTTATCAGCGTGCAGTACGCCGGTGACAAAGTGTTGATGTTTTCCGGCCAAGGCCTGAAGTAA	MSLRSIALLFMCVVLTACSKVNQENYSKLSAGMPKAEVETLLGKPTDCSGALGMSSCTWGDQKSFISVQYAGDKVLMFSGQGLK				NA	NA	NA	NA	NA
D1-36_00373	570	blc	COG3040	Outer membrane lipoprotein Blc	ATGATGCGGTTAGTTTTTGTGCTTTTGGCTGGCCTGGTATTGGCCGGCTGTGCCACTTCTGGCGTAGACCCGTTGGCGCCCAAGACCGTCAACAGTGTCAATCTCAAGCGTTACCAAGGGACCTGGTACGAGCTGGCCCGCCTACCGATGTATTTCCAGCGCAACTGCGCGCAATCCGAAGCCCATTACACACTCAAGCCCGACGGCAACGTGGATGTGTTCAACCGCTGCCTGACTTCCGATTGGAAGTGGGAAGAAGCCCGGGGCACCGCTTACCCGCAGGTGCCAGGCAAGACCGACAAGCTCTGGGTCGAATTCGACACCTGGTTCTCGCGGATCCTGCCGGGTGTGGCGAAGGGAGAATATTGGGTCTTGTATGTCAGTGATGACTACAAGACCGCCATCGTTGGCGATCCGAGCCGGCGTTACATGTGGTTGCTGTCGCGCACGCCAACGGTCAATGTCGATGTGCGCGAAGAACTGCTGAGCAAGGCGCGCCAGCAGGGCTACGACACGACGCGGTTGGTCTGGCGTGCGTCGGACCGGCAGATGGCCAAGACTTCGGACTGA	MMRLVFVLLAGLVLAGCATSGVDPLAPKTVNSVNLKRYQGTWYELARLPMYFQRNCAQSEAHYTLKPDGNVDVFNRCLTSDWKWEEARGTAYPQVPGKTDKLWVEFDTWFSRILPGVAKGEYWVLYVSDDYKTAIVGDPSRRYMWLLSRTPTVNVDVREELLSKARQQGYDTTRLVWRASDRQMAKTSD	PGPT0012970_1079	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	NITROSATIVE|OXIDATIVE_STRESS|ROS_REGULATORY_PROTEINS,PGPT0012970-blc-K03098	NA	NA
D1-36_00374	1365		COG0402	8-oxoguanine deaminase	ATGTCCGCCTTCTTTGCCGAGCGTGCGCTGCTGCCTGATGGATGGGCCAATGATGTACGCCTCGAGGTCAACGCCGAGGGCGTCTTGACCCATGTCCAGGCCGATTTCCACGCAAACGGCGCCGAACGGCTCGGCGGTCCCCTGCTCCCGGGCATGCCGAACCTGCATTCCCATGCGTTCCAGCGGGCCATGGCCGGGCTGGCGGAAGTGGCGGGCAATCCCAATGACAGTTTCTGGACATGGCGCGACTTGATGTACCGCCTCGTCGGCAAAATCAGCCCCGACCAGCTCGGCGTCATCGCCCGACAGCTTTACATCGAAATGCTCAAGGCCGGCTATACATCGGTTGCCGAATTCCATTACGTACACCATGACACCGACGGCAGGCATTACGCCGATCCGGCCGAACTGGCCTTGCGTATCAGCCAGGCCGCCGGTGACGTGGGCATTGGCTTGACGCTGCTGCCGGTGCTTTACAGCCATTCCGGTTTTGGCGGCCAAGAGCCCAACGACGGGCAGCGCCGGTTCATCAACAGCACCGAAAACTACCTGAAGCTTCAGTCACGCTTGCAGCCGATCCTGGCCGGGCAACCGTCCCAGGCGTTGGGCCTGTGCTTCCACTCGCTGCGCGCCGTGACACCCGGGCAGATCCACGATGTGCTGGCCGCCAGCGACCGCGATTGCCCCGTGCATATCCACATCGCCGAACAGCAAAAGGAGGTTGACGACTGCTTGAGCTGGAGCGGCGTGCGTCCGCTGCAATGGCTGTATGAAAATGCCGAGGTGGATCAACGCTGGTGCCTGGTTCATGCCACCCACGCCAATCCAAAGGAAGTCAGCCTGATGGCCAAGAGCCGGGCAATTGCCGGTCTGTGCCTGACCACGGAAGCCAATCTGGGTGACGGAATTTTTCCGGCCGTGGATTTCCTAGCCCAAGGCGGGCGGATGGGCATCGGCTCTGACAGCCATGTGTCGTTGAGCGTCGTGGAGGAATTACGCTGGCTGGAATACGGCCAGCGGCTGCGGGACCAGCGCCGCAACCGGTTGTACCGAACGGATCAGCCGATGGTCGGGCGTACCCTGTATGACGCCGCACTGGACGGTGGCGCCCAGGCGTTGGGCCAACCGATCGGCGCATTGGAAGTCGGCAAGCGCGCCGACTGGCTGGTGCTCGATGGCAATGATCCTTACCTGGCCACGGCGACCGGTGACGGCATTCTCAATCGTTGGCTGTTTGCGGGCGGCGATCGCCAGGTGCGCGATGTGATGGTCGGCGGAAAATGGCAGGTTCGCGACGGCCGTCATGCCGGCGAAGAAGAAAGCGCCCGAGCGTTTACCCGGGTGCTGCGCGAACTGCTGGGCTGA	MSAFFAERALLPDGWANDVRLEVNAEGVLTHVQADFHANGAERLGGPLLPGMPNLHSHAFQRAMAGLAEVAGNPNDSFWTWRDLMYRLVGKISPDQLGVIARQLYIEMLKAGYTSVAEFHYVHHDTDGRHYADPAELALRISQAAGDVGIGLTLLPVLYSHSGFGGQEPNDGQRRFINSTENYLKLQSRLQPILAGQPSQALGLCFHSLRAVTPGQIHDVLAASDRDCPVHIHIAEQQKEVDDCLSWSGVRPLQWLYENAEVDQRWCLVHATHANPKEVSLMAKSRAIAGLCLTTEANLGDGIFPAVDFLAQGGRMGIGSDSHVSLSVVEELRWLEYGQRLRDQRRNRLYRTDQPMVGRTLYDAALDGGAQALGQPIGALEVGKRADWLVLDGNDPYLATATGDGILNRWLFAGGDRQVRDVMVGGKWQVRDGRHAGEEESARAFTRVLRELLG	PGPT0020245_594	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020245-hutF-K05603	NA	NA
D1-36_00375	750	nagR_1	COG2188	HTH-type transcriptional repressor NagR	GTGCCGACTCCGCCTGCCAAACCGCCGCTGGCCGCAACCATGGGTGACAGTCCGGCGCCCTTGTACGCCCGCGTCAAACAAATGATCACCCAGCAGATCGACAGTGGAAACTGGCCGCCACATTACCGTGTGCCATCGGAAAGCGAACTGGTCAGCCAGTTGGGCTTCAGCCGCATGACCATCAACCGGGCCCTGCGGGAAATGACCGCTGATGGCCTGCTGGTGCGCATGCAAGGCGTCGGCACGTTCGTCGCCGAGCCCAAGAGCCAGTCCGCACTGTTCGAAGTGCATAACATTGCGGATGAAATCGCCTCCCGTGGTCATCGCCATACGTGCAAGGTCATCACCCTGGAAGAAGAGGCCGCCGGTTCCGAGCGGGCGCTGGCCCTGGACATGCGCGAAGGCCAGAAGGTATTCCATTCGTTGATCGTGCATTTCGAAAACGACATTCCTGTGCAAATCGAGGACCGTTTCGTCAACGCGCTGGTGGCGCCTGATTACCTCAAGCAGGACTTCACTCAACAAACGCCTTATGCCTACCTGAACCAGGTTGCGCCGCTGACCGAAGGTGAGCATGTGGTCGAGGCGATCCTGGCGGAGCCGAGTGAATGCAAGCTGTTGCAGATCGAGCGGGGCGAGCCGTGCCTGTTGATCCGTCGTCGTACCTGGTCAGGTCGCCAGCCGGTGACCGCCGCACGCCTGATCCATCCGGGCTCGCGTCACAGTCTGGAAGGGCGTTTCCACAAATGA	MPTPPAKPPLAATMGDSPAPLYARVKQMITQQIDSGNWPPHYRVPSESELVSQLGFSRMTINRALREMTADGLLVRMQGVGTFVAEPKSQSALFEVHNIADEIASRGHRHTCKVITLEEEAAGSERALALDMREGQKVFHSLIVHFENDIPVQIEDRFVNALVAPDYLKQDFTQQTPYAYLNQVAPLTEGEHVVEAILAEPSECKLLQIERGEPCLLIRRRTWSGRQPVTAARLIHPGSRHSLEGRFHK				NA	NA	NA	NA	NA
D1-36_00376	570	ves		Protein Ves	ATGAGCCAATTGAAGGTTTTACGCGCAGCGGATTACCCGTCCATGCCGTGGAAAAACGGCGGTGGCAGCACCGAGGAAATCACCCGCGATGCCGGCACCGGCCTGGAAGGTTTCGGCTGGCGCCTGTCCATTGCCGATATCGGTGAATCGGGTGGTTTTTCCACCTTCGCTGGCTACGAACGGATCATCACGGTCTTGCAAGGTGGCGGCATGACGCTGACTGTCGATGGCCACGCGACGCGGCCGCTGCATTCGCTGGATCCCTTTGCCTTCAGCGGCGAGAGCCAAGTGCAGTGCACGCTGCTGGAGGGGCCGATTCGCGACTTCAACCTGATCTACGCGCCGCAACGTTACCGCGCGCGGCTGCAATGGCTGGGCGGCCAGCAGCGTTTTTTCAGCGAGGCGGGAACGGTATTGGTGTTCAGTGCCGCTCCGACGCTGAGGGTCAAGATGGATGAAACTGTCGAGGCACTGGGGCTTTATGACTGCCTGCAACTGAGCGGTAACGCTGGGCTGCTGGACATCACCACCCACGGCCAATGCTGCGTGATCGAGCTGACGGCCCACTAA	MSQLKVLRAADYPSMPWKNGGGSTEEITRDAGTGLEGFGWRLSIADIGESGGFSTFAGYERIITVLQGGGMTLTVDGHATRPLHSLDPFAFSGESQVQCTLLEGPIRDFNLIYAPQRYRARLQWLGGQQRFFSEAGTVLVFSAAPTLRVKMDETVEALGLYDCLQLSGNAGLLDITTHGQCCVIELTAH	PGPT0020255_851	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MAINTENANCE	CE-BACTERIAL_FITNESS-HISTIDINE_REPLETION_RELATED_FITNESS,PGPT0020255-hutD|ves-K09975	NA	NA
D1-36_00377	1689	hutU	COG2987	Urocanate hydratase	GTGACCGACGCTACCCGCAAACCTGAAAAATACCGTGACGTTGAAATCCGTGCCCCTCGCGGTAACACGCTGACCGCCAAGAGCTGGCTGACCGAAGCGCCGCTGCGCATGCTGATGAACAACCTCGACCCGGAAGTGGCCGAGAACCCCAAGGAGCTGGTGGTCTACGGTGGCATCGGGCGCGCGGCGCGCAACTGGGAGTGCTACGACAAGATCGTCGAAAGCCTCACCCATCTGAATGACGATGAAACCCTGCTGGTGCAGTCCGGCAAGCCGGTGGGCGTGTTCAAGACCCACAGCAACGCCCCGCGCGTACTGATCGCCAACTCCAACCTGGTGCCGCACTGGGCCAGTTGGGAGCACTTCAACGAGCTCGACGCCAAGGGCCTGGCCATGTACGGCCAGATGACCGCCGGCAGCTGGATCTACATCGGCAGCCAGGGCATCGTGCAAGGCACGTATGAAACCTTCGTCGAGGCCGGCCGGCAGCATTACGACTCCAACCTCAAGGGCCGCTGGGTCCTGACCGCCGGCCTCGGCGGCATGGGCGGCGCGCAACCGTTGGCCGCGACTTTGGCCGGTGCGTGCTCGCTGAACATCGAGTGCCAGCAGGTGAGTATCGATTTCCGCCTGAAAACCCGTTACGTCGACGAACAAGCCAAGGATCTGGACGACGCCCTGGCGCGCATCGAGAAATACACCGCCGAAGGCAAGGCGATTTCCATCGCACTGTGTGGGAACGCGGCTGAAATCCTGCCAGAAATGGTCCGTCGTGGTGTGCGCCCGGACATGGTCACAGACCAGACCAGCGCCCACGACCCACTCAATGGTTACTTGCCTGCCGGCTGGACCTGGGACGAATACCGTGCCCGCGCCAAGACTGAACCCGCCGCCGTGGTAAAGGCCGCCAAGCAATCGATGGCCGTCCACGTCAAAGCGATGCTCGAATTCCAGAAAATGGGCGTGCCGACCTTCGACTACGGCAACAACATCCGTCAGATGGCCCAGGAAGAAGGCGTGGAAAACGCATTCGACTTCCCGGGTTTCGTCCCGGCCTACATCCGTCCTCTGTTCTGCCGCGGTATTGGCCCGTTCCGTTGGGCGGCGCTGTCCGGTGACCCGCAGGACATCTACAAGACCGACGCCAAGGTCAAGGAACTGATCCCCGACGACGCCCACCTGCACAACTGGTTGGACATGGCTCGCGAGCGCATCAGCTTCCAAGGCTTGCCGGCGCGGATCTGCTGGGTTGGCCTGGGCCAACGCGCCAAGTTGGGCCTGGCGTTCAACGAGATGGTCCGCAGCGGCGAGTTGTCGGCGCCGATCGTCATCGGCCGCGATCACCTGGACTCCGGTTCCGTGGCCAGCCCGAACCGCGAAACCGAATCCATGCAGGACGGTTCCGACGCCGTTTCCGACTGGCCACTGCTCAACGCATTGCTCAACACCGCCAGCGGCGCGACCTGGGTTTCGCTGCACCACGGCGGCGGCGTCGGCATGGGCTTCTCCCAGCATTCGGGCATGGTGATTGTCTGCGATGGCACCGACGAAGCGGCCGAACGGATTGCTCGCGTACTGCATAACGACCCGGGCACTGGCGTGATGCGCCACGCCGACGCCGGTTACCAGATCGCGATCGATTGCGCGAAGGAGCAGGGGCTCAACCTGCCGATGATCACTGGCAAGTAA	MTDATRKPEKYRDVEIRAPRGNTLTAKSWLTEAPLRMLMNNLDPEVAENPKELVVYGGIGRAARNWECYDKIVESLTHLNDDETLLVQSGKPVGVFKTHSNAPRVLIANSNLVPHWASWEHFNELDAKGLAMYGQMTAGSWIYIGSQGIVQGTYETFVEAGRQHYDSNLKGRWVLTAGLGGMGGAQPLAATLAGACSLNIECQQVSIDFRLKTRYVDEQAKDLDDALARIEKYTAEGKAISIALCGNAAEILPEMVRRGVRPDMVTDQTSAHDPLNGYLPAGWTWDEYRARAKTEPAAVVKAAKQSMAVHVKAMLEFQKMGVPTFDYGNNIRQMAQEEGVENAFDFPGFVPAYIRPLFCRGIGPFRWAALSGDPQDIYKTDAKVKELIPDDAHLHNWLDMARERISFQGLPARICWVGLGQRAKLGLAFNEMVRSGELSAPIVIGRDHLDSGSVASPNRETESMQDGSDAVSDWPLLNALLNTASGATWVSLHHGGGVGMGFSQHSGMVIVCDGTDEAAERIARVLHNDPGTGVMRHADAGYQIAIDCAKEQGLNLPMITGK	PGPT0020250_1089	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020250-hutU-K01712	NA	NA
D1-36_00378	1467			hypothetical protein	ATGGCTGTCACCAGCACACGCGATAGCAGCAAGCCGTTGATCGAGAAGCGCTCGATCGACTACATCCCGGAAGGGGAAAGACACGGTCATCTGTTTAGCCAGTTCACCCTCTGGATGGGGGCCAATCTGCAGATCACCGCCATTGTCACCGGTGCGTTGGCGGTGGTGTTGGGGGGGGATGTGTTCTGGTCGTTGATCGGTTTGCTGATCGGCCAGTTGCTCGGCGGTGGTGTCATGGCGTTGCACGCCGCCCAAGGGCCAAAGCTCGGGCTGCCGCAGATGATCTCCAGCCGGGTGCAGTTTGGTGTATATGGCGCGGCCATCCCGATCGTGCTGGTGTGCCTGATGTACCTGGGTTTCACCGCAACGGGCACCGTGCTATCCGGCCAGGCGCTGGGCCAGTTGTTTGGCGTCAGCGACAGTGTCGGCATCCTCATTTTCGCCAGTGTCATCGTGTTGGTCACGGTGCTTGGTTATCGGGTGATTCACTGGATCGGCCGTGTCGCCAGCATCATCGGTGTGATCGCCTTCGTTTACCTGTTCGCTCGCCTGATCAGCCATACGGATGTGGGCGCACTCCTACAGATCCGCCACTTCAGTTGGAGCAGTTTCCTGCTTGCGGTGTCGCTCGCGGCCTCTTGGCAGATCGCCTTCGGCCCCTACGTCGCGGACTACTCGCGTTACCTGCCGAGCAAGACGTCCTCGGTGAAAACCTTCTTTGCCGCAGGCGCAGGTTCAGTCATCGGCGCGCAGGTGGCGATGATCCTCGGTGTGTTTGCCGCCGCCTCGGCCAACGGGCAGTTCGCCGGCCACGAAGTGGCCTACATCGTTGGCCTGGGTGGCACCGGCGCTACCGCCGCGCTGCTGTATTTCAGCATCGCGTTCGGCAAGGTCACCATTTCCACGCTGAACTCCTACGGCAGCTTCATGTGCATTGCGACCATCATCAGCGGTTTCCGTGGTCACCTGAACGTAACGCGGGTGCAACGCCTGGTGTTCGTGCTGTTCATTGTCGGCGCCGCGACCCTGATCGCGCTGCTCGGCCAGCACTCGTTCCTCGGTGCGTTCAAGTCCTTCATCCTGTTCCTGCTGGCGTTCTTTACGCCTTGGAGCGCGATCAACCTGGTGGACTACTACTGCATAACCCGTGAGCGCTATGACGTGCCGGCACTCGCCGATCCGAACGGTCGCTACGGTCGTTGGAACGCACTGGGTATTAGCGTCTACGTCTTCGGCGTACTGGTCCAGTTGCCGTTCATCGCCACCAAGTTCTATACCGGTCCGCTGGTGGAAGCCATGGGCGGTGTGGATATCTCGTGGATCATCGGCTTGGTGGTTCCGGCGGTGCTGTACTACGTCATCGCTAGAAAATGGCACAGCGCCGTACCCGATCAATTGATCCTGCCGGTCGAGCAGGACGCGGTTGACGCACAACCGAGCAGGGCGGGCCGCATCCAAGCGGTCTGA	MAVTSTRDSSKPLIEKRSIDYIPEGERHGHLFSQFTLWMGANLQITAIVTGALAVVLGGDVFWSLIGLLIGQLLGGGVMALHAAQGPKLGLPQMISSRVQFGVYGAAIPIVLVCLMYLGFTATGTVLSGQALGQLFGVSDSVGILIFASVIVLVTVLGYRVIHWIGRVASIIGVIAFVYLFARLISHTDVGALLQIRHFSWSSFLLAVSLAASWQIAFGPYVADYSRYLPSKTSSVKTFFAAGAGSVIGAQVAMILGVFAAASANGQFAGHEVAYIVGLGGTGATAALLYFSIAFGKVTISTLNSYGSFMCIATIISGFRGHLNVTRVQRLVFVLFIVGAATLIALLGQHSFLGAFKSFILFLLAFFTPWSAINLVDYYCITRERYDVPALADPNGRYGRWNALGISVYVFGVLVQLPFIATKFYTGPLVEAMGGVDISWIIGLVVPAVLYYVIARKWHSAVPDQLILPVEQDAVDAQPSRAGRIQAV	PGPT0009075_1894	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
D1-36_00379	969			hypothetical protein	ATGAAATCGAACAAGACCCTGCTGACCACATTGCTGTCCATGGGCCTGCTGGCCAGTGCCGGCGCCACGCAAGCGGCAGGCTGGTGCGAGTCGGGCAAACCGGTGAAGTTCGCCGGCCTGAACTGGGAAAGCGGCATGCTGCTGACCGACGTGATGCAAGTGGTGCTGGACAAGGGTTACGGCTGCAAGACCGATAGCCTGCCCGGCAACTCCATCACCATGGAAAATGCCCTGAGCAGCAACGACATCCAGGTGTTCGCCGAAGAGTGGGTCGGCCGCAGCGAAGTGTGGAACAAGGCCGAGAAGGCCGGCAAGGTGGTGGGCGTCGGTGCGCCGGTGGTGGGGGCCATCGAAGGCTGGTACGTGCCACGCTACGTGATCGAAGGCGATGCCAAGCGCAAGCTGGAAGCCAAGGCGCCAGGCCTGAAGAACATCGCCGACCTCGGCCAGTACGCCGCCGTGTTCAAGGACCCGGAGGAACCGTCCAAGGGTCGCTTCTACAACTGCCCGGCCGGCTGGACGTGCGAGCTGGACAACAGCGAAATGCTGAAGAGCTACGGCCTGGAAAAGACTTATACCAACTTCCGTCCGGGCACCGGCCCGGCGCTGGATGCAGCCGTGCTGTCGAGCTACAAGCGTGGCGAGCCGATCCTGTTCTACTACTGGTCGCCGACGCCGCTGATGGGCCAGGTGGACCTGGTGAAACTGGAAGAAAAACCGGGCGTGGATAAAAGCGTGAGCATCAAGGTCGGCCTGTCCAAGACCTTCCACGACGAAGCCCCGGAGCTGGTGGCTGTGCTGGAAAAGGTCAACCTGCCGATCGATATCCTGAACCAGAACCTCGGCCGCATGGCCAAAGAGCGGATCGAGTCGCCGAAACTGGCGAAGATCTTCCTAAAGGAACATCCTGAAGTCTGGCATGCCTGGGTCAGCGAAGACGCAGCCAAGAAAATCGACGCGGCTCTGTAG	MKSNKTLLTTLLSMGLLASAGATQAAGWCESGKPVKFAGLNWESGMLLTDVMQVVLDKGYGCKTDSLPGNSITMENALSSNDIQVFAEEWVGRSEVWNKAEKAGKVVGVGAPVVGAIEGWYVPRYVIEGDAKRKLEAKAPGLKNIADLGQYAAVFKDPEEPSKGRFYNCPAGWTCELDNSEMLKSYGLEKTYTNFRPGTGPALDAAVLSSYKRGEPILFYYWSPTPLMGQVDLVKLEEKPGVDKSVSIKVGLSKTFHDEAPELVAVLEKVNLPIDILNQNLGRMAKERIESPKLAKIFLKEHPEVWHAWVSEDAAKKIDAAL	PGPT0013640_1658	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
D1-36_00380	852	opuAB_1	COG4176	Glycine betaine transport system permease protein OpuAB	ATGTTTCCCGAAAGCTTTACCTTCTCCATCGCCGACTGGGTCAACGGTTGGGTCGACGCCCTGGTGACCAACTATGGCGATGTGTTCCGGCAGATCTCCGACACGTTGCTGTGGGCCATCGTCAGCCTTGAAGGCCTGCTGCGCATGGCACCCTGGTGGCTGATGCTGGCCATCGTCGGCGGCGTTGCCTGGCACGCCACCCGCAAGGTCGTCGCTACGGCGGTGATCGTCGGCCTGCTGTTCCTGGTGGGTGCGGTGGGCCTGTGGGACAAACTGATGCAGACCCTCGCGCTGATGCTGGTGGCGACGCTGATCTCGGTGATGATCGGCATCCCGCTGGGCATCCTCTCGGCGCGCAGCAACCGCCTGCGTTCGGTGCTGATGCCGTTGCTGGACATCATGCAGACGATGCCCAGCTTCGTGTACCTCATTCCGGTGTTGATGCTGTTTGGCCTGGGCAAGGTCCCGGCGATTTTCGCCACGGTGATCTATGCCGCGCCACCGTTGATTCGCCTCACCGACCTGGGCATCCGCCAGGTGGACGGCGAAGTCATGGAGGCCATCAACGCCTTTGGCGCCAATCGCTGGCAACAGCTGTTCGGCGTACAGCTGCCCCTGGCCCTGCCGAGCATCATGGCCGGGATCAACCAGACCACCATGATGGCCCTGTCGATGGTGGTCATCGCCTCGATGATCGGCGCCCGTGGCCTGGGTGAAGACGTGCTGGTGGGCATCCAGACGCTCAACGTCGGGCGCGGCCTGGAAGCGGGGCTGGCCATCGTGATTCTCGCCGTGGTCATCGACCGCATTACCCAGGCCTATGGTCGTCCGCGGCACGAGGTGAGCAAATGA	MFPESFTFSIADWVNGWVDALVTNYGDVFRQISDTLLWAIVSLEGLLRMAPWWLMLAIVGGVAWHATRKVVATAVIVGLLFLVGAVGLWDKLMQTLALMLVATLISVMIGIPLGILSARSNRLRSVLMPLLDIMQTMPSFVYLIPVLMLFGLGKVPAIFATVIYAAPPLIRLTDLGIRQVDGEVMEAINAFGANRWQQLFGVQLPLALPSIMAGINQTTMMALSMVVIASMIGARGLGEDVLVGIQTLNVGRGLEAGLAIVILAVVIDRITQAYGRPRHEVSK	PGPT0013635_1863	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
D1-36_00381	831	opuAA	COG4175	Glycine betaine transport ATP-binding protein OpuAA	ATGAGCAACGAAGTCATCAGCAAGATCGAAGTCAAAAATGTCTTCAAGATTTTCGGCAACCGCTCCAAGGAAGCCCTGGCGCTGATCCGTCAGAACAAGACCAAGGACCAGGTGCTGGCCGAGACCGGCTGCGTGGTCGGCGTGAACGACCTGTCGCTGAGCATCGGCACCGGCGAGATCTTCGTGATCATGGGCCTGTCGGGCTCCGGAAAATCCACCCTGGTGCGCCATTTCAACCGGCTGATCGACCCAACCAGCGGCGCCATCCTGGTGGACGGCGAGGACATCCTGCAGCTGGACATGGACGCCCTGCGCGAATTTCGTCGGCACAAGATCAGCATGGTCTTCCAAAGCTTCGGCCTGCTTCCCCACAAGAGCGTGTTGGACAACGTCGCCTATGGCTTGAAAGTGCGCGGCGAAAGCAAGCAGGTGTGCGCCGAGCGCGCGCTGCACTGGATCAACACCGTCGGCCTGAAAGGCTACGAGAACAAATACCCGCACCAGCTCTCCGGCGGCATGCGCCAGCGCGTCGGCCTGGCCCGTGCCTTAGCGGCCGATACCGACATCATCCTCATGGACGAAGCCTTCAGCGCCCTCGACCCGCTGATCCGCGCGGAAATGCAGGACCAGTTGCTGGAGCTGCAAAAGACCCTGCACAAGACCATCGTTTTCATCACCCACGACCTCGACGAGGCCGTGCGCATCGGCAACCGCATTGCGATCCTCAAGGACGGCAAGCTGATTCAGGTCGGCACGCCGCGAGAGATCCTGCACTCGCCGGCGGATGAGTATGTCGATCGGTTCGTGCAGCGCAGAGCGGCGGAGGTTTGA	MSNEVISKIEVKNVFKIFGNRSKEALALIRQNKTKDQVLAETGCVVGVNDLSLSIGTGEIFVIMGLSGSGKSTLVRHFNRLIDPTSGAILVDGEDILQLDMDALREFRRHKISMVFQSFGLLPHKSVLDNVAYGLKVRGESKQVCAERALHWINTVGLKGYENKYPHQLSGGMRQRVGLARALAADTDIILMDEAFSALDPLIRAEMQDQLLELQKTLHKTIVFITHDLDEAVRIGNRIAILKDGKLIQVGTPREILHSPADEYVDRFVQRRAAEV	PGPT0013630_2510	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
D1-36_00382	1524	hutH_1	COG2986	Histidine ammonia-lyase	ATGTCCCAGGCTGAAAAAATCATCATCACCGGCGCCCCCCTGCGCTGGCAGGACGTAGTCGCCGTCGCCCGCTTCGGCGCTACGCTCGAGCTGTCGGCCCAGGTCTGGGCGCGGATCGACAATGCCCAGGCCATCGTCCAGCGCATCGTCGAAAGCGGCGAGCGTGCCTATGGCGTCAACACCGGCCTGGGCGCCTTGTGCAATGTCTCGCTCCAGGACGAACAGCTCAGCCAATTGTCGCGCAACACCCTGCTCAGTCACGCCTGTGGCGTCGGCCCGGCACTCGCCGACGAGCAGACCCGGGCGATTCTCTGCGCCGCCATCCACAACTACAGCCAAGGCAAGTCCGGTATCCATCGCCGGGCGGTCGAGGCATTACTGGCGTTGCTCAACCGCGGCATTACGCCACAAGTGCCGTCCCAGGGCTCAGTGGGTTACTTGACCCACATGGCCCACATCGGTATCGCGCTGTTGGGCGTTGGGCAAGTCAGCTATCGCGGGCAGATCGTCCCGGCGCAACAGGCCTTGGCCGCAGAAGGCCTGCAGCCGGTGCAGTTGGGAGCGAAGGACGGTTTGTGCCTGGTCAACGGCACGCCGTGCATGACCGGGCTCAGTTGCCTGGCCCTGGCCGATGCCACGCGGCTGGTGCAATGGGCCGACGTGATCGGTGCCATGAGCTTCGAGGCCCAGCGCGGGCAGATTGCCGCGTTCGATGCCGAGATCATCGCCCTCAAGCCACACCCGGGCATGCAACAGGTTGGTGCGAATCTGCGCGCGTTGCTCGATGGCAGCGAAGTCATTGCTTCGAGCCTGGGTATCCGCACCCAGGATGCCTTGAGCATCCGCTCGATTCCCCAGGTTCACGGCGCCGCTCGCGATCAGTTGGAGCATGCTCGGCAACAGATCGAAACCGAGCTCAACGCTGTCACCGATAACCCAATGCTGCTGGGTACGCCGGAGAGTTTCCGGGTCATGTCCCAGGCCAATCCACACGGCCAGTCGGTGGCGTTGGCGGCGGACCTGCTGGCGATTGCCATGGCCGAGATCGGTTCGATCGCCGAGCGTCGCCTCGACCGCCTGATCAATCCTCACGTCAGCGGCTTGCCGGCATTTTTGGTCGCCAACCCGGGCGTGAACTCGGGAATGATGATCGTGCAATACGTTGCCGCGTCGCTGTGCGCGGAGAACAAGCAACTGGCGCAACCGGCGGTGCTGGACAATTTCGTCACCTCCGGGTTGCAGGAAGACCATTTGAGCATGGGCACCAACGCGGCCTTGAAGCTGCACCGGGCGCTGGAAAACTGCACGCAGATCCTCGCCATCGAGTACCTGCTGGCGGCCCAGGCCTTCGAGTTTCTCAAGGCGCAGCGCTTCGGCGCCGGCACCGACATCGCCTGGAAACTGCTGCGCGAGCGCGTTCCGGCCTACGACCAGGACCGCTGGCTGGCGCCGGACATCGCCAGTGCCGCCGGGCTGCTCAGCGACCCGCACCTCCTGAAAAACGTATTACCGAATTTGAATTGA	MSQAEKIIITGAPLRWQDVVAVARFGATLELSAQVWARIDNAQAIVQRIVESGERAYGVNTGLGALCNVSLQDEQLSQLSRNTLLSHACGVGPALADEQTRAILCAAIHNYSQGKSGIHRRAVEALLALLNRGITPQVPSQGSVGYLTHMAHIGIALLGVGQVSYRGQIVPAQQALAAEGLQPVQLGAKDGLCLVNGTPCMTGLSCLALADATRLVQWADVIGAMSFEAQRGQIAAFDAEIIALKPHPGMQQVGANLRALLDGSEVIASSLGIRTQDALSIRSIPQVHGAARDQLEHARQQIETELNAVTDNPMLLGTPESFRVMSQANPHGQSVALAADLLAIAMAEIGSIAERRLDRLINPHVSGLPAFLVANPGVNSGMMIVQYVAASLCAENKQLAQPAVLDNFVTSGLQEDHLSMGTNAALKLHRALENCTQILAIEYLLAAQAFEFLKAQRFGAGTDIAWKLLRERVPAYDQDRWLAPDIASAAGLLSDPHLLKNVLPNLN	PGPT0020230_2809	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020230-hutH-K01745	NA	NA
D1-36_00383	1533	hutH_2	COG2986	Histidine ammonia-lyase	ATGACTGCCTTAAACCTGATTCCCGGCCAATTGAGCCTGGCTCAATTGCGCGACATCTACCAGCAACCGGTCACCCTGAGCCTTGATGCCAGTGCGTCGGCGCAGATCGAAGCCAGCGTTGCGTGCGTGGAACAGATTCTTGCCGAGAACCGCACCGCCTATGGCATCAACACCGGTTTCGGCCTGCTGGCCTCGACTCGCATCGCAAGCGAGGACCTGGAAAACCTGCAGCGTTCCCTGGTGCTGTCCCATGCCGCCGGTGTGGGCGAGCCGATCAGCGATGCGCTGGTGCGGTTGGTCATGGTGCTCAAGGTCAACAGCCTGAGCCGAGGTTTCTCGGGCATTCGTCGGCAGGTGATCGATGCGCTGATCGCGCTGATCAACGCCGAGGTTTATCCACACATTCCGTTGAAAGGTTCGGTGGGCGCATCCGGTGACCTGGCACCGCTGGCGCACATGTCCCTGGTGCTGCTGGGCGAAGGTAAGGCCCGCTACAAGGGCGAATGGCTGCCGGCCGTCGACGCCTTGAAAGTTGCTGGCCTCGCGCCGCTGACCCTGGCCGCGAAGGAAGGCTTGGCGCTGCTCAACGGCACCCAGGTGTCCACCGCGTTTGCCTTGCGCGGCCTTTTCGAAGGCGAAGACCTGTTCGCTGGCGCCCTGGCCCTGGGTAGCCTCACTGTCGAAGCGGTGCTCGGTTCGCGCTCGCCATTCGATGCGCGCATCCATGCGGCTCGCGGCCAGAAAGGCCAGATCGATGCAGCCGCGGCCTACCGCGACCTGTTGGGCGAGCGCAGCGAAGTTTCCGATTCGCACCAGAACTGTGACAAGGTCCAGGACCCGTACTCCCTGCGTTGCCAACCGCAAGTGATGGGCGCCTGCCTGACCCAGTTCCGCCAGGCCGCCGAGGTGCTGGTGATCGAGGCCAACGCCGTGTCGGATAACCCGCTGGTGTTCGCTGCCGAGGGCGATGTGATTTCCGGTGGCAACTTCCACGCCGAACCGGTGGCGATGGCGGCGGACAACATGGCCCTGGCGATTGCCGAAATTGGCTCCCTGAGCGAGCGACGCATTTCGCTGATGATGGACAAGCACATGTCGCAGCTGCCGCCGTTCCTGGTGGCCAATGGCGGTGTGAACTCCGGGTTCATGATTGCCCAGGTGACAGCGGCGGCGCTGGCGAGTGAAAACAAAGCGCTGTCCCATCCTCATTCGGTGGATAGCCTGCCGACCTCGGCCAACCAGGAAGACCACGTCTCCATGGCCCCGGCCGCTGGCAAGCGCCTGTGGGAAATGGCCGAGAACACCCGCGGGATCCTGGCGGTGGAATGGCTGGCGGCGTGCCAAGGGCTGGACCTGCGCGGCGGTTTGAAGACCTCCGCCAAGCTGGAACAGGCCCGGGGTCTGTTGCGTGCAGAAGTGCCGTTCTATGAGAAGGACCGATTCTTTGCCCCGGATATCAATGCAGCGAGTGAATTGTTGGCGAGTCGCTGCCTGAACGAGCTGGTCACGGCGCAGTTGTTGCCGAGTCTATAA	MTALNLIPGQLSLAQLRDIYQQPVTLSLDASASAQIEASVACVEQILAENRTAYGINTGFGLLASTRIASEDLENLQRSLVLSHAAGVGEPISDALVRLVMVLKVNSLSRGFSGIRRQVIDALIALINAEVYPHIPLKGSVGASGDLAPLAHMSLVLLGEGKARYKGEWLPAVDALKVAGLAPLTLAAKEGLALLNGTQVSTAFALRGLFEGEDLFAGALALGSLTVEAVLGSRSPFDARIHAARGQKGQIDAAAAYRDLLGERSEVSDSHQNCDKVQDPYSLRCQPQVMGACLTQFRQAAEVLVIEANAVSDNPLVFAAEGDVISGGNFHAEPVAMAADNMALAIAEIGSLSERRISLMMDKHMSQLPPFLVANGGVNSGFMIAQVTAAALASENKALSHPHSVDSLPTSANQEDHVSMAPAAGKRLWEMAENTRGILAVEWLAACQGLDLRGGLKTSAKLEQARGLLRAEVPFYEKDRFFAPDINAASELLASRCLNELVTAQLLPSL	PGPT0020230_2420	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020230-hutH-K01745	NA	NA
D1-36_00384	1203	hutI	COG1228	Imidazolonepropionase	ATGAAAACCCTCTGGCAAAACTGCCACGCCGCCACCATGGCCCAGGGCGTCTACTCGATCATCGAAGACGCCGCCATCGTCACCCAGGGCGAGCACATTCAATGGATCGGGCCCCGTGCCGAACTGCCGATGGGCGACTATCCGGCGGTCAACGACCTCAAGGGCGCCTGGGTCACGCCGGGGCTGATCGACTGCCACACCCACACGGTGTTTGGCGGCAACCGCAGCGGTGAGTTCGAACAGCGCCTGCAAGGCGTTAGCTACGCCGAAATAGCGGCGGCCGGCGGTGGCATCGCCAGCACCGTGCGCGCCACCCGCGCCGCCAGTGAGGACGAGCTGTTCGCCAGCGCCGCCAGACGCCTGAAGAGCCTGATGCGCGATGGCGTGACCACGGTGGAAATCAAGTCCGGCTACGGCCTGGACCTGGCCAGCGAGCGCAAGATCCTGCGCGTCATCCGCCGCCTCGGTGCCGAGCTTCCGGTCAGTGTGCGCAGCACGTGCCTGGCGGCCCATGCCTTGCCGCCGGAATACAAGGATCGCGCCGATGACTACATCGAGCACATCTGCGCTGAAATGCTGCCCGCGTTGGCGGCTGAAGGGCTGGTGGACGCCGTTGACGCTTTTTGTGAGTACCTGGCCTTTTCCCCGGCGCAGGTCGAGCGGGTGTTTATCACCGCGCAGCAATTGGGCCTGCCGGTGAAGCTGCACGCTGAACAATTGTCGTCGCTCAATGGCTCCAGCCTGGCGGCGCGCTACCAGGCGCTGTCGGCCGATCACCTGGAGTTCATGACCGAGGACGACGCCAAGGCCATGGCCGCGTCCGGCACCGTGGCGGTGTTGTTGCCAGGGGCGTTTTATTTCTTGCGTGAAACCCAGCTGCCGCCCATGGATGCCCTGCGCAAGCACGGCGTGAAAATCGCCGTGGCCAGCGACCTCAACCCCGGCACCTCGCCGGCATTGTCGTTGCGCTTGATGTTGAACATGGCGTGCACCTGTTTGCGTATTACCCCGGAAGAAGCCCTGGCTGGGGCGACGCTCCACGCGGCTCAAGCCTTGGGCATGGCCGGGACCCATGGTTCGCTGGAAGCGGGCAAGGTAGCGGACTTTGTCGCCTGGGACATCGATCGCCCCGCTGACCTGTCCTATTGGCTCGGTGGCGAGCTGGAAAAACGCGTCGTGCGTCACGGCGTGGAAATCGATTGA	MKTLWQNCHAATMAQGVYSIIEDAAIVTQGEHIQWIGPRAELPMGDYPAVNDLKGAWVTPGLIDCHTHTVFGGNRSGEFEQRLQGVSYAEIAAAGGGIASTVRATRAASEDELFASAARRLKSLMRDGVTTVEIKSGYGLDLASERKILRVIRRLGAELPVSVRSTCLAAHALPPEYKDRADDYIEHICAEMLPALAAEGLVDAVDAFCEYLAFSPAQVERVFITAQQLGLPVKLHAEQLSSLNGSSLAARYQALSADHLEFMTEDDAKAMAASGTVAVLLPGAFYFLRETQLPPMDALRKHGVKIAVASDLNPGTSPALSLRLMLNMACTCLRITPEEALAGATLHAAQALGMAGTHGSLEAGKVADFVAWDIDRPADLSYWLGGELEKRVVRHGVEID	PGPT0020235_2267	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020235-hutI-K01468	NA	NA
D1-36_00385	804			hypothetical protein	GTGGAGAAGGTCCTGAATTTCAAGCAAGGGCGCGTGCCGCTGTTGATCAGCATGCCTCATGCCGGCCTGCGCCTGACCCCGGCGGTACAGGCCGGATTGATCCCGCAAGCCCAAAGCCTGCCGGACACCGATTGGCACATTCCGCGGCTCTATGAGTTTGCCGATGAGCTTGGCGCCAGCACCCTGGCCGCCGAATACTCACGGTTCGTCGTTGACCTGAACCGGCCCTCCGATGACAAACCGATGTACGTCGGTGCCACCACCGGCTTGTACCCGGCGACGCTGTTCGATGGCGTGCCGTTGTTTCGTGAAGGTCTGGAGCCATCCGCCGAAGAGCGGGCGACGTACCTGCAACAGGTCTGGATGCCCTATCACCAAGCGCTGCAGCAAGAACTGGCGCGGCTCAAGGCCGAGTTCGGCTATGCCTTGCTGTTCGATGCCCACTCGATCCGCTCGGTGATCCCGCACCTGTTCGACGGCAAGCTGCCGGATTTCAACCTGGGCACCTTCAACGGCGCCAGTTGCAGTCCGACGCTGGCGAGCGAACTCGAAGGCATTTGCGCCCGCCATGATCAGTTCACCCACGTGCTGAACGGGCGTTTCAAGGGCGGGCACATCACCCGCCATTACGGCAACCCGGCCCAGGACATCCATGCGGTGCAACTGGAGCTATGCCAGAGCACCTACATGGAAGAGTTCGAACCGTTCAACTATCGGCCCGACCTGGCGGCGCCGACCCAGGTGGTGCTCAGGGAATTGCTCGAAGGTTTCCTGGCGTGGGGGCGGCAGGCCTACAAGAAATAA	MEKVLNFKQGRVPLLISMPHAGLRLTPAVQAGLIPQAQSLPDTDWHIPRLYEFADELGASTLAAEYSRFVVDLNRPSDDKPMYVGATTGLYPATLFDGVPLFREGLEPSAEERATYLQQVWMPYHQALQQELARLKAEFGYALLFDAHSIRSVIPHLFDGKLPDFNLGTFNGASCSPTLASELEGICARHDQFTHVLNGRFKGGHITRHYGNPAQDIHAVQLELCQSTYMEEFEPFNYRPDLAAPTQVVLRELLEGFLAWGRQAYKK				NA	NA	NA	NA	NA
D1-36_00386	948			hypothetical protein	ATGAAAAGACTGTCCAAACGCTGTCTATCGTTCCTCTGCGGTACCGTTCTACTAAGCTCCGGCGCGATGGCCGCCGAGCCTGCGTCTTGCCAGGCCGTACGCATGGGCGTGGTCAACTGGACCGACGTCATTGCCACCAGTGGCATGGCGGACGTACTGCTCACCGGCCTTGGCTACGAAAGCAAGCAGACCAGCGCCGTGCAACAGATCATCTTCGCCGGCATCCGCGACAAGCGACTCGATATCTTCCTGGGCTATTGGAAACCGGCGATGGACAAGAACATCGCCCCGTTCCTGGCGGCCAACCAAGTGAAGGTCCTGGACAAACCTAGCCTGGCCGACGCCCAGGCCACGCTCGCCGTGCCCGATTACGTGGCGGCGGCAGGGCTCAAGAGCTTTGCCGATATCGCCCGGTTCAAGGATGAGCTCGGCGGCAAGATCTACGGCATCGAGCCGGGCAGTGGCGCCAACACCACCATCAAGACCATGATCGAGACCAATCACTTTGGCCTCAAGGATTTCAAACTGATCGAATCCGGCGAGGCGGGGATGTTGGCGGCGGTGCAACGGGCGGTGAATCGCAAGGAGTTCGTGGTCTTCGTTGGCTGGACCCCGCACCCGATGAACATCAACATGAACATCGCCTACCTGACGGGCAGCGAAGACGTGTATGGCCCGAACGAAGGTGCCGCGACTGTCTCCACCGTGACCGCGCCGGACTACGCCCAGCGTTGCCCCAACGTCCAGCGGCTGCTGGAAAACCTGACGTTTACCGCTGCCCAGGAAAGTCAGCTGATGGTGCCGATCATGGAGCGCAAGACTCCCCAGGACGTCGCAAGGCAATGGCTGCGCGAGCACCCCGAGGATCTGCAGCGTTGGCTGGCCGGCGTGACCAGCTTCGACGGCACGGATGGAATTGCAGCGGTGCAGGCGAGTCTCAAGAACTGA	MKRLSKRCLSFLCGTVLLSSGAMAAEPASCQAVRMGVVNWTDVIATSGMADVLLTGLGYESKQTSAVQQIIFAGIRDKRLDIFLGYWKPAMDKNIAPFLAANQVKVLDKPSLADAQATLAVPDYVAAAGLKSFADIARFKDELGGKIYGIEPGSGANTTIKTMIETNHFGLKDFKLIESGEAGMLAAVQRAVNRKEFVVFVGWTPHPMNINMNIAYLTGSEDVYGPNEGAATVSTVTAPDYAQRCPNVQRLLENLTFTAAQESQLMVPIMERKTPQDVARQWLREHPEDLQRWLAGVTSFDGTDGIAAVQASLKN	PGPT0013640_2293	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
D1-36_00387	888	aes_1		Acetyl esterase	ATGACTGCCTTCATCGACAAGACCCTGAGGTTCACGAGCCCGGACGACAGCCTCGCCGGCTCGCGCGAGGCCTACAGCCAGATGTGTCGGGCGTTCACCCCGTCGCGCCCGTCAACGCTTGCGGTCGAGGACCTGCAATTGGCTGGCGTGGCCATCCGCGCCTATCACGCGCGCGTCGCGCCACCATTGGCCGGCTGGCCGTGCATCCTTTACCTGCACGGTGGTGGTTGGGTGGTAGGGGACCTGGATTCCCATGACTTTATTTGCATGGAGCTGGCTGAAAGCCTTGGCGTGCTGGTCGTGGCGGTGGACTACCGGCTCGCCCCGGAGCATCCCTATCCGGCCGGTTTCGAAGACTGCCTCGCGGTGTGGCATCACTTGGCAGACGTCCCATTCGCCATTGATCCACGACGCAAAGCGCTGGCTGGCGACAGCGCCGGAGGCAATCTCGCCGCCGCGTTGTGCCTGGCCCTGCGTGATGCAGGCCAGCCTCAGCCGCGAACCCAAGTGCTGATTTACCCGGCGCTAGGCGGCCCCGCGCATTTGCCGTCGCGCCAGGAGTGTTTCGACGCACCTCTCTTGAGCAGCAGCGACCTGCAACGCTACGACGCCATGTACCTGCACGGTGCCGCCCCCACGCTCTACGCCGCCCCGTTGCTTGCCGACGATCTGAGCGGTTTGGCGCCTGCCTTTGTCGCCGTCGCGCAATGGGACCCCCTGCGTGATGACGGCGTTCTTTATCACGAGCGATTGAATGTCGCAGGGGGCGTGTCGGTCCTGTATCGGGGGGAAGGGCTGGTCCACGGTTGCCTGCGCGCACGTGGCCTGGTGCCAGAGGTCGATCAGATGTATCGCACACTGCTGGCATACCTGGCTGACACGCTTTGA	MTAFIDKTLRFTSPDDSLAGSREAYSQMCRAFTPSRPSTLAVEDLQLAGVAIRAYHARVAPPLAGWPCILYLHGGGWVVGDLDSHDFICMELAESLGVLVVAVDYRLAPEHPYPAGFEDCLAVWHHLADVPFAIDPRRKALAGDSAGGNLAAALCLALRDAGQPQPRTQVLIYPALGGPAHLPSRQECFDAPLLSSSDLQRYDAMYLHGAAPTLYAAPLLADDLSGLAPAFVAVAQWDPLRDDGVLYHERLNVAGGVSVLYRGEGLVHGCLRARGLVPEVDQMYRTLLAYLADTL	PGPT0004151_1	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_GOLD_RESISTANCE	GOLD_RESISTANCE-DELFTIBACTIN_METABOLISM,PGPT0004151-delftibactin_hydrolase_domain_protein-NA	NA	NA
D1-36_00388	972	pip		Proline iminopeptidase	ATGCAGACTTTGTACCCGCAGATCAAACCCCATGCCCGGCACGATCTGGCTGTCGATGACACCCACACGCTCTACGTCGATGAAAGCGGCTCGCCAGAAGGCCTGCCGGTGGTGTTCATTCATGGTGGCCCGGGGGCCGGTTGCGATGCGCAAAGCCGCCGCTACTTCGATCCGAACTTGTATCGCATCGTCACGTTCGACCAGCGCGGTTGTGGTCGTTCCACGCCTCACGCCAGCCTGGAAAACAACACCACCTGGGATCTGGTCGAGGACCTGGAGCGCATCCGCAAACACCTGGGCATCGAGAAGTGGGTGCTGTTCGGCGGCTCCTGGGGGGCAACGTTGGCCCTGGCCTACGCCCAGACCCATCCGGAGCGGGTGCATGGCTTGATCTTGCGTGGGATCTTTCTCTGCCGTCCCCAGGAAATCGAGTGGTTCTACCAGGCCGGCGCCAGCCGCCTGTTTCCGGATTACTGGCAGGACTACATCGCGCCGATCCCACTGGATGAGCGCGACGACCTGCTCAGCGCCTTTCACAAGCGCCTGACCGGTAACGACCAGATCGCCCAGATGCACGCGGCCAAGGCCTGGTCGACGTGGGAGGGCCGTACCGCGACCCTGCGCCCGAACCCGCTGGTGGTCGACCGCTTCTCCGAGCCACAGCGCGCGCTGTCGATTGCCCGGATCGAATGCCACTACTTCACCAACAATGCATTTCTTGAACCCAACCAGTTGATCCGCGACATGGGCAAGATCGCCCATTTGCCCGGCGTCATCGTGCATGGCCGCTACGATGTGATCTGCCCACTGGACAACGCCTGGGAGCTGCACCAGAACTGGCCCAACAGCGAGTTGCAGGTGATTCGCGACGCCGGCCATGCAGCCTCGGAGCCAGGGATCACCGATGCGCTGGTACGCGCGGCCGCGCAAATGGCCCGACGCCTGCTTGATCTGCCGCCCGAAGAAGCATGA	MQTLYPQIKPHARHDLAVDDTHTLYVDESGSPEGLPVVFIHGGPGAGCDAQSRRYFDPNLYRIVTFDQRGCGRSTPHASLENNTTWDLVEDLERIRKHLGIEKWVLFGGSWGATLALAYAQTHPERVHGLILRGIFLCRPQEIEWFYQAGASRLFPDYWQDYIAPIPLDERDDLLSAFHKRLTGNDQIAQMHAAKAWSTWEGRTATLRPNPLVVDRFSEPQRALSIARIECHYFTNNAFLEPNQLIRDMGKIAHLPGVIVHGRYDVICPLDNAWELHQNWPNSELQVIRDAGHAASEPGITDALVRAAAQMARRLLDLPPEEA				NA	NA	NA	NA	NA
D1-36_00389	438	dtd	COG1490	D-aminoacyl-tRNA deacylase	ATGAAAGGGTTGCTGCAACGGGTTCGCGGCGCCCGGGTAGAAGTCGCGGGGGAAATTGTCGGTGCGGTGGACCATGGTTTGCTGGTGCTGGTGGCTGTCGAGCCCGGGGATACCCCTGCCCACGCCGACAAACTCCTGCATAAGCTGCTTAACTACCGGGTGTTCAGCGACGGCGACGGGAAGATGAACCTGTCCCTGGTGGATGTGCAGGGCGGTTTGCTGTTGGTGTCGCAATTCACCCTGGCGGCGGACACCAGGAGCGGCTTGCGCCCGAGTTTTTCGACCGCCGCGCCTCCCGCTCTCGGTGAAGAGTTGTTCGACTATTTGCTCAGCCAGGCGAAACAGGTGCATGGCACCGTGGCATCAGGTAGATTCGGCGCCGACATGCAAGTGCATCTGGTCAATGATGGCCCGGTAACCTTTCTGTTACAGGCCTGA	MKGLLQRVRGARVEVAGEIVGAVDHGLLVLVAVEPGDTPAHADKLLHKLLNYRVFSDGDGKMNLSLVDVQGGLLLVSQFTLAADTRSGLRPSFSTAAPPALGEELFDYLLSQAKQVHGTVASGRFGADMQVHLVNDGPVTFLLQA				NA	NA	NA	NA	NA
D1-36_00390	1773	mdoG	COG3131	Glucans biosynthesis protein G	GTGATTGTTAGTCCCTGTAATGCACCAAAAATGACTGCCAAACGGTTTAGAAACGCTCTGGTAGCGGGCTCGGCCCTGTTGTGCCTGTTTGGCGCCGGCCAACTGTGGGCATTCAGCCTGGATGATGTATCGGCGAAGGCACAAGAACTGGCCGGGCAGAAGTTCGAAGCCCCGCGCAGCAATTTGCCGAATGAATTCCGCGAAATGAAGTTCGCCGATTATCAGAAAATTCGTTTCCGCACTGAAAAAGCTGAATGGGCCGACCAGAAGACGCCGTTCCGGCTGTCGTTCTATCACCAGGGCATGCACTTCGACACGCCGGTGAAAATCAATGAGATCACCGCGACCACCGTCGATGAGATCAAATATGACCCGGCGCGCTTCGATTTCGGTGACGTCAAGTTCGATCCCAAGGCGACCGAACAGCTGGGCTACGCGGGATTCCGTGTGCTGTACCCGATCAACAAGGCCGACAAGCAAGACGAGATCATGACCATGCTGGGCGCGAGCTACTTCCGCGTCATCGGCAAAGGCCAGGTTTACGGCTTGTCCGCGCGTGGCATGGCCATCGACACCGCACTGCCGTCGGGTGAAGAGTTCCCACGCTTTCGCGAATTCTGGATCCAGCGCCCGAAACCGACCGACAAGCATCTGGTGATCTTCGCCTTGCTGGATTCGCCACGGGCTACCGGCGCCTATCGCCTGACGCTGCGTCCAGGCACCGACACCGTGGTCGACGTGAAATCGCGCGTATTCCTGCGTGATCGCGTCAACAAGCTGGGCATCGCCCCGTTGACCAGCATGTTCCTGTTCGGCGCCAACCAGCCGTCCAAAGTGCTGAACTACCGTCGCGAGCTCCACGACTCCAGCGGCCTGTCCATTCATGCCGGCAACGGCGAGTGGATCTGGCGAGCCTTGAACAACCCGAAACACCTGGCCGTGAGCAGCTTCTCGGTGGAAAACCCGCGTGGTTTCGGCTTGCTGCAACGTGGCCGTGACTTCAGCCACTACGAGGACCTGGACGACCGTTACGACAAGCGTCCAAGCGCCTGGATCGAGCCGAAAGGCGATTGGGGCAAGGGCACCGTGAACCTGGTCGAGATCCCGACTGCCGATGAAACCAACGACAACATCGTTGCGTTCTGGAGCCCGGAAAAGCTGCCTGAGCCAGGCCAGCCTCTGGACTTCGCCTATCGCCTGCACTGGACCCTCGATGAAGCCAGCCTGCACTCGCCAGACAGCGCCTGGGTCAAGCAGACCCTGCGTTCCACCGGCGACGTCAAACAGTCCAACCTGATCCGCCAGCCGGATGGCAGCGTGGCCTACCTGGTCGATTTTGAAGGCCCGTCCCTGCAAGCGCTGCCGGAAAACGCAGAAGTGCGTAGCCAGGTGAGCGTCGGCGACAACGCCGAGATCGTTGAAAACAGCGTGCGCTACAACCCGGAAACCAAGGGCTGGCGCTTGACGCTGCGCCTGAAGATCAAGGACCCGAGCAAGGCCACCGAAATGCGTGCCGCCCTGGTCCGGCCGCTTGTGCCGGTCGAACTGCCGGCCGCCTCGCATTCCGTGACCACCTTGGCCAAGGCCGACAAGGTTGCCAAGCAGCAGAGCGAGAAAGAAAAAACCAACGAGCAAGCCAACGAGCAAAAAGAAGCCAAGGCCGTCAAGGCGTCCACCGCCGCCGCCGAGCCGACCCCAACCCCGCAGGAACCGGAACAGACTGAGCAAGTCCTGACCGAGACCTGGAGCTATCAGTTGCCTGCCGATGAGTAA	MIVSPCNAPKMTAKRFRNALVAGSALLCLFGAGQLWAFSLDDVSAKAQELAGQKFEAPRSNLPNEFREMKFADYQKIRFRTEKAEWADQKTPFRLSFYHQGMHFDTPVKINEITATTVDEIKYDPARFDFGDVKFDPKATEQLGYAGFRVLYPINKADKQDEIMTMLGASYFRVIGKGQVYGLSARGMAIDTALPSGEEFPRFREFWIQRPKPTDKHLVIFALLDSPRATGAYRLTLRPGTDTVVDVKSRVFLRDRVNKLGIAPLTSMFLFGANQPSKVLNYRRELHDSSGLSIHAGNGEWIWRALNNPKHLAVSSFSVENPRGFGLLQRGRDFSHYEDLDDRYDKRPSAWIEPKGDWGKGTVNLVEIPTADETNDNIVAFWSPEKLPEPGQPLDFAYRLHWTLDEASLHSPDSAWVKQTLRSTGDVKQSNLIRQPDGSVAYLVDFEGPSLQALPENAEVRSQVSVGDNAEIVENSVRYNPETKGWRLTLRLKIKDPSKATEMRAALVRPLVPVELPAASHSVTTLAKADKVAKQQSEKEKTNEQANEQKEAKAVKASTAAAEPTPTPQEPEQTEQVLTETWSYQLPADE	PGPT0013325_41	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0013325-mdoG-K03670	NA	NA
D1-36_00391	2514	opgH	COG2943	Glucans biosynthesis glucosyltransferase H	ATGACCGACGAGCAGCGCGCCGAGCTGGCGGGCTGCAAGTCCTTCAGCGAACTGCATGAACGCCTGGCTTCGCCGACATTCGATGCACCCACCGAGGCGGCCCAAGCCTCGGTAGGCCGTCGCCTGACGCTGAGCACCGCCGAGGAACTCGAGGACGCCGAAATGCTGGCGCTCGATTCCAGTGGTCGGGTGTGCTTGAAAGCAACGCCGCCGATTCGCCGGACCAAGGTCGTGCCGGAGCCATGGCGTACCAATATCCTGGTGCGTGCATGGCGCCGCCTGACCGGTCGCACCAACCCGCCGAAGCCGCCCAAGGACGAGCGCGTTTTGCCGCACGCTCGCTGGCGCACCGTGGGGTCGATCCGTCGTTATATCCTGCTGATACTGATGCTCGGCCAGACCATCGTCGCCGGTTGGTACATGAAAGGCATCATGCCGTACCAGGGCTGGTCGCTGGTGGACCTGGACGAAGTGCTGCACCAGCCGTTGTTGCAAACGGCCACGCAAGTGCTGCCGTATGCGCTGCAAACCAGCATCCTGATCATGTTCGGGATCTTGTTCTGCTGGGTGTCGGCCGGTTTCTGGACCGCGCTGATGGGCTTTCTCGAACTACTCACCGGTCATGACAAGTACCGTATCTCCGGTGCCAGCGCCGGCAACGAGCCGATTCCGAAAGACGCTCGCACCGCGCTGGTGATGCCGATCTGTAACGAGGATGTGCCACGGGTATTCGCCGGGCTGCGCGCCACCTTCGAATCCGTCGCGGCCACCGGTGACCTGGATCGCTTCGACTTCTTCGTGCTCAGCGACAGTAACGAGACCGATATCTGCGTCGCCGAACAGCAAGCCTGGCTGGATGTCTGCCGGGAAGCCGGCGGCTTCGGCAAGATCTTCTATCGCCGTCGCCGTCGCCGCGTGAAGCGCAAGAGCGGCAACCTCGACGACTTCTGCCGTCGTTGGGGCAGTGACTACAAGTACATGGTCGTGCTCGATGCGGACTCCGTGATGAGCGGCGAATGCCTGACCAGCCTGGTGCGTCTGATGGAAGCCACGCCGGACGCCGGCATCATCCAGACCGCGCCAAAAGCCTCGGGCATGGACACGCTGTATGCACGCATGCAGCAGTTCGCCACCCGCGTCTATGGTCCACTGTTCACCGCCGGCCTGCACTTCTGGCAGTTGGGTGAGTCGCACTATTGGGGCCACAACGCGATCATCCGCATGAAACCGTTCATCGACCACTGCGCCCTGGCGCCGTTGCCGGGTAAAGGGGCATTCTCGGGTGCGATCCTTTCCCACGACTTCGTTGAAGCGGCGCTGATGCGCCGCGCCGGTTGGGGCGTGTGGATTGCCTATGACTTGCCAGGCAGCTACGAGGAGTTGCCGCCGAACCTGCTGGACGAACTCAAGCGTGACCGTCGCTGGTGCCACGGCAACCTGATGAACTTCCGGCTGTTCCTGGTCAAGGGCATGCACCCGGTGCACCGCGCGGTATTCCTGACGGGCGTGATGTCCTACCTGTCGGCGCCGCTGTGGTTCTTCTTCCTGGTGCTGTCCACCGCGCTATTGGCCGTGAACACGCTGATGGAGCCGCAATACTTCCTGGAGCCGCGCCAGCTGTATCCGCTCTGGCCGCAATGGCACCCGGAGAAGGCCATCGCCCTGTTCTCGACCACCATCGTGCTGCTGTTCCTGCCCAAGCTCTTGAGTATCGTGCTGATCTGGGCAAAAGGCGCGAAAGAGTTCGGTGGCAAGTTCAAGGTCACGATGTCGATGCTGCTGGAGATGCTGTTCTCCATGTTGCTGGCGCCGGTGCGCATGATCTTTCATACCCGCTTCGTCCTTGCCGCTTTCCTGGGCTGGGCCGCGACCTGGAACTCGCCCAAGCGCGACGACGACTCCACGCCATGGAGCGAAGCCATCAAGCGCCACGGCCCGCAGACCTTACTGGGCTTCTTCTGGGCACTGCTGGTGATCTGGCTGAACCCAAGCTTCCTGTGGTGGCTCGTGCCGATCGTCGGCTCGCTGATGCTGTCGATCCCGGTCTCGGTGATTTCCAGTCGCGTGGGCCTGGGCTTGAAGTCCCGTGATGAAAGCCTGTTCCTGATCCCCGAGGAATACGCACCGCCTCAGGAGCTGCTGTCGACTGACCAGTACACCCACGAAAACCGTTGGCACGCGCTGAACGACGGCTTCATCCGGGCGGTGGTCGATCCGCAACAGAATGCCTTGGCGTGTGCATTGGCGACTTCCCGTCACGGCCAGGCCGAACCGATTGAATGGCTACGGGTCGAACGCGTCCGTCACGCACTGAAGGCTGGCCCGGCCGGTCTCAGCAATGCCGAGCGACTGGCGCTGCTGAGCGACCCGGTGGCCTTGTCCCGCCTGCATGAGCAGGTCTGGAACGAGGCGCATCCCGAGTGGCTGGCGGCATGGCGTGAGTCGGTCAAGGCCGATCCGCATGCACCGTTGCTGCCGCTTCAGCCGGTTAGCGTACAGCCTCAGTTGGCCTGA	MTDEQRAELAGCKSFSELHERLASPTFDAPTEAAQASVGRRLTLSTAEELEDAEMLALDSSGRVCLKATPPIRRTKVVPEPWRTNILVRAWRRLTGRTNPPKPPKDERVLPHARWRTVGSIRRYILLILMLGQTIVAGWYMKGIMPYQGWSLVDLDEVLHQPLLQTATQVLPYALQTSILIMFGILFCWVSAGFWTALMGFLELLTGHDKYRISGASAGNEPIPKDARTALVMPICNEDVPRVFAGLRATFESVAATGDLDRFDFFVLSDSNETDICVAEQQAWLDVCREAGGFGKIFYRRRRRRVKRKSGNLDDFCRRWGSDYKYMVVLDADSVMSGECLTSLVRLMEATPDAGIIQTAPKASGMDTLYARMQQFATRVYGPLFTAGLHFWQLGESHYWGHNAIIRMKPFIDHCALAPLPGKGAFSGAILSHDFVEAALMRRAGWGVWIAYDLPGSYEELPPNLLDELKRDRRWCHGNLMNFRLFLVKGMHPVHRAVFLTGVMSYLSAPLWFFFLVLSTALLAVNTLMEPQYFLEPRQLYPLWPQWHPEKAIALFSTTIVLLFLPKLLSIVLIWAKGAKEFGGKFKVTMSMLLEMLFSMLLAPVRMIFHTRFVLAAFLGWAATWNSPKRDDDSTPWSEAIKRHGPQTLLGFFWALLVIWLNPSFLWWLVPIVGSLMLSIPVSVISSRVGLGLKSRDESLFLIPEEYAPPQELLSTDQYTHENRWHALNDGFIRAVVDPQQNALACALATSRHGQAEPIEWLRVERVRHALKAGPAGLSNAERLALLSDPVALSRLHEQVWNEAHPEWLAAWRESVKADPHAPLLPLQPVSVQPQLA	PGPT0013320_395	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013320-mdoH-K03669	NA	NA
D1-36_00392	1917	mcpQ	COG0840	Methyl-accepting chemotaxis protein McpQ	ATGTTCCGGTGGCTTGCCCAGGGTCTGGGAAATGTAAGCGTCAATCGCAAACTCGGCGCGGGCTTCGGCCTCGTGCTGTTCCTCACCTTGATGATTGCATTCACCGGTTGGTCCGGCCTGGGCAATGTCATCAGCCGGGGCGACAAGCTGGGGTTCATTGCCAGTCTCAATGACTTGAGCAAGGACCTGAACCTGGCCAGCACCGACTACAACAACACCCGAGGCGAGAAAGGGCCGCAACAGGTCAACGACCTGCTCGGCAAACTCGAAGCCGGGCTGAAGACTGCTCGCGAGTTGATTGAACGGCCGGCGGACGTTGCGCTGGTCGACCAGCAATTGGCCGCCGTCGCCGAATACAGAAGTGCTTTCGAGCTGATGACCAGCGCCACCGTCAGCCGCGAAGATGCCCGCAGCAAACTGGGCGCCAGCGCCGACAACACCGTGGCCCGCGTCGCCGAGGTAGAAAAATCGCTGCTGCAAGGCGGCGATATTGCCCAGTTCAACAACATAGTGACCCTGAGCAAGGCGATCCAACAGGCGCGCTATCAGGTTCGCGGCTACACCTACAGCGGCAAAAGCGAGGCCCAGCAACCGGCCATCGACGCAATCACCGATGTCCTGAAACTGCTGGCACGCTTGCCAGCCCAGTTGCCCGAGGAGCACGCCGACAAACTTCAGCAGGCCAGCGACTCGATGAATGTCTATCGAGCGGCGGTCAGCCAGTTTCGTGATTCCCAGCTCGACAACGGCGCTGCGCTGCAGCGCATGATCGAGCAAGGCCAGGTATTGATCGATTCCAGCCAGAAACTCACCGTGTCCCAGACCGCCGTGCGCGACCACGACACCGCTCAAGCCAAGACCGTCCTGATCGCAGCCGCCGCCCTGGCCCTGTTGTTTGGCGTGGTCGCTGCCCTGGTCATTACCCGCCAGATTGTCGGCCCGCTGGATGAGACGCTGAAGGTGGCGGAACGCGTCGCCGCAGGCGACCTCACCCACAACCTCACGTCTGACCGCCGCGACGAACTCGGCCAACTGCAACGGGCCATGCAACGCATGACCGTGGGCTTGCGGCAGCTGATCGGTGGCATCGGTGAAGGCGTCACCCAGATTGCCAGCGCCGCTGACCAACTCTCCGCCGTGACCGAGCAGACAAGCGCCGGGGTCAACAGTCAAAAAGTGGAAACCGATCAGGTTGCCACGGCCATGCATGAGATGACCGCCACGGTGCAGGAAGTGGCCCGCAACGCCGAGGAAGCTTCCGAAGCCGCCGTCGCAGCCGACCAACAGGCCCGTGAAGGCGACAAGGTGGTTGGCGAAGCCATCGCTCAGATCGAGCGCCTGGCTAAAGAGGTGGGCAACTCCACCGCTGCCATGGGCGATCTGAAGCGTGAAAGCGACAAGATCGGCAGCGTCCTGGACGTGATCAAGTCCGTGGCCCAGCAAACCAACCTGCTGGCCCTCAACGCAGCCATCGAGGCAGCCCGTGCTGGTGAAGCCGGGCGAGGCTTCGCCGTGGTGGCTGACGAGGTTCGCAGCCTGGCCCAACGCACCCAGAAATCCACCGAAGAAATCGAAGAGCTGATCGTCGGTTTGCAAAACGGTACCGAACAGGTCGCGACCATCATGGACAACAGCCGCAGCCTGACCGACAGCAGCGTCGAACTGACCCGCCGCGCCGGGGGCTCACTGGAGAACATCACGCGCACGGTGTCGGCGATCCAGTCGATGAACCAACAGATCGCCGCGGCTGCCGAACAGCAAAGCGCCGTCGCTGAGGAGATCAACCGCAGCGTGCTGAATGTGCGTGATGTGTCGGAGCAGACAGCGTCGTCCAGCGAGGAAACCGCAGCTTCGAGCGCTGAACTGGCGCGGCTGGGGGTTCACTTGCAAACGTTGGTGGGGCGGTTCAGGGTTTAA	MFRWLAQGLGNVSVNRKLGAGFGLVLFLTLMIAFTGWSGLGNVISRGDKLGFIASLNDLSKDLNLASTDYNNTRGEKGPQQVNDLLGKLEAGLKTARELIERPADVALVDQQLAAVAEYRSAFELMTSATVSREDARSKLGASADNTVARVAEVEKSLLQGGDIAQFNNIVTLSKAIQQARYQVRGYTYSGKSEAQQPAIDAITDVLKLLARLPAQLPEEHADKLQQASDSMNVYRAAVSQFRDSQLDNGAALQRMIEQGQVLIDSSQKLTVSQTAVRDHDTAQAKTVLIAAAALALLFGVVAALVITRQIVGPLDETLKVAERVAAGDLTHNLTSDRRDELGQLQRAMQRMTVGLRQLIGGIGEGVTQIASAADQLSAVTEQTSAGVNSQKVETDQVATAMHEMTATVQEVARNAEEASEAAVAADQQAREGDKVVGEAIAQIERLAKEVGNSTAAMGDLKRESDKIGSVLDVIKSVAQQTNLLALNAAIEAARAGEAGRGFAVVADEVRSLAQRTQKSTEEIEELIVGLQNGTEQVATIMDNSRSLTDSSVELTRRAGGSLENITRTVSAIQSMNQQIAAAAEQQSAVAEEINRSVLNVRDVSEQTASSSEETAASSAELARLGVHLQTLVGRFRV	PGPT0015710_10315	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_00393	708			hypothetical protein	GTGAACCTGCTGCTGCTCGAAGAGGCCGATTTCATCGGGCCTGACCGCGTCGTCCTGAGCGACCGTCGGTTGACCCATATGCAGGAAGTCCATCGCTGTATTGTCGGCGACAGCCTGCGGGTCGGCCGCATCGACGGCTTGATGGGCTCCGCCCAGGTGCTGCGCCTGGACCCTCGCGAGGCCGAACTGCAAGTGACCCTCGACCAGCCACCGCCAGCCAAATTGCCGCTGACGCTGGTACTGGCATTGCCGCGGCCGAAGATGCTCAGGCGAGTGTTCCAGACCGTGGCGACCATGGGCGTGCCGCGTGTGGTACTGGTCAACAGTTACCGCGTGGAGAAAAGCTTCTGGCAGACGCCATTCCTGGAGCCCGAAGCCATTCGCGAGCAATTGATCCTGGGCCTCGAGCAGGCCCGGGACAGCGTGCTGCCTGAGATCGTCATCGAAAAGCGCTTCAAGCCCTTCGTCGAGGATCGCCTGCCGGCCATCGTCGATGGCACCCTCGGGTTGGTCGGCCACCCCGGCAATCATCCGCCTTGCCCCCGGGCACTGACGGAACCGGTGACCCTGGCAATCGGCCCGGAAGGTGGCTGGATTCCTTACGAGATCGACCTGCTGGGCAAGGCCGGCCTGCAGCCGGTGCAGCTGGGCGACCGGATCCTGCGGGTCGAGACCGCCGTCACTGCCCTGCTGGCGCGGTTGTTCTGA	MNLLLLEEADFIGPDRVVLSDRRLTHMQEVHRCIVGDSLRVGRIDGLMGSAQVLRLDPREAELQVTLDQPPPAKLPLTLVLALPRPKMLRRVFQTVATMGVPRVVLVNSYRVEKSFWQTPFLEPEAIREQLILGLEQARDSVLPEIVIEKRFKPFVEDRLPAIVDGTLGLVGHPGNHPPCPRALTEPVTLAIGPEGGWIPYEIDLLGKAGLQPVQLGDRILRVETAVTALLARLF				NA	NA	NA	NA	NA
D1-36_00394	795	tatC	COG0805	Sec-independent protein translocase protein TatC	ATGAGCGATATTCCTGAAAACGACCAGCCAATGCCGCTGGTATCGCACCTCACCGAGTTGCGCACCCGCCTGCTGCGTTGCGTCGCGGCGGTTTTCGTTATCTTCGCCGGGCTGTTTGCCTTCACCCAGCAGATCTACACCTTCGTCTCCACGCCGCTGCGCGAGTACCTGCCGGTGGGTGCGACGATGATCGCCACCGACGTGTCGTCGCCGTTCCTGACGCCGCTGAAGTTGACGATGATGGTCTCGCTGTTCCTGGCGATCCCGGTGATCCTGCATCAGATCTGGGGCTTCATCGCACCGGGCCTGTACAAGCACGAAAAACGCATCGCCGTGCCGCTGCTGGTGTCGAGCATCCTGCTGTTCTACACGGGCATGGCCTTCGCCTACTTCTTCGTGTTTCCGCTGATCTTCAAATTCTTCGCCGCCGCCACCCCGGCGGGCGTGGAAATGATGACCGACATCACCAGCTACCTGGATTTCGTCATGACGCTGTTCTTCGCCTTCGGCGTGGCGTTCGAGATCCCCGTGGCGGTGGTGCTGCTGGTGTGGATCGGCGTGGTCGATGTCGCCTACCTGAAGAAGATCCGCCCGTACGTGATCATCGGCTGCTTTGTGGTCGGCATGATCCTCACACCACCGGACATCTTCTCCCAGACCTTGCTGGCGGTACCGATGTGGCTGCTGTTTGAAATCGGCATCCTGTTCGGCGGCCTGGTGCGCAAGCGCCGGGAAGAGCCTGAGGACCAGCCCGTCGATGATCACAACGACCAGCCGCCAGCGACCCAAGCGTGA	MSDIPENDQPMPLVSHLTELRTRLLRCVAAVFVIFAGLFAFTQQIYTFVSTPLREYLPVGATMIATDVSSPFLTPLKLTMMVSLFLAIPVILHQIWGFIAPGLYKHEKRIAVPLLVSSILLFYTGMAFAYFFVFPLIFKFFAAATPAGVEMMTDITSYLDFVMTLFFAFGVAFEIPVAVVLLVWIGVVDVAYLKKIRPYVIIGCFVVGMILTPPDIFSQTLLAVPMWLLFEIGILFGGLVRKRREEPEDQPVDDHNDQPPATQA	PGPT0029295_2093	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
D1-36_00395	414	tatB		Sec-independent protein translocase protein TatB	ATGTTTGGGATCAGCTTCACTGAACTGCTGCTCGTCGGCCTCGTTGCCCTGCTGGTGCTGGGTCCCGAGCGCCTGCCGGGCGCTGCGCGTACCGCCGGCCTGTGGATCGGCCGCCTGAAGCGCAGCTTCAATGCGATCAAACAGGAAGTTGAACGTGAAATCGGTGCCGACGACATCCGTCGGCAACTGCACAACGAACACATCCTGTCGCTGGAACAGGAAGCGCGAAAAATCTTCACGCCGACCCAACAGGAGCCGACGCCGGTCCAGCCTGTGGCCGAGCCGACGACCGCACCCCAGGCACCGGCTGTCGAAGCCTCGCCAGCGGTGGCTGAACCGGTTAAACCGGTCGATCCGGCGCCTGCGACGACACCGACTCCCAACGATCCCACTTTGCCGCCGCGAGCCCCATGA	MFGISFTELLLVGLVALLVLGPERLPGAARTAGLWIGRLKRSFNAIKQEVEREIGADDIRRQLHNEHILSLEQEARKIFTPTQQEPTPVQPVAEPTTAPQAPAVEASPAVAEPVKPVDPAPATTPTPNDPTLPPRAP	PGPT0014360_1911	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TAT-TWIN-ARGININE_TRANSLOCATION_PATHWAY	CE-TAT-TWIN-ARGININE_TRANSLOCATION_PROTEINS,PGPT0014360-tatB-K03117	NA	NA
D1-36_00396	288	tatA		Sec-independent protein translocase protein TatA	ATGGGTATTTTTGATTGGAAACACTGGGTCGTCATTCTGGTGGTCGTGGTGCTGGTGTTCGGCACCAAGAAATTAAAGAACCTCGGCACCGATGTCGGTGAGTCGATCAAGGGTTTTCGCAAGGCCATGAACGATGACGAGAAACCGGCCGACACCACGACCAACCAGGCTCAACCCGTGCCACCGGCCCAACCGGTCCACCCGCAGGCCACACAGCCTGTGAATGCACCGAACACCATCGACGTGCAGGCCCAGAAAGTCGAAGAGCCAACCCGCAAAGACTCGTGA	MGIFDWKHWVVILVVVVLVFGTKKLKNLGTDVGESIKGFRKAMNDDEKPADTTTNQAQPVPPAQPVHPQATQPVNAPNTIDVQAQKVEEPTRKDS	PGPT0029290_978	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TAT-TWIN-ARGININE_TRANSLOCATION_PATHWAY	CE-TAT-TWIN-ARGININE_TRANSLOCATION_PROTEINS,PGPT0029290-tatA-K03116	NA	NA
D1-36_00397	333	hisE	COG0140	Phosphoribosyl-ATP pyrophosphatase	ATGAGTGACACCCTGACCCGCCTGGCCCAGGTGCTGGAAGAGCGCAAGGGCGCAGCGGCCGACAGCTCCTATGTCGCCAGCCTGTACCACAAGGGCTTGAACAAGATTCTGGAAAAGGTCGGCGAAGAATCGGTCGAGACCATCATCGCCGCCAAGGACGCCGCCGTCAGCGGAGACTGCAGCGACGTGATCTACGAGACCGCCGACCTTTGGTTTCACAGCCTGGTGATGCTGGCCCAGCTGGGGCAGCATCCCCAGGCTGTACTGGATGAACTGGACCGTCGCTTCGGTCTGTCCGGGCACGTCGAGAAAGCCTCGCGCCCATCCGCCTGA	MSDTLTRLAQVLEERKGAAADSSYVASLYHKGLNKILEKVGEESVETIIAAKDAAVSGDCSDVIYETADLWFHSLVMLAQLGQHPQAVLDELDRRFGLSGHVEKASRPSA				NA	NA	NA	NA	NA
D1-36_00398	399	hisI		Phosphoribosyl-AMP cyclohydrolase	ATGAAAAACTGGCAGGACGAGATCAAATGGGACGCCGACGGCCTGGTGCCGGCCATCGCCCAGGATCACAAGACCGGGCGCGTGTTGATGATGGCCTGGATGAACCACGAGGCACTGGCGCTGACCGCTGCCGAGAATCGCGCCATCTATTGGTCACGTTCCCGTGGCAAGCTGTGGCGCAAGGGCGAAGAGTCCGGGCATGTGCAGCACCTGCATGAGATGCGCCTGGATTGCGACGGTGACGTCATCATCCTGATGGTCGAGCAGGTCGGAGAAATTGCCTGCCATACCGGCCGTCAAAGCTGCTTCTATCGAGTCTTCGAGAACGGCGACTGGAAAACCGTCGACCCGGTGCTCAAGGACCCGCATGCCATCTATTCAGGACATACCCATGAGTGA	MKNWQDEIKWDADGLVPAIAQDHKTGRVLMMAWMNHEALALTAAENRAIYWSRSRGKLWRKGEESGHVQHLHEMRLDCDGDVIILMVEQVGEIACHTGRQSCFYRVFENGDWKTVDPVLKDPHAIYSGHTHE	PGPT0007985_540	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B2|RIBOFLAVIN_METABOLISM	ISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0007985-ribA-K01497	NA	NA
D1-36_00399	1605	ubiB	COG0661	putative protein kinase UbiB	ATGAAGCTGCTTGCCGTCCGCCGTCTGTTGCGCATCCAGCGCGTCGTGATCCGCTACCGCCTCGATGACCTGCTGTTCGCCTTGCCGCTGCCCTGGTTCCTCCTGGCGCTGCGCTTTGTGTTGCCATGGCGCTGGTTCCCCCGGCGTACCCTGGACCTGACTCGCGGCGCACGCTTGCGCCTGGCCTTGCAGGACCTGGGGCCAATCTTCATCAAGTTCGGGCAGATCCTCTCGACCCGTCGCGACCTGTTGCCCGAAGACATCGCCGATGAGCTGATGCTGTTGCAAGACCGCGTGCCGCCGTTCGACTCGAAGTTATCGGTGGCGCTGATCGAAGGGCAATTGGGCAAGAAGATCAGCGAGGTCTTCAGTCGCTTCGATGTCGAGCCCCTGGCCTCGGCGTCGGTCGCCCAGGTCCACGCCGCCCAGCTCAAGACGGGTGAAGAAGTGGTGGTCAAGGTGATTCGTCCCGGCCTGAAGCCGATCATCGCCCAGGACCTGGCGTGGCTGTTCATTCTTGCCCGCGCCGCCGAGCGGTTGTCTGCCGACGCGCGCCTGCTGCACCCGGTGGACGTCGTCCAGGATTACGAAAAGACCATCTACGACGAACTCGACCTGCTGCGCGAGGCCGCCAACGCAAGCCAACTGCGTCGCAACTTCGAAGGCTCGCCGCTGCTCTATGTGCCGCAAGTCTATTGGGACTGGTGCCGGCCGAAAGTCTTGGTGATGGAGCGCATCTACGGCATCCAGGTCACCGACCTGGCGACCCTGGCCGACCAGCGCACCGACATGAAACTGCTTGCCGAGCGCGGTGTGGAAATTTTCTTCACCCAGGTGTTTCGCGACAGTTTCTTCCACGCCGACATGCACCCAGGCAACATTTTCGTCAGTACGGTGCAGCCGTGGAGCCCGCAGTACATTGCGATCGACTGCGGCATCGTCGGCAGCCTCACCCCCGAGGACCAGGACTACCTGGCCCGCAACCTGTTCGCCTTCTTCAAGCGCGATTATCGCCGCGTCGCGCAGTTGCACATCGACTCGGGCTGGGTGCCCGCCGAAACCAAGCTCAACGAATTCGAAGCGGCGATACGCACTGTGTGCGAGCCGATCTTTGAAAAACCATTAAAGGATATTTCCTTCGGCCAGGTCCTGATGCGCCTGTTCCAGACCGCGCGACGCTTCAACATGGAAGTTCAGCCGCAGCTGGTACTGCTGCAAAAAACGCTGTTGAACATCGAAGGCCTCGGCCGCCAGCTGTACCCGGACCTGGACCTTTGGAACACCGCCCAGCCCTTCCTCGAACGCTGGATGCGCGAGCGGATGAGCCCGAAAGCCTTGCTGGGCAACGTCCAGAGCCAATTCGAACAGCTCCCGCACCTGGCCAACATGACCCGCGACCTGCTCGAACGCATGTCCCAACCCCACGCCAACGACCCCGCTCCACCATGGAAACGCCGTCGGGACGACTGGTTCCTGCGTTTGCTCGGCGCGGCCCACCTGGGTGGCGGCGCGGTGCTGGCGGCCGGTGGGCCGTTGAGCCAACTGGGCCATTGGCCCGCCGGCGTCATGGTGGCCGTTGGTTTGTATCTGGTCGTTCGCCGATAG	MKLLAVRRLLRIQRVVIRYRLDDLLFALPLPWFLLALRFVLPWRWFPRRTLDLTRGARLRLALQDLGPIFIKFGQILSTRRDLLPEDIADELMLLQDRVPPFDSKLSVALIEGQLGKKISEVFSRFDVEPLASASVAQVHAAQLKTGEEVVVKVIRPGLKPIIAQDLAWLFILARAAERLSADARLLHPVDVVQDYEKTIYDELDLLREAANASQLRRNFEGSPLLYVPQVYWDWCRPKVLVMERIYGIQVTDLATLADQRTDMKLLAERGVEIFFTQVFRDSFFHADMHPGNIFVSTVQPWSPQYIAIDCGIVGSLTPEDQDYLARNLFAFFKRDYRRVAQLHIDSGWVPAETKLNEFEAAIRTVCEPIFEKPLKDISFGQVLMRLFQTARRFNMEVQPQLVLLQKTLLNIEGLGRQLYPDLDLWNTAQPFLERWMRERMSPKALLGNVQSQFEQLPHLANMTRDLLERMSQPHANDPAPPWKRRRDDWFLRLLGAAHLGGGAVLAAGGPLSQLGHWPAGVMVAVGLYLVVRR	PGPT0009520_2101	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
D1-36_00400	618	ubiJ	COG3165	Ubiquinone biosynthesis accessory factor UbiJ	ATGTTGCTCACCGGCCTGCTCGCCAGCGTGGAACTCGGGATCAACCGAGTCCTGCGCCTGGACAGTACGGCGCCGGTGCGCCTGGCGCGCTTGAGTGGCAAGGTGATCGCTGTCGACTGCCGCAACCCGGCATTGCAACTGTTTATCCTGCCCAGCGATGAAGGCCTGATGCTCGCCGCCCATTGGGAAGCCGAAGCCGATTGCACGCTGCGAGCCCCGGCATCGAGCCTGCTGGAGCTAGCGCTGAGCAAGAACAAGACCGCCGTGCTGCACGGCCCGGACGTCGAGCTCGACGGCGACAGCGGTGTGCTGCTGGAGCTGGCGGCGATCCTTCAGGACCTGGAGCTGGACTGGGAATACGAAGTGTCCCGCTGGATCGGTCCGGTGGCGACCCAATTGCTCAGCGGTCACCTGCGCAGCCGCAGCCGCTGGTACCGCCAGGGCTTTGCCAGCCTGGGACAGAATCTGAGTGAATACCTGGCCGAAGAATCGCGTACCCTCGTGGGCCAACGCGAGGCCCAGGCCCGTTTTGATGAACTGGACCAGGTCAAGCTTGACCTGGAACGTCTCGAGGCGCGTTTCGAGCGCCTTTCCCGATCCCTTGAATCCAAGCGATAA	MLLTGLLASVELGINRVLRLDSTAPVRLARLSGKVIAVDCRNPALQLFILPSDEGLMLAAHWEAEADCTLRAPASSLLELALSKNKTAVLHGPDVELDGDSGVLLELAAILQDLELDWEYEVSRWIGPVATQLLSGHLRSRSRWYRQGFASLGQNLSEYLAEESRTLVGQREAQARFDELDQVKLDLERLEARFERLSRSLESKR	PGPT0009560_694	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009560-ubiJ|yigP-K03690	NA	NA
D1-36_00401	771	ubiE	COG2226	Ubiquinone/menaquinone biosynthesis C-methyltransferase UbiE	ATGACTGATCAGCGCAAAGGCAGCGATGCCGAACCCACCACTCACTTCGGCTTCAAGAACGTGCCGGAAAGCCAGAAGGCGGAAAAAGTCGCTGAGGTTTTCCACTCGGTGGCGGCCAAGTATGACTTGATGAACGACTTGCTTTCGGGCGGCATGCATCGTCTCTGGAAGCGTTTCGCGATCGAGCTGTCGGGCGTGCGCAGCGGCAACCGCGTGCTGGATATCGCCGGTGGCACGGGCGACCTGACCAGGAAGTTCTCCCACATCGTCGGCCCGACCGGCCACGTGGTGCTCGCCGACATCAACGAGTCCATGCTCAAGGTCGGCCGCGACCGCCTGCTGGACCTGGGTGTGGCCGGCAACGTCGAGTTCGTCCAGGCCGATGCCGAAAAGCTGCCTTTCCCGGATAACCACTTCGACTGCGTGACGATCGCCTTCGGCCTGCGCAACGTGACCCACAAGGAAGACGCCCTGCGCTCGATGTTGCGCGTGCTCAAGCCTGGTGGCCGGTTGCTGGTGCTGGAATTCTCCAAGCCGACCAATGCGCTGATGTCCAAGGCCTATGACGCCTATTCGTTCGCCTTCATGCCGCTGATGGGCAAGCTGATCACCAACGATGCGGAAAGCTATCGCTACCTGGCCGAATCGATCCGCATGCATCCGGACCAGGAAACACTGAAGTCGATGATGGTCGAGGCCGGTTTCGACCGGGTGACCTATCACAACATGACTTCAGGCATCGTCGCCCTACACCGCGGTATCAAGCCCTGA	MTDQRKGSDAEPTTHFGFKNVPESQKAEKVAEVFHSVAAKYDLMNDLLSGGMHRLWKRFAIELSGVRSGNRVLDIAGGTGDLTRKFSHIVGPTGHVVLADINESMLKVGRDRLLDLGVAGNVEFVQADAEKLPFPDNHFDCVTIAFGLRNVTHKEDALRSMLRVLKPGGRLLVLEFSKPTNALMSKAYDAYSFAFMPLMGKLITNDAESYRYLAESIRMHPDQETLKSMMVEAGFDRVTYHNMTSGIVALHRGIKP	PGPT0009535_645	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009535-ubiE-K03183	NA	NA
D1-36_00402	276			hypothetical protein	ATGGCCCGTATAACGGTTGAACGTGAACATGGCTTGGGCAAGGAAGCGGCCCGTGAAAAGGCTGAGAAGTTGGCGCAGAAACTGTCCGACAGCTATGGCCTGGAGCCCACGTGGGAAGGCGACACGCTGAAGCTCAAGCGCTCCGGGGTCAAGGGCGAAGTGCATGTAGGCGAGGATTCGATTCGCGTCGATGTGGAGTTGGGCATGTTGATGTCGGCCATGAGCGGCACGATCAAGGGGGAAATCGAAAAGGCGCTGGATAAGGCGTTGGCTTGA	MARITVEREHGLGKEAAREKAEKLAQKLSDSYGLEPTWEGDTLKLKRSGVKGEVHVGEDSIRVDVELGMLMSAMSGTIKGEIEKALDKALA				NA	NA	NA	NA	NA
D1-36_00403	423			hypothetical protein	ATGGCCAAAGTTATCCTGAAGAAAAAAACGGACGTTGAATCTTCCACGCTGAGCGACGTGAAAACGTATGCGCGCAAGATCTGGCTAGCGGGCCTGGGCGCCTATACAAAGGTCGGCCAGGAAGGCAGCGAGTACTTCCAGGAGTTGGTAAAGGCTGGCGAAGTAGTTGAAACCAAAGGCAAAAAGAAGATTGCCGGGAAACTTGAAGCGGCCAATAGCGAACTGATCGAAGCCAAGTCCGAGGTCAATACGTTCAAGGCCAGGGTCGAAGTTCAACTCGACAAAGTCGAGAAAGTATTCGACGCGCGTGTTGCAAGTGCCTTGAATCGTATCGGCATTCCGTCTAAACATGACGTTGAGGCACTCTCTGCTAAGCTCGATGAGCTGACGGCATTGCTCGAACGTGTCGCGCGTAAACATTAA	MAKVILKKKTDVESSTLSDVKTYARKIWLAGLGAYTKVGQEGSEYFQELVKAGEVVETKGKKKIAGKLEAANSELIEAKSEVNTFKARVEVQLDKVEKVFDARVASALNRIGIPSKHDVEALSAKLDELTALLERVARKH				NA	NA	NA	NA	NA
D1-36_00404	918			hypothetical protein	ATGGCTGGCAAAAAAATCACCGAAAAAGAAGGCAGCTCGTGGGCCGGGAAGATTGAAAAGTACTCCCGCAAAATCTGGCTTGCTGGTTTAGGCGTGTACTCGAAGATCGACACTGACGGCAGCAAACTCTTCGAGTCCCTGGTAAAGGACGGCGAGAAAGCCGAAAAACTCACCAAGACGGCAGTCGGCAAGCAAGTCGACGCAGCCAAGGACTCTGCCGAGTCCGCCAAGTCGCGCATCAGCGGCGCGAAGGACCGTGCGTTGGGCACATGGGGTGAGCTGGAAGGGGCTTTTGACAAGCGCCTGAACAGCGCGATCTCCCGTCTGGGCGTGCCCAGCCGCAATGAAGTCAAGGAACTGCACAACAAGGTCGACACTCTGACCAGGCAGATCGAAAAACTCACCGGGGCCAAGGTCACACCGGTTGCGACCAAGGCTACGGCAACCAAGACGGCGGCGGTCAAGCCTGCGGCGAAGGCGGCGGCCAAGACACTGGTCAAGGCGGCGGCCAAGCCTGTGGCAAAAGTGGCGGCCAAGCCTGCGGCCAAAACCGCAGCGGCCAAACCAGCTGCGAAGGCAGCGGCCAAGCCGGTAGCAACCAAGGCTGCGGCTAAACCCGCAGCTAAACCGGCGGCCAAAACCGCCGCAGCCAAACCGGCTACCGCCAAACCGGCAGCCAAGCCAGCGGCAAAAGCGGCGGCCAAACCTGCGGCCAAGGCAGCAGCGAAACCCGCAGCGGCCAAGAAGCCGGCCGTGAAGAAACCGGCTGCATCAAAAGCGGCTGCACCGAAGGCGCCAACCGCCGCCGCCAAACCGGCAACAGCTCCGGTGAGCACGGCGAACTCCGCCTCCGCTCCAACCCCGGTGGCCACGCCAACATCTACGCCGACTCCATCTACGCCTCCCACCCAGTCCTGA	MAGKKITEKEGSSWAGKIEKYSRKIWLAGLGVYSKIDTDGSKLFESLVKDGEKAEKLTKTAVGKQVDAAKDSAESAKSRISGAKDRALGTWGELEGAFDKRLNSAISRLGVPSRNEVKELHNKVDTLTRQIEKLTGAKVTPVATKATATKTAAVKPAAKAAAKTLVKAAAKPVAKVAAKPAAKTAAAKPAAKAAAKPVATKAAAKPAAKPAAKTAAAKPATAKPAAKPAAKAAAKPAAKAAAKPAAAKKPAVKKPAASKAAAPKAPTAAAKPATAPVSTANSASAPTPVATPTSTPTPSTPPTQS				NA	NA	NA	NA	NA
D1-36_00405	621			hypothetical protein	ATGAAGACCCGCGACCGTATCCTTGAATGTGCCCTGCAGTTATTCAACGAAAAGGGCGAGCCGAACGTTTCCACCATGGAAGTCGCCAACGAAATGGGCATCAGCCCCGGCAACCTGTATTACCACTTCCACGGCAAGGAACCGCTGATACTCGGATTGTTCGAGCGATTCCGGGCCGAGCTGGCGCCACTGTTGGACCCACCTGCCGATGCACAGCTGGCGCCGGAGGACTATTGGCTGTTCCTGCACCTGATCGTTGAACGCCTCGCTCAGTACCGATTTTTGTTCCAGGACCTGTCGAACCTCGCCGGGCGCCTGCCGAAGCTGGCCAAGGGTATTCGCCAGTTGCTCAACGCGCTGAAGCGAACCCTGGCCTCATTGCTGGCGCAACTCAAGGCCCAGGGGTTGTTGGTCAGCGACACCCAGGCGTTGGGGCAACTGGTGGAACAGGTCACCATGACCCTGCTGTTTTCCCTGGACTACCAGCGGATCCTGGATCGCGAAGGCGACGTTCGCCTGGTGGTCTATCAAGTCATGATGCTGGTGGCGCCACACCTGCCGCTGGCGATCAAGGTCGCCACCGAGCAAATGGCGTTGCGGTATCTGGAAGAGCACGAATAA	MKTRDRILECALQLFNEKGEPNVSTMEVANEMGISPGNLYYHFHGKEPLILGLFERFRAELAPLLDPPADAQLAPEDYWLFLHLIVERLAQYRFLFQDLSNLAGRLPKLAKGIRQLLNALKRTLASLLAQLKAQGLLVSDTQALGQLVEQVTMTLLFSLDYQRILDREGDVRLVVYQVMMLVAPHLPLAIKVATEQMALRYLEEHE				NA	NA	NA	NA	NA
D1-36_00406	1683	phaC_1	COG3243	Poly(3-hydroxyalkanoate) polymerase subunit PhaC	ATGCGCGACAAACCGGCGAAGGGTTCCATGCCCGCCCCTGCCAGTTTCATCAATGCACAAAGCGCGGTCACCGGCCTGCGCGGCAGGGACCTGCTTTCTACCTTGCGCAACGTCGCCGCTCATGGCTTGTGCAATCCGGTGCACAGCGCCCGGCATGCGTTGCGGCTGGGCAGTCAACTGGGGCGCGTGCTGCTGGGCGAAACGCTGCACCCCACCAACCCCAACGACAAGCGCTTCGCCGACCCCACCTGGCAGCTCAATCCATTCTATCGTCGTAGCCTGCAAGCCTATCTGAGCTGGCAAAAGCAGGTCAGGAGCTGGATCGACGAAAGCGACATGAGCGAGGACGATCGCGCCCGTGCCCATTTCACCTTCTCCCTGCTCAACGACGCGGTGTCGCCCTCCAATACGTTGCTCAATCCGCTGGCGATCAAGGAACTGTTCAACTCCGGCGGCACCAGCCTGATTCGTGGCATCAGCCACCTGGTGGACGACCTGCTGCACAACGATGGGCTGCCCCGGCAGGTCACGCCCCAGGCTTTCGAAGTCGGCAAGACCCTGGCAACCACACCCGGTGCGGTGGTGTTTCGCAACGAGCTGCTGGAACTGATCCAGTACAAACCGATGAGCGAAAAGCAATTCGCCACGCCAGTGCTGATCGTGCCGCCGCAGATCAACAAGTTCTACATCTTCGACCTCAGCCCCTCAAATAGCCTCGTCCAATACGCCCTGAAAAACGGCTTGCAGGTCTTCATCATCAGTTGGCGCAACCCCGACGTTCGCCATCGTGAATGGGGCCTGTCCAGCTATGTCGAGGCGACGCAAGAAGCCATGAACGTCTGCCGGGCGATCACCGGCGCACGGGAAGTCAACCTGTTGGGCGCCTGCGCCGGCGGCATGACCATCGCCGCCCTGCAAGGCCATTTGCAGGCCAAGCGCCAGCTGCGCCGGGTCGCCAGTGCGACGTACCTGGTCAGCCTGCTGGACAGCGAGATGGAAAGCCCGGCAACGTTGTTCATCGACGAACAGACTCTCGAAGCCGCCAAGCGTCGCTCCTACCAGCGAGGCATTCTCGACGGGCGCGACATGGCCCGCGTATTCGCCTGGATGCGCCCCAACGACCTGATATGGAGTTATTTCGTCAATAACTACTTGCTGGGCAAGGAGCCGCCGGCGTTCGACATCCTGTACTGGAACAACGACTGCACTCGGCTTCCGGCGGCGTACCACGGCGATCTGCTGGACTTTTTCAAGCACAACCCGCTGACCCGCCCGGGCGCGCTGGAGGTGTGCGGCACGCCGATCGATTTGCAAAAAGTCACGGTGGACAGCTTCAGCGTGGCGGGCATCAACGACCACATCACCCCATGGGACGCGGTGTACCGCTCCACGCTGCTGCTGGGGGGCGACCGCCGTTTCGTGCTGTCCAACAGCGGTCACGTGCAGAGCATTCTCAACCCGCCGGGCAACCCCAAGGCCAACTACATCGAGAACCCGAAGCTGAGCAGCGACCCCAGGGCTTGGTACTACGACGCCAAGCACGTCGAGGGGAGCTGGTGGCCCCAGTGGCTGGGCTGGATCCAGGAACGCTCCGGCGAACAGCGCGAAACGGTCATGGCGCTGGGCAACAGCAAATATCCGCCTCTGGAAGCCGCGCCCGGAAACTATGTACGGGTGCGCTGA	MRDKPAKGSMPAPASFINAQSAVTGLRGRDLLSTLRNVAAHGLCNPVHSARHALRLGSQLGRVLLGETLHPTNPNDKRFADPTWQLNPFYRRSLQAYLSWQKQVRSWIDESDMSEDDRARAHFTFSLLNDAVSPSNTLLNPLAIKELFNSGGTSLIRGISHLVDDLLHNDGLPRQVTPQAFEVGKTLATTPGAVVFRNELLELIQYKPMSEKQFATPVLIVPPQINKFYIFDLSPSNSLVQYALKNGLQVFIISWRNPDVRHREWGLSSYVEATQEAMNVCRAITGAREVNLLGACAGGMTIAALQGHLQAKRQLRRVASATYLVSLLDSEMESPATLFIDEQTLEAAKRRSYQRGILDGRDMARVFAWMRPNDLIWSYFVNNYLLGKEPPAFDILYWNNDCTRLPAAYHGDLLDFFKHNPLTRPGALEVCGTPIDLQKVTVDSFSVAGINDHITPWDAVYRSTLLLGGDRRFVLSNSGHVQSILNPPGNPKANYIENPKLSSDPRAWYYDAKHVEGSWWPQWLGWIQERSGEQRETVMALGNSKYPPLEAAPGNYVRVR	PGPT0014740_1555	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_RELATED_GENES	CE-BIOFILM-POLYHYDROXYBUTYRATE_PRODUCTION,PGPT0014740-phbC|phaC-K03821	NA	NA
D1-36_00407	858	catD_1	COG0596	3-oxoadipate enol-lactonase 2	ATGCCGCAACCGTACATCTTCCGTACCGTCGACCTGGATGGCCAGACCTTGCGCACCGCGGTACGTCCCGGCAAGCCCCATTTGACCCCGCTGCTGATTTTCAACGGCATCGGCGCCAACCTGGAGCTGGTCTTCCCATTCATAGAGGCGCTGGACCCGGACCTGGAAGTGATCGCCTTCGATGTGCCCGGGGTCGGCGGTTCGTCTACACCGAGCCGGCCGTATCGCTTTCCCGGCCTGGCCAAGCTCACCGCGCGGATGCTCGATTACCTGGACTACGGGCAGGTGAACGTGATCGGCGTGTCCTGGGGCGGCGCCCTGGCGCAGCAGTTCGCCCACGACTATCCGGAGCGCTGCAAGAAGCTGGTGCTCGCCGCCACGGCCGCCGGCGCGGTCATGGTGCCCGGCAAGCCGAAGGTGCTGTGGATGATGGCCAGCCCCCGGCGCTACGTGCAGCCGTCACATGTCATGCGCATCGCTCCACTGATCTACGGCGGCTCGTTCCGCCGCGACCCAAGCCTGGCGGCCCGTCACGCGGCCAAGGTGCGTTCGGCCGGCAAGCTCGGTTATTACTGGCAGCTTTTCGCGGGCCTTGGCTGGACCAGCATCCACTGGCTGCACAAGATCCACCAGCCAACCCTGATCCTGGCCGGAGACGACGACCCGCTGATTCCCCTGATCAACATGCGCATGCTGGCCTGGCGCATTCCCAATTCTCAGTTGCACATCATCGATGACGGCCATCTGTTCCTGATCACCCGGGCCGAGGCCGTGGCACCGATCATCATGAAATTCCTGGAGGAAGAACGTCAGCGCGCGGTCATGCACCCACATCCCGCACCGCTGGGTGGCGGCTGA	MPQPYIFRTVDLDGQTLRTAVRPGKPHLTPLLIFNGIGANLELVFPFIEALDPDLEVIAFDVPGVGGSSTPSRPYRFPGLAKLTARMLDYLDYGQVNVIGVSWGGALAQQFAHDYPERCKKLVLAATAAGAVMVPGKPKVLWMMASPRRYVQPSHVMRIAPLIYGGSFRRDPSLAARHAAKVRSAGKLGYYWQLFAGLGWTSIHWLHKIHQPTLILAGDDDPLIPLINMRMLAWRIPNSQLHIIDDGHLFLITRAEAVAPIIMKFLEEERQRAVMHPHPAPLGGG				NA	NA	NA	NA	NA
D1-36_00408	1680	phaC_2	COG3243	Poly(3-hydroxyalkanoate) polymerase subunit PhaC	ATGAGCAACAAGAACAACGATGAGTTGAAATACCAAGCCTCGGAAAACACCCTGGGCTTGAATCCCGTCGTCGGCTTGCGCAGGAAGGACCTGCTGGCCTCTGCCCGGATGGTGCTGACCCAGACCATCAGACAACCCCTTCACAGCGTCAAGCATGTGGCCCATTTCGGCGCTGAGCTGAGGAAGGTCCTGTTCGGCAAGTCCGTGTTGCAGCCCACCAGCGACGACCGTCGTTTCGCCGATCCGGCCTGGAGCCAGAACCCGCTCTACAAACGCTACCTGCAAACCTACCTGGCGTGGCGCAAGGAGCTGCACGCCTGGATCGACGACAGCAGCCTCTCGCCCCAGGACATCAGCCGCGGGCATTTCGTGATCAACCTGATGACCGAGGCGATGGCCCCGACCAACTCGGCGGCCAACCCGGCGGCGGTCAAGCGCTTCTTCGAAACCGGCGGCAAGAGCCTGCTCGACGGTTTGTCCCACCTGGCAAAAGACTTGGTACACAACGGCGGTATGCCGAGCCAGGTCGACATGGGCGCCTTCGAAGTCGGCAAGAGCCTGGGCGTGACGGAAGGCGCCGTGGTGTTTCGCAACGATGTGCTGGAGCTGATCCAGTACCGCCCCATCACCGAGCAGGTGCATGAGCGGCCGCTGCTGGTGGTCCCGCCGCAAATCAACAAGTTCTATGTATTCGACCTGAGCCCGGATAAGAGCCTGGCGCGCTTCTGCCTGCGCAGCAACGTGCAGACATTCATCATCAGTTGGCGCAACCCCACCAAGGCGCAGCGCGAGTGGGGCCTGTCGACTTATATCGAAGCGCTCAAGGAAGCGGTGGACGTTGTCACGGCCATCACCGGCAGCAAGGACGTCAACATGCTGGGCGCCTGCTCGGGCGGCATCACCTGCACCGCGCTGCTGGGCCATTACGCCGCGCTCGGCGAGAAGAAGGTCAATGCCCTGACGCTGCTGGTGAGTGTGCTGGACACGACCCTGGACACCGACGTGGCCCTGTTCGTCGACGAGCAGACCCTGGAAGCGGCCAAGCGCCATTCCTACCAGGCCGGCGTACTGGAAGGCCGCGACATGGCCAAGGTCTTCGCCTGGATGCGTCCCAACGACCTGATCTGGAATTACTGGGTCAACAACTACCTGCTGGGCAACGAACCACCGGTGTTCGACATTCTCTTCTGGAACAACGACACCACGCGACTGCCGGCGGCGTTCCATGGCGACCTCATCGAGATGTTCAAGAACAACCCGCTGACCCGCCCCAATGCACTGGAAGTATGCGGCACGCCGATCGACCTCAAGCAGGTCACTGCCGACATCTTTTCCCTGGCCGGCACCAACGACCACATCACGCCGTGGAAGTCCTGCTACAAGTCGGCGCAGCTGTTTGGCGGCAAGGTTGATTTCGTGTTGTCGAGCAGCGGCCACATCCAGAGCATCCTCAACCCGCCGGGCAACCCCAAGTCGCGCTACATGACCAGCGAGGACATGCCGGCCAAGGCCGAGGACTGGATGGAAAACTCCACCAAGCACACCGACTCCTGGTGGCTGCACTGGCAAGCCTGGCAGGCCGAGCGCTCGGGCAAGCTGAAGAAAGCGCCCTTGGTGCTGGGTAACAAGACCTACGTGGCCGGTGAGGCGGCGCCGGGCACTTACGTGCATGAAAGATAG	MSNKNNDELKYQASENTLGLNPVVGLRRKDLLASARMVLTQTIRQPLHSVKHVAHFGAELRKVLFGKSVLQPTSDDRRFADPAWSQNPLYKRYLQTYLAWRKELHAWIDDSSLSPQDISRGHFVINLMTEAMAPTNSAANPAAVKRFFETGGKSLLDGLSHLAKDLVHNGGMPSQVDMGAFEVGKSLGVTEGAVVFRNDVLELIQYRPITEQVHERPLLVVPPQINKFYVFDLSPDKSLARFCLRSNVQTFIISWRNPTKAQREWGLSTYIEALKEAVDVVTAITGSKDVNMLGACSGGITCTALLGHYAALGEKKVNALTLLVSVLDTTLDTDVALFVDEQTLEAAKRHSYQAGVLEGRDMAKVFAWMRPNDLIWNYWVNNYLLGNEPPVFDILFWNNDTTRLPAAFHGDLIEMFKNNPLTRPNALEVCGTPIDLKQVTADIFSLAGTNDHITPWKSCYKSAQLFGGKVDFVLSSSGHIQSILNPPGNPKSRYMTSEDMPAKAEDWMENSTKHTDSWWLHWQAWQAERSGKLKKAPLVLGNKTYVAGEAAPGTYVHER	PGPT0014740_1701	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_RELATED_GENES	CE-BIOFILM-POLYHYDROXYBUTYRATE_PRODUCTION,PGPT0014740-phbC|phaC-K03821	NA	NA
D1-36_00409	378			hypothetical protein	ATGACCAAACTCCCCACCGCCATCAACCTGCACAAAGCCTCCAAGACCCTGACGCTCAAGTACGCGCCAGACGAGGAGTACCACCTGCCAGCGGAATTCCTGCGGGTGCACTCACCCTCCGCCGAGGTCCAGGGCCACGGCAAGCCCATCCTGCAATACGGCAAGCTCGGCGTCGGCCTGACCAAGGTTGAACCGGCCGGCCAGTACGCACTGAAATTGACCTTCGACGACGGCCATGACAGCGGATTGTTCACCTGGGACTACCTGTATCAGTTGGCAGTGCGCCAGGAAGTCCTGTGGAACGATTATCTCGCCGAGCTCAAGGCCGCCGGAAAAACCCGCGATCCGAACGAGTCCGTCGTCAAGCTGATGCTCTAG	MTKLPTAINLHKASKTLTLKYAPDEEYHLPAEFLRVHSPSAEVQGHGKPILQYGKLGVGLTKVEPAGQYALKLTFDDGHDSGLFTWDYLYQLAVRQEVLWNDYLAELKAAGKTRDPNESVVKLML				NA	NA	NA	NA	NA
D1-36_00410	1338	hslU	COG1220	ATP-dependent protease ATPase subunit HslU	ATGTCCATGACTCCCCGCGAAATCGTCCACGAACTCAATCGCCATATCATCGGCCAGGACGATGCCAAGCGCGCCGTCGCCATTGCCCTGCGCAACCGCTGGCGCCGGATGCAGTTGCCTGAAGAACTGCGCGTCGAAGTAACACCCAAGAACATCCTGATGATCGGCCCGACCGGTGTCGGCAAGACCGAGATCGCCCGTCGCCTGGCCAAGCTCGCCAATGCGCCATTCATCAAGGTCGAGGCCACCAAGTTCACCGAGGTGGGCTACGTGGGCCGCGACGTCGAGTCGATCATTCGCGACCTGGCCGATGCCGCTATCAAGCTGCTGCGTGAGCAGGAAATCACCAAGGTTCGCCATCGCGCCGAAGACGCCGCCGAAGAACGCATCCTCGATGCGCTTCTGCCGCCTGCGCGCATGGGCTTCAACGCCGACTCCGCCGCGACACAGGATTCCAACACCCGCCAACTGTTCCGCAAGCGCCTGCGCGAAGGCCAGCTGGACGACAAGGAGATCGAGATCGAAGTGGCCGAGATGGCCGGTGTCGACATCTCCGCGCCGCCGGGCATGGAAGAGATGACCAACCAGCTGCAGAGCCTGTTCGCCAACATGGGCAAGGGCAAGAAGAAAAGCCGCAAGCTCAAGGTCAAGGAAGCGCTGAAGCTGGTGCGCGATGAAGAGGCCAGCCGCCTGGTCAACGAAGAAGAGTTGAAGGCCAAGGCCCTGGAAGCGGTCGAGCAGCATGGCATCGTGTTCATCGACGAGATCGACAAGGTCGCCAAGCGCGGCAATGTCGGCGGCGCCGATGTATCCCGCGAAGGCGTGCAACGCGACCTGCTGCCGCTGATCGAAGGCTGCACGGTCAATACCAAGCTGGGCATGGTCAAGACCGACCACATCCTGTTCATCGCTTCCGGCGCGTTCCACCTGAGCAAGCCGAGCGACCTGGTTCCTGAGTTGCAGGGCCGCTTGCCGATTCGTGTCGAACTCAAGGCGCTGTCGCCGGAAGATTTCGAACGCATCCTGAGCGAGCCCCATGCGTCGCTGACCGAGCAATACTGCGCGCTGCTCAAGACCGAAGGCCTGAACATCGAGTTCGCGCCCGAAGGCATCAAGCGCCTGGCGCAGATCGCCTGGCAGGTCAACGAAAAGACCGAGAACATCGGTGCCCGCCGCCTGCACACGCTGCTTGAGCGTCTGCTCGAGGAAGTCTCGTTCAGCGCCGGCGACCTGGCCAGCGCCCACAACGAAGCGCCGATCCGCATCGACGCCGAGTACGTCAACAGCCACCTGGGTGAGTTGGCGCAGAACGAAGACCTGTCGCGCTATATCCTGTAA	MSMTPREIVHELNRHIIGQDDAKRAVAIALRNRWRRMQLPEELRVEVTPKNILMIGPTGVGKTEIARRLAKLANAPFIKVEATKFTEVGYVGRDVESIIRDLADAAIKLLREQEITKVRHRAEDAAEERILDALLPPARMGFNADSAATQDSNTRQLFRKRLREGQLDDKEIEIEVAEMAGVDISAPPGMEEMTNQLQSLFANMGKGKKKSRKLKVKEALKLVRDEEASRLVNEEELKAKALEAVEQHGIVFIDEIDKVAKRGNVGGADVSREGVQRDLLPLIEGCTVNTKLGMVKTDHILFIASGAFHLSKPSDLVPELQGRLPIRVELKALSPEDFERILSEPHASLTEQYCALLKTEGLNIEFAPEGIKRLAQIAWQVNEKTENIGARRLHTLLERLLEEVSFSAGDLASAHNEAPIRIDAEYVNSHLGELAQNEDLSRYIL				NA	NA	NA	NA	NA
D1-36_00411	531	hslV	COG5405	ATP-dependent protease subunit HslV	TTGACCACCATCGTTTCAGTCCGCCGTCACGGCAAAGTCGTCATGGGCGGCGACGGCCAGGTTTCACTGGGCAACACCGTGATGAAAGGCAACGCGAAGAAAGTCCGCCGCCTGTACCACGGCCAGGTCATCGCCGGTTTCGCCGGGGCCACCGCCGATGCCTTCACCCTGTTCGAACGTTTTGAAGGCCAGCTTGAAAAACACCAGGGCCACCTGATCCGCGCCGCCGTCGAGCTGGCGAAGGAATGGCGTACCGACCGCTCCCTGAGCCGCCTCGAAGCGATGCTCGCGGTCGCCAACAAGGATGCCTCGCTGATCATCACCGGCAACGGTGACGTCGTTGAGCCTGAAGACGGCTTGATCGCCATGGGTTCCGGTGGGGCCTACGCCCAGGCCGCCGCCAGCGCCCTGTTGAAAAAAACCGACCTGTCGGCCCGGGAAATCGTTGAGACAGCCCTTGGCATTGCCGGCGACATCTGTGTCTTCACCAACCACACCCAGACCATTGAGGAGCAGGACCTCGCGGAGTGA	MTTIVSVRRHGKVVMGGDGQVSLGNTVMKGNAKKVRRLYHGQVIAGFAGATADAFTLFERFEGQLEKHQGHLIRAAVELAKEWRTDRSLSRLEAMLAVANKDASLIITGNGDVVEPEDGLIAMGSGGAYAQAAASALLKKTDLSAREIVETALGIAGDICVFTNHTQTIEEQDLAE				NA	NA	NA	NA	NA
D1-36_00412	705	ftsN		Cell division protein FtsN	TTGGCCGCCAAGAAAAAACCTGCACCCAAACGCGGCGCCAGTCGTTACCAGCCCCCGGCCAAAAAGCCGATTCCGGGCTGGTTGTGGATGGCCATCGGCCTGACCGTCGGCGCTTTCATTGTCTTTCTGATGAAGCTGGAGCCGGGCCAGGGCGATGACGTCAAGCGCGTGCGGCAAGAGCAGCAGAAAGCCACGCGGATCGCCGAGGCCAACAAGACCCCGCCGAGCCCGACGCAACCGGTGAAGCCGAAGTACGACTTCTATACCCTGCTGCCGGAATCGGAAGTCATCGTGCCGCCCGATGCCGTGCCGGAGAAAACCCTGCCGACACCACAAGTGCCTCAGGTGCCGGCCACACCGGTGACCCCGGCCGAAGCCGCCAAGATCGACACCGCCCGCGCCCAGGCGGCCCTGGCTGGCATCACGCCGCCACCCGCGCCGCCCGTGCAAAAGGCTGCGCCAGTGACGAAGTTCTTCTTACAAGCCGGCTCGTTCCGCAAGGAAGCCGATGCCGACAAAGTCCGGGCACAGATCATTTTGCTGGGCCAGTCGGTTTCGGTGGAATCCGGCACGGTGAAGGACGAAACCTGGTACCGGGTACTGGTTGGCCCGTTCAGCAATCGGGAAGAGCTGACCAAGGCCCAGAAACAACTGGCCGGCAGCGGCTTCAGCAACCTGTTGTTACAACAACGCCAGAGCCGCTGA	MAAKKKPAPKRGASRYQPPAKKPIPGWLWMAIGLTVGAFIVFLMKLEPGQGDDVKRVRQEQQKATRIAEANKTPPSPTQPVKPKYDFYTLLPESEVIVPPDAVPEKTLPTPQVPQVPATPVTPAEAAKIDTARAQAALAGITPPPAPPVQKAAPVTKFFLQAGSFRKEADADKVRAQIILLGQSVSVESGTVKDETWYRVLVGPFSNREELTKAQKQLAGSGFSNLLLQQRQSR				NA	NA	NA	NA	NA
D1-36_00413	1737	argS		Arginine--tRNA ligase	ATGAAAGACACCATTCGCCAGCTCATCCAGCAAGCCATCACTCAACTCGTCACTGAAGGTGTGCTGCCAGAAGGCCTGTCGCCGGCGATTCAGGTCGAGAACACCCGCGACAAGACCCACGGCGACTTCGCCAGCAACATCGCGATGATGCTCGCCAAGCCGGCCGGCATGAAGCCTCGCGACCTGGCGGAAAAGATCATCGCAGCGCTGCCGGCCGACGAGAACGTCAGCAAGGCCGATATCGCCGGCCCAGGCTTCATCAATTTCTTCCAGAACACCCAGGCCCTGGCCTCGCGTCTCGACGCGGCCCTGGCCGACGCGCGCCTTGGCGTACGCAAGGCCGGGCCATTGCAGCGCACCGTAGTCGACCTCTCGGCCCCTAACCTCGCCAAGGAAATGCACGTCGGCCACCTGCGCTCGACCATCATTGGCGACGGCGTGGCGCGCGTGCTGGAGTTTCTCGGCGACACCGTGATCCGCCAGAACCACGTCGGCGACTGGGGCACGCAGTTCGGCATGCTGATGGCCTATCTGCAGGAAAACCCCATCACCAGCGACGAGCTGTCGGACCTGGAAAACTTCTACCGCGCCGCCAAGCAACGCTTCGACGAATCGCCCGAATTCGCCGACCGCGCCCGTGGCCTGGTGGTCAAGCTGCAGGCCGGCGATGCCGAGTGCCTGGCGCTGTGGACCAAGTTCAAGGACATCTCCCTGTCCCACTGCCAGAAAATCTACGAGCTGCTGAACGTCAAGCTGACCATGGCCGACGTGATGGGCGAGAGCGCCTACAACGATGACTTGGTCAACGTGGTCAACGACCTTCGCGCCAAGGGCATGCTGGTAGAAAGCAACGGCGCCCAGTGCGTGTTCCTGGAGCAGTTCAAGACCGCCGATGGCGAGCCCCTGCCGGTGATCATCGTCAAAGCCGACGGCGGCTACCTCTATGCCACCACCGACCTGGCGGCCGTACGCTACCGCAACGGCGTGCTCAAGGCCGATCGGGTGTTGTATTTCGTCGACCAGCGCCAAGCCCTGCACTTCCAGCAAGTGTTCGAAGTGGCGCGCCTGGCTGGCTTCGTGACCCACCCGATGGAAATGGAGCACATGGGCTTCGGCACCATGAACGGCGCCGACGGCCGCCCATTCAAGACCCGCGACGGCGGCACCGTAAAATTGATCGACCTGCTGACCGAAGCCCAGGACCGCGCTTACACCTTGGTCAAGGGCAAGAACCCGGACCTGGCCGAAGACGAACTGCGCAACATTGCCAAGGTCGTCGGCATCGACGCGGTGAAGTACGCCGACCTGTCGAAACACCGCACCAGCGACTACAGCTTCAACTTCGACCTGATGCTCAACTTCGAAGGCAACACCGCGCCGTACCTGTTGTACGCCTACACCCGCGTGGCGGGGGTGTTCCGCAAGCTCGGCAAACGCTTCGACGAAGTGGAGGGTCAGATTGTCCTCGAGGCCGCCCACGAGCAGGAGCTCGCGGCCAGGCTGGCCCAGTTCGGCGAGGTGCTGAACAACGTCGCCGACAAAGGTACACCGCATACTTTGTGTGCCTACCTGTACGACGTCGCTGGCCTGTTCTCCAGCTTCTATGAGAACTGCCCGATCCTCAGCGCCGACACCCCGGCACAAATGCAGAGCCGCTTGCGCCTCGCCGCGCTGACCGGACGTACGCTCAAGCAAGGCCTGGAACTGCTGGGCCTGGAAACCCTGGAGCGCATGTAA	MKDTIRQLIQQAITQLVTEGVLPEGLSPAIQVENTRDKTHGDFASNIAMMLAKPAGMKPRDLAEKIIAALPADENVSKADIAGPGFINFFQNTQALASRLDAALADARLGVRKAGPLQRTVVDLSAPNLAKEMHVGHLRSTIIGDGVARVLEFLGDTVIRQNHVGDWGTQFGMLMAYLQENPITSDELSDLENFYRAAKQRFDESPEFADRARGLVVKLQAGDAECLALWTKFKDISLSHCQKIYELLNVKLTMADVMGESAYNDDLVNVVNDLRAKGMLVESNGAQCVFLEQFKTADGEPLPVIIVKADGGYLYATTDLAAVRYRNGVLKADRVLYFVDQRQALHFQQVFEVARLAGFVTHPMEMEHMGFGTMNGADGRPFKTRDGGTVKLIDLLTEAQDRAYTLVKGKNPDLAEDELRNIAKVVGIDAVKYADLSKHRTSDYSFNFDLMLNFEGNTAPYLLYAYTRVAGVFRKLGKRFDEVEGQIVLEAAHEQELAARLAQFGEVLNNVADKGTPHTLCAYLYDVAGLFSSFYENCPILSADTPAQMQSRLRLAALTGRTLKQGLELLGLETLERM				NA	NA	NA	NA	NA
D1-36_00414	2220	priA	COG1198	Primosomal protein N'	GTGCCCGACGCCATCCTGCGCCTCGCCTTGCCATCGCCCCTGCGCCGCCTGTTCGATTACCGCGCCCCGGCTGGAGTGCCGCGTGCCCAGTTGCAACCGGGCATGCGTCTGCGCGTGCCGTTCGGCCGGCGGGAAATGATCGGCATCCTGGTGGAAGTCAGCGATCAAAGCGAAGTGCCGGTCGATAAGCTCAAGCCAGCCCTGGCCCTACTCGATGCGACGCCACCGCTGCCGGCGCCGCTGCTCAAATTATGCCTGTGGACCGCCCAGTATTATCAGCACAGCCTGGGTGACACCCTGAGTTGGGCCCTGCCGGCGCTGTTGCGCCAGGGCGAACCGGCCGAGGCGCGCCAGGAGCGGTTCTGGTCGGCGGCACCGGGCGCCTCGCTGGAGGATCCGCGTATCGCCCGCGCACCGCGCCAGCGCGAAGCCCTGGCGACCCTGGCCCAGCATCCCCATGGCGTGGCGCACCCGTTATTGAGCAAGTTGATGCTCAGTAAGGACAGCCTCGACCTGTTGTTGGCCAAGGACCTGGTCCAGGTGGAAGTCCGCCGGCATGCTCCGAGCGCACGCCATGAACACTGGCTGGCCCAGCCGGAACTGCCACTCAACGCTGAGCAACGGGCCGCTTGCGAGGCCATTCGCGCGGGCTTCGACAGCTACCACGCCTTTTTGTTGGCGGGCGTCACCGGCAGCGGCAAGACCGAGGTCTACCTGCAACTGATCCGCCAGACCCTCGAAGCCGGCAAACAAGCCCTGGTGCTGATCCCGGAGATCAACCTCGGCCCACAAACCCTGGCGCGCTTCGAACAACGCTTCAATGCGCGAATCGCCCTGGTGCACTCGGCGGTCAACGATCGCGAGCGCCTGGAAGCCTGGCTCGCCGCCCGGGACGGCGAGGCAGATATCATCATCGGCACCCGCTCGGCGCTGTTCACACCGATGAAAAATCCCGGTCTGATCATCATCGACGAAGAGCACGACGGTTCTTATAAACAGCAGGAAGGCCTGCGCTATCACGCGCGGGATCTGGCGCTGGTGCGCGCCCGTCAGGAAAACATTCCCATCGTCCTTGGCTCGGCCACGCCCTCGCTGGAAAGCCTGCACAACGCCTACACCGGTCGCTACGGCCTGCTGCGCCTCAACGAACGAGCCGGCGGCGCCAAGCAACCACGCTTCCTGCGCCTGGATGTGAAAAGTCGTCCACTGGACAGCGGCATTTCCGGACCGATGCAGCAAGCCATCGGCCAGACCCTGGCAGCCGGGCAACAGGTCCTGGTCTTCCTCAACCGCAGGGGGTTCGCCCCGACCCTGCTGTGCCATGATTGCGGCTGGATGTCCGGTTGCGAGCGCTGTGATGCACGAATGACCGTCCATCAACGCTACGGCGAACTGCGCTGCCACCACTGCGGGCACTCCGAGCGTGTGCCGAGGAACTGCCCGCAATGCGGGAAAGTCGACTTGCGTCCCGTGGGCGCCGGCACCGAGCGCGCCGAAGAGCGGCTGGGCATTTTGTTTCCCGACTATCCGGTGCTACGCGTGGATCGCGACAGCACTTCCCGAAAGGATGCGATGAACAATCTGTTCGCCACCATCCAAAAAGGCCAGCCCTGCATCCTGGTGGGCACGCAGATGCTCGCCAAGGGGCATCACTTCCCCCGTGTCACGCTGGTGTCGATCCTGGATGCCGACGGCGGGCTGTTTTCCGGCGATTTCCGCGCCAGCGAGCGCATGGCGCAGCTGATCGTCCAGGTCGCAGGCCGCGCCGGGCGCGCCGAAGAGCCAGGCAAAGTGATCATCCAGACCCACCTGGCGGATCATCCGCTGCTGATACAACTGACCGAGCAAGGCTATTTTGCCTTCGCCGAGCAGGCGTTGAGCGAACGCCGAGGCGCCGGGCTGCCACCGTTCGCCCACCTGGCGCTGTTGCGGGCCGAGGCTCACAAACCGGGGCAGGCTGAAGGTTTTCTGGATGAAGCGTGCAGCGAGGCGGAGCGTCTGCTGGCGGAACAGAACCTCACCGGCATCGAACTCTTGGGCCCGGTGCCAGCGCCGATGGAACGACGCGCCGGGCGCTATCGTGCCCAGCTTTTATTGCAGGCCAATGCCCGGGCGCCGCTGCATCGGCTGTTGAATGCCTGGTTGCTGGTGCTCGAACAGATGCCCAGCGGGCGGGCGGTGCGCTGGTCGCTGGATGTGGATCCGGTGGATTTGTACTGA	MPDAILRLALPSPLRRLFDYRAPAGVPRAQLQPGMRLRVPFGRREMIGILVEVSDQSEVPVDKLKPALALLDATPPLPAPLLKLCLWTAQYYQHSLGDTLSWALPALLRQGEPAEARQERFWSAAPGASLEDPRIARAPRQREALATLAQHPHGVAHPLLSKLMLSKDSLDLLLAKDLVQVEVRRHAPSARHEHWLAQPELPLNAEQRAACEAIRAGFDSYHAFLLAGVTGSGKTEVYLQLIRQTLEAGKQALVLIPEINLGPQTLARFEQRFNARIALVHSAVNDRERLEAWLAARDGEADIIIGTRSALFTPMKNPGLIIIDEEHDGSYKQQEGLRYHARDLALVRARQENIPIVLGSATPSLESLHNAYTGRYGLLRLNERAGGAKQPRFLRLDVKSRPLDSGISGPMQQAIGQTLAAGQQVLVFLNRRGFAPTLLCHDCGWMSGCERCDARMTVHQRYGELRCHHCGHSERVPRNCPQCGKVDLRPVGAGTERAEERLGILFPDYPVLRVDRDSTSRKDAMNNLFATIQKGQPCILVGTQMLAKGHHFPRVTLVSILDADGGLFSGDFRASERMAQLIVQVAGRAGRAEEPGKVIIQTHLADHPLLIQLTEQGYFAFAEQALSERRGAGLPPFAHLALLRAEAHKPGQAEGFLDEACSEAERLLAEQNLTGIELLGPVPAPMERRAGRYRAQLLLQANARAPLHRLLNAWLLVLEQMPSGRAVRWSLDVDPVDLY				NA	NA	NA	NA	NA
D1-36_00415	225	rpmE	COG0254	50S ribosomal protein L31	ATGAAAACCGATATCCATCCAGACTACCCAGTTGTTGCAGTCACCTGCAGCTGCGGCAACAAGTTCGAAACCCGTTCGACCTACGGCAAAGCCCTGGCGATCGACGTTTGCAACGAATGCCACCCGTTCTACACCGGTAAGCAAAAGACTCTGGATACCGGCGGTCGCGTTCAGAAGTTCGCCGATCGTTTCGGTGCTTTCGGCAAAGTTACTCCGAAAGCCTGA	MKTDIHPDYPVVAVTCSCGNKFETRSTYGKALAIDVCNECHPFYTGKQKTLDTGGRVQKFADRFGAFGKVTPKA	PGPT0014325_2973	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014325-rpmEB-K02909	NA	NA
D1-36_00416	813			hypothetical protein	TTGGAAAGTCTTTCGGGCTATTCCAGACTGATGAAAAAGGCGTCCCTTGCGGGCGCCTTTTTTGTGTCCGCGATTTGGCTTTGTGGTGCTCAGGCGTCCTGCCCTTCGCCGGGTGAGCTGCCCGAAGTGGCCGTTCAGCGGGTCGTGGACGGCGACACCGTGTACCTCGAGGACGGTCGTCGCATCCGCATGATCGGCCTCAACAGCCCGGAGCTGGGCAAGCGCGGGCGTGCTGATGAACCGTTCGCCGTGGCGGCGCACCAGCGACTCGAGGCCTTGGTGGCCGCCAGCGCCGGCCGGGTCAAGGTATTGCCGGGTCGGGACGACCGCGATGATTACGGGCGCACGCTTGCTCATGTCTACGACCGCCAGGGCCGGAACCTGGAAGAACAGTTGATTGCCGAGGGGCTGGGTTTCCTGGTGGCGGTCGCGCCGAACGTTGAGTTGGTGGAGTGTCAGCAGGCGGCGGAGCGCCAGGCGCGGCAAGCAAGGCTCGGGATCTGGAAGAAATCCCCGGTCACGCGAGCCGAGCAAATTAAGGCGCCCGGCTTTGCGTTGGTCAGCGGCCGTGTAGACAGCGTGCAACGCAATCGCGGCGGTATCTGGATCGAACTGCAAGGCGCGGTTGTCCTGCACATCGCTCCCAACCTGCAGCGCAATTTCGATGCGTCGATGTTGAAGCGCCTGCAAGGCCGGACAGTCGAGGCGCGCGGTTGGGTCATCGATCGCTCTCGACGTGGAGCTACCAAGCAGGGGCAGGCGCGATGGATGTTGCCGCTGACCGATCCGGCAATGTTGCAGCCGGTGCTCTGA	MESLSGYSRLMKKASLAGAFFVSAIWLCGAQASCPSPGELPEVAVQRVVDGDTVYLEDGRRIRMIGLNSPELGKRGRADEPFAVAAHQRLEALVAASAGRVKVLPGRDDRDDYGRTLAHVYDRQGRNLEEQLIAEGLGFLVAVAPNVELVECQQAAERQARQARLGIWKKSPVTRAEQIKAPGFALVSGRVDSVQRNRGGIWIELQGAVVLHIAPNLQRNFDASMLKRLQGRTVEARGWVIDRSRRGATKQGQARWMLPLTDPAMLQPVL				NA	NA	NA	NA	NA
D1-36_00417	1269	maeB	COG0281	NADP-dependent malic enzyme	ATGTCTGATCTGAAAACTGCCGCTCTCGAATATCACGCTAATCCTCGTCCAGGAAAGCTGAGTGTCGAGCTCACCAAGGCCACCGCTACTGCCCGCGACTTGTCGCTGGCCTACAGCCCCGGCGTAGCCGAACCAGTGCGTGAAATCGCTCGCGACCCTGAGCTGGCCTACAAATACACCGGCAAGGGCAACCTGGTTGCAGTCATTTCCGATGGCACCGCGATTCTCGGCCTGGGTGACCTCGGCCCGCTGGCTTCCAAGCCAGTCATGGAAGGCAAGGGAGTCCTGTTCAAGCGTTTCGCCGGCATCGATGTGTTCGACATCGAAGTCGATTCCGAAAGCCCGCAAGCCTTCATCGACACCGTCAAGCGCATCTCCATCACCTTCGGCGGCATCAACCTGGAAGACATCAAGGCACCTGAGTGCTTCGAGATCGAGCGCGCCCTGATCGAACAGTGCGACATCCCGGTTTTCCATGATGACCAGCACGGTACTGCGATCGTGACCGCAGCCGGCATGATCAACGCCCTGGAAATCGCTGGCAAAACCCTGCCGGAAGCCAAGATCGTCTGCCTGGGCGCGGGCGCTGCGGCCATCTCCTGCATGAAATTGCTGGTGAGCATGGGCGCCAAGATCGAAAACATCTTCATGATCGACCGTACCGGCGTGATCCACTCCGGCCGTGACGACCTGAACCAATACAAGGCCGTGTTCGCCCACGCGACCGACAAGCGCTCCCTGGCGGACGCGCTGGACGGTGCGGACGTGTTCGTCGGCCTGTCGGGCCCGAACCTGCTGACCCCGGAAAACCTGCTGCGCATGGCGCCGAACCCAATCGTGTTTGCCTGCTCGAACCCGGATCCGGAGATCTCCCCAGAGCTGGCTCACGCGACTCGCAGCGACGTGATCATGGCCACCGGCCGTTCGGACTACCCGAACCAGGTCAACAACGTGCTGGGCTTCCCGTTCATCTTCCGTGGTGCCCTGGACGTTCGCGCCAAGCGCATCAACGAAGAAATGAAAGTCGCGGCCGCCAACGCCCTGCGCGAACTGGCCAAGCTGCCGGTGCCTCAGGAAGTGTGCGACGCCTACGGCGGCATCAAGCTGGAATTCGGTCGTGAGTACATCATCCCGAAACCCATGGACGCCCGCCTGATCACCCTGATCTCCGACGCCGTGGCCAAGGCCGCCATCGAGACGGGCGTGGCCACCCTGCCGTACCCGAAGAACTACCCGCTCAAGAGCGTGGATGACGTGTTCAACGGCTAA	MSDLKTAALEYHANPRPGKLSVELTKATATARDLSLAYSPGVAEPVREIARDPELAYKYTGKGNLVAVISDGTAILGLGDLGPLASKPVMEGKGVLFKRFAGIDVFDIEVDSESPQAFIDTVKRISITFGGINLEDIKAPECFEIERALIEQCDIPVFHDDQHGTAIVTAAGMINALEIAGKTLPEAKIVCLGAGAAAISCMKLLVSMGAKIENIFMIDRTGVIHSGRDDLNQYKAVFAHATDKRSLADALDGADVFVGLSGPNLLTPENLLRMAPNPIVFACSNPDPEISPELAHATRSDVIMATGRSDYPNQVNNVLGFPFIFRGALDVRAKRINEEMKVAAANALRELAKLPVPQEVCDAYGGIKLEFGREYIIPKPMDARLITLISDAVAKAAIETGVATLPYPKNYPLKSVDDVFNG	PGPT0001685_4073	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001685-maeB-K00029	NA	NA
D1-36_00418	2448	mrcA	COG5009	Penicillin-binding protein 1A	TTGATTCGTCTGCTGAAATTTTTCGGATGGTCCATCGTCGCCGTTTTCTGCGGACTGCTCTTGGGCCTGAGCGGTGCGTTTCTTTACCTTAGTCCGGGATTGCCGTCCGTGGAGGCGCTGAGAAGTATTCAGTTGCAGATTCCCCTGCGGGTGTACAGCAGCGACAACAAGTTGATCGCCGAATTTGGCGAAATGCGCCGTACGCCGATCCGTTTCGCCGACATTCCGCCCAATTTCATCAATGCGTTACTAAGTGCTGAAGACGACAATTTCGCCAACCACTACGGCGTCGATCCCGGCAGCCTGATGCGCGCCGCCAGCCAGCTGATCAAGAGCGGCCACATCCAGTCCGGTGGCAGCACCATCACCATGCAGGTGGCGAAGAATTTCTTCCTGACCAGCGAGCGCAGCTTCTCGCGCAAGACCACCGAGATCCTCCTCGCCCTGCAAATCGAGCGGCAGCTGACCAAGGACGAGATCCTCGAGCTGTACGTGAACAAGATTTACCTGGGCAACCGCGCCTACGGCATCGAGGCGGCAGCCCAGGTGTATTACGGCAAGTCGATCCGCGATGTGAGCCTGGCGCAGATGGCGATGATCGCCGGCCTGCCCAAGGCGCCGTCGCGCTTCAATCCGCTGGCCAATCCGGCGCGCAGCAAGGAACGTCGCGACTGGATCCTGGGGCGCATGTACAAGCTCGGCAAGATCAGCGAAGCGGACTACACCGCCGCGGTCAATGAGCCGCTGAACGCCAGCTACCACGTCCCGACTCCAGAAGTGAACGCCCCGTACATCGCCGAGATGGCCCGTGCCGAGATGGTCGGTCGCTATGGCAGCGACGCCTACACCGAAGGTTTCCGCGTCACCACCACGGTGCCGAGCGATCTGCAGGAAATGGCCAATACCGCGCTGCACGAAGGCTTGATGACCTATGACCAGCGCCATGGCTACCGGGGCCCTGAATCGCGCCTGCCAGGCAAGACCAAGGAAGCCTGGGCCCAGGAACTGACCAAGCAACGCACCATCAGCAGCCTGGAACCGGCGATCGTCACCCAGGTGGACAAGGACGGCATCAAGGTCCTGACACGCAATGGCGATTCGGAAGAGCACGTGGCCTGGGACACCATGAAATGGGCCCGTCCGTTCCTCAATACCAACAGCATGGGGGCCAATCCTCGCCAGCCATCGGACGTGGCGCAGGTCGGCGACCTCGTCCGGGTGCAGCGCCAGCCGGACAATTCCCTCAAGTTCAGCCAGATCCCGGCCGCCCAGGGCGCGCTGGTTTCCCTGGACCCGCAAAACGGCGCGATCCGTTCGCTGGTGGGTGGCTTCGCATTCGAGCAGAGCAACTACAACCGTGCCTTGCAGGCCAAGCGCCAGCCGGGTTCGAGCTTCAAGCCATTCGTCTATAGCGCCGCGCTGGATAACGGCTACACCGCTGCCAGCCTGGTGAACGATGCGCCGATCGTCTTTGTCGACGAATACCTGGACAAGGTCTGGCGCCCCAAGAACGACACCAATACCTTCCTTGGCCCGATTCGCCTGCGCGAAGCCTTGTACAAGTCCCGCAACCTTGTATCGATTCGCCTGCTGCAGGCCCTGGGCGTGGACCGCACCATCGACTACATCAGCAAGTTCGGCTTCAACAAGCAGGACTTGCCGCGCAACCTGTCCCTGGCCCTGGGCACCGCGACGCTGACGCCGATGGAGATCGCCACGGGCTGGAGCACATTTGCCAACGGCGGGTACAAGATCACTCCGTATATCATCGATAAGATAGAAAGCCGCAACGGCGAAACGCTGTTCCTTGCCAACCCGCCACGGGTCCCCACGGGCGAAGAGGCCAGCAACGGCGTCGCCGCGCCTGCCACTGAGACCTTCACGGTGAACGCAACAGGTGGCGAAGCCACCACCGCCCCTGCCGTACCACAAGCGCCGGCAATCGCCGAACGCATCGTTGACGGACGCACCACCTACATTCTCAACAGCATGCTGCAGGACGTGATCAAGCTCGGCACCGGCCGTCGAGCCCTCGCCTTGGGCCGCACCGACCTGGCGGGCAAGACCGGTACCACCAACGAATCCAAGGACGCCTGGTTCTCCGGCTATAACGCCGATTACGTGACCACCGTCTGGACCGGTTTCGACCAGCCCGAAAGCCTGGGTCGGCGAGAGTTCGGTGGCACCGTGGCGCTGCCGATCTGGATGAGCTACATGGGCGCCGCCCTCAAGGACAAGCCGCCACACACCCAGCCTGAACCGGAAGGCATCCTCAGTCTGCGAGTCGACCCGGTCAGCGGCCGCGCGGCCACGCCAGGTACGCCGGGTGCGTACTTCGAACTGTTCAAGAGCGAAGACACCCCGCCGTCGGTCAACGAGCTGGGCAACGGCGTAGCGCCGGGCAGCCCGTTGCCGGCAGACGAGGCGGCGCCGATCGATTTGTTCTGA	MIRLLKFFGWSIVAVFCGLLLGLSGAFLYLSPGLPSVEALRSIQLQIPLRVYSSDNKLIAEFGEMRRTPIRFADIPPNFINALLSAEDDNFANHYGVDPGSLMRAASQLIKSGHIQSGGSTITMQVAKNFFLTSERSFSRKTTEILLALQIERQLTKDEILELYVNKIYLGNRAYGIEAAAQVYYGKSIRDVSLAQMAMIAGLPKAPSRFNPLANPARSKERRDWILGRMYKLGKISEADYTAAVNEPLNASYHVPTPEVNAPYIAEMARAEMVGRYGSDAYTEGFRVTTTVPSDLQEMANTALHEGLMTYDQRHGYRGPESRLPGKTKEAWAQELTKQRTISSLEPAIVTQVDKDGIKVLTRNGDSEEHVAWDTMKWARPFLNTNSMGANPRQPSDVAQVGDLVRVQRQPDNSLKFSQIPAAQGALVSLDPQNGAIRSLVGGFAFEQSNYNRALQAKRQPGSSFKPFVYSAALDNGYTAASLVNDAPIVFVDEYLDKVWRPKNDTNTFLGPIRLREALYKSRNLVSIRLLQALGVDRTIDYISKFGFNKQDLPRNLSLALGTATLTPMEIATGWSTFANGGYKITPYIIDKIESRNGETLFLANPPRVPTGEEASNGVAAPATETFTVNATGGEATTAPAVPQAPAIAERIVDGRTTYILNSMLQDVIKLGTGRRALALGRTDLAGKTGTTNESKDAWFSGYNADYVTTVWTGFDQPESLGRREFGGTVALPIWMSYMGAALKDKPPHTQPEPEGILSLRVDPVSGRAATPGTPGAYFELFKSEDTPPSVNELGNGVAPGSPLPADEAAPIDLF	PGPT0023875_2365	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023875-mrcA-K05366	NA	NA
D1-36_00420	1065	ftsA_1		Cell division protein FtsA	GTGCTACGACTCTTCAATAAAAAAGCCCATGCGCTTCTGGGAATCGACATCAGCTCGACGTCGGTGAAGCTGCTCGAATTGAGTCGCCAGGGTGATCGTTATCGCGTCGAGTCGTATGCGGTCGAGCCTCTGCCGGCCAATGCCGTGATCGAAAAGAACATTGCCGAGCTCGAAGGCGTGGGGCAGGCGCTGTCGCGGGTGCTCGCCAAGGCCAGGACGCCCTTGCGCAACGTGGCGGTGGCCGTCGCGGGTTCGGCGGTCATCACCAAGACCATCGAGATGGATGCCGGGCTGTCCGATGACGAAATGGAAAACCAGCTCAAGATCGAAGCCGACCAGTACATTCCTTACCCCCTGGATGAGGTGGCGATCGATTTCGAAGTTATTGGCGTTTCGCCCCGCAGCACCGAGCGGGTCGAGGTGCTGCTGGCCGCGTGTCGCAAGGAAAATGTCGAGGTCCGCGAGGCCGCGCTGGCGCTCGCTGGGTTGACGGCCCGCGTGGTCGACGTGGAGGCCTACGCGCTGGAGCGTGCCTTTGGTCTGCTCGCGACCCAGTTGGCGGCGACTCAGGAGCGGTTGACGGTGGCGGTCGTCGACATCGGTGCCACGATGACCACCCTCAGCGTGTTGCACAACGGGCGCATCATCTATACCCGCGAGCAGTTGTTCGGTGGCCGCCAACTGACCGAGGAAATCCAGCGCCGCTACGGCCTGACGCCGGAGCAGGCCGGCCTGGCAAAAAAGCAGGGAGGGTTGCCAGACGACTATCTCGGCGAGGTGCTGCAGCCGTTTCGCGAAGCATTGGTCCAGCAGGTGTCGCGCTCGCTGCAATTTTTCTTTGCCTCCGGCCAGTACAGCGCGGTCGATCACATCCTGTTGGCCGGCGGCACGGCTTCGGTGGCGGGGCTGGATCGGCTGATCGAGCAGCGCCTGGGCACACCCACCCAGGTGGCCAATCCGTTCGCCAACATGGCCCTGAGCAGCAAGGTCAACGCGGGCGCCCTGGCCAGTGACGCGCCGGCGCTGATGATCGCCTGCGGGTTGGCCCTCAGGAGTTTCGACTGA	MLRLFNKKAHALLGIDISSTSVKLLELSRQGDRYRVESYAVEPLPANAVIEKNIAELEGVGQALSRVLAKARTPLRNVAVAVAGSAVITKTIEMDAGLSDDEMENQLKIEADQYIPYPLDEVAIDFEVIGVSPRSTERVEVLLAACRKENVEVREAALALAGLTARVVDVEAYALERAFGLLATQLAATQERLTVAVVDIGATMTTLSVLHNGRIIYTREQLFGGRQLTEEIQRRYGLTPEQAGLAKKQGGLPDDYLGEVLQPFREALVQQVSRSLQFFFASGQYSAVDHILLAGGTASVAGLDRLIEQRLGTPTQVANPFANMALSSKVNAGALASDAPALMIACGLALRSFD	PGPT0015945_800	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015945-pilM-K02662	NA	NA
D1-36_00421	567			hypothetical protein	ATGGCGCGGATCAACCTTCTACCCTGGCGCGAAGAGCTGCGCGAAGAGCGCCGCAAACGCTTTCTGCTGGCATTGGTCGGCGCGCTGGTCGGTGCGGTGGGCCTGACCTTGATCGCGGTGCAATATCTGAACAGTGCCATCGACTATCAAACAGCGCGCAACAGCCACCTGCGCGAGCAGATTGCCGTCCTGGACGAGCGCATCGAGCAGATCAGCGAGTTGAAGGCACGGCGGCAACAATTGCTGGAGCGCATGCGCATCATCCAGGACCTGCAGGGCAATCGGCCGGTCAGCGCGCGGATTTTCGATCAGTTGGCGCGGACCCTGCCCGACGGTGTGTATTTCACTGACGTCAAGATGGAAGAGGGCACCTTGTCCATAACAGGGGCGGCGGAGTCGAACAACCGGGTCTCTGACCTGATGCGCAACCTGGACTCATCGGACTTGTTCGACGCTCCGAGCCTGACGGAAGTGAAGGCCACCACGGCGGGCCAGCTCGACCAGGCGAACATCTTTCAGCTGACGGTTCGCCAGACCCGCCCGGCCGATGCGGAGGACGCCCAATGA	MARINLLPWREELREERRKRFLLALVGALVGAVGLTLIAVQYLNSAIDYQTARNSHLREQIAVLDERIEQISELKARRQQLLERMRIIQDLQGNRPVSARIFDQLARTLPDGVYFTDVKMEEGTLSITGAAESNNRVSDLMRNLDSSDLFDAPSLTEVKATTAGQLDQANIFQLTVRQTRPADAEDAQ	PGPT0015940_1048	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015940-pilN-K02663	NA	NA
D1-36_00422	624			hypothetical protein	ATGAAGCCTGGAGAATGGCTGGACGCACTGCGCAAGATCGACCTCAGCGACTTGGACACCAACAATATTGGTTCGTGGCCGGCACCGATCAAATGGCTGGCTGGCATTGTGCTGGTGATACTGGTTCTGGGGCTGGGCTATAACTTCGCCTTGAGTGACCTGCAGACTCAGTTGCAGCAAGTGCAGGAAGAGGAGAACACCCTCAAGGCGCAATTTGCGGGCAAGGCTCACATGGCGGCGAACCTGGAGCGCTACACCGAGCAGATGAAGCAGATGGAGACCTCGTTCGGCGTGTTGTTGCGGCAGTTGCCCAGCGACACCGAAGTGCCAGGCCTGTTGGAAGACATCACCCGCACCGGCCTGGGCAGTGGCCTGGAGTTCGAGGAAATCAAACTACTGCCGGAAGTCACCCAGCCGTTCTACATCGAGCTGCCGATCCAGATCACCGTGACGGGCGGCTACCATGACCTGGCGACATTCGTCAGCGGCGTGGCCGGGTTGCCGCGAATCGTGACTCTGCACGACTTCGAGATCGCCCCGATGGAGCCCGAGGAGGGGACGAAGCTGCGCATGAGCATCCAGGCCAAGACCTACCGGTACAACGAGCAGGAGGCGCAGCCATGA	MKPGEWLDALRKIDLSDLDTNNIGSWPAPIKWLAGIVLVILVLGLGYNFALSDLQTQLQQVQEEENTLKAQFAGKAHMAANLERYTEQMKQMETSFGVLLRQLPSDTEVPGLLEDITRTGLGSGLEFEEIKLLPEVTQPFYIELPIQITVTGGYHDLATFVSGVAGLPRIVTLHDFEIAPMEPEEGTKLRMSIQAKTYRYNEQEAQP	PGPT0015955_795	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015955-pilO-K02664	NA	NA
D1-36_00423	528			hypothetical protein	ATGATGTCGGCCTGGCGTGTGAGCCTGCTGGCCGGGTTGGTCGCGTTGGCCGGCTGTAACAGCGACGACGGCTTCAGTGACCTGGATGCCTACATGAACGAGGTGCGCCTGCGCCCACCTGGCAAGATCGAGCCAACGCCGACCTTCAAGCCCAACGAAACCTTCACCTACAGCGCCGCGAACCTGCGCAGCCCTTTCTCCAGGCAAGTGCGCATGGACCAGGCGGGTCGGCCGCAGGGCTCGCGCAACGTGCGGCCCGATCCCAACCGGGTCAAGCAGTACCTGGAAGGCTTTAATATCGAGCAGTTCGAGATGGTCGGGACGATCTCCAATGCCAGCGGTTCCTTTGCACTGGTACGAGGCGCGGGCGGCGTACATCGGCTGAAGGTGGGGGACTACCTGGGACGCAATGATGGGCGGGTCGTCGCGATCAGCGCCACGCAGGTCGATGTGGTCGAAATCGTTCCCGATGGCGAGGGCGCCTGGCTGGAGCGGCCGCGGACCATTCCTTTGAAAGAGCACTCATAG	MMSAWRVSLLAGLVALAGCNSDDGFSDLDAYMNEVRLRPPGKIEPTPTFKPNETFTYSAANLRSPFSRQVRMDQAGRPQGSRNVRPDPNRVKQYLEGFNIEQFEMVGTISNASGSFALVRGAGGVHRLKVGDYLGRNDGRVVAISATQVDVVEIVPDGEGAWLERPRTIPLKEHS	PGPT0015950_581	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015950-pilP-K02665	NA	NA
D1-36_00424	2073	pilQ		Type IV pilus biogenesis and competence protein PilQ	ATGAACAGGATTTTTCCAGCCCTCGGTATTTCGCTATGGATAGCGCTGTTGTCACCGATGGTTCAGGGGGCCAGCCTGAAGACGCTCGATGTCGCGGCGTTGCCGGGGGACCGTGTCGAGCTGAAGCTCAGCTTCGATGGTCCGCCGCCCCCACCTCGGGGCTATACCACCGAACAACCGGCGCGAATCGCGCTGGACCTGCCCGGCGTGACCAATCGATTGGCCAGCAAAAGCCATGACCTGGGCGGCGGCAACGCACGCAGCGCCACCGTGGTCGAGGCGGGGGACCGCACGCGGCTGATCATCGGCCTTACCCAGCTGGCGCCCTATGACACGCGGATCGAGGGCAACAACCTCTTCGTAGTGGTTGGCAAGGGCGCGACCGCCAGGGCCGCGGCGCAGGCACTGCGCCCTGCCGGAGCCGTACCGTCCCTCACCAGGGCCAGCGCTCCGGCAGGCAAGGCCATCCGGGGCGTGGACTTCCAGCGTGGGACCCAAGGGGAAGGCAATGTGGTCATTGACCTGTCCGACCCTTCCATTGCGCCCGATATCCAGGAGCGCGAAGGCAGGGTCATCCTCGACTTCCCCAGGACCCAGTTGCCCGAACCCCTGCGGGTGCGCCTGGACGTCAAGGATTTCGCCACCCCGGTGCAGTTCGTCAATGCCAGCGCGGGTTCCGACCGCGCCACCATCAGCATCGAACCCAGCGGCACCTTCGACTACTCGACCTACCAGACCGACAACAAGCTGACCGTGAGCGTCCGGCCAATGACGGTCGAAGACTTGCAGAAACGCAACAGCGACCGCGCCGCCTACAACGGGGAAAAGCTGTCACTCAACTTCCAGGACATTGAAGTGCGCTCGGTGCTGCAGTTGATCGCCGACTTCACCAACCTTAACCTGGTGGCCAGCGACACCGTGCAAGGCGGTATCACCCTGCGGTTGCAGAACGTGCCGTGGGACCAGGCGCTGGATCTCGTGCTCAAGACCAAGGGGCTCGACAAGCGCAAGGTCGGTAATGTCCTGTTGGTGGCGCCCGCCGACGAGATTGCGGCACGCGAGCGCCAGGAGCTTGAATCCCAGAAGCAGATTGCCGACCTGGCACCGCTGCGGCGTGAGCTGCTGCAGGTCAACTATGCCAAGGCCGCCGACATCGCCAAGTTGTTCCAGTCGGTCACCAGTGCCGAGGCGAAGGCCGACGAGCGGGGCACGATCACGGTCGATGAACGCACCAACAACATCATCGCCTACCAGACCCAGGACCGGCTCGACGAGCTGCGCCGGATCGTCGCGCAACTGGACATACCCGTGCGTCAAGTGATGATCGAGGCGCGAATCGTCGAGGCCAACGTCGATTACGACAAGAGCCTGGGCGTGCGCTGGGGGGGCTCGATACAGAACAAGGGCAACTGGAATTCTTCCGGCGTCACCACGGGAGACTCCACGACCATCGGCACGCCGGGCAGTACCGGCACCAACCAACCGTTCGTCGACCTCGGGGCTTCAGGCAACACCTCAGGGATTGGTATCGCGTTCATCACGGACAACGTGCTGCTGGACCTGGAACTGACCGCCATGGAAAAAACCGGCAACGGCGAAATCGTTTCCCAGCCCAAGGTGGTGACCTCCGACAAGGAGACCGCGAAAATCCTCAAGGGCACGGAAATTCCCTACCAGGAAGCCAGCTCCAGCGGCGCCACCTCGGTGTCGTTCAAGGAAGCATCGTTGTCGCTGGAGGTCACGCCGCAGATCACCCCGGACAACCGCATCATCATGGAAGTCAAGGTCACCAAGGATGAGCCGGATTATCTGAACAAAGTGCAGGATGTCCCGCCGATCAAGAAGAATGAGGTCAACGCCAAGGTGCTGGTCAATGACGGCGAGACCATTGTTATTGGTGGCGTTTTCTCAAATACTCAGAGCAAGGTTGTAGATAAGGTGCCATTTCTTGGCGATGTGCCGTATCTTGGCCGCCTTTTCCGGCGTGATGTGGTCTCGGAGAAAAAATCCGAGCTGCTGGTGTTTCTCACTCCGCGTATCATGAACAACCAGGCGATTGCTGTGAGTCGTTGA	MNRIFPALGISLWIALLSPMVQGASLKTLDVAALPGDRVELKLSFDGPPPPPRGYTTEQPARIALDLPGVTNRLASKSHDLGGGNARSATVVEAGDRTRLIIGLTQLAPYDTRIEGNNLFVVVGKGATARAAAQALRPAGAVPSLTRASAPAGKAIRGVDFQRGTQGEGNVVIDLSDPSIAPDIQEREGRVILDFPRTQLPEPLRVRLDVKDFATPVQFVNASAGSDRATISIEPSGTFDYSTYQTDNKLTVSVRPMTVEDLQKRNSDRAAYNGEKLSLNFQDIEVRSVLQLIADFTNLNLVASDTVQGGITLRLQNVPWDQALDLVLKTKGLDKRKVGNVLLVAPADEIAARERQELESQKQIADLAPLRRELLQVNYAKAADIAKLFQSVTSAEAKADERGTITVDERTNNIIAYQTQDRLDELRRIVAQLDIPVRQVMIEARIVEANVDYDKSLGVRWGGSIQNKGNWNSSGVTTGDSTTIGTPGSTGTNQPFVDLGASGNTSGIGIAFITDNVLLDLELTAMEKTGNGEIVSQPKVVTSDKETAKILKGTEIPYQEASSSGATSVSFKEASLSLEVTPQITPDNRIIMEVKVTKDEPDYLNKVQDVPPIKKNEVNAKVLVNDGETIVIGGVFSNTQSKVVDKVPFLGDVPYLGRLFRRDVVSEKKSELLVFLTPRIMNNQAIAVSR	PGPT0015965_716	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015965-pilQ-K02666	NA	NA
D1-36_00425	492	aroK	COG0703	Shikimate kinase 1	ATGGGGGCTGGAAAAAGCACCATCGGTCGTTTGCTGGCCAAAGAGCTGCGCCTGCCATTCAAAGATTCCGACAAGGAAATTGAATTGCGCACGGGTGCTAATATCCCATGGATCTTCGATAAGGAAGGCGAGCCGGGCTTTCGGGACCGCGAGCAGGCGATGATTGCCGAGCTGTGCGATTTTGAAGGCGTGGTGCTGGCCACCGGCGGCGGCGCGGTCATGCGCGAAGCCAATCGTCGGGCGCTGCATGCCGGAGGGCGAGTGGTCTATCTGCATGCTTCCGTCGAACAGCAGGTTGGCCGTACCGCCCGCGATCGCAACCGGCCGCTGCTGCGTACGGCCGACCCGGCCAAGACCTTACGGGACCTGCTGGAAGTGCGTGACCCTCTGTATCGGGAAATCGCCGACCTGGTCATCGAAACCGACGAGCGGCCGCCACGGATGGTGGTACTGGAAATCCTCGATCGCCTGCAACAATTGCCCCCCCGTTAA	MGAGKSTIGRLLAKELRLPFKDSDKEIELRTGANIPWIFDKEGEPGFRDREQAMIAELCDFEGVVLATGGGAVMREANRRALHAGGRVVYLHASVEQQVGRTARDRNRPLLRTADPAKTLRDLLEVRDPLYREIADLVIETDERPPRMVVLEILDRLQQLPPR	PGPT0012900_3624	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
D1-36_00426	1101	aroB	COG0337	3-dehydroquinate synthase	ATGCAGACACTTAAGGTCGACCTGGGCGAGCGCAGCTACCCGATTCATATTGGCGAAGGCTTGCTGGACCAGCCCGAATTGCTGGCGCCGCACATCGCCGGGCGGCAAGTCGCGATCATCTCCAACGAAACCGTCGGCCCTTTGTATCTGGAACGCCTGGCACGCAGTCTGTCTGCCTATTCGGTCATTTCCGTCGTGTTGCCCGACGGCGAGGCCTTCAAGAACTGGGAAACCCTGCAACTGATTTTCGACGGCCTGCTGACTGCCCGGCATGACCGACGCACCACCGTGGTTGCCTTGGGTGGCGGTGTGATCGGCGACATGGCCGGTTTTGCGGCGGCTTGCTATCAGCGCGGTGTCGATTTCATCCAGATTCCCACCACGTTGCTGTCCCAGGTCGACTCGTCGGTGGGCGGCAAGACTGGCATCAATCATCCGCTGGGCAAGAACATGGTGGGCGCGTTCTACCAGCCCAACGTGGTGCTGATCGACACGGCAACGCTCAAGACCCTGCCGCCCCGTGAGTTGTCCGCGGGCTTGGCCGAGGTCATCAAGTACGGACTGATCTGCGACGAGCCTTTCCTCGGCTGGCTCGAAGACAACGTCGACCGCCTGCGCGCGCTGGATCAGGCGGCGCTGACTTACGCCATCGAGCGCTCCTGTGCCGCCAAAGCCGCGGTGGTCGGCGCCGATGAACGTGAATCGGGCGTGCGCGCCACGCTGAACCTGGGCCATACCTTCGGCCATGCCATTGAAACCCACATGGGCTATGGCGTCTGGCTGCATGGCGAGGCGGTTGCCGCAGGTACGGTCATGGCCCTGGAAATGTCCATGCGCCTGGGCTGGATCAGCGAGCAGGAGCGTGATCGTGGGATCCGTCTGTTCCAGCGTGCCGGGCTGCCGGTGGTGCCGCCCGAGGAAATGAGCGAGGCGGATTTCCTTGAACACATGGCAATCGACAAGAAAGTGATCGACGGTCGTCTGCGTCTGGTGCTGCTGCGCCGCATGGGCGAAGCGGTGGTGACCGACGATTATCCGAAAGAGGTTCTACAGGCCACGCTGGGAGCGGACTACCGCGCCCTGGCTCAGCTTAAAGGTTAA	MQTLKVDLGERSYPIHIGEGLLDQPELLAPHIAGRQVAIISNETVGPLYLERLARSLSAYSVISVVLPDGEAFKNWETLQLIFDGLLTARHDRRTTVVALGGGVIGDMAGFAAACYQRGVDFIQIPTTLLSQVDSSVGGKTGINHPLGKNMVGAFYQPNVVLIDTATLKTLPPRELSAGLAEVIKYGLICDEPFLGWLEDNVDRLRALDQAALTYAIERSCAAKAAVVGADERESGVRATLNLGHTFGHAIETHMGYGVWLHGEAVAAGTVMALEMSMRLGWISEQERDRGIRLFQRAGLPVVPPEEMSEADFLEHMAIDKKVIDGRLRLVLLRRMGEAVVTDDYPKEVLQATLGADYRALAQLKG	PGPT0012865_1557	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
D1-36_00427	1584	damX		Cell division protein DamX	ATGACTAGTTTGCATGCCGACGAGGCTTTCCTCGGCCATTTCCAGTTGAGTCACGACCCTTTCGCCCCACGGGTCCCGGGTTTCAAATTCTTTCCCGCCCAGCGCAAGCCGGTGCTGGGCCAGTTGCATCACCTGGCGCGCTACAGCCAGTTGCTGTTGGTCGTCACCGGCCCCCAGGGCAGCGGCAAGACCTTGCTGCGCCAGGCCCTGGTGGCCAGCACCAACAAACAGTCGGTGCAAAGCGTCGTGATATCGGCCCGTGGCGCCGGCGACGCAGCTGGCGTGCTGCGTCAGGTCGCCCAGGCACTGAATGTCGAGCAGGCGGAAATCGGCGCGATTCTCGGCCAGATCGTGCAACTGGCGTTGACGGGGCAGGAAGTCTATCTGCTGGTGGACGATGCCGAGCAACTCGACGAATCCGCCCTGGAAGCCCTGTTGGCCCTGGCTGCCGGCGCGCCGGAGGGTCGTCCTCATGTGTTCCTGTTTGGCGAGTCGTCGTTGATCGCTGACCTCGAGCAACTGGACCTTGAGGAAGAGCGTTTCCACGTTATCGAGCTGGCGCCCTACACCGAGGAAGAAACCCGTGAATATCTGGCCCAGCGTCTCGAAGGCGCCGGGCGGGGTATCGAACTTTTCACCGCGGATCAGATCTCTGAGATTCACGAAAGCTCCGACGGCTGGCCAGGGAATATCAACCAGGTAGCCCGAGATGCTCTGATCGAAATCATGATCGCCAGCCGCTCAGCGGTGAAGCGTCCAAGTATGGGGTTCAACATGCCGAAGAAACACGTATTGGCGATTTCCGCCGTGGTCGTGGTCGCGGTGGCTGCCGCCTGGCTGATGCCGGGTCGCAGCAAAGCACCGACCACCGGCGCACCTGCCAACGAACAGGCACAGCTGCCTCTCGGTCAGGGCACGCCACAACCCAACGGCGGTGCCCCGGCGGTGGAATTCGCCGGCAATACCCAGCCAATGCCACTGCCGCTGGTCGGCCAGTCGCAGCCGGTCATGCGCGGTCCGTTGGCTGAAGCCGCCGGTGGAATCACCGAGGGTGACGACGGAGCGCCGCCTCCGATCGAAGACACCAGCGACGTGCCACCTACTGTGACCACCACCGCGCCGCCTGCGGGCGTACCGGCCGGCCCTGCGCCGACGCCATCGCCGGCTCCGGCCGCCAAGCCGACCCCTGCGCCTACTCAGGTCGCCACCGCCAAGCCTGCTCCAGCACCTGCGCCAGCGGCCAAACCGGCGGCGCCAGCACCCGCGGCCAAGCCTGCTGCCCCGGCCAAGGCCGCGGGCGGTAGCTGGTACGCCGGCCAGGCTCCGGGCAACTATGTGGTGCAGATCCTCGGCACCAGCTCTGAAACCGCCGCGCAGAACTTCGTCAAGGAGCAAGGCGGCGAGTACCGTTATTTCAAGAAAGTACTCAACGGCAAGCCGCTGTATGTCATCACTTACGGCAGCTTTGCCAACCGTGACGCAGCCGTTTCCGCCATCAAGGCCTTGCCAGCGAAGGTTCAGGCTGGTAAACCTTGGCCTCGCACTGTCGCCAGCGTCCAACAGGAACTGGCAGCAACTCGCTGA	MTSLHADEAFLGHFQLSHDPFAPRVPGFKFFPAQRKPVLGQLHHLARYSQLLLVVTGPQGSGKTLLRQALVASTNKQSVQSVVISARGAGDAAGVLRQVAQALNVEQAEIGAILGQIVQLALTGQEVYLLVDDAEQLDESALEALLALAAGAPEGRPHVFLFGESSLIADLEQLDLEEERFHVIELAPYTEEETREYLAQRLEGAGRGIELFTADQISEIHESSDGWPGNINQVARDALIEIMIASRSAVKRPSMGFNMPKKHVLAISAVVVVAVAAAWLMPGRSKAPTTGAPANEQAQLPLGQGTPQPNGGAPAVEFAGNTQPMPLPLVGQSQPVMRGPLAEAAGGITEGDDGAPPPIEDTSDVPPTVTTTAPPAGVPAGPAPTPSPAPAAKPTPAPTQVATAKPAPAPAPAAKPAAPAPAAKPAAPAKAAGGSWYAGQAPGNYVVQILGTSSETAAQNFVKEQGGEYRYFKKVLNGKPLYVITYGSFANRDAAVSAIKALPAKVQAGKPWPRTVASVQQELAATR				NA	NA	NA	NA	NA
D1-36_00428	4449	gltB	COG0067	Glutamate synthase [NADPH] large chain	ATGAAAGCAGGTCTGTACCAACCAGATGAATTCAAGGATAACTGCGGTTTCGGCCTGATAGCCCATATGCAGGGCGAGCCCAGTCATACCCTTTTGCAAACGGCCATTGAGGCCCTGACCTGCATGACCCACCGTGGTGGGATCAACGCCGACGGCAAGACCGGTGACGGTTGTGGCTTGCTGATTCAAAAGCCAGACGAGTTCCTGCGTGCCATTGCCCAGGAAACGTTTGGCGTGACCCTGCCCAAGCAGTACGCCGTGGGCATGGTGTTTTTCAATCAGGACCCGGTCAAGGCCCAGGCCGCTCGCGAGAACATGAACCGCGAGATCCTGGCCGCCGGCCTGCAACTCGTCGGCTGGCGCAAAGTGCCGATCGACACCAGCGTCCTCGGCCGCCTGGCCCTCGAGCGCCTGCCGCTGATCGAACAGGTGTTCATTGCCGGTGAAGGCCTGAGCGACCAGGAAATGGCGATCAAGCTGTTCAGCTCCCGTCGTCGTTCGTCCGTGGCCAACGCCGCCGACACCGATCACTACATCTGCAGCTTTTCCCACAAGACCATTATCTATAAAGGCCTGATGATGCCGGCGGACCTCACCGCCTTCTATCCGGACCTGAGCGACGAGCGCCTGAAAACCGCGATCTGCGTGTTTCACCAGCGCTTCTCCACCAACACCCTGCCGAAATGGCCACTGGCCCAGCCATTCCGCTTCCTCGCCCACAACGGCGAGATCAACACCATCACCGGCAACCGTAACTGGGCCCTGGCCCGTCGCACCAAGTTCGCCAACGATTTGATGCCGGACCTCGAAGAGCTTGGCCCGCTGGTCAACCGCGTCGGTTCGGACTCCTCGAGCATGGACAACATGCTGGAGCTGATGGTCACCGGCGGCATCGACCTGTTCCGTGGCGTGCGCATGCTCGTGCCGCCTGCCTGGCAGAACGTCGAGACCATGGACCCGGACCTGCGGGCCTTCTATGAATACAACTCCATGCACATGGAGCCGTGGGACGGCCCGGCCGGTATCGTCATGACCGACGGTCGCTATGCGGTGTGCCTGCTGGACCGTAACGGCCTGCGCCCGGCGCGCTGGGTCACCACGACCAATGGTTTCATCACCCTGGCCTCGGAAATCGGTGTCTGGAACTACCAGCCCGAAGACGTCATCGCCAAAGGCCGCGTAGGCCCTGGGCAGATCTTTGCCGTGGACACCGAGACCGGCCAGATCCTCGACACCGACGCCATCGACAACCGTCTCAAGTCCCGTCATCCATACAAGCAATGGCTGCGCAAGAATGCCCTGCGCATTCAGGCGACCATGGAAGACAACGACCACGGTTCGGCCTTTTATGACGTCGACCAGCTCAAGCAGTACATGAAGATGTACCAGGTGACGTTCGAAGAACGTGACCAGGTGCTTCGTCCGCTGGGCGAGCAGGGCTACGAAGCGGTCGGCTCCATGGGCGACGACACGCCGATGGCGGTACTGTCCCAGCGCGTGCGCACGCCGTACGACTACTTCCGCCAGCAGTTCGCCCAGGTGACCAACCCGCCGATCGACCCGCTGCGCGAAGCGATCGTGATGTCCCTGGAAATCTGCCTGGGCGCCGAGCGCAACATTTTCCAGGAATCGCCAGAGCATGCCTCGCGGGTGATCCTCAGCTCGCCGGTCATTTCGCCGGCCAAGTGGCGCTCGTTGACCAACCTCGAACGCCCTGGCTTCGAGCGTCAGGTCATCGACCTGAACTATGACGAAAGCGTCGGCCTGGAAGCAGCGATCCGCAACATCGCCGACCAGGCTGAAGAAGCCGCGCGCGCCGGCCGTACCCAGATCGTGCTGACTGACCGTCACATCGCCCCGGGCAAGCTGCCGATCCACGCCTCCCTGGCCACTGGCGCGGTGCACCATCGCCTGACCGAGAAAGGCCTGCGCTGCGATTCCAACATTCTGGTGGAAACCGCTACCGCACGTGACCCGCATCACTTTGCGGTGCTGATCGGCTTCGGCGCTTCGGCGGTCTATCCGTTCCTGGCCTACGAAGTGCTGGGCGACCTGATCCGTACCGGTGAAGTGCTGGGCGACCTCTACGAGGTGTTCAAGAACTACCGCAAAGGCATCACCAAGGGCCTGCTCAAGATCCTGTCGAAGATGGGCATCTCGACCATCGCTTCGTACCGTGGCGCGCAATTGTTCGAGGCCATCGGTCTCTCGGAAGAAGTTTGCGAACTGAGCTTCCGTGGCGTACCGAGCCGCATCAAGGGTGCGCGTTTCGTCGATATCGAAGCCGAGCAGAAAGCCCTGGCGGCCGAAGCCTGGAGCCCGCGCAAGCCGATCCAGCAAGGCGGCCTGTTGAAGTTCGTCCACGGTGGCGAATACCACGCCTACAACCCGGACGTGGTCAACACCCTGCAAGCGGCCGTGCAACAAGGCGACTACAGCAAGTTCAAGGAATACACCGCGCTGGTGGACAACCGTCCGGTGTCGATGATCCGCGACCTGCTCAAGGTCAAGACCCTCGACACGCCGCTGGACATCAGTGAAGTGGAACCGCTGGAATCGGTGCTCAAGCGCTTCGATTCGGCCGGTATCTCCCTGGGCGCGTTGTCCCCGGAAGCCCACGAAGCCCTGGCCGAAGCCATGAACCGCCTCGGTGCGCGTTCCAACTCCGGTGAAGGTGGTGAAGACCCGGCGCGCTACGGCACCATCAAGAGTTCGAAAATCAAGCAAGTGGCGACCGGCCGCTTCGGCGTTACGCCGGAATACCTGGTCAACGCCGAAGTGCTGCAGATCAAGGTTGCCCAAGGCGCCAAGCCCGGCGAAGGCGGCCAATTGCCCGGTGGCAAGGTCAACGGCCTGATTGCCAAGCTGCGCTATGCGGTTCCCGGCGTGACCCTGATCTCGCCACCACCGCACCACGACATCTACTCGATCGAAGACTTGTCGCAACTGATCTTCGACCTCAAGCAGGTGAACCCGAAGGCCCTGGTCTCGGTGAAACTGGTGGCGGAAGCGGGCGTAGGCACCATTGCCGCCGGCGTGGCGAAAGCCTATGCCGACCTGATCACCATCTCCGGCTATGACGGCGGCACCGGCGCATCGCCGCTGACTTCCATCAAATACGCTGGCGCGCCGTGGGAACTGGGCCTGGCCGAAACCCACCAGACCCTGCGCGGCAACGATTTGCGCGGCAAGGTCCGGGTGCAGACCGACGGTGGCCTGAAGACCGGCCTGGACGTGATCAAGGCCGCCATCCTCGGCGCCGAGAGCTTCGGCTTCGGCACCGCGCCGATGATCGCCCTGGGCTGCAAATACCTGCGCATCTGCCACCTGAACAACTGCGCCACCGGCGTGGCGACCCAGAACGACAAGCTGCGCAAGGACCACTACATCGGTACCGTCGACATGGTGGTGAATTTCTTCACCTACGTGGCCGAAGAGACCCGCGAGTGGCTGGCAAAGCTGGGCGTACGTTCGCTGGAAGAGCTGATCGGCCGTACCGATCTGCTGGAAGTGATCGAGGGCCAGACCGCCAAGCAGCATCACTTGGACCTGACCCCGTTGCTGGGCAGTGATCTGATTCCGGCGGACAAGCCACAGTTCTGCCATGTCGATCGCAACCCGCCGTTCGACAAGGGTGAGCTGGCCGAGAAGATGGTCGACATGGCCGCTGCGGCGATCAACGACCTGAGCGGTGCCGAATTCGAACTGGACATCTGCAACTGCGACCGTTCCATCGGCGCGCGGATCTCCGGGGAAATCGCTCGCAAACACGGCAACCAGGGCATGGCCCATGCGCCGATCACCTTCCGCTTCACGGGCACGGCCGGGCAAAGCTTTGGCGTCTGGAACGCTGGCGGCCTGAACATGTACCTGGAAGGTGATGCAAACGACTACGTGGGCAAGGGCATGACCGGTGGCAAGCTGGTCATCGTTCCGCCCAAGGGCAGCGTCTACAAGACCCAGGACAGTGCGATCATCGGCAACACCTGCCTGTACGGCGCCACGGGCGGCAAGTTGTTTGCCGCCGGCACCGCAGGCGAGCGTTTCGCCGTGCGTAACTCCGGCGCCCACACCGTGGTGGAAGGCACCGGGGATCACTGCTGCGAGTACATGACCGGTGGTTTCGTCTGCGTATTGGGCAAGACCGGTTACAACTTCGGTTCTGGCATGACCGGCGGTTTCGCCTACGTGCTTGACCAGGACAACACGTTCGTTGACCGGGTCAACCATGAACTGGTGGAAATCCAGCGCATCAGCGGCGAGGCGATGGAGGCCTACCGTAGCCACCTGCAACGCGTGCTGAACGAGTACGTCGAGGAAACCAACAGCGAGTGGGGTCGTGAACTCGCCGAGAACCTCGATGACTACGTGCGTCGTTTCTGGCTGGTCAAGCCGAAGGCGGCCAACCTGAAATCGTTGCTTTCCAGCACCCGTGCCAACCCGCAGTGA	MKAGLYQPDEFKDNCGFGLIAHMQGEPSHTLLQTAIEALTCMTHRGGINADGKTGDGCGLLIQKPDEFLRAIAQETFGVTLPKQYAVGMVFFNQDPVKAQAARENMNREILAAGLQLVGWRKVPIDTSVLGRLALERLPLIEQVFIAGEGLSDQEMAIKLFSSRRRSSVANAADTDHYICSFSHKTIIYKGLMMPADLTAFYPDLSDERLKTAICVFHQRFSTNTLPKWPLAQPFRFLAHNGEINTITGNRNWALARRTKFANDLMPDLEELGPLVNRVGSDSSSMDNMLELMVTGGIDLFRGVRMLVPPAWQNVETMDPDLRAFYEYNSMHMEPWDGPAGIVMTDGRYAVCLLDRNGLRPARWVTTTNGFITLASEIGVWNYQPEDVIAKGRVGPGQIFAVDTETGQILDTDAIDNRLKSRHPYKQWLRKNALRIQATMEDNDHGSAFYDVDQLKQYMKMYQVTFEERDQVLRPLGEQGYEAVGSMGDDTPMAVLSQRVRTPYDYFRQQFAQVTNPPIDPLREAIVMSLEICLGAERNIFQESPEHASRVILSSPVISPAKWRSLTNLERPGFERQVIDLNYDESVGLEAAIRNIADQAEEAARAGRTQIVLTDRHIAPGKLPIHASLATGAVHHRLTEKGLRCDSNILVETATARDPHHFAVLIGFGASAVYPFLAYEVLGDLIRTGEVLGDLYEVFKNYRKGITKGLLKILSKMGISTIASYRGAQLFEAIGLSEEVCELSFRGVPSRIKGARFVDIEAEQKALAAEAWSPRKPIQQGGLLKFVHGGEYHAYNPDVVNTLQAAVQQGDYSKFKEYTALVDNRPVSMIRDLLKVKTLDTPLDISEVEPLESVLKRFDSAGISLGALSPEAHEALAEAMNRLGARSNSGEGGEDPARYGTIKSSKIKQVATGRFGVTPEYLVNAEVLQIKVAQGAKPGEGGQLPGGKVNGLIAKLRYAVPGVTLISPPPHHDIYSIEDLSQLIFDLKQVNPKALVSVKLVAEAGVGTIAAGVAKAYADLITISGYDGGTGASPLTSIKYAGAPWELGLAETHQTLRGNDLRGKVRVQTDGGLKTGLDVIKAAILGAESFGFGTAPMIALGCKYLRICHLNNCATGVATQNDKLRKDHYIGTVDMVVNFFTYVAEETREWLAKLGVRSLEELIGRTDLLEVIEGQTAKQHHLDLTPLLGSDLIPADKPQFCHVDRNPPFDKGELAEKMVDMAAAAINDLSGAEFELDICNCDRSIGARISGEIARKHGNQGMAHAPITFRFTGTAGQSFGVWNAGGLNMYLEGDANDYVGKGMTGGKLVIVPPKGSVYKTQDSAIIGNTCLYGATGGKLFAAGTAGERFAVRNSGAHTVVEGTGDHCCEYMTGGFVCVLGKTGYNFGSGMTGGFAYVLDQDNTFVDRVNHELVEIQRISGEAMEAYRSHLQRVLNEYVEETNSEWGRELAENLDDYVRRFWLVKPKAANLKSLLSSTRANPQ	PGPT0000635_3381	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0000635-gltB-K00265	NA	NA
D1-36_00429	1419	gltD	COG0493	Glutamate synthase [NADPH] small chain	ATGGCTGAACGTCTGAATAACGACTTCCAGTTCATCGATGTCGGGCGCAAGGATCCGAAGAAGAAACTGTTGCGTCAACGCAAGAAAGAGTTCGTGGAAATCTACGAGCCTTTCAAACCCCAGCAGTCGGCCGACCAGGCCCACCGTTGCCTGGGTTGTGGTAACCCGTACTGCGAATGGAAGTGCCCGGTGCACAACTTCATTCCCAACTGGCTGAAGTTGGTGGCTGAGGGCAACATCCTCCAGGCCGCCGAGCTGTCCCACCAGACCAACACCCTGCCGGAAGTCTGCGGCCGGGTGTGCCCGCAGGATCGTCTGTGCGAAGGTGCCTGCACCCTCAACGACGGTTTCGGCGCGGTGACCATTGGTTCGGTGGAGAAGTACATCACCGATACCGCGTTTGCCATGGGCTGGCGCCCGGACATGTCCAAGGTCAAGCCGACCGGCAAGCGCGTGGCGATCATCGGCGCGGGCCCGGCGGGCCTTGGCTGTGCCGACGTGTTGGTACGTGGCGGCGTGACCCCGGTGGTGTTCGACAAAAACCCAGAAATTGGTGGCCTGCTGACCTTCGGCATCCCCGAGTTCAAGCTGGAAAAGACCGTGCTGAGCAATCGTCGCGAAGTCTTCACCGGCATGGGCATCGAGTTCCGCCTGAACACCGAGGTGGGCAAGGACGTGACCATGGAGCAACTGCTCGAAGAGTACGATGCGGTCTTCATGGGCATGGGCACCTACACCTACATGAAGGGCGGTTTTGCCGGTGAGGACCTGCCGGGCGTCTACGACGCGCTGGACTTCCTGATCGCCAACGTCAACCGCAACCTGGGCTTTGAAAAGTCGCCGGAAGATTTCGTCGACATGAAGGGCAAGAAGGTCGTGGTGCTCGGCGGTGGCGACACGGCGATGGACTGCAACCGCACGTCGATTCGCCAGGGCGCCAAGTCGGTGACCTGCGCCTATCGTCGTGACGAAGCGAACATGCCAGGCTCGCGCAAAGAGGTGAAGAACGCCAAGGAAGAAGGCGTGAAGTTCCTCTACAACCGCCAGCCGATCGCCATTGTCGGTGAGGACAAGGTCGAAGGCGTGAAGGTGGTCGAGACCCGTCTCGGTGAGCCGGACGCCCGCGGTCGCCGCAGCCCCGAGCCGATCCCCGGTTCCGAAGAGATCATCCCGGCGGACGCCGTGGTCATCGCCTTCGGCTTCCGCCCGAGCCCGGCGCCATGGTTCGAGCAGTTCAGCATCCAGACCGACAGCCAGGGCCGCGTCGTTGCCCCGGAGCAGGGTCGGTACAAGCACCAGACCAGCAACCCGAAGATCTTCGCCGGCGGCGACATGGTCCGGGGTTCCGACCTGGTGGTGACGGCGATCTTCGAAGGCCGCAATGCGGCGGAAGGGATCCTGGATTACTTGCAGGTCTGA	MAERLNNDFQFIDVGRKDPKKKLLRQRKKEFVEIYEPFKPQQSADQAHRCLGCGNPYCEWKCPVHNFIPNWLKLVAEGNILQAAELSHQTNTLPEVCGRVCPQDRLCEGACTLNDGFGAVTIGSVEKYITDTAFAMGWRPDMSKVKPTGKRVAIIGAGPAGLGCADVLVRGGVTPVVFDKNPEIGGLLTFGIPEFKLEKTVLSNRREVFTGMGIEFRLNTEVGKDVTMEQLLEEYDAVFMGMGTYTYMKGGFAGEDLPGVYDALDFLIANVNRNLGFEKSPEDFVDMKGKKVVVLGGGDTAMDCNRTSIRQGAKSVTCAYRRDEANMPGSRKEVKNAKEEGVKFLYNRQPIAIVGEDKVEGVKVVETRLGEPDARGRRSPEPIPGSEEIIPADAVVIAFGFRPSPAPWFEQFSIQTDSQGRVVAPEQGRYKHQTSNPKIFAGGDMVRGSDLVVTAIFEGRNAAEGILDYLQV	PGPT0000640_3460	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0000640-gltD-K00266	NA	NA
D1-36_00430	1068	hemE	COG0407	Uroporphyrinogen decarboxylase	ATGACTGCCCTGAAGAACGACCGCTTCCTTCGCGCCCTGCTCAAGCAACCCGTAGACGTCACCCCTGTGTGGATGATGCGTCAGGCCGGTCGCTATTTGCCGGAGTACCGCGCCAGCCGCGCCAAGGCCGGTGACTTCATGAGCCTGTGCATGAATCCGCAGTTCGCCTGCGAAGTCACGATGCAGCCGCTGGACCGCTACCCGCAACTGGACGCGGCGATCCTGTTTTCCGACATCCTCACCATCCCCGACGCCATGGGCCAAGGCCTGTACTTTGAAACCGGCGAAGGTCCGCGCTTCAAGAAAGTCGTCAGCACCCTGGCCGACATCGAGGCCCTGCCGATCCCCGATCCGCAGAAGGACCTGGGCTACGTCATGGACGCGGTCAGCACCATCCGCCGTGAACTCAACGGTCGCGTCCCGTTGATCGGCTTTTCGGGCAGCCCTTGGACGCTGGCGACGTACATGGTCGAAGGCGGCTCGTCGAAGGATTTCCGCAAGACCAAGGCGATGCTCTACGACAATCCGCAAGCCATGCATCTGCTGTTGGACAAGCTGGCGCAGTCGGTCACGTCGTACCTCAACGGCCAGATCATGGCCGGTGCCCAGGCGGTGCAGATCTTCGATACGTGGGGCGGCAACCTGTCGGCGGCGGCATACCAGGAGTTCTCCCTGGCCTACATGCGCAAGATCGTCAGCGGCCTGATCCGAGAGCACGAAGGTCGCAAGGTCCCGGTGATCCTGTTCACCAAGAATGGTGGGCTGTGGTTGGAGAGTATCGCCGATGCCGGCGCCGATGCCTTGGGCCTGGACTGGACCTGCGACATCGGCAACGCCCGCCAGCGTGTCGGTCACAAGGTCGCGCTGCAAGGCAACATGGACCCGACCGTGCTGTATGCCAAGCCTGAAGCCATCCGTGCCGAAGTCGGACGCATCCTCGCCAGCTATGGCAAGGGCAGTGGCCACGTGTTCAATCTCGGCCACGGCATCACGCCGGAAGTCGACCCGGAACACGCCGGCGCTTTCCTGCGCGCGGTGCATGAGTTGTCGGGCCAATATCACGACTGA	MTALKNDRFLRALLKQPVDVTPVWMMRQAGRYLPEYRASRAKAGDFMSLCMNPQFACEVTMQPLDRYPQLDAAILFSDILTIPDAMGQGLYFETGEGPRFKKVVSTLADIEALPIPDPQKDLGYVMDAVSTIRRELNGRVPLIGFSGSPWTLATYMVEGGSSKDFRKTKAMLYDNPQAMHLLLDKLAQSVTSYLNGQIMAGAQAVQIFDTWGGNLSAAAYQEFSLAYMRKIVSGLIREHEGRKVPVILFTKNGGLWLESIADAGADALGLDWTCDIGNARQRVGHKVALQGNMDPTVLYAKPEAIRAEVGRILASYGKGSGHVFNLGHGITPEVDPEHAGAFLRAVHELSGQYHD	PGPT0008465_1890	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008465-hemE-K01599	NA	NA
D1-36_00431	1293	ynfM		Inner membrane transport protein YnfM	GTGAAAACTGCTACCGCTCCACTGGCCCATGAAGTCCCGTCTCGCACAGAGGACAACGTCGGCGCCGAACTCAAAGACATCTTCATTGAAAAAGGCACGCCGATGTTCATGCGTACGGTGCTCGCCTTGTTCTGTGGCGGCTTCGCGACGTTCGCCCTGCTGTATTGCGTGCAGCCGATGATGCCGCTGCTGTCCCTGGAGTTTTCAATCAACGCCGCCCAGAGCAGCTTGATCCTGTCGGTGGCGACCGGCCTGCTTGCCATCGGCCTGTTGATCACCGGCCCGATTTCCGACCGTATCGGTCGTAAATCGGTCATGGTGGCGGCGCTGTTTGCCGCGGCGCTCTGCACAATCGCCAGTGCCATGATGCCCACTTGGCAAGGCGTCCTTGTCCTGCGCGCCTTGGTGGGGTTGTCGCTCAGTGGCTTGGCCGCGGTGGCGATGACGTACCTGAGCGAAGAAATTCATCCCAAGCACATCGGCCTGGCAATGGGGCTGTATATCGCCGGCAACGCGATTGGCGGCATGAGCGGGCGCCTGATCGCCGGCGTGTTGATCGACTTCGTCAGCTGGCACACCGCAATGCTGGTAATCGGCGGCCTGGCCCTGATCGCGGCGGCGGTGTTTTGGCGGATTCTTCCTGAATCGCGCAATTTCCGCCCCCGGTCGCTGCATCCACGCAGTCTGCTGGACGGTTTCATCATGCACTTTCGCGACGCCGGCCTGCCGCTGCTGTTTCTTGAAGCCTTCGTGTTGATGGGCGCGTTCGTGACGCTGTTCAACTACATTGGCTACCGCCTGCTGGCCGCGCCTTATCACCTGGACCAGGCATTCGTCGGGCTGCTTTCAGTGGTGTACCTCTCCGGCATCTACAGCTCGGCGAAGGTGGGCGCCATGGCCGACAAGCTCGGGCGTCGCAAGATGCTCTGGGCGACCATCGCCCTGATGTTGGCGGGCCTCGTCCTGACCTTGTTCTCGCCGCTATGGCTGGTGGTCATCGGCATGCTGGTGTTCACCTTCGGTTTCTTCGGGGCGCACTCGGTCGCCAGCAGCTGGATTGGCCGTCGCGCCCTCAAGGCGAAGGGGCAGGCGTCGTCGCTTTATCTGTTCAGCTACTACGCCGGCTCCAGCGTCGCGGGCACCGCGGGCGGCGTGGCGTGGCACCTGGGAGGCTGGAACGGTGTCGGCGTGTTCATCGGGACGTTGCTGGTGATTGCATTGTTGGTGGCGGTGAAACTGGCGAAACTGCCGCTGCTGCCGGGAAATGAGCAACACATAAACAGCCAGACATAA	MKTATAPLAHEVPSRTEDNVGAELKDIFIEKGTPMFMRTVLALFCGGFATFALLYCVQPMMPLLSLEFSINAAQSSLILSVATGLLAIGLLITGPISDRIGRKSVMVAALFAAALCTIASAMMPTWQGVLVLRALVGLSLSGLAAVAMTYLSEEIHPKHIGLAMGLYIAGNAIGGMSGRLIAGVLIDFVSWHTAMLVIGGLALIAAAVFWRILPESRNFRPRSLHPRSLLDGFIMHFRDAGLPLLFLEAFVLMGAFVTLFNYIGYRLLAAPYHLDQAFVGLLSVVYLSGIYSSAKVGAMADKLGRRKMLWATIALMLAGLVLTLFSPLWLVVIGMLVFTFGFFGAHSVASSWIGRRALKAKGQASSLYLFSYYAGSSVAGTAGGVAWHLGGWNGVGVFIGTLLVIALLVAVKLAKLPLLPGNEQHINSQT	PGPT0017201_331	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_OTHER_SUGAR_TRANSPORT_RELATED_PROTEINS,PGPT0017201-ynfM-K08224	NA	NA
D1-36_00432	903	benM		HTH-type transcriptional regulator BenM	ATGGAATTGCGCCACCTGCGTTACTTCATCGCCGTTGCCGAAGAATTGCATTTCGGCCGCGCCGCGCTGGCCCTGGGCATCTCTCAACCGCCCTTGAGCCAGCAGATCCAGGCGCTGGAAGAAGAAATCGGCGCGCGGTTGTTCGAGCGCACCAATCGTCGGGTCGAACTGAGCGAGGCCGGGCGGCTGTTCCTGGAAGAAGCCAGACGCGTGCTGGCGCAAGTCGACAAGGCGGCCGACGTAGCGCGCCGTGCCCAATTGGGAGAATTGGGCGAGCTGAAAATCGGTTTCACGTCCTCGGCACCGTTCAATTCGACCATTCCCCAAGCGATCTTCAATTTTCGCCAACGCTTCCCGGCTGTCCACCTCAACCTGCGAGAGATGAGTAGCACCCAAGTTTCCGATGCGTTGGTGGATGAAACCATCGAGGTGGGCATCATGCGGCCGTTGCCGTTGCCCGATTCACTGGTGGAAATCGAGCTCAGCCGCGAGCCCTTGGTGGCCGTGCTTGGCGCCAAGCACCCGCTTGCCCAGGGCAGCGACGAAGGCTTGTATCTGTCGGCGCTGGCCCACGAGCCTTTCGTATTTTTCCCACGAAGCTACGGCAGCGGTCTTTACGCCCAGCTATTGAATCTGGCCCGCGACGCCGGTTTCAGTCCGCACTTCGCCCAGGAAGCAGGGGAGGCCATGACCATCATCGGCCTGGTGGCGGCTGGCCTCGGGGTCTCGGTGTTGCCGGCGTCTTACCAACGCATGCGTATCGACGGCGTGGTCTATCGGCCGCTGCTAGACCCGGCGGCGGTTTCGGCGGTGTGGCTGGTCCAGCGCAAGGACCAGCGTTCGCCGATGGCCGCGGCGTTTGTGGCGTTGTTGACCGACGGAGCGGATTCACCCGGATCCTAG	MELRHLRYFIAVAEELHFGRAALALGISQPPLSQQIQALEEEIGARLFERTNRRVELSEAGRLFLEEARRVLAQVDKAADVARRAQLGELGELKIGFTSSAPFNSTIPQAIFNFRQRFPAVHLNLREMSSTQVSDALVDETIEVGIMRPLPLPDSLVEIELSREPLVAVLGAKHPLAQGSDEGLYLSALAHEPFVFFPRSYGSGLYAQLLNLARDAGFSPHFAQEAGEAMTIIGLVAAGLGVSVLPASYQRMRIDGVVYRPLLDPAAVSAVWLVQRKDQRSPMAAAFVALLTDGADSPGS				NA	NA	NA	NA	NA
D1-36_00433	4071			hypothetical protein	ATGTTGGATAACGACTCACCGCCCCAGCCCAACATCCCACAGGGCAATGGCGCCAGCGATCCCAGTGCCGAATCGACACGCCAGGTCAGCGCCTCGCAGCGGCAAATGATAAACCTGAGCAAGGCCGCGCCACGTCCTTGCCGGGTCACCAGGCAACACTTGGAATATTGGTTCAAGCGAACCTTCCCCACCGTCGCGGGCGATATGACGGTCGATCAGCTTTTCGTGCGCACATCGCAGAAGGCCCGGCTCTCTCAATCGGAACGTGAACCCAACGGGCAGAGCTCCAGACAAAAAAAAGAAGATATTGCCGGCCTTGAACATTTTTTCTGGCGCGCCATTGCCGGCCAGGTAGATATCAGCGATAGCTTTGCTGATCTGGACAGCCTTGAAATAGTCGTGGAAATGGACGGCTCCAAGCGAGTGCCCACCGCCCTGAACAGTCCCGCGGCGAAAAAACAATTCCAGCGACTGCTCGGTACCACGCCAGTCGCTTATGAACAGCTGCTCATGACAGCGCTGGATGACTTCTGGGATACGCCGGCCGCGTTCAGCCAGGGACGAAACGTCAGTGACTGGTTGGCGAACGAACTCGCTGCGCAACTCACGGCACTGGCGAACCTTCATCTGCATGACAAAACGCTGAGCCCGCCGATGCATAAGGCGATAATGGATTCGCTGTCGGCGCCGGACGCGGCGTCTCGTAACCAGCTGGCGGAGGGTACCAGGCCCGGGGTGTACAGCCTGATCGCCGCTTTCAATGATTGGGGATTGTCCGTTCCGGTAACCAGCGCCGCTGTCCTGTCGCGACATGACGCGGACGTGGATTGGGGAGGTGCCGTGCTGTACCGTCCCGGTAGGCCGTTGGAGGTCTACGAAGACTCAAAGCAACTGAAGATTTCCTTCATAGGCGACAGCACCGCAGATGAGGTGGAACTCGTGCCGATGGAGCAAAACTTCCTGACGCGTCTGGTCACGGACGTGCGGACAACGCAAAAAGCCGCCATCCGCGATGCCTTGTCGAGCGATGTTGTCGACGGGGAAAACATCTCCGGTTGGATGCATCGGCTGGACGCCGCAGCGGACCTTGGAATGCGATTGGATCTGGCAAGCGCCCTGGACGAACGTGAGTTTCGGCTGAAGCTCAAGAGCCTGCATCATTGGCTGCACGCCAGCCCCCATATCATCGGCAGCGACCGTCTGGCGTGGTGGCAGGCGACGCAGGCCTTACAAGAAACCCTCACCGATATGGCGGCGCCGCCGGACCCGGTTTCAATGGGCACTGCGCAGGCCATTCGGGACCAGGCTCGCACACTGCTGGCCGGCTTCATCAAAGCGAAGTACCCAGCGGCAGATCCTGACGACATAACCTTGAGTATCCGAAAAGAGACAGTCGATCCGCACGCGCCGACGGGCCATTCACCGTTCGGGTCTGGGGTCTCAATGGGCAGTGCCAAAGCGTTCCAGGACGACACGCGCTTGCTGACGGACTGGGCGATGTCCAACCTGACGGATGATGAGCGCCAGGCAGCCCACCACACCGTCGTTGGCCCGTTGAGCTTTGCACAGATTGTCGATGTCATCGAGCGGGCCGACGTGGGTGCGCGCCTTCCGGCTGTGCTGCAACGCATGGCACGGGAGCGACAGACTCAATGGATGGGTGTGAAAGCAAAGCACATGCGGGCCCAGGTGTGGGCGGCCCATATCTCGGGAGACCTGCGACACGACAAGGACAACACCGGCTTGAAGCTGGTCCTGGCGGCACTGGACCGCCCTGGATCGGCGGGACGTGGCAAGGTCAACGGGCATGAAGTGGTCGTCCGGCAATTGCATTGGGGCGACAGCGTGTTGAAGGACCTGCTTGCGTTCGGAGTGAAGTCATTCGCCAGCCGTCCTTCGTTGACCTTGTACACGCCGGGTGCGCCGGACGGAAAAACTTTCAGGGACGTGGATGCATCAGGCAGCGGACGGGCGTTGCAAACAGCGTTGGCGCAGACCCTCACGGCCACCCCGGAGATGACCCGCTGGCTGATCTCCCATCTTCCGTTGCCGGAGCAAGCCGCTCAGGTCGCAGGCATGTTGCCGGCAGAAGATGACCTGACCGTCCAAGCGAAAATAAAAAAGGTTACGCAATCGGTTTTCAAATGGACAAGGGACAGGACTCGAAACGATTTCGCCTTCAAAGTCACTTCGCCCGTGGTCGAGGGAGACCTGTTGAAGGCGTTGCATGAAACGCAGATAACCCATGTCCTCAAAACGGTACGGACCCTGACAGTGAGCAACGCCGAACGCGACAGCGCAGCGGCTCGGGAAGGGCGTCGCAACGGTGTAGCCCTGTTGACCGGGGCTATGTCCATGGTTCCGGTGGGCCGCTTGGGTGGGATATTGGGACGAGCGATCTTGCCGACCCTGGCAGGCGGTGCCGCCGTCTCGGCGATACAGGATGAAGACGGCAGCGTCGGCCAGTGGACGAGCGATTTCATCCGCGGGCTGGGTGAGGTGCTGGCCGAGGGCGGGCAAGACTTGATCATGGCCCGCGCGACACGGCGTCGGGGCAAGGTCCATCCGGCCTTGGCATCGCTGCCTCGCATGCCGGACCCGCAGCTAAAGCCGTTCCAGCTCAAAGGCTTCGATGGCAAGGGGCTGCTGCCCGAGGGGCGCAGCCTCTATAGGGATGTGCAGGGACAGGGTTATCTGAAGCTCGGGAAGGATTACTTCAAAACGGCTTTCCAGAACGGCGAACAAGTCATCTACACACCGAGCAACCGCACGGACCAGCGCGCAGTGACGTGGGAAAACGGCCAATGGACCGTGCAGGAGCGGCAGCGTCTGCTCGGCGGAGGCGGGTATTTCAGCCGGGATCCGGAGCGAGCCGAAGATCGAACCTTCAACGCACTGGTGGAGGGCGTGCTGCCCAACGGGCATGACCTGCCTCGCGAAGTCGTCGACATGACGAAGCGTGTCGTCCGCACGATGCCTGAGACCTTGGCCGAACGCATACTCAAGGAAAGTATCGATGACGTTGGCGCGACCGACGTCGAGACTTACCGCTCGTTGATGAGAACCGTAAATCGACAGAATTTTGCCAGGCATAAAGCTCACCGTAAGAACCTGGCCAATAAAATCTGTATTTGGGAACTGGTTGAGCGAACGAATGACAATCTTCAAAAAGGAAAACACTTTTCCCTCACCCCGCCGCAAAAAATGCGGCTGTATGAGACGCTGGTCAAGCACAAGGATGAGTTCACCCTCGACCATCAACTCAAAGTAAGCACAACGATATTGCCCGACAACGTCACGGGTGCGAAATACATTGTGATCGTCCCGAAAACGGGAAAGAAAAAAGAGGCTGCCGACAGGATAGCCAAGGATATTACCGACACGGTGAAGTACGTGGAAAACTCCATGGACGCCAAGTTGGACACGATGTTTACCGGGGACGGGCCAGCTGTGGCGGCCGCAAGGCAAGCGTACCTGGATTCGCCGGAGTATCAGGCCAAGATCATCGACGAATTCAGGAAAGAAAGGGCCCGTCGACACAGACCCGGGTTACTCACCGAGATCAGGAATTTCAAGATCCCCTACATTATCGTCAACCGAGGCAAGACCCAGCGAAGCGCATTTTTCACCACTGAAGAAGACATCAACAATTTCACCAGAACCCTTGAAAACTACAGCCCTTTCGATATCGAGCTGGTCACCCAAGCCGCCTCCAACAAGGTCACCGGGCAGGCCTCCGCTTCTGCTCCAGCCGCTATCACGCCGCAGGCTCCCACCGTTATTCCCAGGTACACGGTGACGATCAGCCCGTTGGCTGAGGCGCAGATGTCATATGACAATTTCCCGGGAACCGCCAGGGTGAAGGTCATGGAGATCATGGATGACCTCCGTGCCGGCAGGATCACCACAAAAAAAATCAACCGATATTACTGGTACGACATGGCCCAGTTGGGTTTTGGCGGAGGAAGAGGCGCATGGCGCGCCGCGTTCGAACGTCACGGCGATACCTGGACTCTCCAAGGTTTTTACGACTATCACGCGACCCGAAACGCTACGGTCTGGGGGGATTGA	MLDNDSPPQPNIPQGNGASDPSAESTRQVSASQRQMINLSKAAPRPCRVTRQHLEYWFKRTFPTVAGDMTVDQLFVRTSQKARLSQSEREPNGQSSRQKKEDIAGLEHFFWRAIAGQVDISDSFADLDSLEIVVEMDGSKRVPTALNSPAAKKQFQRLLGTTPVAYEQLLMTALDDFWDTPAAFSQGRNVSDWLANELAAQLTALANLHLHDKTLSPPMHKAIMDSLSAPDAASRNQLAEGTRPGVYSLIAAFNDWGLSVPVTSAAVLSRHDADVDWGGAVLYRPGRPLEVYEDSKQLKISFIGDSTADEVELVPMEQNFLTRLVTDVRTTQKAAIRDALSSDVVDGENISGWMHRLDAAADLGMRLDLASALDEREFRLKLKSLHHWLHASPHIIGSDRLAWWQATQALQETLTDMAAPPDPVSMGTAQAIRDQARTLLAGFIKAKYPAADPDDITLSIRKETVDPHAPTGHSPFGSGVSMGSAKAFQDDTRLLTDWAMSNLTDDERQAAHHTVVGPLSFAQIVDVIERADVGARLPAVLQRMARERQTQWMGVKAKHMRAQVWAAHISGDLRHDKDNTGLKLVLAALDRPGSAGRGKVNGHEVVVRQLHWGDSVLKDLLAFGVKSFASRPSLTLYTPGAPDGKTFRDVDASGSGRALQTALAQTLTATPEMTRWLISHLPLPEQAAQVAGMLPAEDDLTVQAKIKKVTQSVFKWTRDRTRNDFAFKVTSPVVEGDLLKALHETQITHVLKTVRTLTVSNAERDSAAAREGRRNGVALLTGAMSMVPVGRLGGILGRAILPTLAGGAAVSAIQDEDGSVGQWTSDFIRGLGEVLAEGGQDLIMARATRRRGKVHPALASLPRMPDPQLKPFQLKGFDGKGLLPEGRSLYRDVQGQGYLKLGKDYFKTAFQNGEQVIYTPSNRTDQRAVTWENGQWTVQERQRLLGGGGYFSRDPERAEDRTFNALVEGVLPNGHDLPREVVDMTKRVVRTMPETLAERILKESIDDVGATDVETYRSLMRTVNRQNFARHKAHRKNLANKICIWELVERTNDNLQKGKHFSLTPPQKMRLYETLVKHKDEFTLDHQLKVSTTILPDNVTGAKYIVIVPKTGKKKEAADRIAKDITDTVKYVENSMDAKLDTMFTGDGPAVAAARQAYLDSPEYQAKIIDEFRKERARRHRPGLLTEIRNFKIPYIIVNRGKTQRSAFFTTEEDINNFTRTLENYSPFDIELVTQAASNKVTGQASASAPAAITPQAPTVIPRYTVTISPLAEAQMSYDNFPGTARVKVMEIMDDLRAGRITTKKINRYYWYDMAQLGFGGGRGAWRAAFERHGDTWTLQGFYDYHATRNATVWGD				NA	NA	NA	NA	NA
D1-36_00434	1026			Soluble epoxide hydrolase	ATGTTGATCTCTAACAACTACGGCCCGCCGATGGATAAGAAATTGATGGACACGATAACCTGGTCGGGCGTCGTCTCCACGTCTTCCTCACCCCACAGCGCAACCACGGCCGGGGAGCAGAACGTGGTGGTTGACGATGTGAAGCTGACGCACGCTTACGCACATGTGAATGGAATATGCCTGCACTATGTGATCTGCGGCGATGGTGAGCAGCCGGTCCTGCTGGTGCATGGGTTTCCGGGCAGTTGGCGCAACTGGGAGCCGTTGATCGGGCCGTTGGTGCGGGCGGGTTTTACCCCCATCGTTCCTGACTATCGCGGCGCGGGTGAAACGGATATTTCCAGCGCCGGGTATGACAAGAAAAACATGGCCCATGACCTGCACGAATTGGTGATGCATCTGAAGCTCAAGCAAGTCGATATCATTGGCCACGATATGGGGTTGATCATTGCCTACGCCTACGCCGCGCTTTATCCAGATGACACCAAGCACCTGATATTGATGGACGGATTCCTTCCCGGTATTCCCGGCTGGGAAAGTGCCTACAACGGCGACCCGTCAACCGGCATCGCGAGCAAATGGCATTTCCGGTTTTTTGGCAAAACAGCTATCACCTTGATCAAGGGGCAGGAAAGAACCTACCTGGACATGTTCTTCGATGACTTTGTCTTCGAAGGCAACGACAAAGTGCCGGATGAAGTGCGCCAGGCCCTGATAACGGACTACGCCCGGCCTGGCCGAATGGAGGCCGCATTCAAACTTTACTCAGCCTGGGTGGAATACGACGCCAAGGACAACCTGGAGTTTTCCAGGAACAAGCTGACGGGTCCGGTACTCACCATCGGCGGCGATCATTCCCGAGGGCGGACGCTGACCGAGCAGGCCGCTTGCATTGCCGCGCAACCACACTCGCTGATATTGAAAAATACCGGGCACTGGCTCCTTGAAGAGCAACCGCAAGCTACTCGCGACGCAATTCTGGCATTCCTGCAATACAAGGAATTTCCACATCCCCGAAATTCGTAA	MLISNNYGPPMDKKLMDTITWSGVVSTSSSPHSATTAGEQNVVVDDVKLTHAYAHVNGICLHYVICGDGEQPVLLVHGFPGSWRNWEPLIGPLVRAGFTPIVPDYRGAGETDISSAGYDKKNMAHDLHELVMHLKLKQVDIIGHDMGLIIAYAYAALYPDDTKHLILMDGFLPGIPGWESAYNGDPSTGIASKWHFRFFGKTAITLIKGQERTYLDMFFDDFVFEGNDKVPDEVRQALITDYARPGRMEAAFKLYSAWVEYDAKDNLEFSRNKLTGPVLTIGGDHSRGRTLTEQAACIAAQPHSLILKNTGHWLLEEQPQATRDAILAFLQYKEFPHPRNS				NA	NA	NA	NA	NA
D1-36_00435	447			hypothetical protein	ATGCCGTTGAAGAAAATCGCTGTAACCGCCGCCCTGTTGCTCGGCACCTTGCCAAGCCTCAGCCAGGCCCGTGATACCGCGTTGTACCTGCCATTCGACAAAGTGGTCGCCGAAGCCATCCGCACCGGCAAGATCGACGGCAGCGTGAAGTTCTACCTGGCCGGCCACAAACCGGCCGGCAACGTCTCCGTGGTCAGCCCGGGAGCGGTCACCAACAAGAAAACCAACGCGTTCAACAAGTCCGACGAAGCGGCCTGCGAATGGGTACTGCAATCAGCCCTGATCAGCCTGCACGAGGCCGCGAAAAACGCCGGCGCCAACGCCGTCACCAACATCGTCAGCTTCTACAAGCGCAACGAGCGCAAGGACCCCACGACCTATGAATGCCACGCTGGGGCAATCATGGCCGGGGTTGCGTTGAAAGGGGATCTGGCGAAGGTGCAGTAG	MPLKKIAVTAALLLGTLPSLSQARDTALYLPFDKVVAEAIRTGKIDGSVKFYLAGHKPAGNVSVVSPGAVTNKKTNAFNKSDEAACEWVLQSALISLHEAAKNAGANAVTNIVSFYKRNERKDPTTYECHAGAIMAGVALKGDLAKVQ				NA	NA	NA	NA	NA
D1-36_00436	1227	fabF_1	COG0304	3-oxoacyl-[acyl-carrier-protein] synthase 2	ATGAAGCGCGTCGTCGTCACCGGCATGGCCGGCATCACCTCCATCGGCAGCGACTGGGAGACCATCGCCGCCAACTTCGCCGCCAACCGCAGCGGCATCCGGCGCATGGATGAGTGGGACCGTTTCACCGAACTGAACACTCGCCTGGCCGGGCCCATCGACGATTTCCAGGTCCCGGCCCATTGGACGCGCAAGCAGTTGCGCAGCATGGGCCGGGTCTCACGCCTGGCGGTGGCCTCGGCTGAGCAGGCCCTGGCCGACGCTGGCCTGCTGGGCGACCCGTCGATCAAGGACGGGCGCATGGGCGTATCCTGCGGCTCGTCCACTGGCAGCACCGATGAGATCAAGGCCTTCGGCAACATGCTGCTCAACAGCGTGGCCGAAGGGCTGAACGCCAACTCCTATGTGCGGATGATGCCCCACACCACGGCGGCCAACATCAGCATCTTCTTCGGCCTGACCGGACGGTTGATCCCAACGTCCAGTGCCTGCACCAGCGGCAGTCACGGCATCGGCTATGCCTACGAGGCAATCAAGTTCGGCCGCTTGCCGCTGATGCTCGCCGGCGGCGCGGAAGAACTGTGCCCGACCGAAGCGATGGTCTTCGATGCGCTCTACGCCACCAGCCTGAAAAACGATGCCCCGCAGACCAGCCCGCGCCCCTACGACAAGGGCCGCGATGGCCTGGTGATCGGCGAAGGCGCCGGCATGCTGGTGCTCGAAGAACTGGAACATGCCTTGGCCCGTGGCGCACGGATCCATGCCGAAATCGTCGGATTTGGCAGCAACGCCGACGGCCAGCACGCCACCCGTCCCGAGTTGAGCACCATGCGCCGGGCCATGGAACTGGCCCTGGAGGATGCCGGCCTCGAACCGGCCGCCATTGGCTACGTCAACGGGCACGGCACGGCCACCGAGCAGGGCGACGTCGCCGAGACCCTGGCCACCAGCAGCCTGTTCGGCGAACACATGCCCATCAGCTCGCAGAAAAGCTTTTTGGGCCACACCCTGGGCGCCTGCGGTGCGCTGGAGTCCTGGTTCAGCATCGAAATGCTCAACCGCGACCTGTATGTACACACGCTCAACCTCGATGAGGTCGACCCCGAATGCGGCACACTCGACTACTTGCGCAGTGAGTTTCGCGCGATGAGCAACGAATACGTGATGAACAACAATTTTGCCTTCGGCGGGGTCAATACCTCGCTGATTTTCCGTCGCTGGCATTGA	MKRVVVTGMAGITSIGSDWETIAANFAANRSGIRRMDEWDRFTELNTRLAGPIDDFQVPAHWTRKQLRSMGRVSRLAVASAEQALADAGLLGDPSIKDGRMGVSCGSSTGSTDEIKAFGNMLLNSVAEGLNANSYVRMMPHTTAANISIFFGLTGRLIPTSSACTSGSHGIGYAYEAIKFGRLPLMLAGGAEELCPTEAMVFDALYATSLKNDAPQTSPRPYDKGRDGLVIGEGAGMLVLEELEHALARGARIHAEIVGFGSNADGQHATRPELSTMRRAMELALEDAGLEPAAIGYVNGHGTATEQGDVAETLATSSLFGEHMPISSQKSFLGHTLGACGALESWFSIEMLNRDLYVHTLNLDEVDPECGTLDYLRSEFRAMSNEYVMNNNFAFGGVNTSLIFRRWH	PGPT0008360_7210	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008360-fabF-K09458	NA	NA
D1-36_00437	729	fabG_3		3-oxoacyl-[acyl-carrier-protein] reductase FabG	ATGACTGAATCCGTACTGGTCACCGGCTCCAGCCGTGGCATCGGCCGCGCCATCGCCTTGCGCCTGGCCCAGGCCGGGCACGATATCGTCTTGCATTGCCGCAGCGGCCGCGCCGAAGCCGAAGCGGTCCTGGCAGACATCCAAGCGCTGGGCCGCAACGCCCGCGTCCTGCAATTCGACGTGTCCGACCGCGCCGCCTGCAAGGCCGCCCTCGAAGCCGACGTCGAAACCCACGGCGCCTATTACGGCGTAGTGCTCAACGCCGGCCTGACCCGCGACGGCGCCTTTGCGGCCCTCAGCGAAGACGACTGGGACAGCGTGCTGCGCACCAACCTCGACGGTTTCTATAACGTGCTGCACCCGGTGATGATGCCGATGATCCGACGCCGCGCCGCGGGACGAATCGTCTGTATCACGTCAGTGTCCGGCCTGATCGGCAACCGTGGCCAGGTCAACTACAGCGCCTCGAAAGCCGGCTTGATCGGCGCGGCCAAGGCGTTGGCCATCGAACTGGGCAAGCGCAAGATCACGGTCAATTGCGTCGCGCCGGGGTTGATCGACACCGCCATGCTCGATGAAAACGTACCCGTGGAAGAATTGATGAAGATGATCCCCGCCCAGCGCATGGGCACCCCGGAAGAAGTCGCCGGCGCGGTGAACTTCCTGATGTCCGCCGAAGCTGGATACATCACTCGGCAAGTCCTGGCCGTCAACGGAGGCTTGTGCTGA	MTESVLVTGSSRGIGRAIALRLAQAGHDIVLHCRSGRAEAEAVLADIQALGRNARVLQFDVSDRAACKAALEADVETHGAYYGVVLNAGLTRDGAFAALSEDDWDSVLRTNLDGFYNVLHPVMMPMIRRRAAGRIVCITSVSGLIGNRGQVNYSASKAGLIGAAKALAIELGKRKITVNCVAPGLIDTAMLDENVPVEELMKMIPAQRMGTPEEVAGAVNFLMSAEAGYITRQVLAVNGGLC	PGPT0003180_20079	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
D1-36_00438	468			hypothetical protein	ATGATCGACTGGCCGCTCGCCGAATTGCTGCCCCATGCGGGCGACATGATTCTCATCGACCGGGTCGTGTCCTTCGATGACGAACAGATCCATGCACTCGCCACGGTCAAGCCCGGCGGCTTGTTCAACCGTGAAGACGGCGCGCTGCCGGCCTGGGTCGGCATCGAATTGATGGCCCAGAGCGTCGCGGCGTTCGCCGGTTGCCACGCTCGCCAGCGCGGCGATGCAGTGGAGCTGGGCTTTTTGCTCGGGACCCGCAAGTTCGAATGCAACGTCGAGCATTTCCCTCTCGACACTGAACTGGCCATCCATGGCGTGCGCTCCCTGGAAGACGACAACGGCATGGGTGTGTTCGAATGCCACATCCACGCGCCGGGCATCCATGCCACGGCGCGACTGAACGTATTTCGTCCGCCCCATGCTGCCCAGTACCTCAATGAAACTTCCGCAACAGGAACCCAGCCATGA	MIDWPLAELLPHAGDMILIDRVVSFDDEQIHALATVKPGGLFNREDGALPAWVGIELMAQSVAAFAGCHARQRGDAVELGFLLGTRKFECNVEHFPLDTELAIHGVRSLEDDNGMGVFECHIHAPGIHATARLNVFRPPHAAQYLNETSATGTQP	PGPT0013310_18	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0013310-fabB-K00647	NA	NA
D1-36_00439	1197			hypothetical protein	ATGACCGCTTATCTGAACGCCCTCGGGGTCATCTGCTCCTTGGGCCGGGACAAACAAAACGTCGCGCGCAACCTGTTTGCCGGCGATTGCTCGGGCGTGCGCGTCGAAGCCGGCTGGGTGGCCGAGCGGGCATTGCCGGTGGCTGCGGTAAGGGGAGAACTGGCCCCCATCCCCGAGGCACTGGCGGCGCAACGCAGCCGCAACAATCAACTGCTGCTCGAAGCGGGGTTGCAGATTCGTGCTGACATCGACCAGGCCATCGAGGCGTACGGCCCCGCGCGCATCGGTATCGTTCTGGGCACCAGCACCTCGGGCATCGACGAGGCCAGCCAGGGCATTGCCCATTACCTGCGCGAGCAGCGGTTCCCCGAAGGCTACGATTACCAGCAACAAGAACTCAGCGCGCCGGCCAATTTCCTTTCCGACTGGCTTGGCTTGAGCGGGCCCTCCTATGTGATCTCCACCGCCTGCACCTCCAGCGCGCGGGCCTTGATGAGCGCCCGTCGCCTCCTGGACCTGGGCTTGTGCGATGCGGTGCTGTGCGGTGGCGTGGACAGTTTATGCAAACTGACCTTGAACGGTTTCTCTGCGCTGGAAGCGGTGTCGAACGAGCGCTGCAACCCGTTTTCGGTGAACCGCAGCGGTATCAACATTGGCGAGGCGGCTGTGCTGTTTCTCATGAGCAAGACGCCAGGCGACGGCCATTCGATCGCCCTGCTCGGGGATGGCGCCAGTTCTGACGCGCACCACATTTCCGCGCCGGAACCCAGCGGTCGCGGCGCCCGCCAGGCGATGGAAAAAGCCCTGCGCTGTGCCGGCCTGGACGCCAGCCAGATCGACTACCTGAACCTGCACGGCACCGCCACGCAACATAACGACGCCATGGAAAGCCATGCGGTGGCTGGATTGTTTCCGGCGGGCGTGCCCTGCTCGTCCACCAAGCCCATGACTGGCCACACGCTTGGGGCGGCGGGCGCGTTGGAAGCGGCTTTCTGCTGGCTGACCCTGAGCCCTGACAACGTCGCCCAGGCCTTGCCACCCCACCTTTGGGACGGCCAGGCGGACCCCGAGCTGCCGGCGCTGGACTGGATAGATAGCCGTGCCCGCCTGAACCCGACCTTCCCCCGACGCCTGATGAGCAACTCGTTTGCCTTCGGCGGCAACAACGTCAGCCTCATTATCGGAGACGCCCAATGA	MTAYLNALGVICSLGRDKQNVARNLFAGDCSGVRVEAGWVAERALPVAAVRGELAPIPEALAAQRSRNNQLLLEAGLQIRADIDQAIEAYGPARIGIVLGTSTSGIDEASQGIAHYLREQRFPEGYDYQQQELSAPANFLSDWLGLSGPSYVISTACTSSARALMSARRLLDLGLCDAVLCGGVDSLCKLTLNGFSALEAVSNERCNPFSVNRSGINIGEAAVLFLMSKTPGDGHSIALLGDGASSDAHHISAPEPSGRGARQAMEKALRCAGLDASQIDYLNLHGTATQHNDAMESHAVAGLFPAGVPCSSTKPMTGHTLGAAGALEAAFCWLTLSPDNVAQALPPHLWDGQADPELPALDWIDSRARLNPTFPRRLMSNSFAFGGNNVSLIIGDAQ	PGPT0013310_1924	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0013310-fabB-K00647	NA	NA
D1-36_00440	483			hypothetical protein	ATGATCCGCTGCCTGTTGATCGGTTGCCTGCTGCTGCTCAGTGCCTGCGCCAGCCACGCGCCGCTGCCCGAGCGCATGCCAACCCTGGCGCTGCCGCTGCAATTGCACATCGAGCGGCAACTGGACGGCCAGCGCCAGGATTGGCTGTTGGTGATCCAGCGTGAAAACACCGGCATACGCTGGTCGATGATGGACCCGCTGGGCATTCCCCTGGCGCGCCAGCGCCTGGTGGACAACCAATGGCAAGCCGACGGTCTGCTGCCGCCCAATGCCGAGGCGCGGGAATTGTTCGCTGCGCTATTGTTCGCCTTGACCCCGGAAACCGAGCTTGCCGATCGCTACCCCGTCGCCCGGCAACACGGTGTCGAACGAGCCCTCGATGCGCGTTGGCAGGTGCGCTACAAACGGCCCCTGGATTTTGAGCTGCGCCTGCCCCAAGGCCCGCACTACCGCATCACACCGCTGACCGAGAGCGCACCATGA	MIRCLLIGCLLLLSACASHAPLPERMPTLALPLQLHIERQLDGQRQDWLLVIQRENTGIRWSMMDPLGIPLARQRLVDNQWQADGLLPPNAEARELFAALLFALTPETELADRYPVARQHGVERALDARWQVRYKRPLDFELRLPQGPHYRITPLTESAP				NA	NA	NA	NA	NA
D1-36_00441	729	COQ5_1		2-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrial	ATGAGCTACCTGAGCGATAACTACGTCCAAGAAACCCGCTTCGGCTTCTGGTTCCTGCGCAGCCACACCTGGCAGCATCATGTGCTGCGCGTGGCGGTCGAGGATCTGCGCGGTCTGTTCAATACCGCGCCGCCTTCCAATCCGGTGCTGCTGGATGCCGGTTGCGGCCAGGGCAAGTCGTTCCAGTACCTGCGCCAGGCATTCGCGCCGCAACGCCTGATTGGCGTGGACGCCGACCCCCACAGCCTGGACCTGAGCGCCCAAGAAGCCGCTCGCCAGGGCATGGCCGTGGAACTGATCGGCAGCGATTGCGCGACCTTGGCCGTGCCCGATGCCAGCGTCGACCTGCTGTTCTGCCACCAGACCTTTCACCACCTGGTGGAACAGGAAAAAGCCCTCGCCGAGTTCTATCGGGTGCTCAAGCCCGGCGGCTACCTGCTGTTTGCCGAATCCACCGAAGCCTACATCGATACCTGGGTGATCCGCTGGCTGTTCCGCCATCCCATGCACGTGCAGAAAAGCGCCGCGCAATACTTGGCGATGATCCGCAACCAAGGCTTCCAGTTCGAGGACCGCAACGTGTCCTATCCGTACCTGTGGTGGAGCCGCGCCAAGGACTTCGGCCTCCTGGAGCGTTGGGGCCTGCGCCGGCCCAAGCCGTTCGGCGAGCGCGAAGAAACCTTGGTCAACGTGGTGGCACGCAAGCCGCTCGAAGGGACCGCCACATGA	MSYLSDNYVQETRFGFWFLRSHTWQHHVLRVAVEDLRGLFNTAPPSNPVLLDAGCGQGKSFQYLRQAFAPQRLIGVDADPHSLDLSAQEAARQGMAVELIGSDCATLAVPDASVDLLFCHQTFHHLVEQEKALAEFYRVLKPGGYLLFAESTEAYIDTWVIRWLFRHPMHVQKSAAQYLAMIRNQGFQFEDRNVSYPYLWWSRAKDFGLLERWGLRRPKPFGEREETLVNVVARKPLEGTAT				NA	NA	NA	NA	NA
D1-36_00442	1248	kmo		Kynurenine 3-monooxygenase	GTGTCAACAGTTGAAATGGAACGTCGACAGGTCGTCATCATTGGCGCAGGCCCTTCCGGCGCCATCGCCGCCGCGCTGCTCAAGCGCAAGGGGCATGATGTGCTGGTCATCGAGCGCCAGCATTTCCCGCGGTTCTCCATCGGCGAGAGCCTGTTGTCCCACTGTCTGGATTTTGTCGAAGAAGCCGGCATGCTCGACGCGGTCAATGCCGCTGGGTTCCAGCGCAAGAACGGCGCTGCATTCGCCTGGGGCGAGCGCTACAGCGCCTTCGATTTCGGCGACACTTTCAGCGAGGGCAAGCCCACTACGTTCCAGGTCCAGCGCGCCGACTTCGACAAGTTGCTGGCCGACCAGGCGGCCCTGCAAGGGGTGGAAATTCGCTACGGCCAGGCCATTGCCAACGTTGATTTCAGCCTCGCCAGGCCGCAACTGGGCGTGCAGCGCGAGGATGGCAGCGAGTACCGGGTCGAGGCGGATTTCGTCCTTGACGCCAGTGGCTATGGCCGGGTCCTGCCGCGCCTGCTGGACCTTGAGGCGCCGTCCAATTTCCCGGTGCGCCAGGCCGTGTTCACTCACATCGAGGACCGCATCGACAGCCCGGTATTCGATCGCGAGAAGATCCTCATCACCACCCATCCGACGAAACGCGACGTGTGGTTCTGGACCATCCCCTTCAGCGATGGGCGTTGCTCGGTGGGCGTGGTCGCGGCAGCGGAACATTTCGCGGGCCGCACCAATGACCTCGATGCCTGCCTGCGCGGCTTTATCGACGAGACCCCAAGCCTGTCCGGCGTGCTGGCCAATGCTGCGTGGGATACTCCGGCGCGGACCATCGGTGGCTACTCGGCCAACGTGAAGACCCTGCACGGCCCTGGCTTTGCCCTGCTGGGCAACGCCGCGGAATTCCTCGATCCGGTGTTTTCTTCCGGCGTGACCATCGCCATGCGCTCGGCGAGCATGGCCGCCGGCGTGCTGCATCGTCAGTTGCAAGGCGAGCAGGTGGATTGGCAGGGCGAATTCGCCGAGCCACTGAAACGCGGCGTCGACACGTTCCGCTGCTACGTCGAAGGCTGGTATGCCGGCACGTTCCAGGACGTGATCTACTACACCGAAGGCTCCGCCGACATCCGCCGGATGATCAGTTCGATCCTCGCCGGCTATGCCTGGGATCAACGCAACCCGTTCGTCAGCGAACCCAAGCGGCGCCTGCGCGTGCTCTCGGAAATCTGCGCGAGCCCAGCGCCATGA	MSTVEMERRQVVIIGAGPSGAIAAALLKRKGHDVLVIERQHFPRFSIGESLLSHCLDFVEEAGMLDAVNAAGFQRKNGAAFAWGERYSAFDFGDTFSEGKPTTFQVQRADFDKLLADQAALQGVEIRYGQAIANVDFSLARPQLGVQREDGSEYRVEADFVLDASGYGRVLPRLLDLEAPSNFPVRQAVFTHIEDRIDSPVFDREKILITTHPTKRDVWFWTIPFSDGRCSVGVVAAAEHFAGRTNDLDACLRGFIDETPSLSGVLANAAWDTPARTIGGYSANVKTLHGPGFALLGNAAEFLDPVFSSGVTIAMRSASMAAGVLHRQLQGEQVDWQGEFAEPLKRGVDTFRCYVEGWYAGTFQDVIYYTEGSADIRRMISSILAGYAWDQRNPFVSEPKRRLRVLSEICASPAP				NA	NA	NA	NA	NA
D1-36_00443	1158			hypothetical protein	ATGATGACGGCGCTGTTCTGGGTCATGGCCCTGGCGCTGTTCGCCGTGGCGACGCTGGCCGGGCGACGCTTCGGGCTGATCCCCATCGTCAGCCAATTGCTGCTGGCGACGTTCGGCCTGCCCTTGTTGATGTATGGCTGGATCGAGCCGGGCTGGCACCTCAGCGGTGCGCAACTGGTCGAGCCCGTGTGGTTGAAGAATCTCTACAGCCTCGCCTTCGCCCTGTTGCTGGGGCATATCCTCAGCGATGTGATCGACCTGCGCCTGGACCGCCAGAGCGTGAAGATTGCCCTGCCAAGCTTTGGCGTACCGTTTGCCTGTGGCTTGGCGACCGCGTTCTGGCTGCTGCCACCCCAGCCCTGGATCAGCTCGCTGGCGGTGGGGCTGCTGTTCGCGATCACGGCGATACCGGTGCTGTACCTGTACCTGCGCCATATCGCCTACCCGCCCGCCGCCACTCGCCGATTGGTACAGACGGCCATCCTGATCGACCTGATCTGCTGGAGCCTGTTCGCCCTGGCCCAGGGCAGCCTGCACCTGGGCAACCTGTTGCTGCCGCTGGCCGGTGCCTGCCTGCCGATGCTGCTGCGATTGGCGGGCCTGCGCCAACCGTTGCTGCACAGCGGCCTGTTCTTCGCCCTGCTGGTGGTGGCCGAACATTACCGACTCAATGCGCTCATCGTCGGCATCGGCTACCTGCTGTGCATGGCCGCGCTCAAGGTGCCGCTGGTATTGCCCCTCGGCACCGAGTGGATGAACAGGTTGCAGACCTACCTGGCCATCCCGTTGATCCTGACGTTCGGTATCGTGCAGATCAACGTGCACAGCGCGATGGACAGCCTCGGCTGGGCCCAGCTGGGGGCGTTGCTGCTGTTGCCCATTGCCAGCAAACTGCTGGGCAACTGGCTTGGGCTCGGCTGGGCCGGGGCGTCCTTCGCCGGCGCCAGCCGCGTGCGGGAAAGTATCTTGCTGAATATTCGCGGCTTGAGTGAAATCGTCTTCCTCAATCTGCTGCTGCAACAACAACTCATCAGCCACGCGCTGTACTTCGCGCTGATGCTGATGGGTTTGATCGCGACTTTGCTGCCGGCCCTGGCCGGTTTTCACCGTATTCCTTCGCACGCCGTCCCGGCCAGGAGCCCCAGTGTCAACAGTTGA	MMTALFWVMALALFAVATLAGRRFGLIPIVSQLLLATFGLPLLMYGWIEPGWHLSGAQLVEPVWLKNLYSLAFALLLGHILSDVIDLRLDRQSVKIALPSFGVPFACGLATAFWLLPPQPWISSLAVGLLFAITAIPVLYLYLRHIAYPPAATRRLVQTAILIDLICWSLFALAQGSLHLGNLLLPLAGACLPMLLRLAGLRQPLLHSGLFFALLVVAEHYRLNALIVGIGYLLCMAALKVPLVLPLGTEWMNRLQTYLAIPLILTFGIVQINVHSAMDSLGWAQLGALLLLPIASKLLGNWLGLGWAGASFAGASRVRESILLNIRGLSEIVFLNLLLQQQLISHALYFALMLMGLIATLLPALAGFHRIPSHAVPARSPSVNS				NA	NA	NA	NA	NA
D1-36_00444	2340			hypothetical protein	ATGACTTTTCCGAGTGAACGGAGGCTGCCGTGGCTGTTCTTGATCCTGCTGCTGGCAGTGCTGGCGCTCGCCGGTTGGCAATGGCGCAACGGTGCGCCGTTGTCGGCGAACCTGATGGAACTGGTGCCGGGCACATCGCCGGATGCGCTGGAGCTGATCGCTGAACAACGCATGCAGGAACCACTGAACCGCGAAGTGTTGGTGCTCGTCGGCCACGCCGACCGCCAGCAAGCCATCGCCCTGGCCCGCAGCCTGGGCGAGCAATGGCAGGCCAGCGGCCTGTTCGACAAGGTCCAGTGGACGCTTGAAGCCGACCTGCCTGCGCTGCGCAGGCAATTGCTCGACGGCCGGCTGGCCATGCTGTCGGCAACTGATCGGCAACAGTTGATCGACCAGCCCGAGGCATTTATCCAGCAACGGGTGCAAGCGCTGTTCGACCCGTTCAGTGGCTTCAGCCTGGTGCCGAGCCAGGACGACTGGCTAGGCCTGACCGGGCGCATCCAGAACAGCCAGCCCCAGCGCGGCGCCATCGAGCTGGACGTCGGCAGCGGTGCGCTGGTTGCCGAAGCCGACGGCAAGCATTGGGTCATGTTGCGGGCACGCACCCAGGGCAATGCCTTCGACATGAACCTGCCCCTGCAGGTGGCCGAGCTGCTGCAACGCAGCCGCGAGCACGCGAGCCAGGCCCAGGGCAATCTCTTGGCGGCCAGCGGCCTGCTTTACGCCGCCAGCGGACAGCAACAGGCCTCGCGGGAAATCACTTGGGTCGGCGGCGGCGCAACGGTGGGCATCCTGTTGTTGTTGTTGCTGGCCTTCCGCCGCTTTGCCGTGTGGCTGGCGTTCGTGCCGGTGCTGGTGGGCATGTTGTTCGGCGCGGTGGCCTGCGTGGCGGTGTTCGGTCGCATGCACGTCATGACCCTGGTCTTGGGTTCGAGCTTGATCGGCGTCGCCGTGGATTACCCACTGCATTATCTGTCCAAGAGCTGGAGCCTCAAGCCGTGGCGCAGCTGGCCGGCGCTGCGCTTGACCCTGCCGGGCCTGAGCCTGAGCCTGGCGACCACCTGCATCGGCTACCTCGCACTGGCCTGGACACCTTTCCCGGCCCTGACCCAGATCGCCATCTTCTCCGCCGCAGGCCTGGTCGGCGCCTACCTGACGGCGGTCTGCCTGTTGCCGGCGTTGCTCAAGCGGGCGGACTTGCGTCCCGCACAGTGGCCGCTGCGGGTGTGCGAAGCCATGCTCCAGTGCCGAGAAGCGCTGCTGGCCCGGGTGCGCACGCCCGTCCTGTTGGCGTTGCTGTTGGCCTTCTGTGGCGGTGGCCTATGGCAACTGAGCAGCAAGAACGACATCCGCCAGTGGATCGGCACGCCCCAGCACCTGACCGACGAAGCCCGCGATGTGGCTCGCATCACCGGTTTCCAGCCCACCAGCCAGTTTTTCCTGATCCGTGCCGACGACCAAGCGCAACTGCTGGAGCGCCAGACCGCCCTCAACGAGCGGCTGGACCAGTTGATCGGCTTGGAAAAACTCCAGGGCTACCTGTCCCTCAATCAACTGGTCAGCCCGCCCGCCGAGCAACAAAAAATCCGTGAGGCCCTGGCCCGGTTGCCGGCGTTCTGGCAGCCATTGCTGGACGTCGGCGTGCCGGTTGCCGCGTTGCAAGCGCAGTTGCAGCAATTGCAGGCCCTGCCAGTGACCGACATCGACGCCGCGCTGACCGGCCCGCTCGCAGAACCCTATCGCACCCTCTGGCTCGGCCCGACAGCGCAAGGCGTGGCGGCGGTGGTCAGCCTGCAAGGCTTGAACGATGCCGCGTTGCTGCGGGTGCAGGCGGTTGACTTGCCCGGCGTGCAATTGGTCGATCGCCTGGGTGACCTCAATCGCGTCTTTGCCGCCACGCAGGTCAGCGCCGCCGAATTGAAACTGGCCTCCTGCGTGCTGATCGTCCTGGTGCTGATCTGGCCGTTCGGGGCTGGCGGCGCGTTGCGCGTTGTCGCCCTGCCGCTCCTGGCAGCGCTGTGCAGTCTGGCGAGCCTCGGCTGGCTGGGACAGCCGCTGACGCTGTTCAGCCTGTTCGGCCTGTTGCTGGTGACCGCCATCGGCGTCGACTACGCGATCCTGATGCGTGAGCAGATTGGCGGAGCCGCCGTGAGCCTGCTGGGTACGCTGCTGGCGGCGATCACCACCTGGCTGTCGTTCGGCCTGCTGGCGCTTTCCAGCACACCGGCGGTGAGTAATTTCGGCCTGGCGGTAAGCCTCGGATTGGCGTTCAGCTTCCTGCTTGCACCGTGGGCCGGGCGTCAACCCCATGGGTCCAGCGCTGCGGAGCCGGTCCAATGA	MTFPSERRLPWLFLILLLAVLALAGWQWRNGAPLSANLMELVPGTSPDALELIAEQRMQEPLNREVLVLVGHADRQQAIALARSLGEQWQASGLFDKVQWTLEADLPALRRQLLDGRLAMLSATDRQQLIDQPEAFIQQRVQALFDPFSGFSLVPSQDDWLGLTGRIQNSQPQRGAIELDVGSGALVAEADGKHWVMLRARTQGNAFDMNLPLQVAELLQRSREHASQAQGNLLAASGLLYAASGQQQASREITWVGGGATVGILLLLLLAFRRFAVWLAFVPVLVGMLFGAVACVAVFGRMHVMTLVLGSSLIGVAVDYPLHYLSKSWSLKPWRSWPALRLTLPGLSLSLATTCIGYLALAWTPFPALTQIAIFSAAGLVGAYLTAVCLLPALLKRADLRPAQWPLRVCEAMLQCREALLARVRTPVLLALLLAFCGGGLWQLSSKNDIRQWIGTPQHLTDEARDVARITGFQPTSQFFLIRADDQAQLLERQTALNERLDQLIGLEKLQGYLSLNQLVSPPAEQQKIREALARLPAFWQPLLDVGVPVAALQAQLQQLQALPVTDIDAALTGPLAEPYRTLWLGPTAQGVAAVVSLQGLNDAALLRVQAVDLPGVQLVDRLGDLNRVFAATQVSAAELKLASCVLIVLVLIWPFGAGGALRVVALPLLAALCSLASLGWLGQPLTLFSLFGLLLVTAIGVDYAILMREQIGGAAVSLLGTLLAAITTWLSFGLLALSSTPAVSNFGLAVSLGLAFSFLLAPWAGRQPHGSSAAEPVQ				NA	NA	NA	NA	NA
D1-36_00445	594			hypothetical protein	ATGAAGCGCCTGCTCACCTGGCTGCTGCTGTGCAGCCTGTCGCCGCTGGCCCAGGCGTTCGACCTGCAGCAATTGAGCGATCAACTGGCGCGCCCGGACGTGATCCACGGCCAGTTCATCCAGGAAAAACACCTGCGCGCCCTGCCCCAGCCCCTCGTCAGCAAGGGCCGCTTCGTGCTGGCGAAAAACCAGGGCCTGCTGTGGCTGCTGCAAACGCCGCTGCAACAGGACTATCGCATCACCGCCAAAGGCATAGCCCGGCGGGACGGCAGCACCTGGCAGATACTGCCGAACAAAAGCGCCGGCGCCCAGCAGAACCGGTTGTTCCTGGCGGTGTTGCAGGGCGACAGCAGTGGCTTGCAGCGTGACTTTGAACTGAACCTGTCGGGGGAGCCGCAACAATGGAGACTCACCCTGACCCCACGCTCGGCGCTGCTCAAGCAGGTCTTCCACCAGATCAACATTGACGGCGGCCAATTGGTCCAGCGCATTGAACTGCTGGAAGCCCAAGGCGACAGTACCGTCCTGCTTATGCGCGAGAGCACCAGCACGCAACCCTTGAGCGAAGCGGAGCAACATGACTTTTCCGAGTGA	MKRLLTWLLLCSLSPLAQAFDLQQLSDQLARPDVIHGQFIQEKHLRALPQPLVSKGRFVLAKNQGLLWLLQTPLQQDYRITAKGIARRDGSTWQILPNKSAGAQQNRLFLAVLQGDSSGLQRDFELNLSGEPQQWRLTLTPRSALLKQVFHQINIDGGQLVQRIELLEAQGDSTVLLMRESTSTQPLSEAEQHDFSE				NA	NA	NA	NA	NA
D1-36_00446	426			hypothetical protein	ATGCGTAGCCAAGGCGTTCTGCACGTCGACACCCAGATCGTGGTGCCGTTTTTTGACGTCGACTCGATGAACGTGGTCTGGCACGGCCACTACGTCAAATACCTGGAAGTGGCCCGCTGTGCCCTGCTCGACCTGATCGGCCACAACTACAACGACATGCTCGAATCGGGGCATGCGTGGCCGGTGATCGACCTGCAGTTGCGCTACGTACGCGGTGCCGTGTTCGGCCAGACCCTGACCGTGCGCGCCAGTCTGGTGGAGTGGGAAAACCGGCTGAAGATCAACTACCTGATCAGTGACGCCGCAACCGGCGAACGCTTCACCCGCGCCAGTTCCGTGCAAGTGGCCGTGGACATGGCCACTCGCGAGATGCTGCTGGCCTCGCCTCGGGTGTTTGTCGAAGCGGTCGAGAGGAAACTGTCATGA	MRSQGVLHVDTQIVVPFFDVDSMNVVWHGHYVKYLEVARCALLDLIGHNYNDMLESGHAWPVIDLQLRYVRGAVFGQTLTVRASLVEWENRLKINYLISDAATGERFTRASSVQVAVDMATREMLLASPRVFVEAVERKLS	PGPT0001850_5417	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0001850-ybgC-K07107	NA	NA
D1-36_00447	1545	cmdF		Tyrosine 2,3-aminomutase	ATGACGATGCCCACTCTTGAGCCGGTAACCTTCGGCGAACGCCCCCTGCGCATTGAAGATGTGCTGGCCCTGGCCAACCGTCAGGCGCCGACGCAATTGCAGGATGATCCGACGTTCCGCCAGCGCATTGCCAAGGGTGCGCAGTTCCTCGATTCCCTGCTGGACAAGGAAGGCGTCATCTATGGCGTGACCACCGGCTACGGCGACTCTTGCGTGGTGGCCGTGCCGTTGCACCACGTCGAGGCCCTGCCCCGTCACCTCTACACCTTCCACGGCTGCGGCCTGGGCAAACTGCTCGATGCCCAAGCCACTCGCGCCGTGCTCGCGGCCCGTTTGCAGTCGCTGTGCCACGGTGTGTCGGGGGTGCGGGTGGAACTGCTGGAACGGCTCCAGGCCTTCCTCAAGCACGACATCCTGCCGCTGATTCCGGAAGAAGGTTCGGTGGGCGCCAGTGGCGATTTGACTCCGCTGTCCTACGTCGCCGCTACGTTGTCCGGTGAACGGGAAGTCATGTTCCGTGGCGAACGCCGCCTGGCCGCCGACGTGCACCGCGAGCTGGGCTGGACGCCGCTGGTGCTGCGGCCAAAGGAAGCCTTGGCGCTGATGAACGGCACCGCCGTGATGACCGGCCTGGCCTGCCTGGCCTTTGCCCGCGCCGACTACCTGCTGCAACTGGCGACCCGCATCACCGCGCTGAACGTGGTCGCCCTGCAAGGCAATCCGGAACACTTCGACGAACGCCTGTTCGCCGCCAAGCCGCACCCGGGGCAGATGCAGGTCGCCGCGTGGCTGCGCAAGGACCTGGCCATCGACGCCCCGACCGCGCCGTTGCATCGTCTGCAAGATCGCTACTCCCTGCGCTGCGCCCCGCATGTGCTCGGGGTATTGGCCGACAGCCTGGGCTGGCTGCGCGGGTTCATCGAAACCGAACTCAACAGCGCCAACGACAATCCGATCATCGACGCCGAAGCCGAGCGCGTGCTCCACGGCGGGCACTTCTACGGTGGGCACATCGCCTTCGCCATGGACAGCCTGAAGAATCTGGTGGCCAACGTCGCCGATCTGCTGGATCGCCAGCTCGCCCTGCTGGTGGACGAGCGATACAACCATGGCCTGCCTAGCAACCTGTCCGGCGCCAGCGCCGAGCGGGCGATGCTCAACCACGGCTTCAAGGCCGTGCAGATCGGCACCAGCGCCTGGACCGCCGAAGCCCTGAAAAACACGATGCCGGCCAGCGTGTTCTCGCGCTCTACCGAGTGCCACAACCAAGACAAGGTGAGCATGGGCACCATCGCTGCCCGAGACGCGATCCGCGTGCTGGAGCTGACCGAACAGGTCGCCGCCGCCACCTTGTTGGCCGCCAACCAGGGCGTCTGGCTGCGCAGCCGCGCCGAAGACGCACGACCGCTGCCACCGGCCCTGGCCACGATGCACGAGCAACTGACCGAGGATTTCCCGCCGGTCATTGAAGACCGCGCCCTGGAAGGCGAACTGCGCCTGTGCCTGCAACGCATTGCCGAACAACACTGGAGGCTGCATGCGTAG	MTMPTLEPVTFGERPLRIEDVLALANRQAPTQLQDDPTFRQRIAKGAQFLDSLLDKEGVIYGVTTGYGDSCVVAVPLHHVEALPRHLYTFHGCGLGKLLDAQATRAVLAARLQSLCHGVSGVRVELLERLQAFLKHDILPLIPEEGSVGASGDLTPLSYVAATLSGEREVMFRGERRLAADVHRELGWTPLVLRPKEALALMNGTAVMTGLACLAFARADYLLQLATRITALNVVALQGNPEHFDERLFAAKPHPGQMQVAAWLRKDLAIDAPTAPLHRLQDRYSLRCAPHVLGVLADSLGWLRGFIETELNSANDNPIIDAEAERVLHGGHFYGGHIAFAMDSLKNLVANVADLLDRQLALLVDERYNHGLPSNLSGASAERAMLNHGFKAVQIGTSAWTAEALKNTMPASVFSRSTECHNQDKVSMGTIAARDAIRVLELTEQVAAATLLAANQGVWLRSRAEDARPLPPALATMHEQLTEDFPPVIEDRALEGELRLCLQRIAEQHWRLHA	PGPT0020230_1534	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020230-hutH-K01745	NA	NA
D1-36_00448	939			hypothetical protein	ATGAACACTGACCAGCAGCACTGGGCGGATCGCCAGGAGCGCGGTAGTTTCTGGCTGATGAAACTCACCGCGTTTGCCGCCAAGGTGTTGGGCCGTCGGCTGCTGACACCGGTGCTGTACGGCATCGTCCTGTACTTCTTCGTTTTTGGTCGCAGCGCCCGGCAGGCGGCCTGGCAGTATCAGCAGCGCCTCGCCGACTGGAGCGGCCGCCCCGAGTTGCGCCCGACCCACCGTCGAGTCTTTGGGCAATTCATGGCCTTCGCCGACTCCCTGCTGGACAAGCTCGACGTCTGGAACGGCAAGCTAAGCATCGAGCAGATCGAAATCGTCGACCCGGCGCTGCTGCGCAACCATTTGCGCGACACGCGCGGGCAGATGTTGGTCGGCGCACACCTGGGCAACCTGGAAATGTGCCGAGCCCTGGCCGAACTGGGTGAAAAGGTCACCATGAACGTGCTGGTGCATACCAAGCACGCCGAGCAATTCAATCGCTTGCTGGGCGAAGCCGGCGCCACGCACTTGCGGCTGATCCAAGTCAGCGAGCTAAACCCGGTGATCATGCTGCAACTGAGCGAACGCCTGGAGCGCGGCGAGTGGCTGGCGATCGCTGGCGATCGCGTACCGCTGCATGGCGGGCGCAGCGTGACGGTGGACTTCATGGGGTATCCGGCGGCATTCCCGCAAGGCCCCTGGCTGTTGGCCGGCCTGCTGAAATGCCCGGTCAACCTGCTGATGTGTCTCAAGCACGAAGGACACTATCGGGTCACCCTCGAACCGTTCGCCGATGCCGTGGTGTGGAAGCGCAACGAACGCGACCACGTGATTGCCCATTGGGCCGGCTTGTACGCCGAACGCCTGTCGCAATACTGCCTCCAGGGGCCACAACAGTGGTTCAACTTTTACCCTTTCTGGAAGACCGATGACGATGCCCACTCTTGA	MNTDQQHWADRQERGSFWLMKLTAFAAKVLGRRLLTPVLYGIVLYFFVFGRSARQAAWQYQQRLADWSGRPELRPTHRRVFGQFMAFADSLLDKLDVWNGKLSIEQIEIVDPALLRNHLRDTRGQMLVGAHLGNLEMCRALAELGEKVTMNVLVHTKHAEQFNRLLGEAGATHLRLIQVSELNPVIMLQLSERLERGEWLAIAGDRVPLHGGRSVTVDFMGYPAAFPQGPWLLAGLLKCPVNLLMCLKHEGHYRVTLEPFADAVVWKRNERDHVIAHWAGLYAERLSQYCLQGPQQWFNFYPFWKTDDDAHS				NA	NA	NA	NA	NA
D1-36_00449	735			hypothetical protein	ATGCATAACCCCTGCGCCGTCATCCCGGTCTACAACCACGAAACCGCCATCGCAACGGTGGTCCACGCATTGCTCGGCAACGGCTTGCCCTGCGTGCTGGTGGACGATGCCAGTAGCGCGGCTTGCGCGGCGGTGCTCGAACAATTGGCTGAAAACGAACGGGTTCACCTGGTGCGGCTGGCCGTCAATCAGGGCAAGGGCGGCGCGGTGATGACCGGGCTGCGGGAGGCCGCGCGCCTGGGTTTCAGTCACGCCTTGCAGGTGGACGCCGACGGGCAGCACGACCTGGGCGACGTACGCACCTTCATCGAACAATCCAGCGCTCATCCCGACGCGCTGATCTGCGGTTACCCCCTGTACGACGCCAGCGTGCCGAAAGGCCGCCTTTACGCACGCTACCTGACCCACGTGATGGTCTGGATCAACAGCCTGTCCCTGCAGATCCGCGATTCGATGTGCGGTTTCCGGGTCTATCCCCTGGCACCGACCCTGGCACTGATCGACTCGGCAAACATCGGCAAACGCATGGATTTCGACTCGGACATCCTCGTGCGCCTGTCCTGGCGCAACCAGCCGATGCGCTGGCTGCGCACGCGGGTCCATTACCCTCTGGACGGGGTCTCGCACTTTCGCCTGTTCCACGACAATGTGCTGATTTCTCGCATGCACACCCGGCTGTTCTTCGGCATGCTGGTGCGCTTGCCGGTGATTCTCTGGCAACGGTGGCGCCCATGA	MHNPCAVIPVYNHETAIATVVHALLGNGLPCVLVDDASSAACAAVLEQLAENERVHLVRLAVNQGKGGAVMTGLREAARLGFSHALQVDADGQHDLGDVRTFIEQSSAHPDALICGYPLYDASVPKGRLYARYLTHVMVWINSLSLQIRDSMCGFRVYPLAPTLALIDSANIGKRMDFDSDILVRLSWRNQPMRWLRTRVHYPLDGVSHFRLFHDNVLISRMHTRLFFGMLVRLPVILWQRWRP	PGPT0023090_27	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0023090-ppgS-K22907	NA	NA
D1-36_00450	1683	dltA_1		D-alanine--D-alanyl carrier protein ligase	ATGAATTGGATAACGCTTGAGCAGATACTGCTCGAGGCCCAGCCAGGCCGCGCGGTAGCGGTCGGGCCGGGACTGGACCACGCGCAACTGCGCACAGACGCGCTCAGCCTGGCCGCCGGATTGCAAGCCCGGGGCATCCGGCGCCTGGCCGTGCATCTGGATGATGCAGCGGACCTGGCGGTTGCCCTGCTCGGCGCCTGGCGCGCCGGCGCGCGCGTGCTGCTGCCCGCTGACCTGCAACCGCAGACCCGCCAGCGCTGGTCGGCCGATGTCGACTTGTGGCTGACCGACCTGCCCGGCGACACCCAACCCAATGACCTGCGACAGGCTCCGCTGGAAGCCGCTGAGCTGGATCTTGATCAATGCTGGCTGGCCCTGTGCACCTCCGGTTCCAGTGGCGAGCCCAAACGCATCGAAAAAACCCTGCGCCAGCTGAGCAATGAAGTCCAGGCGCTGGAGCAGTTGTGGGGTGCCGACCTTGGCCCGGACGCCTGCATGATCGGCAGCGTCGCCGCCCAGCATATCTACGGCTTGCTGTTCCGGGTGCTGTGGCCGCTGTGCGCCGGGCGCACCTTCGTTCGTCGGCAACTGGCCTTCCCGGAGGATATGCAGCGCGCCAGTCGCGAGCATCCGGCGTTTGCCTGGGTCGCGAGCCCGGCGCTGCTCAAGCGCATGGGCGATAACCTCGACTGGCCAGCCTTGGGCAGCGTGCGCCGAGTGTTTTCCTCTGGGGGCGCCTTGCCTGCCGACGCGGCCCAGAGTCTCGAACAACGCCTGGGACAATGGCCGACGGAAATTTTCGGCAGCTCGGAAACCGGCGGCATTGCCTGGCGCCAGGGCGGCGACTTGTGGCAACCGTTCGCCGGTGTCGAGCTGAGCCAGGACAGTGACGGCGCCTTGCTGATCGCCTCGCCTTATTTGCCGGCCGGTCATGTGGAACACACCGCCGACGCGGCGCGGATCGCGGCGGATGGGCGCTTCCAATTGCTCGGCCGCTTGGACCGCATCGTCAAGCTCGAAGAAAAGCGCATCTCGCTGCCCATGCTGGAACAGGCGTTGACGGCCCACGAATGGGTCAGCGATGCACGGCTGGGCGTCGTGCAGGAGAACCGAGCCTCCCTCGGTGCCCTGCTGGCGCTCAGCGAAGCCGGCTTGCTGGCCCTGCGCAATCTGGGCCGGCGGGCCGTGACCCAAGCCCTGCGCCAGCACTTGAGCGGGCACTGTGAAACCTTGGCGCTGCCCCGGCGCTGGCGCTGGCTGCGGCAACTGCCGTTAAACGCACAGGGCAAGCTGCCCCAGGCCGAAGTCGAAGCCGTGTTGATGGCGCCGCGTCCAAAAGCCCCTGAGGTGCTTGAGCAAATTGAAACCGACGGCGAATGGAGCCTGCGCCTGGCGGTGCCCCCCGACCTTGCATACTTCAGCGGCCATTTTCCCACCGCGCCGGTCCTTCCGGGGGTGGTGCAAGTCGATTGGGCCTTGAACCTGGGCCGTCGACTGCTGGACTTGCCGCCCCGGTTCGTCGGCATGGAGGTGCTGAAATTCCAGCAACTGGTGCGACCCGGTGATGAAATCCAGCTGCACCTGCGCTTCGATCGTGAGCGCGGCAAGTTGTACTTTGCCTTTCGCAATGACACAGCGGCGTGCTCCAGTGGGCGGATTGTGTTGGGGGTGGCCGATGACTAA	MNWITLEQILLEAQPGRAVAVGPGLDHAQLRTDALSLAAGLQARGIRRLAVHLDDAADLAVALLGAWRAGARVLLPADLQPQTRQRWSADVDLWLTDLPGDTQPNDLRQAPLEAAELDLDQCWLALCTSGSSGEPKRIEKTLRQLSNEVQALEQLWGADLGPDACMIGSVAAQHIYGLLFRVLWPLCAGRTFVRRQLAFPEDMQRASREHPAFAWVASPALLKRMGDNLDWPALGSVRRVFSSGGALPADAAQSLEQRLGQWPTEIFGSSETGGIAWRQGGDLWQPFAGVELSQDSDGALLIASPYLPAGHVEHTADAARIAADGRFQLLGRLDRIVKLEEKRISLPMLEQALTAHEWVSDARLGVVQENRASLGALLALSEAGLLALRNLGRRAVTQALRQHLSGHCETLALPRRWRWLRQLPLNAQGKLPQAEVEAVLMAPRPKAPEVLEQIETDGEWSLRLAVPPDLAYFSGHFPTAPVLPGVVQVDWALNLGRRLLDLPPRFVGMEVLKFQQLVRPGDEIQLHLRFDRERGKLYFAFRNDTAACSSGRIVLGVADD				NA	NA	NA	NA	NA
D1-36_00451	546			hypothetical protein	ATGAGCCGGCTGATTGGCCTCGGCCTGCTGCTGGCGGGCCTGCTATACCCTTTTGCGGTGTATTTCGGCATGGAGCACTTCGCCCCCTGGCAGTTCGGGCTTCTATTGGGCTGCCTGTGGCTGGCCCGGGCGTTCCTCGGCAAGGCCGGGCCCGGCAAACGCTGGATGGCGGTCACGGCGATCTTTTTTTGCGTGTTGCTCGCGGTATTCGACAGCCCGCTCTTGCTGCGCTGGTATCCGGTGTTGATCAGCGCGTTCATGCTCGCGCTGTTCACGCTGAGCCTGAAGTACGGCCCGCCGATCATCGAGCGTCTGGCCCGCCTGCGCGAACCACGGTTGCCGGCCAAGGCGGTGGTTTATACCCGCCAGGTCACGGTGGCCTGGAGTGTGTTTTTCCTGTGTAACGGTTTGCTCGCCGCCGCCCTGACCCTTTGGGCGCCGCTGAGCTGGTGGATGTTGTACACCGGCCTGATTTCCTACGGATTGATGGGGCTGCTGTTTGCCATTGAATGGCTCATACGACAACGGGTAAGAGGCCGCCCATGA	MSRLIGLGLLLAGLLYPFAVYFGMEHFAPWQFGLLLGCLWLARAFLGKAGPGKRWMAVTAIFFCVLLAVFDSPLLLRWYPVLISAFMLALFTLSLKYGPPIIERLARLREPRLPAKAVVYTRQVTVAWSVFFLCNGLLAAALTLWAPLSWWMLYTGLISYGLMGLLFAIEWLIRQRVRGRP				NA	NA	NA	NA	NA
D1-36_00452	255	acpP_1	COG0236	Acyl carrier protein	ATGCAAACTCGTGACGATATTTTCAACACCCTGCGCAATGCCCTGGTCGAGCTCTTCGAGCTGGACCCTGAGCGTGTAACGCTGGAGTCGAACCTGTATCAGGATCTGGAAATCGACAGCATCGATGCAGTCGACCTGATCGACCACATCAAGCGCCAGACCGGCAAGAAAATCGCCGCTGAAGAATTCAAATCGGTGCGCACCGTCAACGATGTAGTCGAGGCGGTCTATCGACTGGTCCAGCCGGCCGCATGA	MQTRDDIFNTLRNALVELFELDPERVTLESNLYQDLEIDSIDAVDLIDHIKRQTGKKIAAEEFKSVRTVNDVVEAVYRLVQPAA	PGPT0011375_2984	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0011375-acpP-K02078	NA	NA
D1-36_00453	258	acpP_2		Acyl carrier protein	ATGAGCGATCTGCACCGTGACATCAAACAACTGATCATCGAGGCCCTCGGCCTGGAGGACATCGGTATCGACGACATCGGCGACGATCAGATCCTGTTCGGCGACGGCCTTGGCCTGGACTCGGTGGATGCCTTGGAGCTTGGCCTGGCGATCCAGAAAAAATATGGCATCAAGATCGACGCCGATGCCAAGGACACCCGTAACCATTTCAGCAACGTGGCAAGCCTTGCGGCCTTCGTCACTGCAAAAAGCGCCTGA	MSDLHRDIKQLIIEALGLEDIGIDDIGDDQILFGDGLGLDSVDALELGLAIQKKYGIKIDADAKDTRNHFSNVASLAAFVTAKSA	PGPT0011375_2501	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0011375-acpP-K02078	NA	NA
D1-36_00454	810			hypothetical protein	ATGGACCTGGCAACGCAACCGGTGACCAGTAAACATCGCGACGCCTACTACTGGCGCTTGTTCGCGACCGCCGCAAGCTTCGCTCTCTTCGGGCTGGGTGGGCTGTGCCTGCGGTTGCTGGTGTTTCCGTTGCTCAACGCGCTGCCCGGCGACTCGCAGACCCATCGGCAGCGAGCCCGTAGAACAGTCGGGCGCCTGTTCTGGTTCTTCATTCGATTCATGGCCCGCACCGGTGTGCTCACCTATCAGATCGATGGCGCGGAGAAACTCGGCCGCCCGGGGCAGATGATCATCGCCAACCACCCGTCGCTGATCGACGTGGTGTTCCTGATCGGGCTGGTGCGCGACGCCAACTGCGTGGTCAAGCAAAGCCTGTGGGACAACCCTTTCACCCGTGGCCCACTGCGTTCGACCCAATACATCAGCAACGACGGCAGCATGGACATGCTCGATGCCGCCAGCAACGCCCTGCAGGATGGCCAATGCCTGATTGTTTTTCCCGAAGGCACGCGCACCCAGCCGGGCCAAGCGCCGGCCTTTCATCGAGGCGCCGCCGCCATTGCCCTGCGGGGTGCGAAAATCCTCACACCGGTGACGATCAAGGTCAGCCCCACGACCTTGACCAAGGCCGAGCCCTGGTACCGCATCCCCCTGCGCCGCGTGCACTTCAGTTTTCGCGTCGGTGCCGATATAGACCCACAGGCTTTCGCCGCGCTGGGCCCCGCGCCACAGGCTTCACGCCGGCTTAACGATTATTTGCATCACTATTTCATCAAGGAGCTCGCCGAAGATGAGCGATCTGCACCGTGA	MDLATQPVTSKHRDAYYWRLFATAASFALFGLGGLCLRLLVFPLLNALPGDSQTHRQRARRTVGRLFWFFIRFMARTGVLTYQIDGAEKLGRPGQMIIANHPSLIDVVFLIGLVRDANCVVKQSLWDNPFTRGPLRSTQYISNDGSMDMLDAASNALQDGQCLIVFPEGTRTQPGQAPAFHRGAAAIALRGAKILTPVTIKVSPTTLTKAEPWYRIPLRRVHFSFRVGADIDPQAFAALGPAPQASRRLNDYLHHYFIKELAEDERSAP				NA	NA	NA	NA	NA
D1-36_00455	789			hypothetical protein	ATGCAGGGTTGGACGCGGGTCAAACCACTGAACCGTGACAATAAAAGCCCGCAGGGGTGGGATGAGTCTGTGATCAATTTCAATATCGCCCAATGGCGCGCGTGGGCCCCTGGGCTCGAAAGCGTGGACGATTGGCAGGCATGGAGCCGACAACCGGTCGTGCCGCCCGTCAGCGATGCGGCCCCTGACGTGTCGTTCCTGCCCGCCATGCAACGCCGACGCCTCAGCCGCCTGGCCCGCATGGCCTTCAGTGTCGCCTGGCCGCTGGCCGAGGGGCGACCGGACCTACCGTTGGTCTTTATTTCCCGCCATGGCGAAACCCCGCGCACTTTTGAGATTCTCAAGGACCTGGCCGGGGATCAACCGCTGTCTCCTACCCAGTTCAGCCTGTCGGTGCACAACGCGGTGATTGGCTTGTGGTCGATCATGCGCGGCGAAACCAGCGAGATGACGGCCCTGGCCGCGACGGGCGATGGCCTTGAACACGGCATGCTGGAGGCCGCCGCCTTGCTCGACGAGGGCACGCCAGCGGTGTTGCTGGTCATCACCGAAGAGCAACCGCCCAGCGTCTACGCGCCTTGGGTCGACGACGTACCGTTTCCCTACGCAGTGGGGCTGTTGCTGACCCGTGGCGACGACTGGCAACTGCAATTAGCCAATCCGCCGGCCCCGCTGCCGGTCAGCGACTGGCCCCATGCCCTGGATCTGTTGCGTACGCTGCTGGGCAACCAACTCACCTGCCAACATGCCTGGAAGAATCGTCTATGGACCTGGCAACGCAACCGGTGA	MQGWTRVKPLNRDNKSPQGWDESVINFNIAQWRAWAPGLESVDDWQAWSRQPVVPPVSDAAPDVSFLPAMQRRRLSRLARMAFSVAWPLAEGRPDLPLVFISRHGETPRTFEILKDLAGDQPLSPTQFSLSVHNAVIGLWSIMRGETSEMTALAATGDGLEHGMLEAAALLDEGTPAVLLVITEEQPPSVYAPWVDDVPFPYAVGLLLTRGDDWQLQLANPPAPLPVSDWPHALDLLRTLLGNQLTCQHAWKNRLWTWQRNR				NA	NA	NA	NA	NA
D1-36_00456	771	soj_1	COG1192	Sporulation initiation inhibitor protein Soj	ATGCGGCGTGTGGTGTTCAATCAGAAAGGTGGCGTAGGCAAGTCCAGCATCGCCTGTAATCTGGCGGCGGTCAGCGCCAGCGAGGGGTATCGCACGCTATTGGTCGACCTGGATGCCCAGGCCAACTCCACTCAATACCTGACCGGCTTGACCGGCGATGACATTCCCGTGGGCATCGCGGATTTCTTCAAGCAGACCCTGTCGTCGGGGCCTTTCTCGAAAAAGAACAGGGTCGATATCTACGAAACGCCCTTCGACAACCTGCACGTCATCACGGCCACCGCAGAACTGACCGATCTGCAGCCCAAGCTCGAGGCAAAACACAAGATCAACAAGCTACGCAAGCTGCTCGAAGAGCTGGACGAGGATTACGACCGGATCTATCTGGATACTCCGCCGGCCCTCAACTTCTACGCGGTTTCAGCGTTGATCGCGGCAGATCGGGTATTGATTCCTTTCGACTGTGACAGTTTCTCCCGCCAGGCACTGTATGGCCTGCTGTCGGAAATCGCCGAGCTCAAGGACGATCACAATGAAGAACTGGAAATCGAAGGCATTGTCGTCAACCAGTTCCAGGCCCGCGCCAGCCTGCCCCAGCAGATACTCGACGAATTGATCGCCGAAGGCTTGCCGGTGCTGCCCGTTTACCTGAGCAGCTCCGTGCGCATGCGTGAGTCTCACCAGGCGAGCCTGCCACTGATCCACCTGGACCCACGGCATAAACTGACCCAGCAGTTCGTGGAGTTGCATGGGTTGCTGGAGAACGCCTGA	MRRVVFNQKGGVGKSSIACNLAAVSASEGYRTLLVDLDAQANSTQYLTGLTGDDIPVGIADFFKQTLSSGPFSKKNRVDIYETPFDNLHVITATAELTDLQPKLEAKHKINKLRKLLEELDEDYDRIYLDTPPALNFYAVSALIAADRVLIPFDCDSFSRQALYGLLSEIAELKDDHNEELEIEGIVVNQFQARASLPQQILDELIAEGLPVLPVYLSSSVRMRESHQASLPLIHLDPRHKLTQQFVELHGLLENA				NA	NA	NA	NA	NA
D1-36_00457	423	trxC	COG0526	Thioredoxin 2	ATGCTCATCCCGTGCCCCCATTGCAACGGGCTCAACCGCATACCCGCCGAACGCCTGGGCGACCAGCCCAAGTGCGGGCGCTGCAAGGCCCAGGTGTTATCGAGCAAACCCTTCGAACTCAAGCAAGGCGACTACGCCAGCCAGATCAAGGGCGACCTGCCGTTATTGATAGATGTCTGGGCGGATTGGTGCGGCCCGTGCAAATCCTTCGCGCCAGTGTTCGAACAGGCCGCCGCGCAGCTGGCCGGCAAGTGCCGGTTGGCCAAGCTCGATAGCGAAGCCAATCAACAATTGTCGGCGCAGTTGGGGATTCGCTCGATACCCAGCCTGATCTTGTTCAAGGACGGCCGAGAAGTAGCACGCCAAAGCGGCGCGTTCCCCTTGCCGCAGTTGATGAGCTGGCTGCGCGGCCAGGGGATTTGA	MLIPCPHCNGLNRIPAERLGDQPKCGRCKAQVLSSKPFELKQGDYASQIKGDLPLLIDVWADWCGPCKSFAPVFEQAAAQLAGKCRLAKLDSEANQQLSAQLGIRSIPSLILFKDGREVARQSGAFPLPQLMSWLRGQGI	PGPT0013061_936	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013061-trxC-K03672	NA	NA
D1-36_00458	627	ycaC_1	COG1335	putative hydrolase YcaC	ATGACCACTTCCTACAACCGTCTCGACAAAGATAACGCCGCCGTTCTGCTGGTGGACCACCAGGCTGGCCTGCTGTCGCTGGTACGCGACATCGACCCGGACCGTTTCAAGAACAACGTGCTGGCCCTGGCGGACCTGGCCAAGTACTTCGAACTGCCGACCATCCTGACCACAAGCTTCGAAACCGGCCCCAACGGCCCGCTGGTACCCGAGCTCAAGGCACTGTTCCCGGACGCGCCGTACATTGCCCGCCCTGGCCAGATCAACGCCTGGGACAACGAAGACTTCGTCAAGGCAATCAAGGCCACCGGCAAGAAGCAACTGATCATCGCCGGCGTAGTGACTGAAGTTTGCGTAGCTTTCCCAGCACTGTCCGCGCTGGCCGAAGGTTTCGATGTGTTCGTGGTCACCGATGCCTCCGGCACGTTCAACGAACTGACCCGCCAATCGGCCTGGGACCGCATGTCCTCCTCGGGTGCGCAATTGATGACCTGGTTCGGCCTGGCCTGTGAACTGCACCGCGACTGGCGCAACGACGTGGAAGGCCTGGCAACCTTGTTCTCCAACCACATCCCGGATTACCGCAACCTGATGACCAGCTACAACACGCTGACCCAGGCCAAATAA	MTTSYNRLDKDNAAVLLVDHQAGLLSLVRDIDPDRFKNNVLALADLAKYFELPTILTTSFETGPNGPLVPELKALFPDAPYIARPGQINAWDNEDFVKAIKATGKKQLIIAGVVTEVCVAFPALSALAEGFDVFVVTDASGTFNELTRQSAWDRMSSSGAQLMTWFGLACELHRDWRNDVEGLATLFSNHIPDYRNLMTSYNTLTQAK				NA	NA	NA	NA	NA
D1-36_00459	870	dmlR_1		HTH-type transcriptional regulator DmlR	GTGGTTGAGCACCGTGGATTCGCCGCAGCGGGCCGGGCGCTGGACATACCCAAGTCAAAGCTCAGCCGGCGTATCGCCCAGTTGGAAGAGCGGCTAGGGGTGCGCTTGCTCCATCGCACAAGCCGGCATTGCACGTTGACGGAGATCGGCCAGGCCTATTACCAGCGCTGCCTGGCGATGCGTGTCGAGGCCGAGAGCGCCGCCGAGGTGATCGAGCGCAACCGCTCCGAGCCCCAGGGCCTGGTGCGCATCAGTTGCCCGACGGCGCTGCTCAACAGCTGGGTCGGGCCGATGCTGACCCGCTACATGCTCAAATATCCGCGGGTGGAGTTGTTCATCGAGAGCACCAACCGCCGAGTCGACCTGATCCACGAGGGGTTCGATATAGCGCTGCGGGTGCGCTTTCCGCCGCTGGAAAACACCGACATGGTCATGAAGGTACTGAGCAACAGCACCCAATGCCTGGTGGGCAGCCCTGCATTTGTAGAGCGATTGTCTTCGCCGGCTTCACCGGCGGACCTTAACGGCCTGCCCAGCGTGCATTGGGGCGGTGCGCAACGGGAGTATCAGTGGGAGTTGTTCGGGCCGGATGGCACCCGAGCGTTGATCCGACATGAGCCGCGCATGGTCACCGATGACCTGCTGGCCCTGCGGCACGCGGTGCTGGCTGGCATTGGTGTCGCTCACCTGCCGACCGTGGTGGTGCGCGAAGACATCGCCGCCGGGCGTCTGGTGGAGTTGGTCCCCGGCTGGACGCCGAAATGCGGGATTGTTCATGCAATCTTTGCGTCGCGGCGTGGGTTGCTACCGTCGGTGCGCACGTTGATCGATTTCCTGGCCGAGGAATTCAGCCACAGTGATATGGCTTAG	MVEHRGFAAAGRALDIPKSKLSRRIAQLEERLGVRLLHRTSRHCTLTEIGQAYYQRCLAMRVEAESAAEVIERNRSEPQGLVRISCPTALLNSWVGPMLTRYMLKYPRVELFIESTNRRVDLIHEGFDIALRVRFPPLENTDMVMKVLSNSTQCLVGSPAFVERLSSPASPADLNGLPSVHWGGAQREYQWELFGPDGTRALIRHEPRMVTDDLLALRHAVLAGIGVAHLPTVVVREDIAAGRLVELVPGWTPKCGIVHAIFASRRGLLPSVRTLIDFLAEEFSHSDMA				NA	NA	NA	NA	NA
D1-36_00460	267			hypothetical protein	ATGAGCATCCCTCAAGACCCAACCACCCCCAAGACACTGGACAACCCCAACGATGATGGCTTCGTCCTGGGCACCGCTGGCCGCGACGAAGACCCCAACGCCGCCCCGGCCTATGCCGTTGACAGTCGTCACGATCGGGACGAATTGACCCCGGATGACGCGCGTGGCATGCCCGGTTATCCGGAGGAAAAACCGGCAGCGCCGGCTGGGGAAGAGCCAGAATCAGGCATCGAGACGCCCGAACAGGGGAACGATAAGGCGGGATGA	MSIPQDPTTPKTLDNPNDDGFVLGTAGRDEDPNAAPAYAVDSRHDRDELTPDDARGMPGYPEEKPAAPAGEEPESGIETPEQGNDKAG				NA	NA	NA	NA	NA
D1-36_00461	1464	selO	COG0397	Protein adenylyltransferase SelO	ATGAAAACGCTGGAAACGCTGACCTTCGATAACCGCTTCGCCCGCCTGGGCGACGGTTTCTCGGCCCATGTGCTGCCCGAGCCCATCGACAACCCGCGGCTGGTGGTTGCCAGCCCGGCGGCCATGGCGCTGCTGGACCTGGAGCCGGCAGAAGCCGAGACACCGCTGTTCGCCGAGATCTTTGGCGGCCACAAGCTGTGGGCCGAAACCGAGCCCCGGGCGATGGTGTACTCAGGGCATCAATTCGGTCACTACAACCCGCAACTGGGCGACGGCCGCGGGTTGCTGCTGGGCGAGGTGTACAACGAGGCCGGCGAGCACTGGGACCTGCACCTCAAGGGCGCCGGCCAGACGCCGTTCTCCCGGATGGGCGACGGGCGCGCGGTGCTGCGCTCTTCGATTCGCGAATTCCTTGCCTCCGAGGCCCTGCACGCCTTGGGCATCCCCACCACCCGCGCGTTGTGCGTGATCGGCTCCGACACCCCGGTGTGGCGCGAAAAGCAGGAGCGCGCCGCCATGGTGCTGCGCCTGGCCCCCAGCCATGTGCGCTTCGGGCACTTCGAATATTTCTACTACACCAAGAAGCCGGAGCTGCATGCTGCCTTGGCCGAGCACGTGCTGAACCTGCATTTTCCGCAATGCCGGGAGCAGCCCGAGCCCTACCTGGCGATGTACCGCGAGATCGTCGAGCGCAACGCCGAACTGATTGCGAAATGGCAGGCCTATGGTTTCTGCCATGGCGTGATGAACACCGACAACATGTCGATCCTGGGCATCACCTTCGATTTCGGGCCGTTCGCCTTCCTTGATGACTTCGACGCCAACTTCATCTGCAACCATTCCGATGACCAGGGCCGTTACTCGTTCAGCAACCAGATGCCCATCGGCCAGTGGAACCTCAGCGCCCTCGCCCAAGCCCTGACGCCTTTTATCAGCGTCGATGCCCTGCGCGAGACCCTTGGCTTGTACCTTCCCCTGTACCAGGCCCACTACCTGGACCTGATGCGCCGCCGCCTCGGCCTGACCGTCGCCGAAGAAGAGGACCAGAAACTGGTGGAGCGCCTGCTGCAACTGATGCAGAACAGCGGCGTCGACTACAGCCTGTTCTTCCGCCGGCTGGGCGACCAGGCTCCGGAACAAGCCGTTGCCGCCTTGCGCGACGACTTCGTCGATCTCAAGGGTTTCGATGCCTGGGCCGAGCTGTACGTCGCCCGCGTCAACCGCGAGGGCCCGGTCGACCAGGACCAGCGCCGCGTTCGCATGCACGCCGTCAATCCGCTCTACGTGCTGCGCAACTACCTGGCCCAGAAAGCCATCGACGCCGCCGAGTCAGGCGATTACGAAGAAGTCCGCCGCCTGCACAGCGTGCTGAGCAATCCTTTTGAAGAACAATCGGGGATGGGCAGCTACGCCGAGCGGCCGCCGGAATGGGGCAAGCATCTGGAGATCAGTTGCTCGTCGTAA	MKTLETLTFDNRFARLGDGFSAHVLPEPIDNPRLVVASPAAMALLDLEPAEAETPLFAEIFGGHKLWAETEPRAMVYSGHQFGHYNPQLGDGRGLLLGEVYNEAGEHWDLHLKGAGQTPFSRMGDGRAVLRSSIREFLASEALHALGIPTTRALCVIGSDTPVWREKQERAAMVLRLAPSHVRFGHFEYFYYTKKPELHAALAEHVLNLHFPQCREQPEPYLAMYREIVERNAELIAKWQAYGFCHGVMNTDNMSILGITFDFGPFAFLDDFDANFICNHSDDQGRYSFSNQMPIGQWNLSALAQALTPFISVDALRETLGLYLPLYQAHYLDLMRRRLGLTVAEEEDQKLVERLLQLMQNSGVDYSLFFRRLGDQAPEQAVAALRDDFVDLKGFDAWAELYVARVNREGPVDQDQRRVRMHAVNPLYVLRNYLAQKAIDAAESGDYEEVRRLHSVLSNPFEEQSGMGSYAERPPEWGKHLEISCSS				NA	NA	NA	NA	NA
D1-36_00462	3363	mscK	COG3264	Mechanosensitive channel MscK	ATGCCTACCCTGCGCTCCTTATTCGCCATCGCCCTGCTCGGCCTGGGTCTTTCCATCTGCACGGTCCAGGCTGCTGAGCCTCCGACCAGCACCTCGGTCCAGGCCAGCCTGGACAAGATCGCCGACCGCAAGCTCCCGGAAGCCGACCAGAAAGCCTTGCAGGCCGTGTTGCAAAACACCCTGACCCAGTTGACCAACAAGGCCGACTACGAACAGAAACTGCTCGCCCTCAAGCAGCAACTCGCCAACGCGCCCAAACAGAACATCGAGAACCAGCGCGAACTGGCGCGGCTCAAGGGCACCAATGTGGTGCCGGTGGCGCAACGCTACGCCAACCTGCCGATTCCCCAGCTAGAGCAAATGCTGACGGAACGCTCTACCCAGCAGAGCGATCTGCAAAAGGCCCTGGCCGACGCCAACAGCCTGGTCATCACCGCCCAGACCCGCCCCGAGCGCGCCCAGGCGGAAATCTCCGCCAGCCAGACCCGGATCCAGCAGATCAACGCCATCCTCAAAGCCGGACGGGATGCGGGCAAGGCGCTGAGCGCCGAGCAGCGCGACCAGCTCAATGCGGAACTGGCGGCCCTCAACGCGCTGATTCCACTGCGCCGCCAGGAACTGGCCGGCAACAGCCAACTGCAAGACCTGGGCAATAGCCAGCACGATCTGCTTTCGGAAAAGATCGACCGCATGGAGCGGGAAATCCAGGACCTGCAGAACCTGATCAACCAGAAACGCCTGGCCCAGTCCCAGGAAACGGTGACGCAGCAATCCATCGAAGCGCAGAAAGCCGGCGGCAGCAGCCTGCTGGCGACCGAAAGCACGGCCAACCTCAAGCTTTCCGATTATCTGCTCAAGAGCACCGACCGCCTCAACGAGGTCACCCAGCAGAACCTGCAGACCAAGCAACTGCTGGACAGCGTCACCCAGACCGATGCCGCCCTGGACGAGCAGATCAGCGTGCTCAAGGGCAGCCTGCTGCTCTCCAAGATTCTTTACAAGCAGCGCCAGACCTTGCCGCGCCTGAAGCTGGACCAGAACCTGGCCGACCAGATCGCCGACATCCGCCTGTATCAGTTCGAAGTCAGCCAGCAACGTGAATTGCTGAACAATCCCGCAGCCTACGTCGACAACCTGCTGGCGTCCCAGCCCTCCGAGCAGGTCACCCCACAGCTGCGCAAGACCCTGCTTGAACTGGCCCTGACCCGGGTCGACCTGCTGGACCGCCTGAACCGTGAATTGAGCGCGGTGCTCAACGAGTCCATCACGCTGCAGCTCAACCAGAAACAACTGCTCAGCACCGCACAGAATCTGCGGGCCACCCTTGAAGAACAGATGTTCTGGATTCCCAGCAACAAACCGCTGGATTTCGAGTGGATGCGTGGCGTGCCGGCCCGCCTGGAAAAACAAGTCGATTCGCTGCCCTGGGCCTCGAGCCTCAGCGAACTGGCTGACGGCCTGACCCAGCGGCCGCTGCTGTTCCTGCCCCTGGCGCTGTTGATCGGCGCGCTGCTGTGGCGCCGCAAGAATCTCTATGCGCGCCTTAACAAGGTTCACCAGGATGTCGGCCACTTCAAGCGCGACAGCCAGTGGCACACACCCCAGGCGATCCTGATCAACATCCTTTTGGCCATGCCGGTGGCGCTGGCGCTTGCCTTGTGCGGCTACGCCTTGCAGATCGACGCCCGCGGCCAGAACACCAACCTCGGCGCGGCCTTGCTACAGATCGGGCAGGCCTGGCTGGTGTTTTACACCGCCTATCGAATCCTCTCGCCAGGCGGCGTTGCCGAGCTGCATTTCCGCTGGGAAAAACCCCAGGTCGAATTTCTCCAGGGCTGGATCCGTCGGCTCGGGCTGGTGGTATTGGCCTTGGTGGCCGTGGTGGCCGTGGCGGAGTTGCAGCCGTCAGCCCTGGCCGATGACGTACTCGGCATGCCGGTGGTGCTGACCTGCTACGCCTCGATGGCCTGGCTACTCAGCCGGCTGTTGCTCAGCAGTCCGACGCACAAGAACACATCGCTGTTCCGCAAGGCCGTCGGCGTGCTGTTCACCGCATTGCCGATCGCGCTGTTCGTCGCCGTCTGCTTCGGCTACTACTACACCGCGCTGAAACTCAGCGACCGCTTGATCAACACGCTGTACCTACTGATGTTCTGGCTGGTGATCGAGGCCACCTTCGTGCGTGGCCTCTCGGTCGCGGCGCGGCGCCTTGCCTACCAGCGTGCCCTGGCCAAGCGCCAGGCGGCCAAGGAGGTCGGCGACGGCGAAGCGGTGGTCGAGGAACCGACCCTGGACATCGAAAAGGTCAACGAACAGTCCCTGCGCCTGATCCGCCTGGCCCTGCTGGGCGGTTTCATGGCCGCGCTGTACTGGGTCTGGTCGGACCTGATCAGTGTGTTCTCCTACCTGGACAACATCACCCTCTACGAATACACCAGCGGCACCGGCGCCAACATGAGCATGGTGCCCATCAGCATCGGCGACATGCTCGGGGCACTGATCATCATCGGTATCACCTTCGCGTTGGCCCGCAACCTGCCGGGCCTGTTGGAAGTGTTCGTGCTGTCGAAGCTGAACCTGGCCCAGGGCAGCGCGTATGCCACCACGACCTTGCTGTCCTACGTGATCGCCGGCGTCGGCTTCGTCACGACGCTGTCCACCCTGGGTGTGAGCTGGGACAAGCTGCAATGGCTGGTGGCGGCGCTGTCGGTAGGCTTGGGCTTCGGCATGCAAGAGATCTTCGCCAACTTCATCTCCGGCATCATGATCCTGTTCGAGCGCCCGGTGCGCATCGGCGACACCATCACCATCGGTAACCTGTCGGGCACCGTGAGCAAGATCCGCATTCGCGCGACCACCATCACCGATTTCGACCGCAAGGACATCATTGTCCCGAACAAGACGTTCATCACCGGGCAGTTGATCAACTGGTCGTTGACCGACACCGTAACCCGGGTGACCCTGAAATTAGGCGTGGACTATGGCTCGGACCTGGACCGGGTGCGCGAGTTGCTGCTCAAGGCCGCTCGCGATAACCCCCGCGTGCTGAAGGAACCGGAGCCGATCGTGTACTTCCTGAACTTCGGTGAAAGCACCCTGGACCATGAGCTGCGCATGCATGTGCGCGACCTCGGTGATCGAAACCCGGTGCTGGACGAGATCAATCGGTTCATCAACCGGGAATTCAAGAAGGAGCACATCAACATCTCCTTCCGGCAGATGGAAATCTACTTGAAGAACCTGCAAGGCCAGGAATACAAGCTCGTGCCTGCCGAGCCTGACAAAAAGACCATCACGCCCGTGCCTTCAACGGTCGCCAGCATCAAGCCGATGCCCGAGCCTCCGCAAGGCACCCTCGACTGA	MPTLRSLFAIALLGLGLSICTVQAAEPPTSTSVQASLDKIADRKLPEADQKALQAVLQNTLTQLTNKADYEQKLLALKQQLANAPKQNIENQRELARLKGTNVVPVAQRYANLPIPQLEQMLTERSTQQSDLQKALADANSLVITAQTRPERAQAEISASQTRIQQINAILKAGRDAGKALSAEQRDQLNAELAALNALIPLRRQELAGNSQLQDLGNSQHDLLSEKIDRMEREIQDLQNLINQKRLAQSQETVTQQSIEAQKAGGSSLLATESTANLKLSDYLLKSTDRLNEVTQQNLQTKQLLDSVTQTDAALDEQISVLKGSLLLSKILYKQRQTLPRLKLDQNLADQIADIRLYQFEVSQQRELLNNPAAYVDNLLASQPSEQVTPQLRKTLLELALTRVDLLDRLNRELSAVLNESITLQLNQKQLLSTAQNLRATLEEQMFWIPSNKPLDFEWMRGVPARLEKQVDSLPWASSLSELADGLTQRPLLFLPLALLIGALLWRRKNLYARLNKVHQDVGHFKRDSQWHTPQAILINILLAMPVALALALCGYALQIDARGQNTNLGAALLQIGQAWLVFYTAYRILSPGGVAELHFRWEKPQVEFLQGWIRRLGLVVLALVAVVAVAELQPSALADDVLGMPVVLTCYASMAWLLSRLLLSSPTHKNTSLFRKAVGVLFTALPIALFVAVCFGYYYTALKLSDRLINTLYLLMFWLVIEATFVRGLSVAARRLAYQRALAKRQAAKEVGDGEAVVEEPTLDIEKVNEQSLRLIRLALLGGFMAALYWVWSDLISVFSYLDNITLYEYTSGTGANMSMVPISIGDMLGALIIIGITFALARNLPGLLEVFVLSKLNLAQGSAYATTTLLSYVIAGVGFVTTLSTLGVSWDKLQWLVAALSVGLGFGMQEIFANFISGIMILFERPVRIGDTITIGNLSGTVSKIRIRATTITDFDRKDIIVPNKTFITGQLINWSLTDTVTRVTLKLGVDYGSDLDRVRELLLKAARDNPRVLKEPEPIVYFLNFGESTLDHELRMHVRDLGDRNPVLDEINRFINREFKKEHINISFRQMEIYLKNLQGQEYKLVPAEPDKKTITPVPSTVASIKPMPEPPQGTLD	PGPT0013825_260	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013825-mscK|kefA|aefA-K05802	NA	NA
D1-36_00463	1743	nhaP2	COG3263	K(+)/H(+) antiporter NhaP2	TTGACCGCGACGACCATCAACAGCCTGTTCTTGATCGGCGCGTTGCTGGTGGGTGCGAGCATTCTGGTGAGTTCTCTTTCGTCGCGCCTGGGCATCCCGATCCTGGTGATCATCCTCGCCGTGGGCATGCTTGCCGGCGTCGACGGCGCCGGTATTCTTTTCGATAACTACGCCACGGCGTATCTGGTGGGCAACCTCGCGTTGGCGGTGATCCTGCTGGACGGTGGGTTGCGCACGCGGGTCTCGAGCTTTCGCGTGGCACTGTGGCCGGCGTTGTCGCTGGCCACTGTGGGCGTGTTGATCACCACCGGGCTGACCGGCATGGCCGCCGCGTGGTTGTTCAACCTGAACCTGATCCAAGGCTTGCTGATCGGCGCGATTGTTGGCTCTACCGACGCCGCTGCGGTGTTCTCGTTGCTCGGTGGCAAAGGCCTGAACGAGCGGGTCAGCGCCACCCTGGAAATCGAGTCCGGCAGCAACGACCCCATGGCGGTGTTCCTCACCGTGACCCTGATCGGCATGCTTGCCAGCGGTGAGACCGGGCTGCATTGGAGCCTGCTCGGGCATCTGGTGCGCGAGTTCGGCATCGGCGCGGTGATCGGCCTGGGCGGCGGATGGTTGATGCTGCAGCTGGTCAACCGCATCAACCTGGCCAACGGCCTCTACCCGATCCTGGTCATCAGCGGCGGCCTCGCGGTGTTCGCCCTGACCAACGCCCTGCACGGCAGCGGCTTCCTGGCGGTGTACTTGTGCGGCCTCGTGCTGGGTAATCGCCCGGTGCGCAGCCGCCACGGCATCCTGCACATGCTCGACGGCATGGCCTGGCTCGCCCAGATCGGCATGTTCCTCGTGCTGGGGCTATTGGTCACGCCCCATGACCTGTTGCCCATCGCCTTACCCGCCATGGGCCTGGCGTTGTGGATGATCCTGATCGCGCGCCCGCTGTCGGTCATGGTCGGGCTGTTGCCGTTCAAGGCGTTTCATGGTCGCGAAAAGGCTTTCATTTCCTGGGTCGGCCTGCGGGGCGCCGTACCGATCATCCTAGCGGTGTTCCCGCTGATGGCCGGCCTGCCTCACGCGCAGCTCTATTTCAACCTCGCGTTCTTTATCGTGCTGGTGTCACTGCTGGTACAAGGCACCAGCCTGCCCTGGGTCGCCAAGCTGCTGCACGTGACCGTCCCGCCAGAACCGCTGCCCATTTCCCGGGCGGCGCTGGAAGTACATGTGACGAGCGAGTGGGAACTGTTTATCTACCGCCTCGGTGCGGAAAAGTGGTGCATCGGTTCGCCTCTACGGGACTTGAAAATGCCCGACGGAACGCGCATCGCGGCCCTGTTTCGGGGCCAGCAATTGCTCCATCCGTCGGGTAGTACGGTGCTGGAAGTGGACGATTTGCTCTGCGTGATCGGCCATGAACATGATTTGCCAGCCCTTGGAAAACTGTTCAGCCAGGCACCGCAACGGGGCCTGGATTTGCGCTTCTTCGGCGACTTCGTACTCGAAGGAGACGCCCAGCTGGCCGCGGTTGCCACGCTGTATGGGTTGAAGCTGGACGGCATCGATCCGGACATGACCCTGGGCCGTTTCATTGCCCAGAAAGTCGGCGGTGCACCCGTGGTTGGCGACCAGGTGGATTGGAACAACACCCTGTGGACCGTCGCGGCCATGGACGGGAACAAGATTGGCAAAGTGGGCGTCAGATTCCCCGAAGGAAGTCGCCCGGGTCCCGGCTTGTTCCTCTAA	MTATTINSLFLIGALLVGASILVSSLSSRLGIPILVIILAVGMLAGVDGAGILFDNYATAYLVGNLALAVILLDGGLRTRVSSFRVALWPALSLATVGVLITTGLTGMAAAWLFNLNLIQGLLIGAIVGSTDAAAVFSLLGGKGLNERVSATLEIESGSNDPMAVFLTVTLIGMLASGETGLHWSLLGHLVREFGIGAVIGLGGGWLMLQLVNRINLANGLYPILVISGGLAVFALTNALHGSGFLAVYLCGLVLGNRPVRSRHGILHMLDGMAWLAQIGMFLVLGLLVTPHDLLPIALPAMGLALWMILIARPLSVMVGLLPFKAFHGREKAFISWVGLRGAVPIILAVFPLMAGLPHAQLYFNLAFFIVLVSLLVQGTSLPWVAKLLHVTVPPEPLPISRAALEVHVTSEWELFIYRLGAEKWCIGSPLRDLKMPDGTRIAALFRGQQLLHPSGSTVLEVDDLLCVIGHEHDLPALGKLFSQAPQRGLDLRFFGDFVLEGDAQLAAVATLYGLKLDGIDPDMTLGRFIAQKVGGAPVVGDQVDWNNTLWTVAAMDGNKIGKVGVRFPEGSRPGPGLFL	PGPT0013860_253	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013860-cvrA|nhaP2-K11105	NA	NA
D1-36_00464	1611			hypothetical protein	ATGAACATCGCGCCGCGGGCGTTCCTGGGGTTTGCCCTGATCGGCGCCCTGATGCTGGCCCTCGGCGTGTTTGCCTTGAGCCAGATGAGCAAGATTCGCGCGTCCGGCGAAAACATCGCTCAGAACAGCGTGCCCAGTATCAAAGCACTGAATGACGTCACCCAGCTCACCCTGCGCCTGCGCGTGTTGTCCTATCGCCTGCTGATCAACCGCGAAGCGGATACCCAGCAAAAAACGCTGGACCTGTTCGAGCAACGCAACCAGCAGGTCCGGGCCGCCCAGATGTCTTATGAGAAACTCATCAGTGCGCCTGAAGAACGGTCCGCGTATGAGCAACTCACGCAGCTGCTCAATCAGTACCGTCAGCTCGAAGAGCGGATGAAAACCCTGTCGCGCAACAATCAGCTCAACGAACTGCAAGCGCTGCTCAACGCTGAGTTGACGAGCAACTCCGACGCTATCAACGCAGCGCTCGCTCGCCTGTCGGACATCAACAACCAGCAAGCGGAAGCATTCAACAAAAACGCAGCACAGCAATATTCCACAGCCTTCATCTGGGTCGTCACCCTTCTGGCCATCGCCACCGGCCTGACCCTGCTGTTCGCCTGGCTGCTGACCAACAGCATCACCAAGCCGATCGCCAACGCGTTGGATGCCGCCGAAGAAATCGCCAAGGGCAACCTGACCCGGCCGATCACCGTTGACGGCAGCGACGAGGCTGGCCGACTGCTGCGGGCGATGTCGACCATGCAGGAAAAACTGCGCGACACCCTGCAACGGATCTCCGGCTCGGCCACGCAACTGGCCTCCGCCGCCGAAGAGCTCAACAGCGTCACCGACGAAAGCGCCCGTGGCCTGACCCAGCAGAACAACGAAATCGAGCAGGCCGCCACCGCGGTCAACGAGATGACGAGCGCCGTGGAAGAAGTTGCCCGCAACGCGGTCAGCACGTCGGAAGCGTCGAAACACGCCACCACGTCCGCTGGCGACGGTCGCGACCTGGTGCAGGAAACCGTCGGTGCCATCGAGCGCATGAGCGCCGACGTCCAGAGCACCGCCACGCTGATCGGCAACCTGGCCGATGAGTCGCGAGACATCGGCAAGGTGCTCGACGTGATCCGCGGTCTGGCCGACCAGACCAACCTGCTGGCCCTGAACGCCGCCATCGAAGCTGCCCGTGCCGGTGAAGCCGGTCGTGGTTTCGCCGTGGTCGCCGACGAAGTCCGCGCCTTGGCCCACCGCACCCAGCAGTCGACCAGCGAGATCGAACGCATGATCGGCAGCATCCAGAGCGGCACCGAACAGGCCGTGGACTCGATGCGCAACAGCACCGAACGCGCCGAATCGACACTGAACATCGCCCGCGGCGCCGGCATGTCCCTCGACACCATCAACACGGCCATCGTCGAGATCAACGAACGCAACCTGGTCATCGCCAGCGCCGCCGAAGAACAGGCCCAGGTGGCCCGCGAAGTGGACCGCAACCTGGTGAACATCCGCGACCTGTCGGTGCAGACGGCCACCGGTGCGAATCAGACCAGCGCTGCAAGCGCCGAGCTATCGCGCCTGGCGGTGGATTTGAACAGCATGGTTGGGCGGTTCAGCCTTTAA	MNIAPRAFLGFALIGALMLALGVFALSQMSKIRASGENIAQNSVPSIKALNDVTQLTLRLRVLSYRLLINREADTQQKTLDLFEQRNQQVRAAQMSYEKLISAPEERSAYEQLTQLLNQYRQLEERMKTLSRNNQLNELQALLNAELTSNSDAINAALARLSDINNQQAEAFNKNAAQQYSTAFIWVVTLLAIATGLTLLFAWLLTNSITKPIANALDAAEEIAKGNLTRPITVDGSDEAGRLLRAMSTMQEKLRDTLQRISGSATQLASAAEELNSVTDESARGLTQQNNEIEQAATAVNEMTSAVEEVARNAVSTSEASKHATTSAGDGRDLVQETVGAIERMSADVQSTATLIGNLADESRDIGKVLDVIRGLADQTNLLALNAAIEAARAGEAGRGFAVVADEVRALAHRTQQSTSEIERMIGSIQSGTEQAVDSMRNSTERAESTLNIARGAGMSLDTINTAIVEINERNLVIASAAEEQAQVAREVDRNLVNIRDLSVQTATGANQTSAASAELSRLAVDLNSMVGRFSL	PGPT0015710_21335	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_00465	231			hypothetical protein	ATGTTGGAAACATCCCTCAGCCAGCTGGAGCAATTGGTCAACGACCTGGTGCAACAGAACCGTCACCTCGCCGGCCTGAATGAAACCCTGGGCGCCGAACTGGCGAAGGCCAAGGATGAAAACGAAAGTCTGCAATTGAGCCTGATGGAGCAGGAAGAACTCCACGGCACCACCACCGCCCGGATCCAGGCGCTGATCGAGCGCGCCAGCACCGCAACGGCCAGCGCATGA	MLETSLSQLEQLVNDLVQQNRHLAGLNETLGAELAKAKDENESLQLSLMEQEELHGTTTARIQALIERASTATASA				NA	NA	NA	NA	NA
D1-36_00466	303			hypothetical protein	ATGAGTCAACGTGTCGATGGGGTGACAGTCGTCTCGATTCTCGGGGAGGACTATTCGATCAAGGCGCCGGCCGGGCAGGAGCAAGCGTTGCTGGACGCTGCTTCGATGCTCAAGGCGGCCCTGGCCGATACCAAGCGTAAATACCCGACCTTGATCGGTGATCGCCTGCTGGTATTGGCGGCCATGAATTTGTGTTCGCAACAGATCGAAATGCAGAAGCAGCATCGGGCGGAACTCGACCGTTACCAGGAGCAGGTCAGCGCCACGGTCGAAGTGATCTCCAAGACGATTCAGCAGGCCTGA	MSQRVDGVTVVSILGEDYSIKAPAGQEQALLDAASMLKAALADTKRKYPTLIGDRLLVLAAMNLCSQQIEMQKQHRAELDRYQEQVSATVEVISKTIQQA				NA	NA	NA	NA	NA
D1-36_00467	1803	dmdC_1	COG1960	3-methylmercaptopropionyl-CoA dehydrogenase	ATGTCCGAGACGCTGCTCAGTTCCCGCAATCTGGCTTTCGAGCTGTATGAAGTCCTTGATGCCGAAGGCCTGACCCAGCGCGAACGGTTTGCCGAGCACAATCGCGAAACCTTCGAGGCGGCCATCGGCACGGCACGCAACATTGCCGAAAAGCATTTCGCGCCACACAACCGCAAGAACGACGAAAACGAACCACGCTATGAAAACGGCGAGGCGATCCTGATCCCGGAAGTGAAGCCGGCGGTGGATGCGTTCCTGGAGGCTGGTTTTCTCAACGCCGCACGCAGTTTCGAGGCCGGCGGCATGCAACTGCCAACGTTGCTGTCCCAGGCTTGCTTTGCGCACTTCCAGTCGGCCAACGCCGCTTCGACGTCCTACCCCTTCCTGACCATGGGCGCGGCGAACCTGATCGAAAGCTTCGGCAGCGATGATCAGAAACAGCGCTTTCTGCAACCGATGATCGATGGTCGCTTCTTCGGCACCATGGCCCTGACCGAGCCCCATGCGGGTTCATCGTTGTCGGATATTCGTACACGCGCGGAGCCGGCGTCCGACGGTACCTATCGGCTCAAGGGCAACAAGATTTTCATTTCCGGCGGCGACCATCCGTTGTCGGAAAACATCGTGCACATGGTCTTGGCGAAACTGCCGGATGCGCCGCCGGGCGTGAAGGGTATTTCGCTGTTTATCGTACCGAAGTTCCTGGTCAACGATGATGGCAGCCTCGGCCAGCGTAACGACGTGCTGCTGGCCGGTCTGTTCCACAAGATGGGCTGGCGCGGCACCACATCCACGGCGCTGAACTTCGGCGACAACGGCGAATGCGTGGGTTATCTCGTAGGAAAACCGCACCACGGCCTGAGTTATATGTTCCAGATGATGAACGAGGCTCGCATCGGCGTCGGCATGGGGGCGGTGATGCTGGGTTACGCCGGCTACCTGTATTCCCTTGAATATGCCCGCGAACGCCCGCAGGGCCGCGTGCCTGACAGCAAGGACCCGACCACCGCCCCCGTGGCGATCATCCAGCACGCCGACGTGCGCCGCATGCTGCTGACCCAAAAGGCCTACGTGGAAGGTTCGTTCGACCTGGGCCTGTACGCGGCGCGCCTGTTCGACGACACCACCACGCTGGAAAGCGAAGCCGAGCGTCGGCGCGCCCATGAGTTGCTGGACTTGCTCACGCCCATCGTCAAGTCGTGGCCCTCGGAGTTCTGCCTGAAGGCCAACGAGCTGGCCATCCAGATTCTCGGCGGCCATGGTTACACCCGCGAATACCCAGTTGAGCAGTATTACCGCGACAACCGCCTGAATCCCATCCATGAGGGCACCCACGGTATCCAGTCCCTGGACTTGCTGGGGCGCAAACTGGCGCAGAACGGCGGTGCCGGGCTCAAGCAATTGATCCGCCTGGTGGCCGACACCACTGAGCGCGCCCAAGCGTACGAATCGCTGACACCCTTGCGTCAGCCGTTGGAAGCCTTGGTGGCACGCCTGCAAACAGTCACCCTCGGCCTGCTGACCGACCTGGCCCAAGGCAAGGTCAACGATAGCCTGGCCAATTCGGCGCTGTACCTAAAAGTGTTTGGGCACATGGTGATCGGCTGGCGCTGGCTGGAACAGGCGATTCGTGCCGAGGAAGGCTTGGCCAAGGGGAACGCGGCGGATGTCGATTTCTATCAAGGCAAGCTGCAAGCGGCGCGCTACTTCCTGACCTGGGAAGTGCCGGGTTGCCAGCATGAGCTGACGCTGCTCGAAGCGCGGGATGACACCTGCCTGGGAATGCGGGATGAATGGTTCTGA	MSETLLSSRNLAFELYEVLDAEGLTQRERFAEHNRETFEAAIGTARNIAEKHFAPHNRKNDENEPRYENGEAILIPEVKPAVDAFLEAGFLNAARSFEAGGMQLPTLLSQACFAHFQSANAASTSYPFLTMGAANLIESFGSDDQKQRFLQPMIDGRFFGTMALTEPHAGSSLSDIRTRAEPASDGTYRLKGNKIFISGGDHPLSENIVHMVLAKLPDAPPGVKGISLFIVPKFLVNDDGSLGQRNDVLLAGLFHKMGWRGTTSTALNFGDNGECVGYLVGKPHHGLSYMFQMMNEARIGVGMGAVMLGYAGYLYSLEYARERPQGRVPDSKDPTTAPVAIIQHADVRRMLLTQKAYVEGSFDLGLYAARLFDDTTTLESEAERRRAHELLDLLTPIVKSWPSEFCLKANELAIQILGGHGYTREYPVEQYYRDNRLNPIHEGTHGIQSLDLLGRKLAQNGGAGLKQLIRLVADTTERAQAYESLTPLRQPLEALVARLQTVTLGLLTDLAQGKVNDSLANSALYLKVFGHMVIGWRWLEQAIRAEEGLAKGNAADVDFYQGKLQAARYFLTWEVPGCQHELTLLEARDDTCLGMRDEWF	PGPT0002285_15	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002285-bcd-K00248	NA	NA
D1-36_00468	3954	putA	COG0506	Bifunctional protein PutA	ATGGCTACCACCACCCTTGGGGTCAAACTCGACGACCCGACCCGCGAACGTCTCAAGGCGGCCGCGACTTCGATTGATCGCACGCCGCACTGGCTGATCAAGCAGGCAATTTTCAATTACCTGGAGAAACTCGAGGGTGGTGCAACCCTGACCGAGCTGAACGGTTCAAGCCGCGCCGACAATGACGATGCCGGCGAAGTCCAAGCGGACCACGCTCATCAATGCTTCCTGGAATTCGCCGAGAGCATCCTGCCGCAATCGGTCCTGCGCGCCTCCATCACCGCCGCTTACCGTCGCCCAGAGCCGGAAGTGGTGCCGATGCTGATCGAGCAAGCGCGCCTGCCGGCCGAAATGGCCGAAGCCACCAACAAGCTGGCGGCTTCTATTGCTGAGAAGCTGCGTAACCAGAAGAGTGCCGGCGGTCGTGCCGGTATTGTTCAGGGCTTGCTGCAGGAATTTTCCCTGTCGTCCCAGGAAGGCGTGGCACTGATGTGCCTCGCCGAAGCGTTGCTGCGTATCCCGGACAAGGGCACTCGCGACGCGCTGATCCGCGACAAGATCAGCACCGGCAACTGGCAGCCGCACCTGGGCAACAGCCCGTCGCTGTTCGTCAACGCCGCTACCTGGGGCCTGCTGCTGACCGGCAAACTGGTCGCCACCCATAACGAAGCGGGCCTGACCTCGTCCCTGAGCCGCATCATCGGTAAGAGCGGCGAGCCGATGATCCGCAAGGGCGTCGACATGGCCATGCGCCTGATGGGCGAGCAGTTCGTTACCGGCGAAACCATTGCCGAAGCCCTGGCCAACGCCAGCAAGTTCGAATCCAAGGGTTTCCGCTATTCCTACGACATGCTGGGTGAAGCCGCACTCACCGAGCATGACGCCCAGAAGTACCTGGCCTCGTACGAACAGGCTATCCATTCCATCGGCAAAGCGTCTCATGGCCGTGGGATTTATGAAGGCCCGGGCATCTCCATCAAGCTCTCGGCCCTGCACCCGCGCTACAGCCGCGCCCAGTACGAGCGGGTGATGGACGAGCTGTACCCGCGCCTGCTGTCGCTGACTCTGCTGGCCAAGCAATACGACATCGGCCTCAACATCGACGCCGAAGAGGCCGACCGCCTCGAACTGTCCCTGGACCTGCTCGAGCGCCTGTGCTTCGAGCCGCAATTGACCGGCTGGAACGGCATCGGCTTTGTGATCCAGGCGTACCAGAAGCGTTGCCCATACGTAATCGACTATGTGATCGACCTCGCCCGTCGCAGCCGTCACCGCCTGATGATCCGCCTGGTAAAAGGCGCGTACTGGGACAGCGAGATCAAGCGCGCCCAGGTCGAAGGCCTGGAGGGCTACCCGGTGTACACCCGCAAGGTTTACACCGACGTTTCCTACATTGCTTGCGCACGCAAATTGCTGTCGGTGCCAGAAGTCATCTACCCGCAATTTGCCACGCACAACGCCCATACCCTGTCGGCCATCTACCACATCGCCGGTCAGAACTATTACCCGGGCCAGTACGAGTTCCAGTGCCTGCACGGCATGGGTGAACCGTTGTACGAGCAAGTTGTAGGTAAAGTCTCCGAAGGCAAGCTGAACCGTCCGTGCCGTGTGTACGCTCCGGTCGGCACCCACGAAACGCTGTTGGCCTACCTGGTGCGTCGCTTGCTGGAAAACGGCGCCAACACCTCGTTCGTCAACCGCATCGCCGACCAGTCCATTTCCATTCAGGAATTGGTGGCCGATCCGGTGGCAAGCATTGAGCAGATGGCTACCCTGGAAGGCGGTTTTGGCCTGCCGCATCCACGCATCCCGCTGCCACGCGACCTGTACGGCAGCGAACGCGCCAACTCCAGCGGCATCGACCTGGCCAACGAACATCGCCTGGCCTCGTTGTCCTGCGCCCTGCTGGCTACTGCTCACAACAACTGGAAAGCCGCGCCGATGCTCGGTTGCGCCGCTAGCGAAGAAGCGCCGGCGCCGGTGCTGAACCCGGCCGATCATCGCGATGTGGTCGGTCACGTCCAGGAAGCCACGGTCGAAGACGTCGACAACGCCATCCAATGCGCCCTCAACGCCGCGCCAATCTGGCAGGCGACGCCACCGGCCGAACGCGCCGCCATCCTCGAGCGCGCCGCCGACCTGATGGAAGCCGAGATCCAGCCGCTGATGGGCCTGCTGGCCCGTGAAGCCGGCAAGACCTTCGCCAACGCCATCGCCGAAGTACGCGAAGCCGTGGACTTCCTGCGTTACTACGCGGTGCAGGCCCGCAACGATTTCACCAACGATGCCCACCGCCCCCTGGGTCCAGTGGTCTGCATCAGCCCGTGGAACTTCCCGCTGGCAATCTTCAGCGGCCAGGTCGCCGCCGCATTGGCCGCCGGCAACCCGGTACTGGCCAAGCCCGCCGAGCAGACTCCGCTGGTAGCGGCCCAGGCTGTACGCCTGTTGCTCGAAGCCGGTATTCCGGAAGGCGTCCTGCAATTGCTGCCGGGCCGCGGTGAAACCGTTGGTGCCCGCCTGGTGGGTGACGATCGCGTCAAAGGCGTGATGTTCACCGGCTCTACTGAAGTCGCCCGCCTGTTGCAGCGCAACATCGCCGGGCGCCTGGACAACCAGGGCCGTCCAATCCCGCTGATCGCCGAGACCGGCGGCCAGAACGCGATGATCGTCGACTCCTCGGCGCTGACCGAACAAGTGGTCATCGATGTGGTGTCTTCGGCCTTCGACAGCGCCGGCCAGCGTTGCTCGGCCCTGCGCGTGCTGTGCCTGCAGGAAGATTCCGCCGACCGCGTCATCGAAATGCTCAAGGGCGCCATGGCCGAATCGCGCCTCGGCAACCCGGAGCGTCTGTCGGTGGACATCGGCCCGGTGATCGACGCCGAAGCCAAGGCTGGTATCGAGAAGCACATCCAGGCCATGCGCGATAAAGGTCGCACTGTGTACCAGATGGCGATTGCCGACAGCGACGAATGCAAGCGCGGCACCTTCGTGATGCCGACGCTGATCGAGCTGGAAAGCTTCGATGAGCTACAACGGGAGATCTTCGGCCCCGTGCTGCACGTGGTTCGCTACAAGCGCAAGGAGCTGGACCAGTTGATCAACCAGATCAACGCCTCCGGCTACGGCCTGACGCTGGGCGTGCACACCCGAATCGACGAGACCATCGCCAAGGTGATCGACAACGTTCATGCCGGCAACGTCTACGTGAACCGCAACATCGTCGGTGCGGTGGTCGGTGTGCAGCCGTTCGGCGGCGAAGGCTTGTCGGGCACCGGTCCGAAGGCCGGCGGCCCGCTGTACTTGTACCGCCTGCTGTCGACCCGTCCTACCGATGCGATCCAGCAATCCTTCGTACGTGGCGACGCCCTGGCCGCGCCAGACCTGCGCCTGCGCGACGCCATGAGCAAGCCGCTGACCGCCCTGCAAACCTGGGCCGACAGCCAGAAGCTTGCCGAACTGAGCGCCCTGTGCGTGCAGTTCGCCGCCCAGTCGCAAAGCGGCATCACCCGCCAGCTCACCGGCCCGACAGGCGAACGTAACAGCTACGCCATCCTGCCCCGCGAGCACGTGCTGTGCCTGGCGGATGTGGAAGGCGACTTGCTTACACAACTGGCAGCCGTACTGGCCGTCGGCGGCTCGGCGGTATGGCCGGAGTCCGACACCAGCAAGGCCGTGTTCGCACGCTTGCCGAAGGAAATCCAGGCACGCATCCAGCGCGTTGCCGACTGGACCAAGGACGACGTGCTGTTCGACGCCGTCCTGCATCACGGCGATTCGGATCAACTGCGCGGTGTCTGCCAGCAAGTGGCCAAGCGAGCCGGTGCCATCGTCGGCGTGCATGGCTTGTCCCAAGGCGAAACCAACATCGCGCTGGAGCGCCTGGTCATCGAACGGGCACTGAGCGTCAACACCGCCGCGGCCGGTGGTAACGCCAGCCTGATGACCATCGGCTAA	MATTTLGVKLDDPTRERLKAAATSIDRTPHWLIKQAIFNYLEKLEGGATLTELNGSSRADNDDAGEVQADHAHQCFLEFAESILPQSVLRASITAAYRRPEPEVVPMLIEQARLPAEMAEATNKLAASIAEKLRNQKSAGGRAGIVQGLLQEFSLSSQEGVALMCLAEALLRIPDKGTRDALIRDKISTGNWQPHLGNSPSLFVNAATWGLLLTGKLVATHNEAGLTSSLSRIIGKSGEPMIRKGVDMAMRLMGEQFVTGETIAEALANASKFESKGFRYSYDMLGEAALTEHDAQKYLASYEQAIHSIGKASHGRGIYEGPGISIKLSALHPRYSRAQYERVMDELYPRLLSLTLLAKQYDIGLNIDAEEADRLELSLDLLERLCFEPQLTGWNGIGFVIQAYQKRCPYVIDYVIDLARRSRHRLMIRLVKGAYWDSEIKRAQVEGLEGYPVYTRKVYTDVSYIACARKLLSVPEVIYPQFATHNAHTLSAIYHIAGQNYYPGQYEFQCLHGMGEPLYEQVVGKVSEGKLNRPCRVYAPVGTHETLLAYLVRRLLENGANTSFVNRIADQSISIQELVADPVASIEQMATLEGGFGLPHPRIPLPRDLYGSERANSSGIDLANEHRLASLSCALLATAHNNWKAAPMLGCAASEEAPAPVLNPADHRDVVGHVQEATVEDVDNAIQCALNAAPIWQATPPAERAAILERAADLMEAEIQPLMGLLAREAGKTFANAIAEVREAVDFLRYYAVQARNDFTNDAHRPLGPVVCISPWNFPLAIFSGQVAAALAAGNPVLAKPAEQTPLVAAQAVRLLLEAGIPEGVLQLLPGRGETVGARLVGDDRVKGVMFTGSTEVARLLQRNIAGRLDNQGRPIPLIAETGGQNAMIVDSSALTEQVVIDVVSSAFDSAGQRCSALRVLCLQEDSADRVIEMLKGAMAESRLGNPERLSVDIGPVIDAEAKAGIEKHIQAMRDKGRTVYQMAIADSDECKRGTFVMPTLIELESFDELQREIFGPVLHVVRYKRKELDQLINQINASGYGLTLGVHTRIDETIAKVIDNVHAGNVYVNRNIVGAVVGVQPFGGEGLSGTGPKAGGPLYLYRLLSTRPTDAIQQSFVRGDALAAPDLRLRDAMSKPLTALQTWADSQKLAELSALCVQFAAQSQSGITRQLTGPTGERNSYAILPREHVLCLADVEGDLLTQLAAVLAVGGSAVWPESDTSKAVFARLPKEIQARIQRVADWTKDDVLFDAVLHHGDSDQLRGVCQQVAKRAGAIVGVHGLSQGETNIALERLVIERALSVNTAAAGGNASLMTIG	PGPT0020210_394	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_PROLINE_DEGRADATION,PGPT0020210-putA-K13821	NA	NA
D1-36_00469	1485	putP	COG0591	Sodium/proline symporter	ATGAGTGTTAGCAATCCCACCCTGATCACCTTCGTGATCTATATCGCAGCCATGGTCCTGATCGGCCTGATGGCTTATCGCTCCACCAACAACCTTTCCGACTACATCCTGGGCGGTCGCAGCCTGGGCAGTGTCGTGACGGCGCTTTCTGCCGGCGCTTCCGACATGAGCGGCTGGTTGTTGATGGGTTTGCCCGGTGCAATCTACATGTCCGGCCTGTCGGAGAGCTGGATCGCCATCGGCCTGATCATCGGTGCCTACCTGAACTGGCTGTTCGTGGCCGGTCGCCTGCGGGTCCAGACCGAGCACAATGGCGATGCGTTGACGCTGCCGGATTATTTCTCCAGCCGTTTTGAAGACACCAGTGGCTTGCTGCGGATCATCTCTGCGGTGGTGATCCTCGTGTTCTTCACCATCTATTGCGCTTCCGGCATCGTGGCCGGTGCACGCTTGTTCGAAAGCACCTTTGGCATGTCCTACGAGACGGCGCTGTGGGCCGGTGCTGCCGCGACCATCGCCTACACCTTCATCGGTGGTTTCCTGGCGGTCAGCTGGACCGATACCGTACAAGCCACGCTGATGATCTTCGCGCTGATCCTGACGCCGATCATCGTGCTGCTGGCCACGGGCGGCGTGGATACCACGTTCCTGGCGATCGAAGCGAAAGACCCGACTTCGTTCGACATGCTGAAAAACACCACCTTCATCGGGATCATCTCGCTGATGGGCTGGGGCCTGGGCTACTTCGGCCAGCCGCACATCCTGGCGCGCTTCATGGCGGCGGATTCGGTCAAGTCGATCGCCAAGGCGCGTCGCATCTCCATGGCCTGGATGATCCTGTGCCTGGGTGGCACCGTTGCCGTTGGCTTCTTCGGTATCGCGTACTTCTCGGCTAACCCAGAGGTGGCCGGTCCAGTGACCGAAAACCCTGAGCGTGTATTCATCGAGCTGGCGAAAATCCTGTTCAACCCATGGGTTGCCGGTGTACTGCTGTCGGCCATCCTCGCGGCAGTCATGAGCACTCTGAGCTGCCAGTTGCTGGTGTGCTCCAGCGCCCTGACCGAAGACTTCTACAAGACTTTCCTGCGCAAGAGCGCTTCCCAGGTAGAGCTGGTCTGGGTCGGCCGTGCCATGGTGCTGCTGGTGGCCCTGATCGCCATCGCCCTGGCCGCGAATCCGGAAAACCGCGTTCTGGGCCTGGTGAGCTACGCCTGGGCCGGTTTCGGTGCCGCCTTCGGTCCGGTGGTCCTGATCTCCGTGGTCTGGAAGAACATGACTCGCAACGGCGCCTTGGCCGGTATCCTGGTCGGTGCGATCACCGTGGTGGTCTGGAAGCATTTCGAGCTGCTGGGTCTGTACGAAATCATTCCGGGCTTCATTTTCGCCAGCCTGGCCATCTACTTCGTCAGCAAGATGGGCACGCCCACCACCGGCATGCTGCAGCGCTTCGAAGCGGCTGAGAAAGATTTCCGCTTGAACCAGTAA	MSVSNPTLITFVIYIAAMVLIGLMAYRSTNNLSDYILGGRSLGSVVTALSAGASDMSGWLLMGLPGAIYMSGLSESWIAIGLIIGAYLNWLFVAGRLRVQTEHNGDALTLPDYFSSRFEDTSGLLRIISAVVILVFFTIYCASGIVAGARLFESTFGMSYETALWAGAAATIAYTFIGGFLAVSWTDTVQATLMIFALILTPIIVLLATGGVDTTFLAIEAKDPTSFDMLKNTTFIGIISLMGWGLGYFGQPHILARFMAADSVKSIAKARRISMAWMILCLGGTVAVGFFGIAYFSANPEVAGPVTENPERVFIELAKILFNPWVAGVLLSAILAAVMSTLSCQLLVCSSALTEDFYKTFLRKSASQVELVWVGRAMVLLVALIAIALAANPENRVLGLVSYAWAGFGAAFGPVVLISVVWKNMTRNGALAGILVGAITVVVWKHFELLGLYEIIPGFIFASLAIYFVSKMGTPTTGMLQRFEAAEKDFRLNQ	PGPT0013970_1151	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013970-putP|ycgO-K11928	NA	NA
D1-36_00470	501			hypothetical protein	ATGACCCTCCGCTATACAAAAATCGCCATGATCCTGGCGCTTGCCGCCTTCGCCTTCCTGACCGTGTTCAACAACGTCACGGACTACAGCTCCAACTTCAATTTCGTCCAGCATGTGCTGAGCATGGACACCACCTTTCCCAACAACGCCGCCCGATATCGGGCCATTGACAAGCCCTGGATGTGGCACGGGGCTTATGGGCTGATCATCCTCGGCGAAGCAATCACCACCGTGCTGCTGGCCTATGGCGGGCTGACACTCTGGCGGGCACGCAGGGCGGATGGCCTGGCTTTCAATCGGGCAAAAAAATGGCCCATCGTTGGGCTGACGGTCGGATTCTTCGTCTGGTTTTTCGGCTTCATGGTCGTTGGCGGCGAGTGGTTCCTGATGTGGCAATCCGAGATCTGGAATGGCCAGGATGCCGCGTTCAGGTTCTACATGGCGCTGCTGGGCGTACTGATTTTTCTCAACCAGCCCGACAACTTGGACCCTCAGCCATAA	MTLRYTKIAMILALAAFAFLTVFNNVTDYSSNFNFVQHVLSMDTTFPNNAARYRAIDKPWMWHGAYGLIILGEAITTVLLAYGGLTLWRARRADGLAFNRAKKWPIVGLTVGFFVWFFGFMVVGGEWFLMWQSEIWNGQDAAFRFYMALLGVLIFLNQPDNLDPQP				NA	NA	NA	NA	NA
D1-36_00471	2037	vgrG1_1		Actin cross-linking toxin VgrG1	ATGTTCGCGCCTGCCAATTCACCACGTTTCACGCTGGCGTTCGACAGCGGGCCAAATGACCTCAAGGTGCTTGAGTTCAAGGGCAAGGAAGCCATCAGCCAACCCTATTGCTTTGATCTGGAGCTGGTCAGCGATCGGCCCGACCTGGTGCTGGAGGACCTTCTGCATCGCCAGGCTTACCTGGGTTTCGATCACCGCGGCGGTGGGATACATGGCCAGGTCTACAGCGTGGCCCAAGGCGACTCGGGCAAGCGCCTGACCCGTTACCAGATCACCCTCGTGCCACGCCTGGCGTACTTGCGCCACCGCATCAACCGGCGAATTTTCCAGCATCTGAATGTGCCCGCCATCGTTGGCCTCGTCCTGAAGGATCACGGCATCCTGGCCGATGCATTCCAGTTCAGTCTGGGTGGGCAATACCCCGAGCGTGAATATTGCGTGCAGTACGGTGAAAGCGATCTGGACTTCATCGAGCGGCTATGTGCCGAGGTCGGCATCCATTACCACTTCCAGCACAGCCCTGACGGGCATCTGCTGGTGTTTGGCGACGACCAGACGATGTTCAAGCGTTTACCCGAGTCTACGCCGTACCTGCCGGGCAGCGGGATGGCTGGCGCTGCGCCGGCCATCAAGCGCTTGGCGGTACGGCACCAGGCGCGAACCACTGCGGTGACGCTACGCGACTATGACTTCCGCAAGCCTGGCCTGCTGCTGCAAGCCGGTCTCGGTGGGCAAGCGCCAGCTTCGCTTGAGGATTATCAATATCCCGGCCAATTCATCGACCGTGCCGATGGCAGCCACCTGGCCCGACGTTCCCTCGAGCGACACGGCGCGGACCACCTTTTGGCGGAGGGCAGCAGTGACGACAGCGCTTTCGCCAGCGGACATTTCATGCGCATCGAGGAGCATCCCCGCCCGCAATGGAATGATCTCTGGCTGTTGACGCAGGTCGATCACCGTGGCCGGCAGCCGCAAGTGCTGGAAGAGAACGCTTCGGTCGGCCCGGGTGAATTCCAGGGCTACGGCAATACCTTCCTGGCGACGCCCTGGGACGTTTTTTTCCGTCCGCCTTTGCAGCACAAGAAGCCGTCGATCAGTGGCTACCAGTCAGCGGTAGTGACCGGACCGGTGGGCAGCGAGATCCATTGCGATGAGTTCGGGCGGGTCAAGGTGCAACTGGTCTGGGATCGCGACGGTGCAGGTGATGAGCATTCCAGCTGCTGGCTGCGCGTGGCCACCGGCTGGGCGCACGATCGTTACGGCAGTGTGATGATTCCTCGGGTCGGCATGGAAGTGCTGGTCGGGTTCATGGACGGCGACGTCGACAAGCCGCTGGTGGTCGGTTGCCTGCCGAACGGAGCCAACCCGCTGCCGCTCGACCTGCCGGCCGACAAGACCCGCAGTATCCTGCGCAGCCAGAGCAGCCCCGGTGGTAGCGGCTATAACGAATTGCGCATCGAAGACCGCAAGGGCGCCGAGGAGATCTACCTTCGAGCCCAGCGCAACTGGACCCAGCATGTGCTGCATGACCAGCGCGTGCAGGTCGATCATGAGCGCAGCATCTTCGTTGCCGGCTTGTCCCGGCACGAACTCAAGGACGGCGAGCAGCGCATCACCCGGGGGCGACGGCAGGTTGAAGTTCGCCAGGACGATCACCTGATGGTGACGGGCGACCGGCATATCCGCGTCGCCAACCAGGCCCTGAGCGCTGCTGGGCGGTTTCATGTCAGCGCCGGCCAACAGATCGTGCTGGAGGGCGGCGCCACTGCGACCATCCAGGCCGGCGGGCACTGGATCAACATCGGACCGGGCGGAATCTTCAGCAGCGTACCCATCCAGGTCGGCGGCGCGCCGATGGTGGCGATGGGCGCCGAACCCGTTGCAGCGGGCGCTCCGGATAAACTTGCCGCCGCGCTGGCGCCACCGCTGTCCTTGGCGCAAATACTCAGTTTGAAAAGTCCTGCGCCGTTCTGTGAGGAGTGCGAACGCTGCAAGGAGGGTTCCTGTGCCGTGCCGTTGGCTGCGCTTGGGAGATAA	MFAPANSPRFTLAFDSGPNDLKVLEFKGKEAISQPYCFDLELVSDRPDLVLEDLLHRQAYLGFDHRGGGIHGQVYSVAQGDSGKRLTRYQITLVPRLAYLRHRINRRIFQHLNVPAIVGLVLKDHGILADAFQFSLGGQYPEREYCVQYGESDLDFIERLCAEVGIHYHFQHSPDGHLLVFGDDQTMFKRLPESTPYLPGSGMAGAAPAIKRLAVRHQARTTAVTLRDYDFRKPGLLLQAGLGGQAPASLEDYQYPGQFIDRADGSHLARRSLERHGADHLLAEGSSDDSAFASGHFMRIEEHPRPQWNDLWLLTQVDHRGRQPQVLEENASVGPGEFQGYGNTFLATPWDVFFRPPLQHKKPSISGYQSAVVTGPVGSEIHCDEFGRVKVQLVWDRDGAGDEHSSCWLRVATGWAHDRYGSVMIPRVGMEVLVGFMDGDVDKPLVVGCLPNGANPLPLDLPADKTRSILRSQSSPGGSGYNELRIEDRKGAEEIYLRAQRNWTQHVLHDQRVQVDHERSIFVAGLSRHELKDGEQRITRGRRQVEVRQDDHLMVTGDRHIRVANQALSAAGRFHVSAGQQIVLEGGATATIQAGGHWINIGPGGIFSSVPIQVGGAPMVAMGAEPVAAGAPDKLAAALAPPLSLAQILSLKSPAPFCEECERCKEGSCAVPLAALGR	PGPT0030410_3194	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_PROTEINS,PGPT0030410-vgrG-K11904	NA	NA
D1-36_00472	840	rlmJ	COG2961	Ribosomal RNA large subunit methyltransferase J	ATGAATTATCGCCACGCCTTCCACGCCGGCAATCACGCCGATGTGTTCAAACACCTGACCTTGACCCGCCTCATCGCCTTGATGTCGCGCAAGGAGCAGCCCTTCGCCTACCTCGATACCCACGCAGGCATCGGGCTTTACGACTTGCAGGGCGACCAGGCCAGCCGTACCGGTGAATACCTGGAAGGCATCGCACGGTTGTGGGACCAGGACGACCTCCCGCCCCTGACCGCCGATTACATGAAAGTGCTGCGCGAGATGAACCCGGACGGCCAGTTGCGCTATTACCCGGGCTCGCCGGAGTTGGCACGGCGCCTGACCCGACCGCAGGACCGAGTATTGCTCAACGAGAAGCATCCGGAGGACGGCGTGCTGCTCAAGGACAACATGAAGGGCGACCGTCGCGTGGCGGTCCACTTGGGCGAAGGCTGGCATGTTCCTCGTGCGTTGTTGCCGGTGGCAGAGAAGCGCGCTCTGATGTTGATCGATCCGCCGTTCGAACAGCTGGATGAGATGCAGCGTTGCGCCGCGTCGCTCAAGGAAGCCGTCAGTCGGATGCGCCAGACCGTGGCGGCGATCTGGTACCCGGTAAAGGACCAGCGCATGTTGCGTCGTTTCTACCAGGACTTGGCCGGCACGGGCGCGCCTAAATTGTTGCGGGTGGAGTTGCTGGTGCACCCGCTGGCCACGCCCAACAGCCTGAACGGCTCGGGCCTGGCCATTGCCAATCCGCCGTGGGGGCTTGAGGAGGAACTGCGCGAGCTGCTGCCGTGGTTGTCCAGGAAACTTGGGCAGACCCAGGGTGGGTGGCAGATGGATTGGTTGATTGCTGAAAGCTGA	MNYRHAFHAGNHADVFKHLTLTRLIALMSRKEQPFAYLDTHAGIGLYDLQGDQASRTGEYLEGIARLWDQDDLPPLTADYMKVLREMNPDGQLRYYPGSPELARRLTRPQDRVLLNEKHPEDGVLLKDNMKGDRRVAVHLGEGWHVPRALLPVAEKRALMLIDPPFEQLDEMQRCAASLKEAVSRMRQTVAAIWYPVKDQRMLRRFYQDLAGTGAPKLLRVELLVHPLATPNSLNGSGLAIANPPWGLEEELRELLPWLSRKLGQTQGGWQMDWLIAES				NA	NA	NA	NA	NA
D1-36_00473	648	msrA	COG0225	Peptide methionine sulfoxide reductase MsrA	ATGGTCTTGCGCTCGGAAATTCTGGTGAACAAAAACGTGCTTCCTACTCCCGATCAAGCTCTCCCTGGCCGTGAAACCCCAATGGCCGTGCCGGAAAAACACTTTGTCCTCGACGCGCCGCTGTTGGGCCCATTCGTCACCAATGTGGACTTCGCCATCTTCGGCCTCGGCTGCTTCTGGGGCGCGGAGCGCAGGTTCTGGCAACGGGAAGGCGTTGTCAGCACGGCGGTGGGTTATGCGGGCGGCTTTACGCCAAACCCGACATATGAAGAAGTATGCTCCGGCCTGACCGGCCACAGCGAAGTCGTGCTGGTGGTCTACGAGCCGGAGAAAGTCAGCTATGACGACTTGCTGAAGATGTTCTGGGAATTGCACAACCCGACCCAGGGCATGCGCCAGGGCAACGACATCGGCACCCAGTACCGCTCAGTGATCTACTGCACCACGCCCGAGCAACTGGAAGCGGCGAAGAAGAGCAAGGAAGTGTTCCAGGCTGAGCTGGGCAAGGCCGGGCTGGGAGAAATCACCACCGAAATCGACGAAGCGCCGACGTTTTACTTTGCCGAGGCGTATCACCAGCAATACCTGGCGAAGAACCCTGAAGGCTATTGCGGGATTGGCGGCACGGGCGTGACCTGCCCGATCTGA	MVLRSEILVNKNVLPTPDQALPGRETPMAVPEKHFVLDAPLLGPFVTNVDFAIFGLGCFWGAERRFWQREGVVSTAVGYAGGFTPNPTYEEVCSGLTGHSEVVLVVYEPEKVSYDDLLKMFWELHNPTQGMRQGNDIGTQYRSVIYCTTPEQLEAAKKSKEVFQAELGKAGLGEITTEIDEAPTFYFAEAYHQQYLAKNPEGYCGIGGTGVTCPI	PGPT0013065_2301	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-SULFOXIDE_REDUCTASES,PGPT0013065-msrA-K07304	NA	NA
D1-36_00474	2694			hypothetical protein	ATGAAAAGCCAACCCGATGCCGCCAGTCGTATGGCGGCCGAGGTAGTGACGCAGTTACCGGTGCCCTCGCGGCTCGGTATGCTGCGTTTCGAACGGCTGAATGAAGCAAGCTGGGCGTTGCTGTTCCTCGATCCAAACTGCGAACGCTACTTCGGCCTGCCGGCCGTTGAGCTTTGCTCGCTGGTCAGCTCTCCCTTCGCCAGCCTGATGGAGCCTGAAGCGCGCTATCAGTTGCATGACGCGATCCAACAGCAGTTGGCCCAGGCGTCCCACTATCTGATCCGCTACACACTGCACACCGCCAAAGGGCCGATGAACCTGCTGGAGACCGGTGAAGCCTACAGGCAGCACAATCGCCATCTGCTGCGCGGCTATCTGATGGTGGTGGACGACCTGCTGCAGGACGGGCCATCCATGCCTGCCGTGGACCTGGAAACCCAGAACTCCAGGCTCCAGATCGCCCTGGAATTGAATCAACGCGCGCAGCAGGAGCAACTCCAGCACCTGGACCGGGTCCGCGCCCAGCAAGACCTGATCCTGTTGTTGACTCGCCAGCGCTACAGCGCCAACAAATCCCTGCAAGAAGCCGCCGAGCTGATTACGCGCAGCGCGTGTGACATCTACCAGATCGATTGCGCGAGCATCTGGAATCTGGAGGATGGCAAGCTGCTGCCGATCTCCGCCTATAATCGCGCCTCCCAGGAACATTTCCTGCCAAAGGTGATCAACGCCAGCGAATTTCCAGACTACATGGAAGCGTTGCAGACCTGCCGCGCCATCGATGCCCATAACGCGATGCGCGACCCTCGCACGCGGGAATTGGCCGAGAACCTCCGGGCCCGGGACGTCAATGCCATCCTCGACGCCAGCATCCGTATCGACGGGCAAGTCGTCGGGGTGCTCTGCCTGGAGCAAGTAGGCGCGACCCGCGCCTGGCAGTCGGACGAAATCGCCTTCGCCGGCGAACTGGCTGACCAATTCGCCCAAGTCATCAACAACCATAATCGCCGCACCGCCACCAGCGCCCTGCACCTGTTCCAGCGCGCCGTGGAACAGAGCGCCAACGCGTTCCTGCTGGTCAATTGCGACGGTGTGGTGGAGTACGTCAACCCAAGCTTCACCGCCATCACCCAGTACACCACCGAAGAAGTCCACGGCCAGCGCCTCTCGGAACTGCCGGCCCTGGAGAACCTCAGCGAACTGCTGTTCGATGCGCCATCGGCCCTGGCCCAGAGCAACAGCTGGCAGGGCGAATTCAAGAGCCGACGCAAGAACCTCGAACCCTACTGGGGCCAGTTGTCGATCTCCAAGGTCTATGGCGACAACCGCGAGCTGACCCACTACATCGGCATCTACGAAGACATCACGCAGACCAAACTGGCCCAGCAGCGCATCGAACGCCTGGCCTACACCGACAACCTGACCAACCTGGGCAACCGTCCGGCTTTTATCCGCAACCTGGATGAACGCTTCGCCCGCGACAGCAATTCGCCCATCAGCCTGCTGCTGGTGGACATCGACAACTTCAAGCGCATCAACGACAGCCTCGGCCATCAGACCGGCGACAAACTGCTGATCAGCCTGGCCCGGCGCCTGCGCAATAGCCTGAGCTCCAGCGGCAGCCTGGCGCGCTTCGCCAGTAACGAATTTGCGGTGCTGCTGGACGACACCGACCTTGAGGCCGGCCAACAGATCGCCAGCCAGCTGCTGATGACGCTCGACAAGCCGATGTTCGTCGATAACCAGTTGATCAGCGTGACCGGCTCCGTGGGCCTGGCCTGCGCGCCTTTGCATGGCCGCGACCCACAGACCCTCATGCGCAACGCCGGCCTCGCTCTGCACAAGGCCAAGGCCAACGGCAAGCACCAGGTCCAGGTGTTCACCGAGGCGCTGAACGCCGAGGCCAGCTACAAGCTGTTCGTGGAAAACAACCTTCGACGCGCCTTGACCCAGAACGAACTGGACGTGTTCTACCAGCCCAAGCTGTGTCTGCGCAGCGGTCGCTTGCTGGGCATGGAAGCGCTGCTGCGCTGGAATCATCCGGAAAAAGGCATGATCCGTCCTGACCAGTTCATCAGCGTGGCCGAGGAAACCGGCCTGATCATCCCCATCGGCAAATGGATCGCCCGCCAGGCCTGCCGCATGAGCAAACAGCTGACCGCGGCTGGCCTGGGCAATCTGCAAGTGGCGATCAACCTGTCGCCCAAGCAGTTTTCCGACCCGGACCTGGTGGCCTCGATCGCCAGCATCCTCAAGGAAGAACAATTGCCCGCGCGGCTGCTGGAACTTGAACTGACCGAAGGCCTGCTGCTCGAAGCCACCGAAGACACCCACCTGCAACTCGACCAGCTCAAGCGCCTGGGCCTGACCCTGGCGATGGATGACTTTGGCACCGGTTATTCATCCCTGAGCTACCTGAAGAAATTCCCGATCGACATCATCAAGATCGATCGCAGCTTTATCCATGAAATCCCGGACAACCAGGACGACATGGAGATCACCTCCGCGGTGATTGCCATGGCCCACAATCTGAAGCTCAAGGTCGTGGCCGAAGGCATCGAGACCGCCCAGCAGCTCGCCTTCCTGCGGCGCCACCGCTGTGACGTCGGCCAAGGCTACCTCTTCGACCGGCCGATCCCCGGCGCAGAGCTCGTCGAGAAGCTCAAGCGCTACCCGCGCGGTCCGCTGGTCTGA	MKSQPDAASRMAAEVVTQLPVPSRLGMLRFERLNEASWALLFLDPNCERYFGLPAVELCSLVSSPFASLMEPEARYQLHDAIQQQLAQASHYLIRYTLHTAKGPMNLLETGEAYRQHNRHLLRGYLMVVDDLLQDGPSMPAVDLETQNSRLQIALELNQRAQQEQLQHLDRVRAQQDLILLLTRQRYSANKSLQEAAELITRSACDIYQIDCASIWNLEDGKLLPISAYNRASQEHFLPKVINASEFPDYMEALQTCRAIDAHNAMRDPRTRELAENLRARDVNAILDASIRIDGQVVGVLCLEQVGATRAWQSDEIAFAGELADQFAQVINNHNRRTATSALHLFQRAVEQSANAFLLVNCDGVVEYVNPSFTAITQYTTEEVHGQRLSELPALENLSELLFDAPSALAQSNSWQGEFKSRRKNLEPYWGQLSISKVYGDNRELTHYIGIYEDITQTKLAQQRIERLAYTDNLTNLGNRPAFIRNLDERFARDSNSPISLLLVDIDNFKRINDSLGHQTGDKLLISLARRLRNSLSSSGSLARFASNEFAVLLDDTDLEAGQQIASQLLMTLDKPMFVDNQLISVTGSVGLACAPLHGRDPQTLMRNAGLALHKAKANGKHQVQVFTEALNAEASYKLFVENNLRRALTQNELDVFYQPKLCLRSGRLLGMEALLRWNHPEKGMIRPDQFISVAEETGLIIPIGKWIARQACRMSKQLTAAGLGNLQVAINLSPKQFSDPDLVASIASILKEEQLPARLLELELTEGLLLEATEDTHLQLDQLKRLGLTLAMDDFGTGYSSLSYLKKFPIDIIKIDRSFIHEIPDNQDDMEITSAVIAMAHNLKLKVVAEGIETAQQLAFLRRHRCDVGQGYLFDRPIPGAELVEKLKRYPRGPLV	PGPT0023624_777	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-GGDEF|EAL|PAC|PAS-DOMAIN-CONTAINING_PROTEIN,PGPT0023624-GGDEF|EAL|PAC|PAS_domain_containing_protein-NA	NA	NA
D1-36_00475	1392			hypothetical protein	ATGTTAAAGCCAACGGTAGGCCCTATTATTGGCCACACGACAACCCACCACGCTCGTATCTTTCTACGAGGCGATGGGAACACCGACAATCCTTTATTCGCCGGTATCCGCTACCGCCGAAAAGGCGATACGGCCTGGTCCAGGGGACAGTTCATCCGACTGGTTTCTTATCGCGACTTAGCCGGTGTCATCGTATTGAAGGGCCTTGAGCCCGACACCTTCTATGAATACCAGGCCGGCTGGAAAAGCACATTGAGCCCGGCGCACACTCCAGAGACCATACTGGAGCTGCCGCTGCAGTGGCCCAAGGAGATTTACCAGTTGCGCACGCCCTCCAGCGAGACCGACGCCCCACGCAGCTATATCGTCGGCTCGTGTCGATACCTGCGCATTACCGCGGGTGTCCCGGCGACACCGGAACGGGGGGATCGCACATTCGCGGGTATCAACCGAATCGTGGAGCGAGCCAACCCACCCATCAGCGCAGTAGTGATGACCGGCGACCAAGTGTATCTCGACGACCTGAATTTCATTGCGCCGGACCGCAACCTCAAGGACATGTTATTCAAGTACCGAACTGCCTTTTCCCAACCCCATATTAAAAAACTGATGTCCAGCGTGCCGACTTACATGATGCTCGACGATCATGAAATAAAGGACAACTGGCCCGCCAAGAAGAATCACCAAGACGAAACTCTCTATACAAACGCTCTTGATACTTACGAGCTTTATCAAGCCAGTCACAGCCCGGCCCATGAACTTCTGGATGACGGCACGTTAAGGCCACTCACCCGCTACTGGTATACATTTGCCCATGGCAATACAGGATGGTTCGTTACCGACAGCCGGACTCGACGCAACCTGTCGGCAAACAACCGGCGCATCCTGGATGAAGAACAGGAACATTCGCTGCTGACATGGCTGATCGACAGCCCCTACCGGGTCAAATTCGTCGTCACCGGTGTCATGTTCTACCCCGACCGCAAATTCAACGCAGGGGATGCCTGGCAAGCGTTTCCAGAGCAACGGCTACGCTTGCTTGAAACCATCCGCAGCCATCGGATCAAGAATGTGATCTTCGTCTCTGGTGACGTGCACGGTTCCCTGACGAGCATGCTGACCCACAGCCAGGATCCTGACTTCCAAATCCACACAGTCGTCTCGTCGCCATTTTGCAACAGCAGGCTGTTGCCTTACGCCAATGCCTCGACTTTTATTCCCGGCAAACCCATGGCTCGGGCTCCAAGCGGTGAGTATCAATACGAGCTGACCGGCAAGGTGATCAGCCAGGACAACTTTGCCCAGCTGAAAGTCACGGCCCAGAGCGTTCAAGTGACGTTTCATGACCGTGACGGAGATCCCTTGGAGGTCGTCGACATACCGTTGCGCTGA	MLKPTVGPIIGHTTTHHARIFLRGDGNTDNPLFAGIRYRRKGDTAWSRGQFIRLVSYRDLAGVIVLKGLEPDTFYEYQAGWKSTLSPAHTPETILELPLQWPKEIYQLRTPSSETDAPRSYIVGSCRYLRITAGVPATPERGDRTFAGINRIVERANPPISAVVMTGDQVYLDDLNFIAPDRNLKDMLFKYRTAFSQPHIKKLMSSVPTYMMLDDHEIKDNWPAKKNHQDETLYTNALDTYELYQASHSPAHELLDDGTLRPLTRYWYTFAHGNTGWFVTDSRTRRNLSANNRRILDEEQEHSLLTWLIDSPYRVKFVVTGVMFYPDRKFNAGDAWQAFPEQRLRLLETIRSHRIKNVIFVSGDVHGSLTSMLTHSQDPDFQIHTVVSSPFCNSRLLPYANASTFIPGKPMARAPSGEYQYELTGKVISQDNFAQLKVTAQSVQVTFHDRDGDPLEVVDIPLR	PGPT0002575_2385	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0002575-phoD-K01113	NA	NA
D1-36_00476	1647	aceF	COG0508	Dihydrolipoyllysine-residue acetyltransferase component of pyruvate dehydrogenase complex	GTGAGCGAACTCATTCGCGTACCTGACATCGGCAGCGGTGAAGGTGAAGTAATTGAACTGTTTGTGAAGGTCGGCGACCGCATCGAAGCCGACCAGAGCATCCTGACGCTTGAATCGGACAAGGCCAGCATGGAAGTGCCTGCGCCGAAGGCCGGTGTCATCAGGAGCCTGAAAGTGAAGCTGGGCGATCGCCTGAAGGAAGGCGACGAGTTGCTGGAGCTGGAAGTCGAGGGCGCCGCCGCGGCACCTGAAGCGGCCGCCCCTGCTGCTGCCCCGGCGGCGGCTGAAAAGCCTGCCGCTGCGCCCGCTCCCGAAGCGGCTCCAGCTCCGGCCGCCGCGCCTGCCGCCGCCACTGTTCAGGACATCCATGTCCCGGACATCGGTTCGTCGGGCAAGGCCAAGATCATCGAAGTACTGGTCAAGGCCGGCGACACCGTCGAAGCCGACCAGTCGCTGATCACCCTGGAATCCGACAAGGCCAGCATGGAAATCCCATCGCCGGCCGCCGGTGTGGTGGAAAGCGTCGAGATCAAGCTGGAAGACGAAGTCGGCACCGGTGACCTGATCCTGAAGCTGAAAGTGGCCGGTGCCTCGGCGCCTGCCGCGCCAGCCCCGGCTGCTGCGCCTGCTGCCAAGGCCGAAGCCGCCCCAGCGCCAGCGCCAGCCGCCGCCCCCGCCGCCAAGGCCGAAGCGGCTCCTGCCCCTGTCGCCGCGGCGCCTGCGCCTAGCGGTGCCAAGGTGCACGCTGGCCCTGCGGTGCGTCAGCTGGCCCGTGAATTCGGTGTCGAGCTGTCCGCCGTAGGCCCGAGCGGCCCTCACGGTCGTGTGCTCAAGGAAGACGTGCAAGCCTACGTCAAAGCCATGATGCAGAAGGCCAAGAGCGCACCGGCCGAAGGCGCCACCGGCGGCGCGGGCATCCCGCCGATCCCGGCGGTGGACTTCAGCCGCTTCGGCGAAACCGAAGAAGTGGCCATGACTCGCCTGATGCAGATCGGCGCGTCGAGCCTGCACCGCAGCTGGCTGAACATCCCGCACGTGACTCAGTTCGACCAGGCTGACATCACCGAGCTGGAAGCTTTCCGCGTTGCGCAGAAAGCCGTGGCGGAAAAGGCCGGCGTGAAACTGACGGTCTTGCCGCTGCTGCTCAAGGCCTGCGCGCACCTGCTCAAGGAACTGCCGGACTTCAACAGCTCCCTGGCTCCAAGCGGCAAGGCTGTGATCCGCAAGAAATACGTGCACATCGGCTTTGCCGTCGACACCCCGGAAGGCCTGCTGGTACCGGTCATCCGCAACGTCGACCAGAAGAGCCTGCTGCAACTGGCTGGCGAAGCCGCTGCCCTGGCCGAAAAAGCCCGGAACAAGAAGCTCACCGCCGACGACATGCAGGGCGCCTGCTTCACCATCTCCAGCCTCGGCCACATTGGCGGCACCGGCTTCACGCCGATCGTCAACGCGCCGGAGGTGGCGATCCTGGGTGTTTCCAAGGCCACCATCCAGCCAGTCTGGGACGGTAAAGCCTTCCAGCCGAAGCTGATGCTGCCACTGTCGCTGTCCTACGATCACCGCGTGATCAACGGCGCCGCCGCAGCGCGCTTCACCAAGCGCTTGAGTGACCTGCTGGGCGACATCCGCACCATCCTGCTGTAA	MSELIRVPDIGSGEGEVIELFVKVGDRIEADQSILTLESDKASMEVPAPKAGVIRSLKVKLGDRLKEGDELLELEVEGAAAAPEAAAPAAAPAAAEKPAAAPAPEAAPAPAAAPAAATVQDIHVPDIGSSGKAKIIEVLVKAGDTVEADQSLITLESDKASMEIPSPAAGVVESVEIKLEDEVGTGDLILKLKVAGASAPAAPAPAAAPAAKAEAAPAPAPAAAPAAKAEAAPAPVAAAPAPSGAKVHAGPAVRQLAREFGVELSAVGPSGPHGRVLKEDVQAYVKAMMQKAKSAPAEGATGGAGIPPIPAVDFSRFGETEEVAMTRLMQIGASSLHRSWLNIPHVTQFDQADITELEAFRVAQKAVAEKAGVKLTVLPLLLKACAHLLKELPDFNSSLAPSGKAVIRKKYVHIGFAVDTPEGLLVPVIRNVDQKSLLQLAGEAAALAEKARNKKLTADDMQGACFTISSLGHIGGTGFTPIVNAPEVAILGVSKATIQPVWDGKAFQPKLMLPLSLSYDHRVINGAAAARFTKRLSDLLGDIRTILL	PGPT0001390_2148	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
D1-36_00477	2646	aceE_1	COG2609	Pyruvate dehydrogenase E1 component	ATGCAAGACCTCGATCCCGTCGAAACCCAGGAATGGCTGGACGCCCTGGAATCGGTTCTCGACAAAGAAGGCGAAGACCGTGCTCATTATCTGATGACCCGTATGGGTGAACTCGCAACCCGCAGCGGTTCGCAACTGCCCTACGCCATCACCACGCCATACCGCAACACGATCCCTGTCACCCACGAAGCACGCATGCCTGGCGACCTGTTCATGGAACGCCGCATTCGCTCGCTGGTGCGCTGGAACGCGTTGGCCATGGTCATGCGTACCAACCTGAAAGATTCTGACCTGGGCGGTCACATCTCCAGCTTCGCCTCCAGTGCGACGCTGTATGACATCGGCTTCAACTACTTCTTCCAGGCCCCGACCGACGAACATGGCGGCGACCTGATCTACTTCCAGGGTCACGCATCGCCAGGCGTCTACGCCCGTGCGTTCATGGAAGGCCGCATCACCGAAGACCAGATGAACAACTTCCGCCAGGAAGTGGACGGCAACGGCCTGTCCTCGTACCCGCACCCTTGGCTGATGCCTGATTTCTGGCAGTTCCCGACCGTTTCCATGGGCCTGGGCCCGATCCAGGCGATCTACCAGGCGCGCTTCATGAAGTATCTCGAAGCCCGTGGCTTCATCCAGCCAGGCAAGCAGAAAGTCTGGTGCTTCATGGGTGACGGTGAATGCGACGAGCCGGAATCCCTGGGTGCGATCTCCCTGGCCGGCCGCGAGAAGCTGGACAACCTGATCTTCGTCATCAACTGCAACCTGCAGCGCCTCGACGGCCCGGTTCGCGGCAACGCCAAGATCATCCAGGAACTCGAAGGCGTGTTCCGTGGTGCCCAGTGGAACGTCAACAAAGTCATCTGGGGCCGTTTCTGGGACCCACTGCTGGCCAAGGACGTCGACGGCATCCTGCAACGCCGCATGGACGAAGTCATCGACGGCGAGTACCAGAACTACAAGGCCAAGGACGGCGCGTTCGTCCGTGAGCACTTCTTCAACTCGCCTGAACTCAAGGCGATGGTTGCCGACCTGTCCGACGACGAGATCTGGAAGCTCAACCGTGGCGGCCACGACCCGTACAAGGTCTACGCGGCGTACCATCAGGCGGTCAATCACAAAGAGCAACCGACCGTCATCCTGGCCAAGACCATCAAGGGTTATGGCACCGGTGCCGGCGAAGCGAAGAACACCGCGCACAACACCAAGAAGGTCGACGTCGAGAGCCTGAAGCTGTTCCGTGACCGCTTCGACATCCCGGTCAAGGACAGCGAACTGGAAAACCTGCCGTTCTTCAAGCCGGAAGAAGGCAGCGCCGAAGCCCGTTACCTGGCCGAGCGCCGCGCCGCCCTGGGTGGTTTCGTGCCGCAGCGTCGCGCCAAGAGCTTCAGCATCCCGACGCCGCCACTCGATACCCTCAAGGCCATCCTGGACGGCTCGGGCGACCGCGAAATCTCCACCACCATGGCTTTCGTGCGGATCCTCGCGCAACTGGTCAAGGACAAGGAAATCGGCTCGCGCATCGTCCCGATCATTCCGGACGAGGCCCGTACCTTCGGCATGGAAGGCATGTTCCGCCAGTTGGGCATCTACTCGTCCGTCGGCCAACTCTACGAGCCAGTCGATAAAGACCAGGTGATGTTCTACAAGGAAGACAAGAAGGGCCAGATCCTCGAGGAAGGCATCAACGAAGCGGGCGCCATGAGCTCCTTCATTGCCGCCGGTACTTCGTACTCCAGCCACAACCAGCCGATGCTGCCGTTCTACATCTTCTACTCGATGTTCGGCTTCCAGCGTATCGGCGACCTGGCCTGGGCCGCTGGCGACAGCCGTACTCGTGGCTTCCTGATCGGCGGCACCGCCGGCCGGACCACCCTCAACGGTGAAGGCCTGCAGCACGAAGACGGCCACAGCCACATGCTGGCCGGGACCATCCCGAACTGCCGCACCTATGATCCGACCTACGGCTACGAGCTGGCGGTGATCATTCAGGACGGCATGAAGAAGATGACCGAAGAGCAACAGGACGTCTTCTACTACATCACCGTGATGAACGAGTCCTACCAGCAGCCAGCCATGCCGGCCGGCGTAGAGGCAGGCATCGTCAAGGGCATGTACCTGCTCGAAGAAGACACCCGCGAAGCGGCGCACCACGTCCAGCTGATGGGCTCCGGCACCATCCTGCGCGAAGTGCGTGAAGCGGCGAAGATCCTGCGTGAAGAATTCAACGTCGGCGCCGACGTCTGGAGCGTCACCAGCTTCAACGAACTGCGTCGCGACGGCCTGGCCGTGGAGCGCAGCAACCGCCTGCACCCTGGCCAGAAGCCAAAGCTGAGCTACGTCGAAGAGTGCCTGAACGGCCGCAAAGGTCCGGTCATCGCCTCTACCGACTACATGAAGCTGTTCGCCGAACAGATCCGCCAGTGGGTTCCTTCCAAGGAATTCAAAGTGCTGGGCACCGATGGTTTCGGCCGTAGCGACAGCCGCAAGAAGCTGCGTCACTTCTTCGAAGTCGACCGTAAGTTCGTTGTGTTGGCAGCCTTGGAAGCCCTGGCTGACCGCGGCGATATCGAACCTAAAGTGGTGGCCGAAGCCATCGCCAAGTTCGGCATCGATCCGGAAAAACGCAACCCACTGGACTGCTGA	MQDLDPVETQEWLDALESVLDKEGEDRAHYLMTRMGELATRSGSQLPYAITTPYRNTIPVTHEARMPGDLFMERRIRSLVRWNALAMVMRTNLKDSDLGGHISSFASSATLYDIGFNYFFQAPTDEHGGDLIYFQGHASPGVYARAFMEGRITEDQMNNFRQEVDGNGLSSYPHPWLMPDFWQFPTVSMGLGPIQAIYQARFMKYLEARGFIQPGKQKVWCFMGDGECDEPESLGAISLAGREKLDNLIFVINCNLQRLDGPVRGNAKIIQELEGVFRGAQWNVNKVIWGRFWDPLLAKDVDGILQRRMDEVIDGEYQNYKAKDGAFVREHFFNSPELKAMVADLSDDEIWKLNRGGHDPYKVYAAYHQAVNHKEQPTVILAKTIKGYGTGAGEAKNTAHNTKKVDVESLKLFRDRFDIPVKDSELENLPFFKPEEGSAEARYLAERRAALGGFVPQRRAKSFSIPTPPLDTLKAILDGSGDREISTTMAFVRILAQLVKDKEIGSRIVPIIPDEARTFGMEGMFRQLGIYSSVGQLYEPVDKDQVMFYKEDKKGQILEEGINEAGAMSSFIAAGTSYSSHNQPMLPFYIFYSMFGFQRIGDLAWAAGDSRTRGFLIGGTAGRTTLNGEGLQHEDGHSHMLAGTIPNCRTYDPTYGYELAVIIQDGMKKMTEEQQDVFYYITVMNESYQQPAMPAGVEAGIVKGMYLLEEDTREAAHHVQLMGSGTILREVREAAKILREEFNVGADVWSVTSFNELRRDGLAVERSNRLHPGQKPKLSYVEECLNGRKGPVIASTDYMKLFAEQIRQWVPSKEFKVLGTDGFGRSDSRKKLRHFFEVDRKFVVLAALEALADRGDIEPKVVAEAIAKFGIDPEKRNPLDC	PGPT0001385_2580	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
D1-36_00478	2940	glnE	COG1391	Bifunctional glutamine synthetase adenylyltransferase/adenylyl-removing enzyme	ATGAGCCTGCCCTCGCTTGCCGAAATACCGGCGATTCTCCAGTCATTGGTCAGTCGGGCCGAGCAGTCGTTCCGCGCGGCGGTCGCCACTCTGGACGACGACCATGGGCTCTCTGCCTGGACGCCGCAGCGCTGGGCCGAGTTCAATCGCGTCGTCGCGGCCAGCGACTTTGTCATCGAGCAAAGTGTACGAGACCCGTCGATGCTCTTGGAACTGGTGCACAGCGGCGAGCTGGACCGCAGCCTGGCCCCCGGTGAAATGTGCGCGCAGATCGGCGCCGCCGTCCAGGCCGCCGAAACCGAAGATGAGTTGGGTCGCGTGCTGCGTCGCCAGCGCACCCGCCAGCAGGTGCGCATCATTTGGCGTGACCTGACCCGCCAGGCGGACCTGGTCCAGACCTGTCGCGATCTCTCGGACATGGCCGACACTTGCATCGACCAGGCCTATCGATGGTTGTACCAACGCCTGAGCCAGCAATTGGGCATACCCACCGGCCGGCGCAGTGGCGAGCCGCAGCAGATGGTCATCCTGGGCATGGGCAAGCTAGGCGCCGTCGAGCTGAACCTGTCGTCGGACATCGACCTTATCTTCGCCTATCCCGAAGGCGGCGAAACCGTCGGCGCGAAGCGGCCGCTGGATAACCAGGAATTTTTCATCCGCCTTGGCCAGCGCCTGATCAAGGCCCTCGATCCGATGACCGTCGATGGCTTTGTATTTCGTGTCGACATGCGTCTGCGTCCCTATGGCTCGGCCGGCGCGCTGGTGCTGAGCTTCAATGCCCTGGAGCAGTATTACCAGGACCAGGGGCGCGACTGGGAACGCTACGCGATGATCAAGGCGCGGGTGGTGGCGGGCGACCAGGTGGCCGGCGCGCAACTGCTCGACATGCTGCGCCCGTTCGTCTATCGCCGTTACCTGGATTTTTCCGCCATCGAAGCGTTGCGCACCATGAAGCAGTTGATCCAGCAGGAGGTGCGGCGCAAGGGCATGGCCGACAACATCAAGCTGGGTTCGGGCGGCATCCGCGAGGTGGAATTCATCGCCCAGGCGTTCCAGTTGATCCATGGCGGTCGCGACCTGAGCTTGCAGCAACGACCGTTGTTGAAGGTGCTTGGCACATTGGAGGGCCAGGGCTACCTGCCGTCCAAGGTGATCGACGAGTTGCGCCAGGGTTATGAGTTCCTGCGTTACACCGAACATGCGATCCAGGCCATTGCCGACCGCCAGACGCAGATGCTGCCGGACACTGCGCAGGATCAGGCGCGCATTGCGTTCATGCTGGGCTTCGCCGACTGGTCGGCGTTCCACGAACAGCTGATGCATTGGCGTGGGCGCGTGGCCTGGCATTTCGGCCAGGTCATCGCCGATCCGGACGAAGAAGAGGGCAGCGAAGGCGAAGTCGCGGTGGGTGGAGAATGGCTGCCGCTGTGGGAAGACAGCCAGGATGAGGAAGCGGCGTGTCGCCAGTTGGAGGCGGGCGGTTTCACCGATGCGTCCAAGGCGCTGAGGGCCTTGGCTGCCTTGCGCGCCAGCCCGCAATTGCGCGCGATGCAACGTTTGGGGCGCGAGCGCCTGGATGCGTTCATTCCCCGCCTGTTGGCTCAGGCGGTGGAGCACGCCAATCCGGACCTGGTGCTGGAACGGGTATTGCCATTGGTTGAAGCCGTGGCCCGCCGTTCGGCTTATCTGGTGCTGCTGACCGAGAACCCTGGCGCGTTGCGGCGTTTGCTGACGTTGTGTGCGGCGAGCCCATGGATTGCCGAGCAGATCACCCGTTTTCCGCTGTTGCTCGATGAGTTGCTCAACGAAGGCCGTTTGTTCAAGCCGCCGTTGGCGCCTGAGCTGGCGGCGGAATTGCGCGAGCGGCTGACGCGCATCCCCGAGGACGATCTCGAACAACAGATGGAAGCCTTGCGGCATTTCAAGCTGGCCCACCGCCTGCGCGTCGCTGCCTCGGAAATCGCCGGCAGCCTGCCGTTGATGAAAGTCAGCGACTACCTGACGTGGCTGGCCGAAGCCATCCTCGAGCAGGTGCTGGCCCTGGCCTGGCGCCAGACAGTCGCCAAGCATGGCGTACCGTTGCGCACCGATGGGAGCCCGTGCGATCCGGGGTTCATCATTGTCGGCTATGGGAAAGTCGGTGGCCTGGAATTGGGGCATGGTTCCGACCTGGACCTGGTGTTCATCCACGATGGCGACCCGCAGGCTGAAACCGACGGCCCGAAACCCATCGACGGCGCTCAATTCTTCACCCGGCTTGGCCAGCGGATCATTCACTTGTTGACGGCCCAGACGAACTCCGGGCAGTTGTATGAAGTGGACATGCGTCTGCGGCCGTCCGGAGCGTCGGGCTTGCTGGTCAGTTCCCTGGGAGCGTTTGCCCGCTATCAGGAAAACGAAGCCTGGACCTGGGAGCATCAGGCGTTGGTGCGTGCGCGAGTGCTGGTGGGCAGCCAGGACGTCGGCCAAGCGTTCGAAAAAGTCCGCGCCCAGGTGTTGGGACGCACCCGTGATTTGCCGACGCTGCGCCAGGAAGTCAGCGAGATGCGCGCCAAGATGCGCGACAACCTTGGCAGCAAGGCCACCGCCGCCGGGACCGCGCCGAATGCCTTCGAAGCCACGGCGCCCTTTGACCTCAAGCAGGACGCCGGAGGTATCGTCGATATTGAATTTATGGTGCAATACGCGGCCCTGGCCTGGTCCGAGGCGTACCCTTCACTGGTGCGCTACACCGATAACATCCGCATCCTGGACGGATTGCAGGAGGTCGGATTGATGCCTGCCGAGGATGCCACGCTGTTGCGCGAAGCCTACAAGGCCTACCGCTCCGCCGCCCACCGCCAGGCCTTGCAGAAAGACACTGGGGTGATTGCAGGCGATCAGTTCGTGGATGAGCGTCGACAGGTGATGCGGATCTGGCGAGAGCTGGGGCTGAGTTGA	MSLPSLAEIPAILQSLVSRAEQSFRAAVATLDDDHGLSAWTPQRWAEFNRVVAASDFVIEQSVRDPSMLLELVHSGELDRSLAPGEMCAQIGAAVQAAETEDELGRVLRRQRTRQQVRIIWRDLTRQADLVQTCRDLSDMADTCIDQAYRWLYQRLSQQLGIPTGRRSGEPQQMVILGMGKLGAVELNLSSDIDLIFAYPEGGETVGAKRPLDNQEFFIRLGQRLIKALDPMTVDGFVFRVDMRLRPYGSAGALVLSFNALEQYYQDQGRDWERYAMIKARVVAGDQVAGAQLLDMLRPFVYRRYLDFSAIEALRTMKQLIQQEVRRKGMADNIKLGSGGIREVEFIAQAFQLIHGGRDLSLQQRPLLKVLGTLEGQGYLPSKVIDELRQGYEFLRYTEHAIQAIADRQTQMLPDTAQDQARIAFMLGFADWSAFHEQLMHWRGRVAWHFGQVIADPDEEEGSEGEVAVGGEWLPLWEDSQDEEAACRQLEAGGFTDASKALRALAALRASPQLRAMQRLGRERLDAFIPRLLAQAVEHANPDLVLERVLPLVEAVARRSAYLVLLTENPGALRRLLTLCAASPWIAEQITRFPLLLDELLNEGRLFKPPLAPELAAELRERLTRIPEDDLEQQMEALRHFKLAHRLRVAASEIAGSLPLMKVSDYLTWLAEAILEQVLALAWRQTVAKHGVPLRTDGSPCDPGFIIVGYGKVGGLELGHGSDLDLVFIHDGDPQAETDGPKPIDGAQFFTRLGQRIIHLLTAQTNSGQLYEVDMRLRPSGASGLLVSSLGAFARYQENEAWTWEHQALVRARVLVGSQDVGQAFEKVRAQVLGRTRDLPTLRQEVSEMRAKMRDNLGSKATAAGTAPNAFEATAPFDLKQDAGGIVDIEFMVQYAALAWSEAYPSLVRYTDNIRILDGLQEVGLMPAEDATLLREAYKAYRSAAHRQALQKDTGVIAGDQFVDERRQVMRIWRELGLS	PGPT0000655_1196	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000655-glnE-K00982	NA	NA
D1-36_00479	1035	rfaF	COG0859	ADP-heptose--LPS heptosyltransferase 2	ATGAATATTCTGATCGTTGGGCCCAGTTGGGTCGGTGACATGGTGATGGCCCAGACACTGTTCCAGTGTCTGAAGCTGCGTCATCCGCAGTGCGAAATCGACGTTCTGGCCCCTGAATGGAGCCGTCCGATCCTTGAGCGCATGCCCGAGGTGCGCAAGGCCTTGAGCTTTCCGCTCGGCCATGGCGTGCTGGAGCTGGCGACTCGCCGGCGCATCGGCAAATCCCTGGTCGGCCACTACGACCAGGCGATCCTGTTGCCCAATTCGCTGAAATCGGCGCTGGTGCCGTTCTTTGCCGGCATTCCCAAGCGCACAGGCTGGCGCGGCGAGTTTCGCTATGGCTTGCTCAATGACGTGCGCACGCTGGACAAAGATCGTTATCCATTGATGATCGAGCGCTTCATGGCCCTGGCCTACGAGCCGGGGGCCGAATTGCCCAAGCCGTATCCTCGGCCGAGCCTGCAAATCGATCCGGTAACGCGCGAAACGGCCCTGGCCAAGTTCGGTCTGACCCTGGATCGCCCGGTATTGGCCCTGTGCCCGGGCGCCGAGTTCGGTGAGTCCAAGCGCTGGCCGGCGGAGCATTACGCCCAGGTTGCCGAGGCGAAGATCCGTGAAGGCTGGCAAGTCTGGCTGTTCGGTTCGAAAAACGATCACTCGGTGGGCGAAGACATCCGTTCGCGGCTGATTCCGGGCCTGCGGGAAGAGTCGGTCAACCTCAGCGGCGACACGTCCCTGGCCGAGGCGATTGACCTGTTATCCTGCGCCGATTCGGTGGTGTCCAATGACTCCGGCTTGATGCACGTCGCGGCCGCGCTGAACCGTCCGTTGGTTGCGGTCTACGGCTCGACTTCGCCGGGTTTTACTCCGCCGTTGGCCGATCAGGTCGAAGTCGTGCGCCTGGGCATCGAGTGCAGTCCATGCTTCGACCGTACCTGCCGCTTCGGCCATTACAACTGCCTGCGCCAGCTGATGCCGCTGGCGGTGAACGAGGCCCTGGAGCGTTTGCAGGGCACTCCCGTGGAGGTCCGGTAA	MNILIVGPSWVGDMVMAQTLFQCLKLRHPQCEIDVLAPEWSRPILERMPEVRKALSFPLGHGVLELATRRRIGKSLVGHYDQAILLPNSLKSALVPFFAGIPKRTGWRGEFRYGLLNDVRTLDKDRYPLMIERFMALAYEPGAELPKPYPRPSLQIDPVTRETALAKFGLTLDRPVLALCPGAEFGESKRWPAEHYAQVAEAKIREGWQVWLFGSKNDHSVGEDIRSRLIPGLREESVNLSGDTSLAEAIDLLSCADSVVSNDSGLMHVAAALNRPLVAVYGSTSPGFTPPLADQVEVVRLGIECSPCFDRTCRFGHYNCLRQLMPLAVNEALERLQGTPVEVR	PGPT0022510_974	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022510-waaF|rfaF-K02843	NA	NA
D1-36_00480	1059	rfaC	COG0859	Lipopolysaccharide heptosyltransferase 1	TTGCGGGTATTGTTGATCAAGACCTCTTCGCTGGGGGATGTGGTCCACACGTTGCCAGCGCTGACCGATGCGACGCGGGCAATTCCTGGCATCACATTCGACTGGGTGGTGGAAGAGGGTTTCGCCGAAATCCCTACCTGGCATCCGGCCGTGGGCAAGGTCATCCCGGTGGCGATCCGGCGCTGGCGCAAGAACCTCTGGCAAACCCTCAAAAGCGGTGAATGGCGACGCTTCAATCAGAGCATTCGCGCCGAAAAATATGATTTGGTGATCGATGCCCAAGGCCTGCTGAAAAGTGCCTGGCTGACCCGCTACGTCAAGGCACCGGTGGCTGGGCTGGATAAGGATTCGGCGCGTGAACCGCTCGCGGCGCGCTTCTATTCGCGTCGCCTGGCGGTCGCTCGTGGTCAGCATGCGGTGGAGCGTGTACGTCAACTGTTCGCCTTGGCGCTGGGCTATGACTTGCCGCAAACCCAGGGCAGCTATGGCCTGGACATCGACCGACTGGTTGAATTGCCGCGCCCATACCCCTACGTGGTGTTCCTGCATGGCACGACGTGGGAATCCAAACATTGGCCTGAGCTCTACTGGCGTCAGCTCACCGAGCGCATGGGGCAATTCGGCGTGGTGGTGAAACTGCCGTGGGGCAACCCGGCCGAGAAGGCCAGGGCCGAGCGCATCGCCAACGGGCTGCGCAATGCCTTGGTGCTGCCGAAATTGAACCTGGGCGGCATGGGCAAGGTGCTCGCCGGTGCCCAGGCCTGCGTGGCCGTGGATACGGGCCTCGGGCATCTGGCCGCCGCTCTGGATGTGCCGACCATCTCGCTGCTCGGTCCGACCAATCCCGTGCTGACCGGCGCCTATGGCAAGGGCCAGATTCATCTCGCCAGCGATTTTCCTTGCGCGCCGTGCATGCAGAAACAATGCACTTACCCACCGACCGCCGAAGATGCCCGGCGGTTCGACCTGAAACGCGAGCAGCCCCTGTGCTTCACGCGTCTGAATCCCGAGCGTGTTGCCAGCCACCTGAGCACGTTATTGGCTGAGGAGCCGCGCTGA	MRVLLIKTSSLGDVVHTLPALTDATRAIPGITFDWVVEEGFAEIPTWHPAVGKVIPVAIRRWRKNLWQTLKSGEWRRFNQSIRAEKYDLVIDAQGLLKSAWLTRYVKAPVAGLDKDSAREPLAARFYSRRLAVARGQHAVERVRQLFALALGYDLPQTQGSYGLDIDRLVELPRPYPYVVFLHGTTWESKHWPELYWRQLTERMGQFGVVVKLPWGNPAEKARAERIANGLRNALVLPKLNLGGMGKVLAGAQACVAVDTGLGHLAAALDVPTISLLGPTNPVLTGAYGKGQIHLASDFPCAPCMQKQCTYPPTAEDARRFDLKREQPLCFTRLNPERVASHLSTLLAEEPR	PGPT0022495_216	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022495-waaC|rfaC-K02841	NA	NA
D1-36_00481	1122	rfaG		Lipopolysaccharide core biosynthesis protein RfaG	ATGCAATTGGCTTTTGTCCTTTACAAATATTTCCCCTTCGGCGGCCTGCAGCGTGACTTCATGCGCATCGCCTTGGAGTGTCAGCGACGCGGTCACCAGATCCGCGTCTACACGCTGATTTGGGAAGGTGACGTCCCGCCCGGCTTCGAAGTGCTGGTGGCGCCGGTCAAGGCGCTGTTCAATCACCGCCGCAACGAGAAACTCAGCGCGTGGATGGAGGCCGACCTGGCCAAGCGCCCGGTGGACCGGTTGATCGGCTTCAACAAAATGCCCGGCCTGGACGTGTACTACGCCGCCGACGGCTGCTTCGAAGACAAGGCGCAGAACCTGCGCAATTCGCTGTACCGACGCTGGGGGCGCTACCGGCATTTCGCCGAGTACGAGCGGGCCGTGTTCGCCAAGGACGCCAAGACCGAAGTCCTGATGATTTCCGAAGTCCAGCAGCCGCTGTTCATCAAGCACTACGACACGCCGCTGGAGCGCTTTCACCTGCTGCCGCCGGGCATTGCCCACGACCGTCGTCGGCCCGCCGATGCCGATGAGATCCGGGCGGCGTTCCGAGCCGAATTCGAGCTGGCCGACGACGATTTGTTGTTGGTGCAGATCGGCTCCGGGTTCAAGACCAAGGGCGTCGACCGCAGCCTCAAGGCCCTGGCCGCGCTGCCCACGCAATTGAAAAAACGCACTCGGCTGTTTGTAATCGGCCAGGACGACCCCAAGGTATTCCAGATGCAGAGCGCTGCGCTGGGTCTGGGCGATAATGTGCGGTTCCTCAAGGGTCGCAGCGATATCCCGCGTTTCCTGCTCGGTGCCGACCTGTTAATCCACCCGGCCTACAACGAAAACACCGGCACGGTACTGCTCGAAGCGCTGGTGGCCGGGTTGCCGGTGCTGGTCAGCGCGGTGTGCGGGTACGCTCACTACATCGCCGAGGCCGACAGCGGCCTGGTGCTGGATGAGCCGTTCGAACAGGCGCAGTTGACCGAATATCTGAGCCGGATGCTTAGTGATCCGCAAGCGAGGGCGGCCTGGAGCCGCAATGGTCTGGCCTTCGCCGAGACGGCCGACCTCTACAGCATGCCGCAGCACGCGGCCGATGTGATATTGGCGGAGCACGCTTAA	MQLAFVLYKYFPFGGLQRDFMRIALECQRRGHQIRVYTLIWEGDVPPGFEVLVAPVKALFNHRRNEKLSAWMEADLAKRPVDRLIGFNKMPGLDVYYAADGCFEDKAQNLRNSLYRRWGRYRHFAEYERAVFAKDAKTEVLMISEVQQPLFIKHYDTPLERFHLLPPGIAHDRRRPADADEIRAAFRAEFELADDDLLLVQIGSGFKTKGVDRSLKALAALPTQLKKRTRLFVIGQDDPKVFQMQSAALGLGDNVRFLKGRSDIPRFLLGADLLIHPAYNENTGTVLLEALVAGLPVLVSAVCGYAHYIAEADSGLVLDEPFEQAQLTEYLSRMLSDPQARAAWSRNGLAFAETADLYSMPQHAADVILAEHA	PGPT0022515_341	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022515-waaG|rfaG-K02844	NA	NA
D1-36_00482	807	rfaP		Lipopolysaccharide core heptose(I) kinase RfaP	ATGAAATTGATGCTGGCCGAACCGTTCAAGAGCCTTTGGGCCGGGCGCGATGCGTTCGTCGAAGTCGAAGCGCTCCAGGGCGAGGTCTACCGTGAGCTCGAAGCCCGGCGCACCCTGCGCACGGAGGTAGAGGGTCGCGGTTTTTTCGTGAAAATCCATCGTGGCATCGGCTGGGGCGAGATTTTCAAGAACCTGCTCACCGCCAAGCTGCCGGTGCTGGGCGCGGGCCAGGAATGGAAGGCCATCCAACGGCTGCAGGAAGTCGGCGTGCCAACCATGACCGCCGTTGCCTATGGAGAGAAGGGCAACAATCCGGCGGACCAGCATTCCTTTATTGTTACCGAGGAGCTGGCGCCTACCATAAGCCTTGAAGACTTCAGCCTCGACTGGGTCAAGCAGCCTCCGCAGCCCCGGCTAAAGCGAGCACTGATCGCCGAAGTGGCGCGCATGACCGGCATGATGCACCGCGCTGGGGTCAACCATCGCGACTGCTACATCTGCCACTTTCTGCTGCACACCGACAAACCGGTGACGCCCGAGGATTTCAAACTCTCGGTGATCGACCTGCACCGCGCCCAGACCCGTCCGGCTATCACCACGCGCTGGCGTAACAAAGACTTGGCGGCGCTGTATTTCTCCGCGCTGGACATTGGCTTGACCCGGCGCGACAAGCTGCGTTTTCTCAAGGGCTATTTCCAGCAGCCGCTGCGCCAGATCCTGGCGCAAGAGGCTGCGTTGCTGGCCTGGCTCGAAGGCAAGGCCAAGAAACTGTATGAGCGCAAACAGCGGTACGGGGATGCGCTCTGA	MKLMLAEPFKSLWAGRDAFVEVEALQGEVYRELEARRTLRTEVEGRGFFVKIHRGIGWGEIFKNLLTAKLPVLGAGQEWKAIQRLQEVGVPTMTAVAYGEKGNNPADQHSFIVTEELAPTISLEDFSLDWVKQPPQPRLKRALIAEVARMTGMMHRAGVNHRDCYICHFLLHTDKPVTPEDFKLSVIDLHRAQTRPAITTRWRNKDLAALYFSALDIGLTRRDKLRFLKGYFQQPLRQILAQEAALLAWLEGKAKKLYERKQRYGDAL	PGPT0022545_100	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022545-waaP|rfaP-K02848	NA	NA
D1-36_00483	735			hypothetical protein	ATGTCGGGTTGGAATTTGGAACCCGCCTACGCTGAGCTGGCACAGGATTTCGGCAGCCTCGACGCGGTGTTCGCCCTCCAGGGCGAGCGCCTGACCCGCGATCCACTGTCAGAGGTGATCCGCGTACAACGCAACGGCGTGAATTATTACGTCAAGCGCTATACCGGCGCCGGCAAGGGCTTGCGTCGTTATCTGGGCAAGCCACGGGTCAAGTCGGAATGGCAGAACCTCAAGCGTTTCGCCAAGTGGGGTATTCCCACAGCGGAAATTGTCGCCTGGGGGCTGGAACGACGGGGTGCGGCCTATGATCGCGGCGCGATGATCACCCGCGAATTGCCGCGCACCGAAGACCTTTCAGCCCTGGCCGAGCGGCACGATTCGCGGCTCGACGATCGCGCCTGGGTCGATGGCGTGAGCCGGCAGCTCGCCGGTTATACCCGGACCATGCACGATCACCGTTTCACCCATAACGACTTGAAATGGCGCAACCTGCTGATCGACGACCGGGCGCGTCTGTTCCTGATCGACTGCCCGAACGGTGACTTCTGGCGCGGCTTCTGGCTCAAGTACCGGATCACCAAAGACCTGGCATGCCTGGACAAAGTCGCCAAATATCATTTGTCGGCCACCCAGCGCCTGCGTTTTTACCTGCAATATCGCCAGCGCGACCGGCTCGATGCGTGCGACAAGAAACGTATTCGCCACGTGGTGAGATTTTTCGAGGGGCGTGAATGA	MSGWNLEPAYAELAQDFGSLDAVFALQGERLTRDPLSEVIRVQRNGVNYYVKRYTGAGKGLRRYLGKPRVKSEWQNLKRFAKWGIPTAEIVAWGLERRGAAYDRGAMITRELPRTEDLSALAERHDSRLDDRAWVDGVSRQLAGYTRTMHDHRFTHNDLKWRNLLIDDRARLFLIDCPNGDFWRGFWLKYRITKDLACLDKVAKYHLSATQRLRFYLQYRQRDRLDACDKKRIRHVVRFFEGRE				NA	NA	NA	NA	NA
D1-36_00484	753			hypothetical protein	ATGACCGATTTCCTGGCCGCCGAAGACCGGGCCTTGCTGGAGCGCCATGGCCTGGACAGCTTCGAAGCCCTCTGGTTGCGCAAGCTGGACGCAGTGGACGAGCCCAATACGGCTGGCGATGGCTGGAGCAGTGTGTTCCGGCTGGAGCTCGAGGGGCAGGGTTATTACCTCAAGCGCCAGAGCAATTACCTGACCCGGACGCTATCGCACCCTTTTGGCGAACCCAGTTTTTCCCGGGAGTTTCGCAACATCAGCCGGTATCGCCAGTTGGGTATCCCAGCGTTGCAGGCGGTCTTCTACGGGCGGCGGAAAGTGGACGGCGAGGTTCGGGCGATTCTGTTGACCCGCGCCTTGGACGGCTGGGATGACCTGGATTCGCTCCTGGAGCGCTGGCCGTCCCTGACGACCGTGCAACGCACCACCATCGTTCAGGCCTGTGGTCACCTGGCGCGGCGACTGCACGACATGCATCAGGTGCATGGCTGTTTCTATCCCAAGCATATTTTTCTGCAGGCCACTGCCGGCGGTCACCAGGCACAGTTGATCGACCTGGAAAAGACCCGTCCGCTGCTGTTCGGGCAGCGTGACCGGGTCAAGGACCTGGAGCCGTTGCTGCGCCGGGCCCGGGCCTGGAGTGAAGAGGATGTGCGTCAGCTGCTGTCTACCTATCTGGACCAACCGCTTGACGGTGCGCTGGTCGATCGATGGTTGGCCCGCCTGAGCGCTCGACGCACTCATAAGGAGACCCGCTGA	MTDFLAAEDRALLERHGLDSFEALWLRKLDAVDEPNTAGDGWSSVFRLELEGQGYYLKRQSNYLTRTLSHPFGEPSFSREFRNISRYRQLGIPALQAVFYGRRKVDGEVRAILLTRALDGWDDLDSLLERWPSLTTVQRTTIVQACGHLARRLHDMHQVHGCFYPKHIFLQATAGGHQAQLIDLEKTRPLLFGQRDRVKDLEPLLRRARAWSEEDVRQLLSTYLDQPLDGALVDRWLARLSARRTHKETR				NA	NA	NA	NA	NA
D1-36_00485	1461			hypothetical protein	ATGCATTTGTCGGAATTGAAAGGCGCTGGCCGCAGCCCGAGCCTGCCCCTGAGCCTGGAGCTGGCGGATGCCGCTGGCCCGGCGCAATTGCAACTGTTGTCACTGTTGCGGGTGCTGCCTGGGCAGCGTTACGTCGGCGCCGGTATCTGGCGCGGCCGGCCCGTGCTGGCCAAGTTACTGGTGGGCAGCAAGGCGCCGCGGCATTTCCAACGAGAGCTGCAAGGTGTTCGCCTCCTCGCGGAACAGGGGCTGACGACCCCATTGCTGCTGGCCGATGGCTTGAAAGAAGGCGAGGGTGGCTGGCTGCTGTTCGAGCTGCTGGAAGGCGCTGAGAGTCTTGGCGATGCCTGGAAGCAGGTCGAACATCTCCCCATGTTGGCGGACGAACAAACGGCGGTGCTGGCCGAGGCGCTGGGCGCTATTGCGCAGCTGCACGGCAAGGGCCTGTGGCAAGAAGATCTGCACCTGGACAATCTGCTGCGCCATGGCGACAAGCTCTATCTCATCGATGGGGCCGGCATTCGCGCCGAAACCCCCGGCCAGCCATTGTCGCGGCAAAAGGTCTTGGAAAACCTGGGGGTGTTTTTCGCCCAGCTTCCAAAATCCATCGAGCCGTTCAATGAAGAGTTGCTGGTGCATTACCTGTTGAGTAACGCCGAACACGCCCTGCCGATGGAAGCGCTGCAAAAACAGATCGACAAGGTCCACGCCTGGCGGCTGAAAGACTTCCTTGAAAAGGTCGGGCGCGAATGCAGCTTGTTCAGCGTGCAGCGCGGGCCGTTCGGCCTGCGGGCTATTCGTCGCGATGAAGAAACGGCCATGGTCCCGGTGCTGGAGCATGCCGATGCGTTGCTTGACCAGGGTCACTTGTACAAGACCGGTGGTGCCGCCAGTGTCGGTAAGGTCGAATCGAACGGTCGCACCCTGGTAATCAAACGCTACAACATCAAGGGCTTCGCCCACTGGCTCAAGCGCTTCTGGCGCCCGAGCCGAGCCTGGCATTCCTGGCGCGAAGGCCATCGGCTGGCCTTCCTCGGCATCGCCACGCCCAAGCCACTGGCGTTGCTGGAAAAGCGTTTCCTGTGGTTGCGTCGTGGCGCCTATCTGGTCACTGAACACCTGTCTGGCCCGGACATCATCGAACGCTTCGCCCCGCATGTGGAAAGCGGCGAAGCCCCTGAGTCCGAGCTGTTGGCGCTGGATCGCTTGTTCGCCGACCTGATCCGCGAGCGCATCAGCCACGGTGACTTCAAAGGACACAACCTGTTCTGGCAAGACGACCGCTGGGCATTGATCGACCTTGATTCCATGTGCCAACACCGGACCCAGGCCAGCTTCGCCCAAGCCTACGCCCGGGATCGCGCACGGTTCATGCGTAATTGGCCTGAGGGAAGTGCGCTGTATCGGGTGATCGATCAGCGGTTGCCGAAGGCAGTCGATAACACGTCGGCTATCGTGTAA	MHLSELKGAGRSPSLPLSLELADAAGPAQLQLLSLLRVLPGQRYVGAGIWRGRPVLAKLLVGSKAPRHFQRELQGVRLLAEQGLTTPLLLADGLKEGEGGWLLFELLEGAESLGDAWKQVEHLPMLADEQTAVLAEALGAIAQLHGKGLWQEDLHLDNLLRHGDKLYLIDGAGIRAETPGQPLSRQKVLENLGVFFAQLPKSIEPFNEELLVHYLLSNAEHALPMEALQKQIDKVHAWRLKDFLEKVGRECSLFSVQRGPFGLRAIRRDEETAMVPVLEHADALLDQGHLYKTGGAASVGKVESNGRTLVIKRYNIKGFAHWLKRFWRPSRAWHSWREGHRLAFLGIATPKPLALLEKRFLWLRRGAYLVTEHLSGPDIIERFAPHVESGEAPESELLALDRLFADLIRERISHGDFKGHNLFWQDDRWALIDLDSMCQHRTQASFAQAYARDRARFMRNWPEGSALYRVIDQRLPKAVDNTSAIV				NA	NA	NA	NA	NA
D1-36_00486	1758	tobZ		nebramycin 5' synthase	GTGGCATTGACGATTCTTGGCCTGTCCGGCGCCCTTAGCCATGATCCTTCCGCAGCGCTGTACATCGACGGCAAGCTGATCGCGGCGGCCGAGGAAGAGCGCTTCGTACGCGATAAACATGCAAAGAACCGCATGCCCTACGAGTCGGCGAAGTTCTGCCTGGAGCAAGCCGGCATCAAGCCGTCCGACGTTGACGTGGTGGCGATACCCTTTGCCCCGATCAGCCTGTTCGGCGAGGCGCGCTGGCACTACGCCAAGCGCTACTGGTACGCCCCGGACCGTGCCCTCGATGCGATTCTGATGGGCAATCGTCGCTACAAACGTTATCGCCGCAAGATCGTCTGGTGCCTGGAACAACTGGGTTTCGACCCGAAAAAAATCAAGATCGAGCCGGTCGAGCACCACCTGGCCCATGCCTCCAGTGCCTATCACTGCTCGGGCTTCCAGGAAAAAACCGCCATCCTCGGCATCGACGGCAAGGGCGAATACGCCACGACCTTCTTCGGCTATGGCGAAAACGGCAAGATCCACAAGATCAAGGAATTCTACGACCCGGACTCCCTGGGTGGCCTGTACGGCGCGATCACCGAGTTCCTCGGCTTCGAGATGCTTGATGGCGAATTCAAGGTCATGGGCATGGCGCCCTACGGCGACGCCAGCAAATACGATTTCTCGCGCCTGGCCTCGTTCGAAAACGGCCAATTAGTGATCAATACCGATTACGCCAACGTGATCGGCCTGCGCCGCTATAAAGAGAAAGGCAAGGGTTTCTACTTCTCGCCAAAGCTGATCGAGTGGCTCGGTCCGAAACGCGAAGGCGACATCGCCGACGAGCCGTACATTCACTACGCGGCCAGCATGCAAGCGCTGTTCGAGAAGCTTGCGCTGCAAATGATCGATCACTACCTGGGCGACGTGCTCAAGGAAACCGGCAAGCTGGCGTTCGCCGGCGGCTGTGCATTGAACGTCAAGCTGAACCAGAAAATCATCGCCCGCGATGACGTCAAGGAGCTGTTCGTGCAACCGGCTTCCGGCGACGCCGGTACGGCGGTGGGCGCGGCGGCTTATGTGTCCCACGCCCGTGGCGTGCCGGTGGAGAAGATGGAACACGTCTACCTCGGCCCAGCCTATAGCAACGAAGATGTGATCGCCGCCTGCGCCCGTCACCCGAGCAAGCCGGCGTGGCGCAAGATCGACAACACCCCTGAGCGCATCGCCAAGATCATGGTCGACGGCAACCCGGTGGCCTGGTTCCAGGGCCGCATGGAGTTTGGCCCGCGGGCCTTGGGCGGTCGTTCGATCATCGGTTGCCCAAGCGCCAGCGGCGTGGCCGACCGCATCAACGAACAGATCAAGTTCCGCGAACGCTGGAGGCCTTTCTGCCCGTCGATGCTCGACACCGTTGCGCCGCAGATGATCAAGGTCGACCACCCGGCACCGTTCATGACCTTCACGTTCGAAGTGGCTGAGGAATGGAAAACCCGCGTGCCGGAAGTGGTCCATGAAGACGGCACCTCCCGGGCCCAAGTGCTCAAGCGTGAATACAACCCGCGTTACTACGACATGATGAAAGCCCTGGAAGTCCTGACCGGCAATGGCGTGTCGCTGAACACCTCACTCAACCGTCGCGGCGAACCCATGATCTGCTCGCCCACCGACGCGCTGAACATGTTCTATGGTTCCGACCTGCAATACCTGATCATGGAGGACATCCTGGTGGTCAAGGACGGCGTGGACGCTTATGACACGCTCGGCTGA	MALTILGLSGALSHDPSAALYIDGKLIAAAEEERFVRDKHAKNRMPYESAKFCLEQAGIKPSDVDVVAIPFAPISLFGEARWHYAKRYWYAPDRALDAILMGNRRYKRYRRKIVWCLEQLGFDPKKIKIEPVEHHLAHASSAYHCSGFQEKTAILGIDGKGEYATTFFGYGENGKIHKIKEFYDPDSLGGLYGAITEFLGFEMLDGEFKVMGMAPYGDASKYDFSRLASFENGQLVINTDYANVIGLRRYKEKGKGFYFSPKLIEWLGPKREGDIADEPYIHYAASMQALFEKLALQMIDHYLGDVLKETGKLAFAGGCALNVKLNQKIIARDDVKELFVQPASGDAGTAVGAAAYVSHARGVPVEKMEHVYLGPAYSNEDVIAACARHPSKPAWRKIDNTPERIAKIMVDGNPVAWFQGRMEFGPRALGGRSIIGCPSASGVADRINEQIKFRERWRPFCPSMLDTVAPQMIKVDHPAPFMTFTFEVAEEWKTRVPEVVHEDGTSRAQVLKREYNPRYYDMMKALEVLTGNGVSLNTSLNRRGEPMICSPTDALNMFYGSDLQYLIMEDILVVKDGVDAYDTLG	PGPT0015285_581	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,PGPT0015285-nodU-K00612	NA	NA
D1-36_00487	1131	mshA_1		D-inositol-3-phosphate glycosyltransferase	ATGACACGCTCGGCTGAGCGACATGTGCTGCAGTTCTGCCACGGTTATGACGGGCCGTTCCTGGACTGCGCCCGTCAGTACGCCAGTCTGTTCGCCGGAACCGGTTATCGTGTGACCACGGTGTTTCTCACCGGCTCGGCGGACGCCGAGGTTGCCGCTGCCTGTGCCTCGGACGAGGTGTTGTTCATGGAGTACAGCTCCAGTGCCATTCGCGGCCTGAAGCTGGGTGCCATCAGCGATCTGCGCAAGATCGCCGCCTCGCGCAATTTCAGTTTCTGCATCGCGCACCGGTTCAAGCCGATCTACATCGCCCTGCTCGGCACCGGGTTGCCGGTGATCGGCGTGCACCATGCCTTTGGCGATTATCAACGGCGTACCCGCCGATTGTTCGCCCAGGTTTTTCGCAAGCGCCTGAGCTTGCTCGGGGTGTCCGACGCCGTGCGCGACGACATGCGTCGCTGCCTGCCAAAATGGCCGGTCGGCAGGATCCAGACCCTCTACAACCGTATCGATCTGGAGGCCTTGCAGGCCAGCCAGGTTTCCCGGGAGCAGGCGCGACAAACCCTTGGGCTGGAAGCGAACGCCTGGATTGTCGGCAACGTCGGACGCCTGCATCCGGACAAGGACCAGGCCACCCTGCTTCGTGGTTTTGGCGCTGCGCTGGCGTACCTGCCAAGCCACAGCCAACTGGCGATTCTGGGCAAGGGGCGCCTGGAACAGGACCTCAAGGCTCTGGCGCGAGAGTTGGGCATTGCCGACCGCGTGCTGTTTCTCGGCCAGGTGCCAGAGGCCCGTCGTTATTTCCGTGCCTTCGACGCGTTTGCGCTGAGCTCTGATCACGAGCCGTTCGGCATGGTGCTGCTCGAAGCCATGGCTGCCGGCGTGCCGTTGCTGGCCACGGCCTGCGGTGGCGCAAAGGAGGTCGTCGAGGGCGTCGGCATCCTGTTCCCGCTCGGTGACGCCGAGCACATGGCCCAAGGGCTGCAACACCTGGCTGCGATGGACGAATTGCAGCGGCGCCAATGCGCCGAATTGATGCTGGAGCGCTTGCGCGAACGTTTTTCCGATCGCGCCGTACGCGAGGCATTCTGGCGCTTGCCCCAAGTGACTGAACTGGCGCCGAGGAACTGA	MTRSAERHVLQFCHGYDGPFLDCARQYASLFAGTGYRVTTVFLTGSADAEVAAACASDEVLFMEYSSSAIRGLKLGAISDLRKIAASRNFSFCIAHRFKPIYIALLGTGLPVIGVHHAFGDYQRRTRRLFAQVFRKRLSLLGVSDAVRDDMRRCLPKWPVGRIQTLYNRIDLEALQASQVSREQARQTLGLEANAWIVGNVGRLHPDKDQATLLRGFGAALAYLPSHSQLAILGKGRLEQDLKALARELGIADRVLFLGQVPEARRYFRAFDAFALSSDHEPFGMVLLEAMAAGVPLLATACGGAKEVVEGVGILFPLGDAEHMAQGLQHLAAMDELQRRQCAELMLERLRERFSDRAVREAFWRLPQVTELAPRN				NA	NA	NA	NA	NA
D1-36_00488	897			hypothetical protein	ATGCTCAACCGATTCCAAGGCTGGCGAGAGCGCGGCTGGACCACCACGGATGCCTCGAGCTACGCCCAGGCGTGGCAACGTTTTGGCGGCAGTGTGGCGACACACCCCCTGGTCGTGGAGCGCCTGGCCGCCCTGGCTGGGATTCCCGTGCGTTACCTGGCATTCGAGCAGGGCGGCGAGCTGAAGGCGGCAATTCCGACCTGGGGCCGCGATCTGGCGCTGTCGAAGGACGTGCTCAAGCGCAGCGGAAAAAAAGGCCTGTTCGACCTGGGCAATGCCGAGTTGATCCTGCCGGCCGCGCCCGACACCCAGGCACCGTTGCGTCATCGAGGACGGTATCTGTCGGCGCTCAATGAAGGTCGCTTCAGCGGTTTGAAACTGCAGAAAGAGCAGCTGGCCATGGCTCGCCTGCCGGAAGAACTGTCCAAGAAGTTCCGCTACAACCAGCGCCGTGAATTGCGTCTTCTGGAGGAAGCCGGCGGGCAGGTGCGGCCGGTCGGCGAGTTCTCCAGTACCGAGTTGGCGTCGATCTACTGTGATCTGTTCCAGCGTCGCTGGGGTTTTCCCGCCACCGGTGCCGAGCGCATGGGCGAGGTGGTCGAGCTGCTGCGCGAGCTGCTGATCGGCTCGGTGATTTTTCTCAACGATGCGCCCATCGCCATCCAACTGGTCTATCGCGTCGAAGCGCCTGAATGGATCAGCGTCGAATACATCAATGGCGGCGTCGACCCGCAGACTCGCGAATTCAGCCCGGGCAGCGTCTTGAGCTTCCTCAATACGCAAGGCGCCTGGGAGCACGCCCGGGCCGCGGGCAAGCCGTTGCGGTTTTCCTTTGGCCGGGCGGATCGCGAATACAAGGATCGCTGGTGCAACCCCGTGCCGGTATTCAGCGTATGA	MLNRFQGWRERGWTTTDASSYAQAWQRFGGSVATHPLVVERLAALAGIPVRYLAFEQGGELKAAIPTWGRDLALSKDVLKRSGKKGLFDLGNAELILPAAPDTQAPLRHRGRYLSALNEGRFSGLKLQKEQLAMARLPEELSKKFRYNQRRELRLLEEAGGQVRPVGEFSSTELASIYCDLFQRRWGFPATGAERMGEVVELLRELLIGSVIFLNDAPIAIQLVYRVEAPEWISVEYINGGVDPQTREFSPGSVLSFLNTQGAWEHARAAGKPLRFSFGRADREYKDRWCNPVPVFSV				NA	NA	NA	NA	NA
D1-36_00489	1416			hypothetical protein	ATGAACCCGCCGATGAATCGAAAACAACAACTGCTCAAGCGCCATCGTCGCAACAAGCGCGTGGGGCTGTTGTGCGCCCTTGTCGTATTGGGGCTGATAGGCGTTTGGGTGGCCTGGTGGCTGCCGCTGGTGCTGGCGCTGTTGGGCTGGGTAGCCCACGAGGCGTGGTTCGCCGATCATCTGTTCTATTCGCCCAAGGATGACTACCAGTACGATTTCCCCCCCTTCACGCAGCAACCGAAGGTTCACCTCAATGCAGGGCGACTGCGCCTGGATGAAGGTGTGATTCTCGATGACGGCGCGACTCTGGTCCTGGCCTTGCGGATCAAAAGCACCTGGCTGGGGCGTTTCTTCGATCCGAGCGTCGAGTTGTCGGGCGGTGAAGCGGCGGACCGACAAACATTCGAGCGTGGAGTCAACGGCCTGCGCTACCTCAACCTCAGTGAGCAGGGCGCGGTGCTGTCCCGGGGTGAATTGCGCTTGCGCGGACGCTTTTGTCGCTTGTCGGGCGAGCCGATGCTGTGGTCGTTTGCGCCGATGGAGCTACAGCGTCCACGGCTGATGGTTATCGCGCCCCACGCCGACGATGCGGAACTGGCCGCTTACGGACTCTACAGCCAGGCCGAAGAGGCCTGGATCGTCACCCTGACGGCCGGGGAAATCGAAGCACAACATTACCAGCGCATGGGCCTGGGACGTGCCGAAGCTGCGCGGCTCAAGGGCCGATTGCGCGCCTGGGACAGCCTCGCCGTGCCGCGTTGGGCCGGTGTGCCGCAGGAACACTGCGTGCAACTGGGGTATTTCTGCCTGCAACTGGCGGCGATGCAAGCCGCGCCCGGCCAACCCCAGGGCTCCCGCGAGGCGGATCTGAGCGATACCCGGCTGTTTCGCCAACTGAACCCGTTTACCTTGCCCGGCGATGCAGATGGCGCGCCGACCTGGAACAACCTGCTGGCGGACTTGCGCGAAGTGCTGCTCAAGGCGCGTCCCGAAGTGATTGTGCTGCCTCACCCGACGCTCGATCCGCATCCCGATCATCTTTGTGCCCACCAGGCTGTCTTGCAGGCGCTGGAAGGACTGGAGTGGCAGCCCTCCGTGCTGCTGGGATACGCCAACCACCTGCACGACAACGATCGTTGGCCCATGGGTGATACCGGCATGGGCGTCGCGTTGCCGCCCCATTTCGACCCGGCCCGGCCGATGCATCCGTTCAGCCTGGGCCTGACCCTGGCCGGGCAACGTGACAAGGCCATGGCGCTGGGCATGATGCATGACCTGCAGCCGCCTGCTCCGTTCAAGCGTCGGTTGCGTCGTGGTATCCAGCGTCTGTTGGCCGGGCGCCGGGAGTCGCCCTATGGCGAGAATGAATTCTTTCGCAAGGCTGTACGCCGTCATGAACTGTTCTGGCGGCTTTAA	MNPPMNRKQQLLKRHRRNKRVGLLCALVVLGLIGVWVAWWLPLVLALLGWVAHEAWFADHLFYSPKDDYQYDFPPFTQQPKVHLNAGRLRLDEGVILDDGATLVLALRIKSTWLGRFFDPSVELSGGEAADRQTFERGVNGLRYLNLSEQGAVLSRGELRLRGRFCRLSGEPMLWSFAPMELQRPRLMVIAPHADDAELAAYGLYSQAEEAWIVTLTAGEIEAQHYQRMGLGRAEAARLKGRLRAWDSLAVPRWAGVPQEHCVQLGYFCLQLAAMQAAPGQPQGSREADLSDTRLFRQLNPFTLPGDADGAPTWNNLLADLREVLLKARPEVIVLPHPTLDPHPDHLCAHQAVLQALEGLEWQPSVLLGYANHLHDNDRWPMGDTGMGVALPPHFDPARPMHPFSLGLTLAGQRDKAMALGMMHDLQPPAPFKRRLRRGIQRLLAGRRESPYGENEFFRKAVRRHELFWRL				NA	NA	NA	NA	NA
D1-36_00490	957			hypothetical protein	ATGAAAGTTCTGTTTCTGGTGCAGAAAGAACAACGGGCCATCCTGGATCGGCTCTATGAAGGTGTCGCCGCCCATTGCGAGTGCGACCTGCGCTGGCTCGACAGCCAGGAGCAACGCAACCTGCGAGGCTATTTCCGGAGACACGTGGACGTCTCCCGCTACGACCGGATTGTATTTTTCCTGCGCTTCAAGCAGGAAATCCGCCAGGCGGGGTTCATCCGCACGATCCCCAACCTGGTGATCCTGGAGCATGACGCCTACCAGAACTACATCCCTTGCAAATACACCGGCAAGTTCAGCGCCCATTACCGACGCCTGCCGTGGGTGCGGGTCATCAGCTCCGGGTTCATGGTGACCGAACGCTTGCGTGCCGAAGGGTTCGATGCGGTTTTCGTACCCAAGGGCTATGATCAATCGCTGTTGCAAGACCAGCAGCGCGAGCGGGATATCGAGCTGGCGTTTGTCGGCAGTACCAACAGCGTCGCCTATAGCGGGCGCAAGGCATTGCTGGACGAGCTGGCGCGCGTCGAGCCGCTGGTCGTCACCCGTACCAAGTCCGGCGAAGAGTATTGCGAAACCCTCAATCGGATCCGCTTCTTCGTCAGTGCCGATGTGGGCATGGGCGAGTACATGATCAAGAATTTCGAGGCGATGGCCTGCGGTTGTGTGCTGCTGGCCTATGATCAAGGCGCCGAGGAAGCGCGGGCGCTAGGGTTGCAGGACATGCATAACGTGGTGTTGTATCGGGACATCCCGCAACTTCAGGAAAAACTTTCCCGGCTGCGCGCCGAGCCCGAACTGGCGCAAAGTATCGCCCGCAACGGCCACAGGCTGGCATTGGAGCAGTTCAGCTTCGCGCGTATCGGACAAAAAATCGTGGAAGCGCTGGAACCTCCGCTGCGACCGCGCGAACCGTTGAGTCTGCTAGAGTCCTTGCGCCAGAAACTGGGCATTTAA	MKVLFLVQKEQRAILDRLYEGVAAHCECDLRWLDSQEQRNLRGYFRRHVDVSRYDRIVFFLRFKQEIRQAGFIRTIPNLVILEHDAYQNYIPCKYTGKFSAHYRRLPWVRVISSGFMVTERLRAEGFDAVFVPKGYDQSLLQDQQRERDIELAFVGSTNSVAYSGRKALLDELARVEPLVVTRTKSGEEYCETLNRIRFFVSADVGMGEYMIKNFEAMACGCVLLAYDQGAEEARALGLQDMHNVVLYRDIPQLQEKLSRLRAEPELAQSIARNGHRLALEQFSFARIGQKIVEALEPPLRPREPLSLLESLRQKLGI				NA	NA	NA	NA	NA
D1-36_00491	765			hypothetical protein	GTGCAGTTTTCCGACGATAGTGACATCACCCTGGTGGTCACCAGTTGCGGCCGGCTCGACCTGCTCAAGCGGACGCTCGAGAGTTTCGACCGTTTCAATACTGCGCCTATCCGCGAAGTGTTCATTACCGAAGATGCGGGCGACGATGGGGTGCATGAGGTCCTTCCTGCCCATTGGAAGGCGCACTGCACGGTTTTCATCAATCGGCCGAAGCTGGGGCAGCTGGCGTCGATCGATCTGGCCTACGGACACGTCAAGACAGCGTATATCTTCCACTGCGAGGATGACTGGGAGTTCTACCGCCCGGGGTTCGTGGAGGACTCTCTGACGGTCCTGCAACTGCGGCCCGAGATTCTCCAGGTATGGCTGCGCAATTATGTCTACGACCTGTGTGTCCACAGTCCCTACATTCGCTTGGGCGAGCGTCAGCTGATCGGCGGCGTGCCGTGCTATCCACTGATATCCGACAAGCCTGAATGGCAGAGTTTTTCCCTCAACCCTGGCCTGCGCCGTTTGAAGGAATACCAGTTGTGCGCCCCGTTTGCCGGTTTTGGTGGCGAAAAGGCCCTGTCGCTTCGTTACGCTCAACTGAACTTGACCGCGGTCACCCTCGAAGGGGATGCTGTTTTACACACCGGATTCGGTGTCCATGTCGAAGTACCTGTCGAACGCCAGCGCAAGGCGCGTCGCAGGCGCCGTGAGCAAATCAAGCTCTTTCTGATCCTTTTGCTCGGAGTCTGTGTTGGCTGGCTTATCAATTATTGA	MQFSDDSDITLVVTSCGRLDLLKRTLESFDRFNTAPIREVFITEDAGDDGVHEVLPAHWKAHCTVFINRPKLGQLASIDLAYGHVKTAYIFHCEDDWEFYRPGFVEDSLTVLQLRPEILQVWLRNYVYDLCVHSPYIRLGERQLIGGVPCYPLISDKPEWQSFSLNPGLRRLKEYQLCAPFAGFGGEKALSLRYAQLNLTAVTLEGDAVLHTGFGVHVEVPVERQRKARRRRREQIKLFLILLLGVCVGWLINY				NA	NA	NA	NA	NA
D1-36_00492	990	mshA_2		D-inositol-3-phosphate glycosyltransferase	TTGCAGGGCTCGGAATCTGCGTGCCTGGAGGGCGTGGGTCCGGCGCGTGAATGGAACCTGACCTCGGCGAAACTCAAGGGGCGGCACTTCTGGCGCCTGTTCAGGCCCTGGATGCACAGCCGTTTTCGCCAGGCGCTGCTCGACAGCGCTGCCCAAGTGGTCCTGCTCGACGGCCTCGGTGTGGCTCGTACCCTGTTGCCAGTATTGAAGGACATGCCGCACATCCATGTGGTGGTGATATTCCACGGGGCGACACGGCTCAATGCCGTGGGCCGGGATCTGCTGCGCGGCTTTGCGCCCTCGCGCCTGGCCCTGGCTGCGGTGTCGCAGACATTGGCGGCATCGCTGCAGGAAGCGCTGGGGTTGCCGGTCACTGCGTTGCGCAGTGCATTCGATCCGGCTGGATTCCAGGCCTGCCTCCTGCCACGTGAAGAGGCTCGTGCCCGGATGCACTTGCCTTTGGCGGGCCCCCGCATATTCGGCGCCGTGGGGCGGCTGGTGGACAAGAAGGGCTTCGCCAGTTTGCTCGATGCCTTTGCCCTGGCGGCTGTCGCGCAGCCTGACTGGCGCTTGGTGATCGTCGGCGAAGGGCCTGCACGGGAAGCACTGCAGGCGCGCATCGACCAGCCGGACCTGGTCGACAAGGTATTGCTTGCGGGGCATCTGGAAGACGTGGCGAAGCTCTATAGAGCGTTCGACTGGGTGCTGGTCCCCTCCTTTGAAGAGGGCCTTGGCCTGATTCTCCAGGAGGCGATCCTGGCCGGCGTTCCGGTGCTGGCCAGTAACCTGGCGGTGTTCCGCGAACAGCTGGCCGATGCCGGTTGGTATGCGCCTGCCGGCGATGAGAGTGCCTGGGGCGAGGCGATCACGCGGGCTTCAGAGGCTTCGGCCGAAGCCGTCGCGGCGGCGCAATACCAGGCATTGGCGCCTGACGAGGCATGGGCGGGTTTCTGCCGGACCGCCCGGGAATTGATCTCAGGCAGGCAGTAG	MQGSESACLEGVGPAREWNLTSAKLKGRHFWRLFRPWMHSRFRQALLDSAAQVVLLDGLGVARTLLPVLKDMPHIHVVVIFHGATRLNAVGRDLLRGFAPSRLALAAVSQTLAASLQEALGLPVTALRSAFDPAGFQACLLPREEARARMHLPLAGPRIFGAVGRLVDKKGFASLLDAFALAAVAQPDWRLVIVGEGPAREALQARIDQPDLVDKVLLAGHLEDVAKLYRAFDWVLVPSFEEGLGLILQEAILAGVPVLASNLAVFREQLADAGWYAPAGDESAWGEAITRASEASAEAVAAAQYQALAPDEAWAGFCRTARELISGRQ				NA	NA	NA	NA	NA
D1-36_00493	606			hypothetical protein	ATGCAATCCTCACGGCTTCCCCAAGCCGCTTTGAATCAATTGATTGAAGGCGCCAGCATTCTGGAGGCCGACAGCTACGGCCCAAAAGTCTATCTGTTGCAGGATGGAAACATCCTCAAACTGTTTCGCCGCAAGCGGCTATTTTCGTCGGCCCTGTTCAGGCCCTATTCGACGCGATTCATCAAAAACGCGGCCCGCTTGCAAGAACTCGGCGTACCGACTCTCGAAGTGCTTGCCTACTACAAACTGCAAAAGCCCGGCATGACCGCCGTACTGTATCGGCCGCTTCCGGGAAAAACCCTGCGCCAATTGTCGAATCAGGAGAGCTTCAGCTGGCAACAGCGCCTTCCGGACCTGATCGAACTGATCCGCAGCCTCCACGCCCGTGGTGTCTATTTTCGTTCGTTGCACTTGGGCAATATCGTCGTCACTCCGGAAAACACCCTGGGGCTGATCGATGTCGCCGACATGCGCTTCCTGCGCTCGCCATTGCCGCGCTATCTGGCGCGCCGCAACTTGCAGCATTTCGCTCGTTATATTGCGCGGGAAAACCTGAACGGGAGCTTTCCGATGCAAGCGCTGGAAAACGCCCTACTGCCTGCCTGA	MQSSRLPQAALNQLIEGASILEADSYGPKVYLLQDGNILKLFRRKRLFSSALFRPYSTRFIKNAARLQELGVPTLEVLAYYKLQKPGMTAVLYRPLPGKTLRQLSNQESFSWQQRLPDLIELIRSLHARGVYFRSLHLGNIVVTPENTLGLIDVADMRFLRSPLPRYLARRNLQHFARYIARENLNGSFPMQALENALLPA				NA	NA	NA	NA	NA
D1-36_00494	1173			hypothetical protein	ATGCAAGCAACACGTTGGGCGCAGGTATGGATGGCCTTTGGCTTGTCATGGTTTTTGCTGGCGATCGCACTGGCACCCGCCAACAAGGTTTATCAACAAGGAATGATCGCATTCGTCTGGTTGCCCGCGATCCTGTTCGCCTGGCCCGCGCGGCACAGGCTGGTGGAGTTATGGCGCGCCCAGCGCTTGATCTACACGGCGTTGCTGGCATTGATGGCGTGGGCATTGATCACCCTGTTCTGGGCCGAGTCGCCGGAGCCCGTGCGCGAAGCCAAGCGGTTGTTGTACATCCTGATATTCCTGATGTTCTTCCCGATTTTCGCTGACGGTCGACCTGAGCGGGTGATCCGTATCATGCAGTGGGGCGGTGTTGGGCTAGCCCTGACGGCCTTGATGGCAATGATTCATTTCTATGGGATCGAGAACCAGCGCTGGGTGGCGCGTCTCGAGGGGCTGGGCGAGTTGTCCCATCCGATCCTGGGTGGCTACGTGATTGGCCTCGCGGCGATCTGGATGCTGCATTGGGTGCCGCGTCGTATCGGGCTGCAAGCTGTTTGTGCCGTGGCCTTGGCTCTGCTGGGCTTGTTCGTGGTCATGAGCCAGAGTCGCGGCGCGGCCCTGGCCTTGTTGCTCAGCGTACTGGCCATGCCGCTTTACTGCCGGGACTCGCGTACTCGTTTGATTGCCGCCGCGGCGCTGGTGCTGGCGATGGTGACTTTCTGGTTGCTGGAACCCTTGGTGATGGCCCGCGGAGCTTCCTATCGTCCGGAAATTTTTGCGTCCAGCCTGCAGATTATTTCCGAGCATCCCTGGGGTGGTCTGGGATTGGCAGGCGACTACCGGGTTCCTGTCGGTGGCCGTTTGTTCGACCACTCGCATAACCTGTTCACCCACGTTGCCATTCAGTTGGGCCTGCCCGGAATGTTGATATGGTGCGTGGTCTGGTTCGCGGTGCTGCGCGAGGCCTGGCGTGCCCGTGACACCCTGCTGGGCCGAGGCGTGCTGGGCATGTGGGTGTTTTCGTTCCTGGCGATGCAGTTCGACGCGGCGAGCCTGACGGGCACCCCGCGCGCCGAGTGGTTCATCACTTGGCTGCCGGTCGGCATGGCCAGCCTTTTGACCTGGGCGCGGGCCAATCCCGATGGCTGTGATAAAATCCCGCGCTCTTCCTAA	MQATRWAQVWMAFGLSWFLLAIALAPANKVYQQGMIAFVWLPAILFAWPARHRLVELWRAQRLIYTALLALMAWALITLFWAESPEPVREAKRLLYILIFLMFFPIFADGRPERVIRIMQWGGVGLALTALMAMIHFYGIENQRWVARLEGLGELSHPILGGYVIGLAAIWMLHWVPRRIGLQAVCAVALALLGLFVVMSQSRGAALALLLSVLAMPLYCRDSRTRLIAAAALVLAMVTFWLLEPLVMARGASYRPEIFASSLQIISEHPWGGLGLAGDYRVPVGGRLFDHSHNLFTHVAIQLGLPGMLIWCVVWFAVLREAWRARDTLLGRGVLGMWVFSFLAMQFDAASLTGTPRAEWFITWLPVGMASLLTWARANPDGCDKIPRSS				NA	NA	NA	NA	NA
D1-36_00495	1806	msbA_1	COG1132	Lipid A export ATP-binding/permease protein MsbA	ATGAGTGACGCACCGCCTAAAGCGGAACAGGATTCCAGCCTGAAAATCTATTTCCGGCTGCTGGGATACGTCAAACCCTACTTGGGCATTTTCCTGCTGAGTATCGTGGGCTTCGTGATATTTGCGTCCACCCAGCCCATGCTGGCCGGGATACTCAAATATTTTGTCGACGGGTTGAGCAATCCCGATGCGGTACTGTTTCCCAGCGTGCCGTATCTCAAGGATTTGAAGCTGCTGATGGCCGTGCCGCTGCTGATCATCCTGATCGCTGCCTGGCAGGGCCTGGGGTCGTTCCTGGGCAACTATTACCTGGCCAAGGTCTCGCTGGGGCTGGTGCATGATCTGCGGGTCGAGTTGTTCAACAAGCTGCTGGTCCTGCCCAACCGCTATTTCGACACCCACAATTCCGGTCATCTGATTTCTCGGATCACCTTCAACGTGACCATGGTCACCGGTGCTGCCACGGACGCCATCAAGGTGGTGATTCGCGAAGGCCTCACCGTGGTGTTCCTCTTCGCTTACCTTGTGTGGATGAACTGGAAACTGACCTTGGTGATGCTGGCGATCCTGCCATTGATTGCAGTGATGGTCAGCAGCACTAGCAAGAAATTCCGCAAGCAAAGCAAAAAGATCCAGGTGGCCATGGGCGACGTGACCCACGTCGCCTCCGAGACCATCCAGGGTTATCGGGTGGTGCGCAGCTTCGGTGGCGAGGCCTATGAAGAACAGCGTTTTGCCAGCGCCAGCCAAGGCAATACCGACAAACAACTGCGCATGACCCGCACCGGCGCGGTCTACACGCCGATGCTGCAATTGGTGATTTACACCGCCATGGCCGCGCTGATGTTCCTGGTACTGTTCCTGCGCGGTGACGCGACAGCGGGCGATCTGGTGGCCTACATCACCGCGGCGGGCCTGCTGCCCAAGCCGATTCGCCAACTCTCGGAAGTCAGCTCCACGATCCAGAAGGGCGTGGCGGGCGCCGAAAGCATCTTCGAGCAACTGGACGTCGAGCCCGAAGTGGATAAAGGCACGGTCGAGCAGGAGCGCGTGAGCGGCCGTCTCGATGTGCGCAACCTGAGCTTTACCTACCCTGGCGCCGATCGGGAAGTGCTCAAGGACATCAGCTTCACCGCTGACCCTGGGCAGATGATCGCCCTGGTAGGGCGGTCGGGCAGCGGCAAGTCGACCCTGGCCAGCCTGATCCCGCGTTTCTATCACCACGAAGTCGGTCAGATCCTGCTCGATGACGTGGAAATCGAAGATTATCGACTGCGCAACCTGCGCCGGCATGTGGCCCAGGTGACCCAGCACGTCACGTTGTTCAACGATACGGTGGCCAACAATATCGCCTACGGCGACCTGGCCGGCGCGCCGCGGGCCGACATCGAAAAAGCCGCCCAGGACGCCTACGCGATGGACTTCATCGCGCAGCTTCCCCACGGCCTGGACACCGAGGTCGGCGAAAACGGCGTGCTGTTGTCCGGTGGCCAGCGCCAACGGCTGGCGATTGCCCGGGCATTGTTGAAAAACGCGCCGCTGTTGATCCTCGATGAGGCCACCTCGGCACTGGACACCGAGTCCGAGCGGCATATCCAGGCCGCGCTGGACCAAGTCATGAAAGGCCGTACGACCCTGGTCATTGCGCATCGGCTGTCGACCATCGAAAAGGCCGACATGATCCTGGTCATGGACCAGGGGCGCATCGTCGAACGCGGCACCCATGGCGAACTGCTCGCGCAAAATGGCTATTACGCGCGTCTTCATGCCATGGGCTTGCATGTTCCCACCCAGGACATCGCCTGA	MSDAPPKAEQDSSLKIYFRLLGYVKPYLGIFLLSIVGFVIFASTQPMLAGILKYFVDGLSNPDAVLFPSVPYLKDLKLLMAVPLLIILIAAWQGLGSFLGNYYLAKVSLGLVHDLRVELFNKLLVLPNRYFDTHNSGHLISRITFNVTMVTGAATDAIKVVIREGLTVVFLFAYLVWMNWKLTLVMLAILPLIAVMVSSTSKKFRKQSKKIQVAMGDVTHVASETIQGYRVVRSFGGEAYEEQRFASASQGNTDKQLRMTRTGAVYTPMLQLVIYTAMAALMFLVLFLRGDATAGDLVAYITAAGLLPKPIRQLSEVSSTIQKGVAGAESIFEQLDVEPEVDKGTVEQERVSGRLDVRNLSFTYPGADREVLKDISFTADPGQMIALVGRSGSGKSTLASLIPRFYHHEVGQILLDDVEIEDYRLRNLRRHVAQVTQHVTLFNDTVANNIAYGDLAGAPRADIEKAAQDAYAMDFIAQLPHGLDTEVGENGVLLSGGQRQRLAIARALLKNAPLLILDEATSALDTESERHIQAALDQVMKGRTTLVIAHRLSTIEKADMILVMDQGRIVERGTHGELLAQNGYYARLHAMGLHVPTQDIA	PGPT0029415_4	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
D1-36_00496	627	cysC	COG0529	Adenylyl-sulfate kinase	ATGGATGAGACAACAAGGGCATCAAAGCAACAATCGCAGGCTCAGCCGGGCGCGCTGACACTTTCGCCCTCGGACCGGGCGGCCATCAAGATCCAGCGGCCTCGCTGTTTCTGGTTGACCGGGCTGTCGGGGGCTGGAAAGTCGACCTTGGCCAATGCCCTGGAAGTTCGCCTTCACCAGCAAGGCCTGCATACCGCTTTGCTGGACGGCGACAACCTGCGCAGGGGGCTTTGCAGTGACCTTGGGATGGATGCCGGCTCCCGAAAGGAAAACGTGCGGCGAATAGCCGAAGTGGCGCGCTTGATGGTCGAAGCAGGGCTGATTGTCATCGTCGCGGCGATTTCGCCGTTTCGGGCCGATCGAGACGCGGCACGACGGCTCTTTTCCCATAATGACTTCATCGAAGTCTACGTCAGTACGCCGTTCGACGTGTGTGCCGAGCGCGACCCCAAGGGGCTGTACCGCGAAGCCCTCGCCGGGCGGATCAAGCATTTCACCGGTCTCGATAGTCCTTACGAGGCGCCGCTGGCGGCCGAATGCGAAATCGATACCAGCGAGATGGAGCTGGCCCAGGCCTGCGCGCAGATGATGGCATTGCTGTGTGAAAACAATGAAAGCGCGGCTTGA	MDETTRASKQQSQAQPGALTLSPSDRAAIKIQRPRCFWLTGLSGAGKSTLANALEVRLHQQGLHTALLDGDNLRRGLCSDLGMDAGSRKENVRRIAEVARLMVEAGLIVIVAAISPFRADRDAARRLFSHNDFIEVYVSTPFDVCAERDPKGLYREALAGRIKHFTGLDSPYEAPLAAECEIDTSEMELAQACAQMMALLCENNESAA	PGPT0002780_1119	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0002780-cysC-K00860	NA	NA
D1-36_00497	1422	hldE	COG2870	Bifunctional protein HldE	ATGAAGTTGTCCATGCCGCGATTCGATCAAGCCCCTGTATTGGTGGTCGGCGATGTCATGCTCGACCGCTATTGGCATGGCGGTACATCACGGATTTCCCCCGAGGCGCCGGTACCGGTGGTCAGGGTCGAGCACATCGAGGACCGTCCCGGCGGTGCCGCCAACGTTGCCCTGAACATCGCCGCCCTCGGCGCCCCGGCTTCCCTGGTCGGCGTGACCGGTGACGATGAAGCGGCAGAGAGCCTGGCCAACAGCCTGGAAGGCGCTGGCGTGCGGGCGATCTTCCAGCGCATCGCGCACCAGCCGACCATCGTCAAGCTGCGGGTCATCAGTCGTCACCAGCAACTGCTGCGCATCGACTTCGAAGAACCGTTCGCCACCGACCCGCTGTCCCTGGGCGCCGAGGTCGACAACCTGCTCGACGGTATCAAGGTCCTGGTGTTGTCGGACTACGGCAAGGGCGCGTTGAAGAACCATCAAGTGCTGATCCAGGCTGCCCGTGCCCGCGGTATTCCCGTGCTGGCCGACCCCAAGGGCAAGGATTTTTCCATCTACCGTGGCGCGAGCCTGATTACCCCTAACCTCAGCGAGTTCGAAGCCATCGTCGGTGGTTGCGCCGATGAGCACGAACTGGTGAGCAAGGGCGCACAGCTGATGCACGACCTGGATCTTGGGGCGTTGCTGGTTACCCGCGGCGAGCACGGCATGACCCTGCTGCGTCCCGATCATCCGGCCCTGCACCTTCCGGCCCGTGCCCGCGAAGTATTTGACGTGACGGGCGCCGGTGACACGGTGATCTCCACCCTGGCCGCGGCGATTGCCGCCGGCGAGGAACTGCCCCACGCGGTTGCCCTGGCGAACCTGGCGGCGGGCATTGTCGTCGGCAAGCTGGGTACGGCGGCGATCAGCGCCCCGGAACTGCGGCGCGCGATCCAGCGCGAAGAGGGATCGGAGCGCGGTGTGCTGGGGCTGGAGCAACTATTGCTGGCTGTCGATGACGCGCGCGCCCATAAAGAGAAAATCGTTTTCACCAACGGTTGTTTCGACATCCTCCATGCTGGCCATGTGACCTACCTCGAGCAGGCCCGGGCCCAGGGTGATCGCTTGATCGTCGCGGTCAATGACGATGCTTCCGTGAGCCGCTTGAAAGGGCCGGGCCGGCCGATCAACAGCGTCGACCGCCGCATGGCGGTCCTGGCCGGCCTTGGCGCGGTGGATTGGGTGATCAGCTTCAGCGAAGGCACGCCGGAAAACCTGTTGCGCCAGGTCAAGCCGGATGTGCTGGTCAAGGGCGGCGACTACGGTATCGACCAGGTCGTGGGTGCCGACATCGTTTCCGCCTATGGGGGCACGGTGAAGGTGCTGGGGCTGGTGGAAAACAGCTCGACGACGGCGATTGTGGAAAAGATCCGCAATAACTGA	MKLSMPRFDQAPVLVVGDVMLDRYWHGGTSRISPEAPVPVVRVEHIEDRPGGAANVALNIAALGAPASLVGVTGDDEAAESLANSLEGAGVRAIFQRIAHQPTIVKLRVISRHQQLLRIDFEEPFATDPLSLGAEVDNLLDGIKVLVLSDYGKGALKNHQVLIQAARARGIPVLADPKGKDFSIYRGASLITPNLSEFEAIVGGCADEHELVSKGAQLMHDLDLGALLVTRGEHGMTLLRPDHPALHLPARAREVFDVTGAGDTVISTLAAAIAAGEELPHAVALANLAAGIVVGKLGTAAISAPELRRAIQREEGSERGVLGLEQLLLAVDDARAHKEKIVFTNGCFDILHAGHVTYLEQARAQGDRLIVAVNDDASVSRLKGPGRPINSVDRRMAVLAGLGAVDWVISFSEGTPENLLRQVKPDVLVKGGDYGIDQVVGADIVSAYGGTVKVLGLVENSSTTAIVEKIRNN	PGPT0023040_1125	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-MANNO-HEPTOSE|-PHOSPHATE_MODIFICATION,PGPT0023040-gmhC|hldE|waaE|rfaE-K03272	NA	NA
D1-36_00498	966			hypothetical protein	ATGCCGCGTACGCTCATCAGAAAAAATCCAAGTAACTTCAAGACTCTGCCCCTTTCCGTCGAAGCGACTCCCGAAGGCCTGACTTACCAGAGCGTGGGAATGCCGCTCAATTTTGCCCAGACCTTGCAGCGGCGGCGTCCCGTGGCTGTGGACGATGCCGAGCGTTTCTCCGTGGAGCTTGCGAACCTGGGCGTCTCGGTGCGCCTGACCCTGCACTGGCAGAACCGCGAGTATTGGGTATTGGTGCGTCAGCGTCGCCAGGATCGCGGCGACGTGGTGCTCAAGCTGATCTCCGGCTATGTCCCGGCCCATGAGCTGAACCTGCCGCTGCTTACCGCCATCAACGAAATAGCCGAAGAATGCCTTTTAGAAACACCGGAAGGTTGGCTCGGCGGACGCTTCAACGACACCTGGCTCCCGGCGCCTTATTCGAGCGCACTGCATTATCGCGAAGCCTTGCCGTTTCGCCTGGCTCCGCTGTCCGGCTCGGCCCGGCCGGTGCGCTGCGCCAATCTGCAACTGATCGAACGACCACGGGCCTACGTGCATCTGCCGACGGCCTCCCTGCAATTGATTTATGACTTGCGCCTGGACGTGCCCAAGGAAGCCAAGTCACTGAGCCTGTTTCATGTCGATGAGCGTCTGGAGGGCGACCAATTGGTGGCGCGCCTGGACCGCAAGCGACCCGATCTTTACCTGATGCCGCTGCAGGACGGACAACCGCTGCCCGAACTGTATACATTGAAGAAAGATCAGCTGCTTGCGGCCAGCACCCGCGGCTTATACCTGGCGGAGAGCTTCGCCCGGCAGGACGGTTGGCTGGTGCGTGACGAGCGGATTCGCTGGAAGGACTGGTTACGCCAGCAAGGGCTGACGACACCGGGCAAGGAGTCCGGGCTGACCCGGCTCAAGGGCAAGGCGCGGCAACTGCTCAAGAAAATCGTCCCGAGCAAGGTGGCTCGTTAG	MPRTLIRKNPSNFKTLPLSVEATPEGLTYQSVGMPLNFAQTLQRRRPVAVDDAERFSVELANLGVSVRLTLHWQNREYWVLVRQRRQDRGDVVLKLISGYVPAHELNLPLLTAINEIAEECLLETPEGWLGGRFNDTWLPAPYSSALHYREALPFRLAPLSGSARPVRCANLQLIERPRAYVHLPTASLQLIYDLRLDVPKEAKSLSLFHVDERLEGDQLVARLDRKRPDLYLMPLQDGQPLPELYTLKKDQLLAASTRGLYLAESFARQDGWLVRDERIRWKDWLRQQGLTTPGKESGLTRLKGKARQLLKKIVPSKVAR				NA	NA	NA	NA	NA
D1-36_00499	813			hypothetical protein	ATGAGCCAGCCGACACTCCACGATCTGCGTCGCCCGCTGGGCAAAAACGGCCCGTTGGTTTCGCCCCTGGGCCTGGGCACGGTCAAGCTGGGCCGCGACCAGGGCGTCAAGTACCCCAGCGGTTTCCAGATTCCGGATGACACCGAAGCGCGCATGCTGCTCAAGCTGGCGCGCGACCTGGGCATCAACCTGATCGACACCGCGCCTGCCTATGGCCGCAGCGAGGAACGCCTCGGGCCGCTGTTGCGCGGCCAGCGTCACGACTGGGTGATCGTCAGCAAAGTCGGCGAGGAATTCAGCGATGGCCAGTCCCGTCATGACTTCAGCGCTGCTCATACGCGGCTCTCGGTTGAACGCAGCCTCCAGCGCCTGGAAACGGACTACATCGACCTGGTACTGGTGCATTCGGACGGCAATGACCTGGCGATCCTCGACGACAGCGAGGTCTACCCGACCCTGGCGGCGCTCAAGCGCGAGGGCAAGATCGGCGGCTTCGGATTCTCTGGCAAGACCGTCGACGGTGGCTTGAAAGCCCTGGAGCAAGGTGATTGCGCGATGGTCACCTACAATCTGAACGAACGAAGCGAAAAGGCGGTCATTGAGTACGCGGCCGAGCACGGCAAGGCGATCCTGGTGAAAAAAGCCCTGGCCAGCGGTCATGCCTGCCTGAGCCCCGGTGAGGACCCGGTTCGCGCCAGCTTTGAACTGTTGTTTGGGCATCCCGGGGTTGCCAGTGCTATTGTCGGCACCATCAATCCGCTGCACCTCGCCCACAACGTTGCGACCGTAGCCAAGGTCCTACGCAGAAACTGA	MSQPTLHDLRRPLGKNGPLVSPLGLGTVKLGRDQGVKYPSGFQIPDDTEARMLLKLARDLGINLIDTAPAYGRSEERLGPLLRGQRHDWVIVSKVGEEFSDGQSRHDFSAAHTRLSVERSLQRLETDYIDLVLVHSDGNDLAILDDSEVYPTLAALKREGKIGGFGFSGKTVDGGLKALEQGDCAMVTYNLNERSEKAVIEYAAEHGKAILVKKALASGHACLSPGEDPVRASFELLFGHPGVASAIVGTINPLHLAHNVATVAKVLRRN				NA	NA	NA	NA	NA
D1-36_00500	1176		COG0578	putative FAD-dependent oxidoreductase	ATGCCATCCGTTATTTCCACCGACGTCCTCATTGTCGGCGCCGGAGTCGCCGGCCTCTGGCTGAATGCGCGCTTGCGCCGCCAGGGGTTTTCAACCGTGCTGGTGGAAAGCGCCAGCCTTGGCGGCGGGCAGAGCGTCAAATCCCAGGGCATCATCCATGGCGGCGCCAAGTATGCGTTGCACGGAGCCCTGACTGGCGCCTCGGAAGCCATTGCCGACATGCCGCGCCGTTGGCGCGAGGCCCTCAAGGGCGACGGTGAGCTGGACCTGTCGGGGGTACGCATGTTGTCCGACGCCCATTACCTCTGGTCCCCAGGCACCCTGGCCGGCAACCTTACGAGCTTTTTCGCCAGCAAGGCCGTGCGCGGGCGCGTCGACCAGGTCAAGGGCGACCAACTGCCGCCAGCCCTGCAAGACAAGCGTTTCAAAGGCAAAGTCTACCGCCTGGCCGAGTTGGTGGTGGATGTTCCCAGCCTGATCGCGCGCCTGGCAGACCTGGCCGGCGACAGCCTGCTGGCCGGGCAGCAGGTCGAACCGTTGCACGAGGAAGGCCAACTTGTCGGACTGAAGGTCGACGGTCGCGAAATCCGCGCCCAGCGCATCGTCCTCAGTGCCGGCGGCGGCACCGCCGACCTGCTCCGCGCCCTGGGCCTCGACCAGCCGGCCATGCAGACCCGGCCGTTGCACATGGTCCTGGCGAAGGGCCCCAGCCTCAAGCCGCTTTACGCCCATTGCCTGGGTGGCGGGCCGAAGCCCCGGGTGACTGTGACCACCCATCCGGCCGCCGATGGCCAATGGGTCTGGTATCTGGGAGGCGATCTTGCCGAGGGGGATGCCGTCGCCCGCGAGCCCGCTGCGCAGATCGCCGTCGCCCAGAAAGAGCTCGGCCAGTTGCTGCCGTGGATCGACCTGAGCACCGCACAATGGGCCACGTTGCGGGTCGCCCGCGCCGAGCCGCTGCAATCGGGCCTGACCCGCCCGGATAACGCCTTTGTCGCCGAGCAGGGTCGCCTGCTGGTGGGCTGGCCGACCAAGCTCGCCTTGGCCCCGGACTTCTCCGACCGGGTGATCGCCGCGCTGCAACGCGATGGTATCCAGCCCAGCCATACCACCCCGCTGCCGGACCTGCCCAAGCCGCCCATGGGCGTTCCCGCCTGGGAGCAACTGCTGCCATGA	MPSVISTDVLIVGAGVAGLWLNARLRRQGFSTVLVESASLGGGQSVKSQGIIHGGAKYALHGALTGASEAIADMPRRWREALKGDGELDLSGVRMLSDAHYLWSPGTLAGNLTSFFASKAVRGRVDQVKGDQLPPALQDKRFKGKVYRLAELVVDVPSLIARLADLAGDSLLAGQQVEPLHEEGQLVGLKVDGREIRAQRIVLSAGGGTADLLRALGLDQPAMQTRPLHMVLAKGPSLKPLYAHCLGGGPKPRVTVTTHPAADGQWVWYLGGDLAEGDAVAREPAAQIAVAQKELGQLLPWIDLSTAQWATLRVARAEPLQSGLTRPDNAFVAEQGRLLVGWPTKLALAPDFSDRVIAALQRDGIQPSHTTPLPDLPKPPMGVPAWEQLLP				NA	NA	NA	NA	NA
D1-36_00501	333		COG2076	Multidrug transporter	ATGAACGCCTATTACTACCTCGCCATCGCCATCTGCGCCGAAGTGATCGCCACCGTATCGATGAAAGCGATCAAGGGCTTGAGCACGCCCCTGCCCTTGTTGTTGGTCATCGCCGGCTATGGCACTGCGTTCTGGATGCTGACGCTGGTGGTGCGCACCGTTCCAGTGGGGGTGGCCTATGCGGTCTGGGCCGGCTTGGGGATCGTGATGGTCAGCGTCGCGGCGCTGTTTATCTATGGGCAGAAACTGGACGTGCCGGCGATGCTGGGGATGGCGTTGATTGTGTTGGGGGTGGTGGTGATCCAGTTGTTTTCCAAGACTGCAGGACATTGA	MNAYYYLAIAICAEVIATVSMKAIKGLSTPLPLLLVIAGYGTAFWMLTLVVRTVPVGVAYAVWAGLGIVMVSVAALFIYGQKLDVPAMLGMALIVLGVVVIQLFSKTAGH	PGPT0029230_1243	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029230-emrE|qac|mmr|smr-K03297	NA	NA
D1-36_00502	891	yhaJ_1		HTH-type transcriptional regulator YhaJ	ATGAATGTTCAATGGAACCTGGAGCAATTGCGACTGTTCGTCGGTGTCGCCGAGAAGCGGTCGTTTTCCGCGGTGGCCCGGGATCAGCGCAAGGCTCAGTCGGCTGTCAGCAGTGCGATTGCACTGCTGGAAGAGGACCTGGGGGTGAGCCTGTTCGAGCGCAGCAGTGGTCGCCAGCCCAAACTCACCGATGCGGGCGTGGCGCTGCTTGAGGAGGCCCGGGAAGTGTTACGCCAATGCGAACGCCTCAACGGCCGGGCCTTGGCCCTGATGCGCGGGCAGGAGGCATCGCTACGCCTGGCCCAGGACGAGGCCATGCCCTATCAGCCCGTTATCGACAGCCTGGCGGCGCTGGCCGAACGGTTTCCCACCCTAGAAGTGCAACTGGCCAGCGCCGCCCAGGGCGATGTGGCGCGCAAGCTGGTGGAGCGTCGCGCCGATCTCGGGTTGTTGTTTTATCACGATCAGATTCCCGAGGCGCTGGAGCGCCGGGTATTGGGTAGCGTCGAGATGGTCACGGTGTGCGGCCGGGGGCATCCCTTGGCGAGCCATGATTACGTGACCTGCCTGGAGATGGCCCGGCACCGGCAATTGCTGATGGCGACCCAATCCAGCGTCTATCCCGGCAGCGAGCAGGCCAGCCCGCAAGTCTGGCGGGCCGACAGCTTCTACGTGCTGGCCGAGTGGTTGAGAAGTGGGCTGGGCTGGGCCTGGCTGCCGCGGCACGTCGTGCAGTACCCGGCGTACCTGGGGGACATGGTCGAGCTCAACAGTGAATGGACCCCGCCGGCCCTGGTGGTGGAGCTGGTCTGGCGCCGCGACGAACCCCTGGGCCCGGCGGCCCGTTGGCTGGCGGAACGTTTTGCCGTGCAGTTGCAGGCGCTCGGCTGA	MNVQWNLEQLRLFVGVAEKRSFSAVARDQRKAQSAVSSAIALLEEDLGVSLFERSSGRQPKLTDAGVALLEEAREVLRQCERLNGRALALMRGQEASLRLAQDEAMPYQPVIDSLAALAERFPTLEVQLASAAQGDVARKLVERRADLGLLFYHDQIPEALERRVLGSVEMVTVCGRGHPLASHDYVTCLEMARHRQLLMATQSSVYPGSEQASPQVWRADSFYVLAEWLRSGLGWAWLPRHVVQYPAYLGDMVELNSEWTPPALVVELVWRRDEPLGPAARWLAERFAVQLQALG				NA	NA	NA	NA	NA
D1-36_00503	1275	waaA	COG1519	3-deoxy-D-manno-octulosonic acid transferase	ATGAACAGAACTCTCTATAGCGCATTGTTTTATCTGGGGCTGCCACTGGTGGCGATTCGGCTGTGGCTGCGGGCTCGCAAGGCACCGGCGTATGCGCGGCGTATCGGCGAGCGTTTCTCGTGGGGCTTGCCGACGATGGCGCCGGGCGGCATCTGGGTCCACGCGGTGTCAGTGGGCGAGAGCATTGCCGCTGCGCCGATGATTCGCGCGTTGTTGCAACGCTACCCACAACTGCCGATCACGGTGACGTGCATGACGCCCACCGGTTCGGAGCGGATCAGGGCGTTGTTCGCCGATGAGCCGCGCATCCAGCATTGCTACCTGCCTTATGACCTGCCGTGCGCGGCCAAGCGTTTTCTCGACCAGGTCCGGCCGAAACTGGCGGTGATCATGGAAACCGAACTGTGGCCCAACCACATCCATCAATGCGCCCTGCGCGGTATCCCCGTGGCGTTGGCCAACGCGCGGCTGTCGGAGCGTTCGGCGCGCGGTTATGCCCGTTTTCCCAAGCTGACCCGGCCGATGCTTGCTGAGATGGGCCTGTTTGCCGTGCAGACCGAAGCCGAGGCAGAGCGCTTTCGTCAACTCGGTGCCAGGGCGGAAACCGTTGAAGTGACCGGCTCCATCAAGTTCGACCTGACCATCGACCCGCAACTGCTGGAAAGCGCCAGTGCCTTGCGCCGTCAATGGCAAGCGGTGGAGCGCCCGGTGTGGATCGCCGCCAGTACCCATGAGGGTGAGGACGAAGTGGTGCTGGCCGCCCATCGTCGGTTGCTCGACAGCTACCCGGATGCGTTGCTGATTTTGGTGCCGCGTCATCCGGAACGGTTCGATGCGGTGGCGCAACTGTGCGAGCGTGAGGGCTTCGCCACGGTCCGGCGCTCCAGTGCCCGACCGGTCGACGCACAAACTTCGGTGCTGCTGGGCGACACCATGGGTGAACTGTTGTTTCTCTATGCCTTGGCTGACAGTGCGTTTGTCGGCGGAAGTCTGGTAGCCAACGGCGGGCACAACCTGCTGGAGCCGGCGGCGCTGGCAAAACCGGTGCTCAGCGGGCCGCACCTGTTCAACTTCCTTGAAATTGCCGCCCAACTGCGCGCGGCCGGAGCCTTGGCGGAAGTGGAAGATGCCCACGGCCTGGCCCTGGCCGTGCAGCGTCTGTTCGAACTGCCCCGGGATGCCCAGCGCATGGCCGAGTCGGGGTTGGCGGTGATGCGTCGCAACCAGGGCGCGTTGCAGCGGTTGTTGGATGGGTTGGGGCGCTTGCTCGACTGA	MNRTLYSALFYLGLPLVAIRLWLRARKAPAYARRIGERFSWGLPTMAPGGIWVHAVSVGESIAAAPMIRALLQRYPQLPITVTCMTPTGSERIRALFADEPRIQHCYLPYDLPCAAKRFLDQVRPKLAVIMETELWPNHIHQCALRGIPVALANARLSERSARGYARFPKLTRPMLAEMGLFAVQTEAEAERFRQLGARAETVEVTGSIKFDLTIDPQLLESASALRRQWQAVERPVWIAASTHEGEDEVVLAAHRRLLDSYPDALLILVPRHPERFDAVAQLCEREGFATVRRSSARPVDAQTSVLLGDTMGELLFLYALADSAFVGGSLVANGGHNLLEPAALAKPVLSGPHLFNFLEIAAQLRAAGALAEVEDAHGLALAVQRLFELPRDAQRMAESGLAVMRRNQGALQRLLDGLGRLLD	PGPT0022485_1747	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022485-waaA|kdtA-K02527	NA	NA
D1-36_00504	1515	tolC_1	COG1538	Outer membrane protein TolC	GTGCGTACGCACAACTACACTCGCTACGCCGCGCGCCTGTTATGCGCATTCAATTTGAACGTAAGGGATCGCCTCATGCTGCGCAAACTCTCACTGGCCCTGGCCGTGTCTTGTGCGTCCAATGGAATGGCCTGGGCCGCCGAAGCGCCTTTATCCACCAAGACCGATCTGGTCAGCGTGTACCAGGAAGCGGTGGACAACAACGCCGACCTGGCCGCCGCTCGTGCCCAGTATGGTGCTCAGAAGGAAGTGGTGCCCCAGGCCCGAGCCGGGCTGCTGCCCAACCTGTCGGCCGGCGCCGACCTGAACAACACCCGTACCGAGCTCGACCAACCGGCGATGACCGCCAACCGCAGCTCAACGGTTTACCAGGCCACCTTGTCGCAGCCGATCTTCCGCGCCGACCGCTGGTTCCAGCTGCAAGCGGCCAAATCGGTCAATGAACAAGCATCGCTGCAGCTGTCCGCCACCGAGCAGAACCTGATCCTGCAAAGCGCTGAAGCCTATTTCAACGTGCTGCGCAGCCAGGACAACCTGGCCTCGACCAAGGCCGAGGAAGCCGCGTTCAAGCGTCAGCTCGACCAGTCCAACGAACGTTTCGACGTGGGCCTGTCGGACAAGACCGACGTGCTGCAATCCCAGGCCAGCTACGACACCGCCCGGGCCAATCGGATCATCGCCCAGCGTCAGGTCGAAGATGCCTTCGAAGCGCTGATCACCCTGACCAACCGCCAGTACAATTCGATCCAGGGCGTCGTTCATACCCTGCCGATCCTGCCGCCGGCGCCCAACGACGCCAAGGCCTGGGTCGACACCGCCGCCAGGCAGAACCTCAACCTGCTGGCCAGCAACTATGCCGTCGATGCCGCCGAAGACACCGTTCGCCAGCGCAAGGCCGGCCACGCGCCGACCCTCGATGCAATTGCCCAGTACCGCAAAGGTGACAACGACGGCCTCGGCTTCACCAACCCAAGCCCCACCGGCCAGCGCTACGGTGGCGACGCCGAGCAACGCACCATTGGCCTGCAATTGAGCATTCCGATCTACAGCGGCGGGCTGACCAGCTCCCAGGTTCGCGAGTCCTACTCGCAACTCACCCAGACCGAGCAGCAGCGCGAAGGCCTGCGCCGGCAGGTGGTGGAAAACACCCGCAACCTGCATCGCGCGGTGAACACCGATGTGGAGCAGGTCCAGGCCCGGCGCCAGTCGATCATCTCGAACCAGAGCGCGGTGGACGCCACGGAGATCGGCTACCAGGTGGGCACTCGCAACATCGTCGATGTACTCGACGCCCAGCGCCAGCTGTACACCTCGGTGCGCGACTACAATAACGCCCGCTATGACTACATCCTGGACAACCTGCGCCTCAAGCAAGCCGCCGGGACCTTGAGCCCGGAAGACCTGCAAGCCCTGTCCCGCTACCTCAAGCCCGATTACAACCCGGACAAGGACTTCCTGCCGCCAGACCTGGCACAAGCGGCGGCACAACAGTTGCGCTCGCGGCCGGCGCAGTAG	MRTHNYTRYAARLLCAFNLNVRDRLMLRKLSLALAVSCASNGMAWAAEAPLSTKTDLVSVYQEAVDNNADLAAARAQYGAQKEVVPQARAGLLPNLSAGADLNNTRTELDQPAMTANRSSTVYQATLSQPIFRADRWFQLQAAKSVNEQASLQLSATEQNLILQSAEAYFNVLRSQDNLASTKAEEAAFKRQLDQSNERFDVGLSDKTDVLQSQASYDTARANRIIAQRQVEDAFEALITLTNRQYNSIQGVVHTLPILPPAPNDAKAWVDTAARQNLNLLASNYAVDAAEDTVRQRKAGHAPTLDAIAQYRKGDNDGLGFTNPSPTGQRYGGDAEQRTIGLQLSIPIYSGGLTSSQVRESYSQLTQTEQQREGLRRQVVENTRNLHRAVNTDVEQVQARRQSIISNQSAVDATEIGYQVGTRNIVDVLDAQRQLYTSVRDYNNARYDYILDNLRLKQAAGTLSPEDLQALSRYLKPDYNPDKDFLPPDLAQAAAQQLRSRPAQ	PGPT0003600_1395	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_I_SECRETION_SYSTEMS	CE-TSS1-AlgE-TYPE_MANNURONAN_C-5-EPIMERASE_TRANSPORT,PGPT0003600-tolC-K12340	NA	NA
D1-36_00506	1890	thiC	COG0422	Phosphomethylpyrimidine synthase	ATGACGACAAAATCAAAAAACGCGACCAACCTCAGTGAATCGGCCCAGGTCGATCAGCAATCGGTTCAGCCCTTTACCCGCTCGCAAAAAATCTACGTCCAGGGCAGCCGCCCGGATATCCGCGTGCCCATGCGCGAAATCAGCCTCGACGTGACCCCCACCGACTTCGGCGGCGAAATCAACGCGCCGGTAGTGGTCTACGACACCTCGGGCCCCTACACCGACCCGAATGTGGTTATCGACGTGCGCAAAGGCCTGGCCGACGTGCGTTCGCCCTGGATCGAAGCCCGTGGCGACACCGAGCGCCTGGCGGGCCTGAGTTCCAACTTCGGCCAGGAGCGCCTGGCCGACCCCGAGCTGACCCAACTGCGCTTCGCCCACGTGAACAACCCGCGTCGCGCCAAGCCGGGCGCCAACGTCAGCCAGATGCACTATGCGCGCAAAGGCATCATCACCGCCGAGATGGAATACGTCGCCATCCGCGAGAACATGAAGCTGGAAGTGGCCCGCGCCGCCGGCCTGCTTGACCAGCAACACGCCGGCCACAGCTTCGGCGCCAGCGTGCCGAAAGTCATTACCCCGGAGTTCGTGCGGGACGAAATCGCCCGTGGTCGCGCGATCATCCCAGCCAACATCAACCACACTGAACTGGAACCGATGATCATCGGCCGTAACTTCCTGGTGAAGATCAACGGCAACATCGGCAACAGTGCCCTGGGTTCGTCCATCGAAGAAGAAGTGGCGAAGCTGACCTGGGGCATCCGCTGGGGTTCGGACACGGTCATGGACCTGTCCACCGGCAAGCACATCCATGAAACCCGCGAATGGATCATCCGCAATTCGCCCGTGCCCATCGGCACCGTGCCGATCTACCAGGCCCTGGAAAAGGTCGGCGGCGTGGCCGAAGACCTGACCTGGGAACTGTTCCGCGACACGCTGATCGAGCAGGCCGAGCAGGGCGTCGACTACTTCACCATCCACGCGGGCGTGTTGCTGCGCTATGTGCCGATGACCGCCAAGCGCGTCACCGGTATCGTCAGCCGTGGCGGTTCGATCATGGCCAAGTGGTGCCTGGCGCACCACAAGGAAAACTTCCTCTACACCCATTTCGAAGACATCTGTGAAATCATGAAGGCCTACGACGTCAGCTTCTCGCTGGGCGATGGCCTGCGTCCGGGCTCGATTGCCGACGCCAACGATGAAGCGCAGTTCGGCGAGCTGGAAACCCTTGGCGAGCTGACCAAGATCGCCTGGAAGCACGACGTGCAGTGCATGATCGAAGGCCCCGGCCATGTGCCGATGCAGTTGATCAAAGAGAACATGGACAAGCAGCTCGAGTGCTGCGACGAGGCGCCGTTCTACACCCTCGGCCCGCTGACCACCGACATCGCGCCGGGCTACGACCACATCACCTCCGGTATCGGTGCGGCGATGATCGGCTGGTTCGGTTGCGCCATGCTTTGCTACGTCACGCCGAAGGAGCACCTCGGCTTGCCGAACAAGGATGACGTGAAGACCGGGATCATCACGTACAAGATCGCCGCCCACGCCGCCGACCTTGCCAAGGGCCACCCGGGCGCGCAGATCCGCGACAACGCCTTGAGCAAGGCGCGTTTCGAGTTCCGCTGGGAAGACCAGTTCAACCTCGGCCTGGACCCGGACACCGCCCGTTCGTACCACGATGAAACCCTGCCGAAGGACTCGGCCAAGGTGGCGCATTTCTGCTCGATGTGCGGGCCGAAATTCTGCTCGATGAAAATCACCCAGGAAGTGCGTGAGTACGCGGCGAACCAGCGCATTGAAGCGGTGGATGTCGAAGTCGCCCAGGGGATGGCCGAGCAGGCGGAGCGGTTCAAGCAGGAAGGTAGTCAGCTTTACAAGAAAGTGTGA	MTTKSKNATNLSESAQVDQQSVQPFTRSQKIYVQGSRPDIRVPMREISLDVTPTDFGGEINAPVVVYDTSGPYTDPNVVIDVRKGLADVRSPWIEARGDTERLAGLSSNFGQERLADPELTQLRFAHVNNPRRAKPGANVSQMHYARKGIITAEMEYVAIRENMKLEVARAAGLLDQQHAGHSFGASVPKVITPEFVRDEIARGRAIIPANINHTELEPMIIGRNFLVKINGNIGNSALGSSIEEEVAKLTWGIRWGSDTVMDLSTGKHIHETREWIIRNSPVPIGTVPIYQALEKVGGVAEDLTWELFRDTLIEQAEQGVDYFTIHAGVLLRYVPMTAKRVTGIVSRGGSIMAKWCLAHHKENFLYTHFEDICEIMKAYDVSFSLGDGLRPGSIADANDEAQFGELETLGELTKIAWKHDVQCMIEGPGHVPMQLIKENMDKQLECCDEAPFYTLGPLTTDIAPGYDHITSGIGAAMIGWFGCAMLCYVTPKEHLGLPNKDDVKTGIITYKIAAHAADLAKGHPGAQIRDNALSKARFEFRWEDQFNLGLDPDTARSYHDETLPKDSAKVAHFCSMCGPKFCSMKITQEVREYAANQRIEAVDVEVAQGMAEQAERFKQEGSQLYKKV	PGPT0008905_1156	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
D1-36_00507	1293			hypothetical protein	TTGAACATCCAACCCAGCACCTACTCCCCAGACGCCGCCGTGCCTTTGGACAAACGCGTCTTCGGCGCTCGCGATCTGTTTTCTTTGTGGTTCTCTCTCGGCATCGGCCTGATGGTCTTGCAGGTCGGTGCCTTGCTCGCGCCGGGCCTGGGCCTGAGCGGTTCGTTGCTGGCGATTTTCCTCGGCACGCTGGTGGGCGTCCTGCTGCTGGCGGCGGTCGGGGTGATCGGCAGCGACACTGGCCTGTCGGCCATGGCCGCGCTCAAGCTCAGCCTTGGCGGCAAGGGCGCGAGCGTGCCGGCGGTATTGAACCTGCTGCAGCTGATCGGTTGGGGGTCGTTCGAAATCATCGTCATGCGCGACGCCGCCAGCCTGCTCGGTGCCCGGGCCTTCAGCGAAGGCAGCCTGGGCTCCAACCCACTGCTGTGGACGCTGTTCTTCGGCGCCCTGGCGACCCTGCTTGCCGTCAGCGGGCCGCTGACCTTTGTGCGTAAGGTGCTGCGTAAATGGGGCATCTGGCTGCTGTTGGCCGCGTGCATCTGGCTGACTTGGAACCTGTTCGCCAAGGCTGACCTGGCGGCACTCTGGGCCCAGGCGGGCGACGGCTCGATGCCGCTGGCGGTGGGGTTCGACATCGCCATCGCGATGCCGCTGTCTTGGTTGCCGCTGATCGCCGACTACTCACGCTTCGGCAAACGCGCCAAGAATGTCTTCGGCGGTACGGCCGTGGGCTTCTTCATCGGTAACTTCTGGCTGATGAGCCTGGGCGTCGCCTACACTCTGGCATTCGCGCCGAGCGGCGAAGTCAACGCATTGCTGCTGGCCCTGGCCGGCGCCGGACTGGGCATCCCACTGCTGCTGATTCTGTTGGACGAGTCGGAAAACGCCTTCGCCGACATCCACTCGGCGGCGGTGTCCAGCGGCATGCTGTCAGGGTTGAAAGTCGAGCACCTGGCCTTGGCGATTGGCGTCATCTGCACCTTGATCGCCTGCTTCGCGCCGTTGGCGCAGTATCAGAACTTCCTGTTGCTGATCGGCTCGGTGTTCGCGCCGCTGTTCGGCGTGGTGCTGGTGGACCACTTCATCCTGCGCAAGCGCAGCAGCCAAGTGGTGTCAGCCGCGTTGCGCTGGCCGGCCCTGTTGGCCTGGTTGGGTGGGGTGAGCACTTATCACCTGCTGGCCAACTTCTACCCGGACATCGGTGCAACCCTGCCATCGTTGATCCTGGCAGGGTTGCTGCAACTGTTGCTGGGCCGGGCCTTCAGCTACGGCCGGGAAACAGCTCGGGCTTGA	MNIQPSTYSPDAAVPLDKRVFGARDLFSLWFSLGIGLMVLQVGALLAPGLGLSGSLLAIFLGTLVGVLLLAAVGVIGSDTGLSAMAALKLSLGGKGASVPAVLNLLQLIGWGSFEIIVMRDAASLLGARAFSEGSLGSNPLLWTLFFGALATLLAVSGPLTFVRKVLRKWGIWLLLAACIWLTWNLFAKADLAALWAQAGDGSMPLAVGFDIAIAMPLSWLPLIADYSRFGKRAKNVFGGTAVGFFIGNFWLMSLGVAYTLAFAPSGEVNALLLALAGAGLGIPLLLILLDESENAFADIHSAAVSSGMLSGLKVEHLALAIGVICTLIACFAPLAQYQNFLLLIGSVFAPLFGVVLVDHFILRKRSSQVVSAALRWPALLAWLGGVSTYHLLANFYPDIGATLPSLILAGLLQLLLGRAFSYGRETARA	PGPT0009075_3521	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
D1-36_00508	747			hypothetical protein	ATGTCGCTTTTTAGAATCGCTTCCCTGGCCGCCATCGCCCTGACCCTGGGTGCTTGCCAAAGCCTCTTCCAACCCAATTACCGAGCGCCCCTGGAGGCGACTCGCGATGCGTCGGAGCAATTGCAGCCCGGTTGCGCCAGTGCCGACTGCCCGCTGGTGAACATCGACACCCTGCGCTTTCCCGCCGAGCCGGCCCTGGACGGCATCATCGAAAAACGCCTGTTGCAAATGACCCGCACCAGCCCGGACGCCCCTGCGGCTCCGACGCTGGCCGCCTATCGCGAGCAGTTCCTGCGCAGCGCCGCACCGCGCAACAGCAGCTATTTGCAGGCCAAGGTACGCGAGCAGCATGACGGCTTGGTGATTATCGAATTGTCCAGCTATCTGGACACTGGCGGCGCCCATGGCACGCCGGGTCGCGGTTTCATCAACTATTCGCGCCAGCAGCACAAAGTGCTGACGCTGTCGGACATGCTGCTGCCGGGCCAGGAGGAAGCCTTTTGGAAAGCCGCGCAAGTGGCTCACAACAGCTGGCTGATCAGTACCAAGCTGGATCAGGAACCCGAGTTCCTGAAACAGTGGTCCTTTCAGAAAACCCCACACATCGCGCTGACCTACGGCGGGGTGATCCTCAAGTACGAAGTGAGCACCATCGCGCCGTACGCCCTGGGCCACATCGAATTGAAGATCGCCTACCCACGCCTCAACGGCATCCTCAAGCCCGAGCTGTTTCCCGGCCGTAGCTGA	MSLFRIASLAAIALTLGACQSLFQPNYRAPLEATRDASEQLQPGCASADCPLVNIDTLRFPAEPALDGIIEKRLLQMTRTSPDAPAAPTLAAYREQFLRSAAPRNSSYLQAKVREQHDGLVIIELSSYLDTGGAHGTPGRGFINYSRQQHKVLTLSDMLLPGQEEAFWKAAQVAHNSWLISTKLDQEPEFLKQWSFQKTPHIALTYGGVILKYEVSTIAPYALGHIELKIAYPRLNGILKPELFPGRS				NA	NA	NA	NA	NA
D1-36_00509	618	nudF		ADP-ribose pyrophosphatase	ATGACTGATTTCGCCAACGCCACACCGAGCGCCGTGGAGATCGTCAAGCGCGAAAATTGCTTCAAGGGTTTCTACAAACTTGATCGCGTGCACCTGCGCCACGAATTGTTCGCCGGTGGAATGAGCCGCGAAATCAGCCGCGAGCTGTTCGTTCGCCATGACGCGGTGTGCGTGCTGCCCTACGACCCACAGCGCGATGAGGTGGTGCTTATCGAACAGTTCCGCGTCGGTGCCATGGGCAAGACTGCCAATCCCTGGCTGGTGGAACTGGTGGCCGGCCTGATCGACAAGGACGAGCAGCCGGAAGAAGTTGCTCATCGTGAGGCGCAGGAGGAAGCTGGGCTTGTCTTCGCCGCGCTCTGGCCGATGACTCAATATTTCCCATCGCCGGGCGGCAGTGACGAGTACGTGCATCTTTTTTTGGGGCGTTGCGACAGCTCGGGGGCGGGCGGCCTGCATGGCCTGCTGGAAGAGGCTGAAGATATCCGCGTGAAGGCCTGGGCTTTTGAAGATGCCCTTCAAGCGGTGCGCGACGGGCGAATTTGCAACGCGGCCAGCATCATTGCCTTGCAATGGCTGGCCTTGAACCGTGATGAAGTGAGGGGGCTATGGTCCTGA	MTDFANATPSAVEIVKRENCFKGFYKLDRVHLRHELFAGGMSREISRELFVRHDAVCVLPYDPQRDEVVLIEQFRVGAMGKTANPWLVELVAGLIDKDEQPEEVAHREAQEEAGLVFAALWPMTQYFPSPGGSDEYVHLFLGRCDSSGAGGLHGLLEEAEDIRVKAWAFEDALQAVRDGRICNAASIIALQWLALNRDEVRGLWS	PGPT0021525_996	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021525-nudF-K01515	NA	NA
D1-36_00510	453			hypothetical protein	ATGGTCCTGAACAAGTTGCGCGATCGTTATCGCGTCGATCTGGTGGGGTTGCAGGCCGCCTGCGAGGCCAACTACGCCCGCCTGATGCGCTTGTTGCCGGACATGCGCAACGATCCGGCACCGCGCCGCATCGCTGTAACCCACGGCGACCAGATGCTGGGTGTATTGGCCCTGGAAGTGCTGCAAACCTGTCCTTACACCACCACTTTGCAGGTGCGCCAGGAACACAGCTTGCCCTGGCTGCCGGTGCCGCAGTTGGAAGTGCAGGTCTATCACGATGCGCGCATGGCCGAAGTCGTCAGCGCCGAACATGCACGACGCTTTCGCGGCATCTATCCTTATCCCAATGCGTCGATGCACCAGCCAGATGAAAAAGCCCAGTTGAACCTGTTCCTGGGGGAATGGCTGAGTCATTGCCTGGCGCTGGGCCACGAGTTCGAAGTCGTACGGTAG	MVLNKLRDRYRVDLVGLQAACEANYARLMRLLPDMRNDPAPRRIAVTHGDQMLGVLALEVLQTCPYTTTLQVRQEHSLPWLPVPQLEVQVYHDARMAEVVSAEHARRFRGIYPYPNASMHQPDEKAQLNLFLGEWLSHCLALGHEFEVVR				NA	NA	NA	NA	NA
D1-36_00511	816	cpdA_1	COG1409	3',5'-cyclic adenosine monophosphate phosphodiesterase CpdA	TTGCCGAGCGTATCCAGCTTGACCACGGCCGATGCGGTGCTGTTGGTCCAACTGTCTGACAGCCATTTGTTCGCCGATGCCGATGCATCGTTGCTGGGCATGAACACCCGTGACAGCTTGCGGTCGGTCATCGATTTGTTGCTCAAGCAACAGCCGGCCATCGACCTGATGCTCGCCACCGGCGACCTGTCCCAGGACGGCACGTTGCAATCCTACGAGTCGTTTCGACAACTGACAGCGCGTATCGATGCGCCGACGCGGTGGATTCCCGGCAACCATGATGAGCCGCAGGTGATGCTTGAGGCGGCGGTCAAGAGTACGTTGCTCGATCCGGTGGTGGACATCGGAAACTGGCGGGTAACGATGCTCGATTCCGCCGTGCCAGGTTCGGTGCCGGGTTTCTTGGCCGAGGAGCAATTGATTCTGTTGGCCAATGCCTTGAGCGAAGCGCCGGAGCGGCATCATCTGGTGTGTCTGCACCACCATCCGGTGTCGATTGGGTGCGCGTGGATGGAACCGATCGGGTTGCGTAATCCCGAGGCTTTGTTTGCGGTACTGGATCGCTTTCCCCAAGTGCGAGCGGTGTTGTGGGGGCATGTGCATCAGGAGATTGACGAGGTGCGCGAGGGGGTTCGTTTGTTGGCTTCGCCTTCGACCTGTATTCAATTCGAACCGGGCAGCGAGGATTTTGCGGTGGGCTCGCAGGCGCCAGGGTATCGGTGGTTGCGGCTATTGCCGGATGGGCGGTTGGAGACGGGGGTAGAGCGGGTGGTTGGGTTTGCTTTCACTCCGGACTATGGCTCCAACGGATATTGA	MPSVSSLTTADAVLLVQLSDSHLFADADASLLGMNTRDSLRSVIDLLLKQQPAIDLMLATGDLSQDGTLQSYESFRQLTARIDAPTRWIPGNHDEPQVMLEAAVKSTLLDPVVDIGNWRVTMLDSAVPGSVPGFLAEEQLILLANALSEAPERHHLVCLHHHPVSIGCAWMEPIGLRNPEALFAVLDRFPQVRAVLWGHVHQEIDEVREGVRLLASPSTCIQFEPGSEDFAVGSQAPGYRWLRLLPDGRLETGVERVVGFAFTPDYGSNGY	PGPT0021595_1930	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0021595-cpdA-K03651	NA	NA
D1-36_00512	609			hypothetical protein	ATGTCGGGTTCGATCCTTTATATCCATGGCTTCAACAGCGCCCCGGCGTCGACCAAAGCCTGTCAATTGGTCGACGTGATGGCTCGCCTTGGCCTCAGCGACCAATTGCGGGTGCCTGCCTTGCATCACCACCCTCGCCAAGCGATGGAGCAGATGGAGCAGGCGATTGCAGAACTGGGCCGGCCGCTGCTGGTCGGCAGCTCGCTCGGCGGCTACTATGCGACTCACTTGGCCGAGCGCCACGGGCTCAAGGCCTTGTTGGTCAATCCTGCCGTGAGCCCGCATCGGATGTTCGACGGGTACCTGGGAACGCAGAACAATTTGTACACCGACGAAACCTGGGAGTTGACCCACGACCACGTCACGGCCCTGGCCGAGCTGGAAGTGCCGGCGCCCCGGGATCCGCAGCGCTTTCAGGTATGGTTGCAAACCGGTGACGAAACGCTGGATTATCGCCACGCCCAGCAATATTACCGGGCCTGTGCCTTGCGCATCCAGGCCGGCGGTGACCACAGTTTTCAGGGGTTTGCCCGACAGTTGCCGGCGTTGTTGAGTTTTGCCGGCATTGGCGCCGATTTGTATCAGGCGATCGACTTCACGTCGCTGTGA	MSGSILYIHGFNSAPASTKACQLVDVMARLGLSDQLRVPALHHHPRQAMEQMEQAIAELGRPLLVGSSLGGYYATHLAERHGLKALLVNPAVSPHRMFDGYLGTQNNLYTDETWELTHDHVTALAELEVPAPRDPQRFQVWLQTGDETLDYRHAQQYYRACALRIQAGGDHSFQGFARQLPALLSFAGIGADLYQAIDFTSL				NA	NA	NA	NA	NA
D1-36_00513	1905	parE	COG0187	DNA topoisomerase 4 subunit B	ATGGCCACTCCCAGCGCTAGCTCTTATAACGCAGACGCCATCGAAGTCCTCTCGGGCCTCGACCCGGTGCGCAAGCGCCCCGGCATGTACACCGACACCAGTCGGCCGAACCACCTTGCCCAGGAAGTCATCGACAACAGTGTCGACGAAGCCTTGGCCGGGCATGCGAAGTCGGTGCAGGTCATCCTGCACGCCGATCACTCGCTGGAAGTCAGCGATGACGGTCGCGGCATGCCTGTGGACATTCACCCTGAAGAGGGCGTGTCGGGCGTCGAGCTGATCCTCACCAAGCTCCACGCCGGCGGCAAGTTTTCCAACAAGAACTACCAGTTCTCCGGCGGTCTGCACGGGGTGGGTATTTCCGTGGTCAACGCCTTGTCGACCCAGGTGCGGGTGCGGGTCAAGCGTGATGGCAACGAATACCAGATGACCTTCGCCGATGGCTATAAGGCCACCGAGCTAGAAGTGGTCGGCACTGTCGGTAAGCGCAACACCGGGACCAGCGTGTATTTCGCCCCGGACCCCAAGTATTTCGATTCGCCGAAGTTCTCCGTCACCCGCCTCAAGCACGTGCTCAAGGCCAAGGCCGTGTTGTGCCCGGGGCTGTTGGTCAGTTTCGAAGACAAGGCCACCGGCGAGAAGGTCGAATGGCATTACGAGGACGGCCTGCGTTCCTACCTGGTGGACGCGGTCAACGGTTTCGAATGCCTGCCCACCGAGCCGTTCTGCGGCAGCCTGGCCGGTAACAAGGAAGCCGTGGATTGGGCGTTGTTGTGGCTGCCCGAAGGTGGCGAAAGCGTTCAGGAAAGTTACGTCAACCTGATTCCGACGGCCCAGGGCGGCACGCACGTCAACGGCTTGCGCCAAGGCTTGCTCGACGCGATGCGCGAGTTCTGCGAGTTCCGTAACCTGCTGCCCCGTGGCGTGAAGCTGGCGCCGGAAGACGTCTGGGAGCGCATCGCCTTCGTTCTGTCGATGAAGATGCAGGAGCCGCAATTCTCCGGCCAGACCAAGGAGCGACTGTCGTCCCGTGAGGCGGCGGCCTTCGTTTCCGGCGTGGTCAAGGACGCGTTCAGCCTCTGGCTCAACGCCAACCCGGAAACCGGCCTGGCCCTGGCGGAGCTGGCGATCAACAACGCCGGCCGTCGTCTCAAGGCCAGCAAGAAAGTCGAGCGCAAGCGCATCACCCAAGGACCGGCGTTGCCGGGCAAGCTCGCCGATTGCGCCGGGCAGGATCCGATGCGCTCCGAGTTGTTCCTGGTGGAAGGTGACTCCGCCGGTGGTTCGGCCAAGCAGGCGCGGGACAAGGAGTTCCAGGCGATCCTGCCGCTGCGGGGCAAGATCCTCAACACCTGGGAAGTGGACGGCAGCGAAGTGCTGGCCAGCCAGGAAGTGCATAACATCGCGGTGGCCATTGGCGTCGACCCCGGCGCCGAGGACATGAGCCAGCTGCGCTACGGCAAGATCTGCATCCTTGCCGACGCCGACTCTGACGGCCTGCACATCGCCACGTTGCTCTGCGCCTTGTTCGTCCAGCATTTCCGCCCGCTGGTGGATGCCGGCCACGTCTATGTGGCGATGCCGCCGCTGTACCGCATCGACTTGGGCAAGGAAATCTACTACGCCCTGGACGAAGCGGAGCGCGACGGCATTCTCGACCGCCTGGTCGCCGAGAAGAAACGCGGCAAGCCGCAGGTCACCCGATTCAAAGGCCTGGGCGAGATGAACCCACCGCAGCTGCGTGAAACCACCATGGACCCGAACACCCGTCGCCTGGTGCAGTTGACCCTGGACGACTTCGCGGCAACGTCGGAAATCATGGACATGCTGCTGGCGAAAAAACGTGCAGGCGACCGCAAGACCTGGCTCGAATCCAAGGGTGACCTGGCTGAGGTCCTGGCCTGA	MATPSASSYNADAIEVLSGLDPVRKRPGMYTDTSRPNHLAQEVIDNSVDEALAGHAKSVQVILHADHSLEVSDDGRGMPVDIHPEEGVSGVELILTKLHAGGKFSNKNYQFSGGLHGVGISVVNALSTQVRVRVKRDGNEYQMTFADGYKATELEVVGTVGKRNTGTSVYFAPDPKYFDSPKFSVTRLKHVLKAKAVLCPGLLVSFEDKATGEKVEWHYEDGLRSYLVDAVNGFECLPTEPFCGSLAGNKEAVDWALLWLPEGGESVQESYVNLIPTAQGGTHVNGLRQGLLDAMREFCEFRNLLPRGVKLAPEDVWERIAFVLSMKMQEPQFSGQTKERLSSREAAAFVSGVVKDAFSLWLNANPETGLALAELAINNAGRRLKASKKVERKRITQGPALPGKLADCAGQDPMRSELFLVEGDSAGGSAKQARDKEFQAILPLRGKILNTWEVDGSEVLASQEVHNIAVAIGVDPGAEDMSQLRYGKICILADADSDGLHIATLLCALFVQHFRPLVDAGHVYVAMPPLYRIDLGKEIYYALDEAERDGILDRLVAEKKRGKPQVTRFKGLGEMNPPQLRETTMDPNTRRLVQLTLDDFAATSEIMDMLLAKKRAGDRKTWLESKGDLAEVLA	PGPT0027710_1897	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
D1-36_00514	987			hypothetical protein	ATGCGCAAGGGTTTCGCCCTGGCGCTGTTGCTGTGGGCGGGGGGGGTAGTGGCCGAGCCGGCGCCGGAGCTCACGTTGTTGTCCGAGCATGTCGTCGAAGGCATGCGCGGCGGCAATTTGTCTGGGCTGGCCCTGTGTGGCAACGAAATGTGGACTGTGTCCGATCGCGACGATGACCGGATCTATCGCCTCCAGCCGGTCGATGCGCCAGTCTGGGCGGCCGAAGTGGTCGAGATCGAGGTGCCGATGGTGCCGGACAGCGATTTGCCGTGGGGCTTGAGGTCCCGCACATGGGCGGCGTCGTTCCTGCGCGGTGGCGAATTGGATTTCGAAGGCATCAGTTGCGACAGCGCAGGCAATCGCTATGTGGTCAGCGAGTCCCATGCCGCCGTCCTGCAAATCCCGCCGACAGGCGCTGCATCGTGGTTGAAAATCGCCCCGACGATGATTCGTCAAGCCCGGGGCAGTGGCATGTTGTTGCATTTCAATTCGCTGTTCGAAGGCCTTGCGGTCAACCCGGCCGGGGATCACATCTGGCTGGCGGCCGAGCGTGAACGGCGCGGCCTGCTGTTGATCAAGCGCCAGCAAACGGTCTGGGACTGCGACGGCAATTGTGTGTTGCTTAGCGAAGCGGGGCAGCAGATGCAGCCGCCTCAATTCCCCAAGGCCAAGGCGGTTTCACGGGATTTTGCCGATCTGTCATTGTTCAACGGCAAGCTGTTTACCCTGGAGCGCAACGCCTTCCAGATTTGCAGGCGGGATGCGCGGACGGCCGAGGTCGAGCGCTGCTGGTCGTTCGCAGCCGAGGCCTTGCAGGACGCTCGTCGTTTTTCCCAGCCCTACGGACTGGCCGAAGCGCTGGTGGTGGACGCCACCGGCGCGTGGATTGGCCTGGACAACAACGATGGAGCCCGTGCCGATGGCGAGCGGCGGCCGGTGATCTGGCGCTTCGCCGCGCCGGACAGCGGCTGGGGCGCCTCGCCATGA	MRKGFALALLLWAGGVVAEPAPELTLLSEHVVEGMRGGNLSGLALCGNEMWTVSDRDDDRIYRLQPVDAPVWAAEVVEIEVPMVPDSDLPWGLRSRTWAASFLRGGELDFEGISCDSAGNRYVVSESHAAVLQIPPTGAASWLKIAPTMIRQARGSGMLLHFNSLFEGLAVNPAGDHIWLAAERERRGLLLIKRQQTVWDCDGNCVLLSEAGQQMQPPQFPKAKAVSRDFADLSLFNGKLFTLERNAFQICRRDARTAEVERCWSFAAEALQDARRFSQPYGLAEALVVDATGAWIGLDNNDGARADGERRPVIWRFAAPDSGWGASP				NA	NA	NA	NA	NA
D1-36_00515	2265	parC	COG0188	DNA topoisomerase 4 subunit A	ATGAGCGATATTCTTGCAGACAGCTTGGACGGCGTAGAACGCCGGTCGCTGGCTGACTTCACCGAAAACGCCTACCTCAATTACTCCATGTACGTGATCATGGACCGCGCCTTGCCGCACATCGGCGATGGCCTGAAACCGGTTCAACGGCGGATCGTCTACGCCATGAGCGAATTGGGGCTGGATGCTGACTCCAAGCACAAGAAATCGGCCCGTACCGTCGGTGACGTGCTCGGTAAGTTCCACCCCCACGGCGACTCGGCCTGCTACGAAGCGATGGTGCTGATGGCCCAGCCGTTCAGCTATCGCTACACGCTGGTGGACGGGCAGGGCAACTGGGGTGCGCCGGATGATCCCAAGTCCTTCGCGGCCATGCGCTACACCGAGGCGCGGTTGTCGCGCTATTCCGAGGTGCTGCTCAGCGAACTGGGCCAGGGCACCGCGGACTGGGGCCCTAACTTCGACGGCACCCTCGACGAACCCCTGGTGTTACCGGCGCGTTTACCGAATATCCTCCTCAACGGCACCACCGGCATCGCCGTCGGCATGGCCACCGACGTGCCCCCGCATAACCTGCGGGAAGTGGCCACTGCGTGCGTGCGTTTGCTGGACGAGCCGAAGGCCACGGTGGAGCAGCTCTGCGAGCATATCCAGGGGCCGGATTATCCGACCGAAGCGGAAATCATCACGCCCCGCGCCGATCTGCTGAAAATCTATGAAACCGGTCGCGGTTCGGTGCGCATGCGCGCCGTGTACCACATCGAAGATGGCGACATCATTGTCACGGCGTTGCCGCATCAGGTGTCAGGGGCCAAGGTCCTGGAACAGATTGCTGCGATGATGCAGGCAAAGCCTTCGAAAGCACCGCAAGTGGCTGACCTGCGTGACGAATCCGACCACGAGAACCCATGCCGCATCGTTATCATCCCGGTCAACAGCCGGGTCGACCACGAAGCGCTGATGCAGCACCTGTTCGCCAGCACGGACCTGGAGTCCAGCTACCGGGTCAACATCAATATCATCGGCCTGGACGGCAAGCCGCAGCTCAAGAACCTGCGGGCGTTGCTGGTGGAGTGGCTCGAATTCCGGGTCAAGACCGTGCGCCGGCGCCTGCAATTCCGCCTGGACAAGGTCGAGCGCCGCCTCCACCTGTTGGACGGTTTGCTGATTGCCTACCTCAACCTGGACGAAGTGATCCACATCATCCGGACCGAGGAGCACCCCAAGGCCAAGCTGATCGAGCGTTTTGCGCTGAGCGAAATCCAGGCCGACTACATCCTCGACACTCGCCTGCGCCAGTTGGCGCGCCTGGAAGAGATGAAGCTGCGTGCCGAGCAGGACGAACTGCTCAAGGAGCAAGCCAAGCTGCAAGCCTTGCTGGGCAGCGAAGCCAAGCTCAAGAAGCTGGTGCGCACCGAGCTGCTGAAGGACGCCGAAACCTACGGCGACGACCGTCGCTCGCCGATCGTCGAGCGCGCCGAAGCCAAGGCGTTGAGCGAGCACGACCTGCTGCCGAACGAGAAGGTTACCGTCGTGCTCTCTGAAAAAGGCTGGGTGCGCTCGGCCAAGGGGCATGATATTGACGCCGCCGGGCTTTCCTATAAGGCCGGGGATGGCTTCAAGGCCTTGGCGCCGGGGCGTTCGAACCAGTTTGCGGTGTTCATCGACTCCACCGGGCGTAGTTATTCGGTCCCGGCCCACACCTTGCCATCGGCCCGTGGACAGGGCGAACCGCTGACCGGTCGTCTGACGCCACCACCGGGTGCAACTTTTGAATGTGTGCTGATGCCTGATGATGACGGGCTGTACGTTATCGCGTCGGACGCCGGGTACGGGTTCGTCGTCAAGGGTGAGGATCTGCAAGCCAAGAACAAGGCGGGCAAGGCGCTGTTGAGCCTGCCGAACAACGCCAAAGTCATCGCGCCTCGCCCAGTCATCGACCGCGAGAGCAATTGGCTGGCGTCGGTGACGACAGAGGGCCGGTTGCTGGTGTTCAAGATCAGCGATCTGCCACAGCTCGGTAAAGGCAAGGGCAACAAGATTATCGGTATTTCCGGCGAACGGGTGGCGAGTCGCGAGGAATATGTCACGGATATTGCAGTGATACCGGAGGGTGCCACGCTTGTGCTGCAGGCTGGAAAGCGTACGCTTTCATTGAAAGCGGACGATCTTGAGCATTACAAAGGTGAACGTGGTCGGCGGGGCAATAAGCTTCCAAGAGGTTTTCAGCGGGTGGATGCACTGCTCGTCGAAAACCTCAATTGA	MSDILADSLDGVERRSLADFTENAYLNYSMYVIMDRALPHIGDGLKPVQRRIVYAMSELGLDADSKHKKSARTVGDVLGKFHPHGDSACYEAMVLMAQPFSYRYTLVDGQGNWGAPDDPKSFAAMRYTEARLSRYSEVLLSELGQGTADWGPNFDGTLDEPLVLPARLPNILLNGTTGIAVGMATDVPPHNLREVATACVRLLDEPKATVEQLCEHIQGPDYPTEAEIITPRADLLKIYETGRGSVRMRAVYHIEDGDIIVTALPHQVSGAKVLEQIAAMMQAKPSKAPQVADLRDESDHENPCRIVIIPVNSRVDHEALMQHLFASTDLESSYRVNINIIGLDGKPQLKNLRALLVEWLEFRVKTVRRRLQFRLDKVERRLHLLDGLLIAYLNLDEVIHIIRTEEHPKAKLIERFALSEIQADYILDTRLRQLARLEEMKLRAEQDELLKEQAKLQALLGSEAKLKKLVRTELLKDAETYGDDRRSPIVERAEAKALSEHDLLPNEKVTVVLSEKGWVRSAKGHDIDAAGLSYKAGDGFKALAPGRSNQFAVFIDSTGRSYSVPAHTLPSARGQGEPLTGRLTPPPGATFECVLMPDDDGLYVIASDAGYGFVVKGEDLQAKNKAGKALLSLPNNAKVIAPRPVIDRESNWLASVTTEGRLLVFKISDLPQLGKGKGNKIIGISGERVASREEYVTDIAVIPEGATLVLQAGKRTLSLKADDLEHYKGERGRRGNKLPRGFQRVDALLVENLN	PGPT0027705_2207	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
D1-36_00516	705			hypothetical protein	ATGACTGCTCTGCGCCTTCCTATTTTGTGGCTCGCCGGCCTGCTTGGCCTGGCGGGCTGCAGCATGAACCAGCCGGTGTCGCTGTACCAACTGGACAGCGGTACCCCGGCCCAGCCTGCACAAAGCACAGGCATGGCCGTACTGCTTGGCCCGGTTCTGATCGCTGACTACCTGCAGCGTGAAACCTTGTTGCAACGTCAACCGGACGGCAGCCTGCAAGCCGCCACCGATGGTCGTTGGGCCGGCAGCCTGTCTTCGGACATCGATCAATTATTGCTGCGTCAGGTGGCCGGACACCTGGACAGCCAGCGCGTGGTACTGGCCCCCGCTACCCAGGGGTTCACTCCGGACGTACAGGTCTTGTTGTCGATTACCCGTCTGGACTCAGGCAAATCCCAACCTGCGGTACTGGATGCCCAGTGGCGGCTGATCGATCGTCGCGGCACGGTTCGCGAAAACCGTATCGTGCACCTGCAGGAGCAGCATGCAGGCACCACCGCGGCGCAGGTCCAGGCTCAAGGCGTGCTTTTGCAGCGCCTGGCCGAGCAACTGTCCGTGTCGCTCAAGCCTCTGGCCAACCAACCCCCTATCGCGGAAGTCCCGCGCAAGGCGGCGCCCGCTCCGGCCAAGCCGGTGGAAAAGGAAAAGGACAAGATTCCCATGGCTCTGCCGATTCGTACGGACATGGAAGTGTTCCGGTTCTGA	MTALRLPILWLAGLLGLAGCSMNQPVSLYQLDSGTPAQPAQSTGMAVLLGPVLIADYLQRETLLQRQPDGSLQAATDGRWAGSLSSDIDQLLLRQVAGHLDSQRVVLAPATQGFTPDVQVLLSITRLDSGKSQPAVLDAQWRLIDRRGTVRENRIVHLQEQHAGTTAAQVQAQGVLLQRLAEQLSVSLKPLANQPPIAEVPRKAAPAPAKPVEKEKDKIPMALPIRTDMEVFRF				NA	NA	NA	NA	NA
D1-36_00517	1515			hypothetical protein	GTGAACCGGCCCACGCCAGTCAAAACCGACAACTTCTTCCTGCTGATCTTCCGTGCATTGCGCCATCGCCGCGTGCCGATTGCATTGCGCATCGCCAGCCATAACGTGATCCTGGTCGCCCTGGCCCTGGTCATCTATGCATGCGTGATGGGCCTGCAATTCAAGCAGGCCATGCATGAGCAGGCGGACGCCCTGGGTGAAAGCCTGACCACCCAGACCGCCACCTCCGCCACCGAGTTGCTGGTGTCCAACGACATCCTCAGCCTCAACGTGCTGCTCAACAACCTGACCAAGAACAAACTGGTCGCCCACGCCGCCATCTACAGCGTGGACAACCGCATCCTCGCGGAGGCCGGCCAGCGCCCTAAACCTGGCCTGCTGGGCGAGACCGGCGGCATGTACCAGAGCAAGATCACTTTCCAGGATGTGACGGCCGGGCAACTGCGCATCAGCCTGGACATGGACCAGTTCCAACAACCGATGACCATCAGCCTGCAAAGCATGGGCATTCTCAGCGCGATCCTGCTGGCGCTTGCCCTGGCCTTGAGCCTGCGCCTGGGACGGCACATCTCCACGCCGTTGTTGCAATTGCGCGTCTGGCTGCGGGACATCGATGAACACACGCCGGCGACCCAGCGCCAGGATGAGATCGGCGACCTGGCTCGGCAACTACACGCCAGCTTCGCGCCGGAACCTGAGCCGGTGCCGGAGCCTGAAGACATCGACTACGTCGACGAGGACGATGCCGAGCCGGGCTTCGAGGTGCGCAACCTGCGTGACCCGGGCTTTGACGAAAGCGCACCGATGCCCGCCTCCCGCTCTGCGCCGCGCCATGTGGTGCGCACGGTCGAAGACGAGGAAGACGACGACGCCTTTGCCGATTTGCGCGACGACGCGGTGACCGGCGCTCCTCAACCGGCTGCCCGCCCCGCCTCGAACGTGCCCCAGCACAGCGCCGTGCTGGCCGTTCAACTGGGTGCCCAGGATCAGCTGCGCCGCCTGCCCCAGGCGCGCCTGAAGGAGCTGCTCGAACGCTATCGCGACTGCCTTGACCAAGCCGCATCGCTTTATCAAGGCGAACTGCATACCCTCAATGACGGCAGTACGCTGATGCTCTTCCATGCCGAAGACAGCGGCGACGACTACCTGACCAACGCCATTTGCTGCGGTGAACTGCTGCGCGCGCTGGGTCATCAATTGCAAATCGAAGTCGCCGACAGCGGCATCACCCTGCAATTGCAGTTGGGCTTGACCTTGGGCGACGGCCTGTTCGGCCTGAGCCAGATCGACCTGCTGCTCACCGAAACCGCCCAGGACGCATTGGCCCTCTCCCAACACAGCCGCAACTTGTTGCTGGTGGAGCGCAAGATCAACGATGACGCCCTGATCCGCCAACGCACCCGCATTCGCCCCATCGCCAGCCCGGAAGGCGCTTGCTGTGTGGAACGATTGATGGAGCCATATCCATCGATGCTGGAGCGGCAACTGGCGCGCATGCATGAGCGTCAGGCCTGA	MNRPTPVKTDNFFLLIFRALRHRRVPIALRIASHNVILVALALVIYACVMGLQFKQAMHEQADALGESLTTQTATSATELLVSNDILSLNVLLNNLTKNKLVAHAAIYSVDNRILAEAGQRPKPGLLGETGGMYQSKITFQDVTAGQLRISLDMDQFQQPMTISLQSMGILSAILLALALALSLRLGRHISTPLLQLRVWLRDIDEHTPATQRQDEIGDLARQLHASFAPEPEPVPEPEDIDYVDEDDAEPGFEVRNLRDPGFDESAPMPASRSAPRHVVRTVEDEEDDDAFADLRDDAVTGAPQPAARPASNVPQHSAVLAVQLGAQDQLRRLPQARLKELLERYRDCLDQAASLYQGELHTLNDGSTLMLFHAEDSGDDYLTNAICCGELLRALGHQLQIEVADSGITLQLQLGLTLGDGLFGLSQIDLLLTETAQDALALSQHSRNLLLVERKINDDALIRQRTRIRPIASPEGACCVERLMEPYPSMLERQLARMHERQA	PGPT0023715_9	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-MEMBRANE_DAMAGING,PGPT0023715-smp|ytjB|aphA-K07186	NA	NA
D1-36_00518	1215	serB2	COG0560	Phosphoserine phosphatase SerB2	TTGCGCGAAATCGTCCTGATAAACATCACTGGCAGCGACCGTCCGGGTCTGACTGCGGCCATTACCGGCGTTCTGGCCCAGGGTGGTGTGACCATTCTCGACATCGGTCAGGCGGTGATCCATGACACGCTGTCGTTCGGCATCCTGGTTGAAATTCCGGACGCCGAACAAAGCAAGTCGGTGCTCAAGGACATCCTGTTCACGGCCTACAAGCTTGACCAGCAGGTGCGTTTCACCCCGGTATCCGAAGCCGATTACCAGCATTGGGTAGCCGGCCAGGGCAAGAAGCGCCACATCGTGACGCTGTTGACCCGCAAGGTGACCGCCGAGCAGTTGCAACGGGTCAGTTCGATCACCGCCCAATACGGGCTGAACATCGACCATATCGACCGACTCTCCGGGCGTATGCCGCTCGATACTCCGGCTGACCAGGGCAAGGGCTGCATCGAGTTTTCCGTGCGCGGCGAACCGGCCGATCCCCAGGCGCTACGGGCCGAGTTCCTCAGCGTGGCCCAGGAGCTGAACGTCGACATCGCGTTCCAGGAAGATTCGCTGTTCCGCCGCAACCGTCGCCTGGCGGTTTTCGACATGGATTCGACGTTGATCGAAGCCGAAGTCATCGACGAATTGGCCAAGGCGGCTGGCGTGGGCGATAAGGTCTCGGCGATCACCGAGCGGGCCATGGCCGGCGAGCTGGATTTTCGTGCCAGTTTCAAAGAACGCCTGGCGCTGCTCAAGGGCCTGGACGTCAGCGTGCTCGATTCCATCGGCGCCTCACTGCGGCTGACCGAGGGCGCCGAAACCCTGTTCGCCGAACTCAAGCGCCTGGGCTACAAAACCGCCATCCTGTCCGGCGGCTTCACCTATTTCGCCAAACAGTTGCAGGCCAAGCTCGGCATCGACTACGTGTTCGCCAATGAACTGGAAGTGGTGGACGGCAAGGTCACCGGCGTGGCCGTCGAGCCGATCGTCGATGCCCAGCGCAAGGCGGACCTGCTGCGCGAATTGGCCGAAAAAGAAGGCCTTCGCCTGGAGCAGACCATTGCCGTGGGCGACGGAGCCAACGACCTGCCGATGCTGGCCATCGCCGGCCTGGGCGTGGCGTTCCGGGCCAAGCCGCTGGTCAAGCAATCGGCCCGGCAGGCGATTTCGACCTTGGGGTTGGATGGGGTGTTGTACCTGTTGGGCTTCCGGGATCGCGACGGGCAGGTTTGA	MREIVLINITGSDRPGLTAAITGVLAQGGVTILDIGQAVIHDTLSFGILVEIPDAEQSKSVLKDILFTAYKLDQQVRFTPVSEADYQHWVAGQGKKRHIVTLLTRKVTAEQLQRVSSITAQYGLNIDHIDRLSGRMPLDTPADQGKGCIEFSVRGEPADPQALRAEFLSVAQELNVDIAFQEDSLFRRNRRLAVFDMDSTLIEAEVIDELAKAAGVGDKVSAITERAMAGELDFRASFKERLALLKGLDVSVLDSIGASLRLTEGAETLFAELKRLGYKTAILSGGFTYFAKQLQAKLGIDYVFANELEVVDGKVTGVAVEPIVDAQRKADLLRELAEKEGLRLEQTIAVGDGANDLPMLAIAGLGVAFRAKPLVKQSARQAISTLGLDGVLYLLGFRDRDGQV				NA	NA	NA	NA	NA
D1-36_00519	1761	fimW		Cyclic-di-GMP receptor FimW	ATGAATGAGACCAGCCCTCTCCAGCTACTGCGCGTCTTGACACCGACCCAGTCGCGCCTGTCTTTCTGCGATGCCGCGCCACGCGACCTCAAGCGTTGGATCGCCAACCTGCCCAAGGCCAACATCGGCGAAACCGCTCGCCTGCTGTACCAGGCACTCGGCGAGCTGAACCAACTGCTGACCCCCAGCGATAATCGCCTGCAACTGCTGGAGCTGCTGCGACCAGAGGTTTATTACGTCTGCAAGCACCTTGAGCGGCACTTTCTGCAGCAGGCCATCGTGCTGGATGAGCGATCGCGCAAGATCGTCAACCTGTGCCAGGCCCTGCAAGCCCACCTGGCGATGGGCTACAAACAGATCGTCGGGCGTATCTCGTCGAAATTTTCCAAGGACCGGGCGCGCCTGCTGGCTACCGCAGCGCAACGGGCAGTCCACGCGCTCAATAGCACGTTGCTACGCTCCAGCCAGTTGTACAGCCCTGTGCCCGAGGGGCTCTGGCTCGATCTGCATCAGCTGTACCGGATCGCTTGCCGGCATAAACTGCAGCACCTGGCCGTCAGCGATGAACTGGCCAGCCAGGTTCACCAACTGAACGTCGAGCAAACCTACGTCGTCGCGCTATTGCTGGGCGCCTCGCGCAGCAACCAATTGCGCCAGAGCCAGATTGCCCGATTGGCCGAAGTGCTCGAACCCTGGAGCCAAGGGGTCAAGCTGGACCCGGCCGTGACCGCCTCCAGCCTGTTCGCGGTCGCGCCGCAGTTGGATGTCGGTCCGCGCTACCGCTCGAAATTCCGGGCGGAACAGCAACCCACGCTGCTGGGTTTCGACCCACAGCCGCTGGTGCGTGCCATTACCACCCACTTGGCGCAACCGGTCGAGTCGACGTTGACGGTACCGGCCGGCATGAGCGCCGACACCTTGCATCATCTGCAAGCCGCCTGGGGCGAAGCTGCCGAGCGCAGTTTCCAGCGCACCGAGGGCAACGGCACACTGACCCTGTGCGTGGGCATGAGCGCCTTGCATTATTACCTTGGCGGCGAACGCTCATTCAGTGAAATCCTGAAGAACCCGGCCACCCGCAAGGCCCGCTTCGAGGCGTCGCCCACCCGGAAAAACGATACCTGGGACCAAGCCTTCGACGCAGCGCCCAGCGGTGACAGTGAGCTTTTGCCCTACGAAGAAATCGAATACCCGGTCAATCCGGCCGATGATGACGCCGCAAGCTCCGACAACCAGCACCATTTCCCCACCTACGACTTGCCGATCATCAACCACAGCCCGGGAGGTTACTGCCTTGGCTGGCCGAAGGAGGTGCCGGAACAACTACAGGCTGGGGAAATGGTGGGTATCCGGGACGCCAACGACCAGAGCTGGAGCATCGCCGTGGTGCGCTGGATTCGCCAGGTGCGCAATGGCGCCATGCAGATGGGGATCGAACTGGTCGCGCCCCATGCCCAGCCGTGCGGCCTGCAATTGCTTCGAGAGCAAAACGAGCAAGGGCACTATCTGCGCGGGCTGCTGCTTCCGGAGATCAGCGCCATCGACTTGCCCCCCACCGTAATCGCCCCGCGCCTGCCTTTCCAGGAAGGCCAGCAGGTGTTGATCAACACCAATGGCGAGGAACGGCGCGCTGGGCTCGATCGACGAGTGACCAGCACCCACAGTTTCAACCAGTTCGCTTATCGCCAGGACAAATCAGCGGCGAACGGGGGTGACGGCACGCAAGAGGGGGATTTCGATTCGTTGTGGAAGTCGCTCTAA	MNETSPLQLLRVLTPTQSRLSFCDAAPRDLKRWIANLPKANIGETARLLYQALGELNQLLTPSDNRLQLLELLRPEVYYVCKHLERHFLQQAIVLDERSRKIVNLCQALQAHLAMGYKQIVGRISSKFSKDRARLLATAAQRAVHALNSTLLRSSQLYSPVPEGLWLDLHQLYRIACRHKLQHLAVSDELASQVHQLNVEQTYVVALLLGASRSNQLRQSQIARLAEVLEPWSQGVKLDPAVTASSLFAVAPQLDVGPRYRSKFRAEQQPTLLGFDPQPLVRAITTHLAQPVESTLTVPAGMSADTLHHLQAAWGEAAERSFQRTEGNGTLTLCVGMSALHYYLGGERSFSEILKNPATRKARFEASPTRKNDTWDQAFDAAPSGDSELLPYEEIEYPVNPADDDAASSDNQHHFPTYDLPIINHSPGGYCLGWPKEVPEQLQAGEMVGIRDANDQSWSIAVVRWIRQVRNGAMQMGIELVAPHAQPCGLQLLREQNEQGHYLRGLLLPEISAIDLPPTVIAPRLPFQEGQQVLINTNGEERRAGLDRRVTSTHSFNQFAYRQDKSAANGGDGTQEGDFDSLWKSL	PGPT0016080_120	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,PGPT0016080-fimW-K23127	NA	NA
D1-36_00520	861	psd	COG0688	Phosphatidylserine decarboxylase proenzyme	ATGAAAAACCGCTTGTTCATCCTCTCCCAATACCTGCTGCCGCACCACCTGCTGTCGCGGCTGGCCGGCTGCATCGCCGAGTGTCGCGTTCGCTGGTTCAAGAACGCCTTCACGGCCTGGTTCGCCAAGCGTTACCAGGTGGACATGTCCCAGGCGCTGGTGGAAGACCTCACTGCCTATGAACACTTCAACGCGTTTTTCACCCGCGCATTGAAAGACGGTGCGCGTCCCCTGGACGAAACGCCCGGCGCGATCCTCAGTCCCGCCGACGGCGCCGTCAGCCAACTCGGCCCGATCGAGCATGGCCGGGTGTTCCAGGCCAAGGGCCATAGTTTCAGCGTGCTGGAACTGCTGGGCGGGGATGCGGCCAACGCGGCGCCATTCATGGGCGGCGACTTCGCCACCATCTACCTGTCGCCCAAGGACTACCACCGCGTACACATGCCGCTGGCCGGCACCCTGCGGGAAATGGTCTACATCCCAGGACGGATTTTCTCGGTCAACCAGACCACCGCCGAAAACGTCCCGGAGCTGTTCGCCCGCAACGAACGCGTCGCGTGCATTTTCGACACCGAGCGCGGGCCGATGGCCGTGGTGCTGGTGGGCGCGATGATCGTCGCCTCCATCGAAACCGTCTGGGCCGGCCTGGTGACACCGCCCAAGCGCGAGTTGAAGACTTTCCGCTACGATGAGGCCGCTCGCGCGCCGATCCACCTGGAAAAAGGCGCCGAACTGGGCCGGTTCAAGTTGGGTTCAACCGCTATCGTGCTGTTTGGACCAGACCAGGTGAAATGGGCCGAAGACCTCGTGGCGGGCTCGCCGGTGCAGATGGGCCAGGCCCTGGCACTGCCGAACGCCTGA	MKNRLFILSQYLLPHHLLSRLAGCIAECRVRWFKNAFTAWFAKRYQVDMSQALVEDLTAYEHFNAFFTRALKDGARPLDETPGAILSPADGAVSQLGPIEHGRVFQAKGHSFSVLELLGGDAANAAPFMGGDFATIYLSPKDYHRVHMPLAGTLREMVYIPGRIFSVNQTTAENVPELFARNERVACIFDTERGPMAVVLVGAMIVASIETVWAGLVTPPKRELKTFRYDEAARAPIHLEKGAELGRFKLGSTAIVLFGPDQVKWAEDLVAGSPVQMGQALALPNA	PGPT0007700_2317	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_DECARBOXYLASE_ACTIVITY,PGPT0007700-psd|PISD-K01613	NA	NA
D1-36_00521	816	rhdA	COG2897	Thiosulfate sulfurtransferase	ATGCCTGACTTCTCTGGCTTGCCGCTGGTAATCGAGCCCAACGAGCTCTTGCCGCGCCTCGATGCTCCCAATCTGATTCTGGTGGACCTGACCAGCGCGGCGCGCTACAGCACCGGCCATATTCCTGGCGCGCGCTTCGTCGATCCCAAACGCACGCAACTGGGCCAGCCCCCGGCGCCGGGACTGTTGCCGGCGAAGGCCGACCTGGAAACGCTGTTCGGCGAACTCGGGCATAACCCTGGCGCGGTCTATGTGGTGTATGACGACGAAGGCGGCGGCTGGGCCGGGCGTTTTATCTGGCTGCTCGACGTGATCGGGCACTCCAACTACCACTATCTCGACGGCGGGCTGTTGTCCTGGCTGGACCAGGGCCTGCCGGTGTCGATCGACACCCCGGCGCCGGCCGCCGGCGATGTCAGCCTGGTGCTGCACGACGAACCCACCGCCACTCGCGAGTACCTGCAAAGCCGTCTTGGCTCGAAAGACCTGGCGATCTGGGATGCGCGCGGCCCGCTGGAATATTCCGGTGAAAAAGTCGTGGCGGCCCGGGGCGGACACATCCCCGGAGCGGTCAATTTCGAATGGACGGCCGGCATGGATCCTGCGCACAGCCTGCGCATCCGCAAGGACATGCCGCAGATTCTCGAACAGCTGGGCATCACGCCCGATAAAGAAGTCATCACCCACTGCCAGACCCACCACCGCTCTGGCTTCACCTATCTGGTGGCCAAGGCGCTCGGTTATCCGCGGGTCAAGGGCTATGCCGGTTCATGGGGCGAATGGGGCAATCATCCCGACACGCCCATCGAGCTTTGA	MPDFSGLPLVIEPNELLPRLDAPNLILVDLTSAARYSTGHIPGARFVDPKRTQLGQPPAPGLLPAKADLETLFGELGHNPGAVYVVYDDEGGGWAGRFIWLLDVIGHSNYHYLDGGLLSWLDQGLPVSIDTPAPAAGDVSLVLHDEPTATREYLQSRLGSKDLAIWDARGPLEYSGEKVVAARGGHIPGAVNFEWTAGMDPAHSLRIRKDMPQILEQLGITPDKEVITHCQTHHRSGFTYLVAKALGYPRVKGYAGSWGEWGNHPDTPIEL	PGPT0002045_5302	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
D1-36_00522	1539			hypothetical protein	ATGGCTAACGAAACGAACGTTCCAACTCCAAGACCGACCACGATCGAAGGCTGGGTAAAGCTGCTCGAAGGCGTCCATTTGCCGGTGCCCCAGGCCAGTCATGACCTGGTCTGCAAGGCCATTTCCGACAGCCGCCGCTCGTTGCGCGACATCGCCGAATTGATGCAGGACAGCCCCGCGCTGGCCCTGAGCGTCATCCGCGAAGCCAACCATCACACCCACGGCAGCCTGGCGGAGCCGGCTGAGAACCTCGAAGTGGCGATCAACCGCCTCGGCCTCAAGCGCACCGAGGAATTGCTCGCGCGCCTGCCTTCGCTACCGGCGCACCAGATACCGGTCGCCCTGCGCCAGTTGCAATTGATCAGCCAGCACGCTACACAACAGGCCAATGGTTTTTTCGCCAGCCGCCTGGCGCGGCTGTGGCAGGACATCCACTGGGGCAGCCTGTTGTTCCTGTCGCCGCTCTGGCCCTTGGCCCTGACCCATCCACGCCTGCTGGCGGAATGGGAGCTGCGGGTCGTCCATAAACGCCAGCCGGCCAGACAGGTCGAGCGCGAACTGTTCGGCGTCAGCCTGCTGAACATCTGCCTCGCGTTGGTGGAGGCGTGGCGCCTGCCCATCTGGGTGGCGCAAGGCTATCGCCTGCTGCTGAATGAACGCCGCGAACTGATGAAAGTGCTGCGCATCGCCCGCGACAGCGAACATCCGCTACGCCAGCAGAATCGCCTGGACGACGACCCGACGCTGCGGCGCTGGCTCAATCAACCCGCCAATACAGTGCTGCTGGCCAATGGTCTGGCACTGTCGGCGCAAGAGGCCTGGGAAAGCCCGCACAGCGCTCGCTGGCAATACCTCACCAGCCTGTATCTGCAGATGCCGATGGACGAACTTCAGCAGCAACTGCACCAACAAGCCGCCAACAGTGCTCGCCAGCACACCATGCCGGACCTCTGGCACCCCGCCGTGGCACTGATCTGGCCCCCGGGCAGCCGCCGCGTGCATCCCGGCTTGTTGCCCGCCGCCCCGCCCAGCGCCCAGGACCTGTCCCAATGGCGCAAGCAATGCGCCGCGCTGTTGGTGGAACCGAGCCCTTTCAGCAACGCCATGCACCTGACCACTTCGGCGCGAGATACCCTGGTGGCGTGCGGCATGCGCCGGGTGATGATTTTAATGCCCGATCGCAGCCAGACCAGCGTTCGTGTGCATCAGACCGCCGGCCTGCCCAAGGAAGCGGCGGCGATGAGCTTCTCCATCAGCCAAAGCAAGGTCTTGCAGCGACTACTGGCTCAACAGGCCCAGGTTCGCCTGACTCCTGAGAACAACGCCCAGTTCTCCGCCTTGCTGCCTCCGGGCCTTCGCGCCCTGTTCCGAGGCGAGCACCTGCTGTTGCGCTCACTGACGTGTAATGGACGGGTGATCATGCTAGTGGTCGCGGACCAGGGTGGCGGTCCGTTCTCGGACGTGACCGTTCAGGCTTTCGGCAAGACCGTGCAATGCATCGAAAGGGCCCTGCACAGCTTTACCAACCGTGGCCGCTGA	MANETNVPTPRPTTIEGWVKLLEGVHLPVPQASHDLVCKAISDSRRSLRDIAELMQDSPALALSVIREANHHTHGSLAEPAENLEVAINRLGLKRTEELLARLPSLPAHQIPVALRQLQLISQHATQQANGFFASRLARLWQDIHWGSLLFLSPLWPLALTHPRLLAEWELRVVHKRQPARQVERELFGVSLLNICLALVEAWRLPIWVAQGYRLLLNERRELMKVLRIARDSEHPLRQQNRLDDDPTLRRWLNQPANTVLLANGLALSAQEAWESPHSARWQYLTSLYLQMPMDELQQQLHQQAANSARQHTMPDLWHPAVALIWPPGSRRVHPGLLPAAPPSAQDLSQWRKQCAALLVEPSPFSNAMHLTTSARDTLVACGMRRVMILMPDRSQTSVRVHQTAGLPKEAAAMSFSISQSKVLQRLLAQQAQVRLTPENNAQFSALLPPGLRALFRGEHLLLRSLTCNGRVIMLVVADQGGGPFSDVTVQAFGKTVQCIERALHSFTNRGR				NA	NA	NA	NA	NA
D1-36_00523	852	motA	COG1291	Motility protein A	ATGGCTAAAATTATCGGCATCATTGTCGTGTTCGCGAGCGTGCTCGGCGGATACGTGCTTTCCCATGGCAAGATCGCTGCGCTGATCCAACCGTTCGAGGTGATGATCATCGGCGGTGCGGCTCTTGGCGCATTCCTCCAGGCGAACCCTGGCTATATGACCATGCATGTGCTCAAGAAATCCTTGAGCATGTTCGGCTCGCGCTTCAGCCACACCTTCTATCTTGAGGTGCTGGGGCTGGTCTACGAGATCCTCAACAAGAGCCGCCGCGAAGGCATGATGGCGATCGAGGGCGACATCGAAGACGCCGCCGCCAGCCCGATCTTCGCCAAGTACCCTTCGGTGCTGAAAGACGAGCGCATGACCGCGTTCATCTGCGATTACCTGCGCATCATGTCGTCCGGCAACATGGCGCCCCATGAGCTGGAAGGCTTGTTCGACATGGAGCTGTACAGCCTCAAGGAAGACCTGGAGCACCCATCCCACGCAGTCAACGGCATCGCCGACGGCATGCCCGGCTTCGGTATCGTTGCGGCGGTATTGGGTATCGTGGTGACCATGGCGTCCCTGGGGGAAGGCGACCAGGCTTCCATCGGCCTGCACGTGGGTGCGGCACTGGTGGGTACCTTCTTCGGTATTTTGGCCGCGTACGGTTTCTTCGGCCCGCTGGCCCACTCCCTGGCCCATGACGCCAAGGAAGAACTCAATGTCTATGAAGCCATCAAGGCTTCCCTGGTGGCCTCGGCCTCGGGCATGCCACCGTCCCTGGCGGTGGAGTTCGGCCGCAAGGTCCTGTACCCGGCGCACCGTCCAAGCTTTGCCGAGCTGGAACAAGCGGTTCGCGGTCGATAG	MAKIIGIIVVFASVLGGYVLSHGKIAALIQPFEVMIIGGAALGAFLQANPGYMTMHVLKKSLSMFGSRFSHTFYLEVLGLVYEILNKSRREGMMAIEGDIEDAAASPIFAKYPSVLKDERMTAFICDYLRIMSSGNMAPHELEGLFDMELYSLKEDLEHPSHAVNGIADGMPGFGIVAAVLGIVVTMASLGEGDQASIGLHVGAALVGTFFGILAAYGFFGPLAHSLAHDAKEELNVYEAIKASLVASASGMPPSLAVEFGRKVLYPAHRPSFAELEQAVRGR	PGPT0015370_1316	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_MOTOR|SWITCH,PGPT0015370-motA-K02556	NA	NA
D1-36_00524	1059			hypothetical protein	ATGGAGAATAACCAACCGATCATCGTCAAGCGCGTCAAGCGTATAGCTGGCGGGCATCACGGCGGCGCCTGGAAAATCGCTTTCGCTGACTTTGCCACGGCGATGATGGCGTTCTTCCTGGTGCTGTGGCTGCTGTCCACGGCGACGCCGGAACAGAAGATCGCGATCGCCGGTTACTTCAAGGACCCGGTGGGTTTTTCCGAGAGCGGCACGCCGTACATCATCGATCTGGGCGGCTCGCCTGTCCTGGCACCGGAAAATACCCTCAACCCCGAGGTCAAGTCCCAGCCCCAGCCCGACAAGGCGACCGTCGACGCCAATGAGGCCGAGGGCATGGCCGAGCAGGTCGAGCGCGAGCGTCTGGAATTGCTCCTGCAAGAGTTGCAGAACAAGGTCGAAGAAAATCCCGAATTGCAGAAATTCAAGGACCAGATCCTGTTCGAGATCACGCCGAACGGCCTGCGCATCCAGATCATGGACGCCGATAACCGGCCGATGTTCGACTCTGGCAGCGCGCGGCTCAAGCCGTATTTCGAAGACATCCTGCTGGCCATGGCCGACACCATCAAGGCGGTGCCGAACAAGATCAGTATCAGCGGCCATACCGATGCCAAGCCGTACGTGGGCAAAGGCGATTTCGGTAACTGGGAACTCTCGGCCAACCGCGCCAACGCGGCACGTCGCGCCCTGGTGGCGGGCAGCTATCCGGACGAGCAAGTGGCGCGGGTGGTCGGTTATGCGTCTTCGGCACTGTTCGATCGCCAAGACCCCTTCAATCCGGTCAACCGGCGTATCGATATCGTGGTGTTGACCAAGAAGGCCCAAAAAGCCATCGAGGGTTCACAAGCAGACGATTCGGTGCCCGATTCGGTGCCCGATTCGGCCCAAGGCGAGGGCGCGCCAGGTGAAGTGTCGGTGCCAGCGGCCGCGCCAGGTGCAGCGGACGATCCGAACGCCTTGCCGGCGGACCAGCAGCCCGTGCCGGCCCACGAGTTGCGCGAACGCCTGAACCTGTTCGACGACGCCGCACCGAAACCGGCCGAGCCGCCGGCGCAGTGA	MENNQPIIVKRVKRIAGGHHGGAWKIAFADFATAMMAFFLVLWLLSTATPEQKIAIAGYFKDPVGFSESGTPYIIDLGGSPVLAPENTLNPEVKSQPQPDKATVDANEAEGMAEQVERERLELLLQELQNKVEENPELQKFKDQILFEITPNGLRIQIMDADNRPMFDSGSARLKPYFEDILLAMADTIKAVPNKISISGHTDAKPYVGKGDFGNWELSANRANAARRALVAGSYPDEQVARVVGYASSALFDRQDPFNPVNRRIDIVVLTKKAQKAIEGSQADDSVPDSVPDSAQGEGAPGEVSVPAAAPGAADDPNALPADQQPVPAHELRERLNLFDDAAPKPAEPPAQ	PGPT0015375_636	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_MOTOR|SWITCH,PGPT0015375-motB-K02557	NA	NA
D1-36_00525	1032	rsgA	COG1162	Small ribosomal subunit biogenesis GTPase RsgA	ATGGCCAAACGCCAACTCAATCGTCGTCAGAACTGGCGCATCGAAAAGATCCAGGGCGAGCGTGCCGCCCGTGCCGCCAAGCGCGAATCCAGCGCTGTCGAAGCCTTGGAAGGCGGCGACCTGGGCCCCGAGCAGACCGGCCTGGTGATCGCTCACTTCGGTGTGCAGGTCGAGGTCGAGGCGCAGGAAGGCGAACTGGCCGGCCAGGTGTTCCGCTGCCACCTGCGCGCCAACCTGCCAGCGCTGGTGACCGGCGACCAAGTGGTCTGGCGTGCCGGCAACCAGGGCATCGGCGTGATCGTCGCGCAACTGCCCCGGCACACCGAGCTGTGCCGTCCCGACAGCCGGGGCCAACTCAAGCCAGTGGCCGCCAACGTCGACATGATCGTCATCGTGTTCGCTCCGTTGCCCGAGCCCCACGCCAACCTGATCGACCGTTACCTGGTAGCGGCCGAACACGCCGGCATCCGTCCGCTGCTGCTGCTCAACAAGTTCGACCTGATCGATGAGCACAACGCCCCGGCGCTGAACGCACTGCTGTCGGTCTATCGGGACCTGGGTTACCCAGTGTTGGAGGTCTCGGCCCATCACGGCAACGGCATGGAACAATTGCAGCGGCAACTGGACGGACGCATCAGCGTGTTCGTCGGCCAGTCCGGCGTCGGCAAGTCTTCGTTGGTCAACAGCCTGCTGCCGGAGGTCGAGACCCGCGTCGGGCCGTTGTCCGAGCTGTCCGGCCAGGGCACACACACCACAACCACCGCGCGGCTGTTCCACTTTCCCGGCGGCGGCGAACTGATCGACTCGCCGGGCATCCGCGAATTCGGCCTGGGCCACGTCAGCCGGGCGGATGTCGAAGCCGGCTTCATCGAATTCAACGAGCTGATCGGCACCTGCCGCTTCCGCGACTGCAAGCATGATCGCGAACCCGGGTGCGCCTTGCTCAAGGCACTGGAAGAAGGCCGCGTGCACCAGCAACGGATGAACAGTTACCGCTCGATCATCGCCAGCCTGCCGGAGAGCAGTTACTGA	MAKRQLNRRQNWRIEKIQGERAARAAKRESSAVEALEGGDLGPEQTGLVIAHFGVQVEVEAQEGELAGQVFRCHLRANLPALVTGDQVVWRAGNQGIGVIVAQLPRHTELCRPDSRGQLKPVAANVDMIVIVFAPLPEPHANLIDRYLVAAEHAGIRPLLLLNKFDLIDEHNAPALNALLSVYRDLGYPVLEVSAHHGNGMEQLQRQLDGRISVFVGQSGVGKSSLVNSLLPEVETRVGPLSELSGQGTHTTTTARLFHFPGGGELIDSPGIREFGLGHVSRADVEAGFIEFNELIGTCRFRDCKHDREPGCALLKALEEGRVHQQRMNSYRSIIASLPESSY	PGPT0009020_2070	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
D1-36_00526	552	orn	COG1949	Oligoribonuclease	ATGCAAAACCTGCAAAACCCGCAGAACCTGATCTGGATCGACCTGGAAATGACCGGTCTGAACCCTGACACCGACGTCATCATCGAAATGGCCACCATCGTCACCGACAGCGATCTCAATACCTTGGCCGAAGGGCCGGTGATCGCAATCCATCACAGTGACGAGATCCTGGCCGGCATGGACGAGTGGAACACCCGCCAACACGGCGGCTCGGGCCTGACCCAACGGGTGCGCGAGAGCAAGATCAGCATGGCCGAGGCTGAAGCCCAGACCATCGCTTTCCTCGAACAATGGGTGCCTAGGGGCAAGTCGCCGATCTGCGGCAACAGCATCTGCCAGGACCGTCGCTTCCTGTACACCCACATGAAATCCCTGGAAAGCTATTTCCATTACCGCAACCTTGACGTCTCCACGCTCAAGGAACTAGCCGCTCGCTGGGCTCCCGAAGTGCGCGACAGTTTCCAGAAAGGCAGTACGCACCTGGCCCTGGACGACATCCGCGAATCCATCGCCGAGCTGAAGCATTACCGCAAGCACTTCATCAAGTTCTGA	MQNLQNPQNLIWIDLEMTGLNPDTDVIIEMATIVTDSDLNTLAEGPVIAIHHSDEILAGMDEWNTRQHGGSGLTQRVRESKISMAEAEAQTIAFLEQWVPRGKSPICGNSICQDRRFLYTHMKSLESYFHYRNLDVSTLKELAARWAPEVRDSFQKGSTHLALDDIRESIAELKHYRKHFIKF				NA	NA	NA	NA	NA
D1-36_00527	612			hypothetical protein	ATGTTGCTGATGCTGTATCTGATCGCCATTACCGCCGAAGCCATGACCGGCGCGCTATCCGCCGGGCGGCGTGGCATGGACTGGTTTGGTGTGGTGCTGATCGCCTGCATCACGGCGCTGGGTGGTGGCTCGGTGCGCGACGTGTTGCTCGGTCACTACCCGCTCACATGGGTCAAGCATCCGGAATACCTGGTGCTCACCACCGCGGCTGCGATGCTCACGGTGTTCCTGGCGCGCTGGATGCGTCACCTGCGCTCGCTATTTTTGGTGCTCGATGCCGTGGGGTTGGTGGCATTTACGCTGATTGGCTGCATGACTGCGCTGGAAATGGGCCATGGCATGTTGGTCGCCTCGGTGAGCGGCGTGATCACGGGGGTATTTGGCGGCATCCTGCGGGATATCTTCTGTAACGATATTCCGCTGATCTTCCGTCGCGAGCTCTACGCCAGCGTCTCGTTTGCCGCCGCGTGGTGCTATTTGTTATGCGTCTACCTGCAATTGCCCAGCGAGCAGTCGATCCTCATCACATTGTTTGGCGGTTTTCTGCTGCGGCTCCTGGCGATTCGTTTTCACTGGGAAATGCCTAAGTTCGTCTATAACGACGAAGTCTGA	MLLMLYLIAITAEAMTGALSAGRRGMDWFGVVLIACITALGGGSVRDVLLGHYPLTWVKHPEYLVLTTAAAMLTVFLARWMRHLRSLFLVLDAVGLVAFTLIGCMTALEMGHGMLVASVSGVITGVFGGILRDIFCNDIPLIFRRELYASVSFAAAWCYLLCVYLQLPSEQSILITLFGGFLLRLLAIRFHWEMPKFVYNDEV				NA	NA	NA	NA	NA
D1-36_00528	1080	queG		Epoxyqueuosine reductase	ATGCCTGCCATTCCCACAGACCTTGCCACCCTCGCCCAATCCATCAAGGAATGGGGCCGCGAGCTGGGCTTCCAGCAGGTCGGCATCAGCGGCCTGGACCTGGCCGAGCATGAACAACATCTGCAACGCTGGCTCGAGGCCGGCTACCACGGCGAAATGGACTATATGGGCGCCCATGGCAGCAAACGCTCGCACCCTGAAGAACTGGTGCCCGGCACGCTGCGGGTGGTGTCGCTGCGCATGGATTACCTGGCGGGCGACACCCAAATGGCCCAATTACTTGGCGAACCGGAAAAAGCCTACGTTTCGCGTTATGCGTTGGGCCGCGATTACCACAAATTGATCCGTAAGCGCGTGCAGCAACTGGCGGAAAAAATCCAAGAGGCCATCGGCCCCTTCGGCTATCGCGCCTTCGTCGACAGCGCGCCGGTGCTGGAAAAAGCCATTGCCGAACAGGCCGGCCTGGGTTGGATCGGCAAGAACACCCTGGTCCTGAACCGCAAGGCCGGCAGTTATTTTTTCCTCAGCGAGCTTTTTGTCGACCTGCCGTTGCCGGTGGACCCGCCCCACGGCACCGAGCATTGTGGGAAATGCACCGCTTGCCTGGACATCTGTCCGACCAATGCCTTCGTCGGCCCTTATGTACTGGATGCCCGACGGTGCATTTCATACCTCACTATCGAGTTGAAGAACGCCATTCCAGAGGATCTGCGGCCCTTGATCGGCAACCGGGTGTTCGGTTGCGATGACTGCCAGATCGTTTGTCCATGGAACCGCTTCGCCCGGCCATCCGGCGAAAGCGACTTCAAGCCACGGCACAACCTGGACAACGCCGGGCTGGCGGAGCTGTTCATGTGGGACGAGGAAAAATTCCTCAGCAGTACCGAAGGCTCACCGTTGCGCCGTGCTGGGTACGAACGTTGGCTGCGCAATCTGGCGGTGGGCCTGGGCAACGCGCCGTCAACGATTCCCGTGCTGCAAGCGCTGGAGGCGCGGCGCGATTATCCGTCGGAACTGGTGCGCGAACACGTGGAATGGGCGCTGCGCCAGCACGCCACGCGTCAGACTTCGTCGTTATAG	MPAIPTDLATLAQSIKEWGRELGFQQVGISGLDLAEHEQHLQRWLEAGYHGEMDYMGAHGSKRSHPEELVPGTLRVVSLRMDYLAGDTQMAQLLGEPEKAYVSRYALGRDYHKLIRKRVQQLAEKIQEAIGPFGYRAFVDSAPVLEKAIAEQAGLGWIGKNTLVLNRKAGSYFFLSELFVDLPLPVDPPHGTEHCGKCTACLDICPTNAFVGPYVLDARRCISYLTIELKNAIPEDLRPLIGNRVFGCDDCQIVCPWNRFARPSGESDFKPRHNLDNAGLAELFMWDEEKFLSSTEGSPLRRAGYERWLRNLAVGLGNAPSTIPVLQALEARRDYPSELVREHVEWALRQHATRQTSSL				NA	NA	NA	NA	NA
D1-36_00529	1500	nnr	COG0062	Bifunctional NAD(P)H-hydrate repair enzyme Nnr	ATGCCGCAGACTAAAGATGATTTTCCCGACGCGCTGTACAGCGCCGCGCAGGTCCGGGCCTTGGATGCACAGCTGATCGCGGCAGGCACCAGCGGCTTCGAACTGATGCAGCGTGCCGCCCGCGCCACGTGGCGAGCTATCGTGCGACGTTGGCCGCAAAGTGCTGAATTGACCGTGCTGGCCGGGCATGGCAACAACGCCGGCGATGGCTACCTGGTCGCTGCCCTGGCCCGCCGAGCCGGCTGGTCGGTACGGGTCCTGGCCGTGGGCGAGCCCCGGCGCCTGTTGGGTGATGCCGCCAATGCCCATGCAGAGGCCGTGGCCGTGGGTGTGCCGGTGGAGCCTTGGACGGACGATAGCGAGCTGCGGGGAGTGCTGCTCGACGCGCTGCTCGGCACCGGGACCACCGGCGAAGTGCGCGAGCCTTATATCCGGGCGATCGATACGGTCAATGTCAGCGGTTTGCCGGTCGCGGCGGTGGATATACCGTCGGGGCTGTGTGCGGACACCGGCCGAGTGCTCGGGACCGCCGTGGCGGCTGACCTGACCGTGACGTTCATCGGCTTGAAGCTTGGCTTGTTCACCGGAGATGCGGCGGATCGAGTCGGTGAGTTGGTGTTCAACGACCTGCACGCCGACCCTGACATTGTTGAGTCGGCGCCTTCCAGTGCCCGCCTGCTCCTGCCTGTTAATCTGCCGCGCCTGACGCCTCGCCCGCCCACGTCCCACAAAGGCAAGTTCGGTCACGTGCTGTTGATCGGCGGCGACCGGGGTTTCGGCGGCGCGATCCAGATGAGCGCCGAAAGTGCGCTGCGCTGCGGCGCGGGCATGGTTTCGATGGCCACCCGCAGCGAGCACGTCGCCTCGGCGCTGGTCCGTTTGCCTGAGGTGATGGTGCAGGGCACTCATTCGGCCAATCAATTGATGGGCTTGCTCAAGCAGGCCAACGTCCTGGTGGTCGGCCCGGGCTTGGGCCAGGCTGCCTGGGGACGCAGCCTGCTGTCGGCGGCGGCCAATGCTGCGCTGCCCCAGGTGTGGGACGCCGATGCCCTGAATCTGTTGAGCCTTGGCGCGGTCAGCCTGCCCGAACATTGCGTCATTACCCCGCATCCGGGCGAGGCAGCGCGATTGCTGGGGATATCCACGGCTCAGGTGCAGGCCGACCGCTCGGCGGCGGCCCACGCCTTGAGCCAGAAATACACAGCTACCGTGATCCTCAAGGGGGCCGGCAGCTTGATCGCCAGCCCGGACGGCCGCCTGGCGGTTTGTACCCAAGGCCACCCGGCCATGGCCACCGCCGGCCTGGGGGATGTGCTCGCTGGGGTCGTCGGCGCGTTGCTGGCCCAGGGGCTGGAAGCGTTCGAGGCCGCATGCCTGGCGGTCTGGCTGCATGCCAGCGCGGGCGTCCAGTGCGGTCGCTCGGGCCGGGGATTGGCGGCGACCGATCTGATCCCGGCCATTCGTCAGTTGTTGGAGGAGCATTCACCGTGTCTGAAGTAA	MPQTKDDFPDALYSAAQVRALDAQLIAAGTSGFELMQRAARATWRAIVRRWPQSAELTVLAGHGNNAGDGYLVAALARRAGWSVRVLAVGEPRRLLGDAANAHAEAVAVGVPVEPWTDDSELRGVLLDALLGTGTTGEVREPYIRAIDTVNVSGLPVAAVDIPSGLCADTGRVLGTAVAADLTVTFIGLKLGLFTGDAADRVGELVFNDLHADPDIVESAPSSARLLLPVNLPRLTPRPPTSHKGKFGHVLLIGGDRGFGGAIQMSAESALRCGAGMVSMATRSEHVASALVRLPEVMVQGTHSANQLMGLLKQANVLVVGPGLGQAAWGRSLLSAAANAALPQVWDADALNLLSLGAVSLPEHCVITPHPGEAARLLGISTAQVQADRSAAAHALSQKYTATVILKGAGSLIASPDGRLAVCTQGHPAMATAGLGDVLAGVVGALLAQGLEAFEAACLAVWLHASAGVQCGRSGRGLAATDLIPAIRQLLEEHSPCLK				NA	NA	NA	NA	NA
D1-36_00530	471	tsaE	COG0802	tRNA threonylcarbamoyladenosine biosynthesis protein TsaE	GTGTCTGAAGTAACCCTGTACGTGGCGGACGAACAAGCCATGACACAATTTGGCGCGCGTATCGCGCAAATCACCGCAGGGCATGGCTTGATCTTTCTCGAGGGCGACCTCGGCGCGGGAAAAACCACCTTGTCCCGTGGCATCATCCGTGGTCTCGGGCACGTCGGCTCAGTCAAGAGCCCTACTTTCACCCTGGTCGAGCCCTACGAGATCGGCGACATCCGAGCGTTTCATTTCGATCTGTATCGGCTGGTCGATCCCGAAGAGCTGGAGTTCCTCGGCATCCGTGATTACTTCGAAGATGACGCCTTGTGCCTGATCGAATGGCCCCAGAAAGGTGCAGGCTTTTTGCCAAAGCCGGACCTGACCATTACCATTGGCGCGCAGAATGGCGGGCGTTCGCTGAAACTGACACCGCAAGGCTCGCGTGGCGAGTCGTGGTGTGCCGCCTTGGCTTTGGAAACTAATTAA	MSEVTLYVADEQAMTQFGARIAQITAGHGLIFLEGDLGAGKTTLSRGIIRGLGHVGSVKSPTFTLVEPYEIGDIRAFHFDLYRLVDPEELEFLGIRDYFEDDALCLIEWPQKGAGFLPKPDLTITIGAQNGGRSLKLTPQGSRGESWCAALALETN	PGPT0019050_89	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_MURAMATE_DEGRADATION,PGPT0019050-amgK-K07102	NA	NA
D1-36_00531	1431	amiC_1	COG0860	N-acetylmuramoyl-L-alanine amidase AmiC	ATGATGGGGTTTGGTATGCGCTTTCGCGCGGTGGTTGCTGTCGTAGGACTGTTGCTTACGGCACTGGCCGTCGATGCTGTGGCTGAGACAAAGGTCAACAGCGTTCGCCTCTGGCGGGCGCCGGACAATACCCGGCTGGTGTTCGACCTGACAGGCCCGGTGCAGCACAGCGTATTCACCCTGACCGCCCCGGATCGCCTGGTGATCGACATCAATGGCGCGTCCTTGGGCGCGCCGCTGAACGTGCCCACCGCCAACACTCCGATTACCGCCATGCGCTCGGCCCAGCGTACGCCGACCGACCTGCGGGTGGTCGTCGACCTGAAACAAGCGGTGACCCCGAAGAGCTTCACCCTGGCGCCCAACGCCCAGTACGGCAACCGGCTGGTGGTGGACCTGTTCGATAACCCGGCCGATGCCGCGCCGACACCGCCGCCGCCGACCAAAGTCGCCACGGTGCCCGCCGTGCCGGTCACGCCCACTGAACCCGCGATCAAGCTGCCACCGGCCCCGGCCGGCAAACGCGACATCATTGTGGTTATCGACGCCGGCCACGGTGGCGAAGACCCTGGCGCCTCGGGTTCGCGCGGGCAGCGTGAGAAGGACGTGGTGCTGTCCATCGCCCGCGAACTGCAACGCCAAGTCAACGGCATGAAAGGCTTCCGCGCCGAACTGACCCGCACGGGCGACTATTTCATTCCCCTGCGCGGACGCACGGAAATCGCCCGCAAGAAGGGCGCGGACCTGTTCGTCTCGATCCATGCCGACGCCGCACCCTCCAAGGCTGCATTTGGCGCCTCGGTATTTGCCTTGTCCGACCGTGGTGCCACTTCCGAGACCGCCCGCTGGCTGGCCGACAGTGAGAACCGTTCCGACCTGATCGGCGGTGCTGGCAACGTCAGCCTCGACGACAAGGACCGGATGCTCGCCGGTGTGTTGCTGGACTTGTCAATGACCGCCTCGTTGACCTCCAGCCTGAACGTCGGCCAAAAGGTGCTGAGCAACATCGGCCGCGTCACGCCATTGCACAAGCAGCGGGTCGAGCAGGCCGGGTTCATGGTGCTCAAGTCGCCGGACATCCCGTCGATCCTGGTGGAAACCGGGTTCATTTCCAACGCCAACGAAGCCTCTAAACTGTCGTCGTCAAGCCACCAGCAGGCCTTGGCCCGATCCATCAGCAGTGGCGTGCGGCAGTTCTTCCAGCAGAATCCACCGCCCGGCACCTACATCGCCTGGCTGCGCGATTCGGGCAAGATCGCCCAGGGCCCGCGCGACCATCGAGTCAACCCGGGCGAAACCCTGGCGATGATCGCCGTGCGCTACCAGGTGTCGCCCGCGACCTTGCGCAGCGCCAACAATCTGCAAAGTGACGAGCTGAAGATCGGGCAGACCCTGACCATTCCTGGCAACGAAGTGGCGGCCAAGCAATGA	MMGFGMRFRAVVAVVGLLLTALAVDAVAETKVNSVRLWRAPDNTRLVFDLTGPVQHSVFTLTAPDRLVIDINGASLGAPLNVPTANTPITAMRSAQRTPTDLRVVVDLKQAVTPKSFTLAPNAQYGNRLVVDLFDNPADAAPTPPPPTKVATVPAVPVTPTEPAIKLPPAPAGKRDIIVVIDAGHGGEDPGASGSRGQREKDVVLSIARELQRQVNGMKGFRAELTRTGDYFIPLRGRTEIARKKGADLFVSIHADAAPSKAAFGASVFALSDRGATSETARWLADSENRSDLIGGAGNVSLDDKDRMLAGVLLDLSMTASLTSSLNVGQKVLSNIGRVTPLHKQRVEQAGFMVLKSPDIPSILVETGFISNANEASKLSSSSHQQALARSISSGVRQFFQQNPPPGTYIAWLRDSGKIAQGPRDHRVNPGETLAMIAVRYQVSPATLRSANNLQSDELKIGQTLTIPGNEVAAKQ	PGPT0024160_1776	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_AMIDASE_ACTIVITY,PGPT0024160-amiA|amiB|amiC-K01448	NA	NA
D1-36_00532	1914	mutL		DNA mismatch repair protein MutL	ATGAGCGATGACGTGATCGACAGCACCGCCCGCATCGAACTGCTCAGCCCTCGGCTGGCGAACCAGATCGCCGCCGGCGAAGTGGTCGAGCGCCCCGCGTCGGTCATAAAGGAGCTGCTGGAAAACAGTCTCGACTCCGGGGCCAAGCGCATTGACGTCGATGTCGAGCAGGGCGGGGTCAAGCTGTTGCGGGTGCGCGACGACGGTCGCGGCATTCCCGCCGATGACCTGCCGCTGGCCCTGGCGCGTCACGCGACCAGCAAGATTCGTGACCTGGAAGACCTCGAACGGGTCATGAGCCTGGGGTTTCGTGGCGAGGCGCTGGCGTCCATCAGTTCGGTGTCACGCCTGACGCTCACGTCCCGCACCCGAAACGCCGATCAGGCCTGGCAGGTCGAGACCGAAGGCCGCGACATGGCTTCCCATGTGCAACCCGCCGCTCATCCGGTGGGCACGTCGGTTGAAGTACGGGACTTGTTCTTCAATACTCCGGCCCGGCGCAAGTTCCTCAAGGCCGAGAAAACCGAATTCGATCATTTGCAGGAAGTCATCAAGCGCCTGGCCCTTGCACGGTTTGACGTGGCGTTTCACCTGCGCCACAACGGCAAGACCATCCTCAGCCTGCACGAGGCCAACGATGATGCGGCTCGCGCCCGGCGTGTGGGCGCGGTGTGTGGCGCGGGTTTTCTGGAGCAGGCCTTGCCCATCGAGGTGGAGCGCAATGGCTTGCACCTGTGGGGTTGGGTCGGCTTGCCGACGTTTTCCCGCAGCCAGGCGGACCTGCAATATTTCTACGTGAACGGCCGTGCGGTGCGCGACAAATTGGTGGCCCATGCGGTGCGCCAGGCCTACCGCGATGTGCTGTTCAACGGTCGGCATCCCACCTTCGTGCTGTTCTTCGAAGTCGACCCATCGGTGGTGGACGTCAACGTCCACCCGACCAAGCACGAAGTGCGTTTCCGTGATGGACGCATGGTCCACGATTTCCTCTATGGCACGTTGCATCGAGCCCTGGGCGATGTTCGGCCGGAAGATCAGTTGGCGGCCCCGGCGGCCGTGGCCGGCATGGTCCGGCCGACCGGGCTGGAGGCCGGCGAGTTTGGCCCCCAGGGGGAAATGCGCCTGGCGGCCCATGCCCTGCTGGAGCAACCCCAGCCCCAACCAGCCTACAACACAGGCGGAAGCGGCGCTGGCAGCGGTTATCAGTATCAATACACGCCGCGCCCACAATCCAATGTGCCGGCAGCCGAGGCCCAGGCCGCGTATCGCGAGTTCTTCAAGCCTCTGCCTGAAACCGCTGCGGCGACATTGCCCGACGGTCAGGGAGATATACCACCGTTGGGTTATGCCCTGGCGCAGCTAAAAGGCATCTACATCCTTTCCGAAAACGCCCAGGGCCTGGTCCTGGTGGATATGCACGCCGCTCACGAGCGGATCATGTACGAGCGATTGAAGATCGCCATGGCCAGCGAAGGCTTGAGCGGCCAACCGTTGTTGGTTCCCGAATCCCTGGCCGTCAGCCAGCGCGAAGCCGATTGCGCTGAAGAGCACATGAGCTGGTTCCAGCGCCTGGGCTTCGAGCTACAGCGCCTGGGCCCGGAAACCCTGGCGATCCGGCAGATCCCAGCCTTGTTGAAACAGGCCGAGGCCAATCGCCTGGTCAGCGACGTGCTGGCGGACCTGATGGAATATGGCACCAGCGACCGGATCCAGGCGCACTTGAACGAATTGCTCGGCACCATGGCCTGCCACGGCGCGATCCGCGCCAACCGGCGCCTGGCCTTGCCGGAAATGAACGGCCTGTTGCGGGACATGGAAAACACCGAACGCAGCGGTCAATGCAACCATGGCCGGCCGACCTGGACTCAACTGGGCCTGGACGACCTGGACAAACTGTTCCTGCGCGGTCGTTGA	MSDDVIDSTARIELLSPRLANQIAAGEVVERPASVIKELLENSLDSGAKRIDVDVEQGGVKLLRVRDDGRGIPADDLPLALARHATSKIRDLEDLERVMSLGFRGEALASISSVSRLTLTSRTRNADQAWQVETEGRDMASHVQPAAHPVGTSVEVRDLFFNTPARRKFLKAEKTEFDHLQEVIKRLALARFDVAFHLRHNGKTILSLHEANDDAARARRVGAVCGAGFLEQALPIEVERNGLHLWGWVGLPTFSRSQADLQYFYVNGRAVRDKLVAHAVRQAYRDVLFNGRHPTFVLFFEVDPSVVDVNVHPTKHEVRFRDGRMVHDFLYGTLHRALGDVRPEDQLAAPAAVAGMVRPTGLEAGEFGPQGEMRLAAHALLEQPQPQPAYNTGGSGAGSGYQYQYTPRPQSNVPAAEAQAAYREFFKPLPETAAATLPDGQGDIPPLGYALAQLKGIYILSENAQGLVLVDMHAAHERIMYERLKIAMASEGLSGQPLLVPESLAVSQREADCAEEHMSWFQRLGFELQRLGPETLAIRQIPALLKQAEANRLVSDVLADLMEYGTSDRIQAHLNELLGTMACHGAIRANRRLALPEMNGLLRDMENTERSGQCNHGRPTWTQLGLDDLDKLFLRGR				NA	NA	NA	NA	NA
D1-36_00533	972	miaA	COG0324	tRNA dimethylallyltransferase	ATGAGCCAGTTGCCACCCGCGATTTTCCTGATGGGGCCGACGGCCGCCGGCAAGACCGACCTGGCCATCGAACTGACCAAGGTCTTGCCCTGCGAGTTGATCAGCGTCGATTCGGCGCTGGTCTACCGGGGCATGGACATCGGCACCGCCAAACCGTCGAAAGCTTTGCTGGCTGAATATCCCCATCGGCTGATCGACATCCTCGACCCGGCCGAAGCCTATTCGGCGGCTGATTTTCGGCGTGATGCGCTCCAGGCCATGGCCGAGATCACTGCGCGAGGCAAGATTCCGCTGCTGGTGGGCGGTACGATGCTGTACTACAAAGCCCTGGTCGATGGCCTGGCGGACATGCCGGCGGCCGATCCCGAGGTGCGCGCACAGATCGAAGAAGAGGCTGCGCGCTTTGGCTGGCAAGCGCTTCACGAACAATTGGCGGTGATCGATCCTGAATCGGCGGCGCGCATTCACCCCAACGACCCGCAGCGGCTCAGCCGGGCCCTGGAGGTTTATCGGGTGAGCGGCCAGAGCATGACGGCCCTGCGGCAGCGACAATCTGCGCAAAGTACTGAAGCAGCCGCTTCGGGACTGCAACAATTGCCCTATACTGTCGCGAATCTGGCCATCGCTCCGGCGAACCGGCAAGTGCTGCATCGGCGAATTGAACAAAGATTCACATTAATGTTGGAACAGGGATTCATAGACGAGGTCGTAGCCCTGCGTGAGCGAAGTGACCTGCATGCCGGGTTGCCGTCTATACGTGCGGTGGGTTATCGACAAGTCTGGGACTACCTGGACGGCATGCTGACGTCAGCCGAGATGCGCGAGCGTGGAATCATTGCCACGCGCCAATTGGCGAAACGCCAGTTCACCTGGCTGCGCAGCTGGACTGACTTGCATTGGCTTGACAGCCTTGATTGCGACAATCTGCCACGCGCCTTGAAATACCTCGGGACCATCTCCATATTGAGCTGA	MSQLPPAIFLMGPTAAGKTDLAIELTKVLPCELISVDSALVYRGMDIGTAKPSKALLAEYPHRLIDILDPAEAYSAADFRRDALQAMAEITARGKIPLLVGGTMLYYKALVDGLADMPAADPEVRAQIEEEAARFGWQALHEQLAVIDPESAARIHPNDPQRLSRALEVYRVSGQSMTALRQRQSAQSTEAAASGLQQLPYTVANLAIAPANRQVLHRRIEQRFTLMLEQGFIDEVVALRERSDLHAGLPSIRAVGYRQVWDYLDGMLTSAEMRERGIIATRQLAKRQFTWLRSWTDLHWLDSLDCDNLPRALKYLGTISILS	PGPT0007210_1356	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0007210-miaA|ipt-K00791	NA	NA
D1-36_00534	261	hfq	COG1923	RNA-binding protein Hfq	ATGTCAAAAGGGCATTCGCTACAAGACCCTTACTTGAACACTTTACGTAAAGAGAAAGTTGGGGTGTCCATCTATCTGGTCAACGGGATCAAACTGCAAGGCACGATCGAGTCGTTCGACCAGTTCGTCATCCTGCTGAAGAACACCGTCAGCCAGATGGTCTACAAACACGCTATCTCGACAGTGGTGCCGGTTCGTCCGATTCGTCTGCCTAGCGCAACCGAATCCGAAGGCGGTGACGCTGAGCCGGGTAACGCTTGA	MSKGHSLQDPYLNTLRKEKVGVSIYLVNGIKLQGTIESFDQFVILLKNTVSQMVYKHAISTVVPVRPIRLPSATESEGGDAEPGNA	PGPT0025560_874	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-AI1|AI-2|CAI-1_PERCEPTION|SIGNALLING,PGPT0025560-hfq-K03666	NA	NA
D1-36_00535	1302	hflX	COG2262	GTPase HflX	TTGTTCTTTGAGCGCCACGGTGGTGGTGAGCGGACCATTCTCGTTCACTTGGAAGGACAGGACCCTGAGGCGCGCGAAGATCCGCAGGAGTTTCAGGAATTGGCAATTTCGGCCGGCGCCGAGACCGTCGCGTTTTTCAACGTGCCGCGTCATCGGCCAACCGCCAAATTCCTGATCGGCAGTGGCAAGGTCGAGGAGTTGCGCGACCTGGTCAAAGCCGAGCACATCGATCTGGTGATTTTCAATCACATCCTCACGCCCAGTCAGGAACGCAACCTCGAACGTGTCTTCGAGTGCCGCGTGATCGACCGCACCGGGCTGATTCTCGATATTTTCGCCCAACGCGCGCGTACCCATGAAGGCAAGCTCCAGGTCGAACTGGCCCAGCTTGAGCACATGAGCACGCGGCTGGTCCGCGGCTGGACTCACCTTGAGCGCCAGAAAGGCGGTATCGGCCTGCGGGGCCCAGGTGAAACCCAGCTCGAAACCGACCGGCGCCTGCTGCGGGTTCGCCTGCGCCAGATCAAAGGGCGGCTGGAGAAAGTCCGCAGCCAGCGCGAGCAATCGCGGCGCGGCCGCAAGCGGGCCGACATCCCGACGGTTTCACTGGTGGGTTATACCAACGCCGGCAAATCGACCCTGTTCAACAACGTCACCAAATCCGATGTCTATGCCGCCGACCAGTTGTTCGCCACGCTCGACCCGACCTTGCGTCGGCTCGACCTGAGCGACCTCGGGCCCATCGTGCTGGCCGATACCGTGGGTTTCATCCGGCATTTGCCGCATAAGCTGGTCGAGGCTTTCCGGGCTACGCTCGAAGAGTCGAGCAACTCCGACCTGCTGCTGCACGTGATCGATGCCGCCGAACCGGACCGGATGCTGCAGATCGAACAGGTCATGGTGGTGCTGGGAGAGATCGGGGCCCAGGACTTGCCGATCCTCGAGGTATACAACAAACTCGATTTGCTCGAAGGCGTGGAGCCGCAGATCCAGCGCGATGCCGACGGAAAGCCGCAGCGGGTCTGGCTTTCGGCCCGTGATGGCAGTGGCCTGGACCTGCTCAAACAGGCCGTGGCGGAACTGCTGGGCGATGACCTGTTTGTGGGCACCTTGAAGCTGCCGCAGCGTTTTGCCCGGCTGCGTGCGCAGTTTTTCGAGTTGGGGGCGGTGCAGAAAGAAGAACACGACGAAGAAGGCATCTGCCTGCTGGCCGTTCGCCTGCCTCGGTCGGAACTGAACCGGCTGGTCAGTCGCGAAGGGCTCCAGCCGATGGAATTCATCGAGCAACACACTTTGCAATAA	MFFERHGGGERTILVHLEGQDPEAREDPQEFQELAISAGAETVAFFNVPRHRPTAKFLIGSGKVEELRDLVKAEHIDLVIFNHILTPSQERNLERVFECRVIDRTGLILDIFAQRARTHEGKLQVELAQLEHMSTRLVRGWTHLERQKGGIGLRGPGETQLETDRRLLRVRLRQIKGRLEKVRSQREQSRRGRKRADIPTVSLVGYTNAGKSTLFNNVTKSDVYAADQLFATLDPTLRRLDLSDLGPIVLADTVGFIRHLPHKLVEAFRATLEESSNSDLLLHVIDAAEPDRMLQIEQVMVVLGEIGAQDLPILEVYNKLDLLEGVEPQIQRDADGKPQRVWLSARDGSGLDLLKQAVAELLGDDLFVGTLKLPQRFARLRAQFFELGAVQKEEHDEEGICLLAVRLPRSELNRLVSREGLQPMEFIEQHTLQ	PGPT0007245_2458	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-CYTOKININ_METABOLISM	PHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007245-hflX-K03665	NA	NA
D1-36_00536	1176	hflK	COG0330	Modulator of FtsH protease HflK	ATGGCTTGGAATGAGCCGGGTGGCAACTCGAATAACCAGGATCCCTGGGGCGGCAAGCGTCGTAACAACGGCGACCGCAAGGGACCACCGGATCTCGACGAGGCCTTCCGCAAGCTGCAGGACAGCCTGAACGGTTTGTTCGGTGGTGGTAGGAAACGCGGTGACGATGGCGGCAGCCGTCCGGGCAAGGGCGGCGGTTTCGGCCTGCTCGGCATCGGCCTTGTCGTGCTCGCGGCTGTCTGGCTGTACAGCGCGGTGTATGTCGTGGACGAGCAGGAGCAGGCCGTGGTGCTGCGCTTCGGCAAATACTACGAAACCGTCGGCCCGGGCCTGAACATCTATTTCCCGCCGATCGACCAGAAGTACATGGAGAACGTCACGCGCGAGCGTGCCTACTCCAAGCAGGGCCAGATGCTGACCGAAGACGAGAACATCGTCGAAGTGCCGCTGACCGTGCAGTACAAGATCACCAACCTGCAGGACTTCGTGCTCAACGTCGACCAGCCGGAGATCAGCCTGCAACACGCGACTGAAAGCGCCCTGCGCCACGTGGTGGGTTCCACCGCCATGGACCAGGTGCTGACCGAAGGTCGTGAGCTGATGGCCAGCGAAATCAAGGAGCGCCTGCAACGGTTCCTCGATACCTATCGCACCGGTATCACGGTCACCCAGGTCAACGTACAGAGCGCAGCGGCACCGCGCGAAGTGCAGGAAGCCTTTGACGACGTGATCCGCGCCCGTGAAGACGAGCAACGCTCGCGCAACCAGGCCGAAACCTATGCCAACGGCGTTGTGCCGGAAGCCCGTGGTCAGGCCCAGCGCATCATCGAAGATGCCAACGGTTATCGCGACGAAGTGGTTTCCCGCGCCAAGGGTGAGGCTGATCGCTTCACCAAACTGGTAGCCGAGTACCGCAAGGCGCCTGAAGTCACGCGCCAGCGCCTGTACCTGGACACCATGCAGGAAGTCTTCAGCAACACCAGCAAGGTCCTCGTGACCGGCAGCAAGGACGGCCAGAGCAATCTGCTGTACTTGCCGCTGGACAAGATGGTCGAGAGTGGTCGCAACGCCGGCACACCGCCAACCGGCGCGGCGGCAGCCGCCAGCAATGAAGCCAATGCCCGCGCGGCGGCGGACCTGCAGCAACAGCAAGCACGTACCAGGGAGAGTCGCTGA	MAWNEPGGNSNNQDPWGGKRRNNGDRKGPPDLDEAFRKLQDSLNGLFGGGRKRGDDGGSRPGKGGGFGLLGIGLVVLAAVWLYSAVYVVDEQEQAVVLRFGKYYETVGPGLNIYFPPIDQKYMENVTRERAYSKQGQMLTEDENIVEVPLTVQYKITNLQDFVLNVDQPEISLQHATESALRHVVGSTAMDQVLTEGRELMASEIKERLQRFLDTYRTGITVTQVNVQSAAAPREVQEAFDDVIRAREDEQRSRNQAETYANGVVPEARGQAQRIIEDANGYRDEVVSRAKGEADRFTKLVAEYRKAPEVTRQRLYLDTMQEVFSNTSKVLVTGSKDGQSNLLYLPLDKMVESGRNAGTPPTGAAAAASNEANARAAADLQQQQARTRESR				NA	NA	NA	NA	NA
D1-36_00537	870	hflC	COG0330	Modulator of FtsH protease HflC	ATGAGCAATAAATCGCTGATCGCCCTTATTGTCGGCGTCGTCGTGGCGATCGCTGCCTGGAACTGCTTCTATATCGTGGCTCAGACCGAGCGCGCGGTGTTGCTGCAATTCGGTCGCGTGGTCCAGGCTGATGTCCAGCCAGGGCTGCATGTGAAGGTGCCGTACGTTAACAAGGTGCGCAAGTTCGATGCGCGCTTGATGACGTTGGACGCACCGACGCAGCGCTTCCTGACGCTGGAAAAGAAAGCCGTGATGGTCGATGCCTACGCCAAGTGGCGCGTGAAGGATGCCGAGCGCTTCTACACCGCGACCTCTGGTCTCAAGCAGATCGCCGACGAACGTTTGTCCCGTCGCCTGGAGTCGGGCCTGCGTGACCAGTTCGGTAAACGTACCCTGCACGAAGTGGTGTCCGGTGAGCGCGACGCGCTCATGGCAGACATCACCCGCTCGCTGAACGCGATGGCGGAAAAAGAGCTGGGTATCGAAGTGGTCGACGTGCGTGTCAAGGCCATCGACCTGCCGAAGGAAGTGAACCGCAGCGTGTTCGAGCGCATGAGCACCGAGCGTGAGCGTGAAGCCCGCGAGCACCGCGCAAAAGGTAACGAGCTGGCCGAAGGCATCCGTGCCGACGCCGATCGTCAACGCCGCGTGCTGCTGGCCGAAGCCTATCGTGAATCGGAAGAGGTCCGGGGTGATGGTGATGCCCAGGCCGCTGCGATCTACGCCAAGGCCTATGGCCAGGACCAGGAGTTCTACGCGTTCTACCGTAGCCTGCGTGCCTACCGTGAAAGCTTCGCGAACAAATCCGACGTCATGGTCCTGGACCCAAGCAGTGACTTTTTCCATTACCTGGAAAAGGCCAAGCCTTGA	MSNKSLIALIVGVVVAIAAWNCFYIVAQTERAVLLQFGRVVQADVQPGLHVKVPYVNKVRKFDARLMTLDAPTQRFLTLEKKAVMVDAYAKWRVKDAERFYTATSGLKQIADERLSRRLESGLRDQFGKRTLHEVVSGERDALMADITRSLNAMAEKELGIEVVDVRVKAIDLPKEVNRSVFERMSTEREREAREHRAKGNELAEGIRADADRQRRVLLAEAYRESEEVRGDGDAQAAAIYAKAYGQDQEFYAFYRSLRAYRESFANKSDVMVLDPSSDFFHYLEKAKP				NA	NA	NA	NA	NA
D1-36_00538	1188	hisZ	COG3705	ATP phosphoribosyltransferase regulatory subunit	ATGGCAACGGTAGACCGCTGGCTGCTGCCAGATGGCATCGAAGAAGTACTGCCACCGGAAGCCGCGCGTATCGAAGTAGCGCGTCGGCAGGTGTTGGATCTGTTCCAGAGTTGGGGTTACGAGTTCGTCGTTACCCCGCATATCGAGTACCTGGAATCCTTGCTGACCGGCGCGGGCCAGGACCTGGATTTGCGCACCTTCAAGGTTATCGACCCGCAATCGGGCCGGCAGATGGGCTTTCGGGCCGACATCACGCCACAAGTGGCACGCATCGATGCCCACACCTTGCGCCGCGAAGGCCCGAGCCGTCTGTGCTACGCCGGCAGTGTCCTGCATGCCCAGCCGCGTGCCTTGTCGTCTTCGCGCAGCCCGATCCAGTTGGGCGCCGAACTCTATGGCGACGCCAGCCCAGTCAGTGACGTGGAAGTCATCAGCCTGATGTTGGCCATGCTGCAACTGGCCGACGTGCCGGATGTCCACATGGACCTGGGCCATGTCGGCATCTACCGTGGCCTGGCCCGTGCGGCCGGTTTGTCCGGCGAAGTGGAGCAGCGGTTGTTCGACGCCTTGCAGCGCAAGGCCATCGATGAAGTCATCAGCCTGACCGAAGGGCTGCCGAGCGACCTGTCCGGCATGTTGCGGGCATTGGTGGATCTTTGCGGCGGCCGTGAAGTGCTGGGCGCGGCCCGCGAACGCTTGGCCGGCGCGCCGGCACCGGTGTTGGCGGCGCTGGACGACCTGTTGGCGATTGCCGAGCGTCTGTCGGTGCGTTTCCCTGAGTTGCCGCTGTATTTCGACCTGGGTGAGCTGCGCGGCTATCACTATCACACTGGCGTGGTGTTCGCAGTGTTTGTACCGGGCGTTGGTCAGTCCATCGCCCAGGGCGGTCGCTACGACGACATCGGCGCCGACTTCGGTCGCGCCCGTCCGGCGACCGGCTTCTCTACCGATTTGAAAACCCTGGTGACCCTGGGGCGTGCTGAAATCGAGTTACCGTCCGGCGGTATCTGGATGCCTGACAGTACGGATGCGGCACTCTGGCAGATGGTCTGCCAGTTGCGCAGTGAGGGTCAGCGTGTCGTCCAGGCCTTGCCTGGGCAACCTTTGGCCGCCGCCCGTGAAGCGGACTGCGACCGGCAATTGATTCAGCAGAACGGGCTTTGGCAAGTATTGCCGCTGGCTTCTTGA	MATVDRWLLPDGIEEVLPPEAARIEVARRQVLDLFQSWGYEFVVTPHIEYLESLLTGAGQDLDLRTFKVIDPQSGRQMGFRADITPQVARIDAHTLRREGPSRLCYAGSVLHAQPRALSSSRSPIQLGAELYGDASPVSDVEVISLMLAMLQLADVPDVHMDLGHVGIYRGLARAAGLSGEVEQRLFDALQRKAIDEVISLTEGLPSDLSGMLRALVDLCGGREVLGAARERLAGAPAPVLAALDDLLAIAERLSVRFPELPLYFDLGELRGYHYHTGVVFAVFVPGVGQSIAQGGRYDDIGADFGRARPATGFSTDLKTLVTLGRAEIELPSGGIWMPDSTDAALWQMVCQLRSEGQRVVQALPGQPLAAAREADCDRQLIQQNGLWQVLPLAS				NA	NA	NA	NA	NA
D1-36_00539	1293	purA	COG0104	Adenylosuccinate synthetase	ATGGGTAAGAATGTCGTAGTCCTGGGCACCCAGTGGGGTGATGAGGGCAAAGGCAAGATCGTTGATCTGCTGACCGAACATGCTGCCGCCGTAGTGCGCTACCAAGGTGGCCACAACGCCGGTCACACCCTGGTGATCGACGGTGAAAAAACCGTTCTGCACCTGATTCCATCGGGCGTGCTGCGCGAAGGCGTGCAGTGCTTGATCGGCAACGGTGTGGTGGTGGCGCCCGACGCCCTGCTGCGGGAAATCATCAAGCTGGAAGAGAAAGGCGTACCGGTGCGCGAGCGCCTGCGCATCAGCCCGTCCTGCCCGCTGATCCTGTCCTATCACGTTGCGCTGGACCAGGCCCGTGAAAAGGCCCGTGGCGAGCTGAAGATCGGCACCACCGGCCGCGGCATCGGCCCGGCCTATGAAGACAAGGTGGCCCGTCGTGGCCTGCGGATCGGTGACCTCTTCCACCGTGAGCGTTTCGCCGCCAAGCTGGGCGAGTTGCTGGATTACCACAACTTCGTGCTGGTCAATTACTACAAAGAGCCGGCCATCGACTTCCAGAAGACCCTGGACGAGTGCATGGAATACGCCGAGTTGCTCAAGCCGATGATGCTCGACGTCACCGCCGAGCTGCACGAGCTGCGCCGCGCCGGTAAGGACATCATGTTCGAAGGTGCCCAGGGCTCGCTGCTGGACATCGACCACGGCACCTATCCGTACGTCACCAGCTCCAACACCACCGCTGGCGGCATCGCCACCGGTTCGGGTTTTGGCCCGATGTACCTGGACTACATCCTGGGCATCACCAAGGCCTACACCACCCGCGTCGGTTCGGGGCCGTTCCCGACTGAGCTGTTCGACGACGTCGGTGCGTTCCTGGCCAAGCGTGGCCACGAGTTCGGTGCAACCACCGGTCGTGCCCGTCGTTGCGGCTGGTTCGACGCCGTCATCCTGCGTCGCGCCATCGACGTCAACAGCATCTCGGGCCTTTGCCTGACCAAGCTGGACGTGTTGGACGGCCTGGAAACCATCAACATCTGCGTGGGTTACAAGAACCAGGACGGCGCTGTCATCGACGCACCGACCGACGCCGACAGCTACATCGGCCTGGAGCCGGTTTACGAGCAGATGCCAGGCTGGACCGAGTCCACCGTGGGTGCCAAGACCCTGGAAGAGCTGCCAGTGGCCGCGCGCAACTACATCAAGCGCGTCGAAGAGTTGGTCGGCGCGCCGATCGACATTATTTCGACGGGGCCGGACCGCAACGAAACCATCGTTCTGCGTCATCCATTTGGCTGA	MGKNVVVLGTQWGDEGKGKIVDLLTEHAAAVVRYQGGHNAGHTLVIDGEKTVLHLIPSGVLREGVQCLIGNGVVVAPDALLREIIKLEEKGVPVRERLRISPSCPLILSYHVALDQAREKARGELKIGTTGRGIGPAYEDKVARRGLRIGDLFHRERFAAKLGELLDYHNFVLVNYYKEPAIDFQKTLDECMEYAELLKPMMLDVTAELHELRRAGKDIMFEGAQGSLLDIDHGTYPYVTSSNTTAGGIATGSGFGPMYLDYILGITKAYTTRVGSGPFPTELFDDVGAFLAKRGHEFGATTGRARRCGWFDAVILRRAIDVNSISGLCLTKLDVLDGLETINICVGYKNQDGAVIDAPTDADSYIGLEPVYEQMPGWTESTVGAKTLEELPVAARNYIKRVEELVGAPIDIISTGPDRNETIVLRHPFG	PGPT0020140_2660	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0020140-purA-K01939	NA	NA
D1-36_00540	1935			hypothetical protein	GTGTCGGCCGTTCTCTCACTGTTACAAAGCCGTTTGTTGCGGCCTGTTTTCGTTACCCTCGGTATCGCCCTTTTGGTGCAGGTGCTGGTGGCCGTTGCGCTGACCCGAAGCACGGTCACCGCGCTTGAGTCCGACCTGGGCGCGCGCCTGGGCGTTGACAGCCAGAAACTGGCGGGTGAGTTGGAGCAGGCTGGGCGAGAAGTCACCTCCAGCCTGGACAGCTTGTCCACCAGTACCCGCCAGCGATTGACCGCGGGGTTGTCTTCCCGTCTGAAGGAAGAGCAGGCTCAACTGCGTGCGACCCTGGAAAAAGACCTGAGGGATTCCGCCAATGATATGGCGCAGCTTCTGGCCTCGGTCGCGCCCCGGGCAATGTGGGACAGCGACGTGCCCACCCTGTCCGAATTCGCCCGTCGGGCCCAGCGCAATCCCAATGTACTGTTCGTCATCTATGACGACGCCGCAGGGGAACACCTGACTCGCTACCTGAACCGGGAAAATCCGATCAACAAGGCCCTGCTGGAAAAGGGCAAGGGCGATCGGGCGTTGGATAAAGTATTGGATGCGGCGAAGAACGATCCATCGGTTTATTACCTCGAAGCGTCGATCAACCCCAATGGCGTCGAGATCGGCAAGGTGCTGATGGGCGTTTCCACCGCCTCGGTGGAAACCGACCTCAAGGCGCTCGACCAGCGCTTCTCCGCGCTGATTGCCAGCAGCGATCAATTGGTGGGCGACAGCCTCAAGGGCGCGGCTGCCGACAGTGCCGCAGCCATGCGTGGCCGCCTGGGCTCGGCGCAGGCCACCGCCACCGATATGCAGACCAATACCGCCGTCACGGTTCAAGAAGCCGCAGAGACCTTGCGTTGGCGCATCGGCCTGGGCCTGGCGTTGGTAGGGTTGGGCGTGTTGGTGTTGTTGGCCGTGGTGCTGGGGCGTCGGGTGGTCAATCGCTTGAAGTTGTTGATCGCCGCGATGAACGATCTGGCGGCGGGCGAGGGTGACCTGACCAAGCGCGTGCAAATCAACAGCAAGGACGAAATCGGCGACATGGCTTCGGCGGTCAACCGCTTTGTGGATAAATTGCAACCCATCGTGCGCGAGGCGGGCGATGTGGCCCAGCGTACCGGTCAGGAGATCGGCGCGATGACGCTGCGCAACTCGGGCGCCGACGCGGCGGCCGGCATGCAGCGCGATGAAGTGGCCGAGAGCCTGCGTGCGCTGTCGCAGATGGCCGATGAGGCTCAATCGGAAAGCCAGGCGATGCAGGCGGCCTTGCAACAGGTAGCGGAGATCCGTCAGGCCACCGATGAAACCACCCGCACGTCAGCCAAGGTCGGCGGCTTGATCGAAGCGTTGGCCGGGCAGGTCGACACGGGGGCGAAAGTCATCGAACGGCTGGCCCAGCAGAGCGAGCAGATCGAAGTCGTGTTGACGGTGATCCATGGTATTGCCGAGCAAACCAACCTGTTGGCCCTGAACGCGGCCATCGAGGCGGCGCGCGCCGGGGAGACTGGACGCGGCTTCGCGGTGGTGGCGGATGAAGTGCGGGCGCTGGCAAGCAAGACCCAGAGCTCGACGGGCGATATCCAGGCGCACATCGTGGCCTTGCAACAAGGCGCGCGCGAAGCCGTGGCGGCCATCGGCCAAGCGGGACGGCAGGCCAATGAAGGTCTGTCAGTGTTGCGTGACAGCGCGCGGCTGCAGCAGTCGGTGCAGGCGTCGGTCGAGCAGGTTCACGCGGCCATCGGCTTGGCGACTCAAGCAGCCGCGCATCAAGCCCAGGGCGCGCAAGCGGTACGCGGCCGGGTTGAGACCATTCACGCCCAGGCCGAGAAGGCTGCCCAGGCGGTGGTCGAGACCACGGCCAGCGGCAAGGTGCTGGATAAACTGGCGGCGCAGTTGAAGGCCAGCCTGGGTCAGTTCAGGGCTTGA	MSAVLSLLQSRLLRPVFVTLGIALLVQVLVAVALTRSTVTALESDLGARLGVDSQKLAGELEQAGREVTSSLDSLSTSTRQRLTAGLSSRLKEEQAQLRATLEKDLRDSANDMAQLLASVAPRAMWDSDVPTLSEFARRAQRNPNVLFVIYDDAAGEHLTRYLNRENPINKALLEKGKGDRALDKVLDAAKNDPSVYYLEASINPNGVEIGKVLMGVSTASVETDLKALDQRFSALIASSDQLVGDSLKGAAADSAAAMRGRLGSAQATATDMQTNTAVTVQEAAETLRWRIGLGLALVGLGVLVLLAVVLGRRVVNRLKLLIAAMNDLAAGEGDLTKRVQINSKDEIGDMASAVNRFVDKLQPIVREAGDVAQRTGQEIGAMTLRNSGADAAAGMQRDEVAESLRALSQMADEAQSESQAMQAALQQVAEIRQATDETTRTSAKVGGLIEALAGQVDTGAKVIERLAQQSEQIEVVLTVIHGIAEQTNLLALNAAIEAARAGETGRGFAVVADEVRALASKTQSSTGDIQAHIVALQQGAREAVAAIGQAGRQANEGLSVLRDSARLQQSVQASVEQVHAAIGLATQAAAHQAQGAQAVRGRVETIHAQAEKAAQAVVETTASGKVLDKLAAQLKASLGQFRA				NA	NA	NA	NA	NA
D1-36_00541	1566			hypothetical protein	ATGACGCCGTCGCTGAGCGCCTCTCCTCCAGCCGGGGTTTACGTGCCCCGGCGCAAGCGCCCCTCGATCGGGTTGCTGCTGCCCGTGCTGCTGCTCGTTTTGCTGAGCCTGCTGCCACTGCTCTACGTCGTCACCAAGACCTGGCAGGCCGGCTGGACCGAGGCACTGCATCTGTTGTGGCGGCCCTATGTATTCGGCTTGCTGCGCAACACCTTGGCGTTGATGGCCGGCGTCACGCTGGCCTGCGGCATCGTCGGCCTGTCCCTGGCCTGGCTGCTGGAACGCAGCAACCTGCCGGGGCGTCGGATCTGGGGCGTTGTCTTGTGCCTGCCGTTCGCCGTGCCGGCGTTTGTCAGCAGCTTCACCTGGGTATCCCTCAGTGCGCAATTCGAGGGATTGGGCGGGGCAATCCTGGTGATGACCCTGTCCAAATACCCACTGATTTTCCTCCCCGTGGCCGCAACGCTGCGTAATCTCGACCCGTCCCTTGAAGAGTCTGCCCGCACCCTGGGGCAAAATCGCTGGGGCGTGTTCTTTCGCGTCACGCTCCCGCTGCTCTGGCCTTCGCTGCTGGCCGGTTCGTTGCTGATTGCCCTGCACATGCTGGTGGAGTTCGGCGCACTGTCAATCATCGGGCTGCAGACCTTCACCACAGCCATCTATCAACAATTCGAGCTGGAATTCAGTAACGCCAATGCCGCCATGTTGTCGGCGGTATTGCTGACGCTGTGCCTGGTCCTGTTGTGGCTGGAACTGCGGGTGCGCGGCAAGGGGCGCCATGTGCGCACCGGGCAAGGCGCGGCACGCCAGGCCGAACAAGTACGCCTGGGCCGGTGGATGCTTTGCGGTCAACTGTATTGCCTGGCGTTGGCGATCATCGGCAGCGGTATCCCGCTGGGAATGCTGGCGTATTGGCTGGCCGTGGGCACTTCCGCGGCGTTCCCGGCGGGCGAGATCGGCGAAGCGCTGCTGTCGTCCCTGGCGCTTTCGCTGGGCGGCGCCGCCCTCTGCCTCGTATTGGCGGTACCGGTGGGCCTGCTGGTGGTGCGCCACAAGGGGCGGCTGGCGATCTGGGCCGAGCGCCTGCCCTACTTGCTGCACGCGCTGCCGGGCCTGGTCATCGCCCTGAGCCTGGTGTATTTCGCCCTGCACTACGTGCCCGCGCTGTACCAGACTTCCGGCCTGCTACTGATTGCCTATGCGCTGCTGTTCCTGCCGCTGGCCCAAGCACCGGTGCGTACGGCGCTGAACAAGGCCGCCCCACAACTGGAAGAAGCGGCGCGGACGTTGGGGGCTTCGTCGCTCGGTGCGTTTTGTCGGGTGACCCTGCCGATCATCTTCCCGGCCCTGGGCGCGGCGTTCGCCCTGGTGTTCCTGGATGCAATGAAGGAATTGACCGCGACGCTGTTGCTGAGCCCGACCGGACTCAATACGTTGGCGACGGCGGTCTGGGCACATACGTCGAATGTGGAATTCGCAGCGGCGGCGCCCTATGCGGCGCTGTTGATTCTGGTGTCGGGGTTGCCAGTCTATTTGCTGACGACGCGGATGTATCTGAGTCGCTGA	MTPSLSASPPAGVYVPRRKRPSIGLLLPVLLLVLLSLLPLLYVVTKTWQAGWTEALHLLWRPYVFGLLRNTLALMAGVTLACGIVGLSLAWLLERSNLPGRRIWGVVLCLPFAVPAFVSSFTWVSLSAQFEGLGGAILVMTLSKYPLIFLPVAATLRNLDPSLEESARTLGQNRWGVFFRVTLPLLWPSLLAGSLLIALHMLVEFGALSIIGLQTFTTAIYQQFELEFSNANAAMLSAVLLTLCLVLLWLELRVRGKGRHVRTGQGAARQAEQVRLGRWMLCGQLYCLALAIIGSGIPLGMLAYWLAVGTSAAFPAGEIGEALLSSLALSLGGAALCLVLAVPVGLLVVRHKGRLAIWAERLPYLLHALPGLVIALSLVYFALHYVPALYQTSGLLLIAYALLFLPLAQAPVRTALNKAAPQLEEAARTLGASSLGAFCRVTLPIIFPALGAAFALVFLDAMKELTATLLLSPTGLNTLATAVWAHTSNVEFAAAAPYAALLILVSGLPVYLLTTRMYLSR	PGPT0003730_4310	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003730-afuB|fbpB-K02011	NA	NA
D1-36_00542	1011	fbpA	COG1840	Iron-utilization periplasmic protein	ATGATGTTTCGAACCACCCTGCGCCGCGCCCTGACCTGCACCCTGCTCGGCCTGACCCTCGCAACACCCCTCACCCAAGCCGCCGACAAAATTGAACTGACACTCTATAACGGCCAACACAAAGAAGTCGGCGATGAACTGGCCAAGGCCTTCGAAGCCAAGACCGGTATCCACGTCAACGTTCGCAAGGGCAGCAGCAACCAGCTCGCCAGCCAAGTCGTCGAGGAAGGCGACCGCTCCCCGGCCGATGTGATCTATACCGAAGAATCGCCGCCGCTGAACAAACTTGGTGAACAAGGTCTGCTGGCGAAGATCGACGATGCGACCCTCAACGTGCTTCCCAAGGATTATGTCGCCAGCAACGGCTCCTGGATGGGCGTGACCGCTCGCGTTCGCGTGGTTGCCTATAACCCCAAACTGATCGATGAAAAGGACCTGCCGAAAACCGTCCTCGATTTCGCCCAGCCACAATGGCAAGGCAAGGTCGGCTTCGTACCGACCAGCGGCGCATTCCAGGAACAAGCCGTTGCGATCATCAAATTGCACGGCAAGGAAGCCGCCGAAGAATGGCTCACCGGGCTACGTGCGTTCGGCAAGGTCTACAGCAACAACATGGTCGCCCTCAAAGCCGTGGAGAACGGTGAAGTGGCGACGGTCCTGGTGAACAATTACTACTGGTTCGCCCTGCAGCGGGAGAAGGGACAGCTGGATTCCAAGCTGCATTACTTCACTGGCGGCGATGCCGGTGGCCTGGTCACCGTCTCCAGCGCCGCGGCACTGAAATCCAGCAAACACCCCAAGGAGGCCCAACAGTTGCTTGCCTATATGGCCAGCGAGGAGGGGCAGCGGGTGATTACCCAGACGTCCGCCGAATATCCTTTGCACAAGGGCATGGCGTCGGATCGCGGCCTCAAGCCGTTCAATGAACTGGAGCCGCCAAAAGTGACGCCCGCCGACCTGGGTAACGCCGAAGAAGCATTGGAGCTGGAACGTGAAGTCGGCTTGAACTGA	MMFRTTLRRALTCTLLGLTLATPLTQAADKIELTLYNGQHKEVGDELAKAFEAKTGIHVNVRKGSSNQLASQVVEEGDRSPADVIYTEESPPLNKLGEQGLLAKIDDATLNVLPKDYVASNGSWMGVTARVRVVAYNPKLIDEKDLPKTVLDFAQPQWQGKVGFVPTSGAFQEQAVAIIKLHGKEAAEEWLTGLRAFGKVYSNNMVALKAVENGEVATVLVNNYYWFALQREKGQLDSKLHYFTGGDAGGLVTVSSAAALKSSKHPKEAQQLLAYMASEEGQRVITQTSAEYPLHKGMASDRGLKPFNELEPPKVTPADLGNAEEALELEREVGLN	PGPT0003725_4116	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003725-afuA|fbpA-K02012	NA	NA
D1-36_00545	2619	rnr	COG0557	Ribonuclease R	ATGGCCGATTGGCAGTCCCTCGATCCCGAGGCCGCTCGTGAAGCGGAAAAATATGAAAACCCTATTCCTAGCCGCGAACTGATCCTGGCGCATCTCGCCGATCGGGGTTCGCCTGCTAGCCGTGAGCAGCTGGTCGAAGAGTTCGGCCTGACCACCGAGGACCAGCTCGAAGCCCTGCGCCGCCGTCTGCGTGCCATGGAGCGCGATGCTCAACTGATCTACACCCGGCGTGGCACTTATGCTCCGGTCGACAAGCTCGACCTGATCCTGGGCCGTATCGCCGGTCACCGCGACGGTTTCGGTTTCCTGATCCCCGACGATGGCAGCGACGATCTGTTCATGAGCCCGGCGCAGATGCGCCTGGTGTTCGATGGCGACCGTGCGCTGGCCCGGGTGTCCGGCCTGGACCGGCGCGGGCGCCGTGAAGGCGTGATCGTCGAAGTGGTGTCCCGTGCGCACGAAACCATCGTGGGACGTTATTTCGAGGAAGGTGGCATCGGCTTCGTCGTCGCCGACAACCCGAAGATCCAGCAGGAAGTGCTGGTCACCCCAGGTCGCAACGCCAACGCGCAGATCGGGCAGTTCGTCGAGGTGAAGATCACTCACTGGCCAACCCCGCGCTTTCAGCCTCAGGGCGATGTGGTGGAAGTGGTCGGCAACTACATGGCGCCGGGCATGGAAATCGACGTTGCCCTGCGCACCTACGACATTCCTCACGTCTGGCCTGAAGCGGTCCTGAAAGAGGCCGCCAAGCTCAAGCCGGAAGTCGAAGAGAAGGACAAGGAAAAGCGCATCGACCTGCGTCACCTGCCGTTCGTCACCATCGACGGTGAAGACGCCCGGGACTTCGACGATGCGGTCTACTGCGAAGCCCGGCCCGGCAAGTTGCGCCTGTTCTCCGGCGGCTGGAAGTTGTACGTGGCCATTGCCGACGTTTCCAGCTACGTGAAGCTCGGCTCGGCGCTGGACGCTGAAGCCCAGGTGCGCGGCAACTCGGTGTATTTCCCCGAGCGCGTCGTGCCGATGTTGCCAGAGCAACTGTCCAACGGCTTGTGCTCGCTCAACCCCCATGTCGATCGCCTGGCCATGGTTTGCGAGATGACCATCTCCAAAGCCGGCGAGATGACTGACTACTGCTTTTATGAAGCCGTGATCCATTCCCACGCGCGCCTGACCTACAACAAGGTCAGCGCGATGCTGGAAACGCCGAAGCTGGCCGAGTCGCGCAAGCTTCGTGGTGAATACACGGATGTGCTGCCGCACCTCAAGCAGCTCTATTCGCTGTACAAGGTATTGCTGGCGGCGCGTCACGTACGGGGCGCGATCGATTTCGAAACCCAGGAAACCCGGATTATCTTCGGTACCGAGCGCAAGATCGCCGAAATCCGGCCGACCGTGCGCAACGATGCCCACAAGCTGATCGAGGAATGCATGCTGGCGGCCAACGTCGCTACCGCCGAGTTCCTGAAGAAGCATGAAATCCCTGCCTTGTACCGGGTCCACGACGGCCCGCCGCCGGAGCGCCTGGAAAAATTGCGGGCCTTCCTCGGTGAGCTTGGCTTGTCCCTGCACAAAGGCAAGGAAGGTCCGACGCCGAAGGATTACCAAGCCCTGCTGGCGAGTATCAAGGATCGTCCGGACTTCCACCTGATCCAGACTGTGATGCTGCGTTCTTTGAGCCAAGCGGTGTACAGCGCCGATAACCAGGGCCACTTCGGCCTCAACTACGAGGCGTACACCCACTTCACATCGCCGATCCGTCGCTATCCCGATCTGCTCACGCACCGGGCCATCCGCAGCGTGATCCATTCGAAGATGAACACCCCGCACGTCAAGCGTGCCGGTGCGATGACCATTCCGAAGGCGCGTATCTACCCGTACGACGAAGCGGCTCTGGAGCAACTCGGCGAGCAGTGCTCGATGAGTGAGCGGCGCGCCGACGAAGCGACTCGCGACGTGGTGAACTGGCTCAAGTGCGAGTACATGAAGGATCGCGTTGGCGAGTCGTTCCCGGGCGTGATCACCGCCGTGACCGGGTTTGGCCTGTTCGTCGAGTTGACCGATATCTACGTCGAGGGCCTGGTGCATGTCACCGCGCTGCCGGGTGACTACTACCACTTCGACCCTGTGCATCACCGCCTGGCCGGCGAACGCACCGGCCGCAGCTTCCGTCTTGGCGATACCGTCGAAGTACGGGTGATGCGCGTCGACCTGGATGAACGCAAGATCGACTTCGAGATGGCGGAAAAAACCATCAGCGCACCGATCGGCCGCAAGAAGCGTGGCGCCGAAACCACAGCGCCTGCCGCCAAGACCGCCGCCGAGCCCGCACCGTCCAAATCCGGACGTCGCGGTCCGGCCAAGGAAAAGGCCGGCGAAGCCTATCGTCCGAGCGATGCGGCGGCGAAGAACGCCGAATTGCGTAAGAGTCGCGAAATGAAACAGGCCTTGCTGGCCGAAGCCAAGAGCGGCGGTAAAGCGGCGTCCGGGGGCAAGGCCGGCCGGTCGGCTCCGGAGAAGGCGAGCGGCAAGCCGAGCAAACACCGTAAAGGCCCGCCGAAAGCAGGCTCGGCCCCTGCCAAGAGTGGCGGGGCGCGTAAACCCAAGGCCAAATCATGA	MADWQSLDPEAAREAEKYENPIPSRELILAHLADRGSPASREQLVEEFGLTTEDQLEALRRRLRAMERDAQLIYTRRGTYAPVDKLDLILGRIAGHRDGFGFLIPDDGSDDLFMSPAQMRLVFDGDRALARVSGLDRRGRREGVIVEVVSRAHETIVGRYFEEGGIGFVVADNPKIQQEVLVTPGRNANAQIGQFVEVKITHWPTPRFQPQGDVVEVVGNYMAPGMEIDVALRTYDIPHVWPEAVLKEAAKLKPEVEEKDKEKRIDLRHLPFVTIDGEDARDFDDAVYCEARPGKLRLFSGGWKLYVAIADVSSYVKLGSALDAEAQVRGNSVYFPERVVPMLPEQLSNGLCSLNPHVDRLAMVCEMTISKAGEMTDYCFYEAVIHSHARLTYNKVSAMLETPKLAESRKLRGEYTDVLPHLKQLYSLYKVLLAARHVRGAIDFETQETRIIFGTERKIAEIRPTVRNDAHKLIEECMLAANVATAEFLKKHEIPALYRVHDGPPPERLEKLRAFLGELGLSLHKGKEGPTPKDYQALLASIKDRPDFHLIQTVMLRSLSQAVYSADNQGHFGLNYEAYTHFTSPIRRYPDLLTHRAIRSVIHSKMNTPHVKRAGAMTIPKARIYPYDEAALEQLGEQCSMSERRADEATRDVVNWLKCEYMKDRVGESFPGVITAVTGFGLFVELTDIYVEGLVHVTALPGDYYHFDPVHHRLAGERTGRSFRLGDTVEVRVMRVDLDERKIDFEMAEKTISAPIGRKKRGAETTAPAAKTAAEPAPSKSGRRGPAKEKAGEAYRPSDAAAKNAELRKSREMKQALLAEAKSGGKAASGGKAGRSAPEKASGKPSKHRKGPPKAGSAPAKSGGARKPKAKS				NA	NA	NA	NA	NA
D1-36_00546	762	rlmB	COG0566	23S rRNA (guanosine-2'-O-)-methyltransferase RlmB	ATGAGTCAGTTGGAAAAAATCTACGGCGTGCATGCCGTGGAGGCGTTGTTGCGTCACCACCCCAAGCGGGTCAAGCAGATCTGGTTGGCGGAAGGTCGTAGCGACCCGCGGGTCCAGACCTTGGTCGAGCTGGCCGGCGAAAACCGCGTTGCGGTCGGTCAGGCCGAGCGGCGCGAGATGGACGCCTGGGTCGAAGGGGTGCATCAAGGCGTCGTGGCCGAGGTCAGCCCGAGTCAGGTATGGGGCGAGGCGATGCTCGACGAGCTGCTCGATCGCACCGAAGGCGCGCCGTTGTTGCTGGTACTGGATGGCGTGACCGACCCGCACAACCTCGGCGCCTGCCTGCGTTCGGCGGACGCCGCCGGTGCGTTGGCGGTGATCGTGCCCAAGGACAAGTCCGCGACATTGACGCCGGTCGTGCGCAAGGTCGCTTGTGGCGCTGCGGAAGTTATCCCGTTGGTGGCAGTGACCAACCTGGCGCGCACCCTGGAAAAGCTCCAGCAGCGCGGCTTGTGGGTTGTCGGCACGGCGGGCGAGGCCGAGGTCAGTATTTATGACCAGGACTTGACCGGCCCTACCATCCTGATCATGGGCGCCGAAGGAAAGGGCATGCGCCGTCTGACCCGCGAGCATTGCGATTACCTGGTCAAGCTGCCGATGGCCGGCAGCGTCAGCAGCCTCAATGTCTCGGTCGCCACCGGTGTGTGCCTGTTCGAGGCCCAGCGCCAGCGTGGCGCCAAGTCGGCCGCCAAAAAGCCCTGA	MSQLEKIYGVHAVEALLRHHPKRVKQIWLAEGRSDPRVQTLVELAGENRVAVGQAERREMDAWVEGVHQGVVAEVSPSQVWGEAMLDELLDRTEGAPLLLVLDGVTDPHNLGACLRSADAAGALAVIVPKDKSATLTPVVRKVACGAAEVIPLVAVTNLARTLEKLQQRGLWVVGTAGEAEVSIYDQDLTGPTILIMGAEGKGMRRLTREHCDYLVKLPMAGSVSSLNVSVATGVCLFEAQRQRGAKSAAKKP				NA	NA	NA	NA	NA
D1-36_00547	429	rpsF	COG0360	30S ribosomal protein S6	ATGCGTCATTACGAAATCATCTTTTTGGTCCACCCGGATCAAAGCGAGCAAGTCGGCGGCATGGTTGAGCGTTACACCAAGCTGATCGAAGAAGACGGCGGCAAAATCCACCGTCTGGAAGATTGGGGCCGTCGTCAACTGGCCTACGCAATCAACAATGTTCACAAGGCTCACTACGTGATGCTGAACGTTGAGTGCACCGGCAAGGCCCTGGCCGAGCTGGAAGACAACTTCCGCTACAACGATGCAGTGATCCGTAACCTGGTCATCCGTCGCGAAGAAGCCATCACTGGCCAATCCGAGATGCTCAAGGCTGAAGAAAACCGCAGTGAGCGCCGTGAGCGTCGCGACCGTCCTGAGCATTCTGACAGCGCCGAAGGCGATGACAGCGATAGCGACAGCGACAACAGCGATAACGCTGACGAGTAA	MRHYEIIFLVHPDQSEQVGGMVERYTKLIEEDGGKIHRLEDWGRRQLAYAINNVHKAHYVMLNVECTGKALAELEDNFRYNDAVIRNLVIRREEAITGQSEMLKAEENRSERRERRDRPEHSDSAEGDDSDSDSDNSDNADE				NA	NA	NA	NA	NA
D1-36_00548	231	rpsR	COG0238	30S ribosomal protein S18	ATGGCACGTTTCTTCCGTCGTCGTAAATTCTGCCGCTTCACCGCTGAAGACGTGAAAGAGATCGATTACAAAGATCTCAACACTCTGAAAGCCTACGTATCCGAGACCGGCAAAATCGTTCCAAGCCGTATCACCGGTACCAAAGCTCGTTATCAGCGTCAGCTGGCCACCGCTATCAAGCGCGCCCGCTTCCTGGCCCTGCTGGCCTACACCGACAGCCACGGCCGCTGA	MARFFRRRKFCRFTAEDVKEIDYKDLNTLKAYVSETGKIVPSRITGTKARYQRQLATAIKRARFLALLAYTDSHGR				NA	NA	NA	NA	NA
D1-36_00549	894			hypothetical protein	ATGCGCGCCTTAGCTGACTTCATCATGCGGGGACGTATGCAGGCCACTCTTGTAGTGGCTGGATGTGCGGCATTGCCGTTGTTGTACTGGTTGGGTGCTGCCGCCGGGAGTCTTGTACTCCTGCGGCGCGGATTGAGGGACGCCTTGGGCGTTCTTGCTCTGGGACTTCTGCCAGCCTTGCTCTGGTGGATGTATTCCGCGGACCCGCGTGCAGTCATGGTGCTGCTGGGGTCTTCGGCGCTGGCGTTGGTGTTGCGCGCCAGCGAATCCTGGAACCGCGTGCTGCTGGTCAGCATAGCGATAGGTGTGGTGTTTTCAGTGGTGCTCGGGGTGGCTTTTGCGCCCCAGATCGAGATGCTGTCGCAGGCTTTGATAAAAATCCTGCCCGAGGCGCTCGGTGATCTCTACCAACGGATGTCGGTAGAAGAGCAGGCGCGTTTCGCGTCCCTGATCGCCCCCGTCCTGACCGGACTGATTGCGGCCTTGTTGCAGATCGTCAGTGTGCTGAGCCTGGTTATCGGGCGCTACTGGCAGGCGTTGTTGTACAACCCGGGTGGTTTTGGTCGCGAGTTTCGCGCCATCCGTTTCCCGCTTGGGCTGGCGATGTTGCTGTTGGCGGGCATGCTTCTGGGGCCGAACTTCGGTCCGCAGATGGCAATGCTCACGCCGTTGTGCAGTGTACCGCTGGTCTTTGCCGCCCTGTCCCTGATTCACGGGCTGGTGGCGCAAAAGCGACTGGCCAGATTCTGGCTGGTGGGGTTGTACGTCACGTTGCTGCTGTTCATGCAGCTGATCTATCCGTTGCTGGTGGTCCTGGCCATCGTCGACAGCCTGATTGATTTTCGCGGTCGTATGGCGCCGAAAGACGCCGACAACGCGAACGGTGAAGGTTAA	MRALADFIMRGRMQATLVVAGCAALPLLYWLGAAAGSLVLLRRGLRDALGVLALGLLPALLWWMYSADPRAVMVLLGSSALALVLRASESWNRVLLVSIAIGVVFSVVLGVAFAPQIEMLSQALIKILPEALGDLYQRMSVEEQARFASLIAPVLTGLIAALLQIVSVLSLVIGRYWQALLYNPGGFGREFRAIRFPLGLAMLLLAGMLLGPNFGPQMAMLTPLCSVPLVFAALSLIHGLVAQKRLARFWLVGLYVTLLLFMQLIYPLLVVLAIVDSLIDFRGRMAPKDADNANGEG				NA	NA	NA	NA	NA
D1-36_00550	447	rplI	COG0359	50S ribosomal protein L9	ATGCAACTGATCCTTCTGGAAAAAATCGCCAACCTGGGCAACCTGGGCGACAAAGTAAACGTTAAGGCCGGCTACGGTCGTAACTACCTGCTGCCTTTCGGCAAGGCCACCGCTGCGACCGCTGCCAACCTGGCTGCGTTCGAAGAGCGTCGCGCCGAGCTGGAAAAAGCCGCCGCAGACCGTAAGGCATCGGCTGAAAGCCGTGCTGCCCAACTGGCCGAGCTGGAAGTGACCATCACTGCCACCGCTGGCGACGAAGGCAAGCTGTTCGGTTCGATCGGTACTCACGACATCGCTGACGCACTGACCGCCTCCGGCGTTGAAGTTGCGAAAAGCGAAGTTCGTCTGCCGAACGGCACCATCCGCAACGTAGGCGAATTCGACGTAGCCGTGCACCTGCACGCCGAAGTTGAAGCCACCGTACGCGTTGTCGTGGTAGCAGCCTAA	MQLILLEKIANLGNLGDKVNVKAGYGRNYLLPFGKATAATAANLAAFEERRAELEKAAADRKASAESRAAQLAELEVTITATAGDEGKLFGSIGTHDIADALTASGVEVAKSEVRLPNGTIRNVGEFDVAVHLHAEVEATVRVVVVAA				NA	NA	NA	NA	NA
D1-36_00551	1398	dnaB_1	COG0305	Replicative DNA helicase	ATGAACGAAATCACCGCCCCCGAGCAATATGATCTGCAAACCGCTGCCCTGAAGGTGCCTCCGCATTCCATCGAGGCCGAACAGGCCGTGCTCGGTGGCCTGATGCTGGACAACAACGCCTGGGAGCGTGTGCTCGATCAAGTTTCCGACGGCGATTTCTACCGGCATGACCACCGCCTGATTTTCCGCGCGATCGCCAGGCTGGCCGACCAGAACATGCCGATCGACGTCGTGACCCTGGCCGAGCAATTGGACAAGGAAGGGCAGACGTCCCAAGTCGGCGGCCTCGGTTACCTGGGCGAACTGGCGAAAAACACACCGTCGGTCGCCAACATCAAGGCGTACGCACAGATCGTGCGCGAGCGGGCAACCTTGCGTCAGCTGATCGGCATCAGCACCGAGATCGCCGACAGCGCGTTCAACCCGGAAGGACGCACCGCCGCCGAGATCCTCGACGAAGCCGAGCGGCAGATCTTCCAGATCGCCGAGGCACGACCGAAAACCGGCGGCCCGGTGAGCGTCAACGACCTGTTGACCAAGGCCATCGACCGCATCGACACCTTGTTCAACACCGACAACGCCATTACCGGTTTGTCCACTGGCTACACCGACCTCGACGAGAAGACCAGCGGCCTGCAGCCGTCCGACCTGATCATCGTCGCCGGCCGTCCGTCCATGGGTAAGACGACCTTTGCGATGAACCTGGTGGAAAACGCCGTGCTGCGCAGCGACAAAGCGGTGCTGGTGTACTCCCTCGAGATGCCAGGCGAATCGCTGATCATGCGTATGCTCTCGTCCCTGGGGCGTATCGACCAGACCAAGGTCCGTTCCGGCCAACTGGAAGACGACGATTGGCCGCGCCTGACCTCGGCGGTCAACCTGCTCAACGACCGCAAGCTGTTCATCGACGACACGGCGGGGATCAGCCCATCGGAAATGCGCGCCCGGACCCGCCGCCTGGTGCGTGAGCACGGCGACATCGCGCTGATCATGATCGACTACCTGCAATTGATGCAGATCCCCGGGTCCAGCGGTGACAACCGGACCAACGAGATTTCCGAGATCTCCCGTTCCCTCAAGGCCCTGGCCAAGGAATTCAACTGCCCGGTGGTGGCCCTGTCCCAGTTGAACCGCTCGCTGGAACAGCGTCCGAACAAACGCCCGGTGAACTCCGACTTGCGGGAATCCGGAGCGATCGAGCAGGACGCCGACGTGATCATGTTCGTCTACCGTGACGAGGTGTATCACCCCGAGACCGAGCACAAGGGTATCGCCGAAATCATCATCGGCAAGCAGCGGAACGGCCCGATCGGCTTTGTTCGCCTGGCCTTCATCGGCAAATACACACGCTTCGAGAACCTGGCGCCGGGTAGCTACAATTTTGATGATGACGAATAA	MNEITAPEQYDLQTAALKVPPHSIEAEQAVLGGLMLDNNAWERVLDQVSDGDFYRHDHRLIFRAIARLADQNMPIDVVTLAEQLDKEGQTSQVGGLGYLGELAKNTPSVANIKAYAQIVRERATLRQLIGISTEIADSAFNPEGRTAAEILDEAERQIFQIAEARPKTGGPVSVNDLLTKAIDRIDTLFNTDNAITGLSTGYTDLDEKTSGLQPSDLIIVAGRPSMGKTTFAMNLVENAVLRSDKAVLVYSLEMPGESLIMRMLSSLGRIDQTKVRSGQLEDDDWPRLTSAVNLLNDRKLFIDDTAGISPSEMRARTRRLVREHGDIALIMIDYLQLMQIPGSSGDNRTNEISEISRSLKALAKEFNCPVVALSQLNRSLEQRPNKRPVNSDLRESGAIEQDADVIMFVYRDEVYHPETEHKGIAEIIIGKQRNGPIGFVRLAFIGKYTRFENLAPGSYNFDDDE				NA	NA	NA	NA	NA
D1-36_00552	2301			hypothetical protein	ATGCAAGCAGCCAAGCCGTTATTTGACTATCCCAAGTACTGGGCCGAATGTTTCGGCCCGGCGCCGTTCCTGCCCATGAGCAGGGAGGAGATGGATCAGCTCGGCTGGGATTCGTGCGACATCATCATCGTGACCGGTGATGCGTACGTCGATCACCCGTCGTTCGGCATGGCGATCATTGGTCGTTTGCTGGAAGCCCAGGGCTTTCGTGTCGGTATCATTGCGCAGCCGAACTGGCAGTCCAAAGACGATTTCATGAAGCTCGGCGAGCCTAATCTGTTTTTCGGTGTCGCGGCCGGCAACATGGACTCGATGATCAACCGCTACACCGCCGACAAGAAAATCCGTTCCGATGACGCCTACACCCCAGGTGGCCTGGCGGGCAAGCGGCCGGACCGTGCGAGTCTGGTCTATAGCCAGCGCTGCAAGGAAGCCTATAAGCACGTACCCATTGTGCTGGGCGGTATCGAAGCGTCCCTGCGTCGCATTGCTCACTACGATTATTGGCAGGACCGGGTGCGCAACTCGATCCTGATCGACGCCTGCGCCGACATCCTGCTCTACGGCAACGCCGAGCGAGCGATCGTCGAAGTCGCCCAGCGCCTGTCCTACGGCCACAAGATCGAAGACATCACCGATGTGCGCGGCACCGCCTTCATCCGCCGTGACACGCCGCAAGGCTGGTATGAAGTCGATTCCACGCGCATTGACCGTCCGGGCAAGATCGACAAGATCATCAACCCGTACGTGAATACCCAGGACACCGCTGCTTGCGCCATCGAGCAAGAGAAGGGGCCGGTTGAGGACCCGAGCGAAGCCAAGGTCGTGCAGATCCTGGCGAGCCCGAAGATGACCCGCGACAAGACCGTGATCCGCCTGCCGTCGGTGGAAAAGGTCCGTGGCGACGCGGTGCTCTACGCCCACGCCAACCGTGTGTTGCACCTGGAAACCAACCCGGGGAACGCCCGTGCGCTGGTGCAGAAGCACGGCGAAGTCGACGTCTGGTTCAACCCGCCGCCCATTCCGATGACCACCGAAGAAATGGATTACGTGTTTGGCATGCCTTACGCACGTGTTCCTCATCCAGCGTACGGCAAGGAGAAAATCCCGGCCTACGAGATGATCCGTTTCTCGGTGAACATCATGCGCGGCTGCTTTGGTGGCTGCACCTTCTGCTCGATCACCGAGCACGAAGGGCGGATTATCCAGAACCGTTCCGAAGAGTCGATCATTCGCGAGATCGAAGAGATCCGCGACAAGGTTCCAGGCTTCACCGGTGTCATCTCCGACCTCGGCGGCCCGACCGCGAACATGTACCGCATCGCCTGCAAGAGCCCGGAAATCGAATCCGCGTGCCGCAAGCCGTCCTGCGTGTTCCCCGGCATCTGCCCGAACCTGAACACCGACCATTCTTCGCTGATCCAGCTGTACCGCAGCGCCCGGGCCTTGCCTGGGGTGAAGAAGATCCTGATTGCCTCCGGCCTGCGTTACGACCTGGCGGTCGAGTCGCCGGAATACGTCAAGGAGCTGGTGACGCACCACGTCGGCGGTTACCTGAAGATCGCCCCGGAGCATACCGAGGAAGGCCCGCTCAACCAGATGATGAAGCCGGGCATCGGCAGCTATGACAAGTTCAAGCGGATGTTCGAGAAGTACACCAAGGAAGCGGGGAAAGAGCAGTACCTGATTCCGTACTTCATTGCCGCCCACCCAGGCACCACCGACGAAGACATGATGAACCTGGCGCTGTGGCTCAAGGGAAACGGCTTCCGCGCCGACCAGGTGCAGGCGTTCTATCCGTCGCCGATGGCCACGGCCACCGCCATGTATCACTCGGGCAAGAACCCGTTGCGCAAGGTGACCTACAAGAGCGACGCGGTGACCATCGTCAAGAGCGAGGACCAGCGCCGTCTGCACAAGGCCTTCCTGCGCTATCACGACCCGAAAGGCTGGCCGATGCTGCGCGAGGCGCTGACCCGCATGGGTCGCGCCGACCTGATCGGGCCGGGCAAGCATCAGTTGATCCCGCTGCATCAGCCTTCGACCGACAGCTACCAGAGCGCTCGTCGCAAGAACTCGACGCCGGCTGGCAGCCACAAAGTGGGCAAGGAAACCACGAAGATCCTGACCCAGCACACCGGCCTGCCTCCGCGCGCCAGTGATGGCGGCAATGCCTGGGACAAGCGCGAGCAGGCCAAGGCCGCCGCGTTCGCCCGCAACCAGAAGGCCGCCAAGGAGCGCAAGGACGCGGCCAAGGGCAAGGGGCCCAAGCCGGCGCGCAAGCCTGTCGTGCCGCGCTGA	MQAAKPLFDYPKYWAECFGPAPFLPMSREEMDQLGWDSCDIIIVTGDAYVDHPSFGMAIIGRLLEAQGFRVGIIAQPNWQSKDDFMKLGEPNLFFGVAAGNMDSMINRYTADKKIRSDDAYTPGGLAGKRPDRASLVYSQRCKEAYKHVPIVLGGIEASLRRIAHYDYWQDRVRNSILIDACADILLYGNAERAIVEVAQRLSYGHKIEDITDVRGTAFIRRDTPQGWYEVDSTRIDRPGKIDKIINPYVNTQDTAACAIEQEKGPVEDPSEAKVVQILASPKMTRDKTVIRLPSVEKVRGDAVLYAHANRVLHLETNPGNARALVQKHGEVDVWFNPPPIPMTTEEMDYVFGMPYARVPHPAYGKEKIPAYEMIRFSVNIMRGCFGGCTFCSITEHEGRIIQNRSEESIIREIEEIRDKVPGFTGVISDLGGPTANMYRIACKSPEIESACRKPSCVFPGICPNLNTDHSSLIQLYRSARALPGVKKILIASGLRYDLAVESPEYVKELVTHHVGGYLKIAPEHTEEGPLNQMMKPGIGSYDKFKRMFEKYTKEAGKEQYLIPYFIAAHPGTTDEDMMNLALWLKGNGFRADQVQAFYPSPMATATAMYHSGKNPLRKVTYKSDAVTIVKSEDQRRLHKAFLRYHDPKGWPMLREALTRMGRADLIGPGKHQLIPLHQPSTDSYQSARRKNSTPAGSHKVGKETTKILTQHTGLPPRASDGGNAWDKREQAKAAAFARNQKAAKERKDAAKGKGPKPARKPVVPR				NA	NA	NA	NA	NA
D1-36_00553	927			hypothetical protein	ATGAGCAGCGCTACAACGGGCATCGGCATGGACCTGAACTTCTCCCAGTTCATGGCCCGCAAACGCATTGAAAGCCAAGTCAACCTGCCACGTCTGTTCGCCGCCATCGATGCCGACCCCAACATTGCCGGGGCGGGCGTGGTGTACATCGATTCCGAGTACAACGTAGTGACGCTGCGCGAATTCAAGCCGATTTGCAGCATCGCGCCCAAGCGAATCATCTTGCGCGAGGCCAAGAAGTACATCGCCCCGCAGCAATTCATCGATCAGGTAAAAAGCAGCCCGCGTGAGTCAAAGCTCGGGACTGAGTCGATGAATGCCGGTTTTTCCTGTGTCGCCGCTGTCATCGGTTGGGTGGTGGTGTTCAGTGGGAGCGTCGCTGTGCCGTTTACGGCGGGGGCCAGTGCCTTTGTCGTTGCGCTGGGCGCCGCTGCCGCGACGGCCAGTACCGCGCAATGCGTCATAGGCGGGATGCGGGTGGCGAATGAGTTGACCAATCCTACTGGCAACGATGAGATGAACGACGCCGATTGGTACAACATCGTAAGCCCCATTCTTGACGGTGTTTCCCTTGTCGGCGTCGGTGGCTCAGCTCTCACGACTGTTCGGCTGCTAAAGGCCAGCAAAGCAGCGGGCACCGGGAAGAGCTGGTATCAGTTGCTCAAAGGCCTGAGTCGTCAGGAGCGCAGCAAACTGACAAAGGAATTGTTGACCCTGAAAGATCCGAGTCTTACCGCCAAGCTGCTTAAACTGCAGCAACGAGCGGGCGCCTTGCCCAAGCGTTATTCCTCCGCTGAAATCAGGCATGCCACGCTGACTCAGATAAAGGATTCTCTCGGCGGCGCTTTGGGGATCATCGGCAGTTATACCGGTGATGGCGCCGTGAAGACTGTTGCCGTCGGGCTGTATGAGGAGTTCACGGAATGA	MSSATTGIGMDLNFSQFMARKRIESQVNLPRLFAAIDADPNIAGAGVVYIDSEYNVVTLREFKPICSIAPKRIILREAKKYIAPQQFIDQVKSSPRESKLGTESMNAGFSCVAAVIGWVVVFSGSVAVPFTAGASAFVVALGAAAATASTAQCVIGGMRVANELTNPTGNDEMNDADWYNIVSPILDGVSLVGVGGSALTTVRLLKASKAAGTGKSWYQLLKGLSRQERSKLTKELLTLKDPSLTAKLLKLQQRAGALPKRYSSAEIRHATLTQIKDSLGGALGIIGSYTGDGAVKTVAVGLYEEFTE				NA	NA	NA	NA	NA
D1-36_00554	462			hypothetical protein	ATGATCGGCGGCGGATCACTGAGGCAGTTCCTCGCCCGTTATTTTCCGGTGTTCATGGGGGCGATCTTTCTGGGCTGCTTTTCCGGGTCTACGCTGCTCGTTTTGTGCGCAGGTACTTATTGGCGTGCCTTGGAGCCTTCCGTCAGGAGCAACTACGTTGGTCTCGGCACTTTGGCTCTAGTGAGTGTCCTGGTCTTGGGCAATCTCATGATCGCACGCGGGCGCGCCTGGGCGATCTGGTGCGTGGCGGGTTATTTCCTCGCTTGCCTGGCGGCGGTGCTGCCGACGTTCGCTTATGGACCGCACCAAGGTGTTTACGTGTTTGCAGTGCTGTTGCCGCTACTGGGGCTATTGCTGCTCAATAGCAAACGCCACCGGGAAATGCGCAGCGAACTCATCGAAATCCGTCACCAACGCGAACGCATCATCCAGTCCGCCAAGGCCTCGCGCCCGCGCCGCTGA	MIGGGSLRQFLARYFPVFMGAIFLGCFSGSTLLVLCAGTYWRALEPSVRSNYVGLGTLALVSVLVLGNLMIARGRAWAIWCVAGYFLACLAAVLPTFAYGPHQGVYVFAVLLPLLGLLLLNSKRHREMRSELIEIRHQRERIIQSAKASRPRR				NA	NA	NA	NA	NA
D1-36_00555	3294			hypothetical protein	GTGTCGATCCATGTCGCTTTGCACCATGTCACACACTATCGCTACGAGCGCGCTGTCGAACTCGGTCCACAGATCGTTCGCCTGCGTCCGGCGGCCCATAGCCGCACGCGCATTCTTTCGTACGCGCTGAAGGTTTCCCCCGATCAGCATTTCATCAATTGGCAGCAGGATCCCCAGGGCAATTACCTCGCGCGGCTGGTGTTCCCGGAAAAGACAGATGAGCTGCGGGTGGAGGTCGATCTGGTCGCCGAGATGGCGGTGTTCAATCCGTTCGATTTTTTCCTCGAGCCTTACGCCGAGAAAATCCCGTTCACCTATGCGGCTGACGAAAAACACGAGCTGATGCCCTACCTGGAAAAGCTTCCGCTGACGCCGAAATTCAAGGCGTATCTGGACAGCGTCGACCGCACGCCGTTGCCAGCGGTGGACTTTCTGGTGGCGCTCAACCAGCGCTTGAGCGAAGACATCAACTACCTGATCCGCATGGAGCCGGGCGTGCAGACGCCGGAGCATACGTTGGAGCACGCGTCCGGCTCCTGTCGCGACTCGGCCTGGCTGCTGGTGCAGCTGTTGCGTCACTTGGGCCTGGCGGCGCGTTTTGTCTCCGGTTACTTGATCCAGCTGACCGCCGATGTGAAAAGCCTCGACGGCCCGTCCGGTACGGAAGTGGATTTCACCGACCTGCATGCCTGGTGCGAAGTGTACCTGCCCGGCGCCGGATGGATCGGCCTCGATGCCACGTCCGGGTTGTTCGCCGGCGAAGGGCATATCCCATTGGCGTGTAGTCCTGATCCGTCCTCGGCGGCGCCCATCAGTGGCCTGGTGGAACCGTGCGAGTGTGAGTTCAGCCACGAGATGTCCGTCGAGCGAATCTGGGAAGCGCCACGGGTCACCAAACCCTACACCGAAGAACAATGGCTGGCGATCCAGGCGTTGGGTCGGCAGATCGATGCGGACCTGCAGGAAGGTGACGTGCGCCTGACCATGGGCGGTGAGCCGACCTTCGTTTCCATCGATGACCCGGACGGCGCCGAGTGGAACACCGCGGCGCTTGGACCGGACAAGCGCCGCCTCAGCGCAGAATTGTTCCAGCGCATGCGCGAACATTACGCGCCGCAGGGGCTGGTGCATTTCGGCCAGGGCAAGTGGTACCCCGGCGAGCAATTGCCGCGTTGGTCGCTCAACTGCTATTGGCGGCGTGACGGGGTGCCGATCTGGCACAACAGCGCGTTGATTGCCAATGAGAAAAAAGACTACGGCGCCGATGGCGAATTGGCTGGGCGTTTTCTGGCGAGTGTCGCTGAACGCTTGAAAATTCCCACGCAATTCGTGTTTCCCGCCTACGAGGATAATTTCCATTATCTCTGGCGCGAAGGCTCGTTGCCTTCGAACGTGACGGCTGAGGATTCCCGTCTGGAAGACCCGTTGGAGCGGGCGCGATTGCGCAAGGTCTTCAGCCAGGGGCTGGGCAAGGTGGTCGGTCAGGTCCTGCCGCTGGCACGCACCGCCAAGGGCGACCAATGGCAAAGCGGGCGCTGGTACCTGCGCGACGATCATTGCCGGCTGGTGCCGGGGGATTCGCCACTGGGCTATCGCCTGCCGCTGGCGTCTCAGCCGTGGGTGACGGCGGCCGAATATCCGTTCATCCACCCCACCGACCCGAACCAGGATTTGCCCGAGCTACCCGACACCGAGCAGTTGAAGCATCACGGCGAGCCGGCGCTGGAACAGGAGCGCGTGCCAAAGGTCGACGAATCGGCCGATTGGCTGACCCGCACCGCCTTCTGCGCAGAGGCCAGGGAAGGGCGGCTGTACCTGTTCATGCCACCGCTGGAGCGGGTCGAGGATTACCTGGAGTTGGTCAGCGCCATCGAAGCGACGGCGCAGGAACTGGGTTGCCCTGTTTTGTTGGAGGGCTACGAGCCACCGAGCGATCCGCGCCTGAGCAATTTTCGTATCACGCCAGACCCAGGTGTCATCGAGGTCAACGTGCAGCCTTCGGCAACTTGGGAAGAATTGGTCGAGCGCACCGAGTTTCTTTACGAGCAAGCGCGACTGAACCGGCTGACCACCGAGAAATTCCTGATCGATGGCCGGCACACCGGTACCGGTGGCGGTAACCATTTCGTACTGGGCGGCGCGACACCGGCAGATTCACCGTTCCTGCGGCGCCCGGACTTGCTGCGTAGCCTGATCAGCTACTGGCACAACCACCCGTCATTGTCCTACCTGTTTTCCGGATTGTTCATCGGCCCGACATCCCAGGCACCGCGCGTGGACGAGGCGCGCAACGATGCGTTGTATGAGTTGGAAATAGCCTTTGCGCAAATGCCACAGCCTGGCGACGAATGCCCGCCGTGGTTGGTGGATCGGCTGCTGCGCAACCTGCTGATCGACGTCACCGGCAACACCCATCGCGCCGAGTTTTGCATCGACAAGCTCTATTCGCCGGACGGCGCCACCGGACGGCTCGGCTTGCTGGAGCTGCGCGCTTTCGAAATGCCGCCCCACGCGCGCATGAGCCTGACCCAGCAATTGCTGTTGCGGGCGCTGGTGGCGCGGTTCTGGCGCGCGCCCTATGCACCGGCCAAACTGGCGCGCTGGGGCACCGAGCTGCATGATCGTTTCCTGTTGCCGCACTTCATCGAGCAGGATTTTGCCGAGGTCATCGAAGAGTTGAATGGCGCCGGCTACCCGCTGCGTGCCGAGTGGTTCGCCGCGCACCTGGAGTTTCGCTTTCCCAAAGTGGGCGACTACGCAGTCAACGGTGTCGAGCTGCAGTTGCGCCAGGCGCTGGAGCCTTGGCATGTGCTGGGGGAAGAGGGCTCGGCGGGCGGCACGGTGCGTTATGTGGACTCGTCCCTGGAGCGGTTGCAGATCAAGCTTACGGGGCTGGCGCCACAACGTTACCTGCTGACCTGCAATGGCGTGCCGGTGCCGTTGCAGCCCACCGGCCGGGTGGGGGAGTTTGTCGCCGGGGTACGTTTCCGTGCGTGGCAACCGTTCAACTGCTTGCAGCCGACCATCCCGGTCCATGCGCCGTTGGTCTTCGATGTGCTCGACACCTGGATGCAGCGCTCCCTGGGCGGCTGCCAATACCACGTGGCGCATCCGGGCGGGCGCAACTATGACAGCCTGCCTGTCAACGCCAACGAAGCGGAGAGCCGGCGGATGGCGCGATTCTTCCGTATTGGACATACGCCCGGAAAATTGCCGATACCCAGCCTGGCGGTGGATGACGATTTTCCCTTCACGCTCGATCTGCGACGCTTTCACCGGACCTCAAAAAGCTAG	MSIHVALHHVTHYRYERAVELGPQIVRLRPAAHSRTRILSYALKVSPDQHFINWQQDPQGNYLARLVFPEKTDELRVEVDLVAEMAVFNPFDFFLEPYAEKIPFTYAADEKHELMPYLEKLPLTPKFKAYLDSVDRTPLPAVDFLVALNQRLSEDINYLIRMEPGVQTPEHTLEHASGSCRDSAWLLVQLLRHLGLAARFVSGYLIQLTADVKSLDGPSGTEVDFTDLHAWCEVYLPGAGWIGLDATSGLFAGEGHIPLACSPDPSSAAPISGLVEPCECEFSHEMSVERIWEAPRVTKPYTEEQWLAIQALGRQIDADLQEGDVRLTMGGEPTFVSIDDPDGAEWNTAALGPDKRRLSAELFQRMREHYAPQGLVHFGQGKWYPGEQLPRWSLNCYWRRDGVPIWHNSALIANEKKDYGADGELAGRFLASVAERLKIPTQFVFPAYEDNFHYLWREGSLPSNVTAEDSRLEDPLERARLRKVFSQGLGKVVGQVLPLARTAKGDQWQSGRWYLRDDHCRLVPGDSPLGYRLPLASQPWVTAAEYPFIHPTDPNQDLPELPDTEQLKHHGEPALEQERVPKVDESADWLTRTAFCAEAREGRLYLFMPPLERVEDYLELVSAIEATAQELGCPVLLEGYEPPSDPRLSNFRITPDPGVIEVNVQPSATWEELVERTEFLYEQARLNRLTTEKFLIDGRHTGTGGGNHFVLGGATPADSPFLRRPDLLRSLISYWHNHPSLSYLFSGLFIGPTSQAPRVDEARNDALYELEIAFAQMPQPGDECPPWLVDRLLRNLLIDVTGNTHRAEFCIDKLYSPDGATGRLGLLELRAFEMPPHARMSLTQQLLLRALVARFWRAPYAPAKLARWGTELHDRFLLPHFIEQDFAEVIEELNGAGYPLRAEWFAAHLEFRFPKVGDYAVNGVELQLRQALEPWHVLGEEGSAGGTVRYVDSSLERLQIKLTGLAPQRYLLTCNGVPVPLQPTGRVGEFVAGVRFRAWQPFNCLQPTIPVHAPLVFDVLDTWMQRSLGGCQYHVAHPGGRNYDSLPVNANEAESRRMARFFRIGHTPGKLPIPSLAVDDDFPFTLDLRRFHRTSKS				NA	NA	NA	NA	NA
D1-36_00556	2487		COG2307	putative protein	ATGCCTGACCTGCTTGACCGTTACCCGCTGACGACGGGCACCTATCACGAACTGCTGGACGGCAGCGGCGCGGTGCGTGCGCACTGGCAACGGCTGTTCGACCAGTTGCAGCGCAGCACGCCGGGCCAATTGGTCCAGCGCCAGGCACTGCTGGCACGGCAGATCCAGGAAAACGGTGTCACCTATAACGTCTATGCCGACCCTAAGGGCGCCGACCGGCCGTGGGAGCTGGACCTTCTGCCCCACGTCATCGACGCCCAGGAATGGAAGCTGTTGTCGGCCGGCATTGCCCAGCGCGCGCGTTTGCTCAATGCGGTACTGGCCGACCTGTACGGACCGCAGCGGCTGATCAGTGAAGGGCTGCTGCCAGCGGAGCTGGTCTTCGGACACAACAATTTCCTCTGGCCTTGCCAGGGCATCGCTCCGCCGGACGGTGATTTCCTGCACTTGTATGCCGTGGATCTGGCGCGTGCGCCCGACGGCCGCTGGTGGGTCACCGCCGATCGGACCCAGGCGCCCTCAGGGGCGGGTTATGCGCTGGAAAACCGCATGATCGTCTCTCGTGCCTTTCCCGATCTCTATCGCGACCTGAAGGTGCGGCATCTGTCCGGTTTCTTCCGCACCTTGCAGGAAACCCTGGCGCGACAGGCCCCCAGCGATGGCGAGCCGCCGCTGGTGGTATTGCTCACGCCGGGACGATTCAACGAAAGCTATTTCGAACATCTCTACCTGGCGCGCCAACTCGGCTATCCCCTTGTGGAGGGCGGTGACCTGACCGTTCGGGACGCCACGGTGTACCTCAAGACCCTCAGCGGCCTGCGCCGGGTTCACGCGATCATGCGTCGGCTCGACGACGATTTCTGCGACCCCCTGGAGTTACGCACCGATTCGGCCCTTGGCGTACCCGGATTGTTGGACGCGGTGCGCCAGGGCCGGGTATTGGTGGCCAATGCCCTGGGCAGTGGCGTGCTGGAGTCGCCAGGTCTGCTGGGCTTCCTGCCGCGGATCAACCAGTATCTGTTCGGCGAAGAACTGCTGCTGCCCTCCATCGCCACCTGGTGGTGCGGCGAGCCGCCGGTGCTGGCCCAGGCGCTGGAGAAATTGCCCCAGTTGTTGATCAAGCCGGCGTTTCCTTCCCAGAGTTTCGCACCGGTGTTCGGCCGCGATCTGAACGAGGAGCAGCGCGGCCAGCTGGCGGCGCGCATGCAGGCGCGGCCCTATGCGTATGTCGCGCAAGAGTTGGCGCAACTGTCCCAGGCTCCGGTGTGGCAGGCCGAACACGGCCAGCTCCAGCCCCGGGCGATCGGCATGCGCGTGTATGCCGTAGCGGGAAAAGACGATTATCGGGTCTTGTCCGGCGGCCTGGCCCGAGTGGCCGCCGAGGCCGATGCCGAAGTGGTATCGATGCAGCGCGGCGGTGCCAGCAAGGACACCTGGGTGCTTGGAGAGCAGGCACCCGGCGGCGAGCAATGGAAGGCCCAGCGTACCGTGGGTGTTCACGATCTGGTGCGGCGTGATCCGTACCTGCCCTCCCGGGTGGTGGAAAACCTGTTCTGGTTCGGTCGCTACTGCGAGCGTTGCGATGACAGTGCGCGTCTTTTGCGGATCATGTTGGCGCGGTACGTCGATGGCGATGACCCCCAGGCCTTGCAATCGGCGGTGTCTCTGGGCGAAAGCCTGATGTTGTTGCCTGAGGAGGGGGCATTGCCCGAGCGCTTGCTGGCTGCAGTCCTGGGGGATGACTGGTCGTTCAGCCTGCGCTCCAACCTGCAGCGCTTGCAGTGGGCGGCCTCGCAGGTGCGCGGCAAGCTGTCGCGGGAGAACTGGCAGGCACTGGTGGAGTTGCAGCGTGAAGCCATGGAGCTGGAAACCAGCGAGCCGGATTTCGGCGAGCTGTTGGATTTCCTCAACCGCCTGGTGATGTCCCTGGCCGCATTGTCGGGGTTCGCCCTGGACGACATGACGCGCGACGAGGGTTGGCGTTTTCTCATGATCGGCCGACGCCTGGAGCGCTTGCAATTTCTCAGCAGCAGCCTGGCGGCGTTCCTGCGGGGCGAGGCGGTATTCGATCAGGCCGGGCTGGAATGGTTGTTGGAATTGGGCAACAGCAGTATCACGTACCGCTCGCGCTACCTGGCGGTGGCGCAGTTGATTCCGGTGCTCGACCTGTTGTTGCTGGACGAACAGAACCCCCATGCGGTGCTTTTCCAATTGAAACTGGTGGCGCGCACCCTCAAGCGCTTGAACGATGATTTTGCCGCGCCGAGAGAAACCGCCCTGCCGGAGTTGGTGGCGCGCCTTTCGCGGTTCGACTTGCGGTGCCTGGAGAATCCGCTGTTCGGTGAGGCCAGCTTGCGCGCGGCGGTCGATGGCCTGGCCGATCTGTTACAGGAAGTCGCCGACGTCAGCGCCCAGGTCTCCGATCGCCTGGCCTTGCGACACTTCGCCCACGTTGACGATGTCAGCCAACGCACGGTATCCGTCTGA	MPDLLDRYPLTTGTYHELLDGSGAVRAHWQRLFDQLQRSTPGQLVQRQALLARQIQENGVTYNVYADPKGADRPWELDLLPHVIDAQEWKLLSAGIAQRARLLNAVLADLYGPQRLISEGLLPAELVFGHNNFLWPCQGIAPPDGDFLHLYAVDLARAPDGRWWVTADRTQAPSGAGYALENRMIVSRAFPDLYRDLKVRHLSGFFRTLQETLARQAPSDGEPPLVVLLTPGRFNESYFEHLYLARQLGYPLVEGGDLTVRDATVYLKTLSGLRRVHAIMRRLDDDFCDPLELRTDSALGVPGLLDAVRQGRVLVANALGSGVLESPGLLGFLPRINQYLFGEELLLPSIATWWCGEPPVLAQALEKLPQLLIKPAFPSQSFAPVFGRDLNEEQRGQLAARMQARPYAYVAQELAQLSQAPVWQAEHGQLQPRAIGMRVYAVAGKDDYRVLSGGLARVAAEADAEVVSMQRGGASKDTWVLGEQAPGGEQWKAQRTVGVHDLVRRDPYLPSRVVENLFWFGRYCERCDDSARLLRIMLARYVDGDDPQALQSAVSLGESLMLLPEEGALPERLLAAVLGDDWSFSLRSNLQRLQWAASQVRGKLSRENWQALVELQREAMELETSEPDFGELLDFLNRLVMSLAALSGFALDDMTRDEGWRFLMIGRRLERLQFLSSSLAAFLRGEAVFDQAGLEWLLELGNSSITYRSRYLAVAQLIPVLDLLLLDEQNPHAVLFQLKLVARTLKRLNDDFAAPRETALPELVARLSRFDLRCLENPLFGEASLRAAVDGLADLLQEVADVSAQVSDRLALRHFAHVDDVSQRTVSV				NA	NA	NA	NA	NA
D1-36_00557	894		COG1305	putative protein	ATGAGTGCCCGTTACCAGATCCTCCACGACACCCATTATCACTACGACAGCCCGGTGTCCCTCGCGCAGCAACTGGCTCATCTATGGCCGAGACACTGCGAATGGCAGCGCTGTACCGAGCAACAGCTGTCCATCAGCCCGGAGCCGACGACCCGCCGTGACGAACACGATGTATTCGGCAACCCGCTGACCCGCCTGGCTTTCGAGCGGCCTCACGATGAGCTGCTGGTCAACGCCCGGCTGAGCGTCGAGGTGCTGGCGCGGCCCGCGCTGGATTTCAACCTTTCGCCGGCCTGGGAGTCGACCGGTAACGCCCTGACCTACAGTGGCCGGCCCCTGACGGCACAATGGATGGACGCGTGCCGCTACCGTTTCGAATCACCCTACGTGCATCTCAAGCGCAGCTTCGTCGAGTTTTCCGAGAGCTGTTTCCCGGCCGGCCGACCGTTGATGGTCGGTGTGCGGGCGCTGATGGAAAAAATCTTCGAGGAGTTCACCTTCGATGCCGAGGCCACCCAGGTCGCGACACCGCTGGTAGAAGTGCTGGAGCGACGCCGGGGTGTCTGTCAGGATTTCGCCCATCTGATGTTGGCCTGCGTGCGTTCCCGCGGGTTGGCGGCGCGGTATGTCAGTGGCTACCTGCTGACCCAGCCACCGCCCGGCCAGGCCCGGCTGATCGGGGCCGATGCGTCACACGCCTGGGTCTCGGTGTTCTGCCCGATGCTGGGCTGGGTGGACTTCGACCCGACCAACAACGTGCAGCCGGCGCTGGAACACATCACCTTGGCCTGGGGGCGGGATTTTTCCGATGTGTCGCCGCTGCGCGGGGTGATCCTGGGGGGCGGTACCCATGATCCGGATGTTCGGGTGACGGTGATGCCGCTGGAGTCATAA	MSARYQILHDTHYHYDSPVSLAQQLAHLWPRHCEWQRCTEQQLSISPEPTTRRDEHDVFGNPLTRLAFERPHDELLVNARLSVEVLARPALDFNLSPAWESTGNALTYSGRPLTAQWMDACRYRFESPYVHLKRSFVEFSESCFPAGRPLMVGVRALMEKIFEEFTFDAEATQVATPLVEVLERRRGVCQDFAHLMLACVRSRGLAARYVSGYLLTQPPPGQARLIGADASHAWVSVFCPMLGWVDFDPTNNVQPALEHITLAWGRDFSDVSPLRGVILGGGTHDPDVRVTVMPLES				NA	NA	NA	NA	NA
D1-36_00558	192			hypothetical protein	ATGGCTAAACCCAATTATTCCTTCGCCAAACGTCAAAGAGACCTGGCCAAGGAGCAGAAGAAAGAGGAAAAGCTCCAGCGCAAGAAGGCTTCGGCTGAAGAAGCGGCCCTGAACCCGGACAGCGACGGCGACGGCGACGTGGCGGCAGAACACGATGTGGATGTGCCGAAAGACCAGGCACCCGACGCCTGA	MAKPNYSFAKRQRDLAKEQKKEEKLQRKKASAEEAALNPDSDGDGDVAAEHDVDVPKDQAPDA				NA	NA	NA	NA	NA
D1-36_00559	588		COG1611	Putative cytokinin riboside 5'-monophosphate phosphoribohydrolase	ATGTCCATAGCGTCTGTTTGTGTATTTTGCGGCGCCAGCACCGGCAGCCACCCGGCCTATCTGGAAGCGGCCCAGGCCCTGGGCCGTGCTTTGGCCGAACGAAAACTCACCTTGGTCTACGGCGGTGGCGCGGTCGGTCTTATGGGTGTCGTTGCCGATGCAGCCCTCGCCGCTGGCGGCGAAGTGATTGGCATCATCCCGCAAAGTTTGAAAGACAAGGAAATCGGTCACAGCGGCCTGACGCGCCTTGAAGTGGTAGACGGCATGCATGCGCGCAAGGCCCGCATGGCTGAGCTCAGCGACGCCTTCATCGCCTTGCCCGGCGGGCTCGGCACCCTGGAGGAACTGTTCGAAGTCTGGACCTGGGGTCAGCTCGGTTATCACGGCAAGCCGCTGGGGCTGCTGGAAGTGAACGGTTTCTATAGCAAGCTCACCGGCTTCCTCGATCATATCGTCGGCGAAGGCTTCGTCCGCGCGCCGCATCGTGACATGCTGCAGGTAAGCGAATCTGCGCACACACTGCTCGATGCGCTGGACGAATGGCAACCGTCCGTGCAGCCAAAGTGGGCCGAACAAAAACCAAGCTAA	MSIASVCVFCGASTGSHPAYLEAAQALGRALAERKLTLVYGGGAVGLMGVVADAALAAGGEVIGIIPQSLKDKEIGHSGLTRLEVVDGMHARKARMAELSDAFIALPGGLGTLEELFEVWTWGQLGYHGKPLGLLEVNGFYSKLTGFLDHIVGEGFVRAPHRDMLQVSESAHTLLDALDEWQPSVQPKWAEQKPS	PGPT0007225_179	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-CYTOKININ_METABOLISM	PHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007225-log|yvdD-K22522	NA	NA
D1-36_00560	90			hypothetical protein	ATGAACCTCAACAGCCTGTTATGCAGCTTGCTCGCCGCCTACGCCTGCGGTGCCAGTGGCACCTATGAAAAACCTCGCCGCGAGGTTTAA	MNLNSLLCSLLAAYACGASGTYEKPRREV				NA	NA	NA	NA	NA
D1-36_00561	447			Azurin	ATGTTCGCCAAACTTGTAGCAGTATCCCTGTTGACGCTGGCCAGCAGCCAACTGATGGCAGCGGAGTGCAAGACCACCATCGATTCCACCGACCAGATGACCTTCAGCACCAAGGCCATCGAAATCGATAAGAGCTGCAAGACGTTCACCGTTGAGCTGACTCACTCGGGTAACCTGCCGAAAAACGTGATGGGTCATAACTGGGTGCTGAGCAAAGAGGCCGACATGCAGCCGATCGCCACCGATGGCCTGGGCGCCGGTATCGACAAGAACTATCTCAAGGAGGGTGACGCCCGCGTTATCGCACACACCAAGGTTATCGGCGCCAAGGAAACCGACTCGGTGACTTTCGATGTCTCTAAGCTGGACGCTGCCGAGAAGTACGGTTTCTTCTGCTCGTTCCCGGGCCACATCTCGATGATGAAAGGCACGGTTACCCTGAAGTAA	MFAKLVAVSLLTLASSQLMAAECKTTIDSTDQMTFSTKAIEIDKSCKTFTVELTHSGNLPKNVMGHNWVLSKEADMQPIATDGLGAGIDKNYLKEGDARVIAHTKVIGAKETDSVTFDVSKLDAAEKYGFFCSFPGHISMMKGTVTLK				NA	NA	NA	NA	NA
D1-36_00562	828	nadE	COG0171	NH(3)-dependent NAD(+) synthetase	ATGCAAGCCGTACAGCGTGAGATTGCTGAACAGCTCAAGGTCCAACCGCCATTTGCCGATGACGCCGCCCTCAAGGCCGAAATCGCTCGTCGGGTGAGCTTCATCCAGGACTGCCTCGTCAACTCCGGGCTCAAGAGCCTGGTACTGGGCATCAGCGGCGGGGTCGACTCGTTGACCGCCGGCCTGTTGGCCCAGCGTGCCGTGCGCGAGTTGCGGGAAAAAACCGGCAATGCGGCGTACAAGTTCGTTGCCGTGCGCTTACCGTACGAGACCCAGTTCGACGAACACGAAGCCCAGGCCTGTGTCGATTTCATCGAGCCAGACGAGCGCCATACCGTCAATATCGGCCCGGCGGTCAAGGCATTGGCCAAGGAAGTCCTCGCGTTTGAGGGCAAGGCGCCGGGCTCGCGGGATTTCGTGTTGGGCAATACCAAGGCGCGGATGCGCATGGTGGCGCAATACACCATCGCCGGCGCCGAACAGGGCATGGTGATCGGCACCGATCATGCCGCCGAAGCGGTGATGGGGTTCTTCACCAAGTTCGGTGACGGTGCCTGCGACCTGGCGCCGCTGAGCGGGCTGGTGAAAAACCAGGTCCGGGCCATCGCCCGCGACTTTGGCGCGCCGGAATCGCTGGTGGAAAAAGTCCCCACCGCCGACCTGGAAGACCTGTCGCCTGGCAAGCCGGACGAAGCGGCCCACGGCGTGACCTATGCCGAGATCGACGCGTTCCTGCATGGCCAACCGATTCGCGAAGAAGCGGCGAAGATTATCTGCGACACCTACCGCAAGACCGAGCACAAGCGAGTGATGCCGTACGCTCCTTGA	MQAVQREIAEQLKVQPPFADDAALKAEIARRVSFIQDCLVNSGLKSLVLGISGGVDSLTAGLLAQRAVRELREKTGNAAYKFVAVRLPYETQFDEHEAQACVDFIEPDERHTVNIGPAVKALAKEVLAFEGKAPGSRDFVLGNTKARMRMVAQYTIAGAEQGMVIGTDHAAEAVMGFFTKFGDGACDLAPLSGLVKNQVRAIARDFGAPESLVEKVPTADLEDLSPGKPDEAAHGVTYAEIDAFLHGQPIREEAAKIICDTYRKTEHKRVMPYAP	PGPT0013445_1789	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013445-nadE-K01916	NA	NA
D1-36_00563	1227	pncB2	COG1488	Nicotinate phosphoribosyltransferase 2	ATGAGCGAGAGTGTATTTGCCGATCGCATCGTGCAGAACCTGCTCGACACCGACTTCTACAAGCTGACGATGATGCAGGCGGTGCTGCATAACTACCCCAACGTCGAAGTGGAGTGGGAGTTCCGCTGCCGAAACAGCGAAGACCTGCGGCCCTACCTTGCGGAGATCCGCTTCCAGATCGAACGCTTGGCCGAGCTGAGCCTGAGCGCCGACCAGTTGGGTTTTCTCGAACGCATCTGCTTCTTGAAACCGGATTTCCTGCGCTTTCTGGGCCTGTTCCGTTTCAACCTGCGCTATGTGCACACGGGCATCGAAAACGGCGAGCTGTTTATCCGCCTGCGCGGGCCATGGCTGCACGTCATCCTGTTCGAAGTGCCTTTGCTGGCCATTGTCAGCGAAGTGCGCAACCGCTATCGCTACCGTGAAATCGTTCTGGAACAGGCGCGGGAACAGCTTTATCGCAAGTTCGACTGGCTGAACGCCAATGCCAGTGCCGAGGAATTGTCCGAACTGCAAGTGGCCGATTTCGGCACCCGCCGTCGGTTCTCCTACCGAACCCAGGAAGAAGTGGTCAACGTGCTCAAGCACGACTTTCCGGGACGCTTCGTCGGCACCAGCAACGTGCATCTGTCCCGTGAACTGGACATGAAACCCTTGGGCACCATGGCCCATGAGTGGATCATGGCTCACCAGCAACTGGGCCCAAGGCTGATCGACAGTCAGATCGCCGCGCTCGACTGCTGGGTGCGCGAATACCGAGGGCTGCTGGGCATCGCGCTGACCGATTGCATCACCATGGACGCCTTCCTCAAGGATTTCGATCTGTTCTTCGCCAAGCTGTTTGACGGCTTGCGCCATGATTCGGGTGACCCGGTCATCTGGGCCGAGAAAGCCATTGCCCACTATCACAAGCTGGGTATCGACCCGATGAGCAAGACCCTGGTGTTCTCCGACAGCCTGACATTGCCAAAATGCCTGGAGATTTTCCGCGCCTTGCGTGGTCGCATTAATGTGAGCTTTGGTATCGGGACCAACCTGACCTGTGACATTCCAGGCGTGGAGCCCATGAGCATCGTGCTTAAAATGATCAGTTGTGACGGGCAACCCGTGGCCAAGATTTCAGACGAGCCCGGTAAGACCCACTGCAAGGACCCGAATTTCGTCGCCTATATGCGACATGTTTTCCAAGTACCTGCCGCCCTTTCTGGCACATCAAGCAAGGAGTGA	MSESVFADRIVQNLLDTDFYKLTMMQAVLHNYPNVEVEWEFRCRNSEDLRPYLAEIRFQIERLAELSLSADQLGFLERICFLKPDFLRFLGLFRFNLRYVHTGIENGELFIRLRGPWLHVILFEVPLLAIVSEVRNRYRYREIVLEQAREQLYRKFDWLNANASAEELSELQVADFGTRRRFSYRTQEEVVNVLKHDFPGRFVGTSNVHLSRELDMKPLGTMAHEWIMAHQQLGPRLIDSQIAALDCWVREYRGLLGIALTDCITMDAFLKDFDLFFAKLFDGLRHDSGDPVIWAEKAIAHYHKLGIDPMSKTLVFSDSLTLPKCLEIFRALRGRINVSFGIGTNLTCDIPGVEPMSIVLKMISCDGQPVAKISDEPGKTHCKDPNFVAYMRHVFQVPAALSGTSSKE	PGPT0013375_3320	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013375-pncB-K00763	NA	NA
D1-36_00564	912	gcvA_3		Glycine cleavage system transcriptional activator	ATGCTCAATAAACGCTATTTGCCGTCGATCACCGCGCTGCAGTGCTTCGAAGCGGTGACCCGTCACCTGAGCTTCACCCGCGCCGCCGAAGAATTGAACCTGACCCAGAGCGCCGTCAGCAAACAGGTCGCGCAGTTGGAAGAGTTGCTCCAGCATTTGCTGTTCCGTCGCGTGCGTCGACGCCTGCAATTGACTCCCGCAGGGGATTTGTACCTGGGGGAAGTACGAAAAATCCTCACCCAAGTTGAGATGTCCACTCATTACCTGCGTTCCTACGGTGGTGACACCGAAGTCCTGCGCGTGTCTACGCCACCAACGTTCGGTGCGCGCTGGCTGGTCCCACGGCTCAAGGGCTGGCGCCTGCGCCATCCCAGCATTCATCTGGACCTGTGCAGCGAGCAAGAGGCCGATGACTTACAGCAAGGTCGCAGTGACCTGGCGTTCTATTTTGGCCAAGCCTCACGACCCGGAACTGAATCCTTGAAACTGTTCGGCGAAGAACTGGTGCCAGTCTGCGCTCCGGGCAGCCTGCCGGACCAGCCTTTCACCGACCCGACGCAACTGACCGATCTGGTCCTGCTGCAAAACGCCTCGCGCCCACAGGCTTGGCACGACTGGTTCGAAGACCTGGGTTATCACACCGAACACAGCTACCACGGGCCGCGCTTCGAAACCTTCTATATGTGCATCCGCGCAGCCCAGGTCGGCTGCGGCGTGGCCCTGCTGCCCAGGTTCCTGGTGGAAGAAGAACTGGCCGACGGCAAGCTGGTCATTCCCTGGCAGCATGCGATGCCCAGCACCAATGCCTATTATCTGGCTTATCCGGAACATTCGGCGGAAGTGCCCAAGGTGCGGATGTTCGTGGAGTGGATGTTGGAGCAGATCGACGGTGCTGATATTGCGCAACAATAA	MLNKRYLPSITALQCFEAVTRHLSFTRAAEELNLTQSAVSKQVAQLEELLQHLLFRRVRRRLQLTPAGDLYLGEVRKILTQVEMSTHYLRSYGGDTEVLRVSTPPTFGARWLVPRLKGWRLRHPSIHLDLCSEQEADDLQQGRSDLAFYFGQASRPGTESLKLFGEELVPVCAPGSLPDQPFTDPTQLTDLVLLQNASRPQAWHDWFEDLGYHTEHSYHGPRFETFYMCIRAAQVGCGVALLPRFLVEEELADGKLVIPWQHAMPSTNAYYLAYPEHSAEVPKVRMFVEWMLEQIDGADIAQQ	PGPT0026360_3724	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566	NA	NA
D1-36_00565	1491	gabD_1	COG1012	Succinate-semialdehyde dehydrogenase [NADP(+)]	ATGGTTGCTGCATTGCTTGATCGTCTGGGTGTTGACCCGGCCCTGTACCAGAACGGCACACAGCCAGTGCATTCGCCCATCGATGGCAGTCGCATCGGCGCGGTGAACTGGGAAGGCGCCGCCGAGGTCGAGCAGCAGGTCAGCCGGGCCGAGCATGCCTTTGACCTGTGGCGCAAGGTGCCGGCCCCCCGTCGTGGCGAGCTGGTGCGCCAGTTCGGCGATCTGTTGCGTGAATACAAGGCCGACCTCGGTGAACTGGTGTCCTGGGAAGCCGGCAAAATCACCCAGGAAGGCCTGGGCGAAGTGCAAGAGATGATCGACATCTGCGATTTCGCCGTCGGCCTGTCCCGCCAGCTTTACGGCCTGACCATCGCGTCGGAGCGCCCCGGCCATCACATGCGTGAAACCTGGCACCCGCTGGGCGTGGTCGGCGTAATCAGCGCCTTCAACTTCCCTGTTGCAGTCTGGGCCTGGAACACCACGTTGGCCCTGGTCTGCGGCAACCCGGTGATCTGGAAGCCTTCGGAAAAGACTCCGCTGACCGCCCTGGCGTGCCAGGCCTTGTTCGAGCGCGTACTGAAGAACTTCAGCGACGCGCCACCGTACCTGAGCCAGGTGATCATCGGCGGTCGCGATGCCGGCGAAGCCTTGGTGGACGACCCGCGCGTGGCGTTGATCAGCGCCACCGGCAGCACCCGCATGGGGCGTGAAGTGGCGCCGAAAGTCGCGGCGCGCTTCGCCCGCAGCATTCTCGAATTGGGCGGTAACAACGCCATGATTCTGGCCCCGAGCGCCGACCTGGACATGGCGGTGCGCGCGATCCTGTTCAGCGCCGTCGGCACCGCTGGCCAGCGCTGCACCACCTTGCGCCGGCTGATCGCCCATGAGTCGGTGAAGGAAGAAATCGTCACCCGGCTCAAGGCTGCTTACTCGAAAGTGCGCATCGGTCATCCGTTGGAAGGCAATCTGGTGGGCCCGCTGATCGACAAGCAAAGCTTCGAGAACATGCAGGACGCACTGGAGCAGGCCCTGAGCGAAGGCGGGCGGGTGTTTGGCGGCAAACGCCAGCTCGAAGACCAGTTCCCGAATGCGTATTACGTTTCGCCCGCCATCGTCGAGATGCCGGAGCAAAGCGACGTGGTGCGCCATGAAACGTTCGCACCGATCCTTTATGTGGTCGGCTACAAGGATTTCGCTGAAGCGCTGGACTTGAACAACTCCGTGCCCCAGGGCCTGTCCTCCTGCATTTTCACCACCGACGTGCGTGAAGCCGAGCAATTCATGTCGGCGGTGGGCAGCGACTGCGGCATCGCCAACGTCAACATCGGCCCGAGCGGCGCGGAAATCGGCGGCGCCTTCGGTGGCGAAAAGGAAACCGGCGGCGGTCGCGAATCCGGCTCCGATGCATGGCGCGCCTACATGCGCCGTCAGACAAACACCGTGAATTACTCGTTGGAGTTGCCGTTGGCGCAGGGGATTACGTTCGACTGA	MVAALLDRLGVDPALYQNGTQPVHSPIDGSRIGAVNWEGAAEVEQQVSRAEHAFDLWRKVPAPRRGELVRQFGDLLREYKADLGELVSWEAGKITQEGLGEVQEMIDICDFAVGLSRQLYGLTIASERPGHHMRETWHPLGVVGVISAFNFPVAVWAWNTTLALVCGNPVIWKPSEKTPLTALACQALFERVLKNFSDAPPYLSQVIIGGRDAGEALVDDPRVALISATGSTRMGREVAPKVAARFARSILELGGNNAMILAPSADLDMAVRAILFSAVGTAGQRCTTLRRLIAHESVKEEIVTRLKAAYSKVRIGHPLEGNLVGPLIDKQSFENMQDALEQALSEGGRVFGGKRQLEDQFPNAYYVSPAIVEMPEQSDVVRHETFAPILYVVGYKDFAEALDLNNSVPQGLSSCIFTTDVREAEQFMSAVGSDCGIANVNIGPSGAEIGGAFGGEKETGGGRESGSDAWRAYMRRQTNTVNYSLELPLAQGITFD	PGPT0006875_3846	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_DEHYDROGENASE|DEHYDRATASE_ACTIVITY,PGPT0006875-aldH|dhaS-K00128	NA	NA
D1-36_00566	1284	puuB_1		Gamma-glutamylputrescine oxidoreductase	ATGCCGTTACGCGAAGAATGTCTGTGGGAAAAACTGACGCCGCAAAGGCCTGAAAACACTGCGCTCACTGGCGAGATCAAGGTGGACGTCTGCGTCATCGGCGCAGGTTTTACCGGCCTGTCGGCGGCGGTGCATTTGCTGGAGCAAGGCAAGCGTGTCGCGGTGCTTGAAGCTCATCGGGCCGGGCATGGCGGATCGGGGCGTAACGTTGGGCTGGTGAATGCCGGCCTGTGGATTCCACCGGACGAGATCGAGGCTGGGTTTGGCGCGGCAGTGGGCAGCCAGCTCAACCGTATGCTGGGCGCCGCGCCGGCGTTGGTGTTCAGCCTTGTCGACAAGTACGCCATCGATTGCCAGCTGCGCCGCGAAGGCACCTTGCACATGGCCCATAACGCCCGGGGCGAGGCGGACCTGCGCAGCCGCGAAGAACAATGGAAGCGCCGTGGCGCGCCGGTTGAGCTGCTCACCGGCCAAGCCTGTGTCGATGCCACCGGCACCGACAAGATCGCCGCGGCGTTGCTCGATCGCCGGGCCGGCACGCTCAATCCGATGGCCTTTGCCAGTGGACTGGCCAAAGCCGCCAAGGATCTTGGCGCCCAGATGTTCGACCATTCGCCGGTGACGCGGTTGGAGCGCCAAGGCCAGCGTTGGTCGGTTCAGACCGCCCAGGGCTCGGTGCTGGCCGAGCAAGTCGTGATCGCCTCCAACGCCTATACCGAGGGCGACTGGACCGAATTGCGGCGCAATTTTTTCCCCGGTTATTACTACCAGGTGGCCTCGGTCCCGCTGGACGACGAGGCGGCCCGACGCGTCCTGCCGGGCGGGCAGGGCTCTTGGGATACCCGCCAGGTGTTGAGCAGCATTCGCCGGGACAAGGACGGTCGCCTGCTGCTGGGCAGCCTGGGCAACGGTAACCGCAAGCCAGCCTGGTTCCTCAAGGCCTGGGCTGACCGGGTGCAGCAGCACTATTTCCCTTACCTGAAGCCGGTGGAATGGGAATGCACCTGGACCGGTTGCATCGCTTTCACGCCTGATCATTTGATGCGTCTGTTCGAACCGGCACCCGGCCTAGTGGCAGTGACCGGTTACAACGGGCGGGGCGTGACCACCGGCACTGTCGTGGGCAAGGCATTTGCCGATTACCTGTGCCACGGCGATGCCAAGGCGCTGCCGATCCCCTTCGCGCCGATGCAGCCTTTGGCGGGTGTCGGCCTGCGCAGCTGCTTGTATGAAGCGGGCTTTTCGCTGTACCACGCGGGCCAGTGCTTGCGCATCGTCATCTGA	MPLREECLWEKLTPQRPENTALTGEIKVDVCVIGAGFTGLSAAVHLLEQGKRVAVLEAHRAGHGGSGRNVGLVNAGLWIPPDEIEAGFGAAVGSQLNRMLGAAPALVFSLVDKYAIDCQLRREGTLHMAHNARGEADLRSREEQWKRRGAPVELLTGQACVDATGTDKIAAALLDRRAGTLNPMAFASGLAKAAKDLGAQMFDHSPVTRLERQGQRWSVQTAQGSVLAEQVVIASNAYTEGDWTELRRNFFPGYYYQVASVPLDDEAARRVLPGGQGSWDTRQVLSSIRRDKDGRLLLGSLGNGNRKPAWFLKAWADRVQQHYFPYLKPVEWECTWTGCIAFTPDHLMRLFEPAPGLVAVTGYNGRGVTTGTVVGKAFADYLCHGDAKALPIPFAPMQPLAGVGLRSCLYEAGFSLYHAGQCLRIVI				NA	NA	NA	NA	NA
D1-36_00567	1137	braC_1	COG0683	Leucine-, isoleucine-, valine-, threonine-, and alanine-binding protein	ATGTCCCAGACGTTTTACAAGAAAGGCTTTCTGGCCCTCGCAGTGGCAACTGCGCTGGGTGTTTCTGCGTTTGCTCAAGCTGATGTGAAATTCGGTGTGGCGGGGCCGATGACCGGTGCCAACGCTGCGTTTGGCGAGCAATACATGAAAGGTGCGCAGGCAGCGGCCGATGTCATCAACAAAGCGGGTGGCGTCAACGGCGAAAAAATCGTACTGGTAGCCGGCGACGACGCCTGCGAACCCAAGCAAGCCGTGGCCGTGGCCAACCGTCTGGTTGACCAGGACAAGGTCATCGGTGTGGTCGGGCACTTCTGCTCGTCCAACACCATCCCGGCTTCCGAGGTCTATGACGAAGCCGGCGTCATCGCCATGACCCCCGGTTCGACCAACCCGGCCGTGACCGAGCGTGGCCTGAGCGCGATGTTCCGTATGTGCGGTCGTGACGACCAGCAAGGCATCGTGGCCGGCGACTACATCGTCGATGTCCTCAAGGGCAAGAAAGTCGTCGTGCTGCACGACAAGGACACCTACGGCCAAGGCCTGGCGGATGCCACCAAGGCACAACTGGCCAAGCGTGGTGTGACCCCGGTGTTGTACGAAGGCCTGACCCGTGGTGAAAAAGACTTCAGCGCCGTGGTCACCAAGATCCGTTCGGCCGGTGCCGATGTGGTCTACTTCGGCGGCCTGCATCCGGAAGCCGGCCCGTTGGTTCGCCAGCTGCGCGAACAAGGCCTCAAGGACGTGAAATTCATGTCCGATGACGGCATCGTCACTGACGAACTGGTCACCACCGCTGGCGGCGCGCAATACGTCGATGGCGTGTACATGACCTTTGGCGCCGACCCACGCCTGCTGCCCGACAGCAAGGCCGTAGTGGACGCTTTCCGTGCCCAGGGCGTCGAGCCTGAAGGCTACACGTTGTACGCCTATGCGTCGGTCCAGGCCTTGGCCGCCGGCTTCAACGGCGCCAAGTCCAACAAGGGCGAAGACGCTGCCAAGTGGCTGAAAGCCAACCCGGTGAAAACCGTCATGGGCGAAAAAACCTGGGATTCCAAGGGTGACCTGAAAGTCTCCGACTACGTGGTCTACCAGTGGGACAAGGATGGCAAATACCACCAGTTGGAAAAACAGAAGTAA	MSQTFYKKGFLALAVATALGVSAFAQADVKFGVAGPMTGANAAFGEQYMKGAQAAADVINKAGGVNGEKIVLVAGDDACEPKQAVAVANRLVDQDKVIGVVGHFCSSNTIPASEVYDEAGVIAMTPGSTNPAVTERGLSAMFRMCGRDDQQGIVAGDYIVDVLKGKKVVVLHDKDTYGQGLADATKAQLAKRGVTPVLYEGLTRGEKDFSAVVTKIRSAGADVVYFGGLHPEAGPLVRQLREQGLKDVKFMSDDGIVTDELVTTAGGAQYVDGVYMTFGADPRLLPDSKAVVDAFRAQGVEPEGYTLYAYASVQALAAGFNGAKSNKGEDAAKWLKANPVKTVMGEKTWDSKGDLKVSDYVVYQWDKDGKYHQLEKQK	PGPT0020765_12413	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
D1-36_00568	915	livH_1	COG0559	High-affinity branched-chain amino acid transport system permease protein LivH	ATGGATGGTATTTTCCTGCAGCAACTGATCAATGGCCTGACCCTCGGGTCGGTCTATGGTCTGATCGCCATCGGCTACACAATGGTCTACGGCATCATCGGCATGATCAACTTCGCCCACGGCGAGGTTTACATGATTTCCGCTTACCTCGCGGCAATCAGTCTGGCTCTGCTGGCTTACTTCGGTATCGAATCCTTTCCGCTGATGATCCTTGGCACCCTTGTGTTCACGGTCGTGGTCACCGGGGTCTACGGCTGGGTCATCGAACGCGTCGCCTACAAACCCCTGCGCAACTCAACCCGGCTGGCACCGCTGATCAGTGCCATCGGCATTTCGCTGATCCTGCAAAACTACGCACAGATCAGCCAGGGCGCCCGCCAACAGGGTGTTCCGACACTGCTTGAAGGCGCCATGCGCGTCGACATCGGTACCGGTTTCGTGCAGCTCACCTACACCAAGATCTTCATTCTGATCGCCGCGTTCGCCGGCATGGCGCTGCTGACCTACATCATCAAGTACACCAAGCTCGGACGCATGTGCCGCGCCACCCAGCAAGACCGCAAGATGGCCTCGATCCTGGGGATCAACACCGACCGGGTGATTTCCTACGTGTTCATCATAGGTGCAGCCATGGCGGCCCTGGCCGGTGTGCTGATCACCATGAACTACGGCACCTTCGACTTCTATGCCGGCTTCATCATCGGCATCAAGGCGTTCACCGCGGCGGTACTCGGCGGCATCGGCTCCCTGCCTGGGGCGATGCTCGGCGGGATCATCCTCGGGATTTCCGAGTCGCTGTTCTCCGGTCTGATCAACTCCGACTACAAAGACGTGTTCAGTTTCTCGCTGCTGGTGCTGATTCTGATCTTCCGTCCCCAAGGCCTGTTGGGTCGCCCACTCGTGGCGAAGGTGTAA	MDGIFLQQLINGLTLGSVYGLIAIGYTMVYGIIGMINFAHGEVYMISAYLAAISLALLAYFGIESFPLMILGTLVFTVVVTGVYGWVIERVAYKPLRNSTRLAPLISAIGISLILQNYAQISQGARQQGVPTLLEGAMRVDIGTGFVQLTYTKIFILIAAFAGMALLTYIIKYTKLGRMCRATQQDRKMASILGINTDRVISYVFIIGAAMAALAGVLITMNYGTFDFYAGFIIGIKAFTAAVLGGIGSLPGAMLGGIILGISESLFSGLINSDYKDVFSFSLLVLILIFRPQGLLGRPLVAKV	PGPT0020770_3748	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
D1-36_00569	1281			hypothetical protein	ATGTCTGCTGCCAATAAACCGCTTGATATCAAACAGAGCGTCATCGACGCGATCCTGGCCGGCCTGATCTCGCTGATTGTGTTCGGGCCGATCGTCGGCGTGGTGCTCGATGGCTACAGTTTCAACCTGCAGCCGGCCCGCGTCGGCTGGCTGGTGGCGATCGTGATGGTCGGGCGCTTTGCCCTGAGCCTGTTCCTGCAAACCCCCAAGGGACTCAAGATTCTCCAGGGTTTCGAGAGCACCGGCTCCGGCGTGCATGTGCTGCCCCCGGACTACAAGTCGCGCCTGCGCTGGATCATCCCGGCGCTGATCGTGATCGCCATCGTGTTTCCATTCTTCGCCAACAAGTACGTGCTGACGGTGGTCATCCTCGGGCTGATTTACGTGCTGTTGGGCCTGGGCCTGAACATCGTGGTCGGCCTGGCCGGGCTGCTCGACCTGGGTTATGTGGCGTTCTACGCCATCGGTGCCTATGGGCTGGCGCTGGGCTACCAATACCTGGGGCTGGGTTTCTGGACCGTGTTGCCGCTGGCCGCCATCGCTGCGGCGATGGCCGGGTGCATATTGGGCTTCCCGGTGTTGCGAATGCACGGCGACTACCTGGCCATCGTGACCCTGGGGTTTGGCGAAATCATCCGGTTGGTGCTCAATAACTGGCTGTCGTTCACTGGCGGACCGAATGGCATGCCGGTGCCTTCCCCGACCTTCATGGGCCTGGAATTTGGCAGGCGAGCGAAGGACGGTGGGGTGCCGTTCCATGAGTTCTTCGGCATCGCCTACAACCCCAACGTCAAATTCCTGTTCATTTACATCGTGCTGTTCATCACCGTCCTGTTGGTGCTGTACATCAAGCATCGCCTGACCCGCATGCCGGTCGGTCGCGCCTGGGAAGCCTTGCGCGAAGATGAAATTGCCTGCCGCTCCATGGGCCTGAACCATGTGCTGGTCAAGCTCTCGGCCTTCACCATCGGTGCCTCCACCGCGGGCCTGGCGGGTGTGTTTTTCGCCAGCTATCAGGGCTTCGTCAACCCATCCTCGTTCACCTTCTTCGAGTCGGCGCTGATTCTGGCCATCGTCGTGCTGGGCGGCATGGGGTCGACGGTGGGTGTAGTGATCGCGGCATTCGTGCTCACCGTGGCACCGGAGCTTCTGCGCAGTTTCTCTGAATACCGGGTGCTGCTGTTCGGCGTGTTGATGGTGTTGATGATGATCTGGCGCCCGCGCGGCCTGATTCGTATCAGCCGTACCGGCGTGACGCCGCGCAAGGGGGTAGCGCCATGA	MSAANKPLDIKQSVIDAILAGLISLIVFGPIVGVVLDGYSFNLQPARVGWLVAIVMVGRFALSLFLQTPKGLKILQGFESTGSGVHVLPPDYKSRLRWIIPALIVIAIVFPFFANKYVLTVVILGLIYVLLGLGLNIVVGLAGLLDLGYVAFYAIGAYGLALGYQYLGLGFWTVLPLAAIAAAMAGCILGFPVLRMHGDYLAIVTLGFGEIIRLVLNNWLSFTGGPNGMPVPSPTFMGLEFGRRAKDGGVPFHEFFGIAYNPNVKFLFIYIVLFITVLLVLYIKHRLTRMPVGRAWEALREDEIACRSMGLNHVLVKLSAFTIGASTAGLAGVFFASYQGFVNPSSFTFFESALILAIVVLGGMGSTVGVVIAAFVLTVAPELLRSFSEYRVLLFGVLMVLMMIWRPRGLIRISRTGVTPRKGVAP	PGPT0020775_2292	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
D1-36_00570	873	glnQ_2		Glutamine transport ATP-binding protein GlnQ	ATGAGCGAAGTCGTACTCAAAGTCGAAAACCTGATGATGCAGTTTGGTGGCATCAAAGCCCTCAGCGACGTGAGCCTGCAGGTCGAGCGCAACTCGATCTTCGCCCTGATCGGCCCCAACGGCGCGGGCAAGACCACCGTGTTCAACTGCCTGACCGGCTTCTACAAGGCCTCGGGCGGCAAGATCGAACTCAACGTACGCGGCGAACAGACCAACGTGATCAAGCTGTTGGGCGAAGCGTTTCGTCCTACTGATTTTGTCTCGCCGAAATCCTTCGCCAGCCGGCTGTACTACAAGATGTTCGGCGGCACCCACCTGGTGAACCGCGCCGGCCTGGCGCGCACCTTCCAGAACATTCGCCTGTTCAAGGAAATGTCGGTACTGGAAAATCTGCTGGTGGCCCAGCACATGTGGGTCAACCGCAGCCTGATCGCGGGCATCCTCAACACCAAGGGCTATCGCAAAGCTGAAAGCGACGCCCTGGACCATGCCTTCTATTGGCTGGAAGTGGTGGACTTGGTGGATTGCGCCAACCGCCTGGCCGGCGAGCTTTCCTACGGCCAGCAGCGCCGCCTGGAAATCGCCCGGGCCATGTGCACGCGTCCGCAGATCATCTGCCTCGACGAACCGGCCGCCGGCCTCAACCCCCAGGAAACCGAAGCGCTGAGCGCAATGATTCGGCTGCTGCGCGACGAGCATGATTTGACCGTGGTGCTGATCGAACACGACATGGGCATGGTGATGAGTATTTCCGACCACATCGTGGTGCTGGACCACGGCAACGTGATCGCCGAGGGTGGTCCCGAGGCGATTCGCAACGATCCGAAGGTGATCGCGGCCTACCTGGGCGCCGACGAAGAGGAGCTGGTATGA	MSEVVLKVENLMMQFGGIKALSDVSLQVERNSIFALIGPNGAGKTTVFNCLTGFYKASGGKIELNVRGEQTNVIKLLGEAFRPTDFVSPKSFASRLYYKMFGGTHLVNRAGLARTFQNIRLFKEMSVLENLLVAQHMWVNRSLIAGILNTKGYRKAESDALDHAFYWLEVVDLVDCANRLAGELSYGQQRRLEIARAMCTRPQIICLDEPAAGLNPQETEALSAMIRLLRDEHDLTVVLIEHDMGMVMSISDHIVVLDHGNVIAEGGPEAIRNDPKVIAAYLGADEEELV	PGPT0020780_1790	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
D1-36_00571	717	livF_1	COG0410	High-affinity branched-chain amino acid transport ATP-binding protein LivF	ATGAGTGGACCTATCCTCGAACTCAAGGAACTGGACGTATTTTACGGGCCGATCCAGGCCCTGAAGAAAGTCTCGATGCACATTGGTGAAGGCGAAACGGTGAGCTTGATCGGCTCCAACGGCGCGGGCAAATCCACGCTGCTGATGTCGATCTTCGGCCAGCCCCGCGCTGCGGGCGGGCAGATCATCTACCAAGGCGTGGACATCACCCACAAGTCGTCGCACTACATCGCCTCCAACGGTATCGCCCAATCGCCGGAAGGACGGCGGGTATTCCCGGACATGACCGTCGAGGAAAACCTGCTGATGGGCACCATCCCCATTGGCGACAAATATGCCAGCGAAGACATGCAGCGCATGTTCGAGTTGTTTCCCCGGCTCAAGGAGCGGCGCAACCAGCGGGCCATGACCATGTCCGGCGGCGAGCAACAAATGCTCGCCATTGCCCGGGCACTGATGAGCCGGCCGAAGTTGTTGCTGCTCGATGAGCCGAGCCTGGGGCTGGCGCCGATCGTGGTGAAACAGATCTTCGCCACCCTGCGTGAATTGGCTTCCACCGGGATGACTATTTTCCTGGTGGAACAGAACGCCAACCACGCGCTCAAGTTGTCGGACCGGGCCTATGTCATGGTCAACGGCGAAATCCGCCTGACCGGTACCGGCAAGGAACTGCTCGCCAACGAAGAGGTGCGTAACGCGTATCTTGGCGGCCATTGA	MSGPILELKELDVFYGPIQALKKVSMHIGEGETVSLIGSNGAGKSTLLMSIFGQPRAAGGQIIYQGVDITHKSSHYIASNGIAQSPEGRRVFPDMTVEENLLMGTIPIGDKYASEDMQRMFELFPRLKERRNQRAMTMSGGEQQMLAIARALMSRPKLLLLDEPSLGLAPIVVKQIFATLRELASTGMTIFLVEQNANHALKLSDRAYVMVNGEIRLTGTGKELLANEEVRNAYLGGH	PGPT0020785_4765	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
D1-36_00572	765	isfD	COG4221	Sulfoacetaldehyde reductase	ATGTCTGACACCCTGTTTATCACTGGCGCGACGTCCGGTTTTGGTGAAGCCTGTGCCCGTCGTTTCGCCGAGGCCGGTTGGAAGCTGGTGCTGACCGGCCGTCGTGAAGAACGCCTCGATGCCCTTTGTGCCGAGCTGTCGAAGCAGACCGAGGTCCATGGCCTGGTGCTGGATGTGCGTGATCGCAAGGCCATGGAAGAGGCCATCGGCAACCTTCCGCCATCCTTTGCCACGCTGCGCGGGCTGATCAACAATGCCGGCCTGGCCTTGGGCGTCGATCCGGCGCCCAAGTGCGACCTTGATGATTGGGACACCATGGTCGACACCAATGTGAAAGGTCTGATCTACAGCACGCGCCTGCTGCTGCCGCGCCTGATCGCCCATGGTCGTGGCGCTGGCATCATCAACCTGGGTTCCATTGCCGGTAATTACCCGTATCCAGGCAGCCATGTTTATGGCGCGAGCAAGGCGTTCGTCAAACAGTTCTCCCTGAACCTGCGTTGCGACTTGCAAGGCACGGGTGTGCGGGTGAGCAACATCGAGCCGGGCCTGTGCGAGAGCGAGTTCTCGCTGGTGCGTTTTGGTGGCGACCAGGCGCGCTACGACGCGACCTACGCCGGCGCCGAGCCGATCCAGCCGCAGGACATCGCCGACACCATTTTCTGGGTGCTCAACACCCCGGCGCACATCAACATCAACAGCCTCGAACTGATGCCGGTGAGCCAGACCTGGGCCGGGTTCGCCATCGAACGCAACAAGGCCTGA	MSDTLFITGATSGFGEACARRFAEAGWKLVLTGRREERLDALCAELSKQTEVHGLVLDVRDRKAMEEAIGNLPPSFATLRGLINNAGLALGVDPAPKCDLDDWDTMVDTNVKGLIYSTRLLLPRLIAHGRGAGIINLGSIAGNYPYPGSHVYGASKAFVKQFSLNLRCDLQGTGVRVSNIEPGLCESEFSLVRFGGDQARYDATYAGAEPIQPQDIADTIFWVLNTPAHININSLELMPVSQTWAGFAIERNKA	PGPT0021285_780	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021285-ydfG-K16066	NA	NA
D1-36_00573	1134			Cellobiose 2-epimerase	ATGCCTGATGCTTCCCGCCCCGCTCCCCAGCCTGAATTGACCGCCCTGTTCGCCACGGTGCGCCAGCATTTTCACGACGTGATCGTGCCGATGTGGCAGGGCCCGGGCTGGAATGCCGAACTGGCGTTGCCCTATGAATCCCTCGACAGCCAGCACCAGCCGCTGCCGCCCCAGCGTTACCGGGCCATGGCCTGTGCGCGGCAGCTGTATGTGTTCGCCAGCCTGATCGGTGAGGTGCCGCAGGCCGAGGAGCGCGCCGCCGCATTGTTCCGCTCATTGCAGCGGCATTTCCACGACGCCGAACATGGCGGCTGGTTCTACAGCATCGACCCGCAGGGCGCGCCGCTGGACACGGGCAAAGACCTTTATACCCACGCGTTTATCCTGTTCGCCTGCGCCCATTACTGGGGCAAGGTTCGCGAGCCGTTGGTGGAATCGACGTTGAACGCCGCGCTGGAAGTGATCAGCCGGCGCTTCGCCACCGGGGACGGTCTCTACGAAGCCAGCCTGGGGCGTGACTGGTCGACCTGCCAATCCGGCCCGTTGCAGAATCCGCTGATGCACCTGGCCGAAGCGTTCCTGGCAACCCTCTCGGTTCGCGACGATGCCACCGTGCGCCAGGCGTTGCTGAGCCTTTGCGATGGGATGTACCGGCACTTCGTGGACCCGGAACAGAAGGCCATGATGGAGAAACCACTCAAGGCTGTGGATAACTGGTTCGAGCCAGGCCATCAATTCGAATGGTATTTCCTGCTGGCCTCATCGCCCTTGTTGCGTGGTGGCAAGCTGCACACGGCGCTAAAGCACAGCTTTGGTTTTACCGAGCGACAAGGTGTCGATCCGGACTCCAGCGCGGTACGCGCGATGCTGAGCCTGGCGCCGCAATCGACCCCACGCGACGCCACTCAACGCATCTGGGCCCAAGCGGAATACCTGCGGGCATTGACGTTGCGCCCGGGAAGCGACAATGCCTTGCTGCGTCAACTGCAAGCGTTGCAGCAGCATTTCCTGCATCCCCGGGGCTGGAATGAATGTCTTGACGCCGACGGCATCGTCAGCCGCCGGGACATGCCTTCGACCACCCCTTATCATCTTCTGACCTGCTACCGCGGTCTGGCCGACTACCTGGCGTAA	MPDASRPAPQPELTALFATVRQHFHDVIVPMWQGPGWNAELALPYESLDSQHQPLPPQRYRAMACARQLYVFASLIGEVPQAEERAAALFRSLQRHFHDAEHGGWFYSIDPQGAPLDTGKDLYTHAFILFACAHYWGKVREPLVESTLNAALEVISRRFATGDGLYEASLGRDWSTCQSGPLQNPLMHLAEAFLATLSVRDDATVRQALLSLCDGMYRHFVDPEQKAMMEKPLKAVDNWFEPGHQFEWYFLLASSPLLRGGKLHTALKHSFGFTERQGVDPDSSAVRAMLSLAPQSTPRDATQRIWAQAEYLRALTLRPGSDNALLRQLQALQQHFLHPRGWNECLDADGIVSRRDMPSTTPYHLLTCYRGLADYLA	PGPT0017860_2060	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
D1-36_00574	573			hypothetical protein	ATGACATGCAAACGTATCTGCGGCGCCCTCGCCCTGCTATTGACCCCGGCGCTGGCCTTCGCCCACCCCGGCCACGGCGATAATGGCCTGATCGCCGGGCTGGGCCACCCGATCGGCGGGCTCGATCATTTGCTGGCGATGCTCGCGGTCGGTTTGTGGGCCGCCCAACAACAAGGCGCTGCGCGCTGGGCACTGCCGTGTACCTTCGTCGGCGCAATGCTGCTTGGCGGCGTGCTGGGTTTTGAAGGCCTGCACCTTCCGGCGTTGGAAAGCGGGATCGCCGCCTCGGTACTCGCCCTGGGCCTGGCGGTGGCACTGGCCGTGCGTCCACCGCTGGGCCTGGCTGTCGCTGCGACTGCGGTGTTTGCGCTGTTCCATGGCGTGGCGCATGGCTTGGAGCTGCCGGACATGTCCAGCCCCTGGGCTTACGCCGTAGGCTTTGTCGCAGCGACAGCGGCGTTGCACGGCGCAGGTTTTGCGCTGGTGCGGGTGTTGCCGCGAGCGGCGGCGCCATTGGTGCGGTTGGCTGGGGCGGCTTCGGCGGCGGCTGGGGTTTGGCTGTTGGCGGGTTGA	MTCKRICGALALLLTPALAFAHPGHGDNGLIAGLGHPIGGLDHLLAMLAVGLWAAQQQGAARWALPCTFVGAMLLGGVLGFEGLHLPALESGIAASVLALGLAVALAVRPPLGLAVAATAVFALFHGVAHGLELPDMSSPWAYAVGFVAATAALHGAGFALVRVLPRAAAPLVRLAGAASAAAGVWLLAG	PGPT0000995_689	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-UREA_USAGE	N-AQUISITION-UREA_METABOLISM,PGPT0000995-ureJ-K03192	NA	NA
D1-36_00575	615	ureG		Urease accessory protein UreG	ATGAACACACAACCTCTGCGCGTGGGTATCGGCGGCCCGGTGGGCTCCGGCAAGACCGCGCTCACGCTTGCCCTGTGCCTGGCCCTGCGCGAGCGCTACAACCTCGCGGTGGTCACCAACGACATCTATACCCGCGAGGACGCCGACTTCCTGGTGCGCAACGAAGCCCTGGCGCCGGAACGGATCATTGGCGTCGAAACCGGCGGCTGCCCACACACGGCGATCCGTGAAGACGCGTCGATCAATCTGGAAGCAGTGGACCAGTTGAACCGGCGTTTCCCAGGCCTGGACCTGATCCTGGTGGAGTCCGGCGGTGACAACCTGTCGGCTACCTTCAGCCCCGAACTGTCGGACCTGACCATCTATGTCATCGACGTTTCGGCGGGCGACAAGCTGCCCCGCAAAGGCGGGCCGGGTATCTGCAAGTCCGATTTGCTGGTGATCAACAAAATCGACCTGGCGCCACTGGTCGGCGCGTCCCTGGAAATGATGAACAGCGATACCCAGCGGATGCGCAACGGCAAGCCGTTCGTCTTCAGCAACCAGAAGACCGGCCAGGGCCTGGACGACATCATCGCCTTCATCGAGCGCCAAGGCCTGTTGACGGCCGCGTGA	MNTQPLRVGIGGPVGSGKTALTLALCLALRERYNLAVVTNDIYTREDADFLVRNEALAPERIIGVETGGCPHTAIREDASINLEAVDQLNRRFPGLDLILVESGGDNLSATFSPELSDLTIYVIDVSAGDKLPRKGGPGICKSDLLVINKIDLAPLVGASLEMMNSDTQRMRNGKPFVFSNQKTGQGLDDIIAFIERQGLLTAA	PGPT0000985_1701	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-UREA_USAGE	N-AQUISITION-UREA_METABOLISM,PGPT0000985-ureG-K03189	NA	NA
D1-36_00576	675	ureF	COG0830	Urease accessory protein UreF	ATGAACCCGGCCTGGGCGCTGCTGCGCCTGGCCAGTCCACAACTGCCGATTGGCGGCTACAGCTATTCCCAGGGATTGGAAATGGCGGTGGATAACGGCCAGGTTCGGACGCCCGACGACGCACGCCAATGGCTCAGCGACCAAATGCTGCTGAACCTGGCGCGCTTCGAAGCGCCTCTACTGCTGGCCCATTGCACAGCCGCCGCGGCTGACGATTGGGACGGGCTGCGGCAACTTTGCGAGCAACACCGCGCCAGCCGGGAAACCCGCGAGCTGTTTCAGGAAAGCCGGCAGATGGGTTACTCGTTGCAGCAGCTGCTCGCCGGCCTGCCGGAACTCGACAGTGCGGCCCGGAACTTTCTGCAGCAGCGCGGCGAACCCCACCTGGCGCTGGGCTGGGCCTTGGCGGCGCGCGCCTGGAACATCGGCCCGCAGGACGCCCTCGCCGCGTGGTTGTGGAGCTGGCTGGAAAACCAATTGGCGGTGCTGATGAAAACCCTGCCCCTGGGTCAACAAGCCGCCCAGCGTCTGACGAGCGAGTTGCTGCCGGTGCTTCAACAAGCCCAGCACATCGCCTCGAACATCGATCCCGATCATTACGGCAGCGCCGCGTTTGGCCTGTCCCTGGCGTGCATGGCTCATGAGCGCCAGTACAGCCGCCTGTTTCGTTCCTAG	MNPAWALLRLASPQLPIGGYSYSQGLEMAVDNGQVRTPDDARQWLSDQMLLNLARFEAPLLLAHCTAAAADDWDGLRQLCEQHRASRETRELFQESRQMGYSLQQLLAGLPELDSAARNFLQQRGEPHLALGWALAARAWNIGPQDALAAWLWSWLENQLAVLMKTLPLGQQAAQRLTSELLPVLQQAQHIASNIDPDHYGSAAFGLSLACMAHERQYSRLFRS	PGPT0000980_1731	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-UREA_USAGE	N-AQUISITION-UREA_METABOLISM,PGPT0000980-ureF-K03188	NA	NA
D1-36_00577	501	ureE		Urease accessory protein UreE	ATGCTGGTGATTCACCGCAGAATCGACACACAACCAGGCTGGGACGCCGAGTTGCACCTGACCTTCGACGCACGCAGCAAAAGCCGCCTGCGCTGTTTCAGTGCCGAAGGCGAGGACGTGGGGCTGTTCCTCGAACGAGGCCAGCCACCGCTGTACGACGGCGAATGCCTGCAGGCCGAGGACGGGCGCATCGTGCGTGTCTGCGCGCGTCCCGAGCAGTTGCTGCATGTCACCTGCGCCAATGCGTTCGAGTTGACCCGCGCGGCCTACCACTTGGGTAATCGCCACGTGGCCCTGCAAGTAGGCGATGGCTGGCTGCGCTTGCTGGACGACTACGTGCTCAAGGCGATGCTCGAACAGTTGGGCGCCACCGCCGAATCCATCGAAGCCCCATTCCAGCCAGAACACGGCGCCTACGGCGGCGGCCACCATCATTCCCGGCACGGCGATGAAGATTTCAACTACGCGCCGCGCCTGCACCAGTTTGGTGTGCGCACATGA	MLVIHRRIDTQPGWDAELHLTFDARSKSRLRCFSAEGEDVGLFLERGQPPLYDGECLQAEDGRIVRVCARPEQLLHVTCANAFELTRAAYHLGNRHVALQVGDGWLRLLDDYVLKAMLEQLGATAESIEAPFQPEHGAYGGGHHHSRHGDEDFNYAPRLHQFGVRT	PGPT0000975_811	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-UREA_USAGE	N-AQUISITION-UREA_METABOLISM,PGPT0000975-ureE-K03187	NA	NA
D1-36_00578	387			hypothetical protein	ATGACTGTGAGCGTCTCTGAAAAATTATTTATGGTCGTTGGGATAATTGATTTGGGAGGAATTTTCATTTGGATTGGAATGTGTCTGTACTTGGCTTACAAAAAAATGGACCTAATATTGGATCACTTGAAAAATTGTTCAGCTGTCATGACGATCGCATCACTGCGCCATGGTGGTCCTTGGGGAAAATTGATGCTGGTAGGCGGTATTTCCGGACTCATCACCTTTCCCAATTTCTACCTCAAAAGAGGCGGACTTAATGTCGAAGACATAAATAGTTTTCCCGCGAGCCTTAAGCGCAAGCTAGTAGCACTGCAGTGGTGTGTTATCGCACTTCTATCGGTAATGATTGCTCTTGCCATGCTCGTTAAGTTTGGTCTCGCTTAG	MTVSVSEKLFMVVGIIDLGGIFIWIGMCLYLAYKKMDLILDHLKNCSAVMTIASLRHGGPWGKLMLVGGISGLITFPNFYLKRGGLNVEDINSFPASLKRKLVALQWCVIALLSVMIALAMLVKFGLA				NA	NA	NA	NA	NA
D1-36_00579	1413			hypothetical protein	ATGAACAGAGGCTATTTCATTGGCCGGGGCGACAAGACCACGTGTGGTGGTGAAGTGCTGGATGGCGATGGCAGGGTCAATATGTTCGGCCTGCTGCACGCCCGCGAAGGGGACCGGGTTTCGTGTGGAAAGGACGGAAAAATCTATCAGATCAGGGGCGGCATAGCGCACATGGTCAGCCATGGCAAGCGAATGGCCGGCACGTTGGATAGTCACAGTACCTGCCCCTGCAAAGCGCAACTGATCCCCTCGGTATCCTGGGCCACTTATGAAGGTGCGAATTCTGCACCGCAAGCCAACCGAGCCGCTCAGCCGGCTCCACAGCCCGCGACCGCGACCCACGCACCAAGTGCTTCACGCCAATCGTTTCTCGCCCCGTCAATCAGCCCGCCGCCCCGCACATCCACCCGCGTAGAACCCCTGGAACCGGGCTTCTACGTTGTGCCCAGAAGCGTGACCCGCGAAGCGCTGGAGGCGACGCTGTTCCAATCACCCGACCCGGCGGTGATGCGCAAATTCCGCGCGCTCAATCCTTATCGCGATGTGGTCAAGGCCGGTTCGATGATCGTGCTGAGCGATCCGAACAATCATCAATGCACCCGCGAAGAGGCGCTGTTGATGGAAACAGCAATATGGATCAACGATGCCCTTGAGCCGCTAAGCGCGGACGAGGCCGACTTCATGGCCCGGCATCGAGATGAAATCGAGACTTTCTTCGCCCAAGGCTCGACTGCCATCGGTGTTGGTGAAGCCATCTTCGCCAAAAATCTGGAGGACGTTAAAACTGTTCTGCGGGATATCGAGGCGTTGCATCAACGTACTTTCCGGCGCGATGGGCACTTACGGTCGTCGGATTTTTTTGCAGAGCGCAAACAACTGCTCTCTAGGCTCGACACTCATCTGACCACCCTGACGCGAAAGGGCACTGGGCTTCCAGATCATCCAAACTTGAAAAGCGCCTTGGGCATCTCCAGTCGCAGTTTGGTCCACCGTTGGACCAAGGCTGGTGGCGCAGGTCAGATTCCAGGTTATGCGACACATATTGAGGGTGTCTCCAAAGCGGCCAAAATCATCAAGTACGGGGGGTGGGTTGGCCCGATTATTGGTGGTGGAGCTTCGTATATGAAGGTCCAGGATGTTTGCACGGCAGATAGTGCGCAGGCTTGTAAGAAAGTTAAGTTCGCTGAGACTGGCAGCTTCGCGGGTGGCGTGGCAGGTGGTGTAGCAGCAGGCGCCGCCCTGACTGGGCCTGTGGTTGGAGCGATCTGTATCGGGTTAAGTGTGCCGACAGGAGGGTTGGCAATGGTGGGGTGCGGTCTTCTGGTGGTCGGAACGGGGTCGCTTGCGGGGGGTGTCCTTGGAGGAATACTGGGTGAAAAAACAGGCGAACTTATCTATGAGGCTGCCCAATGA	MNRGYFIGRGDKTTCGGEVLDGDGRVNMFGLLHAREGDRVSCGKDGKIYQIRGGIAHMVSHGKRMAGTLDSHSTCPCKAQLIPSVSWATYEGANSAPQANRAAQPAPQPATATHAPSASRQSFLAPSISPPPRTSTRVEPLEPGFYVVPRSVTREALEATLFQSPDPAVMRKFRALNPYRDVVKAGSMIVLSDPNNHQCTREEALLMETAIWINDALEPLSADEADFMARHRDEIETFFAQGSTAIGVGEAIFAKNLEDVKTVLRDIEALHQRTFRRDGHLRSSDFFAERKQLLSRLDTHLTTLTRKGTGLPDHPNLKSALGISSRSLVHRWTKAGGAGQIPGYATHIEGVSKAAKIIKYGGWVGPIIGGGASYMKVQDVCTADSAQACKKVKFAETGSFAGGVAGGVAAGAALTGPVVGAICIGLSVPTGGLAMVGCGLLVVGTGSLAGGVLGGILGEKTGELIYEAAQ				NA	NA	NA	NA	NA
D1-36_00580	633	fabR	COG1309	HTH-type transcriptional repressor FabR	ATGCTGCCCCGCGCCGAACAGAAACAACAGACCCGAAACGCCCTGATGGACGCAGCCCGCCACTTGATGGAATGTGGCAGGGGGTTCGGCAGCCTGAGCCTGCGTGAAGTGGCCAAGACGGCAGGCATCGTACCGACCGGGTTCTACCGACACTTCCAGGACATGGACCAATTGGGCCTGGCGCTCGTCAGCGAAGTCGGCCAGACCTTTCGCGAAACCATACGACTGGTACGTCACAACGAGTTCGTCATGGGCGGCATCATCGACGCGTCAGTGCGGATTTTTCTCGACGTGGTTCATGCCAACCGATCCCAGTTTCTGTTCCTGGCTCGCGAGCAATACGGTGGATCGCAGCCGGTCCGACAAGCCATCGCGAGGCTGCGTGAAGACATCAGCTCGGACCTGGCCGCCGACCTGGCGCTGATGCCGAAACTCCAGCACCTGGACCTCGCCGGGCTCAACGTAATGGCCGATCTCATCGTCAAGAGTGTCTTCGCCACCTTGCCGGACATCATCGACCCGCCCGCCGAAGCCCTGCCCGAGCATCTCACGCCCCAGGCGAAGATTACCCAGCAACTGCGGTTCATCTTCATTGGCCTCAAGCATTGGCGTGGATTGGGCAGTACCGAATAG	MLPRAEQKQQTRNALMDAARHLMECGRGFGSLSLREVAKTAGIVPTGFYRHFQDMDQLGLALVSEVGQTFRETIRLVRHNEFVMGGIIDASVRIFLDVVHANRSQFLFLAREQYGGSQPVRQAIARLREDISSDLAADLALMPKLQHLDLAGLNVMADLIVKSVFATLPDIIDPPAEALPEHLTPQAKITQQLRFIFIGLKHWRGLGSTE				NA	NA	NA	NA	NA
D1-36_00581	552			hypothetical protein	ATGAAACGCCAAATACTGATGAGCCTTTCCCTTTCACTGCTGGCCTCTACCGCTTTCGCCCTGCCAGCTTCCGAACAAGCCACTCCACAGGTCAAGGACAGCCACTCTGTCTACAGCCAAACCGTCGCCGAAGGTGGCCGTGACCGCCTGGAAGAAAAAGGCCTGGTTGAAGGTGGCTCCGACCGTACTCCACAAGGCCAGACCTTGGCTGCCGATGGTTCCGACCGTACTCCACAAGGCCAGACCTTGGCTGCCGATGGTTCCGACCGTACTCCACAAGGCCAGACCTTGGCTGCCGATGGCTCCGACCGTACTCCACAAGGCCAGACCTTGGCTGCCGATGGTTCCGACCGTACTCCACTGGGCGAATCCCTGGCCGCTGACGGTTCCGACCGCACCCCACTGGGCGAATCCCTGGCCGCTGACGGTTCCGACCGCACCCCACAAGGCCAGACCCTGGCTGCCGATGGTTCCGGTCGCACTCCACAAGGCCAACTCCTTGCTGCGGACGGCGGCGATCGCGTCATCAAACGCCGCGGCGAAGTGAGCTGA	MKRQILMSLSLSLLASTAFALPASEQATPQVKDSHSVYSQTVAEGGRDRLEEKGLVEGGSDRTPQGQTLAADGSDRTPQGQTLAADGSDRTPQGQTLAADGSDRTPQGQTLAADGSDRTPLGESLAADGSDRTPLGESLAADGSDRTPQGQTLAADGSGRTPQGQLLAADGGDRVIKRRGEVS				NA	NA	NA	NA	NA
D1-36_00582	2076			hypothetical protein	ATGACGCGCACCTCAAAAATCTTCGCCTGGGGCTTTGCCTGCCTCGTTGTCCTGCTGACCGTGCTGGTGCTGTTCATCGCGTTCTTCGATTGGAACCGCATCAAGCCTGCGCTCAATGCCAAGGTTTCCGAAGAGCTGCATCGCCCATTCGCAATCAATGGCAACCTGGCGGTGATCTGGCGGCGCGAACCCGGCGAGGGCGGCTGGCGGGCATGGCTGCCATGGCCGCATGTGGTCGCCGAAGACCTGACCCTGGGCAACCCGGATTGGTCGAAGCTCCCGCAGATGGTCACGCTCAAGCGCGTCGAGTTGCGTATCTCGCCCCTGGCGTTGCTGGCGCGGCGGGTGGCCATCCCGCGTATCGACCTGACAGGCCCCGACGCCAGCCTGCAGCGCCTGGCCGATGGACGGGCCAATTGGACTTTCCAGTTCGATCCAAAGGACCCGGACGCCGAACCGTCCAGTTGGGTGGTGGACATCGGCGCCATCGGTTTTGACAAGGGGCATGTCACGCTCGACGACCAGACGCTCAAGACCCGGCTCGACGTGCTGGTCGACCCGTTGGGCAAGCCCATTCCCTTCAGTGATATCGTCGGGGAAAAAACCGCGAAAAGAACCCGGGAACAGGGCTCGTCACCACAAGACTATGCCTTTGCCTTCAAGGTCGACGGGCAATATCACGGGCGGGGTCTCAGCGGATCCGGCAAGGTCGGCGGCCTGCTGGCGTTGCAGGATGCGGCACAACCTTTTCCATTGCAGGCCCAGGCGAAGATCGCCGACACCCGCGTCGAACTGGCCGGCACCCTGACCGACCCAAAGAACCTCGGCGCCCTTGACCTGCGTTTGAAACTGTCCGGCAACAGCCTGGCCAATCTTTATCCGCTGACGGGCGTGACCCTGCCGGATTCGCCACCGTATTCCACGGACGGCCGATTGATCGCCAAGCTCCACGAGCCGGACGGCGCACAGTTTCGCTACGAGGCGTTCAACGGCAAGATTGGCGACAGTGACATCCACGGTAACCTGGCCTATGTCGCCAGCCAGCCCCGGCCGAAACTCAGCGGTGCGCTGGTGTCCGACCAGTTGTTGTTCAGTGATTTGGCGCCGTTGATCGGCGCAGACTCCAATGCCGAACAAAAAGCCCGTGGCGGCGCCAGCAAACAACCGTCCGACAAGGTGTTGCCGGTGGAGGAGTTCCGCACCGAACGCTGGAGTGCGATGGACGCCGACGTGGAGTTCACCGGCAAGCGTATCGTTCACAGCGAGCAGTTGCCGTTCACCGATCTCTACACGCACCTGGTGCTCAACGACGGCCAACTGAGCCTGGAGCCCCTGCGCTTTGGCGTCGCCGGTGGCCGGCTCGATGCGCAGATCCGCCTCAACGGCCACACCCAGCCCCTCGAAGGCCAGGCGAAATTGACTGCGCGGGGCTTCAAGCTCAAGCAGTTGTTCCCGGGATTCGAGCCAATGAAGACCAGTTTTGGTGAACTCAATGGCGACGCGGATATTTCCGGGCGCGGCAATTCGGTGGCGGCGTTGCTGGGCACCTCCAATGGCACCCTGAAGATGCTCATCAACGACGGCGCCATCAGCCGCGAGCTGATGGAACTGGCGGGGCTCAACGTCGGCAATTACGTGGTGGGAAAAATCTTTGGCGACAAGGAAGTGAAGATCAACTGCGCAGCGGCTGATTTCGATATCAAGACCGGCCTGGCGACCACGCGCCTGTTCGTGTTCGACACCGAGAACGCGATTATCTATATCGACGGTACGGCGAACATGGCCACCGAACAACTGGACCTGACCGTCACGCCCGAGTCCAAGGGCTGGCGGTTGATTTCTCTACGCTCGCCGCTGTACGTGCGGGGCACGTTTGCCAACCCTGCCGCCGGCGTCAAGGCCGTGCCACTGATGTTGCGCGGTGCCGGGATGGTTGCCCTGGGTGTCATCGCCGCACCGGCGGCGGGGCTGTTGGCCCTAGTCGCGCCCAGCGGTGGCGAGCCGAACCAGTGCGCGCCGTTGCTTGAACAGATGAAGGCGGGCAAGGCGCCGGTCACGGTCAAGCCTACCCGGTAG	MTRTSKIFAWGFACLVVLLTVLVLFIAFFDWNRIKPALNAKVSEELHRPFAINGNLAVIWRREPGEGGWRAWLPWPHVVAEDLTLGNPDWSKLPQMVTLKRVELRISPLALLARRVAIPRIDLTGPDASLQRLADGRANWTFQFDPKDPDAEPSSWVVDIGAIGFDKGHVTLDDQTLKTRLDVLVDPLGKPIPFSDIVGEKTAKRTREQGSSPQDYAFAFKVDGQYHGRGLSGSGKVGGLLALQDAAQPFPLQAQAKIADTRVELAGTLTDPKNLGALDLRLKLSGNSLANLYPLTGVTLPDSPPYSTDGRLIAKLHEPDGAQFRYEAFNGKIGDSDIHGNLAYVASQPRPKLSGALVSDQLLFSDLAPLIGADSNAEQKARGGASKQPSDKVLPVEEFRTERWSAMDADVEFTGKRIVHSEQLPFTDLYTHLVLNDGQLSLEPLRFGVAGGRLDAQIRLNGHTQPLEGQAKLTARGFKLKQLFPGFEPMKTSFGELNGDADISGRGNSVAALLGTSNGTLKMLINDGAISRELMELAGLNVGNYVVGKIFGDKEVKINCAAADFDIKTGLATTRLFVFDTENAIIYIDGTANMATEQLDLTVTPESKGWRLISLRSPLYVRGTFANPAAGVKAVPLMLRGAGMVALGVIAAPAAGLLALVAPSGGEPNQCAPLLEQMKAGKAPVTVKPTR				NA	NA	NA	NA	NA
D1-36_00583	531			hypothetical protein	ATGAGCGACATGCACTTATCCGACGTCACGACCCTGCGCGAACGTGCGCGCCAGAACGTCCAGAACGGCGCGGTCACCGAAGGCTACAACGCCGATCGACAGGAAATCATCCGCCTGCTCAACGAAGCATTGGCCACCGAACTGGTCTGCACACTGCGCTACAAGCGTCACTATTTCATGGCCACCGGCCTGAAGGCCGGTGTCGCGGCGAGTGAGTTTCTCGAACACGCCAACCAGGAATCCGAGCACGCCGACAGGCTCGCCGAACGCATCGTGCAACTGGGTGGCGAACCGGAATTCAACCCCGACCTGTTGACTCGGCACTCCCACGCCCAGTACGTGGCAGGCAATACGCTCAAGGAAATGGTGTTCGAAGACTTGGTCGCCGAACGTATCGCCATCGACAGCTATCGGGAAATCGTCCAATACATCGGCGAAAAAGACCCAACCACTCGGCGCATCTTCGAAGACATCCTGGCCCAGGAAGAAGAGCACGCTGATGACATGGCCGATATCCTGGCCGATCTCTGA	MSDMHLSDVTTLRERARQNVQNGAVTEGYNADRQEIIRLLNEALATELVCTLRYKRHYFMATGLKAGVAASEFLEHANQESEHADRLAERIVQLGGEPEFNPDLLTRHSHAQYVAGNTLKEMVFEDLVAERIAIDSYREIVQYIGEKDPTTRRIFEDILAQEEEHADDMADILADL	PGPT0003965_425	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-RELATED_PROTEINS_FERRITIN,PGPT0003965-bfr-K03594	NA	NA
D1-36_00584	942	gcvA_4		Glycine cleavage system transcriptional activator	ATGTTTGCCACCCTGCCCCTCAATGCCTTGCGAGCCTTCGAGGCGGCTGCACGCCTGCTCAGTTTCAAGGCGGCGGCCGAAGAGCTGGCGGTCACCCCGACAGCGATTTCCCACCAGATCCGCTCCCTGGAAACCTGGCTGGGGGCGCAGTTGTTCGAACGCTTGCCGCGCCGGGTACGCCTCACCGACGCGGGACAGCGGCTGTTTCACAGCTTGCACGGGGCATTGCTGGAAGTTGCACAAAGCGTCGACAGCCTGCGCCCGCAACGCAGCACCACGCACCTGACGATATCCACCACGGCGGCGTTTGCCGCCCTGTGGCTGGTGCCGCGCCTGGGGCGGTTTTACGCGCGCCATCCGAACATCAACGTACGCCTGGACACCCATTGCGAAGTCATCGACTTGCTTCAGGACGCCAGCGTCGATCTGGTGGTGCGCTACAGCCTGGACGGCTACTCGAACCTCTATGGCATGTGCCTGTTCGAAGAGAGCTTCGGCGTGTATGGCTCGCCGGAACAAGTCGCGCTGGCCACCCGGCAGCCGCCGACACTGATCAGCGTGCGCTGGCATAACGCCAAGCTGTACGCCCACGGTTGGGACGCCTGGTGCGCCCAGGCGGAGGAAAGCTGGATGACCCGGCAACCTTGCATACGTGAATACGATGAAGAGCACTACGCCCTGCAAGCGGCTATCGCCGGCCAGGGCCTGGTATTGGCGAGCAATATCCTCGCTTCGCAAAGCGTCGCCAGCGGGTTGCTGGTGGGTTATCGCCCCAAGGTCCAAGTCAGCGGTGCCGGCTACAGCGCGCTTTGCGTGCCGGGACGAGAGCGGCACCCGCCCGTGCGGGCTTTTTTCCAATGGGTGGAGGAGGAAGCACGCTTCTCCGGGCACGCCTTGAAAAATCCGGTAAAACTTTTCCAGGATCGCATCACTCAGAACTAG	MFATLPLNALRAFEAAARLLSFKAAAEELAVTPTAISHQIRSLETWLGAQLFERLPRRVRLTDAGQRLFHSLHGALLEVAQSVDSLRPQRSTTHLTISTTAAFAALWLVPRLGRFYARHPNINVRLDTHCEVIDLLQDASVDLVVRYSLDGYSNLYGMCLFEESFGVYGSPEQVALATRQPPTLISVRWHNAKLYAHGWDAWCAQAEESWMTRQPCIREYDEEHYALQAAIAGQGLVLASNILASQSVASGLLVGYRPKVQVSGAGYSALCVPGRERHPPVRAFFQWVEEEARFSGHALKNPVKLFQDRITQN	PGPT0026360_1396	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566	NA	NA
D1-36_00585	639	azoR1_1	COG1182	FMN-dependent NADH-azoreductase 1	ATGAGCAGCATTCTTGTCGTACAGGGTAGCCCACGCGGTGAGCGTTCCCATTCCCGACGTCTGACGGAGGCATTCATAGCGGCGTGGCAGGCCGCCAATCCACTTTGCCAACCGACTCGCCGCGAGGTGGGCCGCACCGTCATCCCTGCGGTCAACGAAGCCTTTATTGCGGCGGCGTTTTACTCCGAGCCCCAGGCGCGGCCATTGACCATGCAGGCCGACCTGGCGCTGAGCGATGCGCTGGTTGCCGAACTGCAAGCCCACGATCGCTTGGTAATCTCGGCACCCATGCACAATTTTGGCGTGCCCAGCGGCGTGAAAGCCTGGGTCGACCAGATCGTACGCATCGGCGTGACGTTCAACCACAGCCTCGACAACGGTGTTTCCCAGTACGAGCCGCTGGTGTCGGGCAAAAAGGCGCTGATCGTGACCAGCCGTGGGGACTTCGGTTTTGGCCCCGGTGGCCAATTGGAGGCCATGAACCACGCCGACACCTGGCTGCGGGCGGTGCTGGGCTTCATCGGTATCAACGACGTGACGGTGGTGGCGGCCGAAGGCGAAGAGTCCGCCGAGCACAGCTTCGCGCGTTCCTATGCCGAGGCCGAGCAACGCTTGCTAGCGCTCGCCCGAACCTTTTGA	MSSILVVQGSPRGERSHSRRLTEAFIAAWQAANPLCQPTRREVGRTVIPAVNEAFIAAAFYSEPQARPLTMQADLALSDALVAELQAHDRLVISAPMHNFGVPSGVKAWVDQIVRIGVTFNHSLDNGVSQYEPLVSGKKALIVTSRGDFGFGPGGQLEAMNHADTWLRAVLGFIGINDVTVVAAEGEESAEHSFARSYAEAEQRLLALARTF	PGPT0006790_821	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_DEGRADATION_OF_OTHER_NITRO-COMPOUNDS	XENOBIOTIC_AZO_DYE_DEGRADATION,PGPT0006790-acpD|azoR-K01118	NA	NA
D1-36_00586	891	lips_1		Triacylglycerol lipase	ATGTCGCAACGCTGTGCCACTCGCTACCCCTTGGTGCTGGTCCCGGGCATGCTCGGTTTCATTCGCCTGGTGTTGTATCCGTACTGGTATGGCATCGCAGAGGCATTGCGCCGGGGCGGGGCCGTGGTGATTCCTGTGAAGGTCTCGCCCTTGCATTCATCCGAGGTTCGCGGCGAGCAGCTGTTGGCCCGGATTGAGGAAGTGCTGCGGCAAACCGGCGCGCAAAAGGTCAACCTGATCGGCCACAGCCAGGGCGCCCTCACTGCCCGCTACGCCGCGGCCAAACGCCCGGACCTGGTGGCGTCGGTCTCTTCGGTGGCCGGCACCAACCACGGTTCCGAGCTAGCCGATTATCTGCAAACCCATTACCCGGCCGACAGCGCCAAGGGCCGGGTGCTCAGTGCCTTGCTGCGGCTGATCAACGCGATCATGAGCCTGCTGGACACCGGTTATCACGGGCCACGGCTGCCAGCCGACCTGAAGGCATCCCATGCTTCGCTCACCACTGCCGGGGTGGCGCTGTTCAACGAACGTTATCCACAGGGGCTGCCCCAAACCTGGGGCGGACACGGGCCGGAAGAGGTCAATGGCGTGCGTTACTACTCCTGGTCGGGGACGTTGCAGCCGGGCAAGACCGACAAGGGTCGCAACCTCTTCGATGGCACCAATCGAAGCTGCCGGTTGTTCGCCCGCACCTTCGTGCGCGAAGCCGGGCAGAGCGACGGCATGGTCGGGCGCTACAGTTCGCACCTGGGCACGGTGATCCGGGATGACTACCCGCTGGACCATTTCGACATCGTCAATCAGTCGCTGGGGCTGGTGGGCAGGGGGGCGGAGCCGATCCGGTTGTTTGTCGAGCATGCCGAGCGGTTGAAGGCGGCAGGCTTGTAG	MSQRCATRYPLVLVPGMLGFIRLVLYPYWYGIAEALRRGGAVVIPVKVSPLHSSEVRGEQLLARIEEVLRQTGAQKVNLIGHSQGALTARYAAAKRPDLVASVSSVAGTNHGSELADYLQTHYPADSAKGRVLSALLRLINAIMSLLDTGYHGPRLPADLKASHASLTTAGVALFNERYPQGLPQTWGGHGPEEVNGVRYYSWSGTLQPGKTDKGRNLFDGTNRSCRLFARTFVREAGQSDGMVGRYSSHLGTVIRDDYPLDHFDIVNQSLGLVGRGAEPIRLFVEHAERLKAAGL	PGPT0024445_1536	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_LIPASE_ACTIVITY,PGPT0024445-lip|lipC-K01046	NA	NA
D1-36_00587	273	psiF		Phosphate starvation-inducible protein PsiF	ATGAAGATGCTCCGTGTCCCTTTGTTGATGATGGGTTTGCTGCTGTGTTCCCAGGGGTTCGCCGCCACGGCCCAACAAACCAAGATGACCACCTGCAACGCCGACGCCACCACCAAGGCCCTCAAGGGTGACGAACGCAAGGCCTTCATGAGCAACTGCCTCAAGGCGACCCCACAGGACCGCATGAAAAGCTGCAATGCCACTGCCACCGAGCAGGCGTTGAAGGGTGACGCTCGCAAGGCGTTCATGAGTGAGTGCCTGAAGAAAAAATAA	MKMLRVPLLMMGLLLCSQGFAATAQQTKMTTCNADATTKALKGDERKAFMSNCLKATPQDRMKSCNATATEQALKGDARKAFMSECLKKK				NA	NA	NA	NA	NA
D1-36_00588	1014			hypothetical protein	ATGCCAACGTTTTCTCAGCGTCATGTGTTGTTGGTGATCAGTTGGGTGATCATTTTTGGTGGGCTGTTGCTGGTGTTGCCGCTGCGCCTGTTGCCGAGCCTGTTGGCCGGGTTGCTGGTGTTCGAGCTGGTCAACATGCTCACTCCGCAGTTGCAACGATTGATCGAAGGCCGGCGTGCCCGCTGGTTGGCGGTGGCATTGCTCGGCACGTTGGTGGTCAGTGTGCTGACCCTGATCTTTGCCGGCGCCTTCAGTTTCCTGCTGCACGAAGCGGAAAATCCCGGGGCCTCCCTGGACAAGTTCATGACCGTGGTCGATCGCGCCCGTGGGCAACTGCCGCCGTTCATCGATGCCTACCTGCCGGCCAGCGCCGCCGAGTTCCGGGTGGCGATCGGTGATTGGGTGAGCAAGCACTTGAGCGACCTGCAGCTGGTGGGCAAGGACGCGGCTCACATGTTCGTGACGCTGTTGATCGGCATGGTGCTCGGCGCCATCGTCGCCCTGCAGCGCATCCCCGACCTGACCAAGCGCAAGCCCCTGGCCGCTGCGCTGTTCGATCGCCTGAACCTGCTGGTCAAGGCCTTTCGCAACATCGTCTTCGCCCAGATCAAGATTTCCCTGCTCAATACGTTCTTCACCGGGATTTTCCTGGCGGTGGTGCTGCCGCTGTTCGGCATCCAGCTACCCCTGACCAAGACCCTGATCGTGATGACGTTCCTGCTGGGGCTGTTGCCGGTGATCGGCAACCTGATGTCCAACACCCTGATCACTGTGGTCGCCCTGTCATTGTCGATCTGGGTGGCGGTGGCCGCGCTGGGTTACCTGATCGTGATCCACAAGCTCGAATACTTCCTCAACGCCCGTATCGTCGGCGGACAGATCAGCGCCAAGTCGTGGGAATTGCTCATGGCGATGCTGGTGTTCGAAGCCGCGTTCGGCCTGCCGGGGGTGGTGGCGGGGCCTATCTACTATGCGTATCTCAAGAGTGAGTTGAAGCAGGTAGGGATGGTTTGA	MPTFSQRHVLLVISWVIIFGGLLLVLPLRLLPSLLAGLLVFELVNMLTPQLQRLIEGRRARWLAVALLGTLVVSVLTLIFAGAFSFLLHEAENPGASLDKFMTVVDRARGQLPPFIDAYLPASAAEFRVAIGDWVSKHLSDLQLVGKDAAHMFVTLLIGMVLGAIVALQRIPDLTKRKPLAAALFDRLNLLVKAFRNIVFAQIKISLLNTFFTGIFLAVVLPLFGIQLPLTKTLIVMTFLLGLLPVIGNLMSNTLITVVALSLSIWVAVAALGYLIVIHKLEYFLNARIVGGQISAKSWELLMAMLVFEAAFGLPGVVAGPIYYAYLKSELKQVGMV				NA	NA	NA	NA	NA
D1-36_00589	1275	dnaK_1		Chaperone protein DnaK	ATGAAAAACGCATCCCCGGCCCGTGCCTGCGGCATCGACTTCGGCACGTCCAACTCCACTGTCGGCTGGCTGCGCCCCGGCATGGAAACGTTGATCGCGCTGGAGGACGACAAGATCACCTTGCCCTCGGTGGTCTTTTTCAATCAGGAAGAGCGCCGCCCGGTGTACGGTCGCCTGGCGCTGCACGAATACCTGGAAGGCTACGAAGGCCGGCTGATGCGTTCGCTCAAGAGCCTGCTGGGCTCCAAGCTGATCAAGCACGACACGAGCGTGTTGGGCACGGCGATGCCGTTCAAGGATCTGCTGGGGTTGTTCATCGGCCAATTGAAGAAACGCGCCGAAGCCACCGCCGGTCGAGAATTCGAAGAAGTGGTGCTGGGCCGCCCGGTGTTTTTTGTCGATGACGACGAAATGGCCGACCAGGAAGCCGAGAACACCCTGGTAGACGTCGCCCGCGCCATTGGCTTCAAGGAAGTGTCGTTCCAGTACGAGCCCATCGCGGCGGCTTTCGACTATGAATCGACCATCGAGAAAGAAGAGCTGGTGCTGATCGTCGACATCGGCGGGGGTACGTCGGACTTCTCCCTGGTGCGCCTGTCGCCCGAGCGTCGTACCCACGATAACCGTCACGCCGACATCCTGGCGACCGGCGGCGTGCACATCGGCGGCACCGACTTCGACAAGCAACTCAGCCTGCAAGGCCTGATGCCGCTGTTCGGCTACGGCAGCCGCATGAAAAGCGGCGCCTACATGCCCACAAGCCATCACATGAACCTGGCGACCTGGCACACCATCAACGCGGTGTATTCGCAGAAATCCACCCTCGCCCTGGGCAGCATGCGCTACGACATCGAAGACACCGGCGGCATCGACCGGCTGTTCAAGCTGATCGAACAGCGCGCCGGGCATTGGCTGGCGATGGAAGTGGAAGAAACCAAGATCCAGCTGACCCACGCCGACCAGCGCCACGTGGCCCTGGACCGGATCGAGCCGGGCCTGAGCGTGGACTTGAGCCGCGCCCTGTTCGAGTCGGCCATCGACAGCTTGCTGGAGCGGGTGCGCGGCAGCGTCACGCAACTGCTCAACGATGCCGGTATCGGTGTGGACCAGGTTGACACCGTGTTCTTCACCGGCGGCTCCAGCGGCATCCCGGCGCTGCGCAACAGCGTCTCGGCGATGCTTCCCCAGGCGCGGCATGTGGAAGGCAATATCTTTGGCAGTATCGGCAGTGGATTGGCGATCGAGGCGATGAAGCGGTATGGGAGTCAGGCCTGA	MKNASPARACGIDFGTSNSTVGWLRPGMETLIALEDDKITLPSVVFFNQEERRPVYGRLALHEYLEGYEGRLMRSLKSLLGSKLIKHDTSVLGTAMPFKDLLGLFIGQLKKRAEATAGREFEEVVLGRPVFFVDDDEMADQEAENTLVDVARAIGFKEVSFQYEPIAAAFDYESTIEKEELVLIVDIGGGTSDFSLVRLSPERRTHDNRHADILATGGVHIGGTDFDKQLSLQGLMPLFGYGSRMKSGAYMPTSHHMNLATWHTINAVYSQKSTLALGSMRYDIEDTGGIDRLFKLIEQRAGHWLAMEVEETKIQLTHADQRHVALDRIEPGLSVDLSRALFESAIDSLLERVRGSVTQLLNDAGIGVDQVDTVFFTGGSSGIPALRNSVSAMLPQARHVEGNIFGSIGSGLAIEAMKRYGSQA				NA	NA	NA	NA	NA
D1-36_00590	948	cbpA	COG2214	Curved DNA-binding protein	ATGCTTAAGATGGACTTCAAAGACTATTACAAGATCCTGGGTGTCGAGCCGACGGCCGACGATGCCACGATCAAGGCTGCCTATCGAAAGTTGGCGCGCAAGTACCACCCGGACGTGAGCAAAGAGAAGGACGCCGAAACCAAGTTCAAGGACGTCTCCGAAGCCTATGAGGCGTTGAAAAGCGCCGACAAGCGTGCCGAGTACGACGACCTGCGCCGTTATGGTCAGCACGGACAGCCATTCCAGGGACCGCCGGGTTGGCAGAGCCGTGGCGGTTTTGGTGGCCAGGATACGGGTGACTTCTCGGACTTCTTCAGTTCGATCTTTGGCAATCGCGGGCCGGGTTTCGGTGGCCGTCAATCGGGTCGCAGCGCCGGCCGTCGGGGGCAAGACGTGGAAATGGAATTACCGATCTTCCTGGAAGAAACCCTGTCGAACGAGTCGAAGAAGGTCAGTTTCCAGGTGCCGCAATACAACGCGGCGGGCCAGCACGTGAGCAATACCAGCAAGAGCCTGAACGTGAAAATCCCGCTGGGCGTGACCGATGGCGAGCGCATCCGCCTCAAGGGCCAGGGCGCGCCCGGCATCGGCGGTGGCGCCAATGGCGACTTGTACCTGACCATTCGTTTCGCCCCGCACCCCAAGTTCGACGTCGAAGGCCAGGACCTGATCATCACCTTGCCCCTGGCGCCGTGGGAATTGGCCCTGGGGACCGAGGTGGCGGTGCCGACCCTCACCGGCAAGATCAACCTCAAGGTGCCGGCAGGCAGCCAGAACGGCCAGCGCATGCGCGCCAAGGGCCACGGCCTGCGCAACAAGGCCGGCGAGCGCGGCTACCTGTTCGTACAGCTCAAGGCCGTGATGCCCAAGGCCAGCGATGAATCGGTCAAGGCGTTGTGGGCCGAGTTGGCGAAGAAAGCTGCGTTCGATCCTCGGGAGCACTTCTGA	MLKMDFKDYYKILGVEPTADDATIKAAYRKLARKYHPDVSKEKDAETKFKDVSEAYEALKSADKRAEYDDLRRYGQHGQPFQGPPGWQSRGGFGGQDTGDFSDFFSSIFGNRGPGFGGRQSGRSAGRRGQDVEMELPIFLEETLSNESKKVSFQVPQYNAAGQHVSNTSKSLNVKIPLGVTDGERIRLKGQGAPGIGGGANGDLYLTIRFAPHPKFDVEGQDLIITLPLAPWELALGTEVAVPTLTGKINLKVPAGSQNGQRMRAKGHGLRNKAGERGYLFVQLKAVMPKASDESVKALWAELAKKAAFDPREHF	PGPT0014545_6230	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014545-dnaJ-K03686	NA	NA
D1-36_00591	300	cbpM		Chaperone modulatory protein CbpM	ATGAACGACCCGATCATCGAACTGAACCTGATGGAATTCTGTGAAGCCGCTGCGTTGGCGGATGTCCACGTGATTGAAATCGTCGAGCACGGCATCCTCGAGCCCCACGGCGCGGCCCCGACCGATTGGCGTTTCACCGATTACGAACTGGTCCTGGCCCGCCGGGCCGCCAAGCTGCGCCGTGAGTTGGAACTGGAATGGGAAGGTGTCGCGCTGGCGCTGGATCTGTTGGAGGAGGTCCAGCAGTTGCGATCCGAGAACCGTCGGCTGCGCCAGCAACTGGGCCGTTGGGTGGAGTAG	MNDPIIELNLMEFCEAAALADVHVIEIVEHGILEPHGAAPTDWRFTDYELVLARRAAKLRRELELEWEGVALALDLLEEVQQLRSENRRLRQQLGRWVE				NA	NA	NA	NA	NA
D1-36_00592	5055			hypothetical protein	ATGCCATTACCTATTTCTGCCGTTAGCGACCCCGGCATGACGCCGCTGCCTGAAAATCGCGGCGTCCATGTCGACCTGCTCAGGCAGCGCGTTCCCGATTGGTACATCGGGGCCGTCATGCGGCGCCAGCAGGCGTTGAGCGACCACGACCTGAAACTCCCGGCCTGGTACCCCAAGACCTCCCACGAAACCCGGACCCGCCTCAAGGACCAGCATGCGCGCTACCGCGCCAGCCTGAACCTGATCGACAACAGCTTGGGCCGCATCGAGGATATCCGCGCCTTTGCCAAGCCGTTGCTGACCCAGGCCATCCAGCAGGAATTCAAGCGAACCCTGGATGTGGAGAAGGTTTATTACGCCCGCCAGTACGCCAGCAAGACACGCAAGGACCTGGGCAGCACGCTGCTTCACCGCCTGACGGGCGAGGCCTGGGATACCTACGAGTACCGAGGTGCTTCGCTGCTGGAAACGGCACTGGCGAACTTCGAACCCGACGAAGAGCAAAAGCTCGATTGCGATGGCTGCCATGTCATCACCACCACGGCGCTGACCGTCAGCGGTACGCCTGCGCCTACGCTGGAGGCCGTTCGGGCGGGGGCGTTGCCAATCGCTCCGCACGCCTTTGCCAGACTATGCCGCAAGCTGGACCTGGGGCGCCGCTACCAGCAGCACATTCGCGCCATCGCTCGACCCGCTGACGAAGACGCCCGCCGCCGTCTGGACCAGCAAATGCGCGACCACCACCGTCAGTCGTTGGCGCTGAGTGTCGAAGTCGCCTGGGCCAAGGCCGACATCAGCCGTGACACGTACCTGATGCTGCGGCAAGTGGTCGGCGATCAGGACGGCGCCATGCTCGACGGGCGACCGGTGACGTTCACTTCGCTGAAAATCTTCGACACCGAACTGGTCGGCCCGGTACTGATGGGGCCCGACCGGGAAAATACCCGGCGCCTGGAGCGTGTGGTGGCGTATCTACCGGGCGATCCCGAGCATCCTCTCAAGGAGTATCCGTCCAGCACCGAATTCATGGTGGAACTGCGTCGGCGCCTCCATGGCATCGCCTACCGACAGTTTTTCAGCCGTTTCGTACCGCTGAGTCAGCAAGGGCATTTTTTCAAGCAGTTCGACCAGTTGTACCAACCCTCTCCCGAGGCCGATACCCAATCGGACTATCCGCTCAAGCCCTCGTTGAAAAATTTGCGCATGGCCGCATCGCCCATCACCGGCTCGCTGTGGGAAGCCTTGCGCCGCGAGCAACTGCAGAAAATCGAGATGGACGCGCGAACGGTGGCGGTGCCCACCGCCGATGAAGACAAAGCCGCCCGCCTGGCGCGCCTGGAGAGTTGGACGAACACGGTGATCGACGTGCTTAACCAATTGGCATTCGTGGTGCCTGCGTTGGGGCCACTGATGCTGACCGTGGCGGCCGTGCAGATGTTCGAAGAAGCGTTCGAAGGTATCGAGGCGTTCGAGCAAGGGGAAACCCAGGAGATGTGGGCGCACTTTTCCAGCGTGGCGCTCAATATCGCGTTTATCGTCGCAGGCGCCAAAGTGTTGCCGAAGATCCAGGCATCGGCCAGGGTGGATCGGTTGGAAGCGGTTGAACGGGCCAGCGGGGAGTCGCGACTCTGGAACCCTGATCTCACGCCGTACCGCAGTCCTTTGCGCCCACTCGCCGGCGCCGTCCCGGACAGTCTAGGGCTGTACGAGGTCAGTGGCCGCAAGGTCCTGCCATTGGACGGGCACCACTACGAAGTACAACAGGACCCGATTACCCACCGCTATCGCATCCGTCATCCTTCCCGGCCGGATGCCTACCAGCCCAAGCTGACGCACAACGGCAGCGGCGCCTGGAACCATGAACTCGAAAGACCACAGGGTTGGAAAGGCACAACCCTGATGCGCAGGCTGGGCCATCGGGTCGAGGATTTCAGCGACAGCGAACTGGAGCAGATCCGCATCGCCAGTGGCACCAGCGAGGACGTGTTGCGACGCATGCATGTGGAAGGCGAGCCGATGCCCGCATTGCTGGCCGATACGGTCAAGCGCTTTGACTTGGCGCGACAAGTCGACAATTTTATCGGGCAACTGCAAAGCGACGATTCGCTGCGACAGGACGAAGCCGATCCAGTGACGCAGTTGCACTTGCTTGCCGGTTATGGCCCCTGGCCAAGCGGGCTGAGATTGAAGGTGGTGGACGGGGCGGGCAAGACGCTCTGGCGGTATGTTCGTCCATCCCAGGGCTCGGCTCCGGTGAGTGATGTGATCATTCCCGAGGCAAAGGTGCGTACCTCTTCGGTGCTGAAGAATCTGATCGAGGCGGTGGACGCGACCGGGAAGGATCTGCTGGCCGACACCCGTCCGGCGATAGCGAAAACGAACATGGATGCTCGGATTCGCCAGCTCAGGAACAACCTCGCGGAAGTGGCGCGGCGTGAAAAAGTCCAGCTGCTCAATGATTACTACGCCAGGAGCCAAGAGCCAGTCGACCCTCGGGTGGCGTTGATCAAATCCCGCTTCCCATCGGTGCCGGCCGCGGCCATCGAGCAGATGATCACCGATGCCAACCGTGGGGAGCTTCAGCAGATGGCCGCGTGGAATGACGCCGATCCCACCCAGACCAAGCCGATTCCGCTGCGCATCGCCGAGGAACTGCGTCATTGTCAGCGAACGGTGCGTTTGAACCGGGCCTATGAAGGCCTGTACCAGCCTGCGTTGGCGACCGCGGACACGCCCCGATTGGCGCTGGCAACGCTCAAGACCCTGCCCGGCTGGAGCGACACGGTGCGTATCGAACTGCGAGACGATCATGCCTCCGGCGCCTTGGTCGACAGCATCGGGCCGCTGGAGGCGGCGCAGACCAAGATCGTGGTCAGGGACGGTGCTCGCTACCAGGCCCTTGATGACCGGGGCAATGAATTGAGCCATTGGGGCAGCGTCTTCGACGCGTTGCAACACGCCCTGCCGGACGCCGAGCGCCAGGCCATGGGGCGCCCTTCGATCCACCAGGGCGGCCTGCTGGAAAAGGCCCTCGGGAAAGCGCCAGTGCCGCGCAATTCGTTGGCGCGAATCTTGAACTTGCCCGCCATCAAGCCATCGTTCCGCTCACCGATGCGCCTGGCGTCGGGCGCGGTGGGATACCCGCTGAGCGGGCTGCGAGCCTTGTTGGGGCTGGGGCGTTCGGTGGAAAGTCGCGTTCTGGAGTTGTACCCCAACCATACGAACGAACAGGTCCGGGCGTTGCTGGCTTCATTGGGCGACGGCGCCGTGGCGGAGCTCAAGCGACGCAAGATCGAGCTGGACATGCTGGATCGGGACCTCGACCGTTGGGCTAATACGACCAGTTGGATTTATTCGGGCGACCGCATGGAGCAGGTGCCACCCGTGCGCAAGCGCGGGGTGGCCGATCAGATCAAGCGTTGCTGGAGGCGCCAGACCGCCGTGGTGACAGCCGCGGATGGCCGCGCGGCGGGCTATCAGCTCGATCTGGGCCGGCTGACAGTCGGTTACCTGCCGGAGCTGTCGGCGGATTTCAGCCACGTGGCCTCGCTGAAAATGGCAGGCATGGACCTGTCACAACAGGCCTGCGAAGGTTTTCTCTCCGGTTTTTCCTCTCTTCGCTGGCTGGACATGACTGACAACCGCCTGGCCCAAATTCCCGCGGCCTTGGGGGCAATGGATGGCCTGACCAAGCTGCTGCTCAAGGACAACACCATTACTCTGACCCCTCGTTGTGTTGAAGTCCTGCAGGGTCTTACCCGACTGAAGGTCCTCAATCTGGAAAACAACCCCGTGGGGCAGCTGCCGGATTTCAGTCGAATGTCCGATTTGCGCGGCCTGGGCCTCAAGGGCACCGGAATCGACACCTGGCCCGCCGGCCTGCACGGCTTGCCGCTGGAGTTCGTCGATTTGCGCGACAACCAGTTGACCGACGTTCCGGAGGCGCTGCTCAACCCGGCGGCGGCTGACGTCCTTGCCACGGCCCGCGTCAACGGCGTGACTTTCCTCCAAGGCAATCCATTGAACGCAGCGACCCAGCAGCGCCTGCATGATTACTGGGCGGACCTGTGGCGTGAGCATCCCGAGTGGATAACGTTGCGTCAACACGGGGCGTTTGGTCATGTCGCGGTGGGAACGGCGGCCAATGTGCAGCAGTGGGTGCAGAATTTGCCCGACAGCCAATTACCCAACAAACGCGCGTTGTGGCAAAGCCTGGCGAGTGAACCGCAATCGGGTGAGTTCTTCGAGCTGTTGAATCGCCTGGCCACCTCCTATCAAGGCGAAGAAAGCTACTCGGACCTGCAGTTGCGTGTCTGGCAAATGCTGGAAGCGGCCGAGGCTTCCACCGACCTGCGTCGTGAGTTGTTCGAACTGGCGGGGGCTCCGGCGTGTGAGGACCGCGCAGCGTTATCGTTCAGCTACCTGGAAATCAGATTGATGATTCACGACGCCAAGGCCACGGCCAATGGCGAGGCTGAGGCCGGGACGTTGATCAAATTGGCCAAGGGATTGTTTCGCATCGATGAAGTGGAGCGCATCGCTCTGGAGGACATTCAGCGACGGCGTGACGCCATCACGGCCCGCCGGGACCTGTCGGCCGAGCAGAAGGCCCGGCACCTGGCAGAGATAGAGGAAGTCGAAGTGCGCCTCGCCTACCGGGTGGGGCTGAGGGATCGGCTGGCGTTACCGGGGCAGCCGAAAGGCGGGCGTTTTGTCCACCTGGGCAACGTCACCCAGGACATGCTGGATGCAGCCGCTACCCAGGTCCTGGCCCTGGACGATTCACCTCGGCAGGTGCAATCGCTGCTGGAGCGTGAATTCTGGATCGACTTTTTGAAACAGCAGCATGAAGCCGCGTTCCAGGCGCTGACCGACACCCTTATCACCGACCAGCTTGCATTGGATGAGGCCAAGGCAGCCGGAACCCTGGAGGAGGCTGACTATGGGACCAAGTCCGAGGCACTGGGCCTGCAGCACAGCGTCAAGGAAGCGGAGCTGATCCAGTCATTGACCGAGGAAGAGCTGGACGCGCAGGTGCAAAGTACTGATCTGTAA	MPLPISAVSDPGMTPLPENRGVHVDLLRQRVPDWYIGAVMRRQQALSDHDLKLPAWYPKTSHETRTRLKDQHARYRASLNLIDNSLGRIEDIRAFAKPLLTQAIQQEFKRTLDVEKVYYARQYASKTRKDLGSTLLHRLTGEAWDTYEYRGASLLETALANFEPDEEQKLDCDGCHVITTTALTVSGTPAPTLEAVRAGALPIAPHAFARLCRKLDLGRRYQQHIRAIARPADEDARRRLDQQMRDHHRQSLALSVEVAWAKADISRDTYLMLRQVVGDQDGAMLDGRPVTFTSLKIFDTELVGPVLMGPDRENTRRLERVVAYLPGDPEHPLKEYPSSTEFMVELRRRLHGIAYRQFFSRFVPLSQQGHFFKQFDQLYQPSPEADTQSDYPLKPSLKNLRMAASPITGSLWEALRREQLQKIEMDARTVAVPTADEDKAARLARLESWTNTVIDVLNQLAFVVPALGPLMLTVAAVQMFEEAFEGIEAFEQGETQEMWAHFSSVALNIAFIVAGAKVLPKIQASARVDRLEAVERASGESRLWNPDLTPYRSPLRPLAGAVPDSLGLYEVSGRKVLPLDGHHYEVQQDPITHRYRIRHPSRPDAYQPKLTHNGSGAWNHELERPQGWKGTTLMRRLGHRVEDFSDSELEQIRIASGTSEDVLRRMHVEGEPMPALLADTVKRFDLARQVDNFIGQLQSDDSLRQDEADPVTQLHLLAGYGPWPSGLRLKVVDGAGKTLWRYVRPSQGSAPVSDVIIPEAKVRTSSVLKNLIEAVDATGKDLLADTRPAIAKTNMDARIRQLRNNLAEVARREKVQLLNDYYARSQEPVDPRVALIKSRFPSVPAAAIEQMITDANRGELQQMAAWNDADPTQTKPIPLRIAEELRHCQRTVRLNRAYEGLYQPALATADTPRLALATLKTLPGWSDTVRIELRDDHASGALVDSIGPLEAAQTKIVVRDGARYQALDDRGNELSHWGSVFDALQHALPDAERQAMGRPSIHQGGLLEKALGKAPVPRNSLARILNLPAIKPSFRSPMRLASGAVGYPLSGLRALLGLGRSVESRVLELYPNHTNEQVRALLASLGDGAVAELKRRKIELDMLDRDLDRWANTTSWIYSGDRMEQVPPVRKRGVADQIKRCWRRQTAVVTAADGRAAGYQLDLGRLTVGYLPELSADFSHVASLKMAGMDLSQQACEGFLSGFSSLRWLDMTDNRLAQIPAALGAMDGLTKLLLKDNTITLTPRCVEVLQGLTRLKVLNLENNPVGQLPDFSRMSDLRGLGLKGTGIDTWPAGLHGLPLEFVDLRDNQLTDVPEALLNPAAADVLATARVNGVTFLQGNPLNAATQQRLHDYWADLWREHPEWITLRQHGAFGHVAVGTAANVQQWVQNLPDSQLPNKRALWQSLASEPQSGEFFELLNRLATSYQGEESYSDLQLRVWQMLEAAEASTDLRRELFELAGAPACEDRAALSFSYLEIRLMIHDAKATANGEAEAGTLIKLAKGLFRIDEVERIALEDIQRRRDAITARRDLSAEQKARHLAEIEEVEVRLAYRVGLRDRLALPGQPKGGRFVHLGNVTQDMLDAAATQVLALDDSPRQVQSLLEREFWIDFLKQQHEAAFQALTDTLITDQLALDEAKAAGTLEEADYGTKSEALGLQHSVKEAELIQSLTEEELDAQVQSTDL				NA	NA	NA	NA	NA
D1-36_00593	5058			hypothetical protein	ATGCCAGAGCCTACCGTTGCAAAAAGCGCCACGACTTCACCCGCTTCGAAACACGGCGAGCACGACGATCTGCTCAGAAGTCGCATTTCCTCCTGCTACATGAAAGCCACCGCGCAGCGCCAGAAGGCGCTGAGCGATCATGACCTGGAGCTTCCAGACTGGTACGTGAAGACGACCCACCAGACCAGGGCCAACCTAAAAAGCATTCACGAGCGCTACTGCGCAATTTTCAACCAGGTCGACTACGCGCTGGGCAAGGTCCAGGACATACGGACCTTCGCCGAACCCTTGCTCAGCCAGGCCATCCAGACAACCTTCAGGCGTACGCTCAATGTCCGGGAGGTTTATTTTGCCCGCAAGTTCGCGGTCAAGACGCGTACCGACATGGGTATCAACTTGCTCCATCGACTGACGGGCGAGGGCTACGACACTTACCAATACCGGGGCGGTTCGTTATTGGACGTCGCGCTGGCCAATTTCGAACCCGATGAAGAGCACAAGCTCGACTGCGATGATTGCCACCTCATTACCACCACGCCGGTGTCCGCCGATGGCACCTTGAGTCATACCCTGGAATCCGTGCGCGCGGGAGCATTGCCCATAGCCCCCGAGGCGTTCATCAAGCTATGCCGCAAGCTCGACCTGGGACGCAAGTATCGGGAACACCTCACGACGATCCTGGAACCGAACGACCGCCAGGCCCGCGAACGGTTGGATGAACAGTTGCGCGAGCATCACAAGCAACTCCTCACGATCAGTACCGAGATCGCCCACGCCAAGGCGGACATCCGGCAGGACACCTACCGAATGTTGCAGCGGGTAGTGGGTGGGCAGCCCTCGGCCGAGCTGGACGGCCGCGCGGTGACCTTCGCGACGTTGACGGTCCTTGACGTCGAGCTTGTCGGGCCTTTGCTGATCGGACCGGAGCGCGACCGCAGTACCCGGTTGGAGCGGGTCGTGGCGTATATCCCGGACGACCCCGAGCACCCGGTGAAGGAATACGCCTCCAGCTACGAATTCATGGTCGAACTGCGTCGCCGCCTCCACAACCTCGACTACCGGCGCTTCTTCAGCCGCTTCGTGCCGCTGCATGAGCAAGGGCATTTCTTCGAGCGTTTCAACCGTCTCTTCAAACCCTCTTCGCAAACCGATGCCAAAGGCGACTTCCCCCTCAAGTCGAACCTGCCCAGGCTGCCGATGAGCGCGTCCGACCTCAAGGGTTTCTTGTGGGAGACGCTACGGGTAAATCAGGTCCGCAAGATTTACCAAGACGCACGGGTCGCGGCAGTTCCTACAGGGGATGAAGACAAGAAGGCGCGTCAGGCGCGCCTGGAAAGTTGGGAAAGCACGGTCATCGATGTGCTCAACATGGCGGCGTTCGTTGTTCCCGGGCTCGGTCAGGTGATGATGGCGGTGTGGGCGTTGCAGATGCTGTACGAGGCGTTCGAAGGCATCGAGGCGTTCGAGCAGGGCGAAACCAAGGAAATATGGGCGCACGTTTCCAGCCTGGCGCTTAACGCCGCGTTCATGGTGGCAGGCGCCAAAGTGCTCCCGCGCATCATGCCATCGGCTACGGTGGATCAACTGGCGCCCGTCACTTCGCCGACTGGCGAAAGACGGCTCTGGCGACCCGACCTGGCGCCTTACCGGAGCGATCTGGAGCCGCCCGCGAATTCGCAACCCGATGCCCTGGGCTTGTACCGCGTCAACGGTCGCGACGTCTTGCCATTGGACGACAGTCACTACGAAGTCCAGCAAGACCCGGCCACCCAACGTTATCGCATTCGCCATCCTTCCCGACCGGATGCCTATCAGCCCGAGCTGACAAACAACGGCAGCGGTGCCTGGAACCATGAGCTGGAACAGCCGCGAAGCTGGGACGGTGCGACCCTGATGCGCCGGCTCGGCCACCGCGTCAAGGATTTCAGCGATGCCGAGCTCGAGCACATTCGTACCGCCAGTGGCACCAGCGAGGACGTGCTGCGGCGCATGCACGCCGAGGGCGAGCCGGTGCCGGTGTTGCTGGACGACACGATCAGGCGCTTCGACATCGCTCGCAAGGTCGATGCTTTCCTGCTGCACATGCAAAGCGAAGATCCGCTGATCTATGAGAAAGCCGATTCGATGACGCAGCTGCACTTGCTCACGGGTTACGGCCCATGGCCAGAAAACTTGAAGCTGAAGGTGATCGACAGCGCGGGCAAGTCTCTGTGGGAATACGCTCACCCAACGGATGGAACGTCCATGATCCGTGAAGTCATCGTCAGCGATACGGAAGTGGATTCATCTTCATTCCCCAGGAACCTGATCGAGGCCGTGGATGCGACGGGCAATGATCTGTTGGCCGGCACGCGGCCGGCCATCGCGAAAACCGACATGAACGCCCGGATCCAACAGTTTCGCAAGAATCTCCTTGAAGTGGCGGTGCGTGAGAAAAACCAACTGATCCATGATCACTACGCCAAGGGCGATGTGTCGAAAGACCCGCGGGTCAAGCTGATCAAATCCCGTTTTCCTTCGGTTCCGGCGGCCGCCATCGAGCAGATAATGGCCCACGCCAGTCCCGGCGAAACCCGGCAAATGGCCGGATGGGATTACACCGATGCGACCCAGACCAAACCCATCCCGCTGCGCATCGCCGAAGAGCTGCGTCACTTCCAGCGGGCGATCCGCTTGAACCGGGCCTACGAAGGGTTATACCAAGAGAGCCTGGCCACGGCGGATACACCCCGCCTGGCGCTGGCGACCCTCAAGACCCTGGCGGGTTGGAGCGATACGGTACGCATCGAACTGAGGGAGGATTTCACCTCGGGCAGATTGATTGACAGTGTCGGGCCGTCGGATTCGACGCAGGTCAAGATCGTGGTCAAGCGTGACGATCTCTATCAAGCCCATGACGACAGCGGCAACGACCTGAGCAGCGAGGGCAGCCTCTATGCGGCCTTGCAGCACGCGCTGCCGGATGCCGAACGCCAGGCCATGGGCCGCCCCTCGATTCATCATGGCGCGTTGCTGAAGACGGCTATCGGCGCGGCGCCGGTGAGGCGGGGCTCATTGGCAAAGGTCTTGAAGATGCCGGCAGCCAAACCGTTGCTCGTGTCGCCAATGCGCCTGGCCTCGGGCAGATACGGCTATCCATTAGGCGGGCCGCTGGAATGGCTGCGCCTGGGCCGTTCGCCTGAAAGACGGGTGCGAGAGTTGTTTCCCGATTATTCGTCCCAGGAAGCCCGGGTCTTCGTGCGGGAACTGGGCGACAGAGCGGCCGCGGAGATCGGTCGCCTTGAAACCGAGTACCGTACGTTGCGCGATGAGCTGGACCGTTGGGTCGCTTCCACCGAGGCGGATGAAGGGAACGACGATTTATCGGCGTCATGGCGACGAGTCAAGCAAATCACCGCCGATCGTATCCGTAAATGCTGGAGACGCCAGTCCCGGGCCATCATCGTGGTCGACGGCCGGCGTGTCGGGTATGAGCTTGATTTGAGCTGGATGCATCTGAGGTCGTTGCCGCAACTGTCGGCTGATTTCAGTCACGTGACCTTCCTGAAACTTTATAACATGGGTTTGTCGCAACAAACCTGCAACGGTTTCCTCACGCGTTTTCCTGCCCTTCGTTGGCTGGACATGAGCCATAACAACCTGACCGAAGTGCCGGAGGCGTTGGCGGCAATGCCCCGTCTGAGCAACCTCACGCTGGCATCGAACCAGATCGGCCTGACGCCGCGAGGTGTTGAGATCCTGGCCGGCCTGCCCGCCATGGAATTCCTTACCCTCAGCGACAATCCACTGGGTCGTTTGCCGGACTTCAGCACCATGCCGGCCCTGACGGAGCTGTCGCTTCGAAATACCAGGATCGACACCTGGCCCACGGGCCTGCTGGAACAGCCGCTGGAGGAACTGGACTTGCGCGCCAACCAACTGACCGAAGTGCCGGCACACGTGATCGATCCGCCCGCCGACCAGGCCCACGCCACGGCCCGGCTCAATGGCGTGACCTTTATCCAGGGCAATCCGATGAGCGAGGCGACTGGGCAGCGCTTGCGGGAATATTGGGCGAATCTTCAGCAGGCCCATCCCGAATGGGTCGCGCCGCGCAGGCCAGGAACACTCCAGCTGGCGGCCAACGCTGTGGTGGGCATGCGGCCAGACGTGCGGCCATGGCTGCGTGATCTGCCGTCCGAACAACGGGAGGATAAAAAGGCCCTGTGGCAGAGCCTGCAGGCAGATCCGTTATCCGGGGAGTTCTTCCAGTTGCTGAGTCGGTTGATCGGGTCCTATCAGGACGTGGCTGACTATTCGGACCTGCAGGCCCGCGTCTGGCAGATGCTGGAGGCTGCCAGGGATTCCACTGAATTGCGTCGTGAGCTGTTCGAACTGGCCGGCGAGCCGGCCTGTGAAGATCGGGCTTCGTTGTCATTCAGCAACCTGGAAATAAAGATGATGATCCACAACGCCAAGGCCCTGTCGGTGGAAGGGGATGAGGCTGCCACGCTGATTCGCTTGGCCAAGGGATTATTCCGGCTGGATGAAGTGGAGCGGATTGCCCTGCGGGACATCCAGGGGCGCCGTGATGCAATCAACGGCCGTGAGGGGCTCACAGCCGCGCAAAAGACCGAGCTGATCAGGCTGATCGAAGAAGTCGAGGTCCGCTTGGCCTATCGTACGGGGCTCAGGGATCGGCTGGAGCTGCCGGGGCAACCGGGAGGGGGACGCTTCACCAACCTGGGGAACGTTTCCAGCGCCATGCTCGATGCCGCTGCCGCCGAGGTCCTGGCCCTGGACGGCTCGCCCCAAGAGATGCAGTCACTGGTGGGCCGTGATTTCTGGATCGACTACTTGAAGCAGCAGCATGCGGCAGATTTCCAGGCGTTGACCTACGCCCTCACTGAGGACCTGCTGGCGCTGGATGAGCAGAAAGCGGACGGAACCCTGGAGGAGGCTGACTATGCCAACCAATCCGAGGCGCTGGGCCTGCAACACAGGGTCAAGGAAGCGGAATTGATCCAGTCGTTGACCCAGCAGGCGTTGGATGCGCCTCAGGACAGTACAGACCTGTAA	MPEPTVAKSATTSPASKHGEHDDLLRSRISSCYMKATAQRQKALSDHDLELPDWYVKTTHQTRANLKSIHERYCAIFNQVDYALGKVQDIRTFAEPLLSQAIQTTFRRTLNVREVYFARKFAVKTRTDMGINLLHRLTGEGYDTYQYRGGSLLDVALANFEPDEEHKLDCDDCHLITTTPVSADGTLSHTLESVRAGALPIAPEAFIKLCRKLDLGRKYREHLTTILEPNDRQARERLDEQLREHHKQLLTISTEIAHAKADIRQDTYRMLQRVVGGQPSAELDGRAVTFATLTVLDVELVGPLLIGPERDRSTRLERVVAYIPDDPEHPVKEYASSYEFMVELRRRLHNLDYRRFFSRFVPLHEQGHFFERFNRLFKPSSQTDAKGDFPLKSNLPRLPMSASDLKGFLWETLRVNQVRKIYQDARVAAVPTGDEDKKARQARLESWESTVIDVLNMAAFVVPGLGQVMMAVWALQMLYEAFEGIEAFEQGETKEIWAHVSSLALNAAFMVAGAKVLPRIMPSATVDQLAPVTSPTGERRLWRPDLAPYRSDLEPPANSQPDALGLYRVNGRDVLPLDDSHYEVQQDPATQRYRIRHPSRPDAYQPELTNNGSGAWNHELEQPRSWDGATLMRRLGHRVKDFSDAELEHIRTASGTSEDVLRRMHAEGEPVPVLLDDTIRRFDIARKVDAFLLHMQSEDPLIYEKADSMTQLHLLTGYGPWPENLKLKVIDSAGKSLWEYAHPTDGTSMIREVIVSDTEVDSSSFPRNLIEAVDATGNDLLAGTRPAIAKTDMNARIQQFRKNLLEVAVREKNQLIHDHYAKGDVSKDPRVKLIKSRFPSVPAAAIEQIMAHASPGETRQMAGWDYTDATQTKPIPLRIAEELRHFQRAIRLNRAYEGLYQESLATADTPRLALATLKTLAGWSDTVRIELREDFTSGRLIDSVGPSDSTQVKIVVKRDDLYQAHDDSGNDLSSEGSLYAALQHALPDAERQAMGRPSIHHGALLKTAIGAAPVRRGSLAKVLKMPAAKPLLVSPMRLASGRYGYPLGGPLEWLRLGRSPERRVRELFPDYSSQEARVFVRELGDRAAAEIGRLETEYRTLRDELDRWVASTEADEGNDDLSASWRRVKQITADRIRKCWRRQSRAIIVVDGRRVGYELDLSWMHLRSLPQLSADFSHVTFLKLYNMGLSQQTCNGFLTRFPALRWLDMSHNNLTEVPEALAAMPRLSNLTLASNQIGLTPRGVEILAGLPAMEFLTLSDNPLGRLPDFSTMPALTELSLRNTRIDTWPTGLLEQPLEELDLRANQLTEVPAHVIDPPADQAHATARLNGVTFIQGNPMSEATGQRLREYWANLQQAHPEWVAPRRPGTLQLAANAVVGMRPDVRPWLRDLPSEQREDKKALWQSLQADPLSGEFFQLLSRLIGSYQDVADYSDLQARVWQMLEAARDSTELRRELFELAGEPACEDRASLSFSNLEIKMMIHNAKALSVEGDEAATLIRLAKGLFRLDEVERIALRDIQGRRDAINGREGLTAAQKTELIRLIEEVEVRLAYRTGLRDRLELPGQPGGGRFTNLGNVSSAMLDAAAAEVLALDGSPQEMQSLVGRDFWIDYLKQQHAADFQALTYALTEDLLALDEQKADGTLEEADYANQSEALGLQHRVKEAELIQSLTQQALDAPQDSTDL				NA	NA	NA	NA	NA
D1-36_00594	1701	ureC		Urease subunit alpha	ATGAAGATTTCGAGACAAGCCTACGCCGACATGTTCGGCCCCACCGTCGGCGACAAGGTCCGCCTGGCCGACACCGAGCTGTGGATCGAGGTGGAAAAGGATTTCACCACCTACGGCGAAGAGGTGAAATTCGGCGGCGGCAAGGTGATTCGCGATGGCATGGGCCAGAGCCAGCTGTTGGCTGCCGAGGTCGTCGACACGCTGATCACCAACGCGCTGATCATCGACCACTGGGGCATCGTCAAGGCCGACGTCGGCCTCAAAGAGGGACGCATCGCGGCCATCGGCAAGGCCGGCAACCCGGACATCCAGCCCGACGTCACCATCGCCATCGGCGCCAGCACCGAAGTGATTGCCGGCGAAGGCATGATCCTCACCGCTGGTGGCATCGACACCCACATCCACTTCATCTGCCCGCAGCAGATCGAAGAAGCCCTGATGAGCGGCGTCACCACCATGATCGGCGGCGGCACGGGCCCGGCCACCGGGACCAACGCCACCACCTGCACCTCCGGGCCGTGGCACCTGGCGCGCATGCTGCAGGCCGCCGATGCCTTCCCGATGAACATGGGCTTCACCGGCAAGGGCAACGCCAGTCTGCCGGAACCGCTGGTCGAACAGGTCAAGGCCGGCGCCATCGGCCTGAAGCTGCACGAAGACTGGGGCACCACCCCGGCGGCCATCGACAACTGCCTCAGCGTGGCCGACCAGTACGACGTGCAGGTCGCGATCCACACCGACACCCTCAACGAGTCCGGTTTCGTCGAGACCACCCTGGCCGCGTTCAAGGGCCGCACCATCCACACCTACCACACCGAAGGCGCCGGTGGCGGCCATGCGCCGGACATCATCAAGGCCTGCGGTTTCCCCAACGTGCTGCCCAGCTCCACCAACCCGACCCGGCCGTTCACCCGCAACACCATCGACGAACACTTGGACATGCTGATGGTCTGCCACCACCTGGACCCGAGCATTGCCGAGGACGTGGCGTTCGCCGAAAGCCGCATCCGTCGCGAGACCATCGCCGCCGAAGACATCCTCCACGACCTCGGCGCCTTCTCCATGATCAGCTCCGACAGCCAGGCCATGGGCCGCGTTGGCGAAGTGATCACGCGCACCTGGCAGACCGCCGACAAGATGAAAAAGCAACGCGGCGCCCTGCCCGGCGACGGCGAAGGCAACGACAACTTCCGCATCAAGCGCTACATCGCCAAGTACACCATCAACCCGGCGATCACCCACGGCATCAGCCACGAAGTGGGTTCCATCGAAGTGGGCAAATGGGCCGACCTGGTGCTGTGGCGCCCGGCATTCTTCGGCGTCAAGCCGACGCTGATTCTCAAGGGCGGAGCGATTGCCGCCAGCCTGATGGGGGACGCCAACGCCTCGATCCCGACGCCGCAGCCGGTGCATTACCGGCCGATGTTCGCCAGCTACGGCGGCTCGCGACACGCCACCAGCCTGACCTTCATCAGCCAGGCCGCCGCCGAGGCCGGGCTGCCGGAACAGCTTGGGCTCAAGAAAAGAATCGCCGTGGTCAAAGGCTGCCGCAACGTGCAGAAAACCGACCTGATCCACAACGACTACCTGCCGAGTATCGACGTCGACCCGCAGACCTATCAGGTCAAGGCCGACGGCGTGCTGCTGTGGTGTGAACCGGCCGACGTGTTGCCGATGGCGCAGCGCTATTTCCTGTTCTGA	MKISRQAYADMFGPTVGDKVRLADTELWIEVEKDFTTYGEEVKFGGGKVIRDGMGQSQLLAAEVVDTLITNALIIDHWGIVKADVGLKEGRIAAIGKAGNPDIQPDVTIAIGASTEVIAGEGMILTAGGIDTHIHFICPQQIEEALMSGVTTMIGGGTGPATGTNATTCTSGPWHLARMLQAADAFPMNMGFTGKGNASLPEPLVEQVKAGAIGLKLHEDWGTTPAAIDNCLSVADQYDVQVAIHTDTLNESGFVETTLAAFKGRTIHTYHTEGAGGGHAPDIIKACGFPNVLPSSTNPTRPFTRNTIDEHLDMLMVCHHLDPSIAEDVAFAESRIRRETIAAEDILHDLGAFSMISSDSQAMGRVGEVITRTWQTADKMKKQRGALPGDGEGNDNFRIKRYIAKYTINPAITHGISHEVGSIEVGKWADLVLWRPAFFGVKPTLILKGGAIAASLMGDANASIPTPQPVHYRPMFASYGGSRHATSLTFISQAAAEAGLPEQLGLKKRIAVVKGCRNVQKTDLIHNDYLPSIDVDPQTYQVKADGVLLWCEPADVLPMAQRYFLF	PGPT0000965_1980	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0000965-ureC-K01428	NA	NA
D1-36_00596	306	ureB		Urease subunit beta	ATGATTCCAGGCCAATACCAGGTTCAGCCCGGCGATATCGAGCTCAACGCCGGCCGCCGCACCGTGACGCTGAAGGTCGCCAACAGCGGCGACCGGCCGATCCAGGTCGGGTCGCATTTTCATTTTTTCGAGACCAACGACGCCCTGGCCTTCGACCGCGCCGCCAGCCGTGGCATGCGCCTGAACATACCGGCCGGCACCGCCGTGCGCTTCGAGCCGGGTCAGAGCCGAGAGGTGGAACTGGTGGACCTGGCCGGGCATCGCCGGGTGTTCGGGTTTGCCGGGCGGATCATGGGCGACCTTTAG	MIPGQYQVQPGDIELNAGRRTVTLKVANSGDRPIQVGSHFHFFETNDALAFDRAASRGMRLNIPAGTAVRFEPGQSREVELVDLAGHRRVFGFAGRIMGDL	PGPT0000960_1371	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0000960-ureB-K01429	NA	NA
D1-36_00597	534	ttr		Acetyltransferase	ATGAACGCCGCCCAGTTGCGTCGAATCCACGCTGAAAGCTTTGCGCATTATCGCCAGGGCCTGGTCGACCTGTTGCTCGACGCCGTGGGTCATGGCGCCAGCGTGGGGTTCATGGCCGACCTGGATGCCGTACAGGCCAGGGCTTATTTCGACGAAGTCCAGGCCAGCCTCAATCAGGGTCACCTGCTGTTGTGGGTGGTGGTCAAGGATGAACAGGTACAGGCCAGCGTCCAGCTCGCCCTGTGCCAGAAGCCCAACGGCCTCAACCGTGCCGAAGTACAAAAACTGCTGGTGCGCGGCGACGCTCGTCGCAGGGGCCTGGGCCAGCAATTGATGAGCGCCCTGGAGCTCGGCGCCCGTCAGCACAAGCGTGGGCTGCTGTACCTCGACACCGAGGCCGGTTCCGAAGCCGAGGCGTTCTACTGCGCCATGGGCTACACCCGCGTCGGAGAACTGCCCGACTACTGCCAGAGCCCGGACGGGACCTATACCCCGACCGCCATCTACTACAAGACTTTGGGACAACCGCAATGA	MNAAQLRRIHAESFAHYRQGLVDLLLDAVGHGASVGFMADLDAVQARAYFDEVQASLNQGHLLLWVVVKDEQVQASVQLALCQKPNGLNRAEVQKLLVRGDARRRGLGQQLMSALELGARQHKRGLLYLDTEAGSEAEAFYCAMGYTRVGELPDYCQSPDGTYTPTAIYYKTLGQPQ	PGPT0012925_89	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-TABTOXININE-BETA-LACTAM_RESISTANCE,PGPT0012925-ttr-K19113	NA	NA
D1-36_00598	534			L-methionine sulfoximine/L-methionine sulfone acetyltransferase	ATGACTTATCAGATCCGAGACGCCCAGCATCGCGACCTGCCGGCGATCCGCGACATCTACAACGATGCCGTGCTCAACACCACGGCGATCTGGAACGAGCAGCCCGTGGACCTGGGCAATCGCCAGGCTTGGTTCAGTGCCCGGCGCTCCCAGGGCTACCCGGTACGGGTGGTCATCGATGCCGAGGACAACGTGCTTGGGTATGCCTCGTTCGGCGACTGGCGGCCGTTCGACGGCTTCCGCCACACCGTCGAGCATTCGGTGTACGTCTGCCGGGACCAGCGCGGCAAGGGCCTTGGCCCTGTGCTGATGAGTGACCTGATCGAGCGCGCCCGGGCCTGCGGCAAGCACGTCATGGTTGCCGCTATCGAGAGCGGCAACGCGGCGTCGATTCGCCTCCATGAGCGGGCGGGTTTCGTCACCACCGGGCAGATGCCCCAGGTGGGCACCAAGTTCGGCCGTTGGCTGGACCTGACCTTCATGCAGTTGGTCCTCGACCCCGGGGCGCCACCGCCCGCCATGGACAAGGAGTGA	MTYQIRDAQHRDLPAIRDIYNDAVLNTTAIWNEQPVDLGNRQAWFSARRSQGYPVRVVIDAEDNVLGYASFGDWRPFDGFRHTVEHSVYVCRDQRGKGLGPVLMSDLIERARACGKHVMVAAIESGNAASIRLHERAGFVTTGQMPQVGTKFGRWLDLTFMQLVLDPGAPPPAMDKE				NA	NA	NA	NA	NA
D1-36_00599	303	ureA		Urease subunit gamma	ATGGACCTGACCCCACGCGAAAAAGACAAGCTGCTGATCTTCACCGCCGGCCTCGTCGCCGAGCGGCGACTGGCCCGGGGCTTGAAGCTCAATTACCCAGAGGCCATGGCCTACATTTCCGCCGCGTTGCTCGAAGGCGCCCGCGACGGCCAGACCGTGGCCGAGCTCATGCACTACGGCACCACCTTGCTGAGCCGCGAGCAGGTGATGGAAGGCATCCCGCAAATGATCCCGGAAATCCAGGTAGAGGCGACGTTTCCCGACGGCACCAAACTGGTCACCGTCCACCAACCCATCGTCTGA	MDLTPREKDKLLIFTAGLVAERRLARGLKLNYPEAMAYISAALLEGARDGQTVAELMHYGTTLLSREQVMEGIPQMIPEIQVEATFPDGTKLVTVHQPIV	PGPT0000955_339	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0000955-ureA-K01430	NA	NA
D1-36_00600	843	ureD		Urease accessory protein UreD	ATGAATCTACCTGTATCGCCATCCGCCCTGTTCACCCCCAGCTGGCACGCCGAGCTGGACTTGGGCTATGCCCGATTCGGTGATTGCACGCGCCCGGTCCAGCGCCGGCACAAAGGCCCGTTGCGGGTGCAGAAGCACTTGTACGCCGAAGGTCCCGAGGTGTGCCAGCACATCATCGTCCACCCGCCCGGCGGCATTGCCGGTGGGGATCGGTTGGACATTTCGGCCCAGGTCGGCCAGGGCGCCTGGGCGCAATTGACCAGCCCCGGCGCGGCCAAGTGGTACCGCGCCGCCGGCCCGGCGTACCAGCAACTGAGCCTGAGCGTGGCCCCCGGCGCGACCCTGGAATGGCTGCCCCAGGAAACCATCGTCTTCAGCGCGGCCCAGGCCGAACTCAGCACGAACATCGATCTGCAAGGCGACGCCCGCTTGTTCTACTGGGACATCGTTGCCCTCGGTCGGCCGGCCAGCGGCGAGCGGTTCGACGTGGGACACTTTCAATCGTGGCTGGACATCCGCCGCGACGGCCAGTTGCTCTGGCACGAGCGTCAGCGCATCGCCGGTGGCGATGGGTTGCTCGACTCCCCCATCGGCCTGGGCGGCGACCCGGTGTTAGCCACCTTGCTGGTGACCGGCGAGATCGACAGCGAGCTGCTGGAGCGCTGCCGCTCCCTGGACCATGCCGTGCGTGGCGACCTGACCCAACTGCCCGGCCTGGTCGTGGCACGCTGCCTGGCGAGCGAGGCATTGTTGGCGCGGGGGTGGTTGATTGAGTTGTGGCGCTTGCTCAGGCCTGCATTGCTTGGAAAAGAAGCCGTGCCACCAAGAATCTGGAGTACTTAG	MNLPVSPSALFTPSWHAELDLGYARFGDCTRPVQRRHKGPLRVQKHLYAEGPEVCQHIIVHPPGGIAGGDRLDISAQVGQGAWAQLTSPGAAKWYRAAGPAYQQLSLSVAPGATLEWLPQETIVFSAAQAELSTNIDLQGDARLFYWDIVALGRPASGERFDVGHFQSWLDIRRDGQLLWHERQRIAGGDGLLDSPIGLGGDPVLATLLVTGEIDSELLERCRSLDHAVRGDLTQLPGLVVARCLASEALLARGWLIELWRLLRPALLGKEAVPPRIWST	PGPT0000970_1108	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-UREA_USAGE	N-AQUISITION-UREA_METABOLISM,PGPT0000970-ureD-K03190	NA	NA
D1-36_00601	699	livF_2	COG0410	High-affinity branched-chain amino acid transport ATP-binding protein LivF	ATGCTGCAAGTCGACAAGCTGCACCAATACTACGGCGGTAGCCACATCCTGCGCGGCCTGTCGTTCGACGTGAAGGTCGGCGAGGTGACGTGCCTTCTCGGTCGCAACGGCGTGGGCAAGACCACCCTGCTCAAATGCTTGATGGGCCTGCTGCCGGCCAAGGAAGGCGTGGTGAATTGGGAAGGCAAGGCCATCACCACGTTCAAGCCGCATCAGCGGGTCCACGCCGGCATCGCCTATGTGCCGCAGGGCCGGGAAATTTTCGGGCGGCTGACGGTGGAAGAAAACCTGCTGATGGGCCTGTCGCGCTTTCCGGGCTCAGAAGCCAAGGAAGTACCGGCCTTCATCTACGAATTGTTCCCGGTGCTGCTGCAGATGAAACAACGCCGGGGTGGCGACCTGTCCGGCGGCCAGCAACAGCAGCTCGCCATCGGCCGGGCCCTGGCCAGTCGGCCGCGCCTGTTGATTCTCGATGAGCCCACGGAGGGCATCCAACCGTCGGTGATCAAGGAGATCGGCGCGGTGATCAAGAAACTCGCGGCCCGGGGCGACATGGCGATTTTGCTGGTGGAGCAGTTCTACGACTTCGCCGCCGAGCTGGCTGATCAGTACCTGGTGATGTCCCGGGGCGAGATCGTGCAGCAGGGCCGTGGAGAAAATATGGAAGCCGAGGGTGTGCGCGGATTGGTTACGATCTAG	MLQVDKLHQYYGGSHILRGLSFDVKVGEVTCLLGRNGVGKTTLLKCLMGLLPAKEGVVNWEGKAITTFKPHQRVHAGIAYVPQGREIFGRLTVEENLLMGLSRFPGSEAKEVPAFIYELFPVLLQMKQRRGGDLSGGQQQQLAIGRALASRPRLLILDEPTEGIQPSVIKEIGAVIKKLAARGDMAILLVEQFYDFAAELADQYLVMSRGEIVQQGRGENMEAEGVRGLVTI	PGPT0000945_654	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-UREA_USAGE	N-AQUISITION-UREA_TRANSPORT,PGPT0000945-urtE-K11963	NA	NA
D1-36_00602	873	lptB_1	COG1137	Lipopolysaccharide export system ATP-binding protein LptB	ATGAAAATCACACCGACAGCGGATTTCATGCTCGAACCGATTATTGAACCCCCTCTCGATGCCAATCGGGACCAAGGCAGCAGCCGCGACGCCATTGGCCTCGGCCGGGCCGCCGGCGTAGGCCTGAACACCCGCCACGGCACCATCCTGACCCTGGAAGACATCAGCGTCAGCTTCGACGGATTCAAGGCGCTGAACGACCTGAACCTGTACATCGGCGTCGGCGAACTGCGCTGCATCATCGGCCCCAACGGCGCCGGCAAGACCACCCTGATGGATGTCATCACCGGCAAGACCCGTCCCAGCCACGGCAAGGCCTGGTTCGGCGAAACCCTTGACCTGACGACCATGAGCGAAGTCGAGATTGCCCAGGCCGGCATCGGGCGCAAGTTCCAGAAGCCGACGGTGTTCGAAGCCCTGAGCGTGTTCGAGAACCTGGAACTGGCGCTCAAGACCGACAAATCGGTGTGGGCCAGCCTGCGGGCGAAGCTGACCGGCGAGCAACGCGACCGCATCAGCGAAGTGCTCGAGACGATCCGCCTCGCCCCTTCGGTCAACCGCGCCGCCGGGCTGCTGTCCCACGGCCAGAAGCAGTTCCTGGAGATCGGCATGCTGCTGGTGCAGGACCCGCAACTGCTGCTGCTTGACGAGCCGGTGGCGGGCATGACCGACGCCGAAACCGACTTCACCGCCGAGCTGTTCAAGTCCCTGGCGGGCAAGCATTCACTGATGGTGGTGGAGCACGACATGGGCTTCGTCGGCGCGATTGCCGACCACGTCACCGTGCTGCACCAGGGCAGCGTGCTGGCCGAAGGGTCGCTGGAACAGGTGCAGGCCGATGAGCGGGTGATCGAGGTGTACCTCGGTCGCTAG	MKITPTADFMLEPIIEPPLDANRDQGSSRDAIGLGRAAGVGLNTRHGTILTLEDISVSFDGFKALNDLNLYIGVGELRCIIGPNGAGKTTLMDVITGKTRPSHGKAWFGETLDLTTMSEVEIAQAGIGRKFQKPTVFEALSVFENLELALKTDKSVWASLRAKLTGEQRDRISEVLETIRLAPSVNRAAGLLSHGQKQFLEIGMLLVQDPQLLLLDEPVAGMTDAETDFTAELFKSLAGKHSLMVVEHDMGFVGAIADHVTVLHQGSVLAEGSLEQVQADERVIEVYLGR	PGPT0000940_181	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-UREA_USAGE	N-AQUISITION-UREA_TRANSPORT,PGPT0000940-urtD-K11962	NA	NA
D1-36_00603	1080			hypothetical protein	ATGAACCAGCCCCTGATGCTTACGGCCACGCAAAAGGCCGGACCCAAAGTCACCCTCGCCGTCGGCGCGGTGATCCTCGCCGTGCTGCTGAGCCTGCCAGTGTTGTCGCTGTTGGCGGTGGATAACCCGCTGCATGTCTCGGCATATACCCTGACCCTGGTGGGCAAGATCCTCTGCTACGCCATTGTCGCCCTGGCGCTGGACCTGGTCTGGGGCTACGCCGGCTTGCTCTCCCTGGGCCACGGCCTGTTCTTCGCGCTGGGCGGCTACGCCATGGGCATGTACCTGATGCGCCAGGCCGCCGGCGATGGCGTGCCGGCGTTCATGACGTTCCTGTCGTGGACCGAGCTGCCCTGGTACTGGGCCGGCACCGACAGCTTCCTCTGGGCGATGTGCCTGGTGGTGCTGGCGCCGGGCTTGCTGGCGCTGGTGTTCGGTTTCTTCGCCTTCCGCTCGCGGATCAAGGGCGTGTACTTCTCGATCATGACCCAGGCCCTGACCTTCGCCGGGATGTTGCTGTTTTTCCGCAACGAGACCGGCTTTGGCGGCAACAACGGCTTCACCAATTTCCGTTCGATCCTGGGCTTTGGCATCACCGAGCCGGGCACCCGCGCGGTGCTGTTTTTTGCCACAGTGCTGCTGTTGGTGGCGAGCCTGTTCATCGGCTGGCGCCTGGCTCGCAGCAAGTTCGGCCGGGTGCTGACCGCCCTGCGCGACGCGGAAAACCGCCTGATGTTCTGCGGCTACGATCCCCGTGGCTTCAAGCTGTTCGTCTGGGTGTTGAGCGCGGTGTTGTGTGGCCTGGCCGGGGCGCTGTACGTGCCGCAGGTGGGGATCATCAACCCCAGCGAAATGTCGCCGACCAACTCCATCGAGGCCGCCGTGTGGGTGGCGCTCGGCGGGCGCGGCACGCTGATCGGGCCGTTGCTGGGCGCCGGCGTGGTCAACGGCATGAAGAGCTGGTTCACCGTGGCGTTTCCGGAATATTGGCTGTTCTTCCTCGGCGCCCTGTTCATCGTCGTGACCCTGTATCTACCCAAAGGCGTTATCGGGCTGTTGAAGAAAAGGGGCGAACAATGA	MNQPLMLTATQKAGPKVTLAVGAVILAVLLSLPVLSLLAVDNPLHVSAYTLTLVGKILCYAIVALALDLVWGYAGLLSLGHGLFFALGGYAMGMYLMRQAAGDGVPAFMTFLSWTELPWYWAGTDSFLWAMCLVVLAPGLLALVFGFFAFRSRIKGVYFSIMTQALTFAGMLLFFRNETGFGGNNGFTNFRSILGFGITEPGTRAVLFFATVLLLVASLFIGWRLARSKFGRVLTALRDAENRLMFCGYDPRGFKLFVWVLSAVLCGLAGALYVPQVGIINPSEMSPTNSIEAAVWVALGGRGTLIGPLLGAGVVNGMKSWFTVAFPEYWLFFLGALFIVVTLYLPKGVIGLLKKRGEQ	PGPT0000935_1237	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-UREA_USAGE	N-AQUISITION-UREA_TRANSPORT,PGPT0000935-urtC-K11961	NA	NA
D1-36_00604	1503			hypothetical protein	ATGCCCACCGCCCTTTACCGCCTCATCCTCGCCCTGGCCCTGCTGTTGCCACTGGGCGCCCATGCCGGCGACGCCGAAGACTTCGTCGCCGCCAACCCGACCCAGCAGGCCAAGCTCCTGGAAACCTGGGCCGCGCAGCCGGAGCCTGAGCGTGTCGAACTGATCAACGCCTTGCAGCAAGGCCAGTTGACCGTCGATGGCCAACCCAAGACCCTGCGCCTGAACAACCGCTTGCGAGGGCTGATCGAAACCGCCCTGGCCAGCCATCAACTGCTCGCCGTCGATGCCGGCGTGCGCCTGGCTGCCGCGCAACAGCTGCAAAAAAGCGCCCGCCCGGCGCAACTGGCGTTCCTTGATCGGCAACTGGCCGGCGAGCAGGACGAAGATGTCCACGCCGCCCTGAGCCTGGCCCTGGCGAATTTGCAACTGGTGGACACCAACCCCGCCGTGCGCCTGGCGGCCGTGCGACTGCTGGGGGAAACCGGCGACCCGCTGGCCCGCACTCGCCTCGAAAACCTGCTCGAACCCGGTGTCGAAACCGATGCCGCCGTGCGCACCGCCGCCGAAACCAGCCTCGGCCAGGTCAAGCGCAAACTCCTGATCGGCGAGCTGCTGGGCCAGGCGTTCAGCGGCATGTCCCTGGGCTCGATCCTGCTGCTGGCCGCCCTTGGCCTGGCGATCACCTTTGGCTTGCTGGGGGTGATCAACATGGCCCACGGCGAGATGCTCATGCTCGGCGCCTATTCCACTTATGTGGTGCAGATGCTGTTCCAGCGCTTCGCCCCGAACGCCATCGAGTTCTATCCGCTGATCGCCTTGCCGGTGGCGTTTTTCATCACCGCCGCCATCGGCATGGCCCTGGAACGCACGGTAATCCGCCACCTCTACGGACGGCCCCTGGAAACCCTGCTCGCCACTTGGGGCATCAGCCTGATGCTGATCCAGCTGGTGCGCCTGGTGTTCGGCGCGCAGAACGTGGAAGTCGCCAACCCGGCCTGGCTGTCGGGCGGGATCCAGGTGCTGCCGAACCTGGTGCTGCCGTACAACCGCATCGTGATTATTGCTTTCGCGCTGTTCGTGGTGGTGCTGACCTGGTTGCTGCTGAACAAGACGCGCCTGGGCCTGAACGTGCGCGCCGTGACCCAGAACCGCAACATGGCCGCCTGCTGCGGCGTGCCCACCGGGCGGGTGGACATGCTCGCCTTCGGCCTCGGCTCGGGCATCGCCGGGCTCGGTGGCGTTGCCCTGAGCCAGATCGGCAACGTCGGCCCGGACCTGGGCCAGAGCTACATCATCGACTCGTTCCTGGTGGTAGTGCTCGGCGGCGTCGGCCAGTTGGCCGGCAGTGTGTTCGCCGCGTTCGGCCTGGGCATCGCCAACAAGATCCTCGAACCGCAGATCGGCGCCGTGCTCGGCAAGATCCTGATCCTCGCGCTGATCATTCTGTTTATCCAGAAGCGTCCGCAAGGCCTCTTCGCGCTTAAAGGACGGGTAATCGACTGA	MPTALYRLILALALLLPLGAHAGDAEDFVAANPTQQAKLLETWAAQPEPERVELINALQQGQLTVDGQPKTLRLNNRLRGLIETALASHQLLAVDAGVRLAAAQQLQKSARPAQLAFLDRQLAGEQDEDVHAALSLALANLQLVDTNPAVRLAAVRLLGETGDPLARTRLENLLEPGVETDAAVRTAAETSLGQVKRKLLIGELLGQAFSGMSLGSILLLAALGLAITFGLLGVINMAHGEMLMLGAYSTYVVQMLFQRFAPNAIEFYPLIALPVAFFITAAIGMALERTVIRHLYGRPLETLLATWGISLMLIQLVRLVFGAQNVEVANPAWLSGGIQVLPNLVLPYNRIVIIAFALFVVVLTWLLLNKTRLGLNVRAVTQNRNMAACCGVPTGRVDMLAFGLGSGIAGLGGVALSQIGNVGPDLGQSYIIDSFLVVVLGGVGQLAGSVFAAFGLGIANKILEPQIGAVLGKILILALIILFIQKRPQGLFALKGRVID	PGPT0000930_966	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-UREA_USAGE	N-AQUISITION-UREA_METABOLISM,PGPT0000930-urtB-K11960	NA	NA
D1-36_00605	1266	amiC_2		Aliphatic amidase expression-regulating protein	ATGAAGCGTCGTAGCTTGATCAAGGCTTTTACACTCTCGGCAAGCATTGCCGCGATGGGCATGACCTGGACCGTCCAGGCCGCCGAGACCATCAAGGTTGGCATCCTGCATTCGCTGTCCGGGACCATGGCGATCTCCGAGACGTCCCTCAAGGACATGGCGTTGATGACCATCGACGAGATCAACGCCAAGGGTGGGGTCAACGGCAAGAAGCTCGAAGCGGTGGTCGTGGACCCGGCGTCGAACTGGCCGCTGTTCGCCGAAAAGGGCCGGCAATTGCTGACCCAGGACAAGGTCGCCGTGGTGTTCGGCTGCTGGACCTCGGTGTCGCGTAAATCCGTGTTGCCGGTGTTCGAAGAGCTCAATGGCCTGCTGTTCTACCCTGTGCAATACGAAGGCGAAGAAATGTCGCCGAACGTCTTCTACACCGGCGCGGCGCCGAACCAGCAGGCGATTCCGGCGGTGGAATACCTGATGAGCGAAGAAGGCGGCAGCGCCAAGCGCTACTTCCTGCTGGGCACCGACTACGTCTACCCGCGCACCACCAACAAGATCCTGCGCTCGTTCCTGCACACCAAAGGCGTGGCGGACAAGGACATCGAAGAGGTCTACACCCCATTCGGCCACAGCGATTACCAGACCATCGTGGCCAACATCAAAAAATTCTCGGCCGGCGGCAAGACTGCCGTGATTTCCACCGTCAACGGCGACTCCAACGTGCCGTTCTACAAGGAGCTGGCGAACCAGGGCCTGAAGGCCACCGACGTACCGGTCGTGGCGTTCTCGGTGGGCGAGGAAGAACTGCGCGGCATCGACACCAAACCCTTGATCGGCAACCTGGCGGCGTGGAACTACTTCGAGTCCGTGGATAACCCGGCGAACAAGAAGTTCGTCGACTCCTGGAAAGCCTACGCCAAGGCCAAGAACTTGCCGGGTGCCGACAAAGCCGTGACCAACGACCCGATGGAAGCCACCTACGTCGGCATCCACATGTGGGCCCAAGCGGTGGAAAAAGCCAAGTCCACCGACGTCGACAAAGTCCGCGAAGCCCTGGCCGGCCAGACCTTTGCCGCACCGTCGGGCTACACCCTGACCATGGACAAGACCAACCATCACCTGCACAAGCCCGTGATGATCGGCGAGATCCAGGCCGACGGTCAGTTCAACGTGGTCTGGCAGACCGAAGGGCCGATCCGCGCGCAACCGTGGAGCCCGTTCATCGCCGGCAACGACAAGAAGCCTGACTACGCGGTGAAGAGCAACTGA	MKRRSLIKAFTLSASIAAMGMTWTVQAAETIKVGILHSLSGTMAISETSLKDMALMTIDEINAKGGVNGKKLEAVVVDPASNWPLFAEKGRQLLTQDKVAVVFGCWTSVSRKSVLPVFEELNGLLFYPVQYEGEEMSPNVFYTGAAPNQQAIPAVEYLMSEEGGSAKRYFLLGTDYVYPRTTNKILRSFLHTKGVADKDIEEVYTPFGHSDYQTIVANIKKFSAGGKTAVISTVNGDSNVPFYKELANQGLKATDVPVVAFSVGEEELRGIDTKPLIGNLAAWNYFESVDNPANKKFVDSWKAYAKAKNLPGADKAVTNDPMEATYVGIHMWAQAVEKAKSTDVDKVREALAGQTFAAPSGYTLTMDKTNHHLHKPVMIGEIQADGQFNVVWQTEGPIRAQPWSPFIAGNDKKPDYAVKSN	PGPT0000925_1048	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-UREA_USAGE	N-AQUISITION-UREA_TRANSPORT,PGPT0000925-urtA-K11959	NA	NA
D1-36_00606	1059			hypothetical protein	ATGAAGGCCCTTCTGGCGAAGACACATCATTCAATGCGCATGAAAAACGAGATAGCGCATTTCAGTAGCGTCTACCGGAACGAGTTCTACTCCAAAGTGCAGGAACAACAGCGTGCTAATGCAATGGGCGTTGCTCGCAACGTGCGCCGATTGGATGGAATGGCTCCTGCGCCAGAGCGTGGTGCGCAGGCTGATGTTGTGATCCTCGAACCGTTCGAAGGTGAGGCAGCCTACTCCTATGCGACTCGTCTCCTGAGGGCGAATGTCCCGCAAACTCCGCCTGATTTCCAAGCGAGGCTGCGCCAGAAAGTCAGGGATCATGGGGAAATAAAAGTCTTGTCGATCTGCAGTGGCGCCGCGCGGATAGAGGCGGGCCTGTCGGCGGCTATTCCCGAAGGGGTGCAGTGGTCGCTGTTGGATATCAATGAGGACCTGCTGCAGATCGCTGCAAAGCAGTTTCCGCCAGGCATCAGCCTCGACTTGATCGTGGCGGATGCGAACAACCTGGTGCCTACCGGTGAGCAGTGGGATGTCATTATTTGTGTTTCGGCATTGCATCATTTGGTAGAGCTGGAAAAGGTCATGTTCTTTATCTCCCGCAGTTTGAAAAATGACGGCGAGTTCTGGAGTGTCGGGGAGGCGGTGGGACGTAATGGCAATCGCTTGTGGCCCGACGCGATAGTCGCTGCTGATGCGGCGTTCTCAGCCTTGCCGGCGCGTTATCGGTTAAATGCCGATACCCAGGTCGTCGATTCAGTCATTCCAGACAAGGACCACTCGATTGGGTGTTTCGAGGGGATTCGAAGCGAGGACATTACCGCGCTGCTTGAACGCTGGCTCAAGCCTGTGGATGTTTACCGTACCAACTGCTTCCTCTGGCGAATGGTCAATCTGGCCTACAGTGGAAATTTCAATCTTGAACAAGCGCAAGATCGGGCGCTGGTCATTGATATGGTCCGAGCGGAGCTTGAGCATTTTCGTCATGGAGGGCTGGGGACCGAGCTGTTCGGCGTGTACAAAAAGAAGCATCTTTTCAACGACGGCGCATCAAGCCAATGA	MKALLAKTHHSMRMKNEIAHFSSVYRNEFYSKVQEQQRANAMGVARNVRRLDGMAPAPERGAQADVVILEPFEGEAAYSYATRLLRANVPQTPPDFQARLRQKVRDHGEIKVLSICSGAARIEAGLSAAIPEGVQWSLLDINEDLLQIAAKQFPPGISLDLIVADANNLVPTGEQWDVIICVSALHHLVELEKVMFFISRSLKNDGEFWSVGEAVGRNGNRLWPDAIVAADAAFSALPARYRLNADTQVVDSVIPDKDHSIGCFEGIRSEDITALLERWLKPVDVYRTNCFLWRMVNLAYSGNFNLEQAQDRALVIDMVRAELEHFRHGGLGTELFGVYKKKHLFNDGASSQ				NA	NA	NA	NA	NA
D1-36_00607	1011	hmuU_1	COG0609	Hemin transport system permease protein HmuU	ATGAACGATCGTCGCTACGCCGCCCTGCTGATGACTCTCGGCGCGCTGTTGCTGGTGTCGTGCGTGGTGTCCCTGGGCTTCGGGCCGGCGCGGGTGCCGGTGGCCGTGGTCTGGGACCTGTTGCTGCACAAGGCCTTCGGTGTCGGCGAGGTGTATTGGACGCCCGGCCAGGAACATATCGTCTGGCTGATACGCGTCCCGCGCCTGCTGCTCGGAGCCCTGGTGGGCGCGGGGCTGGCGTTGATCGGCGCGGTGCTGCAAGCGGTCACGCGCAACCCACTGGCCGATCCGCATCTGCTGGGCGTCACCTCCGGCGCGACCCTGGGTGCGGTGATCGTGGTGTTGCATGTCGGTGAAATCATCGGCCTGCTGACCCTGCCCCTCGCCGCGTTCATCGGTGCATTGCTGAGCATGTTGCTGGTGCTGGCCATCGCTGCCCGCCACGGTCGCCTGGAGAGCGATCGGCTATTGCTGTGTGGCGTGGCGGTGTCCTTCGTGATGATGGCGGCGGCCAACCTGCTGTTATTCCTCGGTGATCATCGCGCCAGTTCGGCGGTGATGTTCTGGATGCTCGGTGGCCTGGGCCTGGCGCGCTGGGAACTGCTGGCCGTGCCAGCCGCCAGCGTGCTGTTGGGGCTGGTGTTGCTGCTGGGCATGGCCCGGCCCTTGAACGCGCTGATGGCCGGCGAGCAGACCGCCGTGACCCTGGGCCTGAACGCGGCGAAGGTGCGGCTGTGGATTTTCCTGATCGCGTCCTTGATGACCGGCGTGCTGGTGTCCATCAGCGGCTCGATCGGCTTTGTCGGGTTGATGGTGCCGCACATCGCCAGGCGCCTGGTGGGCGCCGAGCACCGTCGGTTGTTGCCTGCCTGCGTGCTGCTCGGCAGCCTGTTCCTGGTGTGGGTGGACGTGGCGGCCCGCACGCTGATCGCGCCGGAGGATTTGCCGATTGGGGTCGCTACCGCGGCCATCGGCGGGCTTTTCTTCATTGGCTTGATGCGCCGTCGTTGA	MNDRRYAALLMTLGALLLVSCVVSLGFGPARVPVAVVWDLLLHKAFGVGEVYWTPGQEHIVWLIRVPRLLLGALVGAGLALIGAVLQAVTRNPLADPHLLGVTSGATLGAVIVVLHVGEIIGLLTLPLAAFIGALLSMLLVLAIAARHGRLESDRLLLCGVAVSFVMMAAANLLLFLGDHRASSAVMFWMLGGLGLARWELLAVPAASVLLGLVLLLGMARPLNALMAGEQTAVTLGLNAAKVRLWIFLIASLMTGVLVSISGSIGFVGLMVPHIARRLVGAEHRRLLPACVLLGSLFLVWVDVAARTLIAPEDLPIGVATAAIGGLFFIGLMRRR	PGPT0003770_7048	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
D1-36_00608	948	btuF_1		Vitamin B12-binding protein	ATGACCTTGCGCTTGCTGCTGTTGCTACCCCTGCTGCTGGGCAGTGCCCATGCCCTGGCCGAAGCCACCCGCTACCCCTTGACGATCCAGAGCTGCAATCGCCAGGTGGTGTTCAACGAGGCCCCTCGCCACGCCGTCAGCCATGACATCAACATGACGCAGATGATGCTCGCTTTGGGCCTCAAGCCGCGCATGGTCGGCTACAGCGGCATCAGCGGTTGGAAATCGGTGACACCCGAGATGGCGAAGATCCTCGAGGGCCTGCCGGAACTGGCCGCCAAATACCCCTCGGTGGAAACCCTGCTCGATGCCAACGTCGATTTCTTCTTCGCCGGCTGGGACTACGGCATGCGCGAGGGCGGCGACCTGACCCCGCAAACCCTGCAACCACTGGGCATCAATGTGTACGAGTTGACCGAATCCTGCGCCTTCGTGATGAAACGTCCGCCGGCTTCCCTGGAAGACACCTACAACGACCTGCGCAACCTGGGGAAAATTTTCGACGTGCAGGACCGCGCCGATGCGCTGATCGAGACGATGCAGGCCCAGGTGGCCGAGGTGCGCAAGCATCTTCCAACCCAAAGACAGCGCGTGTTCCTGTATGACAGCGGCGAAGATCGCGCCATGACCTCTGGGCGCCTGGGCATGCCCCAGGCCCTGATCGACGCTGCCGGCGGACGCAACATCCTCGATGACGTGGAAACCAGTTGGACCCGGGTGAACTGGGAGAACGTGGTGGAGCGCAACCCCCAGGTCATCGTGATCGTCGACTATGGCGAAGTCAGTGCCGAGCAGAAGCAGCAGTTCTTGCTGGCGAACCCGGCGCTGCAATCGGTGGATGCGATCAAGCACCGGCGCTTCATCGTGATCCCCTACGTGCAGGCCACCCCGGGCATCGATAACGTGCTGGCGGTGCAAACCCTGGCGCGGGGTTTCCACGGCCAATGA	MTLRLLLLLPLLLGSAHALAEATRYPLTIQSCNRQVVFNEAPRHAVSHDINMTQMMLALGLKPRMVGYSGISGWKSVTPEMAKILEGLPELAAKYPSVETLLDANVDFFFAGWDYGMREGGDLTPQTLQPLGINVYELTESCAFVMKRPPASLEDTYNDLRNLGKIFDVQDRADALIETMQAQVAEVRKHLPTQRQRVFLYDSGEDRAMTSGRLGMPQALIDAAGGRNILDDVETSWTRVNWENVVERNPQVIVIVDYGEVSAEQKQQFLLANPALQSVDAIKHRRFIVIPYVQATPGIDNVLAVQTLARGFHGQ	PGPT0003765_8606	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
D1-36_00609	897	btuD_1		Vitamin B12 import ATP-binding protein BtuD	GTGATCGCAATCGGTCAGTCGCATCTTAATCGGCTGACCCACCGCGATCGCGAGCAGGCTCGCTCCCACAATGGACTGGGGTTGCGAGCCAATAACTTGAGTGAACGCATGACCTCCCTGACCCTTTCCAATCTCGCCTGGACGCCCCTGGGCCATGGCCATTGCCATCACCAGTTCCAGCTGCGTGACGCCACGTTGCAGGTGGCGGCCGGGGAGTTTGTCGGATTGATCGGCCCCAATGGCAGCGGCAAGACCAGCCTGTTGCGCTGCGCCTATCGCTTCAGCCGGCCGGAACAGGGGGAGGTCAGACTCGAGCATCACAACCTCTGGCAACAATCCTCGCGCTGGTGCGCACAGCGCATCGCCGTGGTGCTGCAAGAGTTTCCCGACGCCTTCGGCCTGACGGTGAAAGAAGTGGTCGCCATGGGTCGCACGCCTCATAAGGGCTTGTTTGATGGCGACAACGAAGAAGACCGCAGATGGGTGCTCCAGGCCTTGGAATCGGCGGGGCTCGAAGGCTTTGGCGATCATGCCTTCGCCACGTTGTCGGGCGGGGAAAAACAGCGGGTGATCCTTGCTCGCGCCCTGGCCCAACAACCGCAGTTGTTGATCCTCGACGAACCGACCAACCACCTCGACCCCCACTATCAGTTGCAATTGCTCCAACTGATCAAGGGCCTGGGCATCGGCACCCTCGCCAGCCTCCACGACCTCAACCTGGCGGCCGCCTTCTGCGATCGCCTGTACGTGATCGAACATGGGCGCATCGTCGCCAGCGGCACGCCCAGGGATGTCCTCACCGCCGAGCTGTTGCGCGAGGTGTTCGGCGTCGAAGCCCTGGTGGACGAACATCCCCTGTCCGGCTACCCACGAATCACTTGGATAACCCAACCATGA	MIAIGQSHLNRLTHRDREQARSHNGLGLRANNLSERMTSLTLSNLAWTPLGHGHCHHQFQLRDATLQVAAGEFVGLIGPNGSGKTSLLRCAYRFSRPEQGEVRLEHHNLWQQSSRWCAQRIAVVLQEFPDAFGLTVKEVVAMGRTPHKGLFDGDNEEDRRWVLQALESAGLEGFGDHAFATLSGGEKQRVILARALAQQPQLLILDEPTNHLDPHYQLQLLQLIKGLGIGTLASLHDLNLAAAFCDRLYVIEHGRIVASGTPRDVLTAELLREVFGVEALVDEHPLSGYPRITWITQP	PGPT0003760_4443	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
D1-36_00610	1380			hypothetical protein	ATGAGCCTACCGAAACCGAACTTCTACAACCTGGCCTGGCGCTGGCATTTTTATGCCGGGCTGTTCGTGGCGCCGTTCATGGTCATGCTGGCCCTGACCGGCATCATTTACCTGTTCAAGCCGCAACTCGACCCATTGATGTACGGCAACCTGTTGAACGTACCGGCCGGGCATCACACCCTGGCAGCCGACGATCTGCTCAAGCAGGTCCGCCAGGCCTACCCCGAAGGCCAGGTCACGCAGTACCTGCCACCGGTCAGCGCCGAACGCAGCGCGCAATTCGTGGTGATCGACAAGGGCCACGAGCTGAACGTCTTCATCGACCCCTTCCGTGGCAACGTACTCGGCGAGCAGGATGCAAAAAACAATTTGCAAGCCATGGCCCGGGCGATCCATGGCGAGTTGCTGATCGGCACGGTGGGTGACCGCTTGGTAGAAATGGCCGCCGGCTGGGGCGTGGTGCTGGTGGTTTCCGGCCTGTACCTGTGGTGGCCGCGCGGGCAGTCGTCGGCCGGCGTCCTCTGGCCGCGCTGGAGCGCGCGCGGGCGGGTGTTCTGGCGTGACCTGCACGTCGTCGTCGGCTTCTGGGGCGCCGCGTTCCTGCTGGTGATGTTGCTCAGCGGCATGACCTGGACCGGCTTTTGGGGCAAGCAATACGCGGACCTCTGGAACCGCTTCCCGGCGGCGATGTGGAATGACGTGCCCAAGTCCGACGTCGAAGCCGGCAGCCTCAACAACGCTCACCGCCAGACCGTGCCATGGGCCATGGAGAACACGCCGATGCCGATGTCCGGCGACCATGCCGAACACATGGCCCACGGCGGCATGCACGAAGGCCCCGCCGCGCCAACCGTCAGCCTGCAGGCGGTGCAGGACATCGCCGCCGAACGCCAGGTCGAGCCCGGCTACAGCATCACCTTCCCAACGACCGCCTCGGGCGTGTTCACCATCGCCGTGTTCGCCGATGACCCGCGCAACGACGCGACTCTGCACGTGGACCAATACACCGGCAAGGTCCTGGCCGATGTGCGCTGGGAACATTACAGCGTCGTGGCCCGCGCCACCGAAACCGGCGTGATGCTGCACGAAGGCAAGATGTTCGGCCCGCTGAACCAGATCCTTGTGCTGCTGGTTTGCCTGATGATCCTGCTCAGCGCCGTGAGCGGCGTGGTGATCTGGTGGAAGCGCCGGCCCCTGGGCAAGTTCGGCGTCCCGCCGCTGCGCCACGACCTGCCGACGTGGAAGACCGGGGTGTTCATCATGCTGGCCCTGGCGGTGGTGTTCCCGCTGGTGGGGGTTTCGCTGGTGGTGGTGTGGTTGCTGGACCGGCTCGTCACACGCTTGAATCGTCAACCTGAGATCGTCTCATCTTCAAGCTGA	MSLPKPNFYNLAWRWHFYAGLFVAPFMVMLALTGIIYLFKPQLDPLMYGNLLNVPAGHHTLAADDLLKQVRQAYPEGQVTQYLPPVSAERSAQFVVIDKGHELNVFIDPFRGNVLGEQDAKNNLQAMARAIHGELLIGTVGDRLVEMAAGWGVVLVVSGLYLWWPRGQSSAGVLWPRWSARGRVFWRDLHVVVGFWGAAFLLVMLLSGMTWTGFWGKQYADLWNRFPAAMWNDVPKSDVEAGSLNNAHRQTVPWAMENTPMPMSGDHAEHMAHGGMHEGPAAPTVSLQAVQDIAAERQVEPGYSITFPTTASGVFTIAVFADDPRNDATLHVDQYTGKVLADVRWEHYSVVARATETGVMLHEGKMFGPLNQILVLLVCLMILLSAVSGVVIWWKRRPLGKFGVPPLRHDLPTWKTGVFIMLALAVVFPLVGVSLVVVWLLDRLVTRLNRQPEIVSSSS				NA	NA	NA	NA	NA
D1-36_00611	414			hypothetical protein	ATGCACCGCCGTCAGCCATTGAGCCTGACCCGCGGTAGCTGGATCAGCCTGTTCGCCATGCTGATGATTTTTATCGGCCCGCTGGTTTCCCAGTCGATGCCGATGGATCAGCGCATGTCCATGTCCACGCCTGTATCCATAGGCATGGACATGGAGATGGGCATGGACATGTCGGCACACGAAGCGCCAGCAGATGACGATTGCCCGCCCCAGAGCGACCATCATGCGCTGTGGGAGAAATGCGGTTATTGCAGCCTGCTGTTCAACTGCCCCGCGTTGCCTGGCGGCCACACGTTCACCGTCTTCGCCACACCGTTTACCCGCACCTACACGAGCCCTTTCCCGCGCCTGGGCCATGCCCGACCGGCGCTCTTCCCTGGCGCCCGCACCCGCGCACCGCCCCTCGACGCGTAA	MHRRQPLSLTRGSWISLFAMLMIFIGPLVSQSMPMDQRMSMSTPVSIGMDMEMGMDMSAHEAPADDDCPPQSDHHALWEKCGYCSLLFNCPALPGGHTFTVFATPFTRTYTSPFPRLGHARPALFPGARTRAPPLDA				NA	NA	NA	NA	NA
D1-36_00612	480			hypothetical protein	ATGTTGAACAGACTCATCCTGCTGGTCGCCCTGCTGCTTCCCGTTGGCTTCGCCCAAGCTCACCAGTACAAGGCCGGGGAGCTTGAGATCGCCCACCCGTGGTCCCAGGAATTGCCGCCCAATGCGCCGACCGTCGCCGGCTACTTCATTATCCACAACAGCGGCAGGTCCGAGGATAAACTGCTCAGTGTCGACTCACCCATCGCCGGCAAGGCCGAGCTCCATGAACATGTGATGCAAAACGACTTGATGAAAATGCAACCGGTGGACGGCATAGTTATCGCTCCAGGCGCAACGGTGACCTTCGCACCGATGGCGTACCACGTAATGCTGCTGGACCTGAAGGACCGTAGCCTGCTCAGCGACGGCAAACGTTTCCCCATGACCTTGCATTTCGAAAAGGCCGGGGATGTCACGGTGAACGTCACGGTGCAGAAAAAAGCCCCCGACGGCACCCAAACGCACATGCACGCCCAATAG	MLNRLILLVALLLPVGFAQAHQYKAGELEIAHPWSQELPPNAPTVAGYFIIHNSGRSEDKLLSVDSPIAGKAELHEHVMQNDLMKMQPVDGIVIAPGATVTFAPMAYHVMLLDLKDRSLLSDGKRFPMTLHFEKAGDVTVNVTVQKKAPDGTQTHMHAQ				NA	NA	NA	NA	NA
D1-36_00613	399			hypothetical protein	ATGTCCCGACAACGGCTTGCATTTGCCTGGATCGCCTGCTTCGCAGTGCTGTTCAACATGCTCGCCATGCCGCTTTCCAATGGCAGCGGTGCGACCGCCGACACGCCAACCGAACAATTGCTCTGGGGCAGTTTCTGCTCTTCCGGCGGAACAAAACTGGTGGCGATTTCCCTGGGTAAGTTCGAACAGGGAACGCCGCGACAGGATCCTCACTCGACCATGCAGCATTGCTGGTGCTGCTCAGGCCCGGCGCCGTTGGTGGCGATTGCCGGGCACGCCCCGCAGTTGTATCTGGATGCGCAACTGGCCCATCGCAATGTCGTCCATTCGAAGCTCGACAGCCCCACGCCACGCCAACAATGGCCCAGTCTAAATCCCCGCGCCTCGCCTCTGGCCTGA	MSRQRLAFAWIACFAVLFNMLAMPLSNGSGATADTPTEQLLWGSFCSSGGTKLVAISLGKFEQGTPRQDPHSTMQHCWCCSGPAPLVAIAGHAPQLYLDAQLAHRNVVHSKLDSPTPRQQWPSLNPRASPLA				NA	NA	NA	NA	NA
D1-36_00614	738	cobK		Precorrin-6A reductase	ATGAAGAGCCTTGAAATGAAACGCATCCTGCTCCTCGGTGGCGTCACCGAAGCCCTGGCCATCGCCCGCACGCTTGGCCCCCAGCACATCTACAGCTTGGCCGGCATCGGCCGCATCCCCACCGACCTGACCTGCCAGGTGCGCGTCGGCGGCTATGGCGGCGCCGCAGGATTGGCGCAATTCATCCGCGCCGAGGGCATCGACCTGCTGTTGGATGCAACTCACCCCTACGCCGCCCAAATCAGCCACAACGCCGCCCATGCGGCCCACGCCTGTGCCATCCCCTGCTGGGCCCTGCGCCGTCCGGCCTGGCAGCCCCGGGCCGGCGATGACTGGCGCGAAGTCGCCGACTGGGCCGAACTGATCCAAGCCCTGCGCCCCTTCCACCGGCCTCTGTTCACCCTTGGCCGAGAGCCGCTGCAACACATGCATGAAATCCCGCCAGAGCAATTCTGGACCTTGAGGGCGTTGGACGTTTACCCCGGCAATGAGCGCTGCGAAGTGATTGGAGCCCGGGGGCCGTTTCATATCGAGGGCGAGCGTGAGCTGTTCGAACGGCGGCGGATCGATGTGCTGGTGAGCAAGAACAGCGGCAGCACCGCGACTGAACCGAAGCTGGACGTGGCGCGGGAGCGAGGAGTGCCGGTATTGGTATTGAAGCGGCCAATGTTGCCGGAGGTGGATCGGGAGTTTGGGACGGCGGATGAGGTGTTGCAGGGGCTGCGGCAGTTGGCCTGA	MKSLEMKRILLLGGVTEALAIARTLGPQHIYSLAGIGRIPTDLTCQVRVGGYGGAAGLAQFIRAEGIDLLLDATHPYAAQISHNAAHAAHACAIPCWALRRPAWQPRAGDDWREVADWAELIQALRPFHRPLFTLGREPLQHMHEIPPEQFWTLRALDVYPGNERCEVIGARGPFHIEGERELFERRRIDVLVSKNSGSTATEPKLDVARERGVPVLVLKRPMLPEVDREFGTADEVLQGLRQLA	PGPT0004640_1545	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004640-cbiJ-K05895	NA	NA
D1-36_00615	1098	cbiD	COG1903	Cobalt-precorrin-5B C(1)-methyltransferase	ATGCGTGACGAAACCGCCGAACAACCCGCCCCCCTGCGTAGCGGCCTGACCACCGGCAGTTGCGCCACCGCCACCAGCCTGGCGGCGGCCCGCTTGTTGTTGCGCGGCACCGAGGCCGACGCCGTGGAAATCGTCTTGCCCAAGGGCAAGCAGGTGCAGATGCGCCTGGAGTTCTGCCGATTGACCGAGCAAGGCGCCGAGGCCGGGACGATCAAGGACGCTGGCGATGACCCGGACGTAACCCACGGCGCCCTGCTGTTTTCCCAAGTGCGCTTGGTAGCCGAACCCGGCGTGCGCTTCGTCGCCGGTCGCGGCGTGGGCACGGTGACGCGACCGGGGCTGGTGCTGGGCGTCGGTGAGCCGGCAATCAACCCGGTGCCACGCCAGATGATCAACGATCACCTGGGCCGGCTGGCCGAGGAAAGCGGCTACGCCGGTGGCTTCGAAGTCACGGTCAATGTCGAGGGTGGCGAAGCCTTGGCGCTGAAAACCATGAACCCGCGACTGGGCATTCTCGGCGGCCTGTCGATCCTTGGCACCAGCGGCATCGTCCGGCCCTTTTCCTGCGCGGCCTACATCGCCTCGATCCACCAGGGCATCGATGTGGCGAAAACCAACGGCTACCTGCACATCGCCGCCTGCACCGGCAACGCCAGCGAAGACACCATGCGCCGGGTCTATAATCTGCCGGAAATCGCCCTGATCGAAATGGGCGATTTCGTCGGCGCCGTGCTCAAGCATGTGCGCAAGGTACCCGTGGAAAAACTCAGCCTCTGCGGCGGCTTTGGCAAGATCAGCAAACTTGCCGCCGGCCACATGGACCTGCACAGCCGCCATTCGAGCATCGACCTGCCACAACTGGCCGAATGGGCCGCCGCCCTCGGCGCCGATGAGGTTTTGCAACAGGGCATCCGGCAAGCCAATACCAGCCAGCAAGCCCTGGCAATGGCAAGCGCCGCCGGCATCGCCCTCGGCGATGCAGTGTGCGAGCACGCGCTGGCGTTCGCCCGCAGCGTGGTGCCGGCCCAGGTCCAGGTCGAAGTCTTCGCCATCGACCGTCAGGGTGGGATCGTCGGTCACGCGGGAGCCTTGTCATGA	MRDETAEQPAPLRSGLTTGSCATATSLAAARLLLRGTEADAVEIVLPKGKQVQMRLEFCRLTEQGAEAGTIKDAGDDPDVTHGALLFSQVRLVAEPGVRFVAGRGVGTVTRPGLVLGVGEPAINPVPRQMINDHLGRLAEESGYAGGFEVTVNVEGGEALALKTMNPRLGILGGLSILGTSGIVRPFSCAAYIASIHQGIDVAKTNGYLHIAACTGNASEDTMRRVYNLPEIALIEMGDFVGAVLKHVRKVPVEKLSLCGGFGKISKLAAGHMDLHSRHSSIDLPQLAEWAAALGADEVLQQGIRQANTSQQALAMASAAGIALGDAVCEHALAFARSVVPAQVQVEVFAIDRQGGIVGHAGALS	PGPT0004615_924	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004615-cbiD-K02188	NA	NA
D1-36_00616	1212	cobL		Precorrin-6Y C(5,15)-methyltransferase [decarboxylating]	ATGACCCCCTGGCTGACTGTAGTGGGCATCGGTGAAGATGGCTTCAAGGGCCTGGGCCGAACGGCTCGCCATGCATTGCTGCGGGCGCCGCGGATTCTGGGCAGCGCTCGTCAGTTGGAACTGTTGCCACTGTGTATTCGCGGCGAAAGGGAGCTATGGCCCAGCCCGTTCTCCCTGGAGCCGCTGCTGGCTCGAAAGGGCGAAGCAGTGTGCGTGCTGGCCAGCGGCGATCCGATGTTCTATGGCGTGGGCGCCAGCCTGGCGAAACAAGTGCCGGGTGATCAGATGCTGGTCATCCCCGCGCCGTCCTCCTGTTCGCTGGCGGCGGCGCGCATGGGCTGGCCGCTGCAGGACGTGGTCCCGCTGTCGCTGGTGGCGCGCCCCCTGGCGGTGCTCAATGGGTATTTATCCACAGGCGTGAGGCTGTTGCTGCTGAGCAATGATCGCCACAGCCCCGGCGCGGTGGCGACGTTGCTGCGCGAGCGCGGCTTCGGCCCGAGCGCCATGACTGTGCTGGAGCATCTCGGCGGTGCGGCAGAACGCCGGATCGACGGTTGCGCCGCGCAATGGTCCGATGAAACCGTCGCCGACCTGAACCTGATCGCCATCGAATGCCGGGCCGAACCATCGACACAGCGCCTGTCACGCCTGGCCGGTCTGCCGGACACCGCGTTCGAACATGACGGCCAATTGACCAAGCGCGACGTGCGCGCCATCACCCTCGCCCGCCTCGCCCCCACGCCTGGTGAATTGCTGTGGGATGTCGGTGCCGGGAGCGGCTCCATCGGCATCGAATGGATGCGCACCCACCCCAGTTGCCGGGCCCTGGCCATCGAAGTCGACGAGGGCCGCCAAGGCTTGATCGAACGCAACCGCGACACACTCGGCGTGCCGGGCCTGCAATTGATTCGCGGCAGCGCCCCGCAAGCGTTGGAAAACCTGGAGCGGCCGGACGCGGTATTCATCGGCGGCGGCGTCACCCGCGAAGGCGTACTCGACACCTGCTGGGCCCACCTCAAGCCCGGCGGGCGGCTCGTCGCCAACGCCGTGACCCTGCAGAGCGAAATGACCCTCATGGGCTGGCGCGAACGCCATGGCGGTGAGCTGACCCGCATCCACATTGCCCAGGCGCAGCCGTTGGGTGAGTTCGACACCTGGCGCCAGGCGCTGCCGATTACCTTGCTGGACCTGACGAAGCCCCTCGATGCGTGA	MTPWLTVVGIGEDGFKGLGRTARHALLRAPRILGSARQLELLPLCIRGERELWPSPFSLEPLLARKGEAVCVLASGDPMFYGVGASLAKQVPGDQMLVIPAPSSCSLAAARMGWPLQDVVPLSLVARPLAVLNGYLSTGVRLLLLSNDRHSPGAVATLLRERGFGPSAMTVLEHLGGAAERRIDGCAAQWSDETVADLNLIAIECRAEPSTQRLSRLAGLPDTAFEHDGQLTKRDVRAITLARLAPTPGELLWDVGAGSGSIGIEWMRTHPSCRALAIEVDEGRQGLIERNRDTLGVPGLQLIRGSAPQALENLERPDAVFIGGGVTREGVLDTCWAHLKPGGRLVANAVTLQSEMTLMGWRERHGGELTRIHIAQAQPLGEFDTWRQALPITLLDLTKPLDA	PGPT0009270_72	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0009270-cobL-K00595	NA	NA
D1-36_00617	1320	sir_1	COG0155	Sulfite reductase [ferredoxin]	TTGAACGAACGTCCGTCCCGCCACGTCATACGCCCCTCGGGTTGCCCCGGGTTGCTGCGTGTCGTCCAGGCGCTGGACGGTGGGATCTGTCGGATCAAGCTCGATGGCGGTTCGATCCAGGCGGACCAGGCCGAGGCCGTGGCATTGGTGGCCGAGCGGTTCGCCGGCGGTGTGATCGAGGCGACCAACCGAGCCAACCTGCAAGTTCGTGGGATCGGCCCCGAGCGCGACGCGCTGATCGAGTCTTTGCTGGCTGCTGGGCTTGGCCCTCGCAATCCGGCCGGCGATGACGTGCGCAATCTCATGCTCAGCCCCTCGGCCGGCATCGATCGGCGGATGCTCATCGACACTCGCCCATTGGCCGAACAGATCCTCACTACGTTGCAAACCCACGAACGTTTCCATGAACTGTCGGCCAAGTTCGCCGTGCAACTGGACGGTGCAGAAGCACTGGCGATGCTGGAACATCACCACGACCTGTGGTTGTCGGCGTTGGTACGCGATGGTGAGCCCTGGCTGGCCTTCGGCTTCGCTGGCGTCCCGCTGGACGAGCCGGCGGGACGGGTACCCCTGGCCGAAGGGCACGCCTTGGTGGTGGCGGTACTTGAGCTGTTCCTCGACCTGGCCCGCCCCGACCAGAACCGCATGCGTGAGTTGCTGGCTGAACTCTCCGCGGATGAATTCGTCACGCTTTTGGCCCGCCGGGTACCGCTGCAACCCTGCCCGGATTGGCGGCGGGTTGCTTCGACTGATGGCTTGCACATCGGTATTCATCCCCAGCATGACGAGGGCGTTTTCGTTGGCGCCGCGGTTCCCCTGGGCCGGCTCGATGCCGCCATGCTGCGCGGCGCGGCGCGGCTGGCGCGGGAGAAGGGCGACGGCAGCCTTCGTTTCACCCCTTGGCAAAGCCTGTTGCTGCCTAACGTTCGCGCCGATAACGCCGCCGGTGTACTGGCGCGGCTTCAGGCGCTGGGCCTGTTGGTTTCGGTCGATCAGCCCCTGGCGCAGCTCATCGCGTGCACCGGGTCCAGTGGCTGCGCCAAGGCCATGGCCGACACCAAGGCCGACGCTCACCAATTGGCGGAGCGGCTGCACCGCCGTGGCCAGGCGCTGAGCATTCATTTGTCCGGTTGCCCGCGTTCCTGCGCGGCGGCCCATATCGCGCCCGTCACCTTGTTGGCGGTCGCCCCCGGTCGTTATGACCTGTATTTTCGCGATGCGACGCTGCCGGGTTTCGGCGCGTTGCAGGCGCACAATCTGACTATCGAAGCGCTCGACCACTGGCTCGACGCTCATCCCCGGAGCCCCCTTGATGCTTGA	MNERPSRHVIRPSGCPGLLRVVQALDGGICRIKLDGGSIQADQAEAVALVAERFAGGVIEATNRANLQVRGIGPERDALIESLLAAGLGPRNPAGDDVRNLMLSPSAGIDRRMLIDTRPLAEQILTTLQTHERFHELSAKFAVQLDGAEALAMLEHHHDLWLSALVRDGEPWLAFGFAGVPLDEPAGRVPLAEGHALVVAVLELFLDLARPDQNRMRELLAELSADEFVTLLARRVPLQPCPDWRRVASTDGLHIGIHPQHDEGVFVGAAVPLGRLDAAMLRGAARLAREKGDGSLRFTPWQSLLLPNVRADNAAGVLARLQALGLLVSVDQPLAQLIACTGSSGCAKAMADTKADAHQLAERLHRRGQALSIHLSGCPRSCAAAHIAPVTLLAVAPGRYDLYFRDATLPGFGALQAHNLTIEALDHWLDAHPRSPLDA	PGPT0009250_228	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0009250-cobG-K02229	NA	NA
D1-36_00618	627	cobH		Precorrin-8X methylmutase	ATGCTTGATTACATCCGCGACGGTCAGGAGATCTATCGCAACTCCTTCGCGATCATCCGCGCCGAGGCCAACCTGGCGCGCATACCGGCCGATCTGGAAAAACTCGCGGTGCGGGTGATCCACGCTTGCGGCATGGTCGAGGCGGTCGATGGCCTGCAGTTTTCCGAGGGCGCGGGCACGGCCGGTCGCCAGGCGCTGGCGGCCGGCGCGCCGATCCTGTGCGACGCGCGGATGGTTTCCGAGGGCGTGACGCGGGCTCGCCTGCCGGCCAACAATCCGGTGATCTGCACCTTGCGTGACGAGCGCGTGCCGGCGTTGGCCCTGGACCTGGGCAACACCCGCTCGGCGGCGGCCCTTGAGCTGTGGCGCCCACACCTGGAAGGCAGCGTCGTGGTCATCGGCAATGCTCCAACGGCACTCTTCTACCTGCTGGAAATGCTCGACGCCGGGGCGCCAAAACCGGCCCTGATCCTCGGTTTTCCGGTGGGGTTTGTCGGCGCCGCCGAATCCAAGGCGGCGCTGGCGGCCAACAGCCGGGGCGTGCCGTTCGTGATCATGCAAGGGCGGCTCGGCGGCAGCGCCATGGCCGCCGCCGCCGTCAACGCCCTCGCCACGGAGGTGGAATGA	MLDYIRDGQEIYRNSFAIIRAEANLARIPADLEKLAVRVIHACGMVEAVDGLQFSEGAGTAGRQALAAGAPILCDARMVSEGVTRARLPANNPVICTLRDERVPALALDLGNTRSAAALELWRPHLEGSVVVIGNAPTALFYLLEMLDAGAPKPALILGFPVGFVGAAESKAALAANSRGVPFVIMQGRLGGSAMAAAAVNALATEVE	PGPT0004610_1415	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004610-cbiC-K06042	NA	NA
D1-36_00619	735	cobI		Precorrin-2 C(20)-methyltransferase	ATGATGCAGCAGCCAGGACGCCTGATCGGCCTCGGCGTAGGGCCCGGTGACCCCGAACTGATCACAGTCAAAGCCTTGCGCCTGCTGCGCGAATCGCCCGTGGTGGCGTACTTCGTCGCGAAGGGCAAGAAGGGCAACGCTTTCGGCATCATCGAGGCGCATTTGCAGGTCGCGCAAACGTTGCTGCCGCTGGTCTATCCAGTCACCACCGAGGTGCTGCCAGCGCCGCTGTCCTATGAAGAGGTGATCGCCGACTTCTACGACACCGCCGCCGAACAGTTGGCGGTACACCTGGACGCCGGTCGCGACGTGGCGGTCATCTGCGAGGGCGACCCGTTCTTCTACGGCTCCTACATGTACCTGCACGATCGGCTGGCCGAGCGTTATGTCGCCGAAGTCATCCCGGGCGTGTGCTCGATGCTCGGTGGTGCCTCGGTGCTCGGCGCGCCGCTGGTCTATCGCAACCAGAGCTTGTCGGTGCTTTCGGGGGTATTGCCCCACGGGGAACTCAAGCGCCGGCTGGCCGACGCCGACGCGGCGGTCATCATGAAGCTGGGACGCAACTTCCCCAAGGTTCGACAGGTGTTGCAGGAGCTGGGTCTGGATGGGCGGGCGTTGTATGTGGAGCGAGCTACCATGGCCAATCAGAAAATCGTCCCGCTGGATGAAGTCGAGCCGATGTCCTCGCCGTATTTCTCGCTGATCATCGTCCCTGGCGAACGGTGGCAGGGATGA	MMQQPGRLIGLGVGPGDPELITVKALRLLRESPVVAYFVAKGKKGNAFGIIEAHLQVAQTLLPLVYPVTTEVLPAPLSYEEVIADFYDTAAEQLAVHLDAGRDVAVICEGDPFFYGSYMYLHDRLAERYVAEVIPGVCSMLGGASVLGAPLVYRNQSLSVLSGVLPHGELKRRLADADAAVIMKLGRNFPKVRQVLQELGLDGRALYVERATMANQKIVPLDEVEPMSSPYFSLIIVPGERWQG	PGPT0004690_560	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004690-cbiL-K03394	NA	NA
D1-36_00620	1701	cysG_1		Siroheme synthase	ATGACGGCAAAAGCTCCTGCCATTGTCATTCTCGGCACCGGCAGCCTGGCAACGGCCCGGCGAATCCAGCAGCGTTATCCCGAGGCTTTGATCCATGGGCTGGCGGGCCGGGTCGAGGGCAGCGATCGGCCATACGCCGAGTTTGGCGCAACGTTGCGCCAGCTCTATCAGGAGGATTCGCCGATCATCGCGCTATGCGCGGCTGGCATTGTCATCCGCACGCTGGCGCCGCTGTTGCTGGAGAAGGGCGTCGAGCCGCCGGTGCTCGCCGTGGCCGAGGATGGCAGCGCCGTGGTGCCGTTACTGGGCGGCCTGGGGGGCGTGAACGTCATGGCCCGCGAGATTGCCGGGGCGCTCCAAGTCGCGCCGGCCATCACCACCAGCGGCGAATTGCGTTTCGGCACATGCCTGCTTAATCCGCCAGGCGGCTACAGCCTTGGCGACCTGGAGCAAGGCAAGCGCTTCGTGTCCGACCTGTTGGCCGGTGAGCCGGTGCGGATCGAGGGCTCGGCGCCGTGGCTGGACCAGGCGCAGTTGCCACAGGATGCACAGGCGCGGCTGGCGATTCGTGTCGACAGTGCCGCGGGCGTGCCGGCGGCGGATGAGTTGCGCATCTATCCGCGCAACGTCGTGGTCGCGGTGAGCGCCGGCGCGTCAGACGATTCCACCGCCATTGTCCAAGCGCTGGCCCAGGCGGGGCTTGCAGTGCAGTCACTGGCCTGCCTGTTGGCGGCGGACAGCGACATGGCGCGCCCGCAATTGCAACAAGCCGCTTCGGCCTTGGGCGTACCGCTGCGATTCGCCGCGCCCGACGGCAGCGTCGCGCAGTGGCTGGCCGGTGCCTTGGGGCAGCCGGTATCGATTCAGACCACGGGCAATATCGCCATTGCCGTGGCCGCACAACCCGTCGATCCGCAACGGATCGGACGCGCGCGCGGACGTCTGGCGGTGATCGGTCTTGGCCCTGGCGCGGCCGAGCTGATGGTGCCGGCCGTGCGCGCCGAACTTGACCGCGCCACCGACGTGCTGGGGTATGAAACCTATGTGCGCATGGCCGGCCCTTTCCGTGCCGACCAGATGCAGCATTGCACCGACAATCGTGAAGAGATGCAGCGCGCCCGGCACGCCTTTGAACTGGCTGCCCAGGGGCGATCGGTGGTGGTGGTGTCTTCGGGTGACCCTGGCGTATTCGCCATGGCGGCGGCGGTGCTCGAAGCGTTGCATGAATCCAGTGACCCGGGCTGGCATAACGTCGACTTGCAAATCCTGCCGGGCGTGTCGGCCTCCCTGGCCACTGCCGCCCAGGCCGGCGCGCCGCTGGGGCACGATTTCTGCGTGATGTCGCTGTCGGACAATCTCAAGCCCTGGTCGATTATCGAGAAGCGCCTGGCCCTGGCGGCGGAAGCCGACCTGGCCCTGGCGTTCTACAATCCGATTTCCCGTTCTCGCCCATGGCAACTGGGCCGTGCGCTTGAGATCGTGGCAGAACACCGTGCTCCGGATACTCCGGTGGTCTTGGGGCGCGACATAGGCCGTCCCGGCCAGACATTGCGTGTTACGACACTGGGGCAGCTGACCCCGGAGCAGGTCGACATGCGCACGATGGTGCTTGTGGGTTCTTCCACGACCTGTGTCTTCCCTCGTGCCGAGGGTGGGAACTGGGTCTACACCCCACGGTGGTACGGCGATAAACCGCTCTGA	MTAKAPAIVILGTGSLATARRIQQRYPEALIHGLAGRVEGSDRPYAEFGATLRQLYQEDSPIIALCAAGIVIRTLAPLLLEKGVEPPVLAVAEDGSAVVPLLGGLGGVNVMAREIAGALQVAPAITTSGELRFGTCLLNPPGGYSLGDLEQGKRFVSDLLAGEPVRIEGSAPWLDQAQLPQDAQARLAIRVDSAAGVPAADELRIYPRNVVVAVSAGASDDSTAIVQALAQAGLAVQSLACLLAADSDMARPQLQQAASALGVPLRFAAPDGSVAQWLAGALGQPVSIQTTGNIAIAVAAQPVDPQRIGRARGRLAVIGLGPGAAELMVPAVRAELDRATDVLGYETYVRMAGPFRADQMQHCTDNREEMQRARHAFELAAQGRSVVVVSSGDPGVFAMAAAVLEALHESSDPGWHNVDLQILPGVSASLATAAQAGAPLGHDFCVMSLSDNLKPWSIIEKRLALAAEADLALAFYNPISRSRPWQLGRALEIVAEHRAPDTPVVLGRDIGRPGQTLRVTTLGQLTPEQVDMRTMVLVGSSTTCVFPRAEGGNWVYTPRWYGDKPL	PGPT0009255_361	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0009255-cbiGH_cobJ-K13541	NA	NA
D1-36_00621	5991			hypothetical protein	ATGAAACGATTCAAAGATTCACCCGTGAGGGATTACGCCACTTTCGACAAGTTGGTGGCGCGCGATGCGCTAGAGCGAATATTGACGCCTTATACAGGTACCGAAGGATACGACGCAGCGCTTAGATACTATGACAGCTGTGTCAAAACGCGAGATACGCCTGAAATGCTGACGCCTTTGGCGTTCCTGAAAAGAACCTTGGAGTCGCTTCAGGGGCAAAGCAGGCGTAGGCGTGCGTCAGAATCGTCTTCGGACCCGGCCAGCGAGGATATGGGCCTGAGGCGTAGTCACCGCAGGGTAGAAAGTTACGAAACGCGCCTGTCCAACCGTATTGAGTTAATGAAACAACCCGTCAGCGAAGTGCCAAGAAAACTGCATTTTGTTTGGCTTGGCGGAGGCTTGGGCGATATTCAGCTGGATTACCTTCGCCTGTGGAAACAGGTAATGCCCAAAGATTTCACCGTGAATGTCTGGCATGACCCGGATGGGCTATTGGTACACGAAACTACGCGAATTATCGTTGAGGCGGCTAAGGCTGATACATGGGGTGGCGAAGAGCAGTCGGCGGCGTCTGGCGATGATCTGGCCACTCGCTACGAGATGAGAGTGACGGCGTTGAAGCGCCAGATGTCAATGCACATTGACCGAGCTATCAAACGGGGTAAGCGTGCGGACGAAGCACGCATAGACTTGTTGGTTCGCGGATATGAACGCGATGAAAGTGTTCTGCGCGCACTGAAGAATAAGAACGCTCAAGTCATGCACGGTTTGAGCGACGAAGGCATGCAACTGCGCGACGTCCGTGAGCTTCAGGCTTTCCCTCGTCTGGGGGAATTTTATCATCGTGAAATGTCCTTGCGCGGTAACCTCGCGGCAGCCTCGGACATTGTGCGGATGCTGGTGGTGCATGACGAAGGTGGTATCTACAGCGATGTGGACTTCTTGCCGCCCTTTGTCCAAGGCGTGGCGGGCGTTGATATCAACCGTCTGGAGAAGCAACCACGGCTGGGCGCGTTGCAGTTGTTGCTCAACAATAATCCCGATTGGATGCCGGGTCGCCAGGCGCTGGCCGATCGATACAAGGACTACACCGCTGCCATCCCTGAAGAGCATCGCGGGGCGTTGGAACAATTTGCAAAAACTACCCCGTCGTTGAAGCAAGTGTTTGCTCCGTTCACGGATGGCAGCGCGCGTGCCGACAGTTTGCGCCTGGCCCAAATCGAAGGGGGGGAATCCAATGCCTTGATTATCAGCCATCCGGGGTCGGCTGCGGTCAATGCCATTATCGAGCGTTTCGAGATTCATCATCAGGCACTGCTCGCTGTTGAGCGCGAAGCCCGCAAAAATAATATCGATTTCCATGAGGCCAACCGCATCTTGAATCTTGCGGAGCGAGTCCTCAAGGTTGAATTCGATATCGTCGAGGAAAAGGTCAGCATTGAAGATAGCCATGCCTTGAGGCTTCGCGTGGCAATAATGGACTATTTCAGTGACGGTTTACGTCCCCAGGCCCAGGGTTCGATATTCCTGACGGGGCCGGGCGCTGTGCGGGCGGGGCTGATGGAGTATGGGAGCAGGTTTCTCACGCCACATGGGGCTCAAGCGCTACGCAAATCCATTCGGTTGAAGACGGGCTTCAACAACAATACGGAGGAAGAGCAGGACCATTCATGGAAGGAAAACACCGAAGACATGGACGCCTGGTTCGCAGCCGAAAAAGCTCGCTGGACCGAAGGCCGGATGCAAGCCCGCTACACCGCGAACCTGGCGGAACTGCTCAAGCCGTACAGTATCGAGTTCGAGGAAGGCTGGCCGTTGATCGAGGGGCGCCATGTGCTCTCCACCGACGTGCTACAGCCACTCGCCGATGAGTTGGGTGAGCCCTTCATCACCGCGATGAGTCAGGGCCACACCGGTGAGGTGGTATTCGATGAGGTCATTCCCCTGGGGTTCGATGACCGCCAATCCATTCGTGCCCAAAGCAACGGAAAACTCATGCCAGCGCCACCGCGCGAACAGCGGGTGCAACCGTTATCCATTGGGCAACTCTTGAACGAGATGGCTGGCGGGCATCTTGACGTTCTCCAGTTGGGACCGCTGCAACGCCTTCAGATTGGGGCATTGATCGGTTTGAAGAGGCTGGACAATGCCAGTTTCGACGCGGCTCGCCCGCAGTTGGAAAACCTGCTCAATGATTTCAAGAAACCCGGGACCCTGAACCGTTACACAGCAATCGAGCGCGCGTTATATGCGCATCAGGCCCCGGCGTTCCTGGCAGGGATTGAAAGTGCGGTGAACGGTGGTCCCCGGCATGACGAAACCGCGTTGGGGCTGAGGAGGTCCCTGCTCGAAAAGCCGTTGACGTTACGTCAGTGGGGTCAATACGTAGAGCGCGTCCAGCAGGCGGCGATGCATGAATACCGGAGCCAGATAGTCAGGCGGTTGAACACTGTTCTGTTTGCCGTTGACCCGAACGCTTTCAGGTCCGTACCACAGGACCTACTGTTCCAGGGCCCGGGTGATCGCGTAGCTGGGCGTTGCTACCCATTGTCCCTGGCCATGGCGGCTGCTTTTTCTCAGGGGGCGGATGCCATTCGAACCCTGTGTAATCGATTCGAGCTGGCGATCGCGGCATCTGACGAGGGGGACTCGCCTGATTTCATGAGCAGCCTGGAATCGTTGCGTGAGATGAAAGTGGACAACGTGGGTAATGCCCTCGAACGCGCTGATCTGGGTGAGGTCGTGCATATTCTGCAGAACAAGACGGCCAGTACATTGATGCTCAATTCAGATAATCACGTCATGCTTGCCGCAAAGACTATCGAAGGCGGACACGAAACCTACCACTTCTACGATCCGAATTTTGGCGTGTTCGGTTATGAGGACGCCACGGGTTTTACGAAGGCGCTGGAAGAGTTTTTTATCACCCAGGGGATGGCCGCCCAGTACGGCGCATATGGCGAAGAGACTCATCCTTCGTTTGACTTGATCGAGCTGGATGGTAGCCGGGTGGCAAAGGAGGTATTACCCAATACGGTACGGGTTTCGCAGTTGTTGCTACCCGACGCCTTACGAGGCCAGTCGCAACGCTCTGTCAGGACGCGGATCGCCAGCGCCCGGGGACAATCGCTCCAGGACAATCCGCGACTTGGCAGTTGCTTGCTGGCCTTGGATGGCCATTGGTGGGCGCAACAGATCGCTGACGCGACAACGCGTTTGCAACAGACGAGTGAGTCTGCCTCAAGCCTCGTACCGCTGTTCGACACTCTGGAGGGTGATCCGGACGGGACGTACCGGATAACCATGGTCGATCCGGCCGATCCAGGGCATCCGGTACAGATCAAGACCGATGACCATCGTCTCCTGCGCATAAAAAACCACCTTTCGGAACGTTTCTCGACGTTGGCCAACCAGCCCACCGCCACGGACGATGCCCATGCGGTGGGCGGCGTTCATACGTTGAACGCCGGTTTCGCCATCCAGGCGTTGATGAACGCGCTGAGGGGACGGGAAGGGGCCGACCGTCCCCTCACCCTGGCGGTGCGATTGCATGCCTATGTCAATTACGCGCAAATGGCCCATGGCACTGTGGCCGACGTCGCCGGGCTGGTCGGCCTGGTTCGCAAAGCGTTGGATGAGGAGAAACTGATCGCTAGCACCGTCGCGCCGGTGGTCAAGGCCTCCGTGGGCGCCACTATGAGCGAAGCGACGGGGGGGTTGCTGCAACTGGCGAATGTCGGGTTCGACATCTACCAATTAGCGACCGCGCATAACGATGTTGAACGCGCGCAGTTCGGTACCCAACTGGCTTTCGATTCGGGCGGCCTTGCATTGTCGGCGGGTGCCCTGATGGCGGGCGCCACGACCGGGGCGTTCCTCGGCAGCGCTTCCGTGTTGCTGGCGGGGCTGGGCGTTGGAGTCGCCGCACTGGCCCAGGGGTTTGCCAACATTGCCGAGGAAGCCAAGCAGGTCGGGTTGTTTTTCGATGAGGTGGCAAAAGCCCACTTGAACGCCTATCGGCTCGACGCGGCTCATGGCGCCTGGAAGCCACGCCCGTCGCTGATCATCGACGCCGTGAATCTGGCCGATGGAACCCTGAACCTGGGCAGTCCCAAGCTGTATCCCTTGTACGATCATTTTGGCGTGCCATCGTTTTCGACCGACCGCGGCCAGCCGATCGATATCCGCGGGGAACTGGACTTGCCGTCTCGAGTCAGCTTCACGCCGCCCGCCGGCCAAGCCATCGTCTTGCCGTGCATTCCGCAGACCTGTTACCGCTACGAATACAAGGCTCTGCCCTTTGCGAACTGGCGCCATGACACCGGTTTCGACACGGCGCGACGCCTGGAGAAAAGAAAGGCGAACGGCGAATGGCTGTTCCTTTTTTCCTTCTATTCGTTTCCCAGTGACTACATCCTCCATCGTCTTTTCGAGCCGGACTATAGTTCAACCACGATCGATGTAGTGCTGGATGATACCGATCGTTCGCTGGTGATCCCCGAGCTTCCGCCGATCTGGCACAAATTGATCACTTATCGCATCCAGGGCGCCGGCAAGCGGTGTGCGGTGCTGATCAACCCCGGTGTGAAGCTGGCTCTCGGTACAACGCAATCAGGTCATTCGACCTGGATACTGGACGCTCCCTGGGCCGAGGAAAGCGATATCAAGTTTCCATCCACGGAACGTCTGTCCATTGGTGACGTTGAGGTGACATTCACTGCAACTGGAAGCCATGAGGTTTTGTTGCGGACCGCCCAAGGAAAAGTGTTCCAGGTAGACCGAGGCTCTCGCCAGCTCAATGTTGTCCTGGAGGTGGTGCCGGAGTGCCAGGGCCAGCAGGCACTGCAGGAACATTTCAAGGCCTTGAACCAACAGCACCGGCTGACGGCACCGTACACGCCGGTTCGTCAATACCTGATTCCGTTCGAAGACCCGAAACCCCCGCGACACGTTACGGCTTGGTACGACTCGAAAGAGGACCGTTTCCTCTACATCCGCGATGAAATCATAGGTGACGAACCGACATCGCTTGGGGCGGTGGTAAATGGTTATGCCTGGTTCTATGACACGAAGGATGTGAGGATCTGGCAAGTCGACGCTAAGACAGGGCTGTTGAGCCGACACTATTGGTTGTGGGGTTCAATAAGCGTAAAGGCGGTGATCAAGAGTGTCGAGGCAGACGCACAGGGGATCATCCATATCGTGCAGCAGATTACCCGCAAGGATCGCAGCATCGATGTTCTGGCTTACGTCATCCAGGATGAGAGACTGCTGCTGACTTCGATCACGCGAGGTTTGGACCCCCATCTGGAAGCACTTCTAGGGAGCAGCGAAACCCTTCGCGACTGGTCGCTAGTGCTTGCGGATGGTTTTGAATATTCGTCAACGTTTGGAGGGATGCACACTTTCGAAACTGTCACCTGGCAACCGGCGCCCTTTGTATCGATCTGCTGGAAGCTGAACGATGCAGACAGGGATATGGCGTGGGTGCGCTGGGGCGATAACCTGATCATTCGTCCCGTGCCGCCACCCAAGCATTACCGCAGCTGGCCTGACACGATCAAGGACGGGACCGAGCTGACCCTGTTGAGCCTGGCAGACGAAATCGATGCATTCATGATTTTCGACCGCAAATACCGGACGGTGTGTCGTCGGCAGCGCACCCTTGTCGATGGCAAGGCAGTTTGGTCCGATAAATGGCGGCAGAGAGGGTTCGTCGAGGATTTCGTTGCCATGGACAACGGATACGCGGCCATGAGGACCGACGGCTTGTTCTTCAACCTGACCCGCCAGGGAGACCTTCGGTTTGGGGGCATAAACGAACATTGGTTCAAGGCGCCGCCGCAGAAACAACAGCATTGGTGGCCTGCCCTGGAGTCACTCGCCCGCAAGCAAAACACCGATCGTTTCGATCTTCTGGGGCTGGTCGCTCCCCGACGGCAAGACGAGGTTGTACGCCTGGTACATCGACAACAGGCTGCTGCTGGCTAA	MKRFKDSPVRDYATFDKLVARDALERILTPYTGTEGYDAALRYYDSCVKTRDTPEMLTPLAFLKRTLESLQGQSRRRRASESSSDPASEDMGLRRSHRRVESYETRLSNRIELMKQPVSEVPRKLHFVWLGGGLGDIQLDYLRLWKQVMPKDFTVNVWHDPDGLLVHETTRIIVEAAKADTWGGEEQSAASGDDLATRYEMRVTALKRQMSMHIDRAIKRGKRADEARIDLLVRGYERDESVLRALKNKNAQVMHGLSDEGMQLRDVRELQAFPRLGEFYHREMSLRGNLAAASDIVRMLVVHDEGGIYSDVDFLPPFVQGVAGVDINRLEKQPRLGALQLLLNNNPDWMPGRQALADRYKDYTAAIPEEHRGALEQFAKTTPSLKQVFAPFTDGSARADSLRLAQIEGGESNALIISHPGSAAVNAIIERFEIHHQALLAVEREARKNNIDFHEANRILNLAERVLKVEFDIVEEKVSIEDSHALRLRVAIMDYFSDGLRPQAQGSIFLTGPGAVRAGLMEYGSRFLTPHGAQALRKSIRLKTGFNNNTEEEQDHSWKENTEDMDAWFAAEKARWTEGRMQARYTANLAELLKPYSIEFEEGWPLIEGRHVLSTDVLQPLADELGEPFITAMSQGHTGEVVFDEVIPLGFDDRQSIRAQSNGKLMPAPPREQRVQPLSIGQLLNEMAGGHLDVLQLGPLQRLQIGALIGLKRLDNASFDAARPQLENLLNDFKKPGTLNRYTAIERALYAHQAPAFLAGIESAVNGGPRHDETALGLRRSLLEKPLTLRQWGQYVERVQQAAMHEYRSQIVRRLNTVLFAVDPNAFRSVPQDLLFQGPGDRVAGRCYPLSLAMAAAFSQGADAIRTLCNRFELAIAASDEGDSPDFMSSLESLREMKVDNVGNALERADLGEVVHILQNKTASTLMLNSDNHVMLAAKTIEGGHETYHFYDPNFGVFGYEDATGFTKALEEFFITQGMAAQYGAYGEETHPSFDLIELDGSRVAKEVLPNTVRVSQLLLPDALRGQSQRSVRTRIASARGQSLQDNPRLGSCLLALDGHWWAQQIADATTRLQQTSESASSLVPLFDTLEGDPDGTYRITMVDPADPGHPVQIKTDDHRLLRIKNHLSERFSTLANQPTATDDAHAVGGVHTLNAGFAIQALMNALRGREGADRPLTLAVRLHAYVNYAQMAHGTVADVAGLVGLVRKALDEEKLIASTVAPVVKASVGATMSEATGGLLQLANVGFDIYQLATAHNDVERAQFGTQLAFDSGGLALSAGALMAGATTGAFLGSASVLLAGLGVGVAALAQGFANIAEEAKQVGLFFDEVAKAHLNAYRLDAAHGAWKPRPSLIIDAVNLADGTLNLGSPKLYPLYDHFGVPSFSTDRGQPIDIRGELDLPSRVSFTPPAGQAIVLPCIPQTCYRYEYKALPFANWRHDTGFDTARRLEKRKANGEWLFLFSFYSFPSDYILHRLFEPDYSSTTIDVVLDDTDRSLVIPELPPIWHKLITYRIQGAGKRCAVLINPGVKLALGTTQSGHSTWILDAPWAEESDIKFPSTERLSIGDVEVTFTATGSHEVLLRTAQGKVFQVDRGSRQLNVVLEVVPECQGQQALQEHFKALNQQHRLTAPYTPVRQYLIPFEDPKPPRHVTAWYDSKEDRFLYIRDEIIGDEPTSLGAVVNGYAWFYDTKDVRIWQVDAKTGLLSRHYWLWGSISVKAVIKSVEADAQGIIHIVQQITRKDRSIDVLAYVIQDERLLLTSITRGLDPHLEALLGSSETLRDWSLVLADGFEYSSTFGGMHTFETVTWQPAPFVSICWKLNDADRDMAWVRWGDNLIIRPVPPPKHYRSWPDTIKDGTELTLLSLADEIDAFMIFDRKYRTVCRRQRTLVDGKAVWSDKWRQRGFVEDFVAMDNGYAAMRTDGLFFNLTRQGDLRFGGINEHWFKAPPQKQQHWWPALESLARKQNTDRFDLLGLVAPRRQDEVVRLVHRQQAAAG	PGPT0012375_22	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	INSECTICIDAL_COMPOUNDS	INSECTICIDAL-FIT-SYSTEM,PGPT0012375-fitD|mcf-K19615	NA	NA
D1-36_00622	1125			hypothetical protein	TTGTACGCCTGGTACATCGACAACAGGCTGCTGCTGGCTAAACCGGAGCACGCGACCGTCCTTCGTCTTTTGAACGTCACCCCGGATGGCGAGGCGGCCTGGTTGTTCGATATGTCCAATGGCGAGGTCCTTCGCCAGGCCCTGATCGATCATGAACAGGTGGAGCGCGCGTTCGGTCAAGGTTCGCAGTTGCTCCAGGCTGACGTGTTGGCTCCTGCGAAACGTGAGTGGGCGCCCTGGAAGTTCGTCAACCTGACGGTCGACGGACCGGGATTGCGTGGTGTCACCGAGGAGGGCCTGGTGATCATGCTGCGAGATCCTGGACACGCTTTGCTCACCGGAGTCACCCGTGAGTGGGTGGTCACCCAGGGCGGGCGAGAGCAAGAAGCGCTTGAGCGATTGGCGAGGTCCGTCGCCCATAGCGCCCTGTTGACGGTGGAAGTGCCTGATGGCCTGGCGTGGTTCGTCGCCGATACCGGGCGCATGATCCGGGTGCCCAGGGTTGCCTTCGCGCAAGGATTCGAGGTGCTTGGAACCCAGCACCAGACCAACGTGTTACTTCGCGAAAACAAGGATGGGAAACTGCTGACATACCCCCGCGAAGGGGATGCGGGACCGCTCAGCTATGTTCAGCGTGAGGGCGAGGTGCTGGTTGTCCAGAGCGCCGAAACGAAGATTGATGATCTGCCCGCGCTGCTTCCAGACGATGTGACAACGTTGGTCCTGCGCATGGGCGAAGGTGCGGTGACTTACCGACTTCCACCGTCCATCTGGTGGCAAGTCCAGTCGGTCATCCTTGACTGCCGGCCTTCATTGCCCGACAAGGCTACCGTTCCCGGCACGTTGGTCTGGGACCTCAAGGAGCCTGAGCAACTACAGTTGAGCATTGTCGATGAACACCTGGTGATTTTTGATCCGAACAGCGGACGCAGTGTGATTTGTCGTGAGGTGTTTGCCACCGATGTCAGCTTGCGTGGCAATGTGCGGTTCAGTTTCGGCGGGGCTCGTTACTATTCCGTTTCGACATGGGTGACGCAGGTGGTCGCTTTGTCGGGTAGCCAGAGCATCACGCTAAAGGAGTTACTGGAAACATCGGCGGCGAGGGAAGTCGATTTGGCGGGTTGA	MYAWYIDNRLLLAKPEHATVLRLLNVTPDGEAAWLFDMSNGEVLRQALIDHEQVERAFGQGSQLLQADVLAPAKREWAPWKFVNLTVDGPGLRGVTEEGLVIMLRDPGHALLTGVTREWVVTQGGREQEALERLARSVAHSALLTVEVPDGLAWFVADTGRMIRVPRVAFAQGFEVLGTQHQTNVLLRENKDGKLLTYPREGDAGPLSYVQREGEVLVVQSAETKIDDLPALLPDDVTTLVLRMGEGAVTYRLPPSIWWQVQSVILDCRPSLPDKATVPGTLVWDLKEPEQLQLSIVDEHLVIFDPNSGRSVICREVFATDVSLRGNVRFSFGGARYYSVSTWVTQVVALSGSQSITLKELLETSAAREVDLAG	PGPT0012375_22	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	INSECTICIDAL_COMPOUNDS	INSECTICIDAL-FIT-SYSTEM,PGPT0012375-fitD|mcf-K19615	NA	NA
D1-36_00623	663			hypothetical protein	ATGGCCGACAAACCATTAACCGGACTCGTAACGGGCCCGAATCTGTTCTCATATATCGGGGCACTTTCCCTACAAGACCACGACGACATTGCAGACTGCACCAATATAGCCACCCTATCGGCCGACCTCGGCTATCTCCGTCACGCCAACCCCCGCGATTGGTTTGGCGAATATGTCAACACACTGAATTTTCTCGGCTGGGGGCTTTATGACGGGTCTATCTTCGAAAGCACACAACACTCTTTATCCGGTTCCGTGGCAGAGTTCCTGGTACGAAGCGCCGACGCCATGCGTGATTCACGGCAAGCGAATGCGATGATCGATACATTGGACACCTTCAAGGCCAACAGTCCTGCCCTGTTATCGTTCGATACGGAAACGCTCCAGGGCGAGTCATTTCAAATCGTCCCGGCCCGGTACGACTCACAAGGCAACCTGCATATCGCTCTGTTTAAGCTCGAACTGAGCGTAAATGTAAAAAGAAGCAGTTTTTTGTTCTGGAACTGGGAAAACCGCACTGCCCGAGTGATCCAACGCAAAGCGTACTTGAGACTTGACAGAAGCACGCTGGACACACGAAGGGAATTAATCCGGAAGAAACTTGACGAACAAGTCATGAGACGATTTTCCCTACGAAGCAATCGCCGCATAAGCGGCCAGTAA	MADKPLTGLVTGPNLFSYIGALSLQDHDDIADCTNIATLSADLGYLRHANPRDWFGEYVNTLNFLGWGLYDGSIFESTQHSLSGSVAEFLVRSADAMRDSRQANAMIDTLDTFKANSPALLSFDTETLQGESFQIVPARYDSQGNLHIALFKLELSVNVKRSSFLFWNWENRTARVIQRKAYLRLDRSTLDTRRELIRKKLDEQVMRRFSLRSNRRISGQ				NA	NA	NA	NA	NA
D1-36_00624	825			hypothetical protein	ATGGAAAAGTTTGATAGTGTCGTTAGCGTTGCGCAAAGTTTGGAGTTGGTGAGTGCTCGCATCAATAGGCGGAAGGCGTTGGTTGATACCGGGCGGCGTACGCGCAGGTCCGTTATGCAGACAGTGCAGGATAATCCCAACAAGGAAATGGATGCCTTGATGCTCGGGGATGCACTTTTGGGTTATGGCAATAATATGTCGCTCAATAACATGGCGATCATGGAGAACCTGATCACCATGTCAATCATGGAGGCCAACTATGAGGTGCCTGGCGGCAAGAATACTCATGGCTGGTATGAGGCTTTCATTCGATGCTTGCAGGATCTTGGCTGCTTTGTGGCCGATGACGGCTACTCGCGCTATTCCGAAAATTCGCTACAGGTGGATATGGACAATGTCATCAGCGACATCGTCAAAGGAGTTATCGATGGCGTGAAAGCCAGCCTACCGGCGGCAACGGTACTTGGTGCGGTGGTCAGTACGACAATTGATGGTTTGAAGCAGGACAAGGAGACCATTGACCTATTCAATACCCAAGTCAAGTCCGCCGATGGTGCGCGCCTGTCTGTCCTTCCTTGTGAGCAGTTACCCAACGGTATTCTCATCGCATCCTCCAGTTCGATAAAACAGACCGGCTCCTCAAGTAACGGTGGCGTTCTTTTCGTGAACTGGCGTGCGTCGGCACGGGATATCTTCCGGGGCAAATCGTTCGTGACCTTCAACCCGGAACGTTACGAGGCACTCAGGAACGATATTGAAGGGTATTTGGGCAAGCATCGCAGGGAAGTTCTTAGTAAACGCTTCAGCCGCCGCAAGAGCAGCTAA	MEKFDSVVSVAQSLELVSARINRRKALVDTGRRTRRSVMQTVQDNPNKEMDALMLGDALLGYGNNMSLNNMAIMENLITMSIMEANYEVPGGKNTHGWYEAFIRCLQDLGCFVADDGYSRYSENSLQVDMDNVISDIVKGVIDGVKASLPAATVLGAVVSTTIDGLKQDKETIDLFNTQVKSADGARLSVLPCEQLPNGILIASSSSIKQTGSSSNGGVLFVNWRASARDIFRGKSFVTFNPERYEALRNDIEGYLGKHRREVLSKRFSRRKSS				NA	NA	NA	NA	NA
D1-36_00625	597			hypothetical protein	ATGCTCCATGTGCTGTTCAGCGTTTACCTGAAAATGTTGGTGCTCTACAGCCCCTTTTTCGTGCTGTCGTGTTTTATCAGCCTGACACGCGGCTATTCCCGCAAGGAACAGCGTCGCCTGGCCTGGAAAGTCGCGACCGCAACGCTGGTTTCCAGCGTGTTGCTGTATTTGTTTGGCAGGGTGATCTTCAGCGTGTTCGGCATCACGGTGGATGCGTTCCGTATCGGCGCCGGCAGCGTCTTGTTCATTTCGGCCTTGGGCATGGCCCAGGGCAAGTCGGCGGTACAAACCGATAATGTTCAGCAGGACGTGACCATCGTCCCGCTGACCATTCCGTTGACCGTCGGCCCCGGCACCATCGGCGCCCTGCTGGTGATGGGCGTAAGCCAGCCGCACTGGGACGACAAGCTCATGGCGATCATCAGCATCGCCCTGGCCAGCTTCACCGTCGGCGTGGTGCTCTACCTGTCCAGCCGCATCGAGCGAATCCTCGGCGACCAGGGCTTGCAGATTGTCAGCCGGCTGATGGGGTTGTTTGTCTGTGCGCTGGCGGCCCAGATCATTTTTACCGGGGTGAGAGGCTATCTGGTGCCGTGA	MLHVLFSVYLKMLVLYSPFFVLSCFISLTRGYSRKEQRRLAWKVATATLVSSVLLYLFGRVIFSVFGITVDAFRIGAGSVLFISALGMAQGKSAVQTDNVQQDVTIVPLTIPLTVGPGTIGALLVMGVSQPHWDDKLMAIISIALASFTVGVVLYLSSRIERILGDQGLQIVSRLMGLFVCALAAQIIFTGVRGYLVP	PGPT0029250_2903	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIPLE_ANTIBIOTIC_RESISTANCE,PGPT0029250-marC-K05595	NA	NA
D1-36_00626	2775	rcsC_1		Sensor histidine kinase RcsC	GTGCGCTGGCTCAGGATTGCCATAAGCTTGACCGTTACCCTGCTGACGCTGCTCTGCGTGTTCCCGGCACAGGCTGCGCCCGGCAGCGGCTGGGCGGTATTGCTCGACGAACAGGGCGACCTGAAGCTGAGCGACATCCGCTCTGCCCGCTATACCAACCAGTTCAGCCCCATTGACCTGGATCACCTCAAGGCAGCCGAGCCGGGGGGAGCCCTGTGGCTGCGCTTCCGGCTTTCCCCCGACAGGCATGAACAGATCCTGCGGGTCTTCGCGCCCGATCTGTCGCGCCTGAATCTTTATGTGCTGGATGGCGACACTCTGGTCAGCCAACAAGTCACCGGCAACGCCATGCCGCATACCGAACCTACGGTGCCCAGCAGCGATTTCATGCTGCCCTTGCCGCGCAGCGATAAATCGCTGGACGTCTACCTGAGACTGGCATCGCGCTACGAACTGCGCCCCTATGTCACGTTGCAGCCGGCGGTCCTGGCGGCGGCCAACCAGAACCAGACGCTGGTCTATGGGCTGTTGTTCGGCTGTATCGCCATGCTGATCCTGCACAACCTCACCCGCTACGCTTATACCCGGTCGCGCAGTTGCCTGTGGCTGGCCGCCTGCGAAGGGCTGCTGATGCTCAGCCTGGTACTGCTGCTGAACCTCGCTGGGGCCTGGCTGCCTGACTGGCCGGCGATCCAGACGCCGGGTGCCTATCTGGCCTTGTTGCTGACCGCGCCCTGCGGCTTGATGTTCGCCTATCGTTATTTCGCCCCACTGGGACCGCATCCATTGGACCGGCTGCTGCTGGGCGAAATTGTCTTCATTATGCTCTGCAGCCTGTTGCTGTTATTCGTCAACACGCTGCCCCTCAATATCATGACTTATGCGCTGGTGGCCCTGGCCGGCCTGAGCATGCTGTTCGTCAGCGCCTGGCACTGGCAGAAGGGCTACCGCCCGGCGCGGCTTTTCGTCGCCGCCATGGTGGTGTTCAACCTGGGTACGCTGATCATTCTTCCAGCCCTGCAAGGGCTGACCGAAGTCGCGCCCCAAGGGCTGATCGTCACCTTGCTGGTCATTATCTGCGTCAGCGGCCTGCTGATGAGCGTCGCGTTGGGCGAACGCCAGCGATCGATCAATGAAAACCGTTTCAGCCTGAGCCGCGACCTGGCGGCGAGCAATGCCGAGATCAACGCCAAGGCCGAGTTCCTGGCCAAGATCAGCCACGAGATCCGCACACCGATGAATGGCGTGCTGGGCATGACCGAGCTGTTGCTGGGCACGCCGCTCTCCGTCAAACAGCGCGACTACGTGCAGACGATCCACAGCGCCGGCAATGAACTGCTTACCCTGATCAACGAGATTCTCGACATTTCCCGTCTCGAATCCGGGCAAATCGAGCTGGATGACGTGCAGTTCGATCTCAATGCACTGATCGAGGACTGCCTGAGCATCTTCCGCGCCAAGGCCGAACAGCAGAATGTCGAGCTGATCAGCTTCATCCAGCCCCAAGTGCCTCGGGTCATCAGCGGCGATCCGACGCGGCTGCGTCAGGCGCTGTTGAGCCTGCTGGAAAATGCCTTGAAGAAAACCGATGAAGGCGAGGTCCTGATCGTTGTCGCCCTCGACGAGCGCAGCAGTCAACCGCGCCTGCGAATCGCGGTACAGGACAGCGGCTCGCCCATGGATGCCGAAGAACGCGAAACGCTGATGCATGCCGAGCTGCACAGCAAGAACGTCCTATCGGCCACGCGCCTGGGCGGCAACCTGGGGCTGGTCATCGCTCGCCAGTTGATCATGCTGATGAATGGCGAATTCGGCATCAAGAGTGGCAGCAGCCAAGGCAGCACCTTGTGGCTGACCTTGCCGCTGGACCCAGACCGCCTGGAACATCCGACCGCCGACCTCGATGGCCCGCTACAAGGCGCGCGGGTCTTGGTGGTCGATGACAACGACACCTGCCGCAAGGTGCTCGTGCAGCAATGCAGCGCTTGGGGCCTGAACGTCAGCGCCGTACCGTCGGGCAAGGAAGCCCTCGCGCTGCTGCGCACCAAGGCGCACCTGCGCGACTACTTCGACGTGGTGCTGCTGGACCAGAACATGCCTGGCATGACCGGCATGCAACTGGCCGCCAAGATCAAGGAAGACCCAAGCCTCAACCACGATATCCTGCTGATCATGCTGACCGGCATCAGCAACGCGCCGAGCAAGATCGTGGCGCGCAACAGCGGTGTCAAGCGCATCCTCGCCAAACCCGTGGCAGGTTACACGCTCAAGACCACCCTGGCGGACGAACTGAACCAGCGTAATAAAGGCCAGGCGCCGAATGTCCCGGTCAACGCCGGCCTGCCACTCCCAGTGAAGGTCCCCAGCGATTTCCGCATCCTGGTGGCAGAAGACAACACCATCTCCACCAAGGTCATTCGCGGCATGCTCGGCAAGCTCAATCTGCAACCCGACACCGCCAGCAACGGCGAAGAAGCGCTCAAGGCGATGAAAGAGCAACGCTACGACCTGGTCCTGATGGACTGTGAGATGCCCATTCTCGATGGGTTCTCCGCCACCCAACAGCTACGCGCCTGGGAAGTCGGAAACCAGCGCACCCGCACGCCAGTGGTGGCGCTCACCGCGCATATCCTCGCCGAACACAAGGAGCGCGCTCGCCAGGCGGGCATGGACGGGCACATGGCCAAGCCGGTGGAACTGTCGCAGTTGCGTGAGCTGATCGAACACTGGGTGGCCCAGCGCGATCAGCAAAACAATACAGCGCATACGTCCTGA	MRWLRIAISLTVTLLTLLCVFPAQAAPGSGWAVLLDEQGDLKLSDIRSARYTNQFSPIDLDHLKAAEPGGALWLRFRLSPDRHEQILRVFAPDLSRLNLYVLDGDTLVSQQVTGNAMPHTEPTVPSSDFMLPLPRSDKSLDVYLRLASRYELRPYVTLQPAVLAAANQNQTLVYGLLFGCIAMLILHNLTRYAYTRSRSCLWLAACEGLLMLSLVLLLNLAGAWLPDWPAIQTPGAYLALLLTAPCGLMFAYRYFAPLGPHPLDRLLLGEIVFIMLCSLLLLFVNTLPLNIMTYALVALAGLSMLFVSAWHWQKGYRPARLFVAAMVVFNLGTLIILPALQGLTEVAPQGLIVTLLVIICVSGLLMSVALGERQRSINENRFSLSRDLAASNAEINAKAEFLAKISHEIRTPMNGVLGMTELLLGTPLSVKQRDYVQTIHSAGNELLTLINEILDISRLESGQIELDDVQFDLNALIEDCLSIFRAKAEQQNVELISFIQPQVPRVISGDPTRLRQALLSLLENALKKTDEGEVLIVVALDERSSQPRLRIAVQDSGSPMDAEERETLMHAELHSKNVLSATRLGGNLGLVIARQLIMLMNGEFGIKSGSSQGSTLWLTLPLDPDRLEHPTADLDGPLQGARVLVVDDNDTCRKVLVQQCSAWGLNVSAVPSGKEALALLRTKAHLRDYFDVVLLDQNMPGMTGMQLAAKIKEDPSLNHDILLIMLTGISNAPSKIVARNSGVKRILAKPVAGYTLKTTLADELNQRNKGQAPNVPVNAGLPLPVKVPSDFRILVAEDNTISTKVIRGMLGKLNLQPDTASNGEEALKAMKEQRYDLVLMDCEMPILDGFSATQQLRAWEVGNQRTRTPVVALTAHILAEHKERARQAGMDGHMAKPVELSQLRELIEHWVAQRDQQNNTAHTS				NA	NA	NA	NA	NA
D1-36_00627	1296	purD	COG0151	Phosphoribosylamine--glycine ligase	ATGAATGTTTTGATCATTGGCAGCGGTGGCCGTGAACACGCCCTGGCCTGGAAAGTGGCTCAGGATCCGCGCGTGCAGAAGGTCTTTGTCGCTCCGGGCAATGCCGGCACCGCCATCGAAGCCAAGTGCGAGAACGTCGCCATCGACGTGCTGGCCCTGGAGCAACTGGCCGATTTCGCCGAGAAAAATGTCTCGCTGACCATCGTCGGTCCGGAAGTACCACTGGTTGCCGGTGTAGTCGATCTGTTCCGCTCCCGTGGCCTGGACTGCTTCGGCCCGACTGCCGGCGCCGCGCAGCTGGAAGGTTCGAAAGCGTTCACCAAGGATTTCCTGGCGCGCCACAAGATCCCAACTGCCGACTACCAGAACTTCACCGAAATCGAACCGGCATTGGCTTACCTGCGCGAAAAAGGCGCACCGATCGTGATCAAGGCCGATGGCCTGGCCGCTGGTAAAGGCGTGATCGTGGCCATGACCCTGAGCGAGGCCGAAGAAGCCGTACGCGACATGCTCGCTGGCAACGCCTTCGGTGACGCCGGTTCCCGTGTGGTAATCGAAGAATTCCTCGACGGCGAGGAAGCCAGCTTCATCGTCATGGTCGATGGCAAGAACGTCCTGCCCATGGCCACCAGCCAGGACCACAAGCGCGTCGGCGATGGCGACAGCGGCCCGAACACCGGCGGCATGGGTGCCTACTCCCCCGCGCCAGTGGTCACCGCCGACGTTCACCAGCGCGTGATGGACCAGGTCATCTGGCCAACCGTGCGTGGCATGGCCGAGGAAGGCAACGTCTACACCGGTTTCCTCTATGCTGGCCTGATGATCGACAAGGCTGGTAACCCAAAAGTCATCGAATTCAACTGCCGTTTCGGCGATCCTGAGACCCAGCCGGTCATGCTGCGCCTGCAATCGAGCCTGGTGCTGCTGGTCGAGGCCGCTCTGGCCCAAGCGCTGGACAAGGTTGAAGCCCAATGGGATCCACGTCCGAGCGTTGGCATCGTGCTGGCGGCCGGTGGTTACCCGGGCGACTACGCCAAGGGCAGCGCCATCAAGGGCCTGGAAGCCGCCGCCCAGTTGGAAGGTAAGGTTTTCCACGCAGGTACGGCATTGAAGGACGGCCAGGTCGTGACGGCTGGTGGTCGAGTGTTATGCGCCACTGCCATGGGTGCCAGCGTCGACGCCGCTCAGCAGCAAGCCTACAAGCTTGCCGCGCAGATTGATTGGGAAGGCTGTTTCTACCGCAAGGACATTGGCTACCGTGCCATTGCACGCGAGCGTGGCGAAAACCTGGAATAA	MNVLIIGSGGREHALAWKVAQDPRVQKVFVAPGNAGTAIEAKCENVAIDVLALEQLADFAEKNVSLTIVGPEVPLVAGVVDLFRSRGLDCFGPTAGAAQLEGSKAFTKDFLARHKIPTADYQNFTEIEPALAYLREKGAPIVIKADGLAAGKGVIVAMTLSEAEEAVRDMLAGNAFGDAGSRVVIEEFLDGEEASFIVMVDGKNVLPMATSQDHKRVGDGDSGPNTGGMGAYSPAPVVTADVHQRVMDQVIWPTVRGMAEEGNVYTGFLYAGLMIDKAGNPKVIEFNCRFGDPETQPVMLRLQSSLVLLVEAALAQALDKVEAQWDPRPSVGIVLAAGGYPGDYAKGSAIKGLEAAAQLEGKVFHAGTALKDGQVVTAGGRVLCATAMGASVDAAQQQAYKLAAQIDWEGCFYRKDIGYRAIARERGENLE	PGPT0021575_958	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021575-purD-K01945	NA	NA
D1-36_00628	1608	purH	COG0138	Bifunctional purine biosynthesis protein PurH	ATGACCGACCAGACCACCCGCCTGCCGATCCGCCGCGCCTTGATCAGCGTCTCCGACAAGACCGGGATCCTTGAATTCGCCCGCGAGCTGCAACAGTTGGGCGTCGAGATCCTCTCCACCGGCGGGACCTTCAAGTTGCTGCAGGACAACGGCGTCGCCGCGGTGGAAGTCGCTGACTACACCGGTTTCGCGGAAATGATGGACGGTCGCGTCAAGACCCTGCACCCGAAAATCCACGGCGGGATACTGGGCCGTCGCGGCATCGACGACACCATCATGAACGAACATGGCATCAAGCCGATCGACCTGGTAGCGGTCAACCTCTACCCGTTCGAAGCCACCATCAACAAGCCCGGCTGCGACCTGCCGACCGCCATCGAGAACATCGACATCGGCGGCCCGACCATGGTCCGCTCGGCGGCCAAGAACCATAAAGACGTGGCGATCGTGGTCAACGCCAGCGACTACGCCAGCGTGCTGGAAAATCTCAAGGCCGGTGGCCTGACCTACGCCCAGCGTTTCGACCTGATGCTCAAGGCCTTCGAACACACCGCGGCCTACGACGGCATGATCGCCAACTACATGGGCACCGTGAACCAGGCGGCCGAAACCCTGGGCACCGAAGGCCGCAGCGAATTCCCGCGCACCTTCAACACCCAATTCGTCAAGGCCCAGGAAATGCGCTACGGCGAGAACCCGCACCAGAGCGCGGCGTTCTACGTGGAAGCCAAGCCTGCCGAAGTCGGCATCGCCACCGCCACCCAGTTGCAAGGCAAGGAACTTTCCTTCAACAACGTAGCCGATACCGACGCCGCGCTGGAATGCGTGAAGAGCTTCGTCAAGCCAGCCTGCGTAATCGTCAAGCACGCCAACCCGTGCGGCGTGGCGGTGAGCCCGGACGCCGAGGGCGGCATCCGCCAGGCCTACGAGCTGGCCTACGCCACCGACACCGAGTCGGCCTTTGGCGGCATCATCGCCTTCAACCGTGAACTGGACGCCGAGACCGCCAAGGCCATCGTCGAGCGCCAGTTCGTCGAGGTGATCATTGCCCCCTCCGTCAGCGAAGAAGCCCGCGCTATTGTTGCCGCCAAGGCCAACGTGCGCCTGCTGGCCTGCGGCCAATGGTCGGCCGACCGGGCGCCAGCCTGGGACTACAAGCGCGTCAACGGCGGCCTGCTGGTCCAGAGCCGCGATATCGGCATGATCGGCAGTGAAGACCTGAAGGTCGTGACCCAGCGCGCCCCGAGCGAGCAGGAAATCAACGACCTGATCTTCGCCTGGAAAGTCGCCAAGTACGTCAAATCCAACGCCATCGTCTACGCCAAGAACCGCCAGACCATCGGCGTCGGCGCCGGTCAGATGAGCCGCGTGAACTCGGCTCGCATCGCCGCCATCAAGGCTGAACACGCTGGTTTGCAGGTCCAGGGCGCGGTCATGGCCTCCGATGCGTTCTTCCCGTTCCGTGATGGCATCGACAATGCGGCCAAGGTCGGCATCACCGCGGTGATCCAGCCGGGTGGTTCGATGCGTGATGCAGAAGTGATTGCTGCCGCCGACGAGGCAGGGATTGCAATGGTGTTCACCGGCATGCGCCACTTCCGTCACTAA	MTDQTTRLPIRRALISVSDKTGILEFARELQQLGVEILSTGGTFKLLQDNGVAAVEVADYTGFAEMMDGRVKTLHPKIHGGILGRRGIDDTIMNEHGIKPIDLVAVNLYPFEATINKPGCDLPTAIENIDIGGPTMVRSAAKNHKDVAIVVNASDYASVLENLKAGGLTYAQRFDLMLKAFEHTAAYDGMIANYMGTVNQAAETLGTEGRSEFPRTFNTQFVKAQEMRYGENPHQSAAFYVEAKPAEVGIATATQLQGKELSFNNVADTDAALECVKSFVKPACVIVKHANPCGVAVSPDAEGGIRQAYELAYATDTESAFGGIIAFNRELDAETAKAIVERQFVEVIIAPSVSEEARAIVAAKANVRLLACGQWSADRAPAWDYKRVNGGLLVQSRDIGMIGSEDLKVVTQRAPSEQEINDLIFAWKVAKYVKSNAIVYAKNRQTIGVGAGQMSRVNSARIAAIKAEHAGLQVQGAVMASDAFFPFRDGIDNAAKVGITAVIQPGGSMRDAEVIAAADEAGIAMVFTGMRHFRH	PGPT0008110_1088	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0008110-purH-K00602	NA	NA
D1-36_00629	321	fis		DNA-binding protein Fis	ATGACGATGATGACCGAGACTTTAGTGAGTGGAACAGCACCCGTGAGCGACAACGTGAATTTGAAACAGCACCTCAATACGCCCAGCGAAGAAGGCCAGACCCTTCGCGGGAGCGTCGAGAAGGCGCTGCACAATTATTTCGCCCACCTTGAGGGCGCTGCCGTCACGGATGTGTACAACCTGGTGCTCTCCGAAGTCGAGGCGCCTCTGCTCGAAAGCGTGATGAACTACGTCAAGGGCAACCAGACCAAGGCCAGCGAGCTGCTGGGCTTGAATCGCGGAACCCTGCGCAAGAAACTCAAGCAGTACGATCTACTTTAA	MTMMTETLVSGTAPVSDNVNLKQHLNTPSEEGQTLRGSVEKALHNYFAHLEGAAVTDVYNLVLSEVEAPLLESVMNYVKGNQTKASELLGLNRGTLRKKLKQYDLL	PGPT0025570_74	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-AI1|AI-2|CAI-1_PERCEPTION|SIGNALLING,PGPT0025570-fis-K03557	NA	NA
D1-36_00630	1008	dusB	COG0042	tRNA-dihydrouridine synthase B	ATGTCGGCGGTACGCATCGGCCCATATACATTGCAGAACGGTCTGGTCCTGGCCCCTATGGCGGGCGTCACCGACCAGCCCTTCCGTCAGTTGTGCAAACGATTGGGCGCAGGACTCGTGGTTTCGGAAATGGTCACCAGCGACATGAGTTTGTGGAACACCCGCAAATCGCGCCTGCGCATGATCCACGAAGGTGATCCCGAGCCGCGCTCGGTACAGATCGCCGGTGGTGATGCACAGATGTTGGCGGAAGCGGCCCGAGCCAACGTAGAGCTGGGGGCGCAGATTATCGACATCAACATGGGCTGCCCGGCGAAGAAGGTCTGCAACAAGGCCGCAGGCTCGGCACTGTTGAAAGACGAAGCGCTGGTCACCGAGATCCTGCAGGCGGTTGTCGCCGCGGTCGATGTGCCGGTGACCCTGAAGATCCGCACCGGATGGGACCGGGAGAACAAGAACGGCCTGACGGTGGCGAAGATCGCCGAACAGGCAGGTATCACGGCGCTTGCGGTCCATGGCCGCACCCGTGCCGACCTGTACACCGGCGAAGCCGAGTACGACACCATAGCCGCGATCAAGCAGGCGGTGTCCATTCCGGTCTTCGCCAATGGCGATGTCGACTCGCCCGAGAAGGCCCGGTACGTGCTGGACGCGACCGGTGCCGACGGCCTGTTGATCGGCCGGGCCGCCCAGGGGCGGCCATGGATTTTTCGTGAAATCGAACATTACCTGCGCACGGGAGAAAAGCTCGCTGCGCCGCAGTTGTCCGAGGTGGAACGTATTCTGCTAGAGCATCTGGCCGCGCTGCATGCCTTCTACGGAGAAGTCATGGGCGTACGCATCGCTCGCAAGCATGTGGGCTGGTATCTCGCAACCCTGCCGGGCGCCAGGGAGTTTCGCGCCCGTTTCAATCGTTTGGATGGTACGCAAGCACAATGCGCCGACGTTCAGGCGTTTTTCGCCGAACGTTACAAGAGCCTGACAGGGGACGAAGGGGTGGCCGCATGA	MSAVRIGPYTLQNGLVLAPMAGVTDQPFRQLCKRLGAGLVVSEMVTSDMSLWNTRKSRLRMIHEGDPEPRSVQIAGGDAQMLAEAARANVELGAQIIDINMGCPAKKVCNKAAGSALLKDEALVTEILQAVVAAVDVPVTLKIRTGWDRENKNGLTVAKIAEQAGITALAVHGRTRADLYTGEAEYDTIAAIKQAVSIPVFANGDVDSPEKARYVLDATGADGLLIGRAAQGRPWIFREIEHYLRTGEKLAAPQLSEVERILLEHLAALHAFYGEVMGVRIARKHVGWYLATLPGAREFRARFNRLDGTQAQCADVQAFFAERYKSLTGDEGVAA	PGPT0001030_1	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,PGPT0001030-acoR-K21405	NA	NA
D1-36_00631	1224			hypothetical protein	ATGACCGACAGCTTCGTCACTCAGTGCCCGCATTGCCACACCAGTTTTCGCGTCAGCCATGCTCAATTGAGCGTCGCACGCGGGGTGGTTCGTTGCGGCTCGTGCCTGCAAGTGTTCAATGCCGCGAAGCAATTGCTGGAGCAACGCGCCACCAAGGACGTCGCTACTGCTCCAGCTTCCCCGGCAAAACCCGTGGTCGAAGCGCCACGGGCGATCAGCCAGAAACAATGGACTGCCGCCGAACTGGATCTCGATGACCTGGACAAGGAACTGGCTCGTCTGGAACGGCGCGACAAACGCGCACCCGACACCTTCGGACGGCGCCGCGAAGACAACCTGAGCGCACTGCGCGAGCATCCTTCGAGCGACCAGGAGCCCTGGGCTGACAGCCTGTACAGCGAATCCACCGCCGAGCGCGCCGAGACCGCCATCCAGCCCCCTCTCGAACCGTTCGAGCCCCATGAACCGGCCCGCCCGCCGCGAACCGAGCCATCCTTGTCCCTGGCCCTCGAGCCGCTGGAACCGGACGATGAGCCCGTCGCCCCGCTGAGCCTGGCGCCGGACGAGGAGACCGACGAGCACCTGGAGCGACTGTCCGCCACGGACGACCTGGACGACGAGCCGGAGCCGCTGGCGACACCGCGCAAGAAACGTGATCGCCAGGAGCCCGGCATACGCGCCGAAGCCCTCCAGGACCTGGACGACGACCCGCTGCAACTGGATTGGCGCAAACGCCGCTCGCCCTGGGGCCGGCGCTTGCTTTGGGGTTTGCTGGTGCTGCTCGCCGCCGCCGCCCTGGGCGGTCAGTACATCGCCTATCACTTCGAGGAATTGGCTCGCCAGGACCAGTACCGCCCGTGGTTCCTGCAAATCTGCCCGGCCATCGGCTGCGACGTCCCCTCCAAGGTCGACATCGCCAAGATCAAGAGCAGCAACCTGGTGGTGCGCAGCCATCCAGAGTTCAGCGCAGCCCTGGTGGTGGATGCGATCATCTACAACCGCGCGCCCTTCTCCCAGCCCTTCCCACTGCTGGAGCTGCGCTTTGCCGACCTCAACGGCCACCTGATCGCCAGTCGCCGTTTCAAGCCGGGTGAGTATTTGGGCGGCGATCTCGAAGGCCGGGGGGAAATGCCGCCGCAGACGCCGATCCATATCGCCCTGGACATCCTCGATCCGGGACCGAAGGCGGTGAACTACAGCCTGAGCTTCCATTCGCCCGAATGA	MTDSFVTQCPHCHTSFRVSHAQLSVARGVVRCGSCLQVFNAAKQLLEQRATKDVATAPASPAKPVVEAPRAISQKQWTAAELDLDDLDKELARLERRDKRAPDTFGRRREDNLSALREHPSSDQEPWADSLYSESTAERAETAIQPPLEPFEPHEPARPPRTEPSLSLALEPLEPDDEPVAPLSLAPDEETDEHLERLSATDDLDDEPEPLATPRKKRDRQEPGIRAEALQDLDDDPLQLDWRKRRSPWGRRLLWGLLVLLAAAALGGQYIAYHFEELARQDQYRPWFLQICPAIGCDVPSKVDIAKIKSSNLVVRSHPEFSAALVVDAIIYNRAPFSQPFPLLELRFADLNGHLIASRRFKPGEYLGGDLEGRGEMPPQTPIHIALDILDPGPKAVNYSLSFHSPE				NA	NA	NA	NA	NA
D1-36_00632	879	prmA	COG2264	Ribosomal protein L11 methyltransferase	ATGCCTTGGCTGCAAGTACGCCTGGCCATCAGCCCGGAACAAGCCGAAACCTACGAAGACGCCTTTCTTGAAGTAGGTGCCGTATCGGTGACTTTCATGGACGCCGAAGACCAGCCGATCTTCGAGCCTGAGCTCAACACCACCCCGCTGTGGTCCCACACCCACCTGCTGGCGCTGTTCGAAGGCGGCACCGAGGCGGCCAGCGTGCTCGCCCATTTGGAGCTGCTGACCGGCGGCCCGTTGCCCGAACATCACAGCGAAGTGATTGAAGACCAGGATTGGGAACGCAGTTGGATGGACAACTTCCAACCCATGCGTTTCGGCCAGCGCCTGTGGATCGTGCCGAGCTGGCATGCAGCGCCGGAACCGGACGCGGTGAACCTGCTGCTGGACCCGGGCCTGGCCTTCGGTACTGGCACTCATCCCACCACCGCGCTGTGCCTGGAATGGCTCGACGGCCAGGACCTGGACGGCTGCAATGTGCTTGACTTCGGCTGCGGCTCGGGGATCCTGGCCATCGCCGCCCTGCTGCTGGGTGCCAAGGAAGCGGTCGGCACCGACATCGATGTCCAGGCCCTGGAAGCCTCCCGCGACAACGCCGGGCGCAACAACATCGACGAAGCGCTGTTCCCGCTGTACTTGCCCGAGGATCTGCCGAAGGTACAGGCCGACGTGCTGGTGGCGAACATTCTTGCCGGCCCGCTGGTGTCCCTGGCGCCGCAATTGTCGAGCCTGGTCAAACCGGGCGGACGCCTGGCATTGTCGGGCATCCTCGCCGAACAGGGTGAAGAAGTCGCTGCCGCTTATGCCGCGGATTTCAACCTGGACCCGATCGCCAATCGCGATGGCTGGGTGCGCATCACTGGACGTCGGCGCTAG	MPWLQVRLAISPEQAETYEDAFLEVGAVSVTFMDAEDQPIFEPELNTTPLWSHTHLLALFEGGTEAASVLAHLELLTGGPLPEHHSEVIEDQDWERSWMDNFQPMRFGQRLWIVPSWHAAPEPDAVNLLLDPGLAFGTGTHPTTALCLEWLDGQDLDGCNVLDFGCGSGILAIAALLLGAKEAVGTDIDVQALEASRDNAGRNNIDEALFPLYLPEDLPKVQADVLVANILAGPLVSLAPQLSSLVKPGGRLALSGILAEQGEEVAAAYAADFNLDPIANRDGWVRITGRRR				NA	NA	NA	NA	NA
D1-36_00633	3978			hypothetical protein	ATGGACGACATGGCCGAGTGGCAACAAGACAGGGATGGCGCGACGTCGTTATCTGACCGGAAAGAGGCATCTGCCCAGGCGATTCTGGAAAAGCTGACGGGCTGGCAGACTGTTATCGAGGCAAAGATGCAGGCCCAGAATACTTTTCTGGAGGAGCTGGAAGTTTATCTGCTGGTCGGGCTGCGTACCCATTATCGTCATGGCAACATCGATTCAGACTTCATTGGCACGCTGCTCGACGCGGTGTTGCAACGCAAGATCGACCCGTCGCCCGCGGTTTATGACGAGCATCAGGATGCGCCTTATCGCTGGGAAGGGGGGGCTGACCTGGGGTTCTCGGCTGAACGTCGGGATATCCTCGAGCAGGTCCTCGAAGGGACCGCTTCGACCATCCTCAACCATTACGAGGACTATCTTCGGCGCCATTGGAAAATGGCCGGACACGATGCTGCGCTCGAAAGCATCGTCCAGGAAAAACTCAACGAGCATGTGGCGGCAATCGACGCCATCCTTCAACCGCAAAGGTTGGTTGGGTTGGATGTCGAGCAACTGCGCGCAAGGATAGAGGAGCTGCAACAATCCTGGCGCCACATGGGGAAAGCGAATGCGCTGGCGACCCCTCGGGAGCGACGGGCATTGGAAGCGATAATGCGTGCGCAATTGCCTGATTGGCTACGGGGGTTGGGTGCAGCCGACCGTAAACGGTTGGAGGCGTTGAGCGAACATGCTGGGCAAACCCAGGCAATGGTCGATGAATTGCTCGACGGCTTGGGCTCCCTGGAAGCGTTCGCTCGGCGCCAGGCCCAAGGCTACATCAGGCGCGAGCTGGACATGGAAGTCGAACCTGACAGGGTTCGCGTGCAGCTGCAGTGGCGAGCGGTCATTGGCCAGCCTGTGCGAACCTATAACCTGAGTGAACTGGTGGCGGCGGGGCCGGTCAGGCCCGATGCGGTGACGGTGCGCCTGGTGGAGAATGGCGGCATGCTGCGCAACGAGCCCCTTGCCTCGGCATTCGTGGGGCAGATGTTGTCGAGCCTGGACGCACCTGCCGGTTACTTTTCTGCATTGTCGAGTCGGTACAACCGCGCGGACCTCAAGGACGCCCTGCTCGATTGGTTCATGGCGCGATTGCGACACAGCGCATTTGTCGCGCGGTGCGCGGGCCTAGTCACGGTGTCCAGCCACGACGAGCTCTACACCTTGCTGAACAGCTCATTTGCTGGACAAGGCGTGGGTGGATTGCAGGTTACCAATGTCGAACTGCCCAATTCGTTCCGATGCGCCGATCTGCTGCTGTTCTACCACGATGATGCACAGGGACAAGTCAGCGCCCCCCTGCTGTATGCCCCTGGTAAGCCCGATGGGCAGGAGTGGATCGCCCTGCCTTCGCTTCGGGCCGTGAGCGCCGAGATCGGTAGCTGGATTGCGAGCGAAACGGGTCGTGAATACCTGTTGCAGCAGATCTCCCCGGTTGAACGTGACAGCGCTCGGGGATATTTTGTCGGCGTGAGGCAAAAGCCGACCACGTGGGATTTGAGCAGGGACCCCAGAGGGACGCAAAAAGGGCTCAGGCATTGTCTTGAGCAGGCTGTCCTGACAGGGCTGAACCACAATCTGCAGCAGGTGGAATGGCACGACTCGCCTCGCTGGTACTCGGCCTTGCCACTTGAATCGCGGCGAAGCATCAGTGGCTTGAAGCAAGAGTCCCTGGTCCATCAGCAGGTCTTCGATGAGCAGTTGGCGGGTTATGAACTTTTTGTCGACTTTGCCAAGCGTACCGTCACGCAAGCGATTGCTCCGTATATGCGCAGCAAGGGCGTACGAGAACCGGTGGATCCGGAAACGGTTCTTATCGACTACTTCCCGGGTCTGGGAAGTGACAGGAGGGTAACCAGCCTGCTGGAACTCGCGATTTATGGGTACGACGACAACGCTGGGATAGACAACCCGAAACAAGGTGTGCGCTCGTCCGTTGGACAGGATTTGGGCCAGGTCCGCAGCGCCGACCTGGCGCTTTATGTTCGTGGGGCCTACCTGGGCGAAAAATACGCCAAGGAAATCCGTGCCAGGTTTCTCGATGCCAATGACGCGCAATACCAGAAGCGTCGCGATGCCTGTCGCTACATGCTGCTGGCGAAGATGGATCGCGACCTACGTATCGCGTATGGCCGGTCAGTGTTGAGCACCGACGCGTTCAACTGGCTCACGCGGCAAGTCACGTTGCTGAGCGACAGGAGACCGGCTGGCGGCCCCATCTATCCAGCGACGGCGGTCACGCGTGAGGGTGTGTTCAAGTTTACGGTCAACGGACATGTCGTGTTGGGCGTCTACGTTTTCGCCTACTTCGAACCGAAGGGCTCCTACTGGCTGTACACGCCCGATGCCCCGGACGGCATCCGGTTTCGCAACTATCTGGCCTTTACCGGGCGCACCGCGGCGCAACTGCACGATTATGTCGTGGAGCGGGTGGCATTGATCGCGCGCGGTTCCGTCGAACAATCGTTGCGGGCATTGGGGGCAGGTACCACGCGCGTCGATACCCTGCGTGAATTCAGCCGGGTGGTCGATATCGACGCTGAGTTCGATGCCTGTATCGAGCGGGCTATCGCCGACGTGGAAGATGTCACCACCCGTCGTGCAGAGGCCATCACGCAGCAGATTCAGAAAGGGCTGCTCTTTGCGGCTGCGCCGGTCTGCATGGTCTTCCCGCCGTTTGCCCTGCTGTTGGATATCGTATTTATCGGCCTCAGCTCCAAGCAGGCAATCGAGGCGCATAGGCAGGGCGATACCCAGGAGGCTCTCGAGCATTGGCTGGAGGTTTCCTGGGGCGCGCTGCTGGCGGTGCCAGGGGTGACCGGCATGGCTGCATTGCTGCGCCGTTCGGTGATGAGTCTCAAGCGTGCGGCCAAGCCGTTGTCGTTGTCGGCGCAACGCCTTAAAGGCGCTGCGGTATCCGCTGTGAACAAGGATACCGGGCCGCTGGTCCAGCCCATCCGTTTGAAGCCAAGGCAGGCGGTCGAGGCAACCCCTGAACATCTGCAATGGGTGAGCGAGGAGGGGATTTTCTACGGCACCTACCGCAGTCCGCCCAGCGCATCGCAGCCACGAAGTACCTATTACATACGCAGCCGGGGCCGGTACTTCCAGGTAAAGGAGGACGCTTACTTTGGCGGTCTATGCCTGGTGGATGCCAGTCGTCCCGGCGCGCTATACAACATGCCCATACGCAGGATGACGAATGGCAAGTGGACGCATAACAGCGTTGGCTTGAGAGGGGGTAATGATGGCGTGCGTAACCTGGGGCGAGTCGACGATCTACGGGAGGCGTTCCCGGGGCGCGTCGATCCTGACGTGACAAGAGGCGCGTTGCAGGGCGAGGCCGTAGTAGCACGCTTCAATGAGGCGACGGCTGACGGGTATCTGTTCTCGCTCAACGCCCAGACATGCGTGATCGCTTCGTTATATAACCCCGTTACCCGAGTGGGGGCGGTCATTCATTTCGATCACAATATTGGCAGGCTCATAGAGGAAGGTGTCGAGGCTCTGTTGCGGCGCCTTGGCGGATCCGCAAAGGATATCCGCGTCACGCTTGTAGGTGGGGACTGGTTGACGGGTCTGGACATTGGCGAGCCGGTCAGGACCGTGATGCGGCGCAAAGGCCTTGAGCCAACCTGGGACTTCTGGTCGTATTCTTCCTGCTTCGGTAATACCTATGGTGTATCGCTGAACCTCAAGAGCGGCATCACTTCGGTCTTCAAGATGTCGCAGACCCAAGTCGAGCGTTATTACGCCCCAGTGCTGTCTCGGGCCAAGTACAGTACCGATCCGGTATCGATACGTGCGCGTAGATTCATGACGCGCACGCGCAGCGAACCTTTGATGGCAAACGCCAACGGTGCCGTCCGCACCCGCCAGGGCAGGCCAGCGACAACGGCGCAACTTGCGATGAACAGGTTCTCGATGGTGAGCCTGAACTGA	MDDMAEWQQDRDGATSLSDRKEASAQAILEKLTGWQTVIEAKMQAQNTFLEELEVYLLVGLRTHYRHGNIDSDFIGTLLDAVLQRKIDPSPAVYDEHQDAPYRWEGGADLGFSAERRDILEQVLEGTASTILNHYEDYLRRHWKMAGHDAALESIVQEKLNEHVAAIDAILQPQRLVGLDVEQLRARIEELQQSWRHMGKANALATPRERRALEAIMRAQLPDWLRGLGAADRKRLEALSEHAGQTQAMVDELLDGLGSLEAFARRQAQGYIRRELDMEVEPDRVRVQLQWRAVIGQPVRTYNLSELVAAGPVRPDAVTVRLVENGGMLRNEPLASAFVGQMLSSLDAPAGYFSALSSRYNRADLKDALLDWFMARLRHSAFVARCAGLVTVSSHDELYTLLNSSFAGQGVGGLQVTNVELPNSFRCADLLLFYHDDAQGQVSAPLLYAPGKPDGQEWIALPSLRAVSAEIGSWIASETGREYLLQQISPVERDSARGYFVGVRQKPTTWDLSRDPRGTQKGLRHCLEQAVLTGLNHNLQQVEWHDSPRWYSALPLESRRSISGLKQESLVHQQVFDEQLAGYELFVDFAKRTVTQAIAPYMRSKGVREPVDPETVLIDYFPGLGSDRRVTSLLELAIYGYDDNAGIDNPKQGVRSSVGQDLGQVRSADLALYVRGAYLGEKYAKEIRARFLDANDAQYQKRRDACRYMLLAKMDRDLRIAYGRSVLSTDAFNWLTRQVTLLSDRRPAGGPIYPATAVTREGVFKFTVNGHVVLGVYVFAYFEPKGSYWLYTPDAPDGIRFRNYLAFTGRTAAQLHDYVVERVALIARGSVEQSLRALGAGTTRVDTLREFSRVVDIDAEFDACIERAIADVEDVTTRRAEAITQQIQKGLLFAAAPVCMVFPPFALLLDIVFIGLSSKQAIEAHRQGDTQEALEHWLEVSWGALLAVPGVTGMAALLRRSVMSLKRAAKPLSLSAQRLKGAAVSAVNKDTGPLVQPIRLKPRQAVEATPEHLQWVSEEGIFYGTYRSPPSASQPRSTYYIRSRGRYFQVKEDAYFGGLCLVDASRPGALYNMPIRRMTNGKWTHNSVGLRGGNDGVRNLGRVDDLREAFPGRVDPDVTRGALQGEAVVARFNEATADGYLFSLNAQTCVIASLYNPVTRVGAVIHFDHNIGRLIEEGVEALLRRLGGSAKDIRVTLVGGDWLTGLDIGEPVRTVMRRKGLEPTWDFWSYSSCFGNTYGVSLNLKSGITSVFKMSQTQVERYYAPVLSRAKYSTDPVSIRARRFMTRTRSEPLMANANGAVRTRQGRPATTAQLAMNRFSMVSLN				NA	NA	NA	NA	NA
D1-36_00634	1356	accC	COG0439	Biotin carboxylase	ATGACTGCGAAGTTGGAAAAAGTTCTGATCGCTAACCGCGGTGAGATCGCCCTGCGGATTCTGCGTGCCTGCAAAGAGATGGGCATCAAGACCGTCGCCGTTTACTCCAAGGCCGACAAAGAACTGATGCACCTGGGCCTGGCGGACGAATCCGTCTGCATCGGTCCCGCGTCGGCTGCGCACTCTTACCTGCACATCCCGGCGATTATCGCCGCCGCCGAAGTGACCGGCGCCACCGCCATTCACCCTGGCTACGGCTTCCTGGCGGAAAACGCCGACTTCGCCGAACAGGTCGAAAACTCCGGTTTTGCCTTCATCGGCCCGAAAGCCGAGACCATCCGCCTGATGGGCGACAAGGTTTCCGCCAAGCACGCCATGATCGCCGCAGGCGTACCCACCGTTCCGGGTTCCGACGGCCCGCTGCCTGAAGACGAAGAAACCGCTTTGCGCATCGGCCGCGAAGTCGGCTACCCGGTGATCATCAAAGCCGCCGGCGGCGGCGGTGGTCGCGGCATGCGCGTGGTTCACAAGGAAGAAGACCTGATTTCCTCGGCAAAACTGACCCGCTCCGAAGCAGGCGCGGCGTTCGGCAACCCGATGGTCTATCTGGAAAAATTCCTGACCAACCCACGCCACGTCGAAGTGCAAGTTCTGTCCGACGGCCAGGGCCAGGCCATCCATCTGGGCGACCGCGATTGCTCGCTGCAGCGTCGTCACCAGAAGGTCCTCGAAGAGGCACCGGCACCGGGCATCGACGAGCAAGCTCGCCAGGAAGTCCTGGCTCGCTGCGTCAAGGCTTGCATCGACATCGGCTACCGTGGCGCCGGCACCTTCGAGTTCCTGTACGAAAACGGTCGTTTCTACTTCATCGAAATGAACACCCGTGTTCAGGTGGAGCACCCGGTTTCGGAGATGGTCACCGGTATCGACATCGTCAAGGAGATGCTCAGCATCGCCGCCGGCAACAAGCTGTCGTTCACTCAAGATGACGTCGTTATTCGCGGCCACTCGCTGGAGTGCCGGATCAACGCTGAAGATCCGAAGACCTTCATGCCGAGCCCAGGCACGGTCAAGCATTTCCACGCGCCAGGTGGCAACGGCGTTCGCGTCGATTCGCACCTGTACAGCGGTTATGCGGTTCCGCCGAACTACGACTCGCTGATCGGCAAGCTGATCACCTACGGGGCGACCCGTGAAGAAGCCATGGCGCGCATGCGCAATGCGCTGGATGAAATCGTGGTGGACGGGATCAAGACCAACATCCCGCTGCACCGCGATCTCGTCCGCGACGAGGGTTTCTGTGAGGGTGGCGTCAACATTCATTACCTGGAACACAAGCTGGGCAACCAGCACTGA	MTAKLEKVLIANRGEIALRILRACKEMGIKTVAVYSKADKELMHLGLADESVCIGPASAAHSYLHIPAIIAAAEVTGATAIHPGYGFLAENADFAEQVENSGFAFIGPKAETIRLMGDKVSAKHAMIAAGVPTVPGSDGPLPEDEETALRIGREVGYPVIIKAAGGGGGRGMRVVHKEEDLISSAKLTRSEAGAAFGNPMVYLEKFLTNPRHVEVQVLSDGQGQAIHLGDRDCSLQRRHQKVLEEAPAPGIDEQARQEVLARCVKACIDIGYRGAGTFEFLYENGRFYFIEMNTRVQVEHPVSEMVTGIDIVKEMLSIAAGNKLSFTQDDVVIRGHSLECRINAEDPKTFMPSPGTVKHFHAPGGNGVRVDSHLYSGYAVPPNYDSLIGKLITYGATREEAMARMRNALDEIVVDGIKTNIPLHRDLVRDEGFCEGGVNIHYLEHKLGNQH	PGPT0001705_1504	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
D1-36_00635	465	accB	COG0511	Biotin carboxyl carrier protein of acetyl-CoA carboxylase	ATGGATATCCGTAAAGTTAAGAAACTGATCGAGTTGCTGGAAGAGTCCGGCATCGACGAGCTCGAGATCAAGGAAGGCGAAGAGTCCGTACGCATCAGCCGTCACAGCAAGACCCCGGCCCAGCAGTTCTACGCACCTGCACCGATGCAGGCTCCAGCCGCTGCGCCTGCTCCCGCAGCAGCTCCGGCCGCCGCCGCAGCGCCAGCCGCACCTGCCGCGCCAGCGCTGAACGGCACCGTTGCCCGCTCGCCAATGGTGGGCACGTTCTATCGCAAGTCTTCCCCAACCTCGCCTTCCTTCGTTGAAGTTGGCCAGACCGTGAAGAAAGGCGACACCCTGTGCATCGTCGAAGCCATGAAGATGATGAACCACATCGAAGCTGAAACCAGCGGTGTGATCGAAGCCATCCTCGTTGAAGACGGCCAGCCGGTTGAGTACGACCAACCGCTGTTCACCATCGTTTGA	MDIRKVKKLIELLEESGIDELEIKEGEESVRISRHSKTPAQQFYAPAPMQAPAAAPAPAAAPAAAAAPAAPAAPALNGTVARSPMVGTFYRKSSPTSPSFVEVGQTVKKGDTLCIVEAMKMMNHIEAETSGVIEAILVEDGQPVEYDQPLFTIV	PGPT0001700_2549	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0001700-accB|bccP-K02160	NA	NA
D1-36_00636	453	aroQ1	COG0757	3-dehydroquinate dehydratase 1	ATGGCGACCCTATTGGTCCTGCACGGACCCAACCTGAACCTGCTTGGCACCCGTGAACCGGGCGTTTATGGCGCCGTGACGCTGGCCCAGATCAACCAGGACCTGGAACAGCGGGCCCGGGACGCCGGCCATCATTTGCTTTATCTGCAAAGCAATGCCGAATACGAGTTGATCGACCGCATCCATGCCGCGCGTGGCGAAGGCGTGGACTTCATTTTGATCAATCCAGCAGCTTTTACACATACAAGCGTCGCATTACGTGACGCGCTGCTGGCGGTGAGCATCCCATTCATCGAAGTGCATTTGTCCAACGTGCACAAACGCGAACCTTTCCGCCATCACTCCTACTTCTCCGATGTAGCGGTGGGAGTGATCTGCGGCCTTGGCGCCAGCGGTTACCGACTGGCCCTGGAGGCCGCCCTAGAGCAGCTTGAAAAACAGGCAACAGCTTGA	MATLLVLHGPNLNLLGTREPGVYGAVTLAQINQDLEQRARDAGHHLLYLQSNAEYELIDRIHAARGEGVDFILINPAAFTHTSVALRDALLAVSIPFIEVHLSNVHKREPFRHHSYFSDVAVGVICGLGASGYRLALEAALEQLEKQATA	PGPT0012905_1237	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
D1-36_00637	1947	ctpL		Methyl-accepting chemotaxis protein CtpL	ATGCGCCTGAAGCTGCTGACCAATCTCAACACCCTTCTCTTAGTTGCCGTATGCCTTGGCCTTGGCGCGACCCTTTGGTGGTCGCAGATTGCCTTGGAGCGACCCTACCTGTTGATGGAACGCTACCTCGGCCTGTCGCGGCAGTTCCAGAGCGAAGTGGCGCGCAACATCGAGGACTACCTGGCCAGCGGCGACGCCCTGCGCCTCAGCGCGGCCACCCAAGCACTGGAGGGCCTGCAAAAGGAGCTGGACCAGTTCCCACCGGACCTGGCCAAGACCTTGCGCCCAAGCCTGTCCAACCTCGACAACTTCAGCAAGACCGACCTGCTGGCCGCCGGCAAGCTGGCCGGCGACCCACAGGCCCTGTTGTTGCAGGCCGAACGGGAACTGAGCGCCAGTCTCGATCGACTCGCCCAGTACGCAAGTGGCGCCCCGGCCTACTCGCCTCCATTGTTCGCCGCTTCACAGCACCTGGGTCGGTTGTCCCTCACCCGTGACAAATTGGTCAGCAGCGGTCGCAGCGAACTGGCCGCCGATGTCGAGCGGGAACTGGCAGGCATCCGTGTGCAAGCAGAACGCCTCGAGAGCCTGCCTCTGCTGGGCGTAACCGCCAGCAGCGAATCGGGTAGCGATGATTTTGCCGCGCTGATGGGCCTGCAAACCCAGGAAAAAACTGTCAGCGAGGACGCCGGCATCGGTCTCAAGCGTGAGCTCAACAGCCTGCTCGGCCGCTACCCTGCGGAATTGACCCGCACTCGGGAGCTGATCCAAAAGCGCACCGAACTGAGCCGCGCCACCCACCTGAAAATCGCTGATGCACAGACGGCCATCGACACCCTGGAACCGGCGGTACGTGCCCAGCATGGGCAGATTCAGAGGGAGGTTCGCTTGATCCAGGGCGTGATGATCGGCTTGATCCTGCTGATCGCGCTGCTCATCGACACCTTGCAACGACGCCTGGCCCGCACCTTGACGCACCTGGCGCCGGCCTTGTCCACCTGGGCCGAAGGCGACTTCAGCCGGGGCATCCACATGGGCGCCAGCAACCGTGAAATGCAAGACATCGAGGCGTCCCTCAATCGCCTGCGCGCTTATCTGGTGGACCTGGTGGGCACCATTCGGGTGAACGCCGAACAGGTCGCTGGCAGTAGCCGCGCCCTGGCCGAGTTGAGCGGCGAACTGCACAGTGGCGCCGAGGACCAGGCCGGCGACACCGCATTGATCCGTGACTCGCTCGGCGAACTGGAAGCGACCATCCAGCAAGTGGCTGGCGATGCCAGCCAGGCCGCGCAGGCCAGTCGCAGCGCCGGTAACGCCGTGGAACATGGCCAGCAAGTCATCGGTTTGAGTCTCGCCGGCCTCCATGCGTTGGTGGGCGAAGTGCAAGGCAATGCGCAAATGATCGAACAACTGGCCGAGGAGTCGGCAACCATTGGTGGCGTATTGACGGTCATTCGCTCGATTGCCGACCAGACCAACCTGCTTGCCCTCAACGCCGCCATCGAAGCCGCCCGCGCCGGGGAAATGGGCCGGGGCTTTGCGGTGGTGGCTGAAGAAGTCCGTTCCCTGGCCCAACGCACCGCTGGCGCCACCTCGGAAATCCAGGCGCTGATCGCCCGCTTGCAACTGGCCGCGCGCCAATCAGTGGATGGCATGCGCGCCCAGGTTGAACACGCCGAGGCCACCGCCAGCCAGGCCCAGGCGGCTGACGGCGCCTTGGATGAAATCGTCGCAGCCATCCAGACCATCGCCGATACCGCCGTGCGAATCGCCGATGTCACGGCTCAGCAAAGCGGCGCTGTCAGCGAAATCCGCGACCACAGCGAGCGCATTCACCAACTGGGCGGGGATAACCTGCTGCGCATCGGCCAGGGTCGCGAGCAAGGCGACAACCTCCTGGTGCTCGGCGGGCGGTTGCACACCGCAGTCCAGGCATTTCGGGTATGA	MRLKLLTNLNTLLLVAVCLGLGATLWWSQIALERPYLLMERYLGLSRQFQSEVARNIEDYLASGDALRLSAATQALEGLQKELDQFPPDLAKTLRPSLSNLDNFSKTDLLAAGKLAGDPQALLLQAERELSASLDRLAQYASGAPAYSPPLFAASQHLGRLSLTRDKLVSSGRSELAADVERELAGIRVQAERLESLPLLGVTASSESGSDDFAALMGLQTQEKTVSEDAGIGLKRELNSLLGRYPAELTRTRELIQKRTELSRATHLKIADAQTAIDTLEPAVRAQHGQIQREVRLIQGVMIGLILLIALLIDTLQRRLARTLTHLAPALSTWAEGDFSRGIHMGASNREMQDIEASLNRLRAYLVDLVGTIRVNAEQVAGSSRALAELSGELHSGAEDQAGDTALIRDSLGELEATIQQVAGDASQAAQASRSAGNAVEHGQQVIGLSLAGLHALVGEVQGNAQMIEQLAEESATIGGVLTVIRSIADQTNLLALNAAIEAARAGEMGRGFAVVAEEVRSLAQRTAGATSEIQALIARLQLAARQSVDGMRAQVEHAEATASQAQAADGALDEIVAAIQTIADTAVRIADVTAQQSGAVSEIRDHSERIHQLGGDNLLRIGQGREQGDNLLVLGGRLHTAVQAFRV				NA	NA	NA	NA	NA
D1-36_00638	1671	rssB_2		Regulator of RpoS	ATGACCGAGTCAGAAGACCCCAGCCGTGAGCGCCTCAAGCACCACTTTGCCCAGCGGGTAATTCATCAGGCTCGCCAGATCCTTGAGATATGGCAGCGCCTGCAACGCAGCGAGTGGTCGAGTAACGACCTGTCTGAGCTCAGCGAAGCCAATCTGCGCCTGCTGCGCTTTGCCGAGCGTTTCGAACAGCCCGAGCATTGCCAGCTTGCCCACGGCATCAGCCAGTCGCTGCAAGCGGTGGATGCCAATCGCGGCCGCCTGAGCAGCCAGTTGATCAGCGACATCAACCGTTTGATGCAACGCCTGTCCCGCACCGGCCTGCGCCACGGCGATCAACTCGAGCAGACCTTTCTGCCACCGCTGCGCAAGCCCATCTACGTGATGCTGCAAGACCATGACCGCGCGGAACGGCTGGCCAAGCAGTTGGTATTCTTTGGCCTCAGCGCCCATGCGTTGAACAGTATCGCCGCGTTCCGCTCCGCGATGGTCGAGCGCCTGCCCGCGGCGATCGTCATGGACGTGGATTTCAGCGGCCCTGGCGTGGGCCTGACGTTGGCGGCCCAAGCCCAGGAAGGCCTCGACCAGGCCATCCCGCTGCTCTTTTTCAGCCTGCTTGAAACCGATACGCCCACCCGCCTGGCGGCGGTGCGCGCCGGCGGCCAGGAATTTCTAACCGGCACGCTCGAGGCGTCGAGCCTGCTGGAAAAAATCGAAGTGCTGACCTGCGTCGCCCAGTACGAGCCCTATAAAGTGCTGATCATCGATGACTCCCGCGCCCAGGCCTTGCACACCGAACGGCTGCTGAACAGCGCCGGCATCATCACCCGGACGTTGATCGAGCCGATCCAGGCAATGGCCGAACTGGCGGACTTCCAGCCCGACCTGATCATTCTCGATATGTACATGCCCGCATGCACCGGCACGGAACTGGCCAAGGTAATTCGCCACAACGACCGTTATGTCAGCGTGCCGATCATCTACCTGTCCGCCGAAGACGACCTGGATAAGCAGCTCGACGCCATGAGCGAAGGCGGCGACGACTTCCTGACCAAGCCGATCAAACCCCGGCACCTGATCACCACCGTGCGCAACCGCGCGGCCCGGGCGCGCAATCTCAAGGCGCGAATGGTGCGCGACAGCCTCACCGGCCTCTACAACCACACCCATATCCTGCAATTGCTCGAGGATTGCAGTTTTCGCGCCCGCCGCGAAGGCAAGCCCTTGAGTTTCGCCATGCTGGACATCGATCATTTCAAGCGGGTCAATGACAGCCACGGCCACCCCATGGGGGACCGAGTGATCAAGAGCCTGGCGCTGTTTCTCAAGCAGCGCCTGCGCAAGACCGATTTCATCGGGCGCTATGGCGGCGAAGAGTTCGCTATCGTCATGCCCGACACCGATATTGATGCAGCCTGCCAGGTGCTGGACGAAATCCGCCAACGCTTCGCCGAAATCCATTACCCGGCCCAACCCCAGGACCTGTGGTGCACCTTCAGCGCCGGCGTGGTGGAAATGAGCGAAGCGTCCGACAGCCTGATGATGGCCAGCCAGGCGGACGAAGCGTTGTACCGCGCCAAGCATGCCGGACGCAACCGGGTACAGAGCGCCAGACAATCAAAGCAAAGTGCCACCTTTTCATCGGATTCCACTGATTCGGTCATAAACGTGTAA	MTESEDPSRERLKHHFAQRVIHQARQILEIWQRLQRSEWSSNDLSELSEANLRLLRFAERFEQPEHCQLAHGISQSLQAVDANRGRLSSQLISDINRLMQRLSRTGLRHGDQLEQTFLPPLRKPIYVMLQDHDRAERLAKQLVFFGLSAHALNSIAAFRSAMVERLPAAIVMDVDFSGPGVGLTLAAQAQEGLDQAIPLLFFSLLETDTPTRLAAVRAGGQEFLTGTLEASSLLEKIEVLTCVAQYEPYKVLIIDDSRAQALHTERLLNSAGIITRTLIEPIQAMAELADFQPDLIILDMYMPACTGTELAKVIRHNDRYVSVPIIYLSAEDDLDKQLDAMSEGGDDFLTKPIKPRHLITTVRNRAARARNLKARMVRDSLTGLYNHTHILQLLEDCSFRARREGKPLSFAMLDIDHFKRVNDSHGHPMGDRVIKSLALFLKQRLRKTDFIGRYGGEEFAIVMPDTDIDAACQVLDEIRQRFAEIHYPAQPQDLWCTFSAGVVEMSEASDSLMMASQADEALYRAKHAGRNRVQSARQSKQSATFSSDSTDSVINV	PGPT0015900_1290	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-CELL_FATE_CONTROL	PUTATIVE-CELL_FATE_CONTROL-1,PGPT0015900-pleD-K02488
D1-36_00639	1068			hypothetical protein	ATGCTGGACTGGAAAAACCGCGCGGGCAGCGCGCCTGAACGCGCCGCCGAGCCGAAATCGGACACCCGCAGCTACCTGGGCGGGCTGTTTTTCAGCCGGGCACTGGCCACGCTCATTGGTTTGTATCTGCTGGTGACCATTGCGGTGGGTTGGTATTGGAGCCAGGAGCCGGCGCTGTTTCCCGTGCAGCAGAACGCCCAGGCGGCGGCCGAGAAGGACGGCAGGCAAATGGTGGTCGGCTACACCACCGTCGAAACCCTCAAGACCGTGGCCGGAACCTTGCTGACCAAGCAGGGTGGCTACATTTCCAATGACCGCTTCCCGCCGGGCCTGTGGATGGACAACATGCCGAGTTGGGAATACGGCGTGCTGGTGCAGGTGCGCGACCTGAGCCGCGCCTTGCGCAAGGATTTCGCCCGCTCGCAGTCACAGTCCGCCGAAGATGCGGACCTCGCCAAGGCCGAGCCGCGCTTCAACTTCGACAACCGCAGCTGGGTGCTGCCCTCCAGTGAGTCGGAGTACCAGGAAGGCATCAATTCCTTGAGTCGTTACCAGGCGCGCCTCTCCGATCCAGGCCAGAAGAGCGCATTGTTCTATGCCCGCGCCGACAACCTGAACAACTGGCTGGGCGATGTCGGCACTCGCCTGGGGTCGTTGTCCCAGCGGCTGTCCGCCAGCGTCGGCCGGGTCAAGCTCAACACGTCGCTGAAAACCGAAATCCCCGCGCCCGGCCAAGTGCCGCAGGTCGACGAAGAAGTGGTTGAAACCCCATGGCTGCAAATCGACAACGTGTTCTACGAAGCCCGTGGTCAGGCCTGGGCGCTGTCTCATTTGCTGCGCGCCATCGAGGTGGACTTCGCCGACGTGTTGGCCAAGAAGAACGCCACGGTCAGCGTGCGGCAGATCATTCGTGAGCTGGAAGCCTCGCAAGAGCCGGTCTGGAGCCCGATGATCCTCAATGGCAGCGGTTTCGGTGTATTGGCGAACCACTCGCTGGTCATGGCCAACTATATTTCCCGCGCCAATGCGGCGGTCATCGACCTGCGTCAGTTGCTGAACCAAGGCTGA	MLDWKNRAGSAPERAAEPKSDTRSYLGGLFFSRALATLIGLYLLVTIAVGWYWSQEPALFPVQQNAQAAAEKDGRQMVVGYTTVETLKTVAGTLLTKQGGYISNDRFPPGLWMDNMPSWEYGVLVQVRDLSRALRKDFARSQSQSAEDADLAKAEPRFNFDNRSWVLPSSESEYQEGINSLSRYQARLSDPGQKSALFYARADNLNNWLGDVGTRLGSLSQRLSASVGRVKLNTSLKTEIPAPGQVPQVDEEVVETPWLQIDNVFYEARGQAWALSHLLRAIEVDFADVLAKKNATVSVRQIIRELEASQEPVWSPMILNGSGFGVLANHSLVMANYISRANAAVIDLRQLLNQG				NA	NA	NA	NA	NA
D1-36_00640	558	yfcD		putative Nudix hydrolase YfcD	ATGGACGAAAGCACTCGGGAGGCGGCTCACCGAGCGGCTTCGGATGCCGAGCTCATCGCTTGGGTCGACGAGCATGACAACCTGCTCGGCAGCCTGGTGCGCTCGGATCTGCGCGAGCGCGGCCTGATCGGGCGGGGCACCTACATCATGCTGTTCAATTCGGCCGGGGAGTTGTGTGTCCATCGGCGGACGCTGAGCAAAGCCATCTATCCCGGTTACTGGGATGTCGCGGCCGGCGGCATGGTGCAGGCGCACGAGAGCTACGCCGAGTCGGCGGCCCGCGAGCTTGCCGAAGAGCTCGGTGTCAGCGGCGTGGAGCTGGTCGCCCACGACCATTTCTATTTCGAAGACACCGGCAGCCGCCTGTGGTGCTCGGCGTTTTCGGCCGTGTGGGATGGTCCGTTGGTGCTGCAGCCCCAAGAAGTGCTGGAGGCGCGTTTTCTGCCCGTCGAGCAGGTGCTCGATGAAATCCGCCACAAGCCTTATTGCCCGGACTCCCTGGCGGCTCTTGGGCGCTATTTGCGCGCCTGCGAAGCCGGTGTCGCAAAGAAGCTCTAA	MDESTREAAHRAASDAELIAWVDEHDNLLGSLVRSDLRERGLIGRGTYIMLFNSAGELCVHRRTLSKAIYPGYWDVAAGGMVQAHESYAESAARELAEELGVSGVELVAHDHFYFEDTGSRLWCSAFSAVWDGPLVLQPQEVLEARFLPVEQVLDEIRHKPYCPDSLAALGRYLRACEAGVAKKL				NA	NA	NA	NA	NA
D1-36_00641	372	yciH	COG0023	putative protein YciH	GTGGCCAAAAAAGCCGCATCCTTCGCCGCCCTGGGTGGCCTGGTATTTTCTACCGACGCCGGTCGTCATTGCCCCGATTGCCGCCAACCGGTGGATGCCTGCATCTGCAAACAGACGATCATCCCCGAAGGGGACGGTATCGCTCGCGTGCGCCGCGAAAGCAAAGGTCGCGGCGGCAAGACGGTGACGACCATTACCGGTGTGCCGCTGGCCGAAGACGCCCTCAAAGAACTGGCGACGACGTTGAAAAAACGCTGTGGCACGGGTGGCGCGTTGAAGGACGGCGTCATCGAGATCCAGGGCGATCACGTCGAGCTGCTGTTGGCGGAACTCACCAAACACGGTTTCAAGGCAAAGAAATCCGGCGGCTAG	MAKKAASFAALGGLVFSTDAGRHCPDCRQPVDACICKQTIIPEGDGIARVRRESKGRGGKTVTTITGVPLAEDALKELATTLKKRCGTGGALKDGVIEIQGDHVELLLAELTKHGFKAKKSGG	PGPT0015030_245	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0015030-yciH-K03113	NA	NA
D1-36_00642	1914	speA		Biosynthetic arginine decarboxylase	ATGTCCGTACGACGCACACGCAAAGACGATGGCAGCCAATGGACAGTTGCGGACAGCCGCAGTGTTTACGGGATTCGCCATTGGGGGGCCGGGTATTTCGCGATCAATGAAGCCGGTCGCGTCGAAGTCCGTCCGAACGGCCCCGACAGTTCGCCCATCGATTTGTACGAGCAAGTCGACCAGTTGCGCCAGAGCGGCCTTTCGCTGCCCTTGCTGGTGCGCTTCCCCGACATCCTGCAAGACCGGGTGCGTCAGCTCACCGGCGCGTTCGACAGCAACATCGCGCGCCTGGAATACCAGAGCCAGTACACCGCGCTTTACCCGATCAAGGTGAACCAGCAGGAAGCGGTGATCGAAAACATCATCGCGACACAGAACGTGTCGATCGGCCTGGAAGCCGGCTCCAAGCCCGAGCTGCTGGCGGTGCTGGCCCTGGCGCCGAAGGGCGGGACCATCGTCTGCAACGGCTACAAAGACCGCGAGTTCATCCGCCTGGCGCTGATGGGCCAGAAGCTGGGCCATAACGTTTTCATCGTGATCGAGAAAGAATCCGAAGTCGGCCTGGTGATTGAAGAAGCCGCGTCGCTCAAGGTCAAGCCACAGGTCGGCCTGCGGGTTCGCCTGTCGTCCCTGGCGTCGAGCAAGTGGGCCGACACCGGTGGCGAAAAATCCAAGTTCGGCTTGTCGGCCGCGCAGCTGTTGTCGGTGGTCGAGCGCTTCCGTGGCGCGGGCCTGGACCAGGGCATCCGCCTGCTGCACTTCCACATGGGTTCGCAGATCGCCAACCTGGCGGACTACCAGCATGGCTTCAAGGAAGCGATCCGTTATTACGGCGAGCTGCGCAACCTTGGGCTGCCGGTGGATCACATCGACGTCGGCGGCGGCCTGGGCGTGGACTACGACGGCACGCACTCGCGCAACGCCAGCTCCATCAACTACGACATGGACGATTACGCCGGTGTCGTGGTGGGCATGCTCAAGGAGTTCTGCGATGCCCAGAGCCTGCCGCATCCGCACATCTTTTCCGAAAGCGGTCGTTCGCTGACCGCGCACCACGCCATGTTGGTGGTGCAAGTGACCGACGTCGAGAAACACCACGATGACGTCCCGGTCATCGAGAACAAGGAAAGCCTGCCGGAAACCGTGCAGTGGCTGGTGGACCTGCTGGGCCCGACCGATATCGAGATGGTCACCGAGACTTACTGGCGAGCCACCCATTACATGAGTGACGTGGCAGCCCAATACGCCGATGGCAAGCTGACCCTGGCGGAAAAAGCTTTGGCCGAGCAGTGCTACTTCGCGGTGTGCCGTCGCCTGCACAATTCGCTGAAGGCCCGCCAGCGTTCGCACCGCCAGGTGTTGGACGAGCTCAACGACAAGCTGGCCGACAAGTACATCTGCAACTTCTCTGTCTTCCAGAGCCTGCCGGACACTTGGGCGATCGGCCAGGTATTGCCGATCCTGCCGCTGCATCGCCTCGACGAAGAGCCACTGCGCCGTGCCGTGCTGCAAGACCTGACCTGCGACTCCGATGGCAAGATCAAGCAGTACGTCGACGAGCAGAGCATCGAGACCAGCCTGCCGGTCCACTCGCTCAATCCAGGCGAGGATTATTTGTTGGGTATTTTCCTGGTGGGTGCCTACCAGGAAATCCTGGGTGACATGCACAACCTGTTTGGTGACACCGACTCGGTGAACATCTACCAGAACGCCGATGGCAGCGTGTACCACGCCGGTATCGAAACCCACGACACCATCGAAGACATGTTGCGCTATGTGCACCTGTCGCCGGAGGAGTTGATGACTCACTACCGTGACAAGTGCGCCAGCGCCCGGATCACGGCGGCCGAGCGCACTCAGTTCCTGGATGCGCTGCGTCTGGGGCTGACGCGTTCGTCCTACCTTTCTTCCTGA	MSVRRTRKDDGSQWTVADSRSVYGIRHWGAGYFAINEAGRVEVRPNGPDSSPIDLYEQVDQLRQSGLSLPLLVRFPDILQDRVRQLTGAFDSNIARLEYQSQYTALYPIKVNQQEAVIENIIATQNVSIGLEAGSKPELLAVLALAPKGGTIVCNGYKDREFIRLALMGQKLGHNVFIVIEKESEVGLVIEEAASLKVKPQVGLRVRLSSLASSKWADTGGEKSKFGLSAAQLLSVVERFRGAGLDQGIRLLHFHMGSQIANLADYQHGFKEAIRYYGELRNLGLPVDHIDVGGGLGVDYDGTHSRNASSINYDMDDYAGVVVGMLKEFCDAQSLPHPHIFSESGRSLTAHHAMLVVQVTDVEKHHDDVPVIENKESLPETVQWLVDLLGPTDIEMVTETYWRATHYMSDVAAQYADGKLTLAEKALAEQCYFAVCRRLHNSLKARQRSHRQVLDELNDKLADKYICNFSVFQSLPDTWAIGQVLPILPLHRLDEEPLRRAVLQDLTCDSDGKIKQYVDEQSIETSLPVHSLNPGEDYLLGIFLVGAYQEILGDMHNLFGDTDSVNIYQNADGSVYHAGIETHDTIEDMLRYVHLSPEELMTHYRDKCASARITAAERTQFLDALRLGLTRSSYLSS	PGPT0007770_683	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007770-speA-K01585	NA	NA
D1-36_00643	1311	vgrG1_2	COG3501	Actin cross-linking toxin VgrG1	ATGTCCGATCCAGCCTGCGAGCTACCTTTTCGTCTGGAGATAGCCGGTCTGTCCGAACCTTTCGTCGTCGTAGCCTTAACAGGCAATGAAGCCATCAGCGAACCCTTCGTTTTCGAAGTGGAGCTGTCGGTCAGCGACATGGCCCTGGACATGGCCGGGTTGCTGTACCGCAACGTCTGGCTGAGCTTTGGAATCAAGGATCAAGGCATCCACGGGCGACTTCACGAAATCGTCCACCGCCATGGCGAGAGCTGCCGGGTACGAATCGGGCCGAAGCTGGCGAGCCTTGCGCAGCGTTTCAGTCAACGGGTCTTCAATGCCTGCTCGGTGCCACAGATCATCCGCCAGGTCCTGGGCGGGCATGGTATCAACGGCCGCAGCCTGTGCCTGGATCTGAGCAACGCTTATCCTTCGTTGGATCTGTATACCCAGTACCGCGAATCCGACCTGCATTTCCTACAACGAATGTGCGCCCAGGCGGGTATCCACTTTCATTTCGATCACACCCGGGACGGGCAATGCCTGGTTTTTGCGGATACGGCGGGCAACGTTCCGACGATGGACAAGGCTTTGTACAGTGTTGAAGGGCGGGCCCGCGCAGTGCGTGCGTTCACGGTGAAGGCGGATATCCACGGAGCGTTGATCGCCCAGGGCCGTAGCGATCTGACGCACTTGCACGCCGGCCAGATCCTGTCGCTGAAGGGCCATCCTCATGGGCAGTGGAACCAGGGCTGGTTATTGACGCAGGTTGAACACCACGGTCATGCGGGCGGTTATGGCAATCTTTTCCAGGCCATTCCCTGGGGGATGCCCTTCCTGGTGGACAGGGCGCCGGACAAGCCTGTCATGGTGAGCAGGCAACGCGGCTGGGTCGTGGAAGTGGATGAGCCGCGAGTGGCCGGGCGAGTGGCGGTGCAGTTCGACTGGGCCTATCAGGGAGAGGGCGCCATCCCCAGCCATTGCTGGCTGCCCTTGGCACCCGAGCTTGCGGCGCGTGGCGTGGGGACGATTGCCGAGGGCACCGAGGTTCTGGTGAGTTTTATCGAGGGCGACCCGGACCGTCCCCTGGTCAGCGCATTCCTGGGTGGCGCCCCCGGCGCGCAGTCAACGCAGGCGCCTTCTCCCACCGCGCCTGCCGGGGAAATTCCCGGGGCTTCTGGAGTCGATTCATCCTTGTTGTCCGCAATCAAGGATGGTGAGCCACTGGTCTTGCTGTGCCTTTTGCCAGGCGGGGGGCGTTTCAGCCCTTGTGCGCAGCCGGTGTGTACCTGTCGCATGGTGATGGGACAGGGCGCGGGCGCGGCGCCATGA	MSDPACELPFRLEIAGLSEPFVVVALTGNEAISEPFVFEVELSVSDMALDMAGLLYRNVWLSFGIKDQGIHGRLHEIVHRHGESCRVRIGPKLASLAQRFSQRVFNACSVPQIIRQVLGGHGINGRSLCLDLSNAYPSLDLYTQYRESDLHFLQRMCAQAGIHFHFDHTRDGQCLVFADTAGNVPTMDKALYSVEGRARAVRAFTVKADIHGALIAQGRSDLTHLHAGQILSLKGHPHGQWNQGWLLTQVEHHGHAGGYGNLFQAIPWGMPFLVDRAPDKPVMVSRQRGWVVEVDEPRVAGRVAVQFDWAYQGEGAIPSHCWLPLAPELAARGVGTIAEGTEVLVSFIEGDPDRPLVSAFLGGAPGAQSTQAPSPTAPAGEIPGASGVDSSLLSAIKDGEPLVLLCLLPGGGRFSPCAQPVCTCRMVMGQGAGAAP	PGPT0030410_4446	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_PROTEINS,PGPT0030410-vgrG-K11904	NA	NA
D1-36_00644	798			hypothetical protein	ATGAATGTGGCCACCTTGCCGGGTCCCGCTCCCCAATGGCTGCTGTTAGACGTTCCGGACGCGCCCGAGGCCGCACAGCGCCTGAAGGAACAGTTTGCCGAGGTGCCGCGTTTTGCCCTGTTCGAGGGAACCGAGTTCGACGGAGCGAGATCACACGGCCCGTTGTTGGTGGATCTTAGGCAATCGCCTGCGCTGGCCAGCCTGTGCCATCTGGACGCTCGATCCTGGCCCGGGTTGCTGTTGGTGACCTCGACGCCAGCCGAGTCCTTGCTGGTACATTTGCGGCGCATGCTGACGGTGACGCTGGGCCTGCATTACAAGGCCTTCCTGAGTTATTACAACCCGCACACCGCCAGCTATTTCTTCGATGCCTGCGATCCCCGGGAGCTCAGTTGCTGGCTGGGACCGATCAGCCTGTTGCGCTGGTTCGGTGGCACCTGGTCCGATCGGACGATGGGGTGCCAGGGGTGGCAACAGCTCTCCAATCCCAGGCTTGCGGTGCCTGCGCTGGAAAACGAGCATGGCCTCAGCGACAGGCAACAGGTCAAATTGCAGGAGTGCTTCCTGGAACGTCACGTCTGGCGATGGTCTCGCTCCACTGGCCATGACTATTGGGTGCTCTGGGACTACGTGCAACAGGGGCGCAAGCTGGGGTTCAGCGAGCAGGCCGTTCTCGACGGCTGGTTATGGCTGCGCTTGCAATACCCCGATGCCGAGCCCGTGCCGGGGCTGCCTGGTGGTTCCCAGCGAGAACGTCTCGATCATTTGCGACGCCTCTGGCAAGGCAAACAGGGCTGA	MNVATLPGPAPQWLLLDVPDAPEAAQRLKEQFAEVPRFALFEGTEFDGARSHGPLLVDLRQSPALASLCHLDARSWPGLLLVTSTPAESLLVHLRRMLTVTLGLHYKAFLSYYNPHTASYFFDACDPRELSCWLGPISLLRWFGGTWSDRTMGCQGWQQLSNPRLAVPALENEHGLSDRQQVKLQECFLERHVWRWSRSTGHDYWVLWDYVQQGRKLGFSEQAVLDGWLWLRLQYPDAEPVPGLPGGSQRERLDHLRRLWQGKQG				NA	NA	NA	NA	NA
D1-36_00645	1350	dinF	COG0534	DNA damage-inducible protein F	ATGTCCAACCTGATCGCCGACTGGCGCGACCGCCTCACCCACCGTCGGGTATGGGCGCTGGCCGCGCCAATGATCCTCTCGAATATATCCGTACCGCTGGTAGCACTGGTGGACAGTACCGTCATCGGCCACTTGCCCCATGCCCATCAGTTGGGCGCGGTGGCGGTCGGGGCGAGTCTGTACACGGTGCTGGCCTGGGCCATGGGGTTCCTGCGCATGGGCTCAACCGGGTTCGCCGCCCAGGCAGCCGGGCGTGGCGATGGCGCTGCGTTGCGGCAGGTCTTGCTGCAAGGACTCTTGCTGGCGTTGGGGCTGTCGGTGGTGCTCGGGGCGGTCGGGGTTCCGTTGAGCGACGTGGCATTGCACTTCATGCAGCCCTCGGCCGAGCTCGACCAATTGACCCGGGATTTCTTCCACACCCGGCTTTTCGGCCTGCCGGCGGCGCTGGCCAGTTACGCGCTGGTGGGCTGGTTCCTTGGCGCCCAGAACGCCCGCGCACCGTTGACGATCCTGTTGGTCACCAACCTGGTGAACATCGCCTTGAACCTGTGGTTCGTCATCGGCCTGGATTGGGGCGTGACGGGTTCGGCACGCGCCTCGGTCATCGCCGAGTGGGCGGGCGCGCTGGTGGGCCTGGCCCTGGCCCGAAGGACGCTGCGCGCCTGGCCAGGGCGGATCGCCTGGGCCGCCCTGAGCCTGTGGCAGAGCTGGCGACCGCTGCTGGCGGTAAACCGGGACATTTTCATCCGCAGCCTGGTGCTGCAATCGGTGTTTTTCCTGATCACCGTGCAAGGCGCGCGGCTGGGGGACGCGACGGTGGCGGCCAATGCGCTGCTGCTCAATGGCCTGCTGCTTACCGCGCATGCCCTGGATGGCCTGGCCCATGCGGTGGAAGCGCTGTGCGGCCACGCCATTGGCGCTCGCGACCGACTGGCCCTGCGCCGTTCGCTGGTGGTCGCCTGCGGTTGGTCCTTGATCGCGAGCGTCGGGTTCGCACTGCTGTTTCTGCTGGCCGGACATTTGTTCATCGACATGCAGACCGACATTGCCGACGTGCGCGACACCGCTTACCGCTACCTGCCTTACCTGGCAACGCTGCCATTGATTGCCGTGTGGAGCTATCTGCTCGATGGCCTGTTCATCGGCGCCACCCGCGCCCGGGAAATGCGCAACGGCATGCTCCTGACCCTGTTGCTGGTGTTGCCGCTGGCCTGGGCGCTGCAAGGACTCGGCAACCACGGACTGTGGATCACTTTCCTGTTGTTCATGACGGTGCGCAGCCTGACGCTCGGGACGGTCGCCTGGCTCTTGCACCGTCGTGGCGGCTGGGTCGATGCCGAAACTCGATGA	MSNLIADWRDRLTHRRVWALAAPMILSNISVPLVALVDSTVIGHLPHAHQLGAVAVGASLYTVLAWAMGFLRMGSTGFAAQAAGRGDGAALRQVLLQGLLLALGLSVVLGAVGVPLSDVALHFMQPSAELDQLTRDFFHTRLFGLPAALASYALVGWFLGAQNARAPLTILLVTNLVNIALNLWFVIGLDWGVTGSARASVIAEWAGALVGLALARRTLRAWPGRIAWAALSLWQSWRPLLAVNRDIFIRSLVLQSVFFLITVQGARLGDATVAANALLLNGLLLTAHALDGLAHAVEALCGHAIGARDRLALRRSLVVACGWSLIASVGFALLFLLAGHLFIDMQTDIADVRDTAYRYLPYLATLPLIAVWSYLLDGLFIGATRAREMRNGMLLTLLLVLPLAWALQGLGNHGLWITFLLFMTVRSLTLGTVAWLLHRRGGWVDAETR	PGPT0029115_8692	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029115-TC_MATE|norM|mdtK|dinF-K03327	NA	NA
D1-36_00646	294			hypothetical protein	ATGCAGGTAGAAAGTTTCTTCGAATGGCTCGGCCAGGCGCTCGGTTCGGTGATCCGTTTCATCGTCGACCTGCTCAGCGGGCTGTTCAACACCTTGGCCAATGCCGGTGGCAATTTTGTCGATGGCCTGTCCCGCACGCTTGGCATGGACACCTCGATCATCAGCATCGTCGCACTGATCCTCGGGCTGATGCTGCTGTATTCGGCGATCCGCGCCTTTATGCGGGCCTCGATTGTCATGGGTATTATCTGGCTGGTATTGGGGTTGTGGTTGCTGAGCTGGATCATCCACTGA	MQVESFFEWLGQALGSVIRFIVDLLSGLFNTLANAGGNFVDGLSRTLGMDTSIISIVALILGLMLLYSAIRAFMRASIVMGIIWLVLGLWLLSWIIH				NA	NA	NA	NA	NA
D1-36_00647	306			hypothetical protein	ATGAACCTTGTTGAACTGACCGAACGCCTGCATGCCATTCGTGACCGTAACGATTGGCGGCAATTCCACAGCCCGAAGAACCTCGCCATGGCCGCCAGCGTCGAGATGGCCGAGCTGGTCGAGATTTTCCAATGGCTGACCGAGGACCAGTCGCGCCAGCTGCCCGCGGATAAACTGGCCCACGCCGGGCAGGAAGTCGGTGACATTGTGTTGTACCTGTTGCTGCTGTGCAGCGAGTTGGGCTTGGATATGGACGCCGTGGTGCGCGGCAAATTGGCCGACAGCGAGCGGCGGTTCGCCCCATGA	MNLVELTERLHAIRDRNDWRQFHSPKNLAMAASVEMAELVEIFQWLTEDQSRQLPADKLAHAGQEVGDIVLYLLLLCSELGLDMDAVVRGKLADSERRFAP	PGPT0004286_1	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_LEAD_RESISTANCE	LEAD_RESISTANCE-LEAD_HOMEOSTASIS,PGPT0004286-bmtA-NA	NA	NA
D1-36_00648	750	cmoM	COG0500	tRNA 5-carboxymethoxyuridine methyltransferase	ATGAGTGACCGTCATTTCGACCAGCTCGCCACGCGTTTCGCGGAAAAAATCTACGGCGGGGCCAAGGGGGCGATCCGCCTGGCGGTGCTCCAGGCCGATTTGCTTGAAGCCTTGCCTGACCGGCCGTTGCGTATTCTGGATGTTGGCGCGGGCCTGGGGCACATGTCACTGTGGCTGGCCGAGCGTGGTCACCAGGTCACCTTGGCTGAACCGGCCGAGCCCATGCTTGAGGGTGCCCGTCAGCGGTTTGCCGAGGCCGGCCAGGACGCAACGTTCATTCAGGCGCCGTGGCAGGACCTGCTCGGCCAGCTCACCGAACCGTACGATCTGGTGCTGTGTCACGCCGTGCTGGAGTGGCTGGCCGAGCCCCACGCGATCCTGCCGGTTCTGCATCAACTGACGGCGTCTGGCGGCTGGTTGTCGTTGGCGTTCTACAACCGCGACGCGCTGGTTTATCGAAACTTGCTCAAAGGGCATTTCCGCAAGTTGCGCAAAAACGACCTGGCCGGTGAAAAACAGAGCCTGACCCCGCAACAACCCCTTGATCCTCGCCAATTGGCGGCGCAACTTGAAGACCTGTGGCAGGTCGAAATTCAAAGTGGCGTGCGGGTTTTTCATGACTACATGCCGGTGCAATTCCAGGGCCGCGTAGAACTCGCGCAATTGCTGGAAATGGAACTGGCCCACCGGCGCCACCCAGCGTTTGCCGGGTTGGGACGCTACCTGCATTGGGTCTGTCGTCCCCTCTGA	MSDRHFDQLATRFAEKIYGGAKGAIRLAVLQADLLEALPDRPLRILDVGAGLGHMSLWLAERGHQVTLAEPAEPMLEGARQRFAEAGQDATFIQAPWQDLLGQLTEPYDLVLCHAVLEWLAEPHAILPVLHQLTASGGWLSLAFYNRDALVYRNLLKGHFRKLRKNDLAGEKQSLTPQQPLDPRQLAAQLEDLWQVEIQSGVRVFHDYMPVQFQGRVELAQLLEMELAHRRHPAFAGLGRYLHWVCRPL	PGPT0023655_603	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-SAM|QUEUOSINE|LIPID_METABOLISM,PGPT0023655-smtA-K06219	NA	NA
D1-36_00649	609			hypothetical protein	ATGAAAGGTCGTTCAGGATTATTGGTGTTATGCCTTGGGCTGGCAGCCTGCCAGAGCGACAATCCGTATGTCGCGACTTCCAATCCGTTGCCGCCGGCGCCGCCCGAGGCCGCCAAAGTGTTCGATCGCAGCGCCTATCCGGCGCCGCCCCGTGACTATGGCCGCTATCGCAGTTGGGCCTGGCTCAACGGTCGGTTGCCGCCGGGTACTGCCTGGGCGGATTCGGCCCAGGTGGCCGAAGCGGTAAGCGCAGCGTTGGACCAACGCGGGCTGCGTCCGCTGCATGACAATCGCCCGGCGGACCTCTTCGTCAGTGCCGACCTGCGCCTGGAAACCCGGCTGCGGCAGGTCCGGGACGACTATGACGCGGGCTATTACGGCGGCTACAACCGCTACGGGCCGGGTTATGGCATGTACAACACCATTCCCGTGGTGCGCACCTATCAGGAGCAGGTCGTGGTGGTTCGGGTCGATCTGTTCGACGCCCGCAATGGCCAGCCCGTGTGGAGCGCCAGCGCCGAGACCAGCCAGCGCGGCAATCAGAGCGAGCGCACCGATGCCATTCGTGACGCGGTGGAAAAGGCCATGTCGGCCTATCCTCCCAGTTGA	MKGRSGLLVLCLGLAACQSDNPYVATSNPLPPAPPEAAKVFDRSAYPAPPRDYGRYRSWAWLNGRLPPGTAWADSAQVAEAVSAALDQRGLRPLHDNRPADLFVSADLRLETRLRQVRDDYDAGYYGGYNRYGPGYGMYNTIPVVRTYQEQVVVVRVDLFDARNGQPVWSASAETSQRGNQSERTDAIRDAVEKAMSAYPPS				NA	NA	NA	NA	NA
D1-36_00650	558			hypothetical protein	ATGTTTCGCCGTCTTGTCCCGCTTGCCCTTGCCCTGTTGCTCAGCGCCTGCGCTTCCAACCAGGTCAATCATGATTTCGACACCAGCCGCGACTTCGCGGCCTACCGCAGCTGGAGCTGGAAGGAGCCGGCGTTGCAATATCGCCCGGACGATCCGCGCATCAAGAGCGACCTGACCGAACAGCGCATCCGCCAGGCGGTCGCCGATCAACTCGACCAGCGTGGCCTGCGTCCGGCTTCGGGCGGCGCGCGGGGCGATGTGCAGGTCCAGGCCTACCTGATCGTCGAGGATCGCCAGCAACAGGTGACGACCAACTATGGCGGCGGTTGGGGCGGCCCATGGAATGGTTATTGGGGCGGACCGATGTACAACGAAACCCGTAACCTCAGCTACAAGGTCGCCACCGTGCAGATCGACCTGCTCGACGGCAAGGATGGCAAGCTCGTCTGGCGTGGCAGCGACGAGCAATTGCTCAGTGATTCACCCAACCCGATGGATCGCAGCGCGAAGGTGCGCGAGACGGTGGGGCGGATCCTGTCCAACTACCCACCGCGTTGA	MFRRLVPLALALLLSACASNQVNHDFDTSRDFAAYRSWSWKEPALQYRPDDPRIKSDLTEQRIRQAVADQLDQRGLRPASGGARGDVQVQAYLIVEDRQQQVTTNYGGGWGGPWNGYWGGPMYNETRNLSYKVATVQIDLLDGKDGKLVWRGSDEQLLSDSPNPMDRSAKVRETVGRILSNYPPR				NA	NA	NA	NA	NA
D1-36_00651	855			hypothetical protein	ATGACGATCCAATGGCAGGAAATAAACACCGCCCCTTCGATGTCAGGGCTCTACGCCAAGGCCGCGACTCGCCGCAAGATCACCGGCACGGTCCTGCCTGACGTCGGGCTGCGCCAAGTGATCCAGGTCGACCAAAAGAACCTGGCGGCCTATCGCAAAGTGTGTGGTTTCAGCGAAAGCGGACTATTGCCGCCGACCTATCCACACGTGCTGGCGTTCGCCTTGCAGATGCAATTGCTGACCGCCCGGGATTTCCCGTTCCCATTGCTGGGCTTGATCCACCTGAACAACCGCATCCGCGTGCTGCGGCCCATGGGCGGTGTCAGCCAGGTGCGGGCGAGCGTCAACGTCGAGAACCTGCGGCCTCATGCCAAGGGGGCGGTATTCGATCTGGTGACCCGTATCGAAGATCAGTTGGGCCCCTTGTGGCAGGCCCAAAGCCAGATGCTCTGCAAAGGCGTCCAGCTTGACGGCGCATTGGCCGAGGACTCATCCGAGGACAGCCCCGAGTTGACGCAAGTGACACGCTGGACCGCACCCGTGGATATTGGCCGGCAATACGCCAAGGTGTCAGGCGACTACAACCCGATCCACCTGAGCGGCGCCAGCGCCCGGTTGTTCGGCTTCCCCACTGCCATCGCCCATGGTCTGTGGAACAAGGCAAGGACGTTGGCGGCGCTCGATGATCATTTGCCCGAAGCCAATATCGAAATCGACGTAACGTTCAAGAAGCCAGTGCGCCTGCCCAGCGAGGTGACATTGTTGGCGAGCGCGGCCGGTTCCAGCGGGCAATTGCGATTGGTGGGGGCTGGTGAGCTGGAGCATATGCTGGGAATTTGGCAGCCGGTTGCTTGA	MTIQWQEINTAPSMSGLYAKAATRRKITGTVLPDVGLRQVIQVDQKNLAAYRKVCGFSESGLLPPTYPHVLAFALQMQLLTARDFPFPLLGLIHLNNRIRVLRPMGGVSQVRASVNVENLRPHAKGAVFDLVTRIEDQLGPLWQAQSQMLCKGVQLDGALAEDSSEDSPELTQVTRWTAPVDIGRQYAKVSGDYNPIHLSGASARLFGFPTAIAHGLWNKARTLAALDDHLPEANIEIDVTFKKPVRLPSEVTLLASAAGSSGQLRLVGAGELEHMLGIWQPVA				NA	NA	NA	NA	NA
D1-36_00652	1353			hypothetical protein	ATGTCAGACCGTTACATAGACTTCGCCAATTCGCCCATTGGCCTGCGTCTGGTTGGCGCTCTGGGCTTGCCCTCGCCGGTGCGCCTGGAACGCTGGCAGGCCGGGCGGCTGCGGCCTATCGAGGGCGCCCTGCTGTTGGGCGGTGGCCCCCTGACCGAACAGGTCGCCACGTTCGCCAAGCGCTTGACCGACGCGATTTTCATCTACGGTGGCGAACCGACGCTGGCGACCGAATGGATCCCCGGCCACGGCCCGAAAATCAAGGCGGTGGTGTACGACGCCAGCCATCTGGTGCAGGTCGAGCAGCTCAAGCAGTTGCGCGAATTCTTCCAGCCCCTCATGAAAAACCTCGACCACAGCGCCCATGTCGTCATCCTCGGTCGCGCCCCGGAAAGCCTCGATGACCCGTTTGCCGCCAGTGCGCAACGGGCGCTGGAAGGCTTCAGCCGCTCCCTGGCCAAGGAGTTGCGCCATGGCGGGACGCTGCAGTTGCTTTATGTCGGTGACGGCGCCGAAGCGCAGTTGGAGGGGGCCCTGCGGTTTTTCCTGTCGCCCAAGAGTGCCTACGTTTCCGGGCAGGTTATCCGCCTCAAGGTCTGCCAGACCCAGGTCCAGGATTGGACGCGACCGCTCACCGGGCTCAAGGCGCTGGTAACCGGCGCCGCCCGTGGCATCGGCGCGTCCATCGCCGAAACCCTGGCCCGTGACGGCGCCGATGTGATCCTGCTCGATGTCCCGCAAGCCAAGGCCGACCTGGACGCCCTGGCCGCGCGCCTGAGTGGGCGCAGCGTGACGCTGGACATCTGCGCCGAAGATGCCGCCGCGCAGTTGATCGAACACCTGCCCGACGGCGTCGACATCGTGGTGCACAACGCCGGCATCACCCGGGACAAGACCCTCGCCAACATGACGCCCGAGTTCTGGGACGCGGTGCTGGCGGTCAACCTCAACGCGCCGCAGGTGCTGACCAAGGCCCTGCTCGACAGCGGCACCCTGCGGGACAATGGCCGGATCGTGTTGCTTGCCTCCATCAGCGGCATCGCCGGCAATCGCGGCCAGACCAACTATGCCGCGAGCAAGGCCGGCCTGATCGGCCTCGCCCAAGCCTGGGCGCCTGGCCTGGAGGCGCGGGGAATCAGCATCAACGCGGTGGCACCGGGCTTTATCGAGACACGCATGACCGCCGACATTCCCTTCGCCCTGCGTGAAGCCGGGCGCCGCATGAGTTCGCTGGGCCAGGGCGGCTTGCCCCAGGACGTCGCCGAAGCCGTGGCCTGGCTGGCACAACCAGGCACCGGCGCCGTAACCGGGCAGGCGCTGCGCGTGTGCGGGCAAAGCTTGTTGGGGGCGTGA	MSDRYIDFANSPIGLRLVGALGLPSPVRLERWQAGRLRPIEGALLLGGGPLTEQVATFAKRLTDAIFIYGGEPTLATEWIPGHGPKIKAVVYDASHLVQVEQLKQLREFFQPLMKNLDHSAHVVILGRAPESLDDPFAASAQRALEGFSRSLAKELRHGGTLQLLYVGDGAEAQLEGALRFFLSPKSAYVSGQVIRLKVCQTQVQDWTRPLTGLKALVTGAARGIGASIAETLARDGADVILLDVPQAKADLDALAARLSGRSVTLDICAEDAAAQLIEHLPDGVDIVVHNAGITRDKTLANMTPEFWDAVLAVNLNAPQVLTKALLDSGTLRDNGRIVLLASISGIAGNRGQTNYAASKAGLIGLAQAWAPGLEARGISINAVAPGFIETRMTADIPFALREAGRRMSSLGQGGLPQDVAEAVAWLAQPGTGAVTGQALRVCGQSLLGA	PGPT0003180_455	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
D1-36_00653	1278	fadI	COG0183	3-ketoacyl-CoA thiolase FadI	ATGGCACAGCTACGCCGCGTCGCGATCATCGGTGGTAACCGCATTCCGTTCGCCCGCTCCAACGGGCCCTATGCCACCGCCAGCAACCAGGCGATGCTGACGGCTGCGCTCGAAGGTTTGATCGAGCGCTACAACCTGCACGGTGCTCACATCGGGGAAATGGCCGCGGGGGCGGTGCTCAAGTTTTCCCGGGACATGAACCTGACTCGCGAATGCGTGCTCGGCTCACGGCTGGCACCCAGCACCCCGGCCTATGACGTGCAACAGGCGTGCGGCACGGGGCTTGAGACCGTGCTGCTGGTGGCGAACAAAATCGCCCTGGGCCAGATCGACAGCGCCATCGCCGGCGGCGTGGACACTACCTCCGACGCGCCCATCGGCGTCAATGAGGGGCTGCGCAGGATCCTGCTGCAAGCCAATCGCTCCAAGACCACCGCCGATAAGATCAAGGCTTTTCTGCAACTGCGTCCCCAACACTTGGTTCCCGACCTGCCGCGCATCAACGAACCGCGCACGGGCCTGAGCATGGGCGAGCATTGCGAGTTGATGGCGCAGACCTGGCAGATTCCCCGAGACGAGCAGGACCGTCTGGCCCTGGAAAGTCATCAGAAAATGGCCGCTTCCTATGCCGAAGGCTGGCATAACGATTTGATGACGCCGTTCCTGGGCCTGACCCGCGACAACAACCTGCGCCCGGACCTGACCCTGGACAAGCTCGCGTCCCTCAAGCCGGCCTTTGAAAAAAGCGCCAAGGGCACGCTGACCGCAGGCAATTCCACGCCGCTGACCGATGGTGCCTCCCTGGTATTGTTGGGCAGCGAAGAGTGGGCGAACGCCCGCGGACTGCCAATCCTGGCCTACCTGCGTGACGGTGAAACGGCAGCGGTGGATTTCGTCAACGGCGCTGAAGGCCTGCTGATGGCGCCGGTCTATGCGGTGCCGCGCTTGTTGGCACGCAACGGCCTGACGTTGCAGGATTTCGACTACTACGAAATCCACGAGGCGTTCGCGGCCCAGGTCTTGTGTACATTGAAGGCCTGGGAGGACCCGGATTACTGCAGATCCCGGCTGGGCCTCGACACGCCGCTGGGCGCCCTCGACCGCAGCCGATTGAATGTGAAAGGCAGCTCATTGGCCGCCGGGCATCCATTCGCCGCGACGGGCGGCCGTATCGTCGCCAACCTGGCCAAACTGCTGGACGCGGCCGGGAAGGGCCGGGGCCTGATTTCCATCTGCGCGGCGGCCGGCCAAGGTGTGACGGCGATCATCGAGCGCTGA	MAQLRRVAIIGGNRIPFARSNGPYATASNQAMLTAALEGLIERYNLHGAHIGEMAAGAVLKFSRDMNLTRECVLGSRLAPSTPAYDVQQACGTGLETVLLVANKIALGQIDSAIAGGVDTTSDAPIGVNEGLRRILLQANRSKTTADKIKAFLQLRPQHLVPDLPRINEPRTGLSMGEHCELMAQTWQIPRDEQDRLALESHQKMAASYAEGWHNDLMTPFLGLTRDNNLRPDLTLDKLASLKPAFEKSAKGTLTAGNSTPLTDGASLVLLGSEEWANARGLPILAYLRDGETAAVDFVNGAEGLLMAPVYAVPRLLARNGLTLQDFDYYEIHEAFAAQVLCTLKAWEDPDYCRSRLGLDTPLGALDRSRLNVKGSSLAAGHPFAATGGRIVANLAKLLDAAGKGRGLISICAAAGQGVTAIIER	PGPT0008320_1521	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626	NA	NA
D1-36_00654	1029			hypothetical protein	ATGCACATCCTCAGACACCTCAAACGCCTGGTGACCGACTGGTTCCTGTGCGGCATGTTGCTTGCCACCTTGTTGGCGTATTTCTTTCCCGGATTCGGCGCCACGGGCGGCGCGATGCATGCGGAGTGGGTGGTCAACATCGGCATCTTCGTGGTGTTTTTCCTCCATGGGATCAACTTGTCCGGGGAGCAGGTCCGCCACGGCTTGAAGAACGTCCGGCTGCATTTGATGGTGCAAGGTTTTACCTTCGTCGTGTTTCCCTTGATCTGGCTGATCGGTGATTGGTCATTGGGCCGCCATGTGCCGTCGCTATTGATGCTGGGGTTCTTTTACCTGTGCGCCCTGCCCTCGACCATCTCCTCGTCGGTGGCCCTCACAGGCAGCGCGGGCGGCAACGTGCCGGCGGCGATTCTCAACGCCAGCCTGTCCAGCGTGCTCGGGATTTTCCTGACGCCACTGCTGGTCAGCCTGGTGGTCGGCAGCGGTGCCGGTGGCATCGACCTGGGCTCGACCCTTCTCGATCTGTGCCTGATGTTGCTGCTGCCATTGGTGCTTGGGCAATTCCTGCGGCGCTGGCTGGCCGGTTTCTTCGCCCGATACAAGCGCTATACCAGCATCATCGACAAATTGGTCATCCTGCTGCTGGTGTACGCCGCGTTCTGCAATTCGATGGTTTCCGGGATCTGGCGACAACAAGGCAATGGCGTGCTGGTTAGCGCGGTGCTCGGCAGCGCCGTACTGCTGGCCATTATCCTGTGGATGACCACCCGCACCGCCCGCGCTCTGCGGTTCAGCAACGCCGATGAAATCGCTGCAGTGTTCTGCGCGAGCAAAAAATCCCTGGCCGCCGGGGTGCCGATGGCGGCGTTGATCTTCGGCACCGATCCCGGCCTGGGGCTGATCCTGCTGCCGATCATGATCTATCACCCCATGCAACTGATCGTCTGTTCGATCCTCGCCGAACGCTACGCCAGCCGCCAGCGAGCCCAGGCTGCGCCCACGCGCGAGGCGATGGTCAGCGCTCGATGA	MHILRHLKRLVTDWFLCGMLLATLLAYFFPGFGATGGAMHAEWVVNIGIFVVFFLHGINLSGEQVRHGLKNVRLHLMVQGFTFVVFPLIWLIGDWSLGRHVPSLLMLGFFYLCALPSTISSSVALTGSAGGNVPAAILNASLSSVLGIFLTPLLVSLVVGSGAGGIDLGSTLLDLCLMLLLPLVLGQFLRRWLAGFFARYKRYTSIIDKLVILLLVYAAFCNSMVSGIWRQQGNGVLVSAVLGSAVLLAIILWMTTRTARALRFSNADEIAAVFCASKKSLAAGVPMAALIFGTDPGLGLILLPIMIYHPMQLIVCSILAERYASRQRAQAAPTREAMVSAR				NA	NA	NA	NA	NA
D1-36_00655	792	nimR_1		HTH-type transcriptional regulator NimR	ATGCCGACTAACGGACAGCAGCAGCTTGAACGGCGCATTCCCGACCTGACGGAACTGCCTCGGCCACTTTATGCTCGGGTCGAAAGCCTGGATGCGGGTTCATGGACCCAGGTGCATCGACACGATTGGGTGCAGTTTTCCTATGCCATCAGCGGTGTGCTCGGCGTTCATACCGCCGAGGGCAGTTTCTTCGCGCCGCCGCAACGGGGCATCTGGATCCCGGCCGACCTCGAACATCACGTCGTGACATCCACCCGTGCGGAAATGCGCAGCCTTTATGTGCATCGCCAGGCTTGCCCGTGGGGCGATGGGCGTTGCCGGGTGCTGGAGGTCACGCCCTTGGCGCGAGAGCTGATCAAGGTCTTCTGCCAATTTCCCGCCGCCTACCCGCAAGGCGATACCCAGGAGGCGCGGCTGGTGCAAGTGCTGCTGGACCAGTTGGCGGCATTGCCGGAAGTGGGTTTTTCCCTGCCGCTGCCACGGCATGCCCGCCTGCTGGAGCTGTGCAACGAGTTGATCGAACAGCCCGAATCCTGCGTCACCCTGCAAGCCTGGGCCGAGCGACTGGGCACATCGGAAAAGACCCTGACCCGTTTGTTTCTACGTGAAACCGGCCTCAACTTTCGCGCGTGGCGCCAACGCATGCGGCTGTTGTCCTCCTTGGGATCGCTGGAGAAAGGCGACAGTGTGACCAGCGCGGCGCTGTCTTGCGGGTATGAGTCGACGTCCGCTTTCATCGCGGCATTCAAGGGATTGTTCGGTTTCACCCCGGGCGAACTGTTCACGCATTGA	MPTNGQQQLERRIPDLTELPRPLYARVESLDAGSWTQVHRHDWVQFSYAISGVLGVHTAEGSFFAPPQRGIWIPADLEHHVVTSTRAEMRSLYVHRQACPWGDGRCRVLEVTPLARELIKVFCQFPAAYPQGDTQEARLVQVLLDQLAALPEVGFSLPLPRHARLLELCNELIEQPESCVTLQAWAERLGTSEKTLTRLFLRETGLNFRAWRQRMRLLSSLGSLEKGDSVTSAALSCGYESTSAFIAAFKGLFGFTPGELFTH				NA	NA	NA	NA	NA
D1-36_00656	894			hypothetical protein	ATGAAGACTCCAAAACGCATTGAACCCCTGATCGAGGACGGTCTGGTCGACGAGGTGCTGCGCCCACTCATGAGTGGCAAAGAAGCAGCTGTTTATGTGGTGCGCTGCGGCAATGAGCTGCGTTGCGCCAAGGTCTACAAGGAGGCGAACAAGCGAAGTTTTCGCCAGGCGGCCGAATACCAGGAAGGTCGCAAGGTCCGTAACAGTCGTCAGGCCCGCGCCATGGCAAAAGGTTCGAAGTTCGGGCGCAAGGAAACTGAAGACGCTTGGCAGAACGCCGAAGTGGCTGCGTTGTTCCGGTTGGCCAACGCCGGTGTGCGAGTGCCCAAGCCGTACGACTTCCTTGAAGGCGTGCTGCTGATGGAACTGGTGGCCGACGAGTATGGCGATGCTGCGCCACGCCTGAACGATGTCGTGCTGGAGCCGGAACAGGCACGCGAATATCACGCCTATCTGATTTCTCAGATCGTACTGATGCTGTGTACCGGCCTGGTGCACGGCGACCTGTCGGAGTTCAACGTGCTGCTCACGCCGACAGGCCCGGTCATCATCGATCTGCCGCAAGCGGTGGACGCCGCTGGCAACAACCACGCCTTCAGCATGTTGGAGCGGGATGTCGGCAACATGGCGTCTTACTTCGGCCGTTTCGCTCCGGAGCTGAAACGCACCCGGTACGCCAAGGAAATGTGGGCGCTTTATGAAGCCGGCACGTTGCACCCGGGCAGTGTGTTGACCGGTGAGTTCGACGAGCCCGAAGAGCTGGCGGATGTTGGCGGGATCATGCGCGAGATCGAGGCCGCGCGCCTGGACGAAGAACGACGCCAGGCTGTGCGCGCCGCCGACGATGCGCCGCCAGGCAAGACCGAGGAGCCGCCTCCGCCTTGGATGCAGTGA	MKTPKRIEPLIEDGLVDEVLRPLMSGKEAAVYVVRCGNELRCAKVYKEANKRSFRQAAEYQEGRKVRNSRQARAMAKGSKFGRKETEDAWQNAEVAALFRLANAGVRVPKPYDFLEGVLLMELVADEYGDAAPRLNDVVLEPEQAREYHAYLISQIVLMLCTGLVHGDLSEFNVLLTPTGPVIIDLPQAVDAAGNNHAFSMLERDVGNMASYFGRFAPELKRTRYAKEMWALYEAGTLHPGSVLTGEFDEPEELADVGGIMREIEAARLDEERRQAVRAADDAPPGKTEEPPPPWMQ				NA	NA	NA	NA	NA
D1-36_00657	402	hmrR		HTH-type transcriptional regulator HmrR	ATGAACATCGGCCAAGCGGCCCGCCAGAGTGGCCTTAGCGCGAAGATGATCCGGTATTACGAATCCATTGGCTTGCTCAAGGCGGCCCATCGCACGGACAGCGGCTACCGGATCTACGGCACCGATGATTTGCACACGCTGGCGTTCATCAAGCGCTCCCGGGACCTGGGGTTTTCCCTGGAGGAAGTCGGCAAACTGTTGACGCTTTGGCAGGACCGCCAACGTGCCAGTGCCGACGTGAAGACCCTGGCCAAGCAACACATCGATGAACTGAACCAGAAAATCCGTGAACTCGCGGAGCTGCGCGATACCCTCCAGGACTTGGTGGAGCACTGCCAGGGCGATCACCGGCCCGACTGCCCGATCCTCAAGGAGCTGGAATCGGGGTGTTGCAAGAAGTGA	MNIGQAARQSGLSAKMIRYYESIGLLKAAHRTDSGYRIYGTDDLHTLAFIKRSRDLGFSLEEVGKLLTLWQDRQRASADVKTLAKQHIDELNQKIRELAELRDTLQDLVEHCQGDHRPDCPILKELESGCCKK	PGPT0004135_1343	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
D1-36_00658	2394	copA_1	COG2217	Copper-exporting P-type ATPase	ATGCCTGAACCCACTATTTTTGATCTGCCGATCTGCGGCATGACCTGCGCCAGCTGCGCCGGGCGAGTCGAGCGAGCGTTGCGCAAGGTGACCGGCGCCAGTGCCGTCAGCGTCAACCTGGCGACGGAACAGGCGCGGGTCCAGGCGCCAGAAGGAAGCCTGCCCGCCTTGATGGAGGCAGTCGAACAAGCAGGTTACGGCGTTCCCGTGCAGACCCTGGAATTGAGCATCGAAGGCATGACCTGCGCCTCTTGCGTTGCACGGGTCGAGCGAGCATTGAGCAAAGTCGCCGGCGTGCATCGCGCCAGCGTGAACTTGGCCAATGAGCGGGCTCACCTCGAATTGCTGGGCCAGATCGACCCGCAAACGCTCCTCGAAGCGGTCAAGCGCGCCGGCTATGACGCCAGTGTCTGGGAGGTGGAACAACCGCGAAAAAACCAGGGCGATCGACTGAACCGCGAGCGGCTGGCACTGATACTGGCAATTCTGCTGTCCCTGCCCTTGGTATTGCCGATGATGTTGCAGCCCTTCGGCGTGAGCTGGATGCTGCCAGCCTGGCTGCAGTTCGCGTTGGCGACGCCCGTCCAATTCATCTTCGGTGCACGTTTCTACGTCGCGGCTTTTAAAGCTGTCCGCGCCGGGGCCGGGAATATGGACCTATTGGTCGCCCTGGGCACCAGCGCCGGTTATGGCCTGAGTCTCTACGAATGGGCGATTGCCCAGCCCGGGAGCATGCCGCACTTGTACTTCGAGGCCTCGGCCGTGGTGATTGCCCTGGTATTGCTCGGCAAATATTTGGAAAGCCGTGCCAAACGACAAACCGCCAGTGCCATCCGCGCCCTCGAAGCCCTGCGACCGGAGCGGGCTGTTCAGGTGATCGACGGCGAGGAACGGGATGTTGCCATCAACGCGCTGCGCTTGAATGACTGGGTGTTGGTCAAGCCTGGCGAGCGATTCCCGGTGGACGGCGAAGTGATCGAAGGCCAGAGCCATGCCGACGAGGCACTGATCAGTGGCGAAAGCCTGCCCGTGCCCAAGCAACCCGGTGACAAGGTCACCGGTGGCGCGATCAATGGCGAAGGTCGTTTGCTGGTGCGCACCCAGGCCCTTGGCGCAGAGACGGTCCTGGCGCGCATCATTCGCCTGGTGGAAGACGCCCAGGCGGCCAAGGCCCCCATCCAGAAGCTGGTGGACAAAGTCAGCCAGGTCTTCGTGCCGGTTGTGTTGCTTTTGGCTCTTGCGACATTGGCGGGCTGGTGGCTCTACGGAGCGCCGCTGGAGACAGCACTGATCAACGCCGTCGCCGTGCTGGTGATCGCCTGCCCCTGTGCCCTGGGCCTGGCGACGCCGACAGCGATCATGGCCGGCACCGGCGTCGCCGCGCGCCACGGCATCTTGATCAAGGACGCCGAGGCGCTGGAGCGCGCCCATGATGTGGACACAGTGGTGTTCGACAAAACCGGAACCTTGACGTCCGGCGCGCCGCGCATTGCTCACTTGGCGGCGCTCGAAGGTGAAGAAAATGCGCTGCTGAGAATGGCCGGCGCCCTGCAACGGGGCAGCGAGCATCCGCTGGCCAAAGCAGTGCTGGACGTCTGCGCCGAGCGCGGCTTGAACGTACCGGACATCAGCGATAGCCAGTCGCTTACCGGGCGCGGCATTGCCGGCAGCCTCGACGGGCACCGCCTGGCGCTGGGCAATCGGCGCTTGCTGGAAGAGCTCGGGCCAGACCCCGAGTCGCTGGCCGAGGCGGCGCAGGCCTGGGAAACCGAAGGTCGGACGTTGTCCTGGCTGATCGATCAAGGCTCGACACCTCGCGTCCTCGGCCTGTTTGCCTTCGGCGACACACTCAAGCCGGGCGCCTTGGCGGCGGTGGAGGCCTTGAACCAGCGTCATATCACCATCCATCTGCTCACCGGCGATAACCGAGGCAGCGCTCGGGTTGTGGCCCAGGCGCTGGGAATCAACAACGTCCACGCCGAAGTATTGCCGGCCGACAAATCCGCCATCGTCGAGCGACTGAGGGGCCATTCGGTGGTGGCGATGGTTGGCGACGGCATCAATGACGCCCCGGCCCTGGCCGCAGCCGACATTGGCATCGCCATGGGCGGCGGCACCGACGTGGCGATGCACGCCGCCGGCATCACGCTGATGCGCGGCGACCCTCGCCTGGTGCCGGCGGCGCTGGATATCAGCCGCAAGACCTACGCAAAGATCCGCCAGAACCTGTTCTGGGCCTTCGTCTATAACCTGGTCGGGATTCCCCTGGCCGCGTTCGGCTTGCTCAACCCGGTGCTGGCCGGCGCGGCCATGGCGCTGTCGAGCGTCAGCGTGGTCAGCAATGCATTACTGTTGAAGTTCTGGACACCCGCAGATCTGGAGGACAAGCGATGA	MPEPTIFDLPICGMTCASCAGRVERALRKVTGASAVSVNLATEQARVQAPEGSLPALMEAVEQAGYGVPVQTLELSIEGMTCASCVARVERALSKVAGVHRASVNLANERAHLELLGQIDPQTLLEAVKRAGYDASVWEVEQPRKNQGDRLNRERLALILAILLSLPLVLPMMLQPFGVSWMLPAWLQFALATPVQFIFGARFYVAAFKAVRAGAGNMDLLVALGTSAGYGLSLYEWAIAQPGSMPHLYFEASAVVIALVLLGKYLESRAKRQTASAIRALEALRPERAVQVIDGEERDVAINALRLNDWVLVKPGERFPVDGEVIEGQSHADEALISGESLPVPKQPGDKVTGGAINGEGRLLVRTQALGAETVLARIIRLVEDAQAAKAPIQKLVDKVSQVFVPVVLLLALATLAGWWLYGAPLETALINAVAVLVIACPCALGLATPTAIMAGTGVAARHGILIKDAEALERAHDVDTVVFDKTGTLTSGAPRIAHLAALEGEENALLRMAGALQRGSEHPLAKAVLDVCAERGLNVPDISDSQSLTGRGIAGSLDGHRLALGNRRLLEELGPDPESLAEAAQAWETEGRTLSWLIDQGSTPRVLGLFAFGDTLKPGALAAVEALNQRHITIHLLTGDNRGSARVVAQALGINNVHAEVLPADKSAIVERLRGHSVVAMVGDGINDAPALAAADIGIAMGGGTDVAMHAAGITLMRGDPRLVPAALDISRKTYAKIRQNLFWAFVYNLVGIPLAAFGLLNPVLAGAAMALSSVSVVSNALLLKFWTPADLEDKR	PGPT0004090_4276	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_COPPER_RESISTANCE	COPPER_RESISTANCE-COPPER_TRANSPORT,PGPT0004090-copA|ctpA-K17686	NA	NA
D1-36_00659	384			hypothetical protein	ATGCGCTGGTCAGCGTTCAGCCTGTTTTGCATGCTCGGTCTTTCAGCAGTGGCCCCCCAGGCATCGGCTGTTGGCGAAGACTATGGTGTGCTGATCATTTCTCGTGAGCGCCTGGAAGTGCCGACCAGTTGCGAAATCGGCATCTACATCGAGGATCAGCTCTCGGCCAGGCTATTCCAAGAGCAAAGCACCTCCTTCAATCTGCCGCCCGGTCGGTTTTCCTTGCGCCTGAAACTACTGCCTGGCCAGGCCGCGGGTTGCGCCCCGGGCATGCTCGCTCCGGGATCGCAGGACATCACGCTCAAGGCCGGCGACATTCTGAAATACCGAATCGCAGCGAATGGGGAAGGCATGTACCTCAAGCAGGCTGACCTCGGATACTGA	MRWSAFSLFCMLGLSAVAPQASAVGEDYGVLIISRERLEVPTSCEIGIYIEDQLSARLFQEQSTSFNLPPGRFSLRLKLLPGQAAGCAPGMLAPGSQDITLKAGDILKYRIAANGEGMYLKQADLGY				NA	NA	NA	NA	NA
D1-36_00660	198			hypothetical protein	ATGCAAATCTTCAATGTTCGAGGAATGTCTTGCGGTCATTGCGTAAAGGCCGTTACCCAGGCTGTGCAGGCTCAGGATCCAACGGCGCAGGTGCAAGTGGATCTGGGGGCTGGGACCGTCCAGGTCCAAAGCACGTTGCCGCAGAAGACGGTGATCGATGCGATAAGGGAGGAGGGCTACGAAGCCAGTCCCGCCTGA	MQIFNVRGMSCGHCVKAVTQAVQAQDPTAQVQVDLGAGTVQVQSTLPQKTVIDAIREEGYEASPA	PGPT0004125_3767	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_COPPER_RESISTANCE	COPPER_RESISTANCE_MEDIATION,PGPT0004125-ATOX1|ATX1|copZ|golB-K07213	NA	NA
D1-36_00661	1203	bcr_1		Bicyclomycin resistance protein	ATGAACCTCCGTACCATTCTGATTCTTGGCGCCTTGAGCGCTTTCGGTCCCTTGGCGATCGATTTTTATCTGCCGGCGTTCCCGGCGATGGCAATCGCTTTTGGCACCGATGAAAAACATATCCAACTGACCCTGGCGGCTTATTTCCTCGGGCTGTCCCTCGGCCAACTGGCCTACGGGCCGGTGGCGGATCGCTTCGGACGGCGTATCCCGCTGCTGGCGGGGGTCGGCTTGTTCACCGTGGCATCCCTGGCCTGCGCCTACGCGCCAAGCCTCGAATGGCTGATCGGCGCCCGCTTCGTGCAGGCCTTGGGCGGATGCGCGGGAATGGTGATTTCCCGGGCGGTGGTCAGCGACAAATGCGACGCAGTGGGCTCGGCCAAGGTGTTTTCGCAGTTGATGCTGGTAATGGGCCTGGCGCCGATCCTCGCGCCGATGCTTGGCGGCCTGCTGGTGAACGTTTACGGTTGGCAATCCATTTTCATTGGGTTGACGTTGTTCAGTGCGCTTGCGGCGACGGCGGTTGCCTTGTGGTTGCCGGAAAGCCTGCCTGAGCATGTGCCACGGCAACCGTTGTCCGGGGCATTGCGCCAATACGGTCGCCTTCTCAAGGACTCTGTTTTCCTTGGTCATGCCTTGACAGGCGGCATCGCGATTGCCGGGATGTTTGCCTACATCGCCGGTTCGCCGTTCGTTTTCATCAAGCTCTATGGCGTGCCCGCTGAGCACTTTGGCTGGCTGTTTGGTACCAACGCGGCGGGCTTCATCCTGGTGGCGCAAGTCAATGCCAGGCTGTTGTCCAAACGCGGTCCGGCCTTCCTGCTGGCCCGCGCGGTCTGGGTCTATTGGATTGCCGGGCTGAGTTTGTTGGCCATCAGCGCCTTCCAGCCGGAGCGGTTGTGGCCGTTGTTGATCCCGCTCTTTATCTGCATCGCCAGTCTGGGTTGCATCATCCCCAATGCGTCGGCTTGCGCCATGAACGGGCAGGGTGCCCGGGCGGGGAGCGCCTCGGCCATGTTGGGATGCCTTCAGTTTTCCGTCGCTGCGGGTGCCGCCGCGTTGGTGGCAGCGCTACATGACGGCACGGCGGTGCCGATGGCGATCGTCATCAGCCTTTGCGGATTGTTGGTGGTCGGCGCGGCAATGCTGACCCGTCGTCTGCAAAACGCTTTGGCGCTTGCCCAGGCGAGTCAGCGAAGCTGA	MNLRTILILGALSAFGPLAIDFYLPAFPAMAIAFGTDEKHIQLTLAAYFLGLSLGQLAYGPVADRFGRRIPLLAGVGLFTVASLACAYAPSLEWLIGARFVQALGGCAGMVISRAVVSDKCDAVGSAKVFSQLMLVMGLAPILAPMLGGLLVNVYGWQSIFIGLTLFSALAATAVALWLPESLPEHVPRQPLSGALRQYGRLLKDSVFLGHALTGGIAIAGMFAYIAGSPFVFIKLYGVPAEHFGWLFGTNAAGFILVAQVNARLLSKRGPAFLLARAVWVYWIAGLSLLAISAFQPERLWPLLIPLFICIASLGCIIPNASACAMNGQGARAGSASAMLGCLQFSVAAGAAALVAALHDGTAVPMAIVISLCGLLVVGAAMLTRRLQNALALAQASQRS	PGPT0029005_3467	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
D1-36_00662	171			hypothetical protein	ATGAAGATCCTGATAAAAGAGGTGGCAAAATCTCAATGGCAAGTGCGCCTTGACCAGCATGTCGTGACCTTTCGCTCCGAAGCCGAAGCCCAGGCTTTCGCGAACACCCTGCAAGCGCGCATTCGAGCGCCCCATCACTTTCCCGAACATCAGCAGCGCGCGGCCGGTTGA	MKILIKEVAKSQWQVRLDQHVVTFRSEAEAQAFANTLQARIRAPHHFPEHQQRAAG				NA	NA	NA	NA	NA
D1-36_00663	1014			Zinc-type alcohol dehydrogenase-like protein	ATGAAAGCCATCGCCTATTACCAATCACTGCCCATCAGCGATCCTCGCGCGCTGCAAGACGTCGAGCTGCCGGAGCCGGTTGCCGGCCCGAGAGATTTGCTGGTGGAGGTCAAGGCCATCTCGGTCAACCCCGTCGATACCAAGGTTCGCCAGAACGTGCAGCCAGAAGGCGGTGCCGGCAAGGTATTGGGCTGGGACGTGGCTGGAGTCGTCAAGGCCGTGGGCAGCGAAGTCACGCTGTTCAAGGCTGGCGACAAGGTGTTCTACGCCGGATCCATCGCCAGGGCCGGTGGCAACAGCGAAATGCATGTGGTGGATGAGCGTATCGTCGGCCACATGCCCAAGACCCTCGGTTTCGCCGAAGCCGCCGCGCTGCCGCTCACGGCGATCACCGCCTGGGAACTACTGTTCGACCGGCTGCAGATAAAAGAAGGCCAGGATGACCAGGGCCAGACCCTGCTGATTGTCGGCGCCGCCGGGGGCGTGGGTTCGATCCTGACGCAACTGGCCAGCCAGCTCACCGGCCTCAAGGTCATCGGTACCGCGTCCCGACCGCAGACAGTGGATTGGGTGCGTGACCTGGGTGCCGACCTGGTGGTCGATCACAGCCAGCCGCTGAGCGAAGTCCTCAAGCAGGCAGGCCAGGCTCAAGTGACCCACGTGGCCAGCCTGACCCAGACCGACCAGCACCTGGATCAATTGGTCGAAGCCTTGGCGCCCCAAGGCAAGCTGGCCCTCATCGACGACCCGAAATCCCTGGACGTGACCAAGCTCAAGCGCAAGAGCCTGTCCTTGCATTGGGAGTTCATGTACACCCGTTCCCTGTTCGAGACAGCCGACATGCTTGAACAGCACAAGCTGCTCAATCGCGTGGCGGGATTGATCGACGCCGGCACCTTGAAAACAACGGTGGGCGAACATTTCGGCGTGATCAATGCAGAGAACCTGCGCCGAGCCCACGCATTGCTTGAAAGTGGGAAGGCCAAGGGTAAGATCGTGCTTGAAGGATTCTGA	MKAIAYYQSLPISDPRALQDVELPEPVAGPRDLLVEVKAISVNPVDTKVRQNVQPEGGAGKVLGWDVAGVVKAVGSEVTLFKAGDKVFYAGSIARAGGNSEMHVVDERIVGHMPKTLGFAEAAALPLTAITAWELLFDRLQIKEGQDDQGQTLLIVGAAGGVGSILTQLASQLTGLKVIGTASRPQTVDWVRDLGADLVVDHSQPLSEVLKQAGQAQVTHVASLTQTDQHLDQLVEALAPQGKLALIDDPKSLDVTKLKRKSLSLHWEFMYTRSLFETADMLEQHKLLNRVAGLIDAGTLKTTVGEHFGVINAENLRRAHALLESGKAKGKIVLEGF	PGPT0019417_427	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERS	PLANT_DERIVED_ALGINATE_DEGRADATION,PGPT0019417-putative_alginate_lyase_2-NA	NA	NA
D1-36_00664	735			hypothetical protein	ATGGAACATGCACCTTGCATCAGCCAGATTGCCACGCTGCTGGCCGACCCAAAGCGTAGCGCGATGATGTGGGCGTTGATGGATGGTACGGCCCGACAGGCCGATGAATTGGCTTTGCTGGCCGGGCTTTCGCCCTCTTCGGCCAACGCCCACCTGGGGCGGTTATCCACGGGCGGTCTGTTGAAAGTCGAAGTCCGCGGCCGCAAGCGTTTTTTTCGCCTGGCGGCCCCCGAGATCGGTGCCGCCGTCGAGGCGTTGGCGAGTGCAACCCTTGCCAGCACGCCGCGACAGGTTCCAGAAGTTTTCAAACGCGGCCTCATGCCAACCAAGGCGCCGACGGCACCGGCTTCGCTGATGCGCGCCAGGCTTTGCGATGATCATCTGGGCGGTACCCTGGCGGCGGATCTGTATCAGCGATTGTTGGATGCCGGATGGCTTGAACAGGTTGAGCAGCGGGTAATCGTCACGCACAAGGGCGCGAACCAGTTGGCCGGGCGTGGCCTGTTCATCCAGGCACTGGCTCATCGCAACGCGCGCATTGCTTGCCCCTGCCCTGATTGGAGTGAGCGGCGCCCGCACTTGGGTGGCGCGCTGGGGGCTGCGTTGCTGCAGTTGTTCATGCAATCGGGTTGGCTGAGCCTTCCAAATGACTCGAGGGCCCTGCAGGTGACCACCCTCGGCCAGCAGGAAATCCATCGGTTCGCCAGGCAGGACACCTTGGAAATGGCGCTCTAG	MEHAPCISQIATLLADPKRSAMMWALMDGTARQADELALLAGLSPSSANAHLGRLSTGGLLKVEVRGRKRFFRLAAPEIGAAVEALASATLASTPRQVPEVFKRGLMPTKAPTAPASLMRARLCDDHLGGTLAADLYQRLLDAGWLEQVEQRVIVTHKGANQLAGRGLFIQALAHRNARIACPCPDWSERRPHLGGALGAALLQLFMQSGWLSLPNDSRALQVTTLGQQEIHRFARQDTLEMAL				NA	NA	NA	NA	NA
D1-36_00665	1383	naiP_1		Putative niacin/nicotinamide transporter NaiP	ATGGACACTCACGTTTACAGTGCCGCGGAACGACTGGAGCGATTGCCGATCAGCGGCTATCACCGGGTCATATTCATCATCATCGCCTTGGCGTTTTTCTTCGACTCCATGGACCTGGCCATGATGACGTTCTTGCTGGGGTCGATCAAAACCGAGTTCGGCCTGAGTTCGGCCCAGGCAGGGTTGCTGGCCAGCTCGAGCTTTTTTGGCATGGTGGTGGGCGCCTCGCTGTCGGGCATGTTGGCCGATCGGTTTGGGCGAAAGCCGGTGTTCCAGTGGAGCATCGTACTGTGGGGGGTGGCCAGTTACCTGTGTTCCACCGCCCAGGACATCGAGACATTGACGTTGTTTCGTGTCCTGTTGGGCGTCGGCATGGGCATGGAGTTTCCAATCGCCCAGTCGATGCTTTCGGAGCTTATTCCAGCGAAGCGCCGTGGACGCTACATCGCCTTGATGGACGGCTTCTGGCCGCTGGGCTTTGTGGCGGCGGGCGTGTTGTCGTATTTCCTCCTGCCGGTGATCGGCTGGCGTGACATTTTCCTGGTATTGGCGGTGCCGGCGGTCTTCGTCCTGGTGATTCGTTTTTTCATTCCCGAATCGCCGCGTTGGCTGGAGCAGGCTGGCCGGGGCGATGAAGCGGATGCCGTGCTCAAGCGGATCGAAGACAAAGTCCGCGCCTCGCTGGGCACGCACGATTTGCCCGAGCCCATTCGCCTGCCGAGGCTGGCGACCGTGCCTGGCAACTTTTTCTCGGCTTTGGCGCAGATTTGGTCACCGTTGTATCGCCAACGCACGGTGATGATCTGGAGCGTCTGGTTCTTTGCCCTGCTCGGGTTCTACGGGCTGACGTCCTGGCTCAGCGCCTTGTTGCAGCAATCGGGTTTTGCGGTGACGCAGTCGGTCTACTACACGGTTCTGATTTCTCTGGGCGGGATCCCCGGTTTCCTGATGGCGGCCTGGCTGGTGGAACGTTGGGGGCGCAAGCCGGTGTGCATCATCACGCTGCTGGGCGGCGGGGTCATGGCATTTCTGTATGGTCAGAGCGCGGTGTTCGGCGGCAACGTCGGCCTGCTGATAAGCACCGGACTGTTGATGCAGTTCTTCCTGTTCGGCATGTGGGCGGTGCTTTACACCTATACACCGGAGCTTTACCCCACTTCGGCGAGAGCCACGGGATCGGGCTTTGCCTCGGCGGTCGGACGCATCGGTTCGCTGCTTGGGCCCTTGGTAACAGGGTTGGTATTTCCGATCACCGGGCAAGGCGGTGTGTTTGCCCTGGGCGCGCTGTGCTTTGCGGTGGCGGCGGGTGTGGTCTGGTTGTACGGAATGGAGACGCGGGGCAAGACGCTGGAGGAGTTGAGCGAAGCGAATGTCGCTGACTGA	MDTHVYSAAERLERLPISGYHRVIFIIIALAFFFDSMDLAMMTFLLGSIKTEFGLSSAQAGLLASSSFFGMVVGASLSGMLADRFGRKPVFQWSIVLWGVASYLCSTAQDIETLTLFRVLLGVGMGMEFPIAQSMLSELIPAKRRGRYIALMDGFWPLGFVAAGVLSYFLLPVIGWRDIFLVLAVPAVFVLVIRFFIPESPRWLEQAGRGDEADAVLKRIEDKVRASLGTHDLPEPIRLPRLATVPGNFFSALAQIWSPLYRQRTVMIWSVWFFALLGFYGLTSWLSALLQQSGFAVTQSVYYTVLISLGGIPGFLMAAWLVERWGRKPVCIITLLGGGVMAFLYGQSAVFGGNVGLLISTGLLMQFFLFGMWAVLYTYTPELYPTSARATGSGFASAVGRIGSLLGPLVTGLVFPITGQGGVFALGALCFAVAAGVVWLYGMETRGKTLEELSEANVAD	PGPT0014435_989	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_SYMPORTER,PGPT0014435-ydjE-K08369	NA	NA
D1-36_00666	954		COG1816	Adenine deaminase	ATGTACGACTGGCTGAACGCCTTGCCCAAGGCTGAACTGCACCTGCACCTGGAAGGCTCGCTGGAGCCTGAGTTGCTGTTTGCCCTGGCCGAACGCAACAAGATCGCCCTGCCATGGAACGACGTTGACACCCTGCGCCAGGCCTACGCCTTCAACAACCTGCAGGAATTTCTCGACCTGTACTACCAGGGCGCCGACGTGCTGCGCACCTCCCAGGATTTCTATGACCTGACCTGGGCCTACCTGCTGCGTTGCAAGGCGCAGAACGTGATCCACACCGAACCGTTCTTCGATCCCCAGACCCACACCGATCGCGGCATTCCATTCGAAGTGGTGCTCAACGGCATCGCCGCCGCCCTCAAGGACGGCGAACAGCAACTGGGCATCACCAGCGGCCTGATCCTGAGTTTCCTGCGCCACCTGAGCGAAGAACAGGCCGAGCAGACCCTCGACCAGGCGCTGCCGTTCCGTGACGCGTTCGTGGCCGTCGGCCTCGACAGCTCGGAGATGGGCCATCCACCAAGCAAATTCCAGCGGGTGTTCGACCGCGCGCGAAACGAAGGTTTCCTGACCGTCGCCCACGCTGGCGAGGAAGGTCCGCCCGAGTACATCTGGGAAGCCTTGGACCTGCTGAAGATCCAGCGCATCGACCACGGCGTTCGGGCAATCGAAGATGAACGGCTGATGCAGCGAATCATCGACGAGCAAATCCCGCTGACGGTGTGCCCGTTGTCCAACACCAAGCTCTGCGTGTTCGACGACATGTCGCAGCACAACATCCTCGATATGCTCGAACGCGGCGTGAAGGTAACGGTGAACTCCGATGACCCGGCGTATTTCGGCGGCTACGTCACCGAAAACTTCCATGCGCTGCATACGCATTTGGGCATGACTCAAGACCAGGCCAAGCGCTTGGCGCAAAACAGCCTGGATGCGCGACTGGTAAAACCTTAA	MYDWLNALPKAELHLHLEGSLEPELLFALAERNKIALPWNDVDTLRQAYAFNNLQEFLDLYYQGADVLRTSQDFYDLTWAYLLRCKAQNVIHTEPFFDPQTHTDRGIPFEVVLNGIAAALKDGEQQLGITSGLILSFLRHLSEEQAEQTLDQALPFRDAFVAVGLDSSEMGHPPSKFQRVFDRARNEGFLTVAHAGEEGPPEYIWEALDLLKIQRIDHGVRAIEDERLMQRIIDEQIPLTVCPLSNTKLCVFDDMSQHNILDMLERGVKVTVNSDDPAYFGGYVTENFHALHTHLGMTQDQAKRLAQNSLDARLVKP	PGPT0021695_821	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021695-ade-K21053	NA	NA
D1-36_00667	1092	chaA	COG0387	Sodium-potassium/proton antiporter ChaA	ATGTTCTCGTTGATCAAGCAAGAAAAACTGCTGTTGTTGGCCCTGCTCGCCGCCTTCGTCGCCTACCCGCTGGAACATTGGTTTCTGGGCAGCGGGCAGGCCGTGGCGCTGGCGAGTGGGTTGGTGCTGATCGGTTTTATTGTTTCTGCGTCCATGCGCGTTGCTCATCACGCGGAACTGTTGGCGGAAAAGGTTGGCGATCCCTACGGCACCATGATCCTGACCTTGTCGGCGGTGCTGGTGGAAGTCGTGATCCTGGCGATCATGATGAGTAACGAGGCATCACCCACCCTGGTACGAGACACGATTTATTCTGCGGTCATGCTCGACATCAACGGCATTCTCGGGCTCGCGGCTTTGATGGGGGGGCTCAAGCATGGCGAGCAGGTCTATAACGATGACTCGGCGCGCACCTACAGCGTGATGATTCTCACCGCCATGGGCGTGTCGATGGTGGTGCCGGAGTTCATTCCACAGGAAAACTGGAAACATTATTCGGCGTTCACCATCGGCGCGATGGTCGTGTTGTATACCTTGTTCCTACGGATGCAGGTGGGACCCCACAGCTATTTTTTCAGCTACAGCTACCCGCAAAAGCGCCGCAGGAAAGAGCCCGTGGAAACCGAGCCGAAACCCATCAGCCTGGCATTTTCCATCGGCGCATTAGTGTTTGGCGTAGTGGTAATCGGTGCGCTGGCAGAAGTCATGTCCAAAGCCATCGACCTGGGGCTGGAGGGCTCCGGCGCGCCGCCGGTGGTCACGGCAATCCTGGTGGCGGCCATCTCCGCTGCGCCGGAGATCCTCACGGCCCTGCGCGCAGCCCTGGCCAATCGCATGCAGTCGGTGGTCAACATCGCGCTGGGGGCGTCGTTGTCCACCGTGATCCTGACCGTGCCGGTGATGGAAGCGATGGCGCTCTACACCGGGCAACCTTTCCAGATGGCGATGACGCCGGTGCAGACGGTGATGATTTTCATCACCCTGATCGTCAGCGCCATCAACCTCAACGATGGCGAAACCAACGCCATCGAGGGGATGACCCATTTTGTGTTGTTTGCGACGTTTGTGATGTTGTCGTTGCTGGGCCTTTAG	MFSLIKQEKLLLLALLAAFVAYPLEHWFLGSGQAVALASGLVLIGFIVSASMRVAHHAELLAEKVGDPYGTMILTLSAVLVEVVILAIMMSNEASPTLVRDTIYSAVMLDINGILGLAALMGGLKHGEQVYNDDSARTYSVMILTAMGVSMVVPEFIPQENWKHYSAFTIGAMVVLYTLFLRMQVGPHSYFFSYSYPQKRRRKEPVETEPKPISLAFSIGALVFGVVVIGALAEVMSKAIDLGLEGSGAPPVVTAILVAAISAAPEILTALRAALANRMQSVVNIALGASLSTVILTVPVMEAMALYTGQPFQMAMTPVQTVMIFITLIVSAINLNDGETNAIEGMTHFVLFATFVMLSLLGL	PGPT0013985_2057	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013985-chaA-K07300	NA	NA
D1-36_00668	1359		COG0402	8-oxoguanine deaminase	ATGCCTGCGACCCGTACCTGGTTAAAAAATCCCCTCGCCGTCTTCACGGCCAACGGCCTCGATGCCCGTGGCGGTCTCGTCCTGCAGGACGGTGCGATCGTCGAACTGCTGGGCCTCGGCCAGCAACCTCGCCAGCCCTGCGACCTAGTCTTTGACGCCCGCGATCATGTAATCCTGCCTGGGCTGATCAACACTCATCACCACTTCTATCAGACCCTCACCCGCGCCTGGGCACCGGTGGTCAACCAGCCGCTATTCCCTTGGTTGAAAACCCTCTATCCCGTATGGGCACGACTGACGCCGGAAAAACTCGCCCTGGCAAGCAAGGTGGCGCTGGCTGAACTGCTGCTCTCAGGCTGCACGACGGCGGCCGATCATCATTATCTGTTCCCGCAAGGCCTGGAAAATGCGATCGATGTGCAGGTTCAAAGCGTTCGCGAGCTGGGCATGCGCGCAATGCTGACTCGCGGCTCCATGAGCCTGGGCGAAGCCGACGGTGGCTTGCCGCCGCAACAGACCGTCCAGCAGGGCCAGGTGATTCTCGACGACAGCCAGCGATTGATTGCCCGCTATCACCAACGAGGCGATGGCGCGCAGATCCAGATTGCCTTGGCGCCGTGCTCGCCGTTTTCAGTCACGCCCGAGATCATGAGCGCCAGCGCCGAACTTGCGGAAAAACTCGACGTACGCCTGCACACGCACCTGGCCGAGACCCTCGACGAAGAAGATTTCTGCCTGCAACGCTTCGGCCTGCGCACCGTCGATTACCTGGACAGCGTCGGCTGGCTGGGCCCGCGCACCTGGCTGGCCCATGGCATTCATTTCAATCCGGACGAAATCGTCCGTCTCGGCGCCGCCGGCACCGGTATCTGTCATTGCCCCAGCTCGAACATGCGCCTGGCCTCGGGGATCTGTCCGACGCTAGAACTCACTGCCGCCGGCGCCCCGCTGGGCCTGGGGGTTGACGGCTCAGCCTCCAACGATGCCTCGAACATGATCCTGGAAGCCCGCCAAGCGCTCTATATCCAGCGCCTGCGCTACGGCGCACAAGCGATCACACCGGAACGAGTACTGGGCTGGGCCACCCGGGGTTCGGCGCAATTGCTGGGGCGCAGCGACATCGGTGAATTGGCGGTGGGCAAGCAGGCTGACCTGGCGCTATTCAAACTTGATGAGTTGCGCTTTTCCGGCAGCCACGACCCGATCTCGGCACTGCTGCTGTGCGGTGCCGATCGGGCGGATCGAGTTATGGTTGCAGGCGAGTGGCGTGTGATCGACGGACAGATCGAAGGCCTCGACCTGAAAGGGTTGATTGCCGATCACAGCCAGGCCGCGCGGGAGCTGATTGCTGCATCGTGA	MPATRTWLKNPLAVFTANGLDARGGLVLQDGAIVELLGLGQQPRQPCDLVFDARDHVILPGLINTHHHFYQTLTRAWAPVVNQPLFPWLKTLYPVWARLTPEKLALASKVALAELLLSGCTTAADHHYLFPQGLENAIDVQVQSVRELGMRAMLTRGSMSLGEADGGLPPQQTVQQGQVILDDSQRLIARYHQRGDGAQIQIALAPCSPFSVTPEIMSASAELAEKLDVRLHTHLAETLDEEDFCLQRFGLRTVDYLDSVGWLGPRTWLAHGIHFNPDEIVRLGAAGTGICHCPSSNMRLASGICPTLELTAAGAPLGLGVDGSASNDASNMILEARQALYIQRLRYGAQAITPERVLGWATRGSAQLLGRSDIGELAVGKQADLALFKLDELRFSGSHDPISALLLCGADRADRVMVAGEWRVIDGQIEGLDLKGLIADHSQAARELIAAS				NA	NA	NA	NA	NA
D1-36_00669	687			hypothetical protein	ATGAATTCGGCGAAAAATGCATTGATCATCGGTGCTTCCAGGGGCTTGGGCCTGGGTTTGGTAAAGACGTTGCTCAGCGACGGCTGGAACGTCACTGCTACCGTGCGCAACCCGCAGCACGCGGACGCCTTGAAAGCGCTGGGTCCGGTGCGAATCGAAAGGCTCGACATGGACGACCAGCAAGCCGTCATCGCCTTGAGCCAGCAACTCAAGGGCGAAATCTTCGACCTGCTGTTCGTCAACGCCGGCGTAAAGGGCCCGGCCAATCAGAACCCTGGCGGCGCAACGCTGGCGGAGGTGGGCCAATTGTTCTTCACCAACGCAGTGGCACCGATCAATCTGGCCCAGCGCTTCGTCGGGCAGATTCGCGAACGTAGCGGCGTGCTGGCTTTCATGAGCTCCGTACTGGGCAGCGTGACCATGCCCGACGCGCCGGAACTGGCGTTGTACAAGGCAAGCAAAGCCGCCCTCAACTCAATGACCAACAGTTTCGTCAGTCAATTGGGCGAGCAGTCGCTGACCGTACTGTCCCTGCATCCGGGCTGGGTGAAGACCGACATGGGCGGTGAAGGTGCCGAGATAGACGTACCGACCAGTACCCGTGGGCTGATCGACCAGGTCAATGCCTTCACCGGCAAGGGCGGGCATCACTTCGTCAATTACAGGGGCGAGACGATTCCCTGGTAA	MNSAKNALIIGASRGLGLGLVKTLLSDGWNVTATVRNPQHADALKALGPVRIERLDMDDQQAVIALSQQLKGEIFDLLFVNAGVKGPANQNPGGATLAEVGQLFFTNAVAPINLAQRFVGQIRERSGVLAFMSSVLGSVTMPDAPELALYKASKAALNSMTNSFVSQLGEQSLTVLSLHPGWVKTDMGGEGAEIDVPTSTRGLIDQVNAFTGKGGHHFVNYRGETIPW				NA	NA	NA	NA	NA
D1-36_00670	594	yigZ	COG1739	IMPACT family member YigZ	ATGCCTTATACCCTCGCCGGCTTTTGTGAGTACCGTGAAGAAATCCGCAAAAGCCGTTTCATTACCCTTGCCGCCGCCATCAACAGCCCTGCCGAGGCCCAGGCCTTTATCGAACAGCACAGCGACCTGGCCGCCACGCACAATTGCTGGGCCTGGAAATTCGGCAACCAGTACCGCAGCAGCGACGATGGCGAACCAGGCGGTACCGCCGGACGTCCGATCCTGGCAGCCATCCAGGCCCAAGCCTGCGATCAGGTGGTGGTGCTCGTGATCCGCTGGTACGGCGGAATCCAGCTGGGGACCGGTGGGTTGGCGCGGGCGTACGGCGGCGGTGCAAACAAATGCCTGCAAAACGCCGAGAAGATTGAATTGATCAGCCGCGTGGGGCTGCGCTGCGTTTGCGGGTTCGCGGAACTGGCCCTGGTGAAACTGCGCACAACCGAATGCGGGGGGTTGGTGAACGCCGAGCATTTCACCGCCGATGGTGTAGAGCTTCAATTGGCGGTGGGCGAAGAACACATCGAAACGCTGCAGGCACGGCTGGCCGACCTGAGTCGCGGGCACATACGCCTGGAGCGTGAGACCGCCGTGTGA	MPYTLAGFCEYREEIRKSRFITLAAAINSPAEAQAFIEQHSDLAATHNCWAWKFGNQYRSSDDGEPGGTAGRPILAAIQAQACDQVVVLVIRWYGGIQLGTGGLARAYGGGANKCLQNAEKIELISRVGLRCVCGFAELALVKLRTTECGGLVNAEHFTADGVELQLAVGEEHIETLQARLADLSRGHIRLERETAV				NA	NA	NA	NA	NA
D1-36_00671	663	rutR_1	COG1309	HTH-type transcriptional regulator RutR	ATGACTTTTGAAGTTCCCGCCCATGGCGGCAAGCCTACCGGCCGCATTCGTCAACAGAACGAAGAGACCATCCTCAGGGCCGCCGAGGATGAGTTCGCTCGTCACGGTTTCAAGGGCACCAGCATGAATACGATTGCCTTGAAGGCTGGATTGCCCAAGGCCAACCTCCACTACTATTTCACCAATAAGCTCGGGCTCTACGTGGCGGTATTGAGCAACATCATCGAGTTATGGGACAGCACGTTCAATTCCCTGACGGCCGAAGACGATCCGGCGCAGGCATTGACCCGCTACATCCGCGCCAAGATGGAGTTCTCGCGGCGCCAACCTCAGGCATCGCGGATCTTCGCCATGGAAGTGATCAGTGGCGGCGAGTGCCTGAGCGAATATTTCAACCAGGACTATCAGGCCTGGTTCAAGAGCCGAGCGGCTGTTTTCCAGGCTTGGATCGATGCAGGAAAAATGGACCCGGTCGATCCGGTGCATCTCATCTTCCTGCTATGGGGCAGCACCCAGCATTATGCCGACTTTGCTACCCAGATCTGCCGCGTGACCGGTCGCAGCAAGCTGACCAAGCAAGACATGATCGACGCTGGCGACAACTTGATCCGTATCATTCTAAAAGGCTGCGGCCTGACACCTGACCTCTCATACAGATCCTAG	MTFEVPAHGGKPTGRIRQQNEETILRAAEDEFARHGFKGTSMNTIALKAGLPKANLHYYFTNKLGLYVAVLSNIIELWDSTFNSLTAEDDPAQALTRYIRAKMEFSRRQPQASRIFAMEVISGGECLSEYFNQDYQAWFKSRAAVFQAWIDAGKMDPVDPVHLIFLLWGSTQHYADFATQICRVTGRSKLTKQDMIDAGDNLIRIILKGCGLTPDLSYRS				NA	NA	NA	NA	NA
D1-36_00672	921			hypothetical protein	ATGAGCATGCGTCGTTCCGATCCGCTGGCCCAGGTCAGCGACTTCGATATCCGCTTGCTGCGCATTTTCCGCAGCGTGGTGGAATGCGGTGGTTTTTCTGCCGCCGAAACGGTCCTCGGGATCGGCCGCTCGGCTATCAGCCAGCAGATGAATGATCTTGAACAACGCCTAGGGCTGCGCTTGTGCCAGCGTGGCCGCGCGGGCTTTTCCCTGACTGAAGAAGGCCGCGAGGTCTATCAGTCGGCGCTGCAACTATTAAGTGCGCTGGAAAGTTTCCGTACCGAGGTCAACGGCCTCCATCAACATTTACGCGGCGAATTGATCATTGGCCTGACGGACAACCTTGTCACCCTGCCGCATATGCGTATCACCCACGCCTTGGCCCAGTTGAAAGAACGCGGGCCAGACGTGCAAATCCAGATTCGCATGATCGCACCCAACGAAGTCGAGCAAGGCGTACTCGACGGTCGCCTTCACGTCGGCGTGGTCCCCCAGGCCAGCGCCCTTTCAGGTCTTGAATACCAACCGCTCTACAGCGAACGCTCGCTGCTGTATTGCGCGGTCGGTCATCCACTGTTTTACGTGGACGACCAGCAACTCGAAGACGCTCGCCTCAATACCCAAGACGCCATCGCGCCAACCTTTCGCTTGCCGGCCGACATCCAGGCCCATTACCAGGCACTGAACTGCACGGCCAGCGCATCGGACCGCGAAGGCATGGCGTTTCTGATTCTCACGGGTCGTTATATCGGTTATCTACCAGATCACTACGCCAATCTCTGGGTACAACAAGGTCGCCTACGCGCGCTCAAACCCTTCGCGCGTTTCTACGACCTGAGCCTGGCATCAGTCACGCGCAAGGGACGTCGCCCTCATTTGGTGCTGGAAAGCTTCCTCGAAAATCTCGCGGCAACACGCTGA	MSMRRSDPLAQVSDFDIRLLRIFRSVVECGGFSAAETVLGIGRSAISQQMNDLEQRLGLRLCQRGRAGFSLTEEGREVYQSALQLLSALESFRTEVNGLHQHLRGELIIGLTDNLVTLPHMRITHALAQLKERGPDVQIQIRMIAPNEVEQGVLDGRLHVGVVPQASALSGLEYQPLYSERSLLYCAVGHPLFYVDDQQLEDARLNTQDAIAPTFRLPADIQAHYQALNCTASASDREGMAFLILTGRYIGYLPDHYANLWVQQGRLRALKPFARFYDLSLASVTRKGRRPHLVLESFLENLAATR	PGPT0003120_403	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-ACINETOBACTIN_METABOLISM,PGPT0003120-bauR-K21699	NA	NA
D1-36_00673	1350			Omega-amino acid--pyruvate aminotransferase	ATGAACATGCCCGAACACGCTGTCGGTTCCCTGGCCAGCCAGCTCAAGCTGGACGCTCATTGGATGCCTTATACGGCCAATCGCAATTTCCAACGCGACCCTCGCCTGATCGTCGCTGCCGAAGGTAGCTGGCTGACCGATGACAAGGGACGCAAGGTCTACGATTCGCTGTCGGGATTGTGGACATGCGGCGCCGGGCACACCCGCAAGGAGATCCAGGAAGCGGTCGCCAAGCAACTGGGCACGCTCGATTACTCGCCGGGATTCCAGTATGGACATCCGTTGTCGTTCCAATTGGCGGAAAAGATCACCAACCTGACCCCGGGCAACCTCAACCATGTGTTCTTCACCGATTCAGGTTCCGAGTGCGCCGATACCGCAGTGAAGATGGTTCGCGCTTATTGGCGCCTCAAGGGGCAGGCCACCAAGACCAAGATGATCGGTCGTGCCCGCGGTTATCACGGTGTGAATATTGCCGGCACCAGCCTGGGCGGGGTCAGCGGCAACCGCAAATTGTTCGGCCAAGCCATGATGGATGTTGATCATTTGCCCCATACCTTGCTGGCCAGTAACGCCTATTCCCGCGGCATGCCCAAGGAGGGCGGGATCGCCTTGGCCGATGAGCTGTTGAAGTTGATCGAGCTGCACGACGCTTCCAATATCGCCGCCGTGTTTGTCGAGCCGATGGCTGGGTCCGCCGGTGTGCTGGTGCCGCCAGAGGGATACCTGAAGCGTCTGCGGAAAATCTGCGACCAGCACAACATTTTGCTGGTGTTTGACGAAGTGATCACCGGGTTCGGTCGTACCGGCGCGATGTTTGGTGCCGACAGCTTTGGCGTGACGCCGGACGTGATGTGCATCGCCAAGCAAGTCACCAACGGTGCAATTCCGATGGGGGCGGTCATTGCCAGCAGCGAAATCTACCAGACGTTCATGAGCCAGCCGACACCTGAATATGCCGTGGAATTTCCCCATGGCTATACGTACTCGGCGCACCCAGTGGCGTGCGCGGCGGGACTGGCGGCGTTGGACCTGCTGCAAAAAGAAAATCTGGTGCAGGGTGTGGCCGAGGTGGCGCCGCATTTCGAGACCGCATTGCATGGCTTGAAAGGCTCGAAAAACGTTATCGATATTCGCAACTTTGGCTTGGCCGGGGCGATCCAGATCGCCCCCCGTGACGGCGACGCTATCGTGCGTCCTTTCGAGGCGGGAATGGCACTGTGGAAGGCTGGGTTCTATGTGCGCTTTGGCGGCGATACCTTGCAGTTCGGGCCGACGTTCAACAGCAAGCCGCAGGACCTGGATCGCCTGTTCGACGCAGTTGGTGAAGTGCTGAACAAGATCGACTGA	MNMPEHAVGSLASQLKLDAHWMPYTANRNFQRDPRLIVAAEGSWLTDDKGRKVYDSLSGLWTCGAGHTRKEIQEAVAKQLGTLDYSPGFQYGHPLSFQLAEKITNLTPGNLNHVFFTDSGSECADTAVKMVRAYWRLKGQATKTKMIGRARGYHGVNIAGTSLGGVSGNRKLFGQAMMDVDHLPHTLLASNAYSRGMPKEGGIALADELLKLIELHDASNIAAVFVEPMAGSAGVLVPPEGYLKRLRKICDQHNILLVFDEVITGFGRTGAMFGADSFGVTPDVMCIAKQVTNGAIPMGAVIASSEIYQTFMSQPTPEYAVEFPHGYTYSAHPVACAAGLAALDLLQKENLVQGVAEVAPHFETALHGLKGSKNVIDIRNFGLAGAIQIAPRDGDAIVRPFEAGMALWKAGFYVRFGGDTLQFGPTFNSKPQDLDRLFDAVGEVLNKID				NA	NA	NA	NA	NA
D1-36_00674	1494	bauC_1	COG1012	Putative 3-oxopropanoate dehydrogenase	ATGAGCCTCATCCCGCATTTGATCAATGGCGAACTGTTGACCGATAACGCTCGTACAGCCGATGTGTTCAACCCGTCCACCGGCCAGGCAATCCATCAAGTACCGCTGGCGGATCGCGCAACTGTCCAGCAGGCGATCGATGGCGCCAAGGCCGCTTTCCCGGCCTGGCGCAACACGCCGGCGGCGAAGCGCGCCCAAGTAATGTTCCGTTTCAAGCAGTTGCTGGAGCAGAACGAGTCGCGCATCGCCCAGTTGATCAGCGAAGAACACGGCAAGACCCTGGAAGACGCGGCGGGGGAACTCAAACGGGGTATCGAAAACGTTGAGTTTGCCTGTGCGGCGCCGGAAATCCTGAAGGGCGAATACAGTCGCAATGTAGGGCCGAATATCGATGCTTGGTCAGATTTCCAGCCTTTAGGTGTCGTGGCGGGTATCACGCCGTTCAACTTCCCGGCAATGGTGCCGTTGTGGATGTACCCGCTGGCTATCGTCTGTGGGAATTGTTTCATTCTCAAGCCGTCGGAGCGCGATCCGAGTTCGACACTGCTGATCGCCCAGCTTTTGCTGGAAGCCGGTTTGCCCAAAGGTGTATTGAACGTAGTCCATGGCGACAAGGCGGCAGTGGATGCTTTGATCGAGGCGCCGGAGGTAAAAGCGCTGAGTTTTGTCGGGTCGACACCGATCGCTGAATACATCTATGCCGAAGGTACTCGTCGAGGTAAGCGCGTCCAGGCGCTGGGTGGTGCGAAGAACCATGCGGTGCTGATGCCGGATGCAGATCTGGACAACGCAGTCAGCGCCTTGATGGGCGCGGCGTACGGTTCGTGCGGTGAGCGCTGCATGGCGATTTCGGTGGCGGTATGTGTCGGCGATCAAGTAGCGGATGCCCTGGTGGCCAAGTTGGTGCCGCAGGTCAAGGCACTGAAGATAGGTGCGGGGACTACTTGCGGATTGGACATGGGGCCGCTTGTTACCGGGCAGCACCGTGACAAGGTCAGTGGGTATATAGAGGAGGGCGTGTCGGCGGGGGCATCATTGATTGTCGATGGTCGTGGCTTGAGCGTTGCTGGGCACGAGGAAGGCTTTTTCCTGGGTGGCTGCCTGTTTGACCGCGTGACGCCTGAGATGCGCATCTACAAGGAAGAAATCTTCGGGCCGGTGCTGTGTATCGTCCGGGTCAATAGCTTGGAAGAGGCGATGCAACTGATCAACGATCACGAATATGGCAACGGCACCTGCATCTTTACCCGTGACGGCGAAGCGGCGCGGTTGTTTTGCGATGAGATTGAAGTCGGCATGGTCGGCGTCAATGTTCCATTGCCAGTGCCCGTCGCCTATCACAGCTTCGGTGGTTGGAAGCGTTCACTTTTTGGTGACTTGCATGCCTATGGTCCGGACGGGGTGCGTTTTTATACCCGTCGCAAGGCCATTACCCAACGCTGGCCGCAGCGTGCCAGCCATGAGGCTTCGCAGTTTGCATTTCCCAGTTTGTAA	MSLIPHLINGELLTDNARTADVFNPSTGQAIHQVPLADRATVQQAIDGAKAAFPAWRNTPAAKRAQVMFRFKQLLEQNESRIAQLISEEHGKTLEDAAGELKRGIENVEFACAAPEILKGEYSRNVGPNIDAWSDFQPLGVVAGITPFNFPAMVPLWMYPLAIVCGNCFILKPSERDPSSTLLIAQLLLEAGLPKGVLNVVHGDKAAVDALIEAPEVKALSFVGSTPIAEYIYAEGTRRGKRVQALGGAKNHAVLMPDADLDNAVSALMGAAYGSCGERCMAISVAVCVGDQVADALVAKLVPQVKALKIGAGTTCGLDMGPLVTGQHRDKVSGYIEEGVSAGASLIVDGRGLSVAGHEEGFFLGGCLFDRVTPEMRIYKEEIFGPVLCIVRVNSLEEAMQLINDHEYGNGTCIFTRDGEAARLFCDEIEVGMVGVNVPLPVPVAYHSFGGWKRSLFGDLHAYGPDGVRFYTRRKAITQRWPQRASHEASQFAFPSL	PGPT0002295_3367	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATION	PLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0002295-mmsA|iolA-K00140	NA	NA
D1-36_00680	3453	recC	COG1330	RecBCD enzyme subunit RecC	ATGCCGGACGCGACGTCCCTCAGCCCTGCTTTCATGGTGGTTCATGGGAATCGCCTTGATGAGTTGCGCAGCCTGGTTATCAGCCTGATGCGACGCTATCCGCTAGGCCCGCTTGAAAATGAAATCGCCCTCGTTCAAAGCAACGGCATCGCCCAATGGCTGAAGTTGGCACTGGCTGAAGATCCTGAAGACGATGACAGTGGCGGCTGCGGAATTGCGGCTGCCATCGAGGTGCAGCTGCCCGGCAGTTTCATGTGGCAGCTCTATCGAATGGTGCTTGGCAGTGATGAAATTCCGGCTAAATCCTTACTGGATAAGGCGCCGCTCACATGGAGGCTGATGCGTCTCCTGCCGCAGCTAATTGAACAGCCTCATTTCGAACCGTTGCGACGTTTCCTGTCTGACGACACTGATTTACGTAAGCGCTACCAATTGTCCGAGCGTCTGGCTGATCTTTTCGACCAGTATCAGGTGTACCGAGCCGACTGGCTTGAAGATTGGGCGCAGGGACGGCACCAGACAAGGAGCGTGCGTGGTGAAACAAAGCCGCTCGCGCCGGCAAATTGCTGGCAAGCGGAGCTGTGGCGAGCGCTGCTGTTGGATGTGGGTGAAGAGGGCATGGCTCAAAGCCGTGCCGGCGTTCACCAGCGCTATCTTGAGCGCATCAATCACCTTGAAGCCGCTCCCGAAGGCCTACCGGCTCGCGTAATCGTGTTCGGTATTTCTTCACTGCCAGCCCAAGCGCTTGAGGCCCTGGCCGGTCTTTCACGGTTCAGCCAGGTTTTACTGTGTGTTCACAACCCCTGTCGTTACCATTGGGCGGACATCGTCGCCGACAAGGACCTGCTTCGTCACCAATACAAACGGCAGGCACGAAAAAGCGGCATGCCAAATGTCCTGGATTCGCAGACTTTGCATCAGCATGCACATCCGCTGTTGGCTGCCTGGGGAAAGCAAGGGCGCGACTACATCAACCTTCTCGACAGCTATGATGATCCAAACACCTATCGCTCGGTATTTCGCGAAGGGCGTATCGATCTGTTCAGCGACGGTAATCCCACGACCCTTCTTAGTCAGTTGCAGGACGATATCCTGGAATTGCGCCCCTTGGATGAAACCCGGCAACACTGGCCTTCAGTCGATACGCAACAAGACGAGTCGATCCGTTTCCATGTGGCCCACAGTGCCCAGCGTGAAGTTGAGATCCTTCATGATCAATTGCTTGCGCACTTCAGCAAGGATTCGTCCCTGCGTCCCCGGGATATCATCGTCATGGTCCCGGATATCGACAGTTATACGCCGCATATCCGCGCCGTGTTTGGCCAGCTTGATCGGGGTGACCCTCGTTTCATCCCCTTCACCCTGACAGATCAGGGCCAGCGTGGCCGTGACCCTTTGCTCATCGCCGTCGAGCATTTGCTCAGGCTCCCGGATAGTCGGTTTCCGGTCAGCGAGATTCTCGATCTGCTGGACGTGCCAGCGTTGCGCGAGCGGTTTGGCATCAATGAGGCCGACTTGCCGATACTGCACCGCTGGATTGAGGGAGCAGGCATTCGCTGGGGGATGAATGCCCGGCATCGCGCCAGTTTGGGTTTGCCCGCAGAGCTTGAGCAGAACAGCTGGCGTTTCGGCCTGCGTCGCATGTTGCTGGGGTATGCGGTTGGCGATTCAGAGGCTTACGAGGGCATCGAGCCCTATGACGAAATCGGTGGCCTCGATGCGGCTTTGATCGGTCCGCTGGTGGCTTTGCTGGATGCGCTGGAAGTCGCTCACCGGGAGCTGAGCCAGCCAACCTCTCCCAAGGAATGGGGGGCGCGTTTGCATGACTTGATGCAATTGTTCTTCCTGGCAAGCAACGAGCACGACGATTATCTGCTGGCCCAACTCGAGGACCTGCGTGAAACCTGGCTGGAAACCTGCGATTCGGTCGGGCTGGAGGATGAGCTTCCTTTGACGGTTGTCAGGGAAGCCTGGCTGACCGGACTGGATCAGGGGAAGTTGTCCCAACGTTTCCTCGCCGGAGCGGTCAACTTTTGTACGTTGATGCCGATGCGAGCGATACCCTTCAAGCTGGTTTGTTTGCTGGGAATGAATGACGGCGACTATCCACGAGCTCAGCCACCGCTGGATTTCGACCTCATGGGCAGCGATTACCGCCCAGGCGATCGTTCCCGGCGTGAGGACGATCGGTACCTACTGTTGGAAGCGCTGCTTTCTGCCCGGGAAAAGCTCTACATCAGTTGGGTCGGTCGCAGTATTCGTGACAACAGCGATCGGCCGGCATCGGTCTTGATCGGCCAGTTGCGTGATCATCTTGCCAGTGGGTGGCGGTTGGCAAATGGTGATGAGGGTCTACTCGAGGCGTTGACTCAGGAGCATCCTTTGCAGCCGTTCAGCGCCCGGTACTTTTATCAGGGTGACGGGCTGTTCAGCTATGCCGGTGAATGGCGTTCGCTTCACGAGGCCCAAGAACACAGCGCGCTGCCTGCAATGTTGGAGCCCTATGCCCAGGAAGAGCCATTGGGGATCGCTCAGTTGCAGGATTTTCTGCGCAATCCTGTTCGTCATTTCTTCAGCCAGCGACTCAAGGTGTTCTTCGAGACTTTCGAAGCCCCCCTGGCCGATGACGAACCTTTCGTTCTTGATGCCCTGCAGCGCTACAGCTTGAGCGACAGCCTGCTCGAGGCCGCCCTTGTTCGCCTCGACCAATCGGACCTGGCGTTGGCGGCGCACGCCAAGCGGTTACAGAACAGTGGCCTGCTGCCCATGGCGGGTTTCGGTGAAAGCCTGCAGCGCGAGTTGATCGAGCCGTTGCCTGACCTGCTGCAGCGCTACCAGCAGCTCCTGTCTTCATGGCCCACTCCACTGACCAGCGCCGTCCCCGTCAGCCTTCGTATACACGATGTCAGCATAGAAGGATGGCTTAGCGGCCTGCATCAGCGAGGCGATGGCTCGGTCCTCGCCATTACCGCTATCCCCAACAGCATCGGATCTACCAAGACCCGCAAATGGCATCGACTGATACGGGTCTGGGTCAACCATCTTGTAGCCTGCGCCAGTGGGCTTTCGATGACTACGGCGTTGGTCGCCAGTGATGACAGCTTGCTGCTCGCCCCTTTTGACGAAACCGTAGCGCGCCAGGTCCTTGGCGACCTGCTGCAAGCCTGGCGGGCTGGTATGCGCCAACCCTTGCCAATCGCGGTGAAGACCGCGTTCGCCTGGCTCGACCAAAGCGACCCGGAGAAAGCCCTGGCGGCGGCTCGCAAAGCCTACGAAGGTGACGGGCTGACGTTTGAGGGGGAGCGCCGGGAAAGCCCTGCCCTGGCACGACAATACCCCGACTTCAATGCGCTGGTCGCTGACGAAACATTTCCCGACTGGTGTGATGCGGTTTATCGGCCGCTACTCGAAGCGCCTTGGCGCTCACTGGTGAGCGAGGACGTACATCCATGA	MPDATSLSPAFMVVHGNRLDELRSLVISLMRRYPLGPLENEIALVQSNGIAQWLKLALAEDPEDDDSGGCGIAAAIEVQLPGSFMWQLYRMVLGSDEIPAKSLLDKAPLTWRLMRLLPQLIEQPHFEPLRRFLSDDTDLRKRYQLSERLADLFDQYQVYRADWLEDWAQGRHQTRSVRGETKPLAPANCWQAELWRALLLDVGEEGMAQSRAGVHQRYLERINHLEAAPEGLPARVIVFGISSLPAQALEALAGLSRFSQVLLCVHNPCRYHWADIVADKDLLRHQYKRQARKSGMPNVLDSQTLHQHAHPLLAAWGKQGRDYINLLDSYDDPNTYRSVFREGRIDLFSDGNPTTLLSQLQDDILELRPLDETRQHWPSVDTQQDESIRFHVAHSAQREVEILHDQLLAHFSKDSSLRPRDIIVMVPDIDSYTPHIRAVFGQLDRGDPRFIPFTLTDQGQRGRDPLLIAVEHLLRLPDSRFPVSEILDLLDVPALRERFGINEADLPILHRWIEGAGIRWGMNARHRASLGLPAELEQNSWRFGLRRMLLGYAVGDSEAYEGIEPYDEIGGLDAALIGPLVALLDALEVAHRELSQPTSPKEWGARLHDLMQLFFLASNEHDDYLLAQLEDLRETWLETCDSVGLEDELPLTVVREAWLTGLDQGKLSQRFLAGAVNFCTLMPMRAIPFKLVCLLGMNDGDYPRAQPPLDFDLMGSDYRPGDRSRREDDRYLLLEALLSAREKLYISWVGRSIRDNSDRPASVLIGQLRDHLASGWRLANGDEGLLEALTQEHPLQPFSARYFYQGDGLFSYAGEWRSLHEAQEHSALPAMLEPYAQEEPLGIAQLQDFLRNPVRHFFSQRLKVFFETFEAPLADDEPFVLDALQRYSLSDSLLEAALVRLDQSDLALAAHAKRLQNSGLLPMAGFGESLQRELIEPLPDLLQRYQQLLSSWPTPLTSAVPVSLRIHDVSIEGWLSGLHQRGDGSVLAITAIPNSIGSTKTRKWHRLIRVWVNHLVACASGLSMTTALVASDDSLLLAPFDETVARQVLGDLLQAWRAGMRQPLPIAVKTAFAWLDQSDPEKALAAARKAYEGDGLTFEGERRESPALARQYPDFNALVADETFPDWCDAVYRPLLEAPWRSLVSEDVHP				NA	NA	NA	NA	NA
D1-36_00681	3690	recB	COG1074	RecBCD enzyme subunit RecB	ATGAGCCGGAAAACTCCCTTGGCCCTGGCCTTCCCGCTACGTGGCAGTCAATTGATCGAGGCCAGTGCCGGTACCGGGAAAACCTTTACCATTTCGGCGTTGTATTTGCGCCTGGTGTTAGGGCATGGCGACCCGCAGACGCGGTTTGACCGCGAGCTGCTTCCTCCGCAGATTCTGGTAGTGACCTTCACCGATGCCGCGACCAAGGAACTGCGGGAGCGTATCCGTACGCGCCTGGCGGAAGCGGCGCGTTTTTTTCGCGATGAGATTCCCGCCCCGGACTCGTTGATTGCCTCGTTGCGTGATGAGTTCGGGGAAGGGCAATGGGCAGCCTGCGCGAACCGGCTCGATATAGCCGCGCAATGGATGGACGAAGCGGCCGTTTCGACTATCCATAGCTGGTGTCAGCGAATGCTTCGCGAGCATGCCTTCGACAGTGGCAGCCTGTTTACGCAAACCCTGGAAACCGATCACAGCGAGTTGCTCGCAGAGGTGCTGCGCGACTACTGGCGCCTGTTCTGCTATTCGATGCAAGGTGAAGCGCTGCACTGGGTGCGGGCTCACTGGGGCGGGCCTGCCGCCCTGCTGCCCCGGGTAAGGGGTTTGTTTTCCAGTTCTCGAGGTGAGGCGCAGGGGATCGAGCCGGCCGAGCTGATCGTCGCATCCCTTCAGGAACGCAGCGCGGCATTGCTCGACCTCAAGGCTCCTTGGCGACAATGGGCCGTGGAGTTGTTGGAAATCTGCCAGCAGGGCGTTGCCAATAAAAGCGTCGACGGACGCAAGATGCAGGCTCGCTATTTCGAACCCTGGTTCCAGAAGATCACGGCCTGGGTCGAGGACGAAAGTCTCGAGCTGCTGGACATTGGCACCGGCTTCACACGGCTGACGCCCGAGGGCATGGCCGAGGCCTGGAAAGGCGATGTGCCCAGTCATCCCGGGCTGGATGCGATGTCGGGCCTCAAGGCCAGCCTGGACGCCCTGCCCACCCCGGACGCGGCGGTGTTGCAGCATGCCGCGCAATGGGTCGGGACACGCTTCGAAGCGGAGAAACGGCGCCGGGCTGAAATGGGTTTCGACGACATGCTGCTGCGCCTGGACGCGGCGTTGCAGGCTGAAGGCGGGGAGCGGCTGGCTAGCCTGATTCGCGAGCAGTTCCCAGTGGCGCTGATCGATGAATTCCAGGACACCGATCCGATCCAGTACCGAATCTTCGAAAGCATCTATCGCATTGAAGACAACAATCCGCAAAGCGGGCTGTTCCTGATCGGTGATCCGAAGCAGGCCATTTATGCGTTTCGCGGCGCCGATATCTATACCTACCTGCGCGCCAGGGAAGCCACCGCTGGCCGGTTGCATACGCTGGGGACAAACTTCCGCTCCAGCCATGCCATGGTCGGCGCGGTGAATCAGGTTTTCCAACATGCCGAGGCGCGTCAGCAGGGGCGAGGGGCTTTCCTGTTCCGCGAGCCATCGGGTGACAATCCCGTGCCGTTCCTGCCCGTCGAGTCCCAAGGGCGCAAAGAGAGCTTGCGGGTTTCGGGGCAGACTGTCGCTGCCCTTAATGTTTGGCACCTGGTCTCTGACCAGCCAGTTTCCGGAGCGGTGTATCGGCAGCAGATGGCTGCAGCCTGCGCCAGCGAAATCACTGCGCTGCTCAACGGCGGACAGTCGGGGCGCGATGGCTTTTTCCATGATGGGGAAATGCTTCGTGGTCTTCTGCCGGCCGACATCGCCATTCTCGTGCGCGATGGCAAGGAAGCGCAGGCCGTGCGCGGCGAGTTGTCCGCACGAGGCGTGCGCAGTGTCTATCTATCAGACAAGGACTCGGTATTTGCTTCCCAGGAAGCAAGGGATTTGCTGACCTGGCTCAAGGCATGCGCCGAGCCGGATGTGGAGCGACTGCTGCGCACAGCCCTGGCCAGCACTACGTTGAACCTGCCGCTCACAGAGCTTGAGCGCCTGAACCAGGATGAGTTGGCGTGGGAAAGCCGTGTGATGCAATTCCGGGGCTATCGGATGGTCTGGCGCGCGCAAGGTGTGCTGCCGATGCTGAGGCGCTTGTTGCACGACTTCAAATTGCCTCAGTCCCTGATGGCACGTGATGACGGCGAGCGGGTGCTGACCAACCTGCTGCACCTTTGTGAGTTGTTGCAGCAGGCCGCCGTCGAGCTGGATGGCGAGCAAGCCATGATTCGTTACCTGGCCGAGCATCTGGCCATGACCGGGCAGGCGGGAGAAGAGCAGATCCTTCGCCTCGAAAGCGACGAGCAGTTGGTCAAGGTAGTGACGATCCATAAGTCCAAGGGACTCGAATACCCCCTGGTGTTCCTCCCGTTCATATGCTCGACGAAGCCGGTGGATGGCAGTCGACTTCCGCTGCATTACCACGATGAGCGCGGCCTGGCGCAGATCAGTCTCGCCCCGACCCCGGAATTGATCGCCAAGGCCGATGACGAGCGTCTGGCAGAGGACCTGCGTCTTTTGTACGTGGCACTTACCCGTGCCCAGCACGCCTGCTGGCTGGGTGTCGCCGATCTCAAGCGCGGCAGTAATAACCGCTCGATTCTACATTTGTCTGCCCTGGGCTATCTGTTGGGTGGTGGTGCGCCGTTGAACGAGTCGGTAGAGCTCAGACGTTGGTTGGAAGACCTGCGGCAAGGCAGCCAGGCGGTGAGCTGCCTGGATATGCCCCAGCCCAGCGACGAGCACTACCGACCCGCACGCAACGACGCGGTATTGCTTGAACCCTTGATTCCGTTGCGCAAAGCCAGTGAGAACTGGTGGATTGCTTCCTACAGTGCGTTGCGTTTCGGCGACAGCCTCAACGTGGGCGGTGACACCGCACCGGAAAATCCCCAAGCCCAGAAACTGTTCGATGATGAGCGACTCGATCCAGACGCCCCGCGGGAAGTTGCGGCTGCGGGCGGTGACATCCACCGTTTTCCCCGTGGCCCCAACCCCGGTACCTTCCTGCATGGGCTCCTGGAGTGGGCTGCCGGCGAAGGATTCCCGACGGCGCCAGCCATCATTGAGGATGCCATTGCCCGACGCTGCAACCGCCGGGGTTGGAATGGCTGGATCAAAACCCTTGGCGACTGGTTGTTGCACCTGATCAAAACGCCTCTGTGTATTGGCGGCGGCCAAGCGCCGGTGGTGCTGGAAGACTTGACCCGGTTCCAAGTGGAAATGGAATTCTGGTTCGCCAGCCACAAGGTCGATGTGCTCAAGCTCGATGATCTGGTTTGCCGATTCACCCATGACGGCGTGGCTCGTGTCGCTGCGGAACCGGTATTGCTCAATGGCATGTTCAAGGGTTTCATAGACCTGACCTTCGAGCACGACGGTCGATATTATGTGGCCGATTACAAGTCCAACTGGCTGGGATTGGACGACGCCGCCTACACCATGCAGGCCATGGAGCAATCGATCCTGGATAACCGCTACGACTTGCAATACGTGCTGTACCTGTTGGCCTTGCACCGCCAGCTCAAGGCGCGCTTGCCCCACTATGACTACGACAAGCATGTTGGCGGCGCGCTGTATATATTCCTTCGTGGCACACGCGCTGCCAGCCAGGGTGTCTACTTCACCAAGCCTGCGCGCGCCTTGATAGAGCAACTGGATCGCCTGTTCCGAGGAATGCCCGAGCCCAAGGCGGAGCCGGCTTGGGTGCAGGGAGAACTGTTATGA	MSRKTPLALAFPLRGSQLIEASAGTGKTFTISALYLRLVLGHGDPQTRFDRELLPPQILVVTFTDAATKELRERIRTRLAEAARFFRDEIPAPDSLIASLRDEFGEGQWAACANRLDIAAQWMDEAAVSTIHSWCQRMLREHAFDSGSLFTQTLETDHSELLAEVLRDYWRLFCYSMQGEALHWVRAHWGGPAALLPRVRGLFSSSRGEAQGIEPAELIVASLQERSAALLDLKAPWRQWAVELLEICQQGVANKSVDGRKMQARYFEPWFQKITAWVEDESLELLDIGTGFTRLTPEGMAEAWKGDVPSHPGLDAMSGLKASLDALPTPDAAVLQHAAQWVGTRFEAEKRRRAEMGFDDMLLRLDAALQAEGGERLASLIREQFPVALIDEFQDTDPIQYRIFESIYRIEDNNPQSGLFLIGDPKQAIYAFRGADIYTYLRAREATAGRLHTLGTNFRSSHAMVGAVNQVFQHAEARQQGRGAFLFREPSGDNPVPFLPVESQGRKESLRVSGQTVAALNVWHLVSDQPVSGAVYRQQMAAACASEITALLNGGQSGRDGFFHDGEMLRGLLPADIAILVRDGKEAQAVRGELSARGVRSVYLSDKDSVFASQEARDLLTWLKACAEPDVERLLRTALASTTLNLPLTELERLNQDELAWESRVMQFRGYRMVWRAQGVLPMLRRLLHDFKLPQSLMARDDGERVLTNLLHLCELLQQAAVELDGEQAMIRYLAEHLAMTGQAGEEQILRLESDEQLVKVVTIHKSKGLEYPLVFLPFICSTKPVDGSRLPLHYHDERGLAQISLAPTPELIAKADDERLAEDLRLLYVALTRAQHACWLGVADLKRGSNNRSILHLSALGYLLGGGAPLNESVELRRWLEDLRQGSQAVSCLDMPQPSDEHYRPARNDAVLLEPLIPLRKASENWWIASYSALRFGDSLNVGGDTAPENPQAQKLFDDERLDPDAPREVAAAGGDIHRFPRGPNPGTFLHGLLEWAAGEGFPTAPAIIEDAIARRCNRRGWNGWIKTLGDWLLHLIKTPLCIGGGQAPVVLEDLTRFQVEMEFWFASHKVDVLKLDDLVCRFTHDGVARVAAEPVLLNGMFKGFIDLTFEHDGRYYVADYKSNWLGLDDAAYTMQAMEQSILDNRYDLQYVLYLLALHRQLKARLPHYDYDKHVGGALYIFLRGTRAASQGVYFTKPARALIEQLDRLFRGMPEPKAEPAWVQGELL				NA	NA	NA	NA	NA
D1-36_00682	2088	recD	COG0507	RecBCD enzyme subunit RecD	ATGAGTCGTTCTTTTGCGGACCTGCTTCCCAAGAATTCCGACGACGAGAGCCTGGTGGATTTGGCGCCCTTGAGCGACGTGGACGACCTGTTGCTGCTGCTGACTCGCTGGGTGGAGCGCGGTTGGCTGCGAGCCTTGGACAGGGCATTCGTGGCGTTCCTCCATGAACTGTGCCCAGAAGACGACCCGCTGGTGTTGCTTGCCGCGGCCCTTGCCAGCCATCAATTGGGGCACGGGCATGTCTGCCTGGATCTGTTCGAAACACTCAAGGAGCCGGATTTTGCGTTGTCCTTGCCACCGGAGGGAGACCTGCAGCCCGGCGTGATGCTATTGCCGTCGCAGGTTTTGCAGACACTCGATGGTGCCGACTGGTGCAAAGTACTGGCTTCCAGCCCGCTGGTCGCCCTGGCAGGCGACGAGCGTGAGCAGGCACGACAACGGCCGCTGGTACTCGCCGGTAAACGTCTTTATCTGCGTCGCTACTGGGGCTACGAGCGACGAATCGACGATGCGTTGCGTCAACGGCTGGCCGACCACGGAGCGGTGCCTGATGACTTGGATGAGCGCCTGGCCGGGCTGTTTGGTCCGGCCAGCGCGACGGGGCCGGTCGACTGGCAGAAACTGGCCTGCGCGCTCGCGACCCGAAGCGCGTTCAGTATCGTCACGGGCGGCCCCGGCACCGGCAAGACCACCACGGTCGTGCGTCTGCTCGCCTTGTTGCAGGCACCCGCTGTCGAAGCAGGTAAGCCGCTGCGCATTCGTCTGGCCGCGCCCACCGGCAAGGCGGCGGCACGCCTGACCGAGTCCATCAGCCAACAGGTTCGCACGCTGGACGTCACCGATGCCGTGCGTGAACGCATTCCCTGCGAAGTCACCACGGTCCATCGCCTGCTGGGCAGTCGTCCCGGTACCCGTCATTTTCGTCATCATGCAGGCAATCGCCTGCCACTGGATGTGCTGGTCATCGATGAGGCTTCGATGATTGATCTGGAGATGATGGCCAATCTGTTGGATGCGTTGCCGTCCCATGCGCGTTTGGTATTGCTGGGGGACAAGGACCAGTTGGCTTCGGTCGAAGCCGGCGCGGTGCTTGGCGATTTGTGCCGCGATGCCGAAGAGGGTTGGTATAGCCCACAGACTCTGGCGTGGCTCGAATCCGTCAGCGGCGAAAACCTGATGACAAGTGACCTGAAGCAGGACCTCGAAGGTACTCACCCCCTCGCCCAGCAAGTGGTCATGCTCAGGCATTCCCGGCGTTTCGGCGAGGGCAGTGGGATTGGCCAGTTGGCCCGCCTGGTCAATGGACAACAGCCGGAGCAGGCGCGGAACCTATTGCGCAAGGGCCAATACCCCGATCTATCCACGTTGGCGTTGAAAGGCGAACACGATAATGCGCTGGAACGTTTGCTGCTGGATGGCCAAGCCTCCGGGCCGCAGGGATATCGGCATTATCTGAGCATCTTGCGGCAACGGCGTCCGGCGGCCTCCCGCCCGCTGGAAGACGATTGCTGGAATGATTGGGCTCGGGAGGTCTTGTCGGCGTTTGACGAATTCCAGTTGCTTTGCGCGGTGCGCAGAGGCCCGTGGGGTGTCGAAGGGTTGAACCAACGGATCACTGCCGCGCTGCTCAAGGCGCGGCTGATCGACAATGACCAGCTTTGGTATGAGGGGCGTCCGGTATTGATGACGCGCAATGATTACGGGTTGGGATTGATGAATGGCGATATCGGCATTGCCCTCAGGTTGCCTGAGCGTGACGGACCGGATGCCGGAAAACAGGTGCTGCGGGTTGCATTTCCTCGTAACGACGGCCGAGGTGGCGTGCGTTTTGTGCTGCCCAGCAGATTGAACGATGTGGAAACCGTATACGCCATGACCGTGCATAAGTCCCAAGGCTCGGAGTTCACTCACACGGCGTTGATCCTTCCGGATGCCCTGAATCCTGTACTGACCAAGGAATTGGTGTACACCGCTATCACCCGGGCCAAACAATGGTTCAGTCTGATAGAGCCACGCGCGGGGATTTTCGAAGAGGCGGTGCAACGCAAGGTCAAGCGCTTGAGCGGCTTGATGTTGGAATGGGAGTAA	MSRSFADLLPKNSDDESLVDLAPLSDVDDLLLLLTRWVERGWLRALDRAFVAFLHELCPEDDPLVLLAAALASHQLGHGHVCLDLFETLKEPDFALSLPPEGDLQPGVMLLPSQVLQTLDGADWCKVLASSPLVALAGDEREQARQRPLVLAGKRLYLRRYWGYERRIDDALRQRLADHGAVPDDLDERLAGLFGPASATGPVDWQKLACALATRSAFSIVTGGPGTGKTTTVVRLLALLQAPAVEAGKPLRIRLAAPTGKAAARLTESISQQVRTLDVTDAVRERIPCEVTTVHRLLGSRPGTRHFRHHAGNRLPLDVLVIDEASMIDLEMMANLLDALPSHARLVLLGDKDQLASVEAGAVLGDLCRDAEEGWYSPQTLAWLESVSGENLMTSDLKQDLEGTHPLAQQVVMLRHSRRFGEGSGIGQLARLVNGQQPEQARNLLRKGQYPDLSTLALKGEHDNALERLLLDGQASGPQGYRHYLSILRQRRPAASRPLEDDCWNDWAREVLSAFDEFQLLCAVRRGPWGVEGLNQRITAALLKARLIDNDQLWYEGRPVLMTRNDYGLGLMNGDIGIALRLPERDGPDAGKQVLRVAFPRNDGRGGVRFVLPSRLNDVETVYAMTVHKSQGSEFTHTALILPDALNPVLTKELVYTAITRAKQWFSLIEPRAGIFEEAVQRKVKRLSGLMLEWE				NA	NA	NA	NA	NA
D1-36_00683	576			hypothetical protein	ATGACGGCGGTGGGACGGGAGGCGGTGCGCAGCAAGGATTGCAGGCATTATTTGCTTGCCTTTCTTTTGTGGCTGCTGTCGCCTGCGGTCATTGCCCAGGAGCCGTCGGCTGTTACTCGAGCCGACCAGCGAGCCGAGGCGGTCACCCAGGTTGTATTAGGCATTCTCAGTTATGCGCGGTGGCCGGTCGAGCCAACGCAACTGCAACTGTGTATCGTCGGCCCCACCCAATATACCGATGACCTCGTCAAAGGCACCACCCAGGCGACCGGTCGCCCCGTGACCGTGCAGCGTGTGCTGGCTGATTATCCGAGCATCACCGCTGACTGCAACGCCGTCTATATCGGCAATCTGAGCACTGCTGAACGCTCCCGTCTGTTTGCTTCGCTGATTGGCCAACCTGTGTTGAGCATCAGCGAGGGCGGGGATGAATGCACCGTGGGCAGTCTGTTTTGCCTGCGGGTCGGTGATGAGCAAGTGTCGTTCGAGGTCAATCTCGACTCGGTCGCCCGTAGTGGCGTGCGCATCCATCCCAGTGTCCTCCAACTATCACGCCGCAGGCCTGCCGCCCCATGA	MTAVGREAVRSKDCRHYLLAFLLWLLSPAVIAQEPSAVTRADQRAEAVTQVVLGILSYARWPVEPTQLQLCIVGPTQYTDDLVKGTTQATGRPVTVQRVLADYPSITADCNAVYIGNLSTAERSRLFASLIGQPVLSISEGGDECTVGSLFCLRVGDEQVSFEVNLDSVARSGVRIHPSVLQLSRRRPAAP				NA	NA	NA	NA	NA
D1-36_00684	1269	dgcN	COG2199	Diguanylate cyclase DgcN	ATGAGTTCGTCAAAACCACGAATTCGTCCCACGTTGGGGTCGGTCATCGGTCGCGGTCATTTGATCGTCGCGCTGGTGGCGATCGCCATGGCCAGTGTTTCCCTTACATTGCTGGGCGTGCTTGCCTTGCGTGTCTACGCCGATCACAACCTGCACCTCATCGCCCGTTCGATCAACTACACCGTGGAAGCGGCAGTGGTGTTCGATGACGAGGCCGCCGCCACCGAAGCGCTGGCCTTGATCGCCACCACCGAAGAGGTGGCCGATGCGCAGGTATTCAACGAGCAGGGCCGCTTGTTAGCGCGCTGGCAGCGGCCGGAGACCGGACTTCTTTCAGAGCTGGAAATGCACATCGCCAAGGCGTTCCTGGAAAAACCCATCAGCCTTCCCATCGTCCACCAAGGGCAAAATATCGGCAGGATCCTGCTGGCGGGGCATGGCGGCAGTCTGTTGCGTTTTCTGCTCAGCGGCCTGGCGGGAATCATTGTGTGTACGGCGGTCAGTGCCTGGGTCGCGCTGTATCTGGCGCGACGTCAGTTGCGGGCGATCACTGGACCGTTGCGCAGCTTGGCTGAGGTCGCCCACGCCGCGCGCTGCGAGCGAGCCTTGGACCGAAGGGTTCCCCCGGCCGACATCGCCGAGCTGGATAACCTGGGAAATGACTTCAATGGATTGCTCGCTGAGCTCGAGTCCTGGCAGACCCACCTGCAAAGTGAAAACGAGACCTTGGCTCACCAGGCCAGCCACGACAGCCTGACCGGGTTGCCGAACCGGGCATTTTTCGAAGGTCGATTGATCCGCGCCTTGCGCAATGCCAGCAAGCTCGACGAGCAAGTAGCCGTCCTGTATCTGGACAGCGATCGCTTCAAAGGCATCAATGACAACTTCGGCCACGCCGCCGGCGACGCGGTGTTGACTGCCGTCGCGACCCGGGTGCGGGCTCAGTTACGAGAAGATGACCTTGTGGCACGCCTGGGCGGCGACGAATTCGCGGTGCTGCTGACGCCGTTGCACAAGATCGAGGATGCCGAGCGAATCGCCGAAAAAATCATCGCCAGCATGGAAATGCCGATCCAGTTGCCAGGTAACGCCTCGGTGTTGACCTCCCTCAGTATCGGCATTGCCGTTTACCCCGAGCATGGGGCAACGCCCGGTGCGCTGCTCAGCGCCGCCGATGCGGCGATGTACCAGGCCAAACGCCTCGCCCGAGGCGGTCAACACACGGCGGGTGCGGAGCACCCGGTCGCGGAACTTCAAACCAGGAGCTGA	MSSSKPRIRPTLGSVIGRGHLIVALVAIAMASVSLTLLGVLALRVYADHNLHLIARSINYTVEAAVVFDDEAAATEALALIATTEEVADAQVFNEQGRLLARWQRPETGLLSELEMHIAKAFLEKPISLPIVHQGQNIGRILLAGHGGSLLRFLLSGLAGIIVCTAVSAWVALYLARRQLRAITGPLRSLAEVAHAARCERALDRRVPPADIAELDNLGNDFNGLLAELESWQTHLQSENETLAHQASHDSLTGLPNRAFFEGRLIRALRNASKLDEQVAVLYLDSDRFKGINDNFGHAAGDAVLTAVATRVRAQLREDDLVARLGGDEFAVLLTPLHKIEDAERIAEKIIASMEMPIQLPGNASVLTSLSIGIAVYPEHGATPGALLSAADAAMYQAKRLARGGQHTAGAEHPVAELQTRS	PGPT0026000_234	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
D1-36_00685	504	pal_1		Peptidoglycan-associated lipoprotein	ATGCTTTCGAATGCTCGTTTTTCTCTGCTGCGGTTCGCAGCATTTTTATTGATCACCGTATTTACCCTCGCTGGGTGTCAGACCGCCCCGCAAAAGGGCCTGACCCCAGCGCAAATCGCCGTCCTCAAGGAGCAGGGTTTCAAGTTGACGGAGGAGGGCTGGGCCTTCGGCCTCTCAGGCAAAGTGCTGTTTGGCAGCGATGTGGAAACTCTCAATCCAGCCAGCACCGAAATTGTCGAGCGCATTGGCAAGGCGCTGCTGGGCGCGGGTATCGAGCGAGTTCGCATCGATGGTCACACCGACGCATCAGGCTCCCAAGCCTATAACGAACAACTGTCGATACGTCGGGCCGACAGCGTCGGTAAAGTATTGATCGGCGTGGGCATGCGCGAAGAGAACGTCCAGTCGCGCGGCCTCGGCAGCAGCCAGCCCGTCGCGTCCAATGACACCGCCAGCGGCCGCACCGAAAACCGCCGCGTTGCCATCGTGGTCATCGCCGATTAG	MLSNARFSLLRFAAFLLITVFTLAGCQTAPQKGLTPAQIAVLKEQGFKLTEEGWAFGLSGKVLFGSDVETLNPASTEIVERIGKALLGAGIERVRIDGHTDASGSQAYNEQLSIRRADSVGKVLIGVGMREENVQSRGLGSSQPVASNDTASGRTENRRVAIVVIAD				NA	NA	NA	NA	NA
D1-36_00686	948	hdfR_2		HTH-type transcriptional regulator HdfR	ATGCAAAAAAACATCACCTCCCTCGGTTCGCTGAACTGGGACGACCTCAAGTTTTTCCTCGAAGTGGCCCGTACCCGCAAGGCCAGCACAGCCGCCAAGCGCCTGGCGGTCGACTACACCACCGTGTCGCGACGCATCAGCTCGCTGGAAGCTTCATTGGGTACGCTGCTGTTCGAAAAATCCCGGACCAATGGTTTTGTTCTGACGGCCGAAGGCCAGCGGTTGCTGGGCTACGCCGAATCGATCGAAAGCACGCTGCACATGGCTTGCGAACAGGTGTCTGGCTCCGGCGTCGCGCTGTCCGGCCATGTGCGCATGGGTTGCACCGAAGGCTTCGGCAGCTTTTTCATCACGCCGCAATTGAGCCACTTCGTCGATGCGTACCCGGCGATTTCAGTGGACATCCTGCCGCTGCCGCACTTCATCAGCCTCTCCAAGCGCGAAGCCGACATTCTCATCGCCCTCGAGCGCCCTGAACATGGCCCGTATGTCTGCTGCAAGCTGTGTGATTACCGGCTGCAGCTCTACGCAACCCAGCACTACCTGGACAACCATCCGCCCATCCACCATCCGGCGGATCTGGGCAAGCATTCGTTCATCAGTTATGTCGACGACCTGGCATTCAGCTCCGAGCTGCTGTACCTGGCCAATGTCTTGCCCGGCGCGCACGCACATCTGCGCAGCACCAGCGTGATCGCGCAGTTCGTCGCTGCGCAGCAAGGTCGGTCGCTGGCAATCCTGCCGTGCTTCCTCGCGGCCCAGGACTCACGCCTGTTGCCGGTGCTGCCAGACGAAATCACCGTTACGCGGCAGTTCTGGATGTACTGCCGGGAGGACTTGAGGAAGCTCAAGCGGATTACGTTGTTGTGGGACTACATCAGGGATGTGACTGAGCAGAACCGGCCATTGCTGATGGGCAACAGCCGGGAGATGGTTTTTGCCGACTAA	MQKNITSLGSLNWDDLKFFLEVARTRKASTAAKRLAVDYTTVSRRISSLEASLGTLLFEKSRTNGFVLTAEGQRLLGYAESIESTLHMACEQVSGSGVALSGHVRMGCTEGFGSFFITPQLSHFVDAYPAISVDILPLPHFISLSKREADILIALERPEHGPYVCCKLCDYRLQLYATQHYLDNHPPIHHPADLGKHSFISYVDDLAFSSELLYLANVLPGAHAHLRSTSVIAQFVAAQQGRSLAILPCFLAAQDSRLLPVLPDEITVTRQFWMYCREDLRKLKRITLLWDYIRDVTEQNRPLLMGNSREMVFAD				NA	NA	NA	NA	NA
D1-36_00687	1527	mmsA	COG1012	Methylmalonate-semialdehyde dehydrogenase [acylating]	ATGAACGTTTCCCTCACGCCCAGCGACACTGCCCTGCATACCGTCAAACTGTTGATCGATGGCGAGTGGGTTGAATCCCGATCCAACGAATGGCACGACATCGTCAACCCGGCTACCCAACAGGTGCTGGCGAAGGTCCCGTTTGCCACGGCCTCGGAAGTCGATGCAGCCATCGCCGCTGCCCAGCGTGCCTTCCAGACCTGGAAACTGACGCCCATCGGTGCGCGGATGCGCATCATGCTCAAGCTCCAGGCCCTGATTCGCGAGCATTCCAAGCGCATCGCCGCGGTGCTGAGCGCCGAACAAGGCAAGACCATCGCGGATGCCGAAGGCGATATTTTCCGTGGCCTTGAAGTGGTCGAGCACGCTTGTTCCATCGGCACCCTGCAGATGGGCGAGTTCGCCGAGAACGTCGCCGGGGGCGTGGACACCTACACACTGCGCCAGCCGATCGGGGTATGCGCGGGAATCACGCCGTTCAACTTTCCGGCGATGATCCCGTTGTGGATGTTTCCGATGGCCATCGCCTGCGGCAATACATTCGTGCTCAAGCCGTCCGAACAGGATCCGTTGTCGACCATGCTGCTGGTGGAACTGGCCATCGAGGCCGGCGTACCGGCAGGCGTTCTCAATGTGGTGCACGGCGGCAAGGACGTGGTGGATGCGCTTTGTACCCACAAGGACATCAAGGCCGTTTCCTTCGTCGGCTCCACAGCGGTAGGCACCCACGTCTATGACTTGGCGGGCCGCCATGGCAAGCGCGTGCAATCGATGATGGGCGCGAAGAACCATGCGGTGGTGTTGCCCGATGCCAATCGCGAGCAAACCCTCAACGCCTTGGTCGGCGCCGGTTTCGGCGCGGCGGGCCAGCGTTGCATGGCCACCTCCGTCGTGGTGATGGTGGGCGCGGCCAAGCAATGGTTGCCGGAGCTGAAGGCGCTGGCGCAGAAGCTCAAGGTCAACGCAGGCAGCGAGCCGGGCACTGATGTCGGCCCGGTGATTTCCAAGCGAGCCAAGGCGCGGATCCTTGAATTGATCGAAAGCGGCGTGAAGGAAGGCGCGAAGCTGGAGCTCGACGGACGGGAAATCAGCGTGCCGGGTTTCGAGCAGGGCAACTTTGTCGGCCCGACCCTGTTTTCCGGCGTGACCACCGACATGCGCATCTACACCGAAGAAATCTTCGGCCCGGTGCTGGTGGTGCTGGAAGTCGACACCCTGGATCAGGCCATTGCCCTGGTCAACGCCAACCCATTCGGCAACGGCACCGGCCTGTTCACCCAGAGCGGAGCGGCGGCGCGCAAGTTCCAGAGCGAAATCGACGTCGGCCAAGTGGGCATCAACATTCCGATCCCGGTGCCGGTACCGTTCTTCAGCTTCACCGGTTCCCGTGGTTCGAAGCTTGGCGACCTTGGCCCTTACGGCAAACAGGTGGTGCAGTTCTACACTCAGACCAAGACCGTTACCGCGCGTTGGTTCGATGACGACAGCGTCAATGACGGTGTGAACACCACCATCAATCTGCGTTAA	MNVSLTPSDTALHTVKLLIDGEWVESRSNEWHDIVNPATQQVLAKVPFATASEVDAAIAAAQRAFQTWKLTPIGARMRIMLKLQALIREHSKRIAAVLSAEQGKTIADAEGDIFRGLEVVEHACSIGTLQMGEFAENVAGGVDTYTLRQPIGVCAGITPFNFPAMIPLWMFPMAIACGNTFVLKPSEQDPLSTMLLVELAIEAGVPAGVLNVVHGGKDVVDALCTHKDIKAVSFVGSTAVGTHVYDLAGRHGKRVQSMMGAKNHAVVLPDANREQTLNALVGAGFGAAGQRCMATSVVVMVGAAKQWLPELKALAQKLKVNAGSEPGTDVGPVISKRAKARILELIESGVKEGAKLELDGREISVPGFEQGNFVGPTLFSGVTTDMRIYTEEIFGPVLVVLEVDTLDQAIALVNANPFGNGTGLFTQSGAAARKFQSEIDVGQVGINIPIPVPVPFFSFTGSRGSKLGDLGPYGKQVVQFYTQTKTVTARWFDDDSVNDGVNTTINLR	PGPT0002295_845	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATION	PLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0002295-mmsA|iolA-K00140	NA	NA
D1-36_00688	888	mmsB	COG2084	3-hydroxyisobutyrate dehydrogenase	ATGAACATCGCATTTATCGGCCTGGGTAATATGGGCGCTCCTATGGCGCGCAACCTGCTCAAGGCGGGCCATTCGCTGAACCTGTTCGACCTGAACCAGACGGTGCTGGCCGAACTGGCGGCGTTGGGCGGCACGATCAGCGCCTCGCCCCGCGATGCGGCCCAGGGTGCGGCGCTGGTGATTACCATGCTGCCGGCCGCCGCCCATGTACGCAGTGTCTGGCTGGGTGAGGACGGCGTGCTCGCCGGCATCGCCGCTGATACGCCGGCCGTTGATTGCAGCACCATCGATCCGCAGACCGCTCGTGACGTGGCGGCCGCCGCTGCGAAGCAAGGAGTGGCGATGGCTGATGCGCCCGTCTCGGGCGGTACTGGCGGCGCGGCGGCGGGCACGTTGACCTTCATGGTTGGGGCTACGGACGAGCTGTTCGCCACCCTGCAACCGGTGCTGGCGCAAATGGGCCGCAACATCGTGCACTGCGGCGAAGTCGGCACCGGGCAGATCGCCAAGATCTGCAACAACCTGCTGCTGGGGATTTCCATGGTGGGTGTCAGCGAGGCCATGGCGCTGGGCGATGCCTTGGGGATCGACACCCAGGTGCTGGCCGGCATTATCAACAGCTCGACCGGGCGGTGCTGGAGTTCGGATACCTACAACCCATGGCCGGGCGTGATCGAAACGGCACCAGCGGCGCGCGGTTATACCGGCGGTTTCGGCGCGGACTTGATGCTCAAGGACTTGGGCCTGGCCACCGAAGCCGCGCGCCAAGCCCGTCAGCCGGTGATATTAGGCGCGGTGGCGCAGCAGCTATATCAGGCGATGAGCCAGCGGGGCGAGGGCGGCCAGGATTTCTCGGCGATTGTTAACAGCTATCGCAAGCCGCAGTAA	MNIAFIGLGNMGAPMARNLLKAGHSLNLFDLNQTVLAELAALGGTISASPRDAAQGAALVITMLPAAAHVRSVWLGEDGVLAGIAADTPAVDCSTIDPQTARDVAAAAAKQGVAMADAPVSGGTGGAAAGTLTFMVGATDELFATLQPVLAQMGRNIVHCGEVGTGQIAKICNNLLLGISMVGVSEAMALGDALGIDTQVLAGIINSSTGRCWSSDTYNPWPGVIETAPAARGYTGGFGADLMLKDLGLATEAARQARQPVILGAVAQQLYQAMSQRGEGGQDFSAIVNSYRKPQ	PGPT0018170_529	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
D1-36_00689	345			hypothetical protein	ATGACCGCCCCCATCACCGTCCTGCGCGACACCCATCCGCTGCCCGTACTCGATGCCTGCAAATGGGAAAAACTCGAAGGCGATCCGCACACCGTCAACCTCAATGCTTACACCAGCGAAGACGGCAGCAAGATCATGGGCACCTGGATTTGCACGCCCGGCAAATGGCGTGTGGACTATGTGAAGTGGGAGTACTGCCATTTCCAGGAAGGCTATTGCGTGATCACCCCGGACGGCATGGCGCCGATCCATCTGCGCGCCGGTGACATTTTTGTCGTCGAGCCGGGCATGAAAGGCACTTGGGAAGTGGTCGAGACCGTGCGCAAGTATTTCGTGTTTGCCTGA	MTAPITVLRDTHPLPVLDACKWEKLEGDPHTVNLNAYTSEDGSKIMGTWICTPGKWRVDYVKWEYCHFQEGYCVITPDGMAPIHLRAGDIFVVEPGMKGTWEVVETVRKYFVFA				NA	NA	NA	NA	NA
D1-36_00690	882	cysL	COG0583	HTH-type transcriptional regulator CysL	ATGCACCTCGACTTCACCGACCTGCGCCTCTACCTGAACGTCCTCGACGCTGGCAACATCACCGCCGGCGCGGCCCGCAGCCATTTGTCCCTGGCTGCGGCCAGTGCGCGAATCCGTGCCATGGAGGCGTCCCTGGGCATCGACCTGCTTGAACGCGGGCGACGCGGCGTCACCCCGACGCCGGCCGGCAAGGCGCTGGCCGAACATGCGCGGATCCTGCTGCAACATGCCGAACGCCTCCAGCAGGATCTGGCCGAATACGCCCGAGGCGCGAAAGGCCGGGTGCGGCTGCTCTGCAACACCAGCGCCATGACCGAGTACCTGCCCGAATTGCTCGCCGGTTTTCTCAAGGCCCATCCCAATCTCGACATCGACCTGCAGGAGTTGCCCAGCTCCCGGATCACCCATGCGCTGCGCCAGGGCACAGCGGACCTGGGTATCGTTTCCGACGCGGTGAACACCGATGACCTTCAGGCCTGGCCATTTCGCGACGACCCGCTGGTATTGATCCTACCGACCGGACATTCGCTGGCTGACGGCCGAGCCGTGCGTTTCAGCGAGACCCTCAATCACGACTATATCGGCCTGAACGCCTCCAGCGCCTTGGCGATCCACTTGGAAGAACAGGCCCTGCACATCGGCTCACGCATGCAGATCCGCATTCGCGCCGACAGTTTCGATGGGGTGATTCGCATGGTGGCCCACGGCGCTGGCATCGCTATCGTGCCAAAGGCTGCCATCGACCGGCGACCGTCCGAGCCCGCGTATCGGTGCGTCCCGTTGCAAGAGACCTGGACCCGACGAGCGCTGCTGCTCTGCGCCCGTAACTTCGAAGGTTTGCCGCCCTATGCCAAAGCCCTGGCTCAGCATTTGGCCGAATAA	MHLDFTDLRLYLNVLDAGNITAGAARSHLSLAAASARIRAMEASLGIDLLERGRRGVTPTPAGKALAEHARILLQHAERLQQDLAEYARGAKGRVRLLCNTSAMTEYLPELLAGFLKAHPNLDIDLQELPSSRITHALRQGTADLGIVSDAVNTDDLQAWPFRDDPLVLILPTGHSLADGRAVRFSETLNHDYIGLNASSALAIHLEEQALHIGSRMQIRIRADSFDGVIRMVAHGAGIAIVPKAAIDRRPSEPAYRCVPLQETWTRRALLLCARNFEGLPPYAKALAQHLAE				NA	NA	NA	NA	NA
D1-36_00691	765			hypothetical protein	ATGGACACACTCTTCGCTTTCTACCAGGACCTCGGTCTGGCCCTTTCGTTGCTGGTCATTGGCACCTTCCTGCTGGCCGGTACCGTCAAGGGGGTGATCGGTCTCGGCCTGCCGACCATCGCCATGGGCTTGCTCGGGCTGGCTATGGCCCCGATGCAGGCTGCAGCGCTGTTGATTATTCCGGCGACACTGACCAATGTCTGGCAGTTGACGTTTGGCGGGCATTTGCGCGCGCTCATACGGCGGCTGTGGCCGCTGCTGCTGGCGATTTTCATCGGCACCGGATTCGGTACGTTGTGGATCGGCATGGTGGGCGGGGCATGGGCAATAAAGGGACTGGGCGCCGCGCTGATGGTTTACGCGTTGAGCGGCTTGTTTCTACCAACGTTGCGGGTCGGTGTCGGGCAAGAAGGCTGGCTTGCTCCGCTTTGCGGCTTGCTCACCGGTGTGATCACTTCGGCCACTGGCGTGTTCGTGATTCCAGCGGTGCCTTATCTCCAGGCGTTGGGCTTGAACCGAGATGAGCTGGTCCAGGCCCTGGGCTTGTCATTTACCGTTTCAACATTGGCCTTGGCGGCCGGGCTGTTGTGGCGAGGCGCCTTGGGCGGCGGCGAGTTGAGCGCGTCGCTGCTGGCGCTAATACCGGCGTTGCTGGGGATGTGGTTGGGGCAATGGTTGCGCCAGCGGCTCAGCGCCGTGCTGTTCAAGCGGGTGTTTTTCATCGGCCTCGGCGTGCTCGGCGGCCATCTTTTGATCAGCGGTTAG	MDTLFAFYQDLGLALSLLVIGTFLLAGTVKGVIGLGLPTIAMGLLGLAMAPMQAAALLIIPATLTNVWQLTFGGHLRALIRRLWPLLLAIFIGTGFGTLWIGMVGGAWAIKGLGAALMVYALSGLFLPTLRVGVGQEGWLAPLCGLLTGVITSATGVFVIPAVPYLQALGLNRDELVQALGLSFTVSTLALAAGLLWRGALGGGELSASLLALIPALLGMWLGQWLRQRLSAVLFKRVFFIGLGVLGGHLLISG				NA	NA	NA	NA	NA
D1-36_00692	315			hypothetical protein	ATGAGTGAATTGCACGGTTTCATCCTGCATGCCAAGACCCGACCGGAAAAAGCCGAAGCCTTCGAAGCCTTGTTCCGCGCTTACGTCGAACCGAGTCGGGCCGAGCCCGGCTGCATCGAGTACCACATGTTGCGGGACCAGCAGGACCCGACGTTGTTCATCTTCTATGAAATCTGGGCATCCCAGGCCGATCTGGATGTGCACTCGAACCTGCCGCATATGAAGCAATTTTTCGAACAACGTATGGATTACCTGGAACGAGACTTCGAGATTCGTCGCGTCGACATGCTCAGCCCCTCTTCGGCTAACCGCTGA	MSELHGFILHAKTRPEKAEAFEALFRAYVEPSRAEPGCIEYHMLRDQQDPTLFIFYEIWASQADLDVHSNLPHMKQFFEQRMDYLERDFEIRRVDMLSPSSANR				NA	NA	NA	NA	NA
D1-36_00693	591	mdaB	COG2249	NADPH:quinone oxidoreductase MdaB	ATGAAAAAAGTCCTGTTGCTCAACGGCGGTAAGCAATTCGCCCATTCCGACGGTCGCTACAACGCCACCCTTCACGACACCGCGCTCAGCGTCCTGGACCGAGGCGGCCTTGATGTGAAAACCACCTTCATCGACGGTGGCTACGACATCAAGGAAGAAGTCGCCAAGTTTCTCTGGGCCGACGTAATCATTTATCAGATGCCCGGCTGGTGGATGGGCGCTCCGTGGACCGTGAAGAAATACATCGACGAAGTCTTTACCGAAGGCCACGGTAGCCTCTATGCCAGTGACGGCCGGACTCGTTCCGATGCGTCGCAAAAATACGGCAGCGGTGGTTTGGTACAGGGCAAGCAATACATGTTGTCGCTCACCTGGAACGCCCCGCAGCAAGCCTTCGACGACCCGACGGACTTCTTCGAAGCCAAGGGCGTGGACGCGGTGTATTTCCCGTTCCACAAGGCCAATCAATTCCTGGGCATGACCGCTCTGCCGACCTTCCTGTGCGTGGACGTGATGAAGCGCCCGAACATCGAAGAAGATGTGGCGCGGTATGAGCGGCATCTGATCGAGGTGTTCGGCCTTTCGCGGTAA	MKKVLLLNGGKQFAHSDGRYNATLHDTALSVLDRGGLDVKTTFIDGGYDIKEEVAKFLWADVIIYQMPGWWMGAPWTVKKYIDEVFTEGHGSLYASDGRTRSDASQKYGSGGLVQGKQYMLSLTWNAPQQAFDDPTDFFEAKGVDAVYFPFHKANQFLGMTALPTFLCVDVMKRPNIEEDVARYERHLIEVFGLSR	PGPT0023600_231	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEM	ADAPTION_TO_PIS-PLANT_2-METHYLENE-4-BUTYROLACTONE_RESISTANCE	ADAPTION_TO_PIS-2-METHYLENE-4-BUTYROLACTONE_DEGRADATION,PGPT0023600-mdaB-K03923	NA	NA
D1-36_00694	927	dmlR_2		HTH-type transcriptional regulator DmlR	GTGAAAGCCAGATCCGACGAGTTGCAGATCTTCGTCTGCGTGATCGAATGCGGGTCGATCTCCGCCGCCGCCGAGCAAGTCGGGCAGACACCCTCGGCGGTCAGTCGCACCTTGTCGCGCCTGGAAGCCAAGCTCGACACCACGTTGATCAACCGCACCACGCGGCGCATGGACCTGACTGAGGAGGGCAAGTACTTCTTCGAGCAGGCCAAGGGCATTCTCGACCAGATGGATGAGCTGGAAGAGCGGCTGTCGTCTCGCCATAAGACCCCCGCCGGGCGCTTGCGGATCAACGCGGCATCGCCGTTCATGCTCCACGCCATCGTCCCCCACATCGAAGAGTTCCGCACGCTGTATCCGGATATCCAGCTGGAGCTCAACAGCAACGACTTGATCATCGATTTGCTCGAACAAAGCACGGACGTCGCCATTCGTATCGGTACGCTCACGGATTCGACGCTCCATGCCCGCTCACTGGGTTGCAGCCCGTTGCACATTCTTGCCAGTCCGGCTTACTTGAAGCGGCGGGGGACGCCCTCAAGCGTTGCCGAGCTGGCGGAACATTCGCTTTTGGGGTTTGCCCAGAACGACGGGCTCAACCAGTGGCCACTGCGTCACATCCACGGCGATCGCTGGCCGATCCAGCCGGCCATCAGTGCGTCCAGCGGCGAAACGGTGCGTCACCTGGCGCTGCAAGGGCAGGGCATTGCCTGCCTCTCGGACTTCATGACCCGGGACGACATCCGCGCCGGTCGGCTCAAGGTGTTGCTCGCCGATGCCAACAGCGGTTATCGCCAGCCGATCAATGCGGTGTACTACCGCAACTCCCAACTGGCCCTGCGCATCCAGTGCTTCCTGGACTTCATCCAAGGCAAGCTCGCCGGGTACGCTTCGAGTCCCAAGAGAGCCGACCAGATCGTTAATTAA	MKARSDELQIFVCVIECGSISAAAEQVGQTPSAVSRTLSRLEAKLDTTLINRTTRRMDLTEEGKYFFEQAKGILDQMDELEERLSSRHKTPAGRLRINAASPFMLHAIVPHIEEFRTLYPDIQLELNSNDLIIDLLEQSTDVAIRIGTLTDSTLHARSLGCSPLHILASPAYLKRRGTPSSVAELAEHSLLGFAQNDGLNQWPLRHIHGDRWPIQPAISASSGETVRHLALQGQGIACLSDFMTRDDIRAGRLKVLLADANSGYRQPINAVYYRNSQLALRIQCFLDFIQGKLAGYASSPKRADQIVN				NA	NA	NA	NA	NA
D1-36_00695	1446			hypothetical protein	ATGAAACCAGCACGCCTTCGCGCCGACGCCCTCGCCGGCCTCACGACCTCTTTCGCCTTGCTCCCCGAATGCATCGCCTTCGCCCTGGTGGCGCACCTCAACCCACTGATGGGGCTGTACGGCGCGTTCATCATTTGCACGCTGACCGCGTTGTTCGGTGGTCGGCCCGGGATGGTGTCGGGCGCGGCGGGGTCCATGGCGGTGGTGATCGTCGCGCTGGTGGTACAGCACGGCGTGCAATACCTGTTGGCGACCGTGCTGCTGGGCGGGTTGATCATGACGGCGTTTGGGCTGCTGCGACTGGGCAAGCTGGTGCGCATGGTGCCGCATCCGGTGATGCTGGGGTTCGTCAATGGCCTGGCAATTGTCATCGCTTTGGCGCAACTGGAGCATTTCAAGCGCGACGGCGCCTGGCTCAGTGGCCCCACGCTCTACCTGATGGTCGGCCTGGTGGCGCTGACGATGGCCATCGTCTACCTGCTGCCGCGCCTGACCCGCAGCGTGCCGCCCGCCCTGGTGGCGATCCTCGGCGTTGGCCTGGCGGTCTATCTGCTTGGCTTGCCTACCCGAACGCTGGGCGACATGGCGCACATTGCAGGCGGCTTGCCGGTTTTCGCCCTGCCGGACATTCCCTGGAATCTCGAAACCCTGCTGATCGTCGCGCCTTACGCCGTCATCATGGCGATGGTCGGTTTGTTGGAAACCCTGCTGACCCTGAACCTGACCGACGAGATCACCGAGAGCCGCGGTTATCCTGACCGTGAATGCGTGGCGCTGGGCGCGGCCAACATGGCCTCCGGGTTATTCGGCGGCATGGGCGGTTGCGCCATGATCGGCCAAACGATGATCAACCTCAGCTCGGGCGGGCGCGGGCGGATATCGGGCGTCGTGGCCGGGGTGATGGTGTTGCTGTTCGTGTTGTTCTTGTCGCCGCTGATCGAGCGCATTCCGCTGGCGGCGCTGGTGGGCGTGATGTTCGTGGTGTCGCAGCAGACATTCGCCTGGGCCTCGTTGCGAGTGGTCAACAAGGTACCGGCGAACGATGTGCTGGTGATCATCGCGGTGACCGTCATCACGGTATTCACCGACCTGGCCGTCGCCGTGCTCTGCGGGATTATCATCGCGGCGCTCAACTTCGCCTGGCAACAAGCCCGGGAGCTGTATGCCGACGCGCAACTGGAAGCGGACGGCAGCAAGCTCTATCGCGTGCACGGCACCTTGTTCTTCGCCTCGACGACGCCGTTTCTCAACCAGTTCGACCCGGCCAACGACCCTGATCTCGTTACCCTTGACTGTCGTCACCTGAGTTTCGTCGACTACTCGGCCATCGCCGCGCTGATGACCCTGCGCGAGCGCTACAGCAAGGCCGGCAAGCACCTGCGGGTGTTTCATCTGTCCGAGCGTTGCAAGCAAATGCTCAAGCGCGCGGATGTGCACCAGGATTGA	MKPARLRADALAGLTTSFALLPECIAFALVAHLNPLMGLYGAFIICTLTALFGGRPGMVSGAAGSMAVVIVALVVQHGVQYLLATVLLGGLIMTAFGLLRLGKLVRMVPHPVMLGFVNGLAIVIALAQLEHFKRDGAWLSGPTLYLMVGLVALTMAIVYLLPRLTRSVPPALVAILGVGLAVYLLGLPTRTLGDMAHIAGGLPVFALPDIPWNLETLLIVAPYAVIMAMVGLLETLLTLNLTDEITESRGYPDRECVALGAANMASGLFGGMGGCAMIGQTMINLSSGGRGRISGVVAGVMVLLFVLFLSPLIERIPLAALVGVMFVVSQQTFAWASLRVVNKVPANDVLVIIAVTVITVFTDLAVAVLCGIIIAALNFAWQQARELYADAQLEADGSKLYRVHGTLFFASTTPFLNQFDPANDPDLVTLDCRHLSFVDYSAIAALMTLRERYSKAGKHLRVFHLSERCKQMLKRADVHQD	PGPT0003020_5807	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SULFATE|THIOSULFATE_TRANSPORT,PGPT0003020-TC_SULP-K03321	NA	NA
D1-36_00696	1350	gntT_1	COG2610	High-affinity gluconate transporter	ATGGCACCTGCTTTCGGTTATTGGCTATTGGTCTACGCGGCCATCGCCATCATTGCACTGATCGTTTTGATTGCGCGCTACCGGCTCAATCCGTTCATCGTGATTACCCTGGTTTCCATCGGCCTGGCGTTGCTGGCCGGGATGCCGCCCTCGGGTGTGGTGGGGGCGTACGAGGCGGGTGTCGGCAAGACGCTGGGGCACATCGCGTTGGTGGTGGCCTTGGGCACGATGCTTGGCAAGATGATGGCCGAGTCCGGCGGCGCGGAGCGGATGGCGCAGACGTTGATCGAACGATTCGGCGAGCGCAATGCCCATTGGGCAATGGTCTGCATCGCATTCCTGGTCGGTTTGCCGCTGTTTTTCGAAGTCGGTTTTGTGCTGTTGGTGCCTATCGCCTTTACCATCGCCCGACGCGTGGGCGTGTCGATTTTGATGGTGGGGCTGCCCATGGTCGCCGGGCTTTCGGTGGTCCATGCGCTGGTGCCGCCGCACCCGGCGGCGATGCTGGCGGTGCAGGCGTTCCAGGCGTCGGTGGGGCAGACCTTGCTGTACGCGATCCTGGTCGGCATTCCCACTGCGATCATCGCCGGACCTCTGTACGCCAAGTTCATCGTACCGCGCATCCAACTGCCCGCTGAAAACCCGCTGGAGCGCCAATTTCTCGATCGGGAGCCACGGGCCAATCTGCCTGGCTTCGGCATAACGCTGGGGACGATTCTGTTGCCGGTGATCCTGATGCTGATTGGCGGCTGGGCCAACCTGATCTCCACGCCGGGGAGCGGTTTCAATCAGTTCCTGTTGTTTATCGGCAACTCGGTGATCGCCCTGCTGTTGGCGACCATCCTCAGCTTCTGGACCCTCGGCCTCGCCCAAGGCTTCAGCCGCGAGTCGATCCTCAGGTTCACCAACGAATGCCTGGCGCCGACGGCCAGCATCACCTTGCTGGTGGGGGCGGGCGGTGGTTTGAACAGGATTTTGGTGGATGCCGGGGTCACTCAGCAAATCGTCGGCCTGGCCCAGGAGTTTCAATTGTCGCCCCTGGTGATGGGGTGGCTGTTCGCCGCATTGATGCGTGTTGCAACGGGGTCGGCCACGGTGGCGATGACGACGGCGTCGGGCATTGTCGCGCCCGTGGCGATTGGCCTGGGTTATCCCCATCCCGAGTTACTGGTGCTGGCGACCGGAGCTGGGTCGGTTATCTTGTCCCACGTCAATGACGGCGGCTTCTGGCTGATCAAGGAATACTTCAATATGACCGTCACGCAAACGTTCAAGACCTGGACGGTGCTCGAGACATTGATATCCCTGGTCGCGTTCGCCTTGACCCTTGGGCTTGCCCGCGTGCTCTGA	MAPAFGYWLLVYAAIAIIALIVLIARYRLNPFIVITLVSIGLALLAGMPPSGVVGAYEAGVGKTLGHIALVVALGTMLGKMMAESGGAERMAQTLIERFGERNAHWAMVCIAFLVGLPLFFEVGFVLLVPIAFTIARRVGVSILMVGLPMVAGLSVVHALVPPHPAAMLAVQAFQASVGQTLLYAILVGIPTAIIAGPLYAKFIVPRIQLPAENPLERQFLDREPRANLPGFGITLGTILLPVILMLIGGWANLISTPGSGFNQFLLFIGNSVIALLLATILSFWTLGLAQGFSRESILRFTNECLAPTASITLLVGAGGGLNRILVDAGVTQQIVGLAQEFQLSPLVMGWLFAALMRVATGSATVAMTTASGIVAPVAIGLGYPHPELLVLATGAGSVILSHVNDGGFWLIKEYFNMTVTQTFKTWTVLETLISLVAFALTLGLARVL	PGPT0001340_2049	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
D1-36_00697	861	hexR_1	COG1737	HTH-type transcriptional regulator HexR	ATGGACATCCTCTACCAGATCCGCTCCCGTCAGGATTCTTTCAGCGCCGGCGAAGGAAGAATCGCCCGGCTGATGCTCGACGACGTAGGATTTGCCGCCTCCGCCAGCCTGGAAGAGTTGGCCCAGCGCGCGGAAGTCAGCAGCGCCACGCTGTCGCGCTTTGCCCGTACCGTCGGTTGCCGCGATCTGCGAGACCTACGCCTGCAACTGGCCCAGGCCAGTGGCGTCGGCAGCCGCTTCCTCGACCCCGCCGGCGCGCCCGAGCAATCGGCGTTTTATGGACAGATCGTTGGGGACATCGAATCGACGTTGCGTCAGCACTTGGCAGCGTTCGAAGAGCCGCAGTTCGGCGATGCGGTACGGATGATCGGCAAGGCACGAATGGTCCATGCGTTCGGCCTCGGTGGCTGGTCGGCGCTGTGTGGCGAAGAATTACAGGTGCGCCTGGTGCGTTTCGGCTACTCGATCGCCGCCTGCCGCGACCCGGTGATGATGCGCATCACGGCCACTTCGCTGAGCGATCAACACTTGGTGATTGCCTGTTCACTGACTGGTATCACGCCAGAGTTGTTGAGCGCGGTTGAACTGGCCCGCGGCTACGGTGCTCCGATCTTGGCCATCACCCGTGCCGACTCGCCACTGGCCCGCCTGGCCGACGTGGTGCTGCCGCTGCAAGGCGCCGAAACCTCGTTCATCTACAAACCCACGGCGGCGCGCTACGGCATGCTGCTGGCCATCGATGTGCTCGCCACTGAACTGGCGCTGGCTCATCCGCAAGACAATCAAGAGCGCCTGCGGCGGGTCAAGCTTGCCCTGGACGATTACCGTGGCGGCGACGATCGCCTGCCGCTGGGAGACTGA	MDILYQIRSRQDSFSAGEGRIARLMLDDVGFAASASLEELAQRAEVSSATLSRFARTVGCRDLRDLRLQLAQASGVGSRFLDPAGAPEQSAFYGQIVGDIESTLRQHLAAFEEPQFGDAVRMIGKARMVHAFGLGGWSALCGEELQVRLVRFGYSIAACRDPVMMRITATSLSDQHLVIACSLTGITPELLSAVELARGYGAPILAITRADSPLARLADVVLPLQGAETSFIYKPTAARYGMLLAIDVLATELALAHPQDNQERLRRVKLALDDYRGGDDRLPLGD	PGPT0017985_762	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
D1-36_00698	1467	dan		D-aminoacylase	ATGCTGTACGACACACTCATCCGCAACGCCTTGGTGATCGATGGTCACGACAAGCCTGGCTATAACGCCGACGTGGCGATTCGCGCGGGTCGCATCGAGCGCATCGGCGATCTGGGCGACACCCGGGCGGTTGACGAAATCGACGCCGCTGGCCGCGTGCTGGCGCCAGGATTCATCGACGTGCACACCCACGACGACACGGTGGTCATCCGCCAACCGCAAATGCTGCCCAAGCTCAGCCAGGGCGTGACCACGGTGATCGTCGGCAACTGCGGCATCAGCGCGTCGCCGGTTCGCCTTCAGGGCGATCCGCCGGACCCGATGAACCTGCTCGGCACCGCCCAGGCGTTTGCCTACCCACGCTTCGCTGATTATCGTTCGGCGGTGGAGGCGGCGACACCAGCGGTCAACGTAGCCGCCTTGGTCGGGCACACGGCGCTGCGCAGCAATCATCTGGACGACTTGTTGCGCACCGCCAGCGCAGGAGAAATCGCCGCCATGCGTCAGCAACTGCGTGAAAGCCTGGAGGACGGTGCGCTGGGCCTGTCCACCGGCCTGGCCTATGCCAACGCGTTCTGCGCATCCACTGACGAGGTCATGCAATTGACCGAAGAGTTGGCGGCGTTCGGCGCGGTCTACACCACCCATCTGCGCAGCGAATTCGAGCCGGTGCTGGAAGCCATGGACGAGGCGTTTCAGATCGGTCGTCATGCCCAGAGCCCGGTCATTGTTTCCCACCTCAAATGTGCCGGCGCCGGTAACTGGGGACGTAGTCCACAGGTGCTCGCGGCGTTGGAAAACGCGGCGAAAACCCACCCAGTTGGTTGTGACTGCTATCCCTATGCGGCGAGCTCTTCGACACTGGACCTCAAACAGGTGACCGATGCCCATCGCATCACCATCACCTGGTCGACACCGCATCCGCCCATGGGCGGTCGAGACCTGGCAGACATCGCCGCCGAATGGGACGTGTCGCTTCTGGAAGCGGCGAGTCGCCTACAGCCGGCAGGTGCGGTGTATTACGGCATGGATGAAAGCGATGTAAGACGAATCCTCGCGCACCCTTTGTCCATGGTCGGCTCTGATGGCCTGCCCGAAGACCCCTTTCCGCACCCACGGCTGTGGGGCGCTTTCCCTCGAGTCTTGGGACATTTCAGTCGAGACATCGGGCTTTTTCCGCTGCATACCGCCGTCCACAAGATGACAGGGCTTTCAGCCGCGCGCTTCGGCCTGAAGGAGCGGGGCGAAATACGTGAAGGACATTGGGCGGACCTGGTGTTGTTCAATCCACAGACCATCCGCGACGTCGCGGACTTCAACGAACCGCAACGGGCGGCGGAAGGCATTGACGGCGTGTGGGTCAACGGCATCCTGAGTTATTGCAAAGGGCAAGCGAATGGCAAAAGAGAAGGACGTTTCCTGGCGCGTGAAGGCGACCTGCGCCACGGATTTCACTGCTCCCGATAG	MLYDTLIRNALVIDGHDKPGYNADVAIRAGRIERIGDLGDTRAVDEIDAAGRVLAPGFIDVHTHDDTVVIRQPQMLPKLSQGVTTVIVGNCGISASPVRLQGDPPDPMNLLGTAQAFAYPRFADYRSAVEAATPAVNVAALVGHTALRSNHLDDLLRTASAGEIAAMRQQLRESLEDGALGLSTGLAYANAFCASTDEVMQLTEELAAFGAVYTTHLRSEFEPVLEAMDEAFQIGRHAQSPVIVSHLKCAGAGNWGRSPQVLAALENAAKTHPVGCDCYPYAASSSTLDLKQVTDAHRITITWSTPHPPMGGRDLADIAAEWDVSLLEAASRLQPAGAVYYGMDESDVRRILAHPLSMVGSDGLPEDPFPHPRLWGAFPRVLGHFSRDIGLFPLHTAVHKMTGLSAARFGLKERGEIREGHWADLVLFNPQTIRDVADFNEPQRAAEGIDGVWVNGILSYCKGQANGKREGRFLAREGDLRHGFHCSR				NA	NA	NA	NA	NA
D1-36_00699	369			hypothetical protein	ATGAGCTTCGGTAAAACCACTCCGATCCTGCGGATCTTCGATGAAACCAAGGCGTTGGCGTTCTATGTCGACTTCCTGGGCTTTACCGTCGACTGGCAACACCGCTTCGATGACGACTTTCCGTTGTACCTGCAAGTCTCCCGTGGTGACTGCGTGCTGCACCTGTCCGAGCACCATGGCGATTGCACGCCGGGCTCGGCGTTGCGAATCGAGACTGATGAACTGGAAGTCTTCCAGCAGCAATTGATCGCCAAGCAATATCGCTACGCCCATCCACAGATCCAGGCCATGCCGTGGGGTAGCCAGGACATGACCGTGATGGATCCGTTTGGGAATCGGTTGGTCTTTACGAACGCGATCAGTGTGTAA	MSFGKTTPILRIFDETKALAFYVDFLGFTVDWQHRFDDDFPLYLQVSRGDCVLHLSEHHGDCTPGSALRIETDELEVFQQQLIAKQYRYAHPQIQAMPWGSQDMTVMDPFGNRLVFTNAISV				NA	NA	NA	NA	NA
D1-36_00700	420	fitB_1		Toxin FitB	ATGATAATCCTCGATACCAATGTGATTTCCGAATTCATGCGCGTTGAGCCGGATACAAAAGTTCTGACTTGGGTCGATTCACAGCCAGCGATGGATCTGGTCATCTGCGCTATCACGGTAGCGGAAATTCTTCATGGTATAGCCAGGCTGCCCTTCGGCAAGCGAAAGCAGAAGCTCGAATCCCATGCGATGGCAATTTTTGAAGAGGATTTTGCAGGCAGAATTTTATCTTTTGATGCCCATGCGGCTGTTGAGTACGCAACGCTTGTTGCGTCGTGTGAGGCCAAGGGTAAGGCGGCGGGTATGGCCGATGCGCAAATTGCGGCTATTTGCCGGTCTCACGGCGCGCCGATTGCCACACGCAACATAAGAGACTTCGAGTTTCCGGGGATTGAGGTGATCAACCCCTGGAACGCTTGA	MIILDTNVISEFMRVEPDTKVLTWVDSQPAMDLVICAITVAEILHGIARLPFGKRKQKLESHAMAIFEEDFAGRILSFDAHAAVEYATLVASCEAKGKAAGMADAQIAAICRSHGAPIATRNIRDFEFPGIEVINPWNA	PGPT0027670_773	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-FitB-FitA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027670-toxin_fitB|vapC-K07062	NA	NA
D1-36_00701	1920	mcpS	COG0840	Methyl-accepting chemotaxis protein McpS	ATGAATAGCTGGTTTGGCAACATTAGCGTCAACATGAAACTGGGCCTGGGCTTCGGCCTGGTGCTGGTACTGACTTGTCTCCTGGCCCTGACCAGTTGGACCAGCCTGGGTGGCTTGATCGACCGCAGCAACTGGATGAGCGACATCACCCAGCTCAACGCTGGCCTGACCAAGCTGCGCGTCACGCGCCTGCAATACATGCTGACCAACGGCGACGAGACCGCCGCGCAAAATGTACAGACCACCCTTGATGGTTTCCTGGCGCAGCAGAACGCGCTGCTCAACAGTTTCAAAAGCCCTGCAAACGTCAAACTGCTCAAAGAGCAGAATGCGACCATCAACGCCTATCAAGTGTCGCTGAACAAAATGCGCAGCGCCTACCGTACCGGCAACTCCGCCCGTGAGGTCATGGGCGCAAACGCCGAGACGGCCTACAAGCTGATCGAAGCAATCGATTCGGACGTCAAGCAAATGGCCCTCAGCGATGAACGCTTTGAGCAGTTCCAGGCCATTACCCAGACCAAGCAGGCGTTCATGCTGGCTCGTTATGAAGTGCGCGGCTATACCGCCAACCCCAACGCCGATACCGAACGCAAGGCCTTCGCCCAACTGGATGCCGCCATCGCGTCGCTCAAGCCGCTCGATGAATACTTCGCCAGTACCCGCCAAGGTGAGCTGCGCCAGCTTGAGTCGACCCTGGTCCAATACCGCAGCGCCGTACAGGCTTTCAAATTGGCCACGGCCGATGTTGTACAGGCACGCAAGGAAATGACTGACCAAGGCGCGGCCATCGTCTCCCTGAGCGAGCAGCTGTACCAGATCCAACTCGATCGTCGCGACGCCGAAAGCGCCCAAGCCCGCACGCTGCAACTGGTCAGCACCTTGCTGGCCTTGTTGGTGGGCGTCATTGCCGCCGTGGTCATCACTCGCCAGATCACTCGCCCGCTGCGTGAAACGCTCGCCGTGGTAGAGCGCATCGCCGGCGGCGACCTGTCGCAGAACGTTATCGTTACCCGTCGCGATGAACTCGGCGTCTTGCAACAAGGCATCGCCCGCATGGGCGTGACCTTGCGCGACCTCATCAGCGGCATCCGCGATGGCGTGACGCAGATCGCCAGCGCCGCCGAAGAGCTGTCGGCCGTCACCGAGCAGACCAGCGCCGGGGTCAACAGCCAGAAAGTCGAGACCGACCAGGTCGCGACCGCCATGCATGAGATGACCGCCACGGTCCAGGAAGTCGCCCGCAACGCCGAAGAAGCGTCCCAAGCCGCGGCCGCCGCCGACGGCGAAGCCCGTGATGGCGACCAGGTGGTCAACGAAGCCATCGCTCAGATCGAACGCCTGGCCAGTGAAGTGGTGCGCTCTACCGATGCGATGACCGTTCTGCAGCAGGAAAGCGACAAGATCGGCGCGGTGATGGACGTCATCAAGGCCGTCGCCGAGCAGACCAACTTGCTGGCGCTCAACGCCGCCATCGAAGCGGCCCGCGCCGGTGAAGCCGGTCGTGGCTTCGCAGTCGTCGCCGACGAAGTCCGTGGCCTGGCCCAACGCACGCAGAAATCCACCGAGGAAATCGAAGGCCTGGTGGCCGGCCTGCAGAACGGCACCCAGCAAGTGGCCGCCGTGATGAACAACAGCCGCAACCTCACCGACAGTAGCGTGGCACTGACCCGCAAGGCCGGCGTGTCACTGGAGAACATCACCCGCACGGTGTCGAACATCCAGTCGATGAACCAGCAGATCGCCGCCGCCGCCGAGCAACAGAGCGCCGTGGCCGAAGAGATCAGCCGCAGCATCATCAACGTGCGCGATGTCTCCGAACAAACCGCCGCCGCCAGCGAAGAGACCGCAGCGTCCAGTGTTGAACTGGCGCGGTTGGGCGGTCAGTTGCAGCAGATGGTCAGTCATTTCAGGGTTTGA	MNSWFGNISVNMKLGLGFGLVLVLTCLLALTSWTSLGGLIDRSNWMSDITQLNAGLTKLRVTRLQYMLTNGDETAAQNVQTTLDGFLAQQNALLNSFKSPANVKLLKEQNATINAYQVSLNKMRSAYRTGNSAREVMGANAETAYKLIEAIDSDVKQMALSDERFEQFQAITQTKQAFMLARYEVRGYTANPNADTERKAFAQLDAAIASLKPLDEYFASTRQGELRQLESTLVQYRSAVQAFKLATADVVQARKEMTDQGAAIVSLSEQLYQIQLDRRDAESAQARTLQLVSTLLALLVGVIAAVVITRQITRPLRETLAVVERIAGGDLSQNVIVTRRDELGVLQQGIARMGVTLRDLISGIRDGVTQIASAAEELSAVTEQTSAGVNSQKVETDQVATAMHEMTATVQEVARNAEEASQAAAAADGEARDGDQVVNEAIAQIERLASEVVRSTDAMTVLQQESDKIGAVMDVIKAVAEQTNLLALNAAIEAARAGEAGRGFAVVADEVRGLAQRTQKSTEEIEGLVAGLQNGTQQVAAVMNNSRNLTDSSVALTRKAGVSLENITRTVSNIQSMNQQIAAAAEQQSAVAEEISRSIINVRDVSEQTAAASEETAASSVELARLGGQLQQMVSHFRV	PGPT0015710_10228	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_00702	741			putative oxidoreductase	ATGAACGAAGGAATCGCAGGCAAAGTCGTCCTGATTACCGGCGGCAGTACCGGCATCGGCGCCGAAGTCGCTCGCCTGCTGGCCGCACGCGGCGCCAAGGTGGCAGTGGCCGCACGGCGGACTGACAAACTGGAGGCCGTGGTGGCCGGGATCGCTCGCCAGGGTGGCGCGGCCAAAGCCTACACCCTCGACGTCACCGACAAACGCCAGGTCGAGGCCGTGGTCGCCGCGGTCGTGACCGACTTCGGCAAGCTCGACGTGCTGATCAACAACGCCGGACTGATGCCGATTCGCCCCATGGCAGAGGTCAACACCGATGAATGGGACGCCATGATCGACGTCAATCTCAAGGGCACGCTTTACGGTATTGCAGCGGCGCTGCCACGTTTCCTCGCGCAGGAAAGCGGACACATCATCAACCTGAGCTCCGTGGCTGGAGTGAAAGTCTTTGCACCCGGTGGAACGGTGTACTCGGGAACGAAGTTCGCCGTCAGCGCCATTTCCGAAGGCTTGCGCCAGGAAGTAGGCGACAAGGTTCGCGTGACGTCCATCGCACCCGGCGCGGTGGACAGCGACCTCAAGCACAGCACCTTCGGCACAGCCAAAGACACCGTGCTGGACTTCTACAAGAAAGCAATCCCGGCTGCCTCGGTGGCTCGTGCCATCGCTTTCGCGATCGAGCAGCCGAACGATGTGGACATCAACGAAATCGTGCTCCGTCCGACTCAACAGGAGTTTTGA	MNEGIAGKVVLITGGSTGIGAEVARLLAARGAKVAVAARRTDKLEAVVAGIARQGGAAKAYTLDVTDKRQVEAVVAAVVTDFGKLDVLINNAGLMPIRPMAEVNTDEWDAMIDVNLKGTLYGIAAALPRFLAQESGHIINLSSVAGVKVFAPGGTVYSGTKFAVSAISEGLRQEVGDKVRVTSIAPGAVDSDLKHSTFGTAKDTVLDFYKKAIPAASVARAIAFAIEQPNDVDINEIVLRPTQQEF	PGPT0021285_285	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021285-ydfG-K16066	NA	NA
D1-36_00703	1158	nemA_1	COG1902	N-ethylmaleimide reductase	ATGGAACATCGCTCGTTGTTCGAGCCCACCTCGTTGGGCTCCATCACGCTGAAGAACCGCATCGTCATGCCGCCACTCACCCGCCAACGCAGCGGACAGCCCGGCGACATTCCCACGGCCCTGATGGCGCGCTACTACCAACAACGGGCCAGCGCCGGCCTGATCATCAGCGAAGGCACCCAGATCGAGCCTCGGGGCAAAGGTTATGCCTGGACGCCAGGCATCTACAGCCAGGCGCAGATCGATGGCTGGCGCACCGTGACCGACGCCGTGCATGCCAAGGGCGGGGTGATTTTCGCCCAGCTTTGGCACGTTGGCCGGGTGTCCCACAACGCACTGCAGCCCGACAACGCCGCCCCCATCGCGCCGTCGCCGATCCAGGCGCAAAAGGCCAAGGCCTTCATCGAAACCGGCCATGGCACCGGTACTCTGGTGGAGCCGTCCATGCCTCGGGAATTGAGCGTCGCCGAGATCAAGACGCTGGTCGAACTCTATGCCCAGGCCGCACGCAATGCCCTGAGCGCCGGCTTCGATGGCATTGAAATCCACTCGGCCAATGGCTATCTGGTCAATCAGTTCATCTCGACCCATGCCAACCAGCGCACCGATGAATACGGCGGCTCGCTGCACAACCGCCTGCGCTTCTTGCGCGAAGTGGTGCAAGCCGTCAGCGCCGTGGTCGGGCCCGAACGCGTCGGGGTGCGCTTCACGCCGCTGTTCACCAGCACCGACGAAGACCGGGTGTACATCGGCTTTGTCGAAGAAGATCCGCACCAGACCTACATCGAGGCCATCAAGGTGCTTGAGCAAGCAGGCGTAGGCTACCTCTCGATCGCCGAAGCCGACTGGCCGAATGCGCCGGACCTGCCCGACGCGTTTCGTCGCGAGGTCAGACGCACGTTCAGCGGTCGCATCATCTATGCCGGTTTGTACACTGCGGATCGCGCGGCACGCCTGGTCGAAGCGGGCCTGGCCGACCTGGTTGCGTTCGGTCGTCCCTTCATTGCCAACCCCGACTTGCCTGAGCGCATCGCCAACGGCTGGCCGCTGAACACTCTGGACGCCGCTGGGCTGTATGGCGGCAACGAGCAAGGGTTCACCGACTACCCGCGGTACAGCCCCTCCACATCTGACGTAAAAGAAGAGGTATTGGCATGA	MEHRSLFEPTSLGSITLKNRIVMPPLTRQRSGQPGDIPTALMARYYQQRASAGLIISEGTQIEPRGKGYAWTPGIYSQAQIDGWRTVTDAVHAKGGVIFAQLWHVGRVSHNALQPDNAAPIAPSPIQAQKAKAFIETGHGTGTLVEPSMPRELSVAEIKTLVELYAQAARNALSAGFDGIEIHSANGYLVNQFISTHANQRTDEYGGSLHNRLRFLREVVQAVSAVVGPERVGVRFTPLFTSTDEDRVYIGFVEEDPHQTYIEAIKVLEQAGVGYLSIAEADWPNAPDLPDAFRREVRRTFSGRIIYAGLYTADRAARLVEAGLADLVAFGRPFIANPDLPERIANGWPLNTLDAAGLYGGNEQGFTDYPRYSPSTSDVKEEVLA	PGPT0005930_115	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_TOLULENE|DERIVATE_DEGRADATION	XENOBIOTIC_NITROTOLULENE_DEGRADATION,PGPT0005930-nemA-K10680	NA	NA
D1-36_00704	1470			3-sulfolactaldehyde dehydrogenase	ATGACTGCGTTCAACTTGCAGCAGATCAAAGACGCTGGCTGGCTGAAAGAAGCCAACTATATCGACGGCCTGTGGGTGGCAGCGGATGACGCCAGCCACTTCGCGGTAAACGACCCAGCCACCGAGAGCCAGATCGGCCAGATCCCTTGGAGCGGCGCTGTTGAAACACGCCGCGCCATCGACGCCGCACAGGCAGCGTTCGCATCCTGGTCACTGACCACCGCGGCAGAGCGCGCCATTCTGCTCAATCGCATGGCGCAGTTGGTACGCGACAACCTCGACATCCTCGCCAGCATGCTGACGCTCGAACAAGGCAAGCCGCTGGCCGAAGCGCGCAACGAAATGAAACTGGGCGCCGACTACATTCAGTGGTTTGCCGAAGAGGCGCGGCGCATCAATGGCGAGATCATTCCCTCGCCTTGGAAAGACCGGCAGATCCTGGTCACCCGCGAGCCCGTCGGCGTGGTGGGAGCGATCTCGCCGTGGAACTTCCCCTTCTCCATGCTCTCGCGCAAAGTCGCTCCGGCGCTGGCGGCCGGCTGCACCATCGTCATCAAACCATCCGAATTCACGCCGTTCTCCGGCCTGCTCTATGGTGTGTTGGCGCAGCAAGCGGGCATCCCCGCCGGTGTGGTCAATGTCGTCACAGGCGACGGTGCCGCGGTGGGCGGCGAACTGTCCGCCAACCCGTTGGTGCGCAAGATCACCTTCACCGGTTCCACCCGCGTCGGCAAGCTGCTGTACAAGCAATCCGCCGACAGCATGAAGAAATTGTCGATGGAGTTGGGCGGCAACGCACCGACCATCATTTTCGACGACGCCGACCTCGACCTGGCCGTCGAAAATGCCATCGCCGGAAAATTTCGCAACAGTGGCCAGACCTGCGTATGCACCAACCGCTTCTATGTCCAGGACGGTATCTATGACGAGTTCGCTAAGCGCCTGACGGCGCGGGTCCGGCAGCTGAAAATCGGCAACGGCTTCGATGAGGGCGTCGAGCAAGGCCCGCTGATCAACCAGGCCGCCGTCAGCAAGGTCGATGCGCACGTGCGAGACGCCCAAGCCAAAGGCGGTCGCGTATTGCTGGGTGGTAAACGCCATGCGCTCGGCGCGACGTTTTATGAGCCCACCGTGATCGCTGACGCCACAGCCGACATGCTCATCGCCCAGGAAGAAACCTTCGGCCCCGTGGCCGCGCTGTTCCGCTTCAACACCGAACAAGAAGGCATCGACGCCGCCAACGCCTCCGAGTTCGGCCTGGCCGCGTACTTCTTCACCCGCGACCTGGCGCGCACCTTCCGCGTCTCCCGCGCCTTGCAGAGCGGCATGATCGGCATCAACGCCGGGGTCATCACCACCGTCGAAGCGCCCTTCGGCGGGGTCAAGGATAGCGGTATCGGCCGCGAGGGCTCGACTCATGGCCTGGATGAATACCTCAACCTCAAATACCTCAGCCTCGGTGGTTTGTAA	MTAFNLQQIKDAGWLKEANYIDGLWVAADDASHFAVNDPATESQIGQIPWSGAVETRRAIDAAQAAFASWSLTTAAERAILLNRMAQLVRDNLDILASMLTLEQGKPLAEARNEMKLGADYIQWFAEEARRINGEIIPSPWKDRQILVTREPVGVVGAISPWNFPFSMLSRKVAPALAAGCTIVIKPSEFTPFSGLLYGVLAQQAGIPAGVVNVVTGDGAAVGGELSANPLVRKITFTGSTRVGKLLYKQSADSMKKLSMELGGNAPTIIFDDADLDLAVENAIAGKFRNSGQTCVCTNRFYVQDGIYDEFAKRLTARVRQLKIGNGFDEGVEQGPLINQAAVSKVDAHVRDAQAKGGRVLLGGKRHALGATFYEPTVIADATADMLIAQEETFGPVAALFRFNTEQEGIDAANASEFGLAAYFFTRDLARTFRVSRALQSGMIGINAGVITTVEAPFGGVKDSGIGREGSTHGLDEYLNLKYLSLGGL	PGPT0001580_2367	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_TRIGONELLINE_USAGE	PLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135	NA	NA
D1-36_00705	684			hypothetical protein	ATGAAAATTCTCATGGTTCTGACCTCACACGACACCCTTGGCGATACCGGCCGCAAAACCGGTTTTTGGCTCGAAGAGCTGGCAGCGCCTTATTACACCTTCCTGGGCGCCAACGCCGAGATCGTCCTGGCGTCCCCAGCGGGTGGCCAGCCGCCGCTCGATCCGAAGAGCAACGAGCCGTCCTTCCAGACTGACCTGACCCGCCGCTTCGAAACCGATGCCGTAGCCACCGCGCTGCTCGCCAACACCGTGCGCCTGGACAGCGTATCGCCTGCCGATTTCGATGCGGTTTTCTACCCAGGCGGCCACGGCCCGCTGTGGGATCTGGCAGAAGACCCGGTCTCGATCCAGTTGATCGAGTCCTTCATCGCCGCCGGCAAGCCCGCTGCCTTGGTGTGCCATGCCCCGGGCGTCCTGCGCCATGTAAAGAAGGCTGACGGCACACCCTTGGTCGAAGGCAAGCAAGTTGCCGGTTTCACCAATTCCGAAGAAGAGGCAGTCGGCCTGACCCACGTCGTGCCGTTCCTGGTCGAGGACATGCTCAAGGCCAACGGCGGCCTGTACTCGAAAGGCCCGGACTGGGCCTCCTACGTGGTTCGCGACGGCCTGCTGATCACCGGCCAGAACCCCGGCTCGTCCAGCGAAGCCGCGAAGGTCCTGACAGAGCTGCTGAACAACGCCTGA	MKILMVLTSHDTLGDTGRKTGFWLEELAAPYYTFLGANAEIVLASPAGGQPPLDPKSNEPSFQTDLTRRFETDAVATALLANTVRLDSVSPADFDAVFYPGGHGPLWDLAEDPVSIQLIESFIAAGKPAALVCHAPGVLRHVKKADGTPLVEGKQVAGFTNSEEEAVGLTHVVPFLVEDMLKANGGLYSKGPDWASYVVRDGLLITGQNPGSSSEAAKVLTELLNNA				NA	NA	NA	NA	NA
D1-36_00706	603	nemR		HTH-type transcriptional repressor NemR	ATGAATACTCTAAAGATCCGCGAAACATCCGACGTCCGCCAAGGCATCCTTGATGTGGGCCAAAGAATCATGGCCGCCAAAGGTTATACCGCGGTGGGTCTGAACGAGATCCTGGCGACTGCCGGTGTGCCGAAGGGCTCGTTCTATCACTACTTTGGCTCCAAGGACGCGTTTGGCGAGGCCCTGCTCGAGAACTATTTCGAGACTTATCTCGACGATATCGACCGGACCCTCGCCCAGCCGGGCCTGACGATGGCGCAGCGTCTGCTGGACTATTTCCGCATCTGGCAGGACACCCAGTCCTTTCATGATTGCCAGGGCAAGTGCCTGGCGGTGAAGCTGGGCGTGGAAGTCGCTGACCTTTCCGAGGCCATGCGTGCAGTGCTTAACCGCGGTACGTCAGGAATCATCGATCGCCTGGCGAGTGGGATCGAGTCCGGCTTGGCCGAGGGCTCATTGACCATCAGCGGTACTCCCCACGAGGTTGCGCAGAGCCTCTATCAACTTTGGGTCGGCGCTAGCGTCATGGTGAAGATCACCAAGAGCGCCCAACCCTTCGAGACGGCGATGTCCACGACTCGCCAGCTTCTCAACCTGTCCTGA	MNTLKIRETSDVRQGILDVGQRIMAAKGYTAVGLNEILATAGVPKGSFYHYFGSKDAFGEALLENYFETYLDDIDRTLAQPGLTMAQRLLDYFRIWQDTQSFHDCQGKCLAVKLGVEVADLSEAMRAVLNRGTSGIIDRLASGIESGLAEGSLTISGTPHEVAQSLYQLWVGASVMVKITKSAQPFETAMSTTRQLLNLS				NA	NA	NA	NA	NA
D1-36_00707	828	phnX_1	COG0637	Phosphonoacetaldehyde hydrolase	ATGAACTACAACCAACCGACACAACTGCAAGCGGCCATTCTCGACTGGGCAGGTACCGTCGTTGACTTTGGCTCCTTCGCGCCTACGCAGATCTTTGTCGAAGCGTTCGGCGAGTTCGGGGTCGAGGTGTCCCTTGAAGAGGCACGCGGTCCGATGGGGATGGGCAAGTGGGATCACATCCGAACCCTGTGCGACATGCCCGCGGTTGCCGAGCGCTACCGCGCAAAATTTGGCCGTACGCCTACGGATGCGGACGTCACGGCGATTTATGAGCGCTTCATGCCGCTGCAGATCGACAAGATCGGCCTTCATTCGGCATTGATTCCGGGCGCGCTGGAGGCCATCACGGTGTTGCGTGATAAGGGTTTGAAGATCGGCACCTGTTCGGGCTACCCGGCGGTGGTGATGGAGAAGGTCGTGGAGCTGGCTCGCCGCAACGGTTATGAGCCTGATCACGTCGTGGCCACCGATGAAGTGCCCAATGGCCGCCCTTATCCGGCACAGTCCCTGGCCAACGTCATCGCACTGGGTATCAGTGATGTCGCGGCCTGTGTGAAAGTCGATGACACCTGGCCAGGCATTTTGGAAGGTCGCAGCGCCGGCATGTGGACGGTCGCACTGACCTGCTCGGGCAATGCTCTAGGGATGACCTACGAGCAATACAAGAGCATGCCTGGGGATAAGCTGGATCAGGAGCGCAACCGCATCGGTCGCATGTTCGAGGGTTCGCGCCCGCACTACTTGATCGACACCATCGCCGAGTTGCCGGCAGTGATCGATGACATCAATGCACGCCTGTCGAGAGGCGAAATGCCTCAAAACACCTGA	MNYNQPTQLQAAILDWAGTVVDFGSFAPTQIFVEAFGEFGVEVSLEEARGPMGMGKWDHIRTLCDMPAVAERYRAKFGRTPTDADVTAIYERFMPLQIDKIGLHSALIPGALEAITVLRDKGLKIGTCSGYPAVVMEKVVELARRNGYEPDHVVATDEVPNGRPYPAQSLANVIALGISDVAACVKVDDTWPGILEGRSAGMWTVALTCSGNALGMTYEQYKSMPGDKLDQERNRIGRMFEGSRPHYLIDTIAELPAVIDDINARLSRGEMPQNT	PGPT0002490_141	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-OTHER_ACID_METABOLISM	P-SOLUBILISATION-PHOSPHONATE_DEGRADATION,PGPT0002490-phnX-K05306	NA	NA
D1-36_00708	873	cmpR_1		HTH-type transcriptional activator CmpR	ATGTATCAGTACCACAAATGGCTTCGCTCCTTTCACGCAGTCGCTCGCAATGGCAGCTTCACGCTTGCTGCTGAGTATCTGAGCGTGGGACAGCCGACTGTCAGCGAGCAGGTGAGCGCGTTGGAGAACATGTTCTCCGTCGAGCTCTTCCATCGTCGCGGGCGTTCCATCGAGATGACGGCTGCCGGTCGCCAACTCTATGCGATCACCCAGGGCCTGTTCGGTCAGGAGGATGAAGCCGTGCAATTGCTGCAGAGCTTCCGCCAACGAAAGGCAGGGTTGTTGAGGCTCGGCGCAGTTTCGCCGCCCATCGCCATGAGCCTGACGTATGCGTTGATGCAGCAGTACCCGGATGTGGAGTTGGAAACCTCTTTTTCCTCTGAACGGGAAACACTGGATCGGCTTTACAACTTCGACATCGATGTGGCGATCCTGGCGCTCTCGGAGTTCGATCATCGCCTGCACACACAGTTATATCGGCGTTACCCGATTGTCGGCGTGGTCCGCGAGGATCATCCATGGGCAGGGCTGGAACAGGTTCGGATCGAACAGATTCGCGGCGAGCGAGTGGTTTTGCGCGAGCAGGCTTCACGCACCCGGCAGTTGGTGGAAGAGGCCTGTCATCGAGCCGGCATCGAGCTCGACTGCGCCATGCAGCTCAACAGCCGCGAAGCGATCGTGCATGCCATCGCTCAGGGCATAGGTATCGGTTTCGTCTCGGCGGTGGAATACGCGGAAACGCCCGGTACCCGGCCGGTCACCTTTGTCGATCATCCGTTTCACATCGAATATCACCTGTGCTGCCTGGGCATTCGTCGTAACCGACCAATGATTGTCGAGCTGTTCGAAAACTGCACACCGCCACCGACCTGA	MYQYHKWLRSFHAVARNGSFTLAAEYLSVGQPTVSEQVSALENMFSVELFHRRGRSIEMTAAGRQLYAITQGLFGQEDEAVQLLQSFRQRKAGLLRLGAVSPPIAMSLTYALMQQYPDVELETSFSSERETLDRLYNFDIDVAILALSEFDHRLHTQLYRRYPIVGVVREDHPWAGLEQVRIEQIRGERVVLREQASRTRQLVEEACHRAGIELDCAMQLNSREAIVHAIAQGIGIGFVSAVEYAETPGTRPVTFVDHPFHIEYHLCCLGIRRNRPMIVELFENCTPPPT	PGPT0001160_1334	DIRECT EFFECT	BIO-FERTILIZATION	CARBON_DIOXID_FIXATION	CO2_FIXATION-RuBisCo	CO2_FIXATION-RuBisCo_BIOSYNTHESIS_REGULATION,PGPT0001160-cbbR|cmpR|ndhR-K21703	NA	NA
D1-36_00709	1296	glpT_1	COG2271	Glycerol-3-phosphate transporter	ATGAATCGTGAGCATGCTCTGTCTGGTCTCGCTGTGTCCGCAGCCCCATCCTTTCGCTTGGCTCAGTGGCGAATGCTGCTGGCGGCGATGTTCTGCTACCTGTTTTTCTACACCGGTCGGCAAACGTTCGGCTTCGCAATTCCCGGCATGCAGGCTGAGTTCGGCCTGAGCAAGGAGACCCTGGGCTGGGTTTCTGCGGCGATGCTGTGGGCTTACGCCATCGGCCAAGCTATCAATGGAAACCTGGCGGACAAGTTCGGCGGGCGCCGCATCATGACGCTGGGGGCTGTCCTCTCCTGCGCCGCCAATTGGGTGACCAGCTTCGCCAGCGGCATTGTCAGCCTCATCCTACCGTGGGGCGTCAATGGCTACTTTCAGGCGCTTGGCTGGGCGCCAGGTAGCCGTCTGCTGTCCAATTGGTGGGGAGTGTCGGAGCGCGGCAAGGTATATGGGTTCTACGTGTTCGCGGCAGGTTGTGCCTCGATTCTGTCCTATGTCACATCGGTGGTCGTGCTGGAAGTGTTAGAGCTCGAATGGCGCTGGATTTTCCGTCTGCCAGTGTTGCTCATGCTGGCCGGCGGTATCCTGTTTTACTTCATCGCCCGGGAGCGCCCACAGGACATGGGGTTCGAGCCGCTTACCGACACCGGCGTGGCAAACGCCGATGACAAGGGACAAGAAGCCTCGGATGAAGTCGAGACCTCGGCTCAGCGCTACAAAGCAGTCCTGAAGAATACGCGCCTGATCATCGCCGCCGTTTCTCTCGGGTTTCAGAATGCGGCGCGGTATGGCTTGATCGTCTGGGTGCCGGTGCATTTCCTGGGTGCCGACTGGAAAAGCGGCGACAGCTGGATCGATCCGAAATGGATCACCGTCGCGCTGCCGGTTGGCATGGCGGTAGGTGCGCTCAGCAACGGTTGGGTGTCCGACAAGTTATTCGGCTCCAAGCGCTACCTGGCCATCATGTTGTACATGTTCCTCGGCGCAGCCACCAGCCTATGGATGTGGAGCCTGCCGGCACATAGCACCGTCGGCTTGATCGCCCTGTTCCTCTGCGGTTTCTTCGTCTACGGCCCCGCCTCCAGCTTCTGGGCGCTGTGCCCCGATCTGGTTGGCGCCAAGCGCGCAGGCACCGCCACCGGCATCATGAATTTCTCCTCTTACCTGTTCGCCGGCCTGGCTGAGCCATTGATCGGCAGCATGCTGGACAGCACGGGCAACACGTCATTGATATTCGTAGTCGTCGCTTCTGCCTGTATCTGCAGTGCAATGGTCGCATTGTTCGTACGGCGCTGA	MNREHALSGLAVSAAPSFRLAQWRMLLAAMFCYLFFYTGRQTFGFAIPGMQAEFGLSKETLGWVSAAMLWAYAIGQAINGNLADKFGGRRIMTLGAVLSCAANWVTSFASGIVSLILPWGVNGYFQALGWAPGSRLLSNWWGVSERGKVYGFYVFAAGCASILSYVTSVVVLEVLELEWRWIFRLPVLLMLAGGILFYFIARERPQDMGFEPLTDTGVANADDKGQEASDEVETSAQRYKAVLKNTRLIIAAVSLGFQNAARYGLIVWVPVHFLGADWKSGDSWIDPKWITVALPVGMAVGALSNGWVSDKLFGSKRYLAIMLYMFLGAATSLWMWSLPAHSTVGLIALFLCGFFVYGPASSFWALCPDLVGAKRAGTATGIMNFSSYLFAGLAEPLIGSMLDSTGNTSLIFVVVASACICSAMVALFVRR	PGPT0016821_868	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULATION_GLYCEROL_TRANSPORT,PGPT0016821-glpT-K02445	NA	NA
D1-36_00710	1092			hypothetical protein	ATGCCTGCCCACTTCCATAATCCGGTCGCCACTTACTTTGGCGGCGGTAGCTTGAGCCAGATCACTGCACTCACCGAGGGCCAGACGGTCGCCTTGGTGACTTTCCCGGAAGCCCGTGGCCTGGGCGTGATCGATAAGATCCAGGCGCTGCTGGGTGAGCGTCTTATTCATATCGTGGAAGATGTGCAGCCCAACCCGGATGTCTCGCAGTTGAGCGCCACTTACGAGCGCTTCTGGGCACAGGCCGGAGGTTGTGAAACCGTGTTGGCGGTGGGAGGGGGCAGTGCGATCGATACCGCCAAGGCTCTGATCGTCGGTACGGCATCAGGGCGTTTCGATGAACTGCTGACTTTGCTGGGCAGTGGCAAGCCCTTTACGCCGGCGCGCTGCAAGGCGCTCATTGCAGCACCTACAACAGCCGGTACTGGCAGCGAAGTGACGCCATGGGCAACGATCTGGGATTCAGGCCAGCAAAAGAAGTACTCGCTGCATCTGGAATGTACCTGGCCCAAAGCGGCAATCATTGACCCGGACCTGATGCTCACTGTGCCGGCAGGTGTGACGGTATCCACCGGCCTTGATGCCCTGTCACATGCGCTGGAGTCGATCTGGAACGTCAACGCCAACCCGATCTCCGACACTTTTGCGACCTCTGCCATCGAAGACATCCTGGACTGCCTGCCTCGCTTGCGCCAAGACCTGTCCAGCCGCGAGCTTCGTTCGCGAATGGCGTTGGCAGCCCTGAAAGCGGGCCTGGCATTTTCCAACACCAAGACCGCACTGGCCCATTCCATTTCCTACGAGATGACGCTGCGTCATGGCTTGCCGCACGGCATCGCCTGCTCCTTTACGCTGCCACACGTACTGGGGCTGGCGTGGGGCCGCGACGCCGCTCGGGACCAGACGCTACAGCGTGTCTTTGGAACTGACCTGGCCGAGGCCCAGGAGCGCTTGCGCAGCTTTCTCCATCACCTGGACGTGAAGACCGAGTTCACCGACTACGGGGTGACGGAGGTCGAGGCGCAGGAGATGATCCTTTCTGCCATGCAGGGCGCCCGCGGCAAGAATTTCATCGGCTCGCGGGCTGCCTGA	MPAHFHNPVATYFGGGSLSQITALTEGQTVALVTFPEARGLGVIDKIQALLGERLIHIVEDVQPNPDVSQLSATYERFWAQAGGCETVLAVGGGSAIDTAKALIVGTASGRFDELLTLLGSGKPFTPARCKALIAAPTTAGTGSEVTPWATIWDSGQQKKYSLHLECTWPKAAIIDPDLMLTVPAGVTVSTGLDALSHALESIWNVNANPISDTFATSAIEDILDCLPRLRQDLSSRELRSRMALAALKAGLAFSNTKTALAHSISYEMTLRHGLPHGIACSFTLPHVLGLAWGRDAARDQTLQRVFGTDLAEAQERLRSFLHHLDVKTEFTDYGVTEVEAQEMILSAMQGARGKNFIGSRAA	PGPT0008305_543	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008305-adh1-K19954	NA	NA
D1-36_00711	819			hypothetical protein	ATGCGCACTGAAAATTACCGCTGGATGGTTAAAACGCCGGACAGCCTTCGCGGCTGGGCTTCAACAGCCTCGCTGGTACTGATATTGATGGTCGCTTTGCACTGGAGTGCCAATGGCGCTCAGCTCAGTTGGGGGGAGTTGGCGGCCGGCCTTCCGCAAATCGGCGACTTCCTGTCTCGGTCAGTGCCACCCAACCTGGATATCTTGCCCAAGTTGATAGCGCCGGCTCTGGAGACCTTGCAGATCGCAATATGGGGCACGCTCCTGGGTATCCTCTTCGCCGTGCCGCTGGCCTTTCTCGCTGCACGTAATCTGCAAAGCAACCGCTGGCTGTATCAAGGAACCCGACAAGCGCTCAACGTCATTCGCAGTATCAACGAGCTGATCCTCGCGCTGGTCTTTGTCTCCGCTGTGGGCTTGGGACCCTTTCCCGGCGTACTGGCGCTTGCCGTCCATGGCATTGGCATGCTCGGCAAGTTTTTCGCCGAGAGCATCGAAGAGATTGATCAGGGCCCTCTGGAAGCACTTCGAGCCACGGGCGCGCGACCGCTGCAGGTGATTGTGTTCGGGGTCATACCGCAAGTCATCACAGCCTGGATCGCCGTGATCCTCTATCGCTTCGAGGTCAACCTGCGCTCGGCGACCGTGCTGGGCATGGTCGGTGCTGGTGGTCTCGGATTCGAGCTGGTGAGCAGCATCAAGCTGTTCAAATACCAGGAGACTGCCACCTGCATCATTGTGATCACGGTGATGGTAATCGCCGCCGACATGGTTTCGAACCGCTTGCGAGCCTCGATTCAGCAGGGCGGCAGACACTAG	MRTENYRWMVKTPDSLRGWASTASLVLILMVALHWSANGAQLSWGELAAGLPQIGDFLSRSVPPNLDILPKLIAPALETLQIAIWGTLLGILFAVPLAFLAARNLQSNRWLYQGTRQALNVIRSINELILALVFVSAVGLGPFPGVLALAVHGIGMLGKFFAESIEEIDQGPLEALRATGARPLQVIVFGVIPQVITAWIAVILYRFEVNLRSATVLGMVGAGGLGFELVSSIKLFKYQETATCIIVITVMVIAADMVSNRLRASIQQGGRH	PGPT0002530_1890	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-OTHER_ACID_METABOLISM	P-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002530-phnE-K02042	NA	NA
D1-36_00712	798	glnQ_3		Glutamine transport ATP-binding protein GlnQ	ATGATCAGGGTTCATCAACTCACCAAGCACTACGGGGACAACCCCGTGCTCAGAGGCATCGACCTGCAGATCGGAGCCGGTGAGTTCGTCGTCGTGCTTGGGCAATCAGGTGCTGGAAAATCCACGCTGCTGCGTTGCATGAATCGGCTGGCCCAGGCAGATGGTGGCGAGCTTCACATCGCTGGGGTCGACGCGATGCAGTCACGTGACGAGCGCGCCCTGCGTCGTCAGGTGGCGATGATCTTCCAGCATCACAACGTGGTACCGCGCCTCTCGGTGTTGAAGAACGTACTCACTGGACGCCTGGGATCGCTGTCGACACTGGCCTCGGTACTCCAGCTGTTCAGTCGAGCCGACGTGGAATTAGCGCAACAATGCCTGCGCCGAGTAGAGCTGCTGCACAAAGCTGACGCGCGCACCGACTCGCTGTCGGGTGGGCAAATGCAAAGGGTCGGGATCGCACGCGCACTCGCCCAGCAACCCAAGGTAATTCTCGCTGACGAGCCCGTTGCCAGTCTTGATCCAAAGACGGCGCGGCTGGTCATGCAGTACCTGCGTGATGCCAGTCGCGAGCTCGGCATTACCGTGGTGTGCAACCTGCACCAAGTTGATTTCGCAAGAGAGTTTGGCGACCGAATCATCGGCCTTGCCCATGGTCGCCTCGTTTATGACGGTGACGCGAGCGGTCTCGATCAACCCACGCTAAATCGTATCTATCCAGCGACAGGCGCGGATGACAATGCGACGGACATTGAATGCTCCTCGCCGCTGCGTTACAGCAATAGCTTGGGAGGTTGA	MIRVHQLTKHYGDNPVLRGIDLQIGAGEFVVVLGQSGAGKSTLLRCMNRLAQADGGELHIAGVDAMQSRDERALRRQVAMIFQHHNVVPRLSVLKNVLTGRLGSLSTLASVLQLFSRADVELAQQCLRRVELLHKADARTDSLSGGQMQRVGIARALAQQPKVILADEPVASLDPKTARLVMQYLRDASRELGITVVCNLHQVDFAREFGDRIIGLAHGRLVYDGDASGLDQPTLNRIYPATGADDNATDIECSSPLRYSNSLGG	PGPT0002520_1357	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-OTHER_ACID_METABOLISM	P-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002520-phnC-K02041	NA	NA
D1-36_00713	867	phnD2	COG3221	putative ABC transporter phosphonate/phosphite binding protein PhnD2	ATGAAAACTCTTCGTAAGCTGTTTTGCGCTGCCAGTGTGTCCCTACCGCTGCTGATCAGCAGTGAAGTATCTGCCGAGACGGCGCTGAGGATCGGCCTGATTCCATCCGAAGATTCTCAATCGATGATCGAGAGCAGCCAACAGGTGCTCGACCAGTTGCAGGCGAAGTTGGGCATGCCCGTCAAGCCGTTCGTGGCCACCGACTACAACGGTGTGATCGAGGCGTTGCGCTCCAAGAAGCTGGATGTTGCTTACCTTGGGCCATTTTCCTACGTGCTTGCCAGCCAGGTGGCCGACGTGGAAGCGTTCGCCGTGGCAGTCACTAAAAAAACCGGCAAAAGTGCCTATCGCAGCCTGATCGTGGCCCGCTCCGACAGCGGCCTGAAGTCGCTGGCCGACCTGAAGGGTCATACGTTCGCTTTCGTCGATCCAAGTTCGACGTCCGGTCACCTCTTTCCCAAAGCCGGTATCGAGAAGGCTGGTTATCAGCCGGACAAGCTGTTTTCCCGCGTGATTTTTTCTGGCTCGCACGATGCGAGCATCCTGGCCGTGGCCAACGGCAAGGTGGACGCTGCCGCTGTGGCTGACCGCATTCTGGCTACCGCGACGACGCAGGGCGAAGTCAAACCGGACGAGTTACGCGTCGTCTGGAGCTCATCGGATATTCCCGAATCCCCGATGGTTTGGCGCAAGGATCTGGACCCGGCGCTGAAGCAGAAGCTGGCGGCAGCACTGGCCGAGGTCAAGGACATCCCCTGGGGCGATCAGGGCATGCTCAACGGTTTTCAACCCACCCGCGACGGCGCGTACGACGTGGTCCGAGAGACCGCCAAGGTACTCGATCTCGACCTGAGCAAAATGAAATGA	MKTLRKLFCAASVSLPLLISSEVSAETALRIGLIPSEDSQSMIESSQQVLDQLQAKLGMPVKPFVATDYNGVIEALRSKKLDVAYLGPFSYVLASQVADVEAFAVAVTKKTGKSAYRSLIVARSDSGLKSLADLKGHTFAFVDPSSTSGHLFPKAGIEKAGYQPDKLFSRVIFSGSHDASILAVANGKVDAAAVADRILATATTQGEVKPDELRVVWSSSDIPESPMVWRKDLDPALKQKLAAALAEVKDIPWGDQGMLNGFQPTRDGAYDVVRETAKVLDLDLSKMK	PGPT0002525_2454	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-OTHER_ACID_METABOLISM	P-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002525-phnD-K02044	NA	NA
D1-36_00714	885	cmpR_2		HTH-type transcriptional activator CmpR	ATGTCGAACAGTAAGCTGCGCGCGTTTCTGGCTGTGGCCCGTCAGGGAAGCTTCAGCGCGGGGGCACGATCACTTGGGCTTAGCCAACCGACGGTGACCACGCAGATACAGGCGTTGGAGCGCTTGCATAACCTGGAGTTGTTCCACCGCCGTGGGCGCCGCGCCGAGCTGTCGACGGTTGGCCGCCAACTGCTGCCTATCGCCCAGCAGTTGATGGCCCTTGAAGCCGAAGCGCATGGCTTATTGCGTGACTCCGGGACAATGGTCAGGGGACAGTTGCGACTGGGGGCGGTTGGCCCGTTTCACGTCATCGAAATGGTCGATGCTTATCGTCGCGAGTTCCCCCAGGTAGAGCTGTCGATCCGGGTGGGCAACTCGGCCTCGGTGTTGGCGGACTTGGAAAACTACGTGACAGACATCGGAGTCCTCGCAGGCCTGCATGAAGATCCGTCGTTCCACTCCACGCTCTATGCCCGGCACCGGGTAATCGTGTTTGCTCATCACCAGCATCCGCTGGCACAGCGCGATGTCGTACGCCTGGAAGAACTACAGGGGCAGCCGATGTTACGCCGCGAGCAAGGCTCGACGACACGCCTGGCATTTGAGCGGGCGCTGGCCGAGCGGGACGTGACGCCGCGTATGGTCATGGAGATCGGTAGTCGAGAGGCACTACGGGAAGCAGTCGCCAGGGGCATCGGCCTGGGTGTTGTGTCCGAGGCCGAGTACATCCCAGGTGCAAACCTCAAAGCCATTCGTATCGAAGGGGATCCGGTGCATACAGAGACGTACCTTTACTGCCTCGCCGAACGCCGCAGCCAGGTCATCGAGACGTTCCTGGCCTGTGCAAACCAGGCCCGGCTCAAACGTCCTGACGGAGCTCAGTGA	MSNSKLRAFLAVARQGSFSAGARSLGLSQPTVTTQIQALERLHNLELFHRRGRRAELSTVGRQLLPIAQQLMALEAEAHGLLRDSGTMVRGQLRLGAVGPFHVIEMVDAYRREFPQVELSIRVGNSASVLADLENYVTDIGVLAGLHEDPSFHSTLYARHRVIVFAHHQHPLAQRDVVRLEELQGQPMLRREQGSTTRLAFERALAERDVTPRMVMEIGSREALREAVARGIGLGVVSEAEYIPGANLKAIRIEGDPVHTETYLYCLAERRSQVIETFLACANQARLKRPDGAQ	PGPT0001160_1509	DIRECT EFFECT	BIO-FERTILIZATION	CARBON_DIOXID_FIXATION	CO2_FIXATION-RuBisCo	CO2_FIXATION-RuBisCo_BIOSYNTHESIS_REGULATION,PGPT0001160-cbbR|cmpR|ndhR-K21703	NA	NA
D1-36_00715	3018			hypothetical protein	ATGGTAAGCAAGACCAACGAACAGGCGCTCGAAGCTAGCATCGAGAAATACTTGACCGGCACCTGTCTAGAAGAGCAGGCGGTGGTCCGTGACAGCGCGGCGCCCGTGCTGGCGGGCTTCAACCATGGGTATCAACTGGGCCGCGCTCAGGATTTCGATGCCCGCTATGCCGTGGATCGCTGTTGCTTGTGGCAATTTCTTGAGGCCAGCCAGGGCGATGATTTGGAACGCCTCAAGCAGCGCTACGATGATTGGGATTTGCGCATCCTCGAACGCTTCGACCGGCTCGCGAAGAAGTACGGTGCGCTGCACCTTCTCAAGCGCGGCCTGGCTATCGACGATATGCACTTCAACCTGATGTACCCCGCGCCGCTTGCCAGCAGTTCGGAGCGAGTCAAACAGCAGTTTGCGGCGAATATCTTTAGCAGCACCCGCCAGGTGCGTTACTCCCTGAGTAATCCACTGGAAGAGATCGACCTGGTACTGTTCATCAATGGCTTGCCCTTCGCCACGCTGGAGCTAAAGAACCCCTGGACGGGCCAGAATGCCCGTTATCACGGGCAAAAGCAGTATAAGCAGGACCGCGACACGGGCCAGCCGCTGCTGCAATTCGGCCGCTGCCTAGTGCACATGACGGTAGACACCGACGAGGTCTACATGACCACCAAGTTGGCCGGTGTCACGACCTTCTTCCTGCCATTCAACAAGGGCCATAACCACGGGGCTGGCAATCCGCCAAACCCCGCCGGGCACAAGAGTTCCTACCTGTGGCAGGAGATTTTCAGCCGCGAAAGTGTGGCCAACATCATCCAGCACTTTGTGCGCCTGGACGGCAGCAGCAAGATGCCACTGGCCAAGCGTACGCTGTTCTTCCCGCGCTACCACCAACTGGATGTGGTGCGCCGCCTAGTGACGCATGCCAGCCAGCATGGTGTGGGTCAGCGCTACCTGATCCAGCACTCGGCCGGCTCGGGCAAATCGAACTCCATCACCTGGGCGGCCTATCAGTTGATAGAAACCTATCCGGCTTCGCTGGAGATTTTCGGCGCGCGCGCTCTAGATGTACCGCTGTTCGACTCGGTGATTGTGGTGACCGACCGCCGCCTGCTGGACAAGCAATTGCGCGAGAACCTACGCGAGTTCTCTGAGGTGAAAAACATCATCGCTCCGGCGCTGAAGTCCTCTGACCTCCAGCGGGCGCTGGAGCAGGGAAAAAAAATCATCATTACCACCATCCAGAAATTCCCCGTGATCGTGGATGGCATCGACGATATGGCCGGCAAACGCTTTGCCGTGATCATCGACGAGGCACACAGCTCGCAGGACGGTAGCAGTCATGGCACGATGAACAAGGTGATGGGCGGCGACGAGCAAGAAGACATTCAGGAGAAGATCCTCAGCGCCATCAAGAACAGCAAGATGCGCGGCAATGCCTCGTACTTTGCCTTCACCGCCACGCCGAAGAACAGCACGCTAGAGAAGTTCGGCGAGCAGCAGGCCGATGGCCGCTTCGCGCCCTTCCACCTGTACTCGATGAAGCAGGCCATTGAAGAGGGCTTTATCCTCGATGTGCTGGCCAACTACACCACGTACCGCAGCTACTACGAAATTCAGAAGTCCATCGAGGACAATCCGCTGTTTGACACGCTGAAAGCACAGAAGAAGCTACGCGCCTATGTCGAACGCGACCAGCAGACCATCGACGTTAAGGCCGAGGTGATGCTAGAGCATTTTATTGAGCAGGTGGTCACGCCGAAAAAGCTTAAGGGCCAGGCTAAGGGCATGGTCATAACCCAAAACATCGAAGCCGCCATCCGTTATCACAAGGCCATCAGCCGCTTGCTGGCAGCGCGCGGCAACCCGTTCAAGGCGCTAATTGCCTTCTCCGGCGAAAAATTGGTTGATGGTATCGAGTACACCGAAGCCGGCATCAACGGATTCCCCGAAGCGGATACGCGAGACAAATTCGACACCGACGAATACCGATTGCTGGTGGTGGCCAACAAGTATCTGACAGGCTTCGATCAGCCTAAGCTGTGTGCCATGTACGTGGACAAGAAGCTGCAGTACGTACTCGCAGTGCAAGCGCTGTCGCGCCTTAATCGTGCCGCGCCGAAGTGGGGCAAGAAGACCGAAGACCTGTTCGTTCTGGATTTCTTCAACCAGGTGGAGGACATCAAAGCCTCCTTCGACCCGTTCTACACGGCTACCAGTCTGTCCGGAGCAACGGATATCAATGTGTTGCACGAACTCAAGGACCAGCTGGACGAGGTCGGCGTCTACGAGTGGCCGGAAGTAGAGGCATTTGCCGCGCAGTATTTCGACAACGTCGATGCTGAAAAGCTGGCCGTGCTGATAGATATCGCCGCTGAACGTTTCGACGTAGAACTAGAGCTAGAGGATGAGGACAAGGTCGATTTCAAGATCAAGGCCAAGCAGTTCGTGAAGATCTACGGCCAGATGGCCTCGATCATGCCGTATGAGATTGTGGCCTGGGAAAAGCTGTTCTGGTTCCTCAAGTTCCTGATCCCGAAACTCAAAGTGCAGGACAAAGACGCCGACGAAATCGATGCTCTGCTTAACTCGGTTGACCTCGCGTCCTATGGGCTGGAACGGGTCAAGTTGAACCACAGCATTGCGCTGGATGACACGGAAACCGAGCTGGATCCAGCCAACCCAAATCCGCGTGGGGTACATGGTGTTGAGCAGGAAAAAGACCTGCTTGACCAAATCATCCAGAGCTTTAATGAGCGTTGGTTCCAAGGCTGGGGCGTGACCACGGAAGAAAAGCGCGTGAAGTTCCTGAGTATTCTAAAGGGCATTCAGGAACATCCGGACTTTGAGCCAAAGTACCAAAAGAGCCAGGACGAAGACCATCGTGCACTGGCGTTCGAAAAGATTTTTGAAGAAGTAATGCTGATACGCCGCCGCCAGGACCTAGAGCTTTACCGGCTGGTAGCCAGTGATGAAGCGCTCAAGTCTTCATTGCAGCAGAGCATGAGGGGCATGCTGGGCTGA	MVSKTNEQALEASIEKYLTGTCLEEQAVVRDSAAPVLAGFNHGYQLGRAQDFDARYAVDRCCLWQFLEASQGDDLERLKQRYDDWDLRILERFDRLAKKYGALHLLKRGLAIDDMHFNLMYPAPLASSSERVKQQFAANIFSSTRQVRYSLSNPLEEIDLVLFINGLPFATLELKNPWTGQNARYHGQKQYKQDRDTGQPLLQFGRCLVHMTVDTDEVYMTTKLAGVTTFFLPFNKGHNHGAGNPPNPAGHKSSYLWQEIFSRESVANIIQHFVRLDGSSKMPLAKRTLFFPRYHQLDVVRRLVTHASQHGVGQRYLIQHSAGSGKSNSITWAAYQLIETYPASLEIFGARALDVPLFDSVIVVTDRRLLDKQLRENLREFSEVKNIIAPALKSSDLQRALEQGKKIIITTIQKFPVIVDGIDDMAGKRFAVIIDEAHSSQDGSSHGTMNKVMGGDEQEDIQEKILSAIKNSKMRGNASYFAFTATPKNSTLEKFGEQQADGRFAPFHLYSMKQAIEEGFILDVLANYTTYRSYYEIQKSIEDNPLFDTLKAQKKLRAYVERDQQTIDVKAEVMLEHFIEQVVTPKKLKGQAKGMVITQNIEAAIRYHKAISRLLAARGNPFKALIAFSGEKLVDGIEYTEAGINGFPEADTRDKFDTDEYRLLVVANKYLTGFDQPKLCAMYVDKKLQYVLAVQALSRLNRAAPKWGKKTEDLFVLDFFNQVEDIKASFDPFYTATSLSGATDINVLHELKDQLDEVGVYEWPEVEAFAAQYFDNVDAEKLAVLIDIAAERFDVELELEDEDKVDFKIKAKQFVKIYGQMASIMPYEIVAWEKLFWFLKFLIPKLKVQDKDADEIDALLNSVDLASYGLERVKLNHSIALDDTETELDPANPNPRGVHGVEQEKDLLDQIIQSFNERWFQGWGVTTEEKRVKFLSILKGIQEHPDFEPKYQKSQDEDHRALAFEKIFEEVMLIRRRQDLELYRLVASDEALKSSLQQSMRGMLG	PGPT0027170_3148	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
D1-36_00716	225			hypothetical protein	ATGGATGCCCAGCGGCAACCGCAGCGCCTGTTGGTAGGCAGTGATGAGAGCGAGTTGGTGGAGCTCAAGGAGGCTAAGTACGGCTATGACATCACTAAGCTCCGTAAATACTTCTCTGCCCTGAGTAACGAGGCCAACCAGAGGGACGTGAATATTGCCTGGCTGGTTTCCGACGTTAATGATCGCCAACAGGTTGTGGTTACGCGCTTTCACGAGCAGTGGTAA	MDAQRQPQRLLVGSDESELVELKEAKYGYDITKLRKYFSALSNEANQRDVNIAWLVSDVNDRQQVVVTRFHEQW				NA	NA	NA	NA	NA
D1-36_00717	1338			hypothetical protein	ATGGTTGAGATCCCCCTAATTTTTAGCGAGTACCATTCGGTAGGGCCCACTGAGGTCAATTATCTACCGAGCCTGCCAACCCATTGGAATGTAGAAAAAGGTAAGTGGCTATTCAAGAAGGAGAACAGGCCCGTCCAGCAAAAAGACGAAGTTGTAACTTGCTTTCGTGATGGGGAAGTGACCCTACGGCGCAACAGAAGAACGGAAGGGTTTACCAACGCTCTGCTAGAACATGGTTATCAGGGAATTAGAAAAAATGACCTGGTTATTCATGCCATGGATGCGTTCGCTGGTGCCATCGGCGTTTCTGACTCTGACGGTAAGTCATCGCCGGTCTATGCCGCGTGCACCCCGATAAACCCCAAGCGAGTGAATCCTTACTTTTATGCATACTTCATGCGGGACTTGGCACTATCCGGCTATCTGACCTCTCTTGCTAAAGGTATTCGAGAGCGCTCGACCGATTTCAGATTTAAAGATTTTTCTGAATTGTTATTGCCCGTTCCTCCGTTCGAAGAGCAGTCTCTGATTGCTTCATTTCTCGATAAGAAACTGACGCAAATCGATAGGGCAATTCGGGTCAAAGAACGCCAGATCGATCGTCTTAAAGAGCGCAAACAGATACTGATCCAGCAGGTCGTAACCCGCGGCCTTGATTCGCACGCCCCCATGCAGGATAGCGGCCTCGAATGGATTGGCGAAATTCCGGCGCACTGGAGCATGATGGCCAACCGTGCATTATTCCGCGAGCGGGTGGAGCCCGGGCGAGAGGATTTACCTTTGTTGTCGGTTTCCATCCATTCTGGCGTATCCGAAGAAGAAATCTCCGAAGAAGAGAACATTCGCGGTCGTGTAAAGATTGAAGATAAATCCAAATACATCTGCGTGCGCCCAGGCGATATTGCCTTCAATATGATGCGTGCCTGGCAAGGGGCCATTGGTGCGGTGCGAGTAGAGGGCATGGTCAGCCCGGCTTACACTATTGCGATACCCCGTCCCAGCCTAGATGCTCGATACTTTGAGTATCAGTACCGTACCCCCGGGTTTATCCAACAGATGGATCGCTATTCCAAGGGCATTACGGACTTCCGCAAACGGCTCTACTGGGATGGCTTCAAACAACTGATAACCCTTGTCCCTCCGATTGATGAACAACAATCCATCATTGAGTATATCGAGCAGGCCATGCAAAAGCAGAACGCTGCCGTAGCACTGCTAGAGCAACAAATCAGCAAACTCAAAGAATACAAGGCCATCCTGATCAATACCGCCATTACCGGCAAGATCAAGGTGCCTGGTGTGGTGGAGCCGGTTATACCGGATATAGAGGTGGCCTGA	MVEIPLIFSEYHSVGPTEVNYLPSLPTHWNVEKGKWLFKKENRPVQQKDEVVTCFRDGEVTLRRNRRTEGFTNALLEHGYQGIRKNDLVIHAMDAFAGAIGVSDSDGKSSPVYAACTPINPKRVNPYFYAYFMRDLALSGYLTSLAKGIRERSTDFRFKDFSELLLPVPPFEEQSLIASFLDKKLTQIDRAIRVKERQIDRLKERKQILIQQVVTRGLDSHAPMQDSGLEWIGEIPAHWSMMANRALFRERVEPGREDLPLLSVSIHSGVSEEEISEEENIRGRVKIEDKSKYICVRPGDIAFNMMRAWQGAIGAVRVEGMVSPAYTIAIPRPSLDARYFEYQYRTPGFIQQMDRYSKGITDFRKRLYWDGFKQLITLVPPIDEQQSIIEYIEQAMQKQNAAVALLEQQISKLKEYKAILINTAITGKIKVPGVVEPVIPDIEVA	PGPT0027175_1770	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
D1-36_00718	2484			hypothetical protein	ATGCGCTCCTTAGCTAGCACATGGGTGCGGTACAGCCACCCTAGCAGCGCTGCCATTCAGCGCTTTGATTTGGAGTATCTGCAGTTGAACCACGCGGTCCACAACAAACTGGTTTCATTTATCTGGTCGATCGCCGACGACTGCCTGCGCGACGTGTATGTACGCGGAAAATACCGTGACGTCATCCTGCCCATGGTAGTGCTGCGCCGGCTCGATGCCCTGCTAGAGACCAGCAAGGCCAAGGTGATGGAAGAGCTGGCCTTTCAGCAACGTGAAATGAGCCAGACCGAACTGGACGACAGCGCCCTGCGTGCCGCTTCTGGCTATGTGTTCTACAACACCAGCAAGTGGACGCTAAGCCAGCTGCAGAAGACCGCCACCAACAACCAGCAGATCCTCCTGAGCAACGTTGAGGAATACCTCGACGGCTTTAGCGACAACGTCAAAGACATCATCCGGCGCTTCAACCTCAAGTCTCAGATGCGTCACATGGCCAGCAAAGACGTGCTGCTTGATGTACTGGAAAAATTCACCTCGCCTACCATCAACCTCACCCCGCAAGACAGCGAAGATCCACAAGGCAACCGCCTGCCCGCCCTGAGCAATCTGGGTATGGGCTATGTGTTCGAAGAGCTGATCCGCAAGTTCAACGAAGAGAATAACGAGGAAGCCGGCGAGCACTTCACACCGCGCGAAGTGATCGAGCTGATGACCCACCTGGTTTTCGACCCAATCAAGGATCGCCTGCCCACAGTGATGACCATCTACGACCCGGCCTGCGGCAGCGGCGGCATGCTAACCGAGTCGCAGAATTTTATTGAAGAAAAATACCCGGACTCGACTATCAAGCGCGACATCCACCTCTATGGCAAGGAGATCAACGACGAGACCTATGCCATTTGCAAGTCGGACATGATGATCAAGGGCAACAACCCTGCCCACATCCGCCCCGGCTCCACCCTCTCGGTGGACGAATTCGCCGGCAGCCACTTCGACTTCATGCTGTCCAACCCGCCCTACGGTAAAAGTTGGGCCAGCGAGCAGAAGTTCATCAAAGACGGCGGCGACGTGATCGACCCGCGCTTCAAGGTCAGCCTCGCGGACTATTGGGGAAACGCCGAGTTGCAGGACGCCACCCCGCGCTCCAGCGACGGCCAGTTGCTGTTTCTGATGGAAATGGTCAACAAAATGAAAGCACCCGGCGACAGCGGCCTCGGCTCGCGCATCGCCTCGGTGCATAACGGCTCCAGCCTTTTTACCGGCGACGCCGGCGGTGGCGAGAGCAATATCCGCCGCCACCTGATCGAAAACGACCTGCTCGATGCCATCATCCAGTTGCCCAACAACCTGTTCTACAACACCGGCATCACCACCTATATCTGGCTGCTCTCCAGCAACAAGCCGGCGCAGCGCCGAGGCAAGGTGCAACTGATCGACGCCAGCCTGCTGTACCGCAAACTGCGCAAAAACCTCGGCAACAAAAACTGTGAATTTGCCCCCGAGCATATCGAGTGGATCACCCAAACCTACCTCGACCTGGCCAGCTTCGACCGCTCGGCCGGTGGCGACGGCATTGCCGCGCAGGTGTTTGATAACCGCGACTTCGGCTACCACAAGGTCAGCATCGAACGGCCAGACCGGCGCAAGGCGCAGTTCAGCGCCGAGCGCATCGAAACCCTGCGTTTCGACAAGGCCCTGCGCGAACCCATGCAGTGGATTTACCAAGAGTGGGGCGAGGCGGTGTACCAGGACGCCACCTTGGCCACCCATGAAAAAGCCATCCTCGCCTTGTGTGAAGAACAAGGCCTGGAGCTCAACGCCAAACAACGCAAAAAGCTGCTGAGCCTGGAAACCTGGGCCAAGCAGTCCCTGCTGGTCACGGTGGCCAACTACCTGATGCAAGCCATCGGCAGCGAGGAATATGACAACTTCAACCTGTTCGCCAAACTGGTGGACAAGGCGCTTAAACAACTGAGCAAAGAGGCCGGCATTAAGCTCGGTGCCAGCGATCGCAATCAGGTGCTCAATGCAGTGAGCTGGTACGACGACAACGCCGCCAAGGTCATCCGCAAGGTGGAGAAATTCGACCGTGCCGAGTTGGCCACCCTGCTGAAGCGGCTGGGTTGCCGCGAGGCCGACCTGGCCGATTTCGGCTACTACCCGAGCGACAAGGCCGGCGAATTTATCACCTACGAATCCAACAGCGACTTGCGCGACAGTGAAAGCATCCCACTGGCCGACACCATCCACCGCTTCTTCAAGGCCGAAGTGCAACCCCATTTGGAAGAAGCCTGGATCAATTTGGAGTCGGTAAAGATAGGCTACGAGATCAGCTTCAACAAATATTTTTACAAACATCAGCCGCTGCGCAGCATGGATGAGGTTGCGCGGGAGATTGTCGCGTTGGAGCAGCAGGCGGAGGGGTTGATTGCGGAGATTCTGGGGTTGGATGTGAAGGATGTGTCGGGAGTGGCAAATGGTTGA	MRSLASTWVRYSHPSSAAIQRFDLEYLQLNHAVHNKLVSFIWSIADDCLRDVYVRGKYRDVILPMVVLRRLDALLETSKAKVMEELAFQQREMSQTELDDSALRAASGYVFYNTSKWTLSQLQKTATNNQQILLSNVEEYLDGFSDNVKDIIRRFNLKSQMRHMASKDVLLDVLEKFTSPTINLTPQDSEDPQGNRLPALSNLGMGYVFEELIRKFNEENNEEAGEHFTPREVIELMTHLVFDPIKDRLPTVMTIYDPACGSGGMLTESQNFIEEKYPDSTIKRDIHLYGKEINDETYAICKSDMMIKGNNPAHIRPGSTLSVDEFAGSHFDFMLSNPPYGKSWASEQKFIKDGGDVIDPRFKVSLADYWGNAELQDATPRSSDGQLLFLMEMVNKMKAPGDSGLGSRIASVHNGSSLFTGDAGGGESNIRRHLIENDLLDAIIQLPNNLFYNTGITTYIWLLSSNKPAQRRGKVQLIDASLLYRKLRKNLGNKNCEFAPEHIEWITQTYLDLASFDRSAGGDGIAAQVFDNRDFGYHKVSIERPDRRKAQFSAERIETLRFDKALREPMQWIYQEWGEAVYQDATLATHEKAILALCEEQGLELNAKQRKKLLSLETWAKQSLLVTVANYLMQAIGSEEYDNFNLFAKLVDKALKQLSKEAGIKLGASDRNQVLNAVSWYDDNAAKVIRKVEKFDRAELATLLKRLGCREADLADFGYYPSDKAGEFITYESNSDLRDSESIPLADTIHRFFKAEVQPHLEEAWINLESVKIGYEISFNKYFYKHQPLRSMDEVAREIVALEQQAEGLIAEILGLDVKDVSGVANG	PGPT0027180_638	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
D1-36_00719	276			hypothetical protein	ATGAGTCAGCCATTCGACATGGATCTGTTCTTAGATGGGGTGCTGAGGGGTTCGTACTCAACCCGGCAGCGCCACTTACGGCAAGCAAAGCTCATCCAAGCTGAGTTATCTAAACGCTGGCAGTTGGAAACACCTTGGGCTTGGAAGAGAAAGCACGTTGCGTGGTTTCTCGATCATCGCCTAGCCGAGCGCAGTCAGGCAACGCGGTACTACTACTTGCTGACAGTGCAACTGCTCACTCGTCGATTAGAAAAATCTTGGGTATTTCACAGTTAG	MSQPFDMDLFLDGVLRGSYSTRQRHLRQAKLIQAELSKRWQLETPWAWKRKHVAWFLDHRLAERSQATRYYYLLTVQLLTRRLEKSWVFHS				NA	NA	NA	NA	NA
D1-36_00720	981			hypothetical protein	ATGGCATTGGTGGGTAGACGCGAGGGCCGTAATTTCGGCTACGGCAGGCAATTGAGCTACGCAGGTCCGCAGGCGCTGAAAGATATGTTCGGCGGAGGCCACTACGGCACGGTCAAGGCACACTGTGATCGGTGGCGGGTATTCGTCAAATGGTGCCGCTCCGAACAAGGGCCCGGTATCAACGATGCGCGGCAGATTGATCGGAAGGTACTGGCGGACTATGCGGCGTATCTGCGCGTCGTGGTTAGGCGCGGCGATCTCGCCGTCAGCACCGCGCAAAACCGACTATCCAGCGTTAACAGGACCATGGCAGCGCTTCGCGGTGATCAGTATGTGAAATTGCCAAGTCCAAGTAAGGCGCTGGGTATGCAGCGCACCGGGGTTCGCCACTCGGTTCCCCAAGGCCAAGACCGAGAACAGATTAAGCAGATCGTCGATGCGCTTTGCCGCCACCATCAGCTACGAGCCGCTGCGATTGTTTTGTTGGCGCGAGCCACCGGCATGCGGTTGCGTGAGGCCATTTTGGCTGACCTGCCAAGGCTTAACCGTGAGGCCAACGACCTAGGCAGGATTAATATTCAGGACGGCACCAAGGGCGGCCGCGCGGGGGCTTCGGCGCCACGCTGGATCGCGGTGGACGACCATGTTCGAGGTGCACTTGAGTTTGCAAGGCAGGTGTCGCCTGCGGGTAGCCGCAACCTGATTGAGCCACACGAAAGCTATCTAAATCTTCTGCAACAAATCACCCGCCCTGCACGGGACATCCTGCATGCGCACAACCTCAAATGCTTCCATGAACTCCGAGCGGCGTATGCCTGCGATCGCTATGAGCAGATCACTCAGCACCGCGCGCCAATAAACGGCGGTCAATGTTGCCAAGTCGATAGAAGACTTGATCGGGAGGCCCGGAGGCAAATCAGCTATGAGCTTGGGCACGGTCGGATCGATGTGGTCGCTGCTTACATTGGAGGGAGGCAATGA	MALVGRREGRNFGYGRQLSYAGPQALKDMFGGGHYGTVKAHCDRWRVFVKWCRSEQGPGINDARQIDRKVLADYAAYLRVVVRRGDLAVSTAQNRLSSVNRTMAALRGDQYVKLPSPSKALGMQRTGVRHSVPQGQDREQIKQIVDALCRHHQLRAAAIVLLARATGMRLREAILADLPRLNREANDLGRINIQDGTKGGRAGASAPRWIAVDDHVRGALEFARQVSPAGSRNLIEPHESYLNLLQQITRPARDILHAHNLKCFHELRAAYACDRYEQITQHRAPINGGQCCQVDRRLDREARRQISYELGHGRIDVVAAYIGGRQ				NA	NA	NA	NA	NA
D1-36_00722	1257	intA_1	COG0582	Prophage integrase IntA	ATGCCTGCTCAAAACCTCCGCCTCTCCGATCGACAGCTCAAGGGAGTCAAACCGGCGTCCAAGGATTACGTCCTTACTGACGGTGACGGTTTGCAGCTCCGCGTACGCAGCAACGGCTCGTTGCTGTGGAATTTCAACTACCGCGAACCGGTGACCAAGAAGCGCATCAACATCGGCTTCGGGACCTACCCCGAACTGTCATTGGCAAACGCACGAAAGATGGCAGTCGATGCGCGTGAGCTGCTCGCTCAGGGCATCGATCCAAAGGTGCAGCGCAATACGTTGAATGAAGCCAAGCGCGCAGAAACGGAACACACCTTCGAGAATGTGGCCACCGCCTGGTTCGAGCTGAAAAAAGACTCGGTTACCCCGGCCTACGCCGAGGACATTTGGCGGTCGCTTACGCTGCACGTGTTCCCCGATTTGAAGACAACCCCACTGACGAAAATCACCGCGCCGATGGTGATCGCATTGCTTCGTCCAATCGAAGCGAAAGGCAGCCTGGAGACGGTCAAACGTCTTAGCCAGCGGCTAAACGAGATCATGACCTACGGCGTAAACTCCGGCCTGATCTTCGCCAATCCGCTCAGCGGCATCAGGGCAGTATTCAAGAAGCCCAAGAAAGAGAATATGGCTGCGCTTCCGCCCGAAGAACTCCCCGAGCTCATGCTGGAGATCGCGAACGCCAGTATCAAACGGACCACCCGCTGCCTGATCGAATGGCAGTTGCACACCATGACGCGCCCGGCAGAAGCAGCGACTACTCGCTGGGCAGACATCGCCTTTGAAAGGCGTGTCTGGACTATCCCTCCGGAGCGGATGAAGAAGCGCCGCCCACATAGCATCCCGTTGAGTGATCACGCTGTCGCACTGTTGGAGTCACTGAAGACTCACAGCGGCCACCGCGAATACGTCTTCCCGGCCGATAGAAATCCGCGCACCCACGCTAATAGCCAAACGGCCAACATGGCGTTGAAACGCATGGGCTTCCAGGACCGCTTGGTCAGCCACGGCATGCGCTCGATGGCCAGCACCATCTTGAATGAACATGGGTGGGACCCGGAGCTCATCGAAGTGGCACTGGCGCACGTCGACAAGGATGAGGTGCGCAGCGCCTACAACCGAGCCGACTACATCGAGCGCCGGCGCCCAATGATGGCTTGGTGGAGTGAGTACATCCAGAAAGCCGCCACCGGCAGCCTGCTCGCCTCAGCGTACGGCCAAGTCAGAGACAAGAACGTGGTGCCGATCCGCTAG	MPAQNLRLSDRQLKGVKPASKDYVLTDGDGLQLRVRSNGSLLWNFNYREPVTKKRINIGFGTYPELSLANARKMAVDARELLAQGIDPKVQRNTLNEAKRAETEHTFENVATAWFELKKDSVTPAYAEDIWRSLTLHVFPDLKTTPLTKITAPMVIALLRPIEAKGSLETVKRLSQRLNEIMTYGVNSGLIFANPLSGIRAVFKKPKKENMAALPPEELPELMLEIANASIKRTTRCLIEWQLHTMTRPAEAATTRWADIAFERRVWTIPPERMKKRRPHSIPLSDHAVALLESLKTHSGHREYVFPADRNPRTHANSQTANMALKRMGFQDRLVSHGMRSMASTILNEHGWDPELIEVALAHVDKDEVRSAYNRADYIERRRPMMAWWSEYIQKAATGSLLASAYGQVRDKNVVPIR				NA	NA	NA	NA	NA
D1-36_00723	1548			hypothetical protein	ATGGCACTTCGCCTTCAATCGAGCGATGATCTGTCGAACAACCATCAGGGACGGACGCGCATGAAGCTCTCGCCATCAGAAGTTCAGCAGGAAATGGAAAAAGTCAGAACAAACAGTTACAACCAATTTATTAAACGTGTGCGCCTTCGTAATGTCAGGGGGTTCCATGATGAAACCGTCGAATTCAAAACGCCTGTAACAGCATTGGTAGGCACCAATGGTGGTGGGAAATCCACGATATTAGGCTCAGCGGCACTGGCATACAAAAACATCAAACCCGGGCAGTTTTTCCCAAAAGCGTTTGTCGGCGATGAAAGCATGTCGGACTGGAGTGTTGAAATTGAAATGGTCGACAAGAGTGTGTTTCGCGACCGGACCTTTTCTCGCACTGCGAAATTCACACAATCGAAATGGCGTCGGGACGATTTCCGTGAGCGCCATGTTGAGTATGTTGAAATTTTAAGGACAGTTCCCGCTGGAGAAATCTCGCGGTTTAAAAAGTTTCTTGCAGGGAACATGGATGACTTCAACACAACTCCTCTCAATGCCAACACTATTAAATACGCCACAGCCGTTCTAGACAAAAGCATAGAACATTACAAGATCGTACAAAAAAAAGATAATCCCGCGATTAAGATGTATGTAGGAGCTACCGATACCGTAGCAGGTTACTCTCAGTTCCACTTCGGTGCTGGGGAGGCGTCAGTAATTGAAACTATTGATCGAATTGAATTAGCCCCAGACAATGCTTTGATATTGATAGAAGAAGTAGAAAACGGCTTACACCCTGTCGCGGTGAGGCTTTTCGTGCAATATTTACAGAATGCGGCGAAACGCAAAAAACTCCAGATAGTATTTACTACGCACTCTCAAGATGCTGTTAACGAGCTGCCCGCCGACGCAGTGTGGGCGTCAATCAACAAGCGCACCTGGAATGGCAAGCTAAGTATAGAAAGCCTGCGCGCTATCACGGGCGAGATCATAAACACTCGTGTTATTTACGTCGAGGATAATTTTGTAAAAGAATGGGTAGAGAATGCGTTAGGTCGCTATGGAAAAGGGTTAGCCGAATCAACCAAAGTGTTCGCTGCGGGAGGTTACCCTAACTTAGTTAAGGTCAGTCAATTCCATAATGAAAATCCTCTTTTAGCGATTCCGTCGGTCGCGCTTGTAGATGGAGATATTTACGACGCAAATACTTATCCCGCGCTTCCCCAACATGCTCGATTTATTGGTGAGGGATATCCGGACGCTACTGTATTCCAGTACATCTATGATAACCGCGTGAGGCTTGCCTCAATAATTAGGCAACGGTGCTTTCTATCACAGTTCGATGAAGACAGAATATTAGGTGCGTTGCAGGGAGTAATGAACTCTGCTTGTGATCACCACTTGTATTTCACCGAGCTAAGTCAGCGCCTTGATTTTGTGTCAGCAGTTTACATTCGTGGAGGAATGATCGACATTTTCAACGAGGAAAACGCTGAGTTTTGGACGGACATCATGGAGTTCGTATCTGCCCAAATCGGCGCAAAAAAAGCTGCTTAA	MALRLQSSDDLSNNHQGRTRMKLSPSEVQQEMEKVRTNSYNQFIKRVRLRNVRGFHDETVEFKTPVTALVGTNGGGKSTILGSAALAYKNIKPGQFFPKAFVGDESMSDWSVEIEMVDKSVFRDRTFSRTAKFTQSKWRRDDFRERHVEYVEILRTVPAGEISRFKKFLAGNMDDFNTTPLNANTIKYATAVLDKSIEHYKIVQKKDNPAIKMYVGATDTVAGYSQFHFGAGEASVIETIDRIELAPDNALILIEEVENGLHPVAVRLFVQYLQNAAKRKKLQIVFTTHSQDAVNELPADAVWASINKRTWNGKLSIESLRAITGEIINTRVIYVEDNFVKEWVENALGRYGKGLAESTKVFAAGGYPNLVKVSQFHNENPLLAIPSVALVDGDIYDANTYPALPQHARFIGEGYPDATVFQYIYDNRVRLASIIRQRCFLSQFDEDRILGALQGVMNSACDHHLYFTELSQRLDFVSAVYIRGGMIDIFNEENAEFWTDIMEFVSAQIGAKKAA				NA	NA	NA	NA	NA
D1-36_00724	1191	intQ	COG0582	Putative defective protein IntQ	ATGGGTAGAGGCGGGAGGGGAGTTCGGGCAGTCTCCGATTCGAGTATCGAAATCACGTTCATGTATCGGGGCGTCCGGTGCCGCGAGCGGATCACGCTCAAGCCCACCGCCACTAATTTGAAGAAAGCCGAGCAGCACAAGGCGGCGATCGAGCATGCGATATCGATTGGCACCTTCGATTATTCCGTGACGTTTCCTGGCTCGGCCCGGGCGGCGAAGTTCGCGCCTGAGGCCTCCCGCGAAACCATGAACGCCTTCTTGACCAGGTGGCTTGAGGCGAAGAAGAAGCACGTCGCGAGCAGCACGTTCGATGGCTATAGGAAGCTGGTCACCCTGCGCCTGATCCCCGCCCTGGGGGACACCATGCTCGTGGACTTGAAGCGGAAGACAGTTCGCGACTGGCTCGACACCTTGGAGGTGAGCAATAAGACGCTCAGTAATATCCAGAGCTGCCTGCGCTCCGCACTGAACGATGCGGTCGAGGAAGAGTTGATCGAGCTGAACCCGCTAGCGGGTTGGACCTACTCACGCAAGGCAGCTCCGCCGAAGGAGGACGATGTCGACCCGTTCAGTCCCGAGGAGCAGCAGGCAGTGCTTGGCGCCCTCACCGGCCAGGCCCGCAACATGATGCAGTTCGCCTTATGGACTGGCCTGCGCACCAGCGAATTGGTGGCGTTGGACTGGGGCGATGTCGACTGGCTTCGCGAAGAGGTGATGGTGAGCCGAGCAATTACCCAGGCGAGCAAGGGGAAGGCAGAGATCACGAAGACTGCCGCCGGGCGACGCAGCGTGAAGCTTCTCAGACCCGCGCTGGAGGCATTGAAAGCGCAAAAGGCGCATACGTTCTTGGCGGACGCCGAGATCTTCCAGAATCCGCGTACGCTTGAACGTTGGGCGGGGGATGGCCCGATCCGCAAAACAATGTGGGTGCCCGCGATGAAAAAGGCTGGCGTCCGCTATCGCCGGCCGTACCAGACTCGCCACACCTACGCCTCAATGATGCTATCTGCCGGCGAACATCCTATGTGGGTGGCCAAGCAAATGGGGCACACCGATTGGACTATGATCGCGAGAGTCTATGGCCGCTGGATGCCCCAAGACCACGTCATTTCGGGGCTGAAAGCCGTTGCCGCCTTCGGCAACCACTCCTCGCAGAGAGAACCAGAGAACAGGCTCACTAAACAGGAGTGA	MGRGGRGVRAVSDSSIEITFMYRGVRCRERITLKPTATNLKKAEQHKAAIEHAISIGTFDYSVTFPGSARAAKFAPEASRETMNAFLTRWLEAKKKHVASSTFDGYRKLVTLRLIPALGDTMLVDLKRKTVRDWLDTLEVSNKTLSNIQSCLRSALNDAVEEELIELNPLAGWTYSRKAAPPKEDDVDPFSPEEQQAVLGALTGQARNMMQFALWTGLRTSELVALDWGDVDWLREEVMVSRAITQASKGKAEITKTAAGRRSVKLLRPALEALKAQKAHTFLADAEIFQNPRTLERWAGDGPIRKTMWVPAMKKAGVRYRRPYQTRHTYASMMLSAGEHPMWVAKQMGHTDWTMIARVYGRWMPQDHVISGLKAVAAFGNHSSQREPENRLTKQE	PGPT0021996_680	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MOBILE_ELEMENTS	CE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0021996-int|intR|intV|intQ|intW|xerC-K14059	NA	NA
D1-36_00725	333			hypothetical protein	ATGCCTCATCGAGGATCGACTTTTTGGCTTTGGGCTGACTGCGAACTGCATCACCGAACGCACAGTGAAGTGTTGGACGGGGGCATCACCATTGATGTCCAAGTCCGCCTTTCCCGACAGGGCGTTACGCAGTTGTTTTTGGGGGTTTACTCCGAAAATCTCAGAATCATCCACGAAGAGGCGTATACCGAGCGAGTCGGCGAGACGATGACCACTGCGCTCCTGTGGGGAGTGGGCAAGGCTCGAAGTGTGGCTGCGGATGCTAAAGCGCTTAGCGGGAATCGGATTAGTCACGCGCACGCTCCCGCGCGTCGTGGGCCACGCGCAACTTGA	MPHRGSTFWLWADCELHHRTHSEVLDGGITIDVQVRLSRQGVTQLFLGVYSENLRIIHEEAYTERVGETMTTALLWGVGKARSVAADAKALSGNRISHAHAPARRGPRAT				NA	NA	NA	NA	NA
D1-36_00726	201			hypothetical protein	ATGACAAATACATCGCCAGGTGGAAGTAGGATTGCTCTTCAGAATGAGTTCAGCCAACTCGGGTCTCGCCTGGTCCGCTTCGGTCAGGCCATGCAAGAGCCCAGCAGCACCGTCAGCGAACTGATGCGCCTGGCCCAGGCCTGCGGGATCAACCTCAAGTTGCGCGTGGCCCACGACGCGCGGGAGCGTGCGCGTGACTAA	MTNTSPGGSRIALQNEFSQLGSRLVRFGQAMQEPSSTVSELMRLAQACGINLKLRVAHDARERARD				NA	NA	NA	NA	NA
D1-36_00727	447			hypothetical protein	ATGAGTACCAACCAATACGATTCGAGAACTGCAGACAAGTTTGTCGCACGGCTGCCCGATGGCCTTCGAGCGGGTGTCGAGACAGTAGCAAATGCCAGCGATCGCAGCATGAACAGCGTTTTTGTTCAGGCGGTCCGTCAGTACCTTGATGGTCAGCGGCGCCAGGAACTGTTGCTGGACGCTCTTGCCAGCGCTGCCATCCCGAAGGTGGGTGGGCCGCAGCGTCCCGGCATCCACGATTCGATGCACATTGATAATCGCGTAAGAGCGATGGCCGACCCTCGCGACCTGTTCATCGCAGCCAACCCAGTCGGCGCCACCGATGATGAGCTGACGAAGGGTCGAAGCGGATTCGTCGACGAACGCACTCATGCGGACTACCTGATTTTCCTCGCTGGTTACCGGACAGCGATTAAGGAACCAGAAGGAACGGAGACGCAGCCATGA	MSTNQYDSRTADKFVARLPDGLRAGVETVANASDRSMNSVFVQAVRQYLDGQRRQELLLDALASAAIPKVGGPQRPGIHDSMHIDNRVRAMADPRDLFIAANPVGATDDELTKGRSGFVDERTHADYLIFLAGYRTAIKEPEGTETQP				NA	NA	NA	NA	NA
D1-36_00728	381			hypothetical protein	ATGAACCGGACAATTCAATTTGGATCTTGGCAAGGCGTTCTCGGTAACGGTCTAGCGGAGCGCGAGCTCGTATGTATTCTGGCCGTAGCTGCCGGTCACACTGATAAGGAAATCGCCAGGCGTGACGGCCTCTCGCCACGCTCCATCAAAGGCCGCATCGAATCGGCCATGTTCAAGCTCGGCGTCTATAAACGTCCTGCTCTTGTCGCCGAAGCCATGCGCCGCGGCCTAATCAGCCCAATGATATTGGCCCTTTGCGCCATCCTCGTGGGCCAGTCAGCAATCAGTGACCACTCGCTGAACCGCATCCGCAAACCGGGCGAGCGTCGCGTCGAAACCCGCGTATCAATACGTCGAACCGAAGTCGCCCTCACCGCTTAA	MNRTIQFGSWQGVLGNGLAERELVCILAVAAGHTDKEIARRDGLSPRSIKGRIESAMFKLGVYKRPALVAEAMRRGLISPMILALCAILVGQSAISDHSLNRIRKPGERRVETRVSIRRTEVALTA				NA	NA	NA	NA	NA
D1-36_00729	840	prtR_1	COG2932	HTH-type transcriptional regulator PrtR	ATGGTACTTAAAGAACAGTTTGCAGAACGATTACTCCAATCGATGCGCGACGCAGGTTTCGTCGGGCACGGTAGCGCTGCGCGCTTGGCGAGAGAACTTAGCGTCACCCCGAAAGCAGCAGCCAAGTGGATTCAGGGCGACTCAATGCCCACATTTGAAAGGATCGCTAAGATCGCCGACGTCTTGCACGTTGATCCGGAATGGTTGCTGTGGGGTCACGATACCGATATCAGCACCAACCGGATTGTCGGCGGAATACCAGTCGTCTCTCGCCCAATGCAAACGATGATCCTCAGCAAAAACGGCGAATTCAAAAGCCTCAGAGAGCTTGGTGGCGACAAGAAAGACGCGGCACATCGTGGGGACTTAACTACACACCTGGATGATCCGGGCGATGAGGCATTGCAAGGGCAGGAAGAGATTGAAGTCCCTTTTCTTGGTGAAGTAGAGCTGTCCGCTGGCAATAGCCGTACAGCGATTAAAGAACACAGCAGCGCTAGACTACGATTCGATAAGATGATGCTGAGAAAGCATGGTGTACAGCTTGATCAAATCGTATGCGTGCCAGTCCACGGCAATTCCATGGAGCCAGTACTCCCAGACGGAAGTACCGTAGCGATAAACAAGGGCGCCACTAGCGTCGTAGATGGAAAAATATATGCGATTGCCCATGACGGTCAGCTCCGAGTGAAAACGCTGTATCGGCTGCCGGGTGGAGGGATTAGGCTTAGAAGCTTCAACCAAGCTGAGCATCCTGATGAGCTTTATAGTCCCGAAGAAATGGTGGACCGAGACATCGTAATTCTCGGGCGCGTATTCTGGTCAGCCACATTCCACTAA	MVLKEQFAERLLQSMRDAGFVGHGSAARLARELSVTPKAAAKWIQGDSMPTFERIAKIADVLHVDPEWLLWGHDTDISTNRIVGGIPVVSRPMQTMILSKNGEFKSLRELGGDKKDAAHRGDLTTHLDDPGDEALQGQEEIEVPFLGEVELSAGNSRTAIKEHSSARLRFDKMMLRKHGVQLDQIVCVPVHGNSMEPVLPDGSTVAINKGATSVVDGKIYAIAHDGQLRVKTLYRLPGGGIRLRSFNQAEHPDELYSPEEMVDRDIVILGRVFWSATFH				NA	NA	NA	NA	NA
D1-36_00730	333			hypothetical protein	ATGCACACAAAAAATAGCAGCAACCCACTTGCATCGCAAGCATTGCTTACAGGACTCGTTGGCTTTTGCGATACCCCTATAGACAGCCGAGGCATTCAACTGCTCAACGTCGCAGCCGGCACTAACGCGGAGGATGCAATCCAAACCGCCAAAGTCCTGTCGTCTGGGCTGGGACAGATCTGCCGCCATATGCACGACAGCCTGAACATGGGCGAGATTGCTTATTGCGACGGCATGGCAGCGCTGGGCTTTCTGGCTGAAACGGTCAGTGCGTTGGTCTGGTCGGTTCAGAAGGGCGCGGAGTCCTCACTGGAAGCCGGGGGTGAACAATGA	MHTKNSSNPLASQALLTGLVGFCDTPIDSRGIQLLNVAAGTNAEDAIQTAKVLSSGLGQICRHMHDSLNMGEIAYCDGMAALGFLAETVSALVWSVQKGAESSLEAGGEQ				NA	NA	NA	NA	NA
D1-36_00731	300			hypothetical protein	ATGAGCGCGCTGACAATCTCCCGCTTCAAAGCCGAAGCCCAGGCGAATCATGACGCGGCCTATTTCGTGGACGCGCTGGCCAAGTTCATCGACATCGTGGGTACCTACGATCCATGCCTTTGTGAGCAGGCGCTCGACGGGTACGTCGTTGGCGGCCTCGTCACCGGTCTGCGTCAGGTTGCCGGCGAAATGATGAACCGCAACAGCGATCTGATCGACCTCCTTGAGAAACAGGAACTCGCGACACAAACCGAGGACGGCCAAAACGTGTCGCACGCTTCTGGCGGGAGGACTTCTTGA	MSALTISRFKAEAQANHDAAYFVDALAKFIDIVGTYDPCLCEQALDGYVVGGLVTGLRQVAGEMMNRNSDLIDLLEKQELATQTEDGQNVSHASGGRTS				NA	NA	NA	NA	NA
D1-36_00732	297			hypothetical protein	ATGAATAGTCTCAAGATGCAGCTGGCTGTGATTTCAATTGATGGCGAGGTCCTGCGAGACGCGGTGCTGAGTTCGGAGGACATGGCCCGCATGAACGAGGCCCGGGCTGCTTTCAAAGACCTGAGGTCGATTCTGCTCGCTCAGGTTGTGCCGGCCCTCGGTGGGTGGAGTCATCCACTCGCTACCGAAATTGAGCGCCATATCGAAATGGTGACTTTTGGGAGCCGAAACTTCCTTTGGCCGCATCGGCATGCTGGAGCCGCTCATGACGCTATCGATGTGGGGGGCAGCCAATGA	MNSLKMQLAVISIDGEVLRDAVLSSEDMARMNEARAAFKDLRSILLAQVVPALGGWSHPLATEIERHIEMVTFGSRNFLWPHRHAGAAHDAIDVGGSQ				NA	NA	NA	NA	NA
D1-36_00733	729			hypothetical protein	ATGACCATCGCCAAATTCCAAGGCGGCGATACCGCCACAATGACCTCCCGCGAGATCGCCGAATTGGTCGAGTCCCGCCACGATAGCGTGAAGCGCACCATCGAAAGGCTGGTCGAGCGAAAGGTAATTGGTTCTCCACCAATGGTGGAATACCTCGACGGGCTCGGACGGCCGGCCACTGAGTACCTGTTCTCTGGTGAGAAGGGTAAGCGCGACAGTCTCGTTGTGGTTGCCCAGCTCAGCCCTGAGTTCACTGGCGCGCTGGTTGACCGCTGGCAACACCTGGAGCAGCAGGTTAAGGCGCCAGCTCTGCCCGGCGACTACATCTCAGCCCTAGAGCACCTGCTGGAATCCAAGCGCTCCGAACAGCTGGCGCTCGAGCAGCGTGACCACGCAATCGAGACGAAGGCCCAGATCGGCGCCCGTCGTGAAGCGACGGCAATGGCCACCGCATCCGCAGCCGTGCGTCAGGTCCGGAGGCTCAAAGACGAGCTTGGGCTTGGCACCCGGCAAGCAGCAGTGCTTGCGGTGGAAAAGGCTGTCGGCCGCAAGTTCGGCGTATCCGGCTACGTGCCCCTACGCCGCTGGTGCAAGGATCGCGGCATCACGGCCCCCAAAGTATTCCACCCAACCTTCGGTTCTGTCCGGTGCTGGCCCGCTGGCGCCTGGATGGACGTTTACCAGATTGACCTCGCTGACCTGTTTGGCGCCGATGGAGAACGAGCATGA	MTIAKFQGGDTATMTSREIAELVESRHDSVKRTIERLVERKVIGSPPMVEYLDGLGRPATEYLFSGEKGKRDSLVVVAQLSPEFTGALVDRWQHLEQQVKAPALPGDYISALEHLLESKRSEQLALEQRDHAIETKAQIGARREATAMATASAAVRQVRRLKDELGLGTRQAAVLAVEKAVGRKFGVSGYVPLRRWCKDRGITAPKVFHPTFGSVRCWPAGAWMDVYQIDLADLFGADGERA				NA	NA	NA	NA	NA
D1-36_00734	615			hypothetical protein	ATGAATACAATCAACCTCGAAGTGGCGCAGAAAATTGCTGGTATCGCCCGCAAAAACCTATCACAGCGCGACATGTTCATTTTGATGCGACGTGTCATCCGTAACAGCCTGAGGCACCAGGCGCAGATCCGAGACGAGCGCCGTATCTTTCGGCGTGAGGCCGCGAAGCTTAAACCGTACCTCCCATTTGCTCAGCGCCAGATGGACATGCTGATCGAGAGGTCCAGGCGGCACCGGGACGATGAGCTGAAGGTCATCAAGCAAGGCCTTGTTGGCTTCGGCTACAACCTGATCCGGGACTCAGAAGGCGCATATGAGTCGATCGGCTTTTCAGGGATGTGCGACCTGCTAAACATCAACCCGGTGCACAGGGAGGAGGCAAGCCAGGACGCAAAAAACCTTGCTGATTTGATCTACGTCGCACGACTGGAGGACAGCGTCAGCCCGAAATCTGAGGCATGGGGGGAGGGGGGGGCGCTGTTCGAGGCCTGCTTCCTGGCCATGATCGAGTGGATAAAAACCGCTCCAGAAGAAGACCTTCCTGATCTGTTCGGCGCGGGCTCCCCGTTCGCTGGTGTGCATGTGGTGCAGGTCAAGAAGGAGACTCTGCAATGA	MNTINLEVAQKIAGIARKNLSQRDMFILMRRVIRNSLRHQAQIRDERRIFRREAAKLKPYLPFAQRQMDMLIERSRRHRDDELKVIKQGLVGFGYNLIRDSEGAYESIGFSGMCDLLNINPVHREEASQDAKNLADLIYVARLEDSVSPKSEAWGEGGALFEACFLAMIEWIKTAPEEDLPDLFGAGSPFAGVHVVQVKKETLQ				NA	NA	NA	NA	NA
D1-36_00735	237			hypothetical protein	ATGACCACCACCACCAAAACAACTACCCGGGATTTGGGCAGTTTGCCCGCCACTGCCGAAGTGGTCGCCGGTCCTTGGCCGAACTATTCGAACTGCCGTCACCTTTCTGAACGCGACCGCTGGGAGGTCTATGGCATGGCCAAGGCTGCCCGCGGCGCCCTGGAGGACCGTGGCGTCGTCATGGCTGAGGCCTATGACGACTTCGTGCGCCGCGTGACGCGGGAGTTGGACATATGA	MTTTTKTTTRDLGSLPATAEVVAGPWPNYSNCRHLSERDRWEVYGMAKAARGALEDRGVVMAEAYDDFVRRVTRELDI				NA	NA	NA	NA	NA
D1-36_00736	810			hypothetical protein	ATGACCAACCCTGACATTCTGCGGAAGTTTCAAGGGGTCTGGATTCCGGCCGAGCTTTGGAAGGACCGGACGCTATCAATTACCGAGAAGGTCATGCTGGTGGAAATCGGCAGTCTTGAGGACGACGAAAGGGGTTGCTATGCCAGCAACGCCAAGTTCGCCGAGTTCTTTGATCTGTCGATATCCAGGGTGTCTGAGATCATCAGCGGCCTTGCCGAAAAGCGGTTGGTATCGGTTGAGCAGATCCGAGACGGCGTGCGTGTGGTCGAGCGAAGGATTCGACTGATCCACCCCTTCGGAAAACCGAATACCCCTTCGGAAAACACTTCGAACCCCTTCGGAAAAGACGGTGAACCCCCTTCGGAAAACACGCAGGGGAGTAATACATTACTGAGTAATACATTGAGGGTAATCAAAACCCCTTCCGCTACCGCTCCAGGCAATGGGAAAAAGGCTGCTGGAAAGCCTAGGACTTCGAAGTTCGATCCTCTCTCCGCAAAACCGGCGAACGTTTCAGCAGACGCATGGGCTGGGTTCTGTGAAATGCGCAAGGCGAAGCGGGCACCGTTGACCCTCAGAGCCTGTGAGCAGATCGCCAAGAAGCTGGCCAACCATCCCGACCCCGATGCCGTTCTGGATAAGTCCACCACCAGCAGCTGGTCGGACATCTACCCAGATTCGGTTCTGCCAGGTGCTGGCGCCAAGAACGGCAAGCAGTCCCGCCATACCAATCTGGACCAGATCAACCATGAGGACGGCCTTGAGCGGCAGTCCGACGGCACCTACCGAATTGCGAGCGTGACCCCATGA	MTNPDILRKFQGVWIPAELWKDRTLSITEKVMLVEIGSLEDDERGCYASNAKFAEFFDLSISRVSEIISGLAEKRLVSVEQIRDGVRVVERRIRLIHPFGKPNTPSENTSNPFGKDGEPPSENTQGSNTLLSNTLRVIKTPSATAPGNGKKAAGKPRTSKFDPLSAKPANVSADAWAGFCEMRKAKRAPLTLRACEQIAKKLANHPDPDAVLDKSTTSSWSDIYPDSVLPGAGAKNGKQSRHTNLDQINHEDGLERQSDGTYRIASVTP				NA	NA	NA	NA	NA
D1-36_00737	786			hypothetical protein	ATGACCACAACACCCAAGTACACCCTGGAAACCCGGGCGGGCGATTGCCGTGAGCATGGCCGCTTTCCTGACAACTTGGTGGCACAGTTCGGCGCCGATCCGGTTTGGTTCGGCTGCCCTCGCTGCCACTTCGATGCTCGTCATTCTCAGGATATGGACCAACGCTCAACGGCGGTAGGCATCCAGCGCGATAGGCTGCTGAACGAGCGCCTGCTCGACGCGGGCATCCCTGAACGCTTCATGGGCTGCACGCTGACCAATTGGAGTGCAGCTACGCCAGCACAGATCCAGGCACTTGCCGCCTGCGGCGGTTTCGTCGAGGCGTTTGAGGAAAACTTCGCCGTTGGCCGATCCGCCATGCTGCTGGGCACGGTGGGCACGGGTAAAACCCACCTGGGCACGGCGATGCTTCAGGCGGTGATCCGGGAATACGCTCTCCACGGCCTGCGGGGGCTTTACTCCACCGCCGGTTCGATCATCCGTGACGTGAAGGCGACGTTTGGCAACCGAGGGCGCACTGAGGCAGACGTTTATGCCGACCTGATCCGTCCCGACCTCCTGGTGATCGATGAGGTGGGCGTCCAGCACGGTACCGACTTCGAGCGTCAGGTGCTGTTCGAAGTTATCAACGGACGGTATGAGCGGGTTAAGCCCACCATCGTGGTGAGCAACCTTGGCGTGACCGAGCTTCGCCAGTGTCTGGGTGATCGCGCTGTAGATCGCCTGAGGGACAAGAGCGGCGTTGTCGTGGTGTTTCGCTGGGCTTCGGCACGAGGTGCAGCATGA	MTTTPKYTLETRAGDCREHGRFPDNLVAQFGADPVWFGCPRCHFDARHSQDMDQRSTAVGIQRDRLLNERLLDAGIPERFMGCTLTNWSAATPAQIQALAACGGFVEAFEENFAVGRSAMLLGTVGTGKTHLGTAMLQAVIREYALHGLRGLYSTAGSIIRDVKATFGNRGRTEADVYADLIRPDLLVIDEVGVQHGTDFERQVLFEVINGRYERVKPTIVVSNLGVTELRQCLGDRAVDRLRDKSGVVVVFRWASARGAA				NA	NA	NA	NA	NA
D1-36_00738	1377	dnaB_2	COG0305	Replicative DNA helicase	ATGAGCCGCGAATTGTTCAGCGATGAGGCCGAGTTCGGCGTGCTGGGTGCCATCCTGCTCAAGCCCGAATTGTTCGATGAAATTTCCAGCAAGGTGGCTGTGGCTGACTTCCACGACCTGGAAAGCGCAGCGCTGTATCAAGTCATGATTGATTGCCACGCTGCAGGGATCCCTATCGATGTTGTCACCCTGAGCGATCGTCGGCAGAACCTGCCCAGCGGCACGCCGACGATTGTCCATGCCGGCGAGGTCGCCAGGAACGTCCCAAGCGCTGCCAACTGGAAGGCCTACGCTCGCATCGTTCGAGAGCGGGCAGTTCTTCGGCAGGTGGTGGATGCCGCCTATGTGATCTGTGACACCGCGAACGAAGAGCGCCCGCTTTCGGAGGTTATCGCCATGGCCCAACAAGCTACGGCGGATCTGCGCGACCTGGATGACGACGGCCAGCAGGATTACTACAAGGCAAGCGAAATCCTGCCAGCGGTGGTGGACACCATCGACGCGAAGTACAAGAAGACCATGCCCACGGGCCTTTCTACCGGCTTGGAAAAGCTGGACGAGCTGGTGCGCGGCCTGCGCCCGGGCAACATGGTTGTGATTGGGGGCCTGACGGGCTCTGGCAAAACTATCCTTGGCCTTCAGATAGCCCAACACGTCACCTGCAAGCTCGGCGGCTCCGGCCTGGCGTTCTCCATGGAAATGACCAAGGAGGAACTGATCACCCGCGGCTTGGCTTCCATTGGCGGGATCAACCTGAGCGCGCTCGACAGCGGTGAGCTTGAGGACGATGACTGGCCGAGGCTTACCAGTGCCGCTGGCGAGTTAATGAATGCCCAGCTGTTCGTAAACGACCAGGCCGGCATGACGGTGGCGCGTATCCGTTCTATTGCCCGCCAGTGCCAGCGCCGGGAAGGTCTCAGCATCCTGGTGATCGATTACATCCAGCTGATCAGCGCGGAGAGCAGTTCGAACCGATCTTTGGAGGTGGGGAAAATATCCACAGCTCTGAAGAACTTGGCCAAGGAACTCAAGATTCCAGTAATCGTGCTGGCGCAGCTCAACCGCGGATCGACCAACCGGCCGGACAAGCGACCACGCCCGAGCGATATTCGCGACTCTGGGCAGATCGAACAGGACGCTGATGTCGTGATACTGGTGCATAGGGACATGGAAAGCGAGGAGGGACAGAACGGCGTCACCGAGCTGATCGTCGGCAAGGTTCGTCACGCCCGGGTTGGTTCGTGTCTGGTCCAGCAGCAGGGCAAGTTTGTTCGGTTTGTCGACTTCGAAGGGCAGCCGCCCAGTAACGAGGAAGTCGAGATGGGCAGATCGGGCTACGCCGGCAAGTACGGCAAGGGGAGGAAAGACTATGAGTAA	MSRELFSDEAEFGVLGAILLKPELFDEISSKVAVADFHDLESAALYQVMIDCHAAGIPIDVVTLSDRRQNLPSGTPTIVHAGEVARNVPSAANWKAYARIVRERAVLRQVVDAAYVICDTANEERPLSEVIAMAQQATADLRDLDDDGQQDYYKASEILPAVVDTIDAKYKKTMPTGLSTGLEKLDELVRGLRPGNMVVIGGLTGSGKTILGLQIAQHVTCKLGGSGLAFSMEMTKEELITRGLASIGGINLSALDSGELEDDDWPRLTSAAGELMNAQLFVNDQAGMTVARIRSIARQCQRREGLSILVIDYIQLISAESSSNRSLEVGKISTALKNLAKELKIPVIVLAQLNRGSTNRPDKRPRPSDIRDSGQIEQDADVVILVHRDMESEEGQNGVTELIVGKVRHARVGSCLVQQQGKFVRFVDFEGQPPSNEEVEMGRSGYAGKYGKGRKDYE				NA	NA	NA	NA	NA
D1-36_00739	288			hypothetical protein	ATGAGTAACGTCAGAGCAGTACCGTCGCGAAAGGCCATGAGCGATATCGAGTGCCAGTTCCTGAAAATCGCCGGTGAGGAGTTGGCGAAGGTCAAAATGGGCGGCCCGGCCGCGCTGGCGGCTCTGTTGGATATGGTCGCCAGTTGGCACTCGAGCCGGTTGCAGATCGGTTTCCATGATTACGGCCAGCGCTGGCTTCTTGAGGGCAATGCGAAGAAGGCCGCGGCTGACCGCTTGCTTCGAGACCTTTTCGGCCTGAGTGACCCTGACCCGAGGAAAGCAGCATGA	MSNVRAVPSRKAMSDIECQFLKIAGEELAKVKMGGPAALAALLDMVASWHSSRLQIGFHDYGQRWLLEGNAKKAAADRLLRDLFGLSDPDPRKAA				NA	NA	NA	NA	NA
D1-36_00740	384			hypothetical protein	ATGATGATTCGAAAGCCGTTGCAGCGCCCCCTGGGCGATACCGAGTACATGCTGGAACAGTGGGGCTGGTGGCGCATGGATGGGATGGGTATTCCCAGCTACGCCTCGCCGATGATGGCGATCATGCGGGAGGTGATGCCGGCCACCACCAAGTCCTATGTGATCACGGACGAACTGGCCGGCGTGGTTGATGGAGCGGTGGCCAGGCTCTGCAAGCGAGATCAGCAGATGGGCGACATGATCTGGCTTTACTACGGTGCGAAGTGGGCCGCGGTGCGAGTCGGACGCCAATACGGCATGAGCGAAGGCAAGGCCCGGGAGCTGATCAAGGCCGGCGTCGCATGGGTGGATTGCGTCTTGGAGCGGACGAGGGAGGCAGCTTGA	MMIRKPLQRPLGDTEYMLEQWGWWRMDGMGIPSYASPMMAIMREVMPATTKSYVITDELAGVVDGAVARLCKRDQQMGDMIWLYYGAKWAAVRVGRQYGMSEGKARELIKAGVAWVDCVLERTREAA				NA	NA	NA	NA	NA
D1-36_00741	471			hypothetical protein	GTGACAGGCGAACAAGTAAAAACGCGCATCGAAGCACTTCGAGAGCAATTTGGTGATGAGATCTACACCAAAACTAAATGGGAGGGGCGGCAAACTGACTGGCTGATCCAATGGTTTGCCAATTTCCTCGATAGCGCCCAGGGAGTCTCGATACCTATGACTTTCACCGTCGGTGGAAATCTAGTTAGTGGTTTTTTGATCTCGGAGGCTGATTATTTTGAGCAGTTAGCGTCTGATTTCTCTGCGGCGCTGCCCCAAGCAGCCAAAGCTGCAGGTGAAGAGTTAATCAAAGCGCTTCAGCCCCAGCCCGCTATCGATGAACATAGTCAGCCGGCCTGCCAATTCGTGCATTTAAAAAGCGCACAAGTATTTGGAGCTTCTTCGCAGCCGGTTCCCATGAGCGGGGCGCTTTGGCGAGGGAAGATATCCAGCGTCGAAGGTTTCAATCTCGGCTCTCTCAGTCAAGACTGA	MTGEQVKTRIEALREQFGDEIYTKTKWEGRQTDWLIQWFANFLDSAQGVSIPMTFTVGGNLVSGFLISEADYFEQLASDFSAALPQAAKAAGEELIKALQPQPAIDEHSQPACQFVHLKSAQVFGASSQPVPMSGALWRGKISSVEGFNLGSLSQD				NA	NA	NA	NA	NA
D1-36_00742	303			hypothetical protein	ATGCTAGGATCGTTGGCTATCAATATTGCAATAATGGAAAAGAAAATGCGTCGGGATATGGACTTAGTTCGTGATATTTTGCTGCGAATTGAAGGATTAAAGGGCGACTTCAACATTTACTCGATGTACCCCGAATACTTTGATCAATACAAAGTCGTGAAGGGGACCGAAGAGCAGGGTAACCTGGTGATTGCCCATTACGGCTTGCTAGTGAAGAGCGGGTTCGTAGACGGTGTAGCGCAAACCGGTAATGTGCATGGCTTGACGTGGGACGGGCACAATCTCTTGGATAAACTCCGTTAA	MLGSLAINIAIMEKKMRRDMDLVRDILLRIEGLKGDFNIYSMYPEYFDQYKVVKGTEEQGNLVIAHYGLLVKSGFVDGVAQTGNVHGLTWDGHNLLDKLR				NA	NA	NA	NA	NA
D1-36_00743	372			hypothetical protein	ATGGATCCTACCGACTTCGGCACAGGCACAGCTACCTGGCTGACCGGTAGTGCCACCGTCATTCTTGGAGGTCTTCTATGGCTGCGCAGATTCCTGTCGAAAGATGCCGCTGACCGAGCGATGGACAATGCCGATATCGGTACCGTCCGCCGCTTGAATGAACTGCTCGATTCCGAGCGAACCGCCCGAAAAGAAGCCGAGGCCCGTGCCGACCAATTCGCAAAAGAGCGAAACGATCTGGCCGCTGCCGTCGGCCGCATGGAAGGGAAGATTGAAGCGCTGACCAGCCAGGTCGCCCAGCTCACGGAGCGAGTGACACTGCAGAGCGACGAGATCAACCGCCTGCGGACAAAGCTTGGAGGTGCTGCCTGA	MDPTDFGTGTATWLTGSATVILGGLLWLRRFLSKDAADRAMDNADIGTVRRLNELLDSERTARKEAEARADQFAKERNDLAAAVGRMEGKIEALTSQVAQLTERVTLQSDEINRLRTKLGGAA				NA	NA	NA	NA	NA
D1-36_00744	318			hypothetical protein	ATGGACAGATGCGCACTGGAATTCATCGCCCGCCGATGGTGGAGACGCACCGAGGTATGGGCCATCGCCGTGTTGTTGGTAGGCGGTGGTGCTGTCCTTGGATACCAAGCCGCGTACTGGTCTCTCGCGGAAAAGCAGAGCAGCCAGGTACAGGACATCCGCAACGCTTATGACGCGGCAATGAACGAGCGTGACCGGCTGCTGGAGGAGCTGACACGCAAGACGGGTACCGCTGCTGAAAAGGCATCAAAGGCCGCAACTACCGCCGCCCAGGCAGCCGACAAGGCAGATGAAGCTCTCAACCGAGTGGGTCAGTGA	MDRCALEFIARRWWRRTEVWAIAVLLVGGGAVLGYQAAYWSLAEKQSSQVQDIRNAYDAAMNERDRLLEELTRKTGTAAEKASKAATTAAQAADKADEALNRVGQ				NA	NA	NA	NA	NA
D1-36_00745	384			hypothetical protein	ATGCCCCCAAGACCGCAAAAGCCTTGTGCTGCGTTGGGGTGTCGTGCGCTCACACGCAACCCAAGGTATTGCGATGAGCACGCCGGCTTAGCCACGGCACAGGCAGAGCGTCAGGCTGCCAAGAAGCGTGAGAGCAGCACACAGCGCCTCTACACGTACAAGTGGCAGAAGGCGAGCAAGGGTTTCCTCGCGCGCTACCCGCTGTGTGCTGAGCATGAGCGCCAAGGCGAGGTGGTTGCTGCCACAGAGGTCGACCACATCGTGCCCCATAAGGGTGACGCGACGATCTTCTGGAACCGAAACAACTGGCAGTCTCTGTGCCATAGCTGCCACAGCCGCAAAACGGCCCGTGAGGATGGCGGCTGGGGAAACCCAAGGCGCTGA	MPPRPQKPCAALGCRALTRNPRYCDEHAGLATAQAERQAAKKRESSTQRLYTYKWQKASKGFLARYPLCAEHERQGEVVAATEVDHIVPHKGDATIFWNRNNWQSLCHSCHSRKTAREDGGWGNPRR	PGPT0027235_1076	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEM	CE-BACTERIAL_FITNESS-TYPE_IV_R-M_SYSTEM,PGPT0027235-mcrA-K07451	NA	NA
D1-36_00746	663			hypothetical protein	ATGGATGCAGGTATTTGGCTTGGTCTGAGTACTGTATTTGCTACGCTGCTTGGGCCGGTCCTTGCGGTGCAAGCCCAGAAGTTTTTAGAGGCTAGGCGTGGTTTAAAAGACCAAAAAATGAGAATTTTTAGTACCTTGATGGCTACTAGAGCATCACGGCTTTCTCCCGATCATGTACAAGCATTGAACATGATCGATTTAGCGTTTAACGGCGGGAGTCGCAGTCGGCAACGTACTGAAACTGATGTACTGGACGCTTGGCGAGATTACTTGGATCATTTGAATTCTCGTTTCAACGAGCAATCAGCCGATCGCTGGAATGAGAAACAAAACGAATTTTTGATAACGCTTTTGAGTTCGATGGCTGCGGATCTAGGACTCAGATATGACCGAGTTTTACTTCGGAATGGAGCCTATATTCCCCAAGGTCATATGGATATCGAAAGTGAACAGCACCGCGTGCGTCGACTCGCCATCTCAGTCTTATCAGGGGAGCAACCAATTAGCATGAACGTCACTGGGCTACCGGTTGATCCCCAGTTCGTCAAATCGCAGCTAGAGGTTCAGGCGGGCCTGGCTAGTGTTCTAGCTGGTGAGTCCAGTATCGGTGTGCATATTCAACCCGATAATAGCCCTCCACGGACGATTGAACATAACAATTAA	MDAGIWLGLSTVFATLLGPVLAVQAQKFLEARRGLKDQKMRIFSTLMATRASRLSPDHVQALNMIDLAFNGGSRSRQRTETDVLDAWRDYLDHLNSRFNEQSADRWNEKQNEFLITLLSSMAADLGLRYDRVLLRNGAYIPQGHMDIESEQHRVRRLAISVLSGEQPISMNVTGLPVDPQFVKSQLEVQAGLASVLAGESSIGVHIQPDNSPPRTIEHNN				NA	NA	NA	NA	NA
D1-36_00747	486			hypothetical protein	ATGGGTGGCACCGCCACGGTCGCCGGCCGTGGTCGCAAACCCAAGCCGACGGCCCAGAAGAAACTCGCTGGGAACCCCGGTAAACGGGCCTTGAACGAGGCTGAGCCGCAGTTTTCCACCGTCACAAATATTGACCCGCCGGACTGGCTGAGCTCTCGGGCTGCGACCATGTGGCGGATGCTGATACCTGAGTTATTGCGCGAGCATGTTGTTGCGCTCACTGATTTGCACAACGTCGAAGCGTTCTGCACTGCCTACGACAAGTGGCGGATGGCAGAAGAGGCGGTCCAGCAGTTCGGCATCGTGGTCGAGTCAGCCCAGGGCAGCCCCATGAAAAACCCGGCACTCACCGCAGCGAACGAATCCATGCGGCAACTGGTGACCTTCGGCTCGCTGCTGGGCCTGGACCCGTCCAGTCGCACCAGGATCATCGGTGGTAACAAGCAAACCTCAACCAACGAATTCGCCAAACTACTGAGTTCCTGA	MGGTATVAGRGRKPKPTAQKKLAGNPGKRALNEAEPQFSTVTNIDPPDWLSSRAATMWRMLIPELLREHVVALTDLHNVEAFCTAYDKWRMAEEAVQQFGIVVESAQGSPMKNPALTAANESMRQLVTFGSLLGLDPSSRTRIIGGNKQTSTNEFAKLLSS				NA	NA	NA	NA	NA
D1-36_00748	1722			hypothetical protein	ATGACCAAAGCCGCGCACGCCAACGTCGACAAGGCGATGGCGTGGGCTCGGTCTGTACTGCGGGGGAAGGTACCGGCGTGCCGATATATCCATCAGGCGATTCAACGCCACTTCGATGACCTGGCCGCTAGCCGAAAGCGCGCATTTCGCTTCAAGTTCGATCCAGCAAAGGCGGAGAAGAAGCTGAAGCTGATCCAACTCCTGCCCCACACAAAGGGTGAGTGGGCATTCAAGCGTCAGTTGATATCGCTGGAGCCTTGGCAGTTGTTCGGCCTGGCGGTGACGTTCGGTTGGGTCAAGAAGAAGGGCGGGCACCGCCGGTTCCGCGAGAGCTACTGGGAAGTGCCGCGCAAGAACGGGAAGTCTGTTGTCGCCGGCGGTGTGGGCATCAGCATGTTCGTTGCAGACGGGGAGTTTGGCGCCGAGGTGTACGCCGGCGCGACAACCGAGAAGCAGGCGTGGGAGGTGTTCCGGCCGGCCAAGCTGATGGTCAGTAAGTCGCCCATGCTGGTCGAGGCCGCCGGCATCGAGGTCAACGCCTCGAACATGAACATTCCCGCGGACTTCAGTCGCTTCGAGCCGCTGATTGGCAACCCAGGTGACGGCGCTTCACCAAGTTGCGCAATTGTCGACGAGTATCACGAGCACCCGACTTCGGCCCAGTACGACACCATGCTTACCGGCATGGGCGCCCGTCGGCAGCCGCTGATGTTCATCATCACCACGGCGGGTGCCGACATTGAAGGGCCGTGCTACGACAAGCGCCGTCAGGTTGTAGAAATGCTGGCTGGAACCGTGCCCGACGAAGAGCTCTTCGGCTGGATATGGACGCTGGATGAAGGCGACGACTGGACAGATCCGAAAATGCTGGCCAAGGCCAATCCTAATCATGGGGTTTCGGTGTTCCAGGAGTACCTGGAGAGTCAGCAAGCCAGGGCAATTCGCTCGGCTCGCTTCGCGAATACCTTCAAAACCAAGCACCTCAACCTCTGGGTAAGCGCGAAGTCCGGTTTTTTCAACATGGAGGACTGGAAATCGTGCGAAGACACCACGCTCACGCTAGAGCAATTCGAGGGTCAGGAGTGGAATGCCGGCTTCGACTTGGCGCGAAAGCTGGACATGAACTCTCGGGCGCGACTTTTCTGGCGTGTCATCGATGGAAAAACTCATTACTACAGCGTGGGCCCCAAGTTCTGGGTGCCATACGACACCGTCTATCACAGTGACAACAAACGCATGACGGAGCGTTTTCAAGCGTGGATCAACTCTGGTCATCTGGAGGTCACGGACGGTGCAGAGATCGACTATCGGGAAATCCTCGAGGACACGAAGGAAGCCAATCATCATGCGCCGCTTCGGGAGTCCCCAATCGATCCTCATGGGGCGACAGGTTTGAGCCACGATCTCGACGACGAAGGTTTCAACCCGATCACCATTACTCAGAACTACACAAACATGTCGGACCCCATGAAGGAACTGGAGGCGGCCATCACCGCAGGCCGGTTTCATCATGACGGTAACCCGATCATGACCTGGTGTATCGGTAACGTGATCGGCAAAAACCTGCCAGGTAACGATGACGTTGTCCGCCCGATTAAGCAGGGCGACGACAACAAGATAGATGGCGCGGTGGCGCTGATCATGACGATAGGCCGGATACTCGCGAATGCGGATATCCAGGGTTCTGTCGACGACTTCCTATCCAGACCGATGAGCATGTAA	MTKAAHANVDKAMAWARSVLRGKVPACRYIHQAIQRHFDDLAASRKRAFRFKFDPAKAEKKLKLIQLLPHTKGEWAFKRQLISLEPWQLFGLAVTFGWVKKKGGHRRFRESYWEVPRKNGKSVVAGGVGISMFVADGEFGAEVYAGATTEKQAWEVFRPAKLMVSKSPMLVEAAGIEVNASNMNIPADFSRFEPLIGNPGDGASPSCAIVDEYHEHPTSAQYDTMLTGMGARRQPLMFIITTAGADIEGPCYDKRRQVVEMLAGTVPDEELFGWIWTLDEGDDWTDPKMLAKANPNHGVSVFQEYLESQQARAIRSARFANTFKTKHLNLWVSAKSGFFNMEDWKSCEDTTLTLEQFEGQEWNAGFDLARKLDMNSRARLFWRVIDGKTHYYSVGPKFWVPYDTVYHSDNKRMTERFQAWINSGHLEVTDGAEIDYREILEDTKEANHHAPLRESPIDPHGATGLSHDLDDEGFNPITITQNYTNMSDPMKELEAAITAGRFHHDGNPIMTWCIGNVIGKNLPGNDDVVRPIKQGDDNKIDGAVALIMTIGRILANADIQGSVDDFLSRPMSM				NA	NA	NA	NA	NA
D1-36_00749	1272			hypothetical protein	ATGGCAGAGACCGACTACAGCATTGACCTGCGCACCCGCAGCCCCTTTTGGGCGCGCATGGCGAGCTTCTTCGTCGGCGGACGGCTCGTCACTCCCGAGAAAGGTTCGCAGACTGGGCCGGTGTCAGCATCCGGTGTGGTGGGTGACTCAGTCGTCAACGATGAGCGCTCGTTGCAGATATCTACGGTTTTCGCCTGCGTCCGATTGATCTCGAGTGTTACGGCTTGCATGCCCTTGGACGTATTTGAGACCAAGGGGGATAACCGAAAGAAGGTTGGTTTGGACAATCCGTTGGCGCGACTTCTGCGATACAGCCCGAATCAATACATGACGGCGTTCGACTTCCGCGTTTCGATGACCATGCAGCTTTGCTATTACGGCAACGCTTACGCCTTGATCGAGCGGAACAGCGTCGGCGACGTGATAAGCCTCGTTCCCCTCATGTCGGTAAACATGGATGTCCGACTCGAAGGGAAGCGAGTTGTCTACCGGTACCGCCGTGACAGCGAATATGCCGACTTCAAACAGAGTGAAATTTTCCACCTCAAGGGCTTTGGATTCAACGGACTGGTCGGTCTTTCGCCTATCGCATTTGCCGCCAAGACCGCCGGCGTAGCGGTGGCGATGGAGGATCAGCAGCGCGACTTCTACGCGAATGGTGCGAAGTCTCCCCAGTTGCTGATGACGGGGGAAGGGAAGGTCCTCAACAAGGACCAGCGAGCCCAGGTTGAGGAAAACTTCAAGGAAATATCCGGCGGCCCAGTCAAGAAACGACTGTGGATTCTGGAGGGTGGTTTCACGACGCAAGCCATCGGTGTGAGCCCGCAAGATGCCGAAACAATGGCTGCAAGGAAATTTCAAGTTAGCGAACTTGCGAGATTCTTTGGTGTGCCACCGCACCTGGTGGGCGACGTTGAAAAGTCCACAAGCTGGGGGTCAGGCATTGAGCAGCAAAACCTCGGGTTTCTTCAGTACGCACTCGATCCCTACTTGGAGATTTGGGAAGGCTGCATTCTTCGCTGGCTTGTAAAGCCCCAAGACCTAGGCGTGATACACGCCGAGCACAACCGCGACGGCCTGCTGAGTGGTGATTCTACCGCCCGTGCGAATTACATGAAGACTTTGGTAGATACGGGCCTTCTGACTATCAACGAGGGAAGACGGGTGAACAACCGGCCTCCAGTGCCAGGCGGTGATGTTGCGACCCGTCAATCACAAAACGTACCGCTTACCCAACTCGGCCAAACGAACCCCGCACCCAGCGGGGTTTAG	MAETDYSIDLRTRSPFWARMASFFVGGRLVTPEKGSQTGPVSASGVVGDSVVNDERSLQISTVFACVRLISSVTACMPLDVFETKGDNRKKVGLDNPLARLLRYSPNQYMTAFDFRVSMTMQLCYYGNAYALIERNSVGDVISLVPLMSVNMDVRLEGKRVVYRYRRDSEYADFKQSEIFHLKGFGFNGLVGLSPIAFAAKTAGVAVAMEDQQRDFYANGAKSPQLLMTGEGKVLNKDQRAQVEENFKEISGGPVKKRLWILEGGFTTQAIGVSPQDAETMAARKFQVSELARFFGVPPHLVGDVEKSTSWGSGIEQQNLGFLQYALDPYLEIWEGCILRWLVKPQDLGVIHAEHNRDGLLSGDSTARANYMKTLVDTGLLTINEGRRVNNRPPVPGGDVATRQSQNVPLTQLGQTNPAPSGV				NA	NA	NA	NA	NA
D1-36_00750	663			hypothetical protein	ATGTCCAATATTCAAAAGACCTTGGCCTTTGATCAGGTCGAGATCAAGTTCGATTCGTCTGGAAAAACGGGGACGTTCGAGGGCTACGCGAGTGTCTTCGGCGTGGTCGACAGCGATGGCGACATCATCATGCCTGGCGCTTTCAAAAAAGCGCTATCAAGCCAAAGCCGTCAGGTTGGAATGTTCTTCAACCATCGCACCTGGGAGCTTCCTGTAGGCAAATGGCTGTCGCTGGAGGAGGACAGCAAGGGCCTGCTTACCCGTGGCGAATTGACCCCGGGGCTATCGATGTCTACCGATCTACGCGCCGCTATGGAGCACAAGACGGTTGAAGGGATGTCTGTCGGATTCACGGTCCTGAAGGACGGCTTCGACCTGATCGGCACCGGGCGCGCCTTCAAAAGTGTGCAAGACCTGCGTGAGATCAGCATCTGCACCTTCCCAGCCAATGAGCAGGCAACCGTCGAGTCCATGAAGAGCCTGGAGTCGATCACCACTATTCGTGATCTAGAGCACTGGCTGAGGGATTCGGCCGGACTTTCTAAGTCGCAAGCCCTGGGCTTCATTGCCCGGATCAAGTCCGCAGTTCGGAGCGATTCCGAAGGTGGCGAAATCACCGCGATTCTCAATCGCCTCAAAACCTTCCCAACTGTAGGAAACTGA	MSNIQKTLAFDQVEIKFDSSGKTGTFEGYASVFGVVDSDGDIIMPGAFKKALSSQSRQVGMFFNHRTWELPVGKWLSLEEDSKGLLTRGELTPGLSMSTDLRAAMEHKTVEGMSVGFTVLKDGFDLIGTGRAFKSVQDLREISICTFPANEQATVESMKSLESITTIRDLEHWLRDSAGLSKSQALGFIARIKSAVRSDSEGGEITAILNRLKTFPTVGN				NA	NA	NA	NA	NA
D1-36_00751	1164			hypothetical protein	ATGTCCGAATTGGCCCAGATCCAAAAGGCAATCGAAGACGCGCAAACGAACATGACCCAACTGTTCGAGGCGCAGAAGAAGGAAATCACCGAGACCGGCGCGATCAGCAAAAAGCTGCAAACCGACCTCCAAACCGTTCAAGAAGAACTGACCAAGTCCGGAACCCGACTGTTCGACCTCGAGCAGAAGCTGGCCAGCGGTAACCTAGACAACCCCGAAACCAAAAAGTCATTCGCCGAGCAGACCGCGCTGGATCTGCAAAAGTCCTGGGATGGAAAGTCGTCGGGCAAGGTTGACGTCAAGAGCTTCAACAAACAGCTCGGCAGTGGTGCAGGTTCTGCTGGCACCCTGATTGAGCCGCAGCGCAACGCCGGTATTTTGATGCCAGGCCTGCGCCGCCTGACCATTCGCGACCTGCTCGCCCAAGGCCGCATCAGTTCGAACTCGCTGGAATATGTTCGGGAGAACATTTTCACCAACAGTGCAGCGCCAGTCGCAGAGGGCACGCTGAAACCAGAGTCCAACCTGACCTTCACCAAGGAAACCGCGAACGTCAAAACTATCGCCCACTGGATCCAGGCATCTCGCCAGGTCATGGACGATGCACCGATGCTCGAGTCCTACGTAAACAATCGCCTGCTATTCGGCCTCGCGCTGGTCGAAGAAGGTCAACTGCTGAATGGCGACGGTACCGGCGACAACCTCGTCGGCCTGAACACCGTTGCCACCGCGTACGACGCAACCCTGAACGTCACCGGCGATACCCGTGCAGACAAAATCGCTCACGCCATTTTCCAGACCAGTGAGTCAGAGTTTGAAGCCTCCGGCATCATCCTTAACCCTCGCGATTGGCATGCGATCGCTCTGCTGAAAGATGCCGAGGGACGCTACATTTTCGGCGGTCCGGCTGCTTTTGCTGCGAAGGTGATGTGGGGCTTGCCGGTCGTAGCGACCAAGGCCCAAGCATTGGGCACCTTCACTGTCGGCGGCTTCGACCTGGCTTCCCAAGTCTGGGACCGCATGGATGCAACCGTTGAAGTAAGCCGCGAAGACCGCGACAACTTCGTGAAGAACATGCTGACCATTCTTTGTGAAGAGCGTCTGGCCCTGGCGCACTACCGGCCAACCGCGATCATCACCGGTCCTTTCGCCACCGCACCGTAA	MSELAQIQKAIEDAQTNMTQLFEAQKKEITETGAISKKLQTDLQTVQEELTKSGTRLFDLEQKLASGNLDNPETKKSFAEQTALDLQKSWDGKSSGKVDVKSFNKQLGSGAGSAGTLIEPQRNAGILMPGLRRLTIRDLLAQGRISSNSLEYVRENIFTNSAAPVAEGTLKPESNLTFTKETANVKTIAHWIQASRQVMDDAPMLESYVNNRLLFGLALVEEGQLLNGDGTGDNLVGLNTVATAYDATLNVTGDTRADKIAHAIFQTSESEFEASGIILNPRDWHAIALLKDAEGRYIFGGPAAFAAKVMWGLPVVATKAQALGTFTVGGFDLASQVWDRMDATVEVSREDRDNFVKNMLTILCEERLALAHYRPTAIITGPFATAP				NA	NA	NA	NA	NA
D1-36_00752	201			hypothetical protein	ATGATCAAGATTCGCGCGTTGCGCCAGTTTTCACACTATCACGCCGGTAACTTCAGCCAGTTCGAGACCCGAGAGGTTAAGGAAGAATATGCCGAGGCACTGATCGGAATGGAGTTGGCGGAGTACGTCGATGGACCTGCGGCGAGATCGGAGTCAGGCCACGAAAAAGTGCCGCCCAAGAAACCAGGTACTAAAAAATGA	MIKIRALRQFSHYHAGNFSQFETREVKEEYAEALIGMELAEYVDGPAARSESGHEKVPPKKPGTKK				NA	NA	NA	NA	NA
D1-36_00753	348			hypothetical protein	ATGAGCGTAGCCCTTGCGGAACTGCTCTCTATCGAGTTGATCCGCAGGCATCTGCGCGTTGACCATCTCGACGAAGACGACCTGATCCTGCTGTATGCGGAGTGTGCTCTGGCATGGGCTCTTTGGTACTGCGACAACCCGAACCTGGTCGCTGCTCAGGACTTTCCAGCAAGCTTCAAGGGTGCTCTCCTGCTGCTTATCTCCCACTCGTATGCAAATCGTGAAGCGGTGGTGCTCGGTAGTTCAGGGACGGATGTTGCGACCTTGCCCCTCGGGGTTGAAGCGCTTCTATGGTCCTCAAGGAATTTCAGAGGGCCGCCTGATCCTGACCCTGAAACTCAACCGTAG	MSVALAELLSIELIRRHLRVDHLDEDDLILLYAECALAWALWYCDNPNLVAAQDFPASFKGALLLLISHSYANREAVVLGSSGTDVATLPLGVEALLWSSRNFRGPPDPDPETQP				NA	NA	NA	NA	NA
D1-36_00754	363			hypothetical protein	ATGGCTTATAGAGATTTGGGGGCGGGCGAACTGGACCGGCGCATCGTGATCCGCCAGCGCTCCGACCTTCCGGCAAGCGACATGGGCCTCGACTCTGTGATTCTCGAGCCGACACCTCGCTGGGCGAGAATCGAAGCCGTAGGCACTGCTGTTTATACGGAAGGGGTTCAAACTGATAACAAGATCACCCACAGGATATTCATTCGATACATGACTGGGATCACTACCCAGCATGAGATCGTCGAAGGCGGTGTGATCTATCGTGTGAAGCGAAACGCCCAGATGAATGGGCGAAAGCGCTTCACCATCATCGAAGTAGAAGAACTCGGGCCGGCCAAGGCTGGAGGGGGCATCTATGTCTAA	MAYRDLGAGELDRRIVIRQRSDLPASDMGLDSVILEPTPRWARIEAVGTAVYTEGVQTDNKITHRIFIRYMTGITTQHEIVEGGVIYRVKRNAQMNGRKRFTIIEVEELGPAKAGGGIYV				NA	NA	NA	NA	NA
D1-36_00755	522			hypothetical protein	ATGTCTAACTCCGCCTCGATCGACGGATACCTGCACGTCGAGGGTTTCGACAACTTCGAGCGCGATGCCTTCGACAAGCGAAAGATCCGGGCGGGCATGCGTAAGGTCGGCCTGCTGATCACCCAGCGCGCCCAGATGAACCTGGTGCTGGGCAAAGGCCAGGAGGGCTACCCAATCAATCGGACCGGGGCGACGGTCGAATCGGTTTCCTTCAAGGTGTCCCGCTCCGGCTTCCTGGTGCGGATCTCCCCAACCAAAACGTCGGCCATGGAAGAGTTCTATCCGGCCTATCTGCACTACGGCGTGAAGAAGGGCAGGAAGCTCGGAAAGCTCGCTCCCGGCCAAGGCAAAGGCCGTTCCAATCGAAGGGCAAAGGGAGTTAGAGCTGCTGCCCTGGCTGAGCGCGCTGCTGGGGAGTGGCGCATCAAGCCTCGCGACAACTACATGGCCGACGCCCTGCAGGACTCGGCCTCGCAAGTTCAATCGATTCTCTCGGCAGCATTCGCCGCCGCCCTGGGCTGA	MSNSASIDGYLHVEGFDNFERDAFDKRKIRAGMRKVGLLITQRAQMNLVLGKGQEGYPINRTGATVESVSFKVSRSGFLVRISPTKTSAMEEFYPAYLHYGVKKGRKLGKLAPGQGKGRSNRRAKGVRAAALAERAAGEWRIKPRDNYMADALQDSASQVQSILSAAFAAALG				NA	NA	NA	NA	NA
D1-36_00756	591			hypothetical protein	ATGAAACTGAACCCCATCGTTGCCCATCTGCGGCTGACGTGCCCAACCTTTGCCGGCCGAGTTTCTGGCGGTATCGACTGGGACGCTGTCGTTGACAGTGCCCAGCTCGCGCTACCGGCTGCTTACGTCATCGCCACGGCGGATGCGGCAGAGCCGAGCAAAGCGCAGAACATGGTGCTTCAGGCCATCACTGATCAGTTCAACGTGGTGATCGTCCTGGCAACCTCCGACGAGCGCGGGCAAGACGATAACGACCTGCTGCACGACATCCGTGCCGAGCTGTGGCGCTCACTGGTTGGCTGGGAGCCTGGTCCGGAATACAACCGCATCGAATACGGAAAGGGCGCGTTACTGCATATCAGTCGGGCCCGCGTCGTTTATCAGTTCACCTTCTTTTCCGAATTCCAGCTTGGCCGAAACCATGCGAGCGACCCGCCAGAGACTTGGCAGGAATACGTGCTGGACGGCCTGCCGGGCTTCACCGGCGCAAACATCAACATGGACTGCATCGACCCGGCAGACCCGAACCTGAAACGACCCGGCCCGGACGGGCGCATCGAAGCGCAATTCACTGGAGACGTAACACCATGA	MKLNPIVAHLRLTCPTFAGRVSGGIDWDAVVDSAQLALPAAYVIATADAAEPSKAQNMVLQAITDQFNVVIVLATSDERGQDDNDLLHDIRAELWRSLVGWEPGPEYNRIEYGKGALLHISRARVVYQFTFFSEFQLGRNHASDPPETWQEYVLDGLPGFTGANINMDCIDPADPNLKRPGPDGRIEAQFTGDVTP				NA	NA	NA	NA	NA
D1-36_00757	207			hypothetical protein	ATGACCAATCGCATCACTGTGGTGCCGGCCTCTGGCCGTTCTGTGCCCGACCCCGAGGCCGGCGACTTGCTGCCCAAGGAAGGCCGCGAGGTTCCAGACAACGCATGGTGGCGCCGCCGTCAGGCCGATGGCGACGTGACTCTGAAAGCCGACAAGGCCCCATCCACCAAAGCCGGCGCGCCGGCGAAAGCTGAGGAAGCGCAATAA	MTNRITVVPASGRSVPDPEAGDLLPKEGREVPDNAWWRRRQADGDVTLKADKAPSTKAGAPAKAEEAQ				NA	NA	NA	NA	NA
D1-36_00758	1497			hypothetical protein	ATGGCTATCGGATTCAGCAACATCCCGGCCGATATCCGGGTGCCGTTGTTCTACGCGGAAATGGATAACTCGGCGGCCAACAGCGCATCGTCGGCCATGCGCCGCTTGATCGTCGGCCAGGTCAATGACAACGCGACCAGCGAAAGCATCGGCCAGTTGGTTCTGGTATCCAGCGTGGCGCTGGCGAAGGAAATCGGCGGCCAAGGCTCCATGCTAGCCGCGATGTACGAAACCTGGCGCAAAGTTGACCCGATCGGCGAAATCTGGTGTCTGCCGTTGCAGAACGACACCGGTTCCGTGGCGACGTCGACCGTCACCATCACTGGAGCGGCGACCGAGGCTGGCCTGCTGAACCTGTATGTCGGTGGTACCCGGGTGCAGTCGGTCGTAGCATCGGCGGCAACCCCAACGGTGGCCGCAGCTGCCTTGGCGGTGAAGATCAACGCAACGCCAGACCTGCCCGTTACCGCTGCGGCGGTCGCCGGTGTGGTTACCTTGACCTGCAAATGGACGGGCGAAAGCGGTAACGACATCTCTATCGCCATGAACCGCCTGGGTAAGTCCAACGGCGAGATGACCCCGGCTGGCCTGACGGTCGTCACCACAGCAATGGCCGGTGGCGTCGGCGTGCCGGATCAGGTGGACGCCGCGGCGGCCCTGGGCGATGAGCCGTTCGAATTCATCTGCATGCCATGGACCGACACGACCAGCCTGAACGTCTGGAAGGACACGATGGACGACAACACCGGTCGCTGGTCCTGGGCCAAGCAGTTGTTCGGCCACGTCTACAGCGCCAAGCGCGGCACCATCGGCACGCTGGTAGCGGCAGGCCAGGCGCGCAACGACCAGCACGTCACCATCCAGGCCGTCGAGGCGGGCGTTCCGCAGCCGGTATGGGTGCAGGCGGCCGCATTGGCTGGGCGCACGGCCGTGTTCATTTCAGCGGACGCCAGCCGGCCCACCCAGAGCGGGAGCCTGCCGGGCCTGGACTCAGCGCCGGCCAGTGAGCGGTTCACCCTGACCGAGCGTCAGTCCTTGCTGACCTACGGCATCGCCACAGCGTATTACGAGGGCGGTTACGTGCGGATTCAGCGCTCGATCACCACCTACCAGAAAAACCCTTTCGGCCAGGCGGATAACTCCTACCTGGACAGCGAGACCATGCACCAGTCGGCGTTCATCATCCGCCGGATGCGCAGCGTGATCACCAGCAAGTACGGACGCCACAAACTGGCGAGCGACGGCACTGCGTTCGGCGCCGGCCAGCCGATCGTCACCCCGGCGGTTATCCGTGGAGAGCTGATCGCGCAATACGCCAAGCTCGAGCTGGAAGGACACGTGGAGAATGCCGAACTGTTCGCGCAGCACCTGGTGGTGGAGCGCGACACGCAGGACCCGAGCCGGGTCAACGTGCTGTTCCCGCCGGACTATATCAACGGCCTGCGCGTCTTCGCCTTGCTCAACCAGTTCCGCCTGCAATACGACGAAGCGGCGTAA	MAIGFSNIPADIRVPLFYAEMDNSAANSASSAMRRLIVGQVNDNATSESIGQLVLVSSVALAKEIGGQGSMLAAMYETWRKVDPIGEIWCLPLQNDTGSVATSTVTITGAATEAGLLNLYVGGTRVQSVVASAATPTVAAAALAVKINATPDLPVTAAAVAGVVTLTCKWTGESGNDISIAMNRLGKSNGEMTPAGLTVVTTAMAGGVGVPDQVDAAAALGDEPFEFICMPWTDTTSLNVWKDTMDDNTGRWSWAKQLFGHVYSAKRGTIGTLVAAGQARNDQHVTIQAVEAGVPQPVWVQAAALAGRTAVFISADASRPTQSGSLPGLDSAPASERFTLTERQSLLTYGIATAYYEGGYVRIQRSITTYQKNPFGQADNSYLDSETMHQSAFIIRRMRSVITSKYGRHKLASDGTAFGAGQPIVTPAVIRGELIAQYAKLELEGHVENAELFAQHLVVERDTQDPSRVNVLFPPDYINGLRVFALLNQFRLQYDEAA				NA	NA	NA	NA	NA
D1-36_00759	348			hypothetical protein	ATGGGTCAAAAAGTAGCGGGCACCGTCTACGTCAAAGTGGACGGCGAACAGCTGATCATCACCGGTGGCGCCGAAGCCCCGTTGATGGACGTGAAACGAGAAACGGTCTACCCGGGCTATTACAAGGAAGAGGCAATGACCCCTTCCCTGAAGGTGACAGCGGTGCACACGCCGAACTTCCCGATCAAGGCGCTCACCAACGGTCGCGACATGACCGTGACCTGCGAATTCAGCAACGCATCGGTCTATGTGTTGGCCGGCGCCTACCTGGTGGACGAACCATCGTCGAAGGGCGACGACGGCACCATTGAACTGCAATTCGACGGCATCAAAGGGAGCTGGCAATGA	MGQKVAGTVYVKVDGEQLIITGGAEAPLMDVKRETVYPGYYKEEAMTPSLKVTAVHTPNFPIKALTNGRDMTVTCEFSNASVYVLAGAYLVDEPSSKGDDGTIELQFDGIKGSWQ				NA	NA	NA	NA	NA
D1-36_00760	297			hypothetical protein	ATGAGTCACGTTCAGAAACTTCAGGTCGCGATCGAGGCCCACGGTGAGCCGCTGACCGAGCTCTCCTTGCGCCGGCCCACCGTGCAGGAAGTGCGGACGATCAAGGCGCTGCCGTACAAGATCGACAAAAACGAAGAAGTCAGCCTGGACATGGACGTTGCCGCGAAATACATCGCGGTCTGCGCCGGCATTCCACCGTCGTCGGTCAACCAGTTGGACCTGTCCGACCTGAACGCCCTGAGTTGGGCGGTTGCCGGTTTTTTCATGAGTGCGGCGTCGCAGCCATCGGCGACCTGA	MSHVQKLQVAIEAHGEPLTELSLRRPTVQEVRTIKALPYKIDKNEEVSLDMDVAAKYIAVCAGIPPSSVNQLDLSDLNALSWAVAGFFMSAASQPSAT				NA	NA	NA	NA	NA
D1-36_00761	2016			hypothetical protein	ATGGCGGATAAGTTTCAGCTCAAGGCGTTGATCACCGGCGTCGACAAGCTATCGCCGACGCTGGCGGGCATTCGCAAAAACGTTGCGGGTTTTCGCAAGCAGATGAACAGTTCGGGCCTGGGCAACATCGGCTTCAAGGATCTGGTCCAGGGCGGCGCGTTTGCTGCGCCATTCATTGCCGGGGCCAGAGCGGCGATGGAATTCGAAACGGCCATGGCCGACGTTCGAAAAGTCGTCGACTTCGAGACGCCCAAGCAATTCGAGCAGATGGGACAGGATGTCCTGGACATGTCCGAGCGGCTGCCAATGGCGGCTACTGGCATCGCGGCTATCGTCGCCGCTGGCGGCCAGGCCGGATTCGCCGCAGGTGAGTTAAGGCAATTCGCTGAAGACGCGGTGAAGATGGGTATCGCGTTCGACCAGACCGCCGAGCAATCGGGCGACATGATGGCGAAGTGGCGGACGTCCTTCAAACTGACGCAGCCTGAAGTCGTAAAGCTGGCTGATCAGATCAACTATTTGAGCAACGTTGGGCCGTCTTCGGCGGCGCAGATCTCCGACATTGTGACCCGCATCGGTCCGTTGGGCGCTATCGCTGGTCTTGCCTCCGGACAGATCGCCGCCATGGGCGCGACCCTTGCGGGTGTGGGCGTGCCCAGCGAGGTCGCCGCCACCGGCATGAAGAACTTCATGCTGGCCCTGACCAAGGGTAGCGCTGCTACCAAGCAACAGGCCGAGGCATTCAGGTCGCTGCGCCTGGATGTGAAGGATGTGTCCAAGAGCATGCAGAAGGATGCCCAGGGCACCATCGAGGATGTGCTTGAGCGCATCGCGAAGGTTGACCCAGCCAAGCAGGCTGGCCTGCTGACTCAGTTGTTCGGTAGCGAGTCGGTGACCGCGATCGCTCCGCTGTTGACCAACCTCGATCTTTTGAAGAAGAGCTTCGACGCGGTGGGTGCCGGCGGCAAATTTGCCGGCTCCATGGAAGCAGAGTTCACCGCGCGCTCCAAGACCACAGCAAATGCCATGCAACTGCTGACCAACAAGGTCAATCGGCTTGGCGTAGAGGTGGGTAGCGCTTTGCTCCCGCCATTCAACGATTTCATGACGCTGGTAGGTCCGCTCGTTTCTGAGCTTGCTTCGCTTGCCTCTCAGCACCCTGGGTTGATCAAGGGCGTGCTCGGCGCGGCGGTGGCCTATGGCGCGCTGCGTGTCGCGGTCACCGCGGCAATCTTTGTCATGAAGCTGCTCGACGGAACCATGAAGCGATCCATTGTGGGCTTGGCTGTCATGGGCATCGCGTTGGCAGCTGGGGTGCTGATCGCCAACTGGTCAACCGTCGCGCCGTATTTTCAGCGCGTTTGGCAGCTTATCCAGGTGCCGGTGCTCGCGGCTTGGGATCTGTTGAAGGCCTTCGCAAATTGGGGCCCCATCGCGCTCATCAGAGAGAACTGGGAACCACTGACCGAACTGTTCGGTGCTACCTGGAACCTACTCATGGCGCTCTCAACTCCGGTGATGGACTACCTCAAGACCATGTTCGACTGGTCGCCTCTGGGGATGATCATCAACAACTGGGGCTCGATCACGGCTTGGTTCCAGCAGCTCTGGGAAAAGCTGCGACCTATCATCGAGCCGATCATGAAGTGGTTCGGCGGAGGGGAGGGTGGCGAAGGCATCATCCAGAACGCCACGGACAAGGTGAACGCTTTCACTGAAGCCCAGCAAAAACGGAACGCTGGCGCCGGAGGCGGTACCGGTGAGTTGCTGCTGGCGGACGCCACTCAATCAGCCGCCGCCCGCCAAGCCATGAACAATCAGGCGTTCGGGATCAGCAACAACCAGCTCCTACAGCAGACCGCAGCCACCAACGGGCAAAAGCTCAACGGCGAACTCAACATCAACCTGAACGGCGCACCGCCGGGCACGACGATCGAGCAGCCGAAAACCAACCAGCCGGGGCTGAACATCAAGCCCAACGTCGGTACCCGTACCGTGGGCGTCATGAAGGGGTAA	MADKFQLKALITGVDKLSPTLAGIRKNVAGFRKQMNSSGLGNIGFKDLVQGGAFAAPFIAGARAAMEFETAMADVRKVVDFETPKQFEQMGQDVLDMSERLPMAATGIAAIVAAGGQAGFAAGELRQFAEDAVKMGIAFDQTAEQSGDMMAKWRTSFKLTQPEVVKLADQINYLSNVGPSSAAQISDIVTRIGPLGAIAGLASGQIAAMGATLAGVGVPSEVAATGMKNFMLALTKGSAATKQQAEAFRSLRLDVKDVSKSMQKDAQGTIEDVLERIAKVDPAKQAGLLTQLFGSESVTAIAPLLTNLDLLKKSFDAVGAGGKFAGSMEAEFTARSKTTANAMQLLTNKVNRLGVEVGSALLPPFNDFMTLVGPLVSELASLASQHPGLIKGVLGAAVAYGALRVAVTAAIFVMKLLDGTMKRSIVGLAVMGIALAAGVLIANWSTVAPYFQRVWQLIQVPVLAAWDLLKAFANWGPIALIRENWEPLTELFGATWNLLMALSTPVMDYLKTMFDWSPLGMIINNWGSITAWFQQLWEKLRPIIEPIMKWFGGGEGGEGIIQNATDKVNAFTEAQQKRNAGAGGGTGELLLADATQSAAARQAMNNQAFGISNNQLLQQTAATNGQKLNGELNINLNGAPPGTTIEQPKTNQPGLNIKPNVGTRTVGVMKG				NA	NA	NA	NA	NA
D1-36_00762	1257			hypothetical protein	ATGGCACGCAATTGGCGCGATGAACTGTTGCCGGCGTCGTTCCGTGGGATCAGTTTCTTGATCCCGCAGGCGTCGGTGCCGGTCGGCCAGAAGGGCCAGCTTCACGAATACCCGCAGCGGGACGAGCCGTTCTTTGAACAGCTCGGCAAGCAGGCCCAGGTGCACACAATGACGGCCTGGGTCATCGGTGATGACTGTTTCGAGCGGCGCGACAAGTTGCTTGAGGCGTTGCAGACCCCGGGCCCTGGTGAATTGGTCCATCCCTGGCTTGGGCGCATGCAGGTCAAGGTTGGCGATTGCAAGGTGTCCCACGAGCTGACCGCCGGCGGCATGGTCAGCTTTGACCTGACGTTCTACCCGGACAAGCCCCTGACGTTCCCGACGGCCAAGGTCAACAGCCAACAGCAAGTGGTGAAAGCTTCGGACAGCATGCTGGGATCGGCCTTGGAGCGGTACAAGCAGGCAATGGCGAAGGTTGACCAGGCCCGCCTGGGCCTGCTCCGTTTGCGCAATAGCCTGTCGAACGTCTACGCCGTCATCCAGCAGCAGTTCGCACCTTTCGTGGGGGTGTTCACCAACCTGACAGGGTTCGCCCAGTCATTGATGAATTCACCCGGGGCGCTGTCGTCGCTGTTCTCCAGCTACTTCAGCGACTTTTCGTTGCAGGATAGCGCTTTCACTGACACCAGTTCGAGCTACAAGAACGCGGTGGCCACCACCACACAGCAAACCGAGGCCGTGACCGCCATCAACACCGTGAGCCAGTCCGGCGGCATCGACTCGGCGGCCGCAGCCCAGGCGACCGCGAATCTGGTACAGGACGCGCTGTTGGTTCAGATGGCGCTGATCATCAGCGAAATGCCCATCGCCTCGCAGCCCGTCTCCAGCGGGTCAACGCCCAGCGTTGAGCAGCAGGCCATCTTGCCGGTGGTTCGGCCAGAGGTGCCCGTGGCGGACGACGTGCTACAGCTGCGCGACAGCCTCAGTGATGCGATTTTTGAAGCATCGCTGAAAGCCGATCCCGCTCATTACGTCGTGATGAACACGTTGCGCCAATCCCTAGTGAAACACCTGACGACGGTGGCCGAGTCTGGGGTGCGGCTGGTCGACATCACGCCGCCCGAAACCATGTCAACGCTGGTGCTGGCCTACCAGCGGTTCGGAGATGCCACCCGTTCGGCAGAAGTCGTGCAGCGCAATCGCATCAGGCACCCGGGCTTTGTTCCGGCGGCATCGATCAAAATCGCCCAGAGGTAG	MARNWRDELLPASFRGISFLIPQASVPVGQKGQLHEYPQRDEPFFEQLGKQAQVHTMTAWVIGDDCFERRDKLLEALQTPGPGELVHPWLGRMQVKVGDCKVSHELTAGGMVSFDLTFYPDKPLTFPTAKVNSQQQVVKASDSMLGSALERYKQAMAKVDQARLGLLRLRNSLSNVYAVIQQQFAPFVGVFTNLTGFAQSLMNSPGALSSLFSSYFSDFSLQDSAFTDTSSSYKNAVATTTQQTEAVTAINTVSQSGGIDSAAAAQATANLVQDALLVQMALIISEMPIASQPVSSGSTPSVEQQAILPVVRPEVPVADDVLQLRDSLSDAIFEASLKADPAHYVVMNTLRQSLVKHLTTVAESGVRLVDITPPETMSTLVLAYQRFGDATRSAEVVQRNRIRHPGFVPAASIKIAQR				NA	NA	NA	NA	NA
D1-36_00763	1116			hypothetical protein	ATGACCGAAGATCAGAACACCGTCAGCCTCACGGTTGACGGTCTGGATTATTCCGGCTGGAAATCGGTCGAGATCGCCGCCGGGCTCGAGGATCAGGCCCGGTCGTTCACCCTGAGCATCACCTGGAAGTGGCCGGGGCAGAACGTCTCGGTACCGATCCGGCAGGGTGCCAAGTGCCATGTGCGTATCGGCGGCGACCTGGTGCTGACTGGCTGGGTGTTTTCTTCGCCGATCGACTACGACGACAAGCAAATCACAACGACCATCAGCGGCCGTTCATTGACTGCCGATCTGGTGGACTGTGCGGCCGTGAACAAGCCTGGGCAGTGGAACAACCAGAGCGTTCTCACCATTGTCAGGGCACTGGCGGCGCCGTATGGGATATCCGTGCGCACAGAGATCCCCGAGGGGGCGAAGCTGTCGGACCACACCATCGAGCCCGGCGAGACGGTTTTCGAATCCATCGACCGCTTGCTGACGTTGTTCCGGGTATTCTCCACCGACGATGCGCGCGGCATGGCCGTGCTGGCCCGGCCCGGAAGTGAAGGCCGGTCCTTCGATCATCTGGAGGTTGGCAAGAACATCCTCACCGGTAGCGCGCCGCTGGATTTCTCCGGGGTGTTCTCCGAATACCAGGTGCTCGGCCAACGCTCGGGCACGGATGATGAGTTCGGCGCGGCGGCGGCAGAGGTGTCGGCTGTCCTGACGGATGATCGAACGACCCGTAAGCGGGTGCTGATCATTCAAGAGTCTGGGCAGATGACCAGCGAGCTTGCACAGGCCCGGGCCAACTGGGAGCGCGGTACCCGCATGGGCAAGGCGCTGACCACCACCTACACCGTCCAGGGTTGGCGTCAAACAAACGGGGCGCTTTGGAAGCACAACACCCTGGTGCGTGTGATCGACCCGATCATCGGCTTCGACCGCTGGATGCTGATCGCCCGGGTGACCTACACCCTGACCGACGCCGGCATGATCACGAAAATGGAAGTTGGCCCGCCGGACAGCTACGAGCCGGAACCGCATGACCCGCACAAGAACCGCAAGCTGAAGAAGGGCGGCAAGGCCGACAACTTCGAATACCTGATTCCCGCCGACTACGAGCCAAAACAATGA	MTEDQNTVSLTVDGLDYSGWKSVEIAAGLEDQARSFTLSITWKWPGQNVSVPIRQGAKCHVRIGGDLVLTGWVFSSPIDYDDKQITTTISGRSLTADLVDCAAVNKPGQWNNQSVLTIVRALAAPYGISVRTEIPEGAKLSDHTIEPGETVFESIDRLLTLFRVFSTDDARGMAVLARPGSEGRSFDHLEVGKNILTGSAPLDFSGVFSEYQVLGQRSGTDDEFGAAAAEVSAVLTDDRTTRKRVLIIQESGQMTSELAQARANWERGTRMGKALTTTYTVQGWRQTNGALWKHNTLVRVIDPIIGFDRWMLIARVTYTLTDAGMITKMEVGPPDSYEPEPHDPHKNRKLKKGGKADNFEYLIPADYEPKQ				NA	NA	NA	NA	NA
D1-36_00764	507			hypothetical protein	ATGACCGTGAAAAACATGCTGGCCCGCGGCACCGTGGTGCTCGTCGACGCCCTGAAGAAAATGCAGTCCTTGCAGATGCGCCTCACCGCCGGCGAACTGAAGGACAACGCCGAGCACTTCGAGCCCTACGGCTTCACCAGCAACCCGCTGGCCGGCGCCGAGGTGCTGACCGCCTTTATCGGCGGCGACCGCTCCCATGCCGTGGTGCTGGTCGCGGCTGATCGCCGGTACCGGATCCAGTCCATGAAGCCCGGCGAAGTCGCGATCTACACCGATGAGGGCGATAAGATCCACTTCAAGCGCGGCCGGATTATCGACATCGAAACCGGCACGCTGAACATCAAGGCCACGACGGCTGTGAACTTCGAGACGCCGGTGATTAACCAGACCGGCCAGATTGTCTCTGTAGGTGACCAGCTGGCCGGTGGCATCAGCCAGATCAACCACGTACACACCGGTGTCCAGGCCGGTAGCGGACAAAGCGGCGCGCCCGCTGCGGGGGGCTGA	MTVKNMLARGTVVLVDALKKMQSLQMRLTAGELKDNAEHFEPYGFTSNPLAGAEVLTAFIGGDRSHAVVLVAADRRYRIQSMKPGEVAIYTDEGDKIHFKRGRIIDIETGTLNIKATTAVNFETPVINQTGQIVSVGDQLAGGISQINHVHTGVQAGSGQSGAPAAGG				NA	NA	NA	NA	NA
D1-36_00765	399			hypothetical protein	ATGCTTACTCAAGCTTCCGTTGAATCCGCGCTGATTCGGGCGGTGGTGATCAGCCTGTACACCTGGCGCCGCGCTGATACCGATGACCCGGTAGACGATGACCAGTTGTACGGCTGGTGGGGCGACAGTTACCCGGCCATCGCCGACGACCGCATCGGCTCGCGCCTCTGGTTGCTGCGCCGGGTCAAGCTCACCGGCGCCACGCAGCGTGACGCGGAGTTCTATGCCGCGGAGGCGCTGCGCTGGCTGATTGATGACGGGCATGTCCTGGACGTTTCCGTCAGCAGCGACAGAGCGGACACCAACCGATTGAACCTCGGTGTGGTCCTGACCATAGCGGACGGCACGCGCCTGGAAATCCCATCTACCCCTACATGGCAGGTGATCTATGCCGTTTGA	MLTQASVESALIRAVVISLYTWRRADTDDPVDDDQLYGWWGDSYPAIADDRIGSRLWLLRRVKLTGATQRDAEFYAAEALRWLIDDGHVLDVSVSSDRADTNRLNLGVVLTIADGTRLEIPSTPTWQVIYAV				NA	NA	NA	NA	NA
D1-36_00766	1038			hypothetical protein	ATGCCGTTTGAAACGCCTTCGTTGCCGGTGCTGGTCGACCGCACCCAGAGCGACCTTGCCAGCGACACGCTGCGCCGTTCGGACGCCCAGGTGCTGGCGCGTACGCTGGCCGGTACCGCTTATGGCCTGTACGGCTATTTGGATTGGATCGCTGAACAGATCCTGCCCGACCGGGCGGACGAAGAGACACTGGAGCGGATTGCCCAGTTGCGCCTGACCCAGCCGAGAAACCCCGCGCAGCCTGCGTCGGGGACGGCTTCGTTCACCGCTGTGGCGGGCGCCGTGGTTGATGCTGAAACTGTGCTCCAGGCGGCAGACGGGCGCACCTACCGGGTAACGGCAAACGTCACCACCGTTGCGGGGCTCAACACCGTGGCGGTGGAAGCGGTAGACGCCGGAACCCTGGGTAACGCAGACGTCGGGCTGGCGCTGACGCTGGTTCAGCCCGTGGCAGGCGTTACCAACAGCTTCACCGTTCTGGCGCCTGGCCTCACTGGCGGCATCGCGCAAGAGAGCATCGAGTCGCTTCGTGCCCGGGTCATTCGCTCGTACCGCGTCATCCCGCACGGCGGGTCGGCGGCAGATTACGAAACCTGGGCGCTTGAGGTGCCAGGCGTTACCCGGGCCTGGTGCCGAGGAAACTACGTTGGACCCGGAACGGTGGGCCTGTTCGTCATGCGAGACGGTGACGACGTGCCCGTGCCCAATCCTGCCCAGCTTGCCGAGGTGAAGGACTACATCGAGCCGCTTCGCCCTGTGACTGCTGAGCTGTACGTGCTGGCGCCCGTTGAGGTGCCGGTGACCTACAGCATTCACCCGGTACCGGACACCACGGCGATTCGCGCGGCCATCCAGGCACAGCTTATTGACCTGCACGACCGTGAAGCCGGCCTGGGTGAAACCTTGCTGCTGACGCACATTGCCCAGGCCATCAGCGGCGCGTCCGGCGAAACGGACCACGACCTTGTGTCGCCTGTGGCCGATGTGCCGGCGGGCATCAACCAGTTGCTCACCTTCGGAGGCATCACATGGCTGTAG	MPFETPSLPVLVDRTQSDLASDTLRRSDAQVLARTLAGTAYGLYGYLDWIAEQILPDRADEETLERIAQLRLTQPRNPAQPASGTASFTAVAGAVVDAETVLQAADGRTYRVTANVTTVAGLNTVAVEAVDAGTLGNADVGLALTLVQPVAGVTNSFTVLAPGLTGGIAQESIESLRARVIRSYRVIPHGGSAADYETWALEVPGVTRAWCRGNYVGPGTVGLFVMRDGDDVPVPNPAQLAEVKDYIEPLRPVTAELYVLAPVEVPVTYSIHPVPDTTAIRAAIQAQLIDLHDREAGLGETLLLTHIAQAISGASGETDHDLVSPVADVPAGINQLLTFGGITWL				NA	NA	NA	NA	NA
D1-36_00767	600			hypothetical protein	ATGGCTGTAGCGCGAACTGCCGACCAATATCGGCAGCAGCTGACCGGTCTGCTGCCGTCCGGCCCCGCCTGGGATCCTGAGCTGGTGCCGGAAATCGCGCTGGTTCTCGCTGGCGTGTCGCAGGAGTTCGCCCGGCTCGATGCCCGTGCAGTGGACTTGTTGAACGAGATGGATCCGGCCTACGTGAGCGAGCTGGTGCCCGACTGGGAGGCCATCATGGGCCTACCTGATCCTTGCCTGGGCCTAACCCCCGCGTTTGATGACAGACGCCTGGCGGTTCGCCGTCGACTCGTCGAGGTTGGCGGGCAAAGCATCTCCTACTTCATCGACATAGCCGTCAGCCAGGGCTACCCCGACGCCACCATCACTGAACATCGAGCGCCCCGAATGGGGCGTTCTCGTTTCGGCGTCGCGCGCTTTGGTGGTTGGAACGCCCAGTTTATCTGGACCCTAAACACCGGAGGCCGCCAGCGTCTAGGCCGGCGTTTCGGCGCGAGTTATTGGGGCGAGCGCTTCGGCGTGAATCCAGGCAACCCGCTCGAATGCCAGATCCGGCGCGCGGCGCCAGCGCACACCGTTGTGCATATCAATTACAACTGA	MAVARTADQYRQQLTGLLPSGPAWDPELVPEIALVLAGVSQEFARLDARAVDLLNEMDPAYVSELVPDWEAIMGLPDPCLGLTPAFDDRRLAVRRRLVEVGGQSISYFIDIAVSQGYPDATITEHRAPRMGRSRFGVARFGGWNAQFIWTLNTGGRQRLGRRFGASYWGERFGVNPGNPLECQIRRAAPAHTVVHINYN				NA	NA	NA	NA	NA
D1-36_00768	1206			hypothetical protein	GTGGACTTTCCGAAAAGCGTGCCGAGCGTAGGCCTGGTAGATGGGAAATTTGTTGATGAGGACGTGGTAGCAGGAACACCCGGTTCGTTGATTCCTGCTCAATGGGGCAACGCTGTCACTGAAGAACTTCTGAACGTCATTGAGTCCGCCGGCCTAACCCCGGACGAAGACAACAACGCCCAGCTCTTGGCGGCCGTCAACTCGAAGATTGCTGCTGCGATTCCAGCAGCGCCGCCAGACGCGTCTACTACGGTCAAAGGGCTGGTCGAGCTCGCCACTAGTTTGGAGACCCAAACTGGGACGGATCCACAGCGTGTAGTCACTCCTTCAGCACTAAGTGCACGCACGGCCACCGACACGCGCACCGGCCTTGTTGAGCTGGCGACCAACTTAGAAACGCAGACCGGTACCGACCCCCAGCGAGCTGTGACGCCAGCAGGGCTCGCCTCTACTGCGACTACCTCAACGCTTGACGCGACAGTTGGAAAGCTCGCGCGTATCGGCGACTTTGGACTTGGCGGATCAGGCCCGGATGCGGCAAATGTGGACGCGATTACAGCAATGGGAGTGTATAGCGTATCCGCAAGCACGCCGGGCACGCTGCCATCTCCTGGAATGCTAGGGACATTGTTCCATTTGGAGCGAAACAGTTCTCTTGGGCGCGCTCAGATTTTTGTCGATTCGGCGGGCGCATTTTGGTACAGAAGCACTGTGTTCGGTACTGGCGCGTGGCGGAGCTGGTCTAACAATATGCCTGTTCAAGCAACAACATCTGTGGCGGGCATTGTTGAACTTGCCACGAGTGCAGAAACTACAGCGGGTGCAGATAATACGCATGTAGTGGTTCCAAGCGGCTTGCAGACAAAAATGTCTGGAGTTGTCTCAGGGCCATACCCGATTACTCCGGGGGCTCAAGCTGTTTTTAACCACAACCTCGGCGTAGTTCCGTTTATTGTTGAGTTCAGCTTTATTTGCATAAATGCTGAAGGTGGATGGTCGGCTGGAGATGTGGTCCATCGTGGTAACTGGTATCAGAACTCGTCAGGGACAGATATCTCAGTCGGGATATTTTGGTATGGAGAAACCTCCACCCAAGTTACATTTGGGGTTGGTTCTATAGCTATGCTGTTGCCTAGCAAAACCACCGGTTTACGGTTTTCTGCTACGGCTGCGAACTGGCGGTTCACTGCGAGGGTGATCGGATGA	MDFPKSVPSVGLVDGKFVDEDVVAGTPGSLIPAQWGNAVTEELLNVIESAGLTPDEDNNAQLLAAVNSKIAAAIPAAPPDASTTVKGLVELATSLETQTGTDPQRVVTPSALSARTATDTRTGLVELATNLETQTGTDPQRAVTPAGLASTATTSTLDATVGKLARIGDFGLGGSGPDAANVDAITAMGVYSVSASTPGTLPSPGMLGTLFHLERNSSLGRAQIFVDSAGAFWYRSTVFGTGAWRSWSNNMPVQATTSVAGIVELATSAETTAGADNTHVVVPSGLQTKMSGVVSGPYPITPGAQAVFNHNLGVVPFIVEFSFICINAEGGWSAGDVVHRGNWYQNSSGTDISVGIFWYGETSTQVTFGVGSIAMLLPSKTTGLRFSATAANWRFTARVIG				NA	NA	NA	NA	NA
D1-36_00769	195			hypothetical protein	ATGAATGAGGAATTGAAATTTTTTGCGAATGACCATGGCACCTATCTAGGCGCCATGGGAGGTGAATTGTTGCCTGACTCGCCCCATCCTTACCCCGCGGGAGTGGAAGTCGATTCTGCTCCCGAAAGTATGACTTACCGATGGGACTTCGCTGAGAAGGTCTGGCTGCCTCCAGAAGACACCGATGCTACTTAG	MNEELKFFANDHGTYLGAMGGELLPDSPHPYPAGVEVDSAPESMTYRWDFAEKVWLPPEDTDAT				NA	NA	NA	NA	NA
D1-36_00770	600			hypothetical protein	GTGGCGGCTATCGATGTTCCATGCCACGGCAAGGATACAAACAAAAAAGAAGGGAGCGGCTTGGAATGCTGGCGAGTGAGAGCCGACAACACGAGCGATAACATTTTCGACAGCTATATTAGCAGTCTAAAATCTGTGCTTAGCGATGTAGCGGACAAACATAACGCTCGACTGGGGGACGTCACCGTCCTCGGCATATCTCGTGGCGGCTACATCGCGATGAAGGCGGCGGCCGAAATACCGAGCATCACTACAGTCATCGCAATGGCCCCCGTCACCGATGTATTCCGCTTGCGAGAGTTCGATGGCTCGAAAGCCAATAAATCGGTGTACACCCTGGTGCCTTATTACCCGGCTCTTTCGAAGAAACACGTATTTATCCAGATCAACAACGATGATGACCGGGTTGGAACTACGGAAACCATATATTTGATTTCCGGTATAACGGAGGCAGGAAGCCCAGACGCCGTGGATCTGACTGCAATACTGACACCAAAGAAAGGGCATTCAACGAGCGAGCATGAAATGGCCGCCGCGTGGGCCCTGGCACAGCAACAGAAGGCGACCACGACGGGCAAGCAGATGTCTGCTCCTAAGTAG	MAAIDVPCHGKDTNKKEGSGLECWRVRADNTSDNIFDSYISSLKSVLSDVADKHNARLGDVTVLGISRGGYIAMKAAAEIPSITTVIAMAPVTDVFRLREFDGSKANKSVYTLVPYYPALSKKHVFIQINNDDDRVGTTETIYLISGITEAGSPDAVDLTAILTPKKGHSTSEHEMAAAWALAQQQKATTTGKQMSAPK				NA	NA	NA	NA	NA
D1-36_00771	534			hypothetical protein	ATGCCTGTTACCGCGCAGCAGTTGCGACAGATCCTCCCGAACGCTGGCGCTAAAGCCGGCTTCTTTGCGCCTGCCCTCAATACAGCTATGGGCCGGTACCAGATTATCGGCCTGCAACGTGTGGCGGCGTTTATCGCGCAGATCGGCCACGAGTCCGGCCAACTGCGCTACGTCCGTGAGCTGTGGGGGCCAACGCCGGCCCAGGCCCGTTACGAGGGCAGGGCAGACCTTGGCAACACCACGCAAGGCGACGGATTCAAGTTCCGAGGCCGTGGCCTGATTCAGGTTACTGGCCGGGCCAACTATGCCGAGTGCGGCGAAGCCCTGGGCTTTGACCTGATCAGCCAGCCTGAACTGTTGGAGCAGCCAGAGTGGGCCGCGAAGTCGGCGGCATGGTTCTGGTCCACGCGGGGGCTCAACGGGCTCGCGGATGCAGGCGCCTTCGAGAAGATCACCCGCAGGATCAATGGCGGGCAGAACGGCGCTGCTGATCGCCGGGCCCTGTACGAGCGGGCCTTGGAGGTTCTTGCATGA	MPVTAQQLRQILPNAGAKAGFFAPALNTAMGRYQIIGLQRVAAFIAQIGHESGQLRYVRELWGPTPAQARYEGRADLGNTTQGDGFKFRGRGLIQVTGRANYAECGEALGFDLISQPELLEQPEWAAKSAAWFWSTRGLNGLADAGAFEKITRRINGGQNGAADRRALYERALEVLA	PGPT0012140_698	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	FUNGICIDAL_COMPOUNDS|ANTIBIOTICS	FUNGICIDAL-CHITINOLYTIC_ACTIVITIES,PGPT0012140-putative_chitinase-K03791	NA	NA
D1-36_00772	516			hypothetical protein	ATGAATCCAGCCACCCTAAAATTGCTGATCGCCAGCGTGGCCGTGGCGTTGATCCTGGCGATGAGCGCGACCTGGAAGATCCAGGACTGGCGGTATAGCGGTCGGTTGGCGGAGCAGGGCCGCCTGCACCTGGACGATCTGAACAAGATTAGTAGCGCGGCCGCCGCCCAGGCCCAGGCGGAGCAGGGCAAGCGCCTGGCCCTGGAGCAACGGCTGATCGCCAATGACCAAACCCACCACAAGGAACTGAGCGATGCTCAAACGAACCAGGCTCGCCTACGTGATCGCCTTGCCACTACTGATGTCCGGCTGTCAGTCCTCCTCGCCAAGGATCCAGCCAGTTGCAACGCGGTGCCTCCCACCGCCGGCGCCGGCGGCGTGGTTCATGGAGGAGCAAGAGCCCAACTTGACCCAGCGCATGCTCAACGAATTATCGCCATCACCGACGCCGGCGACCGGGGGTTGATCGCGTTGCGGGCTTGCCAGGCCTACGCTGAAGAAGTGAGTCGGCGATAG	MNPATLKLLIASVAVALILAMSATWKIQDWRYSGRLAEQGRLHLDDLNKISSAAAAQAQAEQGKRLALEQRLIANDQTHHKELSDAQTNQARLRDRLATTDVRLSVLLAKDPASCNAVPPTAGAGGVVHGGARAQLDPAHAQRIIAITDAGDRGLIALRACQAYAEEVSRR				NA	NA	NA	NA	NA
D1-36_00773	219			hypothetical protein	ATGGACAAGTCGAAATCCGCAGAAGAGATGCGAGCGCTTCTACTCAGCGAGCGTCCCGACCTAAAAGATGATCTCGCGAATATTTCTGACCTTGAGCTACTGCGGCTCATGGCCTGCAGCTACGAAAGCGCGATTGGTATCAAAAAAGCCGAGCTGATTGAGATCGAGAAGCAGCTGTACGAGGCCGCCAAGGCACTCTTTTCCCCTGTACTCCACTGA	MDKSKSAEEMRALLLSERPDLKDDLANISDLELLRLMACSYESAIGIKKAELIEIEKQLYEAAKALFSPVLH				NA	NA	NA	NA	NA
D1-36_00774	534			hypothetical protein	ATGAGAAACCAAGGCGGATGGACAGGGGGTGGCACGCTTGCAGTGCTGCTTTGCGCCGCTATGGGTGGGATTCTTGCCCATTACATCATTTCATCACTCGATCAGGCATCCCCGCCGTCTGTTCAGTGGGGTCTGATTTCCGTCTTTTTGATTCCCCTTACGTTTGCCACTCAGCTATGGGTGAACTTCAATGGCTTGAGGGAGATTAAGGGAATAACTGGTAGCGAGCGGCGCAGGGTAACCGAGACGGTCAGCGCAAAACTTCGTCAAATTCAGTTCGCCATATTGTTCTACGCGGCGTCAGCACTGATTATTGGCTTTGGCCTGCTCTTCTCAACCGGAAATTGGAAGGTTTACCACCTCATCACCATTTTCACAGGCTCGAGCTTGGGTGTGAGTATGGCGAGCCTCTTCCTGATTTTGAGTGAGAGCCGAGAGCTGGCCGACTTCAAGAACAAGGTTTCTGAGCGAGCCCAACGCAACAAGCAGCTCGGAAAAAAGCTAACAGCCCTGCAATCACCAAAAGACAAATAG	MRNQGGWTGGGTLAVLLCAAMGGILAHYIISSLDQASPPSVQWGLISVFLIPLTFATQLWVNFNGLREIKGITGSERRRVTETVSAKLRQIQFAILFYAASALIIGFGLLFSTGNWKVYHLITIFTGSSLGVSMASLFLILSESRELADFKNKVSERAQRNKQLGKKLTALQSPKDK				NA	NA	NA	NA	NA
D1-36_00775	1062			hypothetical protein	ATGGCTGAGTCAGTAACGAAAACGATTCACTACAAGCGAGCAGTCATCAGTGGTGGCGGGAATTTACAGGAAATCCTTGCCAGAGTATTTGCCGACGAAAGCCCAGCGCACAGAGTTGGGCAGCGCAAAGAGATTGTGAATGCTGACACCGCCAGCTTTCGGGTAGTCAACCATAAGCGCGACTACAATGGCATGCTGTTCTGTCAGATGATCTATTTTGAGCCGGGTCGAAGTCAGGCCTATATTACACTCAATGAAGACGCAGACTCGTACGCGCTGGACGCCTTGACTAACGAGGCGCTCAACAATATAGAAGGCCCTTTCGATAGAGAGCGTCATAGACGAGAGTTTGTGGACTCGTTCCTGTATTTCGGCGTGTTCGAAAATCACCTTGTCGTCCTTCAATCTAGCCAGTTGAGATCCAGAGAACTTGAAGCTCATCTTGGCTGGCTAATCGGCAGCTTTGGTGGGGTTGCTGTCGGGACGGCAATCATTCTGCAAGACCAGCCTTCCCAGGAGACTTACGAGCGAATCGCTAGGGCTCCGGTGAAAAAAATACAAATTGGCGCACCGATCACTACTGCGCAGAATATCCCCGAAGGCGAACGCCAGCCTGAACCCCTGGCGCAGCAAGAAGAAGTGGAAGTCAACGCCCGTAGGGTTCGGTTTTTCCCTACTGGTTTCGCTGGCGACGTGATCAAGGCCGCTATGGGGGCCGATTGGTTTAATAGACTCGACCTTGAAGAGGATCTGGATGATGCTAACCTCAAGGTCAGTCTTGAAATCACGTACCTCCGACAGACAACCAGGATCGGTCAAGTCGTAATTGACAACATCGCGACCTCGCTTCGACACGCCGAAGAGGCGGATGTGAGGGTTGAACTGGCCGGCGGCGGTGAGCTCAAAGGAGGTGACCTGCGTCTTTGTGGTCCGATTTCGGTTACAAAATTGATAAATGGACTGTTGGACGAAGGCATTCTGTACCATAAAATGCACGGCTGGTTGGTCGGCAAGCTCAGACAAGGAGATGCTGATCCAGCAATAACGGCGGATGATCTGTGA	MAESVTKTIHYKRAVISGGGNLQEILARVFADESPAHRVGQRKEIVNADTASFRVVNHKRDYNGMLFCQMIYFEPGRSQAYITLNEDADSYALDALTNEALNNIEGPFDRERHRREFVDSFLYFGVFENHLVVLQSSQLRSRELEAHLGWLIGSFGGVAVGTAIILQDQPSQETYERIARAPVKKIQIGAPITTAQNIPEGERQPEPLAQQEEVEVNARRVRFFPTGFAGDVIKAAMGADWFNRLDLEEDLDDANLKVSLEITYLRQTTRIGQVVIDNIATSLRHAEEADVRVELAGGGELKGGDLRLCGPISVTKLINGLLDEGILYHKMHGWLVGKLRQGDADPAITADDL				NA	NA	NA	NA	NA
D1-36_00776	210			hypothetical protein	GTGCCGAATTCAGACCTGCTTCCCTCCCTGCTGTACAAAATCAACGAAAACCAGCTGGCTCTCGAAGCGGACATCATGGAGCTTTCCAACTGGGTCAAAGCGCGCGGCTCGGCCGACGTCGTCGATAATGTGCGGGGTGCCCTGGATACCATCGACAAGAACGAAGAGTTCATCAAGATGACGCTCGCGGTCCTGATGACGCTCGAGTGA	MPNSDLLPSLLYKINENQLALEADIMELSNWVKARGSADVVDNVRGALDTIDKNEEFIKMTLAVLMTLE				NA	NA	NA	NA	NA
D1-36_00777	204			hypothetical protein	ATGCAAAGCAGAGCCGAAACAAACAGCATCGACCGTTTCATGCGCCTCGAAGAGGTACTCCACGTGACCGGCCTTGGCCGCAACACGGTTTACCGCCGCATCAGGGAAGGCACCTTTCCAAAACAGCTGAGGATAGGCCCCAATTCAGTAGCGTGGCGTCAGTCAGCGATAATTGAGTGGATGGACTCGCTCGTACCAAAATGA	MQSRAETNSIDRFMRLEEVLHVTGLGRNTVYRRIREGTFPKQLRIGPNSVAWRQSAIIEWMDSLVPK				NA	NA	NA	NA	NA
D1-36_00778	252			hypothetical protein	GTGGATGATGAGTGTGAGGTCGTATACGTAGCAGGCCTAGGGAAAATGCTCGGGCGGACCGAGGCTTCAGTGCGGGAGGGAATCCGGCGGGGCGTGGACTGGCTGCCGAAGGGATTCAAGATGGGCTCCAGGCATTGCTGGCTCAAGGATGATGTGAAGGAGTTCCTGCGCGCTTGCCGGGATGGCGAAAACAAGACGCCGAAAGTGGGCAGGAAGCGCCGGCCGCCACCGACGCTCGTAGCTCTTCGCTGA	MDDECEVVYVAGLGKMLGRTEASVREGIRRGVDWLPKGFKMGSRHCWLKDDVKEFLRACRDGENKTPKVGRKRRPPPTLVALR				NA	NA	NA	NA	NA
D1-36_00780	282			hypothetical protein	ATGAAGCGTTCTGCACTGTTAGGTCTGTTCGTTACCGCCTCAATGTTGGCAACCGGTTCGTTCGCAGCAAGTAAGCCGGACAGCCAGTGTGACACCAATATCCAAACCATCGAGAACGCCAAGACGCAGTATCAGTCTTCACCCGACTTACAGGGCCGTGTGGAAACCAGCGTGGCGAAGGCAAAGGCGCTCAAGGCCGAAGGGAAAGTTGACGATTGTGTCGCCGAAACCGATCGGACCATCCTGGAAATCAGAAAAACCTCTGACGGCACCAACAAGTGA	MKRSALLGLFVTASMLATGSFAASKPDSQCDTNIQTIENAKTQYQSSPDLQGRVETSVAKAKALKAEGKVDDCVAETDRTILEIRKTSDGTNK				NA	NA	NA	NA	NA
D1-36_00781	2811			hypothetical protein	ATGATACTTCCGGCCCCTTTCCTGCGCGATGTCCTACAGCTGATCCCGCAGCAGCGACGTTTCGACGACCCGCTGTCGACCTTGGCGTTCGGCACCGACGCCAGTTTCTATCGGCTGGTTCCGAAACTGGTGGTACGCGTCGAGTCCGAAGACGAAGTGATTGCTCTGCTGAAACTGGCCCAGCGTGATCGCGTTCCCGTCACGTTCCGCGCGGCCGGCACCAGCCTGTCCGGCCAGGCCATCAGCGACTCGGTGCTGATTGTGTTGGGGGATAACTGGAACGGTCGCGAGATTCGCCAGCAGGGCACGCAGATTCGTTTGCAACCCGGCGTGATCGGCGCTCAGGCCAACGCCTGGCTCGCCCCGTTCGGGCGCAAGATCGGCCCTGACCCAGCGTCGATCAATGCCTGCAAGATCGGTGGTATCGTCGCCAACAACGCCAGCGGCATGTGCTGCGGCACCGCACAGAATACCTATCACACCCTGGCCGGCATCCGCCTGGTCCTGGCCGACGGCACGCGCCTGGACACCGAAGACGCCGCCAGCGTGGCGGCGTTCCGAACGAGCCACGGTGAACTGTTGGAACGACTGGCGACCCTCGGCCGCGAGACCCGCGCCAACACGGAACTGGCCGCCCGAATTCGCCACAAATACCGTCTGAAAAATACCACCGGCCTGTCGCTCAACGCCTTGGTGGATTTCGACGAGCCTGTGGATATCTTGAGCCACCTGCTGGTGGGCTCCGAAGGCACCCTCGGCTTCATCAGCGCGGTGACCTACCACACCGTCATCGATCACCCGAACAAAGCGTCAGCGCTGATCGTATTCCCGGACGTGGAAACCTGCTGCAACGCCGTCACCGTGTTGAAAAGCCAGCCGGTTTCCGCCGTCGAGCTGCTGGACCGCCGCAGCCTGCGTTCGGTACAGGACAAACCCGGCATGCCGGATTTCGTACAGCATTTGTCGAACAATGCCTGCGCCCTGCTGATCGAATCCCGCGCGGCTTCGTCATCATTGCTGCAAGAACAGCTGGCACGGATCATGGCCTCATTGGCCGGCTTCCCGGTGGAAAAGCAGGTCGACTTCACCGAAGACCCACGGGAAAACGCTCGCCTCTGGGCGATCCGCAAGGACACCTTCCCCGCCGTGGGCGCGGTTCGCAAGACCGGGACCACTGTGATCATCGAAGACGTGACCTTCCCGGTCGAACAACTGGCTATCGGCGTGAATCGCCTGATCGCGCTGTTCGACAAACATCACTACGACGAAGCGATCCTTTTCGGCCACGCGCTGGAGGGCAATCTGCACTTCGTCTTCACCCAGGGCTTCAACAATACCGAAGAAGTCGCACGGTACCAGGCGTTCATGGATGACGTGGCGCACCTGGTGGCGGTGGAGTTTGGCGGCTCACTGAAAGCCGAGCACGGCACCGGCCGCAACATGGCGCCGTTCGTCGAGCTGGAATGGGGCAGCGATGCCTATCAATTGATGTGGCAACTCAAACGCCTGCTCGACCCCAACGGCATTCTCAACCCGGATGTGGTGCTCAGCGAGGACCCACAGATTCATCTCAAGCACCTCAAACCCTTGCCAGCCGCCGATGAGATTGTGGACAAGTGCATCGAATGCGGCTTCTGCGAGCCGGTGTGTCCGTCCAAAGACCTGACCCTGAGCCCGCGCCAGCGCATCGTGATCTGGCGGGACATCCAGGCGAAAAAACGCGATGGCATGGACACTTCGCAGCTCGAAGCGGCCTATCAATACCAGGGCATCGACACCTGCGCCGCCACCGGGCTGTGCGCCCAACGCTGCCCTGTAGGCATCAATACCGGCGAACTGGTTAAAAAGCTCCGCGGACGTGACGCGACGCGTACGAAAACCGCCGACTGGCTTGCGAGTAATTTCACAACCGCATTGCAAGGGGCGCGCTTTACCCTGCATGTTGCCAATGGTGCGCGGATGCTCTTGGGGGCGCCGAGGCTGGCGCGTTTGTCCGCAGGACTGACACGCTTGTCCAAAGGCCAGGTCCCACAGTGGACCCACGCCATGCCGCAGCCGGAAAGGGCCATTCGATTCAGTCCCGCCGTGTCGGATGAACGACCCAGAGTGGTTTATCTGGCGGCCTGCGTGTCGCGAGTCATGGGACCTGCGGCAGGGGACAAGGAACAAATGTCGCTGCATGACAAGACTCGTGGCCTGTTGGAAAAGGCCGGCTATCAAGTTGTCATCCCGGACAATGTGGACAGCCTTTGCTGCGGCCAGCCCTTTGCGTCCAAAGGTTACGCCGACCAAGCCGAGCAGAAACGCCAGGAACTGATCGGCGCGTTGCTGCAAGCCAGCCGGGGCGGACTCGACCCGATCTACTGCGACACCAGCCCCTGCACCCTGCGCCTGGTCCAGGACTTGAGTGACGTACGCCTGGATCTCTACGACCCGGTGCGCTTCATTCGCACGCACTTGATGGATCGCCTCGACTTCATGCCACAGGAGGCGCCTATCGCAGTGCATGTCACGTGTAGCACCCAACACCTCGGTGAAAGCCAGGCGTTGATTGACCTGGCGCGCAGGTGCAGCAAAAACGTGGTCATACCTGAAGGCATCCATTGCTGCGGTTTTGCCGGTGACAAAGGTTTCACCACGCCGGAACTGAACGCCCACTCATTACGCACCTTGAAGGACGCGGTACAGCATTGCAGCGAGGGAATTTCCACCAGCCGGACCTGTGAGATCGGTCTTACGCAGCATGGCGCAATCGACTACCACGGCCTGGTCTACCTGGTTGATCGAGTGACCCGTGCCAGGGTGACGTGA	MILPAPFLRDVLQLIPQQRRFDDPLSTLAFGTDASFYRLVPKLVVRVESEDEVIALLKLAQRDRVPVTFRAAGTSLSGQAISDSVLIVLGDNWNGREIRQQGTQIRLQPGVIGAQANAWLAPFGRKIGPDPASINACKIGGIVANNASGMCCGTAQNTYHTLAGIRLVLADGTRLDTEDAASVAAFRTSHGELLERLATLGRETRANTELAARIRHKYRLKNTTGLSLNALVDFDEPVDILSHLLVGSEGTLGFISAVTYHTVIDHPNKASALIVFPDVETCCNAVTVLKSQPVSAVELLDRRSLRSVQDKPGMPDFVQHLSNNACALLIESRAASSSLLQEQLARIMASLAGFPVEKQVDFTEDPRENARLWAIRKDTFPAVGAVRKTGTTVIIEDVTFPVEQLAIGVNRLIALFDKHHYDEAILFGHALEGNLHFVFTQGFNNTEEVARYQAFMDDVAHLVAVEFGGSLKAEHGTGRNMAPFVELEWGSDAYQLMWQLKRLLDPNGILNPDVVLSEDPQIHLKHLKPLPAADEIVDKCIECGFCEPVCPSKDLTLSPRQRIVIWRDIQAKKRDGMDTSQLEAAYQYQGIDTCAATGLCAQRCPVGINTGELVKKLRGRDATRTKTADWLASNFTTALQGARFTLHVANGARMLLGAPRLARLSAGLTRLSKGQVPQWTHAMPQPERAIRFSPAVSDERPRVVYLAACVSRVMGPAAGDKEQMSLHDKTRGLLEKAGYQVVIPDNVDSLCCGQPFASKGYADQAEQKRQELIGALLQASRGGLDPIYCDTSPCTLRLVQDLSDVRLDLYDPVRFIRTHLMDRLDFMPQEAPIAVHVTCSTQHLGESQALIDLARRCSKNVVIPEGIHCCGFAGDKGFTTPELNAHSLRTLKDAVQHCSEGISTSRTCEIGLTQHGAIDYHGLVYLVDRVTRARVT	PGPT0018110_189	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018110-dld2-K18930	NA	NA
D1-36_00782	672		COG1556	putative protein	ATGAGCGCCAAGGAAAATATCCTCGCCAAATTGCGTAAAAGCCTCACAGGCACAACTCCGGTTGCCGACAACTATGACGTCGAATTGGTGACGCAGACCTACCGCTACGCACCCGAAGAACGCATCCCGCAATTGCGCAAGCTGATGGAGGCGGTACACACCGAGATCCACCTGACCTCTGGTGACAACTGGCCGACGCTGCTGGCGCAACTGCTGCGGGACCGCCAACTGCCGAGCCTGCTGATCGCCCCGACGACGCCTCACGGGCAAAAAATCGCACAGTTCTGGGCGAACAATCCGGACCTGCCTGCTCTTAAGTCCTACGATCGGCCTGTGGAAGAATGGAAAGCCGAACTGTTCAACGAAACCCCCGCCAGCCTGACCGGCACCCTGGGTGCCATCGCCGCGACCGGCAGCCTGATTTTGTGGCCGACGCGGGAAGAACCGCGACTGATGAGCCTCGTCCCACCGGTGCATTTCGCCTTGCTCAAGGCCAGCGAGATCCGCGACAACTTCTATGAAGTGCAACAGGAATTCGAGTGGGCCCAGGGCATGCCCACCAACGCCCTGCTGGTATCGGGTCCGTCGAAAACCGCCGACATCGAGCAAGTCCTGGCTTATGGCGCCCATGGCCCGAAGGATCTGGTGGTGCTGATCCTGGAGGACCAATGA	MSAKENILAKLRKSLTGTTPVADNYDVELVTQTYRYAPEERIPQLRKLMEAVHTEIHLTSGDNWPTLLAQLLRDRQLPSLLIAPTTPHGQKIAQFWANNPDLPALKSYDRPVEEWKAELFNETPASLTGTLGAIAATGSLILWPTREEPRLMSLVPPVHFALLKASEIRDNFYEVQQEFEWAQGMPTNALLVSGPSKTADIEQVLAYGAHGPKDLVVLILEDQ	PGPT0018100_881	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
D1-36_00783	1458	lutB	COG1139	Lactate utilization protein B	ATGAGCACGCCGACGCTGATTCCGACCGTTGAGGTGCAGGAAGATTTTCGCGCCCGCGCCCACAAGGCGCTGGACGACACGCAACTGCGAAACAACTTTCGCAGCGCGATGGATTCACTGATGACAAAACGGGCAACGTCTTTCAGCGATGCCCACGAAAGAGAACATTTGCGAGTGCTCGGCAACGCTGTCCGGGCCCGCGCGTTATCCAAGCTGCCCGACCTGCTCGAGCAACTTGAAAGCAACCTGACCCGCAACGGTGTGAAAGTGCACTGGGCGGAAACGGTGGACGAAGCCAACGGCATCGTTCTTTCGATCATCCGCGCTCACGAGGCGCGGCAAGTGATCAAGGGCAAATCGATGGTCAGCGAAGAGATGGAGATGAACCATTTCCTCGAGGCTCGGGACATTGAGTGTCTCGAATCCGATATGGGGGAATACATCGTCCAGCTCGATCACGAGAAGCCTTCCCACATCATTATGCCGGCGATCCACAAGAATGCCGGTCAGGTCGCGTCCTTGTTCCACGACAAACTTGGCGTGGAGTACACCAAGGACGTTGACCAACTCATTCAGATCGGTCGCAAGGTCTTGCGGCAGAAATTTTTCGAAGCCGACATCGGCGTTTCGGGCGTCAATTTTGCCGTCGCCGAAACCGGCACGTTGCTGCTGGTGGAAAACGAAGGCAACGGGCGGATGTCCACTACGGTGCCGCCGGTGCACATTGCCGTGACCGGCATCGAAAAAGTCGTGGAAAACCTGCGGGACGTCGTTCCGCTGCTTTCGCTGCTGACACGCTCGGCCCTGGGTCAGCCGATCACCACCTACGTCAACATGATCTCCGGGCCACGCAAGGCCGATGAGTTGGACGGGCCTCAGGAAGTCCACCTGGTCCTGCTGGATAACGGTCGCAGCCAGGCATTTGCCGACAGCGAACTGCGCCAGACCCTGAATTGCATCCGCTGCGGCGCCTGTATGAATCATTGCCCGGTCTACACCCGAATTGGCGGGCATGCCTACGGTGAGGTCTACCCGGGGCCTATCGGAAAAATCATCACGCCGCACATGGTCGGATTGGCGAAGGTGCCGGATCACCCAAGCGCCTCCTCGTTGTGCGGCGCCTGTGGCGAAGTGTGTCCGGTGAAGATTCCGATCCCGGCCCTGTTGCGGCGGCTGCGAGAGGAAAACGTCAAGGCACCGGATAGCCCTAACCCGGTGATGCGCGGCCAGGGCAGCAAATACTCGGCCAAGGAACGGTTCATCTGGAATGCCTGGGCCCGGCTCAACAGCTCGCCACGGCTGTACCGGTTGTTCGCGTTCTTCGCCACGCGCCTGCGCGCCCTGACACCGCAGAACGTCGGGCCTTGGACCCAGAACCACAGCGCCCCGAAACCCGCCGCCCGCTCGCTGCATGACCTGGCCCGCGACCACCTGAACCCGCAGGGAGACCGCCGATGA	MSTPTLIPTVEVQEDFRARAHKALDDTQLRNNFRSAMDSLMTKRATSFSDAHEREHLRVLGNAVRARALSKLPDLLEQLESNLTRNGVKVHWAETVDEANGIVLSIIRAHEARQVIKGKSMVSEEMEMNHFLEARDIECLESDMGEYIVQLDHEKPSHIIMPAIHKNAGQVASLFHDKLGVEYTKDVDQLIQIGRKVLRQKFFEADIGVSGVNFAVAETGTLLLVENEGNGRMSTTVPPVHIAVTGIEKVVENLRDVVPLLSLLTRSALGQPITTYVNMISGPRKADELDGPQEVHLVLLDNGRSQAFADSELRQTLNCIRCGACMNHCPVYTRIGGHAYGEVYPGPIGKIITPHMVGLAKVPDHPSASSLCGACGEVCPVKIPIPALLRRLREENVKAPDSPNPVMRGQGSKYSAKERFIWNAWARLNSSPRLYRLFAFFATRLRALTPQNVGPWTQNHSAPKPAARSLHDLARDHLNPQGDRR	PGPT0018095_548	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
D1-36_00784	825	lutA_1	COG0247	Lactate utilization protein A	ATGAGCGAGCTTTTTTATAACGCCGTGCCGAACGCGACCCGTGTCGCCCCGCCATTGCCCGAGCCCCGGCAATACCCCAGCGAGAAACCTGCTCGGGTCTACCTCTTCGGGACATGCGTGGTCGACCTGTTCTACCCCGAAGCCGGGATGGATGCGATTCATCTCCTCGAGCGCGAAGGAATCCGGGTGGACTACCCACAGGGCCAGACCTGTTGTGGGCAACCGGCCTACACGTCGGGTTACACCGAACAGGCGCGGACAGTGGCGCGGGCGCAATTGGCGTTATTCGCCGAGGATTACCCGGTGGTCGTGCCTTCGGGCTCATGTGCCGGCATGCTGCGCGAGCATTATGCCGACCTGTTCAAGGGCGAGCCGCAAATGCTCAAGCAGGTCCAGGCGCTGGCCGCCAGGACCTATGAATTGGCGGAGTTCCTGCTGTTCGTTTGCAAGGTGCAATTGAACGACAGTGGCACGCCAGTGAAGGTCGCGCTGCATACGTCTTGCTCGGCACGACGGGAAATGAACACCCACCTGCATGGCCGTGCGTTGTTGGCCCAGCTGCGCAATGTGGAGCGAGTCGACCACAGCCATGAGAGTGAATGCTGTGGTTTTGGTGGGACGTTCAGCGTTCGCATGCCGGATATTTCCGGCGCGATGGTGGCCGACAAGACCCGAGCGCTGAAGGAATCCGGCGCGCACCAGGTCGTCAGCGCCGACTGCGGGTGCTTGATGAACATCAACGGCGCCTTGGAAAAACAGCAGGAAGCGTTGCGCGGCCAACACTTGGCAAGTTTCCTCTGGCAGCGAACCGGAGGTGCCGCATGA	MSELFYNAVPNATRVAPPLPEPRQYPSEKPARVYLFGTCVVDLFYPEAGMDAIHLLEREGIRVDYPQGQTCCGQPAYTSGYTEQARTVARAQLALFAEDYPVVVPSGSCAGMLREHYADLFKGEPQMLKQVQALAARTYELAEFLLFVCKVQLNDSGTPVKVALHTSCSARREMNTHLHGRALLAQLRNVERVDHSHESECCGFGGTFSVRMPDISGAMVADKTRALKESGAHQVVSADCGCLMNINGALEKQQEALRGQHLASFLWQRTGGAA	PGPT0018090_72	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
D1-36_00785	1695	glcA_1	COG1620	Glycolate permease GlcA	ATGCAAACCTGGCAACAGCTTTACAGTCCGCTCGGCAGCCTAGGCCTGTCCGCACTCGCGGCCGTCATTCCAATCGTATTTTTCTTCCTTGCCCTGGCGGTGTTTCGCCTCAAGGGGCACGTGGCCGGCAGCATCACCCTGGCGCTGGCGATCGCGGTCGCGATTTTTGCATTCCAGATGCCGGCGGACATGGCGTTCGCGGCGGCGGGTTATGGTTTTGCGTATGGGTTGTGGCCTATCGCCTGGATCATCGTTGCCGCGGTATTTCTCTACAAGCTGACCGTCAAGAGCGGCCAGTTCGAAGTGATCCGCAGCTCGGTGCTGTCGATCACCGACGACCAGCGCCTTCAGGTGCTGCTGATCGGCTTCTGCTTTGGCGCCTTCCTGGAAGGTGCCGCCGGCTTCGGCGCGCCCGTCGCGATTACCGCCGCATTGCTGGTGGGCCTGGGCTTCAATCCCCTCTATGCCGCGGGCCTGTGCCTGATCGCCAATACCGCCCCGGTGGCATTCGGCGCGCTGGGCATCCCGATAATCGTGGCAGGCCAAGTCACCGGCATCGATGCGTTCAAGATCGGCGCCATGACCGGCCGACAGCTGCCATTGCTGTCGCTGTTCGTGCCGTTCTGGCTGGTATTCATGATGGATGGCCTGCGCGGCGTGCGAGAAACCTGGCCGGCGGCACTGGTGGCGGGCTTGAGTTTCGCCATCACTCAGTACCTCACCTCGAACTTCATCGGCCCGGAACTGCCAGACATCACCTCGGCCCTGGCCAGCCTGGTCTCGCTGACGTTGTTCCTGAAAATCTGGCAGCCCAAGCGCACCGCAGGCGCCCAGATCGCCGGCGCAACGTCCAGCGCAGCCATCACCGCCAGCGCCGGTGGTTTCGGCCAGCCTCGCAGCACCGTGGCGTCCCCCTACAGCCTGGGAGAAATCATCAAGGCGTGGTCGCCTTTTCTGATCCTCACCGTGCTGGTGACGATCTGGACGCTGAAGCCATTCAAGGCAATGTTCGCCCCTGGCGGCTCGATGTACGGTTGGGTGTTCAACTTCGCGATCCCGCACCTGGACCAGTTGGTGATCAAGTCCGCGCCAATCGTGGTCAACCCGACCGCCATCCCGGCGGTGTTCAAGCTCGATCCGATTTCGGCGACCGGCACAGCGATTTTCTTCTCCGCGTTGATCTCGATGCTGGTGTTGAAAATCGATTTCAGAACTGGTCTTACCACTTTTAAAGAGACGCTTTTTGAGTTGCGCTGGCCGATCCTGTCCATCGGCATGGTGCTGGCCTTCGCCTTCGTCACCAATTTCTCGGGGATGTCGTCGACCATGGCCCTGGTATTGGCTGGCACTGGCGCAGCGTTCCCGTTCTTCTCGCCGTTCCTCGGTTGGCTGGGCGTGTTCCTGACCGGCTCCGATACCTCGTCCAACGCGCTGTTCGGTTCGCTGCAAGCGACCACCGCGCACCAGATCGGCGTCAATGACACCTTGCTGGTGGCGGCCAATACCAGCGGCGGCGTGACCGGCAAGATGATTTCGCCACAATCGATCGCCGTGGCGTGCGCAGCGACCGGGCTGGTTGGCAAAGAATCCGATCTGTTCCGTTTCACCCTGAAACACAGCCTATTCTTTGCAACGATCGTTGGCCTGATCACGCTGGCTCAGGCCTACTGGTTCACCGGCATGCTGGTTCACTGA	MQTWQQLYSPLGSLGLSALAAVIPIVFFFLALAVFRLKGHVAGSITLALAIAVAIFAFQMPADMAFAAAGYGFAYGLWPIAWIIVAAVFLYKLTVKSGQFEVIRSSVLSITDDQRLQVLLIGFCFGAFLEGAAGFGAPVAITAALLVGLGFNPLYAAGLCLIANTAPVAFGALGIPIIVAGQVTGIDAFKIGAMTGRQLPLLSLFVPFWLVFMMDGLRGVRETWPAALVAGLSFAITQYLTSNFIGPELPDITSALASLVSLTLFLKIWQPKRTAGAQIAGATSSAAITASAGGFGQPRSTVASPYSLGEIIKAWSPFLILTVLVTIWTLKPFKAMFAPGGSMYGWVFNFAIPHLDQLVIKSAPIVVNPTAIPAVFKLDPISATGTAIFFSALISMLVLKIDFRTGLTTFKETLFELRWPILSIGMVLAFAFVTNFSGMSSTMALVLAGTGAAFPFFSPFLGWLGVFLTGSDTSSNALFGSLQATTAHQIGVNDTLLVAANTSGGVTGKMISPQSIAVACAATGLVGKESDLFRFTLKHSLFFATIVGLITLAQAYWFTGMLVH	PGPT0001740_40	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-GLYCOLIC_ACID_TRANSPORT,PGPT0001740-glcA-K02550	NA	NA
D1-36_00786	768	pdhR	COG2186	Pyruvate dehydrogenase complex repressor	ATGGGGTTTGATCAGATTCGTCAGCGCCGTTTGTCTGACGATATTGTCGAGCGGCTTGAAGGCATGATCCTTGAGGGCACGTTGAAATCCGGCGAGCGGTTGCCGGCCGAGCGGACCCTGGCCGAGCAGTTCGGCGTGTCACGTCCTTCGTTGCGTGAAGCGATCCAGAAACTGACGGCCAAGGGCTTGCTGATCAGTCGCCAGGGCGGCGGCAACTATGTTGTGGAGTCGCTGGGCTCGACGTTCAGTGATCCGCTGCTGCACCTCTTGGAAAGCAACCCCGAAGCGCAGCGCGACCTCCTTGAGTTCCGGCATACCCTGGAAGCGTCCTGCGCTTATTACGCAGCACTTCGGGCCACGGAGGTCGATCGGGAGCGGCTGACGACAGCCTTTGAAGCGTTGCAGGATTGTTATTCGCGCCACGAGGACGTGAGCCGGGCAGAGGAGGGCGCGGCAGATGCGCGTTTTCACCTGGCGATCGCCGAGGCCAGCCATAACGCTGTCTTACTGCATACGATCCGAGGATTGTTCGACCTGCTCAAGCGCAATGTGGTGACCAATATCGGCGGCATGTACAAGCAGCGCAGCGAGACGCGCGACATGCTGATCAGCCAGCATCGGGAGCTTTATCAAGCCATCATGGACGGGCACGCCGAGTTGGCGCGGGAAGTGTCCAGCCGACACATCTTGTACGTGCAGGAAGTCTTGGAAGAGGTGCGTCAGGAAGTGCAGCGGGTGGCGCGAGCGGAGCGGCGCAAGGGCATCTGA	MGFDQIRQRRLSDDIVERLEGMILEGTLKSGERLPAERTLAEQFGVSRPSLREAIQKLTAKGLLISRQGGGNYVVESLGSTFSDPLLHLLESNPEAQRDLLEFRHTLEASCAYYAALRATEVDRERLTTAFEALQDCYSRHEDVSRAEEGAADARFHLAIAEASHNAVLLHTIRGLFDLLKRNVVTNIGGMYKQRSETRDMLISQHRELYQAIMDGHAELAREVSSRHILYVQEVLEEVRQEVQRVARAERRKGI	PGPT0018120_202	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018120-lldR-K14348	NA	NA
D1-36_00787	390	smpB	COG0691	SsrA-binding protein	ATGGTCCTGGCCGGTTGGGAAGTAAAGAGCTTGCGTGCCGGCAAGGCGCAACTGGTCGACAGTTATGTCTTGCTCAAGGACGGCGAAGCATGGCTGCTGGGCAGTCATATCACGCCGCTGACCACCGCCAGCACCCACGTCATCGCCGACCCTGTGCGCTCGCGCAAGCTGCTGCTCAACAAGCGCGAGCTGGAGAAGCTCTTCGCTTCCGTGCAGCAGAAGGGTTATGCCTGCGTCTGTACATCGCTGTACTGGAGCAAGCACTTGATCAAGTGCGAGATCGCGCTGGGCAAGGGCAAGAAGGAATACGACAAGCGTGATACCGAACGCGAGCGCGATGCCGGTCGCGAATTGCAACGTGCGGTGCGCAACAAGGGCAAGGAAGACTAG	MVLAGWEVKSLRAGKAQLVDSYVLLKDGEAWLLGSHITPLTTASTHVIADPVRSRKLLLNKRELEKLFASVQQKGYACVCTSLYWSKHLIKCEIALGKGKKEYDKRDTERERDAGRELQRAVRNKGKED	PGPT0014355_1055	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
D1-36_00788	1455			hypothetical protein	ATGAATCCCGGACAATGCGGCCTCTTTTTTGAACGCTTGGGCGTGATCACGATGTCGACAGACAAGGTTTCTGTCCACGGCAGTTGGGCTAGCCGCTGGGTCTTCATATTCGCCGCGACCGGTTCGGCCGTCGGGCTGGGTAGTATCTGGAAGTTTCCGTACATGGTCGGTGTCTATGGCGGCGGCGCCTTCGTGCTGATGTTCCTGGCGTGCATCGCGCTGATCGGTGCGCCGGTGATGTTGGCTGAGACGCTTATCGGTCGTCGCGCCCGGCAAAGTCCGGCCAATGCCCTGAAAGTGCTGGCGGTGGAGGCGGGGCATTCGTCGAAGTGGTCCTGGGGCGCATTCGCCGGGATGATCACGGCGCTGCTGATCCTGTCGTTCTATAGCGTGGTCGGTGGCTGGTCGCTGGACTACATCATCGACATGGGGCGCGGCGACTTCCAGAACGCAACGCCCGATCAGGTTGGCGCCTACTTTGGGAGCGTGATCGCCGATCCCTGGAGGCTGACGCTCTGGCACACGCTGTTCATGGTGCTTTCCGCCGTCGTGATTGCCCGTGGTGTCGTCGCGGGCCTTGAGCGCAGCCTGCGAATCATGATGCCGCTGCTGTTCGTGATGATCCTGGTGCTGCTGGGCTACAGCATGACCACGGGGCACTTCATGGAGGGCGTGCATTTCATGTTCGATTTCCAGCCAGAAAAAGTCATGGATGGACTGTTGCCGGCCATGGGGCACGCTTTTTTCTCTCTGAGCGTGGGGGTCGGTTCGATCATGATCTACGGCGCCTACATGCCCAAGAGCGCCTCTCTCACCAAGACAGTTGTCGGCGTTGCGCTGCTGGACACCTTCGTGTCGTTGTTGGCTGGGGTGGCATTGTTTCCCATTGTGTTCGCTGCTGGCCTGAACCCTAGCGAGGGGCCGGGGCTGATGTTCGTCAGCCTGCCATTTGCCTTCGGCAGCATGGCGTTCGGCCAAGTGATGGGCGTGGTGTTTTTTGTCCTGGTGGCAATCGCCGCCTGGAGTTCGGCCATTTCCTTGCTCGAGCCGATGGTGGCTTATCTGGTTGAGCGGACTCGCCTCAGTCGTGCCTGGGTGACTTTCTGGCTGGCTTTCACTTGCTGGTTCGTGGGGCTGGGTACGGTTTTTTCCTTCAATATATGGAAGCAGGCAAAGTTTTTCGTGAACGAAGGCGACCTGTTCCACCTCTATCAGTGGGGAGCAACCGGAGGGCTGGATTTCTTCGGTGTGATTGATTTCTTCACGTCGCGGATCATGTTGCCCTTGGGCGGTTTGTGTTTCGTGGTGTTTGCAGGGTGGATCATGGGGCGTGAAGCCGTGCGCGATGAGCTGTCGCTACGCAGTCCTGTATTGTTCGCCTTGAGTCTGTTCTTGATGCGCTATGTGGCGCCCATTGGCATTCTTGTAGTGTTTGCCACCCAGCTGTGGAAGTGA	MNPGQCGLFFERLGVITMSTDKVSVHGSWASRWVFIFAATGSAVGLGSIWKFPYMVGVYGGGAFVLMFLACIALIGAPVMLAETLIGRRARQSPANALKVLAVEAGHSSKWSWGAFAGMITALLILSFYSVVGGWSLDYIIDMGRGDFQNATPDQVGAYFGSVIADPWRLTLWHTLFMVLSAVVIARGVVAGLERSLRIMMPLLFVMILVLLGYSMTTGHFMEGVHFMFDFQPEKVMDGLLPAMGHAFFSLSVGVGSIMIYGAYMPKSASLTKTVVGVALLDTFVSLLAGVALFPIVFAAGLNPSEGPGLMFVSLPFAFGSMAFGQVMGVVFFVLVAIAAWSSAISLLEPMVAYLVERTRLSRAWVTFWLAFTCWFVGLGTVFSFNIWKQAKFFVNEGDLFHLYQWGATGGLDFFGVIDFFTSRIMLPLGGLCFVVFAGWIMGREAVRDELSLRSPVLFALSLFLMRYVAPIGILVVFATQLWK	PGPT0013950_1191	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013950-TC_NSS-K03308	NA	NA
D1-36_00789	444	ratA	COG2867	Ribosome association toxin RatA	ATGACGACACATATTCAACGCTCGGCCCTCCTGCCCTATCCGGCCCAGGCGCTGTACGACTTGGTCAACGACGTGGCGAGTTACCCGCAATTCCTGCCCTGGTGCTCGTCCGCCGAGGTGCTCGAAAGCTCCGAAACCCATATGCGCGCGAGCCTCAATGTCGCCAAGGGCGGGTTGAGCCAGCACTTCGTCACTCGTAACACCTTGGTGCCGGGCCAGTCCATCGAGATGAACCTTGAGGAAGGGCCTTTCAATCAGCTCCATGGCGTCTGGGTGTTCAAGGCGCTGGGTGAGAAAGCCTGCAAGATCAGCCTGGACCTGTCGTTCGATTACGCCGGGCCGCTGGTGCGGGCGACGTTAGGCCCGTTGTTCAATCAGGCGGCCAACACCCTGGTCGACGCTTTTTGCCAGCGTGCCAAGCAGAATGCCGAGCTCAAGCGTTGA	MTTHIQRSALLPYPAQALYDLVNDVASYPQFLPWCSSAEVLESSETHMRASLNVAKGGLSQHFVTRNTLVPGQSIEMNLEEGPFNQLHGVWVFKALGEKACKISLDLSFDYAGPLVRATLGPLFNQAANTLVDAFCQRAKQNAELKR	PGPT0027444_1	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-RatA-RatB|YfjG-YfjF|RatAB-SsrAS_SYSTEM,PGPT0027444-toxin_ratA|yfjG-na	NA	NA
D1-36_00790	528	bamE		Outer membrane protein assembly factor BamE	ATGCAAAACACCAAGCTCTTGCTAACCAGTTTCACCTTCGTGGGACTGCTCGCACTCGCCGGTTGTTCATTCCCCGGGGTTTACAAAATCGACATCCAGCAGGGCAATGTCGTCACACAGGACATGATAGACCAGTTACGCCCGGGAATGACCCGCCGGCAAGTACGGTTTATCATGGGCAACCCTCTGTTGACCGACACGTTTCATGCCGATCGCTGGGATTACCTGTACAGCTTGCAGCCAGGCGGCGGCGAGCGGCAGCAGGAACGCATCAGCGTTATTTTCAATGCCAATGATCAACTCGTCAGCTTGTCGGGAGATTTCATGCCCGGCGTGAGCCGCGACGAGGCCATCATGGGCAAGGATAGCGGCACCACGGTCACCGACCCGACCCAGAACACCGAACAGCCGAAACCGGAAAAACCGGCCAAGCCAGGTTCGCTGCTGGATCAGATCCAGAAGGACGTGGACAACGTCGAGACCGTACCTGTCCCGACGCCAGAACCTCTGGACACCTCGCCGCAATAA	MQNTKLLLTSFTFVGLLALAGCSFPGVYKIDIQQGNVVTQDMIDQLRPGMTRRQVRFIMGNPLLTDTFHADRWDYLYSLQPGGGERQQERISVIFNANDQLVSLSGDFMPGVSRDEAIMGKDSGTTVTDPTQNTEQPKPEKPAKPGSLLDQIQKDVDNVETVPVPTPEPLDTSPQ				NA	NA	NA	NA	NA
D1-36_00791	405	fur	COG0735	Ferric uptake regulation protein	ATGGTTGAAAATAGCGAACTACGCAAAGCCGGCCTCAAAGTGACCCTGCCAAGGGTCAAGATTCTGCAAATGCTCGACTCTGCCGAGCAGCGCCACATGAGTGCCGAAGACGTCTATAAGGCGCTCATGGAAGCTGGCGAGGATGTCGGTCTGGCCACGGTCTACCGTGTCCTGACTCAATTCGAAGCTGCCGGGCTGGTCGCTCGTCATAACTTCGATGGCGGTCATGCTGTCTTTGAATTGGCTGACGGGGAGCACCATGACCATATGGTGGATGTTGAGACCCGTGAAGTCATCGAATTCATCAGTCCTGAAATCGAGCAACTGCAAAAGGCTATTGCTGAGGAGTATGGCTTCGAGCTGATCGATCACCATCTCGTCCTGCATGTGCGCAAGCGCAAATAA	MVENSELRKAGLKVTLPRVKILQMLDSAEQRHMSAEDVYKALMEAGEDVGLATVYRVLTQFEAAGLVARHNFDGGHAVFELADGEHHDHMVDVETREVIEFISPEIEQLQKAIAEEYGFELIDHHLVLHVRKRK	PGPT0003880_4952	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003880-fur|furB|zur-K03711	NA	NA
D1-36_00792	1674	recN	COG0497	DNA repair protein RecN	ATGCTGGTGCACCTGTCCGTACACAACTACGCCATCGTCGAACATCTCGACCTCGAACTCGATCGAGGCATGAGCGTGATTACCGGTGAAACCGGTGCCGGCAAATCGATCATGCTCGACGCCCTGGGACTGACACTTGGCGACCGCGCTGATAGCGGCGTGGTACGTCCCGGTGCGGAAAAGGCCGACATCCTGGCGACATTCGACCTCGTCGACATCTCCGAAGCCAGCGCCTGGCTGGCCGAGCGCGACCTGGACACCGATGGGCTGTGCATCCTGCGCCGGGTCATCACCGCCGAGGGCCGCTCCCGAGGCTATATCAACGGCACCCCTTGCCCCCTCGGCGACCTCAAGGCACTCGGCGAACTGCTGATCGATATTCACAGCCAGCATGAACACCAATCGCTGCTCAAGACCGACACACATCGTCGCTTGCTCGACGAGTACGCGGGTGCCACCGACCTGGCCCGCCAGGTTCAATTGGCCGCCCAACGCTGGCGACAGACCCGGCAGGAACTGGATCGACTTTCCAACTCAGGCGATGAACAACGGGCCCGCCACCAACTGTTGAGCTACCAGCTTGAAGAGCTGGAAAACCTGGCCCTGGGCGAAAACGAGCTGGAGGAACTTGAGCAGGAGCACAAGAACCTGACCAATGCCGAGGCACTCCTCGGTGTCTGTCGGCAAGTGGTCGAGCAATGCAGCGAAAGTGATTCCGGCAATGTGCTCAGTGCGCTGACCGCAAGCATCAACCGACTTTCCAGCGTCAGCAATGCCGTGGGAGCCCTGGGCGAAGCGAGCAACCTGCTGACCAGCGCCCAGATCCAGGTCGAAGAAGCCGTCGGGGAGTTGAACCGTTTCCTTGATCATTTCGATGCCGACCCGGCACGCCTCCAGTTTCTGGAAGAGCGCCTGGACACTATCTATACGCTGGCCCGCAAGCATCGCGTCCAGCCAACCGATGTCGTCGAACTGCAGCAACGGCTGCTGGAGGAACTGGAAAGCCTGAACGCCAATGATGAATCCATCGAGCGGCTCGGGGATGAACTGGCCTCCTTTGCGCGCCATTATCAGGAAAAGGCCAAGGAGCTCAGCGAATTGCGCCGACAAGCCGCGACGGGCTTGGCGAGCGCGGTAGAACAGGAGATCCAGCGCCTGGGCATGCCAGGGGGCCGATTCACCATCGAACTGCACCCTAACGGCGGTGATGATCTTCAGCCTAACGGGCTGGAGCAAGTGGAACTGCTGGTCAGCGCCAACCCCGGGCAACCCCTTAAGGCATTGGCAAAAGTGGCTTCCGGCGGCGAGCTGTCGCGTATCAGTCTGGCCATCCAGGTGATCACAGCGCAGACATCGCGGGTGCCAACGCTGGTGTTCGACGAGGTGGATGTCGGCATTGGCGGCCCTACGGCGGAAATTGTCGGCCAGTTGCTGCGCAGATTGGGCGAGCGTGGACAGGTCCTGACGGTCACTCACCTGCCCCAGGTTGCCGCCCAGGGACACCAACATCTATTTGTCCACAAGGTGCGAGACGAAGACGCCACTCGTACAGCAGTGTCCAAACTCAACAAAAATGAACGCGTGGAAGAAGTCGCTCGGATGCTCGGAGGAATAGACCTGACCAAGGAATCCTTGGCCCACGCTAAAAAAATGGTGGTTGCGGCAAAAACCTGA	MLVHLSVHNYAIVEHLDLELDRGMSVITGETGAGKSIMLDALGLTLGDRADSGVVRPGAEKADILATFDLVDISEASAWLAERDLDTDGLCILRRVITAEGRSRGYINGTPCPLGDLKALGELLIDIHSQHEHQSLLKTDTHRRLLDEYAGATDLARQVQLAAQRWRQTRQELDRLSNSGDEQRARHQLLSYQLEELENLALGENELEELEQEHKNLTNAEALLGVCRQVVEQCSESDSGNVLSALTASINRLSSVSNAVGALGEASNLLTSAQIQVEEAVGELNRFLDHFDADPARLQFLEERLDTIYTLARKHRVQPTDVVELQQRLLEELESLNANDESIERLGDELASFARHYQEKAKELSELRRQAATGLASAVEQEIQRLGMPGGRFTIELHPNGGDDLQPNGLEQVELLVSANPGQPLKALAKVASGGELSRISLAIQVITAQTSRVPTLVFDEVDVGIGGPTAEIVGQLLRRLGERGQVLTVTHLPQVAAQGHQHLFVHKVRDEDATRTAVSKLNKNERVEEVARMLGGIDLTKESLAHAKKMVVAAKT				NA	NA	NA	NA	NA
D1-36_00793	567	grpE	COG0576	Protein GrpE	ATGGCTGACGAACAGACGCAGGACACCCAAAATCTAGACGCCAATCAGGCTCCCCAAGATTCGGGTGAAGACCTGGCGGCACGTGTACAAGTGCTCGAAGAGCAACTGGCCGGTGCGCAGGATCAGGCGTTGCGTGTAGCAGCCGATCTGCAGAACGTCCGCCGTCGTGCCGAGCAGGATGTGGAAAAGGCTCATAAATTCGCCTTGGAACGTTTTGCTGGCGACCTGCTGCCGATCATCGACAGCCTGGAGCGGGGTCTGGAGCTGTCCAACCCGGACGACGAGAACATCCGTCCAATGCGTGAAGGCATCGAGCTGACCCTGAAGATGTTCCAGGACACGCTCAAGCGTTACCAGCTTGAAGCGATCGATCCTCACGGTGAACCCTTCAACGCCGAGCACCATCAGGCCATGGCGATGCAGGAAAGTGCAGACGTCGAGCCAAACAGCGTGCTGAAAGTGTTCCAGAAGGGCTATCTGCTCAACGGTCGCCTGCTGCGCCCGGCCATGGTTGTGGTCAGCAAGGCGCCAGCGCCGGTTTCGCCTTCTATTGATGAGCAGGCTTGA	MADEQTQDTQNLDANQAPQDSGEDLAARVQVLEEQLAGAQDQALRVAADLQNVRRRAEQDVEKAHKFALERFAGDLLPIIDSLERGLELSNPDDENIRPMREGIELTLKMFQDTLKRYQLEAIDPHGEPFNAEHHQAMAMQESADVEPNSVLKVFQKGYLLNGRLLRPAMVVVSKAPAPVSPSIDEQA	PGPT0014650_4753	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HIGH_TEMPERATUR_REGULATION,PGPT0014650-grpE-K03687	NA	NA
D1-36_00794	1917	dnaK_2	COG0443	Chaperone protein DnaK	ATGGGCAAAATTATCGGTATCGACCTGGGGACCACCAACTCGTGCGTCTCCGTGCTGGAAAACGGCAAGGCCAAGGTTATTGAAAACGCTGAAGGCGCGCGCACCACGCCGTCGATCATCGCGTACGCCAACGATGGCGAAATCCTGGTGGGTCAGTCCGCCAAGCGCCAGGCTGTGACCAATCCGCATAACACCCTGTACGCGGTGAAGCGTCTGATCGGTCGCAAGTTCGACGAAGAAGTCGTTCAGAAAGACATCAAGATGGTGCCTTACAAGATCGCCAAGGCTGGCAACGGCGACGCCTGGGTTGAAGTGAACGGCCAGAAAATGGCGCCGCCACAGATCTCGGCTGAAATCCTGAAGAAGATGAAGAAAACCGCCGAAGATTACCTCGGCGAAGCAGTGACTGAGGCTGTTATCACTGTCCCTGCTTACTTCAACGACAGCCAGCGTCAGGCGACCAAAGACGCCGGCCGCATCGCGGGCCTGGACGTAAAACGCATCATCAACGAACCCACCGCGGCCGCTCTGGCCTACGGCATGGACAAGGCCAAGGGCGATCACACCGTGATCGTTTACGACCTGGGTGGCGGTACCTTCGACGTTTCCGTGATCGAGATCGCTGAAGTCGACGGCGAGCACCAGTTCGAAGTGCTGGCGACCAACGGCGACACGTTCCTCGGTGGTGAAGACTTCGACATCCGCCTGATCGACTACCTCGTCGATGAGTTCAAGAAAGAAAGCGGCATGAACCTCAAGGGTGACCCGCTGGCCATGCAGCGCCTCAAAGAAGCCGCTGAAAAAGCCAAGATCGAACTGTCCTCGAGCCAGTCGACCGACGTGAACCTGCCGTACATCACCGCAGACGCCACCGGTCCGAAGCACCTGAACGTGAAGATTTCCCGCGCCAAGCTCGAAGCGCTGGTTGAAGACCTGGTTCAGCGCACCATCGAGCCTTGCCGCATTGCGATGAAAGACGCCGGTATCGACGTGGGTTCGATCAACGACGTGATCCTGGTCGGCGGCCAGACCCGTATGCCGCTGGTGCAGAAGCTGGTAACCGATTTCTTCGGTAAAGAAGCTCGTAAGGATGTGAACCCTGACGAAGCCGTTGCCATGGGTGCCGCCATCCAGGGCGCCGTTCTGGCTGGTGACGTGAAAGACGTTCTGCTGCTCGACGTCAGCCCGCTGACCCTGGGTATCGAAACCATGGGCGGCGTGATGACTGCGCTGATCGAGAAAAACACCACGATTCCTACCAAGAAATCCCAGGTGTTCTCGACTGCCGATGACAACCAGAGCGCCGTGACCATCCACGTGCTGCAAGGCGAGCGCAAGCAAGCCGCCCAGAACAAGTCGTTGGGCAAGTTCGACCTGGCCGAGATTCCACCGGCTCCACGTGGCGTGCCACAGATCGAAGTGACCTTCGACATCGACGCCAACGGCATCCTGCACGTCGGCGCGAAAGACAAGGCCACCGGCAAGACCCAGTCGATCGTGATCAAGGCCAACTCCGGCCTGTCCGAAGAAGAAATTCAGCAGATGGTTCGCGATGCTGAAGTCAACGCCGAGGAAGACCGCAAGTTCGAAGAGCTGGCAAGCGCGCGTAACCAGGGCGATGCCTTGGTGCACTCGACTCGCAAGATGATCGCCGACGCCGGTGACAAAGTGACCGCCGAAGAAAAAACGGCGATCGAAGCGGCTGTAGTTGCTCTTGAAGCTGCCGTCAAAGGCGACGACAAGGCGGCCATCGAAGCGAAGATCGAAGAGTTGTCGAAAGTCTCCGCGCCAGTGGCTCAGAAGATGTATGCCGAGCAGGCCCAGCCCGCTGAAGGCGCAGCGCCGCAAGGCGAGTCGGCCGAGAAAACCGACGATGTCGTCGACGCTGAGTTCGAAGAAGTGAAAGACAACAAGTAA	MGKIIGIDLGTTNSCVSVLENGKAKVIENAEGARTTPSIIAYANDGEILVGQSAKRQAVTNPHNTLYAVKRLIGRKFDEEVVQKDIKMVPYKIAKAGNGDAWVEVNGQKMAPPQISAEILKKMKKTAEDYLGEAVTEAVITVPAYFNDSQRQATKDAGRIAGLDVKRIINEPTAAALAYGMDKAKGDHTVIVYDLGGGTFDVSVIEIAEVDGEHQFEVLATNGDTFLGGEDFDIRLIDYLVDEFKKESGMNLKGDPLAMQRLKEAAEKAKIELSSSQSTDVNLPYITADATGPKHLNVKISRAKLEALVEDLVQRTIEPCRIAMKDAGIDVGSINDVILVGGQTRMPLVQKLVTDFFGKEARKDVNPDEAVAMGAAIQGAVLAGDVKDVLLLDVSPLTLGIETMGGVMTALIEKNTTIPTKKSQVFSTADDNQSAVTIHVLQGERKQAAQNKSLGKFDLAEIPPAPRGVPQIEVTFDIDANGILHVGAKDKATGKTQSIVIKANSGLSEEEIQQMVRDAEVNAEEDRKFEELASARNQGDALVHSTRKMIADAGDKVTAEEKTAIEAAVVALEAAVKGDDKAAIEAKIEELSKVSAPVAQKMYAEQAQPAEGAAPQGESAEKTDDVVDAEFEEVKDNK	PGPT0014555_2896	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014555-dnaK-K04043	NA	NA
D1-36_00795	1125	dnaJ	COG0484	Chaperone protein DnaJ	ATGGCAAAACGTGATTTTTACGAAGTATTGGGTGTTGAGCGGGGGGCCAGCGAAGCAGAGCTGAAGAAGGCCTATCGTCGCCTGGCGATGAAACACCACCCGGACCGTAATCCCGGCGACAAGGCTTCGGAAGAGATGTTCAAGGAGGCCAACGAGGCCTATGAAGTCCTGTCCGATTCCAGCAAGCGCGCGGCTTACGACCAGTACGGCCATGCCGGCGTCGACCCTAGCATGGGTGGCGGCGGTGCCGGTTTCGGCGGACAGAACTTCTCCGATATTTTCGGCGATGTGTTCAGTGATTTCTTCGGTGGCGGCCGTGGCGGTGCCCGTGGTGGCGCTCAGCGAGGCAGTGACCTGCGCTACACGCTGGAGCTGAGCCTCGAGGAGGCGGTGCGGGGGACCACGGTCAATATCCGTGTTCCGACGCTGGTCAATTGCAAACCATGCGACGGCTCGGGTGCCAAGAAGGGTTCCTCGCCAGTCACTTGCCCTACCTGTGGCGGTATCGGCCAGGTTCGCATGCAGCAAGGCTTCTTCTCGGTCCAGCAGACCTGTCCGCGCTGCCATGGCCAAGGCAAGATCATTTCCGATCCGTGCGATGCCTGCCATGGCGAAGGGCGTGTCGAAGAGTACAAGACGCTGTCGGTGAAAGTGCCGGCCGGTGTCGACACGGGCGACCGTATCCGCCTGTCCGGCGAAGGCGAGGCAGGTGCCCAGGGTGGTCCGACTGGCGACTTGTATGTGGTCATCAACGTGCGCGAACACGCGATCTTCCAGCGTGACGGCAAGCACTTGTTCTGCGAAGTGCCTATCAGCTTCGTCGATGCGGCGCTGGGTGGCGAGCTGGAAATCCCGACCCTCGATGGTCGCGTCAAGCTGAAGATCCCTGAGGGGACGCAAACAGGCAAGCAATTCCGGATTCGCGGCAAGGGCGTGGCGCCGGTGCGTGGCGGTGGTGCGGGTGACCTGATGTGCCGCGTTGCGGTAGAGACACCGGTCAACCTGAGCCGGCGTCAGCGAGAACTGTTGGAAGAGTTCCGCAGCTCGTTGGCGGATGACAATAGCCACTCCCCTAAAACCACTGGCTGGTTCGAAGGCGTGAAGCGCTTCTTCGGCGACCTGTAA	MAKRDFYEVLGVERGASEAELKKAYRRLAMKHHPDRNPGDKASEEMFKEANEAYEVLSDSSKRAAYDQYGHAGVDPSMGGGGAGFGGQNFSDIFGDVFSDFFGGGRGGARGGAQRGSDLRYTLELSLEEAVRGTTVNIRVPTLVNCKPCDGSGAKKGSSPVTCPTCGGIGQVRMQQGFFSVQQTCPRCHGQGKIISDPCDACHGEGRVEEYKTLSVKVPAGVDTGDRIRLSGEGEAGAQGGPTGDLYVVINVREHAIFQRDGKHLFCEVPISFVDAALGGELEIPTLDGRVKLKIPEGTQTGKQFRIRGKGVAPVRGGGAGDLMCRVAVETPVNLSRRQRELLEEFRSSLADDNSHSPKTTGWFEGVKRFFGDL	PGPT0014545_4862	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014545-dnaJ-K03686	NA	NA
D1-36_00796	807	dapB	COG0289	4-hydroxy-tetrahydrodipicolinate reductase	ATGCGACGTATTGCTGTGATGGGCGCCGCGGGGCGCATGGGCAAGGCGCTGGTCGAAGCGGTGCAGCAACGCTCGCCGCTTTCGGGCCTGACCGCTGCCATCGTGAGGCCCGACAGTACGCTGGTAGGCGCCGATGCTGGCGAGTTGGCCTCGCTTGGGCGTATCGGCGTGCCAATGTCCGGTGGGCTGGAAAAGGTGCTCGACGAGTTTGACGTCCTGATCGATTTCACCCTTCCGGAAGTGATGCTCAAGAACCTTGCCATCTGCCGCAAGGCTGGCAAGGCCATGGTGATCGGCACGACCGGCCTGGATGCCGCGCAAAAGCAATTGCTGGCCGACGCAGGCAAGGACATCCCGATTGTATTTGCGGCGAACTTCAGCGTCGGCGTGAACCTGTCGCTGAAGTTGCTGGACTTGACTGCTCGAGTGTTGGGCGACGATGCGGATATCGAAATCATCGAGGCACATCACCGGCACAAGATCGATGCGCCTTCGGGCACCGCGTTGCGCATGGGTGAAGTGATTGCCGATGCGCTGGGTCGCGATTTGCAGGAAGTGGCCGTGTACGGGCGCCAGGGGCATACCGGTGCTCGGGACAGAGACACCATCGGTTTCGCGACCGTGCGTGGCGGCGATGTGGTGGGTGATCACACCGTGCTGTTCGCGACTGAGGGCGAGCGTTTGGAAATTACCCACAAGGCATCGAGCCGGATGACCTTCGCCAAGGGCGCTGTGCGTGCCGCGCTTTGGTTGGATGGTCGTGAGCCTGGTTTGTACGACATGCAGGATGTTCTCGACCTGCGTTGA	MRRIAVMGAAGRMGKALVEAVQQRSPLSGLTAAIVRPDSTLVGADAGELASLGRIGVPMSGGLEKVLDEFDVLIDFTLPEVMLKNLAICRKAGKAMVIGTTGLDAAQKQLLADAGKDIPIVFAANFSVGVNLSLKLLDLTARVLGDDADIEIIEAHHRHKIDAPSGTALRMGEVIADALGRDLQEVAVYGRQGHTGARDRDTIGFATVRGGDVVGDHTVLFATEGERLEITHKASSRMTFAKGAVRAALWLDGREPGLYDMQDVLDLR				NA	NA	NA	NA	NA
D1-36_00798	1137	carA	COG0505	Carbamoyl-phosphate synthase small chain	TTGACTAAGCCAGCCATACTCGCCCTTGCTGATGGCAGCATTTTTCGCGGCGAAGCCATTGGAGCCGACGGTCAGACCGTTGGTGAGGTGGTGTTCAACACCGCAATGACCGGCTATCAGGAAATTCTTACCGATCCTTCCTACGCCCAACAAATCGTTACCTTGACCTATCCGCACATCGGCAACACTGGCACCACGCCGGAAGACGCTGAGTCCGATCGTGTCTGGTCCGCTGGCCTGGTCATCCGCGACTTGCCGCTGGTAGCGAGCAACTGGCGTAACACGATGTCCCTCTCCGACTACCTGAAAGCCAACAATGTCGTGGCGATTGCCGGTATCGATACCCGCCGCCTGACCCGCATCCTTCGGGAAAAAGGCGCGCAGAACGGCTGCATCATGGCCGGCGACAACATTTCCGAAGAGGCGGCCATCGCCGCCGCCCAGGGGTTTCCAGGCCTCAAGGGCATGGACCTGGCGAAGGTCGTCAGCACCCAGAAGCAATATGAGTGGCGCTCCTCGGTCTGGGATCTGAAAACCGACAGCCACGCGACGATCGAAGCCTCCGAGCTGCCGTACCACGTGGTCGCGTACGACTACGGCGTCAAGTTGAATATCCTGCGCATGCTGGTCGCACGTGGCTGCCGCGTGACGGTAGTGCCAGCACAAACCCCGGCGGCTGACGTCCTGGCGCTCAAGCCTGATGGCGTGTTCCTGTCCAACGGTCCGGGTGACCCGGAGCCTTGCGACTACGCCATCCAGGCGATCAAGGATGTGCTGGAAACCGAGATTCCGGTATTCGGTATCTGCCTCGGTCACCAATTGCTTGCCCTGGCCTCGGGTGCCAAGACCGTCAAAATGGGTCATGGCCATCATGGTGCAAACCACCCGGTCCAGGACCTGGACACCGGCGTCGTCATGATCACCAGCCAGAACCACGGTTTTGCCGTCGACGAAGCGACCCTGCCGGCCAACGTGCGCGCGATTCACAAGTCGCTGTTCGATGGCACGCTGCAAGGTATCGAGCGTACCGACAAGAGCGCGTTCAGCTTCCAGGGCCACCCAGAAGCGAGCCCGGGCCCGAACGACGTGGCGCCGCTGTTCGATCGCTTCATCAACGAGATGGCCAAGCGACGCTGA	MTKPAILALADGSIFRGEAIGADGQTVGEVVFNTAMTGYQEILTDPSYAQQIVTLTYPHIGNTGTTPEDAESDRVWSAGLVIRDLPLVASNWRNTMSLSDYLKANNVVAIAGIDTRRLTRILREKGAQNGCIMAGDNISEEAAIAAAQGFPGLKGMDLAKVVSTQKQYEWRSSVWDLKTDSHATIEASELPYHVVAYDYGVKLNILRMLVARGCRVTVVPAQTPAADVLALKPDGVFLSNGPGDPEPCDYAIQAIKDVLETEIPVFGICLGHQLLALASGAKTVKMGHGHHGANHPVQDLDTGVVMITSQNHGFAVDEATLPANVRAIHKSLFDGTLQGIERTDKSAFSFQGHPEASPGPNDVAPLFDRFINEMAKRR	PGPT0021155_2770	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021155-carA-K01956	NA	NA
D1-36_00799	3222	carB_1	COG0458	Carbamoyl-phosphate synthase large chain	ATGCCAAAACGTACAGACATAAAAAGCATCCTGATTCTCGGCGCTGGCCCGATCGTGATCGGCCAGGCCTGCGAATTCGACTACTCCGGCGCCCAGGCCTGCAAAGCCCTGCGCGAAGAGGGCTATCGCGTCATCCTGGTGAACTCCAACCCGGCCACCATCATGACCGACCCGGCCATGGCCGACGCCACCTACATCGAACCGATCAAGTGGCAAACCGTTGCCAAGATCATCGAGAAGGAGCGCCCGGACGCTCTGCTGCCTACCATGGGCGGCCAGACCGCGCTGAACTGCGCCCTTGAGCTGGAGCGCGAAGGCGTCCTGGAGAAATTCGGTGTGGAAATGATCGGCGCCAACGCCGACACCATCGACAAGGCCGAGGACCGTTCGCGTTTCGACAAGGCGATGAAATCCATCGGCCTGGACTGTCCGCGCTCGGGTATCGCCCACAGCATGGAAGAAGCCAACGCGGTCCTGGAGCGCCTTGGTTTCCCGTGCATCATCCGTCCGTCCTTCACCATGGGCGGCACCGGTGGTGGCATCGCCTACAACCGCGAAGAATTCGAAGAAATCTGCGCCCGTGGTCTCGATTTGTCGCCGACCAAGGAATTGCTGATCGACGAATCCCTGATCGGTTGGAAAGAATATGAAATGGAAGTTGTCCGTGACAAAAAGGACAACTGCATCATCGTCTGCTCCATCGAGAACTTCGACCCGATGGGTGTGCACACCGGTGACTCGATCACCGTTGCGCCGGCCCAGACCCTGACGGACAAGGAATACCAGATCCTGCGTAACGCCTCCCTGGCGGTATTGCGCGAGATCGGCGTGGAAACCGGCGGCTCCAACGTCCAGTTCGGCATCTGCCCGAACACCGGTCGCATGGTGGTCATCGAGATGAACCCGCGGGTGTCCCGTTCCTCGGCACTGGCCTCCAAGGCCACCGGTTTCCCGATCGCCAAGGTCGCCGCCAAGCTAGCCGTGGGCTACACCCTGGACGAGCTGTCGAACGACATCACCGGCGGCAAGACACCGGCGTCCTTCGAGCCGTCCATCGACTACGTCGTGACCAAGCTGCCACGCTTCGCCTTCGAGAAGTTCGCCAAGGCCGACGCTCGCCTGACCACCCAGATGAAGTCGGTCGGTGAAGTCATGGCCATCGGCCGGACCTTCCAGGATTCCCTGCAGAAAGCCCTTCGCGGCCTGGAAGTGGGTGTTTGCGGCCTCGATCCGAAGCTGGACCTGAGCAACCCGGAAAGCATGAGCGAGCTCAAGCGCGAGCTGACCGTGCCGGGCGCCGAGCGTATCTGGTACGTGGCCGATGCCTTCCGCGCCGGCATGACCGTCGAACAGATTTTCGGCATGAACATGATCGATCCTTGGTTCCTGGTGCAGATCGAAGATCTGATCAAGGAAGAAGAGAAGGTCAAGACCCTGGGCATGTCCAGCATTGACCGCGACACGATGCTGCGCCTCAAACGCAAAGGCTTCTCCGACCAGCGCCTCGCCAAGTTGCTGGGCGTGACCGACAAGAGCCTGCGCGCCCATCGTCACAAGCTGGAGGTTTTCCCGGTCTACAAGCGCGTCGACACCTGCGCCGCTGAGTTCGCCACCGATACCGCCTACCTGTACTCCACGTACGAAGAAGAGTGCGAAGCCGCGCCGTCGAGCCGTGACAAGATCATGATCCTGGGTGGCGGCCCCAACCGGATCGGCCAGGGCATCGAATTCGACTACTGCTGTGTACACGCGGCACTGGCCCTGCGCGACGACGGTTACGAGACCATCATGGTCAACTGCAACCCGGAAACCGTATCCACTGATTACGACACGTCCGATCGTCTGTACTTCGAGCCTGTCACCCTGGAAGACGTGCTGGAAATCGTCCGCGTCGAGAAGCCAAAAGGCGTGATCGTCCAGTACGGCGGCCAGACCCCGCTGAAACTGGCTCGTGCCCTTGAGGCCGCTGGCGTGCCGATCATCGGTACCAGCCCGGATGCCATCGACCGCGCGGAAGACCGCGAGCGCTTCCAGCAGATGGTCGAGCGCCTGAACCTGCGCCAGCCGCCAAACGCCACCGTGCGCAGCGAAGACGAAGCCATTCGCGCCGCCGCGAAGATCGGCTACCCGTTGGTTGTTCGTCCGTCCTATGTATTGGGCGGTCGCGCGATGGAAATCGTCTACCAGGAAGACGAACTCAAGCGTTACCTGCGCGAAGCGGTCCAGGTGTCCAACGACAGCCCGGTATTGCTTGACCACTTCCTCAACTGCGCCATCGAGATGGACGTGGATGCGGTCAGCGACGGCAAGGATGTGGTGATCGGCGCGATCATGCAGCACATCGAACAGGCCGGTGTTCACTCCGGTGACTCCGCTTGCTCGTTGCCACCTTACTCGCTGCCGGCGCACATCCAGGACGAGATGCGCGAACAGGTCAAGAAAATGGCCTTGGAGCTGGGCGTCATCGGCCTGATGAACGTGCAACTGGCCCTGCAGGGCGAAGACATCTATGTCATCGAAGTCAACCCGCGCGCTTCCCGGACCGTGCCGTTCGTTTCCAAGTGCATCGGTGTTTCCCTGGCAATGATCGCTGCACGGGTCATGGCTGGCAAAACCCTGCAAGAGCTGGGCTTTACCAAGGAAATCATCCCGAACTTCTACAGTGTGAAAGAAGCGGTGTTCCCGTTCGCCAAGTTCCCGGGTGTTGACCCGATCCTCGGCCCGGAAATGAAATCCACCGGTGAAGTCATGGGCGTGGGCGATACTTTCGGTGAGGCTTTCGCCAAGGCCCAGATGGGCGCCAGCGAAGTGTTGCCGACGGGTGGCACGGCGTTCATCAGTGTGCGTGATGACGACAAGCCACTGGTTGCAGGCGTGGCCCGTGATCTGATCAACTTGGGCTTCGAAGTGGTCGCCACTGCCGGTACTGCCAAGCTGATCGAAGCAGCAGGCCTGAAAGTGCGCCGCGTGAACAAGGTGACCGAGGGCCGTCCGCACGTGGTCGACATGATCAAAAATGACGAAGTCACGCTGATCATCAACACCACCGAAGGTCGCCAGTCGATCGCTGATTCCTATTCCATCCGTCGCAATGCGCTGCAGCATAAGATCTACTGCACCACGACCATTGCTGCCGGCGAAGCGATCTGCGAAGCGCTCAAGTTCGGCCCTGAGAAGACCGTACGTCGCTTGCAGGATCTACATGCAGGATTGAAGGCATGA	MPKRTDIKSILILGAGPIVIGQACEFDYSGAQACKALREEGYRVILVNSNPATIMTDPAMADATYIEPIKWQTVAKIIEKERPDALLPTMGGQTALNCALELEREGVLEKFGVEMIGANADTIDKAEDRSRFDKAMKSIGLDCPRSGIAHSMEEANAVLERLGFPCIIRPSFTMGGTGGGIAYNREEFEEICARGLDLSPTKELLIDESLIGWKEYEMEVVRDKKDNCIIVCSIENFDPMGVHTGDSITVAPAQTLTDKEYQILRNASLAVLREIGVETGGSNVQFGICPNTGRMVVIEMNPRVSRSSALASKATGFPIAKVAAKLAVGYTLDELSNDITGGKTPASFEPSIDYVVTKLPRFAFEKFAKADARLTTQMKSVGEVMAIGRTFQDSLQKALRGLEVGVCGLDPKLDLSNPESMSELKRELTVPGAERIWYVADAFRAGMTVEQIFGMNMIDPWFLVQIEDLIKEEEKVKTLGMSSIDRDTMLRLKRKGFSDQRLAKLLGVTDKSLRAHRHKLEVFPVYKRVDTCAAEFATDTAYLYSTYEEECEAAPSSRDKIMILGGGPNRIGQGIEFDYCCVHAALALRDDGYETIMVNCNPETVSTDYDTSDRLYFEPVTLEDVLEIVRVEKPKGVIVQYGGQTPLKLARALEAAGVPIIGTSPDAIDRAEDRERFQQMVERLNLRQPPNATVRSEDEAIRAAAKIGYPLVVRPSYVLGGRAMEIVYQEDELKRYLREAVQVSNDSPVLLDHFLNCAIEMDVDAVSDGKDVVIGAIMQHIEQAGVHSGDSACSLPPYSLPAHIQDEMREQVKKMALELGVIGLMNVQLALQGEDIYVIEVNPRASRTVPFVSKCIGVSLAMIAARVMAGKTLQELGFTKEIIPNFYSVKEAVFPFAKFPGVDPILGPEMKSTGEVMGVGDTFGEAFAKAQMGASEVLPTGGTAFISVRDDDKPLVAGVARDLINLGFEVVATAGTAKLIEAAGLKVRRVNKVTEGRPHVVDMIKNDEVTLIINTTEGRQSIADSYSIRRNALQHKIYCTTTIAAGEAICEALKFGPEKTVRRLQDLHAGLKA	PGPT0021150_3562	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021150-carB-K01955	NA	NA
D1-36_00800	483	greA	COG0782	Transcription elongation factor GreA	ATGAGCATAACCAAGTACCCCATGACCGTTCAGGGCGCTCGCGCCCTGGAAGAAGAGCACGCTCACCTGACCAAGGTCGAGCGTCCTCGCTTGAGCCAGGCCATCGGTGAGGCCCGTGAACTGGGCGACCTGAAGGAAAACGCCGAATACCACGCTGCCCGTGAAGAGCAGGGCATGGTCGAGGCGCGTATCCGTGACATCGAAGGCCGTATGCAGAACGCGGTGATTATCGATGTCACCACGATCCCGCACACGGGCAAAGTGATTTTCGGCACCACCGTGGAAATCGCCAACGTCGAGACTGATGAAAGCGTCACTTACCAGATCGTTGGTGAGGACGAGGCGGACATCAAGCTCGGCAAGATTTCAGTCGGTTCCCCTATCGCCCGTGCCTTGATTGCCAAGGAAGAGGGTGACGTGGTTGCCGTGAAGACGCCTGGCGGTGTCATCGAGTATGAGATTGTCGAAGTCCGTCATATCTGA	MSITKYPMTVQGARALEEEHAHLTKVERPRLSQAIGEARELGDLKENAEYHAAREEQGMVEARIRDIEGRMQNAVIIDVTTIPHTGKVIFGTTVEIANVETDESVTYQIVGEDEADIKLGKISVGSPIARALIAKEEGDVVAVKTPGGVIEYEIVEVRHI	PGPT0030495_1175	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-TRANSCRIPTIONAL_CONTROL	PUTATIVE-TRANSCRIPTIONAL_CONTROL-1,PGPT0030495-greA-K03624
D1-36_00801	405			hypothetical protein	ATGATCTGGCAGCTCGCCCAGATGTTGTGGGTGGGCGGCGTCTGGTTGCTGCACATCGGTCTGCTGCCGGTACTGGGCAAAATTGGCCTGGCGCCGCTGCTTATCGATGAAATCGCGAGCATGCTGACGGCGCTGCTGGTGGGATTTTCCGCAGCGTGCGTGCTGTTTCAGGCTCTGGTGTTGGTTCAGGCTGAGGGTTTTGTCAGTCTATGGCGCGACATTCGTGGGCAATTGCTGCTCATGTCGTTGTACGCATGCGGAATGTTCCTGGCGGTGCGTCTCGGTTGGCCAAGTGCAACGCAGTGGCAGGTATTCAGTTACCTGATACTGGGCTTTTCCGGATTGGTGCTAGTGTTGCAACCGGTTCCCGGCTGGAGCGGCAGGGTGTGCGAAGCACACCCTTGA	MIWQLAQMLWVGGVWLLHIGLLPVLGKIGLAPLLIDEIASMLTALLVGFSAACVLFQALVLVQAEGFVSLWRDIRGQLLLMSLYACGMFLAVRLGWPSATQWQVFSYLILGFSGLVLVLQPVPGWSGRVCEAHP				NA	NA	NA	NA	NA
D1-36_00802	309	yhbY	COG1534	RNA-binding protein YhbY	ATGCCGCTCACTCAAGAGCAGAAGAAACAATACAAATCCATTGGCCACCATCTGAAACCGGTTTTGACTGTGGCTGATAACGGTTTGACTGAGGGTGTGCTCGCCGAACTGGAACGCGCCTTGGGCGATCACGAGCTGATCAAGATCAAGCTCAACATCCTCGACCGCGAAGCCCGCCTGGCTGCCGTTGCCGAACTGTGTAAAGTCGGAAAGGCAGACCTCGTGCAGGTCATCGGCAAGATGGCGCTGATTTACCGCAAGAACTTCAGCGTCAACAAGCAATTGTCGAACGTTCACCGCTTCAAGTGA	MPLTQEQKKQYKSIGHHLKPVLTVADNGLTEGVLAELERALGDHELIKIKLNILDREARLAAVAELCKVGKADLVQVIGKMALIYRKNFSVNKQLSNVHRFK				NA	NA	NA	NA	NA
D1-36_00803	651	rlmE	COG0293	Ribosomal RNA large subunit methyltransferase E	GTGGCCCGTTCCAAGACTAGCCAGAACTGGCTCAAAGAACATTTCAACGACCCGTACGTCAAAATGGCGCAAAAAGACGGCTATCGTTCGCGCGCCAGCTATAAATTGCTGGAGATCCAGGAAAAAGATCGCCTGATTCGTCCTGGCATGACCGTGATCGATCTCGGCGCAGCGCCGGGAGGCTGGTCGCAAGTGACCAGTCGTCTGATTGGCGGCCAGGGGCGGCTGATCGCTTCCGATATCCTGGAAATGGACGGCATCCCCGATGTCACCTTCATCCAGGGCGACTTCACGGAAGACGCGGTGTTGGCGAAAATCCTGGAGGCCGTCGGAAATACCGAAGTCGACCTTGTGATTTCCGATATGGCCCCCAATATGAGTGGATTAGCGGCTGTCGACATGCCTCGTGCGATGTTTTTGAGCGAGCTGGCCCTGGATCTGGCTGGGCGGGTTCTGCGTCCGGGTGGTGACTTCCTGATCAAGGTTTTCCAGGGTGAGGGCTTCGATGAGTACCATAAGGGTATCCGCAAGCTGTTCGACAAAGTGCAGATGCGCAAGCCGTTGTCGTCCCGTGACCGTTCTCGCGAGCAGTACCTGCTGGCGCGTGGGTTCCGCGGGATTGAAGGCGCTGCCAGTGATGAGCGTCTTTAA	MARSKTSQNWLKEHFNDPYVKMAQKDGYRSRASYKLLEIQEKDRLIRPGMTVIDLGAAPGGWSQVTSRLIGGQGRLIASDILEMDGIPDVTFIQGDFTEDAVLAKILEAVGNTEVDLVISDMAPNMSGLAAVDMPRAMFLSELALDLAGRVLRPGGDFLIKVFQGEGFDEYHKGIRKLFDKVQMRKPLSSRDRSREQYLLARGFRGIEGAASDERL				NA	NA	NA	NA	NA
D1-36_00804	1920	ftsH	COG0465	ATP-dependent zinc metalloprotease FtsH	TTGAACGATATGGCAAAGAATCTGATCCTGTGGTTGATCATCGCTGCTGTCCTTGTGACCGTGATGAACAACTTCTCCAGCCCTAACGAGCCGCAGACCCTCAACTATTCCGACTTCCTCCAGCAGGTCAAGGAAGGCAAGGTCGAGCGCGTAGCCGTTGATGGCTATGTGATTACCGGCAAGCGCGCCGATGGCGACACTTTCAAGACCATTCGTCCGGCTATCCAGGACAACGGCCTGATTGGCGACCTGGTGGACAATCATGTCGTGATCGAAGGCAAGCAGCCCGAGCAGCAAAGCATCTGGGCCCAGCTTCTGGTCGCCAGCTTCCCTATCCTCGTGATCATTGCGGTGTTCATGTTCTTCATGCGCCAGATGCAGGGTGGAGCCGGAGGCAAGGGCGGGCCGATGAGCTTCGGCAAGAGCAAGGCTCGGCTGTTGTCCGAAGATCAGGTCAAGACCACCCTTGCCGACGTCGCGGGTTGCGATGAGGCGAAGGAAGAAGTGGGTGAGCTGGTCGAGTTCCTGCGCGATCCGGGCAAGTTCCAACGCCTGGGTGGCCGCATCCCACGTGGTGTGCTGATGGTTGGCCCGCCGGGTACAGGTAAAACGCTGTTGGCCAAGGCGATTGCCGGCGAAGCGAAAGTACCGTTCTTCACGATTTCCGGCTCCGACTTCGTCGAAATGTTCGTCGGCGTGGGCGCCAGCCGTGTTCGTGACATGTTCGAACAAGCCAAGAAACACGCGCCGTGCATCATCTTCATCGACGAAATCGACGCGGTCGGTCGTCACCGTGGTGCTGGTATGGGTGGTGGTCACGACGAACGTGAGCAAACCCTCAACCAGTTGCTGGTGGAGATGGACGGTTTTGAAATGAACGACGGCATCATCGTGATTGCCGCCACCAACCGTCCTGACGTGCTTGACCCCGCGCTGTTGCGTCCAGGTCGTTTCGACCGCCAAGTCGTGGTGGGGCTGCCAGACATCCGCGGTCGCGAGCAGATCCTGAAGGTCCACATGCGCAAGGTGCCAATGGGTGACGATGTCGCTCCAGCGGTCATCGCCCGCGGTACGCCGGGTTTCTCCGGTGCGGATCTGGCGAACCTGGTAAACGAAGCGTCGTTGTTCGCGGCCCGTTCCGGCAAGCGCGTCGTTGAAATGAAAGAGTTCGAATTGGCCAAGGACAAGATCATGATGGGCGCCGAGCGCAAATCGATGGTCATGTCGGAAAAGGAAAAGCAGAACACGGCTTACCACGAGGCGGGTCACGCTATCGTCGGTCGAGTGGTGCCTGAGCATGATCCGGTTTACAAGGTTTCGATCATCCCGCGCGGTCGCGCGCTGGGTGTGACGATGTTCCTACCGGAAGAAGACCGCTACAGTCTCTCCAAGCGTGCCTTGATCAGCCAGATCTGTTCGCTGTACGGCGGTCGTATCGCTGAAGAGATGACGTTGGGTTTCGATGGCGTGACGACTGGTGCGTCAAACGACATCATGCGTGCCAGCCAGATTGCGCGAAACATGGTGACCAAGTGGGGCTTGTCCGAGAAGCTCGGGCCGCTGATGTATGCCGAGGAAGAAGGCGAAGTGTTCCTTGGCCGCGGTGGCGGTGGTCAACATGCAAGCTTCTCCGGTGAGACTGCCAAGCTGATTGACACTGAAGTTCGCAGCATCATCGACCACTGCTACGGCACGGCGAAGCAGATCCTCACGGACAATCGCGACAAGCTGGATGCGATGGCTGATGCCTTGATGAAATATGAAACCATCGATGCCGAGCAGATCGACGACATCATGGCAGGCCGCACGCCACGTGAGCCTCGGGATTGGTCCGGTGGCACGGGTGCCTCAGGTACGCCTCCGGCGGTGCAGGGCGAGCGCCCGGAAACACCCATCGGCGGCCCGGCTGCCGACGTTTAA	MNDMAKNLILWLIIAAVLVTVMNNFSSPNEPQTLNYSDFLQQVKEGKVERVAVDGYVITGKRADGDTFKTIRPAIQDNGLIGDLVDNHVVIEGKQPEQQSIWAQLLVASFPILVIIAVFMFFMRQMQGGAGGKGGPMSFGKSKARLLSEDQVKTTLADVAGCDEAKEEVGELVEFLRDPGKFQRLGGRIPRGVLMVGPPGTGKTLLAKAIAGEAKVPFFTISGSDFVEMFVGVGASRVRDMFEQAKKHAPCIIFIDEIDAVGRHRGAGMGGGHDEREQTLNQLLVEMDGFEMNDGIIVIAATNRPDVLDPALLRPGRFDRQVVVGLPDIRGREQILKVHMRKVPMGDDVAPAVIARGTPGFSGADLANLVNEASLFAARSGKRVVEMKEFELAKDKIMMGAERKSMVMSEKEKQNTAYHEAGHAIVGRVVPEHDPVYKVSIIPRGRALGVTMFLPEEDRYSLSKRALISQICSLYGGRIAEEMTLGFDGVTTGASNDIMRASQIARNMVTKWGLSEKLGPLMYAEEEGEVFLGRGGGGQHASFSGETAKLIDTEVRSIIDHCYGTAKQILTDNRDKLDAMADALMKYETIDAEQIDDIMAGRTPREPRDWSGGTGASGTPPAVQGERPETPIGGPAADV				NA	NA	NA	NA	NA
D1-36_00805	852	folP	COG0294	Dihydropteroate synthase	ATGACTTCTGTTCAGTCCTCGACCCGGTTGCCTTGCGGCAACCGGGTTCTTGATTTGGCCCGTGTGCATGTCATGGGCATCCTCAATGTCACTCCAGATTCCTTTTCCGATGGTGGGCGCTTCAGTCAGCTCGACGCTGCGTTGCGACATGCGCAAGCCATGGTCTGCGCTGGCGCGACGTTGATCGATGTTGGCGGAGAGTCCACTCGTCCCGGTGCGCGGGCGGTTTCGCCTACGGAAGAGCTGGAGCGAGTGGCGCCGATTGTCGAGCGCATCCATCGCGAGCTCGACGTCGTCATCTCAGTCGATACGTCCACGCCGGCAGTCATGCGGGAGGCGGCGCGCTTGGGGGCGGGGCTTATCAATGATGTTCGCTCCTTGCGTCGAGATGGCGCTCTGGATGCGGCCGCCGCTACGGGCCTGCCGGTTTGCCTGATGCATATGCTGGGCGAGCCTGGAACCATGCAGGACGACCCGCATTATGACGACGTGACCAAGGAGGTGGGCGAGTTCCTGGCGGAGCGCATGAACCAGTGCGCTGCCGTGGGCATTCCCGCCGAGCGCATTATCCTTGACCCTGGATTCGGTTTTGCGAAGACAGTGGCCCACAATCTAAGCCTGTTCAAACATATGGAAGCCTTGCATGCCCTTGGGCGACCCTTGTTGGTTGGGGTTTCGCGAAAGAGCATGATAGGCAACGCCCTGGGGCGTCCGGTAGGAGAGCGCCTCTATGGAGGTCTCGCCCTGGCGGCCCTGGCCATTACGAAAGGCGCGCGTATATTACGGGTGCATGATGTGATCGAAACAATGGATGTCGTGCGGATGATCGCCGCGGTGGATTCAGCCGAATAA	MTSVQSSTRLPCGNRVLDLARVHVMGILNVTPDSFSDGGRFSQLDAALRHAQAMVCAGATLIDVGGESTRPGARAVSPTEELERVAPIVERIHRELDVVISVDTSTPAVMREAARLGAGLINDVRSLRRDGALDAAAATGLPVCLMHMLGEPGTMQDDPHYDDVTKEVGEFLAERMNQCAAVGIPAERIILDPGFGFAKTVAHNLSLFKHMEALHALGRPLLVGVSRKSMIGNALGRPVGERLYGGLALAALAITKGARILRVHDVIETMDVVRMIAAVDSAE	PGPT0007915_2675	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007915-folP-K00796	NA	NA
D1-36_00806	1338	glmM	COG1109	Phosphoglucosamine mutase	ATGAGCAAAAAATACTTTGGCACCGACGGTATCCGTGGTCGGGTCGGCGAATACCCCATTACCCCCGATTTCATGCTCAAGCTTGGCTGGGCTGCCGGCATGGCGTTCCGAAAGATGGGGGCCTGCAAGGTCCTGGTCGGAAAGGACACGCGCATATCCGGCTACATGTTCGAATCGGCCCTTGAGGCCGGCCTGACCTCCGCAGGTGCCGATGTCATGCTGCTCGGACCGATGCCCACACCTGCCATTGCCTACCTGACGCGTACATTCCAGGCGCAGGCTGGCATTGTGATCAGTGCGTCGCATAACCCTCATGACGACAACGGCATCAAGTTCTTCTCCGGCAAGGGCACCAAGCTGCCGGACGAAATCGAACTGATGATTGAAGAGTTGCTGGACGCGCCCATGACGGTCGTCGAGTCGAGCAAGATCGGCAAGGTATCCCGGATCAACGACGCATCGGGTCGCTACATCGAATTCTGCAAAGGCAGTGTTCCAACCGGTACCAGTTTTTCGGGGCTGAAGATCGTTGTCGATTGTGCCCATGGAGCAACCTACAAAGTTGCACCGAGCGTTTTTCGAGAGCTGGGCGCCGAGGTGGTGGTGCTTTCTGCCCAGCCTAACGGGCTGAACATCAACCATAACTGCGGTTCGACCCACACCGAGGCATTGCAGGCGGCTGTACTGGCTGAGCATGCGGATCTCGGTATCGCCTTTGACGGTGATGGCGACCGAGTGCTGATGGTCGATCACACCGGTACGGTTGTCGACGGTGATGAGCTGCTGTTCATTATTGCTCGTGATTTGCACGGTCGGGGCAAGCTGCAAGGTGGTGTTGTCGGGACATTGATGAGCAACCTCGGACTTGAGCTGGCCCTGGCTGACCTGGATATCCCCTTCGTGCGCGCCAATGTGGGCGACCGCTACGTGATTTCCGAGCTGCTGGAGCGCAGTTGGGTGATTGGTGGTGAGAACTCGGGGCACATCGTTTGCTTCGACCATACCACCACCGGTGATGCGATCATTGCCGCGTTGCAGGTGCTGATGGCGCTCAAGGCGCGCAACGAAGGGCTCGCCCAGTCGCGCCAGGCGTTGCGCAAGTGTCCGCAGGTATTGATCAACGTACGTTTCGGTGGCGGTGTGAATCCACTCGAACACACGATGGTCAAGCAAGCCAGCGAGCGAGTGACCCAGGCGATGGCTGGGCGCGGAAGGGTTTTGTTGCGCAAGTCAGGGACAGAGCCTTTGGTGCGTGTAATGGTCGAAGGCGAGGATGAAGCACAGGTCCGTGGTTATGCCGAAGAGTTGGCAAAACTCGTTACTGAAGTTTCTGCCTGA	MSKKYFGTDGIRGRVGEYPITPDFMLKLGWAAGMAFRKMGACKVLVGKDTRISGYMFESALEAGLTSAGADVMLLGPMPTPAIAYLTRTFQAQAGIVISASHNPHDDNGIKFFSGKGTKLPDEIELMIEELLDAPMTVVESSKIGKVSRINDASGRYIEFCKGSVPTGTSFSGLKIVVDCAHGATYKVAPSVFRELGAEVVVLSAQPNGLNINHNCGSTHTEALQAAVLAEHADLGIAFDGDGDRVLMVDHTGTVVDGDELLFIIARDLHGRGKLQGGVVGTLMSNLGLELALADLDIPFVRANVGDRYVISELLERSWVIGGENSGHIVCFDHTTTGDAIIAALQVLMALKARNEGLAQSRQALRKCPQVLINVRFGGGVNPLEHTMVKQASERVTQAMAGRGRVLLRKSGTEPLVRVMVEGEDEAQVRGYAEELAKLVTEVSA	PGPT0018950_3563	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
D1-36_00807	756	tpiA	COG0149	Triosephosphate isomerase	ATGCGTCGCCCTATGGTAGCTGGTAACTGGAAGATGCACGGTACCCGCGCCAGCGTCGCTGAGCTGATCAAAGGCCTTCGTAGTCTGGCCTTGCCAAGCGGTGTTGATGTCGCGGTATTCCCGCCTTGCCTGTATATCAACCAAGTGGTTGATGGCTTGAAAGGCAAGTCGATTTCGATCGGTGCGCAGAACTCTGCGGTGGAATCCATGCAAGGCGCGTTGACCGGTGAGATTGCACCGAGCCAGCTCGTTGATGCAGGTTGTTCGCTGGTTCTGGTAGGGCACTCCGAGCGCCGCATGATCATGGGCGAGCAGGATAAAGCCCTGATCCGCAAGTTTGCTGCGGCCCAGGCCTGTGGCCTTGTTCCGGTGCTGTGCGTAGGGGAGACCCTGGAACAGCGTGAATCCGGGCAGACGCTTGAAGTGGTAGGGCGCCAACTGGGTAGCATTATCGAGGACCTGGGTGTCGGAGCCTTTGCCAAGGCGGTCATCGCTTACGAGCCTGTCTGGGCCATTGGTACCGGACTGACGGCTTCGCCGCAGCAGGCGCAGGATGTGCACGCCGCCATCCGAGCGCAGCTGGCGGCAGAAAATTCTGAAGTGGCACGAGGTGTGCGGCTTCTATACGGCGGCAGCGTGAAGGCGGCCAATGCGGTCGAACTGTTCGGCATGCCGGATATCGATGGGGGGCTCATTGGTGGAGCGTCCCTGAATGCAGATGAGTTCGGTGCGATCTGTCGCGCCGCGGGAAACTGA	MRRPMVAGNWKMHGTRASVAELIKGLRSLALPSGVDVAVFPPCLYINQVVDGLKGKSISIGAQNSAVESMQGALTGEIAPSQLVDAGCSLVLVGHSERRMIMGEQDKALIRKFAAAQACGLVPVLCVGETLEQRESGQTLEVVGRQLGSIIEDLGVGAFAKAVIAYEPVWAIGTGLTASPQQAQDVHAAIRAQLAAENSEVARGVRLLYGGSVKAANAVELFGMPDIDGGLIGGASLNADEFGAICRAAGN	PGPT0017995_3593	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
D1-36_00810	486	rimP	COG0779	Ribosome maturation factor RimP	ATGCACTACATGCACGAGGGGGTTCAGGTGTCGAGCAAGCTAGAAGAGTTGCAGGCCTTGTTGGCCCCGGTGGTCGTGGCCCTAGGCTATGAATGCTGGGGTATTGAGTTTTCGGCTCAAGGTCGCCACTCAATGTTGCGCGTTTATATTGATAAAGAAGGCGGTGTGCTGGTGGACGATTGCGCCATTGTCAGCCGTCAGATCAGCGGTGTGCTGGATGTTGAAGATCCAATCACATCCGAATACACCCTTGAAGTTTCCTCGCCTGGCATGGAGCGCCCTCTGTTCACCCTTGAGCAGTTCGCTTTGTTTGCCGGTGAACAAGTGAAAATCAGGCTGCGCTCGCCTTTCGAAGGTCGACGCAACTTCCAAGGCCTTCTACGCGGTGTAGAAGAGCAGGACGTCGTGGTTCAAGTAGATGAACACGAATTCCTGTTGCCGATCGATATGATCGACAAGGCCAACATTATTCCCAGTTTTGACTGA	MHYMHEGVQVSSKLEELQALLAPVVVALGYECWGIEFSAQGRHSMLRVYIDKEGGVLVDDCAIVSRQISGVLDVEDPITSEYTLEVSSPGMERPLFTLEQFALFAGEQVKIRLRSPFEGRRNFQGLLRGVEEQDVVVQVDEHEFLLPIDMIDKANIIPSFD				NA	NA	NA	NA	NA
D1-36_00811	1482	nusA	COG0195	Transcription termination/antitermination protein NusA	ATGAGCAAAGAAGTACTGCTGGTTGTTGAGTCGGTATCCAATGAAAAGGGCGTACCGGCTAACGTTATTTTTGAAGCGCTGGAGCTGGCCCTGGCCACTGCTACCAAGAAGCGGTTCGAAGACGAAGTTGATCTGCGTGTGGAAATCAATCGCCACACCGGTGCCTACGAGACTTTCCGTCGCTGGACGGTAGTCGAGGAAGAGGACCTGGACGATCCGGCTATCGAAACCTGGCCGAGCAAGGTCGCGGAAACGCACCCGGGCGCCAAGGTCGGCGATGTCGTCGAAGAAAAAATCGAATCCATCGAGTTCGGTCGCATCGCTGCACAGACTGCCAAGCAGGTCATTGTGCAGAAAGTTCGCGAAGCCGAGCGCGCACAAGTTGTTGACGCTTATCGCGAGCGCCTGGGAGAAATCATCTCCGGCACCGTGAAAAAAGTGACACGCGACAACGTGATCGTCGACCTGGGCAACAACGCCGAAGCGTTGCTGGCCCGTGAAGACATCATTTCTCGCGAAACCTTCCGGGTCGGCGTGCGTTTGCGCGCGCTGCTCAAGGAAATCCGCACCGAGAACCGGGGCCCGCAGCTGATCCTGTCGCGTACCGCGCCGGAAATGCTGATCGAGCTGTTCCGCATCGAAGTGCCGGAAATTGCTGAAGGTCTGATCGAAGTCATGGCCGCGTCCCGTGATCCGGGTTCGCGCGCCAAGATCGCGGTCCGCTCCAAGGACAAGCGCATCGACCCGCAAGGTGCCTGCATCGGCATGCGTGGTTCGCGTGTCCAGGCCGTATCCGGCGAGTTGGGCGGCGAGCGTGTGGACATCGTCCTCTGGGACGACAACCCGGCTCAGTTCGTGATCAATGCCATGTCGCCTGCTGAAGTGGCGGCAATTATCGTCGACGAAGATGCCCACGCCATGGACATCGCCGTTGGCGCAGACAATCTCGCTCAGGCCATCGGTCGCGGTGGTCAGAACGTGCGTCTGGCCAGCCAATTGACTGGCTGGACCCTGAACGTGATGACCGAATCGGACATCCAGGCTAAGCAGCAAGCTGAAACCGGCGACATCCTGCGCAACTTCATCGAAGAGCTTGAAGTCGATGAAGAGCTGGCGCAGGTGCTGGTGGATGAGGGCTTTACCAGCCTGGAAGAGATTGCCTACGTACCGGTGGAAGAAATGCTCAACATCGACGGCTTTGACGAGGAAATCGTCAACGAGCTTCGCGCTCGGGCCAAGGATCGTTTGTTGACCAAAGCCATCGCTACTGAGGAAAAGCTGGCAGACGCCCATCCGGCCGAAGACCTGCTCTCGCTTGAGGGCATGGACAAGGATTTGGCGATGGAACTGGCGGTGCGCGGCGTAATTACCCGCGAAGACCTGGCCGAGCAGTCTATTGACGACCTGCTCGACATCGACGGCATTGACGATGATCGTGCCGGCAAGTTGATCATGGCCGCCCGAGCCCACTGGTTCGAGTAA	MSKEVLLVVESVSNEKGVPANVIFEALELALATATKKRFEDEVDLRVEINRHTGAYETFRRWTVVEEEDLDDPAIETWPSKVAETHPGAKVGDVVEEKIESIEFGRIAAQTAKQVIVQKVREAERAQVVDAYRERLGEIISGTVKKVTRDNVIVDLGNNAEALLAREDIISRETFRVGVRLRALLKEIRTENRGPQLILSRTAPEMLIELFRIEVPEIAEGLIEVMAASRDPGSRAKIAVRSKDKRIDPQGACIGMRGSRVQAVSGELGGERVDIVLWDDNPAQFVINAMSPAEVAAIIVDEDAHAMDIAVGADNLAQAIGRGGQNVRLASQLTGWTLNVMTESDIQAKQQAETGDILRNFIEELEVDEELAQVLVDEGFTSLEEIAYVPVEEMLNIDGFDEEIVNELRARAKDRLLTKAIATEEKLADAHPAEDLLSLEGMDKDLAMELAVRGVITREDLAEQSIDDLLDIDGIDDDRAGKLIMAARAHWFE				NA	NA	NA	NA	NA
D1-36_00812	2520	infB	COG0532	Translation initiation factor IF-2	ATGACGCAAGTCACGGTGAAACAACTGGCCGATGAGGTCAAAACACCGGTAGAGCGCCTGTTGCAGCAGATGCGTGAGGCAGGTCTGCCGCACACCGCCGCCGAGGAACATGTGACCGACAGTGAGAAGCAGTCCCTGCTGACTCACTTGAAGAGCAGTCACAAGGCGAAAGTGGAAGAACCGCGCAAGATCACACTGCAGCGTAAAACCACCAGCACCCTGCGTGTTGCCGGTAGCAAAAGCATCAGCGTTGAAGTACGCAAGAAGAAAGTCTTCGTACAGCGCAGCCCGGAAGAAATCGAAGCCGAGCGCAAACGCGAACTGGAAGAACGTCGTGCAGTGGAAAATGCTGCTCGCCAGAAGGCTGAAGAAGAAGCCAAGCGTCGCGCTGAAGAAGAAGCGCGTCGCCAGCCTGCTGCTGCGCAACCCGCTCCAGTCGAAGCTGTCGAGGCTGCGGCCCCGGTAGCCGAGCCTGTGCGTGAAGCCGCACCGGTCGCGGCACTAGCGCCGGCTCCGGCCGACACTCGCAAGCGCGATGAGCAGCGTCGTCCCGACAAGCCACGTGCCGACGACAACCGTCGTGGCGGTAACGATGGCGAGCGCAAGAATGCTCCTCATCGTGCTTCGGTCAAGGAAAAGGCGCCGGCTCCACGCGTTGCGCCTCGTACTACCGACGAAGAAAGCGATGGCTTCCGTCGCGGCGGTCGCGGCAAGGCCAAGCTGAAGAAACGCAACGCCCACGGTTTCCAGAGCCCTACCGGCCCTGTCGTGCGCGAAGTGAAGATCGGCGAGACCATCACTGTGGGCGACCTGGCCCAGCAGATGTCGGTCAAGGCTGCTGAAATCATCAAGTTCATGTTCAAGCTGGGTACCCCGGCCACCATCAACCAGGTACTGGATCAGGAAACTGCCCAGCTGGTCGCCGAAGAACTGGGCCACAAAGTGACCCTGGTCAGCGACACCGCCCTGGAAGATTCCCTGGCCGAGTCGCTGAAGTTCGAAGGTGAAGCGGTCGCCCGTGCGCCGGTCGTGACCGTCATGGGTCACGTTGACCATGGTAAGACGTCGCTGCTCGACTACATTCGTCGCGCCAAGGTTGCGGCGGGCGAGGCTGGCGGTATTACCCAGCACATCGGCGCCTACCACGTTGAAACCGACCGCGGCATGGTGACGTTCCTCGACACCCCGGGTCACGCCGCGTTTACCGCGATGCGTGCCCGTGGTGCCAAGGCCACCGACATCGTTATCCTGGTGGTCGCGGCGGACGACGGCGTCATGCCGCAAACCATCGAAGCTGTTCAGCATGCCCAGGCAGCTGGCGTGCCGCTGGTGGTTGCAGTGAACAAGATCGACAAGCCGGGCGCTGATCTCGATCGCATCCGCAGCGAACTGTCGGTTCACGGCGTGACCTCTGAAGAGTGGGGTGGCGACACTCCATTCGTCCCGGTTTCCGCGAAGATGGGTACTGGCGTCGACGAACTGCTCGAAGCCGTCCTGTTGCAGGCCGAGGTTCTGGAATTGACCGCTACGCCTTCGGCTCCAGGCCGTGGCGTGGTGGTTGAATCGCGCCTCGACAAGGGCCGCGGCCCGGTGGCGACCGTGCTCGTCCAGGACGGTACCCTGCGCCAAGGCGACATGGTGCTGGTCGGTTCGAACTATGGCCGCGTGCGCGCCATGCTCGACGAGAACGGCAAGCCAATCAAGGAAGCCGGTCCGGCTATCCCGGTCGAGATCCTCGGCCTGGACGGTACTCCGGACGCTGGCGACGAAATGAGCGTTGTGGCTGACGAGAAGAAAGCCCGTGAAGTCGCGCTGTTCCGTCAAGGCAAGTTCCGCGAAGTCAAGCTGGCCCGTGCTCACGCCGGCAAGCTGGAGAACATCTTCGAGAACATGGGCCAGGAAGAGAAGAAGACGCTCAACATCGTCCTCAAATCCGACGTCCGTGGCTCGCTGGAAGCTTTGCAGGGCGCTCTGAACGGCCTGGGTAACGACGAAGTGCAAGTGCGCGTGGTCGGTGGCGGTGTCGGTGGTATCACCGAATCCGACGCCAACCTGGCACTCGCCTCCAACGCTGTACTGTTTGGCTTCAACGTGCGTGCCGATGCCGGTGCTCGCAAGATCGTCGAGCAGGAAGGCCTGGACATGCGTTACTACAACGTGATCTACGACATCATCGAAGACGTCAAGAAAGCGTTGACCGGTATGTTGGGCAGCGACGTGCGGGAGAACATCCTGGGCGTGGCCGAAGTTCGCGATGTGTTCCGTTCGCCGAAGTTCGGTGCGATCGCCGGTTGCATGGTGATCGAAGGTGTCGTTCACCGTAACCGTCCTATCCGTGTATTGCGTGAAGACATCGTTATCTTCGAAGGCGAGCTGGAATCCCTGCGCCGCTTCAAGGATGACGCTTCCGAAGTGCGTGCCGGCATGGAGTGCGGTATTGGCGTCAAGAGCTACAACGACGTCAAGGTTGGCGACAAGATCGAAGTCTTCGAGAAGGTCCAGGTTGCTCGCAGCCTCTGA	MTQVTVKQLADEVKTPVERLLQQMREAGLPHTAAEEHVTDSEKQSLLTHLKSSHKAKVEEPRKITLQRKTTSTLRVAGSKSISVEVRKKKVFVQRSPEEIEAERKRELEERRAVENAARQKAEEEAKRRAEEEARRQPAAAQPAPVEAVEAAAPVAEPVREAAPVAALAPAPADTRKRDEQRRPDKPRADDNRRGGNDGERKNAPHRASVKEKAPAPRVAPRTTDEESDGFRRGGRGKAKLKKRNAHGFQSPTGPVVREVKIGETITVGDLAQQMSVKAAEIIKFMFKLGTPATINQVLDQETAQLVAEELGHKVTLVSDTALEDSLAESLKFEGEAVARAPVVTVMGHVDHGKTSLLDYIRRAKVAAGEAGGITQHIGAYHVETDRGMVTFLDTPGHAAFTAMRARGAKATDIVILVVAADDGVMPQTIEAVQHAQAAGVPLVVAVNKIDKPGADLDRIRSELSVHGVTSEEWGGDTPFVPVSAKMGTGVDELLEAVLLQAEVLELTATPSAPGRGVVVESRLDKGRGPVATVLVQDGTLRQGDMVLVGSNYGRVRAMLDENGKPIKEAGPAIPVEILGLDGTPDAGDEMSVVADEKKAREVALFRQGKFREVKLARAHAGKLENIFENMGQEEKKTLNIVLKSDVRGSLEALQGALNGLGNDEVQVRVVGGGVGGITESDANLALASNAVLFGFNVRADAGARKIVEQEGLDMRYYNVIYDIIEDVKKALTGMLGSDVRENILGVAEVRDVFRSPKFGAIAGCMVIEGVVHRNRPIRVLREDIVIFEGELESLRRFKDDASEVRAGMECGIGVKSYNDVKVGDKIEVFEKVQVARSL				NA	NA	NA	NA	NA
D1-36_00813	402	rbfA	COG0858	30S ribosome-binding factor	ATGGCAAAAGAATACAGCCGTACCCAACGAATCGGCGATCAGATGCAGCGCGAGCTGGCCCAACTGATCCGTCGCGAAGTCAAGGACCCGCGCGTTGGCCTGGTCACCATTACCGCAGTGGAAGTCAGCCGTGACGTCGGTCATGCCAAGATTTTCATCACCGTGATGGGCCAGGACAGCGCCGAAGAAATCGCCCAGAGCATCAAGGTGCTCAACTCGGCCGCCGGCTTCCTGCGCATGCAGTTGGCCCGGGAGATGAAGCTGCGCAGCGTTCCGCAGTTGCACTTCCACTACGACGAAAGCGTCGTGCGAGGCGCGCATCTGTCAGCGCTGATCGAGCGCGCCGTGGCTGAAGACAGCCAGCACCCGGCTGCGGCTGAACCCGAAGACACCAAGGAGTAA	MAKEYSRTQRIGDQMQRELAQLIRREVKDPRVGLVTITAVEVSRDVGHAKIFITVMGQDSAEEIAQSIKVLNSAAGFLRMQLAREMKLRSVPQLHFHYDESVVRGAHLSALIERAVAEDSQHPAAAEPEDTKE				NA	NA	NA	NA	NA
D1-36_00814	918	truB	COG0130	tRNA pseudouridine synthase B	GTGGCTCAGGTCAAACGTATCCGTCGTAACGTCAGCGGTATCATCCTGCTCGACAAACCGTTGGGATTCACCTCCAACGCAGCCCTGCAGAAGGTTCGCTGGTTGCTCAACGCCGAGAAGGCTGGCCACACCGGTAGTCTCGATCCGCTGGCTACTGGCGTGCTGCCCCTGTGTTTCGGCGAGGCGACCAAGTTCTCCCAGTACCTGCTCGATTCCGACAAGGGTTATGAAACCCTGGCGCAGTTAGGCAAGACCACCACCACGGCGGACGCCGAAGGTGAGGTTTTGCTGGAACGCCCGGTGACCGTTGGTCAGACGGATATCGAGGCGGTCTTGCCGAAGTTTCGCGGGCAAATCAGTCAGATACCGCCGATGTACTCTGCCCTCAAGCGCGATGGACAGCCGTTGTACAAACTGGCCCGTGCAGGTGAAGTAGTGGAGCGTGAACCGCGTTCTGTTACTATTGCGCGCTTGGAATTGCTGGCCTTTGACGGTAATACTGCACGGCTAGCCGTGGATTGCAGCAAAGGCACCTATATCCGTACCCTGGTGGAGGATATCGGCGAGCAACTCGGCTGTGGCGCGTACGTGGCAGAATTGCGGCGGACCCAGGCCGGGCCTTTCACGTTAGCCCAGACGGTCACGTTGGAAGAGCTCGAAGCCGTGCATGCCGAAGGCGGGAATGAAGCGGTCGACCGCTTCCTGATGCCGTCGGACAGCGGTTTGCTCGACTGGCCGCTGCTGCAGTTCTCTGAACACAGTGCGTTCTACTGGCTCAACGGCCAGCCGGTACGTGCCCCGGATGCGCCGAAGTTCGGCATGGTTCGGGTACAGGATCACAATGGTCGCTTCATCGGTATCGGTGAAGTGAGCGAAGACGGGCGCATTGCGCCACGTCGATTGATTCGGTCGGAATGA	MAQVKRIRRNVSGIILLDKPLGFTSNAALQKVRWLLNAEKAGHTGSLDPLATGVLPLCFGEATKFSQYLLDSDKGYETLAQLGKTTTTADAEGEVLLERPVTVGQTDIEAVLPKFRGQISQIPPMYSALKRDGQPLYKLARAGEVVEREPRSVTIARLELLAFDGNTARLAVDCSKGTYIRTLVEDIGEQLGCGAYVAELRRTQAGPFTLAQTVTLEELEAVHAEGGNEAVDRFLMPSDSGLLDWPLLQFSEHSAFYWLNGQPVRAPDAPKFGMVRVQDHNGRFIGIGEVSEDGRIAPRRLIRSE				NA	NA	NA	NA	NA
D1-36_00816	270	rpsO	COG0184	30S ribosomal protein S15	ATGGCTCTCGACGTTCAAGAAAAAGCTCAAATCGTAGCTGACTACCAGCAAGCTGTTGGTGACACTGGTTCGCCAGAAGTGCAAGTTGCACTGCTGACCGCCAACATCAACAAACTGCAAGGTCACTTCAAGGCCAACGGTAAAGATCACCACTCCCGTCGTGGTCTGATCCGCATGGTAAACCAGCGCCGTAAACTGCTGGACTACCTGAAAGGCAAGGACGTGAGCCGTTACAGCGCTCTGATCGCTCGCCTGGGTCTGCGTCGCTAA	MALDVQEKAQIVADYQQAVGDTGSPEVQVALLTANINKLQGHFKANGKDHHSRRGLIRMVNQRRKLLDYLKGKDVSRYSALIARLGLRR				NA	NA	NA	NA	NA
D1-36_00817	2106	pnp		Polyribonucleotide nucleotidyltransferase	GTGAACCCGGTAATCAAAAAATTCCAGTTCGGTCAGTCGACCGTTACCCTCGAGACCGGCCGTATCGCCCGTCAGGCCTCCGGCGCAGTGCTGGTCACCGTTGACGACGACGTCAGCGTATTGGTGACCGTTGTCGGCGCCAAGCAAGCCGATCCAGGCAAGGGCTTCTTCCCTCTGTCTGTCCACTACCAGGAAAAGACTTACGCAGCCGGTAAGATCCCTGGCGGTTTCTTCAAGCGCGAAGGCCGTCCTTCCGAGAAAGAAACCCTGACTTCACGACTGATCGACCGTCCGATCCGTCCGCTTTTCCCAGAAGGCTTCATGAACGAAGTGCAGGTCGTCTGCACCGTCGTGTCCACCAGCAAGAAGACCGATCCGGACATCGCTGCGATGATCGGTACCTCGGCTGCCCTGGCCATCTCCGGCATTCCTTTCGATGGCCCGATCGGCGCTGCCCGCGTCGCCTTCCACGAAAGCACCGGCTACCTGCTGAACCCGACCTACGAGCAGTTGAAGGCATCGAGCCTGGACATGGTCGTGGCCGGTACTTCCGAAGCCGTGCTGATGGTTGAATCCGAAGCCAAAGAACTGACCGAAGACCAGATGCTGGGCGCCGTGCTGTTCGCCCACGACGAGTTCCAAGTGGTGATCAACGCCGTCAAGGAACTGGCCGCCGAAGCCGCCAAGCCAACCTGGACCTGGGCGCCACAGCCAGAAGCCACCGAGCTGCTGGGCGCGATCCGTGCCGAGTTCGGCGACGCGATTTCCCAGGCCTACACCATCACCATCAAGGCCGACCGTTATGCGCGTCTGGGCGAGCTGCGTGACCAGGTCGTCGCCAAGTTCTCCGGCGAAGAAGGCCAGCCATCGGCCAGCGACGTGAAGGCTGCGTTCGGTGAAATCGAATATCGCACCGTTCGCGAAAACATCGTCAACGGCAAGCCGCGTATCGATGGTCGCGACACCCGCACCGTACGTCCGCTGAACATCGAAGTCGGCGTTCTTCCGAAGACCCACGGTTCGGCACTGTTCACCCGTGGCGAGACCCAGGCACTGGTCGTTGCAACACTGGGCACCGCCCGTGACGCGCAACTGCTGGACACCCTGGAAGGCGAAAAGAAAGACCCGTTCATGCTGCACTACAACTTCCCTCCGTTCTCGGTGGGCGAGTGTGGTCGCATGGGTGGCGCCGGTCGTCGCGAAATCGGCCACGGCCGTCTGGCCCGTCGTTCGGTCCAGGCCATGCTGCCAGCCGCTGACGTGTTCCCGTACACCATCCGCGTGGTATCGGAAATCACCGAATCCAACGGCTCGAGCTCGATGGCTTCGGTCTGCGGCGCTTCCCTGGCCCTGATGGACGCTGGTGTGCCGATGAAGGCTCCGGTTGCCGGCATCGCCATGGGTCTGGTTAAAGAAGGCGAGAAGTTCGCTGTCCTGACCGACATCCTGGGTGACGAAGACCACCTGGGCGACATGGACTTCAAAGTGGCCGGTACCGCCAAAGGCGTCACCGCACTGCAGATGGACATCAAGATCAAAGGCATCACCGAAGAGATCATGGAAATCGCCCTGGGCCAAGCCCTGGAAGCGCGCCTGAACATCCTCGGCCAGATGAACCAGATCATCGGTCAGTCCCGCACCGAGCTGTCGGAAAACGCTCCGACCATGATCGCGATGAAAATCGACACCGACAAAATCCGTGATGTCATCGGTAAAGGCGGCGCGACCATCCGTGCGATCTGTGAAGAAACCAAGGCCTCGATCGACATCGAAGACGACGGTTCGATCAAGATCTTCGGCGAAACCAAGGAAGCGGCGGAAGCAGCACGCCAGCGCGTCCTGGGCATCACCGCCGAAGCCGAGATCGGCAAGATCTACGTCGGCAAGGTTGAGCGCATCGTCGACTTCGGCGCGTTCGTCAACATCCTGCCGGGCAAGGACGGCCTGGTTCACATCTCCATGCTGAGCGATGCTCGTGTCGAGAAAGTGACCGACATCCTGAAAGAAGGCCAGGAAGTGGAAGTGCTGGTACTGGACGTGGACAACCGCGGCCGTATCAAGCTGTCCATCAAGGACGTCGCGGCAGCCAAGGCATCGGGCGTTTAA	MNPVIKKFQFGQSTVTLETGRIARQASGAVLVTVDDDVSVLVTVVGAKQADPGKGFFPLSVHYQEKTYAAGKIPGGFFKREGRPSEKETLTSRLIDRPIRPLFPEGFMNEVQVVCTVVSTSKKTDPDIAAMIGTSAALAISGIPFDGPIGAARVAFHESTGYLLNPTYEQLKASSLDMVVAGTSEAVLMVESEAKELTEDQMLGAVLFAHDEFQVVINAVKELAAEAAKPTWTWAPQPEATELLGAIRAEFGDAISQAYTITIKADRYARLGELRDQVVAKFSGEEGQPSASDVKAAFGEIEYRTVRENIVNGKPRIDGRDTRTVRPLNIEVGVLPKTHGSALFTRGETQALVVATLGTARDAQLLDTLEGEKKDPFMLHYNFPPFSVGECGRMGGAGRREIGHGRLARRSVQAMLPAADVFPYTIRVVSEITESNGSSSMASVCGASLALMDAGVPMKAPVAGIAMGLVKEGEKFAVLTDILGDEDHLGDMDFKVAGTAKGVTALQMDIKIKGITEEIMEIALGQALEARLNILGQMNQIIGQSRTELSENAPTMIAMKIDTDKIRDVIGKGGATIRAICEETKASIDIEDDGSIKIFGETKEAAEAARQRVLGITAEAEIGKIYVGKVERIVDFGAFVNILPGKDGLVHISMLSDARVEKVTDILKEGQEVEVLVLDVDNRGRIKLSIKDVAAAKASGV				NA	NA	NA	NA	NA
D1-36_00819	306			hypothetical protein	ATGACCGTTAAAGAATTGAGTCAAGAAGCCAGACACCAAGAAGCCCTGGAAAAGTACTTGAACGAAACGCCGCAGCTGCGGGATGAGATCAAGGACCTACCCGCCGATGATCAGAAAGACCAGATCCAATGGGCGTTCGAAGACGAGGCCGAAGCCCAGGGGCTACAGCCTTGGGAGTTGACGCTCAAATACACCAGCACGCCTGAAGAGTTCGAGGCGCAGCGCCTTGCCTTGCACAAGGAGGCTGCCGAGGTGTTGGGTGTGGAATGGGATGAATATTGCGAGATGAACAATCTGGTGGTCTGA	MTVKELSQEARHQEALEKYLNETPQLRDEIKDLPADDQKDQIQWAFEDEAEAQGLQPWELTLKYTSTPEEFEAQRLALHKEAAEVLGVEWDEYCEMNNLVV				NA	NA	NA	NA	NA
D1-36_00820	849	nadC	COG0157	Nicotinate-nucleotide pyrophosphorylase [carboxylating]	ATGCCGAATCTACATCTCGCCGACCTGACCGCCGAAATCGAAGCCAATGTGCGCCGCGCGCTGTTGGAAGACATCGGCAGCGGCGACATCACCGCGCAACTGATCCCCGCCGAACGCCTGGCCAAGGCCACCATCATCACCCGTGAAGCAGCGATCATCAGCGGCACGGCTTGGGTGGATGCAGTGTTCCGGCAGTTGGACCAACGTGTCGCGGTGCATTGGCAAGTACATGACGGCGACCGCGTGAGCCCTGACCAAGCCCTGTTCCACCTCGAAGGCCCGGCCCGCTCACTGCTGACGGGCGAACGCAGCGCGCTGAATTTCCTGCAGTTGCTATCGGGCGTTGCCACCCGGGCTCGCTACCTGGCCGACTTCGTCGCCGATACCCAGGTCAAGCTGCTGGACACTCGCAAAACGTTGCCTGGGCTACGTCTGGCCCAGAAGTACGCCGTGACCTGCGGTGGCTGTCACAACCACCGCATCGGCCTGTACGACGCGTTCCTGATCAAGGAAAACCACATTGCCGCTTGCGGCGGGATTGCCCAGGCCATCAGCGCCGCCCAGCAGATCGCACCGGGTAAACCGGTGGAAGTCGAAGTCGAAAGCCTGGCGGAATTGAAAGAAGCGCTGGCGGCAGGTGCCGACATCATCATGCTCGACGAACTGAGCCTGGACGACATGCGCGAAGCGGTACGTCTGAACGGCGGCAAGGCCAAGCTGGAAGCCAGCGGCGGCATCAACGAGAGCACGTTGCGCCCGATTGCCGAGACCGGAGTGGATTACATCTCTATCGGTGCGATGACCAAGGATGTGAAGGCCGTGGATTTGTCGATGCGCTTGAGCCTCTGA	MPNLHLADLTAEIEANVRRALLEDIGSGDITAQLIPAERLAKATIITREAAIISGTAWVDAVFRQLDQRVAVHWQVHDGDRVSPDQALFHLEGPARSLLTGERSALNFLQLLSGVATRARYLADFVADTQVKLLDTRKTLPGLRLAQKYAVTCGGCHNHRIGLYDAFLIKENHIAACGGIAQAISAAQQIAPGKPVEVEVESLAELKEALAAGADIIMLDELSLDDMREAVRLNGGKAKLEASGGINESTLRPIAETGVDYISIGAMTKDVKAVDLSMRLSL	PGPT0013370_3097	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013370-nadC-K00767	NA	NA
D1-36_00821	2211			hypothetical protein	ATGCATAACGACGGGAATGTAGTGCCTTTGCATAAAGTGCCTACCGACCAGGCGAATCGTTCGCCGCTCGCCCGGCTGCCGGTCATTCTGCTCCAGGTTCGCGACAAGGCCGCGCAGCAGTTGCGCGTGGGTCTGCAGGGCTTGTTCGATAACGCCGATGACACGTTGTTCGAGATGGCCGACCGGGCGCGCAATGATCTCGAGCAGAACCTCTACTTCGAAGCCATGCGCGACTTGCGTTTGAAACGCAAAAGCATCGAGCGTGAATTCATTGAACAGTTTTTCGAGGCTTTTGTCAGTCTCGCCCAGTACGACCTTACCCAGGCGACCCTGGCACCCGTGGTGGGCGCCATACCGGCCCAGCCAAACCATGACGAGCTGGAGCGCCGCCTGGCGGTGGAAACCATGGTCGCCCGAGTGATCAGCCGCGACGGCGTGTCGCTCGACCAACTCACGGCGCGGCTCAGTGTGTTGCTGGACCGGCCATTGACGAACCAGTTGAACCCGTTAAGCCCAGGTTTATTGTGCGGGCATTTCCTTCAGGCTGGACGCAACCTGGGCGTGGGGATCAAGGTCAAGCTGATCCTGCTCAAGCTGTTCGAGCGTTATGTGCTCAGCGAATGCGACCAGTTCTATGCGCAGGCCAATCAATTGCTCGCCGCGACGGGCGTCTTGCCGGACCTCAAGATCTCACCGTCGCGACGGGCATCGGATCGTGTCGAGGAAGTCGCCCAACCCAACGTCGATGGCGCCGCCAGGCCAAGGGCCGATGACGTCGACGACAGCGTCCAGGAGGTCTTCGCCGCGTTGCAGAAATTGCTGGTGCAGGTACGCGGCAGCGTCGCGCCAACCTTGGAAGCCAGCGCCCCAGCCCAGCCGATTTCGAAACGGGACCTGCTGCGATTGTTGTCTCATTTGCAGCAGTACGTTCCCTCGCTCACGGTGCAGGACGAGTTCGACCTGCGCAGCCAGCTCGAACAGTTGCTGACGCGTGTCAGCGTCAAGAGTGGCAAGTCCCGGGTCGTCGACGGCGCCGACGAAGACGTGATCAACCTGATCGCGATGATGTTCGAGTTCATTCTCGACGACCAGAACCTGCCGGACTCCCTCAAGGCGCTGATCGGTCGACTGCAGATTCCGATGCTCAAGGTCGCGGTACAGGACAAGAGTTTCTTCAGCCGAGGCAATCATCCGGCCCGCCGGCTGCTCAACGAAATTGCTGCCGCTGCGATGGGCTGGGGCGATTGCGATGATCATCAGCGCGACAGTCTTTACCTGCGCATCGAGCAAGTCGTGCAGCGTTTGTTGAACGACTTCGTTGACGACCCGGCGATATTTTCCGAAGTGCTGGCGGACTTCCTGGCGTTCACCAGCGACGAACGTCGTCGCAGCGAACTGCTGGAGCAACGCATTCGCGACGCTGAAGAAGGGCGGGCCAAGGCCGAACTGGCCCGACAGCGGGTCGAAGGGGCGCTGAACCACATCATGCTGGGCAAGGTCTTGCCCCAGGCCGTGGTGGATTTCGTCCAGCAGGCCTGGAGCCAGGTGTTGTTGCTGACCGGCTTCAAACATGGCGAGCAATCAGCTGAATGGCAGGCCGACGTGCTGACCCTCGAGCAGTTGGTGTGGAGCGTCCAGCATCACGAAGAACCCGACGCCGGCCTGCGCTTGCTGGCGATGGTGCCGGAGCTGCTCAAGGCCCTGCGCGACGGCTTGAGCCGTTCGGCGTTCGATCCGTTCGCCACCAGCGAATTCTTCAGCGAACTGGAAGTGCTGCATGTCCAGGCTCTCCAACGGCTGGGCCAGGCAACGGAGCAGGCACAGCCGGCGGATTCGCCGGTGCTGGTCGAGGTGGTGGAGCCCATCGTCCTGCGGGCTGCGCCGGTAACCGCGACGGACGAACCGACCGTACGCTTGCCTGCCGATGACGTGGGCCTACTCCAGGTCGATCAATTGCGCCTGGGAAGTTGGGTCGAGTTCCAGGAAGACGAAGACAACAACCTTCGTTGCAAACTCGCGGCGATTATCCAGGCCACTGGCAAGTATGTCTTCGTCAACCGTACCGGCCTCAAGGTCCTTGAGCACAGCCGCACCAGCCTGGCCTTGGAGTTCCGCCGTGGGGCGGCGCGGTTGCTGGACGATACCCTGTTGTTCGACAGGGCGCTGGAATCCGTGCTGGGCAACCTGCGCCAGCTCAATCGCGGCAAGTGA	MHNDGNVVPLHKVPTDQANRSPLARLPVILLQVRDKAAQQLRVGLQGLFDNADDTLFEMADRARNDLEQNLYFEAMRDLRLKRKSIEREFIEQFFEAFVSLAQYDLTQATLAPVVGAIPAQPNHDELERRLAVETMVARVISRDGVSLDQLTARLSVLLDRPLTNQLNPLSPGLLCGHFLQAGRNLGVGIKVKLILLKLFERYVLSECDQFYAQANQLLAATGVLPDLKISPSRRASDRVEEVAQPNVDGAARPRADDVDDSVQEVFAALQKLLVQVRGSVAPTLEASAPAQPISKRDLLRLLSHLQQYVPSLTVQDEFDLRSQLEQLLTRVSVKSGKSRVVDGADEDVINLIAMMFEFILDDQNLPDSLKALIGRLQIPMLKVAVQDKSFFSRGNHPARRLLNEIAAAAMGWGDCDDHQRDSLYLRIEQVVQRLLNDFVDDPAIFSEVLADFLAFTSDERRRSELLEQRIRDAEEGRAKAELARQRVEGALNHIMLGKVLPQAVVDFVQQAWSQVLLLTGFKHGEQSAEWQADVLTLEQLVWSVQHHEEPDAGLRLLAMVPELLKALRDGLSRSAFDPFATSEFFSELEVLHVQALQRLGQATEQAQPADSPVLVEVVEPIVLRAAPVTATDEPTVRLPADDVGLLQVDQLRLGSWVEFQEDEDNNLRCKLAAIIQATGKYVFVNRTGLKVLEHSRTSLALEFRRGAARLLDDTLLFDRALESVLGNLRQLNRGK				NA	NA	NA	NA	NA
D1-36_00822	561	ampD		1,6-anhydro-N-acetylmuramyl-L-alanine amidase AmpD	ATGCAGCTGGACTCCGCGAGCGGTTGGTGCGATGGCGTGCGTCATTGCCCTTCGCCCAACTTCAATGCGCGCCCCGAGGGCGAGATCTCCCTGCTGGTCATCCACAACATCAGCTTGCCACCGGCACAGTTCGCCACGGGCAAAGTGCAGGAATTTTTCCAGAATCGCCTGGATGTCACGGAACATCCCTATTTTGCGGGTATCGCGGACCTGCGCGTGTCCGCGCATTTTCTGATCGAACGTGACGGCACCGTGACCCAGTTTGTCTCTTGTCTTGATCGTGCCTGGCACGCTGGTGTTTCGTGTTTCGAAGGGCGGGAGACGTGTAACGATTTTTCCATAGGCATCGAGCTTGAAGGCACCGATGACCTGCCGTTCACCGACGGGCAATATGTCGCCTTGGTGGACTTGACCCGGCAGCTGCAGAAAGCGTTTTCGGCGATCACGGTGCAGCGCATCTGCGGGCACAGCGACATCGCGCCGGGACGCAAGACCGATCCGGGGCCGGCATTCGACTGGGCGCGCTACCGCGCGGCCCTGACAGAAGGGGAAGGACAATGA	MQLDSASGWCDGVRHCPSPNFNARPEGEISLLVIHNISLPPAQFATGKVQEFFQNRLDVTEHPYFAGIADLRVSAHFLIERDGTVTQFVSCLDRAWHAGVSCFEGRETCNDFSIGIELEGTDDLPFTDGQYVALVDLTRQLQKAFSAITVQRICGHSDIAPGRKTDPGPAFDWARYRAALTEGEGQ	PGPT0024100_857	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0024100-ampD-K03806	NA	NA
D1-36_00823	837			hypothetical protein	ATGAGTTTTCTGGTGTTGCTGCTGGCGGTCTGGATCGAGAAGTTCTCGGCCTTGCGCCAGCGGGTCCAGCGTGACGGCGGCTGGCTGGGCGAGCTGAACAAACTCGAGGCGAGTCCGCGCTGGGGCAACCGGCCCTGGCTGGTGCTGGTGATGATGGTTCTGCTGCCGGTTTCGCTGCTGGCGTTGCTACTCTGGGTGTTGGAGCCGGTGGCCTATGGTTTGCTGGCGCTGCCGATTCACCTGTTGGTGGTCATCTACAGCCTGGGGCGCGGCGATCTGTTGGCTGATCTCGGGCCGTTTCGCGATGCCTGGCGACGTGAAGACCTGCAAGCGGCCACCCATGTGGCCAAGCGTGACCTGAACATCGATGCCGATGACGGTGAGCAGTTGCTCGAACGGGTCCAGGGGCATTTGCTATGGCAGGCTTACCAGAGTTTTTTCGCGGTGATCTTCTGGTACTTCCTGCTGGGACCCGTGGCCGCCCTGAGTTATCGATTGTTGGCGTTGGCCGCCGAGCACAGCCAGAACCCGGGTGTGGCCGAGCGTGCAGCGCAACTGCGCCACGCCTTCGACTGGGTACCGGTGCGATTGCTGGCGGCGAGCTTCGCCCTGGTGGGCAACTTCGTCGCGGTCAGTCGGGTCATGCTGCATGAACTGTTGAACTGGAACATCAGCGCCGCCGACCTCATCGACAAAGTCGGCTTGGTCGCCGGCGAGATTCCCACGCCGGTCGCCGGGCCGGACGGCATCAACAGCCTGGATCGACTTTGGGAATTGCTGCTGCGCGCTGCGTTGCTCTGGTATGCCGGGTTCGCGTTGTGGACGGTGTTGGCCTGA	MSFLVLLLAVWIEKFSALRQRVQRDGGWLGELNKLEASPRWGNRPWLVLVMMVLLPVSLLALLLWVLEPVAYGLLALPIHLLVVIYSLGRGDLLADLGPFRDAWRREDLQAATHVAKRDLNIDADDGEQLLERVQGHLLWQAYQSFFAVIFWYFLLGPVAALSYRLLALAAEHSQNPGVAERAAQLRHAFDWVPVRLLAASFALVGNFVAVSRVMLHELLNWNISAADLIDKVGLVAGEIPTPVAGPDGINSLDRLWELLLRAALLWYAGFALWTVLA	PGPT0028120_528	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028120-ampE-K03807	NA	NA
D1-36_00824	2031			IS66 family transposase ISPsy43	GTGAAGAGTTTGCTCTGGCCCGCCGTCGCCCTGATGAATCGCCTGAGCTTCGGCATGAAGTTCAGCCTGATCAGTGTTTTGTTCCTGCTGCCGATGCTGGTGACCAATTTCTTTCTGGTGCGTGATTCCTACCGCGAGTTCCAGGGCACGCAAGTGGAGCTGCAAAGCCTGGATTTGCTGGGCAGCAGCCTGGCGCTGCGGCGCGACCTGGAGACGCTGAACGACCTGGTGCAGATCAATGCCAGCCTGGGCCAGTCGGGCAAGGCCGGCGACGTGGACGCGAAGATCGCCGCGCTCGAGCACAAGGTGCTCGCCCGGTTGCAAGGCATGACGGCCATGGCGATGGAGCCCGAGCACGTCAGTGCCTTCGATACCAAGCGCGACGAAATGATCGCCGCTTTCAAGGCCCAACAAGCCGAAAGCTCGCTGCAGAGCAAAAGCGCGTTGATCGGCAATCTGCTCAACAATGCACAAATATTCGGCCAGATCATCGCCAGTCAGGCCGGCCTGAGCCGTGACAACCAGGCCGACATCCGCCAGCTCAGCGAGCTGATCGTCGGCCTGACGCCCAGGGTCACTCAAATTTTGGGCGAGGGCCGTGCCTTGGGCGCTTCTTCGTTGGGGTTGGGTTTCCTCAATTCCGCGTCGAGTACCCGGTTCGATGAGTTGCTGGTGCAAATCGAGAAGCTCCAGGGCGAATATGAGCTGAAACTGCAGGACGCGCTGGGCTCGAGCAAGGCGGTCGGACAAGCACTCGCCGATCAGGCCGGTGGCAGCAAGAGCACCCTCAAGCAAGCGGCCGAGCTGATTGAAAACCAGGTTGTCATGGCGGACACCCTCGATGCGCCATGGCCGGCATTCTTCGATCAGGTCAGCGGCCTGATGGAGCAGACCTATCGGTTGAACGAGGCGACGTTGGGCTTTCTCGGTGTGCAATTGCAGCACCGCCTGGAGCAGAACCGCAGCCACATGGTGCTACAGGCGGTGGCGCTCGCAGCGGTGTTCCTGTTGATTTTCTATCTGTACGCCGGTTTCTACGCCTCGACACGCACGACGCTCAAGCACCTGGGGGCGATGATGGACAAAGTCGCGGCGGGGGATATGACAGTCAGTTTCGTCGCCCGCAGCAAGGATGAGCTGGGCGAGTTGGGCGAGGTGTTCAATGGCACCGTGGCGAAGATCCATGATTTGATCGAACAGGTCGGCCACACCGTCGCCGAGGTCGAGCGCCAGGCCGGGCAGGTGGAAACGGTATCGGCCCAGAGCAACCAGGCCGTGGCCGGCCAGCGCAGCCAGATCGAACTGGTCGCCACGGCGATGAACCAGATGTCCGCCACTGCCCAGGAAGTCGCCCGCAGCGCTGCGGCGGCGGTCAGCAGCGCCCATAGCGTGAATGATGAAACCCTCAGTGGACGAGGCTTGGTGGAATCCCAGCAGGGCAGCATCGCCCGGCTCGCCAGCGAAATCGACCAGTCGGTGCAGGTGATCAATCAACTGGCGACCGACAGCCAGGCCATCAGCCGCGTCCTCGATGTGATCAAGAGCATTGCCGAGCAAACCAACCTGCTGGCCCTCAACGCCGCTATCGAAGCCGCCCGGGCTGGCGAGCAAGGGCGCGGATTCGCGGTGGTGGCCGACGAGGTGCGAACCCTGGCCAAGCGGACCCAGCAGTCGACCGAAGAAATCGAAGCGATGATCAGCCGCCTGCACGGCGGCGTCGGTGCCGCCGTCAAGGCGATGGGCACCAGCCATGAGATGGCCAGCGGCACGGTTGGCCAGTCGGAGAAGGTCCAGCAGGCGCTGGAAAACATTCTTGGCGCCGTTGGCATGATCGTCGACCAGAACCAGCAGATCGCCGCTGCGGTGGAGCAGCAGACCGCCGTCGCCCATGACATCGACCAGAACATCGTCGAGATCAACCGCGCCGGCGAACGCACCGCCGAAGGGGCTCACCAGACCGAAGACGCCAGCCGCGAACTGTCCTCCCAGGTGGTGCGGCTCAAGCAACTGATCAATGCGTTTCGGGTGTGA	MKSLLWPAVALMNRLSFGMKFSLISVLFLLPMLVTNFFLVRDSYREFQGTQVELQSLDLLGSSLALRRDLETLNDLVQINASLGQSGKAGDVDAKIAALEHKVLARLQGMTAMAMEPEHVSAFDTKRDEMIAAFKAQQAESSLQSKSALIGNLLNNAQIFGQIIASQAGLSRDNQADIRQLSELIVGLTPRVTQILGEGRALGASSLGLGFLNSASSTRFDELLVQIEKLQGEYELKLQDALGSSKAVGQALADQAGGSKSTLKQAAELIENQVVMADTLDAPWPAFFDQVSGLMEQTYRLNEATLGFLGVQLQHRLEQNRSHMVLQAVALAAVFLLIFYLYAGFYASTRTTLKHLGAMMDKVAAGDMTVSFVARSKDELGELGEVFNGTVAKIHDLIEQVGHTVAEVERQAGQVETVSAQSNQAVAGQRSQIELVATAMNQMSATAQEVARSAAAAVSSAHSVNDETLSGRGLVESQQGSIARLASEIDQSVQVINQLATDSQAISRVLDVIKSIAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRTLAKRTQQSTEEIEAMISRLHGGVGAAVKAMGTSHEMASGTVGQSEKVQQALENILGAVGMIVDQNQQIAAAVEQQTAVAHDIDQNIVEINRAGERTAEGAHQTEDASRELSSQVVRLKQLINAFRV	PGPT0015710_5488	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_00825	777	yjjV	COG0084	putative metal-dependent hydrolase YjjV	ATGCAGTTGATCGACACGCACACTCATCTGGACTTCCCGGATTTCGACGCGGATCGCCCGGCGCTGCTGGCCGAAAGCCGCGCCTTGGGTGTCCGGGAAATAGTGGTGCTGGGCGTATATCGGGACAATTGGCAGCGCGTCTGGGACCTGGTCCAAAGCGACCCGCACCTGCATGCCGCGCTGGGCCTGCACCCGGTGTTTCTCGACGAGCATCGCGGCGAAGACCTGGCGCAGTTGCGCGAATGGCTGGAGCGCCTGGCCGGGCATCGGCAGTTGTGCGCGGTGGGGGAAATCGGCCTGGACTATTACGTCCAGACCCTGGACCGCGATCGCCAGCAAACGCTGTTCGAGGCGCAGCTGGAACTGGCCCGGGATTTCGAACTGCCGGCGCTGATCCATGTACGTCGCAGCCACGCCGCCGTGATCGCGACGCTCAAACGCATCTGCCCGGCCCGTGCGGGCATCATCCATGCCTTTGCCGGCAGCTTCGAAGAGGCTCGCGAATACATCAAGCTCGGTTTCAAGCTCGGCCTCGGCGGCGCGGCCACGTGGCCCCAGGCCCTGCGCATGCACCGGGTGCTGCCGAAACTGCCGCTGGATGCGCTGGTGCTGGAGACCGACTCACCGGACATGGCGCCGTCGATGTTTCCCGGGCAACGCAACAGCCCGGTGCATTTGCCGGCGATTTGCGAGGCGTTGGCGGGCATCATGGCGGTGACGCCTGAACGACTGGCCGAGGCCAGCACGGCAAACGCCCGGCAGCTATTCCAGTGGTGA	MQLIDTHTHLDFPDFDADRPALLAESRALGVREIVVLGVYRDNWQRVWDLVQSDPHLHAALGLHPVFLDEHRGEDLAQLREWLERLAGHRQLCAVGEIGLDYYVQTLDRDRQQTLFEAQLELARDFELPALIHVRRSHAAVIATLKRICPARAGIIHAFAGSFEEAREYIKLGFKLGLGGAATWPQALRMHRVLPKLPLDALVLETDSPDMAPSMFPGQRNSPVHLPAICEALAGIMAVTPERLAEASTANARQLFQW				NA	NA	NA	NA	NA
D1-36_00826	996	cra	COG1609	Catabolite repressor/activator	TTGAAACTCAGTGATATCGCCCAGCTCGCCGGTGTGTCCGTGACCACCGCCAGCTACGTCATCAACGGCAAGGCCGAACAGCAACGCATCAGCAACGCGACCGTCGAACGGGTGCGGGCGGTGGTCCAAGAGCATGGCTTCACGCCCAACCCACAGGCCGCCGGACTGCGCAGCCGGCATACCCGCACGTTGGGGTTCATCCTGCCCGACCTGGAGAACCCCAGTTACGCGCGTATCGCCAAGCTGCTGGAACAAGGTGCCCGCGCCCGAGGTTATCAGTTGCTGATCGCCAGCTCCGATGATGCGCCTGATAGCGAGCGCCAGTTGCTGCAACTGTTCCGCGCCCGACGCTGCGATGCGCTGATCGTTGCCAGTTGCCTGCCCGCCGAAGACGATAGCTACCGCCAATTGCAGGCCAAGGGCATCCCGATCATCGCCATCGACCGGGTGATGGAACCGGCGCAGTTCTGCTCGGTAATCAGCGACGACCGCCAGGCCAGCCTGCAACTGACTCGAAGCCTGCTGGAAACGAATCCACGGCAGATCGCGCTGATCAGCGCCCGCCCCGAACTGAGCATCAGCCAGGAGCGGACCGCCGGTTTCCGCGAGGCGCTGGCCGGGTTCGAAGGCCAGGTGCTGATCGAGCACGGCGAGTCGTTCAGCCGTGAATGCGGTCGTCAGCTGATGGATGACATGCTCGCGCGCCTGGGCCATCTCCCCGACGCGCTGATCACCACCTCTTATGTGCTGCTGCAAGGGGTGTTCGATGCCCTGCATGATTTTCCGCTCAAGGCGCGTCCCCTTCGCCTGGGCACCTTTGGCGACACGCAACTGTTGGATTTCCTGCCGCTGCCGGTCAACGCCATGTCCCAGCAGCATCAACTGATCGCCGACAAAGCCTTGGAACTGGCGCTGGCGGCCATCGAAAACGATGTCTATCAACCCGGTGTCCAGGCGATTGCGCGCACGTTCAAGCAGCGCATTCACCAGGGCTGA	MKLSDIAQLAGVSVTTASYVINGKAEQQRISNATVERVRAVVQEHGFTPNPQAAGLRSRHTRTLGFILPDLENPSYARIAKLLEQGARARGYQLLIASSDDAPDSERQLLQLFRARRCDALIVASCLPAEDDSYRQLQAKGIPIIAIDRVMEPAQFCSVISDDRQASLQLTRSLLETNPRQIALISARPELSISQERTAGFREALAGFEGQVLIEHGESFSRECGRQLMDDMLARLGHLPDALITTSYVLLQGVFDALHDFPLKARPLRLGTFGDTQLLDFLPLPVNAMSQQHQLIADKALELALAAIENDVYQPGVQAIARTFKQRIHQG	PGPT0017585_552	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017585-fruR1-K03435	NA	NA
D1-36_00827	2865			hypothetical protein	ATGCTCGAGCTCACTCTAGAGCAGATATCCATGGCCCAGGTGGCTGTGGATAAAGACGCCGCGCTGCAACTGCTCGCTGACAAACTGGTGGCCGATGGCCTGGTAGCCGAGGGTTATCTTGCCGGATTGCAGGCCCGCGAGGCCCAGGGCTCGACCTTTCTTGGCCAAGGTATTGCCATCCCCCACGGTACTCCGCAGACCCGCGACCTGGTGTATTCCACCGGCGTGCGCTTGCTTCAATTTCCCGAAGGCGTGGACTGGGGCGACGGCCAGATCGTTTACCTGGCGATCGGCATCGCCGCCAAGTCCGACGAACACCTGCGCCTGCTGCAACTGCTGACCCGCGCCCTCGGCGAGACCGATCTGGGCCAGGCATTGCGTCGCGCCGGCAGCGCCGAAGCCTTGCTGAAACTGCTGCAAGGCGCGCCGCAGGAACTGGCGCTGGATGCGCAGATGATCGGCCTCGGCGTGTCGGCCGACGATTTCGAAGAACTGGTGTGGCGCGGCGCCCGTTTGTTACGCCAGGCCGATTGCGTGAGCAACGGCTTCGCCGGCGTGCTGCAGCAGGTCGAAGCGTTGCCTCTCGGCGATGGGCTCTGGTGGCTGCACAGCGAACAGACCGTCAAGCGCCCGGGCCTGGCCTTCGTCACGCCCGACAAACCCATTCGTTATCTGGGCCAACCCCTGAGCGGGTTGTTCTGCCTGGCCAGCCTCGGCGAGGCCCACCAGGCGTTGCTGGAAAGGCTTTGCGCATTGCTGATCGAAGGTCGCGGCCACGAATTGGGCCGCGCTACCAGCAGCCGCAAGGTCCTGGAAGTGCTGGGGGGCGAACTGTCCGCCGACTGGCCCAGCGCGCGCATCGGACTGGCGAATGCCCACGGCCTGCACGCGCGCCCAGCGAAAATCCTTGCCCAGCTGGCGAAAAGTTTCGAAGGCGAGATCCGCGTGCGCATCGTCGACGGCCAGGACAGCGCCGTATCGGTGAAGAGTCTGAGCAAACTGCTGAGTCTGGGCGCCCGTCGCGGTCAGGTCCTGGAGTTCATTGCCGAACCCAGCATTGCCGCCGACGCGTTGCCGGCGTTGCTCGCAGCCGTCGAAGAAGGTCTCGGCGAAGAGGTCGAACCGCTGCCGCCACCGAGCGCGCCGCGAGAAACCACCATTGCCGAAGTTGCCACCGTGCTGCTCGCGCCGGAATCCGGCAGCCTGATCCAGGCCGTCGCCGCCGCGCCGGGCATTGCCATCGGTCCGGCGCATATCCAAGTGCAGCAAGACATCGATTATCCACTGCGTGGCGAGTCTCCGGCGATCGAGCGCGAGCGTCTACAAAACGCCCTAGGCCAGGTACGTCGGGACATCGAGGGCTTGATCGAGCGCGCCAAGGCCAAGGCCATCCGCGAGATTTTCATCACCCACCAGGAAATGCTCGACGACCCGGAACTGACCGACGAAGTCGACACCCGCCTGAAGCTGGGCGAGAGCGCGCAAGCGGCGTGGATGGGCGTGATCGAAGCCGCCGCGAAGGAACAGGAAGCCCTGCAGGATGCCTTGCTTGCCGAGCGCGCCGCCGATCTGCGGGATGTTGGCCGTCGGGTGCTGGCGCAGTTGTGCGGCATCGAGACCCCGGCTGAACCGGATCAACCCTACATCCTGGTGATGGACGAAGTCGGCCCCTCCGACGTCGCGCGCCTGGACCCGGCCCGCGTGGCGGGGATCCTCACCGCACGCGGCGGCGCCACCGCCCACAGTGCCATTGTCGCCCGCGCCCTGGGCATTCCGGCCTTGGTGGGCGCAGGCGCGGCGGTGTTGCTGTTGGCGCCGGGCACGTCCTTGCTGCTGGATGGGCAGCGTGGTCGGCTGCATGTCGACCCGGACGCCGCGACCCTGCAACGGGCCGCTGAAGAGCGCGACACCCGTGAGCAGCGCCTGAAAGTCGCCGCCGAACAGCGCCACCAACCGGCGCTGACCCGCGACGGTCATGCCGTTGAAGTATTCGCCAACATCGGCGAAAGCGCCGGCGTCACCAGCGCGGTGGAGCAGGGCGCCGAAGGCATCGGCCTGTTGCGCACCGAGCTTATCTTCATGGCCCACACCGAGGCCCCGGACGAAGCGACCCAGGAAGCCGAATACCGCAAGGTGCTCGATGGCCTGGCCGGTCGGCCGCTGGTGGTGCGCACCCTCGACGTCGGCGGCGACAAGCCGTTGCCTTATTGGCCGATCGCGAAGGAAGAAAACCCCTTCCTCGGCGTGCGCGGCATCCGCCTGACCTTGCAGCGCCCCCACGTCATGGAAGCGCAACTGCGCGCCCTGTTGCGCTCGGCGGACAACCGTCCGCTGCGGATCATGTTCCCCATGGTCGGCAGCATCGACGAGTGGCGCCAGGCCCGGGACATGACCGAGCGTCTGCGTCGGGAGATCCCCGTGGCGGATTTGCAGTTGGGCATCATGATCGAAGTGCCGTCCGCCGCGCTGCTGGCGCCGGTACTCGCCAAGGAAGTCGATTTCTTCAGCGTCGGCACCAACGACCTGACGCAATACACCCTGGCGATCGACCGTGGTCACCCGACCCTGTCGGCCCAGGCCGACGGCTTGCACCCGGCGGTATTGCAACTGATCGACATCACCGTGCGCGCCGCCCATGCCCATGGCAAATGGGTCGGTGTGTGCGGCGAGCTGGCGGCCGATCCGCTGGCGGTGCCGGTGTTGGTGGGCCTGGGCGTGGACGAGTTGAGTGTCTCGGCCCGCAGCATCGCGGAGGTCAAGGCACGAGTCCGCGAATTGAGCCTGACACAAGTACAAACCCTGGCCCAAGCGGCATTGGCCGTGGGCAGCGCCGATGACGTGCGCGCATTAGTGGAGGCGCTGTAA	MLELTLEQISMAQVAVDKDAALQLLADKLVADGLVAEGYLAGLQAREAQGSTFLGQGIAIPHGTPQTRDLVYSTGVRLLQFPEGVDWGDGQIVYLAIGIAAKSDEHLRLLQLLTRALGETDLGQALRRAGSAEALLKLLQGAPQELALDAQMIGLGVSADDFEELVWRGARLLRQADCVSNGFAGVLQQVEALPLGDGLWWLHSEQTVKRPGLAFVTPDKPIRYLGQPLSGLFCLASLGEAHQALLERLCALLIEGRGHELGRATSSRKVLEVLGGELSADWPSARIGLANAHGLHARPAKILAQLAKSFEGEIRVRIVDGQDSAVSVKSLSKLLSLGARRGQVLEFIAEPSIAADALPALLAAVEEGLGEEVEPLPPPSAPRETTIAEVATVLLAPESGSLIQAVAAAPGIAIGPAHIQVQQDIDYPLRGESPAIERERLQNALGQVRRDIEGLIERAKAKAIREIFITHQEMLDDPELTDEVDTRLKLGESAQAAWMGVIEAAAKEQEALQDALLAERAADLRDVGRRVLAQLCGIETPAEPDQPYILVMDEVGPSDVARLDPARVAGILTARGGATAHSAIVARALGIPALVGAGAAVLLLAPGTSLLLDGQRGRLHVDPDAATLQRAAEERDTREQRLKVAAEQRHQPALTRDGHAVEVFANIGESAGVTSAVEQGAEGIGLLRTELIFMAHTEAPDEATQEAEYRKVLDGLAGRPLVVRTLDVGGDKPLPYWPIAKEENPFLGVRGIRLTLQRPHVMEAQLRALLRSADNRPLRIMFPMVGSIDEWRQARDMTERLRREIPVADLQLGIMIEVPSAALLAPVLAKEVDFFSVGTNDLTQYTLAIDRGHPTLSAQADGLHPAVLQLIDITVRAAHAHGKWVGVCGELAADPLAVPVLVGLGVDELSVSARSIAEVKARVRELSLTQVQTLAQAALAVGSADDVRALVEAL				NA	NA	NA	NA	NA
D1-36_00828	942	lacC	COG1105	Tagatose-6-phosphate kinase	ATGGCGAAGATTCTTACCCTGACCCTTAACCCGGCGCTCGACCTCACGGTTGAGTTGGCGCGCCTGGAACCGGGCCAGGTCAACCGCAGCGACGCCATGCACGCCCACGCCGCCGGCAAGGGCGTGAACGTGGCGCAGGTGCTGGCGGACCTCGGCCACACCCTGACCGTCAGTGGTTTCCTGGGTGAAGACAACGCCCAAGTGTTCGAGACGCTGTTTATCCAGCGTGGCTTCGTCGACGCTTTTATTCGCGTCCCCGGCGAAACCCGCAGCAACATCAAGCTGGCCGAACAGGACGGACGCATCACTGACCTCAACGGTCCTGGCCCGATGGTCGATGAAGCCGCGCAACAAGCGTTGCTGGAACGTCTCGAGCAGATAGCCCCAGGCCACGATGCCGTAGTGGTTGCCGGCAGCATGCCCCGAGGCGTCAGTGCGCAATGGTTGCAGGCGCTGATCATGCGGCTCAAACAGCTCGGCCTGAACGTCGCCCTCGACACCAGCGGCGAAGCGTTGCGCGTCGCCCTGGCGGCGGGGCCATGGCTGATCAAGCCCAATACCGAGGAACTGGCCGATGCGCTAGGTTGCGACGTGGTGACCGAGGTCGCCCAGGCACAAGCGGCTCAGCGGTTGCATGCCCAAGGCGTGGAACATGTGGTGATTTCCCACGGCGCCGACGGTGTGAATTGGTTCAGCGTTGGTTCGGCCCTGCATGCCTCGCCGCCCAAGGTCACTGTCGCCAGCACCGTGGGCGCCGGCGATTCGCTGCTGGCCGGCATGCTGCATGGATTGCTCGCTGCCCACGCACCGGAGCAGACCCTGCGCACCGCCACGGCCATCGCCGCCATGGCGGTCACCCAGATCGGGTTCGGCATCCACGACACCGCCTTGCTGGCGTCGCTTGAACAGGGCGTGCGCGTGCGCCCCCTGACAGAACAATAA	MAKILTLTLNPALDLTVELARLEPGQVNRSDAMHAHAAGKGVNVAQVLADLGHTLTVSGFLGEDNAQVFETLFIQRGFVDAFIRVPGETRSNIKLAEQDGRITDLNGPGPMVDEAAQQALLERLEQIAPGHDAVVVAGSMPRGVSAQWLQALIMRLKQLGLNVALDTSGEALRVALAAGPWLIKPNTEELADALGCDVVTEVAQAQAAQRLHAQGVEHVVISHGADGVNWFSVGSALHASPPKVTVASTVGAGDSLLAGMLHGLLAAHAPEQTLRTATAIAAMAVTQIGFGIHDTALLASLEQGVRVRPLTEQ	PGPT0017580_938	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017580-fruK|fpk-K00882	NA	NA
D1-36_00829	927			hypothetical protein	ATGAAATTAGCCATTGTGACGGCTTGCCCGAACGGCATGGTCACCAGCGTGTTGTGCGCCCGCCTGCTGGATGCGGCGGCCCAGCGCCAAGGTTGGAGCACCAGTGTCGAAGTCCATGACGCGGCCCACCCGGAACGCCAGTTGTCGGCGGCGACCCTCGAAGCGGCCGAATGGGTATTGCTGGTTGCCAGCGGCCCGGTGGACCTGTCGCGATTCGTTGGCAAGCGGGTGTTTCGCAGCACCCCGGCCCTCGCCCTGCAGGACGTTGACGCGGTGCTACGTCGCGGCGCCGAAGAGGCCCAAGTGCTGGGCGAGGCCGAGGTGCTCGCCGAAGAACCTGCGCCGTCGACCGAACGCGCCCCGCGCCTGGTGGCCATCACCGCGTGCCCGACCGGCGTCGCCCATACCTTCATGGCCGCTGAAGCCTTGCAACAGGCAGCGGCACGCTTGGGTTATGACCTGAAGATCGAAACCCAGGGCTCGGTGGGCGCCCGCAACCCGCTCAGCCCCGAGGCGATTGCCGAGGCCGATGTGGTGTTGCTGGCGACCGATATCGAGGTCGCCACCGAGCGTTTCGCCGGTAAGAAAATCTATCGCTGCGGCACCGGCATTGCGTTGAAACAAGCCGAAGCCACGCTGAAAAAAGCCTTGGCCGAAGGCGTCCAGGAAAGCGCAGCGAGTGGTGCTTCCACGGGCCCGGCGAAGGCGGAAAAAAGCGGTGTCTATAAACTTGCTGACGGGTGTTTCGTTCATGCTACCGATGGTGGTAGCGGGTGGCTTGATGATCGCTTTGTCGTTCGTGTTTGGCATCGAGGCCTTCAAGGAACCTGGCACTCTCGCAGCGGCGCTGATGCAGATTGGCGGCGACACCGCATTCAAATTGATGGTGCCGCTGCTGGCGGGCTACATCGCCTATTCGATTGCTGA	MKLAIVTACPNGMVTSVLCARLLDAAAQRQGWSTSVEVHDAAHPERQLSAATLEAAEWVLLVASGPVDLSRFVGKRVFRSTPALALQDVDAVLRRGAEEAQVLGEAEVLAEEPAPSTERAPRLVAITACPTGVAHTFMAAEALQQAAARLGYDLKIETQGSVGARNPLSPEAIAEADVVLLATDIEVATERFAGKKIYRCGTGIALKQAEATLKKALAEGVQESAASGASTGPAKAEKSGVYKLADGCFVHATDGGSGWLDDRFVVRVWHRGLQGTWHSRSGADADWRRHRIQIDGAAAGGLHRLFDC	PGPT0017120_1782	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_FRUCTOSE_PTS_SYSTEM_I,PGPT0017120-fruA-K02770	NA	NA
D1-36_00830	861	fruA	COG1299	PTS system fructose-specific EIIB'BC component	ATGGTGCCGCTGCTGGCGGGCTACATCGCCTATTCGATTGCTGACCGACCTGGCCTGGCGCCAGGGATGATCGGCGGGATGCTGGCCAGCACCCTGGGCGCTGGATTCATCGGCGGCATCATCGCCGGTTTCCTCGCCGGTTATGCGGCCAAGGCGATCAACCGTTACGCGCGCCTGCCTCAGAGCCTTGAAGCGCTCAAGCCGATCCTGATCATTCCGTTGCTGGCGAGCCTGTTCACCGGCCTGGTGATGATCTACATCGTCGGCAAACCGGTGGCGGGCATGCTTGAGGGTCTGACCCATTTCCTCGACAGCATGGGCACCACCAACGCGCTTTTGCTGGGCGTGCTGCTGGGGGCGATGATGTGCGTGGACCTCGGTGGGCCGATCAACAAAGCCGCCTACGCGTTTTCCGTGGGACTGCTGGCTTCGCAAAGTTATGCACCCATGGCCGCGACAATGGCCGCCGGCATGGTGCCGCCGATTGGGCTGGGCATCGCCACGTTCATAGCCCGCCGCAAGTTCGCCAAGACCGAGCGTGAGGCCGGTAAGGCAGCGCTGGTGCTGGGGCTGTGCTTCATCTCCGAAGGCGCGATCCCGTTCGCGGCCAAGGATCCACTGCGGGTGATCCCGGCCAGCATTGCCGGCGGCGCGCTGACCGGTGCGCTGTCGATGTACTTCGGCTGCAAACTCATGGCGCCTCACGGCGGGCTGTTCGTGATGCTGATCCCCAATGCCATCAACCACGCGCTTTTGTACCTGCTGGCGATCGTGGCGGGGAGTTTGGTGACGGCAGTGGCGTATGCGCTGCTCAAGCGACCGGAAGTGGTGGAAATGGCGTTGGAGCCGGCGAAGGCCTGA	MVPLLAGYIAYSIADRPGLAPGMIGGMLASTLGAGFIGGIIAGFLAGYAAKAINRYARLPQSLEALKPILIIPLLASLFTGLVMIYIVGKPVAGMLEGLTHFLDSMGTTNALLLGVLLGAMMCVDLGGPINKAAYAFSVGLLASQSYAPMAATMAAGMVPPIGLGIATFIARRKFAKTEREAGKAALVLGLCFISEGAIPFAAKDPLRVIPASIAGGALTGALSMYFGCKLMAPHGGLFVMLIPNAINHALLYLLAIVAGSLVTAVAYALLKRPEVVEMALEPAKA	PGPT0017120_1653	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_FRUCTOSE_PTS_SYSTEM_I,PGPT0017120-fruA-K02770	NA	NA
D1-36_00831	1542	phoD	COG3540	Alkaline phosphatase D	ATGAGCGAATTCGACCTGGGCCGCCGCCGTGTGATGCAAGTCGTTGGCGCGGGCTTGTTGCTGCCCGGGCTGGCCCCGGCCGTGATCGCTTCGGTCAAGGACCGGCCCGTGTTGACCGAAGGTGTGCAGTCGGGCGACTTGCAAGGTGATCGCGCGATGATCTGGAGCCGCAGTGACCGCCCGGCGAGGATGGTGGTGGAGTGGGACACCCGCAGTCAGTTCCCCAACCCCCGGCGCTTCGTCTCGGCGCTGGCCGATAGCCGCAGCGATTTCACCGCTCGGGTCGAGCTCACCGGCTTGCCACCCGACCAGGCGATTTTCTACCGCGTGCATTTCCAAGACGCCCAGAGCGGTGTGGCCAGCGAGCCGTGGCTCGGCCACCTGCGCAGCGTGCCGCAGTTCAAGCGCAACATCCGTTTTGTCTGGAGCGGCGACACCGTCGGCCAGGGTTTTGGTATCAATCCGGACATCGGCGGCATGCGCATCTATGACGCCATGCGCCTGCGCCTGCCGGATTTCTTCATCCACAGCGGCGACACCATCTATGCCGACGGCCCGGTGCCGGCGCAGATCACCACAGAGGGCGGGCGCATCTGGCGCAACCTGACCACCGAAGCCAAGAGCAAGGTCGCCGAGACCCTGGATGAATATCGCGGTAACTACCGCTACAACCTGATGGATGATAACGTCCGCCGTTTCAACGCCGAAGTGCCGCAGATCTGGCAGTGGGACGATCACGAAGTGGTCAACAACTGGTCGCCGGGCAAGCAACTGGACGAGCGCTACCAGACCAAGGATATCCACAGCCTGGTCGGTCGTGCGCGACAGGCCTGGTTGGAATACGCGCCGATGCGCCTGCAGAAGGCCGATGGGGGAGGGCGCATCTACCGCAAGCTCGGTTACGGGCCGATGCTGGATGTGTTTGTGCTGGACATGCGCAGCTATCGACAAGCCAATGACGCGAACCTCGGTGCGGCCAAACCGTTCCTCGGGCGGGAGCAGTTGGACTGGCTCAAGCGCGAATTGAAGCAATCCGGTGCCCAGTGGAAAGTCATCGCTGCTGACATGCCCATCGGCCTGGGCGTGCCGGATGGCGAGGTCAGCCCCGGCGTTGCGCGTTGGGAAGCGGTCGCCAACGGTGACCCGGGCGAGGCCCAGGGGCGCGAAGTCGAGATCGCCGAATTGCTCGGTTATCTGCGCAAGCATCAGGTGCGCAACTACGTCTGGCTCACCGCCGATGTCCACTATTGCGCCGCCCACCACTACCACCCCGAACACGCCGCGTTTCAGGATTTCGAACCCTTCTGGGAGTTCGTCGCCGGCCCATTGAACGCCGGCAGCTTCGGGCCCAATCCCTTGGACAAGACCTTCGGCCCTGAAGTGGTGTTCCAGAAAGCCCCTCCGGCCCAGAACACCTCGCCGTTTGCCGGCTATCAGTTCTTTGGCGAGGTGGACATCGACGGGCAGAGCGGGGAGATGAGCGTGGTGCTGCGGGACCTGGAAGGCGTGGCGGTGTTCGAGAAGAAGTTGCAGCCGGTGTGA	MSEFDLGRRRVMQVVGAGLLLPGLAPAVIASVKDRPVLTEGVQSGDLQGDRAMIWSRSDRPARMVVEWDTRSQFPNPRRFVSALADSRSDFTARVELTGLPPDQAIFYRVHFQDAQSGVASEPWLGHLRSVPQFKRNIRFVWSGDTVGQGFGINPDIGGMRIYDAMRLRLPDFFIHSGDTIYADGPVPAQITTEGGRIWRNLTTEAKSKVAETLDEYRGNYRYNLMDDNVRRFNAEVPQIWQWDDHEVVNNWSPGKQLDERYQTKDIHSLVGRARQAWLEYAPMRLQKADGGGRIYRKLGYGPMLDVFVLDMRSYRQANDANLGAAKPFLGREQLDWLKRELKQSGAQWKVIAADMPIGLGVPDGEVSPGVARWEAVANGDPGEAQGREVEIAELLGYLRKHQVRNYVWLTADVHYCAAHHYHPEHAAFQDFEPFWEFVAGPLNAGSFGPNPLDKTFGPEVVFQKAPPAQNTSPFAGYQFFGEVDIDGQSGEMSVVLRDLEGVAVFEKKLQPV	PGPT0002575_2101	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0002575-phoD-K01113	NA	NA
D1-36_00832	2526			hypothetical protein	GTGTTGAAGAAAACCCTGTTCCAGTTGCACTGGTTCTTTGGCATCAGTGCCGGGCTGGTCCTGGCATTGATGGGCATTACCGGTGCGTTGGTGTCGTTTCAGGACGAGATCCTGCGCGCGCTGAACCCACAGGTGCTGACGGTTGAAAAGCAACCGGCCGGCATATTGCCGCCTGCCGAACTGGTGGAACAGATCGAAGCCGCGTCCGGCAAGACCGTCAGCATGCTCTGGGTAGAGACCGACAGCGGCAACGCCGCACGGGCGGTTTTCACCGCCTCGCCCGGGGAAAAGCGTGGCCCGATGCGCTACTTCAATCCCTACAACGCGCAATTCATGGGGGATGTGGTGGGGCAGGACTTCTTTGGTCTGATGCTCCGTCTGCACCGCGTCCTCACCCTGGACGACGTAGGCCGGCAGATCACCGGCGCGTGCACGCTGATCCTGGTGTTTTTCTGCCTGTCCGGGCTTTACCTGCGCTGGCCGCGCCAATGGAAAAACTGGCGCGCCTGGCTGACCCTCGATTGGGCGAAAAAAGGCCGCAGTTTCAATTGGGACCTGCACTCCGTCGCGGGCACCTGGTGCCTGGTGTTCTACCTGCTGGCCGCCTTGACCGGGCTGACCTGGTCCTACGAGTGGTACAACAAAGGCGTAACCCGCCTGCTTTCCGATTCGCCCAAGGATGAGCGCGTGCGCAAGCGCGGCCCCGCACCCGGTGGCCCGGCGCCGATCGCCGACTACCGCGCCATGTGGAGCAGCATCTACAGCGCCGCCGGCCCCGACCTGTCCGCCTATAACGTGCGCATGCCGCCGGTAGCGGGACAACCGGCGACCGTGTTCTACCTGCTGAAAAACTCCCCCCATGACCGGGCGCTGAACCAGCTTATCCTCGACCCGGCCACCGGCGTCGTCAGCCGTCACAGCCGCTACAGCGACAAAAGCTTCAAGGCGCAATTGCTGACCAGCATCTACGCCCTCCATGTCGGCAGCTACTTCGGCCTGGTCGGCCGGATCCTGGTGACCGTCGCCGCGCTGGCCATGCCGCTGTTTTTCATCACTGGCTGGCTGTTGTATCTCGATCGTCGACGCAAGAAGCGCCAGGTCCAAAAGGCCCGCCAGGCGCTGACCCAAACCCCTGGTGACGCCCCGGCGTGGCTGATCGGTTTCGCCAGCCAGAGCGGTTTCGCCGAGCAACTGGCCTGGCAGACCGCCGGCCAGCTCCAGGCCGCCGGCCTGCCGGTGAAGGTCCGGCCATTGGCCGGCGTCAGCGAGCAGGATTTGAACAGCTCCACTCGCGCCTTGTTCGTGGTCAGTACCTTTGGCGATGGCGAAGGCCCCGACAGTGTCCGGGGTTTCGAGCGCAAGGTGTTGGGCCAGCCGCTGAGCCTGGAACGCTTGCAATATTCGGTGCTGGGCCTGGGCGACCGCCAATATGAAAACTTCTGCGGCTTCGCCCGCCGCCTGCATGCCTGGCTGGCGGAACACGGCGGCAAGACACTGTTCGCGCCGGTGGAAGTGGACAGCGGCGATCCTTACGCCTTGCGCCACTGGCAACAACAGCTGGCGGAACTCACCGGCCAGGCCCCGGCGGACGCCTGGCAGGCGCCGAGTTTCGAGCATTGGACGTTGAACCAACGCACCCTGCTCAACCCCGACAGCTGCGGGTCTGGCGTATACCTGCTGGGCCTCACCGCACCGGGGCCGAGCAGTTGGCTGGCCGGTGACCTGGTGGAAATCCTGCCGCGCAATGATCCATGGGCCATTGAACATTTCCTCGATGGGCTGGGCATCGCCGGTATTGCTCGGGTACACGTCGACGGCTTGCAGCAGACACTCGAACAAGCCCTGGCGACACGCCAGTTGCCGGAAAACCGCGCCCACTTGGTCGGCCTGCACGCCCAGGCACTGGTGGAGGCGTTGGCACCGCTGGGCATGCGCGAATACTCCATCGCATCGATCCCCGCCGATGGCGTGCTGGAACTGATCGTGCGCCAGGAGCGCCGCGCCGATGGCAGCCTGGGCGTCGGCTCCGGCTGGCTGACCGAACATGCGCCGCTGGGCAGCCCAATCAGCTTGCGGGTAAGACGCAACAGCAGCTTTCATCTGCCACCCCAAGGCGTACCGATGATCCTGCTGGGCAACGGAACCGGCCTGGCCGGCCTGCGCAGTTTGCTCAAGGCCCGTGTTGCCGAGGGCATGCAACGCAACTGGCTGCTGTTTGGCGAACGCAACCGCGAACACGATTTCCATTGTCGCGATGAGCTTCAGGAATGGGTCACCTCCGGCGACCTGGAGCGACTGGACCTGGCCTTCTCCCGAGACCAGGACAAGAAAATCTACGTCCAGAATCGCCTGCTGGAATCGGCGGCATTGCTCAAGCAATGGCTGGCCGACGGCGCGGTGATCTATGTCTGCGGCAGCCTGCAAGGCATGGCGTCAGGGGTGGATCACGTGCTCAACCTGGTGCTGGGGCGTGAGGAAGTGGAGAAGCTGATCGAGCAAGGGCGGTATCGGCGGGATGTGTACTGA	MLKKTLFQLHWFFGISAGLVLALMGITGALVSFQDEILRALNPQVLTVEKQPAGILPPAELVEQIEAASGKTVSMLWVETDSGNAARAVFTASPGEKRGPMRYFNPYNAQFMGDVVGQDFFGLMLRLHRVLTLDDVGRQITGACTLILVFFCLSGLYLRWPRQWKNWRAWLTLDWAKKGRSFNWDLHSVAGTWCLVFYLLAALTGLTWSYEWYNKGVTRLLSDSPKDERVRKRGPAPGGPAPIADYRAMWSSIYSAAGPDLSAYNVRMPPVAGQPATVFYLLKNSPHDRALNQLILDPATGVVSRHSRYSDKSFKAQLLTSIYALHVGSYFGLVGRILVTVAALAMPLFFITGWLLYLDRRRKKRQVQKARQALTQTPGDAPAWLIGFASQSGFAEQLAWQTAGQLQAAGLPVKVRPLAGVSEQDLNSSTRALFVVSTFGDGEGPDSVRGFERKVLGQPLSLERLQYSVLGLGDRQYENFCGFARRLHAWLAEHGGKTLFAPVEVDSGDPYALRHWQQQLAELTGQAPADAWQAPSFEHWTLNQRTLLNPDSCGSGVYLLGLTAPGPSSWLAGDLVEILPRNDPWAIEHFLDGLGIAGIARVHVDGLQQTLEQALATRQLPENRAHLVGLHAQALVEALAPLGMREYSIASIPADGVLELIVRQERRADGSLGVGSGWLTEHAPLGSPISLRVRRNSSFHLPPQGVPMILLGNGTGLAGLRSLLKARVAEGMQRNWLLFGERNREHDFHCRDELQEWVTSGDLERLDLAFSRDQDKKIYVQNRLLESAALLKQWLADGAVIYVCGSLQGMASGVDHVLNLVLGREEVEKLIEQGRYRRDVY	PGPT0002795_682	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002795-cysJ-K00380	NA	NA
D1-36_00833	2319	bfrD	COG4774	putative TonB-dependent receptor BfrD	ATGTCGCGTCAACAACTACAATCACCGGCCCATTCACCTCGTTTACTGGCTTCCGCCATCGGCGTCGCGCTCAGTGCAACCTCCGTGGCGCAGATGGCCCAGGCGGCAGAAAATACCGAAGAAAAAGCCCCGCGCAATGCCATTTCCCTGGATGCCACCAGTATCACCGGCGAAGCCCAGGACACGACGTCCTATCAGGTCGAGAAAGCCTCGTCCTCGAAATACACCGCGCCGCTGGTCGACACGCCACGCTCGGTGACGGTCATCCCCCAGCAAGTGCTCAAGGACACCGGCGCGCTCAACATGCAAGACGCGCTGCGCACCGTGCCCGGCATTACTTTCGGCGCGGGTGAAGGCGGCAACCCCCAGGGCGACCGCCCCTTCATCCGTGGCTTCGATGCCCAGGGCGACACTTACCTGGATAACGTGCGTGACACCGGTTCCCAGAGCCGGGAGATCTTCGCGGTCGAGTCCATCGAGGTCAGCAAGGGCCCCAACTCCGCCATCGGTGGCCGTGGCGCCGCCGGCGGCACCATCAACCTGGTGAGCAAGAAAGCGCATCTGGGCGACTCCTTCGACGGCGGTTTCACCTGGGGTTCGGACCAGACCCAGCGCTACACACTGGACGGCAATTACCAGTTCAGCGACAGCGCCGCCGGCCGTCTCAACCTGATGAGCCATGAAAGCAACGTCGCCGGTCGTGACAAGGTCAACTACGACCGCTGGGGCGTCGCGCCATCGCTGGCGTTCGGCCTGGGCACCGATACCCGGGTCAACCTCGATTACTACCACCTGGAAAGCAACGACCTGCCGGATTCGGGCATTCCCTACACCGTGCCCGCCTCGGGTCGTACGGCCGATCGCACCAAGGCCAACCCCGACAAGCCCTACGCCGGCGGCGACAGCAGTAACTTCTACGGCCTCACCGACCGCGACTTCCGCAAGACTCGCGTCGACACGGCGACCATCGCCATCGAGCACGACCTGAGCGATGCACTGACGGTCAAGAACACCCTGCGCCACGGCTCCAGCATGCAGGACTACATCCTGACCCAGCCCGACGACAGCAAGGGCAACGTCAACAATGGTACGGTCTGGCGCCGGGCCAACACCCGCGTCAGCAATGTCGACACCACCACCAACCAGACCGATCTGTTTGGCGATTTTTACGTCGCAGGATTCAAGAACAGCTTCTCCACAGGCATCGAACTGAGCCGCGAAACCGGCGAGAAATCCTCTTACAACGTCAACACCGACACCGTGCCGGGCACCGCCGCCGCGAACACCAACTGCACCCCGGCGACAGTCGGCTCGCCAAGCGGGAACAACTGCACGTCGCTGTCCAATCCAAACCCGAACGATCCCTGGAACGGCGCGATTTCCCGCAACTACGCCGGCACCGACACCACCAGCGTCACCCGTGCGCTTTACGTGTTCGACACTTTGGAGCTGTCACCGCAATGGCTGGTGAACATGGGCTTGCGTTACGACCACTTCGACACGAAATACAAAACCTACAATGCCGCCGGCACCACCACTTCCAAGGGTGATGACACCAGCGAGTTCGTTACCGGCCAGTTCGGCCTGGTCTGGAAACCGGCGGACAACGGCAGCATCTATGCGTCCTACGCCACCTCGGCCACGCCGCCGGGCAACACGGTCGGTGAAGGTCAGGAAGGCAACCCGCTGGGTGGCACGCCGGACCGCAGCGGCAACCTGCTCGCCAGCGACATGGAGCCGGAAACCACCAAGAACTACGAAATCGGCACCAAGTGGGACTTGCTCGACAGTCGCCTGTCACTGACGGCCGCTATCTTCCGCACCGAGAAGGAAAACGCCCGGGTCCAGGTCGACACCACCACCTATGAAAACGCCGGCAAGACCCGCGTCGACGGCCTCGAACTGTCAGCCAGCGGCAAGCTCACGGAAAAGTGGCAAGTGTTCGCCGGCTATAGCTACCTGGACAGCGAACAGGTCGATGGCGGGCCGTTGAGTGTTACCGATGGCAATCAATTGCCCAACACACCGAAGAACAGCGCCAGCGTCTGGACCACCTATGCCCTCACGCCGAAGCTGACCATCGGTGGCGGTGCCTTTTATGTGGACGATGTATTTGGCAGCGTGGCGAATACTACGATGGTCGATTCCTACGTGCGTTACGACGCCATGGCCAGCTACAAGGTCAGCAAAAACCTGGACCTGCAACTCAACGTGCAGAACCTGACGGACGAGACTTACTACGACAAGGCTTTCTCGACCCACTTCGCCAACCAGGCGGCCGGGCGTACCGCGTTGTTGAGTACCAACTTCCACTTCTAA	MSRQQLQSPAHSPRLLASAIGVALSATSVAQMAQAAENTEEKAPRNAISLDATSITGEAQDTTSYQVEKASSSKYTAPLVDTPRSVTVIPQQVLKDTGALNMQDALRTVPGITFGAGEGGNPQGDRPFIRGFDAQGDTYLDNVRDTGSQSREIFAVESIEVSKGPNSAIGGRGAAGGTINLVSKKAHLGDSFDGGFTWGSDQTQRYTLDGNYQFSDSAAGRLNLMSHESNVAGRDKVNYDRWGVAPSLAFGLGTDTRVNLDYYHLESNDLPDSGIPYTVPASGRTADRTKANPDKPYAGGDSSNFYGLTDRDFRKTRVDTATIAIEHDLSDALTVKNTLRHGSSMQDYILTQPDDSKGNVNNGTVWRRANTRVSNVDTTTNQTDLFGDFYVAGFKNSFSTGIELSRETGEKSSYNVNTDTVPGTAAANTNCTPATVGSPSGNNCTSLSNPNPNDPWNGAISRNYAGTDTTSVTRALYVFDTLELSPQWLVNMGLRYDHFDTKYKTYNAAGTTTSKGDDTSEFVTGQFGLVWKPADNGSIYASYATSATPPGNTVGEGQEGNPLGGTPDRSGNLLASDMEPETTKNYEIGTKWDLLDSRLSLTAAIFRTEKENARVQVDTTTYENAGKTRVDGLELSASGKLTEKWQVFAGYSYLDSEQVDGGPLSVTDGNQLPNTPKNSASVWTTYALTPKLTIGGGAFYVDDVFGSVANTTMVDSYVRYDAMASYKVSKNLDLQLNVQNLTDETYYDKAFSTHFANQAAGRTALLSTNFHF	PGPT0003875_389	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-OTHER_IRON_BINDING_PROTEINS,PGPT0003875-fiu|bfrD-K16090	NA	NA
D1-36_00834	681		COG3128	PKHD-type hydroxylase	ATGTTGTTGCACATCCCCGGTGTGTTTAGCGCCGAAGAAGCGCAGCGTATTCGTGAAGCGCTGGAGCAGGCCGAATGGGAGGACGGCAAGGTCACCGCCGGTTATCAATCGGCCAAGGCCAAGCACAACCTGCAACTGCCCGAGGGCCATCCCCTGGCCAAGGAGATCGGCGCGGCCATGCTTGAACGGCTGTGGAAAAACCCGCTGTTCATGTCGGCGGCCCTGCCGCACAAGGTGTTCCCGCCATTGGTGAACTGTTACAGCGCTGGCGGCAGCTTCGATTTCCACATCGACAATGCCGTGCGCCAGCCCAAGGGCAGTGCCGAGCGGGTGCGCACCGACCTATCGGCGACGCTATTCTTCAGCGACCCGCAGGACTACGACGGCGGTGAGCTGGAAATCCAGGACACCTACGGCACCCAGCGGGTCAAGCTGCCGGCCGGCGACATGGTGTTGTATCCGGGGACCAGCCTGCACAAGGTCAACGCCGTCACCCGGGGCGCGCGCTACGCCTCGTTTTTCTGGACACAAAGCCTGGTGCGCGAAGACAGCCAGCGGGCACTGCTGTTCGAGATGGACGGCGCGATCCAGCAATTGACCCGGGACGTACCCGACCACCCTTCGTTGATCCGCCTGACCGGCACCTATCACAACCTGTTGCGCCGCTGGGTCGAGGTGTAA	MLLHIPGVFSAEEAQRIREALEQAEWEDGKVTAGYQSAKAKHNLQLPEGHPLAKEIGAAMLERLWKNPLFMSAALPHKVFPPLVNCYSAGGSFDFHIDNAVRQPKGSAERVRTDLSATLFFSDPQDYDGGELEIQDTYGTQRVKLPAGDMVLYPGTSLHKVNAVTRGARYASFFWTQSLVREDSQRALLFEMDGAIQQLTRDVPDHPSLIRLTGTYHNLLRRWVEV				NA	NA	NA	NA	NA
D1-36_00835	768	esiB		Secretory immunoglobulin A-binding protein EsiB	GTGGCGGATTTTCGTCTGCGCCGAGAAGAGGTGCTCGACGGCGAAAGCCTCAAAGCCATGCTCAAGGACAGCCCGGCGCGCGCGGCCCAAGCGATTCTCATCGCTGCTGGCGCTGGCGTGCTGGAGGCCCAGGCGCTGCTTGGGCAAATTCTGTTGGATGGGCAGGGCATCGAACAGGACAAACCCCTGGCCCTGCGCTGGTTCGACATCGCCGCCCAACGCGGGCACTTGATGGCGCGCAACATGCTGGGCCGTTGCCATGAGCATGGTTGGGGCTGTGTTGCCGATCCTGCAGTCGCTGCCGCCCATTATCGACAGGCCGCCGAGGCAGGGCTGGATTGGGCGATGTACAACTACGCCAACCTGTTGGCGACCGGGCGTGGGGTTACTGAAGATCAGCCGCAGGCGTTGGCCCTGTACCGCCGTGCCGCAGAATTGGGCCACGCCAAGTCAATGAACCTGCTGGGGCGTTATCTGGAGGACGGGCGCTGTTGCCCGGCGGATCCAGTTGCGGCGGCCGAGTGGTATCGGCGTTCGGCCGAAGCTGGAGATTTCCGAGGCCAGTTCAGCCATGCGGCGGTGCTGGCGCAAGAAGGTCGCATCGACGAGTCCCTGACTTGGCTGCGCGAGGCGCTGGCGGGTGGAAATGTGAGTTTCCTTCGCGTGAGCAGTGAGGCGTTGCGGGATGCTCTGCATCCGGAAGTTCGTGCCATGGCTTGTGCTTATCGGCAGCGGCTTTTTCAAATAACGGGCAGCAACAACTCATAA	MADFRLRREEVLDGESLKAMLKDSPARAAQAILIAAGAGVLEAQALLGQILLDGQGIEQDKPLALRWFDIAAQRGHLMARNMLGRCHEHGWGCVADPAVAAAHYRQAAEAGLDWAMYNYANLLATGRGVTEDQPQALALYRRAAELGHAKSMNLLGRYLEDGRCCPADPVAAAEWYRRSAEAGDFRGQFSHAAVLAQEGRIDESLTWLREALAGGNVSFLRVSSEALRDALHPEVRAMACAYRQRLFQITGSNNS	PGPT0000855_4596	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	OTHER_MOTILITY_REGULATING_FUNCTIONS	MOTILITY-ACIDITY|NITROGEN_RELATED_REGULATION,PGPT0000855-exoR-K07126	NA	NA
D1-36_00836	2232			hypothetical protein	ATGGAATTCAAGTTGAGGAAAGAGGTGGTCGAGGCGGCCGCTAAAGCGCCCAAAGTTTTCGTCGAGGCGTCGCTTGGGGGGGGTGGTCAATATAACAGAGCGCCTGGGATACAATTAACCAAGGAACAGGTCATCAGCTTGAGACGGTATGAAATGTTGGGATTGTCGCTTCCTCAGCGGCTAACTGACGTGATTAGCTATTTGAACTATGGCGCCGGTGATGCGGGTCGCCCAGGGCTGACGCCCATGGATTTTTTGGGAACATTTACCACGACGTATGATCATGCTAGGCGTTGGTCACCGTTACGTGAAAAAATTCAACTGACCGGCGCTGACCTGCAAGGCTTTGCCCGTATTATCGTCGGGCGGGGAGCTGCGATCTCCGAAGTTTATGGTGATCTTAGATCGTCCAGGTATCTGGAAGAACACAACATAACTACCATTGAAGAATACCTGAAGCTGAAGGTTGAAATTCCGCACCTTCCTGATCTGGCGCTCCCATCGGGGGATATCCGGGAAATAAAGTTCTATCTCAACAGCATACTGGATGGGGTCAAGAGCCGTCATGTCTCCGCTGAAGCGGTCCGACGGGAGCTGGATAGTTTCGGGACCGACATGCGAGAAAAGGTATTGCCGAGAATTAAGTTGCGCTTGAAAGCTGTGACTGAAAACCCCTATGAAGACGAAATTCGGAGCATTCAGGAGGACATCGATCAACGTGCCGCTGAGATTGATGAACTCAACAACCAATACGATGCCATGGTCAAGGAAGCGATTGTTGCCGCAGCGACATTGAATGTCGGCGGTCTGATCATGGGTATTTACCAGGGCGTTCAGGCCGAGAACATACGCAAAAAGCGTAACGAACTGAAAAGCACCCAAGATACCGCTATCGCGAAATTGGGTAGCAAACATCAAACACTTTCTTCATTGAACCGGGTGCGGGGTGATCTTCAAAATCTCAGTGCGGTCACGATTGAAGCGGAAGTCGCTACGCAGAACCTTATGTTGGTCTGGAATTCGCTCAGCCAGTTCATTGAGGACTCTCTGAAGACAGTCGATGAGGTACACGATGCGGTGTCTCTGAGATCGTTCCATAATAGTCTCAAACTGGTGGTTGAACCTTGGGGCGAAGATATAGGCCCTACCGCGCGGGCGCTGAACGCGATTTTTGAAGAGGCTCAACGGGAAATTGATGCCGGTAATTTGATCAGGACAAGGAGCGTACAAATGTATTCGTTATCAAGTGGTGTGGATTATCCGCAAATCAATATCATGGCGTTGTATGGCTACAACTCGAATGTCCAGACTGCAAAGACGCAAACGCAGTTTCTCGCTGAACGGCATGATTACCTACCGGCCGTGGTGGGCAGAATGACGGGTTTGGCCACCGCTATTGACAGCCAGACGTTCAACCTTCGCAACACCGCACAGAGTGCGCTTCATATCCTGAATAGAACAAACGGACGGCTTGAAAGATATCAGGACGAACTTGAAGAGCCTGGCAGTGAGTCGGATAAGCAAGAGGTACGCTACGATATGGAGAAAGCGCTTCGAGCCACATCCGGAGAAATTAGCCAGCAGGTCGACAACCTCAAGCAGATCGAACTTAACCTGAGCGCCCGATACGACAGGGAAGCATCGAAACAATGGACGCTTGCATTGCTGCAAGACCGGACATTTGTAGAAGAGCAAAAAGATAAGGCCGAAGCCAAGCGTGTCGAGCTGCTTGAACAGGTCGCTTCGGTGTCCAATGCTATCGAGTTGATTGGAAGAAACGGCGTCGAAAAAATTGGCCAGGAAGCTCAGCTGACAGTGGAGAGTCTGATGGCAATGGGTATGGCACCTCCTCAGATGCAGGTGGCATTGTTGGCGATGGACACTTTGAAAAAAACGATCGCAGGTATAGGAGAAACCCTTTCCTACCTCAATATGGTTGCCGGGCGCGACAGGCTTCGTGACAGGGCTCATCAACTGATGATGGAGGCGGGAGACCGGCACAAGGAACTTTCTGAGGTCCAAGGGAAAATCGACTTGGTTGAGAGTCTGGATAGGTTGGACAGTGTTCGCTGGGACTACCTCAAGGAGTTTGGAAATGTCGTGGCTGCCTATGAGAAGTTTTCAAAGGCATTCGCGTGGGAAAGGTCGCGGCCCGTCGAAGAGAATGTCCGTAACGCGCGCGCGCTCATTCCTGGATTCACGCAATACTTACGACCCATTCTCCAGCCATGA	MEFKLRKEVVEAAAKAPKVFVEASLGGGGQYNRAPGIQLTKEQVISLRRYEMLGLSLPQRLTDVISYLNYGAGDAGRPGLTPMDFLGTFTTTYDHARRWSPLREKIQLTGADLQGFARIIVGRGAAISEVYGDLRSSRYLEEHNITTIEEYLKLKVEIPHLPDLALPSGDIREIKFYLNSILDGVKSRHVSAEAVRRELDSFGTDMREKVLPRIKLRLKAVTENPYEDEIRSIQEDIDQRAAEIDELNNQYDAMVKEAIVAAATLNVGGLIMGIYQGVQAENIRKKRNELKSTQDTAIAKLGSKHQTLSSLNRVRGDLQNLSAVTIEAEVATQNLMLVWNSLSQFIEDSLKTVDEVHDAVSLRSFHNSLKLVVEPWGEDIGPTARALNAIFEEAQREIDAGNLIRTRSVQMYSLSSGVDYPQINIMALYGYNSNVQTAKTQTQFLAERHDYLPAVVGRMTGLATAIDSQTFNLRNTAQSALHILNRTNGRLERYQDELEEPGSESDKQEVRYDMEKALRATSGEISQQVDNLKQIELNLSARYDREASKQWTLALLQDRTFVEEQKDKAEAKRVELLEQVASVSNAIELIGRNGVEKIGQEAQLTVESLMAMGMAPPQMQVALLAMDTLKKTIAGIGETLSYLNMVAGRDRLRDRAHQLMMEAGDRHKELSEVQGKIDLVESLDRLDSVRWDYLKEFGNVVAAYEKFSKAFAWERSRPVEENVRNARALIPGFTQYLRPILQP				NA	NA	NA	NA	NA
D1-36_00837	879			hypothetical protein	ATGGATCGATATGGACATGATTTTACTGAGGGGCAGCGCAGGGCATTGGACCGTTATATTTCTTTCCTTGGCGGCTTGCGCTCGGTCTTTGACAGGATATCGGCAGTTCTTGAAAGGAGCCGCGTCAGCGGTCATCAGGCAGCGTCGCTTCCTAGGGATTCGCGATTAGACAACGCGTACTTCAACGGGCGGGCCCTTTCGGCATTAGGGGGGGATGTCAGTGATACCAAGGCGCTCGTCGATACTCATGTGGCTGAACTGAGGCTGTTCGCGGGAGAAGCGTTGGGTCTGGCAGAGAAAACCCCCAGGCAAACGCCACTTTCTGAAATTGACTACAGACGTTTCAGTCTTTCTCGTTCCGAACGTTGGAAACTAACGTCACCGAAGAATGTTGGGGATCTGGTCCATGAGCTTTACCTTCGTCTTGTTGACGTCAGAAGTGCCATCAGGCAACTCGACTTCAAGTTCGCCGGGATAAACCAGGACTCGTTTGGGGTGTACTCGATATTCACGAGGGCCATGGATCACCGAAGCTGCTATTGCCATGATCGACCGACGCTGGCGCAGGCACTGTTCCAGCAGGCCAGCACTTCACCGTCATGGGACCTGGGTTATTCCTCCACGGATGCGTCAATCAGGGCTACGGAGTACAAGGCTGATATTGCCGCCCTGTTCAATATTTTCAGTAACCTTAATTCCCAGATGGGGTTGCTTGCCCGAGCGTTATACCTGTCCATGGACGCTGCGATGCTAGAGGTCGAGCGAGCAAGTTATGCCGGCAATCTCAAAGAATTGAATTTTGGATTGGGCGCAGCCATTGAGACACTCGAGCAATGCACGACGATGCTGGATGACTTTCACAGGTGGCTATGCAGATAA	MDRYGHDFTEGQRRALDRYISFLGGLRSVFDRISAVLERSRVSGHQAASLPRDSRLDNAYFNGRALSALGGDVSDTKALVDTHVAELRLFAGEALGLAEKTPRQTPLSEIDYRRFSLSRSERWKLTSPKNVGDLVHELYLRLVDVRSAIRQLDFKFAGINQDSFGVYSIFTRAMDHRSCYCHDRPTLAQALFQQASTSPSWDLGYSSTDASIRATEYKADIAALFNIFSNLNSQMGLLARALYLSMDAAMLEVERASYAGNLKELNFGLGAAIETLEQCTTMLDDFHRWLCR				NA	NA	NA	NA	NA
D1-36_00838	1164	ldc		Lysine/ornithine decarboxylase	ATGTCGATCCAGGTCGAAGATTATTTCGCGCGCGAAACCTTTCAGAAAATGAAGGCGTTCGCCGACAAGCAGGAAACCCCGTTCGTGGTGATCGACACCGCGATGATCGCCCAGGCCTATGACGACCTGCGCGCCGGTTTCGAATTCGCCAAGGTCTACTATGCCGTCAAGGCCAACCCGGCGGTGGAAATCATCGACCTGCTCAAGGAAAAAGGCTCGAACTTCGACATCGCCTCGATCTACGAGCTGGACAAGGTCCTGAGCCGTGGCGTCGGCCCGGAGCAGATCAGCTACGGCAACACCATCAAGAAATCCCGAGACATCCGCTACTTCTATGACAAGGGCGTGCGCCTGTACGCCACTGACTCCGAAGCCGACCTGCGCAACATCGCCAAGGCCGCGCCGGGCTCCAAGGTCTATGTGCGGATCCTCACTGAAGGCTCGACCACCGCTGACTGGCCATTGTCGCGCAAGTTCGGCTGCCAGACCGACATGGCCATGGACCTGCTGATCCTCGCCCGCGACCTGGGCCTGGTGCCGTACGGCATCTCGTTCCACGTTGGCTCGCAACAGCGCGACATCAGCGTCTGGGACGCGGCTATCGCCAAGGTCAAGGTGATCTTCGAGCGCCTGAAGGAAGAAGACGGCATCGTCTTGAAGCTGATCAACATGGGCGGCGGCTTCCCGGCCAACTACATCACTCGTACCAACAGCCTGGAAACCTACGCCGAGGAAATCATCCGTTTCCTCAAGGAAGACTTCGGTGACGACCTGCCGGAAATCATCCTGGAGCCGGGCCGTTCGTTGATTGCAAACGCCGGTATCCTGGTCAGCGAAGTGGTGCTGGTGGCGCGCAAGTCCCGTACCGCCGTCGAGCGCTGGGTGTACACGGACGTGGGCAAGTTCTCCGGCCTGATCGAAACCATGGACGAAGCCATCAAGTTCCCGATCTGGACCGAGAAAAAAGGCGAGATGGAAGAAGTAGTGATCGCCGGCCCGACCTGCGACAGCGCCGACATCATGTATGAGAACTACAAGTACGGCTTGCCGCTTAACCTGGCGATCGGTGATCGCCTGTATTGGTTGTCGACCGGCGCCTATACCACCAGCTACAGCGCGGTGGAGTTCAATGGGTTTCCGCCGTTGAAGTCGTTTTACGTTTAA	MSIQVEDYFARETFQKMKAFADKQETPFVVIDTAMIAQAYDDLRAGFEFAKVYYAVKANPAVEIIDLLKEKGSNFDIASIYELDKVLSRGVGPEQISYGNTIKKSRDIRYFYDKGVRLYATDSEADLRNIAKAAPGSKVYVRILTEGSTTADWPLSRKFGCQTDMAMDLLILARDLGLVPYGISFHVGSQQRDISVWDAAIAKVKVIFERLKEEDGIVLKLINMGGGFPANYITRTNSLETYAEEIIRFLKEDFGDDLPEIILEPGRSLIANAGILVSEVVLVARKSRTAVERWVYTDVGKFSGLIETMDEAIKFPIWTEKKGEMEEVVIAGPTCDSADIMYENYKYGLPLNLAIGDRLYWLSTGAYTTSYSAVEFNGFPPLKSFYV	PGPT0007765_2073	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007765-speC|speF|ODC1-K01581	NA	NA
D1-36_00839	1158	osmV	COG1125	Osmoprotectant import ATP-binding protein OsmV	ATGATCGAATTACAAAACCTCAGCAAAACCTTCAAGAGCAACGGCAAGGATGTGAAAGCCGTGGACTCGGTGAACCTGACCGTCAACGAAGGCGAGATCTGCGTGTTCCTCGGGCCGTCGGGCTGTGGCAAGAGCACCACGCTGAAAATGATCAACCGACTGATCCCGCCGACCTCGGGCAAGGTCTTGATCAATGGCGAAGACACCACCGGCCTGGACGAGGTGACCCTGCGCCGCAATATTGGCTACGTGATCCAGCAGATCGGTCTGTTCCCGAACATGACCATCGAGGAAAACATCACCGTCGTCCCACGCCTGCTGGGCTGGGACAAGCAGAAATGCCACGACCGCGCCCGCGAATTGATGAGCATGATCAAGCTTGAACCCAAGCAATACCTGCACCGATACCCGCGCGAATTGTCCGGCGGCCAGCAACAACGGATCGGTGTCATCCGCGCCCTGGCGGCCGATGCGCCGCTGTTGCTGATGGACGAGCCCTTCGGCGCGGTCGACCCGATCAACCGCGAGATGATCCAGAACGAGTTCTTCGAGATGCAGCGGGCGCTGAACAAGACCGTGATCATGGTCAGCCACGACATCGACGAGGCCATCAAGCTGGGGGACAAGATCGCGATCTTCCGCGCCGGTAAATTGATCCAGTGCGATCACCCGGACACGCTGCTGGCACATCCCGCCGATGAGTTCGTCAGCAATTTCGTCGGCCAGGACAGCACGCTCAAGCGCCTGCTATTGGTCAAGGCCGAAGACGCGGCGGACAACGCCCCCTCGGTCAGCCCCGAAACCCCGGTGGCCGAGGCGCTGGAACTGATGGACGAACATGACCGGCGCTACGTGGTGGTCACCTGTGCCGAGAATAAGGCCCTGGGGTATGTAAGACGCCGCGACCTGTACCGTCAGACCGGAACCTGCGGCCAGTACCTGCGGGAATTCAATGCCACCGCCGCCTACGACGAACATCTGCGGATCCTGTTGTCACGCATGTACGAGTTCAATCGCTCGTGGCTGCCGGTGATGGACGCCGAGCGGGTGTTCCTCGGCGAAGTGACGCAGGAATCGATTGCCGAGTACCTGAGCTCCGGCAAGTCCCGTGGGGGCAAGACCAGTATTGTCTCGCCGGCGGAGGCTGCCTCAGTCTGA	MIELQNLSKTFKSNGKDVKAVDSVNLTVNEGEICVFLGPSGCGKSTTLKMINRLIPPTSGKVLINGEDTTGLDEVTLRRNIGYVIQQIGLFPNMTIEENITVVPRLLGWDKQKCHDRARELMSMIKLEPKQYLHRYPRELSGGQQQRIGVIRALAADAPLLLMDEPFGAVDPINREMIQNEFFEMQRALNKTVIMVSHDIDEAIKLGDKIAIFRAGKLIQCDHPDTLLAHPADEFVSNFVGQDSTLKRLLLVKAEDAADNAPSVSPETPVAEALELMDEHDRRYVVVTCAENKALGYVRRRDLYRQTGTCGQYLREFNATAAYDEHLRILLSRMYEFNRSWLPVMDAERVFLGEVTQESIAEYLSSGKSRGGKTSIVSPAEAASV	PGPT0013585_614	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013585-opuA|osmV|yehX-K05847	NA	NA
D1-36_00840	654	osmW	COG1174	Osmoprotectant import permease protein OsmW	ATGGATTTTCTTGACGCCTTTTCCCATCTGGACTGGCCGCTGGTGCTGCACCTGACCTGGCAGCACATCACCCTGGTGGGCATCGCCGTGACCCTGGCAATCGTGATCGGCGTGCCGCTGGGCATTTTCATGACCCGCTTCCCGGCGCTCGCCGGCCCGTTGCAGGCCAGCGCCACGGTGCTGCTGACGATTCCGTCGATTGCCCTGTTCGGGCTGCTGCTGCCGTTCTATTCCAAGTTCGGCCAAGGCCTGGGGCCGATGCCGGCGATCACCGCGGTGTTTCTTTATTCACTGTTGCCGATCATGCGCAACACCTACCTGGCCCTGACCGGGGTCGAACCCGGTATTCGCGAAGCCGCCCGCGGCATCGGCATGACCTTCGGCCAGCGCCTGCGCATGGTCGAACTGCCCATCGCCGTGCCGGTGATCCTGGCCGGCGTGCGCACCGCCGTGGTCATGAACATCGGCGTCATGACCATCGCCGCCACCATCGGCGCCGGTGGCCTGGGCGTGCTCATCCTCGCTTCCATCAGCCGCAGCGATATGTCGATGCTGATCGTCGGCGCCTTGCTGGTCAGCCTCCTGGCCATCTTCGCCGACCTGCTTTTGCAATGGCTGCAACGCTCGTTGACTCCGAAAGGATTACTGAAATGA	MDFLDAFSHLDWPLVLHLTWQHITLVGIAVTLAIVIGVPLGIFMTRFPALAGPLQASATVLLTIPSIALFGLLLPFYSKFGQGLGPMPAITAVFLYSLLPIMRNTYLALTGVEPGIREAARGIGMTFGQRLRMVELPIAVPVILAGVRTAVVMNIGVMTIAATIGAGGLGVLILASISRSDMSMLIVGALLVSLLAIFADLLLQWLQRSLTPKGLLK	PGPT0013590_4228	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013590-opuBD|yehW-K05846	NA	NA
D1-36_00841	903	osmX	COG1732	Osmoprotectant-binding protein OsmX	ATGAAGAAGATGAGCTTGATTCTGGGGTGCCTGCTGCTGTTCGCAGGGTTTGCCCAAGCCGCTGAAAAACCGCTGATCCGCCTCGGCGCCCGGGTATTCACCGAGCAGACATTGCTGGCGGAAATCACCGCGCAATACCTGCGTGACAAAGGTTACGACGCGCAAGTCACCGGCGGCCTGGGAAGCAACCTGGCCCGTAGCGCCCAGGAATCCGGGCAATTGGATTTGCTTTGGGAGTACACCGGCGTGTCGTTGGTGGCCTACAACCATGTCACCGAAAAACTCGACAGCGCCCAATCCTACGCTCGAGTGAAAGAACTCGACGCGAAAAAAGGCCTGGTCTGGCTTGCTCCGTCGAAATTCAGCAACACCTACGCCTTGGCCCTTCCTGAAAAAGTCGCGAAGAAGTACCCGCAGATCAATTCCATCAGCCAGTTGAACGCGGTGTTGCAGGCCGAGGCCGACGAGAACCATCTGGTTGCCCTGGACACCGAGTTCGCCAACCGTTCCGACGGCCTGGCCGGCATGGTCAAGCAGTACGGTATGAACCTGACCCGCAGGAACATCCGCCAGATGGACGCGGGCCTGGTCTACACGGCGCTGCGCAACAGCCAGGTTTTCGCCGGTTTGGTGTACACCACCGACGGGCGCCTGAATGCCTTCAAACTGAAGCTGCTGGAAGACGACAAGCATTACTTCCCCGACTACACCGCCGCGCCGGTGGTACGCCAGGCATTCCTTGACGCGCACCCTCAACTGGCCGCGCAACTCAAGCCCCTGGCCGAACTGTTCGACGACGAAACCATGCGCCAGCTCAATGCCCGCGTGGACGTGGATCATGAAAGCCCTTCCGCCGTTGCCGCCGATTTCCTGCGTCAGCATTCGCTGCTCTCAACCCAATGA	MKKMSLILGCLLLFAGFAQAAEKPLIRLGARVFTEQTLLAEITAQYLRDKGYDAQVTGGLGSNLARSAQESGQLDLLWEYTGVSLVAYNHVTEKLDSAQSYARVKELDAKKGLVWLAPSKFSNTYALALPEKVAKKYPQINSISQLNAVLQAEADENHLVALDTEFANRSDGLAGMVKQYGMNLTRRNIRQMDAGLVYTALRNSQVFAGLVYTTDGRLNAFKLKLLEDDKHYFPDYTAAPVVRQAFLDAHPQLAAQLKPLAELFDDETMRQLNARVDVDHESPSAVAADFLRQHSLLSTQ	PGPT0013595_3076	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013595-opuC|yehZ-K05845	NA	NA
D1-36_00842	717	osmY	COG1174	Osmoprotectant import permease protein OsmY	GTGGCTATCCGCTATGGCAAAGGGCTGACAGGGGCTGCGTTCGTCGTCGCACTCCTGGCCCTGTTGGTCCACTGGATTGGCATCGATACGATCCAACGCTACCGCGACGATCTGCTGTTTTACCTGCAAGCGCACCTGATGCTTGTATTGGCATCCATGTTGGCGGCCCTGATAGTCGGCATCCCAGCCGGCATACTCCTCAGCCGCCCCGGCATGGTCGGGCGTGCCGAACGCTTCATGCAAGTGTTCAACATCGGCAACACCGTGCCCCCCCTGGCCGTATTGGCCATCGCCCTAGGCGTCCTGGGCATCGGCAACGGGCCCGCCATCTTCGCCCTCTTCCTCGCCTCACTATTGCCCATCGTGCGCAACACCTATGAAGGCCTGAAAAACGTTCAGGGTTCCCTCAAGGAAGCCGCTATCGGCATCGGCATGACTGCGCGCCAGGTGTTGTGGAAAGTCGAATTGCCCAACGCCGTGCCAATCATAGTCGGCGGGGTGCGCGTGGCCCTGGCGATCAACGTCGGCACCGCGCCCCTGGCGTTCCTGATCGGCGCCAACAGCCTTGGCAGCCTGATCTTCCCCGGCATCGCCTTGAACAACCAGCCGCAATTGCTGCTCGGCGCAGCCTGCACCGCCCTGCTCGCTTTGCTGCTCGACGGGCTGGTGACACTGGCCAGCCGCCTCTGGCTGGAACGCGGTCTACGACCGTCCTGA	MAIRYGKGLTGAAFVVALLALLVHWIGIDTIQRYRDDLLFYLQAHLMLVLASMLAALIVGIPAGILLSRPGMVGRAERFMQVFNIGNTVPPLAVLAIALGVLGIGNGPAIFALFLASLLPIVRNTYEGLKNVQGSLKEAAIGIGMTARQVLWKVELPNAVPIIVGGVRVALAINVGTAPLAFLIGANSLGSLIFPGIALNNQPQLLLGAACTALLALLLDGLVTLASRLWLERGLRPS	PGPT0013590_2772	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013590-opuBD|yehW-K05846	NA	NA
D1-36_00843	1584	prfC	COG4108	Peptide chain release factor RF3	ATGACCAAACAGGCCGCCGAAGTCGCGAAACGCCGCACTTTCGCCATTATTTCCCACCCCGATGCCGGTAAGACCACCATCACCGAAAAGCTCTTGCTGATGGGCAAGGCGATTGCGGTGGCCGGCACGGTGAAATCCCGCAAGTCCGACCGCCATGCCACCTCTGACTGGATGGAGATGGAAAAGCAGCGGGGTATCTCCATTACCACGTCGGTCATGCAGTTCCCGTATCGCGATCACATGATCAACCTGCTCGACACCCCGGGCCACGAAGACTTCTCGGAAGACACCTACCGCACCCTGACCGCGGTGGACTCGGCCTTGATGGTTCTCGACGGCGGTAAGGGCGTCGAGCCACGGACCATCGCGCTGATGGACGTCTGCCGTCTGCGTGACACGCCGATCGTGAGCTTCATCAACAAGCTCGACCGCGACATCCGCGACCCGATCGAATTGCTCGACGAGATCGAAGCCGTCCTCAAGATCAAGGCCGCGCCGATCACCTGGCCGATCGGTTGCTATCGCGACTTCAAGGGCGTGTACCACCTGGCCGACGACTACATCATCGTCTACACCCCAGGCCACGGCCATGAACGCACCGAAACCAAGATCATCCAGAAGCTCGACTCCGACGAAGCCCGCGCGCACCTGGGCGATGAGTACGAGCGTTTCGTCGAGCAACTGGAGCTGGTGCAGGGCGCCTGCCATGAGTTCAACCAGCAGGAATTCATCGATGGGCAACTGACCCCGGTGTTCTTCGGGACCGCCCTGGGCAACTTCGGCGTCGACCATGTGCTAGACGCCGTGGTCGACTGGGCCCCGCGCCCGCTGCCGCGCGTTGCCAACGAGCGCACCGTGGAGCCGGTGGAAGAGAAGTTCGCAGGCTTCGTGTTCAAGATCCAGGCGAACATGGACCCCAAGCACCGCGACCGCATTGCCTTCATGCGTATCTGCTCCGGCAAATACGAAAAAGGCATGAAGATGCGCCACGTGCGCACCGGCAAGGACGTGCGTATCGGCGATGCCTTGACCTTCTTCTCCTCGGAACGCGAGCAACTGGAAGAAGCCTTCGCCGGTGACATCATCGGCCTGCACAACCACGGCACCATCCAGATCGGCGACACCTTCACCGAAGGCGAAGCCCTGGGCTTCACCGGCATCCCGCACTTCGCCCCGGAACTGTTCCGCCGCGTACGCCTGAAGGACCCGCTCAAATCCAAGCAGTTGCGCCAAGGTTTGCAGCAATTGGCCGAAGAAGGCGCCACCCAGGTGTTCTTCCCGGAGCGCAGCAACGACATCATCCTCGGCGCCGTCGGCGTGCTGCAGTTCGACGTCGTCGCCAGCCGCCTGAAAGAGGAATACAAGGTCGAATGCTCCTACGAGCCGATCACCGTTTACTCCGCCCGTTGGATTGAATGTGACGATAAGAAAAAGCTCGAGGAATTCTCCAACAAGGCCGTGGAAAACCTTGCGCTGGATGGTGGTGGGCACTTGACCTACCTGGCGCCTACCCGGGTGAACCTGGCGCTGATGGAAGAGCGCTGGCCGGATGTGAAATTCCGCGCGACGCGGGAGCATCACTAA	MTKQAAEVAKRRTFAIISHPDAGKTTITEKLLLMGKAIAVAGTVKSRKSDRHATSDWMEMEKQRGISITTSVMQFPYRDHMINLLDTPGHEDFSEDTYRTLTAVDSALMVLDGGKGVEPRTIALMDVCRLRDTPIVSFINKLDRDIRDPIELLDEIEAVLKIKAAPITWPIGCYRDFKGVYHLADDYIIVYTPGHGHERTETKIIQKLDSDEARAHLGDEYERFVEQLELVQGACHEFNQQEFIDGQLTPVFFGTALGNFGVDHVLDAVVDWAPRPLPRVANERTVEPVEEKFAGFVFKIQANMDPKHRDRIAFMRICSGKYEKGMKMRHVRTGKDVRIGDALTFFSSEREQLEEAFAGDIIGLHNHGTIQIGDTFTEGEALGFTGIPHFAPELFRRVRLKDPLKSKQLRQGLQQLAEEGATQVFFPERSNDIILGAVGVLQFDVVASRLKEEYKVECSYEPITVYSARWIECDDKKKLEEFSNKAVENLALDGGGHLTYLAPTRVNLALMEERWPDVKFRATREHH				NA	NA	NA	NA	NA
D1-36_00844	1842			hypothetical protein	GTGGAGTCGTTATATTTTGCTGCCACACTTAACGTCTTAAGTGCGCTTATTCTTTGGGCCAGATATTCCTATGCCAAGCCGTCGGCATATTTTTGGAGTGGTCTCTGGATAACGAGTTTCATATCGAGTCTCATCTCAGTCGCCGTCGTTACAGGAGAGATGGAGGGGGCGTTGTTTTCTTTGCTAGGCGGAGTAGCTTTAGGGTTTTTAGTTCGTTTTTATATTCCAATTATCAGTCTGTTTGGTGTCGGGCTGCTGGTGGCTAGGTTTACTGTGCCTGTGGCTATCCTGATTTTTGTAAATCAAAAAATTCAGCAAGTGGAGTTGGGGATTTTACTTTGGGGTTGTATCTATGTTTTTCAGCTTATTTGTCTGCTCATCGCGGTATTTTATATGCTTTGCAGAGTGCTTGAAGACTTGCCGAGATTTACCATCAATTTTCCGAAGCGTGATGCTGCGCTGCAAAAAATAAGTATGGCCGATGGGCGGTGGAATCCGTTGATTTCCATACATGTTCCTTGTTATGCGGAACCTCCGGCTTTGGTTATTGCCACCCTAAGTGCAGTGGCGAACCTTGAGTATAATAATTTTGAGGTGTTGGTTGTTGACAATAACACAAAAGATCCTGAGCTTTGGAAGCCGGTTGAAAAATTCTGTACAAAACTAGGGCAACGATTTTGTTTTTTTCATGTCGATCCTCTCGCTGGTGCAAAGGCGGGCGCCATAAATTTTGCGCTACGTCACTCGAACGTCGACGCAGAAATTGTTTTGATTATCGATGCGGATTATATAGTGGACCCTGCGTTCATAAGGCGATATATCGCACTTTTTGAAGATGAAAAAACGGGGTTCGTGCAGACCAGTCATGACTATCGGGAGTGGCGGGGTAATCCGTTTTTATCTGGCGTTTATCATCACTATTTAATTGGCCATAAAACAGTACATCCTGCCTTGAACGAATACGGTGCCGGTTATTTGGTGGGTACGGTGTGTATGGTTAGGCGTCATTTGATTGAAGAACTCGGCGGGTGGGCAGAATGGGCGCTTACCGAGGATCTGGAGCTGGCCATGAGAATTATGGCTAAGGGATATACAGGGCATGTATTCAGCGACACATGGGGCAAAGGGCTTATACCAGAAACTCTGGACGGGATAAAAAAACAACAGTTTCGTTGGTGGGCGGGAGCCACCCAGGAGTTCAGGGTGAATTGGCGTCGATACCTTGGGCTGACTAACGAAAAAATGACGGTGGCTCAAAGAAGCTTGAGATTGTATACGACCTTTAAAGATTGTATCGGTGCGTGCGCATTTTTGGTGGATATATCTTTTTTTCTCGTTTGCGTCTTTCTGGTGTCGAGTTCGCAGGTATTGCAAATACCCCATGGTTTCTTGGGTTTGATTGGGGCGGCAGTGGTTGTAAAATTTCTTGAAATATGGATCGGCGTCAGAGAACTGGGGAGCAACGAAGTGCGTGATTATTTCATGACATTGATGCTCAAAGGTGCCCTGAGATGGGTGGGTGTGAAGGCGTTCATTTTACCTTTATTTAAACTCCAGATTTCGTGGGTTAGAACGAATAAGTTCAAACAATCCGGAAATTTTCTGCGAGGGGTTAAGTCGTCTTCGGTCGAAATTTTGATAGGGCTCATTTATCTCCTGTGTGCTCTGTTTCTCGTGCCTTTTGCACATTTCGTAGAGTTTGACCTCGTGGCGTTGGTGTCCATCTGGTTTTTTATTCAAGGCGGATCGTTCTTCTGTACGCTAGTCATGGCAATCGTTAGTGAGAGCGCATTGGATCAGGAGCGACTGGAATTAGCCAAGGTGACTGATAGCGAGGTGTGA	MESLYFAATLNVLSALILWARYSYAKPSAYFWSGLWITSFISSLISVAVVTGEMEGALFSLLGGVALGFLVRFYIPIISLFGVGLLVARFTVPVAILIFVNQKIQQVELGILLWGCIYVFQLICLLIAVFYMLCRVLEDLPRFTINFPKRDAALQKISMADGRWNPLISIHVPCYAEPPALVIATLSAVANLEYNNFEVLVVDNNTKDPELWKPVEKFCTKLGQRFCFFHVDPLAGAKAGAINFALRHSNVDAEIVLIIDADYIVDPAFIRRYIALFEDEKTGFVQTSHDYREWRGNPFLSGVYHHYLIGHKTVHPALNEYGAGYLVGTVCMVRRHLIEELGGWAEWALTEDLELAMRIMAKGYTGHVFSDTWGKGLIPETLDGIKKQQFRWWAGATQEFRVNWRRYLGLTNEKMTVAQRSLRLYTTFKDCIGACAFLVDISFFLVCVFLVSSSQVLQIPHGFLGLIGAAVVVKFLEIWIGVRELGSNEVRDYFMTLMLKGALRWVGVKAFILPLFKLQISWVRTNKFKQSGNFLRGVKSSSVEILIGLIYLLCALFLVPFAHFVEFDLVALVSIWFFIQGGSFFCTLVMAIVSESALDQERLELAKVTDSEV				NA	NA	NA	NA	NA
D1-36_00845	360			hypothetical protein	ATGGAGAAGTGGCACAAAAACCCACCAGAATCAGACCCCACCTCGTCCTATTCAAGCCTCGCCCCGGAAAAATTCCACGAAGCCACTGAGCGGGCGCTCGATTATTATTTGAAGCCGGAACAGGCCAAAGCCAAGAAAGCCCCGTCAGCAGCGCAGCTCTTCACTGTCGTCGAGAGCATCGATACTGAAAGCCTGCTCGCCAACCTCAGCGAAAACCTGGCCTCCGCCAACGCCATGATCAGCGACTTGGCGTTCGATCTTGAGGGTTCTCGCCGGCATGTTGCGATGGGGATCCTACAAGTGACAGAGGTGAGTGAGCTACTGGCGAATCGGGCGCTGGATATCGCCGATCCACGCTAG	MEKWHKNPPESDPTSSYSSLAPEKFHEATERALDYYLKPEQAKAKKAPSAAQLFTVVESIDTESLLANLSENLASANAMISDLAFDLEGSRRHVAMGILQVTEVSELLANRALDIADPR				NA	NA	NA	NA	NA
D1-36_00846	252			hypothetical protein	ATGAATAAGCTGCTGCGCATGATGTTTTTGCTGAAAGTTTTGGTGGTGCTTTCCCTCGGCTCAACGGCTGCGTGGGCCGAGTGCGATGAGCATGAGAAACACGCCTCGAGCGGTTCGGTGGTGCAAGGCGAGATGATGCTGGCCGCGACCGATGCGGACGCAGGCGATCCGGACGATGGCGAGGATGATGATGGTTCGCCAATCGATACACCGGATAGCGATGAAGATGCAGAGGGCGATAGCCAGACGTAG	MNKLLRMMFLLKVLVVLSLGSTAAWAECDEHEKHASSGSVVQGEMMLAATDADAGDPDDGEDDDGSPIDTPDSDEDAEGDSQT				NA	NA	NA	NA	NA
D1-36_00847	981	ddpF	COG1124	putative D,D-dipeptide transport ATP-binding protein DdpF	ATGGCCGTCGTACTTACCGCCCGTGACCTGACCCGTCATTACGAAGTGTCCCGTGGCATGTTCAAGGGCCATGCGACTGTGCGCGCCCTCAACGGGGTGTCGTTCGAACTGGAGGCCGGCAAGACCCTGGCCGTGGTGGGCGAATCCGGTTGCGGCAAATCCACCCTCGCCCGGGCTCTGACGCTGATCGAAGAGCCGTCCGCGGGCTCCTTGAAAATCGCCGGTCAGGAAGTGGCCGGCGCCAACAAGGCCGAACGCAAGCAACTGCGTAAAGACGTGCAGATGGTGTTCCAGAGCCCGTATGCGTCCCTCAACCCGCGGCAGAAAATCGGTGATCAACTGGCCGAGCCGTTGCTGATCAACACCAACCTGTCGGCCACCGAGCGGCGTGAGAAAGTCCAGGCGATGATGAAGCAGGTGGGCTTGCGTCCCGAGCATTACCAGCGCTACCCGCACATGTTCTCCGGCGGCCAGCGCCAGCGCATCGCCCTGGCCCGCGCCATGATGCTGCAACCCAAGGTGCTGGTGGCGGACGAACCGACCTCGGCGCTGGACGTATCGATCCAGGCCCAGGTGCTGAACCTGTTCATGGACCTGCAACAGGAATTCAACACCGCCTACGTGTTCATTTCCCACAACCTGGCGGTGGTCCAGCACGTCGCTGACGACGTGATGGTGATGTACCTCGGCCGCCCAGTGGAAATGGGCCCCAACGAGTCGATCTACAGCCGCCCGCTGCACCCGTACACCCAGGCGCTGCTGTCGGCCACCCCGACCATCCACCCGGACCCGAACAAGCCGAAGATCAAAATCGTCGGCGAACTGCCCAATCCGTTGAACCCGCCGTCCGGCTGCGCCTTCCACAAGCGCTGCCCGTACGCGACCGAGCGCTGCAAGACTGAAGAACCGGCGTTGCGGCCGTTGGATAACCGGTTGGTGGCGTGTCACTACGCCGAGCGGTTCCTCGACGGTGCTGCATAA	MAVVLTARDLTRHYEVSRGMFKGHATVRALNGVSFELEAGKTLAVVGESGCGKSTLARALTLIEEPSAGSLKIAGQEVAGANKAERKQLRKDVQMVFQSPYASLNPRQKIGDQLAEPLLINTNLSATERREKVQAMMKQVGLRPEHYQRYPHMFSGGQRQRIALARAMMLQPKVLVADEPTSALDVSIQAQVLNLFMDLQQEFNTAYVFISHNLAVVQHVADDVMVMYLGRPVEMGPNESIYSRPLHPYTQALLSATPTIHPDPNKPKIKIVGELPNPLNPPSGCAFHKRCPYATERCKTEEPALRPLDNRLVACHYAERFLDGAA	PGPT0004520_455	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004520-dppF-K12372	NA	NA
D1-36_00848	969	dppD	COG0444	Dipeptide transport ATP-binding protein DppD	ATGTCACTGCTAGAAATCAAGAATCTCAACGTCCGCTTCGGCGACGCCACCGCCGTGCCGGTGGTCGACGGCCTGGACCTGAGCGTGGACAAAGGCGAAGTCCTGGCGATCGTCGGCGAATCGGGCTCGGGTAAATCCGTGACCATGATGGCGCTGATGGGCCTGATCGAGCACCCCGGCATCGTCACCGCCGACGCGCTGAACTTCGACGGCAAGAACATGCTCAAGCTGAGCAACCGCCAGCGTCGGCAGATCGTCGGCAAGGACCTGGCGATGGTGTTCCAGGACCCGATGACCGCGCTCAATCCCAGCTACACCGTCGGTTTCCAGATCGAAGAAGTGCTGCGCCTGCACCTGAAGATGTCCGGCAAAGCCGCCCGCAAGCGCGCCATCGAACTGCTGGAAAAAGTCGAAATTCCCGGCGCCGCGAGCCGCATGGACGCGTACCCGCACCAACTGTCCGGCGGCATGAGCCAGCGCGTGGCGATTGCCATGGCGATTGCCGGCGAGCCGAAGTTGTTGATTGCCGATGAACCGACCACCGCCCTGGACGTGACCATCCAGGCGCAGATCATGGACCTGCTGCTGGCCCTGCAAAAAGAGCAGAACATGGGCCTGGTGCTGATCACCCACGACCTCGCCGTCGTGGCTGAAACCGCCCAGCGCGTGTGCGTGATGTACGCCGGCCAGGCCGTGGAAGTGGGCAAGGTGCCTCAGTTGTTCGACATTCCCGCCCACCCATACAGCGAAGCGCTGCTGGCGGCGATTCCGGAACACAGCATGGGCGCCGAGCGCCTGGCGACCTTGCCGGGTATCGTTCCCGGTCGCTATGACCGTCCGCAAGGCTGCCTGCTGTCGCCGCGCTGCCCGTATGTGCGCGACAACTGTCGCCAGGAGCGCCCTGCCCTCGATCCGAAAACCAACAGCCTCGCCCGCTGCTTCTACCCGTTGAACCAGGAGGTGGCGTGA	MSLLEIKNLNVRFGDATAVPVVDGLDLSVDKGEVLAIVGESGSGKSVTMMALMGLIEHPGIVTADALNFDGKNMLKLSNRQRRQIVGKDLAMVFQDPMTALNPSYTVGFQIEEVLRLHLKMSGKAARKRAIELLEKVEIPGAASRMDAYPHQLSGGMSQRVAIAMAIAGEPKLLIADEPTTALDVTIQAQIMDLLLALQKEQNMGLVLITHDLAVVAETAQRVCVMYAGQAVEVGKVPQLFDIPAHPYSEALLAAIPEHSMGAERLATLPGIVPGRYDRPQGCLLSPRCPYVRDNCRQERPALDPKTNSLARCFYPLNQEVA	PGPT0004515_575	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004515-dppD-K12371	NA	NA
D1-36_00849	912	dppC	COG1173	Dipeptide transport system permease protein DppC	ATGAGTACTCCAACTACCGCGGTAGCAGTCGATCAAAGCCTGCTGTACCCGTCCCCTTACAAAGAATTCTGGCAAGCGTTTTCCCGCAACAAGGGCGCCGTCGCCGGGCTGATGTTCATGACCCTGATCGTGTTCTGCGCGATCTTCGCTCCGTGGGTCGCGCCTCATGACCCGAGCGAGCAATACCGTGACTTCCTGCTGACGCCACCGGCCTGGCTGGAAGGTGGGCAGATGCAATTCCTGCTGGGCACCGACGAACTGGGCCGCGACCTGCTGTCGCGCCTGATCCAGGGCTCGCGCCTGTCGCTGCTGATCGGCTTGTCGTCGGTGGTGATGTCGTTGATCCCGGGCATCCTGCTGGGGCTGTTCGCCGGGTTCTTCCCGCGCATCCTCGGCCCGACCATCATGCGTCTGATGGACATCATGCTCGCCCTGCCGTCCTTGCTGCTGGCCGTGGCGATCGTCGCCATCCTCGGCCCAGGCCTGATCAACACCGTGATCGCCATCGCCATCGTCTCGCTGCCATCCTACGTGCGCCTGACCCGCGCCGCCGTGATGGGCGAACTGAACCGCGACTACGTGACCGCCGCCCGCCTGGCCGGTGCCGGCCTGCCGCGCCTGATGTTCATCACCGTGCTGCCCAACTGCATGGCACCGCTGATCGTCCAGGCGACGCTGAGCTTTTCCTCGGCGATCCTCGACGCCGCCGCCCTGGGCTTCCTCGGCCTCGGCGTGCAGCCGCCAACCCCTGAATGGGGCACCATGCTGGCCTCGGCCCGCGACTACATCGAACGCGCCTGGTGGGTCGTGAGCCTGCCTGGCTTGACCATTTTGCTCAGCGTGCTGGCAATCAACCTGATGGGCGACGGGCTGCGCGATGCGCTGGACCCGAAACTCAAGAATGCCGCCTGA	MSTPTTAVAVDQSLLYPSPYKEFWQAFSRNKGAVAGLMFMTLIVFCAIFAPWVAPHDPSEQYRDFLLTPPAWLEGGQMQFLLGTDELGRDLLSRLIQGSRLSLLIGLSSVVMSLIPGILLGLFAGFFPRILGPTIMRLMDIMLALPSLLLAVAIVAILGPGLINTVIAIAIVSLPSYVRLTRAAVMGELNRDYVTAARLAGAGLPRLMFITVLPNCMAPLIVQATLSFSSAILDAAALGFLGLGVQPPTPEWGTMLASARDYIERAWWVVSLPGLTILLSVLAINLMGDGLRDALDPKLKNAA	PGPT0004510_282	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004510-dppC-K12370	NA	NA
D1-36_00850	1011	dppB_1	COG0601	Dipeptide transport system permease protein DppB	ATGTTTAGTTTTATTGCCCGCCGACTGGGATTATTGATCCCCACGTTCTTCGGCATCACCTTGCTGACCTTCGCGTTGATTCGCATGATCCCCGGCGACCCCGTGGAAGTGATGATGGGCGAACGTCGGGTCGATCCCGAAATGCATGCACAGGCAATGGAACGCCTTGGCCTCAACAAACCGCTGTATGCCCAATACCTGGACTACATCGGCAAACTGGCCCAGGGCGATCTCGGCGAATCGCTGCGTACCCGTGAAAGCGTATGGACCGAGTTCAGCTCCCTGTTCCCCGCGACCCTGGAACTGTCCATGGCCGCCCTGTTGTTCGCCGGTATCCTGGGCCTGCTGGCTGGGGTGATCGCGGCACTCAAGCGAGGATCCCTGTTCGACCATGGGGTGATGGGCGTCTCCCTCGCGGGATACTCGATGCCGATCTTCTGGTGGGGCCTGATCCTGATCATGTTCTTCTCGGTGTCCCTTGGCTGGACGCCGGTGTCGGGGCGGATCGACCTGCTCTACGACATCGAGCCGAAAACCGGCTTCATGCTGATCGACACGCTGCTGGCCGACGAGCCGGGCGCGTTCCTCGATGCGCTGCATCACCTGATCCTGCCGGCGATCGTGCTGGGCACCATTCCGCTGGCGGTGATCGCCCGCATGACCCGCTCTTCGATGCTCGAAGTGCTGCGCGAAGACTACATCCGCACCGCCAAGGCCAAGGGCCTGTCGCCGTCGCGCGTGGTGTTCGTGCATGGCCTGCGCAACGCGCTGATCCCGGTGCTGACCGTGGTCGGCCTGCAAGTGGGCACGCTGCTGGCCGGTGCGGTCCTGACCGAAACGATCTTCTCCTGGCCGGGCATCGGCAAGTGGTTGATCGAAGCCATCGGCGCCCGGGACTATCCCGTGGTGCAGAACGGCATCCTGTTAATCGCCTGCCTGGTGATTCTGGTCAACTTCGTCGTGGACATCCTCTACGGCTTTGCCAACCCACGTATCCGTCACCAGCGCTGA	MFSFIARRLGLLIPTFFGITLLTFALIRMIPGDPVEVMMGERRVDPEMHAQAMERLGLNKPLYAQYLDYIGKLAQGDLGESLRTRESVWTEFSSLFPATLELSMAALLFAGILGLLAGVIAALKRGSLFDHGVMGVSLAGYSMPIFWWGLILIMFFSVSLGWTPVSGRIDLLYDIEPKTGFMLIDTLLADEPGAFLDALHHLILPAIVLGTIPLAVIARMTRSSMLEVLREDYIRTAKAKGLSPSRVVFVHGLRNALIPVLTVVGLQVGTLLAGAVLTETIFSWPGIGKWLIEAIGARDYPVVQNGILLIACLVILVNFVVDILYGFANPRIRHQR	PGPT0004505_417	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004505-dppB-K12369	NA	NA
D1-36_00851	1596	dppA_1	COG0747	Periplasmic dipeptide transport protein	ATGAACATGAACCCCCTACGCGCCGCCATCGCCGCCGCGCTGCTGAGTGTCGCCGTTGGCGCCACGGCCAAACCCCTTGTGGTTTGCACAGAAGCCAGTCCGGAAGGCTTCGACATGGTCCAGTACACGACTGCAGTCACCGCCGATGCCGTGGCGGAAACCATTTTCAATCGCCTGGCTGATTTCAAGCCCGGCACCACCGAAGTGATTCCGGCCTTGGCCGAATCCTGGGACATCAGCGACGATGGCCTGACGTACACCTTCCACCTGCGCAAGGGCGTCAAGTTCCACACCACCGATTACTTCAAGCCGACCCGCGACATGAACGCCGACGACGTGGTCTGGAGCTTTCAGCGCCAGCTGGACCCGAATCATCCGTGGCATAAACTGTCGAGCGTGGGCTTCCCGTACTTTGAAAGCATGGGCTTCAAGGAGCTGCTGAAAAACGTCGAGAAAGTCGACGAGCACACGGTCAAGTTCACCTTGACCCGCCGCGAAGCGCCGTTCCTGGCCGACATCGCCATGGCGTTCTCTTCGATCTACCCGACTGAATACGCCGACCAGTTGCTCAAGGCCAACAAGGCCGGCGACCTCAACAGCAAGCCGATCGGCACCGGCCCATTCGTGTTCCAGCGCTACAGCAAGGATGCCCAGGTTCGCTTCAAGGCCAACCCGGACTACTTCCGTGGCAAGCCACCGGCCGATGCGCTGGTATTGGCCATCGCCACCGACAACAACGTGCGCATGCAGAAACTCAAGACCAACGAATGTCAGATCGCGCTGTACCCAAAACCCGATGACATCCCCAGCATCAAGAAAGACCCGAACCTGAAGGTCACCGAGCTGGACGCGATGACCGTTTCCTACACCGCGCTGAACACCAGCAAGAAGTACATGAGCGACGTGCGTGTACGCAAGGCCATCGACCTGGCCTTCGACAAGGAAGCCTACGTCAACGCCCTGTTCGGCAAGGGCAACGCCACCGTGGCGGTTAACCCGTACCCGCCGACACTGCTGGGCTTCAATCACGAACTGAAGAACCCGACCCGCGACCTCGACAAGGCCCGCCAGTTGCTCAAGGAAGCCGGCGTGCCGGAAGGCACCGTGTTTACCTTGTTCACCCGCAACGGCGGCGGCCCGACCAACCCCAACCCGATGCTCGGCGCGCAAATGATGCAGGCCGACCTGGCGAAAGTCGGGATCAAGGTCGACATCCGCGTGATGGAGTGGGGCGAAATGCTCAAGCGCGCGAAAAACGGCGAGCACGACATGGTGTCCGCCGGATGGGCGGGCGACAACGGCGACCCGGATAACTTCCTGACGCCTATGCTCAGTTGCGAAGCCGCCAAGAACGGCGAAAACTACGCGCGCTGGTGCAACGAGAAATTCCAGGCGCTGCTCGACCAGGCACGCGCCACAGTGAACCCCGAGGAGCGCGCCAGGCTCTATGAACAGGCCCAGGTGATCTTCAACCAGGACCAGCCATGGATCAGCATGGCCCACACCCGCATGTTCACGGCAATGCGCAAGAACGTAGAGGGCTACGTGATTAGCCCGCTCACCACCAACAACTTCGCCACCACCCAGGTGAAGTAG	MNMNPLRAAIAAALLSVAVGATAKPLVVCTEASPEGFDMVQYTTAVTADAVAETIFNRLADFKPGTTEVIPALAESWDISDDGLTYTFHLRKGVKFHTTDYFKPTRDMNADDVVWSFQRQLDPNHPWHKLSSVGFPYFESMGFKELLKNVEKVDEHTVKFTLTRREAPFLADIAMAFSSIYPTEYADQLLKANKAGDLNSKPIGTGPFVFQRYSKDAQVRFKANPDYFRGKPPADALVLAIATDNNVRMQKLKTNECQIALYPKPDDIPSIKKDPNLKVTELDAMTVSYTALNTSKKYMSDVRVRKAIDLAFDKEAYVNALFGKGNATVAVNPYPPTLLGFNHELKNPTRDLDKARQLLKEAGVPEGTVFTLFTRNGGGPTNPNPMLGAQMMQADLAKVGIKVDIRVMEWGEMLKRAKNGEHDMVSAGWAGDNGDPDNFLTPMLSCEAAKNGENYARWCNEKFQALLDQARATVNPEERARLYEQAQVIFNQDQPWISMAHTRMFTAMRKNVEGYVISPLTTNNFATTQVK	PGPT0004500_1097	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004500-dppA-K12368	NA	NA
D1-36_00852	1437	oprD_2		Porin D	ATGAAACTGAGCAGCACCGCGATACTGGCCTTGGCCATCAGCAGCATCACCGCGACGGCCTATGCAGAGTCCCAGAGCCAGGCGGTTACGCCGGTGACGGTCAAGACCAGCAGCGCTCAATCCGAAGCCAAGGGCTTTATTGAAGGGCAAAAGCTTGAGGGCAGTACCCGTAACTGGTACTCCAACGAACAACTCAAGCGTGGCGCAAAATTCTCGTATCAGAAGAACGGCGCCCTGGCTCCAACTGATCGCCGCATCAACTGGATGCAAGGCACCATCATCAAGTACAACTCGGGCTTCACCGAGGGCACTGTTGGCTTCAGTACCGAAGTGGCTGCCTACAACGCTATCGCGCTGGAGCGCGACCGCAAGAATCTGGCATCGGCCAATGGTGGCGCTCCAGAGCCAGGACGAGGCGGCCGCGGAAACAACCGTACCCTGACTGAGAGTGGCGGCGATGCTGTCGACCAGTGGAGCAAGCTGGGCCTGGCCAACGTCAAGGCCCGTGTCTCGAACACTACCCTGACTGCAGGTCGCCAGAATTTCAGCAGCCCGATGGTCGATGTGATCGGCAACCGTGCCCTGCCTTCGAGCTTCGAAGGTGTGAGCCTGCACAGCGAAGAGCTGGAGAACCTGTCTTTCGATATCGGCACCTTCGATCGCAACTCGCCTCGTACCGAACAGAGCCAGCGCAAGTTCCGCTCCGAATACGGTAACTCCTCGGCTGAAGCCGACCATGTAAATACCGCCGGTATCACTTACCAGCCGCTCGCCAGCCTGACCACCAGCCTGTGGGGCACCCAGGCCGAAGACCTGTGGAACCAGTACTACTTCGGCGCCAGCCACGTGCTTGGCGACAGCTCGGTACTGAGCCTGACCACTGGCCTGAACTACTATAAGACCGTCGATTCGGGTTCTGCCCTGCTGGGCGATATCGACAACGATACCTACTCGCTGTCGTTCGGCCTGACTCACCAGGCTCATACCGTGACCTTCTCGTACCAGGAAATCAATGGCGACGAGTACTTCGACTACCTGCACGAAACCAACGGCATCTACCTGGCCAACTCCCTGCTGTCGGACTTCAACGGCCCGAACGAGAAATCCTTCCAGATCGCCTATGGCCTGAACATGGCCGAGTACGGCGTGCCGGGCCTGAAGTTCAACGTCTACCAAGCCCGCGGCTGGGGTATCGATGGCACTCACTACACCGGTAACAAAGGCGTAGTTGGCAAGGGTTACGACGGCGTCCAGGCCATGGACGGTGAACATCACTACGAGTACGGCATCGGTGCTTCCTACGCCGTGCAGAGCGGTCCGTTGAAGGCCACCGCGATTCGTGCGACCTACACCGCTCACCGCGCCAGCGAGAACCAGGCCGACGGCAGCATCAATGAATTCCGTCTGGTCACCACCATCCCGTTCAACATTCTCTAA	MKLSSTAILALAISSITATAYAESQSQAVTPVTVKTSSAQSEAKGFIEGQKLEGSTRNWYSNEQLKRGAKFSYQKNGALAPTDRRINWMQGTIIKYNSGFTEGTVGFSTEVAAYNAIALERDRKNLASANGGAPEPGRGGRGNNRTLTESGGDAVDQWSKLGLANVKARVSNTTLTAGRQNFSSPMVDVIGNRALPSSFEGVSLHSEELENLSFDIGTFDRNSPRTEQSQRKFRSEYGNSSAEADHVNTAGITYQPLASLTTSLWGTQAEDLWNQYYFGASHVLGDSSVLSLTTGLNYYKTVDSGSALLGDIDNDTYSLSFGLTHQAHTVTFSYQEINGDEYFDYLHETNGIYLANSLLSDFNGPNEKSFQIAYGLNMAEYGVPGLKFNVYQARGWGIDGTHYTGNKGVVGKGYDGVQAMDGEHHYEYGIGASYAVQSGPLKATAIRATYTAHRASENQADGSINEFRLVTTIPFNIL				NA	NA	NA	NA	NA
D1-36_00853	1602	dppA_2	COG0747	Periplasmic dipeptide transport protein	ATGCGCCATACCTTGGTTTTATCCGCATTGCTGGGCACCGGCCTGCTGGCCGCCACATCCGCAGCCCAGGCCGCCGGCGGCAGCCTGGTGTTCTGTTCCGAAGGCAGCCCCGCCGGTTTCGACACCGCGCAATACACCACCGCCACTGATAACGACGCCGCCGAGCCGCTGTACAACCGCCTGGCCGAGTTTGAAAAAGGCGCGACCAATGTCGTCCCGGGCCTGGCAACAAGCTGGGACATTTCCGAAGACGGCTTGAAGTACACCTTCCACCTGCGCGAAGGGGTGAAGTTTCATACCACCGATTACTTCAAGCCGACCCGGGATTTCAACGCCGACGACGTGCTGTTCACCTTCAACCGCATGCTTGACCCGCAGCATCCGTTCCGCAAGGCCTACCCCACTGAGTTCCCGTACTTCAACGGCATGAGCCTGAACAAGAACATCGCCAAGGTAGAAAAGACCGGGCCGCTGACGGTAGTCATGACGCTGAACAGCGTCGACGCCGCGTTCATCCAGAACATCGCTATGAGCTTCGCCTCGATCCTGTCGGCTGAATATGCCGACCAGTTGCTCAAGGGCGGCAAGCCGAGCGATATCAACCAAAAGCCGATCGGCACCGGGCCGTTCGAGTTCAAGAGCTACCAGAAAGACTCCAACATTCGCTACGTCGCCAACGACAAGTACTGGGCACCGGAGCGGGTGAAGCTGAAAAACCTGATCTTCTCCATCAACACCGATGCGTCGGTGCGGGTGCAGAAACTCAAGGCCAACGAATGCCAGGTCACGCTGCATCCGCGTCCTGCCGACGTGCCCGCCTTGAAAAACGATCCCAAGCTGCAGTTGATCGAGAAGCCCGGCTTCAACCTCGGCTACATCGCTTATAACACTCGCCACAAACCCTTCGACCAGGTCGAAGTGCGCCGTGCGCTGGACATGGCGGTGAACAAGCAAGGGATTCTCAACGCGGTGTACCAGGGCGCGGGGCAACTGGCGCAGAACGCCATGCCACCGACCCAATGGTCCTACGACGAGACCATCAAGGACACGCCTTACAACCCGGAAAAAGCCAAAGAGCTGCTCAAGGCCGCCGGAGTCAAGGAAGGCACCGAAATCACCCTCTGGGCCATGCCCGTGCAACGCCCGTACAACCCCAACGCCAAGCTGATGGCCGAGATGCTCCAGGCCGACTGGGCGAAAATCGGCCTGAAAGTGAAGATCGTCAGCTATGAATGGGGCGAGTACATCAAGCGCACCAAGAACGGCGAGCACGACATCAGCCTGATCGGCTGGACCGGCGACAACGGTGACCCGGACAACTGGCTGGGCACGCTATACAGCTGTGACGCCATTGGTGGCAACAACTACTCCATGTGGTGTGACCAGGATTACGACAAGCTGATCAAGCAGGCCAAGATCGTCACCGACCGCGAAAAGCGCACCGTGCTCTACAAACAGGCCCAGCAGTTGCTCAAGCAGCAAGTGCCGATCACCCCTGTTGCCCACTCGACGGTCAACCAGCCGCTGAGCGCCAAAGTCGAAGGGTTCAAAGTCAGCCCCTTCGGTCGCAACGTCTTCTCGGGCGTCAGCCTGAACCCATAA	MRHTLVLSALLGTGLLAATSAAQAAGGSLVFCSEGSPAGFDTAQYTTATDNDAAEPLYNRLAEFEKGATNVVPGLATSWDISEDGLKYTFHLREGVKFHTTDYFKPTRDFNADDVLFTFNRMLDPQHPFRKAYPTEFPYFNGMSLNKNIAKVEKTGPLTVVMTLNSVDAAFIQNIAMSFASILSAEYADQLLKGGKPSDINQKPIGTGPFEFKSYQKDSNIRYVANDKYWAPERVKLKNLIFSINTDASVRVQKLKANECQVTLHPRPADVPALKNDPKLQLIEKPGFNLGYIAYNTRHKPFDQVEVRRALDMAVNKQGILNAVYQGAGQLAQNAMPPTQWSYDETIKDTPYNPEKAKELLKAAGVKEGTEITLWAMPVQRPYNPNAKLMAEMLQADWAKIGLKVKIVSYEWGEYIKRTKNGEHDISLIGWTGDNGDPDNWLGTLYSCDAIGGNNYSMWCDQDYDKLIKQAKIVTDREKRTVLYKQAQQLLKQQVPITPVAHSTVNQPLSAKVEGFKVSPFGRNVFSGVSLNP	PGPT0004500_788	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004500-dppA-K12368	NA	NA
D1-36_00854	1626	dppA_3	COG0747	Periplasmic dipeptide transport protein	ATGCTTAAACACGCGGTCATTCCGTTTTTAGTCGGTGCAGGCTTGTTAGCCAGCGCTCCTTTCGCTTCCGCCGCGACTAACCTGGTGTTCTGCTCCGAAGGCAGCCCGGCCGGTTTCGACCCCGGTCAGTACACCACCGGAACCGACTTCGATGCCTCTGCAGAAACCATGTTCAACCGCCTGACCCAGTTTGAGCGCGGCGGCACCGCCGTGATTCCTGGCCTGGCCACCAAGTGGGACATCTCCGAAGACGGCCTCACCTATACGTTCCACCTGCGTGAAGGCGTCAAGTTCCACACCACCCCGTATTTCAAGCCGACCCGTGAATTCAATGCCGACGACGTGCTGTTCACGTTCAATCGCATGATCAACAAGGACGACCCGTTCCGTAAGGCGTACCCAACCGAATTCCCGTACTTCACCGACATGGGGATGGACACCAACATCACCAAGATCGATAAAGTCGACGACCACACCGTCAAGTTCACCCTCAAAGATGTCGACGCCGCGTTCATCCAGAACATGGCCATGAGCTTCGCCTCGATCCAGTCCGCCGAATATAGCGCCCAACTGCTCAAGGAAGGCAAGGCCCCGGACATCAACCAGAAGCCGGTCGGCACCGGCCCGTTCGTGTTCAAGAGCTACCAGAAAGATTCCAACATCCGCTACACAGGCAACAAGGAATACTGGAAGCCTGAAGACGTGAAGATCGACAACCTGATCTTCGCCATCACCACCGACCCGTCGGTGCGTATCCAGAAATTGAAGAAGAACGAGTGCCAGATCACTCTCTTCCCACGCCCGGCCGACCTCCAGGCCCTTAAGGACGACAAAGCGCTGAAGATGCCTGACCAGGCGGGTTTCAACCTGGGTTATGTAGCTTACAACGTGATGGACAAAGTCAAAGGCGACGACAAGCCCAACCCACTGGCTGACCTTCGAGTTCGTCAAGCCTTGGACATGGCTGTGAACAAGCAACAGATCATCGACTCTGTGTACCAAGGAGCGGGCCAGCTGGCGGTCAACGCCATGCCACCGACCCAGTGGTCCTACGACACCACCATCAAAGATGCCAAATACGACCCAGAGAAAGCCAAGGCGCTGCTCAAGGAAGCCGGCGTCAAAGAAGGCACAGAGATCGTTCTGTGGGCCATGCCGGTTCAGCGTCCGTACAACCCGAACGCCAAACTGATGGCGGAAATGCTGCAGAATGACTGGTCCAAGATCGGCCTGAAGGTCAAGATCACCAGCTACGAATGGGGCGAGTACATCAAGCGTTCCAAAGGTGGCGAGAACCAGGCCATGATCATTGGCTGGAGCGGTGACAACGGTGACCCGGACAACTGGCTCAACGTGCTGTTCGGCTGCGACTCGCTGCAAGGCAACAACTTTTCCAAATGGTGTGACAAGAAGTTCGACGGCCTCGTGAAAGAAGCCAAGCGCACCACCGACCAGGCCAAGCGCACCGACCTCTACAAACAGGCACAACACGTCCTCAAGGATGCTGTGCCGATGACACCTATCGCTCACTCGACGGTGTATCAACCCATGCGCGCCAACGTGCAGGACTTCAAGATCAGCCCATTTGGCTTGAACTCCTTCTACGGCGTCAGCGTCAGCAAATAA	MLKHAVIPFLVGAGLLASAPFASAATNLVFCSEGSPAGFDPGQYTTGTDFDASAETMFNRLTQFERGGTAVIPGLATKWDISEDGLTYTFHLREGVKFHTTPYFKPTREFNADDVLFTFNRMINKDDPFRKAYPTEFPYFTDMGMDTNITKIDKVDDHTVKFTLKDVDAAFIQNMAMSFASIQSAEYSAQLLKEGKAPDINQKPVGTGPFVFKSYQKDSNIRYTGNKEYWKPEDVKIDNLIFAITTDPSVRIQKLKKNECQITLFPRPADLQALKDDKALKMPDQAGFNLGYVAYNVMDKVKGDDKPNPLADLRVRQALDMAVNKQQIIDSVYQGAGQLAVNAMPPTQWSYDTTIKDAKYDPEKAKALLKEAGVKEGTEIVLWAMPVQRPYNPNAKLMAEMLQNDWSKIGLKVKITSYEWGEYIKRSKGGENQAMIIGWSGDNGDPDNWLNVLFGCDSLQGNNFSKWCDKKFDGLVKEAKRTTDQAKRTDLYKQAQHVLKDAVPMTPIAHSTVYQPMRANVQDFKISPFGLNSFYGVSVSK	PGPT0004500_291	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004500-dppA-K12368	NA	NA
D1-36_00855	1602	dppA_4	COG0747	Periplasmic dipeptide transport protein	ATGGACAGAACCACCTTCAAGCCCCTCCTGCTCGCGCTGGCCCTGATCAGCAGCGCCCCAATGGCCCAAGCCGCCACCACCCTGGTCTACTGCTCCGAAGCCAGCCCCGCCGGGTTCGACCCCAGCCAATACACCAGCGGCACCGACTTCGATGCCTCGGCCGAAACCGTGTTCAACCGCCTCACCCAGTTCAAGCGCGGCGGCACCGAGGTCGAGCCCGGGTTGGCGTCAAGCTGGGACGTATCCGCCGATGGCCTGGCTTACACCTTCCACCTGCGCGAGGGTGTGAAATTTCATACCACCGACTTCTTCACCCCGAGCCGCGACTTCAACGCCGACGACGTGCTGTTCACCTTCCAGCGTCTGCTCGACTCACAACACCCGTTCCGCCTGGCCTACCCCACCGAATCGCCGTATTTCACCGACATGGGCCTGAACACCACGATCAAGAGCGTCGAGAAGGTCGACGAGCACACCGTCCGCTTCACCCTCAATAACGTCGACGCCGCGTTCGTGCAAAATTTGGCGATGAGTTTTGCCTCGGTGCAATCGGCCGAATACGCCGCGCAATTGTTGAAAGAAGGCAAGGCCGGCGACCTCAACCAGAAACCCGTCGGCACCGGGCCGTTCGTGTTCAAGCGCTACCAGAAGGATTCGCAGATCCGCTACGTCGCCAACACCGCGTACTGGAAACCCGAGGACGTGAAGCTCGACAACCTGATTTTTTCCATCACCCCGGACGCCGCCGTACGCCTGCAAAAGCTCAAGCGTGGCGAATGCCAGGTCAGCGGTTATCCGCGCCCGGCCGATATCGAAGTGATGGAGCAAGACCCGAACCTGCAGGTGCTCAAGCAGCCCGGCTTCAACCTGGGCTTCCTGGCCTACAACGTGACGCACCCGCCGCTGGACCAGCTCAAGGTCCGTCAGGCGCTGGACATGGCCATCGACAAGCCAGCGATCATCAAAGCGGTGTACCAGAGCGCTGGGCAACTGGCGCAAAACGCCTTGCCACCGGCCCAATGGTCGTTCGACCCTGCGATCCAGGACGCGCCCCATGACGTGACCAAGGCCAAGGCGCTCCTCAAGGAAGCCGGGGTTGCGCCCGGTACAACCATTGATTTATGGGCGATGACGGTGCAGCGCGCCTCCAACCCCAACGCGCGGATGTCGGCGCAAATGATCCAGCAGGATTGGGCCAAGATTGGTATCAAGGCGAACATCGTCAGCTACGAATGGGGCGAATACATCAAGCGCGCCAAGAACGGCGAGCATGACGCAATGATCTATGGCTGGACCGGCGACAACGGTGATCCGGACAACTGGCTCGGCGTGCTTTATAGCTGCGCGGCGGTCAAGGGCAGCAACTACGCCAAGTGGTGCGACCCGGCCTATGACCGGATGATCCAGCAGGCCAAGGTCGCGACCGACCGGCAAAAACGGATCGAGCTGTACCAGCAGGCGCAGAAAATCCTCAAGCAGCAGGTGCCCATCACACCCATTGCCAACTCAACGGTGTTCCAGCCGATACGCAAGGAAGTGGTGGATTTCAAACTCAGCCCGTTTGGCCTGACACCTTTCTACGGCGTGGGTTTGAACAAGTAA	MDRTTFKPLLLALALISSAPMAQAATTLVYCSEASPAGFDPSQYTSGTDFDASAETVFNRLTQFKRGGTEVEPGLASSWDVSADGLAYTFHLREGVKFHTTDFFTPSRDFNADDVLFTFQRLLDSQHPFRLAYPTESPYFTDMGLNTTIKSVEKVDEHTVRFTLNNVDAAFVQNLAMSFASVQSAEYAAQLLKEGKAGDLNQKPVGTGPFVFKRYQKDSQIRYVANTAYWKPEDVKLDNLIFSITPDAAVRLQKLKRGECQVSGYPRPADIEVMEQDPNLQVLKQPGFNLGFLAYNVTHPPLDQLKVRQALDMAIDKPAIIKAVYQSAGQLAQNALPPAQWSFDPAIQDAPHDVTKAKALLKEAGVAPGTTIDLWAMTVQRASNPNARMSAQMIQQDWAKIGIKANIVSYEWGEYIKRAKNGEHDAMIYGWTGDNGDPDNWLGVLYSCAAVKGSNYAKWCDPAYDRMIQQAKVATDRQKRIELYQQAQKILKQQVPITPIANSTVFQPIRKEVVDFKLSPFGLTPFYGVGLNK	PGPT0004500_749	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004500-dppA-K12368	NA	NA
D1-36_00856	717			hypothetical protein	ATGCACACGTTCAGTCGCCCCGCCGCCCTGCTCGCCCTCAGCCTCGGCACCGTCGCCAGCCTGCCGGCCGTGGCCGCCGATGAGCTTCATTACAACCAGATATCCCTGCGCGCCGAAGCCAGCCAGGAAGTGGCCCGCGACCTGATGATCGTCACCCTCTACACCGAGGAACAGAACACCGACCCGGCCAAACTCGCGGCCACCGTCAGCACCACACTGAACAAAGCCATTGGCCAGGCCAAGCAGGTCAAGGACATCAACTTGCGCCAAGGCAGCCGCAACAGCTACCCGGTCTACGATAACAAGGGTCAGAAGATCACCGGCTGGCGCGAACGCGCCGAGCTGCGCCTGGAAAGCGCCGACTTCGCCGCCCTGTCCAAACTCACCGGCGAGTTGCTCACCGACATGAAAATGGCCGGCATGGACTTCGCCATCGCCACCGCCACCCGCCAGACCAGCGAAGACGCCCTGCTCAAGGACGCCGTCAACGCCTTCAAGGCCCGCGCCCAACTCGCCACCGAAGCCTTGGGCGGCAAGGGTTACAAGATCGTCAACCTGAACTTCAACACCAACGGTTATCCACAACCGTACATGCGCCCGCAGATGATGATGAAAGCGGCGTCCATGGATGCCGAGTCGGTCACGCCGGAAGTGGAAGCAGGCACCAGCAAAGTGACGATGACGGCGGATGGGGTTGTTGAGGTGTTGATGCAGTGA	MHTFSRPAALLALSLGTVASLPAVAADELHYNQISLRAEASQEVARDLMIVTLYTEEQNTDPAKLAATVSTTLNKAIGQAKQVKDINLRQGSRNSYPVYDNKGQKITGWRERAELRLESADFAALSKLTGELLTDMKMAGMDFAIATATRQTSEDALLKDAVNAFKARAQLATEALGGKGYKIVNLNFNTNGYPQPYMRPQMMMKAASMDAESVTPEVEAGTSKVTMTADGVVEVLMQ				NA	NA	NA	NA	NA
D1-36_00857	1263	regB		Sensor histidine kinase RegB	ATGCTCGCCCCTTTGCAAATGACTTCCGCTTCGCGCCAGAACCTATGGCGCCTGACGTTTATCCGCATTCTGGTCCTCGCAGCCCAGGCCGGCTCGGTGGGGCTTGCCTATTGGTTCGACCTGCTGCCGCTGCCTTGGCTGCAACTGGCAATCACGCTGGTCTTTTCCAGCGTACTTTGCGCGTTGACTGCGATTCGCCTGCGCACCTCATGGCCAGTGACCGAACTTGAATACGCTGTGCAACTGGCCTGCGACCTGTTTATCCACAGCGCGCTGCTGTATTTCTCCGGCGGCTCCACCAATCCTTTCGTCTCTTATTACCTGGTGCCGCTGACCATCGCCGCCGTGACACTGCCGTGGCGTTTTTCGCTGATCCTGTCCGGCATCGCCCTGGCGCTGTACACCTTGTTGCTGGCGCGCTTCTATCCGCTGGAAACCTTCCCCATCGCCCGGGAAAACCTGCAGATCTACGGCATGTGGCTGAGCTTCGCCCTGGCGGCTGCGGTCATCACCTTTTTTGCCGCGCGCATGGCCGAAGAATTGCGTCGCCAGGAAGAGTTGCGCGCGATCCGTCGTGAAGAAGGCCTGCGGGACGAGCAACTGCTGGCCGTGGCGACCCAGGCCGCCGGCGCTGCCCATGAACTGGGCACGCCGCTGGCGACCATGAGCGTGCTGCTCAAGGAAATGCGCCAGGACCATAAAGACCCGGCGTTGCAAGAAGACCTCAGTGTGCTGCAAGACCAGGTCAAGCTCTGCAAGGAAACCCTGCAATACCTGGTGCGCGCCGCCGAGGCCAACCGCCGGCTGGACATCGACATGCAGGCGGTCACGTTCTGGCTCGACGATGCCCTGAACCGTTGGCACCTGATGCGCCCCGAAGCCAGTTATCGCTTCCAGTGCCTGGGCAAGGGCACGGTGCCGCGCATGGCGCCGCCGCCGGACTTGACCCAGGCCTTGCTGAACCTGCTGAACAATGCCGCCGACGCCTGCCCGGAAAACTTGGAAGTGGTGCTGGACTGGGACGCCTATGAACTGACGATCTGTATTCGCGATCACGGCGCCGGTGTGCCGCTGGCGATTGCCGAGCAGATCGGCAAACCGTTTTTCACGACCAAGGGCAAGGGTTTCGGCCTGGGCCTGTTTTTGAGCAAGGCCAGCGTGACACGCGCCGGCGGCTCGGTGAAACTCTACCCCCATGAGGAAGGCGGTACGCTCACCGAGCTGCGCCTGCCCCATGCCGACCGAGGAGACGAATATGAGTGA	MLAPLQMTSASRQNLWRLTFIRILVLAAQAGSVGLAYWFDLLPLPWLQLAITLVFSSVLCALTAIRLRTSWPVTELEYAVQLACDLFIHSALLYFSGGSTNPFVSYYLVPLTIAAVTLPWRFSLILSGIALALYTLLLARFYPLETFPIARENLQIYGMWLSFALAAAVITFFAARMAEELRRQEELRAIRREEGLRDEQLLAVATQAAGAAHELGTPLATMSVLLKEMRQDHKDPALQEDLSVLQDQVKLCKETLQYLVRAAEANRRLDIDMQAVTFWLDDALNRWHLMRPEASYRFQCLGKGTVPRMAPPPDLTQALLNLLNNAADACPENLEVVLDWDAYELTICIRDHGAGVPLAIAEQIGKPFFTTKGKGFGLGLFLSKASVTRAGGSVKLYPHEEGGTLTELRLPHADRGDEYE	PGPT0000545_961	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000545-regB|regS|actS-K15011	NA	NA
D1-36_00858	561	regA	COG4567	Photosynthetic apparatus regulatory protein RegA	ATGAGTGACGAGATCCAAGTCGACGGCGAAGAACTGCCGCACCTGCTGCTGGTGGATGACGACGCCACCTTTACCCGCGTCATGGCCCGGGCCATGTCCCGTCGCGGTTTTCGGGTCAGCACCGCCGGTTCCGCCGAAGAGGGCCTGACCATCGCCCAGGCCGACCTGCCGGACTACGCCGCCCTCGACCTGAAAATGGACGGCGACTCCGGCCTGGTGCTGCTGCCCAAGCTGCTGGAGCTGGACCCGGAGATGCGCGTGGTGATCCTCACCGGTTATTCGAGCATTGCCACCGCGGTCGAGGCCATCAAGCGCGGCGCGTGCAACTACCTGTGCAAACCGGCGGATGCCGACGATGTGCTGGCGGCGCTGCTGTCCGAGCACGCCGACCTCGATACCCTGGTGCCGGAAAACCCCATGTCGGTGGATCGCCTGCAATGGGAACACATCCAGCGGGTGCTGACTGAGCACGAAGGCAATATTTCCGCCACGGCTCGTGCCTTGGGCATGCACCGGCGGACCTTGCAGCGCAAATTGCAGAAGCGTCCGGTGCGTCGCTGA	MSDEIQVDGEELPHLLLVDDDATFTRVMARAMSRRGFRVSTAGSAEEGLTIAQADLPDYAALDLKMDGDSGLVLLPKLLELDPEMRVVILTGYSSIATAVEAIKRGACNYLCKPADADDVLAALLSEHADLDTLVPENPMSVDRLQWEHIQRVLTEHEGNISATARALGMHRRTLQRKLQKRPVRR	PGPT0000540_342	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000540-regA|regR|actR-K15012	NA	NA
D1-36_00859	1728	bacA	COG4178	Vitamin B12 transport ATP-binding protein BacA	ATGAATCAGAACGCTGAATATTCCGCGGTCAATGACGCGGTGCGCGGCCATTTTTTGCGCCGTGTCTGGCAGATGACCACGCCATACTGGCGCAGTGAGGAGAAGGGCAAGGCCTGGACGCTATTGATCGCCGTGATCGCGCTGTCGTTGTTCAGCGTGGCGATTTCGGTGTGGGTCAACAGTTGGTACAGGGATTTCTACAACGCCCTGCAAGAAAAGGACACCGTGGCATTCTGGCGGTTGATCCTGTACTTCTGCGGCATCGCGGCGGTAGCGATCCTGGGGGCGGTGTACCGCTTGTACCTCACGCAAATGCTCACCATCCGCTGGCGGGCCTGGCTCACCGAGCAGCATTTCGCCCGCTGGCTCAACAACAAGAACTACTACCGGCTGGAGCAGGGTGGCTACACGGACAACCCCGACCAGCGGATTTCCGAAGACCTCAACAGTTTTACCAGCAACACGCTGGAGCTGGGCCTGGGGCTGCTTCGCACGGTGGTCAGCCTGGTGTCGTTCTCGATTATCCTGTGGGGCGTGTCTGGCAGCATCGAGGTGTTCGGCTACACCATCCCTGGCTATATGTTCTGGTGCGCGTTGGTCTATGCGGCGGTGGGCAGTTGGCTGACGCACCTGATCGGCCGTCGCCTGATCGGTCTGAACAACAACCAGCAGCGCTTCGAAGCCGACCTGCGTTTCTCCATGGTGCGGGTGCGCGAGAACGCCGAGAGCATCGCGCTCTATGGCGGCGAGCCTAATGAGAATCGTCGCTTGAGTGGTCGTTTCGGCCTGGTCTGGCACAACTTCTGGGACATCATGCGGGTGTCCAAGCGCCTGACATTCTTTACGTCCGGCTACGGCCAGATCGCAATCATTTTCCCATTCATCGTCGCCGCGCCGCGTTATTTCGCGGGCAAGATCCAACTGGGCGAGCTCATGCAGATCAACTCGGCGTTCGGTAATGTGCAGGAGAATTTCAGTTGGTTCATTACCGCCTACGCCAACCTCGCCGCGTGGCGCGCCACCTGTGACCGTCTGCTGAGTTTCCGCCAGGCGATGAGCGACAACGAAGAGCGCGTGCCGGCCATTGATGTACAGAGCCAGGGCAACGAGCTGAAGGTCCACGATCTCGGGCTGGACCTGAACGATGGTCGGCATCTGCTGACCCATGGCGAACTGAGCGTGGAGCCGGGCGAGCGGGTGATGCTCAGTGGTCGCTCCGGCAGCGGCAAGTCAACGTTGCTGCGGGCGATGGGGCATTTGTGGCCTGCGGGGCATGGCAGCATTCTCCTGCCCTCGGCGCGTTATCTGTTCCTGCCGCAAAAGCCCTACTTGCCGATTGGCAGCCTGCGGGAAGTGCTGAGTTACCCACAGGCGGGCGATGTCTACCCCAACGAACGTTATGCACAGGTGCTCGAAACCTGTCGCCTGCCGCACCTGGTGGCGCGGTTGGATGAAAGCAACCACTGGCAGCGCATGCTCTCGCCCGGCGAGCAACAACGCCTGGCCTTTGCCCGTGCGTTGCTTTACGCGCCACTGTGGTTGTACATGGACGAAGCGACTTCGGCGATGGATGAAGAAGACGAGGCGACGTTGTACCAGGCGCTGATCGACCAGTTGCCAGGCCTGAGCATTGTCAGTGTCGGGCACCGAAGCAGCTTGAAACGTTTCCATCCGCGACATGTGCGTATCGAAAATGGCCAACTGGTGGAGCAGGCCGTGACCGCTTGA	MNQNAEYSAVNDAVRGHFLRRVWQMTTPYWRSEEKGKAWTLLIAVIALSLFSVAISVWVNSWYRDFYNALQEKDTVAFWRLILYFCGIAAVAILGAVYRLYLTQMLTIRWRAWLTEQHFARWLNNKNYYRLEQGGYTDNPDQRISEDLNSFTSNTLELGLGLLRTVVSLVSFSIILWGVSGSIEVFGYTIPGYMFWCALVYAAVGSWLTHLIGRRLIGLNNNQQRFEADLRFSMVRVRENAESIALYGGEPNENRRLSGRFGLVWHNFWDIMRVSKRLTFFTSGYGQIAIIFPFIVAAPRYFAGKIQLGELMQINSAFGNVQENFSWFITAYANLAAWRATCDRLLSFRQAMSDNEERVPAIDVQSQGNELKVHDLGLDLNDGRHLLTHGELSVEPGERVMLSGRSGSGKSTLLRAMGHLWPAGHGSILLPSARYLFLPQKPYLPIGSLREVLSYPQAGDVYPNERYAQVLETCRLPHLVARLDESNHWQRMLSPGEQQRLAFARALLYAPLWLYMDEATSAMDEEDEATLYQALIDQLPGLSIVSVGHRSSLKRFHPRHVRIENGQLVEQAVTA	PGPT0009345_1129	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES|BLEOMYCIN,PGPT0009345-bacA|yddA-K02471	NA	NA
D1-36_00860	747	lutR_1	COG2186	HTH-type transcriptional regulator LutR	ATGGAAAACCCGATCAACGTCCCACGCCTTCCCCGCAAGCGCCGCAGCCTGGCGCAGGAGCTGGTGACGGTGCTGACCGAGCAGATTCGCGACGGCCTGCTCAAGCGTGGCGATAAGTTGCCCACCGAGTCGGCGATCATGGAGGCCCATGGCGTCAGCCGCACGGTGGTGCGCGAGGCAATTTCCCGTTTGCAGGCGGCCGGCCAGGTTGAAACCCGCCATGGCATCGGCACCTTCGTGCTGGACACGCCCAGCCCGAGCGGCTTTCGCATCGACCCGGCGACGGTGGTCACGCTGCGCGATGTGCTGGCGATCCTGGAGTTGCGCATCAGCCTGGAAGTGGAATCCGCCGGGCTCGCGGCGCAGCGCCGCAGCGATGAGCAACTGTCGGCGATGCGGGCGGCGCTCGATGCCTTGAACGAAAGCGCGGCCCACGCCAGCGACGCGGTGGCCTCGGACTTCGCCTTCCATCTGGAAATCGCCCTGTCCACCGGCAACCGTTACTTCACCGACATCATGACCCACTTGGGCACCAGCATCATCCCGCGCACCCGGCTGAACTCGGCGCGCCTGGCCCATGACGACCAACAGCACTACATGGATCGACTGAGTCGCGAGCACGAGGAAATCTACGAGGCCATCGCTCGCCAGGATTCCGATGCGGCCCGTGCGGCCATGCGTTTGCACCTGACCAACAGCCGCGAGCGGCTGCGCCAGGCCCATGAAGAGGCGCAGGCGCAGGGCTGA	MENPINVPRLPRKRRSLAQELVTVLTEQIRDGLLKRGDKLPTESAIMEAHGVSRTVVREAISRLQAAGQVETRHGIGTFVLDTPSPSGFRIDPATVVTLRDVLAILELRISLEVESAGLAAQRRSDEQLSAMRAALDALNESAAHASDAVASDFAFHLEIALSTGNRYFTDIMTHLGTSIIPRTRLNSARLAHDDQQHYMDRLSREHEEIYEAIARQDSDAARAAMRLHLTNSRERLRQAHEEAQAQG				NA	NA	NA	NA	NA
D1-36_00861	384			hypothetical protein	ATGGAAATATATGCGAAGCCAACCGTTCAGAACTATCCAGAAAACCCATCCACAGGGACGGTCAACATCAGCCTGTCAGCGATGCAAGAAAGTGGACTCACCGTTGTGATTGCGGGAAAGCAAAAAGTACCTCTATACGACGATGCCTTTTTGATACTCGCTCCCGATGGGGAAAAACCTGGGTGGACGGGAGAACGTGGATCATTGGTGGACTTCACGGACCCTGAAAATCCCCAGCAAAAAACCGAGAACACTGTGATGACTCTGCCCAAGGAGGCACTGAAAAAGTACTTAGGCGAAGAGGTCCAACTGCGCTATCAGACATATGGTGAGTCGGAGGAATACAGGTACTCCAAGCCGATAAGGCTGAAGATCGAGCCGTAA	MEIYAKPTVQNYPENPSTGTVNISLSAMQESGLTVVIAGKQKVPLYDDAFLILAPDGEKPGWTGERGSLVDFTDPENPQQKTENTVMTLPKEALKKYLGEEVQLRYQTYGESEEYRYSKPIRLKIEP				NA	NA	NA	NA	NA
D1-36_00862	912		COG0329	putative 5-dehydro-4-deoxyglucarate dehydratase	ATGAATCCACAAGAACTGAAGTCCATCCTCTCGTCGGGCCTGCTGTCGTTCCCGGTTACCGATTTCACTGCCAATGGCGATTTCAATCGCGACAGCTACATCAAGCGCCTCGAGTGGCTGGCCCCGTACGGCGCCTCTGCATTGTTCGCGGCGGGCGGCACCGGTGAATTCTTCTCCCTGGCCGCCAGTGAGTATTCGCAAGTCATCAAGACTGCCGTCGATACCTGCGCCACCAGCGTGCCAATCCTCGCCGGCGTCGGCGGTGCCACCCGCCAGGCTATCGAATACGCTCAGGAAGCCGAGCGCCTGGGCGCCAAGGGTCTGTTGCTGCTGCCGCACTACCTGACCGAAGCCAGCCAGGACGGCGTTGCCGCCCACGTTGAAGCCGTGTGCAAATCGGTGAAGATCGGCGTGGTGGTGTACAACCGCAACGTCTGCCGCCTGAACGCGACCCAGCTGGAACAACTGGCCGAGCGCTGCCCGAACCTGATCGGCTACAAGGACGGCCTGGGCGACATCGAACTGATGGTGTCGATCCGTCGTCGCCTCGGCGACCGTTTCAGCTACCTGGGCGGCCTGCCGACCGCTGAAGTCTACGCCGCGGCCTACAAGGCCCTGGGCGTGCCGGTCTACTCCTCGGCGGTGTTCAACTTCATCCCGAAAACCGCGATGGACTTCTACCACGCCATTGCCCGCGAAGATCACGAGACTGTCGGCAAGATCATCGACGACTTCTTCCTGCCATACCTGGACATCCGCAACCGCAAGGCGGGTTACGCGGTGAGCATCGTCAAGGCCGGCGCGAAGATCGTTGGTTATGACGCGGGCCCAGTGCGCACGCCGCTGACCGACCTGCTGCCAGAAGAGTACGAAGCCCTGGCCGCGCTGATCGACAAGCAAGGCAAGCAGTAA	MNPQELKSILSSGLLSFPVTDFTANGDFNRDSYIKRLEWLAPYGASALFAAGGTGEFFSLAASEYSQVIKTAVDTCATSVPILAGVGGATRQAIEYAQEAERLGAKGLLLLPHYLTEASQDGVAAHVEAVCKSVKIGVVVYNRNVCRLNATQLEQLAERCPNLIGYKDGLGDIELMVSIRRRLGDRFSYLGGLPTAEVYAAAYKALGVPVYSSAVFNFIPKTAMDFYHAIAREDHETVGKIIDDFFLPYLDIRNRKAGYAVSIVKAGAKIVGYDAGPVRTPLTDLLPEEYEALAALIDKQGKQ	PGPT0018160_516	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GLACTURONATE|GLUCURONATE_DEGRADATION,PGPT0018160-kdgD|ycbC-K01707	NA	NA
D1-36_00863	1446	aldHT		Aldehyde dehydrogenase, thermostable	GTGGCAGATGCAAAGCGTTTCGATAACTACATCAACGGTGAGTGGGTGGCCGGTGCTGACTATTGCACCAACATCAACCCGTCTGACTTGTCCGACGTCATCGGTGAATACGCCAAGGCTGACGCAGCGCAAGTCAACGCCGCCATCGAAGCCGCCCGTGCCGCGTTCCCGGCCTGGTCGACCTCGGGCATCCAGGCCCGTCACGATGCGCTGGACAAAGTCGGCAGCGAAATTCTCGCCCGTCGCGAAGAGCTTGGCCAACTGCTGGCCCGGGAAGAGGGTAAGACCCTGCCCGAAGCCATCGGCGAAGTAACCCGCGCCGGCAACATTTTCAAATTCTTCGCCGGTGAATGCCTGCGCCTGTCGGGCGACTACGTGCCGTCGGTGCGCCCGGGCGTCAACGTCGAAGTGACCCGCGAAGCCCTCGGCGTGGTTGGTCTGATCACTCCGTGGAACTTCCCGATCGCCATCCCTGCGTGGAAAATTGCCCCGGCCCTGGCCTACGGCAACTGCGTGGTGATCAAGCCCGCCGAGCTGGTGCCGGGCTGCGCCTGGGCCCTGGCCGAGATCATTTCCCGTGCCGGTTTCCCGGCCGGTGCGTTCAACCTGGTGATGGGCAGCGGCCGTGTGGTCGGTGACATTCTGGTCAACAGCCCGAAAGTCGATGGCATCAGCTTCACCGGTTCCGTGGGCGTCGGCCGGCAGATCGCGGTAAACTGCGTGGCGCGCCAAGCCAAGGTCCAGCTGGAAATGGGCGGCAAGAATCCGCAGATCATCCTCGACGACGCCGACCTCAAGCAGGCGGTCGAATTGGCGGTGCAGAGCGCGTTCTACTCCACCGGCCAGCGTTGCACGGCATCGAGCCGACTGATCGTCACTGCCGGTATCCACGACAAGTTCGTTGCCGCCATGGCCGAGCGCATGCAATCGATCAAGGTCGGTCACGCGCTGAAGGCTGGCACCGACATCGGCCCGGTCGTTTCCGAAGCCCAGCTCAACCAGGACTTGAAGTACATCGACATCGGCCAGAACGAAGGTGCGCGGCTGGTCAGCGGTGGTGGTGTAGTGACTTGCGACACCGAAGGTTACTTCCTGGCGCCGACCCTGTTCGCCGACAGCGAGGCTTCGATGCGCATCAGCCGCGAAGAGATCTTCGGCCCGGTGGCCAACGTCGTGCGCGTGGCTGACTACGAGGCGGCGCTGGCGATGGCCAACGACACCGAGTTCGGCTTGTCGGCCGGTATCGCCACCACGTCGTTGAAGTATGCCAACCACTTCAAGCGCCACTCCCAAGCAGGCATGGTGATGGTCAACCTGCCGACCGCCGGCGTGGATTACCATGTTCCGTTCGGTGGGCGCAAAGGTTCGTCCTACGGTTCGCGCGAGCAAGGTCGCTACGCGCAAGAGTTCTACACCGTGGTGAAGACCTCCTACATCGGCTCGTAA	MADAKRFDNYINGEWVAGADYCTNINPSDLSDVIGEYAKADAAQVNAAIEAARAAFPAWSTSGIQARHDALDKVGSEILARREELGQLLAREEGKTLPEAIGEVTRAGNIFKFFAGECLRLSGDYVPSVRPGVNVEVTREALGVVGLITPWNFPIAIPAWKIAPALAYGNCVVIKPAELVPGCAWALAEIISRAGFPAGAFNLVMGSGRVVGDILVNSPKVDGISFTGSVGVGRQIAVNCVARQAKVQLEMGGKNPQIILDDADLKQAVELAVQSAFYSTGQRCTASSRLIVTAGIHDKFVAAMAERMQSIKVGHALKAGTDIGPVVSEAQLNQDLKYIDIGQNEGARLVSGGGVVTCDTEGYFLAPTLFADSEASMRISREEIFGPVANVVRVADYEAALAMANDTEFGLSAGIATTSLKYANHFKRHSQAGMVMVNLPTAGVDYHVPFGGRKGSSYGSREQGRYAQEFYTVVKTSYIGS	PGPT0006875_7061	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_DEHYDROGENASE|DEHYDRATASE_ACTIVITY,PGPT0006875-aldH|dhaS-K00128	NA	NA
D1-36_00864	1365	gudP		putative glucarate transporter	ATGCAAGAGACCAAGCCGACGCACGTCCGCTATTTGATCCTGCTCATGCTGTTTTTGGTGACGACGATCAACTATGCCGACCGCGCCACCATCGCCATCGCTGGTTCCAGCCTGCAAAAAGACCTCGGCATCGACGCCGTCACCCTCGGTTACATCTTCTCCGCTTTCGGCTGGGCCTACGTGGCCGGGCAGATTCCTGGCGGCTGGCTGCTCGACCGTTTCGGGTCGAAGAAAATCTATGCACTGAGCATTTTCACTTGGTCGCTGTTCACCGTGCTGCAGGGCTACGTCGGTGAGTTCGGCATGTCCACGGCGGTGGTTGCGCTGTTCATGCTGCGCTTTCTGGTCGGGCTGGCCGAAGCGCCTTCTTTCCCCGGCAACGCCCGTATCGTCGCGGCCTGGTTTCCCACCGCCGAACGTGGCACCGCCTCGGCGATCTTCAACTCGGCGCAGTATTTCGCCACCGTATTGTTCGCGCCGCTGATGGGCTGGATCGTCTACCGCTTCGGCTGGCAGCACGTGTTCATCGTCATGGGCGTGATCGGCATCGTGTTCTCGCTCGTCTGGCTGAAGGTCATCTACAGCCCGCGCCAGCACCCGATGATCAACGAGGCCGAGTTCAACCACATCGCTTCCAATGGCGCGATGGTCGACATGGACCAGGACAAGGGCAAGGAAAAGAAAGCCGACGGTCCGAAGTGGGATTACATCCGCCAACTGCTGACCAACCGCATGATGCTCGGCGTGTACCTGGGCCAGTACTGCATCAACGGCATCACCTATTTCTTCCTGACCTGGTTCCCGGTGTACCTGGTGCAGGAGCGCGGCATGACCATCCTCAAGGCCGGTTTCATCGCGTCCTTGCCGGCCATCTGCGGTTTCATTGGTGGCGTCCTCGGCGGGGTGATTTCCGACTACCTGCTGCGCAAGGGCCATTCGCTGACCTTCGCCCGCAAGGCGCCAATCATCGCCGGGCTGCTGGTGTCCAGCAGCATCGTGGCGTGCAACTACGTCGATATCGAATGGATGGTGGTGGGCTTCATGGCCCTGGCATTCTTCGGCAAGGGCGTGGGCGCATTGGGTTGGGCCGTGGTGTCCGACACGTCGCCAAAACAGATCGCCGGCTTGAGCGGTGGCCTGTTCAACACCTTCGGCAACCTGGCGTCGATTACCACGCCAATCGTCATCGGCTACATCATCAGCGCCACCGGTTCGTTCAAGTGGGCCCTGGTGTTCGTCGGTTGCAATGCGTTGGTGGCGGTGTTCAGCTATCTGGTCATCGTGGGCCCGATCAAGCGTGTGGTGCTCAAGGAGCCCACGGCCAGGGAAGCCGACCTATCCAGCCTGTCTGAAGCCAAATCCTGA	MQETKPTHVRYLILLMLFLVTTINYADRATIAIAGSSLQKDLGIDAVTLGYIFSAFGWAYVAGQIPGGWLLDRFGSKKIYALSIFTWSLFTVLQGYVGEFGMSTAVVALFMLRFLVGLAEAPSFPGNARIVAAWFPTAERGTASAIFNSAQYFATVLFAPLMGWIVYRFGWQHVFIVMGVIGIVFSLVWLKVIYSPRQHPMINEAEFNHIASNGAMVDMDQDKGKEKKADGPKWDYIRQLLTNRMMLGVYLGQYCINGITYFFLTWFPVYLVQERGMTILKAGFIASLPAICGFIGGVLGGVISDYLLRKGHSLTFARKAPIIAGLLVSSSIVACNYVDIEWMVVGFMALAFFGKGVGALGWAVVSDTSPKQIAGLSGGLFNTFGNLASITTPIVIGYIISATGSFKWALVFVGCNALVAVFSYLVIVGPIKRVVLKEPTAREADLSSLSEAKS	PGPT0016475_211	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_GLUCARATE_TRANSPORT,PGPT0016475-gudP-K03535	NA	NA
D1-36_00865	1554	garD	COG2721	Galactarate dehydratase (L-threo-forming)	ATGAATCTGATTGAACATGCCGATTCGCCCCGTTACATCCGCCTGCACGAGCGGGACAACGTGGTGATTGTTGTCAACGACCAGGGCGTACCCGCCGGGACCGAGTTCCCGGACGGCCTGGTCACCGTGGACTTCGTGCCACAGAGCCACAAGGTCACCCTGGTGGACATTCCCGAGGGTGGCGAGGTGATTCGCTACGGCCAGGTCATTGGCTACGCGCTGCAACCGATCCCTCGTGGCAGCTGGGTCAAGGAAGACCAATTGCGCATGCCCACCGCGCCACCCTTGGACAGCCTGCCGCTGTCCACCGATGTGCCGGCGGCGGATGCGCCACTGGAAGGCTACACCTTCGAGGGCTACCGCAACGCCGACGGCACCGTCGGCACGCGCAACATCCTGGGCATCACCACCACGGTGCAGTGCGTCACCGGGGTGCTGGACCATGCGGTCAAGCGCATCAAAGAAGAGCTGCTGTCCAAGTACCCGAACGTCGATGACGTGGTGGCGCTGACCCACAGCTATGGCTGCGGTGTGGCGATCACCGCCACCGACGCCTACATCCCGATCCGCACCGTGCGCAACCTGGCGCGCAACCCGAACCTGGGTGGCGAGGCGCTGGTGATCAGCCTGGGCTGCGAGAAATTGCAGGCCGGGCAGGTGATGCACGAAGGCGATAGCTCGGTGGACCTCAGCGAGCCATGGTTGTATCGCTTGCAGGATTCCAGCCACGGCTTTACCGAGATGATCGAGCAGATCATGGAGTTGGCCGAGACGCGCCTGAAGAAACTCGACCAGCGTCGGCGCGAAACCGTGCCCGCCTCGGAGCTGATCCTGGGCATGCAGTGCGGCGGCAGCGATGCGTTCTCCGGCATCACCGCCAACCCGGCCCTGGGCTACGCCTCGGACCTGTTGCTGCGGGCCGGTGCGACGGTGATGTTCTCTGAAGTCACCGAAGTGCGCGATGCGATCTACCTGCTGACCTCCCGGGCGCAAACCCAGGAAGTCGCCCAGCAACTGGTGCGCGAAATGGACTGGTACGACCGTTACCTGGCCAAGGGCGAGGCCGATCGCAGCGCCAACACCACGCCGGGCAACAAGAAGGGTGGGTTGTCGAACATCGTCGAGAAGTCCTTGGGCTCGATCGTCAAATCCGGCAGCAGCGCAATCAGCGGCGTGCTTGGCCCGGGTGAGCGCTTCAAGCAAAAGGGCCTGATCTTCTGCGCCACGCCGGCCAGCGACTTTGTCTGCGGCACGCTGCAACTGGCGGCGGGGATGAACCTGCACGTGTTCACTACCGGTCGGGGCACCCCGTACGGCTTGGCCATGGCGCCGGTGGTGAAGGTCTCGACCCGTACCGAACTGGCCCAGCGCTGGCCGGACCTGATCGACATCGACGCCGGCCGCATCGCCACCGGGCGCGCGACCATCGAAGAGTTGGGCTGGGAGCTGTTCCACTACTACCTGGACGTGGCCAGCGGCAAGAAACAGACCTGGGCCGAGCAGCACAAGTTGTTCAACGACATTACCTTGTTCAACCCGGCGCCGATTACCTGA	MNLIEHADSPRYIRLHERDNVVIVVNDQGVPAGTEFPDGLVTVDFVPQSHKVTLVDIPEGGEVIRYGQVIGYALQPIPRGSWVKEDQLRMPTAPPLDSLPLSTDVPAADAPLEGYTFEGYRNADGTVGTRNILGITTTVQCVTGVLDHAVKRIKEELLSKYPNVDDVVALTHSYGCGVAITATDAYIPIRTVRNLARNPNLGGEALVISLGCEKLQAGQVMHEGDSSVDLSEPWLYRLQDSSHGFTEMIEQIMELAETRLKKLDQRRRETVPASELILGMQCGGSDAFSGITANPALGYASDLLLRAGATVMFSEVTEVRDAIYLLTSRAQTQEVAQQLVREMDWYDRYLAKGEADRSANTTPGNKKGGLSNIVEKSLGSIVKSGSSAISGVLGPGERFKQKGLIFCATPASDFVCGTLQLAAGMNLHVFTTGRGTPYGLAMAPVVKVSTRTELAQRWPDLIDIDAGRIATGRATIEELGWELFHYYLDVASGKKQTWAEQHKLFNDITLFNPAPIT	PGPT0018155_451	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018155-garD-K01708	NA	NA
D1-36_00866	942			hypothetical protein	ATGCTGGCAATTTTCCTCGAAACCCTGAACGTCACCGCGCCGGTGTTCGCCATGCTGTTTCTGGGGACGCTGCTCAAGCGCATCGGCTGGATCAACGACAACTTCATCCACATCGCCTCGTCGCTGGTGTTCAACGTCACCATGCCGGCGCTGTTGTTCCTTGGCATTCTGCACGCTGATTTGCACGCGGCTTTGCAGCCAGACCTGCTGATCTATTTCTCGATTGCCACCCTGGTGAGTTTCGCCATGGCCTGGGGCTGGGCGATCTGGCGTTGCCCGCGGGAGGATCGCGGGATCTACACCCAGGGCGCGTTTCGTGGCAACAACGGCGTGATCGGCCTGGCATTGGCCGCGAGCATGTATGGCGACTATGGGATTTCCCTGGGGGCGATTCTGGCGGCGCTGGTGATCCTGTTCTACAACACCCTGTCGACCATCGTGCTGGCGGTCTACAGCCCGGTGATCAAGTCCGACCCCTGGAGCATCTGCAAGAGCGTGATCAGCAACCCGCTGATCATCAGCGTGCTTGCCGCCGCGCCGTTCGCCTATTGGCGGATCGGCCTGCCGAACTGGTTCGAGACGTCGGCCAAGTATCTGTCCCAAATGACCTTGCCCCTGGCGCTGATCTGCATCGGCGGCACGCTGTCCCTGGCGGCCTTGCGCAAGAGCGGCAAGATGGCCCTGAGTTCGAGCCTGGTGAAGATGGTCGGCTTGCCGTTGGTGACTACTCTGGGCGCATGGTTGTGGGGTTTTCGCGGGGCGGAACTGGGGATCCTGTTTCTGTACTTCGGCAGCCCCACCGCCGCCGCCAGCTACGTCATGGCCCGCGCCGCGAATGGCAACCACGAGCTGGCGGCGGCGATCATCGTCATCACCACCTTGATGGCGGCGATTACCACCAACCTGGGGATCTTTGTGTTGCAGTGGGGTGGGTGGATCTAG	MLAIFLETLNVTAPVFAMLFLGTLLKRIGWINDNFIHIASSLVFNVTMPALLFLGILHADLHAALQPDLLIYFSIATLVSFAMAWGWAIWRCPREDRGIYTQGAFRGNNGVIGLALAASMYGDYGISLGAILAALVILFYNTLSTIVLAVYSPVIKSDPWSICKSVISNPLIISVLAAAPFAYWRIGLPNWFETSAKYLSQMTLPLALICIGGTLSLAALRKSGKMALSSSLVKMVGLPLVTTLGAWLWGFRGAELGILFLYFGSPTAAASYVMARAANGNHELAAAIIVITTLMAAITTNLGIFVLQWGGWI	PGPT0007208_1484	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-ABSCISIC_ACID_DEGRADATION	PHYTOHORMONE-AUXINE|INDOLE‐3‐ACETIC_ACID|IAA_METABOLISM	PHYTOHORMONE-IAA-AUXIN_TRANSPORT_PLANT_LIKE,PGPT0007208-auxin_symporter-NA	NA	NA
D1-36_00867	381			hypothetical protein	ATGACCGACAATCCAAAGACCGGCCTCGATATGCGTCGCAAAGTGATGGGCGATGCGTTCGTCGACCGCGCCCTGGGCAGCGCCACCGAATTCACCCAGCCGCTGCAGGATTTCGTGAACGAACATGCCTGGGGCAGCGTCTGGAGCCGCGAAGGCCTGCCGCTGAAGACCCGCAGCCTGATCACCCTCGCCGCCCTCACCGCCCTCAAGTGCCCGCAGGAACTCAAGGGCCACGTGCGTGGTGCGCTGAACAATGGCTGCACGGTAGAAGAAATTCGCGAAGCGTTGCTGCATTGCGCGGTGTACGCGGGCGTGCCAGCGGCGATCGATGCGTTTCGGGCGGCGCAGGAAGTGATCGATAGTTACCAAAAACCTGAGTGA	MTDNPKTGLDMRRKVMGDAFVDRALGSATEFTQPLQDFVNEHAWGSVWSREGLPLKTRSLITLAALTALKCPQELKGHVRGALNNGCTVEEIREALLHCAVYAGVPAAIDAFRAAQEVIDSYQKPE	PGPT0005005_3536	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
D1-36_00868	1134			hypothetical protein	GTGTGCAAGCCCTCGACGACTGATAGACGGAGCCCGGCCATTTCCCTGATCAATGCTTTACCGCTGCTCAGCCTGATCGAACTGTGTGGCGCCCTGCTGTTGCTGGTCGCCGGCGCCGAGTTGCTGGTGCGTGCCGCCGTGGGGCTGGCGGCACGCTTGCAGGTGCGGCCGCTGATTATCGGCCTGACCGTCGTCGCATTCGGCAGCAGCGCACCGCAAATGGCTGTCAGCCTGCAAGCGACCCTGGCACAGAACGCTGACATCGCCGTGGGGAGTGTGATCGGCAGCAGTACCTTCAACATCCTCGTCACCCTCGGGCTGTCGGCGCTGATCATTCCGCTGCGCGTCTCGCGTCAATTGGTGCGCTTGGATATCCCGCTGATGATCGGCGCCAGCCTGCTGGTGTTCGTGCTGGCCTGGAACGAAGAACTGACCCGACTCGACGGCGTCCTGCTGCTGGTAGCCCTGGCGGTGTACCTGGGCCTGTTGCTGCGCCAGTCCCGGCACTCCGCGCGACCACATCCGCTGGGAGGCGCAGTTGCCCATGGTTCGTGGCCCAAGAGCCTGGTGATGATCGTTTCGGGCCTGGCGATGCTGGTCTTCGCCGGGAACCTGTTATTGGGCGCGGCGGTGGAAGTGGCGACCGACCTGGGGTTGTCCGAGCGCATCATCGGCCTGACCATCGTTGCCGTGAGCACCTCGCTGCCGGAGCTAGCCACTTCGTTGATCGCCGCCCTTCGGGGTCAACGGGACATCGCAGTAGGCAACGTAATCGGCAGCAACCTGTTCAACCTTCTGGGTGTATTGGGCGTGACCGCCCTCGCCGCGCCCTCTCCGCTCTCGGTCTCGCCCAATGCCCTGGCCTTCGACCTGCCGGTGATGCTTGGCGTCGCGGTGCTGTGCCTGCCGGTGTTCTATTCCGGCTATCGCGTCACCCGTGCCGAAGGGCTGCTGTTCCTGGGCTTGTACACGGCGTACGGGCTGCATGTGGTGTCGTTCACCACCGGCATGCCATTGGCCGGCCAGCTTGAACGATTGATGTTGTTCTACGTGCTGCCGGCCCTGCTCGCGTTTCTGCTGTTCACTTCCTTGCGCGCCTGGCGCCGCCAACACCACAAGAGGGATTTGCCATGA	MCKPSTTDRRSPAISLINALPLLSLIELCGALLLLVAGAELLVRAAVGLAARLQVRPLIIGLTVVAFGSSAPQMAVSLQATLAQNADIAVGSVIGSSTFNILVTLGLSALIIPLRVSRQLVRLDIPLMIGASLLVFVLAWNEELTRLDGVLLLVALAVYLGLLLRQSRHSARPHPLGGAVAHGSWPKSLVMIVSGLAMLVFAGNLLLGAAVEVATDLGLSERIIGLTIVAVSTSLPELATSLIAALRGQRDIAVGNVIGSNLFNLLGVLGVTALAAPSPLSVSPNALAFDLPVMLGVAVLCLPVFYSGYRVTRAEGLLFLGLYTAYGLHVVSFTTGMPLAGQLERLMLFYVLPALLAFLLFTSLRAWRRQHHKRDLP	PGPT0014400_526	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0014400-yrbG-K07301	NA	NA
D1-36_00869	378	rlpA_1		Endolytic peptidoglycan transglycosylase RlpA	ATGAAGCGTCTCCTCGGCGCCTGCGCCCTGCTGTCCCTGCTGGCCGGTTGCGCCAGCCAGAGCGGGACGGTCGATCCACACGGCTACGACCAGACCGGCGTCGCCTCCTATTACGGCTCCAGGCACCATGGCAAGCGTACCGCCAGCGGCGAGCGCTTCGACCAGCACGGCCTGACCGCCGCGCATCGCCAGTTGCCGTTCGGCACCCGGGTGAAAGTCACCAACCTGAAAAACAACGACAGCGTCGTGGTCCGTATCAACGATCGTGGCCCGTATACCCGTGGGCGCCTGATCGATGTGTCCCGCGCCGCGGCCGAACAATTGGGCATGCTGCGCAGCGGTACCGCGCGCGTGCGTGTGCAAGCCCTCGACGACTGA	MKRLLGACALLSLLAGCASQSGTVDPHGYDQTGVASYYGSRHHGKRTASGERFDQHGLTAAHRQLPFGTRVKVTNLKNNDSVVVRINDRGPYTRGRLIDVSRAAAEQLGMLRSGTARVRVQALDD	PGPT0024465_3272	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024465-rlpA-K03642	NA	NA
D1-36_00870	1446	gatB	COG0064	Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B	ATGCAATGGGAAGTCGTGATCGGGCTGGAGATTCATACCCAGCTCACCACCCGGTCGAAAATCTTTTCCGGTAGCTCGACCACCTTCGGTTCCGAGCCCAACACCCAGGCCAGCCTGGTTGACCTGGGCATGCCCGGCGTATTGCCGGTGCTCAACGCCGAAGCGGTGCGCATGGCGGTGATGTTCGGCCTGGCGATTGACGCCGAGATCGGCCAGCACAACGTGTTCGCCCGCAAGAACTACTTCTACCCGGACCTGCCCAAGGGCTACCAGATCAGCCAGATGGAGCTGCCGATCGTCGGCAAGGGCCACCTGGACATCGCCCTGGAAGACGGCACGGTCAAGCGCGTCGGTATCACCCGCGCGCACCTGGAAGAAGACGCCGGCAAGAGCCTGCACGAAGAATTCAACGGTGCTACCGGCATCGACCTGAACCGCGCCGGCACGCCGCTGCTGGAAATCGTCTCAGAGCCGGACATGCGCAGCGCCAAGGAAGCCGTCGCTTACGTCAAGGCGATCCATGCCCTGGTGCGCTACCTGGGCATCTGCGACGGCAACATGGCCGAAGGCTCGCTGCGTTGCGACTGCAACGTGTCGATCCGTCCGAAAGGCCAGGCCGAGTTCGGCACCCGCTGCGAGATCAAGAACGTCAACTCGTTCCGCTTCATCGAAAAGGCGATCAACAGCGAGATCCAACGCCAGATCGAACTGATCGAGGACGGCGGCAAGGTCATCCAGCAGACCCGCCTGTACGACCCGAACAAGGACGAGACCCGTCCGATGCGCAGCAAGGAAGAAGCCAACGACTACCGTTACTTCCCCGACCCGGACCTGCTGCCGGTGGTCATCGAGCATTCGTTCCTCGATGAAGTACGCGCCACCCTGCCGGAACTGCCGCCACAGAAACGCGAGCGCTTCCAGGCGCAGTTCGGGCTGTCGAGCTATGACGCCAACGTCCTGGCCACCAGCCGCGAACAGGCCGACTACTTCGAGAAAGTCGTGAGCATCGGCGGCGACGCCAAGCTGGCGGCCAACTGGGTGATGGTCGAGTTGGGCAGCCTGTTGAACAAGCAGGGCCTGGAAATCGACGAGTCGCCGGTTTCGGCCGAGCAACTGGGCGGCATGCTGTTGCGGATCAAGGACAACACCATTTCCGGCAAGATCGCCAAAATGGTGTTCGAAGCCATGGCCAATGGTGAGGGCAGCGCCGACGAGATCATCGACAAGCGCGGCTTGAAGCAGGTCACCGACACCGGTGCGATCAGCGCCGTGCTCGATGAAGTGCTCGCGGCCAACGCCGAGCAGGTCGAGCAATACCGTGCGGCGGACGAAGCCAAGCGCGGCAAGATGTTCGGCTTCTTCGTCGGCCAGGCCATGAAAGCTTCCAAGGGCAAGGCCAACCCTCAGCAAGTCAACGAACTGCTGAAAAGCAAGCTCGAGGGCTGA	MQWEVVIGLEIHTQLTTRSKIFSGSSTTFGSEPNTQASLVDLGMPGVLPVLNAEAVRMAVMFGLAIDAEIGQHNVFARKNYFYPDLPKGYQISQMELPIVGKGHLDIALEDGTVKRVGITRAHLEEDAGKSLHEEFNGATGIDLNRAGTPLLEIVSEPDMRSAKEAVAYVKAIHALVRYLGICDGNMAEGSLRCDCNVSIRPKGQAEFGTRCEIKNVNSFRFIEKAINSEIQRQIELIEDGGKVIQQTRLYDPNKDETRPMRSKEEANDYRYFPDPDLLPVVIEHSFLDEVRATLPELPPQKRERFQAQFGLSSYDANVLATSREQADYFEKVVSIGGDAKLAANWVMVELGSLLNKQGLEIDESPVSAEQLGGMLLRIKDNTISGKIAKMVFEAMANGEGSADEIIDKRGLKQVTDTGAISAVLDEVLAANAEQVEQYRAADEAKRGKMFGFFVGQAMKASKGKANPQQVNELLKSKLEG				NA	NA	NA	NA	NA
D1-36_00871	1452	gatA	COG0154	Glutamyl-tRNA(Gln) amidotransferase subunit A	ATGCATCAGATGACCCTGGCCGAGATCGCCCGCGGACTCGCCGACAAAAAGTTTTCCTCCGAAGAGCTGACCAAGGCCCTGCTGGCGCGCATCGCCCAGCTCGATCCGCAGCTCAACAGCTTCATCAGCCTCACCGAAGAACTGGCCCTGAGCCAGGCCAAGGCCGCCGACGCCCGTCGCGCCAAGGGTGAGAACGGCGCCCTGCTTGGCGCGCCGATTGCCCACAAGGACCTGTTTTGCACACAGGGCATCCGCACCAGCTGCGGCTCGAAGATGCTCGACAATTTCAAGGCCCCGTACGACGCCACCGTGGTCGCCAAGCTGGCCGCCGCCGGCACCGTGACCCTGGGCAAGACCAACATGGACGAGTTCGCCATGGGCTCGGCCAACGAGTCGAGCCATTACGGCGCGGTGAAAAACCCGTGGAACCTTGAACACGTACCGGGCGGCTCGTCCGGTGGTTCCGCCGCCGCCGTGGCCGCGCGCCTGTTGCCGGCCGCCACCGCCACCGACACCGGTGGCTCGATTCGCCAGCCAGCTGCGTTCACCAACCTCACCGGCCTGAAACCGACCTACGGCCGCGTCTCGCGCTGGGGCATGATTGCCTACGCCTCCAGCCTCGACCAGGGTGGCCCGCTGGCCCGCACCGCCGAAGACTGCGCGATCCTGCTCCAAGGCATGGCCGGCTTCGACCCGAACGATTCCACCAGCATCGATGAACCGGTGCCGGACTACAGCGCCAGCCTCAACGGTTCGCTGCAAGGCCTGCGCATCGGCGTGCCGAAGGAATATTTCGGCGCCGGCCTCGACCCGCGCATCGCCGATCTGATTCAAAACAGCATCAAGGAGCTGGAAAAGCTCGGCGCGGTCATCAAGCAAATCAGCCTGCCGAACATGCAGCACGCCATTCCGGCGTATTACGTGATCGCCCCGGCGGAAGCCTCCTCTAACCTCTCGCGTTTCGACGGCGTGCGCTTCGGCTATCGCTGCGAGAACCCGCAAAACCTGGTCGACCTGTACAAGCGCTCCCGTGGCGAAGGCTTCGGCGCCGAAGTGCAGCGCCGGATCATGGTTGGCGCCTACGCGCTGTCCGCCGGCTACTACGATGCCTACTACCTAAAGGCGCAGAAAATCCGCCGCCTGGTAAAGAACGACTTCATGGCCGCCTTCAACGAGGTCGATATCATCCTCGGCCCAACCACGCCGAACCCGGCCTGGAAGCTCGGCGCCAAGAACAGCGACCCGGTCGCCGAGTACCTGGAAGACGTCTACACCATCACCGCCAACCTCGCCGGCTTGCCGGGCCTGTCCATGCCGGCCGGCTTCGTCGATGGCCTGCCGGTGGGCGTGCAGTTGCTCGCGCCGTATTTCCAGGAAGGCCGCCTGTTGAATGTCGCCCACCAGTATCAATTGAATACTGACTGGCACACCCGCACCCCAACCGGCTTCTGA	MHQMTLAEIARGLADKKFSSEELTKALLARIAQLDPQLNSFISLTEELALSQAKAADARRAKGENGALLGAPIAHKDLFCTQGIRTSCGSKMLDNFKAPYDATVVAKLAAAGTVTLGKTNMDEFAMGSANESSHYGAVKNPWNLEHVPGGSSGGSAAAVAARLLPAATATDTGGSIRQPAAFTNLTGLKPTYGRVSRWGMIAYASSLDQGGPLARTAEDCAILLQGMAGFDPNDSTSIDEPVPDYSASLNGSLQGLRIGVPKEYFGAGLDPRIADLIQNSIKELEKLGAVIKQISLPNMQHAIPAYYVIAPAEASSNLSRFDGVRFGYRCENPQNLVDLYKRSRGEGFGAEVQRRIMVGAYALSAGYYDAYYLKAQKIRRLVKNDFMAAFNEVDIILGPTTPNPAWKLGAKNSDPVAEYLEDVYTITANLAGLPGLSMPAGFVDGLPVGVQLLAPYFQEGRLLNVAHQYQLNTDWHTRTPTGF				NA	NA	NA	NA	NA
D1-36_00872	288	gatC	COG0721	Glutamyl-tRNA(Gln) amidotransferase subunit C	ATGGCGCTTGAACGCTCCGACGTGGAAAAAATCGCTCATCTGGCCTGCCTGGGCCTCAATGAAGCCGATCTTCCACACATCACTTCTGCCCTGAACAGCATCCTCGGGCTGGTCGACGAAATGCAGGCGGTCGATACCGACGGTATCGAGCCGCTGGCCCACCCACTGGAAGCCAGCCAGCGCCTGCGCGCCGACGTCGTCACCGAGTCCAATAACCGCGAGGCCTACCAGTCCATCGCGCCAGCGGTCGAAAACGGCCTGTACCTGGTTCCGAAAGTCATCGACTAA	MALERSDVEKIAHLACLGLNEADLPHITSALNSILGLVDEMQAVDTDGIEPLAHPLEASQRLRADVVTESNNREAYQSIAPAVENGLYLVPKVID	PGPT0023460_3430	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
D1-36_00873	1038	mreB	COG1077	Cell shape-determining protein MreB	ATGTTCAAGAAACTGCGTGGCATGTTTTCCAGCGATCTCTCCATCGACCTGGGCACTGCCAACACCCTTATTTACGTGCGCGAGCGCGGTATCGTCCTGAATGAACCCTCGGTCGTGGCCATCCGCACCCACGGTAACCAGAAAAGTGTCGTGGCTGTCGGTACGGAAGCCAAGCGCATGCTGGGCCGTACACCGGGCAACATTGCAGCCATTCGCCCCATGAAGGACGGCGTGATCGCCGACTTCAGCGTCTGCGAAAAGATGCTGCAGTACTTCATCAACAAGGTTCACGAAAACAGTTTTCTGCAGCCCAGCCCTCGTGTGCTGATCTGCGTGCCCTGCAAGTCCACCCAGGTGGAGCGTCGCGCCATCCGTGAATCGGCCCTGGGTGCCGGTGCTCGCGAAGTATTCCTGATTGAAGAGCCAATGGCCGCAGCCATCGGTGCCGGCCTGCCGGTGGAAGAAGCCCGTGGTTCGATGGTCGTCGATATCGGTGGTGGTACCACTGAAATCGCCTTGATCTCCCTCAACGGTGTGGTCTACGCCGAATCCGTGCGTGTGGGCGGCGACCGTTTCGACGAAGCGATCATCACCTACGTACGTCGCAACTACGGCAGCCTGATCGGCGAATCCACCGCCGAGCGCATCAAGCAGGAAATCGGCACGGCCTACCCGGGCGGTGAAGTGCGCGAAGTCGATGTTCGCGGTCGCAACCTGGCCGAAGGCGTTCCACGCGCGTTCACGCTCAACTCCAACGAAGTGCTCGAAGCGCTGCAAGAGTCGCTGGCAACCATCGTCCAGGCCGTCAAGAGCGCCCTGGAGCAATCGCCGCCGGAGCTGGCCTCGGACATCGCCGAGCGCGGCCTGGTGCTGACCGGTGGTGGCGCGCTGTTGCGTGACCTCGACAAACTGCTGGCCCAGGAAACCGGCCTGCCGGTGATCGTTGCCGAAGACCCGCTGACGTGCGTTGCCCGCGGTGGTGGCCGTGCGCTGGAAATGATGGACAAGCACACCATGGACCTGCTCTCCAGCGAATAA	MFKKLRGMFSSDLSIDLGTANTLIYVRERGIVLNEPSVVAIRTHGNQKSVVAVGTEAKRMLGRTPGNIAAIRPMKDGVIADFSVCEKMLQYFINKVHENSFLQPSPRVLICVPCKSTQVERRAIRESALGAGAREVFLIEEPMAAAIGAGLPVEEARGSMVVDIGGGTTEIALISLNGVVYAESVRVGGDRFDEAIITYVRRNYGSLIGESTAERIKQEIGTAYPGGEVREVDVRGRNLAEGVPRAFTLNSNEVLEALQESLATIVQAVKSALEQSPPELASDIAERGLVLTGGGALLRDLDKLLAQETGLPVIVAEDPLTCVARGGGRALEMMDKHTMDLLSSE	PGPT0027700_1715	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027700-mreB-K03569	NA	NA
D1-36_00874	1089	mreC	COG1792	Cell shape-determining protein MreC	TTGGGTGTACGCCTGCTGGTGTTGACCGTGCTGTCGGTTGCGCTGATGGTGGTGGATGCCCGCTTCACGCTGCTCAAGCCAGTGCGCAGCCAGATGTCGCTGGTGTTGATGGAGTCCTACTGGATCACCGACCTGCCGCAACGGTTGTGGCAGGGTGTGGCCAGCCAGTTTGGCAGCCGGACCGAACTGGTCGCCGAGAACGAAAAACTCAAGACTGAAAACCTGCTGCTGCAGGGGCGCATGCAGAAGCTGGCGGCCCTCACCGAACAGAACGTGCGGCTGCGCGAGTTGCTCAACTCCTCGGCGCTGGTCAATGAGAAAGTCGAAGTGGCCGAGCTGATCGGCATGGACCCGAACCCGTTCACCCACCGCATCATCATCAACAAGGGCGAGCGCGACGGCGTGGTCCTCGGCCAGCCGGTGCTCGATGCCCGTGGCCTGATGGGGCAGGTGGTGGAATTAATGCCTTATACGTCTCGTGTGCTGTTGCTGACCGATACCACCCACAGTATCCCGGTGCAGGTCAATCGCAACGGCTTGCGGGCAATCGCAAGCGGCACCGGCAACCCCGAGCGCCTCGAACTTCGCCATGTGGCCGATACCGCCGACATCAAGGAAGGCGACCTGCTGGTCAGTTCCGGCCTCGGCCAGCGGTTTCCGGCTGGTTATCCCGTGGCGACGGTCAAGGAAGTGATTCATGACTCTGGCCAGCCGTTCGCGATCGTGCGGGCGGTGCCAACGGCTGCGTTGAACCGCAGCCGCTACCTGCTGCTGGTATTCAGCGACAACCGCACGCCTGAAGAGCGCGCCAACGATGCCGCCGTGGCCCAGGAGGCCCAGGACCAGCAGAGCGGCGAATCGCCTGCTCCGGCCACACCTGCGCCCGCGCCCGCACCTGTACCAGCCACTGTGCCCAAGCCCCAGGCTGCGACGGCCCCGGCAACAACAGCTCCGGCCGCACACGCCGCGGCTCCCGCCCGACCGGCCGCAGCCCAGCAGCCGGCGGTCCAACCCGCCCGGCCCGCGACCAAGCCACCGGCCCCAGCGCCTGCCGCTACGCCCGCCACCAGGGGAGCACGTGAAGAATGA	MGVRLLVLTVLSVALMVVDARFTLLKPVRSQMSLVLMESYWITDLPQRLWQGVASQFGSRTELVAENEKLKTENLLLQGRMQKLAALTEQNVRLRELLNSSALVNEKVEVAELIGMDPNPFTHRIIINKGERDGVVLGQPVLDARGLMGQVVELMPYTSRVLLLTDTTHSIPVQVNRNGLRAIASGTGNPERLELRHVADTADIKEGDLLVSSGLGQRFPAGYPVATVKEVIHDSGQPFAIVRAVPTAALNRSRYLLLVFSDNRTPEERANDAAVAQEAQDQQSGESPAPATPAPAPAPVPATVPKPQAATAPATTAPAAHAAAPARPAAAQQPAVQPARPATKPPAPAPAATPATRGAREE	PGPT0025445_1	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_IV_SECRETION_SYSTEMS	CE-T4SS-TRB_SECRETION_SYSTEM,PGPT0025445-trbJ-K20266	NA	NA
D1-36_00875	489	mreD	COG2891	Rod shape-determining protein MreD	ATGAGCAGTACTCGATCCGGTAATGGCTGGATGGTCTGGCTGACCTTTGCCATCGGCCTGTTGCTCAGCGTTTCCCCGCTGCCGCAGTTCATGGAAATCCTGCGCCCGCTGTGGCTGGCCTTGCTGCTGGCCTTCTGGGCCCTGGCCTTGCCGCACAAGGTCGGCATGGTCACGGCCTGGTGCCTGGGGCTGGCCGAAGACGTGCTCTATGGCACGTTGCTGGGTCAGAACGCGCTGATCCTGACCTTGATCACATTCCTGGTGCTGTCGTTGCAACAACGCCTGCGCATGTTCCCGATGTGGCAACAGTGCTTGGTGATCCTGGTGATCTTCGGGTTGGCGCAACTGGTGCAATTATGGCTCAGCGCCTTGACCGGTAATCGCCAGCCGACCCTGGCGCTGGTCTTGCCGGCCCTGGTCAGCGCATTGCTCTGGCCGTGGATAAGTTTCGGTTTGCGCGGCTTGCGGCTGCGTTTCAAAATCAACTGA	MSSTRSGNGWMVWLTFAIGLLLSVSPLPQFMEILRPLWLALLLAFWALALPHKVGMVTAWCLGLAEDVLYGTLLGQNALILTLITFLVLSLQQRLRMFPMWQQCLVILVIFGLAQLVQLWLSALTGNRQPTLALVLPALVSALLWPWISFGLRGLRLRFKIN				NA	NA	NA	NA	NA
D1-36_00876	597	yhdE	COG0424	dTTP/UTP pyrophosphatase	ATGAAACCGCTTTACCTCGCCTCAGGGTCGCCGCGCCGGCGTGAATTGCTCACGCAGATCGGGGTGCCATTTACCGCCATCGGTGCGGACATCGACGAAACTCCTCACGATCACGAAACCCCATCGGCCTATGTAGAGCGCTTGGCGCGTGGCAAGGCCGATGCTGGACGACGTGCCCTATCAAATGACATCGATGGCTGCGTGCTCGGCGCGGACACCGCCGTGGTGCTGGATGGACGAATTCTCGGCAAGCCTCAGGATCAGGCCGACGCCGTGTCGATGCTCATGGGCCTGTCCGGGCGCGATCATGAGGTATTGACCGCCATTGCCGTGCTGGATGCCGAACGCTGCGAATCCCGGGTGGTTCGCAGCCGCGTGCGCTTTCGCCTGATCACGGAACAGGAAGCGCTCGCCTATTGGGCCAGCGGCGAACCGCGAGACAAGGCCGGCAGCTATGGTATCCAAGGGCTGGGCGCGGTGTTCGTCGCCGGGCTTGAGGGCAGTTATTCGGCCGTGGTCGGCCTGCCGCTCTGCGAAACCGCAGAATTGCTCGGCCATTTCGGCATACCCTGTTGGCAAACCTTGAGCGCGCGTTGA	MKPLYLASGSPRRRELLTQIGVPFTAIGADIDETPHDHETPSAYVERLARGKADAGRRALSNDIDGCVLGADTAVVLDGRILGKPQDQADAVSMLMGLSGRDHEVLTAIAVLDAERCESRVVRSRVRFRLITEQEALAYWASGEPRDKAGSYGIQGLGAVFVAGLEGSYSAVVGLPLCETAELLGHFGIPCWQTLSAR				NA	NA	NA	NA	NA
D1-36_00877	1458	rng	COG1530	Ribonuclease G	ATGAGTGAAGAGATTCTGATCAACATCACGCCGATGGAGTCGCGCGTGGCGGTGGTTGAAAACGGTGTCCTGCAAGAAGTTCACGTCGAGCGCACGCAAAAGCGTGGCATCGTCGGCAATATTTACAAGGGCAAGGTGGTGCGGGTTTTGCCGGGCATGCAGGCAGCCTTCGTCGACATCGGCCTGGACCGCGCGGCGTTCATCCACGCCTCGGAAATTTCCATGCGCGAAGGGCCGGCGGTGGAAAGCATCAGTGCGCTGGTCCATGAGGGCCAGAGCCTGGTGGTGCAGGTCACCAAGGACCCCATCGGCTCCAAGGGCGCGCGCCTGACCACCCAGCTGTCGATTCCGTCGCGCTACCTGGTGTACATGCCGCGCACCGCCCACGTCGGCATATCCCTGAAGATCGAAGACGAAGCCGAGCGTGAGCGCCTCAAAAAAGTGGTCAGTGACTGCGTGGAAAAAGAAGGCATCAAGGAAGCCGGCGGCTTCATCCTGCGTACGGCCGCCGAAGGCGCCGGGGCCGATGAGATCCTCATGGATATCCGCTACCTGCGCAGGCTCTGGGACCAGATCGCCGCGCAGATCAAGACCATCGCCACTCCCAGCGTGATCTACGAAGATCTGGGACTGGCGTTGCGAACCCTGCGTGACCTGGTCAGCCCGAAGATCGAGAAGATCCGCATCGATTCCCGGGAAACCTTCCAGAAAACCACCCAGTTCGTCGCCGAGCTGATGCCGGAAATCGCCGACCGCCTGGAGCACTACCCTGGCGAGCGGCCGATTTTCGACCTGTACGGCGTCGAAGATGAGATCCAGCGCGCCCTTGAACGCAAGGTGCCGCTCAAGTCCGGCGGTTATCTGGTGGTCGATCCGGCCGAGGCGATGAGCACCATCGACGTCAACACCGGTGCCTTTGTCGGCCATCGTAATCTCGAGGAAACCATCTTCAAGACCAATCTTGAAGCGGCCACGGCCATTGCCCGGCAATTGCGCCTGCGCAACCTCGGCGGGATCATCATCATCGATTTCATCGACATGGAAGACGAAGAGCACCAGCGCCAGGTGCTGCGCACCCTGGAAAAACAGCTGGAGCGCGATCACGCCAAGACCAACATCATCGGCATCACCGAACTGGGCCTGGTGCAGATGACCCGCAAGCGCACCCGCGAAAGTCTTGAACAAGTGCTGTGCGAACCATGCAGCAGTTGCCAGGGCCGGGGCAAGCTCAAGACCCCGGAAACCGTGTGTTACGAAATCTTCCGGGAAATCCTCCGGGAAGCGCGCGCCTACCAGGCCACTGGCTATAGAGTGTTGGCGAACCAGAAAGTAGTGGACCGGTTGCTCGATGAAGAGTCGGGCAACGTCGCGGAGCTGGAAACCTTTATCGGCCGCACGATCCGTTTCCAGGTGGAGACCATGTATTCGCAGGAACAATACGACGTGGTGTTGCTCTGA	MSEEILINITPMESRVAVVENGVLQEVHVERTQKRGIVGNIYKGKVVRVLPGMQAAFVDIGLDRAAFIHASEISMREGPAVESISALVHEGQSLVVQVTKDPIGSKGARLTTQLSIPSRYLVYMPRTAHVGISLKIEDEAERERLKKVVSDCVEKEGIKEAGGFILRTAAEGAGADEILMDIRYLRRLWDQIAAQIKTIATPSVIYEDLGLALRTLRDLVSPKIEKIRIDSRETFQKTTQFVAELMPEIADRLEHYPGERPIFDLYGVEDEIQRALERKVPLKSGGYLVVDPAEAMSTIDVNTGAFVGHRNLEETIFKTNLEAATAIARQLRLRNLGGIIIIDFIDMEDEEHQRQVLRTLEKQLERDHAKTNIIGITELGLVQMTRKRTRESLEQVLCEPCSSCQGRGKLKTPETVCYEIFREILREARAYQATGYRVLANQKVVDRLLDEESGNVAELETFIGRTIRFQVETMYSQEQYDVVLL				NA	NA	NA	NA	NA
D1-36_00878	3804			hypothetical protein	ATGGAGCGTCTGACACGCCTGTTGGGCACATTGACACGCTGGGGGCTTGGCCTGTGTGCGCTGCTGCTGGTCGTGCTGGCCTTGTACGTGAGCCTCGGCCGGGAGTTGGTCCCGCTGGTGGCTGAATACCGTAGCGAGGTCGAGGCCCGTGCCGGCGAAGCGCTCGGCATGCCGGTGCACGTCGGTAGCCTCGAAGGCGGCTGGAACGCCCTGGCCCCCATCTTCGCCGCGCGCGATGTAGTGGTCGGCGACGGCCCCAATGCCCTGCACCTGGATCATGTGCGCGCCGTGCCCGCGGTGTGGGACAGCCTGGTGGCCCGCCAGGTGCGCATCGCCCATCTGGAAATCAGCGGCCTGAAGATCAGCCTCAAGGAAGGCGCCGACGGGAAATGGGCCCTGGAAGGCCTGCCAGTACGGGACGACCAGCCACTCGATCCGCAGCAACTGTTGAACCGCATGCAAATGGTCTCGAAGCTGTCGGTGCTCGACAGCCAAGTGACGTTGCAGCCACTGGACCATCCGCCCCTGAGCCTCACCTACGTTGGCTTGAGCCTGCGCACCGGTGCCTCCCGCCAGCGCCTGGACGCTCGGCTGACCCTGCCCGACGGCCAGCCCGTGGCGATCAACCTGCGTACCCGCATCCGCGCCAGCGATTGGAAAAATGGCGTGGCCGATGCCTACCTGAGCCTGCCGCAAAGCGATTGGTCCCAATGGCTGCCTAAACGCCTGACCCGGCAATGGAATTTTTCCGAAATCAAGGCGGGGGGCGAGTTCTGGCTCAGCTGGGGCGCGGGCACGGTGCAAAGCGCGGCCGTGCGCTTGAACGCGCCGCAGCTCCAGGGCGCCTATGCCGACCGCAAGCCCGTGCAGATCCATAACCTGGCCCTCAACGGCTATTTCCAGCGCAGCAGCCAAGGATTTATCGCAACCTTCGACACTCTGGCGATGAGCCTGGGTGACACCCGCTGGGAGTCGCGCCTGCAGCTGCAGCAGACCGACGCCTCCGACAAGGCCGAGGAACGCTGGCACGTGCAGGCCGATCGTCTCGACTTGACGCCGCTCACGCCGCTACTCAATGCCCTGGCGCCATTGCCGGAAGGCGTCGCCACCGCCATCGACCGACTCAAGGTGACCGGTGGCTTGCGCAACGTCTTGCTCGACTACCGGCCACACAATACCGGTGATCAAAAAGTCAGCTTCGCCACCAACCTCGACGCGGTGGGTTTCAACGCCTATCACGGGGCCCCGGCGGCACGTAATGTTTCGGGCAGCCTGAGCGGCGACCTCGGCGGCGGCGAACTGCGCATGGACAGCAAGGATTTCTCCCTGCACCTGGACCCGATCTTCGCCAAGCCCTGGCAGTACTTGCAGGCCAACGCACGGCTGACCTGGAAGTTGGACAAGCAAGGGTTCACCTTGATCGCGCCTTACCTGAAGGTGCTGGGCGAGGAGGGCCGGATTGCCGGGGATTTCCTGATTCGCCTGCATTTCGATCACAGCCAGGAAGATTACATGGACCTGCGGGTCGGCCTGGTGGACGGTGATGGGCGCTACACCGGCAAGTACCTGCCGGCCGTTCTCAGTCCGGCGCTGGACGAGTGGCTGCGCACCGCAATTGTCAAAGGCGCGGTGGATGAGGGCTTCTTTCAGTATCAAGGCTCGCTGAACAAAGGCGCCGAGGATGCGGCTCGCAGCATCAGCCTGTTTTTCAAGGTGCATGACGCTGAGCTGGCGTTCCAGCCCGGCTGGCCTTCGGTCAGTAAGGTCAGCGGCGATGTGTTTGTCGAGGACAGCGGCGTACGCATCTTCGCCAGCCAGGGGCAACTGCTGGGCACCCAGGTAAAAGACGTTTCGGTGAACATTCCCCACGTGCCGACCGGGCAAAACTCTCATTTGCTGCTCGACGGTGGGTTTGCCGGAGGGCTCGGCGACGGGTTGAAGATCCTCCAGACCGCGCCCATCGGCACGGCCGAAACATTCGCCGGCTGGGAAGGCGAGGGCGACCTGCGCGGCAGCGTAAAGCTCGATATCCCGCTCGTGAAAGGCGAGCAACCGAAGATCCTCGTGGATTTCTCAACGGACAAGGCTCGGCTCAAACTCAGCGAGCCGGCCTTGGAACTGACTCAGCTCAAGGGGGATTTCCGCTTCGACAGCAGCAAGGGGCTGAGCGGCAAGAACATTGCGGCCCGGGCATTCGACCGACCCGTGACCGCGCAGATATTCGCCGAGGGCCGCACCGGCGCGCTCAATACGCGTGTCACGGCGTCCGGACGGGTTGAGGTGAAGAAACTCACCGACTGGCTGAGCGTGACCCAGCCGTTGCCCGTCTCCGGCGTGATTCCTTACCAGTTGCAAGTGATCCTGGACGGCGCCGACAGCCAGCTGTCGATCAATTCCAATCTCAAAGGCGTCGCGGTGGATCTGCCGGCGCCCTTCGGCATGGCGGCTGATGCCGAGCGCGACACCGTGTTCCGTATGACATTGCAGGGGCCGGAGCGGCGTTACTGGGCCAATTACGGCGACCTGGCCAGCTTCACTTATGCCGCCCCGAGCGGAAAAACGGCCGATGGCCGTGGCGAATTGCTCCTGGGCGGGGGCGATGCAGTGCTGCCGGGAGCGAAGGGGCTGCGCCTGCGAGGCACGCTATCGGAGCTGGATGTGGGTCCCTGGCAGGATCTGTTGGGCAAATACGCCGGCCAGGACCCGGGCGGCAGCGCCCGGCAAGTGCTCAGCGGTGTCGACCTGAAAGTGGGCAAACTCACGGCGATGGGCACGACGCTGGACCAGGCATCGGTGCAACTGGACCGCAAGCCGGACGCCTGGGCCATGCGGCTCGACAGCCAGCAGGCCAAGGGCAGCGTCAACGTGCCGGACGCAAAGGCCGCCCCCATCGGTATCAAGCTGGACTACGTGCGCCTGCCCGCTGCCGACCCGACGGTGCAGGCCGACGAAAACGCCCCGGATCCGCTGGCTTCGGTTGATCCGAGCAAGATACCGGCCCTGGATATCGCCATCGACCAGTTGTTCCAAGGGCCTGATCTGATCGGCGCCTGGTCGTTGAAGGTGCGTCCAACCGGTAAAGGTATTGCGTTGAACGATCTGGACATGGGCCTCAAGGGCATGGTCCTCAATGGCAATGGCGCTTGGGAAGGTGCGCCGGGCTCGACCAGCAGTTGGTACAAGGGGCGGATCAAGGGTAAGAACCTGGCCGATGTGCTGAAAGGCTGGGGATTCGCCCCCAGCGTGACCAGCCAGGAGTTTCGCCTGGACGTTGACGGCCGTTGGCCTGGTTCGCCCGCCTGGGTGGCCACCAAGCGCTTCTCCGGAAGTCTCGATGCGTCGCTTACCAAGGGGCAGTTCGTCGAGGTCGAAGGCAGCGCGCAGGCGTTGCGGGTATTCGGCCTGTTGAACTTCAACTCCATCGGCCGCCGCCTGCGCCTGGATTTCTCCGACCTGTTTGGCAAGGGGCTGAGCTATGACCGGGTCAAGGGCTTGCTGGTGGCGAGCAATGGCGTCTATGTAACGCGTGAGCCCATCGCCTTGACGGGACCTTCGAGCAACCTGGAACTGAACGGAACGCTGGACATGGTCACTGACCAGGTCGACGCCAAGCTGCTGGTGACGTTGCCGGTGACCAACAACCTGCCCATCGCCGCGCTGATTGTCGGCGCCCCGGCGGTGGGTGGGGCATTGTTTTTGATCGACAAACTGATCGGTGACCGCGTAGCGCGTTTTGCCAGCGTAAGATACGACGTCAAGGGGCCGTGGAAAGAGCCAAAGATCAGCTTCGACAAGCCGTTCTGA	MERLTRLLGTLTRWGLGLCALLLVVLALYVSLGRELVPLVAEYRSEVEARAGEALGMPVHVGSLEGGWNALAPIFAARDVVVGDGPNALHLDHVRAVPAVWDSLVARQVRIAHLEISGLKISLKEGADGKWALEGLPVRDDQPLDPQQLLNRMQMVSKLSVLDSQVTLQPLDHPPLSLTYVGLSLRTGASRQRLDARLTLPDGQPVAINLRTRIRASDWKNGVADAYLSLPQSDWSQWLPKRLTRQWNFSEIKAGGEFWLSWGAGTVQSAAVRLNAPQLQGAYADRKPVQIHNLALNGYFQRSSQGFIATFDTLAMSLGDTRWESRLQLQQTDASDKAEERWHVQADRLDLTPLTPLLNALAPLPEGVATAIDRLKVTGGLRNVLLDYRPHNTGDQKVSFATNLDAVGFNAYHGAPAARNVSGSLSGDLGGGELRMDSKDFSLHLDPIFAKPWQYLQANARLTWKLDKQGFTLIAPYLKVLGEEGRIAGDFLIRLHFDHSQEDYMDLRVGLVDGDGRYTGKYLPAVLSPALDEWLRTAIVKGAVDEGFFQYQGSLNKGAEDAARSISLFFKVHDAELAFQPGWPSVSKVSGDVFVEDSGVRIFASQGQLLGTQVKDVSVNIPHVPTGQNSHLLLDGGFAGGLGDGLKILQTAPIGTAETFAGWEGEGDLRGSVKLDIPLVKGEQPKILVDFSTDKARLKLSEPALELTQLKGDFRFDSSKGLSGKNIAARAFDRPVTAQIFAEGRTGALNTRVTASGRVEVKKLTDWLSVTQPLPVSGVIPYQLQVILDGADSQLSINSNLKGVAVDLPAPFGMAADAERDTVFRMTLQGPERRYWANYGDLASFTYAAPSGKTADGRGELLLGGGDAVLPGAKGLRLRGTLSELDVGPWQDLLGKYAGQDPGGSARQVLSGVDLKVGKLTAMGTTLDQASVQLDRKPDAWAMRLDSQQAKGSVNVPDAKAAPIGIKLDYVRLPAADPTVQADENAPDPLASVDPSKIPALDIAIDQLFQGPDLIGAWSLKVRPTGKGIALNDLDMGLKGMVLNGNGAWEGAPGSTSSWYKGRIKGKNLADVLKGWGFAPSVTSQEFRLDVDGRWPGSPAWVATKRFSGSLDASLTKGQFVEVEGSAQALRVFGLLNFNSIGRRLRLDFSDLFGKGLSYDRVKGLLVASNGVYVTREPIALTGPSSNLELNGTLDMVTDQVDAKLLVTLPVTNNLPIAALIVGAPAVGGALFLIDKLIGDRVARFASVRYDVKGPWKEPKISFDKPF				NA	NA	NA	NA	NA
D1-36_00879	864	nit1		Deaminated glutathione amidase	ATGCCAGTCGCCGTGATTCAAATGGTCAGCCAAAGCGATGTCCTCGCCAACCTGGCCCGCGCCCGTGTGCTGTTGGAACAGGCAGCGGCTGGCGGTGCGAGGCTGGCGGTGCTGCCGGAAAACTTCGCCGCCATGGGGCGGCGGGACGTTGCCGACATCGGTCGCGCCGAAGCCTTTGGTCAGGGACCGATCCTGCCTTGGTTGAAACAGGTCGCTCGCGACCTCAGGTTATGGATTGTCGCCGGCACGCTGCCATTACCGCCGGAGGACGAGCCCGAAGCCAGGGCTCATGCCTGTTCGTTGCTAGTGGACGACCAGGGCCAGATCGTGGCGCGTTACGACAAGCTGCACCTGTTTGACGTGGACGTGGCGGACAATCGTGGGCGCTACCGCGAATCCGATGACTATGCTTATGGTCGCAACGTGGTGGTCGCCGATACTCCCGTGGGCCGGGTGGGCCTGACGGTCTGTTACGACTTGCGTTTCCCGGAGCTCTACAGCGAGTTGCGAGCGGCCGGGGCTGAGTTGATCACCGCGCCTTCGGCCTTTACAGCAGTAACCGGCGCCGCCCATTGGGACGTATTGATTCGCGCCCGAGCCATCGAGACCCAGTGCTACCTGCTGGCGGCAGCCCAAGGCGGGACGCATCCGGGGCCAAGGGAAACCTTCGGCCACGCTGCAATTATCGACCCATGGGGGCGGGTGCTGGCGCAACAGGATCAAGGCGAGGCGGTGCTGCTGGCCGAGCGCGACAGCAGCGAACAGGCGTCCATCCGGGCGCGCATGCCGGTGGCGAGCCATCGGCGCTTTTTCTCGCAGGGCGCCCGACAGCGACCTGCCCAAGACGACGAATTCAAGGCGTAA	MPVAVIQMVSQSDVLANLARARVLLEQAAAGGARLAVLPENFAAMGRRDVADIGRAEAFGQGPILPWLKQVARDLRLWIVAGTLPLPPEDEPEARAHACSLLVDDQGQIVARYDKLHLFDVDVADNRGRYRESDDYAYGRNVVVADTPVGRVGLTVCYDLRFPELYSELRAAGAELITAPSAFTAVTGAAHWDVLIRARAIETQCYLLAAAQGGTHPGPRETFGHAAIIDPWGRVLAQQDQGEAVLLAERDSSEQASIRARMPVASHRRFFSQGARQRPAQDDEFKA	PGPT0000835_1178	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_3,PGPT0000835-nitA|nitB|nitR|nit1-K01501	NA	NA
D1-36_00880	1443	tldD	COG0312	Metalloprotease TldD	ATGAGCGGGTTGTTGTCCTCAGTCAGTGAACACCTTTTAGCCCCCGGTGGCGTGACCCTCGAAAGCCTGCAAGGCGTGCTGGGTGACCTGGCCGGCCCGGGCATCGATGCCGCCGACCTGTATTTCCAGGGGCAGATTTCCGAGTCCTGGTCGTTAGAAGACGGCATCGTCAAGGAAGGCAGTTTCAACCTTGACCAGGGCGTCGGCGTACGGGCCCAGTCCGGTGAAAAGACCGGTTTTGCCTACAGCAACGCCATCACCCTCGAAGCCCTCGGCGCCGCGGCCCGTGCCGCTCGTTCGATCTCGCGCGCCGGGCAAAACGGCACGGTCCAGGCGTTCAGCAGCCAGGACGTGGCGCAGCTGTATGCGCCGGATAATCCATTGGAGGTCATGAGTCGCGCCGAGAAAGTCGAGCTGCTCAAACGCATCGACGTTGCCACTCGCGCCCTCGATCCGCGGATCCAGCAGGTGTCGGTGAGCATGGCGGGCGTCTGGGAGCGAATCCTGGTGGCGTCCACCGATGGTGGCCTGGCGGCGGACGTCCGGCCCCTGGTGCGGTTCAATGTCAGCGTGATCGTCGAGCAGAACGGCCGGCGTGAGCGCGGCGGTCATGGCGGCGGCGGGCGCACCGACTATCGTTATTTCCTCAGCGAAGACCGCGCCATGGGCTACGCCCGCGAAGCCCTGCGCCAGGCGCTGGTCAATCTGGAAGCGATTCCGGCCCCGGCCGGCACGTTGCCGGTGGTGCTGGGCTCCGGCTGGTCCGGCGTGCTGCTGCATGAAGCGGTCGGCCACGGCCTGGAAGGCGATTTCAACCGCAAGGGCAGCTCTGCCTACAGTGGTCGCATGGGTGAAATGGTCGCCTCGAAACTCTGCACGATCGTCGACGACGGTACATTGGCCGGGCGTCGGGGCTCCCTGAGCGTTGATGACGAAGGCACCCCGACCGAGTGCACCACCTTGATCGAAAACGGCGTGCTCAAGGGCTACATGCAGGACAAGCTCAATGCTCGCCTGATGGGCGTCGCTCGCACCGGCAACGGTCGTCGCGAATCCTACGCGCACCTTCCGATGCCGCGCATGACCAATACCTACATGCTGGGCGGCCAGAGCGATCCGGCGGAAATCATCGCCTCGGTGAAAAAAGGCATCTATTGCGCCAACCTCGGCGGCGGCCAGGTGGACATCACCAGCGGCAAGTTCGTGTTTTCCACCAGCGAGGCCTACCTCATTGAAGACGGCAAGATCACCGCGCCGGTCAAGGGCGCGACCCTGATCGGCAACGGGCCGGAGGCGATGAGCAAAGTGTCGATGGTCGGTAATGACCTGTCGCTGGACAGTGGCGTGGGCACGTGTGGCAAAGACGGCCAGTCGGTGCCGGTGGGTGTCGGCCAGCCGACCTTGAAGATCGATGCGATCACCGTGGGTGGCACGGGCGCATGA	MSGLLSSVSEHLLAPGGVTLESLQGVLGDLAGPGIDAADLYFQGQISESWSLEDGIVKEGSFNLDQGVGVRAQSGEKTGFAYSNAITLEALGAAARAARSISRAGQNGTVQAFSSQDVAQLYAPDNPLEVMSRAEKVELLKRIDVATRALDPRIQQVSVSMAGVWERILVASTDGGLAADVRPLVRFNVSVIVEQNGRRERGGHGGGGRTDYRYFLSEDRAMGYAREALRQALVNLEAIPAPAGTLPVVLGSGWSGVLLHEAVGHGLEGDFNRKGSSAYSGRMGEMVASKLCTIVDDGTLAGRRGSLSVDDEGTPTECTTLIENGVLKGYMQDKLNARLMGVARTGNGRRESYAHLPMPRMTNTYMLGGQSDPAEIIASVKKGIYCANLGGGQVDITSGKFVFSTSEAYLIEDGKITAPVKGATLIGNGPEAMSKVSMVGNDLSLDSGVGTCGKDGQSVPVGVGQPTLKIDAITVGGTGA				NA	NA	NA	NA	NA
D1-36_00881	525			hypothetical protein	ATGGTTGATTCTTACGACGACTCCCTCTACGAGGGTGAAAAAAGCAAATCCCAGGTCAAACGCGAGCTGCATGCTCTGGTTGACCTCGGCGAGCGCCTGACAACACTCAAGCCTGACTTGCTGGCCAAACTGCCGTTGACCGACGCCTTGCGCCGGGCCCTGGCCGATGCGCCCAAGCACACCGCGAATATCGCGCGTAAACGGCACCTGCAGTTCATCGGCAAACTGATGCGCGACCAGGACACTGACGCGATCCTGGTTTTGCTAGACCAGCTCGATGCCTCCACCCGGCAGTACAACGAGCGCTTCCACAACCTGGAACGCTGGCGTGATCGCTTGATCGCTGGCGATGACGGCACCTTGGAAAAATTCGTCATCGACTACCCGGAGGCCGATCGCCAGCAATTGCGCTCCCTGATCCGTCAGGCCCAGCACGAACTGGCGCACAACAAGCCGCCGGCCTCGAGCCGTAAAATCTTCAAATACATCCGTGAGCTAGACGAGACTCAACGCGGCCTGCGCTGA	MVDSYDDSLYEGEKSKSQVKRELHALVDLGERLTTLKPDLLAKLPLTDALRRALADAPKHTANIARKRHLQFIGKLMRDQDTDAILVLLDQLDASTRQYNERFHNLERWRDRLIAGDDGTLEKFVIDYPEADRQQLRSLIRQAQHELAHNKPPASSRKIFKYIRELDETQRGLR				NA	NA	NA	NA	NA
D1-36_00882	1347	pmbA	COG0312	Metalloprotease PmbA	ATGAGTGCAGTTCAGAGCGTCGGTCCGCAGGCATTGCCGGCACTGCAGGAGCAAGTCGAGCAGATTCTCGCCGAGGCCAAGCGACAAGGTGCCAGCGCCTGTGAGGTGGCGGTATCGCTGGAGCAGGGATTGTCGACTTCGGTGCGCCAGCGCGAAGTGGAAACCGTTGAGTTCAATCGGGATCAGGGTTTCGGCATTACCTTGTACGTAGGCCAGCGCAAGGGATCGGCCAGCACTTCGGCCAGCGGGCCCGACGCCATTCGTGAAACGGTGGCCGCGGCGCTGGCGATCGCCAAGCACACGTCCGAGGATGACGCCTCGGGGTTGGCCGATGCCGCCCTTATGTGCAAGGAACTGAAGGATTTCGATCTGTTCCACGCCTGGGACATCACGCCCGAGCAAGCCATCGAACAGGCGCTGCGCTGTGAGGCGGCGGCATTCGATGCCGACCGCCGGATCAAGAATGCCGACGGTACGACGCTCAATACGCACCAGGGTTGCCGGGTTTATGGCAACAGCCATGGCTTTATCGGCGGTTACGCTTCGACCCGTCACAGCCTCAGTTGTGTGATGATCGCCGAGGCGGACGGGCAGATGCAGCGCGACTACTGGTATGACGTCAGTCGCCAGGGCACGTTGCTGGCGGACCCGGTGAGCATCGGCCAGAAAGCCGCACAACGGGCAGCCAGCCGCTTGGGCGCGCGGCCGGTGCCGACCTGTGAGGTGCCGGTGTTGTTTTCTGCCGAGCTGGCCGGTGGTCTGTTTGGCAGCTTCCTGTCGGCGGTGTCTGGCGGCAACTTGTACCGCAAGTCGTCGTTCCTGGAAGGCGCGCTGGGGCAGAAGCTGTTCCCGGAGTGGATGACCATTGACGAGCGTCCGCACCTGATGCAGGCCATGGGCAGCTCGGCATTCGACGGCGATGGCCTGGCCACTTACGCCAAGCCGTTCGTGGAAAACGGCGAGCTGGTGTCCTACATCCTTGGTACCTATTCGGGCCGCAAACTCGGCATGCCGAGCACCGCCAACGCTGGCGGTGTGCATAACCTTTTCGTTACCCATGGCGAAGAAGACCAGGCGGCATTGCTTCGGCGCATGGGCCGGGGGCTGTTGGTAACGGAGTTGATGGGCCATGGGCTGAACATGGTGACCGGGGATTATTCCCGTGGCGCGGCGGGTTTCTGGGTCGAGAATGGCGAGATCCAGTTCCCGGTTCAGGAAGTCACCATCGCCGGAAACATGCGTGACATGTTCAAGCAGATCGTGGCGGTGGGGAATGATTTGGAGCTGCGCAGCAACATCCGCACGGGCTCGGTGTTGATCGAGCGGATGACCGTGGCGGGTAGCTGA	MSAVQSVGPQALPALQEQVEQILAEAKRQGASACEVAVSLEQGLSTSVRQREVETVEFNRDQGFGITLYVGQRKGSASTSASGPDAIRETVAAALAIAKHTSEDDASGLADAALMCKELKDFDLFHAWDITPEQAIEQALRCEAAAFDADRRIKNADGTTLNTHQGCRVYGNSHGFIGGYASTRHSLSCVMIAEADGQMQRDYWYDVSRQGTLLADPVSIGQKAAQRAASRLGARPVPTCEVPVLFSAELAGGLFGSFLSAVSGGNLYRKSSFLEGALGQKLFPEWMTIDERPHLMQAMGSSAFDGDGLATYAKPFVENGELVSYILGTYSGRKLGMPSTANAGGVHNLFVTHGEEDQAALLRRMGRGLLVTELMGHGLNMVTGDYSRGAAGFWVENGEIQFPVQEVTIAGNMRDMFKQIVAVGNDLELRSNIRTGSVLIERMTVAGS				NA	NA	NA	NA	NA
D1-36_00883	276	ptsO	COG1925	Phosphocarrier protein NPr	ATGCCTGCTCGTGAAATTGAAATCATCAACAAGCTGGGTTTGCATGCCCGAGCGTCGGCGAAATTCGTAGGTGTGGCGGGTCAGTTTCCTGAGACCACGATCCGGGTCGGGCGCACGCCTGAGAGTACCGTCGATGGTAAAAGCATCATGGCGATGATGATGCTCGCCGCTGGCAAGGGCACCAAGATCCACTTGAGCACCGAGGGCGAACAGGCCCAGGAGGCGATGGATGCCTTGGTGGCGCTGATCAACAACTATTTCGACGAGGGGGAATAA	MPAREIEIINKLGLHARASAKFVGVAGQFPETTIRVGRTPESTVDGKSIMAMMMLAAGKGTKIHLSTEGEQAQEAMDALVALINNYFDEGE	PGPT0016875_959	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
D1-36_00884	858	rapZ	COG1660	RNase adapter protein RapZ	ATGCGCATGATCATCGTCAGTGGCCGCTCCGGCTCCGGTAAAAGTACCGCCCTCAATGTGCTCGAGGACAGCGGCTACTACTGCATCGACAACTTGCCGGCAGGCCTGCTTCCGGAGTTGGCCGAGCGCGCCCTGATCCACACCGAACTGGCGCAACCGCTGGTCGCCGTGTCGGTCGATGCCCGTAACCTGCCCAGCCACTTGTCGCGCTTCCCCGAACTGCTCGAGGAAGTGCGCAGCCGCCATATCCAATGCGATGTGCTCTACCTGGATGCCGACGAAGAAACCTTGCTCAAGCGTTTCTCCGAAACTCGCCGGCGCCATCCACTGAGCAATGCGAGCCGCTCCCTGGCCGAAGCGATCCATGACGAAAGCCAACTGCTCGGGCCCATCGCGGACCTGGCGGACCTCAAGCTCAACACCACGAACCTGAACCTGTATCAACTGCGCGACACCCTCAAGTTGCGCCTGCTGAACCAGCCAGAACCGGGTACGGCCTTTCTCGTCGAATCGTTCGGTTTCAAACGCGGAATGCCGGTAGATGCCGACCTGGTGTTCGATGTCCGCTGTTTACCCAACCCTTATTGGAAACCGGAACTGCGCGAGCAGTCCGGGCTGGACCAACCGGTAATCGACTACTTGGCCGCCCAGCCGGATGTCGAAGAGATGTACCAGGACATTTCCAGCTACCTGCTCAAATGGCTGCCCCGCTTTGCCGCTAGCAACCGCGCCTACGTCACGATCGCCATTGGCTGTACGGGTGGCCATCACCGCTCCGTCTACCTGACCGAACGCCTGGGTCAGCTCCTGCAACAATCCCTGAAGAACGTCCAGGTTCGCCACCGCGACCTCAGCTAA	MRMIIVSGRSGSGKSTALNVLEDSGYYCIDNLPAGLLPELAERALIHTELAQPLVAVSVDARNLPSHLSRFPELLEEVRSRHIQCDVLYLDADEETLLKRFSETRRRHPLSNASRSLAEAIHDESQLLGPIADLADLKLNTTNLNLYQLRDTLKLRLLNQPEPGTAFLVESFGFKRGMPVDADLVFDVRCLPNPYWKPELREQSGLDQPVIDYLAAQPDVEEMYQDISSYLLKWLPRFAASNRAYVTIAIGCTGGHHRSVYLTERLGQLLQQSLKNVQVRHRDLS				NA	NA	NA	NA	NA
D1-36_00885	465	ptsN	COG1762	Nitrogen regulatory protein	ATGATCCGACTAGAAACCATCCTGACCCCCGGCCGTTCCCAGGTGAACGCGCCGGGTGGCAGTAAGAAGAAAGCCCTCGAACAAATTGCCAACCTGATCCACCGCGAAGTGCCGGATCTGGAAATGCAGGACGTCTTCGAGGCCCTTATCGCCCGTGAAAAACTAGGCTCCACCGGTTTTGGCAACGGCATCGCCATTCCACATTGCCGCCTCAAAGGCTGTACGTCGCCCATCAGCGCGCTACTGCACCTTGAAGCACCCATAGATTTCGACGCCATCGACGGCGCCCCGGTCGACCTGCTGTTCGTATTGCTGGTTCCGGAAGCGGCGACCGATGCGCACCTTGAGCTGCTGCGCCAGATCGCCAGCATGCTGGACCGCAAGGAAGTGCGCGAAAGACTGCGCAGCGCAACGAGTAACGACGCTTTGTATCAGGTTGTCCTGGACGAGCAGAACGGTCATTAA	MIRLETILTPGRSQVNAPGGSKKKALEQIANLIHREVPDLEMQDVFEALIAREKLGSTGFGNGIAIPHCRLKGCTSPISALLHLEAPIDFDAIDGAPVDLLFVLLVPEAATDAHLELLRQIASMLDRKEVRERLRSATSNDALYQVVLDEQNGH	PGPT0000135_1418	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-ATMOSHPHERIC_NITROGEN_FIXATION	N-FIX-OTHER_NITROGEN_FIXATION_REGULATORS,PGPT0000135-ptsN-K02806	NA	NA
D1-36_00886	309	hpf	COG1544	Ribosome hibernation promoting factor	ATGCAAGTCAACATCAGTGGACACCAACTGGAAGTGACCGAACCCCTGCGCACCTACATCGGCGAAAAACTCGACCGATTGGAGAGGCATTTCGACAAGATCACCAACGTGCAAGTCATTCTGAACGTCGAAAAGCTGAAGCAGAAGATCGAAGCCACACTGCATATTCCCGGCGGAGAAGTGGTTGCCAATGCGGAGCATGATGACATGTATGCCGCGATTGACCTGCTGACCGACAAGCTGGATCGCCAACTCAAAAAGCATAAGGAAAAGACCCAGAGCCTCCTCCAGGGCGCAACCGGTCGTTAA	MQVNISGHQLEVTEPLRTYIGEKLDRLERHFDKITNVQVILNVEKLKQKIEATLHIPGGEVVANAEHDDMYAAIDLLTDKLDRQLKKHKEKTQSLLQGATGR				NA	NA	NA	NA	NA
D1-36_00887	1473	rpoN	COG1508	RNA polymerase sigma-54 factor	ATGGGCCAGCAGCTGACGATGACACCGCAGCTGCAACAGGCCATCCGCCTGCTCCAATTGTCGACCCTGGACCTGCAACAGGAAATCCAAGAGGCCCTGGAATCCAATCCGATGCTCGAACGCCAGGAAGAGGGCGACGACTTCGACAACACCGATCCACTGGCCGACAATGTCGAGCAGAAAACCACCCCGGAAATCCAGGAACCAACCTACCAACAGGAAGCCGCCCCCACGGTGGACAACCTTGAGGATGGCGAATGGAACGAGCGCATTCCCAACGACCTGCCCGTGGACACGGCTTGGGAAGACGTCTATCAGACCAGCGCCAGCAGCCTGCCGAGCGGCGATGACGACGAATGGGATTTCACTACCCGCACGTCCGCCGGCGAGAGCTTGCAGAGTCATCTGCTCTGGCAATTGAACCTGGCGCCGATGTCCGATACCGATCGCCTGATCGCCGTGACCCTGATCGATTGCATCAACAACCAGGGTTACCTGGACGAGACGCTGGAAGAAATCCTCGAAGCCTTCGACCCCGAGCTCGACATCGAGCTGGACGAGATCGAAGCCGTCTTGCATCGCATCCAGCAGTTCGAACCCGCCGGCATCGGTGCTCGCAACCTGGGCGAATGCCTGTTGCTGCAGCTGCGCCAATTGCCCGCCAAAACCCCGTGGCTGGCCGAAGCCAAGCGCCTGGTGACCGATTACATCGACCTTTTGGGCGGACGCGACTACAGCCAACTGATGCGTCGCATGAAGCTCAAGGAAGATGAACTGCGCCAGGTCATCGAGCTGGTGCAAAGCCTCAACCCGCGTCCTGGCTCACAGATCGAATCCACCGAGCCCGAATACGTCGTCCCCGACGTAATCGTGCGCAAGCACAACGATCGCTGGCTGGTGGAGCTCAACCAGGAGTCGATGCCCAAGCTGCGCGTCAACGCCCAGTACGCAGGTTTCGTCAAACGCGCCGATACCAGCGCCGACAACACCTTCATGCGCAACCAGTTGCAGGAAGCGCGCTGGTTCATCAAGAGCCTGCAGAGCCGCAACGAAACCCTGATGAAAGTCGCCACCCAGATCGTCGAGCATCAGCGCGGCTTCCTGGAATATGGCGACGAAGCGATGAAGCCGTTGGTCCTGCATGACATTGCCGAGGCGGTGGGCATGCACGAATCGACGATTTCACGGGTGACCACCCAGAAATTCATGCATACCCCTCGGGGCATCTATGAATTGAAATACTTTTTCTCCAGCCACGTCAGCACCTCCGAAGGCGGCGAATGCTCGTCCACGGCCATCCGCGCGATCATCAAAAAACTGGTCGCGGCGGAAAATCAGAAAAAGCCGTTGAGTGACAGCAAGATCGCTGGTTTACTGGAGGCACAAGGCATTCAGGTGGCCCGCCGTACCGTCGCCAAATACCGCGAATCCCTGGGGATCGCACCTTCGAGCGAACGCAAGCGGTTGATGTAA	MGQQLTMTPQLQQAIRLLQLSTLDLQQEIQEALESNPMLERQEEGDDFDNTDPLADNVEQKTTPEIQEPTYQQEAAPTVDNLEDGEWNERIPNDLPVDTAWEDVYQTSASSLPSGDDDEWDFTTRTSAGESLQSHLLWQLNLAPMSDTDRLIAVTLIDCINNQGYLDETLEEILEAFDPELDIELDEIEAVLHRIQQFEPAGIGARNLGECLLLQLRQLPAKTPWLAEAKRLVTDYIDLLGGRDYSQLMRRMKLKEDELRQVIELVQSLNPRPGSQIESTEPEYVVPDVIVRKHNDRWLVELNQESMPKLRVNAQYAGFVKRADTSADNTFMRNQLQEARWFIKSLQSRNETLMKVATQIVEHQRGFLEYGDEAMKPLVLHDIAEAVGMHESTISRVTTQKFMHTPRGIYELKYFFSSHVSTSEGGECSSTAIRAIIKKLVAAENQKKPLSDSKIAGLLEAQGIQVARRTVAKYRESLGIAPSSERKRLM	PGPT0000795_766	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000795-ntrA|rpoN-K03092	NA	NA
D1-36_00888	726	lptB_2	COG1137	Lipopolysaccharide export system ATP-binding protein LptB	ATGGCAACTCTGAAAGCCCAGCACCTGGCCAAGAGCTACAAGAGCCGCCAGGTTGTGCGCGATGTCAGCCTGTCCATCGACAGCGGCCAGATCGTTGGCTTGCTCGGCCCCAACGGCGCGGGCAAGACAACCTGTTTCTACATGATCGTCGGGCTGGTTCAGGCCGACCAGGGCCGCGTACTGATCGACGACCTGGATGTCAGCCACCAGCCGATGCACGGCCGGGCGAAGGCCGGTATCGGTTATCTGCCGCAAGAAGCGTCGATCTTCCGCAAACTGTCGGTGGCCGACAACATCATGGCCATCCTCGAGACCCGCAAGGAGCTCGACAAGGCCGGCCGCCGTCAGGAATTGGAGAGCTTGCTGCAGGAATTCCATATCAGCCACATTCGCGACAACCTGGGCATGAGCCTGTCCGGCGGCGAACGTCGTCGCGTGGAAATTGCCCGCGCCCTGGCTACCGCGCCGAAATTCATTCTGCTCGACGAACCCTTCGCCGGCGTAGACCCGATTTCGGTGGGCGACATCAAGCAGATCATCCATCATCTCAAGGCCAAGGGGATCGGCGTGCTGATCACCGACCACAACGTGCGCGAGACACTGGACATCTGCGAGACCGCCTATATCGTCAACGACGGCCAGTTGATCGCCGAGGGCGACTCGGCCACCATCCTGGCCAACGAGCTGGTCAAGGAAGTGTATCTGGGCCACGAGTTCCGCCTTTAA	MATLKAQHLAKSYKSRQVVRDVSLSIDSGQIVGLLGPNGAGKTTCFYMIVGLVQADQGRVLIDDLDVSHQPMHGRAKAGIGYLPQEASIFRKLSVADNIMAILETRKELDKAGRRQELESLLQEFHISHIRDNLGMSLSGGERRRVEIARALATAPKFILLDEPFAGVDPISVGDIKQIIHHLKAKGIGVLITDHNVRETLDICETAYIVNDGQLIAEGDSATILANELVKEVYLGHEFRL	PGPT0023300_2396	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_TRANSPORT,PGPT0023300-lptB-K06861	NA	NA
D1-36_00889	549	lptA	COG1934	Lipopolysaccharide export system protein LptA	ATGAAGCTCGCTAAAACCCTCCCTATTTTGCTCAGTCTGGGCGCTGCACTGGGAAGCGCGAGCGCCTGGGCCCTTCCCAACGACCGCGACCAGCCTATCCGCATCCAGGCCGACGACGCGCAACTGGACGACAAGAACGGTGTCGCCACCTATAAGGGTGACGTGATCATTACCCAGGGCTCGATGAAGGTGACCGGCAATACCGTCACCATCACCCGCACCCAGTCCGGCGATATCGACGTAGTGACATCCGTGGGCAACCTGGCGTACTTCGAACAGTTGCAGACCGCAGGCGACACCAAGCCTGTGCAGGGTTACGGGGTCACCATCCAGTATCACGCCGCCCAGGACCGCGTTGTATTGATCGACCGCGCCAAGGTCGTCGACAAGGACAACAACGTGACCCAAGGCGAGAAGATCGTCTACGACACGGTCAAGAAGCTGGCCAGCGCCGGCCGTGCCACTGGCAGCAAGGTGACCGAACAGCGTCCGCGGATCGACATGGTGATCCAGCCGAAAAAGAAAACCGACGAGCAGAAGGCGCAGTAA	MKLAKTLPILLSLGAALGSASAWALPNDRDQPIRIQADDAQLDDKNGVATYKGDVIITQGSMKVTGNTVTITRTQSGDIDVVTSVGNLAYFEQLQTAGDTKPVQGYGVTIQYHAAQDRVVLIDRAKVVDKDNNVTQGEKIVYDTVKKLASAGRATGSKVTEQRPRIDMVIQPKKKTDEQKAQ	PGPT0023301_1210	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_TRANSPORT,PGPT0023301-lptA|yhbN-K09774	NA	NA
D1-36_00890	573	lptC		Lipopolysaccharide export system protein LptC	ATGCTAAGCAAGAAGATTCGCACCATTCTGGTGTTCAGCTGCATCGCCGCGATTTTCGCTGCGGTGGGCTATTGGAACATCAGCCCGGAACGCTTCCTTGACCAACCCGCGGCCAAGGTCGAGGAAAATGACATCGACTGGTATGCGACCAATACGCATACCCTGCAATACCTGCCGGACGGAAAGGTGCAGTACGAAATGACGGCCGACAAGGTCGATCATGTAAAGGCCAGCGACGTCACGCTGGTGACCAAACCGGACCTGAACATGTTCCGGGGTACCGAATTTCCATGGCACGTGCAGAGCGAACGGGCCGAGGTCAATCCCGGCGGCACCGAAGTCGAACTGATCGACTCGGTGCGCATCGCACGGACCGATGAAAAGAACCGTACGACCATCATCACCAGCAGTCGCATGACGGTCTTCCCGCAGCGAGAATATGCGCAGACCGAGCAACCCGTTAGAATCGACGGCGCTGGCGGCGTGTCGACCGGCGTGGGAATGAAGGCGTATTTGAAGGAAAGCAGGATACACCTGCTATCGAAAGTAAGAGGACAGTATGAAGCTCGCTAA	MLSKKIRTILVFSCIAAIFAAVGYWNISPERFLDQPAAKVEENDIDWYATNTHTLQYLPDGKVQYEMTADKVDHVKASDVTLVTKPDLNMFRGTEFPWHVQSERAEVNPGGTEVELIDSVRIARTDEKNRTTIITSSRMTVFPQREYAQTEQPVRIDGAGGVSTGVGMKAYLKESRIHLLSKVRGQYEAR	PGPT0023299_1364	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_TRANSPORT,PGPT0023299-lptC|yrbK-K11719	NA	NA
D1-36_00891	525	kdsC	COG1778	3-deoxy-D-manno-octulosonate 8-phosphate phosphatase KdsC	ATGACGACCGACCTGCTGCAACGGGGCAAGACCATCAAGCTCGCCGTATTCGACGTCGACGGTGTACTCACCGACGGCCGCCTTTATTTCCTCGAAGACGGCAGCGAATTCAAGACCTTCAACACACTCGACGGCCAAGGCATCAAGATGCTGATGGCCTCGGGCGTGCAAACGGCCATTATCAGCGGCCGCAAGACCCCGGTGGTCGAACGGCGGGCGAAGAACCTGGGCATCCCCCACCTTTACCAGGGCCGCGAAGACAAACTGGTGGTTCTGGACGAGCTCCTTGGCCAACTCAATCTAAGCTATGAACAGGTCGCCTACCTGGGCGACGATCTGCCGGACCTGCCGGTCATCCGTCGGGTCGGCCTGGGCATGGCAGTGGCCAACGCAGCGGCGTTCGTGCGCGAGCACGCCCATGGCGTCACCACGGCAAGGGGCGGCGAAGGTGCAGCCCGTGAATTCTGTGAACTGATCCTGCGTGCCCAGGGCCACCTCGAAGCGGCCAACGCCGCATACTTGTGA	MTTDLLQRGKTIKLAVFDVDGVLTDGRLYFLEDGSEFKTFNTLDGQGIKMLMASGVQTAIISGRKTPVVERRAKNLGIPHLYQGREDKLVVLDELLGQLNLSYEQVAYLGDDLPDLPVIRRVGLGMAVANAAAFVREHAHGVTTARGGEGAAREFCELILRAQGHLEAANAAYL	PGPT0023070_1605	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-8-AMINO-3|8-DIDEOXY_D_MANNO-OCTULOSONIC_ACID_MODIFICATION,PGPT0023070-kdsC-K03270	NA	NA
D1-36_00892	975	kdsD	COG0517	Arabinose 5-phosphate isomerase KdsD	ATGAGCCAATCCAGCGACCTGATTCAATCGGCACAACGTACCATCCGCCTCGAGCTCGAAGCCGTACAAGGCTTACTGGCCCACATCGACGCTGATTTCGTACGTGCCTGCGAGATGATTCTGGCCAGCAAGGGCCGCGTGGTCGTGGTCGGCATGGGTAAGTCCGGCCACATCGGCAACAAGATCGCCGCCACCCTGGCGAGCACGGGCACGACGGCATTTTTTGTCCACCCGGCCGAAGCCAGCCACGGCGACATGGGCATGATTACCCGGGACGACGTCATCTTGGCCCTGTCCAACTCCGGCTCGACCAATGAAATCCTCACGTTGCTGCCGCTGATCAAGCGCCTGGGCATCCAGATGATCAGCATCACCGGCAACCCGGACTCCCCGTTGGCCAAGGCCGCCGAGGTGAACCTCAATGTCCATGTCGAGCACGAAGCCTGCCCGCTGAACCTGGCCCCGACCTCCTCCACCACCGCGGCACTGGTCATGGGCGATGCCCTGGCCGTGGCCCTGCTGGAAGCCCGTGGCTTCACGGCGGAGGATTTCGCCTTTTCCCATCCCGGTGGCGCGCTGGGCCGTCGCCTGCTGCTGAAAGTCGAAAACGTGATGCACGCCGGAGAAGAGCTGCCGCAGGTGCAACGCGGCACGCTGCTCAAAGATGCGCTGATGGAAATGACCCGCAAGGGCCTGGGCATGACCGTGATCCTCGAAGCCGACGGCAAGCTCGCCGGGATTTTCACAGACGGCGACCTGCGCCGCACCCTCGACCGCGCGATCGACATTCGCAACGCAACCATCGACGAAGTCATGACGCTGCACGGCAAGACCGCCCGCGCCGACATGCTTGCCGCCGAAGCCCTTAAAATCATGGAAGACCACAGGATAAACGCACTGGTGGTAGTGGATGACGAAGACCGCCCGATCGGCGCCTTCAACCTGTCCGACCTGCTGCGTGCTGGAGTAATGTAA	MSQSSDLIQSAQRTIRLELEAVQGLLAHIDADFVRACEMILASKGRVVVVGMGKSGHIGNKIAATLASTGTTAFFVHPAEASHGDMGMITRDDVILALSNSGSTNEILTLLPLIKRLGIQMISITGNPDSPLAKAAEVNLNVHVEHEACPLNLAPTSSTTAALVMGDALAVALLEARGFTAEDFAFSHPGGALGRRLLLKVENVMHAGEELPQVQRGTLLKDALMEMTRKGLGMTVILEADGKLAGIFTDGDLRRTLDRAIDIRNATIDEVMTLHGKTARADMLAAEALKIMEDHRINALVVVDDEDRPIGAFNLSDLLRAGVM	PGPT0023075_1858	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-8-AMINO-3|8-DIDEOXY_D_MANNO-OCTULOSONIC_ACID_MODIFICATION,PGPT0023075-kdsD|kpsF-K06041	NA	NA
D1-36_00893	810	mlaF	COG1127	Intermembrane phospholipid transport system ATP-binding protein MlaF	ATGAGTGCCGACAACGCCTACGCGGTCGAGCTGAAGGGACTGTCCTTCAAGCGAGGGACGCGCAGCATTTTCAATGACATCGATATTCGCATCCCGCGCGGCAAGGTGACCGGCATCATGGGGCCTTCCGGGTGCGGAAAGACCACGCTGCTGCGGCTGATGGGGGCACAACTGCGCCCTAGCGCCGGCGAAGTCTGGGTCAATGGCGAGAACCTTCCAAAGTTGTCGCGCAGCGATCTGTTCGATGCGCGCAAGCATATGGGGGTGCTGTTCCAGAGCGGCGCGCTGTTTACCGACCTCGATGTGTTCGAGAACGTGGCGTTTCCCCTGCGGGTCCATACCGAACTGCCGGACGAAATGATCCGCGACATCGTTTTGCTCAAGCTGCAGGCCGTCGGGCTGCGCGGGGCTCTGGATTTGATGCCGGATGAACTGTCCGGTGGCATGAAGCGTCGCGTGGCGTTGGCGCGGGCCATCGCCCTCGATCCAAAAATCCTCATGTACGACGAGCCCTTTGTTGGCCAGGACCCCATTGCCATGGGCGTGCTCGTGCGGTTGATCCGCCTGCTCAATGACGCCCTGGGCATCACCAGCATCGTGGTGTCCCACGACCTGGCCGAAACCGCGAGCATCGCCGACTACATCTATGTCGTTGGCGATGGCCAGGTGCTGGGGCAGGGTACGCCCAAGGAATTGAAGGATTCGGACAACCCACGCATTCGCCAATTCATGAAAGGTGACCCGGACGGTCCGGTGGCGTTTCATTTTCCGGCCACGGATTACCGTACCGATCTGCTGGGGAAGCGCTGA	MSADNAYAVELKGLSFKRGTRSIFNDIDIRIPRGKVTGIMGPSGCGKTTLLRLMGAQLRPSAGEVWVNGENLPKLSRSDLFDARKHMGVLFQSGALFTDLDVFENVAFPLRVHTELPDEMIRDIVLLKLQAVGLRGALDLMPDELSGGMKRRVALARAIALDPKILMYDEPFVGQDPIAMGVLVRLIRLLNDALGITSIVVSHDLAETASIADYIYVVGDGQVLGQGTPKELKDSDNPRIRQFMKGDPDGPVAFHFPATDYRTDLLGKR	PGPT0007015_1866	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_PHOSPHOLIPID|CHOLESTEROL_TRANSPORT,PGPT0007015-mlaF|linL|mkl-K02065	NA	NA
D1-36_00894	798	mlaE	COG0767	Intermembrane phospholipid transport system permease protein MlaE	ATGCGCAAGAAATCATTAATAGAAAGAATTCGCCTGTTCGGCCGTTCCGGCATCGACGTGCTGGCCGTGCTGGGGCGTTCCACGCTGTTCCTGATGCACGCACTGCTCGGACGCAATTCGACCGGAGGCGGTTTTGGCCTGCTGGTCAAGCAATTGCATTCGGTGGGGGTGATGTCCCTGGTGATCATCGTCGTCTCGGGCATCTTCATTGGCATGGTACTGGCGCTCCAGGGCTTCAGCATCCTGTCCAGCTATGGATCGGAGCAAGCGGTCGGGCAAATGGTCGCGCTGACCTTGTTGCGCGAGCTCGGGCCCGTGGTGACGGCGCTGCTGTTCGCTGGGCGTGCCGGGTCGGCGTTGACCGCTGAAATCGGCAACATGAAGTCCACCGAGCAGTTGTCCAGCCTGGAAATGATTGGTGTCGACCCACTCAAGTACATCATTGCCCCGCGCCTGTGGGCCGGCTTCATCTCGCTGCCGGTGCTGGCGATGATCTTCAGTGTCGTGGGGATCTGGGGAGGCTCCTGGGTGGCCGTCGATTGGCTGGGGGTCTATGAAGGTTCCTACTGGTCCAACATGCAGAACAGCGTCGACTTTCTCGACGATGTGCTCAACGGTGTGATCAAGAGTGCCGTATTCGCTTTCGTGGTCACCTGGATCGCCGTGTTCCAAGGTTATGACTGTGAGCCCACGTCAGAGGGGATCAGCCGTGCCACAACCAAGACCGTGGTCTATGCCTCGTTGGCCGTCCTGGGCCTTGACTTTATTCTGACCGCCTTGATGTTTGGAGATTTCTGA	MRKKSLIERIRLFGRSGIDVLAVLGRSTLFLMHALLGRNSTGGGFGLLVKQLHSVGVMSLVIIVVSGIFIGMVLALQGFSILSSYGSEQAVGQMVALTLLRELGPVVTALLFAGRAGSALTAEIGNMKSTEQLSSLEMIGVDPLKYIIAPRLWAGFISLPVLAMIFSVVGIWGGSWVAVDWLGVYEGSYWSNMQNSVDFLDDVLNGVIKSAVFAFVVTWIAVFQGYDCEPTSEGISRATTKTVVYASLAVLGLDFILTALMFGDF	PGPT0007010_3340	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_PHOSPHOLIPID|CHOLESTEROL_TRANSPORT,PGPT0007010-mlaE|linK-K02066	NA	NA
D1-36_00895	468	mlaD	COG1463	Intermembrane phospholipid transport system binding protein MlaD	ATGCAAAACCGCACCCTGGAAATCGGTGTCGGCCTTTTCTTGCTGGCTGGCATCCTGGCTTTGCTGCTGCTGGCCCTGCGAGTCAGTGGACTGGCGCCGACCGCGAGCACCGATACTTATAAACTTTATGCTTATTTTGACAATATCGCCGGTTTGACGGTCAGAGCCAAGGTAACCATGGCCGGTGTCACCATCGGCAAGGTCACGGCAATCGATCTGGACCGCGACAGTTTCACCGGTCGGGTAACGCTGCAACTGGAAAAGCGGGTGGATAACCTGCCGACTGACTCCACTGCATCGATTCTCACGGCTGGGCTGTTGGGCGAGAAATACATCGGTATCAGCGTGGGTGGGGAAGATGCCTTGCTCAAGGACGGTGGGACCATCCACGATACACAGTCGTCCCTGGTGCTCGAGGACCTGATCGGTAAATTCCTGCTCAATACCGTGAACAAAGACGCCAAATGA	MQNRTLEIGVGLFLLAGILALLLLALRVSGLAPTASTDTYKLYAYFDNIAGLTVRAKVTMAGVTIGKVTAIDLDRDSFTGRVTLQLEKRVDNLPTDSTASILTAGLLGEKYIGISVGGEDALLKDGGTIHDTQSSLVLEDLIGKFLLNTVNKDAK	PGPT0007005_9558	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_PHOSPHOLIPID|CHOLESTEROL_TRANSPORT,PGPT0007005-mlaD|linM-K02067	NA	NA
D1-36_00896	654			hypothetical protein	ATGATCTCTATCCTGCGACGCAGCCTGCTGGTCTTGCTGGCGGCCCTGCCGCTGATGGGCAATGCCGTGGCGGCGCCTTCGGCGCACGACATCATCAAGACCACCACGGATCAACTTCTGGCGGATCTCTCTGCCAATAAGGAAAAGTACAAGCAGGACCCGGGTGCGTTCTATGAATCCCTGAACCGTATCGTCGGGCCGGTCGTGGATGCCGATGGCATTTCCAAGAGCATCATGACCGTCAAATACTCGCGCAAGGCTACGCCCGAGCAGATGACCCGCTTTCAGGAAAACTTCAAGCGCAGCCTGTTCCAGTTCTATGGCAACGCCTTGCTCGAGTACAACAACCAGGGCATCACGGTCGATCCGGCCAAGGATGAGTCAGGTGATCGCACCAGCGTCGGCATGACGGTCAAGGGCAATAACGGCGCCGTATATCCGGTGTCCTACACGCTCGAGAAAATCAGCGGCGAGTGGAAAGTACGCAACGTGATCATCAACGGCATCAACATCGGCAAGTTGTTCCGCGATCAATTCGCCGATGCGATGCAGCGCAACGGCAACGACCTGAACAAGACCATCGACGGTTGGGCGGGTGAAGTCGCCAAGGCGAAGGAAGTTGCCGAAGATGCCCAAGAGAAGCAGCAACAATGA	MISILRRSLLVLLAALPLMGNAVAAPSAHDIIKTTTDQLLADLSANKEKYKQDPGAFYESLNRIVGPVVDADGISKSIMTVKYSRKATPEQMTRFQENFKRSLFQFYGNALLEYNNQGITVDPAKDESGDRTSVGMTVKGNNGAVYPVSYTLEKISGEWKVRNVIINGINIGKLFRDQFADAMQRNGNDLNKTIDGWAGEVAKAKEVAEDAQEKQQQ	PGPT0007670_447	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_PHOSPHOLIPID|CHOLESTEROL_TRANSPORT,PGPT0007670-mlaC-K07323	NA	NA
D1-36_00897	318			hypothetical protein	ATGAATGCGTCGGTGAGTGAGTCGGCCATTCGCCTGGGCGAGTCTGGCGAGTTGCTGCTCAGTGGCGTGCTGGATTACCGCACCGGCCCGGGTTTGCGCAAGCAGGGCCAGGCGTTGATCCAATCCGCCAAGGCCGCCGAGTTGGTCATTGACTGCTCGGCGGTGGAGAAGTCCAGCAGCGTCGGTCTGTCCCTCCTGCTGTGCTTCATGCGCGACGCCAAGGCCGCCGGCAAGACGTGGAGCATCCGTGGGATGCCTGAGGACATGCGCGAAATAGCCCAGGTCAGCGAATTGACCGAGCTGTTGGAGCACCCCTGA	MNASVSESAIRLGESGELLLSGVLDYRTGPGLRKQGQALIQSAKAAELVIDCSAVEKSSSVGLSLLLCFMRDAKAAGKTWSIRGMPEDMREIAQVSELTELLEHP	PGPT0007675_463	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_PHOSPHOLIPID|CHOLESTEROL_TRANSPORT,PGPT0007675-mlaB-K07122	NA	NA
D1-36_00898	240		COG5007	putative protein	ATGCAGGCTGTAGAAGTGAAGAGCTTCCTTGAAGGAAAGCTGCCTGGTACGCAGGTGGAAGTTGAAGGCGAAGGCTGCAATTTCCAGCTGAACGTGATCAGCGATGAACTGGCGGCGTTGAGCCCGGTGAAGCGTCAGCAGAGCATCTATGCCCATTTGAACCCATGGATCGCCGATGGCAGTATCCACGCGGTCACTATGAAATTTTTCAGCCGCGCGGCCTGGGCCGAGCGCACCTGA	MQAVEVKSFLEGKLPGTQVEVEGEGCNFQLNVISDELAALSPVKRQQSIYAHLNPWIADGSIHAVTMKFFSRAAWAERT	PGPT0013203_97	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-CHAPERONES,PGPT0013203-grxD-K07390	NA	NA
D1-36_00899	1266	murA	COG0766	UDP-N-acetylglucosamine 1-carboxyvinyltransferase	ATGGATAAATTGATTATTACCGGCGGCGTTCGCCTCGATGGCGAAATCCGTATTTCCGGAGCAAAGAACTCCGCGCTGCCGATCCTGGCCGCGACGCTGCTGTGCGATGGCCCTGTGACCGTGGCCAACCTGCCGCACCTGCACGACATCACCACGATGATCGAGCTGTTCGGCCGCATGGGCATCGAACCTGTGATCGACGAGAAACTCGCCGTCGAAATCGACCCACGTACCATCAAGACCCTGGTCGCGCCGTACGAACTGGTCAAGACCATGCGTGCCTCGATCCTGGTGCTCGGCCCGATGGTCGCCCGTTTCGGTGAAGCCGAAGTGGCGCTCCCTGGCGGTTGCGCCATCGGTTCGCGTCCAGTGGACCTGCACATCCGTGGCCTGGAGGCCATGGGCGCGGTGATCGATGTCGAGGGCGGCTACATCAAGGCCAAGGCCCCTGAAGGGGGCCTGCGTGGCGCGCATTTCTTCTTCGATACCGTCAGCGTGACCGGGACCGAGAACATCATGATGGCCGCCGCATTGGCCAAGGGCCGCAGCGTGCTGCAAAACGCCGCTCGCGAGCCCGAGGTGGTGGACCTGGCGAACTTCCTGATCGCCATGGGCGCCAAGATCAGCGGCGCTGGCACCGACACCATCACCATCGATGGCGTCGAGCGACTGCACTCGGCCACTTACAAAGTGATGCCGGACCGTATTGAAACGGGCACCTACCTGGTTGCCGCCGCCGTCACCGGCGGCCGCGTCAAGGTCAAGGACACCGATCCGACCATCCTTGAAGCTGTGCTGGAAAAACTCAAGGAAGCTGGCGCCGAAGTCACGTGCGGCGAAGACTGGATCGAAGTGAACATGCACGGCAAGCGGCCGAAAGCCGTCAACGTGCGGACCGCTCCATACCCAGCGTTCCCGACCGACATGCAGGCGCAGTTCATCTCCCTCAACGCCATTGCCGAAGGCACGGGCGCGGTGATCGAGACGATCTTCGAAAACCGCTTCATGCACGTCTATGAGCTGCACCGCATGGGCGCCAAGATCCAGGTCGAAGGCAACACCGCCATCGTCACCGGCGCCGAGAAACTCAAGGGCGCGCCGGTCATGGCAACCGACCTGCGGGCCTCGGCCAGCCTGGTGATCTCGGCCCTGATCGCCGAGGGCGATACCCTGATCGACCGCATCTACCACATCGACCGTGGCTACGAGTGCATCGAAGAGAAACTGCAGATGCTCGGCGCCAAGATCCGTCGCGTGCCGGGCTAG	MDKLIITGGVRLDGEIRISGAKNSALPILAATLLCDGPVTVANLPHLHDITTMIELFGRMGIEPVIDEKLAVEIDPRTIKTLVAPYELVKTMRASILVLGPMVARFGEAEVALPGGCAIGSRPVDLHIRGLEAMGAVIDVEGGYIKAKAPEGGLRGAHFFFDTVSVTGTENIMMAAALAKGRSVLQNAAREPEVVDLANFLIAMGAKISGAGTDTITIDGVERLHSATYKVMPDRIETGTYLVAAAVTGGRVKVKDTDPTILEAVLEKLKEAGAEVTCGEDWIEVNMHGKRPKAVNVRTAPYPAFPTDMQAQFISLNAIAEGTGAVIETIFENRFMHVYELHRMGAKIQVEGNTAIVTGAEKLKGAPVMATDLRASASLVISALIAEGDTLIDRIYHIDRGYECIEEKLQMLGAKIRRVPG	PGPT0024090_4077	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLGLUCOSAMINE_MODIFICATION,PGPT0024090-murA-K00790	NA	NA
D1-36_00900	636	hisG	COG0040	ATP phosphoribosyltransferase	ATGTTGACCATCGCACTGTCCAAGGGCCGCATCCTTGACGACACCCTGCCGCTTCTGGCTGAAGCGGGCATTGTGCCGACCGAGAATCCGGACAAGAGCCGCAAGCTGATCATCCCCACGACCCAGGCCGACGTGCGCTTGTTGATCGTGCGCGCCACCGATGTGCCGACGTACGTGGAGCATGGCGCCGCCGACCTGGGCGTTGCCGGCAAGGACGTACTGATGGAATACGGCGGCCAGGGTTTGTACGAGCCGCTGGACCTGCGCATCGCTCGCTGCAAGCTGATGACCGCTGGCAAGGTCGGCGCGCCCGAGCCCAAAGGGCGCCTGCGGGTCGCGACCAAGTTCGTCAACGTTGCCAAGCGCTACTACGCCGAACAAGGCCGCCAGGTCGACATCATCAAGCTCTACGGCTCGATGGAGCTGGCGCCGTTGATCGGCCTGGCGGACAAGATCATCGACGTGGTCGACACGGGCAACACCCTGCGCGCCAACGGCCTGGAACCCCAGGATTTCATCGCCGACATCACCTCCCGGCTGATCGTCAACAAGGCTTCGATGAAAATGCAGCACGCCCGTATCCAGGCTTTGATCGATACCCTGCGCAAGGCAGTGGAATCGCGACACCGCGGCTGA	MLTIALSKGRILDDTLPLLAEAGIVPTENPDKSRKLIIPTTQADVRLLIVRATDVPTYVEHGAADLGVAGKDVLMEYGGQGLYEPLDLRIARCKLMTAGKVGAPEPKGRLRVATKFVNVAKRYYAEQGRQVDIIKLYGSMELAPLIGLADKIIDVVDTGNTLRANGLEPQDFIADITSRLIVNKASMKMQHARIQALIDTLRKAVESRHRG	PGPT0017400_3992	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
D1-36_00901	1326	hisD	COG0141	Histidinol dehydrogenase	ATGACCGCTCCCACCTCGATTCGCCGACTCAATGCTGCCGACCCGGATTTCGCACATCATCTGGATCATCTGCTGAGCTGGGAGAGTGTGTCCGACGACTCGGTCAACCAGCGGGTGCTGGACATCATCAAGGCCGTGCGCGAGCGTGGCGACGATGCCTTGGTGGAATTCACACAGAAGTTCGACGGCCTGCACGTGGCGTCGATGGCCGACCTGATCCTGCCGCGCGAGCGTCTGGAACTGGCCTTGACCCGAATCACCGTGGCCCAGCGCGAAGCCTTGGAAAAAGCCGCGTCCCGGGTACGCAGTTATCACGAGCGGCAGAAACAGGATTCGTGGAGCTACACCGAGGCCGACGGCTCGGTGCTGGGCCAGAAGGTCACGCCGCTGGACCGCGCCGGCTTGTACGTGCCGGGTGGCAAAGCGTCCTATCCGTCCTCGGTGCTGATGAACGCGATCCCGGCCAAGGTCGCCGGCGTGACTGAAGTGGTCATGGTTGTCCCGACCCCGCGCGGCGAAATCAACGAACTGGTGCTGGCTGCCGCCTGCATTGCCGGCGTGGACCGGGTGTTCACCATCGGCGGTGCCCAGGCCGTGGCCGCGTTGGCCTATGGCACGCAAAGCGTGCCGCGGGTCGACAAGGTAGTCGGTCCGGGCAACATCTATGTCGCCACTGCCAAGCGCCACGTGTTTGGTCAGGTCGGCATCGACATGATTGCTGGCCCTTCGGAAATCCTCGTGGTGTGCGACGGTCAGACCGATCCGGACTGGATCGCCATGGACCTGTTTTCCCAGGCCGAGCATGACGAAGATGCCCAGGCCATCCTGGTCAGCCCGGACGCCGAATTTCTCGACAAAGTGGCCGCCAGCATCGACAAGTTGCTGCCGACCATGGACCGCGCCGAGATCATCAACACCTCCATCAATGGCCGTGGTGCCCTGATCAAGGTCGATGACATGGAACAGGCCATCGAAGTCGCCAACCGCATCGCGCCGGAGCACTTGGAACTGTCGGTTGCCGATCCCCAGGCTTGGCTGCCGAAGATCCGCCATGCCGGCGCGATCTTCATGGGCCGTCACACCTCCGAGGCGCTGGGCGACTATTGCGCCGGACCGAACCATGTACTGCCGACCTCCGGCACCGCGCGCTTCTCGTCGCCGCTGGGGGTTTATGACTTCCAGAAACGCTCCTCGATCATTTTCTGCTCGGAGCAGGGCGCGTCCGAACTGGGCAAGACCGCGTCGGTGCTGGCCCGTGGCGAATCGCTGAGCGCCCACGCCCGCAGCGCCGAATACCGCATCAAAGACGAACGGAAGGGGAACTGA	MTAPTSIRRLNAADPDFAHHLDHLLSWESVSDDSVNQRVLDIIKAVRERGDDALVEFTQKFDGLHVASMADLILPRERLELALTRITVAQREALEKAASRVRSYHERQKQDSWSYTEADGSVLGQKVTPLDRAGLYVPGGKASYPSSVLMNAIPAKVAGVTEVVMVVPTPRGEINELVLAAACIAGVDRVFTIGGAQAVAALAYGTQSVPRVDKVVGPGNIYVATAKRHVFGQVGIDMIAGPSEILVVCDGQTDPDWIAMDLFSQAEHDEDAQAILVSPDAEFLDKVAASIDKLLPTMDRAEIINTSINGRGALIKVDDMEQAIEVANRIAPEHLELSVADPQAWLPKIRHAGAIFMGRHTSEALGDYCAGPNHVLPTSGTARFSSPLGVYDFQKRSSIIFCSEQGASELGKTASVLARGESLSAHARSAEYRIKDERKGN				NA	NA	NA	NA	NA
D1-36_00902	1053	hisC_1	COG0079	Histidinol-phosphate aminotransferase	ATGAGTAGATTCTGGAGCCCGTTCGTCAAGGACCTGGTGCCGTATGTGCCAGGCGAACAGCCGAAGCTGACCCGCCTGGTCAAGCTCAACACCAACGAGAATCCCTATGGCCCATCGCCCAAGGCCCTCGCGGCGATGCAGACCGAACTCAATGACAACCTGCGCCTGTATCCGGACCCCAATAGCGATTTGTTGAAAAGCGCCGTCGCCCGGTATTACGGTGTGCAAACCAACCAAGTGTTCCTGGGCAACGGTTCGGACGAGGTGCTGGCGCACATCTTCCACGGTCTGCTTCAGCACAACCAACCGGTGTTGTTCCCGGACATCAGCTACAGCTTCTACCCGGTCTATTGCGGGCTGTACGGCATCGCGTTCGACGCGGTGCCGCTGGATGAACAGTTCCGGATCGACCCGACGGATTACGCCAAGCCGAACGGCGGGATCATCTTCCCCAACCCGAACGCGCCGACCGGCTGCCTGCTGGCGCTTGACGCGGTCGAGCAGATCCTCAAGGGCAGCCCGGATTCGGTGGTGGTCGTCGACGAGGCTTACATCGACTTTGGTGGCGAAACGGCCATCAGCCTGGTGGATCGGTATCCGAACCTGCTGGTCACGCAGACGCTGTCCAAGTCTCGCTCGTTGGCGGGATTGCGAGTGGGCCTGGCGGTGGGGCATCCGGATCTGATCGAAGCGTTGGAGCGGATCAAGAACAGCTTCAACTCCTATCCGTTGGATCGTCTGGCAAATGTCGGTGGCGCGGCGGCGTTCGACGATCGCGAGTATTTCGACCGAACCTGCCGGTTGGTGATCGAGCACCGCGAGTGGGTGGTGGCCAAACTGGAGGCCAGGGGCTTTGAAGTGCTGCCATCGGCGGCCAACTTCATTTTCGCTCGTCACCCCCGGTACGACGCAGCGGGGTTGGCGGCGAAACTGCGTGAGCAGGGCGTGATCGTGCGGCACTTCAAGCAGGAGCGCATCGCGCAGTTCCTGCGGATCAGCATCGGTACGCCGGAGCAGAACCAGGCGCTGATCGACGGCCTAGGCGAGCTCTAA	MSRFWSPFVKDLVPYVPGEQPKLTRLVKLNTNENPYGPSPKALAAMQTELNDNLRLYPDPNSDLLKSAVARYYGVQTNQVFLGNGSDEVLAHIFHGLLQHNQPVLFPDISYSFYPVYCGLYGIAFDAVPLDEQFRIDPTDYAKPNGGIIFPNPNAPTGCLLALDAVEQILKGSPDSVVVVDEAYIDFGGETAISLVDRYPNLLVTQTLSKSRSLAGLRVGLAVGHPDLIEALERIKNSFNSYPLDRLANVGGAAAFDDREYFDRTCRLVIEHREWVVAKLEARGFEVLPSAANFIFARHPRYDAAGLAAKLREQGVIVRHFKQERIAQFLRISIGTPEQNQALIDGLGEL	PGPT0020305_7133	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817	NA	NA
D1-36_00903	720		COG5266	putative protein	ATGAAATACCCCAAGACCTTCACCCTGCTCGCCCTGCTCCTGGCCACCCAGGCTTCGGCCCATGGCCTGTGGACAGAACAGCGACGCGGCAACATCGAAGTGATCTACGGTCACGGCGCCGAGGACAACGCCTTCAAGGCGAAGAAAATCAGTGGCGCCTGGGCCTACGACCTGGGCGGCAACATGATCCCCGTCACCGTGGAGCGTCTGCCGGACCACGCTCGCCTGCAACCCCTCAAGCCGCCGGCCGTGCTGGCCGTCGCCCTGGACAACGGCATGTGGTCACAGACCGCCGACAAGAAGTGGATCAACGAAGGCCGCAGCAAGGTACCCGGGGCGATCGAATCGACCCAGACCTTCAAGTACAGCCTGGCGATCTATGAGCCGGGAGCGAAGCTGCCGAAACTGGATCAGATCAAGTTCGTCATCGTACCGGAAGTCGACCCACTGACCGTCGGCCCCGACCAGCCTTTGCCGGTGCGGGTGCTGATCGATGGTAAACCTGCCGCTGGCGTGAAACTGGTAGGCGACTATCGCAGCGCGCCAGGTACTGTCACCACGCAAACCGACGCCGAGGGACGGGCCAAGGTACCGGTACGTAATGAAGGGTTGAATGTCATTGCCGCGCAGATGGAAATCCCGCTCAAGGACAATAAGGATGTCGCGACGCGCGGGGTGTTTACGTCGCTGACGTTCCTTGGCGAGCCGCATCACGAGTAA	MKYPKTFTLLALLLATQASAHGLWTEQRRGNIEVIYGHGAEDNAFKAKKISGAWAYDLGGNMIPVTVERLPDHARLQPLKPPAVLAVALDNGMWSQTADKKWINEGRSKVPGAIESTQTFKYSLAIYEPGAKLPKLDQIKFVIVPEVDPLTVGPDQPLPVRVLIDGKPAAGVKLVGDYRSAPGTVTTQTDAEGRAKVPVRNEGLNVIAAQMEIPLKDNKDVATRGVFTSLTFLGEPHHE				NA	NA	NA	NA	NA
D1-36_00904	279			hypothetical protein	ATGTCATCTCTGAAACGGATTTCCATTGCCAGCCTCACCCTGGGGTTGCTCGGCGATCCGGCTTTTGCCGAAGAAATCCAGCCCCTGGAACTGGATGCCATCAATGTGCATCTGGCCAGCCATTACAAGCAGGGTGAACTCTGGGGATTCGCTTCCGAAGCGCGCCCGTTGAATGCCGACGGCCACACGGTGAACCGTCGTTACCGTGAGCGAGACAACAATTGGCACGACAGCATTACTCAACTTGAAGTACGGGGGATGGTCGACCTCGGGGCCTGA	MSSLKRISIASLTLGLLGDPAFAEEIQPLELDAINVHLASHYKQGELWGFASEARPLNADGHTVNRRYRERDNNWHDSITQLEVRGMVDLGA				NA	NA	NA	NA	NA
D1-36_00905	1161	degS	COG0265	Serine endoprotease DegS	ATGTTCAAGGCGCTGCGTTTTTCCGGCTGGCCGCTGTTGGCCGGCGTGCTTGTCGCTTTATTGATTATCCAGCGCTACCCGGAATGGGTCGGGCTGCCAAGCCTCGACGTCAACCTGCAACAAGCGCCCCAAGCCAAGGCGCCGCAGCAGGGGCCGGTGTCCTATGCCGACGCGGTCACCCTGGCGGCGCCGGCGGTCGTGAACCTGTACACCACCAAAGTCATCAACAAGCCCAACCACCCGCTGTTTGAAGACCCGCAATTCCGGCGTTTTTTCGGCGACAACTCGCCCAAGCAGAAGCGCATGGAGTCGAGCCTGGGCTCGGGTGTGATCATGAGCCCGGAAGGTTATATCCTGACCAACAACCACGTCACCAGCGGTGCCGACCAGATCGTGGTAGCACTCAAGGACGGCCGTGAAACCCTGGCCCGGGTGATCGGCAGCGATCCGGAAACCGACCTCGCGGTACTGAAGATCGATCTGAAGAACCTCCCCGCGATCACCATTGGCCGTTCCGACAGCATCCGAATCGGCGACGTGACCCTGGCAATCGGCAACCCGTTCGGCGTTGGCCAGACCGTGACCATGGGCATCATCAGCGCCACCGGCCGAAACCAACTGGGCCTGAACAACTACGAAGATTTCATCCAGACAGACGCTGCCATCAACCCTGGCAACTCCGGTGGCGCCCTGGTGGATGCCAACGGCAATCTCACCGGGATCAACACGGCGATCTTTTCCAAATCCGGTGGCAGCCAGGGCATCGGTTTTGCCATTCCGGTGAAGCTGGCCATGGAGGTAATGAAGTCCATCATCGAACACGGCCAGGTGATTCGTGGCTGGCTGGGCATCGAGGTCCAACCGCTGACCCAGGAACTGGCGGAGTCGTTCGGCTTGTCCGGGCGACCCGGCATCGTGGTGGCGGGCATCTTCCGCGACGGTCCGGCGCAGAAGGCAGGCCTGCAATTGGGTGATGTCATCCTGAGCATCGACGGCGAACCGGCCGGCGATGGCCGGCGCTCGATGAACCAGGTGGCGCGGATCAAACCCACCGACAAGGTCACGATTCAGGTCATGCGCAACGGCAAGGAACTCAAGCTCACGGCTGAGATTGGCCTGCGCCCGCCACCCGCGCCGGTGGTGCTTAAAGAAGAACAGTAA	MFKALRFSGWPLLAGVLVALLIIQRYPEWVGLPSLDVNLQQAPQAKAPQQGPVSYADAVTLAAPAVVNLYTTKVINKPNHPLFEDPQFRRFFGDNSPKQKRMESSLGSGVIMSPEGYILTNNHVTSGADQIVVALKDGRETLARVIGSDPETDLAVLKIDLKNLPAITIGRSDSIRIGDVTLAIGNPFGVGQTVTMGIISATGRNQLGLNNYEDFIQTDAAINPGNSGGALVDANGNLTGINTAIFSKSGGSQGIGFAIPVKLAMEVMKSIIEHGQVIRGWLGIEVQPLTQELAESFGLSGRPGIVVAGIFRDGPAQKAGLQLGDVILSIDGEPAGDGRRSMNQVARIKPTDKVTIQVMRNGKELKLTAEIGLRPPPAPVVLKEEQ	PGPT0014286_734	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS_SIGNALLING,PGPT0014286-degQ|hhoA-K04772	NA	NA
D1-36_00906	759		COG0327	GTP cyclohydrolase 1 type 2	ATGGCCGTCGCCCTGAACACCCTGGTAGAAGAAGCGGACCGTTACCTGGCAAGCAGCCGGATCGCCGATTATTGCCCTAACGGCTTGCAGGTCGAAGGCGCCCCGCAGGTGATGCGTATCGTCAGCGGCGTGACGGCCAGCCAGGCGTTGCTCGATGCTGCCGTGGAGGCCGAGGCCGACCTGGTCCTGGTGCATCACGGCTATTTCTGGAAGGGCGAGAATCCCTGCATCACCGGGATGAAGCAGCGGCGCCTGAGAACCTTGCTCAAGCACGATATCAGCCTGCTGGCCTATCACTTGCCCCTGGACTTGCATGCCGAAGTCGGCAACAACGTACAACTTGCCCGACAACTGGACATCACCGTCGAAGGGCCGCTGGATCCGGATAATCCAAAGATCGTCGGCCTCGTGGGTTCTCTGTCCGAACCGATGACGCCTCGGGATTTCGCCCGCAAGGTCCAGGAAGTCATGGGCCGCGAGCCGTTGCTGATAGAAGGGGAACAGATGATCCGCCGAGTCGGCTGGTGTACCGGTGGCGGCCAGGGATACATCGACCAGGCGGTACTGGCCGGCGTCGATCTGTACCTCAGTGGCGAGGCGTCCGAGCAGACCTTCCACAGCGCGCGGGAAAACGGCATCAGCTTCATCGCCGCCGGGCATCATGCGACCGAGCGCTACGGCGTCCAGGCGCTGGGCGACTACCTGGCGCGGCGTTTTGCGCTGGAACACATCTTCATCGACTGCCCGAATCCGATCTGA	MAVALNTLVEEADRYLASSRIADYCPNGLQVEGAPQVMRIVSGVTASQALLDAAVEAEADLVLVHHGYFWKGENPCITGMKQRRLRTLLKHDISLLAYHLPLDLHAEVGNNVQLARQLDITVEGPLDPDNPKIVGLVGSLSEPMTPRDFARKVQEVMGREPLLIEGEQMIRRVGWCTGGGQGYIDQAVLAGVDLYLSGEASEQTFHSARENGISFIAAGHHATERYGVQALGDYLARRFALEHIFIDCPNPI				NA	NA	NA	NA	NA
D1-36_00907	918	cysD	COG0175	Sulfate adenylyltransferase subunit 2	ATGGTCGACAAACTGACGCATCTGAAACAGCTGGAGGCGGAAAGCATCCACATCATCCGCGAGGTGGCCGCCGAGTTCGATAACCCGGTGATGCTGTACTCCATCGGTAAAGACTCCGCCGTGATGCTGCACCTGGCACGCAAGGCGTTCTTCCCCGGCAAGCTGCCGTTTCCGGTGATGCACGTCGACACCCGGTGGAAATTCCAGGAAATGTACAAGTTCCGCGACCGCATGGTCGAAGAACTCGGCTTGGACCTGATCACCCATATCAACCCGGACGGCGTGGCGCAGAACATCAACCCGTTTACCCACGGCAGCGCCAAGCACACCGACATCATGAAGACCGAGGGCCTGAAACAGGCGCTCGACAAGCATGGTTTCGACGCAGCCTTCGGTGGCGCCCGTCGTGATGAAGAGAAGTCCCGCGCCAAGGAGCGCGTCTACTCGTTCCGCGACAGCAAGCACCGCTGGGACCCGAAGAACCAGCGCCCGGAGCTGTGGAACGTCTACAACGGCAAGGTCAACAAAGGCGAGTCGATCCGCGTCTTCCCATTGTCGAACTGGACCGAGCTGGACATCTGGCAGTACATCTACCTCGAAGGCATCCCGATCGTGCCGCTGTACTTCGCCGCCGAGCGTGAAGTGATCGAGAAGAACGGCACGCTGATCATGATCGATGACGAGCGCATCCTCGAGCACCTGTCCGACGAAGACAAAGCCCGAATCGTCAAGAAGAAAGTACGTTTCCGTACCCTTGGCTGCTACCCGTTGACGGGCGCGGTGGAGTCCCAGGCCGAGAGCCTGACGGACATCATCCAGGAAATGCTCCTGACGCGAACTTCCGAGCGCCAGGGCCGGGTCATCGACCACGATGGCGCAGGCTCGATGGAAGATAAAAAACGTCAGGGTTATTTCTAA	MVDKLTHLKQLEAESIHIIREVAAEFDNPVMLYSIGKDSAVMLHLARKAFFPGKLPFPVMHVDTRWKFQEMYKFRDRMVEELGLDLITHINPDGVAQNINPFTHGSAKHTDIMKTEGLKQALDKHGFDAAFGGARRDEEKSRAKERVYSFRDSKHRWDPKNQRPELWNVYNGKVNKGESIRVFPLSNWTELDIWQYIYLEGIPIVPLYFAAEREVIEKNGTLIMIDDERILEHLSDEDKARIVKKKVRFRTLGCYPLTGAVESQAESLTDIIQEMLLTRTSERQGRVIDHDGAGSMEDKKRQGYF	PGPT0002405_1198	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0002405-cysD-K00957	NA	NA
D1-36_00908	1899	cysNC	COG0529	Bifunctional enzyme CysN/CysC	ATGTCGCACGCATCTGATTTGATCAGCGAGGACATCCTCGCCTACCTGGGCCAGCACGAGCGTAAAGAGCTGCTGCGCTTTTTGACCTGCGGTAACGTCGATGACGGCAAGAGCACCCTGATCGGGCGCCTGCTGCACGACTCCAAGATGATCTATGAAGATCACCTGGAAGCCATTACCCGTGATTCGAAGAAAGTCGGCACCACCGGTGACGATATCGACCTGGCGTTGCTGGTCGATGGTCTGCAGGCCGAGCGCGAGCAAGGCATCACCATCGATGTCGCCTACCGCTATTTCTCCACCGCCAAGCGCAAATTCATCATCGCCGACACCCCCGGCCATGAGCAGTACACCCGCAACATGGCCACCGGTGCTTCCACCTGTGACCTGGCGATCATCCTGGTGGATGCCCGCTACGGCGTGCAGACCCAGACCCGTCGCCACAGCTTCATCGCCTCGTTGCTAGGCATCAAGCACATCGTCGTGGCCATCAACAAGATGGACCTCAAGGACTTCGACCAGGGCGTGTTCGAGTCGATCAAGGCCGACTACCTCAAGTTCGCCGAAGGCTTGAAGATGAAGCCCACCAGCATGCACTTCGTGCCGATGTCGGCCCTCAAGGGCGACAACGTGGTGAACAAGTCCGAGCGCTCGCCGTGGTACACCGGCCAGTCGCTGATGGAAATCCTCGAGACCGTGGAAGTGGCGGGCGATCGCAACTTCACCGACCTGCGTTTCCCGGTGCAGTACGTCAACCGTCCGAACCTGAACTTCCGCGGTTTCGCCGGCACCCTCGCCAGCGGCATCGTGCACAAGGGCGACGAAGTGGTGGTGCTGCCTTCCGGCAAGAGCAGCCGCGTGAAATCCATCGTCACCTTCGAAGGCGAGCTGGAGCACGCCGGCCCGGGTCAGGCTGTCACGCTGACCATGGAAGACGAGATTGATATCTCCCGTGGCGACCTGCTGGTGCATGCCGACAATGTCCCGCCGGTCACCGACAGCTTCGAAGCGATGCTGGTGTGGATGGCCGAGGAGCCGATGCTCCCGGGCAAGAAATATGACATCAAGCGCGCCACGAGCTACGTGCCCGGTTCGATTGCCAGCATCGTCAACAAAGTCGATGTGAACACCCTCGAGGAAGGTCCGGCCAGCGCGTTGCAACTCAACGAAATCGGCAAGGTGAAGATCGCCCTGGATGCGCCGATCGCCTTGGACGGTTACGAGAGCAACCGCACCACTGGCGCGTTCATCGTCATCGACCGTCTGACCAACGGCACCGTGGGCGCGGGCATGATCGTGGCCCAGCCGCTGGCCCACGGCAGCAGCACGCACCACGGCAAACTGGCCCATGTGTCGGTGGAAGAACGTACCCAGCGCTTCGGCCAGCAGCCGGCCACGGTGCTGTTCAGCGGCCTGTCGGGCGCGGGCAAGAGCACGTTGGCCTATGCGGTGGAACGCAAGCTGTTCGACATGGGCCGTGCGGTGTTTGTACTCGATGGCCAGAACCTGCGCCACGACCTGAACAAGGGGCTGCCGCAAGACCGTGCCGGACGTACCGAGAACTGGCGTCGCGCGGCTCACGTCGCCCGTCAGTTCAACGAAGCCGGCCTGCTGACCCTGGCTGCGTTCGTCGCGCCGAGTGCCGAAGGCCGTGAACAGGCCAAGGACTTGATCGGCCGCGAGCGCCTGGTGACCGTCTACGTCCAGGCCTCGCCAACGGTATGTGCCCAGCGCGATCCACAAGGGCTGTACGCGGCTGCCGGCGATAACATTCCGGGCGAGTCGTTCCCATACGACGTGCCGCTGGATGCCGACCTGGTGATCGACACCCAGTCGCTGACGTTGGAAGAAAGCGTCAAGCAAGTGCTGGATCTGCTGCGCAAGCGTGGCGCGATCTAA	MSHASDLISEDILAYLGQHERKELLRFLTCGNVDDGKSTLIGRLLHDSKMIYEDHLEAITRDSKKVGTTGDDIDLALLVDGLQAEREQGITIDVAYRYFSTAKRKFIIADTPGHEQYTRNMATGASTCDLAIILVDARYGVQTQTRRHSFIASLLGIKHIVVAINKMDLKDFDQGVFESIKADYLKFAEGLKMKPTSMHFVPMSALKGDNVVNKSERSPWYTGQSLMEILETVEVAGDRNFTDLRFPVQYVNRPNLNFRGFAGTLASGIVHKGDEVVVLPSGKSSRVKSIVTFEGELEHAGPGQAVTLTMEDEIDISRGDLLVHADNVPPVTDSFEAMLVWMAEEPMLPGKKYDIKRATSYVPGSIASIVNKVDVNTLEEGPASALQLNEIGKVKIALDAPIALDGYESNRTTGAFIVIDRLTNGTVGAGMIVAQPLAHGSSTHHGKLAHVSVEERTQRFGQQPATVLFSGLSGAGKSTLAYAVERKLFDMGRAVFVLDGQNLRHDLNKGLPQDRAGRTENWRRAAHVARQFNEAGLLTLAAFVAPSAEGREQAKDLIGRERLVTVYVQASPTVCAQRDPQGLYAAAGDNIPGESFPYDVPLDADLVIDTQSLTLEESVKQVLDLLRKRGAI	PGPT0002395_608	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
D1-36_00909	909	yihG_1	COG0204	putative acyltransferase YihG	ATGCTGGATTTCCTGCCTCCCCCTGTACGGGGCGTGATCGCCTCGCTGCTGTTGGCGTTGAACACCATCGCCTGCTGCACGCCGCTGTTCATCGTGGCGATCTTCAAACTGTTGCTGCCCTTCCCCGCTGCCCAGCGTATTACCGACTGGCTGATGAGCCATATCCACGAAGCCTGGATCAGCAACAACAAGGCCTGGATGAACCTGTTGCGCCGTACCCGCTGGCATATCAGCGGGCTGGAAGGCCTGGACTACCAACACTCATATCTGGTCACCAGCAATCATCAAAGCTGGGTCGACATCATGGTGTTGCAGTACGTGCTGAACCGACGCATCCGACCGTTGAAGTTTTTCCTCAAGCAAGAGCTGATCTGGGTGCCGGTGATTGGCCTGGCCTGGTGGGCACTGGGCTTCCCGTTCATGAAGCGTTACTCCAAGGCTTACCTGGAAAAACATCCGGAAAAGAAAGGCAAGGACCTGGAAACCACCCGCAGGACCTGTGCGAAATTCCGCAACAACCCGGTGGGTATTTTCAATTTCGTTGAGGGCACGCGCTTCACCGAAAGCAAGCATGCCCAGCAGCAATCACCGTTTCGCTACCTACTCAAGCCCAAGGCCGGCGGCATCGCGTTTGTGCTCGATGCGATGGGCGAACAATTGGAGTCGATCATCAACGTGACGATTCATTATCCGGGCGGCCGCCCGGGGTATTGGGATTTGCTCTGCGGCAACGTTGGCGAGGTGGTGGTGCACTTCCAGGAGCTGAAGATACCGCCGCAGTTCATTGGCAAAAGCTACGACCAGGACGGGGAATATCGCCTGGAGTTCCAGGGTTGGATCAACCAGCTGTGGCAGGACAAGGATGCATTGCTTGAGCAGATGCATCGGGAATATCCAGACCGCCACTGA	MLDFLPPPVRGVIASLLLALNTIACCTPLFIVAIFKLLLPFPAAQRITDWLMSHIHEAWISNNKAWMNLLRRTRWHISGLEGLDYQHSYLVTSNHQSWVDIMVLQYVLNRRIRPLKFFLKQELIWVPVIGLAWWALGFPFMKRYSKAYLEKHPEKKGKDLETTRRTCAKFRNNPVGIFNFVEGTRFTESKHAQQQSPFRYLLKPKAGGIAFVLDAMGEQLESIINVTIHYPGGRPGYWDLLCGNVGEVVVHFQELKIPPQFIGKSYDQDGEYRLEFQGWINQLWQDKDALLEQMHREYPDRH				NA	NA	NA	NA	NA
D1-36_00910	2100	pta	COG0280	Phosphate acetyltransferase	ATGCAAACTTTTTTTATCGCACCCACCGATTTTGGCGTGGGCCTGACCTCCATCAGCCTCGGGCTGGTGCGTACCCTGGAACGGGCCGGGCTCAAAGTCGGCTTTTTCAAACCCATTGCCCAGCCTCATCCTGGCGATACCGGCCCGGAACGCTCCACCGAACTGGTGGCCCGCACCCACGGCCTCAAGCCACCGCAACCGCTGGGCCTGGCTCACGTGGAGCGCATGCTCGGCGATGGCCAGCTCGATGAGCTGCTGGAAGAAATCATCACACTCTACCAGCAGGCCGCCGTCGGCAAGGACGTACTGGTCGTCGAGGGCATGGTCCCGACCCGCAGCGCGAGCTACGCCGCCCGGGTCAACCTGCACCTGGCCAAGAGCCTGGACGCCGAAGTGATTCTGGTGTCGGCGCCGGAAAACGAAGTGCTGACGGAGCTTTCCGGTCGCGTCGAGTTGCAGGCACAACTGTTTGGCGGCCCCAAGGACCCGAAAGTCCTCGGCGTGATCTTGAACAAGGTTCGCACCGACGAAAGCATGGAGGCGTTCACCGCGCGCCTGAAGGAACATTCGCCGTTGCTGCGCAGCGGCGACTTCCGCCTGCTCGGCTGCATCCCGTTTCGCCCCGAGCTCAACGCCCCGCGTACCCGCGACGTGGCCGACCTGATGGGCGCGCAGGTGCTCAATGCCGGCGACTACGAAACGCGGCGCATGAGCAACATCATCATTTGCGCCCGCACCATGCGCAACACCGTGGAACTGCTCAAGCCCGGCGTACTGGTGGTGACCCCTGGTGATCGCGACGACATCATCCTCGCCGTGAGCCTGGCGGCGATCAACGGCGTACCGCTGGCCGGCCTGCTGCTGACCAGCGACACCCTGCCCGATCCACGCATCATGGACCTTTGCCGCGGTGCGTTGCAGGCCGGGTTGCCAGTGCTGTCGGTGAGCACCGGCTCGTACGACACCGCCAATCTGCTCAACGGCTTGAACAAGGAAATCCCCATCGATGACCGCGAACGCGCGGAAATCATCACCGATTTTGTCGCCAGCCACCTGGACGCCAGATGGCTGCACCAGCGCTGCGGCACGCCACGGGAGATGCGCCTGTCACCGGCAGTGTTCCGCTATCAACTGATCCAGCGCGCCCAGGCTGCCAACAAACGCATCGTATTGCCGGAAGGCAGCGAACCGCTGACAGTGCAAGCCGCCGCCATTTGCCAGGCGCGGGGCATCGCCCGCTGCGTGTTGCTGGCAAAACCGGCCGACGTCGAGGCCGTGGCCCGCGCCCAGGGTATCGAACTGCCGCCGGGGCTGGAGATTCTCGACCCGGATGTGATTCGCGAGCGTTACGTCGAGCCCATGGTGCGGCTGCGCAAGAGCAAAAGCCTGAACGCTCCCATGGCCGAGCAGCAACTGGAAGACACCGTGGTGATCGGCACCATGATGCTGGCGCTGGATGAAGTGGACGGGCTCGTCTCCGGCGTCATCCACTCCACCGCCAACACCATCCGCCCGGCGTTGCAATTGATCAAGACCGCGCCGGGCTGTTCGCTCGTGTCGTCGGTATTCTTCATGCTGTTTCCCGAGGAAGTGCTGGTGTACGGCGATTGCGTGATGAACCCGCACCCAAGCGCTGCGGAACTGGCCGAGATCGCCTTGCAAAGCGCCGACTCCGCCGCGGCGTTCGGCATCACGCCACGGGTCGCGATGCTCAGCTATTCCAGCGGTGAGTCGGCCAGCGGCGAAGAAGTGGAAAAGGTCCGCGAAGCAACGCTGCTGGCCCATGAGGCGCAACAGGGGCTGTTGATCGACGGCCCGCTGCAATACGATGCCGCCGCCAACGAAGCCGTGGCACGGCAACTGGCGCCCAACAGCCAGGTCGCAGGTCGGGCCACCGTGTTCATTTTCCCGGACCTCAATACCGGCAATACCACCCACAAGGCCGTGCAGCGCAGCGCCGATTGCGTCAGCCTCGGGCCAATGCTGCAAGGTCTGCGCAAGCCCGTGAATGACTTGCCGCGTGGCGCCCAGGTCGATGACATCGTCTACACCATCGCCTTGACCGCGATTCAAGCCGCCAACCGACCTCTGGATATTTAA	MQTFFIAPTDFGVGLTSISLGLVRTLERAGLKVGFFKPIAQPHPGDTGPERSTELVARTHGLKPPQPLGLAHVERMLGDGQLDELLEEIITLYQQAAVGKDVLVVEGMVPTRSASYAARVNLHLAKSLDAEVILVSAPENEVLTELSGRVELQAQLFGGPKDPKVLGVILNKVRTDESMEAFTARLKEHSPLLRSGDFRLLGCIPFRPELNAPRTRDVADLMGAQVLNAGDYETRRMSNIIICARTMRNTVELLKPGVLVVTPGDRDDIILAVSLAAINGVPLAGLLLTSDTLPDPRIMDLCRGALQAGLPVLSVSTGSYDTANLLNGLNKEIPIDDRERAEIITDFVASHLDARWLHQRCGTPREMRLSPAVFRYQLIQRAQAANKRIVLPEGSEPLTVQAAAICQARGIARCVLLAKPADVEAVARAQGIELPPGLEILDPDVIRERYVEPMVRLRKSKSLNAPMAEQQLEDTVVIGTMMLALDEVDGLVSGVIHSTANTIRPALQLIKTAPGCSLVSSVFFMLFPEEVLVYGDCVMNPHPSAAELAEIALQSADSAAAFGITPRVAMLSYSSGESASGEEVEKVREATLLAHEAQQGLLIDGPLQYDAAANEAVARQLAPNSQVAGRATVFIFPDLNTGNTTHKAVQRSADCVSLGPMLQGLRKPVNDLPRGAQVDDIVYTIALTAIQAANRPLDI	PGPT0001370_940	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERS	PLANT_DERIVED_PROPANEDIOL_UTILIZATION,PGPT0001370-pta-K13788	NA	NA
D1-36_00911	486	slyD	COG1047	FKBP-type peptidyl-prolyl cis-trans isomerase SlyD	ATGCTGATCGCCGCCAATAAGGCTGTCTCCATCGACTATACCCTGACCAACGACGCTGGTGAGGTCATCGACAGCTCTGCCGGCGGCGCTCCGCTGGTCTACCTGCATGGTGCAGGCAACATCATCCAGGGCCTGGAAAAAGCCCTCGAAGGCAAAACCACCGGCGACGAGCTGAACGTGACCGTCGAGCCGGAAGACGCCTACGGCGAGTACTCCGCCGAACTGGTCAGCACCCTGAGCCGCAGCATGTTCGAAGGTGTGGATGAGCTGGAAGTCGGCATGCAGTTCCACGCTTCGGCGCCGGATGGCCAGATGCAGATCGTCACCATTCGCGACCTGGACGGCGATGACGTCACCGTTGACGGCAACCACCCGTTGGCCGGCCAGCGCTTGAACTTCCAAGTCAAGATCGTCGATATCCGTGACGCCAGCCAGGAAGAAGTTGCCCATGGCCACGTCCATGGCGAAGGCGGCCATCACCACTGA	MLIAANKAVSIDYTLTNDAGEVIDSSAGGAPLVYLHGAGNIIQGLEKALEGKTTGDELNVTVEPEDAYGEYSAELVSTLSRSMFEGVDELEVGMQFHASAPDGQMQIVTIRDLDGDDVTVDGNHPLAGQRLNFQVKIVDIRDASQEEVAHGHVHGEGGHHH				NA	NA	NA	NA	NA
D1-36_00912	483	btuE_1	COG0386	Thioredoxin/glutathione peroxidase BtuE	ATGAGTGCTTTCCACGACCTTAAACTGACAACCCTGGATGGTCAGGAGCTTCCTCTGGCACCGTTCAAAGGGCAAGTCGTGCTGGTGGTCAACGTTGCCTCCAAATGTGGCCTGACGCCTCAATACGCGGCGCTGGAAAATCTCTACCAGCAGTACAAGGACAAGGGCTTCAGTGTGCTGGGCCTGCCCTGCAACCAGTTCGCCGGACAAGAGCCTGGAACCGAGCAGCAAATCCAGGAATTCTGCAGCCTCAACTATGGCGTGACGTTCCCGCTGTCCAGCAAGCTGGAAGTGAACGGTCACGAACGTCATCAGCTCTATCGTCTGCTGGCGGGCGAGGGCGCCGAGTTCCCTGGAGACATTACCTGGAACTTCGAAAAATTCCTGCTCGGCAAGGACGGCCGGGTGCTGGCGCGTTTCTCGCCGCGCACGCCGCCCGATGATCCTGCGGTGATCCAGGCGATCGAAAAAGCCCTGAGCTAA	MSAFHDLKLTTLDGQELPLAPFKGQVVLVVNVASKCGLTPQYAALENLYQQYKDKGFSVLGLPCNQFAGQEPGTEQQIQEFCSLNYGVTFPLSSKLEVNGHERHQLYRLLAGEGAEFPGDITWNFEKFLLGKDGRVLARFSPRTPPDDPAVIQAIEKALS	PGPT0013115_4796	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013115-bsaA|gpx|btuE-K00432	NA	NA
D1-36_00913	1104			NADH oxidase	ATGCCTGTACAAGCCCTGTTCAAACCCTTTCAGCTCGGCACGTTCCAGCTGCCGACCCGGGTCGTGATGGCGCCGATGACCCGTTCCTTTTCGCCGGGCGGCGTACCGAACAGCAAGGTGATCGAGTACTACCGTCGTCGCGCGGCGGCCGGGGTTGGCCTGATCATCACCGAGGGCACGACGGTCGGTCACAAGGCGTCCAATGGCTACCCGAACGTACCGCATTTCTACGGTGACGCCGCGCTGGCGGGTTGGAAGAAAGTAGTCGATGCGGTGCACGCCGAAGGCGGCAAGATCGTTCCGCAACTGTGGCACGTAGGCAATGTCCGACGCCTCGGTACCGAGCCGGACGGCGCCGTACCAGGCTATGGCCCGACTGAAAAGCTCAAGGATGGCCAGGTCGTGGTTCACGGCATGACCCAGGCAGACATCGACGAAGTCATCGCCGCCTTCGCCCAAGCGGCAAAAGATGCCAAGGGTATCGGCATGGACGGCGTCGAGATCCACGGCGCCCACGGCTATCTGGTGGATCAGTTTTTCTGGGAAGGCAGCAACCAGCGCACGGACGGTTACGGCGGCGACCTGGCCAACCGTTCGCGCTTCGCCATCGAGCTGATCCGCGCCGTGCGCGCTGCGGTGGGCGAAGATTTTCCGATCATTTTCCGATTTTCTCAATGGAAGCAGCAGGACTACACAGCGCGCCTGGTGCAGACGCCTGAGGCGCTGGAAGCGTTCCTCAAGCCGTTGGCCGATGCCGGCGTGGATATTTTCCATTGCTCCACGCGTCGGTTCTGGGAGCCTGAGTTCGACGGTTCGGACCTGAACCTGGCCGGCTGGACCCGCAAGCTCACCGGCAAGCCAACGATTACCGTCGGCAGCGTCGGCCTGGACGGCGAGTTCCTGCAGTTCATGGTCAATACCGACAAGGTTGCCCAACCGGCCAGCCTGGAAAACCTGCTGGAGCGCCTGAACAAGGAAGAGTTCGACCTGGTGGCGGTGGGCCGTGCTCTGCTGGTGGATCCCGACTGGGCGCAGAAAGTGCGTGACGGGCGTGAGCAGGACATCCTGCCGTTCAGTCGCGAGGCGTTGATGACCTTGGTGTAA	MPVQALFKPFQLGTFQLPTRVVMAPMTRSFSPGGVPNSKVIEYYRRRAAAGVGLIITEGTTVGHKASNGYPNVPHFYGDAALAGWKKVVDAVHAEGGKIVPQLWHVGNVRRLGTEPDGAVPGYGPTEKLKDGQVVVHGMTQADIDEVIAAFAQAAKDAKGIGMDGVEIHGAHGYLVDQFFWEGSNQRTDGYGGDLANRSRFAIELIRAVRAAVGEDFPIIFRFSQWKQQDYTARLVQTPEALEAFLKPLADAGVDIFHCSTRRFWEPEFDGSDLNLAGWTRKLTGKPTITVGSVGLDGEFLQFMVNTDKVAQPASLENLLERLNKEEFDLVAVGRALLVDPDWAQKVRDGREQDILPFSREALMTLV	PGPT0005930_2950	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_TOLULENE|DERIVATE_DEGRADATION	XENOBIOTIC_NITROTOLULENE_DEGRADATION,PGPT0005930-nemA-K10680	NA	NA
D1-36_00914	1200	mgtA_1	COG0438	GDP-mannose-dependent alpha-mannosyltransferase	ATGGCCCCGGTCGACACTGGGGCCATGACCACACTCCTGCACGTTACGCTCGTCACCGAAACCTTTGCGCCGGAAATCAATGGCGTAGCCAATACCCTGGGTCGTCTTCATGACGGTTTGCGCGCCCGCGGGCATCGGGTAGAACTGATTCGCCCTCGCCAGGCGGGAGACCAGGGTCTGACCAGTGATGACCAATTGCTGCTGTGCCGGGGCTGGCCATTGCCGGGGTATCCGGGTTTGCAGTGGGGACAGGCTTCGATACACAAGCTGTTGCGGCGCTGGAAGCGTCATCGCCCGGACGTGTTGTATATCGCCACCGAAGGGCCGCTGGGCTTGTCTGCGTTGCGTGCCGCGCGGCGCCTGGGTATTTCGGTGGTCAGTGGCTTCCATACCAACTTCCAGCAATACACCCAGCAATACGGCCTCGGCCTGCTGAGCCGTGGGCTCACGCATTACTTGCGCTGGTTCCATAACCGCTCAAGCCTGACGCTGGTGCCCAGCGTCAGCCAGCGCCTGGAACTGGAACGCCGGCATTTCGAACGCGTGGCATTGTTGTCCCGTGGCGTGGATAGCCATTTATTTCATCCGGCCAAACGCTCAGCCGCCTTGCGCAAGAGCTGGGGCCTGGATGATGACGCTATCGCGGTGCTTCATGTGGGACGCCTGGCGCCGGAGAAAAACCTGGCGCTGCTCAAACGCAGTTTCGACACCCTGCGCAGTGCTTTTGCGACACGGCAAATCAAACTGGTGATCGTTGGAGACGGCCCACAGCGGCTCGCTCTCGAGCAACAACTGCCCGAGGCGATATTCTGCGGGGCGCAACGAGGCGAAGCGCTGGCCGCCCATTACGCGTCCGGGGATGTGTTTGTCTTTCCGAGCCTGACCGAAACCTTCGGCAACGTTGTGCTGGAAGCACTGGCATCCGGGCTGGGCGTGGTGTCCTACGACCAGGCCGCGGCGGCGCAGCACATCCGTCATGGCTATAACGGCGTATTGGCGATGCCTGGGGATGAAGAGGCATTTTGCGACGCGGCCCGTTGGCTGTTGGAAGAGCCAGAGGCCTTGCGTTGCGTGAGGCTCAACGCGCGCCAGCATGCCAGCCGCCAGGGCTGGGGGGCGGTGATCGAGCAGTTCGAGGCGTTATTGCGAAGCGCTTGTGTCGGCGAGCAGGTGCTGCCTGCTGCGCCGACTGTGCGTTAA	MAPVDTGAMTTLLHVTLVTETFAPEINGVANTLGRLHDGLRARGHRVELIRPRQAGDQGLTSDDQLLLCRGWPLPGYPGLQWGQASIHKLLRRWKRHRPDVLYIATEGPLGLSALRAARRLGISVVSGFHTNFQQYTQQYGLGLLSRGLTHYLRWFHNRSSLTLVPSVSQRLELERRHFERVALLSRGVDSHLFHPAKRSAALRKSWGLDDDAIAVLHVGRLAPEKNLALLKRSFDTLRSAFATRQIKLVIVGDGPQRLALEQQLPEAIFCGAQRGEALAAHYASGDVFVFPSLTETFGNVVLEALASGLGVVSYDQAAAAQHIRHGYNGVLAMPGDEEAFCDAARWLLEEPEALRCVRLNARQHASRQGWGAVIEQFEALLRSACVGEQVLPAAPTVR				NA	NA	NA	NA	NA
D1-36_00915	756	cysZ	COG2981	Sulfate transporter CysZ	ATGCCCGCCCCCGTCCTGTCCGGCCCGCAATATTTGCGCGAAGGGCTCAAATTGGTCCTGAGCCCCAGCCTGCGCCTCTTTGTTCTGCTGCCGCTGGCTGTCAACCTGGTGTTGTTCGTCGGGCTGATCTACCTCGCCGGCCACCAGTTCAGCTTGTGGGTCGACACGCTGATGCCGTCGCTGCCGGATTGGCTGAGTTTCCTGAGCTATGTCCTGTGGCCTCTGTTCGTCGTCCTTGTGGTGCTGATGGTATTTTTCACTTTCACGATGCTTGCCAACATCATCGCGGCGCCTTTCAACGGTTTTCTCGCCGAGAAGGTCGAAGTGGTAGTACGCGGCACGGATGATTTCCCAGCGTTCAGTTGGGGCGAGTTGGTCGCCATGGTCCCGCGCACCCTGGCTCGAGAGGCGCGCAAGCTCGGTTATTTTCTGCCCCGGGCCCTGGGGCTGTTCGTGCTTTCGTTCATCCCGGTGGTCAATCTGGTGGCCGCGCCACTGTGGTTGCTGTTCGGGATCTGGATGATGGCGATCCAGTACATCGACTACCCGGCGGACAACCACAAGCTGGGCTGGAACGAAATGCTCGCCTGGCTGCGGGAAAAGCGCTGGCAGAGCCTGGGTTTTGGCGGCAGCGTGTACCTGGTGCTGCTGATTCCCTTCGTGAACATTCTGATGATGCCGGCGGCGGTGGCCGGGGCGACGTTGTTCTGGGTGCGGGAGCAAGGCGCCGAGACGGCGCTGGCGCGACAGGGCTGA	MPAPVLSGPQYLREGLKLVLSPSLRLFVLLPLAVNLVLFVGLIYLAGHQFSLWVDTLMPSLPDWLSFLSYVLWPLFVVLVVLMVFFTFTMLANIIAAPFNGFLAEKVEVVVRGTDDFPAFSWGELVAMVPRTLAREARKLGYFLPRALGLFVLSFIPVVNLVAAPLWLLFGIWMMAIQYIDYPADNHKLGWNEMLAWLREKRWQSLGFGGSVYLVLLIPFVNILMMPAAVAGATLFWVREQGAETALARQG	PGPT0003010_874	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0003010-cysZ-K06203	NA	NA
D1-36_00916	963		COG0492	Glucosaminate ammonia-lyase	ATGTCTGAAGTCCGTCATTCGCGTGTGATTATTCTCGGTTCCGGCCCTGCCGGTTACAGCGCCGCGGTTTATGCGGCACGTGCCAACCTCAAGCCGTTGTTGATCACCGGCATGCAAGCCGGCGGTCAATTGACCACCACCACCGAAGTCGACAACTGGCCAGGCGACGTCCACGGCCTGACCGGCCCGGCCTTGATGGAGCGCATGAAAGAACACGCCGAGCGCTTCGAGACCGAGATCGTCTTCGACCACATCAATGCCGTGGATTTCGCCGCCAAGCCATACACCTTGACCGGCGACAGCGCGACCTACACTTGCGACGCCCTGATCATCGCCACCGGCGCCAGCGCTCGATACCTGGGCCTGCCGTCGGAAGAAACGTTCATGGGCAAAGGCGTTTCGGCCTGCGCTACCTGCGACGGTTTCTTCTACCGCAACAAACCCGTGGCGGTGGTCGGCGGCGGCAACACCGCGGTCGAGGAAGCGCTGTACCTGGCCAACATCGCCAGCACGGTCACCCTGGTTCACCGTCGCGAAACATTCCGCGCCGAGAAGATTTTGATCGACAAGCTCAACGCCCGCGTCGCCGAAGGCAAGATCATCCTCAAGCTCAACGCGACCCTGGACGAAGTGTTGGGTGACAACATGGGCGTGACCGGCGCGCGCTTGAAGAACAACGATGGCAGCTTCGAAGAAATCAAGGTTGACGGCGTATTCATCGCCATCGGCCACACGCCGAATACTTCGTTGTTCGAAGGCCAGCTGGAGCTCAAGGACGGCTACCTGGTCGTCAAGGGTGGCCGCGACGGCAACGCTACCGCCACCAGCGTCGAAGGTATCTTCGCCGCCGGCGACGTGGCCGACCACGTCTACCGCCAGGCCATCACCTCGGCTGGCGCTGGTTGCATGGCGGCCCTGGACACCGAACGTTACCTGGACGGCCTGCAGAACGTTTCGTTCTGA	MSEVRHSRVIILGSGPAGYSAAVYAARANLKPLLITGMQAGGQLTTTTEVDNWPGDVHGLTGPALMERMKEHAERFETEIVFDHINAVDFAAKPYTLTGDSATYTCDALIIATGASARYLGLPSEETFMGKGVSACATCDGFFYRNKPVAVVGGGNTAVEEALYLANIASTVTLVHRRETFRAEKILIDKLNARVAEGKIILKLNATLDEVLGDNMGVTGARLKNNDGSFEEIKVDGVFIAIGHTPNTSLFEGQLELKDGYLVVKGGRDGNATATSVEGIFAAGDVADHVYRQAITSAGAGCMAALDTERYLDGLQNVSF	PGPT0018945_25	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018945-trxB-K22345	NA	NA
D1-36_00917	1251	davT_2	COG0160	5-aminovalerate aminotransferase DavT	ATGAGCCGCGACAGCATCAGCCAATCGATTTCCTTCGTTCACCCCGTCAGTCTCAGCCACGGGAAAAATGCCGAGGTCTGGGATTGCGACGCCAAGCGCTATATTGATTTCGTGGGTGGCATTGGCGTGTTGAATCTGGGCCATTGTCATCCTCGCATCGTCGAGGCGATCCGCGAGCAAGCCACCCGCCTGACGCACTACGCCTTCAATGCCGCGCCCCACGCGCCTTACCTCCAATTGATGGAGCGCCTGGCCGCATTCATCCCGGTCGGTTATCCGGTGAGCGGCATGCTGACCAACAGCGGCGCCGAAGCGGCTGAAAATGCCTTGAAGATCGTGCGCGGCGCCACGGGACGCACTGCCGTGATTGCTTTCGACGGCGGCTTCCATGGGCGAACCCTCGCCACCCTCAATCTCAACGGCAAGGTCGCGCCGTACAAACAGAAAGTCGGCGTACTGCCCGGACCGGTCTATCACCTGCCCTACCCCAGCCACGACAATGGCGTGACGTGCGCCGAAGCGCTGAAAGCCATGGACAGGCTGTTCAGCGTCGAGATCGATGTAAACGACGTGGCCTGTTTCATCGTCGAGCCGGTGCAGGGCGAAGCCGGTTTCCTGGCGATGGACGTGGCGTTCGCCCAGGCGTTGCGGCAGTTCTGCGACGACAAGGGCATCGTGCTGATCGTCGATGAGATCCAGTCCGGTTTCGGCCGCACCGGCCAGCGCTTCGCGTTCTCGCGACTGGGGATCGACCCGGACCTGATCCTGCTGGGCAAAAGCATCGCTGGCGGTGTCCCTCTGGGGGCGGTGGTAGGGCGCAAGTCGCTGATGGATAACCTGCCAAAGGGTGGGCTCGGTGGGACCTATTCTGGCAACCCCATCGCCTGCGCCGCCGCGCTGGCAACGCTGGATGAAATGACTGACGCCAATCTCCACGCGTGGGGCGCACAACAGGAAGAAGCGATCGTCAGCCGCTACGAGTCGTGGCGCCGCCGTGGGCTGTCGCCGTACCTGGGCCGCCTGACCGGCGTCGGCGCCATGCGCGGGATCGAACTGGCCCACGCCGATGGCACCCCGGCCCCGGCACAACTGACACAACTGCTGGCCCTGGCACGTGAGTCGGGCCTGCTGCTGATGCCCAGTGGTAAATCGCGGCACATCATCCGGCTGCTGGCGCCGTTGACGACCGAAGCGGCGGTGCTGGAAGAGGGCTTGGACATCCTGGAGGCGTGCCTGGGGGAACTGGCCTGA	MSRDSISQSISFVHPVSLSHGKNAEVWDCDAKRYIDFVGGIGVLNLGHCHPRIVEAIREQATRLTHYAFNAAPHAPYLQLMERLAAFIPVGYPVSGMLTNSGAEAAENALKIVRGATGRTAVIAFDGGFHGRTLATLNLNGKVAPYKQKVGVLPGPVYHLPYPSHDNGVTCAEALKAMDRLFSVEIDVNDVACFIVEPVQGEAGFLAMDVAFAQALRQFCDDKGIVLIVDEIQSGFGRTGQRFAFSRLGIDPDLILLGKSIAGGVPLGAVVGRKSLMDNLPKGGLGGTYSGNPIACAAALATLDEMTDANLHAWGAQQEEAIVSRYESWRRRGLSPYLGRLTGVGAMRGIELAHADGTPAPAQLTQLLALARESGLLLMPSGKSRHIIRLLAPLTTEAAVLEEGLDILEACLGELA	PGPT0007660_1542	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	INSECTICIDAL_COMPOUNDS	INSECTICIDAL-GAMMA-AMINOBUTYRIC_ACID_BIOSYNTHESIS,PGPT0007660-gabT-K07250	NA	NA
D1-36_00918	339			hypothetical protein	ATGCTTGACCTGAACACTTTCCGCGCCAGCCTCGAGAGCGGTGAGCATGTCTTTGCCGACACCCTGGCGTTCATTGCCGAAGGCTACGACTACCAGCCCCAGGCCTTCGACAACGGTGGCGTGAAGAACGCGGCCGGGCAGAACGAAGGCTCCTGCAAGACGTTGGGCCTGGCACTGCTTGAAGGCTTGAGCGACAAAGAGGCGCTCCTGGCATTCGGCGAGCACTACCGTTCGGTACTGAACACGCCCGAAGGCAGCGACCACGGCAATATCCGCGCGCTGATAGCCCACGGGTTGGCGGGGGTGAAGTTCGAAGCCCAGCCATTGCAACGCCGCTGA	MLDLNTFRASLESGEHVFADTLAFIAEGYDYQPQAFDNGGVKNAAGQNEGSCKTLGLALLEGLSDKEALLAFGEHYRSVLNTPEGSDHGNIRALIAHGLAGVKFEAQPLQRR				NA	NA	NA	NA	NA
D1-36_00919	297			hypothetical protein	ATGAACGACCAACAACGCCTCGAACTTGAAGCCGCCGCTTTCCGCCGGCTGGTTGCCCACCTCGACAGCCGCAAGGATGTGCAGAACATCGACCTGATGAACCTCGCCGGTTTCTGCCGCAACTGCCTGTCCAAGTGGTACAAGGCCGCCGCCGATGAGCGCCAGGTCGAGGTCAGCCTCGATGATGCGCGCGAAGTTGTCTACGGCATGCCCTATGCCGAATGGAAAGCCCAATACCAGAAAGAAGCCAATGCCGAGCAGCAAGCGGCGTTTGCCAAAGGAAACCCCGATGCTTGA	MNDQQRLELEAAAFRRLVAHLDSRKDVQNIDLMNLAGFCRNCLSKWYKAAADERQVEVSLDDAREVVYGMPYAEWKAQYQKEANAEQQAAFAKGNPDA	PGPT0008420_5	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008420-moaB-K03638	NA	NA
D1-36_00920	381	folX	COG1539	Dihydroneopterin triphosphate 2'-epimerase	ATGCCTCAACTTCAACCCGCCATGGCGCGTATCAAGGTCAAGGACCTGCGCCTGCGTACGTTCATCGGCATCAATGAGGATGAAATCCTCAACAAGCAGGATGTGCTGATCAACCTGACCATCCTCTACGCGGCTCAAGAGGCCGTGCGCGACAACGACATCGACCACGCCCTGAACTACCGCACCATTACCAAGGCAGTCATTGCCCATGTGGAAGGCAATCGCTTCGCCCTGCTCGAACGCCTCACCCAGGAGTTGCTGGACCTGGTCATGGCGAACGAGTCGGTGCTGTACGCCGAGGTCGAAGTCGACAAGCCACACGCGTTGCGCTTCGCCGAGTCCGTATCGATCACGCTCGCAGCAAGCAGGGCTACTCCGTAG	MPQLQPAMARIKVKDLRLRTFIGINEDEILNKQDVLINLTILYAAQEAVRDNDIDHALNYRTITKAVIAHVEGNRFALLERLTQELLDLVMANESVLYAEVEVDKPHALRFAESVSITLAASRATP	PGPT0008030_34	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008030-folX-K07589	NA	NA
D1-36_00921	558	folE_1	COG0302	GTP cyclohydrolase 1	ATGGCGCTTTCGCCCCAGCATTACCGTGAGATCCTGATCGGCCTGGGCGAAGACCCGGAGCGCGAAGGCCTGCTGGATACTCCGGTGCGCGCGGCCAAGGCCATGCAGTACCTGTGTCATGGCTACGAGCAAAGCGTCGAGCAGATCGTCAACGGCGCTCTGTTTGCTTCCGACAGCGATGAAATGGTGATCGTTGCCGACATCGAGCTTTATTCACTGTGCGAACATCACCTGCTGCCCTTCATCGGCAAGGCCCATGTGGCTTATATTCCAACGGGCAAGGTCCTGGGGCTGTCGAAGGTCGCCCGGCTGGTGGACATGTTCGCCCGCCGCCTGCAAATCCAGGAGAATCTCACCCGGCAAATTGCCGACGCCGTGCAGGAGGTCACCCAGGCTGCCGGCGTTGCGGTGGTGATCGAAGCCCAACACATGTGCATGATGATGCGCGGTGTGGAAAAACAGAACTCGACCATGAACACCTCGGTGATGCTCGGTGCCTTTCGCGAATCCAGCACCACGCGTCAGGAGTTTCTGCAATTGATTCGACGGAGCCAATAA	MALSPQHYREILIGLGEDPEREGLLDTPVRAAKAMQYLCHGYEQSVEQIVNGALFASDSDEMVIVADIELYSLCEHHLLPFIGKAHVAYIPTGKVLGLSKVARLVDMFARRLQIQENLTRQIADAVQEVTQAAGVAVVIEAQHMCMMMRGVEKQNSTMNTSVMLGAFRESSTTRQEFLQLIRRSQ	PGPT0007875_4334	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007875-folE-K01495	NA	NA
D1-36_00922	705	folM	COG1028	Dihydromonapterin reductase	ATGTCCACCGCCCCGATCCTGATCACCGGCGCAGCCCAACGCGTCGGCCTGCACTGCGCCCGACGTTTATTGGAGGACGGGCAGCCGGTCATAGCCACTTACCGCACCGAACGCCCGGGCGTGCAGACGCTGCGGGACCTGGGGGCCACGGTGCTGTTTGCCGATCTTGCCAGCGAACCGGGAATCCTGGCCTTCATCGATCTGCTCAAGCAGCACACCGACCAGTTGCGAGCCATCGTGCACAACGCCTCGGCCTGGCTGGCAGAGACGCCGGATAGCGAAGCCACCGCGTTCAACGCCATGTTTGGCGTCCATATGCTCGCGCCTTACTTGATCAACCTGCATTGCGCCGAGCTTCTGCGCCGTTCGGTCCCAGCGGATATCGTGCACATCAGCGATGACGTGACACGCAAAGGCAGCAGCAAGCACATCGCCTATTGCGCCACCAAGGCCGGCCTCGAAAGTCTGACACTGTCATTTGCGGCGAAGTATGCACCGGCCATCAAAGTCAACGGTATCGCCCCGGCCCTGCTACTGTTCAATCCCGGCGACGACCCAACCTATCGTGCCAAGGCCCTGGCCAAGTCCGCGCTGGGTATCGAGCCCGGCAGCGAAGTCATGTACCAGAGTTTGCGTTATCTGCTGGATAACTCATATGTCACCGGCACGACCCTGACGGTAAATGGCGGGCGGCACTTCAAATAG	MSTAPILITGAAQRVGLHCARRLLEDGQPVIATYRTERPGVQTLRDLGATVLFADLASEPGILAFIDLLKQHTDQLRAIVHNASAWLAETPDSEATAFNAMFGVHMLAPYLINLHCAELLRRSVPADIVHISDDVTRKGSSKHIAYCATKAGLESLTLSFAAKYAPAIKVNGIAPALLLFNPGDDPTYRAKALAKSALGIEPGSEVMYQSLRYLLDNSYVTGTTLTVNGGRHFK	PGPT0008035_312	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008035-folM-K13938	NA	NA
D1-36_00923	960			hypothetical protein	ATGAGCGCGATAGTCGAGGAAAACCACCCTTCTCAGGCATCTGTCGCTTCGACCCGCGAGGATTTGCTTCCGATTCGGGAAGTCGCCCGGTTGACGGGGGTCAACCCGGTGACCTTGCGTGCATGGGAGCGTCGCTACGGCCTGATCCAGCCCACACGCACCGAAAGCGGGCATCGCTTGTATTCTTTGATCGATATCGAAAAGGTGCGGAGCATTCTCGCCTGGATCGAGCGCGGGGTCGCCGTGAGCAAGGTGGGTAAGATCCTTGCGAAAACCGAATCGGTACGGCCAGTCTCCAAGTTTATTTCACCCGATCTGGTTCGTGCCGATTACAGCGATTGGCAGCAGCAGGTGTCGGATGCGGTCGGCAATTTTGACGACATCGAACTGGATCGTGTCTACGGAAAGATTTTCTCGAGTTACGCCGAGCCCGTGGTATTCCAGGACATTCTGATGCCGCTCTGGCGAGACCTGCTGCATCGCCAGCATGAGTTCGGGCATACCAGCGAATGGCTGTTCTTCGACGGTTTCTTGCGTTCGCGGGTCATGCACCGTCTCTTGCTCAAGCGTGAGGCAACCTCGCGGCGAGTGCTGGTCAGTGCCGTTGCTGGTCAATGCCGGGAGTTGGAGTTGCTGGTAACAGCGCTGTTCGTTTCCAAGGCAGAGGTGGGCGTGCGGGTCATGCCCGTCGGGCAGCCCTTTGATGAACTGACGCTGGTTTGCCAGAAGATCCGGCCGTTGGCGTTGGTGCTGGTCTCCAATCATGCACCGGCCGCCGAATTGCCCAGGCGGCTGACCAAATTGGCGATGGGCCTGGATTGTCCCCTGTTGCTGGCCGGCGAAGCCTCCGATCTGGCACAGGAAAGCCTGGCGGGATCGCCGATCGCTTGTCTGGGAAATGAGGGTTCGGTGATGGGGCAGCGCTTGCATCAGTTCCTGGCGGGTAACCTGGATACGTGA	MSAIVEENHPSQASVASTREDLLPIREVARLTGVNPVTLRAWERRYGLIQPTRTESGHRLYSLIDIEKVRSILAWIERGVAVSKVGKILAKTESVRPVSKFISPDLVRADYSDWQQQVSDAVGNFDDIELDRVYGKIFSSYAEPVVFQDILMPLWRDLLHRQHEFGHTSEWLFFDGFLRSRVMHRLLLKREATSRRVLVSAVAGQCRELELLVTALFVSKAEVGVRVMPVGQPFDELTLVCQKIRPLALVLVSNHAPAAELPRRLTKLAMGLDCPLLLAGEASDLAQESLAGSPIACLGNEGSVMGQRLHQFLAGNLDT				NA	NA	NA	NA	NA
D1-36_00924	606			hypothetical protein	ATGCAGCGCGACGCCCTTCTCACCCAGGATGAGCTGGATTTCATCCGGACCATGCAGCACAACCCGCAGTTGAACGAGCGGGATGTCACGTCGAGCTTGCTGGTAAACGGTGGGTCGCAGATCCGTGATCTGCTGACACGCCTGGCGGCGAATGAACAGGTCACGCTGCAGGCCAATTTCGAAAATCAACAGATGACCTTTCCGTTACAACTCGTCGAAGATGAATTCCACGCGATGCACCTTCGCCTGGGTGTGCCGAGCATCTATGAAGAGGGGCCGAAGGTGCGCCCGTGGCGCCTGACGCTTGATGAGCCAGTCGCCCTGGAGAACGCCAAGGGCCAGCCAGGGCCCTTATGGGTGCACGAGGTCTCTTGCAAAGGCGTATTGCTGGAAATACGCAATCGCACCAAGCCGCCCAAGCAATTCGCCCTGTGGTTCAGCCCGTCTGGCTATGAAAGGATTTCTCTTCGCGGGACTTTCGAACGGGAAACAGAGCAAGGCATGTATGCCTATCACCTGGCCCAGCATGACCAGGACGAAACCGAGCGCCTGCGCCAATACATCCTGCAACAGCACCGCCTGACCCATCCGGCGATGCACTTCTAA	MQRDALLTQDELDFIRTMQHNPQLNERDVTSSLLVNGGSQIRDLLTRLAANEQVTLQANFENQQMTFPLQLVEDEFHAMHLRLGVPSIYEEGPKVRPWRLTLDEPVALENAKGQPGPLWVHEVSCKGVLLEIRNRTKPPKQFALWFSPSGYERISLRGTFERETEQGMYAYHLAQHDQDETERLRQYILQQHRLTHPAMHF				NA	NA	NA	NA	NA
D1-36_00925	474	pfyP		Blue-light photoreceptor	ATGATCAACGCTCATCTGATGCAATTGGTGATCAACGCTTCGAACGACGGGATCGTCATCGCCGAGAAGGAAGGCGAAGACAACATACTGATCTACGTGAACCCTGCATTCGAGCGGCTGACTGGCTATAGCAGTGACGAAATCCTCTACCAGGACTGCCGTTTTTTGCAGTCGGGTGATCGCGACCAGCCTTCCCTCGAGTTCATTCGCACAACGTTGAAGCAAGGCGGCTCCTGCCGGCAGATCCTGCGCAACTACCGTAAGGACGGCACACCGTTCTGGAACGAGTTGTCGCTGTCCACGGTGAAAAACGAGGCTGACGGCCACACCTATTTCGTCGGTGTGCAAAAAGACGTAACGGCCCAAGTGAAGGCTCAACAGCGCATTACCCAATTGGAAGCGGAGTTGGCTGAAGCCCGGGAAACCGTCGCGCGCCTCCATGCGACGAATGGCGAAAACAAAACCGCGAATTAG	MINAHLMQLVINASNDGIVIAEKEGEDNILIYVNPAFERLTGYSSDEILYQDCRFLQSGDRDQPSLEFIRTTLKQGGSCRQILRNYRKDGTPFWNELSLSTVKNEADGHTYFVGVQKDVTAQVKAQQRITQLEAELAEARETVARLHATNGENKTAN	PGPT0014656_25	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014656-ytvA|pfyP-NA	NA	NA
D1-36_00926	459		COG0716	putative protein	ATGAAAGTCGCGATTCTTTCCGGCTCCGTATACGGCACGGCCGAAGAAGTTGCCCGCCACGCCGAAACAATGTTGCGTGATGCCGATTTCGAAACCTTCCTTAATCCGCGGGCAACCTTGGCGGATATTCTGTCCTTCGGACCACAAGCGTTGCTGGCCGTAACGTCGACAACGGGCATGGGTGAGCTGCCGGACAACCTGATGCCGCTGTACTCAATGATTCGCGACCAGTTGCCCGCATCGTTCCGCGGCTTGCCTGGCGCTGTCATCGGCCTGGGTGATGCCAGTTATGGCGACACGTTCTGCGGCGGCGGCGAGCAGATGTGTGAATTGTTCGCCGAGCTGGGCGTGCAGCAAGTACTGCCTATGTTGCGCTTGGATGCCAGTGAAAGCGTTACGCCTGAGTCGGATGCCGAACCCTGGCTGAAGGAGTTGATCGGCAAATTGAAGCCGGCCTGA	MKVAILSGSVYGTAEEVARHAETMLRDADFETFLNPRATLADILSFGPQALLAVTSTTGMGELPDNLMPLYSMIRDQLPASFRGLPGAVIGLGDASYGDTFCGGGEQMCELFAELGVQQVLPMLRLDASESVTPESDAEPWLKELIGKLKPA				NA	NA	NA	NA	NA
D1-36_00927	783	fucA		L-fuculose phosphate aldolase	GTGAGCGTAGCGTCCCTTCAATTGGCAGCCAGCATCAAGGATCAGGTCAGTGCAGCCGAATGGCAAACCCGAGTCGATCTTGCGGCCTGTTATCGGCTGATCGCGCTGCATGGCTGGGACGACCTGATCTTCACCCATGTCTCTGCGAAGGTGCCTGGCACGGAAGAGTTTCTGATCAATCCGTACGGCTTGATGTTCCAGGAAATCACCGCCTCGAACCTGGTCAAGATCGATCAGGCTGGCAACAAGCTAATGGACAGCCCCTACGAGATCAACCCCGCGGGCTATACCATCCACAGCGCGATTCACGAGGTGCGGCACGACGTGGCGTGTGTGCTGCACACCCACACCGCCGCCGGCGTCGCGGTGTCGGCGCAGAAGCAAGGAGTGCTCCCGATCAGCCAGCAGTCGTTGTTCGTATTGTCGAGCCTGGCGTACCACCCTTATGAAGGGGTGGCTTTGAATCCTGAGGAAAAAGTCCGCCTGCAAGCTGACCTCGGTGAGAACAATTTCCTGATGTTGCACAACCATGGCCTGCTGACCTGCGGCGGGACGATTGCCGATACGTTCCTGATGATGTTCATTTTCCAGCGAGCCTGCGAAATCCAGGTCCTTGCCCAGACCGGCGGCGCCGAGCTGATTGCCATCGAGCCGCAGGTGCTGGCCGGTGCCCGTGCGATGGTGGCCGGCGTGACCAAGAGCGCCCAGGGCATGGGAGGCGCGTTGGCCTGGCCGGCGCTCCTGCGCAAACTCGACCTGCAAGATCCGAGTTATAAGAGCTGA	MSVASLQLAASIKDQVSAAEWQTRVDLAACYRLIALHGWDDLIFTHVSAKVPGTEEFLINPYGLMFQEITASNLVKIDQAGNKLMDSPYEINPAGYTIHSAIHEVRHDVACVLHTHTAAGVAVSAQKQGVLPISQQSLFVLSSLAYHPYEGVALNPEEKVRLQADLGENNFLMLHNHGLLTCGGTIADTFLMMFIFQRACEIQVLAQTGGAELIAIEPQVLAGARAMVAGVTKSAQGMGGALAWPALLRKLDLQDPSYKS				NA	NA	NA	NA	NA
D1-36_00928	897	oleB	COG0596	Cis-3-alkyl-4-alkyloxetan-2-one decarboxylase	ATGGTCCAGATCCCCTTGCGTATCTGGCGCCAGCGCGGCCAGACGTTCATGTTTCGTGGCCACGCTATCCGTTACTGGACTGCGGGGCACGGCGAGCCATTGCTGCTAATCCACGGGTTCCCTACCGCAAGCTGGGATTGGCACTACCTTTGGCAGCCGCTGGCACAACGTTATCGGGTGATTGCCTGCGACATGCTCGGTTTTGGTGACTCCGCCAAGCCAGTGGACCATGTCTACAGCCTGCTCGAACAGGCCGATCTGCAACAGGCACTGCTGGCCCACCTGAATGTGACGCAAGCGATCCATATACTGGCCCATGACTACGGCGACAGTGTGGCGCAGGAGCTCATCGCCCGGCATGGCGAGGCACGCGCCAATGTCGCCAGTTGCACCTTTCTCAATGGCGGTTTATTCCCGGAAACCCATCGTCCGGTGCTGATGCAAAAACTGTTGCTCAGCCCTCTGGGTTGGCTGATCGGCCGGGCGTTTTCCAGGGATGGCCTGGTCAAGAGTTTCCGACGGATCTTCGGCCCTTGGACTGCTCCCACCGAGAGTGAACTGGATGATTACTGGAGCCTGGTCGAAACCCATCGCGGGCCACGGATCATGCACAAACTCATTGCCTATATCCCGGAGCGGCGCGTGCAGCGTGATCGCTGGGTCAAGGCGATGCAGCGCGGCGAGGTGCCCATGCGGGTGATCGATGGGGCGTTCGATCCCATTTCCGGCGCGCATATGGTGGCGCGCTACCAAGCCCTGGTTCCCAACCCCGACACAGTGTTGTTGCCCGATATTGGTCACTACCCCCACACCGAGGCGCCTGTACAGGTGCTCAAGCATTACCTCGCGTTTCGTGAAGCCATCGCTGCGCCTTCCCGGCAACTGGCGTGTTCCTGA	MVQIPLRIWRQRGQTFMFRGHAIRYWTAGHGEPLLLIHGFPTASWDWHYLWQPLAQRYRVIACDMLGFGDSAKPVDHVYSLLEQADLQQALLAHLNVTQAIHILAHDYGDSVAQELIARHGEARANVASCTFLNGGLFPETHRPVLMQKLLLSPLGWLIGRAFSRDGLVKSFRRIFGPWTAPTESELDDYWSLVETHRGPRIMHKLIAYIPERRVQRDRWVKAMQRGEVPMRVIDGAFDPISGAHMVARYQALVPNPDTVLLPDIGHYPHTEAPVQVLKHYLAFREAIAAPSRQLACS				NA	NA	NA	NA	NA
D1-36_00929	942		COG1028	Putative short-chain type dehydrogenase/reductase	ATGTCCTATCGGCCTGTTGGAGTTCTGCCCATGAATGATTCTGTGCGCTTCGAAGATAAAGTCGTGATCGTCACCGGAGCCGGTGGCGGCCTGGGTCGCGCCCATGCGCTGTTGTTCGCCAGGCATGGCGCAAAAGTGCTGGTCAACGATCTTGGCGGTTCGGCGCAGGGGGAGGGAGCCAACGCTTCGGCGGCGGATCGGGTGGTCAGTGAAATTCGCGAAGCCGGCGGCGTTGCCGAAGCCAATCACGATTCGGTTACCGATGGCGACAAGCTAGTACAGAATGCCCTCGACGTGTTCGGCAGGGTTGATGTTGTCGTCAACAACGCCGGTATCCTGCGAGACAAGACTTTTCACAAAATGGACGATGCCGATTGGGACCTGGTGTATCGCGTTCATGTCGAAGGCGCTTACAAAGTTACTCGTGCGGCCTGGCCGCATTTGCGCGAGCAGAATTATGGCCGGGTAATCTTCACGGCTTCCACGTCTGGCATCTACGGCAACTTTGGCCAGTCCAATTACGGCATGGCCAAGCTTGGTCTCTATGGCCTGACTCGCACCCTGGCCATCGAAGGTCGCAAGAACAACATCCTGGTCAATGCCATCGCTCCCACCGGCGGCACCCGCATGACCGAAGGCCTGATCCCGCCTCAAGTGTTCGAGCAACTCAAGCCTGAACTGGTCAGCCCACTGGTGGTGTACCTGGCCAGTGAAGCCTGCCAGGAAACCTCCGGATTGTTCGAAGTGGGCGGCGGCTGGATGGGCAAGGTGCGCTGGGAGCGCAGCCTCGGCGCGGGGTTCGACCCGCGCGAAGGTTTCTCGCCGCAAGACGTCGCCGCCCACTGGCAGCAGATCTGTGACTTCCAGGATGCTGTTCACCCGAATGACAACCTCGAAGCCTTGAAAGAGATGATGGCTAACCTGCAGCGTTACGCCGTTTAA	MSYRPVGVLPMNDSVRFEDKVVIVTGAGGGLGRAHALLFARHGAKVLVNDLGGSAQGEGANASAADRVVSEIREAGGVAEANHDSVTDGDKLVQNALDVFGRVDVVVNNAGILRDKTFHKMDDADWDLVYRVHVEGAYKVTRAAWPHLREQNYGRVIFTASTSGIYGNFGQSNYGMAKLGLYGLTRTLAIEGRKNNILVNAIAPTGGTRMTEGLIPPQVFEQLKPELVSPLVVYLASEACQETSGLFEVGGGWMGKVRWERSLGAGFDPREGFSPQDVAAHWQQICDFQDAVHPNDNLEALKEMMANLQRYAV	PGPT0003180_18177	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
D1-36_00930	765	amiD_2	COG3023	N-acetylmuramoyl-L-alanine amidase AmiD	ATGCAGATAAACAATACAAGTTATCGCTCAAGAAAAGGTTTTAATAGCCGCATTCGTTTTCTGGTCTTCCATTACACAGCCGGCAACTTCGCCTCTTCCATCACCGCACTGACCGGTCCTTCGGTCAGTGCTCATTACCTTATCCCCGACTTTGCCGACCCCACTTACTTGAAGGCTGGCTTCAAAGAGCCACAGATCTTCAACCTTGTAGACGAAAACCAGCGGGCCTGGCATGCCGGTGTGAGCAGTTGGGGCAACCGCAGCAATTTGAATGACACTTCGATTGGCGTTGAAATTGTCAACCTGGCCACCGACAACCAAGGCCAATTTACCTTTCCGCCCTATAAGGCCCAGCAAATCGAGGCCATCGAGTATTTGGCATCCGACATTCTCAAGCGATATCCGGACATCAGCCCGGTCAACGTGGTGGCGCATTCGGACATCGCTGCGGGGCGAAAAAGCGACCCGGGCCCGATGTTTCCTTGGCGCGCGCTGTATCTCAAGGGAATTGGGGCTTGGTTTGACGATTGCACCCAGAAAACTTACATGCAGGCATACCAAACCCAGGGAATCCCGCTTCGCGAACAATTGCTGGGATTATTCAGGAGGTATGGCTATGACACGTCGGCGGCCACCACAACCGTAGGCTTTCAACGACTCGTACGCGCCTTCCAACTGCACTTCCGCCCGGCCAAGTATGACGGTGTGATGGACATCGAGACCGCCGCGAATCTGGCTGCCCTGGTGAAGAAATACTTCCCCTGA	MQINNTSYRSRKGFNSRIRFLVFHYTAGNFASSITALTGPSVSAHYLIPDFADPTYLKAGFKEPQIFNLVDENQRAWHAGVSSWGNRSNLNDTSIGVEIVNLATDNQGQFTFPPYKAQQIEAIEYLASDILKRYPDISPVNVVAHSDIAAGRKSDPGPMFPWRALYLKGIGAWFDDCTQKTYMQAYQTQGIPLREQLLGLFRRYGYDTSAATTTVGFQRLVRAFQLHFRPAKYDGVMDIETAANLAALVKKYFP	PGPT0019115_1494	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_HYDROLASE_ACTIVITY,PGPT0019115-xlyAB-K01447	NA	NA
D1-36_00931	1794			hypothetical protein	ATGACAACAATAACAATGCGCGCCATCTTCAAGCCGCAGGCGCTGGCCGTCGCGGTGGCCTTGGGTTGCTGTGCCCAGGCGCAGGCCGTTTCTTTCAACATTGGCGAGATCGAGGGGCAGTTCGACTCCTCTCTGTCCGTCGGCGCGAGCTGGGGCATGCGCGATGCCGACAAGGATCTGGTCGGTACGGTCAACGGGGGGAGGGGGCAATCCTCCACCGGTGACGATGGGCGACTTAACTTCAAGAAAGGCGAGACCTTCTCGAAAATCTTCAAGGGCTTGCACGACCTGGAACTCAAGTACGGCGACACCGGTGTGTTCGTGCGCGGCAAGTACTGGTACGACTTCGAACTCAAGGACGAAAACCGGGAGTTCAAGGACATCAGCGACAGCAATCGCAAAGAAGGCGCCAAGTCATCGGGCGCGCAGATTCTCGATGCCTTTGTCTATCACAACTATTCCATCGCCGATTTGCCCGGCACCGTGCGCGCCGGCAGGCAGGTGGTCAGTTGGGGTGAAAGTACCTTCATCGGTAACTCCATCAACAGCATCAACCCGGTGGACGTGTCTGCGTTCCGTCGTCCGGGCGCGGAGATCAAGGAAGGCTTGATCCCGGTGAACATGCTGTTTGCTTCCCAGGGCTTGACGGACAAGCTCACTGTCGAAGGTTTCTACCAGATAGAGTGGGACCAGACGGTCGTCGATAACTGCGGTACGTTCTTCGGCAACGATGTGGTGGCGGATGGATGCACCACTGGTTACACCGTAGGCAGCCCGGCGATTGCGCCGTTCGTACCGCTGACCGAGGCATTTGGCCAGGGCATCCAGGTGACCAGCGAAGGGGTTGTGATTCCCCGCGGCGGTGACCGCGATGCGCGGGATTCCGGCCAGTGGGGGACGGCGTTGCGCTGGCTCGGCGATGACACCGAGTACGGCCTGTATTTCATGAATTACCACAGTCGTACGCCTACCGTGGGCACCACTACGGCCGGACTGTCCACGTTGTCCGCGCTGCCCGGCATGATTGCGATAGCCGAGGGGATTGCTCCGGGCAGCGGCGCGGGACTGGCACAAAGCGTAATGCTGGGTCGCGGTGGGTATTATCTTGAATACCCTGAAGACATCCGCCTGTACGGCGCGAGCTTCTCCACCACGCTGCCGACAGGCACTGCGTGGACCGGCGAGATCAGCTATCGCCCCAATGCACCGGTGCAGGTCAACACCAATGACCTGACGCTCGCCTTGGTGAACCCGATCGCCGGTGGCGCCGCGTCCCCCATCGCCACCTCGCCGGGCGCCGACAACACCGGCTACCGCCGCAAGGAAGTCACCCAGCTCCAGAGCACCCTGACCCACTTCTTCGACCAGGTATTGGGCGCCGATCGCCTGACCGTGGTAGGCGAGGCGGCGGTCGTGCATGTCGGTGGTCTCGAGTCGAAAGACGAGCTGCGTTACGGCCGCGACTCGGTCTATGGCCAGTACGGCTTCAACGGTGACACCGATGGATTCGTCACGTCGACGTCATGGGGCTACCGCGCTCGGGCGATTCTCGACTACTCCAACGTCATCGGCGGGGTCAACTTCAAGCCCAACGTGTCCTGGTCCCACGATGTGGCCGGCTATGGGCCCAACGGCCTGTTCAACGAAGGCGCCAAGGCCGTCAGCGTCGGCGTCGATGCCGATTACCGCAATACCTACACCGCCAGTCTGAGTTACACCGACTTCTTCGGCGGCGATTACAACGTTCTCGAAGACCGCGACTTCCTCGCGCTGAGCTTCGGCGTGAACTTCTGA	MTTITMRAIFKPQALAVAVALGCCAQAQAVSFNIGEIEGQFDSSLSVGASWGMRDADKDLVGTVNGGRGQSSTGDDGRLNFKKGETFSKIFKGLHDLELKYGDTGVFVRGKYWYDFELKDENREFKDISDSNRKEGAKSSGAQILDAFVYHNYSIADLPGTVRAGRQVVSWGESTFIGNSINSINPVDVSAFRRPGAEIKEGLIPVNMLFASQGLTDKLTVEGFYQIEWDQTVVDNCGTFFGNDVVADGCTTGYTVGSPAIAPFVPLTEAFGQGIQVTSEGVVIPRGGDRDARDSGQWGTALRWLGDDTEYGLYFMNYHSRTPTVGTTTAGLSTLSALPGMIAIAEGIAPGSGAGLAQSVMLGRGGYYLEYPEDIRLYGASFSTTLPTGTAWTGEISYRPNAPVQVNTNDLTLALVNPIAGGAASPIATSPGADNTGYRRKEVTQLQSTLTHFFDQVLGADRLTVVGEAAVVHVGGLESKDELRYGRDSVYGQYGFNGDTDGFVTSTSWGYRARAILDYSNVIGGVNFKPNVSWSHDVAGYGPNGLFNEGAKAVSVGVDADYRNTYTASLSYTDFFGGDYNVLEDRDFLALSFGVNF				NA	NA	NA	NA	NA
D1-36_00932	1368			putative protein	ATGCGCAAGACGATCCTGCAATGCGGTGCCCTGGCCCTGAGCCTGCTGGCCGTGAACGTGATGGCGGCGGTCTCGCCGGAGGAAGCGAACAAGCTGGGCACCAGCCTTACGCCTCTGGGCGCGGAAAAGGCCGGCAACGCTGACGGCTCGATCCCGGCCTGGACCGGCGGCATTCCGAAAAACGCTGGCGCCGTGGACAGCAAAGGCTTCCTGGCCGATCCGTTCGGCAATGAAAAACCACTGTTCACCATCACCGCCGCGACCGTGGACAAATACAAGGACAAGCTGTCCGACGGCCAGGTCGCGATGTTCAAGCGCTACCCGGAAACCTACAAGATCCCGGTCTACCCGACACATCGCAGTGTCGGCCTGCCGCCGGAGATCTATGAGGCGGCCAAGCGCAGCGCGCTCAATGTGAACGCCATCAACGACGGCAACGGCCTGGCCAACTTCACCGGCAACCGGTATTACGCGTTTCCGATCCCGAAAAACGGCGTGGAAGTGCTGTGGAACCACATCACCCGGTACCACGGCGGTAACCTGCGGCGCGTCATCACCCAGGCCACGCCACAGACCAATGGCAGCTTCACGCCGATCCGCTTCGAAGAAGAGATCGCCGTGCCGTTCCTGATCAAGGACGCCGACCCGGAAAAAGCCAGCAACGTGTTGACCTACTTCAAGCAGGAGGTCACGGCGCCGGCGCGCCTGGCCGGTAACGTGCTGCTGGTACACGAGACGCTCGACCAGGTGAAGGAACCGCGCCTGGCGTGGATCTACAACGCCGGCCAGCGCCGGGTGCGACGTGCCCCGCAGGTGGCCTATGACGGCCCGGGGACGGCCGCCGACGGCTTGCGTACCTCCGACAACTTCGACCTGTTCTCCGGCGCGCCGGACCGCTACGACTGGAAGCTGATCGGCAAGAAGGAAATGTACATCCCGTACAACAGCTACAAGCTCGATTCGCCAAGCCTCAAATACGATGACGTGATCAAGGCCGGCCACATCAACCAGGACCTGACCCGCTACGAATTGCACCGGGTGTGGGAAGTGGTCGGGACGGTCAAGCCCAGCGAGCGGCATATCTACGCCAAGCGTCACATGTACATCGACGAGGACAGCTGGCAAGCGGCGCTGGTGGACCATTACGACGGTCGCGGCCAGTTGTGGCGCGTGGCAGAGGGGCATGCCCAGTTCTACTACGACCATCAGAACCCGGGCTACACCCTCGAGGCGCTCTACGACATCATCGCCGGCCGCTACATCGCGCTGGGCATGAAGAACGAAGAGAAACACGCCTACGTATATGGGTTCGAGGCTCGGGCGGCTGACTATACCCCGGCGGCGTTGCGTTCGAGTGGGGTCCGGTAA	MRKTILQCGALALSLLAVNVMAAVSPEEANKLGTSLTPLGAEKAGNADGSIPAWTGGIPKNAGAVDSKGFLADPFGNEKPLFTITAATVDKYKDKLSDGQVAMFKRYPETYKIPVYPTHRSVGLPPEIYEAAKRSALNVNAINDGNGLANFTGNRYYAFPIPKNGVEVLWNHITRYHGGNLRRVITQATPQTNGSFTPIRFEEEIAVPFLIKDADPEKASNVLTYFKQEVTAPARLAGNVLLVHETLDQVKEPRLAWIYNAGQRRVRRAPQVAYDGPGTAADGLRTSDNFDLFSGAPDRYDWKLIGKKEMYIPYNSYKLDSPSLKYDDVIKAGHINQDLTRYELHRVWEVVGTVKPSERHIYAKRHMYIDEDSWQAALVDHYDGRGQLWRVAEGHAQFYYDHQNPGYTLEALYDIIAGRYIALGMKNEEKHAYVYGFEARAADYTPAALRSSGVR				NA	NA	NA	NA	NA
D1-36_00933	2553	malT_1		HTH-type transcriptional regulator MalT	ATGACCGCCATGACCCCGTGTCCGGACCGTCCAGGGCTGCTGCCTCGCCTGTCTTCGACACACGTGCCGCGCAGGTCGTTGAGCGAGCCCCTGTTGGCTTCCGAGGCGCGGGTAAAACTGCTTTGCGCACCGGCGGGAAGTGGCAAGAGCGCATTGTTCGCCGAGTGTTTCCTGCAAGCGCCCGCGGGGTGCCGCTTGCATTGGCTACCCTTGGCGGGCGCGGTGATGGACGCCGCGCAACTGTGCGAATGCCTGGCGCAAGCCCTCGGGCTGCCGGTGACGGATGAGACAAGCCTGTTGGCTCATCTGGCGCGTTTGCAAATCCCGACGTGGCTGTTCCTGGACGATTATTGCCGCACGCCCAATCCTGAGCTGGACCTGTTGCTTGACCGTTTGTTGAGCACCAGCAGCCCGGCATTGCACCTGTGGTTGAATGGACGCCGTCGTCCCCATTGCAACTGGCCACGCTTGTTGCTCGATGACGAATTGTATGAAGTCGACGCCCCGGCCCTCGCGTTTTCTTGCGACGATATCCAGCAACTGCTGGCGCATCTGCCCGGCCCGCTGGCAGCGCGCACGGCCCGGGAAGTGATACAGCGTAGCGGCGGCTGGTGTGCCGGCGTGCGCATCACTTTGCTCGAACGCTGTGAATGGGCACGCCGGCACGCAACGCCGGGGCGGCCCGGCACTTTGCTGGATTACCTTGAATACGAACTGTTCGGTACGTTGACCCCGGAGTTGGCCCAGGCCTGGCGCGTGCTGGCGCACCTGCCGCGCTTCAACGGGCAGCTTTGCGCCCATCTTTTCGGCGATACGGTGGGCGCCGAATGCCTTCCGTTGCTGCTGGACCTGGGATGCTTTATCGGACCCTGGGAGCAGTCATCGGATTGGCTGCGGATTTTCCCGCCCCTGGCGCGATTGGTGCGTGAGGAGCCCTGGCCACAAGGCCGCTCCTGGCATCGACGAGCCTGCCAGTGGTTTGCGGCCGAGCAGGACTGGCCGATGGCATTCGAACAGGCCATGCAAGCCGGGGAATTCGAGACCGCCGTCAGTCTCCTGCAACACTTGCATTTCGAACATGTCCTGCAAGGCAGCAATGCCCAATTGCTGCTAGCCCTGCATGATCAGCAGGGCGAAGCGCTGTCGCTCGGAACCGCGCAATCGGTCGGGGTGATCACGACCGCCTTGCTCTTCGCCGGACGCTTCGACCAGGCTGAAGGCTGTATCGAACAGCTGACCAGGTTCCTGCCCCAACCGCTGGCTTGTCAGCAGCGAGAGCTGATTGCCCGCTGGCAGGTCTTGCGTGGTTGGTTGTTGCACTTGCGCGGAGACGGCGAACAGGCGCGCGAACATTTTTTCCAGGCCCAGGCCGGCCTGGACCCGGAGGCTTGGGCCCTCAAGGTGCTGTGCCTGATTGGCCAGACACAACAGGCGCTGCTTCAAGGTGAATTGGCGCTGGCGCAGGCGATCAATCGCCAGGCGCTATGTGTCGCGCGCGCCGGGGGCTCGCTGGTGTTCGAAGGGCTATTGGAGTTGGACCACGCGCAAATCCTGGAGCAGCGCGGCGCGCCTCACCGGGCCGACCACTTGTTGGGCGCTGTTCAGGCGTTGCTCGATAAACCAGGGCAGGATTTCTCTGCGTTGCTGGGACGTATCGCCTTGCGGCGGGGACGCCTGGCGTTGCGCATGGGGCTTGAGGAGCAGGCTGGCGAGCATTTTCAGGCAGGGCTCGAAGCCGGCTTGCGCAGCCAGGACAAGCAAGTGCTCTATGGCTTTCTCGGCAAGGCAAGCCTGGCCGCCAACCAGGGCAACTATGGCGAAGCCTTCATGCAGCTTCGCGACGCCGAACGGATCATGCAACAGCGGCACATCCCCGAGACGGTATACCGTGGTGTACTGCTGCAAGTCAGCTGTCAATTCTGGCTGCAGCAGGGGCGCCCGGAACTGGCCCATGAAGTCTTGACCCGAGTGTTGCGGCATTTTCGCGGACCGCAGGCCAAGCACGCGCCGCCAGCGACCCTGGAGTTGATTCCGCGCCTCGAATACTTGCTGGTGCTGACCGAAGTCTATCTGCACCGGGCGCAGGATCCGCAGGCTCGGCTCCGGGAAATGATCGCCCAGGCGCAACGTTGCGAAATGCATGGGTTGGAGACCGAACTGGTACTGGTATTGGCGGAAGTCGTCTGGCTGTCGGCCGATCACTCCCAGGCGCGTGCTCTCATGCAAGAAGGGCTTGAGCGGGTTGCCTGCTGGCGGGCGCAACAAGCCTTGCGCGAGCTGTGCCTGCGTCAACCGGATCTGGTGCGCGCCGCCCAATCCGGTGAACAACTCGAACCGCCACCCACGGTGCCCGAGGAAACCGTGCTCAGCCACCGTGAGTTGGAAGTGCTCGAGTTGATTGCACAGGGTTATTCTAACCAACAGATCGCCGAACAACTGTTCATCTCATTGCACACAGTAAAAACCCATTCGCGTCGCATCCACAGCAAGTTGGGCGTGCAACGACGTACACAAGCTGTCGCCAAAGCCAAGGTCTTGGGCATGATGAGTTAA	MTAMTPCPDRPGLLPRLSSTHVPRRSLSEPLLASEARVKLLCAPAGSGKSALFAECFLQAPAGCRLHWLPLAGAVMDAAQLCECLAQALGLPVTDETSLLAHLARLQIPTWLFLDDYCRTPNPELDLLLDRLLSTSSPALHLWLNGRRRPHCNWPRLLLDDELYEVDAPALAFSCDDIQQLLAHLPGPLAARTAREVIQRSGGWCAGVRITLLERCEWARRHATPGRPGTLLDYLEYELFGTLTPELAQAWRVLAHLPRFNGQLCAHLFGDTVGAECLPLLLDLGCFIGPWEQSSDWLRIFPPLARLVREEPWPQGRSWHRRACQWFAAEQDWPMAFEQAMQAGEFETAVSLLQHLHFEHVLQGSNAQLLLALHDQQGEALSLGTAQSVGVITTALLFAGRFDQAEGCIEQLTRFLPQPLACQQRELIARWQVLRGWLLHLRGDGEQAREHFFQAQAGLDPEAWALKVLCLIGQTQQALLQGELALAQAINRQALCVARAGGSLVFEGLLELDHAQILEQRGAPHRADHLLGAVQALLDKPGQDFSALLGRIALRRGRLALRMGLEEQAGEHFQAGLEAGLRSQDKQVLYGFLGKASLAANQGNYGEAFMQLRDAERIMQQRHIPETVYRGVLLQVSCQFWLQQGRPELAHEVLTRVLRHFRGPQAKHAPPATLELIPRLEYLLVLTEVYLHRAQDPQARLREMIAQAQRCEMHGLETELVLVLAEVVWLSADHSQARALMQEGLERVACWRAQQALRELCLRQPDLVRAAQSGEQLEPPPTVPEETVLSHRELEVLELIAQGYSNQQIAEQLFISLHTVKTHSRRIHSKLGVQRRTQAVAKAKVLGMMS	PGPT0018616_1550	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_COMPLEX_SUGAR_UTILIZATION	PLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018616-malT-K03556	NA	NA
D1-36_00934	702			hypothetical protein	ATGTACGCTCCATTGTTTGCTTCACATTCGCAAAGGCTCGTCGCCCTCAAGAAAACGCGAGTGGACTTCGCTGTGCAGGTGTTATTGGGAGAGGCCCTGGAAGGGCTGGAAGTCAATCCCCACAACAATTATTTGAACACGCTGACTGATGTTTCTGGCGCCGAGGTGGTTTCTTCCGTCACCTTGTTTGATGAAGCGCTGGCTTGCGTTGAAAAACAACTTGCCCCTCACTACACCCAAGGTGTTAGTGAAGTCTTCAGCAAGCGTTATTCTTTCGCCGCTGAGGATCGGATCAAGGGATTGGACGTGATCGGTTTTGAGAGGATCGTCATCGATATCGTCTCCAGCCTGACTGACGGTCCCTCGATGGATCTATCCCGGCCTGGCCTGAAGTCACTCGCCGTTGCGGACCTTGAGTCGATCCTGAAGGACCACCTGCCAGGCATCGACCTGAATGAAACCTATGTCACCGGTTTTGCGCCCGACGGTCTTGGCGGCCGGGTGATAACCTCATCGCAGAAGTTGGCGGACTATCTCTTGGCTCACTTCGATGATGACAATATTCCCTTTCATGCCAAGGGCGACCATCAGGCCGTGTACACGGTGGCCTTCAGCGGGGAAGCCAGGCACGCTCATCCGCAGCTGACCACTGGCCACCTCAACGACCTACTGATCCGGATCGTGCCGCACTTGCTGGGCTGA	MYAPLFASHSQRLVALKKTRVDFAVQVLLGEALEGLEVNPHNNYLNTLTDVSGAEVVSSVTLFDEALACVEKQLAPHYTQGVSEVFSKRYSFAAEDRIKGLDVIGFERIVIDIVSSLTDGPSMDLSRPGLKSLAVADLESILKDHLPGIDLNETYVTGFAPDGLGGRVITSSQKLADYLLAHFDDDNIPFHAKGDHQAVYTVAFSGEARHAHPQLTTGHLNDLLIRIVPHLLG				NA	NA	NA	NA	NA
D1-36_00935	822	kdgR_1		Pectin degradation repressor protein KdgR	ATGGAAAACCCGCCCGGCAACGGTAAACAGAAAGTCCGCTCCGCTGAGGTCGGCACCGATATCCTCAAGGCCTTGGCCGAGCTGTCGCCGTCCACGTCGCTGTCGCGCCTGGCCGAACACGTGCAAATGCCCGCCAGCAAGGTCCATCGTTATCTTCAGGCGTTGATCGCCAGCGGATTTGCCGAACAGAACACAGCCACCAATCACTACGGCCTGGGTCGCGAGGCCTTGCGCGTGGGCTTGGCGGCGTTGAATGGCATGGATGTATTGCAGGTGGCAGCCCTGCCCTTGGCCGAGTTGCGCGATGACTTGAACGAAACCTGTTTCCTGGCGGTATGGGGTAACCACGGTGCAACGGTGGTGCGGATCGAGCCCGCCGTGCGGGCCGTGACCGTGGTGACGCAACTGGGCTCGGTACTCCCTTTGCTCAGCTCATCCACCGGGCTGGTTTTCAGCGCCTATCTGCCGGAGCGCGAGACCATCGAGTTGCGCGACCAGGAAGTACGCGCCACCCACGGCCATGTCCTGGCCGACGAGCAGGCCTATGCAACGCTGTGCGAACACATCCGCAATCGTGGCCTGCATCATGTGCATGGTTTGCTGATGCCCGGAGTGGATGCGTTGTCCGCACCCGTGTTCAACGCCATGGGCGACGTCGCGGCGGTGATCACGATTGTCGGCCCGACATCGCTGTTCCACGCCGATGAGAACGGCCCGGCGGCGCAGCGCCTGTTGGCGGCGACCCGGGCCGTGAGCTGGCGCATGGGCTACGAGGGCGCCCCGGGATCAGCCCAGCAAGTGCGGCACGATCCGGATCAGTAG	MENPPGNGKQKVRSAEVGTDILKALAELSPSTSLSRLAEHVQMPASKVHRYLQALIASGFAEQNTATNHYGLGREALRVGLAALNGMDVLQVAALPLAELRDDLNETCFLAVWGNHGATVVRIEPAVRAVTVVTQLGSVLPLLSSSTGLVFSAYLPERETIELRDQEVRATHGHVLADEQAYATLCEHIRNRGLHHVHGLLMPGVDALSAPVFNAMGDVAAVITIVGPTSLFHADENGPAAQRLLAATRAVSWRMGYEGAPGSAQQVRHDPDQ				NA	NA	NA	NA	NA
D1-36_00936	1305	hmgA	COG3508	Homogentisate 1,2-dioxygenase	ATGAACCTCGATTCCACGCCGTCGGACGTGCTTTATCAGTCTGGCTTCGGTAACGAATTTTCCAGCGAAGCGCTGCCTGGCGCCTTGCCGGTTGGCCAGAACTCGCCGCAAAAAGCGCCGTACGGGCTGTATGCCGAATTGTTTTCCGGTACCGCCTTCACCATGGCCCGCAGCGAAGCGCGGCGAACCTGGATGTACCGCATCCGGCCATCGGCCAACCATCCGGCCTTTACCAGGTTGGAACATCAGATGGCCGGCGGCCCGCTGGGCGAGGTCACGCCGAATCGCCTGCGCTGGAGCCCCCTCGAAATTCCCGGCGAACCGACCGATTTCATCGACGGCCTGGTGCGCATGGCCGCCAACGCTGGCGCGGACAAACCGGCTGGCATCAGTATTTATCACTACCGGGCCAACCGTTCCATGGAGCGGGTTTTCTTCAATGCCGACGGCGAATGGCTGGTCGTGCCGCAATCAGGGCGGTTGCGGATTGCCACCGAGTTGGGCGTGCTGGAACTGGCGCCCTTGGAAATCGCCGTATTGCCCCGTGGCTTGAAATTCCGCATCGAATTGCTCGACGCCCAGGCTCGCGGTTATATCGCCGAAAACCATGGTGCGCCGTTGCGCCTGCCGGACCTGGGGCCCATCGGCAGCAATGGCCTGGCTAACCCGAGGGATTTCCTGTCGCCGGTCGCTCAATACGAAAATCTCGCCCAACCCACTACGTTGATCCAGAAATTTCTCGGGGAGCTGTGGACCTGCGAACTGGACCATTCGCCGTTGGACGTGGTGGCCTGGCATGGCAACAACGTGCCATATAAATATGATCTACGCCGTTTCAACACTATCGGCACGGTCAGCTTCGACCATCCGGACCCGTCGATTTTTACCGTGCTGACGTCGCCCACCAGCGTCCATGGCTTGGCAAATCTCGATTTCGTGATTTTCCCGCCGCGCTGGATGGTGGCCGAGAATACCTTCCGTCCACCTTGGTTCCACCGCAATCTGATGAATGAATTCATGGGGCTGATCCAGGGCGCCTACGATGCCAAGGCTGAAGGTTTCCTGCCGGGAGGCGCGTCGCTGCACAGCTGCATGAGCGCCCATGGTCCCGACGGCGAAACTTGCACCAAGGCCATCAATGCCGAACTCAAACCGGCAAAAATCGACAACACCATGGCGTTCATGTTCGAGACCAGCCAAGTGCTGCGCCCGAGCCGTTTCGCCTTGGACTGCCCACAATTGCAAACGGACTACGATGCCTGCTGGGCCTCGTTGCCGGTCACCTTTGACCCGACCCGGAGATAA	MNLDSTPSDVLYQSGFGNEFSSEALPGALPVGQNSPQKAPYGLYAELFSGTAFTMARSEARRTWMYRIRPSANHPAFTRLEHQMAGGPLGEVTPNRLRWSPLEIPGEPTDFIDGLVRMAANAGADKPAGISIYHYRANRSMERVFFNADGEWLVVPQSGRLRIATELGVLELAPLEIAVLPRGLKFRIELLDAQARGYIAENHGAPLRLPDLGPIGSNGLANPRDFLSPVAQYENLAQPTTLIQKFLGELWTCELDHSPLDVVAWHGNNVPYKYDLRRFNTIGTVSFDHPDPSIFTVLTSPTSVHGLANLDFVIFPPRWMVAENTFRPPWFHRNLMNEFMGLIQGAYDAKAEGFLPGGASLHSCMSAHGPDGETCTKAINAELKPAKIDNTMAFMFETSQVLRPSRFALDCPQLQTDYDACWASLPVTFDPTRR	PGPT0006025_1115	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_STYRENE|DERIVATE_DEGRADATION	XENOBIOTIC_STYRENE_OXIDE_DEGRADATION,PGPT0006025-HGD|hmgA-K00451	NA	NA
D1-36_00937	1305			hypothetical protein	ATGACTCAAGTTTCATCCACCCGTAGCTGGGTCGACTCCGCCAACGGCCATGCCGACTTTCCCTTGCAGAACCTGCCGCTGGGTATTTTCAGTCCGGCTGGCGAATCCCCGCGCAGCGGCGTTGCCATCGGCGATCGGATTTTCGACTTGCAGGCGGCGCTGCAAGCAGGCCTGTTCGACGGCGCTGCGGGCGAAGCCATCCTGGCGATGGAAGACGGCCAGTTGAATGCGTTCTTCGACCTCGGCCGTGGCGCCCGCGTTGCCTTGCGTGAACAGTTGCTGGAGTTGCTGCGCGAGGGCAGCCCTCGGCGGGACGAGATCGTGGCCCAGGGTGAAAAGCTGCTGCCACTGGCAGCGAGCTGCCAGATGCACCTGCCGGCGAAAATCAACGACTACACGGATTTCTACGTCGGCATTGAGCACGCGCAAAATGTCGGCAAGCTATTCCGGCCGGACAATCCGCTGCTGCCTAACTACAAATACGTTCCCATCGGTTACCACGGACGTGCCTCGACGGTCCGGCCGTCGGGCACCGATGTACGCCGCCCGAAGGGCCAGACCTTGCCGGCTGGGCAGGCCGAGCCAACGTTCGGCCCCTGCGCGCGGTTGGACTACGAGCTGGAACTGGGGATCTGGATCGGCAAAGGCAACGCCCTTGGCGAGCCGATCGCCATCGGCGACGCGGCCGAGCACATTGCCGGTTTCTGCCTGCTCAACGATTGGTCGGCCCGGGATATCCAGGCCTGGGAATACCAGCCACTGGGGCCGTTCCTGTCGAAGAGCTTCCTGACCAGTGTCTCGCCATGGGTCGTGACCGCCGAAGCCCTCGAACCGTTCCGCCGTCCGCAGCCAACGCGTCCCGAGGGCGATCCGCAACCGTTGCCGTACTTGCTGGACAAACGTGACCAGGCTGAAGGGGCATTCGACATCGAGTTGGAAGTGCTGCTGCTGACCGAAGCCATGCGTGAGCAGAACCTGCCGGCTCATCGACTGACCCTGAGCAATACCCAATACATGTACTGGACGGTGGCGCAAATGGTTGCGCACCACAGCGTCAACGGCTGCCAGTTGCAAGCGGGCGATCTGTTTGGCTCGGGTACGCTGTCGGGACCGCAAAGCGGTCAGTTTGGCAGCCTGCTGGAAATCACCGAGGGCGGGAAGAAGCCGATCGAACTGGCATCTGGCGAAGTCCGCAAGTTCCTGGAAGATGGCGATGAAATCATCCTGCGCGCCCGTTGCAGCCGCGAGGGCGTCGCGTCCATCGGCTTCGGCGAGTGCCGCGGCAAGATCCTGTCGGCACGGTGA	MTQVSSTRSWVDSANGHADFPLQNLPLGIFSPAGESPRSGVAIGDRIFDLQAALQAGLFDGAAGEAILAMEDGQLNAFFDLGRGARVALREQLLELLREGSPRRDEIVAQGEKLLPLAASCQMHLPAKINDYTDFYVGIEHAQNVGKLFRPDNPLLPNYKYVPIGYHGRASTVRPSGTDVRRPKGQTLPAGQAEPTFGPCARLDYELELGIWIGKGNALGEPIAIGDAAEHIAGFCLLNDWSARDIQAWEYQPLGPFLSKSFLTSVSPWVVTAEALEPFRRPQPTRPEGDPQPLPYLLDKRDQAEGAFDIELEVLLLTEAMREQNLPAHRLTLSNTQYMYWTVAQMVAHHSVNGCQLQAGDLFGSGTLSGPQSGQFGSLLEITEGGKKPIELASGEVRKFLEDGDEIILRARCSREGVASIGFGECRGKILSAR	PGPT0001610_420	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_STYRENE|DERIVATE_DEGRADATION	XENOBIOTIC_STYRENE_OXIDE_DEGRADATION,PGPT0001610-fahA-K01555	NA	NA
D1-36_00938	639	nagL_1		Maleylpyruvate isomerase	ATGGAGCTCTATACGTATTACCGTTCCACTTCGTCCTACCGGGTGCGTATTGCCTTGGCGCTCAAGGGCCTGGATTACCAGGCCCTGCCCGTCAACCTGATCGCCGCGCCGGGGGGCGAGCATCGCCAGCCGGCGTACCTGGCAATCAATCCACAGGGGCGGGTACCGGCGCTGCGCACCGATGAGGGGGCGCTGCTGGTGCAATCGCCGGCCATCATCGAATACCTGGAGGAACGTTATCCACAGGTGCCGCTGTTCAGCGGCGACCTTGCGACCCGCGCCCATGAACGTGGCGTCGCGGCGCTGATCGGTTGCGATATCCATCCCCTGCACAACGTCAGCGTGCTCAACAAGCTGCGCAAATGGGGACACGATGAAACGCAGGTGACTGAGTGGATCGCGGACTGGATCAGCCAGGGGCTGACGGCGGTGGAGCAATTGATTGGTGACAACGGCTACTGTTTCGGCGAATTGCCTGGCGTGGCGGATGTGTACCTGATCCCGCAGCTGTACGCCGCCGAGCGGTTCAATGTTTCATTGCAAGCCTACCCGCGGATCCGCCGTATCGCGGCGTTGGCGGCTGGGCATGAGGCCTTTACGCGGGCGCATCCGGCGAACCAGCCCGATACCCCTGCCTGA	MELYTYYRSTSSYRVRIALALKGLDYQALPVNLIAAPGGEHRQPAYLAINPQGRVPALRTDEGALLVQSPAIIEYLEERYPQVPLFSGDLATRAHERGVAALIGCDIHPLHNVSVLNKLRKWGHDETQVTEWIADWISQGLTAVEQLIGDNGYCFGELPGVADVYLIPQLYAAERFNVSLQAYPRIRRIAALAAGHEAFTRAHPANQPDTPA	PGPT0006040_954	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_STYRENE|DERIVATE_DEGRADATION	XENOBIOTIC_STYRENE_OXIDE_DEGRADATION,PGPT0006040-maiA|GSTZ1-K01800	NA	NA
D1-36_00939	804			hypothetical protein	ATGAAGCCGCGCCAAGCCTTTTTTGACTGTCTGCACCGTTCCCCACCGGCGTTGTTCGAAGCCGCGCTATGGATTGCCGCCGAACACGATCGAGAAGTGGACGTACCGGCGTTGCTGCAGGTGTTTCAGGAGCTGCAACGGCACGTCAGCCATGGCCTGCCCATGCTGCCGGCCAGCGAACTGGGCCAACCGTTGCTTCGACGCCTCAATGACCTGGGTTTCGCACAGGACGACTCCGCCCCGCTACGCCCTCGCGCGGCGTTGCTGGACAAGGTCCTGGCGCGCAAGCACGGCCAGCCGCTAGCCCTGGGCCTGATAGCCTTGGAACTGGCTCGCGGCTTGGAAATCCCGCTGGCGGGCGTCAACTTTCCCGGCCATTTCCTGTTGCGGGTGCCCGGCGCCGATCATCTGCTCGACCCATGCGGTGGCCGTCGGTTGTACCCCAACGATTGCCGGGAATTACTGCAACGCCAATATGGCCCGAACCTGCAGCTCAAGGCTGAACATCTGATCAATGCCGAGCCGATGCAAATGCTGCAACGGTTGTCGCGCAACCTGCGGCAATTGCATCTGGCCAATGATGATTACATTGCGGCACTGATCGACGCCGAACGCGTCTTGGAAATGGGCAACGCCAACGCCGCCGACTACCTGGCGCGCGCCAGCCTCTATCAACGGCTCGACTGCCCCAACGCCGAACGTTTTGACCTTGAGCATGCCTTGATGCTCAGTGAAGATCCAATTCAACGGCTGCGCTTGACCGAGCGACTGGGGCATCTGCCGCCCAATTCGATTGTGCATTGA	MKPRQAFFDCLHRSPPALFEAALWIAAEHDREVDVPALLQVFQELQRHVSHGLPMLPASELGQPLLRRLNDLGFAQDDSAPLRPRAALLDKVLARKHGQPLALGLIALELARGLEIPLAGVNFPGHFLLRVPGADHLLDPCGGRRLYPNDCRELLQRQYGPNLQLKAEHLINAEPMQMLQRLSRNLRQLHLANDDYIAALIDAERVLEMGNANAADYLARASLYQRLDCPNAERFDLEHALMLSEDPIQRLRLTERLGHLPPNSIVH				NA	NA	NA	NA	NA
D1-36_00940	1020	ldh		Leucine dehydrogenase	ATGTTTGCTCTCATGCAAAGCTCCCGCCTTGAATCGCTGCACTTGAGCGTAGACCCGGCAAGCGGGTTGAAGGCGGTGATTGCCATTCATTGCAGCCGTCCGGGGCCTGCCCTGGGTGGCTGTCGTTATCTTTCCTACCCCGACGACGAAAGTGCCGTGGCGGATGCGGTGCGCCTGGCCCAAGGCATGAGCTATAAAGCCGCCTTGGCTGGTTTGCCGGTGGGTGGGGGAGTGGCGGTCATCATGCGTCCGGCGCATGTCGACAGCCGGGCCGCACTGTTCGAAGCCTTCGGGCGCTGCATCGAGCAGTTGGACGGACGCTACATCACCGCCATCGACAGCGGCACGTCCGTGGCCGACATGGATTGTATTGCCCAGCAGACCCGTCATGTCACTAGCACCACCGCCGCGGGAGACCCGGCGCCCCACGCGGCGATGGGCGTTTTCGCCGGCATCCGTGCCACGGCCATGGCCCGCCTGGGCAGCGATAACCTGGAGAGCCTGCGGGTTGCCATCCAGGGCCTGGGCAATGTCGGTTATGCCCTGGCCGAACAACTGCACGCAGCGGGCGCGGAATTGCTGGTCAGCGACATCGATCCCGGCAAGGTCCAATTGGCAATGGAACAATTGGGCGCCCATCCCATTGCCAACGATGCCTTGCTCAGTACCCCTTGCGACATCCTGGCGCCGTGCGGTCTCGGCGGCGTGTTGAACAGCCACAGCGTGGCGCAACTGCGCTGCTCGGCGGTGGCGGGCTCGGCTCATAATCAATTGAGCAATCTGCAAGTCGCTGATCAGCTGGAAAGGCGCGGGATCCTTTATGCCCCGGACTACGTCATCAACTCAGGCGGCCTGATCTACGTCGCCCTGAAGCACCGCGGTGAAGAATTGCCAACCATCACCGCGCACCTGTCGAAGATCGGTGCGCGGCTCACGGAAGTCTACGCCCACGCCCAGGCGGAAAAACGCTCGCCGGCCCGAGTGGCCGACGAATTGGCGGAGCGTTTGTTGTACCGATAA	MFALMQSSRLESLHLSVDPASGLKAVIAIHCSRPGPALGGCRYLSYPDDESAVADAVRLAQGMSYKAALAGLPVGGGVAVIMRPAHVDSRAALFEAFGRCIEQLDGRYITAIDSGTSVADMDCIAQQTRHVTSTTAAGDPAPHAAMGVFAGIRATAMARLGSDNLESLRVAIQGLGNVGYALAEQLHAAGAELLVSDIDPGKVQLAMEQLGAHPIANDALLSTPCDILAPCGLGGVLNSHSVAQLRCSAVAGSAHNQLSNLQVADQLERRGILYAPDYVINSGGLIYVALKHRGEELPTITAHLSKIGARLTEVYAHAQAEKRSPARVADELAERLLYR	PGPT0020320_1154	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0020320-ldh|leu-K00263	NA	NA
D1-36_00941	159			hypothetical protein	ATGAACCAACAGATCGCAGCCTTCGGCAGCGCGTGCATTAGATATTCCATGCACACGCTGTCGAAGGCTGCGATCTTTTTTTATCGGTACAACAAACGCTCCGCCAATTCGTCGGCCACTCGGGCCGGCGAGCGTTTTTCCGCCTGGGCGTGGGCGTAG	MNQQIAAFGSACIRYSMHTLSKAAIFFYRYNKRSANSSATRAGERFSAWAWA				NA	NA	NA	NA	NA
D1-36_00942	261			hypothetical protein	ATGGCCGTCGAAGTGGTATACCGCAGCAGCCGAGATCTGGAGCGCTTGTTCATGGATAAAGCCGAAGCTGACCGTCATGACAAAATGCTGGAGCTCGCCGAATTGCTGGCCGAGGTGTTGCAAAAAGCCGTTCCATCGCTGAGCGAGCAACAGGTGGAGGAAGCAGGAATCTACATGGCGAAGAATCGCGATGTATTCGCCAAGGCATTCAAGAGCCAGCCGGACGCCCTGTCCGAATTGCTCAATCCGTCGGACGAATGA	MAVEVVYRSSRDLERLFMDKAEADRHDKMLELAELLAEVLQKAVPSLSEQQVEEAGIYMAKNRDVFAKAFKSQPDALSELLNPSDE				NA	NA	NA	NA	NA
D1-36_00943	501	psiE		Protein PsiE	GTGAAAATCAACTGGGCCGAGAACCTGCGCCAGAACGTGCATCAACTGGCCGAATCCCTGGGCAACCTGTTCGTCGAGACGTTCCATTACCTGGCGTTGTTCGCCATCGGTGCGGTGACCGCCTGGGCGGCGGTGATGGAGTTTATGCAGATGATCGAGGTGGGGCACATCAAGATCGACGATATCTTGCTGTTGTTCATCTATCTGGAACTGGGGGCAATGGTCGGGATTTACTTCAAGACCAACCACATGCCGGTGCGTTTCCTGATCTACGTGGCAATCACCGCGCTGACGCGACTGTTGATTTCCAACGTCTCCCACCACAGCCCGCCGGACCTGGGAATCATCTACCTGTGCGGCGGCATTTTGTTGCTGGCGTTTGCGATTCTGGTGGTGCGCTACGCCTCGTCGCAGTTTCCGTCGGTAAAGATCGAACATCCGCACCGCAAGATCGGTGCGGGTTCCAGCGAGCATTCGGAGGTTGAGAAAGGCGAGATCTAA	MKINWAENLRQNVHQLAESLGNLFVETFHYLALFAIGAVTAWAAVMEFMQMIEVGHIKIDDILLLFIYLELGAMVGIYFKTNHMPVRFLIYVAITALTRLLISNVSHHSPPDLGIIYLCGGILLLAFAILVVRYASSQFPSVKIEHPHRKIGAGSSEHSEVEKGEI	PGPT0015090_21	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-PHOSPHATE_STARVATION_RESPONSE,PGPT0015090-psiE|yjbA-K13256	NA	NA
D1-36_00944	318			hypothetical protein	ATGGACAATCCTTTTCAGATCATTACGGACGCCTTCGCGCCGCAATACCAAATCAACTTGAGCATCCAGGGCCTGGATGGCAGCATCATGCTGACCCTGTCCAAGGGCGGGCGCATCGTCGCCAAGCGCATGATCAGCGCCCAGCAACGCAACGATCCGGAACGGCTTCGACGCCTGGTGCAAAGCATCCAGTTCGGCATTGCCATCGAACAGGGCCATAGCGCCGTAGCGATTCTCGAGGCCATGACCGGCGGCGACAACATCAAGGTGCCACCACCGCAATCACAAGGCCCGGCACCCTCCGCTGTCGGCGTTTAG	MDNPFQIITDAFAPQYQINLSIQGLDGSIMLTLSKGGRIVAKRMISAQQRNDPERLRRLVQSIQFGIAIEQGHSAVAILEAMTGGDNIKVPPPQSQGPAPSAVGV				NA	NA	NA	NA	NA
D1-36_00945	411			hypothetical protein	ATGCAAATCCAAGTCAACAGCGATAACCATATTCAAAGCAGCATCCGACTGGAGGAGTGGGTACGTACTACCATTGAAAGCACGCTCGAACGTTACGAAGAAGACCTGACACGGGTCGAGGTTCATTTGGGGGATGAGAACGGCGACAAGCCTGGTCCCCACGATTTGCGATGCCAGCTTGAAGCCCGGCCAAAAGGCCATCAGCCAATTTCGGTGACACACAAGGCTGAATCGCTGGAACTTGCCATCGAAGGTGCTGCCACCAAGCTGGAACATAAGCTGGAGCATCTGTTCGGAAAATTACGCGGCAAGCGTGGCGCCGGCAATGGCCAGACAGAATCGATTGCCCTGGCCGATGCAATGCTGGAGGAAGAATTCCTGGAAAACGAACGAGCCGCGCTCAACGGCTGA	MQIQVNSDNHIQSSIRLEEWVRTTIESTLERYEEDLTRVEVHLGDENGDKPGPHDLRCQLEARPKGHQPISVTHKAESLELAIEGAATKLEHKLEHLFGKLRGKRGAGNGQTESIALADAMLEEEFLENERAALNG				NA	NA	NA	NA	NA
D1-36_00946	876	rhaS_1		HTH-type transcriptional activator RhaS	ATGGCCACGCTGCAAACCCTACAAGTCTTCCAAGCCCTCAACAGCTCGCCCAATGCTCGCCTCGAGCACAGCGCCGAGCTCGGTGACGGCATGGCGGCTGCCTTGTGGAGCAATCATCACGACGCCCGGGATTACGAGGCGCCGACTCACCATACCCTGTCATGCTACATCGCCGGTGGCACCGGTACGTTTCGTCGCGAGCGGCCCGATACCACCGGGGCGCCGGGCAAGCTCTGCGTCTTGCCGGCCGGGCATGAGTCGGCGTGGGTCATCAATGGCGATATCCGTCTTGCCCATCTGTATTTCAGTTCCGAACAATTTGCCGTCGGTTGCGTCACTTTGCTCGACCGCGAACCCCGGCAGGTGCAGTTGCACGAGGCGACCTTCCTTGACGACCCACAGCAAGCGCGGCGCTTTCATCAGTTGATCAGCCTGAACTGGGAAGAGCCCGCCGAACGCCTGCTCTGCACCAGCCTGGCCCACGACCTGCTCGGTCATCTGCTGCTCAGCCAGGTCAGCCCGCGCCAGGGGCTGCGCTTGAAGGGAGGGTTGGCGCCTCATCAACGGCGTCTGCTGGTGGACTACATCGACAGTCATCTGGGCGAGGCCGTCAGCCTTGGGCAACTGGCAGCCCTGTGTGCCTTGTCCGAATACCATTTCGCCAGGATGTTTCGCGAGAGCTTTGGGCTCCCGCCCCATCAGTATCTGCTGGCGCGGCGCCTTTCACGGGCGCGACACCTGCTGCGCACCACCCCACAGCCGTTGGGCGACGTGGCGCTGGCCTGCGGATTCGCCAGCGCCAGTCATTTCGCCAATCGCTTTCGCCAGTCCCTGGGCGCGACGCCCGGAGAATATCGACAGGCATTTTTGCGCTGA	MATLQTLQVFQALNSSPNARLEHSAELGDGMAAALWSNHHDARDYEAPTHHTLSCYIAGGTGTFRRERPDTTGAPGKLCVLPAGHESAWVINGDIRLAHLYFSSEQFAVGCVTLLDREPRQVQLHEATFLDDPQQARRFHQLISLNWEEPAERLLCTSLAHDLLGHLLLSQVSPRQGLRLKGGLAPHQRRLLVDYIDSHLGEAVSLGQLAALCALSEYHFARMFRESFGLPPHQYLLARRLSRARHLLRTTPQPLGDVALACGFASASHFANRFRQSLGATPGEYRQAFLR				NA	NA	NA	NA	NA
D1-36_00947	903			hypothetical protein	ATGAACCTTTCGTTGTATCTGCTCACCGTGCTCATATGGGGCACTACCTGGATCGCCCTGAAGTTGCAGCTAGGCGTCGTTGCCATCCCTGTGTCGATTGTCTACCGCTTCGGTCTTGCAGCGCTGATCCTGTTTGTAATGCTGTTGCTCAGCCGGCGCCTGCAAGTGATGAACCGGCGCGGCCACCTGATTTGCGTTGCGCAGGGGCTGTGCCTGTTCTGCGTCAACTTCATGTGTTTCCTCACCGCGAGCCAGTGGATTCCCAGTGGGCTGATCGCCGTGGTGTTCTCCACCGCAACCCTCTGGAACGCTCTGAATGCCCGGGTGTTCTTCGGCCAGCGGATCGCCCGTAATGTCTTGCTGGGCGGAGCCTTGGGATTGTTGGGATTGGGGCTGCTGTTCTGGCCGGAACTGGCTGGCCACAGCGCAAGCCCGCAGACGTTGCTAGGGTTGGGGTTGGCGCTGCTGGGCACCTTGTGTTTCTCGGCGGGCAACATGCTTTCGAGCTTGCAACAGAAGGCCGGCCTCAAGCCGTTGACCACCAATGCATGGGGCATGGCATATGGGGCGACGATGCTGGCGGTATGGTGCCTGTTCAACGGCATACCATTCGACATGGAATGGAACGTGCGATATGTCGGCTCGCTGCTGTACTTGGTGATCCCGGGCTCGGTCATCGGTTTTACCGCCTACCTGACCTTGGTCGGCCGCATGGGGCCAGAGCGAGCAGCGTATTGCACGGTCCTGTTCCCGGTGGTGGCGCTGAACGTCTCGGCATTCGCCGAAGGCTATCAATGGACGGCGCCAGCGCTGGTTGGGCTGCTGTTCGTGATGCTGGGCAATGTGCTGGTGTTTCGCAAAGTGCGCCCGGTCGCTATGAAGGTTGCCTTGGGTGCCCGCTGA	MNLSLYLLTVLIWGTTWIALKLQLGVVAIPVSIVYRFGLAALILFVMLLLSRRLQVMNRRGHLICVAQGLCLFCVNFMCFLTASQWIPSGLIAVVFSTATLWNALNARVFFGQRIARNVLLGGALGLLGLGLLFWPELAGHSASPQTLLGLGLALLGTLCFSAGNMLSSLQQKAGLKPLTTNAWGMAYGATMLAVWCLFNGIPFDMEWNVRYVGSLLYLVIPGSVIGFTAYLTLVGRMGPERAAYCTVLFPVVALNVSAFAEGYQWTAPALVGLLFVMLGNVLVFRKVRPVAMKVALGAR				NA	NA	NA	NA	NA
D1-36_00948	972	ghrB_1	COG1052	Glyoxylate/hydroxypyruvate reductase B	ATGAAAAAAACCGTACTTGCCTTCAGCCGTATCACGCCTCCCATGATCGAGCGCCTGCGACAGGACTTCGACGTGATCGTGCCCAACCCAGCGAACGGCGACATCAACGCGCAGTTCAACGAAGCCCTGCCCCACGTCCACGGACTGATCGGTGTCGGTCGCAAGCTTGGCCGCGAGCAACTGCAGAACGCGACGAAACTGGAAGTGGTTTCCAGCGTGTCGGTGGGTTACGACAATTATGACCTGGCGTATTTCAACGAACGCGGGATCATGCTCACCAATACCCCCGACGTGCTCACTGAAAGCACGGCCGACCTGGCCTTCGCCCTGCTGATGAGCAGCGCCCGCCGCGTCGCTGAACTGGACGCCTGGACCAAGGCCGGACAGTGGCAGGCGTCAGTCGGGCCGCAGCTGTTCGGCAGCGATGTGCACGGCAAGACTCTGGGCATCGTCGGCATGGGCAACATTGGCGCGGCCATCGCCCGGCGTGGTCGACTGGGCTTCAACATGCCAATCCTGTACAGCGGGAACAGCCGCAAGGTTGATCTGGAAAATCAGCTGGGCGCGCAATTCCGCTCCCTGGACCAGTTGCTGGCCGAAGCGGACTTCGTCTGCCTCGTGGTGCCCTTGAGCGAGAAGACCCGCCACCTGATAGGCCAACGCGAGCTGGCCCTGATGAAACCGAGCGCTATCCTGGTCAACATCTCCCGGGGCCCCGTGGTGGACGAGCCGGCGTTGATCGAAGCCTTGCAGAACAACCGCATTCGCGGCGCCGGGCTGGATGTCTATGAAAAAGAGCCACTGGCCGCTTCGCCGCTGTTCCAGTTGAAGAATGCGGTGACTTTGCCCCATATCGGCTCGGCTACTCACGAAACCCGTGAGGCCATGGCCAATCTCGCTGTGGAAAACTTGCGCAGCGCCTTGATGGGCGATCGACCGGCGAACCTGGTCAACCCGCAAGTCTGGAAATAA	MKKTVLAFSRITPPMIERLRQDFDVIVPNPANGDINAQFNEALPHVHGLIGVGRKLGREQLQNATKLEVVSSVSVGYDNYDLAYFNERGIMLTNTPDVLTESTADLAFALLMSSARRVAELDAWTKAGQWQASVGPQLFGSDVHGKTLGIVGMGNIGAAIARRGRLGFNMPILYSGNSRKVDLENQLGAQFRSLDQLLAEADFVCLVVPLSEKTRHLIGQRELALMKPSAILVNISRGPVVDEPALIEALQNNRIRGAGLDVYEKEPLAASPLFQLKNAVTLPHIGSATHETREAMANLAVENLRSALMGDRPANLVNPQVWK	PGPT0001310_732	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0001310-ghrB-K00090	NA	NA
D1-36_00949	666			hypothetical protein	ATGTGGGCCAATGATGGCGGCCAGGTGATCGTCCTGGCCGAGGCCTTCCTGCCCAATGGCCTCGGCTTGCCGGTGGCTCAACGCGAACATGCCGAACGCCGTTCCACCGTCGTGCGCAGTGGCACGAGCGAAGCCCTGGTGGCGATCACCTTCGCCGCTTATAACGCCGGCCCCTGCCATAACCTGGACGCCGACAATCTTTGCCGTATCTACGAACGCCGCCCCCTGGTGTGTCGTATCTATCCCATGGAAATCAACCCGCATATCCCGCTCAATCCCGCCGCCAAGGATTGCCCGCCGGAGTCGTGGGAAACGGGCCCGAAGTTAATCATCGGTGGGGAGCTGGTTGACCCGGAACTGGCCGGGCTGATCGCTCGTTCACGCCAGGCCGATCGTGACGAAATCGGCACCAAGGCGCGCATATGCGCGTCCCTGGGCATCCACACCACTGCGCTGAAAGGCGACGGGTTTACCGCGTATCTGCCGGACATGGCGGCCTTTGCCGTGGCTATCGACCAGGCCCGTTTGCAGCCACTGGAGCAGCAAGCCGAGTGGCAGTTCCACTTGTCGGGAGATGATATCGCCAGCCAGGTCACGGCCAGTGGCGCAAGCGTGGTCACCGAGGCACCGGCCAATTACGCCTTCATTTCCCTGCGGGCCGCCTGA	MWANDGGQVIVLAEAFLPNGLGLPVAQREHAERRSTVVRSGTSEALVAITFAAYNAGPCHNLDADNLCRIYERRPLVCRIYPMEINPHIPLNPAAKDCPPESWETGPKLIIGGELVDPELAGLIARSRQADRDEIGTKARICASLGIHTTALKGDGFTAYLPDMAAFAVAIDQARLQPLEQQAEWQFHLSGDDIASQVTASGASVVTEAPANYAFISLRAA				NA	NA	NA	NA	NA
D1-36_00950	327			hypothetical protein	ATGAAAGCCCCTACCCTGATTCTTTTCGCCCTGGCCGCGGTGTCTTCGCAGGTTCATGCATCGAGCTCCGATGCCTGGGCCGCCTACGACAAAAAAGTGCTCGCCAGCTGCGTCAAGGCCAGTGGATTGAAGAACGCCGAACCGGTCGGCACCGCCGCTCAATTCGACGACCGGGTCGGCTACACCGCGCTGTTGCTGCAAGGCCAGTACCCTCAGAAACACATGAACGGCGCCACCGGCACCGAGCTGTGCCTTTACCGCAAGAAAACCAAGACCGCGGTCGTGACCGAATGGGACTCGATCCGTCCGGCCGGTCCTGCCCGGTGA	MKAPTLILFALAAVSSQVHASSSDAWAAYDKKVLASCVKASGLKNAEPVGTAAQFDDRVGYTALLLQGQYPQKHMNGATGTELCLYRKKTKTAVVTEWDSIRPAGPAR				NA	NA	NA	NA	NA
D1-36_00951	903	cheV_1	COG0784	Chemotaxis protein CheV	ATGTCCTCCAACAAAGCCCGCGCAGATTCTCTTTCGCTTCTGCTCTTTACCTTGCGCAGCGGCAAGCTGATGGCGATCAACCTGCTCAAGGTCAGTGAAATCATTCCCTGTCCGCCCCTGACCAAGCTGCCGGAGTCGCATCCGCACGTCAAAGGCATCGCCACGCTGCGCGGGGCATCGTTGTCGGTGATCGACCTGAGCCGTGCCATCGGCGAGCGGCCGCTCGAAGACCCGGACGGCGGCTGCCTGATCGTGACGGACGTCAGCCGCTCCAAACAAGGGCTGCACGTACAGGCGGTGAGCAAGATCGTCCATTGCCTGACGACAGACATCAAGCCACCGCCCTACGGCTCTGGCGGCGTACGGGCGTTCATTACCGGCGTGACCTCGGTGGATGGCACCTTGGTGCAGGTGTTGGATATCGAAAAAGTCATCCACGGCATCGCCCCGGCGCAAATCGAGACAGCGCCGACCGAGCTGAGCATGGAAGACGCCGAAGTGCTCGGCGATGCTCGAATTCTGGTGGTCGACGACAGCCAGGTCGCGTTGCAACAATCGGTGCATACCCTGCGCAACCTGGGCCTGCAATGCCACACCGCACGCAGCGCCAAGGAAGCCATTGACTGCCTGCTGGAACTGCAAGGCACCGCACAGGAGATCAACCTGATCGTTTCGGACATCGAGATGTCGGAGATGGATGGCTACGCCCTCACTCGGACCCTGCGCGAAACGCCCGATTTCGCGCATATCTACGTGCTGCTGCACACGTCGCTCGACAGCGCGATGAACAGCGAAAAAGCCCGGCTGGCCGGCGCCAACGGCGTACTCACCAAGTTCTCTTCGCCCGAACTGACCAAATGCCTGATCACGGCGGCCAAGGCCGTTGCCGAACAAGGTCGTTGA	MSSNKARADSLSLLLFTLRSGKLMAINLLKVSEIIPCPPLTKLPESHPHVKGIATLRGASLSVIDLSRAIGERPLEDPDGGCLIVTDVSRSKQGLHVQAVSKIVHCLTTDIKPPPYGSGGVRAFITGVTSVDGTLVQVLDIEKVIHGIAPAQIETAPTELSMEDAEVLGDARILVVDDSQVALQQSVHTLRNLGLQCHTARSAKEAIDCLLELQGTAQEINLIVSDIEMSEMDGYALTRTLRETPDFAHIYVLLHTSLDSAMNSEKARLAGANGVLTKFSSPELTKCLITAAKAVAEQGR	PGPT0015675_1723	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015675-cheV-K03415	NA	NA
D1-36_00952	1554	norR2	COG3604	Nitric oxide reductase transcription regulator NorR2	ATGACCGCGACCTCCCTGCTAACGTCACTGCTGCCACTGGTGGCAGACCTCTCCCGCGAGCTGCCGGAGGGCGAGCGCTACCGCCGCTTGCTCGGCGCCCTGCGCGCCCTGCTGCCGTGCGATGCCGCCGCGCTGTTGCGCCTGGATGGGGATTGCCTCGTGCCGCTGGCGGTGGATGGCTTGAGTACCGATACGCTGGGGCGCCGGTTCCGCATCAGCGAACACCCCCGCTTCGAGGCATTGCTAGGCAATCCGCTACCCACTCGCTTTGCAACCGACAGCGACCTGCCCGACCCTTACGATGGGCTGGTCGAAGGCTTGGACGAGCATCTGGAAGTGCATGACTGCATGGGTTGCCCGCTGTTCGTCGATGAGCAGCCGTGGGGCTTGCTGACGCTGGACTCGCTGGACCCGGAACGCTTTGAGCCTATCGACCTGAGCGCCTTGCAAGCCTTCGCCAGCCTCGCCGCGGCCACGGTCAGCGCTGCCGAACGTATCGAGCGGCTGGCCTTGAAGGCTGAAGACGAGCATCACCGCGCCGAGGTCTATCGTCAGGCGAGCGGCCAGCAGCATCGCGACATGGTCGGCCAAAGCAAGGCCCACAAACGCCTGGTGGAGGAAATCAAGCTCGTGGGTGGCAGCGACCTGACGGTGCTGATCACCGGCGAAACCGGGGTCGGCAAGGAATTGGTCGCCCAAGCCATTCACGCCGCCTCCAACCGTGCCGACCAGCCGATGATCAGCCTCAATTGTGCCGCCCTTCCGGATACCCTGGTGGAGAGCGAGCTGTTTGGCCATGTACGCGGTGCTTTCACCGGTGCCACCAACGACCGTCGGGGCAAGTTCGAACTGGCCGATGGCGGCACGTTGTTCCTCGATGAGGTGGGCGAGCTGTCCTTGACTGTCCAGGCCAAATTATTGCGCGTCCTGCAAAGTGGGCAGTTGCAACGCCTGGGCTCGGACAAGGAACACCGCGTCGACGTGCGTCTGATCGCGGCCACCAATCGCGACCTCGCCAAAGAAGTGCGCAACGGCCGTTACCGGGCCGATTTCTATCATCGACTGAGTGTGTACCCGCTACAGGTGCCCGCGCTGCGCGACCGCGGACGCGACGTGCTGCTTCTTGCCGGTTTTTTCCTCGAGCAGAACCGTTCACGCATGGGCCTGGGCAGCCTGCGCTTGACCAGCGACGCCCAAGCCGCACTCCTGGCCTACGATTGGCCTGGCAACGTGCGCGAGCTGGAACACCTGATCGGTCGCAGCGCGTTGAAAGCTTTGGGCAACCATCCGGTACGACCGAAAATCCTCAGCTTGAGCGCCAATGACCTTGACTTGCCCCATGCCGCGCCGAAAGACCTTCCTACCGCCGGCCCAGCATCCACTTGCACGGTGCCGGTGACAGGGGATTTACGCCAGGCCACGGAGAACTACCAGCGGCAGATGATCAACGCCTGCCTGGAACGCCATCAGCATAACTGGGCCAGCGCGGCCCGTGAGCTGGGCCTGGACCGGGCCAATCTGGGACGAATGGCGAAGCGGCTGGGCTTGAAGTAG	MTATSLLTSLLPLVADLSRELPEGERYRRLLGALRALLPCDAAALLRLDGDCLVPLAVDGLSTDTLGRRFRISEHPRFEALLGNPLPTRFATDSDLPDPYDGLVEGLDEHLEVHDCMGCPLFVDEQPWGLLTLDSLDPERFEPIDLSALQAFASLAAATVSAAERIERLALKAEDEHHRAEVYRQASGQQHRDMVGQSKAHKRLVEEIKLVGGSDLTVLITGETGVGKELVAQAIHAASNRADQPMISLNCAALPDTLVESELFGHVRGAFTGATNDRRGKFELADGGTLFLDEVGELSLTVQAKLLRVLQSGQLQRLGSDKEHRVDVRLIAATNRDLAKEVRNGRYRADFYHRLSVYPLQVPALRDRGRDVLLLAGFFLEQNRSRMGLGSLRLTSDAQAALLAYDWPGNVRELEHLIGRSALKALGNHPVRPKILSLSANDLDLPHAAPKDLPTAGPASTCTVPVTGDLRQATENYQRQMINACLERHQHNWASAARELGLDRANLGRMAKRLGLK	PGPT0000375_234	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-ANAEROBIC_SIGNALLING,PGPT0000375-norR-K12266	NA	NA
D1-36_00953	1182	hmp_1		Flavohemoprotein	ATGCTGAGTCAAGAACAGCGCGCCATCATTCGTTCCACCGTTCCGTTGCTCGAGAGCGGCGGGGAAGCGCTCATCACTCATTTCTACCGCATGATGTTGTCCGAATATCCACAAGTGCGCCCACTGTTCAATCAGGCTCACCAAGCCAGCGGCGACCAGCCTCGGGCGCTGGCCAATGGCGTGCTGATGTACGCCCGGCATATCGATCAGCTCGACCAACTGGGCGACCTGGTGGCGAAAATCGTCAATAAGCATGTCGCCTTGCAGATTCAACCCGAGCATTACCCGATTGTCGGCGCCTGCCTGCTGCGGGCGATTGCCGAGGTGCTGGGCGAAGAAATCGCCACGCCTGAAGTGATTTCGGCATGGGGCGCCGCCTATAACCAATTGGCCGATATCCTGATCGGTTCCGAAGCTGGCCTGTATGACCAGAAGGCCGCGGCACCGGGTGGCTGGCGCGGTGAGCGGGCGTTTATCCTGGTCGACAAGGTACAGGAGAGCGCGGAAATCACTTCGTTCTACTTCGAGCCGGCAGACAAGGGGCCCATCCTGCAAGCGGAGCCAGGCCAGTACATCGGCATGAAGCTGCTCCTGGATGGCGAGGAAGTACGCCGCAACTATTCCTTGTCGGCGCTTGCTGACAATGGTCGGTACCGCATCAGCGTCAAGCGCGAGGCGGGTGGCCGGGTGTCCAACTACCTGCACGACCATTTCCCGATCGGCAGCGGCATCCAGCTGTTTCCGCCGTCCGGAGACTTCTACCTCACCGACAGCGACAAGCCTTTGGTGCTGATCAGCGGGGGCGTTGGCATCACTCCGACCCTGGCGATGTTGCAGGCGGCATTGCAAACCGAACGCCCGGTGCATTTCATCCACTGCGCGCGCAACGGCCGTGTACATGCCTTCCGCGACTGGATCGACGACCTGGCCGGGCGGCATCCGCAACTCAAGCGCTTCTATTGCTACGACGAGCATGACGGCACGAGCCCTGCGGCTGACAAGGTGGGGCTGTTGAGCCAGGATCAACTGGCGCAATGGCTGCCGGAACAGCGTGACCTGGACGTCTATTTCCTTGGACCGAAAGGTTTCATGGCGGCGATCAAGCGCCATCTCAAGGCCTTGGGCGTGCCGGCGGAGCAAAGCCGCTACGAGTTCTTCGGGCCGGCGGCGGCTTTGGAATAG	MLSQEQRAIIRSTVPLLESGGEALITHFYRMMLSEYPQVRPLFNQAHQASGDQPRALANGVLMYARHIDQLDQLGDLVAKIVNKHVALQIQPEHYPIVGACLLRAIAEVLGEEIATPEVISAWGAAYNQLADILIGSEAGLYDQKAAAPGGWRGERAFILVDKVQESAEITSFYFEPADKGPILQAEPGQYIGMKLLLDGEEVRRNYSLSALADNGRYRISVKREAGGRVSNYLHDHFPIGSGIQLFPPSGDFYLTDSDKPLVLISGGVGITPTLAMLQAALQTERPVHFIHCARNGRVHAFRDWIDDLAGRHPQLKRFYCYDEHDGTSPAADKVGLLSQDQLAQWLPEQRDLDVYFLGPKGFMAAIKRHLKALGVPAEQSRYEFFGPAAALE	PGPT0013000_1612			NA	NA	NA	NA	NA
D1-36_00954	510	dsbB_1	COG1495	Disulfide bond formation protein B	ATGAGTGAACAAATGATGCGCCTGGGCCGTGAGCGGCGCTACCTGGTGTTGCTGGGGGTGATCTGCCTCGCACTGATCGGCGGCGCGCTGTATATGCAGGTCGTGCTGGGTGAGGCGCCATGCCCACTGTGCATCCTGCAACGCTATGCGTTGTTGCTGATCGCCCTCTTTGCCTTCATCGGTGCGGCCATGCGCACCCGCCGCAGCCTGACGATTTTCGAAGGGTTGGTCGTGCTGTGTGCGTTGGCCGGCGCGGGCGTGGCGGGGCATCACGTCTACACGCAGTTCTTTCCGGCGGTCAGTTGTGGCGTCGACGTCTTGCAGCCGATTGTCGATGACCTGCCACTGGCGAAGATCTTCCCGCTGGGTTTTCAGGTTGATGGTTTCTGCTCCACGCCGTATCCCCCTGTCCTGGGATTGTCGCTGGCGCAGTGGGCGTTGGTGGCATTCGTGTTGACCGCCGTGCTGGTGCCCTTGCTGGTGTCCCGTAATCGCAAAGCCCTACGCTAG	MSEQMMRLGRERRYLVLLGVICLALIGGALYMQVVLGEAPCPLCILQRYALLLIALFAFIGAAMRTRRSLTIFEGLVVLCALAGAGVAGHHVYTQFFPAVSCGVDVLQPIVDDLPLAKIFPLGFQVDGFCSTPYPPVLGLSLAQWALVAFVLTAVLVPLLVSRNRKALR				NA	NA	NA	NA	NA
D1-36_00955	948	cyoA_1	COG1622	Cytochrome bo(3) ubiquinol oxidase subunit 2	ATGAGTAAAAACAGGTACCCCCGATTACTAGGCTTGTTGCCGCTGCTCGGCACGTTGCTGCTGGGAGGCTGCAACATGACCCTGCTCGATCCCAAGGGCCAGGTCGGCCTGGATGAACGAAACCTGATCATCACCGCCACGCTGCTGATGTTGCTGGTCGTTGTGCCGGTTATCGTCATGACGTTCTTGTTCGCCTGGAAATACCGCGCGTCCAACACCAGTGCCACCTACACCCCGAAATGGTCCCACTCGACCAAGATCGAAGTCGCGGTGTGGACCATTCCGGTATTGATCATCATTGCCCTGGGTTACATCACCTACAAGTCGACCCACGCACTGGACCCGTACCGTCCGCTGGATTCCGACGTCAAGCCAATCACCATTGAAGTGGTCTCGATGGACTGGAAGTGGCTGTTCATCTATCCGGAACAAGGTATCGCCACGGTCAACAAGATCGTGTTCCCGGCCCACACGCCGATCAACTTCAAGGTCACCTCCGACACCGTGATGAACTCGTTCTTCATCCCGGGCCTGGGCGGCCAGATCTACGCGATGGCCGGCATGCAGACCAAGCTGCACCTGATCGCCAACCAGAACACCGAACTTGAAGGTATCTCCGCCAACTACAGCGGCGCGGGTTTCACCGGCATGAAGTTCAAGGCGACCGCCACCACCCAGGAAGAATTCGACGCCTGGGTAAACGAAGTGAAGAAGGCACCTAAACAGCTTGAAAAAGCTGAATACGAAGCCCTTTCCAAGCCGAGCCAGAACAACCCAGTCGAACTCTACTCGTCGGTCACGCCGAACCTGTTCCAGACCATCATCGATAAGTATGAAGGGATGAATCCGGGCAAGCCGATGCATCACGAGAAGAAAGAGAAGGAAGTGGCCCACAACATGGAAGGGATGGACATGAGCTCGCATTCAGCTGCCGGGGCAGAGGAGTAA	MSKNRYPRLLGLLPLLGTLLLGGCNMTLLDPKGQVGLDERNLIITATLLMLLVVVPVIVMTFLFAWKYRASNTSATYTPKWSHSTKIEVAVWTIPVLIIIALGYITYKSTHALDPYRPLDSDVKPITIEVVSMDWKWLFIYPEQGIATVNKIVFPAHTPINFKVTSDTVMNSFFIPGLGGQIYAMAGMQTKLHLIANQNTELEGISANYSGAGFTGMKFKATATTQEEFDAWVNEVKKAPKQLEKAEYEALSKPSQNNPVELYSSVTPNLFQTIIDKYEGMNPGKPMHHEKKEKEVAHNMEGMDMSSHSAAGAEE				NA	NA	NA	NA	NA
D1-36_00956	2031	cyoB_1	COG0843	Cytochrome bo(3) ubiquinol oxidase subunit 1	ATGTTTGGTAAATTAAGTTGGGAAGCGATCCCGTTCCACGAGCCGATTGTCATGGTGACCCTCGCCATCATCGGGCTCGGTGGCCTGGCGCTGTTTGCGGGTATCACTTATTTCAAGAAGTGGACGTACCTGTGGACTGAATGGTTGACCTCGGTCGACCACAAGAAGATCGGCGTGATGTACATCATCGTCGCCATGGTCATGTTGCTGCGCGGTTTTGCCGACGCGATCATGATGCGTACCCAGTTGGCCATGGCCACCGAGGGCTCGCCCGGCTACCTGCCGCCTGAACACTATGACCAGATCTTCACCGCCCACGGTGTGATCATGATCATTTTCATGGCGATGCCATTCTTCACCGGCCTGATGAACCTCGCAGTGCCGCTGCAGATCGGCGCCCGTGACGTTGCCTATCCGTTCCTGAACTCCTTGAGCTTCTGGCTGCTGGTTTCCGGCGTCGTGCTGATCAACGTTTCCCTGGGTGTCGGCGAATTCGCCAAGACCGGTTGGGTTGCCTATCCGCCGTTGTCGGGGCTGCAATACAGTCCGGGCGTGGGGGTGGACTACTACATCTGGGCGCTACAGCTATCCGGGTTGGGAACAACGCTGACAGGGGTCAACTTCCTGGCCACCGTGCTGAAGATGCGTACCCCTGGCATGAAGCTGATGGACATGCCGATCTTCACCTGGACCTGCACCTGGGCCAACGTGCTGATCGTCGCTTCGTTCCCGATCCTCACCGCTACACTGGCTCTGCTGACGCTTGACCGCTACATGGATTTCCACATTTTCACCAATGAACTAGGTGGAAATCCGATGATGTACGTCAACCTGTTCTGGGCTTGGGGTCACCCTGAGGTGTACATCCTGATCCTGCCGGCGTTCGGTATCTTCTCCGAAGTCATTTCGACCTTCTCCGGCAAGAAACTGTTTGGCCACCACTCGATGATCTACGCTTCGGGCGCGATCTCGGTACTGGGCTTCATGGTCTGGCTGCACCACTTCTTCACCATGGGTTCGGGTGCAAGCGTCAACGCCTTCTTCGGCCTGGCGACCATGCTGATCTCGATCCCGACGGGTGTGAAGCTGTTCAACTGGCTGTTCACCATCTACCAGGGCCGCCTGCGTTTCACCAGCCATGTGCTGTGGACTCTGGGCTTCATGGTGACCTTCGCCATCGGCGGTATGACCGGCGTACTGCTGGCCATTCCGGGTGCTGACTTTGTGCTGCACAACAGCCTGTTCGTGATCGCGCACTTCCATAACGTGATCATCGGCGGCGCCGTGTTCGGCTACATCGCGGGCTTTGCGTTCTATTTCCCGAAAGCGTTCGGCTTCAAGCTGCACGAAGGCTGGGGCAAGGCAGCGTTCTGGTTCTGGATCTCGGGCTTCTTCGTCGCGTTCATGCCGCTCTATGCACTGGGCTTCATGGGCATGACCCGTCGCCTGAACGCCACCACCAACCCTGAGTGGGTGCCGTACCTGTACGTCGCCATGTTCGGCGCGGTGATGATTGCCGTGGGTATCGCCTGCCAGCTGATCCAGTTGTACGTCAGCGTGCGTGACCGCAAGAAGCCGGAAAACATGTGCGAACACGGTGACCCGTGGAATGCCCATACCCTGGAATGGTCGACTTCTTCGCCACCACCGTTCTACAACTTTGCCGTGCTGCCGAAAGCGGACGTCATCGACCCGTTCACCGAAGCCAAGGAAAACGGCACCGCGTACCAGGCTCCGGCCAAGTACTCGCCGATCCACATGCCCAACAACACCGCCACCGGTGTGGTCATGGGCGGGCTGTTGACCGTGTTCGGTTTCGCGATGATCTGGCACATCTGGTGGCTGGCCATCGCCAGCCTGGTCGGCACCGTGGTGTATTTCGCCATCCATGCCGCCCGTGACGATCAGGGCTACATGGTGCCGGTGGATGTCATCGAACGCATCGAAGCCGAGCAGCACAAGCGTCTGGTCGCGGCCGGGAAAGTCCCTGCCACCGCCACCCGTGTTGAAACCTCGTTGGAACAGGCTTAA	MFGKLSWEAIPFHEPIVMVTLAIIGLGGLALFAGITYFKKWTYLWTEWLTSVDHKKIGVMYIIVAMVMLLRGFADAIMMRTQLAMATEGSPGYLPPEHYDQIFTAHGVIMIIFMAMPFFTGLMNLAVPLQIGARDVAYPFLNSLSFWLLVSGVVLINVSLGVGEFAKTGWVAYPPLSGLQYSPGVGVDYYIWALQLSGLGTTLTGVNFLATVLKMRTPGMKLMDMPIFTWTCTWANVLIVASFPILTATLALLTLDRYMDFHIFTNELGGNPMMYVNLFWAWGHPEVYILILPAFGIFSEVISTFSGKKLFGHHSMIYASGAISVLGFMVWLHHFFTMGSGASVNAFFGLATMLISIPTGVKLFNWLFTIYQGRLRFTSHVLWTLGFMVTFAIGGMTGVLLAIPGADFVLHNSLFVIAHFHNVIIGGAVFGYIAGFAFYFPKAFGFKLHEGWGKAAFWFWISGFFVAFMPLYALGFMGMTRRLNATTNPEWVPYLYVAMFGAVMIAVGIACQLIQLYVSVRDRKKPENMCEHGDPWNAHTLEWSTSSPPPFYNFAVLPKADVIDPFTEAKENGTAYQAPAKYSPIHMPNNTATGVVMGGLLTVFGFAMIWHIWWLAIASLVGTVVYFAIHAARDDQGYMVPVDVIERIEAEQHKRLVAAGKVPATATRVETSLEQA	PGPT0004025_442	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FoxABCD,PGPT0004025-foxA|coxA|ctaD-K02274	NA	NA
D1-36_00957	627	cyoC_1	COG1845	Cytochrome bo(3) ubiquinol oxidase subunit 3	ATGTCGAACTTAGTGACCAATGTTGGACACGCCCATGGTCATGACCATGGGCACGATGACCATCACCACGACTCGGGCGAGATGACCGTATTCGGTTTCTGGCTCTACCTGATGACCGACTGCATTCTGTTTGCGTCGATCTTCGCGGTGTACGCGGTGCTGGTTAACAACGTCGCCGGTGGCCCGTCGGGCCACGACATCTTCGAACTGCCTTATGTACTGGGCGAAACCGCGCTGCTGCTGTTCAGTTCGATCACCTACGGCTTCGCCATGCTGGCGTTGTACAAGGGCAAGAAGACCCAGGTCCTGGGCTGGTTGGCGATGACCTTCCTGCTGGGCGCCGGCTTTATCGCCATGGAGATCAATGAGTTCCATATCCTGATCGCCGAAGGCTACGGCCCGAGCCGCAGCGGTTTCCTGTCCGGGTTCTTCACCCTGGTCGGCACCCACGGTCTGCACGTGACCAGCGGTCTGATCTGGATGGCGATCATGATGTACCAAGTCCAGAAAAACGGCCTGACCGCCACCAACAAGACGCGCCTGAGCTGCCTGAGCCTGTTCTGGCACTTCCTGGACGTGGTGTGGATCTGCGTATTCACCGTTGTTTATCTGATGGGGACCCTGTAA	MSNLVTNVGHAHGHDHGHDDHHHDSGEMTVFGFWLYLMTDCILFASIFAVYAVLVNNVAGGPSGHDIFELPYVLGETALLLFSSITYGFAMLALYKGKKTQVLGWLAMTFLLGAGFIAMEINEFHILIAEGYGPSRSGFLSGFFTLVGTHGLHVTSGLIWMAIMMYQVQKNGLTATNKTRLSCLSLFWHFLDVVWICVFTVVYLMGTL	PGPT0004035_2642	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FoxABCD,PGPT0004035-coxC|ctaE-K02276	NA	NA
D1-36_00958	336	cyoD_1	COG3125	Cytochrome bo(3) ubiquinol oxidase subunit 4	ATGGCTAACGCTCATTCCCATGATGGCCACGACGCCGGCCACGGCAGCGTCAAGTCCTACGCCATCGGTTTCATCCTGTCGGTGATCCTGACCGTCATTCCGTTCGGCCTGGTGATGTACCCATCGCTGCCCAAGAGCCTGACGCTTTGGATCATTCTGATCTTCGCCGTGGTCCAAGTATTGGTCCACCTGGTGTACTTCCTGCACCTGGACCGTTCGGCCGCCCAGCGTAACAACGTGATTGCGTTTGTCTTCGCTGCGCTGGTGATCGTACTGCTGGTCGGCTTGTCGCTGTGGATCATGTTCAGCATCCACACCAACATGATGGCGCACTGA	MANAHSHDGHDAGHGSVKSYAIGFILSVILTVIPFGLVMYPSLPKSLTLWIILIFAVVQVLVHLVYFLHLDRSAAQRNNVIAFVFAALVIVLLVGLSLWIMFSIHTNMMAH				NA	NA	NA	NA	NA
D1-36_00959	888	cyoE	COG0109	Protoheme IX farnesyltransferase	ATGTCACTGAAGCACTTTATCCAAATCACCAAGCCGGGGATCATTTTCGGTAACGTGCTTTCTGTGGCGGGCGGGTTTTTCCTGGCCTCGAAGGGGCATGTCGATCTGGCCATCTTCCTGGCGGCGATGATCGGCACTTCCCTGGTGGTGGCGTCCGGTTGCGTGTTCAACAACTGCATCGACCGTGATATCGACATCAAGATGGAACGCACCAAGAACCGGGCGCTGGTCCAAGGCCTGATTCCGGTGCAACTGGCCCTGGCGTTTGCCACGGTGCTGGGTGTGGCCGGCGTGGCGCTGCTGTACTGGGTCGCCAACCCGCTGGCGGCGTTGTTCGCGGTGATCGGCTTTGTCATCTACGTCGGCCTCTACAGCCTGTACCTCAAGCGCAAGTCGGTTCACGGCACGCTGGTGGGCAGTCTGTCGGGGGCGATGCCGCCGGTGATCGGTTATGTCGCGGTCAGCAACAGCTTCGACATGGCGGCGGTGACGCTGCTGGTGATGTTCAGCCTGTGGCAGATGCCGCATTCCTATGCCATCGCGATCTTCCGCTTCAATGATTACCTGGCGGCCTCGATTCCGGTATTGCCCGTCAAGCGCGGTATCCAGGTGGCCAAGAAACACATCCTGCTCTACATCCTGGCCTTCCTCGTGGCGACCTTGATGCTGACCTTCAGCGGCTACGCCGGCATGAGCTACCTCGCCGTCGCCGCTGCCATGGGCATGTACTGGCTGTACATGGCCTGGACCGGCTACAAGGCGGTGGATGACACGGTCTGGGCACGCAAGCTGTTCGTGTTCTCGATCTTCACCATCACTGCCCTGAGCGTGATGATGTCCCTGGATTTCAAGGTGTCGAGTGAGTTGTTGCTGACTTACGCGCCTTAA	MSLKHFIQITKPGIIFGNVLSVAGGFFLASKGHVDLAIFLAAMIGTSLVVASGCVFNNCIDRDIDIKMERTKNRALVQGLIPVQLALAFATVLGVAGVALLYWVANPLAALFAVIGFVIYVGLYSLYLKRKSVHGTLVGSLSGAMPPVIGYVAVSNSFDMAAVTLLVMFSLWQMPHSYAIAIFRFNDYLAASIPVLPVKRGIQVAKKHILLYILAFLVATLMLTFSGYAGMSYLAVAAAMGMYWLYMAWTGYKAVDDTVWARKLFVFSIFTITALSVMMSLDFKVSSELLLTYAP	PGPT0008520_3704	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
D1-36_00960	705			hypothetical protein	ATGTCCGATTCCAATACCGCTGAATCCGTAATCACCCTGTCGTCCAAAGCGGAATACGAAAACTCCATCAATCTTTCACAGCATCTGCCCCAGGCCAAGACCATCAGCGAGATGGTCCTGGATGCGTTCCAGTCGAACCGCGAAAGCGACCAGATCCGCGAACTGCGCACCGCCATCCGCCAGGCTCACGACGCGTTCGATGACGACAAGGCCTACGAACTGATGGGCCAGCTCAAGCAACTCAAGGACGCCGAAGCTGCGGATTTTGCTGCTTTGGAAGACCTGAGCAGCCGCTTCCCCATCAGCCGCATTCTCTCCAGCTACAAGGATGATGCGGATTTCCAGGAACTGGTCTACGGCCTGGCCTTGAAAGTGCTGAACCAGACCCACCAGGCGATCAGCAACCCAAGCGGTAGCAAAGGCAAGGCCTCGCGGCCCAAAAAGGAAGCCGAGGTGTTCGTCATCAGCAAGGACGGCATCAGCGTCACCCTGCCCCTGCGCACCCCGCGCTCCAAGCCGAACGTCGACCGCGAGGCCTTCGAGTTCCTGGGTTTCAACTTTGTTGGTGAAGGCGACGAAGCCGAACTGGAAAGCGAGACCTTCCTGGACAATGACGGCACCGAACAACCAGTTACCCGTAAAAGCATCGTCACTGCCCTGCAACAGCAGAAAGCGTTCGACGGCTACAGCATCGCCCAGCAATAA	MSDSNTAESVITLSSKAEYENSINLSQHLPQAKTISEMVLDAFQSNRESDQIRELRTAIRQAHDAFDDDKAYELMGQLKQLKDAEAADFAALEDLSSRFPISRILSSYKDDADFQELVYGLALKVLNQTHQAISNPSGSKGKASRPKKEAEVFVISKDGISVTLPLRTPRSKPNVDREAFEFLGFNFVGEGDEAELESETFLDNDGTEQPVTRKSIVTALQQQKAFDGYSIAQQ				NA	NA	NA	NA	NA
D1-36_00961	744			hypothetical protein	TTGGCAACTCGACTCTCACGCTCTTCAATCCATTTCCTGGGCTGCGCGGGCTGGTCATTGCCCAAGGCGCAATGGCCGTCCTTTCCCGATGAAGGCACCCATCTGCAGCGCTACAGCGCACGCTTTCCAGCCGTGGAGATCAACAGTTCGTTCTATCGCCCGCACCGCCCCGCCACGTATGCAAAATGGGCGGACAGCGTGGCCGCAGAATTTCGCTTCTCGGTGAAAATGCCAAAGCAGATCACTCACGAACGACGCTTGGTCGATTGCGAGGGGCTTGTGGAAGAATTCCTCGGGCAGTGCTCGCAACTGGGGGAAAAACTCGGTTGCCTGCTGATTCAACTGCCACCATCGCTGGCCTTTGACGACGCCCAGGCCGAGACCTTCTTCAAGGTTTTGCGTGATCGTTACCAAGGCGATGCGGTGCTTGAACCTCGACACCCGAGCTGGCTCGCACCACCCGCCATGGCGATGCTGCAGACCCAGCGAATCGGTCGCGTGGCCGCCGATCCCTCGCCGCTGCCGGGGGGCGACCAACCGGCGGGGTGGCCCGGCATTCGTTATTACCGTATGCACGGCTCGCCGAAGATTTATTACACCCCTTACGATGATGTCCGGCTCAAGCAAATCGCCCAAGCCTTGAAAGCCGCCCCGGACACACCGACCTGGTGCATATTCGATAACACGGCCAGCGGCGCAGCGACCCCGGACGCGTTGCGGTTGATGGCGCTGTTGCGCGGATGA	MATRLSRSSIHFLGCAGWSLPKAQWPSFPDEGTHLQRYSARFPAVEINSSFYRPHRPATYAKWADSVAAEFRFSVKMPKQITHERRLVDCEGLVEEFLGQCSQLGEKLGCLLIQLPPSLAFDDAQAETFFKVLRDRYQGDAVLEPRHPSWLAPPAMAMLQTQRIGRVAADPSPLPGGDQPAGWPGIRYYRMHGSPKIYYTPYDDVRLKQIAQALKAAPDTPTWCIFDNTASGAATPDALRLMALLRG				NA	NA	NA	NA	NA
D1-36_00962	1017			hypothetical protein	ATGATGGACGACGCCTCGAAGATCGATTTGCTGCGGTTCGATTTGTCCGATCTGGACGAAAGCGTGCTGCACACCATCATGGAACTGGTCAGCGATGGCATCTGGGACTGGAACGCCAATACCGGGTTCGTTTATCGCAACCCCGGTTGGTACACCATGCTCGGCTACTCGCCTCATTCGCTGAGCAACACCGTGTTGACTTGGGAGAGCGTGATCCATCCGCAGGATTACCCCCAGGTGATGTCACTGTTCGATGACTACCTTCAACAACGCTCGGCAAAATACCAAGCCGAATACCGCTGTCGCACGCATGACGGCTCGTATATCTGGATCGAAGACCGCGGCTACGTCATCGCTCGCAACCCCGACGGCAGCGTGGCCCGAATGATCGGCGCCCATCGCAGCATCGACGACAAGAAGCGTCTGTTCGAGCAACTTGAACGGCGCAACAAATCCCTGGAAGCGGTCATCGAAGAGCGCACCCGTGAGTTGTCGCGGGTCAACCATCAATTGCAGATCCAACTCGACGAAAACCGCAGGCTCGCCGAAACCGACGCATTGACCCTGGTCGCTAATCGGTATCGCCTGGAGCAGACGCTGCCTCAGGCTTGCGAACGCGCCCAGCGCTTTCGCGAACCGTTGTCGCTGATCGCCATGGACATCGACGATTTCAAGGACATCAACGATCGATACGGCCATGCATTCGGTGATGCGGCGCTGGTGCAAGTGGTGCAGGCGGTCAAGCGTTGTGAGCGCGACAGCGACCTGTTGGTGCGTTGGGGGGGCGATGAATTCATCATGATTTTGCCAAATACATCCTTGGCCGATGCGGTCTTGATGGCCGAAACCATACGCCGCGGCCTGTCCGACCTGCTCCCGGTAGGGGATTTCCAGATCACCATGAGTTTTGGTGTGGTGCAGCGGATCGAAGACGAAACCCAAGAGGTATTGATGGATCGGGCGGACCAGGCGCTGTATCGCTCGAAGATGGCCGGCAAGAACGTGATATGCGACTGA	MMDDASKIDLLRFDLSDLDESVLHTIMELVSDGIWDWNANTGFVYRNPGWYTMLGYSPHSLSNTVLTWESVIHPQDYPQVMSLFDDYLQQRSAKYQAEYRCRTHDGSYIWIEDRGYVIARNPDGSVARMIGAHRSIDDKKRLFEQLERRNKSLEAVIEERTRELSRVNHQLQIQLDENRRLAETDALTLVANRYRLEQTLPQACERAQRFREPLSLIAMDIDDFKDINDRYGHAFGDAALVQVVQAVKRCERDSDLLVRWGGDEFIMILPNTSLADAVLMAETIRRGLSDLLPVGDFQITMSFGVVQRIEDETQEVLMDRADQALYRSKMAGKNVICD				NA	NA	NA	NA	NA
D1-36_00963	621			hypothetical protein	ATGCTAGGTATCTATTTCGCAGTTTTTTCCCTGCTGCTGATACTGGCGGGGCAAACCGGTGCTTTAGCCACTAAAGCCGGATTGTTGATGGCAACCGCCAAACTGATTACCCTCATCTTTATTCATGACCCTACCAAATCACCGCTATGGGCTCTGCTTGCCCGACAAACTGTTCTAGTTGCCAGCCTGGCCACGATCTGCCTGCTCTCTGACAGCAGTGCTGCGAGTGTTCAAGGCGCTCTGGCAAAACTAATGACCACGACAAATCTTACGGTTGGCCTCGCCTATCTCGCGATGCTACGACCCGCTTCAGCATTGATTGGCACAGTACTCAGTCCATGGATTAAAGAAATCGACACTGTAGGCTCCTTGACCAACGCAGGGACATTGATCGGCTATCTGGAGCGATTACTCATATTGACATTTGTCTTGCTGGAGCAATGGGAGGCCGTCGGTTTTCTTCTCACCGCAAAAAGCATCCTTCGCTTCAATGAAATCCAGAATGCCAAAGTACGGTCCATCAGCGAATACGTATTATTAGGCACCCTACTCAGCTTTACCTTGAGCATAGGAACAGGGCTGCTCGTCATGAATGCATTAAAGTTGATCGCCGACCAGTAG	MLGIYFAVFSLLLILAGQTGALATKAGLLMATAKLITLIFIHDPTKSPLWALLARQTVLVASLATICLLSDSSAASVQGALAKLMTTTNLTVGLAYLAMLRPASALIGTVLSPWIKEIDTVGSLTNAGTLIGYLERLLILTFVLLEQWEAVGFLLTAKSILRFNEIQNAKVRSISEYVLLGTLLSFTLSIGTGLLVMNALKLIADQ				NA	NA	NA	NA	NA
D1-36_00964	618			hypothetical protein	ATGAAGCCAGAAGCGGTATTGACCGGTGACCTGATTCACTCGCAGAGCGCAGGGAATACCCTTGCGTACATCGCACGCCTGGAAAAGGTGTTGGGACAGCAGGAAAAACGCTACCAAGCGAAAGCGGACATTTTTAGAGGTGACGGTTTTCAACTTTTGATGAGCCAGCCCGAACAAGCTTTCCACTGTGCCATCGCCTTGCGAGCCGCCTTGATCGAGGCCAGCCCCGAAGGCGAGCGTTGGGATGCGCGCATCGCCGTGGGCATTGGCTCGGCACGCAAATCGCAAACCTATGGTGAAGCTTTCGTCCTTTCCGGCCAAGGGCTCGATAGCATGAAAAAAAATACGCTGGCCGTGTTCTGCAATCACCAGGAATTCCAAGAGCGCGCAGGATTGGTAACAGAGTTCGTTGCAGCCGTACTGGAGGAATGGACAGTGGTCGAAGCCCAGACCTATGCGCTGCACCTGATAGAGGAAACCAACCAACAAACCATCGCCCACAGCCTAGGCAAGTCCCGGGTCACCATCAACAAAGCTCTGCAGCGCGCCCAAGCGCGTTTACTGGACAAATACCTGGCAAGCACCAGCCGGTGGATCAAGGAGCTGGGCAGTGATTGA	MKPEAVLTGDLIHSQSAGNTLAYIARLEKVLGQQEKRYQAKADIFRGDGFQLLMSQPEQAFHCAIALRAALIEASPEGERWDARIAVGIGSARKSQTYGEAFVLSGQGLDSMKKNTLAVFCNHQEFQERAGLVTEFVAAVLEEWTVVEAQTYALHLIEETNQQTIAHSLGKSRVTINKALQRAQARLLDKYLASTSRWIKELGSD				NA	NA	NA	NA	NA
D1-36_00965	909	dmlR_3		HTH-type transcriptional regulator DmlR	ATGGACTTGTTCCAGGCAATGACTGTTTACGTAAAAGTCGTGGAGACGGGCAGCCTGACAGCGGCAGCCCTGGCGTGCGAATTGTCGACCACCATGGTAGGCAATCATCTTCGTGCGCTGGAACAACGCCTCGGCGTGCGCCTGATCAATCGTACGACTCGTCGTCAACGCTTGACGGAATTCGGCTCAGCCTATTACCAACGTTGCCTGGAGGTGCTCGGGCTGGTCGCCGACTCAGAGCGCCTGGCGGAACAGACCCAAGGCGACCCCACCGGCACCTTGCGCATCACCGCGCCGCTGACCTTCGGCACGGAGCGCCTGGCGCCAGCACTGGCCGAGTTCAGCCAGCGCTACCCACAGGTCAAGCTCGATGTGGTACTGACCAACCAGCGCCTCGACCTGCTCGACCATGGCTTCGATGTCGCCATCCGACTGGGGCTCCCCGATCCGAAGCTGATCGCCCGCCCCTTGGTGGACTACACCCTGACCATCTGCGCGTCTCCCGTTTACCTCGCTCGGCGAGGCACACCGTGCAAGCCCGACGATTTGCGACTCCATGATTGCCTGTCGTTTGCCTATTCCGCCGGCGATGAATGGCGCTTCGCCCAGGAGCACTGGCCAATCAACGGCCCGGAAGGCGAAGTCAAAATCCCGGTGACCGGCCCGATGCTGATCAATAGCTCTTCGGGTTTGCACCGTGCCGCGCTGGCCGGCATGGGCGTGGTAATGCTGCCCGACGCGCTGGTGGCAAAGGATCTGCAGGAAGGGCATCTGGTGGCGCTGCTCCAGGACTATCAACTGCCTCATCGCCCGATGAGCCTGATGTACGCCCAGGATCGCTACCGTTTGCCGAAGCTGCGCAGTTTTGTCGAGTTTGCCCTGGAGTACTGGGCGAGGCCCGTCGGATAG	MDLFQAMTVYVKVVETGSLTAAALACELSTTMVGNHLRALEQRLGVRLINRTTRRQRLTEFGSAYYQRCLEVLGLVADSERLAEQTQGDPTGTLRITAPLTFGTERLAPALAEFSQRYPQVKLDVVLTNQRLDLLDHGFDVAIRLGLPDPKLIARPLVDYTLTICASPVYLARRGTPCKPDDLRLHDCLSFAYSAGDEWRFAQEHWPINGPEGEVKIPVTGPMLINSSSGLHRAALAGMGVVMLPDALVAKDLQEGHLVALLQDYQLPHRPMSLMYAQDRYRLPKLRSFVEFALEYWARPVG				NA	NA	NA	NA	NA
D1-36_00966	1176	argD_2	COG4992	Acetylornithine aminotransferase	ATGACCGCCGCTTGCCTGATGAGCACTTACCAACCTCTGGCACTGAGTTTCACCCATGGCCTGGGGACTCGCCTGTGGGACCAGGACGGCCGCGAGTACCTCGATGCGGTGGCGGGTGTGGCGGTGACCAACGTCGGGCACTCCCATCCCCGGCTGGTGGCGGCCATCAGTGAGCAGGCCGGCCTGTTGCTGCACACCTCCAACCTGTACAGCATCGACTGGCAACAACGGTTGGCCGGCAAACTCACGCAGTTGTCGGGAATGGACCGGGCATTTTTCAACAACTCCGGAGCCGAGGCTAACGAAACCGCACTGAAACTGGCGCGTCTGCACGGCTGGCACAAAGGCGTCGAGCAGCCGCTGGTGGTGGTCATGGACAACGCCTTCCATGGGCGCACGCTGGGCACGATGTCCGCCAGCGACGGCCCATCGGTGCGGCTGGGATTCAATCGGTTGCCGGGGGATTTCATCAAGGTGCCGTTTGGCGATCTCGCGGCGTTGGAAAAAATCCAGCAAACCCATGGCGAGCGTATCGTCGCGATTCTGGTGGAGCCGATCCAAGGGGAAAGTGGCGTGCAAGTCGCGCCGCCGGGTTACCTGCGGGCGCTGCGGGACCTGTGCAGCCGGCGCGCCTGGTTGCTGATGCTCGACGAGATCCAGACCGGCATCGGCCGCACCGGCCAATGGTTTGCGTTCCAGCACGAAGGCATCGTGCCGGACGTCATGACTCTTGCCAAAGGCTTGGGCAATGGCGTCCCCATCGGTGCCTGCCTGGCCCGGGGCAAAGCCGCCGAGCTGTTCACGCCCGGCAGTCATGGGAGTACGTTTGGCGGCAATCCCCTGGCCTGCCGTGTGGGTTGCACGGTGCTGGACATCATTGAGGAGCAAGGCCTGGTGGCGAACGCCGGGCGTCAGGGCGCACAGTTGCTCAGCCGGCTGCGGGCTGAGTTGGCGGATAACCCGAACGTGTTGGAGGTCCGAGGCCAAGGGTTGATGATTGGCATCGAACTCAAGCAACCGGTCCGTGACCTGACCCTTCGTGCTGCCCGGGACCATGGCCTGCTGATCAACGTCACCCGGGGCAAGACCATCCGCCTGTTGCCGCCGCTGACGATTGACGGGCGGGAAGTGGAGATGATCGCCAGGGGCGTGAGCCGCAGCCTTGCGCAGGTGTGA	MTAACLMSTYQPLALSFTHGLGTRLWDQDGREYLDAVAGVAVTNVGHSHPRLVAAISEQAGLLLHTSNLYSIDWQQRLAGKLTQLSGMDRAFFNNSGAEANETALKLARLHGWHKGVEQPLVVVMDNAFHGRTLGTMSASDGPSVRLGFNRLPGDFIKVPFGDLAALEKIQQTHGERIVAILVEPIQGESGVQVAPPGYLRALRDLCSRRAWLLMLDEIQTGIGRTGQWFAFQHEGIVPDVMTLAKGLGNGVPIGACLARGKAAELFTPGSHGSTFGGNPLACRVGCTVLDIIEEQGLVANAGRQGAQLLSRLRAELADNPNVLEVRGQGLMIGIELKQPVRDLTLRAARDHGLLINVTRGKTIRLLPPLTIDGREVEMIARGVSRSLAQV	PGPT0014253_3591	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014253-argD|pqqI-K00821	NA	NA
D1-36_00967	735	yiaD	COG2885	putative lipoprotein YiaD	ATGTTCACCTCGCGTCGCTTGATCGTTGTCGCTACCGCCGTGGCCCTGTTGTCCGGCTGTGCGTCGCCCAACCCCTATGACAATCAGGGCCAGGCCTCTACCGACTCGTCGGGCATGAGCAAAACCGCCAAGTACGGTGGCCTCGGTGCGCTGGCCGGGGCACTGGCCGGTGCGGCCATCGGTCACGATAACCGGGGCAAGGGTGCGTTGATCGGCGCTGCGGTGGTTGGCGCCTCGGCGGCCGGCTACGGCTACTACGCCGACCAGCAGGAAAAGAAGCTGCGTGCGAGCATGGCCAATACCGGCGTTGAGGTGCAGCGCCAGGGCGACCAGATCAAGCTGATCATGCCGGGCAACATCACCTTCGCCACCGACTCGGCGAACATCGCCTCCAGTTTCTACCAGCCGCTGAACAACCTGGCCAACTCCCTCAAGGAATTCAACCAGAACCAGATCGAAATCGTCGGCTACACCGACAGTACTGGCAGCCGTCAGCACAACATGGACCTGTCCCAGCGCCGTGCCCAGAGCGTGGCGACCTACCTGACGTCCCAGGGCGTGAGCGGTGCCAACCTCTCGGCCCGTGGCGCCGGCCCGGACAACCCGGTGGCGAGCAACAGCGACGTCAACGGCCGTGCGCAGAACCGTCGCGTCGAGGTCAACCTCAAGGCTATTCCGGGGCAGCAGTACCAGGCGCCGGAGCAGCAGGGGCAGACTTACCAGCAGTATCCTTGA	MFTSRRLIVVATAVALLSGCASPNPYDNQGQASTDSSGMSKTAKYGGLGALAGALAGAAIGHDNRGKGALIGAAVVGASAAGYGYYADQQEKKLRASMANTGVEVQRQGDQIKLIMPGNITFATDSANIASSFYQPLNNLANSLKEFNQNQIEIVGYTDSTGSRQHNMDLSQRRAQSVATYLTSQGVSGANLSARGAGPDNPVASNSDVNGRAQNRRVEVNLKAIPGQQYQAPEQQGQTYQQYP				NA	NA	NA	NA	NA
D1-36_00968	870	glnQ_4	COG1126	Glutamine transport ATP-binding protein GlnQ	ATGACTTTACCTCTGTCCACGCCCACCGATCTGTCCCGGCGCAGCACGCTGGCATCGCAGCAGGAGGCCCCGGCCATGAACGTCCCGACACCGTCCCGGCCAATTGTGAGTTTCCAGGACGTGACCAAAAGCTACGGCAGCTTCACAGTGCTCGACCATTTGAACCTGGATGTCGCGCCCGGTGAAAAAGTCGCGATCATCGGCCCCAGTGGTTCCGGCAAATCGACGCTGTTGCGGGTGTTGATGACCCTGGAGGGTATCGACCAGGGCCAGATCCGCATCGAGGATGATTCGCTGACCCACATGCCCAACCGCAACGGCGTGCTGGTGCCCGCGAACGACCGACACATCCGCCGGGTGCGCGGCAAGATCGGCATGGTATTCCAGAGCTTCAACCTGTTTCCCCACATGACCGCGCTGCAGAACGTCATCGAGGCGCCCGTGCAAGTGCTGGGCATGAACCCGAAAGAAGCCCGCGAGCGTGCCGCCGACCTGCTGGAGCTGGTGGGCCTGGGCAACAAGCTAGACCATTACCCGTCGCAGCTGTCTGGCGGCCAGCAACAGCGGGTAGCGATTGCCCGGGCGCTGGCGATGCGGCCCAAGGTGATGCTGTTTGACGAAGTGACCTCTGCGCTGGATCCGGAGCTGTGCGGCGAAGTCTTGAACGTTATCCGCAAACTCGGCGCCGAATACAACCTGACGATGCTGATGGTGACTCACCAGATGGGCTTTGCCCGGGAGTTCGCAGACCGGGTGTGCTTTTTCTACAAGGGCCAGATTCACGAACAGGGCACCCCGGCGCAGATTTTCGAAAACCCGCAGCAGGAGCGTACGTGTGCGTTCTTGAGTGCGGTGAAAGAGGCGAATTGA	MTLPLSTPTDLSRRSTLASQQEAPAMNVPTPSRPIVSFQDVTKSYGSFTVLDHLNLDVAPGEKVAIIGPSGSGKSTLLRVLMTLEGIDQGQIRIEDDSLTHMPNRNGVLVPANDRHIRRVRGKIGMVFQSFNLFPHMTALQNVIEAPVQVLGMNPKEARERAADLLELVGLGNKLDHYPSQLSGGQQQRVAIARALAMRPKVMLFDEVTSALDPELCGEVLNVIRKLGAEYNLTMLMVTHQMGFAREFADRVCFFYKGQIHEQGTPAQIFENPQQERTCAFLSAVKEAN	PGPT0020790_450	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
D1-36_00969	657	glnP_3	COG0765	Glutamine transport system permease protein GlnP	ATGACACTGTTCGACTGGTCTTACGCCGCGCAAATTCTCCCGGACCTGCTGCGCGCCTCCCTCAACACCGTGGGCATCACCTTGATCGGCTTTGTGATTGCAATCGTGCTGGGGCTGTTCCTTGCGATTGGCCTGCGCAGCCGCCGATTCTGGCTGTCGTGGCCGGCCACGGCGGTGATCGAATTCATCCGCAGCACGCCGTTGCTGATCCAGGTGTACTTCCTCTACTACGTGCTGCCCAACTACGGCCTGAGCCTGACGGCCATGCAGGTTGGCATCGTGGGCATCGGCCTGCACTACGCCTGCTACATTGCCGAGGTCTATCGCAGCGGCCTCGACGCGGTGCCTCGGGCGCAGTGGGAAGCGGTGACAGCATTGAACATCGCGCCATACGACGCGTACCGCAACATCATCCTGCCCCAGGCATTGCGCCCCATCGTGCCGCCGCTGGGCAACTACCTGGTGGCAATGCTCAAGGACACGCCGGTGCTGTCGGCGATCACCGTGGTGGAAATCATGCAGCAGGCCAAGAATATCGGCTCCGAGCACTTCCGCTACCTGGAACCGATCACCCTGGTCGGCCTGTTCTTCCTCGCCCTGAGCCTCGCCTTGGCTTATCTGGTACGGCGCCTTGAAACGCGCATGGAGCTACGCTAA	MTLFDWSYAAQILPDLLRASLNTVGITLIGFVIAIVLGLFLAIGLRSRRFWLSWPATAVIEFIRSTPLLIQVYFLYYVLPNYGLSLTAMQVGIVGIGLHYACYIAEVYRSGLDAVPRAQWEAVTALNIAPYDAYRNIILPQALRPIVPPLGNYLVAMLKDTPVLSAITVVEIMQQAKNIGSEHFRYLEPITLVGLFFLALSLALAYLVRRLETRMELR	PGPT0020795_9830	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
D1-36_00970	660	yecS_2	COG0765	L-cystine transport system permease protein YecS	ATGGGCGAATTACTTCCGTTATTGATTCAAGGGGCCTGGGTCACACTCCAGGTGACTTTCTTCGGCTCGCTGCTGGCGATTGTCGCGGCGGTACTCGCAGCCCTCGGACGGCTGTCGCCGTGGCGCGCGTTGCGCTGGTTTTCCATCACCTACATCGAAGTGTTCCGAGGCACGTCGCTGCTGGTGCAATTGTTCTGGCTGTTCTTCGTGCTGCCGCTGCCGCCGTTCAACATCGAGCTGAGCCCCTACGCCGTGGCGATTGTCGGCCTGGGCCTGCACATTGGCGCGTACGGGGCCGAGGTGATGCGCGGCGCCATCAGCTCAGTCGCCAAGGGCCAATACGAGGCCTGCACGGCGCTGAACTTCAGCGGTTTCACGCGCTTCAAGCGAATCATCCTGCCCCAGGCGTTGCTGGCGGCCATTCCACCCGGCACCAATTTGTTGATCGAGTTGCTGAAGAACACGTCGCTGGTATCGCTGATCACCTTGTCGGACCTGAGTTTCCGGGCGCGCCAGTTGGATCAGGCAACGTTCCAGACCCTGGAGATCTTCAGCCTGGCGCTGGTGATGTATTTCATCCTCGCCCAGGCCATCAACTTCGGCATGCGCAACATCGAGCGGCGGCTGAGCCGGGGCCGGATGCGTGGAGGTCTGTCATGA	MGELLPLLIQGAWVTLQVTFFGSLLAIVAAVLAALGRLSPWRALRWFSITYIEVFRGTSLLVQLFWLFFVLPLPPFNIELSPYAVAIVGLGLHIGAYGAEVMRGAISSVAKGQYEACTALNFSGFTRFKRIILPQALLAAIPPGTNLLIELLKNTSLVSLITLSDLSFRARQLDQATFQTLEIFSLALVMYFILAQAINFGMRNIERRLSRGRMRGGLS	PGPT0020795_9275	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
D1-36_00971	858			hypothetical protein	ATGAGCAATTTTCTTCCCGGCACCTGCGCACCCTTGCGTCGGATCTTGTTGACCTGTGCCGCACTGGGCCTGGCCGGCAGCGTCCAGGCCGCCACGCTGGACACCATCAAAAGCGACAGCAGCATCCGCATCGGCTACGCCAACGAAACCCCGTTTGCCTTCACCGAAACCGACGGCACCGTCACGGGTGAATCGCCGGAGATTGCCAAGATCATCTTCGCCAAAATGGGCATCAAACAGGTCAACGGCGTGCTCACCGAATGGGGCTCGCTGATCCCTGGGCTGCGCGCGGGTCGCTTCGATGTGATTGCCGCCGGCATGTACATCACCCCGGCACGCTGCAAGCAAGTGTTGTTCACCGATCCGCAATACCAGCTGCCCGATGCCTTGCTGGTGGCCAAGGGCAACCCGAAAAAACTTCACAGTTATGAAGACATCGCCAAGCAACCGGATGTGAAGCTGGCAATCATGGCCGGCACGGTGAACCTGGCGTACGCTCGTGATTCCGGGGTCAAGGATGAACAGATTCTCCAGGTGCCCGACACCACCGCGCAATTGCAAGCCGTACGCGCCGGTCGCGCCGACGCCGCTGTCGGCACCCAACTGACCATGAAAGGCCTGGCCGCCAAGGGCGGTGACAAGGTCGAGGCGATGACTGAATTCAAGGACGACCCGTCCCACATCGGCTATGGCGCCCTGGCCTTCCGTCCCGAAGACAAGGACCTGCGCGACGCGGTCAACGCCGAGCTGAAAAAATGGCTCGGGTCGGAAGAACACCTCAAGGCCGTCGCGCCGTTCGGTTTCGACAAATCCAACGTCACCAGCAAGACCGCGGCCGAGCTCTGCGCTCAGCCCTAA	MSNFLPGTCAPLRRILLTCAALGLAGSVQAATLDTIKSDSSIRIGYANETPFAFTETDGTVTGESPEIAKIIFAKMGIKQVNGVLTEWGSLIPGLRAGRFDVIAAGMYITPARCKQVLFTDPQYQLPDALLVAKGNPKKLHSYEDIAKQPDVKLAIMAGTVNLAYARDSGVKDEQILQVPDTTAQLQAVRAGRADAAVGTQLTMKGLAAKGGDKVEAMTEFKDDPSHIGYGALAFRPEDKDLRDAVNAELKKWLGSEEHLKAVAPFGFDKSNVTSKTAAELCAQP	PGPT0020800_4962	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
D1-36_00972	1395	norG_1	COG1167	HTH-type transcriptional regulator NorG	ATGGATAAATGGAAGTCAGCCCTGGACCTCGCCCGCAGTGGTGAATCCAAATACAAGATCCTGGTGCAGGCGATCGCCGATGACATCGAACAGGGCGCCTTGGCCAACGACCAGCGCCTGCCGCCGCAACGGCAGGTAGCCGACGCCATGGGCATCAGCGTGCAGACCGTCACCAATGCCTACAAAGAATTGGAGCGCCAAGGGCTGGTACGTTGCGAAGTAGGGCGCGGCAGTTTCGTCTCGCGGCGCATGAGCGACCGGGTCGCCACTTACATACTCGACAGCCCCGAGCGGGCGCTGGTGGATTTTTCCATCACGCGCATTCTCCACACCCGCGAGCACGACCAGTTCTGGCGCGACACCTGCGCCGAGCTGAGCACCGAAGAAGACCAGCCCTGGATCCATGCGTTTCGTCCGATAGCCGGTTTTGAATCCCATCGCGAAGCGGCGGTGCAATGGATCGGGCGCCAAGGCCTGAAGGTCGATCGCAACGATGTGCTGATCACCAATGGCGCCGCCCATGGCATTTTTCTCGCCCTGGCATCCCTCGCCGGGCCCGACGATGTGGTGCTCTGCGAAGGGCTGACCGACCACGGCGTGATCGGCAACTCCCAGGTGCTGGGCTTTACCCTCAAGGGTCTGGACACTGACCGCCATGGCATCGATCCCGAACACTTCGAGGACATGTGCAGCAACGAGCGCATCACCGCCCTGGTGTGCACGCCAAACTTGAACAACCCCACCACCAGCCTGATGCCCGACGCCCGTCGCCGGGAAATCGCCGAGATCGCCCGACGGTTTGGCGTGCATATCATCGAAGACGATGTGTACGGTCCGCTGCTGGACGAACGCCGCGCGCCGCCCATCAGCCACTACCTGCCGGAGCTGTCGTTCTATTGCACGAGCATGACCAAGTCCGTGCTCACGGGGTTGCGGATCGGTTATCTGGTGGTGCCCAAGCGCCTGGCGCTGCGCACCGAAAGCATTCTGCGCGTCAACAGTTGGATGGCCACGCCGATGGTCTCGGAAATCGCCGCCCGCTGGATCCGCGACGGCCGCGCCGATTCGCTGCTGCATCTTCAACGGCGCCTGTTGGCCGGACGCCAGGCGATGGTCACCGAATACATGGGTGAGCATGTATTGGCCCAGCATCCTCATGCCTTGAATGCCTGGATCGGCATCCCGCCGCACTGGGAAGTGGACAGCCTGGTGCGGGCGTTGCGCCACAAGCATATCGCCGTCACGTCCCCCGATCCGTTCACTGTACGCGGCACCCCCAGGCCGCGCGCGGTGCGGGTGTGCGTCGGCGCCGAATGCAGCGATGAAGAAATGCGCCATGCGTTGATCGGCATGCGGGAGATCTTCAATCAATATCCGCAGATTCATGATTTTTGA	MDKWKSALDLARSGESKYKILVQAIADDIEQGALANDQRLPPQRQVADAMGISVQTVTNAYKELERQGLVRCEVGRGSFVSRRMSDRVATYILDSPERALVDFSITRILHTREHDQFWRDTCAELSTEEDQPWIHAFRPIAGFESHREAAVQWIGRQGLKVDRNDVLITNGAAHGIFLALASLAGPDDVVLCEGLTDHGVIGNSQVLGFTLKGLDTDRHGIDPEHFEDMCSNERITALVCTPNLNNPTTSLMPDARRREIAEIARRFGVHIIEDDVYGPLLDERRAPPISHYLPELSFYCTSMTKSVLTGLRIGYLVVPKRLALRTESILRVNSWMATPMVSEIAARWIRDGRADSLLHLQRRLLAGRQAMVTEYMGEHVLAQHPHALNAWIGIPPHWEVDSLVRALRHKHIAVTSPDPFTVRGTPRPRAVRVCVGAECSDEEMRHALIGMREIFNQYPQIHDF				NA	NA	NA	NA	NA
D1-36_00973	972	tdcB_1	COG1171	L-threonine ammonia-lyase	ATGACAGGGTTGCAGCTTCAGGACATCTACCTCGCTCGCCAGCGCATCGAGTCGCAGGTCAGGCGCACGCCCATGGAGCATTCCCCTAGCCTGTCGCGACGGATGGGCGTGCCCGTATTCCTCAAGCTGGAAGCCCTGCAGATCACCGGCAGCTTCAAGCTGCGTGGCGCGAGCAATGCGGTGGCGCAGCTCAGCGTCGAGCAGAAGGCGCGCGGCGTGGTCACGGCGTCGACTGGCAATCACGGCCGGGCGCTGGCGCACGCCGCGTCGCAACAAGGCGTGCGGGCGATTGTCTGCCTGTCTCACCTGGTGCCATCCAACAAGGTGCAAGCGATTCGTGACCTCGGCGCCGAGGTCTGCATCGTCGGCCAGTCCCAGGACGATGCCCAGCGCGAAGCCGAGCGCATCGCGAACGAGCAGGGCGCGACCTTCCTGCCGCCCTTCGATCACCCGGCGATCATCGCCGGCCAAGGCACCCTCGGCCTGGAAATCCTGGAACAGCAACCGGACGTGGCCCAGGCCCTCGTTCCGTTGTCCGGCGGCGGTCTGTTCGCCGGCGTTGCCCTGGCCCTCAAAAGCGCCAATCCAGCGATCCAGGTCCACGGCATCAGCATGGCCCGAGGCGCGGCGATGCACGCCAGCCTTGCCGCTGGGCAGCCCGTGGATGTCGAAGAACTGCCGACCCTGGCCGATTCCCTCGGCGGCGGTATCGGGCTGGACAACCGCTACACCTTCGCCATGACCCGGCAGTTGATCGATGACCTGCACCTGCTCTCGGAAGCGTCCATCGCCCATGCCATCCGCCACGCCTATCACCATGAACGCCTGGTGCTCGAAGGCGCCGCGGTGGTGGGCATCGCGGCGCTGCTCGACGGCCTGGTCGAGCCGCGTGGACCCATTGTCCTGGTGGTCAGCGGGCGCAACGTCGACACCGAACAACATGCCCGCGTCATCGCTGGCGCCAACGCCTGA	MTGLQLQDIYLARQRIESQVRRTPMEHSPSLSRRMGVPVFLKLEALQITGSFKLRGASNAVAQLSVEQKARGVVTASTGNHGRALAHAASQQGVRAIVCLSHLVPSNKVQAIRDLGAEVCIVGQSQDDAQREAERIANEQGATFLPPFDHPAIIAGQGTLGLEILEQQPDVAQALVPLSGGGLFAGVALALKSANPAIQVHGISMARGAAMHASLAAGQPVDVEELPTLADSLGGGIGLDNRYTFAMTRQLIDDLHLLSEASIAHAIRHAYHHERLVLEGAAVVGIAALLDGLVEPRGPIVLVVSGRNVDTEQHARVIAGANA	PGPT0001960_6159	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
D1-36_00974	993	ala		Alanine dehydrogenase	ATGAGTGAAGTCACCCTATTGAGCGAAGCTGACCTGCGCAGCTGCGTGGCCCTCGACCTGGCCAGCGTCGACGCCGTCGAGCAGGCTTTTGTGCTGCTGGCCACCGCCGCCGTGGCGATGCCGCCGATCCTGCGGCTGGACATTCCCGAGCACAACGGCGAGGTGGATGTGAAGACCGCTTACCTGCCAGGCCTTGAACGCTTCGCCATCAAGGTCAGCCCGGGCTTTTTCGACAACCCCAAGCTCGGCCTGCCCAGCCTGAACGGCATGATGATGCTGCTTTCGGCGCGCACCGGCCTGCTGGAAGCGCTGCTGTTGGACAACGGTTACCTCACCGCCGTCCGTACGGCGGCGGCTGGGGCGGTGGCGGCGCGTTGTCTGTCCCGCGAGGACAGCCGCAGCGTGGCGCTGATCGGTGCGGGTGAACAGGCGGCGTTGCAGCTTCAGGCGTTGCGGCTGGTAAGGCCCATCGACGAGGTGCGGATCTGGGCGCGTGATGCACAAAAAGCCCAGGCATTCGGCCTTGCGCTGGCGCGGGACACGGGGCTTGCCGTCACGCCGTGCGACGCCATTGACGCCGCCCTGGAAGGCGTGGACATCGCCATCACCTGCACCCCCAGTCGCGAGCCGTTGATCGAAGCCCGTCATTTGCATCCGGGCCTGCACATCACAGCGATGGGCTCGGACGCCGAACACAAAAACGAAATCTCCCCGCAAGCGTTGGCGGCCGTCGATTGCTATGTCGCCGATCGCCTGAGCCAGACCCGCGTGCTCGGCGAGCTGCACCACGCCTTGGCCGCCGGCACCGTTCGCGATGAGCTGGCGTTGACGGAGCTGGGACAAGTCCTGGCGGGGCAACGGCTGGGGCGCTCCGATGCCGCGCAAGTGACGCTGTGCGATCTCACCGGCACCGGCGCCCAGGACACCGCCATCGCCAACCTGGCGTTCGAGCGGGCGCGGGTGGCGGGCAAGGGCTTTGCGTTCGGTCGCTAG	MSEVTLLSEADLRSCVALDLASVDAVEQAFVLLATAAVAMPPILRLDIPEHNGEVDVKTAYLPGLERFAIKVSPGFFDNPKLGLPSLNGMMMLLSARTGLLEALLLDNGYLTAVRTAAAGAVAARCLSREDSRSVALIGAGEQAALQLQALRLVRPIDEVRIWARDAQKAQAFGLALARDTGLAVTPCDAIDAALEGVDIAITCTPSREPLIEARHLHPGLHITAMGSDAEHKNEISPQALAAVDCYVADRLSQTRVLGELHHALAAGTVRDELALTELGQVLAGQRLGRSDAAQVTLCDLTGTGAQDTAIANLAFERARVAGKGFAFGR				NA	NA	NA	NA	NA
D1-36_00975	1191	doeA	COG0006	Ectoine hydrolase	ATGTCAGAGATAGTCGTCAATCTTCCGTTCCAGCGGGAGGAATACGCCCAGCGCCTGGCAAAGGTTCGCGCGGCCATGCAGGCCCAAGGTCTGGAGCTGTTGCTGGTCACCGATCCGTCGAACATGGCCTGGCTCACCGGCTATGACGGTTGGTCGTTCTATGTGCATCAGTGCGTGCTGCTGGCGCTGGACGGCGAGCCCGTGTGGTTCGGTCGCGGCCAGGATGCCAACGGTGCCAGGCGCACGGTGTTCATGCAGGCCGACAACATCGTCGGCTACCCGGACATCTACGTGCAGTCCCGCGAGCGCCACCCCATGGACTATTTGTCCCGCGAGGTGATCATCGCCCGTGGCTGGGGCGCCCTGAGCATCGGCGTGGAGATGGACAACTACTACTTCAGCGCCGCCGCCTACCTGTCCCTGCAAAAACATCTGCCCGACGCGACGCTGGTGGATGCGGCGGGGTTGGTGAACTGGCAGCGCGCCGTCAAGTCGCCCCAGGAAATCGCCTACATGCGCATCGCCGCGCGCATCGTCGAGAACATGCATGGGCGGATCCTGGAACGGATAGAGCCGGGCATGCGCAAGAACGAACTGGTGGCCGAGATCTACAGCAGCGGCATCCTCGGTGCCGACGGCCATGGCGGCGACTACCCGGCCATCGTGCCGCTGCTGCCCACCGGCGCCGACGCCAGCGCGCCGCACCTGACCTGGGACGATTCGCCGTTCGAAAAGGGCGCCGGCACCTTCTTTGAAATCGCCGGTTGCTACAAGCGTTACCACTGCCCGCTGTCGCGCACCATTTACCTGGGCAAGCCGCCGCAACATTTCCTCGACGGTGAAAAAGCCGTGGTCGAGGGCATCGCCGCCGGCCTGGACGCGGCCAAGCCTGGCAATACCACGGGCGACATCGCCGTGGCGTTTTTCAAGGTGCTGGAGAAGTTTGGCATCCACAAGGACAGCCGTTGCGGCTACCCCATCGGCATCAGTTATCCGCCGGATTGGGGCGAGCGCACCATGAGCCTGCGTCCCGGCGACAACAGCGTGTTGCAACCGGGCATGACGTTTCACTTCATGCCCGGGCTGTGGATGGATGATTGGGGCCTGGAGATCACCGAGAGCATCCTGATCACCGAGACTGGCGTCGAGACGCTGTGCAATGTGCCTCGTCAATTGTTCGTGAAGGATTGA	MSEIVVNLPFQREEYAQRLAKVRAAMQAQGLELLLVTDPSNMAWLTGYDGWSFYVHQCVLLALDGEPVWFGRGQDANGARRTVFMQADNIVGYPDIYVQSRERHPMDYLSREVIIARGWGALSIGVEMDNYYFSAAAYLSLQKHLPDATLVDAAGLVNWQRAVKSPQEIAYMRIAARIVENMHGRILERIEPGMRKNELVAEIYSSGILGADGHGGDYPAIVPLLPTGADASAPHLTWDDSPFEKGAGTFFEIAGCYKRYHCPLSRTIYLGKPPQHFLDGEKAVVEGIAAGLDAAKPGNTTGDIAVAFFKVLEKFGIHKDSRCGYPIGISYPPDWGERTMSLRPGDNSVLQPGMTFHFMPGLWMDDWGLEITESILITETGVETLCNVPRQLFVKD	PGPT0014046_142	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014046-doeA-K15783	NA	NA
D1-36_00976	1002	doeB	COG3608	N-alpha-acetyl-L-2,4-diaminobutyric acid deacetylase	ATGACTGAATTGCCGATCAACCCCATTAGCGCCACGGTGGATTTCACCCGCGAAGGCGTGCAACACGGCTTCCTCAAGCTGCCGTATTCCCGGGACGATTCGGCCTGGGGCGCGGTGATGATTCCCATCACCGTGATCCAGCGCGGCAGCGGCCCGACCGCGCTGCTCAGTGGTGGCAACCACGGCGATGAATACGAAGGCCCGGTGGCCCTGAGCAAACTGGCCCAGCAATTGACCGCCGATGAAATCAGCGGACGCGTGATCATCGTGCCGTTCATGAACACCCCGGCGTTCCATGCCGGGCGCCGGACTTCGCCCATCGACAAGGGCAACCTCAACCGCAGCTTTCCCGGGAGGCCAGACGGCACCGTCACGGAAAAAATCGCCGACTACTTCAACCGCACCTTGCTGCCCCTGGCCGACATTGTCCTGGACATTCATTCCGGTGGCCGGACCCTGGATTTCCTGCCATTCGCCGCCTGCCACGTCTTGCCGGACAAACAGCAACAGGCCCGCTGCGAGGCCGGGATGCTGGCCTTCAACGCGCCGTATTGCATGCGCATGCTGGAGCTGGACGCAGGGTCGATGTACGACACCGCCGCCGAGTCCCAGGGCAAGGTGTTCGTCACCACCGAGCTGGGCGGCGGCGGTTCGTCCACCGCCCGCAGCGTGGCGATTGCCGAGCGTGGGGTGCGCAACGTGCTGATCCACGCCGGCATCCTGCGGGGCTCTATCGAGTTACAGCCGTCGTTGGTGCTCGACATGCCGGACGCCAGTTGTTTCATCGCCAGCGAGCACAACGGTTTGCTGGAGATGTGCCGCGACCTCGGTGAAAACGTGAGCAGAGGCGAGGTGGTGGCGCGCATCCATGACACCACCCGCAGCGGCGTCGCCCCGGTCGAGTACCGCGCCGCCCGCAGCGGCCTGCTCGCGGCCCGGCATTTTCCCGGGCTGGTGCAGTGTGGCGATACGTTGGTGGTGATTGCGGATGTATTGGCGTAA	MTELPINPISATVDFTREGVQHGFLKLPYSRDDSAWGAVMIPITVIQRGSGPTALLSGGNHGDEYEGPVALSKLAQQLTADEISGRVIIVPFMNTPAFHAGRRTSPIDKGNLNRSFPGRPDGTVTEKIADYFNRTLLPLADIVLDIHSGGRTLDFLPFAACHVLPDKQQQARCEAGMLAFNAPYCMRMLELDAGSMYDTAAESQGKVFVTTELGGGGSSTARSVAIAERGVRNVLIHAGILRGSIELQPSLVLDMPDASCFIASEHNGLLEMCRDLGENVSRGEVVARIHDTTRSGVAPVEYRAARSGLLAARHFPGLVQCGDTLVVIADVLA	PGPT0014047_225	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014047-doeB-K15784	NA	NA
D1-36_00977	480	lrp_1	COG1522	Leucine-responsive regulatory protein	ATGCACAAGCTCGATCGCTACGACTTGAAGATCCTGCAAATCCTCGCCGACGACGGACGGATCACCAAGTCGAGCCTGGCCGAAGCCATCAACCTGTCGGTGACGCCGGCCTGGGAGCGGGTGCGCAAGTTGGAAGCGGCGGGCCTGATCGTTGGCTATCGGGCGCAGATCGATTGGGGCGCGGTGTTCAAGCGTCAACAAGTGTTGGTGGAGATTTCCCTGGCCCGGCACACCGCCCAGGACATGCGTCGTTTCGAACAGCGCATGGTCGCCGCGCCCGAAGTGGCGTTCTGTTATGCCACCGGCGGCGGGGTGGATTACCTGGCAATGATCCAGGCGCCCGACGTCGATGCCTATCAACGTTTCGTCGACCAATTGCTGCTCGAACACCTTGGCATCGAACGCTACTTCACCTACATCGTCACCAAGACCATCAAGACCGCCGGTGCGTTGCCGGCGGAGCTGGCATCGCCCTCCTGA	MHKLDRYDLKILQILADDGRITKSSLAEAINLSVTPAWERVRKLEAAGLIVGYRAQIDWGAVFKRQQVLVEISLARHTAQDMRRFEQRMVAAPEVAFCYATGGGVDYLAMIQAPDVDAYQRFVDQLLLEHLGIERYFTYIVTKTIKTAGALPAELASPS	PGPT0014049_205	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014049-doeX-K15782	NA	NA
D1-36_00978	1488	davD_2	COG1012	Glutarate-semialdehyde dehydrogenase	ATGCCTTACCAACATCCGCTGTTGTTCAAAGCGCTTTGCTACGTCGACGGCCATTGGGTCCACAGCGACAGCGGCCACAGCGTCGCCGTCCACAACCCGGCCAACCGCACGGTCGTCGGCCATGTGCCGATGCTCGACCCGCCGCAGATCGTCGCGGCGGTGGACGCGGCGCATCGCGCATTCCCAGCGTGGCGCGAACTGGGCCTGGATAGCCGTGGCGCGTTGCTGCGGCGCTGGGCGCAGTTGATCACCGAGCACCGCGAGGATCTGGCGCGCATCCTGAGCCTGGAGCAGGGCAAGCCGTTGGCCGAGTCCCGTGGCGAAATCGCCTATGCCGCCAGCTTTATCCCTTGGTTCGCCGAAGAAGCCCGACGCCTCTACGGCCAGAACATCCCCAGCCATATCCCCAACGCGCACCTGGGCACGATCAAGGAACCGGTGGGCGTCTGCGCGCTGCTCACGCCGTGGAACTTCCCCTCGGCAATGATCACCCGCAAGGCCGCCGCCGCGCTGGCTGCCGGTTGCACCGTGGTGATCAAACCGGCCCACGAAACCCCGTATTCAGCCCTGGCCCTGGCCCAACTGGCCGAAGAGGCCGGCTTTCCCGCCGGAGTTTTCAACGTGGTGTTGGGCGAGCCGCAAATGGTCATGGAGACCTTGGTCAAGGACCGCCGCGTACGCTCGGTGAGTTTTACCGGCTCGACCCGGGTCGGCAAACTGGTGCTGCAAGCGGCGGCCCATGATGTGAAGAAAGTCGCGTTGGAGCTGGGCGGCAACGCGCCGTTCATTGTCTGCGCCGATGCCGACCTGACGCTGGCGGTGAAAGTTGCCGTCGAGGCGAAATTCCAGACGTCGGGCCAGGATTGTTGCGCGGCCAACCGGATCATGGTGCAGCGCCCGGTCTACCAGGCATTTCTCACTCGCTTCGCCGCAGCGGTGCGCGCCTTGCGGGTCGGGCCGGCCATGGTCGATCAGCAGGAACAGGAAGTGGACGTCGGTCCGCTGATGCATCAGGCCGCGTTCGATGCGACCTCCGATCGTGTGGCCGACGCCCTGGCGTTGGGCGCTCAACGCCTGGTGGGTGGCGAGGCCCATGCCTTGGGCGGGTTGTTCTACCAACCCACCGTGCTGGCCGATGTCACGCCGCAGATGCGCATCTACCGTGAAGAAAACTTCGCGCCGATCGCCGGGGTGCTGCCGTTCGACACCTTGGACGAAGCCATCGAAATGGCCAACGACACCGAGTACGGACTGGCCGCCTATATTTGCTCCAACCGCCTGGATGTCATTTACCCACTGATCCGCCGTCTCGACCACGCCATGGTTGCGGTCAACGGCGTCAAGTTCACCGGCCACCCGATCCCCTTCGGTGGCATGAAAGCCTCGGGCCTCGGTCGCGAGGGTGGCAGCGAGGGCTTCGAGCCCTTTGTCGAAATCAAATACTTTTGCCTGCACCATCAAGGCCAGTTCCCAGGAGAGTCCGCATGA	MPYQHPLLFKALCYVDGHWVHSDSGHSVAVHNPANRTVVGHVPMLDPPQIVAAVDAAHRAFPAWRELGLDSRGALLRRWAQLITEHREDLARILSLEQGKPLAESRGEIAYAASFIPWFAEEARRLYGQNIPSHIPNAHLGTIKEPVGVCALLTPWNFPSAMITRKAAAALAAGCTVVIKPAHETPYSALALAQLAEEAGFPAGVFNVVLGEPQMVMETLVKDRRVRSVSFTGSTRVGKLVLQAAAHDVKKVALELGGNAPFIVCADADLTLAVKVAVEAKFQTSGQDCCAANRIMVQRPVYQAFLTRFAAAVRALRVGPAMVDQQEQEVDVGPLMHQAAFDATSDRVADALALGAQRLVGGEAHALGGLFYQPTVLADVTPQMRIYREENFAPIAGVLPFDTLDEAIEMANDTEYGLAAYICSNRLDVIYPLIRRLDHAMVAVNGVKFTGHPIPFGGMKASGLGREGGSEGFEPFVEIKYFCLHHQGQFPGESA	PGPT0014048_150	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014048-doeC-K15786	NA	NA
D1-36_00979	1386	spuC_1	COG0161	Putrescine--pyruvate aminotransferase	ATGAGCCAAGAACTCAACACGCTGTTCGAACAAGACCGTGCGCATTTCATGCACCCGTCAACCCACGCCCATGACCATGCCAGCGGCGCGCTCAAGGGGCGGATCATCAAGAGCGCGTCGGGCATCCGCATTCGCGATCATGAAGGCCGCGAGTTCATCGATGCCTTTGCCGGCCTCTACTGCGTGAATATCGGCTACGGGCGTACCGAAGTGGCCGATGCCATCTACAAGCAGGCCAAGGAACTGGCCTATTACCACACCTATGTCGGCCATTCGAGCGAGGCGATCATCGAGCTGTCCAGCCGCATCATGGACTGGGCGCCGGAGGGGATGAAGAAGGTTTATTACGGCTTGTCCGGCTCCGATGCCAATGAAACCCAGATCAAACTGGTGCGTTACTACAACAACGTGCTGGGCCGGCCCCAAAAGAAGAAAATCATTTCCCGCGACCGTGGCTACCATGGCTCGGGCATCATGACCGGCAGCCTGACCGGGCTGCCCGCCTTCCACCAACATTTCGACCTGCCGGCGGAGGGCATCAAGCACACCGTTTGCCCGCATTGGTATCGCAAGGCCCCGGCGGGGATGGACGAAGCGACGTTCGTGCGTTATTGCGCCGATGAACTGGAAAAAATGATCCTCGCCGAAGGCCCCGACACCGTGGCGGCACTCATCGGCGAACCGCTGATGGGCACTGGCGGCATCATTGTCCCGCCCGCCGGTTACTGGGAGGCGATCCAGGCCGTACTGAAAAAATACGACGTGCTGTTGATTGCCGACGAGGTGGTTTGCGCGTTCGGTCGCCTGGGTTCGAAGATGGGCAGCCAGCGCTACGGCATGAAGCCGGACCTGATCACTACGGCTAAGGGGCTGACCAGTGCTTATGCACCGTTGTCGGCGGTGATCATCGGCGATAAGGTCTGGAGCGTGATTGAAAAAGCCTCCCAGGCCGAAGGCGCCATGGGCCATGGCTGGACGTATTCCGGGCATCCGATCTGCGCGGCGGCGGCGTTGGCCAACCTCGACATCCTCGAACGGGAAAACCTCACGGCCAACGCCGAGAATGTTGGTGGCTACTTGAACCGTCGGTTGCGTGAAACGCTGGAAGGTCATCCGCTGGTGGGGGAGGTTCGCGGCGACGGCATGCTGGCCGCAGTGGAGTTCATGGCCGACCGTGAACAACGCACGGCGTTCGACCCGGCCCTCAAGGTTGGCCCGAAGGTCTCGGCGGCCTGCCTGGAGCGCGGCATGATCGCCCGCGCCATGCCCCACGGCGACATCCTGGGTTTCGCCCCGCCATTGATCCTGACTCGCGAGGATGCGGACCTGATCGTCGACATCACCAAAGCGGCTATCGATCAGGTGGCGGAAGAAGTGTTGCGCTGA	MSQELNTLFEQDRAHFMHPSTHAHDHASGALKGRIIKSASGIRIRDHEGREFIDAFAGLYCVNIGYGRTEVADAIYKQAKELAYYHTYVGHSSEAIIELSSRIMDWAPEGMKKVYYGLSGSDANETQIKLVRYYNNVLGRPQKKKIISRDRGYHGSGIMTGSLTGLPAFHQHFDLPAEGIKHTVCPHWYRKAPAGMDEATFVRYCADELEKMILAEGPDTVAALIGEPLMGTGGIIVPPAGYWEAIQAVLKKYDVLLIADEVVCAFGRLGSKMGSQRYGMKPDLITTAKGLTSAYAPLSAVIIGDKVWSVIEKASQAEGAMGHGWTYSGHPICAAAALANLDILERENLTANAENVGGYLNRRLRETLEGHPLVGEVRGDGMLAAVEFMADREQRTAFDPALKVGPKVSAACLERGMIARAMPHGDILGFAPPLILTREDADLIVDITKAAIDQVAEEVLR	PGPT0007865_658	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007865-spuC-K12256	NA	NA
D1-36_00980	438			hypothetical protein	GTGGAACACTCGCTCTTAGTTTGGCTGTTGCCGACTCTTGCCCTGGTTGCCGGTGTCGCCATTGGTTTCCTGATTGCCCGCCTGCTGCCCAACGCGGTGCCCAACAGCACCCAACGTCAGCTGGACGACATCCAGGAACGTTTCGACAGTTATCAGAATGAAGTGGTCACTCACTTCAACAGCACCGCCTCCCTGGTGAAAAAACTCACCCAGAGCTACCAGGAAGTCCAGGATCATCTGTCCGAGGGCGCCAACCGCCTGGCCCTTGACGAACAGACCCGCCAGCGCCTGCTCGCCGCCCTGCAAGCCGATGCGACGCAGAGCCCACGGGAACGCCTGACCCCACCGAAAGGGATCCAGGAACCGCCACGGGACTACGCCCCAAAGGCCCCGAATTCGCCCGGGATGCTCGATGAGCATTACGGTTTGAAGAAGTAA	MEHSLLVWLLPTLALVAGVAIGFLIARLLPNAVPNSTQRQLDDIQERFDSYQNEVVTHFNSTASLVKKLTQSYQEVQDHLSEGANRLALDEQTRQRLLAALQADATQSPRERLTPPKGIQEPPRDYAPKAPNSPGMLDEHYGLKK				NA	NA	NA	NA	NA
D1-36_00981	636			hypothetical protein	TTGCTTATGCGCGAAACCCCTGTAGTCATCGATGGCCCGGTGGGCCAACTGGAAGCCTTGTACCTGGACAGCGAGGCTCCCCGCGGCCTGGCGCTGATCTGCCACCCGAACCCGGTACAGGGTGGGACCATGCTCAACAAAGTGGTGTCGACCCTGCAACGCACCGCTCGGGATGCCGGCCTGGTTACGTTGCGTTTCAATTATCGTGGCGTCGGCGCCAGTGCCGGCAGTCATGACATGGGTACCGGCGAAGTGGATGACGCCCAGGCCGCAGCCGCCTGGCTGCTGGAAAAACACCCCGGCCTGCCGCTGACCCTGTTCGGTTTCTCTTTCGGCGGCTTCGTTGCCGCGACCCTCGGCGGGCGCCTGGAAGCCCAGGGTCAATCCCTCAAGCACCTGTTCATGGTTGCCCCCGCGGTGATGCGCCTGAACGAGCAATCGCCTTTGCCGAAGGGGGGAGAGTTGACCGTGATCCAGCCGGAAACCGACGAAGTGGTGGATCCGCAACTGGTTTACACCTGGTCCGAGGCGCTCGAACGCCCCCATGAGCTGCTGAAAGTGGCAGAATGCGGACACTTTTTCCATGGCAAGCTGACCGATCTCAAGGATCTGCTCTTGCCGCGCCTCTCGAATTGA	MLMRETPVVIDGPVGQLEALYLDSEAPRGLALICHPNPVQGGTMLNKVVSTLQRTARDAGLVTLRFNYRGVGASAGSHDMGTGEVDDAQAAAAWLLEKHPGLPLTLFGFSFGGFVAATLGGRLEAQGQSLKHLFMVAPAVMRLNEQSPLPKGGELTVIQPETDEVVDPQLVYTWSEALERPHELLKVAECGHFFHGKLTDLKDLLLPRLSN				NA	NA	NA	NA	NA
D1-36_00982	1356			hypothetical protein	ATGACGACGCGTACCCGTATCCTGACTGGCATCACCACTACTGGCACCCCGCACCTGGGCAACTATGCTGGCGCCATCCGTCCGGCGATCCTCGCCAGCCGCGACAGCAATGCCGATTCGTTCTACTTCCTGGCTGACTATCACGCCCTGATCAAGTGCGATGACCCGATGCGCATCCAGCGCTCGCGCCTGGAAATCGCCGCCACCTGGCTGGCTGGCGGCCTGGATGTGGACCGTGTGACGTTTTATCGCCAGTCTGACATTCCCGAAATTCCGGAGCTGACCTGGCTGCTGACCTGCGTCGCCGCCAAGGGCCTGCTCAACCGTGCCCACGCCTATAAGGCGTCGGTGGACAAGAACGTCGAGGCCGGCGAAGACCCGGACGCCGGCATCACCATGGGGCTGTACAGCTACCCGGTGTTGATGGCGGCTGACATCCTGATGTTCAACGCTCACAAGGTGCCGGTCGGTCGCGACCAGATCCAGCACGTGGAAATGGCCCGCGACATCGGCCAGCGCTTCAACCACCTGTTCGGCAAGGGCAAGGCGTTCTTCACCATGCCCGAGGCACTGATCGAGGAAAGCGTCGCCACGTTGCCGGGGCTCGATGGCCGCAAGATGTCCAAGAGCTATGACAACACCATCCCGTTGTTCAGCAGCGCCAAGGACATGAAGGATGCGATCTCGCGGATCGTCACTGACTCCCGCGCACCAGGCGAAGCCAAGGATCCGGACAACTCGCATTTGTTCACCTTGTTCCAAGCGTTCGCCACTGCCGAACAGTCCGCCGAGTTCCGTAGCGAACTGCTGCAGGGCCTGGGTTGGGGCGAAGCCAAGAATCGTCTGTTCCAGTTGCTCGACAGCGAGCTGGGCGAAGCGCGCGAGCGTTATCACCAGTTCATCGAGCGCCCATCGGACCTCGAAGACATCCTGCAACTGGGCGCGAGCAAGGCCCGGGCCGTGGCGACACCGTTCCTCAACGAGCTGCGGGAGGCCGTCGGCCTGCGCTCCTTCGTCAGCCAGGTCCAAGTGGCGACCCAGACCAAAAAGAAAGCAGCCAAGGCAGCGCGCTTCGTCAGCTTCCGCGACGAGGACGGGAGTTTCCGATTCCGCCTGCTTTCCGCCGATGGCGAGCAACTGTTGCTCTCCAACAACTTTGCCGACGGCAAGACAGCGGGGCAGGTGACCAAGCAGTTGCAGTCCGGCCAACCCTTGGACGTACGCAGTGACGACTTGGGTTTCGGTGTCTGGCTCGACGGTGCATGCGTGGCCCAGAGCCCGGCGTTTGCTGACAGCGCCGCTCGGGATGCGGCCATCGACGCGTTGCGCGTGGCCCTGACGCCTGCCCAGGACTAA	MTTRTRILTGITTTGTPHLGNYAGAIRPAILASRDSNADSFYFLADYHALIKCDDPMRIQRSRLEIAATWLAGGLDVDRVTFYRQSDIPEIPELTWLLTCVAAKGLLNRAHAYKASVDKNVEAGEDPDAGITMGLYSYPVLMAADILMFNAHKVPVGRDQIQHVEMARDIGQRFNHLFGKGKAFFTMPEALIEESVATLPGLDGRKMSKSYDNTIPLFSSAKDMKDAISRIVTDSRAPGEAKDPDNSHLFTLFQAFATAEQSAEFRSELLQGLGWGEAKNRLFQLLDSELGEARERYHQFIERPSDLEDILQLGASKARAVATPFLNELREAVGLRSFVSQVQVATQTKKKAAKAARFVSFRDEDGSFRFRLLSADGEQLLLSNNFADGKTAGQVTKQLQSGQPLDVRSDDLGFGVWLDGACVAQSPAFADSAARDAAIDALRVALTPAQD	PGPT0007120_418	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
D1-36_00983	1095	zapE_1	COG1485	Cell division protein ZapE	ATGACGCCCCTAGAACGATATCAAGCTGATCTGAAACGCCCGGAATTCTTTCACGACGCAGCCCAGGAAACGGCCGTGCGGCACTTGCAGCGCCTGTACGACGACCTGATCGCCGCGTCGAACAACAAGCCGGGCTTGTTGGGCAAACTGTTCGGCAAGAAAGACCAGGCGCCGGTCAAGGGCCTGTATTTCTGGGGCGGCGTCGGCCGTGGCAAGACTTACCTGGTGGACACCTTCTTCGAAGCGCTGCCGTTCAAGGAAAAGACGCGGACGCACTTCCACCGCTTCATGAAGCGCGTGCACGAAGAAATGAAAACCCTGGGCGGCGAAAAGAACCCGCTGACCATCATCGCCAAGCGCTTCGCCGCCGAAACCCGGGTGATCTGCTTCGATGAATTCTTCGTCTCCGACATCACCGATGCCATGATCCTGGGCACGCTGATGGAAGAGCTGTTCAAGAACGGCGTGACCCTGGTCGCCACCTCGAACATCGTGCCCGATGGCCTCTACAAGGACGGCCTGCAACGGGCGCGTTTCCTGCCGGCCATCAAGCTGATCAAAGAACACACCGAAGTTGTCAACGTCGACAGCGGCGTGGACTATCGCCTGCGTCACCTCGAGCAAGCGGAGCTGTTCCATTTCCCGCTGGATGCCGCCGCCGAAGAGAGCCTGCGCAAGAGCTTCCGCGCCCTCACGCCGGAATGCACCCAGGCGGTCGAGAACGATGTGCTGATCATCGAGAATCGCGAAATCCGCGCCATCCGCACCTGTGACGACGTGGCCTGGTTCGACTTCCGCGAATTGTGCGACGGCCCTCGCAGCCAGAACGATTACATCGAGCTGGGCAAGATCTTCCACGCTGTGTTGCTCAGCGGCGTCGAGCAGATGAGCGTCACCACTGATGACATCGCTCGGCGTTTCATCAACATGGTTGACGAGTTCTACGACCGCAACGTGAAGCTGATCATCTCGGCCGAAGTCGAACTCAAGGACCTGTACACGGGCGGGCGCCTGACGTTCGAGTTCCAGCGGACCCTGAGTCGCTTGCTGGAGATGCAGTCCCACGAATTCCTGTCGCGGGCGCATAAGCCTTAA	MTPLERYQADLKRPEFFHDAAQETAVRHLQRLYDDLIAASNNKPGLLGKLFGKKDQAPVKGLYFWGGVGRGKTYLVDTFFEALPFKEKTRTHFHRFMKRVHEEMKTLGGEKNPLTIIAKRFAAETRVICFDEFFVSDITDAMILGTLMEELFKNGVTLVATSNIVPDGLYKDGLQRARFLPAIKLIKEHTEVVNVDSGVDYRLRHLEQAELFHFPLDAAAEESLRKSFRALTPECTQAVENDVLIIENREIRAIRTCDDVAWFDFRELCDGPRSQNDYIELGKIFHAVLLSGVEQMSVTTDDIARRFINMVDEFYDRNVKLIISAEVELKDLYTGGRLTFEFQRTLSRLLEMQSHEFLSRAHKP				NA	NA	NA	NA	NA
D1-36_00984	990	cdhR_1	COG4977	HTH-type transcriptional regulator CdhR	ATGCACGTCTCCACGCCCTTGCGGCGCGTCAGCATCCTGGCCATCGACCGGGTTTTCGCTTCCACCCTCATGCAAGCCAAGGATTTTTTCCACCTGGCCAGCCTGCGCTATGGCAAACAATTGGGCCACGGCCTGACGCCGGCGTTTGAAACCCGCCTGGTCAGCCCCGATGGCCAACCGGTGAACAGCTTCAGCGATGTGATCATGCCGGTGGACGGCGGCCTGGAAAACACCGACGTCATCATCCTGCCGGCCTTCTGGGATGATTTCGCAACCCTCAGCCAACGTTACCCACAAGTCCTGCCGTGGCTGCGCGAACAACACGCGCGCGGCGCGGTGCTCTGCGGCGAAGCCACCGGGGTCTTCTGGCTGGCCGAGGCTGGGCTTCTCGACGGTAAGGAGGCCACCACTTATTGGCGCTTTTTCAATGCCTTCAAGGAACGTTTCCCCCAGGTCCACTTGAACCAGGACAAGCATTTGACCGACGCGGACAACTTGTTCTGCGCAGGTGGCACCACGTCGGCATGTGATCTGTATATCTATTTGATTGAGCGCTTCTGCGGCGCCAACGTCGCCCAAGCCGTGGCGCGGGACATTCTCTATGAAGTGCAACGTAGCTATTCACCAGGACGGATCGGCTTCGGCGGGCAGAAGCTGCATCAGGATGTGATCATCCTGCAGATCCAGCAGTGGCTCGAAGAGCACTTCGCCGACAAGTTCCGCTTCGAGGACGTCGCCCGCGAGCACGGCATGAGCATCCGCAATTTCATGCGTCGCTTCCAGACCGCCACGGGCGACAAGCCCCTGCATTACCTGCAACGGTTGCGGATCGAAACCGCCAAGGGCCTGCTGTCCGGCAGTCGAAAGAGCATCAAGACCATCAGTTATGAAGTGGGTTACGACGACGCGAGCTTTTTTGCGCGACTGTTCCGGCAACACACCGACCTGTCGCCGAACCAGTATCGGCAGCAGTTTCAGCAGGCGGCGTAG	MHVSTPLRRVSILAIDRVFASTLMQAKDFFHLASLRYGKQLGHGLTPAFETRLVSPDGQPVNSFSDVIMPVDGGLENTDVIILPAFWDDFATLSQRYPQVLPWLREQHARGAVLCGEATGVFWLAEAGLLDGKEATTYWRFFNAFKERFPQVHLNQDKHLTDADNLFCAGGTTSACDLYIYLIERFCGANVAQAVARDILYEVQRSYSPGRIGFGGQKLHQDVIILQIQQWLEEHFADKFRFEDVAREHGMSIRNFMRRFQTATGDKPLHYLQRLRIETAKGLLSGSRKSIKTISYEVGYDDASFFARLFRQHTDLSPNQYRQQFQQAA				NA	NA	NA	NA	NA
D1-36_00985	1137	mmgC_2	COG1960	Acyl-CoA dehydrogenase	ATGATCCCCAGAACCCTGTTCAGTCCCGAGCACGAATTGTTTCGCGACAGCGTACGAACTTTCCTAGAAAAAGAAGCCGTGCCGTACCACAGCCAGTGGGAAAAACAGGGGCACATCGATCGTGAACTCTGGAACAAGGCAGGGGAGGCGGGGATGTTGTGCTCGCACCTTCCGGAGGCCTACGGTGGGCTGGAAGCGGATTTTCTCTACAGCGCGGTGGTGATCGAGGAAATCGGTCGCCTGGGGCTGACCGGGATCGGTTTCTCGTTGCACTCCGATATCGTTGCGCCGTACATCCTTCATTACGGCAGCGAGGCGTTGAAACATAAATATCTGCCGAAACTGGTATCCGGCGAAATGGTGACCGCCATTGCCATGACCGAGCCGGGCGCGGGCTCCGACTTGCAAGGGGTGAAGACCACCGCGGTGTTGGACGGCGATGAATACGTCATCAACGGCTCCAAGACATTCATCACCAACGGCTTCCTTGCGGACCTGGTCATCGTCGTCGCCAAGACCGACCCGAAGGCTGGCGCCAAGGGCACCAGCCTGTTCCTGGTGGAAGCGGGGACGCCCGGCTTCGAGAAAGGCAAGCGCCTGGAAAAAGTGGGAATGAAAGCCCAGGACACGTCCGAATTATTCTTCCAGGACGTGCGGGTGCCGAAGGAGAACCTGTTGGGGCAGGCGGGTATGGGGTTCGCCTACCTGATGCAGGAACTGCCGCAGGAGCGCCTGACCGTCGCCATTGGTGGCCTCGCCTCGGCCGAAGCGGCGCTGCAATGGACACTGGACTACACCCGCGACCGCAAGGCATTCGGCAAGTCCATTGCCGAGTTTCAGAACACCCGCTTCAAACTCGCCGAAATGGCCACCGAAATCCAGATTGGCCGGGTCTTTGTCGACCGTTGCCTGGAGCTTCACCTGCAAGGCAAGCTCGACGTGCCGACGGCGGCGATGGCCAAGTACTGGGGCACCGATCTGCAATGCAAAGTGCTGGACGAATGCGTACAGCTGCATGGCGGTTACGGTTTCATGTGGGAATACCCGGTTGCCCGGGCATGGGCGGATGCGCGAGTGCAGCGGATCTATGCCGGGACCAATGAAATCATGAAGGAGATCATTGCGCGGTCGCTTTGA	MIPRTLFSPEHELFRDSVRTFLEKEAVPYHSQWEKQGHIDRELWNKAGEAGMLCSHLPEAYGGLEADFLYSAVVIEEIGRLGLTGIGFSLHSDIVAPYILHYGSEALKHKYLPKLVSGEMVTAIAMTEPGAGSDLQGVKTTAVLDGDEYVINGSKTFITNGFLADLVIVVAKTDPKAGAKGTSLFLVEAGTPGFEKGKRLEKVGMKAQDTSELFFQDVRVPKENLLGQAGMGFAYLMQELPQERLTVAIGGLASAEAALQWTLDYTRDRKAFGKSIAEFQNTRFKLAEMATEIQIGRVFVDRCLELHLQGKLDVPTAAMAKYWGTDLQCKVLDECVQLHGGYGFMWEYPVARAWADARVQRIYAGTNEIMKEIIARSL	PGPT0008385_7562	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249	NA	NA
D1-36_00986	1041	tas	COG0667	Protein tas	ATGGACTATCGCAAGCTAGGCCGTACCGATCTGAATGTCAGCGCCCTGTGCCTCGGCACCATGACCTGGGGTGAGCAGAACAGCGAGGCCGAGGCATTCGCCCAAATCGAACGCGCCAAGGGTGCCGGCATCAACTTCATCGACACTGCCGAAATGTACCCCGTGCCGCCCAAGGCCGACACCTACGCGACTACCGAGCGCTACATCGGCAACTACTTCAAGAGCCGTGGCGACCGCGCCGACTGGATCCTGGCGAGCAAGATCGCCGGCCCAGGCAACACCATCGACTACATTCGCGACAAGAACCTCAAGCACAACCGCCGCCACATCGTCGAAGCACTGGACGCCAGCCTCAAGCGCCTGCAGACCGACTGGATCGACCTTTACCAACTCCACTGGCCGGAACGCAGCACCAATTTCTTTGGCCAACTGGGCTACACCCACAAGGCCGACGAAGACTTCACGCCCCTGGAGGAAACCCTCGAAGCCCTCGACGAGCAGGTCCGGGCCGGCAAGATCCGCCACATCGGCCTGTCCAACGAGACGCCGTGGGGCACCATGAAATTCCTCGCTTTGGCCGAGGCCCGTGGCTGGCCGCGCGCCGTGTCGATCCAGAACCCGTACAACCTGCTCAACCGCAGCTTTGAAATCGGCCTGGCCGAGGTTGCCATCCGCGAACAGTGCGGCCTGCTCGCTTATTCACCGCTGGCGTTCGGCTTCCTGTCGGGGAAATATGAAAACGGCGCGCGCCCCGCCAAAGGCCGCCTGACGCTGTACAGCCGCTTCATGCGCTACTTCAATCCGCAGTCGGAAGCCGCGTGCAGCCGCTATGTGGCCCTGGCCCGTGAGCACGGCCTGGACCCGGCGCAGATGGCGCTGGCGTTCGTCACCCAACAGCCATTCGTCACCAGCAACATCATCGGCGCCACCACGCTGGAGCAACTGGACAGCAACATCGCCAGCTTCGACTTGAAGCTGTCGGATGAAGTGCTGGCGGGGATCGAGGCGATTCACAAGGATCAGCCGAACCCGGCGCCTTGA	MDYRKLGRTDLNVSALCLGTMTWGEQNSEAEAFAQIERAKGAGINFIDTAEMYPVPPKADTYATTERYIGNYFKSRGDRADWILASKIAGPGNTIDYIRDKNLKHNRRHIVEALDASLKRLQTDWIDLYQLHWPERSTNFFGQLGYTHKADEDFTPLEETLEALDEQVRAGKIRHIGLSNETPWGTMKFLALAEARGWPRAVSIQNPYNLLNRSFEIGLAEVAIREQCGLLAYSPLAFGFLSGKYENGARPAKGRLTLYSRFMRYFNPQSEAACSRYVALAREHGLDPAQMALAFVTQQPFVTSNIIGATTLEQLDSNIASFDLKLSDEVLAGIEAIHKDQPNPAP				NA	NA	NA	NA	NA
D1-36_00987	429	rplM	COG0102	50S ribosomal protein L13	ATGAAAACTTTTACTGCTAAACCGGAAACAGTAAAGCGCGACTGGTTTGTCGTCGACGCTGCTGGTCAGACCCTGGGTCGTCTGGCCACCGAAATCGCGAGCCGTCTGCGTGGCAAGCACAAGCCTGAGTACACCCCTCACGTTGACACCGGCGACTACATCGTCGTAATCAACGCCGAGCAAGTACGTGTTACTGGCGCTAAAACCACTGACAAAATGTACTACTCCCACTCCGGTTTTCCTGGCGGCATCAAGTCGATCAACTTTGAAAAGCTGATCGCCAAAGCCCCTGAGCGCGTGATCGAGACCGCGGTTAAAGGCATGCTGCCTAAGAACCCGCTGGGTCGCGACATGTATCGTAAGCTGAAGGTTTATGCGGGCGCTGCTCACCCTCATACTGCTCAGCAGCCCCAAGAACTGAAGTTTTAA	MKTFTAKPETVKRDWFVVDAAGQTLGRLATEIASRLRGKHKPEYTPHVDTGDYIVVINAEQVRVTGAKTTDKMYYSHSGFPGGIKSINFEKLIAKAPERVIETAVKGMLPKNPLGRDMYRKLKVYAGAAHPHTAQQPQELKF				NA	NA	NA	NA	NA
D1-36_00988	393	rpsI	COG0103	30S ribosomal protein S9	ATGTCGGCGACTCAAAATTACGGCACTGGCCGTCGCAAGACTGCAACCGCACGCGTTTTCCTGCGTCCGGGCACTGGTAACATCTCCATCAACAACCGCTCCCTGGATAACTTCTTCGGCCGCGAAACTGCCCGCATGGTAGTTCGTCAGCCGCTGGAACTGACCGAGACCGTCGAAAAATTCGACATCTACGTCACCGTTATCGGTGGTGGTGTAAGTGGCCAGGCTGGCGCAATCCGCCACGGCATCACTCGCGCCCTGATGGATTACGACGAAACTCTGCGCAGCGCCCTGCGTAAAGCTGGCTTCGTAACTCGCGATGCTCGCGAAGTTGAACGTAAGAAAGTCGGTCTGCGTAAAGCGCGTAAGCGTCCGCAGTACTCGAAGCGTTAA	MSATQNYGTGRRKTATARVFLRPGTGNISINNRSLDNFFGRETARMVVRQPLELTETVEKFDIYVTVIGGGVSGQAGAIRHGITRALMDYDETLRSALRKAGFVTRDAREVERKKVGLRKARKRPQYSKR				NA	NA	NA	NA	NA
D1-36_00989	594	petA	COG0723	Ubiquinol-cytochrome c reductase iron-sulfur subunit	ATGAGCAATGACGGCGTGAATGCAGGCCGGCGTCGCTTCCTGGTAGCAGCCACATCCGTGGTGGGTGCTGCAGGAGCGGTGGGGGCTGCGGTCCCGTTCGTGGGGTCATGGTTTCCCAGCGCCAAGGCGAAAGCCGCAGGTGCACCGGTGAAAGTGAATGTCAGCAAGATCGAGCCAGGCCAGCAGATGATTGCTGAATGGCGCGGTCAGCCGGTGTTTATCGTCCGCCGTACAGAGGAAATCCTGGGGAATCTGAAAAAGATCGAGGGCCAGCTCTCCGATCCCTCCTCCAAGAACTCGGTCCAACCGGAATACGTCAACCCTGAAACGCGCTCGATCAAGCCGGAAGTCCTGCTGCTGATCGGGATCTGCACGCACCTGGGTTGCTCGCCAACGTTCCGTCCCGAAGTGGCCCCTGCCGACCTGGGTAAAGACTGGGTCGGTGGTTATTTCTGCCCATGCCACGGCTCCCACTATGACCTGGCCGGTCGCGTCTACAAATCGCAGCCCGCACCCCTGAACCTGCCAGTTCCCCCGCATTCCTATGAGTCGGACGACATCATTGTCGTTGGCGTCGATACGGAGAAAGCGTGA	MSNDGVNAGRRRFLVAATSVVGAAGAVGAAVPFVGSWFPSAKAKAAGAPVKVNVSKIEPGQQMIAEWRGQPVFIVRRTEEILGNLKKIEGQLSDPSSKNSVQPEYVNPETRSIKPEVLLLIGICTHLGCSPTFRPEVAPADLGKDWVGGYFCPCHGSHYDLAGRVYKSQPAPLNLPVPPHSYESDDIIVVGVDTEKA	PGPT0030835_1324	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-ENERGY_METABOLISM	PUTATIVE-PHOTOSYNTHESIS_ELECTRON_TRANSFER,PGPT0030835-petA-K00411
D1-36_00990	1212	petB	COG1290	Cytochrome b	ATGAGCAAATTAATGGACTGGTTTGATGCGCGCTTTCCCGCGACCAAAATGTGGGAAGACCATCTCAGCAAGTATTACGCTCCGAAGAACTTCAACTTCTTCTACTTCTTTGGCTCCTTGGCGTTGCTCGTCCTGGTCAACCAGATCGTCACCGGCGTCTGGCTGACGATGAGCTACACCCCCTCGGCAGAAGAGGCGTTCGCCTCCGTTGAATACATCATGCGCGACGTCGAGTACGGCTCGATCCTGCGCCTGCTGCACTCCACCGGCGCTTCGGCGTTCTTTATCGTCGTTTACCTGCATATGTTCCGTGGCCTGCTTTACGGTTCATACCAGAAGCCGCGCGAACTGGTGTGGGTCTTCGGCATGCTGATCTACCTGGCGCTGATGGCTGAAGCCTTCATGGGCTACCTGCTGCCGTGGGGCCAGATGTCCTACTGGGGTGCCCAGGTGATCATCTCGCTGTTCGGTGCGATCCCGGTCATCGGCGATGACCTGACCCAGTGGATCCGCGGTGACTACCTGATCTCGGGCATCACCTTGAACCGCTTCTTCGCTTTGCATGTGGTTGCCCTGCCGATCGTGATCCTCGGCCTGGTAGTGCTGCACATCCTGGCGCTGCACGAAGTGGGCTCGAACAACCCGGACGGCGTGGACATCAAGAAGCACAAGGACGAAAACGGCGTACCGCTGGATGGCATCGCCTTCCACCCGTACTACACCGTGAAAGACATCGTCGGCGTGGTGGTCTTCCTGTTCATCTTCTGCTCCATCGTGTTCTTCTTCCCGGAAATGGGCGGTTACTTCCTCGAGAAGCCGAACTTCGAACAGGCCAACGCCTTCAAGACCCCCGAGCACATTGCTCCGGTCTGGTACTTCACGCCGTTCTACGCAATTTTGCGGGCTGTTCCTGACAAGCTGCTGGGCGTCATCGCCATGGGCGCCGCCATTGCCGTGCTGTTCGTCCTGCCGTGGCTGGACCGCAGCCCCGTCAAGTCGATGCGTTACAAAGGCTGGCTGAGCAAGATCTGGCTCTGGGTGTTCTGCATTTCGTTCGTGATCCTGGGCGTGCTGGGCGTACTGGCGCCGACACCGGGCCGGACGCTGCTGTCGCAGGTCTGCACATTCCTGTACTTCGCCTACTTCATTCTGATGCCTTTCTACACCAGGCTCGAGAAGACCAAACCGGTTCCGGAAAGGGTGACTGGCTGA	MSKLMDWFDARFPATKMWEDHLSKYYAPKNFNFFYFFGSLALLVLVNQIVTGVWLTMSYTPSAEEAFASVEYIMRDVEYGSILRLLHSTGASAFFIVVYLHMFRGLLYGSYQKPRELVWVFGMLIYLALMAEAFMGYLLPWGQMSYWGAQVIISLFGAIPVIGDDLTQWIRGDYLISGITLNRFFALHVVALPIVILGLVVLHILALHEVGSNNPDGVDIKKHKDENGVPLDGIAFHPYYTVKDIVGVVVFLFIFCSIVFFFPEMGGYFLEKPNFEQANAFKTPEHIAPVWYFTPFYAILRAVPDKLLGVIAMGAAIAVLFVLPWLDRSPVKSMRYKGWLSKIWLWVFCISFVILGVLGVLAPTPGRTLLSQVCTFLYFAYFILMPFYTRLEKTKPVPERVTG	PGPT0030840_1398	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-ENERGY_METABOLISM	PUTATIVE-PHOTOSYNTHESIS_ELECTRON_TRANSFER,PGPT0030840-petB-K00412
D1-36_00991	783	petC	COG2857	Ammonia monooxygenase gamma subunit	ATGAAAAAACTATTTGCTGTACTGATTCTTGCTGCCATGCCAGCACTGTCCTTTGCGGCTGAACACGGTGGTCCGGAATTGGAAAAAGTCGACATCGACGTTTCCGACAAGGCGGCCATGCAGGACGGCGCTCGTACGTTCGCCAACTATTGCATGGGCTGCCACAGCGCCAAATTCCAGCGTTACGAGCGCGTGGCCGATGACTTGGGCATCCCCCACGAGCTGATGCTCGAAAAGCTTGTGTTCACTGGCGCCAAGCTGGGCGATCACATGAATATCGGCATGCAGCCTGCGGACGCCAAGTCATGGTTTGGCGCCGCGCCGCCGGACTTGACCCTGGTGGCCCGCGTGCGGGGTACCGATTGGCTCTACGGCTACCTGCGCTCGTTCTACGAAGATCCTGCGCGCCCATTGGGTTGGAACAACAAGGTCTTCCCGAACGTCGGGATGCCGAACGTACTGGTCGGCTTGCAAGGTCGCCAAGTGGTAGGCTGCAAGCAGGTCCAGATCGTCGAGGACGGCAAGAAGCAATATGATCCGCTGACCGGCACGGCTTTGACTCATGAGGCCTGCGACCAGCTGACCATCGTGCCAAACTCTGGCACTCTGACGCCTGAGCAGTTTGATGAGAAGGTCAAGAACCTGGTGACCTTCCTGGCCTACTCGGCCAACCCGGTGAAGCTGGAGCATCAGCGCATCGGTACGTATGTATTGCTGTACCTGGCGTTCTTCTTCGTATTCGCTTATCTGCTCAAGCGTGAATACTGGAAAGACGTGCATTGA	MKKLFAVLILAAMPALSFAAEHGGPELEKVDIDVSDKAAMQDGARTFANYCMGCHSAKFQRYERVADDLGIPHELMLEKLVFTGAKLGDHMNIGMQPADAKSWFGAAPPDLTLVARVRGTDWLYGYLRSFYEDPARPLGWNNKVFPNVGMPNVLVGLQGRQVVGCKQVQIVEDGKKQYDPLTGTALTHEACDQLTIVPNSGTLTPEQFDEKVKNLVTFLAYSANPVKLEHQRIGTYVLLYLAFFFVFAYLLKREYWKDVH	PGPT0030845_1411	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-ENERGY_METABOLISM	PUTATIVE-PHOTOSYNTHESIS_ELECTRON_TRANSFER,PGPT0030845-petC-K00413
D1-36_00992	618	sspA	COG0625	Stringent starvation protein A	ATGGGCGTGACCAATCGGTTGGCCTGTTACTCCGACCCCGCCGACCACTATTCCCACCGGGTACGCATCGTACTGGCCGAGAAGGGTGTCAGCGCCGAGATCATTTACGTTGAAGCGGGCCGTCAGCCGCCGAAGCTGATCGAGGTAAACCCTTACGGCAGCCTGCCAACGCTGGTCGATCGTGACCTGGCCTTGTGGGAGTCGACCGTGGTGATGGAGTACCTGGATGAGCGTTATCCGCATCCGCCTTTGCTGCCGGTATACCCCGTCGCGCGTGCCAACAGTCGCTTGCTCATCCATCGCATCCAGCGTGACTGGTGCGGGTTGGTGGATCTGATCCTGGATCAGCGAACCAAGGAACCGGCACGGGTCGTGGCGCGTAAAGAATTGCGCGAAAGCCTGACGGGCGTGTCGCCGCTGTTTGTCGACAAGCCGTTTTTCCTCAGTGAGGAACAAAGTCTGGTGGATTGCTGCCTATTGCCCATACTCTGGCGTTTGCCGATCCTGGGTATCGAACTGCCGCGGCCCGCCAAGCCGCTGCTTGATTATATGGAGCGCCAATTTGCGCGTGAGGCTTTCCAGGCGAGTCTGTCTGCTGCCGAACGTGACATGCGCTAA	MGVTNRLACYSDPADHYSHRVRIVLAEKGVSAEIIYVEAGRQPPKLIEVNPYGSLPTLVDRDLALWESTVVMEYLDERYPHPPLLPVYPVARANSRLLIHRIQRDWCGLVDLILDQRTKEPARVVARKELRESLTGVSPLFVDKPFFLSEEQSLVDCCLLPILWRLPILGIELPRPAKPLLDYMERQFAREAFQASLSAAERDMR				NA	NA	NA	NA	NA
D1-36_00993	414	sspB	COG2969	Stringent starvation protein B	ATGAACTCCAGTCGACCTTATTTGGTCCGCGCGCTCTATGAGTGGATTGTGGACAACGATTGCACCCCGCACATGCTGGTCAATGCCGAGTATCCCTCGGTCCAGGTGCCGCAGGGTTTTGCCAACGACGGGCAGATTGTATTGAACGTATCGCCGGCCGCTGTGCGTCATCTGCACATGGATAATGATGCGGTCAGCTTCGAAGGGCGTTTTGGCGGGGTACCGCATACGCTTTATGTGCCGATTGCTTCGATCCTGGGGATTTATGCTCGGGAGAACGGGCAGGGCATGGTGTTCGAGTTGGAAGTGCCGTTGGATGGCGAAGAAGAGTTCGAGGCGGATGATGATATGCCGCCACCCGATGACGAACCGCCGCGGCCTAGTGGGCGTCCGAGCTTGAAGGTGGTGAAATAG	MNSSRPYLVRALYEWIVDNDCTPHMLVNAEYPSVQVPQGFANDGQIVLNVSPAAVRHLHMDNDAVSFEGRFGGVPHTLYVPIASILGIYARENGQGMVFELEVPLDGEEEFEADDDMPPPDDEPPRPSGRPSLKVVK	PGPT0007945_6	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007945-folA-K00287	NA	NA
D1-36_00994	333			hypothetical protein	GTGTGTATCCGTTTCTTTGGTAACGGCTGCTTATGGTTCCGCCCTTACGGCGGGTCACTTTTTTCAGACGCCAAAAAAGTAACCAAAAAGGCTTTGCCCCACCACTCGGCACCTCGCCCAGGCGAGGTGTTCCCTCACTCCGGCCTTGCTCCGTGGGCCCGCCGCGAAGGGCCGTCCCTGGCCCAGCGCGGCTATCCCGGCATCCATGCCGGGATGCCCACTGCGCAAGGCCTGCGTTCGGCCATCGTGGTTAACGGGGCGTCGAAGATCAAAGTCCAAAGCAAAAGCAACGGCAAGAGCAAGAGCGAGAGCGAGAGCGAGCGGGCGCGCTGA	MCIRFFGNGCLWFRPYGGSLFSDAKKVTKKALPHHSAPRPGEVFPHSGLAPWARREGPSLAQRGYPGIHAGMPTAQGLRSAIVVNGASKIKVQSKSNGKSKSESESERAR				NA	NA	NA	NA	NA
D1-36_00996	579			hypothetical protein	ATGACCCCTAATCGCCTAGGCCTTCTGGCCCTGACCCTGTGCCTCGGCATCAGCGGCTGCACATCGGTGGTTAACGCCAGCCGGGAAAAGCCGATCGAAGATGACCGCGGCACCCGCACCTTCGGCAGCAAGATCGATGACTCCCTGATCGAAACCAAAGTCGGCGTGAACATCGCCAAGGCCGACCCGGACCTGGACAACAATTCGCACATCGTCGTCACCAGCTTCAACGGCGTCGTGCTGCTGGCCGGCCAGACGCCACGGGCCGACCTCAAGGCCAAGGCCGAGCAGGAGGCCAGCGCCGTGCAGCGGGTCAAGACCGTGCATAACGAATTGCAGGTCTTGCAGCCCTCTTCCCTGCTGGCGCGCCAGAACGATGCCTGGCTGACGACCAAGATCAAGACGCAGATGCTGACCGACGCCAGCATTCCAGGGTCGCGCATCAAGGTCGTGACCGAGAACGGGATTGTCTATCTGCTGGGGCTGCTGACCAAGCAGGAGGCTGCGCAGGCGACCAATTTGGTTCAGGGTGTCTCTGGGGTACAAAAGATTGTGAAGTTGTTTGAGTACATCGACTGA	MTPNRLGLLALTLCLGISGCTSVVNASREKPIEDDRGTRTFGSKIDDSLIETKVGVNIAKADPDLDNNSHIVVTSFNGVVLLAGQTPRADLKAKAEQEASAVQRVKTVHNELQVLQPSSLLARQNDAWLTTKIKTQMLTDASIPGSRIKVVTENGIVYLLGLLTKQEAAQATNLVQGVSGVQKIVKLFEYID				NA	NA	NA	NA	NA
D1-36_00997	594	gmhA	COG0279	Phosphoheptose isomerase	ATGGACATGCAATCGCGAATCCGCCAGCTTTTTCAGGCCAGTATCGACACCAAGCAACAGGCGATGGACGTACTTGCACCACACATCGAGCAAGCCAGCCAAGTGATGGTCAACGCCTTGCTCAACGAAGGCAAGATGCTCTCGTGTGGCAACGGCGGTTCGGCCGGCGATGCCCAGCACTTCTCATCGGAGCTGCTCAACCGCTTCGAACGCGAACGCCCGAGCCTGCCGGCCATCGCATTGACGACCGACAGCTCGACGATCACCTCGATCGCCAACGATTACAGCTACAACGAAGTGTTCTCCAAGCAGATCCGCGCCCTCGGCCAACCCGGCGATGTGCTTCTGGCGATTTCCACCAGCGGTAACTCGGCCAATATTATTCAAGCGATCCAGGCCGCACATGATCGCGAAATGATTGTCGTAGCATTGACCGGTCGCGACGGCGGCGGCATGGCATCCTTGCTCTTGCCCGAAGACGTCGAGATTCGCGTACCGGCCAATGTCACCGCACGTATTCAGGAAGTCCACCTGCTGGCGATCCATTGCCTTTGCGACTTGATCGACAGCCAACTGTTCGGGAGTGAAGAATGA	MDMQSRIRQLFQASIDTKQQAMDVLAPHIEQASQVMVNALLNEGKMLSCGNGGSAGDAQHFSSELLNRFERERPSLPAIALTTDSSTITSIANDYSYNEVFSKQIRALGQPGDVLLAISTSGNSANIIQAIQAAHDREMIVVALTGRDGGGMASLLLPEDVEIRVPANVTARIQEVHLLAIHCLCDLIDSQLFGSEE	PGPT0023030_955	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-MANNO-HEPTOSE|-PHOSPHATE_MODIFICATION,PGPT0023030-gmhA|lpcA-K03271	NA	NA
D1-36_00998	363			hypothetical protein	ATGCTTGACCGATCACACTTGCAAAGCGGAAAGGATGCCGAGGGCCAAGCCCTCGCGCATCTGCAACAACAAGGTCTGCGCCTGCTGGCACAGAACTGGTTGTGTAAACGGGGCGAGCTGGATCTGGTCATGCTTGACGGCGATACAGTAGTATTCGTCGAAGTCCGCTACAGAAAAAATACCCAATGGGGCGGCGCGATCGAGAGCATCGACGAGCGCAAGCGCCAGAAACTGATTTTCGCCGCGCAGTACTTTCTGCAACGCGAGTCTCGCTGGGCCGATTACCCCTGCCGCTTCGACGTGGTCGCCATCGACAGCAACGCCGACCAGTTGAACTGGCTGCAGAACGCCTTCGACAGTTGA	MLDRSHLQSGKDAEGQALAHLQQQGLRLLAQNWLCKRGELDLVMLDGDTVVFVEVRYRKNTQWGGAIESIDERKRQKLIFAAQYFLQRESRWADYPCRFDVVAIDSNADQLNWLQNAFDS				NA	NA	NA	NA	NA
D1-36_00999	1809	lpoA	COG3107	Penicillin-binding protein activator LpoA	ATGATCGCTTGCCTGCGGCTGCTCTCCGCCCTCTGCCTCGCTGCCCTCCTGGCGGCTTGCGCCAGTTCGCCTTCGTCCAGCCTTGGCGAACTCCCACGGACCCCGGATGCCAGTATCGAGCAATTGCTCGAACAGGCCACTCAAAGCAAAAACCCGGAAAAAGCCGCCCTGCTGCGCCTGAGCGCTGCGGACCTGGCCTACCGCCAGGGCAATGCCGGCCAGTCCGCACAGATCCTGCAACAAGTGCCGCTGGAGCAACTCAAGCCCGGCCAGCAGATTTTCGCCAGCACGCTGTCAGCCGAACTGGCGATGACCCGCAACCAGCCCAAGGCAGCGCTGACGTCCCTGGGCCATCCAAGCCTGCAGCACCTGGGCGAAATGCCGGTGGAACAGCAAGTGCGCACCGGCACCGTGCGTGCTCGCGCCCTTGAAGCCGATGGCCAGACCCTGGCGGCCGCCAAGGAGCGGATCTTTATCGCGCCGTTGCTGGAAGGCGAAGCCGCGGCGAAAAACCACGAGGCGATCTGGTCGCTGATCGCTTCGCTGCCTACCGATCAACTGCAACCGACCACCGACGACCTCGGTGGCTGGTTGAGCCTGGCCAAGGCGGTGAAAACCGCCGGCACCCTGGAGCAACAACAGGCCGCCATCGACAGCTGGCGCGAACAAAACCCGAAACACCCAGCCGCGCTTCAACTGCCGACGCCACTCGTCAAGCTCAAGGAGCTGGCAAGCCAGCCGCTGAGCAAGATCGCCTTGCTGCTGCCGCAGAACGGCCCGCTGGCCTCGGTTGCCAAAGCCCTGCGCGAAGGGTTCATGGCTGCGCACTACCAGGCCCAACAGGCCGGACAGAAGCCGCCAAGCATTCAGGTCTATGACAGCGCCAGCCTGACTTCCATGGACGAGTTCTACCGCAAGGCCCAGGCCGACGGCGTACAACTGGTGGTCGGCCCGCTGGAAAAACCACTGGTCAAGCAGATCAGCCTTCGCCCGCAATTGCCGATTACCACCCTGGCATTGAACTACAGCGAGGGCGAACAGGGCCCACCCCAACTCTTCCAGTTCGGCTTGGCCCCGGAAGATGAAGCCCGCGAAGTATCCCGTCGTGCTCGCGCCGACGGCCTGCATCGCGCCGCCGCCATGGTGCCGAAAGGCGAATGGGGCGATCGGGTATTGAAAGCCTTCAGCCAGGACTGGCAGGCCAATGGCGGCACCATCGTTGCGATCGAGCGTGTCGACCAGCCTGTGCAACTGGCCCAGCAGATCGCCGACATGTTCCAGTTGCGCCAGAGCGAAGGTCGCGCCAAGAGCCTGCAAAGCACGGTGGGCACCGCAGTAGCGGCCCAGCCTTCGCGTCGCCAGGACATCGAGTTCATTTTCCTGGCATCGACTCCGCAGCAGGCCCAGCAGATCAAGCCGACCCTGAACTTCCAGTACGCCGGCGACGTGCCGGTCTATGCGACGTCTTCGGTATTCAGCGTCAGCGGCGACCAGAACCAGTACAACGACATGAATGGCGTGCGTTTCTGTGAAACGCCATGGCTGCTCGACGCTAACGACCCACTGCGTCAGCAGGTCACTGCACAATGGCCGCAGGCCGGTGGCAGCCTGGGCCGACTGTATGCGATGGGTGCCGACGCCTATCGCCTCGCTCCACGCCTGGGCCAGCTCAAGGCACTTCCGGACAGCCGCATCGAAGGCCTGTCAGGCAGCCTGGCGATCTCGCCAACCCAACGCGTGCAACGTCAATTGCCGTGGGCCCAGTTCATCAATGGCCAGGTGCAGCGCCTGCCGGACACCCAGCGCTGA	MIACLRLLSALCLAALLAACASSPSSSLGELPRTPDASIEQLLEQATQSKNPEKAALLRLSAADLAYRQGNAGQSAQILQQVPLEQLKPGQQIFASTLSAELAMTRNQPKAALTSLGHPSLQHLGEMPVEQQVRTGTVRARALEADGQTLAAAKERIFIAPLLEGEAAAKNHEAIWSLIASLPTDQLQPTTDDLGGWLSLAKAVKTAGTLEQQQAAIDSWREQNPKHPAALQLPTPLVKLKELASQPLSKIALLLPQNGPLASVAKALREGFMAAHYQAQQAGQKPPSIQVYDSASLTSMDEFYRKAQADGVQLVVGPLEKPLVKQISLRPQLPITTLALNYSEGEQGPPQLFQFGLAPEDEAREVSRRARADGLHRAAAMVPKGEWGDRVLKAFSQDWQANGGTIVAIERVDQPVQLAQQIADMFQLRQSEGRAKSLQSTVGTAVAAQPSRRQDIEFIFLASTPQQAQQIKPTLNFQYAGDVPVYATSSVFSVSGDQNQYNDMNGVRFCETPWLLDANDPLRQQVTAQWPQAGGSLGRLYAMGADAYRLAPRLGQLKALPDSRIEGLSGSLAISPTQRVQRQLPWAQFINGQVQRLPDTQR				NA	NA	NA	NA	NA
D1-36_01000	873	rsmI	COG0313	Ribosomal RNA small subunit methyltransferase I	TTGACTGCTCCAGGTGCTTCGAATTCCGCTGCTGGCTCGCTTTTCGTGGTGGCGACGCCTATTGGCAACCTGGACGATATCAGCGCCCGTGCGCTGAAGATCCTGAAGGACGTCGCCCTTATCGCCGCTGAAGATACCCGTCACTCCCAGCGCTTGCTGCAGCATTTCGGCATTTCCACGCCGCTGGCCGCGTGTCATGAACATAACGAGCGGGACGAGGGCAGTCGTTTTATCACCCGGCTGCTGGCGGGCGATAACGTGGCGCTGATTTCTGATGCCGGCACGCCGCTGATTTCCGATCCGGGTTATCACCTGGTGCGCCAGGCTCGTGCTGCTGGCATCAATGTGGTGCCAGTACCCGGGGCGTGTGCGTTGATCGCGGCGCTGTCGGCGGCCGGCTTGCCGTCGGATCGATTTATCTTCGAGGGCTTTCTGCCAGCCAAGGCGGTGGGGCGACGAGCGCGCCTGGAAGCTATAAAGGAAGAGCCGCGCACATTGATCTTTTATGAAGCGCCGCACCGTATCCTTGAATGCCTCCAGGATATGGAGCTGGTGTTTGGTCCCGAGCGCCAGGCGTTGCTGGCGCGGGAGCTGACGAAAACCTTCGAGACGCTCAAGGGGCTGCCCTTGGCGCAATTGCGAGGTTTCGTCGAAAGCGACAGCAACCAACAGCGCGGTGAATGCGTTGTACTGGTGGCCGGGTGGACGCCGCCGGAAAGCGAAGACGCCGTAAGTGGCGAAGCGATGCGCGTCCTGGATCTGTTGTTAGAGGAAATGCCATTGAAACGTGCGGCGGCCCTCGCCGCGCAGATCACCGGCGAGCGCAAGAATGTGCTGTATCAGGTCGCGCTGCAAAAGCAGAAGGACCAATGA	MTAPGASNSAAGSLFVVATPIGNLDDISARALKILKDVALIAAEDTRHSQRLLQHFGISTPLAACHEHNERDEGSRFITRLLAGDNVALISDAGTPLISDPGYHLVRQARAAGINVVPVPGACALIAALSAAGLPSDRFIFEGFLPAKAVGRRARLEAIKEEPRTLIFYEAPHRILECLQDMELVFGPERQALLARELTKTFETLKGLPLAQLRGFVESDSNQQRGECVVLVAGWTPPESEDAVSGEAMRVLDLLLEEMPLKRAAALAAQITGERKNVLYQVALQKQKDQ				NA	NA	NA	NA	NA
D1-36_01002	456	mraZ	COG2001	Transcriptional regulator MraZ	GTGTTTCGCGGAGCTAACGCAATCAGTCTCGATGCAAAAGGCCGGCTCGCCATGCCCAGCCGGTATCGTGACGAGCTCGTTTCGCGAAGTTCGGGGCAGTTGATCGTCACGATCGACGCCGTTGACCCATGTTTGTGCGTCTACCCGCTGGATGAGTGGGAAATCATCGAAACCAAACTGCGCGCACTGCCTTCGCTACGTGAAGAAAACCGTCGTTTGCAGCGCTTGTTGATCGGTAATGCCGTTGATCTTGAGCTCGACGGCAGTGGTCGTTTCCTGGTCCCGCCGCGCCTGCGCGAATACGCCAAGCTGGACAAGCGCGCGATGCTGGTGGGCCAGCTGAACAAGTTCCAACTGTGGGACGAAGATGCCTGGAATGCGGTTTCTGCCGCCGACCTTGCTGCTATTCAACAACCGGGCGCCATGCCTGATGAACTGCGTGATTTGATCCTGTGA	MFRGANAISLDAKGRLAMPSRYRDELVSRSSGQLIVTIDAVDPCLCVYPLDEWEIIETKLRALPSLREENRRLQRLLIGNAVDLELDGSGRFLVPPRLREYAKLDKRAMLVGQLNKFQLWDEDAWNAVSAADLAAIQQPGAMPDELRDLIL				NA	NA	NA	NA	NA
D1-36_01003	948	rsmH	COG0275	Ribosomal RNA small subunit methyltransferase H	GTGACTATTGATAGCGGCTTTAACCACATCACCGTACTGCTTGACGAAGCCGTCGAGGCTCTCGCCGTACGTCCTGATGGGTGCTATCTGGATGGCACGTTCGGGCGTGGCGGGCACAGCCGATTGATCCTCAGCCAGTTGGGGCCTGATGGCCGGTTGCTGGGGTTCGACAAGGATCCTCAAGCGATTGCCACCGGGCAAGCGCTGGCGGCCGAAGACGGCCGCTTTGTCGTTGTGCAGCGCAGCTTTGCCGAGTTGGGTTCGGAAGTTGCCCAGCGTGGTTTGGCTGGCAAGATCAGCGGCGTGCTGTTGGACCTCGGCGTGTCCTCGCCGCAACTGGACGACCCGGAACGTGGCTTCAGTTTCCTCAATGACGGCCCGCTGGACATGCGCATGGATCCGTCCCGCGGCATCAGTGCCGCTGAGTTCGTCAACACCGCGCCCGTCGAAGAAATCGCCCGTGTCTTCAAGGAATACGGCGAGGAACGCTTTTCCGGCCGCATGGCGCGAGCCGTGGTCGAGCGTCGCGAGACCAAGCCATTCGAGCGCACCGGTGACCTGGCCGAAGTGCTGAAGGTTGCCAACCCTGCGTGGGAGAAGGGCAAGAATCCAGCGACTCGCGCCTTCCAGGGCCTGCGTATCCATGTCAATAATGAGTTGGGTGATCTTGAGGCTGGCCTCGAGGCCGCCCTTGAGGCGCTGGAGATCGGTGGCCGGTTGGTGGTGATCAGCTTCCACTCCCTGGAAGACCGCATCGTCAAGCTGTTCATGCGCAAACTCACCAAAGGCGAAGCCGACAACCTGCCGCGCAACCTGCCGGTGCGTTTCGAGGCTTTCGTACCGAAAATCAAGATCCATGGCAAAGCGCAGTTCGCCTCCGAGGCCGAACTCAAGGCCAACCCGCGTGCCCGTAGTGCTGTCATGCGTGTCGCGGAGAAGCTGCGGTGA	MTIDSGFNHITVLLDEAVEALAVRPDGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQALAAEDGRFVVVQRSFAELGSEVAQRGLAGKISGVLLDLGVSSPQLDDPERGFSFLNDGPLDMRMDPSRGISAAEFVNTAPVEEIARVFKEYGEERFSGRMARAVVERRETKPFERTGDLAEVLKVANPAWEKGKNPATRAFQGLRIHVNNELGDLEAGLEAALEALEIGGRLVVISFHSLEDRIVKLFMRKLTKGEADNLPRNLPVRFEAFVPKIKIHGKAQFASEAELKANPRARSAVMRVAEKLR				NA	NA	NA	NA	NA
D1-36_01004	294	ftsL		Cell division protein FtsL	GTGAGCAAGCTCTTCGCCAAGCCCCTGCCGGGCGGCAGCTTTTTCATGCTGCTGCTGTTCATCGGCGTGCTCGTCTCGGCCATCGCCGTGTCTTACAGCGCGCACTGGAACCGCCAGTTGCTCAACACCCTTTATAACGAACTGAGCGTGCGCGACAAGGCGCAGGCTGAGTGGGGCCGGCTGATCCTGGAGCAGAGCACCTGGACCGCCCATAGCCGTATCGAGGTATTGGCCACCGAACAACTGAAGATGCGCATCCCCGGCGCCGCCGAAGTGCAGATGGTGGCGCCATGA	MSKLFAKPLPGGSFFMLLLFIGVLVSAIAVSYSAHWNRQLLNTLYNELSVRDKAQAEWGRLILEQSTWTAHSRIEVLATEQLKMRIPGAAEVQMVAP				NA	NA	NA	NA	NA
D1-36_01005	1743	ftsI	COG0768	Peptidoglycan D,D-transpeptidase FtsI	ATGATGAAGCTCGAAGGGGCACTTTTCCCGTGGCGGTTCCGTCTGGTCCTGGGCTTGCTCGGGATCATGGTCGCAGCGATCGCGTGGCGCATCATCGACCTGCAAGTCGTCGACCGCGACTTCCTCAAGGAGCAGGGCGATGCCCGCAGCGTGCGTCATATTCCGATCCCGGCCCACCGTGGCCTGATCACTGACCGCAACGGTGAACCCCTGGCGGTGAGCACCCCGGTGACCACCCTGTGGGCGAACGCCAAGGAAATGCAGCAGGCCAAGGAAAAGTGGCCGGCGTTGGCCGCCGCCCTCGGCCAGGATCCCAAGGCTTTGGCCGAGCGCCTTGAAGCCCAGGCCAATAAAGAATTCATCTACCTGGTGCGCGGGTTGACGCCCGAGCAAGGCCAGAGTGTGCTCGATTTGAAAGTACCTGGTGTCTATGGCATCGAAGAGTTCCGGCGTTTCTACCCGGCCGGAGAAGTCACCGCCCACATGGTCGGGTTTACCGACATCGATGACCGGGGCCGAGAAGGTGTCGAACTGGCCTATGACGAATGGCTGGCCGGGGTTGCCGGCAAGCGCCAGGTCATCAAGGATCGGCGCGGCAGGCTGATCAAGGATGTCCAAGTCACTAAAAACGCCAAGGCCGGTAAGCCCTTGGCGTTGTCCATTGACCTGCGCCTGCAATACCTGGCCAACCGCGAGCTGCGCAATGCCATCGTCGAGAACGGCGCCAAGGCCGGCAGCCTGGTGATCATGGACGTCAAGACCGGCGAGATCCTCGCCATGGTCAACCAGCCGACCTACAACCCGAACAACCGCCGTAACCTGCAACCGGCGATGATGCGTAACCGCGCAATGATCGACGTCTTCGAGCCGGGTTCGACCATGAAGGCCGTGTCCATGGCCGCCGCCCTGGAAACCGGGCGCTGGAAACCGGGTGACACCGTCGAGGTGTATCCGGGGACGTTGCAGATCGGCAAATACACCATTCGCGACGTGTCCAAGACTGAAGGCCCGGTGCTCGACCTGACCGGCATCCTGATCAATTCCAGTAACGTGGGCATGAGCAAGATCGCCTTCGATATCGGTGGCGAAGCGATCTATCGCCTGGCCCAGAAAATCGGCCTCGGCCAGGACACCGGCCTGGGCTTCCCGGGCGAGCGCGTCGGCAACCTGCCCAACTACCGTGAATGGCGCAAGGCCGAAACCGCCACGTTGTCCTATGGCTATGGTGTTTCGGTGACGGCGATCCAGCTTGTCCACGCCTTCTCGGCGCTGGCCAACAATGGGCGGATCGCACCGCTGACCCTGGTCAAGACCGACAAGGCGCCGCAAACCACCCAAGTGATTCCGGAAGACGTCGCCAAGACGATGCAAGGCATGCTGCAACAGGTGATCGAGGCGCCGCGTGGTGTCTATCGTGCCCAAGTGCCCGCCTACCATGTTGCCGGCAAGTCGGGTACGGCGCGCAAGACGTCCGTGGGTACCAAGGGCTATGCCGAGAATTCCTACCGTTCGCTGTTCGCCGGCTTCGGTCCGATGAGCGACCCGCGCTACGCCATCGTGGTGGTTATCGACGAACCGAGCAAGGCAGGCTACTTCGGTGGCCTGGTCTCTGCGCCGGTGTTCAGCAAAGTGATGTCCGGCACCCTGCGCCTGATGAACATTACTCCGGATAATCTGCCGCCGACCCAGCAGGCGAGTACCGCCCCGGTCGTTCCCTTGAAAGCCGACGGAGGGCGTGGCTGA	MMKLEGALFPWRFRLVLGLLGIMVAAIAWRIIDLQVVDRDFLKEQGDARSVRHIPIPAHRGLITDRNGEPLAVSTPVTTLWANAKEMQQAKEKWPALAAALGQDPKALAERLEAQANKEFIYLVRGLTPEQGQSVLDLKVPGVYGIEEFRRFYPAGEVTAHMVGFTDIDDRGREGVELAYDEWLAGVAGKRQVIKDRRGRLIKDVQVTKNAKAGKPLALSIDLRLQYLANRELRNAIVENGAKAGSLVIMDVKTGEILAMVNQPTYNPNNRRNLQPAMMRNRAMIDVFEPGSTMKAVSMAAALETGRWKPGDTVEVYPGTLQIGKYTIRDVSKTEGPVLDLTGILINSSNVGMSKIAFDIGGEAIYRLAQKIGLGQDTGLGFPGERVGNLPNYREWRKAETATLSYGYGVSVTAIQLVHAFSALANNGRIAPLTLVKTDKAPQTTQVIPEDVAKTMQGMLQQVIEAPRGVYRAQVPAYHVAGKSGTARKTSVGTKGYAENSYRSLFAGFGPMSDPRYAIVVVIDEPSKAGYFGGLVSAPVFSKVMSGTLRLMNITPDNLPPTQQASTAPVVPLKADGGRG	PGPT0023865_3140	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023865-ftsI-K03587	NA	NA
D1-36_01006	1464	murE	COG0769	UDP-N-acetylmuramoyl-L-alanyl-D-glutamate--2,6-diaminopimelate ligase	ATGTCCCTGAGCCTGAACAAGATTTTTGCCCATGCCGGTCATGACCTGCTGATTCGCGAGCTGGCGCTGGACAGTCGCGACGTGCGTGCCGGGGACCTGTTCCTGGCGGTGCCGGGCGCCCGTGTTGATGGCCGCGACCATATCGCTGATGCCTTGAAACGCGGTGCGGCTGCCGTGGCCTATGAAGTGAACGGCGCGACCGTGCTGCCGATCACCGATGTCCCGCTGATTCCGGTCAAGGGCCTGGTGGCGCAGTTGTCGGATATCGCCGGGCGTTTTTATGGCGAGCCGAGCCGTCACCTGAACCTGATCGGCGTGACCGGCACCAACGGCAAGACCAGCGTGACGCAACTGGTGGCACAGGCGCTCGACTTGCTCGGGCAGCATTGTGGCATCGTGGGGACGCTGGGCAACGGTTTCCACGGGGCGCTGAAAAGCGGGCTGCACACCACGCCAAACCCGATCGCCGTGCAGGCGACCCTGGCCGACCTGAAGAAGGCTGGCGCCAAGGCCGTCGCGATGGAGGTTTCCTCCCATGGCCTCGATCAAGGTCGCGTCACCGCGTTGGCCTTCGACGTTGCCGTGCTCACCAACCTGTCCCGCGATCACCTGGACTACCACGGCACGATGCAGGCCTACGGCGAGGCCAAGGCCAAGCTGTTTGCCTGGAACAACCTGAAATGCCGGGTTATCAATGTCGATGACGAATTCGGCCGCCAGCTGGCCGCCGAGAGTCGCGAGTCGCGGTTGATCACCTACAGCCTCGAAGATGCCGGTGCCTACCTTTATGTACGCCAGGCACAGTTCGACGACGAAGGCGTTCGTGCCACGTTGGTCACGCCCCAGGGCGAACACCATCTGCGCAGCACGTTGCTGGGCCGCTTCAACCTGAGCAATGTATTGGCCGCCATCGGGGCCTTGCTCGGGCTGGACTACGCGCTGGATGAAATTCTCAAGGTATTGCCAAAACTCGAGGGCCCGGCCGGGCGCATGCAGCGCTTGGGCGGAGGCACCCAGCCACTGGTGGTGGTCGATTACGCCCATACGCCAGACGCGCTGGAGAAAGTCCTCACGGCGCTGCGTCCTCACGCCAAGGGTCGGCTGCTGTGCCTGTTCGGCTGTGGCGGCGACCGTGACCGTGGCAAACGTCCGCTGATGGCGCAAGTCGTGGAGCGGCTGGCCGATGGAGTACTCGTCACTGACGATAACCCGCGCAGCGAAGACCCCTCGCGGATCTTCGACGATATTCGCGCCGGTTTCTCGGGGCAGGATAACGTCACTTTCGTGGCCGGACGCGGCCAGGCCATTGCGCAATTGATTGCCAGTGCTTCGGCGGATGACGTCATCGTCCTGGCCGGCAAGGGCCACGAGGACTATCAGGAAATCAACGGCGAACGCCATGCGTTCTCCGACTTGGTGGAAGCCGATCACGCCCTGACCGCATGGGAGGTGGCCCATGCTTAA	MSLSLNKIFAHAGHDLLIRELALDSRDVRAGDLFLAVPGARVDGRDHIADALKRGAAAVAYEVNGATVLPITDVPLIPVKGLVAQLSDIAGRFYGEPSRHLNLIGVTGTNGKTSVTQLVAQALDLLGQHCGIVGTLGNGFHGALKSGLHTTPNPIAVQATLADLKKAGAKAVAMEVSSHGLDQGRVTALAFDVAVLTNLSRDHLDYHGTMQAYGEAKAKLFAWNNLKCRVINVDDEFGRQLAAESRESRLITYSLEDAGAYLYVRQAQFDDEGVRATLVTPQGEHHLRSTLLGRFNLSNVLAAIGALLGLDYALDEILKVLPKLEGPAGRMQRLGGGTQPLVVVDYAHTPDALEKVLTALRPHAKGRLLCLFGCGGDRDRGKRPLMAQVVERLADGVLVTDDNPRSEDPSRIFDDIRAGFSGQDNVTFVAGRGQAIAQLIASASADDVIVLAGKGHEDYQEINGERHAFSDLVEADHALTAWEVAHA	PGPT0024130_3565	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024130-murE-K01928	NA	NA
D1-36_01007	1368	murF	COG0770	UDP-N-acetylmuramoyl-tripeptide--D-alanyl-D-alanine ligase	ATGCTTAAGGCCTTGAAACTCAGCGAGCTGACCAACGCCCTGAATGCGCGCCTGATCGCGGCGGACGCCACGTTCAACGGCGTCAGCATCGACAGCCGGGCGATTGCGCCGGGCCAATTGTTCGTCGCCCTGGCCGGGCCGCGTTTCGACGGCCACGATTATCTGAACGAAGTGGCTGGCAAAGGCGCGGTCGCGGCGTTGGTCGAGCGCGAAGTCACCAACAGCACACTGCCGCAACTGCTGGTCAGCGACACCCGCCAGGCCCTGGGCCAGCTCGGCGCGTTGAATCGCGCGGCGTTCACCAACCCGGTCGCAGCCATCACCGGCTCCAGCGGCAAGACCACGGTCAAGGAAATGCTCGCCAGCATCCTGCGCACGCGCGGCCCGGTATTGGCGACCCGTGGCAACCTGAACAACGACCTCGGTGTACCGCTGACGCTGCTTGAGCTGGCGCCGGAGCACAGCGCCGCCGTCATTGAACTCGGTGCTTCGCGGCTCGGCGAGATTGCCTACACCGTCGGCATGACCAAGCCCCACGTGGCGGTGCTCAACAACGCCGGGACCGCCCACGTGGGTGAGTTCGGCGGCCCGGAAAAGATCGTCGAGGCCAAGGGCGAGATCATCGAGGGGTTGGCTGCCGATGGCGTCGCCGTGCTGAATCTCGACGACAAGGCCTTCGAAATCTGGAAAACCCGGGCGGGCGAGCGCAAGGTGCTGACCTTTGCCTTGAGCAACCTTGCCGCGAACTTCTACGCCAGCGACCTGGACCGCGATGCTCGCGGGTGCCCGGCCTTCAACCTCCACAGCCCCGACGGGGCCGAGCGCGTGCAGTTGAACCTGCTCGGCACCCATAACGTTGCCAACGCCCTGGCCGCCGCCGCCGCCGCCCATGCCCTGGGTGTTTCGTTGCCAGGCATCGCCGCGGGATTGAACGCGGTGCAACCGGTCAAGGGACGCACCGTCGCCCAACTGGCGAGCAACGGCATGCGCGTCATCGATGACACCTACAACGCTAACCCGACGTCGATGTGCGCGGCCGTGGACATCCTTGCCGGTTTCTCCGGCCGCACCGTGCTGGTGCTCGGCGATATCGGGGAATTGGGTGAGTGGGCGCAGCAAGGCCACCATGATGTCGGCGCGTATGCCCGCGGCAAGGTCGATGCGTTGTACGCCGTTGGCCCGATGATGGCCCATGCGGTATCGGCGTTTGGCGAGCATGCACAGCATTTCACCACCCAGGCCGAGTTGATCCAGGCCCTGGGTGCCGAGCAAGACCCGAACACCACCTTATTGATCAAGGGCTCACGCAGTGCGGCGATGGAAAACATCGTTGCGGCTTTGTGCGGCACCCGTATGGAGAAACATTAA	MLKALKLSELTNALNARLIAADATFNGVSIDSRAIAPGQLFVALAGPRFDGHDYLNEVAGKGAVAALVEREVTNSTLPQLLVSDTRQALGQLGALNRAAFTNPVAAITGSSGKTTVKEMLASILRTRGPVLATRGNLNNDLGVPLTLLELAPEHSAAVIELGASRLGEIAYTVGMTKPHVAVLNNAGTAHVGEFGGPEKIVEAKGEIIEGLAADGVAVLNLDDKAFEIWKTRAGERKVLTFALSNLAANFYASDLDRDARGCPAFNLHSPDGAERVQLNLLGTHNVANALAAAAAAHALGVSLPGIAAGLNAVQPVKGRTVAQLASNGMRVIDDTYNANPTSMCAAVDILAGFSGRTVLVLGDIGELGEWAQQGHHDVGAYARGKVDALYAVGPMMAHAVSAFGEHAQHFTTQAELIQALGAEQDPNTTLLIKGSRSAAMENIVAALCGTRMEKH	PGPT0024145_3450	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024145-murF-K01929	NA	NA
D1-36_01008	1083	mraY	COG0472	Phospho-N-acetylmuramoyl-pentapeptide-transferase	ATGCTGCTGCTGCTAGCGGAGTACCTGCAACAGTTCCACAAAGGCTTCGCGGTCTTCCAGTACCTGACCCTGCGCGGGATCCTGGGTGTGCTGACCGCGCTGTCGTTGTCGCTGTTCCTGGGCCCGTGGATGATCCGCACCTTGCAGAACCTGCAGATCGGCCAGTCGGTCCGCAACGACGGTCCGCAATCGCACCTGTCCAAGTCCGGTACCCCGACCATGGGCGGCGCGTTGATTCTCTCGTCCATCGGCATCAGCACCTTGCTCTGGGCCGACCTGGCGAACCGCTATGTCTGGGTCGTGTTGCTGGTGACCCTGTTCTTCGGCGCCATCGGCTGGGTAGACGACTACCGCAAGGTCATCGAGAAGAATTCCCGTGGGCTGCCGAGCCGCTGGAAATATTTCTGGCAGTCGGTGTTCGGCCTCGGCGCGGCGATCTTCCTTTATATGACTGCCGCTTCGCCGGTGGAAACCACCCTGATCCTGCCAATGCTCAAGGACTACAGCATCCCGCTGGGCGCTGGCTTCATCGTGCTGACCTACCTGGTCATCGTTGGATCGAGCAACGCGGTCAACCTCACCGATGGCCTCGACGGCCTGGCGATCATGCCGACGGTCATGGTTGGCGGCGCGCTGGGGATCTTCTGCTACCTGTCGGGCAACGTGAAATTCGCCGAATACCTGCTGATCCCTTATGTACCGGGCGCGGGCGAGCTGATCGTGTTCTGCGGCGCGCTGATCGGTGCCGGCCTCGGTTTCCTTTGGTTCAACACCTACCCGGCGCAAGTCTTCATGGGTGACGTCGGCGCGTTGGCGCTGGGCGCGGCCCTGGGCACCATTGCCGTCATCGTTCGCCAGGAAATCGTCCTGTTCATCATGGGCGGTGTGTTCGTGATGGAGACCCTGTCAGTCGTCATTCAGGTTGCTTCCTTTAAATTGACCGGCCGCCGCGTATTCCGCATGGCGCCGATCCACCACCACTTTGAACTCAAGGGCTGGCCCGAGCCGCGCGTGATCGTCCGTTTCTGGATCATCACCGTGATTCTGGTGCTGATCGGCCTTGCCACCCTGAAGCTGAGGTAG	MLLLLAEYLQQFHKGFAVFQYLTLRGILGVLTALSLSLFLGPWMIRTLQNLQIGQSVRNDGPQSHLSKSGTPTMGGALILSSIGISTLLWADLANRYVWVVLLVTLFFGAIGWVDDYRKVIEKNSRGLPSRWKYFWQSVFGLGAAIFLYMTAASPVETTLILPMLKDYSIPLGAGFIVLTYLVIVGSSNAVNLTDGLDGLAIMPTVMVGGALGIFCYLSGNVKFAEYLLIPYVPGAGELIVFCGALIGAGLGFLWFNTYPAQVFMGDVGALALGAALGTIAVIVRQEIVLFIMGGVFVMETLSVVIQVASFKLTGRRVFRMAPIHHHFELKGWPEPRVIVRFWIITVILVLIGLATLKLR	PGPT0024105_2033	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024105-mraY-K01000	NA	NA
D1-36_01009	1347	murD	COG0771	UDP-N-acetylmuramoylalanine--D-glutamate ligase	GTGTCCCTGATCGCTTCTGACCACTTCCGCATCGTTGTCGGCCTCGGCAAGAGCGGCATGTCCCTGGTTCGCTTCCTGGCGAACCGGGGCGTGTCGTTTGCCGTGGCCGATACGCGGGAAAATCCCCCTGAGCTGGCCACGCTGCGCCGTGACTATCCGCAGGTGGACGTGCGTTGTGGCGAGCTGGACGTCGAGTTCCTGTGCCGCGCCGATGAGCTCTACGTGAGCCCCGGCCTGGCCCTGGCGACTCCGGCGCTGCAGGCTGCGGCTGCCCGAGGCGTGAAACTGTCCGGCGACATCGAGCTGTTCGCCCGCAACGCGAAGGCGCCGATTGTCGCCATCACCGGCTCCAACGCGAAAAGCACCGTGACCACTCTGGTCGGTGAAATGGCCGCGGCGGCCGGCAAGCGCGTCGCCGTGGGCGGCAACCTGGGGACCCCGGCCCTGGACCTGCTCGGCGATGACATCGAGCTGTATGTCATGGAACTGTCGAGCTTCCAGCTTGAGACCACCGACCATCTCGGCGCCGAAGTGGCGACGGTGCTCAACATCAGCGAAGACCACATGGACCGCTACAGCGGCCTGCCGGCGTATCACCTGGCCAAGCACCGGGTTTTCCGTGGCGCCCGCCAGGTCGTGTTCAACCGCCAGGACGCGTTGACCCGTCCGCTGATGGGTGAAGGGCTGCCGTGCTGGACCTTCGGCTTGGGTGTTCCGGATTTCAAAGGCTTCGGCTTGCGTGAAGAGAACGGCGAAAAATACCTCGCTTTCCAATTCCAGAACCTAATGCCAGTGCGTGAGTTGAAAATCCGCGGCGCCCACAACCAGGCCAATGCCCTTGCGGCGCTGGCCCTGGGCCACGCGGTCGGTCTGCCGTTCGACGCCATGCTCTCGGCCTTGCGCCAGTTCGCAGGGCTGGAACACCGCTGCCAATGGGTGCGCGATCTGGATGGCGTGGCCTGGTACAACGATTCCAAGGCCACCAATGTCGGTGCCGCGCTGGCGGCCATCGAAGGCCTGGGCGCGGACATCGACGGCAAGCTCGTGCTGATCGCCGGTGGTGACGGCAAGGGCGCCGACTTCAAGGACCTGCGCGGCCCCGTGGCCGCCAATTGCCGTGCCGTGGTGCTGATGGGCCGCGACCGCGAACTGATCGCCCAGGCGTTGGGCGATGCGGTGCCGCTGGTTCGTGTCGCTTCGCTGGATGAGGCAGTGCAGCAATGCCGCGCCCTCGCGCAAGCGGGCGATGCCGTCCTGTTGTCGCCGGCCTGCGCCAGTTTCGACATGTTCAAGAACTACGAAGAGCGCGGGCGCCAGTTCGCCCAGGCCGTGGAGGACTTGGCATGA	MSLIASDHFRIVVGLGKSGMSLVRFLANRGVSFAVADTRENPPELATLRRDYPQVDVRCGELDVEFLCRADELYVSPGLALATPALQAAAARGVKLSGDIELFARNAKAPIVAITGSNAKSTVTTLVGEMAAAAGKRVAVGGNLGTPALDLLGDDIELYVMELSSFQLETTDHLGAEVATVLNISEDHMDRYSGLPAYHLAKHRVFRGARQVVFNRQDALTRPLMGEGLPCWTFGLGVPDFKGFGLREENGEKYLAFQFQNLMPVRELKIRGAHNQANALAALALGHAVGLPFDAMLSALRQFAGLEHRCQWVRDLDGVAWYNDSKATNVGAALAAIEGLGADIDGKLVLIAGGDGKGADFKDLRGPVAANCRAVVLMGRDRELIAQALGDAVPLVRVASLDEAVQQCRALAQAGDAVLLSPACASFDMFKNYEERGRQFAQAVEDLA	PGPT0024125_3234	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024125-murD-K01925	NA	NA
D1-36_01010	1218	ftsW	COG0772	putative peptidoglycan glycosyltransferase FtsW	ATGAGCTTGCTGAACATCATCAAGCCGTACCCGTCGCCGCTGATCACCGGCCGTGGCATCGACCTCGATTTCCCGATGCTCGCCGGTTGCCTGGCATTGCTCGGCCTGGGCCTGGTGATGATCACCTCTGCGTCGTCGGAAGTGGCTGCCGTTCAGTCGGGCAACACGCTTTACCACATGATCCGCCATCTGATTTACCTGGTGATCGGCCTGGGTGCCTGCATCGTGACCATGATGGTGCCGATCGCCACTTGGCAACGCCTGGGCTGGATGATGCTGTTGGGGGCCTTCGGCCTGCTGGTCATGGTATTGGTGCCGGGCATCGGCCGCGAGGTCAACGGCTCGATGCGCTGGATCGGCTTCAGTTTTTTCAACGTCCAGCCTTCGGAAATCGCCAAGGTCTTCGTGGTGATTTTCCTTGCCGGTTACCTGGTGCGTCGCCAGAAGGAAGTGCGCGAAAGCTGGATGGGCTTCTTCAAGCCATTCATCGTGTTGCTGCCCATGGCAGGCCTGTTGCTGATGGAGCCGGACTTCGGCGCCACGGTAGTGATGATGGGCGCGGCTGCGGCGATGCTGTTTCTCGGTGGGGTCGGGCTGTTCCGCTTCATCCTGATGGTGGCGCTGGCCGTGGCGGCGGTGACCGTGCTGGTGCAGGCACAACCGTATCGAATGGCGCGTCTGATCACGTTTACCGATCCGTGGGCCGACCAGTTCGGTTCCGGCTATCAATTGACCCAGGCCTTGATCGCCTTCGGCCGTGGCGAGTGGCTGGGCGTGGGCTTGGGCAACAGTGTGCAGAAGCAGTTCTATCTGCCGGAAGCGCATACCGACTTCGTGTTTTCGGTACTGGCCGAAGAACTCGGCGTCGTGGGCTCCTTGTGCACCGTTGCACTGTTCGTGTTCGTCTGCGTGCGCGGCATGTACATCGGCTTGTGGGCCGAGAAGGCCAAGCAGTTCTTCGCCGCGTATGTGGCGTATGGCCTGTCGTTCCTGTGGATCGGCCAGTTCCTGATCAACATCGGCGTGAACGTCGGCCTGTTGCCGACCAAGGGCCTGACGCTGCCGTTCCTCAGTTATGGCGGCAGCTCCCTGGTGATCTGCTGTGCCTGTCTTGGCCTGTTGCTGCGCATCGAATGGGAGAGCCGAACCCACTTGGGCAGCGAAGAGATGGATTTCCAGGAGAGCGACTTCGCCGAGGAGCCGACTCATGGGCGCTAA	MSLLNIIKPYPSPLITGRGIDLDFPMLAGCLALLGLGLVMITSASSEVAAVQSGNTLYHMIRHLIYLVIGLGACIVTMMVPIATWQRLGWMMLLGAFGLLVMVLVPGIGREVNGSMRWIGFSFFNVQPSEIAKVFVVIFLAGYLVRRQKEVRESWMGFFKPFIVLLPMAGLLLMEPDFGATVVMMGAAAAMLFLGGVGLFRFILMVALAVAAVTVLVQAQPYRMARLITFTDPWADQFGSGYQLTQALIAFGRGEWLGVGLGNSVQKQFYLPEAHTDFVFSVLAEELGVVGSLCTVALFVFVCVRGMYIGLWAEKAKQFFAAYVAYGLSFLWIGQFLINIGVNVGLLPTKGLTLPFLSYGGSSLVICCACLGLLLRIEWESRTHLGSEEMDFQESDFAEEPTHGR	PGPT0014810_1838	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014810-ftsW|spoVE-K03588	NA	NA
D1-36_01011	1071	murG	COG0707	UDP-N-acetylglucosamine--N-acetylmuramyl-(pentapeptide) pyrophosphoryl-undecaprenol N-acetylglucosamine transferase	ATGGGCGCTAACGTGCTGATCATGGCGGGCGGTACCGGCGGGCATGTGTTCCCGGCGCTGGCCTGTGCCCGGGAGTTCCAGGCGCGCGGCTACACCGTGCATTGGCTGGGTACGCCACGGGGCATCGAGAATGAGTTGGTGCCCGCCGCTGGCCTGGAGCTGCACCGGATCAATGCCAGCGGCCTGCGGGGCAAAGGCAAGCTGTCGCTGCTCAAGGCGCCGCTGATGCTGCTCAAGTCGGTCTGGCAGGCGCGGGCGATCATTCGTCGGCTGCGGCCGGTGTGCGTGGTCGGTTTTGGTGGCTATGTGACCGGCCCCGGCGGTGTTGCGGCAAAACTGGCCGGTGTGCCGGTGATCGTCCACGAGCAGAATGCCGTGGCCGGTACCGCCAATCGGTTATTGGTGCCGTTGGCCGCCCGGGTATGTGAAGCCTTCCCGGACACCTTTACCCTGTCGGGCAGCCGTCGCACCACGGGTAATCCCGTGCGTACGGAGCTGTTCCTCGCTGCACCGCGCCCGGCCCTGGCCGGACGCAAGGCGCGTTTGCTGGTCCTGGGCGGAAGCCTGGGGGCCGAACCGTTGAACAAGCTGCTGCCCGAAGCCCTGTCGCAGGTTGCCCCCGAACTGCGGCCGGAAGTGTTTCACCAGGCCGGCAAAAACCACGATGAAGTGACTGCCGAACGCTATCGCGCCGCTGGCGTCGAGGCGCAAGTGCAGCCCTTCATCAAAGACATGGCCCAGGCCTATGGCTGGGCCGACCTGGTGGTCTGTCGCGCAGGCGCGCTGACCATCAGTGAACTGGCTGCCGCCGGTCTGCCCTCGATGCTGGTGCCTTTGCCCCATGCCATCGACGATCACCAGACTCGCAACGCCGATTATTTGGCCCGTGAAGGCGCTGCCTTCCTGATGCCGCAAAGAACGACTGGCGCCGCGGATCTTGCCGCGCGCCTGACAGAGGTCTTGATGCAGCCGCAAATACTCGAAGACATGGCTCGCGCCGCGCGCCGCCTGGCCAAACCCGATGCCACGGCCCAAGTGGTCGACACCTGCCTGGAGGTGGCCCATGGTTGA	MGANVLIMAGGTGGHVFPALACAREFQARGYTVHWLGTPRGIENELVPAAGLELHRINASGLRGKGKLSLLKAPLMLLKSVWQARAIIRRLRPVCVVGFGGYVTGPGGVAAKLAGVPVIVHEQNAVAGTANRLLVPLAARVCEAFPDTFTLSGSRRTTGNPVRTELFLAAPRPALAGRKARLLVLGGSLGAEPLNKLLPEALSQVAPELRPEVFHQAGKNHDEVTAERYRAAGVEAQVQPFIKDMAQAYGWADLVVCRAGALTISELAAAGLPSMLVPLPHAIDDHQTRNADYLAREGAAFLMPQRTTGAADLAARLTEVLMQPQILEDMARAARRLAKPDATAQVVDTCLEVAHG	PGPT0024150_4049	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024150-murG-K02563	NA	NA
D1-36_01012	1461	murC	COG0773	UDP-N-acetylmuramate--L-alanine ligase	ATGGTTGAGAATCGCAAAGCCATGCCACAACCGGAAATGCGCCGCATCCGTCGCATCCACTTCGTCGGTATCGGCGGCGTGGGCATGTGCGGGATCGCCGAGGTGTTGCTGAACCTGGGTTACCAGGTCTCGGGTTCCGACCTGAAGGCTTCCCCGGTCACCGAACGCCTGGAATCGTTCGGTGCGCAGATCTTTATCAGCCACCGTGCCGAGAACGCCGCCAATGCCGACGTGCTGGTGGTGTCCAGCGCCGTGAACACCTCCAACCCGGAGGTTGCCACCGCCCTGGAACGTCGTATTCCCGTGGTGCCACGGGCCGAGATGCTGGCCGAGCTGATGCGTTATCGCCACGGCATCGCCGTCGCCGGCACCCACGGCAAGACCACCACCACCAGCCTGATCGCCTCGGTGTTCGCCGCCGGTGGCCTGGACCCGACCTTTGTGATCGGTGGTCGCCTGAATGCCGCGGGCACTAATGCCCAGCTGGGAACCAGCCGCTACCTGATCGCCGAAGCCGACGAGAGCGATGCGAGTTTCCTGCACCTGCAACCGCTGGTGGCCGTGGTGACCAACATCGACGCCGACCACATGGCGACCTACGACGGCGACTTCAACAAACTGAAGAAAACCTTCGTCGAGTTCCTCCACAACCTGCCGTTCTATGGTTTGGCCGTGGTGTGCCTGGACGACCCGGTGGTTCGTGAAATCCTGCCACTGATCAAGCGCCCAACCGTGACCTACGGCTTTGGGGAAGAAGCCGATGTGCGCGCCATCAATGTGCGCCAGAAGGGCATGCAGACCTTCTTCACCGTGTTGCGTCCTGACCGCGAGCCGTTGGACGTCTCGGTGAACATGCCCGGCAACCACAACGTGCTCAATGCCTTGGCCACCATCTGCATAGCCACCGACGAAGGCGTCAGCGACGAAGCCATCGTCCAGGGCTTGTCGGGCTTCCAGGGCGTGGGCCGACGTTTTCAGGTCTACGGCGAGCTGCCGGTGGACGGCGGTAACGTGATGCTGGTGGACGATTACGGCCACCACCCGACCGAAGTCGCGGCGGTGATCAAGGCCGTGCGCGGTGGCTGGCCGGAGCGGCGTCTGGTGATGGTCTATCAACCGCACCGGTACAGCCGCACCCGCGACCTGTACGACGATTTTGTCCAGGTCCTGGCCGATGCCAACGTGCTGCTGTTGATGGAAGTCTATCCGGCGGGCGAAGAGCCGATCCCCGGCGCCGACAGCCGCCAGCTGTGCCACAGCATCCGCCAGCGTGGCCAGTTGGACCCGATCTACATCGACCGTGGCGTGGACCTCGCGCCGCTGGTCAAGCCATTGCTGCGCGCTGGGGACATCCTGCTGTGCCAGGGCGCGGGTGACATCGGTGGCCTGGCCCCGAAATTGTTGAATAGTCCGTTATTCGCCGGAGCCATCGTGGCCTCCAGCGAGGGGAAACTGAAATGA	MVENRKAMPQPEMRRIRRIHFVGIGGVGMCGIAEVLLNLGYQVSGSDLKASPVTERLESFGAQIFISHRAENAANADVLVVSSAVNTSNPEVATALERRIPVVPRAEMLAELMRYRHGIAVAGTHGKTTTTSLIASVFAAGGLDPTFVIGGRLNAAGTNAQLGTSRYLIAEADESDASFLHLQPLVAVVTNIDADHMATYDGDFNKLKKTFVEFLHNLPFYGLAVVCLDDPVVREILPLIKRPTVTYGFGEEADVRAINVRQKGMQTFFTVLRPDREPLDVSVNMPGNHNVLNALATICIATDEGVSDEAIVQGLSGFQGVGRRFQVYGELPVDGGNVMLVDDYGHHPTEVAAVIKAVRGGWPERRLVMVYQPHRYSRTRDLYDDFVQVLADANVLLLMEVYPAGEEPIPGADSRQLCHSIRQRGQLDPIYIDRGVDLAPLVKPLLRAGDILLCQGAGDIGGLAPKLLNSPLFAGAIVASSEGKLK	PGPT0024120_920	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024120-murC-K01924	NA	NA
D1-36_01013	966	ddl	COG1181	D-alanine--D-alanine ligase	ATGACTGCTGCATACGCCAACCTGGCCTCGACCCTTGACCCGAAAGCCTTCGGCCGCGTCGCCGTGCTGTTCGGCGGCAAGAGTGCCGAGCGCGAGGTGTCCCTCAAGTCCGGTAACGCCGTGTTGCAAGCCTTGCAGAGCGCTGGCGTCGACGCCTTCGGCATCGACGTGGGCGACGATTTCCTGCAGCGCCTGCTGAGCGAAAAAATCGACCGTGCGTTCATCATTCTCCACGGTCGCGGCGGCGAAGACGGCAGCATGCAAGGGCTGCTCGAATGCGTGGGCATTCCCTACACCGGCAGCGGCATCCTTGCGTCGGCCCTGGCGATGGACAAGCTGCGCACCAAGCAGGTCTGGCACAGCCTCGGCATTCCGACGCCGCGTCACGCCGTGCTCGCCAGCGAGGCCGATTGTATTTCGGCGGCCACGGAACTGGGCTTTCCTTTGATCGTCAAACCGGCCCATGAAGGTTCCAGTATTGGCATGGCGAAAGTGAATTCGCTGCCTGAGTTGACCGCAGCCTGGAAGGACGCCAGTTCCTACGATTCGCAAGTGTTGGTCGAGCAATGGATCACCGGTCCGGAGTTCACCATCGCCACCCTGCGTGATCAGGTGTTGCCCCCGATTGCCCTGGGCACGCCCCACACGTTCTACGACTACGACGCCAAGTACATCGCCAATGACACCCAGTACCGCATTCCCTGCGGGCTGGATGCCGCCAAGGAAAAAGAACTGATGGACCTCACGGCCAAGGCCTGTGAGGCGCTGGGCATCGCCGGATGGGGCCGGGCGGACGTGATGCAGGACGCCGATGGGCAGTTCTGGTTCCTGGAAGTCAACACCGCCCCCGGCATGACCGATCACAGCCTGGTGCCGATGGCGGCGCGTGCCGCCGGCCTGGATTTCCAGCAACTGGTGCTGGCGATCCTGGCTGCCAGTGTCGGCCATCAAGAGCCAAGAGGTTAA	MTAAYANLASTLDPKAFGRVAVLFGGKSAEREVSLKSGNAVLQALQSAGVDAFGIDVGDDFLQRLLSEKIDRAFIILHGRGGEDGSMQGLLECVGIPYTGSGILASALAMDKLRTKQVWHSLGIPTPRHAVLASEADCISAATELGFPLIVKPAHEGSSIGMAKVNSLPELTAAWKDASSYDSQVLVEQWITGPEFTIATLRDQVLPPIALGTPHTFYDYDAKYIANDTQYRIPCGLDAAKEKELMDLTAKACEALGIAGWGRADVMQDADGQFWFLEVNTAPGMTDHSLVPMAARAAGLDFQQLVLAILAASVGHQEPRG	PGPT0020050_3998	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0020050-ddl-K01921	NA	NA
D1-36_01014	867	ftsQ		Cell division protein FtsQ	ATGCAAGGCGCATCGCTTCGTCATCAGCCATCCGCACCCGGTCGCAAGCCGGTGCCGCGGGGTGCCAGCCGAATGGTGGCCAAAGAGCCGATGTCGGCGCGCTTGCCGAAAGCCAATTTTGGTTTTCTCAAGAGCCTGTTCTGGCCGGTGCTGCTGGTGGCGTTGGGGTTCGGTACGTATGAAGGCGCGCAACGGTTGCTGCCTTATGCCGACCGGCCGATTGCCCGGATCAATGTCCAGGGCGACCTGAGCTACATCAGCCAGCAGGCGGTGCAGCAGCGGATTGCCCCGTTCGTCGCGTCGAGCTTCTTCACCATCGACCTGGCGGGCATGCGCACGGAACTGGAGCAGATGCCCTGGATCGCCCACGCCGAAGTCCGGCGAGTGTGGCCGGACCAGGTGTCGATCCGCCTGGAAGAGCAATTGCCGGTGGCCCGTTGGGGCGACGAGTCGCTGTTGAACAACCAGGGCCAGGCGTTTACGCCACGGGAACTGGCCAATTATGAACATTTGCCCCAACTGTTCGGTCCACAGCGGGCCCAGCAACAAGTGATGCAGCAATACCAGGTGTTGAGCCAGATGTTGCGGCCATTGGGCTTCTCCATCGCGCGCCTGGAATTGCGTGAACGCGGCAGCTGGTTCCTGACCACTGGCGCGGGCAGCTCGGGGCCGGGCATCGAGCTGCTGCTCGGGCGCGGCAACCTGGTGGAAAAGATGCGCCGCTTCATCGCCATCTATGACAAGACGCTCAAAGAACAGATTACGAACATTGCGCGCATCGATCTGCGCTACGCCAACGGCCTCGCTGTTGGCTGGCGGGAACCTGTAGCGCCGACGACGGCCGAACCCGCCGTCGCGAAGAATTAA	MQGASLRHQPSAPGRKPVPRGASRMVAKEPMSARLPKANFGFLKSLFWPVLLVALGFGTYEGAQRLLPYADRPIARINVQGDLSYISQQAVQQRIAPFVASSFFTIDLAGMRTELEQMPWIAHAEVRRVWPDQVSIRLEEQLPVARWGDESLLNNQGQAFTPRELANYEHLPQLFGPQRAQQQVMQQYQVLSQMLRPLGFSIARLELRERGSWFLTTGAGSSGPGIELLLGRGNLVEKMRRFIAIYDKTLKEQITNIARIDLRYANGLAVGWREPVAPTTAEPAVAKN				NA	NA	NA	NA	NA
D1-36_01015	1260	ftsA_2	COG0849	Cell division protein FtsA	ATGGCAAACGTGCAAAGCGGGAAAATGATCGTCGGTCTGGATATCGGCACTTCCAAGGTGGTTGCGCTGGTAGGCGAGGTCGCGGACGACGGCACGCTGGTCATCGTCGGAATCGGTACACACCCGTCCCGCGGCTTGAAAAAAGGCGTGGTGGTGAACATCGAGTCCACCGTGCAATCGATCCAGCGCGCCATCGAAGAAGCGCAGCTGATGGCCGGTTGCCGGATCCACTCGGCGTTCGTCGGCGTGGCGGGCAATCACATCCGCAGCCTGAACTCCCACGGCATCGTGGCGATTCGTGATCGCGAAGTCAGCTCCGCCGACCTCGAGCGCGTACTCGACGCGGCCCAGGCCGTAGCGATTCCGGCCGACCAGCGCGTGCTGCACACCCTGCCGCAGGACTACGTGATCGATAACCAGGAAGGCGTGCGCGAGCCCCTGGGCATGTCGGGCGTGCGCCTGGAAGCCAAGGTCCACGTGGTGACCTGTGCGGTGAACGCCGCGCAGAACATCGAGAAATGCGTGCGCCGCTGCGGCCTGGAAATCGACGACATCATCCTCGAGCAGCTGGCCTCGGCGTACTCGGTGCTGACCGACGACGAGAAAGAGCTGGGCGTATGCCTGGTGGACATCGGCGGCGGCACCACCGACATCGCGATCTTCACCGAAGGCGCGATTCGCCACACGGCCGTGATCCCGATCGCAGGCGATCAGGTGACCAACGACATCGCGATGGCGCTGCGCACCCCGACCCAGTACGCCGAGGAAATCAAAATCCGCTACGCCTGCGCCCTGGCGAAACTGGCCGGTGCCGGTGAAACCATCAAGGTGCCGAGCGTCGGCGACCGTCCGCCGCGCGAACTGTCGCGCCAGGCGCTGGCCGAAGTGGTCGAGCCGCGTTACGACGAGTTGTTCACGCTGATCCAGGCCGAACTGCGTCGCAGTGGCTACGAAGACCTGATCCCGGCCGGCATCGTGCTGACCGGCGGTACGTCGAAGATGGAAGGCGCGGTCGAGCTGGCCGAAGAGATTTTCCACATGCCGGTGCGCCTGGGCGTGCCGCATGGCGTCAAGGGGCTGGACGACGTGGTCCGCAACCCGATCTATTCCACCGGCGTGGGCCTGTTGATGTACGGCCTGCAGAAGCAATCCGACGGGATCTCGTTCTCAGGGATTGGCAGCCGCGATAGCTACAGCAGCGACGAGCCCAAGGCTCCGTTGTTCGAGCGGCTCCAGGCCTGGGTGAAAGGCAATTTCTAA	MANVQSGKMIVGLDIGTSKVVALVGEVADDGTLVIVGIGTHPSRGLKKGVVVNIESTVQSIQRAIEEAQLMAGCRIHSAFVGVAGNHIRSLNSHGIVAIRDREVSSADLERVLDAAQAVAIPADQRVLHTLPQDYVIDNQEGVREPLGMSGVRLEAKVHVVTCAVNAAQNIEKCVRRCGLEIDDIILEQLASAYSVLTDDEKELGVCLVDIGGGTTDIAIFTEGAIRHTAVIPIAGDQVTNDIAMALRTPTQYAEEIKIRYACALAKLAGAGETIKVPSVGDRPPRELSRQALAEVVEPRYDELFTLIQAELRRSGYEDLIPAGIVLTGGTSKMEGAVELAEEIFHMPVRLGVPHGVKGLDDVVRNPIYSTGVGLLMYGLQKQSDGISFSGIGSRDSYSSDEPKAPLFERLQAWVKGNF				NA	NA	NA	NA	NA
D1-36_01016	1194	ftsZ	COG0206	Cell division protein FtsZ	ATGTTCGAACTCGTAGACAACATCCCCGCTAGCCCGGTTATCAAAGTAATCGGTGTCGGCGGTGGCGGCGGCAACGCTGTCAACCACATGGTCAAGAGCAACATCGAAGGCGTCGAATTCATCTGCGCCAACACCGATGCTCAAGCGCTGAAAAACATCGGCGCGCGGACCATCCTTCAACTGGGCACCGGCGTGACCAAGGGCCTGGGTGCCGGCGCGAATCCCGAGGTTGGCCGTCAGGCTGCCCTGGAAGACCGCGAGCGCATCGCTGAAGTCCTGGCCGGCACCAACATGGTGTTCATCACCACGGGCATGGGCGGTGGTACCGGTACCGGTGCAGCGCCGATCATTGCCGAAGTGGCCAAGGAAATGGGCATCCTCACCGTTGCGGTGGTGACCCGTCCGTTCCCGTTCGAAGGCCGCAAGCGCATGCAGATCGCCGATGAAGGCATCCGCGCGCTGAGCGAAAGCGTCGACTCGTTGATCACCATCCCCAACGAGAAGCTGCTGACCATCCTGGGTAAAGACGCAAGCCTGCTGTCGGCTTTCGCCAAGGCTGACGATGTACTGGCCGGTGCCGTTCGCGGTATCTCCGACATCATCAAGCGTCCAGGCATGATCAACGTCGACTTTGCCGACGTGCGCACCGTGATGTCCGAAATGGGCATGGCAATGATGGGCACTGGCTGCGCCAGCGGTCCGAACCGTGCTCGCGAAGCCACCGAAGCGGCCATCCGCAACCCGCTGCTGGAAGATGTAAACCTGCAGGGCGCCCGCGGCATCCTGGTGAATATCACCGCCGGTCCGGACTTGTCTTTGGGCGAGTACTCCGACGTGGGTAGCATCATCGAGGCATTCGCTTCCGACCACGCGATGGTCAAGGTCGGCACCGTGATCGATCCGGACATGCGTGACGAGCTGCACGTGACCGTGGTTGCCACTGGCCTGGGCGCGAAAATCGAGAAGCCGATGAAGGTGATCGACAACACCGTGCAGACTGCCATGGCTTCGCAGCCACAGCAGCCAGCTGCCGCTCGTCAGGAAACGCCTGCGGTGAACTACCGTGACCTGGACCGTCCGACCGTCATGCGCAACCAGGCCCAGGCGGGTGCTGCGACTGCCGCGAAGATGAATCCGCAAGATGATCTGGATTACCTGGACATCCCGGCTTTCCTGCGTCGTCAGGCCGATTGA	MFELVDNIPASPVIKVIGVGGGGGNAVNHMVKSNIEGVEFICANTDAQALKNIGARTILQLGTGVTKGLGAGANPEVGRQAALEDRERIAEVLAGTNMVFITTGMGGGTGTGAAPIIAEVAKEMGILTVAVVTRPFPFEGRKRMQIADEGIRALSESVDSLITIPNEKLLTILGKDASLLSAFAKADDVLAGAVRGISDIIKRPGMINVDFADVRTVMSEMGMAMMGTGCASGPNRAREATEAAIRNPLLEDVNLQGARGILVNITAGPDLSLGEYSDVGSIIEAFASDHAMVKVGTVIDPDMRDELHVTVVATGLGAKIEKPMKVIDNTVQTAMASQPQQPAAARQETPAVNYRDLDRPTVMRNQAQAGAATAAKMNPQDDLDYLDIPAFLRRQAD	PGPT0027695_2944	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
D1-36_01017	912	lpxC	COG0774	UDP-3-O-acyl-N-acetylglucosamine deacetylase	ATGATTAAACAACGCACCCTGAAGAATATTATCCGTGCCACAGGTGTCGGCCTGCACTCCGGCGAGAAGGTCTACCTGACCCTCAAGCCCGCGCCTGTCGACACCGGCATCGTGTTTTGTCGTGCCGACCTCGACCCTGTGGTGCAGATTCCTGCTCGCGCGGAAAACGTCGGTGAAACCACTATGTCGACCACACTGGTCAACGGTGACGTCAAAGTGGACACGGTGGAGCATTTGCTCTCGGCCATGGCTGGCCTGGGCATCGATAACGCCTACGTCGAGCTCTCCGCGTCCGAAGTCCCGATCATGGATGGCAGTGCCGGACCCTTCGTATTCCTGATTCAATCGGCTGGCCTGGAAGAGCAGGACGCGGCCAAGAAATTCATCCGCATCCTGCGGGAAGTGACAGTGGAAGACGGCGACAAGCGCGCCACTTTCGTCCCTTTCGAAGGGTTCAAGGTGAGCTTCGAGATCGATTTCGATCACCCGGTTTTCCGTGACCGCACCCAGAGTGCAAGCGTGGATTTTTCCAGCACTTCGTTCGTAAAAGAAGTCAGCCGCGCCCGTACCTTCGGTTTCATGAGTGACATCGAGTACCTGCGCAAGCACAACCTCGCACTCGGCGGCAGCGTTGAAAATGCGATCGTGGTCGACTCCGATGGCGTGTTGAACGAAGACGGCCTTCGTTATGAAGACGAATTCGTCAAGCACAAGATCCTCGATGCAATCGGCGACCTCTACCTGCTGGGCAATAGCCTGATTGGTGAGTTCAAGGGCTTCAAGTCCGGCCACGCACTGAACAACCAGCTGCTGCGCAAGTTGATTGAGCAGAAAGATGCTTGGGAAGTCGTGACGTTCGAAGACGCCAGCACCGCACCCATCTCTTACATGCGTCCTGTCGCGGCCGTGTAA	MIKQRTLKNIIRATGVGLHSGEKVYLTLKPAPVDTGIVFCRADLDPVVQIPARAENVGETTMSTTLVNGDVKVDTVEHLLSAMAGLGIDNAYVELSASEVPIMDGSAGPFVFLIQSAGLEEQDAAKKFIRILREVTVEDGDKRATFVPFEGFKVSFEIDFDHPVFRDRTQSASVDFSSTSFVKEVSRARTFGFMSDIEYLRKHNLALGGSVENAIVVDSDGVLNEDGLRYEDEFVKHKILDAIGDLYLLGNSLIGEFKGFKSGHALNNQLLRKLIEQKDAWEVVTFEDASTAPISYMRPVAAV	PGPT0022330_1552	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LIPID_A_METABOLISM,PGPT0022330-lpxC-K02535	NA	NA
D1-36_01018	2391			hypothetical protein	ATGCTTGATCAACGGCCCACCTTCTTCGACCACAGCCGCCACACCCTGAGCGTCTGCGACCTCACAGCCCATCTCGACGTCCTGGCCTTCACCGGCGAGGAGCACCTGAGCCGGCCCTACCACTACCGCATCGAATTCACCTGCACCGAGCGCGACCTGGTGGTCACCGACCTGCTCAACCGGGATGCCTACTTCAGTCTTTACCCGCTGCCGCCACCGCCGACGCCCAAGGGCTTCGCGCCGCCGGAGATCAAGCCGCTGCGCACGTTCAATGGCGCGATCACGGCGTTCAAGCGCCTGTCCGGCTCCAACGACGAAGCCCGCTACGAAATCACGTTGCAACCGCGTTTCGCGCTGCTGGCGCGGGGCAAGCAGTTTCGGATCTACCAGCACCAGTCGGTGCCGCAGATCGTCGAACACATCCTGCGCACGCGCCATGATTTCCGGGGCCAGCATTTCTATTTCAATGTGGTGCGCGACTACCCCCGGCGTGAACAGGTCATGCAATACGACGAAAGCGACCTGGCCTTCATCGAGCGCCTGCTGGCTGATGTCGGCATCTGGTACCGGGTGGTCAGCGATGACCGCCTGAGCATCGACGTGGTGGAGTTTCACGACGATCAGCGGCACTACCAGCGCGGCGTCAAGTTGCCGTGTCGCCCGCCGTCCGGCTTGTGCGCCAACGAGCAGGACGCGGTCTGGCACCTGCAAACCGCCCACCAGGTGGTGGAAAAAAACATCAACTTTCGCGCCTACCACCATCGCGAGGCCTACGCGTTCCTCGACGGCGAGGTCGACCATACCCGCCGCGCCAAGGGCACCTACGGCGAGGCCTATCACTACGGCGAACCTTACACGGTGCTGGGCGAGCGCTACGCCCTGGACGAGGACCTGCAAAGCGAAAGTGGTTTTTTCTACGCGCGCCTGCGCCATGAACTCTACCTCAATGACCAGACCCGCCTCAGCGGCACCACCAGCAGCGCCACCCTGGCCCCGGCCCAGATGCTCGAAATCACCGGCGGCGCGCCCCAGGCCTTCGAGTTCGGCGCGGTGATCGTCAGCCTGCGCACCGAAGCGGCCCGGGACCGCAGCTTCATCGCCACCTTCCAAGCGATTCCTTACTCGGAAACCGTGTGCTTTCGCCCACCGCTGCCGCCCAAGCCGCGCATCAGCGGCACCATTCCCGCCCGCGTCAGTCACCCGGAAGTCAACCCGCCGTACGCTGACCTCGACTTCGAGGGCCGCTACAAGGTGCGCTTCCTGTTCGACCGCGACACCTGGCAAGCCGGCCGCGAAAGCGCCTGGCTGCGCCTGGCCCGACCCTACGGCGGCGACACCCACGGCCTGCATTTCCCGCTGCAGGCCGGCACCGAAGTGGCGGTGGCTTTCGAGCACGGCGACCCCGACCGCCCCTACATCGCCCACGCCCTGCACGACGACCGGCACCCGGACCCCGTCACCGCCCGCAACGAGCGCCGCAACGTGCTGCGCACTCCGACCAACAACAAACTACGCATGGACGACACCCGCGGGCAGGAGCACATCAAGCTCAGCACCGAGCACAGCGGCAAGAGCCAGTTGAACCTGGGGCATCTGGTGGATGCCGAGCAGACGAAGCGGGGGGAAGGGTTTGAGTTGCGCACCGATGGACATGGCGCCCTTCGTGCGGGCAAGGGGGTGTTTATCAGTGCTGATGAGCAAACCCAGGCCAAGGGCGACGTCCTCACCATGGACCCGGCCACCGCCCAGGTCGAAGGTGCCAGACAGCAGATGGCCGAATGGCAGGACATCGCCCAGGCCCACCACAGCCGCAAACCCGACCTGCGCGGCTTGGAACAACTCCAGGCCGACGCAAAAGACCTTTCGGCCGCCGCCATCCTGCTCAGCGCCCCCCAGGGCATCGGCGCCGTCACCCCGGCCAGCCTGCTGCTCAAGAGCGGCGACGCGCTGTACCTGCAAAGCCACAACGAAATCAACCTCGCCGCCGCCAAGCGGCTGTCGGCCCACGCCAACCAGGGCATCTCGCTGCTGGCCCAACAGGAAGGCCTGCGCCTGGTCTCCGGCAAAGGACCCCTGGACATCGAATCCCACGGCGATGGGATGGGCATGAAAGCCCAGCAGGACATCACCGTGCAGTCGGTGCAGGGGCATGTGCAGGTGACGGCGAAGAATGGCCTCACCCTGGCGTGTGGGGGTGGGTTCATTCGGATTACCCCGACCGGCGCAATCGATATCCATAGCCCCGGCAAGCTGAACCTCAAGGGGCAGCACGTCTGGGAACTGCCTGCCGGGCAATCTTTTGCACTGGCGGATTTGCCGCAATCGGTGTGCAAGGAATGCCTGGAGATGGCCCGCGAAAACGCCGTGGGAATTCTTCCGCGTGAAAGCTGA	MLDQRPTFFDHSRHTLSVCDLTAHLDVLAFTGEEHLSRPYHYRIEFTCTERDLVVTDLLNRDAYFSLYPLPPPPTPKGFAPPEIKPLRTFNGAITAFKRLSGSNDEARYEITLQPRFALLARGKQFRIYQHQSVPQIVEHILRTRHDFRGQHFYFNVVRDYPRREQVMQYDESDLAFIERLLADVGIWYRVVSDDRLSIDVVEFHDDQRHYQRGVKLPCRPPSGLCANEQDAVWHLQTAHQVVEKNINFRAYHHREAYAFLDGEVDHTRRAKGTYGEAYHYGEPYTVLGERYALDEDLQSESGFFYARLRHELYLNDQTRLSGTTSSATLAPAQMLEITGGAPQAFEFGAVIVSLRTEAARDRSFIATFQAIPYSETVCFRPPLPPKPRISGTIPARVSHPEVNPPYADLDFEGRYKVRFLFDRDTWQAGRESAWLRLARPYGGDTHGLHFPLQAGTEVAVAFEHGDPDRPYIAHALHDDRHPDPVTARNERRNVLRTPTNNKLRMDDTRGQEHIKLSTEHSGKSQLNLGHLVDAEQTKRGEGFELRTDGHGALRAGKGVFISADEQTQAKGDVLTMDPATAQVEGARQQMAEWQDIAQAHHSRKPDLRGLEQLQADAKDLSAAAILLSAPQGIGAVTPASLLLKSGDALYLQSHNEINLAAAKRLSAHANQGISLLAQQEGLRLVSGKGPLDIESHGDGMGMKAQQDITVQSVQGHVQVTAKNGLTLACGGGFIRITPTGAIDIHSPGKLNLKGQHVWELPAGQSFALADLPQSVCKECLEMARENAVGILPRES	PGPT0030410_1788	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_PROTEINS,PGPT0030410-vgrG-K11904	NA	NA
D1-36_01019	750			hypothetical protein	ATGGCAGCGCCAAGCGAATGGCAACAGCAGATAGAACACGTCTGCGTGACTGCGGACATACAGCGAGTGGACCTTTTGCTGGACCAGTCCGACTGGGACAGCTGCGCTATCCCGGCCCTGAAACAAATAATGCCAGAGATAGCATGGCATTCGTTGTTTACCGGTACACCGGAGGAAAACCTGCTGGAGCAAGCGCCGCTGTTGATGCGGCTGGATCTGGCGCATTGGCAACATCGAGCCTGGCTGGAAGAACTCATGACTCACTGTGCAGCCGATGCCCGGCTGTTGGTCGCGATCTCCCCGTTGCCCTTCGACGCGCTCAGCTTGGCCCTGCAAACCTTGTCCCAAATGAACTGGGGTGGGCAGCCAGGCTTGTTGCGGTACTACGACCCGCGAATCTTCCCTCTGTTGATTTCCTCCATCTTGAGCGACCAACAGCGCCTCCAATTCCTGCTCCCTGTCAGTTACTGGAGCTGGCTGGATCGGGACGGCCAGCCGCAATGGCGACGGGGCGCCAGCCAGACACGGGGGCGCATCGACATACCGCCCACCGTCGAACTGAGTGATGAGCAATGCGACCTGATCGGATGCATCTCCGATGCGCAGCAGCTTTTTGATAGCGGCCAATTTGATCAGCTTGAGGAAAGTCAGGAGCAGCGTTTCGCGTTGTTATATCGGCTGGTCGTAAAGGCAGCCAAAGAGAATTACTTCAACGATCTCAGCGAGTATGTGCGCAACCGCGCTTTTTAG	MAAPSEWQQQIEHVCVTADIQRVDLLLDQSDWDSCAIPALKQIMPEIAWHSLFTGTPEENLLEQAPLLMRLDLAHWQHRAWLEELMTHCAADARLLVAISPLPFDALSLALQTLSQMNWGGQPGLLRYYDPRIFPLLISSILSDQQRLQFLLPVSYWSWLDRDGQPQWRRGASQTRGRIDIPPTVELSDEQCDLIGCISDAQQLFDSGQFDQLEESQEQRFALLYRLVVKAAKENYFNDLSEYVRNRAF				NA	NA	NA	NA	NA
D1-36_01020	507			hypothetical protein	ATGTTCCGCAAATCGATAGTGCGAGGTTCTTGTGCCTTGCTGGGGTTGATGTTGCATGGGTGTTCTTCTGCGGATAATGAGATGGCGGGAGGGAATATAGAAGCCGTTAACCATACGTTGAATGCGATCAATTGGTTGTCGGTTAACGGATATAGGGCGGACGGGGGAGGAGGCAGTTCGTGTTGCATCATTATGCCGACCAAATGGCGTCCAGGGTTGAAGGCTTATATTGAATGGGAGGTGGATCCTGATCCTTTTGCGGATGCACCGCCTTTAGGAACCGATGAATTTCGAGTTTTTATGGTAAGGCACAAGATTAATTATCAACGGCATAGCGCAACGTTAGAAATCCCGGAATGGCCAGGAACGGAGTCTTGCGATCTGAAAGTCCATTTCCTGACTTGTAATCAAATCAAGGTTACTACCGTGTGTGCGGTATACGGTCAACCCAATTATCCTATTAAAGAACCGCTTGAAATGAAGGAGCCTGCCGTATGCCCGAAATAA	MFRKSIVRGSCALLGLMLHGCSSADNEMAGGNIEAVNHTLNAINWLSVNGYRADGGGGSSCCIIMPTKWRPGLKAYIEWEVDPDPFADAPPLGTDEFRVFMVRHKINYQRHSATLEIPEWPGTESCDLKVHFLTCNQIKVTTVCAVYGQPNYPIKEPLEMKEPAVCPK				NA	NA	NA	NA	NA
D1-36_01021	564			hypothetical protein	ATGCCCGAAATAAAAACTAATTCGAGGGCTTACAAAGTGCTGCCGTTGTCGGTGCTCATAAGGTGGGCGTCGCAGGGGCTCTATGCCTCGCTGGGATTGATGCTGCTGGGGTGTTCTTCTGCGGATAACGAGATGGCGGGAGGGAACTTGGCTGCCGTCAACCACACCTTGGGCGCAATTAATTGGTTTTCAGTTAATGGTTATAGGGCTCACGGCGGTGGGGGCAGCTCGTGCTGCATCGTTATGCCGACCAAATGGCGTCCAGGGTTGAAGGCTTATATCGAGTGGGAAGTAGATCCTAATCGTTTTGCAAGAATTAAGCGAAAGACCGCTGGTTTCGGTTTCGATGAAGAAGCTTGGGCTGCCCACGAGGCAAAATTTCAGCGCCATAGCGCCATGGTGGAGATGCCGGAATGGCCAGGAACGGAGTCTTGCGATCTGAAAGTCCATTTCCTGACTTGCAATCAAATCAAGGTTACTACCGCGTGTGCGGTGTACGGCCAGCCAAACTATCCCATCAAAGAAAAAAAACAGATGAAGGAGCCAGCCGTATGCCCGAAATAA	MPEIKTNSRAYKVLPLSVLIRWASQGLYASLGLMLLGCSSADNEMAGGNLAAVNHTLGAINWFSVNGYRAHGGGGSSCCIVMPTKWRPGLKAYIEWEVDPNRFARIKRKTAGFGFDEEAWAAHEAKFQRHSAMVEMPEWPGTESCDLKVHFLTCNQIKVTTACAVYGQPNYPIKEKKQMKEPAVCPK				NA	NA	NA	NA	NA
D1-36_01022	558			hypothetical protein	ATGCCCGAAATAAAAACTAATTCGAAGGCATACAGAGTGCGGCCGTTGTTGGTGCTCAGAAGGTGGGCGTCGCAGGGGCTCTATGCCTCGCTGGGATTGATGCTGCATGGGTGTTCTTCACCGGACAACGAGATGGCGGGTGGGAATATAGAAGCCGTTAACCATACGTTGAATGCGATCAATTGGTTGTCGGTTAACGGATATAGGGCGGACGGGGGAGGAGGCAGTTCATGTTGCATCATTATGCCGACCAAATGGCGTCCAGGGTTGAAGGCTTATATTGAATGGGAGGTGGATCCTAATCGACACGCAAAATTACCTTCGGTCACCTCAATTGAGTTTCGCGAAGCATATGCCAAGCATTCGGCTAACTACCGGCGGCATAGCGCTACGGTAGAAATTCCGGAATGGCTGGGGACGGAGTCCTGTGATCTGAAAGTGCATTTCCTGACTTGTAATCGACTCAAGGTTACTACCGCGTGTGCGGTATACGGTCAACCCAATTACCCTATTAAAGAACTGTTGGAAATAAAGGAGCCCTCCACATGCCCGAAGTAA	MPEIKTNSKAYRVRPLLVLRRWASQGLYASLGLMLHGCSSPDNEMAGGNIEAVNHTLNAINWLSVNGYRADGGGGSSCCIIMPTKWRPGLKAYIEWEVDPNRHAKLPSVTSIEFREAYAKHSANYRRHSATVEIPEWLGTESCDLKVHFLTCNRLKVTTACAVYGQPNYPIKELLEIKEPSTCPK				NA	NA	NA	NA	NA
D1-36_01023	2379			hypothetical protein	ATGCCCGAAGTAAAAGTCAATAACTCGAAGGCTAAGGCTTGGGCGCCGCCGATTTTTCCCGTCGGGGGACGTCTGCCCGTAGAGATGCGAAAGGTGACCGAGAACTACAATAAACAAACTGCAGAGAAAAATGCTTTTCGTCGAACGACCAATGCCCGAGGGCAAAAGCGGCACTCCGCGTGCTGCTACAGTTTGCACATCAGTTTGTTTTTTGATGGGACCAACAATAACGAGGACAACGATACGAAGAAAGGGCATCCCAGTAATATTGCGAAGCTGTTCCATGCGTCGCTCAGAGGTACGCCGGCAAAAGAACGTGGCTATTTTTCCTACTACATGCCCGGAGTCGGAACCCCTTTTCCAGAAATCGGCGAGCTGGATTACAGCGAGGAGGGGTTGAAGTTCGCCACAGGTGGCGAAAACCGTATCAATTGGGCCCTTGTTTCTTTGGCTGATGCCTTGCATACAGCCCTGATCAAAAAGCCATTGTCCCAAGATCGTCGAGCAAAAGCCGTCGAGTCCATGGACACGTACATAGCTCCTATGATGAGCATCTTCGGCGCTGGTCGGCGGCGCCAAGTCATGCAGGGCCTGCTGGAACCCCTGAAAACCCATGTCCGTCAAGCCAGGCCTGAAGTCCTGGGCGTCAAGCTCTTCGTCTATGGATTTTCCCGCGGCGCGGCGCAAGCGCGCACTTTCGTGAGCTGGCTGAGCCAGCTGTTCGACACGCCGGATGAGGCCGAGAAACCGGAACAGACTTTACTGGGCCTGCCGGTGAGCATCGAGTTCCTCGGCCTGCTGGATACCGTGGCGTCGGTGGGTATCGCCCATGTCACGCCTTTTTTTGCCGGGCACATGGACTGGGCCGATGACACCCAGCTCTTGCCGGACGCGAAGACATTTCCCGATTTCGTCAAATGCTGCCGGCACTTTGTGGCGGCCTTCGAACAACGTGCCTGTTTCCCACTGGACTCGGTTCGTAACGAGGACGGCAACTACCCATCCAATACCTATGAAGTGGTGTACCCCGGCGTGCACTCCGATGTGGGCGGTGGGTACCCGAAAAACGACCAGGGCAAGGCGCGTGGCGGTACGGATGAGTTGGTGTCGCAGATCGTCCTGCACGATTTGTATGCCGCGGCCTTCGCCGCCGGGGCGCCATTGCAGGTACCGGGAACAGTGCTGCCGGACAGCCTGAGGAGTCAGAAACATTGGCGAGCGCTGGGGCTGGATGTGGCAGAGGAATTCGATATAAGCCCTCAAGTCATCGAACGCTTCAACGCCTGGCACCACCAGACCCTGCAAACGACCTCGCCCGAGGACCAGGGCAGCATTTCCACTGACGGCTACCACCCCTTGCTGCTCACGACCACCGTCGAAGACACCCTGGCCGAGCAACTGGGCTGGATCACCGGCTGGCGCATCGGCCGCTATGCCAATGACCGCGAGCAGGTTGAAGATCACTATCGATACGACGACAGCTACAAGCATCAACCTTTCTTCACCGAGGCCCAGGAAGCCACGGCCTACGATACGGACCAACAGCGTAGCGAGTATGAAGACCAGAAACGGACCGTGCTGAAGAACCGCCAGAAAGAACCCGTGGCGGCGATGAATCATCCCGGCCCGCCGATCTACGAACCGCAGATCGACCAGACCCAACTGAGCCAGGCCGCCACTGAGTTCAAGCACGACTATCTGGATATCGAACGCAAACAAACCAGCAAGTACGGTACGGTCCTGGACGTGGTCATGCGCGACACGATCTATCTGCTCAACGAGAACGATGAGGTGCGCGACCACGCCAACATCAAGGCGGCGGGCGAGCTGCGTTACGAGCAACTGTTCGATGACAGGTTCGGCAGGCCCAGCCGGGACCCTGGCCTGGCGCTGCTGGTGGCGTTGTTCGATGACCACATCCACGATTCACGGGCCTGGTTTATGCACGACAAGTTGGCATCCCGTGAGCTATGGGCCGGCTACTTCTTTTATCGCATGACCTATTTCGGCAATGAGAACAGTCGTGACCTGTCTCCGGTGGTGGTGGCCGGGCGGATGCTGGGGGTGGCGGTGCTGGCGGGCGCCACGGTGTATGGCATCAAGCGCAGCGGCACGCTGGGCGGGGTGGGTGGCGTGGCGGCCGGTATGGGCGCGGCGACCATTGGTTATCAGGTGATCGACCAGGTCAGCGGGGCGGTAGTGCCGTTTCTGCCGGGGGCGGAAAAGATTTTGCAGCCGACGCGCCATATCGGCGAAGTGGTTATCGAGCAGAAGAAACAGATCGCCCAGGACGACTATCTGCAGCGCCTCGATCGGACCGACGAGATGCTGCGGCTCGCCGGCGTGCTGGTGGAGTTTGATGGGGAGGTGGCGCCATGA	MPEVKVNNSKAKAWAPPIFPVGGRLPVEMRKVTENYNKQTAEKNAFRRTTNARGQKRHSACCYSLHISLFFDGTNNNEDNDTKKGHPSNIAKLFHASLRGTPAKERGYFSYYMPGVGTPFPEIGELDYSEEGLKFATGGENRINWALVSLADALHTALIKKPLSQDRRAKAVESMDTYIAPMMSIFGAGRRRQVMQGLLEPLKTHVRQARPEVLGVKLFVYGFSRGAAQARTFVSWLSQLFDTPDEAEKPEQTLLGLPVSIEFLGLLDTVASVGIAHVTPFFAGHMDWADDTQLLPDAKTFPDFVKCCRHFVAAFEQRACFPLDSVRNEDGNYPSNTYEVVYPGVHSDVGGGYPKNDQGKARGGTDELVSQIVLHDLYAAAFAAGAPLQVPGTVLPDSLRSQKHWRALGLDVAEEFDISPQVIERFNAWHHQTLQTTSPEDQGSISTDGYHPLLLTTTVEDTLAEQLGWITGWRIGRYANDREQVEDHYRYDDSYKHQPFFTEAQEATAYDTDQQRSEYEDQKRTVLKNRQKEPVAAMNHPGPPIYEPQIDQTQLSQAATEFKHDYLDIERKQTSKYGTVLDVVMRDTIYLLNENDEVRDHANIKAAGELRYEQLFDDRFGRPSRDPGLALLVALFDDHIHDSRAWFMHDKLASRELWAGYFFYRMTYFGNENSRDLSPVVVAGRMLGVAVLAGATVYGIKRSGTLGGVGGVAAGMGAATIGYQVIDQVSGAVVPFLPGAEKILQPTRHIGEVVIEQKKQIAQDDYLQRLDRTDEMLRLAGVLVEFDGEVAP				NA	NA	NA	NA	NA
D1-36_01024	264			hypothetical protein	ATGATCCCCGTGATCCGCCTAGGCGACTCTCTACACTCCTTCGGCGGCAAAGTGCTCGAAGGTCGTTTCCTGGCGATTGGCCGGCCGCTGTCCTGCATGGGGGACAAGGTCCGCTGCGAAAAGCACGGCGAGAATCGCATCGCCCAAGGCGCGGGAGGGTTCAGCTTCAACGGGCAGTTGTTGGCCTTGGACGGGTACCGCTGCGATTGCGGTTGTACGTTGGTCAGCTCCTTGGCGCTGTCGTTTATATCGGTGAAGCCATGA	MIPVIRLGDSLHSFGGKVLEGRFLAIGRPLSCMGDKVRCEKHGENRIAQGAGGFSFNGQLLALDGYRCDCGCTLVSSLALSFISVKP				NA	NA	NA	NA	NA
D1-36_01025	1134			hypothetical protein	ATGAATCGCCCGCCGCGTTACCCGCCGTTCGCCCAGCCAAGGGAACCGCGCTGGGGCCGCTGGTGGCTGGCGTTGCCGCTACTGTGGATTGTCCAGCTGGCAATCCTGGTGCCGTTCTGGCCCGAAGATCAGCCACGCCTGGCATTGTGGTTGTGGAGCGCTGTGTTGCCCTTGAGCTGGGCGCTGGCGTTGTCGTTGCGGGTGTTGCCATGGCAGATCGGCTTGTTCAGGCGCGACGTATTTCGCCGCACCCAGGACGACGATACACAGCGCTGGTGGCGCTGGCGAAGCCTGGGGTTGCCGGTGGAAGAGGTGCTGGTGTTGGGGCCGGCCGGTGATGATCAAATCCACTATCGGGGCCTGATGAACGACACGCCGCTGCCGACGCCCATGGCGCGATCCAAGGCTGCGGTGCCGTCATTGAATTGCCCGGTGATACTCAGCCAGTCCGCCGAGCGTGCTCCGGCGCTGGCGCAACACCTGGCTCGGTTGGTTTTTGAGCAAACCGGAATATTGGAGCGGTGGCCGAGGTTGCGGGCGATTGTCTGGGCGGGCGACGAAATCGAACTGGCTGCCTTCGAGAAGGTGCTGGGCAGCCACGGCACCGAGCTGCCAAAGGTGTGCTTGCCGTTGCAAGACCTGGCGGACCTGGACGAACTGATCGACATATTCAATCAAGAATGCCGTCACGCCGAGGACTGGCTGCTGTGCGCCGGGGTGGTTTCGGTGCAGGGCGCCGAAGCGGCAACGCCACCTGGCGAAGGTGGTTTTTTGTGGGTGGTGAGTCGTCAAGGGCGGCAGCTGTTGCATCGTGGTGAATACCTGTCGGGCGAGACTGACGACCCCCCCGCTGAGCTCAGCGCACAGATGCAGCGTTATGCCGGGCTGCAAGCCCCGCCGACCTGTCTGGCCATGGACCAGGCCAGTCAGCAAGCCTTCATGGCCGGCGGCTGGTCGGCGATCGAGCATCAATTGGAAGCGCACTGGGGTGAATTGGCGCATCTGGCGCCGTTTATCGGCATGTCGTTGGCGTTGTTGCATGCAAAGGAGGCCGGACAGCCCTGTGGCTGGCTGAGCCAGGATGCGGACAAACGATTGGCAATTGGAGTGGCAAAACCTCATGGCAAGGGATAA	MNRPPRYPPFAQPREPRWGRWWLALPLLWIVQLAILVPFWPEDQPRLALWLWSAVLPLSWALALSLRVLPWQIGLFRRDVFRRTQDDDTQRWWRWRSLGLPVEEVLVLGPAGDDQIHYRGLMNDTPLPTPMARSKAAVPSLNCPVILSQSAERAPALAQHLARLVFEQTGILERWPRLRAIVWAGDEIELAAFEKVLGSHGTELPKVCLPLQDLADLDELIDIFNQECRHAEDWLLCAGVVSVQGAEAATPPGEGGFLWVVSRQGRQLLHRGEYLSGETDDPPAELSAQMQRYAGLQAPPTCLAMDQASQQAFMAGGWSAIEHQLEAHWGELAHLAPFIGMSLALLHAKEAGQPCGWLSQDADKRLAIGVAKPHGKG				NA	NA	NA	NA	NA
D1-36_01026	3363			hypothetical protein	ATGGCAAGGGATAACGGCGAGCCCAAGGGCTCATTGATAGGGTTGGGGTCAGGCTACCTGCTGGTCATGACATTCATGGTGCTGCTCGGTTGCCTGCTGTATCGCTTGGCGGGCCATCACCTGGAATTGCCGCCAGTCGCGTTCCAGCAATTGATGTTGTGGGGGCTGGGGACATGGGTTGCGCTCTTTTGGTTCTGCCCGATGATTTTATTGGCCTGGGATCGTTTGACGGTACGCCAGGCGCAGCGGACCACGCCGGGAGGCATTGGCAGCGTCGCTGCGTCCCGATTGAATCCACAGCCGGATTTGAAAGACGACGAAGAGAAGCTGGCCAGGCTACGCGAAAACCTCCGCTTCCAATACGGCCCCCTCTGGCGCCACAAGGTCCGCCTGCTGCTCATCGTCGGTGAGCCCACCCAGATCGCCGCCATCGCCCCGGAGCTGGCGAAAAAGAAATGGCTCGAAGGCGAACGCACCGTGCTGCTATGGGGCGGCAGCGTCCAGGAAGAATTGCCAACCCCACTGTTGAACCCATGGCTCACCTTGCGCCGTTGGCGGGCGCTGGACGGGGTGGTCTGGGCGCTGGACAAACCGCAAAGCACCGATGCGGTGGCGCTGGCCAAGGGCATGCGGCAGTTGCAGGGGCTGGCTCGGCGGCTAGGCCGACGGTTGCCGTTGCACTTGTGGCAGGTGTGCGAGAGCGGCTGGTCCCAGGACGGGCGCGAGAGCCAGCCGGTGGGTTGTCTGTTGCCGGCCAAGGTGACGCCGTCTCTGTTGGAGGCGTGCCTGGAGGATCTGGTCGAGCCGTTGCGTTGCCAGGGCTTTGCCCAGATGAAGATCAAGAAGCGGATGCACCACGATTTCCTGCTGCGCCTGTCCCGGGATTTGCAGGCCGAGGGCATTGCCCGTTGGCGGCAGGCGCTGGCGCCGTCGTTGAGTGGGTTCAACCCGGGGGTGATGCTGCGAGGGTTGTGGTTCAGCCTGCCACTGCGCGTGACGCAAAGCGCTGACGGCGAGCATTTCTGGTGGCCGGACCCGGCGTGGCACGGCGTGCAGCGCGACAAGGCCGTCGGCGCGCGGTTGGGGTGGGGCGCGCCGCGAGTCGTCTATGGGCTGTTCATGGGCCTGGCGCTGGTGTGGGGCGCGGGGATGGCGCTGTCCTTTGTGAGCAATCGGGCGCAGATCGTCGAGGCGCAGGCCTTGTCGACGGCGTTGCAACAGTCATCCACCCAAGAGGAGCAACTGTTGGCGCTCGAAGCGCTCGTCCATGTGCTGGCTCGCCTGGATCACCGTGTCGTGTCCGGTGCGCCGTGGTACCAGCGCTTTGGCTTGAACCGCAATGAAACCTTGCTCGAACTGTTGTGGCCCCGGTATGTCGAGGCCAATAACCGCCTGGTGCGAGACCCGGCGGCGGCGAGGTTGCGCGGGCAACTGGAGGCGCTGGTCAAGCTGGCGCCGGGCAGCCCCGAGCGCGTTGAGCGCACGCGTATGGCCTACGATCAGCTCAAGACTTACCTGATGATGGCGCGCCCGGACAAAGCCGTGGCGCCCCTGTTGGTCAAGACCCTGGGCCACGCCGAACCCACGCGTGACGGAATTTCGCCAGGGCTCTGGCGGACCCTCGCACCGAACCTGTGGCAGTTCTACGCCGAGCAACTGGCCGCGCACCCGGACTGGCGCATCGAGGCCGACCCGCGGTTGGTGGCGCAGGTGCGCCAGGTGCTGCTCGACCAATTGGGCCAACGCAACGCCGAGGCCAGCCTGTATCAACGGGTGCTGGACGACGCCACCCCGCACTATCCAGCCCTGGGCCTGCAACAGATGGTGGGCGACACCGAAGCCGCCGGGTTGTTTTCCAGCAAGGCCAGCGTGCCGGGGGTGTTCACGCGCCAGGCCTGGGAGGGCCAGGTGCGCCAGGCCATCGATGACATCACCCAGGCGCGCCGCGAAGAAATCGATTGGGTGCTCAGTGATCGCCCCGGTGACATCGATGTGCGCTTGACGCCCGGCGAGCTCAAGGCGCGCCTGACCGAACGTTATTTCAAGGACTACGCGGGCGCCTGGCTGGTGTTTCTCAACAGCCTGCGGGGCAATCAACCCAAAAGCCTGGATCAGGTCATCGACCAGTTGACGCTGATGAGCGACGTGCGCCAATCGCCGTTGCTCGCGTTGATCAATACCCTGGCCTATCAAGGGCAAGCGGGCACCCGCGTCCCGGCCCTGGGCGACTCGCTGATGAGGTCCGCGCACAAGCTCATCGGCCCGGACAAGGCCCCGCCCATAGACCCGCTGGCCGACCTGCCGAGCGGCCCGCTGGATCCGACGTTCGGCCCGTTGTTGGCCTTGCTGGGCAAGGGTGGCGCTGACCATTTGAGCCTCCAGGCCTACCTCACCCAAGTGACCCGCGTGCGCCTGAAACTGCAACAGATCAACACGGCCAGCGACCCCATGGAAATGACCCAGGCCCTGGCGCAGACGGTGTTCCAGGGCCGGGGCATCGACCTCACCGATACCCAGTCCTATGGCCGTCTTATGGCCGCCAGCCTCGGTGCGCAATGGGCCGGCGTGGGCGAAACGCTGTTCGTGCAACCGCTGGAACAGGCTTGGCAGCGAGTGCTGCAACCGTCGGCGGCGGGCCTCAACAGCCAATGGCGGCGTTCGATCGTCGAGCATTGGAACGCGGCCTTTACCGGGCGTTATCCCTTCGCCGCGACGGCCAGCGATGCTTCGTTGCCGATGCTGGGGCAAATGATCCGCGCCGACACGGGGCGCATCGAGCGTTTTCTCCACAGCCAGTTGAGCGGCGTGTTGCGCAAGGAAGGCAACCGCTGGGTGGCCGATCCCCGCCACGGTCGCGGTTTGCGCGTCAATCCCCAATTCCTGGAGGCGGTCAATCAACTGAGCGATCTGGCCGACGTGCTCTACACCGACGGCGGCCTGGGCTTGAGTTTTGAACTGAGCGGCAAAGGCGTGCGCGATGTGGTGCAAACCACCTTCATCCTCAACGGAGAGAAACACCACTACTTCAACCAGAAGGAGCGCTGGCAGCGCTTCGGCTGGCCAGGACGCAGCGACTACCCCGGCGTCAGCCTGACGTGGACCAGCGTCCACACCGGCGAACGGTTGTTCGCCGACTACGCCGGCGCCTGGGGGCTGATCCGCTTGCTGGAACAGGCCACGTTCACCGCGCTGGACGATGGCGACAGCCGCTACCGCATGGTGCTCAAGGCGCCCGATGGCCTGGGCCTGACGTGGCACCTGCGCACCGAACTGGATGCCGGGCCGATGACGCTTCTGAAGTTGCGAGGGTTTACGTTGCCGGGGCGGATATTTTTGGATGGGCGCGGGGCGGCGGAAGGATAG	MARDNGEPKGSLIGLGSGYLLVMTFMVLLGCLLYRLAGHHLELPPVAFQQLMLWGLGTWVALFWFCPMILLAWDRLTVRQAQRTTPGGIGSVAASRLNPQPDLKDDEEKLARLRENLRFQYGPLWRHKVRLLLIVGEPTQIAAIAPELAKKKWLEGERTVLLWGGSVQEELPTPLLNPWLTLRRWRALDGVVWALDKPQSTDAVALAKGMRQLQGLARRLGRRLPLHLWQVCESGWSQDGRESQPVGCLLPAKVTPSLLEACLEDLVEPLRCQGFAQMKIKKRMHHDFLLRLSRDLQAEGIARWRQALAPSLSGFNPGVMLRGLWFSLPLRVTQSADGEHFWWPDPAWHGVQRDKAVGARLGWGAPRVVYGLFMGLALVWGAGMALSFVSNRAQIVEAQALSTALQQSSTQEEQLLALEALVHVLARLDHRVVSGAPWYQRFGLNRNETLLELLWPRYVEANNRLVRDPAAARLRGQLEALVKLAPGSPERVERTRMAYDQLKTYLMMARPDKAVAPLLVKTLGHAEPTRDGISPGLWRTLAPNLWQFYAEQLAAHPDWRIEADPRLVAQVRQVLLDQLGQRNAEASLYQRVLDDATPHYPALGLQQMVGDTEAAGLFSSKASVPGVFTRQAWEGQVRQAIDDITQARREEIDWVLSDRPGDIDVRLTPGELKARLTERYFKDYAGAWLVFLNSLRGNQPKSLDQVIDQLTLMSDVRQSPLLALINTLAYQGQAGTRVPALGDSLMRSAHKLIGPDKAPPIDPLADLPSGPLDPTFGPLLALLGKGGADHLSLQAYLTQVTRVRLKLQQINTASDPMEMTQALAQTVFQGRGIDLTDTQSYGRLMAASLGAQWAGVGETLFVQPLEQAWQRVLQPSAAGLNSQWRRSIVEHWNAAFTGRYPFAATASDASLPMLGQMIRADTGRIERFLHSQLSGVLRKEGNRWVADPRHGRGLRVNPQFLEAVNQLSDLADVLYTDGGLGLSFELSGKGVRDVVQTTFILNGEKHHYFNQKERWQRFGWPGRSDYPGVSLTWTSVHTGERLFADYAGAWGLIRLLEQATFTALDDGDSRYRMVLKAPDGLGLTWHLRTELDAGPMTLLKLRGFTLPGRIFLDGRGAAEG	PGPT0025960_1622	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025960-impL|vasK|icmF-K11891	NA	NA
D1-36_01027	1506			hypothetical protein	ATGACAATGCAGATCGGAATCATGAGCGCGAGCACTGCAACACCCGCCAATATCCCACTTCCTATACGTTCGGAACGGGTACTCGTCTTGGCCAGCTCGCTGGCTGTGATTGCCATCCTGAGTATCGTGACGTTCCTGCTGATCCGTGAACACGCCAGCGCCCAGCAGGCCGCGATCCGTGCGGCGAGCAACATCGTGCAACTGATCGACGCCGACGTGCTGCGCAATGTCGAACTCTATGACTTGTCATTGCAAGGTCTTGTCGCTGCCGCAAAGCGCGACGACCTGAATGATGTATCACCCACGATTCGTCATCTCGCCCTCTTCGACCGCGCCACCGCCGCGCCTTATAAAGGCGACATATTGCTGCTCGACAAGCGTGGTGATGTGATCGCCGATTCCGCCTCGATCCAGCCACGCAAAGGTAATTACGCCGACCGGGAGTATTTCCAGTCTCATCTCCAGGATCCACGCCCGGGCATGATGATCAGCCGGCCCTTCCGCGCCCGTAGCGAACCCCACGACTGGCGGATCAGCTTCAGTTATCGCTTGAACGACGAACGTGGCGAGTTCATGGGCGTGGCCGAAGCCGCGATGCGCTTGAATTACTTCAACCAACTGTTCAAGAGCCTGAACATCGGTCACGGCGGGACGGTCAACCTGGTCAGCCGCGACGGTATCCTGCTGGCGCAAGAACCGCAGTTGGCCGAAGACGTGATCGGCAAGGATTTCAGCAAACGGCCAAACTTCGTACGCATCCTGCGCGAAGGCGACGGCAGCTTCACAGGCCTATCCAGCGTTGACCAGACCCAGCGTCTGTATACCTTTTCCCAGGTGGGTGACTTGCCGCTGATCGTGGTGGTCGCGCTCTCTTCCCAAGAAGTCTTCGCCTCGTGGCAACGCACGGCGCTTCTGGTCAGTGGCGCCACTGGCGCGCTGTGCATCAGCCTGCTCTGGCTCACCTGGCTGCTGCGCCGGGAATTGAAACGCCGCCGCAACGCCGAATGGGAGTTGGCCCAGTTGGCGTCTGTCGATCCTCTGACCGGCCTGGCCAACCGTCGAACCCTGGACCACATGCTGCAACTGGAATGGCTGCGCGCCCAACGCTCCGGCCAGCCGTTGTCAGTCCTGATGATCGACGCGGACCACTTCAAGACATTCAACGATCGCCTCGGCCATCAACGCGGTGACGAGGCGTTGCGAAGCCTGGCTCAGTTGATTGGCGAGCATGTCCGTCGCCCCGCCGACCTGGCGGCGCGTTACGGTGGCGAGGAATTCTCGGTGGTACTGCCGGAAACCACGACGGCCGGGGCATTCACGACGGCGCAGAACATTCGCGAGGCCGTGGAACAGATGCCTGGCGAGATGCCCATGACCGTCAGTATCGGCATCGCCACCTGGGTCCAGGGGCCTTACAGCGAGTTGGAAGAATTGCTGTTCGCCGCCGACAAGGCGCTTTACCAGGCCAAGGCCAGCGGACGCAATCGGGTCGTCTGCGCGATGTAG	MTMQIGIMSASTATPANIPLPIRSERVLVLASSLAVIAILSIVTFLLIREHASAQQAAIRAASNIVQLIDADVLRNVELYDLSLQGLVAAAKRDDLNDVSPTIRHLALFDRATAAPYKGDILLLDKRGDVIADSASIQPRKGNYADREYFQSHLQDPRPGMMISRPFRARSEPHDWRISFSYRLNDERGEFMGVAEAAMRLNYFNQLFKSLNIGHGGTVNLVSRDGILLAQEPQLAEDVIGKDFSKRPNFVRILREGDGSFTGLSSVDQTQRLYTFSQVGDLPLIVVVALSSQEVFASWQRTALLVSGATGALCISLLWLTWLLRRELKRRRNAEWELAQLASVDPLTGLANRRTLDHMLQLEWLRAQRSGQPLSVLMIDADHFKTFNDRLGHQRGDEALRSLAQLIGEHVRRPADLAARYGGEEFSVVLPETTTAGAFTTAQNIREAVEQMPGEMPMTVSIGIATWVQGPYSELEELLFAADKALYQAKASGRNRVVCAM				NA	NA	NA	NA	NA
D1-36_01028	1380	rcsC_2		Sensor histidine kinase RcsC	ATGTGCTGGAGAATCGAGGTGAGTAACAGCATCGCGCTGCGCCTGAGCGGGCTCTTCACGCTGGTGGCGGCGCTGGTGTTCCTGTTGATTGGCGGTGCACTGTACCAGCAGGTCGACAAAGGCCTGGGCCTGCTGCCGGAAGCGGAGCTCGACGCCCGCTACAGCGTGCTTGAATCCACCGTGGGTCGTTATGGCACGCCCGAGCATTGGGTGAAGATCAACAACAAGCTGCGGTTACTGGGGGAGGAAGACAAGCGCATCCATTTCTGGATCGTCAGCGGCGACCCGCGCTTTGAATATGGCAGCCCCGATCCTCGGATTCGCGCCGTCGCCCAGGGCCCCTTGGGCAAGCATGACCTGATGTTGCCCGACCGGCACTATCCAATGAAAGTCCTCGTGAGCCAGTTCCCCGCCAAGGACCAGCGCCCTCCCCTGCGATTCATGATCGGCATCGATACCGAGACGTTCTACCAGACCCAACACCACCTGCTGGTGGCCCTGGTGAGCCTGGCCTGTATCGGTGTGCTGCTGGCCTCGTTGCTGGGTTATTGGGTGGCGCGCATCGGGCTCAAGCCGCTCATCAAGTTATCGGACGAAGCCCAACGCCTGGCGCCACCGCGCCTTTGCGGGCGGCTGCGATTGTCTCCATTGCCACCGGAGCTCGGCCAGTTCGTCAGCTCGTTCAACGCCACTCTCGACCGGGTCGAGCAGGCTTACTCCCGGCTGGAATCATTCAACGCCGACGTTGCCCATGAACTGCGTTCGCCGTTGACCAACCTGATCGGCCAGACGCAAGTGGCGCTGACCCGGGGGCGCTCGGCGGAGCATTACTTCGAAGTGCTGCAATCGAACCTCGAAGAGCTGGAACGCTTGCGCTCCATCATCAACGACATGCTGTTCCTGGCCAGTGCTGACCAGGGCAGCAAGGCCACCAAGCTGATCACGACCTCCCTGGCCGACGAAGTGGCAACCACCCTCGACTACCTGGACTTCATCCTGGAAGACGCCCAGGTCGAGGTTCACGTCAGTGGCGACGCCCAGGCCACCATCGAAATCGCCCACCTGCGAAGGGCCTTGATCAACCTGCTCAGCAACGCCGTCCAGCACACCGCGCCCGGCCAGGTGATCGCCGTGCGCATCGAAGCCATCGGCGATCAGATCACCCTCGCCGTCACCAACCCCGGCGCGCCCATCGATGGAGAGCACTTGCCGCGCTTGTTCGAGCGCTTCTATCGCGTCGACGCCTCCCGCAGCAACAGCGGCGCCAACCATGGATTGGGCCTGGCCATCGTCAAGGCCATTGCGCTGATGCATGGCGGCGACGTTTTCGTACACAGCGAGCGGGGCGCAAACACCTTCGGGATCCGTTTGCCGGCTTGA	MCWRIEVSNSIALRLSGLFTLVAALVFLLIGGALYQQVDKGLGLLPEAELDARYSVLESTVGRYGTPEHWVKINNKLRLLGEEDKRIHFWIVSGDPRFEYGSPDPRIRAVAQGPLGKHDLMLPDRHYPMKVLVSQFPAKDQRPPLRFMIGIDTETFYQTQHHLLVALVSLACIGVLLASLLGYWVARIGLKPLIKLSDEAQRLAPPRLCGRLRLSPLPPELGQFVSSFNATLDRVEQAYSRLESFNADVAHELRSPLTNLIGQTQVALTRGRSAEHYFEVLQSNLEELERLRSIINDMLFLASADQGSKATKLITTSLADEVATTLDYLDFILEDAQVEVHVSGDAQATIEIAHLRRALINLLSNAVQHTAPGQVIAVRIEAIGDQITLAVTNPGAPIDGEHLPRLFERFYRVDASRSNSGANHGLGLAIVKAIALMHGGDVFVHSERGANTFGIRLPA	PGPT0004980_1317	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004980-cusS|copS|silS-K07644	NA	NA
D1-36_01029	675	czcR_1		Transcriptional activator protein CzcR	ATGCGCGTTCTGATCATCGAAGACGAAGAAAAAACCGCCGACTACCTGCACCGCGGCCTGACCGAACAAGGCTACATCGTGGACGTGGCGCGCGATGGCGTCGAAGGGCTGCACCTGGCCCTGGAAAGCGATTACGCAGTGATCGTGCTCGACGTCATGCTGCCAGGCCTGGACGGTTTCGGCGTGCTGCGTGCGTTGCGCGCCCGCAAGCAGACACCGGTCATCATGCTCACCGCCCGCGAACGGGTCGAGGACCGTATCAAGGGCCTGCGCGACGGGGCCGACGATTACTTGGGCAAACCGTTTTCCTTCCTCGAACTGGTGGCGCGCCTGCAAGCGCTGACCCGCCGCAGCAGCGCCCACGAGCCGGTGCAGGTGAGCATCGCCGATTTGTGGATCGACCTGATCAGCCGCAAGGCTACCCGGGCCGGGCAGCGCCTGGACCTCACCGCCAAGGAGTTTTCGCTGCTCAGCGTCCTCGCCCGTCGCCAGGGCGAAATCCTTTCGAAGACCGCCATTGCCGAGATGGTCTGGGACATCAACTTCGACAGCGACGCCAACGTCGTGGAAGTTGCGATCAAGCGCCTGCGGGCCAAGCTGGACGGTCCTTTCGAGCACAAGCTTCTGCACACCATCCGTGGGATGGGGTATGTGCTGGAGAATCGAGGTGAGTAA	MRVLIIEDEEKTADYLHRGLTEQGYIVDVARDGVEGLHLALESDYAVIVLDVMLPGLDGFGVLRALRARKQTPVIMLTARERVEDRIKGLRDGADDYLGKPFSFLELVARLQALTRRSSAHEPVQVSIADLWIDLISRKATRAGQRLDLTAKEFSLLSVLARRQGEILSKTAIAEMVWDINFDSDANVVEVAIKRLRAKLDGPFEHKLLHTIRGMGYVLENRGE	PGPT0004105_1300	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
D1-36_01030	3114	mdtB_1		Multidrug resistance protein MdtB	ATGAAGGGGCGTGGTTCGGTATCGGCGTGGTGCATCGACCATCCCATCGCCACGGTGCTGTTGACGTTCGCCCTGGTGCTGCTGGGGCTCATCGCCTTTCCTCGCTTGCCTGTCGCGCCCTTGCCCGAAGCGGAATTCCCGACCATCCAGGTCAATGCGCAACTGCCCGGTGCCAGCCCCGAGACCATGGCTTCGTCGGTGGCGACCCCGCTGGAGGTGCAATTCAGCGCCATCCCCGGCATTACCCAAATGACCTCCAGCAGCGCGTTGGGCTCGACCAACCTGACCCTGCAATTCAGTCTCGACAAGAGCATCGACACCGCCGCCCAGGAAGTCCAGGCCGCCATCAACACCGCCGCTGGCAAGCTGCCCAACGACATGCCGAACCTGCCGACCTGGCGCAAGGTCAACCCGGCGGACAGCCCGGTGCTGATTTACAGCATCAGCTCCAACCTGATGCCCGGCACCGAACTGAGTGACTACGTCGAGACCCTGCTCGCCCGCCAGATCAGCCAGATCGATGGCGTCGGGCAAATCTACATCACCGGCCAGCAGCGCCCGGCGATCCGGGTCCAGGCCTCGGCCGACCGACTCGCGGCCATTGGCCTGACCTTGGCCGACGTTCGCCTATCCCTCCAGCAGGCCAGCCTCAACCTGGCCAAGGGTGCGCTGTACGGCGAGTCGAGCATCTCTACGCTGTCCACGAACGATCAGTTGTTCAAGCCCGAGGAATACGGTGAGCTGATCGTGGCCTACCGGGACGGGGCGCCGGTTCATCTCAACGACATCGCCAAAGTCGTCAACGGTTCGGAAAATGCCTACGTCCAGGCCTGGTCCGAGGATCAGCCCGGGGTCAACCTGGTCATCTTCCGCCAACCGGGGGCGAACATCGTCGAGACCGTCGACCGCATCCAGGCGGCGCTACCCACCCTGGAGGCCATGCTCCCCGCCGCAGTGCAGGTCAAGGTCATGATCGATCGCACCCAGACCATCCGCGCCTCGTTGCATGAAGTGGAAATCACCCTGCTGATCGCGGTGCTGCTGGTGGTGGCGGTGATGGCGCTGTTCCTGCGCCAGCTCTCGGCGACCCTGATCGTCTCGGCGGTGCTCGGGGTGTCGTTGATCGCCAGTTTCGCCCTGATGTACGTGATGGGCTTCAGCCTGAACAACCTGACCCTGGTGGCGATTGTCATCTCGGTGGGATTCGTGGTGGACGATGCCATCGTGGTGGTGGAGAACATCCACCGGCACCTGGAAGCCGGCGAGGGCATGCGCGAGGCGGCCATCAAGGGCGCCGGGGAAATCGGCTTCACCGTGGTGTCCATCAGCTTCTCGCTGGTGGCGGCATTCATTCCGCTCTTGTTCATGGGCGGCGTGGTCGGGCGCCTGTTCAAAGAGTTTGCCTTGACGGCTACCTCGACCATCCTGATTTCGGTGGTGGTGTCCTTGACCCTGGCGCCGACCCTGGCCGCCTTGTTCATGCGCGCGCCAAAGCACCCCGCTCACGCCCAACCGGGCTTCGGCGAACGCCTGCTGGGCTGGTATGAACGAGGCCTACGCCGGGCCCTGGCTCACCAGAAGCTGATGATCGGTGTGTTCGGCCTGACCCTGGCGCTGGCGGTGGTGGGCTACGTGTTCATCCCCAAGGGCTTCTTTCCGGTACAGGACACGGGCCTGGTGCTCGGCACCAGCGAAGCCGCCGCCGACATCTCATTCCCGGACATGGTGGCCAAGCACAAGGCCCTGGCCGAGATCGTTGCCGCCGACCCGGCGGTGCAGACCTTCTCTCACTCCGTCGGTGTCTCGGGCAACAACCAGACCATCGCCAACGGCCGTTTCTGGATCGCCCTGAAGCCTCGGGGCCAGCGCGATGTATCAGCCAGCGGCTTCATCGATCGGATCCGACCCAAGTTGCTGAAGATTCCCGGCGTGGTGCTGTACCTGCGGGCCGGGCAGGACATCAACCTCAGTTCCGGCCCCAGTCGCGCCCAGTATCAGTACGTGCTCAAGAGCAACGACGGGCCGACCCTCAACGCCTGGACGCAGAAACTCACCGACAAGCTACGCAGCATTCCGGCGTTCCGCGACATTTCCAATGACCTGCAACTGGGCGGCAGCATCACCCACATCAACATCGACCGCAGTGCAGCGGCGCGCTTCGGCCTCACCGCCACGGATGTCGACCAGGCGCTGTATGACGCGTTCGGCCAGCGGCAGATCAACGAGTTCCAGACCGAGACCAACCAGTACAACGTGATTCTCGAACTCGACACACAACAGCGTGGCAAGGCCGAAAGCCTGGCGTATTTCTACCTGCGCTCGCCCCTGACCGGGGAGATGGTGCCGCTCTCCGCCCTCGCCCGCTTCGACGCTCCCACCAACGGCCCGTTGTCGATTGCCCACGATGGCATGTTCCCGGCCGCCAACCTGTCGTTCAACCTGGCACCAGGCGTGGCATTGGGTGATGCGGTGCGGCTGCTCGACCAGGCCAAGAACGAAATCGGCATGCCTGCGGCCATCACCGGCAATTTCCAGGGTGCGGCCCAAGCCTTCCAGAGTTCGCTGAAAAGCCAGCCATGGCTGATCCTCGCCGCCCTGGTGGCCGTCTATATCATCCTCGGCGTGCTCTACGAGAGTTTCGTGCATCCGTTGACCATTATCTCCACGCTGCCCTCGGCCGGCCTTGGCGCGCTGATCATGCTTTGGCTGCTGGGTCAGGATTTCTCGATCATGGCGTTGATTGGGCTGGTGCTGCTGATCGGGATCGTCAAGAAGAACGGGATCCTGATGATCGACTTCGCCATCGACGCCCAGCGAAACGGCGGGATGACGCCCCAGGATGCGATCTTCCAGGCCTGTATGACACGGTTCCGCCCCATCATCATGACCACCCTCGCCGCGCTGCTCGGTGCGCTGCCGCTGATGCTCGGCTATGGCGCCGGCGCAGAGCTGCGCCAGCCGTTGGGCATTGCCGTGGTCGGTGGCTTGCTGGTGAGCCAGGCGCTGACGTTGTTCACCACACCGGTCATATACTTGTGGCTTGAACGACTGTTACATCGACCCGCCCCTCGAAACGGCCCTGCGCCGACGGCGGCGCTGGCGAATACAGACTGA	MKGRGSVSAWCIDHPIATVLLTFALVLLGLIAFPRLPVAPLPEAEFPTIQVNAQLPGASPETMASSVATPLEVQFSAIPGITQMTSSSALGSTNLTLQFSLDKSIDTAAQEVQAAINTAAGKLPNDMPNLPTWRKVNPADSPVLIYSISSNLMPGTELSDYVETLLARQISQIDGVGQIYITGQQRPAIRVQASADRLAAIGLTLADVRLSLQQASLNLAKGALYGESSISTLSTNDQLFKPEEYGELIVAYRDGAPVHLNDIAKVVNGSENAYVQAWSEDQPGVNLVIFRQPGANIVETVDRIQAALPTLEAMLPAAVQVKVMIDRTQTIRASLHEVEITLLIAVLLVVAVMALFLRQLSATLIVSAVLGVSLIASFALMYVMGFSLNNLTLVAIVISVGFVVDDAIVVVENIHRHLEAGEGMREAAIKGAGEIGFTVVSISFSLVAAFIPLLFMGGVVGRLFKEFALTATSTILISVVVSLTLAPTLAALFMRAPKHPAHAQPGFGERLLGWYERGLRRALAHQKLMIGVFGLTLALAVVGYVFIPKGFFPVQDTGLVLGTSEAAADISFPDMVAKHKALAEIVAADPAVQTFSHSVGVSGNNQTIANGRFWIALKPRGQRDVSASGFIDRIRPKLLKIPGVVLYLRAGQDINLSSGPSRAQYQYVLKSNDGPTLNAWTQKLTDKLRSIPAFRDISNDLQLGGSITHINIDRSAAARFGLTATDVDQALYDAFGQRQINEFQTETNQYNVILELDTQQRGKAESLAYFYLRSPLTGEMVPLSALARFDAPTNGPLSIAHDGMFPAANLSFNLAPGVALGDAVRLLDQAKNEIGMPAAITGNFQGAAQAFQSSLKSQPWLILAALVAVYIILGVLYESFVHPLTIISTLPSAGLGALIMLWLLGQDFSIMALIGLVLLIGIVKKNGILMIDFAIDAQRNGGMTPQDAIFQACMTRFRPIIMTTLAALLGALPLMLGYGAGAELRQPLGIAVVGGLLVSQALTLFTTPVIYLWLERLLHRPAPRNGPAPTAALANTD	PGPT0029055_7	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029055-mexN-K21133	NA	NA
D1-36_01031	1158	mdtA_2		Multidrug resistance protein MdtA	ATGCACATTCAGAAAAAAACCGTCCTGCTCGTCGCGCTGTTGGTCGCCTTGGGCGCACTGGTCCTGTGGTTCTCGATGAAACCCGCCGCCACCAAACCTAGTGCTGCCAGCGCCGTACCGGTAAAGGTCGTGAGCGTGGTGGAAAAGGACGTGCCGCGCTTTGCCAGTGGGATCGGCACGGTGTTGTCGCTGCACAGCGTGGTGATCCGTCCGCAGGTCGACGGCATCCTTACCAAGCTGCTGGTCAAGGAAGGACAATTGGTCAAGAAAGGCGATCTGCTGGCAACCATCGACGACCGTTCCATCCGCGCCAGCCTCGACCAGGCCCGCGCCCAACTCGGTGAAAGCCAGGCACAACTGGCGGTGGCCCAGGTCAACCTCAAGCGCTACAAAGTGCTGAGTGTCGATGATGGCGTATCCAGGCAGACCTACGACCAGCAACAGGCGCTGGTCAACCAACTCAAGGCCACCGCCCAGGGTAACCAGGCGGCCATCGACTCGGCGCAGGTGCAACTGTCCTACACCCAAATCCGCTCGCCGGTGACTGGCCGTGTCGGCATTCGCAATGTGGATGAAGGCAATTTCCTGCGCACCAGCGACACCGAAGGGTTGTTCACCGTGACCCAGATCGACCCGATCGCCGTGGAGTTTTCCCTCCCGCAACAGATGCTCCCGACGCTGCAGCGACTGATCGCTGCCCCGGACCAGGCACTGGTCAAGGCCTACATCGGCGCCGACGGGGCCACCGGGCAATTGCTCGGCGAAGGCCGACTCAGCCTCATCGACAACCAGGTCAATACCAGCACCGGAACCCTGCGGGCCAAGGCCGAATTCAATAACGCCGCACAACGGTTGTGGCCGGGGCAGTTGGTCACGCTGAAAATCCAGACCGCCGTCGACAAGGGTGCGCTGGTGGTGCCGCCGACCGTCGTCCAGCGTGGGCTGGAGCAACCTTTCGTCTACCGGGTCAACGGCGACAAGGTGGAGAGCGTGCCGGTTGAAATGGTTTACCAGGACAGCGACATGCACATCATCAACGGCGTGAACGCGGGTGACCAACTGGTGAGCGACGGCCAGTCACGGCTCAAGCCAGGCGCCAGCGTCCAGGTGATCGGCGACCCGCCCGCCGTGGCGAAGACCGGGCAGGCGCAACCATGA	MHIQKKTVLLVALLVALGALVLWFSMKPAATKPSAASAVPVKVVSVVEKDVPRFASGIGTVLSLHSVVIRPQVDGILTKLLVKEGQLVKKGDLLATIDDRSIRASLDQARAQLGESQAQLAVAQVNLKRYKVLSVDDGVSRQTYDQQQALVNQLKATAQGNQAAIDSAQVQLSYTQIRSPVTGRVGIRNVDEGNFLRTSDTEGLFTVTQIDPIAVEFSLPQQMLPTLQRLIAAPDQALVKAYIGADGATGQLLGEGRLSLIDNQVNTSTGTLRAKAEFNNAAQRLWPGQLVTLKIQTAVDKGALVVPPTVVQRGLEQPFVYRVNGDKVESVPVEMVYQDSDMHIINGVNAGDQLVSDGQSRLKPGASVQVIGDPPAVAKTGQAQP	PGPT0029050_95	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029050-mexM-K21135	NA	NA
D1-36_01032	255			hypothetical protein	ATGACTTCCCCGACACCATCGTCCGCGGACGAACGCTTGCAAGGCGAACCGTCTGCCCAGACGGACAGCGATGTTTCCAGCGCTGAAGAAAAACCGGCGATCCCGGCGTTCAAGTTTCCCTTCAAGCCCGGCGAACTGGCGGCCGCCAAGGGGGCCGGGCAACAGCCTTGGTACAAGAATGGCGCAAAGAACGGCCATACCAAGACCCCCGGCGCCGCGCCTCCCGGTACGCGTCGCTCGATGGGCAAACGCTGA	MTSPTPSSADERLQGEPSAQTDSDVSSAEEKPAIPAFKFPFKPGELAAAKGAGQQPWYKNGAKNGHTKTPGAAPPGTRRSMGKR				NA	NA	NA	NA	NA
D1-36_01033	969	dmlR_4		HTH-type transcriptional regulator DmlR	ATGGACACCTTGCAAAACATGCGTGCGTTCAGCTGTGTTGCCGAAGCCGGCAGCTTCACCGCCGCCGCCGCGCAGCTCGACACCACCACGGCCAATGTCTCGCGTGCGGTTTCCAACCTGGAAGCCCATCTGCAAACCCGCCTGCTCAATCGCACCACCCGACGCATCGCCCTGACCGAGGCCGGCAAGCGCTACTTGCTGCGTTGCGAGCAGATCCTGGCGTACGTCGAAGAAGCGGAAGCGGAGGCCAGCGACGCCCATGCGCGTCCGGCCGGGCAATTGAAAGTGCACACCATGACCGGCATCGGCCAGCATTTCGTGATCGACGCCATCGCCCGGTATCGCAAGACCCATCCGGATGTCACCTTCGACCTGACCCTGGCCAACCGCGTGCCGGACATCCTCGACGAGGGTTACGACGTCTCGATCGTGCTCGCCAGCGAACTGCCCGATTCAGGCTTCGTCTCCCAGCGCCTGGGAATCACCTACAGCATCGTCTGCGCATCGCCCGCCTACGTGAAGGCCAGCGGCTGCCCGCAGAAACCCGCCGACCTGCTCAACCATGCCTGCCTGCGCCTGGTCAGTCCGGTCATTCCGCTGGAGAAATGGGTGTTCGACGGCCCGGAAGGCCAGGAAATGGTCACCGTCAACAATTCACCGTTCCTGGTGAATTCCGCCGATGCCATGAAAACCGCCATCACCAGCGGCATGGGCGTGGGTGTGCTGCCGGTGTACGCCGCCATCGAGGGTCTGCGCAACGGCACGCTGGTGCGGGTCATGCCCAACTACCGTTCCCAGGAACTGAACCTCTACGCCATCTACCCATCGCGCCAGTACCTGGATGCGAAGATCAAGACGTGGGTCGAGTACCTGAGGGGATCGTTGCCGGAGATTCTGGCGGCGCACCAGGCCGAATTGACGGCTTATGAATTGAGTGGAAGCCTGACGGGGCCACGGGTCGCTAACTGA	MDTLQNMRAFSCVAEAGSFTAAAAQLDTTTANVSRAVSNLEAHLQTRLLNRTTRRIALTEAGKRYLLRCEQILAYVEEAEAEASDAHARPAGQLKVHTMTGIGQHFVIDAIARYRKTHPDVTFDLTLANRVPDILDEGYDVSIVLASELPDSGFVSQRLGITYSIVCASPAYVKASGCPQKPADLLNHACLRLVSPVIPLEKWVFDGPEGQEMVTVNNSPFLVNSADAMKTAITSGMGVGVLPVYAAIEGLRNGTLVRVMPNYRSQELNLYAIYPSRQYLDAKIKTWVEYLRGSLPEILAAHQAELTAYELSGSLTGPRVAN				NA	NA	NA	NA	NA
D1-36_01034	1572			hypothetical protein	GTGCCGCGTTGCATCAGCAGAGAGCTGAAGACTCTCAGTGTTTGGGTTTTGACGTTAACCATCAGTGGTTGCATCGGCACGGGAGCAATTGCGCCGCAAGGCAAGGTGTTGTCGCCCGACCAATTGGCGACCGACGAGGCGATTCGCGAGGCTGCCCACGACGCTCATTGGCCCAACCGCCAGTGGTGGAAAGCCTATGGCGACCCGCAACTCGATCGTTGGATCGATTTGGCCGTGCCAGACAACCCGAGCCTGGCCATGGCCGCCGCGCGGGTCCGCCAGGCCAGGGCCATGGCCGGAATCGCCGAGGCCGCCGAGTCACTGCAGATCAATGGCGAGTCCACACTCAAGCGCCACAACTGGCCCACCGACCAGTTCTACGGCCCTGGCGGGCTGGCCGATACCACTACTTGGGACAATAACGCCGCCCTGGGGTTGAGCTACGCCCTGGACTTGTGGGGTCGCGAGCGCAATGCCAGCGAGCGGGCCGTCGACCTGGCCCATGTCAGCGTCGCCGAGGCGCGCCAGGCGCAGTTGGAATTGCAGAACAACATCGTGCGCGCCTATATCCAGTTATCGCTGCACTATGCCCAGCGCGACATCGTCGCTGCGACCCTAGGTCAGCAAGAGCAGATCCTCGAACTCGCACAGAAACGCCTGGATGGTGGCATCGGCACGCACTTCGAAGTCAGCCAAGCCCAAGGGCCATTGCCCGAAACCCATCGTCAACTCGACGCCCTCGACGAAGCCATCGCCTTGAGCCGCAATCAACTGGCCGCGCTGGCGGGAAAGGGACCGGGAGACGGTGCTCGCTTGCACCGTCCGACCCTGGCCTTGGGTGCTGCCTTGAAGCTGCCGTCCACGTTGCCCGCCGAACTGCTCGGCCAACGCCCGGATGTGGTTGCCGGACGCTGGCAAGTGGCAGCCCAGGCACGGGGTATCGATGTGGCCCGGGCCGGCTTTTACCCCAACGTCGATCTGGTAGGCAGCCTGGGCTACATGGCCACCGGCGGCGGGGCGCTGGAGTTCCTGACCGGCAAGAAACTCACCTACAACGTCGGCCCGGCGATCTCGTTGCCAATCTTCGACGGCGGTCGCCTGCGTTCGCAATTGGGCGAGGCGACCGCCGGCTACGATATTGCCGTGGCGCACTACAACCAGACGTTGGTTAACGCACTCAAGAGCATTTCCGACCAGTTGATCCGCCGCGAGTCGATGGACAAACAACAGGCTTTCGCCGCCGAGTCCGTTGCCGCGGCACAGCGCACCTATGACATTGCGCTGGTCGCGTTCCAGCGTGGGCTCACCGATTACCTCAACGTGCTCAATGCCCAAAGCCTGTTGTTCAAGCGACAACAGGTGCAACAACGGGTGGAGGCGGCGCGCCTGAGTGCCCATGCCGATCTGGTCACCGCGTTGGGCGGCGGGCTGGAGGCTGGCAGTGACATGCCTGTTGCAAGCAATGGCCCATGGCGAGGGAGCTTGCTCCCGCTGGGCTGCGAAGCGGCCCCGGTTTCCGCCCATGGGTGTTGCACACCCAAGCGCGAGCAAGCTCCCTCGCCACGATGTTGA	MPRCISRELKTLSVWVLTLTISGCIGTGAIAPQGKVLSPDQLATDEAIREAAHDAHWPNRQWWKAYGDPQLDRWIDLAVPDNPSLAMAAARVRQARAMAGIAEAAESLQINGESTLKRHNWPTDQFYGPGGLADTTTWDNNAALGLSYALDLWGRERNASERAVDLAHVSVAEARQAQLELQNNIVRAYIQLSLHYAQRDIVAATLGQQEQILELAQKRLDGGIGTHFEVSQAQGPLPETHRQLDALDEAIALSRNQLAALAGKGPGDGARLHRPTLALGAALKLPSTLPAELLGQRPDVVAGRWQVAAQARGIDVARAGFYPNVDLVGSLGYMATGGGALEFLTGKKLTYNVGPAISLPIFDGGRLRSQLGEATAGYDIAVAHYNQTLVNALKSISDQLIRRESMDKQQAFAAESVAAAQRTYDIALVAFQRGLTDYLNVLNAQSLLFKRQQVQQRVEAARLSAHADLVTALGGGLEAGSDMPVASNGPWRGSLLPLGCEAAPVSAHGCCTPKREQAPSPRC				NA	NA	NA	NA	NA
D1-36_01035	2199	aaeB_1		p-hydroxybenzoic acid efflux pump subunit AaeB	ATGTTGAGTGCTCCCTCCGTGACGTATTTACTCATGCTGTATCGCCTCGAATGGCGCCGTGGTTTCTTCGACTGGGCCCGCAGCGACGGCGTGACCTGGGTCTACATCTTCAAGGTCTTGCTGGCCGCGGTCCTCACGTTGTGGCTGGCGATGCGCCTGGAGCTGCCGCAGCCGCGCACGGCGATGATCACGGTGTTCATCGTCATGCAACCGCAGAGCGGGCAGGTGTTCGCCAAAAGTTTCTATCGCTTGCTCGGCACGTTGGCCGGCTCGGCGGTGATGGTTGCGTTAATCGCCTTGTTCGCCCAGCACACCGAGCTGTTCCTCGGGTGCCTGGCGATCTGGGTGGGCATCTGTTCGGCGGGGGCGGCGCGTTATCGCAACTTTCGCGCCTATGGTTTCGTGCTGGCCGGCTACACCGCGGCGATGATCGGCCTGCCGGCCCTGGCCCATCCCGAGGGTGCCTTCATGGCGGCGGTCTGGCGGGTGTTGGAAATTTCCCTGGGGATCCTCTGTTCCACCGCGGTCAGCGCCGCGATCCTGCCGCAAACCGCCAGTGCCGCCATGCGCAACGCGCTTTACCAGCGCTTTGGTGTGTTCGCCCTGTTCGTCACCGACGGCTTGCGCGGGCGCAGCCAACCCGAGGCATTCGAGGCGCGTAACGTCGGTTTCATCGCCGAAGCGGTGGGCCTGGAGGGCCTGCGCAGCGTGACGGTGTTCGAAGACCCGCACATGCGCCGGCGCAACGGCCGGCTCAGTCGCTTGAACAGCGAATTCATGGGCATCACTACCCGATTCAACGCCTTGCACCAATTGCTCGAAAGATTGCGCACTGGCACGGCGGACTCGGTGGCGAGCGCCATCGAGCCTGGATTGCAAACCCTCGCCGAACTGCTCGACGGTTTCAGCGCACGGCCCTTGATTGATGCTGATGCGGCGCGCTTGGCGGCCGCGTTGGCAGACTACAAGGCCGACTTGCCGGCCCAGGTCCGTCGACTGCGCGCGCAGTTTTTGGAGACGGATCCCAGTGACGCGCAGCAGTTGGATTTTCATACCGCCTACGAGCTGTTATATCGGTTTGTCGAAGACCTGCACGGCTACGCCCAGACCCACGCATCCCTGGCCGACCACCGCCACGAACGCGAACGCTGGGACGAGCCCTTCGTGTCGCAGACCAACGGGTTGGCGGCAGCCGCTTCCGGTTTTCGCGCTGCGTTCATCCTCTTGGTGCTGGGCAGCTATTGGGTCGCCACCGCCTGGCCGAGCGGCGCGACCATGACGATGATTGCCGCTGCCACCGTCGGGCTGTCCGCCGCCACGCCGAACCCCAAGCGCATGGCGTTCCAGATGGCCTGCGGCACGTTGTTAGGGGCGCTGATCGGCTTCGTCGAAATGTTTTTCGTCTTTCCATTGATCGACGGTTTTCCCTTGCTCTGCGTGATGCTGACGCCGGTGATCGTCGTGGGCTCGTTCCTCAGTTCCCGCCCGCAATACGCCGGAGTCGGGCTGGGGTTGCTGATCTTTTTCTGCACCGGCTCGGTGCCGGACAACCTGACGGTCTACAACCCGTACACCTTCATCAACGATTACATTGCGATGATCCTCGGCATGCTCGTATGTGCCGCCGCCGGCGCGATTATCCTGCCGCCCAACAGCCGCTGGCTGTGGCGTCGGCTTGAACAGGACCTGCGCGAACAGGTGGTGTTCGCCATCAGCGGCAAGCTCAAGGGCTTGGCCTCGGGTTTCGAGAGCCGCAGCCGGGACTTGCTGCACCAAGCCTACGGACTGGCGGCGGGGCAACCCCGAGTGCAAAGGGATTTGCTGCGCTGGATGTTCGTAGTGCTGGAAATCGGCCACGCAATCATCGAGTTGCGCAAGGAGCAGGCGACGCTACCGGTGCATCCGGCCTACGCCGAGAGCCAGCCATGGCGCCAGGCGATTCGGGGGATGGGGCGTGCGCTGGTGCGGCTGTTCCGCCAGCCCGGCCAGAACAATCTGGAGCGCGCGCTGGTGGCGGTGGACCACGCCATCAGCCGCGTGCAGGCCACCGACGAACCTTTCGCCCCGCATTTCGACACCTCGGCCCTGCGCCGGGTGAAAAGCTACCTGCACTTCATACGTACCTCTTTGCTCGACCCGCAATCGCCATTGGCCGGCCATGCAATGCCGCTTTCCCAGGAACCTGAACATGCCCCGTGA	MLSAPSVTYLLMLYRLEWRRGFFDWARSDGVTWVYIFKVLLAAVLTLWLAMRLELPQPRTAMITVFIVMQPQSGQVFAKSFYRLLGTLAGSAVMVALIALFAQHTELFLGCLAIWVGICSAGAARYRNFRAYGFVLAGYTAAMIGLPALAHPEGAFMAAVWRVLEISLGILCSTAVSAAILPQTASAAMRNALYQRFGVFALFVTDGLRGRSQPEAFEARNVGFIAEAVGLEGLRSVTVFEDPHMRRRNGRLSRLNSEFMGITTRFNALHQLLERLRTGTADSVASAIEPGLQTLAELLDGFSARPLIDADAARLAAALADYKADLPAQVRRLRAQFLETDPSDAQQLDFHTAYELLYRFVEDLHGYAQTHASLADHRHERERWDEPFVSQTNGLAAAASGFRAAFILLVLGSYWVATAWPSGATMTMIAAATVGLSAATPNPKRMAFQMACGTLLGALIGFVEMFFVFPLIDGFPLLCVMLTPVIVVGSFLSSRPQYAGVGLGLLIFFCTGSVPDNLTVYNPYTFINDYIAMILGMLVCAAAGAIILPPNSRWLWRRLEQDLREQVVFAISGKLKGLASGFESRSRDLLHQAYGLAAGQPRVQRDLLRWMFVVLEIGHAIIELRKEQATLPVHPAYAESQPWRQAIRGMGRALVRLFRQPGQNNLERALVAVDHAISRVQATDEPFAPHFDTSALRRVKSYLHFIRTSLLDPQSPLAGHAMPLSQEPEHAP				NA	NA	NA	NA	NA
D1-36_01036	201			hypothetical protein	ATGCCCCGTGAAATCGCCTTCCACGGCGTCTACATGCCCACCATGACCTTGATGTTCTTTATCGCCGCCGGCCTGGCCTGGGCGTTGGATCGGTTCCTGTCGGGGTTGGACCTGTACCGTTTTTTCTGGCACCCGGCGCTGCTGCGCCTGAGTCTGTTTACTTGTCTGTTCGGCGCGCTGGCGCTGACGGTCTACCGTTGA	MPREIAFHGVYMPTMTLMFFIAAGLAWALDRFLSGLDLYRFFWHPALLRLSLFTCLFGALALTVYR				NA	NA	NA	NA	NA
D1-36_01037	864	aaeA_1	COG1566	p-hydroxybenzoic acid efflux pump subunit AaeA	ATGAAAAAGTTTTTCAGCCTGCTGGCGACGTTGTTGATCGTGGCCCTGGCGCTGTGGATCGGCCGGACATTGTGGGTGCATTACATGAACACGCCCTGGACCCGCGACGGCCGGGTACGGGCCGACATCATCAATGTCGCTGCCGATGTCAGCGGGGAGGTGGTCGAGGTGCCGGTGCGCGACAATCAGTTGGTGAAAAAAGGCGACCTGTTGATGCGCATCGACCCCGAGCACTACCGCATCGCGGTGAAGCAGGCGCGCTCCCTGGTGGCGTCACGCAAGGCCACCTGGGAGATGCGCAAGGTCAATGCCCATCGGCGCGCCGATCTGGACAGCCTGGTGATCTCAAGGGAGAACCGTGACGACGCCAGCAACATCGCCGATTCAGCCCAGGCTGACTACCAGCACGCCCAGGCGCAGCTGGAGGCGGCCGAGCTGAACCTGGCCCGCACCGAGGTTCGGGCGGCGGTGGACGGATACGTCACCAACCTCAACGTGCACCGTGGCGACTACGCGCGCATCGGCGAGGCAAAAATGGCCGTGGTGGATATGAATTCGTTCTGGGTCTATGGCTTTTTCGAAGAGACCAAGCTGCCCAAGGTGCGGGTCGGGGATTCCGCGCAATTGCAGTTGATGAGTGGCGAGGTGCTCAAGGGCCACGTGGAAAGTATTTCCCGGGGGATCTACGACCGCGACAATCCCCAGAGCCGTGAATTGATCGCCGACGTGAACCCCACGTTCAACTGGGTACGCCTGGCCCAACGGGTGCCGGTGCGCATTCATCTGGACGAAGTGCCGGATGACGTGCTGCTGGCGGCGGGGATGACCTGCACCGTGGTGGTGGAGCCATACAGTCACCGCTAA	MKKFFSLLATLLIVALALWIGRTLWVHYMNTPWTRDGRVRADIINVAADVSGEVVEVPVRDNQLVKKGDLLMRIDPEHYRIAVKQARSLVASRKATWEMRKVNAHRRADLDSLVISRENRDDASNIADSAQADYQHAQAQLEAAELNLARTEVRAAVDGYVTNLNVHRGDYARIGEAKMAVVDMNSFWVYGFFEETKLPKVRVGDSAQLQLMSGEVLKGHVESISRGIYDRDNPQSRELIADVNPTFNWVRLAQRVPVRIHLDEVPDDVLLAAGMTCTVVVEPYSHR	PGPT0023615_86	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYBENZOIC_ACID_GALLATE_RESISTANCE,PGPT0023615-aaeA-K15548	NA	NA
D1-36_01038	825	hcaB_1		3-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenase	ATGCCCGTTGCGTTGATCACCGGATGTTCCAGCGGCATCGGCCGCGCCCTCGCCGACGCGTTCAAGGCCGGCGGTTACCAGGTCTGGGCCAGCGCGCGCAAGACCGAAGACGTGGCGCAGCTAAGCGCTGCCGGCTTCACAGCGGTGCAACTGGACGTCAACGACGGCCAGGCATTGGAGCAGTTGAGCGAGCGGATCAACCAGCAACACGGCGGCCTCGACGTGCTGGTGAACAATGCCGGCTATGGCGCCATGGGCCCGCTGCTGGACGGCGGCGTGCCGGCCATGCAGCGCCAGTTCGAAACCAACGTGTTCGCCATCGTCGGCGTGACCCGCGCATTGTTCCCCGTGCTGCGCCAGGCCAATGGGTTGGTGGTCAATATCGGCAGCGTGTCCGGTGTGCTGGTCACTCCATTCGCCGGCGCCTACTGCGCCTCCAAGGCAGCGGTACACGCCCTGAGCGATGCGTTGCGCATGGAACTGGCGCCGTTCGGCATCCGCGTGATGGAAGTCCAGCCCGGCGCCATCGCATCCAGCTTCGCCAAGAACGCCGGGCACGAGGCCGAACAGTTGATCAGTGAGCAATCGCCCTGGTGGCCGCTGCGCGACGGCATTCGTGCCCGCGCCAAGGCATCCCAGGACAACCCGACCCCGGCCAGCGAATTCGCCGCCGCGCTGCTCAAGGCTATCCAACAGCCCAAGCCACCCCGCCTGCTGCGCCTGGGCAATGGCAGTCGTGCATTGCCGCTGATGGCCGGCCTGCTGCCCAAGGGGTTACTGGAGAAAGGCTTGATGAAGCGGTTCGGTTTGGGTCGGTTACTGTAA	MPVALITGCSSGIGRALADAFKAGGYQVWASARKTEDVAQLSAAGFTAVQLDVNDGQALEQLSERINQQHGGLDVLVNNAGYGAMGPLLDGGVPAMQRQFETNVFAIVGVTRALFPVLRQANGLVVNIGSVSGVLVTPFAGAYCASKAAVHALSDALRMELAPFGIRVMEVQPGAIASSFAKNAGHEAEQLISEQSPWWPLRDGIRARAKASQDNPTPASEFAAALLKAIQQPKPPRLLRLGNGSRALPLMAGLLPKGLLEKGLMKRFGLGRLL				NA	NA	NA	NA	NA
D1-36_01039	465			hypothetical protein	ATGCTTATCGGCGTCGCGCTGGTCATCACCTGGCTCATCCTGCTATTACGCTACCCGGCCAAGGCCTTGCCGGTTTCCCTGGCGGCGTTCGTCGGGCTGGGGCTGGTCGCGGCGTGGGTGCTTTGGCAGGAAAACCGCGAAACCCGGCAACTGGATCGCCTGGATGTGCGCATTGCCTATGCGCCTGAGCGCTGCCCTGCTGATCGTCCGCTGTCGTTGAGCCTGAAAAATGGCAACGACGTGCCGTTGACCGAGCTGCACTGGCGTATAGCGGCCTATGCGCCCGGCGACACCATCAACCTGGCCGAAAACGTCTACAGCTCACCCCGCTATCGCGGCCCTGGCGAACTGCAACCAGGCGCCGACTGGCAAGACTGCCTGCCGTTGCCGCCGTTGCGCCCCGGCTATCGCCCGCAAACCTTGGAGTTTCGCGCCGAGCGGTTGCAGGGTAGTTTTTCCAACTGA	MLIGVALVITWLILLLRYPAKALPVSLAAFVGLGLVAAWVLWQENRETRQLDRLDVRIAYAPERCPADRPLSLSLKNGNDVPLTELHWRIAAYAPGDTINLAENVYSSPRYRGPGELQPGADWQDCLPLPPLRPGYRPQTLEFRAERLQGSFSN				NA	NA	NA	NA	NA
D1-36_01040	2871			hypothetical protein	ATGGGCATGGATTATCGAACGCCGACGTTAATCGCTGTCGACTCGCGAAGCTTGCCGGTTCGTTCGGTGGGCTATTGCCGCAACGTTGAGCATGGCCCTGCGCAGCGGCGGATCAACCGCAGCCGGTTCGATATGGCCGGGCGCGCGGTGAAACAGTGGGATCCCCGCTTGTGGGTTTTGCAACGAACGGATGAGACGGCGCCGGCCAATCTCTCGGCGATCTATTCGCTGTCCGGCGCCACGCTGCATACGGACAGCGTCGACGCGGGCATTCAGACGGGTCTGCCCGGTCTCGCTGGCGAAGGCTTGCTGGGTTGGGATGGACGAGGCACGCAGCGTGAGGTCTCACATGACAACCTGTTGCGTCCCGTGGCCGTGTTCGAGCACGGCAGCGGGCAGCCACGCCGGTGTACCGAACGCCTGACGTATGGCTATCCGGGCCAGGGCGACCAAGACCACAACCAGTACGGGCAATTGATCCGCCACGACGACACGGCGGGCACCTTGTCACTGGCATCCTTTGCCTTGACCGGGCAAAACCTCATGCAGGATCGCCGCTTCATCCTCGATGCGGATTTGCCCGACTGGCCGGAAGCCGAGGGCGATCGCGAGCACCTGCTGGAGCCGGGAGACGGCGCCGTTTCGACGTGGCGCGTTGGGCCGTTGGGTGATGTGCTGGAGCGGGTCGACGCCAGGGGCAATCGACACCGACAAGGCCTTACGCTCGATGGCCGGCTGTCCGGCAGCCAATTGCTGCTGGAGGGGCAAGACGATTGGCAGGCGTTGGTGAGCGACATTCGCTACGACGCCCAAGGACAAATCGAGCAGGAAACAGCCGGCAACGGCGTGCAGACCTCACTCACGTATGACCCAGAGGACGGACGCTTGTCGGAACGCCAAGCCAAGCGTGCCGACCAGGTGCTGCAACACTTGCGCTACGACTACGACCCAGTGGGCAATGTGCTGGGCATCGAAGACCAAATCCTGCCGATCCGCTACTTCGCCAACCAACGCATCGATCCGATCAGTCGCTTTGTCTACGACAGCCTCTATCAACTGATCGAAGCTACGGGGTGGGAGGCGGGAACGGCCAATCAGGGCCCCGATTCGCTGAGACGCAACGACCCGGCGGCGGTCAGCAACTACCGACAGACCTACCGCTACGACGAGGCCGGCAACCTGTTGGAGCTGACTCACGTCGGCGCCCAAAGCCATGGCCGGGAAATCAAAGCGGCTCGCTACAGCAATCGCTGCCTGCCTTACCGCAACGGCGTGCCGCCCACCGAGGACGAAATCGCCGCCGCGTTCGATGCACGGGGCAATTGCCTGGAGCTGGACGCCGCTCGGTTCCTGGCCTGGGATCTGCGCAACCAGTTGAGGTCGGTCACCCCCATCGAGCGCGACTCGGGGCTCAACGACAGCGAAGCGTATGTCTACGACGGCGGCGGACAACGGGCGCGCAAACTTCGCACCTTGCAGACCGGCACCCGCACGCTGGCTGCCGAGGTGCGATATCTGCCGGGGCTGGAACTGCGTGTCGACAGTGGAACGGGCGAGGCATTGCAAGTGATCGTCGCCCAGGGCGGGCTCAGCGAGGTTCGGGTCCTGCATTGGGAAAGTACGCCGCCGACCGGGGAGAACGACGCTTACCGGTTCAGCGTGGCCGATCATCTGGGCTCGGTCGGCCTGGAGGTCGCCCTTGATGGGCGGATTATCAGCCGTGAGCATTTTTATCCTTTTGGTGAAACGGCTTATCTGGCGGGAGAAGATGCGATCGAGGTGGGGTACAAGACGGTTCGTTATTCGGGCAAGGAGCGGGATGCGACGGGGCTTTATTATTATGGTTTTCGTTATTACCTCCCTGGGTTGCAGCGGTGGATGAATCCCGATCCGGCGGGGACGGTGGATGGCTTGAACCTGTTTGTGATGGTGGGTAACAATCCGCTGACATTTGTGGATACGGATGGGCACATAAAGGAAGAGGCGGCGAGTGATAAAGGAGGCACAACACCGTTTATACCCAGTGCTCCCCCGTTTATGCCGCTATCAGTTATTCCCCAACCGCCTTCTGCGCCGGGGCCTCCTCCGCCACCGCCTTTAGCGCCGGGCCCTCCGCCCCCACCTGCGGCAGGCGCGTCATCCGCTTTATCAGTGGCTCGTCCACCGGAGCAGGGCGAAATATTTTCGCCCATTAACTTAGCGCCTCCTGAGGTGCGGGATTATGAGCCCACAGCTTCGTGGAACGTAGAAAATTATGTGGATCTTGCTGAGCTTTCCAGGAAGATAAGCGATAGGTTCAAGCTGCCAAGACAGGTAATTGCCTTAGAGCAAGTTTCACAGCATAGACTTAATACATTGATGAGTGCGGATAGGCGAATGAGTCCAGACGGAGAGTTTAATGAGTTTGGAGCTCCCGCATGGACGGCACCCGACGGGCGGATTTATATGGTGGCGGCCGCACCGGATTATTCGAATAACGGTCAGATTGATGCGGATAAAATCATATCGACCATCATTCACGAAAGTCTGCATTTTTCCTCCTTTGAACATGTAGGTCTTCAGGCGGTAACTGATATGACTGTGGCGCACGGTAATTATGATGAATACGTAACGGACTATTTCGCCAATGAGATTTTTACTGAAATGTTTCCCGGTAGAGTCTACAAGACCGGCTACTTTACAAGTGGGAATAATGGATACCTGCATTGGGGCGGTAACATGGCTAAATATATGATTGACTCTGGCCATCTAACGCGTGCCGACTTGGAAAATGGGTACTTTCGAACAGGGAAGCTGAAAAAATTGTCAGCTTCATCAATGTCAAAATGGCAAGACTTTGCCAAGCAGAATCGAAGACCTCTGAGAATGTGA	MGMDYRTPTLIAVDSRSLPVRSVGYCRNVEHGPAQRRINRSRFDMAGRAVKQWDPRLWVLQRTDETAPANLSAIYSLSGATLHTDSVDAGIQTGLPGLAGEGLLGWDGRGTQREVSHDNLLRPVAVFEHGSGQPRRCTERLTYGYPGQGDQDHNQYGQLIRHDDTAGTLSLASFALTGQNLMQDRRFILDADLPDWPEAEGDREHLLEPGDGAVSTWRVGPLGDVLERVDARGNRHRQGLTLDGRLSGSQLLLEGQDDWQALVSDIRYDAQGQIEQETAGNGVQTSLTYDPEDGRLSERQAKRADQVLQHLRYDYDPVGNVLGIEDQILPIRYFANQRIDPISRFVYDSLYQLIEATGWEAGTANQGPDSLRRNDPAAVSNYRQTYRYDEAGNLLELTHVGAQSHGREIKAARYSNRCLPYRNGVPPTEDEIAAAFDARGNCLELDAARFLAWDLRNQLRSVTPIERDSGLNDSEAYVYDGGGQRARKLRTLQTGTRTLAAEVRYLPGLELRVDSGTGEALQVIVAQGGLSEVRVLHWESTPPTGENDAYRFSVADHLGSVGLEVALDGRIISREHFYPFGETAYLAGEDAIEVGYKTVRYSGKERDATGLYYYGFRYYLPGLQRWMNPDPAGTVDGLNLFVMVGNNPLTFVDTDGHIKEEAASDKGGTTPFIPSAPPFMPLSVIPQPPSAPGPPPPPPLAPGPPPPPAAGASSALSVARPPEQGEIFSPINLAPPEVRDYEPTASWNVENYVDLAELSRKISDRFKLPRQVIALEQVSQHRLNTLMSADRRMSPDGEFNEFGAPAWTAPDGRIYMVAAAPDYSNNGQIDADKIISTIIHESLHFSSFEHVGLQAVTDMTVAHGNYDEYVTDYFANEIFTEMFPGRVYKTGYFTSGNNGYLHWGGNMAKYMIDSGHLTRADLENGYFRTGKLKKLSASSMSKWQDFAKQNRRPLRM				NA	NA	NA	NA	NA
D1-36_01041	1452	algA	COG0662	Alginate biosynthesis protein AlgA	ATGATTCCGGTGATCTTGTCAGGTGGTAGTGGCTCACGTCTTTGGCCGCTTTCGCGCAAGCAATTCCCTAAACAGTTCCTGGCCCTGACCGGCGAACACACCCTGTTCCAACAGACCCTCGAGCGCCTGGTGTTCGAAGGCATGGACACGCCGATCGTGGTCTGCAACAAAGAGCACCGTTTCATCGTCAACGAGCAGCTGTCCGCCCAGAATCTGGAAGCCCAGCGCATCCTGATGGAACCGTTCGGTCGCAACACCGCGCCGGCCGTGGCCCTGACCGCGATGATGCTGGTCAACGAAGGCCGCGACGAACTGATGCTGGTACTGCCGGCGGACCACGTCATCGAGGATCAGAAAGCCCTGCAACGCGCATTGGCCCTGGCCACCGTGGCGGCCGAGCGTGGCGAAATGGTGCTGTTCGGCGTCCCGGCCACCAAGCCGGAAACCGGCTACGGCTACATCAAGTCGACCAACGACGCCTTGCTGCCTGAAGGCGTGAGCCGCGTGTCCCACTTCGTCGAAAAACCCGACGTCAAGCGCGCTACCGAGTTCGTCCAAGCCGGCGGTTACTTCTGGAACAGCGGCATGTTCCTGTTCCGCGCCAGTCGCTTCCTCGAAGAGCTGAAAAAACACGATCCGGACATCTACGACACCTGCCTGCTGACCCTTGAGCGCAGCGAGCAGACCGCCGACACCATCACCTTCGACGACGCCACCTTCGCCTGCTGCCCGGACAACTCCATCGACTACGCGGTAATGGAAAAAACCCAGCGCGCCTGCGTAGTGCCACTGTCGGCGGGCTGGAGCGACGTCGGTTGCTGGGCATCGCTGTGGGAAGTCAATGCCAAAGACACCAACGGCAACGTCACCAAGGGCGACGTCGTGGTCCAGGACAGCCGCAACTGCATGATCCACGGCAACGGCAAGCTGGTGTCGGTGATCGGGCTGGACAACATCGTCGTGGTCGAGACCAAGGACGCCATGATGATCGCCCACAAGGACAAGGTCCAAGGCGTCAAGCAGCTGGTCAACACCCTCAATGCCCAGGGCCGCACCGAAACCCAGAACCACTGCGAGGTCTATCGTCCGTGGGGTTCCTATGACTCGGTGGACATGGGCGGTCGCTTCCAGGTCAAGCACATCTCGGTCAAGCCGGGCGCGTGCCTGTCGCTGCAGATGCACCACCATCGCGCCGAACACTGGATCGTGGTCAGCGGCACCGCTGAAGTGACCTGCGACGAGAACGTGTTCCTGCTGACCGAAAACCAGTCGACCTACATCCCGATCGCGTCGGTTCACCGCCTGCGCAACCCGGGCAAGATCCCGCTGGAAATCATTGAAGTGCAGTCTGGTAGCTACCTGGGCGAAGACGACATCGAGCGCTTCGAAGATATCTACGGTCGTTCCACCCCACTGGAGCGCGGCGTGTCGGTGAAGACTATCGCCCAATAA	MIPVILSGGSGSRLWPLSRKQFPKQFLALTGEHTLFQQTLERLVFEGMDTPIVVCNKEHRFIVNEQLSAQNLEAQRILMEPFGRNTAPAVALTAMMLVNEGRDELMLVLPADHVIEDQKALQRALALATVAAERGEMVLFGVPATKPETGYGYIKSTNDALLPEGVSRVSHFVEKPDVKRATEFVQAGGYFWNSGMFLFRASRFLEELKKHDPDIYDTCLLTLERSEQTADTITFDDATFACCPDNSIDYAVMEKTQRACVVPLSAGWSDVGCWASLWEVNAKDTNGNVTKGDVVVQDSRNCMIHGNGKLVSVIGLDNIVVVETKDAMMIAHKDKVQGVKQLVNTLNAQGRTETQNHCEVYRPWGSYDSVDMGGRFQVKHISVKPGACLSLQMHHHRAEHWIVVSGTAEVTCDENVFLLTENQSTYIPIASVHRLRNPGKIPLEIIEVQSGSYLGEDDIERFEDIYGRSTPLERGVSVKTIAQ	PGPT0017875_568	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0017875-algA|xanB|rfbA|wbpW|pslB-K16011	NA	NA
D1-36_01042	666	algF		Alginate biosynthesis protein AlgF	ATGACTTTCAACACTACTCCTCGTCGTCTCGCTGCTCGCTCCTTCAAGGCCGTTGCCCTGGTCGCCAGCATGAGCGCCCTTTCCTTCTCAGCCTTCGCCGGTGACTCGGCCCTGTATGGCCCTGTCGCGCCGAAAGGCTCGAGCTTCGTGCGGGTCTACAACGCCAGCAACGCCGAAGTCAGCGCCACCGTCGGCAGCACTAACATCAGCGACGTCGCCCCCTTGGCCAGCAGTGACTTCAGCTTCATGCCTGGCGGCGACTACAGCGCCAAGGTAGGCAGCCAGACCGTACCGGTTAAACTGGCCTCCGATCACTATTACACCCTGGTCAACAACGCCAGCGGCCAGCCACAACTGATCGAAGAACCACCGTTCAAGAACAAGCAGAAATCCCTGGTCCGCGTACAGAACCTCAGCGACAAGAAGCTGACCCTCAAGACCGCCGACGGCAAGACCGACGTGGTTAAGGAGGTAGCGGCCAAGGGCCGTGGCGAACGTGAAATCAACCCGGTGAAAGTGTCCCTGGCTCTGTACGAAGGCGACAAGAAAGTCGGCGATGTGAAGCCAGTAGCCCTTGAGCGCGGCGAAGCGGCCGTACTGTACGTGACTGGTTCTGGCAGCAGCCTGTCGCCGGTCTGGGTCAAGCGCCCGGTGTCCACCCGCTGA	MTFNTTPRRLAARSFKAVALVASMSALSFSAFAGDSALYGPVAPKGSSFVRVYNASNAEVSATVGSTNISDVAPLASSDFSFMPGGDYSAKVGSQTVPVKLASDHYYTLVNNASGQPQLIEEPPFKNKQKSLVRVQNLSDKKLTLKTADGKTDVVKEVAAKGRGEREINPVKVSLALYEGDKKVGDVKPVALERGEAAVLYVTGSGSSLSPVWVKRPVSTR	PGPT0026110_54	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026110-algF-K19296	NA	NA
D1-36_01043	1176	algJ		putative alginate O-acetylase AlgJ	ATGACCCGCTCATTACGCATCTTCTACGTCGCGCTGTTTATGTTGATCCTGACGGCGCTGGGTATCTGGTCGATGCGCAGCTTCCTAGGCTTCAGCACCAACCCCGATGCGACCGTGCTCAACGGTCGCTGGGCCAAGGCCGTGGAAACGCATTACGACGATGAATTCCCGATCAAGCGCCTGGGCACCAACATCTGGGCCGCGCTGGACTACAAACTGTTCAACGAAGGCCGCAAGGGCGTGGTCCTGGGCCGCGACCAGTGGCTGTTCAGCGACGAAGAGTTCAACCCGATCGTCAACGAAGAGCAGAACCTGCAAGGCAACTACGCGCTGATCGAAGGCGTGCGCCAGAAGCTCAAGGAACAAGGCATCACCCTGGTCATGGCGATCGTGCCCGCCAAGGCGCGGCTGTATCCCGAGCACCTGGGTGAAGTGAAGCCGTCGAGCATCCACGCCAACCTGTACCAGGACTTCCACGCCCGCGTGGCGACGGACAAGATCCTCGCTCCTGATCTGCTCGGCCCGCTGCAACAGGCCAAGCAGAGCGGCCAGCAGGTGTTCCTGCGCACCGACACTCACTGGACGCCGGAAGGCGCGCAAATTGCCGCGGAACATCTGGCCAAAGCCATTGCCGAACGCACACCACTGAATGGCGAACCACAGCGTTTTGTCACCGAGCCTGCGGAGAAGATCATCCACAAGGGCGACCTGCGTCAGTTCCTGCCGCTCGATCCCCTGTTCGAAAACCTGATGCCGGCCCAGGAGCCGCTAGTCAAGCGCAACACCCGCGAAGCCGACGACCAGCCGGCCAGCGATGACGCGTTGTTCGCCGATGCCCAGGTGCCCGTGGCCCTGATCGGCACCAGCTACAGCGCCAACCCCAACTGGAACTTCGTCGGTGCTCTCAAGCAAGCGCTGCACAGCGACGTCGTCAACTACGCCGAAGACGGCCATGGCCCGATTCTGCCGATGCTCAGCTACCTCAAGAGCGACGCCTTCAAGAACAGCCCGCCACAGGTGCTGATCTGGGAGTTTCCTGAACGTTATCTGCCCGTGAACAACGAGATCGGCGACGCCGATCCGCAATGGGTCGCCGAACTCAAGCAAGCCGGCACCCGCCAACAGAACGTAGCTGCTAACACACAATCCGAGACGCCCGACCGGGCGCAAAACTGA	MTRSLRIFYVALFMLILTALGIWSMRSFLGFSTNPDATVLNGRWAKAVETHYDDEFPIKRLGTNIWAALDYKLFNEGRKGVVLGRDQWLFSDEEFNPIVNEEQNLQGNYALIEGVRQKLKEQGITLVMAIVPAKARLYPEHLGEVKPSSIHANLYQDFHARVATDKILAPDLLGPLQQAKQSGQQVFLRTDTHWTPEGAQIAAEHLAKAIAERTPLNGEPQRFVTEPAEKIIHKGDLRQFLPLDPLFENLMPAQEPLVKRNTREADDQPASDDALFADAQVPVALIGTSYSANPNWNFVGALKQALHSDVVNYAEDGHGPILPMLSYLKSDAFKNSPPQVLIWEFPERYLPVNNEIGDADPQWVAELKQAGTRQQNVAANTQSETPDRAQN	PGPT0026130_121	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026130-algJ-K19295	NA	NA
D1-36_01044	1566			hypothetical protein	ATGGTATTTTCATCCAATGTGTTCCTGTTCCTGTTCCTGCCGATCTTTCTCGGCTTGTACTACCTGAGCGGGCAACGCTATCGCAACCTGCTGCTGCTCATCGCCAGCTATGTGTTCTATGCCTGGTGGCGCGTGGACTTCCTGGCCCTTTTCGCCGGTGTCACCCTGTGGAACTACTGGATCGGCCTGAAAGTCGGTGCCGCCGGCGTGCGCACCAAGCCGGCCCAGCGCTGGCTGCTGCTCGGCGTGGGCGTGGACTTGGCCATCCTGGGCTACTTCAAGTACGCCAACTTCGGCGTGGACAGCCTCAACGCGATCATCACCAGCTTCGGGCTCAACCCGTTCATCCTGACCCACGTGCTGCTGCCGATCGGCATCTCGTTCTACATTTTCGAGTCCATCAGCTACATCATCGACGTGTATCGCGGTGATACGCCGGCCACGCGCAACCTGATCGACTTCGCGGCATTCGTGGCGATCTTCCCGCACTTGATCGCAGGCCCCGTGCTGCGTTTCCGTGACCTGGCCGATCAGTTCAACAACCGCACCCATACGCTGGACAAATTCTCCGAAGGCTGCACGCGCTTCATGCAGGGCTTCATCAAGAAAGTCTTCATCGCCGATACCCTGGCGGTGGTGGCGGACCACTGCTTCGCTCTGCAGAACCCGACCACGGGCGATGCCTGGCTTGGCGCCCTGGCGTACACGGCGCAGCTGTACTTCGACTTCTCCGGCTACAGTGACATGGCCATCGGCCTGGGCCTGATGATGGGTTTCCGCTTCATGGAAAACTTCAAGCAGCCCTACATCAGCCAATCGATTACCGAGTTCTGGCGTCGCTGGCACATCAGCCTGTCGACCTGGCTGCGCGATTACCTCTACATCACCCTGGGCGGGAACCGCAAAGGCACGCTGATGACCTATCGCAACCTGTTCCTGACCATGCTGCTCGGTGGTCTGTGGCACGGCGCGAACATCACCTACGTGATCTGGGGCGCGTGGCACGGGATCTGGCTGGCGATCGAAAAAGCCGTGGGCATCGACACCAACCCGCGCAGCATCAACCCGATCCGCTGGGCACTGACGTTCCTGCTGGTGGTGATGGGCTGGGTGATCTTCCGCGCCGAGAACCTGCACGTCGCCGGCCGCATGTACGGCGCGATGTTCAGCTTCAACGACTGGTCGCTGTCGGAACTGACCCGCGCCAACCTCACCGGTTTGCAGATCGCCACGCTGGCGGTGGCCTACATCACCCTCGCCTTCTTCGGCCTGCGGGACTTCTACACCAACCGTCCGCCGGTCAAGGCCAAGCCTGAGGTGAGCGCCGAAGCCAATGGTCCGGCCACCGCGCAACCGGGGCTGATCAAAGCCGTACCCGGCGACAACCCGTCGACCATCCATGAACCCGGCTACACCGTGGGCGTCGAAGCCCAGGTGCAACCGGCCTACTGGACCGTGGACTGGTCACGCTATGTGATGCGCGCCCTGGTACTGCTGTTGTTCATCGCCTCGATTCTCAAACTGTCGGCGCAAAGCTTCTCGCCGTTCCTTTACTTCCAGTTCTGA	MVFSSNVFLFLFLPIFLGLYYLSGQRYRNLLLLIASYVFYAWWRVDFLALFAGVTLWNYWIGLKVGAAGVRTKPAQRWLLLGVGVDLAILGYFKYANFGVDSLNAIITSFGLNPFILTHVLLPIGISFYIFESISYIIDVYRGDTPATRNLIDFAAFVAIFPHLIAGPVLRFRDLADQFNNRTHTLDKFSEGCTRFMQGFIKKVFIADTLAVVADHCFALQNPTTGDAWLGALAYTAQLYFDFSGYSDMAIGLGLMMGFRFMENFKQPYISQSITEFWRRWHISLSTWLRDYLYITLGGNRKGTLMTYRNLFLTMLLGGLWHGANITYVIWGAWHGIWLAIEKAVGIDTNPRSINPIRWALTFLLVVMGWVIFRAENLHVAGRMYGAMFSFNDWSLSELTRANLTGLQIATLAVAYITLAFFGLRDFYTNRPPVKAKPEVSAEANGPATAQPGLIKAVPGDNPSTIHEPGYTVGVEAQVQPAYWTVDWSRYVMRALVLLLFIASILKLSAQSFSPFLYFQF	PGPT0026125_214	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026125-algI-K19294	NA	NA
D1-36_01045	1137	algL		Alginate lyase	ATGACCAGAACCATGCGCACCCGAACGTTGAAAACGCTGTTGGCTCCGTCCCTGCTGACCTTGGCGATGTTCGCCGGGGCCACGCAGGCCGCGGCGCCACTGCGCCCGCCACAGGGCTACTTCGCACCGATTGAAAAGGTCAAGGAAGGCGACGGCGGCAAGGGCTGCGAGGCAGTGCCGACGCCATACACGGGCTCGCTGCAGTTTCGCAGCAAATACGAGGGCTCCGACAAAGCTCGCGCAACGCTGAACCTGCAATCGGAAAAAGCCTTCCGCGACAGCACCGCCGACATCACCAGGATCGAGCGCGGCGTGAGCAAACAAGTCATGCAGTTCATGCGCGACGGTCGTCCCGAGCAGCTTGAATGCACGCTGAACTGGCTGACCGCCTGGGCCAAGGCCGATGCGCTGATGTCCAAGGACTTCAACCACACCGGCAAGTCCATGCGCAAATGGGCCTTGGGCAGCATGGCTTCGGCCTATGTGCGCCTGAAGTTCTCCGAGTCGCGCCCGCTGGCGAACCATCAAGAACAGGCGCAACTGATCGAAGCCTGGTTCAGCAAGATGGCCGACCAGGTGGTCAGCGATTGGGACAACCTGCCGCTGGAGAAAATCAACAACCATTCGTACTGGGCCGCCTGGTCGGTCATGGCCACGTCCGTGGCGACCAACCGTCGCGACCTGTTCGACTGGGCCGTCAAGGAATACAAGGTCGGCGCCAACCAGGTTGATGCCGAGGGCTATCTGCCCAACGAACTCAAGCGCAAGCAACGCGCCCTGTCCTACCACAACTACGCCCTGCCACCGCTGGCGATGATCGCCAGCTTCGCCCAGGTCAACGGCGTGGACCTGCGCCAGGAAAACAACGGTGCCCTCAAGCGACTGGGTGAACGAGTGCTCGCCGGGGTGAAAGACCCGGACATCTTCGAAGAGAAAAACGGCGAAGAACAGGACATGAAGGATCTGAAGATCGATTCGAAATTCGCCTGGCTCGAACCGTTCTGCAGCCTCTACACCTGCTCCGAGGACGTGCTGGAACGCAAGCACGAAATGCAACCGTTCAAGACCTTCCGCCTCGGCGGGGACTTGACCCGGGTGTATGACCCTTCGCGGGAGAAAGGCGAGAAAGGAAGCTGA	MTRTMRTRTLKTLLAPSLLTLAMFAGATQAAAPLRPPQGYFAPIEKVKEGDGGKGCEAVPTPYTGSLQFRSKYEGSDKARATLNLQSEKAFRDSTADITRIERGVSKQVMQFMRDGRPEQLECTLNWLTAWAKADALMSKDFNHTGKSMRKWALGSMASAYVRLKFSESRPLANHQEQAQLIEAWFSKMADQVVSDWDNLPLEKINNHSYWAAWSVMATSVATNRRDLFDWAVKEYKVGANQVDAEGYLPNELKRKQRALSYHNYALPPLAMIASFAQVNGVDLRQENNGALKRLGERVLAGVKDPDIFEEKNGEEQDMKDLKIDSKFAWLEPFCSLYTCSEDVLERKHEMQPFKTFRLGGDLTRVYDPSREKGEKGS	PGPT0019415_305	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0019415-algL-K01729	NA	NA
D1-36_01046	1452	algX		Alginate biosynthesis protein AlgX	ATGAACCCACACATGATCAAACTTCTGGGCCTGTCCGCCCTGACCGCCGGCATTCTCGCCGCCGCAAGCGGCGCGCGCGCCGATGAAGTCAAAGCACCGACCTTTACCGCCGAACCTTGCTGCAACCTGTGCCCGGCTGCCCATGACGCGAAAAACTACACCACGCGCTACCAGCAGAACTTCACCACGCTGGTCCAGGCCCAGGGCGATTGGCTGTTCCGTACCCAGGAAGACCTGCGCACGGAGTTCAACACCACGCCGGCCGGCTACAAGCGCATGCAGCAGTTGCACGATGCGTTCAAGAAAAAAGGCGTAGAACTGGTGCTTGTCTACCAGCCGACCCGGGGCCTGGTGAACCGCAACAAGCTCAACCCGCAGGAAAAGGCCGCCTTCGACTACGAGAAGGCGCTGACCAACTACAAAACCATGCTCGGCCGTTTCGCCCAGATGGGTTACGTGGTGCCGGACCTGTCGCCGCTGACCAACGAAAACCTGCCCGAAACCCTGCCGGCCCATGATTTCTACTTCCGTGGCGACCAGCACTGGACCCCGTACGGCGCCCAGCGCACGGCGAAGATCGTGGCCGAGAAGGTCAAGCAGATCCCGGCATTCGCCGACATTCCCAAGCGTGAATTCGAGACCAAGAAGTCCGGCCGCATGGGCAAGACCGGCACCCTGCACAACATGGCCGGGCAACTGTGTGGCACCAGCTATGCGATCCAGTACATGGACCAGTTCACCACCGAGCCCAAGGGCGAGGCGGGCGATGGCGACCTGTTCGGCGATGCGGGCGACCCGCAAATCACGCTGGTGGGCACCAGTCACAGCGGCAAGAACTACAACTTCGCCGGGTTCCTGCAAGAAGCCATCGGCGCCGACATCCTCAACGTAGCCTTCCCGGGCGGCGGTTTCGAGGGTGCGATGATCCAGTACCTGGGCAGCGAAGAGTTCCAGAAGAACCCACCGAAGATCCTCATCTGGGAATTCTCGCCGCTGTATCGCCTGGACCAGGAAACCATCTACCGCCAGATGATGGCGCTGCTGGACAACAACGGTTGCGAAGGCAAGCCGGCATTGATGAGCAGCAAAGCCAAGCTCAAGCCGGGCAAGAACGAATTGATGGTCAACAGCAAGAATATGGACCTGCGTAACGGCAGTCACCAGATCGACATCCGCTTCGCCGACACCTCGGTGAAAACCTTGCAAGCCACCCTCTGGTACATGAATGGGCGCCACGAGGACATCAAGATCGAAAAACCGAACACCTCCGAAACCGACGGACGTTTCGCCTTCCAATTGCGCACCGACGAAGACTGGGCCTCGCAGAACCTGCTGGCTGTCGAAGTCCAGGGACCCGAAGCCGGTAAAGAACCACTGCAAATCGAAGCGAAAGTCTGCAAACGCAATGCATCTCCGCAAGCCGAGCAACAAACGGCTCAAATCGGACAATGA	MNPHMIKLLGLSALTAGILAAASGARADEVKAPTFTAEPCCNLCPAAHDAKNYTTRYQQNFTTLVQAQGDWLFRTQEDLRTEFNTTPAGYKRMQQLHDAFKKKGVELVLVYQPTRGLVNRNKLNPQEKAAFDYEKALTNYKTMLGRFAQMGYVVPDLSPLTNENLPETLPAHDFYFRGDQHWTPYGAQRTAKIVAEKVKQIPAFADIPKREFETKKSGRMGKTGTLHNMAGQLCGTSYAIQYMDQFTTEPKGEAGDGDLFGDAGDPQITLVGTSHSGKNYNFAGFLQEAIGADILNVAFPGGGFEGAMIQYLGSEEFQKNPPKILIWEFSPLYRLDQETIYRQMMALLDNNGCEGKPALMSSKAKLKPGKNELMVNSKNMDLRNGSHQIDIRFADTSVKTLQATLWYMNGRHEDIKIEKPNTSETDGRFAFQLRTDEDWASQNLLAVEVQGPEAGKEPLQIEAKVCKRNASPQAEQQTAQIGQ	PGPT0026140_26	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026140-algX-K19293	NA	NA
D1-36_01047	1593	algG		Mannuronan C5-epimerase	ATGAACCGCTACCTCAGGAACAGCCAGGCGATGAAGGGTTCGATCAGCCTGTTGGCCGCAGCGATGCTGCTGGCCGGCTCATCGGCGTTCGCCAACGTTGAACCGGCGGTCAAGCCGGGCAACGTGGTCAAGGAGCTGCAACGAGCCAAGACCTACACCGTCAGCAGCGCGCCGACCGCGCCGCTGGAACTGGCCGCGCCAACCCTGCCCGACCTCAAGGGTTATACCGCCGAAGCGGTCGCGGCGAAGATCGTGCGCAGCAAGCCCGGCAAAGTCAGCGTGCGCCGGATGATGCAGGAAAACGCCTTGAAGGACTTCATCGGCGGCGACAACAAGATGGCCGAGTGGGTGGTGCGTCAGCACGGCATCCCGCAGGCCATCTTCATCGACGACGGTTACATGAACCTCAAGGACCTGGTCAAGAAAGTGCCCAAGCAGTACCTCAAGGAAACGTCGCCAGGGGTGTTCCTGGCGCGGATCCCGATTGTCGTGGGCGAAAAAGGCATCCTGGAAATCGACAAGCAGACCCAGGAACTGCGCCTGTCCCAGGAGGGCGGCTCGTTCCTGGTCAACGATGGGCACATGTTCATCCGCGACACCAAGGTCACCGGCTGGCGCGAAAAGGACAACGGCCCCGCCACGTTCCGTTCGCCCAACGAGTTCCGTCCGTTCCTGCTGTCCTGGGGTGGTACCGAGACCTACATCGTCAATACCAAGATGGCCAGCTTCGGCTACGCCAACAGTAAGTCGTACGGCGTGAGTATTTCCCAGTACACGCCGAACATGGCCAAGGTCCTCAAGCGCCCGGAACCGACCGGCTGGATCATCGGTTCCGAGTTCTCGGACATGTGGTACGGCTTCTACTGCTACGAAACGGAAGACTTTGTGATCAAGGGCAACACCTACAAAGACAACATCGTCTACGGCATCGACCCCCACGACCGTTCCCATCGGCTGATCATTGCCGACAACACCGTTTACGGAACCAAGAAGAAGCACGGGATCATTATTTCCCGTGAGGTCAATGACAGCTTCATCTTCAACAACCGCAGCTACGACAACAAGCTCTCGGGCGTGGTGATCGACCGCAACAGTGTGAACAACGTGATCGCCTACAACGAGATCTACAAGAACCACACCGACGGCATCACGCTTTATGAGAGTGGTGACAACCTGTTGTGGGGCAACAAGGTGATCAGCAACCAGCGCCACGGCATCCGGATTCGTAACAGCGTAAACATCCGACTGTACGAAAACCTGTCCATGGCCAATGGCCTGACCGGTCTGTATGGCCACATCAAAGACCTGTCCGACACCGACCGGGACATCAAGCTCGACCCGTTCGACACCGAGGTGTCGCTGATCGTGGTCGGCGGCGAACTGGCCGGCAACGGCAGCGGCCCGCTGTCCATCGACTCGCCTTTGAGCGTCGAGCTGTACCGCGTGTCCATGCTCGCGCCGACCAAATCCAGCGGCATCAGCTTCACGGGGATCCTGGGCGAACGCCAGGACGAAATCCTCGACCTGCTGGTGCGCCAGCAAAAAGCCGTGCTGATCGACCCTGTTGAAAGCCAGACCGAATTGCGGGACTGA	MNRYLRNSQAMKGSISLLAAAMLLAGSSAFANVEPAVKPGNVVKELQRAKTYTVSSAPTAPLELAAPTLPDLKGYTAEAVAAKIVRSKPGKVSVRRMMQENALKDFIGGDNKMAEWVVRQHGIPQAIFIDDGYMNLKDLVKKVPKQYLKETSPGVFLARIPIVVGEKGILEIDKQTQELRLSQEGGSFLVNDGHMFIRDTKVTGWREKDNGPATFRSPNEFRPFLLSWGGTETYIVNTKMASFGYANSKSYGVSISQYTPNMAKVLKRPEPTGWIIGSEFSDMWYGFYCYETEDFVIKGNTYKDNIVYGIDPHDRSHRLIIADNTVYGTKKKHGIIISREVNDSFIFNNRSYDNKLSGVVIDRNSVNNVIAYNEIYKNHTDGITLYESGDNLLWGNKVISNQRHGIRIRNSVNIRLYENLSMANGLTGLYGHIKDLSDTDRDIKLDPFDTEVSLIVVGGELAGNGSGPLSIDSPLSVELYRVSMLAPTKSSGISFTGILGERQDEILDLLVRQQKAVLIDPVESQTELRD	PGPT0026115_47	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026115-algG-K01795	NA	NA
D1-36_01048	1494	algE		Alginate production protein AlgE	ATGAAGCTTTTGAAGCTCAACCCTTTTGTACAGGCTGGTATTGGCCTGTCGTTTGCCCTGCTGTGGTCCTGCCCGACCCTGGCGGCGCTGACCGAAAGCAAGAATTTCGGCCTGGAAGTGAAGATCACCGGCCAGTCCGAAGATGACCGCGACCTCGGCACCCAGAGCGGTGGCGACGTCAACGGTATCGGCCTGGACCTGCGCCCTTGGATCTATGGCGAAAGCGGTAACTGGAGCGGCTACGCCATGGCCCAGGCCGTGACATCCACCGACATCATTGAGACCGACACGCTGCAGCAGTCGGATGACGCGACCCAGCAAACCGACAGCGGTGATCGCGAAGCCAAAAAAAGCTACCTGGCAATGCGCGAATTCTGGATTGGCTACAGCGGCCTCACGCCTTATCCGGGCGAACTGTTGAAGTTCGGTCGCCAGCGCCTGCGCAACGACGACGGGCAATGGCGCGACACCAACATCGAGGCCCTGAACTGGACCTTCGACACCACCCTGCTGCGCGCCAACCTGGGCGTGGCCGAGCGTTTTAGCGAATACCGCACCGACCTCAAGGAACTGTCGCCCCAGGACGAGGATCGCCTGCACGTCTACGGTGACGTGGCGTACCAATGGATGCCAGGCCAATGGGCCGGGATCCGCGCGCACCACACCCATGACAACGGCAGCCTGGACTACCCGACCCCGGGCGAAGCCACCGACACCCTGGACAAGACCCAGAATGGTGACCTGACCTGGCTCGGCCTGGAAGCCAACAGCGATGCCTACAACTGGCGCAACACCAACACCGTCAATTACTGGGCAAGCATCACCGGCATGACCGGCGACCGCGACACCGTCAACCCGCTCGACGCCGACGGCACCCGCCCCGCGCAGCTCAAGCGCAGCGACGACGTTGACGGCTGGGCCACCGACCTGGGTATCCGCCTGCGTCTGGATCCGCAATGGCAAGTCGGTGCGGCCTACGCCCGCGCCAGCGAGGACTACGAGCAGAACGGCCTGCAGAGTAACCGCTCGAACTTCACCGGCACCCGCTCGCGCGTCCACCGTTTCGGCGAGGCCTTCCGTGGCGAAATGGCCAACACCCAGAGCGCCAGCCTGTTCGGCTCCTGGCAACTGCGCGACGAATACGACGCCAGCCTCGTGTACCACAAGTTCTGGCGCGTGGACGGCAACAAGGCGGTGGGCAGCAACGGCATCAATGCCGTGCAAAACAACACCGACGACGTGACCGGCGCCATCTTGTCCACCTCGACCCTGCCGCTGCGCGACGGCGAGAAGGACCTGGGCCAGGAAGTCGATCTGGTGGTCACCAAGTACTTCAAGCAAGGCCTGTTGCCGGCTGCGCTGAGTCAATCCATAGATGAGCCGTCGGCGCTGGTGCGCTTGCGTGGCGGCGTGTTCAAGCCAGGCGACGCCTACGGCAAAGAGGTCGATTCGTACATGCATCGTGCCTTTGTCGACGTGATCTGGCGCTTCTGA	MKLLKLNPFVQAGIGLSFALLWSCPTLAALTESKNFGLEVKITGQSEDDRDLGTQSGGDVNGIGLDLRPWIYGESGNWSGYAMAQAVTSTDIIETDTLQQSDDATQQTDSGDREAKKSYLAMREFWIGYSGLTPYPGELLKFGRQRLRNDDGQWRDTNIEALNWTFDTTLLRANLGVAERFSEYRTDLKELSPQDEDRLHVYGDVAYQWMPGQWAGIRAHHTHDNGSLDYPTPGEATDTLDKTQNGDLTWLGLEANSDAYNWRNTNTVNYWASITGMTGDRDTVNPLDADGTRPAQLKRSDDVDGWATDLGIRLRLDPQWQVGAAYARASEDYEQNGLQSNRSNFTGTRSRVHRFGEAFRGEMANTQSASLFGSWQLRDEYDASLVYHKFWRVDGNKAVGSNGINAVQNNTDDVTGAILSTSTLPLRDGEKDLGQEVDLVVTKYFKQGLLPAALSQSIDEPSALVRLRGGVFKPGDAYGKEVDSYMHRAFVDVIWRF	PGPT0026105_43	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026105-algE-K16081	NA	NA
D1-36_01049	1506	algK	COG0790	Alginate biosynthesis protein AlgK	GTGATCACTCCACAAAACAACAATGCGCCGCGTTCCCTGTGGGAGCGAGCTTGCTCGCGATGGGATCGACGCGGTCTGTCTGAGACTCCGAGCAGCCTGCATCGCGAGCAGGCTCGCTCCCACACAGGCTATGCGTTGTGTGCCCTGGCACTGGCCGTCAGCCTGGCCGGTTGCGCCGGCCTGCCCGACCAGCGTCTGGCCAACGAAGCCCTCAAGCGCGGCGACACGGCGTTGGCGCAGCAGAACTATCAGCAACTGGCAGACCTGGGCTACAGCGAGGCCCAGGTGGGCCTGGCCGATATCCAGGTGGACAGCCGCGACCCCGAGCAGATGAGAAAGGCCGAGGCGACCTACCGCGCCGCCGCCGATATCTCGCCGCGCGCCCAGGCTCGCCTGGGTCGCCTGCTGGTGGCCAAGCCCGGATCCACCGAGGCTGAAAGACACGAAGCCGAAGGCCTGTTGAAAAAAGCCTTCGCCAACGGTGAAGGCAATACCTTGATCCCGCTGGCGATGCTGTACCTGCAATACCCCCACAGCTTCCCGAACGTCAACGCCCAGCAGCAGATCAGCCAATGGCGCAGCGCCGGCTACCCGGAAGCCGGCCTGGCGCAGATCCTGCTCTACCGCACCCAGGGCACGTACGACCAGCACCTGGACGAAGTGGAAAAGGTCTGCAAGGCCGCCCTGGCGACCACCGATATCTGCTACGTCGAATTGGCCACGGTCTACCAGAAACGCGGCCAGCCGGAACAACAGGCCGAGCTGATCAAGCAGATGCAAGCCGGTCACGCCCGCGGTGTGGTCTCGGCCCAGCGTGTAGACAGCGTCGCCCGCGTCCTGGCCGATCAGAGCCTGGGCAAGACCGACGAGAAAACCGCCCAGTCGTTGCTCGAAGGCATCGCCCCCGGCTACCCCGCTTCCTGGGTCAGCCTGGCGCAGCTGCTTTACGATTTCCCCGAGTTGGGTGACGTCGACAAGATGATGCAGTACCTGGAAAACGGCCGCGCCGCCGACCAGCCGCGCGCCGAGCTGTTGCTGGGCAAGCTGTATTACGAAGGCAAGTGGGTGCCCGCCGACGCCAAGGTCGCCGAGGCGCACTTCCAGAAAGCCGTGGGCCGTGAAGTGGCGGCCGATTATTACCTCGGCCAGATCTATCGCCGTGGTTATCTGGGCCAGGTGTACTCGCAAAAGGCTCTGGACCACCTGCTCAAGGCCGCCCGCAACGGCCAGAACAGCGCCGATTACGCCATTGCCCAGCTGTTCTCCCAAGGCAAGGGCACCAAGCCCAACCCGGTCAACGCTTACGTGTTCAGCCAGTTGGCCAAGGCACAAAACACCCCGCAGGCCACCGAGCTTGCCCAGACCCTCGAAGCACAATTACCGCCGGAACAACTTGCACAAGCGCAACGCCTGCTACAACAAGAGCAGGCCATTCGCGGCGCCATGAGCCCCGATACGCTTGAACTGCAAGCCCTAAAAGAAGATGACGGCGAGGAACCTCTATGA	MITPQNNNAPRSLWERACSRWDRRGLSETPSSLHREQARSHTGYALCALALAVSLAGCAGLPDQRLANEALKRGDTALAQQNYQQLADLGYSEAQVGLADIQVDSRDPEQMRKAEATYRAAADISPRAQARLGRLLVAKPGSTEAERHEAEGLLKKAFANGEGNTLIPLAMLYLQYPHSFPNVNAQQQISQWRSAGYPEAGLAQILLYRTQGTYDQHLDEVEKVCKAALATTDICYVELATVYQKRGQPEQQAELIKQMQAGHARGVVSAQRVDSVARVLADQSLGKTDEKTAQSLLEGIAPGYPASWVSLAQLLYDFPELGDVDKMMQYLENGRAADQPRAELLLGKLYYEGKWVPADAKVAEAHFQKAVGREVAADYYLGQIYRRGYLGQVYSQKALDHLLKAARNGQNSADYAIAQLFSQGKGTKPNPVNAYVFSQLAKAQNTPQATELAQTLEAQLPPEQLAQAQRLLQQEQAIRGAMSPDTLELQALKEDDGEEPL	PGPT0026135_14	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026135-algK-K19292	NA	NA
D1-36_01050	1170			Mannuronan synthase	ATGAACACCGCCGTGAATGTCAACGTAGTGCATGAATCCGAAGCCCAACGCCAACACGCCCGGGTCAAAATCCCGGCCAAGTTGCGCTTCTTCGGCCCAGACCGTACGCCCATGGAAGTCAAGGTCCTGGACCTGTCGGCCGGTGGGCTGTGCTTCAACGCCGGCCAGATGCCGCTCAAGGTTGGCGAGACGTACAAGGCCCGCCTGCAGTTCGTGATCGACAACCTTGGCCTGGCCATGGATGTGGAGCTGCAAATCCGTTCCCACGACCGCCAGACCGGCCGCACCGGTTGCCAGTTCCAGAACCTGGAGCCGCGTGACATCTCGACACTGCGCCATATCATCACCTCGCACCTGGGCGGCGACATCGTGGGCGTCGGCGACGTGCTGGCGACGTTGCAACGCGACAACTTCACCAAGGCCCGCAAACAGAAAGATGACAACGGTGGCATGAGCGCCTTCGGCCGCCTGCGCGCCGTGACCTTCAGCCTGGGCATCTTCATTGTCGGCCTGGCGGCGTTCGGTTTCATCTTCAAGTCGGTATACGGCATGTACTTCGTCAGCCACGCCCAGGCCGGCATCGTCAACGTACCGGGCATGGCCATCACCATGCCGCGCGACGGCACCGTGCAGAGCCTGGTCAAGGCCGACGGCCTGGCCGCCAAAGGCGCTCCGCTGGCGACTTTCAGCACCAGCATGCTGGACGTACTCAAGGGTCACCTGGACGACAACCAGCTGCAGCCGGCCAAGGTTGAAGAGCTGTTCGGCAAGCAAATGACCGGCACCCTCACCTCGCCATGCGACTGCATCGTGGCCCAGCAACTGGTTTCCAACGGCCAGTACGCCAGCAAGGGCGACGTGATCTTCCAACTGGTTCCACGTGGCGCCGAAGCCAACGTTGAAGCGCGTTTCTCCTATCGCCAGTTCGGCGACGTGCGCCCAGGTACACCGGTCAGCTTCCAGGTGGCCGGCGAAGACACCACCCGTACCGGCAAGATCGTCAGCAGCACCAGCCTGAAAAGCGCCGACCTGTCTTCCGATATCCGCGTGCTGATCCAGCCCGACGAAGCCCTCGACAGCGCGCTGGCCGGCCGTCCCGTGGAAGTCGTCAGCGATCGTGGCCCAAGCCTGAACTGGCTGATCGACAAAGCCATGGCCGTTGGTCTTTAA	MNTAVNVNVVHESEAQRQHARVKIPAKLRFFGPDRTPMEVKVLDLSAGGLCFNAGQMPLKVGETYKARLQFVIDNLGLAMDVELQIRSHDRQTGRTGCQFQNLEPRDISTLRHIITSHLGGDIVGVGDVLATLQRDNFTKARKQKDDNGGMSAFGRLRAVTFSLGIFIVGLAAFGFIFKSVYGMYFVSHAQAGIVNVPGMAITMPRDGTVQSLVKADGLAAKGAPLATFSTSMLDVLKGHLDDNQLQPAKVEELFGKQMTGTLTSPCDCIVAQQLVSNGQYASKGDVIFQLVPRGAEANVEARFSYRQFGDVRPGTPVSFQVAGEDTTRTGKIVSSTSLKSADLSSDIRVLIQPDEALDSALAGRPVEVVSDRGPSLNWLIDKAMAVGL	PGPT0026095_31	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026095-alg44-K19291	NA	NA
D1-36_01051	1491	alg8	COG1215	Mannuronan synthase	ATGCAGATTATGCACAGGCTAAAGCACGGCCTGCTTCAGGCCGCCGGTTGGCTGTTTTACTTGAGTTTACTGATGGGCATCGCCACGGCGTTGCCCACGTCCACGTTCGACGCCGAATCCAAGGACTTCATCTTCCTGATCGGCGCCGTGGGCATTTGGCGTTACTCCATGGGAGCAACGCATTTCGTGCGCGGCATGATCTTCCTGTACATCGTCTACCCACACCTGCGCCGCAAGGTTCGCAAGTTGGGCAAGGCGGCGGACCCGTCCCATGTGTACCTGATGGTGACCAGCTTTCGCATCGATGCGCTGACCACCGCCCAGGTCTATGGCTCGGTAATTCGCGAAGCCATCGAGTGCGGGCTGCCCACCACCGTGGTCTGCTCCATCGTGGAAATGTCCGACGAGTTGCTGGTCAAGAGCCTCTGGGCCCGCATGAACCCGCCCGAGCACGTCAAGCTGGACTTCGTGCGCATCCCTGGCACCGGCAAGCGTGACGGCCTGGCCTACGGCTTTCGCGCCATCTCCCGCCACCTGCCGGACGATCGCGCGGTGGTCGCGGTGATCGATGGCGACACCGTCCTCGCCGAGGGCGTGGTGCGCAAGACCGTGCCGTGGTTCCAACTGTTCGGCAATGTCGGCGGCCTGACCACCAACGAATATTGCGAAGTACGCGGCGGCTACATCATGAGCGAGTGGCACAAGCTGCGTTTCGCCCAGCGTCACATCAACATGTGCTCCATGGCCCTGTCCAAGCGCGTGTTGACCATGACCGGACGCATGTCCGTATTCCGCGCGACCGTGGTCACCAACCCGGACTTCATCGCCGACGTGGAAAGCGACTCGCTGCAACACTGGCGCCTGGGCCGCTTCAAGTTCCTCACCGGCGATGACAAATCGAGTTGGTTCAGCCTGATGCGCCTGGGCTACGACACGTTCTACGTGCCAGACGCGGCCATCAACACGGTTGAGCATCCGCCGGAAAAAAGCTTCATCAAGGCGAGTCGCAAGTTGATGTTCCGTTGGTACGGCAACAACCTGCGGCAGAACTCCCGGGCCCTGGGCCTGGGTCTGCGGCGTCTGGGCCTGTTCACGTCGGTGGTGCTGTTCGACCAGCGCGTCTCGATGTGGACTTCGCTGCTGGGCTTGACCGTGGCGATCATCGCCAGCATCAAGTACGGCACCGCGTTCATCCTGGTGTACCTGCTGTGGATCGGCATCACGCGGCTGCTACTGACCCTGTTGCTGTCGTGCTCCGGACACCGGATCGGCCCGGCCTACCCGGCGATTCTCTATTACAACCAGATCGTCGGCGCGATGGTGAAGATCTATGTGTTCTTCCGCCTCGATCAACAGTCCTGGACCCGCCAGCCCACCCACCTGACCCGTGATCTCGCCAGCTTTCAACGTTGGTTCAACACCTGGTCGTCTCGGACCATGACCTTCTCCGCCGGCAGCATCTTTGTCGCCGTGCTGCTGACGATGGTCTGA	MQIMHRLKHGLLQAAGWLFYLSLLMGIATALPTSTFDAESKDFIFLIGAVGIWRYSMGATHFVRGMIFLYIVYPHLRRKVRKLGKAADPSHVYLMVTSFRIDALTTAQVYGSVIREAIECGLPTTVVCSIVEMSDELLVKSLWARMNPPEHVKLDFVRIPGTGKRDGLAYGFRAISRHLPDDRAVVAVIDGDTVLAEGVVRKTVPWFQLFGNVGGLTTNEYCEVRGGYIMSEWHKLRFAQRHINMCSMALSKRVLTMTGRMSVFRATVVTNPDFIADVESDSLQHWRLGRFKFLTGDDKSSWFSLMRLGYDTFYVPDAAINTVEHPPEKSFIKASRKLMFRWYGNNLRQNSRALGLGLRRLGLFTSVVLFDQRVSMWTSLLGLTVAIIASIKYGTAFILVYLLWIGITRLLLTLLLSCSGHRIGPAYPAILYYNQIVGAMVKIYVFFRLDQQSWTRQPTHLTRDLASFQRWFNTWSSRTMTFSAGSIFVAVLLTMV	PGPT0026100_63	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026100-alg8-K19290	NA	NA
D1-36_01052	1317	algD	COG1004	GDP-mannose 6-dehydrogenase	ATGCGCATTAGCATATTTGGTTTGGGTTACGTCGGTGCAGTATGTGCCGGTTGCCTGTCTGCACGGGGCCATGACGTAGTTGGCGTAGATGTCGCCAAAGACAAAATCGACATGATCAACGCGGGTAAATCCCCGATCGTTGAACCGGGTCTTGGCGAGCTGTTGGCGCAAGGCATTCAAACAGGTCGGTTGCGTGGTACTACCAACTTCGCCGAAGCAATTCGTGATACCGATCTGTCGATGATTTGCGTCGGCACGCCAAGTAAGAAGAATGGCGACCTGGAACTGAACTACATCGAAGCAGTGTGCCGTGAAATCGGTTTTGTACTGCGCGAGAAAACCACCCGCCATACCATCGTGGTCCGCAGTACCGTACTGCCAGGCACCGTGGCCAACGTCGTTATCCCGATCCTCGAAGATTGCTCCGGCAAGAAAGCCGGCGTTGATTTCGGCGTTGCGGTCAACCCTGAGTTCCTGCGCGAAAGCACCGCGATCAAGGATTACGACCAGCCGCCAATGACCGTCATCGGCGAGTTCGACAAAGCCTCGGGCGACGTCCTGCAATCGCTGTACGAAGAACTCGATGCGCCGATCATCCGCAAGGACATCGCCGTCGCCGAGATGATCAAGTACACCTGCAACGTGTGGCACGCCACCAAGGTCACCTTCGCCAACGAGATCGGCAACATCGCCAAGGCTGTCGGCGTCGATGGCCGTGAAGTAATGGACGTGGTCTGCCAGGACAAGGCCCTGAACCTGTCCCAGTACTACATGCGCCCAGGCTTCGCCTTCGGCGGCTCGTGCCTGCCCAAGGACGTGCGCGCCCTGACCTACCGTGCAGGCTCCCTGGACGTGGAAGCACCGCTGCTGAACTCGCTGATGCGCAGCAACGAATCCCAGGTTCAGAACGCATTCAACATCGTATCCAGCCATGACAAGCGCAAAGTCGCCCTGCTGGGCCTGAGCTTCAAGGCCGGCACCGATGACCTGCGTGAGAGCCCGCTGGTAGAGCTGGCGGAAATGCTGATCGGCAAGGGCTACGACCTGCGCATCTACGACAGCAACGTCGAATACGCCCGTGTCCACGGTGCGAACAAGGATTACATCGAGTCGAAGATCCCTCACGTCTCGTCCTTGCTCAACTCCGACTTCGACGCGGTGATCGACAGCTCCGACATCATCATCCTCGGCAACCGCGACGAGAAGTTCCGCGCGCTGACCGAGAACGTACCGGAAGGCAAGCAGGTCATCGACCTGGTTGGGTTCATGTCCAAGGCCACCTCTGCGAATGGCCGGACCGAAGGCATCTGCTGGTAA	MRISIFGLGYVGAVCAGCLSARGHDVVGVDVAKDKIDMINAGKSPIVEPGLGELLAQGIQTGRLRGTTNFAEAIRDTDLSMICVGTPSKKNGDLELNYIEAVCREIGFVLREKTTRHTIVVRSTVLPGTVANVVIPILEDCSGKKAGVDFGVAVNPEFLRESTAIKDYDQPPMTVIGEFDKASGDVLQSLYEELDAPIIRKDIAVAEMIKYTCNVWHATKVTFANEIGNIAKAVGVDGREVMDVVCQDKALNLSQYYMRPGFAFGGSCLPKDVRALTYRAGSLDVEAPLLNSLMRSNESQVQNAFNIVSSHDKRKVALLGLSFKAGTDDLRESPLVELAEMLIGKGYDLRIYDSNVEYARVHGANKDYIESKIPHVSSLLNSDFDAVIDSSDIIILGNRDEKFRALTENVPEGKQVIDLVGFMSKATSANGRTEGICW	PGPT0022720_160	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0022720-algD-K00066	NA	NA
D1-36_01053	780	yaaA	COG3022	Peroxide stress resistance protein YaaA	ATGCTGATGGTGATTTCCCCCGCCAAGACCCTCGATTTCGAAACACCGCCGGCCATCGAGCGCTTCACCCTGCCGCAATACCTTGACCACTCCCAGGAGCTGGTCGAGCAACTACGCGAACTTTCGCCGGCCCAGATCAGCGAACTGATGCACGTTTCCGATAAGATCGGCGGCCTCAACGCAGCACGGTTCGGCAGTTGGAACCCGGCGTTCACCCCCGCCAACGCCAAACAGGCATTGCTGGCCTTCAAAGGCGACGTCTATACCGGCCTCGATGCGCAAAGCCTCGGTGACGCCGATTTCGATTTCGCCCAACAGCACCTGCGCATGCTGTCCGGTTTATATGGCCTGCTGCGCCCCCTGGACCTGATGCAACCTTATCGCTTGGAGATGGGCACGAAACTGGCCAATGCCCGGGGCAAGGATCTTTACGCCTTCTGGGGCACCCGCATCAGCGAATGGTTGAACGAAGCCTTGGCCGAACAGGGTGACGACGTGTTGTTGAACCTGGCCTCCAATGAATACTTCTCGGCGGTTAAACGCAGTGCCCTGAAGGCACGGGTGATCGATACCGAATTCAAGGACCTCAAGAACGGCCAGTACAAGATCATCAGCTTCTACGCGAAAAAAGCCCGGGGCCTGATGAGCCGATTTGTCATCGAACAACGCATTAATAATCCCACTGCACTAAGGGAGTTTGATGTGCAGGGTTATCGCTACAACCCCGAACAATCCACCCCGGAAAAACTGGTCTTCTTGCGCGACCACGCCCCGCAATAA	MLMVISPAKTLDFETPPAIERFTLPQYLDHSQELVEQLRELSPAQISELMHVSDKIGGLNAARFGSWNPAFTPANAKQALLAFKGDVYTGLDAQSLGDADFDFAQQHLRMLSGLYGLLRPLDLMQPYRLEMGTKLANARGKDLYAFWGTRISEWLNEALAEQGDDVLLNLASNEYFSAVKRSALKARVIDTEFKDLKNGQYKIISFYAKKARGLMSRFVIEQRINNPTALREFDVQGYRYNPEQSTPEKLVFLRDHAPQ				NA	NA	NA	NA	NA
D1-36_01054	1125			hypothetical protein	TTGCGTATCGCCCTTCTATTGTCGGCCTGGTTGTTGAGTTTCGCTGCGATCGCCGCACCCAACGACGTCGCCACCTTGGACCGCAGCACCTGGCCTGAGCAACTCACCAATCCGACGCTGTTCGATGTTGCCTCGCGCGCCGAGATCCTGATGTTCGCCCGGGTATTGCTGGACGTCGATGCCATGGATGAAGTGGCGCTCAAGCAGTACCTTGGGCTGCGCTCGGTCAATATGGCGGCGGTCGACGCGCTGCGCACACGGCTGTGGCAGCGTCTGCTATCGAGTTACAACTTTGCCCAGCGAAGCTGTGAATTGGATGCCTCCTTCTGCTATCTGGTGGAAAACATGGCGACCCTGCGAGAAGAAGCGGGCAGGTTCCAACTCGATGATAATTCCTACTACATCAAGTGGGCCGAGCCGAGCCGGACCTTCCACACCCACTATCGGGACGAGTTGTTGCGCAAGGCGGCGCTGTTTCCCCAGGTCAGCAGTGAAATCGAGCGTTTCGGCGATTACGAGCGCAACGGCGAACAGATGAACGACCGGCTGTTCTTGCTGACCTTCGACAGCGGGGCCAATATCGCGCCGGATAACACCCCGTGGCTGACCGAATACCTGCGAAAATCGAACATGAACGGTACGTTCTTCGTACTCGGCAAGGATATCCAGGCGCGGCTGGCGGATCGCTCGGTCAATGATCTGCAGAGCCTCTATTCCAGACAATGCGTCGGTGTGCAGGGCTGGGAGTTTCGCTCTCACAGCTATTGGCAGGATTGGCAAGACTCGGTGCGGCGCAGTGTCGACCTGGTCAAGGGCAAGCTGCCGGAGAATTTCGTGCCGCTGTTCCGCCCGCCCCAAGGCCAACGCCGGGGCGATGCGCAATCATTCTTCCAGGCACAGGGCCTGCAAGTGGCGCTGTGGGATATCGATCCTCAGGACAGCACCAACCGCCTCAAGCCCGAACAGAGTGCCCAGCGGGCGCTGACCTTGATGCTGTTGTGGCGCCATGGCGTGATCAACTTCAACGCCAAGCAGGATGCGGTGAAAATCGCACTGCCCTGGCTCGTAGCGCAAACGGCGCAGAGCGGGATCGGCTGGGAGGAATGTCAGGACGCGTTTCGCTGA	MRIALLLSAWLLSFAAIAAPNDVATLDRSTWPEQLTNPTLFDVASRAEILMFARVLLDVDAMDEVALKQYLGLRSVNMAAVDALRTRLWQRLLSSYNFAQRSCELDASFCYLVENMATLREEAGRFQLDDNSYYIKWAEPSRTFHTHYRDELLRKAALFPQVSSEIERFGDYERNGEQMNDRLFLLTFDSGANIAPDNTPWLTEYLRKSNMNGTFFVLGKDIQARLADRSVNDLQSLYSRQCVGVQGWEFRSHSYWQDWQDSVRRSVDLVKGKLPENFVPLFRPPQGQRRGDAQSFFQAQGLQVALWDIDPQDSTNRLKPEQSAQRALTLMLLWRHGVINFNAKQDAVKIALPWLVAQTAQSGIGWEECQDAFR	PGPT0018645_963	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_HYDROLASE_ACTIVITY,PGPT0018645-pda|pgdA-K22278	NA	NA
D1-36_01055	1395			hypothetical protein	ATGGATGACCACGGACGTAGCCCTTCCTCCAACCAGCCAATCCTCTATGTACTCGATACCAACGTATTGATCCACGATCCAAACGCGCTCCTGAACTTCGAAGAACACCACGTAGCCCTCCCGATGACCGTCCTTGAAGAGCTGGACAAGCTCAAGAGTGGGCATCACAGCGTGGCGGCCGAATGTCGCCAGGCGATCCGCCTGATCGACAAGACCCTGGGGGACGCCTCTCCCGAGGACGTCGAACTCGGCGTACCGATCCAACGTGGCAAAAGCGGCCCCAAGGGCCTGCTCTCGATCCTGATGAGCAAGCGCACCGAACCCAACCTGGTGCTGCCTGAACACCTTAACGACAACATCATCATCAACCAATTGATCGACCTGCACGCGCGCAACAAGGATCAGGCCGTGGTGCTGGTGACCAAAGACATCAACATGCGCCTCAAGGCCCGCGCCTGCGGGATCGCGGCCGAGGACTACAGCACCGACCAGCTGGTCGACGACGTGTCGCTGCTGCCCAACGGCTACCACACGATGACCGGCTCTTTCTGGGACCGCGTGAGCAAGGTCGAGACCCGCCAGGACCATGGCCGCACGTGGCACCAGGTGCAATTGATCGACAATCTGCCGGCGGTGCACATCAACGAATTCATCATCGACGAACAAGGCTTCGTCGGCTGGATCAAGGAAATCCAGGTCGACAAACTGCTGATCCTCGACTTGCATCAGGAACCCTTGTTGCATCAGGAGGCGTGGGGCCTCAAGCCTCGTGACATCTACCAGAGCCTGGCGCTGTTCGCCTTGCTCGATCCGGATATCCACCTGGTCAACCTGTCCGGTGCGGCTGGTTCCGGCAAGACCATCCTGGCCCTGGCCGCTGCTATCGAGCAGACCATGGTCAGCAAGCGTTACCGGCGCATCATCGCCACCCGCAGCGTGCAGGGCCTGGACCAGGAGATTGGCTTTTTGCCCGGCACCGAAGCGGAAAAAATGGAGCCGTGGCTGGGCGCGATTACCGACAACCTCGAAGCCTTGCACATGGATGACGAAAGCACCCATGGCAGCGTCGACTACATTCTCAGCAAAGTGCCGTTGCAGTTCAAATCCCTCAACTACATCCGAGGCCGCAGCTTCCAGCAAAGCCTGATCTTGATCGACGAATGCCAGAACCTGACGCCGCACCAGATGAAAACCATCATCACCCGTGCCGGCGCCGGTTCCAAAGTGGTGTGCCTGGGTAACCTGGCACAGATCGACACCCCATACCTGTCCGCGACCAGCTCCGGGCTGACCTACCTGACCGAACGCTTCAAGGACTTCCCCAACGGGGTCCATATCACCCTGCAAGGCGTACCGCGCTCGATCCTGGCCGAATACGCTGAGTCTCATCTGTAA	MDDHGRSPSSNQPILYVLDTNVLIHDPNALLNFEEHHVALPMTVLEELDKLKSGHHSVAAECRQAIRLIDKTLGDASPEDVELGVPIQRGKSGPKGLLSILMSKRTEPNLVLPEHLNDNIIINQLIDLHARNKDQAVVLVTKDINMRLKARACGIAAEDYSTDQLVDDVSLLPNGYHTMTGSFWDRVSKVETRQDHGRTWHQVQLIDNLPAVHINEFIIDEQGFVGWIKEIQVDKLLILDLHQEPLLHQEAWGLKPRDIYQSLALFALLDPDIHLVNLSGAAGSGKTILALAAAIEQTMVSKRYRRIIATRSVQGLDQEIGFLPGTEAEKMEPWLGAITDNLEALHMDDESTHGSVDYILSKVPLQFKSLNYIRGRSFQQSLILIDECQNLTPHQMKTIITRAGAGSKVVCLGNLAQIDTPYLSATSSGLTYLTERFKDFPNGVHITLQGVPRSILAEYAESHL				NA	NA	NA	NA	NA
D1-36_01056	474	moaC	COG0315	Cyclic pyranopterin monophosphate synthase	GTGCTGACTCATCTCGATTCCCAAGGTCGCGCCAATATGGTCGACGTGACCGACAAGGCCGTGACGTTCCGTGAAGCCACGGCTGAAGCCTTTGTGCGAATGCTGCCCGATACCCTGCGGATGATCGTCAGCGGCGGCCATCCCAAGGGCGACGTGTTTGCCGTTGCCCGCATCGCCGGCATCCAGGCTGCGAAGAAAACCAGCGACCTGATTCCGCTCTGCCACCCGCTGATGCTCACCGGCGTCAAGGTCGAGCTCAATGCCGAAGGCGAGGACCGGGTACGTATCGTTGCCCGTTGCAAACTGTCGGGGCAGACCGGAGTGGAAATGGAAGCGCTCACCGCCGCCAGCGTCGCCGCGCTGACTATTTATGACATGTGCAAAGCCGTGGACCGGGGCATGACCATCGAAGGCGTGCGGGTGCTGGAAAAGCTTGGCGGCAAGAGTGGTCATTTCCAGGCGGATGCATCATGA	MLTHLDSQGRANMVDVTDKAVTFREATAEAFVRMLPDTLRMIVSGGHPKGDVFAVARIAGIQAAKKTSDLIPLCHPLMLTGVKVELNAEGEDRVRIVARCKLSGQTGVEMEALTAASVAALTIYDMCKAVDRGMTIEGVRVLEKLGGKSGHFQADAS	PGPT0008405_3270	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008405-moaC_-K03637	NA	NA
D1-36_01057	243	moaD	COG1977	Molybdopterin synthase sulfur carrier subunit	ATGAAAATCACTGTGAAGTTTTTTGCTCGCTACCGCGAAGCGCTCGGCGTGGACTCGGTTAAGGTGGAAGGCGGTTTCGCCACGATTGACGACGTGCGCGCCTTGCTCGCGCAGCGTGACGGCGCCGAAGTGCTGAGAGAGCAAAACCTGATGTGTGCCCGCAACGAGGATCTCTGTCAACTCGACGAGCCAGTGGCGGACGGCGATGAGGTGGCGTTCTTTCCCACCGTGACCGGAGGCTGA	MKITVKFFARYREALGVDSVKVEGGFATIDDVRALLAQRDGAEVLREQNLMCARNEDLCQLDEPVADGDEVAFFPTVTGG	PGPT0008405_239	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008405-moaC_-K03637	NA	NA
D1-36_01058	453	moaE	COG0314	Molybdopterin synthase catalytic subunit	ATGGCGATTCGGGTACAGGTGGAACCGTTCGACCCGGGCAGCGAAGTCAACGCGATGCACGCGGCCAATGTCGGCGTGGGTGCTGTGGTCAGTTTTGTCGGCTACGTGCGCGACTTCAATGACGGCCTCGATGTGTCCGGGATGTTCCTGGAGCATTATCCGGGCATGACCGAGAAAGCGCTGGGCAAGATCGCCATCGAGGCCGAGCAGCGCTGGCCATTGCTCAAGCTTGAAGTGCTGCACCGCATCGGCGCCTTGGAGCCGGGTGAGCCGATCGTTTTTGTCGGCGCCGCCAGCGCCCACCGCCAGGCGGCGTTCGACGCCTGCGCCTTTGTCATGGACTACCTCAAGACCCGCGCGCCGTTCTGGAAAAAAGAAAACACCGTCGATGGCCCGCGCTGGGTCGAAGGGCGGGACAGTGATCATGCGGCGGCGGATCGCTGGAAGCAGTAG	MAIRVQVEPFDPGSEVNAMHAANVGVGAVVSFVGYVRDFNDGLDVSGMFLEHYPGMTEKALGKIAIEAEQRWPLLKLEVLHRIGALEPGEPIVFVGAASAHRQAAFDACAFVMDYLKTRAPFWKKENTVDGPRWVEGRDSDHAAADRWKQ	PGPT0008415_12	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008415-moaX-K21142	NA	NA
D1-36_01059	777	argT_1	COG0834	Lysine/arginine/ornithine-binding periplasmic protein	ATGAAGAAACTCCCCCTCATCACTGGTCTGGCCTTGAGTCTGTTGGCCTCCGGTAGCCTGTTCGCCGCCGATAAAACCTTGCGCATCGGTATCGAGGCGGCTTATCCGCCGTTTGCTTCGAAAACCTCGGAGGGGAAAATCGAGGGGTTTGACTACGACATCGGCAATGCCTTGTGCGCACAGATGCAGGTGAAGTGCGAGTGGGTCGAGGGTGAGTTCGATGGGCTGATCCCGTCCCTCAAAGTGAAGAAGATCGACTTGGCCCTGTCGTCCATGACCATCACCGAAGAGCGCAAGAAGTCGGTGGATTTTACCCACAAGTACTACTTCACCTCATCGCGCCTGGTCATGAAGGAAGGGGCGTCGGTCGATGACCAGTACGCCAGCCTCAAGGGCAAGACCGTCGGCGTGCAGCGCGCCACCACCACGGACCGTTTCGCCACGGAGGTCTTTGAGCCCAAGGGCGTTACGGTCAAGCGCTACAGCAATAACGAAGAAATCTACATGGACCTGGCGTCGGGTCGCCTGGATGCGATTTTTGCCGACACCATTCCTTTGGAAGACTTCCTGTCGATGCCTCGTGGCAAGGGCTATGCCTTCGTCGGGCCGGAGCTCAAGGACCCGAAATACGTCGGCGAGGGCGCCGGGATTGCGGTGCGCAAGGGCAACACCCAATTGGTGGCGGATTTGAACGAGGCCATCGATGGGATTCGGGCCAATGGCGAGTATCAGAAAATCCAGGCCAAGTATTTCAAGTCGGATATCTACGGCGATTGA	MKKLPLITGLALSLLASGSLFAADKTLRIGIEAAYPPFASKTSEGKIEGFDYDIGNALCAQMQVKCEWVEGEFDGLIPSLKVKKIDLALSSMTITEERKKSVDFTHKYYFTSSRLVMKEGASVDDQYASLKGKTVGVQRATTTDRFATEVFEPKGVTVKRYSNNEEIYMDLASGRLDAIFADTIPLEDFLSMPRGKGYAFVGPELKDPKYVGEGAGIAVRKGNTQLVADLNEAIDGIRANGEYQKIQAKYFKSDIYGD	PGPT0020680_257	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020680-aotJ-K10022	NA	NA
D1-36_01060	627	dauR	COG2964	Transcriptional regulator DauR	ATGAATGCCCCGCAAGCCAATCCGACACTCGATAACTTCCGCACTATCGCCGATGCCATCGCCACACTGTTCTACCCCCACGCGGAAGTGGTGTTGCATGACCTGCGCACCCAGAAGGTCGACTACATCGCCAATAACCTGTCCAAGCGCGAAATCGGCGATGACTCGTCCCTGGAAGACATGCTCAGTGAGGACGTCAGCGAACGTAACATCGGGCCGTACGAAAAACTGAACTGGGACGGACAGAAGATTCGCAGCCTCAGCAGCGTCCTGCGTGATGCCAACGGTCATCCGCTGGCGGTGCTGTGCATCAACCTTAATATTTCGCTGTTCGAGAATGCCAAGGCCGCGCTGGATCTGTTCCTGTCGCCAGGCAAATTGATTCCCCAGCCGGATTCACTGTTTCGTGATGACTGGCAGGAGCGGATCAACACTTTCCTGCACGCCTGGATGCGCGAGCGTCAACTGAGCCTGAACCTGCTGACCCGCGACCACAAACGCGAGCTGGTGTTGGCGCTGCATGCCGAAGGCGCGTTCAAGGGCAAGAGCGCGTCCAACTATGTGGCCAATGTGCTGAACATGGGGCGGGCGACGGTGTACAAGCATCTGAAGGAATTGAAGGGCTGA	MNAPQANPTLDNFRTIADAIATLFYPHAEVVLHDLRTQKVDYIANNLSKREIGDDSSLEDMLSEDVSERNIGPYEKLNWDGQKIRSLSSVLRDANGHPLAVLCINLNISLFENAKAALDLFLSPGKLIPQPDSLFRDDWQERINTFLHAWMRERQLSLNLLTRDHKRELVLALHAEGAFKGKSASNYVANVLNMGRATVYKHLKELKG				NA	NA	NA	NA	NA
D1-36_01061	1128	dauA_2		FAD-dependent catabolic D-arginine dehydrogenase DauA	ATGATCTCAGCAGACTTCATCATCATCGGCGGCGGCATCGCCGGTGCTTCCACCGGCTACTGGCTCGCACCCCACGGCCGGGTCATTGTGCTTGAACGCGAATCCCATCCGGCCTATCACTCCACCGGACGCTCGGCGGCGTTGTACACCGCAGCCTACGGCACCCCTCAGGTACGGGCATTGACCCAGGCCAGCCGGGATTTCTTCGACGCACCACCAGCCGGGTTCTGCGTACACCCGTTGCTCACCCCGCGCGGCGAAATGACGGTGGACTTCATCGGCGACCCGGCCGAGCTTGGTAACCAATACCTCAGCGCCAAGGCCACGGTGCCGCAAATGCAATTGCTCAGCGCCGAAGAGGCCTGCCTGCGCCTGCCGATCCTGCGACGGGAAAAAGTCCACGGCGCGATCTACGACCCCACGGCTTGCGATATCGATACCGATGCGCTGCACCAAGGCTATCTGCGCGGTATCCGTCGCAGCGGCGGTGAGGTACACACCGACAGCGAAGTGCTGGACTTGATCCGCGACGACCAAGGGCGATGGCAGGTCAGGACCGCCAGCCAGACGTTCTACGCGCCGGTGCTGATCAACGCGGCCGGCGCCTGGGCCGATCAAGTGGCCGAAATGGCCGGCGCGCGCAAGCTGGGCCTGCAACCCAAGCGGCGGGCGGCGTTCATTTTCGCTGGCCCCGAGGGTGTGGATATCCACGACTGGCCGATGCTGGTGAGCCTCGACGAATCTTTCTATATGAAGCCCGACGCTGGCATGTTTCTCGGCTCTCCGGCCAATGCCGACCCGGTCGAACCACACGACGTACAGCCCGAAGAGCTGGACATCGCCATGGGCATCTACCAGATCGAAGAGGCGACCACCCTGACCATTCGCCGTCCGACCCGCACCTGGGCCGGATTGCGTAGCTTCGTGCCTGACGGTGATCTGCTGGCCGGCTTCGATCCACAAGTGCCCGGCCTTTTCTGGGTCGCGGCCCAGGGGGGCTATGGCATCCAGACCTCCCCTGCCATGGGCCAGGCAAGCGCGGCACTGGCGCGCGGTGAACCACTGCCTGAGCCTTTGACCCGTTTCGGCCTGAACGCCGCGATGCTATCGCCCACTCGCCTGGGTTGA	MISADFIIIGGGIAGASTGYWLAPHGRVIVLERESHPAYHSTGRSAALYTAAYGTPQVRALTQASRDFFDAPPAGFCVHPLLTPRGEMTVDFIGDPAELGNQYLSAKATVPQMQLLSAEEACLRLPILRREKVHGAIYDPTACDIDTDALHQGYLRGIRRSGGEVHTDSEVLDLIRDDQGRWQVRTASQTFYAPVLINAAGAWADQVAEMAGARKLGLQPKRRAAFIFAGPEGVDIHDWPMLVSLDESFYMKPDAGMFLGSPANADPVEPHDVQPEELDIAMGIYQIEEATTLTIRRPTRTWAGLRSFVPDGDLLAGFDPQVPGLFWVAAQGGYGIQTSPAMGQASAALARGEPLPEPLTRFGLNAAMLSPTRLG	PGPT0020092_268	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020092-dauA-K19746	NA	NA
D1-36_01062	948	dauB	COG2423	NAD(P)H-dependent anabolic L-arginine dehydrogenase DauB	ATGACCAATACGCCTCATGTCATGACCCAAGCCCAGGCCCGAGAACTGCTCGGGCACGTCGATGTGCTGGCAGTCCTGCGCAAGCTGTTCCGCGATCTTGCGGCCGGGCAAGCGGTGCAGCCGCCCCAGCAAAGGGTGGTGTTTCCCGAGGGCGCCGGGGACTTCATCAACTTCCTCGGTGTGCTGGCTCAAGACCAGGTCTATGGGGTCAAGACCTCGCCCTACATCGTGCGCGAGCAAGGGCCACTCATCACCGCCTGGACTTTGCTGATGTCGATGCAGACCGGCCAGCCGTTGATGCTGTGCGATGCCGCCGAGCTGACGACCGTCCGCACCGCCGCCACCACCGCCGTCGCCATCGATGCCCTCGCCCCGCACAACGCCAGGCGCCTGGCGGTGATCGGCAGTGGCGCGCTGGCGCGCGCCCATGTGCAGTACGTCAAGGGACTGCGGGATTGGCAAGGCATCAGTCTCTATTCGCCAAGCCTCAAAGAGCGCTCAACCCAGGATCTCGCGCAAATCACCGGGCTCGACCCGCGCCTGCACATCGCCGATACACTTGAAGCCGCGTTGCACGACGTCGATGTGGTGATGCTCTGCACCTCGTCCGCCGTAGCGGTGCTAGACCCGCAGACCCTCGGCAAACCGACGTTGATCACATCCATCAGCACCAATGCCCCGCGCGCGCATGAAGTACCGCCCCAGAGCCTCAACGACATGGATGTGTTCTGCGACTATCGTCAGACCACTCCGGGCTCGGCTGGCGAGATGTTGATCGCCGCTGAACAGCATGGCTGGGAGCCTTCAAGCATTGTGGGTGACTTGCCCGATCTGCTGAGCGAACGTGCGGCGCGACCAAACTATGAGCGCCATGTGTTTTTCCGTTCCATTGGGTTGGGGCTGGAGGATGTTGCGCTGGCGAATGCGCTTTACCAACTTCTCGACTGA	MTNTPHVMTQAQARELLGHVDVLAVLRKLFRDLAAGQAVQPPQQRVVFPEGAGDFINFLGVLAQDQVYGVKTSPYIVREQGPLITAWTLLMSMQTGQPLMLCDAAELTTVRTAATTAVAIDALAPHNARRLAVIGSGALARAHVQYVKGLRDWQGISLYSPSLKERSTQDLAQITGLDPRLHIADTLEAALHDVDVVMLCTSSAVAVLDPQTLGKPTLITSISTNAPRAHEVPPQSLNDMDVFCDYRQTTPGSAGEMLIAAEQHGWEPSSIVGDLPDLLSERAARPNYERHVFFRSIGLGLEDVALANALYQLLD				NA	NA	NA	NA	NA
D1-36_01063	1476	rhlB		ATP-dependent RNA helicase RhlB	ATGACCGTGCTCAAAGCACTCAAGAAGATGTTCGGTAAAAGCGAGGCCGAGCAGCTCGCGCCTGTCGCCAGCGCGCCCCAGGCCCCGAACCGCGCCGATGCGCAGCAGTCGCGCCGGACCGCACCGCCGGTTGCGGAGGCGAAAACAACGCCGCCAACCGCCACCGCAGCCCAGCCTGTCGCGGCCCCTGCCCAGGAAAAGCCACGCAGCGAAGCGCCAAGGCCGCGCCGCGAACGCGCACCAAAACCGCCCGTCGTCGCCTGGAAGCTCGAGGACTTTGTCGTAGAGCCCCAGGAAGGCAAGACCCGCTTCCACGATTTCAAGCTCGCCCCTGAATTGATGCATGCCATCCAGGACCTGGGCTTTCCCTATTGCACGCCGATCCAGGCGCAGGTGCTCGGTTACACCCTCGCTGGCAAAGACGCCATCGGCCGTGCCCAGACCGGTACCGGCAAGACCGCCGCATTCCTGATTTCCATCATTACCCAATTGCTTCAGACCCCACCGCCCAAGGAACGCTATATGGGCGAACCGCGCGCGCTGATCATTGCGCCGACCCGCGAACTGGTGGTGCAAATCGCCAAGGACGCCGCCGACCTGACCAAGTACACCGGTCTGAACGTGATGACGTTCGTGGGCGGCATGGATTTCGACAAGCAGCTCAAGCACCTCGAAGCCCGCCACTGCGACATCCTCGTGGCCACGCCGGGCCGCCTGCTGGATTTCAACCAGCGCGGCGACGTGCACCTGGACATGGTCGAAGTGATGGTGCTGGACGAAGCCGACCGCATGCTCGACATGGGCTTCATTCCCCAGGTCCGCCAGATCATTCGCCAGACCCCGCCGAAAAGCGAACGCCAGACCCTGCTGTTCTCCGCCACCTTCACCGACGATGTGATGAACCTCGCTAAACAGTGGACGACTGACCCGGCCATCGTCGAAATCGAAGCCGAGAATGTCGCCAGTGAGAACGTCGAGCAACATATCTACGCCGTTGCCGGTGCCGACAAGTACAAGCTGCTCTACAACCTGGTCAACGACAATGGCTGGGAGCGGGTGATGGTATTTGCCAACCGCAAGGACGAAGTGCGCCGCATCGAGGAACGCCTGGTGCGCGACGGCGTCAACGCCGCCCAGCTCTCGGGCGACGTGCCGCAGCACAAGCGGATCAAGACACTGGAAGGTTTCCGCGAAGGCAAGATCCGCGTGCTGGTCGCCACCGATGTGGCGGGTCGGGGCATTCACATCGACGGCATCAGCCATGTGATCAACTTCACCTTGCCTGAAGTACCGGACGACTATGTGCATCGCATTGGTCGCACGGGTCGTGCCGGGGCAGCAGGTGTATCGATCAGCTTTGCCGGCGAAGACGACTCTTACCAGTTGCCGTCGATCGAAGCGCTGCTGGGTCGCAAGATCAGTTGCGAGATGCCACCGACTCATCTGTTGCGGCCGGTTGAGCGCAAGCGGCCCTAA	MTVLKALKKMFGKSEAEQLAPVASAPQAPNRADAQQSRRTAPPVAEAKTTPPTATAAQPVAAPAQEKPRSEAPRPRRERAPKPPVVAWKLEDFVVEPQEGKTRFHDFKLAPELMHAIQDLGFPYCTPIQAQVLGYTLAGKDAIGRAQTGTGKTAAFLISIITQLLQTPPPKERYMGEPRALIIAPTRELVVQIAKDAADLTKYTGLNVMTFVGGMDFDKQLKHLEARHCDILVATPGRLLDFNQRGDVHLDMVEVMVLDEADRMLDMGFIPQVRQIIRQTPPKSERQTLLFSATFTDDVMNLAKQWTTDPAIVEIEAENVASENVEQHIYAVAGADKYKLLYNLVNDNGWERVMVFANRKDEVRRIEERLVRDGVNAAQLSGDVPQHKRIKTLEGFREGKIRVLVATDVAGRGIHIDGISHVINFTLPEVPDDYVHRIGRTGRAGAAGVSISFAGEDDSYQLPSIEALLGRKISCEMPPTHLLRPVERKRP	PGPT0013740_606	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927	NA	NA
D1-36_01064	657	estB_1	COG0400	Carboxylesterase 2	ATGACCGACCCCTTGATTCTCGAGCCTTCTGGCACCGCCGATGCCTGCATTATCTGGCTCCACGGCCTGGGCGCCGATCGCTACGACTTCATGCCGGTAGCCGAAATGTTGCAGCAAAGCCTGCTCACCACACGTTTCGTCCTGCCTCAAGCACCCACTCAGCCCGTCACCATCAATGGTGGCTATGCCATGCCAAGCTGGTACGACATCCGCGCCCTGAGCCCGGCTCGAGCCATTGACGAAGATCAACTCGAAACCTCGGCCCAGCGGGTCATCGACCTGATGGAGACCCAGCGATCCAGCGGAATAGACGCTTCGCGAATCTTCCTCGCGGGTTTTTCCCAAGGTGGCGCGGTGGTCTATCACACAGCGTTCGTCAAATGGCAGGGGCCCTTGGGGGGCGTTATCGCGCTGTCCACTTATGCGCCAACTTTCAGCGAGCAATTGCAACTCTCTGCCAGCCAGCAGCGCATCCCGGTACTGGCGTTGCACGGACAATACGACGAGGTGGTCCTTAACCCGATGGGCCGGACGGCGAAAGAGTATCTGAAGCAGCATGGTGTCACCGTGACATGGCAGGAATACCCAATGGGCCACGAAGTGTTACCCGAGGAGATCCGCGACATCGGCGCCTGGCTGGATAAGCAGTTGCGCTAA	MTDPLILEPSGTADACIIWLHGLGADRYDFMPVAEMLQQSLLTTRFVLPQAPTQPVTINGGYAMPSWYDIRALSPARAIDEDQLETSAQRVIDLMETQRSSGIDASRIFLAGFSQGGAVVYHTAFVKWQGPLGGVIALSTYAPTFSEQLQLSASQQRIPVLALHGQYDEVVLNPMGRTAKEYLKQHGVTVTWQEYPMGHEVLPEEIRDIGAWLDKQLR	PGPT0028515_2240	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028515-mhqD-K06999	NA	NA
D1-36_01065	1032	yhdW		Putative amino-acid ABC transporter-binding protein YhdW	ATGAAGTTACTGAAATCCACCCTGGCAGTCGTGACTGCAGCAGCAGTCCTCGGCGTCAGCGGGTTCGCTCAGGCGGGTGCAACCCTGGATGCCGTGCAGAAGAAAGGTTTTGTGCAATGTGGTGTAAGTGATGGCTTGCCGGGCTTCTCGGTGCCAGATTCCACCGGCAAGATCGTCGGTATCGACGCTGACTTCTGCCGTGCCGTTGCCGCTGCGGTATTTGGCGATGCGACCAAGGTCAAGTTCAGCCAGTTGAACGCCAAGGAGCGCTTCACCGCGCTGCAATCGGGCGAAATCGACGTGCTGTCGCGCAACTCCACCATGACCAGCTCCCGTGATGCGGGCATGGGCCTGAAGTTTCCTGGCTTCATCACCTACTATGACGGCATCGGTTTCCTGGCCAACAGCAAACTGGGCGTCAAGAGCGCCAAAGAACTGGACGGTGCAACCATCTGCATCCAGGCCGGTACCACCACCGAACTGAACGTATCCGACTACTTCCGCGCCAACGGCCTGAAGTACACCCCGATCACCTTCGACACCTCCGATGAAAGCGCCAAGTCGCTGGAATCCGGTCGTTGCGACGTGCTGACCTCCGACAAGTCCCAGCTGTTCGCCCAGCGCAGCAAGCTGGCCTCGCCAAAGGACTACGTGGTTCTGCCGGAAACCATTTCCAAGGAGCCTCTGGGCCCGGTCGTGCGTAACGGCGACGACGAGTGGCTGGCTATCGTGCGTTGGACTGGCTTCGCCATGCTCAATGCCGAAGAAGCAGGCGTGACTTCGAAAAACGTCGAAGCCGAAGCCAAGTCCACCAAGAACCCTGACGTCGCTCGTATGCTGGGCGCTGACGGTGAATACGGTAAAGACCTGAAGCTGCCTAAGGACTGGGTCGTGCAGATCGTCAAGCAAGTCGGCAACTACGGCGAAATGTTCGAGCGCAACCTCGGCAAAGACACCCCGCTGCAAATCGATCGCGGTCTGAACGCTCTGTGGAACGCAGGCGGCATCCAATACGCACCACCAGTGCGCTGA	MKLLKSTLAVVTAAAVLGVSGFAQAGATLDAVQKKGFVQCGVSDGLPGFSVPDSTGKIVGIDADFCRAVAAAVFGDATKVKFSQLNAKERFTALQSGEIDVLSRNSTMTSSRDAGMGLKFPGFITYYDGIGFLANSKLGVKSAKELDGATICIQAGTTTELNVSDYFRANGLKYTPITFDTSDESAKSLESGRCDVLTSDKSQLFAQRSKLASPKDYVVLPETISKEPLGPVVRNGDDEWLAIVRWTGFAMLNAEEAGVTSKNVEAEAKSTKNPDVARMLGADGEYGKDLKLPKDWVVQIVKQVGNYGEMFERNLGKDTPLQIDRGLNALWNAGGIQYAPPVR	PGPT0020815_384	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_L-AMINO_ACID_TRANSPORT,PGPT0020815-aapJ|bztA-K09969	NA	NA
D1-36_01066	1182			hypothetical protein	ATGCAAAATTCAATCGGCGCACCTAAGCAGAGGTTCAGCCTCAGCGATCCACGAGTGCGTGCGTGGGTATTTCAGATCGTCACCATCGTGGCGGTCATCTCGCTGGGCTGGTTTCTGTTCGATAACACACAAACCAACCTGGAACACCGGGGCATCACGTCCGGTTTCGGTTTTCTGGAGCGCAGTGCCGGGTTCGGCATCGCCCAACATCTGATCGACTACACCGAAGCGGACAGTTATGCCCGCGTCTTTGTCATCGGTCTGCTCAACACCCTCCTGGTGACCTTCATTGGCGTGATCCTGGCGACCATCCTGGGGTTCATCATCGGCGTCGCACGCTTGTCGCAGAACTGGATCATCTCCAAGCTGGCGACCGTCTATGTGGAGGTTTTCCGTAACATCCCACCGCTGTTGCAAATCCTGTTCTGGTACTTCGCCGTATTCCTGACCATGCCGGGACCACGGGCTGCCCACAATTTCGGTGACACGTTCTTCGTCAGCAGCCGGGGCCTGAACATGCCGGCGGCGCTGGTGGCCGATGGGTTCTGGCCGTTCGTGATCAGCATCGTGCTGGCGATTGTCGCGATCGTGCTGATGACGCGCTGGGCCAACAAGCGCTTCGAAGCGACGGGCGAGCCGTTTCACAAATTCTGGGTCGGCCTGGCGCTGTTCCTGGTGATCCCGGCAATCTGCGCTTTGGTCTTCGGGGCGCCTGTGCATTGGGAAATGCCACAGCTCAAGGGCTTCAACTTCGTCGGCGGCTGGGTGTTGATCCCGGAGCTGCTTGCGTTGACCCTGGCCTTGACCGTGTACACCGCGGCGTTCATCGCCGAGATCGTGCGCTCGGGCATCAAGTCGGTCAGCCATGGCCAGACCGAGGCGGCCCGTTCCCTGGGGCTGCGCAACGGTCCGACCTTGCGCAAAGTCATCATCCCGCAAGCCCTGCGTGTGATCATTCCGCCGTTGACCAGCCAATACCTGAACCTGGCGAAGAACTCTTCCCTGGCGGCTGGTATCGGTTACCCGGAAATGGTTTCGCTGTTTGCCGGCACGGTGTTGAACCAGACCGGCCAGGCCATCGAGGTGATTGCGATCACCATGAGCGTGTACCTGGCGATCAGTATCAGCATTTCCTTGCTGATGAACTGGTACAACAAGCGCATTGCGCTGATCGAGCGGTGA	MQNSIGAPKQRFSLSDPRVRAWVFQIVTIVAVISLGWFLFDNTQTNLEHRGITSGFGFLERSAGFGIAQHLIDYTEADSYARVFVIGLLNTLLVTFIGVILATILGFIIGVARLSQNWIISKLATVYVEVFRNIPPLLQILFWYFAVFLTMPGPRAAHNFGDTFFVSSRGLNMPAALVADGFWPFVISIVLAIVAIVLMTRWANKRFEATGEPFHKFWVGLALFLVIPAICALVFGAPVHWEMPQLKGFNFVGGWVLIPELLALTLALTVYTAAFIAEIVRSGIKSVSHGQTEAARSLGLRNGPTLRKVIIPQALRVIIPPLTSQYLNLAKNSSLAAGIGYPEMVSLFAGTVLNQTGQAIEVIAITMSVYLAISISISLLMNWYNKRIALIER	PGPT0020820_626	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_L-AMINO_ACID_TRANSPORT,PGPT0020820-aapQ|bztB-K09970	NA	NA
D1-36_01067	1098	yhdY	COG0765	Inner membrane amino-acid ABC transporter permease protein YhdY	ATGACATCTCATACTTTCAAACCCGACATGCCACCGCCGAGCAGCAGTATCGGCGTGGTGGCATGGATGCGCGCCAACATGTTCTCCAGCTGGCTCAACACGCTGTTGACGTTGTTTGCGTTCTACCTGATCTACCTGATCATTCCGCCGATCCTGCAATGGGCGATCCTGGATGCCAACTGGGTCGGCACCACCCAGGCCGACTGCACCAAGGAAGGCGCTTGCTGGGTGTTCATCCAGCAGCGTTTCGGCCAGTTCATGTACGGCTATTACCCGACGGGCCTGCGCTGGCGCGTGGACCTGACCGTGTGGCTGGCCGTGATCGGCGTGGCGCCACTGTTCATCTCGCGCTTCCCGCGCAAGGCGATCTACGGCCTGAGCTTCCTCGTGCTGTACCCGATCATCGCCTGGTGCCTGTTGCACGGCGGCGTGCTGGGCCTGGATACCGTGGCGACCAGCCAGTGGGGCGGCCTGATGCTGACTCTGGTGATCGCCACCGTCGGCATCGCCGGAGCCTTGCCGCTGGGTATCGTCCTTGCGCTTGGCCGTCGCTCCAACCTGCCGGCGATCCGCGTGGTCTGCGTGACGTTCATCGAGTTCTGGCGCGGCGTGCCGTTGATCACAGTGCTGTTCATGTCCTCGGTCATGCTGCCGTTGTTCCTGCCTGAAGGCATGAACTTCGACAAGCTGCTGCGGGCACTGATCGGCGTGATCCTGTTCCAGTCGGCCTACGTGGCCGAAGTGGTGCGCGGTGGCCTGCAAGCGATTCCCAAGGGGCAGTACGAAGCGGCCGCGGCGATGGGCCTGGGGTACTGGCGCAGCATGGGCCTGGTGGTTCTGCCGCAAGCCCTGAAAATGGTGATCCCGGGGATCGTCAACACGTTTATCGCGTTGTTCAAGGACACGAGCCTGGTGATCATCATCGGCCTGTTCGACCTGCTCAACAGCGTGAAACAAGCTGCCGCCGACCCGAAATGGCTGGGCATGGCCACTGAAGGCTATGTGTTCGCCGCCCTGGTGTTCTGGATTTTCTGTTTTGGTATGTCCCGCTATTCCATGCATTTGGAACGCAAGCTGGACACTGGCCACAAGCGTTAG	MTSHTFKPDMPPPSSSIGVVAWMRANMFSSWLNTLLTLFAFYLIYLIIPPILQWAILDANWVGTTQADCTKEGACWVFIQQRFGQFMYGYYPTGLRWRVDLTVWLAVIGVAPLFISRFPRKAIYGLSFLVLYPIIAWCLLHGGVLGLDTVATSQWGGLMLTLVIATVGIAGALPLGIVLALGRRSNLPAIRVVCVTFIEFWRGVPLITVLFMSSVMLPLFLPEGMNFDKLLRALIGVILFQSAYVAEVVRGGLQAIPKGQYEAAAAMGLGYWRSMGLVVLPQALKMVIPGIVNTFIALFKDTSLVIIIGLFDLLNSVKQAAADPKWLGMATEGYVFAALVFWIFCFGMSRYSMHLERKLDTGHKR	PGPT0020825_857	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_L-AMINO_ACID_TRANSPORT,PGPT0020825-aapM|bztC-K09971	NA	NA
D1-36_01068	765	glnQ_5		Glutamine transport ATP-binding protein GlnQ	ATGAGTGAAGCGATCAAACAGCCTGTGAGCCCTGAAGGCATTATTCAGATGCAGGGCGTGAACAAGTGGTACGGCCAGTTCCACGTGTTGAAAGACATCAACCTGAACGTCAAGCAGGGCGAGCGCATCGTGCTGTGCGGCCCGTCGGGTTCCGGCAAGTCCACGACCATCCGCTGCCTCAACCGCCTGGAAGAGCACCAGCAGGGTCGCATCGTGGTCGACGGCGTCGAGCTGACCAACGACCTCAAGCAGATCGAAGCGATCCGCCGTGAAGTCGGCATGGTGTTCCAGCACTTCAACCTGTTCCCGCACCTGACCATTCTGCAGAATTGCACCCTGGCGCCCATGTGGGTGCGCAAGATGCCCAAGCGCAAGGCCGAGGAAATCGCCATGCACTATCTGGAGCGCGTTCGCATTCCAGAGCAGGCGCACAAATACCCGGGTCAGCTCTCCGGTGGTCAGCAACAGCGCGTGGCGATCGCCCGTGCCCTGTGCATGAAACCGAAAATCATGCTGTTCGACGAACCGACCTCGGCCCTCGACCCGGAAATGGTGAAAGAGGTTCTGGACACCATGATCGGCCTGGCCGAAGACGGCATGACCATGCTCTGCGTAACCCACGAAATGGGCTTCGCCCGTACCGTGGCGAACCGTGTGATCTTCATGGACAAGGGTGAAATCGTCGAACAGGCCGCGCCGAACGACTTCTTCGACAACCCGCAGAACGACCGCACCAAGCTGTTCCTGAGCCAGATCCTGCATTGA	MSEAIKQPVSPEGIIQMQGVNKWYGQFHVLKDINLNVKQGERIVLCGPSGSGKSTTIRCLNRLEEHQQGRIVVDGVELTNDLKQIEAIRREVGMVFQHFNLFPHLTILQNCTLAPMWVRKMPKRKAEEIAMHYLERVRIPEQAHKYPGQLSGGQQQRVAIARALCMKPKIMLFDEPTSALDPEMVKEVLDTMIGLAEDGMTMLCVTHEMGFARTVANRVIFMDKGEIVEQAAPNDFFDNPQNDRTKLFLSQILH	PGPT0020830_476	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_L-AMINO_ACID_TRANSPORT,PGPT0020830-aapP|bztD-K09972	NA	NA
D1-36_01069	486			hypothetical protein	ATGAAAACCCAGCAATGCGTCAGCTGCGGCACTCTCGAAGCGATGCATCACTTCCAAGGCCGCACATTTGCGGTCGACTATAAGCAGGTTACCCGGCAAGTATCCGACATCGCCGGATGGGAATGCCGGATCTGCGGGGAAATCGAATTCGATCACGACACTGACAGTGCCGAGCGTTACTCCAAGGCCAGCGACCTGTTGCTCGAAGATTATGCGCTGGCCATAGGTGCGGAAATCAAACGCATCCGGCGCAAACTGCACCTCACGCAAAAAGACGCAGTGAAGCTGTTGTCGGGAGGCGGACACAACGCCTTCTCCCGCTATGAGCGCGGCGAAGTCGCCCCGGCTCAATCGCTGTTCGTGCTGATGCGGCTGCTTGATCGCCATCCGCATCTGATGGCTGAGGTCGTTGCGCTGAGTGACGGAGCCGATTTGCAGCGACTGCTGTCGAGTCGCCATGGGGAACGCGACACGGCGGATCTCTGA	MKTQQCVSCGTLEAMHHFQGRTFAVDYKQVTRQVSDIAGWECRICGEIEFDHDTDSAERYSKASDLLLEDYALAIGAEIKRIRRKLHLTQKDAVKLLSGGGHNAFSRYERGEVAPAQSLFVLMRLLDRHPHLMAEVVALSDGADLQRLLSSRHGERDTADL	PGPT0027590_40	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-MqsR-MqsA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027590-antitoxin_mqsA-K13655	NA	NA
D1-36_01070	312	mqsR		mRNA interferase toxin MqsR	ATGGAAAAGAGCACACCCCATTACGACCTGGCGGTGGTCAAGGTCGAGACTCGCAGGTTGGGAAGCAAGGCCTTCACGCTAAGTGCGCGGGAGGGCGGCAGAAGGATGTCGCTGAGTCTTCCCCAAATGCTGCGAATCGTTCAATTGCTCGAATACAGAATGTTTCACAAATCAATGACGACCTACGCCGATCACCGAATCTGGCAAGACGTCTATCACACAACATTTCAGGATCGGGAGATCTACATCAAAGTGTCCTATCGCCCCGGCGGTGGGCATCCGGTGATCTCCTTCAAGGAGAAAAACCAATGA	MEKSTPHYDLAVVKVETRRLGSKAFTLSAREGGRRMSLSLPQMLRIVQLLEYRMFHKSMTTYADHRIWQDVYHTTFQDREIYIKVSYRPGGGHPVISFKEKNQ	PGPT0025835_26	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-MqsR-MqsA_TOXIN-ANTITOXIN_SYSTEM,PGPT0025835-toxin_mqsR-K13651	NA	NA
D1-36_01071	660	lutR_2	COG2186	HTH-type transcriptional regulator LutR	ATGTCCGACATTTCTCCATTGATAAAGCGCTCGTTGGTCGATCAGGCCTTGGAGCAATTGCGCCAACGCATCAGCGACGGCGTGTGGGTCGTCGGCCAGCGCCTGCCCACCGAGCCGGAGCTGGTTGCCGAGTTGGGCATCAGCCGCAACACCGTGCGCGAAGCCATGCGCGTGCTGGCGTTTTCCGGGTTGATCGAAATCCGTCAGGGCGACGGCAGCTATGTGCGGGCGGTGGTCGATCCGCTGGACACGCTCAAGGCGTTGTCGCGCTGCTCACTGGAGCAGGCGCGAGAAACCCGGCACATCCTGGAAGTGGAGGCCATTGGCCTGGCGGCGCTGCGGCGCACCGAGGCGGATTTGGCTGCTTTGCGCCAAGCGTTGAAAACCAGCGGAGAGCATTACCACGGCGACCTGGAGCACTACATCGCCTGCGACCTGATTTTCCATCGGCTTCTGGTGGATGCCGCGCATAACCCGGCCCTCAGCGAGCTCTATCGTTATTTTTCCAGCGTGATCGGCGCGCAGTTGCGCCAGAGCCTCAACGTCATTCCTCGCCATCAACACGTGTTTGACCTGCATGTCGAAATCCTCGACGCCGTCGAACGACAGGAGCCGGAGCGGGCCAAGGCCCTTTGCCGGCAGTTGATCAATGAACCCTGA	MSDISPLIKRSLVDQALEQLRQRISDGVWVVGQRLPTEPELVAELGISRNTVREAMRVLAFSGLIEIRQGDGSYVRAVVDPLDTLKALSRCSLEQARETRHILEVEAIGLAALRRTEADLAALRQALKTSGEHYHGDLEHYIACDLIFHRLLVDAAHNPALSELYRYFSSVIGAQLRQSLNVIPRHQHVFDLHVEILDAVERQEPERAKALCRQLINEP				NA	NA	NA	NA	NA
D1-36_01072	1305	yycB_1	COG2807	putative transporter YycB	ATGTCCCGCGACCCGCTTGACCACGCCACCGCGACGACGCACAAACGTGCCGCCGAACTCGAAGAACTGCTGATCGACGCCGAAGCCGACGATGAGCAAGCCCAGCAGAACCATCCATTGGTGCGCCGGCCCTGGCTGTTGTTGCTCGGGCTGATTCTGGTGGCGCTGAACCTGCGTCCGGCTCTGTCGAGCATGGCGCCGCTGCTCAGTGATGTATCAAAAAGCCTTGGACTGTCGGCTGCCCAAGCGGGCCTGCTGACTACGCTGCCCGTGCTTTGCCTGGGGTTGTTTGCACCGCTGGCTCCGGTTCTGGCTCGGCGTTTTGGCGCAGAGCGCGTCGTGTTGGGGATTTTGCTCACGTTGGCTGGCGGGATCATTCTGCGCAGTTCGTTCGGCCAGTTCGGGCTGTTCGCCGGTAGCATCCTGGCAGGTGCCAGCATTGGCGTGATCGGCGTGCTGCTGCCGGGCATCGTCAAGCGCGACTTCGCCAAACAGGCTGGGGCCATGACCGGTGTCTACACCATGGCGCTGTGCCTGGGCGCCGCGATGGCGGCCGGGGCTACGGTGCCTTTGAGCGAACGAATGGGCGATAGCTGGTCGCTTGGCCTGGGTTTCTGGATGCTGCCTGCACTATTGGCCGCGGTGTTCTGGTTACCGCAAGTGGGGTACAAGCACGGCGCTCACAACGTGGCCTATCGTGTCCGCGGTCTGCTGCGTGATCCATTGGCCTGGCAGGTGACGTTGTACATGGGGTTGCAGTCTTCCCTGGCCTACATCGTATTCGGTTGGCTGCCGTCGATTCTCATCGGCCGGGGCCTGACGCCTACCCAGGCCGGGCTGGTGCTGTCCGGTTCGGTGATCGTGCAATTGATCAGCTCGCTGGCGGCGCCATGGCTGGCAACGCGCGGCAAGGACCAACGGCTCGCCATCGTGATTGTGATGGTCATGGCCCTCGGCGGTCTGTTCGGTTGCCTCTATGCCCCTATCGAGGGCCTGTGGGGCTGGGCTATCTTGTTGGGGTTGGGGCAGGGCGCGACGTTCAGCCTGGCCCTTACCCTGATCGTATTGCGCTCGCGCGACGCCCACGTGGCCGCGAACCTTTCGAGCATGGCCCAGGGCTTTGGTTACACGCTGGCGTCCCTGGGGCCGTTCGCGGTGGGCGTGGTACATGACTGGACTGGCGGCTGGAGTGCTCTGGGCTGGATCTTCGGCGTGATTGGCCTGGGGGCGATCATCGCGGGAATCGGTGCCGGTCGGGCTCTGTACGTCGGCGTGGTCAGCGAAAGAGTCACCGAGCCTCATTGA	MSRDPLDHATATTHKRAAELEELLIDAEADDEQAQQNHPLVRRPWLLLLGLILVALNLRPALSSMAPLLSDVSKSLGLSAAQAGLLTTLPVLCLGLFAPLAPVLARRFGAERVVLGILLTLAGGIILRSSFGQFGLFAGSILAGASIGVIGVLLPGIVKRDFAKQAGAMTGVYTMALCLGAAMAAGATVPLSERMGDSWSLGLGFWMLPALLAAVFWLPQVGYKHGAHNVAYRVRGLLRDPLAWQVTLYMGLQSSLAYIVFGWLPSILIGRGLTPTQAGLVLSGSVIVQLISSLAAPWLATRGKDQRLAIVIVMVMALGGLFGCLYAPIEGLWGWAILLGLGQGATFSLALTLIVLRSRDAHVAANLSSMAQGFGYTLASLGPFAVGVVHDWTGGWSALGWIFGVIGLGAIIAGIGAGRALYVGVVSERVTEPH	PGPT0005211_249	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_CYANATE_DETOXIFICATION	XENOBIOTIC_CYANATE_UPTAKE,PGPT0005211-cynX|yeaN-K03449	NA	NA
D1-36_01073	471			hypothetical protein	ATGAGTGATGCCCATAACGCCCTGATCACCCGTTTCTACCAGGCCTTCCAACGCTTGGATGCCGAGGCCATGAGCGCTTGTTATACCGATGACGTGGTGTTCAGCGATCCGGCGTTCGGCGAACTGCGCGGGCGCGATGCCGGTGACATGTGGCGCATGTTGACCACTCGGGCCAAGGATTTTTCCCTGACGTTCGACAACGTGCGCAGCGACGAGCGCAGCGGCGGCGCCCATTGGGTGGCAACGTACCTGTTCAGCCAGACCGGCAATATCGTGGTCAACGATATCCAGGCGCGCTTTGTGTTTCGCGATGACAAGATCTGCGAGCACCACGACAATTTCGATCTGTGGCGCTGGTCTCGCCAGGCTTTGGGCGCCAAGGGTCTCTTGCTGGGCTGGACGCCGCTGGTGCGCAACGCTGTCAGGGCGCAGGCCCTCAAGGGGCTGCGGGCGTTCCAGGCCAGTCGCTGA	MSDAHNALITRFYQAFQRLDAEAMSACYTDDVVFSDPAFGELRGRDAGDMWRMLTTRAKDFSLTFDNVRSDERSGGAHWVATYLFSQTGNIVVNDIQARFVFRDDKICEHHDNFDLWRWSRQALGAKGLLLGWTPLVRNAVRAQALKGLRAFQASR				NA	NA	NA	NA	NA
D1-36_01074	324			hypothetical protein	GTGACGACCGCCAACGAATCTTCCGAGCTGTGCGTGCCCGAGGCGACCGAGCCGGGCAAGCCCTGGTTCGTCTACCTGGTGCGGGCCGCCAATGGCTCGTTGTACTGCGGCATCAGCGATGACCCGGTGCGGCGCTTCGCCAAGCATCAAAGCGGCAAGGGCGCGCGCTTTTTTCTTTCCAGCCCGGCCGTGGCGCTGGTGTACACCGAAGCCTGCCGCGACAAGGGCGAGGCCCTGCGCCAGGAACGGCTGATCAAGAAGCTCAGGAAGAGCGCCAAGGAATGCCTGGTAGCCAGCGCAACGGCTCTTGATCAACCGCGCTGA	MTTANESSELCVPEATEPGKPWFVYLVRAANGSLYCGISDDPVRRFAKHQSGKGARFFLSSPAVALVYTEACRDKGEALRQERLIKKLRKSAKECLVASATALDQPR				NA	NA	NA	NA	NA
D1-36_01075	936			hypothetical protein	ATGTCAGAGCTGATTCTTCACCATTACCCGACATCTCCTTTCGCGGAAAAAGCCCGCCTGCTGCTGGGTTATAAAGGCTTGGCCTGGCGCTCGGTGAACATCCCGCCGATGATGCCCAAGCCCGACCTGACCGCGCTCACCGGCGGCTACCGCAAGACACCGGTCCTGCAAATCGGCGCGGATATCTATTGCGACACCGCCTTGATGGCCCGTCGGTTGGAGCGGGAAAAAGCCTCGCCGGCGCTGTTCCCTGAAGGTCGTGAAATGATCGCGGCGTCCTTTGCGGCGTGGGCCGATTCGGTGGTGTTCCAGCATGCGGTGAGTCTGGTGTTTCAGCCGGAGTCGGTGGCGGTGCGTTTTGCCAAGTTGCCGCCTGAAGCGATCAAGGCGTTCATCAGCGACCGCGCTGGCCTGTTCAGTGGCGGCACGGCCACGCGCTTGTCCGCCGAGCAGGCCAAGCACCAATGGCCGACGATCATGGCGCGGCTTGAGCAGCAGTTGCAGCGCGAAGAGGGGGATTTCCTGCTGGGTGATCCTTCGATTGCCGACTTTGCCATGGCTCATCCGCTGTGGTTCCTCAAAGGCACGCCGGTGACCTCGCCGCTGGTGGACGTATATCCGGCTGTTTCGGCATGGCTCGCGCGAGTGCTGGGTTTCGGCCACGGCGCGTCGAGCCAGATGAGTGCCGAAGAAGCCTTGGGGGTTGCCCGCAACGCGACACCGGCTGCGCTGCCGGATGAGTCGTTCGAAGAGCCTGACGGGTTCACAGCAGGGCAGCAGGTAACCATCGCCGCGACGGACTATGGTGTCGATCCGGTGGCTGGGGAGTTGCTGTTTGCCGGTCGCGAGGAATTGATTTTGCGTCGCGAAGATGAGCGTGGCGGGGTGGTGCATGTGCACTTTCCGCGGTTTGGATTTCGGGTCGAGACCCGATGA	MSELILHHYPTSPFAEKARLLLGYKGLAWRSVNIPPMMPKPDLTALTGGYRKTPVLQIGADIYCDTALMARRLEREKASPALFPEGREMIAASFAAWADSVVFQHAVSLVFQPESVAVRFAKLPPEAIKAFISDRAGLFSGGTATRLSAEQAKHQWPTIMARLEQQLQREEGDFLLGDPSIADFAMAHPLWFLKGTPVTSPLVDVYPAVSAWLARVLGFGHGASSQMSAEEALGVARNATPAALPDESFEEPDGFTAGQQVTIAATDYGVDPVAGELLFAGREELILRREDERGGVVHVHFPRFGFRVETR	PGPT0013170_472	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799	NA	NA
D1-36_01076	1005	yejK	COG3081	Nucleoid-associated protein YejK	ATGCCGATCCGTCATTGCATCGTCCACCTGATCGACAAAAAACCCGACGGCACGCCTGCTGTGCTTCATGCCCGCGACTCTGAACTCGCCGAATCCACGGCCATCGAGAACATGCTCGCCGATCTCAACGAGAGCTATAACGCCAAGCAAGGCAAGGCCTGGGGATTTTTCCATGCCGAGTCCGGCGCGCATCCGTTCAGCGGCTGGCTGAAGGAGTACCTGGACGGCGGTAAGGACTTCACCGCCTTCAGTCGTGTGGCGGTGGAACACCTGCAAAAACTGATGGAAGAGTCCAACCTGTCGGTAGGCGGCCACGTGCTGTTTGCCCACTACCAACAGGGCATGACCGATTACCTGGCCATCGCCCTGCTGCACCACAGCGAAGGCGTGGCAGTCACCGACGAGCTGGACGTGACCCCGTCCCGCCACCTGGACCTGGGCCAGTTGCACCTGGCGGCGCGGATCAACGTGTCGGAATGGCAGAACAACAAGCAATCCAAACAGTACATCTCGTTCATCAAGGGCAAGAATGGCAAGAAGGTCTCGGAGTACTTCCGCGACTTCATCGGCTGCCAGGAAGGCGTCGACGGCCCTGGCGAGACCCGCACCCTGCTCAAGGCCTTCAGTGACTTCGTCGAAAGCGAAGACCTGCCGGAAGACGATGCCCGGGAAAAGACCAAGACCCTGGTGGACTATGCCAGCAGCCAGGCCAAGCTCGGCGAGCCGATGGGGCTGGAAGAACTCTCCGAACTGATCGACGAAGATCGCCCGAAAGCCTTCTACGACCACATCCGCAACAAAGACTACGGCCTGTCGCCGGAGATCCCGGCGGATAAACGCACCCTCAACCAGTTCCGCCGCTTCACCGGCCGCGCCGAAGGCTTGTCCATCAGCTTCGAAGCGCACTTGCTGGGCTCGAAGATCGAGTATGACGAAGAGGCTGGGACGTTGATCATCAAGGGGTTGCCGACTTCGTTGACTGATCAGCTCAAGCGTCGTAATTGA	MPIRHCIVHLIDKKPDGTPAVLHARDSELAESTAIENMLADLNESYNAKQGKAWGFFHAESGAHPFSGWLKEYLDGGKDFTAFSRVAVEHLQKLMEESNLSVGGHVLFAHYQQGMTDYLAIALLHHSEGVAVTDELDVTPSRHLDLGQLHLAARINVSEWQNNKQSKQYISFIKGKNGKKVSEYFRDFIGCQEGVDGPGETRTLLKAFSDFVESEDLPEDDAREKTKTLVDYASSQAKLGEPMGLEELSELIDEDRPKAFYDHIRNKDYGLSPEIPADKRTLNQFRRFTGRAEGLSISFEAHLLGSKIEYDEEAGTLIIKGLPTSLTDQLKRRN				NA	NA	NA	NA	NA
D1-36_01077	282	hupB_2	COG0776	DNA-binding protein HRm	ATGGCTCTTACTAAAGACCAACTGATCGCTGATTTGGCTGAATCTGTAGACGCACCTAAAGCTACCGTGCGTGCTCTGCTGGACCAACTGGGCCAAGTCGTTGCCGATCAGCTGGAAAACGGCGGCGAACTGACCTTGCCAGGCGTTGGCAAGCTGAAAGTCACCGAGCGTCCTGCCCGTACCGGTCGCAACCCTTCGACTGGCGCAGCCATCGAAATCCCGGCCAAGAAAGTGATCAAGCTGGTTGTGGCCAAAGGCCTGACCGACGCGGTCAACAAGTAA	MALTKDQLIADLAESVDAPKATVRALLDQLGQVVADQLENGGELTLPGVGKLKVTERPARTGRNPSTGAAIEIPAKKVIKLVVAKGLTDAVNK				NA	NA	NA	NA	NA
D1-36_01078	1026	rlmF	COG3129	Ribosomal RNA large subunit methyltransferase F	ATGAACGCCCCCCGCACTTCCAAACCTGCGCGCAAGAAGCCTGACGCCGCGTCCTCAAGCAAAGCCGTCGAGCCGCGCGAGAAGGCCGGCCTGCACCCACGCAATCGTCATCAGGGTCGTTACGACTTCCCGGCGCTGATCAAGACCTCGCCCGAACTGGCGAAGTACGTGATCACCAACCCGTACGGCAAGGAAAGCATCGACTTCGCCAACCCCGACGCCGTGCGGGTGTTCAACCGGGCGCTGCTCAAGGCGTTCTATGGGATCCAGCATTGGGACATCCCGGCGGATTACCTCTGCCCTCCGGTTCCAGGCCGCGCCGATTACGTACACTTTCTCGCTGACCTGCTGGCGAGCATGAACGACGGCAAGGTGCCGCGTGGCGCAATCGTCAATGTGCTGGACATCGGCATGGGCGCCAATTGCGTTTATCCGCTGATCGGCAACAGCGAATACCGTTGGCACTTCCTCGGCTCGGAAATCGACCCGACAGCCGTGGCGGCCGCCCGGGCCATCGTGCTGTCCAACGATCTGAACAAGGCCATCCAGTTGCGCCAGCAAACCAACCGCAAGCAGATTCTGCTGGGCCTTCTGGAAAGCTCTGAACGCTTCGACCTGACGATGTGCAACCCACCGTTCCACGCCTCCCTGGAAGAAGCGACCAAGGGCAGCCAGCGCAAATGGCGCGCGCTGGGCAAAGCGGATCCGAAGCGCAAGTTACCGGTGCTGAACTTCGGCGGCCAGGCGGCGGAGTTGTGGTGCGAGGGCGGCGAGGCGCGGTTTGTCACGCAACTGATCAGCGAAAGCGCACAGGTGGCGGGCCAAGTGTTGTGGTTCAGCACCCTGGTATCGAAGGCGTCGAACCTGCCGGCCATCGAGACAGCGCTGAAAAAGGCGGGGGCCTTGCATAGTCAGGTGGTGGAAATGTCCCAGGGACAAAAACAGAGCCGCTTCGTGGCCTGGACCTTCCAGACCGAGGCACAGCAACAGGCTTGGCGCCAGTCGCGTTGGGTTCGCAAGGGCTGA	MNAPRTSKPARKKPDAASSSKAVEPREKAGLHPRNRHQGRYDFPALIKTSPELAKYVITNPYGKESIDFANPDAVRVFNRALLKAFYGIQHWDIPADYLCPPVPGRADYVHFLADLLASMNDGKVPRGAIVNVLDIGMGANCVYPLIGNSEYRWHFLGSEIDPTAVAAARAIVLSNDLNKAIQLRQQTNRKQILLGLLESSERFDLTMCNPPFHASLEEATKGSQRKWRALGKADPKRKLPVLNFGGQAAELWCEGGEARFVTQLISESAQVAGQVLWFSTLVSKASNLPAIETALKKAGALHSQVVEMSQGQKQSRFVAWTFQTEAQQQAWRQSRWVRKG				NA	NA	NA	NA	NA
D1-36_01079	390			hypothetical protein	ATGGACCAATCTCGCTCTATTACCTTTCCCGGTACCGACCCTACCGGGATTATTTCATGCAGATCGAATCCGATGGAGGGCATCAGTTTCAGGATCGACCTGACGGGAGTACAAGTCGGTGCGGTCGTCCTATTTTCATGGCAAGGATTCCGTGATCAAGCGCTAACGGATCCTATACGAGGAACGCGGACCGTAGGCGAATATGTTGTTGAACAAAGTGATATCGATAAACGATTTTTGGAGGGAAAAATCGGAGAGTATTTTAAACACATCAAACCGATTCGATACGGTTGGGGAAAAGCCTCTTACACGATTGAAGTGATGGCCAAAGTTGAAGTTAATTTGCTCAATAGTTCCGGTCAAACCTGTGATGAGGTAAAGGAGAAATAA	MDQSRSITFPGTDPTGIISCRSNPMEGISFRIDLTGVQVGAVVLFSWQGFRDQALTDPIRGTRTVGEYVVEQSDIDKRFLEGKIGEYFKHIKPIRYGWGKASYTIEVMAKVEVNLLNSSGQTCDEVKEK				NA	NA	NA	NA	NA
D1-36_01080	2847	valS	COG0525	Valine--tRNA ligase	ATGGATAAGACCTACCAGCCGCACGCCATTGAAACTTCCTGGTACAACACCTGGGAGTCCGAGAATTATTTCGCTCCGCAAGGCGCGGGCGATTCCTACACCATCATGATCCCGCCGCCGAATGTCACCGGCAGCCTGCACATGGGCCACGGTTTCAATAACGCGATCATGGACGCCCTGATCCGTTTCCGTCGCATGCAAGGTCGTAATACGTTGTGGCAACCGGGCACCGACCACGCCGGTATCGCCACCCAGATGTTGGTGGAGCGCCGCCTCGAAGCCCAGGGCCAGAACCGTCATGACCTGGGTCGCGAAAAATTCCTGGAGAAAGTCTGGGAATGGAAAGAGGAGTCCGGCGGTAACATCACCCGCCAGATCCGCCGCCTCGGTTCGTCCGTGGACTGGAGCCGCGAGCGCTTCACCATGGACGACGGCCTCTCGGAAGCGGTGAAGGAAGCCTTCGTGCGCCTGCATGAAGACGGTCTTATTTACCGCGGCAAGCGCCTGGTCAACTGGGACACCAAGCTGCACACGGCGATTTCCGACCTCGAAGTGGAGAACCACGACGAGAAGGGTTTCCTGTGGAACCTGAAGTACCCGCTGGCCGACGGCGCCAAAACCGCCGAAGGCAAGGATTACCTGATCGTTGCCACTACCCGTCCGGAAACCATGCTCGGCGACGCTGCCGTGGCGGTGAACCCGAACGACGAGCGCTATAAGGCATTGATCGGCAAGTTTGTCGAGCTGCCGTTGGTGGGCCGTCGTATTCCGATCATCGGCGACGATTATTGCGACCCTGAATTCGGCACCGGTTGCGTGAAAATCACCCCGGCCCACGATTTCAACGACTACGAAGTCGGCAAGCGCCACAACCTGCCGCTGCTGAACATCTTCGACAAGAACGCCAATGTCTTGCCAGCAGCCCAGGTATTCAACCTCGATGGCACGCTGAACGAGAACGTCGACGGCCAGATTCCGGCCGAATTCGCCGGCCTGGAGCGCTTCGAGGCACGCAAGCAGATCGTCGCGGCCTTCGAAGCCGCCGGCCTGCTGGTGAGCGTCGATGATCACGCCCTGAAAGTCCCGAAAGGCGACCGTTCCGGCACCATCATCGAGCCGTGGCTGACCGATCAATGGTACGTGTCCACCAAGCCATTGGCCGAGCCGGCGATTGCCGCCGTGGAAGACGGCCGCATCCAGTTCGTGCCCAAGCAATACGAAAACATGTACTTCTCGTGGATGCGCGACATCCAGGATTGGTGCATCAGCCGTCAGCTGTGGTGGGGTCATCGCATCCCGGCCTGGTACGACGAGTCGGGCAAGGTCTACGTTGGCCGCGATGAAGCCGAAGTCCGCGCCAAGCACAACCTCGGCCCGGACGTTGCCCTGCAACAGGACAACGACGTTCTCGATACCTGGTTCAGCTCCGGCCTGTGGACCTTCTCCACCCTAGGCTGGCCGCAGCAGACCGAATTCCTGAAGAAATTCCACTCCACCGACGTGCTGGTCACCGGCTTCGACATCATTTTCTTCTGGGTCGCCCGGATGATCATGATGACCATGCACTTGATGAAAAACGAAGACGGTACCCCGCAGGTGCCGTTCAAGACCGTTTATGTCCATGGCCTGGTGCGCGACGGCCAGGGCCAGAAGATGTCCAAGTCCAAGGGCAACGTCCTGGATCCGCTGGACATCATCGACGGCATCGACCTGGAAACCCTGGTGCAAAAACGCACCTCCGGCCTGATGCAGCCAAAACTGGCGAAGAAGATCGAGAAAGCCACCCGCGAAGAATTCGCCGACGGCATCGCCAGCTACGGCACCGATGCCCTGCGTTTCACTTTCTGTTCGCTGGCATCCACCGGTCGCGACATCAAGTTCGACATGGGCCGCGTCGAAGGCTATCGCAACTTCTGCAACAAGATCTGGAACGCCGCGCGCTACGTGTTGGATAAAGGCGAAGATTGCGGCCAGAACGGCGAAGCCTACGAGCTGACCCTGGCGGATCGCTGGATCATTTCCCAGTTGCAACGCACCGAAGCCGAAGTAACCCGCCAGCTCGACCAGTTCCGTTTCGACCTGGCGGCGCAAGCGCTGTACGAGTTCATCTGGAACCAGTATTGCGACTGGTACCTGGAACTGTCCAAGCCGGTTTTGTGGGACGAAAACGCTCCGGTCGAGCGCCAGCGCGGCACCCGTCGCACCTTGGTTCGGGTATTGGAAGTGGCCTTGCGCCTGGCGCATCCGTTCATGCCGTTCATCACCGAGGAAATCTGGCAGCGCGTCGCGCCGCTGGCTGGTGCGCAGGGCAAGACGATCATGCTGCAACCGTGGCCGGTGGCCAACGAGAGCCGCATCGATCCGGCGGCCGAAGACGACATCGAGTGGCTGAAGACCTTCATGCTCGGCCTGCGCAACATCCGCGCCGAAATGAACATCGGCCCGGGCAAGCCGCTGACCCTGTTCCTCAAAAACGCCAGCGCCGAAGACCTGCGCCGCCTCAATGAGAACGAAGCGCTGCTCAAGAAGCTGGCGAAGCTTGAATCGGTGACCGTGCTGGCTGCCGGCGAAGAGGCGCCGCTGTCGGCCACCGCATTGGTCGGCGAGATGGAAGTGCTGGTGCCGATGGCAGGCCTGATCGACAAGGCGGCCGAACTGGCGCGCCTGGACAAGGAAATCCTGCGCCTGAAGGGTGAAGTCCAGCGCGTTGGCGGCAAGCTGTCGAACGCCGGCTTTGTCGACAAGGCGCCGGCCGAAGTCATCGAGAAGGAACGGGCCAAGTTGGCCGAGGCTGAGCTGGCCCTGGGCAAGCTGGCTGAGCAGCATGCGCGGATTGCCAGTCTGTAA	MDKTYQPHAIETSWYNTWESENYFAPQGAGDSYTIMIPPPNVTGSLHMGHGFNNAIMDALIRFRRMQGRNTLWQPGTDHAGIATQMLVERRLEAQGQNRHDLGREKFLEKVWEWKEESGGNITRQIRRLGSSVDWSRERFTMDDGLSEAVKEAFVRLHEDGLIYRGKRLVNWDTKLHTAISDLEVENHDEKGFLWNLKYPLADGAKTAEGKDYLIVATTRPETMLGDAAVAVNPNDERYKALIGKFVELPLVGRRIPIIGDDYCDPEFGTGCVKITPAHDFNDYEVGKRHNLPLLNIFDKNANVLPAAQVFNLDGTLNENVDGQIPAEFAGLERFEARKQIVAAFEAAGLLVSVDDHALKVPKGDRSGTIIEPWLTDQWYVSTKPLAEPAIAAVEDGRIQFVPKQYENMYFSWMRDIQDWCISRQLWWGHRIPAWYDESGKVYVGRDEAEVRAKHNLGPDVALQQDNDVLDTWFSSGLWTFSTLGWPQQTEFLKKFHSTDVLVTGFDIIFFWVARMIMMTMHLMKNEDGTPQVPFKTVYVHGLVRDGQGQKMSKSKGNVLDPLDIIDGIDLETLVQKRTSGLMQPKLAKKIEKATREEFADGIASYGTDALRFTFCSLASTGRDIKFDMGRVEGYRNFCNKIWNAARYVLDKGEDCGQNGEAYELTLADRWIISQLQRTEAEVTRQLDQFRFDLAAQALYEFIWNQYCDWYLELSKPVLWDENAPVERQRGTRRTLVRVLEVALRLAHPFMPFITEEIWQRVAPLAGAQGKTIMLQPWPVANESRIDPAAEDDIEWLKTFMLGLRNIRAEMNIGPGKPLTLFLKNASAEDLRRLNENEALLKKLAKLESVTVLAAGEEAPLSATALVGEMEVLVPMAGLIDKAAELARLDKEILRLKGEVQRVGGKLSNAGFVDKAPAEVIEKERAKLAEAELALGKLAEQHARIASL				NA	NA	NA	NA	NA
D1-36_01081	366			hypothetical protein	ATGGATACTCCAAAACCTTCGCAAAAACCCGCGCAACTGTTGGATGACCTCGAGTCGATCCGCCAACTGCTCGGCGATGACAACCTGCAACCGCCGCTGCTGACCGATACGGTGGAGCACGAGCCGGTGCATGACGAACAGATCCCGCTGCTGTTCGACCCGATCAACGGCCAGCCTGAACCCCAGCCAGCCACCAAGGCAGAACCGAAAGGCCCCGACGCCTTGCTACACCTGGACCGAGAACTTCGCGCCGCCGCGCAGTTGATCATGCAAGACGTCATCGACGACTTCGCGCCGCATATCGAGACCGAGATCAAGCGCCGGTTGGATGCGCGGATGGAGCGGTTGTTGAGCCAGTACGAATAG	MDTPKPSQKPAQLLDDLESIRQLLGDDNLQPPLLTDTVEHEPVHDEQIPLLFDPINGQPEPQPATKAEPKGPDALLHLDRELRAAAQLIMQDVIDDFAPHIETEIKRRLDARMERLLSQYE				NA	NA	NA	NA	NA
D1-36_01082	429	holC	COG2927	DNA polymerase III subunit chi	ATGACCAAAGTCGATTTCTATATCCTGCCCAGCGCCGATCCCTCGGCGCGGCTGGATTTCGCCTGCAAACTCACCGAAAAGGCCTGGCGCATGGGCCATCGCATCTACCTGCATTGCAGCGATGCCGCCCAGCGTGACGACCTCGATGCGCGCTTGTGGGCGTTCAAGGGCGAGAGCTTCGTGCCCCATGGCCCTGCCGAAAACGAACCCGAGGGCTTGATCGTACTCGGGCTTGGGAATGACTGCGGGCAACACCACGACCTGCTGGTCAACCTCGACCTGAAAGTGCCGGCCTTCGCCCAGCGCTTCGCCCGCGTGGCGGAAGTGGTGGTGGAAGACCCGGCCATCCGGCAAGCCGCTCGGGAGAGTTTCCGTTTCTACCGTGAACAGGGCTATCCTCTGCAAGACCACCGTTTACAGCGACTCTGA	MTKVDFYILPSADPSARLDFACKLTEKAWRMGHRIYLHCSDAAQRDDLDARLWAFKGESFVPHGPAENEPEGLIVLGLGNDCGQHHDLLVNLDLKVPAFAQRFARVAEVVVEDPAIRQAARESFRFYREQGYPLQDHRLQRL				NA	NA	NA	NA	NA
D1-36_01083	1491	pepA	COG0260	Cytosol aminopeptidase	ATGGAACTGGTTGTAAAAAGCGTCAGCCCAGAAACGTTGAAGACCGCCACCCTGGTGGTTGCCGTGGGTGAAAACCGCAAGCTCGGCGTCGTTGCCAGCCAGCTCGACGCCCTGAGCGGCGGTGCAATCAGCGCCGTGCTCAAGCGCGGCGACCTGGCCGGCAAGGTCGGCCAGAGCCTGTTGCTGCACAACCTGCCCAACCTCAAGGCCGACCGTGTGCTGCTGGTGGGCGTGGGCAAGGACGCCGAACTGGGCGACCGTCCGTTGCGCAAGATCATCGCCGGCGTGCTGGCCACCCTGAAAAACCTCGGTGGCGGCGACGCTGCACTGGCGCTGGACGAACTGATAGTCAAAGGCCGCGACAGCTACGGCAAGAATCGCCTGCTGGCCGAAACCCTGATTGACGGCGAGTACCAGTTCGACCGCTTCAAGAGCCAGAAAGCCGAACCGCGCGCCCTGAAGAAAATCACCCTGCTGACCATCAAGGCCGCCCAGGCCGAAGTCCAGCGCGCCGTGACCCATGCCACCGCCATTGCCAACGGCATGGCTTTCACCCGTGACCTGGGAAACCTGCCGCCGAACATCTGCCACCCGACTTTCATGGGCGAACAGGCCAAGGCGCTTGGCAAGGAATTCAAGGGTCTCAAGGTCGAGGTCTTCGACGAGAAGAAGATCAAGGACCTGGGCATGGGCTCGTTCTATGCCGTCGGCCAGGGCAGCGCCCAGCCGCCGCGCCTGATCGTCATGCAATACAACGGTGGCAAGAAATCCGAGAAGCCGTACGCGCTGGTCGGCAAGGGCATCACCTTTGACACCGGCGGCATCAGCCTCAAGCCCGGCGCCGGCATGGACGAAATGAAATATGACATGGGCGGCGCCGCCAGCGTGTTCGGCACCCTGCGCGCCGTGCTCGAACTGCAATTGCCGATCAACCTGGTGTGCATCCTCGCCTGCGCCGAGAACATGCCCAGCGGCACGGCGTCGCGCCCTGGCGACATCGTCACCACCATGAGCGGCCAGACTGTCGAAATCCTCAACACCGACGCCGAAGGCCGCTTGGTGCTGTGCGACGCCCTCACCTACTCCGAACGCTTCAAGCCGCAAGCGGTGATCGACATCGCCACTTTGACCGGCGCCTGCGTGGTTGCCTTGGGCGCCCATACCTCGGGCCTGCTGGGCAACAATGACGAGCTGATCGCCCAATTGCTGAGCGCCGGCCAGCAAGCCGACGACCGCGCCTGGCAACTGCCGTTGTTCGACGAGTACCAGGAACAGCTGGACAGCCCATTCGCCGACATCGCCAACATCGGCGGCCCGAAAGCCGGGACCATCACGGCGGCGTGCTTCCTGTCGCGCTTCACCAAGAACTTGAATTGGGCGCACCTGGACATCGCCGGCACGGCCTGGACCAGCGGCGGCAAGGACAAGGGCGCCACCGGCCGTCCGGTCCCCCTGTTGACCCAGTACCTGCTGGACCGCGCCAAAGCCTGA	MELVVKSVSPETLKTATLVVAVGENRKLGVVASQLDALSGGAISAVLKRGDLAGKVGQSLLLHNLPNLKADRVLLVGVGKDAELGDRPLRKIIAGVLATLKNLGGGDAALALDELIVKGRDSYGKNRLLAETLIDGEYQFDRFKSQKAEPRALKKITLLTIKAAQAEVQRAVTHATAIANGMAFTRDLGNLPPNICHPTFMGEQAKALGKEFKGLKVEVFDEKKIKDLGMGSFYAVGQGSAQPPRLIVMQYNGGKKSEKPYALVGKGITFDTGGISLKPGAGMDEMKYDMGGAASVFGTLRAVLELQLPINLVCILACAENMPSGTASRPGDIVTTMSGQTVEILNTDAEGRLVLCDALTYSERFKPQAVIDIATLTGACVVALGAHTSGLLGNNDELIAQLLSAGQQADDRAWQLPLFDEYQEQLDSPFADIANIGGPKAGTITAACFLSRFTKNLNWAHLDIAGTAWTSGGKDKGATGRPVPLLTQYLLDRAKA				NA	NA	NA	NA	NA
D1-36_01084	1122	lptF	COG0795	Lipopolysaccharide export system permease protein LptF	TTGATCGTCTTCCGTTACCTATCCCGCGAAGTCCTGTTGACCCTGAGCGCCGTCAGCGCCGTGCTGCTGGTCATCATCATGAGCGGGCGCTTCATCAAATACCTCGCCCAGGCGGCCTCCGGTGCCTTGGACCCGGGCTCCCTGTTCCTGATCATGGGGTTCCGCCTGCCGGGCTTCCTGCAATTGATTCTGCCGCTGGGGCTGTTCCTCGGCATCCTGCTGGCCTATGGGCGCTTGTATCTGGACAGCGAAATGACCGTGCTGTCGGCCACCGGCATGAGCCAGCAACGGCTGTTCCGCATCACCTTGTTCCCGGCAACGCTCGTGGCGCTGGTGGTCGCGTGGCTGAGCCTGAGCCTGTCGCCGCAAGGGGCCAACCAGTTCCAGCTGTTGATCAACCAGCAGGACGCCATGACCGAATTCGACACCTTGGTACCGGGGCGCTTCCAGGCCCTGCGGGACGGGACGCGGGTCACTTATACCGAACAGCTCTCGGACGATCGCATCGACCTGGGCGGCGTCTTCATTACCCAGAAGAATGTGTCTTCGGACACCAAGAAGGATCGGGGCATTTCCGTGCTGGTGGCTGAAAAAGGTCGCCAGGAAATCAACCCCGACGGCAACCGCTACCTGATCCTTGAAAATGGCTATCGCTACGATGGCACGCCAGGCCAGGCCAACTACCGGGCGATCAAGTACGACACCTACGGCGTATTGCTACCCAAGCCGGAGGCCAGCGACGAAGTCACCGATCGTGACGCCATGTCCACGGCCAGCCTGCTGGGCAACGACGACATCCGCGCCCGCACCGAGCTGCAATGGCGCCTGTCGCTGCCGCTGCTGGTATTTATCGTGACGCTCATGGCGGTTCCGCTGTCGCGGGTCAATCCGCGCCAGGGCCGTTTCCTCAAGTTGTTGCCGGCGATTCTTTTGTATATGGCTTACCTGACCATCCTGATTTCCGCCCGCAGCGCCCTGGAGAAAGGCAAGATCCCGCCGACGCTGGGCCTGTGGTGGGTGCATTCGATATTCCTGGCCATTGGCCTGGGGCTGCTCTACTGGGAGCCCCTGCGCCTGAAGCTCGCAAGTCGTCGCAGCGCGCTGGAGGTGGCCCGTGGTTAA	MIVFRYLSREVLLTLSAVSAVLLVIIMSGRFIKYLAQAASGALDPGSLFLIMGFRLPGFLQLILPLGLFLGILLAYGRLYLDSEMTVLSATGMSQQRLFRITLFPATLVALVVAWLSLSLSPQGANQFQLLINQQDAMTEFDTLVPGRFQALRDGTRVTYTEQLSDDRIDLGGVFITQKNVSSDTKKDRGISVLVAEKGRQEINPDGNRYLILENGYRYDGTPGQANYRAIKYDTYGVLLPKPEASDEVTDRDAMSTASLLGNDDIRARTELQWRLSLPLLVFIVTLMAVPLSRVNPRQGRFLKLLPAILLYMAYLTILISARSALEKGKIPPTLGLWWVHSIFLAIGLGLLYWEPLRLKLASRRSALEVARG	PGPT0023290_1383	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_TRANSPORT,PGPT0023290-lptF-K07091	NA	NA
D1-36_01085	1062	lptG	COG0795	Lipopolysaccharide export system permease protein LptG	GTGGTTAAGCTCGATCGCTACATCGGCAGCAGCGTATTCATGGCGATCCTCGCCGTATTGGGGATCATTCTTGGCCTGGCGACCTTGTTCGCGTTCATTGATGAAATGGGCGATGTCAGCGATACCTATACGCTGCTGGACGTGGCGAGCTACGTATTGCTGACCGCGCCGCGCCGCTTGTACGACATGCTGCCGATGGCCGCATTGATCGGCTGCCTGATCGGCCTGGGCAGCCTGGCGAGCAACAGCGAACTGACCATCATGCGCGCCGCTGGCGTGTCCATCGGTCGGATCGTCTGGGCGGTGATGAAACCCATGCTGGTGCTGATGCTGGTAGGTGTGCTGATCGGCGAGTACGTCGCCCCGGCCACCGAGAATACCGCCCAGGCCAACCGCTCCCTGGCCCAGGGCGGCGGTGACGCGCAAAGCGCCAAGCACGGTCTGTGGCACCGCCAGGGCGAAGAGTTCATCCATATCAACTCGGTCCAACCCAACGGAACCTTGTATGGCGTGACCCGCTACCGTTTCGACGATCAGCGGCATATGTTGTCCTCCAGCTTCGCCAAGCGGGCCCAATTCGCCGACGATCACTGGCAACTGAGCGATGTCACCACCACGCTGTTCCATGACAAGCGCACCGAAGTCGTCACCGCACCGCAGGAGCGTTGGGACGTGGCGCTCAGCCCGCAGCTGCTCAGCACCGTGGTCATGGCGCCGGACTCGTTGTCTATCACCGGGTTGTGGGGGTACATCCATTACCTGGCGGACCAGGGCCTGAACAACGGTCGCTACTGGCTGGCTTTTTGGGTCAAGGTGTTGCAACCCCTGGTGACCGCTGCGCTGGTGTTGATGGCCATCTCCTTCATCTTCGGTCCGCTGCGCTCCGTGACCCTTGGCCAACGGGTATTCACCGGTGTGCTAGTGGGCTTTACTTTCCGCATTGCCCAGGATCTGCTCGGGCCATCGAGCCTGGTGTTCGGCTTCTCGCCATTGTTCGCGGTGCTGGTGCCGGCCGGCGTCTGCGCGTTGGCCGGGCTCTGGCTGTTGCGCCGGGCAGGTTGA	MVKLDRYIGSSVFMAILAVLGIILGLATLFAFIDEMGDVSDTYTLLDVASYVLLTAPRRLYDMLPMAALIGCLIGLGSLASNSELTIMRAAGVSIGRIVWAVMKPMLVLMLVGVLIGEYVAPATENTAQANRSLAQGGGDAQSAKHGLWHRQGEEFIHINSVQPNGTLYGVTRYRFDDQRHMLSSSFAKRAQFADDHWQLSDVTTTLFHDKRTEVVTAPQERWDVALSPQLLSTVVMAPDSLSITGLWGYIHYLADQGLNNGRYWLAFWVKVLQPLVTAALVLMAISFIFGPLRSVTLGQRVFTGVLVGFTFRIAQDLLGPSSLVFGFSPLFAVLVPAGVCALAGLWLLRRAG	PGPT0023295_2911	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_TRANSPORT,PGPT0023295-lptG-K11720	NA	NA
D1-36_01086	1800	lepA	COG0481	Elongation factor 4	GTGAGTGATTTGAGTCATATCCGCAATTTCTCCATCATCGCCCACATTGACCATGGCAAGTCGACGCTGGCTGATCGCTTCATCCAGATGTGCGGCGGCCTGGCCGAGCGTGAAATGGAAGCCCAGGTCCTGGACTCCATGGACCTCGAGCGTGAACGCGGGATCACCATCAAGGCCCACAGCGTTACCCTTTACTACAAGGCTCGCGACGGCATTACCTACCAGCTCAACTTCATCGATACCCCGGGCCACGTCGACTTCACCTATGAAGTCAGCCGGTCGCTGGCGGCCTGTGAAGGTGCGTTGCTGGTGGTCGATGCCGGCCAGGGCGTCGAGGCCCAGTCGGTCGCCAACTGCTACACGGCCATCGAGCAGGGCCTGGAAGTCATGCCGGTGCTGAACAAGATCGACCTGCCCCAGGCCGATCCGGACCGCGTGAAGGAAGAAATCGAAAAAATCATCGGCATCGATGCCACCGACGCGGTCACGTGCAGCGCCAAGACCGGCCTGGGCGTGGATGAAGTGCTCGAGCGCCTCGTCACCACCATTCCCGCGCCGACCGGCAATATCGAAGATCCGCTGCAAGCGTTGATCATCGACTCCTGGTTCGACAACTACCTGGGCGTGGTTTCCCTGGTTCGCGTGCGCCATGGCCGCGTGAAGAAGGGCGACAAGATCCTGGTCAAGTCCACCGGCAAGATCCACCTGGTGGACAGCGTCGGTGTCTTCAACCCGAAACACACCGCTACCACCGACCTGAAGGCCGGTGAAGTGGGCTTCATCATCGCGGGCATCAAGGACATTCATGGGGCGCCGGTGGGCGATACCCTGACCTTGAGCTCCACCCCGGATGTCGACGTCCTGCCCGGTTTCAAACGCATCCAGCCACAGGTCTACGCCGGCCTGTTCCCGGTCAGTTCCGACGACTTCGAGGACTTCCGCGAAGCCCTGCAAAAGCTGACCCTGAACGACTCGTCCCTGCAGTACACCCCGGAAAGTTCCGACGCCCTGGGCTTCGGCTTCCGTTGCGGGTTCCTCGGCATGCTGCACATGGAAATCATCCAGGAGCGCCTGGAGCGCGAGTACGACCTGGACCTGATCACCACGGCGCCGACGGTAATCTTCGAGCTGCTGCTCAAGAACGGCGAGACTATCTACGTCGACAACCCGTCCAAGCTGCCGGACCTGTCGGCTATCGAAGACATGCGCGAGCCGATCGTGAGGGCCAACATCCTTGTGCCTCAGGAGCACCTGGGCAACGTCATTACCCTGTGCATCGAGAAGCGCGGCGTGCAGCACGACATGCTGTTCCTCGGCTCGCAGGTCCAGGTGACCTACGACCTGCCGATGAACGAAGTGGTGCTGGACTTCTTCGATCGCCTGAAATCCACCAGCCGCGGCTATGCTTCGCTGGACTATCATTTCGATCGTTACCAATCGGCTAATCTGGTGAAACTGGATGTGCTGATCAACGGCGAAAAAGTCGATGCCCTGGCATTGATCGTGCACCGCGACAACGCGCACTACAAAGGTCGTGCGTTGACCGAGAAGATGAAGGAACTGATTCCGCGGCAGATGTTCGATGTGGCAATCCAGGCCGCCATTGGCGGGCAGATTGTGGCGCGTACAACCGTCAAGGCACTCAGAAAGAACGTATTGGCCAAATGCTACGGCGGCGACGTCAGCCGTAAGCGCAAGCTGTTGGAAAAGCAGAAGGCCGGTAAAAAACGCATGAAGCAGGTCGGCAACGTGGAAATTCCACAGGAAGCCTTCCTCGCGGTGCTCAGGTTGGATAGTTAG	MSDLSHIRNFSIIAHIDHGKSTLADRFIQMCGGLAEREMEAQVLDSMDLERERGITIKAHSVTLYYKARDGITYQLNFIDTPGHVDFTYEVSRSLAACEGALLVVDAGQGVEAQSVANCYTAIEQGLEVMPVLNKIDLPQADPDRVKEEIEKIIGIDATDAVTCSAKTGLGVDEVLERLVTTIPAPTGNIEDPLQALIIDSWFDNYLGVVSLVRVRHGRVKKGDKILVKSTGKIHLVDSVGVFNPKHTATTDLKAGEVGFIIAGIKDIHGAPVGDTLTLSSTPDVDVLPGFKRIQPQVYAGLFPVSSDDFEDFREALQKLTLNDSSLQYTPESSDALGFGFRCGFLGMLHMEIIQERLEREYDLDLITTAPTVIFELLLKNGETIYVDNPSKLPDLSAIEDMREPIVRANILVPQEHLGNVITLCIEKRGVQHDMLFLGSQVQVTYDLPMNEVVLDFFDRLKSTSRGYASLDYHFDRYQSANLVKLDVLINGEKVDALALIVHRDNAHYKGRALTEKMKELIPRQMFDVAIQAAIGGQIVARTTVKALRKNVLAKCYGGDVSRKRKLLEKQKAGKKRMKQVGNVEIPQEAFLAVLRLDS	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
D1-36_01087	855	lepB	COG0681	Signal peptidase I	ATGTCGCTAAATTTCCCGCTGTTGCTGGTTATCGCCGTGTTTGTCTGCGGCCTGTTGGCGTTGCTTGATCTGTTGTTCCTGGCGCCTCGGCGCCGGGCCGCCATTGCCTCTTATCAGGGCAGTGTCAGCCAGCCTGACGGCGTGGTCATTGAAAAGCTCAACAAGGAACCGCTGCTTGTCGAGTACGGCAAGTCGTTCTTCCCGGTGCTGTTCATCGTGCTGGTGCTGCGCTCGTTCCTGGTGGAGCCGTTCCAGATTCCGTCCGGTTCGATGAAGCCCACCCTGGATGTGGGCGACTTCATCCTGGTGAACAAGTTTTCCTATGGGATCCGGCTGCCAGTGATCGACAAGAAGGTCATCGAGATCGGCGACCCGCAACGCGGCGACGTGATGGTGTTCCGCTTCCCAAGCGACCCGAACGTCAACTACATCAAGCGTGTGGTGGGTCTGCCGGGCGACAAGATCCGCTATACGGCGGACAAACGCTTGTTCGTCAATGGCGAACTGGTGGCCGAGCAGTTGATCGGTTCCGAACCGGGCACGCTGGGCAGTGCCGAGCTCTACAAGGAAAAACTTGGCGAGGCAGAACACCAGATCCGCAAGGAAATGAGCCGCTACCGCGCCACGCCGGACCATTCATGGACCGTGCCGGCCGGGCACTATTTCATGATGGGCGACAACCGCGACAACTCCAACGACAGTCGTTACTGGGATGATCCGAACATACCCAAGGACATGTTGGGCATGGTCCCCGACCGCAATATCGTCGGCAAGGCCTTTGCGGTCTGGATGAGCTGGCCGGAACCCAAACTCAGCCACCTGCCGAACTTCTCGCGGGTAGGGTTGATCAAGTAA	MSLNFPLLLVIAVFVCGLLALLDLLFLAPRRRAAIASYQGSVSQPDGVVIEKLNKEPLLVEYGKSFFPVLFIVLVLRSFLVEPFQIPSGSMKPTLDVGDFILVNKFSYGIRLPVIDKKVIEIGDPQRGDVMVFRFPSDPNVNYIKRVVGLPGDKIRYTADKRLFVNGELVAEQLIGSEPGTLGSAELYKEKLGEAEHQIRKEMSRYRATPDHSWTVPAGHYFMMGDNRDNSNDSRYWDDPNIPKDMLGMVPDRNIVGKAFAVWMSWPEPKLSHLPNFSRVGLIK				NA	NA	NA	NA	NA
D1-36_01088	627	rnc	COG0571	Ribonuclease 3	ATGCTCCTGGCCCTCACTCACCGCAGTTTTGCCGGGCGCAACAACGAGCGCCTGGAATTCCTCGGCGATGCCATCCTCAATTTCGTCGCCGGCGAGGCGTTGTTCGAACGCTTTCCCCTGGCTCGCGAAGGCCAGTTGTCGCGTTTGCGCGCAAGGCTCGTGAAAGGTGAGACCCTGGCCGTATTGGCGCGGGGTTTCGACTTGGGCGAGTACCTGCGCCTGGGTTCCGGCGAACTGAAAAGCGGTGGTTTCCGCCGCGAATCGATCCTCGCCGACGCCCTGGAGGCATTGATTGGCGCGATCTACCTGGACTCGGGCATGGAAATGGCGCGCGAGCGCGTGCTGGCCTGGCTGACTTCCGAGATCGACAGCCTGACGCTGGTGGACACCAACAAGGACCCCAAGACCCGCTTGCAGGAATTTTTGCAATCGCGCAGTTGCGAACTGCCACGCTACGAAGTGGTGGATATCCAGGGGGAACCGCATTGCCGAACCTTTTTCGTCGAATGCGAAGTGGTCTTATTGAATGAAAAAAGCCGTGGCCAGGGCGTGAGCCGTCGTATCGCCGAACAGGTAGCGGCCGCCGCAGCACTGATCGCCTTGGGCGTGGAGAATGGCAATGACTGA	MLLALTHRSFAGRNNERLEFLGDAILNFVAGEALFERFPLAREGQLSRLRARLVKGETLAVLARGFDLGEYLRLGSGELKSGGFRRESILADALEALIGAIYLDSGMEMARERVLAWLTSEIDSLTLVDTNKDPKTRLQEFLQSRSCELPRYEVVDIQGEPHCRTFFVECEVVLLNEKSRGQGVSRRIAEQVAAAAALIALGVENGND				NA	NA	NA	NA	NA
D1-36_01089	903	era	COG1159	GTPase Era	ATGACTGATACAACCGTCACCCGATGCGGCTATGTCGCCATTGTCGGTCGGCCGAACGTGGGCAAGTCCACGTTGCTGAACCACATCCTGGGCCAGAAGCTGGCGATCACCTCGCGCAAGCCTCAGACCACGCGCCACAACATGCTGGGCATCAAGACCGAAGGCGATGTGCAGGCCATCTACGTCGATACTCCGGGAATGCACAAGGGCGGTGAGAAGGCCCTGAACCGCTACATGAACAAGACTGCCTCGGCAGCGTTGAAAGACGTTGACGTGGTGATCTTCGTGGTAGACCGCACCAAGTGGACCGAAGAAGACCAGATGGTCCTCGAGCGCGTCCAATACGTGACCGGTCCCTTGATCGTGGCGCTGAACAAGACCGACCGCATCGAAGACAAGGCAGAGCTGATGCCGCACCTGACCTGGTTGCAGGAACAGTTGCCGAACGCGCAAATCATCCCGATTTCCGCCCAACACGGTCACAACCTCGACGCGCTGGAACGGGTGATCGCCGAGCACCTGCCGGAAAACGATCATTTCTTTCCTGAAGACCAGATCACCGACCGCAGCAGCCGTTTCCTCGCCGCCGAGCTGGTGCGCGAGAAAATCATGCGCCAGATGGGCGCCGAGCTGCCGTACCAGATCACGGTGGAGATCGAGGAATTCAAGCAACAGGGCAAGACCCTGCACATCCATGCCTTGATCCTCGTCGAACGTGATGGCCAGAAGAAGATCATCATTGGCGACAAGGGCGAGCGCATCAAGCGCATCGGCACCGAGGCGCGCAAGGACATGGAGCTGCTGTTCGACTCCAAGATCATGCTCAACCTGTGGGTCAAGGTGAAAGGCGGCTGGTCCGATGACGAGCGCGCGTTGCGTTCGCTGGGTTACGGCGACCTGTAA	MTDTTVTRCGYVAIVGRPNVGKSTLLNHILGQKLAITSRKPQTTRHNMLGIKTEGDVQAIYVDTPGMHKGGEKALNRYMNKTASAALKDVDVVIFVVDRTKWTEEDQMVLERVQYVTGPLIVALNKTDRIEDKAELMPHLTWLQEQLPNAQIIPISAQHGHNLDALERVIAEHLPENDHFFPEDQITDRSSRFLAAELVREKIMRQMGAELPYQITVEIEEFKQQGKTLHIHALILVERDGQKKIIIGDKGERIKRIGTEARKDMELLFDSKIMLNLWVKVKGGWSDDERALRSLGYGDL				NA	NA	NA	NA	NA
D1-36_01090	690	recO	COG1381	DNA repair protein RecO	ATGTCCCCCAACCCACCCACCGCCCAACCCGCCTATGTCCTGCACAGCCGCGCCTACCGCGAAAGCAGCGCCCTGGTGGACTTCCTCACGCCCCAAGGGCGGCTGAGAGCGGTGTTGCGTGGGGCTCGGGGCAAGGCCGGGACGCTGGCGCGGCCGTTCGTCCCATTGGACGTCGAGTTTCGCGGCAGGGGCGAATTGAAGAATGTCGGGCGCATGGAAAGCAACGGCGTCGCGGCCTGGCTCAACGGCGAAGCGCTGTTCAGTGGTTTGTACCTCAATGAACTGCTGATCCGCCTGCTCCCCGCCGAGGATCCTCATCCTGAGGTCTTCGACCACTATGCCGCCACGCTGCTGGCCCTGGCCGAAGGTCGCCCTCTGGAGCCATTGCTGCGCTCTTTCGAATGGCGCCTGCTGGACGATCTGGGCTACGGTTTTTCCCTCGACACCGACCTGCACGGACAACCCATCGCGGCGGACGGCCTCTACCGCTTACAGGTGGACGCGGGCCTGGAGCAGGTCTACCAGTTGCAACCCGGGTTGTTCAATGGCGTTGAGCTTCTTGCCATGGCCGAGGCCGACTGGACCGCGCCCGGTGCATTGGCGGCGGCCAAGCGTTTGATGCGCCAAGCCCTGGCGGTTCATTTGGGCGGCCGGCCGCTGGTCAGTCGCGAGCTGTTTCGCAAGCCCTGA	MSPNPPTAQPAYVLHSRAYRESSALVDFLTPQGRLRAVLRGARGKAGTLARPFVPLDVEFRGRGELKNVGRMESNGVAAWLNGEALFSGLYLNELLIRLLPAEDPHPEVFDHYAATLLALAEGRPLEPLLRSFEWRLLDDLGYGFSLDTDLHGQPIAADGLYRLQVDAGLEQVYQLQPGLFNGVELLAMAEADWTAPGALAAAKRLMRQALAVHLGGRPLVSRELFRKP				NA	NA	NA	NA	NA
D1-36_01091	744	pdxJ		Pyridoxine 5'-phosphate synthase	GTGAGCACCAGCAATCGCATTCTTCTCGGCGTGAACATCGACCATGTCGCCACCCTGCGCCAGGCCCGAGGTACTCGCTACCCGGATCCGGTCAAGGCCGCACTGGATGCCGAAGAGGCGGGCGCCGATGGCATTACCGTGCACCTGCGCGAGGACCGTCGCCACATCCAGGAGCGCGATGTGCTGCTGCTCAAGGATGTGCTGCAAACCCGCATGAACTTCGAAATGGGCGTGACCGAAGAAATGATGGCCTTTGCCGAGCGCATCCGCCCTGCGCACATCTGCCTGGTCCCGGAAACCCGTCAGGAGCTGACCACCGAAGGCGGCCTGGACGTGGCGGGGCAGGAGGCGCGGATCAAGGCTGCGGTGGAGCGGCTGTCGAAGATGGGCGCCGAGGTGTCGCTGTTCATCGACGCCGACGAGCGGCAGATCGAAGCCTCCAAGCGGGTCGGCGCGCCGGCCATCGAGCTGCACACCGGGCGCTACGCCGATGCCCAGACCCCCACGGATGTGGCCGATGAGCTGCAACGGGTGGCAGACGGCGTCACCTTTGGCCTGGCCCAGGGCCTGATCGTCAACGCCGGCCACGGCCTGCATTATCACAACGTCGAAGCTGTCGCCGCCATCAAGGGCATCAACGAGCTGAACATCGGCCATGCGCTGGTGGCCCATGCGTTGTTTGTCGGGTTCAAGTCAGCTGTGTCGGAAATGAAGGCGCTGATCCTGGCGGCCGCCAGATCCTGA	MSTSNRILLGVNIDHVATLRQARGTRYPDPVKAALDAEEAGADGITVHLREDRRHIQERDVLLLKDVLQTRMNFEMGVTEEMMAFAERIRPAHICLVPETRQELTTEGGLDVAGQEARIKAAVERLSKMGAEVSLFIDADERQIEASKRVGAPAIELHTGRYADAQTPTDVADELQRVADGVTFGLAQGLIVNAGHGLHYHNVEAVAAIKGINELNIGHALVAHALFVGFKSAVSEMKALILAAARS	PGPT0009170_1169	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009170-pdxJ-K03474	NA	NA
D1-36_01092	1461	mltF_2	COG4623	Membrane-bound lytic murein transglycosylase F	ATGTTTTCCCCAACGGCTTTGCGTCCGCGGTACGCCAGATGGCTGATCGCAACCGGACTCTTCCTGGTGCTCAGTGGCTGTGTTGAGAAACCCAACACACTGGAGCGCGTAAAGGAGGATGGCGTGCTGCGGGTCGTTACCCGGAACAGCCCCGCCACCTACTTTCAGGATCGCAGTGGTGAAACCGGCTTCGAATACGAGCTGGTGAAGCGTTTCGCCGAGGATTTGGGGGTCGAGCTGAAAATCGAGACCGCCGACAACCTCGACGACCTGTTCAGCCAGATCGGCAAGCCCAACGGCCCGGTGCTGGCCGCGGCAGGCCTGGTCAGCAGCGAACAGCGCAAAAAACAGGTTCGCTTTTCCAGCCCTTACCTGGAAGTCACCCCGCAGATCATCTATCGCAACGGTCAGTCGCGCCCCACCGACGCGGCGGCCCTGGCCGGCAAGAAGATCATGGTGCTCAAGGGCAGCTCCCATGCCGAACAATTGGCACAGCTGAAGCAGCAATATCCTGGGATCGAATACGAAGAATCCGACGCCGTTGAAGTCGTCGACCTGCTGCGCATGGTCGACGAGGGCCAGATCGACCTGACGCTGGTGGACTCCAACGAAGTGGCGATGAACCAGGTCTACTTCCCCAACGTGCGCGTGGCGTTCGACCTGGGCGACACCCGCAGCCAGAGCTGGGCAGTGGGCCCCGGCGAAGACAACAGCCTGCTCAATGAAATCAACGCCTACCTGAACAAGGTGCAGAAGAATGGCACGTTGCAGCGATTGAAGGATCGCTACTACGGCCACGTTGACGTCCTCGGCTATATGGGCGCAACGACGTTTGCCCAGCACCTGCAGCAGCGGCTGCCCAAATACGAACAGCATTTCAAGACCTACGCCAAGAAGGAAAAAGTCGATTGGCGGTTGCTGGCTGCCATCGGCTATCAGGAATCGCTCTGGCAACCGACGGTGACCTCCAAGACCGGTGTGCGCGGCCTGATGATGCTGACCCAGAACACCGCCCAGGCCATGGGTGTATCCAACCGCCTCGATCCGAAGCAGAGCATCATGGGCGGCGCCAAGTACCTGGCCTATATGAAGGAACAACTGGATGAAAGCATCGAGGAACCGGACCGCACCTGGTTCGCCCTCGCCGCCTATAACGTGGGCAGTGGTCATCTGGACGACGCGCGCAAGCTCGCCGCCAAGGAAGGGCTGAATCCGAACAAGTGGCTGGATGTGAAAAAAATCCTGCCGCGCCTGTCCCAGAAGCAGTGGTACAGCAAGACCCGCTACGGCTACGCCCGGGGCGGGGAGCCGGTGCATTTCGTGGCGAACATCCGTCGCTACTACGACATCTTGACCTGGGTGACGCAGCCACAGCTCGAAGGCAACCAGGTGGCCGAGGGCAACCTGCACGTGCCGGGTGTCGACAAGAGCAAGCCGAGCCAGGAATCCCCGCAACTCTGA	MFSPTALRPRYARWLIATGLFLVLSGCVEKPNTLERVKEDGVLRVVTRNSPATYFQDRSGETGFEYELVKRFAEDLGVELKIETADNLDDLFSQIGKPNGPVLAAAGLVSSEQRKKQVRFSSPYLEVTPQIIYRNGQSRPTDAAALAGKKIMVLKGSSHAEQLAQLKQQYPGIEYEESDAVEVVDLLRMVDEGQIDLTLVDSNEVAMNQVYFPNVRVAFDLGDTRSQSWAVGPGEDNSLLNEINAYLNKVQKNGTLQRLKDRYYGHVDVLGYMGATTFAQHLQQRLPKYEQHFKTYAKKEKVDWRLLAAIGYQESLWQPTVTSKTGVRGLMMLTQNTAQAMGVSNRLDPKQSIMGGAKYLAYMKEQLDESIEEPDRTWFALAAYNVGSGHLDDARKLAAKEGLNPNKWLDVKKILPRLSQKQWYSKTRYGYARGGEPVHFVANIRRYYDILTWVTQPQLEGNQVAEGNLHVPGVDKSKPSQESPQL	PGPT0020800_307	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
D1-36_01093	3897	purL	COG0046	Phosphoribosylformylglycinamidine synthase	ATGTTGATCCTGCGCGGCGCTCCTGCCCTTTCTGCCTTTCGCCACAGCAAACTTCTTGAGCAACTGAGCCAGAAAGTACCGGCTGTCAGTGGCTTGTATGCTGAATTCGCTCACTTCGCCGAAGTTACCGGCGGTTTGACTGGCGACGAACAGCAGGTGCTCGCGCGCCTCCTGAAGTACGGCCCAAGTGTTCCAGTCCAGGAGCCAACCGGCCGCCTGTTCCTGGTGTTGCCGCGTTTCGGCACCATTTCGCCGTGGTCGAGCAAGGCCAGTGACATTGCCCGCAACTGCGGCCTGTCGAAGATCCAGCGCCTGGAGCGCGGCATTGCCTTTTATGTCGCCGGTGAGTTCAGCGAGGCCGAGGCCCAACTGATCGCCGAAGGCCTGCATGACCGCATGACCCAGGTCGTACTGGGCAACCTGGAGCAGGCCGCCGGCCTGTTCAGCCACGCCGAACCCAAGCCGCTGACCGCCATCGACGTATTGGGCGGTGGCCGCGCCGCGCTGGAAAAAGCCAACGCCGAGCTGGGCCTGGCCCTGGCCGAAGACGAGATCGATTACCTGGTCAACGCCTTCCAGGGCTTGAAGCGCAACCCCCACGACATCGAACTGATGATGTTCGCCCAGGCCAACTCCGAGCATTGCCGCCACAAGATCTTCAACGCCAGTTGGGACATTGACGGCCAGAGCCAGGAAAAGAGCCTGTTCGGCATGATCAAGAACACCTACCAGATGCACAACGAAGGTGTGCTGTCGGCCTACAAGGACAACGCCGCGGTGATCGTCGGCAATGTTGCCGGTCGCTTCTACCCGAACCCCGAGACCCGCCAGTACGGTGCGGTCCAGGAGCCGGTGCACATCCTGATGAAAGTCGAGACCCACAACCACCCGACCGCCATTGCCCCGTTCCCGGGCGCGTCCACCGGTTCCGGTGGCGAGATCCGCGACGAAGGCGCCACCGGTCGTGGTGCCAAGCCCAAGGCCGGCCTGACCGGCTTCACCGTGTCGAACCTGCAGATTCCTGGCTTCGAACAGCCGTGGGAAAAGCCGTACGGCAAGCCTGAGCGCATCGTCAACGCCCTCGACATCATGATCGAAGGCCCACTGGGCGGCGCGGCGTTCAACAACGAATTCGGCCGTCCGGCCCTGACCGGTTATTTCCGTACCTTCGAACAGTCCATCACCACCCCTCGCGGTGAAGAGGTTCGCGGTTATCACAAGCCGATCATGCTCGCAGGCGGCATGGGCAACATCCGCGCCGAACACGTGCAGAAAGGCGAGATCGTGGTCGGCTCCAAGCTGATCGTCCTCGGTGGCCCGGCCATGCTGATCGGCCTGGGCGGCGGCGCGGCTTCGTCCATGGCCACCGGCACCAGCTCCGCCGACCTGGATTTCGCGTCGGTCCAGCGGGAAAACCCGGAGATGGAACGCCGTTGCCAGGAAGTCATCGACCGTTGCTGGCAGTTGGGTGAGAACAACCCCATCAGCTTCATCCACGACGTCGGCGCGGGCGGCCTGTCCAACGCCTTCCCGGAACTGGTCAACGACGGTGGCCGTGGTGGCCGCTTCGAATTGCGCAACATTCCGAACGACGAGCCGGGCATGGCCCCGCACGAAATCTGGAGCAACGAATCCCAGGAGCGTTACGTCCTGGCGGTCGGCCCGGCTGACTTCGAGCGCTTCCAGGCCATTTGCGAACGCGAGCGTTGCCCGTTTGCCGTGGTGGGTGAAGCCACCGCCGAGCCGCAACTGACCGTGACCGACAGCCACTTTGGCAACAGCCCGGTGGACATGCCGCTGGAAGTGCTGCTGGGCAAAGCCCCGCGCATGCACCGTTCGGCGGTTCGCGAAACCGAGCTGGGCGACGATTTCGATCCGTCCACCCTCGACATCGCCGATTCCATCGAGCGCGTGCTGCATCACCCGGCCGTGGCGAGCAAGAGCTTCCTGATCACCATCGGCGACCGCACCATCACCGGCCTCGTGGCACGTGATCAGATGGTCGGCCCATGGCAGGTGCCGGTGGCCGACGTGGCCGTGACCGCCACCAGCTTCGACGTCTACACTGGCGAAGCGATGGCCATGGGCGAGCGCACGCCGCTGGCGCTGCTGGACGCCCCGGCGTCGGGCCGCATGGCGATCGGTGAGACCCTGACCAACATCGCGGCCTCGCGCATCGGCAAGATTTCCGACATCAAGCTGTCGGCCAACTGGATGTCCGCCGCCGGTCACCCCGGTGAAGACGCGCGCTTGTTCGACACCGTCAAGGCCGTCGGCATGGAACTGTGCCCTGAACTGGGCATCACCATTCCGGTGGGCAAGGACTCCATGTCCATGGCCACGCGCTGGAACGACGAAGGCGTGGACAAGAGCGTGACCTCGCCACTGTCGCTGATCGTGACCGGTTTCGCCCCGGTCACCGACATCCGCCAGACCCTGACCCCGCAACTGCGCATGGACAAGGGCACCACCGATCTGATCCTGATCGACCTGGGCCGTGGCCAGAACCGCATGGGCGCCTCGATCCTGGCCCAGGTGCACGGCAAGCTCGGCTCGCAAGCACCGGACGTCGACGATGCCGAAGACCTGAAGGCGTTCTTCGCCGTGATCCAGGGCCTGAACGCCGACGGTCACCTGTTGGCCTACCACGACCGTTCCGATGGCGGCTTGCTGACCACCGTGATGGAAATGGCTTTCGCCGGTCACTGCGGCTTGAACCTGACCCTGGACAGCGTGGCCGAGTCGGCCAGTGAGATCCCGGCGATCCTGTTCAACGAAGAGTTGGGTGCGGTGATCCAGGTTCGCCAGGACGCCACCCCGGACATCCTCGCCCAGTTCAGCGCCGCCGGCCTGGCCGAGTGCGTCTCGGTCATCGGCCAGCCGATCAACAACGCCCACATCAATATCACCTTCAACGGCGACACCGTCTTCGAAGGCCAGCGTCGCTTGTTGCAGCGCCAGTGGGCCGAGACCAGCTACCAGATCCAGCGCCTGCGCGACAACGCCGAATGCGCCGAGCAGGAATTCGACGCGCTGCTGGAAGAAGACAACCCGGGCCTCAGCGCCAAGCTCAGCTTCGACGTCAACGAAAACGTGGCCGCGCCTTACATCAAGAAAGGCATTCGCCCGCAAGTGGCGGTCCTGCGCGAGCAGGGCGTCAACGGCCAGGTGGAGATGGCGGCGGCGTTCGACCGCGCCGGTTTCAGCGCGATCGACGTGCACATGAGTGACATCCTCGCCGGACGTGTCGACCTGAACGATTTCAAAGGCATGGTTGCCTGCGGCGGCTTCTCCTACGGCGACGTGCTGGGCGCCGGTGAAGGCTGGGCCAAGTCGGCGCTGTTCAACAGCCGCGCCCGCGATGCGTTCCAGGGCTTCTTCGAGCGCAACGACAGCTTCACCCTCGGTGTGTGCAACGGTTGCCAGATGATGTCCAACCTGCACGAGCTGATCCCGGGCAGCGAGTTCTGGCCGCACTTCGTGCGTAACCGTTCCGAGCAGTTCGAAGCCCGCGTCGCGATGGTCCAGGTGCAGGAGTCGAACTCGATCTTCCTGCAGGGCATGGCCGGTTCGCGCATGCCGATCGCCATCGCCCACGGTGAAGGCCATGCGGAGTTCCAGAGCGAGGAAGCGTTGCTTGAAGCCGACCTGTCCGGTTGTGTGTCGCTGCGTTTTGTCGACAACCACGGCAAGGTCACCGAAACCTACCCGGCCAACCCGAACGGCTCGCCGCGCGGGATCACCGGCCTGACCAGCCGCGACGGCCGCGTCACGATCATGATGCCGCACCCGGAGCGGGTGTTCCGCGCGGTGCAGAACTCGTGGCGTTCGGACGACTGGAACGAAGACGCGCCATGGATGCGCATGTTCCGCAACGCGCGCGTCTGGGTGAACTGA	MLILRGAPALSAFRHSKLLEQLSQKVPAVSGLYAEFAHFAEVTGGLTGDEQQVLARLLKYGPSVPVQEPTGRLFLVLPRFGTISPWSSKASDIARNCGLSKIQRLERGIAFYVAGEFSEAEAQLIAEGLHDRMTQVVLGNLEQAAGLFSHAEPKPLTAIDVLGGGRAALEKANAELGLALAEDEIDYLVNAFQGLKRNPHDIELMMFAQANSEHCRHKIFNASWDIDGQSQEKSLFGMIKNTYQMHNEGVLSAYKDNAAVIVGNVAGRFYPNPETRQYGAVQEPVHILMKVETHNHPTAIAPFPGASTGSGGEIRDEGATGRGAKPKAGLTGFTVSNLQIPGFEQPWEKPYGKPERIVNALDIMIEGPLGGAAFNNEFGRPALTGYFRTFEQSITTPRGEEVRGYHKPIMLAGGMGNIRAEHVQKGEIVVGSKLIVLGGPAMLIGLGGGAASSMATGTSSADLDFASVQRENPEMERRCQEVIDRCWQLGENNPISFIHDVGAGGLSNAFPELVNDGGRGGRFELRNIPNDEPGMAPHEIWSNESQERYVLAVGPADFERFQAICERERCPFAVVGEATAEPQLTVTDSHFGNSPVDMPLEVLLGKAPRMHRSAVRETELGDDFDPSTLDIADSIERVLHHPAVASKSFLITIGDRTITGLVARDQMVGPWQVPVADVAVTATSFDVYTGEAMAMGERTPLALLDAPASGRMAIGETLTNIAASRIGKISDIKLSANWMSAAGHPGEDARLFDTVKAVGMELCPELGITIPVGKDSMSMATRWNDEGVDKSVTSPLSLIVTGFAPVTDIRQTLTPQLRMDKGTTDLILIDLGRGQNRMGASILAQVHGKLGSQAPDVDDAEDLKAFFAVIQGLNADGHLLAYHDRSDGGLLTTVMEMAFAGHCGLNLTLDSVAESASEIPAILFNEELGAVIQVRQDATPDILAQFSAAGLAECVSVIGQPINNAHINITFNGDTVFEGQRRLLQRQWAETSYQIQRLRDNAECAEQEFDALLEEDNPGLSAKLSFDVNENVAAPYIKKGIRPQVAVLREQGVNGQVEMAAAFDRAGFSAIDVHMSDILAGRVDLNDFKGMVACGGFSYGDVLGAGEGWAKSALFNSRARDAFQGFFERNDSFTLGVCNGCQMMSNLHELIPGSEFWPHFVRNRSEQFEARVAMVQVQESNSIFLQGMAGSRMPIAIAHGEGHAEFQSEEALLEADLSGCVSLRFVDNHGKVTETYPANPNGSPRGITGLTSRDGRVTIMMPHPERVFRAVQNSWRSDDWNEDAPWMRMFRNARVWVN	PGPT0021585_1293	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021585-purL-K01952	NA	NA
D1-36_01094	312		COG0327	GTP cyclohydrolase 1 type 2	GTGTACAAGCTCTGCTTCTTCGTCCCGGCCAGCCACGTGGACGAGGTCAAAAGCGCCGTATTCGCTGCCGGTGGTGGGCGAATCGGCGACTATGACCACTGCGCCTGGCAAGTGCTGGGCCTGGGCCAGTTTCGCCCGTTGGACGGCAGCCAGCCGTTCATTGGCGAGGCGGGGCAGGTCGAGCAGGTCGAGGAATGGAAGGTTGAGCTTGTTGTCGCTGACGATCTGATTCGCCCCGTGGTGGAGGCATTGAGACAGAGCCATCCCTACGAGACACCGGCGTATGAGGTGTGGCGGTTGGAGGATTTCTGA	MYKLCFFVPASHVDEVKSAVFAAGGGRIGDYDHCAWQVLGLGQFRPLDGSQPFIGEAGQVEQVEEWKVELVVADDLIRPVVEALRQSHPYETPAYEVWRLEDF				NA	NA	NA	NA	NA
D1-36_01095	1716	gamP	COG2190	Putative PTS system glucosamine-specific EIICBA component	ATGTACCAGCATTTCATCGAAGGGCTGCAGCGCCTCGGCAGGGCGCTGATGCTGCCGATCGCGATTTTGCCGATTGCCGGCCTGCTGCTGCGCCTGGGTGACACGGATCTGTTGAACATCGCGATCATCCACGATGCCGGCCAGGCGATCTTCGCCAACCTGGCGCTGATCTTCGCCATCGGCATCGCCGTGGGCTTCGCCCGGGACAATAACGGTACGGCCGGACTGGCCGGGGCCATCGGCTACCTGGTAATGGTCGCGACATTGAAGGTGCTCGACGCGACGATCAACATGGGCATGCTCGCCGGGATCGTCAGTGGGTTGTTGGCCGGCGGGCTGTACAACCGCTTCAAGGACATCAAGCTGCCGGAGTACCTGGCGTTTTTTGGGGGCCGGCGCTTCGTGCCGATTGTCACCGGTTTCAGCGCGGTGGGCCTTGGCGTGATGTTCGGCCTGATCTGGCCGCCGATCCAGCACGGCATCAACAGCTTCGGCGAGCTGTTGATGGCCAGCGGCAGCTTCGGCGCGTTCGTCTTCGGTGTGTTCAATCGACTGCTGATCGTCACTGGCCTGCACCACATCCTCAACAACATGGCGTGGTTCATTTTCGGCAGCTTCACTGACCCCGCCACCGGCGCCGTGGTTACCGGTGACCTGACCCGTTATTTCGCCGGCGACCCCAAGGGCGGCCAGTTCATGACCGGCATGTTCCCGGTGATGCTTTTCGGCCTACCCGCTGCGTGCCTGGCGATGTACCGCAATGCCCTGCCCCAGCGGCGCAAGGTCATGGGCGGGATTCTGTTGTCCATGGCGTTGACCTCGTTCCTGACCGGCGTCACCGAGCCGATCGAATTCGCCTTCATGTTCCTCGCGCCGCTGCTGTATCTGGTCCATGCGTTGCTCACCGGCCTGTCGATGGCGGTGACCAATCTGTTGGATATTCACCTGGGCTTTACCTTCTCGGGCGGTTTCATCGACATGGTCCTGGGCTGGGGCAAATCCACCAACGGGTGGCTGGTCGTACCGGTGGGCCTGGTCTATGGGGCGATCTATTTCCTGGTGTTCGACTTCTGCATCCGCCGCTTCGACCTGAAGACGCCGGGACGTGAAGACGTGGCGATGGGCGAAAAGCCGATCATCGCCGAAAACCAACGTGCCGCCGCCTACATTCAGGCCCTGGGTGGCGCCGACAACTTGATTACCGTCGGCGCCTGCACCACGCGCTTGCGCCTGGACATGGTGGATCGCAACAAGGCCTGCGACGCCCAGCTCAAGGCCCTTGGCGCCATGGCGGTGGTCCGCCCCGGCAATGGCGGCAGCTTGCAGGTGGTGGTGGGGCCGATGGCCGATAGCATTGCCGATGAGATTCGCTTGGCGTTGCCCTCTTCCGATCAGGCCGTCAGTACGCCCGCGAACGCGGTGGTCGAGCCGGCCTTAACGACAATTGTCCCGGAGGCCGAAGCACAGCAATGGCTCGATGCCCTGGGCGGTGGCAGGAATGTGTTGCAGCTCGATTGCGTGGCGATGAGCCGTTTGCGCGTGCGGTTGGCCGATGGCAAGGGGTTGTCGGAAAGCCAGCTCAAGACGCTGGGTTGCCAGGGGGTGAGTTCGCTGGAGGATGGCGTGTGGCATTTGCTGCTGGGGGAGAAAGCGCCGGGGTTGTGGCGGGCGTTGGAGGCGGTGGTGCCGAGTCGTCAGGCGGGTGTCAAAGCCTAG	MYQHFIEGLQRLGRALMLPIAILPIAGLLLRLGDTDLLNIAIIHDAGQAIFANLALIFAIGIAVGFARDNNGTAGLAGAIGYLVMVATLKVLDATINMGMLAGIVSGLLAGGLYNRFKDIKLPEYLAFFGGRRFVPIVTGFSAVGLGVMFGLIWPPIQHGINSFGELLMASGSFGAFVFGVFNRLLIVTGLHHILNNMAWFIFGSFTDPATGAVVTGDLTRYFAGDPKGGQFMTGMFPVMLFGLPAACLAMYRNALPQRRKVMGGILLSMALTSFLTGVTEPIEFAFMFLAPLLYLVHALLTGLSMAVTNLLDIHLGFTFSGGFIDMVLGWGKSTNGWLVVPVGLVYGAIYFLVFDFCIRRFDLKTPGREDVAMGEKPIIAENQRAAAYIQALGGADNLITVGACTTRLRLDMVDRNKACDAQLKALGAMAVVRPGNGGSLQVVVGPMADSIADEIRLALPSSDQAVSTPANAVVEPALTTIVPEAEAQQWLDALGGGRNVLQLDCVAMSRLRVRLADGKGLSESQLKTLGCQGVSSLEDGVWHLLLGEKAPGLWRALEAVVPSRQAGVKA	PGPT0016860_581	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
D1-36_01096	2514			hypothetical protein	ATGCCCAACAACAATAAAGAGCTGACCCTCAGCGCCCCGCTCAGCGGCCCGGTGCTCACCCTCACCAACGTTCCGGACGCCGTATTCGCCAGCGGCGCCATGGGCGACGGGATCGCCATCGACCCGCTGAACGACACCCTCTACGCCCCCTGCGACGGCGAGGTGATCCACGTCGCTCGCACCGGCCACGCCGTGACCCTGCGGGCCGACAACGGCGCCGAATTGCTGCTGCACCTGGGGCTGGACACCGTCGAGTTGCAGGGCGACGGCTTTTTCATGCTGGTCAAGGAAGGCACGCGCGTCAGCAACGGGCAAGCGCTGCTGCGCTACGACCTGGACAAAGTGGCCCAGCGCTGCAAAAGCCTGGTCAGCCTGTTGGTCATCACCAATGGCGAACATTTCCAGGCACGGCCCATCACTCTTAAAGGAGTCAAGGTCGGCGAACCTCTGTTGCACGTCGTCCCCAGGGCGCCCGGTGCAGGACAGCTTGACGACCTGGAAGTCGGCATCGAAGTGTCCGGCCAGATTCGCATCGCCCATCGAGGCGGCTTGCATGCGCGGCCGGCGGCCTTGGTTCGCCAGACCGCACGGGGATTCAAAAGCCGCTCGCAGTTACACTTTGGGGGGCGGTCGGCGTCCTGTGACAGCGTCATGGGCATGATGGGCCTGGCGATCACCGAACAGGCCGAAGTGCATGTCAGCTGTCGCGGCAGCGATGCCGAAGCGGCGCTGCAAGCGCTGCTGGCGAGCTTGTCCACCGCTCTGGCCGAAGAGGCTCACAGCAGGGCGCCGCAGGTCCTGACAACCCGGCACGCCGCCGAAGAAGGCGTATTGCATGGCGTCTGCGCCGCGCCCGGCCTGGCGAGCGGACCGCTGGTTCGATTGGATGGCATTCAATTACCCAAAGATCCCGGCGGCCACAATGTCGAAGAACAACGCCAACGACTGCTCGATGCCCTGGCTCAAGTCAGTCAGGATATCCAGCTGACACTCGAAAACGCCAAGGCCCGGCGCCACGTCGATGAGCAAGCGATCTTCAGCGCTCATTTGGCGTTGCTGGAAGATCCGGCCCTGTTGGATGCCGCGTACCTGTCTATCGAGCAAGGGAGCGCGGCGGCCCACGCCTGGAGCCGGTCGATCGACGTACAGTGCCAAGTGCTGCGGCAATTGCAAAGCATGCTGCTGGCCGAGCGCGCCAATGATTTGCATGACCTGCGCCAGCGGGTCCTGCGGGCACTGCTGGGCGAAGCCTGGCAATTCGAGGTGCCGGCGGGCGCCATTGTCGTCGCGCAGGAACTGACCCCGTCGGACCTGTTGCAACTCTGCGCCCAGGGCGTGGCAGGCGTATGCATGGCCGAGGGCGGCGCGACGTCCCACGTGGCGATCCTGGCTCGCGGCAAAGGCCTGCCCTGCCTGGTTGCGTTGGGCGATGCCCTGCTTGAGCAGTTGCCCGGTCAATCGGTGGTGCTGGACGCCGACGGTGGCCGCCTCGAACTCACACCAAGCGCCGAGCGCCTGGCCCAGGTGCGGCAAGCACAAAGCCAACGCGCAGCGCTGCGGGCCCAGCAGCAAACCCTCGCCCACGCCCCGGCGCGAACCCTCGATGGCGTAGATGTCGAAGTCGCTGCCAACGTGGCCTCCAGCGCCGAAGCCGGCCAGGCCTTTGCCAACGGCGCCGATGGCGTTGGCCTGCTGCGCACTGAATTCCTTTTCGTCGACCGTCACACCGCCCCCAACGAACAAGAGCAGCGCCAGGCCTATCAAGCCGTGCTCGATGCCATGGGCGACAGGCCGGTGATCATCCGCACCATCGACGTCGGCGGCGACAAGCAATTGGACTACCTGCCGCTTCCGGCCGAAGCCAATCCGGTGCTCGGCCTGCGAGGCATTCGCCTGGGCCAGGTGCGCCCGGAACTGCTGGATCAACAATTGCGCGCGCTGTTGCAAATCCGTCCGTTGCATCGCTGCCGGATCCTGTTGCCGATGGTCACCGAGGTCGCCGAGCTGCTGCACATTCGCCAGCGCATTGACGTCCTGGGTGCGCAAATGGGCCTGGAGCAGCGTCCGCAGGTGGGCGTGATGATCGAAGTGCCAGCCGCCGCATTGCTCGCCGAGCAACTGGCCGAGCATGCGGACTTCCTGTCCATCGGCACCAACGACCTTTCCCAGTACACCCTCGCCATGGACCGCGACCACGCCGGTCTCGCCGCCCGCGTCGACGCCTTGCACCCCGCGCTGTTGCGGCTGATCGCCCAGACCTGTGCCGGCGCCGCCCGCCATGGGCGTTGGGCTGGCGTGTGCGGGGCCCTGGCCTCCGATCCCCTGGCGACGCCGGTGCTGATCGGGCTGGGTGTACGGGAGCTGTCGGTCAGCCCGCCGCAGGTAGGCGAAATCAAGGACCGCGTGCGCCGCCTCGACACAGCGCAGTGCCGCCGCGTCAGTACCGATTTGCTGAACCTGCCCAGCGCCGCCGCCGTGCGCCAGGCCTGTCATCAACATTGGCCCCTGGGCTGA	MPNNNKELTLSAPLSGPVLTLTNVPDAVFASGAMGDGIAIDPLNDTLYAPCDGEVIHVARTGHAVTLRADNGAELLLHLGLDTVELQGDGFFMLVKEGTRVSNGQALLRYDLDKVAQRCKSLVSLLVITNGEHFQARPITLKGVKVGEPLLHVVPRAPGAGQLDDLEVGIEVSGQIRIAHRGGLHARPAALVRQTARGFKSRSQLHFGGRSASCDSVMGMMGLAITEQAEVHVSCRGSDAEAALQALLASLSTALAEEAHSRAPQVLTTRHAAEEGVLHGVCAAPGLASGPLVRLDGIQLPKDPGGHNVEEQRQRLLDALAQVSQDIQLTLENAKARRHVDEQAIFSAHLALLEDPALLDAAYLSIEQGSAAAHAWSRSIDVQCQVLRQLQSMLLAERANDLHDLRQRVLRALLGEAWQFEVPAGAIVVAQELTPSDLLQLCAQGVAGVCMAEGGATSHVAILARGKGLPCLVALGDALLEQLPGQSVVLDADGGRLELTPSAERLAQVRQAQSQRAALRAQQQTLAHAPARTLDGVDVEVAANVASSAEAGQAFANGADGVGLLRTEFLFVDRHTAPNEQEQRQAYQAVLDAMGDRPVIIRTIDVGGDKQLDYLPLPAEANPVLGLRGIRLGQVRPELLDQQLRALLQIRPLHRCRILLPMVTEVAELLHIRQRIDVLGAQMGLEQRPQVGVMIEVPAAALLAEQLAEHADFLSIGTNDLSQYTLAMDRDHAGLAARVDALHPALLRLIAQTCAGAARHGRWAGVCGALASDPLATPVLIGLGVRELSVSPPQVGEIKDRVRRLDTAQCRRVSTDLLNLPSAAAVRQACHQHWPLG				NA	NA	NA	NA	NA
D1-36_01097	1023			hypothetical protein	TTGACTTGCAAAATGCTTGAAGAGGCCCAGGCCTCAGCCGAAGCCGTCGAGCGCCAACTGCAGCGGCTGGACCCAACGCTGGAGGAAATCGCCGGACGCCTGCGTCGTCAACCGCCGCAAGTGGCGATGACCATCGCTCGGGGCAGTTCCGACCACGCCGCCAGTTATTTCGCCTACCTGACCATGCAGCAATTGGGCTTGCCGGTGGCGTCGCTGCCGATGTCGGTGGTGACCCTGCAACAGGCGCCTTTGAAGGTCAGTGGCCAGGTGGCCTTCGCGTTCTCCCAGTCGGGGCAGAGCCCGGACCTGGTCAACAGCCTGCGCCTGTTGCGCAAACGCGGCGCGTTGAGCGTTGCGATGGTCAACGCAGAGGATTCTCCGCTGGAGGCGGCCTGTGAATTCAGCGTGCCGTTGTGCGCCGGCGTCGAAAGCAGCGTTGCCGCCACCAAGAGTTTCATCGCGACCCTCAGCGCCAGCGCGCGTTTGGTGGCGCACTGGAAGGATGACGCCGAGTTGCTCGACGCCGGCGCTGCGCTGCCAGAAGGTTTGCGCGAGGCCGCAGGCCAGGACTGGGGCGCCGCCGTCGAAACGCTCCGTGATTGCCAGCGGCTCATGGTGATCGGCCGTGGCGCCGGGTTCGCCATCGCCCAGGAAGCGGCGCTCAAATTCAAGGAAACCTCGGCGATCCAGGCCGAGGCCTTCAGCAGCGCCGAGGTCCGCCACGGCCCGATGGCGCTGATCGATGAAAACTACCCGCTGTTGGTGTTCGCCCCGCGCGGTGCCGAGCAGGCCGGCGTGTTGGGTCTGGCCGCCGATATGCGCCAGCGCGGCGCCCGGGTGCTGCTGGCGGCTCCCGATGACATCGTCGAGCGCGACTTGACCTTGTCCCGCGCCGATCACCCGGCCCTGGACCCGATCCTGGCGATCCAGAGCTTTTATGGCATGGCTGCCCGGCTGGCCCTTGCCCGGGGCCTGGATCCGGACAAACCACGGCATTTGAGCAAGGTCACCCGGACCCACTGA	MTCKMLEEAQASAEAVERQLQRLDPTLEEIAGRLRRQPPQVAMTIARGSSDHAASYFAYLTMQQLGLPVASLPMSVVTLQQAPLKVSGQVAFAFSQSGQSPDLVNSLRLLRKRGALSVAMVNAEDSPLEAACEFSVPLCAGVESSVAATKSFIATLSASARLVAHWKDDAELLDAGAALPEGLREAAGQDWGAAVETLRDCQRLMVIGRGAGFAIAQEAALKFKETSAIQAEAFSSAEVRHGPMALIDENYPLLVFAPRGAEQAGVLGLAADMRQRGARVLLAAPDDIVERDLTLSRADHPALDPILAIQSFYGMAARLALARGLDPDKPRHLSKVTRTH	PGPT0017630_7038	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULATION_METABOLISM,PGPT0017630-glmS|nodM-K00820	NA	NA
D1-36_01098	1107	agaA	COG1820	N-acetylgalactosamine-6-phosphate deacetylase	ATGTCCGAAAACAACATCCTCACCGCCAACGGCTGGATACGCGGCCGCCTGATCCATGAACGCGGCAGGGTCGTGTCCATCGAAGGCCAGCCCTGCGACCCGACGAGCAACGACCTGCCCTACCTGCTGCCCGGCTTCATCGACCTGCATGTGCACGGCGGTGGTGGCAAGGACATCATGGAAGGCGCGGCGGCGTTCGAAACCATTGCCCGCACCCATGTGCGATTCGGCACAACGGCGTTGCTCGCCACGACGATGACGGCGCCGAGCGAAGAAATCATCCGCGTACTCAAGGCCCTCGGTGAATTCTGCGAACAGCGGCCCAGCTGCAGCGCACGGGTGCTCGGTGTTCACCTGGAAGGCCCTTACATCAACCCCGGCAAACTCGGCGCTCAACCGAATTTCGCCCACACCGCCTTGATGGCCGAGGTGGAAACGTACCTGGCCCTGGCGCCGATCCGCGTGATCACCATTGCGCCGGAAATCGCCGGTCACGATGCCTTGATTGGCGCCGTCAGCGCTCGCGGCGTGCGCATGCAGATCGGCCATACCCTCGGCAGCTATGAAGAAGGCGTCGCGGCACTCGCGGCCGGGGCCAGCAGTTTTACCCATTTGTATAACGCCATGAGCCCACTGCATCACCGCGAGCCCGGCATCGTCGGTGCGGCGCTGGCCCATGCGCAATACGCCGAACTGATCCCGGATTTGCTTCACGTGCACCCCGGTGCGATGCGCGTGGCGTTGCGTTCGATCCCGTGCCTGTATTGCGTCACCGATTCCACCGCCGCCGCTGGCATGCCCGACGGCGAATACAAGCTGGGCAGCCACACCGTGACCAAATGCCTGGGCGGCGTGCGCCTGGCCGATGGCACCCTGGCCGGCAGCACCCTGACCATGGACCAGGCCCTGCGCAACCTGGTGAAAATCGGCCTGCCCATCGACGAAGCTTCCCGACGCCTGTCGCAATTTCCCGCCGACTACCTCGGCCTGCCCGAGCGCGGACGCCTGCAACCCGACGCCTGGGCCGACTGTGTGCGCCTCGACCGTAACTTGAACCTGATCGACGTGATGGTCGAAGGAGAAGCCATTGACTTGCAAAATGCTTGA	MSENNILTANGWIRGRLIHERGRVVSIEGQPCDPTSNDLPYLLPGFIDLHVHGGGGKDIMEGAAAFETIARTHVRFGTTALLATTMTAPSEEIIRVLKALGEFCEQRPSCSARVLGVHLEGPYINPGKLGAQPNFAHTALMAEVETYLALAPIRVITIAPEIAGHDALIGAVSARGVRMQIGHTLGSYEEGVAALAAGASSFTHLYNAMSPLHHREPGIVGAALAHAQYAELIPDLLHVHPGAMRVALRSIPCLYCVTDSTAAAGMPDGEYKLGSHTVTKCLGGVRLADGTLAGSTLTMDQALRNLVKIGLPIDEASRRLSQFPADYLGLPERGRLQPDAWADCVRLDRNLNLIDVMVEGEAIDLQNA	PGPT0018860_3627	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
D1-36_01099	729	nagR_2	COG2188	HTH-type transcriptional repressor NagR	ATGAATATCCAGACCCTGCGCCCCGACGACACCCAACCTACCCCGCTCTACCTGCAACTGGCCCGCAATCTGGAAGCCGCCATCCACGCTGGCCAGTGGAAAGCCGAACAAGCGATGCCGTCCGAGCGCAGCTTGAGCGAGCAATTGGGGATATCCCGGGTCACCGCGCGCAAGGCGCTGGAAGTGCTGTTCGAACAAGGCCTGATCCGCCGCAACCAAGGCTCGGGTACGTTCATCACCCCACGCCTGGAACAACCGCTCTCACGCCTTAGCGGTTTCAGCGAGATGCTCCGGCTCAAAGGCTTTGTGCCCGGCTCCCAATGGCTGGAGCGGGAGATCACCCCGCCAACCCATGAGGAATTGATACGCCTGGGCCTCTCGCCCACCGACAAAGTCGCCCGGCTCAAACGGCTGCGCAAGGCCGACGACACGGTCATGGCCATCGAGATGAGCACCCTGCCCGCATCGATCATTGCCAAGCCGCAGGCGGTGGGCGATTCGCTTTATGAATTCCTCGACAGCATCGGCAAACCGGTAGTGCGCGCCCTGCAACACATCCAGGCCATCAACGCCTCGGACGAATTCGCCGCCCTGGTGGGCATCGCCCCCGGCACCGCGATGCTGTTGATGACGCGGGTCGGCTACCTGGAAGACAACACGCCCATCGAAGTCACCGACACCTATTGCCGCAACGACTATTACGACTTCGTCGCAGAGTTGCGGCGCTAG	MNIQTLRPDDTQPTPLYLQLARNLEAAIHAGQWKAEQAMPSERSLSEQLGISRVTARKALEVLFEQGLIRRNQGSGTFITPRLEQPLSRLSGFSEMLRLKGFVPGSQWLEREITPPTHEELIRLGLSPTDKVARLKRLRKADDTVMAIEMSTLPASIIAKPQAVGDSLYEFLDSIGKPVVRALQHIQAINASDEFAALVGIAPGTAMLLMTRVGYLEDNTPIEVTDTYCRNDYYDFVAELRR				NA	NA	NA	NA	NA
D1-36_01100	507			hypothetical protein	ATGCGCTGGTTGCTTGTGCTGTTCTGCTTGTCGTTCACCGCCCTGTCCCAGGCCGCCGCCGTGGGAACCTACAACGGCAAAGTCATCGAAAAAGTCCTGGTGCTCAAGTCCGCCCATCAATTGCAATTGATCAACGACGGCAAGCCCCTCAAGACCTATCGCATCTCCTTGGGCAAGGGCGCCAAGAAAGGCCCCAAGTTGATCGAGGGCGACAAGCGCACCCCCGAAGGTTTTTACTGGATCGACTGGCGCAAGGTCAGCGACCGGTTCTACCTGTCGATGCACATCTCCTACCCCAACATCAGCGACGCCGCCCGCGCCCGCCGCGAAGGCGTGGAACCGGGAGGCATGATCATGATTCATGGCACGCCGGACTCGGAGGAGAACCCTGAGCAGTTGTTCCACACCCTGGACTGGACCGACGGCTGCATCGCCATGCGCAATGTGGACATGCGTGAGGTGTGGAACCTTGTGCCGGATGGGACGATGATCGAGATTCGGCCGTAG	MRWLLVLFCLSFTALSQAAAVGTYNGKVIEKVLVLKSAHQLQLINDGKPLKTYRISLGKGAKKGPKLIEGDKRTPEGFYWIDWRKVSDRFYLSMHISYPNISDAARARREGVEPGGMIMIHGTPDSEENPEQLFHTLDWTDGCIAMRNVDMREVWNLVPDGTMIEIRP				NA	NA	NA	NA	NA
D1-36_01101	552	nudC_1		NADH pyrophosphatase	ATGAAATTCTGCAGCCAGTGCGGTAACCCGGTGACCCAGCGCATACCCGAGGGCGACTCGCGCCTGCGTTTTGTCTGCGACACCTGCCACACCATTCATTACCAAAACCCCAATATCGTTGCCGGATGTGTACCGACCTGGGGCAGTAAAGTCCTGTTGTGCCGGCGCGCCATCGAGCCACGGCGTGGTTACTGGACCTTGCCGGCGGGCTTCATGGAAAACGGCGAAACCGTCGAGCAAGCCGCCGTGCGCGAAACCGCCGAGGAAGCCTGCGCCCGGGTGCGAAACCTTAGCATCTATACGCTGATCGACGTTCCGCACATCAGCCAGGTGCATGTGTTCTTCCGCGCCGAGCTGGTGGACGAGGATTTCGCCGCGGGCCCCGAAAGCCTGGAAGTGAAGCTGTTCGAAGAAGCTGACATCCCGTGGAACGAGCTGGCTTTCCGCACCGTGGGCCGTACCCTAGAATACTTCTACGCTGACCGGCGGGCCGAGCAATACCCGGTGCGATCCGAGTCGATTCCGCCGCTGACTCAGCCTGCCAATACGTAG	MKFCSQCGNPVTQRIPEGDSRLRFVCDTCHTIHYQNPNIVAGCVPTWGSKVLLCRRAIEPRRGYWTLPAGFMENGETVEQAAVRETAEEACARVRNLSIYTLIDVPHISQVHVFFRAELVDEDFAAGPESLEVKLFEEADIPWNELAFRTVGRTLEYFYADRRAEQYPVRSESIPPLTQPANT	PGPT0008680_59	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B2|RIBOFLAVIN_METABOLISM	ISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008680-NUDT23-K18453	NA	NA
D1-36_01102	600	nudL		putative Nudix hydrolase NudL	ATGCTGGACGAGCTACTGCATCGAGTAAGCAACCATACGCCGCGCGATCTGGAGACCGATCGGCGTTTTCCTGAAGCGGCGGTGCTGGTGCCGATCACGCGCAGTGATGAACCGGAGCTGGTGCTGACCCTGCGCGCCAGCGGTCTCTCGACCCACGGCGGCGAAGTGGCGTTCCCCGGTGGACGTCGAGACCCGGAAGACCCCGACCTGATCTTCACCGCCCTGCGCGAAGCCGAAGAGGAAATTGGCCTGCCCCCCGGCCTGGTGGAGGTGATTGGTCCCCTCAGTCCACTGATCTCGTTGCACGGTATCAAGGTCACGCCTTACGTCGGCGTGATTCCGGATTACGTCGAATACCAGGCCAACGACGCCGAGATCGCCGCCGTGTTCAGCGTGCCGTTGGAATTTTTCCGCAAGGACCCGCGCGAGCACACCCACCGCATCGACTACCAGGGCCGCAGTTGGTACGTGCCCAGCTACCGTTTCGAGGGGTACAAGATCTGGGGGCTGACGGCGATCATGATCGTGGAGTTGGTCAACCTGCTGTACGACGCCGGCATCGACCTGCACACGCCGCCCAAGACTTTCATCAACACCTGA	MLDELLHRVSNHTPRDLETDRRFPEAAVLVPITRSDEPELVLTLRASGLSTHGGEVAFPGGRRDPEDPDLIFTALREAEEEIGLPPGLVEVIGPLSPLISLHGIKVTPYVGVIPDYVEYQANDAEIAAVFSVPLEFFRKDPREHTHRIDYQGRSWYVPSYRFEGYKIWGLTAIMIVELVNLLYDAGIDLHTPPKTFINT				NA	NA	NA	NA	NA
D1-36_01103	525	yrdA_1	COG0663	Protein YrdA	ATGAAATACCGCTTGGGCGATGCCCGTGTCGAAACCCACCCACAGAGCTGGGTCGCGCCCAACGCCACGCTGGTGGGCAAGGTCCGCCTCGAAGAGGGCGCCAACGTCTGGTTCAACGCGGTGTTGCGTGGCGACAACGAATTGATCCTGATTGGCAAGGACAGCAACGTGCAGGACGGCACGGTGATGCACACCGACATGGGTTATCCGCTGACCATCGGCACTGGCGTGACCATCGGCCACAACGCCATGCTTCACGGCTGCACAGTCGGGGACTACAGCCTGATCGGCATCAACGCGGTAATCCTCAACGGCGCGAAAATAGGCAAGAACTGCATCATCGGCGCCAACTCGCTGATCGGCGAAGGCAAGGAAATACCCGATGGTTCGCTGGTCATGGGCTCGCCGGGCAAGGTCGTGCGAGAACTGACCGAGGCCCAGAAAAAAATGCTTGAAGCCAGTGCGGCGCACTACGTTCACAACTCGCAGCGCTACGCACGCGACCTGATCGAGCAGGAACAATGA	MKYRLGDARVETHPQSWVAPNATLVGKVRLEEGANVWFNAVLRGDNELILIGKDSNVQDGTVMHTDMGYPLTIGTGVTIGHNAMLHGCTVGDYSLIGINAVILNGAKIGKNCIIGANSLIGEGKEIPDGSLVMGSPGKVVRELTEAQKKMLEASAAHYVHNSQRYARDLIEQEQ				NA	NA	NA	NA	NA
D1-36_01104	210			hypothetical protein	ATGAACACACCTGAACGCCCGGTTCCGTCGCCCTGCGTAAACATCTGCTCGCTGGACGATGACGACGTCTGCACCGGTTGCCAGCGCACCGTCTCCGAGATCACTCAATGGCGCAAGATGAGCAACGATGAACGGCGCAGCGTCCTGGCGTTGTGTCATGAACGGGCCAAGGCCAATGGATTGGTGTGGATGCTGCCGGCGAGGCGTTGA	MNTPERPVPSPCVNICSLDDDDVCTGCQRTVSEITQWRKMSNDERRSVLALCHERAKANGLVWMLPARR	PGPT0013210_1423	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013210-ydhL-K06938	NA	NA
D1-36_01105	645			hypothetical protein	ATGAACGTGCGAACCGGTTTCGTGTCGATGCTGGCATTGCTCGGCTGGGTGGGATTGAGCATTCAGCTCTACCTGATCCTGCTGGGCCGATGGGAACTGGGCGCGAGCCTGTTGGGCGGCCTGGTCAACTTCTTCAGTTTCTTCACCGTATTGACCAATACCTTGGCCGCCGTGGTATTGACCTGGGAAGTGACCCGCCGTGAATCAGCGGTGAGGCGTTGGTTCCTGCGTCCAGCGGTACGCAGCGGCATCGCGGTGAGCATCGCCTTGGTCGGCCTGGCCTATAACGTATTGCTGCGCCATCTCTGGCAACCGGAAGGCTGGCAATTTATCGCCGACGAACTGCTGCACGACATCATGCCGGTGCTGTTCATCATCTATTGGGGGCTCTGGGTGCCCAAAGGCACGTTGCGCCTGGGCCACGTCGGGCTGTGGATGATTTACCCGCTGGTGTACTTCGCCTACATCCTGCTACGGGGTGATCTGCTGGCGGCCTATCCCTACCCTTTCATCGACGTGACGAGCCTGGGTTATCCACGGGTGTTCATCAATGCCGGGGGCGTGTTGGCCGGGTTTGTCGGGATTGCGCTGGGGGTGGTGGGGTTGGATCGGTGGTTGGGACGACGATCGATTAAAGCCTTGTGA	MNVRTGFVSMLALLGWVGLSIQLYLILLGRWELGASLLGGLVNFFSFFTVLTNTLAAVVLTWEVTRRESAVRRWFLRPAVRSGIAVSIALVGLAYNVLLRHLWQPEGWQFIADELLHDIMPVLFIIYWGLWVPKGTLRLGHVGLWMIYPLVYFAYILLRGDLLAAYPYPFIDVTSLGYPRVFINAGGVLAGFVGIALGVVGLDRWLGRRSIKAL				NA	NA	NA	NA	NA
D1-36_01106	231		COG4628	DNA-binding protein	ATGACCGAACCGAACAACAACCCACTGCACGGCGTGACCCTGGAGCAGATCCTCAATGCCCTGGTGCAGCACTACGAATGGTCAGGCCTGGCGGAACGCATCGACATCCGTTGCTTCAAGAGCGACCCGAGCATCAAGTCGAGCCTGACCTTCCTGCGCAAGACGCCATGGGCACGGGAGAAAGTCGAGCGCTTGTACGTCAAGTTGATGCGCACCAAGCGGCCTATCTGA	MTEPNNNPLHGVTLEQILNALVQHYEWSGLAERIDIRCFKSDPSIKSSLTFLRKTPWAREKVERLYVKLMRTKRPI				NA	NA	NA	NA	NA
D1-36_01107	114			hypothetical protein	ATGGTTCAGTTGGAAAAAGGCAAATTCGATGACGCGGTCGCTGTAGGAACGGACTTGCTCGCGATCAAGGCGTGTCAGTCGACTCGGATGTTGAATGTGCAATCGCTATGGTGA	MVQLEKGKFDDAVAVGTDLLAIKACQSTRMLNVQSLW				NA	NA	NA	NA	NA
D1-36_01108	2415	gcd	COG4993	Quinoprotein glucose dehydrogenase	ATGAGCGCTGAGGGTGCTTTGAGTCGAAGCCGTCTGCTACCGAGCTTGCTCGGCATTCTGCTTCTATTGATGGGGCTGGCCTTGTTGGCTGGTGGGATCAAACTGAGCACGCTCGGCGGCTCGCTGTATTATCTGCTGGCGGGCATCGGCCTGGCGATTACTGGTGTACTGCTGATTCTGGCGCGCCGTGCAGCGCTGGGGATGTACGCGCTGGTTTTATTCGCCAGTACGGTGTGGGCGTTATGGGAAGTGGGCCTGGATTGGTGGCAATTGGTGCCGCGCCTGGCCATGCTGTTCGCCTTGGGCATCGTCATGCTGCTGCCGTGGTTCCGGCGCCCGTTGCTGACCGCCGATGCATCGCCGATGGGCACCCGAGCGCTGGGTGCGGCCGTTGTCATCGCGGGTATCGCCGCCCTCGCCAGCCAATTCACCAACCCTGGTGAGATCAAGGGCCAACTGGACCGCGACAGCGTACCGGGCGTGACCAACACCGCACCGGCCATGCCGGACGGGGATTGGAACTCCTACGGCCGCAGCGCCCATGGCGACCGTTATTCGCCACTGGCGCAGATCACCCCTGAAAACGTCAGCAAGCTGAAGGAAGCCTGGACGTTCCGCACCGGTGACCTGCCAGGGCCGAACGACCCAGGCGAGACCACCGCGGAAAATACCCCGCTGAAGGTCAACGGCATGCTTTATGTGTGCACGCCCCACAGCCAGGTCATCGCTCTGGAGCCAGAAACCGGCAAGGAAATCTGGCGCTTCGATCCGAAGCTTTCTACGCAGAACGCGGAAAACTTCAAGGGCTGGGCCCACATGACCTGCCGTGGCGTGAGCTATCACGATGACGCCGTCTACGCCTCGGCCGAGCAGAGCCCGACCGGCGCCGCGAGCACTACGCCGGCCAGCACCGTTTGCCCACGGCGGATCTTCCTGCCGACGGCCGACACCCGCCTGATCGCCCTCAACGCCGACACCGGCAAGATGTGCGAAGACTTCGGCGATAAAGGCCAGGTCGACTTGAGCGCCAACATCGGTGGTTTCACGGCCGGAGGTTACTACTCCACTTCGCCACCGGCGGTCACCCAGAATCTGGTCGTTATCGGCGGCCATGTCACCGATAACGTCTCCACCGACGAGCCAAGCGGCGTGATCCGCGCCTATGACGTGCACACCGGCAAGCTGGTGTGGAACTGGGACAGCGGCAACCCGGACGACACCACGCCGATTGCCGAAGGCCAGACCTACACCCGCAACTCGCCGAACATGTGGTCCATGTTCAGCGTCGATGAAAAACTCGGCATGCTTTACCTGCCGATGGGCAACCAGACCCCCGACCAGTTTGGTGGTTTCCGTACCCCTGAATCGGAAAAATACGCCGCTGGCCTGACCGCCCTGGACATCGCCACCGGCAAGGTGCGCTGGTACTTCCAGTTCACTCACCACGATCTGTGGGACATGGACGTTGGCGGTCAACCGACCCTGATGGACATGAAAACCGCCGATGGCGTGAAGCCGGCTGTGCTGGCATCGACCAAGCAGGGCAGCATCTACGTGCTGGACCGCAGTAACGGCCAGCCGATCGTGCCGATCAAGGAGGTCCCGGTGCCCCAAGGCGCGGTGGAAGGCGACTTCACCTCGCCGACCCAGCCGATGTCCGACCTGAACTTCGTGCCGCCGGTCCTCAAGGAGCGGGACATGTGGGGCGTCACGCCGTTCGACCAGATGCTGTGCCGGATCGACTTCAAGTCGCTGCGCTATGACGGTATGTTCACACCGCCTTCGTTGCAGGGCTCGATTGTTTATCCTGGCAACTTCGGTGTGTTCGACTGGGGCGGCATTTCTGTCGATCCGGTGCGCCAGATCGCCTTCGTCAACCCGAGCTACATGGCGTTCAAATCGAAGTTGGTACCGGCGGCGGAAGTGGCCGGTGGCCCGGGTCGCAAGAGCGAGACCGAAGGCGTGCAGCCAAACAAAGGCGCGCCATATGGCGTGATCCTCGAAGCGCTGCTCTCGCCCATGGGGCTGCCGTGCCAGGCGCCTGCGTGGGGTTATGTCGCGGCCGTGGACCTGACCAACAACAAGACCCTGTGGATGCACAAGAACGGCACGGTGCGCGACAGCTCGCCGGTTCCGATCCCGCTGAGCATGGGTGTTCCAAGCCTGGGCGGCACATTCACCACCGCCAGTGGCCTGGCATTCCTCAGCGGCACGCTTGACCAGTACCTGCGCGCTTATGACGTGAAGAACGGCAAGCAATTGTGGGAAGGCCGCCTGCCTGCTGGCGCTCAGACCACGCCGATGACCTACACCGGCAAGGACGGTAAGCAATACGTGCTGGTCGTTGCAGGGGGGCACGGTTCCCTGGGCACCAAGCAGGGTGACTATGTGATTGCCTACAAACTGCCGGATTAA	MSAEGALSRSRLLPSLLGILLLLMGLALLAGGIKLSTLGGSLYYLLAGIGLAITGVLLILARRAALGMYALVLFASTVWALWEVGLDWWQLVPRLAMLFALGIVMLLPWFRRPLLTADASPMGTRALGAAVVIAGIAALASQFTNPGEIKGQLDRDSVPGVTNTAPAMPDGDWNSYGRSAHGDRYSPLAQITPENVSKLKEAWTFRTGDLPGPNDPGETTAENTPLKVNGMLYVCTPHSQVIALEPETGKEIWRFDPKLSTQNAENFKGWAHMTCRGVSYHDDAVYASAEQSPTGAASTTPASTVCPRRIFLPTADTRLIALNADTGKMCEDFGDKGQVDLSANIGGFTAGGYYSTSPPAVTQNLVVIGGHVTDNVSTDEPSGVIRAYDVHTGKLVWNWDSGNPDDTTPIAEGQTYTRNSPNMWSMFSVDEKLGMLYLPMGNQTPDQFGGFRTPESEKYAAGLTALDIATGKVRWYFQFTHHDLWDMDVGGQPTLMDMKTADGVKPAVLASTKQGSIYVLDRSNGQPIVPIKEVPVPQGAVEGDFTSPTQPMSDLNFVPPVLKERDMWGVTPFDQMLCRIDFKSLRYDGMFTPPSLQGSIVYPGNFGVFDWGGISVDPVRQIAFVNPSYMAFKSKLVPAAEVAGGPGRKSETEGVQPNKGAPYGVILEALLSPMGLPCQAPAWGYVAAVDLTNNKTLWMHKNGTVRDSSPVPIPLSMGVPSLGGTFTTASGLAFLSGTLDQYLRAYDVKNGKQLWEGRLPAGAQTTPMTYTGKDGKQYVLVVAGGHGSLGTKQGDYVIAYKLPD	PGPT0001290_395	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION_D_GLUCONATE_BIOSYNTHESIS,PGPT0001290-gcd|gdhAB-K00117	NA	NA
D1-36_01109	1182	purT	COG0027	Formate-dependent phosphoribosylglycinamide formyltransferase	ATGACCCGTATCGGAACTCCATTGTCGCCCACCGCGACCCGCGTTTTGTTGTGTGGCAGCGGTGAGCTGGGCAAGGAAGTGGTAATCGAACTGCAGCGACTGGGCGTTGAAGTGATTGCCGTGGATCGCTACGCCAACGCGCCGGCGATGCAAGTGGCCCATCGCAGCCACGTGATCAACATGCTCGATGGCGCCGCCCTGCGTGCGGTGATCGAGGCCGAGAAGCCGCACTACATCGTGCCGGAGATCGAAGCCATCGCCACCGCCACCCTGGTGGAGCTGGAAGCCGAAGGTTTCACGGTGATTCCTACGGCCCGCGCCGCGCAACTGACCATGAACCGTGAAGGCATCCGTCGCCTGGCCGCCGAAGAGCTGGGCCTTCCGACTTCCCCGTATTTCTTCGCCGACACCGTGGAAGACTACCGCAAGGCCGTCGAGACCCTGGGTTTCCCCTGCGTGGTCAAGCCGGTGATGAGTTCCTCGGGCAAGGGCCAGAGCCTGCTGCGCGGCGTTGAAGACGTGCAGAAAGCCTGGGACTACGCTCAGGAAGGCGGCCGCGCTGGCAAGGGCCGGGTGATCATCGAAGGCTTCATCGATTTCGATTACGAAATCACCCTACTCACCGTGCGCCATGTCGGCGGCACCACGTTCTGCGCACCGGTCGGCCACCGTCAGGAAAAGGGCGACTACCAGGAATCCTGGCAACCACAGGCCATGAGCCCGGCGGCGCTGGCCGAATCCGAGCGCGTAGCCAAGGCAGTGACCGAGGCCCTGGGTGGCCGCGGCCTGTTTGGCGTCGAGCTGTTCATCAAGGGCGACCAAGTGTGGTTCAGCGAAGTCTCCCCGCGCCCCCACGATACCGGCCTGGTCACGCTGATCTCCCAGGACCTGTCTCAGTTCGCCCTGCACGCCCGGGCCATCCTCGGCCTGCCGATTCCGTTGATCCGCCAGTTCGGCCCATCGGCTTCGGCGGTAATCCTCGTGGAAGGCCAATCGACCCAGACCGCGTTTGCCAACCTCGGCGCCGCCCTGAGCGAGCCGGACACGGCGCTGCGTCTATTCGGCAAGCCGGAAGTCAACGGTCAGCGCCGCCTGGGCGTGGCCCTGGCCCGCGACGAATCCATCGAAGCCGCCCGCGCCAAGGCGACCCGGGCTTCCCAGGCCGTCAAGATCGAGTTGTAA	MTRIGTPLSPTATRVLLCGSGELGKEVVIELQRLGVEVIAVDRYANAPAMQVAHRSHVINMLDGAALRAVIEAEKPHYIVPEIEAIATATLVELEAEGFTVIPTARAAQLTMNREGIRRLAAEELGLPTSPYFFADTVEDYRKAVETLGFPCVVKPVMSSSGKGQSLLRGVEDVQKAWDYAQEGGRAGKGRVIIEGFIDFDYEITLLTVRHVGGTTFCAPVGHRQEKGDYQESWQPQAMSPAALAESERVAKAVTEALGGRGLFGVELFIKGDQVWFSEVSPRPHDTGLVTLISQDLSQFALHARAILGLPIPLIRQFGPSASAVILVEGQSTQTAFANLGAALSEPDTALRLFGKPEVNGQRRLGVALARDESIEAARAKATRASQAVKIEL	PGPT0008100_1001	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0008100-purT-K08289	NA	NA
D1-36_01110	468			hypothetical protein	ATGCTTTACCTGATCGCCTACATCGGCAGCGTCGTGCTGATCAACTTCGCATTTTCAGCCGCGCCGCACCTGGACATCATCTGGTCGGCCTGGGGGGGCCTGGTGTTTATCTTGCGGGACATGGTGCAGACCCGCTTCGGCCATGGCGCCATCGTGGCGATGCTGGTGGCGCTGGTGCTGTCCTACGTCACCTCCGACCCAACCATCGCCCTGGCCAGCGCCACGGCGTTTGCCGTCTCCGAGTGCATCGACTGGCTGGTGTTCACGGTCACCAAGCGTCCGCTGCATGACCGGTTGTGGATCAGTTCGGCACTGAGCATCCCTCTCGATACATTCATTTTCTTCGGCCTGATCGACGCCCTGACGCCCGCCGTGATAATCACCGCGCTGCTCTCGAAATTCGCCGGGGTCACGGCCGTCTGGCTGATCATGGCCTGGCGTTTGCGCAAACAGGCCGTCGCCGGCTGA	MLYLIAYIGSVVLINFAFSAAPHLDIIWSAWGGLVFILRDMVQTRFGHGAIVAMLVALVLSYVTSDPTIALASATAFAVSECIDWLVFTVTKRPLHDRLWISSALSIPLDTFIFFGLIDALTPAVIITALLSKFAGVTAVWLIMAWRLRKQAVAG				NA	NA	NA	NA	NA
D1-36_01111	786	yqjH	COG2375	NADPH-dependent ferric-chelate reductase	ATGACTGGAGTTGATCCAAACACCATCCACCGCGTCAGCCACGAGATCAAACGCCGCCGCCTGCAAGTGCTGCGCGTGGTCGACCTGACACCGCGCATGCGCCGCATTACCGTCGGCGGGCCGGAACTGGCCGGATTCGTCAGCCTGGGCACCGACGATCACATAAAACTGTTGTTCCCCCAGAACGCCGAGGAACACGCCGCCCTGGAAAACTTCGCGCCCGGTGCGGGCAAGGCGCAGGGTCCGATGCCAGAAATGCGCGACTACACCCCGCGCCGCTATGACCTGGACGCCCTGGAGCTGGACATCGATTTCGTGCTCCATGGCGACGGCCCCGCTTCGACCTGGGCGGCCCAGGCCGCGCCCGGCCAATACCTCAACATCGCCGGGCCACGGGGGTCGATGATTGTGCCGGACGTCTTCGACAGCTACCTGTTGATCGGCGACGAAACCGCCTTGCCCGCCATCGCTCGCCGTCTCGAAGGCCTTGCCCCCAATCGGAAGGCCTTGGTGGTGGTGGAAGTGGAAAATGGCGCCGAACAGCAGGTGCTCCACAGCCCCGCGCAGGTGCATGTGATCTGGGTATTGCGTGAGGGGCGCCAGGACAGCCTGCTACGCACCGTGCAGCAGTTGGAAATGCCCGGCGGCAAGCTGTACGCCTGGGTCGCGACCGAGAGCAAGGTGTCCCGGCAGATCCGTAAGGTATTGCTGGAAGAGAAAGGCCTGGACCAGGATTTTGTGAAGGCCGTGGGGTATTGGAAGCTGGATGACAGTGAGGAAGATTGA	MTGVDPNTIHRVSHEIKRRRLQVLRVVDLTPRMRRITVGGPELAGFVSLGTDDHIKLLFPQNAEEHAALENFAPGAGKAQGPMPEMRDYTPRRYDLDALELDIDFVLHGDGPASTWAAQAAPGQYLNIAGPRGSMIVPDVFDSYLLIGDETALPAIARRLEGLAPNRKALVVVEVENGAEQQVLHSPAQVHVIWVLREGRQDSLLRTVQQLEMPGGKLYAWVATESKVSRQIRKVLLEEKGLDQDFVKAVGYWKLDDSEED	PGPT0004045_30	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-RELATED_PROTEINS,PGPT0004045-ygjH-K07229	NA	NA
D1-36_01112	570			hypothetical protein	ATGAAGAACCTCTATTCTCACCCCACTCCCGCCTTCGAACTAGAATACGACCGTTTCGAACCGCGCCCGACCGCCTCGCGAGGCAACCGGGCCCCACGGGTCTTCGCCTCGGGTGATTTAAAAGTGTTGCTGCTGGCGCTGATTGCCGAACAGCCTTGCCACGGCTATGACCTGATCCGCCGGATCGAGCACCTGTTCGAGGGCGCCTACAGCCCCAGCCCGGGCGTGGTCTACCCGACCCTCACCTTTCTGGAAATGAACGCTTTGGTCAGCTGCAGCGTCGAAAATGGGAAAAAAAGCTACAGCGTGACCGATGCCGGACGTCTATCACTGGAGAACCAGGCCCAAGCGCTGGATGAAGTGCGCTCGCGCATCGAAATCAGCAAGCGCACATTGCGCGGCCATGACCGCCCCCCGGAAATCCGCGAAGCGGTGTATAACCTGCGGCATGCCCTGCAAACGCACCATGGCCGTTGGAGCCCTGATGAAATCCTGCGGGTACGCGACCTGCTCAACGACACCGTCAAAGCCATTGTCGACGGCCCTGGCAGTCCAACCGTTTCGGAGTAA	MKNLYSHPTPAFELEYDRFEPRPTASRGNRAPRVFASGDLKVLLLALIAEQPCHGYDLIRRIEHLFEGAYSPSPGVVYPTLTFLEMNALVSCSVENGKKSYSVTDAGRLSLENQAQALDEVRSRIEISKRTLRGHDRPPEIREAVYNLRHALQTHHGRWSPDEILRVRDLLNDTVKAIVDGPGSPTVSE				NA	NA	NA	NA	NA
D1-36_01113	492			hypothetical protein	ATGCTTAAGCAATTCGTAACCGCTGCCTCCCTGACTGCCGCCGCGCTGAGTTCGTCGTTGGCATTCGCTGCTGATGATGCGCGCTCGGCCATCCATATCACTGCGGACATCCCGACCAATTCGTTCCACGTCCTGCCGCGCAACCCAAACTTCGGTAAGGACGAATACATGGGCTACAACCCGGCGAGCAGCACCTTGAATCCATTGCGACAGGTTTTCGACGTGAAGAACACCGATGGTTCGGTCCATGCCTACATCGACGGCGGTCCGCAGTCGCTCTCCAATGGCAGCAACGACATCGCCCTGACCACCACATTCAACGGTGTCACTTTGACCGCCACGCCTCAAGAAGTGGTGGACGACGCATCGTCGAACGGGGGTACCGCAGCTGACATGCTTATCTCCGCGGCCAAGCCCTTGGCCAACCAGACTGGCCGGTACGTCGCTGACATGACGGTCATCTTCGATGCGGTACCTCGCGCTCCGCGTTGA	MLKQFVTAASLTAAALSSSLAFAADDARSAIHITADIPTNSFHVLPRNPNFGKDEYMGYNPASSTLNPLRQVFDVKNTDGSVHAYIDGGPQSLSNGSNDIALTTTFNGVTLTATPQEVVDDASSNGGTAADMLISAAKPLANQTGRYVADMTVIFDAVPRAPR				NA	NA	NA	NA	NA
D1-36_01114	2535			hypothetical protein	ATGTTTTCGATGACACCCATCGCGGGTGCGCTCGCGCTATTGTTGTGCGCGACCGCATTGGCCGCGCCGACTGCCCCCGGTACGACGCCGACAAGTCTGTTATCCCAGGCCAAGGGACTGCCGGCGGAGTTCGAATCGCATTTCTTTGACGTGCCCTTGGCGGTTCGTGTTGAACTCAATCAACACTATCTCGGTGAAGCCATGGTGGTCTTGACTCGGGATGATCGGGTCACCCTGCTCGAATTCACCGACACCCAGGACAGCCTGATAAAACCGGTCGAGCGTGATCAATGGGAGCAATTACTCAAGCAAGGGCAGCCGCTGGGCGCATGCGAAGCCAACTGCGCATCTGGGTTGCTCGCCGTGCATTACAGTCTTGAAAACTCCTTGGTCTCGATCCTCACCCGAGACGTGGAGCGAACCAGCGAAACCAAGCGTTATTACGATCAACCGCAAGACGGTAGCTTCGGGCTGATCTTAAATAACCAACTCAATATCAATGGCGGCCAGGAACAGGACACCGGTGGGCGTTATGGCCTCAACGCCAGTTCCAGTATCGGTAACTGGAGCCAATCGCTCGACCTCCAGCTGTCTCGTCTTGGTGGCCCGGACGACAAGCTGTACCACGCCGTCCACGAGCTTTATACCCAGCGAGAGCTGGAAGGCAGTTTTTTTCGCCTGGGTTATTTCACCCCCGGCTCCGATGGCTTAAATCGCCAGATTCGCGCGTTCGGCGCCAACCCCGACACCGCGCTGGGCGTGATGTATGGCAGCTCCGACAGCCTGGCCATCGACAATCCCAAGCCCAGTGTCTACCCCATTTACGTCACCGCCAGTCGTCAGGCATCGGTGGAGATCTATCGCAACGGCCTGTTGATCAACACCCAAGCGGTCGGCGCTGGCTTGCAGAGCCTCGACACCCGGTCCTTGCCCGGCGGGATTTATGAAGTGGAAGTCCGTCTGGTCGAGGACGGGCAAACCACCGCCACCAGCCAGGAGCTGGTCTACAAGCCCAACAACTGGACCAATGTCGAGGACCGCTGGCGCTACAACCTGTTCGCCGGACGCGAGACCCGGCTGTGGAGCAACTGGGAAGACCAGCCCTCGGGTTTCAACACCGCGGGGCTAGGGCTCAATTACTTGCTCCATCCCCGGGTGATCCTGGGCGCCTCCACGCGCCAGGTGCAGGATAAATTGCAAGTCGGCACGTCGGTGGACTGGACCCTGGGCAGTAGCACCAGCCTGTACGCCAATGTCTATCAGACCCAGCAGTACGGCACCGGAATGGATGTGCAGGGCTTGTACAGTTACGGCAATGGCAGCGTGGTCGCCAGCCACAACCGCAGTTGGCTGGATACCCGCAAAACCTACGAGACCTTGCCCGACGGCACCCGTATCCGCCAGCGCAATGTGTTCATCGGCCAGACCAGCAACTCTTCGTTGTCGGTCAATCATCGGCTGAGCAACAAGAGCTCGTTAAATGGCCGGATCGCTTACAGCGAAGGCAATGTCCAGGGTACGGGCCTTGACTTGGGCTGGACCCAGCGCGGCAAGCTGCGTGGCAGCGACGCCAACTGGCGTTTTTCGGTGTTTGACCGCCCCGGGACGTCGAGCACTGGCGACAAACGTAATCGTGGCATCGACCTAAGTGTCAGCGTTGCGCTGGGCGGGCGGGGCGAGTACTGGTCGGGCAGCGTGGGCACCCGCACTTCGCGCGACGGCGAGCGGGACAACAATGCCTCGCTGTCCTATCGGCGCAGCCTGGAGGACCACGTCTTGCAAAGTGTCTCCGGCACGGTGCTGGCTGACACCTATGGCGTGGGCCTGTCCGGTCTCGCCAGTTTCCAGACCGACTCTCTTTACGGCGACGGGTTCGTCCAGCGCTCGTCCTATAACGACAACCTGGCCGGTGGCTTGAACCTGAGCAGCACCGTGGCCGTCGGCGGCAGCAAGGCCGCATTCACCGGCGAGCCCCAGGGGCGCGGCGCGGGGATGATCGTCGACGTGGAAACCGACCTGGACCACGTTGTCCTGCGCGCCGATGACTTGACCGGTGGCAGCACCGTGTTGCATCCAGGCCGAAATTTTGTGCCGATCACCGCCTATCAGAACAGCATGGTGACCTTCGACTTCGACGGCGTGCATCCCCCGGCGGCGAACATCGCGCCGTCGCGCACCCGTTATCACCTGAACAAGGGCGGTGTGGATTATCGCCGGATCAGCGTGATGAGAACCGTGACCGTGCTCGGTCGCTTGCTCGACGAACAGGGGCAACCGCTCAAGGGCCACCACGTCATCAACCATGCCAGCCGCGGGGTGAGCGAGGTGGACGGGTTCTTCTCCATGGAAATGAATGCCGGCTCGCCGACGCTGGAAGTGCGCCACGGCAACCAGTTGCTCTGCCAGTTCCGTTTCGATCCGAACAACGCCAGCGACGAGGGGGATGTGCTGATGATCGGTGACTTGCGTTGTACGCCGGACACCTTGGCCGATACCACGATTACCGATGCCGGCGCGGCCAAACGGCCTTCATGA	MFSMTPIAGALALLLCATALAAPTAPGTTPTSLLSQAKGLPAEFESHFFDVPLAVRVELNQHYLGEAMVVLTRDDRVTLLEFTDTQDSLIKPVERDQWEQLLKQGQPLGACEANCASGLLAVHYSLENSLVSILTRDVERTSETKRYYDQPQDGSFGLILNNQLNINGGQEQDTGGRYGLNASSSIGNWSQSLDLQLSRLGGPDDKLYHAVHELYTQRELEGSFFRLGYFTPGSDGLNRQIRAFGANPDTALGVMYGSSDSLAIDNPKPSVYPIYVTASRQASVEIYRNGLLINTQAVGAGLQSLDTRSLPGGIYEVEVRLVEDGQTTATSQELVYKPNNWTNVEDRWRYNLFAGRETRLWSNWEDQPSGFNTAGLGLNYLLHPRVILGASTRQVQDKLQVGTSVDWTLGSSTSLYANVYQTQQYGTGMDVQGLYSYGNGSVVASHNRSWLDTRKTYETLPDGTRIRQRNVFIGQTSNSSLSVNHRLSNKSSLNGRIAYSEGNVQGTGLDLGWTQRGKLRGSDANWRFSVFDRPGTSSTGDKRNRGIDLSVSVALGGRGEYWSGSVGTRTSRDGERDNNASLSYRRSLEDHVLQSVSGTVLADTYGVGLSGLASFQTDSLYGDGFVQRSSYNDNLAGGLNLSSTVAVGGSKAAFTGEPQGRGAGMIVDVETDLDHVVLRADDLTGGSTVLHPGRNFVPITAYQNSMVTFDFDGVHPPAANIAPSRTRYHLNKGGVDYRRISVMRTVTVLGRLLDEQGQPLKGHHVINHASRGVSEVDGFFSMEMNAGSPTLEVRHGNQLLCQFRFDPNNASDEGDVLMIGDLRCTPDTLADTTITDAGAAKRPS	PGPT0029345_124	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-CHAPERONE-USHER_SECRETION	CE-CHAPERONE-USHER-SECRETION-Mat|Ecp_FIMBRIAE_ASSEMBLY,PGPT0029345-ecpC|matD-K21966	NA	NA
D1-36_01115	1236			hypothetical protein	ATGAAGTTTTTAAGGAGACTGGCAAGCGGCGCGGTTGCGGTGGCCTGGTTGGCCGGCCTGCCGCTTGTTCATGCCGCCACGCTGGACATCACCGCGCAATTCAGGGCGGATAGCGGGAAGCCCAACGAGAATACATTCGTCAACACCACGCGAAACAGCGGGTATTGCGCGCAACTTCCCGCTTACTGCGAGTCGGCGGGTATCTTCAGCCTGGGGTGGGCCGGTGTGGCTTCAGGCGGGCCTATTCAAGCCAACCATCAAAATCCCCGGCAAGGTCCGATGGTTAAAGCACCGGCCATCTGGCGTACGGTGCAGGTCACCCACGCCGGTACAGGCCATACAGAGAACCTTCAATTCCGCGTGGTCGGATTAGGCGCAGGCGTTGGGCTCACTCCCCGGGCGAGCGAGATAGTGGGTGGCGGCGTTGACGAGTCTACCGCCGTCCAGATGATTTTTGGCTCTACTTGGCGGGACGCACCTTCGCCCTGCATCACGCCGAACGGGAGCGGGTTCCATCCGTCCCCCTTGTGGTTCTTCTGGAAAACCCCGACAGAAGCCACATGTGCCAAACCGGCCCGATATTCGATTAATCGGTTCGAGTTCGCGGCTTTAAGTCTTGCCTATGAGCTGCGTACCCCCAACCCCATCGGAATGGCCGGCGGCCGTTACCAGGGCTCGCTTACGTTAACCCTGGGGCCGGGGCAGGATTTCGATTTCGGTGATGTGGTGATCCCCAATGATCCGGTGCTGACCGTCAATTTCACACTGGATGTCGAGCATGTTCTCAAGATTGAAGTGCCACCGGGCGGAAACCGGGTTGTGCTGGAACCACGGCAGGGCTGGCAAGCCTGGCTGGACAGCGGAGTCAAGCCGACCGAATTGTTTCGAGACCAGACATTCCTTATCTCGGCGTCTTCACCTTTCACGGTGAATCTTGAGTGCCAGTACAACATGAACGGTGATTGCGGGATAGACCGCCCAGGCATTTCTACTGTCCCGGTGTATATCTATATGACGCTACCTGACGGTTTTACCAATAGCACCGGCCAACCGATCAACCGTATACGTCTGTTTTCGGGGACGAATAATCAAAAAATTTCCGTGGATAGGTTTGTCGATCGTAAACCCGGAACTCTGCACTTTGTTATCAACAGCGCCAACTTCGCGAACATGATCGATCGGGGCCCTGGTACGTATGCCGGCACCGTCACGGTGATATGGAATTCAGAAATTTAA	MKFLRRLASGAVAVAWLAGLPLVHAATLDITAQFRADSGKPNENTFVNTTRNSGYCAQLPAYCESAGIFSLGWAGVASGGPIQANHQNPRQGPMVKAPAIWRTVQVTHAGTGHTENLQFRVVGLGAGVGLTPRASEIVGGGVDESTAVQMIFGSTWRDAPSPCITPNGSGFHPSPLWFFWKTPTEATCAKPARYSINRFEFAALSLAYELRTPNPIGMAGGRYQGSLTLTLGPGQDFDFGDVVIPNDPVLTVNFTLDVEHVLKIEVPPGGNRVVLEPRQGWQAWLDSGVKPTELFRDQTFLISASSPFTVNLECQYNMNGDCGIDRPGISTVPVYIYMTLPDGFTNSTGQPINRIRLFSGTNNQKISVDRFVDRKPGTLHFVINSANFANMIDRGPGTYAGTVTVIWNSEI				NA	NA	NA	NA	NA
D1-36_01116	744			hypothetical protein	ATGAAGCATTTATTGGCATGGGTCGGGCTCTCGATGTTTTGCAGCGTGGCCGTGGCTGGGCCGCAGATCAGTGTCGGCGTGGTCTATGACTATCTTCAGGGCGACAAGAGCACCTACATGAAACGGGTGTTCAACGGCGGGACGTCTACTGCATTCGTCAAGGTCAGTGTCCTGGAAATTATTTACAACGACGACGGCAGCTATCAAGAAGTGCCCGTTGAGAACCAGGCCGGTGTCATCGCCCGTGATGGCCTGATGGCGAGCCCGGCGCGCCTGATCGTGCCGGCCAATGGCGTGCAGGGCACCCGCTTGTTGTTCATGGGCGATCGGAGCGAGGAACGCTACTTCCGGCTGCGTTTCGTGCCGGTGGTGCCCGAGGCCGAGGATGAGTTCGCCATCAGCGCCGAGGAGCGCGAGGAATATAAACAAGAACGCATGGCGGCCGGCGTCAAGGTCCTGGCCGGCTACGGCACGGTGTTTTTCGTTCGCCCCAAGGACACCCTTTTCGAGACCGTCATCGATCACACCGGCAGTCGCTATTCGTTGCGCAATAACGGCAACAGCGTGGTGGTGATCGACGAGTTCAAGGACTGTTCGGTCCAAAAAACGAACGACTGCGAGCCGACCCTCAAGCATCACGTCATGGCCGGGAAGACATTCTCCATCGACAAGCAGCCAGGGCGTGAATACCGCTTCACCCTGATCGAGGGTGATCAACAGAAAGAAATCGAGATCAAGGGCTGA	MKHLLAWVGLSMFCSVAVAGPQISVGVVYDYLQGDKSTYMKRVFNGGTSTAFVKVSVLEIIYNDDGSYQEVPVENQAGVIARDGLMASPARLIVPANGVQGTRLLFMGDRSEERYFRLRFVPVVPEAEDEFAISAEEREEYKQERMAAGVKVLAGYGTVFFVRPKDTLFETVIDHTGSRYSLRNNGNSVVVIDEFKDCSVQKTNDCEPTLKHHVMAGKTFSIDKQPGREYRFTLIEGDQQKEIEIKG	PGPT0029340_37	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-CHAPERONE-USHER_SECRETION	CE-CHAPERONE-USHER-SECRETION-Mat|Ecp_FIMBRIAE_ASSEMBLY,PGPT0029340-ecpB|matC-K21965	NA	NA
D1-36_01117	483			hypothetical protein	ATGTCCGAGACATTGGCACGTACGCTCCTTTCCATTTTTTTGATGGTCTCAAGTTTTACGGCTTGGGGAGCGGTTGAACGGGAAACCTTTGAGGTTTCCGTCGTCATCCCGACGCGTAGCTTCTATGTGCATCCGGTTCAGACGGGCTGGATCCACTTGGAACAGAGGCTGCCCTACAATTCCATCACCGGAGAGCTAGGAGCGCTGTCGAAGCATTATCGAGTAAAGAACACTAACGGCGCCGTTGGCGCCCGCCTTGCGGAGCCGGCATACCTGTCCAACGGTCACGAGCGCATTGACCTGCGTGTGATGTTCCATAACGTGCAGTTGAATCTTCAGACCCAACAGGTGGCGACAGCCTCCGAAGCGGGCGGTTGGTTGCAAGTGGACCTGGACATCACCGCCATCAAGCCGGACGGTGGTTATAGGCCTGGCCAGTACCACGGCACTGTCAATATTGTGTTCGAGGCCCTTGCGCCGTAG	MSETLARTLLSIFLMVSSFTAWGAVERETFEVSVVIPTRSFYVHPVQTGWIHLEQRLPYNSITGELGALSKHYRVKNTNGAVGARLAEPAYLSNGHERIDLRVMFHNVQLNLQTQQVATASEAGGWLQVDLDITAIKPDGGYRPGQYHGTVNIVFEALAP				NA	NA	NA	NA	NA
D1-36_01118	3108			hypothetical protein	ATGGGCGCTTTGTGGCAAACCGATTCGAATAAACCTGTGGTCCCGACTGAACGTATGGAAGAAGCGCCTTTACCCAAAAAAACTCGCCGCGCCCGGCATGGCTGGCGGGCGTTCTGGTTGTTGTTGCTGATTATCGTGGTGGTGGTCGGCCTGGCCGTGGCCAAGGAGATGCGCACGTCCCGGTTCCAGGCCCAGGAGCTCAGCAAATACGCGGCGTCCCTGACCTATGCGGTGCAACCCGGCCCCAGCGACGCCATCGTCTACCCCGGTGCGGGCCCGTTCGATCAGCGATTGGGCTACAGCTCTCTGGGGGAATTCCTGCCTCGTTTGCTCAAGCGTGACTACGTGATCGAGGCCCAGGCGCGTTTTTCTCCGGCCTTGATGGACTATGTCGACAAAGGCCTGTTCGTGCCCTACGCGGAAAAGATCCAGGCTGGCTTGACCATTACCGATTGCCGCGCCGCGCCGGTCTATCAGTTCAAGTATCCGCAACAGCTTTACGCCAGTTTCGATGACATTCCTCCGGTCGTGGTGCAAAGCCTTTTGTTCATCGAGAACCGCTTCCTGCTCGACCCCAAGCAACCATTGGCCAACCCCGCGGTGGACTGGCCACGCTTCGGCATGGCGGCGTGGTCCCAGGTCGCCAAATTGTTGAGCCTGCCAGGGCAATCCGCCGGCGGCAGCACGCTCGCGACGCAGTTGGAGAAATACCGGCATTCCCCCGAGGGCCTGACCGTGTCGGGCGCGGAGAAGATCCGTCAGATGATTTCCGCCAGCGTGCGCGCCTATCAGGCCGGCCCGCAAACCCTCGAGGCCCGCCAACGGGTCATTCGTGACTACCTCAACAGCGTGCCGCTTTCCGCCGTGCCGGGGCATGGCGAGGTCCACGGCATGGCGGAAGGGCTGAGGGTCTGGTATGGCGCGGATTTCAGACGGGCCAACGAACGATTGTCCAGCACCGCCACCGACCCCAAGAGCCTTGCGGAAAAAGGCCTGGCCCTGCGGGAAATGTTGTCGTTGATGATTGCCCAGCGGCGCCCGTCGCACTATCTCTCGAAGGGGCACGACGAGCTCGCCCATCTCACCGACAGCCACATCCGGCTGCTGGCCCAGAACGGCGTGATCGATGCCGCGCTGGCAGATGCCGCACTGGCCAGTAAGGTCAGCTACCGCGATTGGGTCCAGGACCCGACCGTCCAGCCTATCGAAACCAACAAGGGCATCAGTGCCGCCCGCAGTCGCATCGCCGCGCTGCTCAATCGTCCGCTGTACGACCTCGATCGCCTCGACCTCTCCGCCACCAGCACGTTGCAAAGCGATTTGCAGGCCCAGGCCACCGAGTACCTCAAGCGATTGGCCGACCCGGCATTCGCCGCCGAGATCGGCCTGATGGGAGAACGCCTGTTGACCCCCACCAGCACCACGCAGGTGCGCTACAGCTTCACCTTGCTGGAACTGACCCCGGACGGCTCGCGAGTGCGGATCCAGACCGACAGCACCGACCAACCCTTCGACATCAATGAGGGCAGCAAACTGGAACTGGGCTCCACCGCCAAGTTGCGGGTGCTGACCACGTACTTGCAGATCATCGCCGAACTCCACGAGCGTTATGCGCAACAGGCCCCGGCTATCCTGAAGAAAACCGAGATCACCGACCAGGACCGCCTGTCCCGCTGGGCCGTGGACTACCTGATCGAAAACACCGACCGCAGCCTGCCGAAAATGCTCGAAGCGGCGCTGGACCGCACGTATTCAGCCAGCCCCGGCGAGGCGTTTTTCACCGGCGGCGGGCTGCACACTTTTCATAACTTTCGCAAGGAGGACGACGGTCGCAACCCCACGCTGCGCGACGCCTTGCGCGAATCCATCAACCTGCCTTTCATTCGCCTGATGCGCGACCTGGTGCGCTACGCCACCTACGCCGGCCCGAATAACAGTTCCGAACTGCTCAAGGACGACAAAGACCCGCGTCGCCAGGAATACCTGGCCCAGTTTGCTGATCGTGAAGGCACTTCGTTCCTGCTCAGGTTCTGGAAGAAGTACCAGAAAAAGGACACCGGCCAGCGCCTCGAGACCTTCCTCGACGGCATGCGCCCCACCGCCATCCGCCTGGCCGCCGTACACCGCTATTTCTTTCCCAGCGACAGCCAGGAAAGCTTCAACCGCTTCGTGCGCGCTCATTTGAAGTCGGCCAAGAGTGCTGAAAAACTCACCGATGAACGCCTGGAACGGCTCTACCAGAGCTACGGCCCCGGCGCCTATGACTTGCCGGACCAAGGCTTCATCGCCAAGGTCCATCCGCTGGACCTGTGGCTGATGGGCTATCTGTTGAACAACCCCGACGCTAAGTTCAGCCAGATCGTCAAGGCCAGCCGGTTCGAGCGCCAGGAAGTCTATAGCTGGTTATTCAAAAGCCGGCACAAGAGCGCCCGGGACAGCCGTATCCGCACCATGCTCGAAATCGAAGCGTTCCTGGATATTCACCAACGCTGGCAGAAGGTCGGCTACCCGTTCGACCATCTCGTGCCGTCCCTTGCCACCGCGATCGGCAGCTCTGGGGATCGCCCCGCCGCGCTTGCGGAGCTGGTGGGGACGATTCTCAACGACGGCGTCCGCCAGCCTGCGCTGCGGGTCGACAGCCTGCAGTTCGCCGTCGACACGCCCTATGAAACGCGAGTGGTCAGCGACCCGGACAACGGCAAGCGCGTGATGCCGGTCGAAGTGGCCCGTGCGTTGCGCGGTGCATTATCCCAAGTGGTGGATGCCGGCACCGCGAAACGGGTGGCTGGAAGCTTCAAACTGGCCGATGGCACGCCACTGGCCATGGGCGGCAAGACGGGCACCGGCGACAACCGTATCGAAGCCGTCGGCTCCGGTGGACGGGTCATCAGCTCCAAATCCATCAACCGCACCGCGACGTTCGTGTTCTACATCGGTGACAGCCATTTCGGCACGCTCACCGCTTACGTACCCGGCGTGTCGGCGCAGAACTTCAAGTTCACCTCCGCCTTGCCGGTCCAGGTGCTCAAAGGCATGGCGCCGTTTCTCTCGCCGTACTTGCAACCGGGCACGCATACCCAGTGCCAGCCGTTGGTGACGAGCCGTTAG	MGALWQTDSNKPVVPTERMEEAPLPKKTRRARHGWRAFWLLLLIIVVVVGLAVAKEMRTSRFQAQELSKYAASLTYAVQPGPSDAIVYPGAGPFDQRLGYSSLGEFLPRLLKRDYVIEAQARFSPALMDYVDKGLFVPYAEKIQAGLTITDCRAAPVYQFKYPQQLYASFDDIPPVVVQSLLFIENRFLLDPKQPLANPAVDWPRFGMAAWSQVAKLLSLPGQSAGGSTLATQLEKYRHSPEGLTVSGAEKIRQMISASVRAYQAGPQTLEARQRVIRDYLNSVPLSAVPGHGEVHGMAEGLRVWYGADFRRANERLSSTATDPKSLAEKGLALREMLSLMIAQRRPSHYLSKGHDELAHLTDSHIRLLAQNGVIDAALADAALASKVSYRDWVQDPTVQPIETNKGISAARSRIAALLNRPLYDLDRLDLSATSTLQSDLQAQATEYLKRLADPAFAAEIGLMGERLLTPTSTTQVRYSFTLLELTPDGSRVRIQTDSTDQPFDINEGSKLELGSTAKLRVLTTYLQIIAELHERYAQQAPAILKKTEITDQDRLSRWAVDYLIENTDRSLPKMLEAALDRTYSASPGEAFFTGGGLHTFHNFRKEDDGRNPTLRDALRESINLPFIRLMRDLVRYATYAGPNNSSELLKDDKDPRRQEYLAQFADREGTSFLLRFWKKYQKKDTGQRLETFLDGMRPTAIRLAAVHRYFFPSDSQESFNRFVRAHLKSAKSAEKLTDERLERLYQSYGPGAYDLPDQGFIAKVHPLDLWLMGYLLNNPDAKFSQIVKASRFERQEVYSWLFKSRHKSARDSRIRTMLEIEAFLDIHQRWQKVGYPFDHLVPSLATAIGSSGDRPAALAELVGTILNDGVRQPALRVDSLQFAVDTPYETRVVSDPDNGKRVMPVEVARALRGALSQVVDAGTAKRVAGSFKLADGTPLAMGGKTGTGDNRIEAVGSGGRVISSKSINRTATFVFYIGDSHFGTLTAYVPGVSAQNFKFTSALPVQVLKGMAPFLSPYLQPGTHTQCQPLVTSR				NA	NA	NA	NA	NA
D1-36_01119	267			hypothetical protein	ATGCCGGACCACCTTCATTGGTTGGTGCAGCTGGAACAACCTCGACTGTCTGAAGTGATGCAAGGGGTCAAGTCTCGCAGCACCCTTGCGATCAATCGAGCCATGGGCCGGACGGGCGCCATCTGGCAAAACGGGTTCCACGACAGGGCAATCCGCGACAATCAGGATTTGCAGCCCTGCGCTCGCTACATTATCGCCAACCCCCTTCGCGCTGGCCTGGTAGATCGCATTGGCGATTACCCGCTCTGGGATGTCATTTGGCTCTGA	MPDHLHWLVQLEQPRLSEVMQGVKSRSTLAINRAMGRTGAIWQNGFHDRAIRDNQDLQPCARYIIANPLRAGLVDRIGDYPLWDVIWL	PGPT0030655_3044	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MOBILE_ELEMENTS	CE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030655-yafM|rayT|tnpA-K07491	NA	NA
D1-36_01120	1422	proY	COG1113	Proline-specific permease ProY	ATGCCAGTCGGCAATCCTCTGCCCCATGGCGAGACCGCGCAGGGTGGTCCGCTCAAACGTGAGCTCGGCGAGCGGCATATCCGCTTGATGGCGCTTGGCGCCTGCATCGGTGTCGGGCTGTTCCTAGGTTCGGCCAAGGCGATCGAGATGGCCGGGCCGGCGATCATGCTGTCCTACATCATCGGTGGCCTGGCGATTCTGGTGATCATGCGCGCCCTCGGCGAAATGGCCGTGCACAACCCGGTGGCCGGTTCGTTCAGCCGCTACGCCCAGGATTACCTCGGCCCGCTCGCCGGTTTCCTGACCGGTTGGAACTACTGGTTCCTGTGGCTGGTGACCTGCGTGGCCGAGATCACCGCGGTGGCGGTGTACATGGGCATCTGGTTCCCCGACGTGCCCCGCTGGATCTGGGCCCTGGCCGCATTGGTCAGCATGGGCTCGATCAACCTGATCGCGGTCAAGGCCTTCGGTGAATTCGAATTCTGGTTCGCCCTGATCAAGATCGTGACCATCATCGCCATGGTCATCGGCGGCGTCGGCATCATCGCCTTCGGTTTCGGCAACGACGGCGTGGCACTGGGTATTTCCAATCTGTGGACCCACGGCGGTTTCATGCCCAACGGCGTGTCCGGCGTGTTGATGTCCCTGCAAATGGTCATGTTCGCCTACCTGGGCGTGGAAATGATCGGCCTGACCGCCGGTGAAGCACGCAACCCACAGAAAACCATCCCCAACGCCATCGGCTCGGTGTTCTGGCGGATCCTGCTGTTCTACGTCGGCGCGTTGTTCGTGATCCTGTCGATCTATCCGTGGAACGAAATCGGCACCCAGGGCAGCCCGTTCGTGATGACCTTCGAGCGCCTGGGCATCAAGACCGCCGCCGGCATCATCAACTTCGTGGTGATCACCGCCGCGCTGTCGTCCTGCAATGGTGGAATCTTCAGCACGGGTCGCATGCTCTACAGCCTGGCGCAAAATGGCCAGGCCCCGGCCGGCTTCGCCAAGACCTCAAGCAACGGCGTACCACGCCGCGCACTGCTGCTGTCCATCGCCGCCTTGCTGCTGGGGGTGCTGCTCAACTACCTGGTGCCGGAAAAAGTCTTCGTCTGGGTGACCTCCATCGCCACTTTCGGCGCGATCTGGACCTGGGTCATGATCCTGCTGGCCCAGCTCAAGTTCCGCAAAGGCCTGAGCGCTTCCGAGCGTGCCACGCTGAAATATCGCATGTGGCTGTACCCGGTCAGCTCCTATCTTGCGCTGGCATTCCTGGTGCTGGTGGTGGGCCTGATGGCGTACTTCCCCGATACGCGCGTGGCGTTGTATATCGGCCCGGCGTTCCTGGTGTTGCTGACGGTGCTGTTCTACACCTTCAAGTTGCAGCCGACCGGGGATGTGCGGGGTTCGGTGCGTTCGGTTTCGTAA	MPVGNPLPHGETAQGGPLKRELGERHIRLMALGACIGVGLFLGSAKAIEMAGPAIMLSYIIGGLAILVIMRALGEMAVHNPVAGSFSRYAQDYLGPLAGFLTGWNYWFLWLVTCVAEITAVAVYMGIWFPDVPRWIWALAALVSMGSINLIAVKAFGEFEFWFALIKIVTIIAMVIGGVGIIAFGFGNDGVALGISNLWTHGGFMPNGVSGVLMSLQMVMFAYLGVEMIGLTAGEARNPQKTIPNAIGSVFWRILLFYVGALFVILSIYPWNEIGTQGSPFVMTFERLGIKTAAGIINFVVITAALSSCNGGIFSTGRMLYSLAQNGQAPAGFAKTSSNGVPRRALLLSIAALLLGVLLNYLVPEKVFVWVTSIATFGAIWTWVMILLAQLKFRKGLSASERATLKYRMWLYPVSSYLALAFLVLVVGLMAYFPDTRVALYIGPAFLVLLTVLFYTFKLQPTGDVRGSVRSVS	PGPT0000815_584	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0000815-TC_AAT|yifK-K03293	NA	NA
D1-36_01121	366	yfdG_1	COG2246	Prophage bactoprenol-linked glucose translocase	ATGAACGGTTTTTCTGCGTTGATGGTTATCGCACTGGTCAATGGACTGATCCATGGCCAGGTTTTTTTTCTTTTGTATGGCGCCGTCGGACTGGCACAGGCGACCAGTAACTTCGCAGCGTTTTGCTTCGCTGCGGCGTTTTCGTTTTATGTGAATGCGCTATACATCTTCAAGCCCGGAGAGTCATGGCGCGGCTATCTGCTGTGCAATGGTCTGATGGGGATTTTGAGTTACGCGGTCGGCTCGATGGGCGACGCGCTGGATTCGCCTGGATGGGTAACGGTGGTTTTGTATTGCCTGTTGAACCTGGCGATGGGGTACAGCTTGTTCCGGTTCAAATCGCTTCATGACTTTCAGCAGCCATGA	MNGFSALMVIALVNGLIHGQVFFLLYGAVGLAQATSNFAAFCFAAAFSFYVNALYIFKPGESWRGYLLCNGLMGILSYAVGSMGDALDSPGWVTVVLYCLLNLAMGYSLFRFKSLHDFQQP				NA	NA	NA	NA	NA
D1-36_01122	387	yfdG_2	COG2246	Prophage bactoprenol-linked glucose translocase	ATGAACGAATCCCGAAACGCGAGGTGGAGCACTTTCTTTACGTACTCGCTGGTCGGCCTCGCCAATACGCTGCTCCATTGGCAGGTATTTTTTGTGCTGTGCGTAGCGGTCGGTCTCGATCAGTCGATCAGTAATCTGGCTGCGTTTTGCGTGGCCGCTTCGTTCTCCTATTACCTCAATGCGCTCTATACCTTCGAGGCCAAACTCTCGGTAACGGGGTATGTGATTTTCCTGTGTGTCATGGGAGCGCTCAGTTATGCCGTGGGTTATCTGGGAGACCGCTGGCGGCTCCATGGGTTGTTGACGGTGGGGGTATTTTCGCTGCTGAGTCTGGTGTTCGGATTTCTGCTCTCCCGGTTCGTGGTGTTTCGTGGGCAACGTCCATGA	MNESRNARWSTFFTYSLVGLANTLLHWQVFFVLCVAVGLDQSISNLAAFCVAASFSYYLNALYTFEAKLSVTGYVIFLCVMGALSYAVGYLGDRWRLHGLLTVGVFSLLSLVFGFLLSRFVVFRGQRP				NA	NA	NA	NA	NA
D1-36_01123	951	yfdH	COG0463	Prophage bactoprenol glucosyl transferase	ATGAAGATCTCGCTGATTGTTCCGGTGTTCAATGAAGAGCAGACCCTGGGACTGTTCTACAAAAGTGTCCGTCAGCACCCGGCGTTGGCCGGTTACAGCGTAGAGATCATCTTCATCAACGATGGCAGCGCTGACCAGACGGATGCGCTTGCACGTGACATCGCGCTGGTCGATAACCTGGTCGTGTTGATTAATTTTTCCCGAAACTTCGGCAAGGAGCCCGCCTTGTTTGCCGGAATCGAACACGCCGACGGGGACGTGGTCATTCCCATGGACGTAGACCTGCAAGACCCCATCGAGGTGATTCCCAAGCTTGTTGCCGAATGGGAAAAGGGCGCCGAAGTGGTGCTGGCCAAGCGTCGTGATCGTTCATCCGACAGTTACCTGAAGCGCGGATGCGCTGCGCTGTTCTATCGCTTGCTCGATCAAATCGCCTATCCCCATATCGAGCGAAACGTCGGCGATTTTCGGCTGATGGACCGCAAGGTCGTGGACGTCATCAAGACCCTTCCCGAATACCAACTGTTCATGAAAGGCGTGTTGTCGTGGGCGGGGTTTACCACCGTTATCGTCGAATACGACCGCGCCGGTCGCGCCGCTGGCAGCAGCAAATTCAATGGATGGAAGTTATGGAATCTGGCGCTCGAAGGCATCACGTCGTTCAGCACTGTGCCGTTGCGGTTGTGGACTTACCTCGGCGGTTTCATTTCATTGGTTTCGCTGGCGTATGCCGGGTACATGGTGCTGGACAAGTTGATCTTTGGAAACGATCTGCCCGGCTATCCATCGCTGATGACTGCAATCCTATTCTTGGGCGGGGTGCAACTGATCGGCATCGGTGTGTTGGGCGAGTACATCGGGCGGATCTACTTAGAGACAAAGCACCGGCCTCGGTATGTCATCAAGGAGATGGTCTGCGGCGGGCAACCCAACGTGCGGAATGAATCATGA	MKISLIVPVFNEEQTLGLFYKSVRQHPALAGYSVEIIFINDGSADQTDALARDIALVDNLVVLINFSRNFGKEPALFAGIEHADGDVVIPMDVDLQDPIEVIPKLVAEWEKGAEVVLAKRRDRSSDSYLKRGCAALFYRLLDQIAYPHIERNVGDFRLMDRKVVDVIKTLPEYQLFMKGVLSWAGFTTVIVEYDRAGRAAGSSKFNGWKLWNLALEGITSFSTVPLRLWTYLGGFISLVSLAYAGYMVLDKLIFGNDLPGYPSLMTAILFLGGVQLIGIGVLGEYIGRIYLETKHRPRYVIKEMVCGGQPNVRNES	PGPT0014540_2204	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0014540-csbB|gtrB|yfdH-K20534	NA	NA
D1-36_01124	1545			hypothetical protein	ATGATGCGGAGAATGAACAGTCTTTGGGAGCGTGAGCTCGATTGTCATCAGGTTGTGATTTTTTTCTTACTGGCAACTTCGGCTTATGTGCTGCCGTTAATTCTCGCTGACTTTCGCTATATCGACGATAACTGGCGGACGCTGGGGGCTGGAACTGCTTGGGCTGGACAAGGTCGTTGGTTTCTTGAGTTGTTCTATCAAGCGCTGTCGTTTACCAGTGCTGCGCCTAATATATTTCCGCTGCCTTTGTTGTTCGCCGTATTGGCTATGACTTCAGCTTTGACCCGTCTAACGTATCACTACTTTTCTGAGCCGACGCTAGCTTGCTGCTTGGTGCCGTTACCTCTTTGGTATAACCCTTTTTTATTGCAGGGATTGTCGTATCAATATGATGGGGTTGGTATTGCTTTAAGCCTGGTGCCAGTTATTTATGCTGTGGTTTTCAAGAGTGCGTCGAGAGTGCGTCAATTGTTGGTGCCTGCGGCGTTGTTGGTGCTTGCGTTCGGGCTCTATCAAGTTAGTGTGAATGTGTTTTTGGGGTTGTGTTGCGTGGAGCTGCTTAGATCTGCATACACGTGCGAGCCATATCCACAGTGGCTAAAAATGCTGGGTTGGAAGCTTGCTCAGCTTGGATTGGCCATGCTGATTTATCTCACAATGACCGGTTTGTTCATGGGCGCGGAGAGAACCGCATTATTGAACTGGGAAGCCAATCCGTTTTTACAGGTCAGCATCAATGTTGGCAGGGTGCTGGAGAAAACCGCGCTTTTGTTTCATGGCGGATACACGTGGACAATAACCGTGCTCACCCTGTTTGCGTTGGTCGGCTTAGCTCAACTGGGTCGTCGGGTGTTGGCACGTGAAGAGCAGCGTTGGAAAACGGGCCTGATGACCCTGGGATGTTTTCTGACGCTGCCCTTACTAGCTCTGCTGGTGCCCGGTATTACTCTGTTTTTTCGGGATTTTAATGGAGGTGCCCGGACACTGATGGGCTTTGGTGTGCTGTTAACGGTTGTGTTCTATCTTGCGTTTTTGGCCCTCTCACCGATTCATCGCCGATTGCCCTTGCTGCTAGCTATTCCGCTTCTGGCAACACTTTCACTGTCCTTTGCTTATGGCAGGGTGCTAACGCTTCAAAAGGACTTTGGCAACGGTGCGCTTTATAGCTTGGGACATGACATCACTTCCCGTCGGGAGCTGTACGAAGCCAAGCGGATCTACATGTCGGTTAATTATTCTGGGGCATGGCTGATAAGTGCTTGCGGCTCGTTCAAACACCTGCCGGTTCTGCATTACCTGCTTAATGTTGACTACTATATGCTTTCGGAAAACTTGCAGTTCATGGGGATCACTAATGTGACGACCGAGAGTGAGCGGCGCAATGCTACCCATGTCGGTTATCAAAGATACATCCCAATCGTGGAAAGTCAGTATTACCGAATTTTTCTGCTCGGCGATTATGGCTTTATCGTTATGAAGGAGCCGGTCCGAGATGATCGCAAGACAAATATTTGCCGAGACTTTGGGTCAGTCGGGGTTTGGTAG	MMRRMNSLWERELDCHQVVIFFLLATSAYVLPLILADFRYIDDNWRTLGAGTAWAGQGRWFLELFYQALSFTSAAPNIFPLPLLFAVLAMTSALTRLTYHYFSEPTLACCLVPLPLWYNPFLLQGLSYQYDGVGIALSLVPVIYAVVFKSASRVRQLLVPAALLVLAFGLYQVSVNVFLGLCCVELLRSAYTCEPYPQWLKMLGWKLAQLGLAMLIYLTMTGLFMGAERTALLNWEANPFLQVSINVGRVLEKTALLFHGGYTWTITVLTLFALVGLAQLGRRVLAREEQRWKTGLMTLGCFLTLPLLALLVPGITLFFRDFNGGARTLMGFGVLLTVVFYLAFLALSPIHRRLPLLLAIPLLATLSLSFAYGRVLTLQKDFGNGALYSLGHDITSRRELYEAKRIYMSVNYSGAWLISACGSFKHLPVLHYLLNVDYYMLSENLQFMGITNVTTESERRNATHVGYQRYIPIVESQYYRIFLLGDYGFIVMKEPVRDDRKTNICRDFGSVGVW				NA	NA	NA	NA	NA
D1-36_01125	1620			hypothetical protein	ATGAGCCTGTCTTTGCTGAGCCGCTACGCCTTCTTCGCTGGCTGCGTGATCTTCACCCTCGCCAGCTTGCCGTTCCTGCAACATGACTGGCTCTGGCCGATAGCGCTGGTGACGGGGCTGCTGAGCCTGCTGGGGTTGTTCGACCTGCTGCAAACCCGCCATGCCGTGCGCCGCAACTATCCGATCCTGGGCAATATCCGTTACCTGGTCGAAGGCATCCGCCCGGAGATCCGCCAGTACCTGCTCGAATCCGATAGCGATGCCCTGCCCTTCTCCCGTGCCCAGCGCTCGCTGGTGTATTCACGGGCCAAGAACGAAAGCGCCGACAAACCGTTCGGCACCTTGATCGACGTCTACCAGGCCGGCTTCGAATTCATCGGCCACTCCATGCGCCCGGCGCCGTTGAGCGACCCCAGCGGCTTTCGCGTCACGGTCGGCGGCCCGCAATGCACCCAGCCCTATTCGGCCTCGGTGTTCAACATCTCGGCCATGAGCTTCGGCTCCCTGAGTGCGAACGCCATCCGGGCCTTGAACCAGGGCGCCAAGCTCGGCAACTTCGCCCATGACACCGGCGAAGGCAGCATCAGCCCCTACCACCGCGAACACGGCGGAGACCTGACCTGGGAATTGGGCAGCGGCTATTTCGGTTGCCGCAGCAGTGACGGGCGCTTCGACCCCGAGCGCTTCGCCACCCAGGCCCGGAACCCGCAGGTGCGGATGATCGAAATCAAAATGAGCCAAGGCGCCAAGCCCGGGCACGGCGGGATCCTGCCCAAGCACAAGGTCACCCGGGAAATCGCCGAGACCCGTGGCATCCTCATGGGCGAGGACTGTGTTTCGCCGTCCCGCCACAGCGCGTTCTCCACGCCAATCGAGCTGATGCAGTTCGTCCAGCAATTGCGCGAACTGTCCGGCGGCAAGCCGGTGGGCTTCAAGTTCTGCCTGGGGCATCCGTGGGAATTCATGGGCATCGCCAAGGCCATGCTGGAAACCGGCATCCTGCCCGACTTCATCGTAGTGGACGGCAAGGAAGGCGGCACCGGCGCGGCACCGGTTGAGTTCACCGATCACATCGGCGTGCCGCTGCGCGAAGGCCTGTTGTTCGTGCACAACACCCTGGTGGGGCTGAACCTGCGGGACAAGATCAAGCTCGGCGCCAGCGGCAAGATCGTCAGCGCCTTCGACATCGCCAGCGTCCTGGCCATCGGCGCCGACTGGGCCAACGCCGCGCGCGGCTTCATGTTCGCCATCGGTTGCATTCAGTCCCAAAGCTGCCACACCAACAAATGCCCCACCGGCGTCGCCACCCAGGACACCCTGCGCCAACGCGCCCTGGTCGTCCCGGACAAGGCCCAGCGGGTCTACAACTTCCACCGCAACACCCTCAAGGCCCTCGCCGAAATGCTTGCCGCCGCGGGGCTTGAGCATCCTTCGCAATTGCAGCCCAAGCATCTGGTGCGGCGCATGTCGGCGACCGAGGTGAAGTTGTTTTCTCAGTTGCATGTGTTTTTGAAGCCGGGGGAATTGCTCACGGGCGAGGTTAATGGAGCGTTTTATTCACGGATGTGGCAGATGGCGCGGGCGGACAGTTTTGAGCCGCGGGAAATTGCGGCGGCTTAA	MSLSLLSRYAFFAGCVIFTLASLPFLQHDWLWPIALVTGLLSLLGLFDLLQTRHAVRRNYPILGNIRYLVEGIRPEIRQYLLESDSDALPFSRAQRSLVYSRAKNESADKPFGTLIDVYQAGFEFIGHSMRPAPLSDPSGFRVTVGGPQCTQPYSASVFNISAMSFGSLSANAIRALNQGAKLGNFAHDTGEGSISPYHREHGGDLTWELGSGYFGCRSSDGRFDPERFATQARNPQVRMIEIKMSQGAKPGHGGILPKHKVTREIAETRGILMGEDCVSPSRHSAFSTPIELMQFVQQLRELSGGKPVGFKFCLGHPWEFMGIAKAMLETGILPDFIVVDGKEGGTGAAPVEFTDHIGVPLREGLLFVHNTLVGLNLRDKIKLGASGKIVSAFDIASVLAIGADWANAARGFMFAIGCIQSQSCHTNKCPTGVATQDTLRQRALVVPDKAQRVYNFHRNTLKALAEMLAAAGLEHPSQLQPKHLVRRMSATEVKLFSQLHVFLKPGELLTGEVNGAFYSRMWQMARADSFEPREIAAA	PGPT0014521_6	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_HERBICIDIAL_STRESS	HERBICIDIAL_STRESS-PARAQUAT_STRESS_REDUCTION,PGPT0014521-yerD-NA	NA	NA
D1-36_01126	1407	sasA_2		Adaptive-response sensory-kinase SasA	ATGAATAGCCTGAGTAACCGGCGCATCCTCTTGATCGACGATACGCCAGCCATCCATGACGACTTCCGAAAGATCCTGACGCCCGAGGACGAGAGCAACGCTGATCTACAGGACATGGAAAGCGCGCTGTTCGGCGAAGCGCCGAAAGTGGCCGCCACCGTTTTCGAACTTGACTCCGCCTACGGTGGCCAGGAAGGCCTGGCCAAATTGCAGCAGGCGCTGGCCAAGGAGCATCCCTATGCCCTGGCCTTCGTCGACATGCGTATGCCCGAAGGCTGGGACGGCGCCAAGACCATCGAGGAACTGTGGAAAGTCGATCCGCAACTGCAAGTGGTGGTCTGCACCGCGTACTCGGATTATTCCTGGGATGAGCTGCTCGACCGTCTCAACGGCCACGATCGTCTGCTGATTCTGAAAAAGCCCTTCGACAACATCGAAGTTCAGCAGATGGCCAACACCTTGACCACCAAATGGGAAATGACCTCCCGCGCCCGTTTGAAAATGAACAAGCTCGAAGACCTGGTGGAACAACGCACCCTGGCGTTCAAACAGGCCAGCGAGTTGCTACAGATGGAAATCGACGAACGCAAGATGCTCGAGAGCCAGCTGGTGCAATCGGAAAAACTCGCCTCCCTGGGCCAACTGGCCGCCGGCGTGGCCCACGAGATCAACAACCCGATCGGCTTCATTTCCTCCAACCTCGGCGCCCTCGGCGGCTACTTCAGCAAACTGGAGGAAATGCTCCAGGCCTACGGCAGTGCCGAGCAAGCCATCGCCTCGCCGGAGTTGGTGCTGAATTTGAAAAGCCTGCGCGAGCAGGTGGAACTGGACTTCCTGGTGGAAGACATCCCGGTGCTGATCAAGGAATCCAAGGACGGCATCGCCCGCGTCGGGCAGATCGTCAAGGACCTCAAGGACTTTTCCCGCGTCGACTCCAGCCAGGAATGGCAGATGGCCAATTTGCAGCAAGGCATGGACTCGACCTTGAACATCGTCGCCAACGAGATCAAGTACAAGGCCGACGTGGTCAAGCAATACAGCCCGTTGCCGGAGGTCGAGTGCCTGCCGTCGCAAATCAACCAGGTGATCATGAACCTGATCGTCAATGCCGCCCAGGCCATCGGCCCGGAACGCGGCACCATCACCCTGCGCAACGGGGTGGAAGGCGACAACGTCTGGATCGAAGTCGCCGACAACGGCTCCGGCATCCCGCCGGAAACCCTGCAGAAAATCTTCGACCCGTTTTTCACCACCAAGCCCATCGGCCAAGGCACGGGACTTGGATTGTCGCTGTCCTACGGCATCGTGAAAAAACACAACGGCGACATCACGGTGAGCAGTGAAGTGGGGGTGGGAACGACCTTTCGGGTGGAGTTGCCGGTGCGGCAGATGAAATTGGCGGGGTGA	MNSLSNRRILLIDDTPAIHDDFRKILTPEDESNADLQDMESALFGEAPKVAATVFELDSAYGGQEGLAKLQQALAKEHPYALAFVDMRMPEGWDGAKTIEELWKVDPQLQVVVCTAYSDYSWDELLDRLNGHDRLLILKKPFDNIEVQQMANTLTTKWEMTSRARLKMNKLEDLVEQRTLAFKQASELLQMEIDERKMLESQLVQSEKLASLGQLAAGVAHEINNPIGFISSNLGALGGYFSKLEEMLQAYGSAEQAIASPELVLNLKSLREQVELDFLVEDIPVLIKESKDGIARVGQIVKDLKDFSRVDSSQEWQMANLQQGMDSTLNIVANEIKYKADVVKQYSPLPEVECLPSQINQVIMNLIVNAAQAIGPERGTITLRNGVEGDNVWIEVADNGSGIPPETLQKIFDPFFTTKPIGQGTGLGLSLSYGIVKKHNGDITVSSEVGVGTTFRVELPVRQMKLAG				NA	NA	NA	NA	NA
D1-36_01127	1800	sasA_3		Adaptive-response sensory-kinase SasA	ATGACTCTCGCACGCCGCCTCGGCCTGGTTTTCATTGGTGTATTGCTGGCCTCGATCCTCCTGTTCATGTACATCCAATCGGGTGCCCAGCAAGCCGCCTCGCACATTGAATCCCGGGACCTGATCCGCCTGCTCAAGCAGCAGGACGGTATCTGGGACAACGAAGTGCTCAAGTCCCGGATCGCCCTGAGCCACAATTATGACCCGCTGGTCTCGCCATTGAGTGAAATGACGCGCCTGTGGCAGCGTCTCGATGCCATTGAGTCGGAGCCCGGCCGCCACGCGCCTACGCTCTGGTCGTCCCAGCGCGACGAATACCTGAAGGCGATCAAGGAAAAAACCCGCCTGGTGGAACAGTTCAAGTCCCATAACGCGGTACTGCGCAACTCCCTGGCATTCCTGCCCACCGCCGAGGACGACATCCAGCGCCAGTTCACCCAACTGTCCGACGGTGAAAAACTGGAACTGCAAAACGTTGCCATCGACACCTACGACCTGCTGCTCAGCACGATGGAGTTCGCCCAGATCACCACCCGCGAGCAGGCCGCCGAAGTCTTGCTGGGCCTCAATCAGCTGGACGTCAATAAAGAGCGGCTGCCGGCGGGGATCGTCAGCTCCGTCGACATCCTGGGCAGGCACATCGCGTTGATCTTGCGCGAGCAACCGTTGGTCAATCAGCTGTTGCATGACTTCGAGGCGGTCCCCCTGGCCGCACGCCTGGACACCATCACCAGCCTGCTGGAAAAAGATCAGGAAAAAGCGGCTGCCAAACATCAGCGCAACCACATTCTCTTGCTCTTGTTCGCCACCTTCCTGACGTTGATATTGATTTGGCTGGCGGTTCGGCTGGTGCGCAGTTTCGGCGAGATCAAGCGGGTCAACAGCGCCCTGCAAACCGCCAACGACGAGCTCGAACAACGGGTCGAGGAACGCACCCGCCAGCTCAAGGACACCCAGAGTGAACTGATGGACACTGCCCGCCAGGCCGGCATGGCGGAGATCGCCACCAACGTGCTGCACAACGTCGGCAACGTGCTCAACAGCGTGAACATTTCCGCCGACCTGGTCAGCCGAAAACTGCGCAGCAGCAAGGCCCTGGGCCTGGGCAAGGCGATGAACCTCATCAACGAGCACAGCCACGACCTGGGGCACTTCCTCACCGAGGACGAAAAAGGCAAGCTACTACCCGGTTATCTCAACCAATTGGTGGAAGCCATCGCGACGGAACAACAAAGCCTGACCGACGAGCTTGCGCAACTGAGCAAGAGCGTCGACCACATCAAGGACATCGTTTCCACGCAGCAGTCCTACGCCGGCGCCAATAGCCTGATGGAACCGCTGGTGGTCAGCGAACTGCTCGAGGACGCCCTGCGCATGAACTCAGGGGCCCTGACCCGCCACCATGTGACGGTGATCAAGGAGTACGGCGAGGTGCCACGGATCATGGGCGACAAACACCGCATGCTGCTGATCCTGATCAACCTGATCAGCAATGCCAAATACGCCATGGCGGGGGTTTCCAACCATGCGCGGAACATGACGCTCAAAGCCAGGGTCGTAGATCAAGAACTGCAAATCAGCGTGAAGGACGAAGGCGAAGGAATCCCGGAGGAAAACATGACGCGCATCTTCGCCCACGGTTTTACCACCCGTAAGGACGGTCACGGGTTCGGCCTGCACAGTTGCGCACTGGCGGCGATTGAAATGAACGGCCACCTCACCGCGCACAGCGAGGGGCCAGGGACCGGGGCGACATTCGTATTGCAACTGCCCTTGAAACTCGCAGAAGGTGAGCCATGA	MTLARRLGLVFIGVLLASILLFMYIQSGAQQAASHIESRDLIRLLKQQDGIWDNEVLKSRIALSHNYDPLVSPLSEMTRLWQRLDAIESEPGRHAPTLWSSQRDEYLKAIKEKTRLVEQFKSHNAVLRNSLAFLPTAEDDIQRQFTQLSDGEKLELQNVAIDTYDLLLSTMEFAQITTREQAAEVLLGLNQLDVNKERLPAGIVSSVDILGRHIALILREQPLVNQLLHDFEAVPLAARLDTITSLLEKDQEKAAAKHQRNHILLLLFATFLTLILIWLAVRLVRSFGEIKRVNSALQTANDELEQRVEERTRQLKDTQSELMDTARQAGMAEIATNVLHNVGNVLNSVNISADLVSRKLRSSKALGLGKAMNLINEHSHDLGHFLTEDEKGKLLPGYLNQLVEAIATEQQSLTDELAQLSKSVDHIKDIVSTQQSYAGANSLMEPLVVSELLEDALRMNSGALTRHHVTVIKEYGEVPRIMGDKHRMLLILINLISNAKYAMAGVSNHARNMTLKARVVDQELQISVKDEGEGIPEENMTRIFAHGFTTRKDGHGFGLHSCALAAIEMNGHLTAHSEGPGTGATFVLQLPLKLAEGEP				NA	NA	NA	NA	NA
D1-36_01128	960	ccp	COG1858	Cytochrome c551 peroxidase	ATGGCGTCACACGGACTGATTCTGGCTCTCGGCCTGCTGGTGGGACTGAGCGTGACCGCTCGCGCCGAGCCATTGGACGAACCGCTCAAACCCCTGCCTCCCGCTCCCGCCCTGGACCCCAAGCGAGTCCAGTTGGGCCAGCGGCTGTTCAATGACCCACGGCTGTCGGTCAACAACACCCTGTCCTGCGCCAGTTGCCATCGCCTGGACAAGGGCGGCGCCGACGACAAAGCCTTATCCCTGGGTTTCGACGGCAAGCCAGTGGAGGTCAATACGCCCACGGTGTTCAATGCCAGCCTGAATTTCCACCAGTTCTGGGACGGTCGCGTCGACACCCTGGAAGAACAGGTGCATATCGTCGTCACCAGCCCCGGTGAAATGGGCAGTAACTGGGAAACGGTGGTCAAGCGCATCGCGGGCGATACGGGCTATGCCAGGGATTTTGCCGACGCGTACCCAGACGGCGTGACCCAACCCAATATCCAGGGGGCGCTTGCCGACTACGAGCGCACCCTGCGGACACCCAACTCGCGCTTCGATAAATACCTGCTGGGCGATACCGACATCCTCACGCCTCGGGAAAAGTTCGGCTACCAGCGCTTCAAGGAGTACGGCTGCATTGCTTGCCATCAAGGCGTGAACATCGGCGGCAATATGTTCCAGAAATTCGGCGTGATGGGCGACTACATCCAGGACCGGGGCAATCCGACCCGAGCCGACGAAGGACGCTTCAACGTCACCGGCGACGAAGCCGACCGCCAGGTCTTCAAGGTGCCGAGCCTGCGCAACGTGGCCGTCACCGCGCCGTATTTCCATGGAGGATCGGCACAGACTCTGGAGCAGGCAGTGAAAGTGATGTTCAAGTATCAACTGGGCCGCGAACCCCTGAAGAACGATACTGAACTGATCGTCGAATTCCTCAAGACCCTCACCGGCGAATGGGAGGGCAAGCCGCTATGA	MASHGLILALGLLVGLSVTARAEPLDEPLKPLPPAPALDPKRVQLGQRLFNDPRLSVNNTLSCASCHRLDKGGADDKALSLGFDGKPVEVNTPTVFNASLNFHQFWDGRVDTLEEQVHIVVTSPGEMGSNWETVVKRIAGDTGYARDFADAYPDGVTQPNIQGALADYERTLRTPNSRFDKYLLGDTDILTPREKFGYQRFKEYGCIACHQGVNIGGNMFQKFGVMGDYIQDRGNPTRADEGRFNVTGDEADRQVFKVPSLRNVAVTAPYFHGGSAQTLEQAVKVMFKYQLGREPLKNDTELIVEFLKTLTGEWEGKPL				NA	NA	NA	NA	NA
D1-36_01129	1875			hypothetical protein	ATGAACCCCATGTCCGTACCGGCAAACAGGCGCATCCTGGTGGTGGACGACACGCCCGCCATTCACCACGACTTTCGAAAGATCCTCAGCCCCAGCGCAGGCAACGATGACTCGCTGGACGACACCGAGAGCCTGTTGTTCGGCACGCCGCAGGTGAACCGGGTGCAATTCCAGATCGACTCGGCCTACCAGGGCGAGGAAGCGCTGGAACTGGTCAAGCGCGCCCAGGCCGAAGGCCAGCCCTATGCCCTGGTGTTCGCCGACATGCGCATGCCGCCCGGCTGGGACGGCCTGCAGACCATCGAACAACTGTGGAAAGCCGACCCGCGCCTGCAGATCGCCCTGTGCACCGCGCATTCGGATTACTCCTGGGAGACCATGTCGGAACGCATCGAATTCGACGATCAGTTGTTGATTCTCAAGAAGCCGTTCGACACCCTGGAAATCCGCCAGATGGCCAGCGCCATGACCTGGAAATGGCAATTGGCCCAGGACGCCGCACGCAAGATGCGCAGCCTGGAACGCACCATCGAAGAGCGGGTCCAGGAGCTGCTCAAGGTCTCCCACCTGCTGCAATATGACGTGCTCACCGAGCTGCCCAACAGCATGCTGCTCGGCGACCGCCTGACCCAGGCCTTGGCCCAGTGCCGCCGGCATGACCGACAGTTGGCGGTGATGTTCATCGGCCTGGACCGCTTCAAGCGCATCAACAATGCGCTGGGGCACCCGGTGGGCGACGAGATGCTCAAGCGCGTGGCGCGGGCGTTGGCGGCCGTGGTGCGCGAGTCCGACTCGGTGTTTCGCTACGGCTCCGATGAGTTCGTGGTGATCCTCGGCGACATCGCCGACCCACAATTGACCAAGGGCGTGGCGGAAAAGCTGCTGGGGGCTATCAACTCCCCGCACCCCATCGACGGTCACGACCTGACGGTGACAGCGAGCCTGGGCATCAGCGTGTATCCGGCCGATGGTTTCGATGCCGTGGCGCTGATCAAAAAGGCCGAGACGGCAATGCGCAACGTCAAGGAAAACGGCCCCAACGATTTCCGTTTTTTCACCGAGGACATGAATCGCCGCGCCCGTCAGCAGCAGACCATCGAATCTGGCTTGCGCCTGGCCTTGCAGCGTAAGGAGTTCGTGCTGCATTACCAGCCCAAGCTCGACCTGACGAGCGGTAAAGTGGTCGGTGCCGAGGCGTTGGTGCGCTGGAATCGCCCCGATCAGGGGCTCGTCTATCCGTCGGATTTCATCCCCGTGGCCGAGGACAGCGGCCTGATCGTCCCGCTGAGCCAGTGGGTGCTCCAAGAGGCCTGCCAGCAGGCCTGTCGCTGGCAGGCCGAGGGCATGCGGCCGCTGTACCTGTCGGTCAACGTCTCGGCGATCGATTTCCGCCAGCGCGGTTTCGTCGACGGCATCGCGCGCACCCTAAAGGAAACCGGTCTGGACCCGACACAGTTAGAACTGGAGATCACTGAAAGCGTGCTCATGCAGAACATCGACACCACCGTCGCCACGCTCAATGCCATCAAGCATCTGGGCATACGGCTGGCCATCGATGACTTCGGCACCGGCTATTCGAGCCTGAGCTACCTGCAGAAATTTCCGGTGGATGTGTTGAAGATCGACCAGTCGTTCGTCGGTGACCTGAGCATCGACAGCAACGACGCGAAACTGGTGAGCACCATCATCAGCCTGGGCAAGAGTTTGAACCTGCACATCATTGCCGAAGGCGTGGAAACCCGGGAGCAGCTGGAATTCCTCAAGATCCACCAGTGCGAGGAAGCCCAGGGCTACTACTTCAGCAAGGCCGTGGCACCGCAAGCCTTCAGCCAATGGATGGCTGAATGGGAACAACGCCCGAACCCGTTTTCGTGA	MNPMSVPANRRILVVDDTPAIHHDFRKILSPSAGNDDSLDDTESLLFGTPQVNRVQFQIDSAYQGEEALELVKRAQAEGQPYALVFADMRMPPGWDGLQTIEQLWKADPRLQIALCTAHSDYSWETMSERIEFDDQLLILKKPFDTLEIRQMASAMTWKWQLAQDAARKMRSLERTIEERVQELLKVSHLLQYDVLTELPNSMLLGDRLTQALAQCRRHDRQLAVMFIGLDRFKRINNALGHPVGDEMLKRVARALAAVVRESDSVFRYGSDEFVVILGDIADPQLTKGVAEKLLGAINSPHPIDGHDLTVTASLGISVYPADGFDAVALIKKAETAMRNVKENGPNDFRFFTEDMNRRARQQQTIESGLRLALQRKEFVLHYQPKLDLTSGKVVGAEALVRWNRPDQGLVYPSDFIPVAEDSGLIVPLSQWVLQEACQQACRWQAEGMRPLYLSVNVSAIDFRQRGFVDGIARTLKETGLDPTQLELEITESVLMQNIDTTVATLNAIKHLGIRLAIDDFGTGYSSLSYLQKFPVDVLKIDQSFVGDLSIDSNDAKLVSTIISLGKSLNLHIIAEGVETREQLEFLKIHQCEEAQGYYFSKAVAPQAFSQWMAEWEQRPNPFS	PGPT0026010_2155	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0026010-mucR-K21023	NA	NA
D1-36_01130	2280			hypothetical protein	ATGGAAAGATCCAATCGGCGGATACTGATCGTTGATGACACGCCGACAATCCATGAGGATTTTCGAAAGATTCTCAGCCCCCACGCAGCGCCCGAAGACAGCCTGAGCAATGCTGAAGAAGCCTTGTTCGGCGCCCCCGTGGTGGTTTGCGCCCAGAGCTTCGAGCTCGAATCGGCGTTCCAGGGCATGGAAGCCCTGAACAAGGTCGAAACCGCCCTTGCCCAGGGCAAACCGTTCGCCATGGCTTTCATCGACATGCGCATGCCGCCGGGTTGGGACGGCCTGGAAACCATCGAGCGGCTGTGGCGCGCCGACCCCAAGTTGCAAGTGGCGTTGTGCACGGCCTACTCGGATTATTCCTGGGAGGACATCGCCGACCGTCTCGAACTGGGCGACCGCCTGCTGATCCTGAAGAAACCTTTCGATGCGATCGAGATTCGCCAGATGGCGAGCACCTTGACCGTCAAATGGCAGATGACCGAAGACGCCGCGTTGAAAATGGACATGCTCGAACGGGCAGTGGAAGAACGCACCCGGGAGCTGGCCGACGCCAACATCATCGTGCAGAACAGCCCGACCATCCTTTATCGCCTGCGCGGCGAGCCGCCGTTCCCATTGATGTACATCTCCCACAACATCACCAAGTTCGGCCATGTCGCGGCGCGCCTGATCAGCTCGCCGGACTGGGCGCAAACCTTGATCCACCCCGACGACCAGGCCAAGGTCGACGAAGCCATGGTGCGCGTCCTGGACCGCGACACCGCGGGCGCCTCCATCGAATTTCGCATGCGCACTGGCGACGACACGTTCCGCTGGGTAGAGAACCGCTACATCCCGGTGCGCAACGAGCAAGGCCTGCTGCTGGAAGTCGAAGGCATCATCCTCGACATCACCGAGCGCAAGCTGGCCGAGGAAAAGATCGCCTTGCTGGCCCGCACCGATGGCCTGACCGGGCTCGCCAACCGCGCCACCATGATCGAGCGGCTGCACCAGGCCTTTGCGGCCGCCCGTAGGGGGGCGGCGCCCTTCGCAATGTTTTACCTGGACCTGGACCACTTCAAGCGGATCAACGACACCCTCGGGCACCCCATCGGTGACCTGCTATTGCAACAAGTCGCAGCGCGGCTCAAGGGCTGCACCCGGGAAAACGACGTGGTGGCGCGCCTGGGTGGCGACGAATTCGCCATCCTGCAACTGGACGTCCACGAAGCGACCCACTGCGCCGCGCTGGCGGCCAAGATTCGCGACACGCTGGTGGCGCCCTATTCCCTGGATGGCAACGACGTACGCATTTCCGTGAGCATCGGCATCAGCCTGTACTCCTCGCAGAGCCCAAGCGCCGACAGCCTGATGGCCCAATCCGACATGGCCCTGTACCGCTCCAAGGAAAAGGGCCGCAACCAGTATCACTTCCACAACGAGGAAATTAACCAGGAGGTCACGGATCGGGTCGCCCTCGCCAATGACCTGCGCCTGGCCATCGAAAACAACGAGTTGCACTTGCACTACCTGCCGGAAGTCGACCTTGGCACCGGCCGGATTCTCGGCATGGGCGTGCAGGTGCGCTGGAACCATCCCGCGCGCGGCTGGCTGGAACCGGCCGCCTTCATGCCGGCCGCGGAAAAAACCGGAATCATCATCGGCCTGGGCCATTGGGTCCTGGACCAGGCCTGCCAGCAGATGCGCCAATGGCGAGACCAGGGCATGTCGCCACCCGTGATCGCCATCGACCTGTCCCTGACCCAGCTCAAGACCGGCCCGGAACTGATCTACGACGTGCTGCGTACCACCGCGCGCTGGGAGCTGGCGCCCTGGGACCTGCGTTTCGACGTCACCGAAGCGACCCTGGCCCAGACCAAATGGACCCATAACGACGTGCTGCCACGCCTGTGCGAGTTGGGCGTGCAGGTCGCCATCGACGATTTCGGCACCGAGTACTCATCCTTCGATTACCTCAAGACTTACCGCGTGAACCACCTCAAGCTCGCCCAACGCTTCCTCGACAGCGCCAACGCCGATCCGGAGAACGCCACGACCCTGCGGGCCATCATCAACTTCGCCCGGGACGTGGGCATCGGCATCATCGCCGAAGGGGTCGAGACCCAGGAGCAACGCACGACGCTGATGTCCAGCGGCGGGTCGATACAAGCCCAGGGGCACTATTTCAGCACTGTGGTGGACAGTGAGCAGGCCGCCGCCCTGCTCAAGGCGGGCGCCATCGTTCCGGTGGCGGACCACTGGACCCGGCCGGCGAGCCAGCTATCGGAGAGCAGCCCATGA	MERSNRRILIVDDTPTIHEDFRKILSPHAAPEDSLSNAEEALFGAPVVVCAQSFELESAFQGMEALNKVETALAQGKPFAMAFIDMRMPPGWDGLETIERLWRADPKLQVALCTAYSDYSWEDIADRLELGDRLLILKKPFDAIEIRQMASTLTVKWQMTEDAALKMDMLERAVEERTRELADANIIVQNSPTILYRLRGEPPFPLMYISHNITKFGHVAARLISSPDWAQTLIHPDDQAKVDEAMVRVLDRDTAGASIEFRMRTGDDTFRWVENRYIPVRNEQGLLLEVEGIILDITERKLAEEKIALLARTDGLTGLANRATMIERLHQAFAAARRGAAPFAMFYLDLDHFKRINDTLGHPIGDLLLQQVAARLKGCTRENDVVARLGGDEFAILQLDVHEATHCAALAAKIRDTLVAPYSLDGNDVRISVSIGISLYSSQSPSADSLMAQSDMALYRSKEKGRNQYHFHNEEINQEVTDRVALANDLRLAIENNELHLHYLPEVDLGTGRILGMGVQVRWNHPARGWLEPAAFMPAAEKTGIIIGLGHWVLDQACQQMRQWRDQGMSPPVIAIDLSLTQLKTGPELIYDVLRTTARWELAPWDLRFDVTEATLAQTKWTHNDVLPRLCELGVQVAIDDFGTEYSSFDYLKTYRVNHLKLAQRFLDSANADPENATTLRAIINFARDVGIGIIAEGVETQEQRTTLMSSGGSIQAQGHYFSTVVDSEQAAALLKAGAIVPVADHWTRPASQLSESSP				NA	NA	NA	NA	NA
D1-36_01131	1368	rcsC_3		Sensor histidine kinase RcsC	ATGGAAGATCAAGCGCCGGGCGTTCCGGCAACAAAGCCGACGGTGTTGTTGGTAGATGACGAAGAATCGATCCTCAACAGCCTGCGTCGGCTGTTGCGCAGCCAGCCGTACGAAATCCTGGTGGCCGACAGTGGCGCCAAGGCCCTGGAAATTCTCAAGGAGCGGCCGGTCGATCTGGTGATGACCGATGCGCGCATGCCCAACATGGACGGCGCCACGCTGCTGGCGGAAATTCGCAAGCTTTATCCTTCGACATTGCGCATCCTGCTCACCGGTTATGCCGACGTGGACATGATGACCAAGGCTATCAATGAGGGGCAGCTCTACCGCTACCTCAGCAAGCCCTGGAATGACGAGGAGTTGGTGCAGGCCCTGCGCCAAGCCCTGGCCCACCAGCATTCGGAGAGCGAGCGTCAGCGCCTCGAAGCCCTGAATCGTGAGCAGAACCAGCAACTCAAGACCCTCAACGCCACCCTGGAAAAACGCGTGGCGTCGCGGACCGCCGAGTTGCAGCAGACCGCCGACATGCTCGACCTGGCCTATGAAGAGCTCAAGCGCAGCTACGTGACCGGCACCGAGGTGTTCTCGCTGATCGCCAACCTGCGCCTGCCCAAGGCCAAGCAGACCAACCGGCAGATCATCGAACTCATCCGGGTCTATAGCCGGCTCAATTTCCTCGACGAGTCCACCGACCGCGACCTGACCATGGCCGCCGCGCTCTACAACATCGGCAAGCTGAGCTGGACCGATAACATGATGGTCACGCCGGCGGACATGCTGCATCACAGCGAACTGGAGCTGTACCGCGCCTATCCGAAGCAGAGCGAATCGCTGCTGATGACCCTGGACCCGATGAAGGACGCGGCGCGGATCATCCTTCATCACCAGGAACGTTGGGACGGCAGCGGATTCCCCGATCACTTGAAGGGCGAGGCGATTCCGTTCGGCTCGCGCCTGTTGAAACTGGCGGTGGATTTCATCGAGTTGCAGCGCGGGTTGATCCTGGAGCGGCAGATGAACAGCGACGAAGCGCTGGTCTACATCCGCAAATACGGTGGCAAGCTGTACGACCCGAACATGGTCGAAGACTTCATCAAGGCCTGTGGCGAATACCTGGAAGACGTGACGCTGTCCGACCCGACCGTGAAAGTCACCAGCACTCGTGAACTGGAGGCAGGCATGGTTCTGGCGCGCAACCTCAATGCCGACAATGGCATGCTGCTACTCAACGCCGGAAAGGTCATGAGCGGCCCGCTGATCGAAAAGCTCATCGCCTTCGAAGCAATGGAAGGGGCGCGGTACAGCGTGTTCGTCAAGATCCCAGAGGAGGAGGCGGATCCTTCGACGCCGAAGCCTATCTTGGGGTGA	MEDQAPGVPATKPTVLLVDDEESILNSLRRLLRSQPYEILVADSGAKALEILKERPVDLVMTDARMPNMDGATLLAEIRKLYPSTLRILLTGYADVDMMTKAINEGQLYRYLSKPWNDEELVQALRQALAHQHSESERQRLEALNREQNQQLKTLNATLEKRVASRTAELQQTADMLDLAYEELKRSYVTGTEVFSLIANLRLPKAKQTNRQIIELIRVYSRLNFLDESTDRDLTMAAALYNIGKLSWTDNMMVTPADMLHHSELELYRAYPKQSESLLMTLDPMKDAARIILHHQERWDGSGFPDHLKGEAIPFGSRLLKLAVDFIELQRGLILERQMNSDEALVYIRKYGGKLYDPNMVEDFIKACGEYLEDVTLSDPTVKVTSTRELEAGMVLARNLNADNGMLLLNAGKVMSGPLIEKLIAFEAMEGARYSVFVKIPEEEADPSTPKPILG				NA	NA	NA	NA	NA
D1-36_01132	417			hypothetical protein	ATGACCACCCCTCTGATCCGCATCGCCGCCGCCCTGCTCATCGGCCCGGACGGCCGGACCCTGCTGGTGCGCAAGCGCGGCACCCAGGCCTTCATGCAACCCGGCGGCAAGATCGAAGCCCATGAGCAACCGATCCAGGCCCTGGCTCGGGAATTGGACGAGGAGCTCGGGCTCAGGATCGATCCGGCCCAGGCCCGTCATCTGGGGCAATTCAGCGCGCCGGCCTCCAATGAGCCGGGATTTATCGTGCAGGCCGAGGTGTTTTTGCTGGAGACCGATGCAGCGGTTTCCCCGGCTGCCGAAATTGAAGAAGTGCATTGGATCGACCCGTCCCGCGACAGCGGTTTACTGCTGGCGCCGTTGACAGGCGAAGTGATCCTGCCGTTTTATCGAACCCACTGCCTCTCGACCTGCTGA	MTTPLIRIAAALLIGPDGRTLLVRKRGTQAFMQPGGKIEAHEQPIQALARELDEELGLRIDPAQARHLGQFSAPASNEPGFIVQAEVFLLETDAAVSPAAEIEEVHWIDPSRDSGLLLAPLTGEVILPFYRTHCLSTC	PGPT0021230_1515	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021230-udk-K00876	NA	NA
D1-36_01133	639	rhtB_1	COG1280	Homoserine/homoserine lactone efflux protein	ATGATCCCCTTGCCGGACCTGCTGATTTTCGCCGCCGCCGCGTTGCTGATGGTGCTCACGCCCGGCCCGAACATGATCTACCTGATTTCCCGCTCGATCTGTCAGGGGCGCAAGGCCGGCGTCACTTCTTTGTTGGGCGTGGTGGCGGGGTTCTTCGTGCACATGTTCGCGGCGGCGGCGGGGCTGACGGCGGTGTTCCTCGCGGTGCCCATGGCCTATGAAGTCCTCAAATGGGCCGGTGCGCTGTACCTGCTGTGGCTGGCCTGGCAAGCGGTGAAACCCGGCGCCCGCTCGCCGTTCCAGGCCCAGCAATTGCCGGCGGACTCGACCCGCAAGCTGATCACCATGGGCTTTCTCACCAGCGCCCTGAACCCGAAGATCGCGGTGTTCTACCTCTCGGTGTTCCCGCAGTTCATCAGCCCGGAGCACGGTTCACTGTTCACCCAGAGCATCATCCTCGGGCTGACCCAGATCAGCGTCAGTTTCAGTGTCAATCTGCTGATCGCACTGTTCGCCGCCGGCATCGCCTCATGGTTCGTCCACAACCCGACCTGGCTGGCGGCGCAACGGTATTTCATGGGCTTCGTGCTCGGTGCGCTGGCCCTGCGGTTGATGCTTGAGCAACGGCGTTCGGCGTGA	MIPLPDLLIFAAAALLMVLTPGPNMIYLISRSICQGRKAGVTSLLGVVAGFFVHMFAAAAGLTAVFLAVPMAYEVLKWAGALYLLWLAWQAVKPGARSPFQAQQLPADSTRKLITMGFLTSALNPKIAVFYLSVFPQFISPEHGSLFTQSIILGLTQISVSFSVNLLIALFAAGIASWFVHNPTWLAAQRYFMGFVLGALALRLMLEQRRSA				NA	NA	NA	NA	NA
D1-36_01134	498			hypothetical protein	GTGAGCATCCGACGGCTGAAGGCGGGTGACGCCCAGAGCTATCGGGAGCTGATGCTCCAGGCCTATGAATTCCATCCACAGGCCTTCACTTCCAGCGCCAGCGAACGGGCGACGCTGCCCATAAATTGGTGGGAGTCGCGCCTGACCAGCCGGCTCGAAGTGATCCTCGGCGCGTTCATCGCGCACGAGCTGGTGGGTATCGTCGGCCTGGCCCTGGAGCCTCGGCTGAAGGCGCGGCACAAGGCGACGCTGTTCGGCATGTACGTCGTCGAGGCCCATCGTCACGCCGGGCTCGGCGAACAGTTGATGCGGGCCGCCCTCGACGAAGCCCGTCGCCATCCCTTCCTGCGCCTTGTGCAATTGACCGTCACCGCCGGCAACGACCCGGCCATCGAGCTTTACCAGCGCTGCGGCTTTCTGTTGTATGGCCTAGAGCCGATGGCGATTCGCGTGGGGGACGAGTACCTCGACAAGATCCATATGTGGCTTGAACTCTGA	MSIRRLKAGDAQSYRELMLQAYEFHPQAFTSSASERATLPINWWESRLTSRLEVILGAFIAHELVGIVGLALEPRLKARHKATLFGMYVVEAHRHAGLGEQLMRAALDEARRHPFLRLVQLTVTAGNDPAIELYQRCGFLLYGLEPMAIRVGDEYLDKIHMWLEL				NA	NA	NA	NA	NA
D1-36_01135	918	metR		HTH-type transcriptional regulator MetR	GTGCTTGAACTCCGCCACCTCAAGACGCTGCACGCCCTGCGCGAAGCCGACAGCCTGGTCGAAGCCGCCGAACGCCTTCACCTGACCCAGTCCGCCCTCTCCCATCAGTTCAAGGAATTGGAAGAGCGCCTGGGCATGCAGTTGTTCGTGCGCAAGACCAAGCCGGTACGCTTCACCAGCGCCGGCCTGCGCTTGCTGCAACTGGCCGATGCCACCCTGCCGTTGCTGCGCAGCGCCGAACGGGACATCGCGCGGCTGGCCGGCGGCACCGCCGGGCGTTTGCACATGGCCATCGAGTGTCACAGCTGCTTCCAGTGGTTGATGCCGACCATCGACCAGTTCCGCGATGCCTGGCCGGAAGTCGAGCTGGACCTGGCCTCGGGCTTCGCCTTCGCCCCGCTGCCGGCCCTGGCCCGTGGCGACCTGGACCTGGTCGTCACCTCCGATCCCCTGGAACTTGCGGGCATCACCTACGTGCCGCTGTTCACCTACGAGGCGATGCTGGCGGTGGCCAACCAGCATCGGCTGGCGGGCAAGGCCTACATCGTGCCCGAAGACCTCATCAGCGAAACCCTGATCACGTATCCGGTGGAACGCGATCGCCTGGACATCTTCACCCGCTTCCTCGAACCGGCCGACATCGAACCGGCCCAGGTGCGCACGTCCGAGCTGACGGTGATGATGATGCAACTGGTCGCCAGTGGCCGTGGCGTCTGCGGCATGCCCCATTGGGCGCTGCATGAATACAGCTCACGGGGCTACGTGAAGGCCAAGCGGCTGGGGGAAAAAGGTTTGTTCGCCACGCTCTACGCGGCGGTGCGCACCGACATGCTCGACGCGCCGTATATGCGCGACTTTCTGCTGACGGCAAAAGACACGTCGTTTTCCACACTCGACGGTGTCAGCGCGGTGCGGTAA	MLELRHLKTLHALREADSLVEAAERLHLTQSALSHQFKELEERLGMQLFVRKTKPVRFTSAGLRLLQLADATLPLLRSAERDIARLAGGTAGRLHMAIECHSCFQWLMPTIDQFRDAWPEVELDLASGFAFAPLPALARGDLDLVVTSDPLELAGITYVPLFTYEAMLAVANQHRLAGKAYIVPEDLISETLITYPVERDRLDIFTRFLEPADIEPAQVRTSELTVMMMQLVASGRGVCGMPHWALHEYSSRGYVKAKRLGEKGLFATLYAAVRTDMLDAPYMRDFLLTAKDTSFSTLDGVSAVR				NA	NA	NA	NA	NA
D1-36_01136	594	metE		5-methyltetrahydropteroyltriglutamate--homocysteine methyltransferase	ATGGCCCTGGCCCATACCCTCGGTTTTCCCCGCATCGGCGCCGACCGCGAATTGAACGACCTGGAAGCTGATTGGAAAGGTACGCTGGGCTGGGAGCGGCTGTTCGACGAAATCGACGAAGCCCGCGCCCAGGGCCATCGGGTCAAGCCGGCAGTCATCGGCCCGCTGACGTACCTTTGGTTGAGCAAGGCCAAGCACGGCGGCTTGGACAAGCTCGACTTGCTGGAGCGGCGGCTGCCGGTCTACGGTGATATTTTCCATCGCCTCGATACCCGAGGTGTGGAGTGGGTGCAGATTGATGAACCGATCCCCACCCTCGATCTGCCTCTGCGCGCTTCGGACCCACTGGGCCAGGTGCACCTACAAGATTCTCTCGGCGGGCCTGGTCACTGGCCACGACGACTGGCGTTGCGAACACGAGCAGGCACTTGCGCAGTTGCGACCGGCCCGGGCGCGTTTTGGCGAGAACCTTTGGGTCAGCGCTTCCTGCACAGGCCTAGTCTGGAGCGCGAAAGCCTCGGATTCAAGCGCGGGCTGACGACCGACTACCCCAACGACATCGGCCGGTTGTGTGCAACATCCACTCAACGCTGA	MALAHTLGFPRIGADRELNDLEADWKGTLGWERLFDEIDEARAQGHRVKPAVIGPLTYLWLSKAKHGGLDKLDLLERRLPVYGDIFHRLDTRGVEWVQIDEPIPTLDLPLRASDPLGQVHLQDSLGGPGHWPRRLALRTRAGTCAVATGPGAFWREPLGQRFLHRPSLERESLGFKRGLTTDYPNDIGRLCATSTQR				NA	NA	NA	NA	NA
D1-36_01137	3993			hypothetical protein	ATGAACCTGTATGAGCAAATCCAGGGGAAACCCGCTGTGGTGTCGATGGGAGCCCTCAACATTCCCGACGCTATCGTTCTGGATGCGGGAATTTCGGGCATCAATAAGGCGTTGCTCAAGGCTGATCCTGCAGGCTTATGTGTCCATGTGCCGTCCGCCCACCTGATCAACGGTGACAAGGTGGATATCTATTTCTCCAACGTGTCTTCGCCTGTCCTGTCGCTCGTGGTGCCCAAGGACCATGACGCCAACAAGCCACTGTCCGGCTTCATTGATGCCAAACAAGTGCCGGAGGGCTTCAGCGAACTGTTCTATCGGGTCAATGGCGCGGAGTCGGCACATCTGAAAATACTGACCAGAAAACGTTCGCCGGGGGGGAGAGATCCCGAGCCACAACGTCCCGGACACGGGTTGCTAACGGCACCTCGAACCGCTGACACCGAAGTTGATGGCGCAGAAGATGTTCCTGTGGCGATTGACCCGTGGCGAGGAATGCGGGCGGGACACAAACTGAATTTGCAAATCGCCAACTGGTGCTTGCCATATACCGTAGAGTCTGGGGAAGAGGGCCAACCTGTGGTCTTTATCCTGACCCGGGAGATGATTGCCGAACTGGGCAATCGTGACGTGCTGATGTTCTACAGGCTATGGGATGAGGTGGGTAATCCAGCGACCGACCGCTCCCTGACCCGTACGATCCGCGTCCGGCCAACGGTAGGAACAATGGGCGTCGCGCTCAATGCTCCACGCATTGGCGATGTAGACCTGGACAATGTGATCGACCTGGGAAAAACCGGGGAAAGCGATGTCCTGGTGGAAGTTGACGTCGCGGCCAATGGCTTGACTGCCGGTCAGCAGATCAAGCTCAACTGGCGCGGCGAGCCACTCGATGGACCGCCGCAGCTGTTGACCCTGAACCAGACCGTAGGCGAAGCGCCCAGTGTCGTTTTCAGCATCAGCCCGTCCATGCTTTCCCAATGGGTGGGGAGCTGGGTTTCTGCCACATGGATGCCCGCCACGGGTGATGGGTTCCACGCGTCTGCGGCGGTTGAGTTCCTGCTCATCGACACTTCGAATGTCGTACCTCTTGAAGCCCCGGACGACTCGGCATTAGTCCTGTGGTTGCCCATAATCCCTGGACAGGTGGAGCCAGTGGAAGGCGGGCTCGCAATGGTCGGCATTCCCAAAATGATCTACGACGATAACCCCGCCGGCCTGGCAGTCATCATTGACCCCTGGGACGGCATGGCACCCAACGAAACGTGCCGGCTATTTCTCAACGGCGAAGCGACGCCCGTCGACATTCATCTTGTGGGTCCGGGAACGGAAAACGACCCATTCACGATGCATGTCCCGCCCCAACGTCTCATCAACGGCGTCAATTCGCTGGTATACAGCGTGGAGCGCCCAAGCAGTAACGACGAGTTCAGCAGCCCGCTGACCATGCTTTATCACGAGGTGCGCCCTGGCTACGTCGATCAGGACCCCGCTACGGAAGGACACTCCGAACTCGCGCTGGCGTTTCCTATCGCGCAAAACAACGGCATCGATATAGTGAAGGAAGGCTTGGACGGCACCTTGCAACAGCTCACGGTGCATTGCCGCTACCCCTTCTGCAGGCTGTACGACCATGTCGACATCGACTTCGGCGGGCACATCGTCCATTTCAGCGTTCCCGCCGACCAGGCCCCACCGGTACCGTCCATCACTCCCACGACAGTGACGGTTATCGTCCCGGCATCGGAACTGGACCAGATCGAAAACCGCCGAGCCTTGCCAGTCCGCTTTACCGTCACGGACTTGATAGAAAACAGCACCGATCCTTTGTCCATCTGGTCGGCGACAACCTATATCGATGTCGACCGCCGAAACGAACGCTTGCCAGCGCCCATCTTCCGCGAAGACCTCGCTGACGAAAACGACGATGCCAGCTTGATCGACCTGGACAAACTCGCCGGGCGGCCCTTGTCGTTAATCATCAGTACCAGCCACCCGTCATACCGGGCCGGGGACGAGGTGAGCGCTATTTTCAAGAGTCCACCCGATCCCGACTACATCGTTCCAGTTGGTATTGTCCAAACAGAGCTCGGCCAGCCCAAACCCTTGGTTCTACAGGTGCCCAATAACCTGCTCGTCGCCGACAGAGACGTCAGCTGCGCCTACGATGTCCGGTTCAAGACCCTCAACCGGGAAGGCTATTCCACAACCGCGTTCGCCAAAGTCGTCGGTTTCGGCGAACTGCAACTGCCCAACCTGCTCGAAGCAGACGGCATGGGCGCGAGTCAGGTCCTGGCCCCCCTGGATGCGATCAATGGCGCCACCGTCCGCATCGCGTTGGCTGGCTTGCTAAGCACCGACATGATCAAGTTGATCCTCACCGGCAAGCCTGGCGAAGGCACCCCGGACCTCGCGCCAGTTCCCGGAGAAGTCGACGGTAGCGTTGATATTCCAATTCCCGCGTCGGTGATCGCTGCGAACATTGGCAACGGCATCAACGCCACCTTTACGCTCAGGTACGAATTACTGCGGGGCGGCGAGACCTTTGCGTCGGGCACCGTTACTGTGACGGTCACTCCCCTTCCCGCCACCAGCCTGAACTTACCGGTGTTCTTCATCAACAATGCCGAAGAACTCAACGTACTGAACCTGAACAGCTTCACGGGGGATGCGGTTATTCGCGCAAAACTCTGGTCCTTTATTGCGGCTGGACAGCAGGTTCGCATGAGCCTGGAAGGCAGGACACCGGATAATAATCCCAGCAATCGAACGATTTGGAATGGCGCTGGCAGCAAAGTGACCCCTGAATGGATCACGAACGGGTTCTGGCCGGTCACCGTACCTCGTGCCTACCTCGATACCCTGGGCGACGGGACTCAGCTGATCATTAAATTCAGCGCATCCCTGGACTTGAGGGACGACGCCGGCACGGACATCGATTTCCCCGACCGTGTCTATCGTGTCGGCATCGCAGGACAGGCGCCCGTCATCACCTCAGTGAAGGCAGGCGCAACCGAAATACCGCCTGGAAGCGATACGTTCGAAACCCGGATTACCGTGAGCGGCACCATCACACCCAGCCGGGGCGTGGACCTGTATGACGGTGATATTCGGCTGGGCTCAGCGACTGTCACCGGTAATACATGGTCCATGGGTCCGTTGACGTTCTTGCCGGCCCTGCACACCCTGACCGCGAGGGCTCTGGATGGAACCACGTCGTTCCCTGCATGGGCCTTCACGGTCAAGGTCGAGACGCAAACGCCAACCATAACCGCGGTGATAACGGACGAAGGCGTGGTGGCCGACCAAGGCGAGACCTATTACCGGAGCGCGACAATTACCGGCAGCGGCACCGGAACGACAGGACAAGAGATAGAGCTCTTGGATAACAACGTCTCCATCGGTCGCTTCCCCGTCAACTCGGCTAACGAATGGACGGTGCAGTGCCGGCTGTTCAGCGCAGAAACCCACACCCTCACCGTACGAGCGGTCGACGGGAGCGGCAAGCGCTCGACACGCGTGTTTCGAGTCCTGGAAGGACTGTCACTGCACATCGCGAAATTCTCCGAACGCCTATCGGGCGGATGGCTATGGGGTGGGGCCGGCAGTTCGAGCGATCTGTCGTGGTACGCATACCCCAACCAGACCGTTTACTTTATGCTTAACATAACCAGGACAAACAATTCCGCTGGAACATTCTTGACTCGGACTTTTACCGGGATGACACCTGGAGCCACCTACCTCTTGTCTTCCTCGGCCTTCCGATACAACGCAGCGGTCGGAGCGATCACACGTCTTCAATTGGGAACCAGCCATGGAGAACGGTCGGCAGAGGTGGTGCTGGATACGCTCCAAGTTGCAAAGCAAATCCTGCTAAGCTTCGTAGCGACCTCGCCCACCATGACCATGCTTTACATCAACAATGAAGCGTTAGGGACGGGGAATGATTTTTGCATGACCCATATTCAGATCCAAAGAATGCAGCTTCCCTCATGA	MNLYEQIQGKPAVVSMGALNIPDAIVLDAGISGINKALLKADPAGLCVHVPSAHLINGDKVDIYFSNVSSPVLSLVVPKDHDANKPLSGFIDAKQVPEGFSELFYRVNGAESAHLKILTRKRSPGGRDPEPQRPGHGLLTAPRTADTEVDGAEDVPVAIDPWRGMRAGHKLNLQIANWCLPYTVESGEEGQPVVFILTREMIAELGNRDVLMFYRLWDEVGNPATDRSLTRTIRVRPTVGTMGVALNAPRIGDVDLDNVIDLGKTGESDVLVEVDVAANGLTAGQQIKLNWRGEPLDGPPQLLTLNQTVGEAPSVVFSISPSMLSQWVGSWVSATWMPATGDGFHASAAVEFLLIDTSNVVPLEAPDDSALVLWLPIIPGQVEPVEGGLAMVGIPKMIYDDNPAGLAVIIDPWDGMAPNETCRLFLNGEATPVDIHLVGPGTENDPFTMHVPPQRLINGVNSLVYSVERPSSNDEFSSPLTMLYHEVRPGYVDQDPATEGHSELALAFPIAQNNGIDIVKEGLDGTLQQLTVHCRYPFCRLYDHVDIDFGGHIVHFSVPADQAPPVPSITPTTVTVIVPASELDQIENRRALPVRFTVTDLIENSTDPLSIWSATTYIDVDRRNERLPAPIFREDLADENDDASLIDLDKLAGRPLSLIISTSHPSYRAGDEVSAIFKSPPDPDYIVPVGIVQTELGQPKPLVLQVPNNLLVADRDVSCAYDVRFKTLNREGYSTTAFAKVVGFGELQLPNLLEADGMGASQVLAPLDAINGATVRIALAGLLSTDMIKLILTGKPGEGTPDLAPVPGEVDGSVDIPIPASVIAANIGNGINATFTLRYELLRGGETFASGTVTVTVTPLPATSLNLPVFFINNAEELNVLNLNSFTGDAVIRAKLWSFIAAGQQVRMSLEGRTPDNNPSNRTIWNGAGSKVTPEWITNGFWPVTVPRAYLDTLGDGTQLIIKFSASLDLRDDAGTDIDFPDRVYRVGIAGQAPVITSVKAGATEIPPGSDTFETRITVSGTITPSRGVDLYDGDIRLGSATVTGNTWSMGPLTFLPALHTLTARALDGTTSFPAWAFTVKVETQTPTITAVITDEGVVADQGETYYRSATITGSGTGTTGQEIELLDNNVSIGRFPVNSANEWTVQCRLFSAETHTLTVRAVDGSGKRSTRVFRVLEGLSLHIAKFSERLSGGWLWGGAGSSSDLSWYAYPNQTVYFMLNITRTNNSAGTFLTRTFTGMTPGATYLLSSSAFRYNAAVGAITRLQLGTSHGERSAEVVLDTLQVAKQILLSFVATSPTMTMLYINNEALGTGNDFCMTHIQIQRMQLPS				NA	NA	NA	NA	NA
D1-36_01138	1020	rdmC		Aclacinomycin methylesterase RdmC	ATGCGTGTATTCATTTTCCTGGCCGCCTTGTTGTGCGGCTTGCCGTCGTTGGCGGCTTCTCGTTGTGATGTCAATGTCGCGACCCAGCGGGTCGACCTGGATCAGGTAAGCCTGGCATACCAGAGCATCGGGCGTGCGTCCGACCCTGCGTTGCTGCTGGTGATGGGCTTGGGTGGGCAGTTGATCCATTGGCCGGATGAAGTGGTGGTGGCGTTGTGCGAACAGGGTTTTCGGGTGATCCGCTACGACAACCGGGACGTCGGTCTCTCCACTTGGCGCCAGGCGCCCGGCAGCGCCAACCTGGCATTCGAAGCGTTGCGCTACAAGCTCGGTCTGCCCGTGGCGGCGTCTTATTCGTTGACGGACATGGCCGCCGATGGCCTGGGCTTGATGGACGCCTTGCAGGTGCAAAGCTTCCATGTGTTGGGCGTCAGCATGGGCGGAATGATCGCCCAGCACATGGCCGCCATGGCGCCTCAGCGGGTCGAGAGCCTGACATTGCTCATGACCAGCTCCGGCGCCGCGGGCTTGCCGGCGCCCAGTGAAACGCTGGTGCAACTGTTGTCGCGGCGCAGTGCGCCGAATCGTGAAGTGGCGCTCGAACAGCAGGCCGACCTGCTGGCCGCGCTGGGCAGCCCGATGGTGGTCGACGATCGACAGGCTCTGCTGCACCAGGCTGCGGTGGCCTACGACCGGGCCTTCAACCCCGAGGGTGTGAAGCGCCAGATCATGGCCATCATGGCCGAGCCAAGCCGGGTGGCGCTGCTCAATCAGCTGCAAGTGCCGACCCTGGTGGTCCACGGCACGGCCGATCCGTTGCTGCCGGTGATGCATGGGGTGCATCTCGCGGCGCATATTCGCGGCAGCCGCTTGAAGCTGATCCCGGGTCTTGCCCATCGCTTTCAAGAAGCTTTCAAGGAACCATTGCTGGGGGCGGTGCTGCCCTATTTGCAGCAACACCGCGAAAACACCTCGCACTGGGCGCAGGTCGAGCCGGCGCAGGCGCCGAATGTGCTCTAA	MRVFIFLAALLCGLPSLAASRCDVNVATQRVDLDQVSLAYQSIGRASDPALLLVMGLGGQLIHWPDEVVVALCEQGFRVIRYDNRDVGLSTWRQAPGSANLAFEALRYKLGLPVAASYSLTDMAADGLGLMDALQVQSFHVLGVSMGGMIAQHMAAMAPQRVESLTLLMTSSGAAGLPAPSETLVQLLSRRSAPNREVALEQQADLLAALGSPMVVDDRQALLHQAAVAYDRAFNPEGVKRQIMAIMAEPSRVALLNQLQVPTLVVHGTADPLLPVMHGVHLAAHIRGSRLKLIPGLAHRFQEAFKEPLLGAVLPYLQQHRENTSHWAQVEPAQAPNVL				NA	NA	NA	NA	NA
D1-36_01139	882	gcvA_5		Glycine cleavage system transcriptional activator	ATGAAACGACTCCCACCGCTGCCGACGTTGCATACTTTCTTGATCACGGCCCAGTGCTGCAACTTCACTCGCGCCGCCGAACAGCTGCACATCACCCAGGGCGCGGTGAGTCGGCAGATCGCAGGGCTGGAGGATCATCTGGGTTATGCGTTGTTCCAGCGCCAGGCACGCGGGTTGAGCCTGACCGCCGAGGGCCAGGCGTGGCTGCCCCGGGTGCAGCAGGTGTTCGGCCTGATCGGCGAGGCGGTCGAGCAGATCGGCGAGAAGCGCCAGACCCTGAAGCTCAAGGCCCCGACCTGTGTGATGCGCTGGCTGCTGCCGCGCCTGTTGCAATGGCAAAAAGAGCGCCCGGACGTGCCGGTGGAGCTGACCACCACGGTCCGGCACGGCGTGGATTTCCAGCGTGAGGCATTCGACGCGGCGGTGGTTTACGGCCCGCCGCCCGACGCCTCGCTTGACTGCCTGCACTTGTTCGACGAACAGCTTACACCGGTGTGCTCGCGCCCCTTGCTGGAAGGTCCGGTCCCGTTGAATTCACCCCTCGATCTGCAACAACACCTGCTGCTGCATCCCACCACCGACGAGCGCGACTGGAACGCCTGGCTGGCCGCGGCCGACGTGCGGTTGAGCAACGTCAGCAAAGGCCAGCATTTCGAAACCCTGGACCTGGCGATGTCCATGGCCTCCCAAGGCACCGGCGTGGCGATTGGCGACTGGTCGCTGATCGGCGAAGACCTCAGCGCCGGTCGGCTGGTGATGCCGTTCGAACTGAAGGTCAGGACCGGGCTGGGTTATCACTTGGTCTATCCGCGCCGGCCGCAGGTGTCGGGCCAGTTGCGGGAGCTGATGGACTGGTTGGTGGAGCAGGCTCAAGCACGGTAG	MKRLPPLPTLHTFLITAQCCNFTRAAEQLHITQGAVSRQIAGLEDHLGYALFQRQARGLSLTAEGQAWLPRVQQVFGLIGEAVEQIGEKRQTLKLKAPTCVMRWLLPRLLQWQKERPDVPVELTTTVRHGVDFQREAFDAAVVYGPPPDASLDCLHLFDEQLTPVCSRPLLEGPVPLNSPLDLQQHLLLHPTTDERDWNAWLAAADVRLSNVSKGQHFETLDLAMSMASQGTGVAIGDWSLIGEDLSAGRLVMPFELKVRTGLGYHLVYPRRPQVSGQLRELMDWLVEQAQAR	PGPT0026360_3731	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566	NA	NA
D1-36_01140	1638	aruI	COG0028	putative 2-ketoarginine decarboxylase AruI	ATGGCGACGTGCGGCGAGGTATTGGTCAAGTTACTGGAAGGCTATGGCGTGGAGCAGGTATTCGGCATTCCTGGCGTACACACCGTGGAGTTGTATCGCGGGCTGGCCCGTTCAAGCATCCGCCATGTGACGCCGCGCCATGAACAGGGCGCCGGTTTCATGGCCGACGGCTATGCCCGTGTCAGCGGCAAGCCGGGCGTGTGCTTCATCATCACCGGCCCGGGCATGACCAACATCACCACTGCCATGGGCCAGGCCTATGCCGATTCGATTCCGATGCTGGTGATCTCCAGCGTGCAGTCGCGCAGCCAGTTGGGCGGTGGGCGCGGCAAGCTGCATGAGCTGCCGAACCAGAGCGCGCTGGTGGGCGGGGTCGCGGCGTTTTCCCACACGCTGATGTCAGCCGCCGAATTGCCAGGTGTGCTGGCCCGGGCCTTTGCCTTGTTCCAGGCCGGGCGTCCGCGGCCGGTGCACATCGAGATTCCGTTGGATGTGCTCGTTGAACAAGCCGATGACCTGCTCGCCAGCACGCCAGTGAGCATCAATCGCGCCGGGGCCGCGCCCAGTGCCGTGGAGCAAATGGCAGCCTTGCTGGCGACGGCCCGGCGGCCGTTGGTGCTTGCCGGAGGGGGGGCGCTGGACGCCGGGACTGAATTGACCGAACTGGCCGAACGCCTCAGCGCCCCCGTGGCGCTGACCATCAATGCCAAGGGCCTGCTGCCGTCCCGTCATCCGTTGCTGATCGGTTCCACCCAGAGCCTGGTGGCCACCCGTGCCCTGGTGGCCGAAGCGGATGTAGTGCTGGCGATCGGCACCGAGCTGGCCGAGACCGATTACGACGTCACCTTTGCCGGCGGCTTCGAGATTCCCGGTGCGTTGTTGCGCATCGACATCGACCCCGACCAGACCGTGCGCAACTACGCGCCAAGACTGGCGCTGGTGGCCGACGCACAAAGTGCTGCGCGGGCATTGCTCGATGCGTTGAAGCGCGGCGTGTCCGGCGCGAGAGACGACAGTTGGGGAGCGATTCGTGTCGAACGGCTGCGGACCGAACTCGATCAGCAATGGGACGTCCCGACCCGCGCCCAGACGGTGTTCCTCGATACGGTATTGCAGGCCTTGCCCGACGCGGTTTTCGTTGGCGATTCCACCCAGCCGGTCTACACCGGCAACCTCACCTTCAATCCCGAACGCCCGCGCCGCTGGTTCAATTCGTCTACCGGCTACGGCACCCTCGGCTACGCGTTGCCGGCGGCCATTGGTGCCTGGCTGGGTGGTGTCGACAACGGCCATGGCCGCCCGCCCGTGGTGTGCCTGATCGGCGACGGTGGGTTGCAGTTCACCCTGCCGGAACTGGCCAGCGCGGTGGAAGCGCGCACGCCGGTGATCGTGCTGCTGTGGAATAACCAGGGCTACGAAGAGATCAAGAAATACATGGTCAACCGCGCCATCGAACCGGTGGGCGTGGACATCTACACGCCGGATTTCATCGGCGTTGCCAAAGCCCTGGGGTGCGGCGCCGAGACGATCGACGGCGTGCATTCCCTGCGCAGCGCATTGCTGGCCGCCAGTCACCGCCAGGGTCCGACGTTGCTCGAGATTGACCAGGCGCGCTGGATGGCGGAGGTGGCCGAATGA	MATCGEVLVKLLEGYGVEQVFGIPGVHTVELYRGLARSSIRHVTPRHEQGAGFMADGYARVSGKPGVCFIITGPGMTNITTAMGQAYADSIPMLVISSVQSRSQLGGGRGKLHELPNQSALVGGVAAFSHTLMSAAELPGVLARAFALFQAGRPRPVHIEIPLDVLVEQADDLLASTPVSINRAGAAPSAVEQMAALLATARRPLVLAGGGALDAGTELTELAERLSAPVALTINAKGLLPSRHPLLIGSTQSLVATRALVAEADVVLAIGTELAETDYDVTFAGGFEIPGALLRIDIDPDQTVRNYAPRLALVADAQSAARALLDALKRGVSGARDDSWGAIRVERLRTELDQQWDVPTRAQTVFLDTVLQALPDAVFVGDSTQPVYTGNLTFNPERPRRWFNSSTGYGTLGYALPAAIGAWLGGVDNGHGRPPVVCLIGDGGLQFTLPELASAVEARTPVIVLLWNNQGYEEIKKYMVNRAIEPVGVDIYTPDFIGVAKALGCGAETIDGVHSLRSALLAASHRQGPTLLEIDQARWMAEVAE	PGPT0008185_10014	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
D1-36_01141	1449	gbsA	COG1012	Betaine aldehyde dehydrogenase	ATGAATTTCCCGACGACGCAAGACGGCCTGTACATCAACGGCGAGTGGTTGGCGGGCGATCAACCGCTGCGGGTGATCAACCCCGCGACCGAGGCGCTGCTGACCACTGTTTACGGCGGCGATGAATATGCCGTGGATCAAGCCTTGGAGGCCGCTACCCAGGCTTTCGGCCCGTGGTCGAACACCTCGGGTGCCGAGCGCGGCGCGGTGCTTCGGCGTATTGCTGCCAGCGTGCGGGATGCTCGTGAGCGGCTGATGCATTTGCAATCGAGCAACAACGGCAAACCGTTGTTCGAAGCGGCCATCGACGTCGACGACGTGGTCGCGACCTTCGAGTACTACGCCGGGTTGGCCGAAGAACTGGACGTTCGTCAGGACGGTCCGCTGGCGTTACCCAGCGATGATTTCAGCGCACGTCTACGCCGCGAACCTTGTGGGGTGGTCGGCTTGATCGTGCCGTGGAATTTCCCGATGGTCACCACCGCCTGGAAACTTGCCCCGGCCTTGGCCGCCGGCTGCTGCGTGGTGCTCAAGCCTTCGGAAGTCACGCCGCTGCCGGAGCTGGCGCTGGCCTCGATCATCGCCGAATGCGGCTTGCCCGATGGCGTGTTCAACCTGGTCTGCGGCACGGGGTTGGCGGTCGGGGCGCCGCTGGCGTCCGACCCGCGCGTGGCGAAGATTTCCTTCACCGGCAGCAACGCGGTGGGGGTGCAAGTGATGCAACGGGCGGCGGAAACCGTGAAGGGCGTGAGCCTGGAGCTGGGCGGCAAATCGTCCTTGCTGGTGCTGGCCGACGCCGACCTGGACCTGGCGGTGGAGCTGGCCTGTGGCGGCGGTTTCTTCAACGCGGAGCAGATGTGTTCGGCCACCACTCGGGTGTTGATCGCCGATGAGCTGGCCGATGAATTCATGCGACGGCTCAAGGCGCGGGCCGAGGCGATCCGCGTGGCCGATCCATTCGATCCGGACGTGGAGATGGGCTCGCTGGTCAACCAGGCGCAATACCAACGGGTGCTCGGGCACATCGATCGAGGCGTGAGCGACGGCGCAACGTTGGTGTGCGGCGGTCAACGACCTGCGCATCTGCAACGCGGCTTTTTTTTACAGCCAACGATCTTCACCGACGTGCCCCTCGACAGTGCGCTGTGGTGCGAGGAGATCTTCGGGCCGGTGTTGTGCGTGCGTCGTTTCGGCCACCCGGAAGAGGCGATTGCCCTGGCCAATGACAGCCGTTTCGGCCTGGTGGCGAGCGTGGTCAGCCGCGATGCCGAGGCGGCCGGGAAGGTCGCCGACGCCTTGCAGGCGGGGCTGGTGTGGATCAACGCACCGCAAGTGATTTTCCCCCAGGCCGCTTGGGGCGGCTACAAGCAGAGCAGCCTGGGTCGTGAATTGGGACCTTGGGGACTGGCCGCGTTCCAGGAAATCAAACACGTGATCCGGGCGGTCTGA	MNFPTTQDGLYINGEWLAGDQPLRVINPATEALLTTVYGGDEYAVDQALEAATQAFGPWSNTSGAERGAVLRRIAASVRDARERLMHLQSSNNGKPLFEAAIDVDDVVATFEYYAGLAEELDVRQDGPLALPSDDFSARLRREPCGVVGLIVPWNFPMVTTAWKLAPALAAGCCVVLKPSEVTPLPELALASIIAECGLPDGVFNLVCGTGLAVGAPLASDPRVAKISFTGSNAVGVQVMQRAAETVKGVSLELGGKSSLLVLADADLDLAVELACGGGFFNAEQMCSATTRVLIADELADEFMRRLKARAEAIRVADPFDPDVEMGSLVNQAQYQRVLGHIDRGVSDGATLVCGGQRPAHLQRGFFLQPTIFTDVPLDSALWCEEIFGPVLCVRRFGHPEEAIALANDSRFGLVASVVSRDAEAAGKVADALQAGLVWINAPQVIFPQAAWGGYKQSSLGRELGPWGLAAFQEIKHVIRAV	PGPT0007165_2680	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0007165-betB_homologous-K00130	NA	NA
D1-36_01142	930	rhaS_2		HTH-type transcriptional activator RhaS	ATGTCGCCACTCGATCACGCCCACGCCCCGCTGGACACGTACCTGGAACAGCAGCGCGCCGAGCTGGCTTCGATCATCGACCGCAACACCAGCGAGGACGGGAGCTACGCCACGGCCATCGGCTCGCTGAACCTGTCGCGCCACAGCCAGCCACACAAGTTTGCCCCGGTGCTGGCGCAACCGGCGCTGTGCATCATGGCCCAGGGCAGCAAGCAGGTGCGCCTGGCGGACGAATTTTTCAACTATGACCCGCTGCATTACCTGGTGGTCTCGGTCTCGATGCCATTGAGCGGTTGCATCGCCGACGTCTCGCCCGAGCAGCCGATCCTGGCGCTGCGCCTGGACATCGACCCGGCGGAAATCACCGCGCTGATCGCCGATGCCGGCCCCCTGGGCGTGCCGACTCGCCCGGCCGGCCGTGGCCTGTATGTGGAACGCCTGGACACGCCGATGCTCGACGCGGTGCTACGCCTGACGCGCCTGCTCGATACGCCAAAAGACATCGCCATGCTCGCGCCCCTGGTGCGCCGGGAAATCCTTTACCGCCTGCTACGCAGCCCGCAAGGCTATCGGTTGTATGAAATCGCCATTGCCAATAGCCAGAGCCATCGCATCAGCCAGGCGATCAAATGGCTCAACGGCCATTTCGAACAACCGTTGCGCATCGATGACCTCGCTCGGGAGGTCAACCTCAGCGTTTCGACCTTGCATCACCGCTTCAAGGCCATGACGGCCATGAGCCCATTGCAATACCAAAAACAATTGCGCTTGCAGGAGGCTCGACGGTTGATGCTGGCCGAAGGGCTGGAAGCGTCGGCGGCGGGGTATCGAGTGGGGTATGAAAGCCCGTCGCAGTTCAGCCGGGAGTACAGCCGCTTGTTTGGCGCGCCGCCGTTGCGGGATCTGGCGCGGTTGCGGATGACCGTCTGA	MSPLDHAHAPLDTYLEQQRAELASIIDRNTSEDGSYATAIGSLNLSRHSQPHKFAPVLAQPALCIMAQGSKQVRLADEFFNYDPLHYLVVSVSMPLSGCIADVSPEQPILALRLDIDPAEITALIADAGPLGVPTRPAGRGLYVERLDTPMLDAVLRLTRLLDTPKDIAMLAPLVRREILYRLLRSPQGYRLYEIAIANSQSHRISQAIKWLNGHFEQPLRIDDLAREVNLSVSTLHHRFKAMTAMSPLQYQKQLRLQEARRLMLAEGLEASAAGYRVGYESPSQFSREYSRLFGAPPLRDLARLRMTV				NA	NA	NA	NA	NA
D1-36_01143	354			hypothetical protein	ATGACTACACAGATCCCCGTCAGTCACATGGCTTTTGTCCGGGCCCGCGCCGGTTGCTCCAAGCCATTGGGCGCACGCCTCAGCAGCTTGATCGTACCTTCGCGCCAGGCGCCCGGTTGCCTGCACTTTGCCTTGCAACAATCGCAATGCGACGCCGATTTGTGGCTGGTGTCCGGGCTGTGGGTCAACCAACAGGCGATGGACGCTTATTTCAACTCACCGGCCATGGCGATCTTCGCCCAATTGGTGCAAGACCTGGTGGTCAGCAGCCTGGACTTCCACACCTTTCGGGAAGTGTCCGCCGCCCAGGCGACCGAAGGGTGCATGGCGAAGGTACACAAACTGGCCGGTTGA	MTTQIPVSHMAFVRARAGCSKPLGARLSSLIVPSRQAPGCLHFALQQSQCDADLWLVSGLWVNQQAMDAYFNSPAMAIFAQLVQDLVVSSLDFHTFREVSAAQATEGCMAKVHKLAG				NA	NA	NA	NA	NA
D1-36_01144	234			hypothetical protein	ATGGCACGCAAAGCCTTTGAAACTTTTGAAGCTGTTTCCGCTGTTGTTCCCAAGGAAGGTGGCGGCTACTACGCAGCCATCGCCACCAAGGCCATCGGCAGTGCCGAGAAGCCGCGTTTCAATAAAGTGCTCGAAGAGCAGACCTTCGAGACCGCTTTCAAAGCCGATGAAGCGGCTGCCCAGCAGTTGACTCACCTCAAGGGTGTCGACGACGAAGGCGGATTGGTCTGGTAA	MARKAFETFEAVSAVVPKEGGGYYAAIATKAIGSAEKPRFNKVLEEQTFETAFKADEAAAQQLTHLKGVDDEGGLVW				NA	NA	NA	NA	NA
D1-36_01145	621			hypothetical protein	ATGCCCGACGACATTCACTACTACGAACCCGCCCAAGGCCATGGCCTGCCCCACGACCCGTTCAATGCCATTGTCGGCCCACGGCCCATTGGCTGGATTTCTTCACAAGATGCAGAAGGCCGCCTGAACCTGGCGCCCTACAGTTTTTTCAACGCCTTCAACTACGTTCCGCCGATCATTGGGTTCTCCAGCGTCGGTCGCAAAGACAGCCTCAACAACATCGAACAGACCGGGGAATTTGCCTGGAACCTGGCCACGCGCCCACTGGCCGAGCAGATGAACCAGAGCTGCGCGATGGTCGCGCCGCAGGTCAACGAATTCGAGCTAGCGGGCCTGACGCCGGCGGCATCGCGGATCATCCAGGTGCCGCGCGTCGCCGAGAGCCCGGTGTCCTTCGAATGCAAGGTCACGCAGATCATCCAGTTGCAGCGAGCGGACAAGGCGCCTGTGCCGAGCTGGTTGATTCTGGGCGAAGTGGTCGCCGTTCACATCGCCAAGTGGCTGTTGAAGGACGGCGTCTACGACACCGCCGCCGCCGAGCCGATCTTGCGCGGCGGCGGGCCGGCGGATTACTTCCAGCTGGGGCCGGAGGCGTTGTTCAAGATGCATCGCCCGCGATAA	MPDDIHYYEPAQGHGLPHDPFNAIVGPRPIGWISSQDAEGRLNLAPYSFFNAFNYVPPIIGFSSVGRKDSLNNIEQTGEFAWNLATRPLAEQMNQSCAMVAPQVNEFELAGLTPAASRIIQVPRVAESPVSFECKVTQIIQLQRADKAPVPSWLILGEVVAVHIAKWLLKDGVYDTAAAEPILRGGGPADYFQLGPEALFKMHRPR				NA	NA	NA	NA	NA
D1-36_01146	219			hypothetical protein	ATGAAAACCAAACTGATCTTCGCCCTGACCCTCACCGCACTGGCCAGTAGCGCGTTCGCCGACGACGGCTTCGAGCGTACCGGCACGGCCGCTTTCATCGCCAGCAGCCATGAGCGCGCCGGTTCCGCCGTCGTTGCCAAGAAGGACGAGAACCACGCCATCGAGCCCACCGTGGCTGCCGACGGCTCCGACCCTAGCGATGCGGCGTCGACCAACTGA	MKTKLIFALTLTALASSAFADDGFERTGTAAFIASSHERAGSAVVAKKDENHAIEPTVAADGSDPSDAASTN				NA	NA	NA	NA	NA
D1-36_01147	1320	kgtP_1		Alpha-ketoglutarate permease	ATGGATAACTCAAACGCCCTTCCCATTGGGTCGGCTGCCGCGCCCGCCCGTGAAAGAACCACCGCCAGCCGGATCAAGTCGATCTTCAGTGGCTCGGTCGGCAACATGGTCGAGTGGTACGACTGGTACGTCTACGCCGCGTTCTCGCTGTACTTCGCCAAAGCCTTCTTCCCCAAGGGCGACACCACCGCCCAGTTGCTCAACACCGCCGCGATCTTCGCCGTCGGCTTCCTGATGCGCCCGATCGGTGGCTGGCTGATGGGCCTGTACGCTGACCGCGCCGGTCGCAAACGCGCGTTGATGGCCTCGGTGTACTTGATGTGCTTTGGCTCGCTGATCATCGCCCTGAGCCCCGGTTACGAAACCATCGGCGTCGGCGCGCCGATCCTGCTGGTGTTCGCCCGCTTGCTCCAGGGCCTGTCGGTGGGTGGCGAGTACGGCACCTCGGCAACGTACCTGAGCGAGATGGCGACCAAGGAACGTCGCGGTTTCTTCTCCAGCTTCCAATACGTGACGCTGATTTCCGGCCAGCTCATCGCCCTCGGCGTGCTGATCGTGCTGCAACAATTGCTGACTACCGAGCAGCTGTACGCCTGGGGCTGGCGCATCCCGTTCGCCATCGGCGCGCTGTGTGCAATCGTTGCGCTGTACCTGCGTCGCGGCATGGAAGAAACCGAGTCGTTCACCAAAAAGGAAAAGGCCAAGGAAAGCGCCATGCGCACCCTGATGCGCCACCCCAAGGAGCTGTTGACCGTGGTCGGCCTGACCATGGGCGGCACCCTGGCCTTCTACACCTACACCACTTACATGCAGAAATACCTGGTGAACACGGTGGGCATGAGCATCTCCGACTCCACCACCATTTCCGCCGCCACGCTGTTCCTGTTCATGTGCCTGCAACCCGTCATCGGCGGGCTCTCGGACAAGATCGGTCGTCGGCCGATCCTGATTGCCTTCGGCATCCTCGGCACGCTGTTCACCGTGCCGATCCTCACCACCCTGCACACCATCGAGACCTGGTGGGGCGCGTTCTTCCTGATCATGGCCGCGCTGATCATCGTCAGCGGCTACACCTCGATCAACGCGGTGGTGAAAGCCGAGCTGTTCCCTACCGAAATCCGCGCCCTGGGCGTCGGCCTGCCCTACGCACTGACCGTATCGATCTTCGGCGGCACCGCTGAATACATCGCGCTGTGGTTCAAGAGCATCGGCATGGAGACCGGCTACTACTGGTACGTGACGGCGTGCATCGCCGTGTCGCTGCTGGTGTACATCACCATGAAGGACACCCGTAAACACTCGCGGATCGTGACTGACTGA	MDNSNALPIGSAAAPARERTTASRIKSIFSGSVGNMVEWYDWYVYAAFSLYFAKAFFPKGDTTAQLLNTAAIFAVGFLMRPIGGWLMGLYADRAGRKRALMASVYLMCFGSLIIALSPGYETIGVGAPILLVFARLLQGLSVGGEYGTSATYLSEMATKERRGFFSSFQYVTLISGQLIALGVLIVLQQLLTTEQLYAWGWRIPFAIGALCAIVALYLRRGMEETESFTKKEKAKESAMRTLMRHPKELLTVVGLTMGGTLAFYTYTTYMQKYLVNTVGMSISDSTTISAATLFLFMCLQPVIGGLSDKIGRRPILIAFGILGTLFTVPILTTLHTIETWWGAFFLIMAALIIVSGYTSINAVVKAELFPTEIRALGVGLPYALTVSIFGGTAEYIALWFKSIGMETGYYWYVTACIAVSLLVYITMKDTRKHSRIVTD	PGPT0001525_592	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_KETO-|OXOGLUTARATE_TRANSPORT,PGPT0001525-kgtP-K03761	NA	NA
D1-36_01148	1146	cfaE_1		CFA/I fimbrial subunit E	ATGAACACATTCTTTATCCGTTGGGCCCACCGGCTGAGCGCGCTCATCGTTGCAGCCACCGCATTGCCGACGCTTGGGGACAGCATCCCCAGCGACCATCATCAGTCCGTGATACTCAACTTTGACCGTTCGGCGCCACCGGCCGATCACTACCTTTGGACCCGAATGGTCCATGGCTGGAAAGAGCAAGATTTGCCTGGCGCAGGCTATACGACCATGCACTTCGTTTGTTTGTCCGATACGAACCCAGCCAACGGCCAGTGTCAGACCAGAGGCGATACAGGGAGGTATGGCATCACAGACATTCCGCTGCGGTTTACCGAGAGACGTAGCGGCCTGTCGACTGTCTTGTCGGTCAAGGGTTACGTCACCCGCATGCATGCGCTGAACAGCAGTTGCGGGATCTGGGAGAAGGACTACGTACTGAACGCAACCGGGTCAGGCTGGTGCGACGAGGTCAGAACCACGGGCACCGCGTCGACTGTCTGGATTCCGCAATCGGAACTCGCCAAGCTACCTTCAGGTGGTATTTGGTCGGCGAAGTTGATCATCAAGCTCAAGCGCTATTACTCGGAGCCGATTGGCGCCGCCAGAACCTTCACCGTCGACTTCAAGCTGGACGTCACCGACCGCGACAACATGCAGATCTACCTGCCCGCCTACGGCATCAGCACGCCGCAGGTGGACCTCAACCTGCGCACTCGCCCGTTGAGCACTGCCCCGGGCGGTATCGTCTCCGGGCGGTCCGCGGTCGATGCATGCCTCTACGACGGCTACAACGCCAACAGCCAGAGTTATGAAATCCGTGTCACCGGCACCAACCCCGTGCCCGGCATGGAGGGCCGCTTCTTCGTCCGCCACGCGTCCGGCGGCAGCGGCGAGCGTGACCGCATCGAATACACGGTGCGCACCCGTACCGCCAACCTCGGCGAGACGCAGCATGTGTCCGGGCAACCGGTGACCTTCAACGGCATCAACAATGCGGACATCCGCGCCGTGAAGCTGCCCAATGTGCCGTATCCGGTGGTGTGTACGCCCTGGCCCATCACCTTGGACACGCCGCCGTTCAATCAGATCGACAAGAACTCCGGGCAGTACCGGGGGGAGCTGAAGTTGGAATTTACGCCCTCAACCTCTTCGCCCTGA	MNTFFIRWAHRLSALIVAATALPTLGDSIPSDHHQSVILNFDRSAPPADHYLWTRMVHGWKEQDLPGAGYTTMHFVCLSDTNPANGQCQTRGDTGRYGITDIPLRFTERRSGLSTVLSVKGYVTRMHALNSSCGIWEKDYVLNATGSGWCDEVRTTGTASTVWIPQSELAKLPSGGIWSAKLIIKLKRYYSEPIGAARTFTVDFKLDVTDRDNMQIYLPAYGISTPQVDLNLRTRPLSTAPGGIVSGRSAVDACLYDGYNANSQSYEIRVTGTNPVPGMEGRFFVRHASGGSGERDRIEYTVRTRTANLGETQHVSGQPVTFNGINNADIRAVKLPNVPYPVVCTPWPITLDTPPFNQIDKNSGQYRGELKLEFTPSTSSP				NA	NA	NA	NA	NA
D1-36_01149	1161	cfaE_2		CFA/I fimbrial subunit E	ATGAGCGGAGCCATACATTGGGGGCGGCGCCTGATCGCGTTCATCGCTGCGGTCACCGCACTGCCAGCCTTCGCAGACATTCATCCCAGCGACTACTACCAGTCCGTCGTTCTCGAGTTCGACCGTTCAACGCCGAATCCAACGTATTACCTTTGGGAAAAAATGATCCATGGCTGGAGCGCACAACACAAACCGGGGGCCGGTTATACCAACATGCACTTTGTTTGCCTGTCCAACACGGACCCGGCAAACGGCCAGTGCTCAACGACGACAGCTGGACGGCTCGGTACGACCAGCATACCGCTGCGCTTCACCGAACGGCGCAGCGGCCTGAGCTACGTACTCGTTGTCAAAGGCCAACTCTACCGCAAGTATCCGAACAATCTTTGCAATGGGAGCTGGGATGGAAGGATATTCGTATTGACTACCAACGGCGCTGCTTATTGCAATCAGGAAGAGGAAGATATCACCCGCCGATCGGAGGGAACAGGATCAACACTCTGGATTCCTCAGTCGGAATTCGCCAAGTTACCCACCGGCGGTATCTGGACGGCGAAGATGATCTTGAGACTCAAGATGTATGCTTCACAGCCGATCGAAAGAGCCTATACCTACACCGTCGACTTCAAGCTCGATGTCACCGACCGCGACAACATGCAGATCTACCTGCCCGCCTACGGCATGACTACTCCACAGGTGGACCTCAACCTGCGCACCCGCCCGTTGAGTACCGCCCCGGGCGGTATCGTCTCCGGGCGGTCCGTGGTCGATGCGTGTCTGTACGACGGCTACAACGCCAACAGCCAAAGCTATGAGATTCGAGTCACCGGCACCACCCCCGTGCCCGGCATGGAGGGTCGCTTCTTCGTGCACCACACGTCCGGCGGCAGCGGCGAGCGCAACCGCATCGAATACACGGTCCGCACCCGTACCGCCAACCTGGGGGAGACGCAGCATGTGTCCGGGCAACCGGTGAGTTTCAACGGCATCAACAATGCGGAAATCCGCGCCGTGAAGCTGCCCAATGTGCCGTATCCAGTGGTGTGTACGCCCTGGCCCATCACCTTGGACACGCCGCCGTTCAATCAGATCGACAAGAACACCGGGCAGTACCGGGGGGAGCTGAAGTTGGAGTTTACGCCCTCAACCTCTTCGCCCTGA	MSGAIHWGRRLIAFIAAVTALPAFADIHPSDYYQSVVLEFDRSTPNPTYYLWEKMIHGWSAQHKPGAGYTNMHFVCLSNTDPANGQCSTTTAGRLGTTSIPLRFTERRSGLSYVLVVKGQLYRKYPNNLCNGSWDGRIFVLTTNGAAYCNQEEEDITRRSEGTGSTLWIPQSEFAKLPTGGIWTAKMILRLKMYASQPIERAYTYTVDFKLDVTDRDNMQIYLPAYGMTTPQVDLNLRTRPLSTAPGGIVSGRSVVDACLYDGYNANSQSYEIRVTGTTPVPGMEGRFFVHHTSGGSGERNRIEYTVRTRTANLGETQHVSGQPVSFNGINNAEIRAVKLPNVPYPVVCTPWPITLDTPPFNQIDKNTGQYRGELKLEFTPSTSSP				NA	NA	NA	NA	NA
D1-36_01150	2688			hypothetical protein	ATGAAACGCCACTTCACCGCACTCTCCATCTCCCTGACCTGGGCGCTGGCCGATGCCGTATCGGTCGCGTCCACCGATCTGCCCCAGGTGCCGGCCGGTTTCGAGGCCCTGGTCGAGGGTCAGGTGGAACAACTCGAACTTCAACTGCTCAACCGCAACCTCGGCCTGCACCCTGTCGTGGTGCGCCCCGGCCGTATCGAATTCCAACAACCCGAGCGAATCGCAGCCCTGCTGATCGAGGCAGGGGCATCGGCGTCATCCGAAGAGTTGCTGCCGCTGCTGTCCGAACCGTTGCCCAGCAACAGCCAGTTGGCGTGCTCCTACGGCCTGGCCAGCGAAGCGAGCTGCGGTTACCTGGACACCGACGCGGTGGCAGTGATTCTCGACGAGGCCGGCGCGCGCCTGCAAATACTCATGCGCAAGGATTGGCTGCCGGCCAGCGATACGGCGGCGCTGCGCCTGCACACTCCGACCGAGGCCGCGAACGCCTTGGTCCATCGACAGAACATCAATATCGCCCAGGCCGACAGTTACCGCGCTCTGGGCGCCAGCGGCCTGGGCGCGGTAGGCCTGGGTGAAAGCAGCCATTTTGGCTTTACCTGGAACTACCAGGCCTACCAGAACAAGCGCGGCAGCGACAGCAGCCTGGAATTCAACAACGCCTACTACCGCCAGGATTTCGAGCGCGAACACTACGCCCAGGCCGGGCGCATGGACATGAGCAACCTGTCCAGCGCCGAGGGCGGCAACTTCAGCTTCAGCCTGTTGCCCCTGGGGCGAATCGACGGTGCCCGAGTCGGCACTACCCTGGCCTACCTCAACCGCGAGGTCGTCGGCCAAGGCACGCCCATCTCGCTGATCCTGACCCAACGCTCGCGCGTCGATGCGTTCCGTGGCGAGGAGCTGTTGTCGACGTCCTACCTGGATGCCGGCGTGCAGAATGTCGACACCCGGACCTTCCCCAACGGCAGCTATCCGGTGACCTTGCGGGTGATCGAAAACGGTCAGGTGACCCGTACCGAAACCGTGCCTTTCAGCCGTACCGACGGCAATGGCCTGGGTGACGACACCGTGCAATGGTTCCTGCAAGGCGGACGCACGGCGGAGCATTCACTGTACGAACAAGACCCTTCCGGCGTGGCCCAGACCGGCCTGCGCATTCCGTTGCGCGATGACCTGGCGCTCACCAGCGCGATCACCTGGCTGGACTCGGCGTTCTACAACGAAAGCCGCCTGGACTGGGCCGGCACGCTGGGCGCCAGCAGTTGGTCGTTGTCCGGCGCCCTGTTGCGCGGCAACGACGGCGCGAGCGGCAACAGCCAACAAATGACCTTTACCCACGGGATCTCCTGGAGTGTGTACCGCTACTCGCTGAAGAGCCCATCCTGCGAGCGCACCACCCGCGCCTACCAGCAGAGCGGCTGCAACGAATCATTGACCGCCAGCGCCTCGTTGCCGCTGGCCGGTGGCACCCTCAGTGCCGGCTACAACTACAACCGCTACGCCCAGGTGAATCCGTTTTCCTACTGGAACGACTTTCCCGAAGAAGACGACCCGACCCGCGACCTGACCACCTCGACATGGGCCCGGACCTTCCAGGTCGGTTTTTCCCGAGGCCATGCCCTGGGACCGTTCCAGCTCATCCATCGCGTCGGCGCGTTCCGCAATGCAAGCGGCAACCGCGAGACCGATCATGGCCTGTACCTGAGCCTGAGCCTGTCCCACAACGAACGCTCGCCCACCGGCGGCTACCGCCAGAGCAACATCAGCCTGGACGCGCGCCGCGAGCAGAACGCCCCCGACAGCCTGCGCACGAGCCTGGGCCATACCCGCGCCTGGGACGGCGAACAGGGCAGGAACGAAGTGAACACCGGCGTTGGCTACGATGACCTGGGCCGCTGGGACGCCGAGCTGGGCGGGCGTATCGAGCGCAACTGGGGCGAGACCAGCCTGACGGTGGCCCAGCGTGGCGGCGACCAACAAGACTCGCGACCTGGATTCAGCGGCAACCATTCTTCGTCCCTGGCCCTGGGCCGCGACGGCTTCTTCTGGGGTCAAGGCCAGGGCGGCACAGGCCCCGGCGCGGCGGTGGGCATCATCGCCGCGCCGGTGGAAAATGCCACGGGCGCGGCGGCCAAGGTCAGCGGCGGCTACGGCGCCCAGACCAGCATCGGCTTCGGTGAGAAGCGGCTGATCCCGGTCAATGGTTTCGAAGCCACCCACACCCGCATCAGCGACGCCGATGCCTCGCGCCAGAACCTCAGCACGGTGAACGTCGGCAACGGCAACCGCGAGTGGTTCCTGCCACCGGGCAAGCTGGCCGTGCAACGGATCGAGTCCACCCTCAGTTATACCTACGTCGGCCGCCTGGTGGATGCTCGGGGAGAGCCCTTGGCCCAGGCCGCGATCCTCAATGCATCGATGATGGAAACCGGCGAGGACGGCAGCTTCGTCGTCGACCTCAATCACCACCCCGATCCCTTGTTCGCCCTGGACCTCAACGGCGTACACGCCTGCACCGTACAGACCCGCGCCGCCCAGAGCAGCCTGCGGCGGGTCGGCACGCTGACCTGCGAAAGCACCACCCTGGATGCCTTGCCCAAGGACCTGAACGACCCCGACCGCCTGGGACGCTGGACCGCGCGTCGCAGTGCCGCGTTGTCACTAGATAAGAGGAGCCAGCCATGA	MKRHFTALSISLTWALADAVSVASTDLPQVPAGFEALVEGQVEQLELQLLNRNLGLHPVVVRPGRIEFQQPERIAALLIEAGASASSEELLPLLSEPLPSNSQLACSYGLASEASCGYLDTDAVAVILDEAGARLQILMRKDWLPASDTAALRLHTPTEAANALVHRQNINIAQADSYRALGASGLGAVGLGESSHFGFTWNYQAYQNKRGSDSSLEFNNAYYRQDFEREHYAQAGRMDMSNLSSAEGGNFSFSLLPLGRIDGARVGTTLAYLNREVVGQGTPISLILTQRSRVDAFRGEELLSTSYLDAGVQNVDTRTFPNGSYPVTLRVIENGQVTRTETVPFSRTDGNGLGDDTVQWFLQGGRTAEHSLYEQDPSGVAQTGLRIPLRDDLALTSAITWLDSAFYNESRLDWAGTLGASSWSLSGALLRGNDGASGNSQQMTFTHGISWSVYRYSLKSPSCERTTRAYQQSGCNESLTASASLPLAGGTLSAGYNYNRYAQVNPFSYWNDFPEEDDPTRDLTTSTWARTFQVGFSRGHALGPFQLIHRVGAFRNASGNRETDHGLYLSLSLSHNERSPTGGYRQSNISLDARREQNAPDSLRTSLGHTRAWDGEQGRNEVNTGVGYDDLGRWDAELGGRIERNWGETSLTVAQRGGDQQDSRPGFSGNHSSSLALGRDGFFWGQGQGGTGPGAAVGIIAAPVENATGAAAKVSGGYGAQTSIGFGEKRLIPVNGFEATHTRISDADASRQNLSTVNVGNGNREWFLPPGKLAVQRIESTLSYTYVGRLVDARGEPLAQAAILNASMMETGEDGSFVVDLNHHPDPLFALDLNGVHACTVQTRAAQSSLRRVGTLTCESTTLDALPKDLNDPDRLGRWTARRSAALSLDKRSQP	PGPT0029345_57	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-CHAPERONE-USHER_SECRETION	CE-CHAPERONE-USHER-SECRETION-Mat|Ecp_FIMBRIAE_ASSEMBLY,PGPT0029345-ecpC|matD-K21966	NA	NA
D1-36_01151	498	csoA		CS1 fimbrial subunit A	ATGAAATTGATGAAATTCGCCCCATTGGCACTGGCCGCCCTGACCTCGCTGCCCGCCATGGCGGTGGAAAAGAGCCTGCTGGTCTACGCCGATGTCGACCCGACCCTGGAGATCCTCCAGTCGGACGGCAGCCCGCTGCCGGCGTCCATGGAGATGGCTTATCTGCCAGGTGCCGGTCTGCAACCGACTCGGCTGGGTACGCGCATCTACAGCAATGACACCGACAACGACATGACCTTGCGCCTGATCACCAATCCGGTCCTGGCCAACATGACCAACCCCGCCGCTACCGGCATCCCGCTGAGCGTCAGCTATGGCGGACGAGCGCTGAACACCACTGGCGTCACGCTGCCCGCCGCCGACCTGTTCCCTGGCGGTGACGCCACCGGCGGCTCGGTCGAGCAACTTCTGGACATCCGTCAGACAACAGCTGGCGCAATCACCAATGCCGGTCGCTACGAAGGCATCGTGAGCCTGGTACTGACCCAGCAGCCGTAA	MKLMKFAPLALAALTSLPAMAVEKSLLVYADVDPTLEILQSDGSPLPASMEMAYLPGAGLQPTRLGTRIYSNDTDNDMTLRLITNPVLANMTNPAATGIPLSVSYGGRALNTTGVTLPAADLFPGGDATGGSVEQLLDIRQTTAGAITNAGRYEGIVSLVLTQQP				NA	NA	NA	NA	NA
D1-36_01152	756			hypothetical protein	ATGCATTCGAATCAAACGTTTACCCGTCGCTGGACTGTGCTGGGCAAGTTGGCGCTCATGACACTCGCTGTCACCCTGTCGTTTCCGGCAGTCGCGAATATGGTGGTCTACCCGATGAACAGTACCATCGGGACCGAGCAGGACGGCATTGGCCAGATCCAACTCCATTCCAAGTCCGACAAGGTGCAGTACATCAAGGTCAGCGTCACCCAGATCCAGCGCCCCGGCACGCCGGACGAACATGAAAGCCCGCTGTCGCCGGCGGATGCGCTGGGCATCGTGGTTTCGCCGCAACGCACGGTACTGGCTCCCGGCGCCAGTCGCACGGTCCGGATCATCGCCCAATCGATGCCCACCGAGGAAACTGTCTACCGAGTCTATTTCGAGCCGGTGGGAGCGCCCGACCTGATCGACGAAGACGTCCTGGAACAGTCAGGCGTGCAGCCGAAAGTCGGCGTCAACCTGGTTTGGGGCGCCCTGGTACGGCTACTACCCGACGAGCGCCGCACCAGCATCAAGCTGCAACCCAAGGGCAATGAGCTGCGCAACGACGGCACTCTTCGCGTCGGAGTGTTGCAGGTCGGTCGCTGCACCGACATGGCGGGTGAGAAGGATTGTATCTGGAATGATATCAACCGCAGCCTGTATCCCGGCAACACCCTGCCTGTCTCCGCCCCCGGTTCGAACGGCAATGTCATCGTACGTTTCGTGACCAGCGACGACAGGCGTCCGCGCACCCTCGCCATTCAGCCGTAA	MHSNQTFTRRWTVLGKLALMTLAVTLSFPAVANMVVYPMNSTIGTEQDGIGQIQLHSKSDKVQYIKVSVTQIQRPGTPDEHESPLSPADALGIVVSPQRTVLAPGASRTVRIIAQSMPTEETVYRVYFEPVGAPDLIDEDVLEQSGVQPKVGVNLVWGALVRLLPDERRTSIKLQPKGNELRNDGTLRVGVLQVGRCTDMAGEKDCIWNDINRSLYPGNTLPVSAPGSNGNVIVRFVTSDDRRPRTLAIQP				NA	NA	NA	NA	NA
D1-36_01153	327			hypothetical protein	ATGTCAATAGTTTTGGTGGAATATATCCACGTTCGCCTGCGCGAAGAGATTGACCGTTGTGGTGTTTCGTTGGCTGCCGCCTCCCGGGCGGCGGGCGAAGCGAGCCCGCAGCGCTTGAAGGAAGTGGTTTGCGGGCGGCAGAAATGCCCGGCCGATCTGGTGGCGAAACTGGCGGCTATCGGAGTGGACGTCCGATACGTCCTGACGGGCGAACGCGTCCAGGCCGCGCCGGCACTGGCGCCTGATGAAGAGCTGTTGTTGGAAAGCTATCGCGCGCTGGATGTGGCGGGGCGCAAGCGCATGATCGCCCGTCTGATCTCGGGTTAG	MSIVLVEYIHVRLREEIDRCGVSLAAASRAAGEASPQRLKEVVCGRQKCPADLVAKLAAIGVDVRYVLTGERVQAAPALAPDEELLLESYRALDVAGRKRMIARLISG				NA	NA	NA	NA	NA
D1-36_01154	1335	dctD_2		C4-dicarboxylate transport transcriptional regulatory protein DctD	ATGCTTGATTCGGTCATAGTCGTCGATGACGAAAACAGCATCCGCACGGCCGTGGAGCAATGGCTGAGCCTGTCGGGGTTCCAGGTGCAGTTGTTCAGCCGCGCCGAAGACTGCCTGGCGCGGTTACCGGACAACTTCGCTGGCGTGATCCTCAGCGACGTACGCATGCCCGGTCTCAGTGGTCTCCAATTGCTTGCGCAAGTGCGCAAGCGCGACGCGGACCTGCCGGTGATCCTGTTGACCGGCCACGGCGACGTGCCGATGGCCGTGGAAGCCATGCGCGACGGCGCCTATGACTTTCTCGAAAAACCGTTCAGCCCCGAAGCGCTGCTAAGCAGCCTGCGTCGGGCCTTGGACAAGCGCTTCCTGGTGTTGGAAAACCGCCGCCTGCACGAGCAGGCCGACGCTCGGGCCAGGCTCGACACCACGCTGCTGGGCGTCTCCCGCGCCTTGCAGAACCTGCGGCGCCACGTGCTGGACCTGGCGACATTGCCGGTCAACGTGTTGATCCGCGGCGAAACCGGCAGTGGCAAGGAATTGGTCGCCCGCTGCCTGCACGACTTCGGCCCGAGAGCGAGCAAACCCTTCGTTGCGCTGAACTGCGCGGCCATCCCCGAACCGCTGTTCGAGGCTGAACTGTTCGGTCATGAAAGCGGCGCCTTTACCGGCGCCCAAGGCAAACGCATCGGCAAGCTCGAATACGCCGACGGCGGCACGCTGTTTCTCGATGAAATCGAAAGCATGCCGCTGGCCCAGCAGGCCAAGTTGCTGAGAGTCCTGCAGGAGAAGAAGCTCGAACGCCTGGGTTCCAACCAGAGCATCCACGTGGACCTGCGCATCATCGCCGCGACCAAGCCAGACTTGCTGGACGAAGCCCGGGCCGGGCGATTTCGCGAGGATCTGGCCTACCGCTTGAACATCGCCGAGCTGCGCCTGCCGCCCTTGCGTGAACGGCGCGAAGACATTCCATTGCTGTTCGAGCATTTCACCCACGGCGCCGCCGAACGCCTCGGCCGCCCCGCCGTGCCCTTGAACGGCCCGCAACTGAGCCATCTGCTCAGCCACGATTGGCCGGGCAACGTGCGCGAACTGGCCAACGTCGCCGAACGCCAAGTGCTGGGACTCGACCGGCCGCCTGCCCTGGACACCGAACCGGGCCAGTCCCTCGCGGCCCAGCAGGAAGCGTTCGAAGCCCAATGCCTGCGCGCCGCGCTGACGCGGCATAAAGGCGACGTAAAAGCCGTGCTCGAGGAACTGCAACTGCCGCGCCGCACCTTTAATGAAAAGATGCAGCGGCATGGTTTGAGTCGGGAAATGTTTGTGCGGGACATCTAA	MLDSVIVVDDENSIRTAVEQWLSLSGFQVQLFSRAEDCLARLPDNFAGVILSDVRMPGLSGLQLLAQVRKRDADLPVILLTGHGDVPMAVEAMRDGAYDFLEKPFSPEALLSSLRRALDKRFLVLENRRLHEQADARARLDTTLLGVSRALQNLRRHVLDLATLPVNVLIRGETGSGKELVARCLHDFGPRASKPFVALNCAAIPEPLFEAELFGHESGAFTGAQGKRIGKLEYADGGTLFLDEIESMPLAQQAKLLRVLQEKKLERLGSNQSIHVDLRIIAATKPDLLDEARAGRFREDLAYRLNIAELRLPPLRERREDIPLLFEHFTHGAAERLGRPAVPLNGPQLSHLLSHDWPGNVRELANVAERQVLGLDRPPALDTEPGQSLAAQQEAFEAQCLRAALTRHKGDVKAVLEELQLPRRTFNEKMQRHGLSREMFVRDI	PGPT0017310_981	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017310-dctD-K10126	NA	NA
D1-36_01155	1767	dctB_2		C4-dicarboxylate transport sensor protein DctB	ATGCTGCCGACTCCCCGTACCTTGCGCCTGTTACTTGCCATCGCCCTGATCCTCATCGGCGCCGCCCTGGCCGCCACCCTGGCCGTGCGCCACGCCGAGCGCGTGGCCCTGGAAGAAGACGCCAGCCGCGCGAGCCAGCAATTGGCGCTGTACGCCAACTCATTGCACACCTTGATCGAACGCTACCGCGCCCTGCCCGCCGTGCTGGCGCTGGACCCGCAGTTGCGTGACGCCCTCAAGGGGCCGGTCAGCGCGGCGCAACAGGATGCCTTGAACCGCAAGCTGGAAAAAATCAACGGCGCCGCGCAGTCCTCGACCCTGGAGCTGCTGGACCACACCGGCCTGGCGATCGCCGCCAGCAACTGGCAGTTGCCCAGCAGCTACGTCGGCCACAACTATGGCTTTCGTCCCTATTTCCTCCAGACCCGCACCCAAGGCACCGGGCGCTTCTATGCGGTGGGTGTGACCAGCGGCATCCCGGGCTATTTTCTGTCCAGCGCGGTCACTGGCGATAGCGGCGAGTTCCTCGGCGCGATGGTGGTGAAGCTCGAGTTTCCCGAGCTTGAGCGCGAATGGCGCCAGGGCAGCGACACCCTGTTGGTCAGTGATGCGCGCGGGGTCATTTTCATCGCCAATCGCCCCGGTTGGCGCTATCGCCATCTGCATCCCTTGACCGACAGCGACCGCGCCGAGCTCAAGGCCACGCGCCAGTACGACAAGCAACCGTTGCAACCCCTGGCCTTCGATCCGCTGCGACGCTTTGACGACAACAGCCACCTGACCCGGGTCGAGGCGCCCGAGGGTACGGCGCAGTACCTCTGGGAATCCCTGCCGTTGGCCGGCGAAGGCTGGACCCTGCATTTGCTGCGTCGACCACAGATCGCCTTCGAAGACCTGCGCAACGCCGGGCTCGCCGCCGCCGGGTTGTGGCTGGCGCTGGTGTTTCTGTTGCTGTTTCTGAACCAGCGTTGGCGCCTGGCGAAACTGCGCCAGCGCAGCCGCCAGGAACTCGAACGACTGGTGGACGAACGCACCCGAGAATTGCGCACCGCCCAGGACGGCCTGGTGCAATCGGCCAAGCTGGCGGCGCTGGGGCAGATGTCGGCGGCGCTGGCCCACGAGATCAACCAGCCGTTGACCGCCCAGCGCATGCAACTGGCGACCCTGCGCCTGCTGCTGGAGCACGGCCGCGTCGACGATGCCTATAAAGCCCTCAAGCCGGTGGACGACATGCTGACCCGCATGGCGGCCCTGACCGGCCACCTGAAGACCTTCGCCCGCAAGAGCCCCAGCGGCCTTCGCGAACGCCTTGACCTGGCGGCGGTAGTCGACCAGGCCCTGCAATTGCTCGACACACGCCTGCGGGACGAAAACGTCAGTACCGTCTTGCACCTGACGCGTCCGGCGTGGGTGCGCGGCGATGCCATCCGTCTCGAACAGGTGTTGATCAACCTGCTGCGCAACGCCCTCGACGCCATGGTCGAACAGCCCCTCAAGCGCCTTGAAGTGCGCCTGCAAGCCGATGAACAACTGTGGCGCCTGACCGTCAGCGACAGCGGCACCGGGATCGCCGGAGAACATCTGGCCCAGGTGTTCGACCCGTTCTTCACCACCAAGGCGGTGGGCGATGGCCTCGGCCTGGGGCTCGCGGTTTCATTTGCGATCATCCACGAATCCGGCGGGCGGCTGACAGCGGACAATCATGACAACGGCGCGGTATTCTGCGTGACCTTGCCCATCGATCAGGAGGCGCAGCTGCATGCTTGA	MLPTPRTLRLLLAIALILIGAALAATLAVRHAERVALEEDASRASQQLALYANSLHTLIERYRALPAVLALDPQLRDALKGPVSAAQQDALNRKLEKINGAAQSSTLELLDHTGLAIAASNWQLPSSYVGHNYGFRPYFLQTRTQGTGRFYAVGVTSGIPGYFLSSAVTGDSGEFLGAMVVKLEFPELEREWRQGSDTLLVSDARGVIFIANRPGWRYRHLHPLTDSDRAELKATRQYDKQPLQPLAFDPLRRFDDNSHLTRVEAPEGTAQYLWESLPLAGEGWTLHLLRRPQIAFEDLRNAGLAAAGLWLALVFLLLFLNQRWRLAKLRQRSRQELERLVDERTRELRTAQDGLVQSAKLAALGQMSAALAHEINQPLTAQRMQLATLRLLLEHGRVDDAYKALKPVDDMLTRMAALTGHLKTFARKSPSGLRERLDLAAVVDQALQLLDTRLRDENVSTVLHLTRPAWVRGDAIRLEQVLINLLRNALDAMVEQPLKRLEVRLQADEQLWRLTVSDSGTGIAGEHLAQVFDPFFTTKAVGDGLGLGLAVSFAIIHESGGRLTADNHDNGAVFCVTLPIDQEAQLHA	PGPT0017305_1035	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017305-dctB-K10125	NA	NA
D1-36_01156	4494			hypothetical protein	ATGACTACCCTGCAAACATTGGTCACGAAGACCTCCCTACTGACCAACCCCCAGCAATGGCTCGTCCATTCGATGCCCGATTGGCTGTCCGGGCTTTCATCACAACAACGCACGGCACTGGCAAAAGCCGTAGGCCCGATACCACCGGGGCTCGCCCAGGCCAGCGCCGCGGATCGGGATCACCTTAAAAGCGCGTTGCAAGCCAGTTGGACATCCCACGGCAAACTGACGCAAATGCTCGGCCGGCTCCGGTCGATCGAGGCATTCGCCGAGCCGCTGTTGGTCGCCGCGTTGAAAAAGCGTTGCAACCTGACGCTGGACGTCAGGCAAACCTATGTGCGGCTCTACATTCCCGAGGGGGTGGCCGTCGCCTACAGGATCCGCACGATTTCCCTGCTGGATGCTGCCCTGCAAAATTTCGAGGCAAAAGAGGCGCGCCCGGGCTACTTCGACGAAGCGTCCTGCTTCATTAGCCAACCCACCGCGAGTGGACAGTTCGATATCTTGTCTGTTGGCTCCACCTTGACCTTGCCGGTGTTCGTCGCGCTTTGCCGGGACTTGGACATTGGCGGGCGCTATCAGGCGTACCTGAAGAGCCTTCTGATTGACGAGCCTGTCGGCAGTGCCGTGGCGCAGGAGTGTTTCCAGAACGATGACAGGGATGCCTTCCGGACGGCCGCGACGTTGGCGCGAATCAAAGGCGATATAAGCCCGCAGGTTTACCAAGCTTTGCAAGGCTTGATGACTGGCCAGCGAAGTGTCAGCCATGGCGGCAAGACGCAGTATTGCCACGACCTTTACCTACTCGACACTCGCCTGACCGGCATCGTGATGATCGCCCCGGATCTTGAGCAGAGCCGGCAAGTCGAACCGGTCGTGGTCTATATCCCTCACGATCCCGAGCATCCGCTAAAACAGTACAGCTCCACGGCGGCGTTCCTGGCAGCGCTGGCCGTTCGATTGCGCGCGCAACGTTACCAGCAGTTTTTCAGCCGCTTCATTTCCCTGGCCCACCGCGAACGTTTTTTCGCCGCGCTGGATGCCCGGTTGTTCAAGGCCCGGCGTGAGCCGGTGGAAAATCCCACGCTGCGGATGACTTGCCGGCGGGTAAAGGACGATCTTTGGGACCATGGGTTCGAACAACGACTCAACCAGATCTTCCAGGACGCTCGCCTGATAGCCGTGCCGACGGGGGACGAAGATCTCAAGTCCCGGTGGGCTCGCTGGGACAGTTTCATGCAGGTGGCCGAGACGGTGCTGGAAATGGCCGCTTTTACGGCAGCGTCGTTTGTGCCGGTACTGGGCGAAGCATTGATGGCCTATACCGCCTATCAACTCCTCGATGACACGTTTGAAGGCATCGTCGATTGGTCCCAAGGCCGACGTGCCGAAGCGGCCGCGCATTTGCTCGGGGTGGCCGAAAACATGGCGCTCATGGGGCTTTTCGTGGCGGGGGGGAAAGTGGTGGGGGCTGTGCGTTCCACGCGGCCTTCATCGTTTGTCGAGCAGATGAAAGTGGTCCAGAGCCACGATGGGCAGTCGCGTCTATGGCACCCCGATCTCGCGCCCTACGAGCAGTCGTTGGACCTCAAGACGAACGCTCGGCCACAAGCCAATGGCCTTTATCTTCATCAGGGACAAGAGGTGCTGTTGCTCGGCGACCGGCCGTTCGTGGTCGAGCAGGCCGCGGACACTGGGCAGTATCGGATTCAACATCCCGTGCGCGTCGATGCGTATGCGCCAAAGCTCGCCCATAACGAGGCGGGTGCCTGGGTTCATGAGGGCGAACGCCCGCTGAGCTGGCAAGGGCCAACACTGATGCGGCGCCTGGGGCACAGCGTCGAGTCTTTTTCGGATGAAACCCTGGAGCAGATCCGTATCGTCAGCGGCGTCGAAGAGGCAAGCCTGCGTCAACTCCACGTCGAACATGCCCGACCTCCGGTGTTGCTGGCCGAAACCGTCAAGCGCTTCCGGGCCGCGCAGGGCAGTCCAACCGGTATCGAGCCGGTCGACGAGGCGGGCAGTGCTGGCGCCCAGGTCTTGCGCAGCGAGTTTCCCCAGTTGCCCCGCGCGGTGGCGGACGAGCTGCTGGTTGACGTCACCGAGGTGGAGCGCCGGCAGATGAGTGAGCGAGGGTACTTGCCTCTGCGCCTGCGCCAGGCGGCCCGTACGGCCATGGGCGAATGGCGAATTGTCCAGGCCTACGAAGGCTTGTATTTGCCCACGAAGGGCAACCCCGACACCTGGCGGTTGGCGTTGCACAGCCTGGAGCATCTGCCGGGTTGGCCGGCGCAGGTGCGTATCGAGATTCGCGACGGGGCGCTGGAGGGGCCGCTGCTCGACAGCGTCGGACCGTCGTCATCGGTGGTGCGCAAGGTGCTCGTGCCGGTGGAAGAAGCGACGCCTGGGTTGTTTGGCGAGCAAGGTAACTCGGTGGACAGTGCCGACGATTTCTATACCGAAATCCTGAGCGCCTTGACCGAGGCCGAGCGTCGGGCGTTGGGTTACAAGCTCGGCGATGGGTCCTTGCTGGGGAAGGCTGTTCAACAAGCGCCGCTAGACCGGACGACGTTTCGCAAAGTCCTTCTGAACGCTGCCGGGACGGCGGAGGATCCACCGATAGTCGCACGTTTGCTCGGGGAGCAACCGGGCTATGGGCGGCTCGATGAGCAATTGCTTGGAACCGGTGATGCGTTGAGTCTGGAGGCGCGGTTCAAGGTGCTGTATCCGGAAGCGTCGACTCAGAGTTTTGCCCGGTTTGTTGAGTCATTCCACTCTGAACAGTTGGCAATACAAAACCTCGTGGGTCGCGAATTGGAGCTTGAGGGGCTGAGCAACTCGCTGGAAAACTGGGTGGCGATCAAGAGGGGCGATGTGGTTGCCATTGATCAGCTCTACCACAAGGGAAAACTCGCTTCGGCGCTCAAGCAGTGTTGGCGGGCTGGAGTGGATACGCCGCCTCAGGGGTATATTCTGAATCTGGATTACTTCTGGTCAAGTAACACTTTCGATTGCTTTCCAACCCTGGAAACGGCGTTCCCCCATGTGAGCGAACTGAAGTGGCGCCATGGCGCGCTGGATACTGATCTGACAGCGTTTCTCGGTTATTTCCCCAATCTCAAGACGCTGGACCTGAGTCATAACGATCTGACGGTGTTACCACGGCTAGAGCCCCATCTTGCAGATTTGCGGGTGTTGGACCTCGCACATAATCAATTGAGTCTCACCGCTCAAAACGTCGCTGACCTGGGAGGCTTGAGTCGCCTTGAGGTGTTGAAGTTGGGCAACAACCCCGCCTTGAACCTGCTGCCCGACATCACTCGCATGTCGGAGCTCGCCATGCTTGACTTGCAACAGACTGGTGTTACTGAGTGGCCGCCAGGTTTACTGACTGTCACACGACCCCGCTCCTTCGAGCTGAATCTGGAGGGTAATTCCATAGACCGTATTCCAGAGGTCACGCCCGGCTCCGAACAGGCCCGGTTGATCGCCCGGACTCGCTTGAGTCGCGACCAGCTTCCAGAAGACAGTTTGCGCCAATTCCAAGGCTATATGCGTTCGGTGGGTTATGACCCGGCGCGCAGCTATCCACCCAAGGGCGAGGAAACCAGCCAATACTGGCTTGAGAGCCTTGCCGATGACGCGCGAGTTTCCCGTCAGCGTACCTGGGACGAGCTTGAGCGCGAACCTGGCGCCCAGGGTTTTTTTGAGATGTTGGAGCAACTGACAGAGGCCGCCGATTACGTCGAAGAGGACTATCGTCCTCAATTGATAGGGCGAGTCTGGAGAATGCTCGACGCCGTGTCCGAAGACGCGACATTGCGCGAGGAGCTGTTCCGCATGGCGATCAACCCGGATTCCTGTGCCGACGCCGGGGCGCAGTTGTTCAACGAAATGGGCATCAAGGTTTTGGTCCATGAAGCGTATCGGGCGAGCGATGCTACTCAGGTCGAGGCCAAGCTGCTGGCGCTGGCCAAGGGCAAGTCGCGGTTGGATCAGGTCAATGAAATTGCCCGCGCGACGATTCAGAATCGATTGCAGGCGGGTGAGACGTTTATCACCCTGGACGAGGACGGGGAGTTCTCGGGAAGCATCGATGAGGTGGAGGTCTACCTGGCGTTCCAGACCGGATTAGCGGAGCGTCTGGGTTTGCCATGGCAATCGCAAGGGATGTTGTTCAGATGTGTTTCCGGCGTGGATGACGCTGCCATGGACCTGGCTTATCAATCGGTCCTGGAACTGGAAACCGGCGACGGATTGGTGGACCAAATCATTGGGCAGCGGTTTTGGCGGACCTATCTTAAAGGTCGGCACCCACACGCCTTTGAGCGCAATGCCTCGGTGTATCAGCAGAAAGCCGAGGCCCTGTTGGATCAGCAAGTCGCGGGCTCGCTTTCGCAAGCCGACTACGAACGAGGCATGAGTGAACTGGCCCATGAACGGAAGGCCTTGTTACGGCAACTGACATTAGATGCGATGGCAGGGCCTAGTTGA	MTTLQTLVTKTSLLTNPQQWLVHSMPDWLSGLSSQQRTALAKAVGPIPPGLAQASAADRDHLKSALQASWTSHGKLTQMLGRLRSIEAFAEPLLVAALKKRCNLTLDVRQTYVRLYIPEGVAVAYRIRTISLLDAALQNFEAKEARPGYFDEASCFISQPTASGQFDILSVGSTLTLPVFVALCRDLDIGGRYQAYLKSLLIDEPVGSAVAQECFQNDDRDAFRTAATLARIKGDISPQVYQALQGLMTGQRSVSHGGKTQYCHDLYLLDTRLTGIVMIAPDLEQSRQVEPVVVYIPHDPEHPLKQYSSTAAFLAALAVRLRAQRYQQFFSRFISLAHRERFFAALDARLFKARREPVENPTLRMTCRRVKDDLWDHGFEQRLNQIFQDARLIAVPTGDEDLKSRWARWDSFMQVAETVLEMAAFTAASFVPVLGEALMAYTAYQLLDDTFEGIVDWSQGRRAEAAAHLLGVAENMALMGLFVAGGKVVGAVRSTRPSSFVEQMKVVQSHDGQSRLWHPDLAPYEQSLDLKTNARPQANGLYLHQGQEVLLLGDRPFVVEQAADTGQYRIQHPVRVDAYAPKLAHNEAGAWVHEGERPLSWQGPTLMRRLGHSVESFSDETLEQIRIVSGVEEASLRQLHVEHARPPVLLAETVKRFRAAQGSPTGIEPVDEAGSAGAQVLRSEFPQLPRAVADELLVDVTEVERRQMSERGYLPLRLRQAARTAMGEWRIVQAYEGLYLPTKGNPDTWRLALHSLEHLPGWPAQVRIEIRDGALEGPLLDSVGPSSSVVRKVLVPVEEATPGLFGEQGNSVDSADDFYTEILSALTEAERRALGYKLGDGSLLGKAVQQAPLDRTTFRKVLLNAAGTAEDPPIVARLLGEQPGYGRLDEQLLGTGDALSLEARFKVLYPEASTQSFARFVESFHSEQLAIQNLVGRELELEGLSNSLENWVAIKRGDVVAIDQLYHKGKLASALKQCWRAGVDTPPQGYILNLDYFWSSNTFDCFPTLETAFPHVSELKWRHGALDTDLTAFLGYFPNLKTLDLSHNDLTVLPRLEPHLADLRVLDLAHNQLSLTAQNVADLGGLSRLEVLKLGNNPALNLLPDITRMSELAMLDLQQTGVTEWPPGLLTVTRPRSFELNLEGNSIDRIPEVTPGSEQARLIARTRLSRDQLPEDSLRQFQGYMRSVGYDPARSYPPKGEETSQYWLESLADDARVSRQRTWDELEREPGAQGFFEMLEQLTEAADYVEEDYRPQLIGRVWRMLDAVSEDATLREELFRMAINPDSCADAGAQLFNEMGIKVLVHEAYRASDATQVEAKLLALAKGKSRLDQVNEIARATIQNRLQAGETFITLDEDGEFSGSIDEVEVYLAFQTGLAERLGLPWQSQGMLFRCVSGVDDAAMDLAYQSVLELETGDGLVDQIIGQRFWRTYLKGRHPHAFERNASVYQQKAEALLDQQVAGSLSQADYERGMSELAHERKALLRQLTLDAMAGPS				NA	NA	NA	NA	NA
D1-36_01157	2841	yenC2		Toxin subunit YenC2	ATGACCCCCCAGGTTCATCGAAAGACGCCGGTCGTGGCGGTGTTCAACGGCTGGGCTGGGCCGGTACGGCGGGTGGATTACCTGCGCGGTTCGACCAGCGACGAAACCCAACGGCTGGTCACGGCCCAGGCATATGACCTCGCCGGACGCATCGTCGACCAATGGGACCCTCGCTTCCACGGCACGAAAACCGTCAACCTCCACAGCATTTACAGTCTGTCGGGCACACCGCTGCGCACTGAAAACATCGATGCTGGGCTGCGTTGCGAACTGCCTGGCCTGGCCGGCCAGCGCCTGCACAGCTGGGATGCCCGTGGCAGCGAGCAGCAAACCGAATACGACTCGCAATTGCGGCCCACGCTGATCCGCGAGCGCGGCCCGGACCAAGCCTGGGCCACGGTTGGCCGCCTGCGCTACGCCAGTCGTTCGACCGAAGACGCCCTGCACAATCGATGCGGTCAATTGGTGGAGCACTACGACACGGCCGGGCTGGTCACCGTTGACGACTTTTCGCTGGCAGGCTTGCCGCTGGATCAAGGGCAACGGTTCCTGGACACGCTGGAGCTACCCGACTGGCCGGACGATGAAGCAGGCCGCGAGCGTTTGCTGGAGCCTGCCCGCTACGACACACGCTGGCGCTACGACGCCGTGGGGGGAGCCCTGAACCAGACGGATGCCAAGGGGCATAAGCAAAGCATCGAGTTCGATGTGGCCGGCCAACCCAAGCGCGTGCATTTGCAATGGGCCGGCAGCCCGACTGAAGAGCTGATTGCTCATGAATTCCAACACAGTGCCGAGGGCCAGCGTCAAGCATATACAGCCGGTAACGGCAGCAAGACAACCTTTGCCTACGACCCGGCCGGCGGACATCTGATTGAGCTCAAGGCCACGAAAGGCAGCGATATCCACCAACACTTGAGTTACCTCTACGACCTCGTCGGCAATGTCACCTCCATTACCGATCACACCCATGTCGTGCGTTACCACGCCAACCAGCGCAGCGAAGGCGTTCGGACCTTTGTGTATGACAGCCTCTATCGCCTGGAAAGCGCCACGGGACTGGAAATGTCCGGGGCAGGTACGCAACCGCAATTGCCGGGGCTCGTCCCGCCCTCAGACCTGACCCTGCGAACTCCGTACACCCAACACTACGAGTATGACCACGGCGGCAATCTGGAGAAACTGATCCACAGCAGCGCCACGCCGGGGCAGGCGCACACATTGCGCCTGACCATGGACCCGTCAAGCAACCGCTGCCGGCAATGGCAAAAGGGCGACGCAGCTCCCGGCGACAATCTGGACTTCGATGCCGGTGGCAATCAACTGAGCCTGCCCTCCTCCAGACCACGCTTGACCTGGAACTGGCGCAATCAATTGCAGAAGGTGACCCAGGTCCACCGTCACAACGCCGAGGACGACGCCGAATACTACAGCTACGACGCTCAGGGCATTCGCATGCACAAGCGGCAGACCACCCAGGCCGCATCCGTCGTCCATGTGCGGGACGTGCGTTATTTGCCTGGCCTGGAAATCCGCATCCTGGATGACAGCGAAGAACTGCACGTCTGCACATTCCAAGGCCCTGCCTCCAACGTGCGCGGATTGTATTGGGTCAAAGGCCGGCCGGCTGAAATCGAACAAGGCCAACTGCGCTATTGCCTTGAAGATCATCTGGGCTCGTTGGTCATGGAACTGGACCAGGATGCGCAACTCATCAGCCATGAAGGTTACTACCCCTTCGGCGGCACGGCGTGGTGGGCGGCGGATTCCCAAGTGCAGGCCAGTTACAAGACCGTTCGTTATTCCGGCAAGGAGCGCGATGCCAGTGGGCTCTATTACTACGGGTTTCGTTATTACGCAGCATGGATGATGCGTTGGATCAACCCGGACCCGGCGGGGCCGGTGGATGGGTTGAATTTGTATGCGATGGTGGGGAATAACCCTGTTCGCTATAGCGACAACCTGGGGCTGATAAAAGGAGAGCAGCTCATGGACAAGATGACCCGGCGCACTCAGCACATCTTGAAAGGCGGAGATGCCCCGTTTGATGAGAACCAGATCAAGGGTTCAAATGCCAAAAAACTCAAGGCGCGGGAACAGCATTACCAAAAACATCCAGAGGCAGAGTTATTCGCTAAAACCAGTAGAGACATACTGAGTGCCCATGCTGGCTTTGAAATTCCTGGCAATAACCCTGACGAAACCCGTTACTTGACTGACCTCTACAACATTCCACTACCCGACTCATTGGAACTTATGTCCGAGGGGGTTCGGGTGTCCCGTGATCCCGTTCAGAACACCGAGGAAGATTTCCTGACCTCGGGGGGCATATTCCAGTTTGGAGATATCACCCGTTACGAAGCTTTCCTGGAAAACAAGCTCATTGAAACGTTCAGGGACGCCAAACGCCCCATGAAACTCTACACGGGATCAAACCCAACGCCGACGAACTTGACGGGGATTGAACACGAAGCCCCGGTGTTGCATCCCTTGGTCAAACAGCGGCTCGAAAATCACATCAGTGCGGGCAACAACTACCTTCCTAAGGTCGCAGGACTTCCCGGCCTGCATGCTGAAAGCATCGGCGCGAACGTCGCGCTGAATATCCAGCAGAACATCACCGGGGCGACGGATCCATCGCAGATAATTGTCGTCACCCAAAAGATTGCCGGCAGCAAGCGAGAACTGGGTCGAGGCTTTCCCGCCTGCTTCAACTGCACCAATATCCTTAGAGGCCCCTCGGACGCCGCAGACGATCTGCTGAAATTTGACATCGTGACCGAATGGGTGCAGACAACTCATTCACAGTGGAATGACCTGGCCAGGCCGTACATCAACTAG	MTPQVHRKTPVVAVFNGWAGPVRRVDYLRGSTSDETQRLVTAQAYDLAGRIVDQWDPRFHGTKTVNLHSIYSLSGTPLRTENIDAGLRCELPGLAGQRLHSWDARGSEQQTEYDSQLRPTLIRERGPDQAWATVGRLRYASRSTEDALHNRCGQLVEHYDTAGLVTVDDFSLAGLPLDQGQRFLDTLELPDWPDDEAGRERLLEPARYDTRWRYDAVGGALNQTDAKGHKQSIEFDVAGQPKRVHLQWAGSPTEELIAHEFQHSAEGQRQAYTAGNGSKTTFAYDPAGGHLIELKATKGSDIHQHLSYLYDLVGNVTSITDHTHVVRYHANQRSEGVRTFVYDSLYRLESATGLEMSGAGTQPQLPGLVPPSDLTLRTPYTQHYEYDHGGNLEKLIHSSATPGQAHTLRLTMDPSSNRCRQWQKGDAAPGDNLDFDAGGNQLSLPSSRPRLTWNWRNQLQKVTQVHRHNAEDDAEYYSYDAQGIRMHKRQTTQAASVVHVRDVRYLPGLEIRILDDSEELHVCTFQGPASNVRGLYWVKGRPAEIEQGQLRYCLEDHLGSLVMELDQDAQLISHEGYYPFGGTAWWAADSQVQASYKTVRYSGKERDASGLYYYGFRYYAAWMMRWINPDPAGPVDGLNLYAMVGNNPVRYSDNLGLIKGEQLMDKMTRRTQHILKGGDAPFDENQIKGSNAKKLKAREQHYQKHPEAELFAKTSRDILSAHAGFEIPGNNPDETRYLTDLYNIPLPDSLELMSEGVRVSRDPVQNTEEDFLTSGGIFQFGDITRYEAFLENKLIETFRDAKRPMKLYTGSNPTPTNLTGIEHEAPVLHPLVKQRLENHISAGNNYLPKVAGLPGLHAESIGANVALNIQQNITGATDPSQIIVVTQKIAGSKRELGRGFPACFNCTNILRGPSDAADDLLKFDIVTEWVQTTHSQWNDLARPYIN	PGPT0012380_147	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	INSECTICIDAL_COMPOUNDS	INSECTICIDAL-OTHER_INSECTICIDIAL_TOXINS,PGPT0012380-tccC-K11021	NA	NA
D1-36_01158	4422	yenB		Toxin subunit YenB	ATGGCCGAACAAGCCCCCCTTCAAATCATCACGCCAACAATCGCCGGTAGTGCGTCAATCGCCACCTTCGGCAACAGCCTCGGCCCGGTCGGCACGCGGGGCGCCGCTTCCTTCGAGTTGCCCCTGCCGATATCGAGTGCCCGTCACCTGACGCCGGCGCTGGCCCTGCATTACAACAGCCAGGGCGGCAACGGTGTGTTCGGCATCGGCATGCAACTGTCGATCTCTAGCATTCGGCGCAAGACCAGCAAAGGCGTCCCGCATTACAGCCAAGACGACGTCATGGTCGGCCCGGACGGGGTGGATCTTTGGCCGGATCTTGAAGCACAGACCAGCCGCAAAGTCCGCGACGATATTTTTGAGGTCGTGCGTTATTACCCCAGAATCGAAAGCACCTTCGACATCTATGAACTGTGTACGAGCTTCAACATCCCACCGTTTTGGCGAGTTCAGGGCAGCAACGGCCACGTGTATTGCTATGGGAAAAGCCCGAACTCGCGCATTGCCGACCCGCAAGTCCCCTCGCGTATCGCCGAGTGGCTGTTGCTGGAAGAGGTCAGCCCCCTGGGCGAACACATCTACTACGAGTACCAGGCCGACCCCTGCCCCTCGCAAGGCCCTCACGACTACCGTGCCCAGCGTTACCTGCGGCGGGTGTGCTACGGCAACGCCACGGCCAGCGAAACCTTGTATTGCTTCGAAGATGAAGACCCGGCGAACCTCCCCTGGCACTTCCACTTGCTGTTCGATTATGGCCAACGAGCCCTCGGTCTGGATGAAAAACCCGCTTGGTCGGCCCTGGACGAAAACGCCTGGCAACTGCGCAGCGACCCGTTGCACGTGTATCGATATGGTTTCGAGGTGGGCACGCGGCGCCTCTGCCAGCAGGTGTTGATGTTCCATCAGTTCCCCGCCGAAACCCACAACGAACCCGCGCTGGTGCGCCGGCTGCTGTTGGAATACACCAGCACCCCCCTGTGCTACAGCCTGTTGACCGCCGCTCATTACCAGCACTGGGACGCCAGGGATCGGGTGGAATACACGCCCCCCGTAGAACTCCAATACAACGCGTTCGAGCCGAACCTGATACCCAAGGTTTTTTTTGCCCTGGAGAACATGCCCGCCCTGGAGGACAGCCGACGCTACCAGTGCGTCGATCTCTACGGCGAAGGCATTCCCGGCTTTTTATGCCGCTACAGCAACGGTTGGTACTACCGCGAGCCCGAGCGCGCCCCCGGTGAGGATCCAGACGAAGTCGGTTACACCCCGTGGACACTTCTGCCAAACATTCCAATCGCCGCCGACAACACGCCGGTGATGCAACTGCTGACCGATCTATGCGGCGATGGCCGCCTCAATTGGGTCATCGCCCAACCCGGCATGAATGGTTTCTACACGCTCAACCCGGACCGCAGTTGGTCGACGTTCAACGACTTCAAGCGCTTCCCCACGGAGTTCCTGCACCCCGCCGCGCAATTGGGCGATTTGACCGGCGACGGCCTGCGCTCCCTGGCGATGGTCGGCCCCAAAAGCGTGCGGCTCTACGCCAACCTGCGCCAGGACGGGTTCGCCGCCGGCGTGGACGTTCCCCATGAACCGGACAGCACCCTGCCCTTGTTCAGCGATGTACGCAGCGAACTGGTGCTGTTCGCCAACATGCTGGGGAGCGACAGCAGCGAGCTGTGCCGTATCCGCTCCAATGAAATCAAGTGCTGGCCGAACCTGGGCCATGGGCGTTTCGGCAAGGGCTTTGTGATGAGCGCGCTGCCCTTCACCTACACCGAGTTCAACGCCGAACGGGTGCGGATCGCCGACCTGGACGGTTCCGGCGCGCCGGCGCTGATCTACCTGCGCAGCGACTGTTTCGAAATCTACTTGAACCATGGCGGCAATTGCCTTGAACAGACACCCGTGCGGGTGCCCTGGCCGCAAGGCATGCGCTACGACAACCTCTGCCAGGTCACCCTGGCCGATCTGCAAGGTTTGGGCTGCGCCAGCCTGCTCCTGAGTATTCCCCATCACAGCGCGGACATGAAACCGCGCCATTGGCGCTACGATTTTGTCGCCGCGCGGCCCTACCTGCTTAACGCCACCAACAACAACATGGGCTGCAACAGCACCCTCGCCCACCGCAGCAGCGCGCAGTTCTGGTTGGACGAAAAAGCTCAGCGCGCGGCGAAGGGCGAAGCGCTGGACTGCTACCTGCCCATGGCTTTGCCACTGGTGGCCCGGCAACAACAGGAGGACGAAATCACTGGAAATTGCCTGACCCAACGCTTCACCTACTACGAAGGCGACTACGACGGCTATCACCGTGAGTTCCGGGGATTTGGCCGGTTGTACCAGCTCGACAGCGAGTTGCCTTCGGTTGAGCGCGACAGCGGTTTCACCGCACCGGTGCTGGTCAAGACCTGGTTCCACACCGGTCGCACCGTCGACCAAACCCTGAAGGACTGTTTCGACGCCGACCCCGACGCGCCGCCCCTGGGCCGCACATTGCTGACCCGGCTCCACGAACAGGACAAGGCTGACGAAGTTATCTTTTCCGACCCGGACACCGCTCGGGACATGGCCTACGCCCTGGGCGGTCACGTACTGCGCAGCGAGACCCACGAGGGCGAGTCGCCCGACATGACCAAGCCCCAAACAGTGGCCCGGCGACGTTATTTACTGCGTTCCCCCCATGACCGCCAGAAGAGCCTTCAGGTACTGGAACTGGAAATGATCAGCCATCAATACGATGGTTTTATCAACGACCCCCAAACCCAGCACATCGTCAACCTCGGCTGGAACCGCTACGGTCAGCTGGAGCACGGCTTCGTCGTCCACTACGCGCGGCGCCTGAGCGCGGCGGACGATCCACCCTTCGGGGACGAAGACCAGGATATCTGGTGGCGCGACGCCCACGACGATCAGCAACAGGTGTATCACCTGACCGAAAGCCTGGCCGCCTATAAGCACTTTTTCGAGAAAGAAAGACCGCCGCGTCAACGGCTGGGCCTGCCCTGGCGCGCTCGGACCAATGGGTTCCAATTGCCAAAAGGCTCACTCCCCGCAGGGCTGAACCCGCAGCAGGTCAGCTACGAGTGTTTCCTCGAACACCACGAGAGCGAGCACTGGAACACGGCCCGCGTGCTGATCGCTCTCGAGGAGCAAACCTACTTGAGTGATGCCCCGTTCCAAGCCTTGCGCGGTCCGTTGGAAGTGGCCGAGTTCGACAAGCAGGCGCTGGAGGCCTACGACGTCGTGCCCGAACCGTTCGATATCCGTGAACAACTGGAAATGGTCGGCTACGAGCCGATGAGGCTGTTCCTGCCTGAAGACCCAGAAGAGGACGAGGCCCGGAATCTCTGGTCGAAGAAAGTCGGTTTCGCCACCTACCGGCCACTCGCAGGCTTCTTCCATATCAGCGCGTTGCAAGAAACCCAGAGTCATGGCCTGACAAGCACCGAATACGACTCTTTTCACTTGATGCCCATCACCGTCACTGTGCCGGACGGCTGCGCGACCCACGTCGAGTACGACTATCACTCGCTGTTGCCCTGCCGCATCATTGACGCCAACGACAACGTGCGCGAGGCGCTTTATGGTCCCTCCGGCGTGCCCTTGGGCGTCAGTTTCCATGGGACCGAGAACGGCATCCCCGCAGGTTTTTATCCCATCGATGGCTATGAGCCACCCGATGATTTGTCGCCCGGCCACGCCATCGAGGACCCCGAAGCCACCCTGGGTGATATCGCCAGCGCAGCGCGCATCGACAACCTGAGCTGGATGGGCGAGCTCGATTTGTCGCTGGTCCTGCCGGCGCAGCGCGACGAATGGATCAATGCCCGATATCTGCTGCCCAGCGGCCACATCCGAGCCTCGGCGCGGGTGCGCCTGGCCCGGCTTAAAACCCGCACCGCCGGCGAAGAACTGCTGTGGGCGCTCATCCAGGCCACCACCCAAGAGCCGGCCCACAGTGTCGTGCTCAGCGCCGATCGCTACCCGGACGACCCCTTGCAACAAATCCGCATCGCCCTGAGCGCCGTCGATGGATTCGGACGCGCTTTGCAAACCAAACAACTGGTGGAGCCCGGCGTCGCCTACGCCGTCGCCGAGAACGGCACGCTGCTGTTGGGCCCCGATGACAAACCGATACAGCACGAGGCCGACCCGCGCTGGCGCGTCAGCGAACGGGTCGAGTACAACAACAAGGGGCTGGTGACCCGTGTCTATCGCCCCTACTTCGCCGATGCCTGGCGCTACATCAAGGACGCCTCGCTGCGCGAGCACGGCTATCACGACCAGCAGTTCTATGACCCGATCGGACGCTTGGTCAAGGTCATCAATGCCAAGGGGCACGAGGCTTGGCATGTCTACCATCCGTGGTACCGGTGTGATCACGATTACAACGATACCGATCCGGGGCCAGCCCAATGA	MAEQAPLQIITPTIAGSASIATFGNSLGPVGTRGAASFELPLPISSARHLTPALALHYNSQGGNGVFGIGMQLSISSIRRKTSKGVPHYSQDDVMVGPDGVDLWPDLEAQTSRKVRDDIFEVVRYYPRIESTFDIYELCTSFNIPPFWRVQGSNGHVYCYGKSPNSRIADPQVPSRIAEWLLLEEVSPLGEHIYYEYQADPCPSQGPHDYRAQRYLRRVCYGNATASETLYCFEDEDPANLPWHFHLLFDYGQRALGLDEKPAWSALDENAWQLRSDPLHVYRYGFEVGTRRLCQQVLMFHQFPAETHNEPALVRRLLLEYTSTPLCYSLLTAAHYQHWDARDRVEYTPPVELQYNAFEPNLIPKVFFALENMPALEDSRRYQCVDLYGEGIPGFLCRYSNGWYYREPERAPGEDPDEVGYTPWTLLPNIPIAADNTPVMQLLTDLCGDGRLNWVIAQPGMNGFYTLNPDRSWSTFNDFKRFPTEFLHPAAQLGDLTGDGLRSLAMVGPKSVRLYANLRQDGFAAGVDVPHEPDSTLPLFSDVRSELVLFANMLGSDSSELCRIRSNEIKCWPNLGHGRFGKGFVMSALPFTYTEFNAERVRIADLDGSGAPALIYLRSDCFEIYLNHGGNCLEQTPVRVPWPQGMRYDNLCQVTLADLQGLGCASLLLSIPHHSADMKPRHWRYDFVAARPYLLNATNNNMGCNSTLAHRSSAQFWLDEKAQRAAKGEALDCYLPMALPLVARQQQEDEITGNCLTQRFTYYEGDYDGYHREFRGFGRLYQLDSELPSVERDSGFTAPVLVKTWFHTGRTVDQTLKDCFDADPDAPPLGRTLLTRLHEQDKADEVIFSDPDTARDMAYALGGHVLRSETHEGESPDMTKPQTVARRRYLLRSPHDRQKSLQVLELEMISHQYDGFINDPQTQHIVNLGWNRYGQLEHGFVVHYARRLSAADDPPFGDEDQDIWWRDAHDDQQQVYHLTESLAAYKHFFEKERPPRQRLGLPWRARTNGFQLPKGSLPAGLNPQQVSYECFLEHHESEHWNTARVLIALEEQTYLSDAPFQALRGPLEVAEFDKQALEAYDVVPEPFDIREQLEMVGYEPMRLFLPEDPEEDEARNLWSKKVGFATYRPLAGFFHISALQETQSHGLTSTEYDSFHLMPITVTVPDGCATHVEYDYHSLLPCRIIDANDNVREALYGPSGVPLGVSFHGTENGIPAGFYPIDGYEPPDDLSPGHAIEDPEATLGDIASAARIDNLSWMGELDLSLVLPAQRDEWINARYLLPSGHIRASARVRLARLKTRTAGEELLWALIQATTQEPAHSVVLSADRYPDDPLQQIRIALSAVDGFGRALQTKQLVEPGVAYAVAENGTLLLGPDDKPIQHEADPRWRVSERVEYNNKGLVTRVYRPYFADAWRYIKDASLREHGYHDQQFYDPIGRLVKVINAKGHEAWHVYHPWYRCDHDYNDTDPGPAQ	PGPT0027804_70	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-OTHER_BACTERIAL_DEFENSE_SYSTEMS	CE-BACTERIAL_FITNESS-BACTERIAL_TOXINS,PGPT0027804-spvB|eat1-K15366	NA	NA
D1-36_01159	1524	fumA	COG1838	Fumarate hydratase class I, aerobic	ATGACCGTGATCAAGCAAGACGACCTGATTCAGAGCGTTGCCGACGCCCTGCAGTTCATTTCCTATTACCACCCCGTGGATTTCATCCAGGCGATGCACGAGGCCTACCTGCGCGAAGAATCGCCGGCGGCCCGTGACTCCATGGCGCAGATCCTGATCAACTCGCGCATGTGCGCCACCGGCCACCGGCCGATCTGCCAGGACACCGGCATCGTGACCGTGTTCGTGCGCGTGGGCATGGACGTGCGTTGGGATGGCGCGACCATGAGCCTGGACGACATGATCAACGAGGGCGTGCGTCGCGCCTACAACCTGCCGGAAAACGTCCTGCGCGCATCGATCCTCGCCGACCCGGCAGGCGCGCGCAAAAACACCAAGGACAACACCCCGGCGGTCATTCACTACTCCATCGTCCCGGGCAACACCGTGGAAGTGGACGTGGCGGCCAAGGGCGGCGGTTCAGAGAACAAGTCGAAGATGGCCATGCTCAACCCGTCCGACTCCATCGTCGACTGGGTCCTGAAGACCGTTCCGACCATGGGCGCCGGCTGGTGCCCACCGGGCATGCTCGGCATCGGCATCGGCGGTACCGCCGAGAAAGCCGCGGTGATGGCCAAGGAAGTGTTGATGGAATCCATCGACATCCACGAGCTCAAGGCCCGCGGCCCGCAAAACCGCATCGAAGAGATGCGCCTGGAGCTGTTCGAGAAGGTCAACCAGTTGGGCATCGGCGCCCAGGGCCTCGGTGGCCTGACCACCGTGCTCGACGTGAAGATCATGGACTACCCGACCCACGCCGCCTCCCTGCCGGTGTGCATGATCCCCAACTGCGCCGCCACCCGCCACGCCCACTTCGTGCTGGACGGCACTGGCCCGGCCTCGCTGGAAGCGCCACCGTTGGACGCCTACCCGGAAATCGTCTGGGAAGCCGGCCCGTCGGCACGTCGCGTGAACCTCGACACCCTGACCCCGGAAGACGTGCAAAGCTGGAAACCGGGCGAAACCGTGCTGCTCAACGGCAAGATGCTCACCGGTCGCGATGCGGCGCACAAGCGCATGGTCGAGATGCTGAACAAGGGTGAAACCCTGCCGGTGGACCTCAAGGGGCGCTTCATCTACTACGTCGGCCCGGTCGATCCGGTGGGCGACGAAGTGGTTGGCCCGGCCGGCCCGACCACGGCCACGCGGATGGACAAGTTCACCCGCCAGATCCTCGAACAAACCGGCCTGCTGGGCATGATCGGCAAATCCGAGCGCGGCCCGACCGCCATCGAAGCGATCAAGGACAACAAGGCCGTCTACCTGATGGCCGTTGGCGGTGCCGCTTACCTGGTGGCCCAGGCGATCAAGAAATCCCAAGTCCTGGCCTTCGCCGAACTGGGGATGGAAGCGATCTACGAGTTCGAGGTCAAGGACATGCCGGTGACTGTCGCCGTGGACAGCAAAGGCGAGTCGGTACACATCACAGGCCCGGCGATCTGGCAGCAGAAGATCAGCGAAAGCCTGGCGGTGGAAGTGCAGTAA	MTVIKQDDLIQSVADALQFISYYHPVDFIQAMHEAYLREESPAARDSMAQILINSRMCATGHRPICQDTGIVTVFVRVGMDVRWDGATMSLDDMINEGVRRAYNLPENVLRASILADPAGARKNTKDNTPAVIHYSIVPGNTVEVDVAAKGGGSENKSKMAMLNPSDSIVDWVLKTVPTMGAGWCPPGMLGIGIGGTAEKAAVMAKEVLMESIDIHELKARGPQNRIEEMRLELFEKVNQLGIGAQGLGGLTTVLDVKIMDYPTHAASLPVCMIPNCAATRHAHFVLDGTGPASLEAPPLDAYPEIVWEAGPSARRVNLDTLTPEDVQSWKPGETVLLNGKMLTGRDAAHKRMVEMLNKGETLPVDLKGRFIYYVGPVDPVGDEVVGPAGPTTATRMDKFTRQILEQTGLLGMIGKSERGPTAIEAIKDNKAVYLMAVGGAAYLVAQAIKKSQVLAFAELGMEAIYEFEVKDMPVTVAVDSKGESVHITGPAIWQQKISESLAVEVQ	PGPT0001635_1773	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001635-fumA|fumB-K01676	NA	NA
D1-36_01160	1122			hypothetical protein	ATGGTGAGTCACCGATTGACCCATAACGCCATTCAACGTCTTTTGCTCAAACGCTTCGCCCTGGCCGCCACGACTTATGCGCTGGCACTGGTGTTGCTGTGGTTGGCGTTTTTCAGTGGCCATTACCTCGACTCGTTGCGTGGCGCCATCATCGGCACGCTGTTGGTGGTGCTGTGCCAGGCTGGTTTGTTCGCGCTGTTCATCACCGATCGCAACCTGCGCTTCGCCGACCCCAGCCTGACGGAAATACAGGTCTGGATCGGCCTGGGCTGGCAGACCTGGATGATGGCGCACCTGGACCAGGCCCGCGGCGTGTTCCTGGTGTTCTATGTGCTGATCCTCTTGTTCGGGCTGTTCCACCTGACGCGGCGGGCCTTTGTGCGCTGCGCCACGCTGGTGTTCATCAGCTTTACCGGCATCACGCTGTGGGACGGTTACTTCTTTCGGCTGCCCGATCCGACGCTGGCCGGTCTGCAGGTGTCCGTGCTGTTCATCGTGCTGGTGTGGCTGGTGTTGTATGCCCGCTATGTCCAGACCTCACGCCAACGCATGCGCCAGCGCCGGTTTGCCTTGCAGGCGCACCAGGATACCCTGCGCGGCATGATGCGCCAGCTCGAAGACCTGGTCGCCACCGACGAACTGACCGGGCTGTTCAATCGCCGGCATTTCCTGCGCCTGGCGAGCCGCGAACTCAATACCCTCAGGCCCGGCGTCGCCCATGGCCTGGCCTTGATCGACCTGGACCATTTCAAGCGCATCAACGATTTGCACGGCCATGCGGCAGGCGACCAGGTGCTCCAGGCGTTTGCCGGTGTCGCCACGGCGTGCCTGCGTGAAGGCGACGTATTGGCCCGCTACGGTGGCGAAGAATTCGTAATGTTGCTGCCCGCCTGCGACCCCGCGCGCCTGACGGCCTGTTGCGAGCGCTTGCGGCTGGCGTTCACCCAAGTGGAATTGACCGACCTGCGGGTGGGCACTCTCAGCCTGTCTGTGGGCATGACGATGCTGGAAATGGGCGATGACCTGGACAGCGCCTTGCAGCGCGCCGACCAGGCCTTGTACCGTGCCAAGCGAGACGGCCGCAACCGTTGTGCCGCCGCCTGGGAGAACGTCGATGCCTGA	MVSHRLTHNAIQRLLLKRFALAATTYALALVLLWLAFFSGHYLDSLRGAIIGTLLVVLCQAGLFALFITDRNLRFADPSLTEIQVWIGLGWQTWMMAHLDQARGVFLVFYVLILLFGLFHLTRRAFVRCATLVFISFTGITLWDGYFFRLPDPTLAGLQVSVLFIVLVWLVLYARYVQTSRQRMRQRRFALQAHQDTLRGMMRQLEDLVATDELTGLFNRRHFLRLASRELNTLRPGVAHGLALIDLDHFKRINDLHGHAAGDQVLQAFAGVATACLREGDVLARYGGEEFVMLLPACDPARLTACCERLRLAFTQVELTDLRVGTLSLSVGMTMLEMGDDLDSALQRADQALYRAKRDGRNRCAAAWENVDA	PGPT0025990_368	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,PGPT0025990-sadC-K21019	NA	NA
D1-36_01161	948	nagAa		Naphthalene 1,2-dioxygenase/salicylate 5-hydroxylase systems, ferredoxin--NAD(P)(+), reductase component	ATGCCTGAGTTGAAAGTCGCCGGCCGGCAATGGTCGGTGGCGGCGGGCAGTAACCTGCTGGATGCGTTGAACCAGGCAGGCGTGGCCGTGCCCTACAGTTGCCGCGCCGGCAGTTGCCATGCGTGCCTGGTGCAATGCCTGAGCGGCGACGTGCGCGACAGTCGCCCCGATGCCCTGGCCCCGGCGCAGCGTGATCAAGGCTGGCGACTGGCGTGCCAATGCCAGGTGGTGGAGGACGTGCAAATCCACACCTTCGACCCACAACGCGACGGCCAAGCCGCCAAAGTGGCGGCGGTGGATTGGCTGGGCTCCGACGTGCTGCGCCTGCGCATTACCCCGGAGCGACCGCTGCGCTATCGCGCCGGACAACACCTGGTGCTGTGGGCTGGTGACGTCGCCCGGCCATATTCCCTGGCGAGCCTGCCCGAGGAAGACCGCTTCCTGGAGTTTCACCTCGATTGCCGCGCGCCCGGGCAATTCATCGACGCGGCGCGACAATTGAACAGTGGTGACCCGATCCGTCTCGGGGAACTGCGCGGCGGCGCGTTGCACTACGACCCCGACTGGCATGAAAAACCCCTATGGCTGCTGGCCTCCGGCACGGGCTTGGGGCCGCTGTTCGGCATCTTGCGCGAAGCGTTGCGCCAACAGCATCGGGGCGCGATCCGGTTGGTTCATGTGGCCCGCGATGCCGCCGGGCATTATCTGGACAAACCCCTGGCGGCACTGGCGGCCAAGCATCCGAACCTGAGCATCGAGCTGTTGACCGCAGCCGAGGCGCCAGCGACGCTCGCACAGCTGCGCCTGGCGTCGCGCCAGACCCAGGCGTTGGTTTGCGGCCATCCGGATTGGGTCGAGGCGTTTGCCAAGCGCTTGTACCTGGCGGGGTTGCCGAGGAATCAATTGTTGGCGGATGTGTTTGTTACCCGTGACAATGGCGGCGTCTGA	MPELKVAGRQWSVAAGSNLLDALNQAGVAVPYSCRAGSCHACLVQCLSGDVRDSRPDALAPAQRDQGWRLACQCQVVEDVQIHTFDPQRDGQAAKVAAVDWLGSDVLRLRITPERPLRYRAGQHLVLWAGDVARPYSLASLPEEDRFLEFHLDCRAPGQFIDAARQLNSGDPIRLGELRGGALHYDPDWHEKPLWLLASGTGLGPLFGILREALRQQHRGAIRLVHVARDAAGHYLDKPLAALAAKHPNLSIELLTAAEAPATLAQLRLASRQTQALVCGHPDWVEAFAKRLYLAGLPRNQLLADVFVTRDNGGV	PGPT0022595_853	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-PARATOSE|TRYLOSE|ABEQUOSE|ASCARYLOSE_MODIFICATION,PGPT0022595-ascD|ddhD|rfbI-K00523	NA	NA
D1-36_01162	1452	pykA	COG0469	Pyruvate kinase II	ATGTCCGTCCGTCGCACCAAAATCGTCGCTACCCTTGGCCCGGCCAGTAACTCGCCGGAAGTTCTCGAACAGCTGATTCTGGCTGGCCTGGACGTTGCCCGTCTGAACTTCTCCCACGGCACCCCCGACGAGCACAAGGCTCGCGCCAAGCTGGTGCGTGACCTGGCCGCCAAGCACGGCCGTTTCGTTGCCCTGCTGGGCGACTTGCAAGGCCCGAAGATCCGTATCGCCAAATTCGCCAACAAGCGCATCGAGCTGAAGATAGGTGACAAATTCACCTTCTCCACCAGCCATCCGCTGACCGAAGGCAACCAGCAGGTGGTCGGCATCGACTACCCGGACCTGGTCAAGGATTGCGGCGTGGGCGACGAACTGCTGCTCGACGACGGGCGCGTGGTGATGCGCGTCGAGACCGCCACCGCCACCGAACTGAACTGCGTCGTGACCATCGGTGGCCCGCTGTCGGACCACAAAGGCATCAACCGTCGCGGCGGCGGCCTGACGGCACCGGCCCTGACCGATAAAGACAAGGCCGACATCAAGCTGGCCGCGGAAATGGAAGTCGACTACCTCGCCGTGTCCTTCCCCCGTGACGCGGCGGACATGGAATACGCCCGTCAACTGCGCGACGAAGCCGGCGGCACCGCCTGGCTGGTGGCGAAGATCGAACGCGCCGAAGCCGTGGCCGACGACGAGACGCTGGACGGCCTGATCAAGGCGTCCGACGCCGTAATGGTGGCCCGTGGCGACCTGGGCGTGGAGATCGGCGACGCCGAGCTGGTGGGCATCCAGAAGAAGATCATCCTGCACGCACGCCGCCACAACAAAGCGGTGATCGTCGCGACCCAGATGATGGAGTCGATGATCCAGAACCCGATGCCGACCCGCGCCGAAGTGTCCGACGTAGCCAACGCCGTGCTGGACTACACCGACGCGGTGATGCTGTCGGCCGAAAGCGCCGCCGGCCTCTACCCGCTCGAAGCGGTGCAGGCCATGGCGCGTATCTGCATCGGCGCCGAGAAGCACCCGACCGGTAAGACCTCCAGCCACCGCATCGGCAAGGAATTCACCCGCTGCGACGAAAGCATCGCCCTGGCGACCATGTACACGGCCAACCACTTCCCGGGCGTCAAGGCGATCATCGCCCTCACCGAAAGTGGCTACACGCCGTTGATCATGTCGCGCATCCGCTCCTCGGTGCCGATCTACGCCTTCACCCCGCACCGCGAAGCCCAGGCGCGCGCCGCGATGTTCCGTGGCGTGTACACCATTCCGTTCGACCCGGCTTCGCTGGAGCCGCACGAAGTCAGCCAGAAAGCCATCGACGAACTGACCAAACGCGGCGTCGTGGAAAAAGGCGACTGGGTCATCCTAACCAAGGGTGACAGCTACCACACCACCGGCGGCACCAACGGGATGAAGATCCTGCACGTTGGCGACCCGATGGTTTGA	MSVRRTKIVATLGPASNSPEVLEQLILAGLDVARLNFSHGTPDEHKARAKLVRDLAAKHGRFVALLGDLQGPKIRIAKFANKRIELKIGDKFTFSTSHPLTEGNQQVVGIDYPDLVKDCGVGDELLLDDGRVVMRVETATATELNCVVTIGGPLSDHKGINRRGGGLTAPALTDKDKADIKLAAEMEVDYLAVSFPRDAADMEYARQLRDEAGGTAWLVAKIERAEAVADDETLDGLIKASDAVMVARGDLGVEIGDAELVGIQKKIILHARRHNKAVIVATQMMESMIQNPMPTRAEVSDVANAVLDYTDAVMLSAESAAGLYPLEAVQAMARICIGAEKHPTGKTSSHRIGKEFTRCDESIALATMYTANHFPGVKAIIALTESGYTPLIMSRIRSSVPIYAFTPHREAQARAAMFRGVYTIPFDPASLEPHEVSQKAIDELTKRGVVEKGDWVILTKGDSYHTTGGTNGMKILHVGDPMV	PGPT0002020_3892	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0002020-pyk-K00873	NA	NA
D1-36_01163	375			hypothetical protein	ATGCGATTCGTGCTTTTTATTGCCCTGGCCCTGAGTATCACGGGCTGCACCCGTTGGTCGATGAACCACCACATGAACCTGGCCTACAAGGCCTATGAGCGGGGCAACTGCGAGCAGGTGATGCTCGAGCTGTCCAAAGTCGACCGCGCCAGCCGTGCCCGTCGCTACATGCAGCCGGAAGTCTCGATGATGCGCGGCCAGTGCCTGGAGCGGCAGAAGCTCTACGTCGACGCGGCGCAAACCTACCAGTTCATCCTCACCCAATACCCCAACAGCGAGTACGCCTACCGCGCCCGCGCACGGCTCGAAACCCTGCAGAGCCTGGGTCATTACCCCACCCGCAGCGCCTCGGCGATCCGTCCCACGTCGTACTGA	MRFVLFIALALSITGCTRWSMNHHMNLAYKAYERGNCEQVMLELSKVDRASRARRYMQPEVSMMRGQCLERQKLYVDAAQTYQFILTQYPNSEYAYRARARLETLQSLGHYPTRSASAIRPTSY				NA	NA	NA	NA	NA
D1-36_01164	360			hypothetical protein	ATGTACAAAGAGCGGCAGATTGCACGACATCAGCTGGCGTATTTCCTTGAGGTGTTCAACGGCATAAACGGCAAACCCATTGGTTTTTTGGGCAACGTTTCGGAAAACGGCCTGATGCTCATCAGCCATTTGCCCTTGATGATCGGTGCGGATTTCGACCTGCGCCTGAAACTGCCCGCCGAGGAAGGACCGCAGCAGCAGATCCGTTTGAAAGCCCATTGCCTGTGGTGCCGCGAGGACGTGACACCGCAACATTTCGACGCGGGCTTCAGCCTGCAGTGGGCACCGCCTGAATACGGACAACTGGTGAGCGCATTGCGGCAGTACTTCAGCTTCTATCAGCTACCAGAATCGGCGTGA	MYKERQIARHQLAYFLEVFNGINGKPIGFLGNVSENGLMLISHLPLMIGADFDLRLKLPAEEGPQQQIRLKAHCLWCREDVTPQHFDAGFSLQWAPPEYGQLVSALRQYFSFYQLPESA				NA	NA	NA	NA	NA
D1-36_01165	357			hypothetical protein	ATGATCAAACCAACCCCCAATCCCCCAAAACCCGCTCCCCGTAAAACCGTCGACGAGCAAAAGCTCGACAAAGCCGCGAAAAAAGCCCTCGACCACTACCTGAAACCCAACCCCACCCAACCAGCCAAAAACCAACGACAACTGGACTGTTTCATCGTCGCCCCCGATGCCGACCCGGAAGGCTTGCTGGTACACAGCTACGAAACCTTCTGCTCGGTGAGCACGCTGATTCTGGATTTATCGGAAGAACTGGAAGGCGCCCCGCGCAACCTGGCGTTGGCGATTCATCAGATGGGCGAGATGGGGGTGTTGTTGCTGGAGAAGTTGTTGGATGGCGAGGCGAAGGTGCAGCGCTAA	MIKPTPNPPKPAPRKTVDEQKLDKAAKKALDHYLKPNPTQPAKNQRQLDCFIVAPDADPEGLLVHSYETFCSVSTLILDLSEELEGAPRNLALAIHQMGEMGVLLLEKLLDGEAKVQR				NA	NA	NA	NA	NA
D1-36_01167	1332			hypothetical protein	ATGAAACCCTCCCGCCTGCTGCTCGCCTGGCTCGCGATCCTGCTGACCGTCGGCATTGTGCTGGGTGCACTGCGCGCGCTGGGCATCGCGGTGCCCTCGACTTTGCTGTCGATCCACTGGGGCTTACTGTTGGCGCTGCTGGCCCTGTCGATACTCGACGCGGTGCGCGTCCGGCGCCTGCCCTCGCCCCGAGTCCAACGCCATTTGCCCGGCAGCCTGGCCCTGGGCCGATGGAGCGAAGTGCGCCTGGACATCCGCCACGACCTGCCCCAGCCATTGGAAATCGAGATTTTCGATCACGTGCCCAATGGCCTGGACTTCGAACAACTGCCTGTTTCAGCACAACTACAACCCGGCCGGCTCACCCAGCTCGGCTACCGCGTCCGCCCGCTCAAGCGCGGGCACTTCACCTTCGAACATTGCGAAATCAACCTGCCCAGCCCAATGGGCCTGTGGAGCGACAAACGCCTGATCGACGCGCTCGACAGCACCCGCGTCTACCCGGACTTCGCCCGTCTGTACGACGGCGAACTGCTGGCGGTGGACAACTGGCTCAGCCACCTCGGCATCCGCCAGCGGCAGCGGCGCGGCCAGGGCCAGGAATTCCATCAATTGCGCGAATTCCGCGAAGGCGACAGCCTGCGCCAGATCGACTGGAAAGCCACCGCCCGCCACCGCACGCCCATCGCCCGGGAATACGAAGACGAACGCGACCAGCAAATCATCTTCATGCTCGACTGCGGCCGGCGCATGCGCAGCCAGGACGGCGAGTTGTCGCATTTCGATCACGCCCTCAACGCCTGCCTGCTGCTCAGCTACACCGCCCTGCGCCAGGGCGATGCGGTGGGCCTGAGCACTTTCGCCAGCGAACAACCCCGCTACCTCGCCCCGGTCAAGGGCAGCGATCAACTCAACGTCCTGCTCAATAGCGTCTACGACCTGGACAGCAGCCAACACCCCGCCGACTACCAGGCCGCCGTCACCCAACTGCTCGCCCGGCAGAAACGCCGGGCTTTGGTAGTGCTGGTGACCAACCTGCGGGACGAGGACGACGAAGAATTGCTGGCCGCCGTCAAACGCCTGGGCCAAAGCCATCGCGTGCTGGTGGCAAGCCTGCGCGAAGAAGCCCTCGACCGCCTGCGCCAAGCGCCGGTGCACACCGTGTCTGACGCGCTGGCTTATTGCGGGACGGTGGAATATTTGAGTGCGCGGGCGACGTTGCATGAACGGTTGAGTGCCCATGGGATGGCGGTGTTGCAAGCTCGGCCCGGGGAGTTGGGGGCCGAGCTGGTGACGTTGTATCTGGGGTGGAAGAAGGGTGGGGATTTGTAG	MKPSRLLLAWLAILLTVGIVLGALRALGIAVPSTLLSIHWGLLLALLALSILDAVRVRRLPSPRVQRHLPGSLALGRWSEVRLDIRHDLPQPLEIEIFDHVPNGLDFEQLPVSAQLQPGRLTQLGYRVRPLKRGHFTFEHCEINLPSPMGLWSDKRLIDALDSTRVYPDFARLYDGELLAVDNWLSHLGIRQRQRRGQGQEFHQLREFREGDSLRQIDWKATARHRTPIAREYEDERDQQIIFMLDCGRRMRSQDGELSHFDHALNACLLLSYTALRQGDAVGLSTFASEQPRYLAPVKGSDQLNVLLNSVYDLDSSQHPADYQAAVTQLLARQKRRALVVLVTNLRDEDDEELLAAVKRLGQSHRVLVASLREEALDRLRQAPVHTVSDALAYCGTVEYLSARATLHERLSAHGMAVLQARPGELGAELVTLYLGWKKGGDL				NA	NA	NA	NA	NA
D1-36_01168	1008			hypothetical protein	TTGACGACTGAACAGAACGAGCCCTCAGACAGCCAGGCCCACGCCGCCCAGCAACGCCAGCGCGCCAGTCAACTGGCCCAGGCGATCCGCACCGAGCTGCATAAGGCCGTGGTCGGCCAGGCAGCCGTGATCGATGATGTGCTCACGGCGCTGATCGCCGGCGGTCATGTCCTGCTCGAAGGCGTTCCCGGGCTGGGCAAGACGTTGCTGGTGCGCGCCCTGGCCCGCTGTTTTGGCGGGGAGTTCGCGCGTATCCAGTTCACCCCGGACTTGATGCCCAGCGACGTCACCGGACATGCGGTGTACGACTTGCAGAGCGAGCAGTTCAAGTTGCGCAAGGGGCCGGTGTTCACCCACCTGCTGCTCGCCGACGAAATCAACCGCGCACCGGCCAAGACCCAGGCGGCGTTGCTCGAAGCCATGCAGGAGCGCCAGGTCACCCTCGAAGGCCGCGCGCTGCCGATCGCCCAGCCATTCATGGTGCTCGCGACCCAGAACCCGATCGAACAGGAAGGCACCTACCCGTTGCCGGAGGCCGAGCTCGACCGTTTCATGCTCAAGGTGCGCATGGACTACCCCGACGCCGATCAGGAATTGAACATGGTGCGCCAGGTCAGCCGCTCGACCCGCGCCGACATGCTCGACGTTCAGCCGTTGCGCACGGTGTTGCAAGCCAAGGACGTGCAAGCGCTGCAACGCATCGCCAGCGAGCTGCCGATGGACGACCAGGTGCTCGACTACGCCGTGCGCCTGGCCCGCGCCACCCGCACCTGGCCGGGCCTGACCCTGGGGGCCGGGCCTCGGGCTTCGATTGCCCTGGTGCGTTGCGCCCGCGCGCGCGCGATGTTGCGCGGCGGCGAATTCGTGGTGCCGGACGACATCAAGGGCTGCGCCCTGGCCGTGCTGCGCCACCGCGTACGGCTGGCGCCGGAGCTGGACATCGAAGGGCTTTCGGTGGACCAGGTGCTGGGGCAGTTGCTCGATCAAGTGTCGGCGCCAAGGTTGTGA	MTTEQNEPSDSQAHAAQQRQRASQLAQAIRTELHKAVVGQAAVIDDVLTALIAGGHVLLEGVPGLGKTLLVRALARCFGGEFARIQFTPDLMPSDVTGHAVYDLQSEQFKLRKGPVFTHLLLADEINRAPAKTQAALLEAMQERQVTLEGRALPIAQPFMVLATQNPIEQEGTYPLPEAELDRFMLKVRMDYPDADQELNMVRQVSRSTRADMLDVQPLRTVLQAKDVQALQRIASELPMDDQVLDYAVRLARATRTWPGLTLGAGPRASIALVRCARARAMLRGGEFVVPDDIKGCALAVLRHRVRLAPELDIEGLSVDQVLGQLLDQVSAPRL				NA	NA	NA	NA	NA
D1-36_01169	1164			hypothetical protein	ATGAGCCAGCGCACGGGGTGGGTGATCGGCGCAGTCGGTGCCGCGTTGACCTGTGCGTTGGCGGTGTACCTGTACCTCAAGGCCGTGCCCTATCAGGAAACCATCGAGCACGGCCCCTCCCCCGAAGCCCAGGCCAACCCGTACCTGGCCGCCGAACGATTCTTGCGCCAGCAAGGCATCAATGTTGAACACGCCAACAGCCTGGACGTGCTGCCCACGCTCGAACCGCACCAACGCAGCCTGTTGCTGTTGGGCGAACGCAGCAACATGACGCCACGGGACGTCGACCAGTTGATGAACTGGACCCGCGCCGGCGGGCGCCTGCTGTTCGTCGCCGAGGCCTTGTGGGACGACAGCACGAACAGCAGCGGCGACCTGCTGCTGGACCGCGTGCGCCTGCGCCAACTTTTGAGCAAGGACCTCAAGGCACCGGAGCCGGAGCTGATCAAGGATCCCTACCCCGAATTGACCAAACTGTACCTGGAAGACGAAGAGGCGCCGGCCTACATCGGCTTCGACACCGACTTTCACCTCGAAGACCCGCTGAACCTCGCCCAGGCCTGGGCCAACAGCGCGGCGGCGACTCACCTGATGCAACTGAACCACGGTCTGGGCACGATCACCGTGCTGACCGACGCCGAGCTGTGGAAGAACGACCAGATCGACCAGTACGACAACGCCTGGCTGCTCTGGTACCTGAGCGCCGATACCGACGTCACGCTGCTGTTCAATACCGACCACGACAACCTGCTGACCCTGCTGCTGCGCTACTTCCCTCAGGCCATCGTGGCGCTGCTGGCCTTGATCGCCCTTTGGCTGTGGCGGTCGGCGGTGCGCCATGGCCCGCTGCAACAACCGGCGCCCAAGGCGCGACGCCAACTGCAAGAACACCTGCAAGCCAGCGCCGCCTTCCAGTTGCGCCACAACGGCCAGCAACACCTGTTGCACAGCCTGCAACAGGACGTGCTGCGCCGGGCGCGCCAGCTTCATCCGGGTTTCGAACAACTGGTGGTCGCCGAACAATGGCAAGTGCTAGCACGTCTGACGCGCCAACCCACGCGAACCATCAGCCAGGCCCTCAGCCCCCGGCCGAAACGACGCCTGTCCAGCGCCGACTTCTGCCGTCAGGTCGGCCTTTTGCAAACCCTTAGGAATGCCTTATAA	MSQRTGWVIGAVGAALTCALAVYLYLKAVPYQETIEHGPSPEAQANPYLAAERFLRQQGINVEHANSLDVLPTLEPHQRSLLLLGERSNMTPRDVDQLMNWTRAGGRLLFVAEALWDDSTNSSGDLLLDRVRLRQLLSKDLKAPEPELIKDPYPELTKLYLEDEEAPAYIGFDTDFHLEDPLNLAQAWANSAAATHLMQLNHGLGTITVLTDAELWKNDQIDQYDNAWLLWYLSADTDVTLLFNTDHDNLLTLLLRYFPQAIVALLALIALWLWRSAVRHGPLQQPAPKARRQLQEHLQASAAFQLRHNGQQHLLHSLQQDVLRRARQLHPGFEQLVVAEQWQVLARLTRQPTRTISQALSPRPKRRLSSADFCRQVGLLQTLRNAL				NA	NA	NA	NA	NA
D1-36_01170	1536			hypothetical protein	ATGCGCCTGAGTGACGTCACGGTAGCGATCCGCCCACGCACCACCTGGGAAGCCATGGACCTCGGCGTACTGATGACCCAGCAGCACCGGCGGCTGCTGATGGCCAGCTGGGCCATCGTCACACTGCCGGTGTATGCGCTACTGACCTTGTTGCTGTGGGACTCGCCCTCCTTGGTGGTGTTTATATTCTGGTGGCTGAAACCGGCCTTCGAACGCCTGCCCCTGTACATCTTGTCCAAGGCGCTGTTTGGCGAGACGCCGACCTTGAAACAGGCCTTGCGCCAATGGCCGACGCTGCTCAAGCCACAATTGCTGGCCAGCCTGACCTGGCGCCGGCTGAGCCTGAGTCGCAGCTTCCTGATGCCCGTCGTACAACTCGAAGGGCTCGCCGGCGAGGCACGAGAGCAGCGCTTGCGCGTGCTGCTGCAACGCAACGGCGGCGCCGCGCAATGGTTGACCATCCTCGGCGTGCACCTGGAGACCGTCTTGTGGTTCGGCCTGATGGCCTTGTTCTATCTATTCGTGCCGCAACAAGTCGAACTGGAATGGGACTGGCAAACCCTGATCGCCGTCGCCGAACACGATTGGCTGTGGCTCGAACACCTGCTCAATGTCCTCTATCCGCTGCTGCTGATTGTCTGGGAGCCGATCTACGTCGCCTGCGGCTTCAGCCTCTACCTGAATCGACGCACCCTGCTGGAAGCCTGGGACATCGAGCTGGTGTTCCGCCGCCTGCGCCAACGCCTGGGCACCGTAGCGCCTGCCCTGGCGCTGCTCGCCCTGACCCTCCTGCCGCTGGCGCCACCCGCATGGGCCGATGACAACAGCAACGCACCCCAGAGCCCTCGCCTGCTCAACCAACCCGTCACCAGCCAAGCCTCCCGCGAGAGCATCAAGGCAATCCTTGACGCACCCCCTTTCAAGAATCCGGAAACCGTGACGCGCTATCGATTCGGCAAAGAAGCCACCGAATCGGCCGAAACCGATGAAGCCCCCGGCTGGCTGAAATCGATGCTCAACTGGAGCGCCAAACGCTTCGAAACGATCGCTGCGCTGATCCAGGCGCTGCTCTGGGCCACGCTGGTGGGCGCGATCGTCTGGCTGGCCTGGCGCTATCGTGAACGGCTCAAGGCGCTCGCCAACTACCGGCCAACGAAACGCCTGCCGGCGGAGCGCCCCGCGCCGGCACGCATGTTTGACCTGGATATCCGCGAAGAGAGCTTGCCAAACGATGTCGCGGCCAGCGCCGAGCAGTTGTGGTCCGACTCGCCACGCGAGGCGTTGGGCCTGTTGTATCGAGCGCTGCTCAGCCGCTTGCACCATGAGTTCAACATGCCCCTCAAGCCGGCCGACACCGAAGGCCAGGTGTTGCAACGGGTTGAACAGCTCCAGCACGAACCGCTGATGGCCTTCAGCAGGCACCTGACCCTGCATTGGCAGAACATTGCCTATGGACACCGCCCTCCGCCCGCCCATCTGCAACAGCAGTTGTGCAATGGCTGGCGCGAATTGTTCGGCCCCGGAGCGTCCCGATGA	MRLSDVTVAIRPRTTWEAMDLGVLMTQQHRRLLMASWAIVTLPVYALLTLLLWDSPSLVVFIFWWLKPAFERLPLYILSKALFGETPTLKQALRQWPTLLKPQLLASLTWRRLSLSRSFLMPVVQLEGLAGEAREQRLRVLLQRNGGAAQWLTILGVHLETVLWFGLMALFYLFVPQQVELEWDWQTLIAVAEHDWLWLEHLLNVLYPLLLIVWEPIYVACGFSLYLNRRTLLEAWDIELVFRRLRQRLGTVAPALALLALTLLPLAPPAWADDNSNAPQSPRLLNQPVTSQASRESIKAILDAPPFKNPETVTRYRFGKEATESAETDEAPGWLKSMLNWSAKRFETIAALIQALLWATLVGAIVWLAWRYRERLKALANYRPTKRLPAERPAPARMFDLDIREESLPNDVAASAEQLWSDSPREALGLLYRALLSRLHHEFNMPLKPADTEGQVLQRVEQLQHEPLMAFSRHLTLHWQNIAYGHRPPPAHLQQQLCNGWRELFGPGASR				NA	NA	NA	NA	NA
D1-36_01171	975			hypothetical protein	ATGAAGCAAAGCCTGTTCGAAAGCTGCCACCAAGGGGAATGGGAACACCTGTCCCGCCTGCTCGACCAACTGGAGCGCCGCCGCAATGTCCCCCAGAGCAGCGACTTTCCCCACGCCTATCGACAGCTCTGCCAACACCTGGCGCTGGCCCAGGCCCGGGGCTACAGCAGCTTGCTGGTGGATACCTTGCAGCAACTGGCGCTGCGCGGACACCAGCAACTCTACCGGGACCGCAGCCACCCCTCGACCGGCCTGTCGACTTTTATCCTGGCCGGCTTCCCCCGCCTGGTGCGCGAACAATGGCGATTCGTCCTGGCGGCGGGCCTGATGTTCATCGGCAGCCTCGTCGGCGTCGGCTTGCTGGTGTACCTGTTCCCCGAGCTGGTCTACAGCTTGCTGAGCGTCGAGGAAGTCAGCCAGATCCGCGGCATGTACGACCCGGCGGCGGGGCACCTGGGGCGCTCGATCGAGCGGGCCGCCAGCGAGGATTGGGTGATGTTCGGCTACTACATCATGCACAACATCGGGATTGCCTTTCAGACATTCGCCAGTGGTTTGCTGTTCGGCCTGGGCAGCGCGTTCTTCCTGTTCTTCAATGGCCTGACCATTGGCGCGGTGGCCGGGCACCTGACCCAGATCGGCTCGGGCGCAACGTTCTGGTCGTTCGTCATTGGCCATGGCGCTTTCGAATTGACTGCCATCACCCTGGCCGGTGCCGCGGGCCTGCAACTGGGCTGGGCGCTGATTGCGCCGGGACGCCTCACGCGGGGCGAAGCCTTGCGACTGGCCGCCGGCAAAAGCGTGCTGATCATCGCCGGGGTGATCCTCTTCCTGCTCATTGCAGCGTTCGTCGAGGCCTATTGGTCCTCCAGCGCCGCGACACCCTCCACCAAATACACCATCGGCGCGCTACTGTGGCTGCTGGTGATCGGTTACCTGCTGTTCGCCGGGCGAGGCCAGCATGCGCCTGAGTGA	MKQSLFESCHQGEWEHLSRLLDQLERRRNVPQSSDFPHAYRQLCQHLALAQARGYSSLLVDTLQQLALRGHQQLYRDRSHPSTGLSTFILAGFPRLVREQWRFVLAAGLMFIGSLVGVGLLVYLFPELVYSLLSVEEVSQIRGMYDPAAGHLGRSIERAASEDWVMFGYYIMHNIGIAFQTFASGLLFGLGSAFFLFFNGLTIGAVAGHLTQIGSGATFWSFVIGHGAFELTAITLAGAAGLQLGWALIAPGRLTRGEALRLAAGKSVLIIAGVILFLLIAAFVEAYWSSSAATPSTKYTIGALLWLLVIGYLLFAGRGQHAPE				NA	NA	NA	NA	NA
D1-36_01172	726			hypothetical protein	ATGCTCGAGACACCAGCACTGCAAAGGAACGCGCCGCTACCGCCGCCACTGGACACACGTTACCAGGTCGAAACGCCCGAAGGCATCGACCTGCCACTGCGCCCGGCGGGGCTGATGCCTCGTGCGCTGGCCTTCGCCATCGACCTGGTGATACGCGGGCTGGTGCTCGGCCTGTTCTTTGTCGTCCTGGCGTTCTTCGGCGAACTGGGGATCGGCCTGGGCTCGATCCTGCTGTTCATCGTCAGCTGGTGGTACATGGTGTTGTTCGAGGTGCTGAACCAGGGCCGCTCCCCCGGCAAGCAGATCATGGGGTTGCGCGTGGTGCAGGATGATGGTCGGCCGATCGGCTGGTCTGCCTCGTTGATCCGCAACCTGCTGCGCTTCGTCGATATGTTGCCGTTCGGCTACACCTTTGGAGCGCTCTGCTGCCTGCAACACCCGACCTTCAAGCGCTTGGGCGACCTGGCCGCTGGCACGCTGGTGGTTTATCGCGAGCAACCGGTCAAGCGTCCCGAACTGCCAATGGCCCGGCCGCTACGCCCGCCCTTTGCCCTGGCCCTGGTGGAACAACGCGCCGTGCTGGGTTTCGCCGAGCGCCAGGCACAATTGTCCGACGCCAGGGTCACCGAACTGGCGGCAATCCTGGCCGCGCCATTGAAGGTGCACCCCACCGGGGCCGTGGCTGAACTCAATGGCATCGCCCGCGGCCTGTTGGGGCCGACATGA	MLETPALQRNAPLPPPLDTRYQVETPEGIDLPLRPAGLMPRALAFAIDLVIRGLVLGLFFVVLAFFGELGIGLGSILLFIVSWWYMVLFEVLNQGRSPGKQIMGLRVVQDDGRPIGWSASLIRNLLRFVDMLPFGYTFGALCCLQHPTFKRLGDLAAGTLVVYREQPVKRPELPMARPLRPPFALALVEQRAVLGFAERQAQLSDARVTELAAILAAPLKVHPTGAVAELNGIARGLLGPT				NA	NA	NA	NA	NA
D1-36_01173	1428	sbcB	COG2925	Exodeoxyribonuclease I	GTGACTTCCATCTTCTGGTACGACTACGAAACCACCGGCATCAACCCACGATGCGACCGCCCCTTGCAGGTGGCGGGAATACGTACCGATTTCGACCTCAACGAAATCGACGAGCCGGTGAACCTGTATTGCCGGCCCAGCGATGACATCCTGCCCCACCCGGCGGCCTGTGCCATCACCGGCATTACGCCCGCGTGCCTGGCGGAAAAGGGCTTGAGCGAAGCCAACTTCATGACACGCGTCCATGCGCAATTGGCTGCGCCTGGGACCTGTGGTGCCGGCTACAACACCTTGCGCTTCGACGACGAAATGACTCGCTACAGCCTGTATCGCAATTTCTTCGATCCGTATGCTCGGGAATGGCAGGGGGGCAATAGCCGCTGGGACCTCATCGACCTGGTGCGCGCCGCCTATGCGCTGCGTCCCGAGGGCATCGTCTGGCCGCAGGAGGATGGCCGCGTCACCCTCAAGCTCGAACGCCTGACGGCCGCCAACGGCATCGATCATGGCCAGGCCCATGACGCGCTGTCGGACGTGCGCGCGACCATCGCCCTGGCCCGGTTGATCCGCGAAAAACAACCCCGGCTCTACGACTGGTTGTTCCAGTTGCGCGGCAAGCAGAAGGTGATGGACCAGATCCGCCTGTTGCAGCCGATGGTGCATATATCCGGGCGCTTCTCGGCGGCGCGAAACTACATTGGCGTCGTGCTGCCGCTGGCCTGGCACCCGAAGAACCGCAACGCCTTGATCGTCTGTGACTTACACCTGGACCCCCAGGGCTTGCTTGACCATGACGCGCAGCTTTTGCGCCAGCGGTTGTACACCCGCCGCGAAGACTTGCTCGACGGTGAGCTGCCGGTCCCCCTTAAACTCATCCACATCAACAAATGCCCGGTGGTTGCGCCGCTGGCTGTCTTGCGCGCCGAGGACCAACTACGGCTGCAGCTGGACATGGAGGGCGTGCATCAGCGGGCGCTGCGGCTAAGTGACGCACAACACGTCTGGCAAGACAAACTCCAGGCTATTTACGGGCAAGAAGACTTCACTGCCAGCGAAGATCCCGAGCAGCAATTATATGCAGGGTTTCTCGGTGATCGAGATCGCCGTTTATGTGAACAAGTTCGCATGGCGGATCCGTCTGATTTGGCCCAACAGCAGTGGCCATTCGATGATGAACGCCTGCCGGAATTATTGTTTCGATATCGTGCGCGCAACTTTCCGGAGACCTTGGATCCAGCGGAACAACAGCGTTGGACACTTTTTTGCCAGCAACGCCTGTCTTTCCCTGAATGGGGCGCGCCGAATACGCTGAGCAATTTTGATGAGGCGATGACAGAGTGGATGGACCAATCTTCGCCGTTGCAGCGCGATGTGCTGATGCAATGGCAGGGCTACAGCCAACAATTGCGCAAACGTTTTAGCCTCTAA	MTSIFWYDYETTGINPRCDRPLQVAGIRTDFDLNEIDEPVNLYCRPSDDILPHPAACAITGITPACLAEKGLSEANFMTRVHAQLAAPGTCGAGYNTLRFDDEMTRYSLYRNFFDPYAREWQGGNSRWDLIDLVRAAYALRPEGIVWPQEDGRVTLKLERLTAANGIDHGQAHDALSDVRATIALARLIREKQPRLYDWLFQLRGKQKVMDQIRLLQPMVHISGRFSAARNYIGVVLPLAWHPKNRNALIVCDLHLDPQGLLDHDAQLLRQRLYTRREDLLDGELPVPLKLIHINKCPVVAPLAVLRAEDQLRLQLDMEGVHQRALRLSDAQHVWQDKLQAIYGQEDFTASEDPEQQLYAGFLGDRDRRLCEQVRMADPSDLAQQQWPFDDERLPELLFRYRARNFPETLDPAEQQRWTLFCQQRLSFPEWGAPNTLSNFDEAMTEWMDQSSPLQRDVLMQWQGYSQQLRKRFSL				NA	NA	NA	NA	NA
D1-36_01174	378			hypothetical protein	ATGTCTCTGATCACCGAATACAACGCCACAAAACAAGCTATTGAAGAATTGCAACAACGTCTGGCCGACCTCTCCAAAGACGACAAACTGCAAAAAGAATTGGAATTCGAAGGCAAACTGCGCACGCTGATGGGCGAATATTCCAAGTCCCTGCGCGATATCATTGCCCTGCTGGATCCAGAAGCCAAGTCGGGTAAAGCACCCCGCGGCGCGGTAAAAACGACCGGCACCAAACGTGCTCGTAAAGTTAAGCAATACAAAAACCCGCACAATGGCGAAGTCATCGAAACAAAAGGTGGCAACCACAAGACGTTGAAAGAGTGGAAAGCCAAGTGGGGCGGTGACGTGGTAGAAGGCTGGGCAACCCTGCTGGGCTAA	MSLITEYNATKQAIEELQQRLADLSKDDKLQKELEFEGKLRTLMGEYSKSLRDIIALLDPEAKSGKAPRGAVKTTGTKRARKVKQYKNPHNGEVIETKGGNHKTLKEWKAKWGGDVVEGWATLLG				NA	NA	NA	NA	NA
D1-36_01175	849	purU_1	COG0788	Formyltetrahydrofolate deformylase	ATGCGCACTTTTCGGCTGGTGATCGCTTGCCCGGACCGCGTCGGTATCGTTGCTAAAGTCAGTAACTTTCTGGCGTCCCATAATGGCTGGATCACTGAAGCGAGCCATCACTCGGACAACCAAAGTGGCTGGTTCTTCATGCGCCACGAGATCCGCGCCGACTCGCTGCCCTTTGGCCTCGAAGCCTTTCGCGAGGCATTCGCCCCGATTGCTGAAGAGTTCTCGATGGATTGGCGTATCACCGATACCGCGCAGAAAAAGCGCGTGGTGCTGATGGCCAGCCGCGAGTCTCATTGCCTGGCTGACTTGCTGCACCGCTGGCACAGCGATGAGCTGGATTGCGACATCGCGTGCGTCATTTCCAACCATGACGACTTGCGCAGCATGGTGGAGTGGCACGGCATTCCTTATTACCACGTCCCCGTCAATCCGCAGGACAAGCAGCCGGCGTTCGCTGAAGTCTCGCGGCTGGTCAAGCAGCATGACGCTGAAGTGGTGGTGCTGGCCCGCTACATGCAAATCCTGCCGCCATCGCTGTGCAGCGAATACGCGCACAAAGTCATCAACATCCACCACAGCTTCCTGCCGTCTTTCGTTGGCGCGAAGCCGTACCACCAGGCATCGATGCGCGGCGTGAAACTGATCGGCGCAACGTGCCACTACGTGACCGAAGAGCTGGACGCCGGCCCGATCATCGAGCAGGACGTGGTGCGCGTCAGCCACAGCGACAGCATTGAAGACATGGTGCGATTCGGTCGCGACGTGGAGAAGATGGTGCTGGCGCGCGGCTTGCGTTATCACCTGGAAGACCGCGTGTTGGTACACGGCAACAAGACCGTCGTATTCTGA	MRTFRLVIACPDRVGIVAKVSNFLASHNGWITEASHHSDNQSGWFFMRHEIRADSLPFGLEAFREAFAPIAEEFSMDWRITDTAQKKRVVLMASRESHCLADLLHRWHSDELDCDIACVISNHDDLRSMVEWHGIPYYHVPVNPQDKQPAFAEVSRLVKQHDAEVVVLARYMQILPPSLCSEYAHKVINIHHSFLPSFVGAKPYHQASMRGVKLIGATCHYVTEELDAGPIIEQDVVRVSHSDSIEDMVRFGRDVEKMVLARGLRYHLEDRVLVHGNKTVVF	PGPT0008155_2982	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008155-purU-K01433	NA	NA
D1-36_01176	180			hypothetical protein	ATGACCGATCCCTTGGACAAAGCCACCGCCAAAGCTCCGCCAACCGTGGGCGAGGGCTGCCTGAGCCGCTACGATCCCGACGCGTTGAGCCCCGAGGACGGCACTGAGTTTCCCGACGCCGCGAAGCTCTGGGACGAGCTGAACGACAAGCCTCAGGGCGACTCCGAACCCAATCAATAA	MTDPLDKATAKAPPTVGEGCLSRYDPDALSPEDGTEFPDAAKLWDELNDKPQGDSEPNQ				NA	NA	NA	NA	NA
D1-36_01177	996			hypothetical protein	ATGAAGCGATTGATCTGGCTGGTCGCCGCCCTGCTCATCGCGCTTGTGGTGCCGATGCTGGTGGGCGGTGGGGAAATGTGGTCGCGGGTGCAGCGCTTTCCGTTGTCGCTGCTGTTGGTCATGCTCGGCATGATTGTGCTGTGCTGGGCGCTGAACTCGATGCGCCTGCGTTTGCTGCTGGGCGAGCACCGTGGGCGCATCGGCGCGGTCAAAAGCATGGGCGTGGTGATGTCCACCGAGTTCGCCATGTGCGCGACGCCCGGCGGCAGCGGCGGCCCCTTGACGCTGATGGCCCTGCTGGCGCGCAACGGCATGCGCCCGGCCCATGGCAGCGCCGTATTCGCGATGGATCAGTTGAGCGATCTGCTGTTTTTCCTGTGTGCGTTGCTGGGCATCCTGTTCTACGCGCTGTTCCAGAACCTCAGCCAGCGCATGGAATGGATGCTGGCGTTGAGCGCGATTTCGATGTTCGGCGGCCTGGCCTGCTGCGCCCTGGTCGCGCGCTACCATCGCCGGCTGATTCTGCTGGGTGCCCGAGTGTTGCGCCATCTACGGGTGAAAACCAGCACTCGCCGGCGTTGGGGGCGCAAGATCCTCAATTTCCTGGCGGCGTTCACCGATACGTTGAAGTTGCCCCGAATGACACTTTTCCAAGTGTTCGGCTTGACCTGCCTGCACTGGGCGCTGCGCTACAGCGTGCTTTATCTGGCATTGAAAGGGCTGGGGGCGGATTTGCAATGGGCGTGGAGTTTCCTGATCCAAATGCTCTCTCTGAGCGCGGGGCAGTTCAGCCTGCTGCCGGGCGGCGCCGGAGCGGCGGAGTTGACCTCGGCGGCGCTACTGGCGCCCATGGTAGGAAAATCCACCGCGGCGGCGGCGATTCTGATCTGGCGAGCGGTGACCTATTACTTCTATCTGCTGGCCGGAGGGCCAGTGTTTTTCCTGATGGTCGGGCGACCATTGATCAAGAAGCTGATCAGGCTCAGGCAGGCCTGA	MKRLIWLVAALLIALVVPMLVGGGEMWSRVQRFPLSLLLVMLGMIVLCWALNSMRLRLLLGEHRGRIGAVKSMGVVMSTEFAMCATPGGSGGPLTLMALLARNGMRPAHGSAVFAMDQLSDLLFFLCALLGILFYALFQNLSQRMEWMLALSAISMFGGLACCALVARYHRRLILLGARVLRHLRVKTSTRRRWGRKILNFLAAFTDTLKLPRMTLFQVFGLTCLHWALRYSVLYLALKGLGADLQWAWSFLIQMLSLSAGQFSLLPGGAGAAELTSAALLAPMVGKSTAAAAILIWRAVTYYFYLLAGGPVFFLMVGRPLIKKLIRLRQA				NA	NA	NA	NA	NA
D1-36_01178	774			hypothetical protein	ATGGCAATGAATCCCACCCCCAGCCTGCTGTTGGTGCTCCATGACGTCGCGCCCCAGACCTGGCCCGACTACCAGCCCTTCGTTGAAGCCGTCGACGCCCTTGGCCAGGTGCCGATGACCTGGCTGGTGGTGCCGGATTTCCATCATGCCAATGCGCTGGACGATCACCCCGGCTTCAGGCGCTTGCTGGACGGCCGGGTCGAGCGCGGCGATGAATTGGTCTTGCACGGTTACTACCATTGCGACGACGGCCCGCCCGCCCTTCATCCCAAGGACTTTTTCATGCGGCGGGTCTACACCCACGAAGGCGAGTTCTATGGATTGTCCGAAGAGGCCGCCCTCGCTCGCCTACGAGCCGGTATCGAAATCTTCCAGCGGTACCAATGGCCGCTCCAAGGTTTCGTCGCGCCCGCCTGGCTGATGAGCGAAGGCACCCGGCAAGCCTTGCGCCAGCTGCCTCTGAGCTACACCAGCGATACCCAACACCTTTACCGTTTGCCAGAGTTCACCCAGATCGATGCGCCGGGCCTGGTCTGGAGCGCGCGCAGCGCCTGGCGCCGGGGCCTGTCGAAAATCATCAGCGACCAGCGCAAACAGCGCTGGCGCCAGGCACCTGTGATTCGCCTGGGGCTGCACCCGGTGGACATGCGCCACGGTTTTTCCCGGGATTATTGGCTACGCACCCTGCAGCGCCTGCTTGAGGACGGACGTGTGCCGATGACCAAGGCCGGCTGGCTGGCAACCCAGGGCCTGCGGGTCAGTAACGCCGCATGA	MAMNPTPSLLLVLHDVAPQTWPDYQPFVEAVDALGQVPMTWLVVPDFHHANALDDHPGFRRLLDGRVERGDELVLHGYYHCDDGPPALHPKDFFMRRVYTHEGEFYGLSEEAALARLRAGIEIFQRYQWPLQGFVAPAWLMSEGTRQALRQLPLSYTSDTQHLYRLPEFTQIDAPGLVWSARSAWRRGLSKIISDQRKQRWRQAPVIRLGLHPVDMRHGFSRDYWLRTLQRLLEDGRVPMTKAGWLATQGLRVSNAA				NA	NA	NA	NA	NA
D1-36_01179	1092	mgtA_2	COG0438	GDP-mannose-dependent alpha-mannosyltransferase	ATGTTCTACGCCCCCGCCAGCGGTGGCGTGCGCACTTATCTGGATGCCAAGCACCGGCGCCTGGGCAATCGGCCCGGTATCCGCCATAGCCTCTTGATTCCTGGCGCTCACCTGAGTGAGCAGGACGGAATCTATAAAGTTCCAGCCCCTCCGCTTCCCTTTGGCAAGGGTTATCGCTTCCCGCTTCGCCTGGCGCCCTGGCGTAATGTCCTGCGCGACTTGCAGCCTGATCTCATTGAAGTAGGCGATCCCTATCTCACCGCCTGGGCGGCCCTCGATGCCCGGCGCCAGCTCGATGTGCCTGTCATCGGTTTTTATCATTCAGACTTGCCGCTGCTGGTCAGCAACCGCATGGGAAGCTGGTTCACGCCCAACATCGAGGCCTACGTCAGCAAGTTGTACGGCAACTTCGACCGAGTCCTGGCCCCCAGCCAGGTCATGGCCGACAAACTGACCGGGCTGGGCGTCAAGAACGTCTATGTACAGCCCTTGGGGGTAGACCTCCAGACCTTCAACCCCGCCGCCCGCGACCCCGAATTGCGGGCGGAGCTGGGCATCGCCGAAGACGCGCGATTGCTGATCTTCGCCGGTCGCGGCTCCAAGGAAAAAAACCTGCCGGTGCTGCTCAAGTGCATGAAACGCCTGGGCGAGCGCTACCACTTGTTGTTGGTCGGTTCTTCGATGCCCGCCCTGGTGCCGGACAATGTCACCGTCATCGACGAATTCTGCCCGGCGCCCCAGGTCGCCCGGCTGATGGCCAGCGCCGACGCGTTGCTACATGCTGGCGACCAGGAAACCTTTGGCCTGGTGATCCTCGAAGCGATGGCCAGCGGCATCCCGGTGGTAGCGGTCGCCGCCGGCGCGTTCAGCGAAATCGTCCAGGAGGACTGCGGTCTGCTGTGCACACCTGACAATCCGCAGGCCATGGCCAATGCCGTTCGACAGCTGTTCGCCGAAGGTTGCGAGCAACGTGGCGCCAGGGCTCGGCGACACGTAGAGCGTCATTACGCCTGGGACACGGTGGTCAATAGCCTGTTGGGCCATTACTACAGTGTGCTCGGCGCAGAGATGCCGCTGCTGGCCAATGGTTGA	MFYAPASGGVRTYLDAKHRRLGNRPGIRHSLLIPGAHLSEQDGIYKVPAPPLPFGKGYRFPLRLAPWRNVLRDLQPDLIEVGDPYLTAWAALDARRQLDVPVIGFYHSDLPLLVSNRMGSWFTPNIEAYVSKLYGNFDRVLAPSQVMADKLTGLGVKNVYVQPLGVDLQTFNPAARDPELRAELGIAEDARLLIFAGRGSKEKNLPVLLKCMKRLGERYHLLLVGSSMPALVPDNVTVIDEFCPAPQVARLMASADALLHAGDQETFGLVILEAMASGIPVVAVAAGAFSEIVQEDCGLLCTPDNPQAMANAVRQLFAEGCEQRGARARRHVERHYAWDTVVNSLLGHYYSVLGAEMPLLANG	PGPT0024305_363	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLING	CE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024305-pimC-K14335	NA	NA
D1-36_01180	1545			hypothetical protein	ATGCTTTTATTTAAGCGCGCAGAATGGCGTCATATCGCAAACACCACGGGTGACGAAATGCCTGACTCATCGCAACTGATCATCGGGGCCGATCTTGCCGGCCAACCTGTCGCCCAGGCCATGCGCCTGGCGAACCGCCATGGACTGGTGGCGGGTGCCACCGGCACGGGCAAGACCGTTACTCTGCAGCGCCTGGCCGAGATGTTCAGCGATGCCGGCGTGGCCGTCTTCGCGGCAGACATCAAGGGCGACTTGTGCGGCCTCGGTGCTGCCGGCGCTCCCCAGGGCAAGATCGCCGAGCGTATCGCCGGCATGCCTTGGCTTGGCCACAAGCCCCAGGCTTATCCGGTGACGCTGTGGGACATTCACGGCCAATCGGGTCATCCGCTGCGCACTACCTTGAGTGAAATGGGCCCGTTGTTGCTCGGCAGCCTTTTGGAACTGACGGACAGCCAGCAATCGGCGTTGTACGCGGCGTTCAAGGTCGCTGATCGGGAAGGCCTGCTGCTGCTGGACCTCAAGGACTTGAAGGCGCTGCTCAACCACCTCAAGGACAACCCCGAATTGCTAGGGGACGATGCCGCCTTGATGACCACGGGTTCCAGCCAGGCGCTGATGCGACGCTTGTCCACGCTGGAACAGCAAGGGGCCGACGCCTTGTTCGGTGAGCCGGCGTTGCAGTTGGAGGACATTCTGCAACCGGCCAGCGATGGTCGCGGCCGTATTCATCTGCTGGACGCCAGCCGCCTGGTCCATGAAGCGCCGAAGGTCTACGCGACATTCCTGCTGTGGCTGCTGGCCGAGCTTTTCGAGCAACTGCCCGAGCGCGGCGACGCGGACAAACCCTTGCTCGCGCTGTTCTTCGACGAGGCGCACCTGTTGTTTGCCGGCACGCCCAAGGCGCTGCAGGATCGCCTGGAACAAGTGGTGCGACTGATCCGCTCCAAGGGCGTCGGGGTGTATTTCGTGACCCAGTCGCCGGGGGATCTGCCGGACGATGTGCTGGCACAGTTGGGATTGCGCATCCAGCACGGCCTGAGGGCTTTTACCGCCAAGGAACAGAAGTCCTTGCGGGCGGTGGCGGAGGGTTTCCGACCGAACCCGCAATTCGATGCCTTGGCGGTACTCACCGAACTGGGCATCGGTGAAGCCCTGGTCGGCACCCTGCAAGAAAAAGGCACGCCGGAAATCGTCCAGCGCGTGCTGGTGGCGCCACCGCAGTCGCGTATCGGGCCGCTGAGCGAGGCCGAGCGGGCCGGGTTGATTGCCAGTTCACCGTTGCAGGGACGCTACGACAAGCCTATTGATCGCGAGTCGGCCTATGAAGTGCTGATGGGCCGCAAGGGGCTGGAACCGCAAGCCGAAGCGACACCGGGCAAGCCCACCGCTGAAGAGCCAAGCTTTACCGAAAAGGCCGGGGAGTTCCTTGGCACCGCGGCGGGCCAGGCCTTGAAATCAGCGATGCGCCAGGCGGCCAATCAACTGGGCCGGCAGTTGGTGCGGGGGTTGATGGGGTCGCTGCTTGGGGGCAGCAAGCGGCGGTAG	MLLFKRAEWRHIANTTGDEMPDSSQLIIGADLAGQPVAQAMRLANRHGLVAGATGTGKTVTLQRLAEMFSDAGVAVFAADIKGDLCGLGAAGAPQGKIAERIAGMPWLGHKPQAYPVTLWDIHGQSGHPLRTTLSEMGPLLLGSLLELTDSQQSALYAAFKVADREGLLLLDLKDLKALLNHLKDNPELLGDDAALMTTGSSQALMRRLSTLEQQGADALFGEPALQLEDILQPASDGRGRIHLLDASRLVHEAPKVYATFLLWLLAELFEQLPERGDADKPLLALFFDEAHLLFAGTPKALQDRLEQVVRLIRSKGVGVYFVTQSPGDLPDDVLAQLGLRIQHGLRAFTAKEQKSLRAVAEGFRPNPQFDALAVLTELGIGEALVGTLQEKGTPEIVQRVLVAPPQSRIGPLSEAERAGLIASSPLQGRYDKPIDRESAYEVLMGRKGLEPQAEATPGKPTAEEPSFTEKAGEFLGTAAGQALKSAMRQAANQLGRQLVRGLMGSLLGGSKRR				NA	NA	NA	NA	NA
D1-36_01181	456			hypothetical protein	ATGGCCTTCCGCCCTCTTCCAGCCAAGGCGCCCGCCGTTCTGCTGCGCGAAGCCAAGCCGCTGAAAGCCATTTTCGGCCACGCCAGGCGCCTCGGTCATCTGCAACGGCTGGTGGACAGCCAGTTGCAGCCCGCCGCGCGTGAGCATTGCCACGTAGCGTCCTGGCGCGAAGGCAGCTTGTTGCTGATCGTCACTGACGGCCATTGGGCCACGCGCCTGCGCTACCAACAGAAGCGCCTGCTGCGTCAATTGCAGGCATTCGATGAATTCGCCAACCTGACGCGGATCCTGTTCAAGGTCCAGCCGCCGACCATACAGGCCGGCGCCAAGGGACATACCCTGGACCTGTCCACCGACGCGGCCGCGACCATCCAGGCCACCGCCGAGGGCATCAGCGACCCTAACCTGAAGGCGGCGCTGGAGCGGTTGGCGGCACATGCGCGGCCCAAGGATTGA	MAFRPLPAKAPAVLLREAKPLKAIFGHARRLGHLQRLVDSQLQPAAREHCHVASWREGSLLLIVTDGHWATRLRYQQKRLLRQLQAFDEFANLTRILFKVQPPTIQAGAKGHTLDLSTDAAATIQATAEGISDPNLKAALERLAAHARPKD				NA	NA	NA	NA	NA
D1-36_01182	2808	secA	COG0653	Protein translocase subunit SecA	ATGAGGGCTGCACGGGCGACTCACGGGGCCGCCCTCCATCCCTTTAGTGTGGAAGATCCTGCCGATATGTTTGCGCCTTTGTTAAAGAAACTTTTTGGAAGCAAGAATGAGCGTGAAGTCAAGCGCATGCTCAAGACGGTACAGATCGTCAATGCCTTCGAAGAGCAAATGGTGGCCCTTTCGGACGATCAGTTACGCGCCAAGACCGCCGAATTCAAGGACCGCATCGCCAAGGGTGAGACCCTTGACCAGATCCTGCCCGAAGCCTTTGCGGTCTGCCGCGAAGCCGGCAAGCGGGTCATGGGCATGCGTCACTTCGACGTCCAGTTGATCGGCGGCATGACCTTGCACGAAGGCAAGATCGCCGAAATGCGTACCGGTGAGGGCAAGACCCTCGTGGCGACCCTGGCGGTGTATCTCAATGCATTGTCCGGCAAGGGCGTACACGTGGTCACGGTCAACGATTACCTGGCCCGCCGCGACGCCAACTGGATGCGCCCGCTCTACGAGTTCCTCGGCCTGACCGTCGGCGTCGTCACGCCGTTCCAGCCGCCGGAAGAGAAACGCGCCGCCTACGCCTCGGACATCACCTACGGCACCAACAACGAATTCGGCTTCGATTACCTGCGCGACAACATGGCGTTCAGCATGGAAGAAAAATTCCAGCGTGAACTCAACTTTGCCGTCATCGACGAAGTCGACTCCATCCTCATCGACGAAGCCCGTACCCCGCTGATCATTTCCGGTCAGGCCGAGGACAGCTCCAAGCTGTACATCGAGATCAACAAGTTGATCCCGCAGCTCAAGCTGCACGTGGAAGAGGTCGAGGGCGAAGTCACTCAGGCCGGTCACTACACCGTCGACGAGAAGACCCGCCAGGTCGAGCTCAACGAATCCGGCCACCAGTTCATCGAAGAGATGCTGACCCGCGTCGGCCTGCTGGCAGAAGGCGAAAGCCTGTACTCGGCCCATAACCTGGGCCTGCTGACCCACGTCTATGCCGGCTTGCGTGCCCACAAGCTTTTCCACCGCAATGTCGAATACATCGTGCAGGACGGCCAGGTCGTGCTGGTGGACGAGCACACCGGCCGCACCATGCCGGGCCGTCGCCTGTCCGAAGGCCTGCACCAGGCCATCGAGGCCAAGGAAGGTCTGAACATCCAGGCCGAGAGCCAGACCCTGGCCTCCACCACCTTCCAGAACTACTTCCGCCTGTACAACAAGCTGTCCGGCATGACCGGTACCGCTGACACCGAAGCGTTCGAGTTCCACCAGATCTACGGCCTGCAAGTGGTGGTTATTCCGCCGAACAAGCCGCTGGCGCGCAAAGACTATAACGACCTTGTGTTCCTGACCGCCGAAGAGAAATACGCGGCGATCATCAATGACATCAAGGAAGGCATGGCCCAGGGCCGTCCTATCCTGGTGGGCACCGCCACCATCGAGACCTCCGAGCACATGTCCAACCTGCTCACCAAGGAAGGCATCGAGCACAAGGTCCTGAACGCCAAGTTCCACGAGAAGGAAGCCGAGATCATCGCCCAGGCCGGTCGCCCGGGTGCGTTGACCATCGCCACCAACATGGCCGGCCGTGGTACCGACATCCTGCTGGGCGGCAACTGGGAAGTGGAAGTCGCTTCCCTGGAAAACCCGACCCCCGAGCAGATCGCGCAGATCAAGGCCGACTGGCAGAAGCGTCACCAGCAAGTGCTCGAATCCGGCGGCTTGCAGGTGATCGCTTCCGAGCGTCACGAATCCCGCCGTATCGACAACCAGCTGCGTGGCCGTGCCGGTCGCCAGGGTGACGCAGGCTCCAGCCGCTTCTACCTGTCGTTGGAAGACAGCCTGATGCGCATCTTCGCCTCTGACCGGGTGAAGAACTTCATGAAGGCTCTGGGCATGCAGCCAGGCGAGGCGATCGAGCACCGCATGGTGACCAACGCGATCGAAAAGGCCCAGCGCAAGGTCGAAGGCCGCAACTTCGATATCCGCAAGCAATTGCTGGAGTTCGACGACGTCAACAACGAGCAGCGTAAAGTGATCTATCACATGCGCAACAGCTTGTTGGCCGCCGACGACATTGGCGAAACCATCGCCGATTTCCGTCGTGAGGTGCTCGACGCGACCATCAGCGCCCACATCCCGCCGCAATCGTTGCCGGAACAGTGGGACGTCGCTGGGTTGGAAGCCTCCCTGCGCAGCGATTTTGGCGTGTCGTTGCCGATCCAGCAGTGGCTCGACGAAGACGATCACCTGTACGAGGAAACCCTGCGCGAGAAGCTGCTGGCCGAACTGATCGCCGCGTACAACGAAAAAGAAGACCAGGCCGGCGCCGAGGCGCTGCGTTCCTTCGAGAAGCAGATCGTTCTGCGCGTGCTGGACGACCTGTGGAAAGACCACTTGTCGACCATGGATCACCTGCGCCACGGTATTCACTTGCGCGGCTACGCCCAGAAGAACCCGAAGCAGGAATACAAGCGCGAGTCCTTCACGCTGTTCTCCGAGCTGCTGGATTCCATCAAGCGCGACTCGATTCGTGTGCTGTCCCACGTTCAGGTTCGCCGCGAAGACCCGGTTGAAGAAGAAGCTCGCCTGCGCCAGGAAGCCGAAGCCTTGGCTGCCCGCATGCAGTTCGAACACGCCGAAGCGCCAGGGCTGGAAGTGGCCCAGGCGATGGAAGAAGGTGTCGACGTGGATGTTGCACTGGCCACCGCGCCGGTGCGCAACGAGCAGAAGCTGGGCCGTAACGAGCTGTGCTATTGCGGCTCGGGCAAGAAATACAAGCATTGCCACGGGCAGATTCAATAA	MRAARATHGAALHPFSVEDPADMFAPLLKKLFGSKNEREVKRMLKTVQIVNAFEEQMVALSDDQLRAKTAEFKDRIAKGETLDQILPEAFAVCREAGKRVMGMRHFDVQLIGGMTLHEGKIAEMRTGEGKTLVATLAVYLNALSGKGVHVVTVNDYLARRDANWMRPLYEFLGLTVGVVTPFQPPEEKRAAYASDITYGTNNEFGFDYLRDNMAFSMEEKFQRELNFAVIDEVDSILIDEARTPLIISGQAEDSSKLYIEINKLIPQLKLHVEEVEGEVTQAGHYTVDEKTRQVELNESGHQFIEEMLTRVGLLAEGESLYSAHNLGLLTHVYAGLRAHKLFHRNVEYIVQDGQVVLVDEHTGRTMPGRRLSEGLHQAIEAKEGLNIQAESQTLASTTFQNYFRLYNKLSGMTGTADTEAFEFHQIYGLQVVVIPPNKPLARKDYNDLVFLTAEEKYAAIINDIKEGMAQGRPILVGTATIETSEHMSNLLTKEGIEHKVLNAKFHEKEAEIIAQAGRPGALTIATNMAGRGTDILLGGNWEVEVASLENPTPEQIAQIKADWQKRHQQVLESGGLQVIASERHESRRIDNQLRGRAGRQGDAGSSRFYLSLEDSLMRIFASDRVKNFMKALGMQPGEAIEHRMVTNAIEKAQRKVEGRNFDIRKQLLEFDDVNNEQRKVIYHMRNSLLAADDIGETIADFRREVLDATISAHIPPQSLPEQWDVAGLEASLRSDFGVSLPIQQWLDEDDHLYEETLREKLLAELIAAYNEKEDQAGAEALRSFEKQIVLRVLDDLWKDHLSTMDHLRHGIHLRGYAQKNPKQEYKRESFTLFSELLDSIKRDSIRVLSHVQVRREDPVEEEARLRQEAEALAARMQFEHAEAPGLEVAQAMEEGVDVDVALATAPVRNEQKLGRNELCYCGSGKKYKHCHGQIQ	PGPT0025735_2306	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0025735-secA-K03070	NA	NA
D1-36_01183	1218	argJ		Arginine biosynthesis bifunctional protein ArgJ	ATGGCTGTTGGTCTTGGTCCGTTGCCAACGTTGCACCCGGTTGCCGGTTTTGAACTCGGTATCGCCTCGGCGGGCATCAAGCGCCCCGGGCGCAAGGATGTGGTGGTGATGCGTTGCGCCGAGGGTTCGACGGTCGCGGGCGTGTTTACCCTCAATGCGTTCTGCGCCGCGCCGGTGATCCTGGCCAAGCAACGCGTGCAGGGACCGGTGCGTTACCTGCTGACCAACACCGGTAACGCCAATGCCGGCACCGGCGCGCCAGGCCTGGCCGCCGCCGAGCGCACCTGCGCCAAGCTGGCTGAACTGACGGGCGTCGACGCCAACCAGGTACTGCCTTACTCCACCGGTGTAATCGGCGAACCACTGCCGGTCGAGAAAATCGAAGGCGCGTTGCAAGCCGCCCTTGATGACCTCTCGGAAAACAACTGGGCCGCCGCCGCCAGCGGCATCATGACCACTGACACCCTGCCCAAGGGCGCGAGCCGCCAGTTCCAGCACGACGGCGTCACCGTCACGGTCACCGGCATCAGCAAAGGCGCCGGCATGATCCGCCCGAACATGGCGACCATGCTCGGCTACATCGCCACCGACGCCAAGGTTTCGCGCCAGGTGCTGCAAGACCTGATGCTCGACGGCGCCAACAAGTCGTTCAACCGCATCACCATCGACGGCGACACGTCTACCAATGACTGCTGCATGCTGATCGCCACTGGCAAGGCCAACCTGCCGCAGATCACCGAGGCCAGCGGCCCGCTGTTCATGGCCCTCAAGCAGGCGGTGTTCGAAGTGTGCATGGAAGTGGCCCAGGCCATCGTCCGTGACGGCGAAGGCGCGACCAAGTTCGTGACCGTGCAGGTCAACGGCGGGGGCAATCACCAGGAATGTCTGGACGTCGGCTACACCGTGGCGCACTCGCCACTGATCAAGACCGCATTGTTCGCCTCCGACCCGAACTGGGGCCGTATCCTCGCCGCTGTCGGCCGTGCCGGCGTGCCTGAGCTGGACGTGAGCAAGATCGACGTGTTCCTTGGCGAAGTGTGCATCGCCAGCCAGGGCGCCCGCGCCGCAACCTACACCGAAGCCCAGGGCGCGGCCGTGATGCAGCAGGAAGAGATCACTATCCGCATCGAGCTGGGACGGGGTGATTGCAGCGAAACCATCTGGACCACTGACCTGTCCCACGAGTACGTAAAGATCAACGCTGAGTATCGGACTTAA	MAVGLGPLPTLHPVAGFELGIASAGIKRPGRKDVVVMRCAEGSTVAGVFTLNAFCAAPVILAKQRVQGPVRYLLTNTGNANAGTGAPGLAAAERTCAKLAELTGVDANQVLPYSTGVIGEPLPVEKIEGALQAALDDLSENNWAAAASGIMTTDTLPKGASRQFQHDGVTVTVTGISKGAGMIRPNMATMLGYIATDAKVSRQVLQDLMLDGANKSFNRITIDGDTSTNDCCMLIATGKANLPQITEASGPLFMALKQAVFEVCMEVAQAIVRDGEGATKFVTVQVNGGGNHQECLDVGYTVAHSPLIKTALFASDPNWGRILAAVGRAGVPELDVSKIDVFLGEVCIASQGARAATYTEAQGAAVMQQEEITIRIELGRGDCSETIWTTDLSHEYVKINAEYRT	PGPT0014244_2211	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014244-argJ-K00620	NA	NA
D1-36_01184	945	thiE_1		Thiamine-phosphate synthase	GTGAAACGAATCCACGTAGCGGCGGCGGTCATTCGCGATGCCGCCAGCAGAATCCTGATCGCCCGGCGGGCCGATACCCAGCACCAAGGTGGCCTGTGGGAGTTTCCTGGCGGCAAGGTCGAGGCGGATGAATCCGTCGAGATCGCCCTGGCCAGGGAGCTTCATGAAGAATTGGGCATCGTTGTCGGCGCCGCTCGGCCGCTGATCAAGGTGCGTCATGACTACCCGGATAAGCAGGTGTTGCTGGACGTCTGGGAAGTCTCGGCGTTCAGTGGCGAGCCCCACGGTGCCGAAGGCCAGCCGTTGGCCTGGGTGACGGCCCGTGAGTTGACGAATTATGAATTTCCGGCGGCCAATCAGCCGATCGTCGCGGCGGCCCGTTTGCCGGGCGAGTACCTGATTACGCCCGAAGGCCTCGAAACGCCGGCGTTGCTGCGCGGCTTGCAGAAGGCGATCGGGGGTGGGATCAAGCTGGTCCAACTGCGCGCGCCCAACGGCTACGATCCGCAATACCGTGATCTGGCGGTGGACGCGGTGGGGCTGTGTGCCGGCAAGGCCCAGCTGATGCTCAAGGGGCCGTTCGAATGGCTGGGGGATTTCCCGTCGGCCGGCTGGCACATCACCGCCGCACAACTGCGCAAGCATGCGGCGGCCGGTCGACCGTTCGGCAAGGATCGCTGGCTGGCAGCCTCGTGCCATAACGCAGAAGAGCTGTCCCTGGCGCAGCAGATGGACGTGGATTTCGTGACGCTCTCGCCGGTGCAGCCGACCCAGACCCATCCCGATGCCAAGCCGCTGGGATGGGACGAAGCGGCGCGGTTGATCGAGGGCTTCGACAGGCCGGTCTACCTGTTGGGCGGAGTAGGGCCGGATGAGCGGCAAAAGGCATGGGACGCCGGGGCCCAGGGCGTGGCGGGGATTCGGGCGTTTTGGCCTGAGGCGTGA	MKRIHVAAAVIRDAASRILIARRADTQHQGGLWEFPGGKVEADESVEIALARELHEELGIVVGAARPLIKVRHDYPDKQVLLDVWEVSAFSGEPHGAEGQPLAWVTARELTNYEFPAANQPIVAAARLPGEYLITPEGLETPALLRGLQKAIGGGIKLVQLRAPNGYDPQYRDLAVDAVGLCAGKAQLMLKGPFEWLGDFPSAGWHITAAQLRKHAAAGRPFGKDRWLAASCHNAEELSLAQQMDVDFVTLSPVQPTQTHPDAKPLGWDEAARLIEGFDRPVYLLGGVGPDERQKAWDAGAQGVAGIRAFWPEA				NA	NA	NA	NA	NA
D1-36_01185	582	cobO_1	COG2096	Cobalamin adenosyltransferase	ATGGGTTTTCGCCTGTCGAAGATTTACACCCGCACCGGTGACAAAGGTGAAACCGGGCTGGGGGATGGTCGCCGCGTGGCGAAGGACCACCCGCGGGTCGAGGCGATCGGCGAAGTGGATACGTTGAACAGCCAGTTGGGCCTGTTGCTGTCCGGTCTGGCCGAGGAAACGGCCCGGCATCCCGCGCTGGAAGACGTCATCACGGTGTTGGCGCCATGTCAGCACCGCTTGTTCGACCTAGGCGGTGAATTGGCGATGCCCGCCTATCAAGCGCTTAACGTGGCGGAAGTCGAACGGCTGGAAGCGGCGATTGACAGATGGAACGAGGAATTGGGTCCGCTGGAGAACTTCATCCTACCCGGCGGCTCGACGCTGATCGCCCAAGCCCACGTCTGCCGAAGCATGGCCCGCAGCGCCGAGCGTCGTTGCCAGCAATTGAACGCAGTGGAGCCGCTGGCCGGGCCGGGGCTGGCCTACATCAATCGATTGTCGGATCTGTTGTTCGTGGCCGCGCGGGTCATTGCCCGGCGCCAAGGGGTGGCTGAGGTACTTTGGGAGGCGGCGGCCAAGCCTGGGGGCTGA	MGFRLSKIYTRTGDKGETGLGDGRRVAKDHPRVEAIGEVDTLNSQLGLLLSGLAEETARHPALEDVITVLAPCQHRLFDLGGELAMPAYQALNVAEVERLEAAIDRWNEELGPLENFILPGGSTLIAQAHVCRSMARSAERRCQQLNAVEPLAGPGLAYINRLSDLLFVAARVIARRQGVAEVLWEAAAKPGG				NA	NA	NA	NA	NA
D1-36_01186	2037	rcsC_4		Sensor histidine kinase RcsC	ATGCCATTGCGCCAGCGCCTTGAAAATCTACCGGTCGGCCAGAAACTGCTGGCGGCCCTGTTGGTGTTGTTGACCACCGTTTTGCTGGTGGCCAACCTGACCTTCATCAGCGCGGCCTATTACATTTCCCAGGAAAGCATGGCCCCCCAGGCGTTGCAGACCATTGGCCGGCTGGTGGCCAACCCGAGCCTGATCGCCGACGCGCTGCAATCGCCGCAAAGCGCCCAACGCCTGCTCGATGAGCTCAACAGCTACGCCCCGCTGCGAGCAGCGGCACTCTACGATGGGCAAGGCGAACGGCTGGCCCAGCTGCAACAGGGCGAAAAACTCAGGCTGCCGGAACATTTCCGCCACATGCAAACCTGGCAGGCCGGCGAGTTCCGCAGCAACCAGGTCATTACCCTGCCCCGTCCCGGCACCACGCCGGGCCATCTCTTGCTGGTCGCCAGCAGCGAATTGCCCACCGCGTTCTACACCGGCACGTTGACCGCCAGCCTCGGCATCCTCATCTTCAGCGTGCTGCTGTGGCTGGTCATTGCCCAGCAGATCAAGCGGCTGATCACCCAACCGATCCACCAGCTCGAAGAGTTGTCGCGCCAGGTGACCCGCGAGGAAAACTATTCCCTGCGCGCCGCCCGGGGCAACCACGACGAAATCGGCAGCCTGGCCGAGGCGTTCAACACCATGCTGTCGCGCATCGAAGCCCGCGAACAGCAACTCAAGCGAGCCCGTGACGATTCCCAGGCCGCCTATGACCAGGCCCAGGGGCTGGCGGAGGAAACCCGCCACACCAACCGCAAGCTGGAACTGGAAGTCCAGGTGCGCAGCAAGATCGAGAAAAAACTCACCGGCTTCCAGAACTACCTCAACAGCATCATCGACTCCATGCCGTCGGCCCTGATCGCCCTCGACGAACAGCTCTACGTCACCCAATGGAACCAGGAAGCCAGCGCGCTCTCCGGCACACGATTGGACGAAGCGCTGAACCAGCCGATCTTCCTCGCCTTCGAACCGCTCAAGCCCTATCTGCCACAGCTCAAGCAGACGGTCGAACAGCACACGGTGGCCAAGATCGAACGTGTCACCTGGACCAAGGACGACGAAGCCCGGCACTACGCCCTCACGTTCTATCCGTTGATGGGCGGTGCCGGGCGGGGCGTGGTGATCCGTATCGATGACATTACCCAGCGCTTGTCGCTGGAAGAAATGATGGTGCAATCGGAGAAGATGCTCTCGGTCGGTGGCCTCGCGGCGGGCATGGCCCATGAGATCAATAATCCGCTCGGAGCGATCCTGCACAACGTGCAGAACATCCGCCGACGCCTGTCGGCGGAACTGCCGAAGAACCTCGAACAGGCCGAGCAGTTGGGCATCGAGTTGCCGGTGATCTACCGTTACCTGGAGAGCCGGGAAATCCCGCAACTGCTCGACGGCATCCAGCAGGCCGGTGCCCGGGCCGCGAAGATCGTCACCCACATGCTCAGCTTCAGTCGACGCAGCACCCGGCAGATGGCCCCCTGCGACTTGCCCGCTTTGATCGACCAGGCCGTGGAGATTGCGGGCAACGATTTCGACCTGGCGATCGGTTTCGACTTCAAAGGCCAGGCCATCATCCGTCAGTTCGACCCGAACCTGGGGCCGGTGCCAGGCACCGCCAACGAACTGGAGCAGGTGTTGCTCAACCTGCTGAAAAACGCTGCCCAGGCCATCCATCAGCGCCAGGACGACGGCGAGCCCGGCCGTATTATCCTGCGCACCCGGCTGAATCCACCGTGGGCGGAAATCCAGGTCGAGGACAACGGCATCGGCATGAGCGAGAACGTGCGCAAACGCACCTTCGAACCGTTCTTTACCACCAAGGAAATCGGCCAGGGCACGGGCCTCGGGCTGTCGGTCTCGTATTTCATCATCACCAACAACCACAAGGGCCAGATGGAAGTGCAATCCGCGCCAGGCCAGGGCACTTGCTTCACCCTGCGCCTGCCGCTGGCGGGCACTTCGATCGTGGCCCAGGAACACAAGCAAGTGGAGCGCTGA	MPLRQRLENLPVGQKLLAALLVLLTTVLLVANLTFISAAYYISQESMAPQALQTIGRLVANPSLIADALQSPQSAQRLLDELNSYAPLRAAALYDGQGERLAQLQQGEKLRLPEHFRHMQTWQAGEFRSNQVITLPRPGTTPGHLLLVASSELPTAFYTGTLTASLGILIFSVLLWLVIAQQIKRLITQPIHQLEELSRQVTREENYSLRAARGNHDEIGSLAEAFNTMLSRIEAREQQLKRARDDSQAAYDQAQGLAEETRHTNRKLELEVQVRSKIEKKLTGFQNYLNSIIDSMPSALIALDEQLYVTQWNQEASALSGTRLDEALNQPIFLAFEPLKPYLPQLKQTVEQHTVAKIERVTWTKDDEARHYALTFYPLMGGAGRGVVIRIDDITQRLSLEEMMVQSEKMLSVGGLAAGMAHEINNPLGAILHNVQNIRRRLSAELPKNLEQAEQLGIELPVIYRYLESREIPQLLDGIQQAGARAAKIVTHMLSFSRRSTRQMAPCDLPALIDQAVEIAGNDFDLAIGFDFKGQAIIRQFDPNLGPVPGTANELEQVLLNLLKNAAQAIHQRQDDGEPGRIILRTRLNPPWAEIQVEDNGIGMSENVRKRTFEPFFTTKEIGQGTGLGLSVSYFIITNNHKGQMEVQSAPGQGTCFTLRLPLAGTSIVAQEHKQVER				NA	NA	NA	NA	NA
D1-36_01187	918	panE	COG1893	2-dehydropantoate 2-reductase	ATGTCCACCACCTGGCATGTCCTTGGAGCCGGCAGCCTCGGCACGTTATGGGCGACGCGCCTGGCCCGGGCCGGCCTGCCGGTGCGGCTGGTGCTGCGCAATGAAAAGCGGTTGCAGGCTTACCGCGAGGCCGGCGGCCTGACCTTGGTGGAACAAGGCCAGGCGCAGTGCTACCCGGTGCCCGGCGAAACCGCGCAAGGCACCGAGCCTGTTCAGCGGCTGCTCCTGGCGTGCAAGGCCTACGACGCGGAAGCAGCCGTGGCTTCGATTGCCCATCGACTGGGCGCCGAGTCGGAACTGATCCTGTTGCAGAACGGCCTCGGCAGCCAGGACGCCGTGGCGAACCGCGTGCCCCAGGCCCGCTGCATCAGCGCTTCCAGCACCGAAGGCGCGTTTCGCGATGGCGATTGGCGCGTGGTGTTCGCCGGCCACGGCTTCACCTGGCTGGGCGATCCGGCCCAGCCGGTGGCACCGGTCTGGCTGGATGACTTGGCCGCCACCGGCATCCCCCATGAATGGAGCGCCGATATCCTCACCCGCCTTTGGCGCAAACTGGCCCTCAACTGTGCGATCAACCCACTCACGGTACTGCAACATTGTAAGAACGGTGGCCTGCAGGACCACCGCTGCGAAGTGGCGACCCTTTGCGCCGAACTCACCGACCTGCTTGAACGCTGCGGCCAGCCTGCGGCGGCCGAAGACTTGCAGACGGAAGTCGAACGGGTGATCCAGGCCACCGCCGCCAATTATTCCTCGATGTACCAGGACGTCGCCAACCAGCGGCGCACCGAAATCAGCTACCTGCTCGGCCATGCCTGCGCGGTCGCCCAGCGGCATGGCGTGGCGGTGCCGCATCTCGGACAAATGCGCGAGCGACTGATCGCCCACCTGCACAACCTTGGATTGCCCAGCGACTGA	MSTTWHVLGAGSLGTLWATRLARAGLPVRLVLRNEKRLQAYREAGGLTLVEQGQAQCYPVPGETAQGTEPVQRLLLACKAYDAEAAVASIAHRLGAESELILLQNGLGSQDAVANRVPQARCISASSTEGAFRDGDWRVVFAGHGFTWLGDPAQPVAPVWLDDLAATGIPHEWSADILTRLWRKLALNCAINPLTVLQHCKNGGLQDHRCEVATLCAELTDLLERCGQPAAAEDLQTEVERVIQATAANYSSMYQDVANQRRTEISYLLGHACAVAQRHGVAVPHLGQMRERLIAHLHNLGLPSD	PGPT0008745_3887	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,PGPT0008745-panE|apbA-K00077	NA	NA
D1-36_01188	486			hypothetical protein	ATGCCGTCATTCGACGTGGTATCCGAACTGGACAAGCACGAAGTCACCAACGCCGTTGAAAACGCCGTCAAGGAACTCGACCGTCGGTATGACCTCAAGGGCAAGGGCAGCTTCGAGTTCAAGGAAAAGGATCTGACTGTCAACCTGACCGCCGAGGCCGACTTCCAGCTCGAGGCGATGATCGAAATCCTCAAGCTGGCGCTGGTCAAGCGCAAGATCGATGTGCAGTGCCTTGAAGTCAAGGACGCCTACGCGTCGGGCAAGCTGATGAAGCAGGAAGCCGTGCTCAAGGAAGGCATCGACAAGGAACTGGCAAAGAAGATCGTTGCCCACATCAAGGACGCCAAGCTCAAGGTCCAGGCCGCCATCCAGGGCGAGCAAGTGCGGGTGACCGGCAAGAAGCGTGACGACTTGCAGGAAGCCATCGCCGCGCTGCGCGGCAAGGAGTTCGGCATGCCGCTACAGTTCAATAACTTCCGCGACTGA	MPSFDVVSELDKHEVTNAVENAVKELDRRYDLKGKGSFEFKEKDLTVNLTAEADFQLEAMIEILKLALVKRKIDVQCLEVKDAYASGKLMKQEAVLKEGIDKELAKKIVAHIKDAKLKVQAAIQGEQVRVTGKKRDDLQEAIAALRGKEFGMPLQFNNFRD	PGPT0012210_1833	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0012210-yajQ-K09767	NA	NA
D1-36_01189	843	mscS	COG0668	Small-conductance mechanosensitive channel	ATGGACTTGAACGCTGAAGTGGACCACCTGGTCAAGGCCTCCCAGGCTTGGATACCGATGATCATGGAGTACGGCAGTCGTGTACTGCTGGCAATCGTTACCCTGGCCATCGGTTGGTGGCTGATCAACAAGGTTACGCAGAAACTCGGGGCGCTTTTGGCTTTGCGCAACGCCGACCTCGCCTTGCAAGGGTTCATCGGTACCCTGGCAAACATCATCCTCAAGATATTGCTGATCGTCAGCGTCGCGTCGATGATTGGCGTGGAAACCACGTCGTTCGTCGCGGCCATCGGTGCGGCAGGCCTGGCGATTGGCCTGGCCTTGCAGGGCAGCCTGGCGAACTTCGCCGGCGGCGTGCTGATTTTGCTGTTCCGTCCGTTCCGCATTGGCGATTGGATCGAAGCCCAAGGCGTGGCCGGCACGGTCGACAGTATCCAGATATTCCACACGGTGCTGCGTACCGGTGACAATAAGACAGTTATCGTGCCGAACGGCAACCTGTCGAACGGCATCATCACCAACACCAATCGCCAGCCCACCCGCAAAGTCGTGTTCGACGTGGGCGTGGATTACCAGGCCGACCTGCAAAAGGCTCGGGAAGTATTGCTGGAGTTGGCCAAGGACGAGCGCGTATTGGCTGATCCTGCGCCAGAAGCGGTGATTTCGACCTTGGGCGATAGCTCGATCACGGTTTCCCTGCGTATCTGGGTCAAGACCGCGGATTACTGGAACGTGATGTTCATGCTTAACGAACAGGCGCGGGACCGCTTGAAGGAGGCGGGCATTGATATTCCGTTTCCGCAGCGGGTGATCCGGATGGTTCATGAATCCACGTCGGCGTAA	MDLNAEVDHLVKASQAWIPMIMEYGSRVLLAIVTLAIGWWLINKVTQKLGALLALRNADLALQGFIGTLANIILKILLIVSVASMIGVETTSFVAAIGAAGLAIGLALQGSLANFAGGVLILLFRPFRIGDWIEAQGVAGTVDSIQIFHTVLRTGDNKTVIVPNGNLSNGIITNTNRQPTRKVVFDVGVDYQADLQKAREVLLELAKDERVLADPAPEAVISTLGDSSITVSLRIWVKTADYWNVMFMLNEQARDRLKEAGIDIPFPQRVIRMVHESTSA	PGPT0013773_2231	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013773-mscS|yggB-K03442	NA	NA
D1-36_01190	1344	oprD_3		Porin D	ATGCGCGTGATGAAGTGGAGCATGATCGCACTGGCCGTTGCTGCAGCAGCCAGTACTCAAATGGCTACGGCCGCACCTTTCGTAAGTGACCAGTCTGAAGCCAAAGGCTTTGTCGAAGACGCAAAGTTCGACTTGCTGCTGCGCAACTATTACTTCAACCGTGATAACAAAAACGGTGGCAACGACCAGAAAGACTGGACCCAGGGTATCTGGGGCAACTTCAGCTCCGGCTACACCCAAGGTACTGTTGGCGTCGGCGTCGATGCATTCGGTTACCTGGCATTGAAACTGGACGGTGGCGACGGCACCGGCGGCACCGGCAACATGAGCCGCGACGCCGATGGCGATGTAAACGACAGCCAGGGCAAGGCCGGCGCAGCGATCAAATTCCGCGTCTCCAAGACCGAGCTGAAAGTCGGTGACATGCAGCCAAGCACTGCTCCAGTGTTTGCCGTTGGCGGTTCCCGTATCCTTCCTCAAACTGCCAGCGGTTTCCAACTGCAGAGCAGCGAAGTCAAAGACCTTGACCTCGAAGCCGGTCACTTCTACTCGGGTACCAGCCAGGATCGTAACTCCCGCAATGGCGGCCTGTACGCAACCTACGCTGGCGTCGAAGCCAACACCATCGACTACCTGGGCGGCAAATACGCGATCAGCGACAACCTGAGCGCATCGCTGTACGGCGCCAAGCTGGAAGACATCTGGAACCAGTACTACGCCAACCTGAACTACACCATCCCAATGGGTGGCGATCAGTCGTTGAACCTGGACGGTAACATCTACCGCACCACCGATGCCGGCAGCGCCGAAGCCGGTGACATCAGCAACACGACGTTCTCCCTGGCAGCTGCTTTCTCGTTCCTGAAAGCACACACCATCACCGTGGCCTTCCAGAAGGTCAACGGCGACACGCCGTTCGACTACATCGGCGTGGGCAAGAACAACCGCGGCGGCGACTCGATCTTCCTCGCCAACTCCATCCAGTACTCCGACTTCAACGCGCCTAACGAGAAATCTGCCCAGATCCGTTATGACCTGAAAATGGCTGAGTACGGCGTTCCTGGTCTGAGCTTCATGACCCGCTACGTTAAGGGTTGGGACATTGATGGTACCGATCTGCCTGCTAACAGCGTATACCGCGACGAGGACGGCAACCCTCTGTACGGCAATAACGGCAAGCACAACGAAACCAACTTCGAAGCCAAGTACGTTGTCCAGTCTGGCCCAGCGAAAGACCTCTCCTTCCGCATTCGTCAAGCTTGGCACTACGCTAACGAAGACGAAGGCGAAGGCGACGTGAAAGAGTTCCGCCTGATCGTCGACTACCCGATTTCGGTTCTGTAA	MRVMKWSMIALAVAAAASTQMATAAPFVSDQSEAKGFVEDAKFDLLLRNYYFNRDNKNGGNDQKDWTQGIWGNFSSGYTQGTVGVGVDAFGYLALKLDGGDGTGGTGNMSRDADGDVNDSQGKAGAAIKFRVSKTELKVGDMQPSTAPVFAVGGSRILPQTASGFQLQSSEVKDLDLEAGHFYSGTSQDRNSRNGGLYATYAGVEANTIDYLGGKYAISDNLSASLYGAKLEDIWNQYYANLNYTIPMGGDQSLNLDGNIYRTTDAGSAEAGDISNTTFSLAAAFSFLKAHTITVAFQKVNGDTPFDYIGVGKNNRGGDSIFLANSIQYSDFNAPNEKSAQIRYDLKMAEYGVPGLSFMTRYVKGWDIDGTDLPANSVYRDEDGNPLYGNNGKHNETNFEAKYVVQSGPAKDLSFRIRQAWHYANEDEGEGDVKEFRLIVDYPISVL	PGPT0028135_66	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028135-oprD-K18093	NA	NA
D1-36_01191	426			hypothetical protein	GTGTTTGCCTTAGATCCACGATTGCAACAAGACACATTGCCCATCGGCGATTTCCCGCTGTGCCGCTTGCTCTTGTCCAATGACTCGAACTACCCGTGGTTCATCCTCGTGCCGCGACGGGAAAATATCAGTGAATTGTTTCAATTGGATGACGCTGATCAATCGCAGTTGTGGAAAGAAACCACGGCACTGGCTGAAACGCTCAAGGACTCGTTCGATGCCGACAAGCTGAATGTTGCAACCTTGGGTAACGTCGTCAGTCAATTGCACATGCACGTGATCGTACGCAAGCGAGAGGATGCCGCCTGGCCGGCGCCGGTCTGGGGCAAGCACCCGGCCCAGCCTTATGATGCCGGGCAGGTAGCGGCCATCCGCAAACGGTTGCGAGCGGTGTTGACCGATGATTTCAAGTTTCTGGAGGGCTGA	MFALDPRLQQDTLPIGDFPLCRLLLSNDSNYPWFILVPRRENISELFQLDDADQSQLWKETTALAETLKDSFDADKLNVATLGNVVSQLHMHVIVRKREDAAWPAPVWGKHPAQPYDAGQVAAIRKRLRAVLTDDFKFLEG	PGPT0005685_256	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_HYDROCARBONS|OIL_DEGRADATION	XENOBIOTIC_CHLOROBENZENE_DEGRADATION,PGPT0005685-catA-K01061	NA	NA
D1-36_01192	207	slyX		Protein SlyX	ATGAATCTTGAAGAGCGCGTAACAGACCTGGAAAGCCGCCTGGCGTTTCAGGATGACACTATCCAGGCATTAAATGACGTGCTGGTGGAGCAGCAACGAGTCGTTGAGCGTTTGCAGCTGCAGATGGCGGCGCTACTCAAGCGCCAGGAGGAAATGGCCGGACAGTTCGAATCCTTCGAGGAAGACGCGCCACCGCCGCATTACTGA	MNLEERVTDLESRLAFQDDTIQALNDVLVEQQRVVERLQLQMAALLKRQEEMAGQFESFEEDAPPPHY				NA	NA	NA	NA	NA
D1-36_01193	606			hypothetical protein	ATGTTGAAAATCGTCCACTTGCTAATGGGCGCAGCTGCCCTGCTGCTGTCCTTCATCCCTAGCCTGGGTTCCGAAGCCACACCTTACCTGCAACATCCCGACGCGCTGTACCTGGCCTTTTTCGGCCTGCTCAACCTGACCCTGGCACCCGTCATCCCTTACTGGAACAAAGGTCCACGTCATCAACTGCAAAACCTTGTCAGCGGCTTGCTGGTACTGGCTGTTGCCTTGCAAACCCTGTCCTTGCTGGCGCCCATGCCGGAAATCGGCGGCCAACCCGCCATCCTGTCCAGCCTGGCCGCGGCATTGCTCGCTGTCTTGCTGCACCTGGCCGTCAGCTTCTACAGGAAGTCGTCGCCAGCGGCCGCCTCCCAGAACTACGACATGTCCAACCGCGATACCGGCACCGTGAAGTGGTTCAACACTTCCAAGGGGTTCGGCTTCATTTCCCGCGACTCCGGCGATGACATTTTTGTGCATTTCCGGGCCATTCGTGGCGAAGGCCACCGCGTTCTGGTCGAAGGCCAGCGCGTGGAGTTCTCGGTGATGCATCGCGACAAGGGCCTACAGGCCGAAGACGTGATCGCCGCGCTGCCGCGCCGCTGA	MLKIVHLLMGAAALLLSFIPSLGSEATPYLQHPDALYLAFFGLLNLTLAPVIPYWNKGPRHQLQNLVSGLLVLAVALQTLSLLAPMPEIGGQPAILSSLAAALLAVLLHLAVSFYRKSSPAAASQNYDMSNRDTGTVKWFNTSKGFGFISRDSGDDIFVHFRAIRGEGHRVLVEGQRVEFSVMHRDKGLQAEDVIAALPRR	PGPT0014675_331	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	LOW_TEMPERATURE_TOLERANCE	COLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704	NA	NA
D1-36_01194	474		COG0783	putative protein	ATGGCAATTGATATCGGTATCAGCGAAGAAGATCGCAAGTCCATCGTCGACGGACTTTCGCGGCTGCTGTCGGACACCTACGTGCTGTACCTCAAGACCCACAACTTCCACTGGAACGTTACCGGGCCGATGTTCCGCACCTTGCACCTGATGTTCGAAGAACAATACAACGAGCTGGCGCTGGCGGTGGATTCGATCGCCGAGCGAATCCGTGCGCTCGGCTTCCCGGCGCCTGGCGCTTATTCGGTGTATGCGCGTTTGTCTTCCATCAAGGAGGAAGAGGGCGTACCGGCGGCAGAGGATATGATCCGGCAATTGGTCGAGGGGCAGGAAGCGGTGACGCGCACCGCCCGCGGTATCTTTCCTTTATTGGACAAGGTCAGCGACGAGCCCACCGCCGACCTGTTGACGCAGCGTATGCAGGTTCACGAAAAAACCGCGTGGATGTTGCGTTCGTTGCTGGAAGATCGCTAA	MAIDIGISEEDRKSIVDGLSRLLSDTYVLYLKTHNFHWNVTGPMFRTLHLMFEEQYNELALAVDSIAERIRALGFPAPGAYSVYARLSSIKEEEGVPAAEDMIRQLVEGQEAVTRTARGIFPLLDKVSDEPTADLLTQRMQVHEKTAWMLRSLLEDR	PGPT0004055_2932	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0004055-dps|dpsA-K04047	NA	NA
D1-36_01195	345			hypothetical protein	ATGATCCAAGGAAAAGACCCCAGGGAAAGTGTGCGCGGACGACCGCAGTCCGTGAAGATCGACCCGTTCGTCAGTGGTTTTGACATGCAATTGGCGCGGCCGCTGGCCCGCTCCATCCGACTCAACGGATTCGCCACCTGCCTGCGGCTGGAGCAGGTCTATTGGGATATTCTCGGTGACCTGGCGCAGCTCAACAGCTGCTCCGTCAGCACCTTGCTGTCCCATGTGGACAGGGAGGTCCACCTGCGTCATGGCGGCGTGCGTAATTTCAGTGGGCTGGTGCGCGTTGTCTGCGTGGTTCACAGCCTGAAGGAAATGCACGGGAGTGATCCAGGTCTTGGCTGA	MIQGKDPRESVRGRPQSVKIDPFVSGFDMQLARPLARSIRLNGFATCLRLEQVYWDILGDLAQLNSCSVSTLLSHVDREVHLRHGGVRNFSGLVRVVCVVHSLKEMHGSDPGLG				NA	NA	NA	NA	NA
D1-36_01196	222			hypothetical protein	ATGCCGATGTACGACTATCAATGTGCTTCCTGTGGTCATCAGATGGAAGCCATTCAAAAAATCAGCGCGGCACCGCTGGTCGATTGCCCCGCCTGCCAAGCGCCGGAGCTGAAAAAGATGCTGTCCATGCCTGGTTTCCGCCTCGGCGGCACGGGCTGGTATGAAACCGACTTCAAGACCGGCGCCAAGAAGAACCTGGCCGGTGGCGACAAGGCTGACTGA	MPMYDYQCASCGHQMEAIQKISAAPLVDCPACQAPELKKMLSMPGFRLGGTGWYETDFKTGAKKNLAGGDKAD				NA	NA	NA	NA	NA
D1-36_01197	1776	aspS	COG0173	Aspartate--tRNA(Asp/Asn) ligase	ATGATGCGCAGCCATTATTGCGGCCAACTGAACGAAAGCCTGGAAGGTCAGGAAGTTACTCTTTGCGGATGGGTCCATCGTCGCCGTGACCATGGCGGGGTGATTTTCCTCGATATCCGTGATCGTGAAGGCCTGGCCCAGGTAGTGTTCGATCCTGACCGCGCCGAAACCTTCGCCACCGCCGACCGCGTGCGCAGCGAATACGTCGTCAAGATCACCGGCAAGGTGCGCCTGCGCCCGGCTGGCGCTGGCAACGCCAACATGGCGTCCGGCATGATCGAAGTGCTGGGCTACGAGCTGGAAGTGCTCAACGAGGCGGAAACCCCGCCGTTCCCGCTCAACGAATATTCCGACGTAGGCGAGGAAACCCGCCTGCGCTATCGTTTCATCGACCTGCGTCGTCCGGAAATGGCCGAGAAGCTGCGTCTGCGTTCGCGCATGACCACCAGCATCCGTCGTTACCTGGACGAGAACGGCTTCCTCGACGTCGAGACGCCGATCCTGACCCGCGCCACGCCGGAAGGCGCCCGCGATTACCTGGTGCCGAGCCGTACCCACCCCGGCAGCTTCTTCGCCTTGCCGCAATCGCCACAGCTGTTCAAGCAACTGCTGATGGTGGCCGGGTTCGATCGCTACTACCAGATCGCCAAGTGCTTCCGCGACGAAGACCTGCGTGCCGACCGTCAGCCTGAGTTCACCCAGATCGACATCGAGACCAGCTTCCTCGATGAAAAAGACATCATGGGCCTGACCGAAGGCATGATCCGCAACCTGTTCAAGGAAGTGCTGGACCTGGAATTCGGCGATTTCCCGCACATGACCTTCGAAGAAGCCATGCGCCGCTACGGTTCCGACAAGCCAGACCTGCGTATTCCGCTGGAGCTGGTGGACGTGGCCGATCAGCTCAAGGAAGTGGAGTTCAAGGTATTCAGCGGCCCGGCCAACGATCCGAAATGCCGTATCGCTGCCCTGCGCGTTCCCGGTGGCGCGAGCATGCCGCGCAAGCAGATCGACGACTACACCAAGTTCGTCGGCATCTACGGTGCCAAGGGCCTGGCCTACATCAAGGTCAACGAGCGCGCGGCGGGTGTCGATGGCCTGCAATCGCCGATCGTGAAAAACATCCCGCAGGACAACCTCAACGTGATCCTCGATCGCGTGGGCGCGGTCGATGGCGACATCGTGTTCTTCGGCGCCGACAAGGCCAAGATCGTCAGCGAAGCCTTGGGCGCATTGCGCATCAAGCTGGGTCACGACCTGAAGCTGCTGACCTGTGAGTGGGCTCCGCTGTGGGTCGTTGATTTCCCGATGTTCGAAGAAAACGAGGACGGCAGCTTCTCCGCGCTGCACCACCCGTTCACCGCGCCGAAGTGCTCGCCACAAGAGCTGGAGGCCAACCCGGCCACCGCCCTGTCGCGTGCGTACGACATGGTCCTTAACGGCACCGAGCTGGGTGGCGGTTCGATCCGTATCCACCGCAAGGAAATGCAGCAGGCCGTGTTCCGCCTGTTGGGTATCGATGAAGCGGAACAGGAAGAGAAGTTCGGCTTCCTGCTGGACGCCTTGAAGTACGGCGCGCCGCCCCATGGTGGCCTGGCCTTCGGTCTGGATCGCCTGGTGATGCTGATGACCGGCGCCCAGTCGATCCGCGAAGTCATCGCGTTCCCGAAAACCCAGAGCGCGGCGGATGTCATGACCCAGGCGCCTGGCGTCGTGGATGCCAAGGCATTGCGCGAGTTGCACATTCGTCTGCGTGAACAGCCAAAGGCTGAGTAA	MMRSHYCGQLNESLEGQEVTLCGWVHRRRDHGGVIFLDIRDREGLAQVVFDPDRAETFATADRVRSEYVVKITGKVRLRPAGAGNANMASGMIEVLGYELEVLNEAETPPFPLNEYSDVGEETRLRYRFIDLRRPEMAEKLRLRSRMTTSIRRYLDENGFLDVETPILTRATPEGARDYLVPSRTHPGSFFALPQSPQLFKQLLMVAGFDRYYQIAKCFRDEDLRADRQPEFTQIDIETSFLDEKDIMGLTEGMIRNLFKEVLDLEFGDFPHMTFEEAMRRYGSDKPDLRIPLELVDVADQLKEVEFKVFSGPANDPKCRIAALRVPGGASMPRKQIDDYTKFVGIYGAKGLAYIKVNERAAGVDGLQSPIVKNIPQDNLNVILDRVGAVDGDIVFFGADKAKIVSEALGALRIKLGHDLKLLTCEWAPLWVVDFPMFEENEDGSFSALHHPFTAPKCSPQELEANPATALSRAYDMVLNGTELGGGSIRIHRKEMQQAVFRLLGIDEAEQEEKFGFLLDALKYGAPPHGGLAFGLDRLVMLMTGAQSIREVIAFPKTQSAADVMTQAPGVVDAKALRELHIRLREQPKAE				NA	NA	NA	NA	NA
D1-36_01198	747	pmpR	COG0217	Transcriptional regulatory protein PmpR	ATGGCAGGTCATTCCAAGTGGGCGAACATCAAGCACCGCAAAGAACGTCAGGATGCCAAGAGAGGCAAGATCTTCACCAAGTGGATCCGTGAACTGACAGTCGCGGCCCGCCAGGGTGGCGGCGATCCGGGCTCCAACCCGCGCTTGCGCCTGGCATTGGACAAGGCCTTGGGCGCGAACATGAGTCGCGACATCATCGACCGAGCGATCGCCCGTGGCGCCGGTGCGACCGAGGCCGACAATGTCGAGGAGCTGACTTATGAAGGCTACGGCCCGGGCGGCGTGGCGGTGATGGTCGAATGCATGACCGACAACCGCAACCGCACCGCCGCGGCCGTGCGCCACGCATTCAGCAAATGCGGCGGCAACCTGGGCACTGACGGTTCGGTGGCTTATCTGTTCGAGCGCAAGGGGCAGATCAGCTTCGCGCCGGGTATTGATGAGGATGCCCTGACCGAAGCGGCCCTGGAGGCCGATGCCGATGATGTGGTCGGTCACGAGGACGGTTCGTTCGACGTGTTCACGTCGTTCGCCAGCTTCTATGCCGTGCGCAACGCCCTTGAGGCGGCCGGTTTCAAGCCTGCCGACGCGGAAATCGTGATGCAACCGACCACCAGCGCCGAACTCGACCTGGAAGGCGCCGAGAAAGTGCTCAAGCTGATCGACATGCTGGAAGACCTGGATGACGTGCAGAACGTTTATTCCAACGCTGATATTCCTGAGTCGGTGGCTGAACAACTCGGCTGA	MAGHSKWANIKHRKERQDAKRGKIFTKWIRELTVAARQGGGDPGSNPRLRLALDKALGANMSRDIIDRAIARGAGATEADNVEELTYEGYGPGGVAVMVECMTDNRNRTAAAVRHAFSKCGGNLGTDGSVAYLFERKGQISFAPGIDEDALTEAALEADADDVVGHEDGSFDVFTSFASFYAVRNALEAAGFKPADAEIVMQPTTSAELDLEGAEKVLKLIDMLEDLDDVQNVYSNADIPESVAEQLG				NA	NA	NA	NA	NA
D1-36_01199	525	ruvC	COG0817	Crossover junction endodeoxyribonuclease RuvC	ATGACTTTAATCCTTGGTATCGACCCTGGTTCGCGCATCACCGGCTATGGCGTGGTTCGCGACACCGGTCGCGGCTGCGTGTACGTCGCCTCTGGTTGCATCCGCACCGGCGCGGGCGAGCTGCACGAGCGCTTGCAGATTGTTTATCGCGGCGTGCGCGAAGTCATCCAGACCTACGGTCCGGTGACGATGGGCATCGAAAAGGTTTTCATGGCCCGCAATGCCGACTCCGCCCTGAAGTTGGGGCAGGCCCGGGGGGCGGCCATTGTGGCGGGCGCCGAGGAAAGCCTGGAGATTGCAGAATACACGGCGACCCAGGTCAAGCAGGCGGTCGTCGGCACTGGCGCGGCGAACAAGGAGCAGGTGCAGATGATGGTGATGCACTTGTTGAAACTGGTCAGCAAGCCGCAGATAGACGCCTCTGACGCCCTGGCCATCGCCATTTGCCATGCCCACACCCGTTCCAGCCTGTTGCCCCATGGCCTGGGAACCGCACGCAGTCGTGGCGGGCGCCTGCGTCTCTGA	MTLILGIDPGSRITGYGVVRDTGRGCVYVASGCIRTGAGELHERLQIVYRGVREVIQTYGPVTMGIEKVFMARNADSALKLGQARGAAIVAGAEESLEIAEYTATQVKQAVVGTGAANKEQVQMMVMHLLKLVSKPQIDASDALAIAICHAHTRSSLLPHGLGTARSRGGRLRL				NA	NA	NA	NA	NA
D1-36_01201	1062	ruvB_1	COG2255	Holliday junction ATP-dependent DNA helicase RuvB	GTGATTGAAGCCGATCGTCTGATTGCCGCCACGGGCGCGCCCCGAGACCGCGAGGAAGTCCAGGACCGCGCGATTCGCCCCGTCAGCCTGGCCGACTATATCGGCCAACCGACCGTGCGCGAGCAGATGGAACTGTTCATCCAGGCAGCCCGTGGACGCAGCGAATCGCTGGACCACACCCTGATCTTCGGCCCGCCGGGCCTGGGCAAGACCACCCTGGCCAATATCATTGCCCAGGAGATGGGCGTGTCGATCAAGAGCACGTCCGGGCCGGTGCTCGAGCGGCCAGGCGACCTTGCGGCGCTGCTGACCAATCTGGAGCCCCATGACGTGCTGTTCATCGACGAAATCCACCGGCTGTCGCCGATCGTCGAGGAAGTGCTGTACCCGGCCATGGAAGATTTTCAGCTCGACATCATGATCGGCGAGGGGCCTGCGGCGCGCTCCATCAAGCTCGACTTGCCACCTTTTACCCTGGTGGGCGCCACCACCCGCGCCGGCATGCTGACCAATCCGTTGCGGGACCGTTTCGGCATCGTCCAGCGCCTGGAGTTCTACAGCAACGCCGACCTGGCAACGATTGTCAGCCGCTCGGCCGGCATCCTCGGGTTACCGCTGGACCCGGACGGTGCGTACGAAGTCGCCCGGCGCGCCCGGGGTACACCGCGTATCGCCAACCGCCTGCTGCGTCGGGTCCGGGACTTTGCCGAAGTCCGGGCCAAGGGCCACATCACCAAGCCGATCGCGGACCTGGCCTTGAACCTGCTGGACATCGACGAGCGCGGTTTCGATCATCAGGACCGGCGCCTGCTGTTGACCATGATCGAGAAATTCGACGGTGGCCCGGTGGGCGTGGACAGCCTGGCGGCCGCCATCAGCGAAGAGCGTCACACCATTGAAGACGTGCTGGAACCCTACCTGATCCAACAGGGCTATATCATGCGCACCCCACGCGGGCGCGTGGTGACGCGTCATGCTTATCTGCACTTCGGCTTAAACATCCCGACACGAATGGGGGAGATGCCGGTGGTAGACGAGTTCCTCGATGCGGTAGACGATTGA	MIEADRLIAATGAPRDREEVQDRAIRPVSLADYIGQPTVREQMELFIQAARGRSESLDHTLIFGPPGLGKTTLANIIAQEMGVSIKSTSGPVLERPGDLAALLTNLEPHDVLFIDEIHRLSPIVEEVLYPAMEDFQLDIMIGEGPAARSIKLDLPPFTLVGATTRAGMLTNPLRDRFGIVQRLEFYSNADLATIVSRSAGILGLPLDPDGAYEVARRARGTPRIANRLLRRVRDFAEVRAKGHITKPIADLALNLLDIDERGFDHQDRRLLLTMIEKFDGGPVGVDSLAAAISEERHTIEDVLEPYLIQQGYIMRTPRGRVVTRHAYLHFGLNIPTRMGEMPVVDEFLDAVDD				NA	NA	NA	NA	NA
D1-36_01202	468	ybgC	COG0824	Acyl-CoA thioester hydrolase YbgC	ATGCGCGCGCAAAACGGGCTGGAGTCGTTCGCACATCGCTGTCGCGTTTATTACGAGGACACCGATGCCGGCGGCATCGTTTACTACGTCAATTACCTCAAGTTTATGGAACGGGCTCGAACCGAACGGCTGCGGGAACTGGGTTTCGCCCAATCCGCGCTGGCAGGGGAGGACCTGTTATTCGTCGTGCATTCCAGCGAAGCGCGCTACCACGCGCCGGCGCGACTGGACGACGAGCTTGTGGTGACTGCCGATGTCATCGAATTGAACCGCGTCAGCCTGCGCTTCAAGCAGCAGGTCAGGCGCGCTGCGGATAATGTGCTGCTCTGCGAAGGGCAGTTTTTGGTGGCCTGTGTGCGCACCCATAGTTTGAAACCCCGGGCCATTCCCGAAGCTCTACGCGCGGCCTTTGCCGGCGTGAGCGGCGCGGGTACACACTCAGAGCAGGAGATAAAGCGTGGAAGCTAA	MRAQNGLESFAHRCRVYYEDTDAGGIVYYVNYLKFMERARTERLRELGFAQSALAGEDLLFVVHSSEARYHAPARLDDELVVTADVIELNRVSLRFKQQVRRAADNVLLCEGQFLVACVRTHSLKPRAIPEALRAAFAGVSGAGTHSEQEIKRGS	PGPT0009505_71	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009505-ybgC|fcbC1-K01075	NA	NA
D1-36_01203	696	tolQ_1	COG0811	Tol-Pal system protein TolQ	GTGGAAGCTAACGTCGTCGACCATTCCTCCATGTGGAGCCTGGTCAGCAATGCCAGCGTCGTGGTGCAACTGGTAATGCTGACCCTGGTAGCCGCATCGGTGACCTCATGGATCATGATTTTTCAGCGCAGCAACATGCTGCGCGCCGGTCGCCGTGCCTTGGAGAGCTTCGAAGAGCGCTTCTGGTCCGGTATCGACCTGTCCAAGCTGTACCGCCAGGCCGGCAGCAACCCGGACCCGGATTCGGGCGTCGAGCAGATCTTCCGCGCCGGCTTCAAGGAGTTCTCCCGTCTGCGCCAGCAACCGGGCGTCGACCCTGAAGCGGTGATGGAAGGCGTGGCCCGTGCGATGCGCGTGGCCATCTCCCGCGAAGAAGAAAAGCTCGAACAAGGTTTGCCGTTCCTGGCGACCGTCGGTTCGGTCAGCCCGTACATCGGCCTGTTCGGTACCGTCTGGGGGATCATGAACTCCTTCCGTGGCCTGGCATCCGCCCAGCAAGCGACCCTGGCCACCGTGGCCCCGGGCATCGCCGAGGCACTGATCGCCACCGCCATCGGCCTGTTCGCGGCGATCCCGGCCGTTATCGCCTACAACCGTTTCGCTGCCCGCAGCGAAACGCTGACCAGCCGCTACTACACCTTCGCCGATGAATTCCAGGCGATCCTGCACCGCAAAGTGCACACCAGCGAAGAATAA	MEANVVDHSSMWSLVSNASVVVQLVMLTLVAASVTSWIMIFQRSNMLRAGRRALESFEERFWSGIDLSKLYRQAGSNPDPDSGVEQIFRAGFKEFSRLRQQPGVDPEAVMEGVARAMRVAISREEEKLEQGLPFLATVGSVSPYIGLFGTVWGIMNSFRGLASAQQATLATVAPGIAEALIATAIGLFAAIPAVIAYNRFAARSETLTSRYYTFADEFQAILHRKVHTSEE	PGPT0003750_3682	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	OTHER_HEAVY_METAL_RESISTANCE_SYSTEMS	HEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003750-exbB-K03561	NA	NA
D1-36_01204	462	exbD_1	COG0848	Biopolymer transport protein ExbD	ATGGCTTTAATCGCTCGAGCCCGAAACAAGCGCAAGCCGGTTGCCGAGATGAACGTAGTGCCCTACATCGACGTGATGCTGGTGCTGCTGGTCATCTTCATGGTGACCGCGCCCATGCTCAATCAGGGCGTGAAGGTCGATCTGCCCAAGGTTTCCAGCGAAGCCTTGCCGCAGGACAACAACACCCAGGTACTGACCATTTCGATCAAGGCTGACAAGACCTACTACTGGAATCTTGGCAGTGAAGTGGACACCGAGAAGCAGCAGGACCGGGCCATGACCTTGCCGCAGATGACCGACGCGGTGACCAAGATCATCAATGCCGGCAACAGCAATGGCAAGCGTACGCAGGTCTTCATTCGTGGCGACAAGACCGTCGACTACGGCGCCGTGATGGGCGCCATGGGCGGCCTGCAGAAAGCCGGGGTCGGTAATGTTGGCTTGATCACCGAGGCCCCCTGA	MALIARARNKRKPVAEMNVVPYIDVMLVLLVIFMVTAPMLNQGVKVDLPKVSSEALPQDNNTQVLTISIKADKTYYWNLGSEVDTEKQQDRAMTLPQMTDAVTKIINAGNSNGKRTQVFIRGDKTVDYGAVMGAMGGLQKAGVGNVGLITEAP				NA	NA	NA	NA	NA
D1-36_01205	1080			hypothetical protein	ATGCAGCAACAGCGAGAGCCGTCCGCCTCGGAAAGCTACTTCTGGCCCAGTGTTCTGGCAATCGGCCTGCATGTGCTGGTGTTCGGCATGCTGTTTGTCAGCTTTGCCATGACCCCGGAGCTGCCGCCGGCCAAGCCGATCGTGCAGGCGACCCTGTACCAGCTCAAGTCCAAAAGCCAGGCCACCACGCAGACCAACCAGAAGCTTGCCGGCGAGGCGAAGAAATCCGCTGCGCGCCAGACCGAAGTCGAGCAGATGGAGCAGAAAAAGGTCGAGCAGGAAGCCGTAAGGGCAGCGGAACAAAAGAAAGAGGAAGCTGCTCAAAAGGCCGAAGAAGCGAAAAAGGCCGATGAGGCAAAAAAAGCGGACGAGGCTAAAAAGGCAGACGAAGCCAAGAAAGCCGATGACGCGAAGAAAGCCGCCGAGGCCAAGAAGGCAGAAGAGAAACAATTGGCTGATATAGCCAAGAAGAAGGCCGAAGAAGAAGCCAAGAAAGCCGCTGAAGAAGAGGCCAAGAAAGCGGCCGCTGAAGAAGCGAAGAAAAAGATTGTCGAGGACGCGAAGAAAAAAGCGGCCGAGGACGCCAAGAAGAAAGCTGAAGCTGAAGAGGCGAAGAAGAAAGTCGCCGAAGACGCGAAGAAGAAAGCCGCCGCCGACGCCGCCAAGAAAAAGGCCCAGGACGCAGCGCGTAAATCCGCCGAAGAGAAAAAGGCCCAGGCCCTGGCAGATTTGCTTTCCGACACGCCGGAACGCGAGCAGGCGTTGGCCGACGAGCAGGGCGATGAAGTCGCCGGTAGCTTCGACGATCTGATTCGCGCCCGGGCGGCGGAAGGCTGGGCTCGTCCGCCTTCGGCGCGCAAAGGCATGACAGTTGTATTGCAAATCGGCATGTTGCCCGACGGTACGGTTACCTCGGTCAGCGTAGCCAAGTCCAGTGGCGATGGTCCGTTCGACGCTTCGGCGGTCGCGGCGGTCAAGAACATTGGGCGGTTGACGGAAATGCAAGGGATGAAGCCGAGCGATTTTGCTCCGTATCGTTCGTTCAAGATGACATTCACACCTGAGGATCTAGCCTTGTGA	MQQQREPSASESYFWPSVLAIGLHVLVFGMLFVSFAMTPELPPAKPIVQATLYQLKSKSQATTQTNQKLAGEAKKSAARQTEVEQMEQKKVEQEAVRAAEQKKEEAAQKAEEAKKADEAKKADEAKKADEAKKADDAKKAAEAKKAEEKQLADIAKKKAEEEAKKAAEEEAKKAAAEEAKKKIVEDAKKKAAEDAKKKAEAEEAKKKVAEDAKKKAAADAAKKKAQDAARKSAEEKKAQALADLLSDTPEREQALADEQGDEVAGSFDDLIRARAAEGWARPPSARKGMTVVLQIGMLPDGTVTSVSVAKSSGDGPFDASAVAAVKNIGRLTEMQGMKPSDFAPYRSFKMTFTPEDLAL				NA	NA	NA	NA	NA
D1-36_01206	1281	tolB	COG0823	Tol-Pal system protein TolB	ATGCTCGTCGTTATCTGCTGCTTGGCAGGGATAGCGGTAGCAGAGGAAAAGAACATCCTGGTCACCAGCGGCAGCGACCGGGCGACGCCGATCGCCGTCGTTCCGTTCGGTTGGCAGGGCGGCAGTGTCTTGCCGGATGACATGGCTGAGATCATCGGCAACGACCTGCGTAACTCCGGTTACTACGCGCCGATTCCGAAGCAGAACATGATCAGCCTGCCGACCCAGGCCAGCGAAGTCATCTACCGTGACTGGAAGGCGCTGGGCGCCCAGTACATCATGGTCGGCAGCATCGTTCCGGCGGGCGGTCGCCTGCAGGTGCAGTACGCCTTGTTCAACGTCGCCACCGAGCAGCAAGTGCTGACCGGCAGCGTATCGGGCAGTGTCGACCAACTGCGCGACATGGCCCACTACATCTCCGACCAGTCGTTCGAAAAACTCACCGGCATCAAGGGCGCGTTCTCTACCCGCATGCTTTACGTGACGGCCGAGCGCTTCTCCGAGAACAACACCCGCTACACCCTGCAACGCTCCGACTATGACGGCGCGCGCGCGGTGACCTTGCTGCAATCGCGCGAGCCGATCCTGTCGCCGCGTTTTGCCCCCGATGGCAAGCGCATCGCCTACGTATCGTTCGAGCAGAAGCGTCCGCGTATCTTCGTGCAACACATCGACACCGGTCGCCGTGAGCAGATCACCAACTTCGAAGGCCTGAACGGCGCGCCAGCCTGGTCGCCGGACGGTTCGCGCCTGGCGTTCGTACTGTCCAAGGACGGCAACCCGGACGTCTACGTGATGAACCTGGCTTCGCGCTCGATCTCGCGCGTGACCAATGGCCCTGGCATCAACACCGAACCGTTCTGGGGCAAGGATGGTTCGACCATCTACTTCACCTCCGACCGCGGTGGCAAGCCACAGATCTACAAGACCAGCGCCGGTGGCGGTGGTGCCGAGCGCGTGACTTTCGTCGGCAACTACAACGCCAACCCTAAATTGTCGGCGGACGAAAAGACTCTGGTGATGATCCATCGCCAGGACGGTTTCACCAATTTCAAGGTGGCGGCCCAGGATTTGCAGCGCGGTAGCGTAAAAATCCTAACTGATAGCACTCTGGACGAGTCACCTACTGTTGCGCCCAACGGCACCATGGTAATCTACGCCACCCGCCAGCAGGGCCGGGGAGTCTTGATGCTCGTGTCCATTAATGGACGCGTGAGGCTCCCGCTTCCTACCGCTCAAGGCGAAGTCAGAGAACCGTCCTGGTCCCCTTACCTGAACTGA	MLVVICCLAGIAVAEEKNILVTSGSDRATPIAVVPFGWQGGSVLPDDMAEIIGNDLRNSGYYAPIPKQNMISLPTQASEVIYRDWKALGAQYIMVGSIVPAGGRLQVQYALFNVATEQQVLTGSVSGSVDQLRDMAHYISDQSFEKLTGIKGAFSTRMLYVTAERFSENNTRYTLQRSDYDGARAVTLLQSREPILSPRFAPDGKRIAYVSFEQKRPRIFVQHIDTGRREQITNFEGLNGAPAWSPDGSRLAFVLSKDGNPDVYVMNLASRSISRVTNGPGINTEPFWGKDGSTIYFTSDRGGKPQIYKTSAGGGGAERVTFVGNYNANPKLSADEKTLVMIHRQDGFTNFKVAAQDLQRGSVKILTDSTLDESPTVAPNGTMVIYATRQQGRGVLMLVSINGRVRLPLPTAQGEVREPSWSPYLN				NA	NA	NA	NA	NA
D1-36_01207	498	pal_2	COG2885	Peptidoglycan-associated lipoprotein	ATGGAAATGCTGAAGTTTGGTAAATTTGCTGCGCTGGCTCTGGCCATGGCTGTAGCTGTAGGTTGCTCGTCCAAAGGCGGCGACAACGCCGGTGAAGGCGCTGTTGATCCAAACGCTGGTTACGGCGCTAACACTGGTGCAGTTGACGGCTCCCTGAGCGAAGAAGCTGCTCTGCGCGCAATCACCACCTTCTACTTCGAATACGACAGCTCGGACCTGAAGCCAGAAGCCATGCGCGCTCTGGACGTTCACGCCAAAGACCTGAAAGGTAACGGCGCTCGCGTTGTTCTGGAAGGCAACACCGACGAACGTGGTACTCGTGAGTACAACATGGCACTGGGCGAGCGTCGTGCGAAAGCCGTTCAACGCTACCTGGTTCTGCAAGGTGTTTCCCCAGCTCAGCTGGAACTGGTTTCCTACGGCGAAGAGCGTCCAGTTGCTACCGGCAACGACGAGCAGTCCTGGGCTCAAAACCGTCGCGTCGAACTGCGTAAGTAA	MEMLKFGKFAALALAMAVAVGCSSKGGDNAGEGAVDPNAGYGANTGAVDGSLSEEAALRAITTFYFEYDSSDLKPEAMRALDVHAKDLKGNGARVVLEGNTDERGTREYNMALGERRAKAVQRYLVLQGVSPAQLELVSYGEERPVATGNDEQSWAQNRRVELRK				NA	NA	NA	NA	NA
D1-36_01208	834	cpoB		Cell division coordinator CpoB	ATGCGAACGTGCCGTCGTGCTGTAACTGTCCTGGCTCTCAGCCTCGCGCCGCTTGCGGCGTGGGCTGCGGTTCCTGTGGTCGATAACGACTCCGGCTATAACAATAGCGGGAGCAGCTATCCGCCTGCGGGTTACGGTACGAACGGCGCCTATGCCGGGGGAGGGGTTTCGGCCCCTGTCTCGGCACAGGGCGAGCTGTTCAACCAACTGCAGCAAATGCAGGATCAACTGTCACGCCAACAAGGCGCGATTGAAGTTCTGCAAAATGAAGTGTCGCGCATGAAGCAGGAAAGCCTGGAGCGATACCAGGATCTTGATCGGCGCATAGGAACCGGCGTTGCACCTGCCGCGACTCCTGAGAATTCTCCAGCCGGTGGCGACTTGAACGCCCCCGGTGCAGCCGCAGGCGCTGGGGCTAGCGCTCCAGCAGCACCTGCAGCCGGTGGCGAACCGGCGGACCCGGCGAAGGAAAAGCTCTATTACGATGCTGCCTTCGACCTGATCAAGGCCAAGGATTTCGACAAGGCCAGCCAGGCCTTTACCGCTTTCCTGCGCAAATACCCCAACAGTCAATATTCGGGTAACGCCCAATACTGGCTGGGCGAAGTGAACCTGGCCAAGGGCGACCTGCAAGGCGCCGGCCAGGCGTTCGCCAAGGTTTCGCAGCTGTATCCCAAGCACGCCAAGGTGCCGGATTCGCTGTACAAGCTCGCTGACGTAGAACGCCGCCTCGGTCACACCGACAAGGTCAAGGGCATTCTGCAGCAGGTGGTGGCCCAGTATCCGGGGACTTCCGCCGCCCAGTTGGCCCAGCGTGATCTGCAACGCATGTAA	MRTCRRAVTVLALSLAPLAAWAAVPVVDNDSGYNNSGSSYPPAGYGTNGAYAGGGVSAPVSAQGELFNQLQQMQDQLSRQQGAIEVLQNEVSRMKQESLERYQDLDRRIGTGVAPAATPENSPAGGDLNAPGAAAGAGASAPAAPAAGGEPADPAKEKLYYDAAFDLIKAKDFDKASQAFTAFLRKYPNSQYSGNAQYWLGEVNLAKGDLQGAGQAFAKVSQLYPKHAKVPDSLYKLADVERRLGHTDKVKGILQQVVAQYPGTSAAQLAQRDLQRM				NA	NA	NA	NA	NA
D1-36_01209	648	queE		7-carboxy-7-deazaguanine synthase	ATGCAAGACACATTGAGAATTACCGAAGTTTTTTACTCTTTGCAGGGTGAAACGCGAACGGCCGGGCTGCCCACTGTTTTTGTGCGCCTCACCGGCTGCCCGTTGCGTTGCCAGTACTGCGACAGCGCCTATGCCTTCAGCGGCGGCACAATGCGAACCCTCGACGATCTTCTCGAACAAGTGGCCGGCTTCCGTCCGCGCTATGTTTGCGTCACTGGGGGCGAGCCATTGGCGCAGCCCAATGCCATCCCTTTGCTCAAGCAGCTGTGCGACGCCGGCTATGAGGTCTCCCTGGAAACAAGCGGTGCGCTGGATATCTCGGCGGTCGATCCCCGCGTCAGTCGCGTCGTGGACCTCAAGACGCCTGGTTCCAAGGAAGCCCATCGCAACCGCTACGAGAACATTGAACTGTTGACCCGCAACGACCAGGTCAAGTTTGTCATCTGCTCCCGGGAAGACTATGACTGGGCGGTGTCCAAGCTGATCCAGCATGGACTCGACCAGCGAGCCGGCGAGGTGTTGTTTTCGCCAAGTCATCACGACCTCAATGCGCGGGATCTGGCGGATTGGGTGGTGGCGGACAATTTGCCGGTGCGCCTGCAATTGCAGTTGCATAAATATCTTTGGAACGACGAGCCGGGGCGCTGA	MQDTLRITEVFYSLQGETRTAGLPTVFVRLTGCPLRCQYCDSAYAFSGGTMRTLDDLLEQVAGFRPRYVCVTGGEPLAQPNAIPLLKQLCDAGYEVSLETSGALDISAVDPRVSRVVDLKTPGSKEAHRNRYENIELLTRNDQVKFVICSREDYDWAVSKLIQHGLDQRAGEVLFSPSHHDLNARDLADWVVADNLPVRLQLQLHKYLWNDEPGR				NA	NA	NA	NA	NA
D1-36_01210	693	queC	COG0603	7-cyano-7-deazaguanine synthase	ATGACTGAACATTCAACCACTGCTGAAAAACGCGCGGTCATCCTGCTGTCGGGCGGCCTGGACTCGGCAACCGTCGTGGCCATGGCTCGTGCCGAAGGTTATCGCTGCTACACCATGAGTTTCGATTACGGCCAGCGCCACCGTGCAGAATTGCAGGCCGCTGAACGGGTCGCCCGGGATCTGGGCGTGGTCGAGCACAAAGTCATCGGCCTGAACCTCAACGGCATTGGCGGTTCGGCCCTGACCGACAGCGCCATCGACGTTCCCGAAGCGCCGAGCGAAGGTATCCCGGTGACGTACGTGCCGGCGCGCAACACCGTGTTTCTGTCCCTCGCGCTGGGCTGGGCCGAGGTGCTGGAGGCGCGGGATATTTTCATCGGCGTCAATGCGGTGGACTATTCCGGTTATCCGGATTGTCGACCGGAGTTCGTCGAGGCGTTCGAGCGCATGGCCAACCTGGCGACGAAGGCCGGTGTAGAGGGACAGGGTTTCCGCATCCTGGCGCCGCTGCAAAACCTCAGCAAGGCCGAAATCGTCAAGGCGGGCGTGAGCCTTGGCGTCGACTATGGGCTTACCGTTTCGTGCTATCAGGCCGACGATCAAGGGCGCGCTTGCGGCAAGTGCGACAGCTGCCGGCTGCGTGCCGAAGGCTTCGCTGCGGCGGGTGTGAGCGATCCAACACCTTATTTTTGA	MTEHSTTAEKRAVILLSGGLDSATVVAMARAEGYRCYTMSFDYGQRHRAELQAAERVARDLGVVEHKVIGLNLNGIGGSALTDSAIDVPEAPSEGIPVTYVPARNTVFLSLALGWAEVLEARDIFIGVNAVDYSGYPDCRPEFVEAFERMANLATKAGVEGQGFRILAPLQNLSKAEIVKAGVSLGVDYGLTVSCYQADDQGRACGKCDSCRLRAEGFAAAGVSDPTPYF				NA	NA	NA	NA	NA
D1-36_01212	936	pcpR_1		PCP degradation transcriptional activation protein	ATGCTCATTAGTAACCTGCTTCGAAAGCTGGATATGCAAGACCTGATGGTGTTCGTCGCCGTGTTCGAACAGCGCAGCGTCACCCTGGTTTCCGAAGCCCTGTGTGTCAGCCAGTCGACCGTCAGCTATTGTCTGAAAAAACTGCGCACCAGCTTCGAAGACGAACTGTTCACCGTGACACGCGCAGGCATGAGCCCCACTCGGAAGGCCATCGTCATGTATGGCCAGGTGCTGGGGGTGCTCAACACGATCAACCAATGCCACTCCGGCATCCAGCCATTCGATCCACGTCAGGAAGAGATCACATTCAACCTCTGCGCGCCGGAATACTTCGAACTCCTGATCCTTCCGAAGCTGGTCAAGCGCTTCATCGGCAACCGTGTTCCGGTGGTGATCAACACCACGAAGTTCCGGCGCGATATTCCGGTCGACGCGCTGAGGGACGATCGCTTCGATCTTGCAGTGGGTTTCGGCCCGCATTTCCATGGCGATGCCAAGGGTCTGCAATCACGGGTACTGCTGACGGATGAGCTGGTGTGCGTGGTGGATAAACATTTCCCCGGCCCTGGGCAAGCGTTCAGCCTCGACGCATTTGTCGCGGGGCAGCATGTATTTCCGACCCCTTGGACATCCGACACCAACATGATCGATGGCTGGCTCGCTCGCCAGGGCTCCAGGCGACAGATCGTCGCGCGCGCCAATAGCTACGTGACAGCCTTGGCCCTGGTCACTGGAACCGACTATATCCTGACCCTGCCCAAACGCATCCAGGCATTGCTTTGCGACGACCAACGATTCGGCGAGCGCCAGCCGCCACCAGGGCTGCCGGGCTTTACGCTTGAGATGATGTGGAGCGAAAAAGCGAGCCAGGACAACCGGAACACCTGGTTGCGCCAGCAGGTCATGGACGTTTGCGCCGAGGTCGGCCAGCGCTGA	MLISNLLRKLDMQDLMVFVAVFEQRSVTLVSEALCVSQSTVSYCLKKLRTSFEDELFTVTRAGMSPTRKAIVMYGQVLGVLNTINQCHSGIQPFDPRQEEITFNLCAPEYFELLILPKLVKRFIGNRVPVVINTTKFRRDIPVDALRDDRFDLAVGFGPHFHGDAKGLQSRVLLTDELVCVVDKHFPGPGQAFSLDAFVAGQHVFPTPWTSDTNMIDGWLARQGSRRQIVARANSYVTALALVTGTDYILTLPKRIQALLCDDQRFGERQPPPGLPGFTLEMMWSEKASQDNRNTWLRQQVMDVCAEVGQR				NA	NA	NA	NA	NA
D1-36_01213	1188	yycB_2	COG2807	putative transporter YycB	ATGGAAAACGTTCAAGCCTCAAGTACCCGCGTATTCTGGCTGATGACCAGCATCGTATGCGTGGCGCTGAATCTGCGCCCTTCGATGGCGGCGGTCGGGCCTTTGCTATCCGCCATTCGGGGCGAAGTGCCCCTGACGTTCAGCATGGCATCGTTGCTGACGATGTTGCCGGTCATGGCCATGGGCTTGGCAATGTTCCTGGGCCTGCGAGTCGCCCTGCGCATTGGCGAACACCGCACCATCGTCCTGTCGCTGGTAGTCATCGGCCTTGCCACGGTCTCGCGCCTGTACCTGGATAGCGCCGAAGCGCTGATCATCAGCGCCGTTTTGGCCGGCATCGGCATCGCCCTGATCCAGGCGGTGCTGCCAGCCCTGATCAAGTCGCGGCTTGGCGATAACGTCTCGTTGTTCATGGGGCTGTACGTCACGTCGATCATGGGTGGCGCGGCCATCGCGGCGTCATTTTCCCCGTTCGTCCTGGCGCAGACGGGCAGCTGGCGCATCGGCCTGGCGATCTGGGCATTGCTGGTGCTGGTCGCGCTGGGCTGCTGGCACGCTCAACGCTCGGTCGTCATGCCATTACCCAGAGCACCGGGACGACAACAGGGCTCGTTCTTTGCCAACCGCCGGGCTTGGCTGCTGGCCCTGTTCTTCGGCCTGGGCACCGCGTCCTATACGTGCGTACTGGCCTGGCTGGCGCCGTATTACCTGGAAAAAGGCTGGAGCGAACAGCAGGCCGGCCTGGTCTTGGGGTTCCTCACAGCGATGGAAGTGTTGTCCGGCCTGGTCACCCCGGCAATCGCCAACCGCAGCCAAGACAAACGCCCGATACTGACGGTACTGCTGACATTGATCATGGCTGGCTTCTGCGGCTTGATCCTCAGCCCGGATCGCTTCAGCCTGCTGTGGCCATGCTTGCTGGGGCTCGGTATCGGCGGTCTGTTCCCGATGAGCCTGATCGTCTCCCTCGACCACCTGGACGACCCGCGCCGGGCCGGCGCGTTGACGGCATTCGTGCAAGGCATCGGTTACCTGATCGCCGGCCTGTCGCCATTGATTGCCGGAGTGATCCGTGACCAATCGGGCAGTTTCGAATGGGCGTGGTGGTCGCTTGCGGTGGTGATGGGGCTGATGATCCTGATGGTGTTGCGCTTCAACCCCAGGCAATACGCGCGGCATATTGGCTAG	MENVQASSTRVFWLMTSIVCVALNLRPSMAAVGPLLSAIRGEVPLTFSMASLLTMLPVMAMGLAMFLGLRVALRIGEHRTIVLSLVVIGLATVSRLYLDSAEALIISAVLAGIGIALIQAVLPALIKSRLGDNVSLFMGLYVTSIMGGAAIAASFSPFVLAQTGSWRIGLAIWALLVLVALGCWHAQRSVVMPLPRAPGRQQGSFFANRRAWLLALFFGLGTASYTCVLAWLAPYYLEKGWSEQQAGLVLGFLTAMEVLSGLVTPAIANRSQDKRPILTVLLTLIMAGFCGLILSPDRFSLLWPCLLGLGIGGLFPMSLIVSLDHLDDPRRAGALTAFVQGIGYLIAGLSPLIAGVIRDQSGSFEWAWWSLAVVMGLMILMVLRFNPRQYARHIG	PGPT0005211_1993	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_CYANATE_DETOXIFICATION	XENOBIOTIC_CYANATE_UPTAKE,PGPT0005211-cynX|yeaN-K03449	NA	NA
D1-36_01214	1059	nadA	COG0379	Quinolinate synthase A	ATGACGCAGATTTCCGAACGCCTTCTGGTCCAGGCTCACCTCGATGCCAAGCAGCCCAAGCCGCTGTCCGCCGAGCAAGAGGCCTGGTACCGCGCCGCCATTGCCGCCGAGCTCAAGGCTCAGGACGCGGTGCTGGTTGCGCATTTCTACTGTGACCCGGTTATTCAGGCCCTGGCCGAGGAGACTGGGGGCTGTGTCTCCGACTCCCTGGAAATGGCCCGCTTTGGCAACGCCCATCCGGCCAAGACCGTGGTGGTGGCCGGGGTCAAATTCATGGGCGAGACCGCCAAGATCCTCAACCCAGAAAAACGCGTGCTGATGCCGACTCTGGAAGCCACTTGCTCCCTCGATCTGGGTTGCCCGGTGGATGAATTCTCGGCGTTCTGCGACCAGCATCCGGAGCGCACCGTGGTGGTGTATGCCAACACTTCGGCGGCCGTGAAGGCCCGTGCGGACTGGGTGGTGACGTCCAGCTGTGCCCTGGAAATCGTCGAGAGCCTGATGGACAACGGCGAGACGATCATCTGGGGTCCGGACAAGCACTTGGGCACTTACATCCAGCGCAAGACCGGCGCCGACATGTTGCTCTGGGACGGCGCCTGCATCGTCCACGAAGAGTTCAAGTCCAAGCAGTTGGAAGATATGAAGGCGCTGTACCCGGACGCCGCCATCCTGGTGCACCCGGAGTCACCGACGTCGGTGATCGAACTGGCGGATGCCGTGGGTTCCACCAGCCAGTTGATTGCCGCCGCCCAGACTTTGCCGAACAAGACGCTGATCGTCGCCACCGACCGCGGCATTTTCTACAAAATGCAGCAGCTGTGCCCGGACAAGGTCTTCATCGAAGCCCCTACCGCCGGCAACGGCGCGGCATGCCGCAGTTGCGCGCACTGCCCATGGATGGCGATGAACACGCTGGAGCGCACGCTTCAGGCGCTCAAGGAAGGCAGCAACGAAATATTCGTCGACCCGGCATTGATCCCCCAGGCGATTCGCCCGCTCAAGCGCATGCTGGACTTCACCCAGGCGGCGCGAATGAAGTTGGCGGGTAATGCCTGA	MTQISERLLVQAHLDAKQPKPLSAEQEAWYRAAIAAELKAQDAVLVAHFYCDPVIQALAEETGGCVSDSLEMARFGNAHPAKTVVVAGVKFMGETAKILNPEKRVLMPTLEATCSLDLGCPVDEFSAFCDQHPERTVVVYANTSAAVKARADWVVTSSCALEIVESLMDNGETIIWGPDKHLGTYIQRKTGADMLLWDGACIVHEEFKSKQLEDMKALYPDAAILVHPESPTSVIELADAVGSTSQLIAAAQTLPNKTLIVATDRGIFYKMQQLCPDKVFIEAPTAGNGAACRSCAHCPWMAMNTLERTLQALKEGSNEIFVDPALIPQAIRPLKRMLDFTQAARMKLAGNA	PGPT0013365_1703	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013365-nadA-K03517	NA	NA
D1-36_01215	489			hypothetical protein	ATGTCCAAACACGTGCTCACCCCACAGGGTGACTTCCCTCCCGCCGGCCTGGGTCGTCGCCTGGCCGCGATGTTCTATGATTTTTTGCTGTGCACGGCGCTGCTGATCGTCACCGGTGGCGTGTACAAGATGATCCAGATGATGATCATCGGCGAAGAAAAGATGCGTGCCCTTACCGACGCCGGCGCGCTGGATGGCGATCCGCTGCTGTCCACGGTGTTGCTGTTCGTGCTGTTCGGCTTCTTCGCCAAGTTCTGGACCCACAACGGCCAGACCCTGGGCATGCAGGTCTGGTGCATCCGCGTGCAGAACACCGATGGCACCGCCATTAGCTTGTGGCAGGCGTTGTTGCGATTCGTGGTGTCGATTGCGTCATTGCTGCTGGTGGGGCTGGGCTTCATCTGGGCGCTTTTCGACAAGCGCAAGCGGGGCTGGCATGACATCTATTCGGATACGCAGTTGGTGCGGATTCCCAAGAAGACCAAGTAG	MSKHVLTPQGDFPPAGLGRRLAAMFYDFLLCTALLIVTGGVYKMIQMMIIGEEKMRALTDAGALDGDPLLSTVLLFVLFGFFAKFWTHNGQTLGMQVWCIRVQNTDGTAISLWQALLRFVVSIASLLLVGLGFIWALFDKRKRGWHDIYSDTQLVRIPKKTK				NA	NA	NA	NA	NA
D1-36_01217	213	cspA_1	COG1278	Major cold shock protein CspA	ATGGCTGAACGTCAGAGCGGTACCGTCAAGTGGTTCAACGACGAAAAAGGTTTTGGTTTCATCACTCCTGAAAGCGGTCCGGATCTGTTCGTGCACTTCCGCGCCATCCAGGGCAACGGCTTCAAGAGCCTGAAAGAAGGCCAGAAAGTCACTTTCGTTGCCGTGCAAGGCCAGAAAGGCATGCAGGCTGACGAGGTTCAAGCCGAAGGCTAA	MAERQSGTVKWFNDEKGFGFITPESGPDLFVHFRAIQGNGFKSLKEGQKVTFVAVQGQKGMQADEVQAEG	PGPT0014675_3209	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	LOW_TEMPERATURE_TOLERANCE	COLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704	NA	NA
D1-36_01218	1125	gcvT_1	COG0404	Aminomethyltransferase	ATGTCCACCGAACAACTGTTGAAAACCCCGCTGCACGCGCTGCACCTCGAACTCGGCGCCCGCATGGTGCCATTCGCCGGCTACGACATGCCGGTGCAATACCCCTTGGGCGTGATGAAAGAACACCAGCACACCCGGGTTCAGGCCGGGCTGTTCGATGTGTCCCACATGGGCCAGATCCGCCTGACCGGCGCGGGTGCGGCCAAGGCACTGGAGACGCTGGTGCCGGTGGACATCATCGACTTGCCCGTGGGCATGCAGCGCTACGCCATGTTCACCAACGACAACGGCGGCATCCTCGACGATTTGATGGTCGCCAACCTGGGCAATGATGAGCTGTTTTTGGTGGTCAACGCGGCGTGCAAGGATCAGGACCTGGCCCACCTGCAAGCGAACATCGGCGGTCAGTGCAGCATCGAGCCGCTGTTCGAAGCCCGCGCCCTGCTCGCGCTGCAAGGCCCAGCGGCCGTGACCGTGCTCGCGCGTCTGGCGCCGGAAGTGGCGAAGATGACCTTCATGCAATTCCAGCGCGTCACTCTGCTGGGCGTGGATTGCTTTGTCAGCCGTTCGGGCTACACCGGTGAAGACGGTTTCGAGATTTCCGTGCCAGCCGCCGATGCGGAGAAACTCGCCCGCGCCCTGCTGGCCGAACCGGAAGTCGCCGCCATCGGCCTTGGCGCCCGTGATTCCCTGCGCCTGGAAGCGGGCCTGTGCCTCTACGGCCACGATATGAACACCGAAACCACACCCATTGAAGCCAGCCTGCTGTGGGCGATTTCCAAGGTCCGCCGCGCCGATGGCGCGCGCGCCGGGGGCTTCCCCGGAGCGGAAACTGTTTTTGCCCAGCAACAGCAAGGCGTGAAGCGCAAACGTGTCGGCCTGCTGCCCCAAGAACGCACACCGGTGCGTGAAGGCGCGGAGATCGTCAACGAAGCCGGCGAGATCATCGGCACGGTTTGCAGCGGCGGGTTCGGGCCGACATTGGGCGGTCCATTGGCGATGGGTTATCTGGACAGCGCCTTCGTCGCCTTGGACACGCCGGTCTGGGCCATTGTGCGTGGGAAAAAAGTGCCTTTGCTTGTAAGCAAAATGCCATTCGTTCCGCAGCGCTACTACCGTGGTTGA	MSTEQLLKTPLHALHLELGARMVPFAGYDMPVQYPLGVMKEHQHTRVQAGLFDVSHMGQIRLTGAGAAKALETLVPVDIIDLPVGMQRYAMFTNDNGGILDDLMVANLGNDELFLVVNAACKDQDLAHLQANIGGQCSIEPLFEARALLALQGPAAVTVLARLAPEVAKMTFMQFQRVTLLGVDCFVSRSGYTGEDGFEISVPAADAEKLARALLAEPEVAAIGLGARDSLRLEAGLCLYGHDMNTETTPIEASLLWAISKVRRADGARAGGFPGAETVFAQQQQGVKRKRVGLLPQERTPVREGAEIVNEAGEIIGTVCSGGFGPTLGGPLAMGYLDSAFVALDTPVWAIVRGKKVPLLVSKMPFVPQRYYRG	PGPT0008130_1831	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008130-gcvT-K00605	NA	NA
D1-36_01219	1377	sdaB	COG1760	L-serine dehydratase 2	ATGTCGTTAAGCGTGTTCGACCTGTTCAAGATCGGCATCGGTCCTTCCAGCTCCCACACGGTCGGTCCGATGCGTGCCGCGGCCCGTTTCGTCGAAGGGTTGCGTCGTGATGAGTTGCTCAATACCACTGCCAGCGTCAAAGTCGAGCTGTACGGCTCGCTCGGTGCCACCGGCAAGGGCCACGGCAGTGACAAGGCCGTGCTGCTGGGACTGGAAGGCGAGCACCCGGACACCGTGGACACCGAAACAGTGACCGCCCGGCTCCAGGAGATCCGCAGCAGCGGTCGCCTGAACCTGCTCGGCGAACACACCATCGAATTCAATGAAAAACTGCACCTGGCGATGATCCGCAAACCGTTGGCCTACCACCCCAACGGCATGATCTTCCGCGCCTTCGACGCCGCCGGCCTGCAAGTGCGCAGCCGCGAGTACTACTCGGTGGGCGGCGGCTTCGTCGTGGATGAAGACGCCGCCGGCGCCGACCGTATCGTCGAAGATGCCACGCCCCTGACCTTCCCGTTCAAGAGCGCAAAAGATCTGCTGGCCCACTGCAGCACCTACGGTCTGTCCATCAGCCAGGTCATGCTGACCAACGAAAGCGCCTGGCGCCCCGAAGCCGAGACCCGCGCCGGCCTGCTGAAGATCTGGCAGGTCATGCAGGATTGTGTGGCGGCGGGCTGTCGCAACGAGGGGATCTTGCCGGGCGGCCTCAAGGTCAAGCGCCGGGCTGCGGCGTTGTATCGCCAGTTGTGCAAGAACCCTGAAGCGGCCTTGCGCGATCCGCTGTCCGTGCTGGACTGGGTCAACCTGTATGCCTTGGCCGTCAACGAAGAAAACGCCTTCGGCGGCCGTGTCGTCACCGCGCCCACCAACGGTGCGGCGGGCATCATTCCGGCCGTGCTCCACTACTACATGCGCTTCATTCCCGGGGCCAACGAAGATGGCGTGGTGCGATTCCTGCTGACCGCCGCCGCCATCGGCATCCTCTATAAGGAAAACGCCTCCATCTCCGGTGCTGAAGTCGGCTGCCAGGGTGAAGTTGGCGTGGCCTGCTCCATGGCCGCCGGTGCGCTTTGCGAAGTGCTGGGCGGTACCGTGCAACAAGTGGAAAACGCCGCCGAAATCGGCATGGAACACAACCTCGGGCTCACCTGCGACCCCATCGGTGGCCTCGTCCAGGTGCCCTGCATCGAACGCAATGCCATGGGCTCGGTAAAGGCCATCAATGCGGTGCGCATGGCCATGCGCGGCGATGGTCATCACTTCGTCTCCCTCGACAAAGTCATCCGCACCATGCGCCAGACCGGCGCCGACATGAAAAGCAAATACAAGGAGACCGCCCGCGGCGGTCTGGCGGTCAACATCATCGAATGCTGA	MSLSVFDLFKIGIGPSSSHTVGPMRAAARFVEGLRRDELLNTTASVKVELYGSLGATGKGHGSDKAVLLGLEGEHPDTVDTETVTARLQEIRSSGRLNLLGEHTIEFNEKLHLAMIRKPLAYHPNGMIFRAFDAAGLQVRSREYYSVGGGFVVDEDAAGADRIVEDATPLTFPFKSAKDLLAHCSTYGLSISQVMLTNESAWRPEAETRAGLLKIWQVMQDCVAAGCRNEGILPGGLKVKRRAAALYRQLCKNPEAALRDPLSVLDWVNLYALAVNEENAFGGRVVTAPTNGAAGIIPAVLHYYMRFIPGANEDGVVRFLLTAAAIGILYKENASISGAEVGCQGEVGVACSMAAGALCEVLGGTVQQVENAAEIGMEHNLGLTCDPIGGLVQVPCIERNAMGSVKAINAVRMAMRGDGHHFVSLDKVIRTMRQTGADMKSKYKETARGGLAVNIIEC	PGPT0001975_1677	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001975-sdaA|sdaB|tdcG-K01752	NA	NA
D1-36_01220	2850	gcvP		Glycine dehydrogenase (decarboxylating)	ATGACCGTTAATCTCGGCACCGCCAACGAATTCATCGCCCGCCACATCGGCCCGCGTGCAGGCGACGAGCAAGCCATGCTCGAACGCCTGGGCTACGACTCCCTGGAAGCCCTGAGCGCCAGCGTGATCCCGGAAAGCATCAAAGGCACCAGCGTCCTGGACATGGGCGACGGCCAGAGCGAAGCCGATGCACTGGCCTCGATCAAGGCCATCGCCGGCAAGAACCAACTGTTCAAGACCTACATCGGCCAGGGCTACTACAACTGCCATACGCCGGCACCGATCCTGCGCAACCTGCTGGAAAATCCGGCCTGGTACACCGCCTACACCCCTTACCAGCCGGAAATCTCCCAGGGCCGTCTCGAAGCACTGCTGAACTTCCAGACCTTGATCAGCGACCTCACCGGCCTGCCGATCGCCAACGCCTCCCTGCTGGACGAAGCCACCGCCGCCGCCGAAGCCATGACCTTCTGCAAGCGCTTGAGCAAGAACAAGGGCAGCAATGCGTTCTTCGCCTCCGTGCACAGCCACCCGCAGACCCTCGACGTGCTGCGCACCCGTGCCGAGCCCCTGGGCATCGACGTGGTCGTGGGCGACGAGCGCGAACTGAGCGACGTCAGCAGCTTCTTCGGCGCACTCTTGCAGTACCCGGCCAGCAATGGCGACCTGTTCGACTACCGCGAGCTGACCGAACGCTTCCACGCCGCCAATGCCCTGGTGGCCGTGGCCGCCGACCTGCTGGCCCTGACCCTGCTGACCCCTCCGGGTGAGTTCGGTGCCGACGTTGCCATCGGCAGCGCCCAGCGCTTCGGCGTTCCCCTGGGTTTCGGCGGTCCGCACGCGGCCTTTTTCTCCACCAAGGATGCGTTCAAGCGCGACATGCCGGGCCGGCTGGTCGGCGTTTCCGTGGACCGTTTCGGCAAGCCGGCCCTGCGCCTGGCGATGCAGACCCGCGAGCAACACATCCGCCGCGAGAAAGCCACCAGCAACATCTGCACCGCCCAGGTTCTGCTCGCCAACATCGCCAGCATGTACGCTGTGTACCACGGTCCCAAGGGCCTGGTGCAAATTGCCAACCGCATCCATCACCTGACCGCGATCCTTGCCAAGGGTCTGGGCGCAATGGGTCTGAAGGTCGAGCAAGAAAGCTTCTTCGACACCCTGACGCTGCACACTGGCGCGCAAACCGCCGCGCTGCACGACAAGGCCCGCGCCCAGCGCATCAACCTGCGTGCAGTGGACGCCGAACGCCTGGGCCTGTCCCTGGACGAAACCACCAACCAGGCTGACATCGAAGCACTGTGGAGCCTGTTGGCCGACGGCAAGCCTGTGCCGGACTTCACCGCACTGGCCACCAGCATGCAAAGCCGCATCCCGGCCGAGCTGGTGCGCCAATCGGCGATCCTCAGCCACCCGGTGTTCAACCGCTACCACTCCGAAACCGAGCTGATGCGCTACCTGCGCAAGCTCGCCGACAAGGACCTGGCGCTGGATCGCACCATGATCCCGCTGGGTTCCTGCACCATGAAACTCAACGCCGCCAGCGAAATGATCCCGGTGACCTGGGCAGAGTTCGGCGCCCTGCACCCGTTCGCCCCGGCCGAGCAAAGCGCCGGCTATCAGCAACTGACCGACGAGCTCGAAGCCATGCTCTGCGCCGCCACCGGCTATGACGCGGTGTCGCTGCAACCCAACGCCGGTTCCCAGGGCGAATACGCCGGCCTGCTGGCGATCCGCGCCTATCACCAGAGCCGTGGCGAAGACCGTCGCGACATCTGCCTGATCCCGTCTTCGGCCCACGGCACCAACCCGGCCACCGCCAACATGGCCGGCATGCGCGTGGTCGTGACCGCCTGCGATGCCCGTGGCAACGTCGACATCGAAGACCTGCGGGCCAAGGCCATCGAGCACCGCGAGCACCTCGCCGCGCTGATGATCACCTACCCGTCCACCCACGGCGTGTTCGAGGAAGGCATCCGCGAGATTTGCGGCATCATTCATGACAACGGCGGCCAGGTGTACATCGACGGCGCCAACATGAACGCGATGGTCGGCCTCTGCGCCCCAGGCAAATTCGGCGGCGACGTCTCGCACCTGAACCTGCACAAGACCTTCTGCATTCCCCACGGCGGTGGCGGCCCGGGCGTCGGCCCGATTGGCGTCAAGTCGCACCTGGCGCCGTTCCTGCCGGGCCACGCCAACATGGAACGCAAGGAAGGCGCGGTGTGCGCGGCGCCGTTCGGCAGTGCGAGCATCCTGCCGATCACCTGGATGTACATCCGCATGATGGGCGGCGCGGGCCTCAAGCGCGCTTCGCAGCTGGCGATTCTCAACGCCAACTACATCGCCCGTCGCCTGGAAGAGCATTATCCGGTGCTCTACTCCGGCAGCAACGGCCTGGTGGCCCACGAATGCATCCTCGACCTGCGCCCGCTCAAGGACAGCAGCGGCATCAGTGTCGATGACGTGGCCAAGCGCCTGATCGACTTCGGTTTCCACGCCCCGACCATGTCGTTCCCGGTGGCCGGCACGTTGATGATCGAGCCGACCGAAAGCGAATCCAAGGAAGAGCTGGACCGCTTCTGCGACGCCATGATCTGCATCCGCGAAGAAATCCGCGCGGTGGAAAACGGCAGCCTGGACAAAGACGACAACCCGCTGAAGAACGCCCCGCACACCGCGGCGGAACTCGTCGGCGACTGGACTCACCCCTACAGCCGCGAGCAGGCGGTGTACCCGGTGGCGTCGTTGATCGAAGGCAAATACTGGCCGCCCGTAGGCCGGGTCGACAACGTGTTCGGCGACCGCAACCTGGTCTGCGCCTGCCCGTCGATCGAAAGCTACGCTTGA	MTVNLGTANEFIARHIGPRAGDEQAMLERLGYDSLEALSASVIPESIKGTSVLDMGDGQSEADALASIKAIAGKNQLFKTYIGQGYYNCHTPAPILRNLLENPAWYTAYTPYQPEISQGRLEALLNFQTLISDLTGLPIANASLLDEATAAAEAMTFCKRLSKNKGSNAFFASVHSHPQTLDVLRTRAEPLGIDVVVGDERELSDVSSFFGALLQYPASNGDLFDYRELTERFHAANALVAVAADLLALTLLTPPGEFGADVAIGSAQRFGVPLGFGGPHAAFFSTKDAFKRDMPGRLVGVSVDRFGKPALRLAMQTREQHIRREKATSNICTAQVLLANIASMYAVYHGPKGLVQIANRIHHLTAILAKGLGAMGLKVEQESFFDTLTLHTGAQTAALHDKARAQRINLRAVDAERLGLSLDETTNQADIEALWSLLADGKPVPDFTALATSMQSRIPAELVRQSAILSHPVFNRYHSETELMRYLRKLADKDLALDRTMIPLGSCTMKLNAASEMIPVTWAEFGALHPFAPAEQSAGYQQLTDELEAMLCAATGYDAVSLQPNAGSQGEYAGLLAIRAYHQSRGEDRRDICLIPSSAHGTNPATANMAGMRVVVTACDARGNVDIEDLRAKAIEHREHLAALMITYPSTHGVFEEGIREICGIIHDNGGQVYIDGANMNAMVGLCAPGKFGGDVSHLNLHKTFCIPHGGGGPGVGPIGVKSHLAPFLPGHANMERKEGAVCAAPFGSASILPITWMYIRMMGGAGLKRASQLAILNANYIARRLEEHYPVLYSGSNGLVAHECILDLRPLKDSSGISVDDVAKRLIDFGFHAPTMSFPVAGTLMIEPTESESKEELDRFCDAMICIREEIRAVENGSLDKDDNPLKNAPHTAAELVGDWTHPYSREQAVYPVASLIEGKYWPPVGRVDNVFGDRNLVCACPSIESYA	PGPT0020480_2847	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020480-gcvP-K00281	NA	NA
D1-36_01221	384	gcvH_1	COG0509	Glycine cleavage system H protein	ATGAGCGAGTTGCGTTTCACTGAAGATCACGAATGGCTGCGCGCCGAAACCGACGGCAGCGTCACCGTAGGCATTACCGCTTTCGCGCAGAACGCGTTGGGCGACGTGGTTTTTGTGCAACTGCCTGAATTGCAGGCCTACGCCAAAGGCGACGAGGCCTCCACCGTTGAGTCCGTCAAGGCCGCCAGCGGCGTGTACATGCCACTGGACGGTGAAGTGCTGGAAGTGAATGAAGCACTCGGCGACAGCCCGGAGCTGGTCAACGAAGATCCGATGGGCGAAGGCTGGTTCTTCCGTTTTAAACCGACCGACGCCGATGCAGTGGCTAAGCTGTTGGATCAAGACGCCTACGACCGCCTGATCAAAGCCAACGCCGAAGCCTGA	MSELRFTEDHEWLRAETDGSVTVGITAFAQNALGDVVFVQLPELQAYAKGDEASTVESVKAASGVYMPLDGEVLEVNEALGDSPELVNEDPMGEGWFFRFKPTDADAVAKLLDQDAYDRLIKANAEA				NA	NA	NA	NA	NA
D1-36_01222	1509	tyrR_1		Transcriptional regulatory protein TyrR	ATGCGTATCCACGTCAGTTTCATCGACCGCGTCGGCATCACCCAGGAAGTCCTGGCCTTGCTTGGTGGGCGCAATCTCAACCTGGATGCGGTGGAGATGGTCCCGCCCAACGTCTACATCGACGCCCCGACTCTCAGCCCACAGGTGCTGGATGAGTTGCGCGAGGCGCTGTTCAGCGTGCGCGGCGTGCAGGCGGTCACGGTGGTGGACATCCTGCCGGGCCAGCGCCGGCACTTGCAGCTCGATGCCTTGCTCGCCGCCATGACCGACCCGGTGCTCGCCCTGGACAGCGCCGGCAAGGTGTTGCTCGCCAACCCGGCGCTGATCGCCCTGTACGGTCGCGAACCGGCCGGTGAAAGCGTCGCGGAGCTGTTCGATGACGCGGCGCTGCTGGACGCGCTGTTGGAAAACGGTTTTCGCTTGCCGCTGCGGGAAATCACCGTCAACGGCCAGACGCTGCTCCTCGATGCCACGCCCATCACCGATGCCGGGGCGCTGCTGACGCTTTATCAGCCCAACCGTATCGGTGAACGCCTGTCGGCGCTGCACCACGATCACGCCGAAGGCTTCGACGCGCTGCTGGGCGAATCCCCGGCGATACGCACCCTCAAGGCCCGCGCCCAACGGGTCGCGGCCCTGGATGCACCGCTGCTGATCCAAGGCGAGACGGGCACCGGCAAGGAACTGGTGGCCCGCGCCTGCCACGCCATCAGTGCCCGACACAGCGCACCGTTCCTGGCCCTCAACTGTGCGGCACTGCCAGAAAACCTGGCCGAAAGTGAACTGTTCGGCTACGCCCCGGGCGCCTTCACTGGCGCGCAACGGGGCGGCAAGCCCGGGCTGATGGAGCTGGCGAACCAGGGCACGGTATTCCTCGATGAAATCGGCGAAATGTCGCCGTACTTGCAAGCCAAGCTGCTGCGTTTCCTGAACGATGGCAGCTTCCGCCGGGTCGGCGGCGACCGGGAAATCAAGGTCAACGTGCGGATTCTCAGCGCGACCCACCGTAACCTGGAGAAAATGGTCAACGAAGGCTCGTTCCGCGAAGACTTGTTCTATCGCTTGAACGTGCTCAATGTCGAAGTCCCGCCGCTGCGTGAACGCGGCCAGGACATCCTGCTGCTGGCGCGGTATTTCATGCAGCAGGCCTGCGCGCAGATCCAGCGCCCGGTCTGCCGCCTGGCCCCTGGCACTTACCCGGCCTTGCTGGGCAACCGCTGGCCGGGCAACGTGCGGCAATTGCAGAACGTGATCTTCCGCGCCGCCGCCATCTGCGAAAGCAGCCTCGTGGATATCGGCGACCTGGACATCGCCGGCACCTCCGTGGCGCGTCAGGGCGACGTCGAAGTCGAAAGCCTGGAGCAGGCGGTGGAAAGCTTCGAGAAGCATCTGCTCGAAAGCCTCTACGCCAATTACCCTTCTACTCGCCAGCTCGCCAGCCGACTGCAGACCTCCCATACCGCAATTGCCCATCGGTTGCGCAAGTACGGGATTTCCGGGAAGCCTTAG	MRIHVSFIDRVGITQEVLALLGGRNLNLDAVEMVPPNVYIDAPTLSPQVLDELREALFSVRGVQAVTVVDILPGQRRHLQLDALLAAMTDPVLALDSAGKVLLANPALIALYGREPAGESVAELFDDAALLDALLENGFRLPLREITVNGQTLLLDATPITDAGALLTLYQPNRIGERLSALHHDHAEGFDALLGESPAIRTLKARAQRVAALDAPLLIQGETGTGKELVARACHAISARHSAPFLALNCAALPENLAESELFGYAPGAFTGAQRGGKPGLMELANQGTVFLDEIGEMSPYLQAKLLRFLNDGSFRRVGGDREIKVNVRILSATHRNLEKMVNEGSFREDLFYRLNVLNVEVPPLRERGQDILLLARYFMQQACAQIQRPVCRLAPGTYPALLGNRWPGNVRQLQNVIFRAAAICESSLVDIGDLDIAGTSVARQGDVEVESLEQAVESFEKHLLESLYANYPSTRQLASRLQTSHTAIAHRLRKYGISGKP				NA	NA	NA	NA	NA
D1-36_01223	888	dmlR_5		HTH-type transcriptional regulator DmlR	ATGCGAGTGTTCGTCACCGTGGTGGACCTGGGCAGCCAGTCGGCGGCGGCCGAGCACCTGGACCTGTCGCGGCCGGTGGTATCGCGCTATCTGGCGGAGCTGGAAGATTGGGTCGGTGCCCGGCTGATGCACCGCACCACGCGCAAGCTGAGCCTGACGGCCGCAGGCACGGAGACCCTGCCCCGCTGCCGGCAGATGCTGGAGCTGTGCGGCGACATGCAAGCGGCCGTCAGCACGCCCGAAGACGCGCCACGGGGCATGCTGCGCATCAGCGCCAGCCCCTCGTTCGGCCAGTCGCAATTGGCGAGTGCGATGGCCGAATACGTCCAGCGCTACCCGGGCGTGAGCGTTGACCTGCAAATGCTCGATCGCACCGTCAACCTGGTGGACGAACGCATCGACCTGGCGATCCGCATGAGCAACGATCTCGATCCGAACCTGATCGCCCGGCGTCTCACGGTCTGCCGTTCGGTCATCTGCGCCTCCCCCCGCTACCTGCGCGAACATTCGACACCGCAACGGGTGGAAGACCTGAGCCAGCACAACTGCCTGACCCATTCCTACGTAGGCAAAAGCCTGTGGCATTTCGAGCAGGACGGCGAACAGCTGTCGGTGCCGGTACAGGGCAACATCAGCGCCAACGAAGCCAGCACCTTGCTCCAGGCAACGATAGCCGGCGCCGGTGTGGCGATGCTGCCCAGCTACCAGGTCGGCCCTCATATCCAGAACGGCGAACTGGTGCGCCTGCTGCCCCACGCCGAACCGCGCCGGATGAACATGTATGCGGTGTATGCCTCACGCAAGCACATGCCCTCGGCGTTGCGCAGCCTGCTGGATTTTCTGGTGCTCAGGTTTCCCGAAACACCGGCGTGGGATGTGGGGTTGTAG	MRVFVTVVDLGSQSAAAEHLDLSRPVVSRYLAELEDWVGARLMHRTTRKLSLTAAGTETLPRCRQMLELCGDMQAAVSTPEDAPRGMLRISASPSFGQSQLASAMAEYVQRYPGVSVDLQMLDRTVNLVDERIDLAIRMSNDLDPNLIARRLTVCRSVICASPRYLREHSTPQRVEDLSQHNCLTHSYVGKSLWHFEQDGEQLSVPVQGNISANEASTLLQATIAGAGVAMLPSYQVGPHIQNGELVRLLPHAEPRRMNMYAVYASRKHMPSALRSLLDFLVLRFPETPAWDVGL				NA	NA	NA	NA	NA
D1-36_01224	879			hypothetical protein	ATGACCGGTTTCACTCTTCTAAAACGCTTGTCGCTGGCGACCGCAGCGCTGGCCATCACGGCCCAGGCCTGGGCCGCCGACTTGACGCTCGACGTCTACAACCCCGGCGCGGCGGCGATTTTCCCGGTGACTTCGGTATTGGTCAGCGGTGAAAAAGAGGCGATCCTGGTGGACGCCCAATTTGGCAAAACCCAGGCCGAGCAGGTCGTGGAAAAAATCCGCGCCAGTGGCAAGGGGTTGACCACGATCTACATCAGCCACGGCGACCCCGACTACTATTTTGGCCTGCAAACCCTGGTAGCCGCTTTCCCGGAAGCCAAAGTCCTCGCATCCGCGCCAACCGTGGAGCACATCAAGGCCACTGCCGATGGCAAGTTGAAATATTGGGGGCCGATCCTGAAGACCGACGCGCCGTCCAAGACGCTGGTGCCCCAAGTGCTCAAGGGCGACAGCTTGACGCTGGAAGGCAAGCGCTTGCAGGTCATCGGCCTTGACGGCCCTCAGCCGGACCGCAGTTTCGTGTGGATTCCGTCGATCAAGGCGGTGGTGGGAGGTGTGGTGGTGGCGGAGAACATTCACGTCTGGATGGCCGATACCCAGACGCCGCAATCCCACCAGGATTGGCTGGCGACGCTGGATAACATGCAAAAGCTGCAACCGACCACCGTGATCCCCGGCCATTACCTGGGCGAAAGCGCTCGTTCCCTGGCGCCAGTGCGCTTCACCGCCGATTACATCAAGGCCTTCGACGAAGAAACCGCCAAGGCCAAGAATTCCGCCGCACTGATCGCCGCCATGAAACTACGCTATCCACAGCTGGGGGGGGACAGTTCCCTGGAGCTGAGCGCCAAGGTGGCGAAGGGCGAAATGAGGTGGTGA	MTGFTLLKRLSLATAALAITAQAWAADLTLDVYNPGAAAIFPVTSVLVSGEKEAILVDAQFGKTQAEQVVEKIRASGKGLTTIYISHGDPDYYFGLQTLVAAFPEAKVLASAPTVEHIKATADGKLKYWGPILKTDAPSKTLVPQVLKGDSLTLEGKRLQVIGLDGPQPDRSFVWIPSIKAVVGGVVVAENIHVWMADTQTPQSHQDWLATLDNMQKLQPTTVIPGHYLGESARSLAPVRFTADYIKAFDEETAKAKNSAALIAAMKLRYPQLGGDSSLELSAKVAKGEMRW				NA	NA	NA	NA	NA
D1-36_01225	615			hypothetical protein	ATGAGCACCATCGCAATCATCGGCGCTACAGGCCGGGCCGGCAGCCAACTGCTGGAAGAAGCCTTGCGCCGTGGTCACAGCGTGACGGCCATTGCCCGCAACACCGGAAAAATCGGCACACGGGCGGGAGTGGTCAGCAAGCAGTTGGACGTACTGGACAGCGAGGCACTGACCGCAGCGGTAGCAGGCCACGACGTGGTCATCAGTGCCGCGCATTTCGCTACGGTGCCAGCCGACAAGGTTGTCGCACCGGTGAAGGCCGCCGGAGTCAAGCGCCTGCTGGTTGTGGGCGGTGCCGGTTCGTTGTTGTTGCCGGATAACAGCCGCGTGATCGACAGCAAGGGCTTCCCGGAGGAATACCTGGCCGAAGCCACGGCCGGAGCGTTGTTCCTGGACGTGCTGGGAAAGGAGCAGGACCTCGATTGGACCTTCCTTTCGCCCTCGGCGGAGTTCGTCGAAACCGAACGCACCGGCCAGTTCCGCGTCGGCAAGGATCACTTGCTGTTCGATAACGCCGGGCGCAGTTGGATCGGCTTCGCCGACTACGCCATTGCGATGATCGATGAGGTCCAGGCGCCGCAGTTTTCGCGGACGCGGTTCACTGTCGGCTATTGA	MSTIAIIGATGRAGSQLLEEALRRGHSVTAIARNTGKIGTRAGVVSKQLDVLDSEALTAAVAGHDVVISAAHFATVPADKVVAPVKAAGVKRLLVVGGAGSLLLPDNSRVIDSKGFPEEYLAEATAGALFLDVLGKEQDLDWTFLSPSAEFVETERTGQFRVGKDHLLFDNAGRSWIGFADYAIAMIDEVQAPQFSRTRFTVGY	PGPT0020900_1562	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
D1-36_01226	339	ydgC	COG3136	Inner membrane protein YdgC	GTGGATCTTATTTTCAAGGCCGCGCTCGGCGCAGCCGTTGTCGTCATCCTGGCGATGCTCGCCAAGACCAAGAACTATTACATTGCCGGGCTGGTGCCGCTGTTTCCGACCTTTGCGCTGATTGCCCACTACATCGTCGGCAAGGGCCGCTCGGTGGATGACCTGAAGACCACCATCGTGTTCGGCATGTGGTCGATCATTCCGTATTTCGTCTATCTCGCGACGCTGTACGTGATGGTCGACCGGATGCGCCTCGAAGCGTCATTGGCCGTGGCTGCCGTCGCCTGGTTGATGGCGGCGACGGTGCTGGTCAGTGTCTGGGTGAGGATCCACGGGTGA	MDLIFKAALGAAVVVILAMLAKTKNYYIAGLVPLFPTFALIAHYIVGKGRSVDDLKTTIVFGMWSIIPYFVYLATLYVMVDRMRLEASLAVAAVAWLMAATVLVSVWVRIHG				NA	NA	NA	NA	NA
D1-36_01227	1329	dctD_3		C4-dicarboxylate transport transcriptional regulatory protein DctD	ATGAACAACGACCTGAGCGTATTGATCGTCGAAGACGACCCCCACGTCCTGCTGGGCTGCCAGCAGGCCTTGAGCCTGGAAGATATTCCCTGCATTGGCGTGGGCAGCGCCGAAGAGGCCCTTGAGCGGGTCGGCGATGATTTTGCCGGCATCGTCATCAGCGACATCCGCCTGCCGGGCATCGACGGCCTGGAGCTGCTGACCCGCCTCAAAGCCCGGGACCGCAGCCTGCCGGTGGTGTTGATCACCGGCCACGGCGATATTTCCATGGCCGTAGGCGCGATGCAGAAAGGCGCCTACGATTTCATGGAAAAACCGTTCTCCCCCGAGCGCCTGGTGGACGTTGCACGCCGCGCCCTGGAACAGCGCAGCCTGGCCCGGGAAGTTTCTTCGCTGCGCAGGCAACTGGCCGAGCGTGATTCCCTGGAAGGCCGCATCATCGGCCGCTCGCCGGCCATGCAGCACCTGCGCGAGCTGATCGCCAACGTCGCCGACACCTCGGCCAACGTGTTGATCGAAGGCGAAACCGGCACCGGCAAGGAATTGGTCGCCCGTTGCCTGCATGATTTCAGCCGGCGCCACGACAAGCAGTTCGTCGCGCTGAACTGCGGTGGCCTGCCGGAGAACCTGTTCGAAAGCGAGATTTTCGGCCACGAGGCCAACGCTTTCACTGGCGCGGGCAAGCGCCGGATCGGCAAGATCGAGCACGCCGATGGCGGCACGCTGTTTCTCGATGAAGTGGAGAGCATGCCCCTGCCCTTGCAGATCAAGCTATTGCGCGTGTTGCAGGAACGCACCCTCGAACGCCTGGGGTCGAACCAGAGCGTGTCCGTGGATTGCCGGGTGATTGCCGCCACCAAGTCCGACCTGGACGAAATGGGTCGGACCGGGCAGTTCCGCAGCGACCTGTATTACCGCCTCAATGTGGTGACGCTGGAGCTGCCGCCCCTGCGGGAGCGGCGCGAAGACATCCTGCAACTGTTCGAACATTTTCTCCAGCAATCGTCCCTGCGCTTCGACCGTACCGTGCCGGAGCTGGACAACCACACTCTGTCGAACCTGATGAGCCACGATTGGCCGGGCAACGTGCGCGAGCTGCGCAACGTCGCCGAACGTTACGCCCTGGGCTTGCCGGCGTTCAAGAAAGCCGGCACCAGCACCGGTAGCCAAGGCCTGGCCTTCGCCGAAGCGGTTGAAGCCTTCGAGCGCAACCTGCTGGTGGATGCGTTGCAACGCAGCGGCGGCAACCTGACCCAGGCCAGCCAGGAACTGGGCATGGCCAAGACCACGCTCTTCGACAAAGTCAAAAAATATGGCCTGAGCCACTGA	MNNDLSVLIVEDDPHVLLGCQQALSLEDIPCIGVGSAEEALERVGDDFAGIVISDIRLPGIDGLELLTRLKARDRSLPVVLITGHGDISMAVGAMQKGAYDFMEKPFSPERLVDVARRALEQRSLAREVSSLRRQLAERDSLEGRIIGRSPAMQHLRELIANVADTSANVLIEGETGTGKELVARCLHDFSRRHDKQFVALNCGGLPENLFESEIFGHEANAFTGAGKRRIGKIEHADGGTLFLDEVESMPLPLQIKLLRVLQERTLERLGSNQSVSVDCRVIAATKSDLDEMGRTGQFRSDLYYRLNVVTLELPPLRERREDILQLFEHFLQQSSLRFDRTVPELDNHTLSNLMSHDWPGNVRELRNVAERYALGLPAFKKAGTSTGSQGLAFAEAVEAFERNLLVDALQRSGGNLTQASQELGMAKTTLFDKVKKYGLSH	PGPT0000800_61	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000800-aauR-K17061	NA	NA
D1-36_01228	1902	dctB_3		C4-dicarboxylate transport sensor protein DctB	ATGAAATGCGACCCCACTCTTTATCGCGCCGCGCCGCCATCACTCGCCGTGAAACCCCGCCTGATCCGCCATCTGTTCCTGCCGCCGCTGGTCATAGCGTTGATGATCGGCCTGGGTTACCTCGGCTTCTGGATCAGCGAGCACTATGGCATTCGCGGCCTCGCCGAGAATGGCGAGCGTCAGTTGGAGCTGCACGCCCGCGCGGTGGAGAGCGAAATCAGCAAATACACCTATTTGCCCAGCCTGCTGGAACTTGAATCCAGCGTCTCGAAATTGCTCGACGACCCGACGCCCGAGCATCGCCAGACCGTCAACGAATACCTTGAGGGCCTGAACCGGCGCAGTCGCAGCCGGGCCATCTACGTCATGGACACCACCGGCCGCGTCATGGCCACCAGCAACTGGCGCGACGTCGACAGCTACCTGGGGGAAGACTTGTCTTTCCGCGCCTATTTCCAGAACGCCGTGCGCGGCCAGCCGGGGCGCTTCTATGGCATCGGCAGCACCAGCGGCGAACCCGGCTATTACCTGGCCCATGGCCTGGAGCAACAAGGCAAGATCATCGGCGTGGCCGTGGTCAAGGTCCGCCTCGAAGCCATGGAGGAGCGCTGGCAGCGGGCCCGCCTGGAAGCCTTCGTCAGCGATGAGAACGGCATCATCATCCTCTCCAGCGATCCGGCGCGGCGGCTCAAATCGGTGCGTCCGCTGAGCGACGAAACCAAGGAGCGCCTGGCCCGCAGCCTGCAATATTACTGGTTCCCGCTCAACGAGCTGATCCCTCTGGCGCGGGAACGGCTGGCCGAGGGCATGGAGAAGCTGACTTTCCCCGCCAACACCGAAATCGCGGCTGACCAGCGCGCCACCAGCTACCTTTCCCAGACCCGGCCGCTGAGCGACACACCGTGGAATTTCACGTTACTGACCCCGCTCGAAGACCTGCGCCGCCAAGCGATCAACCAAGGCATCCTGGTGGCCGTGGCGTTTGCCCTGGTGGCTTTCCTGCTGATCGCCTGGAACGAACGTCGCAAAGTCATCGCGACCCGCCTCGCCGCTCGCGAAGCGTTGCAAGAGGCCAACAATCAGCTCGAACGTCGGATTACCGAACGCACCACCGACCTGCGGGCCAGCAACGAACGGCTCAAGGGCCAGATTCGCGAACGACGGCAGGCCGAAGAGACCTTGCGGCGCGCCCAGGACGAACTGGTGCAAGCCGGCAAGCTGGCGGCCATCGGCCAGATGTCCACCAGCATCGCCCATGAACTCAACCAGCCTTTGGCCGCCCTGCGCACCCTGTCGGGCAATACCGTGCGCTTTTTGGAAAGGGGCCAGCTGGATATCGCCAGCGCCAATCTCAGGACCATCAACGACCTGATCGATCGCATGGGTCGGATCACCGCCAGCCTGCGCGCCTTCGCCCGGCGCGGCGACGACAAGGGCCGGGCGAGCCTGGGCAAGGCTGTCGGGGCCGCGCTGCAATTGCTGGGCGCGCGCCTTGAAAAACTCGACATCCAGATCCACACGGCATTCGAAGACGTTCAGGTCCAGATCGACCAGACGCGCCTGGAACAGATCCTGGTGAACCTGATCGGCAATGCCCTTGACGCCATGCAGCTACAACCCGCGCCGAAGCTGTGGCTCGAAGGCCAAGGCAGCGATGGCAAATATCGTCTGCGGGTGCGGGATAATGGCCACGGCATCGACCCGGAGGCTCGCAAGCATCTGTTCGAACCGTTCTTCACCACCAAACCCGGCGAACAAGGCCTGGGCCTTGGCTTGACGCTTTCGGCAAGCCTGTGTGCCGCCGCCGGCGGACATTTGGGAGTCGAGCATCCGGAGGATGGTGGCACCACGTTTATCCTCAGTTTACCGTTGGTAAGCCTTTTACCTGCCGAGCCGCTATGA	MKCDPTLYRAAPPSLAVKPRLIRHLFLPPLVIALMIGLGYLGFWISEHYGIRGLAENGERQLELHARAVESEISKYTYLPSLLELESSVSKLLDDPTPEHRQTVNEYLEGLNRRSRSRAIYVMDTTGRVMATSNWRDVDSYLGEDLSFRAYFQNAVRGQPGRFYGIGSTSGEPGYYLAHGLEQQGKIIGVAVVKVRLEAMEERWQRARLEAFVSDENGIIILSSDPARRLKSVRPLSDETKERLARSLQYYWFPLNELIPLARERLAEGMEKLTFPANTEIAADQRATSYLSQTRPLSDTPWNFTLLTPLEDLRRQAINQGILVAVAFALVAFLLIAWNERRKVIATRLAAREALQEANNQLERRITERTTDLRASNERLKGQIRERRQAEETLRRAQDELVQAGKLAAIGQMSTSIAHELNQPLAALRTLSGNTVRFLERGQLDIASANLRTINDLIDRMGRITASLRAFARRGDDKGRASLGKAVGAALQLLGARLEKLDIQIHTAFEDVQVQIDQTRLEQILVNLIGNALDAMQLQPAPKLWLEGQGSDGKYRLRVRDNGHGIDPEARKHLFEPFFTTKPGEQGLGLGLTLSASLCAAAGGHLGVEHPEDGGTTFILSLPLVSLLPAEPL	PGPT0000790_38	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000790-aauS-K17060	NA	NA
D1-36_01229	735	glnQ_6		Glutamine transport ATP-binding protein GlnQ	ATGATCTCTATCAAAAACATCAACAAGTGGTATGGGGACTTCCAGGTACTGACCAATTGCAGCACCGAGGTCAGCAAAGGCGAGGTTGTGGTGGTGTGCGGGCCGTCGGGTTCGGGCAAGTCCACGCTGATCAAGTGCGTGAATGCCCTTGAGCCCTTCCAGAAAGGCGACATCGTGGTCGATGGCACGTCCATCGCCGACCCGAAGACCAACCTGCCAAAACTGCGTTCGCGGGTGGGCATGGTGTTCCAGCACTTCGAACTGTTCCCGCACCTGACCATCACCGAAAACCTGACCATCGCGCAGATCAAGGTGCTGGGCCGCAGCAAGGAAGAAGCCACCAAGAAAGGCCTGCAACTGCTAGAGCGCGTCGGTCTGTCGGCCCACGCCCACAAGCACCCGGGCCAGCTCTCCGGCGGCCAGCAGCAGCGCGTGGCGATCGCCCGTGCGCTGGCGATGGACCCGGTGGTAATGCTGTTCGACGAACCGACCTCGGCGCTTGACCCGGAAATGGTCAACGAAGTGCTCGATGTGATGGTGCAACTGGCCCACGAAGGCATGACCATGATGTGCGTGACCCACGAAATGGGCTTCGCCCGCAAAGTGGCGAACCGGGTGATCTTCATGGATCAGGGCCAGATCATCGAAGACTGCCCGAAAGAAGAGTTCTTCGGCGACATCAGCGCCCGCTCCGAACGTGCACAGCATTTCCTTGAGAAGATTCTGCAGCACTAA	MISIKNINKWYGDFQVLTNCSTEVSKGEVVVVCGPSGSGKSTLIKCVNALEPFQKGDIVVDGTSIADPKTNLPKLRSRVGMVFQHFELFPHLTITENLTIAQIKVLGRSKEEATKKGLQLLERVGLSAHAHKHPGQLSGGQQQRVAIARALAMDPVVMLFDEPTSALDPEMVNEVLDVMVQLAHEGMTMMCVTHEMGFARKVANRVIFMDQGQIIEDCPKEEFFGDISARSERAQHFLEKILQH	PGPT0000765_191	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000765-gltL|aatP-K10004	NA	NA
D1-36_01230	672	gltK	COG0765	Glutamate/aspartate import permease protein GltK	ATGGAATTCGACTTCACAGGCATCATCCCGGCCATTCCCGGCTTGTGGAACGGCATGGTGATGACCCTCAAGCTGATGGCCCTGGGTGTCGTCGGTGGGATTATCCTGGGGACGATCCTGGCGCTGATGCGCCTGTCCCACAACAAGCTGATCTCCAACATCGCTGGCGCCTACGTCAACTACTTCCGCTCGATCCCGCTGCTGCTGGTCATCACCTGGTTCTACCTGGCGGTCCCGTTCGTGCTGCGCTGGATCACTGGCGAAGACACGCCGATCGGCGCGTTCGGCTCCTGCGTCGTGGCGTTCATGATGTTCGAGGCGGCGTACTTCTGCGAAATCGTCCGGGCCGGCGTGCAGTCGATCCCCAAGGGCCAGATGGGCGCGGCACAGGCACTGGGCATGAATTATGGCCAGGTCATGCGCCTGATCATCCTGCCCCAGGCGTTCCGCAAGATGACCCCGCTGTTGCTGCAACAGAGCATCATCCTGTTTCAGGACACCTCGCTGGTCTACACGGTCGGTCTGGTGGACTTCCTCAATGCTTCGCGAGCCAATGGCGACATCATCGGCCGCTCCAATGAGTTCCTGATCATCGCAGGTCTCGTGTACTTCACAATCAGCTTTGCCGCCTCGCTGCTGGTCAAGCGTCTGCAAAAAAGGTTCGCCGTATGA	MEFDFTGIIPAIPGLWNGMVMTLKLMALGVVGGIILGTILALMRLSHNKLISNIAGAYVNYFRSIPLLLVITWFYLAVPFVLRWITGEDTPIGAFGSCVVAFMMFEAAYFCEIVRAGVQSIPKGQMGAAQALGMNYGQVMRLIILPQAFRKMTPLLLQQSIILFQDTSLVYTVGLVDFLNASRANGDIIGRSNEFLIIAGLVYFTISFAASLLVKRLQKRFAV	PGPT0000755_553	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000755-gltK|aatM-K10002	NA	NA
D1-36_01231	747	gltJ	COG0765	Glutamate/aspartate import permease protein GltJ	ATGAATTACAACTGGGACTGGGGCGTGTTCTTCAAGTCCACCGGCGTGGGCAGCGAGATTTATCTCGACTGGTACGTGGCCGGCCTGGGCTGGACCATCGCCATCGCCGTCGTCGCCTGGATCATTGCCCTGCTGCTGGGCTCGATCCTGGGTGTGATGCGTACCGTGCCGAACCGGCTGGTATCGGGCATCGCGACTTGCTACGTGGAACTCTTTCGTAACGTGCCACTGCTGGTTCAACTGTTCATCTGGTACTTCCTGGTGCCGGACCTGCTGCCAGCCGACATGCAGGAATGGTACAAGCAGGACCTGAACCCGACCACCTCGGCCTACCTGAGCGTTGTCGTGTGCCTGGGCCTGTTCACCGCCGCGCGGGTCTGCGAACAGGTGCGCACCGGCATCCAGGCGCTGCCGCGCGGCCAGGAATCCGCTGCCCGGGCCATGGGCTTCAAACTGCCGCAGATCTATTGGAACGTGCTGCTGCCCCAGGCTTACCGGATCATCATTCCGCCGCTCACCTCGGAATTCCTCAACGTCTTCAAGAACTCCTCCGTGGCGTCGTTGATCGGCCTGATGGAGCTGCTCGCGCAGACCAAGCAGACCGCCGAATTTTCGGCCAACCTGTTCGAAGCCTTTACCCTGGCGACGCTGATCTACTTCACGTTGAACATGAGCCTGATGCTGCTCATGCGCATGGTCGAGAAGAAAGTCGCGGTGCCCGGCCTGATCTCCGTGGGGGGTAAATAA	MNYNWDWGVFFKSTGVGSEIYLDWYVAGLGWTIAIAVVAWIIALLLGSILGVMRTVPNRLVSGIATCYVELFRNVPLLVQLFIWYFLVPDLLPADMQEWYKQDLNPTTSAYLSVVVCLGLFTAARVCEQVRTGIQALPRGQESAARAMGFKLPQIYWNVLLPQAYRIIIPPLTSEFLNVFKNSSVASLIGLMELLAQTKQTAEFSANLFEAFTLATLIYFTLNMSLMLLMRMVEKKVAVPGLISVGGK	PGPT0000760_146	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000760-gltJ|aatQ-K10003	NA	NA
D1-36_01232	915	gltI_1	COG0834	Glutamate/aspartate import solute-binding protein	ATGCGCATCGTTCCCCATCTCCTGGGCGCAGCCGTTGCTGCTGCTCTGATCAGCACTCCGGTTTTCGCAGCCGAACTGACCGGCACGCTGAAAAAGATCAAAGAGTCCGGCGTCATCACGCTCGGCCACCGCGACGCCTCCATTCCGTTTTCCTATATCGCGGACGCTTCCGGCAAGCCCGTCGGCTACTCCCATGACATCCAGCTGCAAGTCGTCGAAGCCCTGAAAAAAGAGCTGGACGTGCCGAACCTGCAGGTCAAGTACAACCTGGTCACCTCGCAGACCCGTATCCCACTGGTGCAGAACGGCACCGTGGACCTGGAGTGCGGCTCCACCACCAACAACGTCGAGCGTCAGCAACAAGTCGCCTTCTCGGTTGGCATCTTCGAGATCGGCACCCGGCTGCTCTCCAAGAAAGATTCCAAATACAAGGATTTCGACGATCTCAAGGGCAAGAACGTCGTGACCACCGCCGGCACCACGTCCGAGCGCATCCTCAAGGCGATGAATGCCGACAAGCAAATGGGCATGAACGTCATCTCCGCCAAGGACCACGGCGAATCCTTCCAGATGCTGGAATCGGGCCGTGCCGTCGCGTTCATGATGGATGACGCCCTGCTGGCCGGCGAAGCCGCCAAGGCCAAGAGGGCGACCGACTGGGAAGTAACCGGTACTCCCCAATCCTACGAAATCTATGGCTGCATGATGCGTAAGGGCGACGAGCCGTTCAAAAAGGTTGTCGATGACGCCATTGTCGCCAGCTACAAGTCTGGCGAGATCAACAAGATCTACGACAAATGGTTCACCCAGCCTATCCCGCCTAAAAATCTGAACCTGAACTTCCCGATGAGCGACGAGCTCAAGGCTTTGATCGCCAACCCGACCGATAAAGCGGCTGACGATAAGAAATCCTGA	MRIVPHLLGAAVAAALISTPVFAAELTGTLKKIKESGVITLGHRDASIPFSYIADASGKPVGYSHDIQLQVVEALKKELDVPNLQVKYNLVTSQTRIPLVQNGTVDLECGSTTNNVERQQQVAFSVGIFEIGTRLLSKKDSKYKDFDDLKGKNVVTTAGTTSERILKAMNADKQMGMNVISAKDHGESFQMLESGRAVAFMMDDALLAGEAAKAKRATDWEVTGTPQSYEIYGCMMRKGDEPFKKVVDDAIVASYKSGEINKIYDKWFTQPIPPKNLNLNFPMSDELKALIANPTDKAADDKKS	PGPT0000750_248	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000750-gltI|aatJ-K10001	NA	NA
D1-36_01233	1539	glpD	COG0578	Aerobic glycerol-3-phosphate dehydrogenase	ATGCCCACTACCACCTTGCCTACGCCCCCTCTCGCAGAGATCTATGACATCGCCGTTATAGGCGGCGGCATCAATGGCGTGGGGATCGCTGCGGACGCGGCCGGTCGCGGCCTTTCGGTGTTCCTTTGCGAAAAGGACGACCTCGCCAGCCATACTTCTTCAGCCAGCAGCAAGCTGATACATGGCGGCCTGCGCTATCTCGAACATTATGAATTCCGCCTGGTGCGCGAAGCGCTGGCCGAGCGCGAAGTCCTCCTGGCCAAAGCCCCACACATCGTCAAGCAGATGCGCTTCGTGCTGCCCCATCGGCCGCATCTTCGCCCCGCCTGGATGATCCGCGCCGGCCTGTTCCTTTACGATCATCTGGGCAAGCGCGAGCAGCTCGCCGGCTCCAGGAGTTTGAAATTTGGCGCTGACAGCGTACTGAAAAGCGAAATCACCAAGGGCTTCGAATACTCGGACTGCTGGGTTGACGACGCCCGGCTGGTGGTACTCAACGCCATGGCGGCGCGGGAAAAAGGCGCCCACGTACATACCCGCACCCGCTGCGTCAGCGCCCGTCGCAGCAAGGGCCTTTGGCAGTTGCATCTGGAGCGTGCCGACGGCAGCCTGTTTTCGATCCAGGCCAAGGCCCTGGTCAACGCCGCCGGCCCGTGGGTGGCCAAGTTCATTCGTGACGACCTGAAGATGGAATCGCCTTACGGTATCCGCCTGATTCAGGGCAGCCACTTGATCGTTCCGAAACTCTACGAAGGCGAGCATGCGCATATTCTCCAGAACGAGGACCAGCGCATTGTCTTCACTATCCCCTACCTGAACCAGTTCACCCTGATCGGCACGACAGATCGCGAATACACCGGCGATCCGGCGAAGGTCGCAATTACCGAAGGCGAAACCGATTACCTACTGAAAGTGGTCAACGCCCACTTCAAGAAACAGGTCAGCCGCGACGACATCCTGCACAGTTATTCCGGCGTCCGGCCGTTGTGCAACGACGAGTCCGACAACCCTTCCGCCGTAACCCGGGATTACACCCTGGCGCTTTCTGCCGCAGGTCAAGAGGCGCCACTGCTTTCGGTATTCGGTGGCAAGCTGACCACTTACCGCAAGCTGGCCGAATCGGCGATGGCGCAACTGGCGCCATACTTTACGCAGATGCGTCCAAGCTGGACCGCCCTGGCAACCTTGCCGGGGGGCGAAAACATGACGACCCCGCAGGCGCTGTGCTCGGCGATTCGCGACAAGTTCGACTGGCTGCCGACCGACATCGCCCGCCGCTGGGCCACCACGTACGGCAGCCGCACCTGGCGCATGCTCGAAGGCGTACACAACCTCGTCGACCTGGGCGAGCACATCGGCGCAGGCCTCTACACCCGCGAAGTCGATTACCTGTGCAGCGACGAGTGGGCCATCGATGCCCAGGACATCCTCTGGCGCCGCAGCAAGCTGGGCTTGTTTACCACCGCCGCAGAGCAGGACAAGCTCCAGCAGTATCTGCAAAAGGTCGAGCACAATCGGCGCAAAATTGAAGCGGCGTGA	MPTTTLPTPPLAEIYDIAVIGGGINGVGIAADAAGRGLSVFLCEKDDLASHTSSASSKLIHGGLRYLEHYEFRLVREALAEREVLLAKAPHIVKQMRFVLPHRPHLRPAWMIRAGLFLYDHLGKREQLAGSRSLKFGADSVLKSEITKGFEYSDCWVDDARLVVLNAMAAREKGAHVHTRTRCVSARRSKGLWQLHLERADGSLFSIQAKALVNAAGPWVAKFIRDDLKMESPYGIRLIQGSHLIVPKLYEGEHAHILQNEDQRIVFTIPYLNQFTLIGTTDREYTGDPAKVAITEGETDYLLKVVNAHFKKQVSRDDILHSYSGVRPLCNDESDNPSAVTRDYTLALSAAGQEAPLLSVFGGKLTTYRKLAESAMAQLAPYFTQMRPSWTALATLPGGENMTTPQALCSAIRDKFDWLPTDIARRWATTYGSRTWRMLEGVHNLVDLGEHIGAGLYTREVDYLCSDEWAIDAQDILWRRSKLGLFTTAAEQDKLQQYLQKVEHNRRKIEAA	PGPT0006775_3932	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0006775-glpA|glpD-K00111	NA	NA
D1-36_01234	756	glpR_1	COG1349	Glycerol-3-phosphate regulon repressor	ATGAATCTGCCTCCCCGCCAGCAACAAATCCTCGAACTGGTCCGCGAACGCGGCTATGTCAGCATCGAGGAAATGGCGCAATTATTCGTCGTCACCCCACAGACCATCCGCCGCGACATCAATCAATTGGCGGAAGCGAATCTGTTGCGCCGCTATCACGGCGGCGCGGCTTACGATTCAAGCGTGGAAAACACCGCCTACGCCATGCGCGCGGACCAGATGCGCGATGAGAAGCAACGCATCGCCGAAGCCATCGCCGCCCAGATTCCCGATCACGCGTCGCTGTTCATCAACATCGGCACCACCACCGAATCCATCGCCCGGGCGCTGCTCAATCACAACCACCTCAAAGTCATCACCAACAACCTGCACGTGGCGTCGATCCTCAGCGCCAAGGATGATTTCGAAGTCCTGATCGCCGGGGGCAATGTGCGACGCGACGGCGGCGTGGTTGGCCAGGCCAGTGTCGACTTCATCAGCCAGTTCAAGGTCGACTTCGCCCTGGTGGGCATCAGCGGCATCGATGAGGACGGAAGCCTGCTGGACTTCGATTACCAGGAAGTGCGGGTGTCCCAAGCCATCATCGCCAACGCTCGGCAAGTGCTGTTGGCAGCAGATTCCAGCAAATTCGGGCGCAACGCCATGGTCCGCCTGGGCCCGATCAGCCTGATCGATTGCCTGGTAACCGACCAGCAGCCCGTGCCAGCCCTGGCGCATCTGCTGACCCAGCACAAGATTCGATTGGAAGTGGTCTAG	MNLPPRQQQILELVRERGYVSIEEMAQLFVVTPQTIRRDINQLAEANLLRRYHGGAAYDSSVENTAYAMRADQMRDEKQRIAEAIAAQIPDHASLFINIGTTTESIARALLNHNHLKVITNNLHVASILSAKDDFEVLIAGGNVRRDGGVVGQASVDFISQFKVDFALVGISGIDEDGSLLDFDYQEVRVSQAIIANARQVLLAADSSKFGRNAMVRLGPISLIDCLVTDQQPVPALAHLLTQHKIRLEVV	PGPT0018445_1436	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULE_REGULATION,PGPT0018445-glpR-K02444	NA	NA
D1-36_01235	1506	glpK	COG0554	Glycerol kinase	ATGACCGACATTGAGAATAAGAACTACATCATTGCCCTCGACCAGGGCACGACCAGCTCACGTGCCATTATTTTCGACCGTGACGCCAACGTGGTCTGCACGGCCCAACGAGAATTCGTCCAGCATTACCCACAGCCAGGCTGGGTCGAACACGATCCGATGGAGATCTTCGCCACCCAGAGCGCGGTCATGGTCGAAGCGCTTGCCCAGGCCGGGCTGCATCACGACCAGGTCGCCGCCATCGGCATCACCAACCAGCGCGAAACCACGGTGGTCTGGGACAAGTCGACCGGCAGGCCGATCTACAACGCCATTGTCTGGCAATGTCGGCGCAGCACTGAAATCTGCCAGCAGCTCAAGCGTGACGGCCATGAGCAATACATCAGCGAAGCCACCGGCTTGGTCACCGATCCGTATTTTTCCGGCACCAAGCTCAAGTGGATCCTGGATAACGTCGAAGGCAGCCGCGAGCGCGCACGCAACGGCGAGTTGCTGTTCGGCACCGTGGACAGCTGGCTGATCTGGAAATTTACCGGCGGCAAGGTCCATGTCACCGACTACACCAACGCCTCGCGCACCATGCTTTTCAACATCCATACGCTGGAGTGGGACGCGAAGATGCTCGACATCCTCAACATCCCTCGGGAAATGCTGCCGGAGGTCAAATCGTCCTCACAAATCTACGGCCGCACCAAGAGCGGCATCGCCATCGGCGGTATCGCCGGTGACCAGCAGGCCGCCCTGTTCGGCCAGATGTGCGTGGAACCGGGCCAGGCGAAAAACACCTACGGCACCGGCTGTTTCCTGCTGATGAATACCGGTGACAAAGCGGTCAAATCCAATCACGGCATGCTCACCACCATCGCCTGCGGCCCTCGCGGTGAAGTGGCCTATGCCCTGGAGGGCGCAGTGTTCAATGGCGGGTCTACCGTCCAATGGTTGCGCGATGAACTGAAGATCATCAACGATGCGCTCGACACCGAGTACTTCGCCAACAAGGTCAAGGACAGCAATGGGGTGTATCTGGTCCCGGCGTTCACTGGCCTGGGCGCGCCGTACTGGGACCCTTATGCCCGTGGCGCGCTGTTCGGCCTGACCCGTGGCGTGCGGGTCGACCATATTATCCGGGCCACGCTCGAATCCATCGCCTACCAGACCCGCGATCTGCTCGACGCCATGCAGCAGGACTCCGGCGAGCGCCTCAAGTCCTTGCGCGTGGACGGCGGCGCGGTGGCCAACAACTTCCTCATGCAATTCCAGGCGGATATCCTTGGCACCCAGGTCGAACGCCCAAAAATGCGCGAAACCACCGCCCTCGGTGCAGCGTACCTGGCCGGCCTGGCGTGCGGTTTCTGGAGCAGCCTGGAAGAACTGCGCGGCAAAGCGGTAATCGAGCGTGAGTTCGAACCGCAACTGGACGAGCAAGCCAAGGAAAAACTCTACGCTGGCTGGAAAAAAGCCGTCAGCCGCACCCGCGATTGGGAGCCCCACGAAGACGCCGAATAA	MTDIENKNYIIALDQGTTSSRAIIFDRDANVVCTAQREFVQHYPQPGWVEHDPMEIFATQSAVMVEALAQAGLHHDQVAAIGITNQRETTVVWDKSTGRPIYNAIVWQCRRSTEICQQLKRDGHEQYISEATGLVTDPYFSGTKLKWILDNVEGSRERARNGELLFGTVDSWLIWKFTGGKVHVTDYTNASRTMLFNIHTLEWDAKMLDILNIPREMLPEVKSSSQIYGRTKSGIAIGGIAGDQQAALFGQMCVEPGQAKNTYGTGCFLLMNTGDKAVKSNHGMLTTIACGPRGEVAYALEGAVFNGGSTVQWLRDELKIINDALDTEYFANKVKDSNGVYLVPAFTGLGAPYWDPYARGALFGLTRGVRVDHIIRATLESIAYQTRDLLDAMQQDSGERLKSLRVDGGAVANNFLMQFQADILGTQVERPKMRETTALGAAYLAGLACGFWSSLEELRGKAVIEREFEPQLDEQAKEKLYAGWKKAVSRTRDWEPHEDAE	PGPT0018435_3038	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0018435-glpK-K00864	NA	NA
D1-36_01236	852	glpF	COG0580	Glycerol uptake facilitator protein	ATGACGACTGCTTTACAACAACCTTCGCTCTCCAGCCAATGCCTGGCGGAGTTCCTGGGTACGGCCCTGTTGATTTTTTTCGGCACCGGTTGCGTTGCAGCGCTCAAGGTCGCGGGCGCCAGTTTCGGCTTGTGGGAAATCAGCATCATCTGGGGCGTCGGTGTCAGCATGGCGATTTATCTCAGCGCGGGCATTTCCGGCGCACACCTGAACCCCGCCGTCAGCATCGCCCTGTGCATTTTCACTGACTTCGAAAAACGCAAACTGCCTTTCTATATCGTTTGCCAAGTGACCGGCGCGTTCTGCGGCGCACTGCTGGTCTACACGCTGTACAGCAATTTGTTCTTCGATTTCGAACAGTCCCGCCACATGATCCGGGGCACCGTGGCCAGCCTCGAACTGGCGTCGGTATTCTCCACCTACCCCCACCCGGCACTGTCCACCGGCCAAGCTTTCCTGGTCGAGATGATCATCACCGCCATCCTGATGGGCGTGATCATGTCCCTGACCGATGATAACAACGGCCTGCCGCGCGGCCCGCTGGCGCCGCTGCTGATCGGCTTGCTGATCGCCGTGATCGGCAGTTCGATGGGACCACTGACAGGTTTCGCGATGAACCCGGCGCGGGATTTCGGTCCGAAATTGATGACTTTCTTCGCTGGCTGGGGTGAAATTTCACTCACCGGGGCGCGTGACATTCCATACTTCCTCGTACCGATTTTTGCGCCGATCCTTGGCGCATGCCTGGGTGCTGCTGCTTATCGCGGGCTCATCGCTCGCCACCTGCCCAGCGCCGTGGTTGCTGCAAAGGAGCCAGAGCCGGCCATTGATGGCAAGCCCAGAACGTCCTGA	MTTALQQPSLSSQCLAEFLGTALLIFFGTGCVAALKVAGASFGLWEISIIWGVGVSMAIYLSAGISGAHLNPAVSIALCIFTDFEKRKLPFYIVCQVTGAFCGALLVYTLYSNLFFDFEQSRHMIRGTVASLELASVFSTYPHPALSTGQAFLVEMIITAILMGVIMSLTDDNNGLPRGPLAPLLIGLLIAVIGSSMGPLTGFAMNPARDFGPKLMTFFAGWGEISLTGARDIPYFLVPIFAPILGACLGAAAYRGLIARHLPSAVVAAKEPEPAIDGKPRTS	PGPT0004760_295	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_GLYCEROL_UPTAKE,PGPT0004760-glpF|pduF-K02440	NA	NA
D1-36_01237	471	ybaK	COG2606	Cys-tRNA(Pro)/Cys-tRNA(Cys) deacylase YbaK	ATGACCCCCGCATTGGATCTGCTGAAAAAAGTGCGTGCCGAACATCGTATTCACAGTTACGAACATGACCCCAAGGCCGCGTCCTATGGTCTGGAAGCCGCAGAGAAACTGGCTCTGGAACCGGCGCGAGTGTTCAAGACGCTGTTGGCCGCGAGCGAGAAAGGTGAATTGCTGGTGGCGGTGGTGCCGGTCGCCGGGAGTCTGGACCTCAAAGCGTTGGCCCATGCGGCCGGGGTAAAGAAAGTCGAGATGGCCGATCCAGCCGCCGCGCAGCGTTCGACAGGTTATTTGCTGGGGGGCATCAGTCCGCTGGGACAGAAGAAGCGCCTGCGCACGTTTATCGACTCATCCGCACAGCCGTTTCCCACTGTGTTCGTCAGCGCGGGAAGACGAGGCCTGGAGGTGGAGTTGGCGCCCGCGTTGCTGGCGGAGCATACCGGAGCGGCGTTTGCGGATATTGGCCGCGGGTGA	MTPALDLLKKVRAEHRIHSYEHDPKAASYGLEAAEKLALEPARVFKTLLAASEKGELLVAVVPVAGSLDLKALAHAAGVKKVEMADPAAAQRSTGYLLGGISPLGQKKRLRTFIDSSAQPFPTVFVSAGRRGLEVELAPALLAEHTGAAFADIGRG				NA	NA	NA	NA	NA
D1-36_01238	783	yddE	COG0384	putative isomerase YddE	ATGCAGCTTGCGTTTCATCAGGTCGATGCGTTCAGTGACCGGCCCTTTGGCGGTAACCCGGCGATGGTCTATCGGCTCGATGCCTGGCTTGCCGATGACCTGATGCAAAAGATTGCCGCCGAACATAACTTGGCTGAAACCGCGTTTATGGTGCGCGAAAACCAGCACTGGCATATCCGCTGGTTCACCCCGACCACCGAGGTGCCCTTGTGTGGCCATGCCACGTTGGCCAGCGCTTATGTGTTGTTCGAGGTCTATCACGAAACCGTGGAGCGGCTGGACTTCATCTGCAAATCCGGAGCGCTGAGCGTCACGCGCGAGGGCGAACGGCTGTGGTTGGATTTCCCTGCCATCGTGCCGGCCGAATTGGGGGCGTCCCTGGCGGTCCAGAGTGCCTTGGGTGTCGAGGCGGTGGATGTGCTGAGTTCCAACGAATTGTTCTTGGTATTGGAGTCGGAGCAGGCGGTGCTCGAGTGCAAGCCGGACATGGCGGCCCTCGCGAAACTGCCATGGCCTGGCGCGATCGTGACCGCGCCGGGGAGCAAGCACGATTTCGTCTCGCGCTATTTTGCTCCGGCGATTGGTATCAATGAGGATCCGGTCACCGGGTCGACTCATTGCAGCCTGATTCCCTACTGGTCCAAGCGGCTGAACAAGCTCGGGCTGACGGCGTATCAATGCTCGGCCAGGGGAGGGGCATTGTTCTGCCGGCTGGAGGGTGACCGGGTGAAGATCGGCGGGCATGCCACGTTGGTGGCCAGCGGGACCCTATCAGTCGGTTGA	MQLAFHQVDAFSDRPFGGNPAMVYRLDAWLADDLMQKIAAEHNLAETAFMVRENQHWHIRWFTPTTEVPLCGHATLASAYVLFEVYHETVERLDFICKSGALSVTREGERLWLDFPAIVPAELGASLAVQSALGVEAVDVLSSNELFLVLESEQAVLECKPDMAALAKLPWPGAIVTAPGSKHDFVSRYFAPAIGINEDPVTGSTHCSLIPYWSKRLNKLGLTAYQCSARGGALFCRLEGDRVKIGGHATLVASGTLSVG				NA	NA	NA	NA	NA
D1-36_01239	1110	btuD_2		Vitamin B12 import ATP-binding protein BtuD	ATGAGTCACTCCTTGTTACTGAATCTGCATAACCTGGCCTGCGGGTACCAGGACCAGCGAGTCGTCCAGAACCTCAACCTGCACCTCAATGCGGGCGACATCGGCTGCTTGCTGGGCTCGTCCGGGTGCGGCAAGACCACGACCCTGCGGGCCATCGCCGGTTTCGAACCGGTACACGAAGGCGAGATCCAGTTGGCCGGGGAAATCATTTCCCGCGCGGGTTTCACCTTGGCCCCGGAAAAACGTCGCATCGGCATGGTATTCCAAGACTATGCACTGTTCCCGCACCTCAGCGTCGCCGAGAACATGGCATTCGGCATTCGTAAACACCCTGGCAAGAACCGTGTGGTCGAAGAGCTGCTGGAACTGGTCAACCTGAAGAACCTCGGTAAACGTTTTCCCCATGAGCTCTCCGGAGGCCAGCAACAACGCGTGGCGCTCGCCAGGGCATTGGCGCCCGAGCCGCAATTGCTGCTGCTCGACGAGCCCTTCTCCAACCTCGATGGCGAGCTGCGACGCAAGCTCAGCCATGAGGTGCGGGACATCCTCAAGGCTCGCGGCACCAGCGCGATTCTGGTGACCCATGACCAGGAAGAAGCCTTCGCCGTGAGTGATCATGTCGGCGTATTCCGGGAGGGTCGGCTGGAACAGTGGGATACGCCCTACAACCTTTACCACGAACCCCTGACGCCTTATGTCGCCAGCTTTATCGGCCAGGGCTATTTCATCCGAGGCCAGCTCGACAGCCCGGAATCAGTGCAGACCGAATTGGGGACGCTACGGGGAAACCGGGCCTATACCTGGCCCATCGGCAGCGCCGTGGATGTGCTGCTGCGCCCGGACGATATCGTCTACGCGCCTGACAGCCCGCTCACGGCTACCATCGTCGGTAAGACTTTTCTGGGCGCTTCGACCTTGTATCGCCTGCAATTGCCGACGGGTGCGCAACTGGAATCGATTTTCCCAAGCCACGCCGACCATCAGGTCGGGGCGACTGTCGGTATTCGCGTGGCCGCCGAACACCTGGTGCTGTTCCAGGCCTCGGGCAGTACGGCAGCGCATTTGCCGTCGATCGACAGCGGCGTGCGACGGCATAGCGTCGCCAATTGA	MSHSLLLNLHNLACGYQDQRVVQNLNLHLNAGDIGCLLGSSGCGKTTTLRAIAGFEPVHEGEIQLAGEIISRAGFTLAPEKRRIGMVFQDYALFPHLSVAENMAFGIRKHPGKNRVVEELLELVNLKNLGKRFPHELSGGQQQRVALARALAPEPQLLLLDEPFSNLDGELRRKLSHEVRDILKARGTSAILVTHDQEEAFAVSDHVGVFREGRLEQWDTPYNLYHEPLTPYVASFIGQGYFIRGQLDSPESVQTELGTLRGNRAYTWPIGSAVDVLLRPDDIVYAPDSPLTATIVGKTFLGASTLYRLQLPTGAQLESIFPSHADHQVGATVGIRVAAEHLVLFQASGSTAAHLPSIDSGVRRHSVAN	PGPT0003735_769	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003735-afuC|fbpC-K02010	NA	NA
D1-36_01240	921	argF	COG0078	Ornithine carbamoyltransferase 1, anabolic	ATGAGCGCAAGGCACTTTCTCTCCCTGATGGATTTCACGCCCGATGAGTTGCTCGCCGTGATCCGTCGAGGCGTTGAGCTCAAGGACCTGCGTAAACGCGGCGTACTGTTCGAGCCCTTGAAAAACCGTGTGCTGGGGATGATTTTCGAGAAGTCATCCACGCGCACGCGCATCTCTTTCGAAGCCGGCATGATCCAGCTTGGCGGCCAGGCGATTTTCCTGTCGCCCCGCGACACTCAACTGGGACGTGGCGAGCCGATCAGCGATTGCGCCATTGTCATGTCGAGCATGCTCGACGCCGTGATGATCCGTACCTTTGCCCACAGCACCCTGACCGAATTCGCCGCCTATTCCCGCGTGCCGGTGATCAACGGCCTATCCGACGATCTGCACCCTTGCCAGCTGTTGGCCGACATGCAGACCTTCCTCGAGCACCGCGGCTCGATCCAGGGCAAAACCGTTGCCTGGGTCGGCGATGGCAACAACATGTGCAACAGCTATATAGAAGCGTCGATGCAATTCGACTTCCAGCTACGGATCGCTTGCCCTGAAGGCTATGACCCGGATGCAGAACTGCTCGCCAAGGCCGGGGACCGGGTGTCGCTGGTCCGTGATCCGAAGCTGGCCGTGGCCGGCGCGCACCTGGTGAGCACCGACGTCTGGACCTCCATGGGCCAGGAAGAGGAAGCCGCCAAGCGCGTCAAGCTGTTCGCGCCGTTGCAAGTCACACGGGCCCTGCTCGACCTGGCGGACGCCGAGGTGCTGTTCATGCATTGCCTACCCGCCCATCGCGGCGAGGAAATCAGCCTCGACCTGCTGGAAGACCCGCGATCCGTCGCTTGGGACCAGGCAGAAAACCGTCTCCACGCACAGAAGGCCCTGCTCGAATTCCTCGTCGAGCCGGCGTATCACCACGCATGA	MSARHFLSLMDFTPDELLAVIRRGVELKDLRKRGVLFEPLKNRVLGMIFEKSSTRTRISFEAGMIQLGGQAIFLSPRDTQLGRGEPISDCAIVMSSMLDAVMIRTFAHSTLTEFAAYSRVPVINGLSDDLHPCQLLADMQTFLEHRGSIQGKTVAWVGDGNNMCNSYIEASMQFDFQLRIACPEGYDPDAELLAKAGDRVSLVRDPKLAVAGAHLVSTDVWTSMGQEEEAAKRVKLFAPLQVTRALLDLADAEVLFMHCLPAHRGEEISLDLLEDPRSVAWDQAENRLHAQKALLEFLVEPAYHHA	PGPT0020080_4467	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
D1-36_01241	288			hypothetical protein	ATGGATTCGAAAGAGCAACGACTGATGGAACTGTTGGGGCTGACGGCACGCACCCTGACCCACCTGACCGCTTCGGTGACGTCCATGTCATTCGAATTGCTGCGCAGCGATGACGAAGTGACCAAGGCGGCGGGGCGCCGCATGATCGATCGGATGGCCACGATCAGCGGTGGTCTCGATGAGCACTGGCGCTTGATTGGCGAGTTGACCGGGGTGCCCATGGCCCAGGAGGAAGTGCAGACCATCGAGGAAATCCAACTGCTGGCGCCTCCTCCCGAGCAGCCTTGA	MDSKEQRLMELLGLTARTLTHLTASVTSMSFELLRSDDEVTKAAGRRMIDRMATISGGLDEHWRLIGELTGVPMAQEEVQTIEEIQLLAPPPEQP				NA	NA	NA	NA	NA
D1-36_01242	2109	nasC	COG0243	Assimilatory nitrate reductase catalytic subunit	ATGACCAAGACCCTCCATCACCGTGCGTGCCATCTGTGCGAGGCCATCTGTGGCCTGACTCTCGAAACCACCGAAACCGAAGGCCAAGGCCTGGCGATCACCTCGATCAAGGGTGATCCGCTGGACAGTTTCAGTCGTGGGCACATCTGCCCCAAGGCCGTGGCGTTGCAGGATATCCAGAACGATCCGGACCGTCTGCGCCAGCCCATGCAACGAGTCGGCGGCGAGTGGCAGCCCATCGCCTGGGACGACGCCTTTGCCTTGGTGGCCGAACGCCTTGCGGCGATCCAGGAGCGCCACGGCCAGAACGCGGTGGGGGTCTATCAGGGCAACCCCAGCGTGCACAACTATGGATTGATGACCCACAGCAACTATTTCCTCGGCTTGTTGAAAACCCGCAGCCGCTTTTCGGCGACTTCGGTTGATCAATTGCCCCATCACCTGACCAGTCACTTGATGTACGGTCACGGCTTGCTGCTGCCGATACCGGACATCGATCACACCGATTTCATGCTGATCCTGGGGGGTAATCCGCTGGCTTCCAATGGCAGCATCATGACCGTGCCGGATGTGGAGAAACGGCTGAAGGCAATCCAGTCCCGGGGCGGCCGGGTGGTGGTGGTCGATCCGCGGCGCAGCGAGACGGCGGCCATCGCCGACCAGCATGTATTCGTACGCCCCGGCGGCGATGCCGCGCTGCTGTTTGGCTTGCTTGGCACCTTGTTCAGCGAAGGACTGACGCGTGACAGTCATTTGCCGGTGGACGGCCTCGAAGAGGTGCGCCAGGCCGTTGCACCTTTCACCGCAGAGGCCATGAGCCCGCTTTGTGGGGTGCCTGCCCCGCAGATCCGCCAATTGGCCCGTGATTTCGCTGCCGCGCCGTCGGCCGTGTGCTATGGCAGGATGGGTGTTTCGACCCAGGCTTTCGGCACGCTGTGCCACTGGCTGATCCAGGTGATCAACCTGGTGACCGGCAATCTCGATCGAGTGGGCGGGGCACTGTGCACCGAGCCAGCGGTGGATTTGGTGGCGACCACTTCGGGCGGGCATTTCAATCGCTGGCAAAGCCGTGTATCCGGGCGTCCCGAATATGCGGGCGAGTTGCCTGTATCGACCCTCGCTGAAGAAATGCTCACCGAGGGCGAAGGGCAGATCCGTGCGCTGGTCACCGTGGCCGGCAACCCCGTGCTGTCCACGCCTAACGGACGGCAGCTCGAGCAAGCGCTGGATGGGCTTGAGTTCATGGTCAGCATCGACTTGTACATCAACGAAACCACGCGCTACGCCGACTTGATCCTGCCGTCGACCTCGGCCCTGGAAAATGATCATTACGACACCACGTTCAACCTGTTCGCCGTGCGTAACGTCAGCCGCTTCAACCGGGCCATCCTGCCCAAGCCCGAGGGAGCGCTGCACGATTGGGAGATTTTTGTCGGCCTGGCCAAGGCTTTTGCCGCCCGGACCGGCAAGGAGCTCAAGCCGACGATGCCGCCGGCGCAGATGATCGATTTCGGCCTGCGAGCCGGGATGTATGGCGATGCTTCGCCCTACAGGTTGTCCTTGGCAACGCTGTTCGATCATCCCCACGGTATCGATCTCGGTGCGCTCAAGCCCAATCTGACGGCCCGGTTGAAAACCGAAAATGGCCGCGTGCAGGCTGCGCCCGCCGTCATCCTCGCCGACCTGGCGCGCTTTGCCGCGTTGCGAGCGCCGGCAGCGGACGAGTTGCTGATGATTGGCCGGCGCCATGTGCGCAGCAATAACTCATGGATGCATAATTTCCACCGGCTGGTGAAAGGCAAGCCGCGTCATCAATTGCTGATGCATCCGCAAGACCTTGCCAGCCGGGGGCTTGTCGATGGGCAGCGCGTGAAGGTCAGCTCCCGGGTCGGCGTGATTGAAGTGGAGGTCCAGAGCAGCCCGGACATGATGAAAGGCGTGGTCAGCCTTCCTCACGGTTGGGGGCATGCTCGTCCTGGCGTGCAGATGACCATCGCCAGCGGACAGCCTGGGTCCAGCGCCAACGACCTGACCGATGAGCGCCAGCTCGATGAGTTATCCGGCAACGCGGCGCTGAACGGTGTTCCGGTGAAGGTGGCGGCTGCGTAA	MTKTLHHRACHLCEAICGLTLETTETEGQGLAITSIKGDPLDSFSRGHICPKAVALQDIQNDPDRLRQPMQRVGGEWQPIAWDDAFALVAERLAAIQERHGQNAVGVYQGNPSVHNYGLMTHSNYFLGLLKTRSRFSATSVDQLPHHLTSHLMYGHGLLLPIPDIDHTDFMLILGGNPLASNGSIMTVPDVEKRLKAIQSRGGRVVVVDPRRSETAAIADQHVFVRPGGDAALLFGLLGTLFSEGLTRDSHLPVDGLEEVRQAVAPFTAEAMSPLCGVPAPQIRQLARDFAAAPSAVCYGRMGVSTQAFGTLCHWLIQVINLVTGNLDRVGGALCTEPAVDLVATTSGGHFNRWQSRVSGRPEYAGELPVSTLAEEMLTEGEGQIRALVTVAGNPVLSTPNGRQLEQALDGLEFMVSIDLYINETTRYADLILPSTSALENDHYDTTFNLFAVRNVSRFNRAILPKPEGALHDWEIFVGLAKAFAARTGKELKPTMPPAQMIDFGLRAGMYGDASPYRLSLATLFDHPHGIDLGALKPNLTARLKTENGRVQAAPAVILADLARFAALRAPAADELLMIGRRHVRSNNSWMHNFHRLVKGKPRHQLLMHPQDLASRGLVDGQRVKVSSRVGVIEVEVQSSPDMMKGVVSLPHGWGHARPGVQMTIASGQPGSSANDLTDERQLDELSGNAALNGVPVKVAAA				NA	NA	NA	NA	NA
D1-36_01243	342	grxD	COG0278	Glutaredoxin 4	GTGGATATCATCGAAACGATCAAAGAACAGATTGCCAACAACACCATCCTGCTCTACATGAAAGGCTCGCCGAACGCCCCACAGTGCGGCTTCTCGGCCAAGGCTGCTCAGGCGGTGATGGCGTGTGGCGAGAAGTTCGCCTACGTGGACATCCTGCAGAACCCGGAAATCCGCGCCAACCTGCCCAAGTATGCCAACTGGCCAACCTTCCCACAGTTGTGGGTTGGCGGTGAGCTGATCGGCGGCAGTGACATCATGACCGAGATGGCCGCCGACGGTTCGTTGCAGTCCACGATCAAGGCAGCTGTGGAAGCAGCGGCGGCTAACAAGTCCGAAGCCTGA	MDIIETIKEQIANNTILLYMKGSPNAPQCGFSAKAAQAVMACGEKFAYVDILQNPEIRANLPKYANWPTFPQLWVGGELIGGSDIMTEMAADGSLQSTIKAAVEAAAANKSEA	PGPT0013203_1133	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-CHAPERONES,PGPT0013203-grxD-K07390	NA	NA
D1-36_01244	474	bfr_1	COG2193	Bacterioferritin	ATGAAAGGCGACATTACAGTCATCCAGCATCTCAACAAGATCCTTGCCAATGAGCTGGTCGCGATCAATCAGTACTTCTTGCATGCACGCATGTACGAGGATTGGGGCCTGAACAAGCTGGGCAAGCACGAGTACCACGAATCCATCGATGAAATGAAACATGCGGACAAGCTGATCAAGCGAATCCTGTTTCTCGAAGGCCTGCCGAACGTCCAGGACCTGGGCAAGCTGCACATCGGCGAACATACTCGTGAAATGCTCGAGTGCGACCTGCGCATCGAGCGCACCGGCCACGCCGACCTGAAAGCCGCCATTGCCCATTGCGAAAGCGTTGGCGACTTCGGTAGCCGCGAACTGCTGGAAGACATTCTCGAATCCGAGGAAGAGCACATCGACTGGCTCGAAACCCAGCTGGGCCTGATCGACAAGATCGGTCTGGAAAATTACCTGCAATCGCAGATGGGCGAAGAATAA	MKGDITVIQHLNKILANELVAINQYFLHARMYEDWGLNKLGKHEYHESIDEMKHADKLIKRILFLEGLPNVQDLGKLHIGEHTREMLECDLRIERTGHADLKAAIAHCESVGDFGSRELLEDILESEEEHIDWLETQLGLIDKIGLENYLQSQMGEE	PGPT0003965_2191	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-RELATED_PROTEINS_FERRITIN,PGPT0003965-bfr-K03594	NA	NA
D1-36_01245	219	bfd	COG2906	Bacterioferritin-associated ferredoxin	ATGTATGTATGCCTCTGCACTGGCGTCACCGACGGACAAATCCGCGAAGCGATCTATGAGGGTTGCTGCAGCTACCGGGAAGTCCGCCAGGCCACCGGCGTAGCCAGCCAATGCGGCAAATGCGCCTGCCTCGCCAAGGAAGTGGTGCGTGAAACCCTCGCCAAAGTTCAGACCGCGCAAGCCTCGATCCCTTATCCGGCAGAATTTACGGCCGCATAA	MYVCLCTGVTDGQIREAIYEGCCSYREVRQATGVASQCGKCACLAKEVVRETLAKVQTAQASIPYPAEFTAA	PGPT0003975_583	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-BACTERIOFERRITIN-ASSOCIATED_FERREDOXIN,PGPT0003975-bfd|yheA-K02192	NA	NA
D1-36_01246	603	ahpC_1	COG0450	Alkyl hydroperoxide reductase C	ATGAGCGTACTCGTAGGCAAACAAGCCCCTGACTTCACCGTTCCCGCCGTCCTCGGCAATGGCGAAATCGTCGACAGCTTCACCCTGTCCTCGGCCATCAAAGGCAAATACGGCCTGGTGTTCTTCTACCCGCTGGACTTCACTTTCGTTTGCCCGTCCGAGCTGATCGCACTGGATCACCGCATGGACGACTTCAAGGCGCGCAACGTTGAAGTGGTCGCCGTTTCGATCGACTCGCACTTCACCCACAACGCCTGGCGCAACACCGCCATCAATGCCGGTGGCATTGGCCCGGTGAAATACACCATGGCTGCCGACATGAAGCACGAAATCGCCAAGGCCTACGACGTTGAGTCCGAAGGCGGCGTGGCCTTCCGTGGCGCGTTCCTGATCGACGACAAAGGCGTGGTCCGTTCGCAGATCATCAACGACCTGCCGCTGGGACGTAACATGGAAGAGCTGATCCGTCTGGTTGACGCCCTGCAGTTCCATGAAGAGCATGGCGAAGTCTGCCCGGCCAACTGGAAAAAAGGCGACAAGGGCATGACCGCATCGCCTGAAGGTGTAGCTGCCTACCTGGGCGAGCACAGCGACAAGCTGTAA	MSVLVGKQAPDFTVPAVLGNGEIVDSFTLSSAIKGKYGLVFFYPLDFTFVCPSELIALDHRMDDFKARNVEVVAVSIDSHFTHNAWRNTAINAGGIGPVKYTMAADMKHEIAKAYDVESEGGVAFRGAFLIDDKGVVRSQIINDLPLGRNMEELIRLVDALQFHEEHGEVCPANWKKGDKGMTASPEGVAAYLGEHSDKL	PGPT0013130_1726	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013130-tsaA|PRDX2_4|ahpC-K03386	NA	NA
D1-36_01247	678	rnt	COG0847	Ribonuclease T	GTGAGTGAAGATCATTTCGATGACGAACTGGACGGCAACGGCGGCTCAGGCGGCCCGCGCCATCCAATGGCGGCTCGCTTCCGGGGTTATCTGCCGGTCGTGGTCGATGTAGAAACCGGCGGTTTCAACTCGGCCACCGATGCGCTGCTGGAAATCGCCGCGACGACCATCGGCATGGACGAAAAAGGCTTCGTCTTCCCCGACCACACCTATTTCTTCCGGGTCGAACCGTTCGAAGGCGCCAACATCGAAGCGGCTGCCCTGGAGTTCACCGGGATCAAGCTCGATCATCCGCTGCGCATGGCCGTCAGCGAAGAGACCGCGCTGACCGACATCTTCCGTGGTGTGCGCAAGGCGCTGAAGGCCAACGGTTGCAAGCGAGCGATCCTGGTTGGCCACAACAGCAGCTTCGACCTGGGCTTCCTCAATGCCGCCGTGGCGCGCCTGGACATGAAGCGCAACCCTTTCCATCCATTCTCCAGCTTCGACACGGCCACCCTTGCAGGCCTGGCGTATGGCCAGACCGTGTTGGCCAAGGCGTGCCAGGCAGCCGACATCGATTTCGATGGCCGTGAAGCCCATTCGGCCCGCTACGACACCGAGAAAACCGCCGAGCTTTTTTGCGGCATCGTCAACCGGTGGAAGGAAATGGGTGGCTGGCAGGATTTCGACGACTGA	MSEDHFDDELDGNGGSGGPRHPMAARFRGYLPVVVDVETGGFNSATDALLEIAATTIGMDEKGFVFPDHTYFFRVEPFEGANIEAAALEFTGIKLDHPLRMAVSEETALTDIFRGVRKALKANGCKRAILVGHNSSFDLGFLNAAVARLDMKRNPFHPFSSFDTATLAGLAYGQTVLAKACQAADIDFDGREAHSARYDTEKTAELFCGIVNRWKEMGGWQDFDD				NA	NA	NA	NA	NA
D1-36_01248	1047	pyrC	COG0418	Dihydroorotase	ATGTCCGACCGCCTGACCCTGCTGCGTCCCGACGACTGGCATATTCATCTTCGCGATGGTGCTGTGTTGACCCATACCGTCGCCGATGTCGCGCGCACTTTTGGCCGCGCCATCATCATGCCTAACCTGGTTCCGCCCGTGCGTAACGCTCCCGAGGCCGATGGCTATCGCCAGCGCATTCTGGCTGCACGCCCGGCTGGCAGCCGCTTCGAACCGCTGATGGTGCTTTACCTCACCGACCGCACCCAGCCCGAAGAAATACGCGAGGCCAAGGCCAGTGGTTTCGTCCACGCGGCCAAGTTGTACCCCGCTGGCGCCACCACCAACTCGGATTCCGGTGTCACCAGCATCGACAAGATCTTCCCTGCGCTGGAGGTCATGGCCGAAGTCGGCATGCCATTGTTGATCCATGGCGAGGTCACCCGGGGCGACGTCGATGTGTTCGACCGCGAGAAGATCTTCATCGACGAACACATGCGTCGCGTCGTCGAACGCTTCCCGACGCTAAAGGTGGTGTTCGAGCACATCACCACCGGCGATGCCGTGCAATTCGTCAACGAGGCCTCGGCCAACGTCGGCGCGACCATTACCGCACACCACCTGCTGTACAACCGCAACCACATGCTGGTGGGCGGGATCCGGCCGCATTTCTACTGCCTGCCGATCCTCAAGCGCAACACCCATCAGGAAGCCTTGCTGGACGCCGCCACCAGCGGCAGCGCCAAGTTCTTCCTGGGCACCGACTCGGCGCCCCACGCCCGTCACGCCAAGGAAGCCGCCTGCGGTTGCGCCGGCTGTTACACCGCCTACGCCGCCATCGAGATGTATGCCGAGGCATTCGAGCAGCGCAACGCCCTGGACAAGCTCGAAGGTTTCGCCAGCCTGCATGGCCCACGCTTCTATGGCCTGCCGGTGAACACCGATCGTATTACCCTGGTTCGCGATGAGTGGACCGCCCCTGCCAGCCTGCCGTTTGGCGAGCAGACTGTCATCCCGCTGCGCGCCGGTGAAAAACTGCGCTGGCGCCTGCTGGAGGAAAACGCGTGA	MSDRLTLLRPDDWHIHLRDGAVLTHTVADVARTFGRAIIMPNLVPPVRNAPEADGYRQRILAARPAGSRFEPLMVLYLTDRTQPEEIREAKASGFVHAAKLYPAGATTNSDSGVTSIDKIFPALEVMAEVGMPLLIHGEVTRGDVDVFDREKIFIDEHMRRVVERFPTLKVVFEHITTGDAVQFVNEASANVGATITAHHLLYNRNHMLVGGIRPHFYCLPILKRNTHQEALLDAATSGSAKFFLGTDSAPHARHAKEAACGCAGCYTAYAAIEMYAEAFEQRNALDKLEGFASLHGPRFYGLPVNTDRITLVRDEWTAPASLPFGEQTVIPLRAGEKLRWRLLEENA	PGPT0021145_6728	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021145-pyrC-K01465	NA	NA
D1-36_01249	999	pal_3		Peptidoglycan-associated lipoprotein	GTGCGCCAGCGTTATCTAGCCTTGCTCAGTGTGTTTGCCAGCCTTCCTGCGATGGCGCTCACTTTCCAGACCCGTCTGGAGAGCATTGAGTGGACGGTCGAAGGCGATAAGTTCGAGTGTCGGCTGAGTCAGCCGATCACCGATTTTGGCAGCGGCGAATTCGTGCGCAAGGCGGGCGAGCAGGCCACGTTCCGGCTCAAGGCCTATAACCCGATGCTCGGTGGCGGCTCCGCGACGTTGCTGGCGGCGGCGGCGCCCTGGCAGCCAGGACGAGGCGATATCAACCTCGGCTCGGTCAGGATCGGTAGCGGCGATGTGCTGTTCAACAGCTCCCAGGTGCAGGCGGGCCGCTTGATCAGCGGGCTGATGGAAGGTCGCAGCCCCGTGGTGCGGCGTAACACCGACGATGGGCGGGTGTCGGAAGTCCGGTTGTTGCCCGTGCGCTTCAACAAGGCGTTCAACGATTACCAGGGCTGTGTCGCGAAGCTGTTGCCGAAGAACTTCGAACAGATCAAGCAAACCCAGATCGGTTTTCCCGGCGAAGGCATCGAGCTCGACGCCCAGGCCAAGGCTCAGTTGCAGGTCATGCTCGACTTCATCAAGGCTGACCCGAGCGTCAATCATGTCGAACTCGACGGCCACTCCGACAACAGTGGCAACCGCCTGACCAACCGCGAGCTGTCGCGCCGCCGGGCCCTGGCCGTCCAGGACTTCTTCAAGGCCAACGGCTTCCAGGAGTCTCAGTTTACCGTTCGCTTCCATGGCGAGCGTTATCCGCTGGTGCCCAATACCAACGCCGCCAATCGGGCCAAGAACCGTCGTGTGCTGGTAAAACTGGAGCGGGGCGCCGCACCGGCCTCGGCCCCACAGCCGCCAACCCCTGCGACAACGCCTGCGGTGCCTGCCGTGGCGCCCGCTGCCGCGCCGGGCAAGCCGGCGACGCCAGTGGCCCCGGCCAAGGCGGCTACGCCTGCTGCGGCTACTGCGCGCACTTCCTGA	MRQRYLALLSVFASLPAMALTFQTRLESIEWTVEGDKFECRLSQPITDFGSGEFVRKAGEQATFRLKAYNPMLGGGSATLLAAAAPWQPGRGDINLGSVRIGSGDVLFNSSQVQAGRLISGLMEGRSPVVRRNTDDGRVSEVRLLPVRFNKAFNDYQGCVAKLLPKNFEQIKQTQIGFPGEGIELDAQAKAQLQVMLDFIKADPSVNHVELDGHSDNSGNRLTNRELSRRRALAVQDFFKANGFQESQFTVRFHGERYPLVPNTNAANRAKNRRVLVKLERGAAPASAPQPPTPATTPAVPAVAPAAAPGKPATPVAPAKAATPAAATARTS	PGPT0015395_37	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_MOTOR|SWITCH,PGPT0015395-motY-K21218	NA	NA
D1-36_01250	1218	argG	COG0137	Argininosuccinate synthase	ATGGCGGACGTAAACAAGGTCGTTCTGGCGTATTCCGGCGGCCTGGACACTTCGGTGATCCTCAAGTGGCTGCAGGACACATATAACTGCGAAGTGGTGACCTTCACCGCTGACCTGGGACAGGGCGAGGAAGTCGAGCCTGCACGCGCCAAGGCCCAGGCCATGGGCGTCAAAGAGATCTATATCGATGACCTGCGCGAAGAATTCGTCCGCGACTTCGTCTTCCCGATGTTCCGCGCCAACACTGTTTACGAAGGCGAATACCTGCTGGGCACGTCCATCGCCCGTCCGCTGATTGCCAAGCGCTTGATCGAAATCGCCAACGAAACCGGTGCCGATGCCATTTCCCATGGGGCGACCGGCAAGGGCAACGACCAGGTACGTTTCGAGCTGGGTGCCTATGCCCTCAAGCCGGGCGTGAAGGTCATTGCTCCATGGCGCGAGTGGGACTTGCTGTCCCGTGAAAAGCTGATGGACTACGCCGAGAAGCACGCGATCCCGATCGAGCGTCATGGCAAGAAAAAATCTCCGTACTCGATGGATGCCAACCTGTTGCACATCTCCTATGAAGGCGGCGTGCTGGAAGACACCTGGACCGAGCACGAAGAAGACATGTGGCGTTGGACCGTCTCCCCCGAGAAGGCTCCCGATACCCCGCAATACCTGGAACTGACCTATCGCAATGGCGACATCGTTGCGCTCGATGGCGTGGAAATGAGCCCGGCCACTGTGCTGGCGACCCTGAACCGCATCGGTGGCGAACACGGCATCGGTCGCCTCGACATCGTCGAGAACCGCTATGTCGGTATGAAGTCCCGTGGTTGCTACGAAACCCCAGGCGGCACCATCATGCTGCGCGCCCACCGGGCGATCGAATCGATCACCCTGGATCGCGAAGTGGCTCACTTGAAGGATGAGTTGATGCCCAAGTACGCCAGCCTCATCTACACCGGCTACTGGTGGAGCCCTGAGCGTCTGATGCTGCAACAGATGATCGATGCCTCCCAGGTCAACGTGAACGGTGTCGTGCGCCTGAAGCTGTACAAGGGCAACGTGATCGTGACCGGGCGCAAGTCCGACGACTCGCTGTTCGATGCCAACATCGCCACTTTTGAAGAAGACGGTGGTGCCTACAACCAGGCCGACGCGGCCGGCTTCATCAAGCTCAACGCCCTGCGCATGCGCATCGCGGCGAACAAGGGTCGCAAGCTGTTCTGA	MADVNKVVLAYSGGLDTSVILKWLQDTYNCEVVTFTADLGQGEEVEPARAKAQAMGVKEIYIDDLREEFVRDFVFPMFRANTVYEGEYLLGTSIARPLIAKRLIEIANETGADAISHGATGKGNDQVRFELGAYALKPGVKVIAPWREWDLLSREKLMDYAEKHAIPIERHGKKKSPYSMDANLLHISYEGGVLEDTWTEHEEDMWRWTVSPEKAPDTPQYLELTYRNGDIVALDGVEMSPATVLATLNRIGGEHGIGRLDIVENRYVGMKSRGCYETPGGTIMLRAHRAIESITLDREVAHLKDELMPKYASLIYTGYWWSPERLMLQQMIDASQVNVNGVVRLKLYKGNVIVTGRKSDDSLFDANIATFEEDGGAYNQADAAGFIKLNALRMRIAANKGRKLF	PGPT0020130_3175	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0020130-argG-K01940	NA	NA
D1-36_01251	498			hypothetical protein	ATGAAAAGATCATTAAGAACCATCGCCAACCCCCTGACACTGATCGCTGTATTCGCAACGATCTCCGAAACTTCCGCAGCTATTTCCCTGCCGTTTCTGGATGATGAAGAGCGAGAGTACTATGTATGGTTCCTCATCAGCTTCCCGTTTTACCTGTTATTTCTTTTCTTTATCACACTCAACTTCAACTACCGTTCCTTGTACTCGCCCTCGGATTTCCACAAGACCAAGCACTTCATAAGGGGTGCGGCTGAGTCATCCTGTCGGCGTAGACGTAGATCACGCCAAGGAAGCAAGGCTGATTTCCTGTCGCAGTCTTATCGATGGAATAAGTGCACGGCTCTGGACGATGCGTTCAAGCACACTTCATCCCACCCGTCGGTCGACATGTATTGGGCTAAGGACTCGGGACGGCGTCTTGAGGGCAAGACCATCATCGTCTTCGTTGTTTACAACGGGAACGGCGCAGGGACACTGCCGGATAAACAGGCGGGGTGA	MKRSLRTIANPLTLIAVFATISETSAAISLPFLDDEEREYYVWFLISFPFYLLFLFFITLNFNYRSLYSPSDFHKTKHFIRGAAESSCRRRRRSRQGSKADFLSQSYRWNKCTALDDAFKHTSSHPSVDMYWAKDSGRRLEGKTIIVFVVYNGNGAGTLPDKQAG				NA	NA	NA	NA	NA
D1-36_01252	627	bvgA_1		Virulence factors putative positive transcription regulator BvgA	ATGAATAAAGTGCTGATCGTGGATGATCATCCCGTCATTCGTCTTGCTGTACGTTTGCTGATGGAGCGTCATGGATATGAAGTTATTGCCGAAACGGATAACGGCGTCGATGCATTGCAGATTGCCCGGGAACAAATGCCCGACATCGTTATTCTCGATATTGGAATTCCGAAGTTGGATGGATTGGAGGTTATCGCTCGCCTGACCATCAATCCTTCGCCATTGAAAGTGCTGGTGCTGACTTCCCAGGCCCCTGGACATTTTTCGATGCGCTGCATGCAAACGGGGGCCGCCGGCTATGTATGCAAACAGCAGGACCTGACCGAACTGTTGAGTGCGATAAAAGCGGTGCTGTCGGGCTATAGCTATTTTCCCAACCAGGCATTGCACACGGTGCGTTCAAGCCTTGGCAATGCCAGCGAGTCGGATATGGTGGAACGTTTGTCCGGGCGAGAGATGATGGTGCTGCAGCAACTGGCTCGCGGTAAGACCAACAAAGAGATCGCGGATGGGATGTTCCTGAGCAACAAGACCGTCAGCACCTACAAAACCCGCTTGTTGTTGAAGCTCAATGCCCGTTCGCTGGTGGACCTGATTGAACTGGCACAACGAAATGGACTGGTCTGA	MNKVLIVDDHPVIRLAVRLLMERHGYEVIAETDNGVDALQIAREQMPDIVILDIGIPKLDGLEVIARLTINPSPLKVLVLTSQAPGHFSMRCMQTGAAGYVCKQQDLTELLSAIKAVLSGYSYFPNQALHTVRSSLGNASESDMVERLSGREMMVLQQLARGKTNKEIADGMFLSNKTVSTYKTRLLLKLNARSLVDLIELAQRNGLV	PGPT0014490_145	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MdtEF-TolC,PGPT0014490-evgA|bvgA-K07690	NA	NA
D1-36_01253	186			hypothetical protein	ATGAGTACTGGCAAAGAACAACTGGATGTAGTGGAAGACGATTTCGTCGCCGTTGAAGGTGACGATGCGGAACCTGTTGTCGTGGAAGTGGCAAAAACCAACCTGAGTAAACGCCGCACCATCGACAACCTGTTGGAAGAGCGTCGTCTCCAAAAGCAACTCGCCGATTACGATTTTGATCTCTGA	MSTGKEQLDVVEDDFVAVEGDDAEPVVVEVAKTNLSKRRTIDNLLEERRLQKQLADYDFDL				NA	NA	NA	NA	NA
D1-36_01254	639	nth	COG0177	Endonuclease III	ATGAACGCCGCAAAACGTCTGGAAATCTTTCGTCGTTTTCATGAAGACAACCCCGAGCCAAAGACCGAACTGGCCTACTCTTCCCCTTTCGAGTTGCTGATCGCGGTGATTCTATCGGCCCAATCCACCGACGTCGGTGTCAACAAAGCCACGGCCAAGCTTTTTCCCGTAGCCAATACACCGCAGGCGATCCTTGCCTTGGGCGTCGAAGGGCTGTCCGAGTACATCAAGACCATCGGGCTTTTCAACAGCAAGGCGAAAAACGTGATCGAGACCTGTCGCCTGCTAATCGAGCGTCACGGCGGTGAGATTCCCCAGTCCCGCGAAGCGCTGGAAGCTCTTCCAGGTGTCGGTCGCAAGACCGCCAATGTGGTTCTCAATACCGCATTCCGTCAATTGACGATGGCCGTCGACACCCACATTTTCCGCGTCAGTAACCGGACTGGGCTGGCGCCGGGCAAGAACGTGGTGGAAGTGGAAAAGAAGCTCATGAAATTCGTCCCCAAGGATTACCTTCTGGATTCACACCACTGGCTGATCCTGCATGGGCGTTACGTCTGCCTGGCCCGCAAGCCCCGTTGCGGGAGCTGCCGGATCGAAGACCTATGTGAATATAAGCACAAGACATCGGACGATTGA	MNAAKRLEIFRRFHEDNPEPKTELAYSSPFELLIAVILSAQSTDVGVNKATAKLFPVANTPQAILALGVEGLSEYIKTIGLFNSKAKNVIETCRLLIERHGGEIPQSREALEALPGVGRKTANVVLNTAFRQLTMAVDTHIFRVSNRTGLAPGKNVVEVEKKLMKFVPKDYLLDSHHWLILHGRYVCLARKPRCGSCRIEDLCEYKHKTSDD	PGPT0013735_4683	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013735-nth-K10773	NA	NA
D1-36_01255	531	rnfE	COG4660	Ion-translocating oxidoreductase complex subunit E	ATGAATAACTCCATACCCTGGTCCCGCGGCCTCGTGCTCGTTCCTCTGGTGGGAGCCAGCGACTCGCTGGTGAATGCGCTGGTCCTGTGGCTCGCCTGGGTCTTGATCAGCCTCGCCCACGGCTCGACACTGGCATTGCTGGGGCCGCGCCTCACGGACCGCCAGCGACTCATCGCATCCTGCGTCGTGGCCGCCGCCATGACCGCCTGCGCCGACCTCCTCGTCCAGGCCTGGATGTTGGAGCGCCATGGCGCGCTGAGCATGTACACCGCATGGATCGCACTGAGCTGCGTGACCCTGGAACAAACCGCTGTCGTCGAGCGCCGCTGGCTTGCTCACCTCAGGTTGGCGGCGCAGTTCGGCCTCTTGATCGTCAGCCTGGGCGCTTTGCGCGAGCTGATCGGCAGAGGCGTGCCAATGGCCCTGCTCGCCCCCGGCGGATTCATTCTGCTCGGCCTGCTGCTCGCCGCCTATCAAGCCTGGACAGGCATCAAACCCCGTTCGACCCAAGAGGAAACGCCGCGCCCATGA	MNNSIPWSRGLVLVPLVGASDSLVNALVLWLAWVLISLAHGSTLALLGPRLTDRQRLIASCVVAAAMTACADLLVQAWMLERHGALSMYTAWIALSCVTLEQTAVVERRWLAHLRLAAQFGLLIVSLGALRELIGRGVPMALLAPGGFILLGLLLAAYQAWTGIKPRSTQEETPRP	PGPT0013280_1289	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013280-rnfE|rsxE-K03613	NA	NA
D1-36_01256	612	rsxG		Ion-translocating oxidoreductase complex subunit G	ATGAAAAAAATCGCCGGCGTTACGATCCTGGTGTTGCTTGGCGGCCTTGCCATCGGCGCCACGTACCTGGTGCAAACCGGCACCGCCGGGCGCATCGAGGCGCAGCGCCAAGCCATCGCCAACCGGACCTTGCTCGACATACTGCCGCCCGACCGTTACGACAATCAGCCGATGGCGCAACCGCTCATCGCGGCTCCGGTGGCGCTGCCCCGCAGCACATTGCTGGGCGCTTACCTGGCAACTCGCGACGCAGTGCCCAGCGCCGTGTTGCTAAGCAGCCAGGTACAGGGCTACGAGGGCAGCATCGAGCTACTGATCGCCGTGGATCCGACAGGACGCGTATTGGGCGTAAAAACCCTGCGCCAGTCGGAAACTCCCGGCCTCGGCGCGGCGATAGCCGGCTGGCCGAATGCCTGGCTGCAAACCTTCGAGGGCAAGTCGAGCCAGGTGCCTGCCGATGAGAGTTGGGCGTTGAAAAAGGATCACGGCCAGTTCGACCAGTTGGCTGGCGCGACGGTCACATCCAGGGCGGTGCTCCAGGCTGTCCACGATGCGTTGCGTTACTTCGACGGGCATAAGACGCAGCTGACGGGAGCGATCAGTCATGAATAA	MKKIAGVTILVLLGGLAIGATYLVQTGTAGRIEAQRQAIANRTLLDILPPDRYDNQPMAQPLIAAPVALPRSTLLGAYLATRDAVPSAVLLSSQVQGYEGSIELLIAVDPTGRVLGVKTLRQSETPGLGAAIAGWPNAWLQTFEGKSSQVPADESWALKKDHGQFDQLAGATVTSRAVLQAVHDALRYFDGHKTQLTGAISHE	PGPT0013285_971	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013285-rnfG|rsxE-K03612	NA	NA
D1-36_01257	987	rsxD	COG4658	Ion-translocating oxidoreductase complex subunit D	ATGCCGCTCGCTGATCCGCTGGACGAACGGCTGCGCCAGGCGATGCGGCGTGTACTGCTGGCGACGTTGCCCGGCGTACTGGCCTCGATGTGGTTCTTTGGTTGGGGTGTGTTGCTGAACCTGTTGTTGTCCGGGCTGACCGCGCTGGCGATCGAGGCGCTGATATTGCGTTTGCGGCGACGACCCATCAAGCCAGACCTGGGCGACGGCAGCGCATTGGTCAGTGCCACCTTGCTGGCCCTGGCCTTGCCAGCGTATTGCCCTTGGTGGCTGACCGTCACGGCGGTCGCCTGCGCCTTGTTGTTTGGCAAGCACCTTTGGGGTGGGGTCGGCAGCAATCCGTTCAATCCAGCGATGCTCGGGTATGCCCTGGTATTGATGGCGTTCCCCCAATACATGAGCCAATGGCCAACGACCCATGGCCTGGGCCTGATGGACGGTTTGCGCCTGGTCGCCGACATGGGCCAGCCCCCCGATGGCTGGGCCGGCGCCACCGCGTTGGACAGCCTGCGGGTAAACACCAGCCTGACCATCGACGAGCTGTTTGCCAGCGACCCGGCGTTCGGCCGCTGGGGCGGACACGGTGTGGAGTGGATCAACCTGGGGTTCCTTGCCGGCGGCCTGTTCCTGTTGCAACAACGGATTTTCACGTGGCACGCCCCCGTGGGCATGCTGGCCAGCCTGTTCACCGTCAGCCTGTTGTTCTGGAACGGTTCGGGCTCGGATTCCCACGGTTCGCCACTGTTTCATCTGCTGACCGGCGCAACCATGCTCGGCGCGTTTTTCATCGTGACCGAACCCGTGTCGGGCGCCAAAGCCCCGTTTGCCCGACTGTTGTTCGGCGTAGGCGCGGGGCTGCTGGTCTACGTGATCCGCGCCTGGGGTGGGTTGCCGGACGGCATAGCGTTTGCGGTGTTGTTAATGAATCTCGGCGTGCCGGCCCTGGAGCGCTTCGTCGAGGCACGACAAAGGCGCCCGCTGACATGA	MPLADPLDERLRQAMRRVLLATLPGVLASMWFFGWGVLLNLLLSGLTALAIEALILRLRRRPIKPDLGDGSALVSATLLALALPAYCPWWLTVTAVACALLFGKHLWGGVGSNPFNPAMLGYALVLMAFPQYMSQWPTTHGLGLMDGLRLVADMGQPPDGWAGATALDSLRVNTSLTIDELFASDPAFGRWGGHGVEWINLGFLAGGLFLLQQRIFTWHAPVGMLASLFTVSLLFWNGSGSDSHGSPLFHLLTGATMLGAFFIVTEPVSGAKAPFARLLFGVGAGLLVYVIRAWGGLPDGIAFAVLLMNLGVPALERFVEARQRRPLT	PGPT0013275_1149	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013275-rnfD|rsxD-K03614	NA	NA
D1-36_01258	1017	rsxB		Ion-translocating oxidoreductase complex subunit B	ATGAACCTGATTCAACACATCGATGCCCTGCTTCCGCAAACTCAATGCGGCAAGTGCGGTCACCCCGGGTGCAAGCCCTATGCCGAAGGGATCGCCCAGGGTGAGCCGATCAACAAATGTCCGCCTGGCGGACGGGAAACCATCGCAGCCTTGGCCGAACTGATGCGGGTGCCGGCCTTGGAGCTGGACGCCAGTCGCGGCGCGGCACCGGCGCAAATCGCGTTTATCCGGGAAGCCGAATGCATCGGCTGCACCAAGTGCATCCAGGCCTGCCCGGTGGATGCGATTGTCGGCGCGGCAAAGCTGATGCACACCGTTCTCATCGACGAATGCACCGGCTGTGATCTTTGCGTGGCGCCTTGCCCGGTGGATTGCATCGAGATGCGGCCATTGCCGGTGGCGACGGTAACGCCGATCGTGGGAGGACTCGCCTCCAGCGACGAGGAGCGGCAAGCGCGAGCCGCCAAGCGCAATCACGCTCGTCAGCGTTTCGAGCAACGCAACGCGCGCTTGCGTCGTGAAGATGAGGCGCGCCAAGCCGAGCGCCTGGCCAGAATCCAGCGGAACGCCCAACCGGCCCGGGCGCAGCCACTCGATCCCGTGCAGGCAGCATTGGAGCGAGTGCGCGCGCAGAAAGCCGCCACTGCGGATGCCGCCCTGAAGAAAGCCAAGGTCGATTTGGCCATGAGTCGGGCACAGTTGCACAAGTCCTTGAGAGCGTTCGGCCATCCGCCGACCTACGAGCAACAGTCACGGCTGATCGTGCTGCAACGTCAGTTCGAAGCGGCAGAACAGGCATTGGCCCAACTGGAAAGCGCTGCGTCGCCCGCCACGCCGGCACCGGCACCGGTGCCGGCAAATGACGCCGAACTGAAGCGGGCCAAGATTCAGCTGGCGATGCGTCGCGCCGAACTCAGCAAGGCCCGGGCGGCCGCTGCCTCTGCGGAGCAGCTTCAAGCATTGGAGCAAGCCGTCAAGGACGCCGAGCGGCAGGTGGATGTCCATGCCGCTCGCTGA	MNLIQHIDALLPQTQCGKCGHPGCKPYAEGIAQGEPINKCPPGGRETIAALAELMRVPALELDASRGAAPAQIAFIREAECIGCTKCIQACPVDAIVGAAKLMHTVLIDECTGCDLCVAPCPVDCIEMRPLPVATVTPIVGGLASSDEERQARAAKRNHARQRFEQRNARLRREDEARQAERLARIQRNAQPARAQPLDPVQAALERVRAQKAATADAALKKAKVDLAMSRAQLHKSLRAFGHPPTYEQQSRLIVLQRQFEAAEQALAQLESAASPATPAPAPVPANDAELKRAKIQLAMRRAELSKARAAAASAEQLQALEQAVKDAERQVDVHAAR	PGPT0013265_52	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013265-rnfB|rsxB-K03616	NA	NA
D1-36_01259	573	rnfA		Ion-translocating oxidoreductase complex subunit A	ATGACCGAAATCCTCTTATCCCTGTTGAGCGCGGCCCTGATCAACAACCTGGTGTTGCATTGGCCGCTGGGCGTCGATCCGTTGCTGGCAGCCAAGGGTCGAAGCCAGGTGCATGCCCTGGGCCTGGCGACGGCGTGCCTGATGCTCTGTGTCGGGAGCGTGGGCTATCTGATCGACCAATGGTTGCTGGTCCCGGCCGGCCTGGCGTCAATGCGGCTCTTGCTATGGCTGCCCCTGAGTGTCTTGCTGATCAGGCCGGTGCTGGGGCTGCTGAAGCACTGGCTGCCCATGCTGCCGCTTGCTGGCTTGTGGCCGCTGCTACTCGGCAATGTCGGCATATTGGGCGTCACGCTGCTCAATAGCCGGGAGGCCACCGGCCTGGGCCACGCCATGTCCTTGAGCCTGGGTGGTGGACTGGGTTTCTGGCTGGTGTTGAGCCTGTTCGAAGACTTGCGACAGCGAATCCACGACAACGATATTCCCATGCCCTTGCGGGGGCTGCCGATCCAACTGATCAGCGCCGGCCTGATGGCAGTGGCGTTTCTCGGATTGCGCGGGCTGGTCAAGACATGA	MTEILLSLLSAALINNLVLHWPLGVDPLLAAKGRSQVHALGLATACLMLCVGSVGYLIDQWLLVPAGLASMRLLLWLPLSVLLIRPVLGLLKHWLPMLPLAGLWPLLLGNVGILGVTLLNSREATGLGHAMSLSLGGGLGFWLVLSLFEDLRQRIHDNDIPMPLRGLPIQLISAGLMAVAFLGLRGLVKT	PGPT0013260_1031	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013260-rnfA|rsxA-K03617	NA	NA
D1-36_01260	2046	metG	COG0073	Methionine--tRNA ligase	ATGTCCGAGCCACGCAAGATCCTCGTCACCAGCGCCCTGCCCTACGCCAATGGTTCGATCCACCTTGGCCACATGCTGGAATACATCCAGACCGATATGTGGACGCGCTTCCAGAAACATCGCGGCAACCAATGCATTTATGTCTGCGCCGACGACGCCCACGGCTCGGCCATCATGTTGCGCGCGGAAAAAGAAGGCATCACCCCGGAACAACTGATCGCCAACGTCCAGGCTGAACACAGCGCCGACTTTGCCGAGTTCCTGGTGGACTTCGACAACTTCCACTCCACCCACGCCGAAGAAAACCGTGAGCTGTCGAGCCAGATCTACCTGAAGCTGCGTGACGCCGGGCATATTTCCACCCGGTCAGTGACCCAATATTTCGACCCGGAAAAGAAAATGTTCCTGGCCGACCGCTTCATCAAGGGCACCTGCCCGAAATGCGGCACCGAGGACCAGTACGGCGACAACTGCGAAAAATGCGGCGCCACCTACGCCCCGACCGACCTGAAAGACCCGAAATCGGCGATTTCCGGTGCAACCCCGGTGCTCAGGGACTCCCAGCATTTCTTCTTCAAGCTGCCGGATTTCCAGCAGATGCTGCAGACCTGGACCCGCAGCGGCACGCTGCAGGACGCGGTTGCCAACAAGCTCGCCGAGTGGCTCGACTCGGGCCTGCAGGAGTGGGACATTTCCCGCGATGCGCCGTACTTCGGCTTCGAGATCCCTGGCGAGCCAGGCAAGTATTTCTATGTGTGGCTGGACGCGCCCATTGGCTACATGGCCAGTTTCAAGAACCTCTGCGACCGCACCCCGGGGCTGGACTTCGACGCCTTCTGGGCCAAGGATTCCACCGCCGAGGTGTATCACTTCATCGGCAAGGACATCGTCAACTTCCACGCGCTGTTCTGGCCCGCCATGCTCGAAGGCGCCGGTTTCCGCAAACCGACCGGCATCAACGTCCACGGCTACCTGACCGTCAACGGCCAGAAGATGTCCAAGTCCCGCGGCACGTTCATCAAGGCGCGGACCTACCTGGACCACCTGTCGCCGGAATACCTGCGTTACTACTACGCCGCCAAGCTCGGCCGTGGCGTCGACGACCTGGACCTGAATCTCGAAGACTTCGTGCAGAAGGTCAACTCCGACCTGGTGGGCAAGGTCGTCAACATTGCCAGCCGTTGCGCCGGTTTCATCCACAAAGGCAACGCTGGCGTGCTGGTTGCCGGTAACGCCGCGCCGGAACTGACCGACGCCTTCCTCGCCGCCGCGCCAAGCATCGCCGATGCCTATGAGAGCCGCGACTTTGCACGCGCCATGCGCGAGATCATGGCCCTGGCCGACCGCGCCAACGCGTGGATCGCCGACAAGGCACCCTGGTCGTTGGCCAAGCAGGACGGCAAGCAGGATGAAGTCCAGGCGATCTGCGCCCTGGGCATTAACCTGTTCCGCCAACTGGTGATTTTCCTCAAGCCGGTGCTGCCGCTGCTGGCCGCCGATGCCGAAGCGTTCCTCAACGTCGCGCCCCTGTCCTGGAACGATCACCAGACCCTGCTGAGCGATCATCAGTTGAACGAGTTCAAGCCGCTGATGACCCGCATCGACGCGACCAAGGTGCAAGCGATGATCGACGCCTCCAAGGAAGACCTGGCCGCCAGCCAGACCGACACCGGCGGCCCGAGCGGCAACGGCGAACTGGCCAAGGACCCGCTGTCGCCTGAAATCGACTTCGACGCCTTCGCGGCGATCGACCTGCGCGTGGCGCTGATCGTCAAGGCTGAAGCGGTCGAAGGGGCCGACAAGCTGTTGCGCCTGACCTTGGACATCGGTGACGAGCAGCGCAACGTGTTCTCCGGCATCAAGAGCGCCTACCCTGACCCAGCCAAGCTTGAAGGCCGGCTGACGATGATGATCGCCAACCTCAAGCCACGCAAAATGCGTTTCGGTATTTCCGAGGGCATGGTGATGGCGGCGGGCCCCGGCGGCGAAGAGATCTACCTGCTAAGCCCCGATAGCGGCGCCAAGCCGGGCCAGCGGATCAAGTAA	MSEPRKILVTSALPYANGSIHLGHMLEYIQTDMWTRFQKHRGNQCIYVCADDAHGSAIMLRAEKEGITPEQLIANVQAEHSADFAEFLVDFDNFHSTHAEENRELSSQIYLKLRDAGHISTRSVTQYFDPEKKMFLADRFIKGTCPKCGTEDQYGDNCEKCGATYAPTDLKDPKSAISGATPVLRDSQHFFFKLPDFQQMLQTWTRSGTLQDAVANKLAEWLDSGLQEWDISRDAPYFGFEIPGEPGKYFYVWLDAPIGYMASFKNLCDRTPGLDFDAFWAKDSTAEVYHFIGKDIVNFHALFWPAMLEGAGFRKPTGINVHGYLTVNGQKMSKSRGTFIKARTYLDHLSPEYLRYYYAAKLGRGVDDLDLNLEDFVQKVNSDLVGKVVNIASRCAGFIHKGNAGVLVAGNAAPELTDAFLAAAPSIADAYESRDFARAMREIMALADRANAWIADKAPWSLAKQDGKQDEVQAICALGINLFRQLVIFLKPVLPLLAADAEAFLNVAPLSWNDHQTLLSDHQLNEFKPLMTRIDATKVQAMIDASKEDLAASQTDTGGPSGNGELAKDPLSPEIDFDAFAAIDLRVALIVKAEAVEGADKLLRLTLDIGDEQRNVFSGIKSAYPDPAKLEGRLTMMIANLKPRKMRFGISEGMVMAAGPGGEEIYLLSPDSGAKPGQRIK				NA	NA	NA	NA	NA
D1-36_01261	1095	apbC	COG0489	Iron-sulfur cluster carrier protein	ATGAGCGCCGTCAATCGCGCAGCGGTGGAAGCCGTCCTTCGCCAGTACACCGACCCTTACCTGAACCAGGACCCGGTCAGCGCCGGATGCGTGCGGGCCCTCGATATCCAGGGCGATCGCGTCACTGTCCATCTGGAAATCGGCTACGCCGCCGATCTGTTCAAGAAGGGTTGGGCGCAAATGCTGCAAATGGCCATCGAGGGGCTGGACGGTGTCACGGCCGCCAAGGTCGAAGTGACCAGCGTCATTGCCGCTCACAAGGCCCAGGCCCAAGTGCCTGGACTTGCGAACGTCAAGAATGTCATCGCGGTCGCCTCGGGCAAGGGCGGCGTGGGCAAGTCCACCACTGCCGCCAACCTGGCGCTGGCGCTTGCCCGTGAAGGTGCGAAGGTCGGGATTCTCGATGCGGATATCTATGGTCCGAGCCAGGGCATCATGTTTGGCATCGCCGAGGGTACTCGCCCACAGATAAAGGATCAGAAATGGTTCGTGCCGATCCAGTCACACGGCGTGGAAGTCATGTCCATGGCGTTCCTGACCGATGACAACACCCCCATGGTCTGGCGCGGGCCGATGGTGTCCGGCGCCTTGTTGCAGTTGGTCACGCAAACCGCCTGGGGCGACCTGGATTACCTGGTCATCGACATGCCGCCAGGCACCGGCGATATTCAGCTGACCCTGGCACAGAAAGTCCCGGTGGCCGGCGCGGTGATCGTCACCACGCCCCAGGACCTGGCCTTGCTGGATGCGCGCAAAGGCGTGGAGATGTTCCGCAAGGTGAACATCCCGGTGCTGGGCGTGGTGGAGAACATGGCCGTGCACATTTGCTCGAACTGCGGGCACGCCGAGCATCTGTTCGGTGAAGGCGGTGGGGAAAAACTGGCAACCCAGTACGGCGTCGAACTGCTGGCCTCGCTGCCGTTGTCGATGGTGATCCGAGAACAGGCAGACGGTGGCAAGCCAACCGTCATCGCCGAACCGGACAGCCAGATCGCCATGGTCTACCAGGAGCTGGCTCGCCACGTCGGCGCGCGGATCGTATTGCAGGAAGCCGCGTCGCCTGTGATGCCGAACATCACCGTCAGCGACGATTGA	MSAVNRAAVEAVLRQYTDPYLNQDPVSAGCVRALDIQGDRVTVHLEIGYAADLFKKGWAQMLQMAIEGLDGVTAAKVEVTSVIAAHKAQAQVPGLANVKNVIAVASGKGGVGKSTTAANLALALAREGAKVGILDADIYGPSQGIMFGIAEGTRPQIKDQKWFVPIQSHGVEVMSMAFLTDDNTPMVWRGPMVSGALLQLVTQTAWGDLDYLVIDMPPGTGDIQLTLAQKVPVAGAVIVTTPQDLALLDARKGVEMFRKVNIPVLGVVENMAVHICSNCGHAEHLFGEGGGEKLATQYGVELLASLPLSMVIREQADGGKPTVIAEPDSQIAMVYQELARHVGARIVLQEAASPVMPNITVSDD				NA	NA	NA	NA	NA
D1-36_01262	759	fabG_4		3-oxoacyl-[acyl-carrier-protein] reductase	ATGCAACTCACTGACAAAGTAATCATTATCACTGGCGGTTGCCAGGGCCTGGGGCGTTCCATGGCCGAGTCTTTCGCCGGCAAGGGCGCGAAGCTGGCGCTGGTCGACCTCAATCAGGAGAAACTCGACCAAGCGGTCGCCGCCTGCGCCGCCAAGGGCGTCGAGGCTCGCGCCTACTTGTGCAACGTCGCCAATGAAGACCAGGTGATCGACATGGTGGCCCGCGTTGCGCAGGACTTCGGCGCGATCCATGGGCTGATCAATAACGCTGGCATCCTGCGCGATGGCCTGTTGCTCAAGGTCAAGGACGGCGAAATGACCAAGATGAGCCTGGCCCAGTGGCAGGCCGTGATCGACGTGAACCTTACAGGTGTGTTCCTGTGCACCCGTGAAGTGGCGGCCAAGATGGTCGAGCTGAAGAACAGCGGCGCGATCATCAATATCTCGTCGATCTCCCGCGCCGGCAACATCGGCCAGACCAACTACTCGGCCGCCAAGGCCGGCGTGGCCGCTGCCACCGTGACCTGGGCCAAGGAACTGGCGCGCTACGGCATCCGTGTGGCGGGCATCGCGCCGGGGTTCATCGAAACCGAAATGACCCTGGGCATGAAACCAGAGGCCTTGGAACGAATGACTTCGGTGATCCCGCTCAAGCGCATGGGCAAGCCTGAGGAGATCGCGCATTCGGCGGCCTACATCTTCGAAAACGACTACTACACCGGTCGGATCCTGGAGATGGATGGTGGAATGCGGATCTAA	MQLTDKVIIITGGCQGLGRSMAESFAGKGAKLALVDLNQEKLDQAVAACAAKGVEARAYLCNVANEDQVIDMVARVAQDFGAIHGLINNAGILRDGLLLKVKDGEMTKMSLAQWQAVIDVNLTGVFLCTREVAAKMVELKNSGAIINISSISRAGNIGQTNYSAAKAGVAAATVTWAKELARYGIRVAGIAPGFIETEMTLGMKPEALERMTSVIPLKRMGKPEEIAHSAAYIFENDYYTGRILEMDGGMRI	PGPT0003180_9828	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
D1-36_01263	732			hypothetical protein	TTGAGCGTCGAAGCAGCCAAGCATGCCCGGGAACTGTTGCTCAAGGAGTACCGTGGAGTGCTCTCCACCCATTCCAAATCCATGCCCGGCTTTCCGTTCGGCTCCGTGGTCCCCTATTGCCTGGACGACCAGGGCCGGCCGCTGGTCTTGATCAGCCGTATCGCCCAGCACACTCACAACCTGCAAAAAGACCCCAAGTGTTCCATGCTGGTGGGCGAGCGGGGCGCTGAGGATGTACAGGCCGTGGGGCGCCTGACCTACCTGGCGCAGGCCCGTAAACTCGAAGACAGTGTTGCCATCGATGCCGCCGCCGAGCGTTATTACCGCTACTTTCCCGAGTCGCAGAACTATCACAAGGCCCACGACTTCGACTTCTGGGTGCTCGACCCGGTGCGCCATCGCTACATCGGGGGTTTCGGCGCCATTCACTGGATCGATCAGGTAATCCTCTCCAACCCGTTCGCCGGCAAGGCTGAAACCAGCATGATCGACCATATGAACGCTGATCACGCCAAGGCCATCGCCCATTACGTGGAGTTGAGCGGCCTGCCGAAAAACGAACCGGCGCGTTTGGTCGGCATCGACAGCGAAGGTATGCACTTGCGCATCGGACAAGGGCTGTATTGGCTGGCGTTTCCGAACCCTTGCAACACGCCGACACAAGTGCGCGAAGCCTTGGTTTATCTGGCTCACGCCGAGCAATGGCCAAAAAATGCCGAGGTCGATGCTTGA	MSVEAAKHARELLLKEYRGVLSTHSKSMPGFPFGSVVPYCLDDQGRPLVLISRIAQHTHNLQKDPKCSMLVGERGAEDVQAVGRLTYLAQARKLEDSVAIDAAAERYYRYFPESQNYHKAHDFDFWVLDPVRHRYIGGFGAIHWIDQVILSNPFAGKAETSMIDHMNADHAKAIAHYVELSGLPKNEPARLVGIDSEGMHLRIGQGLYWLAFPNPCNTPTQVREALVYLAHAEQWPKNAEVDA	PGPT0003615_497	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-HEMOPHORES-HEME|HEMIN_UTILISATION,PGPT0003615-hugZ|hutZ|chuZ-K07226	NA	NA
D1-36_01264	477			hypothetical protein	ATGCGCCCATTTTTATTGCTCTTTCTGCTGTTCCCGGTGTTGGAGCTGTTCGTATTCGTCAAGGTCAGCGGTGCGATCGGGTTTTTCCCGGCGCTGTTGCTGGTCATTCTCGGCTCGATGCTCGGCGTCTTCGTGTTGCGCATCGCCGGCCTCGCCACGGCGTTGCGTGCCCGTGAAAGCCTGAACCGTGGCGAGCTGCCTGCGCAGACCATGCTCGAAGGACTGATGCTGGCCTTGGGTGGCGGCCTGTTGATCCTGCCTGGTTTTATCAGCGACGTGCTGGGCCTGGTCATGTTGTTGCCGTTCACCCGCCGCTTGCTCGCCAACAAGATGCGCCAGCGTGCCGAAGAGCAGGCGATGCGCCAGCGAGCGTTCGCCGATGATCTTCAGTCCCGGGGCGGCCCGGCCCCCAGGGAGCCCGTGGGCCGCGAGCCGAACGTGATCGAAGGCGAATTCGAACATCGCGATCCCAAGTGA	MRPFLLLFLLFPVLELFVFVKVSGAIGFFPALLLVILGSMLGVFVLRIAGLATALRARESLNRGELPAQTMLEGLMLALGGGLLILPGFISDVLGLVMLLPFTRRLLANKMRQRAEEQAMRQRAFADDLQSRGGPAPREPVGREPNVIEGEFEHRDPK				NA	NA	NA	NA	NA
D1-36_01266	294	groS	COG0234	10 kDa chaperonin	ATGAAGCTTCGTCCTCTGCATGACCGCGTCGTCATCCGTCGCAGCGAAGAAGAGAAGAAAACCGCTGGCGGTATCGTCCTGCCAGGTTCGGCTGCTGAAAAAGCCAACCACGGTGAAGTTCTCGCTGTAGGTCCAGGCAAGGCACTGGAAAACGGTGAAGTACGTGCGCCGGCCGTGAAAGTGGGTGACAAGGTTGTGTTTGGCCCTTACTCCGGCAGCAACACTGTGAAAGTCGACGGCGAAGACCTGTTGGTCATGAGCGAGAACGAAATCCTCGCTGTTCTCGAAGGCTGA	MKLRPLHDRVVIRRSEEEKKTAGGIVLPGSAAEKANHGEVLAVGPGKALENGEVRAPAVKVGDKVVFGPYSGSNTVKVDGEDLLVMSENEILAVLEG	PGPT0014565_2598	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014565-groES|mopB-K04078	NA	NA
D1-36_01267	1644	groL	COG0459	60 kDa chaperonin	ATGGCTGCTAAAGAAGTTAAATTCGGCGATTCCGCCCGCAAGAAAATGCTCGCCGGTGTCAACGTCCTGGCTGACGCAGTAAAAGCGACCCTGGGCCCGAAAGGCCGTAACGTGATCATCGAGAAGAGCTTCGGCGCTCCGACCATCACCAAGGACGGCGTTTCCGTAGCCAAGGAAATCGAGCTCAAGGACCGCTTCGAAAACATGGGCGCGCAACTGGTCAAAGACGTTGCCTCCCGTGCCAACGATGACGCTGGTGACGGTACCACCACCGCGACCGTACTGGCCCAGTCGATCGTCAACGAAGGCCTGAAAGCCGTCGCTGCCGGCATGAACCCGATGGACCTCAAGCGCGGCATCGACAAGGCGACCATCGCCATCGTCAAGGAACTGAAGGGTCTGGCCAAGCCTTGCGCTGACTCCAAGGCGATCGCCCAGGTTGGTACCATTTCCGCCAACTCCGACAACTCCATCGGCGACATCATTGCCGAAGCCATGGAAAAAGTCGGCAAGGAAGGCGTGATCACCGTTGAAGAAGGCTCGGGCCTGGAAAACGAACTGTCGGTTGTTGAAGGCATGCAGTTCGACCGTGGCTACCTGTCCCCGTACTTCGTCAACAAGCCAGATACCATGGTTGCCGAGCTGGACAGCCCGCTGATCCTGCTGGTCGACAAGAAGATCTCCAACATCCGCGAAATGCTGCCAGTGCTGGAAGCCGTTGCCAAAGCCGGCCGCCCACTGCTGATCGTGGCTGAAGACGTCGAAGGCGAAGCCCTGGCGACTCTGGTTGTGAACAACATGCGTGGCATCGTTAAGGTTGCAGCCGTCAAGGCTCCAGGCTTCGGCGACCGTCGCAAGGCCATGCTGCAGGACATCGCCGTTCTGACCGGCGGTACCGTTATCTCCGAAGAGATCGGCCTGAGCCTGGAAAGCACCACCCTGGAGCATCTGGGTAACGCCAAGCGCGTGATCCTGTCCAAGGAAAACACCACCGTGATCGACGGTGCTGGCAACGATGCCGATATCCAGGCTCGTGTGACCCAGATCCGTGCACAAGTGGCCGAGACCTCGTCCGACTACGACCGTGAAAAACTGCAAGAGCGTCTGGCCAAACTGTCCGGCGGCGTTGCGGTGATCAAGGTTGGCGCCGGTTCCGAAGTTGAAATGAAAGAGAAGAAAGCCCGCGTTGAAGACGCCCTGCACGCAACCCGCGCAGCCGTTGAAGAAGGCGTGGTACCTGGCGGCGGCGTGGCACTGGTTCGTGCTCTGCAAGCCATCAGCGAGCTGAAAGGCGACAACGACGACCAGAACGTCGGTATCCAACTGCTGCGTCGCGCTGTCGAAGCACCTCTGCGTCAGATTGTTGCCAACTCCGGCGACGAGCCAAGCGTAGTGGTCGACAAGGTCAAGCAGGGTTCGGGTAACTACGGTTACAACGCTGCTACCGGCGAATACGGCGACATGATCGAAATGGGTATCCTGGACCCAGCCAAAGTGACTCGTTCGGCTCTGCAAGCGGCTTCGTCGATTGCCAGCCTGATGATCACCACCGAGGCGATGATCGCTGAAATCAAGGAAGACGCTCCAGCTGGCGGCGGCATGCCAGACATGGGCGGCATGGGTGGCATGGGCGGCATGATGTAA	MAAKEVKFGDSARKKMLAGVNVLADAVKATLGPKGRNVIIEKSFGAPTITKDGVSVAKEIELKDRFENMGAQLVKDVASRANDDAGDGTTTATVLAQSIVNEGLKAVAAGMNPMDLKRGIDKATIAIVKELKGLAKPCADSKAIAQVGTISANSDNSIGDIIAEAMEKVGKEGVITVEEGSGLENELSVVEGMQFDRGYLSPYFVNKPDTMVAELDSPLILLVDKKISNIREMLPVLEAVAKAGRPLLIVAEDVEGEALATLVVNNMRGIVKVAAVKAPGFGDRRKAMLQDIAVLTGGTVISEEIGLSLESTTLEHLGNAKRVILSKENTTVIDGAGNDADIQARVTQIRAQVAETSSDYDREKLQERLAKLSGGVAVIKVGAGSEVEMKEKKARVEDALHATRAAVEEGVVPGGGVALVRALQAISELKGDNDDQNVGIQLLRRAVEAPLRQIVANSGDEPSVVVDKVKQGSGNYGYNAATGEYGDMIEMGILDPAKVTRSALQAASSIASLMITTEAMIAEIKEDAPAGGGMPDMGGMGGMGGMM	PGPT0014570_2457	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0014570-groEL|mopA-K04077	NA	NA
D1-36_01268	744			hypothetical protein	ATGGTTTGCGCTAGCCTTCGCCCTGTTTCAAGGCCATTGAATTTCGGAATCGCGCTGGGGGTGCCTGTAGTTGTTGCGCTGATCCTGGTGGTGCTGGAACTGACTACGCTTGACATGGACCTTGCCAGGCTTTTTTACAGTGCGGCCGAGGGCGGATTCATCGGACGGCATAGTTTTTTTCTCGAAGACATCCTGCACGACCGGGCCAAGCAGATGGTCATCGTCTTCTGCATCCTGGCGGTCGCGGGGTTCATCGCTTCGTTTTTTGTCGATCGCCTCACACCGTTCAAGCGTGAACTCGGTTGCCTGGTCTTATCGCTAGCGCTGGCAACGGCGTTTGTCACGCCGCTGAAGGCCGTGACGGCGGTGCAATGCCCTTGGAGCCTGAAGGAGTTTGGCGGCAAGGAAACCTACAGTGAATTGCTGAGCCCGCGCCCGGCCACTGACAAGCCCGGCCGTTGCTGGCCCGGCGGACATGCCGCAACGGGGTTCACGCTGTTTGCGCTGTTCTTCGTATTACGCGACCGCCGTCCCCGCCTGGCCCGTCAATCACTGGTATTTGCCTTCGCACTGGGCACCGTTTTCTCCGTGGGTCGGATGATGCAAGGGGCGCATTTTTTCTCCCATAACGTGTGGACAGCGGTGTTCTGTTGGCTGATCTGCCTGGGGTGTTACTACTTCGTGCTGTATCGACCGGCTGCCATGGCTGATCGCGCAGCGCTGAACCAACCCGCTAACGCCTGA	MVCASLRPVSRPLNFGIALGVPVVVALILVVLELTTLDMDLARLFYSAAEGGFIGRHSFFLEDILHDRAKQMVIVFCILAVAGFIASFFVDRLTPFKRELGCLVLSLALATAFVTPLKAVTAVQCPWSLKEFGGKETYSELLSPRPATDKPGRCWPGGHAATGFTLFALFFVLRDRRPRLARQSLVFAFALGTVFSVGRMMQGAHFFSHNVWTAVFCWLICLGCYYFVLYRPAAMADRAALNQPANA				NA	NA	NA	NA	NA
D1-36_01269	684	czcR_2		Transcriptional activator protein CzcR	ATGCGAATTCTATTGGTCGAAGACAACCGCGACATCCTGGCCAACCTGGCCGATTACCTGGGACTCAAGGGTTATACCGTCGATTGTGCCCAGGATGGTTTGTCGGGTTTGCACCTGGCCGCGACCGAGCACTACGACCTGATCGTGCTCGACATCATGCTGCCAGGCATCGATGGCTACACCTTGTGCAAGCGCCTGCGTGAAGACGCCCGGCGTGATACGCCGGTGATCATGCTCACCGCGCGGGACCAGCTGGACGACCGCCTGCAGGGATTCAAGTCCGGGGCTGACGATTACCTGGTCAAGCCTTTTGCGTTGTCGGAATTGGCCGCGCGGATCGAAGCGGTGATGCGTCGGGCCCAGGGTGGCGGGCGTCGCGCGTTGCAGGTCGGCGACCTGAGCTACGACCTCGACACGTTGGAAGTGACCCGTGAGGGCCGGTTGCTCAAGCTCAACCCCGTTGGCCTCAAGTTGCTCGCGGTACTGATGCAGAAAAGCCCCCACGTGCTGCGCCGGGAAATCCTCGAAGAAGCCCTGTGGGGCGATGATTGCCCGGACAGCGACAGCCTGCGCAGCCACGTCCACCAACTGCGCCAGGTGATCGACAAACCGTTCGAGAAACCACTGCTGCACACGGTGCATGGCGTCGGTTACCGCTTGGCCGAGGGCCGGGATGGAGTTTAA	MRILLVEDNRDILANLADYLGLKGYTVDCAQDGLSGLHLAATEHYDLIVLDIMLPGIDGYTLCKRLREDARRDTPVIMLTARDQLDDRLQGFKSGADDYLVKPFALSELAARIEAVMRRAQGGGRRALQVGDLSYDLDTLEVTREGRLLKLNPVGLKLLAVLMQKSPHVLRREILEEALWGDDCPDSDSLRSHVHQLRQVIDKPFEKPLLHTVHGVGYRLAEGRDGV	PGPT0004105_837	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
D1-36_01270	1278	sasA_4		Adaptive-response sensory-kinase SasA	ATGGAGTTTAAGCAGAGCCTTGCCCAACGGATCATCATCGCGTTCGCCTTGATGAGCGCGTTGGTGGCGGGCGCATTTGCCCTGGGCATCGTGGCAACCGTTCACCTGGTGGAGGAAAAACTGATTTCCGCCGGCCTTGGCGGTGACCTGCAACGTCTGCTGCTGATGGACAGCGTCTCCGACTGGAGTCATCGGCCTGAACCCGATCAGTTGTTCTATTTCAGCGGCGGTCCGGGTGACTTCGAGTTGCCCAAGGACCTGCGTCACCTGGATCGGGGCTTTCATGAAGTGTTTCGTGAGCAACTGTCCTACCACGCGATGGTGGAAATCGTTGACGGTCGCCATTACGTATTGCTGCAAGACCAGAGCGATTTCGAGGAGCGCGAACGGGTACTGTTCGCCGTGGTGTTGGTGGGCTTCGTGCTCAGCCTGGCGCTGGCGGTATTCCTCGGATGGGTGCTGGCACGTCGAGTGATGGCACCTGTGGTGCGTCTGGCTCGCCAAGTGCGGCATCGCGACCAGCTCCTTGGACTTGCCCCGCCGCTCGCGCCGGACTATGCCGCCGACGAAGTGGGCGAGCTGGCCGTGGCGTTCGACGCTACGTTGGGCCGATTGCGCCAAGCCTTGACCCGTGAACGTTTGTTCACCAGCGACGTCAGCCATGAATTGCGCACGCCGTTGATGGTCCTGGCCACGTCTTGCGAATTGCTGTTGGAAAACCCGGCGCTTGACCAGCGGGGGCGTACCCAGGTTGAACGCATCAACCGGGCCAGTGAGGAGATGCGTGAGTTGGTGCAGACCTTCCTCATGCTTGCCCGGGCCCAGCGCGAAGACAATGGAATCTCCCCTCGCTCGACCCTTGGACAGGTAGCGGACAACCTGCTCGGTGTCTGGCGCGCGCCGATCGAGTCCAAAGGTTTGACGTTGATCTTCGAGCCCGGGCAAACGGCCGATACGCTGTACAACGCCACATTCCTGACCGCCGTCATGGGCAACTTGCTGCGTAATGCCTTGCATTACACCGACCAGGGGTTTATCCGCGTCTCCCTGACGGTCACTGGGTTCATGGTCGAGGACAGCGGCGTGGGCATCCCCGAAGAGAAGCGCGAGGCGATGTTCGAGCCATTCGTGCGAGGTAATGAAAAGCGTGGCGAGGGCTTGGGGCTGGGCCTTTCGCTGGTACAGCGAATCTGCGAGGACCAGGGCTGGACAGTGAGCCTCAGTACGATGGAGCCCAACGGTTGCCGTTTCGAGGTGGAGCTGAATCCAAAGGGTTGA	MEFKQSLAQRIIIAFALMSALVAGAFALGIVATVHLVEEKLISAGLGGDLQRLLLMDSVSDWSHRPEPDQLFYFSGGPGDFELPKDLRHLDRGFHEVFREQLSYHAMVEIVDGRHYVLLQDQSDFEERERVLFAVVLVGFVLSLALAVFLGWVLARRVMAPVVRLARQVRHRDQLLGLAPPLAPDYAADEVGELAVAFDATLGRLRQALTRERLFTSDVSHELRTPLMVLATSCELLLENPALDQRGRTQVERINRASEEMRELVQTFLMLARAQREDNGISPRSTLGQVADNLLGVWRAPIESKGLTLIFEPGQTADTLYNATFLTAVMGNLLRNALHYTDQGFIRVSLTVTGFMVEDSGVGIPEEKREAMFEPFVRGNEKRGEGLGLGLSLVQRICEDQGWTVSLSTMEPNGCRFEVELNPKG				NA	NA	NA	NA	NA
D1-36_01271	669			hypothetical protein	ATGTCCAAAGCCATCAAGCTGGATTTTTCCGAAAAGTACGACGAGCAACACGCCAGGCAATATTTCCACAAACACCGCAGCGGGTTCAGCCGCCGCCTCTCCAATCGGCGCGACCAGCAACTGGCGCGCCGCGCCTTGGCCCTGGCCGGTGACCCTGGCCTGGTACTGGACCTTCCCTGTGGCGCCGGACGTTTCTGGCCCTTGTTGGCCGAGAAATCGAACCGGGTCATCATCGGCGCGGACAATTCCGCAGCCATGCTGCAAACAGCAATGAGCGTCCAACCCGCCGATGTCGTAAAACGGGTACAACCTTTGCACACTTCTGCGTTCGACATCGCCTTGCCTGATAACGCCGTTGACAGCATTTTCTGCATGCGTTTGTTGCACCACATCGGTGAACCCGCGCATCGCCTGGCAATCCTGCGTGAATTCGGGCGTGTCAGCCGCGACAGCGTCATCGTTTCATTGTGGGTCGATGGCAATTTCAAGGCTTGGAAACGCAAGCGTCTTGAGCGAACCCGTGGGCAGAAAGACTACCAGAACCGATTTGTGTTACCGGTTGCTACAGTGGAGGCCGAATTTCGACAAGCTGGCTTCCGCATCCAGGAACAACTGGATTTCCTACCGCTCTATGCCATGTGGCGAGTTTATGTATTACGCAAGGGGTAA	MSKAIKLDFSEKYDEQHARQYFHKHRSGFSRRLSNRRDQQLARRALALAGDPGLVLDLPCGAGRFWPLLAEKSNRVIIGADNSAAMLQTAMSVQPADVVKRVQPLHTSAFDIALPDNAVDSIFCMRLLHHIGEPAHRLAILREFGRVSRDSVIVSLWVDGNFKAWKRKRLERTRGQKDYQNRFVLPVATVEAEFRQAGFRIQEQLDFLPLYAMWRVYVLRKG				NA	NA	NA	NA	NA
D1-36_01272	708	inaA		Protein InaA	ATGGTTGTACAAGCAGTAGAAGCCCCGGCGGCTTCTCGCAGTTGCTTTGATCATTTTTGGAATCAAAGGGGTGACTGGGTAGAGGAACCCAACACGCGGCGGGGCGGTGAAAGCGGTGTGCAACGGATCAACGACGGCGACGGATTGCTCTATTCCAAGCGCCAGACCGGCCATATCTACCGCAGCTTGTTGCACCCCTTCGGCCGTCCGACTGTCTTGCGCGAAGAGCGAGCCTTGGTGGCCCTGACAGAACTCAATGTCACGGTGCCCCAGGTGGTTTTCTGCGGTGCGCAGAGGGACCCGGTACATAAATGGCGCGCGCTGTTGGTTACCCAAGCGTTGGACGGTTTCGAGGAAATCGAACAATGGTACGCCGCGGGTGGGCGCGAACGTCATGGCGAGGCGGTGCATGACCGTATCCTCCAGGCGTTGGCCGAAAACCTGGCTCGCATGCACAAAGGGCGCTGGCAGCATGGCTGTCTTTATATCAAGCACGTATTCGTGCGTGTAACAGGGGAGGGCGAGTCGGCCAAGGCTGAAATCGCACTGCTGGACCTGGAAAAATGCCGTCAACGCCTGACTGCCCGCAGCGCGGCCGCCCACGACATGAGGCAGCTGCGGCGCCATTCGTCGTTCCACGATGGCGACTGGAAAAAACTCGTCTACTTTTATACAACGGCGTTTGGCAGCGCTATCAAAGGTTTATAG	MVVQAVEAPAASRSCFDHFWNQRGDWVEEPNTRRGGESGVQRINDGDGLLYSKRQTGHIYRSLLHPFGRPTVLREERALVALTELNVTVPQVVFCGAQRDPVHKWRALLVTQALDGFEEIEQWYAAGGRERHGEAVHDRILQALAENLARMHKGRWQHGCLYIKHVFVRVTGEGESAKAEIALLDLEKCRQRLTARSAAAHDMRQLRRHSSFHDGDWKKLVYFYTTAFGSAIKGL				NA	NA	NA	NA	NA
D1-36_01273	228			hypothetical protein	ATGAAAGTAGAAATTGCTAGAGGTTTGTTCTTGATCGGAGCCCTGGCAGTTACGTCAATGGCGGTGGCGGTATGGGAACAGCCGCGCTCGCAGATTCTCAGTGCCTCCACGGTGGGCGCCCATTGCCCTGTGCCTCGGATTGCCAAGGCCAGCGAGGCGATCCAACCGGACAACGATCTGCTGTTGTTCATGTTTGGCCTGTCTCAAGGCATGAAGCCGCAAAGTTGA	MKVEIARGLFLIGALAVTSMAVAVWEQPRSQILSASTVGAHCPVPRIAKASEAIQPDNDLLLFMFGLSQGMKPQS				NA	NA	NA	NA	NA
D1-36_01274	3027	acrB	COG0841	Multidrug efflux pump subunit AcrB	ATGGCTTTTACCGATCCGTTCATCCGCCGCCCGGTGCTCGCCACCGTGGTCAGCCTGTTGATCGTGCTGCTGGGCTTCCAGGCCTGGAGCAAACTGCCCCTGCGTCAGTATCCACAAATGGAAAACGCGCTGATCACGGTGACCACCGCCTATCCCGGGGCCAACGCCGAGACCATCCAGGGCTACATCACCCAGCCGATGCAACAGAGCCTGGCCAGTGCCGAGGGCATCGACTACATGACCTCGGTCAGTCGGCAGAATTTCTCGGTGATCTCGGTCTATGCCCGCATTGGCTCCAACAGCGACCGGCTCTTCACCGAACTGCTGGCCAAGGCCAACGAAGTCAAGAACCAGTTGCCCCAGGATGCCGAGGACCCGGTGCTCAGCCGTGAGGCTGCCGATGCCTCGGCGCTGATGTACATCAGTTTCTTCAGCAAGGAACTGAACAACCCGCAGATTACCGACTACCTGTCGCGGGTGATCCAGCCGAAGCTGGCGACACTGCCCGGCATGGCCGAAGCGGAGATCCTCGGCAACCAGGTCTTTGCCATGCGCTTGTGGCTGGACCCGGTCAAGCTCGCGGGCTTTGGCCTGACCGCCGCCGACGTGACCAACGCCGTGCGCCAGCACAACTTCGTCTCCGCCGCCGGCGAGGTGAAAGGCGAATACGTCGTCACCAGCATCAACGCCAACACCGAACTCAAGTCCGCCGAAGCCTTCGCAGGCATACCCCTCAAGACCGACGGCGACAGCCGCGTCTTGCTACAGGACGTGGCGCGGGTGGAGATGGGCGCCGAAAACTACGACACCATCAGTTCCTTTGGCGGCACGCCCTCGGTGTACATCGGCATCAAGGCCACGCCCGGCGCCAACCCGCTGGATGTGATCAAGGAAGTTCGCAAGATCATGCCGGAGATGGAAGCCCAGCTTCCGACCAACCTCAAGGCCGAGATCGCCTACGACGCCACGCTCTTCATCCAGGCCTCCATCGACGAGGTGGTAAAAACCCTGTTTGAGGCGGTCCTGATCGTCATTGTCGTGGTGTTCCTGTTCCTCGGCGCCTTGCGTTCGGTGCTCATCCCGGTGGTGACCATTCCCCTGTCGATGATCGGGGTCATGTTCTTCATGCAGTTGATGGGCTATTCCATGAACCTGCTGACACTGCTGGCCATGGTGTTGGCGATCGGCCTGGTGGTGGATGATGCCATCGTGGTGGTGGAGAACATCCATCGACATATGGAGGAAGGCAAGACCCCGTTCGACGCTGCCATAGAAGGCGCCCGGGAAATCGCCATGCCGGTGGTTTCGATGACCATCACGCTGGCGGCGGTTTACGCGCCTATCGGCCTGCTCGAAGGCCTGACGGGCGCGCTGTTCAAGGAGTTCGCCCTGACCTTGGCCGGGGCGGTGGTGATATCCGGCATCGTCGCCCTGACCCTGTCGCCGATGATGTGCGCGATGCTGCTGCGCCATGACCAGAATTCCTCGGGGCTGGCCCATCGGCTGGACGTAATCTTCGAACGCCTGAAGAACCGTTACCAGCGCATGCTTCATGCCACGCTCGAAACCAGGCCCGTGGTGCTGGTGTTTGCGGTGATCGTGCTGCTGTTGATACCGGTATTGATCATGTTCACCAAGTCCGAGCTGGCGCCAGACGAAGACCAGGGCATCATATTCATGATGGCCAATGCACCAAAGACGACCAACCTCGATTACCTGAACGCCTATACCGATCACTTCATCACGATCTTCAAGGAATTCCCTGAGTACTATTCTTCCTTTCAGATCAACGGCTATAACGGCGTGCAGTCGGGCATCGGCGGGTTCCTGCTCAAGCCCTGGAACGAACGCAACCGCACCCAGATGGAGATCCTGCCGGAGGTCCAGGCCAAGCTGGAAAGCATCCCGGGCCTGCAGATCTTTGGCTTCAACCTGCCCTCGCTGCCGGGCACGGGCGAAGGGTTGCCCTTCGAGTTCGTCATCAATTCGCCGAAGGACTACACGACGCTTCTGCAAATTGCCGAGCGAGTCAAGAAACGGGCGCTAGAGTCCGGCAAGTTCGCCTTCATGGACATTGACCTGGCTTTCGACAAGCCCGAGGTCGTGGTGGATATCGATCGGGCCAAGGCTGCCCAGATGGGTGTTTCCATGCAGGACCTGGGCGGAACCCTGGCGACGTTGCTGGGCGAGTCGGAGATCAACCGCTTTACCCTGGAAGGACGCAGCTACAAGGTAATAGCCCAGGTCGAACGACCGTTCCGGGACAATCCGGACTGGCTGAACAACTACTACGTCAAGAATGCCCAGGGTGAATCGCTCCCGCTCTCGACGCTGATCAAGGTCAGCGACCAGGCACGACCGCGGCAACTGAACCAGTTCCAGCAGCTCAACGCCGTGACGATCTCGGGTTTCCCCACGGTGAGCATGGGCGAGGCCATCGAGACGGTCCGCCAGATCGCTCGCGAGGAAGCACCGGTGGGGTTCGCCTTCGACTACGCAGGGGCTTCACGCCAATTCGTACAAGAAGGCAGCGCGTTGTGGGGAACCTTCGCCCTGGCCCTGGCGATCATTTTCCTGGTGCTGGCGGCGCAGTTCGAGAGCTTCCGGGATCCGCTGGTAATCCTGGTGACGGTGCCCTTGTCAATCTGCGGCGCATTGATCCCGCTGTTCCTCGGCTGGTCGAGCATGAACATCTATACCCAGGTAGGCCTGGTTACGTTGATCGGGCTTATCAGCAAGCACGGCATCCTGATCGTCGAGTTCGCTAACCAGCTACGCAAGGAACAAGGGCTGAGCCCGCGCGAGGCCGTGGAACAAGCCGCATCGATTCGTCTGCGGCCAGTGTTGATGACCACTGCGGCGATGGTATTCGGCATGGTGCCGTTGATCCTGGCCACCGGTGCCGGGGCGGTGAGCCGCTTCGACATCGGCACAGTGATCGCCACGGGAATGTCGGTGGGTACCTTGTTCACACTGTTCGTATTGCCTTGCGTCTACACCTTGCTGGCAAAACCGCAGAAGCGGTAA	MAFTDPFIRRPVLATVVSLLIVLLGFQAWSKLPLRQYPQMENALITVTTAYPGANAETIQGYITQPMQQSLASAEGIDYMTSVSRQNFSVISVYARIGSNSDRLFTELLAKANEVKNQLPQDAEDPVLSREAADASALMYISFFSKELNNPQITDYLSRVIQPKLATLPGMAEAEILGNQVFAMRLWLDPVKLAGFGLTAADVTNAVRQHNFVSAAGEVKGEYVVTSINANTELKSAEAFAGIPLKTDGDSRVLLQDVARVEMGAENYDTISSFGGTPSVYIGIKATPGANPLDVIKEVRKIMPEMEAQLPTNLKAEIAYDATLFIQASIDEVVKTLFEAVLIVIVVVFLFLGALRSVLIPVVTIPLSMIGVMFFMQLMGYSMNLLTLLAMVLAIGLVVDDAIVVVENIHRHMEEGKTPFDAAIEGAREIAMPVVSMTITLAAVYAPIGLLEGLTGALFKEFALTLAGAVVISGIVALTLSPMMCAMLLRHDQNSSGLAHRLDVIFERLKNRYQRMLHATLETRPVVLVFAVIVLLLIPVLIMFTKSELAPDEDQGIIFMMANAPKTTNLDYLNAYTDHFITIFKEFPEYYSSFQINGYNGVQSGIGGFLLKPWNERNRTQMEILPEVQAKLESIPGLQIFGFNLPSLPGTGEGLPFEFVINSPKDYTTLLQIAERVKKRALESGKFAFMDIDLAFDKPEVVVDIDRAKAAQMGVSMQDLGGTLATLLGESEINRFTLEGRSYKVIAQVERPFRDNPDWLNNYYVKNAQGESLPLSTLIKVSDQARPRQLNQFQQLNAVTISGFPTVSMGEAIETVRQIAREEAPVGFAFDYAGASRQFVQEGSALWGTFALALAIIFLVLAAQFESFRDPLVILVTVPLSICGALIPLFLGWSSMNIYTQVGLVTLIGLISKHGILIVEFANQLRKEQGLSPREAVEQAASIRLRPVLMTTAAMVFGMVPLILATGAGAVSRFDIGTVIATGMSVGTLFTLFVLPCVYTLLAKPQKR	PGPT0003280_3936	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexAB-OprM,PGPT0003280-acrB|acrE|mexB|adeJ|smeE|mtrD|cmeB-K18138	NA	NA
D1-36_01275	1149	acrE		Multidrug export protein AcrE	ATGCTGCGACGCCGCATGCTGATCATGTTGGGTGTTGTCCTGCTGGTGGTGCTGTTGCTGGCAGGCTACAAGGCCTTCTCCATCTACCAGCAGATCCAGATGTTTTCTGCCCCGAAACCACCAGTCAGCGTTGCCGTGGCCAAGGCCACCGAGCAGCCCTGGCAGTCTCGCCTGCCCACCGTCGGCAGCCTCAAGGCCTCGCAAGGCGTTGACCTGAGCCTGGAAATTGCCGGGACGGTACAAAAGCTTCAGTTCGAATCGGGGCAGAAGGTCAAGGCCGGCCAACCGCTCCTGCAACTGGACACCGAAGTCGAAAGCGCCCTGCTGGAAACCGCCCAGGCGGACCTTGGCCTGTCGCAGCTGGATTTCGGCCGGGGCCGGCAACTGGTAGGCAGCCAGGCGATTTCCAAGGGTGAGTTCGACCGGCTCTCAGCCCAGTTGAAGAAAAACCAGGCCACGGTCAACCAGCTCAAGGCCTCGCTGGCAAAGAAACACATCGTCGCGCCGTTCAGCGGCACCATCGGCATTCGCCAGGTGGACATCGGCGATTACCTGGCCAGCGGCACGGTGATCGCCACCCTGCAGGACCTCAGCAGCCTGTATGTGGATTTCTATGTCCCGGAACAGTCGGTGCCTCGACTCGCCGTGGCCCAACCCGTCAATGTCAATGTCTCGGCCTACCCAGGCCAGACGTTCGTCGGCACCATCAGCGCCATCAATCCCAAGGTCGAGGACAGCACCCGCAACGTGCTGGTGCGCGCGACCCTCGCCAACCCCGACGGCAAGCTGCTGCCCGGCATGTTCGCCGACCTGCAGGTGATCCTGCCGGACGTGGCTGCCGGGATCGTCGTACCGGAAAGCGCCGTGACCTACACCCTCTACGGCAACTCCATGTACGTAGTGACCCAGAAGAAAGCCGCCGACGGCAATGTCGAGAAAGATGACAAGGGCCAGCCGGTCCTGATTGCCGAGCGCCGCTTCGTCGAAACGGGAGAGCGCCGGGACGGGCAAGTCCTGGTGACCAAGGGCCTGCAAAGTGGCGAGGAAGTGGTCATCGGCGGCCAGATCAAGCTGGACAACGGTACGCCCGTCGCCATCAGTGACGACAAGACCCTGACCGAACAGAACAGCTCGCCGCGCGCGGACTGA	MLRRRMLIMLGVVLLVVLLLAGYKAFSIYQQIQMFSAPKPPVSVAVAKATEQPWQSRLPTVGSLKASQGVDLSLEIAGTVQKLQFESGQKVKAGQPLLQLDTEVESALLETAQADLGLSQLDFGRGRQLVGSQAISKGEFDRLSAQLKKNQATVNQLKASLAKKHIVAPFSGTIGIRQVDIGDYLASGTVIATLQDLSSLYVDFYVPEQSVPRLAVAQPVNVNVSAYPGQTFVGTISAINPKVEDSTRNVLVRATLANPDGKLLPGMFADLQVILPDVAAGIVVPESAVTYTLYGNSMYVVTQKKAADGNVEKDDKGQPVLIAERRFVETGERRDGQVLVTKGLQSGEEVVIGGQIKLDNGTPVAISDDKTLTEQNSSPRAD	PGPT0003275_3243	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexAB-OprM,PGPT0003275-acrA|lir|mtcA|mexA|adeI|smeD|mtrC|cmeA-K03585	NA	NA
D1-36_01276	1098			hypothetical protein	ATGTTTCGACGTCAGGCTCTGGCGCTCGGCAGCTTGCTGCTGGGCGCGGTTACCCTGGGCGGCTGGACGCTGTTCAAGCAAAAGGACAAGAGTCCGCTGCTGCTTTCGGCACGGGACGATGGTGAAGGCAATCACTTCGCCGTCGGCTATCGATTGGACGGCACCCGGGTGTTCGCCACCCAGGTCGGCCAGCGCTGCCATGACATCATCAATCACCCGACGCTGCCGATCGCGTTTTTCGTTGCCCGCCGTCCAGGCACCGAAAGCTATCTGATCGACCTGCGCGACGGCAGGCTGCTACAAACCATCGCCTCGCGGCCGAACCGGCATTTCTACGGCCATGCGGTGATCCACAAGGGTGGCGAATGGTTGTACACCACGGAGAACGACACTCGCGATCCGGGCCGCGGCCTGCTGGGCATGTACCGCTTCGAAGGCGAGCGGCTGGTGCACAGCGGCGAAATTCCAACCCATGGCATCGGTCCTCATCAGGTGTCGTGGATGCCCGACGGCGAGACGCTGGTGGTGGCCAACGGCGGCATCCGCACCGAGGCCGAGAGCCGGGTCGAGATGAATCTCGATGCCATGGAACCCAGCCTGGTGCTGATGCAGCGCGACGGCACGTTGTTGAGCAAGGAAACCCTCCCTCAGCAAATGAACAGCGTGCGCCATTTGGGCATTGCCAGCGACGGGACCATCGTCTCCGGCCAGCAATTCATGGGGGCGGCCCACGAGCCGTCGGAACTGCTGGCGATCAAGCGCCCGGGCCAACCCTTCAAGGCGTTCCCGGTGCCCGAATACCAATTGCAAGCCATGGGGCACTACACCGCCAGCGTCGCCGTGCACAGCGAACTGCGCCTGGTGGCCCTGACGGCTCCACGGGGCAACCGCTTTTTCATTTGGGACCTGGATAGCGGCGAGGTTCGCCTGGACGCGCCTTTGCCGGATTGCGCCGGAGTCGGCGCGGTGGCCGACGGCTTCGTCGTGACGTCGGGCCAAGGGCGCTGCCGCTACTACGATTGCCGTCAATCACAATTGGTTGCAAAACCGCTGGACCTGCCGGCAGGGCTCTGGGACAACCATTTGCACCTGGCCTGA	MFRRQALALGSLLLGAVTLGGWTLFKQKDKSPLLLSARDDGEGNHFAVGYRLDGTRVFATQVGQRCHDIINHPTLPIAFFVARRPGTESYLIDLRDGRLLQTIASRPNRHFYGHAVIHKGGEWLYTTENDTRDPGRGLLGMYRFEGERLVHSGEIPTHGIGPHQVSWMPDGETLVVANGGIRTEAESRVEMNLDAMEPSLVLMQRDGTLLSKETLPQQMNSVRHLGIASDGTIVSGQQFMGAAHEPSELLAIKRPGQPFKAFPVPEYQLQAMGHYTASVAVHSELRLVALTAPRGNRFFIWDLDSGEVRLDAPLPDCAGVGAVADGFVVTSGQGRCRYYDCRQSQLVAKPLDLPAGLWDNHLHLA				NA	NA	NA	NA	NA
D1-36_01277	1065			hypothetical protein	ATGTTCCGTCCCAAGCTGTTATTCACCAGTCTCGCCGCCATCGCCCTCGGCGCTTGCTCGCCCCAGGACCCGCAGGCGGTCACGTCGGCCGCCATTGCCAAGCAGGTGATCCTGCCGACCTACAGCCGCTGGGTCGAAGCTGACCGGCAGTTGGCGACCAGCGCCCTGGCGTTCTGCCAAGGCAAGGAAAACCTGGAAACCGCGCGCGCCGATTTCCTCAAGGCGCAAAAAGCCTGGGCAGAGCTGCAACCGCTGCTGATCGGTCCGCTGGCCGAGGGCAACCGCGCCTGGCAGGTGCAATTCTGGCCCGACAAGAAGAACCTGGTCGGTCGCCAGGTCGAGCAATTGGTCAACAGCCAGCCGCAGATCGACGCCGCCGGCCTGGCCAAGTCCAGCGTGGTCGTGCAAGGGCTTTCGGCCTATGAATACCTGTTGTTCGACGCGAAAATCGACATGGCCGACAGCGCTCAGAAAGCCAAGTACTGCCCGCTGCTTACCGCCATCGGCGAACGTCAGAAGCAACTGGCCGAAGAAATCCTGTCGGGCTGGAACAGCAACGACGGCATGCTCGCCCAGATGAGCAAGTTTCCCAACCAACGCTACGCCGATTCCCACGAAGCGATCGCCGATCTGCTACGGGTCCAGGTCACTGCGCTGGACACCCTGAAGAAAAAACTCGGTACGCCGATGGGCCGCCAGAGCAAGGGCGTGCCGCAACCATTCCAGGCCGACGCGTGGCGCAGCCAGTCTTCGCTGCAAGGGCTGGAAGCCAGCCTGAAAGCCGCCAGGACCGTGTGGGCCGGCGTCGACAACAAAGGCCTGCGCGGCCTGCTGCCAAGCGACCAGAAACCGCTGGCCGACAAAATCGACGCTGCCTACGACGCGTCGCTGAAGCTTTTTGCCAGCAGCCAACGCTCGCTTACCGAAATGCTCGGCGACGACGCCGGGCGCCAGCAACTCAACGAGTTGTACGACAGCCTCAACGTCGTCCACCGCCTGCATGAAGGCGAATTGGCCAAGGCGCTGGGCATTCAACTGGGCTTCAACGCCAACGACGGTGACTGA	MFRPKLLFTSLAAIALGACSPQDPQAVTSAAIAKQVILPTYSRWVEADRQLATSALAFCQGKENLETARADFLKAQKAWAELQPLLIGPLAEGNRAWQVQFWPDKKNLVGRQVEQLVNSQPQIDAAGLAKSSVVVQGLSAYEYLLFDAKIDMADSAQKAKYCPLLTAIGERQKQLAEEILSGWNSNDGMLAQMSKFPNQRYADSHEAIADLLRVQVTALDTLKKKLGTPMGRQSKGVPQPFQADAWRSQSSLQGLEASLKAARTVWAGVDNKGLRGLLPSDQKPLADKIDAAYDASLKLFASSQRSLTEMLGDDAGRQQLNELYDSLNVVHRLHEGELAKALGIQLGFNANDGD				NA	NA	NA	NA	NA
D1-36_01278	1428			hypothetical protein	ATGTTGTCGTTGCCTCTTCGCTTATGCGCTCTGTTCCTGGCCCTGGGCCTGAGTGCCTGCGATGACGCCCCGCGTTTCACCCAGGCCGAACCCGGCGAAGCCAAGTCCGGCGGCGGCGCGACGGTGCGCAAGGCTGATCAGAACGCGTTCTCCCTGCCTTCGGCCAACCTGCCCCCCTCGCGACGCGTGGATTTCAGCGTCGGTAACAGTTTCTTCCGCAGCCCGTGGGTGATTGCGCCCTCGACCACGACCGCCCGCGACGGCCTCGGACCGCTATTCAATACCAACGCCTGCCAGAATTGCCATATCAAGGATGGACGCGGCCATCCACCGGCACCCGATGCGAGCAGCGCGGTATCGATGCTGGTGCGCCTGTCGATTCCTGACGCGCCCCCCTACGCCAAGGTCATCGAGCAGCTCGGCGTCGTGCCGGAGCCGGTCTATGGCGCGCAATTGCAAGACATGTCGGTTCCTGGCGTCGCGCCGGAGGGCAAGGTACGAGTCGACTACACCCCGGTGCCGGTGCGTTTTGCCGACGGCACCGTCGTGGAGCTGCGCAAGCCGGCCTTGCAGATCACTCGATTGGGTTATGGCCCGATGCACCCCGACACGCGTTTTTCGGCCCGCGTCGCCCCGCCCATGATCGGCCTGGGTTTGCTCGAGGCCATCCCTGAAGACGCCATCCTGGCGAATGCCCAGGCTCAGGCGCGGGCGAAAAACGGTATCGCCGGCCGTCCGAACATGGTCTGGGACGATGTCCAGCAAAAGGCCGTGCCGGGGAGGTTCGGCTGGAAGGCCGGCCAGCCGAACCTCAATCAACAGAACGTTCATGCGTTTTCCGGGGACATGGGCCTGACAACCAGTCTGCGGCCGTTCGACGATTGCACCGAGGCCCAGGCTGATTGCAAACGCGCGCCCAACGGCAACGGCCCACAGGGCGAGCCGGAAGTCAGCGATAACATCCTGCGCCTGGTGTTGTTCTACAGTCGCAACCTCGCGGTGCCGGCCCGCCGCGATGTGGATTCGCCCCAGGTGCTGGCGGGCAAGAATCTGTTTTTCCAGGCGGGCTGCCAATCCTGCCACACCCCCAAATACACTACGTCCGCCAATGCTGCCGAACCAGAGCTGGCGAACCAGGTCATCCGCCCCTACACCGACCTGCTGCTGCACGACATGGGCGAAGGCCTGGCTGACAACCGCAGCGAGTTCAAGGCCAGCGGTCGTGACTGGCGGACCCCGCCGCTCTGGGGCATCGGCCTGACCGAGACCGTCAACGGCCATACCCAATTCCTGCACGACGGTCGCGCCCGCAACCTGCTCGAAGCCGTGCTGTGGCATGGCGGCGAAGCCCAGGCGGCGCAGCGACAGGTCCTAGCATTCAATGCCGAGCAGCGCGCTGCGTTGTTGGCTTTCCTGAATTCTCTTTAA	MLSLPLRLCALFLALGLSACDDAPRFTQAEPGEAKSGGGATVRKADQNAFSLPSANLPPSRRVDFSVGNSFFRSPWVIAPSTTTARDGLGPLFNTNACQNCHIKDGRGHPPAPDASSAVSMLVRLSIPDAPPYAKVIEQLGVVPEPVYGAQLQDMSVPGVAPEGKVRVDYTPVPVRFADGTVVELRKPALQITRLGYGPMHPDTRFSARVAPPMIGLGLLEAIPEDAILANAQAQARAKNGIAGRPNMVWDDVQQKAVPGRFGWKAGQPNLNQQNVHAFSGDMGLTTSLRPFDDCTEAQADCKRAPNGNGPQGEPEVSDNILRLVLFYSRNLAVPARRDVDSPQVLAGKNLFFQAGCQSCHTPKYTTSANAAEPELANQVIRPYTDLLLHDMGEGLADNRSEFKASGRDWRTPPLWGIGLTETVNGHTQFLHDGRARNLLEAVLWHGGEAQAAQRQVLAFNAEQRAALLAFLNSL				NA	NA	NA	NA	NA
D1-36_01279	1353	sasA_5		Adaptive-response sensory-kinase SasA	GTGCGTTCATTGTTCTGGCGCGTCCTGGCCAGCTTCTGGTTGGCCATCGCTCTGGTGGCGGGACTTTCGATTCTCTTGGGCCATATGTTGAACCAGGACGCCTGGATCCTCAGCCGCCATCCGGGCCTCAACACCCTGGCCGAAGAGTGGACGCAGACTTACGAAAGCCAGGGCGAAGATGCCGCCCAGGACATCCTCAAACAACGCAAGCGCGAGTATCACGTCGATGTCCAGGTGCTCAACGAAAGCGGCGACCCGGTGGTGCGCGGCACGTTCCCACATCGGGCCGCTGCCTTCGAGGCGCGACAGAACAACGACGAACGCCGCCTGCCCTGGCGGCGCCTGACCGACGAATTCACCAGCGCCAAGACCGGCGACACCTATCTGTTCATCTATCGCATTCCCCACCCCGAATTGGACGCCTGGCATCGCGACAGCCTGCTCTGGCCCCTCAGCGCCTTGGCGATTGCGCTGGTGGTGCTGACCCTGTTCAGCCTGCTGGTGACGCTTTCCATCACCCGGCCGTTGAGCCGGCTGCGCGGCGCGGTGCACGATCTGGGACAAGCGACCTACCAGCAGAACAGCCTCGCCAAGCTGGCCAACCGACGGGACGAGTTTGGCGTGTTGGCCACCGATTTCAACCGCATGGGTGCGCGCCTGCAGAGCCTGATCGCCAGCCAGCGCCAATTGCTGCGCGACGTGTCCCATGAACTGCGCTCGCCCTTGGCCCGACTGCGCATCGCCCTGGCGCTGGCGGAGCGGGCCAGCCCCGAAGAGCGCGAAAAACTCTGGCCGCGCCTGACCCGCGAATGTGATCGCCTGGAAGCGCTGATCAGTGAAATCCTGGTTCTGGCGCGGGTCGATGCCGACAACGCCAGCGCCGAAGAAGTTGATCTCAACGGTCTGCTGATCAACCTGCAAAAAGACGCCCAGATGGCTTCACCGGAGCAGATCGTGCAGTTGGAAACGGAACCGGGCCTGACCCTCAAGGGCTGGCCGACCATGATCGAGCGGGCCGTGGACAACCTGTTGCGCAATGCACAGCGCTTCAGTCCCAACGGGCAGCCCGTTGAAATGCGCGCGGTGCGCCAGGGGGAACGAATTCTTATCAGCGTGCGCGATCACGGGCCTGGCGTGGAGGCGGAGCATCTGGGCCAGTTGGGCGAACCGTTCTACCGCGCCCCCGGCCAGACCGCCGCTGGCCACGGCCTGGGCCTGGCGATCGCCCGCCGCGCCGCCGAGCGCCATGGCGGCACGCTGGGACTGGCCAACCATCCCGAGGGCGGATTCATTGCGACGCTGGAATTGCCGTTGGTGCCAGGGGCGGTGGTCTCCCCTACAGAACAACAGTGA	MRSLFWRVLASFWLAIALVAGLSILLGHMLNQDAWILSRHPGLNTLAEEWTQTYESQGEDAAQDILKQRKREYHVDVQVLNESGDPVVRGTFPHRAAAFEARQNNDERRLPWRRLTDEFTSAKTGDTYLFIYRIPHPELDAWHRDSLLWPLSALAIALVVLTLFSLLVTLSITRPLSRLRGAVHDLGQATYQQNSLAKLANRRDEFGVLATDFNRMGARLQSLIASQRQLLRDVSHELRSPLARLRIALALAERASPEEREKLWPRLTRECDRLEALISEILVLARVDADNASAEEVDLNGLLINLQKDAQMASPEQIVQLETEPGLTLKGWPTMIERAVDNLLRNAQRFSPNGQPVEMRAVRQGERILISVRDHGPGVEAEHLGQLGEPFYRAPGQTAAGHGLGLAIARRAAERHGGTLGLANHPEGGFIATLELPLVPGAVVSPTEQQ	PGPT0004100_3324	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
D1-36_01280	438			hypothetical protein	ATGCGCAAGACCCTTACCGCCCTGCTGTTCGCCGCTGCCCTGCCGACCGTCGCCATGGCCATGCCCGAAGGTCCAGGCCCGATGGGCCCGATGGATGGCCCGCGCCACGGCGGCCAGATGCACGATAAAGGCCCGTACAGCCAACTGGACCTGAGCCGTGAACAACGCCAGCAGATCCGCCAGATCATGGGCGAGCAACGCCACGAGCAACGGGAACTGGTGGACAAATACCTGGCCAAGCTCTCGCCAGCCGACCAGAAAGCCATGAAAGATGAAATGGACGCTCGGCATCAGAAAGTCGATGCGCAGATCCGCGGTCTGTTGAAACCCGAGCAGCAAAAGGCGTTTGATGCGCTCCAGAAAAAACGCGCCGAACGTCGGGCCGAGTGGGCCGAATTCAAGGCCTGGAAAGCGCAACAGCCGCAAAAAGCGCAATAA	MRKTLTALLFAAALPTVAMAMPEGPGPMGPMDGPRHGGQMHDKGPYSQLDLSREQRQQIRQIMGEQRHEQRELVDKYLAKLSPADQKAMKDEMDARHQKVDAQIRGLLKPEQQKAFDALQKKRAERRAEWAEFKAWKAQQPQKAQ				NA	NA	NA	NA	NA
D1-36_01281	678	cpxR	COG0745	Transcriptional regulatory protein CpxR	ATGAGCGAGCTGTTACTGATAGATGATGACCAGGAGCTGTGTGAGCTCCTTGGCAGTTGGCTGGGCCAGGAAGGTTTCCAGGTCCGTGCTTGCCACGATGGCCTGAGCGCCCGCAAGGCCCTGGCCGAAACCGCCCCCTCGGCGGTGGTGCTGGATGTGATGCTGCCCGACGGCAGCGGCCTGGAACTGCTCAAGCAACTGCGCAACGATCACCCGGAGCTGCCGGTGCTGATGCTCTCGGCCCGTGGCGAGCCGCTGGACCGCATCCTTGGCCTGGAGCTGGGCGCTGACGATTACCTGGCCAAGCCCTGCGACCCACGGGAACTGACCGCCCGCCTGCGGGCCGTGTTGCGTCGCAGCCATCCGGCGGCGGTTTCCAGCCAGATCGAACTGGGTGACCTGACCTTCAGCCCTGTGCGGGGGGTGGTCAACATCGATGAACAGGAACAAACCCTCACCGTATCTGAAAGCCGCCTGCTCGAAGCGTTGCTCAAGCAGCCGGGCGAGCCCCTGGACAAGCAGGAGCTGGCGCAGATCGCCCTGGGCCGCAAGCTGACCCTGTACGACCGCAGCCTCGACATGCACGTAAGCAACCTGCGCAAGAAAATCGGCCCCCACCCCGACGGCAGGCCGCGCATCGTGGCCCTGCGTAGCCGGGGGTATTACTACAGCCTTTGA	MSELLLIDDDQELCELLGSWLGQEGFQVRACHDGLSARKALAETAPSAVVLDVMLPDGSGLELLKQLRNDHPELPVLMLSARGEPLDRILGLELGADDYLAKPCDPRELTARLRAVLRRSHPAAVSSQIELGDLTFSPVRGVVNIDEQEQTLTVSESRLLEALLKQPGEPLDKQELAQIALGRKLTLYDRSLDMHVSNLRKKIGPHPDGRPRIVALRSRGYYYSL	PGPT0015100_599	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015100-cpxR-K07662	NA	NA
D1-36_01282	411			hypothetical protein	ATGCGCAAAGGTCCGTTGTGCCTGTTGTTGGTCACGTTAGCGATCGGGGCGCCCGCCCACGGCGAGGAAAGCATGGAGGCCGCTCATTCGGCGCCCTTGTCCTTGAGCGCGGGTGGCCATATCACCGAACTGCAGCAACGCTTGAAAGACAGCGAGCGCATGCGTGAAGAACTGACTCAACAACTGCAGAACGCCAACGGCGAGCGCGAAACCGCGCTGGTGGGACGGCTGCGTCAGGAAAACCAGCGCCTGAGGCTGCAACTCAAGGAAGCCCAGGCCAACCCCCTGCCACGCCTGCTGACTGACCAACAGCAATGGTTCGTCATTGGCGCCGGGGTAGCGCTATTGGCCCTGCTCTGCGGTATCTTTGCCAGCGGTGGACGTAGACAACGTCGGCAATGGCTAAATTGA	MRKGPLCLLLVTLAIGAPAHGEESMEAAHSAPLSLSAGGHITELQQRLKDSERMREELTQQLQNANGERETALVGRLRQENQRLRLQLKEAQANPLPRLLTDQQQWFVIGAGVALLALLCGIFASGGRRQRRQWLN	PGPT0023725_737	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0023725-ygiM|htrG-K07184	NA	NA
D1-36_01283	300	yciI	COG2350	Protein YciI	ATGCTCTACGCAATCATTGCTACCGATGTTGCCGATTCCCTGGAAAAACGCCTGGCCGCCCGCCCCGAGCACCTGGAGCGCCTGCAAAAGCTCAAGGCCGAAGGTCGCGTCGTGCTGGCCGGGCCGCACCCTGCGGTGGACAGCAACGACCCAGGCGCCGCCGGTTTCACTGGCAGCCTGATCGTGGCGGAGTTCGACTCGCTGGCCGCCGCGCAAGCCTGGGCCGAGGCCGACCCGTTCGTGACGGCCGGCGTCTATGCCAATGTCATGGTCAAGCCGTTCAAGCAAGTCCTGCCGTAA	MLYAIIATDVADSLEKRLAARPEHLERLQKLKAEGRVVLAGPHPAVDSNDPGAAGFTGSLIVAEFDSLAAAQAWAEADPFVTAGVYANVMVKPFKQVLP				NA	NA	NA	NA	NA
D1-36_01284	708	yciB	COG2917	putative intracellular septation protein A	ATGGCAGTGCAAATCAACATTCACGAGACTTTGTTACCTCAAATCAGCTGGCCCTATCGCGGCCAAGGATGTTTGTTATTATGCCGCCACATCCTGCTCCTGGCTGCCACTGTGAAACAATTCATCGATTTCATCCCGCTCCTGCTGTTTTTCATCGTCTACAAGCTTGATCCTCGAACCGTCGACATTGCCGGTCACTCCTTGACTGTAGGTGGTATCTACAGCGCCACCGCGGTGTTGATCATCAGCTCCCTGGTGGTCTACGGCGCGCTGTTCATCTCCCAGCGCAAGCTGGAGAAAAGCCAGTGGCTGACCCTGATTGCCTGCCTTGTATTCGGCAGCCTGACCTTGGCCTTTCACAGTGAGACCTTCCTTAAATGGAAAGCCCCGGTGGTCAACTGGCTGTTTGCCCTGGCCTTCATCGGCAGTCACTTCATCGGTGATCGCCTGTTGATCAAGCGCATCATGGGGCACGCCATCAACCTGCCAGAAGTGATCTGGACCCGCTTGAACATCGCCTGGATCGCATTCTTCCTGTTCTGCGGCGCCGCCAATCTGTTCGTTGCGTTCACGTTCCAGGCGTACTGGGTCGACTTCAAGGTCTTCGGCAGCCTGGGCATGACGTTGCTGTTCCTGATCGGCCAGGGGATCTACCTGTCCCGCCATCTGCACGATGCCGACCCCACCACGCCAAAAACCGAGGACTGA	MAVQINIHETLLPQISWPYRGQGCLLLCRHILLLAATVKQFIDFIPLLLFFIVYKLDPRTVDIAGHSLTVGGIYSATAVLIISSLVVYGALFISQRKLEKSQWLTLIACLVFGSLTLAFHSETFLKWKAPVVNWLFALAFIGSHFIGDRLLIKRIMGHAINLPEVIWTRLNIAWIAFFLFCGAANLFVAFTFQAYWVDFKVFGSLGMTLLFLIGQGIYLSRHLHDADPTTPKTED				NA	NA	NA	NA	NA
D1-36_01285	801		COG0613	3',5'-nucleoside bisphosphate phosphatase	GTGGCGCGGGCGTACGAGCACGGCGTGCGAGTCCTGGCCCTGACCGACCACGATACCCTGGAAGGCCTCGATGAGGCGCGTAGCGCCGCGACCGCCTTGGGCATGCAGTTGGTCAACGGGGTCGAATTGTCCTGTACCTGGGGCGGAGCGACCATCCACGTGCTGGGCTACGGTTTTGATGTCAACGCACCGTCCCTGGTCCAGGCCATTGTCGAGCTGCGCGACGGTCGTTGGCTGCGTTCCGAAGAAATCAGCCGCAAGCTCGCCCTCAAGGGCATGCCCGGTGCGCTGGAAGGCGCCCGGCAGATCCAGCAAGAGCTGGGCGATAGCGGCAACGCGCCGGCCCGGCCACATTTTGCCGACTGGATGGTGCGCGAAGGTTTCGTCAAGGACCGCGCCGAAGCCTTTCGCAAATGGCTGGGGGCCGGCAAGCTGGGGGACGTCAAGCAGCATTGGCCGACGCTCGAGGAAACGGTCGGGACGCTGCGGGCCGCCGGAGCCTGGATCAGCCTGGCGCATCCCTGGCACTACGATTTCACCCGCAGCAAACGCCGGCGCCTGATAGCCGACTATATTCAAGCAGGGGGCCATGCCATCGAAGTGGTCAATGGCCATCAGCCGGCCGAACAGGTCGGCAGCCTGGCGATCCTCGCCCGGGAGTTTGGACTGCTGGTGAGCGCCGGCAGCGATTTCCATGGCCCGGGGGGCTGGTCCGAGATTGGCGAATACCGCCCCTTGCCGGAAGATCTGCCACCACTATGGTGTAGATTCAAACATGATCCCGTTATCGCTGACGTCTGA	MARAYEHGVRVLALTDHDTLEGLDEARSAATALGMQLVNGVELSCTWGGATIHVLGYGFDVNAPSLVQAIVELRDGRWLRSEEISRKLALKGMPGALEGARQIQQELGDSGNAPARPHFADWMVREGFVKDRAEAFRKWLGAGKLGDVKQHWPTLEETVGTLRAAGAWISLAHPWHYDFTRSKRRRLIADYIQAGGHAIEVVNGHQPAEQVGSLAILAREFGLLVSAGSDFHGPGGWSEIGEYRPLPEDLPPLWCRFKHDPVIADV				NA	NA	NA	NA	NA
D1-36_01286	669	yciO	COG0009	putative protein YciO	ATGATCCCGTTATCGCTGACGTCTGAACAGGTAGAACACGTGAGTCAATTTTTCCAGATTCATCCGGAAAACCCGCAAGCGCGCCTGATCAAACAGGCGGTGGAAATCATCCGTAGCGGTGGCGTAGTGGTTTATCCCACCGACTCGTCCTACGCCATTGGTTGCCAGATCGGCGATAAAAACGCCGTCGAGCGGGTAAGACGCCTGCGTCAGTTGGATGACAAGCACAACTTCGCGCTCATCTGCAGCGATCTTTCACAGTTGGGGTTGTTCGCCAAGATCGATACCGGCACCTTCCGCTTGCTCAAGGCCCATTTACCGGGACCGTACACCTTCATTCTCAATGCCACGCGGGAAGTCCCGCGGCTGCTGCTGCACCCGAAAAAGCGCACCATCGGCCTTCGGGTGCCAAGCCATCCCATTGCCCTGGCGCTGTTGGCGGAGCTGGGTGAGCCCTTGATGAGCGTGACACTGATCATGCCCGGCGAGACCGATCCGTTGACCGACCCCTACGAGATTCGCCAGTTGCTCGAACACCAGGTCGACCTGATCATCGACGGCGGTTCCGGTGGCATGAAAGCGTCCACCGTGATCAATCTGGCTGACGGCGAGCCGCAAGTGGTGCGCGTCGGTTGCGGTGATCCGACGCCGTTCATGGTCGAGGCCTGA	MIPLSLTSEQVEHVSQFFQIHPENPQARLIKQAVEIIRSGGVVVYPTDSSYAIGCQIGDKNAVERVRRLRQLDDKHNFALICSDLSQLGLFAKIDTGTFRLLKAHLPGPYTFILNATREVPRLLLHPKKRTIGLRVPSHPIALALLAELGEPLMSVTLIMPGETDPLTDPYEIRQLLEHQVDLIIDGGSGGMKASTVINLADGEPQVVRVGCGDPTPFMVEA				NA	NA	NA	NA	NA
D1-36_01287	831	scpA	COG1354	Segregation and condensation protein A	ATGTCGGTGGTGGAAACGGTTGTCGACAGCGTAGACAGCCAGGCCGGCGCGCAGCAGGAGTTGCCGTTCGCCATGGTCTACGGCCAGGCGGTCATGGAAATGCCGTTGGACCTGTACATTCCGCCGGATGCGCTGGAGGTTTTCCTTGAAGCCTTCGAAGGCCCGCTCGACCTGCTGCTGTACCTGATCCGCAAACAGAACATCAATATCCTCGACATTCCCGTGGCGGAAATCACCCGCCAGTACATGGGTTACGTCGAGTTGATGCAATCGGTGCGTCTGGAGCTGGCGGCGGAATACCTGGTGATGGCGGCGATGCTGGCCGAGATCAAGTCACGCATGCTGCTGCCGCGCTCGGCCGAGGTCGAAGAGGAAGAAGACGATCCCCGGGCCGAGCTGATCCGCCGCTTGCAGGAATACGAACGCTTCAAGGCGGCCGCCGAAGGCATCGACGGCTTGAGCCGGGTGGGGCGCGATGTGGTGGTGCCCAAGCTCGATGCCCCCGAGGCGCGGGCGCGCAAGTTGTTGCCCGACGTCAGCCTCGAAGAGTTGTTGATGTCCATGGCCGAGGTTCTGCGCCGGGGCGATATGTTTGAAAGTCACCAGGTCAGCCGCGAGGCGCTGTCCACCCGCGAGCGCATGAGCGATGTGCTGGAGCGGCTCAAGGGCGGCGGTTTTGTGCCCTTCGTCGAGCTGTTCACCGCCGAAGAGGGGCGGCTGGGCGTGGTGGTAACGTTTATGGCAGTCCTGGAATTGGTCAAGGAATCCTTGGTCGAGCTGGTGCAGAATGAGCCGTTCGCAGCGATCCATGTGCGAGCCCGAGCCGAATAA	MSVVETVVDSVDSQAGAQQELPFAMVYGQAVMEMPLDLYIPPDALEVFLEAFEGPLDLLLYLIRKQNINILDIPVAEITRQYMGYVELMQSVRLELAAEYLVMAAMLAEIKSRMLLPRSAEVEEEEDDPRAELIRRLQEYERFKAAAEGIDGLSRVGRDVVVPKLDAPEARARKLLPDVSLEELLMSMAEVLRRGDMFESHQVSREALSTRERMSDVLERLKGGGFVPFVELFTAEEGRLGVVVTFMAVLELVKESLVELVQNEPFAAIHVRARAE				NA	NA	NA	NA	NA
D1-36_01288	948	scpB		Segregation and condensation protein B	ATGAACCTGACTGAACCCCGCGAGCTGGCGCCGTTGCTTGAAGCTTTCCTGTTGGCCTCTGGAAAGCCGCAATCGATGGAGCGGCTGTTCGAACTCTTCGAAGAAGGCGAGCGGCCCGAGCCCGCCGTGTTCAAAAAAGCCCTGACGCTGTTGGGCAAATCCTGCGAGGGTCGGGCTTTCGAGCTTAAGGAGGTGGCGTCCGGGTACCGCCTGCAAATCCGTGAGAAATTTGCCCCGTGGGTAGGGCGCCTGTGGGAAGAGCGGCCTCAGCGTTATTCCCGGGCGCTGCTAGAAACCATGGCGCTGATCGCCTATCGCCAACCGATCACGCGCGGCGAGATCGAGGACGTGCGCGGCGTGGCGGTCAACAGCAACATCGTCAAGACGTTGCTGGAGCGCGAGTGGATCCGCGTCGTCGGCTATCGCGACGTGCCGGGCAAGCCGGCAATGTTCGCCACCACCAAGGCTTTTCTCGATCATTTCAACTTGAAGAACCTCGACGACTTGCCGCCGCTGGCCGAATTGCGTGAGCTGGAACCCGAGCCGATGCTGGAATTCGACGATGCTCCAGTGCCCCAGGGCCTGCAGGAATTGGCCGATGCCAGTGCCGAGCCGGAGGAACCGAAGGAAGAGACCAGTTTCCATTCGTTGCTCCTGGAACTGGACAGCATGGAGGAGGGCCTTAAGACCGACTTCGACGACCTGCTGCGTGAAGGTCCGGCCCCTGAGGAGGAGACGGATGAACCGACGCCGCTGTTGAGTGAAACCGAGCACGCGCCGCAGCCAGAGCCCCAAGGGGACATTCTCGGCGTTGCCGAGGCCCGGGAAAAACTGCTGGCCGCCGTCGCCGCCCTTGCGCCGCCGGAACCCGAACTGAGCGAGGAGGAGGCCGAAGCCCGCGCCCTGGCTGAAGCGATCGAAAACGAACGGCGTCAGTTTGAGGATTGA	MNLTEPRELAPLLEAFLLASGKPQSMERLFELFEEGERPEPAVFKKALTLLGKSCEGRAFELKEVASGYRLQIREKFAPWVGRLWEERPQRYSRALLETMALIAYRQPITRGEIEDVRGVAVNSNIVKTLLEREWIRVVGYRDVPGKPAMFATTKAFLDHFNLKNLDDLPPLAELRELEPEPMLEFDDAPVPQGLQELADASAEPEEPKEETSFHSLLLELDSMEEGLKTDFDDLLREGPAPEEETDEPTPLLSETEHAPQPEPQGDILGVAEAREKLLAAVAALAPPEPELSEEEAEARALAEAIENERRQFED				NA	NA	NA	NA	NA
D1-36_01289	1233			hypothetical protein	ATGAACGACCAAGACCAGAACGACAGCCAGGAAATCGGCCCAGCAGGCGAAAAGCTGCAGAAGGTCCTTGCCCGCATCGGCGTCGGTTCGCGCCGTGACGTGGAAGCGTGGATCACCCAGGGCCGCATCAAGGTCAATGGCAAAGACGCCACCTTGGGCCTGCGCGTCGACATGCACGACGCCATCACCATCGATGGCAAGGTGATCAAGCGTGAAGAGGCCGCCGAAACGGTGCGCCGCGTGATCATGTACAACAAACCCGACGGCGAAATCTGCACCCGTGACGACCCGGAAGGCCGTCCGACCGTGTTCGACAAGATGCCGCGCCCCAAAGAAGGCCGCTGGATCAACATCGGCCGCCTGGACATCAACACCACCGGTTTGCTGATGTTCACTACTGACGGTGAGCTGGCGAACCGTCTGATGCACCCTTCCTACGAAATGGACCGCGAATACGCCGTGCGTGTGCGTGGCGAAGTCGACGACGAGATGATCGAGCGCCTCAAGGCCGGCGTCGTGCTGGAAGACGGTCCCGCGCGTTTCACCGACATCAAGCAGGCGCCGGGCGGTGAAGGTTTCAACCATTGGTACCACTGCGTGGTGATGGAAGGTCGCAACCGTGAGGTGCGGCGGCTGTGGGAATCCCAGGGACTGGTGGTCAGCCGCCTGAAGCGCGTGCGTTTCGGCCCGGTGTTCCTCAACTCCGACCTGCCGATGGGTCGCTGGCGTGAAATGACCCAACAGGAAGTCGACATCCTGGCGGCCGAAGTGGGGCTCAAGCCTGTGGCGATGCCGCAGATGACCGCCAAGAGCAAGGATAAGCTGGAGCGGATGCAGCGCAAATCCTCGCGTCCGATGGGCAAGACCGAGCGCGTGCGTACGCTGCGCCCGGCGGCCGACGGCGTAGCGACCGGCCCGCGTCCTTCCCGCGAGCCGCAGATCGAAGGCGAGCGCCCGGCGCGCAAGCCAGCACCTCGCCAGGACGGCGAGCGTGGTCCTCGCGCACCGCGTCCGGCCAACGGTCGTACCGAGCGTGGCGAAGGCCGCGCCCCGGCTGGCCGTGGTACGCCCGTCGCGGATCGCCCGGCCGACACCAAGCGTCCGGCCAAGCCTGCGCCGAAAAAGCGTCCGGGCATCATCCTGGCCGATCGCGATGCACCGTCGGGCAAGCGTCGTGGTGCGCCGGCGGGTTCGGGACAGCGTCCGGGGTTTGGGCGTCGTAAGCCGGAGTAA	MNDQDQNDSQEIGPAGEKLQKVLARIGVGSRRDVEAWITQGRIKVNGKDATLGLRVDMHDAITIDGKVIKREEAAETVRRVIMYNKPDGEICTRDDPEGRPTVFDKMPRPKEGRWINIGRLDINTTGLLMFTTDGELANRLMHPSYEMDREYAVRVRGEVDDEMIERLKAGVVLEDGPARFTDIKQAPGGEGFNHWYHCVVMEGRNREVRRLWESQGLVVSRLKRVRFGPVFLNSDLPMGRWREMTQQEVDILAAEVGLKPVAMPQMTAKSKDKLERMQRKSSRPMGKTERVRTLRPAADGVATGPRPSREPQIEGERPARKPAPRQDGERGPRAPRPANGRTERGEGRAPAGRGTPVADRPADTKRPAKPAPKKRPGIILADRDAPSGKRRGAPAGSGQRPGFGRRKPE				NA	NA	NA	NA	NA
D1-36_01290	963			hypothetical protein	ATGGACACACAACGAGCCATCTCACATTTCCTTTACTACCTCGAACATCATCCCGCCCTGGCCGGTATCCAGTCCGCCAAGGTCTTGCTCGGCCACACCGCAGACTACGAAGCGCTGGTCGCCAGCATCTCCGAACAGGCCGGCGCCTCGCCGTTCCGGTTCAGCACCATGCGCCTGGATCTTGAAACCACCGAGCGGCTGTCCCAAGCCATTGCCGACAGCGATCTGTACATTTTCTTCTACGACTCATCCACCCTTCCCAACCCGCGCCCCGATGGCCCGGACTTCGTCCGCGCATTGCAGGGAGTGATGGCGGACAACTGGAAGAAATCGCTGCTGTTCAAGGACTACGGCGAGTACTTCCATGACACCTTCAGCGTTATTCCCCAGCGCATCGCCGGGCTCAACAGCCACCTGATCCGCCGCATGTCCCAGGCCACCACGTTGAGCTTCGAGGACCACCACGGATCGTATTTCGACACCCCACTGAACAGTGTCAAGAAGTGGACGGACATCAACGGCGTCGGCAACTACGACCTTGCGCCTGGTGAAATCGCCACCCACAGCGACACCATCAATGGCCGTGTGAAGTTCGTCGGGACCTTCCTCAGCACGATCCCATTCGCCCGCAAATACGGCGTGCTGCAATCGCCATTGGAGCTGTGGATCGAAGATTCCACGATCCAGAAAATCGCCACCGATGTCCCAGGCCTGGAACACGATTTCAACCGGTACCTGGACGCCAATCCTTCCAACCGGCGCATCGAGGAACTGGGGATCGGCACCAACGAAGGGGTCAAGAGCCTGTATGCCCGCAATGCCGGTTTCGAGGAGCGCCATTGCGGCTTGCACCTGGGCCTCGGTGGCGGGGCCAAGGGCAGCCATCATCTGGATCTGATTTTCGAAGGCGGTGTGCTGGCGCTGGATAACGAGCCGATGTTCGACGGGCGGTTTGTGCTTTAG	MDTQRAISHFLYYLEHHPALAGIQSAKVLLGHTADYEALVASISEQAGASPFRFSTMRLDLETTERLSQAIADSDLYIFFYDSSTLPNPRPDGPDFVRALQGVMADNWKKSLLFKDYGEYFHDTFSVIPQRIAGLNSHLIRRMSQATTLSFEDHHGSYFDTPLNSVKKWTDINGVGNYDLAPGEIATHSDTINGRVKFVGTFLSTIPFARKYGVLQSPLELWIEDSTIQKIATDVPGLEHDFNRYLDANPSNRRIEELGIGTNEGVKSLYARNAGFEERHCGLHLGLGGGAKGSHHLDLIFEGGVLALDNEPMFDGRFVL	PGPT0020940_2010	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020940-pepS|ampP|ampT-K19689	NA	NA
D1-36_01291	138			hypothetical protein	ATGCAAGCACTGGACAAAGACTTGGAAACCGAACTGCAACTGGACGAATGGTTCGAGGCACCGACCCATGAAGCCGCCGTTGAAATGATGCAAGCCGATGCCGTCGTTCCGTTCGGCACGGCGATGTGGCCTCTGTAA	MQALDKDLETELQLDEWFEAPTHEAAVEMMQADAVVPFGTAMWPL				NA	NA	NA	NA	NA
D1-36_01292	1419	aroP	COG1113	Aromatic amino acid transport protein AroP	ATGAGTGGACAAAACTCGCATTCGGGCGAGCTGAAACGCGGCCTGAAAAATCGCCACATTCAACTGATCGCCCTTGGTGGCGCGATCGGCACCGGCTTGTTCCTCGGCTCGGCGGGGGTGCTGAAATCAGCCGGCCCGTCGATGATCCTCGGTTATGCCATTTGCGGCTTCATCGCCTTCATGATCATGCGCCAGTTGGGCGAAATGATCGTCGAAGAGCCGGTGGCCGGCTCCTTCAGCCATTTCGCCCACAAGTACTGGGGCGGTTTCGCCGGGTTCCTGTCGGGTTGGAATTGCTGGATTCTGTATATCCTGGTGGGCATGTCCGAGCTGACCGCGGTCGGCAAGTACATCCATTATTGGGCCCCCGATATCCCGACCTGGGCGTCGGCGGCGGCGTTTTTCATCCTGATCAATGCGATCAACCTGGCCAACGTCAAGGTCTTCGGCGAGGCCGAGTTCTGGTTCGCGATCATCAAGGTCGTGGCGATTGTCGGCATGATTGCCCTGGGTAGCTATCTGCTGGTGAGCGGTGACGGCGGCCCGCAAGCGTCGGTGACCAACCTCTGGTCCCACGGAGGGTTCTTCCCCAATGGCGTGAGCGGGCTGGTCATGGCGATGGCGATCATCATGTTCTCCTTCGGCGGCCTGGAGATGCTCGGGTTCACCGCGGCTGAAGCCGACAAGCCGAGAACCGTGATCCCCAAGGCCATCAACCAGGTGATCTACAGGATCCTGATCTTCTACATCGGTGCCTTGGTGGTGCTGTTGTCCCTGACGCCATGGGACAGCCTGCTGACCACGCTCAACGCCTCGGGCGACGCCTACAGCGGCAGCCCGTTCGTGCAGGTGTTCTCGATGCTGGGCAGCGACACCGCGGCGCACATCCTCAACTTCGTGGTGCTGACCGCTGCACTGTCGGTGTACAACAGCGGCACCTACTGCAACAGCCGCATGTTGCTGGGCATGGCCGAGCAGGGCGATGCGCCCAAGGCGCTGGCGAAAATCGACAAGCGGGGCGTGCCGGTGCGTTCGATCCTGGCTTCGGCGGCGATCACGCTGGTGGCGGTTCTGCTGAACTACCTGATCCCGCAGCATGCGCTGGAGTTGTTGATGTCGTTGGTGGTCGCCACGCTGGTGATCAACTGGGCAATGATCAGCTACTCGCACTTCAAGTTCCGTCAGCACATGAACCAGACTGGCCAGGCGCCTTTGTTCAAGGCGTTGTGGTATCCGTATGGCAACTACGTCTGCCTGGCTTTCGTGGTGTTCATCCTCGGCGTGATGTTGCTTATCCCCGGCATTCAGATCTCGGTCTACGCGATTCCGGTGTGGGTGGTGTTCATGTGGGTGTGCTATGTGATCAAGAACAAGCGCGAGGCTCGGCATGAGCTCGCTGTGGCGGCTGCCGCCAAGTAA	MSGQNSHSGELKRGLKNRHIQLIALGGAIGTGLFLGSAGVLKSAGPSMILGYAICGFIAFMIMRQLGEMIVEEPVAGSFSHFAHKYWGGFAGFLSGWNCWILYILVGMSELTAVGKYIHYWAPDIPTWASAAAFFILINAINLANVKVFGEAEFWFAIIKVVAIVGMIALGSYLLVSGDGGPQASVTNLWSHGGFFPNGVSGLVMAMAIIMFSFGGLEMLGFTAAEADKPRTVIPKAINQVIYRILIFYIGALVVLLSLTPWDSLLTTLNASGDAYSGSPFVQVFSMLGSDTAAHILNFVVLTAALSVYNSGTYCNSRMLLGMAEQGDAPKALAKIDKRGVPVRSILASAAITLVAVLLNYLIPQHALELLMSLVVATLVINWAMISYSHFKFRQHMNQTGQAPLFKALWYPYGNYVCLAFVVFILGVMLLIPGIQISVYAIPVWVVFMWVCYVIKNKREARHELAVAAAAK	PGPT0020807_78	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020807-aroP-K11734	NA	NA
D1-36_01293	414	arfB	COG1186	Peptidyl-tRNA hydrolase ArfB	ATGCTTGTCATCTCCAATACCGTGCACATCCCGGACGCCGAGATCGAGCTGACGGCCATTCGCGCCCAGGGCGCCGGTGGGCAGAACGTCAACAAGGTTTCCAGCGCCGTGCACCTGCGGTTCGATATTCCGGCCTCGTCGTTGCCCGAGTTCTACAAGGAACGGCTGCTGGCCCTGCGCGACAGTCGCATTACCAGCGACGGGGTGTTGATCATCAAGGCCCAGCAGTACCGCACGCAGGAACAGAACCGGGCGGACGCACTGGAGCGCCTTGTCGAACTGATCCTCAGCGCTACCAAGATCGAAAAGAAACGCCGTCCGACCAAACCGACCCTGGGCTCGAAAAAGCGTCGCCTCGAATCCAAGACCAAACGCGGCTCGATCAAGGCCGGACGCGGCAAGGTGGATTTCTAG	MLVISNTVHIPDAEIELTAIRAQGAGGQNVNKVSSAVHLRFDIPASSLPEFYKERLLALRDSRITSDGVLIIKAQQYRTQEQNRADALERLVELILSATKIEKKRRPTKPTLGSKKRRLESKTKRGSIKAGRGKVDF	PGPT0013740_337	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927	NA	NA
D1-36_01294	1200	yhhS_1		putative MFS-type transporter YhhS	ATGCCAGATTCCCAGCGCCCCATGGCGGTCACGCTGCAAGTCGTTTCCATTGTCCTGTTTACCTTCATCGGCTATCTGAACATCGGCATTCCCTTGGCCGTGTTGCCCGGATTCGTCCACGGTGAGCTGGGATTCGGCGCGGTGATCGCCGGACTGGTGATCAGCGTCCAGTATTTGGCTACTCTGCTCAGCCGTCCTTATGCGGGACGCATCATCGACAACCTCGGCAGCAAGCGCGCGGTCATGTTCGGCCTGGCCGGGTGTGGTTTGAGCGGCGTGTTCATGCTGGTTTCTGCCTGGACCGCCGGCATGCCGGTCCTGAGCCTGACCAGCCTGTTGATCGGTCGCCTGGTGCTGGGCAGCGCGGAAAGCCTGGTGGGCTCGGGCTCGATTGGCTGGGGCATCGGCCGGGTCGGCGCGGCGAATACCGCCAAGGTCATCTCGTGGAACGGCATCGCCAGCTACGGCGCGCTGGCGATCGGCGCGCCGTTGGGGGTTTGGCTGGTGAAATCCCTGGGGCTTTGGAGCATGGGCGTCAGCATCCTCCTGCTGGCCGTGCTCGGGCTGGCGTTGGCCTGGCCAAAAACCGCGGCCCCCATCGTCGTCGGCGAACGCCTTCCGTTCATGCATGTGCTGGGGCGAGTATTACCCCACGGCTGCGGCCTGGCCCTGGGCTCCATCGGTTTCGGCACCATCGCCACCTTCATTACCCTGTATTACGCCACGCAGCATTGGGACAACGCGGTGCTGTGCCTGAGCCTGTTCGGTGCCTGCTTCATTGGTGCGCGCCTGCTGTTCGGCAATTTGATCAACCGCCTCGGCGGGTTCAGGGTCGCGATCGCCTGCCTGTCGGTGGAAACCCTGGGCTTGTTGCTGTTGTGGCTGGCGCCGGATGCGCAGTGGGCCCTGGCAGGCGCGGCGTTGAGCGGTTTCGGCTTTTCCCTGGTGTTCCCGGCGTTGGGCGTGGAAGCGGTCAACTTGGTGCCGGCCTCCAGCCGTGGAGCCGCGGTGGGGGCTTATTCGCTGTTCATCGATTTGTCGCTGGGCATCACCGGACCACTGGCCGGGGCAATCGCCGCCGGTTTCGGCTTTGCCTCGATTTTCCTGTTCGCTGCGCTGGCGGCCCTGGGTGGGCTGGGCCTGAGCGTCTACCTGTACCGGCAGGCCCCTCGCTACCGCGAAGAGCGGGAGAAGAACTAG	MPDSQRPMAVTLQVVSIVLFTFIGYLNIGIPLAVLPGFVHGELGFGAVIAGLVISVQYLATLLSRPYAGRIIDNLGSKRAVMFGLAGCGLSGVFMLVSAWTAGMPVLSLTSLLIGRLVLGSAESLVGSGSIGWGIGRVGAANTAKVISWNGIASYGALAIGAPLGVWLVKSLGLWSMGVSILLLAVLGLALAWPKTAAPIVVGERLPFMHVLGRVLPHGCGLALGSIGFGTIATFITLYYATQHWDNAVLCLSLFGACFIGARLLFGNLINRLGGFRVAIACLSVETLGLLLLWLAPDAQWALAGAALSGFGFSLVFPALGVEAVNLVPASSRGAAVGAYSLFIDLSLGITGPLAGAIAAGFGFASIFLFAALAALGGLGLSVYLYRQAPRYREEREKN				NA	NA	NA	NA	NA
D1-36_01295	249			hypothetical protein	ATGCGCTTTCCACACCGCCTGAATCCGAGCCCCACCATGACCGACGAAACTTCCTCCTTCAGCCCGGCCCAGGCCAGCGTGTTGATCGGCACAGCCGAAAAAATGGTCGAGATCTGGACCCGCCTCTCTCCCGAGAAACAGGCCGCCCTGCTGGCGCGGTTCGGCACGCAGGAAAATGCCTTGGCCGCACTGGTCACCACGCACCTGGTCGCTGGCAAGACCACACCTGAATCTCCGTCCGGCAAATAG	MRFPHRLNPSPTMTDETSSFSPAQASVLIGTAEKMVEIWTRLSPEKQAALLARFGTQENALAALVTTHLVAGKTTPESPSGK				NA	NA	NA	NA	NA
D1-36_01296	144			hypothetical protein	ATGCACGAGATTCCTAATCTCCCCTTCCCTAGCCTGCACGAACCTGAGCAGACGACCCCGCTACAAGCCGGAGGGCAACCCGCCTCCCAGCAAACCGAGCCGCAGCAAGCCACTGAACGCCGTCAGGCCGACAGCGAAGACTGA	MHEIPNLPFPSLHEPEQTTPLQAGGQPASQQTEPQQATERRQADSED				NA	NA	NA	NA	NA
D1-36_01297	1686	ctpH		Methyl-accepting chemotaxis protein CtpH	ATGCAGTTGCGAGAGCAGCCCCAGGACATGGACGTCCTTTTATTCGAAGAGATCGATTCCATGTTTGTACAAAAATCCCTGAGAGCCCAGATTCTGGCTCTCCTGAGCGGCAGCCTGCTGGCGATGCTGTTGATCGCCCTGGCGTCCTTTCACTTTCTTTCCGATGGCATCCACAATTATCGAAACCTCATCGATGGCCCTTTGCGCGCCTCGCAGTTGATCGACGAGGCCAACCTGCAATTCAAGGTGCAGGTCCAGGAGTGGAAAAACGTTCTGTTGCGCGGCAAGCAGCCGGCAGAGTTGGAAAAATACTGGAAGGAGTTCGACGATCGCCAGCGCGATGTCCAGAACCTTTTGGGTGAGTTGATCAAGCATGACGGTGTTCCGGCACCGATCAGGACACGCATCGAACGTCTGCAAAGCGAGCACGCACAACTGGGCGCCGCCTATCAAAAAGGCCGTGATGCGTTTGTCGCCTCTGGCGCAGACGCCGCGGCGGGGGATGCGGCGGTCAAGGGCTTCGACCGTGCCGCCAGTGACCAGATGAGCGAGTTGGTGGTGGAGCTGCATAAATTGGGCAATGAGCAATCGGCGCTGATCAGTGCCGGTGCTGATCGCACGATCCTGCTGGGCACCGTGATCATGCTGGTCTCGGCTTTGCTGGTCGGCATGCTGAGTCTCTGGCTGGTCAACCGCAACCTGGTGCAGCCAATCCGTAACCTCATCGAATACGTGACTCAACTGAGCCGTGGGCGTTTCGCCGAGCGTGTATCGAGCACGCGTCAAGATGAACTGGGCGACCTGGCCCTCGCGGCAAATACGCTGCGTGACTTCCTCGCTGAAACCTTCAACCGCCTGCAACGCAGCGCCACGGAGCTGGACAGCGCCAGCGGCGAGCTCAACGCCATCGCCAGCCTGATGAGCCAGGGCACCAGCGAGCAATTCGAACGCACCGATCAAGTGGCGACCGCGATGAATGAAATGTCCGCTACCGCCCAGGAAGTCGCCCGCCATGCCGCCGACGCGGCGCGGGCGGCCGATGATGCCGATCACTCGGCACAGTTGGGCGAGAAGGTCATGCACGGCACCATCCACACCATCACCCAGATGCGCGGCGAGATTGCGAACACCGCCACGGTGATCCGTCGCCTGGAAACCGACAGCGGGCGCATCGGCAAGGTGCTGGAAGTGATTCGCGGGATCGCCGAACAGACCAACCTGCTGGCCCTCAACGCCGCCATCGAAGCGGCCCGGGCCGGTGAAGCCGGGCGCGGTTTTGCGGTGGTGGCCGATGAGGTGCGCAGCCTGGCCCAGCGTACGGCGGCGTCCATCATCGAGATCAACCAGATCATCCAGACGGTACAAACCGGTGCGGTGGACGCGGCCCAGGCCATTGAAAGCGGGCAGTCGCGCAGCGAGGAAAGTGTCGAGCAAGTGACCCAGGCCGGCGAAATGCTCGAACGCATTACCCAGGCCGTCGAAGCGATTCGCGACATGAACCGCCAGATTGCCACGGCGGCCGAAGAGCAGACCTCCGTGGCTGAGGACATCTCGCGCAACCTGACTGAAATCACCTGTATCGCCAGCACCAACCTGGATAACGTCCAGCGTACCGAAGCGGCCAGTCGGGATTTGCAAGGGTTGTCGGGCCAACTGAACGAAGTGACGGCGCGGCTGAGTGCCTGA	MQLREQPQDMDVLLFEEIDSMFVQKSLRAQILALLSGSLLAMLLIALASFHFLSDGIHNYRNLIDGPLRASQLIDEANLQFKVQVQEWKNVLLRGKQPAELEKYWKEFDDRQRDVQNLLGELIKHDGVPAPIRTRIERLQSEHAQLGAAYQKGRDAFVASGADAAAGDAAVKGFDRAASDQMSELVVELHKLGNEQSALISAGADRTILLGTVIMLVSALLVGMLSLWLVNRNLVQPIRNLIEYVTQLSRGRFAERVSSTRQDELGDLALAANTLRDFLAETFNRLQRSATELDSASGELNAIASLMSQGTSEQFERTDQVATAMNEMSATAQEVARHAADAARAADDADHSAQLGEKVMHGTIHTITQMRGEIANTATVIRRLETDSGRIGKVLEVIRGIAEQTNLLALNAAIEAARAGEAGRGFAVVADEVRSLAQRTAASIIEINQIIQTVQTGAVDAAQAIESGQSRSEESVEQVTQAGEMLERITQAVEAIRDMNRQIATAAEEQTSVAEDISRNLTEITCIASTNLDNVQRTEAASRDLQGLSGQLNEVTARLSA	PGPT0015710_21031	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_01298	1023	zntB_1	COG0598	Zinc transport protein ZntB	ATGAACCACAGCATCGACCAAAGCCATCGCGACCCGGATCTGTTCGGCCTGCTCTACGGATTCAGCTTCCGCCCCGGCGAGCGCGGGCGAGAGATCGGTTCGGCCCAGGCCCTGCAAAGCCTGCAGCAACCCCAGGATCCTGATGAATTCCTCTGGTTGCACTTGAACCTCGCCCACGCCGCGTGCGAGCGCTGGATGAAAAATCACCTGGCCTTGCCCCAAGAGTTCTTCGAAGCCTTGCACGAAGGCTCGCGCTCGACCCGCATCGAGCACGTGGATTCGGCCTTGCTCGCGGTGGTGAACGACGTCGTATTCAACCTCAGCAACATGGTGTCTTCGGATGTGTCCACGTTATGGGTTTGCGTGAGCAGTCGGCTGATCGTCAGCGCACGGTTGCAGCCCTTGCACTCGGTCGACAAGCTGCGCTCATCGGTCAAGGCCGGGGAAAGCTTTCGCTCGCCACTGGAATTGCTCGTGCATTTGCTGCGCGACCAGGGCGAGGTACTGACCCAGATCGTGCGCAAGACCAGCCTCAGCGTCGACCAGATCGAGGACCAGTTGCTGTCTTCGCGGGTCTCGACCAACCGCGCCGAACTGGGCAGCCAACGCCGGGTGCTGGTGCGCCTGCAACGCCTGTTGGCGCTGGAACCGGGGTCGTTGCTGCGACTGCTCAATCGCCCGCCGCAATGGTTGCAGAAAGAAGACGTCAAGGAGCTGCGCAAATCCACCGAGGAGTTCGCCCTGATCATCAACGACCTCACCGCGTTGGGCGAGCGGATCAAGCTGTTGCAGGAAGAAATCGCCGCCAACCTCAACGAACAAAGCAACCGCACACTGTTCACCCTGACGGTGGTCACGGTGCTGGCACTGCCGATCAACATCATCGCCGGTTTCTTCGGCATGAATGTCGGTGGCGTGCCGCTGGCGAGCGATCCCGAGGGTTTCTGGATCCTGGTGGCGCTGGTCGCCACCTTCACACTGTTCGCCGGCCGCTGGGCGTTTCGCAAGCGGCGCGATTATTGA	MNHSIDQSHRDPDLFGLLYGFSFRPGERGREIGSAQALQSLQQPQDPDEFLWLHLNLAHAACERWMKNHLALPQEFFEALHEGSRSTRIEHVDSALLAVVNDVVFNLSNMVSSDVSTLWVCVSSRLIVSARLQPLHSVDKLRSSVKAGESFRSPLELLVHLLRDQGEVLTQIVRKTSLSVDQIEDQLLSSRVSTNRAELGSQRRVLVRLQRLLALEPGSLLRLLNRPPQWLQKEDVKELRKSTEEFALIINDLTALGERIKLLQEEIAANLNEQSNRTLFTLTVVTVLALPINIIAGFFGMNVGGVPLASDPEGFWILVALVATFTLFAGRWAFRKRRDY	PGPT0004205_255	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ZINK_RESISTANCE	ZINK_RESISTANCE-ZNT_TRANSPORT_SYSTEM,PGPT0004205-zntB-K16074	NA	NA
D1-36_01299	306			hypothetical protein	ATGAAAACTTTGACTGCCCTGTTCACCGCTGCTGCCCTGACCCTCACCGCTGGCCTTGCCCAGGCTGATGTTCGCGTCGACCAGATTCCTCAATTGGTAAAGGAAGGCAAGATCAAATCCCTGGAATCGATGAATGCCGAAGCCCTGAAGTTGCACCCGGGCGCGACCATCACCGATACCGATTTGGATAATCACTTCAACGGCTACGAATATGAAGTGGAACTGCGCGACGCCAAAGGTCAAGAATGGGATGTAGACTTTGACGCCACCACTGGTAAAGTTCTGAGCAACAAGCAAGATAATTAA	MKTLTALFTAAALTLTAGLAQADVRVDQIPQLVKEGKIKSLESMNAEALKLHPGATITDTDLDNHFNGYEYEVELRDAKGQEWDVDFDATTGKVLSNKQDN				NA	NA	NA	NA	NA
D1-36_01300	1128	glpQ	COG0584	Glycerophosphodiester phosphodiesterase	ATGCCCCTCACCTTTACTCGTAGCGCCCTGATGTTGAGCCTGTTGCTCGGACTCGGTCCGACACATGCCGCCGAGGCGCCGCAACCCAAAGCCCTGGCGAACCGTCAGGGCATTCCACATCCAGCGGTCATCGCCCATCGCGGCGCATCGTTCGACGCACCGGAATCCACCGCCGCCGCCTACAAGTTGGCCCGCGACCTGGGTGCCGACTACCTTGAGCTCGACCTGCAACGCAGCAAGGACGGCGTTCTGTTCGTCTTGCACGACGACAGCCTGCTGCGCACTACCGATGTCGCGACCAAGTTTCCAGAACGCAAGGACAGCACCGCCAACGCCTTCACCATGGCCGAACTCAAGACGCTGGACGCCGGCAGCTGGTTCAACGCGGCCTACCCGGACCGTGCGCGGCCTTCCTTCGTTGGCTTGAAAATCCTTACGCTGGACGAAGTCATCAACATCGCCGAGGGCAACCCTCAGCAAAAGCCAGGGCTGTACATCGAGACCAAGGAGCCCAAGCTGTTTCCCGGCATCGAGCGCGACCTGAAGGATAAATTGCAGGACCGAGGCTGGCTGAGCCCATCCGGCTCCAAGCTGGCCAAGCGCGCCCTCGGCGTGGGCCAGGGCAAAGGCAAAGTGGTCTTGCAGACCTTCGAGAAAAGCAGCCTGGAACTGCTGCACAAGGAAATGCCGAAGGTTCCGAAAATCCTGCTGCTGTGGGTGGGCGAAGGCAACATCGAGCCTAAATCCAAAGTGACGTTCGCCGAGTCCGGTGAAACCGACAAAGCCGTGTACTACGCCAAGCAAGAGCCCAAGGACAAGGGCGAGTTCGAGCAATGGGTCCAGTACGCCAAGACCCACGGCGCCATCGGCACCGGCCCTTCGGCGGCGTTGACCCATGGCGGGAGCCAGAGCTATGCGGACCTGGTGAAACCGTGGATGAACCAGTACACCCACGACCAGGGTTTGCTGGTACATGTCTACACCGTGGATGAGCCGGTGGACTTCAAGAAAGTGATGGATGCCGGCGTGGATGGCATTTTCACCAATCGGGCCAGTGAGTTGCTCAAGTACTTCAAGCGTCCCGAAACAGGAACCGTGGCGCAACTACTGAAGAAGAACGGTTACTGA	MPLTFTRSALMLSLLLGLGPTHAAEAPQPKALANRQGIPHPAVIAHRGASFDAPESTAAAYKLARDLGADYLELDLQRSKDGVLFVLHDDSLLRTTDVATKFPERKDSTANAFTMAELKTLDAGSWFNAAYPDRARPSFVGLKILTLDEVINIAEGNPQQKPGLYIETKEPKLFPGIERDLKDKLQDRGWLSPSGSKLAKRALGVGQGKGKVVLQTFEKSSLELLHKEMPKVPKILLLWVGEGNIEPKSKVTFAESGETDKAVYYAKQEPKDKGEFEQWVQYAKTHGAIGTGPSAALTHGGSQSYADLVKPWMNQYTHDQGLLVHVYTVDEPVDFKKVMDAGVDGIFTNRASELLKYFKRPETGTVAQLLKKNGY	PGPT0018470_1585	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_PHOSPHODIESTERASE_ACTIVITY,PGPT0018470-glpQ|ugpQ-K01126	NA	NA
D1-36_01301	315	yqjZ	COG2329	putative protein YqjZ	ATGAGCGCCCATTATTACGCCGTGATTTTCACTTCCCTGCGTACCGCCGGAGACCAAGGCTACGCCGAAGCCGCCGAGCACATGTTGAACCTTGTCCAGGAGCAACCCGGATTTCTCGGCATCGAATCAGCCCGTGGCGACGACGGCCTGGGAATTACCGTGTCCTATTGGCGCGATGAAGCTGCAATCCTGGCGTGGAAGCAGCATCCCGAACACAGCGCGATCCGTGAGCGAGGCCGCGCCACCTGGTATGCCCATTGCCAGACGAGGGTGTGCAAAGTCGAACGGGACTATGCCTTCCAACGCCAGACTTGA	MSAHYYAVIFTSLRTAGDQGYAEAAEHMLNLVQEQPGFLGIESARGDDGLGITVSYWRDEAAILAWKQHPEHSAIRERGRATWYAHCQTRVCKVERDYAFQRQT	PGPT0013170_364	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799	NA	NA
D1-36_01302	711	pyrG_1		CTP synthase	ATGGATAAACAACGTCCTTTAAACATCGCCCTGATCGGCGATCACGACCCTCAAATCACCGCTCACCGGGCGATCCCCCTCGCACTCGAGCTCGCGGGCAAGCAAACCAGCCATGAAATCCGGTTTCAATGGCTGGGAACGTCGCACATCACCAACACCGCCGTGCTGGAGGATTTCGACGGTGTCTGGTGCGTACCCGGCAGCCCGTACCAACATGAAGAAGGGGCCTTACGGGCCATTCGTTTTGCCCGCGAACAGCATCGGCCTTTCCTCGGCACCTGCGGCGGTTTTCAACATGCGGTGCTGGACTACGCCCGCAACGTGATGGGCTGGGCCGACGCCGTCCACGGCGAAACTTCTCCCGAAGCTGAACGGGCACTGTTGACGCCGCTGAGCTGTGCGCTGGTGGAAACCATCGACAGCCTTCAACTCGATGCGGAGTCGTTGATTGCCAAGGCTTACGGCCGTCGGACGGTATCGGAGGGCTACCATTGCCGTTTCGGCGTCAACCCGGATTTGGAAAAGGATTTGTTGAATCAGCGGCTGCACGCCGTTGCCCGGGATTCGGCCGGCGGCCTGCGAGCGGTTGAACTTCAAGGCCATCCGTTTTTTGTCGCGACGCTGTTCCAGCCTGAACGCGCAGCATTGGAAGGCCGCGTGCCGCCGCTGGTAAGCGCGTTTGTCGAAGCCTGCGCGGAGCAAACGCCATGA	MDKQRPLNIALIGDHDPQITAHRAIPLALELAGKQTSHEIRFQWLGTSHITNTAVLEDFDGVWCVPGSPYQHEEGALRAIRFAREQHRPFLGTCGGFQHAVLDYARNVMGWADAVHGETSPEAERALLTPLSCALVETIDSLQLDAESLIAKAYGRRTVSEGYHCRFGVNPDLEKDLLNQRLHAVARDSAGGLRAVELQGHPFFVATLFQPERAALEGRVPPLVSAFVEACAEQTP	PGPT0021215_5922	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021215-pyrG-K01937	NA	NA
D1-36_01303	948	argP_1		HTH-type transcriptional regulator ArgP	TTGTTGATTCCTGGTGGCCACTATAGATTGGCGTTCACGCAATCAATATTGGCGTTCACCCAAGTGATCAATGCAGCGGCGCACTATCGTCTGGACTACCCCGATCTATCCCTGATCCTCGCGCTGGTCCGTGGCGGCTCGCTGTCCCGGGCCGCTCGCCTCCTGCAGGTGGACGTGTCCACGGTGTTTCGTTCGGTACGTCGGCTGGAGGCGGCCTTGGGCCTGCCCTTGTTTGAAAAAAGCCGCTCTGGATATTTGCCCACGAGCCTGGCCCAGGCGTTGGCCGAACAAGCCGAGCGCGCCGAGCAGGCGTTGGAGGCGGCGCGAGTGGGCGTGGAGCAGGGCGGTGAGGTGATTAGCGGGACGGTACGCCTGACCTGCAGCGACTCAGTCCTGCAAACGTTGTTGCTGCCGGCGCTGGCGCGTTTCATGCCCGCTTATCCGGCGTTGAGTCTTGAGTTGAGCACTTCGAACGACTTCGCCAACCTCAGCCGCCGCGATGCCGACATTGCGTTGCGACTGACCCGTACACCGCCGGAACACCTGGTCGGTCGCAACCTGGGCCATGTGGCTTACCGGGTATGCGCCGGCGCTACGTATCTTCGCGCGGCGTATGCGGATGACCTGGCCGCCATGACCTGGATCGCACCGGACGATTTCCTCCCCGACCACCCCACGGTGGCCTGGCGTCGCCAGCATCTACCCGGCGTAGTGCCTGCCTATCGCTGCAACAGCATGCTGTCGGTCACCGAACTGGTGAGGGCAGGTCTGGGGGTTGCGGCGCTGCCTGACTTTCTGATCAATGAAGATAAAGGACTGATCCCACTTGGCGAACCGTTGAAGGGCTATGACACGGCTTTGTGGCTTCTGACCCGACCGGACTGCCGGGCCCTGCGCTCGGTGGTGACCTTGTTCGATGAATTGGGGCGCAATTTGCGGTGGGGCTGA	MLIPGGHYRLAFTQSILAFTQVINAAAHYRLDYPDLSLILALVRGGSLSRAARLLQVDVSTVFRSVRRLEAALGLPLFEKSRSGYLPTSLAQALAEQAERAEQALEAARVGVEQGGEVISGTVRLTCSDSVLQTLLLPALARFMPAYPALSLELSTSNDFANLSRRDADIALRLTRTPPEHLVGRNLGHVAYRVCAGATYLRAAYADDLAAMTWIAPDDFLPDHPTVAWRRQHLPGVVPAYRCNSMLSVTELVRAGLGVAALPDFLINEDKGLIPLGEPLKGYDTALWLLTRPDCRALRSVVTLFDELGRNLRWG				NA	NA	NA	NA	NA
D1-36_01304	609	slmA		Nucleoid occlusion factor SlmA	ATGACCGCACCGCAGCGCCTTACCGAGCGAAAACGCGAAGCCATTCTCCAGGCCGCGATTGCTGAATTCCGCAACAGCGGTTTCGAAATCACCAGCATGGACAAGATCGCGGCGACGGCAGGCGTGTCGAAGCGCACGGTGTACAACCACTTCCCAAGCAAGGAAGAACTGTTTGCCGAAATCCTGAATCGGTTATGGAACAGCATCACCGCAGAACAGGACATGCCCTACAGCCCGCAAACGCCGCTACGGGAGCAGCTTCAAACGTTGCTGCAAGCCAAACTGCAATTGCTGGCGAACGAGAATTTTCTCGACCTGGCGCGCATCGCCATCGCCGCAACCATTCATTCCCCGGAGCGAGCCCAGGACATGGTGTCGCGCATGGGGCAGCGCGAGGAAGGCCTGACTGCCTGGATTCGCCAAGCCCAGGCCGATGGCCGCTTGAAACCCGTGGAGCCGGCATTTGCCGCCCAACAGATGCACGGGTTGCTCAAGACGTTTGCGTTCTGGCCACAGGTGTCGATGGGGCAACCGAGCCTGACCAAGGAGGAACAAACCCACGTGATCGAATCGGCCCTCGACATGTTCCTGAATCGGTACCAAGCCTGA	MTAPQRLTERKREAILQAAIAEFRNSGFEITSMDKIAATAGVSKRTVYNHFPSKEELFAEILNRLWNSITAEQDMPYSPQTPLREQLQTLLQAKLQLLANENFLDLARIAIAATIHSPERAQDMVSRMGQREEGLTAWIRQAQADGRLKPVEPAFAAQQMHGLLKTFAFWPQVSMGQPSLTKEEQTHVIESALDMFLNRYQA				NA	NA	NA	NA	NA
D1-36_01305	1059		COG2220	putative protein	ATGACCCATCCCTCTTGTTCGACCAACCATCCTCCTGCCCATGAGTCCTCGCGGCAAGACCAGGGCAAATATCGCAACCATGCCTTCACGCCGCGTGAAGGATTTGGCACGACCCTGCGCATCATCTGGAACATGATTTTCCACAAGCCCCGCTCCACCCGTCCTGCGGGCGCCATCGATGTACAACCGTTGACTCGAGCCGCGCTGCTGGCCGCGCCGAACCACAGCGCCTTCCGCCTCGGTCATTCCACGGTGCTGCTCAAGCTGCGGGACAAGTTCTGGCTGACCGACCCGGTGTTCTCCGAGCGTGCTTCACCCGTGCAATGGGCCGGCCCGAAGCGTTTTCATCAACCACCCATCAGCCTGGAAGAATTGCCGCCGATCGAAGCGGTGATTCTGTCCCACGATCATTACGACCACCTCGACCATCAAGCCATTCTCAAGCTGGCGGCCAAGACCCGTCACTTCCTGGCGCCCCTGGGCGTGGGCGACACTCTGGTCAAATGGGGCGTCGACGCCGGCAAGGTGCGCCAGTTGGACTGGTGGCAGGGCACCGAGGTGGACGGTATCGATTTCATCGCCACGCCTTCCCAACATTTTTCCGGTCGAGGCCTGTTCGACAGCAACAGCACCTTGTGGGCCTCATGGGTAATGATCGATGGTGACACGCGAATCTTCTTCAGCGGCGACACCGGTTACTTCGAAGGTTTCAAGCGCATCGGCGAGCAATACGGCCCTTTTGACCTGACGCTGATGGAAACCGGCGCCTATAACGTGGATTGGCCCCATGTCCATATGCAGCCGGAGCAGACCTTGCAGGCCCATATCGATCTCAAGGGCCGTTGGCTACTGCCAATCCACAACGGCACATTCGACCTGGCGATGCATGCCTGGTATGAGCCTTTCAATCGCATCCTGGCCCTGGCCGCGGAACGCAACGTTTGTATCACCACGCCGCAAATGGGCGAAGCCTTCACCCTGACGCAACCGCAACGTGGCCGCGCCTGGTGGCTGGATGTGGAACCCTCGGCGTACCAGGACCAAGCGGGTATCGCCTAG	MTHPSCSTNHPPAHESSRQDQGKYRNHAFTPREGFGTTLRIIWNMIFHKPRSTRPAGAIDVQPLTRAALLAAPNHSAFRLGHSTVLLKLRDKFWLTDPVFSERASPVQWAGPKRFHQPPISLEELPPIEAVILSHDHYDHLDHQAILKLAAKTRHFLAPLGVGDTLVKWGVDAGKVRQLDWWQGTEVDGIDFIATPSQHFSGRGLFDSNSTLWASWVMIDGDTRIFFSGDTGYFEGFKRIGEQYGPFDLTLMETGAYNVDWPHVHMQPEQTLQAHIDLKGRWLLPIHNGTFDLAMHAWYEPFNRILALAAERNVCITTPQMGEAFTLTQPQRGRAWWLDVEPSAYQDQAGIA				NA	NA	NA	NA	NA
D1-36_01306	318			hypothetical protein	ATGGCCTCTCTCGCAATCAAAACCACCCTGGAACGCATCGCTGTCTATCAATTCACCCCCGCCCACAGTGCGCAGGCCCGAGCCATGCTGGGCTGGAGCGTCGAGGAGCTGTCCCGGCAATCCGGTGTATCGGTCCAGGCCATCCGCCGCTTCGAGGCTGGTGGCGAGTTGCTCGATGTGACCCGCTTGGCCCTGGCCTTTCGCCTGGAGGCCGAGGGCCTGGTGTTCTTCCCCGGCTTCGCACCGGGGCGCGGCATGAACATCAAGGGTGCGACGCCGGACCCGATGGGGCGGCCTGATTACGCGATGATCGAATAA	MASLAIKTTLERIAVYQFTPAHSAQARAMLGWSVEELSRQSGVSVQAIRRFEAGGELLDVTRLALAFRLEAEGLVFFPGFAPGRGMNIKGATPDPMGRPDYAMIE				NA	NA	NA	NA	NA
D1-36_01307	984			hypothetical protein	ATGAAATTCGACACCGCCTATTGCCTCAGCCTCGATGCCAAGCTTTCGATCTATGACGTTCGGGACCTGAATTTCGACGAGACCATGGCCTTCGATTCGGCCAAGGAGCGCTTTCAGTGCCCCAACGATGCCTGTCGGGCGGCGTTTGATGAGGGGAATCGGCTGACGACGTTCAATGCCAAGAACGTCAATTACATCCGCACGCCGCATTTCAAGAATCAGCCGACGACCCAGCATATCGAAGGCTGCCCTTATGTCAGTCCGAAAACGCCAGGGCTTGATGCGCAAAGCGTTGAAGCAGATGACGACCGCGAGGAGCATTTTCCGTCGGAGTTGTTACTGACTCGGCGTCAGTACGTGCGCAAGCCGTCCGCCCCGTCTGACAACGTTGAAGCGAATCGGCCTACGCTCTCATCCGTATCTTCCCACGGTGATAACGCTCATTCCGCGCAGGATTCAACACCGGACAAAACCAGTGTCTTCGCCCACCCGGTGGAATGTTTCGTTTCGAATTTCGATAACAAGGACCTGCTCAAGCGCATGCCGTTGAAGATTGGCGAGCACACTGCGCCCTACGGATCGTTCTTCAAGAAGATCGAGTATTTGCAGGACAATAAGGGCTTGATTTACTGGGGCAAGATCAAGGAGATAAAGGATTACACCCTGAGCTTTCGCATCGACTTCGAAGCAAAGGTCTGGTTCAAGCAGCCGGACGAGGCGAAGAAAAAACCTTACTCGGTCAACGTTTACCTGAGCAAGAAGCTGATCGATAACTACCGCAAGCGCAAGGCGTTCCTGGCAGAGATCAAGCACGCCATCGACAGTGATGCGCCGTTGTATTGCTTCTTTTATGGCGTCACGCCGGAGTTGAGGCAGGTGCCGAGCAAGAAGAACCCCGAAGAAACGTTCGGGGTGTTCAGTGCCAATATCGAGAACCTGGATCACTTCATTATTCGGGAGGCGCCGGGGTTGGCTGAAGACTGA	MKFDTAYCLSLDAKLSIYDVRDLNFDETMAFDSAKERFQCPNDACRAAFDEGNRLTTFNAKNVNYIRTPHFKNQPTTQHIEGCPYVSPKTPGLDAQSVEADDDREEHFPSELLLTRRQYVRKPSAPSDNVEANRPTLSSVSSHGDNAHSAQDSTPDKTSVFAHPVECFVSNFDNKDLLKRMPLKIGEHTAPYGSFFKKIEYLQDNKGLIYWGKIKEIKDYTLSFRIDFEAKVWFKQPDEAKKKPYSVNVYLSKKLIDNYRKRKAFLAEIKHAIDSDAPLYCFFYGVTPELRQVPSKKNPEETFGVFSANIENLDHFIIREAPGLAED				NA	NA	NA	NA	NA
D1-36_01308	426			hypothetical protein	ATGAAAGAGAACACGGGTGAACGACGCAGGGCGATCATTGACGACATCGTCATGCAACATGTGACAGGGACCCAAACCCTGGGAACCTCTATTCGCCGGCTGAGACTTGAGGTTACTGGTCTCGACCAAGAGACGTTCGCAGTTATGTGCAAGATGTCGACAAAGGCTCTCTACCAGATCGAAAAGGACAAGGGTAATCCGAGCATCAGCACCCTCGACGCGATCCTGAGAAAGTTTGGACTGCGCTTGGGGTTGATGGCTGCTGTACCTCTTTACACGCCGCCACCCCGACCGCAAAAACCGGACCCCAAAGCGCCCGCTCGCGGCGCCAACCCTAAACGAAAGTCCACAGAGCAGCCCGGTAGAGTTGCTACTCTCAGAGCCACTAAAAAGGTAAAGGGTGGCGAGAATGGCCCAGGCGAATGA	MKENTGERRRAIIDDIVMQHVTGTQTLGTSIRRLRLEVTGLDQETFAVMCKMSTKALYQIEKDKGNPSISTLDAILRKFGLRLGLMAAVPLYTPPPRPQKPDPKAPARGANPKRKSTEQPGRVATLRATKKVKGGENGPGE				NA	NA	NA	NA	NA
D1-36_01309	261			hypothetical protein	ATGGCCCAGGCGAATGAGCGAAGACGGTGTATGAGCGAACAGGTTCAAGTAACCCTGCACGAAGCGAGGTCCCAGCTCTTACAACTGGGTGCGCGTGCATGGCAGGGCGACAGAGTGGTGATCACCAAGGCCGGCAAGCCTTATCTGGATCTGCTGCCTCATGTCGATACACCGCAGGCGCGCAAGCCTGGGCGGTTAAAGGGGCAGATTCGGATGCCGGCGGATTTCGACCGCACCCCTGAGGACATCCTCAAGGGTTGA	MAQANERRRCMSEQVQVTLHEARSQLLQLGARAWQGDRVVITKAGKPYLDLLPHVDTPQARKPGRLKGQIRMPADFDRTPEDILKG				NA	NA	NA	NA	NA
D1-36_01310	279			hypothetical protein	ATGACGAAAAAGATAAGAAGTGAGGCCTTCGAGTCGATTCACAGCTCGGCCGAAGCGCTGCTGAAAATCGGCGCTATCAACGAGGTCACCATGCGAGAGTTCGACGAGGCGTGCATGGCTGAGGTATCTGCTGAAATCTCAGATCAAGAGGATTTACCTACAGTCAGAGCCGGCACTCAACCCTTGAGGATGTCCTCAGGGGTGCGGTCGAAATCCGCCGGCATCCGAATCTGCCCCTTTAACCGCCCAGGCTTGCGCGCCTGCGGTGTATCGACATGA	MTKKIRSEAFESIHSSAEALLKIGAINEVTMREFDEACMAEVSAEISDQEDLPTVRAGTQPLRMSSGVRSKSAGIRICPFNRPGLRACGVST				NA	NA	NA	NA	NA
D1-36_01311	1248	nrdB	COG0208	Ribonucleoside-diphosphate reductase subunit beta	ATGCTGAGCTGGGACGAATTCGACAAAGAAGACGGCGAAGTTGCCGTAAAAGGCGCCAACGCCGGCCACGCTTCTGAAGCCAACATGGACCGCCTCGACAGCGCCGGCGGTGCCGCCGCCCTCGAAGCCCGCGCCGTGACGGCCAGCGACTCGGCCGCGATCATTCGCGCCAAGGCGGCCCTCGACAAACTCGACGTCGCCGAAGGCCTCGCCGAACTCGAAGGCGCCTCCGCCCGTGTCGCCGTCGATGAAAAGCGCATGATCAACTGCCGCGCCGACCTCAACCAGCTCGTGCCATTCAAATACGACTGGGCCTGGCAGAAGTACCTGGACGGCTGCGCAAACCACTGGATGCCGCAAGAAGTCAACATGACCGCCGACATCGCCCTCTGGAAAAACCCGGAAGGCCTGACCGACGACGAACGCCGCATCGTAATGCGCAACCTGGGCTTCTTCTCTACCGCCGACTCCCTGGTTGCCAACAACCTGGTCCTGGCCGTGTACCGCCTGATCACCAACCCGGAATGCCGCCAGTACATCCTGCGCCAGGCGTTCGAAGAGGCGATCCACACCCACGCCTACCAGTACTGCATCGAATCGCTGGCCATGGATGAAGGCGAAATCTTCAACATGTACCACGAGATCCCATCGGTCGCGAAGAAAGCCGCCTGGGGCCTGAAATACACCCGTTCGATCTCCGATCCGAAGTTCGAAACCGGCACCCCGGAAACCGACAAAGAGCTGCTGCGCAACCTGATCGCCTACTACTGCGTTCTGGAAGGCATCTTCTTCTACTGCGGCTTCACCCAGATCCTGTCCATGGGCCGCCGCAACAAAATGACCGGCGTCGCCGAGCAGTTCCAGTACATCCTGCGCGACGAATCCATGCACCTGAACTTCGGCATCGACGTGATCAACCAGATCAAAATCGAAAACCCACACCTGTGGGACGCCGAGATGAAGGAAGAAGCGACCCAGATGATCCTGCAAGGGACCCAACTGGAAATCGAATACGCCCGCGACACCATGCCTCGCGGCGTGCTGGGCATGAACGCGGCGATGATGGAGGACTACCTCAAGTTCATCGCTAACCGTCGTCTGTCGCAGATTGGCTTGAAGGAAGAGTATCCAGGAACGACCAACCCGTTCCCTTGGATGAGCGAGATCATGGACTTGAAGAAAGAGAAGAACTTCTTTGAGACTCGGGTGATTGAGTATCAGACGGGTGGGGCTTTGAGCTGGGATTGA	MLSWDEFDKEDGEVAVKGANAGHASEANMDRLDSAGGAAALEARAVTASDSAAIIRAKAALDKLDVAEGLAELEGASARVAVDEKRMINCRADLNQLVPFKYDWAWQKYLDGCANHWMPQEVNMTADIALWKNPEGLTDDERRIVMRNLGFFSTADSLVANNLVLAVYRLITNPECRQYILRQAFEEAIHTHAYQYCIESLAMDEGEIFNMYHEIPSVAKKAAWGLKYTRSISDPKFETGTPETDKELLRNLIAYYCVLEGIFFYCGFTQILSMGRRNKMTGVAEQFQYILRDESMHLNFGIDVINQIKIENPHLWDAEMKEEATQMILQGTQLEIEYARDTMPRGVLGMNAAMMEDYLKFIANRRLSQIGLKEEYPGTTNPFPWMSEIMDLKKEKNFFETRVIEYQTGGALSWD	PGPT0021345_194	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021345-nrdB|nrdF-K00526	NA	NA
D1-36_01312	264			hypothetical protein	ATGAAAGCTTTATGGGTTCTGGTCCTCGGCAGCCTCTGCACCACCGCGATGGCTGACGAAACCCCGACCGATCTCGCGCAGCAAAAACCGGCTATCGAGGAGTACACCTACTCCAGCCACTTGGACATTGCCAAGGTCCTTTCCATGAGCACGATCCCGAACGTTTGCGAAGTGGTCCCGGCAACAATGGAATACGAAGACTCCAAGGGCCAACGCCACATCCTGCGCTACCGCGTCCTGGGCAACGGTTGTTCCGACAGCTGA	MKALWVLVLGSLCTTAMADETPTDLAQQKPAIEEYTYSSHLDIAKVLSMSTIPNVCEVVPATMEYEDSKGQRHILRYRVLGNGCSDS				NA	NA	NA	NA	NA
D1-36_01313	1956	acs	COG0365	Acetyl-coenzyme A synthetase	ATGAGTGCGGCTTCTGTGTATCCCGTTCGTCCCGAGGTAGCGGCCAATACGCTGACTGACGAGGCGACCTACAAGGCCATGTACCAGCAGTCGGTCGTCAACCCGGACGGCTTCTGGCGCGAGCAGGCCAAGCGCCTCGATTGGATCAAGCCTTTCACCACGGTGAAGCAGACTTCTTTCGACGACCACCATGTCGACATCAAGTGGTTTGCCGATGGCACCTTGAACGTTTCCTATAACTGCCTCGACCGACACCTGGCCGAGCGCGGCGATCAAGTCGCGATCATCTGGGAAGGCGACGATCCTTCCGAGAGCCGCAATATCACCTATCGCGAGCTGCACGAAGAAGTCTGCAAGTTCGCCAACGCCTTGCGCGGGCAGGACGTGCATCGTGGCGACGTGGTGACCATCTACATGCCGATGATCCCTGAAGCCGTGGTTGCGATGCTGGCCTGTACCCGCATCGGCGCGATTCACTCGGTGGTATTCGGTGGCTTCTCTCCCGAGGCCCTGGCCGGTCGGATCATCGACTGCAAATCCAAAGTGGTGATCACCGCCGACGAAGGCATTCGTGCTGGCAAGAAAATCCCGCTCAAGGCGAACGTTGACGATGCGCTGACCAACCCGGAAACCAGCAGCATCCAGAAAGTCATCGTGTGCAAGCGCACGGCGGGCAACATCAAGTGGAACCAGCACCGCGACATCTGGTACGAGGACCTGATGAAGGTCGCCGGCACCGTATGCGCGCCGAAGGAAATGGGCGCCGAAGAGGCCCTGTTCATCCTCTACACCTCCGGTTCCACCGGCAAGCCCAAGGGCGTGCAGCACACCACGGCTGGCTACTTGTTGTACGCCGCGCTGACCCATGAGCGGGTGTTCGACTACAAGCCAGGCGAGATCTACTGGTGCACCGCCGACGTGGGCTGGGTCACCGGCCACAGCTACATCGTCTATGGCCCGCTGGCCAACGGCGCGACCACGGTGCTGTTCGAGGGCGTGCCGAACTACCCGGACATCACCCGGGTGGCCAAGGTGATCGACAAGCACAAGGTCAATATTCTCTACACCGCGCCTACCGCTATTCGCGCGATGATGGCCTCTGGCACCGCCGCCGTCGAAGGCGCCGATGGCAGCAGCCTGCGCCTGCTGGGTTCGGTGGGTGAGCCAATCAACCCGGAAGCGTGGGATTGGTACCACAAGAATGTCGGCAAGGAGCGTTGCCCGATCGTCGATACATGGTGGCAGACCGAAACGGGCGGTGTGCTGATCAGCCCGTTGCCAGGCGCTACGGCGCTGAAGCCAGGTTCCGCTACTCGGCCGTTCTTCGGTGTGGTGCCGGCACTGGTGGACAACCTCGGCAACCTGGTCGAAGGCGCTGCCGAAGGCAACCTGGTGATCCTCGATTCGTGGCCAGGCCAGGCGCGTACCCTGTACGGCGACCATGACCGTTTTGTCGATACCTATTTCAAGACCTTCAGCGGCATGTATTTCACCGGCGACGGTGCGCGTCGCGACGAGGACGGCTACTACTGGATCACCGGCCGGGTGGATGACGTACTCAACGTGTCGGGTCACCGCATGGGCACCGCCGAGATCGAGAGCGCAATGGTCGCCCACCCGAAAGTCGCCGAAGCGGCGGTCGTGGGTGTGCCGCATGACATCAAGGGGCAGGGCATTTATGTCTACGTCACCCTCAATGCCGGCGAAGAAACCAGCGAGGCCCTGCGTCTGGAACTGAAGAACTGGGTGCGCAAGGAGATCGGTCCGATTGCTTCGCCGGACGTGATCCAATGGGCACCGGGACTGCCGAAGACCCGTTCCGGCAAGATCATGCGCCGCATCCTGCGCAAGATTGCCACGGCGGAATACGACGGTTTGGGTGATATTTCCACCCTGGCCGATCCGGGTGTGGTGGCGCACCTGATCGAGACGCACAAGACCATGAACGTCGCCTGA	MSAASVYPVRPEVAANTLTDEATYKAMYQQSVVNPDGFWREQAKRLDWIKPFTTVKQTSFDDHHVDIKWFADGTLNVSYNCLDRHLAERGDQVAIIWEGDDPSESRNITYRELHEEVCKFANALRGQDVHRGDVVTIYMPMIPEAVVAMLACTRIGAIHSVVFGGFSPEALAGRIIDCKSKVVITADEGIRAGKKIPLKANVDDALTNPETSSIQKVIVCKRTAGNIKWNQHRDIWYEDLMKVAGTVCAPKEMGAEEALFILYTSGSTGKPKGVQHTTAGYLLYAALTHERVFDYKPGEIYWCTADVGWVTGHSYIVYGPLANGATTVLFEGVPNYPDITRVAKVIDKHKVNILYTAPTAIRAMMASGTAAVEGADGSSLRLLGSVGEPINPEAWDWYHKNVGKERCPIVDTWWQTETGGVLISPLPGATALKPGSATRPFFGVVPALVDNLGNLVEGAAEGNLVILDSWPGQARTLYGDHDRFVDTYFKTFSGMYFTGDGARRDEDGYYWITGRVDDVLNVSGHRMGTAEIESAMVAHPKVAEAAVVGVPHDIKGQGIYVYVTLNAGEETSEALRLELKNWVRKEIGPIASPDVIQWAPGLPKTRSGKIMRRILRKIATAEYDGLGDISTLADPGVVAHLIETHKTMNVA	PGPT0002265_3113	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ACETATE_UTILIZATION,PGPT0002265-acs-K01895	NA	NA
D1-36_01314	774	argT_2	COG0834	Lysine/arginine/ornithine-binding periplasmic protein	ATGAAGAAACTTGTGCTGCTTGGCGCCCTGGCACTGTCCGTGCTGTCCCTGCCGACCTTCGCTGATGAGAAGCCCCTGAAAATCGGTATCGAAGCCGCTTACCCTCCGTTTGCCTCCAAGGCTCCGGACGGCAGCATCGTCGGCTTCGACTACGACATCGGCAATGCGCTGTGTGAAGAGATGAAGGTCAAGTGCGTGTGGGTCGAGCAAGAGTTCGACGGCCTGATTCCGGCGCTCAAGGTACGCAAGATCGACGCGATCCTGTCGTCGATGTCGATCACTGAAGATCGCAAGAAATCCGTTGATTTCACCAACAAGTACTACAACACCCCGGCCCGTCTGGTGATGAAGGCCGGCACCCAGGTCAGCGACGGCCTGGCCGAGCTCAAGGGCAAGAACATTGGCGTGCAGCGCGGTTCGATTCACGAGCGTTTCGCACGTGAAGTCCTGGCCCCGCTGGGTGCCGAGATCAAGCCGTACGGTTCGCAGAACGAGATCTACCTGGACGTCTCCGCCGGTCGCCTCGACGGCACCGTGGCCGACGCCACGCTGTTGGATGACGGTTTCCTGAAGACTGACGCGGGCAAAGGCTTTGCGTTTGTTGGCCCGGCCTTCACCGATGTCAAATACTTCGGTGACGGCGTGGGTATCGCGGTTCGCAAAGGTGACGCGTTGAAAGACAAGATCAACACTGCAATCGCTGCCATTCGCGAGAACGGCAAGTACAAGCAGATCCAGGATAAATACTTCGCCTTCGACATCTACGGCAAGTAA	MKKLVLLGALALSVLSLPTFADEKPLKIGIEAAYPPFASKAPDGSIVGFDYDIGNALCEEMKVKCVWVEQEFDGLIPALKVRKIDAILSSMSITEDRKKSVDFTNKYYNTPARLVMKAGTQVSDGLAELKGKNIGVQRGSIHERFAREVLAPLGAEIKPYGSQNEIYLDVSAGRLDGTVADATLLDDGFLKTDAGKGFAFVGPAFTDVKYFGDGVGIAVRKGDALKDKINTAIAAIRENGKYKQIQDKYFAFDIYGK	PGPT0020680_314	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020680-aotJ-K10022	NA	NA
D1-36_01315	690	hisQ_1	COG4215	Histidine transport system permease protein HisQ	ATGTTGAAAGGCTACGGGGCTGTCATCCTCGATGGCGCATGGTTGACGCTTCAGCTCGCCTTGTCGTCCATGGCCCTGGCCATCGTCCTGGGGTTGATTGGTGTCGCGCTGCGCCTCTCGCCGGTCCGTTGGCTGGCGTGGCTGGGCGACCTGTATTCGACGGTAATCCGCGGCATTCCGGACCTGGTGTTGATCCTGCTGATTTTCTACGGCGGCCAGGACTTGCTCAACCGTGTGGCGCCGATGCTTGGCTATGACGACTACATCGACCTGAATCCGCTGGCGGCCGGTATCGGCACCCTGGGTTTCATCTTCGGCGCGTACCTGTCGGAAACCTTCCGCGGCGCGTTCATGGCCATCCCCAAGGGCCAGGCGGAGGCGGGCATGGCGTACGGCATGAGTGGGTTCCAGGTGTTTTTCCGGGTGATGGTGCCGCAGATGATCCGACTGGCGATCCCGGGCTTCACCAACAACTGGTTGGTACTGACCAAGGCCACCGCGCTGATTTCCGTGGTGGGCCTGCAAGACATGATGTTCAAGGCCAAGCAGGCGGCGGATGCCACCCGCGAGCCTTTCACCTTCTTCCTCGCAGTGGCGGCGATGTACCTGGTGATCACCAGCGTTTCGTTGCTGGCATTGCGTCACCTTGAGAAGCGCTACTCGGTAGGCGTAAGGGCGGCTGATCTATGA	MLKGYGAVILDGAWLTLQLALSSMALAIVLGLIGVALRLSPVRWLAWLGDLYSTVIRGIPDLVLILLIFYGGQDLLNRVAPMLGYDDYIDLNPLAAGIGTLGFIFGAYLSETFRGAFMAIPKGQAEAGMAYGMSGFQVFFRVMVPQMIRLAIPGFTNNWLVLTKATALISVVGLQDMMFKAKQAADATREPFTFFLAVAAMYLVITSVSLLALRHLEKRYSVGVRAADL	PGPT0020690_215	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020690-aotQ-K10024	NA	NA
D1-36_01316	699	occM_2		Octopine transport system permease protein OccM	ATGATCTTCGACTACAACGTCATCATTGAAGCCTTGCCGCTGTACTTCAACGGCTTGCTGACCACCCTGAAGCTGTTGGCCTTGTCGCTGTTCTTCGGCCTGTTGGCGGCGCTGCCCCTGGGGCTGATGCGGGTGTCCAAGCAGCCGGTCGTCAACATGACGGCGTGGCTCTACACCTATGTGATTCGCGGCACGCCGATGCTGGTGCAGTTGTTCCTGATCTATTACGGGCTGGCGCAGTTCGCCGTCGTGCGCGAAAGCTTCCTCTGGCCGTGGCTGTCCAGCGCGACGTTCTGTGCGTGCCTGGCGTTCGCCATCAATACCAGCGCCTACACCGCCGAAATCATCGCCGGCAGCCTGCGGGCCACGCCCAACGGTGAGATCGAGGCGGCCAAGGCGATGGGTATGTCGCGCTACAAGCTGTATCGCCGGATCCTGCTGCCCTCGGCCCTGCGCCGGGCGCTGCCGCAATACAGCAACGAAGTGATCATGATGCTGCAGACCACCAGTCTCGCGTCCATCGTCACCTTGATCGACATCACTGGTGCCGCGCGCACGGTGAATGCGCAGTACTACTTGCCGTTCGAGGCCTACATCACGGCCGGCGTGTTCTACCTGTGCCTGACCTTCATCCTGGTGCGCCTGTTCAAGCTGGCCGAGCGCCGCTGGCTGGGTTACCTGGCCCCGCGCAAGCACTGA	MIFDYNVIIEALPLYFNGLLTTLKLLALSLFFGLLAALPLGLMRVSKQPVVNMTAWLYTYVIRGTPMLVQLFLIYYGLAQFAVVRESFLWPWLSSATFCACLAFAINTSAYTAEIIAGSLRATPNGEIEAAKAMGMSRYKLYRRILLPSALRRALPQYSNEVIMMLQTTSLASIVTLIDITGAARTVNAQYYLPFEAYITAGVFYLCLTFILVRLFKLAERRWLGYLAPRKH	PGPT0020685_201	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020685-aotM-K10023	NA	NA
D1-36_01317	765	hisP_1	COG4598	Histidine transport ATP-binding protein HisP	ATGTACAAGCTTGAAGTCCAAGACCTGCATAAACGCTATGGCAGTCACGAAGTGCTCAAGGGCGTGTCCTTGAAAGCCGCCGCCGGCGATGTGATCAGCATCATCGGCTCCAGTGGCTCCGGCAAGAGTACCTTCCTGCGTTGCATCAACCTGCTTGAGCAACCCCATGCCGGCAAGATCTTGCTCAACAACGAAGAGTTGAAGCTCGTAGCAGGCAAGGACGGCGCCATGAAGGCCGCGGACCCAAAGCAACTGCAGCGCATGCGTTCGCGGTTGTCGATGGTGTTCCAGCACTTCAACTTGTGGTCCCACATGACCGCCCTGGAAAACATCATGGAAGCGCCGGTGCATGTATTGGGCGTGGCCAAGGCCGAAGCGCGGGAGAAGGCCGAGCACTACCTGAACAAGGTCGGCGTGGCCCATCGCAAGGACGCCTACCCAGGCCACATGTCCGGCGGCGAGCAGCAGCGCGTGGCGATCGCCCGGGCGCTGGCGATGGAGCCGGAGGTGATGCTGTTCGATGAGCCGACTTCGGCCCTCGACCCTGAATTGGTGGGCGACGTGCTCAAAGTGATGCAGGCGTTGGCGCAGGAAGGCCGGACCATGGTGGTGGTGACTCATGAAATGGGCTTTGCCCGCGAAGTGTCGAACCAGTTGGTATTCCTGCACAAAGGCATCGTTGAAGAAAGCGGCAACCCACGGGAAGTGCTGGTCAACCCGCAATCGGAGCGCCTGCAACAATTTCTGTCGGGCAGCCTCAAGTAA	MYKLEVQDLHKRYGSHEVLKGVSLKAAAGDVISIIGSSGSGKSTFLRCINLLEQPHAGKILLNNEELKLVAGKDGAMKAADPKQLQRMRSRLSMVFQHFNLWSHMTALENIMEAPVHVLGVAKAEAREKAEHYLNKVGVAHRKDAYPGHMSGGEQQRVAIARALAMEPEVMLFDEPTSALDPELVGDVLKVMQALAQEGRTMVVVTHEMGFAREVSNQLVFLHKGIVEESGNPREVLVNPQSERLQQFLSGSLK	PGPT0020695_170	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020695-aotP-K10025	NA	NA
D1-36_01318	981	cdhR_2	COG4977	HTH-type transcriptional regulator CdhR	ATGACTGCCCATCGAATAGGTTTCCTGATTTGGCCCAGCACTAAAGCCTTGACGCTGGCGCTGGCCGAGGAGGCCTTGCGTGTCGCCCAGCGCGTGCATCCGGACGTGGTCTACGAATTGTCGTTCCTGCAAGCCGAGCCACCGGCCGAGGGCGCTTGGCAGTTACCCGGTGAATCCTGGGTCGGCAAGCTCGAAGGTCTTCAGAAACTGTTTCTGGTGGCCGACGAGCCACCAACGACGCTGGCCTCGCCGCTGAGCAGCGCCCTCAAGCAATTGGTGCGCGCGGGTTGCGTCATCGGCGGTTTGTCCGCTGGCGTCTATCCGCTGGCGCAGTTGGGTTTGCTCGATGGCTATCGAGCTGCCGTTCACTGGCGCTGGCAAGATGACTTCTCCGAGCGCTTCCCCAAGGTCATCGCCACCAGCCATTTGTTTGATTGGGACCGTGATCGCCTGAGCGCTTGCGGCGGCATGTCGGTGCTTGATCTGCTGTTGGCGGTGCTGGCCCGGGACCACGGCGCCGAACTGGCTGGCGCGGTGTCGGAAGAACTGGTGGTCGAGCGCATCCGTGAAGGCGGCGAGCGCCAGCGTATTCCGTTGCAGAACCGCTTGGGTTCCAGTCATCCGAAGCTCACCCAGGCCGTGCTGTTGATGGAAGCCAACATCGAAGAGCCGTTGACCACCGACGAGATCGCCCAACATGTGTGCGTGTCCCGCCGGCAGCTGGAGCGGATCTTCAAGCAGTACCTCAATCGCGTGCCGAGCCAGTATTACCTGGAGCTGCGCCTGAACAAGGCCCGGCAGATGTTGATGCAGACCAGCAAATCCATCATCCAGATCGGCCTGTCCTGTGGTTTCTCCTCGGGGCCACACTTCTCCAGCGCCTACCGCAACTTCTTCGGCGCGACACCGCGGGAAGATCGCAACCAGCGGCGTAGCAGCAGCCCGTTCGAATTGTCCTCGGTGCCGTCCGAGCGCGGCTAA	MTAHRIGFLIWPSTKALTLALAEEALRVAQRVHPDVVYELSFLQAEPPAEGAWQLPGESWVGKLEGLQKLFLVADEPPTTLASPLSSALKQLVRAGCVIGGLSAGVYPLAQLGLLDGYRAAVHWRWQDDFSERFPKVIATSHLFDWDRDRLSACGGMSVLDLLLAVLARDHGAELAGAVSEELVVERIREGGERQRIPLQNRLGSSHPKLTQAVLLMEANIEEPLTTDEIAQHVCVSRRQLERIFKQYLNRVPSQYYLELRLNKARQMLMQTSKSIIQIGLSCGFSSGPHFSSAYRNFFGATPREDRNQRRSSSPFELSSVPSERG	PGPT0021945_231	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARNITHINE_USAGE	PLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021945-cdhR-K17736	NA	NA
D1-36_01319	1221	aruC	COG4992	Succinylornithine transaminase/acetylornithine aminotransferase	ATGTCCGTTGAGCAAGCCGCGGTACAACGCGCCGATTTCGACCAGGTGATGGTTCCCAACTATGCACCTGCAGCCTTCATTCCTGTGCGTGGTGCCGGTTCGCGCGTGTGGGACCAGTCCGGTCGCGAGCTGATCGACTTTGCGGGCGGTATCGCGGTCAACGTACTGGGCCATGCCCACCCGGCGCTGGTCGGTGCACTGACCGAGCAGGCCAATAAGCTGTGGCACGTATCGAACGTGTTCACCAACGAGCCAGCCCTGCGCCTGGCGCATAAACTGGTCGATGCGACCTTCGCCGAGCGCGCATTCTTCTGCAACTCCGGCGCCGAAGCCAACGAGGCCGCTTTCAAGCTGGCCCGCCGGGTCGGGTTCGATCGGTTCGGCAGCGAAAAATATGAAATCATCGCCGCGCTCAACAGTTTCCACGGCCGGACGCTGTTCACCGTCAACGTAGGCGGACAGTCGAAGTACTCCGATGGTTTCGGCCCTAAAATCACGGGCATCACCCACGTACCTTACAACGACCTGGCGGCTCTGAAAGCGGCGGTCTCGGACGAGACCTGCGCTGTGGTGCTGGAACCCATCCAAGGCGAGGGCGGTGTGTTGCCGGCCGAGTTGGCCTACCTGCAGGGCGCCCGTGAACTGTGCGATGCACACAACGCACTGCTGGTTTTCGACGAAGTGCAGACCGGCATGGGCCGTAGCGGCGAGCTGTTCGCCTACATGCATTACGGCGTGGTCCCGGACATCCTCACCAGCGCCAAGAGCCTGGGCGGCGGTTTCCCGATCGCGGCGATGCTCACCACCGAAGCGCTGGCCAAGCACCTTGTCGTCGGCACCCACGGCACCACCTACGGCGGCAACCCGCTGGCCTGCGCGGTGGCCGAAGCGGTAATCGATGTGGTCAATACCCCTGAAGTGCTCAATGGCGTCAAGGCCAAGCACGACAAATTCAAGACCCGGCTGTTGCAGATCGGCGAGAAGTACGGCCTGTTCACCCAAGTGCGTGGCCTGGGTCTGCTGATCGGTTGCGTGCTGAACGACGCCTGGAAGGGCAAGGCCAAGGACATCTTCAACGCCGCCGAACAGGAAGGCCTGATGATCCTGCAAGCCGGCCCGGACGTGATCCGCTTCGCTCCGAGCCTGGTGGTGGAAGACGCCGACATCGACGCCGGCCTGGACCGCTTCGAGCGGGCCGCGGTGAAGTTGACCCAAGGCTGA	MSVEQAAVQRADFDQVMVPNYAPAAFIPVRGAGSRVWDQSGRELIDFAGGIAVNVLGHAHPALVGALTEQANKLWHVSNVFTNEPALRLAHKLVDATFAERAFFCNSGAEANEAAFKLARRVGFDRFGSEKYEIIAALNSFHGRTLFTVNVGGQSKYSDGFGPKITGITHVPYNDLAALKAAVSDETCAVVLEPIQGEGGVLPAELAYLQGARELCDAHNALLVFDEVQTGMGRSGELFAYMHYGVVPDILTSAKSLGGGFPIAAMLTTEALAKHLVVGTHGTTYGGNPLACAVAEAVIDVVNTPEVLNGVKAKHDKFKTRLLQIGEKYGLFTQVRGLGLLIGCVLNDAWKGKAKDIFNAAEQEGLMILQAGPDVIRFAPSLVVEDADIDAGLDRFERAAVKLTQG	PGPT0014253_993	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014253-argD|pqqI-K00821	NA	NA
D1-36_01320	1020	astA_1	COG3138	Arginine N-succinyltransferase subunit alpha	ATGCTGGTGATGCGCCCCGCGCAAATGGCTGATCTGGGCGAGGTACAGCGTCTGGCTGCGGACAGTCCGATCGGTGTCACTTCCTTGCCGGATGACGTGGAACGCTTGAGCGACAAGATCGCCGCAAGCGAGGCCTCGTTTGCCGCCGAAGTCAGCTTCAATGGTGAAGAAAGTTATTTCTTCGTTCTCGAAGACACCGCCACCGGCAGATTGGCCGGCTGTTCGGCCATTGTCGCTTCGGCGGGTTATTCCGAACCGTTCTACAGCTTCCGCAACGAGACCTTCGTCCACGCTTCCCGTGAGCTGAAGATCCACAACAAGATCCACGTACTCTCCCAGTGCCACGACCTGACCGGCAATAGCTTGCTGACCAGCTTCTACGTGGTCCCGGAACTGGTGGGTTCGCCGTGGTCGGAGCTGAACTCGCGCGGGCGTCTGCTGTTTGTCGCCAGCCACCCGGAGCGTTTCGCCGATTCGGTGGTGACCGAGATCGTCGGCTATAGCGACGAAAACGGCGACTCGCCATTCTGGGACGCCATCGGTCGCAACTTCTTCGACCTCAACTATGCCGCAGCCGAGCGCCTGTGCGGGTTGAAAAGCCGGACCTTCCTCGCCGAGCTGATGCCGCATTACCCGATCTACGTGCCGCTGTTACCGGATGCCGCCCAGGAAGCCATGGGCCAGGTCCACCCGCGCGCGCAGATCACCTTCGACATCCTGATGCGCGAGGGTTTCGAGACCGATCACTACATCGACATCTTTGACGGCGGCCCGACCCTGCACGCTCGCGTCTCGGGGATCCGCTCGATCGCCCAGAGCCGCGTGGTGCCGGTGAAGATCGGCGAAACCGTCAAGGGCGCCGGGCGGCAGTACCTGGTGGCCAATGCCCAACTCCAGGATTACCGCGCCGTGTTGCTCGACCTCGACTACGCGCCAGGCAAACCTGTGACGCTGGACATGGAAGCAGCCGAAGCCCTGGGTGTTGGCGAAGGCGCCAGCGTGCGCCTGGTAGCGGTTTAA	MLVMRPAQMADLGEVQRLAADSPIGVTSLPDDVERLSDKIAASEASFAAEVSFNGEESYFFVLEDTATGRLAGCSAIVASAGYSEPFYSFRNETFVHASRELKIHNKIHVLSQCHDLTGNSLLTSFYVVPELVGSPWSELNSRGRLLFVASHPERFADSVVTEIVGYSDENGDSPFWDAIGRNFFDLNYAAAERLCGLKSRTFLAELMPHYPIYVPLLPDAAQEAMGQVHPRAQITFDILMREGFETDHYIDIFDGGPTLHARVSGIRSIAQSRVVPVKIGETVKGAGRQYLVANAQLQDYRAVLLDLDYAPGKPVTLDMEAAEALGVGEGASVRLVAV	PGPT0020090_1002	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020090-astA-K00673	NA	NA
D1-36_01321	1026	aruG_1	COG3138	Arginine N-succinyltransferase subunit beta	ATGATCGTTCGTCCCGTACGCAGCAGCGATTTACCTGCTCTGATCGCCCTGGCCCGCAGCACCGGCACCGGCCTGACCACCTTGCCGGCCAATGAAGAGCGTCTGGCCCATCGGGTTGGCTGGGCCGAAAAGACCTTTCGCGGCGAAGCTGGGCGTGGCGACGCGGACTACCTGTTCGTGCTCGAAGACGATGACGGTCGCGTGGTGGGTATTTCCGCCATCGCAGGCGCCGTGGGGTTGCGTGAGCCTTGGTACAACTTCCGGGTTGGCCTGACAGTCAGTGCTTCCCAAGAGCTGAACATCTATCGGGAGATCCCGACGTTGTTCCTGGCCAACGACCTGACGGGCAATTCCGAGCTGTGCTCGCTGTTCCTCCACGCGGACTACCGCAATGGCCTCAATGGCCGGATGCTGGCGAAGGCGCGGCTGCTGTTCATCGCCGAATTCCCACAACTGTTCGGCAACAAGATCATCGCCGAGATGCGCGGCATGTCCGACGACAACGGGCGCTCGCCGTTCTGGGAAAGCCTGGGCCGGCACTTCTTCAAGATGGAGTTCAGCCAGGCCGACTACCTGACCGGGGTCGGTAACAAAGCGTTCATCGCCGAGCTGATGCCCAAGTTCCCGCTGTACACCTGCTTCTTGTCCGAGGACGCCCGGGCCGTGATCGGCCAGGTCCATCCCGACACCGAGCCGGCGCTGTCGATGCTCAAGAGCGAAGGATTCAGTTACCAGGGCTACGTCGACATCTTCGACGCTGGCCCGGCCATCGAGTGCGAGACCGGCAAGATCCGCGCGATCCGCGACAGCCAGGCGCTGGTTCTGGCCGTTGGCACGCCCGGCGATGACGCCACGCCATTTCTCATTCATAACCGCAAATGCCAGGACTGCCGCATCACGGCGGCGCCGGCGCGTTTCGCCGCGGGCACCCTGGTGGTCGATCCACTGACCGCCAAACGTCTTCAACTCAACGCTGGCGACCAGGTGCGTGCCGTGGCGTTGTCTGCCGCTCGGGAGTCGAAATAA	MIVRPVRSSDLPALIALARSTGTGLTTLPANEERLAHRVGWAEKTFRGEAGRGDADYLFVLEDDDGRVVGISAIAGAVGLREPWYNFRVGLTVSASQELNIYREIPTLFLANDLTGNSELCSLFLHADYRNGLNGRMLAKARLLFIAEFPQLFGNKIIAEMRGMSDDNGRSPFWESLGRHFFKMEFSQADYLTGVGNKAFIAELMPKFPLYTCFLSEDARAVIGQVHPDTEPALSMLKSEGFSYQGYVDIFDAGPAIECETGKIRAIRDSQALVLAVGTPGDDATPFLIHNRKCQDCRITAAPARFAAGTLVVDPLTAKRLQLNAGDQVRAVALSAARESK	PGPT0020090_818	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020090-astA-K00673	NA	NA
D1-36_01322	1467	astD	COG1012	N-succinylglutamate 5-semialdehyde dehydrogenase	ATGAAATCGTTGTACATCGCTGGAAGTTGGCTGGAAGGCCAGGGCGACGTCTTTGAGTCGTTGAACCCGGTGACCCAGCAAGTGCTGTGGTCTGGAAAAGGCGCGACGGCGGCGCAGGTGGAGTCCGCCGTGCAGGCGGCGCGCCAGGCATTCCCGGACTGGGCGCGACGCTCGCTGGATGAGCGCATCCAGGTGTTGGAAGCGTTCGCCGACACCCTGAAGACGCACGCTGACGAATTGGCCCGTTGCATTGGTGAGGAAACCGGCAAGCCCTTGTGGGAAGCCGCCACCGAAGTCACCAGCATGATCAACAAAGTCGCCATCTCAGTGCAGAGCTACCGCGAGCGCACCGGCGAGAAAAGCGGCCCTCTGGGCGACGCTACCGCCGTGCTGCGCCACAAGCCCCACGGTGTGGTGGCGGTGTTCGGTCCTTACAACTTCCCTGGTCACTTGCCCAACGGGCACATTGTGCCTGCGCTGCTGGCGGGCAATTGCGTGTTGTTCAAGCCCAGTGAGCTGACGCCGAAAGTCGCCGAGTTGACGGTCAAGTGCTGGGCGGAGGCGGGCCTGCCGGCAGGCGTGTTGAACCTGCTGCAAGGCGCGCGGGAAACCGGTATTGCCCTGGCGGCGGAACCAGGGATCGACGGGCTGTTCTTCACCGGGTCCAGCCGTACCGGCAATCTTCTGCACCAACAGTTCTCCGGTCGCCCGGACAAGATCCTCGCCCTGGAAATGGGTGGCAACAATCCGTTGGTGGTCGATGAGGTGGCCGACGTCGATGCGGCGGTGTACACCATCATCCAGTCCGCATTCATTTCCGCCGGCCAGCGCTGCACCTGCGCGCGCCGCTTGCTGGTGCCGGAAGGCGCCTGGGGCGATGCCTTGCTGGCGCGCCTGGTGCAGGTCAGCTCGACCCTCGACGTCGGGGCCTTCGACCAGCAACCGGCGCCGTTCATGGGCTCGGTGGTTTCCCTTGCCGCCGCGAAGGCTCTGATGGATGCGCAAAACCATTTACTGGGCAAGGGCGCCGTGCCGCTGTTGGCCATGACCCAGCCGCAACCCCAGGCTGCGTTGTTGACGCCAGGGATCCTCGATGTCACTGCCGTGGCCGAGCGCCCCGACGAGGAATTGTTCGGGCCGTTGCTGCAGGTCATTCGCTTCAAGGATTTCGCGGGCGCGATCAGCGAAGCCAACAATACTCAATATGGCCTGGCCGCCGGCTTGCTTTCGGATTCCCAGGAGCGCTACGAGCAGTTCTGGCTGCAAAGCCGCGCCGGTATCGTCAACTGGAACAAACAACTGACCGGCGCCGCCAGCAGCGCGCCGTTCGGCGGTGTCGGTGCCTCGGGCAACCACCGCGCCAGTGCTTATTACGCGGCGGATTATTGCGCGTATCCGGTGGCTTCCCTGGAAACGCCGAGCCTGGTCATGCCGGCGAGCCTGACGCCTGGCGTAAAAATGGTGTAG	MKSLYIAGSWLEGQGDVFESLNPVTQQVLWSGKGATAAQVESAVQAARQAFPDWARRSLDERIQVLEAFADTLKTHADELARCIGEETGKPLWEAATEVTSMINKVAISVQSYRERTGEKSGPLGDATAVLRHKPHGVVAVFGPYNFPGHLPNGHIVPALLAGNCVLFKPSELTPKVAELTVKCWAEAGLPAGVLNLLQGARETGIALAAEPGIDGLFFTGSSRTGNLLHQQFSGRPDKILALEMGGNNPLVVDEVADVDAAVYTIIQSAFISAGQRCTCARRLLVPEGAWGDALLARLVQVSSTLDVGAFDQQPAPFMGSVVSLAAAKALMDAQNHLLGKGAVPLLAMTQPQPQAALLTPGILDVTAVAERPDEELFGPLLQVIRFKDFAGAISEANNTQYGLAAGLLSDSQERYEQFWLQSRAGIVNWNKQLTGAASSAPFGGVGASGNHRASAYYAADYCAYPVASLETPSLVMPASLTPGVKMV				NA	NA	NA	NA	NA
D1-36_01323	1347	astB	COG3724	N-succinylarginine dihydrolase	ATGAAATCCTATGAAGTCAACTTTGACGGTCTGGTGGGGCCGACCCATAACTACGGCGGGCTTTCCTACGGCAACGTCGCCTCCCAGAGCAACAGCCAGCAATCTTCCAACCCCAAGGAAGCGGCATTGCAAGGCCTGGCGAAAATGAAAGCGCTGATGGACATGGGGTTCCAGCAAGGGGTGCTGGCGCCGCAGGAGCGCCCGGACGTAGCGGCTTTGCGCCGGCTGGGCTTTGCCGGCAGCGATGCCCAGGTCATCCAGCAGGCCGCCAAAGAAGCCATGCCGTTGCTCGTTGCCAGTTGCTCGGCCTCGAGCATGTGGGTAGCCAACGCCGCCACCGTCAGCCCGAGCGCCGACACGGCTGACGGTCGCGTGCATTTCACCGCCGCCAACCTCAACTGCAAATACCACCGCAGCATCGAACACCCGACCACCAGTCGCGTGCTGGGGGCGATGTTTGCCAACGCGCAACACTTCGCCCACCACGCCGCATTGCCGGCGGTGGCACAGTTCGGCGACGAAGGCGCGGCCAACCACACGCGTTTCTGTCGCGCCTATGGCGAAGCCGGTGTCGAGTTCTTCGTGTTCGGTCGCAGTGCATTCGACAGCCGTTTCCCTTCGCCACAGAAATACCCGGCGCGCCAGACCCTCGAAGCGTCCCGCGCCGTTGCCCGCCTGCACGGCTTGAGCGAAGAGGGCGTGGTCTACGCCCAGCAGAACCCGGCGGTGATCGACCAGGGGGTTTTCCACAACGACGTGATCGCAGTGGGCAATGGCGAGGTGTTGTTCTATCACGAGGATGCGTTCCTCGAGACCGACAAGATGCTGGCCGAGCTGAGCAGCAAACTCGCCAAGGTTGGTGGGAAATTTCAGTCGGTGTGTGTACCGCGTTCGGCGGTCACCGTGGATGACGCGGTGCGTTCCTACTTGTTCAACAGCCAATTGCTGTCGCGTCCCGATGGCTCGATGCTGTTGATCGTGCCGGAAGAGTGCCGCAGCAACGAACGCGTCTGGCAGTACCTGCAAGGCCTGACGGGTTCTGGCGGTGTCATCCGGGAAGTGAAGGTCTTCGACCTCAAGCAAAGCATGCAGAACGGTGGCGGCCCGGCGTGCCTGCGGTTGCGCGTGGCGTTGAACGAAACCGAGCTGGCCGCCGTCAACCCAGGGGTTATCATGACCGCGCCGCTGTACGATTCGCTGACCCAGTGGATCGAGCGCCACTACCGCGACCGCATGGCCGAAAACGACCTGGCGGACCCGCAGTTGCTGCTTGAATGCCGGTCGGCCCTGGATGAGCTGACACAAATCCTTAAACTTGGCTCGGTCTATCCTTTCCAGATCAATTGA	MKSYEVNFDGLVGPTHNYGGLSYGNVASQSNSQQSSNPKEAALQGLAKMKALMDMGFQQGVLAPQERPDVAALRRLGFAGSDAQVIQQAAKEAMPLLVASCSASSMWVANAATVSPSADTADGRVHFTAANLNCKYHRSIEHPTTSRVLGAMFANAQHFAHHAALPAVAQFGDEGAANHTRFCRAYGEAGVEFFVFGRSAFDSRFPSPQKYPARQTLEASRAVARLHGLSEEGVVYAQQNPAVIDQGVFHNDVIAVGNGEVLFYHEDAFLETDKMLAELSSKLAKVGGKFQSVCVPRSAVTVDDAVRSYLFNSQLLSRPDGSMLLIVPEECRSNERVWQYLQGLTGSGGVIREVKVFDLKQSMQNGGGPACLRLRVALNETELAAVNPGVIMTAPLYDSLTQWIERHYRDRMAENDLADPQLLLECRSALDELTQILKLGSVYPFQIN				NA	NA	NA	NA	NA
D1-36_01324	288			hypothetical protein	ATGAGCGATACCCTGCAGCTGATTCTTGAAGACACCGACGGCACGCAACTGGAAACCTCCTGCACCCGCGTCGCGGTGATGTGGCAGGGCAAGGAACTGTGGATCCAGCAGGACGGCCGTGGTCAGTTGCTGATCGGCGTCGACGTGGAGGAAGGAGACGAGGAATACGCCAACCTGCTGTTGCGTCCGTTGGCGACCAACCTGGTCAGCCTGCAACTGGAAATGGAACCGGCGGACGTCGGCGACGATGACCATGTCCATGGCCCGGATTGCGGCCACGACCATTAA	MSDTLQLILEDTDGTQLETSCTRVAVMWQGKELWIQQDGRGQLLIGVDVEEGDEEYANLLLRPLATNLVSLQLEMEPADVGDDDHVHGPDCGHDH				NA	NA	NA	NA	NA
D1-36_01325	1008	astE	COG2988	Succinylglutamate desuccinylase	ATGCTCGCCCTCGGCAAACTGCTTGAACTGACCCTCGCCGGCCGTGAACCGGCGGAGAAGACTCAACTGACTGTCGAAGGCGTACGGATGCGCTGGCTGAGCGAGGGCGCGCTGGAGGTCAAGCCGCCCGAAGCCCGGGATAATGGCCTGGACCTGCTGCTGTCGGCGGGTATCCACGGCAACGAAACCGCGCCGATCGAATTGCTTGACCGGCTGTTGCATGACATTGCCCGTGGCGACCTGAAGCCCCGGGCGCGCATTCTGTTCCTGTTCGGCAATCCCGAGGCAATCCGTCGCGGCGAGCGCTTTGTCGAGCAGGACGTCAACCGGCTGTTCAATGGTCGCCATGAGTTGAGTGGCGGGCCCGAGGCGTTGCGCGCCTGTGAGCTGGAGCGCTTGGCCGCAAGTTTTTTCAGCGTGCCGGACCGCAGCCGTCTGCACTACGACCTGCACACCGCCATTCGCGGCTCGAAGATCGAGCAGTTCGCCCTGTACCCCTGGAAAGAAGGCCGCCAGCACTCACGCCGTGAGCTGGCGCGCCTGCGCGCGGCGGGCATGGAAGCAGTGTTGCTGCAGAACAAGCCCTCCATCGTATTCAGCGCCTACACCTACGACCAGCTCGGTGCCGAGTCCTTCACCCTGGAACTGGGCAAGGCCCGGCCGTTCGGGCAAAACAACGGCGTCAACGTCAACTTGCTGGAAACCCGTCTGCAGCAGATCATCGAAGGCAATGAGCCCGAGCTGGAGGACAGCCTGGACGGCCTGCAACTGTTCAGCGTGGCGCGGGAAATCATCAAGCACAGCGACAGCTTCCGCCTGAATCTGCCCGCGGACATCGAGAATTTCTCGGAGCTGGATAAAGGCTATGTGCTGGCCGAAGACATCGCCCAGACCCGCTGGGTGATCGAAGAAGAGGGCGCCCGGATCATCTTCCCGAACCCCAAGGTGAAGAATGGTTTGCGGGCCGGCATCCTGATCGTGCCAGCGACTGACGAAAACTTGGCCTGA	MLALGKLLELTLAGREPAEKTQLTVEGVRMRWLSEGALEVKPPEARDNGLDLLLSAGIHGNETAPIELLDRLLHDIARGDLKPRARILFLFGNPEAIRRGERFVEQDVNRLFNGRHELSGGPEALRACELERLAASFFSVPDRSRLHYDLHTAIRGSKIEQFALYPWKEGRQHSRRELARLRAAGMEAVLLQNKPSIVFSAYTYDQLGAESFTLELGKARPFGQNNGVNVNLLETRLQQIIEGNEPELEDSLDGLQLFSVAREIIKHSDSFRLNLPADIENFSELDKGYVLAEDIAQTRWVIEEEGARIIFPNPKVKNGLRAGILIVPATDENLA	PGPT0020091_359	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020091-astE-K05526	NA	NA
D1-36_01326	510	ribH_1		6,7-dimethyl-8-ribityllumazine synthase	ATGCAACCCACCGCAATCGACAGCAAGACCAAAACCCATCCGGGCGAGCGCGTCGCGTTCATCCAGGCCTGCTGGCACAAGGAAATCGTCGACCAGAGCCGCAAAGGCTTCGTCGCCGAAATGATCAGCCAGGGCTACCAGGAAAGCGACATCGACTTCTTCGAAGTCGGCGGTGCCTTTGAAATCCCGCTTCACGCCAAGTTGCTGGCCAAATCCGGCCGTTACGCCGGTATCGTCGCTGCCGGCCTGGTGGTGGATGGCGGGATCTACCGCCACGAGTTTGTCGCCCAATCGGTCATCACCGGCCTGATGCAGGTCCAGTTGGAAACCGAGGTACCGGTGTTCTCGGTCGTGCTGACGCCGCATCACTTCCATGCAGGCGAAGAACACCAGAAGTTTTTCTTCGAGCACTTCGTACACAAGGGTCAGGAAGCGGCGAAGACGTGTGCCGATACGCTGCATAAGACTCGGGCGTTGCGTCGCAGTGAGCAGCGGGCGGTAGCGGTTTAA	MQPTAIDSKTKTHPGERVAFIQACWHKEIVDQSRKGFVAEMISQGYQESDIDFFEVGGAFEIPLHAKLLAKSGRYAGIVAAGLVVDGGIYRHEFVAQSVITGLMQVQLETEVPVFSVVLTPHHFHAGEEHQKFFFEHFVHKGQEAAKTCADTLHKTRALRRSEQRAVAV	PGPT0008605_767	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
D1-36_01328	1005	ltaE_1	COG2008	Low specificity L-threonine aldolase	ATGAGTGTTATCGATCTTCGCAGCGACACGGTCACCCAACCCTCCGCCGGCATGCTGGATGCCATGGCCAGCGCGCCGACCGGCGACGATGTGTATGGCGAAGACCCGACTGTCAACCGTCTCGAAGCCGAGCTCGCCGAGCGCTTGGGTTTTGCCGCGGCACTGTTCGTGCCCTCAGGCACCATGAGCAATCTGCTGGGGTTGATGGCCCATTGCGAGCGCGGCGACGAATATATCGTCGGCCAGCAAGCCCACACTTACAAATACGAGGGCGGCGGCGCGGCGGTGCTTGGTTCGATCCAGCCGCAACCTCTCGAAGTGCAGGCGGACGGCTCGTTAGACCTGGCGCACGTCGCGGCGGCGATCAAGCCCGACGATTTCCACTTTGCCCGCACGCGACTGCTAGCCTTGGAAAACACCATGCAGGGCAAGGTGCTGCCGCTGGATTACCTGGCCCGAGCCCGGCGCTTTACCCAGGAGCATGGGCTTGCCCTTCATCTGGACGGGGCACGGTTGTACAACGCCGCCGCCAAGCTGAATGTCGATGCCCGGGAAATCACCCAACATTTCGATTCGGTGTCGGTGTGCCTGTCCAAGGGGCTGGGTGCTCCGGTGGGCTCGGTGCTGTGCGGCACGGTCGAGCTGATCCGCAAGGCCCGCCGGCTGCGCAAAATGGTTGGCGGGGGGATGCGCCAGGCCGGAATCCTCGCTGCGGCGGGGCTGTATGCCCTGGACCATAACGTCCAGCGCCTGGCTGATGACCACGCCAATGCTCAGAGGCTCGCCGAAGGCTTGCGCGCGGCGGGCTACGAGGTCGAGCCGGTGCATACCAACATGGTCTACGTGCAAATGGGTGAGCGGGCCGAGGCGATCAAGGCGTTTGCCGATGAGCGGGGCGTCAAGCTCAGCGCGGCTTCACGGCTGCGAATGGTGACGCACATGGACGTGAGCGCGGCGCAAATCGATCACGTGATCACCACTTTCGTCGAATTTTCCCGCCAATGA	MSVIDLRSDTVTQPSAGMLDAMASAPTGDDVYGEDPTVNRLEAELAERLGFAAALFVPSGTMSNLLGLMAHCERGDEYIVGQQAHTYKYEGGGAAVLGSIQPQPLEVQADGSLDLAHVAAAIKPDDFHFARTRLLALENTMQGKVLPLDYLARARRFTQEHGLALHLDGARLYNAAAKLNVDAREITQHFDSVSVCLSKGLGAPVGSVLCGTVELIRKARRLRKMVGGGMRQAGILAAAGLYALDHNVQRLADDHANAQRLAEGLRAAGYEVEPVHTNMVYVQMGERAEAIKAFADERGVKLSAASRLRMVTHMDVSAAQIDHVITTFVEFSRQ	PGPT0020465_3502	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020465-ltaE-K01620	NA	NA
D1-36_01329	2622	alaS	COG0013	Alanine--tRNA ligase	ATGAAAAGCGCAGAAATCCGTGAAGCCTTCCTTCGCTTCTTCGAAGAGCAAGGCCACACCCGAGTAGCCTCCAGCTCTTTGATTCCGGGCAACGACCCGACCCTGCTGTTCACCAACGCGGGGATGAACCAGTTCAAGGACTGCTTCCTGGGCCAGGAAAAACGTGCCTACACCCGTGCGGTGAGCAGCCAGAAGTGCGTGCGCGCCGGCGGTAAGCACAACGACCTGGAAAACGTCGGCTATACCGCTCGTCACCACACGTTCTTCGAGATGCTGGGCAACTTCAGCTTCGGTGATTATTTCAAGCGTGACGCCATTACCTTTGCCTGGACGTTCCTCACGTCTGACAAATGGCTGAACCTGCCCAAGGAAAAACTTTGGGTAACGGTCTATGCCACCGACGACGAAGCCTATGACATCTGGACCAAGGACGTCGGTGTCCCGGCTGAGCGCATGGTGCGCATCGGCGACAACAAGGGTGCGCCCTACGCGTCGGATAACTTCTGGACCATGGGTGACACCGGCCCATGCGGCCCTTGCACCGAGATCTTCTACGATCACGGCGCCGACATCTGGGGTGGCCCACCGGGCTCGCCGGAAGAAGACGGTGACCGCTATATCGAAATCTGGAACAACGTCTTCATGCAGTTCAACCGCACCGCCGATGGCGTGTTGCATCCGCTGCCAGCACCGTCGGTGGACACCGGCATGGGCCTGGAGCGGATCAGCGCGGTGCTGCAGCACGTTCACTCCAACTACGAAATCGACCTATTCCAGAGCCTGCTGAGCGCGTCGGCCAAGGCCATCGGCTGCACCAACGACAACCAGGCTTCGCTGAAAGTAGTCGCTGACCACATCCGTTCCTGCGGCTTCCTGATTGCCGACGGTGTACTGCCTTCCAACGAAGGCCGCGGTTATGTGCTGCGCCGGATCATCCGCCGCGCCTGCCGCCACGGCAACAAGCTGGGCGCCAAGGGCAGTTTCTTCTATCAGATCGTCGGGGCGCTGGTGGCCGAGATGGGCGAAGCCTTCCCGGAACTCAAGACCCAACAGGCGCATATCGAGCGCGTGCTCAAGGGCGAAGAAGAGCAGTTCGCCAAGACCCTGGAGCAAGGCCTGAAGATCCTCGAGCAGGACCTGGCCGAACTCAAGGGCAACGTGGTCCCGGGCGATGTGGTGTTCAAACTGTACGACACGTACGGCTTCCCGATGGACCTGACTGGCGACATCGCCCGCGAGCGCAACCTGACCCTCGACGAGGAAGGTTTCGAGCGCGAGATGGAAGCCCAGCGTGTGCGTGCGCGCTCCGCGAGCTCCTTCGGCATGGACTACAACAGCCTGGTCAAGGTTGACGTGGCGACCGAGTTCACTGGCTACGCCGCGACCACCGGTTCGGCCAAGATCGTCGCCATCTATAAGGATGGGCAGTCGGTCGACATCCTGAGCGAAGGCCAGGAAGGCGTGATCGTGCTGGACAAGACACCGTTCTACGCCGAATCCGGCGGCCAGATCGGCGACAGCGGTTACCTGCAGGCGGGCAATTCGCGCTTCGATGTACGCGATACCACCAAGACCGGCGGTGCCTTCCTGCACCACGGCGTGCTGGCTTCCGGCAGCCTGATGATCGCCGCCCCAGTGGCCGCTCATGTCGATGCCGAGGTTCGCCACGCGACTTCCCTGAACCACTCCGCCACGCACTTGCTGCACGCAGCGTTGCGCCAGGTGCTGGGCGAGCATGTCCAGCAGAAAGGCTCCTTGGTGGACAGCCAGCGCCTGCGCTTCGACTTCAGCCACTTCGAAGCCATCAAGCCTGAGCAGATCAAGGCGCTGGAAGACATTGTCAACGCGCAGATCCGCAAGAACTCACCGGTAGAAACCGAAGAAACCGATATCGAGACCGCCAAGCGCAAGGGCGCGATGGCGCTGTTCGGCGAGAAGTATGGCGACAGTGTCCGTGTACTGAGCATGGGCGACTTCTCCGTTGAGCTGTGCGGTGGCATCCATGCCAATCGCACCGGCGACATCGGCCTGCTGAAGATCATCAGCGAAGGCGGCGTGGCCTCCGGCGTGCGACGTATCGAGGCCGTCACTGGCGCAGCGGCGCTGGCGTACCTCAACGCGGCGGAAGAACAACTCAAGGAAGCGGCCAGCCTGATCAAGGGCAGTCGCGACAACCTGATCGACAAGCTGTCGGCTGTGCTGGAGCGCAACCGCGCGCTGGAAAAGCAACTCGAGCAGTTGCAGGCCAAGGCCGCCAGCGCCGCGGGCGACGATCTGTCAGCCCAGGCCGTGGACGTCAAGGGCGTGAAAGTGCTGGCCGCGCGTCTCGACGGCCAAGACGGCAAGGCCTTGTTGGCGCTGGTCGATCAACTGAAAAACAAACTCGGCCGCGCAGTGATCCTGCTCGGCGGTGTCCATGAGGAAAAGGTCGTTCTCGTCGCAGGCGTGACCAAAGACCTGACTGGCCAACTCAAAGCCGGTGATTTGATGAAGCAGGCCGCTGCGGCAGTGGGCGGGAAGGGCGGTGGTCGTCCAGACATGGCGCAAGGCGGCGGTACCGATGCCGGCGCCCTGGACGCGGCATTGACCCAGACCGTTGCATTTGTAGAGCAGGGTATTTAA	MKSAEIREAFLRFFEEQGHTRVASSSLIPGNDPTLLFTNAGMNQFKDCFLGQEKRAYTRAVSSQKCVRAGGKHNDLENVGYTARHHTFFEMLGNFSFGDYFKRDAITFAWTFLTSDKWLNLPKEKLWVTVYATDDEAYDIWTKDVGVPAERMVRIGDNKGAPYASDNFWTMGDTGPCGPCTEIFYDHGADIWGGPPGSPEEDGDRYIEIWNNVFMQFNRTADGVLHPLPAPSVDTGMGLERISAVLQHVHSNYEIDLFQSLLSASAKAIGCTNDNQASLKVVADHIRSCGFLIADGVLPSNEGRGYVLRRIIRRACRHGNKLGAKGSFFYQIVGALVAEMGEAFPELKTQQAHIERVLKGEEEQFAKTLEQGLKILEQDLAELKGNVVPGDVVFKLYDTYGFPMDLTGDIARERNLTLDEEGFEREMEAQRVRARSASSFGMDYNSLVKVDVATEFTGYAATTGSAKIVAIYKDGQSVDILSEGQEGVIVLDKTPFYAESGGQIGDSGYLQAGNSRFDVRDTTKTGGAFLHHGVLASGSLMIAAPVAAHVDAEVRHATSLNHSATHLLHAALRQVLGEHVQQKGSLVDSQRLRFDFSHFEAIKPEQIKALEDIVNAQIRKNSPVETEETDIETAKRKGAMALFGEKYGDSVRVLSMGDFSVELCGGIHANRTGDIGLLKIISEGGVASGVRRIEAVTGAAALAYLNAAEEQLKEAASLIKGSRDNLIDKLSAVLERNRALEKQLEQLQAKAASAAGDDLSAQAVDVKGVKVLAARLDGQDGKALLALVDQLKNKLGRAVILLGGVHEEKVVLVAGVTKDLTGQLKAGDLMKQAAAAVGGKGGGRPDMAQGGGTDAGALDAALTQTVAFVEQGI				NA	NA	NA	NA	NA
D1-36_01330	1242		COG0527	Aspartate kinase	ATGGCTTTGATCGTACAGAAATTTGGAGGCACCTCGGTCGGCACCGTCGAGAGAATCGAACAAGTCGCCGACAAGGTTAAGAAATTCCGTGACGCTGGCGATGACCTGGTGGTCGTGCTGTCGGCAATGAGCGGCGAGACCAACCGTCTGATCGATCTGGCCAAGCAAATCAGCGGCGACCAGCAACCGGTCCCCCGCGAGCTGGATGTGATCGTTTCCACCGGCGAGCAGGTGACCATCGCCTTGCTGGCCATGGCGCTGATCAAGCGTGGCGTGCCGGCGGTGTCCTACACCGGCAACCAAGTCCGTATCCTGACGGACAGCGCGCATAACAAAGCGCGTATCCTGCAGATCGACGATCAGAAAATTCGTGGTGACCTGAAGGCCGGTCGTGTCGTGGTTGTCGCCGGTTTCCAGGGCGTGGATGAGCACGGCAACATCACCACCCTTGGTCGTGGCGGTTCCGATACCACTGGTGTCGCGCTGGCAGCAGCCCTCAAGGCTGACGAGTGCCAGATCTACACCGATGTGGATGGCGTCTATACCACCGACCCACGGGTTGTGCCCGTGGCTCAGCGCCTGGACAAGATTACCTTCGAAGAGATGCTGGAAATGGCCAGCCTCGGTTCCAAGGTATTGCAGATCCGCGCGGTTGAATTCGCCGGCAAGTACAACGTTCCGCTGCGCGTCCTGCACAGCTTCAAGGAGGGTCCGGGCACCCTCATTACTATTGATGAAGAGGAATCCATGGAACAGCCGATCATTTCCGGCATCGCTTTCAACCGCGATGAAGCCAAGCTGACCATCCGTGGCGTGCCAGACACCCCCGGCGTGGCCTTCAAGATTCTGGGGCCGATCAGTGCCGCCAACATTGAAGTCGACATGATCGTGCAGAACGTTGCGCACGATAACACCACCGACTTCACCTTTACCGTGCACCGCAACGACTACCAGTCCGCCGAAGCCGTGCTGAAGAAGACGGCCGACGAGATTGGCGCCCGGGAAGTGGTGGGCGATACCAAGATTGCCAAGGTCTCGATCGTTGGTGTTGGCATGCGCTCCCACGCGGGCGTGGCGAGCCGCATGTTCGAGTCCCTGGCCAAGGAAAGCATCAATATCCAGATGATCTCCACCTCGGAAATCAAGGTTTCCGTGGTGATCGAGGAGAAGTACCTGGAACTCGCCGTGCGCGCCCTGCACACGGCTTTTGAACTCGACGCCGCAGCCCGACAGGGCGAGTAA	MALIVQKFGGTSVGTVERIEQVADKVKKFRDAGDDLVVVLSAMSGETNRLIDLAKQISGDQQPVPRELDVIVSTGEQVTIALLAMALIKRGVPAVSYTGNQVRILTDSAHNKARILQIDDQKIRGDLKAGRVVVVAGFQGVDEHGNITTLGRGGSDTTGVALAAALKADECQIYTDVDGVYTTDPRVVPVAQRLDKITFEEMLEMASLGSKVLQIRAVEFAGKYNVPLRVLHSFKEGPGTLITIDEEESMEQPIISGIAFNRDEAKLTIRGVPDTPGVAFKILGPISAANIEVDMIVQNVAHDNTTDFTFTVHRNDYQSAEAVLKKTADEIGAREVVGDTKIAKVSIVGVGMRSHAGVASRMFESLAKESINIQMISTSEIKVSVVIEEKYLELAVRALHTAFELDAAARQGE	PGPT0014040_4387	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0014040-lysC-K00928	NA	NA
D1-36_01331	189	csrA2		Translational regulator CsrA2	ATGCTGATTCTGACCCGTCGGTGCGCAGAGAGCCTGATTATTGGCGATGGCGAAATCACCGTGACCGTGCTCGGCGTCAAAGGAAACCAAGTGCGTATCGGCGTCAATGCGCCGAAGGAGGTCGCTGTGCACCGGGAGGAAATCTACCTGCGTATCAAGAAAGAGAAGGACGACGAACCAAGCCATTAA	MLILTRRCAESLIIGDGEITVTVLGVKGNQVRIGVNAPKEVAVHREEIYLRIKKEKDDEPSH	PGPT0015065_1583	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ENVELOPE_STRESS_SIGNALLING,PGPT0015065-csrA|zfiA-K03563	NA	NA
D1-36_01335	492			hypothetical protein	ATGCCCGTAAGCCGCTATCTGCTTCTGCTCGCCACCCTGCCCTGCCTGCCTCTCTGGGCTGCCGATCACGTTGTGCACCGCTGCGAAAACAGTGCTGGGAAAATCACGTTCACAACCCTCAGTTGCGAGCCGGGAGAAACCCTGACAATGCAGCAGGTTCATACATACAGCCCGCCCCCTATCGAGCCGATGCTGCCCGAAGCCGAAGGTCGGCAAACATCCAGCAACAAAACCAGACGCAAGGAACCGACCATTGTTGGACAACTCGAGGACAGCTGTGGAAACCAGATCAACACCAACCAGCGCCGCGAAGCCATCCTGAAGCGACGAATCGTTGTCGGCATGAGCGAACAAGACGTCGTCAGCGCGCTTGGCAAACCGGATACGATCAAGGTTCGAAATTCGAGCACTCGGTACACCTACAAGACACAGAAAGGTCGGAGCGCAGAGGTCGTGTTCGACGAGAAGGGATGCGTGAAAGGCAAATCGTAG	MPVSRYLLLLATLPCLPLWAADHVVHRCENSAGKITFTTLSCEPGETLTMQQVHTYSPPPIEPMLPEAEGRQTSSNKTRRKEPTIVGQLEDSCGNQINTNQRREAILKRRIVVGMSEQDVVSALGKPDTIKVRNSSTRYTYKTQKGRSAEVVFDEKGCVKGKS				NA	NA	NA	NA	NA
D1-36_01336	1443		COG2239	Magnesium transporter MgtE	ATGACTGAAATAGAAGTAAAAAAAACGCAGGAAAGCCTTCAGGATCGCCTCGCTCAAGTCGTTGAGCTGTTGCATCGCCAGCGCGTCGTGGAAGACCTCACGCATCGCCAGGAAGGTCCGCATTCCGATCGGGTCGAGAACCTGGTACATCGGCAGAATCTCGTCGAGTTGCAACGTAAGCTCGATGATCTGCACTCGGCCGACGTTGCCTACATCCTTGAAGCCTTGCCGCTGGAAGAGCGTCTGACCGTCTGGCAATTGGTCCAGGCCGATCGCGACGGCGACATCCTGCTCGAAGTCTCCGACTCGGTTCGTGAAACCCTGATCGCAGACATGGATGACCATGAGCTTCTCGCAGCGGCCAAGGAGATGGACGCCGACGAGCTCGCCGACCTTGCTCCCGAATTGCCACGGGACGTTGTCCATGAGCTGATGGAAGCTCTTGATGGTCAACAGCGCGAGCGTGTGCGTTCGGCATTGTCCTATGACGAGGAGCAGGTCGGTGCGCTGATGGACTTCGAGATGGTGACGATCCGCGAGGACGTCAGCCTTGAAGTGGTTTTGCGTTATCTGCGGCGACTCAAGGAATTGCCGGGCCATACCGACAAACTCTTCGTGGTCGATTATGACGGCGTGCTCAAAGGCGTTCTGCCTATCAAGCGTCTTTTGGTCAACGATCCGGAGAAGCAAGTGGCCGAGGTGATGGCCAGCGACCCTGTGAGCTTCCATCCTGACGAAAACGCCTACGATGCGGCCCAGGCATTCGAACGTTACGACCTGATTTCTGCGCCGGTGGTGGACAAGAACGGCAAGCTGATCGGCCGTCTCACCATCGACGAAATGGTGGACTTGATCCGTGAGGAAAGCGAAAGCGAAGTCCTCAGCATGGCGGGTCTGCGGGAAGAAGAGGACATTTTCGCCTCGGTCTGGAAGTCCCTGCGTAACCGTTGGGCCTGGCTGGCGATCAATCTGATCACGGCTTTTGTCGCGTCCCGCGTCATCGGCCTGTTCGAAGGCTCCATCGAAAAGCTGGTCGCACTGGCGGCGTTGATGCCCATCGTTGCCGGTATCGGTGGTAACTCCGGCAACCAGACCATCACCATGATTGTCCGCGCCATGGCATTGGACCAGGTCAGTACCGGCAATACATCGCGTTTGATGCGCAAGGAACTGGCCGTTGCGTTGATCAATGGCGTCATCTGGGGAGGGGTGATCGGGGTCGTGGCGTACTTGCTGTATGGCAGCTGGTCGCTGGGCGTGGTCATGACTGCGGCGATGACGCTCAATCTGCTGTTGGCCGCGCTGATGGGCGTCTTGATTCCCATGACCCTGGCGCGCCTGGGGCGCGACCCAGCAATGGGTGCGAGCGTGATGATCACCGCCATGACGGACAGCGGCGGGTTTTTCATCTTCCTGGGCTTGGCGACGATTTTCCTGCTCTGA	MTEIEVKKTQESLQDRLAQVVELLHRQRVVEDLTHRQEGPHSDRVENLVHRQNLVELQRKLDDLHSADVAYILEALPLEERLTVWQLVQADRDGDILLEVSDSVRETLIADMDDHELLAAAKEMDADELADLAPELPRDVVHELMEALDGQQRERVRSALSYDEEQVGALMDFEMVTIREDVSLEVVLRYLRRLKELPGHTDKLFVVDYDGVLKGVLPIKRLLVNDPEKQVAEVMASDPVSFHPDENAYDAAQAFERYDLISAPVVDKNGKLIGRLTIDEMVDLIREESESEVLSMAGLREEEDIFASVWKSLRNRWAWLAINLITAFVASRVIGLFEGSIEKLVALAALMPIVAGIGGNSGNQTITMIVRAMALDQVSTGNTSRLMRKELAVALINGVIWGGVIGVVAYLLYGSWSLGVVMTAAMTLNLLLAALMGVLIPMTLARLGRDPAMGASVMITAMTDSGGFFIFLGLATIFLL	PGPT0013995_396	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0013995-mgtE-K06213	NA	NA
D1-36_01337	327			hypothetical protein	ATGCGCCCATTGAAACAGGCAATTTATTCCAGCCGTACGGCTGACAAGTTCGTCGTGCGTCTGCCAGACGGAATGCGGGAACGCATTGCCGAGGTGGCTCGTAATCATCACCGCAGCATGAACTCTGAAATCATCGCGCGCCTTGAGCAAAGCCTGATTCAGGAAGGTGCGTTGGGTGAAGAATTGAGCATGCGCCTGGACAGCCCGGAGCTGTCGCTGCATGAGCGCGAGTTGCTTCAACGCTTCCGACAACTCTCCCATCGCCAGCAGAACGCCCTCGTTTCGCTGATTGCTCATGATGCCGAAATGGCCGCTGACGCGTCCTGA	MRPLKQAIYSSRTADKFVVRLPDGMRERIAEVARNHHRSMNSEIIARLEQSLIQEGALGEELSMRLDSPELSLHERELLQRFRQLSHRQQNALVSLIAHDAEMAADAS				NA	NA	NA	NA	NA
D1-36_01339	1608	lapB		Lipopolysaccharide assembly protein B	ATGCTGGCGTACCACCAAAAAAGTTTTCTGATCGTCGATGATTTCTCGGATTTCCGCAGCTCCGTCCGGTCGATGTTGCGGGAGTTGGGCGTCAAGGACGTGGACACCGCCGATACCGGTGAAGTGGCGCTGCGCATGTGTTCGCAGAAGCGTTATGACTTCATCTTGCAGGATTATCACCTGGGCGACGGGCGCAAGAACGGCCAGCAGGTGCTGGAAGACCTGATGGTCGAGAAGTTGATCAGCCATGAGAGCGTGTTTCTCATGGTGACCGCCGAGACCAGCCAGGCCATGGTGCTCAGCGCCCTGGAACATGAGCCGGATGCGTACCTGACCAAACCATTCAATCGCTCCGGCCTGGCCCAGCGGTTGGAGCGCCTGGAGCAGCGCAAAACGTTGCTCAAACCGATCCTGCAGGCGCTCGATCGTGGCAAGCCGATGGAAGTGCTCAATGCTTGCATCGCCCTGTGCAAGCAGGACCCGCGCTACGGGCCACTGTGCCTGCGTTATCGGGCCGATGCGCTGCGCGACCTGAATCAGAACGAGGCCCTTGAGCGGTTGTACAACTCCATCATCGCGGATCGCCCGTTGCCGTGGGCGTACGCGGGGTTGGGAAAGTTGTTGTTCAAGCGCGGGCAGATAGGCGAAGCCAAGGCTGTCTATGAAAAGGCCCTGAAAGTCTTTCCGATGATGCCGGCCCTGTACGACGGCATGGCCGACGTGTTGGTGGCTGAAGGCGACACGAAGCAGGCCCAGAACGTATTGGAGGAAGCGGTGCGGTTGTCGCCGTTGGCGGTGCGTCGGCAGTCACTGCTGGGCAAGCTGGCGATGACCAACGAGGATTACGAGACCGCGTCGAAAGCCTATCGCCAGGCGGTCGGGCAGGGGGCGCAATCGCGATTCAAGGATCCGGAGAGCAACCTTGGCCTGGCCCATGCCTTGATCAGCAAGGGCAGCGAGAAGGGCCTGGACACCCGGACGAGGCTGGAAATCAACACCACGCTTAGCGCGGTGGCGAAAGATAACCCCAGCGATCCGGGCCTGCAGGTCCGGGCGCGGCTGATGAAAGCAACGAGCCTGTTGCTCAATGATGCCGAAACCGCCGAAAAGCTCACCGAGCAAGCCTTGCAGCGTCTCGACGGCATGGAACAGTTCATGAGTGCCGAAGCCGCGCTGCTGGTGGCCAAGCAGCTACAGATGCTCGGCCAGACCAGCGCCGGCGAATCGATGCTCAAGAACTGCGCGGAGATCTATGGCGATGATCCGACCGTGATGCAGGGCATTGCCAAGCTCACCGACGACCCGAATATCCTTAACCAGGGCAACGCCGCCGCCGAGCTGAACCGCGAAGGCGTGCGTGTCTACAAGACCGGCGCGTTACCCGAGGCGCGGGAATTGTTCCGGCGTGCACTGAAGCTGCAGCCGAAGAACATCAGTATTGCCCTGAACATGGCGCAATCCCTGCTGCACGGCACCGATACCAGTGTTGAATCGCAGCTGCTGCAGGAATGCCGTGCCTGCCTGAAACTGGTGGGCATGATGCCCGACACCGATGCGCGTTTTGCGCGTTATCAGAAACTGCGAAGCAAGGCATTTGGCGATGAATGA	MLAYHQKSFLIVDDFSDFRSSVRSMLRELGVKDVDTADTGEVALRMCSQKRYDFILQDYHLGDGRKNGQQVLEDLMVEKLISHESVFLMVTAETSQAMVLSALEHEPDAYLTKPFNRSGLAQRLERLEQRKTLLKPILQALDRGKPMEVLNACIALCKQDPRYGPLCLRYRADALRDLNQNEALERLYNSIIADRPLPWAYAGLGKLLFKRGQIGEAKAVYEKALKVFPMMPALYDGMADVLVAEGDTKQAQNVLEEAVRLSPLAVRRQSLLGKLAMTNEDYETASKAYRQAVGQGAQSRFKDPESNLGLAHALISKGSEKGLDTRTRLEINTTLSAVAKDNPSDPGLQVRARLMKATSLLLNDAETAEKLTEQALQRLDGMEQFMSAEAALLVAKQLQMLGQTSAGESMLKNCAEIYGDDPTVMQGIAKLTDDPNILNQGNAAAELNREGVRVYKTGALPEARELFRRALKLQPKNISIALNMAQSLLHGTDTSVESQLLQECRACLKLVGMMPDTDARFARYQKLRSKAFGDE				NA	NA	NA	NA	NA
D1-36_01340	693			hypothetical protein	ATGAATGACAGCGAACAAGCTCTCGATTTCTCCACGGTGATCGCGTCTACCGTGCATGACATGAAAAACTCCCTGACCCTGCTCATGCAGGCTCATACGCAATGGCTCGAGCGCCTGCCGGAACCTTCGCGGCAGACCTCGGAGCAGGGCGTGATGGAGTTCGAGTTTGCCCATCTCAATGGGCTGCTGGTGCAGTTGCTCGGGTTATACAAGCTGGGCGTGAATCAATTGCCGCTGCATCCGGCCTACCACGAACTGGATGACTTCATCGAAGCGCAGTTGGCCGGCCATCAGGACGTGTTCCGCAGTCGCGGGATCATGGCCACCTATGAGGTCGATCCGCTGAGCCCGCTGGGTTTCTTCGACCGTGAGCTGATCGCGTCGGTGCTCGACAACATGATCAACAATGCCATTCGCCACGCGCGCCAGGCGTTGTTGATCAGCGTGAGCGACGAGGCTGGGCAATTGGTGCTGACCATCAATGACGACGGCGAAGGCTACCCGGCCGAAATGATTGAGCGCCAGGCCGAGTATGTGCAGGGCATCAACCACAGCAGCGGCAGCACCGGCCTTGGCCTGTATTTCGCCGCCAGGATCGCCGGGTTGCATCAGCGTGGCGGCTTGAGCGGGCATACCGAGATTGCCAATGGCGGTGTGCTGGGCGGTGGGGTGTTCAGGCTTTACCTGCCCTGA	MNDSEQALDFSTVIASTVHDMKNSLTLLMQAHTQWLERLPEPSRQTSEQGVMEFEFAHLNGLLVQLLGLYKLGVNQLPLHPAYHELDDFIEAQLAGHQDVFRSRGIMATYEVDPLSPLGFFDRELIASVLDNMINNAIRHARQALLISVSDEAGQLVLTINDDGEGYPAEMIERQAEYVQGINHSSGSTGLGLYFAARIAGLHQRGGLSGHTEIANGGVLGGGVFRLYLP				NA	NA	NA	NA	NA
D1-36_01341	1344	ipuC		Glutamate--isopropylamine ligase	ATGACGACCGATGGCCAGTGTTCACTCGCACAGCGATTGACGGGCATTGATGAGATTGAATGTGTCACGCCGGATTTGAATGGCGTACCCAGGGGCAAGGTAATGAGCGCCGAGGGCTTCCTTGAAGGCCGGCGGTTGCAGATGGCGCGCGGTGTGCTGCTGCAATGCATCATGGGCGGATATCCGCCAGCGCGCTTTTACGGCAGTGACGACGGCGACCTGGCGTTGGTGGCCGATCCACAGCAGATCCACCGGCTGCCGTGGAGCCATCCGCCACGCGCCTTGGCGATCTGCGACGCCGATGAGCTCAGCGGCGAAAGCTCACCTCTGTCGACGCGCGGTCAGCTCAAGGCCGTGATCGCTCGATATGCGACGCTCGGGCTAGCGCCGGTAGTGGCGACGGAGCTGGAGTTTTTTGTGTTCGCGCCCAACCCGGATCCTTCCCAGCCATTCCTGCCGCCGATGGGCCTGGATGGTCGTCGCGAAGATGGCCAATCGGCGTTCAGCATCAGTTCCAACAACGGCCTGCGACCGTTCTTCACCGAAGTCTATGAATGCATGGCGGCGCTAGGCCTGCCGCGCGACACGTTCATGCATGAAATGGGCGTCAGCCAGTTTGAAATCAATCTGCTCCACGGCGATGCTCTGCTGTTGGCCGACCAGACGTTCCTGTTCAAGCATTTGCTCAAGGAGGTGGCCCTCAAGCATGGCCTGACGGTGGTCTGCATGGCCAAGCCGCTGGCGCGAACGCCGGGCAGTTCGATGCACATTCACCAGAGCATCGTCGAGCTGGGCAGCGGTCGCAATGTATTCAGCGACGATGCGGGCGAGCCGACCGCGACGTTCCGGCACTTCATTGGCGGGCAGCAGGCCGGCATGGCGGATTTCACCGCGCTGTTCGCGCCAAACGTGAATTCCTACCACCGCCTCTGCCATCCATTCGCGTCGCCAAACAATGCCTGTTGGTCCCATGACAATCGTTCGGCCGGGCTGCGCATTCCTGCGAGTGCGCCGGTAGCCCGGCGGGTCGAGAACCGCTTGCCGGGAGCCGATGCCAACCCTTACCTGGCGATTGCCGCCAGTCTGGCGGCGGGGCTCCATGGCATCGAGAATCGCCTGGAACCGGGTGCCGCGATCCAGGGCGAGTTCGAGGTGCCGGAGAATCTTTCCCTGCCATGTACCTTGCATGCAGCGCTTGAACGTCTCAAGCGTAGCCACTTGGCGAAGGAACTGTTCGGTAGCGAGTTCATCGAAGGTTACGTTGCCTCGAAAACCCTGGAACTGACCAGTTTCTTTGACGAAATCACGCCCTGGGAGCGGCGCGTTTTGGCGGCCCAGGCATAA	MTTDGQCSLAQRLTGIDEIECVTPDLNGVPRGKVMSAEGFLEGRRLQMARGVLLQCIMGGYPPARFYGSDDGDLALVADPQQIHRLPWSHPPRALAICDADELSGESSPLSTRGQLKAVIARYATLGLAPVVATELEFFVFAPNPDPSQPFLPPMGLDGRREDGQSAFSISSNNGLRPFFTEVYECMAALGLPRDTFMHEMGVSQFEINLLHGDALLLADQTFLFKHLLKEVALKHGLTVVCMAKPLARTPGSSMHIHQSIVELGSGRNVFSDDAGEPTATFRHFIGGQQAGMADFTALFAPNVNSYHRLCHPFASPNNACWSHDNRSAGLRIPASAPVARRVENRLPGADANPYLAIAASLAAGLHGIENRLEPGAAIQGEFEVPENLSLPCTLHAALERLKRSHLAKELFGSEFIEGYVASKTLELTSFFDEITPWERRVLAAQA	PGPT0000645_7448	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
D1-36_01342	1368	ycaD_1		putative MFS-type transporter YcaD	ATGCGCCAAATCTGGAAACCTTTTCGAGCGCTTTATTTCGCCTCGCTGATGATGCTCATTGGCTCAGGCCTTCTGAGTACTTACCTGGCCCTGCGCCTGGCCGCCGACAATGTGGACAGCCTGTGGGTCGGTGCGCTGATGGCGGCGAACTATTTCGGCCTGGTGCTGGGCGGCAAGATCGGCCACCGGCTGATTGGCCGCGTCGGGCATATCCGCGCCTATTCGGCTTGCGCCGGGATCGTCGGTGCGGCGGTATTGGGCCATGGCCTGGTGAACTGGCTGCCGGCCTGGATCGTGCTGCGGATGATTGTCGGCCTGGGCATGATGTGCCAGTACATGGTTATCGAAAGCTGGCTCAACGAGCAGGCCGATGCCAAGCAACGCGGGGTAGTGTTCAGCGGCTATATGATTGCTTCTTACCTGGGGCTGGTGCTGGGCCAACTGATCCTGGTCATGCATCCGGCCCTGGGCCTTGAATTGCTGATGTTGGTGGCGTTGTGTTTCGCCCTGTGCCTGGTGCCGGTGGCATTGACCCGGCGGATTCACCCGGCGCCGTTGCATCCGGCTCCGATGGAGCCGCGCTTCTTTATCAAGCGCGTACCGCAATCGTTGACCACGGTGTTGGGCTCCGGGCTGATCGTCGGCTCCTTCTACGGCCTGGCACCGCTGTACGCCTCCCAGCAGGGCCTGAGTACCGAGCAGGTCGGCTTGTTCATGGGCTGCTGCATCTTTGCCGGCCTGCTGGTGCAATGGCCGCTGGGTTGGCTGTCGGATCGTTACGATCGGGCCCTGTTGATCCGCTGCTTCGCACTGGCCCTGGTGGTGTGTGCCTTGCCGCTGGCCATCCTGTCGAAGGCGCCGCTGGAAGTATTGTTCATCGCCGGTTTCTGCTGTTCGTTGGTGCAGTTTTGCCTGTACCCGCTGGCGGTCGCGTTTTCCAATGACCACGTCGAGGGTGATCGCCGGGTGTCGCTCACCGCGATGCTGCTAGTGACCTACGGCGTGGGCGCCAGCATCGGCCCGTTGGTGGCCGGGGTGCTGATGAAGCTGTACGGCAGCCAGATGCTCTATGGCTTTTTTGCCCTGTTTGCCTTGCTGCTGGTATGGCGGATCCGACCGAAAGCGGTCACCAACCTGCACCAGGTCGACGACGCGCCGCTGCATCACGTGGCCATGCCGGACAACATGACCAGTTCACCCTTGGTGGCGTGCCTCGATCCGCGGGTCGACGAGCAAGTGGTGCAGGAGCAGATGCAGGCCTCGCCCAATCCGGACGTCGAGCCCGAGCCTCAACCTGAATTGGAGCCGGTCACCGAAGGCGCCGACGACGAACTGCCACCGTCCGATTTCACCCAGGCCAGGCCCTGA	MRQIWKPFRALYFASLMMLIGSGLLSTYLALRLAADNVDSLWVGALMAANYFGLVLGGKIGHRLIGRVGHIRAYSACAGIVGAAVLGHGLVNWLPAWIVLRMIVGLGMMCQYMVIESWLNEQADAKQRGVVFSGYMIASYLGLVLGQLILVMHPALGLELLMLVALCFALCLVPVALTRRIHPAPLHPAPMEPRFFIKRVPQSLTTVLGSGLIVGSFYGLAPLYASQQGLSTEQVGLFMGCCIFAGLLVQWPLGWLSDRYDRALLIRCFALALVVCALPLAILSKAPLEVLFIAGFCCSLVQFCLYPLAVAFSNDHVEGDRRVSLTAMLLVTYGVGASIGPLVAGVLMKLYGSQMLYGFFALFALLLVWRIRPKAVTNLHQVDDAPLHHVAMPDNMTSSPLVACLDPRVDEQVVQEQMQASPNPDVEPEPQPELEPVTEGADDELPPSDFTQARP				NA	NA	NA	NA	NA
D1-36_01343	747	ycgR	COG5581	Flagellar brake protein YcgR	GTGTTCAATGCCTCAAACGCGGATGATGCTCCGCAGCCGCCCAAGGTCCTCGCCACCCCTCTGGAAATCTCCGGCAATCTGCGGATGCTGCAAGACAGTCACGACCCGCTGATCATCACCTTCCACGAGCGCAGCCAGCGGTTCCAGAGTTACCTGGTGGATGTCGATCGCGAAACCAACACCATCGCCCTGGACGAAATGATTCCTCGGGACGGTGAACGTTTCCTACTGGCCGGCGAGCCGTTTCGCGTCGAGGGTTTCCATGACGGCGTGCGCATCGCGTGGGAGGGCAACGGCCCATTGACCATTCAGGAATCGAGCGATGGCCGCTGCTATCGCGGCGCCTTGCCTGAAGAAGTGGTTTATCACCAGCGCCGCAACGCTTTCCGGGCCGCATTGAAACTGGCGCAACTGGTGAACGTGGAGTTGGGTGGCGACAAGCTCAAATCACCGGTGAATGGCAAGCTGCTGGATATTTCCGCAACCGGCTGCAAGCTGCGCTTCGATGGCGATATCACTGAACGGCTGCAGCTGGGCCAGGTTTACGAGCGCTTCATCGCCGCCCTACCGTTTGGCAGCATGACCGCGCCGGTGGAACTACGGTACCTGCATTTCGAAGAGCGGATCAACACCACGTTCGCAGGCGTGCGCTTCCATAACATCAGCGGCCTGGTACAACGCCAGGTGGAACGCTTCGTGTATCAATTGCAGCGTGAAGCCCGTCGGTTCGATAAAGACGACTTCTGA	MFNASNADDAPQPPKVLATPLEISGNLRMLQDSHDPLIITFHERSQRFQSYLVDVDRETNTIALDEMIPRDGERFLLAGEPFRVEGFHDGVRIAWEGNGPLTIQESSDGRCYRGALPEEVVYHQRRNAFRAALKLAQLVNVELGGDKLKSPVNGKLLDISATGCKLRFDGDITERLQLGQVYERFIAALPFGSMTAPVELRYLHFEERINTTFAGVRFHNISGLVQRQVERFVYQLQREARRFDKDDF				NA	NA	NA	NA	NA
D1-36_01344	468			hypothetical protein	ATGCACGACACTCATTTATTGCAACTGATCATCGACGACTTTGCTCCAGCGCAACAATTGTTGGAGCTGTTGCAGACCGAAGCCCTGGCATTGCACGGGCGGGACATGCCCCTGCTGGAAAATATTCTGGCGCAAAAGCAGGCATTGATCATTTTGCTCGACCAGCATGGCCGCAAGCGCAGCGAAATCCTCGCCAGCCTCAACCTGCCCGCCGATAACAGTGGCCTTGAGCAATTGGCCAGCCAATCGTCGATCGGCGATCAGCTGTTGTCGCAAAGCGCCGTGCTCAACGACCTGCTCAACCAGTGCCAGGCCGCCAATGCTCGAAACGGCCAGTCTATCCTGATGCAACAGGCCGCCACCGCCAATCAGTTGCGTATTCTCAATGGCGGCGAAATCCCGACGCTCTATGACGCTCGCGGCTCGACCGCGAAAATGGTCAAGCACCGCCCGCTCAGCCAGGCATGA	MHDTHLLQLIIDDFAPAQQLLELLQTEALALHGRDMPLLENILAQKQALIILLDQHGRKRSEILASLNLPADNSGLEQLASQSSIGDQLLSQSAVLNDLLNQCQAANARNGQSILMQQAATANQLRILNGGEIPTLYDARGSTAKMVKHRPLSQA	PGPT0015535_299	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLUM_CONTROL	MOTILITY-FLAGELLUM_REGULATION,PGPT0015535-flgN-K02399	NA	NA
D1-36_01345	315			hypothetical protein	ATGGTCATCGATTTCAATCGTTTAAACAGCTCCTCGCCCCTGACAGGCACTGCGCGCACCAGCGCCAGCAAGGAAACCGTCGAAACCGACAAATCCAAGCCAGCCGACCAGGCCGCCACTGTCAGCAACGGGGAATCGGTACACCTCAGCAATGAGGCTCAACAGTTGCAGAAGGTCACTGACAAGCTGCGCGATCAACCTGTCGTCGACAACGCCCGCGTGGCCGCGTTGAAAGCAGCAATCGCCGATGGCAGCTATCAAGTCGACAGCAACCGTGTAGCCAGCAAGCTGCTCAACTTCGAAGCCCAGCGCTAG	MVIDFNRLNSSSPLTGTARTSASKETVETDKSKPADQAATVSNGESVHLSNEAQQLQKVTDKLRDQPVVDNARVAALKAAIADGSYQVDSNRVASKLLNFEAQR	PGPT0015530_534	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0015530-flgM-K02398	NA	NA
D1-36_01346	765			hypothetical protein	ATGAACGCACAAACGACATTTTCTCGACGCCTGACCACTCACTGCCGCCACTGGCTCGGTGCACTGCTGGCTGCCTGCCTGCTCGCTTCGGGCGGTCCTGCCCTTGGTGCCGCTGCGGTAACCTTGCCTGATCTCCTTATCGGCGTCACTCAGGGCTTTCTTGAGTTCACCGTAGAAGACTATCTGGCAACCAGTCAAACCGAAGGTCGCTACGAGATTGAAGTCAACCAGCTCGACCCGCGCCTGCGGATGCCGATGTGCGACAAGGAATTGACTGCCTCGCTGGAGAGCCCGGCCAGGCCCCTGGGCCGCGTCACGGTGAAGGTTCGTTGCGATAGCGCCGCGCCCTGGACGGTGTTCGTGCCCGCTCAAGTGCGCCTGTACCGGGAAATTGTCACCACCACTCGCCCACTCAAGCGGGCCGGGATCGTCGAGCCGCAGGACGTGGTGCTGCGTGAGCGCGACGTCAGCCAGATCAGCCAGGGTTTCCTGACGTCCGTCGATGAGGCCATTGGGCAGAAACTTGTCCGACCAATGGTCGCCGACCAGGTGGTGACCCAGGTGCATCTGGAACAGGCCGAGGTGGTTCGCAAGGGCGACCAGGTGGTCATCACCGCTCGCAGCGGCACCCTGGCCGTGCGGATGCCCGGCGAGGCCCTGGCCAACGGTGGCATGCGCGAACAGATTCGGGTGAAAAACCTCAATTCCCAACGGGTCATCAAGGCACAGGTGATAGCGCCTGGCCAGGTGGAAGTGGCTATGTAA	MNAQTTFSRRLTTHCRHWLGALLAACLLASGGPALGAAAVTLPDLLIGVTQGFLEFTVEDYLATSQTEGRYEIEVNQLDPRLRMPMCDKELTASLESPARPLGRVTVKVRCDSAAPWTVFVPAQVRLYREIVTTTRPLKRAGIVEPQDVVLRERDVSQISQGFLTSVDEAIGQKLVRPMVADQVVTQVHLEQAEVVRKGDQVVITARSGTLAVRMPGEALANGGMREQIRVKNLNSQRVIKAQVIAPGQVEVAM	PGPT0015415_590	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_M|S|P|L-RINGS,PGPT0015415-flgA-K02386	NA	NA
D1-36_01347	927	cheV_2	COG0784	Chemotaxis protein CheV	ATGGCGGGAGTGATGGATTCGGTAAACCAGCGCACACAGCTGGTGGGTCAGAATCGCCTGGAGCTGTTGTTGTTCCGTCTCGACGGCCGACAATTGTATGGGATCAACGTGTTCAAGGTTCGCGAGGTGCTGCAATGCCCCAAGCTGACCCTGATGCCGAAATCCAGTCCCGTCGTGTGCGGTGTGGCGAATATCCGGGGAGCGACCATCCCGATTCTCGACCTGGCGATGGCGACCGGTTCCGGCCGACTGCTGGACCAGAGCAATCCGTTTGTGATCATCACCGAGTACAACACCAAGACCCAAGGGTTCCTGGTGCGATCGGTGGAGCGCATCGTCAACATGAACTGGGAAGAGATCCATCCACCACCCAAGGGGACCGGCCGCGACCACTACCTCACGGCGGTGACCCGGGTCGATAACCAGTTGGTGGAAATCATCGACGTGGAGAAAATCCTCGCCGAAGTGGCGCCGACCCCGGAAACGATTTCCGTTGGCGTGATAGATGCCGAGACCCAGCACAAGGCGGTTTCCCTGCGGGTGCTGACCGTCGACGATTCCTCGGTGGCCCGTAAGCAGGTCACACGTTGCCTGCAAACGGTCGGCGTCGAAGTGATTGCGCTGAACGATGGGCGGCAAGCGCTGGATTACCTGCGCAACCTGGTCGACGAAGGCAAGAAGCCGGAAGAGGAGTTCCTGATGATGATCTCCGACATCGAGATGCCGGAGATGGACGGCTACACGCTGACATCGGAAATCCGCAGCGACCCGCGCATGCAAAAGCTGCACATCATCTTGCATACTTCGTTGTCTGGGGTGTTCAACCAGGCAATGGTCAAGAAGGTCGGCGCCGATGACTTCCTGGCCAAGTTCCGGCCCGATGACCTCGCTTCCCGAGTCGTCGAGCGAATCAAGTCAGCAGGCTAA	MAGVMDSVNQRTQLVGQNRLELLLFRLDGRQLYGINVFKVREVLQCPKLTLMPKSSPVVCGVANIRGATIPILDLAMATGSGRLLDQSNPFVIITEYNTKTQGFLVRSVERIVNMNWEEIHPPPKGTGRDHYLTAVTRVDNQLVEIIDVEKILAEVAPTPETISVGVIDAETQHKAVSLRVLTVDDSSVARKQVTRCLQTVGVEVIALNDGRQALDYLRNLVDEGKKPEEEFLMMISDIEMPEMDGYTLTSEIRSDPRMQKLHIILHTSLSGVFNQAMVKKVGADDFLAKFRPDDLASRVVERIKSAG	PGPT0015675_1358	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015675-cheV-K03415	NA	NA
D1-36_01348	828	cheR2		Chemotaxis protein methyltransferase Cher2	TTGTCTACGGGTAATTTGGATTTCGAACAGTTCCGGGTCTTCCTGGAAAAAGCCTGTGGCATCTTGCTTGGTGAAAACAAGCAGTACCTGGTGTCGAGCCGTCTCAATAAGTTGATGGAACAACAGGGCATCAAGTCATTGGGCGAGTTGGTTCAGCGTATCCAGACCCAGCCGCGCAGTGGCTTGCGCGAGATGGTCGTGGACGCCATGACCACCAACGAAACCCTGTGGTTTCGTGACACCTATCCCTTTGAGGTATTGAAGAACAAGGTATTGCCGGCGGCCATCAAGGCCAGCCCGGGCCAGCGCCTGCGGATCTGGTCGGCGGCCTGTTCGTCGGGGCAGGAACCTTATTCCTTGTCGATGTCCATTGATGAGTTCGAGCGCACCAACATTGGCCAGTTGAAAGGCGGCGTGCAGATCGTCGCCACCGACCTGTCCGGGACCATGCTCAACAACTGCAAGACCGGCGAGTACGACAGCCTGGCCATCGGCCGCGGCCTGTCGCCCGATCGCCTGCAACGTTATTTCGACGCCAAGGGACCGGGCAAATGGGTGGTCAAGGCGCCCATCAAGAGCCGCGTGGAGTTTCGCTCGTTCAACTTGCTGGACAGTTACGCCAGCCTGGGCAAGTTCGACATCGTGTTCTGCCGCAACGTGTTGATCTACTTTTCCGCTGAGGTGAAGAAGGACATCCTGACGCGCATCCACAGCACCCTGAAACCGGGTGGTTATCTGTTCCTGGGTGCATCCGAGGCGTTGAACGGCTTGCCGGACCATTACCAGATGGTCCAGTGCAGCCCGGGGATCATTTACCAGGCGAAGTGA	MSTGNLDFEQFRVFLEKACGILLGENKQYLVSSRLNKLMEQQGIKSLGELVQRIQTQPRSGLREMVVDAMTTNETLWFRDTYPFEVLKNKVLPAAIKASPGQRLRIWSAACSSGQEPYSLSMSIDEFERTNIGQLKGGVQIVATDLSGTMLNNCKTGEYDSLAIGRGLSPDRLQRYFDAKGPGKWVVKAPIKSRVEFRSFNLLDSYASLGKFDIVFCRNVLIYFSAEVKKDILTRIHSTLKPGGYLFLGASEALNGLPDHYQMVQCSPGIIYQAK	PGPT0015670_3048	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015670-cheR|pilK-K00575	NA	NA
D1-36_01349	408	flgB	COG1815	Flagellar basal body rod protein FlgB	ATGAGCATCAGCTTCGATAAAGCGCTCGGTATCCACGAACAGGCCCTGAGCTTCCGCGCCCAGCGTGCCGAAGTCCTGGCCAACAACATCGCCAACGCCGACACGCCGAACTACAAGGCCCGTGACCTGGACTTTTCCAAGGTACTCGCCGAGCAGAACGAGAAGACCAAGAACGGCCACTTCGCCTTGAACATGACCAACAGCCGTCATATCGAAGCCGAAGGCGTAGGCAGCGGCGACGAATCGTTGATGTATCGCACGCCGATGCAGCCCTCGGTCGACCAGAACACCGTGGACGCTCAACTGGAACAGTCCAACTACGCGGAAAACTCCGTGAACTTCCAGGCCAGCTTCACCCTGCTCAACAGTAAATTCAAAGGGCTGGTATCGGCCCTGCGTGGAGAGTAA	MSISFDKALGIHEQALSFRAQRAEVLANNIANADTPNYKARDLDFSKVLAEQNEKTKNGHFALNMTNSRHIEAEGVGSGDESLMYRTPMQPSVDQNTVDAQLEQSNYAENSVNFQASFTLLNSKFKGLVSALRGE	PGPT0015470_1042	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015470-flgB-K02387	NA	NA
D1-36_01350	444	flgC	COG1558	Flagellar basal-body rod protein FlgC	ATGTCGATCGCGAGCGTTTTCAACATCGCCGGCAGTGCCATGAGTGCCCAGACCACTCGCCTGAACACCGTCGCCAGTAACATCGCCAACGCCGAGACCGTTTCGTCAAGCATCGACCAGACCTACCGCGCCCGTCACCCGGTGTTCGCCACCATGTTCCAGGGTGGCCAATCCGGCGGCAGCGATTCGCTGTTCCAGGACCAGGACGCGGCGGGGCAGGGCGTACAGGTGCTCGGCGTCGTTGAAGACCAGAGCAACCTCGAAGCACGTTACGAGCCAAACCATCCGGCCGCGGACGCCAAGGGTTATGTCTATTACCCGAACGTCAACGTCGTCGAAGAAATGGCCGACATGATTTCCGCCAGTCGTTCGTTCCAGACCAACGTCGAAATGATGAACACCGCCAAAACCATGATGCAGAAGGTCCTGACCCTCGGTCAGTGA	MSIASVFNIAGSAMSAQTTRLNTVASNIANAETVSSSIDQTYRARHPVFATMFQGGQSGGSDSLFQDQDAAGQGVQVLGVVEDQSNLEARYEPNHPAADAKGYVYYPNVNVVEEMADMISASRSFQTNVEMMNTAKTMMQKVLTLGQ	PGPT0015475_615	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015475-flgC-K02388	NA	NA
D1-36_01351	723	flgD	COG1843	Basal-body rod modification protein FlgD	ATGAGCGTCACCAATACAACAGGCGGTTTGAGCCTCAACGAGATTCTGGCCAACTCCTCGGTCAAGACCAATACCAAGGCCGATGGCCTGGGTGCGGCGACCAATGCGGCGAGTGGCAACCAGGAATTGGGCAAGGATGCGTTCCTGCAACTGCTCGTGACCCAGCTGAAAAACCAGAACCCGCTGGAACCCCAGGACAACGGTGAGTTCGTGGCCCAACTGGCGCAATTCAGCAGCCTGGAAGGCATCACCACGCTCAACGAAACCGTGAGCGGCATTGCCGGCAACTACAACTCGTCACAAGCGTTGCAGGCTTCGTCCCTGGTCGGCCGCTCGGTGATCGCTCCGGGTGACAAGGCCGTGGTCGACACCTCCAAGAGCCTCAACGGCACCGTGGTGGTTCCGGCGGCGGTGTCCTCCCTCACCGTCAAGATCATGGACAAGGATGGCAAGACCGTCCGCACCATCGACCTGGGCAGCCAGAAGTCGGGCAACTCTGCCTTCATCTGGGACGGCAAGAACGACGCGGGCACGACGGTAGAGTCGGGCACGTACACCTTCGCGGCCTCGACCACCATCGATGGCAAGGCCACGTCGCTGATCACCAACCTGCCGGCCACGGTCAGCAGCGTGACGATCAGCCAGACGGGCGGTGAGCTGATGCTCAACCTGGCCGGGCTGGGCAGCATCGCCCTGTCCAAAGTACAAACTATTGGTATGTAG	MSVTNTTGGLSLNEILANSSVKTNTKADGLGAATNAASGNQELGKDAFLQLLVTQLKNQNPLEPQDNGEFVAQLAQFSSLEGITTLNETVSGIAGNYNSSQALQASSLVGRSVIAPGDKAVVDTSKSLNGTVVVPAAVSSLTVKIMDKDGKTVRTIDLGSQKSGNSAFIWDGKNDAGTTVESGTYTFAASTTIDGKATSLITNLPATVSSVTISQTGGELMLNLAGLGSIALSKVQTIGM	PGPT0015480_515	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015480-flgD-K02389	NA	NA
D1-36_01352	1299	flgE	COG1749	Flagellar hook protein FlgE	ATGTCTTTCAACATCGGCCTTAGCGGTCTCTATGCAGCCAACAAACAGCTGGACGTGACCGGCAACAACATCGCCAACGTGGCGACCACCGGTTTCAAATCGTCCCGCGCGGAATTCGAAGACGTCTACTCGGCCACCAAGCTGGGTTCGGGCAGCAAGACCGTCGGCAACGGCGTGCGCCTGGCCAACGTTTCCCAGCAGTTCGGCCAGGGTGACGTGAACAACACCGGCAACGTGCTGGACATGGGGATCCAGGGCCAGGGCTTCTTTGTCCTGAGCAACGACGGCTCCCTGAGCTACACCCGTGCCGGTACTTTCAAGACCGACAAGGAAGGCTACGTCACCAACAGCGATGGCACGGCTCGTTTGCAGGGCTATGGCGTGGATGCCAACGGCAAGATCCTCAACGGTATCCTGACCGACCTGCGCATCGACACCTCGAACCTGCCGCCGCAAGCCACCAGCCTGGTTTCGTCGACCATCAACCTGAACTCGACGGCGACGCCGATCACTGCCGCGTTCAACCCGGCTGACACGGCGACCTTTACCAAGCAGTTCACCACCCCGATCTACGACACCCAGGGTAACCAGCACTCGATGGACCAATACATGGTCAAGACAGGCTCCAATACCTGGAACGTCTATACCTTGATCGATGGTCGTAACCTCAATGGCAGCTTGCCGACCACGACCGGTGCGACCGCGCCTGTTCCTTCGACCATGAACTTCGATTCGAGCGGCAAGTTGACCACGGTCACCACTCCGCCAGCGACCGTCAATAGCGATCTGGTGTTGACCGGCTGGGTTCCGGGCACCGTGACCAACGGAACCTGGACCGCCAACGGCGCCGCCAGCGCACCGACCATCACGATTTCGATGGGCAACACCACTCAGTTCAACGCCGACACCGCTCGTTCGATTCCTGCCCAGAACGGCTACGCCACCGGCCAGATCACCAACCTGACCATCGATGGCAGCGGTGTGATGCTCGCCAACTTCAGCAACAACCAGACCAAGCCGATCGGCCAGATCGCCCTTGCCAGCTTCACCAACGAGCAAGGCCTGCAGCCAGTAGGCGGCACCAGCTGGAAGGAAACGTTCGCCTCGGGTATCCCGGGCTACGATGCTCCACAGACCGGCACCCTGGGGTCGATCGTCTCCAACTCCCTGGAGGAGTCCAACGTCAACCTGACCAACGAACTGGTCGAGCTGATCAAGGCGCAGAGCAACTACCAGGCGAACGCCAAGACCATCTCTACCCAGAGCACCATCATGCAGACCATCATTCAGATGGCTTGA	MSFNIGLSGLYAANKQLDVTGNNIANVATTGFKSSRAEFEDVYSATKLGSGSKTVGNGVRLANVSQQFGQGDVNNTGNVLDMGIQGQGFFVLSNDGSLSYTRAGTFKTDKEGYVTNSDGTARLQGYGVDANGKILNGILTDLRIDTSNLPPQATSLVSSTINLNSTATPITAAFNPADTATFTKQFTTPIYDTQGNQHSMDQYMVKTGSNTWNVYTLIDGRNLNGSLPTTTGATAPVPSTMNFDSSGKLTTVTTPPATVNSDLVLTGWVPGTVTNGTWTANGAASAPTITISMGNTTQFNADTARSIPAQNGYATGQITNLTIDGSGVMLANFSNNQTKPIGQIALASFTNEQGLQPVGGTSWKETFASGIPGYDAPQTGTLGSIVSNSLEESNVNLTNELVELIKAQSNYQANAKTISTQSTIMQTIIQMA	PGPT0015485_1440	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015485-flgE-K02390	NA	NA
D1-36_01353	2892			hypothetical protein	ATGCACACCGACACAACTCGCGAGAACCCGCAGGGCACCGCGCCGCTGGCCGCCGATTCGAGCCCGGATCTGTCCGCCACCGCGCCGGGCCAACTGCGCGTGATCAAGCGTAACGGCACTGTCGTTCCCTACACCGATGACAAGATCACCGTCGCCATCACCAAAGCGTTCCTCGCAGTTGAGGGCGGCACCGCTGCCGCCTCGTCGCGAATCCACGACACCGTCGCCCGCCTGACCGAACAGGTCACCGCGACCTTCAAACGTCGCATGCCTTCGGGCGGCACCATCCACATCGAAGAAATCCAGGACCAGGTCGAACTGGCCCTGATGCGTGCCGGCGAGCAGAAAGTGGCTCGCGACTACGTGATCTACCGTGACTCCCGCGCCAAGGAGCGCGCCACCCGCGCGCCGGCCGACGCGCCGGTCCAGGCTCACCCTTCGATCCGCATCGCACGCGCCGACGGCAGCCTCGCGCCGCTGGACATGGGCCGGCTGAACACCATCGTCACCGAGGCCTGCGAAGGTCTGGAAGAAGTCGATGGCGACCTGATCCAGCGCGAAACCCTGAAGAACCTCTATGACGGCGTCGCCCTCAAGGACGTCAACACCGCCCTGGTGATGACCGCGCGGACCCTGGTGGAACGCGAGCCGAACTACTCGTTCGTGACCGCGCGCCTGCTGATGGACACCCTGCGCGCCGAAGGCCTGAGCTTCCTGGAAGTCGCCGAGAGCGCGACCCACCACGAAATGGCCGACCTGTACGCCAAGGCCCTGCCGGCCTATGTCGCCAAGGGTATCGAGTACGAATTGCTGAACCCTGTCCTGGCCGAATTCGACCTGGAAAAACTCGGTAAGGCGATCAACCACGAGCGTGACCAGCAATTCACCTACCTGGGCCTGCAAACCCTGTACGACCGTTACTTCATCCACAAGGATGGCGTGCGCTTCGAACTGCCGCAGGTCTTCTTCATGCGCGTGGCCATGGGCCTGGCGATCGAAGAGAAGCAGCGTGAAGACCGTGCGATCGAGTTCTACAACCTGTTGTCGTCCTTCGACTACATGGCCTCGACCCCGACCCTGTTCAACGCCGGCACCCTGCGTCCACAGCTGTCGAGCTGCTACCTGACCACCGTGCCGGACGACCTGTCGGGCATCTACGGCGCAATCCACGACAACGCCATGCTGTCCAAATTCGCCGGTGGCCTGGGCAACGACTGGACCCCGGTCCGCGCATTGGGCTCGTACATCAAGGGCACCAACGGCAAATCCCAGGGCGTCGTGCCGTTCCTCAAAGTGGTCAACGACACCGCCGTTGCGGTCAACCAGGGCGGCAAGCGCAAGGGCGCGGTCTGTGCCTACCTGGAAACCTGGCACATGGACATCGAAGAGTTCATCGAGCTGCGCAAGAACACCGGTGATGATCGTCGTCGTACCCACGACATGAACACCGCCAACTGGATCCCTGACCTGTTCATGAAGCGCGTCTTCGATGACGGCAAGTGGACCCTGTTCTCGCCGTCCGAAGTGCCGGACCTGCATGACCTGACCGGCAAGGCCTTCGAAGAGCGCTACGAGTACTACGAAGCCCTGACCGAGTACAACAAGATCAAGCTGTTCAAAGTCGTCCAGGCCAAAGACCTGTGGCGCAAGATGCTGTCGATGCTGTTCGAGACCGGCCACCCATGGCTGACCTTCAAGGACCCGTGCAACCTGCGCAGCCCGCAGCAGCACGTGGGCGTGGTCCACAGCTCGAACCTGTGCACCGAGATCACCTTGAACACCAACAAGGACGAGATTGCGGTCTGCAACCTGGGCTCGATCAACCTGCCGAACCACATCGTCGACGGCAAGCTGGACACCGCCAAGCTGCAACGCACCGTGAACACCGCCGTGCGCATGCTCGACAACGTGATCGACATCAACTACTACTCGGTGCCGCAAGCGAAGAACTCCAACTTCAAGCACCGTCCGGTCGGCCTGGGCATCATGGGCTTCCAGGACGCGCTGTACCTGCAGCACATCCCGTACGGTTCGGACGCTGCGGTCGAGTTCGCCGACAAGTCCATGGAAGCGGTCAGCTACTACGCGATCCAGGCTTCCTGCGACCTGGCCGACGAGCGCGGTTCGTACGAGACGTTCCAGGGTTCGCTGTGGTCCCAGGGCATCCTGCCGCTGGACTCGCAACAGATCCTGATCGCCCAGCGCGGCGAGAAGTACATCGACGTGGATCTGAACGAAACCCTGGACTGGGCACCGGTTCGCGCCCGTGTGCAGAAAGGCATCCGTAACTCCAACATCATGGCCATCGCACCGACCGCCACCATCGCCAACATCACTGGCGTGTCGCAGTCGATCGAACCGACCTACCAGAACCTGTACGTGAAATCGAACCTGTCGGGCGAATTCACCGTGATCAACCCGTACCTGGTTCGCGACCTCAAGGCCCGCGGCCTGTGGGACTCGGTCATGATCAACGACTTGAAGTACTACGACGGTTCGGTGCAGCAGATCGAGCGCATCCCGCAAGAGCTCAAAGCGCTCTATGCGACCGCGTTCGAAGTGGACACCAAGTGGATCGTAGACGCCGCCAGCCGTCGCCAGAAGTGGATCGACCAGGCTCAGTCGCTGAACCTGTACATCGCCGGCGCCTCGGGCAAGAAGCTGGACGTGACCTACCGCATGGCTTGGTACCGTGGCCTGAAAACGACTTATTACCTCCGTGCCTTGGCCGCCACCAGCACCGAGAAGTCGACCATCAACACCGGCAAGCTGAACGCGGTTTCCGCTGGCGGCAACCACGGTGATGACTCAGTCCTGGCTGCTCCAGCAGGACCTGCGCCAGTGCCAAAAGCCTGCGCGATCGATGAGCCGGATTGCGAAGCTTGCCAATAA	MHTDTTRENPQGTAPLAADSSPDLSATAPGQLRVIKRNGTVVPYTDDKITVAITKAFLAVEGGTAAASSRIHDTVARLTEQVTATFKRRMPSGGTIHIEEIQDQVELALMRAGEQKVARDYVIYRDSRAKERATRAPADAPVQAHPSIRIARADGSLAPLDMGRLNTIVTEACEGLEEVDGDLIQRETLKNLYDGVALKDVNTALVMTARTLVEREPNYSFVTARLLMDTLRAEGLSFLEVAESATHHEMADLYAKALPAYVAKGIEYELLNPVLAEFDLEKLGKAINHERDQQFTYLGLQTLYDRYFIHKDGVRFELPQVFFMRVAMGLAIEEKQREDRAIEFYNLLSSFDYMASTPTLFNAGTLRPQLSSCYLTTVPDDLSGIYGAIHDNAMLSKFAGGLGNDWTPVRALGSYIKGTNGKSQGVVPFLKVVNDTAVAVNQGGKRKGAVCAYLETWHMDIEEFIELRKNTGDDRRRTHDMNTANWIPDLFMKRVFDDGKWTLFSPSEVPDLHDLTGKAFEERYEYYEALTEYNKIKLFKVVQAKDLWRKMLSMLFETGHPWLTFKDPCNLRSPQQHVGVVHSSNLCTEITLNTNKDEIAVCNLGSINLPNHIVDGKLDTAKLQRTVNTAVRMLDNVIDINYYSVPQAKNSNFKHRPVGLGIMGFQDALYLQHIPYGSDAAVEFADKSMEAVSYYAIQASCDLADERGSYETFQGSLWSQGILPLDSQQILIAQRGEKYIDVDLNETLDWAPVRARVQKGIRNSNIMAIAPTATIANITGVSQSIEPTYQNLYVKSNLSGEFTVINPYLVRDLKARGLWDSVMINDLKYYDGSVQQIERIPQELKALYATAFEVDTKWIVDAASRRQKWIDQAQSLNLYIAGASGKKLDVTYRMAWYRGLKTTYYLRALAATSTEKSTINTGKLNAVSAGGNHGDDSVLAAPAGPAPVPKACAIDEPDCEACQ	PGPT0021340_1330	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021340-nrdA|nrdE-K00525	NA	NA
D1-36_01354	723	ompR_2		Transcriptional regulatory protein OmpR	GTGGAACAAGAAGCCTGGCAGATATTGATTGTCGAGGATGACCAGCGTCTGGCCGAGCTGACCCGCGAATACCTGGAAAGCAATGGCCTTCGCGTCGCCATCGAGGGCAACGGCGCGGTCGCGGCGCAGCGGATCATCGACGAGCAGCCGGACCTGGTGATCCTCGACCTGATGCTGCCCGGCGAAGATGGCCTGAGCATCTGCCGCAAAGTGCGCGAGCACTACGACGGCCCGATCCTCATGCTGACGGCGCGTACCGACGACACCGACCAGATCCAGGGCCTGGACCTTGGGGCTGATGACTACGTCTGCAAGCCGGTGCGGCCACGCCTGTTGCTGGCGCGCATCCAAGCCCTGTTGCGGCGCAGCGAGCCGGAGCCGTCCGTGCCGCAGAAACCGCGCCGCCTGGAGTTCGGGCCGCTGGTGGTCGACGACGCCTTGCGCGAAGCCTGGTTGCAGGACAAGGGGATCGAGCTGACCAGCGCCGAATTCGACCTGCTGTGGCTGCTGGTGTCCAATGCCGGACGCATCCTGTCTCGCGAGGAAATCTTCACTGCCCTGCGCGGGATCGGCTACGACGGCCAGGACCGCTCCATCGACGTGCGCATCTCGCGCATCCGCCCCAAGATCGGTGACGACCCCGACCATCCACGGTTGATCAAGACCATTCGCAGCAAAGGCTACCTGTTCGTTCCCGAAGCTTGCGTAGACGCCGCTCCGTGA	MEQEAWQILIVEDDQRLAELTREYLESNGLRVAIEGNGAVAAQRIIDEQPDLVILDLMLPGEDGLSICRKVREHYDGPILMLTARTDDTDQIQGLDLGADDYVCKPVRPRLLLARIQALLRRSEPEPSVPQKPRRLEFGPLVVDDALREAWLQDKGIELTSAEFDLLWLLVSNAGRILSREEIFTALRGIGYDGQDRSIDVRISRIRPKIGDDPDHPRLIKTIRSKGYLFVPEACVDAAP	PGPT0015035_278	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-BF-RST_PH|TEMPERATURE|STARVATION_SIGNALLING_SYSTEM,PGPT0015035-rstA-K07661	NA	NA
D1-36_01355	1611	sasA_6		Adaptive-response sensory-kinase SasA	GTGAACTCGATCTTCCTGCGCATCTATGGCGGCATGTGCGCGGCCTTGGTGTTGGTCGCGGTACTGGGCGTACTGGCGCTGCATCAGCTCAACCAGACGCGTGCCGAGCAGTACCGCGAGCGCCTGGCCCATGGCACGTTTTCCTTGATGGCCGATAATCTGCGGCCGATGAACGGCACGGAGCGCCGTCGTGCCCTGGCGGTGTGGGCGCGCCTGCTGGGCATCCCGCTGGAACTGCAGGCGCTCAGCCAGGCCGACCTCGACCTGGGCCAGCGCACCCGCGTGCTGCGCGGGCAGGTCCTGGTGGAACAGACCGGCCCCCACGCGGCGAAGGTCTATCGGCTGGTCAGCGACGGCGAGCAGTTGACATTGGTAGGGGAGGTTCGCCAGATCAGTGAGCAATTGGCCCGGGCGACAATCTATTTACTGGCCGACGAACTGGTGCGTTACCCGGTGGCCGAGCAGCCCGAGCGGCTTGCACAACTCAAACAGGAAAAGGGCTTCGGTTTCGATCTGCGCCTGATGACCGTCGACCAGGCGGACATGGACGAAGACCAGCGTCGTCGGGTGTCCGAGGGCGATACGGTGATGGCCCTGGGCAAGGGCGGCGACTCGATCCGGGTATTCGCCGGGATGGTTGGCACGCCGTGGGTCCTGGAAATCGGCCCCTTGTACCAGATGAATCCGTACCCGCCCGAATGGCTGGTGCTGATCGCGGCGCTGGGCTTGAGCCTGATCGGTTTGATCGTCTACCTGCTGGTACGCCAGTTGGAGCGACGGCTGCGCGGCCTGGAATCGGCCGCCACCCAGATTGCCCAGGGCAGCCTGGAGACCCGCGTGCCGGCCCGGGGCGCCGATTCGGTGGGGCGTCTGGCCGCTGCGTTCAACGCCATGGCCGAGCACTTGCAGCAGTTGTTGGCGATCCAGCGGGAGCTGGTGCGCGCGGTGTCCCACGAATTGCGCACACCGGTGGCGCGCCTGCGTTTCGGCCTGGAAATGCTCGGCAGCGCCAGCACGCCCGAGGCCCGGGACAAATACCTGGCGGGCATGGACCACGACATCGAAGACCTGGATCGGTTGGTGGATGAAATGCTGACGTATGCGCGCCTGGAGCAGGGGTCGCCGGCGTTGAACTTCCAGCGGGTGGATCTGGATGCGCTGGTCAATCAGGTCATAGAAGAACTGGGACCTTTACGCGCCGGGATCACGGTGGAGCGTGGCCTGTGCCTGTCGGCCGCCGATTGCGACGACGCCTGGGTCGAGGCTGAGCCGCGTTTCCTGCATCGCGCCCTGCAGAATCTGGTGGGCAACGCCATGCGCCATGCCCGATCACGGGTGACAGTGAGTTACCAGGTGGGCCAGTTGCGCTGCCGGGTCGACGTCGAGGATGACGGGCCGGGGGTGCCGGAGGCCGCGTGGGAACGGGTATTCAAGCCGTTCCTGCGCCTGGACGACAGCCGGGCCCGCGCCTCGGGTGGCCATGGATTGGGGCTGTCGATCGTGCGCCGGATCATTCATTGGCATGACGGCCGGGCCTTGATCAACAAGAGCAAAAGCCTGGGCGGGGCGTGTTTCAGCTTGAGTTGGCCGAGGCATCAGGATCGGTCCTGA	MNSIFLRIYGGMCAALVLVAVLGVLALHQLNQTRAEQYRERLAHGTFSLMADNLRPMNGTERRRALAVWARLLGIPLELQALSQADLDLGQRTRVLRGQVLVEQTGPHAAKVYRLVSDGEQLTLVGEVRQISEQLARATIYLLADELVRYPVAEQPERLAQLKQEKGFGFDLRLMTVDQADMDEDQRRRVSEGDTVMALGKGGDSIRVFAGMVGTPWVLEIGPLYQMNPYPPEWLVLIAALGLSLIGLIVYLLVRQLERRLRGLESAATQIAQGSLETRVPARGADSVGRLAAAFNAMAEHLQQLLAIQRELVRAVSHELRTPVARLRFGLEMLGSASTPEARDKYLAGMDHDIEDLDRLVDEMLTYARLEQGSPALNFQRVDLDALVNQVIEELGPLRAGITVERGLCLSAADCDDAWVEAEPRFLHRALQNLVGNAMRHARSRVTVSYQVGQLRCRVDVEDDGPGVPEAAWERVFKPFLRLDDSRARASGGHGLGLSIVRRIIHWHDGRALINKSKSLGGACFSLSWPRHQDRS	PGPT0015040_150	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-BF-RST_PH|TEMPERATURE|STARVATION_SIGNALLING_SYSTEM,PGPT0015040-rstB-K07639	NA	NA
D1-36_01356	735			hypothetical protein	ATGCCGGGCATGAACCCACTCCCCGCCCTACCCGCCTGCTGCTCGCCTCTGGATGAACAGTGGCTGCTGCCCGATGCCCTGGCCGATACGGTGCTGCTCAGTACGCGTTTCGATCCGCTGCTGCTCGTCGCCGCCGATTTCCCCAACAGCGCTATCGAGCCGCCAGCGAGCATCCAGCGCTCGGTGGCCAAGCGCCAGGCGGAGTTCCTCGCCGGGCGAGTCTGCGCCCGGGCGGCCTTGCATCGGCTTGATGGAATCGCCTGTATTCCCGCCATCGGCGAAGACCGCGCACCGGTGTGGCCCGCCCATGTCAGCGGTTCGATCACCCACAGTACCGGCCGGGCGGCCGCCATTGTCGCGAAGAAGCAGCGTTGGCAAGGGCTGGGCATGGACCTGGAAAACCTGCTCGACCCCGAACGCGCCGAGCGCCTGGCGGGCGAAATCCTCACGCCTGCGGAACTGCTGCGCATGGCGACCGTCTCGCGCGATGATCGTGCGCTGCTGGTTACGCTGACCTTCTCGGTCAAGGAAAGCCTGTTCAAGGCGCTGTACCCGGTCGTTGGGCAACGTTTCTATTTCGAACATGCCGAGGTGCTGGAGTGGTCCCATGATGGGCAGGTGCGGCTGCGACTACTGACCGATCTTTCGCCCGAGTGGCGCCATGGCAGTGAGTTGCAAGGGCAGTTCGGGGTGAGGGATGGGCAGTTGTTGAGCCTGGTGGGGATCGAGGCCTGA	MPGMNPLPALPACCSPLDEQWLLPDALADTVLLSTRFDPLLLVAADFPNSAIEPPASIQRSVAKRQAEFLAGRVCARAALHRLDGIACIPAIGEDRAPVWPAHVSGSITHSTGRAAAIVAKKQRWQGLGMDLENLLDPERAERLAGEILTPAELLRMATVSRDDRALLVTLTFSVKESLFKALYPVVGQRFYFEHAEVLEWSHDGQVRLRLLTDLSPEWRHGSELQGQFGVRDGQLLSLVGIEA	PGPT0003225_170	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-ENTEROBACTIN|ENTEROCHELIN|ACINETOBACTIN|ANGUIBACTIN|CHRYSOBACTIN_METABOLISM,PGPT0003225-entD|basI|angD|cbsD|cbsE|aebD-K02362	NA	NA
D1-36_01357	789			hypothetical protein	ATGCGCAGATTGCTTGCCGTTGTACTTCTGGCCTTGAGCAGCGCCAGCCACGCCGCCATCCAGACCCAGGAGATTCCCTACACCAGTGCCGACGGCACGAAGCTGATCGGCTATTACGCCTACGACGACGCGGTCAAGGGCCCGCGCCCGGGCGTGGTGGTGGTGCATGAATGGTGGGGACTGAATGATTACGCCAAGCGCCGCGCCCGCGACCTTGCCAGCCTGGGCTACAGCGCCCTGGCGATCGACATGTACGGTGACGGCAAGAATACCGAGCACCCCAAGGACGCCCTGGCCTTCATGCAGGCCGCGCTCAAGGACGGCAAGGCGGCTAGCGCGCGCTTTCAGGCCGGGCTCGACCTCCTGAAGAAACAACCGCAGACCGATCCGGACAAACTTGCCGCCATCGGCTATTGCTTCGGTGGCAAGGTGGTGCTGGACGCCGCTCGCCAGGGCGTCCCATTGGCTGGCGTGGTGAGTTTCCATGGCGCCCTCGTCACCAAAACCCCGGCCACCCCAGGCAGTGTCAAAGCCAAGATCCTGGTGGAGCACGGCGCGCTGGACAGCATGGTCACCGAAGACAACGTGACCGCGTTCAAGAGCGAGATGGACAAGGCCGGCGCCGACTATAAGTTCGTCAGCCTCGACGGCGCCAAGCACGGCTTCAGCAACCCCGACGCCGACCGCCTGAGCCATGGCGAGCATGGCGGGCCGGACATCGGCTACAACAAGGAAGCCGATGAGAAGTCATGGGCGGACATGCAGAAGTTCTTCAAGAAGATTTTCTGA	MRRLLAVVLLALSSASHAAIQTQEIPYTSADGTKLIGYYAYDDAVKGPRPGVVVVHEWWGLNDYAKRRARDLASLGYSALAIDMYGDGKNTEHPKDALAFMQAALKDGKAASARFQAGLDLLKKQPQTDPDKLAAIGYCFGGKVVLDAARQGVPLAGVVSFHGALVTKTPATPGSVKAKILVEHGALDSMVTEDNVTAFKSEMDKAGADYKFVSLDGAKHGFSNPDADRLSHGEHGGPDIGYNKEADEKSWADMQKFFKKIF				NA	NA	NA	NA	NA
D1-36_01358	600			hypothetical protein	ATGACTCATATGAAAAAACTGCTGCTTGCATTCACTGTATTGGGTGCCACTGCCATGGCCCATGCCGATGACAATTTCGCCAGCCTGACCCTCGGCCAGACCAGTGACAAGGTCAAGAAATCCAATGCGCTGGACCGGAACCTGGGCAATCCGAACGCCGATGGCGTCATTGGCAAGGACACCACCTACGGCCTGCGCCTGGGCCGGCAGAACGATCAAGGCCGCTACTACGCTACCTATGACAACGTGTCGGGGAGCCACAACGGCATCAAGTTGCGCCAGGAAAACCTGCTGGGTAGCTACGATGTGTTTTATCCAGTGACCAGCAGCACCAAATTGTTCGGCGGTGGCACGGCGGGGCTGACCAAGTTGACCCAGGACTCCCCGGGCTTCAGCCGCGACACCGACATCGGCTACGCCGTTGGCTTGCAGGGCGGCGTCCTGCAACAAATTTCGCGAAACACCTCGGTGGAACTGGGGTACCGTTACCTGCGCAGCAATGCCAGCACTGAGATGAGCCCGCACGGGGGCGCGAAGGTCGGCTCCCTGGACCTGACCAGCAGCGCCCAGACTTACCTGTCCGCGAACTACACGTTCTAG	MTHMKKLLLAFTVLGATAMAHADDNFASLTLGQTSDKVKKSNALDRNLGNPNADGVIGKDTTYGLRLGRQNDQGRYYATYDNVSGSHNGIKLRQENLLGSYDVFYPVTSSTKLFGGGTAGLTKLTQDSPGFSRDTDIGYAVGLQGGVLQQISRNTSVELGYRYLRSNASTEMSPHGGAKVGSLDLTSSAQTYLSANYTF	PGPT0014016_15	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0014016-oprH-NA	NA	NA
D1-36_01359	678	phoP_1		Virulence transcriptional regulatory protein PhoP	ATGAAACTATTGGTTGTCGAAGACGAAGCGCTGTTGCGTCATCACCTGCAAACCCGTCTCACCGACAGCGGCCATGTGGTGCAGGCCGTGGCCAATGCCGAAGAGGCCTTGTATCAGGTCCGCGAGTTCAATCATGACCTGGCGGTGATCGACCTGGGCCTGCCGGGTATCAGCGGCCTGGAACTGATTCGCCGCCTGCGTTCCCAGGACAAGTCCTTCCCGATCCTGATCCTGACCGCCCGCGGCAACTGGCAGGACAAGGTCGAAGGCCTCGCCGCCGGGGCCGACGACTATGTGGTCAAGCCGTTCCAGTTCGAAGAGCTGGAGGCCCGGCTCAACGCCCTGCTGCGCCGCTCCAGCGGTTTCACCCAGTCGACCATCGTCGCCGGGCCATTGCTGCTCGACCTCAACCGCAAGCAGGCGTCCCTCGATGAAGAACCGCTGGCGCTGACGGCCTACGAATACCGCATCCTCGAATACCTGATGCGCCATCACCAGCAGGTCGTCGCCAAGGACCGCTTGATGGAGCAGTTGTACCCGGATGACGACGAGCGCGATCCCAATGTCATCGAAGTGTTGGTCGGCCGCTTGCGCCGCAAACTGGAAGCCCCGGCCGGCTTCAAACCGATCGACACCGTGCGGGGCCTGGGTTACCTGTTCAACGAGCGCTGCCAGTGA	MKLLVVEDEALLRHHLQTRLTDSGHVVQAVANAEEALYQVREFNHDLAVIDLGLPGISGLELIRRLRSQDKSFPILILTARGNWQDKVEGLAAGADDYVVKPFQFEELEARLNALLRRSSGFTQSTIVAGPLLLDLNRKQASLDEEPLALTAYEYRILEYLMRHHQQVVAKDRLMEQLYPDDDERDPNVIEVLVGRLRRKLEAPAGFKPIDTVRGLGYLFNERCQ	PGPT0011060_293	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS|LIPID|IVA_REGULATION,PGPT0011060-phoP-K07660	NA	NA
D1-36_01360	1347	phoQ	COG0642	Virulence sensor histidine kinase PhoQ	GTGATTCGTTCCCTGCGGCTGCGCTTGATGCTGGCCGCCATGACCCTGGCGGTGTTGTTCATGCTGGCGTTGCTGCCGGCGATGCAAGGCGCGTTCAGCCTGGCGTTGCAGGAATCCATCGAGCAACGCCTGGCGTCGGATGTGACCACGCTGATTTCCGCCGCCCGGGTGGAAAACAATCGACTGAAGATGCCGGCGCAATTGCCCGACGAACGCTACAACCTCGCCGATGCCCGGCTGTTGGGCTACATCTATGATCGCGACGGACGCCTGGTCTGGCGTTCGAAGGCGACCCAGGAAGAGCGCATCAATTACGTGCCGCGCTACGACGGGCAGGGCAACCAGTTCGCGCGGATCCGCGAGGATAACGGCCAGGAGTTCTTCGTCTATGACGTCGAGGTCAAGTTGTTGGGCGGCCAGAGCGCGGCGTTCAGCATCGTTACCCTGCAGCCGGTGCGCGATTATGAGGTCACCTTGCAAGGACTGCGGGACAATCTTTACCTGGGATTTGGCGCTGCCCTGGCGGTATTGCTGGCGCTGTTGTGGATCGGCCTGACCTGGGGGTTGCGCGCCTTGCGGCGCCTGAGCCAGGAGCTGGATGAAATCGAAGCAGGCACCCGCGAAAGCCTCAGCTCCGCTCACCCCCGCGAACTGTTGCGCCTGACCGGCTCCCTCAACCGCCTGTTGCACAGCGAGCGCGAGCAGCGCAGCCGTTATCGGGACTCCCTCGATGACCTGGCTCACAGCCTGAAGACCCCGCTGGCGGTGTTGCAAGGTGTCAGCGAAGACATGGCCCGGCGCCCCCAGGACCGCGGACAGGCGTGGGTGCTGCAAACCCAGATCGAACGCATGAGCCAGCAGATCGGCTATCAGTTGCAGCGCGCCAGCCTGCGTAAAAGCGGTCTGGTGCGGCACCAGGTGCCCTTGCGTCCAGTGCTGCAAAGCCTGTGCGACACCCTCGACAAGGTCTATTGCGACAAGCGCGTTCGGGTCGATTTCGATCTGCCTGAGCAGGGCCAGGTGCCGATCGAACAGGGCGCCCTCCTGGAGATGCTCGGCAACCTTTTGGAGAACGCTTATCGGCTATGCCTGGGGGAGGTTCGGGTCAGCATGCACCAGACCCTCGGCGGTACGGAGTTGAGCGTCGAGGACGACGGCCCGGGTGTGCCACCGGACCAGCGTGCGCGGATTCTCCAACGGGGCGAGCGATTGGATCGCCAGCATCCGGGGCAGGGAATCGGGTTGGCGGTGGTCAAGGACATCATCGAAAGCTACGGCGCGCGATTGACCCTGGGGGATTCGGAGTTGGGCGGCGCGGCGTTTCGGATTCTTTTTCCGGTGGTTTGA	MIRSLRLRLMLAAMTLAVLFMLALLPAMQGAFSLALQESIEQRLASDVTTLISAARVENNRLKMPAQLPDERYNLADARLLGYIYDRDGRLVWRSKATQEERINYVPRYDGQGNQFARIREDNGQEFFVYDVEVKLLGGQSAAFSIVTLQPVRDYEVTLQGLRDNLYLGFGAALAVLLALLWIGLTWGLRALRRLSQELDEIEAGTRESLSSAHPRELLRLTGSLNRLLHSEREQRSRYRDSLDDLAHSLKTPLAVLQGVSEDMARRPQDRGQAWVLQTQIERMSQQIGYQLQRASLRKSGLVRHQVPLRPVLQSLCDTLDKVYCDKRVRVDFDLPEQGQVPIEQGALLEMLGNLLENAYRLCLGEVRVSMHQTLGGTELSVEDDGPGVPPDQRARILQRGERLDRQHPGQGIGLAVVKDIIESYGARLTLGDSELGGAAFRILFPVV	PGPT0011065_510	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_ACIDIC_STRESS	ACIDIC_STRESS_REGULATION,PGPT0011065-phoQ-K07637	NA	NA
D1-36_01361	999			putative HTH-type transcriptional regulator	ATGCGCCAACGCACAATTGCCAGCCATTTCGCCCGCGCAGCCCTGGGTGGCGCGCGCCGGCAAGGCTTTGACTATTCGTCGCTGCTGCAACAGCTGGGCATCAGCCCGGAGTTGCTCGACGAGCCGCGGGCACGCATCGCGCCCGAGCAGTTCGCCCGCCTGTTGCAGGCGCTGTGGGTGGCGTTGGGGGACGAATACCTGGGATTCGGCAGCGCCCCGAGTAAACCGGGGACGTTTGCCATGATGTGTCACACGTTGATCCACTGTCGGACCCTGGGCAAAGCCCTGCAACGCGGCCTGTTGTTCTACAGCCTGTTTCCCGATGCGCCGAGCCTGATCCTGGAGAGCGAAGGCGACCGGGTACGGTTGACCCTGGACGAGTCGACGCTACGCGACCCTGATCACTTCCTGGCGGAAAGCCTGCTGGTCATCTGGCATCGCCTCGGCAGTTGGCTGATCGGCCAACGGATCGGCCTGGAACAGGCCACCTTCAGCTACGCCAAGCCCAGCCACGGCGCAGAATACGACCTGCTGTTCCCTTGCCCGCTGGTCTTCGAGGCCCGACGCAGCAGCTTGTTATTCCATGGTCGCTACCTGGAAATGCCCTTGCTGCAGGACGAGCGAACCCTCAAGCATTTTCTCGAACGCTCCCCCGCCGACCTGCTGTCGCGCCCAGACGACGGCCACAGCCTGACCAGCCAACTGCGCCGCCTCCTCAGCCGCGACACGGCGCGCTGGCCCGACCTGGACACCGTCGCCGCACACCTGCACATCAGCGCCCAGACGCTGCGCCGGCACCTTCGCGAAGAAGGCACCAGCTTTCAGGAGCTCAAGGATCAGTTGCGGCGGGATATCGCCATCTACCATTTGGGCCGGGCGGATCTGTCGTTGCAGCAGATTGCCGAACAGTTGGGATTCTCCGAGCCGTCGGCGTTTCATCGGGCGTTCAAGAAGTGGACCGGGGTGACGCCGGGGGCTTATCGGGAGTTGGAAAACTGA	MRQRTIASHFARAALGGARRQGFDYSSLLQQLGISPELLDEPRARIAPEQFARLLQALWVALGDEYLGFGSAPSKPGTFAMMCHTLIHCRTLGKALQRGLLFYSLFPDAPSLILESEGDRVRLTLDESTLRDPDHFLAESLLVIWHRLGSWLIGQRIGLEQATFSYAKPSHGAEYDLLFPCPLVFEARRSSLLFHGRYLEMPLLQDERTLKHFLERSPADLLSRPDDGHSLTSQLRRLLSRDTARWPDLDTVAAHLHISAQTLRRHLREEGTSFQELKDQLRRDIAIYHLGRADLSLQQIAEQLGFSEPSAFHRAFKKWTGVTPGAYRELEN				NA	NA	NA	NA	NA
D1-36_01362	1332	dctA2	COG1301	C4-dicarboxylate transport protein 2	ATGACGACTCGTCAGCCCTTGTACAAATCCCTGTATTTCCAGGTAATCGTAGCCATTGCCATCGGCATTTTGCTCGGCCACTTCTACCCGCAGACCGGCGTTGCCCTCAAGCCGTTCGGTGACGGGTTCATCAAGTTGATCAAGATGGTCATCGCCCCGATCATCTTCTGTACCGTCGTCAGTGGTATCGGCGGCATGCAAAACATGAAGTCGGTCGGCAAGACCGGCGGCTACGCGCTGCTGTATTTCGAAATTGTCTCTACCATTGCCCTGCTGATCGGCCTGGTCGTGGTCAACGTCGTGCAACCGGGCAACGGCATGCACATCGACGTAACGACCCTGGACACCAGCAAGATCGCCGGCTTCATCAATGCCGGTAAAGACCAGAGCATCGTTGCCTTCATTCTCAACGTGATCCCTAACACCATCGTCGGCGCGTTCGCCAACGGTGACATCCTGCAAGTGCTGATGTTCTCGGTGCTCTTCGGTTTCGCCCTGCATCGCCTGGGTTCTTATGGCAAGCCGGTGCTGGACTTCATCGACCGTTTCGCCCACGTGATGTTCATCATCATCAACATGATCATGAAGCTGGCCCCGATCGGTGCGTTCGGCGCCATGGCCTTCACCATCGGCGCCTACGGTGTCGGTTCGCTGGTGCAACTGGGCCAGCTGATGATCTGCTTCTACATCACCTGCGTGGTCTTCGTGCTGGTGGTGCTGGGCGCCATCTGCCGCGCCCACGGCTTCAGCGTGGTCAAGCTGATCCGCTACATCCGTGAAGAACTGCTGATCGTGCTGGGTACCTCCTCCTCGGAATCGGCCCTGCCGCGCATGCTGATCAAGATGGAGCGCCTGGGTGCCAAGAAATCCGTGGTGGGTCTGGTGATCCCGACTGGCTACTCGTTCAACCTCGACGGTACTTCGATCTACCTGACCATGGCCGCGGTGTTCATCGCCCAGGCCACCGACACTCCAATGGACATCACGCATCAGATCACCCTGTTGCTGGTCCTGCTGCTGTCGTCCAAAGGCGCTGCCGGCGTGACCGGTAGTGGTTTCATCGTGCTGGCGGCAACCCTGTCGGCCGTGGGCCATCTGCCTGTGGCGGGCCTGGCGCTGATCCTGGGTATCGACCGCTTCATGTCCGAAGCCCGTGCCCTGACCAACCTGGTGGGCAACGCCGTTGCCACGATCGTGGTCGCCAAGTGGGTCAAGGAGCTGGACGAAGACCAGTTGCAGACCGAACTGGCCTCCGGTGGTCGCGGTATCTCCGACGTGCGTGAAGACGACGACGCGGTTGCAACGGCCGAAACCGCGCTGCCAACCAAGTAA	MTTRQPLYKSLYFQVIVAIAIGILLGHFYPQTGVALKPFGDGFIKLIKMVIAPIIFCTVVSGIGGMQNMKSVGKTGGYALLYFEIVSTIALLIGLVVVNVVQPGNGMHIDVTTLDTSKIAGFINAGKDQSIVAFILNVIPNTIVGAFANGDILQVLMFSVLFGFALHRLGSYGKPVLDFIDRFAHVMFIIINMIMKLAPIGAFGAMAFTIGAYGVGSLVQLGQLMICFYITCVVFVLVVLGAICRAHGFSVVKLIRYIREELLIVLGTSSSESALPRMLIKMERLGAKKSVVGLVIPTGYSFNLDGTSIYLTMAAVFIAQATDTPMDITHQITLLLVLLLSSKGAAGVTGSGFIVLAATLSAVGHLPVAGLALILGIDRFMSEARALTNLVGNAVATIVVAKWVKELDEDQLQTELASGGRGISDVREDDDAVATAETALPTK	PGPT0001450_1303	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_ASPARTATE_TRANSPORT,PGPT0001450-dctA-K11103	NA	NA
D1-36_01363	1182	smtB_1	COG1804	Succinyl-CoA--L-malate CoA-transferase beta subunit	ATGCAAGGCCCACTGGCATCGCTCAAGGTACTGGATTTCTCGACCCTGCTGCCGGGGCCGTTCGCCTCGCTGTTGCTGGCAGACATGGGCGCCGAGGTGCTGCGGATCGAGTCGCCGGACCGTCCGGATCTGTTGCGGATTCTGCCGCCCCATGATCAGGACGTCTCGGCCAGCCATGCCTACCTCAACCGCAACAAGCGCAGCCTGGCACTGGACCTCAAGCAACCGGCGGCGCTGGAAATCATCAAGCGACTGTTGGACGACCATGACATCCTGCTCGAGCAGTTCCGTCCCGGCGTGATGGAGCGATTGGGGTTGGGGTATGAAGCCCTGAAGGCGATCAATCCGCGGCTGATCTATGTGTCGATTACCGGCTACGGCCAGACCGGCCCCTATCAGGCGCGTGCCGGTCATGACATCAACTACCTGGCATTGGCGGGTCTGGCGAGCCACACCGGGCGTGTCGGCAGCGGGCCGTTGCCGATGGGGATGCAAGTGGCCGACATCGCCGGCGGCTCTTTGCACGGGGTGATCGGGCTGTTGGCCGCGGTGATTGCACGTCAGCAGACCGGGCAGGGGCAACACTTGGACGTGAGCATGACCGATTGCGTCTTCAGCCTGAACGCACTGGCTGGCGCCGGTTACCTGGCCTGCGATGTGACGCCTGGGTGGGAGAATCATGTGCTCAACGGCGGCAGCTTCTATGACTATTACCGTACACGCGACGGGCGATGGATGTCGGTGGGCAGCCTGGAGCCGGTCTTCATGCAGGCCCTTTGCGAGACGCTGGGGCGGCCGGAACTGGCGGTCCAGGGGCTATCGCCCAAGCTTGAACAGCAACAGGCCCTCAAACTGGCACTGCAAGCCGAGTTCGAGAAACACGACTTCGACGAGCTGTGCCGCTTGTTCGCGAGGGTCGACGCCTGCGTCGAGCCGGTGCTGAGCCTGGAGGAGGCCGTGGGGCATGCGCAATTGCAGGCTCGGGAATTGGTCAAGCAGGTGCCCCGAGGGGATGGTTCGACTCAGGCGCAGATGGCCTGTCCGTTGAAGTTTTCCGAAGGACTGCCCGAGCCTCGGCATATCGGCGCGAGGCTGGGAGCGCACACGGACCAGGTGTTGGGTGAGTTGGGGTTCAGTGAGGAGCGGATTGCCCGGCTGCGTGATGACAGGGTCGTTGTGTAG	MQGPLASLKVLDFSTLLPGPFASLLLADMGAEVLRIESPDRPDLLRILPPHDQDVSASHAYLNRNKRSLALDLKQPAALEIIKRLLDDHDILLEQFRPGVMERLGLGYEALKAINPRLIYVSITGYGQTGPYQARAGHDINYLALAGLASHTGRVGSGPLPMGMQVADIAGGSLHGVIGLLAAVIARQQTGQGQHLDVSMTDCVFSLNALAGAGYLACDVTPGWENHVLNGGSFYDYYRTRDGRWMSVGSLEPVFMQALCETLGRPELAVQGLSPKLEQQQALKLALQAEFEKHDFDELCRLFARVDACVEPVLSLEEAVGHAQLQARELVKQVPRGDGSTQAQMACPLKFSEGLPEPRHIGARLGAHTDQVLGELGFSEERIARLRDDRVVV				NA	NA	NA	NA	NA
D1-36_01364	495	sprT		Protein SprT	ATGCTCGAGCAACTCAATACCCGCGTCGAAGAGTGTTATCAACAAGCTGAATCCTTTTTCAAACGTCCTTTCAAACGTCCGGTGGTCAGCCTCAAGTTGCGCGGCCAAAAGGCCGGTGTCGCGCACCTTCATGAAAATCTGCTGCGCTTCAATCCACAGCTGTACCAGGAGAACGCCGAGGATTTCCTCAAGCAGACGGTGGCCCATGAGGTCGCGCACCTGATCGCCCACCAACTGTTTGGCGACCGTATCCAGGCCCATGGAGAGGAATGGCAACTGATCATGCGTGGGGTCTACGAACTGCCACCCAACCGTTGCCACACCTACGAGATCAAACGCCGTACCGCAACCCGGTACATCTACAAATGCCCTTGCGACGGCAGCGACTTCCCATTCACGGCGCAACGCCACCGCCTGGTGCGCCAGGGGCGGCGGTACTTGTGCCGTAGCTGCCGCAATACTTTGGTGTTCAGTGGGGAGACGCGGGTCGAGTAG	MLEQLNTRVEECYQQAESFFKRPFKRPVVSLKLRGQKAGVAHLHENLLRFNPQLYQENAEDFLKQTVAHEVAHLIAHQLFGDRIQAHGEEWQLIMRGVYELPPNRCHTYEIKRRTATRYIYKCPCDGSDFPFTAQRHRLVRQGRRYLCRSCRNTLVFSGETRVE				NA	NA	NA	NA	NA
D1-36_01365	603	yohC_1		Inner membrane protein YohC	ATGATCCATCATGTCGTGGGGCTCTTTACCCACCCTGATCAAGAATGGAAGGAAATCCGTGGCGATCAGGAGGAAAGCATCAGCCACATGTACCTCACCCACACGCTGATCCTGGCGGCCATCCCGGCGGTATCGGCGTTCATCGGTACCACGCAGGTAGGATGGGTCATCGGCAATCGTCCACCGGTCATGCTCACCCAGGAAAGCGCCCTGTGGATGACCATCATGTCTTACCTGGCCATGTTGGGCGGCGTGGCGGTGATGGGAGCGTTCATCCACTGGATGGCTCGCACCTATGACGCCAACCCGAGCCTGGCTCGCTGCGTCGCGTTCGCCACGTACACCGCGACACCGCTGTTCATCGGCGGCCTGGCGGCGCTCTATCCCCACATGTGGCTGGGGATGATCGTCGGGACCGCGGCGATCTGCTACACGGTCTACCTGTTGTACGTAGGGCTGCCGACCTTCATGAACATCCCTCAGGACGAAGGTTTCCTGTTTTCCAGTTCGGTGCTGGCCGTGGGTTTGGTGGTGCTGGTGGCGATCATGGCGTTCACGGTGATTGTCTGGGGGCTGGGCGTGGGCCCGGTCTATACCAATTGA	MIHHVVGLFTHPDQEWKEIRGDQEESISHMYLTHTLILAAIPAVSAFIGTTQVGWVIGNRPPVMLTQESALWMTIMSYLAMLGGVAVMGAFIHWMARTYDANPSLARCVAFATYTATPLFIGGLAALYPHMWLGMIVGTAAICYTVYLLYVGLPTFMNIPQDEGFLFSSSVLAVGLVVLVAIMAFTVIVWGLGVGPVYTN				NA	NA	NA	NA	NA
D1-36_01366	825	ttcA	COG0037	tRNA-cytidine(32) 2-sulfurtransferase	ATGGGCACTCTTACGGTCAACCAGAACAAACTGCAAAAGCGCCTGCGCCGCCTGGCCGGTGAGGCGGTCGCCGACTACAACATGATCGAGGACGGCGACAAGGTCATGGTCTGCCTGTCCGGCGGCAAGGACAGCTACACCTTGCTCGACGTGCTGATGCATTTACAGAAGGTTGCACCGATCAAGTTCGACATCGTCGCGGTCAACATGGACCAGAAGCAGCCTGGGTTCCCGGAACATGTGCTGCCGGCCTACCTCGAGTCGCTGGGCGTCGAGTACCACATCGTCGAGAAAGACACCTATTCGGTGGTCAAGGAACTGATTCCCGAAGGCAAGACCACTTGTTCGCTGTGCTCACGCTTGCGCCGCGGAACGCTCTACACCTTCGCCGACGAGATTGGCGCGACCAAAATGGCCCTGGGTCACCACCGCGACGACATCGTCGAGACCTTTTTCCTCAACATGTTCTACAACGGCTCGCTCAAGGCCATGCCACCCAAGCTGCGGGCCGACGATGGGCGCAACGTGGTGATTCGCCCGTTGGCGTATTGCAACGAGAAGGACATCCAGGCCTATTCGGATTTCAAGCAATTCCCGATCATCCCGTGCAACCTGTGCGGCTCCCAGGAAAACCTGCAGCGCCAGGTGGTCAAGGAAATGCTCCAGGAATGGGAGCGCAAGACTCCGGGCCGTACCGAGAGCATTTTCCGCGGCTTGCAGAACGTCATCCCGTCGCAACTGGCGGACCGCAACCTGTTCGACTTCACCAACCTGCGCATCGACGAAAACGCCACGCCGCGGTTCGTCAATGTGGTGAACCTGTAA	MGTLTVNQNKLQKRLRRLAGEAVADYNMIEDGDKVMVCLSGGKDSYTLLDVLMHLQKVAPIKFDIVAVNMDQKQPGFPEHVLPAYLESLGVEYHIVEKDTYSVVKELIPEGKTTCSLCSRLRRGTLYTFADEIGATKMALGHHRDDIVETFFLNMFYNGSLKAMPPKLRADDGRNVVIRPLAYCNEKDIQAYSDFKQFPIIPCNLCGSQENLQRQVVKEMLQEWERKTPGRTESIFRGLQNVIPSQLADRNLFDFTNLRIDENATPRFVNVVNL				NA	NA	NA	NA	NA
D1-36_01367	675			hypothetical protein	ATGCGCGATTACAAGTGGCTGCACGAGTATTGTCTGAACCGCTTCGGTTCGGCGGCTGAACTGGAAGCCCACCTGCCTGTACCCAAGACCCCGGCGCAACTGCGCAAGATCAGCGACGACCGCTACCTCTCGACCATGGCCCTGCGGGTGTTTCGCGCCGGGCTCAAGCACAGCCTGGTGGACGCCAAGTGGCCGGCGTTTGAAGAGGTGTTCTTCAAATTTGATCCGGAGAAAGTCGTGCTGATGGGCGCCGAGCACCTGGAGCGGCTGATGCAGGACGCGCGGATCATTCGCCACCTGGGCAAGCTCAAGAGCGTACCGCGCAACGCGCAGTTGATCCTGGACGTGGCCCACGAAAAGGGCAGCTTTGGGGCGCTGGTCGCCGACTGGCCTGTGACTGACATCGTGGGCCTGTGGACTTATCTGAAGAAACACGGCCATCAACTGGGCGGCCTGTCGGCACCGCGTTTCCTGCGGATGATGGGCAAGGACACATTCGTGCCCAGTTATGACGTGGTAGCGGCGCTCAATGCCCAAGACATCATCGACAAAGCCCCCACGAGCCTTCGGGATCTTGCGACGGTGCAGGCAGCTTTCAATCAGTGGCACGAGGAGAGTGGCGGGCGGCCGATGTCACAGATTTCGATGATGCTGGCTTATACCGTGAATCATTGA	MRDYKWLHEYCLNRFGSAAELEAHLPVPKTPAQLRKISDDRYLSTMALRVFRAGLKHSLVDAKWPAFEEVFFKFDPEKVVLMGAEHLERLMQDARIIRHLGKLKSVPRNAQLILDVAHEKGSFGALVADWPVTDIVGLWTYLKKHGHQLGGLSAPRFLRMMGKDTFVPSYDVVAALNAQDIIDKAPTSLRDLATVQAAFNQWHEESGGRPMSQISMMLAYTVNH				NA	NA	NA	NA	NA
D1-36_01368	426			hypothetical protein	GTGGCTAAGAAGCCGAAAATCCTGCCGCCCATCCAATGGCTGGAGCCACGCGTACGCATCGCCCGCGCCGTCAGCCTGCTGTGCTTTTTCGGCTTGGTGGGGTTGCTCAGCGCGTATTACTTGCTCATCGCCGACCTGCACGGCGCGCGCCCGTGGGTGATCTTGCTGATCGAATTGGTGCCCCTGCTGATCCTCGCGCCGGGCATGCTCAGCGGCAGCGCCCGCGGGCATTCCTGGATGTGTTTCGTGGTCAATCTGTATTTCATCAAGGGCGCCCTGGCCGCCTACGATCCGAACCGGCATGTGTTCGGCTTGCTGGAAATGGCAGCGAGCGTGGCGGTGTTCTGCTCGGCGTTGCTGTACGTACGCTGGCGGTTTCAGTTGAAGCGGCGGTTGGCTGGCGAAGGCGATATCGCCGTCGCCTGA	MAKKPKILPPIQWLEPRVRIARAVSLLCFFGLVGLLSAYYLLIADLHGARPWVILLIELVPLLILAPGMLSGSARGHSWMCFVVNLYFIKGALAAYDPNRHVFGLLEMAASVAVFCSALLYVRWRFQLKRRLAGEGDIAVA				NA	NA	NA	NA	NA
D1-36_01369	606		COG0655	NAD(P)H dehydrogenase (quinone)	GTGAGCACGCCGTACATCCTGGTGTTGTATTACAGCCGCAGCGGCTCCACCAACGAAATGGCCCGGCAGATTGCCCGGGGCGTCGAGCAGGCCGGCCTGGAAGCGAGGTTGCGTACGGTGCCGGCGATCTCCGCCGAGTGCGAGGCGGTGTCGCCGGACATTCCGGAACAAGGCCCGCTGTACGCCACGCTCGATGACTTGAAAAATTGCGCCGGCCTGGCCCTCGGCAGCCCGACCCGTTTCGGCAACATGGCCGCGCCGCTGAAATACTTCCTCGACGGCACCAGCAACCTTTGGCTCACCGGAGCCCTCGTCGGCAAGCCCGCCGGCGTGTTTACCTCCACCGCGAGCCTGCATGGCGGCCAGGAAACCACCTTGTTATCGATGATGCTGCCACTGCTGCATCACGGCATGCTGATCACCGGCCTGCCTTACAGCGAGTCAGCCTTGATCGATACCCAGGGCGGCGGTACGCCCTACGGGCCGAGCCACCATGCTGGCGCCGATGGCAAAAGCGGCTTGAACGAACACGAAGTTGCCTTGTGCCGCGCCTTGGGATTGCGCCTGGCGAAAACCGCCCTGTTGCTGGAGAACGGCCGTGGCTAA	MSTPYILVLYYSRSGSTNEMARQIARGVEQAGLEARLRTVPAISAECEAVSPDIPEQGPLYATLDDLKNCAGLALGSPTRFGNMAAPLKYFLDGTSNLWLTGALVGKPAGVFTSTASLHGGQETTLLSMMLPLLHHGMLITGLPYSESALIDTQGGGTPYGPSHHAGADGKSGLNEHEVALCRALGLRLAKTALLLENGRG	PGPT0009460_1608	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_K_METABOLISM	PLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009460-wrbA-K03809	NA	NA
D1-36_01370	354	yfgD	COG1393	putative protein YfgD	ATGACTGATCTGACGCTTTATCACAACCCGCGCTGCTCCAAATCCCGCGGTGCGCTGGAACTGTTGGAGGCCCGCGGCCTGACGCCCACTGTCATTCGTTATCTGGAAACCCCGCTCGACGCCGAGCAGCTCAAGGCCTTGCTGGGCAAGCTTGGCATCAGCGCGCGGCAATTGCTGCGCACCGGCGAGGACGAGTACAAGGCGCTGGACCTGGCCAACGAGAACCTGGGCGAGGACGATCTGATCGCTGCCATCGTCGCCCATCCAAAGCTCATGGAACGGCCGATCCTCGAAGCCGGCGACAGAGCCGTGATCGGCCGTCCGCCGGAAAAGATTCTGGAGATCCTGCCGTGA	MTDLTLYHNPRCSKSRGALELLEARGLTPTVIRYLETPLDAEQLKALLGKLGISARQLLRTGEDEYKALDLANENLGEDDLIAAIVAHPKLMERPILEAGDRAVIGRPPEKILEILP	PGPT0004720_2660	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0004720-arsC1-K00537	NA	NA
D1-36_01371	468	resA_1	COG0526	Thiol-disulfide oxidoreductase ResA	ATGACAAGGCGATTGGCGGCGGCACTGGCTTTTTTCGGCATTCTATTGCTCGCCGGCTGTGGAAACGATTATGGGGTGGACCAGAACGGCCAGCCGATCGCTTCGAAGCGGTTGGACAAACAATGGGTGGTGCTCAATTACTGGGCCGAATGGTGCGCACCCTGCCGCACTGAAATTCCGGAATTCAACGCGCTCGCCGAGCAGCTCAAGGGTCGAAACGTGGGCGTGTTCGGTGTCAACTTCGATCAGGTACAGGGTGAAGAGCTCAGGAGCGCCAGCGAAAAAATGGGGATTCGCTTCAGCGTATTGGCCCAGGACCCGGCCGAATTCTTCGATATCCCTCGCAGCGAAGGATTGCCGGTGACCTACATCATCGATAACCAGGGCAAGGTGCGTGAGCAATTGCTTGGGGAGCAGACGGCGGCGGCGGTGATGGCGAAGCTGGAGGCGTTGCAGGCGCTGAAATAG	MTRRLAAALAFFGILLLAGCGNDYGVDQNGQPIASKRLDKQWVVLNYWAEWCAPCRTEIPEFNALAEQLKGRNVGVFGVNFDQVQGEELRSASEKMGIRFSVLAQDPAEFFDIPRSEGLPVTYIIDNQGKVREQLLGEQTAAAVMAKLEALQALK				NA	NA	NA	NA	NA
D1-36_01372	405			hypothetical protein	ATGAAACGCCTGTTCCTGGCCACGCTGGTCGGCGCTGGCCTGATGGGTTGCGCCGCCGATCCGGTGCAGCTGCAGCAAAACCGCAGCTATATTCTTGAATGGATCGGTGAGCGGCCATTGATGGACTACAGCCACCTGACCATCACCCTCGGCGATGATGGCCGGGCCTATGGCAATGCCGGCTGCAACCATTGGTTTGCGCCCTACACCCTGGAAGGCGACCGGCTGAGTTTCGGCAAGATCGGCAGCACCCGCAAACTCTGCCCCCCGGCAGTGATGGAGCAGGAGACGCGATTCTTGCAGGCGCTACAGAAAGTCGAACGCTGGGATGTTTCCCCTATCGAACAGATGCGTTTCTGGCCCGCCCAGGGCAAGCCGCTGCGCTGGTGGTTGGAGGAAGGCTGA	MKRLFLATLVGAGLMGCAADPVQLQQNRSYILEWIGERPLMDYSHLTITLGDDGRAYGNAGCNHWFAPYTLEGDRLSFGKIGSTRKLCPPAVMEQETRFLQALQKVERWDVSPIEQMRFWPAQGKPLRWWLEEG	PGPT0014615_847	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014615-hslJ-K03668	NA	NA
D1-36_01373	435			hypothetical protein	ATGGCCGAACACGATTTTCGCTACACCCTGATGAACCCGCAGCACACCTTGACCGAGGTCCGCGCCCTGGCCCCAGGCCGTTACCAGGTCACTGGCAATGGCGGTTCGATCCAGGCCAACGACGTATTGCTCGTGACCCTCAAGGGCAGCAAGGACCTGTCCATGCGCCTGACCGTGGACACCGTTCGCCATCTGCTCAAGCCAATGGGCCAGTGGACCGCCATGACTACCGGCCCGGTATTCGGCGAACTGGCGATCCACACCTGGCAGGTCAATTGCGACCGCTGCACCAAGGAACTGAGCTTCGAATTCGCCGTCGATGCCAAGCTCGGCACCAAGGCCCAGAAACCGGCCGCCACCGCGCGCATTGCCGAGCTGGGCTGGCAGACGGTCGGCGAGAGGCATCTGTGCCCCCAATGCCAGGAAGCCGCTTGA	MAEHDFRYTLMNPQHTLTEVRALAPGRYQVTGNGGSIQANDVLLVTLKGSKDLSMRLTVDTVRHLLKPMGQWTAMTTGPVFGELAIHTWQVNCDRCTKELSFEFAVDAKLGTKAQKPAATARIAELGWQTVGERHLCPQCQEAA				NA	NA	NA	NA	NA
D1-36_01374	2751	barA	COG0784	Signal transduction histidine-protein kinase BarA	GTGCTCAAGAAACTGGGAATCAAAGGCCGCGTGCTGTTGCTGACCCTGTTGCCAACCAGCCTGATGGCGCTGGTTCTGGGCGGCTATTTCACCTGGATGCAGCAATCGGACCTGCACGCCCAACTGCTGCAAAGGGGCGAAATGATCGCCGAACAGCTGGCGCCGCTGGTCGCCCCCGCCCTTAGCCGCCAAGACACCGAACTGCTGGAGCGCATCGCCACCCAGTCCCTCGAGCAAGCCGATGTCCGGGCCGTGACCTTCCTGGCCCCCGACCGCGCTCCGCTGGCCCACGCCGGCCCGACCATGCTCAACCGGGCACCGGAAGGCAACAGCAGTCAACTGCTGCAACGCACCGGCAACGACGCCACCCGCTACCTGCTGCCGGTGTTCGGCAAGCACCGCAACCTGGCCGGCGAACTGATCCCCGAAGAGGCCGACCGCCTGCTGGGCTGGGTCGAGCTGGAGTTGTCCCACAGCGGCATGTTGCTGCGCGGTTACCGCAGCCTGTTCGCCAGCCTGCTCCTGATCGCCGCCGGGCTGGGATGCACCGGGCTATTGGCCTTGCGCATGGGCCGCACCATCAACCGTCCGCTGAGCCAGATCAAGCAGGCCGTGGCGCAGCTCAAGGATGGGCACCTGGAAACCCGCCTGCCACCGCTGGGCAGTCAAGAGCTGGATGAATTGGCGTCGGGCATCAATCGCATGGCCGGGACCTTGCAGAACGCCCAGGAGGAATTGCAACACAGCATCGACCAGGCCACCGAAGACGTGCGCCAGAACCTGGAAACCATCGAGATCCAGAACATCGAGCTGGACCTGGCCCGCAAGGAAGCCCTGGAAGCGAGCCGGATCAAATCCGAGTTCCTGGCGAACATGAGCCATGAGATCCGCACGCCGCTCAACGGCATCCTGGGTTTCACCCATCTATTGCAAAAAAGCGAACTGACCCCGCGCCAGCTCGACTACCTGGGCACCATCGAAAAATCCGCCGACAGCCTGCTGGGCATCATCAACGAAATCCTCGACTTCTCGAAGATCGAGGCCGGCAAGCTGGTGCTCGACAGCATCCCGTTCAACTTGCGGGACCTGTTGCAGGACACCCTGACCATCCTCGCCCCCGCCGCCCATGCCAAGCAATTGGAATTGGTGAGCCTGGTCTACCGGGACACGCCGCTGTCGCTGGTGGGCGACCCGCTGCGTCTCAAGCAGATCCTCACCAACCTGGTGAGCAACGCCATCAAGTTCACCCGGGAAGGCACCATCGTCGCCCGCGCGATGCTCGAAGACGAGCACGAAGACAGCGTGCAGCTGCGCATCAGCATCCAGGACACCGGTATCGGCCTGTCCAGCCAGGACGTTCGCGCGTTGTTCCAGGCGTTCAGCCAGGCCGACAACTCCTTGTCCCGGCAACCCGGCGGCACCGGGCTGGGCCTGGTGATTTCCAAGCGGCTGGTGGAACAGATGGGCGGCGAGATCGGCGTGGACAGCACGCCAGGCGAAGGCTCGGAGTTCTGGATCAGCCTGCGCCTGCCCAAGACCCGCGACGACGCCGAGGATCTCCCCGGCCCGCCGTTGCTGGGCCGGCGGGTGGCCGTCCTGGAAAATCACGAGTTGGCGCGCCAGGCTTTGCAGCACCAGCTCGAAGACTGTGGCTTGCAGGTCACGCCGTTCAACACGCTGGAGAACCTGACCAACGGGGTCACGGTTGCTCACCAGACCGAACAGGCCATCGACCTGGCGGTGCTCGGCATCACCAGCAACGACATGCCACCCGAGCGCTTGAACCAGCACATCTGGGACTTGGAACACCTGGGCTGCAAAGTCCTCGTGCTGTGCCCTACCACCGAACAAACGCTGTACCACCTCTCCGTCCCGAACCCCCACAGCCAATTGCAGGCCAAGCCGGCCTGCACGCGCAAGTTGCGGCGGTCGCTTTCCGACCTGGTCAACCCGCGCCCAACGCGCAACGAACCCAATGAACCGGTGGCCAGCCGAGCGCCAAAGGTGCTGTGCGTGGACGACAACCCGGCGAACCTGCTGTTGGTGCAAACCCTGCTCGAGGACCTGGGCGCCCGGGTGCTGGCGGTGGAAAGCGGGTACGCCGCGGTCGAGGCGGTGCAACAGGAAACCTTCGACCTGGTCCTGATGGATGTGCAGATGCCCGGCATGGACGGTCGCCAGAGCACCGAGGCGATCCGCCAATGGGAAAGTGAGCGGCATTGCACACCGCTGCCGATCGTTGCCCTCACTGCCCACGCCATGGCCAACGAAAAACGCGCCCTGCTGCAAAGCGGTATGGATGACTACCTGACCAAGCCCATCAGCGAGCGGCAGCTGGCCCAGGTCGTGCTCAAATGGACCGGCCTGGCCTTGCGCAACCAGGTGCCGGACCGGGGCGCGGACGCCCATCGCAGCGGTGAGCTGCTGGTGCTCGATCATGAAGAAGGCCTGCGCCTGGCCGCCGGCAAGGCCGACTTGGCGGCGGATATGCTGGCGATGCTGCTGGCATCCCTCGAAGCCGACCGGGAGGCGATTCGCCAGGCCAGCGAAGCCAACGATCACAACGCCCTGATCGAGCGGGTCCACCGCCTGCACGGTGCCACGCGCTACTGCGGCGTACCGCAACTGCGCGCGGCCTGCCAGCGCAGCGAAACCCTGCTCAAGCAGAAGGATCCGAAGGCCGCGGCGGCCCTGGAAGACCTGGAGCTGGCCATCAATCGCCTGGCCAGCGAGGCTCGCATCAGTGCCTGA	MLKKLGIKGRVLLLTLLPTSLMALVLGGYFTWMQQSDLHAQLLQRGEMIAEQLAPLVAPALSRQDTELLERIATQSLEQADVRAVTFLAPDRAPLAHAGPTMLNRAPEGNSSQLLQRTGNDATRYLLPVFGKHRNLAGELIPEEADRLLGWVELELSHSGMLLRGYRSLFASLLLIAAGLGCTGLLALRMGRTINRPLSQIKQAVAQLKDGHLETRLPPLGSQELDELASGINRMAGTLQNAQEELQHSIDQATEDVRQNLETIEIQNIELDLARKEALEASRIKSEFLANMSHEIRTPLNGILGFTHLLQKSELTPRQLDYLGTIEKSADSLLGIINEILDFSKIEAGKLVLDSIPFNLRDLLQDTLTILAPAAHAKQLELVSLVYRDTPLSLVGDPLRLKQILTNLVSNAIKFTREGTIVARAMLEDEHEDSVQLRISIQDTGIGLSSQDVRALFQAFSQADNSLSRQPGGTGLGLVISKRLVEQMGGEIGVDSTPGEGSEFWISLRLPKTRDDAEDLPGPPLLGRRVAVLENHELARQALQHQLEDCGLQVTPFNTLENLTNGVTVAHQTEQAIDLAVLGITSNDMPPERLNQHIWDLEHLGCKVLVLCPTTEQTLYHLSVPNPHSQLQAKPACTRKLRRSLSDLVNPRPTRNEPNEPVASRAPKVLCVDDNPANLLLVQTLLEDLGARVLAVESGYAAVEAVQQETFDLVLMDVQMPGMDGRQSTEAIRQWESERHCTPLPIVALTAHAMANEKRALLQSGMDDYLTKPISERQLAQVVLKWTGLALRNQVPDRGADAHRSGELLVLDHEEGLRLAAGKADLAADMLAMLLASLEADREAIRQASEANDHNALIERVHRLHGATRYCGVPQLRAACQRSETLLKQKDPKAAAALEDLELAINRLASEARISA	PGPT0012930_597	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR|BF-VarA|VarS_SIGNALLING_SYSTEM,PGPT0012930-gacS|barA|varS-K07678	NA	NA
D1-36_01375	723	srrA	COG0745	Transcriptional regulatory protein SrrA	ATGAGCCCCCACGCCACCGTGCCGCCCCGTATCCTTTCCATAGAAGACGACCCCGTACTGGGTGCTTATGTTCATGAGCATCTGGGCCGCAGCGGGTTCGACGTCACTTGGTGCCAGAACGGCCAGGAAGGCCTGGAAATCGCCTGCCGGCAGGCTTTTGACGTCGTGTTGATGGACATCCTGCTGCCCGGCCTGGACGGTCTCGCGGTGTTGACGCATTTGCGCAAGCGCCAGGCGACGCCGGTGTTGCTGATGTCCGCGCTGGGCGCCGAAGCGGATCGCATCAGTGGCTTTCGCCTTGGTGCTGACGACTACTTGCCCAAGCCCTTCAGCATGGTGGAGCTACGGGTGCGCATCGAGGCCATCCTGCGGCGAGTCGCGCTGGACCGACGTCCGGCCCAGGTGGCGATCCTGCGCCAGAGCCAGGATCTGGGTTTCGACGAAGAGCGCAGCGATGTGCAGGTCCAGGGACAATGGGCGGGGTTGACGCGCAGCGAATATCGCTTGCTGGACGTGCTGCACCGCAGCGGCGAAGAAGTGTTGAGCAAGGCCTTCCTGTACCAGCACGTGTTACAGCGCGGTTACGCCCCCCACGATCGCAGCCTGGACATGCATGTCAGCCAGATACGCCGCAAGCTCAAGGCCATCGGCTATACCCAGCGCGAATTGCGCACGGTGTGGGGCAAAGGCTATGTCTTGAGTGTTGTCGATGAAATGGTCTGA	MSPHATVPPRILSIEDDPVLGAYVHEHLGRSGFDVTWCQNGQEGLEIACRQAFDVVLMDILLPGLDGLAVLTHLRKRQATPVLLMSALGAEADRISGFRLGADDYLPKPFSMVELRVRIEAILRRVALDRRPAQVAILRQSQDLGFDEERSDVQVQGQWAGLTRSEYRLLDVLHRSGEEVLSKAFLYQHVLQRGYAPHDRSLDMHVSQIRRKLKAIGYTQRELRTVWGKGYVLSVVDEMV	PGPT0003250_28	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-ENTEROBACTIN|ENTEROCHELIN_METABOLISM,PGPT0003250-pfeR|pirR-K19610	NA	NA
D1-36_01376	1422	pfeS	COG0642	Sensor protein PfeS	ATGAAATGGTCTGACCTGCCCGGCAGGCACTCGCTGTTCTGGAAGCTGGCATGCCTGCTGGTAGCGTTCTGCTTGCTGATGATCTGGCTGAGCTGGTCCTGGGGGCGCTACATGGAAGTGCGCAATCAGTTCCTTTCGGACGAAGCCCGCGGCACCCTCACGCGTTACGCCGCCGAAGCTGAGCAGGCGTGGCTGACCGATGGAAGCGCGGGCGTCGATCAATGGGTCTACGCTATGCAATATCGTGAAGCGAGCTGGGTAGGGGTGATTGGCGGTGACTTGCAGTCACTGAGCGAACACCCGCTCACGGACAGGGAAATCGAGCGCCTCACCTTTCTGCGCGGCCTCGATTGGCCCATCCACAAAAAGGGACGGCCGTGGTTGCGGGTGCCTTTCCCAGAGAATCCGTCCATCGGCAGCTTGGTGATCGAACTGCCCGAGCGTTTCCTGCCGGGACGTTATCGAGTGTTCTGGCGCGTGATCACCAACGGTGTCATTCCTGGGCTGTTTACCCTGCTGCTGTGTGTCGGGCTGTATCGCTTGCTGGTGGTGCCGCTCAATCAGCTGCGCGAACAGGCCAATGCCTGGCGCGCCGATCAGTTGAACGTGCGCCTGCCTGCCCGTACCACCGATCGCGCCGACGAACTGGGCGAACTGGGCCGCGCTTTCGATCAAATGTCCGAACGCCTGCAATCCACCGTCGCCCTGCAACAGCAACTGCTGCGAGACCTGTCCCATGAATTGCGCACGCCCTTGAGTCGCTTGCAGGTGGCGGGCGACAGTGAGCAGGACCTGATTCGCCTGCGCGAGCGCGTCGCCCGGGAAGTCGACTGCATGCAGGGGCTGGTCGAAGACACCTTGCAACTGGCCTGGCTCGATACCGACCGGGCGCCGTTGCCCGCCGAGGCGATCCAGGTCCAGGCGCTGTGGGAAATGCTCACCGAAAACGCCTGCTACGAAACCGGCTGGCCGGCGAGCCAGTTGCAATGCGCCGTCGACGCCAGCTGCTGGGTGCAAGGCAACCTCAATACTTTGGCTCAGGCCTTGGAAAACATCCTGCGTAACGCTATTCGCCATTCACCGCCCGGCGGCATTGTGCGCCTGGATGGTCGGCGTGAGGATGGGTTCTGGTTGCTGTGGCTGGAAGATGAAGGCGGCGGCGTGGCCGAGCAGGATCTCAACCGCATCTTTGATCCGTTCATCCGCCTGGATGGCTCCCGGCCAGGGAACGGCGGGTTTGGATTGGGGTTGAGTATCGCTCGCAACGCGGTGGAGCGCCAAGGCGGGCGGGTGTGGGCGCACAATGGCGTGAAAGGGTTGCGCTTGAATCTGCGGCTGCTGGCCGTTGAGCCGCACACCGCCGACGTGGCGAGGGAGCTTGTTCCCGCTGGGGCGCGAAGTGGCCCCTTAAAAACGGCCTGA	MKWSDLPGRHSLFWKLACLLVAFCLLMIWLSWSWGRYMEVRNQFLSDEARGTLTRYAAEAEQAWLTDGSAGVDQWVYAMQYREASWVGVIGGDLQSLSEHPLTDREIERLTFLRGLDWPIHKKGRPWLRVPFPENPSIGSLVIELPERFLPGRYRVFWRVITNGVIPGLFTLLLCVGLYRLLVVPLNQLREQANAWRADQLNVRLPARTTDRADELGELGRAFDQMSERLQSTVALQQQLLRDLSHELRTPLSRLQVAGDSEQDLIRLRERVAREVDCMQGLVEDTLQLAWLDTDRAPLPAEAIQVQALWEMLTENACYETGWPASQLQCAVDASCWVQGNLNTLAQALENILRNAIRHSPPGGIVRLDGRREDGFWLLWLEDEGGGVAEQDLNRIFDPFIRLDGSRPGNGGFGLGLSIARNAVERQGGRVWAHNGVKGLRLNLRLLAVEPHTADVARELVPAGARSGPLKTA	PGPT0003245_10	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-ENTEROBACTIN|ENTEROCHELIN_METABOLISM,PGPT0003245-pfeS|pirS-K19609	NA	NA
D1-36_01377	903	cysM	COG0031	Cysteine synthase B	ATGACTTTGCAGTACCCAACCATCGCCGATTGCGTCGGCAACACTCCGCTGGTTCGCCTGCAGCGCCTGCCTGGCGCGACCAGCAATACGCTTTTGCTCAAGCTCGAAGGGAATAACCCGGCGGGTTCGGTCAAGGACCGACCGGCGCTGTCGATGATCACCCGCGGCGAATTGCGGGGCCAGATCCAGCCCGGCGATACGCTGATCGAGGCGACGTCCGGCAATACCGGCATCGCCCTGGCGATGGCGGCGGCGATCAAGGGCTACAAGATGATCCTGATCATGCCCGACAATTCCAGCGCCGAGCGTAAGGCCGCGATGACAGCCTATGGCGCCGAATTGATCCTGGTAACCCAGGAAGAAGGCATGGAGGGCGCCCGGGACTTGGCCGAACGCATGCAGGCCGAGGGGCGTGGCAAAGTGTTGGATCAGTTCGCCAACGGCGACAATCCAGAAGCCCACTACACCACCACCGGCCCTGAGATCTGGCGCCAGACCGACGGCACGATCACCCATTTCGTCAGCTCGATGGGCACCACCGGCACCATCATGGGCACGTCGCGCTATTTGAAAGAACAGAACCCGAACGTACAGATCGTTGGCCTGCAACCAATGGAAGGCTCGGCCATCCCCGGCATCCGCCGCTGGCCCGAAGAGTATCTGCCGAAGATCTACCAGGCCGACCGCGTGGACCGCATCATCGACATGGCCCAGAGCGAAGCCGAGGACGTGACCCGGCGCCTGGCGCGAGAAGAAGGCATCTTCTGCGGCGTGTCTTCGGGCGGTGCCGTGGCGGGCATGCTGCGCCTGTCCCGGGAAGTCGAGAATGCGGTGATCGTCGCGATCATCTGCGACCGTGGCGACCGTTACCTGTCGACCGGCATTTTCGACGCGCCCAACTGA	MTLQYPTIADCVGNTPLVRLQRLPGATSNTLLLKLEGNNPAGSVKDRPALSMITRGELRGQIQPGDTLIEATSGNTGIALAMAAAIKGYKMILIMPDNSSAERKAAMTAYGAELILVTQEEGMEGARDLAERMQAEGRGKVLDQFANGDNPEAHYTTTGPEIWRQTDGTITHFVSSMGTTGTIMGTSRYLKEQNPNVQIVGLQPMEGSAIPGIRRWPEEYLPKIYQADRVDRIIDMAQSEAEDVTRRLAREEGIFCGVSSGGAVAGMLRLSREVENAVIVAIICDRGDRYLSTGIFDAPN	PGPT0002820_584	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_SERINE_DEGRADATION,PGPT0002820-cysM-K12339	NA	NA
D1-36_01378	1371	rlmD	COG2265	23S rRNA (uracil(1939)-C(5))-methyltransferase RlmD	ATGGCCAAGCAAGAAAGAGGCTTGCGCTTCCAGCCCAGCGGCGGAAGCCGGGCCCCGCAAGTGCCCACCGGTAAAAAGCAGCGCTTGACCATCGAACGCCTGGCCAACGATGGCCGGGGCATTGCGTTTGTCGACGGGCGCACCTGGTTTGTCATCGGCGCCCTGGCCGGTGAAGAAGTCGAGGCGCGGGTGCTCGGTGCCCACGGCAAGGTGGTCGAGGCCCGCACTGAACGGGTGTTTTCGCCCAGCGAGCTGCGTCGTGCCGCGCCGTGTGTCCATGCCGGTCGCTGCGGTGGATGCAGCGTGCAGCATCTGCCCCACAACGAACAACTCGCCCTTAAACAGCGCATGCTCGCCGAGCAGCTGTCACGGGTGGCGGGCGTTGAGCCGCAAGAATGGGCCGAGCCCTTGAGCGGGCCGGAGTTTGGCTACCGGCGTCGAGCCCGCGTGGCAGTGCGTTGGGATCAGAAAGCGAAGAAGCTCGAAGTGGGTTTGCGTGCCGTCGGCAGCCAGGACATTGTCGCCATCGACCAATGTCCGGTGCTGGTACAGCCCTTGCAACCGATCATGAGCCGCTTGCCCCAGATGCTTCGTCGCCTGGGCAAGCCCCAGGCGCTGGGCCATGTGGAATTGTTCGCCGGCTCGTCCCTCGCGCTGCTGTTGCGGCATATGGCGCCACTGTCGGAAGCCGACCTGACGATTCTCAAGGATTTTTGTGCGTTCCACGAAGCACAACTGTGGCTGCATGGCGAAGGCGAGCCGCAACCGGTCGATCCGGGACGCTCCCTGGGCTATCGCCTGGAAACCTGGGACCTGGACCTGGCTTACCGGCCAGGGGACTTCATCCAGGTAAACGCCGCCGTCAACGAAGCGATGGTCGCCCAGGCCTTGCAATGGCTAGCGCCTCGCTCCGAAGAGCGGGTGCTGGACCTGTTCTGCGGCCTGGGCAACTTTGCCTTGCCACTGGCCAAAAGCGTGCGCGAGGTGGTGGCGGTGGAAGGCGTGCAAACCATGGTCGACCGTGCCGCGGCCAACGCCGTCAGCAACAATTTGCATAACACTGCTTTTTTTCAGGCCGATTTATCCCAGCCGTTGGCGGGTGCCGAATGGATCGGCGAAGGCTTTTCTGCGGTACTCTTGGACCCACCCCGTGACGGTGCTTTCGAGGTGGTGCGCAAGCTGGCATCCCTGGGTGCCAGACGGTTGGTTTATGTATCGTGCAACCCGGCAACTTTGGCGCGGGACACGGTCGAATTGATCAAGCAGGGCTACCGGTTAAAACGTGCCGGGATTCTCGATATGTTTCCTCAGACGGCGCATGTCGAGGCCATGGCGTTATTTGAAGCGAGCCAGGATGGCTTGTCCGACTGA	MAKQERGLRFQPSGGSRAPQVPTGKKQRLTIERLANDGRGIAFVDGRTWFVIGALAGEEVEARVLGAHGKVVEARTERVFSPSELRRAAPCVHAGRCGGCSVQHLPHNEQLALKQRMLAEQLSRVAGVEPQEWAEPLSGPEFGYRRRARVAVRWDQKAKKLEVGLRAVGSQDIVAIDQCPVLVQPLQPIMSRLPQMLRRLGKPQALGHVELFAGSSLALLLRHMAPLSEADLTILKDFCAFHEAQLWLHGEGEPQPVDPGRSLGYRLETWDLDLAYRPGDFIQVNAAVNEAMVAQALQWLAPRSEERVLDLFCGLGNFALPLAKSVREVVAVEGVQTMVDRAAANAVSNNLHNTAFFQADLSQPLAGAEWIGEGFSAVLLDPPRDGAFEVVRKLASLGARRLVYVSCNPATLARDTVELIKQGYRLKRAGILDMFPQTAHVEAMALFEASQDGLSD				NA	NA	NA	NA	NA
D1-36_01379	2247	relA	COG0317	GTP pyrophosphokinase	ATGGTACAGGTGAGAGCACACCAGCCGATCAACACTGACGGCAGTATCAATCTCGAGGCTTGGCTCGATCACGCGGTCAGTATCGACACGGCACTGGATCGCGAAGCCTTGAAGGCCGCTTGCGAGTTCGCTCGCGAGGCGGAGCAGCAACACAATGCGGCGAAGAACCTGTGGTCCGAAGGCACGTCGAGTTTCCAGACGGGCCTGGAGATCGCCGAGATCCTCGCCGACCTCAAGCTGGACCAGGATTCGCTGGTCGCCGCGGTGCTGTACCGCGGCGTGCGCGAAGGGCAGATCCAACTGCCGGTCGTCAGCCAGCGCTTCGGCACCGTGGTCGCCAAGCTGATCGACGGTGTGCTGCGCATGGCGGCAATCAGCGCCAGCCTCAGCCCGCGGCAGTCCATGGTGCTGGGCACCCAGGGCCAGGTGGAAAACCTGCGCAAGATGCTCGTTGCCATGGTCGACGACGTGCGTGTCGCGTTGATCAAGCTCGCCGAGCGCACCTGCGCGATCCGCGCCGTGAAATCCGCCGACGACGAGAAGCGCAATCGCGTTGCGCGGGAAGTATTCGACATCTACGCGCCGCTGGCTCATCGCCTGGGTATCGGTCACATCAAATGGGAGCTGGAGGATTTGTCCTTCCGCTACCTGGAGCCCGACCAGTACAAGCAGATCGCCAAGTTGCTGCACGAGCGACGCCTGGATCGCGAACGCTTCATCACCGACGTCATGACCCAGTTGCGCGAAGAGCTGCAGGCCACCGGCGTGGAAGCCGATATCAGCGGCCGGGCCAAGCATATCTATTCCATCTGGCGAAAAATGCAGCGCAAGGGCCTGGAATTCAGCCAGATCTACGACGTTCGCGCCGTTCGCGTGCTGGTCCCTGAAATGCGCGACTGCTACACCGCGCTGGGTATCGTCCACACGTTGTGGCGGCACATTCCGAAGGAATTCGACGACTACATCGCCAACCCCAAGGAAAACGGCTACCGCTCGTTGCACACCGCCGTGATCGGCCCGGAGGGCAAGGTGCTGGAAGTGCAGATCCGCACCCACGCCATGCACGAGGAAGCCGAGCTGGGGGTCTGTGCCCACTGGAAATACAAGGGTACCGACGTCAAGTCCGGCTCCAACCATTACGAAGAAAAAATCTCCTGGCTGCGCCAAGTGCTGGAATGGCACGAGGAACTGGGCGACATCGGCGGCCTCGCCGAGCAATTGCGGGTCGATATCGAACCGGACCGGGTCTACATCTTCACGCCTGACGGCCATGCCATCGACTTGCCCAAAGGCGCGACGCCGCTGGATTTCGCCTACCGGGTGCACACCGAGATCGGCCACAACTGCCGTGGCGCCAAGATCAACGGGCGGATCGTGCCGCTCAACTACAGCCTGCAAACCGGTGAGCAGGTCGAGATCATTACCAGCAAGCACGGCACGCCGAGCCGCGACTGGTTGAACCCGAACCTGGGCTACATCACCACCTCGCGGGCACGGGCGAAAATCGTCCATTGGTTCAAGTTGCAAGCCCGCGACCAGAACGTCGCCGCCGGCAAGACCTTGCTCGAGCGCGAGCTGAGTCGCCTGGGCCTGCCGCAGGTGGACTTCGACAAGCTGGCCGAAAAGGCCAACATGAAGACCGCCGAGGACATGTTCGCCGCCCTTGGTGCCGGCGACCTGCGCCTTGCGCAACTGGTCAACCTGGCCCAGCAGCTGGTGGAGCCGGAGCGGGGCAACGAGCAACTGGAGCTGATTCCGCGCAAGGCCACCGGCTACAAGCCGGGCAAACGCGGCGACATCCAGATCCAGGGCGTGGGCAACCTGATGACCCAGATGGCCGGTTGCTGCCAGCCGCTGCCGGGGGATGCGATCGTCGGCTACATCACCCAGGGTCGCGGCGTGAGTATCCACCGCCAGGACTGTGCGTCAGTGTTGCAATTGGCGGGTCGCGAACCGGAACGGATCATCCAGGTCAGCTGGGGCCCGGTGCCGGTGCTCACTTATCCAGTGGACATCGTCATCCGCGCCTACGACCGTTCCGGCTTGCTGCGTGACGTGTCCCAGGTATTGCTCAACGAGCGCATCAACGTGCTCGCGGTGAATACCCGCTCGAACAAGGAAGACAACACCGCGCTGATGTCCCTGACCATCGAGATTCCGGGGTTGGACGCGTTGGGGCGGTTGCTGGGGCGGATTTCCCAGTTGCCGAACATCATCGAGACCCGGCGTAATCGGACGCCGGGCTGA	MVQVRAHQPINTDGSINLEAWLDHAVSIDTALDREALKAACEFAREAEQQHNAAKNLWSEGTSSFQTGLEIAEILADLKLDQDSLVAAVLYRGVREGQIQLPVVSQRFGTVVAKLIDGVLRMAAISASLSPRQSMVLGTQGQVENLRKMLVAMVDDVRVALIKLAERTCAIRAVKSADDEKRNRVAREVFDIYAPLAHRLGIGHIKWELEDLSFRYLEPDQYKQIAKLLHERRLDRERFITDVMTQLREELQATGVEADISGRAKHIYSIWRKMQRKGLEFSQIYDVRAVRVLVPEMRDCYTALGIVHTLWRHIPKEFDDYIANPKENGYRSLHTAVIGPEGKVLEVQIRTHAMHEEAELGVCAHWKYKGTDVKSGSNHYEEKISWLRQVLEWHEELGDIGGLAEQLRVDIEPDRVYIFTPDGHAIDLPKGATPLDFAYRVHTEIGHNCRGAKINGRIVPLNYSLQTGEQVEIITSKHGTPSRDWLNPNLGYITTSRARAKIVHWFKLQARDQNVAAGKTLLERELSRLGLPQVDFDKLAEKANMKTAEDMFAALGAGDLRLAQLVNLAQQLVEPERGNEQLELIPRKATGYKPGKRGDIQIQGVGNLMTQMAGCCQPLPGDAIVGYITQGRGVSIHRQDCASVLQLAGREPERIIQVSWGPVPVLTYPVDIVIRAYDRSGLLRDVSQVLLNERINVLAVNTRSNKEDNTALMSLTIEIPGLDALGRLLGRISQLPNIIETRRNRTPG	PGPT0014820_377	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0014820-relA-K00951	NA	NA
D1-36_01380	834	mazG	COG1694	Nucleoside triphosphate pyrophosphohydrolase	ATGTACAGCCTCGAAGACCTGCTCCACCTGATGAACCGGCTGCGGGACCCGCAGTACGGTTGCCCCTGGGACATCAAGCAAACATACGCCACCATCGTTCCCCATACCCTGGAAGAAGCGTATGAAGTGGCTGACGCGATCGAGCGTGGCGATCTTGATCATTTGCAGGGTGAGTTGGGCGACCTGCTGTTCCAAGTGGTGTATTACAGCCAGTTGGCCCGGGAGGAGAACCGTTTCGAATTCGCCGGCGTGGTCGACAGCATCACCCGCAAGCTGATCCGTCGCCATCCCCACGTGTTTCCCACCGGCGAGTTGTATGCGCCCGTGGATATTCCGCGCCTGAGCGAAGAGCAGGTGAAGCAGCGCTGGGAGGAAATCAAGGCACAGGAGCGAGCTGAAAAGACGTCGGCGCCCGAGCAATTGTCACTGCTCGACGATGTGCCAGCGGCGCTGCCGGCCTTGTCCCGTTCGGCAAAGTTGCAGAAGCGTGCCGCACAGGTGGGGTTCGACTGGCCGGGGCCGTTGCCGGTACTGGACAAGGTTCGCGAGGAGCTGGACGAAGTGCTCGAAGCCATGGCGGACAATGATCCGGCTGCCATCAATGACGAGGTGGGTGACCTGTTGTTCAGCGTGGTCAACCTGGCGCGACACCTCAAGGTCGATCCCGAGACTGCCCTGCGTGGCGCCAACGCAAAGTTCGAGCGACGGTTCCGATTTATCGAACAGGCATTGCGCGACACCCGTCGTCCCATGGAAGATTGCACCCTCGAAGAGTTGGACGCCTTGTGGGGCGAAGCCAAACGTCAGGAAAAGAATTTGCCCAGCTGTGGCTGA	MYSLEDLLHLMNRLRDPQYGCPWDIKQTYATIVPHTLEEAYEVADAIERGDLDHLQGELGDLLFQVVYYSQLAREENRFEFAGVVDSITRKLIRRHPHVFPTGELYAPVDIPRLSEEQVKQRWEEIKAQERAEKTSAPEQLSLLDDVPAALPALSRSAKLQKRAAQVGFDWPGPLPVLDKVREELDEVLEAMADNDPAAINDEVGDLLFSVVNLARHLKVDPETALRGANAKFERRFRFIEQALRDTRRPMEDCTLEELDALWGEAKRQEKNLPSCG	PGPT0008820_471	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0008820-mazG-K04765	NA	NA
D1-36_01381	540			hypothetical protein	ATGAGCCTTTCCCTTCGCGACCAGTTGCTCAAAGCAGGGCTGGTCAACCAAAAGCAGGCCAAGCAGGTCGGCAAAGAGAAACAGAAACAGCAGCGCCTGGCCCACAAAGGCCAGGTCGAACTGGATGATTCCCAGCAGCGGGCGGCTCAGGAAGCCATGGCCGAAAAGGTCAAGCGCGACCAGGAGCTCAACCGTCAGCAGCAGGAAAAGGCCGAGCAGAAAGCCCGTGCGGCGCAGATCAAGCAATTGATTGAAGTCTCGCGCCTGCCAAAGCTGACCACTGACGACTACTACAACTTTGTCGATGACAAGAAGGTCAAGCGCATTTCGGTCAACGCGCTGATGCGCAACAAGCTGAGCAGCGGTTCCCTGGCGATCGTCCACCACGCCGGCGGCTATGAAGTGATTCCGCGTGAAGCGGCGCTTAAAATCCAGGAGCGCGATCCCAAGCGCATCGTCCAGCTCAACACCCAGACTGAAGAAGTCGATGCCGATGATCCGTACGCGGCTTATCAGATTCCTGATGATTTGATGTGGTGA	MSLSLRDQLLKAGLVNQKQAKQVGKEKQKQQRLAHKGQVELDDSQQRAAQEAMAEKVKRDQELNRQQQEKAEQKARAAQIKQLIEVSRLPKLTTDDYYNFVDDKKVKRISVNALMRNKLSSGSLAIVHHAGGYEVIPREAALKIQERDPKRIVQLNTQTEEVDADDPYAAYQIPDDLMW				NA	NA	NA	NA	NA
D1-36_01382	195			hypothetical protein	ATGACTGTGAAAGTAACTGAACGCGACGACGCCCACATGTCCCACGAAGGCATTGCCGCCGGCATCCGGATCTGGGATGTGCATCAACAGGATTTGCTGGTGGGGATGTTCCACTCCGAAACAGATGCCCGCAGCTATAAGGCCGAGCTGGAGCGAGAGGAACTGCAGCGCTTGCGTGAGATCGCGCAATCCTGA	MTVKVTERDDAHMSHEGIAAGIRIWDVHQQDLLVGMFHSETDARSYKAELEREELQRLREIAQS				NA	NA	NA	NA	NA
D1-36_01383	714			hypothetical protein	ATGCGTCGCGCCCTGCTCTTCGCTTGCGCTCTGCTTGCCCTGCCCCTGGCACAAGCGGCAGACCTTCAACCGTTCTCCGCCAGCTACACCGCCGACTGGAAGCAGTTGCCCATGAGCGGCACCGCCGAACGCAGCCTGACCAAAGAGGCCAACGGCATCTGGAAGCTGAGCTTCAAGGCTTCGATGATGATCGCCAGCCTGACCGAAGAAAGCACCCTGACCCTGGACAAGGACACTCTCCTGCCACAGTCCTACCACTTCGAGCGCGGTGGTCTGGGCAAGGCAAAGAAGGCTGATCTGGACTTCGACTGGAACACCAAGATGGTCACCGGCACCGATCGCGGTGACGCGGTCAAGATCCCGCTGAACCGGGGCATGGTCGACAAATCCACTTATCAGCTCGCCCTTCAGCATGACGTCGCGGCCGGCAAGAAAAGCATGAGCTACCAGGTCGTTGATGATGGCGAAGTCGATACCTATGACTTCCGCGTGCTGGGCTCGGAGAAAGTCGACACCAAGGCCGGCCAGATCGACGCGATCAAGGTCGAGCGCGTGCGCGACCCGACACAGAGCAAGCGCATCACCGTGCTTTGGTTCGCCAAGGACTGGGACTACCTGCTGGTACGCCTGCAACAGGTCGAGACTGACGGCAAGGAGTACAACATCATGCTCCAGGACGGCACGGTCAACGGCAAGGCTGTTAAAGGCAGCTGA	MRRALLFACALLALPLAQAADLQPFSASYTADWKQLPMSGTAERSLTKEANGIWKLSFKASMMIASLTEESTLTLDKDTLLPQSYHFERGGLGKAKKADLDFDWNTKMVTGTDRGDAVKIPLNRGMVDKSTYQLALQHDVAAGKKSMSYQVVDDGEVDTYDFRVLGSEKVDTKAGQIDAIKVERVRDPTQSKRITVLWFAKDWDYLLVRLQQVETDGKEYNIMLQDGTVNGKAVKGS				NA	NA	NA	NA	NA
D1-36_01384	651	purN	COG0299	Phosphoribosylglycinamide formyltransferase	ATGTCCGCAACCTGTGACGTGGTGGTGCTGCTGTCCGGCACCGGCAGTAACTTGCAGGCCCTGATCGACAGCACGCGGACCGGCGACAGCCCGGTCCGTATCCGCGCGGTGATTTCCAACCGCGCTGATGCCTACGGCCTGCAACGTGCCACGGACGCAGGGATCGACACCCGCGTCCTGGATCACAAGGCATACGAAGGCCGCGAAGCCTTCGATGCCGCGTTGATCGAACAGATCGACGCCTTCAATCCGCAACTGGTGGTATTGGCCGGTTTCATGCGCATCCTCAGCGCCGGCTTCGTGCGTCATTACCAAGGCCGCCTGTTCAATATCCATCCTTCGCTGCTGCCCAAATACAAAGGGTTACACACTCACCAGCGGGCGCTGGAGGCCGGAGACACGGAGCATGGCTGCTCGGTGCACTTCGTCACCGAGGAACTCGATGGCGGACCACTGGTCGTACAGGCAGTAATACCGGTAGAGTTGCACGACACGCCGCAAAGCCTGGCGCAACGGGTCCATGCCCGCGAGCACCAGATCTACCCGATGGCCGTGCGTTGGTTTGCCGAAGGCCGGCTGGCCCTCGACGATCGGGGAGCCTCACTGGACGGCCAGTTGCTCGCCGCCAGCGGCCATTTGATTCGATACTAG	MSATCDVVVLLSGTGSNLQALIDSTRTGDSPVRIRAVISNRADAYGLQRATDAGIDTRVLDHKAYEGREAFDAALIEQIDAFNPQLVVLAGFMRILSAGFVRHYQGRLFNIHPSLLPKYKGLHTHQRALEAGDTEHGCSVHFVTEELDGGPLVVQAVIPVELHDTPQSLAQRVHAREHQIYPMAVRWFAEGRLALDDRGASLDGQLLAASGHLIRY	PGPT0008095_1089	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0008095-purN-K11175	NA	NA
D1-36_01385	1059	purM	COG0150	Phosphoribosylformylglycinamidine cyclo-ligase	ATGAGCAAGCAACCTTCCCTGAGCTACAAGGACGCCGGTGTGGACATCGACGCCGGTGAAGCATTGGTCGAACGCATCAAGAGCGTCGCCAAGCGCACTGCGCGCCCGGAAGTCATGGGCGGCCTGGGCGGTTTCGGCGCCCTCTGCGAGATCCCGGCCGGCTACAAGCAACCGGTACTGGTCTCGGGCACCGACGGCGTCGGCACCAAGCTGCGCCTGGCCCTGAACCTGAACAAGCACGACAGCATCGGCATCGACCTGGTGGGCATGTGCGTGAACGACCTGGTGGTCTGCGGCGCCGAGCCGCTGTTTTTCCTCGATTACTACGCCACCGGCAAACTGAACGTCGACACCGCTGCCCAGGTCGTGACCGGCATCGGCGCCGGCTGTGAGCTGTCCGGCTGCTCCCTGGTGGGCGGCGAAACCGCTGAAATGCCTGGCATGTATGAAGGCGAAGACTACGACCTGGCCGGTTTCTGCGTAGGCGTCGTGGAAAAAGCCGAAATCATCGACGGCTCGAAAGTTGCCGCCGGCGATGCCCTGCTTGCCTTGCCTTCTTCCGGCCCGCACTCCAACGGCTACTCGCTGATCCGCAAGATCATCGAAGTCTCGGGCGCGGACATCGAGAACACCCAGCTCGACGGCAAGCCGCTGGCCGACCTGCTGATGGCCCCCACCCGCATCTACGTCAAGCCGCTGCTCAAGCTGATCAAGGACACCGGCGCCGTCAAGGCCATGGCCCACATCACCGGTGGTGGCCTGTTGGACAACATCCCGCGCGTGCTGCCAAAAGGCGCCCAGGCCGTGGTCGACGTGGCGAGCTGGACCCGCCCGGCGGTATTCGACTGGCTGCAGGAAAAAGGCAACGTCGACGAAACCGAAATGCACCGCGTGTTGAACTGCGGCGTGGGCATGGTCATCTGCGTGGCCCAGGAGCACGTCGAGACTGCCCTGAACGTGCTGCGTGACGCAGGCGAACAGCCTTGGGTCATCGGCCAGATCGCCACCGCGGCCGAAGGCGCTGCGCAAGTCGAGCTGCAAAACCTTAAGGCACACTGA	MSKQPSLSYKDAGVDIDAGEALVERIKSVAKRTARPEVMGGLGGFGALCEIPAGYKQPVLVSGTDGVGTKLRLALNLNKHDSIGIDLVGMCVNDLVVCGAEPLFFLDYYATGKLNVDTAAQVVTGIGAGCELSGCSLVGGETAEMPGMYEGEDYDLAGFCVGVVEKAEIIDGSKVAAGDALLALPSSGPHSNGYSLIRKIIEVSGADIENTQLDGKPLADLLMAPTRIYVKPLLKLIKDTGAVKAMAHITGGGLLDNIPRVLPKGAQAVVDVASWTRPAVFDWLQEKGNVDETEMHRVLNCGVGMVICVAQEHVETALNVLRDAGEQPWVIGQIATAAEGAAQVELQNLKAH	PGPT0021570_743	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021570-purM-K01933	NA	NA
D1-36_01386	1059			hypothetical protein	ATGCGTTTGTTCAAACTCTTGTCTGTTGGCTGCCTGTCGCTGATCAGCCTGGCGAGCCATGCCGAAACCCTCAACAACCTTTATCAGGTACGTGAACCGGTCAGCAGCCAGGCACCGGACGAGCGTAACCAGGCAACATTGCGAGCGCTGGATACCCTGGTGCTGCGCCTGACCGGCGACGCCAAGGCCGCGCAGAACCCTGGCCTGGCGGCGATCCGCAAGGACCCGCAACAAATCATTCTTCAATATGGCTACGACGCCGGCCCGCCGGAAAGTCTGCAGGTGGATTTCGATCCCGCCAGCACCGACCGGGCGTTGCGTTCGGCGGGGTTGTCGCTGTGGGGCGCGAATCGCCCCTCGATCCTGGGCTGGTGGCTCAACGACTCGGTAGAAGGTTCCAGCCTGGTGGGGGATGGACAGGCCAGCGCCACGCCGTTGCGCCGCGCTGCCCAGCACCGGGGCTTGCCGCTGCACCTGCCGCTGGCGGACTTGAGCGAGCAGATTGTCGCCACTGCGCCGAACCTTGAAGGCAACGACCCGGCGCCGTTGCGCGAGGTGTCGGAGCGTTATGGTTCCGACGCGTTGCTGGCGGTCCACGCCAAGGAAGAGGGTGGGCAGTGGCAAGCGACGTGGCGCCTGTGGCTGGGCGACCAGCGCGAGCAGGGCAGTGCCCAGGGCGGCGATTCTGCCGCACTGGCCGACGCCGTGATGTTGGCGGTGAGCCAGCGCTTGGCGCCGCGCTTCGTGGCCAAGCCGGGGGTGGCGACGGAACAATTGCTCGAAGTGCAGGGCATGAACCTCGAACGTTACGCGGCGCTAGGGCGGTTGCTCGAACCGTTCGGTGGGCAGTTGCAGCGGGTCGAAGGCGACGTGATCGTCTACAAGGTCAATGGCAGCGCCGAGCAGTTGAAGGCACAACTGGCCTTGGCGAAACTCCAGGAAGTACCCGCCGGTGAGGTTGTCGCGCCGCCGCCCGTGGCTCAGCCTGCTGGCGATGGAACAATCTCGCCCGCGCAGCCAACACCGGCGCCGACCCCGAACCTGCGGTTTCGCTGGTAG	MRLFKLLSVGCLSLISLASHAETLNNLYQVREPVSSQAPDERNQATLRALDTLVLRLTGDAKAAQNPGLAAIRKDPQQIILQYGYDAGPPESLQVDFDPASTDRALRSAGLSLWGANRPSILGWWLNDSVEGSSLVGDGQASATPLRRAAQHRGLPLHLPLADLSEQIVATAPNLEGNDPAPLREVSERYGSDALLAVHAKEEGGQWQATWRLWLGDQREQGSAQGGDSAALADAVMLAVSQRLAPRFVAKPGVATEQLLEVQGMNLERYAALGRLLEPFGGQLQRVEGDVIVYKVNGSAEQLKAQLALAKLQEVPAGEVVAPPPVAQPAGDGTISPAQPTPAPTPNLRFRW				NA	NA	NA	NA	NA
D1-36_01387	1074			Sodium-lithium/proton antiporter	ATGGGCGATACGCGGCGTTGGTTCTGGTTGGGTGGGGTCGCCCTGCTGATTGCGTTTATCTACTTGCTGCACCCGATTCTCACGCCGTTCCTGGTTGCGCTGCTGTTGGCCTATCTGTTCGATCCGGTGGTGGATCGCCTGGAAAAACTCGGCTTGTCCAGGACGTGGGGCGTGGTGGCGGTGTTCGCGCTGTTCACCTTGATCGTCAGTGCCCTGTTGCTGGTATTGATCCCCATGCTCGCCAAGCAACTGTTGCGCCTGTATGAGCTGGCGCCGCAGATGCTTGATTGGCTGCAACACACCGCGGTGCCTTGGGTGCAGTCGAAACTGGGGCTGGCCGATGGCTTCTGGAAGTTCGACAAGGTCAAGGCGGCCATCAGCGAACATATGGGACAGACCACCGACATCGTCGGCGTGGTGTTGAGCCAGGCCACGGCTTCGAGCCTGGCGTTGATCGGCTGGCTGGCGAACCTGGTGCTCATTCCGGTGGTAGCTTTCTATCTGCTGCGCGACTGGGACCTGATGATGGCCAAGATCCGCAGCCTGCTGCCGCGTCACCGTGAAGAACGCATCATGACGCTCACCGGCGAATGCCATGAAGTGTTGGGGGCGTTCGTGCGCGGGCAACTGCTGGTCATGGTCGCGCTGGGCTTTATTTATGCGGCGGGGTTGATGCTGGTAGGGCTGGAGCTGGGGTTGCTGATTGGCATGATCGCCGGATTGGCGGCCATCGTGCCCTACATGGGCTTCGTCATTGGAATTGGCGCGGCGTTGATCGCCGGACTCTTCCAGTTTGGCGGGGACCTGTATCCCATGGTTGGTATCGTGGCGGTGTTCATGGTCGGGCAGGCCCTGGAAGGCATGGTGCTGACGCCGTTGCTGGTGGGTGATCGTATTGGCCTGCATCCGGTGGCGGTGATCTTTGCGATCCTGGCGGGGGGCGAGCTGTTCGGCTTTACCGGGATCCTGCTGGCGCTGCCGGTGGCGGCGGTGATCATGGTGCTGGTGCGGCATATGCACGACCTGTACAAGGATTCGGACATCTACAGCGGCGTTGAAGACCCCGAACTGTAG	MGDTRRWFWLGGVALLIAFIYLLHPILTPFLVALLLAYLFDPVVDRLEKLGLSRTWGVVAVFALFTLIVSALLLVLIPMLAKQLLRLYELAPQMLDWLQHTAVPWVQSKLGLADGFWKFDKVKAAISEHMGQTTDIVGVVLSQATASSLALIGWLANLVLIPVVAFYLLRDWDLMMAKIRSLLPRHREERIMTLTGECHEVLGAFVRGQLLVMVALGFIYAAGLMLVGLELGLLIGMIAGLAAIVPYMGFVIGIGAALIAGLFQFGGDLYPMVGIVAVFMVGQALEGMVLTPLLVGDRIGLHPVAVIFAILAGGELFGFTGILLALPVAAVIMVLVRHMHDLYKDSDIYSGVEDPEL				NA	NA	NA	NA	NA
D1-36_01388	705	hda	COG0593	DnaA regulatory inactivator Hda	ATGAAACCGATTCAGCTGCCCCTTGGTGTGCGTCTGCGTGATGACGCCACCTTTATCAACTACTACCCAGGCGCCAATGCCGCTGCACTCGGCTATGTCGAGCGGCTTTGCGAAGCCGACGCTGGCTGGACCGAAAGCCTGATCTACCTGTGGGGCAAGGACGGAGTAGGGCGCACGCACCTTTTGCAGGCCGCCTGCTTGCGGTTCGAGCAGCTGGGCGAGCCGGCCGTCTACCTGCCGTTGGCGGAACTGATGGATCGCGGCGTTGAAATCCTCGACAACCTCGAGCAGTATGAACTGGTCTGCCTGGATGACCTGCAGGCCGTGGCCGGCAAGGCGGACTGGGAAGAGGCGCTGTTTCATTTGTTCAACCGACTGCGCGACAGCGGCCGACGCCTGTTGATCGCCGCATCGACCTCGCCACGGGAATTGCCGGTGAAGCTGGCGGACCTGAAATCGCGCCTGACCCTGGCGCTGATTTTCCAGATGCGTGCGCTTTCCGATGAGGACAAGCTACGGGCATTGCAACTGCGTGCTTCGCGACGTGGCCTGCACCTGACCGACGAGGTTGGTCATTTCATCCTCACCCGCGGCACGCGCAGCATGAGCGCGTTGTTCGAGTTGCTCGAACGCCTCGACCAGGCATCGCTCCAGGCCCAGCGCAAGCTGACTATTCCTTTTTTGAAAGAAACCTTGGGATGGTAG	MKPIQLPLGVRLRDDATFINYYPGANAAALGYVERLCEADAGWTESLIYLWGKDGVGRTHLLQAACLRFEQLGEPAVYLPLAELMDRGVEILDNLEQYELVCLDDLQAVAGKADWEEALFHLFNRLRDSGRRLLIAASTSPRELPVKLADLKSRLTLALIFQMRALSDEDKLRALQLRASRRGLHLTDEVGHFILTRGTRSMSALFELLERLDQASLQAQRKLTIPFLKETLGW				NA	NA	NA	NA	NA
D1-36_01389	627	mepS	COG0791	Murein DD-endopeptidase MepS/Murein LD-carboxypeptidase	ATGCTCAGTCGCTTCGCACCCCTCGTGCCTCTCGCACTCGTTACCCTGTTGTTCGGTTGCGCTGCCCACTCTCCAGTGTCCCAGCAAGCGCAGCAACCCCAAGTCAAGAGTTCTGTAACTGCCCAATCTTCCTCCGTTGCGTTCCAGGAAGAAGTGGCCTCCGATAAAGAGCTGGCAGACTTCGCCGGCAGCAAGCCTTATCAGCTTCCGGTGCTGGCGGACAGCATCCTGGAACGCGGCATGTCCTTGATTGGCACTCGTTACCGTTTTGGCGGTACCTCCGAGGCCGGCTTCGATTGCAGTGGCTTCATCGGTTACCTGTTTCGTGAAGAGGCGGGCATGAACCTGCCCCGTTCCACCCGCGAAATGATCAACGTAAATGCCCCGCTGGTTGCTCGCAACCAGCTTGAGCCTGGCGACCTGTTGTTTTTCAGCACCAATGGTCGTCGCGGTCGGGTCAGTCACGCCGGTATCTACCTGGGCGACAACCAGTTCATCCACTCCAGCAGCCGCCGCAGCGGTGGGGTGCGAATCGACAGCCTGGGCGACAGCTACTGGAGCAAGACCTTCATCGAAGCCAAGCGTGCCCTTGCCATGGCACCGACCGTGGTCACGGCTCGCAAGTAA	MLSRFAPLVPLALVTLLFGCAAHSPVSQQAQQPQVKSSVTAQSSSVAFQEEVASDKELADFAGSKPYQLPVLADSILERGMSLIGTRYRFGGTSEAGFDCSGFIGYLFREEAGMNLPRSTREMINVNAPLVARNQLEPGDLLFFSTNGRRGRVSHAGIYLGDNQFIHSSSRRSGGVRIDSLGDSYWSKTFIEAKRALAMAPTVVTARK	PGPT0023820_146	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-MUREIN_DD-ENDOPEPTIDASE_ACTIVITY,PGPT0023820-mepS|spr-K13694	NA	NA
D1-36_01390	534			hypothetical protein	ATGTCGACGTCGGCCCGCCTCGTTCTGATTGTTCTTGCCGCGCTGCTAAGCGCCTGCGCCAGTCGCACCCCACCGCCCGCGCCGGTGCGGGCTCCAGTGGTATTCGCACCCTCCCAGACTTTTTCTCCCGCCGCTGAAGACGTGCTTTTCCGTGCGCTGGGCTTGGTGGGGACGCCCTATCGTTGGGGTGGCAACACGCCGGACTCAGGTTTCGATTGCAGCGGTTTGATCGGCTATGTGTACCGTGACGCTGCCGGGATCTCTTTGCCGCGTTCCACCCGCGAAATGATCAGCATGCACGCGCCAGAGGTCGGCAAAGATGCGTTGCAGACGGGCGACCTGGTGTTCTTCGCCACCAATGGTGGATCCCAGGTCAGCCATGCCGGGATTTATGTAGGGGAGGGACGTTTCGTCCACGCACCGGCCACCGGCGGCACGGTCAAGCTCGACAGTCTGTCCAAGGCCTATTGGCAGAAGGCCTACCTCGGTGCCAAGCGGGTGTTGCAACCGGAACATCTGGCGCGTAATCCCTGA	MSTSARLVLIVLAALLSACASRTPPPAPVRAPVVFAPSQTFSPAAEDVLFRALGLVGTPYRWGGNTPDSGFDCSGLIGYVYRDAAGISLPRSTREMISMHAPEVGKDALQTGDLVFFATNGGSQVSHAGIYVGEGRFVHAPATGGTVKLDSLSKAYWQKAYLGAKRVLQPEHLARNP	PGPT0023830_271	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-MUREIN_DD-ENDOPEPTIDASE_ACTIVITY,PGPT0023830-mepH-K19303	NA	NA
D1-36_01391	1311			hypothetical protein	ATGCTCAAGCCAAATCACCTGTTGATCGCCGCCCTTGCTACAGGGCTTGTCGCTTGCGGCGAGTCGTCGACATTGCAGGTTTCCGACGGCATCGGCCCGTCACCGAAACTGCCCGAGCCGAACAAGACCCTGATGCCCACGGTGAACATCGCTGAAGCCATCGGATGGCCGGACGGCGCCAAGCCAACCCCGGCCCCAGGCCTGAAGGTGGTTGCCTTTGCCGAAGGCCTGGATCATCCGCGCTGGCTTTACGTGCTACCCAACGGCGATGTGCTGGTGGCCGAAACCAACGCTCCCCCCAAGCCCGACGATACCCAAGGCATTCGTGGCTGGGTCATGAAGAAAGTCATGGACCGCGCCGGCGCTGGCGTCCCCAGCCCCAATCGCATCACCCTGCTGCGGGACGCCAATCACGACGGCGTCGCCGAAACCCGGACGATTTTCCTGGAAAACCTCAATTCCCCGTTCGGCATGACGCTTGTGGGCAATGACCTCTATGTGGCCGACACCGACCGGTTGATCCGTTTCCCTTACAAGGAAGGCGATACGCAAATAAAGGCGCAACCCACCAAGGTTGTCGATTTGCCCGGCGGCCCCCTCAACCACCACTGGACCAAGAACGTCATTGCCAGCCGGGACGGTAGCAAGTTGTACGTCACGACCGGCTCCAACAGCAACGTCGCGGAAAATGGCATGGACGCGGAAGAAGGCCGCGCGGCCATCTGGGAGGTGGATCGGGCCACCGGCAGTCACCGCATCTTCGCCTCAGGGCTGCGCAACCCCAACGGCCTGGCCTGGGAGCCTCGCAGCGGCGCCCTGTGGACGGCGGTCAACGAACGGGATGAGATCGGCAGCGACTTGGTGCCGGACTACATCACCTCGGTGAAGGACGGCGGCTTTTATGGCTGGCCGTACAGCTACTACGGGCAGAACATCGACGTGCGCGTCGAGCCGCAAAATCCCGAACTTGTGGCCAAGGCCATTGCTCCCGACTATGCCGTCGGCCCTCATACGGCTTCATTGGGCCTGACCTTCGCCGAAGGCAGCACATTGCCCGCGCCGTTTACAGAAGGCGCCTTCATCGGGCAACACGGCTCCTGGAACCGCAAGCCCCACAGTGGTTACAAAGTAATCTTCGTCCCGTTCAATGCCGGCAAACCCGTGGGCCAGCCCGTGGACGTGCTGACCGGTTTCCTCAACGCAGACGAAAAAGCCCAGGGGCGGCCGGTGGGCGTGGTGATCGATAAACAAGGTGGGTTGTTGGTGGCTGATGACGTAGGGAACAAGATCTGGCGGGTATCGAAAAATTAA	MLKPNHLLIAALATGLVACGESSTLQVSDGIGPSPKLPEPNKTLMPTVNIAEAIGWPDGAKPTPAPGLKVVAFAEGLDHPRWLYVLPNGDVLVAETNAPPKPDDTQGIRGWVMKKVMDRAGAGVPSPNRITLLRDANHDGVAETRTIFLENLNSPFGMTLVGNDLYVADTDRLIRFPYKEGDTQIKAQPTKVVDLPGGPLNHHWTKNVIASRDGSKLYVTTGSNSNVAENGMDAEEGRAAIWEVDRATGSHRIFASGLRNPNGLAWEPRSGALWTAVNERDEIGSDLVPDYITSVKDGGFYGWPYSYYGQNIDVRVEPQNPELVAKAIAPDYAVGPHTASLGLTFAEGSTLPAPFTEGAFIGQHGSWNRKPHSGYKVIFVPFNAGKPVGQPVDVLTGFLNADEKAQGRPVGVVIDKQGGLLVADDVGNKIWRVSKN				NA	NA	NA	NA	NA
D1-36_01392	585			hypothetical protein	ATGCAAGGCATGATCATCAGCAATCCGAAACTGGAATTCCTGCGCCCGGTGCTGGAACGCTGGTTCGATTGTATCGACCGCTACAACGCCGTGCGCGGCGATAACGACACACCCTATTGGCACAATGAAAAAGCCAATCTCGGTCTGCTGTCGGCCGCAGCCTGGATGGCGGAGATGGTCACGCTGCAGGACGCAGCGACTCGCAAGCAGAATGAAGAAGGCGAACGTAATGTCAGCGCCGATCTGTTGATTGCCAGCAGCGATGAACGCGCCTACATCCAGAGCACGCAGCGCTGGCCGAAGGTCAACAACCTGAACCTGACCCAACCGTTGCTGGAAGCCACCAGCGACGCCAAGCGGATCAGCTACGCCAGCGACCTGAAACTGGGTTGCCTGTTCATCGCCCCGCAAAAAGCCCAGCAAAGCGCGACGCCAGAAGAGTTGCAGGACATGATCGATGACCTGCAAAAGGAAAACACCTGCGCCGTGGCCTGGTACTTCCCTTATGCCTACCGCAAGTTGCGCAACGAGGCCGGACACTATCACCCAGGGGTCGCGGTGCTGTTCAAGCAGGCTCATGGTTGA	MQGMIISNPKLEFLRPVLERWFDCIDRYNAVRGDNDTPYWHNEKANLGLLSAAAWMAEMVTLQDAATRKQNEEGERNVSADLLIASSDERAYIQSTQRWPKVNNLNLTQPLLEATSDAKRISYASDLKLGCLFIAPQKAQQSATPEELQDMIDDLQKENTCAVAWYFPYAYRKLRNEAGHYHPGVAVLFKQAHG				NA	NA	NA	NA	NA
D1-36_01394	612	cobO_2		Corrinoid adenosyltransferase	ATGACCGACACGCCCGATCGCGACGAACGCCACCTGGCGCGCATGCTGCGCAAGAAAGCCGTGATTGACGAGCGCATCGCCAATTCGCCCAACGAGTGCGGCCTTCTGCTGGTGCTGACCGGCAACGGCAAGGGCAAGAGCAGTTCTGCGTTCGGCATGCTGGCCCGGGCCATGGGGCACGGCATGCAATGTGGCGTGGTGCAATTCATCAAGGGTCGCAACAGCACCGGCGAGGAGCTGTTTTTCCGCCGCTTCCCGGAGCAGGTGCGCTTCCATGTCATGGGAGAGGGCTTTACCTGGGAAACCCAGGATCGCCAGCGCGACATTGCCGCCGCCGAAGCCGCGTGGGCGGTGTCCCGTGAGTTGCTCAGCGACCCGTCCATTGGGCTGGTGGTGCTCGACGAACTGAACATCGCCCTCAAGCACGGTTACCTCGACCTGGATCAGGTCTTGAGTGATCTGCAGGCTCGTCCGCCCATGCAACATGTGATCGTGACAGGCCGCGGCGCCAAGCCCGAGATGATCGAGCTGGCCGACACCGTGACCGAAATGGGCATGATCAAGCACGCTTTCCAGGCCGGGATAAAGGCGCAGAAAGGCGTCGAACTGTGA	MTDTPDRDERHLARMLRKKAVIDERIANSPNECGLLLVLTGNGKGKSSSAFGMLARAMGHGMQCGVVQFIKGRNSTGEELFFRRFPEQVRFHVMGEGFTWETQDRQRDIAAAEAAWAVSRELLSDPSIGLVVLDELNIALKHGYLDLDQVLSDLQARPPMQHVIVTGRGAKPEMIELADTVTEMGMIKHAFQAGIKAQKGVEL	PGPT0004645_1027	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004645-cobA|btuR-K19221	NA	NA
D1-36_01395	1413	cbiA	COG1797	Cobyrinate a,c-diamide synthase	GTGAGCCGAGTGTCGACCGCCAGCCGCCATTGCCCGGCGGTCTTGATTGCCGCCCCGGCTTCAGGCCAGGGCAAGACCACCGTCACCGCGGCTCTGGCCCGGTTGCACCGCAACCAGGGGCGCAAGGTGCGCGTGTTCAAGTGTGGTCCCGACTTCCTCGATCCAATGATCCTTGAGCGAGCCAGTGGCGCGCCGGTCTATCAGTTGGACATGTGGATGGTCGGAGAGCAGGAAAGTCGCCGGTTGTTGTGGGAAGCCGCCGCAGAAGCGGACCTGATTTTGATTGAAGGCGTGATGGGGCTGTTCGACGGCACACCGTCTAGCGCCGACCTGGCCCGGCATTTCGGCGTGCCGGTGCTGGCGGTTATCGATGGCACGGCCATGGCCCAGACATTCGGTGCCTTGGCCTTGGGCCTGGCACGGTATCAGCCGGATTTGCCCTTCGCTGGGGTCTTGGCCAATCGGGTCGGCACCTTGCGCCACGCGCAATTGCTCGAAGGGAGCCTGACCGAAGGCTTGCGCTGGTACGGCGCGCTTTCGCGGGAAACCGGCATCGAGCTGCCGAGCCGCCATCTTGGTCTGGTGCAGGCCAGCGAATTGAATGACCTGGACGTGCGTCTCGATGCCGCCGCCGAGGCGCTGGCGGGCAGTTGTGAAGTAGCATTGCCGCCTTCGGTGGAGTTCGCGGCGCCGGAACTGACGGCCGTTGAGCGGTGGCTCGACGGCGTCCGCATTGCCGTGGCCCGTGACGAGGCATTTGCCTTTACCTATGGCGCCAGCCTCGATCTGCTGCAAGCCATGGGCGCGCAGTTGAGTTTCTTTTCGCCGATCCACGACACCCAATTGCCCGAGGCGGACAGCCTCTATCTACCCGGTGGATATCCCGAGCTGCACCACGTTGCCCTGGCGCAAAACGCGCCCATGCTGGCGGCGATCCGTGCCCACCATGCATCCGATAAACCCTTGCTCGCCGAATGCGGCGGCATGCTGTATCTGCTCGATTCACTCACCGACGTCGACGGCACGCGCGCCGAACTGGTGGGTATGTTGAGCGGCGATGCGCAGATGCAAAAACGCTTGGCGGCCCTCGCGCTGCAATCGGTGGATCTGCCGGAAGGCAACCTGCGCGGGCATACCTATCATCATTCCTTGACCAGCACCACGCTTGAGCCGATTGCCCGTGGGCATAGCCCCAATGGCGGGCGAGGGGCGGAGGCGGTTTTCCGACAAGGGCGGATGACGGCTTCGTACGTGCATTTTTATTTTCCGTCCAATCCGAGGGCGACTGCCGCTTTGTTTGCGCCGGACCGAGAAGCAGCCTTCGCGAACAGGCTCGCTCTCACAGGGGATGGTGTGATCTCCAGTACGACGCCTGCCAGTGTGGGAGCGAGCCTGCTCGCGAATCGGCCATGA	MSRVSTASRHCPAVLIAAPASGQGKTTVTAALARLHRNQGRKVRVFKCGPDFLDPMILERASGAPVYQLDMWMVGEQESRRLLWEAAAEADLILIEGVMGLFDGTPSSADLARHFGVPVLAVIDGTAMAQTFGALALGLARYQPDLPFAGVLANRVGTLRHAQLLEGSLTEGLRWYGALSRETGIELPSRHLGLVQASELNDLDVRLDAAAEALAGSCEVALPPSVEFAAPELTAVERWLDGVRIAVARDEAFAFTYGASLDLLQAMGAQLSFFSPIHDTQLPEADSLYLPGGYPELHHVALAQNAPMLAAIRAHHASDKPLLAECGGMLYLLDSLTDVDGTRAELVGMLSGDAQMQKRLAALALQSVDLPEGNLRGHTYHHSLTSTTLEPIARGHSPNGGRGAEAVFRQGRMTASYVHFYFPSNPRATAALFAPDREAAFANRLALTGDGVISSTTPASVGASLLANRP	PGPT0004605_559	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004605-cbiA-K02224	NA	NA
D1-36_01396	651	bluB	COG0778	5,6-dimethylbenzimidazole synthase	ATGACAGACAGCACTTTTTCCCAGGCCGAACGCGAGGCCGTCTACCGCGCCATCGCCGAACGCCGAGACATGCGTCATTTCATCGGCGGCAGCGTCGAGCCGCAATTGCTGCGCCGGCTGCTCGAAGCCGCGCACCAGGCGCCTAGCGTCGGGCTGATGCAGCCGTGGCGGTTTCTGCGCATCAGCGATCGCGCCTTGCGCGGCGAAATCCAGAACCTGGTGGAAGAAGAGCGCATTCGCACCGCCGAAGCCCTGGGCGAGCGTAGTGATGAATTCATGAAGCTCAAGGTGGAAGGTATCCACGACTGCGCCGAAGTGCTGGTGGCCGCGTTGATGGACGACCGCGAGCGGCACATTTTCGGTCGCCGGACCTTGCCGGAAATGGACTTGGCCTCGCTGTCCTGCGCGATCCAGAATCTGTGGCTGGCGGCCCGCGTCGAAGGGCTGGGGATGGGCTGGGTGTCGTTGTTCGAGCCCCAGGCCATGGCCGATCTGTTGGGCCTGCCGGAGGGCGCAAAGCCCCTGGCGATTCTGTGCCTGGGGCCGGTCGAGGGCTTTTACCCAGCGCCCATGCTCGCCTTGGAAGGCTGGGCGAAACCGCGGCCGCTCGAGGAACTGATTTATGAAAATCGCTGGGGAGTGCGTCCATGA	MTDSTFSQAEREAVYRAIAERRDMRHFIGGSVEPQLLRRLLEAAHQAPSVGLMQPWRFLRISDRALRGEIQNLVEEERIRTAEALGERSDEFMKLKVEGIHDCAEVLVAALMDDRERHIFGRRTLPEMDLASLSCAIQNLWLAARVEGLGMGWVSLFEPQAMADLLGLPEGAKPLAILCLGPVEGFYPAPMLALEGWAKPRPLEELIYENRWGVRP	PGPT0006810_629	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
D1-36_01397	909	cobD	COG1270	Cobalamin biosynthesis protein CobD	ATGAGCGTAGCGTTGCTCAGTGCCGCCGCGGTGGCGCTGGATGCGTTGCTGGGCGAGCCCCGGCGCTGGCATCCTCTGGTCGCGTTCGGCCGTCTTGCCAATCGTATCGAACAGCGTTTCAACTCCGGTGGACGGGGCTGGCGCAGTCACGGTGTCACGGCGTGGATCATCGCCGTGCTGCCCTTGACGTTGCTGGCCACAGCCTTGTCCTGGGCGCCCCTGGTAGGGTGGCTGGTGGACATTCTCGCGTTGTATTGCGCCCTCGGCTTGCGCAGCCTTGGTGAACATGTCGAGCCAGTGGCCCGGGCGTTGCGCAGTGGCGATCTGGACGAGGCACGCCAGCGGGTGAGTTATCTGGTCAGCCGCGAAACCGCCGAGTTGGATGAAAACGCCGTGGCCCGCGCCGCCACCGAGTCGGTGTTGGAAAACGGCAGCGACGCGGTGTTCGCCGCCTTGTTCTGGTTCGCGGTGGCTGGCGCGCCTGGCGTGGTGTTGTATCGGTTGAGCAATACCCTCGACGCCATGTGGGGTTATCGCAACGAGCGCTTCGAACGTTTTGGCTGGGCGGCGGCAAAGATCGACGACATGCTCAACTATATTCCCGCGCGCCTGGTGGCCCTGACCTACGCGTTGCTCGGCAAGACCCGACTGGCATTCAGATGCTGGCGCACCCAGGGGCCAACCTGGGACAGCCCCAATGCCGGGCCGGTGATGGCCGCCGGCGCCGGAGCGCTGGGCGTGGAACTGGGCGGCGCGGCGATCTACCACGGCGAGCTGCACCAACGTCCGTCCTTGGGCGAAGGCGTGCCGGCCAGTGCCGATTCCATTGATCGCGGCTGGCAATTGGTGCAACGCGGCGTATGGTTATGGCTGCTGATTCTCTGCCTCGGAGCCGAGTTTTATGCTTGA	MSVALLSAAAVALDALLGEPRRWHPLVAFGRLANRIEQRFNSGGRGWRSHGVTAWIIAVLPLTLLATALSWAPLVGWLVDILALYCALGLRSLGEHVEPVARALRSGDLDEARQRVSYLVSRETAELDENAVARAATESVLENGSDAVFAALFWFAVAGAPGVVLYRLSNTLDAMWGYRNERFERFGWAAAKIDDMLNYIPARLVALTYALLGKTRLAFRCWRTQGPTWDSPNAGPVMAAGAGALGVELGGAAIYHGELHQRPSLGEGVPASADSIDRGWQLVQRGVWLWLLILCLGAEFYA	PGPT0004660_2802	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004660-cbiB|cobD-K02227	NA	NA
D1-36_01398	993	hisC_2		Histidinol-phosphate aminotransferase	ATGCTTGAGCATGGTGGACGACTGCGCAAGGCTTCCCGGCAATATGGCATTGCCGAGGCCGACTGGCTCGACCTGTCCAGCGGCCTGGCGCCCTGGCCTTTCGACGTTCCGCCGATCCCGCTGCGGGCCTGGGCGCGCCTGCCCGAGGCCGAAGATGGATTGGAGCAGGCCGCCTGCGATTATTACGAAGCGACGCACGTGTTGCCGGTGGCCGGTTCGCAGATGGCCATCCAGCTGTTGCCGCGCCTGCGCCGGGCCGGCAAGGTGGGTGTTTTGTCGCCCTGTTACGCCGAGCACGCCGAAGCCTGGCGCCGCAGCGGGTACATCGTGCGCGAAGTGCTGGAGACGGAAGTCGATTTTTTCCTCGACAGCCTCGACGTGCTGGTGGTGGTCAATCCGAACAACCCCACGGGCCTGAGCCTGAGCCCCGAACGCTTGCTGAATTGGCACGCACGGTTGGCCCAGCGCGGTGGCTGGCTGGTGGTGGATGAAGCGTTCATGGACATGACACCGCATCTGAGCCTCAGCGCCCACGCCCATCAGGTCGGGCTGATTGTATTGCGATCGTTTGGCAAGTTCTTTGGCCTGGCCGGGGTTCGCCTGGGGTTTGTCCTGGCGGAGCGGCGTTTGCTCAAGCTGCTCGCCGAGCAAGTCGGACCCTGGGCGGTGAGCGGGCCGACCCGGGTCCTGGGCGAGGCGTGTCTTCTGGATACCGAGGCCCAGGTTCGTCAACGACAGCGCTGCGAAGAAACCAGCCAACGCCTGGCATCGACGCTGCAACGCTTCGGCTTCAAGCCCCAGGGCGGCTGCGCATTGTTCCAGTGGCTGGTCACCCCGCACGCCCAGGCCCTGTATGAATTCATGGCCCATCGCGGCATTCTGCTGCGCCTGTTCACCCACACCAGCAGCCTGCGTTTCGGGTTGCCCGCCGATGATGCCGGGTTCCTGCGCCTCGAGCAGGCTTTCGAGGCCTACGCCAAGGACATTCGATGA	MLEHGGRLRKASRQYGIAEADWLDLSSGLAPWPFDVPPIPLRAWARLPEAEDGLEQAACDYYEATHVLPVAGSQMAIQLLPRLRRAGKVGVLSPCYAEHAEAWRRSGYIVREVLETEVDFFLDSLDVLVVVNPNNPTGLSLSPERLLNWHARLAQRGGWLVVDEAFMDMTPHLSLSAHAHQVGLIVLRSFGKFFGLAGVRLGFVLAERRLLKLLAEQVGPWAVSGPTRVLGEACLLDTEAQVRQRQRCEETSQRLASTLQRFGFKPQGGCALFQWLVTPHAQALYEFMAHRGILLRLFTHTSSLRFGLPADDAGFLRLEQAFEAYAKDIR	PGPT0004655_548	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004655-cobC1|cobC-K02225	NA	NA
D1-36_01399	1452	cobQ		Cobyric acid synthase	ATGACAACCTTGATGGTGCAGGGCACCACCTCCGATGCCGGCAAAAGTACCCTGGTCACGGCGCTCTGCCGTTGGGTTACGCGCCAGGGTGTGAAGGTGGTGCCGTTCAAGCCGCAGAACATGGCGCTCAACAGCGCGGTGACCGCCGACGGTGGCGAAATCGGCCGGGCCCAGGCTGTCCAGGCACAGGCCTGTGGCCTCGAGCCCCATACCGACATGAATCCGGTGCTGCTCAAGCCCAACAGCGATACGGGCGCCCAGGTCATCATCCATGGCCGTGCCGTGACCACCATGAACGCGGTGGCCTATCACGATTACAAAGCCATCGCGATGCAAGCGGTACTGGCCTCCCACGCGCGCTTGAGCGCGACATACCCGGTCGTCATGGTGGAAGGCGCGGGATCGCCGGCGGAGATCAACCTGCGGGCCGGGGACATCGCCAATATGGGCTTTGCCGAGGCGGTGGACTGCCCGGTGCTGCTGATCGCCGACATCAATCGTGGCGGGGTTTTCGCCCATCTGGTCGGCACACTGGAGTTGCTTTCGCCCAGCGAGCAGGCGCGGGTAAAGGGTTTCATCATCAATCGTTTTCGCGGCGATATCGCCTTGCTGCAGCCGGGGCTGGATTGGTTGGAAACGCGCACTGGCAAACCGGTGATCGGCGTGTTGCCGTATGTAATGGACCTGCACCTGGAGGCCGAGGATGGCCTCGACCAGCGCCAGGCCGACAAGGCTGAACAGGTGCTCAAGGTGGTGGTGCCGGTGCTGCCGCGCATCAGCAACCACACCGATTTCGACCCGCTGCGCCTGCATCCGCAGGTCGACCTGCAATTCATCGGCCCTGGCCAGGCCATCCCGCCTGCCGACCTGATTATCCTGCCCGGGTCCAAAAGCGTGCGCAGCGATTTGGCCTACCTGCGGGCTAATGGCTGGGAAACGGCCATCCAGCGCCACTTGCGCTACGGCGGCAAGTTATTGGGTATCTGCGGCGGTTTGCAGATGCTCGGCCAGCAGGTCCACGATCCGCTCGGGCTGGAAGGCGTGGCGGGTTCCAGCGCCGGGTTGGGCTTGTTGGATTTCGAAACGACCCTGGAGCGCGAAAAGCAACTGCGCAACGTCCGCGGGCGACTGAACCTGGAAGACGCCGAGGTCAGCGGCTATGAAATCCACGCGGGCGTCACCGTCGGCGCGGCCCTGGAACATGCGGCGGTGTGCTTGGACGATGGCCGTTGCGATGGCGCCCAGAGCCGCGATGGGCAGATTTTTGGTACTTATCTGCATGGGCTCTTTGAGTCGCCGGCAGCCAGCAGTGCATTGCTGCGTTGGTCGGGTCTGGAGGACGTACAGACGGTGGATTACCACGGCTTGCGCGAGCGAGATATCGAACGGTTGGCGGATTTGGTGGAGCGGCATCTGGACACCGGGCTGCTGCGTGAGCTCTGTGGGATCTAG	MTTLMVQGTTSDAGKSTLVTALCRWVTRQGVKVVPFKPQNMALNSAVTADGGEIGRAQAVQAQACGLEPHTDMNPVLLKPNSDTGAQVIIHGRAVTTMNAVAYHDYKAIAMQAVLASHARLSATYPVVMVEGAGSPAEINLRAGDIANMGFAEAVDCPVLLIADINRGGVFAHLVGTLELLSPSEQARVKGFIINRFRGDIALLQPGLDWLETRTGKPVIGVLPYVMDLHLEAEDGLDQRQADKAEQVLKVVVPVLPRISNHTDFDPLRLHPQVDLQFIGPGQAIPPADLIILPGSKSVRSDLAYLRANGWETAIQRHLRYGGKLLGICGGLQMLGQQVHDPLGLEGVAGSSAGLGLLDFETTLEREKQLRNVRGRLNLEDAEVSGYEIHAGVTVGAALEHAAVCLDDGRCDGAQSRDGQIFGTYLHGLFESPAASSALLRWSGLEDVQTVDYHGLRERDIERLADLVERHLDTGLLRELCGI	PGPT0004580_2419	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004580-cobQ|cbiP-K02232	NA	NA
D1-36_01400	522	cobP		Bifunctional adenosylcobalamin biosynthesis protein CobP	ATGCTCCAACTGATCCTCGGCGGCGCCCGCTCGGGCAAGAGTCGCCTGGCCGAAAAACTCGCCGCGAGCACAGGCTTGCCGGTGACTTACATCGCCACCAGCCAACCCCTGGACGGCGAAATGAACGAGCGTGTCGCCCAGCACCGCGCCCGGCGCCCCGCCGAATGGGCGCTGGTGGAGGAACCGTTGGCGCTGGCGCGGGTGCTGGAAGAAAACGCCGCACATGATCAATGCCTGTTGGTGGATTGCCTGACGCTCTGGCTCACCAACCTGCTGATGCTTGATGACGCCGACCGGCTGGTCGCCGAGCGTGAAGCGCTGCTGGATTGCATCAGTGCGCTTCCTGGCGAGGTCATATTCGTCAGCAACGAGACCGGCATGGGCGTCGTGCCGCTGGGGGAGTTGACCCGTCGTTATGTCGATGAAGCCGGTTGGCTGCATCAAGCCCTGGCCGAACGTTGTCAGCGCGTCGTGTTGACCGTCGCCGGCTTGCCCCTGACCCTTAAAGGAACTGCGTTATGA	MLQLILGGARSGKSRLAEKLAASTGLPVTYIATSQPLDGEMNERVAQHRARRPAEWALVEEPLALARVLEENAAHDQCLLVDCLTLWLTNLLMLDDADRLVAEREALLDCISALPGEVIFVSNETGMGVVPLGELTRRYVDEAGWLHQALAERCQRVVLTVAGLPLTLKGTAL	PGPT0004585_2073	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004585-cobP|cobU-K02231	NA	NA
D1-36_01401	1056	cobT		Nicotinate-nucleotide--dimethylbenzimidazole phosphoribosyltransferase	ATGAATCACCGCTGGTGGCTGGACCCGTGCAAGCCCGTCGATACCCAAGCGCTGGAACAGGCCGCGGCCCGTCAGCAACAGCTGACCAAACCGGCCGGCTCCCTGGGGCGACTGGAATCGATGGCGGTGCAACTGGCGGGCCTGCAAGGGCAGGTCAAACCGAACCTTGACCGGTTGTGGGTTGCGATTTTCGCCGGTGATCATGGCGTCGTGGCCGAAGGTGTCTCGGCGTATCCCCAGGAAGTCACCGGGCAGATGTTGCTCAACTTCGTCAACGGCGGCGCGGCCATCAGCGTTCTGACGCGGCAATTGGGCGCGTCCCTGGAAGTGATCGACCTGGGCACTGTAACGCCTTCGCTGAATTTGCACGGCGTGCGCCATTTGAACCTGGGTCCTGGCACGGCGAATTTCGTCCGGGGGCCGGCGATGACCCTGGCGCAAGGCGAACAGGCCCTGCAAGCCGGACGCGACAGCGTGGCGCGCGCGGTCGCGGCTGGAACGCAATTGTTCATCGGCGGCGAGATGGGCATCGGTAATACCACTGCCGCCAGTGCCCTGGCCTGTGCCTTGCTCGACTGCCCGGTGACGCACCTGGTCGGGCCGGGCACGGGCTTGGACGCGGCAGGTGTCAGCCGCAAGGCCCAGGTGATCGAGCGGGCCCTGGCGTTGCACGGTGGTGCGAGCGGCGACCCGTTGCAGACATTGTTCAACCTCGGCGGTTTCGAAATCGCGGCGTTGGTCGGTGCGTACCTGGCCTGCGCTCAGCAGGGCGTCGCCGTGCTGGTGGATGGGTTTATCTGCAGCGTAGCGGCGCTGGTGGCGGTGCGGCTCAATCCCGGATGCCGCCCATGGCTGCTGTTCGGTCATCGCGGTGCCGAGCCGGGTCACCGGCACGTGTTGGAAACCCTCGGCGCCGAACCGCTACTGGACTTGGGCTTGCGCCTGGGCGAGGGCAGTGGCGCGGCGCTGGCGGTGCCGTTGTTGCGCCTGGCCTGTGACCTTCACGGGCAGATGGCGACGTTTGCCGAAGCGGCCGTGGCGGATCGCCCGGCATGA	MNHRWWLDPCKPVDTQALEQAAARQQQLTKPAGSLGRLESMAVQLAGLQGQVKPNLDRLWVAIFAGDHGVVAEGVSAYPQEVTGQMLLNFVNGGAAISVLTRQLGASLEVIDLGTVTPSLNLHGVRHLNLGPGTANFVRGPAMTLAQGEQALQAGRDSVARAVAAGTQLFIGGEMGIGNTTAASALACALLDCPVTHLVGPGTGLDAAGVSRKAQVIERALALHGGASGDPLQTLFNLGGFEIAALVGAYLACAQQGVAVLVDGFICSVAALVAVRLNPGCRPWLLFGHRGAEPGHRHVLETLGAEPLLDLGLRLGEGSGAALAVPLLRLACDLHGQMATFAEAAVADRPA	PGPT0004595_1359	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004595-cobU|cobT-K00768	NA	NA
D1-36_01402	576	cobC	COG0406	Adenosylcobalamin/alpha-ribazole phosphatase	ATGACCTTGCGCCTGGACCTGCTGCGTCACGGTGAAACCGAGCTGGGCGGCGGCTTGCGCGGCAGCCTCGACGACGCCCTGACGGCCAGGGGCTGGGAGCAGATGCACGAGGCGGTCGCCCAGGGCGGGCCGTGGGATCGCCTGGTGTGCTCGCCATTGCAGCGATGCGCCCGTTTCGCCGAACACCTTGGCGCCCGGCTTGGCGTTCCGGTGCAGGCGGACAAAGACTTGCAAGAGTTGCATTTCGGCGCCTGGGAAGGTCGCAGCGCGGCGGCATTGATGGAGACCGACGCCGAGGCCCTCGGTCGCTTTTGGGCCGATCCTTACGCCTTCACACCTCCCGGAGGTGAGCCGGTGTTGGCGTTTTCGGCGCGGGTGCTGGCGGCGGTCGAGCGCTTGCACCTCGCATATGCCGGTCAGCGCGTGTTGCTGGTCAGTCATGGCGGCGTGATGCGCTTGCTACTGGCCCAGGCCCGGGGGTTGCCACGCGAGCAATTACTGAATGTCGAAGTCGGCCATGGTGCGCTGTTTTCCCTGGCGGTGTCCTCCGGCCCCGTGCTTAGAGAGGCTGGCTGA	MTLRLDLLRHGETELGGGLRGSLDDALTARGWEQMHEAVAQGGPWDRLVCSPLQRCARFAEHLGARLGVPVQADKDLQELHFGAWEGRSAAALMETDAEALGRFWADPYAFTPPGGEPVLAFSARVLAAVERLHLAYAGQRVLLVSHGGVMRLLLAQARGLPREQLLNVEVGHGALFSLAVSSGPVLREAG	PGPT0004650_1398	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
D1-36_01403	732	cobS	COG0368	Adenosylcobinamide-GDP ribazoletransferase	ATGTTGCCCTTCTGGATCGCCCTGCAATTTCTCAGCAGCTTGCCGATTCGCTTGCCGGGCATGCCTGAGCCCCGCGAGCTGGGGCGTTCGCTGTTGTTCTATCCCGTGGTGGGGCTGTTGTTCGGCGGTTTGCTGTGGTTGCTCGATGCGCTGTTGGCGGGCGCGCCGGTGATGCTGCATGCCGCGCTGCTACTGATGGCGTGGGTGCTGCTCAGCGGCGGGCTGCACCTGGACGGCCTGGCCGACAGCGCCGATGCCTGGCTCGGCGGTTTCGGCGATCGTGAGCGTACGTTGCTGATAATGAAGGATCCACGCAGCGGGCCGATCGCCGTGGTCACGCTGGTGCTGGTGTTGCTGCTCAAATGGACCGCGCTGGTGGCGCTGATCGAGCAGGAGGATGCGTTGGCCTTGCTCGTTGTGCCGGTGCTGGGGCGTAGCGCCTTGCTGGGGTTGTTCCTCACCACGCCGTATGTGCGTGCCGGTGGGCTGGGCCAAGCGTTGGCCGATCATTTGCCGCGCCGCTCGGGCTGGCAGGTGTTGTGGGCCGGAGCGCTGGGGTGCGTGCTGGTGATGGGATGGGCGGGGCTGTGGACGTTGGCGGTCGCCGTGCTGGTATTTATCGGTTTGCGCCACATCATGCTGCGCAGGCTGCAGGGATGCACCGGCGACACGGCGGGCGCCTTGCTGGAATTGCTGGAAATGGCGGTTCTGGTGGCGTTGGCGTTGAGCTGA	MLPFWIALQFLSSLPIRLPGMPEPRELGRSLLFYPVVGLLFGGLLWLLDALLAGAPVMLHAALLLMAWVLLSGGLHLDGLADSADAWLGGFGDRERTLLIMKDPRSGPIAVVTLVLVLLLKWTALVALIEQEDALALLVVPVLGRSALLGLFLTTPYVRAGGLGQALADHLPRRSGWQVLWAGALGCVLVMGWAGLWTLAVAVLVFIGLRHIMLRRLQGCTGDTAGALLELLEMAVLVALALS	PGPT0004590_2510	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004590-cobS|cobV-K02233	NA	NA
D1-36_01404	405			hypothetical protein	ATGCTTCCTTCCCAATGTCTGTGCATCAACCTGCGTCGCGCCGCGCGTGGCGTCAGCAGGTACTACGACGGCGCTCTCGATGGCTTCGGGATCAACGTTGCCCAGTATTCTTTGCTCAATAACCTGGCGCGCCTGGACCAGCCGAGCATTTCGTCCCTGGCCGAGGCCATGGGCCTGGACCGCAGCACCCTAGGGCGCAACCTACGGGTGCTGGAAGGCGAGGGGTTGGTGAAGTTGGCTGAGGGCGACGATTTGCGCAACCGCATCGTTGTGCTCACCGAGGCGGGAAATGCCCGGTTGGCGGCGGCATTGCCGGCCTGGGAAGCGGCACAACAGAAATTGATCGACAAGCTCGGTGCCGAAAAGCGCGCGACCTTGCTCGCCTTGCTGGATGAGTTGGCGTGA	MLPSQCLCINLRRAARGVSRYYDGALDGFGINVAQYSLLNNLARLDQPSISSLAEAMGLDRSTLGRNLRVLEGEGLVKLAEGDDLRNRIVVLTEAGNARLAAALPAWEAAQQKLIDKLGAEKRATLLALLDELA				NA	NA	NA	NA	NA
D1-36_01405	1209			L-lactate transporter	ATGACATCGATGTGGCGTACCTGTGGTTGGGTCCTGGTGGGCAGTGCGTTGATCCTGGCGTTGTCCCTGGGCGTGCGGCATGGCTTCGGGTTGTTCCTGGCGCCGATGAGCGACGAATTCGGCTGGGGCCGGGAGGTGTTTGCCTTCGCCATCGCTTTGCAGAACCTGATCTGGGGCCTGGCGCAGCCTTTCACGGGCGCCCTGGCGGATCGCTTCGGTGCGGCAAAAGTGGTGCTGATCGGTGGTGTCCTGTATGCGGTCGGCCTGGTCTTCATGGGCATGGCCGACTCGTCCTGGTCGCTGTCGTTGAGCGCCGGCCTGTTGATCGGCATCGGCCTGTCCGGCACTTCGTTCTCGGTAATCCTTGGTGTGGTTGGGCGGGCCGTGCCGCCAGAGAAACGCAGCCTGGGCATGGGTATCGCCAGTGCGGCCGGCTCGTTTGGCCAGTTCGCGATGTTGCCGGGCACGCTGGGGCTGATTGGTTGGCTCGGCTGGTCCGCGGCGCTGTTGGCGCTGGGCCTGCTGGTGGCGTTGATCGTGCCCTTGGTCAGTATGCTCAAGGATGCACCGGCACCCCTGAGCGGCAACGAGCAGACCTTGTCCGAAGCGTTGCGCGAGGCGTGCAGTCATTCCGGTTTCTGGCTGTTGGCGGTCGGTTTTTTTGTCTGCGGTTTCCAGGTGGTGTTCATCGGCGTGCATCTGCCGGCCTATCTGGTGGACCAGCACCTGCCGGCCAGCGTCGGCACCACCGTGTTGGCACTGGTCGGTCTGTTCAATATCTTCGGCACCTACACCGCCGGCTGGCTGGGCGGGCGCATGTCCAAGCCGCGCCTGCTGACTGGCCTGTACCTGGTGCGGGCGGTGGTGATCGGCCTGTTCCTGTGGTTGCCAGTGACGACGACCACGGCTTATCTGTTCGGCATGGCGATGGGTTTTCTCTGGTTATCGACGGTGCCATTGACCAACGGGACGGTCGCCACGTTGTTCGGTGTACGAAATCTCTCGATGCTGGGTGGGATCGTGTTCCTGTTCCACCAGTTGGGCTCGTTCCTCGGTGGTTGGCTGGGCGGCGTCGTGTACGACCGCACGGGCAGCTACGACTTGATCTGGCAGGTGTCGATTTTGCTCAGCCTGCTCGCGGCTGCGTTGAACTGGCCGGTGCGTGAGCGCCCGGTTGCCCGCCTGCAAGCCCAGGCGGGTGCGGCATGA	MTSMWRTCGWVLVGSALILALSLGVRHGFGLFLAPMSDEFGWGREVFAFAIALQNLIWGLAQPFTGALADRFGAAKVVLIGGVLYAVGLVFMGMADSSWSLSLSAGLLIGIGLSGTSFSVILGVVGRAVPPEKRSLGMGIASAAGSFGQFAMLPGTLGLIGWLGWSAALLALGLLVALIVPLVSMLKDAPAPLSGNEQTLSEALREACSHSGFWLLAVGFFVCGFQVVFIGVHLPAYLVDQHLPASVGTTVLALVGLFNIFGTYTAGWLGGRMSKPRLLTGLYLVRAVVIGLFLWLPVTTTTAYLFGMAMGFLWLSTVPLTNGTVATLFGVRNLSMLGGIVFLFHQLGSFLGGWLGGVVYDRTGSYDLIWQVSILLSLLAAALNWPVRERPVARLQAQAGAA				NA	NA	NA	NA	NA
D1-36_01406	120			hypothetical protein	ATGAGCCGCGTCGGCCCATGGTTGATCGCAGCCGGCGCCGCCGCGCTGCTGGCGGTCGCCTGGTGGGGCTGGCGCCAGGGCGGGTTGGCTTTGATGCAGCTGGGCATGGGCAGCTGCTGA	MSRVGPWLIAAGAAALLAVAWWGWRQGGLALMQLGMGSC				NA	NA	NA	NA	NA
D1-36_01407	549	btuE_2		Thioredoxin/glutathione peroxidase BtuE	ATGATGCGTTGGTTTGCTGTTCCCACCCTGTTGCTGGCTATGACCGGGCATGTATGGGCGGCTGAATGCCCGTCACTCTTGGAGGGTTCGCTGCCCAAGCTGCGGGCCAAGGAAACCGTCGATTTGTGCCAGCGTTTCGCTGGCAAACCCTTGGTGGTGGTCAACACGGCCAGCTTCTGTGGGTTCGCTCCACAATTCAAAGGGCTCGAGGCGCTTAATCAGCGCTATAAAAGTGAAGGGTTGGAAGTGCTGGGCGTGCCGTCCAACGACTTCAAGCAGGAATCCAAGGACGGCGCGGAGACCGCCAAGGTTTGCTACGTCAACTATGGCGTGACCTTTACCATGACCGAACCGCAACCGGTACGGGGCGCGGATGCCATTCCCTTGTTCAAGCACCTGGCCGAACAGTCCAGCGCGCCGAAATGGAATTTCTACAAATACGTCGTGGATCGCCAGGGCAAGGTGGTTGGCAGCTTTTCCAGTCGGATAAAACCCGACGATCCTGATTTCATCAAGGCGGTGGAGACGGCTATCGCTTCCAAACCCTGA	MMRWFAVPTLLLAMTGHVWAAECPSLLEGSLPKLRAKETVDLCQRFAGKPLVVVNTASFCGFAPQFKGLEALNQRYKSEGLEVLGVPSNDFKQESKDGAETAKVCYVNYGVTFTMTEPQPVRGADAIPLFKHLAEQSSAPKWNFYKYVVDRQGKVVGSFSSRIKPDDPDFIKAVETAIASKP	PGPT0013115_2086	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013115-bsaA|gpx|btuE-K00432	NA	NA
D1-36_01408	1275	fadL	COG2067	Long-chain fatty acid transport protein	ATGAAAAAAATGATGCTCAAAACCACCCTTGGCCTTGCCGTTACCTTGGCATCCACCCAAATTTTCGCCAGTGGCTTTGCCTTGAACGAACAAAGCATCAGTGGCATGGGCACTGGCTTCGCGGGTCGTTCTTCTTCTGCCGATGATGCGAGCACTGTGTTTGGCAACCCTGCCGGCATGTCGCGCCTCAAGCGCCAACAAGTCACCGGCGGCTTCGCCGTCATCGACGCATCCACCGACATCAACGATGCCAGCGGCACCCAGTCCGGTACGAACGATGGCGACATGGTCCCGTTCACCGGCGTTCCGATGGGCTACTACGTCAAGCCAATCGACGATCAATGGGCATTCGGCCTGGGCGTCTATGCCCCCTTCGGCCTGATCACCGACTACGAAAGCAGCTTCCAGGGCCGCAATTTCGGCAGCAAGAGCGAAGTGAAGGTCGTGACCTTCCAGCCAACCATCAGCTACGCCTTCAATGACAAGGTGTCGATCGGTTTTGGCCCGACTATCAACCGGATTTCGGGCTCGCTGGAGTCGGCGTTGACCACGCCATTCTCGCCTAATGATGGCAACGTCCAGATCAAGGGCGACGATATTGGCTACGGCTACAACATCGGTTTGCTGGTGCAAGCCACTGACACCACCCGTGTCGGCCTGACTTACCACTCGAAGGTCAAATACAAGCTTGAGGGCCACACCGAAGTGAGCCCGGGTGCTGGTACGCCAGGCTTCCTGTTGAGCGGTGACCGATACGACGCATCGCTGGACATCACGACCCCTGAGTCCGTGGACTTCTCGGTAACCCAGGAAATCAACGATGCCTGGACTGTCTATGCCGGTAGCACCTGGACTCGCTGGAGCCGCCTGAAAGACATCACCGTGAACAACGACATCACCGGCGGCGGCGCATTGAACCCAACCCTCTTCGGCACCATCACCGAAGAACAGAACTGGCACGACACCTGGGCCTACGCCATCGGTACCTCCTACCAGTTGAACAAGCAATGGGTACTGCGCACCGGCCTGTCCTTCGACCAGTCGCCGACCAACAACGCCGACCGTTCGCCTCGCATTCCTACCGGCGACCGGACCATCTTCAGCCTGGGTGCCGGCTGGAGCCCAACCGACGACCTGACCATCGACGTGGCCTATTCCTATCTCAAGGAAGAAAAAGTCAACGTCAACAGAGCCAACGCCCTGGGCCAGGCCTACAACGCTGAATACGAAAACAGCGCCAACGGCTTCGGCGTCGGCGCAACCTACCGCTTCTGA	MKKMMLKTTLGLAVTLASTQIFASGFALNEQSISGMGTGFAGRSSSADDASTVFGNPAGMSRLKRQQVTGGFAVIDASTDINDASGTQSGTNDGDMVPFTGVPMGYYVKPIDDQWAFGLGVYAPFGLITDYESSFQGRNFGSKSEVKVVTFQPTISYAFNDKVSIGFGPTINRISGSLESALTTPFSPNDGNVQIKGDDIGYGYNIGLLVQATDTTRVGLTYHSKVKYKLEGHTEVSPGAGTPGFLLSGDRYDASLDITTPESVDFSVTQEINDAWTVYAGSTWTRWSRLKDITVNNDITGGGALNPTLFGTITEEQNWHDTWAYAIGTSYQLNKQWVLRTGLSFDQSPTNNADRSPRIPTGDRTIFSLGAGWSPTDDLTIDVAYSYLKEEKVNVNRANALGQAYNAEYENSANGFGVGATYRF				NA	NA	NA	NA	NA
D1-36_01409	483			hypothetical protein	ATGGGTATCGCTGCCAGCGAACTGTGTCGTTATGTGATCCGCCCGACGCTCCTTTACCTGGGGAGCCACAGCACAACGGCGGAAAACCTGTTGCTGGGGATCGCCGCCAGTCAATCAGGCCTGGGCGCCGCGTTGCACGATCGTCGTGGGCACGGCTTGTACCGCATCACTGAACCGCGCCATCAAGCCCTGTGGGACGATTATCTGGCGTTGGATCCGGAACGAGCCAGCCTGGTGCGGGGCCTGGCGAGCCAGCATGCTTTCCTGAGCGGCCCTCATCAGGAATTGACCGTCAATTTGCGCTACGCCACGGCCATCGCTTGGTTGCTGGTGGAGGAACACGCCACCCCGCTTCCCGATTCAAACGATTTGCTGGCCATGGCCCGCATCTGGCGCCAGGTTTTTCATCCCACTGGTCGCCTGCGGGACTTCACCTGCGCGTGGCAAAACTGTGTTTCACCCTTGAACCAGGTCGCTTGCTGA	MGIAASELCRYVIRPTLLYLGSHSTTAENLLLGIAASQSGLGAALHDRRGHGLYRITEPRHQALWDDYLALDPERASLVRGLASQHAFLSGPHQELTVNLRYATAIAWLLVEEHATPLPDSNDLLAMARIWRQVFHPTGRLRDFTCAWQNCVSPLNQVAC				NA	NA	NA	NA	NA
D1-36_01410	225			hypothetical protein	ATGTCTAATCAAATCCAGACACAGGATGCCATCCGCACCCTAACCAACGCCTTTGCTCCAATGAACTGCCTGATCATGGCCGCTCGCAAAGGCTGCTTCAGCTTCACGCTGGTCAACGAACACGGCATCGCCCGTCACAGCGAACGCTTGTATCCCGACCAGTACTCCAGCGCAGAACCGCTGCAGGCGGTCATCGAGCGTACCCGTCAGGCACTCGTTGCCTGA	MSNQIQTQDAIRTLTNAFAPMNCLIMAARKGCFSFTLVNEHGIARHSERLYPDQYSSAEPLQAVIERTRQALVA				NA	NA	NA	NA	NA
D1-36_01411	252			hypothetical protein	ATGCGAGTTGCCGAGTGGCTGCTGGACAGCCCGAGCCTGGGAGAGCGTCCCAGCGTCAAGCACCTGGCTGGACGCCTGCTCAAACAACCGGCGCGCGAAGGCGTGGTGGCCGCACAAAGTCGCCTCGGTCAGCTGATGTGCCGCGAATGCGGCAATGCACGGGACCGGCGTATTGGCCAGGACCTGCTGCGCCAGGCCGCGCGGGCCGGCGATCACCGTGCCCGCCAGGCATTGGGCGAGATCGAAGACTGA	MRVAEWLLDSPSLGERPSVKHLAGRLLKQPAREGVVAAQSRLGQLMCRECGNARDRRIGQDLLRQAARAGDHRARQALGEIED				NA	NA	NA	NA	NA
D1-36_01412	1497			hypothetical protein	ATGGCGATGGATTTGACCAGCCTGTTGCTTGGCCTGGCAGGCGCTGCGGTGCCGCTGTTGGCATTGGCCTGGCACCTGCAACGCCAGGCAAGCGCGGCACAGACCGAGCTGGCGTTGATGGAAGAACGCCTGGCGACCGCCCACATGGCACACGATGGGTTGAATGCCCAGCTCGATGCCTGCCGCGACGAAATCAGTGACTTGGGCCAGGCCAATGCCGCCAGGCAAGCCGAGCTTGCGGCTGCGTGTCGCGAGGTCGAACTGCTGCAGATCGAGCGTGACAACGCAAGGGACGCGGCGCATGCCTGGAACCTGGAGCGTGCCAATAAGGAAGCTGAATTGCGACGCCTGGATGCCCAGGCTGCTTCGTTGCAGGCCGAATTGCGCGAACAGCAGGAGAGCCATCAGCAGCGCCTGGACGATCTTCAAGGCTCGCGGGACGCATTGCGGGCCCAGTTCGCCGAGCTGGCGGGAAAAATCTTCGACGAGCGTGAACAGCGTTTCGCCGAAACCAGCCAGCAGCGCTTGGGTCAGTTGCTCGACCCACTGAAGGAACGCATCCAGTCCTTTGAAAAACGCGTCGAGGAAAGCTACCAGGCCGAGGCCCGGGAGCGATTTTCCCTGGGCAAGGAACTGGAGCGCCTGCAACAGCTGAACCTGCGCCTGAGCGATGAAGCCACCAACCTGACTCGTGCGCTCAAGGGTCAGAAGACCCAGGGCAACTGGGGCGAGTTGATTCTCGAGCGGGTCCTGGAACATGCCGGCTTGGAGAAGGGCCGCGAATACCAGACCCAGGTCAGTCTCAAGGGGCCGGATGGCGAACGGTTCCAGCCGGACGTATTGATTTATCTGCCCGGCGACAAGCAGGTGGTGGTCGATTCGAAGGTCAGCCTCACGGCCTACCAGCAATATGTGGCGGCCGAAGACAATGCCATCGGCCAGTTGGCTCTCAAGCAGCACGTCGTGTCATTGCGAGCCCACGTCAAAGGCTTGGCCGGCAAGGACTACAAGCGTCTGGACGGTCTGCACAGCCTGGATTTCGTCTTGCTGTTCGTGCCGATCGAAGCGGCATTTTCCGCAGCCTTGCAAGCCGAGCCGAACCTGTTCCAGGAAGCTTTCGACCGCAACATCGTGATCGTCAGCCCGACCACGCTGCTGGCGACGCTGCGGGTGATCGACAGCTTGTGGAAGCAAGAGCGCCAGAGCCAGAACGCCCGGGAAATCGCCGAACGGGCGGGGTGGCTGTATGACAAGTTCGTCCTGTTTATCCAGGACCTGGACGAAATCGGCAGTCGCTTGCAGCAGTTGGACAAAGCCTACAGCGCCGCACGCAATAAGCTGACGGAAGGGCGCGGCAACTTGGTCAGCCGCAGCGAGCAGTTGAAACTGCTCGGCGCCAGGGCGAGCAAGAGCTTGCCTACGGAGTTGCTTGAACGGGCGATGGCGGACGTGGATGGGTTGCCAGAGGAGACCGGCGAAGAAAGCCAGGGTCAGTAG	MAMDLTSLLLGLAGAAVPLLALAWHLQRQASAAQTELALMEERLATAHMAHDGLNAQLDACRDEISDLGQANAARQAELAAACREVELLQIERDNARDAAHAWNLERANKEAELRRLDAQAASLQAELREQQESHQQRLDDLQGSRDALRAQFAELAGKIFDEREQRFAETSQQRLGQLLDPLKERIQSFEKRVEESYQAEARERFSLGKELERLQQLNLRLSDEATNLTRALKGQKTQGNWGELILERVLEHAGLEKGREYQTQVSLKGPDGERFQPDVLIYLPGDKQVVVDSKVSLTAYQQYVAAEDNAIGQLALKQHVVSLRAHVKGLAGKDYKRLDGLHSLDFVLLFVPIEAAFSAALQAEPNLFQEAFDRNIVIVSPTTLLATLRVIDSLWKQERQSQNAREIAERAGWLYDKFVLFIQDLDEIGSRLQQLDKAYSAARNKLTEGRGNLVSRSEQLKLLGARASKSLPTELLERAMADVDGLPEETGEESQGQ				NA	NA	NA	NA	NA
D1-36_01413	3471	rcsC_5		Sensor histidine kinase RcsC	ATGTCGCTGTCCAGCGGGCTGATCGCCGTTGTCGCCCTGGCCTATATGGCCATCATGTTTGCCATCGCCTTTTACGGCGACCGACGCAGCACACCGCTGCCACCACGTGTGCGCGCGTGGGTCTACAGCCTGTCGCTGGCGGTGTATTGCACCAGCTGGACGTTTTTCGGCGCCGTGGGCCAGGCCGCCGAACAGCTCTGGTCATTCCTGCCGATCTACCTCGGGCCGATCCTGCTGCTGGTACTGGCGCCGTGGGTCTTGCAGAAGATGGTGATGATCAGCAAGCAGGAGAACATCACCTCCATCGCCGACTTCATCGCCGCCCGCTACGGCAAATCACAATCACTGGCAGTGGTGGTCGCCCTGATCTGCCTGGTCGGCGTGCTGCCTTACATTGCCTTGCAGCTAAAGGGCATCGTGCTCGGCGTGAACCTGTTGATCGGCGCCGGTGCCGACGCCATGGGCACCCGAGCGCAGGATACTGCGTTGATCGTCTCGCTGATCCTGGCGCTGTTCACCATCGTCTTCGGCACTCGCAACCTCGACGCCACCGAGCACCACCGCGGCATGGTGTTGGCGATTGCCTTTGAATCGCTGGTCAAGCTGTTCGCCTTCCTGGCGGTTGGCGCGTTCGTCACGTTTGGCCTTTATGACGGCTTCGACGACCTGTTCAACCAGGCGATGCTCGCGCCACGGTTGGAGCAGTATTGGAAGGAGACCATCAACTGGCCGTCCATGGTGGTGCAAACCGGCGTGGCGATGATGGCGATCATCTGCCTGCCACGGCAGTTCCACGTCACCGTGGTGGAGAACATCGAACCCCAGGACCTGCGCCTGGCCAAATGGGTGTTCCCCGCCTACCTGGCCCTGGCCGCCCTGTTCGTGGTGCCGATCGCCCTCGCCGGGCAAATGATGTTGCCCAGCTCGGTACTGCCGGATTCGTTCGTCATCAGCCTGCCACTCGCCCAGGCCCATCCGGCGCTGGCGGTGCTGGCATTCATCGGCGGCGCCTCGGCCGCCACCGGCATGGTCATCGTGGCGAGTGTCGCCCTGTCGACCATGGTCTCCAACGACATGCTGCTGCCATGGCTATTGCGCCGCAACAACGCCGAGCGGCCTTTCGAAGTGTTCCGCCAATGGATGCTGTCGGTACGCCGGGTGAGCATCGTTGCGATTCTCCTATTGGCTTATGTCAGCTACCGGCTGCTGGGTTCGACCGCGAGCCTGGCCACCATCGGCCAGATCGCCTTCGCCGCCGTGACGCAACTGGCACCCGCCATGATCGGCGCGCTGTACTGGAAACAGGCGAATCGACGCGGCGTGTTCGCCGGCCTCGCCATGGGCATATTCCTGTGGTTCTACACGCTGGTGCTGCCGATCGCCGCCCATAGCCTGGGCTGGTCACTGAGCAGCTTCCCCGGCCTGGCCTGGCTGCATGGCAATCCGCTGGATTTGCCGATCACGCCGCTTACCCAAGGTGTCGTCCTGTCCCTGGCGGGCAATTTCATATTGTTCGCCTGGGTTTCGGTCCTGTCGCGCACACGTGTGTCGGAGCATTGGCAGGCTGGACGCTTCATCGGTCAGGAGATCAGCGCCCGACCCAATCCTCGCTCGATGCTGGCGGTCCAGATCGAGGATCTGTTGCAGCTGGCGGCCCGCTTCGTCGGCGAAGAACGGGCGCGCCAGAGCTTCATTCGCTTTGCCTATCGCCAAGGCAAAGGCTTCAACCCGAGCCAGAACGCCGACAGCGAATGGATCGCCCATACCGAGCGGCTGCTGGCCGGTGTACTCGGCGCGTCGTCGACGCGAGCCGTGGTGAAAGCGGCCATCGAAGGCCGCGAGATGCAACTGGAAGACGTCGTGCGGATCGCCGACGAAGCGTCCGAAGTGCTGCAATTCAACCGAGCGCTGCTGCAAGGCGCCATCGAAAACATCACCCAGGGCATCAGCGTGGTCGACCAGTCCCTCAGGCTGGTGGCCTGGAACCGTCGATACCTGGAACTGTTCAACTACCCCGACGGCTTGATCAGCGTCGGTCGGCCGATCGCCGACATCATCCGTTACAACGCCGAGCGCGGCCTTTGTGGCCCGGGCGAGGCCGAAGTCCATGTCGCCCGGCGCCTGCACTGGATGCGCCAGGGCCGCGCGCACACCTCGGAACGCCTGTTCCCCAACGGCCGTGTGATCGAGCTGATCGGCAACCCGATGCCCGGCGGCGGTTTCGTCATGAGTTTCACGGACATCACTGCTTACCGCGAAGCCGAACAGGCCTTGACCGAAGCCAACGAAGGGCTGGAACAGCGGGTGGCCGAACGCACCCGCGAACTGTCGCAACTCAACCTCGCGCTGACCGAAGCCAAGAGCACGGCCGAAGCCGCGTACCAGTCCAAGACCCGCTTTCTGGCCGCTGTCAGCCATGACTTGATGCAGCCTCTCAACGCCGCGCGCCTGTTCTCCGCCGCGCTTTCCCATCAGCACGACGGCTTGCCGAGCGAAGCCCGGCAGTTGGTGCAACATCTGGACAGCTCGTTGCGCTCGGCCGAGGACTTGATCACGGACCTGCTGGACATCTCCCGATTGGAAAACGGCAAGATCAACCCCGACCGCAAGCCGTTTGTCCTCAATGATCTATTCGATACCCTCGGCGCCGAGTTCACCGTGCTGGCTCGAGAGCAAGGCTTGAAATTCCGGGTTCGCGGCTCGCGGCTGCGGATCGACAGCGACATCAAGCTGCTGCGCCGCGTGCTGCAGAACTTCCTCACCAATGCCTTCCGCTACGCCAAGGGCCCGGTGCTGCTAGGCGTGCGCCGGGGCAACGGCGAGCTGTGTCTGGAGGTCTGGGACCGCGGGCCGGGGATCGCCGAAGACAAGCTGCAGGTCATCTTCGAAGAATTCAAACGCCTGGACAGCCATCAGACCCGGGCCGAAAAAGGGCTCGGCCTCGGCCTGGCAATTGCCGATGGACTGTGTCGCGTGCTCGGCCATACCTTGCGCGTGCGTTCCTGGCCAGGGCGCGGCAGCGTGTTCAGCGTCAGCGTGCCATTGGCCAGTAGCCAAGCCGTCGAGCCCACTGTCGTGATCGAAGCCAACGGCCATTTGCCCAGCGGCGCACAGGTGCTGTGTGTCGATAACGAAGACAGCATCCTGATCGGCATGAACAGCCTGCTGACCCGCTGGGGGTGCCGCGTATGGACGGCGCGTAATCGTGAAGAATGCGAGCGCTGGCTCGCCCAGGGCGGGCGGCCGCAACTGGCGCTGGTGGATTTTCACCTGGACGACGGCGAAACCGGGACCGAACTGATGGCCTGGTTGCGCACGCGCATGGGCGAGCCGGTGCCCGGAGTGGTGATCAGTGCCGATGGCCGGCCCGAGACCGTGGCACAGGTGCATGCGGCGGGATTGGATTACTTGGCCAAGCCGGTGAAGCCGGCGGCGTTGAGGGCGTTGTTGAGCCGGCACTTGCCGTTGTAA	MSLSSGLIAVVALAYMAIMFAIAFYGDRRSTPLPPRVRAWVYSLSLAVYCTSWTFFGAVGQAAEQLWSFLPIYLGPILLLVLAPWVLQKMVMISKQENITSIADFIAARYGKSQSLAVVVALICLVGVLPYIALQLKGIVLGVNLLIGAGADAMGTRAQDTALIVSLILALFTIVFGTRNLDATEHHRGMVLAIAFESLVKLFAFLAVGAFVTFGLYDGFDDLFNQAMLAPRLEQYWKETINWPSMVVQTGVAMMAIICLPRQFHVTVVENIEPQDLRLAKWVFPAYLALAALFVVPIALAGQMMLPSSVLPDSFVISLPLAQAHPALAVLAFIGGASAATGMVIVASVALSTMVSNDMLLPWLLRRNNAERPFEVFRQWMLSVRRVSIVAILLLAYVSYRLLGSTASLATIGQIAFAAVTQLAPAMIGALYWKQANRRGVFAGLAMGIFLWFYTLVLPIAAHSLGWSLSSFPGLAWLHGNPLDLPITPLTQGVVLSLAGNFILFAWVSVLSRTRVSEHWQAGRFIGQEISARPNPRSMLAVQIEDLLQLAARFVGEERARQSFIRFAYRQGKGFNPSQNADSEWIAHTERLLAGVLGASSTRAVVKAAIEGREMQLEDVVRIADEASEVLQFNRALLQGAIENITQGISVVDQSLRLVAWNRRYLELFNYPDGLISVGRPIADIIRYNAERGLCGPGEAEVHVARRLHWMRQGRAHTSERLFPNGRVIELIGNPMPGGGFVMSFTDITAYREAEQALTEANEGLEQRVAERTRELSQLNLALTEAKSTAEAAYQSKTRFLAAVSHDLMQPLNAARLFSAALSHQHDGLPSEARQLVQHLDSSLRSAEDLITDLLDISRLENGKINPDRKPFVLNDLFDTLGAEFTVLAREQGLKFRVRGSRLRIDSDIKLLRRVLQNFLTNAFRYAKGPVLLGVRRGNGELCLEVWDRGPGIAEDKLQVIFEEFKRLDSHQTRAEKGLGLGLAIADGLCRVLGHTLRVRSWPGRGSVFSVSVPLASSQAVEPTVVIEANGHLPSGAQVLCVDNEDSILIGMNSLLTRWGCRVWTARNREECERWLAQGGRPQLALVDFHLDDGETGTELMAWLRTRMGEPVPGVVISADGRPETVAQVHAAGLDYLAKPVKPAALRALLSRHLPL				NA	NA	NA	NA	NA
D1-36_01414	540			hypothetical protein	ATGGCTATTAAAGAAGGTTTACGCCCCGGCGGAAGAAGTGCCCGGGTTCAGGAGTCGATTCACTCGGCGGTACGCGCCCTGCTCCAGGAGCAGGACCGCGCCACCTTGACCGTGCCGCAGATCGCCGCGCGCGCCGGGGTCACGCCGTCCACCATCTACCGACGCTGGGGCGATCTGCCGGCGCTGTTGGCCGACGTTGCCATCGCGCGCATGCGCCCGGACAGCGAGCCAGCCAACACCGGCAGCCTGCGCGGCGACCTGCGCGCCTGGGCCGAGCAATACCTCGACGAGATGAGTTCAGAACCTGGCCGCAATATGATGCGTGACATCCAGGCTTGCGCCACGCCGGGGTATTGCGTGGGCATTATCAGCGGCCAGTTGCAGATCATCCTGGATCGTTATCCCGACGAGCCGAATCCCGGGATCGAGCGGTTGGTGAACGTGATCGTGGCGCCGACGGTGTTTCGCATCCTCTTCGCCACTGCGCCGCTGGAGGTCGAGGAGCTGTATCGGTTGGTGGATATGGCGTTGGATCAGTGA	MAIKEGLRPGGRSARVQESIHSAVRALLQEQDRATLTVPQIAARAGVTPSTIYRRWGDLPALLADVAIARMRPDSEPANTGSLRGDLRAWAEQYLDEMSSEPGRNMMRDIQACATPGYCVGIISGQLQIILDRYPDEPNPGIERLVNVIVAPTVFRILFATAPLEVEELYRLVDMALDQ				NA	NA	NA	NA	NA
D1-36_01415	1194			hypothetical protein	ATGTCTCGTCCAGCTTCGACCCGCGCCAGTCTCATCTTCCTGGCGATCACCTTGCTCGGTTTTCTGGCGGCCTCCAGCGCGCCGACGCCGTTGTACCACCTCTACCAGGAACATCTGCAGTTCTCTTCGGCGATCCTCACGCTGATCTTCGGTGTGTATGCGTTCAGTCTGTTGGCGGCCTTGCTGGTCGTCGGCTCGTTGTCCGATTACCTCGGTCGCAGACCGGTGATCTTCGCGGCATTATTGCTCAACATGCTAGCGATGCTGCTATTCATCAATGCCGACAGTGTGGGCTGGTTGATGGGCGCGCGACTGATACAAGGCTTCGCCACCGGCATGGCCACCAGTGTGCTGGGCGCCGCGTTGCTCGACTTCGATCGCCAGCAAGGCCCCCTAGTCACCAGCGTTGCGCCCCTGCTGGGCATGGCGTGTGGCGCGATGGGGTGTGGCCTGCTGGCAGAATTTGCGCCGATGCCGTTGCAACTGACTTATTGGCTGCTGCTGGCGTTGTTTCTGGTCCAGGCGGTTTATCTCTGGCGCCTGGCCGAAAGCGTTAGCCCGCAGCCCGGGGCCTGGCGGTCGTTGCGCCCCACCTTGCATGTGCCGGTCCAGGCCCGGCGCGCGTTGTGGCTGATCCTGCCGCTGGACCTGGCGGCCTGGGCGGTCGGTGGTTTCTATCTGTCCCTGGCGCCGTCCCTGGTTCGCGCCGCCACCGGTTCGACATCGAACCTGATCGGCGGCTCGCTGGTGGCCGTGCTGACACTCAGCGGCGCATTGTCGATCTACATGTTGCGTAACCGCGCCGCGCAAATGATGCTGCGTCTTGGCGCGACGCTGCTGGTGCTTGGCCTGGCCCTGGTGTTGATTGCCGTACACGCGGCCAGCCTGCCGTTGTTTTTCATCGGCACGCTGGTGACCGGCAGCGGTTTCGGCGCGGGATTCATCGGCGCGCTGCGCAGCATCATGCCCTTGGCCTTGCCCCACGAGCGGGCTGGCTTGATGTCGGCGTTCTATGTGCTCAGCTATCTGGCCTTCAGCCTGCCATCGTTGCTGGCGGGGAATCTGACCCGTATTTTCGGCCTGATTCCGACCACGGACGGCTACGGCGCGGTGTTGATTGTCATGGCCGCCGGCGCGCTGGTGGGTTTGTTGCGTGAACCCGCACGGCCGCTGGCGGACGGGCTTCGGCCCTGA	MSRPASTRASLIFLAITLLGFLAASSAPTPLYHLYQEHLQFSSAILTLIFGVYAFSLLAALLVVGSLSDYLGRRPVIFAALLLNMLAMLLFINADSVGWLMGARLIQGFATGMATSVLGAALLDFDRQQGPLVTSVAPLLGMACGAMGCGLLAEFAPMPLQLTYWLLLALFLVQAVYLWRLAESVSPQPGAWRSLRPTLHVPVQARRALWLILPLDLAAWAVGGFYLSLAPSLVRAATGSTSNLIGGSLVAVLTLSGALSIYMLRNRAAQMMLRLGATLLVLGLALVLIAVHAASLPLFFIGTLVTGSGFGAGFIGALRSIMPLALPHERAGLMSAFYVLSYLAFSLPSLLAGNLTRIFGLIPTTDGYGAVLIVMAAGALVGLLREPARPLADGLRP				NA	NA	NA	NA	NA
D1-36_01416	1161			hypothetical protein	ATGACCTGCTTTGCTGAAAACCGTTTTCGACCGCTGAGCCATTTGCCGGGGCCATTGGAAGTCGTCCGCCAATTCACGCCGAACTGGTTTGCCGCGACCATGGGCACCGGTGTGCTGGCGTTGGCCCTGGCGCAACTGCCTGGGGCCAACCCTGGCGTATATGCGATTGCGCAAGGATTGTGGCTGTTCAATATCGTCCTGTTTGCCCTGTTCACCGGGCTCTACACTGCTCGCTGGGTGCTGTTCTTCGACGAGGCCCGACGGATTTTCGGGCATTCAACCGTGTCGATGTTCTTCGGCACGATCCCGATGGGGCTGGCAACGATCATCAACGGTTTCCTGGTGTTCGGCGTACCGCGCTGGGGCGAGGGCGTGTTGTCGCTGGTCGAGGCGTTGTGGTGGACTGACGTGGCGATGTCGCTGGCCTGCGGTGTGCTGATTCCGTTCCTGATGTTCACCCGCCAGGAACACCGCATCGACCAGATGACCGCCGTGTGGCTGTTGCCCGTGGTGGCCGCCGAAGTCGCCGCCGTCAGCGGTGGCCTGCTGGCGCCGCACCTGGCTGACGTGCATTCGCAACTGATCATATTGGTCACCAGCTACATACTCTGGGCATTTTCCCTACCGGTGGCGTTCAGCATTCTGACCATCCTGGTGTTGCGCATGGCCTTGCACAAACTGCCCCACGAGAACATGGCCGCTTCGAGCTGGCTGGCCCTCGGCCCCATCGGCACCGGCGCACTGGGCATGTTGGTGCTGGGCGGCGATGCGCCGGTGATCCTTGCCGCCAATGGCCTGCCGGGCGTGGGCGAGGTTGCATCGGGCCTGGGGTTGGTCGCCGGTATCACCCTGTGGGGCTTCGGATTCTGGTGGATGTTGATGGCGCTATTGATCACCGCGCGCTATTTGCGTGAAGGCATCCCGTTCAACCTCGGCTGGTGGGGCTTCACCTTTCCCTTGGGCGTGTATGCGCTGACGACGCTGAAGCTGGCAAGCCTTCTGGACCTGGATTTCTTCAGCGTGTTCGGCTGCGGGCTGGTGGCGCTGCTGGTGGTGATGTGGCTGATCGTCAGCTGGCGCACGCTGGTCGGCGCCTGGCATGGCGAGTTGTTTGTGTCGCCGTGCCTAGTGTCCTGTACCTCAAATACTGCTCCTTCTTGA	MTCFAENRFRPLSHLPGPLEVVRQFTPNWFAATMGTGVLALALAQLPGANPGVYAIAQGLWLFNIVLFALFTGLYTARWVLFFDEARRIFGHSTVSMFFGTIPMGLATIINGFLVFGVPRWGEGVLSLVEALWWTDVAMSLACGVLIPFLMFTRQEHRIDQMTAVWLLPVVAAEVAAVSGGLLAPHLADVHSQLIILVTSYILWAFSLPVAFSILTILVLRMALHKLPHENMAASSWLALGPIGTGALGMLVLGGDAPVILAANGLPGVGEVASGLGLVAGITLWGFGFWWMLMALLITARYLREGIPFNLGWWGFTFPLGVYALTTLKLASLLDLDFFSVFGCGLVALLVVMWLIVSWRTLVGAWHGELFVSPCLVSCTSNTAPS				NA	NA	NA	NA	NA
D1-36_01417	1875	lplT		Lysophospholipid transporter LplT	ATGAGTCACCCTTCACAGTTCACCTTGCTTCGCACGCGGCGCTTCCTGCCGTTCTTCGTTACGCAGTCCCTTGGCGCGTTCAACGACAACGTCTTCAAGCAATCATTGATCCTCGCCATCCTCTACAAACTGGCCATCGAGGGCGACCGCTCGATCTGGGTCAACCTTTGCGCGCTGCTGTTCATTCTGCCGTTCTTCCTGTTCTCGGCGCTGGCGGGGCAGTTTGGGGAGAAGTTCGCCAAGGACGCCTTGATCCGCCTGATCAAACTGGGCGAAATCGCGATCATGGCGGTCGGCGCGGTGGGTTTCCTGTTCGATCACCTGTGGCTGATGCTGGTGGCGCTGTTCGCCATGGGCACCCACTCGGCGTTGTTCGGGCCGGTGAAATATTCGATCCTGCCGCAAGCCCTGCGCGAAGACGAACTGGTCGGTGGCAATGGCCTGGTGGAAATGGGTACATTCCTGGCCATCCTGGCGGGGACCATCGGTGCGGGGATCATGATGTCTTCGGCGCACTACGCGCCGGTGGTGTCGGTGGCCATTGTCGGCATTGCCGTGGCCGGTTACCTCGCCAGCCGCGGCATCCCACGGGCGGCGGCGGCCTCGCCGCAGATGCGCTTGAACTGGAATATTTTCAGCCAATCGTGGGCGACCTTGAAGCTGGGCCTCGGGCAGACTCCGGCGGTGTCCCGCTCCATTGTCGGCAACTCTTGGTTCTGGTTCGTCGGGGCGATCTACCTGACGCAGATTCCCGCGTACGCCAAGGAATGGATGCACGGCGACGAAACCGTGGTGACCCTGATTCTCACGGTTTTTTCAGTAGGGATTGCCCTGGGTTCGATGCTCTGCGAAAGACTGTCAGGGCGCAAAGTGGAAATCGGCCTGGTGCCGTTCGGTTCGTTCGGGCTGACGGTGTTCGGCCTGCTGCTGTGGTGGCACTCCGGTGGAATCCCCGACAGCGCCGACGGCCATGGCTGGCTGCAGATTCTCGGGTTTGGCCACGCCTGGCTGGTCCTGATCGATATCCTCGGCCTGGGTATCTTTGGCGGCTTCTACATCGTGCCGCTGTATGCGCTGATCCAGTCGCGTACCGTTGAAAACGAGCGGGCGCGGGTGATCGCCGCCAACAATATTCTCAACGCCTTGTTCATGGTGGTCTCGGCGATCGTTTCCATCGTCCTGCTGAGCCTGGCCAAGCTGTCGATCCCACAGCTGTTTTTAGTGGTGTCGCTGCTGAACATTGGCGTCAACGCCTACATCTTCAAGATCGTCCCCGAGTTCAGCATGCGCTTCATGATCTGGCTGCTCAGCCATTCCATGTACCGTGTGGAGCATCGCAACCTGGAGGCGATTCCCGATGAGGGTGCCGCGCTGCTGGTGTGCAATCACGTGTCGTTTGTCGATGCCTTGTTGATTGGCGGTGCGGTGCGTCGGCCGATTCGCTTCGTGATGTACTACAAGATCTACAACCTGCCGGTCCTGAACTTTATCTTTCGAACCGCTGGGACGATTCCGATTGCCGGACGCCAGGAAGATATTCATATCTACGAAAAGGCCTTCAGCCGCATCGCCCAATATTTGGAAAACGGCGAGTTGGTGTGCATCTTCCCTGAAGGAAAGTTGACCGCCGACGGTGAGATCAATGAATTCAGGAGCGGCTTGACGCGCATCCTTCAGGAAACGCCGGTGCCGGTGATTCCGCTGGCGTTGCAGGGGTTGTGGGGGAGTTTCTTCAGTCGCGACCCAGGTAAAGGGATGTTCCGTCGGTTCTGGTCCCGCGTGACCTTGGTGGCGGGGACGGCGGTAGCGGTCGAGTCGGCTGAGCCTGCGAAGTTGCAGGCGTTGGTGGGCGAGTTGCGTGGGGCTGTCAGGTAA	MSHPSQFTLLRTRRFLPFFVTQSLGAFNDNVFKQSLILAILYKLAIEGDRSIWVNLCALLFILPFFLFSALAGQFGEKFAKDALIRLIKLGEIAIMAVGAVGFLFDHLWLMLVALFAMGTHSALFGPVKYSILPQALREDELVGGNGLVEMGTFLAILAGTIGAGIMMSSAHYAPVVSVAIVGIAVAGYLASRGIPRAAAASPQMRLNWNIFSQSWATLKLGLGQTPAVSRSIVGNSWFWFVGAIYLTQIPAYAKEWMHGDETVVTLILTVFSVGIALGSMLCERLSGRKVEIGLVPFGSFGLTVFGLLLWWHSGGIPDSADGHGWLQILGFGHAWLVLIDILGLGIFGGFYIVPLYALIQSRTVENERARVIAANNILNALFMVVSAIVSIVLLSLAKLSIPQLFLVVSLLNIGVNAYIFKIVPEFSMRFMIWLLSHSMYRVEHRNLEAIPDEGAALLVCNHVSFVDALLIGGAVRRPIRFVMYYKIYNLPVLNFIFRTAGTIPIAGRQEDIHIYEKAFSRIAQYLENGELVCIFPEGKLTADGEINEFRSGLTRILQETPVPVIPLALQGLWGSFFSRDPGKGMFRRFWSRVTLVAGTAVAVESAEPAKLQALVGELRGAVR	PGPT0021850_173	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_ACYLTRANSFERASE_ACTIVITY,PGPT0021850-aas-K05939	NA	NA
D1-36_01418	315	gdx	COG2076	Guanidinium exporter	ATGTCCTGGATCATTCTGTTTTTTGCCGGCCTGTTCGAAGTCGGCTGGGCTGTCGGCCTTAAATACACCGACGGCTTCAGCCGCCCGCTTCCTACCGCATTGACCATCGCGGCCATGGCGATCAGCCTTGGCCTGCTGGGCCTTGCCATGAAGGAACTGCCGCTGGGCACGGCCTACGCAATCTGGACCGGGGTCGGTGCCGTAGGCACGGTGATCGCCGGGATCATTCTGTTTGGTGAATCGATGGCACTGATCCGATTGGCCAGCGTCGCGTTGATCATTGCCGGGCTGATCGGGCTCAAGGCCAGCGCTTAA	MSWIILFFAGLFEVGWAVGLKYTDGFSRPLPTALTIAAMAISLGLLGLAMKELPLGTAYAIWTGVGAVGTVIAGIILFGESMALIRLASVALIIAGLIGLKASA	PGPT0028785_2696	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
D1-36_01420	966	panS	COG0385	Pantothenate precursors transporter PanS	ATGCGTGCGTTGGCTGCGTTAAGCCGCTTTGTCGGCAATACATTCGCTTATTGGGTGCTGTTCTTTGCGGTGCTGGCGTTCATGCAACCGCAATGGTTCGTCGATTTGAAAGTCGCCATCGTGCCACTGCTGGGACTGGTGATGTTCGGCATGGGCCTGGCACTCAAGCTGGAAGACTTCGCCGAAGTGGCTCGTCGTCCAGGACGCGTGGCCCTGGGCGTGATTGCCCAGTTCGTGATCATGCCGGGCACCGCGTGGCTGCTCTGCCAAGCGTTCAGCCTGCCGCCGGAAATCGCCGTCGGGGTCATTCTGGTGGGTTGCTGCCCGAGTGGAACCTCGTCCAACGTCATGACCTGGCTCGCACGCGGTGACCTGGCGCTGGCCGTGGCGATTTCCGCCATCACCACCCTGCTTGCCCCTTTGCTGACCCCGGCGCTGATCTGGCTGCTGGCGTCGGCCTGGTTGCCGGTGTCGTTCTCCGCCTTGTTCTGGTCGATCCTGCAAATCGTGTTGCTACCCATTGCCTTGGGCATCGTTGCCCAGCGCTTGTTGGGTGCGCGGGTACGTCACGCCGTAGAAGTCCTGCCGCTGGTATCGGTAGTCAGTATCGTGATCATCGTCGCCGCCGTGGTGGCGGCCAGCCAGGCGAAAATCGCCGAATCCGGCCTGTTGATCATGGCTATCGTCATCCTGCATAACAGCTTCGGTTATCTGCTGGGGTATTTCACCGGTCGGCTGTTTGGATTGCCACTGGCCCAGCGTAAAACCTTGTCCCTGGAAGTAGGCATGCAGAACTCCGGCCTAGGCGCGGCATTGGCCAGTGCGCACTTCTCGCCGCTGGCGGCGGTGCCCAGCGCTTTGTTCAGCGTCTGGCACAACATCTCCGGCGCCCTGCTCTCGACCTGGTTCCGTCGCATGAGCGAAAAGCAGGACAGAGAAGAGCTCTCCCGGCAGACGGCGGACTGA	MRALAALSRFVGNTFAYWVLFFAVLAFMQPQWFVDLKVAIVPLLGLVMFGMGLALKLEDFAEVARRPGRVALGVIAQFVIMPGTAWLLCQAFSLPPEIAVGVILVGCCPSGTSSNVMTWLARGDLALAVAISAITTLLAPLLTPALIWLLASAWLPVSFSALFWSILQIVLLPIALGIVAQRLLGARVRHAVEVLPLVSVVSIVIIVAAVVAASQAKIAESGLLIMAIVILHNSFGYLLGYFTGRLFGLPLAQRKTLSLEVGMQNSGLGAALASAHFSPLAAVPSALFSVWHNISGALLSTWFRRMSEKQDREELSRQTAD	PGPT0013890_1256	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013890-panS|yocS|ybaS-K03453	NA	NA
D1-36_01421	921	rdgC	COG2974	Recombination-associated protein RdgC	ATGTGGTTCAAGAACCTGCTTATCTATCGCCTGACCCAAGATCTGCCTTTTGATGCCGAGGCGTTGGAAACTGCACTGGCGAGCAAACTGGCGCGCCCCTGTGCAAGCCAGGAGTTGACCACTTACGGTTTCGTCGCGCCATTTGGCAAAGGCGAAGACGCCCCCCTGGTCCACGTCAGCCAGGACTTCCTGTTGATCGCCGCACGCAAGGAAGAACGCATCCTGCCGGGCAGCGTCGTGCGCGACGCGGTCAAGGAAAAGGTCGAAGAGATCGAAGCCGAGCAAATGCGCAAGGTCTATAAAAAGGAACGGGACCAGATCAAGGATGAAATCATCCAGGCGTTCCTGCCTCGTGCGTTTATCCGACGCTCGTCTACCTTTGCCGCCATCGCGCCAAAACAGGGCCTGATTCTGGTCAACTCCGCCAGCCCGAAACGTGCCGAAGACCTGCTCTCCACCCTGCGCGAAGTCATCGGCTCACTGCCGGTACGCCCACTCACAGTGAAGACAGCGCCTACCGCGATCATGACCGACTGGGTCAAGACGCAGAAAGCCGCGGATGATTTCTACGTGCTGGACGAATGTGAGCTGCGCGATACCCATGAAGACGGTGGCATCGTCCGTTGCAAGCGCCAGGACCTGACCAGTGACGAGATCCAACTGCACTTGAACACCGGCAAGGTGGTGACGCAGCTGTCGCTGGCCTGGCAGGACAAGCTGTCCTTCGTGCTCGACGACAAGATGGTGGTCAAGCGCCTCAAGTTCGAAGACCTGTTGCAGGACCAGGCGGAGCAGGATGGCGGCGATGAAGCCCTCGGCCAACTGGATGCCAGCTTTACCCTCATGATGCTGACGTTCGGCGAATTCCTGCCGGCGTTGGTTGAAGCGCTGGGTGGGGAAGAGATTCCGCAGGGGATCTAA	MWFKNLLIYRLTQDLPFDAEALETALASKLARPCASQELTTYGFVAPFGKGEDAPLVHVSQDFLLIAARKEERILPGSVVRDAVKEKVEEIEAEQMRKVYKKERDQIKDEIIQAFLPRAFIRRSSTFAAIAPKQGLILVNSASPKRAEDLLSTLREVIGSLPVRPLTVKTAPTAIMTDWVKTQKAADDFYVLDECELRDTHEDGGIVRCKRQDLTSDEIQLHLNTGKVVTQLSLAWQDKLSFVLDDKMVVKRLKFEDLLQDQAEQDGGDEALGQLDASFTLMMLTFGEFLPALVEALGGEEIPQGI				NA	NA	NA	NA	NA
D1-36_01426	1137			hypothetical protein	ATGCTGATCACGCTCTGGCTGCGCCTCGGCGCCTTTTTGGGCAAGACGCTTCTATGGCTGCTGGGCATCGGGCTGCTCGGCTGGGCCCTGGCTGCCGCTTGGTTCGCCTGGCAACACAGCGGACCGGTCCCGGACAAGGAACAGATACCGCCCGCCGAAAGCGCCATGACCCAGGACATCATCCAGACCGCCATCCGCATCGTCGACCAGCACCGCGAAGGTACCCGCTACCTGCGCGATGCCCATGCCAAAGCCCACGGTTGCGTCATGGCCGAAGTCCAGGTGCCCAGTGACCTGCCTGCGCCATTGCGCCAGGGTGTGTTCGCTGAACCGGGCAAGACTTGGCAGGCAACGATCCGCCTCTCCAATGGCAACGCTTATCCCCAGTTCGATAGCCTGCGCGATGCGCGGGGAATGGCGATCAAACTGCGGGACGTGCCCGGCAAGCAACTGCTGGCTGATCGGCAAACACAGGGCGAGCAGGATTTCGTGATGTTCAATCATCCGAATTTCTTCGTCAGTGATGTCGCCGAGTACCGTCAGAATGTGGCCGCGCAAGCCGATGGAAAAAAGGCAATGGCGTTCTTTCCAAGCCTGGACCCACGCACTTGGCAGATCCGCCATCTGTTTATCGCCCTGGCGACACTTTCGCCGCCTCCGGCAAGCCCGACCCAGACCACCTACTTTTCGGTTTCGCCTTACAAATTCGGCGAAGCCAATGCCAAGTTTCGCGTCGCGCCGGATCCGGACAGTTGCCCAGGCTACACCTTGCCGCCCCAAAACCAGGATCTGCCGAATTTCTTGCGTAGCGCGCTGAATCAGCAGTTATCCACCGATCGCGTGCCGGCCTGTTTTGTCTTGCAGATCCAGCGCCAGGACCCGAGCAAATACATGCCGATCGAAGACACCAGTATTGAATGGAAGGAAAGCGATGCGCCGTTCGAAACGGTGGCGCGGATCAAGGTTCCGGCACAGGATTTCGATACGCCCAAGCTGAACCTGGCGTGTGACAACCAGTCTTTCAACCCTTGGTTTGGCATCGAGGCCCATCGCCCCATTGGTGGGATCAACCGTTTGCGCAAGGCAGTGTACGAGGCGGTCAGCGATTACCGCCACAGCCGGAACGCTGAGCAGTAG	MLITLWLRLGAFLGKTLLWLLGIGLLGWALAAAWFAWQHSGPVPDKEQIPPAESAMTQDIIQTAIRIVDQHREGTRYLRDAHAKAHGCVMAEVQVPSDLPAPLRQGVFAEPGKTWQATIRLSNGNAYPQFDSLRDARGMAIKLRDVPGKQLLADRQTQGEQDFVMFNHPNFFVSDVAEYRQNVAAQADGKKAMAFFPSLDPRTWQIRHLFIALATLSPPPASPTQTTYFSVSPYKFGEANAKFRVAPDPDSCPGYTLPPQNQDLPNFLRSALNQQLSTDRVPACFVLQIQRQDPSKYMPIEDTSIEWKESDAPFETVARIKVPAQDFDTPKLNLACDNQSFNPWFGIEAHRPIGGINRLRKAVYEAVSDYRHSRNAEQ				NA	NA	NA	NA	NA
D1-36_01427	1806			hypothetical protein	GTGCGCCTCCTCTCTCGCATTCTTTTGCTGATCCTCACACTGCTTGTCGTCGCCGCGGCCGTGGTGCTTTATTACGTCGCCAACCCGCGCCTGCCCGCCTATACACCTGTCGAACAGGTGCATTACCTGGAGCAATGGAGCCCCGCCGAGCGCCAAACCTACTACTTCACGCCCCAGGGCACCCAGGTCAAAGGCCTGCGCTATGACTGGTTCACCGCCTTGGAACTTCCTTTTTCGCAACAGCGCTTCGCTTCGCCGGAGTACCTGGCGCGCTTCGGTTTCCTCGTCGATCCGGCGCAGAAGGCCACGCCGGAAAACCCCGGCAACCTGCCGGTAGGCTTCACGCGGCACCAAAATGCGAGCAGCAGCGAGCAATATCTGGACATCACCTGCGCGGCCTGCCACACCGGCGAATTGCGCTTCAAGGGCCAAGCGATACGGATCGACGGCGGTTCAGCCCAGCACGTGTTGCCATCGACTGTTCCGACGCTGCGCGGAGGTAGTTTCGGACAGGCATTGGTCGCGAGTCTCGCCTCGACTTACTACAACCCATGGAAATTCGAACGCTTCGCCCGCCAGGTGTTGGGCAACGACTACGGCGCCCGCCATGAAGAGTTGCGCAAGGCGTTCAAGGTGTCCCTGAACACTTTTCTGCGCACGGCCTGGAACGACACCCACCGCGGCCTCTACCCTACCGAGGAAGGCCCTGGCCGTACCGACGCCTTCGGCCGTATCGCCAATGCAAGCTTTGGCGATGCCATCTCGGCAGAAAACTACCGGGTCGCCAACGCGCCGGTGGATTACCCGCAATTATGGGAAATGTGGACATTCGACTGGGTGCAATGGAACGGCTCGGCCCAGCAACCGATGGCCCGCAATGTCGGCGAAGCGTTGGGCGTCGGTGCCACGTTGAGCTTCTTCGACGCCCAGGGCAAACCGCTACAGGGCGACGCACGCTATCCATCCAGCGTACGCGTGCGCGACCTGAACAAGATCGAAGAAACCCTGCAACTGCTCAAGCCCCCAGCGTGGCCGGAAGCATTGCTGGGCTCGATCGACAAGCCGTTGGCCGCAAAAGGCCGGGAGCTGTTTACCGAAAACTGTGCCGGCTGCCATGTGCCCAAGGTTATCCAGGGCCCCGACAGACCGGTCCAGCAATTGCACATGCTGCCGGTGAAAGTGATCGGCACCGACCCCGGCACTGCGAACAATATCGCCGACCACCGTTTCAATCTGACCAGTCTGCAATGGGATCCGGCCGAACTGGCGAAGCTGGATGTACAACTGCACCCGACCCCGACAGAGCCACTGGACCTTAGCCGGGTCTCGGTCGCCAAGGGCCTGGCCTATGTCACGGCATTCGTCGAAAACCGCGCCTATCGCGACGCCGGCGTCACGCCAGCCGAGCGCCCGGCCCTGGATGGTTTTGGCCTGCCCATCGGCGTGCGTGAACTGCGCGCCTACAAAGCGCGACCGCTGGCGGGCGTCTGGGCCACCCCGCCCTTCCTGCACAACGGCTCCGTGCCAACCCTCTATCAATTGTTGTCGCCCCAGGCTGAGCGGGCCACCACCTTCTATAAAGGCAGCTTCGAGTACGATCCGCGACACCTGGGCTATCGCACGGAGGCCTTTGCCAATGGATTTCTCTTCGATACGCGGGTCACTGGCAATCACAACAGCGGCCATGAGTTCCGCGCGGGCGAGCGAGGCAATGGCGTTATCGGTCGCTTGCTGCAACCGCAAGAGCGCTGGGCCTTGCTGGAGTATTTAAAGGTGCTCGGCGGGCCACTGGAGTCGCAACTGTAA	MRLLSRILLLILTLLVVAAAVVLYYVANPRLPAYTPVEQVHYLEQWSPAERQTYYFTPQGTQVKGLRYDWFTALELPFSQQRFASPEYLARFGFLVDPAQKATPENPGNLPVGFTRHQNASSSEQYLDITCAACHTGELRFKGQAIRIDGGSAQHVLPSTVPTLRGGSFGQALVASLASTYYNPWKFERFARQVLGNDYGARHEELRKAFKVSLNTFLRTAWNDTHRGLYPTEEGPGRTDAFGRIANASFGDAISAENYRVANAPVDYPQLWEMWTFDWVQWNGSAQQPMARNVGEALGVGATLSFFDAQGKPLQGDARYPSSVRVRDLNKIEETLQLLKPPAWPEALLGSIDKPLAAKGRELFTENCAGCHVPKVIQGPDRPVQQLHMLPVKVIGTDPGTANNIADHRFNLTSLQWDPAELAKLDVQLHPTPTEPLDLSRVSVAKGLAYVTAFVENRAYRDAGVTPAERPALDGFGLPIGVRELRAYKARPLAGVWATPPFLHNGSVPTLYQLLSPQAERATTFYKGSFEYDPRHLGYRTEAFANGFLFDTRVTGNHNSGHEFRAGERGNGVIGRLLQPQERWALLEYLKVLGGPLESQL				NA	NA	NA	NA	NA
D1-36_01428	714	fklB_1	COG0545	FKBP-type 22 kDa peptidyl-prolyl cis-trans isomerase	ATGAAACAGCATCGGTTGGCGGCGGCGGTTGCCCTGGTTGGCCTGGTACTGGCGGGTTGCGACTCGCAGACCAGCGTAGAGCTGAAAACCCCGGCGCAGAAAGCTTCCTACGGTATCGGCCTGAACATGGGCAAGAGCCTGGCTCAGGAAGGTATGGATGACCTGGACTCCAAAGCAGTGGCCCAGGGCATCGAAGATGCCGTCGGCAAGAAAGAACAGAAGCTGAAAGACGAAGAGTTGGTCGAGGCCTTTGCCGCACTGCAAAAACGTGCCGAAGAGCGCATGGCCAAGATGAGCGAAGAGTCGGCTGCGGCTGGCAAGAAATTCCTCGAAGAAAATGGCAAGAAGGCCGGCGTGACCACCACCGCTTCGGGCCTGCAGTATGAAGTCGTCAAGAAAGCCGACGGCGCTCAGCCCAAGCCGACCGACGTAGTGACCGTTCACTACACCGGCAAGCTGACCAACGGTACTGTCTTCGACAGTTCCGTGGAGCGTGGTAGCCCGATTGACCTGCCTGTCAGCGGTGTGATCCCAGGTTGGGTCGAAGGCCTGCAATTGATGCACGTCGGTGAGAAGTACAAGCTGTACATCCCAAGTGACCTGGCGTACGGCGCCCAGAGCCCGAGCCCGGCGATCCCTGCCAACTCGGTCCTGGTGTTCGACCTGGAGCTGCTGGCCATCAAGGACCCGGCAAAAGAAGACGCAGCCAAGTAA	MKQHRLAAAVALVGLVLAGCDSQTSVELKTPAQKASYGIGLNMGKSLAQEGMDDLDSKAVAQGIEDAVGKKEQKLKDEELVEAFAALQKRAEERMAKMSEESAAAGKKFLEENGKKAGVTTTASGLQYEVVKKADGAQPKPTDVVTVHYTGKLTNGTVFDSSVERGSPIDLPVSGVIPGWVEGLQLMHVGEKYKLYIPSDLAYGAQSPSPAIPANSVLVFDLELLAIKDPAKEDAAK				NA	NA	NA	NA	NA
D1-36_01429	456			hypothetical protein	ATGAAGGCGCCGTGGAATTTCACGAGATTTCTGCCCCTGGCGGGACGGCTTTTGGCCCGCGGCCGATTGCCGACATTACTGTTTGCCGTCGCCAGCAAGGGCGCGCGTGAAGGAGGGCGGCTGGGCAAGCTCAAGGACGACCTGCGCTTGCTTCAGGCGTTGTGCCTGGCTTACTGGCGTGGTGAATACCGGGCAGTCAGCGCCAAGTCGTTGCTTTCGATAGTGGCCGGGCTCATGTATTTCCTGAGTCCCTTGGACGCGATTCCGGACTTGCTGCCCATGCTCGGCATGTTCGACGACATCGCCGTGCTGGCGTGGATCATGAAGACACTCGACGACGAACTGAGCGCCTTCCGTGCCTGGCGAGACCGGCAGTCACCCGAGAAGCTCGCGTTGGTGGAAAGACTTCCCGATACCCCGGAACAACTTCAGCTCCAACGCCCGAAAAAGATCTGA	MKAPWNFTRFLPLAGRLLARGRLPTLLFAVASKGAREGGRLGKLKDDLRLLQALCLAYWRGEYRAVSAKSLLSIVAGLMYFLSPLDAIPDLLPMLGMFDDIAVLAWIMKTLDDELSAFRAWRDRQSPEKLALVERLPDTPEQLQLQRPKKI				NA	NA	NA	NA	NA
D1-36_01430	342			hypothetical protein	ATGGATATTCAAGTAATCACACGCGACGGAGAGCCCGAGTACGCGGTTTTACCGTGGGATCAATACCAGTCGGCATTGAAGGCAGCAGGCATTAAACAAGCTCCGCCGCGCGAGGCAGACGTCCAGCCTGCGGCGGCACCCGGCCAGGTTCTCCCTGGTCTGGATCAATTGCGCAGTCTGCGCGAAGGGAAGGGCATCGCCATCGAGGCGTTGGCCCGCACGGTAGGCATCAGCCCGTCTTATCTGGCCATGATCGAGAGTGGTGAGCGTCAGCCCGACGCCGCTATCAAGCGCAGTCTGGCCTGGGAACTGACGGTGCCGGGTTGGAGGGATGAATCGTGA	MDIQVITRDGEPEYAVLPWDQYQSALKAAGIKQAPPREADVQPAAAPGQVLPGLDQLRSLREGKGIAIEALARTVGISPSYLAMIESGERQPDAAIKRSLAWELTVPGWRDES				NA	NA	NA	NA	NA
D1-36_01431	372			hypothetical protein	GTGAGTGTACGCATCAGTCGGCAACATTGGGACGGGTTGTTGGGTGAGTTGGACCAGGCGCGGCGCCAGCGCCATTTGTTGACCTATCGCGCCTTGCTGGAACGCTTGCAACTCCCCAGCCCGGCCATGCAGACCTTGACCGCAGCGCTTGAACACCTGGCCGCGCTGGACGCCCGCGCCGAACAACCGCTGCGCAGTTCGCTGGTCATCAGCCAAGGCGCCAGCCGGCTGCCGCGTACTGGATTTTTCGAATGCGTCGAGCGTCTTGGGCGCTTTTCCGGTCCTTCCGACGGCGTAGCCGCCGCGTCCTGGCATGCTTCGGAAGTGGTCCGGGTGTTCGAGTACGAATATCCCGAATCGGCGGAAGCCTAG	MSVRISRQHWDGLLGELDQARRQRHLLTYRALLERLQLPSPAMQTLTAALEHLAALDARAEQPLRSSLVISQGASRLPRTGFFECVERLGRFSGPSDGVAAASWHASEVVRVFEYEYPESAEA				NA	NA	NA	NA	NA
D1-36_01432	402			hypothetical protein	GTGCTCTGGCGTATCAAGGCCCGGGCTGGTTATTGGCTCGCGCGCCGGTTGTTTCATTGGCCATGGTTCGTTCGACAGCCGCGTGGCTGGGCCTGGCTCGAAGGTCAGTTCGCACGCATGGCGAACCTGGGCGACGTTGGCGCCCAGAGTTTCTACGGGCACATCCTGACATTTCGTGGCCAAGGGCTGGGCGCCCGGGAAGAGGGCATTCGCTTGCTGCGCCTCGCCGCACTGGCCGGCGATGGCAAAGCCGCATACCAGCTCGGTGTCATCAGCCTTGCCGGCAGCACCACTGGCGCGCCGGATCCGGTGGAAGCGGCTCGCTGGTGGACCTTGGCCGCAAAGGCTGGGCACCCACTGGCTGAAATAAAGCTCAAGTCGCTCAAGGGCCAGGAACCTTAG	MLWRIKARAGYWLARRLFHWPWFVRQPRGWAWLEGQFARMANLGDVGAQSFYGHILTFRGQGLGAREEGIRLLRLAALAGDGKAAYQLGVISLAGSTTGAPDPVEAARWWTLAAKAGHPLAEIKLKSLKGQEP	PGPT0000855_6613	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	OTHER_MOTILITY_REGULATING_FUNCTIONS	MOTILITY-ACIDITY|NITROGEN_RELATED_REGULATION,PGPT0000855-exoR-K07126	NA	NA
D1-36_01433	4794			hypothetical protein	ATGGATCAGGCGCGCCGCATCGAGGCTGAACTCGACAGCTTCCAGGACACCCTTTCGCTTTATCGCGAGCAGTTTGATCGTTGGTATAGCCGGGCTGCGGATCGCGTCAGCCAAGCGGCCGACCTGCCTTCGCTGATGGGCATGGAACGACTGATTCGTTTCGGCCAAAGCACTACGGCAGTCGACGTCCGGGACAGGGACTTTTTATCCGTCGTCGCCCAGTGCCCGCAAGGCGGGATCATGACGATCGAGAGCAAGCTCGAGTCCGTGTACGACATCCCGCTGGGCGATATCGTGGTGGATGTGGTGGCGGTGGACACGGGCGAGGCCACGCCGGTCACGCTGGATGCTCAGGGCGTGGGTCGCTTCAAGGGCGAGGCGGGGCGGTCTTACCGGGTGCGTGTCCAGGGCGAAGTGTCCCCCAAGCGAATCGATGAGCTGTTTTCTTCCTACGACGGCCTGACGAATGATCTGACGGACTGGCTTCGCGGCGAGTGGCAGGGCTTCAAGCCGCAGTGGGCCCAGCAGTCATTGGCGACTTCGGCGGCAGCGGTGGGCAATGGCTTGCTCGCCGGCGGTTGGGCGGCGATCGAAGGCGTGTGGGACAGCATCAGTTTGCTGTCGGACATCCTCAAGGATCCCTCCCGGTTCGGCGGACGGTTGGGCAGCAGCGCAGCCGAGCTGGCCCAGCTTGCCGAGTCGGCGCCGCTGGTCATGGCGAAGCTGCAATTGCTCGCCAGCGACGAAGCGGCGCTGTGCTTGTTGGTGCGCACCGCCAGTCTCTGGCTGGACATGCTGCCCCCCAGTGAACTGGCGGGCGACACGGCGACGGTGTTATCCACAGTGGTCGTGCAGTTGGTCATCGACCTGTTGATCGGCGTGGTGCTGACCTTCGTCGGGGCAGGCGCGGGCATTGCTTATCTCTCGATGCGCCTGGGCCGGCACGGTGCTCGTCTGCTGGATGCCGTGAAGCGTTTTATCAGTGCCATTTTCGAGCTGGTGAACGGCTTCATGGGCTACGTTGACCGCTACAAGGCTGTGGCCGCGCGGGGCATTGCCGCCGGCGTAAAGAAGGGACGCATGCAGTTGCGCTGGGATGCGCAGCGCAACACCACGCTGAAAAAGCAAGAACACCACGACGACGCCCCCGCCCAATCGAAAAACCCCAACGGCGACCCCGCCGACAGCGCCGCCCAGACCCGCACCGACGGTTGCCCGGTGTCCATGGTCACCGGCGAAGAGCTGCTCACCCTCGAAGACGGCACCCTCGACGGCCGCTTGCCCTTCGTCTTCACCCGCCTCTACCGCACCAGCGCCGCCGACCTGGACATCGGGCTCGGCCGCGGATGGACCCATGCCCTGGCCCATCGCCTTTTGATCGACGGCGAGCAGGTGACCTGGGTCGACCAGGAAAACCGCCGCACCACGTTTCCCCGGCCCAGCCTGCAACGCCCAGCCATCCACAACAGCCTGGCCCGCGCGGCGATTTACCTGAGCAACGAGCCGGACGAATTGATCGTCGCCCAGCCCGGCGAAGACGCTCCTTTCCTACATTTTCGCGACGGTCATCTGATCGCCCTGAGCGATCGGTACGACAACCGCCTGACCGTCCAACGCAACATCTACGGCGACATCAGCCGTCTGGACAACGGTGCCGGCCGCTGTTTGCGTTTGCGCTACGAGCATCGGCACCTGGTCGCCATCGACTATCAGAGCTTTCACCCGGCGCTGACCCTCGACGAAGCCTGGCGCACCGAACAGACCCTGGTGACCTACCGCTACGATGCGCGTTTACGCCTCATCGAAGCGACCAACGCCGCCGGCGAGAGCGAGCGCTACGACTACGACGACCAGCACGTCATCCTCCAGCGGCAACTGGCCGGGGGCGCGAGTTTCTACTGGGAGTGGCAAGGCCTCGGCCCGGCGGCGCGCTGTGTCCGGCATTGGGCCTCGTTCGCGCAGATGGACAGCCGCTACACCTGGGGCGACGACGGCAGCGTCACGGTCCGGCATATCGATGGCAGCCAGGACGTGTATGTCCACGACGACCGCGCGCGGCTGGTGCGCCAGGTCGATCCCGCCGGCGGCGAACACCTCAAGGCTTATGACGAACAGGGCCGGCTGATCGCCGAGCAAGACCCGCTGGGCGCCGTCACCGAATACCGCTACGACGAAGTCGGACGGCTGGTGGCGCTGATTCCGCCGGAAGGCGAGCCCACGTCCTACGAATACCGAAACGGTTTCCTGCACGCCCGGACTCGCGGCAAGGCCGTGTGGACCTACTGGCGCAATGCCCAGGGCGACATCATCGAAGTCGTCGACCCGGCTCGCCAAAGCACCTGGTATCACTACGACGACCAGGGGCAACTGAACACCATCAGCTACCCGGACGGCGGTGCCCATCATTTTGTGCGAAACCCGTTGGGCCAACTGACGGAAGAAATCCTGCCGGACGACGGCCAGCGAGTTTTTTCCTACGACGCCCTGGGCCGTCTGCTGACCCGTCAAGACGAACGCGGCGCCGTCACCCATTACCAATGGGACGCCGTGGGCCGCTTGCTACAGACCACCCTGCCCACCGGCGCGACCCGTGCATGGAGCTACAACGCCTACGGCAAGGTCACCGCGGAGCGGGACGAACTGGGGCGCATCACCCGCTACGAATACGCCGACGATCTGCACCTGGTCAGCCGCCGCCTCAACCCCGACGGCAGTGAACTGAAGTACCGCTACGACTCGGCGCGGCTGTTGCTGACCGAAATCGAGAACGAATCCGGCGAAAAATATCAGCTGGACTACACGCCCAACGGACTGATCCGACAGGAAACCGGCTTCGACGGCCAGCGCACCGGCTACGCCTACGACCTCAACGGCCACCTGCTGGAAAAGACCGAGTTCGGCGCCGACGGCAGCCAGCGGATCACCGCCTACCAACGCGACACCGCCGGCCGCCTGCTGCGCAAGACCTTGCCCGACGGTGCCACAGTCGAGTACGGCTACGACGCCCTCGGGCGACTGATCAGCGTTGAAGACGGCCATTGGCCGCTGGCCTACGAATACGACAACCAGGACCGCCTCGTCGCCGAACATCAGGGTTGGGCGAGCCAGCATTATCGCTACGACAATGTCGGCCGGTTGGTCCATTGTCGCCTGCCCGATCGCAGCACCCTGGATTACCGCCACCTGCGAGGCGGGGCGCTGATCGCCATCGACCTCAACGGCACGTGCCTGACCGAACACCGCTTCAAGGGCGGCCGCGAACGCCAGCGCCAGCAGGGCCAGCTGCTCAGCGACTACAGCTACGACGAACAGGGTCGCCTCAAGGCCCAGACCGTGTGGCAAAGCCAGCAAAAACAACTGTTCTGGCGCGACTATTCCTACACCGCCAACGGCAACCTCGCCGCGCTTTCCGACACGCGAAACCGACGCGGCTACCAGTACGACGCGCTGGATCGCCTGGTGCGCATCGACTACGCCCACAGCCAACCCCCGGAACACTTTTCCCACGACCCGGCCGGCAATGTGTTGTTCAACGACCGTCCCGGCCCGACCACCCTCAAGGGCAACCGCCTACTGATGGAGGGCGATCGTCACTATGACTACGACGCCTACGGCAACCTGGTCCGCGAACGCCGCGGCCATGCCCAGTGCCTCGTCACGCAATACCGCTACGACAGCCAACATCGGCTCATCGGCGTCACCACCCCCGACGGGAGCGAAACCTCCTACCGCTACGACGCCTTCGGCCGACGCATCGAAAAGACCGTGGACGGCCTCACCACGGAATTCATCTGGCAGGGCGACCAGGTCATCGCTGAAAGCAGCGACCGTCACTACCAGAGCTACGTCTATGAACCCGGCACCTTCCGCCCCCTGGCCCTGCTGGAAGGCGCAGGCCCGGAAAAAGCCACGCCGTTCTACTACCACCTCGACCACCTCGGCACCCCCCAGGAACTGACCAGCCACCAAGGCGAAGTCGTGTGGGCCGCGCGCTACAACGGCTACGGCAAACTCACCGAACTGCGCCACGGCGACGGCAAGCGCCTGGAACAACCGCTGCGCTTTCAGGGGCAATACCACGACCGGGAAAGCGGCCTGCATTACAACCGGCACCGGTACTACAATCCGGAGACGGGGCGGTATCTGACGCTGGATCCGAGCAAGCTCAAGGGTGGGCTCAATGGGTATCGGTACACCCTGAACCCGACGGGGTGGGTGGATCCGTTGGGGTTGGAAGGTTGCCCTGGCGACGGATGTAAAAAACCTGCCATTGGTAAACAAGACCCGGCGACTAAGGTTGGGGTGGATGAGGGTGAGCCTGCGCTGCCGATGACGGCGGAGCAGCGGAGGGCTCGGATTGATGCGTTGGCGGAAGCGAATGCTTATCGGCGTTTGGATGAGATGGAGCGATCGATACCAGGCGCGCATTTCCTACAGAAACATGGTGCTCAGACTACTACGGAGGCTCAGTTGGAGCGCGTTACGACAGGGCGAAATCCTGGCACTGGGCAAATCGATGTATATCACAGTGGAAGTAATGCAGGGCTACCTGCTATTCCGTCTGCCGCAACTCGTTTCCTTAATCATCGTGATCAGCTCAATGCTATTTATCGAGCTCAATTGATTTTCAGGCGAGCAGGAATCGCCGAGTCTAAAGAACCAATTGAAATGGGGCGGGTAATTGGTGAGGGTTATAAAATAGATGGTTTGGAGTATATACAGCAAACTAAGGCGATTGTTATTCTTGATACAAGTGGCCTACCTAAGACAGCTTATACAGGACCGAGCACATGA	MDQARRIEAELDSFQDTLSLYREQFDRWYSRAADRVSQAADLPSLMGMERLIRFGQSTTAVDVRDRDFLSVVAQCPQGGIMTIESKLESVYDIPLGDIVVDVVAVDTGEATPVTLDAQGVGRFKGEAGRSYRVRVQGEVSPKRIDELFSSYDGLTNDLTDWLRGEWQGFKPQWAQQSLATSAAAVGNGLLAGGWAAIEGVWDSISLLSDILKDPSRFGGRLGSSAAELAQLAESAPLVMAKLQLLASDEAALCLLVRTASLWLDMLPPSELAGDTATVLSTVVVQLVIDLLIGVVLTFVGAGAGIAYLSMRLGRHGARLLDAVKRFISAIFELVNGFMGYVDRYKAVAARGIAAGVKKGRMQLRWDAQRNTTLKKQEHHDDAPAQSKNPNGDPADSAAQTRTDGCPVSMVTGEELLTLEDGTLDGRLPFVFTRLYRTSAADLDIGLGRGWTHALAHRLLIDGEQVTWVDQENRRTTFPRPSLQRPAIHNSLARAAIYLSNEPDELIVAQPGEDAPFLHFRDGHLIALSDRYDNRLTVQRNIYGDISRLDNGAGRCLRLRYEHRHLVAIDYQSFHPALTLDEAWRTEQTLVTYRYDARLRLIEATNAAGESERYDYDDQHVILQRQLAGGASFYWEWQGLGPAARCVRHWASFAQMDSRYTWGDDGSVTVRHIDGSQDVYVHDDRARLVRQVDPAGGEHLKAYDEQGRLIAEQDPLGAVTEYRYDEVGRLVALIPPEGEPTSYEYRNGFLHARTRGKAVWTYWRNAQGDIIEVVDPARQSTWYHYDDQGQLNTISYPDGGAHHFVRNPLGQLTEEILPDDGQRVFSYDALGRLLTRQDERGAVTHYQWDAVGRLLQTTLPTGATRAWSYNAYGKVTAERDELGRITRYEYADDLHLVSRRLNPDGSELKYRYDSARLLLTEIENESGEKYQLDYTPNGLIRQETGFDGQRTGYAYDLNGHLLEKTEFGADGSQRITAYQRDTAGRLLRKTLPDGATVEYGYDALGRLISVEDGHWPLAYEYDNQDRLVAEHQGWASQHYRYDNVGRLVHCRLPDRSTLDYRHLRGGALIAIDLNGTCLTEHRFKGGRERQRQQGQLLSDYSYDEQGRLKAQTVWQSQQKQLFWRDYSYTANGNLAALSDTRNRRGYQYDALDRLVRIDYAHSQPPEHFSHDPAGNVLFNDRPGPTTLKGNRLLMEGDRHYDYDAYGNLVRERRGHAQCLVTQYRYDSQHRLIGVTTPDGSETSYRYDAFGRRIEKTVDGLTTEFIWQGDQVIAESSDRHYQSYVYEPGTFRPLALLEGAGPEKATPFYYHLDHLGTPQELTSHQGEVVWAARYNGYGKLTELRHGDGKRLEQPLRFQGQYHDRESGLHYNRHRYYNPETGRYLTLDPSKLKGGLNGYRYTLNPTGWVDPLGLEGCPGDGCKKPAIGKQDPATKVGVDEGEPALPMTAEQRRARIDALAEANAYRRLDEMERSIPGAHFLQKHGAQTTTEAQLERVTTGRNPGTGQIDVYHSGSNAGLPAIPSAATRFLNHRDQLNAIYRAQLIFRRAGIAESKEPIEMGRVIGEGYKIDGLEYIQQTKAIVILDTSGLPKTAYTGPST				NA	NA	NA	NA	NA
D1-36_01434	351			hypothetical protein	ATGAAAAAACCGTTTGATTTGCACTGTATTTGGGGGTTGCTTTTTGTTTTTAGTATTGAGAATACTAATGATGTGGCGCGTGAGGAAATAATAACTTCAAAAAATGTAAATGATGACGAGGAATTGAGCCAGCTATTTGACTTGTTGATTCGTCCGGATTTTTTATGTCACACTTCAAAAGAGCAGATTTTACTAATTGATACTCTTGCCTATTTCTTAGGGTGCGATGACAGTTTTGATAGAGTTTTTTTAAATTTGGATACATACTTCGATCAGAAGGTTGAAGATCAGCGCAGATTTATGAGGGTTCTACTGGCTTCTTTAATGAAGTATAGAGCCGAGGCAATCTGA	MKKPFDLHCIWGLLFVFSIENTNDVAREEIITSKNVNDDEELSQLFDLLIRPDFLCHTSKEQILLIDTLAYFLGCDDSFDRVFLNLDTYFDQKVEDQRRFMRVLLASLMKYRAEAI				NA	NA	NA	NA	NA
D1-36_01435	1788			hypothetical protein	ATGACCACGATAGAACAGCTGGGTGCCTTGAGCTCGATCCTGAGTCACAGCGGTTTGCACAGTCTGTTCCAACCCATCGTGTGCCTCTCCGAACGACGCATCCTGGGTTACGAAGCGTTGACTCGCGGCCCGTCCAACAGCCCCTTGCACTCCCCTGTCGCATTGCTGTCGGTGGCTCGCCAGGCCGGGCGACTCAGCGAACTGGAGCTGGCCTGCCGTCGCAGCGCCTGCCAGCGCTTCAATGAGCAAAAACTGCCGGGCAAGCTGTTTCTCAACGTCTCGCCCGAATCCCTGCTTGAATCGGCACACCAGACCGGTCGTACGTTGCAGTTGTTGCAGGACTTCGGCATCCCGCCCAGCCAGGTCGTCATCGAACTGACCGAACAAACCCCGATCGATGATTTCCAGCTCCTGCAAACCGCTCTGCATCATTATCGGGCGATGGGTTTTTCCATTGCGCTGGACGACCTTGGCGCCGGTTATTCAAGCCTGCGGCTCTGGTCGGAACTGCGCCCCGATTACGTGAAGATCGACCGGCACTTCATCGATGGCATTCACCAGGACGCGCTCAAGCGAGAATTCGTGGGTTCCATCCTGAAAATCGCCCAGGCATCACGGGCCCAAGTGATCGCCGAGGGAATAGAACTGCCGGAAGAACTGGCCGTGCTGATCGAGATGGGCGTCGATCTGGTCCAGGGTTATCTGCTTGCCCGGCCCCAGGAACACCCGTGCCAGGATGCCAAAGCGCTGATGCCCCGGCAGGACAGCGGGGTGGTGCCCTTGGGCGATGAAGTGAGCGACCTCGGCGCCCTGCTCAACGAACAACCGGCGGTGGCCCACGACACCCCGACGGCGGCAGTCCTGGATGCGTTCCGCCGCCAGGCCAACCTCAACTCCCTAGCAGTGTTGGATGACCGTGCCCAGCCGTGCGGCATCGTCCATCGTCATTCGCTCTCGGACGCGCTGCTCAAACCCTTCGCCACCGACCTCTTCGCGCGCAAGCCCATCAGCCGCCTGATGAGCGACGACTTCCTCGCGGTGGAACTCAACCAATCCTTGCAACAAGTCAGCCGCCTGATCACCAGCCGCGCCCGACAACGCATCGAAGAAGATTTCATCATCACCCTCAATGGCAGCTACATGGGATTGGGGCGCGTGATCGACGTGCTCAAGCTCATCACCGAACTGAAGATCCAACAGGCCCGCTACGCCAACCCGCTGACCTTGCTGCCCGGCAACGTGCCGATCCAGCAATGCCTTACCCGCTTGCTGCAGCAGCGTCAGGAGTCGGTAATCTGCTACGTCGACATCGACAGCTTCAAACCCTTCAACGACATCTACGGCTACGGTCGCGGGGACGAAGTCCTACTGTGCCTGGCGCAATGCCTGAACGAACGCATCGACCCCAGCCGCGACTTCGTCGGCCACATCGGCGGCGACGACTTCCTACTGGTCCTCGGCCCGGATGATTGGCGCAAACGCCTGACCCAATTATTGAAAGACTTCCAGAACCACTGCCGCCGCTTCTACCGGCCCGAGCACTTGGAGGCTGGTTGTTTTACTGCGCTGAACCGACAGGGGGTGCGGCAGGAATTTGCGTTGCTGTCGCTGTCGATTGGGGTGGTGCACCTGCGCTCGGAGGCTTGTGCGGGGCTGGATGCCAGTCAGCTGGCCGAACTCGCTTCCCAGGCCAAGCATCATGCCAAGGAAATTGTTGGGGGGAGTTTGTACTTGATTAATGGTGCGATCGAGCAGGTACCGGTCCTGGAGTTGGGGCTGTCGGTGTGA	MTTIEQLGALSSILSHSGLHSLFQPIVCLSERRILGYEALTRGPSNSPLHSPVALLSVARQAGRLSELELACRRSACQRFNEQKLPGKLFLNVSPESLLESAHQTGRTLQLLQDFGIPPSQVVIELTEQTPIDDFQLLQTALHHYRAMGFSIALDDLGAGYSSLRLWSELRPDYVKIDRHFIDGIHQDALKREFVGSILKIAQASRAQVIAEGIELPEELAVLIEMGVDLVQGYLLARPQEHPCQDAKALMPRQDSGVVPLGDEVSDLGALLNEQPAVAHDTPTAAVLDAFRRQANLNSLAVLDDRAQPCGIVHRHSLSDALLKPFATDLFARKPISRLMSDDFLAVELNQSLQQVSRLITSRARQRIEEDFIITLNGSYMGLGRVIDVLKLITELKIQQARYANPLTLLPGNVPIQQCLTRLLQQRQESVICYVDIDSFKPFNDIYGYGRGDEVLLCLAQCLNERIDPSRDFVGHIGGDDFLLVLGPDDWRKRLTQLLKDFQNHCRRFYRPEHLEAGCFTALNRQGVRQEFALLSLSIGVVHLRSEACAGLDASQLAELASQAKHHAKEIVGGSLYLINGAIEQVPVLELGLSV				NA	NA	NA	NA	NA
D1-36_01436	2112	prc	COG0793	Tail-specific protease	ATGCGTTATCAATTGTCCCTGCGTCGAATCAGCATGAAGCACTTGTTCCCCAGTACTGCACTTGCCCTCTTCATTGGCCTCGGCGTTTCGACGCTTTCGAGCACTGCGCTCGCGGCCAACAGCTGGGACAAGCTTCAGCCCGATCGCGACGAGGTGATCGCCAGCCTTAACGTCGTTGAGTTGCTCAAGCGTCATCACTACAGCAAGCCGCCGCTCGATGACGCGCGCTCTGTCATCATCTATGACAGCTACCTGAAGCTGCTTGATCCGTCGCGCAGCTATTTCCTGGCCAGTGACATTGCCGAATTCGACAAGTGGAAGACTCAATTCGACGACTTCCTCAAAAGCGGCGACCTGAACGCCGGGTTCATTATCTACAAGCGCTACCTGGACCGCGTCAAGGCGCGCCTGGATTACGCCCTTGCCGAATTGAACAAGGGTGTCGACAAAATCGATTTCAATGCCAAGGAAACCTTGCTGGTCGACCGCAAGGACGCGCCTTGGCTCAAAAGTACGGCCGAACTCGACGACCTGTGGCGCAAACGCGTCAAGGACGAAGTGCTGCGCATGAAGATCGCCGGAAAGGATCCCAAGCAGATCCAGGAAACCCTGACCAAGCGCTACAAGAACCAATTGGCGCGTCTGGACCAGACCCGGGCCGAGGATATCTTCCAGGCCTACATCAATACCTTTGCAATGTCCTACGACCCGCACACCAATTATCTGTCGCCGGATAACGCGGAGAACTTCGACATCAACATGAGCTTGTCCCTGGAAGGCATCGGCGCGGTCCTGCAAAGCGACAACGACCAGGTCAAAATCGTGCGCCTGGTGCCCGCGGGCCCGGCGGACAAGACCAAGCAGGTCGGTCCGGCGGACAAGATCATTGGTGTCGCCCAAGGCAACAAGGAAATGGTCGACGTGGTCGGCTGGCGCCTGGATGAAGTGGTCAAGCTGATCCGTGGCCCGAAAGGCTCGGTCGTCCGCCTGGAGGTCATTCCGGCCAGCAATGCGCCAAATGACCAGACCAGCAAAGTCGTGTCCATCACCCGTGAAGCAGTGAAGCTGGAAGAACAGGCCGCGAAGAAATCGGTCCTGAAACTCAAGCAGGACGGCAAGGACTACAAGCTCGGCATCATCGAGATCCCGGCGTTCTACCTGGACTTCAAGGCTTTCCGCGCCGGAGATCCGGACTACAAGAGCACCACGCGCGACGTCAAGAAGCTGCTGACCGAACTGCAAAAGGAGAAGGTCGACGGCGTCGTCATCGATTTGCGCAACAACGGCGGCGGCTCGCTGCAGGAAGCCACCGAATTGACCAGCCTGTTCATCGACAAAGGCCCGACCGTGCTTGTGCGAAATGCCGATGGCAGGGTCGATGTGCTGGAAGATGAGAACCCGGGCGCCTTCTACAAAGGCCCGATGGCCTTGCTGGTCAATCGACTGTCCGCTTCGGCCTCGGAGATTTTCGCCGGTGCCATGCAGGACTACCACCGCGCCTTGATCATCGGCGGCCAGACTTTCGGCAAGGGCACCGTGCAGACCATCCAGCCGTTGAACCACGGCGAACTGAAACTGACCCTGGCGAAGTTCTACCGTGTTTCCGGCCAGAGCACTCAGCATCAGGGCGTGCTGCCTGATATCGATTACCCGTCGATCATCGACACCAAGGAAATCGGTGAAAGCGCCCTGCCCGAAGCCATGCCGTGGGACACCATCCGTCCCGCGATCAAGCCGGCCGTGGACCCATTCAAGCCATTCCTGGCCCAGCTCAAGTCCGAACATGACACCCGCACCGCCCAGGACGCTGAATTCGTGTTCATTCGCGACAAGCTGGCCTTGGCGCAAAAATTGATGACCGAAAAAACCGTCACACTCAACGAAGCCGACCGCCGCGCACAGCATGCCGACATCGAGGCCAAGCAACTGGCGATGGAAAACCTGCGTCGCAAAGCCAAGGGCGAAGAGCCGCTCAAAGAACTGAAGAAAGAAGACGAAGACCTGATTACCGAGCCGGAAAAGACCAAGCCGGAAGATGATGCCTACCTGAGTGAAACCGGGCGAATCCTTTTGGATTACCTGAAACTCAACACGGCGGTCGCCAAGCACTGA	MRYQLSLRRISMKHLFPSTALALFIGLGVSTLSSTALAANSWDKLQPDRDEVIASLNVVELLKRHHYSKPPLDDARSVIIYDSYLKLLDPSRSYFLASDIAEFDKWKTQFDDFLKSGDLNAGFIIYKRYLDRVKARLDYALAELNKGVDKIDFNAKETLLVDRKDAPWLKSTAELDDLWRKRVKDEVLRMKIAGKDPKQIQETLTKRYKNQLARLDQTRAEDIFQAYINTFAMSYDPHTNYLSPDNAENFDINMSLSLEGIGAVLQSDNDQVKIVRLVPAGPADKTKQVGPADKIIGVAQGNKEMVDVVGWRLDEVVKLIRGPKGSVVRLEVIPASNAPNDQTSKVVSITREAVKLEEQAAKKSVLKLKQDGKDYKLGIIEIPAFYLDFKAFRAGDPDYKSTTRDVKKLLTELQKEKVDGVVIDLRNNGGGSLQEATELTSLFIDKGPTVLVRNADGRVDVLEDENPGAFYKGPMALLVNRLSASASEIFAGAMQDYHRALIIGGQTFGKGTVQTIQPLNHGELKLTLAKFYRVSGQSTQHQGVLPDIDYPSIIDTKEIGESALPEAMPWDTIRPAIKPAVDPFKPFLAQLKSEHDTRTAQDAEFVFIRDKLALAQKLMTEKTVTLNEADRRAQHADIEAKQLAMENLRRKAKGEEPLKELKKEDEDLITEPEKTKPEDDAYLSETGRILLDYLKLNTAVAKH	PGPT0015095_631	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0015095-prc|ctpA-K03797	NA	NA
D1-36_01437	963	pikAII		Narbonolide/10-deoxymethynolide synthase PikA2, modules 3 and 4	GTGAAAGCATTGCAAGGCGTTGAAGGCCAAGTGGTATGGGCAGATGAGCCAAGTCCGGCCTGCGATGCGGGCCAAGTTCGCATCCGCGTGGCTGCCGCCGGCCTGAATCGGGCCGATTTGCTGCAAAAAGCCGGGCATTATCCACCGCCACCCGGCGCGAGCCAGGTGTTGGGGCTGGAATGTTCGGGAGTGATCAGTGAAGTCGGGCCGGGCTCCTCCTGGCAGGTCGGTGACCGGGTCTGCGCATTGCTGGCTGGCGGGGGAATGGCCGAAGAGGTAGTGGTCGATGGCCGCCATGTCTTGCCCGTGCCGGAAGGCCTGTCGATGGCCGAAGCGGCCGCGCTGCCTGAGGTCTACGGCACCGCGTGGCTGAATCTGTTCCAGCTTGCCGGCCTGCGGCCAGGCGAAAAAGTGTTGCTGCATGCCGGCGCCAGTGGCGTCGGTTCGGCGGCGATCCAGCTCTGCAAGGCGTTTGGCAACCCGTGCTGGGTCAGCGTCGGTTCGGCGGATCGCCTGGCCTATTGCGAAGCATTGGGGGCCCAGGGCGGCGTGGTTCGCACCGACGATATCAACAGCCTGAACGACTTCGCGCCCTTCGACGTCATTCTCGATCCGGTCGGCGCGAACTACGCCGGCCTCAACGTGAAACTTTTGTCAGTTGACGGCCGCTGGGTGCTGATCGGCCTCATGGGCGGCCGCACGACCGAACTCGACCTGGCCCAGGTGCTGGGCAAGCGCATCCAACTGCTGGGTTCGACCCTGCGCAGTCGCAACGATCAGTTCAAGGCTGACTTGATCAGCGAATTGGGGCAGAACGTATGGCCGCTGTTTACCGATAAACGCCTGAGTCCGCAGCTGGCCAGGACGTTTGCAATCACCGATGCCGAGGCGGCGTTTGCGGAGCTGGCGACCAATCAGGTGTCCGGGAAGTTGGTGTTGGTGATCGACGAGAGCTTGAGCTGA	MKALQGVEGQVVWADEPSPACDAGQVRIRVAAAGLNRADLLQKAGHYPPPPGASQVLGLECSGVISEVGPGSSWQVGDRVCALLAGGGMAEEVVVDGRHVLPVPEGLSMAEAAALPEVYGTAWLNLFQLAGLRPGEKVLLHAGASGVGSAAIQLCKAFGNPCWVSVGSADRLAYCEALGAQGGVVRTDDINSLNDFAPFDVILDPVGANYAGLNVKLLSVDGRWVLIGLMGGRTTELDLAQVLGKRIQLLGSTLRSRNDQFKADLISELGQNVWPLFTDKRLSPQLARTFAITDAEAAFAELATNQVSGKLVLVIDESLS	PGPT0013255_5900	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344	NA	NA
D1-36_01438	654		COG0560	putative phosphatase	ATGGCCCTGGCAATTTTTGATCTGGACGAAACCCTGATCCACGGCGACTGCGCCACCCTCTGGAGCGAACAGATGGGGCGCCTGGGTTGGGTCGATCCCGAGTCGTTCATGCGTCGCAACAACGAGCTGATGGATGCCTACAGCCACGGCAAATTGCGCATGGAAGAGTACATGGACTTCAGCCTGGAACCGATGATCGGCCGCACGCCCGAAGAGATCGAGCACCTGGTGACACCGTGGGTGGAAGATTTCATCGAGCCGATCATCTTCAGCGACGCCACCAAGGCCATCGCCGAACACCGCAAGGCCGGCGACCGGATCCTGGTGATCTCGGCTTCGGGCACGCACCTGGTCAAGCCGATTGCCGACCGCCTGGGCATCGATGAGATCCTGGCGATCGACCTCGAAGTGGCCCATGGGGTGTACAGCGGCAAGACCGTGGGCACCCTGACCTACCGTGAGGGCAAGATTTCCCGCTTGCTGGATTGGCTGGATGCCGAGGAAGAGAACCTCGAAGGCGCCAGTTTTTACTCCGATTCGCGCAATGACCTGCCGTTGCTGTTGCGGGTGGATTACCCGCATGTGGTGAATCCGGACCCGGTATTGAAAGCTCACGCTGAGTTGGCTGGCTGGCCGATTCATACCTGGAAGTGA	MALAIFDLDETLIHGDCATLWSEQMGRLGWVDPESFMRRNNELMDAYSHGKLRMEEYMDFSLEPMIGRTPEEIEHLVTPWVEDFIEPIIFSDATKAIAEHRKAGDRILVISASGTHLVKPIADRLGIDEILAIDLEVAHGVYSGKTVGTLTYREGKISRLLDWLDAEEENLEGASFYSDSRNDLPLLLRVDYPHVVNPDPVLKAHAELAGWPIHTWK				NA	NA	NA	NA	NA
D1-36_01439	990	potA_1	COG3842	Spermidine/putrescine import ATP-binding protein PotA	ATGAGCTACGTCAGCGTCCAACACCTGCAAAAAAGCTACGCCGGCACGCCGGTGTTCAGCGACATCAACTGCGAAATCCAGAAGGGCGAATTCGTCACCCTTCTCGGCCCCTCGGGCTGCGGCAAGTCCACATTGTTGCGCTGCATTGCCGGCCTGACGGCGGTGGATGACGGCAAGATCCTGCTGGACGGCCAGGACATCGTCCCGTTGAGCCCGCAGAAGCGTGGGATCGGCATGGTCTTCCAGAGCTACGCCTTGTTCCCGAACATGACCGTGGAACAGAACGTCGCCTTCGGCCTGCGCATGCAAAAGGTGGATGCCTCGGACAGCCGTCAGCGTGTACTGGAGATCCTGCGTCTGGTGGAGTTGCACGATTTTGCAGCGCGCTATCCCCACCAGCTTTCAGGAGGCCAATGCCAGCGTGTCGCCCTTGCCCGCTCCCTGGTGACCCGGCCGCGCCTGTTGCTGCTGGACGAACCCCTCTCGGCCCTCGACGCACGGATTCGCAAACACCTGCGTGAACAGATCCGACAGATCCAGCGCGAACTGGGCTTGACCACGATCTTCGTCACACACGATCAGGAAGAAGCCCTGACCATGTCTGACCGGATTTTCCTAATGAACCAGGGAAAGATCGTACAGAGCGGCGATGCCGAGACCCTTTACACTGCGCCAGTCGATGTCTTCGCCGCCGGCTTCATCGGCAACTACAACCTGCTGGACGCCGACAGCGCCACGAAGCTGCTGCAACGCCCAGTGAACGGTCGCATCGCCATTCGCCCGGAAGCCATCGAACTGAGTCGCAATGGAGAGCCCGATGCACTGATCCGCAGCCACAGCCTGCTGGGCAACGTCATCCGCTACCGGGTCGAGGCCCGTGGCGTGGAGCTGGTGGTCGATGTGCTCAACCGTTCGGCCGCCGACCTGCATCCTGACGGTGCGCGGTTGGCACTTTCCATCGATCCGTCGGCGCTGTGTGAGGTAGCCTGA	MSYVSVQHLQKSYAGTPVFSDINCEIQKGEFVTLLGPSGCGKSTLLRCIAGLTAVDDGKILLDGQDIVPLSPQKRGIGMVFQSYALFPNMTVEQNVAFGLRMQKVDASDSRQRVLEILRLVELHDFAARYPHQLSGGQCQRVALARSLVTRPRLLLLDEPLSALDARIRKHLREQIRQIQRELGLTTIFVTHDQEEALTMSDRIFLMNQGKIVQSGDAETLYTAPVDVFAAGFIGNYNLLDADSATKLLQRPVNGRIAIRPEAIELSRNGEPDALIRSHSLLGNVIRYRVEARGVELVVDVLNRSAADLHPDGARLALSIDPSALCEVA	PGPT0007860_4050	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007860-ABC_SP_A|ydcT-K02052	NA	NA
D1-36_01440	801	cysW_2	COG4208	Sulfate transport system permease protein CysW	ATGTCTCGCGCTGAATCGGGCTCCGTCGGGCTCTATCATCGAGCGGTGGTGTACCTGCTGTTCGCCATTCTGTTGCTGCCCCTGGTCGGGACACTGGTCTACTCCATCGCTAGCAGCTGGTCGGCCACCGTGTTACCCAGCGGCTTTACCTTCAAATGGTACGTGCAGTTGTGGAGCGATCCGCGCTTTCTCCATGCTTTCGGCCAATCGCTGGTCGTCTGTGTGGGGGCGCTGGTGCTCTCGGTGGTGCTGATCCTGCCGCTGCTGTTCGTGGTGCATTACCACTTTCCCAAGCTCGATGCGCTGATGAACATCCTCATCCTGCTCCCCTTCGCGGTGCCGCCGGTGGTGTCGTCGGTGGGGCTGTTGCAACTCTATGGTTCCGGGCCTCTGGCGATGGTTGGCACGCCGTGGATCCTGATCGGCTGCTATTTCACCGTCGCCCTGCCGTTCATGTACCGAGCAATCACCAACAACCTGCAAGCCATCAACCTGCGTGACCTGATGGACGCTGCCCAACTGCTCGGCGCCAGTACTTTCCAGGCCGCCCTGCTGGTGGTGCTGCCGAACCTGCGCAAGGGCCTGATGGTGGCGCTGTTGCTGTCCTTCTCGTTCCTGTTCGGCGAGTTCGTGTTCGCCAACATCCTCGTCGGCACCCGCTATGAAACCCTGCAGGTGTACCTGAACAACATGCGCAACAGCAGCGGCCACTTCACCAGTGCGCTGGTGATTTCCTACTTTTTCTTCGTACTGGTCCTGACCTGGGCGGCCAACATCTTGAACAAGGACAAAAGCCAATGA	MSRAESGSVGLYHRAVVYLLFAILLLPLVGTLVYSIASSWSATVLPSGFTFKWYVQLWSDPRFLHAFGQSLVVCVGALVLSVVLILPLLFVVHYHFPKLDALMNILILLPFAVPPVVSSVGLLQLYGSGPLAMVGTPWILIGCYFTVALPFMYRAITNNLQAINLRDLMDAAQLLGASTFQAALLVVLPNLRKGLMVALLLSFSFLFGEFVFANILVGTRYETLQVYLNNMRNSSGHFTSALVISYFFFVLVLTWAANILNKDKSQ	PGPT0007845_3093	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007845-ABC_SP_P|ydcV-K02053	NA	NA
D1-36_01441	846			hypothetical protein	GTGAACGCCATGACGCGCGGCAAATGGCTGGCAGCGTTGTGCCTGGTGCCCTTCGCGATATTCTTCATCGTCTTCCAGATCGCCCCGCTGCTCTGGGTGCTGGTCAACAGCTTGGAATCGGAAGAGTTCGGCTGGGGCCTGGCCAACTTCAGCAAGATCTTCAGTTCGAAGTTTTATCGGCAAGCGATCCAGCACAGCCTGGAAATCAGCTTCTGGTCCAGCGTGTTCGGCATCGTTATCGCCGTGCTCGGCAGCTACTCCCTGCGTCGGGTGGATTCGCGGCTGCGCAACTTCGTCAACGCATTCGCCAACATGACCAGCAACTTCGCCGGCGTGCCCCTGGCATTCGCCTTCATCATCTTGCTGGGGTTCAACGGCAGTATCACGATCATGCTCAAGCAGGCGGGCATCATCGAGGATTTCAACCTGTACTCGAAAACCGGGTTGATCATTCTCTATACCTATTTCCAGATTCCCCTGGGCGTACTGCTGCTTTACCCGGCGTTCGACGCGCTGCGTGAAGACTGGCGTGAGTCCGCCGCCCTGTTGGGCGCCAGCGGCTGGCAGTTCTGGCGGCACATCGGCTTGCCGGTGCTGACCCCGGCGCTGCTGGGCACGTTCGTGATCCTGCTGGCGAACGCTCTCGGCGCCTACGCGACGGTCTATGCATTGACCACCGGCAACTTCAACGTCCTGCCGATTCGCATCGCCGCCATGGTCTCCGGCGACATTTCCCTTGACCCGAACATGGCCAGTGCATTGGCCGTGGTGCTGGTGGCGCTGATGACTCTGGTAACCATCGTCCATCAATTGCTGCTCAAGAGGAGCTACCATGTCTCGCGCTGA	MNAMTRGKWLAALCLVPFAIFFIVFQIAPLLWVLVNSLESEEFGWGLANFSKIFSSKFYRQAIQHSLEISFWSSVFGIVIAVLGSYSLRRVDSRLRNFVNAFANMTSNFAGVPLAFAFIILLGFNGSITIMLKQAGIIEDFNLYSKTGLIILYTYFQIPLGVLLLYPAFDALREDWRESAALLGASGWQFWRHIGLPVLTPALLGTFVILLANALGAYATVYALTTGNFNVLPIRIAAMVSGDISLDPNMASALAVVLVALMTLVTIVHQLLLKRSYHVSR	PGPT0007850_3199	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007850-ABC_SP_P1|ydcU-K02054	NA	NA
D1-36_01442	807			hypothetical protein	ATGAAGCACAACGTCATCCTGGTGGTGCTCGACGGTCTCAACTACGAGGTCGCCCGGCATGCCATGGGACATTTGCAGGCATATGTCGGCGCAGGACGCGCGGCGCTCTACAAACTGGAATGTGAATTGCCCGCACTGTCCCGCCCGCTCTATGAATGCATACTCACCGGCGTCGTGCCTATCGACAGTGGAATCGTGCACAACAACGTCTCGCGCCTGTCGAACCAGCGCAGCATTTTCCATTACGCCACCGAGGCCGGCCTGAGCACGGCGGCCGCTGCCTACCATTGGGTCAGCGAGCTCTATAACGTTTCGCCCTTCGTTGCCGGTCGCGACCGCCATACACATAACTCCGACCTGCCGATCCAATACGGCCATTTCTACTGGAACGACCACTACCCCGATTCCCACCTGTTCGCTGATGCCGAACACCTGCGGCAGCGCTACTTGCCGAATTTTCTGTTGGTGCATCCGATGAACATCGACGACGCCGGCCACAAGCACGGCCTCGACACTGCGCAATACCGCAACAGTGCCCGCTCGGCCGACATCAACCTGGCCGTCTACCTGCAAGCCTGGCTCGACGCCGGTTACCAAGTGCTGGTGACGTCCGACCATGGCATGAACAACGATCGCTCCCACAACGGGCTGCTGGCGGAAGAACGGGAAGTGCCGCTCTTTGTCCTCGGGGATGGTTTCAGCCTGAACGCCGACGCGGCTCCCCTGCAAACCGAACTGTGCGGCACGATTTGCCAATTGCTTGGCATCGCCCACGACAAACCCTTTTGCCAGGAGTTGCTCAAGTGA	MKHNVILVVLDGLNYEVARHAMGHLQAYVGAGRAALYKLECELPALSRPLYECILTGVVPIDSGIVHNNVSRLSNQRSIFHYATEAGLSTAAAAYHWVSELYNVSPFVAGRDRHTHNSDLPIQYGHFYWNDHYPDSHLFADAEHLRQRYLPNFLLVHPMNIDDAGHKHGLDTAQYRNSARSADINLAVYLQAWLDAGYQVLVTSDHGMNNDRSHNGLLAEEREVPLFVLGDGFSLNADAAPLQTELCGTICQLLGIAHDKPFCQELLK				NA	NA	NA	NA	NA
D1-36_01443	1068			hypothetical protein	ATGAAACAGCTTTTCCTGGCATCAATGTTAGGCTCGACCATCGCCATGTGCACAGCCGCCATGGCCGCTGATACCGATCTGAAAACACTGGAAGCCGCTGCGAAAGCGGAAGGCGCCGTAAACAGCGTCGGCATGCCCGATGACTGGGCGAACTGGAAAGGCACCTGGGACGACCTGGCCAAGCTCTATGGCTTGAAGCACATCGACACCGACATGAGCTCCGCCCAGGAAATCGCCAAATTCGCGGCCGAGAAAGACAACGCCAGCGCCGACATCGGCGACGTCGGTGCCGCTTTCGGCCCGATTGCGGTCAAGCAGGGCGTGGTCCAGCCCTACAAGCCAAGCACCTGGGAACAGGTGCCGGACTGGGCCAAGGATAAGGACGGCAACTGGGCCCTGGCCTACACCGGCACCATCGCCTTCATCGTCAACAAGAAGCTGCTGCATGGCTCCGACGTCCCGACCAAATGGGCCGACCTGAAAACCGGTAAATACAAAGTCTCGATTGGTGACGTGAGCACCGCTGCCCAGGCGGCGAACGGTGTGCTGGCCGCGGCCCTGGCAAACGGTGGCGACGAGAAGAACATCAAGCCCGCGCTGTTGATGTTCGCCGAGATTGCCAAGCAAGGGCGCCTGTCCATGGCCAACCCGACCATTGCCACGATGGAAAAAGGTGAAGTCGAAGTCGGCGTGGTCTGGGATTTCAACGGCCTGAGCTACAAGGCCAAGATGGCCAACCCGGATGACTACGTCGTGTTGATCCCGTCCGACGGCTCGGTGATCTCCGGCTACACCACCATCATCAACAAATACGCCAAGCACCCGAACGCCGCCAAGCTGACCCGCGAATACATCTTCAGCGACGCCGGCCAGATCAACCTTGCCAAGGGTAACGCCCGCCCGATTCGCGCCGAGCACCTGAAACTGCCGGAAGAGGTCCAGGCAAAGCTGCTGCCGAACGAGCAGTACAAAGGCGTGACCCCGATCAAGGATGCGGATGCGTGGGAGAAGACCTCCAAGGCACTGCCGCAGCAGTGGAATGAAGAAGTCATCGTCGAGATGAAGTGA	MKQLFLASMLGSTIAMCTAAMAADTDLKTLEAAAKAEGAVNSVGMPDDWANWKGTWDDLAKLYGLKHIDTDMSSAQEIAKFAAEKDNASADIGDVGAAFGPIAVKQGVVQPYKPSTWEQVPDWAKDKDGNWALAYTGTIAFIVNKKLLHGSDVPTKWADLKTGKYKVSIGDVSTAAQAANGVLAAALANGGDEKNIKPALLMFAEIAKQGRLSMANPTIATMEKGEVEVGVVWDFNGLSYKAKMANPDDYVVLIPSDGSVISGYTTIINKYAKHPNAAKLTREYIFSDAGQINLAKGNARPIRAEHLKLPEEVQAKLLPNEQYKGVTPIKDADAWEKTSKALPQQWNEEVIVEMK	PGPT0007855_2942	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007855-ABC_SP_S|ydcS-K02055	NA	NA
D1-36_01444	726	phnR	COG2188	Putative transcriptional regulator of 2-aminoethylphosphonate degradation operons	ATGCGCGTTGAGGCAACCAAAGCGGTGACATCCATCGGACAAGTCCTGCAAGAGCAGATCGACCACGGCTTGCTGGCGGCCGGCAACAAATTGCCAGCCGAGCGCAAACTCAGCGAACTGTTCGGCACCACTCGGATTACCGTGCGCGAGGCATTGTTGCAGTTGGAAGCCCAAGGGCAGATTTACCGCGAGGAACGTCGGGGCTGGTTCGTTTCGCCACCGCGGCTGGCCTACAACCTGATGCAGCGCAGCCATTTCCACGCGATGGTTGCCGCTCAAGGCCGGGTGCCGCGCACCGAAGTCATATCGGCCCGCTTGCAACCCGCCTCGGCGGCAATCTGCGCCTGGCTTCAACTGCCGGCGCTGTCCAGCGTCATCCAGATCTGTCGCACCCGGCGTATCGATGAAAGACTGGTGCTTTATGTGGAGCATTATCTGAACCCGTCGTACTTTCCGGACATTCTCGCGTTCGATCTCAACCAGTCCATGACCGAGCTGTACGCCCGCCATTACGACTTGCATTACGGACGGGTGAAATTCGACATCGTGCCTACCTCGCTGCAACCCGAGGCCGCGGCGGCGCTGAAAGTGTCGGTCGGCAGCCCCGGGCTGCGGATTGCTCGGGTCAACTATGACCAGCACCAACGGCTGATCGATTGTGACTTGGAATTCTGGCGGCACGACGCGATCCACGTTGGCGTGGACGTGCCGGAACAACCCGCCTGA	MRVEATKAVTSIGQVLQEQIDHGLLAAGNKLPAERKLSELFGTTRITVREALLQLEAQGQIYREERRGWFVSPPRLAYNLMQRSHFHAMVAAQGRVPRTEVISARLQPASAAICAWLQLPALSSVIQICRTRRIDERLVLYVEHYLNPSYFPDILAFDLNQSMTELYARHYDLHYGRVKFDIVPTSLQPEAAAALKVSVGSPGLRIARVNYDQHQRLIDCDLEFWRHDAIHVGVDVPEQPA				NA	NA	NA	NA	NA
D1-36_01445	183			hypothetical protein	ATGATCTCCATGTCCTCGTTCAACGCCATGCTCGTGCCCATCATCGCCGGCATGATCCTGCTGGCCATTGGCTTCAACTTCCGAGACAAAAATGTCGGGGTGTTCGCCATGTGGATCGGCATGTTGCTGATCCTTATCACAGTGCTGTTCAGGATTATGGCGAAGCTCAACGAGTCCTCCTGA	MISMSSFNAMLVPIIAGMILLAIGFNFRDKNVGVFAMWIGMLLILITVLFRIMAKLNESS				NA	NA	NA	NA	NA
D1-36_01446	1290	apeB	COG1362	putative M18 family aminopeptidase 2	ATGCGCGCAGAGTTGAACCAGGGCCTGATCGACTTCCTCAAGGCCTCCCCCACCCCGTTCCATGCTACCGCCAGCCTTGCCCAGCGCCTGGAGGCGGCGGGTTACCAGCGTCTCGATGAGCGCGAAACCTGGGCCACCGAGGCCAACGGCCGCTATTACGTCACGCGCAACGATTCCTCGATCATCGCTTTCAAACTGGGCCGCAACTCTGCGCTACACGACGGCATCCGCCTGGTCGGCGCCCACACCGACAGCCCTTGCCTGCGGGTCAAGCCCCAGCCGGAACTGCAACGCCAGGGATTCTGGCAACTGGGCGTGGAAGTGTACGGCGGCGCACTGCTGGCGCCGTGGTTCGACCGCGACTTGTCGCTGGCCGGCCGCGTGACCTTCCGCCGTGACGGCAAGGTCGAGAGTCAGCTGATCGATTTCAAGGCGCCGATCGCCACGATTCCAAACCTGGCCATTCATCTCAACCGTGAAGCCAACCAAGGCTGGGCGATCAATCCGCAGAACGAGCTGCCGCCGATCCTCGCCCAGTTTGCTGGCGACGAACGCGTCGACTTCCGCGCCGTGCTCACTGACCAGTTGGCCCGGGAACACGGCTTGAACGCCGACGTGGTGCTCGATTACGAGCTGAGCTTCTATGACACCCAAAGCGCAGCGGTCATCGGTTTGCATGGTGATTTCATCACCGGCGCGCGACTGGACAACCTGCTCTCCTGCTATGCCGGCCTGCAAGCCTTGCTGACCGCCGACACCGAAGAAACCTGCGTGCTGGTGTGCAACGACCACGAAGAGGTCGGTTCTACTTCGGCGTGTGGCGCGGACGGCCCGATGCTCGAACAGACCCTGCGCCGTCTGCTGCCCGACGGTGAAGATTTCGTACGCACCATTCAGAAATCCCTGCTGGTCTCCGCAGACAACGCCCACGGCGTACACCCCAACTATGCCGACAAGCACGACGCCAATCATGGCCCCAAGCTCAACGCCGGCCCGGTGATCAAGGTCAACACCAACCAGCGCTACGCCACCAACAGCGAAACCGCCGGCTTCTTCCGCCACCTGTGCATGGCCGAAGAAGTACCGGTGCAGAGTTTCGTGGTGCGCAGCGACATGGGTTGCGGCTCGACCATCGGCCCGATCACCGCCAGTCAACTGGGTGTGCGCACCGTGGACATTGGCCTGCCGACCTTTGCCATGCATTCGATCCGCGAACTGTGCGGTAGCCAAGACCTGGCGCACCTGGTGAAAGTGCTGAGCGCGTTCTACGCTTCTCGCGAGTTGCCATAA	MRAELNQGLIDFLKASPTPFHATASLAQRLEAAGYQRLDERETWATEANGRYYVTRNDSSIIAFKLGRNSALHDGIRLVGAHTDSPCLRVKPQPELQRQGFWQLGVEVYGGALLAPWFDRDLSLAGRVTFRRDGKVESQLIDFKAPIATIPNLAIHLNREANQGWAINPQNELPPILAQFAGDERVDFRAVLTDQLAREHGLNADVVLDYELSFYDTQSAAVIGLHGDFITGARLDNLLSCYAGLQALLTADTEETCVLVCNDHEEVGSTSACGADGPMLEQTLRRLLPDGEDFVRTIQKSLLVSADNAHGVHPNYADKHDANHGPKLNAGPVIKVNTNQRYATNSETAGFFRHLCMAEEVPVQSFVVRSDMGCGSTIGPITASQLGVRTVDIGLPTFAMHSIRELCGSQDLAHLVKVLSAFYASRELP				NA	NA	NA	NA	NA
D1-36_01447	843			hypothetical protein	GTGCCAGATTCTCCACCGCTTCAGCAGGACTACCGTTATACCTTCCGCTTCTTGAATACGGATTTACATCTACGGGACGAACCTTGTCATCGCACCGAGCAAGCGCTGCGCCAGCTCATCATCAATCGCCGCAAGCGCGCGGTGACCAGGGCGACGGCAATCATTGCGGGCAGCAAACAGGCTTTGTTTGCCAAGGTCCAGCGCCTGGGCAGTTGGCGAAGCAAAGTACGCGTCACATTGGGCACCCCCCAGCGCAACGGGCGCTTTGACTGGCCACTGGAAGAGCTGCAGAACACGCTGCTGGCCCAGCATCGCGGCGTCCGGATGCCGACGCTCCAGGGGTTTGGCTACACCAGGAGTGGATTAGGCCTGGCCCAGGATTACTTCCTGATCACCGAGTTGCTGGAGGATTACACCGACGGCGCAAAATGGCTGGCGGAACATCCCGGACAAATTGAAACATTCACCCACAAAGCCTTCGAACTGCTGGATTCCCTGACAAGCAGGAACATAAGCCACATGGATTTCTGGGCTGGCAATCTCATGCACCCGGCTGATCCACAACGTCCGCTGATGGCGATCGATTTCGAGAACTGTTTTTCCCGGCCGACGCCGTTTCACAGCGAAACACTCGGCTTCCAGCTCGGGTTCCTGTACCACCGTGAAATCTACCGGTACATCACCGAAGCACGGTACGACAGCCTGGTCGAGGAATACCTCGATCGCAAGCCAACGGTCTCGATGGAAAACTTCAACAAGGTGTATCAGGTCAGCAAGCACTGCCACCTGGGCCGCAAGGAGCGCCGAGAAGTGTTCCTGCAAGGCCGGCTCCTGCTTGACTGA	MPDSPPLQQDYRYTFRFLNTDLHLRDEPCHRTEQALRQLIINRRKRAVTRATAIIAGSKQALFAKVQRLGSWRSKVRVTLGTPQRNGRFDWPLEELQNTLLAQHRGVRMPTLQGFGYTRSGLGLAQDYFLITELLEDYTDGAKWLAEHPGQIETFTHKAFELLDSLTSRNISHMDFWAGNLMHPADPQRPLMAIDFENCFSRPTPFHSETLGFQLGFLYHREIYRYITEARYDSLVEEYLDRKPTVSMENFNKVYQVSKHCHLGRKERREVFLQGRLLLD				NA	NA	NA	NA	NA
D1-36_01448	636	rluA	COG0564	Dual-specificity RNA pseudouridine synthase RluA	ATGCCCCTGTCCAACATCCGCATCCTCCACCAGGACGCCGCCGTACTCGTGGTCGACAAGCCGACCCTGCTCCTGTCCGTGCCTGGCCGGGCGGACGACAATAAAGATTGCCTGATCACTCGCCTGCAGGAAAACGGCTATCCGGAAGCGCGAATCGTGCACCGGCTCGACTGGGAAACCTCCGGCATCATCCTGCTAGCCCGCGATCCGGATACCCATCGCGAACTGTCCCGCCAGTTTCATGACCGCGAAACCGAAAAAGCCTACACCGCGTTGTGCTGGGGCCAGCCCGAGCTGGACAGTGGCAGCATCGATCTGCCCTTGCGCTACGACCCACCGACCAAGCCCCGTCACGTCGTGGACCATGAGCACGGCAAGCATGCCCTGACGTTCTGGCGTGTACTCGAACGTTGCGGCGACTGGTGTCGGGTCGAACTGACGCCTATCACCGGACGCTCACATCAGTTGCGCGTGCACATGCTGTCCATCGGTCATCCGTTGCTGGGCGACGGACTCTATGCCCATCCGCAGGCATTGGCGGCCTGGCCGCGCCTGTGCCTGCACGCCAGCATGCTCAGCTTTACCCATCCGCAAAGCGGCGAGCGCTTGCGTTTCGAGTGCCCGGCACCGTTCTGA	MPLSNIRILHQDAAVLVVDKPTLLLSVPGRADDNKDCLITRLQENGYPEARIVHRLDWETSGIILLARDPDTHRELSRQFHDRETEKAYTALCWGQPELDSGSIDLPLRYDPPTKPRHVVDHEHGKHALTFWRVLERCGDWCRVELTPITGRSHQLRVHMLSIGHPLLGDGLYAHPQALAAWPRLCLHASMLSFTHPQSGERLRFECPAPF				NA	NA	NA	NA	NA
D1-36_01449	255	minE	COG0851	Cell division topological specificity factor	ATGAACCTTTTTGACTTCTTTCGTGCCAACAAAAAGCCAAGTACCGCCTCGGTCGCGAAAGAGCGTCTACAGATCATCGTGGCGCACGAACGCGGCCAGCGCAGCACCCCTGATTACCTGCCGGCCTTGCAGAAGGAACTGGTGGAAGTGATCCGCAAGTACGTCAACATCGGCAACGATGACGTGCATGTGGCGCTCGAAAGCCAGGGCAGCTGCTCGATTCTGGAACTCAATATCACCCTGCCGGATCGCTGA	MNLFDFFRANKKPSTASVAKERLQIIVAHERGQRSTPDYLPALQKELVEVIRKYVNIGNDDVHVALESQGSCSILELNITLPDR				NA	NA	NA	NA	NA
D1-36_01450	813	minD	COG2894	Septum site-determining protein MinD	TTGGCCAAGATTCTCGTGGTTACATCCGGCAAGGGTGGTGTGGGTAAGACCACCACCAGCGCCGCTATCGGTACCGGCCTCGCCTTGCGCGGCCACAAAACAGTCATCGTCGACTTCGACGTCGGCCTGCGTAACCTCGACCTGATCATGGGTTGCGAGCGTCGCGTGGTCTATGACTTCGTCAACGTGGTCAATGGCGAAGCGAACCTGCAACAAGCCCTGATCAAGGACAAGCGCCTTGAGAACCTGTACGTGCTGGCCGCCAGCCAGACCCGCGACAAAGACGCGCTGACCCAGGAAGGCGTGGAAAAGGTGCTGATGCAGCTCAAGGAAGACTTCGAATTCGTGGTCTGCGACTCCCCGGCCGGTATCGAAAAAGGTGCCCACCTGGCCATGTACTTCGCTGACGAAGCGATCGTCGTGACCAACCCGGAAGTGTCGTCGGTGCGTGACTCCGACCGCATGCTGGGCCTTCTGGCGAGCAAGTCCCGTCGCGCCGAGCAGGGCGAAGAGCCGATCAAGGAACACTTGCTTCTGACCCGCTACAACCCTCAGCGCGTCAGCGACGGCGAAATGCTCGGCGTCGAGGACGTCAAGGAAATCCTGGCGGTCACCCTGCTGGGCGTGATTCCAGAATCCCAAGCGGTACTCAAGGCCTCGAACTCCGGCGTGCCGGTCATTCTTGACGACCAGAGCGACGCTGGCCAGGCGTACAGCGATGCAGTCGATCGTCTACTGGGCAAAACCGTCGAACATCGATTCCTCGACGTCACGAAGAAAGGTTTCTTCGAGCGCCTGTTTGGAGGTAGGTAA	MAKILVVTSGKGGVGKTTTSAAIGTGLALRGHKTVIVDFDVGLRNLDLIMGCERRVVYDFVNVVNGEANLQQALIKDKRLENLYVLAASQTRDKDALTQEGVEKVLMQLKEDFEFVVCDSPAGIEKGAHLAMYFADEAIVVTNPEVSSVRDSDRMLGLLASKSRRAEQGEEPIKEHLLLTRYNPQRVSDGEMLGVEDVKEILAVTLLGVIPESQAVLKASNSGVPVILDDQSDAGQAYSDAVDRLLGKTVEHRFLDVTKKGFFERLFGGR				NA	NA	NA	NA	NA
D1-36_01451	735	minC	COG0850	Septum site-determining protein MinC	ATGAGCCAAACCGAACCGCTAGACCAAGATCCCGTGTTCCAGCTGAAGGGCAGCATGCTCGCCATTACGGTGCTGGAACTGGCCCGTAACGACCTGGAAGGTCTTGACCGGCAGTTGGCGGCGAAAGTCGCCCAGGCCCCGAATTTTTTCAGCAATGCCCCCCTGGTACTGGCACTGGACAAGCTGCCTGCCGGCGAAGGTTCAGTGGACTTGCCTGGCCTGATGCGCGTCTGCCGCCAACACGGCCTGCGCACGCTGGCGATCCGCGCCAGCCGCATCGAAGACATCGCCGCCGCCATCGCCATTGACATCCCGGTGCTACCGCCTTCCGGTGCTCGTGAGCGGGTGCTGGAACTGAGCCCGGCCGAACCGAAGAAACCCGAGAAACCAGCAGAGCCCACCGTCAAGCCAACCCGTGTGATCACCACGCCGGTACGCGGCGGACAGCAGATTTATGCCCAGGGTGGCGATCTGGTCGTCGTGTCCTCGGTCAGTCCGGGCGCGGAACTTCTGGCCGATGGCAACATCCATGTATACGGCCCGATGCGCGGCCGTGCGCTGGCCGGTGTCAAGGGCGACACCAAGGCAAGGATCTTCTGTCAGCAGTTGAGCGCCGAACTGGTCTCCATCGCCGGGCATTACAAGGTTTCCGAGGATTTGCGTCGCGACCCGTTGTGGGGGGCTGGCGTCCAGGTCAGCCTGTCGGGCGACGTGTTGAACATCATTCGGCTTTAA	MSQTEPLDQDPVFQLKGSMLAITVLELARNDLEGLDRQLAAKVAQAPNFFSNAPLVLALDKLPAGEGSVDLPGLMRVCRQHGLRTLAIRASRIEDIAAAIAIDIPVLPPSGARERVLELSPAEPKKPEKPAEPTVKPTRVITTPVRGGQQIYAQGGDLVVVSSVSPGAELLADGNIHVYGPMRGRALAGVKGDTKARIFCQQLSAELVSIAGHYKVSEDLRRDPLWGAGVQVSLSGDVLNIIRL				NA	NA	NA	NA	NA
D1-36_01452	933	lpxL_2	COG1560	Lipid A biosynthesis lauroyltransferase	ATGGATCGCCCGCGTCTTCGAGCTGCATTTTTTCATCCGCGTTTCTGGCTGCTGTGGTGCGGCCTGGGGCTGTTGTGGCTGATCGTTCAGTTGCCGTATCCGTTGCTGCTGCGGATCGGCCGGGCGCTGGGCGCGCTGATGTACCGGGTGGCCGGCGACCGGCGGCGCATCGCCAGTCGCAACCTGGAACTGTGTTTTCCCGAGAAGTCCGCCGCTGAGCGCAAGCGCTTGCTCAAGGAAAACTTCGCCTCCACCGGCATCGCGTTCTTCGAAATGGCCATGAGCTGGTGGTGGTCGCGTTCGCGCCTGGCGAAGCTGGCCCATGTCGAAGGGCTGGAGCATCTCAAGCAGGCCCAGCGCGAGGGCCGGGGTGTGATCCTGATGGCGCTGCATTTCACCACGCTGGAAATCGGCGCGGCGTTGTTGGGCCAACAGCACACCATCGATGGCATGTACCGCGAGCACAAGAACCCGTTGTTCGACTATATCCAGCGCCGCGGTCGCGAACGGCACAACCTCGATTCCCTCGCGGTGGAACGCGATGATGTGCGCGGCATGCTCAAGTTGCTGCGCGCGGGCCGGGCGATCTGGTATGCACCGGACCAGGACTACGGCGCCAAGCAAAGTGTATTCGTGCCATTGTTCGGCATCCAGGCGGCGACGGTCACCGCCACCAGCAAATTTGCGCGCTTGGGCAAGGCACTGGTCGTGCCGTTCGTCCAGGAGCGCCTGGCTGATGGCAGCGGCTATCGTCTGGTGATCCAGGCGCCGCTGGAGGATTTTCCGGGTCAGACCGAGGAAGCCGATTGCATTCGCATCAACCAGTGGGTAGAAAAATCGGTCAGCCAATGCCCCGGGCAATATCTCTGGGCCCATCGGCGCTTCAAGACCCGTCCGCCGGGTGAGCCGAAGTTGTACGAAAAACGCGGTTGA	MDRPRLRAAFFHPRFWLLWCGLGLLWLIVQLPYPLLLRIGRALGALMYRVAGDRRRIASRNLELCFPEKSAAERKRLLKENFASTGIAFFEMAMSWWWSRSRLAKLAHVEGLEHLKQAQREGRGVILMALHFTTLEIGAALLGQQHTIDGMYREHKNPLFDYIQRRGRERHNLDSLAVERDDVRGMLKLLRAGRAIWYAPDQDYGAKQSVFVPLFGIQAATVTATSKFARLGKALVVPFVQERLADGSGYRLVIQAPLEDFPGQTEEADCIRINQWVEKSVSQCPGQYLWAHRRFKTRPPGEPKLYEKRG	PGPT0013315_972	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LIPID_A_METABOLISM,PGPT0013315-lpxL|htrB-K02517	NA	NA
D1-36_01453	1161			hypothetical protein	ATGACCCCAGCTGAACCGGTAACAGGTTTGATTCTTTCCGGCGGCGGGGCTCGAGCGGCATATCAGGTGGGCGTATTGGCGGCCATCGCCGAGTTATTGCCAGACGGCGCAGACAACCCGTTCCCGGTGATCGTCGGCACGTCGGCTGGCGCGATCAACGCGGTCAGCCTGGCAAGCGGTGCGATGGATTTCAAAAGCGCCATCGAGCGGCTGACGGCGTTCTGGCAAGCGGTGCGCAGCCACCAGGTGATGCGCAGCGATTGGCGTGGCGTGCTCGTCCAGGCGACGCGTTTCATAACGCACAGCCTGTTGGGCCTGGGGGCCAAGTTGCCGGTGGCGCTGGTCGACAGTTCACCGTTGCGCGAATTGCTCCGGGCACAATTCCATGCGTCGGGTATCGAGCAGGCGATCGCCGAGCACCAGCTGCGAGCGGTGGCGGTGACCGCGTTCGGCTACGAGTCCGGACAGGCGGTGACGTTCTATCAAGGTCGCGGCACTATAGATGCCTGGTTGCGGCACCGGCGCATCGGTGTCCCGACGCAGTTGTCGGTGGAGCATCTGCTGGCCAGTTCCGCGATCCCCTTGCTGTTCGCACCGGTCAAGATCGGCCCCCAGTACTTCGGCGACGGCGCGGTGCGCCAATCGGCGCCGATCAGTCCAGCCCTGCACCTGGGAGCCAATCGTGTGTTGGTCATCGGCGTCAGTGGCAACCCCCGCGGCGCGGGTGGGCAAACGCCCCAGGAGCGCAGCTACACCGGCCAGCAACCCACCCTGGCGCAGATCGGCGGACACATGCTCAACAGCACGTTCATCGACAGCCTGGAAAGCGACATCGAGTTGCTTGGGCGCCTCAACCAGTTCAGTCACCTCCTGCCCGAGGGCGTGCCTGCCCATACCCTCGGTGCGGCACCGGTGGAGGTGTTGGTGATTTCGCCAAGCCAACCGATCGACGAGATCGCCGCCCGTCATCGCCAGGAACTGCCCCGCGCGTTGCGGGTGTTCCTGCGCGGGCCGGGCGCGACCAAGACCAGCGGGGCTGGGGTGTTGAGCTATCTGCTGTTCGAGGCGGGGTACTGCGGCGAGCTGATCGAGCTGGGGCGCCAGGATGCGTTGGCGCAGCGTGAGGCGTTGAGCCGGTTCCTGGGCTTGGCTCAGGAGTAG	MTPAEPVTGLILSGGGARAAYQVGVLAAIAELLPDGADNPFPVIVGTSAGAINAVSLASGAMDFKSAIERLTAFWQAVRSHQVMRSDWRGVLVQATRFITHSLLGLGAKLPVALVDSSPLRELLRAQFHASGIEQAIAEHQLRAVAVTAFGYESGQAVTFYQGRGTIDAWLRHRRIGVPTQLSVEHLLASSAIPLLFAPVKIGPQYFGDGAVRQSAPISPALHLGANRVLVIGVSGNPRGAGGQTPQERSYTGQQPTLAQIGGHMLNSTFIDSLESDIELLGRLNQFSHLLPEGVPAHTLGAAPVEVLVISPSQPIDEIAARHRQELPRALRVFLRGPGATKTSGAGVLSYLLFEAGYCGELIELGRQDALAQREALSRFLGLAQE				NA	NA	NA	NA	NA
D1-36_01454	786			hypothetical protein	ATGAAACGCACGTGCACCAACCTGATCGTTGCGGGATCTTTGTTGGCAGGGGGACAGGCCGTGGCAGGCGACCTGCTCCAATGGCAGAGCAACAGCCTGAGCTACCTGTATGGCAAGGATTTCCAGATCAACCCACGCATCCAGCAGACCGTGACGTTCGAGCATGCCGATGCGTGGAAATACGGCGACAACTTTTTCTTCCTCGACCGGATCTTCTACAACGGCCAGGACGACAGCCAGTCCGGCCCGAATACCTATTACGGCGAGTTCAGCCCACGCTTGTCGTTCGGCAAGATTTTTGACCAGAAGCTCGAACTGGGTCCGATCAAGGACGTGCTGCTGGCGATGACCTATGAGTTTGGCGAAGGCGACAACGAGTCTTACCTGATCGGCCCGGGTTTCGACCTGGCCATTCCCGGTTTCGATTATTTCCAGCTCAATTTCTACAACCGCCAGACCGAAGGCTCGCGTGCCGGCGACAACGTCTGGCAGATCACACCGGCCTGGGCCTACACCGTGCCCGTGGGGTCGTCCGATATCCTGATCGATGGTTTCATCGACTGGGTCGTGGACAACGACACCAACTCAAAGGGCACCTACCACGCCAACCTGCACATCGTCCCGCAGATCAAATATGACTTGGGCAAGGCCTTGAAACTGGGCGCCAAGCAACTGTATGTCGGTGTGGAATACGACTACTGGAAAAACAAATACGCGATCGAAGACAGCGGTAGTTTCAAGACCAACCAGAGCAATACCAGTTTCTTGCTGAAGTACCATTTCTGA	MKRTCTNLIVAGSLLAGGQAVAGDLLQWQSNSLSYLYGKDFQINPRIQQTVTFEHADAWKYGDNFFFLDRIFYNGQDDSQSGPNTYYGEFSPRLSFGKIFDQKLELGPIKDVLLAMTYEFGEGDNESYLIGPGFDLAIPGFDYFQLNFYNRQTEGSRAGDNVWQITPAWAYTVPVGSSDILIDGFIDWVVDNDTNSKGTYHANLHIVPQIKYDLGKALKLGAKQLYVGVEYDYWKNKYAIEDSGSFKTNQSNTSFLLKYHF				NA	NA	NA	NA	NA
D1-36_01455	1284			hypothetical protein	ATGCTGGAATGGCTGAACCTGAGCATTCGCTGGGTTCATATGATCACTGGCGTAGCCTGGATCGGCGCGTCGTTCTACTTCGTCTGGCTGGAAAACAACCTCAATCGCGTCAACCCCAAGAGCGGCCTGGCCGGCGACTTGTGGGCCATCCACGGTGGCGGTATCTATCACCTGGAAAAATACAAACTCGCACCACCGGCCATGCCGGACAACCTGCACTGGTTCAAGTGGGAAGCCTACTTCACCTGGATGTCGGGCATCGCACTGTTGTGCGTGGTGTTCTATTGGAACCCGACCGTCTACCTGCTGGCCCCCGGCAGCAGCCTGAGCGGCCCTGAAGGCGTCGCCCTGGGCCTCGGCTCGTTGTTGGTCGGCTGGTTCATCTATTCCTTTCTCTGCGATTCGGCCCTGGGCAAGCGCCCCGCCCTGCTCGGCCTGATTCTGTTCGTGCTGTTGATCGCCGCGGCCTATGGCTTCAGCAAGGTGTTCAGCGGTCGCGGCGCCTACCTGCATGTCGGTGCCGTCATCGGTACGATCATGGTCGGCAACGTGTTCCGCATCATCATGCCGGCCCAGCGTGCGCTGGTGGCGGCTATCGCCGAGAACCGCACCCCCGACCCGGCGCTGCCGGCCAAAGGCCTGTTGCGTTCGCGCCACAACAACTACTTCACCCTGCCGGTGCTGTTCATCATGATCAGCAACCACTTCCCAAGCACCTACGGCAGCCAATACAACTGGCTGATCCTGGCGGGTATCGCAGTGGCGGCGGTGTTGGTGCGGCATTACTTCAACACGCGTCATGACAGCAATCGGTTTGCCTGGACGTTGCCGGTGGGCGCCTTGGCGATGATCTGCCTGGCTTATGTCACAGGTCCCAAGCCGATGCCTGGCGCGCCGGAAGTCGCGAAGGTTCCCGGCGTGATCGAGTATCAGCCACTGCCGGAGACGGCGGTGGGCGGCGGCGCCAAACCCGCAGTACCAGCGCAGGCGCCCGCGCCTGCCCAGGCTGCCAATGCCCAGGGCCCGTCATTCGATAAAGTCCACAGCGTGATCCAGGAACGCTGCTCGGTCTGCCATTCGGCCAAGCCCACCAGCCCGCTGTTCAGCGCGGCGCCGGGCGGGGTGATGTTCGATACGCCACAGCAGATCCAGCAGGAAGCCGCGCGCATCCAGGCCCAGGCCGTGACCACCCAGATCATGCCACTGGGCAATATCACCCAGATGACCCAGCAGGAGCGCGATTTGATTGGCGCCTGGATCACCCAAGGTGCACGGACCAACTAG	MLEWLNLSIRWVHMITGVAWIGASFYFVWLENNLNRVNPKSGLAGDLWAIHGGGIYHLEKYKLAPPAMPDNLHWFKWEAYFTWMSGIALLCVVFYWNPTVYLLAPGSSLSGPEGVALGLGSLLVGWFIYSFLCDSALGKRPALLGLILFVLLIAAAYGFSKVFSGRGAYLHVGAVIGTIMVGNVFRIIMPAQRALVAAIAENRTPDPALPAKGLLRSRHNNYFTLPVLFIMISNHFPSTYGSQYNWLILAGIAVAAVLVRHYFNTRHDSNRFAWTLPVGALAMICLAYVTGPKPMPGAPEVAKVPGVIEYQPLPETAVGGGAKPAVPAQAPAPAQAANAQGPSFDKVHSVIQERCSVCHSAKPTSPLFSAAPGGVMFDTPQQIQQEAARIQAQAVTTQIMPLGNITQMTQQERDLIGAWITQGARTN				NA	NA	NA	NA	NA
D1-36_01456	504	allA	COG3194	Ureidoglycolate lyase	ATGCGCACTCTCAAGATCGAACCATTGACCAAAGAAGCCTTCGCCCCGTTCGGTGACGTGATCGAAACCGACGGCAGCGATCACTTCATGATCAACAACGGTTCGACCATGCGCTTTCATCGCCTGGCGACGGTAGAAACCGCCACGCCGGACGACAAGGCGATCATCAGCATCTTCCGCGCCGACGCGCTGGAGATGCCACTGACCGTGCGCATGCTGGAGCGCCATCCGCTGGGCAGCCAGGCCTTCATTCCGCTGCTCGGCAACCCCTTTCTGATCGTGGTCGCGCCACTTGGCGATGCACCTGTATCAGGCTTGGTCCGCGCCTTCGTCACCAACGGCAGGCAGGGCATCAATTACCATCGCGGCGTCTGGCACCACCCGGTGCTGACGATCGAAAAGCGGGATGACTTCCTGGTGGTTGATCGCAGTGGCACAGGCAACAACTGCGATGAGCATTTTTTCAAAGAGGATGAGTTTTTGATCCTCGCCCCCCACCAATAA	MRTLKIEPLTKEAFAPFGDVIETDGSDHFMINNGSTMRFHRLATVETATPDDKAIISIFRADALEMPLTVRMLERHPLGSQAFIPLLGNPFLIVVAPLGDAPVSGLVRAFVTNGRQGINYHRGVWHHPVLTIEKRDDFLVVDRSGTGNNCDEHFFKEDEFLILAPHQ	PGPT0021505_650	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021505-allA-K01483	NA	NA
D1-36_01457	996	alc		allantoicase	ATGAAAGCTTACGCCGTACCGTTCGAAAAGTTCGTCAACCTGGCCGACGCCCGTCTGGGCACCAAGATCATCTCGGTCACCGACGACTGGTTCGCCGACGCCAACCGCCTGTTCCAGCCGACCCCGGCCGTGTGGAAGGAGGGCGTGTTCGATGACAACGGCAAGTGGATGGATGGCTGGGAGTCGCGCCGCAAGCGCTTCGAAGGCTACGACAGCGCGGTGATCCGCCTGGGCGTGCCGGGCTCGATCAAGGGCGTGGACATCGACACTTCATTCTTCACCGGCAACTACCCGCCATCGGCTTCCCTGGAAGCCTGCTTCCTGGCCGAAGGCGAGCCGGACGAAACCACCCAGTGGACTGAAGTGCTGTCGGCCGTCGAGCTGCAAGGCAACAGCCACCACTACCACGAAATCAGCAACGAGCAAGCATTCAGCCATCTGCGCTTCAACATTTATCCGGATGGCGGCGTGGCTCGCCTGCGGGTCTATGGTGTTCCGTATCGCGACTGGTCCGCCGTGGGCGACAACGAACAGATCGACCTGGCCGCCGCCCTCAATGGCGGGCGCGCCCTGGCCTGCTCCGACGAGCACTTCGGCCGCATGAGCAACATTCTCAACCCTGGCCGCGGCATCAACATGGGCGATGGCTGGGAAACCGCCCGTCGTCGCACGCCTGGCAATGACTGGGTAATCGTCGCCCTGGGCCATGCCGGTATCGTTGAACAAGTCGTCGTCGACACCCTGCACTTCAAGGGCAATTACCCGGACAGCTGCTCGATCCAGGGCGCATTCGTCAAAGGTGGCACCGACAGCCAGATCGAAACCCAATCGCTGTTCTGGCGCGAGCTGCTGCCGAGCCAGAAGCTGGAAATGCACGCCGAACACACCTTCGCCGAACAGATCAAGGCGCTGGGGCCAATCACCCATATCCGCCTGAACGTGTTCCCGGATGGTGGCGTGAGTCGCCTGCGGGTGCTTGGCAAGGTCGCTAAATAG	MKAYAVPFEKFVNLADARLGTKIISVTDDWFADANRLFQPTPAVWKEGVFDDNGKWMDGWESRRKRFEGYDSAVIRLGVPGSIKGVDIDTSFFTGNYPPSASLEACFLAEGEPDETTQWTEVLSAVELQGNSHHYHEISNEQAFSHLRFNIYPDGGVARLRVYGVPYRDWSAVGDNEQIDLAAALNGGRALACSDEHFGRMSNILNPGRGINMGDGWETARRRTPGNDWVIVALGHAGIVEQVVVDTLHFKGNYPDSCSIQGAFVKGGTDSQIETQSLFWRELLPSQKLEMHAEHTFAEQIKALGPITHIRLNVFPDGGVSRLRVLGKVAK	PGPT0000880_843	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_DEGRADATION,PGPT0000880-alc-K01477	NA	NA
D1-36_01458	516	pucL	COG3195	Uric acid degradation bifunctional protein PucL	ATGACCGCTTTCCAAACCCTCAAGCCTTCCACCTTGAGCCGCGAAGCGTTCGTCAAAGCCTTCGCTGACATTTACGAACATTCGCCATGGGTGGCCGAAAAGGCCTTCGACCTGGGCCAGGACCCTTCGATCGACGAGATCGAAACCCTGCACCAGCGCATGAGCGACATCCTGTTGAGTGCCGATCACGCCAGCCAACTGGCCCTGATCAACGCTCACCCGGACCTGGCCGGCAAAGCCGCCGTCCAGGGACAACTGACCGAAGCCAGCACCAACGAACAGGCTGGCGCCGGTATCCACCAATGCACGGCCGAAGAGTTCCAGCGCTTCACCGAGCTGAACGAGGCCTATAAAGCCAAGTTCAAGTTTCCCTTCATCATGGCGGTAAAAGGCAGCAACCGGCACCAGATCCTCGCCGCGTTCGAGACGCGCATCCACCACTCGGCAGACGCCGAATTCAAATGCGCGCTGGCAGAGATCAACAAGATCGCGTTGTTCCGATTACTGACCCTTTAG	MTAFQTLKPSTLSREAFVKAFADIYEHSPWVAEKAFDLGQDPSIDEIETLHQRMSDILLSADHASQLALINAHPDLAGKAAVQGQLTEASTNEQAGAGIHQCTAEEFQRFTELNEAYKAKFKFPFIMAVKGSNRHQILAAFETRIHHSADAEFKCALAEINKIALFRLLTL	PGPT0021130_513	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_DEGRADATION,PGPT0021130-uraD-K13485	NA	NA
D1-36_01459	927			hypothetical protein	GTGAGCGCTGACTACCCACGCGACCTGATCGGTTACGGCAGTAACCCTCCCCATCCCCAATGGCCGGGCAATGCCCGCATCGCCCTCTCCTTCGTACTCAACTATGAGGAAGGTGGCGAGCGCAACGTGTTGCATGGCGACAAGGAGTCCGAAGCGTTCCTTTCGGAGATGGTCGCGGCGCAACCGCTGCAGGGCGAGCGCAACATGAGCATGGAGTCGCTGTACGAGTATGGCAGCCGCGCAGGGGTCTGGCGGATCCTCAAGCTGTTCAAGGAGTTCGATATACCACTGACCATCTTCGCCGTGGCCATGGCTGCCCAGCGTCATCCGGACGTGATTCGCGCGATGGTCGCCGCCGGCCACGAAATCTGCAGCCATGGCTATCGCTGGATCGATTACCAATATATGGACGAGGCCCAGGAACGCGAGCACATGCTCGAAGCGATCCGCATCCTCACCGAAATCACTGGCGAGCGTCCGCTGGGCTGGTACACCGGCCGCACCGGCCCGAACACCCGCCGGCTAGTGATGGAAGAAGGCGGCTTCCTCTACGACAGCGACACCTACGACGACGACCTGCCCTACTGGGAGCCAAACAACCCCACCGGCAAGGCGCACCTGGTCATCCCTTACACCCTGGACACCAATGACATGCGCTTCACCCAAGTGCAGGGTTTCAACAAGGGCGACGATTTCTTCCAGTACCTCAAGGACGCTTTCGACGTGTTGTATGCCGAAGGCGCCGAAGCGCCGAAGATGCTTTCCATCGGCCTGCATTGCCGCCTGATCGGCCGCCCCGCGCGCCTGGCCTCCCTCAAGCGTTTCCTCGAATACGTCAAGGGTCATGAGCAGGTGTGGTTCAGTCGCCGCGTCGACATCGCTCGCCATTGGCAGCAGACCCATCCGTATCAGGGAGCGTCCAAATGA	MSADYPRDLIGYGSNPPHPQWPGNARIALSFVLNYEEGGERNVLHGDKESEAFLSEMVAAQPLQGERNMSMESLYEYGSRAGVWRILKLFKEFDIPLTIFAVAMAAQRHPDVIRAMVAAGHEICSHGYRWIDYQYMDEAQEREHMLEAIRILTEITGERPLGWYTGRTGPNTRRLVMEEGGFLYDSDTYDDDLPYWEPNNPTGKAHLVIPYTLDTNDMRFTQVQGFNKGDDFFQYLKDAFDVLYAEGAEAPKMLSIGLHCRLIGRPARLASLKRFLEYVKGHEQVWFSRRVDIARHWQQTHPYQGASK	PGPT0012156_288	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	FUNGICIDAL_COMPOUNDS|ANTIBIOTICS	FUNGICIDAL-CHITINOLYTIC_ACTIVITIES,PGPT0012156-chitin_deacetylase-NA	NA	NA
D1-36_01460	390	pucM	COG2351	5-hydroxyisourate hydrolase	GTGCCTGGCTGTTCCGCATCCGGGCACGCACAATCGATGGGACGTCTGACTACACACGTTTTAGATGCCGCACACGGCTGTCCAGGCAGCGCGATCAAGATCGAACTGTATCGCGTCGAAGGTTCAGAACTGCAACGGGTTGCCAGTGCAGTGACCAACAGCGATGGCCGTTGTGACGCACCACTGCTGCAAGGAGACGACTACCGCAGCGGGGTCTACCAGATCCAATTCCACGCCGGCGATTACTACCGCGCCCGTGGCGTGCAACTGTCCGAGCCGGCCTTCCTGGATGTGGTGGTGCTGCGCTTTGGCATTTCGCAAGAGCAGGAGCATTACCATGTGCCGTTGCTGATTTCGCCCTACGCCTATTCAACCTATCGAGGCAGCTGA	MPGCSASGHAQSMGRLTTHVLDAAHGCPGSAIKIELYRVEGSELQRVASAVTNSDGRCDAPLLQGDDYRSGVYQIQFHAGDYYRARGVQLSEPAFLDVVVLRFGISQEQEHYHVPLLISPYAYSTYRGS	PGPT0021125_1404	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
D1-36_01461	627	rhtB_2	COG1280	Homoserine/homoserine lactone efflux protein	ATGAATCTGGAAACCTGGTTGTTGTTCAGTGGTGCCGCGTTGGTGGTAATCCTTATCCCCGGCCCGTTATCGTTACTGATGATCAGCAACAGCCTGAACTACGGCTTGCGCCGATCCTACCCGGCTTTCCTTGGTGGAGTGGTGGCATCGATCTGCTTGTTGAGTGCGTCGGCGCTGGGGCTCGGTGCCCTGTTGCTGGCGTCGGAGCAGTTGTTCAGCGCCTTGAAAATCGTCGGCGCGCTGTACCTGTTCTACCTCGCCTGGCAGAGCTGGCAGCAATCGCGCCAGCCTTCCCAGGGTGCCGAGGTACCGCAAGCCGCCCCCATTCCGCGTTTCCGCGCGCTGTTCGGCCGTGCGTTCGTACTCGGCGCGAGCAACCCGAAGGACATCCTTTTCTTCGCGGCATTCCTGCCGCAATTCCTGAGTGCCGAGCAGCCGTTCTTGCCGCAACTGCTGGTGATGATCGCCACTTGGACCGTGCTCGACCTGCTCTGCAAGCTGGCGTATGGCCTCGGTGCCCATGGCGCTGCCCGCTATCTGCGCACGGGCAAGGGCCAGAGCTGGTTCAACCGGGTCAGCGCCGGGTTGTTCAGCGGGGCCGGGGCGGCCTCCTTGCTGAGCCGCTGA	MNLETWLLFSGAALVVILIPGPLSLLMISNSLNYGLRRSYPAFLGGVVASICLLSASALGLGALLLASEQLFSALKIVGALYLFYLAWQSWQQSRQPSQGAEVPQAAPIPRFRALFGRAFVLGASNPKDILFFAAFLPQFLSAEQPFLPQLLVMIATWTVLDLLCKLAYGLGAHGAARYLRTGKGQSWFNRVSAGLFSGAGAASLLSR				NA	NA	NA	NA	NA
D1-36_01462	1350	adeP_1	COG2252	Adenine permease AdeP	GTGGAAAGCCGCAAACCCGAAGCCCAGACCTTGGATCTTTCGCCGCCATCACGCAGTGGCTGGCTGGAGCGCATCTTCAAACTCAGCTTGCATGGCACCACGGTGAAGACCGAGTTGATTGCCGGTGTGACGACTTTCATCACCATGGCCTACATCATTTTCGTCAACCCCAACATCATGGCCGACGCGGGCATCGATCATGGCGCCGCGTTCGTCGCCACCTGCATTGCCGCCGCCCTGGGTTGCCTGCTGATGGGCCTCTACGCGAACTGGCCGGTGGGCCTCGCGCCGGGCATGGGATTAAACGCCTTTTTCACTTACACCGTGGTCGGCACCATGGGCTACAACTGGGAAACCGCCTTGGGCGCGGTGTTTATTTCCGGCGTGCTGTTCATGTTCCTGACCTTGTCACGGGTGCGTGAATGGCTGCTCAACAGTATCCCGGTGAGCCTGCGCTACGCGATGGGCGCGGGGGTCGGGCTGTTTCTCGGGCTGATCGGCCTGAAAACCGCCGGCATCATCGTCGACAGCCCCGCCACGCTGATCAAGCTGGGCTCGCTGCATGAACCGGGACCGCTGCTGGCTGCCGTATGCTTCCTGATGATTGCCGTGCTGAGCTACCACCGCGTGTTCGGCGCGATCCTCATCAGCATCATCGCCGTGACCCTGGCCGGTTGGGGCCTGGGGCTGGTGCAATACAACGGCGTGATGTCCACGCCGCCCAGCCTGGCACCGACCTGGATGGCCATGGACGTGGCCGGTGTATTCAACGTCAGCATGATCAGCGTGGTGCTGGCTTTCCTGTTCGTACATATGTTCGATACCGCCGGGACGCTGATGGGCGTGGCCCAGCGCGCCGGCCTGGTGAAACCGGATGGCAAGATCGAAAACCTGTCCAAGGCGTTGAAGGCGGACAGCGCCTCCAGCGTGTTCGGCGCCATGGTCGGCGTGCCGCCCGTGACCAGCTACGTGGAAAGCGCCGCCGGAGTCGCGGCCGGTGGCCGCACGGGCCTTACCGCAGTCACGGTCGGTGTGCTGTTCATCGCCGCCATGTTCTTCGCGCCGCTGGCCGGGATGATCCCTGCTTATGCGACAGCCGGCGCCCTGATCTATGTCGCCATGCTGATGATGGGTGGCATGGCCCATATCGAATGGGACGAAGCGACCGACAGCATTCCAGCGATCGTCACCGCCATCATGATGCCTCTGACGTTCTCGGTCGCCGATGGCATCGCGCTCGGCTTCATCACTTACGTCGTGCTCAAGGCTGGCACCGGTAAACACAAGGAAATATCCGTCAGTCTCTGGGTGCTTTGTGCGATCTTTATCGCCAAGTTCATCTTCTTGTAA	MESRKPEAQTLDLSPPSRSGWLERIFKLSLHGTTVKTELIAGVTTFITMAYIIFVNPNIMADAGIDHGAAFVATCIAAALGCLLMGLYANWPVGLAPGMGLNAFFTYTVVGTMGYNWETALGAVFISGVLFMFLTLSRVREWLLNSIPVSLRYAMGAGVGLFLGLIGLKTAGIIVDSPATLIKLGSLHEPGPLLAAVCFLMIAVLSYHRVFGAILISIIAVTLAGWGLGLVQYNGVMSTPPSLAPTWMAMDVAGVFNVSMISVVLAFLFVHMFDTAGTLMGVAQRAGLVKPDGKIENLSKALKADSASSVFGAMVGVPPVTSYVESAAGVAAGGRTGLTAVTVGVLFIAAMFFAPLAGMIPAYATAGALIYVAMLMMGGMAHIEWDEATDSIPAIVTAIMMPLTFSVADGIALGFITYVVLKAGTGKHKEISVSLWVLCAIFIAKFIFL	PGPT0007325_2796	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
D1-36_01463	438			hypothetical protein	ATGCTTGACCTTAAAAACCCCACCTCCCAGCAAATGGCCATGGAAGCATTCTTCTTTGGTTACCAGGCTTTCACCGCCAAGGCCGATGAAATGCTCGAACGCCGGGGCTTGAGCCGAGTGCATCAGCGCATCGTCTTTTTCATCGCCCGTTACCCATCCTTGAGCGTCAAGGAGTTGCTGGCGCTGCTGGGCGTGACCAAACAGGCATTGAACATGCCATTGCGGCAATTGATGGAAATGCATCTGGTCAACAGCGTCGCGTCCGAGGCCGACAAGCGCAAACGATTGTTGGAGCTGACCGCCGAGGGCCAGCGATTCGAACAGGCGCTGCGCCGCGAACAAGTGAAATTGCTGGAGCGGGTGTTTGCCGAGGCCGGGGAAGCGGCGGTGGATGGCTGGCTGGCGGTGAACCTGGCCTTGGGTAAATCTGGCGAGTGA	MLDLKNPTSQQMAMEAFFFGYQAFTAKADEMLERRGLSRVHQRIVFFIARYPSLSVKELLALLGVTKQALNMPLRQLMEMHLVNSVASEADKRKRLLELTAEGQRFEQALRREQVKLLERVFAEAGEAAVDGWLAVNLALGKSGE				NA	NA	NA	NA	NA
D1-36_01464	1167	lysN	COG1167	2-aminoadipate transaminase	ATGGCTTTTTCCGAACGTGTCTCGCGCCTCAAAAGTTCTCTTATCCGCGAAATCCTCGCCGCGGCGCAGCGCCCGGAAGTGATGTCGTTCGCCGGTGGCCTGCCGGCCGAAGCCATGTTGCCAAAAGTGGAGTGGGCGGCGATGCCGTTGTCCATGGGGCAATACGGCATGAGCGAAGGTGAGCCGGCCCTGCGCGAAGCGTTGGCGGCGCAGGCGCGGTCGTTAGGGCTGGCTTGTGAGGCGAGCCAGGTTTTGGTGGTCAGCGGTTCCCAGCAAACCCTCGACCTGACGGCGAAGTTGTACATCGACGTCGGCACCGAGGTGATGCTCGAGGCACCTACCTACCTGGCGGCCTTGCAGATCTTCCAACTGTTCGGCGCCGACTGCATCACCGTCCCCCTTGAGGCGGATGGCCCGGACCTGGAACAACTGCGGGCGCGCCTGGAGCGGCATCGCCCGGCGTTCATCTACCTGATCCCGACGTTCCAGAATCCATCGGCGGTACGCTACAGCGAGGCCAAGCGCGATGCCGTGGCGGCGCTGCTGGATGAATTCGGCGTGACCCTGGTCGAAGACGAACCCTATCGCGAACTGACCTTCGACGGTGGCAGCGCCACGCCAATCGCCAGTCGCTTGAAAACGGCCAGCTGGATCTACACCGGCACCGTGTCGAAAACCCTGCTGCCGGGGCTGCGCGTGGGTTACCTGATCGCCAGTCCGGACCTGTTCCCGCACCTGCTGCGGCTCAAGCAGTCGGCGGACCTGCACACCAATCGCATCGGCCAATGGCAGGCGCTGCAGTGGATTGGCACCGAGCAATATCGCCGCCATATGCAGGAGTTGAGAGATTTCTATCGGGATCGGCGCGACCGCTTCGAGGCTGCATTGCAAAGGCATTTTGCCGACATCGCCGATTGGAACACGCCCCAGGGTGGGCTATTTTTCTGGCTGACGCTCAAGCAACCGCTGGACACCCGCACCTTGCTCGCCGCAGCGCTGGCGGCTGACGTGGCGTTCATGCCAGGGGAACCGTTTTTCCCTGAGCCAGACAAGCATCCTGGCCACTTGCGCTTGAACTTCAGCCACATCGATCCGGCGCGACTGGATGAAGGGTTGAAGCGGTTGGCGGGGGTGGTACGGGGGGCGTTGGCGGCCAGGGCAGCCTGA	MAFSERVSRLKSSLIREILAAAQRPEVMSFAGGLPAEAMLPKVEWAAMPLSMGQYGMSEGEPALREALAAQARSLGLACEASQVLVVSGSQQTLDLTAKLYIDVGTEVMLEAPTYLAALQIFQLFGADCITVPLEADGPDLEQLRARLERHRPAFIYLIPTFQNPSAVRYSEAKRDAVAALLDEFGVTLVEDEPYRELTFDGGSATPIASRLKTASWIYTGTVSKTLLPGLRVGYLIASPDLFPHLLRLKQSADLHTNRIGQWQALQWIGTEQYRRHMQELRDFYRDRRDRFEAALQRHFADIADWNTPQGGLFFWLTLKQPLDTRTLLAAALAADVAFMPGEPFFPEPDKHPGHLRLNFSHIDPARLDEGLKRLAGVVRGALAARAA	PGPT0007135_1902	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
D1-36_01465	372			hypothetical protein	GTGATCGTCAAAGCGCTTCGAGTTGGCCTGGGCCAGCTCATCATCCTTATCGATTTCATCACCCGCCCCGGCAAGAAACAGCGCCCGGCCGACGCCCAGGCGCAAGTCGACCAGGCCGCTCGCAGCCTGACCCTGTATCAATTTCATGCCTGCCCCTTCTGCGTGAAGACTCGCAGGACCCTGCGTCGCCTGAACGTACCGGTGGCCTTGCGCGATGCCAAGAACAACGAGCAGGATCGCCAGACGCTGCTGGAACAGGGCGGCAGGATCAAGGTGCCGTGCCTGCGCATTGAAGAAAATGGCGAGACCACCTGGATGTATGAATCCAAGGTGATCATTGATTATCTGGATAAGCGGTTTTCGGCGGTCTGA	MIVKALRVGLGQLIILIDFITRPGKKQRPADAQAQVDQAARSLTLYQFHACPFCVKTRRTLRRLNVPVALRDAKNNEQDRQTLLEQGGRIKVPCLRIEENGETTWMYESKVIIDYLDKRFSAV				NA	NA	NA	NA	NA
D1-36_01466	546	folE_2	COG0302	GTP cyclohydrolase 1	ATGTCTCTGGAACAGAATTACACCGCGATTCTCGGCCAATTGGGCGAGGACGTTTCCCGCGAGGGCCTGCTCGACACGCCCAAGCGCGCTGCCAAGGCCATGCAGTACCTTTGCCGCGGTTATGAACAGACCCTGGAAGAAGTCACCAACGGTGCCTTGTTCAGCTCCGACAACAGCGAGATGGTGCTGGTCAAGGACATCGAGTTGTACTCGCTGTGCGAACACCATTTGCTTCCGTTTATCGGCAAGGCCCATGTGGCCTACATCCCGAGCGGCAAGGTATTGGGCCTGTCGAAGGTCGCGCGCATCGTCGATATGTACGCCCGTCGCCTGCAGATCCAGGAAAACCTCAGTCGCCAGATCGCCGATGCGGTCCAGCAGGTGACCGGTGCCCTGGGCGTGGCGGTGGTGATCGAGGCCAAGCACATGTGCATGATGATGCGCGGTGTGGAAAAGCAGAACTCGTCGATGATCACTTCAGTGATGCTGGGCGAATTCCGCGAAAATGCGGCGACCCGCATGGAATTCCTAAGCCTGATCAAATAA	MSLEQNYTAILGQLGEDVSREGLLDTPKRAAKAMQYLCRGYEQTLEEVTNGALFSSDNSEMVLVKDIELYSLCEHHLLPFIGKAHVAYIPSGKVLGLSKVARIVDMYARRLQIQENLSRQIADAVQQVTGALGVAVVIEAKHMCMMMRGVEKQNSSMITSVMLGEFRENAATRMEFLSLIK	PGPT0007875_4752	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007875-folE-K01495	NA	NA
D1-36_01467	558	smrA	COG2840	putative DNA endonuclease SmrA	ATGCAAGACGACGACTTTTCCCTGTTCAAAAGTGCGATCCAGGGCGTAAAACCAATCAAACACGATCGCGCCGAAACGGGCAAACCCAAGGCCGATCGCGCACAAATCGCCAAGCTGCGCCAGGCCGCAACCGTGCGCACCGACGCGACAACCGTGGATGGCTTGTCCGATCAGTTCGTCATCGACGTCGGCCCCGAAGATGAATTGATGTGGGCGCGCGACGGCGTTCAGGAAAGCCAGATGCGCAAGCTGAAGGTAGGCCAGATCCCCTTCGAAGGCAGCCTCGACCTGCACGGCATGACCGTCGAAAAAGCCCGGGAGACCCTCTGGGCCTTCCTGGCCGAAGCCACCAGATTCGAAATCCGCTGCGTACGCGTCACCCACGGCAAAGCCGTGCGGCTGGACGGCAAGCGCCCCATGATCAAGAGCCACGTCAACACCTGGCTGCGCCAGCACCCACAAGTGCTCGGCTTCACCTCCTGCCAGGCGAAGCACGGCGGCGCCGGTGCGGTCTACGTGATGCTCAAGCGCACCATGATGGAAGGCCGCGACGAGTAA	MQDDDFSLFKSAIQGVKPIKHDRAETGKPKADRAQIAKLRQAATVRTDATTVDGLSDQFVIDVGPEDELMWARDGVQESQMRKLKVGQIPFEGSLDLHGMTVEKARETLWAFLAEATRFEIRCVRVTHGKAVRLDGKRPMIKSHVNTWLRQHPQVLGFTSCQAKHGGAGAVYVMLKRTMMEGRDE				NA	NA	NA	NA	NA
D1-36_01468	321			hypothetical protein	ATGAAGATATCCGATGGTTTTGACGCACGTCGCTTGCGGCCCAAGGGCCCGAGCAACTGGCGATTTCGTATCGGCGCGGGGATCGCGGCCCTGCTGGCGACGCTCGGCGTGCTACTGGCGATGGCTGGCGCCGCAAGCCTACTCGGTCGCCCGCCCGCACTGGGCGAGCTGAACGCCACACCGCTGGGTTCGGCGGTCATCCTGGCAATCGGACTGCTGGTACTGCTGTTGGGCATCTGGCTCTGGCGGCGCTGCCGCCGTCGCGCCCGCCAATCCCTGGAGCTGGCCATGGCTCCGCATCTGATGAAAAAACACGACTGA	MKISDGFDARRLRPKGPSNWRFRIGAGIAALLATLGVLLAMAGAASLLGRPPALGELNATPLGSAVILAIGLLVLLLGIWLWRRCRRRARQSLELAMAPHLMKKHD				NA	NA	NA	NA	NA
D1-36_01469	591	sttH		Streptothricin hydrolase	ATGTCCGTTCCAAAAACGATGTTTCAACTCAGCGGCCGCGGTTACGCAGCGGCCAACCTGAGTCAAGCGACCCTGATCATCATCGATGCCCAGAAAGAATACCTCGCCGGCCCCCTCGCCCTGAGCGGCATGGATGCGGCGGTCGCGAACATCAAGCAATTGCTCGGCGCTGCCCGCGCCGCCGGCCGGCCGATCGTACATGTGCGCCACCTGGGCACCCATGGCGGGCTGTTCGATCCACAGGGCGAGCGCGGCGAATTCATTCCGGGCCTTGAACCCCAGGGCGACGAAACCGTGATCGAAAAACTGCTGCCGAGCGCTTTCCACGGCACTGACCTGAAGAAGCGCCTGGAAGACCTCGGTCCCCTGGACCTGATCGTCTGTGGTTTCATGAGCCACTCCAGCGTCAGCACCACGGTGCGGGCAGCCAAGAACCTGGGTTTTCGTTGCACCCTGGTCGAGGACGCCTGCGCCACTCGTGATCTGCCGCACAAGGGCGGCGTACTCAGCGCCGACCACGTGCACCAGACCGAAATGGCGATCATGGCAGACAACTTCGCCACACTGGCCTTGACCCACGATTTCACCTGA	MSVPKTMFQLSGRGYAAANLSQATLIIIDAQKEYLAGPLALSGMDAAVANIKQLLGAARAAGRPIVHVRHLGTHGGLFDPQGERGEFIPGLEPQGDETVIEKLLPSAFHGTDLKKRLEDLGPLDLIVCGFMSHSSVSTTVRAAKNLGFRCTLVEDACATRDLPHKGGVLSADHVHQTEMAIMADNFATLALTHDFT				NA	NA	NA	NA	NA
D1-36_01470	909	prmB	COG2890	50S ribosomal protein L3 glutamine methyltransferase	GTGATCACTTCCCGCCTTCGTACCCTGCGCGACCATATCCGTTGGGCCGTCAGCCGTTTCCATGGGGAGGATCTGTTCTTTGGCCATGGCACCGACAACGCCTGGGACGAAGCGCGCCAGCTAGTCCTGGGCGCGTTGCACCTGCCTTGGGAAATTGCCGACAGCTACCTGGACTGCCGTCTAGAAGACGAGGAGTTGGTGCATGTGCAGCGTCTGCTGCGCCGACGTATCGCTGAGCGCATTCCGGCCGCTTACCTGTTGGGCGAGGCCTGGTTCTGCGGCATGTCGTTCATCGTCGACGAACGCGTGCTGATTCCTCGTTCGCCCATTGGCGAGTTGATCGAAAAACGCTTCGAGCCTTGGCTGGGCCAGGAGCCCGCGCGAATCCTCGACTTGTGTACCGGCTCCGGTTGCATCGGGATTGCCTGCGCCTATGAGTTCCCCGAGGCCGAGGTGGTGTTGGCCGACCTGTCGTTCGAAGCGCTGGAAGTCGCCAACCAGAACATCGAGCGCCACGGTGTGGACGAACGGGTGTTTACCGTCCAGGGCGATGGTTTCGATGGGCTTCCTGGGCAACGTTTCGACCTGATCGTGTCGAACCCGCCCTACGTCGACGCGGAAGATTTCGCCGACATGCCTCAGGAATACCAGCACGAGCCTGAGCTGGGCCTGGCCTGTGGCGACGACGGTTTGAACCTGGTACGCCGGATGCTCGCCGAGGCGGCCGATCATCTGACGGACAAAGGATTGTTGATCGTCGAAGTGGGCAACAGCCAGGTTCATGTCGAGGCGCTTTATCCAGAAGTCGACTTCGCCTGGCTGGAGTTCGAGCGCGGTGGGCACGGCGTGTTCATGCTCAGCGCCGAGCAATGCCGTGAGCACCAGGCGTTGTTCGCTTCGCGGGTTTGA	MITSRLRTLRDHIRWAVSRFHGEDLFFGHGTDNAWDEARQLVLGALHLPWEIADSYLDCRLEDEELVHVQRLLRRRIAERIPAAYLLGEAWFCGMSFIVDERVLIPRSPIGELIEKRFEPWLGQEPARILDLCTGSGCIGIACAYEFPEAEVVLADLSFEALEVANQNIERHGVDERVFTVQGDGFDGLPGQRFDLIVSNPPYVDAEDFADMPQEYQHEPELGLACGDDGLNLVRRMLAEAADHLTDKGLLIVEVGNSQVHVEALYPEVDFAWLEFERGGHGVFMLSAEQCREHQALFASRV				NA	NA	NA	NA	NA
D1-36_01471	798			hypothetical protein	ATGACTGAGACTCAGACTTCTCCCGACATCGCCGCCGAAGCGGCCGCGCCAGCAGGCCCATCGGCGCCCGAGCTGCCTTGGACGGACGTTGAGGCCGAACATCACAAGATGCTTCGGCTGGCCCCGCTCAAGACCGATCGCGCCACCGGTGCGCGGCCGCTGCGGTTTGTCGAGTTCAGCTATGCCGAGCGCCATAGCAAGGAACGCAGCTTGCTGCGCATGAGCATTCAGTTGCCCGGCCAGCGAGTGCGCAAGGAACAGAATCACCTCGACGTGTGGGCCGACCACGTCGAGAAACGCCTGTTCTTCTCGCCCGACAGCTTGCAAGTCGAGCCCTTGAACCGGGGCATTGGCCGCTTCCTCGCCGCCCAGGGCATCACTTGGGCCAAGAAGCGTTGGTCGACCTATCGGGTTGACGGCACTGACCTGAACAATAAGGACGCGCTGAACGAAGACACCCGCTTGCGTCGTGATCACTTCCTCAAAGCCCACGGCTTCGAAGTGGTCTACGCCGATGCCCAACACCTCAAGGGCAGCGTCAAGCAAGCCCAGGTTGGCGAGCTGCTGGGCGACTGGAACACCGAGAAGCTGCAGTTCGTCGAGATTCTCGAAGCCGCGCAGATGTTGCAACAGGCCGAGCAGAATCTGGCGGAGCAGGAAGTCAAGCTGCAGAAGCAGGAAGAGAAGGTCAATAAGTTCAAGCGTGAAGACACGGGCCTGCGCTTCACCATCACCTGCCTGGTGGCGTTTGCGATGTTCCAGGCCGGGTTGCTGATCTGGATTGCTACACGGCATTGA	MTETQTSPDIAAEAAAPAGPSAPELPWTDVEAEHHKMLRLAPLKTDRATGARPLRFVEFSYAERHSKERSLLRMSIQLPGQRVRKEQNHLDVWADHVEKRLFFSPDSLQVEPLNRGIGRFLAAQGITWAKKRWSTYRVDGTDLNNKDALNEDTRLRRDHFLKAHGFEVVYADAQHLKGSVKQAQVGELLGDWNTEKLQFVEILEAAQMLQQAEQNLAEQEVKLQKQEEKVNKFKREDTGLRFTITCLVAFAMFQAGLLIWIATRH				NA	NA	NA	NA	NA
D1-36_01472	966	estD	COG1073	Esterase EstD	ATGATGTTAAAACTGTTTGTGTTGAGCCTTACCCTCTTCACGGGCCTGGTCTGCGGCGTCGCCCAGGCCACCGTCCTGCAACGTCCCATCAGCCTCGACACCGGCAACGGTGAACTTTTCGGCTCCCTGCTGCTGCCAAAGTCCGACACGCCGGTGCCCGTCGTCCTGATCATTTCTGGCTCAGGCCCTACGGATCGTGACGGAAACAACCCCGAAGGCGGGCGCAATGACAGCCTCAAGCGCCTGGCCTGGGTGTTGGCCCGGCAGAACATCGCCAGCGTGCGCTACGACAAGCGCGGGGTGGCCGCCAGCCTCGCCGCCACACCGGACGAACGCAACCTGAGCGTCGAAGCCTACGTAGCCGACGCCGTGGCCTGGAGCCACAAGCTGGCCGCCGATCCTCGCCTGGGCCCACTGATCCTGCTGGGCCACAGCGAAGGGGCGCTGATCGCCAGCCTCGCCGCGCCCCAGGCCAACGCGGCGGCGGTCATCTCGGTGGCCGGCAGCGCGCGCCCCATCGACGAGGTCTTGCGCCAGCAACTCAGCGCCCGCCTGCCACCGCCGCTGATGCTGCGCAGCAACGAGTTGCTCGACAGCCTCAAGGCCGGCCGTCCCGACCCGAATGTTCCTGCGCAACTGCAGGTCATCTTTCGCCCCAGCGTGCAGCCTTACTTGATCTCGCTGTTCCGCCAGGATCCGGCCCAGGCCTTCGCAGCCCTGAAAATGCCGGCGCTGATCATCCAGGGCAGCCACGATATCCAAGTCAGCGTCGACGATGCCCGGCAATTGAAAGTGGCCAAGCCCGACGCCGAACTGGCGCTGATCAAGGGCATGAACCATGTGATGCGCATCGTGCCCAACGACGTCAAGCGGCAACTGGCCTCCTACAAGGATCCGAACCTGCCCCTGGCGGCGGAGCTCAGTGCCCACATCCTGAGTTTTATTGGCACGTTGGCCGCCCGTTAA	MMLKLFVLSLTLFTGLVCGVAQATVLQRPISLDTGNGELFGSLLLPKSDTPVPVVLIISGSGPTDRDGNNPEGGRNDSLKRLAWVLARQNIASVRYDKRGVAASLAATPDERNLSVEAYVADAVAWSHKLAADPRLGPLILLGHSEGALIASLAAPQANAAAVISVAGSARPIDEVLRQQLSARLPPPLMLRSNELLDSLKAGRPDPNVPAQLQVIFRPSVQPYLISLFRQDPAQAFAALKMPALIIQGSHDIQVSVDDARQLKVAKPDAELALIKGMNHVMRIVPNDVKRQLASYKDPNLPLAAELSAHILSFIGTLAAR				NA	NA	NA	NA	NA
D1-36_01473	1092	aroC		Chorismate synthase	ATGTCCGGCAATACCTACGGCAAGCTGTTCACCGTCACCACCGCGGGCGAAAGCCATGGCCCGGCGTTGGTCGCCATTGTCGACGGCTGCCCGCCGGGCCTGGAGATTTCCCTGGACGACCTTCAGCGTGACCTGGACCGCCGCAAGCCCGGCACCAGCCGCCACACCACCCAGCGCCAGGAAGCCGATGAGGTCGAAATCCTTTCCGGCGTCTTCGAGGGGCGCACCACCGGCTGTGCCATTGGCCTGCTGATCCGTAACACCGACCAGAAGTCCAAGGACTACTCGGCCATCAAGGATCTGTTCCGCCCGGCTCACGCCGACTACACCTACCATCACAAGTACGGCGAGCGCGACTACCGCGGCGGCGGGCGCAGCTCGGCCCGGGAAACCGCGATGCGCGTGGCGGCCGGGGCGATCGCCAAGAAATACCTGGCCAGCCAGGGCATCGTCATCCGCGGCTACATGAGCCAACTGGGCCCGATCGAAATTCCGTTCAAGACCTGGGACTCGGTCGAACAGAATGCCTTCTTCAGCCCCGACCCGGACAAGGTGCCGGAGTTGGAGGCCTACATGGACCAGCTGCGCCGGGACCAGGATTCGGTTGGCGCGAAGATCACCGTGGTCGCCGAAGGCGTGATGCCTGGCCTTGGCGAGCCGATCTTTGACCGTCTCGACGCCGAGCTGGCCCACGCGCTGATGAGCATCAACGCGGTGAAGGGCGTGGAAATCGGCGCCGGTTTCGCCTGCGTCGCCCAGCGCGGCACCGAACATCGTGACGAACTGACGCCACAAGGTTTCCTGAGCAATAACGCCGGTGGGATTCTCGGCGGCATCTCGTCGGGCCAGCCGATCGTCGCGCACCTGGCCTTGAAGCCGACGTCCAGCATCACCACGCCGGGGCGCTCCATCGATATCCATGGCAACCCGGTGGACGTCATCACCAAGGGCCGCCATGATCCGTGCGTGGGCATCCGCGCCACGCCGATCGCCGAAGCGATGATGGCCATCGTGCTGATGGATCATCTGTTGCGCCATCGCGGCCAGAATGCCGACGTTCACGTCGGCACCCCGGTGCTGGGTCAGCTTTGA	MSGNTYGKLFTVTTAGESHGPALVAIVDGCPPGLEISLDDLQRDLDRRKPGTSRHTTQRQEADEVEILSGVFEGRTTGCAIGLLIRNTDQKSKDYSAIKDLFRPAHADYTYHHKYGERDYRGGGRSSARETAMRVAAGAIAKKYLASQGIVIRGYMSQLGPIEIPFKTWDSVEQNAFFSPDPDKVPELEAYMDQLRRDQDSVGAKITVVAEGVMPGLGEPIFDRLDAELAHALMSINAVKGVEIGAGFACVAQRGTEHRDELTPQGFLSNNAGGILGGISSGQPIVAHLALKPTSSITTPGRSIDIHGNPVDVITKGRHDPCVGIRATPIAEAMMAIVLMDHLLRHRGQNADVHVGTPVLGQL	PGPT0012875_3365	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012875-aroB-K01736	NA	NA
D1-36_01474	1146	hcaT		putative 3-phenylpropionic acid transporter	ATGGCGGCGTTGCCGTACTGGCGGCTTTCCAGTTTCTACCTGTTCTATTTCGCGTTGCTCGGTTCCACTGCGCCGTTCCTGGCGCTGTACTTCGATCACCTGGGGTTCAACGCGGCACGCATCGGCGAGCTGGTGGCGATCCCCATGCTGATGCGCTGCGTGGCGCCGAATCTCTGGGGGTGGCTGGGGGACTACACGGGCCGGCGCCTGGCGATCGTGCGGTTCGGCGCGATCTGCACGCTGCTGAGCTTCTCCCTGATCTTCATCGACAAAAGCTACGCCTGGCTGGCGATGGTCATGGCGCTGCATGCATTCTTCTGGCACGCGGTGCTGCCGCAGTTCGAAGTCATCACCCTGGCTCACTTGAGCGGACAAGCCTCGCGCTACAGCCAGATCCGCCTGTGGGGCTCCATCGGGTTCATCATCACGGTCGTTGTGCTCGGCCGCCTGTTCCAATGGCTGAGCCTGGACATTTATCCGGTGGCCCTGGCCTTGATCATGGGTGGCATCGTGCTGAGCAGCTTCTGGGTGCCCAACGCTCAGCCGGTGCAGGGGCCGCGGGTGGCCGGGGACGGATTCCTGCGGCAGTTGCGCAACCCGGGGGTGCTGGCGTTTTATGCCTGCGTCGGCCTGATGCAAATGAGCCACGGGCCGTATTACACCTTCCTGACGCTGCACCTGGAGCGCCTGGGCTACAGCCGTGGATTGATCGGCGTGCTCTGGGCCGTCGGCGTCGTGGCCGAAGTGTTGGTGTTCCTGTTCATGAGCCGGATCCTGGCGCGGTATTCCGTGCGTCGGGTGCTGATGGTCAGTTTCCTGTTGGCGGCGCTGCGCTGGTTGCTGCTCGGCTCGCTGGCCGAATTCCTCTGGGTATTATTGTTTGCCCAGGTGCTCCACGCCGCGACGTTCGGCAGCTTTCACGCCGCTGCCATCCATTTCGTGCAACGTAGTTTCGGCCCGCGCCAACAAGGTCAGGGCCAGGCGCTGTACGCCGCGCTGGCCGGCACCGGTGGAGCGCTGGGGGCGTTGTACTCCGGCTATAGCTGGAATGCCATGGGCGCCGGTTGGACATTCAACATCGCCAGCCTCGCAGCCTTCGCTGCAGCCGTTATCATTGCCACACGCATGCAAGAGGACAGGCCATGA	MAALPYWRLSSFYLFYFALLGSTAPFLALYFDHLGFNAARIGELVAIPMLMRCVAPNLWGWLGDYTGRRLAIVRFGAICTLLSFSLIFIDKSYAWLAMVMALHAFFWHAVLPQFEVITLAHLSGQASRYSQIRLWGSIGFIITVVVLGRLFQWLSLDIYPVALALIMGGIVLSSFWVPNAQPVQGPRVAGDGFLRQLRNPGVLAFYACVGLMQMSHGPYYTFLTLHLERLGYSRGLIGVLWAVGVVAEVLVFLFMSRILARYSVRRVLMVSFLLAALRWLLLGSLAEFLWVLLFAQVLHAATFGSFHAAAIHFVQRSFGPRQQGQGQALYAALAGTGGALGALYSGYSWNAMGAGWTFNIASLAAFAAAVIIATRMQEDRP	PGPT0028051_1347	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID,PGPT0028051-hcaT-K05820	NA	NA
D1-36_01475	621	mtnB	COG0235	Methylthioribulose-1-phosphate dehydratase	ATGAGCCTTACCCGTGAACAGCTCGCCCAGCAGATCATCGACGCCGGGCGTTTTTTGTACGGTCGCGGTTGGTCCCCGGCCACCAGCAGCAATTATTCGACCCGTTTAGCGCCCGACCAAGCCTTGCTCACCGTGTCGGGCAAGCACAAAGGGCAGTTGGGCATCGACGATGTGCTCGCCACCGACCTGGATGGCAACAGCCTGGAGCCGGGCAAGAAACCGTCGGCTGAAACCTTGCTGCACACCCAGCTGTATCGCTGGCGCCCACAGATCGGCGCGGTGCTGCATACCCACTCGGTAAACGCCACGGTGCTGTCGCGCCTGACCGGCGAAGCGTTCCTTGACTTTGAAGACTATGAACTGCAAAAAGCCTTCAGCGGCGTCACGACCCATGAGTCCCGGGTCCGCGTGCCGATTTTCGACAACGACCAGGACATCGCGCGCCTGGCCGCCAAGGTCCAACCCTGGCTGGACGCGCATCCCGATTGCGCCGGCTACCTGATCCGTGGCCACGGCCTGTACACCTGGGGGGCGGGCATGAACGATGCGCTGCGCCAGATCGAAGCGTTCGAATTCCTGTTCGAGTGCGAACTCAAGACCCGCGCACTCCTGAACCGATAA	MSLTREQLAQQIIDAGRFLYGRGWSPATSSNYSTRLAPDQALLTVSGKHKGQLGIDDVLATDLDGNSLEPGKKPSAETLLHTQLYRWRPQIGAVLHTHSVNATVLSRLTGEAFLDFEDYELQKAFSGVTTHESRVRVPIFDNDQDIARLAAKVQPWLDAHPDCAGYLIRGHGLYTWGAGMNDALRQIEAFEFLFECELKTRALLNR				NA	NA	NA	NA	NA
D1-36_01476	546	mtnD	COG1791	Acireductone dioxygenase	ATGAGCAGCCTGTCCGTCTACCACGTCTCAAGTCCCGAGATCCCGAACAAGGTACTGACCCACTTCGAGGACATCGCCTCGACCCTGGCCGAAAAGGGCGTGCGGTTCGACCGTTGGGAAGCCGCGGCGAAAATCCAGCCCGGCGCCAGCCCGGAAGAGGTGATCGCCGCCTACAAGTCCCAGATCGACCAATTGATGACCGAGCGCGGCTACGTCACGGTCGACGTCATCAGCCTCAACAGCGACCATCCCCAGAAAGCCGAACTGCGGGCCAAGTTTCTTGATGAACACCGGCATGGCGAGGACGAGGTGCGATTTTTCGTCGCCGGTCGGGGCCTGTTTACCTTGCACATCGACGATTACGTCTACGCGGTCCTGTGCGAGAAGAACGACCTGATCTCGGTGCCCGCCGGTACCCCGCACTGGTTCGACATGGGCGAGCACCCGCATTTTGTCGCCATTCGCCTGTTCAACAACCCGGAAGGCTGGGTCGCGAAATTCACCGGCGATGACATCGCCAGCCGCTTCCCGCGCCTGGAGGACTGA	MSSLSVYHVSSPEIPNKVLTHFEDIASTLAEKGVRFDRWEAAAKIQPGASPEEVIAAYKSQIDQLMTERGYVTVDVISLNSDHPQKAELRAKFLDEHRHGEDEVRFFVAGRGLFTLHIDDYVYAVLCEKNDLISVPAGTPHWFDMGEHPHFVAIRLFNNPEGWVAKFTGDDIASRFPRLED				NA	NA	NA	NA	NA
D1-36_01477	690	mtnC		Enolase-phosphatase E1	GTGACGATCAAAGCCATCCTCACCGATATCGAGGGCACCACCAGCGCGGTGAGTTTTGTCTTCGACGTGCTGTTTCCCTATGCCGCCGAGCACCTGCCGGACTTTATCCGCCACAACGCCGGGCGCGCCGACGTTGCTCAACAATTGGACGCGGTGCGTCGGGACAGCGGCGAGCCGGACGCTGATATCGAACGGGTTATCGCGATCCTCTTGGGCTGGATCGCCGAGGACCGCAAGGCTACGCCGCTCAAGGCGTTGCAAGGCATGGTCTGGGAGCAGGGCTACGAGGCCGGGCAATTGAAAGGTCACGTTTATCCGGATGCGGTGGATGCGCTGAAACATTGGCATCAGCAAGGCTACCGGTTGTTTGTGTATTCCTCGGGCTCGATCCAGGCGCAAAAGTTGATTTTCGGTTGCTCCGAAGCCGGTGACCTGTCGCCGCTGTTCAGCGGTTATTTCGACACGACCTCGGGGCCCAAGCGGGACGTGCAGTCCTACCAGCGGATCAGCGAGGCGGTGGGTGTCGCGCCGGGGGAAATCCTGTTTCTGTCGGATATCGTCCAGGAACTAGACGCGGCTCGTGGCGCCGGGATGGCCACGTGTGGCCTGGCGCGTGACGGGGGCGACCTGTCCGGGCACGAAACCGTTGAAAGTTTTGCTCGAATCGATCCGTCCCGGTTCGGCGCTTGA	MTIKAILTDIEGTTSAVSFVFDVLFPYAAEHLPDFIRHNAGRADVAQQLDAVRRDSGEPDADIERVIAILLGWIAEDRKATPLKALQGMVWEQGYEAGQLKGHVYPDAVDALKHWHQQGYRLFVYSSGSIQAQKLIFGCSEAGDLSPLFSGYFDTTSGPKRDVQSYQRISEAVGVAPGEILFLSDIVQELDAARGAGMATCGLARDGGDLSGHETVESFARIDPSRFGA				NA	NA	NA	NA	NA
D1-36_01478	279			hypothetical protein	ATGAACATGATTCAAGAGAAGTTTGCATCGCTGTTTTCCAACTACGAAGTCACTACCCAGGCACGCCCGGATGGCGGGATCCTGCTGACCTTGCGCAACAGCGACGGCAAACTGTTCAAACGCACGATTTCCTATGCGCAATTGCACGCCGGGGACCAGTTGTCCTGGGCCATCAGTGCCATTCGCCGCGATCTGGCTGAACAAGCCAGCGAATTGCCGCCTGTGGCGATGCTGCAAAGCCAGCATCGTTTCGCGCTACCGACCTATCACAGCGCCTGA	MNMIQEKFASLFSNYEVTTQARPDGGILLTLRNSDGKLFKRTISYAQLHAGDQLSWAISAIRRDLAEQASELPPVAMLQSQHRFALPTYHSA				NA	NA	NA	NA	NA
D1-36_01479	1827	caiC	COG0318	Crotonobetaine/carnitine--CoA ligase	ATGAGTCGTACACCCAGCGACGCTATTACCTGGGGCATGATGTTGCGCAAGTTGCCCGCCATCGCCAGAGCTGTTCCCCGCATTGTCAAAGGCATGAAACTCGCCAACGTCCAGGACCCCGCGCAGCCCTGCGGCCTGGGTTGGTGCTTCGAACAAGCCACGCTACGCAACCCCCGAGGCCCGGCGCTACTGTGTGGCGATACGGTGCTGAGTTATGCACAGGTCAACGAGCAGGCCAATCGCATCGCCCATTGCTTGTTGGCGCGAGGCGTCGCGAAGGGCGACTGCGTAGCGATTTTCATCGAGAACCGTCCACAATTGCTGATCACGGTGCTGGCGGTGGCGAAAGTCGGCGCGGTCAGCGCGATGATCAATACCTCGCAAACGGGGGATGCACTGGTCCACAGCCTCGCATTGGTCGCGCCTGTTGCGGTGGTGGTCGGGGATGAGCGGGTCGCAGTGTTCAACGATGTGCGCGGTCGAACCGCGCTACCGGATGCTCGAACGTGGTGGGTGGCGGACCAGGATGCCTCCTCGGCGCCGTCCGGATTTGTCGACCTGATGGGCACAAGCCAGCAATTCCCCGGCGCCGACCCGGCCAGCAGCCAGCAGGTGTTTTTCAACGATCCCTGTTTCTATCTCTACACCTCCGGCACCACGGGGCTACCGAAGGCGGGGGTGTTCCGCCACGGCCGCTGGATGCGCACGTCCACCAGTTTCGGCCTGATCGCCTTGGACATGCAGCCCGACGACATTGTCTATTGCACGCTGCCGCTGTATCACGCCACCGGGTTATGTGTGTGCTGGGGCGCGGCGATCTGCGGTGCCTCGGGATTCGCGATCCGCCGCAAGTTCAGCGCCAGCCAGTTCTGGAGCGACGTGAGAAAGTATCGAGCGACGACCCTGGGTTACGTCGGTGAGCTGTGCCGTTACCTGGTCGATCAGCCTGCCAGCATCACGGACCGGCAGCACCGCGTGACGAAAATGATCGGCAATGGCCTGCGCCCTGACGCCTGGGCGGCGTTCAAGACACGTTTCGGCGTTGACCACATCTGTGAACTTTACGCGGCCAGCGACGGCAACATCGGGTTTACCAACATCCTGAACTTCGATAATACGGTCGGGTTTTCACTGATGGCCTGGGAGCTCGTGCAATACGATCACGACAGCGGCGCGCCCTTGCGCAACCTGCAAGGCCGCATGCAAAAAGTCCCCAAGGGCGAACCGGGCCTGCTATTGGCGCGCATCGACGAAAAGGCGCCGCTGGATGGCTATACCGATCCGGCGAAGACCGAGAAAACCATCCACCGGGACGTTTTCGTCCCGGGCGACCGTTATTTCAACACCGGTGATTTGCTGCGCAACATCGGTTTCGGCCACGGGCAGTTCGTCGATCGTCTCGGCGACACCTACCGCTGGAAAGGCGAAAACGTCTCCACCACGGAAGTCGAGAACGTGTTGCTGCAACATCCGCAGATTGCCGAGGCGGTGGCCTATGGCGTCGAGATCAACGGCACCAATGGTCGCGCCGGCATGGCCGCGATCACACCGGCCGAATCCCTGGCGACCCTGGATTTCAATGAACTGCTGCGGTTTCTCCAGTGCAAACTGCCCGCCTACGCGGTACCGCTGTTCTTGCGCATCAAGGTGAAGATGGACACCACCGGCACCTTCAAATACCGCAAAACCCGTCTCAAGACCGAGGCTTTCGACCCGTGCCAGACAGGCGATGAGCCGATCTACGCCTGGCTGCCCGAGACCTCGACCTATGTGCCCGTGGACCGGCAATTGGCGATGCGCATCCAAGGGGGACAGTACCGCTATTGA	MSRTPSDAITWGMMLRKLPAIARAVPRIVKGMKLANVQDPAQPCGLGWCFEQATLRNPRGPALLCGDTVLSYAQVNEQANRIAHCLLARGVAKGDCVAIFIENRPQLLITVLAVAKVGAVSAMINTSQTGDALVHSLALVAPVAVVVGDERVAVFNDVRGRTALPDARTWWVADQDASSAPSGFVDLMGTSQQFPGADPASSQQVFFNDPCFYLYTSGTTGLPKAGVFRHGRWMRTSTSFGLIALDMQPDDIVYCTLPLYHATGLCVCWGAAICGASGFAIRRKFSASQFWSDVRKYRATTLGYVGELCRYLVDQPASITDRQHRVTKMIGNGLRPDAWAAFKTRFGVDHICELYAASDGNIGFTNILNFDNTVGFSLMAWELVQYDHDSGAPLRNLQGRMQKVPKGEPGLLLARIDEKAPLDGYTDPAKTEKTIHRDVFVPGDRYFNTGDLLRNIGFGHGQFVDRLGDTYRWKGENVSTTEVENVLLQHPQIAEAVAYGVEINGTNGRAGMAAITPAESLATLDFNELLRFLQCKLPAYAVPLFLRIKVKMDTTGTFKYRKTRLKTEAFDPCQTGDEPIYAWLPETSTYVPVDRQLAMRIQGGQYRY	PGPT0019835_109	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_TERPENE_UTILIZATION	vCITRONELLOL-CITRONELLAL-CITRONELLATE_DEGRADATION,PGPT0019835-atuD-K13776	NA	NA
D1-36_01480	519			hypothetical protein	ATGTCTGATACAAGCCGCCAGATGACCCCGGAAGAAGCAGCGGAATTTGCCGAGCAGGTCTTCAACGTTGCCCGCCAGGGCGACGCCGCGATGATGGCCGCGCTGCTGAGCAAGGGCTTGCCGCCGAACTTGCGCAATCACAAGGGCGATACCTTGCTGATGCTGGCCGCGTACCACGGGCATGTCGAGACGGTAAAAGTCTTGCTGGAACACAAGGCCGATCCGGAAATCCGCAACGACAACGGTCAGAGTCCCATTGCCGGTGCAGCGTTCAAGGGTGACCTTGCGGTGGTTTCAGCCCTGGTGGACGGTGGCGCGCAAGTGGAAGGTTCCTCGTTCGACGGTCGCACGGCATTGATGATGGCGGCGATGTTCAACCGAGTCGAAATCGTCGATTACCTGATCGGCAAAGGCGCCGACCCGAAGGCCAAGGATGCCAACGGCGTCTCGGCACTCGACGCGGCCAGGACCATGGGCGCGGTGGACACCACGGCGCAATTGGAGAAGTTGTTGGGCTGA	MSDTSRQMTPEEAAEFAEQVFNVARQGDAAMMAALLSKGLPPNLRNHKGDTLLMLAAYHGHVETVKVLLEHKADPEIRNDNGQSPIAGAAFKGDLAVVSALVDGGAQVEGSSFDGRTALMMAAMFNRVEIVDYLIGKGADPKAKDANGVSALDAARTMGAVDTTAQLEKLLG				NA	NA	NA	NA	NA
D1-36_01481	531			hypothetical protein	ATGAAAGCCGTACTCATCGAACTCATCAGCAAAATCAGCTCCGGCTGCCTGGGCGAGGCGGACATCGAGAAGATTGCCGATGAGGCGGCCCAGGCCTACGCCGACCCGGTGGCGTTCCTGGCGGCCAACCCGGACATCAATTACGACGACACTTTCCCCATCGCGCTGGGCGAGTGGGTGGTGGTGGGCAGCTTGCCCGATACCGTGTTGTTCCAGGCGGATACCTACGTCGAGTTGTTCGAGCAGATCGTCGCCTCGTTCGGCCCCGGCGTCGCGTTCAACCTCAAGCCCAAGCAACTGGCCAAGACTGAAGCCCTGACCGCACTCAACCGCATCCAGATCCAGATGAGCAGCCTGAACAAGGAAAACGGTGGCTACGTGCTGATGAATTTCAGCCAGTTGCTCGACGATGAATTGCAGATGGTGCTGGTGTACGGCAACGACGTGCCGCGCGTGCTGGAGTTGTGCGCCGAGGTGGGCATCGCCGCGGCACCGTCCTTGGAAGCGCTCAAGGTCGCGGTTCACGTCTGA	MKAVLIELISKISSGCLGEADIEKIADEAAQAYADPVAFLAANPDINYDDTFPIALGEWVVVGSLPDTVLFQADTYVELFEQIVASFGPGVAFNLKPKQLAKTEALTALNRIQIQMSSLNKENGGYVLMNFSQLLDDELQMVLVYGNDVPRVLELCAEVGIAAAPSLEALKVAVHV				NA	NA	NA	NA	NA
D1-36_01482	192			hypothetical protein	ATGGGTTCCACTTTCAACGGCCTGATTGGCCTGATTATCCTGGCGCTCGATATCTGGGCGATCATCAACGTACTCAAGAGTGGCGCGGGCACCGGGGCGAAAGTCCTTTGGGTACTGCTGATCCTGCTGCTGCCGGTGTTGGGCCTGATCATCTGGGCGATTGCCGGGCCGCGTGGCAACGTGCGGGTCTGA	MGSTFNGLIGLIILALDIWAIINVLKSGAGTGAKVLWVLLILLLPVLGLIIWAIAGPRGNVRV				NA	NA	NA	NA	NA
D1-36_01483	1200	sotB_1		sugar efflux transporter	ATGAGTGCTCATCCCTCTTCGCCCGGCGTCACCCTGACCCGCGGCATGGTCCTGCTGTTCGCCTTCTGCTGCGGCGCCATCGTCGCCAACATCTACTACGCCCAACCCATCATCGAACTGATCGCTCCCGACGTCGGCCTGTCCAGCACCATGGCCAGCCTGATCGTCTCGCTGACCCAGATCGGTTATGCCCTGGGCCTGTTTTTCCTGGTGCCATTGGGCGATCTGCTGGAAAACCGGCGCTTGATGATCCTCACCACCGTGGTCGCGATAGCCAGCCTACTGGGTGCGGCCTTCACCGATCAGCCGAATGTGTTCCTGCTGGTCTCGCTACTGGTTGGCTTCAGTTCTGTCTCGGTGCAAGTGCTGATTCCACTGGCAGCGCACCTGGCACCCGAGGAATCCCGGGGACGGGTTGTCGGTGGGATCATGGGCGGCCTGTTGCTTGGAATTCTGCTGGCGCGGCCGATCTCCAGCGTCGTCGCCGATCATTTCGGCTGGCGGGCGATGTTCATGATCGCCGCCGTGCTGATGGCGGCCATCAGCATCGTCCTGGCGCTGACCGTGCCCAAGCGCCAGCCCGATCACAGCGCTTCCTACGGCCAGCTGCTGGGATCGCTCGGCACCTTGTTGCGCCAACAACCGCAGTTGCGTCAACGGGCGTTCTACCAGGCTTGCATGTTCGCCACGTTCAGCCTGTTCTGGACCGCCGCGCCCTTGGAGCTGGCGCGCAACCATGGTCTCACCCAGACGGACATCGCCTTGTTCGCCCTGGTCGGCGCCATCGGTGCCATAGCCGCACCCATAGCCGGGCGCCTGGCGGATGCCGGTCACACCCGCGTCGCTTCGCTGCTGGCGATGCTGTTCGCCAGCTTGAGTTTCCTGCCCGCCTTCATTCACCCGGCCTACAGCGTGATTGGCCTGGCGGTGACCGGCGTGGTCCTGGATTTCTGCGTACAGATGAACATGGTCCTGGGCCAACGCACCATCTACGCCCTCGACGCCAAAAGTCGCAGCCGACTGAACGCGCTGTACATGACCAGCATCTTCGTCGGCGGTGCGTTCGGTTCGTCCATCGCCAGTGCGGTCTACGAACACGGCGGCTGGCTGTGGGTGGTGATCGTCGGCAGCGCCTTCCCGCTGCTGGCTTTGCTGCGTTTCTTGAGCGCTTCGCAGAAGGCCTCGTTGGCGACAGCCTGA	MSAHPSSPGVTLTRGMVLLFAFCCGAIVANIYYAQPIIELIAPDVGLSSTMASLIVSLTQIGYALGLFFLVPLGDLLENRRLMILTTVVAIASLLGAAFTDQPNVFLLVSLLVGFSSVSVQVLIPLAAHLAPEESRGRVVGGIMGGLLLGILLARPISSVVADHFGWRAMFMIAAVLMAAISIVLALTVPKRQPDHSASYGQLLGSLGTLLRQQPQLRQRAFYQACMFATFSLFWTAAPLELARNHGLTQTDIALFALVGAIGAIAAPIAGRLADAGHTRVASLLAMLFASLSFLPAFIHPAYSVIGLAVTGVVLDFCVQMNMVLGQRTIYALDAKSRSRLNALYMTSIFVGGAFGSSIASAVYEHGGWLWVVIVGSAFPLLALLRFLSASQKASLATA				NA	NA	NA	NA	NA
D1-36_01484	999	sbp_2	COG1613	Sulfate-binding protein	GTGAAGAACTTCTTTGGCGCCTCCCTTCTCGCCGCCGGCCTGACCTTCGGCAGCCTGGCCAACGCCGCCCCAACCCTGCTGAACGTTTCCTATGACGTGATGCGCGATTTCTACAAGGACTACAACGCTGCGTTCCAGAAGCACTGGCAAGCCGAGCACAAAGAGAACATCACCGTGCAGATGTCCTTCGGCGGCTCCAGCAAGCAGGCGCGTTCGGTGATCGATGGGCTGCCTGCGGATGTCATCACCATGAACATGGCCACCGACATCAATGCCTTGGCGGACAACGGCAAGCTGGTTCCGGAAAACTGGGTCACTCGTTTGCCGAACAACAGCGCGCCGTTCACCTCGGCCACGGTCTTCATCGTGCGCAAGGGCAACCCGAAAGCGCTCAAGGACTGGCCTGATCTGCTCAAGGACGGCGTGCAGGTGATCGTGCCCAACCCGAAAACCTCCGGCAATGGTCGCTACACCTACCTGTCGGCGTGGGGTTACGTGCTCAAGAACGGCGGCGACGAGAACAAGGCCAAGGATTTCGTCGGCAAGCTGTTCAAACAAGCCCCCGTGCTGGACACCGGCGGCCGCGCCGCGACGACGACCTTCATGACCAACCAGATTGGCGACGTGTTGGTGACCTTTGAAAACGAAGCGGAAATGATCGCCCGCGAGTTTGGCCGCGACCAGTTCGAAGTGGTCTACCCAAGCGTGTCCGCCGAAGCCGAGCCGCCAGTGAGCGTCGTGGATAAAGTGGTCGAGAAAAAACGCTCCCGCGAAGCCGCCGAGGCGTACCTCAAATACCTGTGGTCACCCGAAGGCCAGGAAATTGCCGCCGCCAACTACCTGCGCCCACGGGATCCGGCCGTGCTGGCCAAATACACGGACCGCTTCCCGAAAGTTGATTTCCTGTCGGTGGAGAAAACCTTCGGTGACTGGCGCACCGTGCAGAAGACTCACTTCAATGACGGTGGGGTTTTCGATCAGATCTATAGCGGACAGTAA	MKNFFGASLLAAGLTFGSLANAAPTLLNVSYDVMRDFYKDYNAAFQKHWQAEHKENITVQMSFGGSSKQARSVIDGLPADVITMNMATDINALADNGKLVPENWVTRLPNNSAPFTSATVFIVRKGNPKALKDWPDLLKDGVQVIVPNPKTSGNGRYTYLSAWGYVLKNGGDENKAKDFVGKLFKQAPVLDTGGRAATTTFMTNQIGDVLVTFENEAEMIAREFGRDQFEVVYPSVSAEAEPPVSVVDKVVEKKRSREAAEAYLKYLWSPEGQEIAAANYLRPRDPAVLAKYTDRFPKVDFLSVEKTFGDWRTVQKTHFNDGGVFDQIYSGQ	PGPT0002995_720	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002995-cysP|ylnA-K02048	NA	NA
D1-36_01485	825			hypothetical protein	ATGGACAGCAGCAACAACTGGCGTGAACGCCTCTATGTGATCATTTTCCAGACCGACACCGTGGCCGGCCGGCGCTTCGACAGTACGCTGCTGCTGATCATCCTTGCCAGCCTGGTGATCGTGATGCTCGACAGCATCGACAGCGTGCACAAGAACTACGCGGCCCTGCTGGCCTACATCGAATGGGGCTTTACCTTCATCTTTCTCGTCGAGTACGTCCTGCGCCTGTACTGCTCGCCGAAACCGCTGCGCTATGCGTTCAGTTTCTATGGATTGGTGGACCTGCTGGCAATCGTGCCGGGGATCCTGGCGCTGTACTACAGCGATGCCCAATACCTGTTGATCGTGCGGATCATCCGCATGCTGCGGATCTTCCGGGTGCTCAAGCTCAGCCCGTACCTCAAGCAAGCCAACTACCTGATGGCGGCGCTACGGGGCAGCAAGCAGAAGATCATCGTGTTCCTCGTCAGCGTCTCGACCCTAGTGACCGTATTCGGCACGCTGATGTACGTCATCGAGGGCCCCGAGCACGGTTTCACCAGCATTCCCAAGGGCATCTATTGGGCTATCGTGACATTGACCACCGTAGGATTTGGCGACATCGTGCCCAAGACACCCCTGGGCCAAGTGGTGTCGTCGCTGGTGATGATCACCGGTTACTCGATCATCGCCGTGCCCACGGGTATTTTTACGGCTGAACTCGCCACGGCCATGCGGGGCGACCAGCTCAAGCACGATTGCCCGGTGTGCAGCAAAAACAACCATGAACATGGCGCTGCTTTCTGCTCTCGTTGCGGTAATGCGCTTTTCAGGAAAACGGAATAA	MDSSNNWRERLYVIIFQTDTVAGRRFDSTLLLIILASLVIVMLDSIDSVHKNYAALLAYIEWGFTFIFLVEYVLRLYCSPKPLRYAFSFYGLVDLLAIVPGILALYYSDAQYLLIVRIIRMLRIFRVLKLSPYLKQANYLMAALRGSKQKIIVFLVSVSTLVTVFGTLMYVIEGPEHGFTSIPKGIYWAIVTLTTVGFGDIVPKTPLGQVVSSLVMITGYSIIAVPTGIFTAELATAMRGDQLKHDCPVCSKNNHEHGAAFCSRCGNALFRKTE	PGPT0002715_3541	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002715-kch|trkA|mthK|pch-K10716	NA	NA
D1-36_01486	903		COG4413	Urea transporter	ATGCCCAACCCCCACTGCCCCGACTGGGCCACCGCCCTGCTCAACGGCTTCAGCCAGATTTTCCTCCAGCGCCATCCGCTGTGCGGCTTGCTGTGCCTGTTGGCCATCCTGCTCACCGCACCCACCTTGCTCGGCGGTGCGCTGCTGGGCGGCGTGGCTGGATTGCTGACGGCGCAACGACGCGGCTATACCAAGGAAGATCGACAAGCTGGCCTCTTCAGCTACAACGGCATCCTGCTGGGATTGCTGTTGAGCCTGGCCCTGCCGTGGTCGGTGTTGCTGCCACCGTTGATCATCGCCGGTGGCGGCCTCGGTGCGATGCTGACCCAACAATGGCTCAAGCGAACCACCGGCCCTCGCTGCTTGCCCGCCTACACCGCGCCCTTCGTGGGGATGGGCTGGTTGTTGCTGGGTTTCCCCCCGCCATCGCCCTCACCCGCGGCGCTGGACATGACGTTACCCGATCTATTGACGGCCCCTTTGATCGGGCTGGGCCAGGTCATGTTTCTCGACCACCCGTTGGCCGGAGCGCTGATCGCGATCGGCCTGTTGATCGCCAATCGCCGCGCCGCTGGCTGGGCGCTGTTCGGCTCCGTCGTCGGCCTTGGGTTCGCCTGGCTACAACACGACAGTAGCCTCGCCCTGTCCGGATTGGGCGGCTATAACCCGGCGCTGGTGGCCGTGGCCCTGGGTCAACGGGCCCGTGGACCATGGAAGCCGCTGACGGGCATTTTACTGGCGGTCTTTCTCACGCCGGGCTTCGCCGCCCTGGGCCTGGCCCCACTGACAGCGCCATTCATCCTCGCCTGCTGGCTGGTTCACTCAACAGAGCGGCTCTGGCACCAGGCCATCCTTGATAACGAGCCTTGCGCTCTGCGGGGCAATCGCCCTAGGCTTCGCTGA	MPNPHCPDWATALLNGFSQIFLQRHPLCGLLCLLAILLTAPTLLGGALLGGVAGLLTAQRRGYTKEDRQAGLFSYNGILLGLLLSLALPWSVLLPPLIIAGGGLGAMLTQQWLKRTTGPRCLPAYTAPFVGMGWLLLGFPPPSPSPAALDMTLPDLLTAPLIGLGQVMFLDHPLAGALIAIGLLIANRRAAGWALFGSVVGLGFAWLQHDSSLALSGLGGYNPALVAVALGQRARGPWKPLTGILLAVFLTPGFAALGLAPLTAPFILACWLVHSTERLWHQAILDNEPCALRGNRPRLR	PGPT0000950_317	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-UREA_USAGE	N-AQUISITION-UREA_TRANSPORT,PGPT0000950-utp-K08717	NA	NA
D1-36_01487	1416	ttuE		Pyruvate kinase	ATGACGCCTGATAAAAAGGTCAAGATCCTCGCGACCCTCGGCCCTGCCACCCGTGGCATCGATGACATCCGCGAACTGGTGCAGGCCGGTGTGAACATCTTTCGCCTGAACTTCAGCCACGGTGATCACGCCGACCACGCCCAGCGCTATCAGTGGATTCGCGAAGTCGAGCAGCAGCTCAATTATCCGCTGGGCATCCTGATGGACTTGCAGGGCCCGAAGCTGCGGGTTGGCAAATTCGCCGACGGCAAGGTGCTGCTGCAACGGGGCCAGGCCCTTCGACTGGACCTGGACCCGACGCCGGGCGATCAACGCCGGGTGAACCTGCCTCACCCAGAGATTATCGCGGCGTTGGAGCCTGGCATGGACTTGTTGCTGGACGACGGCAAGCTGCGCCTGCGGGTAATCACCCAGCATGCCGACGCCATCGACACCGAGGTGCTTAACGGCGGCGAACTGTCGGACCGCAAGGGCGTGAACGTGCCCCAGGCCGTGCTTGACCTGAGCCCGCTGACCGCCAAGGACCGCCGCGACTTGAGCTTCGGCCTGGAGCTGGGCGTCGATTGGGTGGCGCTGTCGTTCGTGCAGCGCCCCGAGGACATCCGCGAAGCCCGCGCGCTGATCGGCGACAAGGCGTTCCTGATGGCCAAGATCGAGAAACCCTCGGCTGTCACCCAATTGCAAGAGATTGCCGAACTGAGCGACGCGATCATGGTGGCCCGTGGTGATCTCGGCGTCGAGGTGCCGGCCGAGAGCGTGCCGCATATCCAGAAAAACATCATCGGCGTCTGCCGTGCCCTGGGCAAACCGGTGGTGGTGGCCACGCAGATGCTGGAGTCGATGCGGTTCTCCCCGGCGCCGACCCGCGCCGAAGTCACCGACGTTGCCAACGCCGTGGCCGAAGGTGCCGATGCGGTGATGCTGTCGGCGGAAACCGCCTCTGGCGATTACCCCCTCGAAGCCGTGCAGATGATGAGCAAGATCATCCGCCAGGTGGAAAACGGCCCCGACTACCAGGCGCAACTGGACGTCAGCCGGCCGAAAGCCGAGGCGACAGTGTCGGACGCCATCAGTTGCGCGATTCGCCGGGTCAGCAACGTCCTGCCGGTGGCGGTGCTGGTGAATTACAGCGAGTCGGGCAGCTCCAGCCTGCGGGCCGCACGGGAACGGCCGACAGTGCCGATCCTCAACCTCACGCCGAACCTGCAGGCCGCTCGCCGCCTGACCGTGGCCTGGGGCGTGCATTCGGTGGTCAACGATCGGCTGCGGCAGGTGGATGAAGTGTGCTCCACGGCGCTGGAAATCGCCCAGGCCCAAGGCATGGCCCAGCGTGGCGACACCTTGCTGATCACGGCGGGCGTGCCGTTCGGGCAGCCGGGGTCCACCAACTCGTTGCGCATTGAGACGTTGATCTAG	MTPDKKVKILATLGPATRGIDDIRELVQAGVNIFRLNFSHGDHADHAQRYQWIREVEQQLNYPLGILMDLQGPKLRVGKFADGKVLLQRGQALRLDLDPTPGDQRRVNLPHPEIIAALEPGMDLLLDDGKLRLRVITQHADAIDTEVLNGGELSDRKGVNVPQAVLDLSPLTAKDRRDLSFGLELGVDWVALSFVQRPEDIREARALIGDKAFLMAKIEKPSAVTQLQEIAELSDAIMVARGDLGVEVPAESVPHIQKNIIGVCRALGKPVVVATQMLESMRFSPAPTRAEVTDVANAVAEGADAVMLSAETASGDYPLEAVQMMSKIIRQVENGPDYQAQLDVSRPKAEATVSDAISCAIRRVSNVLPVAVLVNYSESGSSSLRAARERPTVPILNLTPNLQAARRLTVAWGVHSVVNDRLRQVDEVCSTALEIAQAQGMAQRGDTLLITAGVPFGQPGSTNSLRIETLI	PGPT0002020_7073	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0002020-pyk-K00873	NA	NA
D1-36_01488	1281	ttuD		Putative hydroxypyruvate reductase	ATGTCGGTCGATCCGCAACAACTGCTGCGCGAGCTGTTTGCCACAGCCATCGACGCGGCTCATCCGCAGCAAGTCCTCGAACAATACCTGCCCAGCGACCGCAGCGGCCGAGTGATCGTCATCGGGGCCGGTAAGGCGGCGGCGGCCATGGCGCAAGTGGTCGAGCGTTGCTGGCAAGGCGAGGTCAGCGGCCTGGTGGTGACCCGCTACGGCCATGGCGCGCCCTGCCAGAAAATCGAAGTGGTCGAAGCCGCTCACCCTGTGCCGGACGCCGCGGGCCTGGAAGTGGCCGGACGGGTGCTCGAACTCGTCAGCAACCTCAATGAAGACGACCGGGTGATTTTCCTGCTGTCCGGCGGGGGCTCGGCGTTGCTGGCCTTGCCAGCGGCCGGCATCACCCTGGCCGACAAACAATCGATCAACAAAGCCTTGCTCAAATCCGGCGCCACCATTGGTGAGATGAATTGCGTGCGCAAACACCTCTCGGCCATCAAAGGCGGACGCCTGGGCAAGGCCTGCTGGCCGGCGACGGTGTACACCTATGCGATTTCCGATGTGCCCGGCGATCTCGCCACGGTCATCGCGTCCGGCCCCACCGTGGCCGACCCCAGCACCTCGGCCGAGGCCCTGGCGATTCTCAAGCGCTACAACATTGAAGTGCCGGCCTCGGTACGCACCTGGCTGCAAAGCCCGGAATCGGAAACCGTCAAACCCGGAGACCCAAGCCTGGCCCGCAGTCATTTCCAACTGATCGCTCGCCCCCAGCAATCCTTGGAAGCCGCAGCCGTGAAGGCGCGCCAGGCTGGTTTCAGCCCATTGATCCTCGGTGACCTGGAAGGCGAATCCCGGGAGGTGGCAAAGGTCCATGCCGGCATCGCCCGGCAAATCGCCCTGCACGGCCAACCGTTGGCGGCGCCGTGCGTGATCCTTTCCGGCGGCGAAACCACCGTCACCGTGCGCGGCAACGGCCGTGGCGGGCGCAACGCCGAATTCCTGCTGAGCCTGACCGACAGCCTCAAGGGCCATCCCGGCATCTATGCGCTGGCCGGCGACACCGATGGCATCGACGGCTCCGAGGACAATGCCGGCGCCCTCATGACGCCTGACAGTTATCGCCGCGCCGCCGAGCTGGGCCTCAACGCCAGCGACGAGTTGGACAACAATAACGGCTACGGCTACTTCGCCGCGTTGGACGCGCTGATCGTCACCGAACCGACCCGCACCAACGTGAACGACTTTCGCGCCATCCTGATCCTCGAGACCCCAAAAAATGACGCCTGA	MSVDPQQLLRELFATAIDAAHPQQVLEQYLPSDRSGRVIVIGAGKAAAAMAQVVERCWQGEVSGLVVTRYGHGAPCQKIEVVEAAHPVPDAAGLEVAGRVLELVSNLNEDDRVIFLLSGGGSALLALPAAGITLADKQSINKALLKSGATIGEMNCVRKHLSAIKGGRLGKACWPATVYTYAISDVPGDLATVIASGPTVADPSTSAEALAILKRYNIEVPASVRTWLQSPESETVKPGDPSLARSHFQLIARPQQSLEAAAVKARQAGFSPLILGDLEGESREVAKVHAGIARQIALHGQPLAAPCVILSGGETTVTVRGNGRGGRNAEFLLSLTDSLKGHPGIYALAGDTDGIDGSEDNAGALMTPDSYRRAAELGLNASDELDNNNGYGYFAALDALIVTEPTRTNVNDFRAILILETPKNDA	PGPT0024440_1000	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0024440-gck|gckA-K11529	NA	NA
D1-36_01489	891	glxR	COG2084	2-hydroxy-3-oxopropionate reductase	ATGGCTAAAATCGGATTCATCGGCACCGGCATCATGGGCCACCCAATGGCTCTCAACCTGCAAAAAGCCGGTCACAGCCTGTTCCTGACCCAGCACCACGACGCCGCCCCGGCCGATCTCGTGGCCGGTGGCGCGGTGGCATTGGCCAATCCTCGGGAAGTCGCCCAGGAAGCCGAATTCATCATCGTCATGGTCCCGGACACGCCACAGGTCGAGGACGTGCTGTTTCGCGCCGATGGCGTCGCGGCCGGCGTGGGTGCGGGCAAGGTAGTGATCGACATGAGCTCGATCTCGCCGACCGCCACCAAGACCTTCGCGGCGAAAATCAATGAAAGGGGCGCGCAGTACCTTGACGCCCCGGTGTCTGGCGGCGAAGTCGGCGCCAAGGCCGCGACCCTCAGCATCATGGTCGGTGGCGACAACGCTGCCTTCGAACGAGCCTTGCCGCTGTTCCAGGCCATGGGCAAGAACATCACCCTGGTCGGTGGCAACGGCGACGGCCAGACCGCCAAAGTGGCGAATCAGATCATCGTTGCCCTGAACATCCAGGCCGTGGCCGAAGCCCTGTTGTTCGCCTCGAAAAACGGTGCCGACCCCGCCAAGGTCCGTGAAGCGCTGATGGGTGGTTTCGCTTCGTCGAAGATCCTCGAAGTCCATGGCGAGCGCATGATCAAGGGCACCTTCGACCCGGGCTTCCGCATCAGCCTGCACCAGAAGGACCTGAACCTGGCCCTGCAAGGCGCCAAGGAACTGAACATCAACCTGCCCAACACCGCCAACGCCCAGCAAGTGTTCAGCACCTGCGCGGCCATCGGCGGCAGCAACTGGGACCACTCGGCGTTGATCAAAGGGCTGGAGCATATGGCGAATTTCTCGATTCGCGACAACTGA	MAKIGFIGTGIMGHPMALNLQKAGHSLFLTQHHDAAPADLVAGGAVALANPREVAQEAEFIIVMVPDTPQVEDVLFRADGVAAGVGAGKVVIDMSSISPTATKTFAAKINERGAQYLDAPVSGGEVGAKAATLSIMVGGDNAAFERALPLFQAMGKNITLVGGNGDGQTAKVANQIIVALNIQAVAEALLFASKNGADPAKVREALMGGFASSKILEVHGERMIKGTFDPGFRISLHQKDLNLALQGAKELNINLPNTANAQQVFSTCAAIGGSNWDHSALIKGLEHMANFSIRDN	PGPT0018170_447	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
D1-36_01490	783	hyi	COG3622	Hydroxypyruvate isomerase	ATGCCGCGTTTCGCCGCCAACCTGTCCATGCTGTTCACCGAACAGGATTTTCTCGCCCGTTTCGAAGCGGCCGCCAAGGCCGGTTTCAGTGGAGTCGAATACCTGTTCCCCTACGATTACAGCTCTGCCGAACTCAAGGCCCTGCTCGACGCCAACGGCCTGACCCAGGTGCTGTTCAACCTGCCGGCCGGCAATTGGGCCGACGGTGAGCGCGGCATTGCTTGCCTGCCGGACCGAGTCGAAGAGTTCCGCGCCGGGGTCGACCTGGCGATCGCCTACGCAAAAGTGTTGGGCAATACCCAGGTCAATTGCCTGGCCGGGATTCGTCCACAGAAGTGCGACGAGGCACTGGCGGAAAAAACCTTCGTCGCCAATCTCAAATACGCCGCCGAAAAGCTGCAAGGCGAAGGCATCAAGTTGGTCATGGAAGCCATCAATACCCGCGACATCCCGGGCTTCTACCTGAACAACACGGCCCAGGCCCTGTCGATCCGCGAGCAGGTGGGCAGCGCCAATCTGTTCCTGCAATACGACATCTACCACATGCAAATCATGGAAGGCGACCTGGCCAGGACCCTGTCGGCGCACCTGGGCGAGATCAACCATGTGCAATTGGCGGACAACCCGGGCCGCAACGAGCCGGGCACCGGCGAGATCAACTACCGCTTCCTGTTCGAACACCTGGATCGCATCGGCTACCAGGGTTGGATCGGCTGCGAATACAAGCCGCTCACTACGACCGAAGCAGGTTTGGGCTGGTTGAAAACCCATAACGCAATCTGA	MPRFAANLSMLFTEQDFLARFEAAAKAGFSGVEYLFPYDYSSAELKALLDANGLTQVLFNLPAGNWADGERGIACLPDRVEEFRAGVDLAIAYAKVLGNTQVNCLAGIRPQKCDEALAEKTFVANLKYAAEKLQGEGIKLVMEAINTRDIPGFYLNNTAQALSIREQVGSANLFLQYDIYHMQIMEGDLARTLSAHLGEINHVQLADNPGRNEPGTGEINYRFLFEHLDRIGYQGWIGCEYKPLTTTEAGLGWLKTHNAI	PGPT0018150_631	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ERYTHRONATE_UTILIZATION,PGPT0018150-otnI|ygbM-K22131	NA	NA
D1-36_01491	1776	gcl	COG3960	Glyoxylate carboligase	ATGAGCAAAATGAGAGCAATCGAAGCCGCCGTTCTGGTGATGCGCCGTGAAGGCGTGGACACCGCCTTCGGCATCCCGGGTGCTGCGATCAACCCGCTGTACTCCGCCCTGCAGAAGGTGGGTGGCATCGATCACGTCCTTGCTCGCCACGTTGAAGGTGCCTCGCACATGGCCGAGGGCTACACCCGGACTAAGGCCGGCAACATCGGCGTGTGCATCGGCACCTCGGGCCCGGCTGGTACGGACATGGTGACCGGCCTCTACAGCGCGTCGGCCGACTCGATTCCGATCCTGTGCATCACCGGACAAGCGCCCCGCGCCCGGATGCACAAGGAAGACTTCCAGGCTGTGGATATCACCAGCATCGTCAAGCCAGTGACCAAGTGGGCCACCACTGTCCTGGAACCCGGCCAGGTGCCCTATGCCTTCCAGAAGGCTTTTTATGAAATGCGCTCCGGCCGTCCCGGCCCGGTGCTGATCGACCTGCCGTTCGACGTGCAGATGGCCGAGATCGAATTCGACATCGACGCCTACCAGCCGCTGCCCCTGGCCAAACCCGCGGCCAACCGCGTGCAGATCGAGAAAGCCCTGGCAATGCTCAATCAGGCCGAGCGCCCCTTGCTGGTGGCCGGTGGCGGCATCATCAACGCCGATGCCAGCGACCTCCTGGTGGAATTCGCCGAGCTGACCGGCATCCCGGTCATTCCTACGTTGATGGGCTGGGGCACCATCCCCGACGATCACCCGTTGATGGTCGGCATGGTCGGCCTGCAGACCTCGCATCGCTATGGCAACGCTACGTTGCTCAAGTCTGACGTCGTGCTGGGCGTCGGCAACCGCTGGGCCAACCGTCACACCGGTTCGGTGGATGTCTACACCGAAGGCCGCACGTTCATTCACGTCGACATCGAACCCACCCAGATCGGCCGTGTATTCACCCCCGACCTGGGCATCGTCTCCGACGCCGCTTCGGCCCTGACCGTGTTTATCGAGGTGGCCCGTGAATGGCAAGCGGCCGGCAAGCTGAAGAACCGCACCGCCTGGCTGCAGGACTGCCAGCAACGCAAGGCCAGCCTGCAACGCAAGACCCACTTCGACAACGTGCCGGTCAAGCCGCAGCGTGTCTACGAGGAAATGAACCAGGTGTTCGGCAAGGACACCTGCTACGTCAGCACCATCGGCCTGTCGCAGATCGCCGGGGCGCAGTTTCTTCACGTCTACAAGCCACGCCATTGGATCAACTGCGGCCAGGCCGGTCCCTTGGGCTGGACCATCCCAGCCGCCCTGGGAGTGGTCAAGGCCGATCCGAACCGCAAAGTCGTAGCGCTGTCGGGCGACTATGATTTCCAGTTCATGATCGAAGAATTGGCGGTGGGCGCGCAGTTCAAGCTGCCGTACATCCATGTCGTGGTGAACAATTCCTACCTGGGCTTGATCCGCCAGGCCCAGCGCGGTTTCGACATGGACTACTGCGTGCAGCTGTCGTTCGACAACCTCAATGCCCCGGAACTCAACGGCTATGGCGTTGACCACATCGCCGTCGCTGAAGGCCTGGGCTGCAAGGCTCTGCGAGTGTTCGAACCGTCTGGCATCCAGCCGGCACTGCGCAAGGCTCAGGAAATGATTGAGGAATTCAAGGTGCCGGTGATCGTCGAGATCATTCTGGAACGCGTGACCAACATTTCCATGGGCACCGAGATTAACGCCGTCAATGAATTTGAAGACCTGGCGCTGGTAGGCAACGATGCACCTACGGCCATCTCATTGCTCGACTGA	MSKMRAIEAAVLVMRREGVDTAFGIPGAAINPLYSALQKVGGIDHVLARHVEGASHMAEGYTRTKAGNIGVCIGTSGPAGTDMVTGLYSASADSIPILCITGQAPRARMHKEDFQAVDITSIVKPVTKWATTVLEPGQVPYAFQKAFYEMRSGRPGPVLIDLPFDVQMAEIEFDIDAYQPLPLAKPAANRVQIEKALAMLNQAERPLLVAGGGIINADASDLLVEFAELTGIPVIPTLMGWGTIPDDHPLMVGMVGLQTSHRYGNATLLKSDVVLGVGNRWANRHTGSVDVYTEGRTFIHVDIEPTQIGRVFTPDLGIVSDAASALTVFIEVAREWQAAGKLKNRTAWLQDCQQRKASLQRKTHFDNVPVKPQRVYEEMNQVFGKDTCYVSTIGLSQIAGAQFLHVYKPRHWINCGQAGPLGWTIPAALGVVKADPNRKVVALSGDYDFQFMIEELAVGAQFKLPYIHVVVNNSYLGLIRQAQRGFDMDYCVQLSFDNLNAPELNGYGVDHIAVAEGLGCKALRVFEPSGIQPALRKAQEMIEEFKVPVIVEIILERVTNISMGTEINAVNEFEDLALVGNDAPTAISLLD				NA	NA	NA	NA	NA
D1-36_01492	435			hypothetical protein	ATGAGCGCTCTGACTTTGAAAATCGCCCTCGACCTGGCTGGGCAAGCCCTTGCCATCGGTCGTGAAATAAGCGCCGCACCCCTGACCGTCGCGGTCCTGGACAGCGGCGGGCACCTGGTTGCCTTGCAACGCGAAGACGGCGCCAGCCTGCTTCGCCCGCAGATCGCCATCGGCAAGGCCTGGGGGGCCATCGCCCTGGGCAAAGGCTCGCGGCTTCTCGCCCAGGACGCCCAGCAACGCCCAGCGTTCTTTGCCGCTTTGAATGGCTTGGGCCAAAGCAACATCGTGCCGGCCCCGGGCGGGGTGTTGATCAGGGATCAGGAGGGCAGGGTGTTGGGGGCGATCGGGGTGAGTGGGGATGTTTCGGATGTGGATGAGCAGGTGGCGGTGAGGGCGGTGGAGGCGGTGCAGTTGAGGGCGGATGCGGGGGCTTGA	MSALTLKIALDLAGQALAIGREISAAPLTVAVLDSGGHLVALQREDGASLLRPQIAIGKAWGAIALGKGSRLLAQDAQQRPAFFAALNGLGQSNIVPAPGGVLIRDQEGRVLGAIGVSGDVSDVDEQVAVRAVEAVQLRADAGA				NA	NA	NA	NA	NA
D1-36_01493	459			hypothetical protein	ATGTCTGGTTTATCTGTTTCACATCGGCTTCGCGTCGGCCGCTATTCTGAGTCCAATCGGATCTACCTATTAACCACGAATACACTTGGGCGGGAGCCTGTTTTCAAGGACGTTGTCCTCGGCAGGTTGGTGGTTGATCAATTTCGAAAAGCTCAGGAGCAAGGCTGGGCCGATTCATTGGCTTGGGTGGTCATGCCTGACCACTTCCATTGGCTGATCGAGTTGCGCAAGGGATCTTTGAGTGAGTTGATGCAACGGACCAAATCATTGAGCACCAAAGCGGTAAACCTACGCTTGGACAATAAAATCAGCCTTTGGCAGCAGGGGTTTCATGACCGGGCATTGCGGCGAGATGAAGATTTGGTGTTCATGGCTCGCTATGTCATCTGCAACCCCTTGCGGGCAGGGTTGGTGAAAAGGCTTGGTGACTATCCGCTCTGGGATGCCATTTGGCTTTGA	MSGLSVSHRLRVGRYSESNRIYLLTTNTLGREPVFKDVVLGRLVVDQFRKAQEQGWADSLAWVVMPDHFHWLIELRKGSLSELMQRTKSLSTKAVNLRLDNKISLWQQGFHDRALRRDEDLVFMARYVICNPLRAGLVKRLGDYPLWDAIWL	PGPT0030655_3057	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MOBILE_ELEMENTS	CE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030655-yafM|rayT|tnpA-K07491	NA	NA
D1-36_01494	609	rutR_2	COG1309	HTH-type transcriptional regulator RutR	ATGAGCACTATCCGCGAGCGCAACAAAGAACTGATCCTGCGTGCCGCCAGCGAAGAATTTGCCGACAAGGGCTTCGCCGCGACCAAAACCAGCGACATCGCGGCCAAGGCGGGCCTGCCCAAACCCAACGTCTACTACTATTTCAAGTCCAAGGAAAACCTCTATCGCGAGGTCCTGGAAAGCATCATCGAACCCATCCTCCAAGCCTCGACACCGTTCAACGCCGATGGCGAGCCGGGCGAAGTGCTGAGCCACTACATCCGCTCCAAGATCCGTATCTCACGCGACCTGCCCTTCGCCTCGAAAGTCTTCGCCAGCGAAATCATGCACGGCGCCCCGCACCTGAGCGCGGACCTGGTGGAACAGCTCAACGCCCAGGCCCGGCACAACATCGACTGCATCCAGACCTGGATCGACCGCGGCCAGATCGCCCCCCTCGACCCCAACCACCTGATGTTCAGCATCTGGGCCGCCACCCAGACCTACGCCGATTTCGACTGGCAGATCAGCGCCGTGACCGGCAAGGCCAAGCTGGATGAAGCGGATTACGAAGCGGCGGCGCAGACGATTATCCGGTTGGTTTTGAAGGGGTGTGAGCTGGATCGCTAG	MSTIRERNKELILRAASEEFADKGFAATKTSDIAAKAGLPKPNVYYYFKSKENLYREVLESIIEPILQASTPFNADGEPGEVLSHYIRSKIRISRDLPFASKVFASEIMHGAPHLSADLVEQLNAQARHNIDCIQTWIDRGQIAPLDPNHLMFSIWAATQTYADFDWQISAVTGKAKLDEADYEAAAQTIIRLVLKGCELDR				NA	NA	NA	NA	NA
D1-36_01495	915	yedI	COG2354	Inner membrane protein YedI	ATGGCTGGAAGCAGTTTGCTGGTTTTGATCGACGACATCGCTACCGTGCTCGACGATGTGGCATTGATGACCAAGATGGCCGCCAAGAAAACCGCCGGCGTGCTGGGCGATGACCTGGCGCTCAATGCCCAGCAGGTGTCAGGCGTGCGTGCCGAGCGGGAGCTGCCAGTGGTCTGGGCGGTGGCGAAGGGATCCTTTATCAACAAGCTGATCCTGGTGCCGTCGGCGCTGGCCATCAGTGCCTTCGTCCCTTGGCTGGTGACGCCGCTGTTGATGGTCGGCGGCGCCTACCTGTGTTTCGAAGGGTTCGAAAAACTCGCCCACAAATTCCTTCACAGCAAGTCCGAGGACCAGGCCGAGCACGCGCAACTGGTCGAGGCGGTGGCGGATCCAGCGGTCGATCTGGTCGCCTTCGAAAAGGACAAGATCAAGGGCGCGGTGCGTACCGACTTCATCCTCTCGGCGGAGATCATCGCCATTACTCTCGGCACTGTTGCCGATGCGCCGTTGACCCAGCAGGTGATCGTGCTGTCGGGCATCGCCATTGTCATGACCGTCGGCGTCTACGGCCTGGTGGCGGGAATCGTCAAGCTCGATGACCTGGGCTTGTGGCTGACCCAGAAGCCAGGGCAGGCCGCCAAGAGCATTGGCGGGGCGATCCTGCGCGCAGCGCCTTACATGATGAAAAGCCTGTCGGTGATCGGCACGGCAGCGATGTTCCTGGTGGGCGGCGGCATCCTCACCCATGGCGTGCCGGCGGTGCATCACTGGATCGAAGGCGTTGCCGCGAGTGCCGGTGGCGCCGGGTTCATCGTGCCAATGCTGCTCAATGCGGTGGCGGGAATTGTCGCGGGGGCGATGGTGTTGGCGGGTGTGCTCGTCGTGGGCAAAATCTGGAAAGCGCTGAAAGGCTAG	MAGSSLLVLIDDIATVLDDVALMTKMAAKKTAGVLGDDLALNAQQVSGVRAERELPVVWAVAKGSFINKLILVPSALAISAFVPWLVTPLLMVGGAYLCFEGFEKLAHKFLHSKSEDQAEHAQLVEAVADPAVDLVAFEKDKIKGAVRTDFILSAEIIAITLGTVADAPLTQQVIVLSGIAIVMTVGVYGLVAGIVKLDDLGLWLTQKPGQAAKSIGGAILRAAPYMMKSLSVIGTAAMFLVGGGILTHGVPAVHHWIEGVAASAGGAGFIVPMLLNAVAGIVAGAMVLAGVLVVGKIWKALKG				NA	NA	NA	NA	NA
D1-36_01496	789			hypothetical protein	GTGGCTAAATACCTCCTGCTGATCGCCGCGTTAATGAGCGCGGGCATGGTCCACGCCGATAACAGCAAGGCCGACGCGCCTGTGGTGGTGGACTCGGACGGCTTCAAGGAGCCGCTGACCAAACTCAAGTTCAACCCGGGCCTGGATCAACGGGAATTCGAACGCTCGACGCTCAACGCGCTGAACGTCTACGACCCGTTGGAATCCTGGAACCGACGCGTCTACCACTTCAATTACCGCTTCGACCAGTGGGTGTTCCTGCCCGTGGTCGACGGCTATCGCTACATCACCCCAACCTTTGTGCGCACCGGGGTCAGCAACTTCTTCAATAACCTGGGGGACGTGCCGAACCTGATGAACAGCCTGCTGCAATTCAAGGGCAAGCGTTCGATGGAAACCACGGCGCGGCTGCTACTCAACACCACCGTCGGCATCGCCGGCCTGTGGGACCCGGCCACCGCCATGGGCCTGCCGCGCCAGAGCGAAGACTTCGGCCAGACCCTTGGCTTCTACGGCGTACCGGGCGGCGCGTATTTCGTGCTGCCGATTTTCGGCCCTTCGAACCTGCGCGACACGTCGGGCTTGTTGGTGGACTACACGGCGGAATCGGCGATCAACTTCCTCAACGTGTCGGAGGTCAGCTCCAACCACCCGGAACTGTTGTTGCTGCGCGGCGTGGACAGGCGCTACCAGACGAGCTTCCGCTACGGCCAGCTGAATTCGCCGTTCGAGTATGAAAAGGTGCGGTACGTGTATACCGAGTCGCGGAAGTTGCAGATCGCCGAGTAA	MAKYLLLIAALMSAGMVHADNSKADAPVVVDSDGFKEPLTKLKFNPGLDQREFERSTLNALNVYDPLESWNRRVYHFNYRFDQWVFLPVVDGYRYITPTFVRTGVSNFFNNLGDVPNLMNSLLQFKGKRSMETTARLLLNTTVGIAGLWDPATAMGLPRQSEDFGQTLGFYGVPGGAYFVLPIFGPSNLRDTSGLLVDYTAESAINFLNVSEVSSNHPELLLLRGVDRRYQTSFRYGQLNSPFEYEKVRYVYTESRKLQIAE	PGPT0024485_990	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024485-mlaA|vacJ-K04754	NA	NA
D1-36_01497	1299			hypothetical protein	ATGCTCCGTTCCTTGCGCTTCGCTGCCCTCCTCGGCGGCCTTATCCTGAGTGCGTCCGCGCTGGCGGTGGATGTCGACGCCGCCAGCTATGGCTACCCCCTGACCAACCCGTTCGAGGCGACGATCGCGACAACGCCGCCAGACCTTAGACCGGAACTGCCGCTGAACGAAGACATCGACCAGGCGGACTACAACGTCACCCTGCGCCCCGAACGGGAGTTCATCCTGCCGGACAATTTCTGGCCGGTGAAAAGCCTCACCTACCGCATGGCCACCCAGGACAAACCGGCGCCGCTGATCTTCCTGATCGCCGGCACCGGCGCGCGGTATGACAGCACGCTCAACGAATACCTCAAGCGCCTCTATTACAAGGCCGGTTACCACGTGGTGCAGCTGTCTTCGCCCACCAGCTTCGACTTCATGAGCGCCGCTTCGCGCTTCGCCACACCGGGCATCACCAAGGAAGATGCCGAAGACATGTATCGAGTGATGCAGGCCGTGCGCGCGCAAAATCCAAAAGTGCCCGTGACCGAGTACTACCTGACCGGCTACAGCCTCGGCGCACTGGACGCAGCGTTCGTCGCGCACCTGGACGAAACCCGACGCAGCTTCAACTTCAAGAAAGTGCTGCTGCTCAACCCACCGGTGAACCTCTATACCTCGATCACCAACCTGGACAAGCTGGTCCAGACCGAGGTCAAGGGCATCAACAGCACCACCACGTTCTATGAACTGGTCCTGAACAAGCTGACCCGCTACTTCCAGCAAAAAGGCTACATCGACCTCAACGATGCGCTGCTCTACGACTTTCAGCAGTCCAAGCAGCACTTGAGCAACGAGCAGATGGCGATGCTGATCGGCACGTCGTTCCGTTTCTCGGCGGCCGACATCGCCTTCACTTCGGATTTGATCAATCGTCGCGGCCTCATCACCCCGCCCAAGTTTCCGATCACCGAGAGCACCAGCCTGACGCCATTCCTCAAGCGCGCGCTGCAATGCGACTTCGATTGTTATCTCACCGAGCAGGTGATCCCGATGTGGCGAGCACGCACTGACGGCGGCAGCCTGCTGCAACTGGTTGACCAGGTCAGTCTCTATGCACTGAAGGATTACTTGCAGGCCAGCCCGAAGATCGCGGTCATGCACAACGCCGACGATGTGATCCTCGGCCCGGGTGACCTGGGCTTCCTGCGCAAGACCTTTGGTGATCGCCTGACGGTCTACCCGCTGGGCGGCCATTGCGGCAACCTTAACTATCGCGTCAACAGCGACGCCATGCTGGAGTTCTTCCGTGGCTAA	MLRSLRFAALLGGLILSASALAVDVDAASYGYPLTNPFEATIATTPPDLRPELPLNEDIDQADYNVTLRPEREFILPDNFWPVKSLTYRMATQDKPAPLIFLIAGTGARYDSTLNEYLKRLYYKAGYHVVQLSSPTSFDFMSAASRFATPGITKEDAEDMYRVMQAVRAQNPKVPVTEYYLTGYSLGALDAAFVAHLDETRRSFNFKKVLLLNPPVNLYTSITNLDKLVQTEVKGINSTTTFYELVLNKLTRYFQQKGYIDLNDALLYDFQQSKQHLSNEQMAMLIGTSFRFSAADIAFTSDLINRRGLITPPKFPITESTSLTPFLKRALQCDFDCYLTEQVIPMWRARTDGGSLLQLVDQVSLYALKDYLQASPKIAVMHNADDVILGPGDLGFLRKTFGDRLTVYPLGGHCGNLNYRVNSDAMLEFFRG				NA	NA	NA	NA	NA
D1-36_01498	855			hypothetical protein	ATGAAGATGCGACGACTCTTGGGCGCAGGTGCCGCACTGGTACTGGCGATCAGCTCCACCTTGGCCAGCGCCGAAACCAAAACCCTGAGCATTGGCTACGTTGACGGTTGGTCCGACAGCGTTGCGACCACTCACGTGGCCGCCGAAGTGATCAAGCAAAAACTTGGCTACGATGTGAAGTTGCAGGCTGTCGCGACCGGGATCATGTGGCAGGGCGTTGCCACCGGCAAGCTCGATGCGATGCTGTCGGCCTGGCTGCCGGTGACCCACGGCGATTACTGGACGAAGAACAAAGACCAGGTCGTCGACTACGGTCCCAACTTCAAGGACGCGAAGATCGGCCTGATCGTACCGGAGTATGTCAAGGCCAAGTCGCTCGAAGACCTGAAGACCGATGACTCCTTCAAGAAGCGCATCGTTGGCATCGACGCCGGTTCAGGCGTAATGCTCAAGACCGACCAGGCCATCAAGGACTACGACCTGACCGGCTATCAACTCAAGGCCAGTTCCGGCGCCGGCATGATCGCCGAGCTGACCCGTGCCGAGAAAAAGAACGAGTCCATCGCCGTCACCGGTTGGGTGCCGCACTGGATGTTCGCCAAGTGGAAACTGCGCTTCCTGGACGACCCGAAAGGCGTCTACGGCGCGGCTGAAACCGTGAACAGCATCGGCAGCAAGGAATTGGGCACCAAGGCGCCAGAAGTGGCCGAATTCCTGAAGAAGTTCCAGTGGGCCTCGAAAGACGAAATCGGCGAAGTCATGCTGGCGATCCAGGAAGGCGCCAAGCCGGACGCCGCCGCCAAGGATTGGGTCGCCAAGCACCCGGACCGCGTGAAGGAGTGGACCGGCAAGTAA	MKMRRLLGAGAALVLAISSTLASAETKTLSIGYVDGWSDSVATTHVAAEVIKQKLGYDVKLQAVATGIMWQGVATGKLDAMLSAWLPVTHGDYWTKNKDQVVDYGPNFKDAKIGLIVPEYVKAKSLEDLKTDDSFKKRIVGIDAGSGVMLKTDQAIKDYDLTGYQLKASSGAGMIAELTRAEKKNESIAVTGWVPHWMFAKWKLRFLDDPKGVYGAAETVNSIGSKELGTKAPEVAEFLKKFQWASKDEIGEVMLAIQEGAKPDAAAKDWVAKHPDRVKEWTGK	PGPT0013640_3814	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
D1-36_01499	312	yjcH	COG3162	Inner membrane protein YjcH	ATGAACGACAGCATTTACCTCTCGATTCAAAACAGCCCGCGCTTCAAGGAGCTGGTGAAAAAGCGAGAGAAGTTCGCCTGGATTCTCTCGGCGATCATGCTAGGGCTGTATTCCGGCTTCATTCTTCTGATCGCCTATGGGCCGCATATTCTCGGGGCCAAGATGTCGCCCGAGTCGACCATCACCTGGGGTATCCCTATCGGGATTGGCTTGATTCTGTCGGCCTTCGTTCTGACCGGCATCTACGTGCGACGCGCCAACGGCGAATTCGACGACCTGAACAATGCGATTCTCAAGGAGGCTCAGCAATGA	MNDSIYLSIQNSPRFKELVKKREKFAWILSAIMLGLYSGFILLIAYGPHILGAKMSPESTITWGIPIGIGLILSAFVLTGIYVRRANGEFDDLNNAILKEAQQ				NA	NA	NA	NA	NA
D1-36_01500	1659	actP_1	COG4147	Cation/acetate symporter ActP	ATGATCCGGCGTCTACTGGCTCTTTTCAGCATTGCAGCATTTGCACCGGGTGCCTGGGCGGCTGACGCCCTGACCGGCGCCGTGCAGAGACAACCCCTCAACGTCCCGGCTATCTTGATGTTCGTGGCCTTCGTGGGCGCGACCCTGTACATCACCTACTGGGCTTCCAAGAAAAACAACTCGGCGGCCGACTACTATGCGGCCGGCGGCAAGATCACCGGCTTTCAGAACGGCCTGGCGATTGCGGGCGACTACATGTCGGCGGCGTCCTTCCTTGGGATTTCCGCGCTGGTATTCACCTCCGGCTACGATGGCCTGATCTACTCCATCGGCTTCCTGGTGGGCTGGCCGATCATTCTGTTTCTGATCGCCGAACGCCTGCGTAACCTGGGTAAATACACCTTTGCCGACGTGGCGTCCTATCGCCTCGGGCAAACCCAGATCCGCACCTTGTCCGCCAGCGGCTCGCTGGTGGTGGTGGCGTTCTACCTGATCGCGCAAATGGTCGGTGCCGGCAAGCTGATCCAGCTGCTGTTCGGCCTGGACTACCACGTTGCGGTGATCCTGGTCGGCATCCTGATGTGCCTCTATGTACTGTTCGGGGGCATGCTGGCGACGACCTGGGTGCAGATCATCAAGGCGGTGCTGTTGCTGTCGGGTGCGTCGTTCATGGCCCTGATGGTGATGAAGCACGTCAACTTCGATTTCAACATGCTCTTCGCCGAAGCGGTCAAGGTTCACCCTAAAGGCGAGGCGATCATGAGCCCCGGCGGCTTGGTGAAGGATCCGATCTCGGCCTTCTCCCTTGGCCTGGCGCTGATGTTCGGTACCGCTGGCCTGCCACACATCCTGATGCGCTTCTTCACCGTGAGCGACGCCAAGGAAGCTCGCAAGAGCGTGCTGTATGCCACTGGCTTCATCGGCTACTTCTACATCCTGACCTTCATCATCGGCTTCGGCGCGATCCTGCTGGTCAGCACCAACCCGGCCTTCAAGGACGCGGCAGGTGCCTTGCTGGGCGGCAACAACATGGCGGCGGTGCACCTGTCCAACGCGGTTGGCGGCAGCATCTTCCTGGGCTTCATTTCGGCGGTGGCGTTCGCGACCATCCTGGCGGTGGTAGCGGGCCTGACCCTGGCCGGTGCTTCGGCGGTGTCCCATGACCTGTATGCCAGCGTGATCAAGAAGGGCAAGGCCAACGAGAAGGACGAGATTCGCGTCTCGAAGATCACCACCATTGCCCTGGCAGTGCTGGCGATCGGCCTGGGCATCCTGTTCGAGAAGCAGAACATCGCGTTCATGGTGGGCCTGGCGTTCTCCATCGCGGCAAGCTGCAACTTCCCGGTGCTGCTGCTTTCGATGTACTGGAAGAAGCTGACCACCCGTGGCGCCATGGTCGGTGGCTGGCTGGGCCTGATCAGTGCCGTGGGCCTGATGGTGCTCGGCCCGACCATCTGGGTACAGATCATGGGTCACGAGAAGGCGATCTTCCCGTACGAATACCCTGCGCTGTTCTCGATGATCATCGCGTTCGTTGGCATCTGGTTCTTCTCCGTTACCGACAAGTCGGCCGAAGGCGTCAACGAGCGGGCGCTGTTCTTCCCGCAGTTCGTGCGTTCGCAGACTGGCCTGGGGGCGAGTGGGGCGGTGAACCACTGA	MIRRLLALFSIAAFAPGAWAADALTGAVQRQPLNVPAILMFVAFVGATLYITYWASKKNNSAADYYAAGGKITGFQNGLAIAGDYMSAASFLGISALVFTSGYDGLIYSIGFLVGWPIILFLIAERLRNLGKYTFADVASYRLGQTQIRTLSASGSLVVVAFYLIAQMVGAGKLIQLLFGLDYHVAVILVGILMCLYVLFGGMLATTWVQIIKAVLLLSGASFMALMVMKHVNFDFNMLFAEAVKVHPKGEAIMSPGGLVKDPISAFSLGLALMFGTAGLPHILMRFFTVSDAKEARKSVLYATGFIGYFYILTFIIGFGAILLVSTNPAFKDAAGALLGGNNMAAVHLSNAVGGSIFLGFISAVAFATILAVVAGLTLAGASAVSHDLYASVIKKGKANEKDEIRVSKITTIALAVLAIGLGILFEKQNIAFMVGLAFSIAASCNFPVLLLSMYWKKLTTRGAMVGGWLGLISAVGLMVLGPTIWVQIMGHEKAIFPYEYPALFSMIIAFVGIWFFSVTDKSAEGVNERALFFPQFVRSQTGLGASGAVNH	PGPT0001400_1788	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-CATION_TRANSPORT,PGPT0001400-actP-K14393	NA	NA
D1-36_01501	1290	gltA	COG0372	Citrate synthase	ATGGCTGACAAAAAAGCGCAGTTGATCATCGAGGGCGCAGCCCCCGTCGAGCTGCCCATTTTAACCGGCACCGTTGGTCCCGATGTAATCGACGTACGGGGCCTGACGGCCACGGGCCGTTTCACCTTTGACCCAGGTTTCATGTCGACCGCCTCGTGCGAATCGAAAATCACCTATATCGACGGCGACAACGGCATCCTGCTGCACCGCGGCTACCCGATCGAGCAACTGGCTGAAAAATCGGACTACCTGGAAACCTGCTACCTGCTGCTCAACGGCGAATTGCCGACCGCAGAGCAAAAGGCCCAGTTCGTCAGCACCGTGAAGAACCACACCATGGTTCATGAACAGTTGAAGACCTTCTTCAACGGCTTCCGTCGCGATGCCCACCCGATGGCCGTCATGTGCGGCGTTGTCGGTGCCCTCTCGGCCTTCTACCACGACTCCCTGGACATCAATAACCCCCAGCATCGCGAAATCTCCGCGATCCGCCTGGTGGCGAAGATGCCGACCCTGGCAGCCATGGTCTACAAGTACTCCATGGGCCAGCCCATGATGTACCCGCGCAACGACCTGACCTATGCAGAGAACTTCCTGCATATGATGTTCAACACCCCGTGCGAGATCAAACCGATCAGCCCGGTGCTCGCCAAGGCCATGGACCGGATCTTCATCCTCCACGCCGACCACGAGCAGAACGCCTCCACGTCCACCGTGCGCCTGGCCGGTTCGTCGGGTGCCAACCCGTTCGCCTGTATCGCCGCCGGTATCGCCGCGCTCTGGGGCCCTGCCCACGGCGGTGCGAACGAAGCGGTACTGACCATGCTCGATGAAATCGGCGATGTCTCCAACATCGACAAGTTCATCGCCAAGGCCAAGGACAAGAACGATCCGTTCAAGCTGATGGGCTTCGGTCACCGGGTCTACAAGAACCGCGACCCACGCGCCACCGTCATGAAGCAGACCTGCGACGAAGTGCTCAAGGAACTGGGGATCAAGAACGATCCGCAACTCGAACTGGCCATGCGCCTGGAAGAGATCGCCCTGACCGACCCGTACTTCATCGAGCGCTCGCTCTACCCGAACGTCGACTTCTACTCGGGGATCATCCTCAAGGCGATCGGCATTCCAACCAGCATGTTCACCGTGATCTTCGCCCTGGCGCGGACCGTGGGCTGGATCTCCCACTGGAAGGAAATGCTCTCCAGCCCGTACAAGATCGGCCGCCCACGCCAGCTGTACACCGGCTACGAGTCGCGTGACATCACCAAGCTGGAAGACCGCAAGTAA	MADKKAQLIIEGAAPVELPILTGTVGPDVIDVRGLTATGRFTFDPGFMSTASCESKITYIDGDNGILLHRGYPIEQLAEKSDYLETCYLLLNGELPTAEQKAQFVSTVKNHTMVHEQLKTFFNGFRRDAHPMAVMCGVVGALSAFYHDSLDINNPQHREISAIRLVAKMPTLAAMVYKYSMGQPMMYPRNDLTYAENFLHMMFNTPCEIKPISPVLAKAMDRIFILHADHEQNASTSTVRLAGSSGANPFACIAAGIAALWGPAHGGANEAVLTMLDEIGDVSNIDKFIAKAKDKNDPFKLMGFGHRVYKNRDPRATVMKQTCDEVLKELGIKNDPQLELAMRLEEIALTDPYFIERSLYPNVDFYSGIILKAIGIPTSMFTVIFALARTVGWISHWKEMLSSPYKIGRPRQLYTGYESRDITKLEDRK	PGPT0001455_2802	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
D1-36_01502	258	sdhC	COG2009	Succinate dehydrogenase cytochrome b556 subunit	ATGCTTTATGCATTGGACAAGTCGCTCGATTCGGAAGAAGGCTTCGGTCAGGTGAAAGCGTGTCTGACCAGTCCGCTAGCCAAGCTAGTGATTTGGGGCATCCTGTCCGCCTTGCTGTATCACTTGGTCGCCGGTGTGCGCCACTTGATCATGGACATGGGCATCGGTGAGACGCTGGAAGGCGGCAAGCTGGGCTCGAAAATCGTTATCGCCGTTTCGGTGGTGGTAATCGTTCTGGCAGGAGTCTGGATATGGTAA	MLYALDKSLDSEEGFGQVKACLTSPLAKLVIWGILSALLYHLVAGVRHLIMDMGIGETLEGGKLGSKIVIAVSVVVIVLAGVWIW	PGPT0001595_3505	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
D1-36_01503	369	sdhD	COG2142	Succinate dehydrogenase hydrophobic membrane anchor subunit	ATGGTAACCAACGTCACGAACCTCTCGCGTTCTGGCCTGTATGACTGGATGGCGCAGCGTGTGTCTGCGGTCGTTCTCGCGGCTTATTTCATCTTTCTGATTGGATATGTAGTCGCCAACCCCGGCCTGGGCTACGCCCAATGGCATGAACTGTTTGCAAACAACTGGATGCGTATCTTCAGTCTGCTGGCACTTGTCGCACTGGGCGCCCACGCCTGGGTCGGCATGTGGACCATCGCGACCGACTACCTGACGCAGATGGCGTTCGGCAAGTCGGCGACTGCCGTACGTTTCCTCTTCCAGGCAGTATGCGGCGTTGCGATGTTCGCTTACTTCGTCTGGGGTGTGCAGATTCTCTGGGGTATCTGA	MVTNVTNLSRSGLYDWMAQRVSAVVLAAYFIFLIGYVVANPGLGYAQWHELFANNWMRIFSLLALVALGAHAWVGMWTIATDYLTQMAFGKSATAVRFLFQAVCGVAMFAYFVWGVQILWGI	PGPT0001590_1259	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
D1-36_01504	1773	sdhA	COG1053	Succinate dehydrogenase flavoprotein subunit	ATGGCTAACATTCCAACGATTTCTTTCGACGCCATCATCATTGGTGGTGGCGGTGCCGGCATGCGCGCTGCGCTGCAACTGGCACAGGGCGGTCACAAGACTGCCGTGATCACCAAGGTTTTCCCGACCCGTTCGCATACCGTGTCCGCCCAGGGTGGCATCACCTGCGCCATCGCTTCGGCCGACCCGAACGATGACTGGCGCTGGCACATGTACGATACCGTCAAGGGTTCCGACTACATCGGTGACCAGGACGCTATCGAATATATGTGTCAAGAAGGCCCGGCCGCTGTGTTCGAGCTGGACCACATGGGCCTGCCGTTCTCGCGTACCGAAACCGGCCGCATCTACCAGCGTCCGTTCGGTGGTCAGTCCAAGGACTACGGCAAGGGCGGCCAGGCGGCGCGTACTTGCGCGGCGTCCGACCGTACCGGTCACGCTCTGCTGCACACCCTTTATCAGGGCAACCTGAAAGCCGGCACCACGTTCCTGAACGAGTATTACGCCGTTGACCTGGTGAAAAACCAGGACGGCGCGTTCGTCGGTGTGATCGCGATCTGCATCGAAACCGGCGAAACCACCTACATCCGCTCGAAAGCCACCGTATTGGCGACCGGCGGTGCAGGCCGTATCTACGCCTCCACCACCAACGCCCTGATCAACACCGGTGACGGCGTTGGCATGGCCCTGCGTGCTGGCGTGCCGGTGCAAGACATCGAAATGTGGCAGTTCCACCCGACCGGCATCGCCGGCGCTGGTGTACTGGTCACCGAAGGCTGCCGTGGTGAAGGCGGTTACCTGATCAACAAGCACGGCGAGCGTTTCATGGAGCGTTATGCTCCGAACGCCAAGGACCTTGCCGGTCGCGACGTCGTGGCTCGTTCGATGGTTAAAGAGATCATCGCCGGCAACGGCTGTGGCCCGAATGGCGACCACGTGATGCTCAAGCTCGACCACCTTGGCGAGGAAGTGCTGCACAGCCGCCTGCCAGGTATCTGCGAGCTGTCGAAGACCTTCGCTCACGTCGACCCAGTCGTTGCGCCGGTTCCAGTGGTTCCAACGTGCCACTATATGATGGGCGGCGTTGCCACCAACATTCATGGCCAGGCAATCACTCAGAACGCCGAAGGCGTGGACGAAATCATCCCTGGCTTGTTCGCCGTGGGTGAAGTGGCTTGCGTATCGGTACACGGTGCCAACCGCCTGGGCGGCAACTCGCTGCTCGACCTGGTGGTGTTCGGCCGCGCTGCCGGCCTGCACCTGGAAAAAGCGCTGACCGACGGTATCGAATACCGCGACGCCAGCGACACCGACATCGACGTGGCCCTAAAGCGTCTGGCTGGCCTCAACGAGCGCACCGAAGGCGAAGACGTCGCCACCCTGCGCCGCGAGCTGCAAAGCTGCATGCAGAACTACTTCGGTGTGTTCCGTACCGGCGAGTACATGCAGAAGGGTATTGCCCAGCTCGCACAATTGCGTGAACGAATCGCCAACGTGAAGATCAACGATAAGTCGCAGGCGTTCAACACTGCGCGTATCGAAGCGCTGGAGCTGCAGAACCTGCTGGAAGTGGCCGAAGCCACCGCCATCGCCGCAGAAGTGCGCAAAGAGTCCCGTGGTGCCCACGCCCGCGAAGACTTCGAAGACCGTGACGACGAAAACTGGCTGTGCCACACCTTGTACTTCCCAGGTGAAAAACGCGTCGCCAAGCGTGCCGTGAACTTCTCGCCGAAGACTGTTCCGACTTTCGAACCAAAAGTCCGGACTTATTAA	MANIPTISFDAIIIGGGGAGMRAALQLAQGGHKTAVITKVFPTRSHTVSAQGGITCAIASADPNDDWRWHMYDTVKGSDYIGDQDAIEYMCQEGPAAVFELDHMGLPFSRTETGRIYQRPFGGQSKDYGKGGQAARTCAASDRTGHALLHTLYQGNLKAGTTFLNEYYAVDLVKNQDGAFVGVIAICIETGETTYIRSKATVLATGGAGRIYASTTNALINTGDGVGMALRAGVPVQDIEMWQFHPTGIAGAGVLVTEGCRGEGGYLINKHGERFMERYAPNAKDLAGRDVVARSMVKEIIAGNGCGPNGDHVMLKLDHLGEEVLHSRLPGICELSKTFAHVDPVVAPVPVVPTCHYMMGGVATNIHGQAITQNAEGVDEIIPGLFAVGEVACVSVHGANRLGGNSLLDLVVFGRAAGLHLEKALTDGIEYRDASDTDIDVALKRLAGLNERTEGEDVATLRRELQSCMQNYFGVFRTGEYMQKGIAQLAQLRERIANVKINDKSQAFNTARIEALELQNLLEVAEATAIAAEVRKESRGAHAREDFEDRDDENWLCHTLYFPGEKRVAKRAVNFSPKTVPTFEPKVRTY	PGPT0001605_2923	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
D1-36_01505	705	sdhB	COG0479	Succinate dehydrogenase iron-sulfur subunit	ATGTTGCAAGTCAGTGTTTATCGCTACAACCCTGATCAGGACGCCGCGCCGTTCATGCAGGACTTCCAGGTCGATACCGGTGGTAAAGACCTGATGGTGCTGGACGTGCTGGCCTTGATCAAAGAGCAGGACGAAGGTTTTTCCTATCGTCGCTCGTGCCGCGAGGGCGTTTGTGGCTCCGATGGCATGAACATCAACGGCAAGAACGGCTTGGCCTGCATCACGCCGCTGTCGGCTGTGGTCAAGGGCAACAAGCTGATCGTTCGTCCGCTGCCAGGTTTGCCGGTCATCCGTGACCTGGTCGTCGATATGAGCATCTTCTACAAGCAATACGAGAAGGTGAAGCCATTCCTGCAGAACGACACGCCGGCTCCGGCCATCGAGCGTCTGCAGTCCCCTGAAGAGCGTGAAAAGCTCGACGGTCTGTACGAGTGCATCCTGTGCGCTTGCTGCTCGACCTCGTGCCCATCCTTCTGGTGGAACCCGGACAAATTCCTGGGCCCGGCCGCCCTGCTGCAAGCGTACCGCTTCCTGGCAGACAGCCGTGACACCAAGACGTCCGAACGTCTGGCCGCACTGGATGACCCGTTCAGCGTATTCCGCTGCCGCGGGATCATGAACTGCGTCAACGTCTGCCCGAAAGGCCTGAACCCGACTAAGGCCATCGGTCACGTACGTAACATGCTGCTGCAAAACGGCGTGTGA	MLQVSVYRYNPDQDAAPFMQDFQVDTGGKDLMVLDVLALIKEQDEGFSYRRSCREGVCGSDGMNINGKNGLACITPLSAVVKGNKLIVRPLPGLPVIRDLVVDMSIFYKQYEKVKPFLQNDTPAPAIERLQSPEEREKLDGLYECILCACCSTSCPSFWWNPDKFLGPAALLQAYRFLADSRDTKTSERLAALDDPFSVFRCRGIMNCVNVCPKGLNPTKAIGHVRNMLLQNGV	PGPT0001600_3951	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
D1-36_01507	2832	sucA	COG0567	2-oxoglutarate dehydrogenase E1 component	ATGCAAGAAAGCGTGATGCAGCGCATGTGGAACAGTGCCCACCTCTCCGGTGGTAACGCTGCCTATGTGGAAGAGCTCTACGAGCTCTACCTGCACGACCCTAACGCTGTGCCAGAAGAATGGCGCACCTACTTTCAGAAGTTGCCGGCTGACGGTAACTCTGCCACCGATGTTTCGCACTCGACGATTCGCGATCATTTCGTGCTGCTGGCAAAGAACCAGCGCCGCGCTCAACCGGTTTCTGCCGGCAGCGTGAGCTCCGAGCATGAGAAGAAGCAAGTTGAAGTGCTGCGACTGATCCAGGCCTACCGGATGCGTGGCCACCAGGCAGCCCAGCTGGACCCGCTGGGGCTGTGGCAGCGTCCTGCTCCTGCAGACCTGTCGATCACTCATTACGGCTTGACCAATGCCGATCTTGATACGACCTTCCGTGCCGGCGACCTGTTCATCGGCAAAGAGGAAGCGAGCCTACGCGAAATTCACGAAGCGTTGCAGCAGACATATTGCCGCACCATCGGCGCTGAATTCACGCACATCACCGATTCCGAGCAGCGCCAGTGGTTCCAGCAGCGTCTGGAAAGCGTTCGTGGCCGTCCGACGTACTCCGCCGACATCAAGAGCCACTTGCTCGAGCGCGTCACCGCCGGTGAAGGCTTGGAAAAATACCTGGGCACCAAATACCCAGGCACCAAGCGTTTCGGCCTGGAAGGCGGCGAAAGCCTGATTCCGATGCTGGACGAGCTGATCCAGCGCTCCGGTTCCTACGGCACCAAGGAAGTCGTTATCGGCATGGCCCACCGTGGCCGTCTGAACGTACTGGTCAACACTTTCGGCAAGAACCCACGCGAGCTGTTCGACGAGTTCGAAGGCAAGAAGAAGGTCGAGCTGGGTTCCGGTGACGTGAAGTATCACCAGGGCTTCTCGTCCAACGTGATGACCACAGGTGGCGAAGTCCACTTGGCCATGGCGTTCAACCCGTCCCACCTGGAAATCGTTTCCCCGGTGGTCGAGGGTTCCGTCCGTGCGCGTCAGGATCGTCGCAACGATCCGACCGGTGAGAAGGTATTGCCAATTTCCATCCACGGTGACGCGGCATTCGCCGGTCAAGGCGTGGTCATGGAAACCTTCCAGATGTCCCAGACCCGCGGTTTCAAGACCGGTGGTACGGTTCACATCGTCATCAACAACCAGGTCGGTTTCACCATCAGCAACCCGCTGGACTCGCGTTCCACCGAGTACGCAACCGACGTCGCGAAAATGATCCAGGCGCCGATTCTCCATGTGAATGGCGATGACCCGGAAGCCGTGCTGTTCGTGACCCAGCTGGCCATCGACTACCGCATGCAGTACAAGCGCGACGTGGTGATCGACCTGGTCTGCTACCGTCGTCGCGGCCACAACGAGGCCGACGAGCCAAGCGGCACCCAGCCGCTGATGTACCAGCAGATCGCCAAGCAGCGCACCACCCGTGAGCTGTACGCCGAGCGCCTGACCCAGAGCGGTGTTCTGGATGCCGAGCGCGTCCAGGAAAAAGTCGATGAATATCGCAACGCCCTGGATAACGGCCTGCACGTTGTGAAGAGCCTGGTCAAGGAACCGAACAAGGAACTGTTCGTGGACTGGCGTCCTTACCTGGGCCACGCCTGGACCGCTCGTCACGACACGCGCTTCGATCTCAAGACCTTGCAGGAACTGTCCGCCAAGCTGCTGGAAATCCCGGAAGGCTTTGTGGTCCAGCGTCAGGTCGCGAAGATCTACGAAGACCGGCAGAAGATGCAAGCCGGCGGCCTGCCGATCAACTGGGGTTACGCCGAAACCATGGCGTACGCGACCCTGGCGTTCGAAGGTCACCCGATTCGCATCACCGGCCAGGACGTAGGCCGCGGCACTTTCTCGCACCGTCACGCGGCGCTGCACAACCAGAAAGACGCCAGCACCTACATCCCGCTGCAACACCTGTACAAGGGCCAGCCACGTTTCGACCTGTACGATTCGCTGCTGTCCGAAGAAGCCGTCCTGGCGTTCGAATATGGCTATTCCACCACCGAGCCGAATGCGCTGGTGATCTGGGAAGCCCAGTTCGGCGACTTCGCCAACGGTGCCCAGGTGGTTGTCGACCAGTTCATCACCAGCGGCGAGCACAAGTGGGGTCGTCTCTGCGGCCTGACCATGCTGTTGCCACACGGTTATGAAGGGCAGGGGCCGGAGCACTCTTCGGCGCGTCTGGAGCGTTACCTGCAACTGTGCGCCGAGCACAACGTCCAGGTTTGCGTACCAACGACCCCGGCGCAGATCTACCACCTGCTGCGTCGTCAGGTCATCCGTCCGCTGCGCAAGCCGCTGATCGTGCTGACACCGAAGTCGTTGCTGCGTCACAAACTGGCGATTTCCACGCTCGAAGACCTGGCCGAAGGCTCGTTCCAGACCGTCATTTCGGAAATCGATACCCTGGACGCAGCGAAGGTGACTCGCCTGATCCTGTGCAGCGGCAAGGTCTACTACGACCTGCTGGAAAAACGTCGTGCCGAAGGCCGCGAAGACATCGCCATCGTGCGTATCGAGCAGCTTTACCCGTTCCCGGAAGAGGACCTGATGGAGGCCATCGCGCCTTACACCAACCTCACCCATGTGGTGTGGTGTCAGGAAGAACCGATGAACCAAGGCGCGTGGTACAGCAGCCAGCATCACCTGCGTCGCAGCATCGGCAACCATAACAAGGCCCTGGGCCTTGAATATGCCGGCCGTGATGCGTCTGCGGCACCTGCTTGTGGTTATGCATCGATGCACGCCGAGCAGCAGGAAAAGCTGCTGCAAGATGCCTTTACCGTTTAA	MQESVMQRMWNSAHLSGGNAAYVEELYELYLHDPNAVPEEWRTYFQKLPADGNSATDVSHSTIRDHFVLLAKNQRRAQPVSAGSVSSEHEKKQVEVLRLIQAYRMRGHQAAQLDPLGLWQRPAPADLSITHYGLTNADLDTTFRAGDLFIGKEEASLREIHEALQQTYCRTIGAEFTHITDSEQRQWFQQRLESVRGRPTYSADIKSHLLERVTAGEGLEKYLGTKYPGTKRFGLEGGESLIPMLDELIQRSGSYGTKEVVIGMAHRGRLNVLVNTFGKNPRELFDEFEGKKKVELGSGDVKYHQGFSSNVMTTGGEVHLAMAFNPSHLEIVSPVVEGSVRARQDRRNDPTGEKVLPISIHGDAAFAGQGVVMETFQMSQTRGFKTGGTVHIVINNQVGFTISNPLDSRSTEYATDVAKMIQAPILHVNGDDPEAVLFVTQLAIDYRMQYKRDVVIDLVCYRRRGHNEADEPSGTQPLMYQQIAKQRTTRELYAERLTQSGVLDAERVQEKVDEYRNALDNGLHVVKSLVKEPNKELFVDWRPYLGHAWTARHDTRFDLKTLQELSAKLLEIPEGFVVQRQVAKIYEDRQKMQAGGLPINWGYAETMAYATLAFEGHPIRITGQDVGRGTFSHRHAALHNQKDASTYIPLQHLYKGQPRFDLYDSLLSEEAVLAFEYGYSTTEPNALVIWEAQFGDFANGAQVVVDQFITSGEHKWGRLCGLTMLLPHGYEGQGPEHSSARLERYLQLCAEHNVQVCVPTTPAQIYHLLRRQVIRPLRKPLIVLTPKSLLRHKLAISTLEDLAEGSFQTVISEIDTLDAAKVTRLILCSGKVYYDLLEKRRAEGREDIAIVRIEQLYPFPEEDLMEAIAPYTNLTHVVWCQEEPMNQGAWYSSQHHLRRSIGNHNKALGLEYAGRDASAAPACGYASMHAEQQEKLLQDAFTV	PGPT0001530_2201	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001530-sucA-K00164	NA	NA
D1-36_01508	1224	sucB	COG0508	Dihydrolipoyllysine-residue succinyltransferase component of 2-oxoglutarate dehydrogenase complex	ATGGCTATCGAGATCAAAGCCCCCACTTTCCCGGAATCGGTTGCCGATGGCACCATTGCCACCTGGCACAAAAAACCGGGCGACGCGGTCAAGCGCGACGAACTGATCGTCGACATCGAAACCGACAAGGTCGTGTTGGAAGTACTGGCCGAAGCTGACGGCGTCCTGGGCGCTATCGTCAAGAACGAAGGCGACACCGTGCTGTCCGCTGAAGTCCTGGGCTCCATCGAAGAGGGCGGTGCTGCCGCCGCCGCTCCAGCCGCCGCTGCCGCACCGGCTGCTGCTCAAGCCGACGCGCCTGCTGCCTCGGGCGAAGACGATCCAGTCGCCGCTCCGGCCGCTCGCAAGCTGGCTGAAGAAAACGGCATCAACATCGCTTCCGTTGCCGGTACCGGCAAAGGCGGTCGCGTGACCAAGGAAGATGTGGTTGCAGCCGTTGCCGCCAAGAAAGCCGCTCCAGCCGCTGCCCCGGCCAAGCCAGCCGCGCCTGCCGCTTCCGCGCCAGTGTTCGCTGCCGGTGACCGCGTTGAAAAACGCGTTCCGATGACCCGCCTGCGTGCCAAGGTCGCCGAGCGCCTGGTTGAAGCCCAGTCGAACATGGCGATGCTGACCACGTTCAACGAAGTCGACATGACCGAAGTCATGGCCCTGCGTTCGAAGTACAAGGACCTGTTCGAGAAGTCCCACAACGGCGTACGCCTGGGCTTCATGTCGTTCTTCGTCAAGGCTGCCACCGAAGCGCTGAAACGCTTCCCGGCCGTCAACGCGTCGATCGACGGTTCCGACATCGTGTACCACGGCTACGCCGACATCGGTGTTGCGGTCTCCAGCGACCGTGGCCTGGTGGTTCCGGTCCTGCGCAACGCCGAGCTGATGAGCCTGGCCGAAATCGAAGGCGGCATCGCTACCTTCGGCAAGAAGGCCCGTGACGGCAAGCTGTCCATCGAAGAGATGACCGGCGGTACGTTCACCATCACCAACGGTGGTACATTCGGTTCGATGATGTCGACCCCGATCGTCAACCCGCCGCAAGCGGCTATCCTGGGCATGCACAACATCCTGCAGCGTCCGATGGCGATCAACGGTCAGGTCGTGATTCGTCCGATGATGTACCTGGCACTGTCCTACGATCACCGCCTGATCGACGGCAAAGAAGCCGTGACGTTCCTGGTAACCATCAAGAACCTGCTTGAAGACCCGGCTCGTCTGCTGCTGGATATCTGA	MAIEIKAPTFPESVADGTIATWHKKPGDAVKRDELIVDIETDKVVLEVLAEADGVLGAIVKNEGDTVLSAEVLGSIEEGGAAAAAPAAAAAPAAAQADAPAASGEDDPVAAPAARKLAEENGINIASVAGTGKGGRVTKEDVVAAVAAKKAAPAAAPAKPAAPAASAPVFAAGDRVEKRVPMTRLRAKVAERLVEAQSNMAMLTTFNEVDMTEVMALRSKYKDLFEKSHNGVRLGFMSFFVKAATEALKRFPAVNASIDGSDIVYHGYADIGVAVSSDRGLVVPVLRNAELMSLAEIEGGIATFGKKARDGKLSIEEMTGGTFTITNGGTFGSMMSTPIVNPPQAAILGMHNILQRPMAINGQVVIRPMMYLALSYDHRLIDGKEAVTFLVTIKNLLEDPARLLLDI	PGPT0001535_2765	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001535-sucB-K00658	NA	NA
D1-36_01509	1437	lpdG	COG1249	Dihydrolipoyl dehydrogenase	ATGACTCAGAAATTCGACGTGGTAGTGATTGGTGCGGGCCCTGGTGGCTACGTAGCGGCCATCAAGGCTGCGCAACTGGGCCTTACCACTGCCTGCATCGAGAAATACACCGACAAGGAAGGCAAACAGGCCTTGGGCGGTACTTGCCTGAACGTCGGTTGCATTCCTTCCAAGGCGCTGCTGGACAGCTCCTGGAAATACAAGGAAGCGAAAGAAAGCTTCAACGTTCACGGTATCTCTACCGGTGAAGTGAAAATGGACGTCGCCGCGATGGTTGGCCGAAAGGCTGGCATCGTCAAGAACCTGACCAGCGGTGTCGCCACCCTGTTCAAGGCCAACGGCGTGACCTCCATCGAAGGCCACGGCAAACTGCTGCTGGGCAAGAAAGTCGAAGTGACCAAGCCGGACGGCTCGGTTGAAGTGATCGAAGCCGAAAACGTCATCCTGGCGCCAGGCTCGCGTCCGATCGATATCCCGCCTGCTCCAGTCGACCAGAATGTGATTGTCGATTCCACCGGCGCCCTGGAATTCCAGACCGTGCCAAAACGCCTGGGCGTGATCGGCGCTGGCGTGATCGGCCTCGAGCTGGGTTCGGTATGGTCGCGCCTGGGCGCTGAAGTGACCGTGCTCGAAGCCCTCGACACCTTCCTGATGGCCGCCGACGCCGCGGTTTCCAAGGAAGCGCTGAAGACCCTGACCAAGCAAGGCCTGGACATCAAACTGGGCGCCCGCGTGACCGGCTCCAAGGTCAACGGCGACGAAGTCGTGGTGAACTACACCGACGCCAACGGCGAACAGACCATCACCTTTGACAAGCTGATCGTGGCCGTCGGCCGTCGTCCAGTGACCACCGACCTGCTGTCCGCCGATTGCGGCGTGGAAATCGACGAGCGCGGTTTCATCGCGGTCGATGACCATTGCGCAACCGCCGTACCGGGCGTCTTCGCCATCGGTGACGTGGTTCGCGGCATGATGCTGGCCCACAAGGCTTCCGAAGAAGGCATCATGGTCGTCGAGCGCATCAAGGGCCACAAGGCCCAGATGAACTACGACCTGATCCCATCGGTTATCTACACCCACCCGGAAATCGCATGGGTTGGTAAAACCGAGCAGGCCTTGAAAGCCGAAGGCGTTGAAGTTAACGTCGGCACCTTCCCGTTCGCCGCCAGTGGCCGTGCCATGGCAGCCAACGATACCGGTGGTTTCGTGAAAGTCATCGCCGATGCCAAGACGGATCGCGTATTGGGCGTTCACGTCATCGGCCCAAGCGCTGCCGAGCTGGTCCAGCAAGGCGCGATCGGTATGGAATTCGGCACCAGCGCCGAGGACCTGGGCATGATGGTCTTCTCCCATCCGACCCTGTCCGAAGCCTTGCACGAAGCGGCCCTGGCTGTGAATGGCGGCGCCATCCACGTGGCCAACCGCAAGAAGCGTTAA	MTQKFDVVVIGAGPGGYVAAIKAAQLGLTTACIEKYTDKEGKQALGGTCLNVGCIPSKALLDSSWKYKEAKESFNVHGISTGEVKMDVAAMVGRKAGIVKNLTSGVATLFKANGVTSIEGHGKLLLGKKVEVTKPDGSVEVIEAENVILAPGSRPIDIPPAPVDQNVIVDSTGALEFQTVPKRLGVIGAGVIGLELGSVWSRLGAEVTVLEALDTFLMAADAAVSKEALKTLTKQGLDIKLGARVTGSKVNGDEVVVNYTDANGEQTITFDKLIVAVGRRPVTTDLLSADCGVEIDERGFIAVDDHCATAVPGVFAIGDVVRGMMLAHKASEEGIMVVERIKGHKAQMNYDLIPSVIYTHPEIAWVGKTEQALKAEGVEVNVGTFPFAASGRAMAANDTGGFVKVIADAKTDRVLGVHVIGPSAAELVQQGAIGMEFGTSAEDLGMMVFSHPTLSEALHEAALAVNGGAIHVANRKKR	PGPT0001380_2638	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
D1-36_01511	1167	sucC	COG0045	Succinate--CoA ligase [ADP-forming] subunit beta	ATGAATCTTCACGAGTATCAGGGTAAGCAGCTGTTCGCTGAGTACGGCCTGCCAGTATCCACCGGCTACGCTGTAGACACCCCGGAAGCGGCAGCAGAAGCTTGCGACAAAATCGGCGGCAGCGAATGGGTCGTCAAAGCCCAGGTTCACGCCGGTGGTCGCGGTAAAGCGGGCGGCGTCAAGCTGGTTCGCAGCAAAGAAGACGCCAAAGCCTTCGCACAGCAGTGGCTGGGCAAGCGTCTGGTGACCTACCAGACCGACGCCAACGGTCAGCCAGTCACCAAGATCCTGGTTGAATCGTGCACTGATATCGCTAAAGAGCTGTACCTGGGCGCTGTCGTTGACCGTTCGAGCCGCCGCATCGTGTTCATGGCTTCCACCGAAGGTGGCGTGGACATCGAGAAAATCGCTCACGACACCCCTGAGAAAATCCTCAAGGCCACCATCGATCCACTGGTTGGCGCACAGCCGTTCCAGGGTCGCGAGCTGGCATTCCAGCTGGGCCTGGAAGGTAAGCAGGTCACTCAGTTCGCCAAGATCTTCGTAGGCCTGGCCAAGCTGTTCCAGGACCACGACCTGGCACTGCTGGAAGTGAACCCGCTGGTGATCAAGGCCGACGGCGATCTGCACTGCCTCGATGCCAAGATCAACATCGACGCCAACGCCATGTACCGTCAGCCTAAGCTGAAGACTTTCCACGATCCGTCGCAAGACGATCCGCGCGAAGCGCACGCTGCCAAGTTCGAACTGAACTACGTAGCCCTGGAAGGCAACATCGGCTGCATGGTCAACGGTGCCGGCCTGGCCATGGGTACCATGGACATCGTCAACCTGCACGGCGGCAAGCCAGCCAACTTCCTCGACGTGGGCGGCGGTGCTACCAAGGAACGCGTTACCGAAGCGTTCAAGATCATCCTGTCCGACACCAACGTCGCTGCAGTACTGGTCAACATCTTCGGCGGCATCGTTCGTTGCGACATGATTGCCGAAGGCATCATCGGCGCCGTGAAAGAAGTCGGCGTGAAAATCCCGGTTGTTGTTCGCCTCGAAGGCAACAACGCTGAGCTGGGCGCTAAAGTACTGGCAGAAAGCGGTTTGAACATCATCGCTGCTACCAGCCTGACCGACGCTGCTCAACAAGTCGTTAAAGCTGCGGAGGGCAAATAA	MNLHEYQGKQLFAEYGLPVSTGYAVDTPEAAAEACDKIGGSEWVVKAQVHAGGRGKAGGVKLVRSKEDAKAFAQQWLGKRLVTYQTDANGQPVTKILVESCTDIAKELYLGAVVDRSSRRIVFMASTEGGVDIEKIAHDTPEKILKATIDPLVGAQPFQGRELAFQLGLEGKQVTQFAKIFVGLAKLFQDHDLALLEVNPLVIKADGDLHCLDAKINIDANAMYRQPKLKTFHDPSQDDPREAHAAKFELNYVALEGNIGCMVNGAGLAMGTMDIVNLHGGKPANFLDVGGGATKERVTEAFKIILSDTNVAAVLVNIFGGIVRCDMIAEGIIGAVKEVGVKIPVVVRLEGNNAELGAKVLAESGLNIIAATSLTDAAQQVVKAAEGK	PGPT0019515_2175	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
D1-36_01512	885	sucD	COG0074	Succinate--CoA ligase [ADP-forming] subunit alpha	ATGAGCGTCCTGATCAACAAAGACACCAAGGTTATCTGCCAGGGCATTACCGGTTCGCAAGGTAGTTTCCACACCCAGCAAGCCATCGAGTACGGCACCCAGATGGTTGGCGGTGTAACTCCGGGCAAGGGCGGCACCGAACACCTGGGCCTGCCTGTCTTCAACACCGTGAAAGACGCCGTAGCGGCCACTGGCGCCACCGCCAGCGTGATCTACGTTCCAGCTCCTTTCTGCAAGGACTCCATCCTTGAAGCAGCGTTCGGCGGCATCAAGCTGATCGTTTGCATCACCGAAGGCATCCCGACCATCGACATGCTGGAAGCCAAGGTCAAGTGCGACGAACTGGGTATCACCCTGATCGGCCCTAACTGCCCAGGCGTGATCACTCCAGGCGAATGCAAGATCGGCATCATGCCAGGTCACATTCACTTGCCAGGCAAGGTCGGTATCGTTTCCCGTTCCGGTACCCTGACTTACGAAGCCGTGAAGCAGACCACTGACGCCGGTTTCGGTCAGTCGACTTGCGTCGGCATCGGCGGTGACCCGATCCCAGGCTCCAACTTCATCGACATCCTGAAGCTGTTCCAGGAAGACCCGAAGACCGAAGCGATCGTCATGATCGGTGAGATCGGCGGTTCCGCTGAAGAAGAAGCCGCTGCCTACATCAAGGCCAACGTGACCAAGCCGGTTGTTTCCTACATTGCTGGTGTGACTGCTCCTCCGGGCAAGCGCATGGGCCATGCTGGCGCAATCATCTCTGGCGGCAAAGGCACTGCAGACGAGAAGTTCGCTGCGCTGCAAGACGCAGGCGTGAAAACCGTGCGTTCGCTGGCAGACATCGGCAAGGCCCTGGCCGAGCTGACTGGCTGGGAAATGAAGAAGTAA	MSVLINKDTKVICQGITGSQGSFHTQQAIEYGTQMVGGVTPGKGGTEHLGLPVFNTVKDAVAATGATASVIYVPAPFCKDSILEAAFGGIKLIVCITEGIPTIDMLEAKVKCDELGITLIGPNCPGVITPGECKIGIMPGHIHLPGKVGIVSRSGTLTYEAVKQTTDAGFGQSTCVGIGGDPIPGSNFIDILKLFQEDPKTEAIVMIGEIGGSAEEEAAAYIKANVTKPVVSYIAGVTAPPGKRMGHAGAIISGGKGTADEKFAALQDAGVKTVRSLADIGKALAELTGWEMKK	PGPT0001540_1578	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
D1-36_01513	1314	brnQ	COG1114	Branched-chain amino acid transport system 2 carrier protein	ATGAAAGTGTTGAAAGGTCAGGACATCCTGGCGCTTGGTTTCATGACATTTGCCCTGTTCGTCGGGGCCGGCAATATCATCTTCCCGCCTATCGTTGGTTTGCAGTCCGGGCCTCATGTCTGGATGGCGGCGTTGGGCTTCCTGATCACTGCGGTTGGGTTGCCGGTGATCACCGTCGTTGCGCTGGCGAAAGTCGGTGGCGCGATGGACGCGTTGAGCAGCCCAATCGGCAAGATTGCCGGTGGCTTGCTGGCGGCAGTCTGTTACCTGGCGGTCGGCCCGCTGTTCGCCACGCCCCGAACCGCCACCGTATCGTTTGAAGTAGGCCTGGCGCCGCTGACCGGCGAAAGTCCGTTGGCGCTGTTTCTCTATAGCGCGGTGTACTTCCTGCTGGTGTTCTTCATTTCGCTCTATCCAGGGCGCCTGCTCGATACCGTCGGGCGCTTTCTCGCGCCGCTGAAAATCATCGCCCTGGCCGTGCTCGGCATCGCTGCGTTTGCGCTGCCCGCAGGCGATATCGGCGTGGCGACACCCGAGTACGTGGCGGCTCCGTTTTCCCAAGGCTTCATCAATGGTTACCTGACCATGGATACCCTCGGCGCTCTGGTGTTCGGCATTGTTATCGTCAACGCCATCCGTTCTCGGGGCGTCGAGTCGCCGGCCTTGATCACCCGTTACGCCATCATCGCCGGGCTGATTGCCGGTGTGGGGCTGGCGCTGGTTTATGTCAGCCTGTTCCGCCTGGGCTCCGGTAGCCACGAAGTGGCGGCGGGCGCGACCAACGGCGCCGCTGTGTTGCACGCCTACGTACAGCACACCTTCGGCAGCCTGGGCAGCGGCTTCCTTGCGGTGTTGATTTCCCTGGCATGCCTGGTGACCGCCGTCGGCCTGACCTGCGCCTGCGCCGAGTACTTCAGCCGTGTACTGCCGCTGTCCTACAAGACCTTGGTGATCATCCTCGCGGCATTTTCGCTGCTGGTGTCCAACCTGGGCCTGACCAAGCTGATTGCCTTCTCGATCCCGGTCCTGACTGCGATCTATCCACCTTGTATCGCGCTGGTGGCCCTGAGCTTCTGCAAGGATTTCTGGCACGAGCAAGGTCGGATTGTCGGCCCGGTCATGCTGGTGTCGTTCCTGTTCGGCTTGATCGATGCGCTCAAGGGGGCAGGGCTGGCGGATTGGATGCCGGCGCAACTGGCCCATCTGCCGTTGAGCGAGCAAGGCCTGGCGTGGCTGGTGCCTTCGGTCATGACCCTGGCGGTCGCTGTGGTGTGCGATCGGTTGCTGGGCAAGCGCAGCGAAGCCTTGGCTTAA	MKVLKGQDILALGFMTFALFVGAGNIIFPPIVGLQSGPHVWMAALGFLITAVGLPVITVVALAKVGGAMDALSSPIGKIAGGLLAAVCYLAVGPLFATPRTATVSFEVGLAPLTGESPLALFLYSAVYFLLVFFISLYPGRLLDTVGRFLAPLKIIALAVLGIAAFALPAGDIGVATPEYVAAPFSQGFINGYLTMDTLGALVFGIVIVNAIRSRGVESPALITRYAIIAGLIAGVGLALVYVSLFRLGSGSHEVAAGATNGAAVLHAYVQHTFGSLGSGFLAVLISLACLVTAVGLTCACAEYFSRVLPLSYKTLVIILAAFSLLVSNLGLTKLIAFSIPVLTAIYPPCIALVALSFCKDFWHEQGRIVGPVMLVSFLFGLIDALKGAGLADWMPAQLAHLPLSEQGLAWLVPSVMTLAVAVVCDRLLGKRSEALA	PGPT0014385_1712	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_BRANCHED-CHAIN_AMINO_ACID_TRANSPORT,PGPT0014385-TC_LIVCS|brnQ-K03311	NA	NA
D1-36_01514	738			hypothetical protein	ATGTCATTCATCCAAGCCAACCTGATCCATCTCCTGGCCGCGGTATGGTTCGTCATCTGCTGGGCCGGTTATACCCGGTATGCCTCTTGGAAGGCTCGCGACACGGCATGCTTGGCCAGCGTTATGCATTTGTACCGTGAAGACTGGATGCGACGCATGTTGCTGCGTGACAACCGCATCGCCGACGCCAGCGTGATCGGCAACTTGGAGCGCAACGCGTCGTTTTTTGCCTCCAGTACGTTGATTATCCTGGCGGGTATCCTGACGGTGCTCGGAGCGTCTGATCGAGCGGTTTCGTTGCTGGCTGACCTGCCGCTGGTGCAGCAGGCCTCCCAAGGCATGGCGGAAGTGAAGCTGCTGTGTCTGGCGTTGGTGTTCGTCTATGCGTTCTTCACGTTCAGCTGGTGCATGCGCCAATACAATTTCGCCGCCGTCCTGGTGGGGTCGGCGCCGATGATCGGTGAGCGGCACGTGTCCGAGCTTGAGCGCAAGGCCTTTGCTTCGAGGGCGGCGCGGGTTATTTCCATGGCGGCCAACCAGTTCAACTTCGGTTTGCGTTCCTATTATTTCGGCATGACCATGTTGGCCTGGTTCGTCAGCCCGTGGTTGTTCATGTTGATGAGCGCCGGCGTGGTCTTTGTGTTGTATCAGCGCGAGTTCCATTCGGACGTGCTGAACGTCATGGTCTATACGCCTACCGAGGCGCCAGCGCCCGAAACCGGCAAGGAAACCGCCTGA	MSFIQANLIHLLAAVWFVICWAGYTRYASWKARDTACLASVMHLYREDWMRRMLLRDNRIADASVIGNLERNASFFASSTLIILAGILTVLGASDRAVSLLADLPLVQQASQGMAEVKLLCLALVFVYAFFTFSWCMRQYNFAAVLVGSAPMIGERHVSELERKAFASRAARVISMAANQFNFGLRSYYFGMTMLAWFVSPWLFMLMSAGVVFVLYQREFHSDVLNVMVYTPTEAPAPETGKETA				NA	NA	NA	NA	NA
D1-36_01515	252			hypothetical protein	ATGCGTAAGACTTTAGCTATTGCCTTGATGTTGGCCGCCTCTCTCGGTCTCGCTGCCTGCGATAAAAAATCCGAGGACAAGGCTCAAGATGCCCAACAACACGCTGAACAAGCTCAGCAAGACATGAACAAAGCACAGGATAAAGTGAACGACGCGGCGAAAGAAAACGCCGAAGCCGCCAAAGATCAGGCTGAATCGAACAATGCCGCGCAACAGGAACAAGCCCCTGCCGACGCGCCTAAAACCAACTGA	MRKTLAIALMLAASLGLAACDKKSEDKAQDAQQHAEQAQQDMNKAQDKVNDAAKENAEAAKDQAESNNAAQQEQAPADAPKTN				NA	NA	NA	NA	NA
D1-36_01516	477			hypothetical protein	ATGGCTGAAGATCCCGTTTTTGAGCGCGCGACCCGTTTTTTATCGGCGCTCAGGCATTGCCACGTGCTAGGCATCAAACTGCACAGCGCCAGTCGCGATGGGTTGACGCTGGAGTTGCCCTACAGCGCGCATCTTGTCGGCAATCCCCTGACGGGCATTGTCCATGGCGGAGCGCTGACTTCATTGATGGACACCGCCTGCGGCATGTCGACCTTATGTGTACTGCCGCAATTCGAAGTCTGCCCGACATTGGACCTGCGCATCGACTACATGCACGCTGCCAGGCCCAACAAGGCCATCTATGGCTTCGCCCAATGCTATCGGGTGACGCCGGATGTGATTTTCAGCCGGGGATTTGCCTATCAGGATGATCCCGAGCAGCCCATTGCCCACGTCGTGGGTACTTTCATGCGCCTGGGCGATAGCGCCCGAGGACTCAAGGGAGGCGGCCCCACGGCTGCCGCGCTGACACCATGA	MAEDPVFERATRFLSALRHCHVLGIKLHSASRDGLTLELPYSAHLVGNPLTGIVHGGALTSLMDTACGMSTLCVLPQFEVCPTLDLRIDYMHAARPNKAIYGFAQCYRVTPDVIFSRGFAYQDDPEQPIAHVVGTFMRLGDSARGLKGGGPTAAALTP	PGPT0001841_42	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001841-yigI-NA	NA	NA
D1-36_01517	462			hypothetical protein	ATGACCGATCTTACCGAGGTGCAACTGCGCCAGGCTTGCGAGCAGGGTGACGTCGCGATGCTGCTGGCTTCGATTCCCTATGCGCGGCTCATCGGCGTCGAATGCACCCGCCAGGGTGATGATCTGCTGTTTCGCCTGCCGGCCAATAAAGACAACATCGGTAACCCTTTACTGCCCGCTATCCACGGCGGGGTCATCGCCGGATTCATGGAGCTGTCGGCCGCCGTTCATCTGCTGATTGCCACCCGTGCGACTGGTGTGCCGAAGATCATCGATTTTTCCCTGGATTACCTGCGTGCCGGGCAGTTCCGCGACACCTTTGCCCGGTGCCAGGTCTGGCGCCAAGGGCGGCGCGTGGCCAACGTGGCGGTCACGGCCTGGCAAGAGTCCGAAGCCGAACCCATTGCCACCGCCCGTGCCCATTTCAAGATCCCGGCGCCCTCCAGGCCGAGCGGCCCTTGA	MTDLTEVQLRQACEQGDVAMLLASIPYARLIGVECTRQGDDLLFRLPANKDNIGNPLLPAIHGGVIAGFMELSAAVHLLIATRATGVPKIIDFSLDYLRAGQFRDTFARCQVWRQGRRVANVAVTAWQESEAEPIATARAHFKIPAPSRPSGP	PGPT0001841_14	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001841-yigI-NA	NA	NA
D1-36_01518	1905	htpG	COG0326	Chaperone protein HtpG	ATGAGCGTGGAAACTCAAAAGGAAACCCTGGGCTTCCAGACCGAGGTGAAGCAACTGCTGCACCTGATGATTCACTCGCTGTATTCGAATAAGGAAATTTTCCTCCGCGAGCTGATTTCGAACGCCTCCGACGCTGTCGACAAATTACGTTTCGAAGCGCTGTCCAAGCCAGAACTGCTGGAGGGCGGTGCCGAGCTGAAAATCCGTGTGAGCTTCGACAAGGACGCCAAGACCGTCACCCTCGAAGACAACGGTATCGGCATGAGCCGCGACGAGGTGATCACGCACTTGGGCACCATCGCCAAGTCCGGCACCGCCGATTTCATGAAAAACCTGTCTGGCGACCAGAAGAAGGATTCCCACCTGATCGGTCAGTTCGGCGTCGGATTCTATTCCGCGTTCATCGTTGCCGATCACGTTGAAGTGTTCAGCCGCCGTGCCGGCCTCGCCCCGAGCGAAGGCGTGCACTGGTCCTCCAAGGGCGAGGGCGAGTTTGAGGTCGCGACCATCGACAAGGCCGATCGCGGCACCCGCATCGTCCTGCACCTCAAGTCTGGCGAAGACGAGTTCGCCGATGGCTGGCGCCTGCGCAACATCATCAAGAAGTACTCCGACCACATCGCGCTGCCGATCGAGCTGCCGAAGGAAGCCACCGCTGCCGAAGGCGAAGAAAAGCCCGAAGTGGAATGGGAAACCGTCAACCGCGCCAGTGCCTTGTGGACCCGTCCGCGCACCGAGGTAAAGGACGAGGAATACCAGGAGTTCTACAAGCACATCGCCCACGATTACGAAAATCCGCTGAGCTGGAGCCATAACAAGGTCGAAGGCAAGCTGGAATACAACTCGCTGCTGTACGTGCCGGCCCGCGCGCCGTTCGACCTGTACCAGCGCGAAGCGCCACGTGGCCTGAAGCTTTACGTGCAGCGCGTGTTCGTAATGGACCAGGCCGAATCGTTCCTGCCGCTTTACCTGCGCTTCATCAAGGGTGTGGTGGATTCCAATGACCTGTCGCTGAACGTTTCGCGGGAAATCCTGCAGAAAGATCCGATCATCGACTCCATGAAGTCGGCGCTGACCAAGCGCGTGCTGGACATGCTGGAGAAACTGGCGAAGAACGAGCCCGAGCAGTACAAGAACTTCTGGAAAAACTTCGGCCAGGTCATGAAAGAAGGTCCGGCCGAAGACTTCGCCAATAAAGAGAAGATCGCTGGCCTGCTGCGCTTTGCCTCGACCCAGGGTGAGGATGGCGAACAGATCGTTGGCCTGGCCGACTATCTGGCTCGCGCCAAGGAAGGACAGGACAAGATCTACTACCTGACCGGCGAGACTTATGCACAGGTCAAGAACAGCCCGCACCTGGAAGTCTTCCGCAAGAAAGGCATCGAAGTGCTGCTGCTGACCGATCGCATCGACGAGTGGCTGATGAGCTACCTCAACGAGTTCGACGGCAAGAGCTTCGTCGATGTGGCCCGTGGCGATCTCGACCTTGGCAACCTGGATTCGGAAGAAGACAAGAAAGCTGCCGAAGAAGTCGCCAAGAGCAAGGAAGGCCTGGTCGAGCGGATCAAGACTGCCTTGGGCGAAGCCGTCAGCGAAGTGCGGGTTTCCCACCGCTTGACCGATTCCCCGGCGATCCTGGCCATCGGTGAGCAAGACCTCGGTTTGCAGATGCGCCAGATCCTCGAAGCCAGCGGACAGAAAGTCCCGGACTCCAAGCCGATCTTTGAATTCAACCCGGCCCACCCGCTGGTGGAGAAGCTCGACAACGAGCAGAACGAAGAGCGTTTCGGCGACCTGTCGCACATTCTCTTCGACCAGGCGGCCCTGGCGGCTGGCGACAGCTTGAAAGACCCGGCTGCGTATGTACGTCGCCTGAACAAGCTGTTGGTTGAACTGTCAGCTTGA	MSVETQKETLGFQTEVKQLLHLMIHSLYSNKEIFLRELISNASDAVDKLRFEALSKPELLEGGAELKIRVSFDKDAKTVTLEDNGIGMSRDEVITHLGTIAKSGTADFMKNLSGDQKKDSHLIGQFGVGFYSAFIVADHVEVFSRRAGLAPSEGVHWSSKGEGEFEVATIDKADRGTRIVLHLKSGEDEFADGWRLRNIIKKYSDHIALPIELPKEATAAEGEEKPEVEWETVNRASALWTRPRTEVKDEEYQEFYKHIAHDYENPLSWSHNKVEGKLEYNSLLYVPARAPFDLYQREAPRGLKLYVQRVFVMDQAESFLPLYLRFIKGVVDSNDLSLNVSREILQKDPIIDSMKSALTKRVLDMLEKLAKNEPEQYKNFWKNFGQVMKEGPAEDFANKEKIAGLLRFASTQGEDGEQIVGLADYLARAKEGQDKIYYLTGETYAQVKNSPHLEVFRKKGIEVLLLTDRIDEWLMSYLNEFDGKSFVDVARGDLDLGNLDSEEDKKAAEEVAKSKEGLVERIKTALGEAVSEVRVSHRLTDSPAILAIGEQDLGLQMRQILEASGQKVPDSKPIFEFNPAHPLVEKLDNEQNEERFGDLSHILFDQAALAAGDSLKDPAAYVRRLNKLLVELSA	PGPT0014640_2025	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	TRIGGERED_IMMUNITY	PAMP|EFFECTOR_TRIGGERED_IMMUNITY|PTI	PTI-PR1_LIKE_PROTEINS,PGPT0014640-hptG-K04079	NA	NA
D1-36_01519	729			hypothetical protein	ATGAGTCAGGTTACGGTTCGTTCGCTGGTCTATCAGGTCGATGGTCAAAGTTATGAGGGGCGCCTGGCCTTCGACGTCAATCAACAGGGCCCACGTCCGGGTTTGCTGATGGCGCCGAACTGGATGGGTGTTGGGGCGGGGGCCGAGGAAATCGCCAGGTCTGTGGCGGCAAACGGATATGTGGTGCTGATTGCCGACCTTTACGGGCAAACAGTGCGCCCGAGCAATGCCGATGAGGCGGGAGCGGCGATGATGCCGCTCAAGAACGACCGGGCGTTGTTGCGCAAGCGCATGCAGGCAGCGTTCGAGCAACTGCAGAGCCAGGACCAAGCGAAGGTCGACACGGCGAAGCTGGCCGCTTTTGGTTTTTGCTTTGGGGGATGCTGCGCCTTGGAGTTGGCTCGCACTGGCGCACCCCTGAAAGCGACGATCTCATTCCACGGCACCCTGGATACGCCGAACCCGGCTGATGCCCAGAACATCGAGGGCGCGGTATTGGTCCTGCACGGCGCCTCCGACCCGCTGGTGCCAAAGGAACAGCTGCCGGCCTTCGAAGATGAAATGAACGCGGCTGGGGTGGATTGGCAATTGCTGAGCTACGGCGGTGCGGTGCACTCGTTCACCGACCCGCAGGCCAATGTGCCTGGCAAGATGATGTACGACGCCAAGGTCGCCGGACGGGCGTTCCGCTCGATGCATAACCTGCTGGATGAAGTGTTCAAGGGCTGA	MSQVTVRSLVYQVDGQSYEGRLAFDVNQQGPRPGLLMAPNWMGVGAGAEEIARSVAANGYVVLIADLYGQTVRPSNADEAGAAMMPLKNDRALLRKRMQAAFEQLQSQDQAKVDTAKLAAFGFCFGGCCALELARTGAPLKATISFHGTLDTPNPADAQNIEGAVLVLHGASDPLVPKEQLPAFEDEMNAAGVDWQLLSYGGAVHSFTDPQANVPGKMMYDAKVAGRAFRSMHNLLDEVFKG				NA	NA	NA	NA	NA
D1-36_01520	861			hypothetical protein	ATGACCGCTCCCCTCATCGTTCGTCCCCGCGCAGAAGACGTGGAAGGCCAGCCGATTCTTCGGCCCTTGCCGTCCGCTAAATGCCGCAGCGTTGGACCTTTCGTGTTTTTCGACCATATGCTGCAAACGTCCTACCCGGCCGGTCGAGGCATGAACATTCGCCAACATCCACACATCGGTCTGTCCACCCTCACCTACTTGTTCGAGGGCCAGATCCAGCATAAGGACAGCCTGGGTTCCGATCAGGTGGTAAACGCCGGGGATGTCAGTTGGATGACCGCCGGCAGCGCCATTGCCCATGTCGAGAGGACACCAAAAGCGTTGTTGGAGAGCGGCTTCGTGCTGCATGGGCTGCAAATCTGGCTGGCCTCGCCCAAGTCTCACGAGGAAGGTCCGGGGCACTACAGCCATCATCCGGCACAGAGCCTGCCGGTCAGTGAGAACCTGGGGGTGAGCATCCGCATGATCGCCGGGTCAGGCTTTTGCCTGGAATCGCCGGTGCCGGTGCTGTCTCCTACGCTTTATGCCGAACTGAACCTGCAGACCGCAACGACGTTGCTGATTCCCACGGAACATGAAGAACGCGCACTGTACATCCTGGACGGCGAGGCGCAGTTGGACGGTGAGCCGCTTGAGCCCCATTCGCTGGTGATATTGCCTGCCGGGGAAGAAATGACGCTGTCTGCCGACACCGAGTGCCATGCCGTGCTGTTCGGCGGTGCGCCCTTGGATGGGCCACGGCGGATGAATTGGAATTTCGTCTCCAGCGACCCGGCCCGCATAGACGAAGCCCGCCGACGCTGGGCGGCCGGTGACTGGCCAACCGTACCAGGGGAAAGCGAGCGGATCGAGTTGCCCTGA	MTAPLIVRPRAEDVEGQPILRPLPSAKCRSVGPFVFFDHMLQTSYPAGRGMNIRQHPHIGLSTLTYLFEGQIQHKDSLGSDQVVNAGDVSWMTAGSAIAHVERTPKALLESGFVLHGLQIWLASPKSHEEGPGHYSHHPAQSLPVSENLGVSIRMIAGSGFCLESPVPVLSPTLYAELNLQTATTLLIPTEHEERALYILDGEAQLDGEPLEPHSLVILPAGEEMTLSADTECHAVLFGGAPLDGPRRMNWNFVSSDPARIDEARRRWAAGDWPTVPGESERIELP				NA	NA	NA	NA	NA
D1-36_01521	1011			hypothetical protein	GTGCCCTCGATCCGTTTGATGTTCGCCTGCCTGCTGGCCGTTACGTGCAGCACCGCCTCGGCTCGCGAATATGCCTACAGTGATGCGCACCTGCATTACGTCGATTTCTTCCAGGAAACCGCCGGCATGGCCAAGCTCCTCAAGGCCATGGCGGACAATCGCATCGAGCATGTGATGATTTCCGGCGTGCCCGTGGCGAAGAAATGGCACGAAGACGAACCCAAGCGACCGCGTTACTACGCCGGTGACGATGCGGACGCCTATTGGTACAGCGCCACCGATGTGATTGTCGCTGCCGCGGTGTCCAAGCTCCCCGCTGAGCAACGCCAGCATTTCCATCCATTCCTGTCGGGCTTCAACCCCAATGACAAGAACTCCGATGCGCATATCCAACGCATGCTCGATCTCTATCCGGGGCTGTGGCAAGGCATCGGCGAAGTGTTCACCCGTCATGACGACCTGACGGCGCTGACCTCCGGCGACACGCCGCGCGCCAACAACGAAGCCATGACCCGCATCTATCACCTGGCGGCGGAGAATGATCTGCCCGTGATGCTGCATTCCAACATCACGTCCAAGCGTGAGAGAAATCCGCTGTACCTGGCAGAAATCGAAGAACCGCTGCGCAACCATCCACACACACGGTTCATCTGGGCCCATGCCGGCACGAGCATGGAAATTCACCGGCACCAGACCCGGCTGGATTTTCTGCTGCCGACCCTGACGCGGATGCTGGAGTCTTATCCCAATCTTTTCATCGACCTGTCCTGGAGCATGCTCACGCCGTATCTACTGGATGAGGCGGGCAAGCCCCGGGATGAATGGTTGAAACTGGTGGAGCGCTTCCCGGAGCGGTTCATGGTGGGATCGGACGTGGTAGGACGATTCAACAAATTGGGTAAGGAGTTGCACAGCTTCGATCCGTTCCTGGATGCCTTGCCTGAGGATGTGGCGCGGAAGGTGGCGCGGGACAACTTTCTGGCCGTGTTGCCGCGCTCAGTCACCCGCTGA	MPSIRLMFACLLAVTCSTASAREYAYSDAHLHYVDFFQETAGMAKLLKAMADNRIEHVMISGVPVAKKWHEDEPKRPRYYAGDDADAYWYSATDVIVAAAVSKLPAEQRQHFHPFLSGFNPNDKNSDAHIQRMLDLYPGLWQGIGEVFTRHDDLTALTSGDTPRANNEAMTRIYHLAAENDLPVMLHSNITSKRERNPLYLAEIEEPLRNHPHTRFIWAHAGTSMEIHRHQTRLDFLLPTLTRMLESYPNLFIDLSWSMLTPYLLDEAGKPRDEWLKLVERFPERFMVGSDVVGRFNKLGKELHSFDPFLDALPEDVARKVARDNFLAVLPRSVTR				NA	NA	NA	NA	NA
D1-36_01522	465			hypothetical protein	ATGCACCTCACCCGTTCAAGCGCACTGCTCGCGCTGTTGTTGACCTGCGGCCTGGCCCAGGCGGAAGTTCGTGTCGAAGGCCCGGTGGAATATGGGGTATTCGAAGGGCCGAAGGCCGAGTTGCAATCGGGCGAGCGGGTCTTGCGTCGCAGCAATGAGCAGATCCGCCAGACCGAAAGTGTTCCGGCCAAGCTGGGCACCAAGTTCGGCATGCGCTATCAGTTGGCGGGCAAGGTCGCTGACGGCCAGCCGTTGACCCTGTTGTACTTCACCCCCGGTATCCGCACACCCGATGGCGTACGCCACGACAAATTCGAAGTCATCCAGAAACTGGTGGCCGGCGCGCCCCAGGACGTCATGGCCTATGAATTTACCGAAAGCCACGAAGTGGTGCCGGGGGAGTGGCGGTTCATGGTGTTCCAGGGGGATCGGCTGTTGACGCAGCAACGGTTTGTCGTGCGCTGA	MHLTRSSALLALLLTCGLAQAEVRVEGPVEYGVFEGPKAELQSGERVLRRSNEQIRQTESVPAKLGTKFGMRYQLAGKVADGQPLTLLYFTPGIRTPDGVRHDKFEVIQKLVAGAPQDVMAYEFTESHEVVPGEWRFMVFQGDRLLTQQRFVVR				NA	NA	NA	NA	NA
D1-36_01523	303			hypothetical protein	ATGCGTAAATCTTATTCGAGTGAGTTCAAGCTCAAGGCTGCCAGCATGGTGCTGGATGAAGGCCAGCCGGTTACCGAGGTCTGTGCCAGCCTAGATATCGGCCCCACTGCTCTGCGCCGCTGGGTCGATCAAGTGCAAAAAGAACGCCTGGGTTCGACCCCGGTAGGGGCCAAGGCGATTACCGCTGATCAGCGAGAAATCCAGAGGCTCAAAGCCCTACTCAGGGAGAAAGACCTGGACATTGAAATCCTAAAAAAGGCCAGTGCTCTCCTGCTTTTGGACGCCAAAGATCATTCACGCTGA	MRKSYSSEFKLKAASMVLDEGQPVTEVCASLDIGPTALRRWVDQVQKERLGSTPVGAKAITADQREIQRLKALLREKDLDIEILKKASALLLLDAKDHSR				NA	NA	NA	NA	NA
D1-36_01524	609			IS3 family transposase ISSlo2	ATGGCTCGCAGTTTGATGCGCGAAGCTGGCATCGCTAGTCGTCAGCGCAGGCGCCATAAGTACAAGTCGCCGGGCGTTGAGGCATTGGTGGCGCCGCACGTGCTCAAGCGAAAATTTGATGTAACGGCGGTTAACCAGGTGTGGTGTGGCGACGTGACTTACATCAAGGTCGGCAAGCGGTGGATGTACTTCGCCGCCGTTCTGGATCTGTACGCTCGGAGGATCGTGGGTTGGTCGTTCTCGATGATTTCTGATGCCAACCTGACCTGCGAAGCGCTACGCATGGCGGTTGAGCTACGCGGCCACCCCCAGGATGTGTTGTTTCATTCAGACCAAGGTTGTCAGTACACCAGTCATAAATTCCGAAACGAGCTTGTGAAACACGGGTTTAGGCAAAGTATGAGCCGTAAAGGCGAGTGCTGGGACAACGCCCCCATGGAGCGTTTCTTTGGTAGTTTGAAATCAGAGTGGGTTCCTGAAACGGGCTACAAACTGGAACATGAGGCCCGGGCAGACGTGCAGCGCTATGTCTCGCGCTACAACATCAGCAGGCCTCACAGCTACAACGACTACAGGTCGCCGGTCGCGAAGGAAAGGTTGGCGGCGTGA	MARSLMREAGIASRQRRRHKYKSPGVEALVAPHVLKRKFDVTAVNQVWCGDVTYIKVGKRWMYFAAVLDLYARRIVGWSFSMISDANLTCEALRMAVELRGHPQDVLFHSDQGCQYTSHKFRNELVKHGFRQSMSRKGECWDNAPMERFFGSLKSEWVPETGYKLEHEARADVQRYVSRYNISRPHSYNDYRSPVAKERLAA				NA	NA	NA	NA	NA
D1-36_01525	1221	fabB		3-oxoacyl-[acyl-carrier-protein] synthase 1	ATGCGCCGCGTCGTTATCACTGGTCTGGGCATCGTTTCGTGCCTGGGCAATGACAAAGAGACCGTCTCCGCTAACCTGCGTGCAAGTCGCCCTGGCATCCGGTTCAATCCGGAATATGCCGAAATGGGTCTGCGTAGCCAGGTTTCCGGCTCCATTGACCTGAACCTCGAAGAGCTGATCGATCGCAAGATCTACCGTTTCGTCGGCCACGCAGCGGCTTATGCCTACCTGGCCATGAAAGACGCCATCGCTGACTCCGGCCTGACCGAAGAGCAGGTCTCCAACGTACGGACCGGCCTCGTAGCAGGTTCCGGCGGCGCCTCCACCTTGAACCAGATGGAAGCGCTGGACATCCTGCGCGAAAAAGGCGTCAAGCGTGTCGGCCCGTACCGCGTCACGCGGACCATGAGCAGCACCGTTTCGGCCTGCCTGGCCACGCCGTTCAAGATCAAGGGCCTGAACTACTCCATCGCTTCCGCCTGCGCCACCAGTGCCCATTGCATCGGTACCGCCATGGAACAGATCCAGATGGGCAAGCAGGACATCGTGTTCGCCGGTGGCGGTGAAGAAGAACATTGGAGCCAGTCGTTCCTGTTCGACGCCATGGGCGCCCTGTCCAGCAAGCGCAACGACGCGCCGGAAAAAGCCTCCCGTGCCTACGACGCCGACCGTGACGGTTTCGTCATCGCCGGCGGTGGTGGCATGGTCGTGGTCGAGGAGCTGGAACACGCCCTCGCCCGTGGCGCGAAGATCTACGCGGAAATCGTCGGCTACGGCGCCACCTCCGACGGCTATGACATGGTCGCACCGAGCGGTGAAGGTGCCGTGCGCTGCATGCAGATGGCCATGTCCACCGTCGATGCACCGATCGACTACCTGAACACCCACGGCACCTCGACCCCGGTCGGCGACGTCGCGGAAATGAAGGGTGTGCGCGAAGTGTTCGGCGACAAGGCCCCGGCCATCAGCTCCACCAAGAGCCTGTCGGGTCACTCCCTGGGCGCCGCCGGCGTTCACGAAGCGATCTACTGCATGCTGATGATGGAAGGCAACTTCATGGCCGGTTCCGCCAACATCGACGAACTGGATCCGGAAGTGGCCGACCTGCCTATCCTGACCCAAACTCGCGAGAACGCCACCATCAACACCGTGATGAGCAACAGCTTCGGCTTCGGTGGCACCAACGCTACCCTGGTGATGAAGCGCTGGCAGGGCAAGTAA	MRRVVITGLGIVSCLGNDKETVSANLRASRPGIRFNPEYAEMGLRSQVSGSIDLNLEELIDRKIYRFVGHAAAYAYLAMKDAIADSGLTEEQVSNVRTGLVAGSGGASTLNQMEALDILREKGVKRVGPYRVTRTMSSTVSACLATPFKIKGLNYSIASACATSAHCIGTAMEQIQMGKQDIVFAGGGEEEHWSQSFLFDAMGALSSKRNDAPEKASRAYDADRDGFVIAGGGGMVVVEELEHALARGAKIYAEIVGYGATSDGYDMVAPSGEGAVRCMQMAMSTVDAPIDYLNTHGTSTPVGDVAEMKGVREVFGDKAPAISSTKSLSGHSLGAAGVHEAIYCMLMMEGNFMAGSANIDELDPEVADLPILTQTRENATINTVMSNSFGFGGTNATLVMKRWQGK	PGPT0013310_796	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0013310-fabB-K00647	NA	NA
D1-36_01526	516	fabA	COG0764	3-hydroxydecanoyl-[acyl-carrier-protein] dehydratase	ATGACCAAACAAAACGCCTTTACTCGGGAAGATCTGCTGCGCTGCAGTCGCGGTGAGCTGTTCGGCCCAGGTAACGCGCAACTGCCCGCCCCGAACATGCTGATGGTGGATCGCATCACCCATATCAGCGATGAGGGTGGCAAGTACGGCAAAGGTGAATTGGTCGCCGAGCTGGATATCACTCCGGACCTGTGGTTCTTCGCCTGCCATTTCGAAGGCGATCCGGTGATGCCCGGCTGCCTGGGCCTGGATGCCATGTGGCAACTGGTCGGCTTCTTCCTCGGCTGGCAAGGCCTGCCGGGTCGCGGCCGCGCCCTGGGTTCGGGCGAAGTGAAGTTCTTCGGTCAGGTACTGCCGACTGCGAAGAAGATCACCTATAACATCCATATCAAACGCGTCCTCAAGGGCAAGCTGAACATGGCCATCGCCGATGGTTCGGTGGCTGTCGACGGTCGCGAGATCTACACCGCCGAAGGCCTCCGGGTTGGCGTTTTCACTTCCACTGACAACTTCTAA	MTKQNAFTREDLLRCSRGELFGPGNAQLPAPNMLMVDRITHISDEGGKYGKGELVAELDITPDLWFFACHFEGDPVMPGCLGLDAMWQLVGFFLGWQGLPGRGRALGSGEVKFFGQVLPTAKKITYNIHIKRVLKGKLNMAIADGSVAVDGREIYTAEGLRVGVFTSTDNF				NA	NA	NA	NA	NA
D1-36_01527	1902	rcsC_6		Sensor histidine kinase RcsC	ATGACCTTGCGTCGCCGCTGGGATATCAATACCCGTACCCAGCTCATCGCCCTGGGGCCGGCACTGCTGCTGACGGTGCTGTTGATCAGCTTCTTCACCTTCGTGCGAATCCAGGACCTACGCCAGGAACTCAACCACACCGGGCAGCTGATCGCCAACCAACTCGCTCCAGCCGCGGAGTATGGCGTCATATCCGGTAACAATGATGTGCTGGAAAGCCTGCTGACGGCCACGCTCGCCACGCCTCACGTGCGCTTTTTGGAAGTCCAGGACCGCACCGAGCGGGTTCTCGTGTACGTGGAACAACCGTCGCAAACCCGCAACCATTCCCAGCAGGTCGAAGTATTCCAGGCCCCCGTTCGCCTGCAGCGCATTGCCCTCAACAATGATTTCCTGCAAGGCAACAGTCCGCCCACCGAGGCGGCCGGCGAGGATTACCTGGGCCGCGTCATTGTCGGCATGTCCAGCGACGCCTTCAGCCAACGGCAGCAGGAGATCCTGCTCAAGGCAGCGGTCCTGGCCCTGTTTGCGCTGCTGTTCACGTTCCTGGTGGCGCGCCGCCTGGCAGCGAGCCTGTCGCAGCCGATTCGCGACATCGGCCATGCGGTCAAGGCCATCCAGCAGGGTGATTACAGCAGGCCCTTGCCTATTGTCGACGACGGGGAATTGGGCGCCCTGTCGCGGCACATCAACAACCTGGCCGCGGGCCTCGAACAAGCAAGCCGCGAACAGCACCAGGCCATGGCTCAATTGATCAAGACCCGGGAGGAAGCAGAAAAGGCCAACAGCGCCAAGTCGGAATTCCTGGCGATGATGAGCCACGAACTGCGCACGCCCATGAATGGCGTATTGGGCATGCTGCAATTGCTGGAAACCACCCATATGACCGATGAGCAGCATGAATACACCGCGCTGGCATCGGAATCCACCGAGCACCTGTTGAAGGTCATCAACGACATTCTCGACTTCTCGCGCATCGAGCGTTCGGCGCTGGAGCTGGAGCACATCCCGTTCAACCTGGCCGAGCTGGTGGGCAGTTGCGCGCAGTCGTTCCAGCACAGCGCCGCGCAGCGCAAGCTGGGCCTGGACCTGCTGGTCCCCGACGACATGAAACCGCTGCAGGTACAAGGCGACCCGACGCGGATCCGGCAAATCCTGGTGAACCTGATCGGCAACGCGTTGAAATTCACCGACCAGGGCCGCGTTACGGTGCAGTGCCAGTGGCAGGCCCTTGATCACGAATTGCTGTGGTTCACCTGCACCGTGCGCGACAGCGGCATTGGCATCCCGGCCGAAAGCCTGGAGCGCATGTTCGACGCCTTCCAGCAGGCCGACAGTTCCATTTCAAGACGCTACGGCGGCACGGGCCTCGGCCTGCCGATCGCCCGCACCCTGGCCGAACGCATGGGCGGCACGCTGCGGGCCCAGAGCCAGGAAGGCCAGGGCTCGGTGTTTACCCTGGAAATCCCGCTGGCCCTGTCGCGCCTGGCGCCACCGACCCTGCCCCCGCGCCTGCCCGGCGGCGGTAGCAACGGAGAAGGCCGCAATGTCTTGTTGGTGGAAGACAATCCGGTTAACCAGACGGTGATCGAAGCGATGCTGCGCAGCCTCGGCTTCAAGGTCAGCGTCGCCACCGATGGCGCCCAGGCCGTACGTAGCGCCGAGAGCCTGATTTTCGAAGCGATCCTGATGGACTGCCGGTTGCCGGTCATCGACGGTTACGAAGCCACGCGGCAGATCCGCCAGTTGCCCGGCTGCACCGACGTGCCCATCATCGCCCTGACCGCCAATGCACTGCAGGGTGATCGCGAAGCGTGCCTGGCAGCGGGCATGAACGATTACCTGGCCAAACCCTTCAAACGAATCGACTTGCAGCAGATTCTGCAACGCTGGGTCGGGTAA	MTLRRRWDINTRTQLIALGPALLLTVLLISFFTFVRIQDLRQELNHTGQLIANQLAPAAEYGVISGNNDVLESLLTATLATPHVRFLEVQDRTERVLVYVEQPSQTRNHSQQVEVFQAPVRLQRIALNNDFLQGNSPPTEAAGEDYLGRVIVGMSSDAFSQRQQEILLKAAVLALFALLFTFLVARRLAASLSQPIRDIGHAVKAIQQGDYSRPLPIVDDGELGALSRHINNLAAGLEQASREQHQAMAQLIKTREEAEKANSAKSEFLAMMSHELRTPMNGVLGMLQLLETTHMTDEQHEYTALASESTEHLLKVINDILDFSRIERSALELEHIPFNLAELVGSCAQSFQHSAAQRKLGLDLLVPDDMKPLQVQGDPTRIRQILVNLIGNALKFTDQGRVTVQCQWQALDHELLWFTCTVRDSGIGIPAESLERMFDAFQQADSSISRRYGGTGLGLPIARTLAERMGGTLRAQSQEGQGSVFTLEIPLALSRLAPPTLPPRLPGGGSNGEGRNVLLVEDNPVNQTVIEAMLRSLGFKVSVATDGAQAVRSAESLIFEAILMDCRLPVIDGYEATRQIRQLPGCTDVPIIALTANALQGDREACLAAGMNDYLAKPFKRIDLQQILQRWVG	PGPT0004750_867	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QUORUM_SENSING_REGULATORS	CE-QSR-QUORUM_SENSING_REGULATED_FLS,PGPT0004750-aoxS-K20974	NA	NA
D1-36_01528	933			hypothetical protein	ATGTCCCGGTGCCAACCCCGCACGACGCCCTTTCGTGGCCGCCTGTGGTGGTTACTGTGCCTGGCATTTGCCGGCCTGCTGGTCACGCTCGAGGCTCGGGCCGCCGAGGTCCTGTTGACAGGCGTCCAGGACAGCCCCGGCGTGCAGTCATTCACCCAGGCCTTGCAGGCCCGGCGTCCCCAGGACCGCGTGCGATTCACCCCATTGGCCAACCTGCCGGCGCCGGATCGGTTGCCGGATGACGTGCGCCTGATCCTGCTCGACCCGCCGAGCCTCGACTGGCGCCTGCAAACGCCTCGCGGGCCGGCCACTCTGGTGCTGCGGATCAGCCGTCAGCAAGCCCGGGAACGCCTGGGTGACGGGACGCCCGGACACCTGAGCCTGCTCTGGAGCGATCCACCGATGGGCCGGCAGTTGCGCCTGATTCGTCAGGTCCTGCCACAAGTACGGCGGGTCGGCGTGCTGTACGACAGGCACAGCGAGTTCCTGCTCAAGGACCTTCAGCAGGCAGCGTTGCCGCTGGGCCTGCAAATCGTCAGCGAACGCTGGGACGACATCAACGACAGCCGCCCTTTGCAAAACCTGCTGGGCCAAAGCGACGTCTTGCTGGGCCTCGACGACCCCGACCTTTATAACCCCAAGACCGTGAAGAACCTGCTGCTGAGCAGTTACGCCCGGCAACGCGCGCTGATCGGGCCAAGCGCCGCCTTCGTCAAGGCCGGCAGCCTGGCCAGCACCTACAGCGGCCAGGAAGACTGGCTGGCGATTCTCGACGAATTGCTGGACCGCCCCGCCGCCACGTGGCCGCGCAGCCTGTATCCGCCCCGCTTCAAAGTCTTGAGCAATCAACAGGTCGCTCGCTCGTTGGGGATCGAACCGATTGACGTCGAATCCGTCGCTACGCAGCTGGCAGAAGGAGAACACCGTCCATGA	MSRCQPRTTPFRGRLWWLLCLAFAGLLVTLEARAAEVLLTGVQDSPGVQSFTQALQARRPQDRVRFTPLANLPAPDRLPDDVRLILLDPPSLDWRLQTPRGPATLVLRISRQQARERLGDGTPGHLSLLWSDPPMGRQLRLIRQVLPQVRRVGVLYDRHSEFLLKDLQQAALPLGLQIVSERWDDINDSRPLQNLLGQSDVLLGLDDPDLYNPKTVKNLLLSSYARQRALIGPSAAFVKAGSLASTYSGQEDWLAILDELLDRPAATWPRSLYPPRFKVLSNQQVARSLGIEPIDVESVATQLAEGEHRP				NA	NA	NA	NA	NA
D1-36_01529	2187	btuB_1		Vitamin B12 transporter BtuB	ATGGAAAAGTCGTTCGGCTCGGTTAACATGCCCGCCATCCTTCTTCTATCCAAAGGCTGTGCCGTGTTCGTTGGCCCCACCCGTCCAGGCTCATCACTGCTATTGGCGCTGATCATCAGCCCGCCAGCGGTGGCCGACGACTTGTTCGTGGACAACCAGCCCCTCCCCCAGGTATTGACCGCCACGCGCCTGAAGCAGTCGCCGGCGGCGGTACCCGGCAGCATGACCGTGCTGGACCGTGAATTGATCAAGGCCAGCGGCGCTCGGGAGATCAGCGAATTGTTGCGCCTGGTGCCAGGCATGATGGTCGGCAACATCAGCGGCAACCAGCCCACCGCCAACTACCACGGCACCAGTGCCAGTGAAGCGCGGCGCATGCAAGTGCTGATCGATGGTCGCTCGGTGTACCGGGCCGGCCTGGCGACAGTGGACTGGAGCGATATACCGGTCGCCATGGAAGACATCGAGCGGATCGAAGTCTTTCGCGGCCCCAACACCGTCAGCTATGGCGCCAATGCACTGATGGCCGTCGTCAACATCATCACCCGCGCCCCGGCCGACAGCCACGGCACCCGTTTCAAGGTTACCCGAGGCCAGAACGGCATCAGCGACTGGTACGCCAGCCAGGGCACAGGCTGGGAAGACGGTGACATGCGATTGTCGCTGTCCGGCCAGCAAGACGACGGTTTTGACAGCAACCGCAACGGGGCCGACTACCGCGACAGCCGTCGCCTGAACCGCTTCAACCTGTCCGTCAGCCAAACCCTGGATGAATACCAGAGCATTGACTGGCAGTTGAATGCCAAGGAAGGGACCAACCAGCGGCCCTACACCTACCGTCCGGTGTTTGCCGGGATTACCGAAGCTGGGGATAACTCCGACGTCAGCGCCAAGGATTACGCCGCTTCGCTGCGTTGGAACCTGGACCTGAATCCTAACCACAGCCTTTATATCCAGGGTTCGATGCAGCATTGGGATCGCCAGCAGACTTGGCGCGCCTGCGATGCGGAGGTGTCGTTCAGCCCGCAATTGACCGATCTGTGGCAGCTCAACCCCAACTATGCCGAGAAGCTGGCGCGCAATATTCCCAGTTTCCTGAATACCGGGGTCCCCGCCGGCACGGCCCAGGAACAGGCACTGGCCAATCAAGTGCTCGACCAATGGCGAAACGGTGCTTCCCGGACACTGTGTGGCGATATCGACCAGAGCGCCCGGGAGTCGCGCTACGACCTTGAGGTTCAGGACACCCTCAGTCTTTCCGACAGCCTGCGGCTGGTCACCGGCGTGAATTATCGTTACGACCGGGCCGATTCGCAGACGTACTTCAACGGCACCCTGGACGACACCACCTACCGTTTGTTCGGCCAGCTCGAATGGCGGGCCAGCGAACACTGGTTGTTGCAGGGCGGCGCGATGTTCGAGGACGCACGCCTGACGGGCAGCTCGCTGACCCCTCGGATGGCAATCAACTACCTGATCACCCCGCGACACGGCCTCCGGGCGGTCTATTCCGAGGCGGTGCGCTCGCCGGACATGTTCGAGAACAACGTCAACTGGAGTTATCAAGTCACCAATCTACGGCCGGCCGCCTTTGGTCAGGACAGCGCCCGTTATTTCGTTCGAACGCGCGGCCCTGGCAACCTGGATCAGGAGCACATGCGCTCGCGTGAGCTTGGCTACAACGGTTATTTCATGGATTTGGGCCTGGCGGTGGACGTGAAGCTGTTCCACGACCAAATCACCGGAATGATCAGCGAACCATTGCGCAACAACCAGTACATCGCCAGCAACAGCAACGAATCGCAGTTCACCGGCGCCGAAACCCAATTCGATTGGCGGATGACAGCGGCCGACCGGCTGCGCCTGACCTACGCCTATGTCGATGCGCTGGCCAGCAACCCCCTCGACGAACAGCTGACCGCCCGCAACAGCGGTTCGGCCGGCTGGCTGCGCGATTGGGGCCGGGGCTGGAACAGCGCGGTTTTCTATTACGCCGCCGACGCCCTCAACGGTTACCGCTACGAACGGATCGACAGCCGCCTCGCCCGGCGCATTCCCCTGGGCAAAGCCAGCCTGGAAGTCGCGGGGACCCTGCAGCAACGCCTCGATGACCAGCCGACCACGTTCGTCGACAACCGCTACGATTCCCGCCATGTGGTGTATTTCAGCGCGGAGTTGTCCTTCTAG	MEKSFGSVNMPAILLLSKGCAVFVGPTRPGSSLLLALIISPPAVADDLFVDNQPLPQVLTATRLKQSPAAVPGSMTVLDRELIKASGAREISELLRLVPGMMVGNISGNQPTANYHGTSASEARRMQVLIDGRSVYRAGLATVDWSDIPVAMEDIERIEVFRGPNTVSYGANALMAVVNIITRAPADSHGTRFKVTRGQNGISDWYASQGTGWEDGDMRLSLSGQQDDGFDSNRNGADYRDSRRLNRFNLSVSQTLDEYQSIDWQLNAKEGTNQRPYTYRPVFAGITEAGDNSDVSAKDYAASLRWNLDLNPNHSLYIQGSMQHWDRQQTWRACDAEVSFSPQLTDLWQLNPNYAEKLARNIPSFLNTGVPAGTAQEQALANQVLDQWRNGASRTLCGDIDQSARESRYDLEVQDTLSLSDSLRLVTGVNYRYDRADSQTYFNGTLDDTTYRLFGQLEWRASEHWLLQGGAMFEDARLTGSSLTPRMAINYLITPRHGLRAVYSEAVRSPDMFENNVNWSYQVTNLRPAAFGQDSARYFVRTRGPGNLDQEHMRSRELGYNGYFMDLGLAVDVKLFHDQITGMISEPLRNNQYIASNSNESQFTGAETQFDWRMTAADRLRLTYAYVDALASNPLDEQLTARNSGSAGWLRDWGRGWNSAVFYYAADALNGYRYERIDSRLARRIPLGKASLEVAGTLQQRLDDQPTTFVDNRYDSRHVVYFSAELSF	PGPT0003790_22438	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014	NA	NA
D1-36_01530	1026	gpsA		Glycerol-3-phosphate dehydrogenase [NAD(P)+]	ATGACTGAACAGCGCCCGATTGCGGTCCTGGGAGGCGGGAGTTTCGGCACCGCCGTGGCTAACCTGCTGGCGGAGAATGGCCACGCGGTGCGCCAGTGGATGCGTGACCCGGAGCAGGCCGAGGCCATCCGGGTCAACCGGGAAAATCCGCGTTATCTCAAAGGCATCAAGGTCCGCCCTGAAGTCGAGCCGGTGACCGATTTGCAGGCCACGCTCCAAAATAGCGATCTGTTTTTTGTCGCCTTGCCCTCTAGCGCCCTGCGTTCGGTGCTGGCACCGCACGCCGAGCGCTTGAGCGGCAAATTGCTGGTGAGCCTGACCAAAGGCATCGAGGCGCAAACGTTCAAGCTGATGAGCGAGATTCTTGCGGACATCGCCCCCAAGGCGCGAATCGGCGTGATATCCGGGCCTAACCTGGCGCGGGAGATTGCCGAACACGCCCTGACCGCCACCGTCGTCGCCAGCGAAGATGAAGAGCTGTGCCAGCAGGTCCAGGCCGCGCTGCATGGCCGCACCTTCCGGGTCTATGCCAGCGCGGATCGTTTCGGCGTGGAGCTGGGCGGTGCGCTGAAGAACGTCTATGCGATCATCGCCGGCATGGCGGTCGCCCTGGGCATGGGCGAGAACACCAAGAGCATGCTGATCACTCGGGCGCTGGCGGAAATGACCCGTTTCGCCGTGAGCCAGGGCGCCAACCCGATGACCTTCCTCGGCCTGGCCGGCGTGGGCGATCTGATCGTCACCTGTTCCTCGCCCAAGAGCCGCAACTATCAGGTCGGTTTCGCACTCGGCCAAGGCCTGAGCCTGGACGAGGCCGTCTCGCGCCTGGGCGAAGTGGCCGAAGGGGTCAACACCCTCAAGGTGCTCAAGGCCAAGTCCCAGGAAGCCGGCGTGTACATGCCGCTGGTCGCCGGTCTGCATGCGATTCTGTTCGAAGGGCGCACGCTGGAGCAGGTGATCGAACTGTTGATGCGTGGCGAACCCAAGACCGACGTCGATTTCATTTCCACCAGCGGTTTCAACTGA	MTEQRPIAVLGGGSFGTAVANLLAENGHAVRQWMRDPEQAEAIRVNRENPRYLKGIKVRPEVEPVTDLQATLQNSDLFFVALPSSALRSVLAPHAERLSGKLLVSLTKGIEAQTFKLMSEILADIAPKARIGVISGPNLAREIAEHALTATVVASEDEELCQQVQAALHGRTFRVYASADRFGVELGGALKNVYAIIAGMAVALGMGENTKSMLITRALAEMTRFAVSQGANPMTFLGLAGVGDLIVTCSSPKSRNYQVGFALGQGLSLDEAVSRLGEVAEGVNTLKVLKAKSQEAGVYMPLVAGLHAILFEGRTLEQVIELLMRGEPKTDVDFISTSGFN	PGPT0024330_1144	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0024330-gpsA-K00057	NA	NA
D1-36_01531	348			hypothetical protein	ATGAACGATCCGAAAGGGCAGCCGCAATACGAATCCATCCTGCTGCGAGTGCTGTGGATGGTGATTTACCTGCTGGTCTGGCAGGTGGCGCAATTGATCCTCGGCGCCGTGGTGCTGGTGCAATTGATCTACCGGCTGATCTACGGCGCACCGAGTGCCAGCCTGATGAATTTTGGCGACAGCCTGAGCCAGTTCCTGGCGCAGATCGGTCGCTTCGGCACTTTCCATAGCGACCAGAAGCCTTGGCCATTCGCCGACTGGCCAACCCCACGCACACCGGAAGGTGAAACCCCCCACACCGTTGCACCGGCACCACATCCCGCCCGGGACGAGGAGCCGAAGCTATGA	MNDPKGQPQYESILLRVLWMVIYLLVWQVAQLILGAVVLVQLIYRLIYGAPSASLMNFGDSLSQFLAQIGRFGTFHSDQKPWPFADWPTPRTPEGETPHTVAPAPHPARDEEPKL				NA	NA	NA	NA	NA
D1-36_01532	453			hypothetical protein	ATGAAATTGTGGGTGTTGCGTCATGGCGAGGCCGAGCCCCACGGTGTTCGTCCCGACCCTGAACGGGTGCTGACCATCCATGGCCGCGAGGAAGTCTTGCTCAGCGCCGGTCGGTTGATGGGCGAGCCCCTGCGGGCCATTTTTGCCAGCCCCTATGTACGTGCCCAACAGACCGCGCAATTGGTTCGCGAGGCGCTGGGGTTCGAGCCGGAGTTGGTCACGGTTGATTGGCTCACGCCGGAAACCCGTCCGGCCGAGGTATTGAAACACCTGGATGATCAAGACAACGTGCTGCTGGTCAGCCATAACCCACTGGTGGGCAGCTTGCTGGGGCTTTTGCAGCACGGTCATCTGCAGCAACCGGAACAAGTATCGACGGCAGGCCTGGCCGAGCTGGAGGGCGACCTGCCGCTGGCCGGTTCGATGAAACTCAAGAGCCTCAGGCACCCCTGA	MKLWVLRHGEAEPHGVRPDPERVLTIHGREEVLLSAGRLMGEPLRAIFASPYVRAQQTAQLVREALGFEPELVTVDWLTPETRPAEVLKHLDDQDNVLLVSHNPLVGSLLGLLQHGHLQQPEQVSTAGLAELEGDLPLAGSMKLKSLRHP				NA	NA	NA	NA	NA
D1-36_01533	444		COG2050	Putative esterase	ATGAGTCTGTGGCGCACCACCCCCAATATTGAACAACTGAACGCGGCCGGTAAGAACACCATCAGCGAAGTGCTGGACATCCGTTTCGAATCTTTCGACGACGAATCCCTGACCGCGAGCATGGTGGTCGATCATCGTACCCATCAACCGTTCGGCCTGTTGCACGGCGGCGCGTCCGTGGTGCTGGCCGAGACAGTCGGCTCCATGGCGGCCTATCTGTGCGTCGACACGAGCAAGTTCTACTGCGTCGGCCTGGAAATCAACGCCAACCACTTGCGTGGCGTGCGCAGCGGGCGAGTAACCGCGACGGCCCGGATGGTTCACCTGGGCCGCACCACCCAGGTCTGGGACATCCGCCTGGTCAATGATGACGGCAAGGTCAACTGCGTATCGCGCCTGACCATGGCGGTGGTTCCATTGGGTGAGCAGCCGCCGGCGCGCTAA	MSLWRTTPNIEQLNAAGKNTISEVLDIRFESFDDESLTASMVVDHRTHQPFGLLHGGASVVLAETVGSMAAYLCVDTSKFYCVGLEINANHLRGVRSGRVTATARMVHLGRTTQVWDIRLVNDDGKVNCVSRLTMAVVPLGEQPPAR	PGPT0001845_733	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
D1-36_01534	795			hypothetical protein	ATGTCGCAACAGGTGTTTTTCGCCCACGCCAATGGTTTCCCCTCCGCCACCTACGGTAAGTTGTTTGCCGCGCTGGCGCCGCAGTACGAGGTTTCCCACCTCGAACTGCACGGCCATGACCCGCGATTCCCGGTCGACGACAATTGGAACAATCTGGTGGACGAACTGATTCACCACCTTGAGCGGCAATCGCAGCCGGTGTGGGGCGTCGGGCATTCTCTGGGCGGCGTACTGCATTTGCATGCGGCGTTGCGCTGCCCGCAGTTGTATCGTGGTGTGGTCATGCTCGATTCCCCGGTCCTGACCCGCGCCGACCGCTGGCTGATTCTTGCCGCCAAGCGCCTGGGCTTCATCGATCGCTTGACGCCGGCCGGGCGAACCCTGGGGCGGCGGGAAGAATTCAACGACCTGGCGTCGGCGCGGGAATATTTTGCCGGCAAGACGTTGTTTCGCGGTTTCGACCCGGAGTGCTTCGAAGCGTACCTGCAACATGGTTTGCAGCCTGTTGGTGATCGGTTGCGGCTGCGCTTCGACCCGGCCACGGAAATCAGCATCTACCGAGGCGTGCCGCACACCAGCCCCGGGAGGGCTCGAAAGCTCGACATGCCGTTGGCGGTAGTGCGGGGCCGACAGAGTCGGGTGGTGATGCGTCATCACGCCCGATCCGTGAGCCGCATGCCCTTGGGCGAATCCTTGACCATGCCGGGTGGTCACATGTTTCCACTCGAATATCCCCAGGACACGGCCAACTTGCTCAAGGGCCTGCTGCAGCGCTGGCAGGGTCGTAGCCCATGA	MSQQVFFAHANGFPSATYGKLFAALAPQYEVSHLELHGHDPRFPVDDNWNNLVDELIHHLERQSQPVWGVGHSLGGVLHLHAALRCPQLYRGVVMLDSPVLTRADRWLILAAKRLGFIDRLTPAGRTLGRREEFNDLASAREYFAGKTLFRGFDPECFEAYLQHGLQPVGDRLRLRFDPATEISIYRGVPHTSPGRARKLDMPLAVVRGRQSRVVMRHHARSVSRMPLGESLTMPGGHMFPLEYPQDTANLLKGLLQRWQGRSP				NA	NA	NA	NA	NA
D1-36_01535	852	menH		2-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthase	ATGAGCGTCGTCGAAGAAATTCGCCTGAGCCTGCCCCATATCGAGTTGGCGGCCCATTTGTTCGGGCCGGAAGATGGCCGGCCGGTGATTGCCCTGCATGGCTGGCTGGACAACGCCAACAGCTTCGCCCGGCTGGCGCCTATGCTCCAGGGCGTACGGGTGATTGCCTTGGACATGGCCGGTCACGGACATTCCGGGCACCGTCCGCCTGGCGCCGGCTATGCCCTGTGGGATTATGCCCACGATGTGCTGCAAGTCGCCGAGCAACTGGGCTTGAAGCGTTTCGGGCTGCTGGGGCATTCCATGGGGGCCATTGTCTCGCTGGTCCTGGCCGGTGCTTTGCCGGAGCGGATCAGTCACTTGGCATTGATCGATGGGGTGATTCCTCCTACAGCGAAAGGCGACAATGCGGCCGAGCGCATGGGCATGGCCCTGCAAGCGCAACTGGATTTGCCGCAAAAACGCAAACCCGTCTACAAAACCCTCGACCGGGCCATCGAAGCGCGTATGAAGGGACTGGTGGCAGTCAGTCGCGAAGCCGCCGAGCTACTGGCCCAGCGCGGCTTGATGCCGGTGCCGGGAGGGTTCACCTGGCGCACCGACAATCGCCTGACCTTGCCCTCGCCGCTGCGCCTGACCGACGAACAGGCCATGGCCTTCGTCGCGCGGGTCGCTTGCCCCGCGCACTTGGTAGTCGCGGCCGACGGCATGCTTGCCCAGCACCCCGAATTGCTGGAACGTCTACCCTTCAGTCATGAACAGTTACCTGGCGGCCATCATTTGCACCTGAACGACGAGGTCGGTGCCGCTCTTGTAGCAGACTGTTTCAATCGGTTCTTCAGCGTTTCTTGA	MSVVEEIRLSLPHIELAAHLFGPEDGRPVIALHGWLDNANSFARLAPMLQGVRVIALDMAGHGHSGHRPPGAGYALWDYAHDVLQVAEQLGLKRFGLLGHSMGAIVSLVLAGALPERISHLALIDGVIPPTAKGDNAAERMGMALQAQLDLPQKRKPVYKTLDRAIEARMKGLVAVSREAAELLAQRGLMPVPGGFTWRTDNRLTLPSPLRLTDEQAMAFVARVACPAHLVVAADGMLAQHPELLERLPFSHEQLPGGHHLHLNDEVGAALVADCFNRFFSVS				NA	NA	NA	NA	NA
D1-36_01536	819			hypothetical protein	ATGAAACTATCCATTCGTTCATTCGTCCTGCTGGCACTGGCCGGTTTCAGCCCGCTATCCCTGGCTGCCGATGTACCCGGCAGCCAGGATCTGGAACGCGTGCCGCGCATGCCCGACGCGCAAATCGTCGATTATCGGCAAACCAGCGACCTTGAGCGTATCTACCCCATGGGGTCGATTCGCAAGATCAGCGGCCAACTGCGTTTCGACGGGCAGGTCGATGCCCGTGGCAACGCCACCTCGGTGACCTACGAACTGCCGCCGGAACATACCGCCACACAAGCGTTCACCGCCGCCCGCGAAGCCTTGCAGAAACAGGGCGCCGAGCTGCTGTTCTGGTGCCAGGCCCGCGATTGTGGCGAAAGCAGCCTGTGGGCCAACGAAGTGTTCGGCAATGCCAAGCTCTATGGCGCCGACAATGGCCAGGCCTACCTGTTGCTGCGCCTGGCGCCGCCGGCGGACAACACGCTGATCGCGCTGTATGCCATCACCCGTGGCAACCGCAAGGCCTACCTGCATGTCGAGCAGTTCGAAGCGAGCGCGCCCCTGGGGGATGTGCTGCCGACTTCTGCCACGTTGTTGCGCCAGCTCAAGGACACCGGCGTGCTGGACTTGCCGCGTCTTGCCGGCGAACCGGAGGAAGCCTGGCTACGCCTGTTGTCTCGGGCCTTGAACCTGGACACCGGCCTTCGGGTCAGCGTCGCCGGCCCACACGCCGAGGCGTGGCGCCAGGCGCTGGTCGAGCAGGGCGTCCGGGCGGCAAGAATGGAAGCGGCCGGCGGTAACACGGCGGGCTTGCACCTGGAGCTGTTGCGATAA	MKLSIRSFVLLALAGFSPLSLAADVPGSQDLERVPRMPDAQIVDYRQTSDLERIYPMGSIRKISGQLRFDGQVDARGNATSVTYELPPEHTATQAFTAAREALQKQGAELLFWCQARDCGESSLWANEVFGNAKLYGADNGQAYLLLRLAPPADNTLIALYAITRGNRKAYLHVEQFEASAPLGDVLPTSATLLRQLKDTGVLDLPRLAGEPEEAWLRLLSRALNLDTGLRVSVAGPHAEAWRQALVEQGVRAARMEAAGGNTAGLHLELLR	PGPT0013045_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013045-yghU|yfcG-K11209	NA	NA
D1-36_01537	1038	ydiK_1	COG0628	Putative transport protein YdiK	ATGCTCAATAACGATCGGCTGTTGGTGCAAATACTGCTCCTGGTGTTGTTCGGGGCCAGCCTCTGGGTGATGGCTCCGTTCTGGTCGGCGCTGTTCTGGGGGGCTGTGCTCGCTTTTGCCAGTTGGCCACTGATGCGCCTGCTGACCCGTTGGGTCAACGGTCGCGAATCCTTGGCGGCGGCCTTGCTGACGGTCGGCTGGATGTTGCTGGTGGCGGTGCCGCTGGTGTGGCTGGGCTTCAATCTCGCCGATCATGTGCGCGATGCCACGGCCTTTGTCAGGGATGTGCAGGTCGATGGCCTGCCCGAAGCCCCCGACTGGCTCGCCGGCGTACCGCTGGTGGGCGGGCGCCTGGTAACGCTCTGGAACAGCATCGACCAGCAGGGCGCGGCGATGATGGTGTCCATCAAGCCCTACCTGGGACGTGTCGGCAACTGGTTGCTGGCCCGTAGCGCGCAGATCGGCGGCGGAATCCTCGAACTGACCCTGAGCATCGTGTTCGTGTTCTTTTTCTACCGGGACGGCCCGCGATTGGCGGCGTTTGTCCAGGGGCTGCTGGAGCGGCTGATCGGTGATCGTGCCGGGTACTATGTCGAATTGGTGGCCGGCACGGTGCAGCGAGTGGTCAACGGGGTGATCGGTACCGCCGCGGCTCAGGCGGTACTGGCGCTGATCGGCTTTTTGATCGCCGGGGTGCCGGGTGCGCTGGTACTGGGTATCGTCACCTTCCTGCTCAGCCTGATTCCCATGGGGCCGCCGCTGGTCTGGATACCTGCCACGGCCTGGCTGGCGTGGAAGGGCGAGTATGGGATGGCGGTGTTCCTGGGTATCTGGGGCACGTTCATCATCAGTGGCGTGGACAACGTGCTCAAGCCCTACCTGATCAGTCGTGGTGGAAACCTGCCGCTGGTGATCGTGTTGCTCGGGGTGTTCGGTGGCTTGATCGCGTTCGGTTTCATCGGGTTGTTCATCGGTCCGACCCTGCTGGCGGTGGCGTACAGCTTGCTGACGGATTGGAGCAAGAGCCAGGCGCGGTAA	MLNNDRLLVQILLLVLFGASLWVMAPFWSALFWGAVLAFASWPLMRLLTRWVNGRESLAAALLTVGWMLLVAVPLVWLGFNLADHVRDATAFVRDVQVDGLPEAPDWLAGVPLVGGRLVTLWNSIDQQGAAMMVSIKPYLGRVGNWLLARSAQIGGGILELTLSIVFVFFFYRDGPRLAAFVQGLLERLIGDRAGYYVELVAGTVQRVVNGVIGTAAAQAVLALIGFLIAGVPGALVLGIVTFLLSLIPMGPPLVWIPATAWLAWKGEYGMAVFLGIWGTFIISGVDNVLKPYLISRGGNLPLVIVLLGVFGGLIAFGFIGLFIGPTLLAVAYSLLTDWSKSQAR				NA	NA	NA	NA	NA
D1-36_01538	1041	sasA_7		Adaptive-response sensory-kinase SasA	ATGCGCCTGCGCTTCGATTCCCTGTTTGGCCGCCTGTTCGGCGTGCTGCTGGTGGCGATCGTGCTGGCGCACCTGCTGGCCTTTGCCTGGTTTTTTCATTACGACAAGCCACCTCCCGGGCCGCCCCCGGAATTTTCCCATCAAACCGCAGGTCCCTCGCACTCCGGCCCGCCACCCGGCCCACGCCCCCGGTTTGGCGGGCCTGTGGTGCCCCTGACGTTTCAATTTGTGTTCCTGATCGTTGCGGCCTGGTACGGCGCCAAGCTGTTGACTCGGCCCATCCAGCGACTGAGCGACGCCGCCCAACGGCTGAGCGAGGACCTCCATAGCCCGCCATTGGAAGAGAACGGTCCGCGGGAGGCCCGCCAAGCCGCCCATACGTTCAACCTGATGCAACAACGGATCCGCGAGCAGGTACAGCAACGCTCGCGCATGCTTGGCGCGGTATCCCATGATCTGCGCACCCCACTTGCGCGACTCAAGCTGCGCCTGGAGCAGATCAACGACCCCCGGCTGCAGGATCAGATGCGTCAAGACCTGGACGATATGATCGGCATGCTCGACGCGACCCTGACCTATCTCCACGAACAACGCACCAGCGAAGCGTTGCAATGGATGGACGTGCAGGCGCTGGTTGAATCATTAAGCGAAAACGCCCAGGACCACGGCGCCAATGTGCATGCCAGCGGTACCTGCGCGCCCTTGCGGGTGCAACCGATGGCACTGCGTTCATGCATCAACAACCTCATCGACAATGCCGTGCGTTACGCGGGCGACGCATCGATCGTGCTGGACGATCAGCAGCACCAGTTGCTGATCCGGGTGATTGACCACGGCCCTGGCATCGCGGCGGACAAGCGCGAAGCGGTATTCGAGCCATTCTTTCGCCTGGAGGGTTCGCGCAACCGCAACTCGGGAGGCGTCGGCCTGGGCATGACCATCGCCCGGGAGGCCGCCGAACGCCTGGGCGGGCACTTAAGCCTGGAAGAAACACCCGGCGGCGGGTTGACGGCGGTGATTCGCGTGCCCCGTGTGGCCTGA	MRLRFDSLFGRLFGVLLVAIVLAHLLAFAWFFHYDKPPPGPPPEFSHQTAGPSHSGPPPGPRPRFGGPVVPLTFQFVFLIVAAWYGAKLLTRPIQRLSDAAQRLSEDLHSPPLEENGPREARQAAHTFNLMQQRIREQVQQRSRMLGAVSHDLRTPLARLKLRLEQINDPRLQDQMRQDLDDMIGMLDATLTYLHEQRTSEALQWMDVQALVESLSENAQDHGANVHASGTCAPLRVQPMALRSCINNLIDNAVRYAGDASIVLDDQQHQLLIRVIDHGPGIAADKREAVFEPFFRLEGSRNRNSGGVGLGMTIAREAAERLGGHLSLEETPGGGLTAVIRVPRVA	PGPT0004100_5298	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
D1-36_01539	759	ompR_3		Transcriptional regulatory protein OmpR	ATGCAGTACACCCCTGTTGCAAATTCTGGCGATCAGAAAGTGTCCGACGACGACAGGCGCTGGAGCACCCGCGCGCTGATCGTCGATGACGACGTACCGATCCGCGAGCTGCTGATCGACTACCTGGGCCGCTTCGGCATTCGCGCCAGTGGCGTAACCGATGGCGCGGCCATGCGCCAGGCGATGCAGGCAGAACACTTCGACGTGATCGTGCTAGACCTGATGCTGCCGGGCGAAGACGGCTTGCAACTGTGCCGCTGGCTGCGCGCCGAGTCGAATATTCCAATCCTGATGCTGACGGCCCGCTGCGAACCCACCGACCGCATCATCGGCCTGGAGTTGGGCGCGGATGATTACATGGCCAAACCTTTTGAACCCCGGGAGCTGGTGGCGCGAATCCAGACCATCCTGCGCCGGGTGCGCGACGATCGCAGCGAGCAGCGCGCCAACATTCGCTTCGATAGCTGGCGGCTCAACAGCGTGCTGCGCCAACTGGTTTCCGCCAACGGGCTGGTAGTGCCCCTCTCCAACGCAGAATTCCGCCTGTTGTGGGTGTTCATCGAGCGACCACGCCGAGTGCTCAGCCGTGAACAATTGCTGGACGCCGCGCGCGGTCGCTCGATCGAGGCCTTCGACCGCAGTATCGATCTGCTGGTCTCGCGCTTGCGCCAGAAACTGGGGGACGATCCGAAGGCTCCGCAGTTGATCAAGACCGTGCGCGGTGAAGGCTACCTGTTCGATGCGCGGGATATCGGTTGA	MQYTPVANSGDQKVSDDDRRWSTRALIVDDDVPIRELLIDYLGRFGIRASGVTDGAAMRQAMQAEHFDVIVLDLMLPGEDGLQLCRWLRAESNIPILMLTARCEPTDRIIGLELGADDYMAKPFEPRELVARIQTILRRVRDDRSEQRANIRFDSWRLNSVLRQLVSANGLVVPLSNAEFRLLWVFIERPRRVLSREQLLDAARGRSIEAFDRSIDLLVSRLRQKLGDDPKAPQLIKTVRGEGYLFDARDIG	PGPT0012985_449	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
D1-36_01540	699	pyrF	COG0284	Orotidine 5'-phosphate decarboxylase	ATGTCCGCCTGCCAGACGCCTATCATCGTCGCCCTGGATTTTCCTACCCGTGACGCCGCCCTGAAGCTGGCCGACCAGTTGGACCCCAAGCTCTGCCGGGTCAAGGTCGGCAAGGAGCTGTTCACCAGCTGCGCGTCGGAAATCGTCGGAACCTTGCGGGACAAGGGTTTCGAAGTGTTCCTGGACCTCAAGTTCCACGATATCCCCAATACCACCGCCATGGCCGTCAAGGCCGCTGCGGAAATGGGCGTGTGGATGGTCAATGTGCATTGCTCCGGTGGCCTGCGCATGATGGCTGCCTGTCGTGAAGTGCTGGACCAGCGCAACGGCCCCAAGCCGTTGCTGATCGGCGTGACCGTGCTGACCAGCATGGAGCGTGAAGACCTGGCGGGCATCGGCCTGGACATCGAGCCCCAGGAGCAAGTGCTGCGCCTGGCGGCGCTGGCGCAAAAGGCGGGAATGGACGGCCTGGTTTGCTCGGCCCTGGAGGCCAACGCCCTGAAAACGGCCCACCCCTCGTTGCAGCTGGTGACCCCGGGCATTCGCCCGGCGGGCAGTGCCCAGGACGACCAGCGCCGCATCCTGACCCCGCGCCAGGCACTGGACGCTGGCTCCGACTACCTGGTGATCGGCCGGCCGATCAGCCAGGCAGCCGATCCGGCCAAGGCGCTGGCGGCGGTAGTGGCGGAGCTGGCCTGA	MSACQTPIIVALDFPTRDAALKLADQLDPKLCRVKVGKELFTSCASEIVGTLRDKGFEVFLDLKFHDIPNTTAMAVKAAAEMGVWMVNVHCSGGLRMMAACREVLDQRNGPKPLLIGVTVLTSMEREDLAGIGLDIEPQEQVLRLAALAQKAGMDGLVCSALEANALKTAHPSLQLVTPGIRPAGSAQDDQRRILTPRQALDAGSDYLVIGRPISQAADPAKALAAVVAELA	PGPT0014965_2392	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0014965-pyrF-K01591	NA	NA
D1-36_01541	1005	yfmJ	COG2130	Putative NADP-dependent oxidoreductase YfmJ	ATGACCGCCCTGACCAACCGCCAGTTCCTGCTCGCCAAACGCCCGGTGGGCGCCGCTACCCGTGAGACGTTCACTTATCAACAAGTCCCGGTCGGCGAGCCGGCACCCGGCCAGATCCTGGTCAAGAACGAGTACCTGTCCCTGGACCCGGCCATGCGTGGCTGGATGAATGAGGGAAAATCGTACATCCCGCCGGTCGGCATTGGTGAGGTCATGCGCGCCTTGGGCGTAGGCCAGGTCGTCGCCTCGAATAACCCCGGATACGCGGTAGGCGACTACGTGAACGGTGCCTTGGGTGTGCAGGATTATTTCCTCGGCGAGCCGCGAGGCTTCTACAAAGTCGATCCGAAACTGGCGCCGCTGCCACGTTATCTGTCAGCGCTGGGCATGACGGGCATGACCGCCTATTTCGCTCTGTTGGATGTCGGCGCACCGAAGGCCGGCGAAACCGTGGTCCTGTCCGGTGCCGCCGGGGCGGTAGGCAGCATTGCCGGGCAAATTGCCAAGATCAAAGGCTGTCGGGTGGTCGGCATCGCTGGCGGCGCCGACAAATGCAAATTCCTGATCGATGAGCTGGGCTTCGACGGTGCCGTCGATTACAAGAGTGAAGACGTTCACGCCGGCCTGAAGCGCGAATGCCCCAAAGGCGTGGATGTGTACTTCGATAACGTTGGCGGCGACATTCTCGATGCGGTGCTCAGCCGTTTGAACCTCAAGGCCCGCGTGGTGATCTGCGGCGCCATCAGCCAATACAACAACAAAGAAGCGGTCAAGGGCCCGGCCAACTACCTGTCGCTGTTGGTCAACCGCGCGCGGATGGAAGGGTTCGTGGTCATGGACTATGCCTCGCAGTTCGCCGCCGCCGGGCAGGAAATGGCCGGCTGGATGGCCAAGGGGCAGCTCAAGAGCAAGGAAGACATCGTCGAAGGGCTGGAGACATTCCCCGAGACGCTGACCAAATTGTTCAGTGGTGAGAATTTTGGGAAGTTGGTGTTGAAGGTCTGA	MTALTNRQFLLAKRPVGAATRETFTYQQVPVGEPAPGQILVKNEYLSLDPAMRGWMNEGKSYIPPVGIGEVMRALGVGQVVASNNPGYAVGDYVNGALGVQDYFLGEPRGFYKVDPKLAPLPRYLSALGMTGMTAYFALLDVGAPKAGETVVLSGAAGAVGSIAGQIAKIKGCRVVGIAGGADKCKFLIDELGFDGAVDYKSEDVHAGLKRECPKGVDVYFDNVGGDILDAVLSRLNLKARVVICGAISQYNNKEAVKGPANYLSLLVNRARMEGFVVMDYASQFAAAGQEMAGWMAKGQLKSKEDIVEGLETFPETLTKLFSGENFGKLVLKV	PGPT0023605_873	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEM	ADAPTION_TO_PIS-PLANT_CURCUMIN_RESISTANCE	ADAPTION_TO_PIS-CURCUMIN_DEGRADATION,PGPT0023605-curA|yncB-K23256	NA	NA
D1-36_01542	762	linC	COG1028	2,5-dichloro-2,5-cyclohexadiene-1,4-diol dehydrogenase	ATGAGCATGACGTTTTCCGGACAGGTTGCCGTGGTGACGGGCGGCGCGGCGGGCATTGGTCGCGCCACGGCCCAGGCGTTCGCAGCACAGCACCTGAAGGTAGTCGTCGCCGACCTGGACGTCGCGGGTGGCGAAGGCACGGTGCAGTTGATTCGCGATGCGGGTGGCGAGGCTGTGTTCGTGCGCTGCGACGTGACACTGGACAGCGACGTGCAAAATCTCATGAATGAAGTCATCGGCGCCTACGGTCGCCTCGATTACGCATTCAATAACGCGGGCATCGAAATCGAGAAGGGCAAACTGGCTGACGGGACGCTGGATGAGTTCGACGCGATCATGGGCGTCAACGTTAAAGGCGTCTGGTTGTGCATGAAATACCAACTGCCCTTGCTGCTTGCCCAGGGCGGCGGCGCGATCGTCAATACGGCCTCGGTGGCAGGGCTTGGGGCGGCGCCAAAGATGAGCATCTACGCGGCGTCCAAGCATGCGGTGATCGGCTTGACCAAGTCTGCGGCGATTGAATATGCCAAGAAGAAAATCCGCGTTAATGCGGTGTGCCCGGCGGTGATCGATACAGACATGTTCCGTCGGGCCTATGAGGCGGACCCGAGAAAAGGCGAATACGCCAACTCGATGCATCCGGTGGGCAGAATCGGCAAGGTCGAGGAAATCGCCAGTGCCGTGTTGTATTTATGCTGCGACGGCGCGGCATTCACCACGGGCCAGGCGTTGGCGGTGGATGGGGGGGCTACGGCAATCTGA	MSMTFSGQVAVVTGGAAGIGRATAQAFAAQHLKVVVADLDVAGGEGTVQLIRDAGGEAVFVRCDVTLDSDVQNLMNEVIGAYGRLDYAFNNAGIEIEKGKLADGTLDEFDAIMGVNVKGVWLCMKYQLPLLLAQGGGAIVNTASVAGLGAAPKMSIYAASKHAVIGLTKSAAIEYAKKKIRVNAVCPAVIDTDMFRRAYEADPRKGEYANSMHPVGRIGKVEEIASAVLYLCCDGAAFTTGQALAVDGGATAI	PGPT0003180_8999	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
D1-36_01543	1398	hisC_3		Histidinol-phosphate aminotransferase	ATGGAGTTGAGAATCGACCGGCAGGCCCTGGTGCCCGTCGTGCAGCAAATTGTCGATGCGTTGGCCTGCTGGATTCGACAGGGCGCGGTGGAGCCGGGGACTCGCCTGCCATCGATCCGCCAGCTGGCACGGGAGAACCTGCTGAGTCAGGCGAGCGTCCATGAAGCCTGCCAGCGTTTGGTCGCCCAGGGCTTGCTGGCGTCGCGCCATGGTTCGAGTTTTGTCGTGGCTCCGGCCGCTTGCGCAACGGAAGAAGCCTTGGCCCATGGCTGGCTGCAAGGTGTATTGGCCGATCATGACGCCCCGGCAGGCGTTATGTATCAAGCGCTGAAGCTGGGCGGCGGCGGGCTGCCTGAAAGCTGGCGCGAAAGTGATGACCTGGGGTATGCGATACGTCAGGTGACTCGCACCGACATGGCGGGGTTGTTCAACTACAGCACGCCACTGGGACTGCCAGCCCTGCGTGAGCAGCTGTCCAGGAGATTGAAACAGTTCGATATCGATGCCGATGAAAAACGCATCCTGACCACCCTGGGCGCTACCCACGGGCTCGACCTGATCGTGCGCACGCTTCTGCGACCGGGCTGCTGCGTGGTGGTGGAGAGCCCCGGTTACTCGAAGCTGTTCGACCTGCTCAGGCTGCACAAGATAGACATGATCGAGCTGCCCAGGACACCCCGTGGCCCGGACGTCGACGCCCTTCAACGCCTGCTGGCGATTCATCGACCCAGCGCTATTTTCGTCAACAGCGCCTGCCACAACCCAACCGGCAGCAGCCTGGCGCCGGCGGTGGCCCAGCGTCTGCTGCAACTGGCGCAAGAGCACGCGATGCTGGTTATCGAAGATGATGTCTACGCCGATTTCCAGGGGCCAACGCGGGCCCGATTGGCGGCGCTGGATACCGACGTGGTCTACCTGGGCAGCTTCTCCAAGACCTTGAGCAGCTCTTTACGCGTTGGGTTCATGGTGGCGACGCCCTCCGTCATCGCGCGTCTGGGCGAGATCAAGGAGATCACTTGCCGGGGCGGTTCCCGATTCGCCGAGTCCGTGCTGGCCAGCCTCCTGGCCAATGGCGCCTATCGCAAGCTGGTCCAGCGCCAGCGCCAGCGCCTCAATGCCGACATGGCGGTGGCGTTGCAGCTTTTGGAGGATGCCGACTGGAAAGTATTCGGCAAACCGGCGGGAGGCCTGTTCATCTGGGCGCGTCCGCCGCTGTGTGACTATGCTGAGGTACAGCGTCTGGCCAGGCGGTGCGGCATTCAGTTGTCATCCCGCACGGCGTTCAGCCCATCGGGTGCCGAGACGGATTGGCTGCGGGTCAACGTCGCCTATGCCCGGGATCCCAGGGCCTTGGCTTTCTTCCGGGCCACGGCTCTGGATCGACCTCAAATGTCCTGA	MELRIDRQALVPVVQQIVDALACWIRQGAVEPGTRLPSIRQLARENLLSQASVHEACQRLVAQGLLASRHGSSFVVAPAACATEEALAHGWLQGVLADHDAPAGVMYQALKLGGGGLPESWRESDDLGYAIRQVTRTDMAGLFNYSTPLGLPALREQLSRRLKQFDIDADEKRILTTLGATHGLDLIVRTLLRPGCCVVVESPGYSKLFDLLRLHKIDMIELPRTPRGPDVDALQRLLAIHRPSAIFVNSACHNPTGSSLAPAVAQRLLQLAQEHAMLVIEDDVYADFQGPTRARLAALDTDVVYLGSFSKTLSSSLRVGFMVATPSVIARLGEIKEITCRGGSRFAESVLASLLANGAYRKLVQRQRQRLNADMAVALQLLEDADWKVFGKPAGGLFIWARPPLCDYAEVQRLARRCGIQLSSRTAFSPSGAETDWLRVNVAYARDPRALAFFRATALDRPQMS				NA	NA	NA	NA	NA
D1-36_01544	1968			hypothetical protein	ATGATTTCGGCCGTGCAAGGACGTTTTGCCAACCTGGGTATGGCAAAGAAATTGGGTATCGGCTTTGTCCTGGTGCTGCTGCTTACCGCAGTAGTGGCGGCCATTGGCGTCTGGTCCCTGCAAACCATCAGTCATCGCTTCGACGGCTTGAAGCAGATGTCATCCCTCAACAGCCGGTTGCTCAAGGTCCGGCTGCTGGAGCAGGAATTTGCCTTGCGTTCAGACCCCAAGTCCGCCGATGCCCTGCGACAGGGGGTCGATGGCTTGCTGGCCCTGGCGAACGACCTCAGGACACGGTCAGACGGCAATGCGGCGGTGATGAATGAGGTGGAGCAGGCGCTGACGGCGTATCGCAAGGCCTTCGATGAGTTCGTCGGGCTGAGCCAGAGCAAGGACCTGGCGCTGGAAATGGCCAGCTGGTCGGTGTCCAGTGTCGCCAACAACCTGGATGTATTGCAGGCCGGACTCGCCGATGATGGCGCCTATACCTTGAAGGATTCCGAGGGCAAGGAGGGTGCAGAGTTCATCGAGCAGGCCAACCAGGTCAGCGAAGTGTCGCGACTTATGCTGCAGTCGATGAACGAAGCGCGCGTTCGGTTGGACCAAAGCCGTAAAGGCAGTGATGAGGCTGCCGGGCAGGGCAATATCGAACAGGCCGAACAGGCCATGAAGTTGGCGGAAGCGCTCAAGGGCGCGGTCAAGGATCCGGGTTACCAGACCGTACTCAACGAGGTCGCCGGGCACATCGGCGGGTTCAATCAGCAACTGGCGGAATACACCGCGCTGCTGGCCAAGGAAAAAATCGTCTACCAGCAATTGCATGAGCGGGCCGATCAGGTGATGGCGCGGGTCGACCAGGCCTACAGCGCCGAAGACAGTGCCATGCAGGCGGAACTTAAGAAAAATTCGTTGATGATCATCGGCTCGTCGGCTTTGGCGCTGCTGGTTGGATTGGTCGCGGCCTGGGTGATTACCCGGTTGATCGTCGCCCCGCTGCGCAGTGTGATCCGTGTCGCCCAGCGGATCGCCGCCGGGGACCTGAGCGCCAAGGTCGAAGTGATGCGCCGGGATGAGATTGGCCAGCTGATGTTGGCGATGCAACAGATGGGTGCCGGCTTGAGCAGTATCGTCAGCGGTTTGCAGGCTGGCATCGACCAACTGGCCAGCTCCGCCCAGTCGCTGTCGTCCGTCACTGAACAGACCAACCTGGAAGTCAGCAGCCAGAAGGAAGAAACCGAGCAAGTGGCCACGGCGATGAACCAGATGACTGCCACGGTTCACGATGTAGCCCGCAATGCGGAGGAGGCGGCGCAAGCGGCCCAGACGGCTGATGATAAAGTCGAAAGCGGCCAGCAGGTCGTGCGCCAGAGCATGGTCCGTATCGAGCAACTGGCTGACTCGGCGACCATGGCGAGCACCAGCATCGAAAGCCTGAGCGCCGAGATACAAAACATCGGCACCGTGCTGAGCGTGATCAAGAGTGTCGCCGAGCAAACCAATCTGTTGGCGCTCAACGCAGCTATCGAGGCGGCGCGGGCTGGCGAACAGGGCAGGGGGTTTGCGGTGGTGGCCGATGAAGTGCGGGCCCTGGCCAGGCGCACGCAACAGTCCACCGAGGAAATCGAGCGCCTGGTCAGCGCGCTACGCTCTGCTGCTCAAGCGTCCGTACAGCAAATCCAGAGCAGTGGCGAGCTGGTAAAAATGGCGGTCAGCGATGCATTGCAGACCGAAAGCGCGCTAGGCAGCATCGCGGCGGCGGTGTCGTTGATCCAGCAAATGAACCAGCAGATCGCAGCGGCCGCCGAACAACAAAGCTCCGTGGCCGAAGAAATCAACCGCAGCGTCACCAGCATCCGCGCCAGCGCCGATCAATCATCCGTGGCCATGCAGGGTAATGCTGCCTCCAGCGTTGAACTGGCGCAGTTGGGCGTTGAGTTGAAAGGAATGGTGGGGCATTTCAAGTTGTGA	MISAVQGRFANLGMAKKLGIGFVLVLLLTAVVAAIGVWSLQTISHRFDGLKQMSSLNSRLLKVRLLEQEFALRSDPKSADALRQGVDGLLALANDLRTRSDGNAAVMNEVEQALTAYRKAFDEFVGLSQSKDLALEMASWSVSSVANNLDVLQAGLADDGAYTLKDSEGKEGAEFIEQANQVSEVSRLMLQSMNEARVRLDQSRKGSDEAAGQGNIEQAEQAMKLAEALKGAVKDPGYQTVLNEVAGHIGGFNQQLAEYTALLAKEKIVYQQLHERADQVMARVDQAYSAEDSAMQAELKKNSLMIIGSSALALLVGLVAAWVITRLIVAPLRSVIRVAQRIAAGDLSAKVEVMRRDEIGQLMLAMQQMGAGLSSIVSGLQAGIDQLASSAQSLSSVTEQTNLEVSSQKEETEQVATAMNQMTATVHDVARNAEEAAQAAQTADDKVESGQQVVRQSMVRIEQLADSATMASTSIESLSAEIQNIGTVLSVIKSVAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRALARRTQQSTEEIERLVSALRSAAQASVQQIQSSGELVKMAVSDALQTESALGSIAAAVSLIQQMNQQIAAAAEQQSSVAEEINRSVTSIRASADQSSVAMQGNAASSVELAQLGVELKGMVGHFKL	PGPT0015710_8507	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_01545	771			hypothetical protein	GTGACACCACTCATGATCACCCTGCTCGTCGTAGCCGGGATCGCACTGTTGATCGCCATTGGCTACATGAACCATGTGGTGGAAAACAACAAGCTGGAAAAGGCCCGCACCAAGGTCGAGCTCAACGACCGCCTGCGTCGTTGTGGCGAGCTCACCGAAACCTTCCCCGGCCAGTTGATGACCCCTGCCCTGAAGCTGTTGATCACGCGTCTTGAGCTGAACGTCTGCCAGCGCCTGCTGAATCTCGACAAGTCCAACGCTCAGGTCAAGGCACGCCTGGACGAACTGACTGCACTTGCCGCCCAGGGTGAATCGATTCCGGTCAACAACCCGCCGGCGCCGATCCAGACCGAAGCGAAGGCCAAGGATGTTCGGTTCCTGCTCGAGGCCTTGCACGGCCAGATCACCCGCGCGGCCCAGGACGGTTTCCTACCGCCCAACGAGGCCAAGCGCTGGGTTCGCGAGGTCCGGCACATTCTGGTGCTGCTGCACATCGAATTCTTCAACAACCTCGGCCAGCAGGCGCTGCAGCAGGAACAGCCCGGGCAGGCTCGCCTGGCGTTCGAGCGTGGTGTCCAGTATTTGCGCAAGCAGCAGGAACCGCAGGTCTATGCTGAACAGCTGGCTTATCTGGAAAAGCTTCTGGCTCGGGCCAATGCCCAGGTCCTGGCGAGCACTCAGCCTGTGGAGGGTGAGGTGAACCAGTTGACCGAGGGGTTGAAGGAAGACGAAGCGAACGACGAGTGGAAGAAAAAGAAGGTCTACGACTGA	MTPLMITLLVVAGIALLIAIGYMNHVVENNKLEKARTKVELNDRLRRCGELTETFPGQLMTPALKLLITRLELNVCQRLLNLDKSNAQVKARLDELTALAAQGESIPVNNPPAPIQTEAKAKDVRFLLEALHGQITRAAQDGFLPPNEAKRWVREVRHILVLLHIEFFNNLGQQALQQEQPGQARLAFERGVQYLRKQQEPQVYAEQLAYLEKLLARANAQVLASTQPVEGEVNQLTEGLKEDEANDEWKKKKVYD				NA	NA	NA	NA	NA
D1-36_01550	408			hypothetical protein	GTGTCCAACGTCGTTGCCGATCACCTCGTCTTGCTTGACCACTTGCGCAGCATCCTGGTCGCCGTGGGTGAGGCCGAACAGGTGCCTGAAGAAAGCCATGCGCTGTTTCTGGAACGCTTTGATGATTTGCGCGCGCAGTTGCCGGTCGATCCGATCGAAAGCCAATACCTGGGCCAGGACCTCTTGTGCCAAGTGATCGTCCGATATCCGCAGATTGCCCACTTGGTGCCTCGCGACCTGCTGTGGTACTTCGGCGGCGATTGCCTTCACTACATGCCCGACGAAGAAATCAACCTGTACCAGGCCTTGGAGGAACGTCGGTTCGAAGCTGAGCAGAACGACGAGCCCTTCGATTGGAACCAGGAAAAACAATTGCTGGCGATGTCGGACCAGGACAGCAAACACTGA	MSNVVADHLVLLDHLRSILVAVGEAEQVPEESHALFLERFDDLRAQLPVDPIESQYLGQDLLCQVIVRYPQIAHLVPRDLLWYFGGDCLHYMPDEEINLYQALEERRFEAEQNDEPFDWNQEKQLLAMSDQDSKH				NA	NA	NA	NA	NA
D1-36_01551	2448	fadE	COG1960	Acyl-coenzyme A dehydrogenase	ATGCTGTTGTTGTGGATACTGGTTCTGGTCGTCGGGGTAGCCTGGCTGGCGCATCGTCGTACCGCCCCGCTACCGGCGCTAGGCATCGTCGCCGTCTACCTGCTGGTGATGGGCATCGCCAGCCATGCACCCGGCTGGCTGATGCTCGCTCTCTGGCTGGTGCTCGCCGCCATCGCGGCACCGCTGCTGCTACCGGACCTGCGCCGCAAATACTTCAGCGCGCCGATGTTCGACTGGTTCCAGAAAACCCTGCCGCCCATGTCCCAGACCGAGCGCGACGCCATCGACGCTGGCACGGTATGGTGGGATGGCGAGCTTTTCAGTGGACGGCCAGACTGGGACACGCTGCTGGCTTACCCCAAGGTTCGTCTGACCGACGAGGAGCAGGCGTTCCTCGACGGCCCTACCGAAGCGCTTTGTGCGATGGTCAGCGACTGGCAGATCGGCCAGGCGATGGACCTGCCGCCCGAAGCGTGGGCACACATCAAGGAGCATGGTTTTTTCGCCCTGATCATTCCCAAGGAATACGGTGGCAAGGGGTTCTCCGCCTATGCCCACTCCCAGGTGGCAATGAAGCTCGCCACCCGCAGCGGCGACCTGGCTTCCACCGTCATGGTCCCCAATTCCCTCGGCCCCGCGGAACTGTTGCTGCATTACGGCACCGACGAACAACGCAACCATTACCTGCCGCGACTGGCCCGTGGCGACGACATCCCCTGCTTCGCGCTGACCGGCCCACTGGCCGGGTCCGACGCCGGGGCGATGCCCGACACCGGGATCATCTGCAAAGGCGAGTGGCAAGGCGAGGAAACCCTTGGCCTGCGCCTGAACTGGGAAAAGCGCTACATCACCCTAGGCCCGGTCGCCACCCTCCTCGGCCTGGCCTTCAAGGCCTATGACCCGGACCGCTTGCTGGGCGACGAAGAAGACCTGGGAATCAGCCTGGCGCTGATCCCCACCGACACGCCCGGCGTTCAGATCGGCCGTCGCCATCTGCCCCTCGGCGCCGCCTTCATGAACGGGCCGAACTGGGGCAAGGATGTCTTCATCCCGCTGGACTTTCTGATCGGCGGCCAGGCCATGCTCGGCAAGGGCTGGATGATGCTGATGAACTGCCTGTCGGTCGGGCGCTCGATTTCATTGCCCGCGGTCGGTACCGGCGCGGCGAAGTTCACCAGCCTGGTCACCGGCCAGTACACCCAGGTGCGTGAACAATTCAACGTGCCGTTGTCGGCCTTCGAAGGCATCCAGGAAGCCATGGCGCGCATCGGTGGCAATGCCTGGCTGATGGACGCCGCGCGCATGCTGACGGCCAACGCGGTGGACCTCGGCGAAAAACCTTCGGTGCTGTCGGCGATCCTCAAGTACCACCTGACCGAACGTGGCCGCGAATGCATCAGCCACGCCATGGACGTTCACGGCGGCAAAGGCATCATCATGGGTCCTAACAACTACCTGGGACGCAGTTGGCAAGGCGCGCCGATTTTCATCACGGTCGAAGGCGCGAATATCCTGTCGCGCAACCTGATGATCTTCGGCCAGGGTGCCATCCGCTGCCATCCGTTCGTGCTCAAGGAGATGGCCCTGGCCACCCGCGAGGACAAAGACCAGGCATTGCTCGAATTCGACGCACTGCTGCTCAAGCACATCGGTTTCGCGGTCAGCAATGCCGCCAGTACCTTGGTGCTGAATCTCGGCCTGGGGCATTTCGATAACGTGCCAGGCAACGCCTTGAGCCAAGGCTATTTCCGCGCCCTCAACCGGCAAGCGGCGGCATTTGCCTTGCTGGCGGACCTGAGCATGATGTTGCTGGGTGGTGAGCTCAAGCGCCGCGAGCGCTTGTCTGCCCGATTGGGTGATGTGTTGAGCAACCTTTACCTGGCCTCGGCTGCACTCAAGCGCTACCACGATCTCGATTCGCCGGACCATATGGCGCCACTGTTCCAGTGGGCCATGGAAGAAAGCCTGGGTCAGTCGGAGCGGGCGTTGGACGAGCTGCTGGCCAACTTCCCAAGCCGGCTGCTGGGCTGCCTGTTGCGTGTGGTGGTGTTTCCTTTCGGCCGGCGTCATAAAGGTCCGAGCGACCGGCTCGATGCCGAGGTGGCAGCGGTTATCGGTCGCGCCAAGGGCGATCCGACTTTGGAGGAGTTGCTTCAAGGCTGCTATCGCCCACAGTCACAGGATGATCCTGTCGGTGCGCTGCAATACGCCGCCGACCTGCTGGCCACCGCCCATCCACTGCACAAGAAGTTGCACTCGGCACTGAAGCAGGGTCAGCTCGACCCGGCACCTGGAGAGCCCCTTATCGATGCAGCGCTCGAAGCGGGCGTGCTGAATGCAACTGAAGCGCAGACCCTGCGAGCCGCTGAAACGGCACGCCGCAAGGTCATCGACGTGGACGACTTCGACCCGCAAGCGCTGACGCTCACTGAGGACAAAGTCCGTTGA	MLLLWILVLVVGVAWLAHRRTAPLPALGIVAVYLLVMGIASHAPGWLMLALWLVLAAIAAPLLLPDLRRKYFSAPMFDWFQKTLPPMSQTERDAIDAGTVWWDGELFSGRPDWDTLLAYPKVRLTDEEQAFLDGPTEALCAMVSDWQIGQAMDLPPEAWAHIKEHGFFALIIPKEYGGKGFSAYAHSQVAMKLATRSGDLASTVMVPNSLGPAELLLHYGTDEQRNHYLPRLARGDDIPCFALTGPLAGSDAGAMPDTGIICKGEWQGEETLGLRLNWEKRYITLGPVATLLGLAFKAYDPDRLLGDEEDLGISLALIPTDTPGVQIGRRHLPLGAAFMNGPNWGKDVFIPLDFLIGGQAMLGKGWMMLMNCLSVGRSISLPAVGTGAAKFTSLVTGQYTQVREQFNVPLSAFEGIQEAMARIGGNAWLMDAARMLTANAVDLGEKPSVLSAILKYHLTERGRECISHAMDVHGGKGIIMGPNNYLGRSWQGAPIFITVEGANILSRNLMIFGQGAIRCHPFVLKEMALATREDKDQALLEFDALLLKHIGFAVSNAASTLVLNLGLGHFDNVPGNALSQGYFRALNRQAAAFALLADLSMMLLGGELKRRERLSARLGDVLSNLYLASAALKRYHDLDSPDHMAPLFQWAMEESLGQSERALDELLANFPSRLLGCLLRVVVFPFGRRHKGPSDRLDAEVAAVIGRAKGDPTLEELLQGCYRPQSQDDPVGALQYAADLLATAHPLHKKLHSALKQGQLDPAPGEPLIDAALEAGVLNATEAQTLRAAETARRKVIDVDDFDPQALTLTEDKVR	PGPT0021800_552	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021800-fadE-K06445	NA	NA
D1-36_01552	624	gstB_1	COG0625	Glutathione S-transferase GstB	ATGCTGAAGATTTGGGGCCGGAAGAACTCATCGAATGTTCGAAAGGCGTTGTGGTGTGCCGAGGAACTGGGACTGGCCTACGAGGCCATCGATGCCGGCGGGGCCTTCGGTGTGGTGGATACGCCGCAGTACCGCGCCAAGAACCCCAACGGTCGGGTTCCGATGCTGGAAGACGAAGGCTTCGTGCTCTGGGAGTCGAATACCATCGTTCGCTACCTGGCCGCTCGTCATGCATCGGGTTCGGCTTGGTACCCCGACGAAGTCCAGGCCCGGGCCAAGGCAGAGAAGTGGATGGACTGGACCACGTCCAGCTTCGCGGCCCCGTTTCGCACGGTATTCTGGGGCGTCCTGCGCACCCCGCCCGAGCAGCAGGACTGGGTTGCCATCAAGGCGGCGATCAAGGAGTGCGACGACCTGCTGGCGATGGTCGACCAGGCCCTGGCCGAACAGCCTTACCTTGGCGGTGATGAAATCGGCATGGGCGACATTCCCCTCGGCAGTTTCATTTATGCCTGGTTCGAGATGCCCATCGAGCGCGCCGCGCTGCCGAACCTCCAAGCCTGGTATGCACGGCTCAGGCAGCGTCCGGCCTATCAGAAAGCTGTCATGACCGCGTTGACTTAA	MLKIWGRKNSSNVRKALWCAEELGLAYEAIDAGGAFGVVDTPQYRAKNPNGRVPMLEDEGFVLWESNTIVRYLAARHASGSAWYPDEVQARAKAEKWMDWTTSSFAAPFRTVFWGVLRTPPEQQDWVAIKAAIKECDDLLAMVDQALAEQPYLGGDEIGMGDIPLGSFIYAWFEMPIERAALPNLQAWYARLRQRPAYQKAVMTALT	PGPT0013170_17671	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799	NA	NA
D1-36_01553	933	yadG	COG1131	putative ABC transporter ATP-binding protein YadG	ATGAGTTCCGCTCTGTCCATACGGCAGTTAACCAAAACCTACGGCAACGGTTTCCAGGCCCTGAGTGGTATCGATCTGGACGTCGCCGAAGGTGATTTCTTCGCCTTGCTTGGCCCGAACGGGGCAGGCAAATCCACGACCATCGGCATTCTTTCCACTCTGGTGAACAAGACCAGCGGCACGGTCAATGTCTTCGGCCACGACCTGGACCGCGCGCCCGCCGCGCTCAAGCGCTGCATCGGCGTGGTGCCTCAGGAATTCAATTTCAACCAGTTCGAAAAGACCTTCGACATCGTCGTGACCCAGGCCGGCTACTACGGCATCCCACCGAAGATTGCCAACGAGCGCGCCGAACAGTACCTGACCCAACTGGGCTTGTGGGACAAGCGCGACGTGCCGTCCCGTTCGTTGTCCGGTGGCATGAAGCGACGTTTGATGATTGCGCGCGCGCTGGTGCATGAACCGCGCCTGCTGATCCTCGATGAACCGACCGCGGGCGTGGACATCGAACTGCGCCGTTCGATGTGGACCTTCCTGACCGAGCTGAACCAGAAAGGCATCACCATTATCCTCACGACGCATTATCTGGAAGAAGCCGAGCAGCTGTGCCGCAATATCGGCATCATCGACCACGGCACTATCGTCGAGAACACCAGCATGCGGCAGTTGCTGAGCCAATTGCACGTGGAAACCTTTTTGCTGGATCTCAAGCATGACTTGAGCGTCACCCCTCAGCTCGTAGGCTATCCGGCCCGGCTGCTGGACGGCCACACCCTGGAAGTCCAGGTCGACAAATCCGTCGGCATTACCGGGCTGTTCACCCAGCTGGCCCTGCAAAACATCGAAGTGCTGAGCCTGCGCAACAAGACCAATCGCCTTGAGGAGTTGTTCGTGTCCCTGGTGGAAAAAAACCTGGCGAAGGTGGCGGTATGA	MSSALSIRQLTKTYGNGFQALSGIDLDVAEGDFFALLGPNGAGKSTTIGILSTLVNKTSGTVNVFGHDLDRAPAALKRCIGVVPQEFNFNQFEKTFDIVVTQAGYYGIPPKIANERAEQYLTQLGLWDKRDVPSRSLSGGMKRRLMIARALVHEPRLLILDEPTAGVDIELRRSMWTFLTELNQKGITIILTTHYLEEAEQLCRNIGIIDHGTIVENTSMRQLLSQLHVETFLLDLKHDLSVTPQLVGYPARLLDGHTLEVQVDKSVGITGLFTQLALQNIEVLSLRNKTNRLEELFVSLVEKNLAKVAV	PGPT0006725_8857	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
D1-36_01554	780	yadH	COG0842	Inner membrane transport permease YadH	ATGAGTTCGGAACTGCGCCCCAACCTGATCGCCCTCAATACGATCGTTTATCGCGAAGTCCGACGCTTCATGCGGATCTGGCCGCAGACCTTGCTGCCCCCGGCCATCACGATGGTTTTGTACTTTGTGATCTTCGGTAACCTGATCGGCCGGCAGATCGGCGACATGGGCGGCTTTACGTACATGGACTACATCGTGCCGGGGCTGATCATGATGTCGGTGATCACTAACTCCTACGGCAACGTCGTGTCGAGTTTCTTCGGCAGCAAATTCCAGCGTTCGATCGAAGAACTGATGGTCTCACCGGTTTCGCCCCATACGATCCTGATCGGGTTTGCCTTGGGCGGTGTGTTGCGAGGATTGGCGGTGGGCCTGATCGTGACCCTGCTGTCGCTGTTCTTCACCGACCTGCAGGTGCATCACCTGGGCGTGACGATCCTGGTGGTGGTGCTGACGGCTACGATCTTTTCGCTGCTGGGTTTCATCAATGCCGTGTTTGCGCGCAACTTCGACGACATCTCCATCATCCCGACCTTCGTACTGACGCCGCTGACCTACCTGGGTGGAGTGTTCTATTCGATCTCCTTGCTGCCCCCGTTCTGGCAGACCGTATCGCTGGCCAACCCGGTGTTGCATATGGTCAACGCGTTTCGCTACGGGATCCTTGGGGTGTCGGACATTCGCATCAGTATCGCGATCACCTTCATGCTGGTTGCGACCGTGGTGCTTTACGTGGGGTGCGCGCGGTTGCTGGTGAGTGGGCGGGGAATGCGTACCTGA	MSSELRPNLIALNTIVYREVRRFMRIWPQTLLPPAITMVLYFVIFGNLIGRQIGDMGGFTYMDYIVPGLIMMSVITNSYGNVVSSFFGSKFQRSIEELMVSPVSPHTILIGFALGGVLRGLAVGLIVTLLSLFFTDLQVHHLGVTILVVVLTATIFSLLGFINAVFARNFDDISIIPTFVLTPLTYLGGVFYSISLLPPFWQTVSLANPVLHMVNAFRYGILGVSDIRISIAITFMLVATVVLYVGCARLLVSGRGMRT	PGPT0006730_17083	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992	NA	NA
D1-36_01555	516			hypothetical protein	ATGCCCCGGCGCCTATTCAAACGTTACATGCCTGACCCAGCGAGCATTCGGGAACACAAATCCTTACGCTTTCTCGGTACGCTGCTGCACGACCCCAACCTTTGGCACCTCAATCGCCATTCGGTCGCCCGGGCGATGGCCGTCGGCCTGTTCGCCGCTTTCTTGCCCATTCCCCTGCAAATGCTGCTGGCCGCGGCGCTGGCCATCACGGTTCGCGGCAACATTCCGATTGCCGTGAGCCTGGTCTGGCTGACCAACCCCATCACCATGCCGGCGGTGTTCTTCTGCACTTATCAAACCGGCGCCTGGCTGATGGATGTGCCAGCCCGGACGTTGCCGGACGAATTGACCTGGGAGTGGATCACCCACCAGCTGGCGACGTTGTGGCAGCCGTTTCTGTTGGGTTCGGTGGTGACCGGGTTGGTGCTTGGGGCGCTGGCATATTTCGTGACGATGGCGTACTGGCGCTGGTGGGTTACCAGACAATGGAGGCGGCGCAAGCGGAGTCGGATGTGA	MPRRLFKRYMPDPASIREHKSLRFLGTLLHDPNLWHLNRHSVARAMAVGLFAAFLPIPLQMLLAAALAITVRGNIPIAVSLVWLTNPITMPAVFFCTYQTGAWLMDVPARTLPDELTWEWITHQLATLWQPFLLGSVVTGLVLGALAYFVTMAYWRWWVTRQWRRRKRSRM				NA	NA	NA	NA	NA
D1-36_01556	2247	comEC	COG0658	ComE operon protein 3	ATGCGCACGGCAATGGTCGCGCTTGCACTGGGGCTGCTGGCCCCGATTTTTCTACCGGCCTTGCCGCCGTCCTGGTTGATTGCAGCCATGACTGTGGCGGCATTGTTGGTGTTGCCGACGCGTACGTACTGGGCAGGCTTGTTCTTCATCGGGCTGGCCTGGGCCTGTTTTTGCGCACAGCTCGCATTGGACGATCGGTTGTCCGTCGCGCTGGAGGGTGAGACTCGCTGGGTCGAGGGGCGGGTCGTCGGTTTGCCGCAACAGGGTGATGGCGTCGTGCGTTTCGAGCTCGCCGATGCGCATTCCCGGCGTACGCGTTTGCCGGCGTCGATGCGCCTGGCCTGGTATGGCGGGCCGCTGGTCAGTAGTGGAGAGACGTGGCGCCTGGCGGTGAAACTCAAGCGACCCGCGGGGTTGCTCAATCCCCATGGCTTCGACTATGAGGCCTGGCTGTTGAGCAGGGGGATCGGTGCGACCGGCACCGTCAAGGATGGTTCGCTGCTACAACCGGCCAAGGGCGCCTGGCGCGATGGGGTGCGCCAGGCACTGGCAAAGGTCGATGCCCAGGGCCGTTCCGGTGCGCTGCTGGCGTTGATCCTCGGCGACGGCGCCGGGTTGAGCCGCGAAGAATGGCGGGTGCTGCAAGACACCGGCACCGTCCATCTGCTGGTGATTTCCGGGCAGCATATTGGCCTGCTTGCCGGCCTGGTCTATCTGCTGGTGGCGGGGGCGGCGCGTTATGGCGTCTGGCCGGCGCGTTTGCCGTGGTTGCCCTGGGCGTGCGCCCTGGCATTTGCCGCGGCCCTGGGGTACGGCCTGCTCGCCGGGTTCGATGTGCCGGTGCGACGGGCCTGCGCAATGATTGGCCTGGTGCTGTTGTGGCGCTTGCGTTTCCGCCAGGCTCAACCCTGGTGGGCCTGGATGGCGGCGTTCGTCGGGGTGCTGGTGCTGGATCCGCTGGCCAGCCTGCGGCCAGGCTTCTGGTTGTCGTTCGCTGCGGTGGCGATATTGATGTTCACTGTTGGCGGTCGCCTGGGGCCGTGGCGCTGGTGGCAGACGTGGACCCGCGCCCAGTGGTTCATTGCCCTGGGGCTGTGCCCGCTGTTATTGATCCTGGGACTGCCGGTCAGCCTCAGCGGTCCTTTGATCAACCTGCTGGCGGTGCCCTGGATCAGCCTGTTGGTGTTGCCCTCGGCACTGCTTGGCACGGCGTTGCTGCCGATCCCCTTCGTCGGTGAAAGCCTGCTCTGGATCGCCGGCGGGCTGCTCGATCTGCTGTTCAATGGGCTCGGCTTGGCTGCCGGGCAGGTGCCGGCCTGGGTGCCTCTCGCCATACCGCTGTGGGCGTGGTGCATTGCAGCGACCGGTGCTCTGCTGTTGTTGCTGCCCGAGGGCGTGCCCCTACGCCTCCTCGGATGGCCGATGTTGTTGCTGATGGTTTTTCCTCCCAGGGACGAAGTGCCTCCGGGCCAAGCGGAAGTCTGGCAATTGGACGTCGGCCAGGGGTTGGCGATCCTGGTGCGCACCCATCGGCATACCTTGCTCTACGACGCAGGGCCGCGCTTTGGCGAGGCGGATTCAGGCGAGCGCGTGGTCGTGCCGACCTTGCACAAGCTTGGTGTGGAAAAGATCGACCTTCTGTTGCTTAGCCACGCCGATGCCGATCACGCCGGCGGAGCCCAGGCCGTGCGCAACCGATTGCCAACGACTCGGGTCATCAGCGGTGATCCGCAAGCGCTGCCCGGGGATTTGCAGGCGGGTTCATGCGATAGCGGCGAGAGCTGGGCATGGGACGGGGTCAGGTTCGAGCTCTGGCGCTGGGATTCAGCTGTCGAAAGCAATCAGAAATCCTGTGTCTTAGTGGTCATGGCGGGCGAGGAGCGACTGCTGTTGACCGGCGACATCGATACCCACGCCGAGCGCGCCTTGCTCGAAGGTCCCTTGGCGGGACCGATCCAATGGCTGGCGGCACCGCACCATGGCAGCCGCAGCTCATCGTCGATGGCGCTGCTGGCGCGGCTCAAACCTCATTCGGTGTTGATATCCAGGGGGCGGAGCAACGCGTTCGGCCATCCGCACCCCTGGGTGATCGAGCGATACAGGAGGTTGGGCCTGTCGATTTTCGACAGCGCCGAGCAGGGCGCCATTCGTCTGCAACTGGGCGCCTTCGCGCCGGCGCGCACCCAGGCAGGTGTTCGGCGTTACTGGCGTGACCGGCTGGCCGCGGGGGCTTGGACAGAACATTGA	MRTAMVALALGLLAPIFLPALPPSWLIAAMTVAALLVLPTRTYWAGLFFIGLAWACFCAQLALDDRLSVALEGETRWVEGRVVGLPQQGDGVVRFELADAHSRRTRLPASMRLAWYGGPLVSSGETWRLAVKLKRPAGLLNPHGFDYEAWLLSRGIGATGTVKDGSLLQPAKGAWRDGVRQALAKVDAQGRSGALLALILGDGAGLSREEWRVLQDTGTVHLLVISGQHIGLLAGLVYLLVAGAARYGVWPARLPWLPWACALAFAAALGYGLLAGFDVPVRRACAMIGLVLLWRLRFRQAQPWWAWMAAFVGVLVLDPLASLRPGFWLSFAAVAILMFTVGGRLGPWRWWQTWTRAQWFIALGLCPLLLILGLPVSLSGPLINLLAVPWISLLVLPSALLGTALLPIPFVGESLLWIAGGLLDLLFNGLGLAAGQVPAWVPLAIPLWAWCIAATGALLLLLPEGVPLRLLGWPMLLLMVFPPRDEVPPGQAEVWQLDVGQGLAILVRTHRHTLLYDAGPRFGEADSGERVVVPTLHKLGVEKIDLLLLSHADADHAGGAQAVRNRLPTTRVISGDPQALPGDLQAGSCDSGESWAWDGVRFELWRWDSAVESNQKSCVLVVMAGEERLLLTGDIDTHAERALLEGPLAGPIQWLAAPHHGSRSSSSMALLARLKPHSVLISRGRSNAFGHPHPWVIERYRRLGLSIFDSAEQGAIRLQLGAFAPARTQAGVRRYWRDRLAAGAWTEH	PGPT0029415_2388	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
D1-36_01557	717	tolQ_2		Tol-Pal system protein TolQ	ATGGTCGTGTTGTCGGCGGCACGGGTCTGCACCGCGCGTCTGTATGATAAAGTGGCGCACTTTTTCGAGGGGGCAGTCACTGTGTGGGAATTGGTCAAATCCGGCGGCTGGATGATGTTGCCGATCATTCTGAGTTCCATCGCGGCATTGGGAATCGTTGCCGAACGCCTGTGGACCCTGCGGGTCAGCCGCGTGACCCCGGAGCATCTGCTCGGGCAGGTCTGGGTCTGGATCAAGGACAAGCAGTTGAACAAGGACAAGCTCAAGGAGTTGCGTGCCAGTTCGCCGCTGGGCGAAATCCTTGCGGCGGGCCTGGCGAACTCCAAGCATGGCCGCGAGATCATGAAGGAGTGCATCGAAGAGGCGGCTGCCCGGGTCATCCATGAGCTGGAGCGCTACCTCAATGCCTTGGGAACCATTGCCGCCATGGCCCCGTTGCTGGGATTGCTGGGCACGGTGCTGGGCATGATCGATATTTTCAGTGCGTTTACCGGGACCGGCATGACCACCAATGCATCGGTGCTGGCCGGTGGCATTTCCAAGGCGTTGATCACCACCGCAGCCGGTTTGATGGTGGGAATCCCCTCGGTATTCTTCCATCGTTTTCTGCAACGTCGCGTCGATGAGTTGGTGGTGGGCATGGAGCAGGAAGCTATCAAGTTGGTCGAGGTGGTGCAGGGCGACCGCGATGTGGACCTGGCCGGGGGGAAGAAGTGA	MVVLSAARVCTARLYDKVAHFFEGAVTVWELVKSGGWMMLPIILSSIAALGIVAERLWTLRVSRVTPEHLLGQVWVWIKDKQLNKDKLKELRASSPLGEILAAGLANSKHGREIMKECIEEAAARVIHELERYLNALGTIAAMAPLLGLLGTVLGMIDIFSAFTGTGMTTNASVLAGGISKALITTAAGLMVGIPSVFFHRFLQRRVDELVVGMEQEAIKLVEVVQGDRDVDLAGGKK	PGPT0003750_3961	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	OTHER_HEAVY_METAL_RESISTANCE_SYSTEMS	HEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003750-exbB-K03561	NA	NA
D1-36_01558	429	tolR		Tol-Pal system protein TolR	GTGAAATTCCGCCGCAAACCACGGGAAAACATCGAGATCAATCTCGCGTCGCTGATCGACGTGGTATTCATCCTGCTGCTGTTTTTCGTCGTGACCACCACGTTTACCCGGGAGACCCAGCTCAAGGTCGAATTGCCGCAGGCCGTCAGTGGCTCGCCGGCCGAAGACCAGCAACTGAAGAACCTGGAGGTCACCATCAGCGCCGAAGGGACGTTCTCGGTCAACAACAATCTGTTGCCTAAAAGTGACCTGGCGAGCCTGATCGAGGCCCTGCAGAGGGAGTCCGGCGGCGATACCAGCCTGCCGCTCTCCATCAGCGCCGACGGAAAGACGCCTCATCAATCGGTCATCACCGCCATGGACGCCGCCGGCAAGCTCGGCTTCAGCCATCTGCGCATGACCACCGTCGAGGCGGCGCCCGCACCCTGA	MKFRRKPRENIEINLASLIDVVFILLLFFVVTTTFTRETQLKVELPQAVSGSPAEDQQLKNLEVTISAEGTFSVNNNLLPKSDLASLIEALQRESGGDTSLPLSISADGKTPHQSVITAMDAAGKLGFSHLRMTTVEAAPAP	PGPT0003755_1583	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	OTHER_HEAVY_METAL_RESISTANCE_SYSTEMS	HEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003755-exbD-K03559	NA	NA
D1-36_01559	1011	lpxK	COG1663	Tetraacyldisaccharide 4'-kinase	ATGGCCATGTCCGATCGATTGCTTGCCGCCTGGTATGAAGGGCATCCCGCCCTCGCGCTACTGCGGCCACTTGAATGGCTGTACCGACGCGTCGTGGTCGGCAAACGCGAGCGTTTCCTGGCAGGCGAGGGTGAGGTTTACCAGCCGCCCGTGCCGCTGATCGTGGTTGGTAATATCACCGTTGGCGGCACTGGCAAGACGCCGCTGATTCTGTGGATGATCGAACATTGCCGGCGCAGTGGCCTGCGGGTCGGCGTAGTCAGCCGGGGCTACGGCGCCAAGCCGCCGCAATTGCCCTGGCGGGTCGCGGCGGACCAGGGCGCCGACATCGCGGGCGACGAGCCGCTGCTGATCGTCCAGCGCACCGGCGTGCCATTGATGATCGATCCCGATCGCAGCCGCGCTGTCCGGGCTTTGTTGGAAAGCGAGCCGCTGGATCTGATCCTGTCCGACGATGGCATGCAGCATTATCGCCTGGCGCGGGACCTTGAACTGGTATTGATCGACAATGCCCGGGGCCTGGGCAACCGGCGTTGCCTGCCTGCCGGTCCGCTGCGCGAGCCGGTCGAGCGCCTGCAATCGGTCGACGCCGTACTGTTCAACGGCGCCAGCGCTGATCGCGAGGACGGCTTCGCCTTCCAGCTCCAACCCACCCTGCTGGTCAACCTGGCCAGCGGCGAACGGCGCCCCCTCGATCATTTTCCACCCGGCCAGGCCCTGCACGCCGTGGCCGGCATCGGCAATCCGCAGCGTTTCTTCACGACCCTTGAAACGCTACACTGGCGGCCAATACCGCACGGGTTTGCCGATCACGCCGAATACAGTGCCCAGGCGTTGAATTTTACGCCGTCCCTGCCGGTGGTCATGACGGAAAAGGACGCGGTCAAGTGCCGTGCCTTCGCCGCGCCCGACTGGTGGTACCTGGCGGTGGACGCAGCACCTTCGCCGGCCTTCGCGGCCTGGTTCGATACGCAGCTGATGCGCCTGTTGCCGGATCGGCTCTTGCCTTAA	MAMSDRLLAAWYEGHPALALLRPLEWLYRRVVVGKRERFLAGEGEVYQPPVPLIVVGNITVGGTGKTPLILWMIEHCRRSGLRVGVVSRGYGAKPPQLPWRVAADQGADIAGDEPLLIVQRTGVPLMIDPDRSRAVRALLESEPLDLILSDDGMQHYRLARDLELVLIDNARGLGNRRCLPAGPLREPVERLQSVDAVLFNGASADREDGFAFQLQPTLLVNLASGERRPLDHFPPGQALHAVAGIGNPQRFFTTLETLHWRPIPHGFADHAEYSAQALNFTPSLPVVMTEKDAVKCRAFAAPDWWYLAVDAAPSPAFAAWFDTQLMRLLPDRLLP	PGPT0022380_1529	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LIPID_A_METABOLISM,PGPT0022380-lpxK-K00912	NA	NA
D1-36_01560	186			hypothetical protein	ATGGACACCAAACTGCTCGATATCCTGGCTTGCCCGGTCTGCAAAGGCCCGCTCAAGCTCAGCGCCGACAAGACCGAGCTGATCAGCAAGGGCGCCGGCCTGGCCTATCCGATTCGCGACGGCATCCCGGTGATGCTCGAGAGCGAAGCCCGCACCCTGACCACCGATGAGCGCCTGGATAAATGA	MDTKLLDILACPVCKGPLKLSADKTELISKGAGLAYPIRDGIPVMLESEARTLTTDERLDK	PGPT0022380_102	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LIPID_A_METABOLISM,PGPT0022380-lpxK-K00912	NA	NA
D1-36_01561	765	kdsB	COG1212	3-deoxy-manno-octulosonate cytidylyltransferase	ATGACCACAGCCTTTACCGTCGTCATTCCGTCGCGCTTCGCCTCGACGCGCCTGCCTGGCAAGCCGTTGTTGTTGATCGCCGGCAAGCCGATGATCCAGCATGTCTGGGAACAGGCCAGCAAGAGCAGCGCCCAACGCGTAGTGGTCGCGACGGACGATGCGCGCATCGTTGAGGCGTGCGAGGGCTTTGGCGCCGAGGTGGTGATGACGCGCGAGGACCACAACTCTGGTACTGATCGCCTGGCGGAAGTGGCCGCGAAGCTCGGGCTGGCGCCCGATGCCATCGTCGTCAACGTGCAGGGCGACGAGCCATTGATACCGCCAAGTGTCATCGACCAGGTGGCCGCGAACCTGGCGGCCCATCCCGAGGCGCGCATGGCCACCCTGGCCGAGCCGATCGAGGACGTGCCGACGCTGTTCAACCCCAATGTGGTCAAGGTGGTCAGCGACCTCAACGGCCTCGCGCTCACTTTCAGTCGCGCCACCTTGCCCTGGGCCCGGGAGGCCTTCGCGCAGAGCCGCGACGTGCTGCCCGACGGTGTGCCGTACCGCCGCCATATCGGCATCTATGCCTACCGCGCCGGTTTCCTCCAGGACTTCGTCGCGTGGGGGCCGTGCTGGCTGGAAAATACTGAGGCCCTGGAGCAACTGCGCGCATTGTGGCATGGCGTGCGGATCCACGTTGCCGATGCCTTGATCGCGCCTCCGACCGGGGTGGATACCCCCGAAGACCTTGAGCGCGTTCGTCGCCTGCTGGAGGCTTGA	MTTAFTVVIPSRFASTRLPGKPLLLIAGKPMIQHVWEQASKSSAQRVVVATDDARIVEACEGFGAEVVMTREDHNSGTDRLAEVAAKLGLAPDAIVVNVQGDEPLIPPSVIDQVAANLAAHPEARMATLAEPIEDVPTLFNPNVVKVVSDLNGLALTFSRATLPWAREAFAQSRDVLPDGVPYRRHIGIYAYRAGFLQDFVAWGPCWLENTEALEQLRALWHGVRIHVADALIAPPTGVDTPEDLERVRRLLEA	PGPT0023065_1097	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-8-AMINO-3|8-DIDEOXY_D_MANNO-OCTULOSONIC_ACID_MODIFICATION,PGPT0023065-kdsB-K00979	NA	NA
D1-36_01562	465			Putative low molecular weight protein-tyrosine-phosphatase	ATGCGGGTTCTGTTCGTCTGTCTTGGCAATATCTGCCGGTCGCCCACAGCCGAAGGTATCTTGCGCCACAAATTGCGCGAAGCCGGGCTGCAAGAGCAGGTGGAAGTCGCTTCCGCCGGCACCGGCGACTGGCATGTCGGTAAAGCGCCGGACAAACGCAGCATGGCCGCGGCCCTGCGTCGCGGCTACGATTTATCGGCCCAGCGAGCCCGGCAGGTGACCCGCGCCGATTTCGCCACCTATGACCTGATCCTGGCGATGGACAGCAGCAACCTGCGCAACCTCAAGGTCTTGCAACCGGCCAATGCCCGAGCAGAGCTGGACCTTTTCCTGCGTCGCTACGAAGCCGAACTCGATGAAGTGCCTGACCCTTACTACGACGGTGAGCAAGGTTTCGAGCAGGTGCTGGATCTGATCGAGCGCGCCACGGATCGTCTGGTGATCGAATTGAAGGGGCGGTTATGA	MRVLFVCLGNICRSPTAEGILRHKLREAGLQEQVEVASAGTGDWHVGKAPDKRSMAAALRRGYDLSAQRARQVTRADFATYDLILAMDSSNLRNLKVLQPANARAELDLFLRRYEAELDEVPDPYYDGEQGFEQVLDLIERATDRLVIELKGRL	PGPT0014530_6315	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
D1-36_01563	1020	murB	COG0812	UDP-N-acetylenolpyruvoylglucosamine reductase	ATGACCTTGCAAGTCCAGACGGGCGTCAGCCTCAAGCCGTACAACAGCTTCGGCGTGGATGTCGGCGCCCGGCTGTTCGCCGAAGCCCACAGCGATACGGATGTTCGGGAAGCCTTGGCCTATGCCGCCGGCCACGACGTGCCGCTGCTGGTCATTGGCGGCGGCAGCAACCTGTTGCTGACCGGCGACATCAACGCGCTCGTGTTACGCATGGCCAGCCGGGGGATTCGCTTGCTCGTCGATGACGGCGAGCGGGTGGTGATCGAGGCCGAGGCCGGGGAGCCGTGGCATCCGTTTGTCCAGCACACGCTGGCGCAAGGTTGGTCGGGCCTGGAAAACCTCAGCCTGATTCCCGGTACGGTGGGGGCGGCGCCGATGCAGAACATCGGTGCCTACGGTGTGGAAATAAAGGATGTTTTCGCCGGCCTCACCGCGTTGGATCGCTACACCGGCGAGCTGCGCGATTTCACCGTCGACGAATGCGCCTTCGCCTACCGCGACAGCCTGTTCAAGCAGCAGCCGGACCGCTGGTTGATCCTGCGGGTGCGCTTTGCCCTCAGCCGTATCGCGCATTTGCACCTGGAATACGGCCCGGTGCGCCAGCGCTTGACCGAACAAGGCATCGACCAGGCGACGCCTGCCGATGTCAGCCGGGCGATCTGCAGCATCCGCAGCGAGAAACTCCCAGACCCCGCCGTACTCGGCAACGCCGGGAGTTTTTTCAAGAATCCATTGGTGCCGGCCGCTCACGTGGCGCATCTCAAGGCGCAATACCCCGACCTGGTGGCTTATCCACAGGCTGGTGGGCAGATGAAAATCGCCGCCGGCTGGCTGATCGAGCGGGCCGGTTGGAAAGGGTTCCGCGAAGGCGACGCCGGAGTGCATAAGTTGCAGGCGCTGGTGTTGGTCAACTATGGCAATGCCACGGGGCTGGAGCTGCTGGATCTGGCTCGACGGATTCAGAAAGACATCGCCGAGCGTTTCCAGGTCGAGCTGGAAATGGAACCTAATCGGTATTGA	MTLQVQTGVSLKPYNSFGVDVGARLFAEAHSDTDVREALAYAAGHDVPLLVIGGGSNLLLTGDINALVLRMASRGIRLLVDDGERVVIEAEAGEPWHPFVQHTLAQGWSGLENLSLIPGTVGAAPMQNIGAYGVEIKDVFAGLTALDRYTGELRDFTVDECAFAYRDSLFKQQPDRWLILRVRFALSRIAHLHLEYGPVRQRLTEQGIDQATPADVSRAICSIRSEKLPDPAVLGNAGSFFKNPLVPAAHVAHLKAQYPDLVAYPQAGGQMKIAAGWLIERAGWKGFREGDAGVHKLQALVLVNYGNATGLELLDLARRIQKDIAERFQVELEMEPNRY	PGPT0024115_1927	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024115-murB-K00075	NA	NA
D1-36_01564	471	iorA_1		Isoquinoline 1-oxidoreductase subunit alpha	ATGATTACCCTGAAACTCAATGGAAAAGATCACTCACTGGATGTGACCGAGGACATGCCTCTGTTATGGGCGATCCGAGACGTGGCCGGCTATAACGGCACCAAGTTCGGCTGCGGCATGGGCCTGTGCGGCGCCTGCACCATCCACATCGACGGCGCCCCGGCGCGCAGTTGCATCACGCCGATCGGCTCAGTGAAGGGCCAGAACATCAGCACCATCGACGCGCTTCACGTCGATCCGGTCGGGCAGGTCGTGCAGAAGGCCTGGCTGGATACCGCCGTCGCCCAATGCGGCTATTGCCAGGGCGGGCAAATCATGTCCGCCACCGCGTTGCTCAAGACCAACCCCAACCCCAGCGACGAGCAGATCGAAGAAGCCATGGCTGGCAACATCTGCCGCTGCGGTACGTATAACCGGATCAAGACCGCGATCCGCCAGGCTTCCACTCACTTGAAGGAGGCCAAGGCATGA	MITLKLNGKDHSLDVTEDMPLLWAIRDVAGYNGTKFGCGMGLCGACTIHIDGAPARSCITPIGSVKGQNISTIDALHVDPVGQVVQKAWLDTAVAQCGYCQGGQIMSATALLKTNPNPSDEQIEEAMAGNICRCGTYNRIKTAIRQASTHLKEAKA	PGPT0009812_751	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-QUINOLINE_RESISTANCE,PGPT0009812-iorA-K07302	NA	NA
D1-36_01565	2316			Membrane-bound aldehyde dehydrogenase [pyrroloquinoline-quinone]	ATGAGCCGCTTGCCCGCTGATTTCGCGCTGAGCAACCTCAGCCGTCGTGGATTTCTCAAGGGCGCCAGCGCCACCGGCGTGCTGGTCCTGGCCGCCACTTGGGGCCTGCCGGATGCCTTTGCCGAAGAGAAGAAGTTCGGCGCCGAGGGCATGCCCCATGGCGCGATCGATGATCCGAAGGTGTACGTCAGTATCGCCGCCGACGGCAGCGTGACAGTGACCTGCAACCGTTCGGAAATGGGCCAGGGCGTGCGTACCAGCCTGAGCATGGTAGTGGCCGACGAACTGGATGCCGACTGGGCGCTCGTCAAGGTCCGGCAGGCGCCGGCGGACGAGGCGCGTTTCGGCAACCAGGACACCGACGGTTCACGCAGCATGCGTCACTGGTACGAGCCGATGCGTCGTTGCGGTGCCGCGGCCCGGACCATGCTCGAACTCGCCGCCGCTGCGCAGTGGAAGGTGCCGGCGCAAGAATGCCGTGCACAGCTGCACAAAGTGGTGCATGAACCTTCAGGGCGCGAGTTGGGTTATGGCGAGCTGGCTGCCGCCGCCAGTGCCCTGCCGGTACCGGCTCGCGACAGCCTACGCCTCAAGCAGCCCTCGGAGTTCCGCTACATCGGCAAGCAAGCGAGCCGCGCCATCGATGGCGCAGACATCGTCAACGGTCGTGCGGTCTTTGGCGCCGATGTGCATTTCGACGGAATGCTCTACGCCGTCGTGGCCCGTCCGCCGGTCTATGGCGGCAAGGTCAAGTCCGTGGATAGCAGCGCAGCGCTGAAAGTACCTGGTGTGGTCAAAGTGCTGCAGATCGAAGGGCGCCCGTTGCCTTCCGAGTTCCAACCCCTGGGCGGCGTCGCCGTGGTGGCGAAGAACACTTGGGCGGCGATCAAGGGCCGCGATGCACTGAAGATCCAGTGGGACGATGGCCCGAACGCTGGTTATGACTCCATTGCCTACCGCGGGGAATTGGAAGCGGCCGCCCTCAAGCCCGGAAAAGTCCTGCGCAGCACCGGCGATCTCGACGGTGCGCTGACCCAGGCTGATTCAACTCTTGACGCGTCGTATTACCTGCCGCACCTGTCCCAGTCGCCCATGGAACCGATGGTGGCCGTCGCCCGGTTCAAGGACGGTCAATGCGAGGCCTGGGCACCCAGCCAGGCACCGCAGGTGACCCGTGAACGCGTGGCCGAGCGCCTGGGCATTCCTTTCGAAAAGGTCACGGTGAACATCACGCTGCTGGGCGGCGGTTTCGGACGCAAGTCGAAACCCGACTTCGTCGTCGAAGCGGCTGTCCTCGCCAAGGAATTTCCCGGCCAGGCCGTACGGGTGCAATGGACCCGCGAGGACGATATCCATCACTCGTATTTCCATACGGTATCGGCTGAATACCTGAAGGCCGGCCTGGACAAGAACGGCATGCCCTCCGCTTGGCTGCACCGCACCGTGGCCCCGACCATCACCGCGCTGTTCGCGCCCGGCATGACCCATGAAGCACCATTCGAAGTGGGCATGGGCGTGACGAACATGGCCTACGCCATTCCCAACATGCGCCTGGAAAACCCCGAGGCGGTGGCCCATACCCGGGTTGGCTGGTATCGCTCGGTCTCGAACATTCCCCATGGCTTCGCGATCCAGAGTTTCATCGACGAACTGGCCCACAAGGCCGGCCAGGATCCGCTGAAATACCACCTCAAGTTGCTGGGCCCGGACCGCAAGATCGATCCGAATTCCCTGAATGACGGTTGGAACTACGGCGAATCCCCCGAGCGTTATCCCATCGACACGGCGCGGATCCGTACCGTGCTGGAAACCGCCGCGAAGGCCGCCGGTTGGGGACGTGAGCTACCCAAGGGGCGGGGATTGGGATTGGCGGTGCACTACAGCTTCGTCACTTATGTGGCAGCGGCGATCGAAGTCGAGGTCAAGGACGACGGCACGGTGATCGTGCACAAGGCGGACATCGCCGTGGACTGCGGCCCGCAGATCAACCCTGAGCGCATCCGCTCGCAGTTCGAAGGCGCCTGCGTCATGGGGCTGGGCAATGCGATGGTCGGCGAGATCAGCTTCAAGGATGGCAAGGTGCAGCAGGACAATTTCCATATGTACGAAGTGGCGCGAATGTCCCTGGCGCCCAAGGAAGTGGCGGTGCATCTGATCACTCCGCCGGGCGAGGTGCCGTTGGGCGGTGTTGGCGAACCGGGCGTGCCGCCCATTGCGCCGGCCTTGTGCAACGCGATCTTCGCTGCCACTGGCAAGCGTATCCGCAATCTGCCCGTGCGTTATCAGCTGCAAGGCTGGCAACAGGCCAAAGCCTGA	MSRLPADFALSNLSRRGFLKGASATGVLVLAATWGLPDAFAEEKKFGAEGMPHGAIDDPKVYVSIAADGSVTVTCNRSEMGQGVRTSLSMVVADELDADWALVKVRQAPADEARFGNQDTDGSRSMRHWYEPMRRCGAAARTMLELAAAAQWKVPAQECRAQLHKVVHEPSGRELGYGELAAAASALPVPARDSLRLKQPSEFRYIGKQASRAIDGADIVNGRAVFGADVHFDGMLYAVVARPPVYGGKVKSVDSSAALKVPGVVKVLQIEGRPLPSEFQPLGGVAVVAKNTWAAIKGRDALKIQWDDGPNAGYDSIAYRGELEAAALKPGKVLRSTGDLDGALTQADSTLDASYYLPHLSQSPMEPMVAVARFKDGQCEAWAPSQAPQVTRERVAERLGIPFEKVTVNITLLGGGFGRKSKPDFVVEAAVLAKEFPGQAVRVQWTREDDIHHSYFHTVSAEYLKAGLDKNGMPSAWLHRTVAPTITALFAPGMTHEAPFEVGMGVTNMAYAIPNMRLENPEAVAHTRVGWYRSVSNIPHGFAIQSFIDELAHKAGQDPLKYHLKLLGPDRKIDPNSLNDGWNYGESPERYPIDTARIRTVLETAAKAAGWGRELPKGRGLGLAVHYSFVTYVAAAIEVEVKDDGTVIVHKADIAVDCGPQINPERIRSQFEGACVMGLGNAMVGEISFKDGKVQQDNFHMYEVARMSLAPKEVAVHLITPPGEVPLGGVGEPGVPPIAPALCNAIFAATGKRIRNLPVRYQLQGWQQAKA	PGPT0009811_257	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-QUINOLINE_RESISTANCE,PGPT0009811-iorB-K07303	NA	NA
D1-36_01566	972	paoD	COG1975	Molybdenum cofactor insertion chaperone PaoD	ATGGACAGCGTTGACCTGAACGTATTGCGCAGCGTCCTGGAATGGCGCCGCGCTGGGCAGCGGGTAGTGTTGTTCACCGTGGTTCAGACCTGGGGCACCGCGCCCAGACCTCCGGGGGCCATGTTGGCCCTGCGCGAGGACGGCGTGGTGATCGGTTCGGTATCGGGCGGTTGTGTCGAGGATGACCTGATCGCCCGGCTGCACGACGGCCGTATTCCCGAGGACGGTCCGCCGGTGCAACTCATCACCTACGGCGTCACCCGCGAAGAGGCGGCGCGCTTCGGCCTGCCGTGTGGCGGTACGTTGCGCCTGACCGAAGAGCGGGTCGGCGATCCTGCCTGGGTCGCCGAATTGCTTGAGCGATGCGAGGCCCATGAAATCGTCGCCCGGGAGCTGACGATCGCCAGTGGCAATGTGACTCTGGCGCCGGCGAGCAAAACCGACGCCCTGGTGTTCGACGGGCAGCTGCTGCGAGCCATTTATGGCCCACGTTGGCGCTTGCTGCTGATCGGCGCTGGGCAACTGTCCCGTTACGTGGCGGAAATGGCCCGATTGCTGGATTTCGAGGTGCTGATCTGCGATCCGCGCAAGGAGTTTGTCTACGGTTGGGAAGAACAACATGGCCGCTTCGTTCCCGGCATGCCCGACGAAGCGGTTCTGGACATCCAGACCGACGAACGCACGGCGATCGTGGCCCTGACCCATGATCCGCGCCTGGACGACATGGCACTGCTCACCGCCCTGGATTCCAAGGCCTTTTACGTCGGCGCCCTGGGCTCGCGGGTCAACAGCCAGAAGCGCCGAGATAACCTGGCTCAGCTAGGCTTGTCCGCAGAGGCGATCGGACGCTTGCATGGACCAATCGGCCTGCACATTGGCAGCCACACGCCGGCGGAGATCGCTTTGTCGCTGTTGGCTGAAATCGTGGCCATCAAAAATGGCGTGGAACTGCGGCAGAAAAAAACGTTGTAG	MDSVDLNVLRSVLEWRRAGQRVVLFTVVQTWGTAPRPPGAMLALREDGVVIGSVSGGCVEDDLIARLHDGRIPEDGPPVQLITYGVTREEAARFGLPCGGTLRLTEERVGDPAWVAELLERCEAHEIVARELTIASGNVTLAPASKTDALVFDGQLLRAIYGPRWRLLLIGAGQLSRYVAEMARLLDFEVLICDPRKEFVYGWEEQHGRFVPGMPDEAVLDIQTDERTAIVALTHDPRLDDMALLTALDSKAFYVGALGSRVNSQKRRDNLAQLGLSAEAIGRLHGPIGLHIGSHTPAEIALSLLAEIVAIKNGVELRQKKTL	PGPT0007280_2322	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-XANTHINE_METABOLISM	PHYTOHORMONE-XANTHINE_BIOSYNTHESIS,PGPT0007280-xdhC|paod|ygeB|pucA-K07402	NA	NA
D1-36_01567	591	glmU_2		Bifunctional protein GlmU	ATGGAAAAGTCGATTGGCGTGATCATCCTGGCGGCGGGATCGGGCAGTCGCTTTCGTCAGGTAGCCGGCGCGGACAAGGATAAGTTGCTGGCCGACTGCACGGGGCGTGACGGCGCCGTCAGATCGGTAATCGAGCATGTGTTGGTCAACCTGCCGGCATCCTTGGAACGGCGCGTTCTGGTGGTGAACAACGACCGGCCGCAAGCCATTCGCATGGCCCAGGCCTATGGCTGCGATATTGTGGAACTGAACTCCCCCGGCCTGGGGGATAGCATTGCCGCGGGTGTCCAGGCCTGCCCGGATGCCGATGGCTGGCTGATTATGCTGGGCGATATGCCTTTCATCCTGTCGTCGAGCATCGAGCAAGTGGCCGCGGTAATTAGCGAGGAGGGCATCAGCGTGCCGGTCCTCACCGGTGAGTACGGGCACCCGGTGGGATTTGGTCGTGGGTTCGGGCCGAAACTGATGGCACTGACCGGGGATTTTGGTGCCAAGGCGCTGTTTATCGGAGCGCAAGTGCTTGAGGTTCCGGTGGACGACCCTGGCGTAACCTGGGATGTCGATGTGCCAGATGCGCTGGCCTTCAAATAA	MEKSIGVIILAAGSGSRFRQVAGADKDKLLADCTGRDGAVRSVIEHVLVNLPASLERRVLVVNNDRPQAIRMAQAYGCDIVELNSPGLGDSIAAGVQACPDADGWLIMLGDMPFILSSSIEQVAAVISEEGISVPVLTGEYGHPVGFGRGFGPKLMALTGDFGAKALFIGAQVLEVPVDDPGVTWDVDVPDALAFK				NA	NA	NA	NA	NA
D1-36_01568	3153	rne		Ribonuclease E	ATGAAAAGAATGCTGATTAACGCAACTCAACCCGAAGAGTTGCGTGTTGCACTGGTAGACGGCCAGCGCCTCTACGACCTGGATATCGAATCCGGTGCACGCGAGCAAAAGAAGGCCAATATCTATAAAGGCCGGATTACTCGCATCGAACCAAGCCTTGAGGCTGCCTTTGTCGATTTCGGCTCCGAGCGCCATGGCTTCCTGCCCCTCAAAGAAATCTCCCGCGAATACTTCAAGAAAGCCCCTGAAGGCCGCGTCAACATCAAGGACGTGCTGAGCGAAGGCCAGGAAGTCATCGTCCAGGTTGAAAAAGAAGAACGTGGCAACAAGGGCGCCGCCCTGACCACCTTCATCAGCCTCGCTGGCCGTTACCTGGTCCTGATGCCGAACAACCCACGCGCCGGCGGCATCTCCCGCCGCATCGAGGGCGAAGAGCGCAACGAACTGCGTGAAGCCCTCAACGGCCTGGTAGCCCCCGCCGACATGGGTCTGATCGTGCGCACTGCCGGCCTGGGCCGCAGCAGCGAAGAAATGCAGTGGGACCTCGACTACCTGCTGCAACTGTGGACCGCCATCAAAGAAGCATCGCTGGATCGCTCCGCGCCGTTCCTGATCTACCAGGAAAGCAACGTGATCATCCGCGCCATCCGCGATTACCTGCGCCAGGACATCGGCGAAGTATTGATCGACAGCGTCGAAGCCCAGGACGAAGCCCTGACCTTCATTCGCCAGGTGATGCCGCAGTACGCCAGCAAGATCAAGCTCTACGAAGACAGCGTTCCGCTGTTCAACCGCTTCCAGATCGAAAGCCAGATCGAGACCGCCTTCCAGCGCGTCGTCGAGCTGCCGTCCGGCGGTTCCATCGTCATCGATCCGACCGAAGCCCTGGTGTCCATCGACATCAACTCGGCGCGCGCCACCAAAGGCAGCGACATCGAAGAGACAGCCCTGCAGACCAACCTTGAAGCCGCCGAGGAAATCGCCCGTCAGTTGCGCCTGCGCGACATCGGCGGCCTGATCGTCATCGACTTCATCGACATGACCCCGGCCAAGAACCAGCGCGCCGTGGAAGAAAAAGTCCGTGAATGCCTGGAAGCCGATCGCGCCCGCGTACAGGTCGGCCGTATCTCGCGCTTCGGCCTGCTGGAAATGTCCCGTCAGCGCCTGCGTCCATCCCTGGGCGAAAGCAGCGGCATCGTTTGCCCACGCTGCAGCGGCACCGGCATCATTCGTGACGTTGAATCGCTGTCCCTGGCGATCCTGCGCCTGATCGAAGAAGAAGCCCTGAAGGACCGCACCGCCGAAGTTCGCGCCCAGGTGCCGATCCCGGTCGCTGCGTTCCTGCTCAACGAAAAACGCAACTCGATCACCAAGATCGAACTGCGCACCCGCGCCCGCATCGTGATCCTGCCGAACGATCATCTCGAGACGCCGCACTTCGAAGTGCAGCGCCTGCGTGATGACAGCCCGGAAGCCCACACCAACCAGTCCAGCTACGAAATCGCCGCTGCCGCTGCCGAAGTGGAAGACATCCAGCCGGCCGCCGCCACTCGCACCCTGGTTCGCCAGGAGGCAGCGGTCAAGACCGCTCCGGCCCGCGCCAACGCTCCGGTTCCGACCGAAGTGACCGCTCCGGTTGCCGCCCCGGCCGCCGCCCCGGAACCGAGCCTGTTCAAAGGCCTGGTGAAGTCGCTGGTCAGCCTGTTCGCCACCAAGGAAGAGCCGGCTGCCCCGACCGTCGTCGCCAAGCCCGCCGCTTCCGAGCGTCCGGCCCGCAACGAAGAACGCCGCAACGGTCGCCAGCAGACCCGCAACCGCAACGGTCGTCGCGACGAAGAGCGCAAGCCGCGCGAAGAACGTGCCCCGCGTGAAGAGCGTGCGCAACGTGAGCCGCGTGAAGAGCGCCAACCTCGCGAAGCCCGTGAGGAAGCGCCGGCCGTAGCCCGCGAAGAGCGCGCACCGCGTCCGCCGCGTGAAGAACGCCAACCGCGTGCGCCGCGTGAAGACCGCAAGCCTCGCGGCGAGCGTGAAGAGCGCGTTCGCGAACTGCGAGAGCCATTGGATGCGGCCCCGGCCGTTGCCGCCGCCGTCGCTGAAGAGCGTCCGGCTCGCCAGCCTCGTGAAGAGCGCGCACCGCGTCCTCCACGCGAGGAACGCCAGCCACGCGCCGAGCAGGCAGCCGCCGCTGCCAGCGAAGAAGAAGTGCTGAACACCGAAGAGCAGTTGCAGGAAGACGGCCAGGACACCGCCGAAGGCGATCGTCCACGCCGCCGCTCCCGTGGCCAGCGTCGTCGCAGCAACCGTCGTGAGCGTCAGCGCGACGCCAATGGCAACGTGATCGAAGGTTCGGAAGAATCCGAATCCACCGAGAACGCCGAAACGCCAAGCGCTGCTGACCTGGCCGCTGGCCTGGCGGTCACTGCGGCAGTTGCCAGCAGCGCGATCAGCGCCCCGGCCGAAGCCCAGGCAAACGAGCAGGCTGAACGTGCCACCGCTGCGGTGGAAAACGCGCCGGTTGAAGCGCCTGTGGTCGAATCCTCTGCCCCGGTGGAAGCTACCGCTTCACCTGAAGTGGAACTCGCACCGGCATCCGAAGCCCAGCCTGAAGTTGAAGTCGCCGCCGAGCCTGCGCCGGTTGTCGAAGCACCGATCGAGGAAAAGGCGCCAGAGCCTGCCCGCGAAGAGCAGACTGCGTTCAACTGGACCGCGGAGCCAGCCGCAACGGCCGCCGTTGTCGAGCCTGAGCCGACGCCAGAGCCCGTGAAAGCGGCCGAGCCAGAAGTGGTCGAACCTGCTCCAGTGGTCGAAGCGCCCGTGGTTGTCGAAGCACCTGCCCCGGTTGAAGAGCCTGCCCCTGTCAGCGCCTTGACTCCGAACGGTCGCGCTCCAAACGATCCGCGCGAAGTGCGTCGCCGCAAGCGTGAAGCCGAGCGTCTGCAGAAGGAAGCCGAACAAGCTGCCGCCGCCCAAGCCCCTGCTGCCGAGCCCGCTCCGGCCGTGGAAGAAGTCGCCGAGGCAGCTCCTGCCCCGGTCGCCGAAACCCCGGTTGAACCGGCTCCGACGTTTGACGAACCTCAGCACACCGCTGAAGAAGTCGCACCGCGTCACACTGAAGCGCTGGAAAAAGAGCACGAGCCTAAACCTCACGCTTAA	MKRMLINATQPEELRVALVDGQRLYDLDIESGAREQKKANIYKGRITRIEPSLEAAFVDFGSERHGFLPLKEISREYFKKAPEGRVNIKDVLSEGQEVIVQVEKEERGNKGAALTTFISLAGRYLVLMPNNPRAGGISRRIEGEERNELREALNGLVAPADMGLIVRTAGLGRSSEEMQWDLDYLLQLWTAIKEASLDRSAPFLIYQESNVIIRAIRDYLRQDIGEVLIDSVEAQDEALTFIRQVMPQYASKIKLYEDSVPLFNRFQIESQIETAFQRVVELPSGGSIVIDPTEALVSIDINSARATKGSDIEETALQTNLEAAEEIARQLRLRDIGGLIVIDFIDMTPAKNQRAVEEKVRECLEADRARVQVGRISRFGLLEMSRQRLRPSLGESSGIVCPRCSGTGIIRDVESLSLAILRLIEEEALKDRTAEVRAQVPIPVAAFLLNEKRNSITKIELRTRARIVILPNDHLETPHFEVQRLRDDSPEAHTNQSSYEIAAAAAEVEDIQPAAATRTLVRQEAAVKTAPARANAPVPTEVTAPVAAPAAAPEPSLFKGLVKSLVSLFATKEEPAAPTVVAKPAASERPARNEERRNGRQQTRNRNGRRDEERKPREERAPREERAQREPREERQPREAREEAPAVAREERAPRPPREERQPRAPREDRKPRGEREERVRELREPLDAAPAVAAAVAEERPARQPREERAPRPPREERQPRAEQAAAAASEEEVLNTEEQLQEDGQDTAEGDRPRRRSRGQRRRSNRRERQRDANGNVIEGSEESESTENAETPSAADLAAGLAVTAAVASSAISAPAEAQANEQAERATAAVENAPVEAPVVESSAPVEATASPEVELAPASEAQPEVEVAAEPAPVVEAPIEEKAPEPAREEQTAFNWTAEPAATAAVVEPEPTPEPVKAAEPEVVEPAPVVEAPVVVEAPAPVEEPAPVSALTPNGRAPNDPREVRRRKREAERLQKEAEQAAAAQAPAAEPAPAVEEVAEAAPAPVAETPVEPAPTFDEPQHTAEEVAPRHTEALEKEHEPKPHA				NA	NA	NA	NA	NA
D1-36_01570	969	rluC	COG0564	Ribosomal large subunit pseudouridine synthase C	ATGATCGCCGCCATGACGACTACTGCCCCTTCGACCCCTGGCGTTCAACTGCTCGAGGTCTCGCCGGAATATGCCGGCCAACGAATCGATAATTTTCTCCTTGCCCGGCTCAAAGGTGTGCCCAAGACCTTGATCTATCGCATTTTGCGCAAAGGCGAAGTGCGGGTGAACAAAGGTCGGATCAAGCCCGAATACAAGCTGCAGGCCGGTGATGTCGTGCGTGTACCACCGGTTCGCGTGCCGGAACGTGACGAGCCGGTGCCTTTGGCCCAGGGCCTGTTGCAACGCCTGGAGGCTGCCATCGTCTTCGAAGACAAGACCCTGATCGTGGTCAACAAGCCTGCGGGTATTGCGGTCCATGGCGGCAGCGGCCTTAATTTCGGTGTGATCGAAGCCTTTCGTCAGTTGCGTCCGGACGCCAAGGAATTGGAGTTGGTCCATCGTCTCGACCGCGACACCTCCGGCCTGCTGATGATCGCAAAGAAGCGCAGCATGCTGCGCCACCTGCACGAGCAATTGCGCGGCGATGGCGTCGACAAGCGCTACATGGCGTTGGTGCGTGGCCGCTGGGAGACCTCTGTCAAGCAGGTCCGCGCCCCGTTGCTCAAGAGTAACCTGCGTTCAGGCGAGCGCATGGTGGAGGTCAACGAGGAAGGCAAGGAAGCGCTGACCGTATTCAAGGTGCTTCGACGCTTCGGCGACTTTGCCACCATGGTCGAGGCCAAGCCGGTCACCGGGCGTACCCACCAGATCCGCGTGCACACCCTGCATGCCGGGCACTGCATCGCCGGCGACAGCAAATACGGCGATGACGATTTCACCAAGGAAATCCGTGACTTGGGCGGCAAGCGCCTGTTTCTCCATGCCTATATGTTGACGGTGCCGTTGCCTGACGGCGGCGAGCTGAAGCTGCAGGCTCCCGTGGATGACATGTGGGCCAAGACCGTGGAGCGGTTGAGTGCATCCTGA	MIAAMTTTAPSTPGVQLLEVSPEYAGQRIDNFLLARLKGVPKTLIYRILRKGEVRVNKGRIKPEYKLQAGDVVRVPPVRVPERDEPVPLAQGLLQRLEAAIVFEDKTLIVVNKPAGIAVHGGSGLNFGVIEAFRQLRPDAKELELVHRLDRDTSGLLMIAKKRSMLRHLHEQLRGDGVDKRYMALVRGRWETSVKQVRAPLLKSNLRSGERMVEVNEEGKEALTVFKVLRRFGDFATMVEAKPVTGRTHQIRVHTLHAGHCIAGDSKYGDDDFTKEIRDLGGKRLFLHAYMLTVPLPDGGELKLQAPVDDMWAKTVERLSAS				NA	NA	NA	NA	NA
D1-36_01571	663	cbbZP		Phosphoglycolate phosphatase, plasmid	GTGCATCCTGACTACAAGCTGCTCATATTCGATTGGGATGGCACTCTGGCGAACTCCATCGGTCGGATCGTGGATGCGATGCACGTTGCGTCGGATCGCACGGGGTTTCCCCGGCGGGATGATTTCGCGGTAAAAGGCATCATCGGTCTCGGCTTGCCGGAGGCGATTCGAAGCCTGTACCCGGAAATCGATGATCAAGAGCTGATCGTTTTTCGCCAGCACTACGCCGATCACTACATTGCCCTGGAAGCCGAGCCTTCGCCGCTGTTTGACGGCGTGGTGCAAACCCTCGGGGCCTTGCGGGAGGAGGGGTATCGGCTGGCGGTTGCGACCGGCAAGGCCAGGCGTGGGCTGGATCGGGTATTGAAGGCGCATGGTTGGGAAGATTATTTCGATATCACTCGTGCCGCGGATGAAACGGCGAGCAAGCCACATCCTCTGATGCTTGAGCAGATCCTGGCTCATTGCAATGTGTCCGCTGGCCAGGCGCTGATGGTCGGCGACTCATCGTTCGACCTGCAAATGGCCCGTAACGCAGGCATGGGGTCGGTGGCTGTCAGCTATGGCGCGCAGACGATCGAGGCGCTCAAGGCCTTCGAGCCGTGCCTGGCGATCGACCATTTTGCGCGATTGCACGCTTGGTTGAGCCAGCGTGCCGATTAA	MHPDYKLLIFDWDGTLANSIGRIVDAMHVASDRTGFPRRDDFAVKGIIGLGLPEAIRSLYPEIDDQELIVFRQHYADHYIALEAEPSPLFDGVVQTLGALREEGYRLAVATGKARRGLDRVLKAHGWEDYFDITRAADETASKPHPLMLEQILAHCNVSAGQALMVGDSSFDLQMARNAGMGSVAVSYGAQTIEALKAFEPCLAIDHFARLHAWLSQRAD	PGPT0001730_4600	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0001730-gph-K01091	NA	NA
D1-36_01572	990			hypothetical protein	ATGACGGATGAATGGAAGGCACCGGCCAAGGCGAGCGCCGAGAGCGGTGACGATAAAAGCTGGAAGCTGCTGGAGAAGACGTTGCTGGCTAGCGTCCAGGAGCAGCGCCGGTCCCGTCGCTGGGGGATTTTCTTCAAGCTGCTGACGTTCATCTATCTCTTTGTCGCGCTAATGCTGTTTACGCCGCTGATGAGCATAGAGAAGGGGGCCGTGAGCGGCTCGGCTTATACGGCGCTGATCGACATCGAAGGCATGATCGCCGACAAGGAACCTGCAAGCGCGGACAATATTGTCGGCAGCCTGCGGGCGGCGTTCGAGGATCCAAAGGTCAAGGGTGTGGTGTTGCGCATCAACAGCCCGGGCGGTAGCCCGGTTCAGTCGGGTTACGTCTATGACGAAATCGTTCGGTTGCGCGGGTTGCATCCAGACATCAAGGTCTACGCGGTGATCGCCGATCTCGGTGCGTCCGGGGCCTACTACATCGCCAGTGCGGCGGACCAGATCTACGCCGACAAGGCCAGCCTGGTAGGCTCCATTGGTGTAACGGCGGCCGGCTACGGGTTTGTCGGCACCATGGAGAAGCTGGGCGTGGAGCGGCGGGTCTACACCTCAGGCGAGCATAAATCGTTTCTTGATCCGTTCCAGCCGCAAAAGCCGGAGGAAACCGCATTCTGGCAAGGCGTGCTGGACACCACTCACAAGCAATTCATCGCCAGCGTCAAGAAGGGTCGGGGCGAGCGTTTGAAAGACAAGGAGCATCCGGAGCTTTTTTCCGGGCTGGTCTGGTCTGGCGAGCAGGCTCTGCCGCTGGGCTTGATCGATGGCCTGGGCAGTGCCAGCTCCGTGGCTCGGGATGTAATCGGCCAGAAAGACCTGGTGGATTTCACTATCGAAGAATCGCCGTTCGATCGCTTCTCCAAGAAGTTGGGGGCGAGCATCGCTGAGCACTTGGCGATGTGGATGGGCTTCCAGGGGCCGGCGTTGCGCTAG	MTDEWKAPAKASAESGDDKSWKLLEKTLLASVQEQRRSRRWGIFFKLLTFIYLFVALMLFTPLMSIEKGAVSGSAYTALIDIEGMIADKEPASADNIVGSLRAAFEDPKVKGVVLRINSPGGSPVQSGYVYDEIVRLRGLHPDIKVYAVIADLGASGAYYIASAADQIYADKASLVGSIGVTAAGYGFVGTMEKLGVERRVYTSGEHKSFLDPFQPQKPEETAFWQGVLDTTHKQFIASVKKGRGERLKDKEHPELFSGLVWSGEQALPLGLIDGLGSASSVARDVIGQKDLVDFTIEESPFDRFSKKLGASIAEHLAMWMGFQGPALR	PGPT0030320_2704	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_V_SECRETION_SYSTEMS	CE-T5a_AUTOTRANSPORTER_SECRETION,PGPT0030320-pspA-K04773	NA	NA
D1-36_01573	579	yceF	COG0424	7-methyl-GTP pyrophosphatase	ATGCTGCCCTTATTACTCGCTTCAAGCTCGGTTTACCGCCGGGAACTGCTGGCCCGCCTGGGGCTGCCATTCGTCTGCAGTTCGCCGGACATCGACGAAAACCGTCACGCCGACGAACCTGCGGCCCAACTGGTAAAGCGCCTGGCCCGGGAGAAAGCCCTGGCACTCGCCGATAGCCACCCAGGCCACCTGATCATCGGCTCGGATCAGGTCGCCGTGCTCGGCGACCGCATTCTGGGCAAGCCTCACACATTCGAAAATGCCCGCGAGCAACTGATGGCCGCCAGCGGCGCCAGAGTGACATTCCTGACCGGCCTGGCCCTGCTTAACAGCCAGACCGGCAGATGCCAGGTCGACTGCGTACCCTTCACCGTGAATATGCGGGCATTGGATCAAGCTCGCGTAGAGCGCTATCTGCGCGCCGAGCAGCCGTACGACTGCGCCGGCAGCTTCAAGGCCGAGGGCCTGGGCGTGAGCCTGTTCCAGAGCACCGAAGGCCCGGACGCCACAAGCCTGATCGGCCTACCGCTGATTCGCCTTGTGGATATGTTGCTGGCTGAGGGCGTGCAGGTTCCCTGA	MLPLLLASSSVYRRELLARLGLPFVCSSPDIDENRHADEPAAQLVKRLAREKALALADSHPGHLIIGSDQVAVLGDRILGKPHTFENAREQLMAASGARVTFLTGLALLNSQTGRCQVDCVPFTVNMRALDQARVERYLRAEQPYDCAGSFKAEGLGVSLFQSTEGPDATSLIGLPLIRLVDMLLAEGVQVP				NA	NA	NA	NA	NA
D1-36_01574	528	yceD	COG1399	Large ribosomal RNA subunit accumulation protein YceD	ATGTTGAATGACCCGATTCCACCTCACGTTGACCCGCGCAAATTGGCTGATCGTGGCACCACCCTCCAAGGTGAACTGCTGCTGGCCGATTTGAAGAGACTCTGCGACCCGCTTTCCGACGATGTCGGTACGGTCCAGGCCAAATTCGTTTTTGAACGAGATGAACGTAAATCTGTGGTAATCCACAGCTTTATCGACACTGAAGTCAAAATGGTTTGCCAGCGTTGTCTTGAGCTGGTCACCCTGCCGATCCACAGCGAATGCAGTTACGCGGTGGTGAAGGAGGGTGCGAATACCCAGTCGTTGCCGAAAGGTTATGACGTGCTGGAACTGGGCGAAGATCCTTTGGATCTGCAGTCACTGATCGAGGAGGAGCTTTTGCTCGCCTTGCCCATTGTGCCTGCTCATCATCCGGAAGAATGCCAGCAGCCGGCGGGAGCAGATGAGCCCGAACCGAGCGAGGACGAGGTAACGCGGTCCAACCCGTTCAGTGTATTGGCGCAGTTAAAGCGTGACCCAAACGTTTAG	MLNDPIPPHVDPRKLADRGTTLQGELLLADLKRLCDPLSDDVGTVQAKFVFERDERKSVVIHSFIDTEVKMVCQRCLELVTLPIHSECSYAVVKEGANTQSLPKGYDVLELGEDPLDLQSLIEEELLLALPIVPAHHPEECQQPAGADEPEPSEDEVTRSNPFSVLAQLKRDPNV				NA	NA	NA	NA	NA
D1-36_01575	183	rpmF	COG0333	50S ribosomal protein L32	ATGGCTGTTCAGCAGAACAAAAAATCCCGCTCTGCCCGTGACATGCGCCGTTCGCACGACGCTCTCGAGGCTAGCACCCTGTCTGTAGAAAAAACCACTGGTGAAGTTCACCTGCGTCACCACGTATCGCCAGAAGGCGTATACCGTGGCCGTAAAGTGATCGACAAGGGCGCTGACGAGTAA	MAVQQNKKSRSARDMRRSHDALEASTLSVEKTTGEVHLRHHVSPEGVYRGRKVIDKGADE				NA	NA	NA	NA	NA
D1-36_01576	981	plsX	COG0416	Phosphate acyltransferase	ATGGGCGGGGACTTCGGTCCCCGCAGCATTGTCCAGGCCAGCCTTGCTTGCCTGCGTGCCACGCCCTCGCTGCACCTGACCCTCGTCGGTCAACCCTCCCTTCTAGAAGAACTGCTCGGCGGCCAATCGGCTGCGGATCGCGCGCGCCTGTCGATCATGCCCGCGTCCGAAGTCATCGCCATGGACGAAAAGCCAGCCCAGGCCCTGCGCGGCAAGCCTGACGCGTCGATGCGGGTGGCCCTGGAGTTGTTGCGCGATGGCATGGTCCAGGCGTGCGTCAGTGCAGGCAATACCGGGGCGCTGATGGCGCTGTCGCGCTACGTGCTCAAAACGTTGCCGGGCATCGATCGTCCGGCAATGGTGGCGGCGATCCCGACCCAGCGCGGGTTCTGCCAATTGCTTGATCTGGGCGCGAACGTCGATTGCAGCGCCGAGCACCTGCTGCAATTCGCCGTGATGGGTTCGGTTGCGGCGCAGACCCTTGGCATTGCGCGTCCTCGCGTGGCGCTGCTGAACATTGGCACCGAAGAGATCAAGGGCAACCAGCAGGTCAAGCTGGCGGCGACTTTGTTACAAAATGCACCGGGCATCAATTACATCGGATTCGTCGAAGGCGATGGCTTGTATCGCGGCGAGGCCGATGTGGTGGTGTGTGACGGCTTTGTTGGCAATATTCTGCTCAAGTCCAGCGAGGGATTGGCCACCATGATCGGGCAGCGCATCGAGGCGTTGTTCAAGCAGAGTTTGGCCTCGCGGGTGGTGGGTGCGCTCGCGCTGCCGTTGATGCGCCGGTTGCAGGCGGACCTGGCGCCGGCGCGGCACAACGGTGCAAGTTTCCTGGGGCTGCAAGGTATCGTGATCAAGAGCCATGGTTCGGCCGGGGTGCAGGGGTTCCAAAGCGCCATCAACCGGGCGGTGATCGAGATCCAGGAAAACCTGCCGGAACGCCTTCATGGGCGCCTCGAGGATTTGTTAACTTAG	MGGDFGPRSIVQASLACLRATPSLHLTLVGQPSLLEELLGGQSAADRARLSIMPASEVIAMDEKPAQALRGKPDASMRVALELLRDGMVQACVSAGNTGALMALSRYVLKTLPGIDRPAMVAAIPTQRGFCQLLDLGANVDCSAEHLLQFAVMGSVAAQTLGIARPRVALLNIGTEEIKGNQQVKLAATLLQNAPGINYIGFVEGDGLYRGEADVVVCDGFVGNILLKSSEGLATMIGQRIEALFKQSLASRVVGALALPLMRRLQADLAPARHNGASFLGLQGIVIKSHGSAGVQGFQSAINRAVIEIQENLPERLHGRLEDLLT	PGPT0024410_2289	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024410-plsX-K03621	NA	NA
D1-36_01577	939	fabD_1	COG0331	Malonyl CoA-acyl carrier protein transacylase	ATGTCTGCTTCCCTCGCATTCGTCTTTCCAGGACAGGGCTCGCAGTCCCTCGGCATGCTGGCCGAGCTGGGCGCGCAATACCCGCTGATCCTCGAAACATTCAAAGAAGCATCCGATGCACTCGGCTACGACTTGTGGGCACTGACCCAGCAAGGGCCGGAAGAGCAACTCAATCAAACCGATAAAACCCAGCCGGCAATCCTGACGGCCTCCGTTGCGCTGTGGCGCCTATGGTTGGCCGAGGGCGGCGCGCGCCCGGCGTTTGTCGCCGGCCACAGCCTGGGCGAATACAGCGCCCTGGTGGCTGCGGGTAGCCTGAGTCTCGGCGACGCGGTGAAGCTGGTGGAACGTCGTGGCCAATTGATGCAGGAAGCCGTTCCGGCCGGGCAGGGCGGCATGGCCGCGATCCTCGGCCTGGAAGACGCCGACGTGTTGGCAGCGTGTGCCGAAGCGGCTCAGGGTGACGTGGTCAGTGCGGTCAACTTCAACTCCCCGGGCCAGGTGGTCATCGCGGGGGCCAAGGCCGCCGTCGAGCGCGCCATTGAGGGTTGCAAGGCCCGTGGTGCCAAGCGCGCCATGCCGTTACCGGTCAGTGTGCCGTCGCATTGCGAGCTGATGCGTCCAGCCGCCGAGCGTTTTGCCGAGTCCATCGCCGCCATCGACTGGCAGGCTCCGCAGATTCCCGTGGTGCAGAACGTCAGCGCCAACGTCGCAGCAGACCTGGAAACCCTCAAGCGGGACCTGCTGGAGCAGCTCTACAAGCCGGTTCGTTGGGTTGAATCGGTCCAGATGCTGGCAGCCAAGGGTGCGACCGAACTGGTCGAGTGCGGTCCTGGCAAAGTGCTGGCAGGCCTGAACAAGCGCTGCGCCGAAGGCGTGTCCACTTCCAACCTCAACACCCCAGACGCTTTCGCTGCCGCTCGCGCAGCGCAAGCCTGA	MSASLAFVFPGQGSQSLGMLAELGAQYPLILETFKEASDALGYDLWALTQQGPEEQLNQTDKTQPAILTASVALWRLWLAEGGARPAFVAGHSLGEYSALVAAGSLSLGDAVKLVERRGQLMQEAVPAGQGGMAAILGLEDADVLAACAEAAQGDVVSAVNFNSPGQVVIAGAKAAVERAIEGCKARGAKRAMPLPVSVPSHCELMRPAAERFAESIAAIDWQAPQIPVVQNVSANVAADLETLKRDLLEQLYKPVRWVESVQMLAAKGATELVECGPGKVLAGLNKRCAEGVSTSNLNTPDAFAAARAAQA	PGPT0008350_2395	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
D1-36_01578	744	fabG_5		3-oxoacyl-[acyl-carrier-protein] reductase FabG	ATGAGTCTGCAAGGTAAAGTTGCACTGGTGACCGGTGCAAGCCGCGGCATCGGCCAGGCCATCGCCCTGGAACTGGGTCGCCAAGGCGCCATCGTTGTCGGCACCGCGACGTCCGCTTCGGGCGCCGAGCGTATCGCCGCCACCTTGAAGGAAAACGGCATCCAGGGCACCGGTCTTGAGCTCAACGTGACCAGCGATGAGTCTGTTGCGGCGGTATTGTCCAGCATTCAGGAGCAGTTCGGCGCGCCGGCGATCCTGGTCAACAATGCCGGTATCACCCGCGATAACCTGATGATGCGCATGAAAGATGACGAGTGGTTCGACGTGGTCGATACCAACTTGAACAGCCTGTACCGGCTGTCCAAGGGCGTCCTGCGTGGCATGACCAAGGCTCGTTGGGGCCGAATTATCAGTATCGGCTCGGTTGTGGGTGCCATGGGCAACGCAGGCCAAGTAAACTATGCTGCAGCGAAGGCCGGTCTGGAAGGTTTCAGCCGTGCGCTGGCACGAGAAGTCGGTTCGCGCTCGATTACGGTAAACTCGGTCGCACCGGGTTTCATCGACACCGACATGACCCGTGAACTGCCGGAAGCGCAGCGTGAAGCCTTGTTGACACAGATTCCGCTGGGTCGTCTGGGGCAAGCTCAAGAAATCGCGTCCGTGGTCGCTTTTCTTGCTTCGGACGGTGCGGCATACGTGACTGGGGCTACAATCCCGGTGAACGGCGGGATGTACATGAGTTAA	MSLQGKVALVTGASRGIGQAIALELGRQGAIVVGTATSASGAERIAATLKENGIQGTGLELNVTSDESVAAVLSSIQEQFGAPAILVNNAGITRDNLMMRMKDDEWFDVVDTNLNSLYRLSKGVLRGMTKARWGRIISIGSVVGAMGNAGQVNYAAAKAGLEGFSRALAREVGSRSITVNSVAPGFIDTDMTRELPEAQREALLTQIPLGRLGQAQEIASVVAFLASDGAAYVTGATIPVNGGMYMS	PGPT0003180_14371	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
D1-36_01579	237	acpP_3	COG0236	Acyl carrier protein	ATGAGCACCATCGAAGAGCGCGTCAAGAAAATCGTTGCCGAGCAACTGGGCGTTAAAGAAGAAGAAGTTGTGAACACCGCTTCCTTCGTTGAAGACCTGGGTGCCGACTCCCTTGACACCGTTGAGCTGGTGATGGCTCTGGAAGAGGAATTCGAGACCGAGATTCCTGACGAAGAAGCTGAAAAGATCACTACTGTACAAGCTGCTATCGACTACGTTACCAGCCACCAGGCGTAA	MSTIEERVKKIVAEQLGVKEEEVVNTASFVEDLGADSLDTVELVMALEEEFETEIPDEEAEKITTVQAAIDYVTSHQA	PGPT0011375_6292	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0011375-acpP-K02078	NA	NA
D1-36_01580	1245	fabF_2	COG0304	3-oxoacyl-[acyl-carrier-protein] synthase 2	GTGTCGCGTAGACGCGTCGTAGTCACCGGTATGGGTATGTTGTCGCCACTGGGCACGGATGTGCCGAGCAGCTGGCAGGGCATTCTGGCTGGCCGTAGTGGCATTGGTCTGATCGAACACACCGACCTTTCTGCCTATTCCACCCGTTTTGGCGGCTCGGTAAAGGGCTTCAATGTCGAGGAATACCTGTCGGTCAAGGAAGCTCGCAAGCTTGACCTGTTCATTCAATACGGTTTGGCTGCCGGTTTTCAGGCAGTGCGTAACGCCGGCCTGGAAGTCACCGACGCCAACCGCGAGCGCATCGGCGTGGCAATGGGTTCAGGTATTGGTGGCTTGACCAATATCGAAGAAACCAGCCGCACGCTGCATGATTCGGGGCCGCGACGGATTTCTCCGTTCTTCGTGCCGGGCTCGATCATCAATATGATTTCCGGTTTCCTGTCCATCCACCTCGGTGCACAGGGGCCTAACTATGCCATCGCCACGGCGTGCACCACCGGCACCCACTGCATCGGCATGGCCGCGCGCAACATCATGTACGACGAAGCCGACGTGATGATCGCCGGCGGCGCCGAAATGGCGGCCTGCGGTCTGGGCATGGGCGGTTTCGGCGCCTCCCGCGCGCTGTCGACCCGCAACGATGAGCCTGCACGGGCCAGCCGGCCTTGGGACAAGGGCCGCGACGGCTTCGTGCTGTCCGATGGCGCCGGTGCGCTGGTGCTCGAAGAATTGGAGCACGCCAAGGCTCGCGGTGCGACCATTTATGCCGAGCTGATCGGCTTCGGTACCAGCGGCGATGCGTACCACATGACGTCGCCACCGGCCGATGGCGCTGGTGCTGCCCGCTGCATTGCCAATGCCTTGCGTGATGCGAAGATCAATGGCGAGCAGGTCCAGTACATCAACGCCCACGGCACTTCGACCCCGGCGGGTGACCTGGCTGAAGCCCAGGCGATCAAGACGGTGTTTGGCGAGCACGCCTACAAGCTGGCCGTCAGTTCCACCAAGTCCATGACCGGTCACTTGTTGGGTGCGGCGGGGGCGGTGGAAGCCATCTTCAGCGTACTGGCGATCAATAGCCAGACCGCGCCGCCGACCATCAACCTCGATGAGCCGGACGAAGGTTGCGACCTTGACTTCGTGCCGCATACGGCCCGCAGCATGGACATCGATGTGGTGTTGTCCAACTCCTTCGGCTTTGGCGGAACCAACGGATCGCTGGTGTTCCGCCGGTTCGCCGGTTGA	MSRRRVVVTGMGMLSPLGTDVPSSWQGILAGRSGIGLIEHTDLSAYSTRFGGSVKGFNVEEYLSVKEARKLDLFIQYGLAAGFQAVRNAGLEVTDANRERIGVAMGSGIGGLTNIEETSRTLHDSGPRRISPFFVPGSIINMISGFLSIHLGAQGPNYAIATACTTGTHCIGMAARNIMYDEADVMIAGGAEMAACGLGMGGFGASRALSTRNDEPARASRPWDKGRDGFVLSDGAGALVLEELEHAKARGATIYAELIGFGTSGDAYHMTSPPADGAGAARCIANALRDAKINGEQVQYINAHGTSTPAGDLAEAQAIKTVFGEHAYKLAVSSTKSMTGHLLGAAGAVEAIFSVLAINSQTAPPTINLDEPDEGCDLDFVPHTARSMDIDVVLSNSFGFGGTNGSLVFRRFAG	PGPT0008360_4554	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008360-fabF-K09458	NA	NA
D1-36_01581	816	pabC	COG0115	Aminodeoxychorismate lyase	ATGGAAAGCTGGGTCGACGGTCAGCCGGCAGACGTCCTGTCGCTGAAAGATCGCGGCCTGGCTTATGGCGATGGGCTGTTCGAGACCATCGCCGTGCGCAATGGCGTACCTGTACTGCTGGAACGCCACCTGCAGCGTCTGGAGGCCGGTTGCCAGCGTCTGGCGTTCAACGTCGACTTGAGTGTGCTGGGTGCTGAGCTGAGCGCCTATGCCCAGCGCCTGGGCAATGGCGTGATGAAACTCATCGTGACCCGGGGCAACAGCCTGCGTGGTTATGCGGCCGATCCGTCGAGTCCGGCCAGGCGTATTCTGCAAGGAAGCCTGCCGGCTGCTTATCCCGCCACCCATGCCGAACAAGGCATCCAAATGTTCCCCTGCACCGTGCGTTTGTCCGAACAGCCCTTGCTCGCCGGCCTCAAGCACCTCAATCGCCTGGAGCAAGTGCTGGCCCGCGCCGAGTGGCGCGACATCGAGCATGCCGAGGGATTGATGCTTGATACGTCCGGACGGGTGATCGAAGGCGTCTTCAGCAACCTGTTCCTGGTGCGCGATGGCGTTCTGTTCACAGCGGACCTGAGCCGTTGTGGCGTGGCCGGTGTGATGCGCGCCGAATTATTGTTTCAAGCCAAGTCCCAAGGCATCGCCACGCAAATCACCGACATCAGCCTCGAACAGCTGCACCAGGCCGATGAAGTCATGGTCTGCAACAGCGTTTATGGCGTGTGGCCGGTACGCGGGTGCGGTTCGGCGCGCTGGCCCGTTGGCCCGCTCACCCGTAAACTGCAGGCCCTTGCCCGTGCGCTATTGGATGCTTGA	MESWVDGQPADVLSLKDRGLAYGDGLFETIAVRNGVPVLLERHLQRLEAGCQRLAFNVDLSVLGAELSAYAQRLGNGVMKLIVTRGNSLRGYAADPSSPARRILQGSLPAAYPATHAEQGIQMFPCTVRLSEQPLLAGLKHLNRLEQVLARAEWRDIEHAEGLMLDTSGRVIEGVFSNLFLVRDGVLFTADLSRCGVAGVMRAELLFQAKSQGIATQITDISLEQLHQADEVMVCNSVYGVWPVRGCGSARWPVGPLTRKLQALARALLDA	PGPT0008020_1289	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008020-pabC-K02619	NA	NA
D1-36_01582	1161	mltG	COG1559	Endolytic murein transglycosylase	GTGAGACGTAAATTCTTGTTGTTGCTGGAGACCGGACTGGTTCTGGCAGGGCTGTTGTTGGGCGCTTCGGCCTGGAAAATTCATTCGGCGCTGCAGCAGCCGTTGAACATCACCCAGGAAGAGTTGCTGGATGTGCCCAATGGGACCACGCCGACCGGAACCCTCAATCGTCTCGAAGCCGATGGCCTGATCAAGGATGCGTTCTGGCTGCGCGTCTATTGGCGTTTCAATCTTGCCGGCCAGCCGTTGCACACTGGTGAATACCGGATGGTGCCGGGCATGACGATGGAAGGCCTGATCGGCGTCTGGAAGCGCGGTGAAGTGGTGCAGTACAGCGTGACGCTGGTGGAGGGCTGGAACTTTCGCCAGGTGCGCGCGGCGTTGGCCAAGGATGAAAAGCTCGAGCAGACGCTCGCCGGCCTCAGTGATAGCCAGGTCATGGATCGCCTTGGCCATTCCGGCGTATTTCCGGAGGGTCGGTTCTTTCCGGACACCTACCGATTCGTGCGCGGTACATCGGATGCCGACCTGCTGAAGAAAGCCTACGAGCGGCTCGATGATGTGCTTGCCAAGGAATGGGCGCAACGGGCTGCCGACGTGCCCTACACCCAACCCTATCAAGCATTGATCATGGCTTCGCTGATAGAAAAGGAAACCGGTGTGCCCCAGGAACGGGGTCAGATTGCCGGGGTGTTCGTGCGGCGCCTGCGCCTGGGCATGCTGCTGCAGACCGATCCCACTGTGATCTACGGCCTGGGGGAGCGCTACACCGGCAAGCTCACCCGATCCCATCTGAAAGAACCCAATCCCTACAACACCTACCTGGTGCCGGGCCTGCCGCCTACGCCTATCGCGATGGTCGGGCGCGAGGCGATTCACGCAGCATTGAACCCGGCCGACGGCAACAGCCTTTACTTTGTTGCGCGGGGCGACGGCAGCCATGTGTTTTCCGATGATCTGGAGTCGCACAACAATGCGGTGCGTGAATACCAGCTCAAACGTCGCGCCGACTACCGCTCCAGCCCGGCCCCGGCCACACCTGAAGATTCGGCGCCGATTCCCGCCGCGTCACCTGATACCGCGCCGCAAGACGGGCCCCAGGTGCCGCCTCAGGATCCGGCCCCCGAACCGGATGCCAGTGAGCCACCGAACCCGCAATGA	MRRKFLLLLETGLVLAGLLLGASAWKIHSALQQPLNITQEELLDVPNGTTPTGTLNRLEADGLIKDAFWLRVYWRFNLAGQPLHTGEYRMVPGMTMEGLIGVWKRGEVVQYSVTLVEGWNFRQVRAALAKDEKLEQTLAGLSDSQVMDRLGHSGVFPEGRFFPDTYRFVRGTSDADLLKKAYERLDDVLAKEWAQRAADVPYTQPYQALIMASLIEKETGVPQERGQIAGVFVRRLRLGMLLQTDPTVIYGLGERYTGKLTRSHLKEPNPYNTYLVPGLPPTPIAMVGREAIHAALNPADGNSLYFVARGDGSHVFSDDLESHNNAVREYQLKRRADYRSSPAPATPEDSAPIPAASPDTAPQDGPQVPPQDPAPEPDASEPPNPQ				NA	NA	NA	NA	NA
D1-36_01583	657	tmk	COG0125	Thymidylate kinase	ATGACTTTGACTAAGGATCGCCCCGTGACTGGTTTGTTTATCACGCTGGAAGGCCCGGAAGGCGCCGGCAAGAGCACCAACCGCGAATACCTCGCCGGACGCCTCCAGGCCGCCGGCATCGAGGTGGTCTTGACCCGCGAGCCGGGCGGTACGCCGCTGGCCGAGCGGATTCGCGAGGTGTTGCTGGCGCCCCTTGAAGAAGTCATGAACCCTGATGCTGAGTTGTTGTTGGTGTTCGCTGCCAGGGCGCAGCACCTGGCCGAAGTGATTCGACCGGCGCTGGCCCGAGGAGCCGTGGTGCTTTGTGACCGCTTCACCGATTCGACTTACGCCTACCAGGGCGGTGGCCGAGGCTTGTCCGTCGAGCGTATCGCTGCGCTGGAAACGTTCGTCCAGGGCGACCTGCGGCCGGACCTGACCCTGGTTTTCGACCTGCCGGTGGAAATCGGCCTGGCGCGGGCCAGCGCTCGTGGCAGGCTGGATCGCTTCGAGCTTGAAGGGGCAACGTTCTTCAATGCCGTGCGCGACGCCTTCATCGAGCGCGCCAAGGCCGATCCGACGCGTTACCTGTTGATCGATGCCGCGCAGCCGTTGACCCAGGTCCAGCAATCGCTGGATGCGGTGTTGCCCGGGTTGCTGGAGCGTGCCCGTGGCTGA	MTLTKDRPVTGLFITLEGPEGAGKSTNREYLAGRLQAAGIEVVLTREPGGTPLAERIREVLLAPLEEVMNPDAELLLVFAARAQHLAEVIRPALARGAVVLCDRFTDSTYAYQGGGRGLSVERIAALETFVQGDLRPDLTLVFDLPVEIGLARASARGRLDRFELEGATFFNAVRDAFIERAKADPTRYLLIDAAQPLTQVQQSLDAVLPGLLERARG	PGPT0021395_3490	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021395-tmk-K00943	NA	NA
D1-36_01584	987	holB	COG0470	DNA polymerase III subunit delta'	GTGGCTGAAGCCTATCCCTGGCAGGACGGTCTCTGGCAGCAACTGGCCGGCCGCACGCAGCATGCCCACGCGTACCTGTTGCATGGCCCGGCCGGTATTGGCAAGCGGGCGTTGGCCGAGCGCCTGATGGCGAGCCTTTTGTGCCAGGCCCCGACGGCCACGAATGCCTGCGGGGAATGCAAATCGTGCCTGCTGCTCAAGGCTGGCAGTCATCCGGACAATTACGTGCTGGAACCTGAAGAAGCGGACAAAGCGATCAAGGTCGACCAGGTCCGTGACTTGGTCAGCTTCGTGGTCCAGACCTCGCAAATGGGCGGGCGCAAAGTCGTGCTGGTCGAGCCGGTTGAGTCAATGAACATCAACGCCGCCAACGCTTTGCTCAAGAGCCTCGAAGAGCCTTCCGGCGATACCGTCCTGTTGCTGGTCAGTCATCAGCCGAGCCGTTTGCTGCCGACCATCAAGAGCCGCTGCGTGCAGCAGGCCTGCCCGCTGCCCAGCCAGGCGATGAGTTTGCAATGGCTCGCCCAGGCCATGCCTGACAGCACCGATGAGGAACGTGGCGAACTGCTGACCCTGGCCGCCGGTTCGCCGCTGGCGGCCGTCAGCCTGCAGGCCCAAAGCGTGCGCGAGCAGCGGGCGTTGGTGGTGGACGGCGTGAAGAAGCTGCTCAAGCAGCAACAATCTCCAACGCAACTGGCCGAAGGCTGGAACGCCATTCCCCTGTTGCTGTTGTTTGACTGGTTCTGCGATTGGTCGAGCCTGATCCTGCGTTATCAGCTTACCGAGGACGAAGCCGGCCTCGGATTGACCGACATGCGTAAAGTCATCCAATACCTGGCGCAAAAAAGCAGCCAGGACAAAATCTTGAACATCCAGGACTGGATTCTTGCCCAACGTCAGAAGGTGTTGAGCAAGGCCAACCTCAATCGCGTATTGCTGTTGGAGGCGCTGTTGGTGCAATGGGCGAGTTTGCCTGGTCGTACCTGA	MAEAYPWQDGLWQQLAGRTQHAHAYLLHGPAGIGKRALAERLMASLLCQAPTATNACGECKSCLLLKAGSHPDNYVLEPEEADKAIKVDQVRDLVSFVVQTSQMGGRKVVLVEPVESMNINAANALLKSLEEPSGDTVLLLVSHQPSRLLPTIKSRCVQQACPLPSQAMSLQWLAQAMPDSTDEERGELLTLAAGSPLAAVSLQAQSVREQRALVVDGVKKLLKQQQSPTQLAEGWNAIPLLLLFDWFCDWSSLILRYQLTEDEAGLGLTDMRKVIQYLAQKSSQDKILNIQDWILAQRQKVLSKANLNRVLLLEALLVQWASLPGRT				NA	NA	NA	NA	NA
D1-36_01585	357			hypothetical protein	ATGAACGAACCTGTCAGTCCCGGACCACGCAACGGCATTCTGTCCCTGACCATCAAGGACAAGTCGGTGCTCTACGCGGCCTACATGCCGTTTATTAAAAACGGCGGCCTGTTCATTCCCACCAACAAGAATTATCGCCTGGGCGACGAGGTGTTCATGCTGTTGAGCCTGATGGACGAACCGGAAAAAATCCCGGTCGCCGGCAAGGTGATCTGGATGACTCCCAAAGGCGCCCAGGGCAACCGGGCCGCCGGCGTTGGCGTGCAGTTCAACGAAGGCGACAACTCGGCTCGCAACCAGATCGAAACCCACCTGGCCGGAACGCTCAAGTCCGACCGTCCCACCCATACGATGTAG	MNEPVSPGPRNGILSLTIKDKSVLYAAYMPFIKNGGLFIPTNKNYRLGDEVFMLLSLMDEPEKIPVAGKVIWMTPKGAQGNRAAGVGVQFNEGDNSARNQIETHLAGTLKSDRPTHTM	PGPT0015970_293	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015970-pilZ-K02676	NA	NA
D1-36_01586	795	ycfH	COG0084	putative metal-dependent hydrolase YcfH	ATGCTCGTAGACTCTCATTGCCACCTCGATCGCCTTGACCTCGCCGCCCATGGCGGATCCCTCGACGCCGCGTTGGATGCGGCGCGCCAGCGAGGGGTGGGGCATTTCCTCTGCATCGGTGTCAGCGCCGACAACGCCGCCGACGTCAAGCGCCTGGCTGAACGATACGAAGACGTCGATTGTTCGGTGGGCATCCACCCACTGGATGTGCAGCCCGATGCCACGCCGGCCCTGGATTGGCTGTTGCACGAACTCGATCATCCGCGAGTCGTGGCTATCGGCGAGACCGGGCTCGACTATCACTACGAGCCGGAGGCCGCCGAAGTCCAGCAGGCGTCGTTCCGGTTGCACTTGGAGGCCGCCAGGCAGACCGGTAAGCCGGTGATCATCCATACCCGTGGCGCGCGGGCCGATACCTTGGCATTGCTGCGGGACGCGGCGCTGCCCCACGCCGGTGTGCTTCATTGCTTCACCGAGGATTGGGATATGGCCAAGGCTGCCCTGGACATGGGTTATTACATTTCCTTGTCCGGCATCGTCACGTTCCGTAATGCCGACGCCCTGCGCGACGTCGCAAGCAAAGTGCCAGCCGATCGTTTGTTGGTGGAAACCGACTCGCCTTATCTGGCGCCCATCCCTTATCGTGGCAAGCCCAACCTTCCGCAGTATGTCCGGGAGGTTGCCGAATACCTGGCGATGCTGCGGGGGGAACCGTACGACCGGTTCGCGGAGCAAACCACCGAAAATTTCAAGCGGCTGTTCCCGTTGGCTCGGGTCCGTACGGCAAGAGCCTGA	MLVDSHCHLDRLDLAAHGGSLDAALDAARQRGVGHFLCIGVSADNAADVKRLAERYEDVDCSVGIHPLDVQPDATPALDWLLHELDHPRVVAIGETGLDYHYEPEAAEVQQASFRLHLEAARQTGKPVIIHTRGARADTLALLRDAALPHAGVLHCFTEDWDMAKAALDMGYYISLSGIVTFRNADALRDVASKVPADRLLVETDSPYLAPIPYRGKPNLPQYVREVAEYLAMLRGEPYDRFAEQTTENFKRLFPLARVRTARA				NA	NA	NA	NA	NA
D1-36_01587	639			hypothetical protein	ATGCACAAAGAACCTCGTAAGGTCCGTGAGTTTCGTCGCCGCGAGCAGGAAATTCTCGACACCGCGCTCAAGTTGTTCCTCGATCAGGGTGAAGACAGCGTCACCGTCGAGATGATTGCGGATGCCGTGGGTATCGGCAAAGGCACGATTTACAAACACTTCAAGTCCAAGGCAGAGATCTACCTGCGGCTGATGCTCGATTACGAGCGGGATTTGAACGAGCTGTTGCATTCGGCCGATGTCGACAAGGACAAGGAAGCGCTGTCCCGAGCGTACTTCGAGTTCCGCATGCGCGACCCGCAGCGTTACCGCTTGTTCGATCGCCTGGAAGAAAAGGTGGTCAAGGGCAACCAGGTGCCGGAAATGGTCGAGGAGCTGCACAAGATCCGCGCCTCGAACTTCGATCGCCTGACCTTGCTGATCAAGGGCCGGATCAGCGAAGGCAAGCTTGAAGACGTCCCGCCGTATTTCCACTACTGCGCTGCCTGGGCGCTGGTGCACGGCGCGGTGGCGCTGTACCACTCGCCGTTCTGGAGCAATGTGCTGGAAGACCAGGAAGGCTTCTTCCAATTCCTGATGGATATCGGTGTGCGCATGGGAAACAAGCGCAAGCGCGACACGGATACGCCGAGCAGTTGA	MHKEPRKVREFRRREQEILDTALKLFLDQGEDSVTVEMIADAVGIGKGTIYKHFKSKAEIYLRLMLDYERDLNELLHSADVDKDKEALSRAYFEFRMRDPQRYRLFDRLEEKVVKGNQVPEMVEELHKIRASNFDRLTLLIKGRISEGKLEDVPPYFHYCAAWALVHGAVALYHSPFWSNVLEDQEGFFQFLMDIGVRMGNKRKRDTDTPSS				NA	NA	NA	NA	NA
D1-36_01588	969	moaA	COG2896	GTP 3',8-cyclase	ATGATCGTTGACCGTCAAGGCAGGCGTTTTCGCAATTTGCGGATCAGCCTGACTTCAGCCTGCAATTACGCCTGTACCTACTGCGTGCCTGATGGCAAGCGGCTGGTGGCTGCGCAGGATGAACTGTCGGCCGAGGCCATGGCGCGAGGCGTGGCGTATCTGATCGAAGCGGCTGGAATCGAGCGGTTGCGCATCACGGGTGGCGAGCCGCTGGTCAGCCCCAAGCTTGAGAGCTTCATGACAGCGGTAGGGCAGATGGGCCTTGAGGACATCAGCCTGACCACCAACGGCCAGTTGCTGGCCAGGAAGCTGCCCCTGCTAATGAATGCCGGTATCCGCCGGATCAACGTTTCCCTCGACACCCTGGACGCCGCTGCCTTTCGCAGCATAGCCCGCGGAGGAGACCTGGCGACTGTGCTCGATGGCATGGAGCAGGCCCGGGCGGCGGGCCTGAAGATCAAGGTCAACATGGTGCCGCTGCGCGGGCAGAACCTCGATCAGGTGATGCCGTTGCTTGAATACTGCCTGGAACGTGGCTATGAGTTGCGCTTCATCGAGTTGATGCGCATGGGGCACCTGGCCAAGGATTCCAATGCGTTCCTTCAGCAATTCGTCAGCCTTCAGCAACTGCTGGGCCTGATTGGCGACCAATACGAATATTTGCAAGCCGACGCTCCCGTCGATGCCACGGCTGTGCGCTATGAAATTCCCGGGCTCGGGCACTTTGGCGTGATCGCCAACGAAAGCGTGCCGTTCTGCCGAACCTGTTCGCGACTGCGGTTGTCGTCCACTGGCTGGCTGCACGGCTGCCTGTCGTCGAGCAACCGTCATTACGTCGGCGATCTGCTGGACAAGCCCCGACACCAGGCGTTGCCGGCGCTCCAGCGCTTGCTGGTCAAGGCGTTGGGAGACAAGCAGGAAGTAGCGTTCTCGGGTGGCGCGACCATCATGAAGATCATTGGCGGCTGA	MIVDRQGRRFRNLRISLTSACNYACTYCVPDGKRLVAAQDELSAEAMARGVAYLIEAAGIERLRITGGEPLVSPKLESFMTAVGQMGLEDISLTTNGQLLARKLPLLMNAGIRRINVSLDTLDAAAFRSIARGGDLATVLDGMEQARAAGLKIKVNMVPLRGQNLDQVMPLLEYCLERGYELRFIELMRMGHLAKDSNAFLQQFVSLQQLLGLIGDQYEYLQADAPVDATAVRYEIPGLGHFGVIANESVPFCRTCSRLRLSSTGWLHGCLSSSNRHYVGDLLDKPRHQALPALQRLLVKALGDKQEVAFSGGATIMKIIGG	PGPT0008410_3947	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008410-moaA-K03639	NA	NA
D1-36_01589	606			hypothetical protein	ATGCGTAGCCTGTTTTTGCTGCTGACCGTTTTGACGCTTGGTGGCTGCATGAATGTCAGCGATATGGGGGAGGGCGTTCGTTATCACATGAGCGATGCCGGCCTGCTGGACCATAGCGACAGCCGCCGTGTAAACAACCTGCGCATCCAGCCGGATTCCTTCATCTACATCGCTCAGGGCGCTTTTGCTCCGCCAGGTAGCGCCTATCCGCGACCCAACGTCGTCGCTGAAGAAGCCTTCAATGGATTCATCGAATATTTCCCGATGGTTCGTCGCGCCCGGGTCCCGGAAGGCCTCGATCAGGCGATGGGTGAAGCGCGTGCCGCCGGTGCCCACTATTTGCTCTACACCCGATTTGCCAAGGCGGACAACCGCATCGGCAACACCGACGAATGGCTGGATGAAGAGGCGGTGGATCGCCTGGGTGTCGACACCAGTGTGATTCAAATCATGTTGATCGAGACCAGCACCCAGTATTTGATTGATACTGCACGCATCAAGAGTCGTGGCGGTTTGCTGACGTTGCACGACAAGCAGCCACAAGACCTCATCGCCGCGCCGTTGCGTGAGTACGCCCGCAGCTTGTTGGGGATGAGCAACGAATAA	MRSLFLLLTVLTLGGCMNVSDMGEGVRYHMSDAGLLDHSDSRRVNNLRIQPDSFIYIAQGAFAPPGSAYPRPNVVAEEAFNGFIEYFPMVRRARVPEGLDQAMGEARAAGAHYLLYTRFAKADNRIGNTDEWLDEEAVDRLGVDTSVIQIMLIETSTQYLIDTARIKSRGGLLTLHDKQPQDLIAAPLREYARSLLGMSNE				NA	NA	NA	NA	NA
D1-36_01590	561			hypothetical protein	ATGAGCGGACCGCAAAAAGCCAATGACCTGCTGGGGCAGATCCCCAAGACCAAAGGCCTGCCGCCGGTCCACTTGTGGAACCCTGACTTCTGCGGCGACATCGACATGCGAATCGCCCGGGATGGCACTTGGTACTACCTGGGCACCCCCATCGGACGCAAGCCGATGGTCAAGCTGTTCTCCACCATCATTCGCCGCGACGGCGATGATTACTTTCTGATTACCCCTGTGGAAAAAGTCGGCATCAAGGTCGATGACGCGCCGTTCGTGGCCGTGACCCTGGAGGTCGAAGGAGAGGGGGAAGGGCAGTTGTTGCGCTTTACCACCAATGTCGAGGAAGTCACCGAAGCCGGCCCGGAACATCCGATGCGGGTGATGATCGATCCCCAGACCCGGGAACCGGCGCCTTACATTCATGTGCGCAGCAATCTTGAAGCGCTGATTCATCGCAATGTGTTCTATCAATTGGTGGAGCTTGCGGTCAGCCGTGAGATAGATGGGCAGCGCTGGTTGGGCGTCTGGAGTGGTGGCGAGTTTTTCCCCATCGGCCTGGAGCCCTGA	MSGPQKANDLLGQIPKTKGLPPVHLWNPDFCGDIDMRIARDGTWYYLGTPIGRKPMVKLFSTIIRRDGDDYFLITPVEKVGIKVDDAPFVAVTLEVEGEGEGQLLRFTTNVEEVTEAGPEHPMRVMIDPQTREPAPYIHVRSNLEALIHRNVFYQLVELAVSREIDGQRWLGVWSGGEFFPIGLEP				NA	NA	NA	NA	NA
D1-36_01591	744			hypothetical protein	ATGTCCAGCAGTTTTCACGCGTCGACCGTCGATTGGCTGGGGGGCTGGATCGCCGCCGGCCAGGTCAAGCCTGGGCAAACCATCAAGGTCGAGGCGGATCTGGGCGAGCAACTGGGCGTCAGCCGCACGGTGATTCGCGAAGCCATCAAAACCTTGGTGGCCAAAGGCATGCTGGAAGTCGGGCCGAAGGTCGGCACGCGGGTGTTGCCGGTGCGCCGCTGGAACCTCTTTGATCCACAAGTGGTGGGCTGGCTGTCGCGCAGCGGCTTGCCGGAGAATTTTGTCGACGATCTGCTGGACCTGCGCCGCACCATCGAACCGATGGCCGTGCGTTGGGCCTGTGAACGGGCGACGGCCGACCAGGTGCAGGCGATCCGCCTGGCCTATCATGCGCTTGAGCGGGCGGTGGACAGCGGTGCGGATTACAACCGCGCCGACCAGTTCTTCCACGAATGCATCCTCGCGGCCAGCCACAATCAATTCATCGAACAAATGGTCCCAGCCCTCGGAGCGTTGTTGGCGGTTTCGTTCGAGGTGTCGGCCGCCGACCCGGACGAACTGCGCCGCACGCTGCCGATCCACAAGGACATCGCCGAAGCCATCGCCGCTCGGGACGCGACGCGAGGCGTCTGGGCCTGCATGACGCTGATCGATAACGCAGACCTGGCCATCAAGCGTTTTTACCCCAATGTCATGGCCGGTCGAACAGACAACGCCGGGAAACTCGGGAACAGGAGGTTTTAA	MSSSFHASTVDWLGGWIAAGQVKPGQTIKVEADLGEQLGVSRTVIREAIKTLVAKGMLEVGPKVGTRVLPVRRWNLFDPQVVGWLSRSGLPENFVDDLLDLRRTIEPMAVRWACERATADQVQAIRLAYHALERAVDSGADYNRADQFFHECILAASHNQFIEQMVPALGALLAVSFEVSAADPDELRRTLPIHKDIAEAIAARDATRGVWACMTLIDNADLAIKRFYPNVMAGRTDNAGKLGNRRF	PGPT0018085_154	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0018085-dgoR-K19776	NA	NA
D1-36_01592	876			6-deoxy-6-sulfogluconolactonase	ATGAAGTGGACGGCTGTGACGGAGCATCGGGCGAAGCTGGGCGAGGGGCCTTTTTGGGACGAGCCGACCCAGGCGCTGTATTGGGTCGATATTGCCGGCAAGCAGGCGTTGCGGCTGATTGGCAAGAACGTGCAGATCTGGCAGATGCCTGAGCACGTCTCTGCATTCATCCCGACCCAGAGCGGCGATGCCTTGGTGACGTTGAGCAGTGGCGTTTACCGGTTGGACCTGGACTCCCCAGGCCTGGAACCGCGCCTGAAGTTGCTGTGCATGGCCGATCCCCAGCCGGGCAATCGCGCCAACGAAGCCCGCTGCGATGCGTTGGGCCAGCTCTGGCTGGGCACCATGCAGAACAACATCGGGGAAGATGGCGAAGACTTGCCCATCGAGCAGCGCTCCGGTGGGCTGTTTCGTGTCGGCGGCGATGGCCGCGTGATGCCGCTGTTGCGTGGCTTGGGCATCCCCAACACATTGTTGTGGAGCCCTGATGGCACGACCGTCTATTTCGGCGAGAGCCTGGACGGGACCCTTTATCGGCACTTTATTTATCCCGATGGAAAACTCGCGCCCGCCGAAGTCTGGTTCGGACCCCATTCCCGTGGCGGGCCGGATGGTTCGGCGATGGATGCGCGGGGCTATATCTGGAACGCCCGTTGGGACGGCAGTTGCCTGCTGCGGTTGCATCCGGAGGGTCACGTCGATCAGGTGATCGAATTGCCGGTCAGTCGCCCTACCAGTTGTGTATTCGGTGGTGAAGACCTACGGACTTTGTATATCACCAGTGCGCAAAGTCCCCTCAATCACCCATTGGACGGGGCGGTGCTATCGATGCGCGTCGATGTGCCGGGCGTGGCTTGTACGCGGTTCGCGGGGTAA	MKWTAVTEHRAKLGEGPFWDEPTQALYWVDIAGKQALRLIGKNVQIWQMPEHVSAFIPTQSGDALVTLSSGVYRLDLDSPGLEPRLKLLCMADPQPGNRANEARCDALGQLWLGTMQNNIGEDGEDLPIEQRSGGLFRVGGDGRVMPLLRGLGIPNTLLWSPDGTTVYFGESLDGTLYRHFIYPDGKLAPAEVWFGPHSRGGPDGSAMDARGYIWNARWDGSCLLRLHPEGHVDQVIELPVSRPTSCVFGGEDLRTLYITSAQSPLNHPLDGAVLSMRVDVPGVACTRFAG	PGPT0017460_298	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017460-araB|L_arabinonolactonase-K13874	NA	NA
D1-36_01593	819	ucpA		Oxidoreductase UcpA	ATGGCTGAAGCGCTTTGCTTGCCGCCGGTGCCTGAGCCCGTGAAGGGCGAACGCCTGAAAGACAAGGTCGTGCTGTTGACCGGCGCTGCCCAGGGCATCGGCGAAGCCATTGTCGCCGCGTTCGCTTCGCAACAGGCCCGGCTGGTCATCAGCGATATCCAGGGGGAAAAGGTCGAAACCGTCGCCGCCCATTGGCGTCGACAGGGTGCGGATGTCCAAGCGCTGAAGGTTGATGTCTCGAACCAACAGGATTTGCACGTCATGGCCCGCCGGGCGGTCGAGTTGCATGGTCGCATCGACGTGCTGGTGAACTGCGCAGGCATCAACGTGTTCCGCGATCCGCTGGAAATGACCGAAGAGGACTGGCGCCGTTGCTTCGCCATCGACCTGGATGGCGCTTGGCACGGTTGCAAGGCGGTGTTGCCACAGATGATCGAACAGGGCGTGGGCAGCATCATCAACATCGCGTCGACCCATTCGTCCCACATTATTCCCGGTTGTTTCCCATACCCCGTAGCCAAACATGGCCTGCTGGGCCTGACCCGTGCCCTGGGCATCGAGTACGCACCCAAGGGCGTGCGGGTGAATGCCATTGCGCCGGGCTACATCGAGACTCAACTGAACGTCGACTACTGGAACGGCTTTGCCGATCCCCAGGCCGAACGCCAGCGCGCGCTGGACCTGCACCCGCCACGGCGCATCGGGCAGCCGATCGAAGTGGCAATGACGGCCGTATTCCTGGCCAGTGACGAAGCACCGTTCATCAATGCCTCATGCATCACCATCGATGGTGGGCGTTCGGTCATGTACCACGACTGA	MAEALCLPPVPEPVKGERLKDKVVLLTGAAQGIGEAIVAAFASQQARLVISDIQGEKVETVAAHWRRQGADVQALKVDVSNQQDLHVMARRAVELHGRIDVLVNCAGINVFRDPLEMTEEDWRRCFAIDLDGAWHGCKAVLPQMIEQGVGSIINIASTHSSHIIPGCFPYPVAKHGLLGLTRALGIEYAPKGVRVNAIAPGYIETQLNVDYWNGFADPQAERQRALDLHPPRRIGQPIEVAMTAVFLASDEAPFINASCITIDGGRSVMYHD				NA	NA	NA	NA	NA
D1-36_01594	1005	araF	COG1879	L-arabinose-binding periplasmic protein	ATGAAATATCGTCGTGGGATCCGTTCCCTGTGTCGTGCCGCCCTGGCGGTGACCGCGGTCAGCCTTAGCAGCAGCCTGCTGGCAGCGGATCCGGTAAAAATCGGTTTTCTGGTCAAGCAGGCGGAGGAGCCCTGGTTCCAGACCGAGTGGGCTTTCGCCGAGAAGGCGAGCAAGGACAAAGGCTTCGAGTTGATCAAAATCGCCGTGCCCGATGGCGAAAAAACCCTTTCGGCCATCGACAGCCTTGCCGCCAACGGTGCCAAGGGCTTCGTGATCTGCCCGCCGGACGTGTCTCTCGGCCCAGCCATCATGGCCAAGGCCAAGCTTAACGATCTCAAGGTGATCGCCGTCGACGACCGTTTCGTCGACGCCAAAGGCAAGTTCATGGAGGACGTGCCATACCTGGGCATGGCGGCCTTCGAGGTGGGCCAGAAGCAGGGCGCCGCGATGGCCGCCGAGGCGAAAAAGCGTAACTGGGACTGGAAAGACACCTACGCGGTGATCAACACCTTCAACGAACTGGACACCGGCAAGAAGCGCACCGACGGTTCGGTCGATGCCTTGAAGAAAGCCGGGATGCCGGAAGACCACATTCTGTTTGCGGCGCTCAAGACCCTCGACGTCCCCGGCAGCATGGACTCCACCAACTCGGCGCTGGTGAAGCTGCCAAGCGCTGCGAAAAACCTGATCATCGGCGGTATGAACGACAACACCGTGCTGGGCGGCGTGCGCGCCACCGAAGCAGCCGGCTTCAAGGCGGCCAACGTGATCGGCATCGGCATCAACGGCACCGACGCCATCGGCGAGTTGAAGAAACCGGACAGCGGCTTCTTCGGTTCGATGTTGCCGAGCCCGCACATCGAAGGCTACAAGACCGCCGAAATGATGTACGAGTGGATCACCACCGGCAAGGAACCGCCGAAGTACACCGCCATGGACGAGGTGACGCTGATCACCCGGGAGAACTTCAAGCAAGAGCTGGAAAAGATCGGCCTGTGGAACTGA	MKYRRGIRSLCRAALAVTAVSLSSSLLAADPVKIGFLVKQAEEPWFQTEWAFAEKASKDKGFELIKIAVPDGEKTLSAIDSLAANGAKGFVICPPDVSLGPAIMAKAKLNDLKVIAVDDRFVDAKGKFMEDVPYLGMAAFEVGQKQGAAMAAEAKKRNWDWKDTYAVINTFNELDTGKKRTDGSVDALKKAGMPEDHILFAALKTLDVPGSMDSTNSALVKLPSAAKNLIIGGMNDNTVLGGVRATEAAGFKAANVIGIGINGTDAIGELKKPDSGFFGSMLPSPHIEGYKTAEMMYEWITTGKEPPKYTAMDEVTLITRENFKQELEKIGLWN	PGPT0016605_153	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_ARABINOSE_TRANSPORT_I,PGPT0016605-araF-K10537	NA	NA
D1-36_01595	1545	araG	COG1129	Arabinose import ATP-binding protein AraG	ATGCAAGCGCAAACAGCGACACGGCAACACAACATCGGCGGCAGCTTGCGATTCAACGGGATCGGCAAGTCCTTTCCTGGCGTGCAGGCGCTGGCCAATATCAGTTTCGTTGCTCATCCGGGGCAGGTGCATGCCTTGATGGGCGAGAACGGCGCGGGCAAGTCCACGTTGCTGAAAATCCTCGGGGGCGCCTACATCCCGAGCAGCGGCGACTTGCAGATCGGCGAGCAGACGATGGCCTTCAAAGGCACCGCCGACAGTATCGCCAGCGGTGTGGCGGTGATTCACCAGGAATTGCACCTGGTGCCGGAAATGACCGTCGCGGAGAACCTGTTCCTCGGTCATTTGCCGGCGCGTTTCGGCCTCGTCAATCGCGGCGTACTGCGTCAGCAGGCGTTGACATTGCTCAAAGGCCTGGCGGACGAAATCGACCCGCAGGAAAAAGTCGGTCGTCTGTCCCTTGGCCAGCGCCAGTTGGTGGAAATCGCCAAGGCCTTGTCCCGTGGCGCCCACGTCATTGCCTTCGACGAACCGACCAGCAGCCTGTCGGCCCGGGAAATCGACCGTTTGATGACGATCATTGCCCGCCTTCGAGACGAGGGCAAAGTGGTGCTGTACGTCAGCCACCGCATGGAGGAGGTGTTCCGCATCTGTGACGCGGTGACGGTCTTCAAGGACGGTCGTTATGTCCGCACCTTCGAGAACATGAGCGAGCTGACCCACGATCAGTTGGTCACGTGCATGGTCGGTCGCGATATCCAAGACATTTATGACTACCGCCCCCGGGAGCGCGGCGATGTGGCGTTGCAGGTGAAAGGCCTGCTCGGGCCGGGCTTGCGCGAACCGGTGAGTTTCCATGTACACAAGGGCGAGATCCTCGGCTTGTTCGGGCTGGTCGGCGCCGGTCGTACCGAGCTGCTGCGTTTGCTCAGTGGCCTGGAACGTCAGAGCGAGGGCAGCCTGGTCCTGCACGGCAAGGAATTGAAACTGCGTTCCCCCCGGGATGCCATCGCCGCTGGTGTGCTGCTCTGTCCGGAAGATCGCAAGAAGGAGGGCATCATTCCGTTGGGCAGCGTGGCCGAGAACATCAACATCAGCGCCCGTCCGGCTCATTCCGCGCTCGGCTGCCTGTTGCGTGGCGAGTGGGAGCGGGGCAATGCCGACAAGCAGATCAAGTCGCTCAAAGTGAAGACCCCGGCGGCGAGCCAGAAAATCATGTACTTGTCCGGCGGTAACCAGCAGAAAGCAATCCTGGGACGCTGGCTTTCCATGCCGATGAAAGTCCTGCTGCTTGACGAGCCGACGCGAGGCATCGACATCGGCGCCAAGGCCGAGATCTACCAGATTATCCACAACCTGGCGGCCGATGGCATCGCGGTGATTGTGGTGTCCAGTGACTTGATGGAAGTGATGGGCATTTCCGACCGGATCCTGGTGCTGTGCGAAGGGGCCATGCGCGGCGAGTTGCCGCGTGACCAGGCCGACGAATCCAACCTGCTGCAACTGGCGCTGCCGCGCCAACGCGTTGCCGACGCGGCGAACTGA	MQAQTATRQHNIGGSLRFNGIGKSFPGVQALANISFVAHPGQVHALMGENGAGKSTLLKILGGAYIPSSGDLQIGEQTMAFKGTADSIASGVAVIHQELHLVPEMTVAENLFLGHLPARFGLVNRGVLRQQALTLLKGLADEIDPQEKVGRLSLGQRQLVEIAKALSRGAHVIAFDEPTSSLSAREIDRLMTIIARLRDEGKVVLYVSHRMEEVFRICDAVTVFKDGRYVRTFENMSELTHDQLVTCMVGRDIQDIYDYRPRERGDVALQVKGLLGPGLREPVSFHVHKGEILGLFGLVGAGRTELLRLLSGLERQSEGSLVLHGKELKLRSPRDAIAAGVLLCPEDRKKEGIIPLGSVAENINISARPAHSALGCLLRGEWERGNADKQIKSLKVKTPAASQKIMYLSGGNQQKAILGRWLSMPMKVLLLDEPTRGIDIGAKAEIYQIIHNLAADGIAVIVVSSDLMEVMGISDRILVLCEGAMRGELPRDQADESNLLQLALPRQRVADAAN	PGPT0016615_110	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_ARABINOSE_TRANSPORT_I,PGPT0016615-araG-K10539	NA	NA
D1-36_01596	969	araH	COG1172	L-arabinose transport system permease protein AraH	ATGACCATCCAAAACAATGCACTGCCAACGGCGCGCAAACCCCTGGACCTGCGCCGCTTCCTCGACGACTGGGTCATGCTGCTGGCGGCCATCGGCATCTTCGTGCTCTGCACCCTGATGATCGACAACTTCCTGTCGCCGCTGAACATGCGCGGCCTGGGCCTGGCGATTTCCACCACCGGCATCGCGGCATGCACCATGCTGTATTGCCTGGCGTCCGGGCATTTCGACCTGTCGGTGGGTTCGGTGATTGCCTGCGCCGGCGTCGTCGCGGCCGTCGTGATGCGTGACACCAATAGCGTATTTCTCGGCGTGAGCGCGGCGTTGGTGATGGGGCTGATTGTCGGCCTGATCAACGGCATCGTCATCGCGAAACTGCGGGTCAATGCGCTGATTACCACGCTGGCGACCATGCAGATCGTACGCGGCCTGGCCTACATCTTTGCCAACGGCAAGGCGGTGGGGGTGTCGGAAGAATCGTTTTTCGTCTTTGGTAACGGCCAGATGTTCGGTGTGCCGGTGCCGATCCTGATCACCATTGCCTGCTTTCTGTTCTTCGGCTGGCTGCTGAACTACACCACTTATGGGCGCAACACCATGGCCATCGGCGGCAACCAGGAAGCGGCATTGCTGGCAGGCGTTAACGTTGATCGCACCAAGATCATCATCTTCGCCGTGCACGGTGTGATTGGTGCGCTGGCAGGCGTCATCCTGGCGTCGCGCATGACCTCGGGCCAGCCGATGATCGGCCAGGGTTTCGAACTGACCGTGATCTCTGCTTGTGTTCTGGGTGGCGTTTCGTTGAGCGGCGGCATCGGCATGATTCGCCATGTCATCGCCGGCGTGCTGATCCTGGCGATCATCGAGAACGCGATGAACCTGAAGAACATCGATACGTTCTACCAGTACGTCATCCGCGGCTCGATCCTGCTGTTGGCGGTGGTGATTGACAGGTTGAAACAGCGTTGA	MTIQNNALPTARKPLDLRRFLDDWVMLLAAIGIFVLCTLMIDNFLSPLNMRGLGLAISTTGIAACTMLYCLASGHFDLSVGSVIACAGVVAAVVMRDTNSVFLGVSAALVMGLIVGLINGIVIAKLRVNALITTLATMQIVRGLAYIFANGKAVGVSEESFFVFGNGQMFGVPVPILITIACFLFFGWLLNYTTYGRNTMAIGGNQEAALLAGVNVDRTKIIIFAVHGVIGALAGVILASRMTSGQPMIGQGFELTVISACVLGGVSLSGGIGMIRHVIAGVLILAIIENAMNLKNIDTFYQYVIRGSILLLAVVIDRLKQR	PGPT0016610_378	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_ARABINOSE_TRANSPORT_I,PGPT0016610-araH-K10538	NA	NA
D1-36_01597	381			hypothetical protein	ATGCCTCGTGGAAGCAAAGACAAGTACACCGATGAGCAGAAGCGCAAGGCCGAGCACATCGAAGACAGCTATGAGCAAAAAGGTGTGTCGGAAGGCGAGGCCGAGGCTCGGGCCTGGGCCACGGTGAACAAGCAATCGGGAGGCGGCGAACGCTCTGGTGGATCCGGCAAGAAGAAACCCGCCGAAGCCAAGCAATCCGACCGCAAGGAGTCGGCCCGGCGCGCCGCCAAGAGCCGCGAAGGCCAGCCGCGCACCAGCAAAGCCTCCCATGAGGCCCAGACCGTGGACAGCTTGATGAAAGAAGCCCGGGCAAAAAATATTCCCGGACGCTCGAAAATGCGCAAGCAGGAACTGGTCGAGGCGTTGCGCAAGGCGGGGTAG	MPRGSKDKYTDEQKRKAEHIEDSYEQKGVSEGEAEARAWATVNKQSGGGERSGGSGKKKPAEAKQSDRKESARRAAKSREGQPRTSKASHEAQTVDSLMKEARAKNIPGRSKMRKQELVEALRKAG				NA	NA	NA	NA	NA
D1-36_01598	348			hypothetical protein	ATGATCTATTCAAGGCTGACTGCACTCACATTCGCCACGCTGCTGTCTTCGGCGGCTTTCGCGGCCACGACCAGTGGCACCGGACCGACCGACCCGGTTCAGGCACCCAACTCGCCGGCCACCCAAGGTTTGCCCAAACTGAACACCGATGGCACGGGCGGCACCTTGAACAATGGCCAGCCGCCTGCTACAGGCACCGATCCGAGGGTCCAAGGCAACGACACGGGCCGCCAAGGCGGGATGAACACACCTGACTCCACTGCGCCCGACAATGCCGATACTGGCGTGGGTTCGAAAACCACAACCGGAGGTTCAGGCTCTGAAGGTGGTGGGGCCTCCAGCCAATAA	MIYSRLTALTFATLLSSAAFAATTSGTGPTDPVQAPNSPATQGLPKLNTDGTGGTLNNGQPPATGTDPRVQGNDTGRQGGMNTPDSTAPDNADTGVGSKTTTGGSGSEGGGASSQ				NA	NA	NA	NA	NA
D1-36_01599	483			hypothetical protein	ATGTCCATCGAGATCCGTCCCGCGCAGCCCAGCGATGCGCCGCAAATCCTTGCTTTCATCACTGAGCTGGCCGATTACGAAAAAGCTCGCCACGAAGTCATCGCCAGCGTGGCCGACATCGAGCGCAGCCTGTTCAGCGAAGGCGCCACCGCCCACGGCTTGATCTGCCTGCGCGATGGCGTGCCGATCGGTTTTGCGGTGTTTTTCTTCAGCTATTCCACTTGGTTGGGCAGTAATTGCCTGTACTTGGAAGACTTGTACATCACGCCTGAACAGCGCGGTGGCGGGGCGGGCAAAACCTTATTGCGACATCTGGCGAAGATCGCCTGCGACAACGATTGTGGTCGCTTCGAGTGGAGCGTGCTGGACTGGAACACCCCGGCCATCGACTTCTACAAATCCCTCGGCGCGCAACCGCAGGAAGAGTGGGTGCGCTACCGGATGGATGGCAAGGTGCTCCGGGACTTCGCTAACGGCAACTGA	MSIEIRPAQPSDAPQILAFITELADYEKARHEVIASVADIERSLFSEGATAHGLICLRDGVPIGFAVFFFSYSTWLGSNCLYLEDLYITPEQRGGGAGKTLLRHLAKIACDNDCGRFEWSVLDWNTPAIDFYKSLGAQPQEEWVRYRMDGKVLRDFANGN				NA	NA	NA	NA	NA
D1-36_01600	633	gstB_2	COG0625	Glutathione S-transferase GstB	ATGGGACAATTGTTGAAGATCCTCGGCCGCACTTCCTCGATTAACGTCAGAAAGGTCTTGTGGACTTGCCAGGAACTGGAAATCTCCTACGAGCGCGAAGACTGGGGCATCGGCTTCGCGTCGACCCATGACCCGGCGTTCCTGGCATTGAATCCCAACGCCCAGGTGCCGGTGATTGTCGACGAGAGCGGCGTGCTCTGGGAGTCGAACACCATTTGCCGCTATCTGGTGGGCAAGCACGGGCGCAGCGACCTGCTGCCTGTCGAGCCTGCCGCACGGGCGCGTGTAGAGCAGTGGATGGATTGGCAAGCCACCGAGCTCAATCCGTCGTGGGGCGATGCGTTTTACGGACTGGTGCGCAAGCACCCGGATTTCCAGGACCCACAACTCATCGCCGCCGGCGTCAAAGGCTGGAATGAGAAGATGGGCTTGCTGGAACAACAGCTGGACCACACCGGCGCCTACGTAGCCGGTGCGGACTTTTCCCTTGCAGACGTACTCATTGGCCTATCCGTACACCGCTGGCGGCAGACGCCCATGGAGCGTCCGGACTATCCAGCCGTAGCCGCTTATTGCACGCGACTCCAACAGCGACCCGGGTTTACCCAGTGGGCGTCCGACGCGTACTCATGA	MGQLLKILGRTSSINVRKVLWTCQELEISYEREDWGIGFASTHDPAFLALNPNAQVPVIVDESGVLWESNTICRYLVGKHGRSDLLPVEPAARARVEQWMDWQATELNPSWGDAFYGLVRKHPDFQDPQLIAAGVKGWNEKMGLLEQQLDHTGAYVAGADFSLADVLIGLSVHRWRQTPMERPDYPAVAAYCTRLQQRPGFTQWASDAYS	PGPT0013170_16081	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799	NA	NA
D1-36_01601	984	dgoK1	COG3734	putative 2-dehydro-3-deoxygalactonokinase DgoK1	ATGCAGGCGCAATTGATCGCGCTCGATTGGGGAACGACCTCATTACGGGCTTACAAACTAGCCGCGGGAGGCGAGGTGCTCGAGCAGCGTTCGCTGTCGTCGGGGATCATGCAGTTGCCGTCCGGGCCGCGGACGATAGCGGGCCAGGTCTGCATCGACGGTTTTGAGCTGGCCTTCGATGAAGCCTGCGGCGATTGGCTCGATGCGCAGCCAGGCTTGCCCGTCATCGCCTGCGGCATGGTGGGCAGCGCCCAAGGTTGGCGGGAAGCGCCTTACTGCGACACGCCGGCAAACGTCGCCAATCTCGGACATTCCCTACAAATTATCCGGAGCCTTCGCGGTGTTGATGTTCACATCGTGCCAGGGGTAATCCAACGCTCCCGACTGCCCAATGTGATGCGCGGCGAAGAAACCCAGGTGCTCGGTGCGTTGCCTGGCTTGCCCAACGAAGCGGTGCTGATCGGCTTGCCGGGCAGCCATTCGAAATGGGTGGAAGCGGCCGAGGGCTGCATCGTCCATTTCGACACCTTCATGACCGGCGAGATCTTCGCCGTGCTCAGCGACCACAGCATTCTCGGCCGCACCCAGCAGCGCGGCGCGGCGTTCGATGGCGTGGCTTTCGATCGCGGCGTGCAGGTGGCGCTGTCGTCGGATGGGCAGATTGGCCCGCTGTCCACCGTGTTCAGCGCCCGCAGCCTGGGCCTGACCGGCGAGCTCGGCGCGAGCGCCCAGGCCGATTACCTGTCGGGTGTGCTGATCGGCCATGAGTTGACGGCCCTGGCCGCCGTGCAACGTCAACGGCGCAACAGCGTTCACCTGCCGACGGTCGTGCTGATTGGTAATTCTCAACTCTGCGCCCGTTACCAGCGGGCCCTCGACGCCTGCGGTTTCGCCCGCGTGATCCTGGCCGAACAGGCCACCGAACGCGGTTTGTGGCAACTGGCCTTGGCGGCCGGGCTGCTCGGACCCACCGCGTCGCGTTAA	MQAQLIALDWGTTSLRAYKLAAGGEVLEQRSLSSGIMQLPSGPRTIAGQVCIDGFELAFDEACGDWLDAQPGLPVIACGMVGSAQGWREAPYCDTPANVANLGHSLQIIRSLRGVDVHIVPGVIQRSRLPNVMRGEETQVLGALPGLPNEAVLIGLPGSHSKWVEAAEGCIVHFDTFMTGEIFAVLSDHSILGRTQQRGAAFDGVAFDRGVQVALSSDGQIGPLSTVFSARSLGLTGELGASAQADYLSGVLIGHELTALAAVQRQRRNSVHLPTVVLIGNSQLCARYQRALDACGFARVILAEQATERGLWQLALAAGLLGPTASR	PGPT0018080_268	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0018080-dgoK-K00883	NA	NA
D1-36_01602	621	dgoA	COG0800	2-dehydro-3-deoxy-6-phosphogalactonate aldolase	ATGCTCAAACAAGCATTGGCGCACAACGGGCTGATCGCGATTCTTCGCGGCCTGCGCCCCGAGGAGGCGGCATCTATCGGCGAAGTCCTGTATAGCGAGGGATTTCGAGTCATCGAAGTGCCGCTCAATTCCCCCGAACCGTACGAAAGTATCCGCATCCTGCGCAGTACCTTGCCCGCCGATTGCCTGATCGGCGCGGGTACCGTGCTGACCCCGGAGCAGGTGGAGCAGGTCAAGGCGGCCGGTGGCCAGGTGATCGTCATGCCTCACAGTGACCCGAAGGTCTTGCGGGCGGCAAAAGCGGCGGGGCTGTACCTGTCGCCCGGCGTCGCCACGCCGACCGAAGCTTTCGCCGCGCTGGCCGAGGGCGCTCATGTGCTGAAGATGTTCCCCGCCGAGCAAATGGGCCCGGCGGTGGTCAAGGCCTGGCTCGCGGTTTTACCGGCCGGGACCGTGCTGGTGCCGGTGGGCGGGATTACGCCGGACAACATGGCGGTGTTCGTCGAAGCCGGCGTCAAGGGTTTCGGCCTGGGTTCCGGGTTGTTCAAGCCGGGCCTGACAGCAGATCAAGTGGCGGTGCGCGCCAAGGCCTATGTGGCCGCATGGAATGCCTTGAACTGA	MLKQALAHNGLIAILRGLRPEEAASIGEVLYSEGFRVIEVPLNSPEPYESIRILRSTLPADCLIGAGTVLTPEQVEQVKAAGGQVIVMPHSDPKVLRAAKAAGLYLSPGVATPTEAFAALAEGAHVLKMFPAEQMGPAVVKAWLAVLPAGTVLVPVGGITPDNMAVFVEAGVKGFGLGSGLFKPGLTADQVAVRAKAYVAAWNALN	PGPT0018075_527	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0018075-dgoA-K01631	NA	NA
D1-36_01603	1149	dgoD	COG4948	D-galactonate dehydratase	ATGAAAATCACCAAGCTGACCACGTTTATCGTTCCGCCGCGCTGGTGCTTCCTCAAGGTCGAGACCGATGAGGGCGTGACCGGTTGGGGCGAACCCGTGGTCGAAGGCCGTGCCCACACAGTGGCGGCTGCGGTTGAAGAATTGTCCGACTACCTGATCGGCAAAGACCCACGCAACATCGAAGACATCTGGACCGTGCTCTATCGCGGTGGCTTCTACCGCGGCGGGGCCGTCCACATGAGCGCCCTGGCCGGTATCGACCAAGCGTTGTGGGACATCAAGGGCAAGGCCCTGGGTGTGTCGGTCAGCGATCTGTTGGGCGGCCAGGTGCGGGACAAGATCCGTGTCTATTCATGGATCGGCGGCGACCGGCCGGCGGACACCGCCCGAGCGGCGAAAGAGGCGGTGGGACGCGGCTTCACGGCGGTGAAGATGAACGGCACCGAAGAACTGCAGTTCCTCGATACCTTCGAAAAAGTCGACCTGGCCCTGGCCAACGTGGCAGCGGTGCGCGACGCGGTCGGGCCGAACGTCGGCATTGGCGTGGATTTCCACGGCCGTGTGCACAAGCCAATGGCCAAGGTTCTGATGAAGGAGCTCGACCCCTTCAAGCTGATGTTCATTGAAGAACCGGTGCTCAGCGAAAACTACGAAGCCCTCAAGGAACTGGCGCCGCTGACCAGTACCCCGATTGCCCTGGGCGAGCGGTTGTTCTCGCGATGGGATTTCAAGCGGGTGCTCAGCGAAGGCTATGTGGACATCATCCAGCCGGATGCGTCCCACGCCGGCGGCATCACCGAAACCCGCAAGATCGCCAACATGGCCGAGGCCTACGATGTGGCGCTGGCACTGCATTGCCCGTTGGGTCCAATCGCCCTGGCGGCGTGCCTGCAACTGGACGCGGCTTGCTACAACGCGTTTATCCAGGAGCAGAGCCTGGGCATCCATTACAACGAAAGCAATGACTTGCTGGACTACATCAAGGACCCGCGAGTGTTCGACTATGACCAAGGCTTCGTAAAAATTCCGAACGGTCCTGGCCTGGGTATCGAGATCAATGAGGAATACGTCATCGAGCGCGCGGCCATTGGCCATCGCTGGCGCAACCCGATCTGGCGCCATGCCGATGGCAGTTTTGCCGAATGGTGA	MKITKLTTFIVPPRWCFLKVETDEGVTGWGEPVVEGRAHTVAAAVEELSDYLIGKDPRNIEDIWTVLYRGGFYRGGAVHMSALAGIDQALWDIKGKALGVSVSDLLGGQVRDKIRVYSWIGGDRPADTARAAKEAVGRGFTAVKMNGTEELQFLDTFEKVDLALANVAAVRDAVGPNVGIGVDFHGRVHKPMAKVLMKELDPFKLMFIEEPVLSENYEALKELAPLTSTPIALGERLFSRWDFKRVLSEGYVDIIQPDASHAGGITETRKIANMAEAYDVALALHCPLGPIALAACLQLDAACYNAFIQEQSLGIHYNESNDLLDYIKDPRVFDYDQGFVKIPNGPGLGIEINEEYVIERAAIGHRWRNPIWRHADGSFAEW	PGPT0002220_1426	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0002220-dgoD-K01684	NA	NA
D1-36_01604	1311	dgoT		D-galactonate transporter	ATGCAAGCGCACACCCTGAGCGCGCAGGCGTCGTCGGTGACGCCCAGCCGCAAGCGTTTTTTCATCATGGTGTTGCTGTTCATCACGGTGGTGATCAACTACCTGGACCGCAGCAATCTCTCGATCGCGGCCCCCGCATTGACCAGCGACCTGGGCATCGACCCGATCCACGTCGGGCTGATTTTCTCGGCGTTCGGCTGGACCTACGCCGCCATGCAGATCCCCGGCGGCTGGCTGGTGGACCGGGTGCCGCCGCGCATCCTGTATAGCGTGGCATTGTTGCTGTGGTCGGCGGCCACGGTGATGCTCGGTTTTGCCGCCAGTTTCATCGCGCTGTTCGTGCTGCGCATGGCCGTCGGTGCCCTGGAAGCGCCGGCTTATCCGATCAACAGCCGCGTGGTCACCACCTGGTTTCCCGAGCGCGAGCGGGCCACGGCCATTGGTTTCTATACCTCCGGGCAGTTCGTTGGGCTCGCATTTTTGACACCGGTGCTGGCGTGGCTGCAACACGCGTTTGGTTGGCACATGGTGTTTGTCGCCACGGGCGCGGTGGGCATTCTCTGGGCGGTGATCTGGTATGCGGTATATCGCGAGCCTCGGGATTTCAAGGGCGCCAATGCCGCGGAAATCGAGTTGATCCGTGAGGGTGGGGGGCTGGTGGACATCCAGGCCGATACCGCCAAGGCCAAGGCCAAATTCAGCTGGAGCGACCTGGGCATCGTCCTGACCCAACGCAAGTTATGGGGTATCTACCTGGGGCAGTTCTGCCTCAACTCCACGCTGTGGTTTTTCCTGACGTGGTTCCCGACCTACCTGGTGAAGTATCGCGGCATGGACTTCATCAAGTCCGGCTTGCTGGCGTCGTTGCCGTTCCTTGCGGCATTCGTCGGCGTGCTGTGTTCCGGCTTCTTCTCGGACTGGCTGATCCGCCGAGGCGCCACGGTGGGTTTTGCGCGCAAGCTGCCGATCATTGGCGGGCTGCTGATTTCCACCTCGATCATCGGCGCCAACTTCGTGGAGTCGACGCCCCTGGTGATCGCCTTCCTGGCCCTGGCGTTCTTCGGCAATGGCCTGGCGTCGATCACGTGGTCACTGGTTTCCACCTTGGCACCGGCGCGGTTGCTCGGTTTGACCGGCGGGGTGTTCAATCTCATCGGTAATCTGGCGGCCATCGCCACGCCGATTGTCATCGGCTTCCTTGCCAGCGGTGATTCGTTTGCCCCGGCCATTACCTATATCGCCGTATTGGCATTGGCCGGGGCGCTGTCCTACATCCTGCTGGTCGGGAAGGTCGAGCGCATCGAGTTGTAG	MQAHTLSAQASSVTPSRKRFFIMVLLFITVVINYLDRSNLSIAAPALTSDLGIDPIHVGLIFSAFGWTYAAMQIPGGWLVDRVPPRILYSVALLLWSAATVMLGFAASFIALFVLRMAVGALEAPAYPINSRVVTTWFPERERATAIGFYTSGQFVGLAFLTPVLAWLQHAFGWHMVFVATGAVGILWAVIWYAVYREPRDFKGANAAEIELIREGGGLVDIQADTAKAKAKFSWSDLGIVLTQRKLWGIYLGQFCLNSTLWFFLTWFPTYLVKYRGMDFIKSGLLASLPFLAAFVGVLCSGFFSDWLIRRGATVGFARKLPIIGGLLISTSIIGANFVESTPLVIAFLALAFFGNGLASITWSLVSTLAPARLLGLTGGVFNLIGNLAAIATPIVIGFLASGDSFAPAITYIAVLALAGALSYILLVGKVERIEL	PGPT0002190_477	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_GALACTONATE_TRANSPORT,PGPT0002190-dgoT-K08194	NA	NA
D1-36_01605	804	xynR_1	COG1414	HTH-type transcriptional regulator XynR	ATGCAGCAAGACGATCCAAAAATCATCAAGGATGCCGCTCCTACTGGCACGCAGACCTTGCTGCGCGGCCTGGGCGTGGTCCAGGCGGTCGCCAGCGGTGCTCGCGACTTGAAGGAAATCGCCCGGCTGATCGGCACCACCCGCAGCACCACCCACCGCCTGGCCAGTTGCCTGGTGGACGAACGTTACCTGCGCGTGGTGCCGCAAGTGGGTTACCTGCTGGGGCCGAAGTTGATCGAGCTGGGTTTCCAGGCTCGGGAAGAGTTGCCACTGGTGAGCCTGGCGGGGCCGTACCTGGACGAGTTGTCGGCGCTCACCGGGGACACCGTTCACCTGGCGATTCGCGAGGGCGATGAAGTCTTGTATCTGCTGAAGAATCCGGGGCGTAACGGGCCGGAAATGCGTTCGCGCGTGGGCCATCGCATGCCGTTGGCGCGGACAGGGATCGGCAAGGCGCTGATGCTCGATGATGCCCAGGAACAATGGAAGCGGCTGTACGAAATCAGCCTGCCGGCGGGTGGGAAGAATCAATTCTGGCCCCAGCACCAGGAGCAATCCTGGGAACAGTTCCAGCAACGGATGGTGGAGTATGTGGCGGGGGGCTATGCCTTCGACCTGGAGGACAACGAACCGTCGATCCGCTGTGTGGCGGCGCCGATCCGTGACGCCGGCAAGCGCATCGTCGCCGGTATCAGCATCGCCAGCACGGTGCCGTACATGCCTTTGGAAAAGATGGCCGAGCTGATTCCCCTGGTCAAAGGGGTCACAGCCCGGCTGTCGGCGGAACTGGGTGCCAAGGTTTGA	MQQDDPKIIKDAAPTGTQTLLRGLGVVQAVASGARDLKEIARLIGTTRSTTHRLASCLVDERYLRVVPQVGYLLGPKLIELGFQAREELPLVSLAGPYLDELSALTGDTVHLAIREGDEVLYLLKNPGRNGPEMRSRVGHRMPLARTGIGKALMLDDAQEQWKRLYEISLPAGGKNQFWPQHQEQSWEQFQQRMVEYVAGGYAFDLEDNEPSIRCVAAPIRDAGKRIVAGISIASTVPYMPLEKMAELIPLVKGVTARLSAELGAKV				NA	NA	NA	NA	NA
D1-36_01606	1053	adhC2	COG1064	NADP-dependent alcohol dehydrogenase C 2	ATGTACACAGCCATCGGCTATGCCGCCCAATCGGCCACCACGCCCCTCGCCCCCATGAAGTTCGAGCGCCGCAGCCCGCGCGCGGACGATGTGGCGATCGAAATTCTCTACTGCGGCGTCTGCCACTCCGACATCCATCAGGCCCGGAACGAATGGGGCATCGCCGTCTATCCGCTGATGCCCGGCCACGAAATCATCGGCAAAGTCACCGCCGTGGGGGCGAATGTCACCCATCACAAGGTCGGCGACCTGGTAGGCGTAGGCTGCATGGTCGACTCCTGCCGCGAATGCGAAGCTTGCCGTGCCGATCTGGAACAATACTGCCTGGAAGGCATGACCCAGACCTACGCCAGCCCGGACCACGTGAGCGGCGGCCACACCATGGGTGGCTATTCCGACAGCATCGTGGTCAGCCAGCATTTTGTACTGCGCGTCCCTCAGACACTCGACCCGGCCAGCGCCGCGCCGCTGCTCTGCGCAGGCATCACCACCTACTCTCCCCTCAAGCATTATGGCGTGAAGGCCGGAGACAAGGTCGGCGTGCTGGGGATGGGTGGCCTGGGCCACATGGGCATCAAGTTCGCCAAGGCCATGGGCGCGGAAGTGACGTTGTTCACCCGCTCGGCGAGCAAGGCAGAAGAAGCCCGTCGCCAAGGCGCGGACCATGTGATCGTGTCCACCGACGCCGAACAGATGGCGGCCGCCGCCGGACGTTTCAACTTCCTGCTGGACACCATTCCGGTGCAGCACGACCTCAATCCCTACCTCGATACGCTGCATTTCAACGGCGTGCACATCATCGTCGGCCTGGTCGAGCCGGTCGACCCACCCGTACACGCGGCAAAGCTGATCCTGGGTCGCCGAGTGTTGGCCGGCTCGCTGATTGGCGGCATCGCCGAAACCCAGGAAATGCTGGATTTCTGCGCAAAACACAACATCAGCTGCGACATTGAAATGCTCGACATCCGCCAGATCAACGAGGCCTACAGCCGCATGATCGCCGGGGATGTGAAGTACCGCTTCGTTATCGACATGGCGACGCTCAAGGCCTGA	MYTAIGYAAQSATTPLAPMKFERRSPRADDVAIEILYCGVCHSDIHQARNEWGIAVYPLMPGHEIIGKVTAVGANVTHHKVGDLVGVGCMVDSCRECEACRADLEQYCLEGMTQTYASPDHVSGGHTMGGYSDSIVVSQHFVLRVPQTLDPASAAPLLCAGITTYSPLKHYGVKAGDKVGVLGMGGLGHMGIKFAKAMGAEVTLFTRSASKAEEARRQGADHVIVSTDAEQMAAAAGRFNFLLDTIPVQHDLNPYLDTLHFNGVHIIVGLVEPVDPPVHAAKLILGRRVLAGSLIGGIAETQEMLDFCAKHNISCDIEMLDIRQINEAYSRMIAGDVKYRFVIDMATLKA	PGPT0024430_902	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_DEHYDROGENASE|DEHYDRATASE_ACTIVITY,PGPT0024430-yahK-K13979	NA	NA
D1-36_01607	948	rhaS_3		HTH-type transcriptional activator RhaS	ATGTGGCGCCAGACCTGCGATGATGTTTTCATCCCTTTCTTCGTGAAGTTTTCGCTCATGCTGCTGACCCGTCATCTCGATGCCAACGCCACGCTGGTTTCGCTGATAGAACCTTTGGCGACCCACGACGGTTTTGTTCCTACGCGACTGCCAGGGGTGCACGCGCTTCGCGCCAGCCAGGACGTCGCTCGTGGCCCGCAGCTCTACGAACCGAGCCTGGTGATCATTGCCCAGGGCAGCAAACTGGCGTACCTGGGGCCCCGCACAATGGAATATGGCGCGGGGCATTATCTGATCCAGGCCCTGCCGGTGCCGTTCGAATGCGAAACCTACGCCATGCCCAATGCTCCGCTGTATGGAGTTTCCGTCGCGATCGATCGGGCGATGCTGGGCGACCTGGTGCTGGCCATGGGGTTGATGCCGGGGCGGAATCTGCCGCCTCAGACGCCGGAGTCCATGACTTGCGCAGTGCTCGATGACGCCATGCGTGGGTGTGTCGAGCGCTTGTTGCGCTGCTTGCACGACCCGTTGGAATGCCAGGTCATGGGCCAGGCGCGGCTGCGGGAGCTGCTGTTCGTCGCGTTGCGCGGACCCCAGGCCGATGTGCTGCGGGCGTTGGTGGAGCAACAGGGCCAGTTCGCCCGGATTGCCGCTGCCCTGGGCCATTTGCATGCGCACTTCACCGAGCCGTTGAACGTCGAGATCCTGGCCAGTCGCGCGAACATGAGTGCTTCGACCTTTCACGAGCATTTCAAGCGCAGCACGTTGCTATCGCCGGTGCAGTACCTCAAGCGATTGCGCCTACTCAAGGCCCAGCGGCTGCTGCTCTGCGAGGGCATGAGCGTGGCCCAGGTCGCGCACCAGGTGGGGTATCAGAGCCCGTCGCAATTCAGCCGGGAGTACAAGCGTTACTTCGAGCGCAACCCAGGGGACGAACGCGCCGCCTGA	MWRQTCDDVFIPFFVKFSLMLLTRHLDANATLVSLIEPLATHDGFVPTRLPGVHALRASQDVARGPQLYEPSLVIIAQGSKLAYLGPRTMEYGAGHYLIQALPVPFECETYAMPNAPLYGVSVAIDRAMLGDLVLAMGLMPGRNLPPQTPESMTCAVLDDAMRGCVERLLRCLHDPLECQVMGQARLRELLFVALRGPQADVLRALVEQQGQFARIAAALGHLHAHFTEPLNVEILASRANMSASTFHEHFKRSTLLSPVQYLKRLRLLKAQRLLLCEGMSVAQVAHQVGYQSPSQFSREYKRYFERNPGDERAA	PGPT0014658_11	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014658-ypdC-NA	NA	NA
D1-36_01608	1665		COG0644	Electron transfer flavoprotein-ubiquinone oxidoreductase	GTGGAACGCGAATACATGGAATTCGACGTGGTCATCGTCGGTGCCGGCCCCGCTGGCCTGTCTGCCGCTTGCCGACTGAAACAGAAGGCCGCCGAAGCCGGTAAGGAAATCAGCGTCTGCGTGGTCGAAAAAGGCTCCGAAGTCGGCGCGCACATCCTCTCCGGCGCAGTGTTCGAACCGCGCGCCCTGAACGAACTGTTTCCGGATTGGAAAGAGCTCGGCGCTCCGTTGAACACGCCGGTCAAGCGCGATGACATTTATGTCCTGAGAAACGCCGAGACCGCGAGCAAAATCCCTGACTTCTTTGTGCCCAAGACCATGCACAACGAAGGCAACTATATTATTTCCCTTGGCAATCTTTGCCGTTGGCTGGCCCAGCAGGCCGAGAACCTGGGCGTGGAAATCTACCCGGGATTCGCCGCCCAGGAAGCGTTGTTCGACGAAAACGGCGTCGTCCGCGGGATCATCACCGGCGACCTTGGCGTCGACCGCGAAGGCAATCCGAAAGAAGGCCTCTACACCCCTGGAATGGAGTTGCGCGGCAAGTACACGCTGTTCGCCGAAGGCTGCCGTGGCCACATTGGCAAGCAATTGATCAAGCGCTTCAACCTGGACAGCGAAGCCGACACCCAGCACTACGGCATCGGCCTGAAGGAAATCTGGGAAATCGACCCGGCCAAGCATCAACCAGGCTTGGTGGTGCACACCGCCGGCTGGCCGCTGGACATCATGGGCACCGAAAATACCGGCGGCTCTTTCCTTTATCACCTGGAAAACAACCAGGTGGTCGTCGGCTTGATCGTCGACCTGTCCTACAGCAACACCTTCCTGTCACCATTCGACGAGTTCCAGCGCCTCAAGCATCACCCTGTGCTCAAGCAGTATCTGGAAGGCGGCAAGCGCGTCAGTTACGGCGCTCGCGCCATCGCCAAGGGCGGCCTGAACTCGCTGCCCAAGATGGTCTTCAAGGGCGGCGCGCTGATCGGTTGCGACCTCGGCACCCTGAACTTCGCCAAGATCAAGGGCAGTCACACCGCGATGAAATCCGGCATGCTCGCTGCCGAAGCCGTGGCTGATCGCCTGTTCGCCGAGTCCGAAGGCGGCGATGAACTGACGGCCTATGTCGACAGTTTCAAGAACAGCTGGCTGTATGAAGAGCTGTTCGCCAGCCGCAACTTCGGCGCGGCGATCCACAAGTACGGTGCGATCATCGGCGGCGGTTTCAACTGGCTCGACCAGAACATTTTCGGCGGCAAGATTCCATTCACGCTGCGCGACACCAAGCCAGATTATGCTTGCCTGAAACCTGCGGCCGAATGCAAGAAGATCGACTACCCGAAGCCGGACGGCAAGATCAGCTTCGACAAGCTCAGCTCGGTGTTCATCTCCGGTACCAACCATGAAGAAGAGCAGCCTTGCCACCTGAAGCTGACCGACCCGAGCATCCCGATCAGCAAGAACCTGCCGCTGTACGACGAACCGGCCCAGCGCTACTGCCCGGCCGGCGTTTATGAAGTGATTACCAAGGAAGATGGCGAGAAGCGCTTCCAGATCAACGCCCAGAACTGCGTTCACTGCAAGACCTGCGACATCAAGGACCCTGCACAGAACATCACCTGGGTCACGCCGGAAGGCGCCGGCGGACCGACTTACCCGAACATGTAA	MEREYMEFDVVIVGAGPAGLSAACRLKQKAAEAGKEISVCVVEKGSEVGAHILSGAVFEPRALNELFPDWKELGAPLNTPVKRDDIYVLRNAETASKIPDFFVPKTMHNEGNYIISLGNLCRWLAQQAENLGVEIYPGFAAQEALFDENGVVRGIITGDLGVDREGNPKEGLYTPGMELRGKYTLFAEGCRGHIGKQLIKRFNLDSEADTQHYGIGLKEIWEIDPAKHQPGLVVHTAGWPLDIMGTENTGGSFLYHLENNQVVVGLIVDLSYSNTFLSPFDEFQRLKHHPVLKQYLEGGKRVSYGARAIAKGGLNSLPKMVFKGGALIGCDLGTLNFAKIKGSHTAMKSGMLAAEAVADRLFAESEGGDELTAYVDSFKNSWLYEELFASRNFGAAIHKYGAIIGGGFNWLDQNIFGGKIPFTLRDTKPDYACLKPAAECKKIDYPKPDGKISFDKLSSVFISGTNHEEEQPCHLKLTDPSIPISKNLPLYDEPAQRYCPAGVYEVITKEDGEKRFQINAQNCVHCKTCDIKDPAQNITWVTPEGAGGPTYPNM				NA	NA	NA	NA	NA
D1-36_01609	750	etfB		Electron transfer flavoprotein subunit beta	ATGAAGGTTCTTGTAGCTGTCAAACGAGTGGTCGACTATAACGTCAAGGTTCGCGTCAAGGCGGACAACTCCGGCGTCGACCTCGCCAACGTCAAGATGTCGATGAACCCTTTCTGCGAAATCGCCGTAGAAGAAGCCGTACGCCTGAAAGAAAAAGGCGTGGCGACTGAGATCGTCGTCGTTTCCATCGGCCCGACCACCGCCCAGGAACAACTGCGCACCGCGCTCGCGCTGGGTGCCGATCGCGCCATCCTCGTCGAATCCGCCGAAGACCTGACTTCCCTGGCCGTTGCCAAGCTGTTGAAAGCCGTAGTTGACAAGGAACAGCCACAGCTGGTGATCCTCGGCAAGCAGGCCATCGACAGCGACAACAACCAGACCGGCCAGATGCTCGCTGCGTTGAGCGGCTACGGCCAGGGCACCTTCGCGTCGAAAGTCGAAGTGTCGGGCGACAGCGTTGCCGTGACTCGCGAAATCGACGGCGGCGCGCAGACAGTTTCCCTGAAACTGCCGGCCATCGTCACCACCGACCTGCGTTTGAACGAGCCGCGTTACGCGTCCCTGCCAAACATCATGAAAGCCAAGAAGAAGCCGCTTGAAGTGCTGACTCCTGACGCTTTGGGCGTTTCCACCGCCTCCACGAACAAGACCCTGAAAGTCGAAGCGCCGGCTGCACGCAGCGCCGGCATCAAGGTCAAGTCGGTGGCTGAACTGGTCGAGAAACTGAAAAACGAAGCGAAGGTAATCTGA	MKVLVAVKRVVDYNVKVRVKADNSGVDLANVKMSMNPFCEIAVEEAVRLKEKGVATEIVVVSIGPTTAQEQLRTALALGADRAILVESAEDLTSLAVAKLLKAVVDKEQPQLVILGKQAIDSDNNQTGQMLAALSGYGQGTFASKVEVSGDSVAVTREIDGGAQTVSLKLPAIVTTDLRLNEPRYASLPNIMKAKKKPLEVLTPDALGVSTASTNKTLKVEAPAARSAGIKVKSVAELVEKLKNEAKVI	PGPT0001035_4178	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-REGULATION	NITROGEN_REGULATING_FUNCTIONS,PGPT0001035-fixA|etfB-K03521	NA	NA
D1-36_01610	930	etfA	COG2025	Electron transfer flavoprotein subunit alpha	ATGACTATCTTGGTAATCGCCGAACACGATAACAAGGCGCTGGCTCCGGCCACGCTGAACACCGTTGCTGCCGCCGCCAAAATCGGTGGCGATGTCCACGTCCTGGTGGCCGGGCAGGGCGCTGGCGCCGTTGCCGAAGCCGCCGCCAAGATCGCTGGCGTGAGCAAAGTCCTGAACGCCGATAATGCTGCCTATGCGCACCAACTGCCGGAAAACGTTGCTCCATTGGTAGCTGAGCTGGGCAGTGGCTACAGCCACATCCTGGCGGCCGCGACATCGAACGGCAAGAACATCCTGCCTCGCGTAGCTGCTGCATTGGACGTCGACCAGATCTCCGAAATCATTTCGGTAGAAAGCGCCGACACCTTCAAGCGTCCGATCTACGCTGGCAACGCCATCGCCACCGTGCAATCGACCGCTGCGATCAAGGTCATCACCGTTCGCGCCACCGGTTTCGACCCGGTTGCCGCCGAAGGTGGTTCGGCTGCCGTTGAAGCCGTGGGCGCTGCCCACGACAAGGGCATTTCCAGCTTCGTCAACGAAGAGCTGGCCAAGTCCGATCGTCCTGAGCTGACCGCCGCCAAGATCGTCGTTTCCGGCGGCCGCGGCATGCAGAACGGTGACAACTTCAAGCACTTGTACGCCTTGGCCGACAAGCTGGGCGCTGCCGTTGGCGCATCCCGCGCAGCGGTCGACGCCGGTTTCGTTCCCAACGACATGCAGGTCGGCCAGACCGGCAAGATCGTTGCACCACAGTTGTACATCGCGGTCGGTATCTCCGGCGCGATCCAACACTTGGCCGGCATGAAGGACTCCAAGGTGATCGTTGCGATCAACAAGGACGAAGAAGCGCCAATCTTCCAAGTGGCCGACTACGGCCTGGTGGCGGACCTGTTCGAAGCCATCCCTGAGCTGGAGAAGCTGGTCTAA	MTILVIAEHDNKALAPATLNTVAAAAKIGGDVHVLVAGQGAGAVAEAAAKIAGVSKVLNADNAAYAHQLPENVAPLVAELGSGYSHILAAATSNGKNILPRVAAALDVDQISEIISVESADTFKRPIYAGNAIATVQSTAAIKVITVRATGFDPVAAEGGSAAVEAVGAAHDKGISSFVNEELAKSDRPELTAAKIVVSGGRGMQNGDNFKHLYALADKLGAAVGASRAAVDAGFVPNDMQVGQTGKIVAPQLYIAVGISGAIQHLAGMKDSKVIVAINKDEEAPIFQVADYGLVADLFEAIPELEKLV	PGPT0001040_5001	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-REGULATION	NITROGEN_REGULATING_FUNCTIONS,PGPT0001040-fixB|etfA-K03522	NA	NA
D1-36_01611	825			hypothetical protein	ATGGATCTTCGCCGTTTGGCTTGCTCGTCGTTGTTCTGGGCGTTGGCGTGCGCGCCAGGGCTGTCTGCCGCCGCTGGCAAATGCGAGCGCCTGATCGCTACTGGCAGCCCCGATGCGCCGCCTTATCTTTGGCAAGATCCCCAGGATCCCAAGCATTTGATCGGTGCCGGGGCCGACCTGCTGGCGCAGGTGGCGCAGGCGCTGGGGATCAAGATCGAATTGCTCTACGCCGGCAAACGCGCCCAGGCCTTGGACGAAGTGCGCAGCGGACGCATGGACCTGCTCACCGATGCCCCGCTGACCACGACTGGGTTGCAAGCCTTGGATTACGTGCACCCGCCACTGCTGGAGAACGATTACCTGGTCTGGACACGCAAGGATTCGACGCTGGTGGTCGAGCGACCGGAGGATCTTCACGGGCATAACGGCGCCTTGTCGGAAAAGGCTCGCATGACACAAGGATTTGGCCTTTTCGCTGAGCAGAATCTAACCGTGACCCGTACGCCCAACCTGACCCAGGCCTTTCAGAAACTGCTCCTGGGTGAAGTGGAATATGTACTGGCGGGGCGCTACTCGGGCCTGGCGATGGCGCAGACGCTAGGGATGGCTAATGACTTGCAAGCCGCGCCGCAAGCGGTGGACAAGCCGGGCTTGTTCCTCGCGCTTTCCCATAACTCCGCCTGCAATGACCCATGGTTACGCGGACAGCTGGCGCAAAAGATGACAGAATTGGCCGCGTCTGGCCTGGCGGAGGCTGTGTTGCAGCGCAATCTGGAGCGTTGGAGAGCACAGTTGAAGTCCCCCGTCAGCGCCCCCAAACAGTAG	MDLRRLACSSLFWALACAPGLSAAAGKCERLIATGSPDAPPYLWQDPQDPKHLIGAGADLLAQVAQALGIKIELLYAGKRAQALDEVRSGRMDLLTDAPLTTTGLQALDYVHPPLLENDYLVWTRKDSTLVVERPEDLHGHNGALSEKARMTQGFGLFAEQNLTVTRTPNLTQAFQKLLLGEVEYVLAGRYSGLAMAQTLGMANDLQAAPQAVDKPGLFLALSHNSACNDPWLRGQLAQKMTELAASGLAEAVLQRNLERWRAQLKSPVSAPKQ	PGPT0020800_7693	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
D1-36_01612	360			hypothetical protein	GTGACTATTCGACCTCTTTTCGCTGCCCTGGCCGTTCTGGCTCTGGCGGGTTGCGCAGCCGATCCAGCGCCGAATGAACAGATCCGCCTGACTGAACAGGCCATTGAGCAAGCGCGTGCGGTGGGTGCCACCACCGACGAAGTACCCGAATTGAAACTGGCTGAAGAAAAATTCACGCGCGCCAAATCCAACATGGCCGATGAATCCTATAAAAAGGCGCGCATGCGCGCTGAACAGGCCGAGTTGGATGCACGCCTGGCCGAAGCGAAGGTGCTGACGCTCAAGAGCCAGGAGCAATTGAACGTGCTCGACACTCGCATCAAGCGCTTGCGCAAACAGCTGAGGGAGGATGCCCAATGA	MTIRPLFAALAVLALAGCAADPAPNEQIRLTEQAIEQARAVGATTDEVPELKLAEEKFTRAKSNMADESYKKARMRAEQAELDARLAEAKVLTLKSQEQLNVLDTRIKRLRKQLREDAQ				NA	NA	NA	NA	NA
D1-36_01613	810	pal_4		Peptidoglycan-associated lipoprotein	ATGAAGCACTCCCAAGTATTGGGCGGCCTGGTCCTCGCGGGGCTGGCCAGTCTGTACGGTTGCGCCGGACAGCGCAGCGAGGTGGCGCTGGAAAAGGCCAGCGATGACTTCCAGAAGGTCAAGGAAGATGCCAACGTGCTGCGTGCGGCGCCCCGGGACGTGATCCGGGCCGGCGAATCCCTGGCCCGCGCCGATCGCTTGTCCAGCTACTGGGGTAGCGGTGAGGACGTGCAGCATTACGCCTACTTGAGTCAGCGCTACAGTCAGATTGCCCGTGAGCACAGCAACCAGGTGCTCAACGAAGAGCGCGCGACGAAGCTCGAGCTGGAGCGCCAGCGCCTGCAGCTGGCCCTGCGCGAATCCAAGCTGCTGAGTGTCCAGCAGCAGGGCAAGTGGCTTGAAGAGCAGATCATGGCGATGGCGACCACCCAGACCGATCGCGGCCTGGTGATGACCCTCGGGGATGTGCTGTTCGATACCGGCGAAGCCGAGTTGAAAAACTCGGCCAATCGCGTGGTGCTCAAGATCGTGCAGTTCCTGCAACTCAATCCCAAGCGCGTGGTGCGCATCGAGGGCTACACGGACAGCACCGGCGGCAAGCAGGAAAACCTCAAGCTGTCCCGCGACCGCGCTCAGGCCGTGGCGGACGTGCTGGTGGACCTTGGCATTGACGAAAAGCGCATCCAGGTCGAGGGCTACGGCGATCAATACCCGGTGGACGTCAACGCAACCGAGCGTGGCCGGGCGCAGAACCGTCGCGTTGAAATCGTATTCTCCGATGACAAGGGCCAGCTCGGCGCCGCCCGTTGA	MKHSQVLGGLVLAGLASLYGCAGQRSEVALEKASDDFQKVKEDANVLRAAPRDVIRAGESLARADRLSSYWGSGEDVQHYAYLSQRYSQIAREHSNQVLNEERATKLELERQRLQLALRESKLLSVQQQGKWLEEQIMAMATTQTDRGLVMTLGDVLFDTGEAELKNSANRVVLKIVQFLQLNPKRVVRIEGYTDSTGGKQENLKLSRDRAQAVADVLVDLGIDEKRIQVEGYGDQYPVDVNATERGRAQNRRVEIVFSDDKGQLGAAR				NA	NA	NA	NA	NA
D1-36_01614	1443	norG_2	COG1167	HTH-type transcriptional regulator NorG	ATGACCAACCTCCTGCTCTATCAACGTATTGCGCAACAGTTGGCGGAAGACATCCGGCGTGGGGTGTATCAGCCGGGTGAACGCGTGCCTTCGGTGCGCAAGATGAGTTCGCAGCTCAACGTCAGCCATGCCACCGTCCTCCAGGCCTATGCGAACCTTGAAGACCAGGGGCTGATTCGCGCGCGGCCGCAATCGGGCTATTACGTGCACCAGACGCCGGCGTTGACCGCGCCGACGCCGGACATTGCCCGGGTCGAGCGCCCCGGATTGGTGACGCGCAGCAGCATTATCCAACAGGTGTTGGTCGAGTCGCGCCGCGAAGGGGTGTTTCCGCTGGGCGCGGCGGTGCCGAGCGTTGATTATCTGCCCGTGCGGGCGTTGCATCAGCAGTTAGCCAAGGTCACGCGTTTCCACAGCCCGCGGGCGTTCAGCTACATGTTCAGTCCCGGCTTCGAGCCGTTGCGCCGCCAAGTCGCGATCCGCATGCGTGACGCCGGCGTGGTGGTGGATCCTTCCGAGGTCGTCATCACCCATGGCTGCGTCGACGCCCTGCAGATGTCCTTGCGCGTGCTGACGCGTCCCGGGGATTTGATCGCCGCCGAGTCGCCCACTTACTACGGGCTGCTGCAACTGGCGGATCTGCTGGGCCTGAAGGTCATCGAGATCCCCAGCGACCCGGTCACTGGCATGAGCCTTGAAGCCTTGCAATTGGCGGCCAACCAATGGTCGATCAAGGCGCTGGTCCTGACCACGCGCCTGAGCAATCCCCTGGGTGGCACGATGCCCGAAGAGCGGCAAAAACAACTGCTGCGCCTGGCATCGGATTTCGATATCCAGATCGTCGAGGACGATATCTATGGCGAACTGATGTTCGAACAGGGCCGGACCAAGGCATTGAAGGCCTACGATCGCTTGGATCGGGTGATCTACTGTTCGAGTTTCTCCAAGACCCTTTCGCCCGGCGTTCGGATTGGCTGGATGATCGCCGGCAAGTTCCAGCAGGAGATCCAGCGACTCCAGACGTTCAGCACCCATTCGGCGTGCAGCGTCACTCAGATGGGGATCGCGGCTTACCTGGAGAATGGCGGCTATGACCGGCACTTGCGCTATATTCGCCAGGAGTACCGCAAGAACCTCAGCGCTTTTCAATTGGCGGTGCAACAGCACTTTCCGGAAGGCACGCAGATGAGTCGTCCCACCGGTGGGTTCATTCTTTGGGTCAGCCTGCCGGGGCGGGTCAACACCCAGGAACTGCACGTCCGCGCGCTGCAACAGGGCATCAGCATCGCCCCCGGGCTGATTTTCAGTAATACCGAGCAATTCAACCACTGCATCCGCCTGAATTGCGGCATACCCTGGAATCGCGAGGCAGAGCGTGCGTTGATGACCCTGGGGTTGCTGGCGACCCAGTTGTGCCAGGAGACCGGCAGCGGGTTTTTATAG	MTNLLLYQRIAQQLAEDIRRGVYQPGERVPSVRKMSSQLNVSHATVLQAYANLEDQGLIRARPQSGYYVHQTPALTAPTPDIARVERPGLVTRSSIIQQVLVESRREGVFPLGAAVPSVDYLPVRALHQQLAKVTRFHSPRAFSYMFSPGFEPLRRQVAIRMRDAGVVVDPSEVVITHGCVDALQMSLRVLTRPGDLIAAESPTYYGLLQLADLLGLKVIEIPSDPVTGMSLEALQLAANQWSIKALVLTTRLSNPLGGTMPEERQKQLLRLASDFDIQIVEDDIYGELMFEQGRTKALKAYDRLDRVIYCSSFSKTLSPGVRIGWMIAGKFQQEIQRLQTFSTHSACSVTQMGIAAYLENGGYDRHLRYIRQEYRKNLSAFQLAVQQHFPEGTQMSRPTGGFILWVSLPGRVNTQELHVRALQQGISIAPGLIFSNTEQFNHCIRLNCGIPWNREAERALMTLGLLATQLCQETGSGFL				NA	NA	NA	NA	NA
D1-36_01615	516			hypothetical protein	ATGGACATCTCTGCCGTAGGTGTCGTCGTGTCTATGAAAGCCATTGTTCCTGCTGCGTGGGTTTTGATCGGCCTGTTGAGTGTCCTCGACATGGGGAGTGCCATGGCAGCTTCGGCCCAAGAGAAACCGGCCGCCAGCGCCGCCAAGCCCACCGCGAAGAAAACCGCCGAGATAAAGAAGACTGTCAAAAAGACGCCCGCCAAAACGGCCGCCGCAAAGAAAAAGCGCGCCCCCATTGCCTCCAAGAGCAAATCGGCCCGCGAAGTCGCCAAGACCCCTTTACCACCGGCCAGGCTGGACCTGAGCCTGCCACACGATATGGTCGATCAGTTGCAGCCACCCGGCAAGGTGCCCCTGCCCAAGCGTGAGCCACTTTTGCCGTCCATGTTTGGGGAAAAGCCGGGCCCGTTCCAGCTCAACGGCCGTCTGTTGAGCAACGAGATGCAGCTGCCCTTGCGCAATCAGGAGCGCAACGAAGTGGAAGGCGCGGCACTGGAATTCGAATTCAAGCAATAA	MDISAVGVVVSMKAIVPAAWVLIGLLSVLDMGSAMAASAQEKPAASAAKPTAKKTAEIKKTVKKTPAKTAAAKKKRAPIASKSKSAREVAKTPLPPARLDLSLPHDMVDQLQPPGKVPLPKREPLLPSMFGEKPGPFQLNGRLLSNEMQLPLRNQERNEVEGAALEFEFKQ				NA	NA	NA	NA	NA
D1-36_01616	255			hypothetical protein	ATGAAGTGCCGTGAAGGCTGTGGCGCCTGTTGCATCGCCCCTTCCATCAGCTCTCCCATCCCTGGCATGCCCCAAGGCAAGCCGGCGGGAGAACGTTGCGTGCAGTTGTCGGCCGGTAATCTCTGCCTGATCTTCGGCCAGCCTGAACGCCCGGCGGTGTGTTCGGCGTTTGAGGCGGACCTTGAGGTCTGCGGCAATAGCAGCGAAGAAGCCATTCGATTGATTGGCTGGTGGGAGCAGGTCACGGCAGCGTAG	MKCREGCGACCIAPSISSPIPGMPQGKPAGERCVQLSAGNLCLIFGQPERPAVCSAFEADLEVCGNSSEEAIRLIGWWEQVTAA				NA	NA	NA	NA	NA
D1-36_01617	609			hypothetical protein	ATGGGTTCGCTGCATCGTATGGCTGTGTTGTGTGGATTGACCGTCCTGTTGGCAACAGCTACCGCCCAGGCAGAAGACTGGCAAGTCGCCAAAGAAAAGGAAGGTATCCAGGTGTCGCTGAGTGAGGTCGCTGGCTCGAAGTACAAGGCCTATCGCGGCGTGACCGTCATGAAAACCACCATGGCCAAACTGCGGGCCCTGCAGGAAGACGTTGCGGATGCGTGTGGATGGATCCATGAATGCAAAAGCCAGAAGTTGCTCAAGCACGAGGGCGACAAGAGCTGGACGTACACCCAATTCAATACGCCGTGGCCGGTCACGGCCCGCGACTCCGTGCTGGAAGTCACTACCGTTGAAGGAGCTGATGGCAGCCTCACTCGCAAACTCAAGGGCGTGCCTACCTATCTGCCGGAAGAGAAAGGCTTTGTGCGCGTGACGCAGGTCGAAGGCTTCTGGAAGTTCACCCCCAAGGCGGCGAACCAGATCGAAGTGACTTACCAAGTCCACACCGAGCCGGGGGGTGATGTACCGTCCTGGCTGGCTAACAAGTTCGTGGTGGACGCGCCGTTCAATACGCTGAAAGCGCTGAAAGAGCGTGCCGAAAAATAA	MGSLHRMAVLCGLTVLLATATAQAEDWQVAKEKEGIQVSLSEVAGSKYKAYRGVTVMKTTMAKLRALQEDVADACGWIHECKSQKLLKHEGDKSWTYTQFNTPWPVTARDSVLEVTTVEGADGSLTRKLKGVPTYLPEEKGFVRVTQVEGFWKFTPKAANQIEVTYQVHTEPGGDVPSWLANKFVVDAPFNTLKALKERAEK				NA	NA	NA	NA	NA
D1-36_01618	237			hypothetical protein	ATGCAGAAGTGGGAAATCACTTTCGTTGATGATCACGGCGAAGCCGTCGCCGAGCAGTTCGATTACGACCAGGAGCCCACAATGGAACAGGCCGCCCAATTGATCCGCCAGAGACTGCTCCCCGTACCCGCCAAGCTTGATCTCAACGATCTGGAAGGTCGCACGCAAGACCCTACGCTCAAAAGCCTCAAGACCCAAAACAGCATTGAAATCATCAGTATTAAACCGATTTCATGA	MQKWEITFVDDHGEAVAEQFDYDQEPTMEQAAQLIRQRLLPVPAKLDLNDLEGRTQDPTLKSLKTQNSIEIISIKPIS				NA	NA	NA	NA	NA
D1-36_01619	342			hypothetical protein	ATGAGCACAGCCTATCAAGAAGACATCAGCACCAGTGTGCTGCGCCGCATGAAAGAAGGCGGTTTCGATTTCTCCCAATTTCATCCCATCGAGTTCTATGCCATTTTCCCCGACGAGGAACGGGCGCGCAGGGCGGCAGGCCAATTCAGGGGGGAATCGCTGAATGCGCAGATCAGCGCGCGGGACGATGGAGCCTGGTCGCTCGAACTGAGCCGGGTGATGTACGCCACTTATGATGACATCGGCGATTTCGAGTTGAACTTCGAGGCCGTGGTCGAGCCCTTGGGTGGCGTTATCGAAGGGTGGGGCGTCAAGCAGGAGATCCGTCGCCTGCAGGCCTGA	MSTAYQEDISTSVLRRMKEGGFDFSQFHPIEFYAIFPDEERARRAAGQFRGESLNAQISARDDGAWSLELSRVMYATYDDIGDFELNFEAVVEPLGGVIEGWGVKQEIRRLQA				NA	NA	NA	NA	NA
D1-36_01620	813			hypothetical protein	TTGAAAGCACTTATTGTCCTCGGGGCACTGCTGATCAGCGGCCCTCTGTACGCGGCGCAGCTCACGCTGGAGCTGGGCGCGGGTACCCGCACCTGGCAGACTGAAGAGCTACTCAAGCATCCCGACGTTCAAACGGTTCAGATCAACGAAGACGTTTCCTACAAGAAACCCATGAGCTATCGCGCCGTGCCGTTGACCTCGCTATTGACCGGGGTGCAACCGAACGATCATCTGCAAGCCGTAGCCCTGGACGGTTTCGCAGCTGAACTGCCAGCGGCGCCATTACTCAATGCACACGGCGCCCGCGCGTGGCTGGCGATCGAGGACCCGACCAAACCCTGGCCGGCGTTGGGGGAAGGCAAGCAAAGCGCCGGTCCTTTCTATCTGATCTGGACCGATCCTCAAGCGGGCCATATCAGCCCCGAGCAATGGCCGTATGCGCTGGCAAGCATCAAGCGCCTGTCACCAGTGGCCGACCGCTTCCCCGCCCTGCTGCCCTCGCCCAGCCTGGCCAAAAACGATCCGGTCAACAAAGGCTTCGAGTTGTTTCAGAAAAACTGTTTGGCTTGCCATCGACTCAACGGCGCGGGTGATGCACAGTTCGGACCGGACCTGAACATTCCCTTCAACCCTACGGAATACTTTTCGAAAGATTTCCTCAAACGTTACATCCGTGACCCTCAAAGCTTGCGCCACTGGCCACAGGGTAAAATGCCGGGATTCTCCGCAGCGGTGTTGCCGGATTCTGAGCTTGACCTGTTGGTGGGGTATTTGAAGCACATGGCAGGACGCAAGCAGCCGTTGAAGCCGTAG	MKALIVLGALLISGPLYAAQLTLELGAGTRTWQTEELLKHPDVQTVQINEDVSYKKPMSYRAVPLTSLLTGVQPNDHLQAVALDGFAAELPAAPLLNAHGARAWLAIEDPTKPWPALGEGKQSAGPFYLIWTDPQAGHISPEQWPYALASIKRLSPVADRFPALLPSPSLAKNDPVNKGFELFQKNCLACHRLNGAGDAQFGPDLNIPFNPTEYFSKDFLKRYIRDPQSLRHWPQGKMPGFSAAVLPDSELDLLVGYLKHMAGRKQPLKP				NA	NA	NA	NA	NA
D1-36_01621	96			hypothetical protein	ATGTTCAAACATACGAAAGTTCGTCAAGCCGGACTCATTCTCTTCGCCACGACGCTGCTGTTGATCTTGCCGAACATCACTAAAGTGATCGGCTGA	MFKHTKVRQAGLILFATTLLLILPNITKVIG				NA	NA	NA	NA	NA
D1-36_01622	1206	fadA_1	COG0183	Putative acyltransferase	ATGACCGAAGCTATGATTTTTGACGCATTACGCACGCCTCGCGGTAAGGGAAAAGCTGACGGCGCCCTGCACACCGTCAAGCCGGTGAACCTGGTCGGTGGCCTGTTGACGGCGTTGCGCCACCGCATGAGCCTGGACACCAGCCAGGTGGACGACATTGTGCTCGGCTGCGTGACGCCGATCGGCGATCAAGGTGCCGACATCGCGAAGACCGCCGCCCTGGTGGCTGACTGGGATGTCAGCGTGCCCGGCGTTCAGCTCAACCGCTTTTGCGCTTCGGGTTTGGAAGCGGTGAACCTGGCCGCGATGAAGGTTCGTTCCGGTTTCGAAGACCTCGTAGTGGCGGGGGGCGTCGAGTCCATGTCCCGTGTGCCTATGGGCAGCGATGGCGGCGCATGGGCGCTGGACCCGCAATCCAATCTGCACGGCCATTTCGTTCCCCAGGGCATCGGCGCCGACTTGATTGCCACCCTCGAAGGTTTCAGTCGCGAGGACATCGATGCCTTTGCGTTGCAATCCCAGCAAAAAGCCGCGCGAGCACGGGAGAACGGCTCGTTCGATAAATCCCTGGTGGCAGTACGGGACCAGAATGGCATCGTGCTGCTCGACCATGACGAATTCATCCGCGCTGACTCGACGCTCGAAGGCCTGGGCAAACTGCGGCCAAGCTTCGAAGCGATGGGCCAGATGGGCTTCGACGCCACGGCATTGCGCGTCTATAGCCATGTGGAGCGGATCAATCATGTGCACACGCCGGGCAATAGCTCGGGCATCGTCGATGGCGCCGCGCTGATGCTCATTGGCTCCCCGGCCAAAGGTCGCGAGCTGGGCTTGCAACCCCGGGCGCGGATTGTTGCCACTGCCGTCACCAGCAGCGAGCCGACCATCATGCTCACCGGTCCGGCCCCTGCCACTCGCAAGGTATTGGCCAAGGCTGGCCTGCGGGTCGAGGACATCGACCTGTTCGAAGTCAACGAAGCCTTTGCCTCGGTAGTGCTCAAGTTCATCAAGGACATGGCCATCGATCCCGCCAAGGTCAACGTCAACGGCGGCTCGATCGCCATGGGCCATCCGTTGGGCGCCACCGGTTGCGCAATCCTTGGCACGCTGCTCGATGAGTTGGAGGCGCGTCACCTGCGCTATGGCCTCGCGACACTGTGTGTCGGCGGCGGCATGGGCATCGCCACCCTTATCGAACGCCTCTGA	MTEAMIFDALRTPRGKGKADGALHTVKPVNLVGGLLTALRHRMSLDTSQVDDIVLGCVTPIGDQGADIAKTAALVADWDVSVPGVQLNRFCASGLEAVNLAAMKVRSGFEDLVVAGGVESMSRVPMGSDGGAWALDPQSNLHGHFVPQGIGADLIATLEGFSREDIDAFALQSQQKAARARENGSFDKSLVAVRDQNGIVLLDHDEFIRADSTLEGLGKLRPSFEAMGQMGFDATALRVYSHVERINHVHTPGNSSGIVDGAALMLIGSPAKGRELGLQPRARIVATAVTSSEPTIMLTGPAPATRKVLAKAGLRVEDIDLFEVNEAFASVVLKFIKDMAIDPAKVNVNGGSIAMGHPLGATGCAILGTLLDELEARHLRYGLATLCVGGGMGIATLIERL	PGPT0008320_4804	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626	NA	NA
D1-36_01623	2145	fadJ_1	COG1024	Fatty acid oxidation complex subunit alpha	ATGACCCATGCCATTCGTTTCGAAACCGGCCCGGACCGGATCGTCGTGCTGACCCTGGACATGCCGGGGCAGGCGGCCAACACCATGAACGCGATATACCGCGAGGCCATGGGCGCCTGCGTTGCTCGCCTGACCGCCGAAAAAGACTCGATCGCCGGCGTGATCATCACTTCGGCCAAAAAGACGTTTTTTGCAGGCGGCGACCTGAACGAGTTGGTCCAAGTCGACAAATCCCAGGCCCAGGCCTTTTACGAAACGGTGTCCGAGATCAAGGCGCAGCTGCGCGCATTGGAGACCCTCGGCAAACCGGTGGTCGCCGCTATCAACGGTGCGGCCCTGGGCGGCGGCTGGGAAATCTGCCTGGCCTGCCATCATCGGGTGGCGCTGGACCATCCCTCGGTGTTGATCGGCCTGCCGGAAGTCACCCTTGGCCTGTTGCCGGGCGGCGGCGGTGTGGTGCGGATGGTGCGCTTGCTGGGCTTGGAGAAGGCATTGCCGTATTTGCTCGAAGGCACCAGGGTTCGTCCGCAACAAGCGCTGCAGGCTGGTTTGATCGATGAGCTGGCGACGGATCGCGACGAGCTGCTGGACAAGGCCCGGGCCTGGATTCTCGCTAACCCGAGCGTGGCCCAGCCGTGGGACATGAAGGGCTATCGGATCCCTGGGGGCACGCCGTCCGCCCCGGCGGTCGCCCAGATGCTGGCGATCGCGCCTTCGATTCTGCGCAGCAAGACCCAGGGCTGCCTGCCCGCACCGGAAAAAATCCTCTGTGCGGCGGTGGAAGGCGCGCAGGTAGGCTTCGATGCGGCGCAGTTGATCGAAACCCGATACTTCACCGAGCTGACGACTGGCCAGGTGGCGAAAAACCTGATCGGTACGTTCTGGTTCCAACTCAACGAGATCAAGGCCGGAGGTTCCCGCCCGCAGGGTTTTGCGCCTTTTCTGACGAAAAAAGTCGCTGTGCTCGGCGCCGGGATGATGGGCGCGGGTATCGCCTATGTCAGTGCTGCGGCCGGCATCGACGTGGTACTCAAGGACATTGACCTGGACGCAGCGCAAAAGGGTAAGTGCCGCGCGGCGTTGCTGCTGGACAAGAAAGTCGTCCATGGCCTACTCACCGCGCAACAGCGCGACGCCATCCTGGCGAGGATCCAGCCGACCGACAGCGATGCGGACCTGGTCGGCTGCGACCTGGTCATCGAGGCCGTATTCGAAGACCGCGTCCTTAAAGCCAGCGTGACGGCCGCAGCCCAAGCAGTGGCCGGGCCGGACGCGGTGATTGCGTCCAATACTTCGACCTTGCCCATCACCGGCCTGGCGATGGCGGTGCCGGACGAGGGCAAATTCATCGGGCTGCATTTCTTCAGTCCAGTGGAAAAAATGCCCTTGGTCGAGATCATCAAGGGTGCCCGCACCTCTGACGAAACGCTTGCCTGTGGCTTCGATTTCGTCCGGCAAATCGACAAGACGCCGATTGTCGTCAACGACAGTCGTGGGTTTTTCACTTCGCGGGTGTTCGGCACCTTTACCCACGAAGGCATCGCGATGCTCGGCGAAGGCGTGAGCGCGCCGATGATCGAAACCGAGGCACGCAAGGCCGGGATGCCAGTCGGGCCGCTGGCTGTCTCCGACGAAGTTTCACTCAGCCTGATGAGGCATATCCGCACGCAGACTGCCAAAGACTTGCGAGCAGAGGGGAAAGCTCCGACTGAGCACGCCGCATTCGCTGTGATCGATCTGCTGCTCGAAGAATACAAACGGCCAGGTAAAGCGGCCGGAGCCGGTTTCTATGAGTACCCAACCCAAGGGCAGAAATATCTCTGGCCGGGGCTCAAGGCGCGTTTCGACAAACCCGCGGGGCAGATTCCAGCCCAGGATATCCGTGATCGCCTGCTGTTCATCCAGGCCCTGGAAACCGTTCGTTGCGTCGAGGAAGGCGTTGTCACCTCGACGGCGGACGCCAATATTGGCTCGGTCTTCGGCATCGGATTCGCGGTCTGGACGGGCGGGGCGTTGCAGTTTATCAACCAGTACGGTTTGCAGGCGTTTATCGCCCGCAGCCAGTACTTGGCCGAGCAATACGGCGAACGTTTTTCACCCCCGGCACTGTTGCTGGAAAAGGCCGCCGCTCAAGCACTGTTCTGA	MTHAIRFETGPDRIVVLTLDMPGQAANTMNAIYREAMGACVARLTAEKDSIAGVIITSAKKTFFAGGDLNELVQVDKSQAQAFYETVSEIKAQLRALETLGKPVVAAINGAALGGGWEICLACHHRVALDHPSVLIGLPEVTLGLLPGGGGVVRMVRLLGLEKALPYLLEGTRVRPQQALQAGLIDELATDRDELLDKARAWILANPSVAQPWDMKGYRIPGGTPSAPAVAQMLAIAPSILRSKTQGCLPAPEKILCAAVEGAQVGFDAAQLIETRYFTELTTGQVAKNLIGTFWFQLNEIKAGGSRPQGFAPFLTKKVAVLGAGMMGAGIAYVSAAAGIDVVLKDIDLDAAQKGKCRAALLLDKKVVHGLLTAQQRDAILARIQPTDSDADLVGCDLVIEAVFEDRVLKASVTAAAQAVAGPDAVIASNTSTLPITGLAMAVPDEGKFIGLHFFSPVEKMPLVEIIKGARTSDETLACGFDFVRQIDKTPIVVNDSRGFFTSRVFGTFTHEGIAMLGEGVSAPMIETEARKAGMPVGPLAVSDEVSLSLMRHIRTQTAKDLRAEGKAPTEHAAFAVIDLLLEEYKRPGKAAGAGFYEYPTQGQKYLWPGLKARFDKPAGQIPAQDIRDRLLFIQALETVRCVEEGVVTSTADANIGSVFGIGFAVWTGGALQFINQYGLQAFIARSQYLAEQYGERFSPPALLLEKAAAQALF	PGPT0001870_1311	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001870-fadJ-K01782	NA	NA
D1-36_01624	735			hypothetical protein	ATGTCGCTACGCATCTGCATTCTGGAAACCGATATCCTGCGTCCAGAACTGGTCGACCAGTATCAGGGTTACGGGCAGATGTTCCAGCGCCTGTTTTCGCAGCAGCCCATTGCGGCAGAATTTGTCGTGTACAACGTGGTGGAAGGGCAGTATCCAAGCGTCGATGAACAATTCGACGCTTATCTGGTGACCGGCAGCAAGGCGGACTCCTTCGGGACCGATCCGTGGATACAGACGCTCAAGACTTATCTCCTGGACCGCTACCAGCGTGGCGACAAGCTGCTAGGCGTCTGCTTCGGCCATCAATTGCTGGCACTGCTGTTGGGCGGCAAGACCGAGCGCGCCAGCCAGGGTTGGGGGGTGGGCACCCATCGCTACAAACTCGCGGCCAAGGCCCCCTGGATGAGCCCGGTGAAGGAGGAGCTGACCTTGTTGATCAGCCATCAGGATCAAGTCACCGAGCTCCCGGAAAATGCCACCGTCATAGCCTCGAGCGATTTCTGCCCGTACGCGGCTTATCACATCAATGATCAAGTCCTGTGCTTCCAGGGCCATCCGGAATTCATCCACGACTATTCCCGGGCCTTGTTGGAGATTCGCCAGCAACACCTCGGTGAGAAGATCTACAGCCAGGGCGTGGCGAGCCTGGAACAGGAACATCACGGTACGACGGTAGCGGAGTGGATGATGCGTTTCGTCGCCCATAAACCCCAAGCCGATGCCGCCCAGGGCTGA	MSLRICILETDILRPELVDQYQGYGQMFQRLFSQQPIAAEFVVYNVVEGQYPSVDEQFDAYLVTGSKADSFGTDPWIQTLKTYLLDRYQRGDKLLGVCFGHQLLALLLGGKTERASQGWGVGTHRYKLAAKAPWMSPVKEELTLLISHQDQVTELPENATVIASSDFCPYAAYHINDQVLCFQGHPEFIHDYSRALLEIRQQHLGEKIYSQGVASLEQEHHGTTVAEWMMRFVAHKPQADAAQG				NA	NA	NA	NA	NA
D1-36_01625	972	corA	COG0598	Cobalt/magnesium transport protein CorA	ATGGGTAGAGTTGTTGCTGCTGCGGTTTACAGCGCCGGTAAGAAAGTCACCAATATCACCCTCGATGAAGGCAGCGCCTGGGCGGCGAAGCCCGGACACTTCGTGTGGATCGGCCTCGAAGAGCCCAGCACCCAGGAACTGACCAACCTGCAGCGCCAGTTCAACCTGCATGAGCTGGCGATTGAAGACGCGATGGAGAAGCACAGCCGGCCCAAGCTGGAAACGTTCGGCGATGCGCTGTTCATCGTCACGTATTCGCCGGTGCGCAAGGACGGCAAGCTGCAGTTCATCGAAACCCATATCTTCGCCGGCAAGGGCTACATCATTACCGCCCGCAACGGTCACTCGGCGTCTTACGCCCATGTCCGACAACGCTGTGAGGCACGTCCTATCCTGCTGGAGCACGGGGAGGATTTCGTTCTTTACGCAATCCTCGATTTCGTCATTGAAAATTACCTGCCGGTGGGCGAAGCCATTCATGCCGAGATCGATGAACTGGAGCGCAACGTGCTATGCAGCGCCCTGAATGAGCGGGACATCCAGAACCTGCACAGTTTGCGCCGCGACGTGCTGCGCCTGCGTCGCTATGCGGCGCCGATGGTGGAGATCAGCGAAGAACTGCAGCGCCTGGATTTCCCCTTCATCGACAAGAACATGAGCCCCTATTTCCGCGACGTGCAGATCCACGTCACACGGCAGATGGAAGACTTGGCGACCCTGGCGGACATCGCCAGCCAGACGATTGAAATCGGCGTGCTGCTCGAAGCCTCGCGCCAGAGCGTGGTGCAACGCAAGTTCGCCGCCTGGGCGGCAATCCTGGCGTTTCCGACGGCGGTGGCCGGCATCTACGGGATGAACTTCGAAAACATGCCGGAGCTGACCTGGCACTATGGATATTTCCTGGTGCTCGGGTTCATCGGGGTTGGATGTACCGCGTTGTGGGCAAGTTTCAAGCGGTCGGGGTGGTTGTAG	MGRVVAAAVYSAGKKVTNITLDEGSAWAAKPGHFVWIGLEEPSTQELTNLQRQFNLHELAIEDAMEKHSRPKLETFGDALFIVTYSPVRKDGKLQFIETHIFAGKGYIITARNGHSASYAHVRQRCEARPILLEHGEDFVLYAILDFVIENYLPVGEAIHAEIDELERNVLCSALNERDIQNLHSLRRDVLRLRRYAAPMVEISEELQRLDFPFIDKNMSPYFRDVQIHVTRQMEDLATLADIASQTIEIGVLLEASRQSVVQRKFAAWAAILAFPTAVAGIYGMNFENMPELTWHYGYFLVLGFIGVGCTALWASFKRSGWL	PGPT0014010_2982	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0014010-corA|yfjQ-K03284	NA	NA
D1-36_01626	783	plsC	COG0204	1-acyl-sn-glycerol-3-phosphate acyltransferase	TTGCTGAAAACAGTGCACATCCGTACACTGCGCCACCTTTTGTCCCTGTGGGGCCTGTTGATGTTGTTTGCACTGCGTATGTCTTTGATGGGCCTGCACTTTATCCTGGCGGGTGTGTTGGGGGTGATTCTGGGTGTGTGTCGCCCGTTCAACCCTGACAACAGCCGTCTGTGCGCCAGGCTGTATGCGGTACCCGCGATGTGGATCCTGCGCCTGCGGGTCAAGGCCGAAGTCGACACACTGGCGAATAAAGCCCAGAGCAGCGTGATCATCGCCAATCATCAATCCAACTATGATCTGTTTGTCTTCGGCAATGTGGTACCGCGTCGTACCGTGTGCATCGGCAAGAAGAGCCTGAAATGGGTACCGCTGTTCGGTCAATTGTTCTGGCTGGCGGGCAACGTGTTGATTGATCGGGGCAATGCAATCAAGGCCCGCAAGTCGATGCTGACCACCACCCACACCCTCCAGCATGAAGACACCTCGATCTGGGTGTTTCCGGAAGGCACACGCAACTTGGGCGCTGAATTGCTGCCGTTCAAGAAAGGCGCGTTCCAGATGGCGATTGCTGCCGGAGTGCCGATCATCCCAGTCTGTGTGAGCACTTATATCAAGCATATGCAGCTCAATCGCTGGCGCAGTGGTGACATTCTCATACGCTCCCTGCCGGCAATTCCCACGGCGGGCCTGAGCATGGACGACATGCCTCGCCTTATCGCTCAATGTCGTGAGCAGATGCGCGAGTGCATCGAGACGATGGACCGGCAGTTGCAGCCCATGTGA	MLKTVHIRTLRHLLSLWGLLMLFALRMSLMGLHFILAGVLGVILGVCRPFNPDNSRLCARLYAVPAMWILRLRVKAEVDTLANKAQSSVIIANHQSNYDLFVFGNVVPRRTVCIGKKSLKWVPLFGQLFWLAGNVLIDRGNAIKARKSMLTTTHTLQHEDTSIWVFPEGTRNLGAELLPFKKGAFQMAIAAGVPIIPVCVSTYIKHMQLNRWRSGDILIRSLPAIPTAGLSMDDMPRLIAQCREQMRECIETMDRQLQPM	PGPT0024380_4438	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024380-plsC-K00655	NA	NA
D1-36_01627	690	fadB_2		Fatty acid oxidation complex subunit alpha	ATGAGCGACCTGATTGCCTACCATCTCGAAGACGGTATCGCGACCCTGACCTTGAACAACGGAAAGGTCAATGCCATTTCGCCTGATGTGATTGCCGCGTTCAACGCTGCGTTGGACCAGGCAGTGGCCGATCGCGCGGTGGTGATCATTACCGGGCAGCCGGGGATTCTGTCGGGCGGGTACGATTTGAAAGTAATGACCGCAGGTCCCAAGGAAGCGGTGAGCCTGGTGGCGTCCGGTTCGACCCTGGCTCGCCGCCTGTTGTCGCACCCCTTCCCTGTCATTGTCGCTTGCCCGGGGCATGCGGTCGCCAAGGGAGCATTCCTGTTGTTGTCGGCGGATTACCGCATTGGTGTCGAAGGGCCGTTCACGATCGGCCTGAACGAGGTGCAGATCGGCATGACCATGCACCATGCCGGTATCGAGCTGGCCCGGGATCGGTTGCGCAAGTCGGCATTCCACCGCTCGGTCATCAATGGCGAGATGTTCAATCCCCAGAGCGCCGTGGATGCGGGCTTCCTCGATAAGGTGGTGTCGGCGGACGAATTGCAAGCTACGGCGTTGGAAGCGGCGCGTCAGTTGAAAAAGATCAATATGACTGCCCACAAAAACACCAAGCTTAAGGTTCGCAAGTCGCTGCTGGATGCGTTGGACACCGCGATATTGCTGGACCAGGAATACATGGGCTGA	MSDLIAYHLEDGIATLTLNNGKVNAISPDVIAAFNAALDQAVADRAVVIITGQPGILSGGYDLKVMTAGPKEAVSLVASGSTLARRLLSHPFPVIVACPGHAVAKGAFLLLSADYRIGVEGPFTIGLNEVQIGMTMHHAGIELARDRLRKSAFHRSVINGEMFNPQSAVDAGFLDKVVSADELQATALEAARQLKKINMTAHKNTKLKVRKSLLDALDTAILLDQEYMG	PGPT0001860_8256	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001860-paaF|echA-K01692	NA	NA
D1-36_01629	1023	uvsE		UV DNA damage endonuclease	ATGACCCACCCCCGAATTGGCTTCGCCTGCCAATACCGGCACCCTGATCGCGGCCTCTCGGCGGCCGCGCTAAAGACAATCGAAGCCCCCTTCAATCCGCGCACCACAACGTTGCGCTGGATGGACAGCGTCTCCCCACAGGTCGCCCGCGACAAGCTGTTGGAAATCATCACGCACAATCTCGACGCGCAGTTACGCCTTATCGCCTACGTCGCCGAGCTTCCCCCGACCCTGCGCATGCTTCGGCTGAGTAGCGATCTATTGCCGTTCTACAGTCATCCGAAGGTGAGCGCGTTCTATCAGGACCCTGCCATCCAAGCCCAACTGGAAGAGCGCTTTGGCGCGATCGGGGACCTGGCGCGTTCAGCGGATATCCGGCTGTCCTTTCACCCTGGGCAATACTGCGTGCTCGGTTCGGATAAACCGCCGGTGGTGGAGAACAGCCTCGCCGAGTTCGAGTACCACGCCGACATGATCCGGATGATGGGCTTTGGTCGGCATTTCCAGGATTTCAAATGCAACGTGCACATTGCCGGGCGGCTGGGGGGCGAGGGGATACGTTCGGTCTGGCCACGGTTGTCGGAGGCGGCGCGCAATTGCATTACCTTCGAAAACGAGGAAAAGACCTACGGCCTGGATGATTGTCTGGAACTTGCCGACCTCGCACCCATCGTGCTGGATATTCATCACTGTTGGATCAACGAGAACGATTACATCGCGCCGGATTCCCCACGAGTCGATCGCGTCATCGACAGTTGGCGCGGCGTGCGGCCCACCATGCATTACTCCCAACCCCCGGAGCGGCTTCAGGCGTTGGGTTTCGATGCCGACGATAAGCTTGAGATGGATGCCTTGTTGAGGGTCGTGTCCAAGCGTGACCTGTACGGCCACAGCGCGCAGATGTGGAATCGCTGGACGAACCAGTACGCCCTCAGGTTTCTGGACCGGTTCGACATTATGTTGGAGGCGAAGGACAAGAATCTGGCAGCGCAGGGTTTCTACGAGGACGTTGTACGGCGTTGA	MTHPRIGFACQYRHPDRGLSAAALKTIEAPFNPRTTTLRWMDSVSPQVARDKLLEIITHNLDAQLRLIAYVAELPPTLRMLRLSSDLLPFYSHPKVSAFYQDPAIQAQLEERFGAIGDLARSADIRLSFHPGQYCVLGSDKPPVVENSLAEFEYHADMIRMMGFGRHFQDFKCNVHIAGRLGGEGIRSVWPRLSEAARNCITFENEEKTYGLDDCLELADLAPIVLDIHHCWINENDYIAPDSPRVDRVIDSWRGVRPTMHYSQPPERLQALGFDADDKLEMDALLRVVSKRDLYGHSAQMWNRWTNQYALRFLDRFDIMLEAKDKNLAAQGFYEDVVRR				NA	NA	NA	NA	NA
D1-36_01630	492			hypothetical protein	ATGACCCGGTGGATGAGTTTGGCTTGGCAAGCCCAAGTGCTTGCACTTTCTTTTATATTCTCAGCGGGCAACGGCTGGGCTTCGGACAATGTTCAACGTACCAATACGGATCTGGTTCGCCAGGCTTTCGCGAATTGGCAGGAGGGCAAGGGCACGGTCTTCGACCTGCTGGCGCCGGATGCCAAATGGACCGTGGCCGGCACAAGCCCGGTGTCAGGCGTCTACACCAGCAAGGCTGAGTTGGCCCAAGCCGTGCGCCCGATCACTGCTCGGCTGGCTACGCCGATTGTGCCAACGGTGCAAAGCATCATTGCCGAGAACGACGTCGTGGTTGTTCTTTGGAACGGCACAGCCACGGCACTTGATCACAAGCCCTATTACAACACTTACCTGTGGCACATGACGCTCAAGGATGGGCAAATCACACAGGTGACGGCGTTGTTGGATACTTACGCATTGGATGAGCTCATGCGTCGGGTGACGCCGCAATAA	MTRWMSLAWQAQVLALSFIFSAGNGWASDNVQRTNTDLVRQAFANWQEGKGTVFDLLAPDAKWTVAGTSPVSGVYTSKAELAQAVRPITARLATPIVPTVQSIIAENDVVVVLWNGTATALDHKPYYNTYLWHMTLKDGQITQVTALLDTYALDELMRRVTPQ				NA	NA	NA	NA	NA
D1-36_01631	999	ytfF		Inner membrane protein YtfF	ATGTATCGGGGCGCACGCCTGATGATCCAGGCTCAATCAAACCTCATCGCGGGCTTGGCCCTCGCAATCATCGCGACGCTGAGCTGGGCCTTGAACTTCATTGCGCCTTACGTCACCGGTGCCTACACGATCTACGACTTGTTGGTCGTACGGTTCCTGGTTGCCGGTGCCCTGGGCCTGGGTGTCGTGCTGCTCTACCGGGCCCAGCTTCGGCACCTGCGGTGTGATCAGATGCTTGTGGCCGCAAGCCTGGGCGTGATCGGCTACCTCGGCTATAGCGCGTGCATCGCCGCCGGCATCATCTTCGGCGGGCCGGTGCTGACGCCGGCCTTCATTGGTATGGTGCCCGTGTTGCTGGCGCTGCTGGGCAACGCCACGGCCAAGACCCTCCCGTGGCGCAAACTGGCGATCCCCTTGGTTTTCTTGACGGTTGGGCTGCTGGTGTCGAATCTCGGGGCTCTCCATCATCCCGCTGCGGGCGCAGGATCGTGGCTGATGGGATTAATGTTCTCAATCGCAGCCGTGCTCTTATGGCTCGCATTCAGCGGGTTGAACCAACGCGCCTTGCTCGCGCTGCCACCCCACGCATCCGGTGCGTGGACTGGCCTCATGATGGTCGGTGCCGGACTGGGCACCTTGTGCTTGTTACCGGCGGTACAAGCGTTCGACCTGCTCAAACTGCCGAGCCTGGGGTTCAGCGTTTCCGTTGCGGGCCGTTTATATCTCTGGGGTTTCGTGATTGCGCTGATGTCGTCCTTAGTCGGTGCCTGGGCTTGGAACGCCGCGTCCCAGCGTTTGCCCATGGTGCTTTCCGGGCAATTGATCGCCTTGGAATCGGTGTTCGCCACGCTGCTTGGCCTATGGTTTCACCACCGACTTCCGACGCTTCTAGAGGCATCAGGACTTGCGGCTGTACTGGTTGGGGTGGTCATGGCGGTGCGGATCATCCTGACGACGCGGGACCATGTAAGCGTTATTGCGGCGTCACCCGACGCATGA	MYRGARLMIQAQSNLIAGLALAIIATLSWALNFIAPYVTGAYTIYDLLVVRFLVAGALGLGVVLLYRAQLRHLRCDQMLVAASLGVIGYLGYSACIAAGIIFGGPVLTPAFIGMVPVLLALLGNATAKTLPWRKLAIPLVFLTVGLLVSNLGALHHPAAGAGSWLMGLMFSIAAVLLWLAFSGLNQRALLALPPHASGAWTGLMMVGAGLGTLCLLPAVQAFDLLKLPSLGFSVSVAGRLYLWGFVIALMSSLVGAWAWNAASQRLPMVLSGQLIALESVFATLLGLWFHHRLPTLLEASGLAAVLVGVVMAVRIILTTRDHVSVIAASPDA				NA	NA	NA	NA	NA
D1-36_01632	582			hypothetical protein	GTGAGCGAATCACCGCACCCCCTCAACCCCCGACTCAACATTTGCTCGCGCAAGACGTCCCGCGTGCTGCGACAGGCCTGGAGCATCAGCCTCCTGGCCCTGCTCAGCGGTTGCGGAGCGCTGTCGGATGTCCGTTCTTTCTCCACCCCTTACTCAACGCCTGACGGTGGCGAGACCGCGCGTTTGCGGGTGATCAGCGACGGCATGGTCAGGGCCGTACCCAAGTCTGACTGCGTGGACTTCCGCCAGCCAGGCGCCGGGGTCATGGTGGCGTTCCGGGATGGCTATGCCAATCGCAACGGCGAAAGCCTGGGCATGCCAGACGACGACAAGCATTCATCTTCCACGGTCATGACTGAGCTGTTGATACCGGCCGGGCAGCCCATCGCTTTTCATTACATCGGCGATCGATGCTACAACATGTTCAGCTTTGTCCCTAAGGCAGGGGAGGATTACCAACTGGACGCCGCGGGCCGTTTTGAATGTGAAGTGAGGCTCAAGCAACTGCCCGCGGCGACGACGCAACTGCCCCCTTCATTCTTGAAGGACAGCAAATTGTGCAGGGTTACGGATAACCTGTAG	MSESPHPLNPRLNICSRKTSRVLRQAWSISLLALLSGCGALSDVRSFSTPYSTPDGGETARLRVISDGMVRAVPKSDCVDFRQPGAGVMVAFRDGYANRNGESLGMPDDDKHSSSTVMTELLIPAGQPIAFHYIGDRCYNMFSFVPKAGEDYQLDAAGRFECEVRLKQLPAATTQLPPSFLKDSKLCRVTDNL				NA	NA	NA	NA	NA
D1-36_01633	477			hypothetical protein	GTGGTCCGCTACCTCGACAGTCGTGTGCCCTGGCCCTACCCGGATGACGGCGCGCTGACCTACGTGCGCGATCAGGCGCTCCCCGCTGTTGCCGCCGGACGCGAGTGGCACTGGATGATTCGCTTGGCCGAAGATCCCACTCAGCGTATCGGCAGCATCAGCCTGTACGACCAGCCCGGCAACAACCGCAGTTTCTGGTTGGCGCCGCAATGGCAGGGAAAAGGCTACATGCGCGAGGCTTGCGCGGCGATCAACATCTATTGGTTCGAAACGCTGGAGCGTCCGGTCATGCAAGTGCCGAAGGCGGTGGGTAACCTGGCTTCTCGCAGGATTTCGGAGCGTGAAGGCATGCGGATGGTCGGGACGCAGCAGGGCGACTTTGTCTTTGGGGCGTCGCTCAAGGAGGTTTGGGAGATGACGCGTGAGGAGTGGTTTGGGGAAAAGCTGTGTCAAGGATACCCAGTCGTACCTGAATGA	MVRYLDSRVPWPYPDDGALTYVRDQALPAVAAGREWHWMIRLAEDPTQRIGSISLYDQPGNNRSFWLAPQWQGKGYMREACAAINIYWFETLERPVMQVPKAVGNLASRRISEREGMRMVGTQQGDFVFGASLKEVWEMTREEWFGEKLCQGYPVVPE				NA	NA	NA	NA	NA
D1-36_01634	1173	fdhA_1		Glutathione-independent formaldehyde dehydrogenase	ATGAAAGCGTTACGCTGGCATGGAAAAAAAGATATCCGCTGTGATGATCATCTGCCCGACCCCACCATAGAAGACCCACGTGACGCCATTATCAAGGTCACCTCGTGCGCCATCTGCGGCTCGGACCTGCACTTGTACGATGGCTTCATGCCCGGCATGAAGCATGGCGACATCATGGGCCATGAGTTCATGGGTGAAGTAGTGGAAGTGGGTTCGGCCAACAAGAAACTGAAAATTGGCGATCGCGTGGTGGTGCCCTTTACGATTTGCTGTGGTGAATGCGATCAATGCCGTCGGGGTAACTTCTCGGTCTGCGAGCGCAGCAACCGCAACAAGGACCTGGCCGACAAGGCCTTCGGCCACACCACTGCCGGGCTGTTCGGTTATACCCATCTGACTGGCGGCTATCCTGGCGGCCAGGCCGAGTACGTGCGGGTGCCTTATGCGGACTTTACCCCGGTGGTGATTCCGGACGGCCTGACCGATGAGCAAGTGCTGTTTCTAGGGGATATATTCCCCACCGGTTGGCAGGCGGCCGTGCAATGCGATATCCAGCCCACCGACACCGTGGCCATCTGGGGCGCCGGTCCGGTAGGACAGTTCACGGTGCGCAGCGCGGTGATCCTGGGAGCCAAGCAGGTGGTGTGCATCGACAACGTGCCCGAGCGCCTGGCCATGGCCAAGGCCGGGGGCGCCATCACCATCAACTTCGATGACGAAAGTGTGCTGGACCGCTTGGCCGAGCTGACGGGCGGCAAGGGCCCAGAGAAATGCATCGACGCGGTAGGCATGGAATCCCACGCGACCCGTTCGTTCGATTCCATCTACGATCGGGTCAAGCAAGCGGTGATGCTGGAGTCAGACCGCCCCCACGTGCTGCGGGAGATGATGTATGTGTGCCGCCCCGCCGGCACGTTGTCCATCCCCGGTGTGTATGGCGGCTTGATCGACAAGATCCCGTTCGGCGCGGCCATGAACAAGGGCCTGACTTTCAAGATGGGGCAGACCCACGTGAACCGCTGGACCGACGACCTGCTCCGGCGCATCCAGGAGGGGCAGATCGATCCAAGCTTCGTCATCACTCATACCGTGAGCCTTCAAGACGGCCCGCAAATGTACAACACCTTCCGGGACAAAAAAGACGGCTGCGTGAAGGTGGTGCTCAAGCCTTGA	MKALRWHGKKDIRCDDHLPDPTIEDPRDAIIKVTSCAICGSDLHLYDGFMPGMKHGDIMGHEFMGEVVEVGSANKKLKIGDRVVVPFTICCGECDQCRRGNFSVCERSNRNKDLADKAFGHTTAGLFGYTHLTGGYPGGQAEYVRVPYADFTPVVIPDGLTDEQVLFLGDIFPTGWQAAVQCDIQPTDTVAIWGAGPVGQFTVRSAVILGAKQVVCIDNVPERLAMAKAGGAITINFDDESVLDRLAELTGGKGPEKCIDAVGMESHATRSFDSIYDRVKQAVMLESDRPHVLREMMYVCRPAGTLSIPGVYGGLIDKIPFGAAMNKGLTFKMGQTHVNRWTDDLLRRIQEGQIDPSFVITHTVSLQDGPQMYNTFRDKKDGCVKVVLKP	PGPT0006355_391	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006355-frmA|ADH5|adhC-K00121	NA	NA
D1-36_01635	2175			hypothetical protein	GTGAGCGAACTGGACCTGGCGACTCTACTGTCGGGCTCATCGGCCGGATCGACATTGCAAGACCCAGACGTACATCTTCCCGAACACCTGCCCGCGGTGCGCGAAGACTTGCGCCTGATTCCCGCGGCCTCGCAACGTGATGGCTCGCCAGCCTGGATGATCCAGGACCCGGTCGGTAACCGGTTCTTCAACATCGGCTGGCTGGAGTTCGAGATCCTGTCACGTTGGTCCCTGGGTAGCCCGACCCGCTTGCTCGAGGCGCTCGCGGCCGAAACGCCCCTGAACGTCAGCCGAGCGGAACTGGCGGCCTTGTTGGCGTTTCTGAGCCGCCATCAGTTATTGCATGTCAGTGACGTCACCGGTACCCGACGCCTGGAAGAGATGGCCCGGCAAGGCAAGCACACCGGTTGGCAATGGTTGCTTCACAATTACCTGTTCATGCGCGTGCCGCTCTGGCGTCCGCAGCGCCTGTTAGAAAAAACCCTGCCCTGGGTCGCGCCACTGTTCAGCCGGACCTTTCTGGTGTGCATCGCCCTCGCCATCGTGCTGGGCCTGTTCTTCGTCGAACAGCAATGGGATGTGTTCGTTGCCAGCTTCCAGCAAAGCCTGTCACCGCAAGGCCTGGTCGGTTATCTGGTAGCCCTGGCGATTACCAAGTGCCTTCACGAGCTCGGCCATGCCTATACGGCTACGCGCTACGGCGTGCGCGTCGCGCACATGGGCGTGGCGTTCCTGGTGCTATGGCCGGTGCTCTACACCGATACCAGCGAATCCTGGAAGCTCGCCGACCGCCGTCAACGCTTTCACATCGCCGGTGCCGGCATTCTCGTGGAGCTGCTGGTTGCCGGAGTTTCGACGCTAGGTTGGGCCTTGTGCGAAAACCCAATGCTCAAGAGCGGGCTGTTCTTCCTGGCGACCACCAGTTGGATGATTTCATTGGCCCTCAATGCCAGCCCCTTCATGCGCTTTGATGGGTATTTTTTGCTGTCGGACTGGCTCGACCTGCCCAACCTCCACGAGCGCTCGGGTGCCTTGGCGCAAGCCTGGATGCGCCGTCGCCTGTTGTCCTGGGACGAACCCGATCCGGAAGTCGTAGCGCCGCGCCTGCGTGGTTTTCTCATTGCCTTTGCCATCGTCACCCGTATCTATCGCCTGGTAGTGTTTCTCGGCATCGCCGTCGCCGTGTATTACCTGTTTTTCAAGGCGCTGGGTATCTTGTTGTTCCTAGTCGAAATTGCATGGTTCGTCGTCATGCCTATCCAGCGTGAACTCAAGGTCTGGTGGGATCGTCGCAAGGAGATCCCCACGCGGCGAGGTCGTCTGCTTTTGCTCGGGCCAGGCGCGCTGATGCTATTGGCCGCCTTGCCGTGGAGCACCCAGGTGCAGGCGCCCGCCTGGCTGCATGCAGAGGTTCAATACACGCTCTATAGTCCCTTGCCGTCCCGGCTGGTGGAAATGCCTCTCGCCGGGCAACCGATCGAAGCCGGTTCAACCTTGGTCGTTCTGGATTCCCCGGTCATACGCGACAAGGCCGAACGGTCTCACAAAGCGACCCTCGCCTTGCGCGCGCAACTCGCCGGACTCCCCGGAACTGCCGATGGGGCCGAAAAATATGCCTCGATTGCCAGCCAGCTCAACCGTCAGCAAGCCGAGTCCGCCGCCCAAGCGGCCGAGTTGCAACGCCTGACATTGCGCGCCCCGATGGCCGGAGTGCTCATCGACATCGACCCCGCCGTGCAGCCCGGCGTCTGGGTCAAGCCCAATCAGCCGCTGGGCGTCTTGGTCAGCCCCGATAGCTGGACGGTGGAAGCATTCGTTCGCCAGCAAGACCTCTCGCGCGTGGCCGTTGGCGCTCGCGCGCGCTTTTATGCACAGGGAGGCAGCGGCACGACGCTTGAGGGAGAAGTGATCGGCATTGACGATTCACGCACCCAGAACGTCCCGCATCTCATGCTGAGCACGACCTACGGCGGTCCCATCGCCGTCTCCGCAAAACAGGACCGGAACCTGCAGATCCGTGATGCCCTTTACCGGGTGAGAATACGTTTGGACGCCCCTCCCGCCCAGATGATGATGCGCCTGGGCAACGTGTCCATCGAGGGGGCCCGCATCAGCCCGGTTGCAGAGCTGTTCACCGATGCGTTGTCGATTCTGATCAGGGAAAGCGGGTTCTGA	MSELDLATLLSGSSAGSTLQDPDVHLPEHLPAVREDLRLIPAASQRDGSPAWMIQDPVGNRFFNIGWLEFEILSRWSLGSPTRLLEALAAETPLNVSRAELAALLAFLSRHQLLHVSDVTGTRRLEEMARQGKHTGWQWLLHNYLFMRVPLWRPQRLLEKTLPWVAPLFSRTFLVCIALAIVLGLFFVEQQWDVFVASFQQSLSPQGLVGYLVALAITKCLHELGHAYTATRYGVRVAHMGVAFLVLWPVLYTDTSESWKLADRRQRFHIAGAGILVELLVAGVSTLGWALCENPMLKSGLFFLATTSWMISLALNASPFMRFDGYFLLSDWLDLPNLHERSGALAQAWMRRRLLSWDEPDPEVVAPRLRGFLIAFAIVTRIYRLVVFLGIAVAVYYLFFKALGILLFLVEIAWFVVMPIQRELKVWWDRRKEIPTRRGRLLLLGPGALMLLAALPWSTQVQAPAWLHAEVQYTLYSPLPSRLVEMPLAGQPIEAGSTLVVLDSPVIRDKAERSHKATLALRAQLAGLPGTADGAEKYASIASQLNRQQAESAAQAAELQRLTLRAPMAGVLIDIDPAVQPGVWVKPNQPLGVLVSPDSWTVEAFVRQQDLSRVAVGARARFYAQGGSGTTLEGEVIGIDDSRTQNVPHLMLSTTYGGPIAVSAKQDRNLQIRDALYRVRIRLDAPPAQMMMRLGNVSIEGARISPVAELFTDALSILIRESGF				NA	NA	NA	NA	NA
D1-36_01636	1380			hypothetical protein	ATGAACGCCCAAGCCAATACAGCGCCCAACCCGGTCGCGGTGCTGCTGCATCTTGAGCAGCGCGCACAAGAAGCGCGCAGTACCGCCGAGCTGGGTTTTGTGATGGTCAACGAAACGTGGCAACTTTTGCGTTATCGCCAAGGCTATGTATTTGTCAGCGATGTGCTGGGCAAGCCCTCGCTGAGCAACGTTTCCAGCTTGGCGGTGCTGCCTGAAGAGACACCGTTTACCGTCTGGCTCAAGAGGCTGGCCCAGCATCTCTGGACGCAGCCCGCGTTATCGGCCGAATCGACACCAGCCACCGTCTTGCATCTGTTGCGAGCCCGGGACCTTCCCGAAAGCTTCGCCGAGGGCTGGACCGAATGGATGCCGATGCATCTGCTGTGCGTACCGCTACCGCCTCGCGATCATTCACGTCGTGGCATGTTGCTGCTTGCCTGCGATACCGAGCCGGACGAACATACCCAGGCCCTGCTCGCCAGACTGGGGCAAACCTATGCCTACTGCCTCGCGGCGCTGACCAACAAACGCCCCACGCTCGGCGCCCGCTGGCAAGTCTGGCGACAGCGCCCGTGGCGTTTATTGGCGTTGGGGACGGCCATGGCCCTGGCGTGCCTGGTGCCGGTCCGACTGAGCGCCCTGGCACCGGCCGAGATCGAAGCCCATAACGCGATGGCCATCGCCTCCCCGCAAGATGGCGTGGTGCACGAGTTCCTGGTGCAGCCCAACCAGATGGTGCAAAAGGATCAACCGCTGTTCAGCCTCGACGACACGACCCTGCGCAATCGCCGCGCCGTTGCCCGGCAAGCGCTGGAAGTCGCCCGGTCCGAAGCGCTGCTCGCCGCGCAAAAAGCCTTTGAAAGCGCACAGAGCAAGGGCGAGCTGGCCGCGCTCAATGGGCAAGTCCAGGAGAAACAGGCCGAGGTCGCTTGGCTCGACGAAATGCTTGAGCGCAATGTGGTCCGAGCGCCACGCGACGGCATCGCGATATTTGGCGACACCAATGATTGGATCGGCAAGCCGGTGGTCACTGGCGAGCGCATCATCCAGCTGGCCGACCCGCAAGATGCGGGGGTGCTGGTCTGGCTCCCGGTGGCCAATGCCATCAACCTCGATACCGGTTCTGAAATTCGTCTGTTCCTGCACGTTGCGCCGCTATCGCCCTTGACCGCCAGCCTGATCCAGACCAGCTACCAGGCCACGCTTTCGCCAGACAACATTCCCTCGTATCGCATTCGGGGGCAGTTCCAGGGTGATGCCAGCCAGTTGGCGCGGATCGGCCTCAAGGGCACCGCCAAGCTGTATGGCGAATCGGTACCGCTGATCTATTACGTCATGCGCCGTCCGTTGGCCGCCCTGCGTGAATGGAGCGGGCTGTGA	MNAQANTAPNPVAVLLHLEQRAQEARSTAELGFVMVNETWQLLRYRQGYVFVSDVLGKPSLSNVSSLAVLPEETPFTVWLKRLAQHLWTQPALSAESTPATVLHLLRARDLPESFAEGWTEWMPMHLLCVPLPPRDHSRRGMLLLACDTEPDEHTQALLARLGQTYAYCLAALTNKRPTLGARWQVWRQRPWRLLALGTAMALACLVPVRLSALAPAEIEAHNAMAIASPQDGVVHEFLVQPNQMVQKDQPLFSLDDTTLRNRRAVARQALEVARSEALLAAQKAFESAQSKGELAALNGQVQEKQAEVAWLDEMLERNVVRAPRDGIAIFGDTNDWIGKPVVTGERIIQLADPQDAGVLVWLPVANAINLDTGSEIRLFLHVAPLSPLTASLIQTSYQATLSPDNIPSYRIRGQFQGDASQLARIGLKGTAKLYGESVPLIYYVMRRPLAALREWSGL				NA	NA	NA	NA	NA
D1-36_01637	762			hypothetical protein	ATGAAGATCCGATCACGTTGTGTTTCTCTTTCTGTGATCGGCGGTTCGTTGCTCGGCCTGGTCGTGTCAGCGCAACCGGCATGGGCACAAAGCGAAACCGATGCCGGCGTACGCGTGCTGCTGGTGGCCGACCAGGAAACCACCCTGGCGAGCCAGCTGGTGGGGCGGGTACGCGCGGTCAACGCGTCGCTGGGATCGACGTTCAGCAAGGGTGACGTGCTCGTCAGTTTCGACTGCGACGAACAGGTCGCTCGCCTGAAGATGGCCCAGGCCGACCTGAGCTCCGCCCGTGAAACCCATGACGCCAAGTTGCGCTTGCAAGGGTTGCAGTCCGCCGGCGAGGTGGAAGTTTCGCTGGCCGCCAGTGCCGCAGAGAAAGCCGCTGCCCAGGTGGCCCAGTACCGGGCCCAGCAACAACAATGCAATGTGCTCGCACCGTTCGACGGGCGCGTGGTCAAGGTCCAGGTCAAAGCCTTTCAGGGCGTCAACCTGGGCCAACCACTGCTCGACATCATCAGCAAAGGGCCATTGAAGGTACGTGTGAATGTACCTTCCAAATGGTTGGTCTGGCTCAAGCCCGACCTGCCCTTCCAGGTTGATTTGGGTGAGACCGGCAAACGTTATCCCGCCAAAGTCAGCGCCATCAACGGCCAGGTCGACGCCGTCAGCCAGACCATCGAGCTTGAAGGGGTGATCGAAGGCCGGCCCGTCGATCTGCTCGCCGGCATGAGTGGCACTGCGCTGTTCGAAGCGCCGCAATGA	MKIRSRCVSLSVIGGSLLGLVVSAQPAWAQSETDAGVRVLLVADQETTLASQLVGRVRAVNASLGSTFSKGDVLVSFDCDEQVARLKMAQADLSSARETHDAKLRLQGLQSAGEVEVSLAASAAEKAAAQVAQYRAQQQQCNVLAPFDGRVVKVQVKAFQGVNLGQPLLDIISKGPLKVRVNVPSKWLVWLKPDLPFQVDLGETGKRYPAKVSAINGQVDAVSQTIELEGVIEGRPVDLLAGMSGTALFEAPQ	PGPT0003275_6722	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexAB-OprM,PGPT0003275-acrA|lir|mtcA|mexA|adeI|smeD|mtrC|cmeA-K03585	NA	NA
D1-36_01638	1899			hypothetical protein	ATGTCTTTGATGGAAAAAAATCGTTCAGTACTGGGCGCAGGCTGGGTCGCGGCCATGGTTATCGGCCTGGCGGGCTGCTCCGTTGCGCCGAAACCGTTGCAACAAGATGAAATTCACCAACGAGTGGCCGGTGACCAGCTCCAGCTTTACGCCGACCAGGAACCGATCAAGGGGCCATTGACCTTCGCCGACGCGCTGGCACGCTCGCTCAAATACAACCTCGACTATCGCCTGAAGTTGATGGAATCGGCTCTGGCGGCGGGCCTGCATGACGTTTCACGTTACGACATGCTTCCCAAGATGCTGGTCTCGGCTGGCTACACGTCGCGCAACAACGAGTCGGGTGGTACGAGCGTCGGCATTGAAACCAACACGGTTTCGTTGATCCCCTCCTCCTCCGTCGAGCGTAACCGGACACTGGCCAACGCTGAGTTTTCCTGGAACCTGCTGGACTTTGGCGTCAGCTACTACCGCGCCAAGCAGAGTGCCGACCAATACCTGATCGCCGAGGAGCGACGCCGACGCGTGATGCAAACGGTTCTGCAGGACTTGCGCACCTCCTACTGGCGCGCCCTGGGCGCCCAGCGTCTTGAAAGCCAGGCCGACGAGCTGCTGAACCGTGTACGCCTGGCGCTGGGCAAATCACGGGAGGCCGAGGTACAGGGTCTGCTACCGCCGGCACAGGCGTTGGCTTACCAAAGCGCCCTGCTGGACGCGACCACTTTGCTCAACGCTCGCCGCCAGGATCTGGAATTCGCCAAACGCGAATTGGCCGCGCTGATGAGCATTCCACCGGGCACCCAATTCACGCTGGCTGAAGAAAGCGAGCCCTCGCTGCCTGGCGTCCCGGTCGACATGGCCAAACTTGAGGAAATCGCCTTACAGGCGCGTCCTGAGCTGCGTGAGGAAGACTATCGCAAGCGCATTTCGGCGGACGAAGCGCGACGCCAATTGCTGGCACTGCTGCCCAGCCTTGGAATCAACATCAACGATCAGTACGACTCCAACAAATATCTCTATAACAGCAACTGGGTCGACAGCGGCGTACAGGTCAGCGCCAACCTGTTCAAGCTGGCGGCCATCCCGGCCACGCAAAAAGCCAGCGCCTCCCAGGAAAAAACCGACAACGCGCGCCGCCTTGCGCTCTCGATGGCCGTGCTGACACAAGTGCGCATCTCGGTGGAGCGCTACAAGCTCGCCTTGGTCGATTACGACCTGGCCGACCAGTCGAGCCAGGTCGATCAACGCATGGCCAAGTTCGCCCGCGCTTCGGTGTCGTCCCGCACCGATTCCGAGCTTGAAGTCATTCGCACCGAAACCCGCGCCCTGCTCGCACAGTTCCAGCGATACTCGGCCTACGCCACGGCGCAGACCGCTTTCGGGCGCATCTACAACTCCCTGGGCCTGGACGTGCTACCCGAAGACGTGCGCGACGCCAGCGACTTGCAGCAACTCTCGCAACAACTGCAGGAAAGCCTGAGCCGTTCAGAACGCCAGGCGTTCACGACGGCGATCGGAGAGTTGCCTTCGCAGCAACCGCTGGCGGTACGCCTGGAATACTCAGGCGATGCTCGGGCAGCCAATGACATGCTCGAAGTGGCTCGCCAAGCATTGAAACGCAACCAGTTCGTGCTTGCCGAAAACAACCAGCCCGGGCCTACGCTGATCATGCAACTGCGTATCGCCAACGTTCAGGACGGTATCCGTCGCGGTGAATGGAGCGTCAGCCTGCGCCGTGCCGACGGAAGCGTGGCAGGCACCAGTCACTACCAGAGCACATTGCGCGCCCAGCCAGACAGAGATTCCTTGAACGCATTCTGCGAAGCCGCCACGGTCGCTGAAGTGCCGAATTTGCGCGCGTGGTTGAAATCGGGCCCAACGCAGGTGGCCTCGAAATGA	MSLMEKNRSVLGAGWVAAMVIGLAGCSVAPKPLQQDEIHQRVAGDQLQLYADQEPIKGPLTFADALARSLKYNLDYRLKLMESALAAGLHDVSRYDMLPKMLVSAGYTSRNNESGGTSVGIETNTVSLIPSSSVERNRTLANAEFSWNLLDFGVSYYRAKQSADQYLIAEERRRRVMQTVLQDLRTSYWRALGAQRLESQADELLNRVRLALGKSREAEVQGLLPPAQALAYQSALLDATTLLNARRQDLEFAKRELAALMSIPPGTQFTLAEESEPSLPGVPVDMAKLEEIALQARPELREEDYRKRISADEARRQLLALLPSLGININDQYDSNKYLYNSNWVDSGVQVSANLFKLAAIPATQKASASQEKTDNARRLALSMAVLTQVRISVERYKLALVDYDLADQSSQVDQRMAKFARASVSSRTDSELEVIRTETRALLAQFQRYSAYATAQTAFGRIYNSLGLDVLPEDVRDASDLQQLSQQLQESLSRSERQAFTTAIGELPSQQPLAVRLEYSGDARAANDMLEVARQALKRNQFVLAENNQPGPTLIMQLRIANVQDGIRRGEWSVSLRRADGSVAGTSHYQSTLRAQPDRDSLNAFCEAATVAEVPNLRAWLKSGPTQVASK	PGPT0003600_521	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_I_SECRETION_SYSTEMS	CE-TSS1-AlgE-TYPE_MANNURONAN_C-5-EPIMERASE_TRANSPORT,PGPT0003600-tolC-K12340	NA	NA
D1-36_01639	7599			hypothetical protein	ATGCTATTCGACGGCGCGGCGGCGGTCATCGCCGATACTGCGGTCGTGGCACGTAGCGGCGCCGAAGATGCTTCCGTCGCGATTAGCGGCATCAGCGTCAGCGACACCGATAGCGCAACACAACACGTCACCTTGAATGCCAGCCATGGCACGCTGAACCTGGCCAGTACCAATGGCCTCACCGGCTTGACCGGCAATGGCGGCGCCAGCATCAGTTTCAGCGGCTCGCTGGCAGACATCAACGCCGCCTTGAACGGCATGTCGTTCCGGGGCGACAGCAACTTCAATGGTGCTGCCTCGTTTACGTTGACCAGCAACGACGGCAGCAATACCACCAGCAAAACCATCGACATCAACCTGACCCCGGTCAATGACGCACCGACGATTTCCGGCAGTGGCCCGGCGTTGCAGGTGGACGAAGGCGGGACGGCGAATTTCTCGCCGGCCACCAGCTCCCCCGACGGCAAGGGCTTCACCCAAAGCAACCTGGGCATGACCGACGTCGATAACGTGCAGCAACAGGTCATCATCAAGCTCACCTCCCTGGCGAGCAATGGCACCTTGTTGCTCAACGGTAAGGAGCTAGGGGTAGGGTCGAGTTTTTCCATCGACCAGATCGCCAACCTCAGCTATCGCCACAATGGCGACCAGGTCATCAATCCCGCGGGCCTCACCGACAGTTTCACCATTACCATCGATGACGGCGCCGGCGGCGTCGTTCACGACCACAACGTGCAGGTTCACGTCAATCCGGTGAACCAGGCGCCGACATCGAGCGGCACCATCACGATCATCGAGGGCGAGCAAAGCGTCAACCTGACCGACAACGGCAATCTGGTCAGCCCGATCGGCACGCCCCGTGGCACGATCCAGATCGGCGATCCCGATCAATCCCCGGGTGTCGACTTCATCTATACGCTCAACTCCCTGCCGACCCACGGTACGTTGCGCTATGACGGCGTGGTGATCACCGACAGCAGCTTCGTCATCCTGGACCTCTCCAAGCTCACCTACAGCCACGACGGCAGCGAAGCCAGCGGGGCCGGCGCCACCGATAGCTTCTTGCTCAATGTCACCGATGATGGCGGCGGCACCGGTGTGCCCAAGACGTCGACGTTGACCGTCGATCTCACCATCCTGCCCAACAACGACGATCCGGTCCTGGATCACAGCATCGACCAGAACCTGAATCCTGGGGAAACGATTCGCGTCGTCACCAACGCCATGCTGCAGGTCACCGACAACGACTCCTTCGATTCCAGCCTCAGGTATACGCTCACCGCCGTGCCCGACAGAAACGTCGGTTATTTCACGCTCAACGGTGGGTTGCTGGTGGTGGGATCGAGCTTTACCCAGGCCGACATCAACGCAGGCAACGTGGTCTATCACGTTCGGGCCTATACCGGCACGGCGCGAACCGACAGCATGAGCTTTACCGTCAAGGACGGCGGCGTACGCCTGTATCCAAGCGCGCGCGATGGCGGTATCTACGACACCGACGCGGCCAACAGCTCGTTGACGGTCAAGACGTTCAACGTCCACGTGCCGGCCGAGCCATCGACGTTGCCGGGGGCACTGCCGGCCGACCCCGCGCCTAACCAGGCGCCCGTCAGCGGCGGCGACAAAACCGCGACGATCGACGAAGCCGCCAGCTACACGCTGACGACCGCCGACCTCAACGCCACGGATGACTTCACCCCCGCCGACGGTTTGACGTACCGGGTGCTGGTCACGCCGGGCAGCGGCACATTGCTGCTCGACGGTGTGGCGATCGGTGCGTTCGGCACCTTCACCCAGGCCGACGTGGACGCTGGACGCGTTACGTTCCAGCACAGCGGCGACGAACACTTTGTCGACAACTTCCAATTCTCGGTTTCCGACGGGACGCTGACCACCGCGACCGAAAATTTCAGCCTCAGTATCGTGCCGAAAAACGACACACCGACCGCCACCAATGACGATCGGGTATTCACGGCCGAAGGCGGCACCGTCACCATTACCAACGGCAACATCGTGGTCGCCGATACCGACAGACAAGCCGATGCCAGCGGCGGCACCCAGTACGCCACGAGCAACGACGTCATCTTGCAGATCAGTGCGCTGCCACAATTCGGTCACCTGACGCTTGGCGGCGTGACCGTGACGTTGAATCAGACCGTGACCTCGGCACAATTGGCCGCGGGCGACCTGAAGTATGTCCATGACGGCAGCGAAAACTTTACTGACAGTTTTTCCGTCGTGCCCGTTGACGACCAGGGCGTGGCCGTCGGAGCGGGTACCAACCAATCCAGCACCGGCTCGGCTTTGGTGGTGCCGATCACCATATCACCGGTCAACGATGCGCCCGCGTTCAATTCCAAATCCCAACTGGTCGCCGGTGAAGCGGGCGCCATCCACGAAGGGGAATCGGCAGTGATCGGCGGTGCATCGGGTTATGCCAATGCCGATGGATCCGGGACGATAAATGGCTCGGTGGGCGGCGCGCACCTTGTGTACGGCGATGACGATAACTCCAGCCTACAGCGCCAATACCGGCTCACCGCTATTCCGGAGCATGGCAGGTTGATGCTCAACGGCGGCGTCCTCGGGCTCGGCTCGGTCTTCACCCAAGCCGACCTGGACGCCAATCGCGTCACTTATCAACATGACGGCAGTGAAACCAGCAACGACTCATTTTCCTACATCGTCAGTGACGGTGATTTCAGCGCCAACGACAGTGGCTCATTCGCCCAGGGCGTCACCGCCACGGCATCGACCTACAACATCGAAATTCTGCCGACCAACGACAAGCCAACGGTGTCTGCCCCCAACAACCCGGTCAATATCGACAGCACCGTCGCTGGCAACAATCCGGTGGGCGGCTTCACGGTGGGCGATCTCGATGACTTGAGCGGCGTCGGCACGCAGGATTCGGTGCAAGTCATCGTGCGGCTGACCCAGACCGACGGCACCGCTTTCACGGCGGGCGAGTATGCGGGCGTCACCCTCTCCGTCGGCCTGGGCGGCGGCGCTACCCGAGACGCCGATAAAGACGGCAATGGCGATTACCTGGTCCTTCGCGGCACCCGGGCCGAAGTCAACGCGGCGCTGGCGACCCTGACCGCCAGCGTCAACGACCCCAGCAACGAGGACCATCAATACCGTATCCAGGTCGTGGTCGATGATCGGCTGCGTGACGCCGGCGGCAACCTGACGACGGGGGCCAATGGCGGCAGCGAAAACCAGGCGGCCACCCCCGGCGGCAACGGGCAGCCGATCTCCGCCGTCGAATTCGATGGATACACCGACAGCGTCACCGGCACCGACCTCAACCTGGCACAGGCCAGCGTGTTGGTCCGCGTGTCGACAATCAACAGCCTGCCCAGCGTGGGCATCCCGGCGTCCCAACTGATCAACGAAGATCGCTCGACCGCCGTCACCGGCATCTCGGTGGTCGATACCGAGTCCACGGCCCTCGACGTTCCGGTCTCCGTGACGGTCAGCGTGCCATCGGGCCAAGGCATATTGGGGATTGGCGGCGCGGGTACGCAGACCACCATCACCCTACCGTCAGGACGGACGGTGAACATCAGTGGCGACAACAGCAACAGCGTGACCCTGATCGGGCGTGCCGACGATATCCAGTCGCTGCTCAACGCCGCCGGCACTGGCTTGACCTACACCAGCGCACCCCACGCCAACCACGACTACAACGGTGCCGCTGCTGGCGACGTTACGCTCAGCGTGCAATTGAACGAAGGCACCGCCGCCATCGGTGGTGACGTGGGCAGTGGCAGCGTTGCGTCGCCCGCCCAGACCAGCGAACTGGCAATCACCCTGCAAGCGACCAACGACGCCCCTACCGTAACCGCAGGCAGCGGTAGCCTGGCGATAGGCCAAAGCGGCGCAGCGGTGGCCGTGCCGGGGTTCTCGGTCTCGGATCGAGACTACAACGACGGTGGGGGCATCAGCGCACCGCCAGGCGAGAGCGCTTCGCCGGAACAGGACTTCACTCAGGTGACCGTGCGCCTGACCGATGCCAATGGCGTGCCGCTGAGCCAAGCGAGCTACACCGACATCATTCTCGGCTCCACCAGCTCGCCCACGGAAGATCACACCAGCTTCGAAATCGATGACACCCATTCCGGCACCGACAGTGCACTGGTCATCCGCGGCAGCCTGGCCAACGTCAATGCTTACCTCGCGGGTTTGCAGGTTACCCTCAGCGGCACCCTTGCCAACACCGACACCAGCTACAGGGTGCAGGTGATTGCCGACGACCGCATTCGCGACGTTGCCACCGGCGTGCTGGATGCCAGTGGTCTGGCCAACGGCGGCTTGAATCCGTCCGGTGCTTCGACCGCCGTGGTCCCCGCCACCGTTATCGATCCCTACGCGGCGTTGCCTGGCTCGCTCACGCTCAATATGGGCAGCAACACGCGGACGTTGTTTGTTTCCAGCCTCAACGACCCGACCCAGGTTACCGCCAGCGACGTCACCGTCAGGGAAGGCTCGGCGACCCTCAACCTGACCGGCAGCGTGGGTGGGTTCACCATCAGTGACCCGGACGCCAACGGTGCCAATACGTTCTCGGCCACCGTACACGTCAGCCAGGGGGTGATTTCCGGCGTGGGCGGCAGTGGTGGTTCGATCAGCGGTGTGGGCAGCGATACGGTGACGATCAGCGGGGCCACCCAAGCCGAAGTCAACGCTCGCCTTCAGGCCCTGACGATTACTTACCCGACGGCCACGGGCGCGCCGGCAGGCAGCGACTACACGGGCAACTTCACGGTGACGGTTTCCGTCAACGATGGCGGCAGCACCGGGCAGCGTCCTGGAGCGTTGACCGGCGACACCGACGATGCCAACCAGAACCCGGGCGATTTCGACTACGCCGACGGCACCACCGCCGCGCTGATCACCACCCGCACGATCAATGTAACCGTGCTACCGGTCAACGATGCGCCTTTGGCCTCGGGCCTCGACAGCTCGCAAACCGTAACCAAGGGCGGCAACCCCGTTCGTCTGGATGGCGATGGCAATGTGGCCGTCAGCGACCTCGAACTGGATGTGAGTGCTGACAAATGGCAGGGCGCGACGCTGACCATCAACCGTCAGGGCGGCGGCAATGCCGATGATGTCTTTGGTCTTTTCGACAGCGATGCGGGGGACGATGCGGTCGGTGTTCAGGTCAACGGCAGCGACCTGCTCGTCGACGGGGTTGTCGTGGGTAGCATCAGCAATGCCTCGGGCACGCTGCAAGTCACCTTCAACGCCGATGCCGACGGCTCAGTGGTCGGCAAAGTGATGGGCGCCGTCACCTACAGCAACACCAACGCCTCGACATCGGCCAGCGCCGACGTAGCCGTCGACTTCGTGCTCAACGACCAGAACCCGAACACCACCGACAGCGGCACTGCCGGCAGCGGCCAGGACCAAGGCGCCGAAGGGCGGAAAATCGCGACGCAAACCATCACCATCCACCTCAACACCGCGCCGGTGGCCGTGGACGATGGCCTGCAAACCGTCCAGCAAGGCGATCCGGCCAGCGGCAATGTCCTGCCCAATGACAGCGACCCGGACGGCAACCCTTTGAGTGTCACCGGGTTCACCGTCGCGGGGGTCGTCGGCACGTTCAATCCTGGCGATACCGCCACCATTGCCGGCGTCGGCACCCTGACCCTCAATGCCAACGGCAGCTACTTGTTTACACCAGCGCCATCCTTCCACGGCGATGTGCCGGTGGTGACCTACAGCATCACCGATGGCACGGGCGGCGCCGACACCGCCGACCTCACCATCCGGGTCAACGCGCCACCGGTTGCGGTGGACGATGGTCTGCAAACCGTCCAGCAAGGCGATCCGGCCAGCGGCAATGTCCTGCCCAATGACAGCGACCCGGACGGCAACCCCCTGAGTGTCGGCGGGTTCACCGTGGCGGGGGTAGTCGGCAGTTTCAATCCTGGCGATACCGCAACCATTGCCGGTGTCGGCACCCTGACGCTCAACGCCGACGGCAGCTACCTCTTCACGCCGATCCCCACCTACCACGGCGATGTACCGGTGGTGACCTACAGCATCACCGACGGCGTGGGCGGTACCGACAGCGCCGACCTGACGATTCGGGTCAACGCGCCGCCAGTGGCGGTAGACGATGGGCTGCAAACCGTCCAGCAGGGCACGTCGGCCAGCGGCAACGTCCTGCCCAACGACAGTGATCCGGAAGGTCATCCGCTGAGCGTCGCCGGGTTTACCGTCGCGGGGGTTGCGGGCACTTTCAATCCTGGCGATACCGCAACCATTACCGGTGTCGGCACCCTGACGCTCAACGCCGACGGCAGTTACCTCTTCACGCCGGTTGCGACCTTCCACGGCGATGTGCCGGTGGTGACCTACAGCATCACCGACGGCGCGGGCGGTACCGACAATGCCGACCTGACCATCCGGGTCAATTCCACGCCTGTCGCCAACGATGACGGGGTGTTGCTCACAGACCGCGACACGCCCATCCAATCCATACCGGTGTTGGCCAACGACACCGATCCGAGCGGCCATCCGCTCACCGTCACCCACGCCCAGAGCGCTGACGGCAGCGTTACGATCAACCCAGACGGAACCCTGGATTTCACCCCGGCACCCGGCGTCACGGGCGATGTCACGATCACCTACGTGATCAGCGATGGCGTGGGTGGCAGCGACACCGCCCAAGTGCGCATCCATATCAATGAGCCGCCCGTGGCCGTCAACGACGGCGTTCATAGCGCGCCCCAAGGAGACCCGATCAGGGGCAGCGTGCTCGGCAACGACAGCGACCCCGAGAACGATGCGATTCATGTGGTCGACTTCACCGTGGATGGCGTGACCGGCACCTTCGCGGCCGGCGACAGCGTGGCAATCCCAGGCGTCGGCACGATTAGGCTCGACCTCGATGGCCGCTTCGTATTTACACCGAACGCCAATTATCTCGGCGCGGTGCCGACCATCGATTATCGGATCACCGACGACCATGGCGGCTTCGCAACGGCGCAATTGAGGCTGCGCATGGACTCCTCGACATTGCCGCTGCCGCCCACGTCCGATGTCTCGACGGATCGGAACGCGCCCACCGGCGACGTTCTGCGTCATGAATACCCGGATTGGCAGCTTGATTCGTTGAGCGTACGGCGCGACATGGTGCCGGGCTTGTTCGTCACGCTTCCGGTGATGGATTCGCAAATCCAGGCCGATGAACGACTCGACCCGCTGCGCTCCGGCTATGCCGAAGCCTACAGCGGCGAAATACGTTCGGAGTCGATCGGGATCGGCCTCGGTTTCGTTCCTAACCTGCACGTCACGCTGGCGGTACAGGATTCGCAAAAAACCGTCGATTACCAGGAAGGTTCGCTCAAATTCAAGGACAGCCTGTATTTCACCGGTGGCCATAGCTTGTTCGGCGATTTCGATGCCTTGCAGCCTGTGGCTGAAGAGCCTTCAGCAAGAGAAGTCAAGCCCAGCCCGCCGTCTGATCAGCCCAAGGCGGCCGTTTCCTTCAGTGACCAAATCAGCCAGGCCGCCAAACAGCGCCAGCCTCATTCGTCCACTCAAGTCGAACGGCTACCGGCGCCCCAGCGCAAAGGTTGA	MLFDGAAAVIADTAVVARSGAEDASVAISGISVSDTDSATQHVTLNASHGTLNLASTNGLTGLTGNGGASISFSGSLADINAALNGMSFRGDSNFNGAASFTLTSNDGSNTTSKTIDINLTPVNDAPTISGSGPALQVDEGGTANFSPATSSPDGKGFTQSNLGMTDVDNVQQQVIIKLTSLASNGTLLLNGKELGVGSSFSIDQIANLSYRHNGDQVINPAGLTDSFTITIDDGAGGVVHDHNVQVHVNPVNQAPTSSGTITIIEGEQSVNLTDNGNLVSPIGTPRGTIQIGDPDQSPGVDFIYTLNSLPTHGTLRYDGVVITDSSFVILDLSKLTYSHDGSEASGAGATDSFLLNVTDDGGGTGVPKTSTLTVDLTILPNNDDPVLDHSIDQNLNPGETIRVVTNAMLQVTDNDSFDSSLRYTLTAVPDRNVGYFTLNGGLLVVGSSFTQADINAGNVVYHVRAYTGTARTDSMSFTVKDGGVRLYPSARDGGIYDTDAANSSLTVKTFNVHVPAEPSTLPGALPADPAPNQAPVSGGDKTATIDEAASYTLTTADLNATDDFTPADGLTYRVLVTPGSGTLLLDGVAIGAFGTFTQADVDAGRVTFQHSGDEHFVDNFQFSVSDGTLTTATENFSLSIVPKNDTPTATNDDRVFTAEGGTVTITNGNIVVADTDRQADASGGTQYATSNDVILQISALPQFGHLTLGGVTVTLNQTVTSAQLAAGDLKYVHDGSENFTDSFSVVPVDDQGVAVGAGTNQSSTGSALVVPITISPVNDAPAFNSKSQLVAGEAGAIHEGESAVIGGASGYANADGSGTINGSVGGAHLVYGDDDNSSLQRQYRLTAIPEHGRLMLNGGVLGLGSVFTQADLDANRVTYQHDGSETSNDSFSYIVSDGDFSANDSGSFAQGVTATASTYNIEILPTNDKPTVSAPNNPVNIDSTVAGNNPVGGFTVGDLDDLSGVGTQDSVQVIVRLTQTDGTAFTAGEYAGVTLSVGLGGGATRDADKDGNGDYLVLRGTRAEVNAALATLTASVNDPSNEDHQYRIQVVVDDRLRDAGGNLTTGANGGSENQAATPGGNGQPISAVEFDGYTDSVTGTDLNLAQASVLVRVSTINSLPSVGIPASQLINEDRSTAVTGISVVDTESTALDVPVSVTVSVPSGQGILGIGGAGTQTTITLPSGRTVNISGDNSNSVTLIGRADDIQSLLNAAGTGLTYTSAPHANHDYNGAAAGDVTLSVQLNEGTAAIGGDVGSGSVASPAQTSELAITLQATNDAPTVTAGSGSLAIGQSGAAVAVPGFSVSDRDYNDGGGISAPPGESASPEQDFTQVTVRLTDANGVPLSQASYTDIILGSTSSPTEDHTSFEIDDTHSGTDSALVIRGSLANVNAYLAGLQVTLSGTLANTDTSYRVQVIADDRIRDVATGVLDASGLANGGLNPSGASTAVVPATVIDPYAALPGSLTLNMGSNTRTLFVSSLNDPTQVTASDVTVREGSATLNLTGSVGGFTISDPDANGANTFSATVHVSQGVISGVGGSGGSISGVGSDTVTISGATQAEVNARLQALTITYPTATGAPAGSDYTGNFTVTVSVNDGGSTGQRPGALTGDTDDANQNPGDFDYADGTTAALITTRTINVTVLPVNDAPLASGLDSSQTVTKGGNPVRLDGDGNVAVSDLELDVSADKWQGATLTINRQGGGNADDVFGLFDSDAGDDAVGVQVNGSDLLVDGVVVGSISNASGTLQVTFNADADGSVVGKVMGAVTYSNTNASTSASADVAVDFVLNDQNPNTTDSGTAGSGQDQGAEGRKIATQTITIHLNTAPVAVDDGLQTVQQGDPASGNVLPNDSDPDGNPLSVTGFTVAGVVGTFNPGDTATIAGVGTLTLNANGSYLFTPAPSFHGDVPVVTYSITDGTGGADTADLTIRVNAPPVAVDDGLQTVQQGDPASGNVLPNDSDPDGNPLSVGGFTVAGVVGSFNPGDTATIAGVGTLTLNADGSYLFTPIPTYHGDVPVVTYSITDGVGGTDSADLTIRVNAPPVAVDDGLQTVQQGTSASGNVLPNDSDPEGHPLSVAGFTVAGVAGTFNPGDTATITGVGTLTLNADGSYLFTPVATFHGDVPVVTYSITDGAGGTDNADLTIRVNSTPVANDDGVLLTDRDTPIQSIPVLANDTDPSGHPLTVTHAQSADGSVTINPDGTLDFTPAPGVTGDVTITYVISDGVGGSDTAQVRIHINEPPVAVNDGVHSAPQGDPIRGSVLGNDSDPENDAIHVVDFTVDGVTGTFAAGDSVAIPGVGTIRLDLDGRFVFTPNANYLGAVPTIDYRITDDHGGFATAQLRLRMDSSTLPLPPTSDVSTDRNAPTGDVLRHEYPDWQLDSLSVRRDMVPGLFVTLPVMDSQIQADERLDPLRSGYAEAYSGEIRSESIGIGLGFVPNLHVTLAVQDSQKTVDYQEGSLKFKDSLYFTGGHSLFGDFDALQPVAEEPSAREVKPSPPSDQPKAAVSFSDQISQAAKQRQPHSSTQVERLPAPQRKG				NA	NA	NA	NA	NA
D1-36_01640	225			hypothetical protein	ATGCAGCGACTCGAAAAGATGTGGATCATGGGGCTAAAGATCGGCTTGCAGGCGCCGATAAAACAGGCGCACTTGGTATTTGCCATACCCGCCCGAGATATGGAGACGAAGGCGCAAGCGGACGAGACTGCGATAACGCAGGTGTCCGACGAAACAGGCGAAGGACATATAGATAAGAAAAAAAATCAGGGGCGAAACGGTGAAGAACACCAAACCCAGAAGTGA	MQRLEKMWIMGLKIGLQAPIKQAHLVFAIPARDMETKAQADETAITQVSDETGEGHIDKKKNQGRNGEEHQTQK				NA	NA	NA	NA	NA
D1-36_01641	2190	rcsC_7		Sensor histidine kinase RcsC	ATGACAGATTGGCTCCAGAGCTATGGAGAAATGGCTGAAAGGGTGCGCCGTCACGATTGGAACGACACCTCCCTCGGACCCTTCGAAAAATGGCCAGATGTGCTCAAGACCACCGTGGCGCTGAGCTTTGCGTCCCATTTTCCCCAAGCAATCGTTTGGGGCCCCGAGCTGGTCATGCTGTACAACGATGCGTTCTTGCCCATCCTCGGTAGCAAACCCGAAGCATTGGGCCGTCCGTTCGATCAGGTTTGGCAGGAAGCCTGGAGCGATATCGGGCCGATCGTGGGCGCGGCCTTCGAGGGACAAGCGACCTATATCGAGAATTTTCCGTTGGTCATCGAACGTGGCGGTGGCCCCGAGAAAGCTTTTTTCACGTTCTGCTACAGCCCCATCCGGGATCAGTTCGGCAAGGTCGTGGGTATGCTGGACACGGTCACCGAGACGACTTCCACGGTGCTCATGACCCAACGCCTGGCGGTGCTCGATGCCATTGGCAGTGCCGTGGCCAATGCCACGGATCCGCAGGCGATCATGGCGACCACCGCGCGCATTCTCGCGGCGCACCTCAACCTGTCCAACTGCGCCTATGCCGATATGGATGAGGACGAGGATGGCTTCACGATTCGTGGCGATTGGGCGAAGGCTGGTTCGCCCAGCATTATCGGGCATTACCGTCTGCTGGATTTCGGCCGGTTGGCGGTCACCAATCTGCGGGCCGGCAAGCCATTGGTGATCAACGACAACCTGACGGAGCTGGCGCCTGAGGAAGCGGCTGCGTTCCAGTCGATAGGCATCGCGGCCACCATTTGCGTCCCGCTGATCAAGGATGGTCGCTTGACTGCGCTGATGGCGATCCATGACAAAACACCGAGAACCTGGACGTCGAACGACCTGACGTTGCTGATGGAGGTCACCGAGCGCTGCTGGGCCCACATCGAACGCGCCCGTGCGGACGCTGCGGTGCGTGAAGGCCTGGCGGCACTGGCCGAACTGAACGCGACCCTGGAACAACGGGTCGAGGAGCGCACGACGCGGCTGCAACAGACCGAAGCGGCGCTTCGCCAGTCGCAAAAGCTCGAAGCCATCGGCCAGCTCACCGGTGGTGTGGCCCATGACTTCAACAACCTGCTGACCATCATCCGGTCCTCGGTCGACTTCCTGCGCATGCCCAACCTGTCCGACGAGCGCCGGCAGCGCTACATGGTCGCGGTTTCCGAAACGGTGGAGCGGGCTTCGAAGCTGACCAGCCAGTTACTCGCGTTTGCACGGCGACAGCCGTTGAAGCCGGAAATCATCGACGTGGGCAAGCAAGTCCAAAGCCTGGGGGACATGCTGGAAACGGTCACGGGGGCGCGCATCCACGTCAAGGTCCAATTGTGTGAACAGCCTTGCTACATTCGCGCGGATCTGAGCCAGTTCGAGACGGCGCTGATCAACATGGCCTTGAACGCCCGGGATGCCATGAACGGCCAGGGGACGTTGTGGTTGAGGCTCGATTGTGGGCACAGCATGCCGCCGATCCGAGGCCATGCCGGGGCAGGGCAGGCCTTCGCCGCCATCGCCCTGGAGGACACCGGGACGGGAATCGACCCGCAAATACTCGAGCATATTTTCGAACCGTTCTTCACCACCAAGGAAGTGGGCAAGGGCACGGGGCTGGGGTTGTCCCAGGTATTTGGTTTCGCCAAGCAGTCGGGAGGCAACGTCGATGTTTCCACCGTCGTCGGTAAGGGCACCGTCTTTACGCTGTATCTCCCGGAAGTCGAACCAGAAGGAGTCCAGGCGCCCAAACGCGAGGAAACCACGCCTATGGTGCTGGAGAAGGGCCGGCGTCGGGTATTGATCGTGGAAGACAACTTGGAAGTGGGGCGTTTCGCCAACCAGATCCTGCAAGACCTGGGATACGAAACGGCCTGGGCGACCAATGCCGAGCAGGCGTTGGAGATGATTGGCCAGGATGCGACGAGGTTCGACGCCGTATTCTCCGATGTCGTCATGCCCGGCATCAGCGGAATCGCCCTGGCGAGGGAATTGCACAAGCGTCGCCCGGAGCTGCCGGTGGTGTTGACGTCTGGTTACAGCGAGGAGCTGGCTCGAAGCGGGCATGAAGGTTTCGAGTTTCTGTCCAAGCCTTATTCGGCTGATCAGGTTTCCAGGGTTCTGAGCCGCACCATACTGGGCGCGGAGTGA	MTDWLQSYGEMAERVRRHDWNDTSLGPFEKWPDVLKTTVALSFASHFPQAIVWGPELVMLYNDAFLPILGSKPEALGRPFDQVWQEAWSDIGPIVGAAFEGQATYIENFPLVIERGGGPEKAFFTFCYSPIRDQFGKVVGMLDTVTETTSTVLMTQRLAVLDAIGSAVANATDPQAIMATTARILAAHLNLSNCAYADMDEDEDGFTIRGDWAKAGSPSIIGHYRLLDFGRLAVTNLRAGKPLVINDNLTELAPEEAAAFQSIGIAATICVPLIKDGRLTALMAIHDKTPRTWTSNDLTLLMEVTERCWAHIERARADAAVREGLAALAELNATLEQRVEERTTRLQQTEAALRQSQKLEAIGQLTGGVAHDFNNLLTIIRSSVDFLRMPNLSDERRQRYMVAVSETVERASKLTSQLLAFARRQPLKPEIIDVGKQVQSLGDMLETVTGARIHVKVQLCEQPCYIRADLSQFETALINMALNARDAMNGQGTLWLRLDCGHSMPPIRGHAGAGQAFAAIALEDTGTGIDPQILEHIFEPFFTTKEVGKGTGLGLSQVFGFAKQSGGNVDVSTVVGKGTVFTLYLPEVEPEGVQAPKREETTPMVLEKGRRRVLIVEDNLEVGRFANQILQDLGYETAWATNAEQALEMIGQDATRFDAVFSDVVMPGISGIALARELHKRRPELPVVLTSGYSEELARSGHEGFEFLSKPYSADQVSRVLSRTILGAE				NA	NA	NA	NA	NA
D1-36_01642	186			hypothetical protein	ATGGGAGCACAGTACAGCGAGGAAAATGGCGCCGCGTATCCGGTCAACGAAGGTCTACAGTGTGGTCAGTCGGCCTATCGATCGGATTTCGGCGACGAGCCGATCAAGTCCATCAAGACGAGAGTATCCAAGGTACAGCGAGGGGAAAAAGCCAAATTCCTGCCCCGAATCCCCGTCAGGAAATAA	MGAQYSEENGAAYPVNEGLQCGQSAYRSDFGDEPIKSIKTRVSKVQRGEKAKFLPRIPVRK				NA	NA	NA	NA	NA
D1-36_01643	423			hypothetical protein	ATGCGTTTGACTTTGTCCACCTTGGCGCTTGGGCTTGTGCTCGCTCAGGGCGCGATGGCCGCTGGCGACGGTACTGCTGCGGTCGGCGGTGGTCTGGGCGGTGTGTTGGGTAATGTGGTTGGCCAACAGATGGGCGGCAGCACTGGCGCCGCGATTGGCGCGGGTGTCGGCGGTGCGGCCGGTAGTGCGGTGGGCGCGCGCAAGGGCAGCCGTACGGAAGCAGCCATCGGTGGTGGCCTGGGTTCGGCGGGTGGCTCGATCGTTGGCAACCGCTTGGGCGGATCGACCGGATCCACCATCGGCGCGGGCATTGGTGGGGCGGCAGGCGGTGCGCTGGGCAGTAACCTGTCCAACGATAATGATGGACACTTGGGCGGCAAGAAGCACAAGCACAAGCACAAGCACAAGAAAAAGCATCGCTGA	MRLTLSTLALGLVLAQGAMAAGDGTAAVGGGLGGVLGNVVGQQMGGSTGAAIGAGVGGAAGSAVGARKGSRTEAAIGGGLGSAGGSIVGNRLGGSTGSTIGAGIGGAAGGALGSNLSNDNDGHLGGKKHKHKHKHKKKHR				NA	NA	NA	NA	NA
D1-36_01644	174			hypothetical protein	ATGACGCCGGAAACTGAAGGCAAGGAAGAAAAGGGCCCGTCGGGTGTTCCCTTCATCAACGATCCGGGCGTCAACGATCCGGGTAACGAAGACCCTGGTTCCCTGATGGATGATGCTCAGGTTCCCTTGATCGACGATGAAGATGCCGAGGTTGAGGATGAGTCCTACAAATAA	MTPETEGKEEKGPSGVPFINDPGVNDPGNEDPGSLMDDAQVPLIDDEDAEVEDESYK				NA	NA	NA	NA	NA
D1-36_01645	204			hypothetical protein	ATGACTGCTGATACGCCCGTACCGGACGACGAGACGCCGGAATATCCGCTGCGTTCACCCACCGACCCGCTAAGCCGCGACCAGCGACCCCCTGATGACGACGACACTGGAGTCGAGCAGGTGCCAAGCGATGATCAGGATGTCGAGGCGACGCCGGACGATCCGGACATTGCCGGTGACGACGCTTCGGGCACGCCCAGCTGA	MTADTPVPDDETPEYPLRSPTDPLSRDQRPPDDDDTGVEQVPSDDQDVEATPDDPDIAGDDASGTPS				NA	NA	NA	NA	NA
D1-36_01646	372			hypothetical protein	ATGATGAAGTCAAACCTGACGGCTCTGGCATTCGCCGGAGTCCTCTGCGCCAGTTCACTGGCGGCTTTCGCCCAATCGTCGGACAACGCGCCCGTGGACAAGGGAGGCATGCCGCCTTCGACGCAGATGGATGCGGGATCCACCACCGACACCACCGGCAACGCCCTGCCACCCGGCTCCGTGGGTGGAGGCAACGGTGGTGATGCCAGCGGCAGCAGCACCAGCCCGGGAACCGGTAGCGGTTCCACCAGCGGCGGCAGCACGATGGGCGGCGGTTCCGGCTCAAGCAGTGGGACCGGCAGCAGCAGCGGTAGCGGCGGTAGCTCAAGCGGCGGCGGGTCGGGCTCCGGCTCAGGTGGTTCCGGCAGCTGA	MMKSNLTALAFAGVLCASSLAAFAQSSDNAPVDKGGMPPSTQMDAGSTTDTTGNALPPGSVGGGNGGDASGSSTSPGTGSGSTSGGSTMGGGSGSSSGTGSSSGSGGSSSGGGSGSGSGGSGS				NA	NA	NA	NA	NA
D1-36_01647	696	gph_1		Phosphoglycolate phosphatase	ATGAATGCACCGCTGAAAAAGTTTGGCCCGATCAAGGCCGTGATTTTCGACATGGATGGCTTGCTGCTGGACACCGAAGGCATCTATACCGAAGTCACGTCCATCATTGCCGAGCGCTACGGGCGCACGTTCGACTGGAGCGTCAAGCAGAACATCATCGGGCGTGGCGCCACGGACCTGGCCAACTACGTTGTCCAGGCGCTGGAGTTGCCAATCACCCCCCAAGAATTCCTGACCATTCGCGAACCCTTGATGCGCGAGCGTTTTCCTCATGCCATGGGGATGCCTGGCGCTGAGGAGCTGGTGCGGCATTTGAAGGCTCACCACATCCCGATTGCGGTAGGGACGAGCTCGGCTCGCCCATCGTTCGAGCTGAAAACCACCCTGCATCGGGACTGGTTCGCGTTGTTCGACTGCATCGTGACCGCAGATGATCCGGAAGTGGGTGCGGCCAAGCCCGCTCCGGATATCTTCCTCACCGCGGCCCGACGCCTGGGCGTCGATCCTCGCGATTGCCTGGTCTTCGAGGATTCCCCGTTCGGCGTCACGGCGGCGAAAGCGGCGGGCATGACCGCCATCGCTATTCCGGATTCGGCCATGGCCGACGAAAAGTACGCCCACGCCGATGCGATCATCCGATCACTCAAACTGTTCCAGCCAAGCCTGTGCGGTTTGCCGGAACTGGAATGGGCTTGA	MNAPLKKFGPIKAVIFDMDGLLLDTEGIYTEVTSIIAERYGRTFDWSVKQNIIGRGATDLANYVVQALELPITPQEFLTIREPLMRERFPHAMGMPGAEELVRHLKAHHIPIAVGTSSARPSFELKTTLHRDWFALFDCIVTADDPEVGAAKPAPDIFLTAARRLGVDPRDCLVFEDSPFGVTAAKAAGMTAIAIPDSAMADEKYAHADAIIRSLKLFQPSLCGLPELEWA	PGPT0008620_70	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B2|RIBOFLAVIN_METABOLISM	ISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008620-FHY-K20884	NA	NA
D1-36_01648	747	bdcA	COG1028	Cyclic-di-GMP-binding biofilm dispersal mediator protein	ATGAATACCCAAGCACTGAACGGCAAAGTCGCATTGGTCCAGGGCGGTTCCCGTGGCATCGGCGCCGCCATCGTCAAGCGCCTGGCTGCGGAAGGCGCGGCAGTCGCCTTTACCTACGTCAGCTCTGGCGCAAAATCCGAAGAACTGCAGAACAGCATCACCGCAGCGGGCGGCAAGGCCCTGGCCATCAAGGCTGACAGCGCCGACGCCGACGCCGTGCGCAACGCCGTCGCCGCCACCGTCGAGGCTTTTGGCCGCCTGGATATCCTCGTCAACAATGCCGGCGTGCTGGCAATGGCGCCGCTGGATGAGTTCAAGCTGGAAGATTTCGACCAGACCCTGGCCGTCAACGTGCGCAGTGTGTTCGTCGCCACCCAGGCCGCCGCGCGGCACATGGGCGAAGGTGGCCGGGTCATCAACATCGGCAGCACCAACGCCGATCGCATGCCCTTCGCTGGAGGCGCCACGTACGCCATGAGTAAATCCGCGCTGGTAGGCCTGACCAAAGGCCTGGCCCGTGACCTAGGCCCACGGGGCATCACCGTCAACAACGTGCAGCCCGGCCCGGTGGACACTGACATGAACCCGGCCGACAGCGACTTCGCCTCCAGCCTGATAGACCTCATGGCGGTTGGCCGTTACGGCACGTCGGAAGAAATCGCCAGCTTCGTTGCCTACCTCGCGGGCCCGGAAGCTGCCTATATCACCGGGGCCAGCCTGACCATCGACGGCGGTTTCGGCGCCTGA	MNTQALNGKVALVQGGSRGIGAAIVKRLAAEGAAVAFTYVSSGAKSEELQNSITAAGGKALAIKADSADADAVRNAVAATVEAFGRLDILVNNAGVLAMAPLDEFKLEDFDQTLAVNVRSVFVATQAAARHMGEGGRVINIGSTNADRMPFAGGATYAMSKSALVGLTKGLARDLGPRGITVNNVQPGPVDTDMNPADSDFASSLIDLMAVGRYGTSEEIASFVAYLAGPEAAYITGASLTIDGGFGA	PGPT0003180_13205	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
D1-36_01649	924	dmlR_6		HTH-type transcriptional regulator DmlR	ATGGAGAGTTTCAGCAGTATCGAATGTTTTGTTCGCAGCGCCGAAGTCGGCAGCTTTGCCGAGGCGGCACGACGTTTGGGCGTGACCCCGGCAGCGGTGGGTAAAAGCGTCGCCAAGTTGGAGGCGCGGATGGGGGTGCGCCTGTTCCAGCGCAGCACCCGCAGCTTGAGGCTGACCGAAGCCGGCCAGTTGTTTCTAGGAGAAGTTGGCAGCAGTTTCAACACCATCCAGAATGCCGTCGCCAACCTGGCCAGCGCCGGCGGACAACCGGCGGGAACGCTGAAAGTGAGCATGGGCACGGCGTTCGGGCGGTTGTATGTCGTGCCGTTGTTGGGGGAATTGCTGCGCAGGTACCCGGCGATCAGTCCGGATTGGCATTTCGATAACCGGCAGGTGGACTTGATCGGCCAGGGCTTCGACGCGGCTATCGGCGGCGGTTTTGAGTTGCCTCAGGGCGTCGTTGCTCGAAAATTGGCCGTGGCCCACCGGGTGCTGGTTGCGTCAGGCGATTATTTGCAGAAATATCCAGAGATCATCGAGCCCGGGGATCTGGCGCACCATCGAGGCATTCTTATTCGCTCGCCCCAAACCGGGCGTGTCCGTTCATGGCAATTGACCAGCCGCGACCAACAACATAGCCCGCTCATGCTTAAACCCGGCATGACAATGAGTGATTCAGAGGCCGATTGCGCCGCCGCGGCTCAGGGGTTGGGCATCGGTCTGGTCAGCATGCCAGTAGCTCTTCCCTTCCTCGACAGCGGCGCCGTGCAACGGGTCCTGCCGGACTGGTACGTCGATGATGGCAACATTTCCATCTATTACGCTGAGCATAAACTGTTGCCAGGCAAGACTCGGGCGTTCGTGGACTTCATCATTGAGCAGTTTGGCGAACAGGGGTTGGCTCGGCGGTTTAGCGCGGTCTGA	MESFSSIECFVRSAEVGSFAEAARRLGVTPAAVGKSVAKLEARMGVRLFQRSTRSLRLTEAGQLFLGEVGSSFNTIQNAVANLASAGGQPAGTLKVSMGTAFGRLYVVPLLGELLRRYPAISPDWHFDNRQVDLIGQGFDAAIGGGFELPQGVVARKLAVAHRVLVASGDYLQKYPEIIEPGDLAHHRGILIRSPQTGRVRSWQLTSRDQQHSPLMLKPGMTMSDSEADCAAAAQGLGIGLVSMPVALPFLDSGAVQRVLPDWYVDDGNISIYYAEHKLLPGKTRAFVDFIIEQFGEQGLARRFSAV				NA	NA	NA	NA	NA
D1-36_01650	729	hyuE		Hydantoin racemase	ATGCGAATTCTAGTGGTCAACGTCAACACCACCGATTCCATCACCCAGGCCATTGCCCGACAAGCCCAGGCCGTCGCCGCGCCGGGTACCGAGATCATCGGGCTCACGCCGCATTTCGGTGCCGATTCCATCGAAGGCAACTTCGAGAGCTACCTGGCGGCCATCGCCGTCATGGACCGGGTGATGTCCTATGACCAACCCTTCGATGCGGTAATCCAGGCCGGCTACGGCGAGCATGGTCGCGAGGGCTTGCAGGAGTTGCTCGACGTGCCGGTGGTGGACATCACCGACGCTGGCGCCAGCACCGCCATGTTCCTGGGCCACGCTTACTCGGTCGTCACGACGCTCGACCGCACAGTGCCGCTGATCGAAGATCGTCTCAAACTCTCCGGCCTGTTCGATCGCTGCGCCTCGGTGCGGGCCAGCGGCCTTGCGGTATTGGAGCTTGAAGAGGACCCGCAACGGGCGGTGGAAGCGATCGTGCAGCAGGCCGAACTGGCGGTCAGGCAGGACAAGGCGGAAGTGATCTGCCTGGGCTGCGGCGGCATGGCCGGGCTCGATGAGCAGATCCGCCAGCGCACCGGCGTGCCGGTGGTCGACGGGGTGACCGCGGCCGTGACGATTGCCGAATCGCTGGTGCGGCTGGGGTTGTCCACCTCTAAGGTGCGCACCTACGCGACACCTCGGCCGAAGAACATCATCGGCTGGCCGGGGCGGTTTGGGCGGTGA	MRILVVNVNTTDSITQAIARQAQAVAAPGTEIIGLTPHFGADSIEGNFESYLAAIAVMDRVMSYDQPFDAVIQAGYGEHGREGLQELLDVPVVDITDAGASTAMFLGHAYSVVTTLDRTVPLIEDRLKLSGLFDRCASVRASGLAVLELEEDPQRAVEAIVQQAELAVRQDKAEVICLGCGGMAGLDEQIRQRTGVPVVDGVTAAVTIAESLVRLGLSTSKVRTYATPRPKNIIGWPGRFGR	PGPT0000895_881	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0000895-hpxA-K16841	NA	NA
D1-36_01651	1530	pucI_1	COG1953	putative allantoin permease	ATGCGTACAAGTCTTTCTAATAACATCGCGCTGGATCTGCCCTCCCCAACCACTGCGCTCGAAGAACGAGCAGCAGCTCCTCTCGCCTTGAGCCCCAGATTGCATAACAAGGATTTAGCACCAACCAAGGTCGAAGGCCGGCGCTGGGGTCGCTACAGCATCTTTGCCCTGTGGACCAACGACGTACACAACATCGCCAACTATTCATTCGCCATCGGCCTTTATGCCCTGGGCCTGGGCGGCTGGCAGATCCTGCTGTCCCTGGGGATCGGCGCGGCACTGGTGTATGGCTTCATGAACCTGTCCGGCTACATGGGGCAGAAAACTGGAGTACCTTTTCCCGTCATCAGCCGGATCAGTTTCGGTATCCACGGCGCGCAGATTCCTGCGCTGATCAGGGCCGTTATCGCCATCGCCTGGTTTGGTATTCAGACGTACCTGGCTTCAGTGGTATTTCGCGTGTTGTTGACCGCGGTCCACCCTGGCTTCGCCGAGTACGACCAGAACTCCATCCTCGGGCTGTCGAGCCTGGGTTGGGTGTGCTTCGTGGCCATCTGGTTCGTGCAACTGGTGATCCTGGCCTACGGCATGGAGATGGTCCGGCGCTACGAAGGCTTCGCCGGGCCGGTAATTCTGGTGACGGTCGCGGCACTTGCCGGTTGGATGTATCTGCAGGCCGACGCAACCATTGCCTGGTCGATCCGCGAGCCCCTGACCGGAGGCGAGATGTGGCGCAACATATTGGCGGGCGGAGCGCTGTGGCTGGCGATCTATGGCACGCTCATTTTGAATTTCTGCGATTTCGCCCGCTCGTCGCCGTGCCGCCGAACCATCGTCGTAGGAAACTTCTGGGGCTTGCCGGTGAACATTCTGGTGTTTGCCGCCATTACCATCCTGTTGTGCGGTGCGCAGTTCCAGATCAACGGCCAGATCATCGAAAGCCCGACCCAGGTCATCGCCTCGATTCCCAATACGTTCTTCCTGGTGCTTGGCTGCCTGGCCTTTTTGATCGTCACCGTGGCGGTGAACATCATGGCCAACTTCGTCGCCCCGGCGTTCGTGCTCAGCAACCTGGCGCCCAAGTACCTGACCTTCCGCCGCGCGGGGTTGATCAGCGCCGCCATTGCCGTGCTGATCCTGCCGTGGAATCTCTATAACAGCCCGCTGGTGATCGTGTATTTCCTGTCCGGCCTCGGCGCCCTGCTCGGGCCGCTGTATGGCGTGATCATGGTCGACTACTGGCTGCTGCGAAAAGGCCGCATCAACGTGCCGCAACTGTACAGCGAGGACCCAAATGGTGCGTATTTCTACAGCAACGGGGTCAACCTGCGGGCGGTGGCGGCGTTCATTGCAGCGGCACTGATCGCGATTGTCCTGGCGCTGGTGCCCGGCTTTGACAGCATTTCACCATTTTCCTGGCTGATTGGCGCTTCGATTGCAGGGTTGTTGTACCTGATCATCGCCAAGCGCGAGCCGCACTACGAGGACGTAAGCGGCGAATCCATCGCTGTGGATAACGTCAGCCATTAA	MRTSLSNNIALDLPSPTTALEERAAAPLALSPRLHNKDLAPTKVEGRRWGRYSIFALWTNDVHNIANYSFAIGLYALGLGGWQILLSLGIGAALVYGFMNLSGYMGQKTGVPFPVISRISFGIHGAQIPALIRAVIAIAWFGIQTYLASVVFRVLLTAVHPGFAEYDQNSILGLSSLGWVCFVAIWFVQLVILAYGMEMVRRYEGFAGPVILVTVAALAGWMYLQADATIAWSIREPLTGGEMWRNILAGGALWLAIYGTLILNFCDFARSSPCRRTIVVGNFWGLPVNILVFAAITILLCGAQFQINGQIIESPTQVIASIPNTFFLVLGCLAFLIVTVAVNIMANFVAPAFVLSNLAPKYLTFRRAGLISAAIAVLILPWNLYNSPLVIVYFLSGLGALLGPLYGVIMVDYWLLRKGRINVPQLYSEDPNGAYFYSNGVNLRAVAAFIAAALIAIVLALVPGFDSISPFSWLIGASIAGLLYLIIAKREPHYEDVSGESIAVDNVSH	PGPT0009075_915	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
D1-36_01652	744	cysH	COG0175	Phosphoadenosine phosphosulfate reductase	ATGAGCCCATCGTTTGACGTCGTGGAACTCGCCACGACCTATGCCAATAAGTCCCCCCAAGACATCCTCAAGCTGGCCTTCGCCGAATTCGGCGATGACCTGTGGATATCCTTCAGCGGCGCCGAAGACGTGGTGCTGGTGGACATGGCCTGGAAACTGAACAAGAACGTCAAGGTGTTCAGCCTCGACACCGGCCGCCTGCACCCGGAAACCTATCGTTTCATCGACCAGGTCCGCGACCACTACAAGATCGACATCGAATTGATCTCGCCCGACCATACGAAACTGGACCCTTTCGTTAAGCAAAAAGGCCTGTTCAGTTTCTATAAGGACGGCCATGGCGAATGCTGCGGCATCCGCAAGATCGAGCCGTTGCGGCGTAAACTGACCGACGTGCGCGCCTGGGCCACCGGCCAGCGCCGCGATCAGAGCCCTGGCACCCGCAGCCAGGTGGCGGTGCTGGAAATCGACACGGCATTCTCTACGCCCGAGCGCACGCTGTATAAGTTCAACCCGCTGTCGCAGATGACCAGCGAGGAAGTCTGGGGTTATATCCGCATGCTCGAGCTGCCTTATAACAGCCTGCACGAACGCGGTTTTATCAGCATCGGCTGCGAGCCATGCACCCGCCCCGTCCTGCCGAACCAACATGAGCGCGAGGGCCGCTGGTGGTGGGAGGAAGCCACGCAGAAAGAATGCGGGCTGCACGCCGGCAATATCATCGCCAAATCCAAGACTGTTTAG	MSPSFDVVELATTYANKSPQDILKLAFAEFGDDLWISFSGAEDVVLVDMAWKLNKNVKVFSLDTGRLHPETYRFIDQVRDHYKIDIELISPDHTKLDPFVKQKGLFSFYKDGHGECCGIRKIEPLRRKLTDVRAWATGQRRDQSPGTRSQVAVLEIDTAFSTPERTLYKFNPLSQMTSEEVWGYIRMLELPYNSLHERGFISIGCEPCTRPVLPNQHEREGRWWWEEATQKECGLHAGNIIAKSKTV	PGPT0002785_1499	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002785-cysH-K00390	NA	NA
D1-36_01653	618		COG0560	Phosphoserine phosphatase	GTGGAAATTGCCTGTCTCGACCTGGAAGGTGTGCTGGTCCCGGAGATCTGGATCGCCTTCGCTGAAAAAACCGGGATTGAATCCCTCAGGGCAACCACTCGGGACATTCCCGACTACGACGTGCTGATGAAGCAACGGTTGCGCATCCTTGACGAGCATGGTCTCAAGCTCTCCGATATCCAGGAAGTCATCGCCACCCTCCAGCCGCTGGACGGCGCCATCGAATTCGTCGATTGGCTGCGGGAGCGGTTCCAGGTGGTGATTCTTTCCGACACCTTTTACGAGTTCTCCCAACCGCTGATGCGTCAGCTGGGTTTCCCGACGCTGCTCTGCCATCGTTTGATCACCGACGACGGCGGGCGAGTGACTGGCTATCAGCTGCGTCAGAAAGATCCCAAGCGTCAGTCGGTCCTTGCCTTCAAGAGCCTTTACTATCGGGTGATCGCGGCGGGAGATTCCTACAATGACACCACTATGCTGGGCGAAGCCGACGCTGGGATTCTGTTCCATGCGCCTGAAAACGTCATCCGCGAGTTTCCGCAATTCCCGGCGGTGCATACGTTTGCCGAGTTGAAGCAGGAATTCATCAAGGCTTCGAACCGCCCCCTCGGCCTGTAA	MEIACLDLEGVLVPEIWIAFAEKTGIESLRATTRDIPDYDVLMKQRLRILDEHGLKLSDIQEVIATLQPLDGAIEFVDWLRERFQVVILSDTFYEFSQPLMRQLGFPTLLCHRLITDDGGRVTGYQLRQKDPKRQSVLAFKSLYYRVIAAGDSYNDTTMLGEADAGILFHAPENVIREFPQFPAVHTFAELKQEFIKASNRPLGL	PGPT0020280_76	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_SERINE_DEGRADATION,PGPT0020280-trhH-K02203	NA	NA
D1-36_01654	1344	pabB	COG0147	Aminodeoxychorismate synthase component 1	ATGCCAACCTGCTTCGTACACCCGCTGCCCTACCGCGCCAACCCCGCCGATTATTTCGCGGCGATCCGCCATGCCCCGGGAAGCGTGCTGCTCGACAGCGGCCGGCCGAGCGCCGAGCGGGGGCGTTATGACCTGCTCAGTGCCTGGCCGCTGGAACAACTGGCGGTGGTGCCGGATGAAAGCGGTGGCCATTTCCTACAGCGTCTTCGGATGCATCTAACGCAGCTGGGCCACGCAGAGCTACCTGGCACGGTGCAATTGCCCTTCGCTGGCGGCCTGATTGGCTACTTGAGCTACGACTTCGGCCGACACCTCGAAGCACTGCCGTCCCATGCACACGATGACCTGCAACTGCCCGACGCACGTTTCGGCCTGTACGACTGGGCATTGATTACCGATCACCAGGCCGCTACCAGCCAACTGGTTTTCCATCCCCATTGCGGCGAAAGTGAACGCCGACGTTTGATTGAACTGTTCAGCCAGCCGCTCGCGGCGCCTGCCAAGGCGTTCAGTCTTGAGGGCCCGATGGCGCCCGACCTCAGCGCTGAAGCCTATAAGCAGGCATTCGAACGTATCCAGGCGTATATCCAGGCCGGCGATTGTTATCAGGTCAACTTTGCCCAGCGCTTTCGCGCCCGGTGCCAGGGCGATGCGTGGCCCGCTTACCAGGCGCTGCGGGCGGCCTGCCCGACGCCTTTTTCCGGTTTCCAGAGCCTGCCGGAGGGCGGCGCGGTACTGAGCCTGTCGCCGGAGCGTTTCGTCAAGGTCAGCGAAGGCCACGTCGAAACCCGCCCGATCAAGGGCACCCGACCCCGCGGCACAACGCCCGAGGAAGACACGGCCCACGCCGCCGAACTGCTGGCCAGCCCCAAGGACCGAGCGGAAAACCTGATGATTGTCGACCTGCTGCGCAATGACCTGGGCCGCACGTGCCGCATCGGCTCGGTGCGAGTGCCGGAGCTGTTCAGCCTGGAAAGTTATCCGAACGTGCATCACCTGGTCAGCAGCGTGACCGGCGAACTGGCGGATGACAAGGACGCCTTGGACCTGATCGCTGGTAGCTTTCCCGGCGGCTCGATCACCGGCGCGCCGAAAATCCGCGCCATGCAGATCATCGACGAACTCGAACCGACCCGACGCGGGTTGTATTGCGGCTCGCTGCTGTATCTGGATGTGCGCGGGGAAATGGACAGCTCGATCGCCATCCGCAGTTTGTTGGTCAAGGATGGACAGGTGTGTTGCTGGGGCGGTGGTGGGATTGTCGCGGATTCAGATTGGCAGGCGGAATATCAGGAGTCGATGACCAAGGTGAAGGTCCTGCTGGAAACCTTGCAGAACCTGTGA	MPTCFVHPLPYRANPADYFAAIRHAPGSVLLDSGRPSAERGRYDLLSAWPLEQLAVVPDESGGHFLQRLRMHLTQLGHAELPGTVQLPFAGGLIGYLSYDFGRHLEALPSHAHDDLQLPDARFGLYDWALITDHQAATSQLVFHPHCGESERRRLIELFSQPLAAPAKAFSLEGPMAPDLSAEAYKQAFERIQAYIQAGDCYQVNFAQRFRARCQGDAWPAYQALRAACPTPFSGFQSLPEGGAVLSLSPERFVKVSEGHVETRPIKGTRPRGTTPEEDTAHAAELLASPKDRAENLMIVDLLRNDLGRTCRIGSVRVPELFSLESYPNVHHLVSSVTGELADDKDALDLIAGSFPGGSITGAPKIRAMQIIDELEPTRRGLYCGSLLYLDVRGEMDSSIAIRSLLVKDGQVCCWGGGGIVADSDWQAEYQESMTKVKVLLETLQNL	PGPT0008005_1350	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008005-pabB-K01665	NA	NA
D1-36_01655	987			hypothetical protein	ATGTTCGGCCTCTGGAAGACCTGGAAAGCCCTGGAAGCCCGGGGCATCATGGGCATCAACCGGCGTAACGCCGACTACGTGCTCAAGTACAACAAGCGCAGCCTGTACCCCATCGTCGATGACAAGATCATCACCAAGGAACGGGCTATCGCCGCCGGCATTCATGTGCCGGAGCTGTACGGGGTGATCTCCACCGAGAAGGAAATCGACAAGCTCGACGAGATCATCGGCGGGCGCACCGACTTCGTGATCAAGCCGGCCCAGGGCGCCGGCGGCGATGGCATCATCGTCATCGCCGATCGCTTCGAAGGCCGCTACCGCACCGTGTCCGGCAAGATCATCAGCCACGAGGAAATCGAGCACCACGTCTCGAGCATCCTCACCGGCCTGTATTCCTTGGGTGGGCACCGTGACCGGGCGCTGATCGAGTACCGCGTGACGCCGGACCAGATCTTCAAGAGCATCAGCTACGAAGGCGTGCCGGACATCCGCATCATCGTGTTGATGGGCTACCCGGTGATGGCCATGCTGCGCTTGCCGACCCGTCAGTCCGGCGGCAAGGCCAACCTGCACCAGGGCGCCATCGGCGTCGGCGTCGACCTCGCCACCGGCCTCACCCTGCGCGGCACCTGGCTGAACAACATCATCACCAAGCACCCCGACACCACCAACGCGGTGGATGGCGTGCAGTTGCCCTACTGGGACGGCTTCATGAAACTGGCCGCCGGTTGCTATGAACTGTGCGGGCTGGGCTACATCGGCGTAGACATGGTGCTGGACCAGGAAAAAGGGCCGTTGATCCTCGAACTGAACGCCCGCCCCGGGCTGAACATCCAGATTGCCAACGACTGCGGGCTGACCCTGCGCACCCATGCCGTGGAAGCACGCCTGGAAGAGCTCAAGGCCCGAGGCGTGATCGAAACCGTGGAAGAGCGCGTGGCGTTTGCCCAGGAATTGTTTGGGCACATTCCGCCGGTAGAGGGGTGA	MFGLWKTWKALEARGIMGINRRNADYVLKYNKRSLYPIVDDKIITKERAIAAGIHVPELYGVISTEKEIDKLDEIIGGRTDFVIKPAQGAGGDGIIVIADRFEGRYRTVSGKIISHEEIEHHVSSILTGLYSLGGHRDRALIEYRVTPDQIFKSISYEGVPDIRIIVLMGYPVMAMLRLPTRQSGGKANLHQGAIGVGVDLATGLTLRGTWLNNIITKHPDTTNAVDGVQLPYWDGFMKLAAGCYELCGLGYIGVDMVLDQEKGPLILELNARPGLNIQIANDCGLTLRTHAVEARLEELKARGVIETVEERVAFAQELFGHIPPVEG				NA	NA	NA	NA	NA
D1-36_01656	1533			hypothetical protein	ATGCGCTCCCTTACCCTCCATTTGAAAATGCTGATCGCCATCCTAGTGGTGCTGGGCCTGTCGGTAACGGCCTATCAGATTTTCGTGCTCGGCATCCCGGTGACCGAAGACGCCACCGATGACCTCTGGAATATCGATGCCAAGGTCGAGTTCGTGCCCAACGCCAAGGATCCGGTGAAGATCCAGATGTTCGTGCCCCCCTTGAGCCGCGACTATGTGAGCCTCAACGAGAGCTTCATTTCCAATAATTACGGCGTGGCGGTGAACCGGGTCGACGGCAACCGCAAGGTGACGTGGTCGGCCCGTCGCGCCAAGGGCAACCAGACCCTCTATTACCGCTTGGTGCTGACCAAGCGCTACAGCGCCGAGAAAACCAAGGTCAAGGGCCCGACCTTCCGCGACAGCATTGCCGTCGAAGGGCCGGAAAAACTCGCCGCCGAAGCACTGCTCGCGCCGATCCGCCAGCATTCGGCCGACGTCGAGACCTTCATCAGCGAAGCGATCAAGCGGGTCAACAACCTCAATGACGACAACGTCAAGCTGTTGCTGGCCGGTGATCCTTCGTCGGCCAACAAGGCACGCATCGTTGAATTGGTGCTGTCCATTGCCCACGTGCCGGTGGAAAAGGTCCACACCATCCGGCTGGTGGCTGACCAACCGCAGACACCCGAGCTGTGGCTGCGCAGTTTCAACGGCACCGATTGGCTGTATTTCAACCCGGATACCGGCGAGCAAGGCCTGCCCACCGACCGTTTGCTGTGGTGGACCGGCGATGAGAACCTGATCACCGTCGATGGCGGCAAGAAAGCGACCGTCACCTTCAGCATGAACAACAGCGAAATGAACGCCATTCGCCTGGCCAAGCTGACGGATGAGAACACCGACGCCAACTTCCTCGAATATTCCCTGTACGGCCTGCCGCTGCAGACCCAGCAAACCTTCATGATCATGGTGATGATCCCGATTGGCGTGCTGGTGATCCTGGTGCTGCGCAACCTGATCGGCCTGCAAACCCTGGGGACCTTCACCCCGGTGCTGATCGCCCTCGCCTTCCGCGAAACCCAACTGGGTTTCGGCATCATACTGTTCACGGTGATCACCACGCTGGGCCTGTCGCTGCGTTCGTACCTGGAGCACCTCAAGCTGCAAATGCTGCCGAGGCTCTCCGTGGTGCTGACGTTCGTGGTGGTGCTGATCGCCGCCATCAGCCTGTTCAGCCATAAGTTGGGCCTGGAACGCGGCTTGTCAGTGGCGCTGTTCCCGATGGTGATCCTGACCATGACCATCGAACGCCTGTCCATCACTTGGGAAGAACGCGGCGCCGGCCACGCGATGAAAGTCGCCATCGGCACCTTGTTCGCCGCGTCGCTGGCGCACCTGATCATGAGTGTTCCTGAGCTGGTGTACTTCGTGTTCACCTTCCCGGCGATCCTGCTGATCCTGGTGGGCTTCATGCTGGCCATGGGTCGCTATCGCGGCTATCGCCTGACCGAGCTGGTTCGGTTCAAGGCCTTCGTCAAGGCTGACTCCTGA	MRSLTLHLKMLIAILVVLGLSVTAYQIFVLGIPVTEDATDDLWNIDAKVEFVPNAKDPVKIQMFVPPLSRDYVSLNESFISNNYGVAVNRVDGNRKVTWSARRAKGNQTLYYRLVLTKRYSAEKTKVKGPTFRDSIAVEGPEKLAAEALLAPIRQHSADVETFISEAIKRVNNLNDDNVKLLLAGDPSSANKARIVELVLSIAHVPVEKVHTIRLVADQPQTPELWLRSFNGTDWLYFNPDTGEQGLPTDRLLWWTGDENLITVDGGKKATVTFSMNNSEMNAIRLAKLTDENTDANFLEYSLYGLPLQTQQTFMIMVMIPIGVLVILVLRNLIGLQTLGTFTPVLIALAFRETQLGFGIILFTVITTLGLSLRSYLEHLKLQMLPRLSVVLTFVVVLIAAISLFSHKLGLERGLSVALFPMVILTMTIERLSITWEERGAGHAMKVAIGTLFAASLAHLIMSVPELVYFVFTFPAILLILVGFMLAMGRYRGYRLTELVRFKAFVKADS				NA	NA	NA	NA	NA
D1-36_01657	501			hypothetical protein	ATGTGCCTGCCGGGGCTCGCCGCGGCGGGGGAAAAAACCGTGTACGGCCTCAACGAATATGCGGCGCTGCAGGGCATTGACCTGGAGGTTGCCGCCAAGCTGGACACCGGTGCCAAGACGGCCTCGCTCAGTGCCCGCGACATCAAGCGCTTCAAGCGCAACGGCGAATCCTGGGTGCGCTTTTACCTGGCGATCGACGCCGCCCATTCGCACCCCATCGAACGCCCGCTGGCCCGGGTCAGCAAGATCAAGCGCCGCGCCGGTGACTACGACCCCGAAGAAGGCAAGAAGTACACGGCCCGGCCGGTCATCGAACTGGACATCTGCATGGGCTCGGTCCTGCGCAGCATCGAAGTGAACCTGACCGACCGCAGCGCCTTTCAATACCCGTTGCTGATCGGCTCCGAGGCGCTTAAACGCTTCGACGCGCTGGTCGACCCCAGTCTCAAATACGCAGCCGGCAAACCCGCCTGCGCCAATGCCGCTCACACCGCAGAGTAA	MCLPGLAAAGEKTVYGLNEYAALQGIDLEVAAKLDTGAKTASLSARDIKRFKRNGESWVRFYLAIDAAHSHPIERPLARVSKIKRRAGDYDPEEGKKYTARPVIELDICMGSVLRSIEVNLTDRSAFQYPLLIGSEALKRFDALVDPSLKYAAGKPACANAAHTAE				NA	NA	NA	NA	NA
D1-36_01658	714	glaR	COG1802	HTH-type transcriptional repressor GlaR	ATGCTCGATCAGCTCGAAACGCCGGTCCTCGTCCAAGACGATGTCGAGACCTTGTCCGAGAACGTTTTTCGACGCATCCAGGCTGCCATCGTCAAGGGCGAGATCGCCCCGGGCAGCAAGATCTCCGAGCCCGAACTGGCCCGTACCTACGGCATCAGCCGTGGGCCGCTGCGCGAGGCGATCCATCGCCTCGAAGGCCAGCGCCTGCTGGTGCGCATCCCCCATGTCGGGGCACGAGTGGTCTCGCTGAGCCATGCCGAGCTGCTGGAGCTCTATGAAATTCGCGAGTCCCTGGAGGGCATGGCCTGTCGCCTCGCGGCGCAGCGCATGACCCTGGAGGAAATCGACGAACTGCGCCGGGTCCTGGAAACCCACGAGCGCGATGCGGCGTTCCAGGCCGGTGTCGGCTATTACCAGCAGGAAGGCGACTTCGACTTCCACTATCGGATTATCCAGGGCAGCGGCAATCGCACCCTGACGCAGATGCTCTGCGGCGAGTTGTACCAACTGGTGCGCATGTACCGCATCCAGTTCTCCACCACGCCCAACCGTCCGCGCCAGGCTTTTGCCGAGCACCATCGGATTCTCGATGCCATCGCCGACCGTGACGGCGAACTGGCTGAATTATTGATGCGCCGGCACATCGGCGCGTCCAAACGCAACATTGCGCGTCATTTCCAGGACAGCGCCGCCACTGAACGAGGTGAGTCATGA	MLDQLETPVLVQDDVETLSENVFRRIQAAIVKGEIAPGSKISEPELARTYGISRGPLREAIHRLEGQRLLVRIPHVGARVVSLSHAELLELYEIRESLEGMACRLAAQRMTLEEIDELRRVLETHERDAAFQAGVGYYQQEGDFDFHYRIIQGSGNRTLTQMLCGELYQLVRMYRIQFSTTPNRPRQAFAEHHRILDAIADRDGELAELLMRRHIGASKRNIARHFQDSAATERGES				NA	NA	NA	NA	NA
D1-36_01659	885	prpB	COG2513	2-methylisocitrate lyase	ATGAGCAACAGCACTCCAGGCCAGCGATTCCGCGATGCGGTCGCCAGCGAGCATCCGCTGCAAGTGGTCGGCACGATCAACGCCAACCACGCGCTGCTGGCCAAGCGCGCCGGTTTCAAGGCGATCTACCTATCGGGTGGCGGCGTGGCAGCCGGCTCTCTCGGCGTGCCGGACCTGGGCATCACCGGTCTGGATGACGTGCTGACCGACGTGCGCCGCATCACCGATGTTTGCGACTTGCCGTTGCTGGTGGACGTGGACACCGGTTTCGGTTCCTCGGCGTTCAACGTGGCGCGCACGGTCAAGTCGATGATCAAGTTTGGCGCGGCGGCGATTCATATCGAGGACCAGGTCGGCGCCAAGCGCTGCGGCCATCGCCCGAACAAGGAAATCGTCTCGCAGCAGGAAATGGTCGACCGCATCAAGGCCGCCGTCGATGCCCGCACCGATGACAGCTTCGTGATCATGGCCCGTACCGACGCTCTGGCGGTGGAAGGCTTGGAATCGGCCCTGGACCGCGCCGCCGCATGCATCGAGGCCGGCGCCGACATGATTTTCCCCGAAGCCATCACCGAACTTGAAATGTACAAGCTGTTCGCCAGCCGCGTGAAAGCGCCGATCCTGGCCAACATCACCGAATTCGGCGCGACCCCGCTCTACACCACCGAACAACTCGCCGGGGCCGACGTGTCCCTGGTGCTCTACCCGCTGTCGGCCTTCCGGGCCATGAACAAGGCGGCCGAAAACGTCTACACCGCCATCCGTCGCGACGGCACGCAACAGAATGTCATCGACACCATGCAGACCCGCATGGAGCTTTACGATCGCATCGACTACCACACCTTCGAGCAGAAGCTCGATGCGCTGTTCGCGGCGAAGAAGTAA	MSNSTPGQRFRDAVASEHPLQVVGTINANHALLAKRAGFKAIYLSGGGVAAGSLGVPDLGITGLDDVLTDVRRITDVCDLPLLVDVDTGFGSSAFNVARTVKSMIKFGAAAIHIEDQVGAKRCGHRPNKEIVSQQEMVDRIKAAVDARTDDSFVIMARTDALAVEGLESALDRAAACIEAGADMIFPEAITELEMYKLFASRVKAPILANITEFGATPLYTTEQLAGADVSLVLYPLSAFRAMNKAAENVYTAIRRDGTQQNVIDTMQTRMELYDRIDYHTFEQKLDALFAAKK	PGPT0001555_1144	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-SUCCINIC_ACID_ACID_BIOSYNTHESIS,PGPT0001555-prpB-K03417	NA	NA
D1-36_01660	1128	prpC_1	COG0372	2-methylcitrate synthase	ATGGCCGAAGCAAAAGTACTCAGTGGCGCCGGGCTCCGTGGCCAGGTAGCTGGGCAAACTGCCCTATCCACCGTAGGCCAGTCGGGCGCCGGGCTGACCTATCGCGGCTACGACGTCCGCGACCTGGCGGCGGATGCGCAATTTGAAGAAGTGGCCTACCTGCTGCTGTACGGCGAGCTGCCGACCCAGGCACAGCTGGACGCCTACACCGGTAAATTGCGCCAATTGCGCGACTTGCCCCAAGCCTTGAAAGAAGTGCTGGAGCGCATTCCCGCCGACGCCCACCCGATGGACGTGATGCGCACCGGTTGCTCGTTTCTCGGCAACCTTGAGCCCGAGCACGATTTCTCCCAACAGCACGACAAGACCGACCGCCTGCTCGCGGCGTTCCCGGCGATCATGTGCTACTGGTATCGCTTCAGCCACGAAGGTCAGCGCATCGAATGCGTAACTGACGAAGTGTCCATTGGCGGCCACTTCCTGCATCTATTGCACGGTAAGAAGCCGAGCGAGCTGCACGTCAAGGTGATGAACGTGTCGCTGATTCTCTACGCCGAGCACGAATTCAACGCCTCGACCTTCACCGCCCGCGTCTGCGCCTCCACGCTGTCGGACCTGTTCTCTTGCATCACGGCCGCCATCGGCTCGTTGCGCGGCCCGTTGCATGGCGGCGCCAACGAGGCGGCGATGGAAATGATCGAGCGCTTCAGCTCACCCCAGGATGCCATCGAAGGCACCCTCGGCATGCTGGCGCGCAAGGACAAGATCATGGGCTTCGGCCACGCGATCTATAAGGACAACGACCCGCGCAACGAGGTCATCAAGGGTTGGTCGAAAAAACTTGCCGATGAAGTGGGCGACACGGTGCTGTTCCCGGTTTCCGAAGCCATCGACAAGACCATGTGGGAGCAGAAGAAACTGTTTCCCAACGCCGATTTCTACCATGCCTCGGCGTACCACTTCATGGGCATCCCGACCAAGCTGTTCACGCCGATCTTCGTCTGCTCGCGCCTGACCGGCTGGGCCGCCCACGTGTTCGAACAACGCGCCAACAACCGCATCATCCGACCGAGCGCCGAATACACCGGCGTCGAACAGCGCAAGTTCGTGCCAATCGAACAACGCTGA	MAEAKVLSGAGLRGQVAGQTALSTVGQSGAGLTYRGYDVRDLAADAQFEEVAYLLLYGELPTQAQLDAYTGKLRQLRDLPQALKEVLERIPADAHPMDVMRTGCSFLGNLEPEHDFSQQHDKTDRLLAAFPAIMCYWYRFSHEGQRIECVTDEVSIGGHFLHLLHGKKPSELHVKVMNVSLILYAEHEFNASTFTARVCASTLSDLFSCITAAIGSLRGPLHGGANEAAMEMIERFSSPQDAIEGTLGMLARKDKIMGFGHAIYKDNDPRNEVIKGWSKKLADEVGDTVLFPVSEAIDKTMWEQKKLFPNADFYHASAYHFMGIPTKLFTPIFVCSRLTGWAAHVFEQRANNRIIRPSAEYTGVEQRKFVPIEQR	PGPT0001480_947	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-CITRIC_ACID_BIOSYNTHESIS,PGPT0001480-prpC-K01659	NA	NA
D1-36_01661	2592	acnD	COG1048	2-methylcitrate dehydratase (2-methyl-trans-aconitate forming)	ATGAACACAGAATTTCGCAAACCGCTGCCTGGCACTTCGCTGGATTATTTCGATGTTCGCGCGGCCGTGGAGGCCATCCGCCCCGGCGCCTACGATGGCTTGCCGTACACCTCTCGCGTATTGGCGGAGAATCTCGTGCGCCGCTGCGACCCGGCCACGCTGCGTGAATCGCTGCTGCAACTGATCGAGCGCAAGCGCGACCTGGACTTCCCATGGTTTCCGGCGCGGGTGGTGTGCCATGACATTCTCGGCCAGACCGCCCTGGTGGACTTGGCCGGTTTGCGCGACGCCATTGCCCAGCAGGGCGGCGACCCGGCGCAAGTCAACCCGGTGGTGCCGACCCAGCTGATTGTTGACCACTCCCTGGCGGTCGAGAGCGCCGGTTTCGATCCCCAGGCCTTCGCCAAGAACCGCGCCATCGAAGACCGCCGCAACGAAGACCGCTTTCACTTCATCAACTGGACCAAGAAAGCTTTCAAGAACGTCGATGTGATTCCGCCGGGCAACGGGATCATGCACCAGATCAACCTGGAGAAAATGTCGCCGGTGATCCAGCAGCGGGACGGCGTGGCCTTCCCGGACACGTGCGTCGGCACCGACAGCCACACGCCCCACGTCGATGCACTGGGCGTGATTGCCATCGGCGTTGGTGGCTTGGAAGCAGAAAGCGTCATGCTTGGCCGCGCCTCGTGGATGCGCTTGCCGGAAATTGTCGGCGTCGAGCTGACCGGCAAGCTGCAACCGGGCATCACCGCCACCGACATGGTGCTGGCGCTGACTGAATTCCTGCGTAAACAAAAAGTCGTGGGCGCATGGCTGGAGTTTTACGGCGAAGGCGCCAGCGCGCTGACCTTGGGCGACCGGGCGACCATCTCCAACATGGCCCCTGAGTACGGCGCCACGGCGGCAATGTTCCATATCGATCAGCAGACGATCGACTACCTGAAGCTCACTGGGCGCGAAGACCAGCAAGTGCAGCTGGTCGAACACTACGCCAAGACCATTGGCCTGTGGGCAGACAGCCTCAAGGGCGCGCAATACGAGCGTGGCCTGACGTTCGATCTTTCTTCGGTCGTGCGCAACATGGCCGGCCCGAGCAACCCCCACGCCCGTGTCGCGGTGTCGGATCTGGCCGCCAAAGGCATCTCCGGCCAGTGGGACGACGTGCCTGGGCAAATGCCCGACGGCGCGGTGATCATCGCCGCGATCACCAGTTGCACCAACACCAGCAACCCGCGCAACGTGATCGCCGCAGGCCTGCTGGCGCGCAACGCCAACCGCCTGGGCCTGGCCCGCAAGCCGTGGGTCAAGTCATCCCTGGCACCGGGCTCTAAAACCGTGGCGCTGTACCTGGATGAAGCCGGCCTTACGCCCGAGCTCGAGAAGCTGGGCTTCGGCGTGGTGGCGTTTGCCTGCACCACCTGCAACGGCATGTCCGGCGCGTTGGACCCGGTGATCCAACAGGAAATCATCGACCGCGACCTGTACGCCACCGCCGTGCTGTCGGGCAACCGCAACTTCGACGGGCGTATCCACCCGTACGCCAAGCAGGCGTTTTTGGCCTCGCCGCCGCTGGTGGTTGCTTATGCCATCGCCGGGACCATTCGCTTCGACATCGAGAAGGATGTGCTGGGCGTGGTGGACGGTCGCGAAATCCGCCTCAAGGACATCTGGCCAAGCGACGAAGAAATCGAAGCCGTGGTCAAGGCGGCGGTGAAGCCGGAGCAGTTCCGCCAGGTCTACATCCCGATGTTCGCCATCCAGGAAGACACCGGCCCGAAAGTCACGCCGCTGTACGACTGGCGCCCGCAAAGCACCTACATCCGTCGCCCGCCTTATTGGGAAGGTGCATTGGCCGGTGCGCGGCCGCTGCAGGGCATGCGCCCGCTGGCGGTGCTGCCGGACAACATCACCACCGATCACCTGTCGCCATCCAACGCCATCATGTTGGACAGCGCCGCCGGTGAGTACCTGGCAAAAATGGGCCTGCCGGAAGAGGACTTCAACTCTTACGCGACCCACCGCGGCGACCACCTGACCGCGCAGCGCGCGACCTTCGCCAACCCGAAACTGTTCAACGAAATGGTCGTTGAAAACGGCAAGGTCAAGCAGGGCTCCCTGGCCCGGGTCGAGCCGGAAGGCAAGGTCATGCGCATGTGGGAAGCCATCGAGACCTACATGGAACGCAAGCAGCCGTTGATCATCGTCGCTGGCGCCGACTACGGCCAGGGATCGTCGCGGGACTGGGCGGCCAAGGGGGTGCGTCTGGCCGGTGTCGAGGCGATCGTTGCCGAAGGCTTCGAGCGCATCCATCGCACCAATCTGGTGGGCATGGGCGTGTTGCCGCTGGAGTTCAAGCCCGGTACAGATCGCAAGACCCTGGGCATCGACGGCAGCGAAATATACGACGTGATCGGCGAGCGCACCCCGCGCGCGACGTTGACGTTGGTCATCACCCGCAAGAACGGCGAGCGCGTCGAAGTGCCGGTGACCTGCCGCCTCGATACCGCCGAGGAAGTGTCGATCTACGAAGCCGGGGGCGTGTTGCAGCGCTTTGCCCAGGACTTCCTCGAGTCGGCGGTGGCCGTTTAA	MNTEFRKPLPGTSLDYFDVRAAVEAIRPGAYDGLPYTSRVLAENLVRRCDPATLRESLLQLIERKRDLDFPWFPARVVCHDILGQTALVDLAGLRDAIAQQGGDPAQVNPVVPTQLIVDHSLAVESAGFDPQAFAKNRAIEDRRNEDRFHFINWTKKAFKNVDVIPPGNGIMHQINLEKMSPVIQQRDGVAFPDTCVGTDSHTPHVDALGVIAIGVGGLEAESVMLGRASWMRLPEIVGVELTGKLQPGITATDMVLALTEFLRKQKVVGAWLEFYGEGASALTLGDRATISNMAPEYGATAAMFHIDQQTIDYLKLTGREDQQVQLVEHYAKTIGLWADSLKGAQYERGLTFDLSSVVRNMAGPSNPHARVAVSDLAAKGISGQWDDVPGQMPDGAVIIAAITSCTNTSNPRNVIAAGLLARNANRLGLARKPWVKSSLAPGSKTVALYLDEAGLTPELEKLGFGVVAFACTTCNGMSGALDPVIQQEIIDRDLYATAVLSGNRNFDGRIHPYAKQAFLASPPLVVAYAIAGTIRFDIEKDVLGVVDGREIRLKDIWPSDEEIEAVVKAAVKPEQFRQVYIPMFAIQEDTGPKVTPLYDWRPQSTYIRRPPYWEGALAGARPLQGMRPLAVLPDNITTDHLSPSNAIMLDSAAGEYLAKMGLPEEDFNSYATHRGDHLTAQRATFANPKLFNEMVVENGKVKQGSLARVEPEGKVMRMWEAIETYMERKQPLIIVAGADYGQGSSRDWAAKGVRLAGVEAIVAEGFERIHRTNLVGMGVLPLEFKPGTDRKTLGIDGSEIYDVIGERTPRATLTLVITRKNGERVEVPVTCRLDTAEEVSIYEAGGVLQRFAQDFLESAVAV	PGPT0001515_671	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-ACONITIC_ACID_BIOSYNTHESIS,PGPT0001515-acnD-K20455	NA	NA
D1-36_01662	1191	prpF	COG2828	2-methyl-aconitate isomerase	ATGGCTCACTCGCCTCAAATCAAGATCCCCGCGACCTACATGCGTGGCGGCACCAGCAAAGGCGTGTTCTTCAGCCTGCCAGACCTGCCCGAAGCCGCCCGAGTCCCTGGCCCGGTCCGGGATGCCCTGTTGCTGCGGGTGATCGGCAGCCCCGACCCGTACGAAAAACAGATCGATGGCATGGGCGGCGCGACGTCCAGCACCAGCAAGACGGTAATCCTGTCCAAGAGCACCCGGGCCGACCACGATGTCGACTATCTGTTCGGCCAGGTGTCCATCGACAAGCCTTTCGTGGACTGGAGCGGCAACTGCGGCAACCTGTCGGCGGCGGTGGGGTCGTTTGCCATCAGCAGTGGCTTGGTGGAGCCGGCCCGGATTCCGCAAAACGGTGTGGCCGTGGTGCGGATCTGGCAGGCCAACATCGGCAAGACCATCATCGCCCATGTGCCGATCACCGACGGCGCGGTGCAGGAAACCGGCGACTTCGAACTCGACGGCGTGACCTTTCCGGCGGCTGAAGTACAGCTGGAGTTCATGGACCCGGCTGCCGAGGAGGAGGGCGGTGGCGGCTCGATGTTCCCGACCGGGAACTTGGTGGACGACTTGGAAGTGCCCGGTGTTGGTACCTTGAAGGCGACGCTGATCAACGCAGGCATCCCGACGATTTTCATCAATGCCCGGGATATCGGGTACACCGGTACTGAATTGCAGGGCGCCATCAACGGCGATCCGAAGGCGCTGGCGATGTTCGAAACCATCCGCGCCCACGGTGCCTTGCGCATGGGGTTGATCAAGCATCTGGACGAAGCGGCTCAGCGCCAGCACACCCCCAAAGTCGCGTTTGTCGCGCCGCCAGCGGATTACCTTTCGTCCAGCGGGAAAGCCGTGGCGGCGGGCGACGTCGATTTGCTAGTGCGGGCGTTGTCCATGGGCAAGCTGCACCACGCCATGATGGGCACCGCCGCCGTCGCCATCGGCACCGCCGCCGCGATTTCCGGCACCCTGGTGAATCTGGCCGCCGGCGGTATCGAGCGCAACGCCGTGCGTTTCGGCCACCCGTCCGGCACCTTGCGTGTCGGCGCCGAGGCCAGCCAGGTCGACGGCGAATGGACTGTGAAAAAAGCCATCATGAGCCGCAGCGCGCGGGTATTGATGGAAGGGTTCGTGCGGGTGCCCGGGGATGTTTTTTAA	MAHSPQIKIPATYMRGGTSKGVFFSLPDLPEAARVPGPVRDALLLRVIGSPDPYEKQIDGMGGATSSTSKTVILSKSTRADHDVDYLFGQVSIDKPFVDWSGNCGNLSAAVGSFAISSGLVEPARIPQNGVAVVRIWQANIGKTIIAHVPITDGAVQETGDFELDGVTFPAAEVQLEFMDPAAEEEGGGGSMFPTGNLVDDLEVPGVGTLKATLINAGIPTIFINARDIGYTGTELQGAINGDPKALAMFETIRAHGALRMGLIKHLDEAAQRQHTPKVAFVAPPADYLSSSGKAVAAGDVDLLVRALSMGKLHHAMMGTAAVAIGTAAAISGTLVNLAAGGIERNAVRFGHPSGTLRVGAEASQVDGEWTVKKAIMSRSARVLMEGFVRVPGDVF	PGPT0001520_211	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-ACONITIC_ACID_BIOSYNTHESIS,PGPT0001520-prpF-K09788	NA	NA
D1-36_01663	894			hypothetical protein	ATGGTTTTTTCATTGCGACAACTGACCCTGGCCGTCGCGTTGTGCGGCGTGGCCGTCACTTCATCATTCGCCGCCGAAAAGGTCCGTCTGCTGGCGTCGTTGCCGGTCACCTACGGGTTGGGCGAGGCCTTGCTCAAGGGCACCGAGGTCAGCCTGGAGCGGGCCGCGCCCGCCAATCTGCCTGGCACCCGCCAGAATGCCTATTTCAGCGGCCGTGGCGCGCCGGCCCTGGGCAAACTGGCCAGTGATGCCGATGCCGTGATCGGCCTGCGCTCGTTATGGCCGGACGATCCGCTGTACCCCATGGCCCGACGCAGCAACATCCGCATCGTCGAAGTCGACGCGGCCCGCCCGGTGGACGGCGCCCTGCCCGGTATCGCCGTGCAACCGGGGATGGCTGACGGTTTGGCGAGCCAGCCATGGATGGCCAGCCCCAACCTGGGGCGGATGGCCGACGTGATCGCCGCCGACCTGGTGCGCCTGGCCCCAAACGACAAAGCGAAAATCGACGCCAACCTGGCGGCCCTCAAGCAACGCCTGCTCAAGCTCAGCGCCGACAGCGAAAAACGTCTCGCCAGTGCCGATAACCTGAGCGTAGTCAGCCTGAGTGAGCATTTTGGTTACTTGATCAGCGGGTTGAATCTGGATGGCATCAGTACTGACGCCCGGCCCGACGCCGAGTGGACGCCCGAGGCCTTGAAGCAATTGATCACAACGTTGAAAGACAATGACGTGGCGCTGGTGCTGCATCATCGCCAGCCGTCGGAAGCTGTGAAAGCGGCCATTACCGAGGGCGGCAGTCAGTTGCTGGTACTGAGCACCGATGGCGCCGACCCGGTGGCGGAGTTGGAAACTAATGTGGGGGTGGTCGTCACGGCATTGATGGGAGGCTAA	MVFSLRQLTLAVALCGVAVTSSFAAEKVRLLASLPVTYGLGEALLKGTEVSLERAAPANLPGTRQNAYFSGRGAPALGKLASDADAVIGLRSLWPDDPLYPMARRSNIRIVEVDAARPVDGALPGIAVQPGMADGLASQPWMASPNLGRMADVIAADLVRLAPNDKAKIDANLAALKQRLLKLSADSEKRLASADNLSVVSLSEHFGYLISGLNLDGISTDARPDAEWTPEALKQLITTLKDNDVALVLHHRQPSEAVKAAITEGGSQLLVLSTDGADPVAELETNVGVVVTALMGG				NA	NA	NA	NA	NA
D1-36_01664	900	znuB_2	COG1108	High-affinity zinc uptake system membrane protein ZnuB	ATGAGTTACGAAGCCTTTCGCTTGATGGTCCAGGGCTGGGCCTCGTCCGGCTATCTGCCCGAAGCGCTGGCCTATGGGTTTGTGGTCAACGCATTGTTGGCCGGGTTGTTGATCGGCCCGGTGCTTGGCGGCCTCGGTACGCTGGTGGTGGTCAAGCGCTTCGCGTTTTTTTCCGAAGCCGTGGGCCATGCGGCGCTGACTGGCGTGGCCGTCGGCATCCTGCTCGGCGAACCCTACACCGGGCCATACGGAAGCCTGTTCGGCTATTGCCTGCTGTTCGGCATCCTGCTCAATTACCTGCGCAACCGAACCGGCCTGTCGCCGGACACCCTGATTGGCGTCTTCCTTTCGGTGTCCCTGGCCCTGGGTGCAAGCCTGCTGTTGATCCTGGCGGGCAAGATCAACGTACACATCTTGGAGAACGTGCTGTTCGGTTCCGTGCTGACGGTCAACGGCAACGACTTGCTGGTGCTGGCGGTGGTCGGTTCACTGGTGATGGCGCTGGCGTTGCCACTGTACAACCGCATCATGCTCGCCAGCTTCAATCCGCAACTGGCGGCGGTGCGCGGGGTGGCGGTCAAGGCCCTGGACTACCTGTTCGTGATCTTGGTGACATTGATTACCGTGGCGGCGGTGAAAGTCATTGGCGCCATTCTGGTGGGGGCGCTGCTGGTGATCCCGGCGGCTGCCGCGCGCCTGCTCAGCCAATCGTTGAAAGGCTTCTTCTGGTGTTCGGTACTGATCGCCACCGTCAGCACGTTGTGCGGGATTCTCGCGCCGATCGTCTTCGACCTGCCGATCCCGTCCGGTGCCGCGATCATTCTGGTGGCCGGCATCGCCTTCGCCCTGAGCGCCATCGCCCGTGGCATCGTCCCCAGCCTCAAAGGGAATCTTGGATAA	MSYEAFRLMVQGWASSGYLPEALAYGFVVNALLAGLLIGPVLGGLGTLVVVKRFAFFSEAVGHAALTGVAVGILLGEPYTGPYGSLFGYCLLFGILLNYLRNRTGLSPDTLIGVFLSVSLALGASLLLILAGKINVHILENVLFGSVLTVNGNDLLVLAVVGSLVMALALPLYNRIMLASFNPQLAAVRGVAVKALDYLFVILVTLITVAAVKVIGAILVGALLVIPAAAARLLSQSLKGFFWCSVLIATVSTLCGILAPIVFDLPIPSGAAIILVAGIAFALSAIARGIVPSLKGNLG	PGPT0004225_305	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ZINK_RESISTANCE	ZINK_RESISTANCE-ZNU_TRANSPORT_SYSTEM,PGPT0004225-znuB-K09816	NA	NA
D1-36_01665	753	scaC_1	COG1121	Manganese import ATP-binding protein ScaC	ATGACCGTGCAGCAAACCCTTATCCAGCCAAAGGCCGGCCCGCTGATCGAGTTCATCGACATCAGCCTCGAGCTGGGGCGCACCACGATTCTCGACAACGTGGGCTTGCTGATACAACCTGGCAGCGTCCATGCCCTGGTCGGCCCCAACGGCGGCGGTAAGAGTTCCCTGATCAAGACCCTGCTCGGACAAATGCCGCACAAGGGGCGCCTGAGCTTGCAGTGGCCAGGTGAGCCCGGCGTCATCGGCTATGTGCCCCAGGCCCTTGAGTTCGATCGTGGCCTGCCCATGACGGTGGACGATTTCATGGCCGCGATGTGTCAACGGCGCCCGGCCTTTCTCGGCTTGAGCAAGCATTACACCGGTGCCATCGGCCAGGCCCTGGAGCGGGTCGGCATGCAGGATAAGCGCAAGCGCCGGATGGGCGCGCTGTCCGGCGGTGAGCGCCAGCGGGTATTGCTCGCCCAGGGCTTGATCCCTTCACCGCAACTGCTGGTCCTGGACGAACCGATGTCAGCCCTCGACGAGGCCGGCATCCAGGTGTTCGAGCGGTTGCTGCAGGACTGGCGCCAGGCCGGGATCACCGTGCTGTGGATCGAGCATGACCTGGACGCCGTCGGGCGGCTGGCCGACCGGGTCACGGGCCTCAATCGCCGGGTACTGTTCGACGGCCCGCCACGCCAGACCCTGACCCCGGAGCGACTGCTCACGCTGTTTTCCACCCATCCACGCACCAACGGGAGCGCGGCCTGA	MTVQQTLIQPKAGPLIEFIDISLELGRTTILDNVGLLIQPGSVHALVGPNGGGKSSLIKTLLGQMPHKGRLSLQWPGEPGVIGYVPQALEFDRGLPMTVDDFMAAMCQRRPAFLGLSKHYTGAIGQALERVGMQDKRKRRMGALSGGERQRVLLAQGLIPSPQLLVLDEPMSALDEAGIQVFERLLQDWRQAGITVLWIEHDLDAVGRLADRVTGLNRRVLFDGPPRQTLTPERLLTLFSTHPRTNGSAA	PGPT0004230_1760	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ZINK_RESISTANCE	ZINK_RESISTANCE-ZNU_TRANSPORT_SYSTEM,PGPT0004230-znuC-K09817	NA	NA
D1-36_01666	930	ssaB	COG0803	Manganese ABC transporter substrate-binding lipoprotein	ATGTCTATCGCCTCTCCACGCCGCCCGTTCCTGTGCCTGCTGTTGCTTGGCCTGCTGGCCTGCCTGCTCGCCCCGATGGCCAGCGCCGAAACGTCCAAGCGCCTGCGCATCGGCATCACCTTGCACCCTTACTACAGTTACGTGGCGAACATCGTCGGTGACAAGGCCGAAGTGGTGCCGTTGATCCCGGCCGGATTCAATCCCCACGCCTATGAACCCAGGGCCGAAGACATCAAGCGCATCAGCGGTCTGGATGTGATCGTGCTCAACGGCGTCGGCCATGACGATTTTGCCGACCGCATGATCGCCGCCAGCGAAACACCAGACGTGAAGGTCATCGAAGCCAACGAAAACGTGCCCTTGCTGGCCGCCACCGGCACTGCCGCCAGGGGCGCGGGCAAAGTCGTCAACCCGCATACGTTCCTGTCCATCAGCGCGTCCATTGCCCAGGTCAACAACATCGCCCGGGAGCTGGGCAAGCTCGACCCCGATAACGCCAAGACCTACACGCAAAACGCTCGCGCCTACGGCAAGCGCCTGCGGCAGATGCGTGCGGACGCCCTGGCCAAGCTGACCCAGGCGCCGAACGCCGAGTTGCGGGTCGCGACTGTACATGCCGCCTACGATTACCTGCTGCGCGAATTCGGCCTGGAAGTGACCGCCGTGGTCGAGCCGGCCCACGGTATCGAGCCGAGCCCCAGCCAGTTGAAAAAGACCATCGATCAGTTGCGCGAACTGGATGTGAAAGTGATCTTTTCGGAGATGGATTTTCCCTCCACCTACGTCGACACCATTCAACGTGAATCAGGCGTAAAGCTGTACCCGCTTTCGCACATTTCCTACGGTGAATACAGCGCCGAGAAATACGAAAAGGAGATGACCGGCAACCTCGACACCGTGGTCCGGGCGATCCAGGAGTCCGGCGCATGA	MSIASPRRPFLCLLLLGLLACLLAPMASAETSKRLRIGITLHPYYSYVANIVGDKAEVVPLIPAGFNPHAYEPRAEDIKRISGLDVIVLNGVGHDDFADRMIAASETPDVKVIEANENVPLLAATGTAARGAGKVVNPHTFLSISASIAQVNNIARELGKLDPDNAKTYTQNARAYGKRLRQMRADALAKLTQAPNAELRVATVHAAYDYLLREFGLEVTAVVEPAHGIEPSPSQLKKTIDQLRELDVKVIFSEMDFPSTYVDTIQRESGVKLYPLSHISYGEYSAEKYEKEMTGNLDTVVRAIQESGA	PGPT0004220_2280	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_FACILITATING_PROTEIN	ROOT_COLONIZATION-ZINK_TRANSPORT_LIPOPROTEIN,PGPT0004220-znuA-K09815	NA	NA
D1-36_01667	576			hypothetical protein	ATGAGCACACCTACCCACCACGTCGTTCGCCCCGCTGGCGCGGGCCACGAAACCCTTTATGTCTTGCTGCTGTGCCTGATCATCGTATTGGGAGCCGGGTCGGTGGTGGCCTGGCATGGCGAAACCCAGGACGTCACTCACGTGCAAAGCAACCAGTTGGATGCCCGTCGCGACCTCAGCGCCGCCGAGCAAGGCATCTATGCCGACCTGCGGGTCACGCTGGACGAGATCCGCATTCTGCGCGAAAGCGAGCTAGCCCTTCCCGGCCCGCAAGCGTTGGCGGACGAAGGTTTTGCCCCGTTCGCCCAAGATGCCAGTTCTGTCACCCGCGGCGGCCACGCCTGGCAACTCCTGGGTGAAAAAGCCTACTTTGGCGCGAGTGCTACCCCGTCAATCGCAGGCTCCTTTCTGATGCGCATCAGCGAAACATCCGACGCGCCCCCGGACATCTGGCTCAACCGCAGCAATCCTGCGACCGCCCCTGCCGTGTTGGACGACGCTGCTTTGTCCGCATCCGGCTGGCAACAGATCGTCGCGCAATTCGATGCCGGCGTGACCCGCCAGCACCGGCATTGA	MSTPTHHVVRPAGAGHETLYVLLLCLIIVLGAGSVVAWHGETQDVTHVQSNQLDARRDLSAAEQGIYADLRVTLDEIRILRESELALPGPQALADEGFAPFAQDASSVTRGGHAWQLLGEKAYFGASATPSIAGSFLMRISETSDAPPDIWLNRSNPATAPAVLDDAALSASGWQQIVAQFDAGVTRQHRH				NA	NA	NA	NA	NA
D1-36_01668	327			hypothetical protein	ATGACCCTCCGCGCCTTCCTCAACAGCATGGCATTGCTCCTTTGCGCAAGCTTGAGCACCAGCGCACTGGCCCATAACCCGATGTGCGAGTGCAAGGCCATCGACGCCGAGCAGATCCAATGCACCGGCGGTTTTTCCGACGGCAGCGGTGCACCCGGAGTGACGCTGGACGTGATTGGCTATGACGAAACCATCCTCGTTCCCGGCAAGCTCGGCGCCGACTCAACGCTGACCTTCAAGAAACCGGACGCCGAGTTCTACGTACTCTTCGACGCCGGCCCCGGGCACGTCGTGGAAATCGACCAAGCCGACATCGAGGCCCCATGA	MTLRAFLNSMALLLCASLSTSALAHNPMCECKAIDAEQIQCTGGFSDGSGAPGVTLDVIGYDETILVPGKLGADSTLTFKKPDAEFYVLFDAGPGHVVEIDQADIEAP				NA	NA	NA	NA	NA
D1-36_01669	543			hypothetical protein	GTGAATCCGTCCACCACAACCCTGCCACCCTCTCGCCTGGGCCGGTTCTGGCATAAATGGCGTTTCCATCTCAATGTGCTGTTGCTGCTGATTCCCCTGGGCTTCATGCCCAAGTATTTCTCGGAAGCTGCGTTGTTCCGTGGCGACGGCGGGCTCGGCGAGCGGGAAGTCGGTGAGATCCAGATCGGGCCGTGGAGCTTGCGCCTGGCGGAATTTCGCAACGAAGCCCCTCGTACCCAGGGTCCCGCCGGCCCCATGAAGCACTTCAATGCCGCGCTGTGCCAACGCTGCATCAGCCAGGTGAAAGCCACCTATCTGCGCATTGGCAAGCCCCGCAGCCTGCGGGCCGCCGGGGTGATTTTCTTTGGCTCGCCCTATCGCATGGGCGCGTTGTTGCCAGTCCCGCCGAAGACCCAGCCCGATGCCGAACTGTGGATAACCCTCGAGGGTTGGGACGGTTCGATGCACCAGGCCTCGATTCCACTGAACCAGGCCTCCCCGGCCACCGTTGCCTGGCTGAAAACCCAAGGAGCCCGACCATGA	MNPSTTTLPPSRLGRFWHKWRFHLNVLLLLIPLGFMPKYFSEAALFRGDGGLGEREVGEIQIGPWSLRLAEFRNEAPRTQGPAGPMKHFNAALCQRCISQVKATYLRIGKPRSLRAAGVIFFGSPYRMGALLPVPPKTQPDAELWITLEGWDGSMHQASIPLNQASPATVAWLKTQGARP				NA	NA	NA	NA	NA
D1-36_01670	1215			hypothetical protein	ATGTCGAAGAAGTCCCGCTCCAAACTCTGGTTTCTCGTTCATAGCTGGTTGGCGTTGCCCATCTGGTTTTTTGTCCTGATCGTCTGCGTCACCGGCACTCTGGCGGTGGTCAGCCAGGAGATCGTCTGGCTGGTCAATCCTGAGATGCGCGCCAGCAAGCCCAGCGATGACGCCCCGTTGCTCAGCTATGACCAGGTCATGGCCGCCATCAAGCAAGCCCAGCCGCTGACACAAGTGCAAAGTATCGTGCGTCCGGATGAGTCGCATTTTGCCCTTGAAGCCAAAGTCACCTACCCCGACGGCCGCCCGGACACCGTCTACGTCAATCCCTACAGCGGCGTCATCCAGGGATCGGCCCCGGCGTTCAATTTCAGGGCTTTTACCCGCGCCATGCATGGATGGTGGCTGGTGCCGTTCACCAACGGCTACAGCTGGGGCTGGTACCTGGTGTCTCTCCTCGGCCTGCCGATGCTGGCATCACTGGTTACCGGGCTTGTCGTCTACAAACGCTTCTGGAAAGGTTTCCTGCGCCCGACCTTGCGTATCCGTCACGGCGCGCGGATTTTCTGGGGCGATTTCCATCGGCTCAGCGGTATCTGGTCGATCTGGTTCATCGCGGTCATTTCCGTGACCGGCACCTGGTTCCTGATCGAAGCCACACTGGCCGACAACGGCATCTCGATCTCCAGCGCGCCGGTCGTCCCGGTCGTGGCTCGTGAAAGCGTTCCACTGTCAGCCGATGGTATTGCTCCACCACGATTGAACCTGGACCGAGCCATCGAGATCGCCCGGCAGCAAATCCCGGGGTTGGACGCGAGTTTTGTCAGCCTACCCGGCAATGCCTACAGCCACGTCGAAATCGGCGGGCGCGGCTGGTATCCATTGATGTTCCAGACCGCGACCATCAATCCCTACAGCGGCGAGGTGGACGCCACGCGATTGTTGGCGGACCGCACGCCCCTGGAGTTCGTCACCGAATCCATGCGGCCATTGCACACTGGGGACTTCGGCGGCCTCTGGATCAAGCTCATCTGGTTTTTCTTCGGGCTGATCCTGAGCATGATGGTCCTCAGTGGGTTGCTGATCTGGACCAAACGCACCGCCCTGGCCACTGCCAACGCCGTCAAGCGCAGCCAGAAACCTGCCCGGCCCGCCCGGATCGCCCCCCCATTGCAACCCTCCCTCCACCGTGACTCGCCGGAGGGCAGCCTGTGA	MSKKSRSKLWFLVHSWLALPIWFFVLIVCVTGTLAVVSQEIVWLVNPEMRASKPSDDAPLLSYDQVMAAIKQAQPLTQVQSIVRPDESHFALEAKVTYPDGRPDTVYVNPYSGVIQGSAPAFNFRAFTRAMHGWWLVPFTNGYSWGWYLVSLLGLPMLASLVTGLVVYKRFWKGFLRPTLRIRHGARIFWGDFHRLSGIWSIWFIAVISVTGTWFLIEATLADNGISISSAPVVPVVARESVPLSADGIAPPRLNLDRAIEIARQQIPGLDASFVSLPGNAYSHVEIGGRGWYPLMFQTATINPYSGEVDATRLLADRTPLEFVTESMRPLHTGDFGGLWIKLIWFFFGLILSMMVLSGLLIWTKRTALATANAVKRSQKPARPARIAPPLQPSLHRDSPEGSL				NA	NA	NA	NA	NA
D1-36_01671	486			hypothetical protein	ATGACGATTCCTATAAACCTCCACAAGGAGCCCACCGTTGGCCACGTCGCCGCTCGCAGCGGCGTAGCGGTCACGGCGCTGCACTTCTATGAGTCCAAGGGGCTGATCAAAAGCACCCGCAACCAGGGCAATCAACGTCGCTACCCTCGGGAAGTGCTAAGGCGGGTGGCGCTGATCAAAGTCGCCCAACGCCCGGCCATTCCCTTGGCGGAGATTGGCGAGGCGCTGAAGAATCTGCCGGCGGATCGCGCCCCGACAGCAGCCGACTGGCAGACCTTGTCGGCGCAGTGGAGCCGGAATCTGGATGAGCGCATCAATCAACTGATCGCTCTGCGCGACCGACTGACGGCTGCATCGGTTGTGTGTGTGATCGTTCGGGAGCTTGATGGCTCGCCACCCAAACACCAAACCACGCTTATCGCTAACGCGAAACATTTTCTTTCAACTTACTCTTCAGGATTTGAGTGTCTCGTTCGTCTTAATTAG	MTIPINLHKEPTVGHVAARSGVAVTALHFYESKGLIKSTRNQGNQRRYPREVLRRVALIKVAQRPAIPLAEIGEALKNLPADRAPTAADWQTLSAQWSRNLDERINQLIALRDRLTAASVVCVIVRELDGSPPKHQTTLIANAKHFLSTYSSGFECLVRLN				NA	NA	NA	NA	NA
D1-36_01672	267			hypothetical protein	ATGAACCGTATCCTTGCTGTCTTGCTACTGTTGGCCGTCACCGTATTGAGCGGTTGCGCCTCGTCGTCTCCGGAGCTGCGTCCTTACACAGCTGAGGAAACTCGTGAGCTGGCGCTCGAAGCGCTGAATCGCCGAGGCCTTTCTTTTGAGGAATATCACGCGAAGAAAGCCGAATTGCTGGGACCGTCGCAGAAAAATACCGGTTTCGACGAGCGTGGCGAAATGAATGCCGAACGGACCGTTCAACTGCCTGGCCGACCAAGCTGA	MNRILAVLLLLAVTVLSGCASSSPELRPYTAEETRELALEALNRRGLSFEEYHAKKAELLGPSQKNTGFDERGEMNAERTVQLPGRPS				NA	NA	NA	NA	NA
D1-36_01673	621	eamB_1	COG1280	Cysteine/O-acetylserine efflux protein	ATGACGCTCTCGCTTGACCTGCTGCTGGGCTTCGCCCTGTTTGCCCTGGTGACCTCGATCACACCAGGCCCCAACAACACCATGTTGCTGGCCTCGGGTGTCAATTTCGGTTTCAGCCGTACGATCCCTCACATGCTGGGCATCACCTGCGGCTTTTTTTCCCTGGTGCTGGCGGTGGGCCTTGGCCTGGGCGCGGTGTTCCAGACTTATCCATTGCTGTACACCGTGCTGCGCTACATAGGCGCGGCGTATCTCATGTACCTGGCATGGAAAATCGCCCATTCCAGCCCGGTCTCGGACAGCTCAACGGGCAACAACAAGCCGATCGGTTACTGGGGCGCGGCGGCGTTCCAATGGGTCAACCCCAAGGCCTGGATCATGGCCATCGGTGCAATCAGCACCTATACACCGCTGCAAGGCTACTTTTTCAATGTGGTAGTGATCGCGGCGGTGTTTGCCTTGATCAATCTGCCAAGCGTCAGCCTTTGGGTCGTTTGTGGCAGCCTGTTGCGAAACCTGTTGCGTGATCGTCGATGGTTGCGCCTGTTCAACTGGGGCATGGCGCTGCTGTTGGTCGCGTCGCTGTATCCGTTGTTGCTCGAAAGCATGAGTGAGGGCTGA	MTLSLDLLLGFALFALVTSITPGPNNTMLLASGVNFGFSRTIPHMLGITCGFFSLVLAVGLGLGAVFQTYPLLYTVLRYIGAAYLMYLAWKIAHSSPVSDSSTGNNKPIGYWGAAAFQWVNPKAWIMAIGAISTYTPLQGYFFNVVVIAAVFALINLPSVSLWVVCGSLLRNLLRDRRWLRLFNWGMALLLVASLYPLLLESMSEG				NA	NA	NA	NA	NA
D1-36_01674	1167	iscS_1	COG1104	Cysteine desulfurase IscS	ATGAATAAGCGTCCTTTGTATTTCGATTACGCCGCCACCACGCCGGTGGATGAGCGGGTTATCCAGGTCATGATCCAATGCCTGGGCTTCGACGGTAACTTTGGCAACCCAGCCTCCAGCTCCCATGCGTTCGGCCAGGAGGCACGACAAACCGTGGAGCAGGCACGCCAGCAGGTGGCCCGGTTGGTTGGCGCTCGAGCCGATCAAATCATCTGGACCTCCGGTGCCACCGAATCCAATAACCTGGCCTTGAAGGGCGTGGCGCAGGCGCGCGGTGCCGGTGGTGGGCATGTCATTACCAGCCTGATCGAACACAAGGCGGTTCTCGATACGGTCAGGCAACTAGAGGAAAGTGGCGTCGAGGTGACTTGGCTGGCGCCAGACGCTGATGGCCTGATCACTGCACGCGCGGTTCGCGAGGCCCTGCGCGAAGACACGTTCCTCGTGTCGCTGATGCTGGTGAACAATGAGTTGGGGACCGTCAACGACGCCGTTGCCATCGGTGAGATCGTTCGCGAGCACGGCGCGCTGTTCCACATGGACGCCGCCCAAGGGGCGGGAAAGGTGGGCATCGACCTGGCCCGGTGGCCGGTGGACCTGATGTCCTTTTCCGCGCATAAGATCTACGGACCCAAGGGTATCGGCGCGCTATACGTTGGCGACCGTGCGCGGCCTCGGGTATCGGCACAGATTCATGGCGGAGGCCACGAAGGTGGTTTGCGCTCCGGCACCCTGGCGACCCATCAGATTGCAGCCATGGGCGCTGCGTTCGAGCTGGCGGCGCAGTCGTTCGACCAGGAGCTTGCCCAGATCGCCCGGTTGCGCAATCGTTTGCTCGAGCCGCTATTGGCATTACCCGGTGTATGTATCAATGGCAGTGCGAGCTGCCGTATTCCCCACACGTTGAGCCTGACGTTCAATGAAGGTGAATTCAACTCGGCGACATTGGGTGCGTCGATTGCATTTTCGGCTACTTCGGCCTGCAATTCAGCGCAGAACAGCCCATCCCATGTCCTGCTGGCCCTGGGGCATGATGCACGTGCGGCCGGGCGGACTATCCGCTTGAGCCTGGGGCGTTTCACTAGCGAACAGGATATTGATGAGGCGGTGCGGGTTATCAAGGAAGCCTGCGCTGCTGCGCCGGCGTTTTGGGCGACGACCCCTTGA	MNKRPLYFDYAATTPVDERVIQVMIQCLGFDGNFGNPASSSHAFGQEARQTVEQARQQVARLVGARADQIIWTSGATESNNLALKGVAQARGAGGGHVITSLIEHKAVLDTVRQLEESGVEVTWLAPDADGLITARAVREALREDTFLVSLMLVNNELGTVNDAVAIGEIVREHGALFHMDAAQGAGKVGIDLARWPVDLMSFSAHKIYGPKGIGALYVGDRARPRVSAQIHGGGHEGGLRSGTLATHQIAAMGAAFELAAQSFDQELAQIARLRNRLLEPLLALPGVCINGSASCRIPHTLSLTFNEGEFNSATLGASIAFSATSACNSAQNSPSHVLLALGHDARAAGRTIRLSLGRFTSEQDIDEAVRVIKEACAAAPAFWATTP	PGPT0000065_4241	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
D1-36_01675	1809			hypothetical protein	ATGAGTACCGAGCCTTTGACCCCAGGAGAGGTGCCCCAGCGCCTGGCCCGAATTCGCCAGTTGATGAGCGAGGAGGGCGTTCATGCGCTGCTGGTCCCGTCGGCCGATCCGCATCTGTCCGAATACCTGCCAGGCTATTGGCAAGGGCGTCAGTGGTTGTCCGGCTTCCATGGATCGGTCGGCACCTTGATCGTGACGGGGGAATTCGCCGGGGTCTGGGCCGACAGTCGATACTGGGAACAGGCCACGAAGGAACTGGAGGGCAGTGGGATCGAGTTGGTCAAGCTCATGCCAGGTCAGCCCGGCCCATTGGACTGGCTGGGTGAACAAACACCCGAGGGTGGTGTTGTGGCGGTCGACGGTGCAGTCATGGCCGTTGCGTCGGCCCGCACGCTGAGCAGTAAGCTTGAATCGCGCGGCGCGCGGTTGCGTACCGACGTCGACCTGCTGCATAAGATCTGGACCGATCGTCCAGCCCTTCCGGATCAGCCCGTCTACGCCCACCTGCCACCCCAAGCCACGGTGAGTCGTGTAGAGAAGCTTGCCAAACTGCGCGAATCCCTCAAGGAACGCGGTGCCGATTGGCATTTCATTGCGACCCTGGATGACATTGCCTGGCTGTTCAATTTGCGTGGCGCGGATGTGTCGTTCAACCCGGTGTTTGTCTCCTTCGCGTTGATTGGCCAACAACAGGCGACGTTGTTCGTAGCCTTGGACAAAGTCGGTGCGCCATTGCGTGCCACTCTTGAACAGGATGGCGTGACGCTGCGCGATTACAGCGAAGCCGCGGCCGCGCTGCGTGAAGTGCCAAGCGGTGCGAGCCTGCAGATCGATCCGGCGCGGGTCACGGTCGGCTTGCTGGATAACCTGGACAGTGGCGTCAAGCTGGTCGAAGGTCTCAACCCCACGACCCTGGCCAAATCCCGCAAAACCTCGGCGGATGCCGAGCATATCCGCCAGGCAATGGAACAGGACGGTGCGGCGCTCTGCGAATTCTTCGCCTGGCTGGAAAGCGCCTGGGGCCGCGAGCGCATCACCGAGCTGACTATCGATGAACATCTGACCGCGGCACGCAAACGCCGGCCGGATTTCGTCTCCCTGAGCTTCAATACCATCGCTGCCTTTAATGCCAATGGCGCAATGCCCCACTACCACGCCACGGAAGAAGCGCACGCCGTTATCGAAGGCGATGGCCTGTTGTTGATCGATTCGGGTGGCCAGTATCTCGGCGGTACCACGGACATCACACGCATGGTACCGGTCGGAACGCCAACGCCGGAGCAGAAGCGTGATTGCACCCGAGTCCTCAAAGGTGTGATCGCGTTATCGCGGGCCAAATTTCCCCAGGGTATCCTATCGCCTTTGCTCGATGCCATCGCCCGCGCGCCAATCTGGGCCGAGCAGGTGGATTACGGTCATGGGACTGGCCATGGCGTCGGTTATTTCCTGAACGTGCACGAGGGGCCACAAGTCATTGCCTATCAAGCCGCTGCCGCGCCACAAACCGCGATGCAGCCGGGTATGATCACGTCCATCGAACCGGGCACTTATCGCCCGGGTCGCTGGGGTGTGCGCATCGAGAACCTGGTCCTCAACCGCGAGGCAGGCAGTAGCGAGTTCGGTGAGTTCCTGTCCTTCGAAACCCTGACGCTGTGCCCGATCGATACCCGTTGCCTTGAGCCAGCGTTGCTGACCCAGGATGAAAGGGACTGGTTCAACGCCTACCACGCCGAGGTTCAGCGTCGGTTGAGCCCATTGCTGCAAGGCGATGCGCTGCAATGGTTGAACACCCGGACAGCGGCGATCTGA	MSTEPLTPGEVPQRLARIRQLMSEEGVHALLVPSADPHLSEYLPGYWQGRQWLSGFHGSVGTLIVTGEFAGVWADSRYWEQATKELEGSGIELVKLMPGQPGPLDWLGEQTPEGGVVAVDGAVMAVASARTLSSKLESRGARLRTDVDLLHKIWTDRPALPDQPVYAHLPPQATVSRVEKLAKLRESLKERGADWHFIATLDDIAWLFNLRGADVSFNPVFVSFALIGQQQATLFVALDKVGAPLRATLEQDGVTLRDYSEAAAALREVPSGASLQIDPARVTVGLLDNLDSGVKLVEGLNPTTLAKSRKTSADAEHIRQAMEQDGAALCEFFAWLESAWGRERITELTIDEHLTAARKRRPDFVSLSFNTIAAFNANGAMPHYHATEEAHAVIEGDGLLLIDSGGQYLGGTTDITRMVPVGTPTPEQKRDCTRVLKGVIALSRAKFPQGILSPLLDAIARAPIWAEQVDYGHGTGHGVGYFLNVHEGPQVIAYQAAAAPQTAMQPGMITSIEPGTYRPGRWGVRIENLVLNREAGSSEFGEFLSFETLTLCPIDTRCLEPALLTQDERDWFNAYHAEVQRRLSPLLQGDALQWLNTRTAAI	PGPT0006770_1439	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
D1-36_01676	591	nsaD		2-hydroxychromene-2-carboxylate isomerase	ATGAGCAAATCCGTAGAGTTTTTCTTCGATCTTGGCAGCCCCACCACCTACTTGGCCTACACGCAGTTACCTGCGCTTTGCGCACAAGCGGATAGTGAGCTGATCTACCGCCCGATGTTGCTGGGGGGTGTCTTCAAGGCAACCGGCAACGCATCGCCTGTTACCGTACCGGCCAAAGGGCCTTATCTGTTCAAGGATCTGAATCGCTTTGCTACCCGTTATGGCGTTGAGTTCAAGCTCAACCCCTATTTCCCAATCAACACGTTGCTGTTGATGCGCGCCGTAACCGGGATGCAATTGCGCCACCCAGACCGATTCGAGACCTTTATCGATTGCCTGTTCCGCGCGCTTTGGATTGACGCCCGAAATCTCAACGATCCAGCGACAGTTGCGGCGGTTCTGGAAGACGGCGGTTTTGATCCTGGGTATGTACTGGCCTTGACCTCTGATCAACAGGTCAAGGACCAGCTCAAAAACTCCACCGAAGAAGCGATCCGCAGAGGCGTGTTTGGCGCGCCGAGCATGTTTGTAGGCAACGAGCTGTTCTTCGGCCAGGATCGGCTGGACTTCGTCCGTGAAGCCCTAGCCTGA	MSKSVEFFFDLGSPTTYLAYTQLPALCAQADSELIYRPMLLGGVFKATGNASPVTVPAKGPYLFKDLNRFATRYGVEFKLNPYFPINTLLLMRAVTGMQLRHPDRFETFIDCLFRALWIDARNLNDPATVAAVLEDGGFDPGYVLALTSDQQVKDQLKNSTEEAIRRGVFGAPSMFVGNELFFGQDRLDFVREALA				NA	NA	NA	NA	NA
D1-36_01677	729			hypothetical protein	ATGAATAACAAGAAGGTCGTACTGGTTGTGGGTGCTGGCGATGCCACCGGCGGGGCAATAGCCAGGCGTTTCGCCCGGGAGGGTTTCGTTGCCTGCGTCACGCGTCGAAGTGCCGACAAGCTTGAGCCGTTAGTTAACAGCATTCGGGACGAGGGAGGTGATGCTCACGGTTTCGCCTGCGATGCGCGCAACGAAGATGAAGTCATCGGGCTGATCGAGCAAATTGAAGTACAGATCGGACCGATCGAAGCTTTCATATTCAACATTGGCGCTAATGTGCCCTGCAGCATTCTGGAGGAGACGGCGCGCAAGTATTTCAAGATCTGGGAAATGGCTTGCTTCTCCGGCTTTCTCAATGCTCGGGAAGTGGCCAAGCGCATGGTCAAGCGCCAGCGCGGGACAATCCTGTTTACCGGAGCCACGGCCGGATTGCGCGGAGCGTCAGGGTTCGCCGCGTTTGCCGGGGCCAAGCATGGCGTGCGAGCGTTGGCGCAAAGCATGGCGCGCGAACTGGGCCCGATGAACGTCCATGTCGCTCACGTAATAGTGGACGGCGCCATCGACACGGCCTTCATTCGCGACAACTTCCCGGAAAAATATGCCACCAAGGACGAAGACGGCATTCTCGATCCGGAACACATTGCTGAAAATTACTGGTACTTGCATACCCAGCCCCGCGATGCCTGGACATTCGAGCTGGATCTGCGTCCCTGGAGCGAACGCTGGTAA	MNNKKVVLVVGAGDATGGAIARRFAREGFVACVTRRSADKLEPLVNSIRDEGGDAHGFACDARNEDEVIGLIEQIEVQIGPIEAFIFNIGANVPCSILEETARKYFKIWEMACFSGFLNAREVAKRMVKRQRGTILFTGATAGLRGASGFAAFAGAKHGVRALAQSMARELGPMNVHVAHVIVDGAIDTAFIRDNFPEKYATKDEDGILDPEHIAENYWYLHTQPRDAWTFELDLRPWSERW				NA	NA	NA	NA	NA
D1-36_01678	570			hypothetical protein	ATGCGTTATTCAGCCAACCACAAGATGGAAACTCGCGAAAAACTGCTCGCCAGCAGCGCTATCTCCGCTAAGAAATCCGGATTTGCAACGGTGGGCGTTGATGGCCTGATGAAGGCGATCGGGTTGAGCGGCGGCGCGTTCTATAGCCATTTCTCATCCAAGGATGAGCTTTTCAGGGCGATTGTCGAACGAGAGCTGGCCCACAGCCTGGACCGCTTGAGTGGCGATGGGATCATGGACTCAACGAAACTGGAGCGTTGCCTCAAGCAGTACTTGAGCATGAGCCATGTGGAGCAACCGGAGGTGGGGTGTGCCTTGCCCGTGTTGGGGGCAGAGATCGCGCGCTCGGATATTCAGGTACGGGAGGCGGCACAGACTTGGATCTGCCGGTTGCATGAAGGCTGGGCGCGGATAATGGGAAGTGACAGCCTGGCATGGGCGGTCCTGTCACAATGTGTCGGGGCATTGTTGGTGGCACGCATGTTGGCATCGCCTGAGATTCAGCGCGATGTCCTCAAATCCAGCCGTGAGGAAATCAGTCGTCGAATCGCCGAGCGACCCTTTGACTGA	MRYSANHKMETREKLLASSAISAKKSGFATVGVDGLMKAIGLSGGAFYSHFSSKDELFRAIVERELAHSLDRLSGDGIMDSTKLERCLKQYLSMSHVEQPEVGCALPVLGAEIARSDIQVREAAQTWICRLHEGWARIMGSDSLAWAVLSQCVGALLVARMLASPEIQRDVLKSSREEISRRIAERPFD				NA	NA	NA	NA	NA
D1-36_01679	282			hypothetical protein	ATGAAACGAATCTTGATCTTAATCGCCGTGCTGGCAGTTGCGGGCTGCGCGGCGACATCGAAAACCGAAATGAAACGCGGTAAAAAGGGCCTTCACATCAATTGCTCCGGTCTGACTTCATCCTGGGACCAATGCGCCGCCACGGCGGCCAATTCATGCGCCCCCAAGAACTACAAGGTGATCGCCAAATCCGGTGATGCCGTCGAGGAACCGGGTGACTATCCCTTCGGGCTCAACCCCGCCGGGTATACCAGCCGCAGCATGATCGTCATCTGCAAATAA	MKRILILIAVLAVAGCAATSKTEMKRGKKGLHINCSGLTSSWDQCAATAANSCAPKNYKVIAKSGDAVEEPGDYPFGLNPAGYTSRSMIVICK				NA	NA	NA	NA	NA
D1-36_01680	888	rhtA	COG5006	Threonine/homoserine exporter RhtA	ATGACTCCAGCCAATCGCAACCTGGTTTCTTCTTTATTCCCGGTTGCCTTGCTAATAATCGCGATGGCCTCGATCCAGTCTGGCGCGGCTCTTGCCAAAAGCATGTTCCCGGTAGTGGGCGCGCAAGGAACCACGACCCTGCGCCTTATCTTCGCCAGCATCATCATGTTGTTATTGCTACGCCCTTGGCGCGCCAAGCTCACCGCTCAATCCCTGCGCACGGTGATGGTCTACGGGATGGCGCTCGGCGGCATGAACTTCCTCTTCTATATGTCTCTTCGTAGCGTTCCGCTGGGCATTGCCGTGGCACTGGAATTCACCGGCCCGCTGGCGGTTGCAATCTACGCCTCGCGTCGGGCGATCGATTTCCTTTGGATCGCCTTGGCAGTGATCGGATTGCTGCTATTGATACCTACCGGGGCAGCTGACACCGGCATCGACTTGGTAGGTGCCGGTTACGCCCTGGGCGCAGGCGTGTGTTGGGCGCTATACATTCTGTTTGGCCAGAAGGCCGGCGCGGACAATGGCGTTCAGACCGCAGCATTGGGAGTCATGATAGCGGCTCTGTTTGTCGCCCCTATTGGTATTGTGCACGCCGGTGCCGCGCTGCTGACGCCGAGTCTGATTCCGGTCGCCATCGGGGTCGCCATCCTGTCCACAGCCCTGCCTTATACCCTGGAGATGATTTCCCTGACCCGGATTCCAGCCCGCACGTTCGGCACGCTAATGAGCGTCGAGCCCGCGATCGGCGCCTTGTCGGGATTTATCTTCCTTCAGGAATACCTGTCGCTGGCGCAGTGGGCCGCCATCACCTGCATCGTCCTTGCATCAGTCGGCGCGACACTGACGATGGGCGATACCGCAAAGCCCGCCATCGCAGCAGATTGA	MTPANRNLVSSLFPVALLIIAMASIQSGAALAKSMFPVVGAQGTTTLRLIFASIIMLLLLRPWRAKLTAQSLRTVMVYGMALGGMNFLFYMSLRSVPLGIAVALEFTGPLAVAIYASRRAIDFLWIALAVIGLLLLIPTGAADTGIDLVGAGYALGAGVCWALYILFGQKAGADNGVQTAALGVMIAALFVAPIGIVHAGAALLTPSLIPVAIGVAILSTALPYTLEMISLTRIPARTFGTLMSVEPAIGALSGFIFLQEYLSLAQWAAITCIVLASVGATLTMGDTAKPAIAAD				NA	NA	NA	NA	NA
D1-36_01686	402			hypothetical protein	ATGTCCAAACGCTTGCTGCTGCCCCTTATTCCGCTGCTGTTCGTCAGCCCCGTCCAAGCTGATGATTGCGCAAACGCCACGACCCAGGGCGAGTTGAACCAGTGCGCAACCCAGGAAAACAGGGCCGCCGATAAAGAGTTGAACCGCTTGTACCAAAAAATCACAGCGCGCCTGAAGGATAACGCTGCGGCCAAACAATTGTTGGTCAAGGCACAGCGCGCCTGGATTGACTTCCGTGACGCTGAATGTAGCTTTTCGGCGTCCGGTGTCGAAGGCGGAAGCGTCCATCCCATGATCCACAATGAGTGCATCACGACGCTGACCAAGGCGCGGATTGACGCGTTCAACACCTATCTCAGCTGCAAAGAAGGGGACCTGAGCTGTCCGGTGCCTGAAGCTTGA	MSKRLLLPLIPLLFVSPVQADDCANATTQGELNQCATQENRAADKELNRLYQKITARLKDNAAAKQLLVKAQRAWIDFRDAECSFSASGVEGGSVHPMIHNECITTLTKARIDAFNTYLSCKEGDLSCPVPEA				NA	NA	NA	NA	NA
D1-36_01687	459			hypothetical protein	ATGCATTTACCTGACCGTATCGAAAGAAAGATCTTATTGAAGGCGCCCCGTTCGCAGGTTTGGCGCGCACTGGCCGATGCTGAGACCTTCGGCCAATGGTTTGGTGTGAATCTCGACGGGAAACGGTTTGTCGCCGGAGAGCGCACCCAAGGGCAGATTACTTATCCGGGCTACGAACACCTCGTTTGGGATGTGATGGTGGAGCGTGTCGAGCCCGAGCGGGTGTTTTCGTTTCGCTGGCATCCCTACGCTATCGAGCCACAGACGGATTACTCCCAAGAGTCCGAGACTCAGGTGGAGTTCGAACTCGAAGACTTTAAGGGGGGGACGTTGTTGAAAGTGGTGGAGTCGGGATTCAACGGTATTCCTGAAGCGCGTCGACTCAAGGCCTTTCGAATGGATAGTCGGGGTTGGGATGAGCAAATGGCCAACATCGAGGAATTCCTGAGCAAGGCATGA	MHLPDRIERKILLKAPRSQVWRALADAETFGQWFGVNLDGKRFVAGERTQGQITYPGYEHLVWDVMVERVEPERVFSFRWHPYAIEPQTDYSQESETQVEFELEDFKGGTLLKVVESGFNGIPEARRLKAFRMDSRGWDEQMANIEEFLSKA				NA	NA	NA	NA	NA
D1-36_01689	948	pchR	COG2207	Regulatory protein PchR	ATGTCGGTATCCACGTCCATCACCATCACGCCTGATAACCGCATAGACGTGCGTCGCGCCGAACTGGCGAACCTGATGAAGCGCTTCGCACCGGAATTTGGTGTCCACGCCACGGCTATTGAAGCGTTGCACCTGATCCGCTGCGACCAACCCACAGAAGCCCTGCACGTCGTGCACAAGCCGGGGCTCTGTGTGATTGTGCAGGGTCGCAAAGAAGTCACGCTGGCCCACGAGCGCTATGTCTACGACCCTCTCAATTACCTGGTGGTCTCGGTGACGCTGCCGCTGGCCGGCCAAGTGATCGTGGCCAGTCCAGAGCAACCGTACCTGTGCATTCGCCTGGACATTGAGCCGGCCCAGATCTGTCGGCTGATTGCCGATGCCAACCCCATCGGTTTGCCGGCTGAAAGAACTGACCGCGGATTATTCCTGGACCGAATTGACGAACCCCTGCTCGACGCTATGCTGCGTTTGCTGCGGCTGCTCGACAGTCCGGACGACATCGCGACACTTGCGCCCTTGGCCCAGCAGGAGATTTTCTATCGACTGTTGCGCGGTGCCCAAGGCCGGCGCCTGCATGAAATCGCAATTCCTGACACCCAGACCCACCGCATCAGCCGGGCCATCGAGTGGCTCAATAGCCATTACGCCGAGCCATTGAGCATTGAGAGTCTGGCGCAAATGATCAATCTCAGCCCTTCGGCGCTGCATCACCGCTTCAAAGCCGTGACCGCCATGAGCCCGCTGCAATATCAGAAACAGCTGCGCCTGCAGGAAGCCCGACGATTGTTGTTGGCCGAGAACTGCGACGTTTCGTCAATTGGCTACAAGATGGGCTATGAAAGCCCTTCTCAATTCAGTCGGGAATACAGCCGCCTATTCGGCGCCTCGCCGAGCAAGGACATCGCTCGTCTGCGGGCGATGGCATTACAGGCCAGCAGCGCCTGA	MSVSTSITITPDNRIDVRRAELANLMKRFAPEFGVHATAIEALHLIRCDQPTEALHVVHKPGLCVIVQGRKEVTLAHERYVYDPLNYLVVSVTLPLAGQVIVASPEQPYLCIRLDIEPAQICRLIADANPIGLPAERTDRGLFLDRIDEPLLDAMLRLLRLLDSPDDIATLAPLAQQEIFYRLLRGAQGRRLHEIAIPDTQTHRISRAIEWLNSHYAEPLSIESLAQMINLSPSALHHRFKAVTAMSPLQYQKQLRLQEARRLLLAENCDVSSIGYKMGYESPSQFSREYSRLFGASPSKDIARLRAMALQASSA				NA	NA	NA	NA	NA
D1-36_01690	738			putative oxidoreductase	ATGTCCGATATTCAAAACAAAGTCGTGGTCATTACTGGCGCCAGCAGCGGGATTGGTGAGGCGGCGGCACGCTTGCTGGCTGCCCGGGGGGCTTGCGTCGTATTGGGCGCCCGGCGCGAGGAACGTTTGCAGGCAGTCGTGCAGGAGCTTGAGGCCGCCGGCCAACGGGCTGCTTGCAAAGCCGTGGATGTGAGCCGTCGCGATGACGTGCAGAGCCTGATCGATTTCGCCGTCGAAAAATTCGGCCGACTCGATGTGATCGTCAATAACGCCGGGGTCATGCCCCTCTCCAAACTCGAGGCATTGAAAGTCGATGAGTGGGATCGCATGATCGACGTCAACATCCGCGGGGTGCTCCACGGTATCGCTGCCGGCCTGCCACTGATGCAGCGTCAGCGCAGCGGCCAATTCATCAACATTGCTTCCATCGGTGCCTACGCAGTCAGCCCGACTGCCGCGGTGTACTGCGCCACGAAGTATGCCGTGCGGGCGATTTCCGAAGGCTTGCGTCAAGAAGTCGGTGGGGATGTTCGCGTGACCGTGATTTCCCCCGGTGTCACCGAGTCGGAGTTGGCCGAAAGCATTTCCGATGAAGGCGGACGCGCCGAGATGCGTGAGTTCCGTCGGATCGCCATACCCGCCGAGGCCATCGCCCGGGCGATTTCCTACGCCATCGAACAACCGGCGGACGTCGATGTCAGCGAACTGGTGGTGCGGCCGACGGCAAGCCCTTACTGA	MSDIQNKVVVITGASSGIGEAAARLLAARGACVVLGARREERLQAVVQELEAAGQRAACKAVDVSRRDDVQSLIDFAVEKFGRLDVIVNNAGVMPLSKLEALKVDEWDRMIDVNIRGVLHGIAAGLPLMQRQRSGQFINIASIGAYAVSPTAAVYCATKYAVRAISEGLRQEVGGDVRVTVISPGVTESELAESISDEGGRAEMREFRRIAIPAEAIARAISYAIEQPADVDVSELVVRPTASPY	PGPT0021285_300	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021285-ydfG-K16066	NA	NA
D1-36_01691	687	inhA		Isonitrile hydratase	ATGACGTTGCAGATCGGTTTTCTGTTGTTCCCTCAGGTCCAGCAACTGGACCTCACCGGCCCTTACGATGTACTGGCCTCGTTGCCGGATGTAAAAGTGCACCTGATCTGGAAAGACCTGGCGCCCGTCAATTCCAGCACCGGGCTGGTCTTGCTGCCGACCACCACATTTGAGGACTGCCCGAGGCTCGACGTGATCTGCGTCCCCGGCGGCAGTGGCGTCGGTCCACTGATGGAAGACGAGCAGACCCTGTCCTTCATCAAACGTCAGGCGGCCCATGCCAAATATGTCACCTCGGTGTGCACAGGTTCGCTGGTGCTTGGTGCGGCGGGATTGTTGCGTGGCAAGCGCGCCACCACCCACTGGGCCTTCCACAGTTTGTTGCAGCCCCTGGGCGCGACGCCGGTCAAGGACCGCGTAGTACGAGACGGTAACCTGCTCACCGGGGGCGGCATCACGGCAGGCATCGATTTTGCCCTGACCTTGGCGGCGGAGCTGTTCGATCGAGACACCGCGGAACTGGTCCAGCTGCAACTCGAATACGCTCCCGCACCGCCGTTCGCCTCAGGGTGTCCGGACACGGCGCCGACGAAAGTATTGGAAGAAGCCAACCGGCGTTCGGCAGAGTCTTTGCGGGTACGTTCGCAGATCACTCACCGGGCTGCGGCGCGGTTGGAAAAGGTGTAG	MTLQIGFLLFPQVQQLDLTGPYDVLASLPDVKVHLIWKDLAPVNSSTGLVLLPTTTFEDCPRLDVICVPGGSGVGPLMEDEQTLSFIKRQAAHAKYVTSVCTGSLVLGAAGLLRGKRATTHWAFHSLLQPLGATPVKDRVVRDGNLLTGGGITAGIDFALTLAAELFDRDTAELVQLQLEYAPAPPFASGCPDTAPTKVLEEANRRSAESLRVRSQITHRAAARLEKV				NA	NA	NA	NA	NA
D1-36_01692	987	cdhR_3	COG4977	HTH-type transcriptional regulator CdhR	ATGCCAAATACACCGAAATCCATTCATGTGCTGGCCTTCGCCAATGTGCAGGTGCTCGATGTCACCGGCCCCCTGCAAGTATTTGCATCGGCCAACGATCTTGTTCGTGGGCAGGGTCTGCCGGCGCCGTACGCGCCGACCGTGGTCGCTGCCGGTGGCGGGGCAGTGATGTCGTCGGCGGGGTTGGCGCTGATGGCCGAGCCGCTCCCCAACGACGTCAGCGACACCTTGTTGATCGCGGGCGGTTGGGGCGTGTACGAAGCCGCCGAGGATCCAGCCCTGGTGGCCTGGGTCAAACATCAAGGGATGCGCTCGCGACGGGTCGCGTCAGTGTGTACCGGAGCGTTCCTGTTGGCGGCCAGTGGCTGGCTGGACGGACGACGGGTGGCGACTCACTGGACCCGCTGTGAACAGTTGGCCCAGCAACATCCGCAACTGCGGGTCGAACCCAATCCGATTTTCATCAAGGATGGTCCTGTCTGGACGTCGGCCGGGGTCACGGCCGGAATTGACCTGGCATTGGCGTTGGTCGAAGAGGACTTGGGCCGGGCGATGGCCTTGGAGGTGGCTCGGCATCTGGTGGTTTTCCTCAAGCGCCCCGGCGGGCAATCGCAGTTCAGCGCCACCCTGGCGCTACAAAAGCAGGGCGGTCGCTTCGACAAATTGCACGCCTGGATCGCCGAGAACCTGACGCGGGACCTGGGCCTGTCGAGCCTGGCTGCCGAGGCGGGCATGAGTGAGCGAAGTTTTGTCCGCCATTACCGCGCCGAGACCGGCCAGACCCCGGCCCGCGCCGTGGAACTGATCCGCGTGGAGACCGCTCGCCGTCTGCTTGCCGACAGTGCGGTGCCGGTCAAGCGCGTCGCCCTGCAATGTGGCTTCGGCAGCGAAGAAACCCTGCGCCGCAGCTTTTTGCGAGCCGTGGGCGTGACACCCCAGGCTTATCGGGAGCGGTTCAGTGCCCAAGCAGATCAAGCAACGCCTTGA	MPNTPKSIHVLAFANVQVLDVTGPLQVFASANDLVRGQGLPAPYAPTVVAAGGGAVMSSAGLALMAEPLPNDVSDTLLIAGGWGVYEAAEDPALVAWVKHQGMRSRRVASVCTGAFLLAASGWLDGRRVATHWTRCEQLAQQHPQLRVEPNPIFIKDGPVWTSAGVTAGIDLALALVEEDLGRAMALEVARHLVVFLKRPGGQSQFSATLALQKQGGRFDKLHAWIAENLTRDLGLSSLAAEAGMSERSFVRHYRAETGQTPARAVELIRVETARRLLADSAVPVKRVALQCGFGSEETLRRSFLRAVGVTPQAYRERFSAQADQATP	PGPT0014658_6	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014658-ypdC-NA	NA	NA
D1-36_01693	903	ephA		Epoxide hydrolase A	ATGACAACTGCGCCCAAGGTCAATTTCGCGGTGACGCCACTGCTGCGCATCGCCTATGAAGAACATGGACCCGCCAGCGGCGAGCCAATCATCCTGCTCCACGGTTTCCCCTACGACCCGCGCGCCTTCGACGAGGTGGCCCCGGTCCTGGCCCAACGCGGCTATCGGGTCATCGTGCCCTACCTGCGCGGCTATGGCCCGACCCGGTTCAACAATCCCGCCATCGCCCGCTCCGGCCAACAGGCGGCACTGGCCCAGGACCTGCTGGACCTGATGGACGCGCTCGACATTCCCCGAGCCGCGCTGTGCGGCTATGACTGGGGTGGCCGCGCCGCGTGCATCGTCGCTGCCTTGTGGCCCGAGCGCGCCCGTTGCCTGGTAACGGGCGATGGCTACAATCTGCAGGACATTCCCCATTCAACCCAGCCGCTGAGCCCCGAAGATGAATACCGTCTGTGGTACCAGTATTACTTCCACACCGCCCGGGGCGTCGAAGGCCTGACGCAGAATCGGCGTGAATTGTGCCGATTGCTCTGGCGCCTCTGGTCGCCAACCTGGAAACGCGGCGCCGAGCTGTACGCTCTTAGCGCACCGTCATTCGACAATCCGGACTTCGTCGAAGTGACGATCCACTCCTATCGCCATCGTTTCATGTACGCGTCGGGGGATCCGACGCTCGAGTGGATGGAGGAAAAACTGACAGAGCAACCTGTCATCAGCGTGCCAAGTATTTCCCTGTGCGGCGGCGATGACGGTGTGGGGCCTGCGACGGAGGACGATGAAGATACAGGCCACTTCAGCGGGTTCTATGAACGCCGCGTACTGCCCGGCGTCGGCCACAACATTCCTCAGGAAGCACCCGAGGCCACGGTCAAGGCGTTGCTTGATCTGCTTGGGCACTGA	MTTAPKVNFAVTPLLRIAYEEHGPASGEPIILLHGFPYDPRAFDEVAPVLAQRGYRVIVPYLRGYGPTRFNNPAIARSGQQAALAQDLLDLMDALDIPRAALCGYDWGGRAACIVAALWPERARCLVTGDGYNLQDIPHSTQPLSPEDEYRLWYQYYFHTARGVEGLTQNRRELCRLLWRLWSPTWKRGAELYALSAPSFDNPDFVEVTIHSYRHRFMYASGDPTLEWMEEKLTEQPVISVPSISLCGGDDGVGPATEDDEDTGHFSGFYERRVLPGVGHNIPQEAPEATVKALLDLLGH				NA	NA	NA	NA	NA
D1-36_01694	378			hypothetical protein	ATGACGCACATCAAACGCTCCATTACCACCGAGCCCCGAACAGGGCTGACCCGGGGAGAACTCTGGGACGACCACGACAAAGGCTTGATCAAATGCTGGGAAATCGGCCGCGACCGGGCGGCGAGGTTTCCGGAACTGGCTCAACGCTGCCGGGACGGTGAACTGCCGGTGCTGGGCTGGAAAGGCGGGGTCAGCCGCAGTCTGAAGAAAACCGCCAAATTCGGTTGTCTCAAGTACCTGGCCCAATGGCAGGGCCTGCGCGGGGAGGACCTGGACATCGACCTGGCCCAGGAACGAACCCTGACCTGCTCCAGCACGAACATGATCGTGACGTTCACACCGGAGCGGGCCAAATACGTGAACCAGGAGCCCGCCTGA	MTHIKRSITTEPRTGLTRGELWDDHDKGLIKCWEIGRDRAARFPELAQRCRDGELPVLGWKGGVSRSLKKTAKFGCLKYLAQWQGLRGEDLDIDLAQERTLTCSSTNMIVTFTPERAKYVNQEPA				NA	NA	NA	NA	NA
D1-36_01695	1824		COG3387	Trehalase	ATGGTTGATCATGACGAGCCGCAAAGCCCCATCGAGAACCACGGCATCATTGGCGACATGCGCACCGCCGCGCTGGTCAACGATCGAGGCAGCGTGGATTTTTTCTGCTGGCCGGAATTCGACAGCCCGTCGATCTTCTGCTCGCTGTTGGACACTCCCGAGGCCGGCATCTTTCAACTCGCGCCGATCTTGCCGGACGCCCGTCGCCAGCAGATCTACCTGCCCGACACCAACGTCCTGCAGACCCGCTGGCTGAGCGACGGCGTGGTGGTGGAAATCACCGATTTGCTGCCCATCGGCGACAGCGAGGATGACCTGCCGGTGCTGATGCGTCGGGTGCGCATGACCGTCGGCAGCGCGACGTTTCGCATGCGTTGCGCGGTGCGCCATGATTATTCCCGCGCCGCGACAACGGCGCGCCAGGAGGGCGATCACGTCATTTTCGAGGCACCGCAACAACCGAGCCTGCGCCTGTGCGCCGACCAGCCCCTGACGCTGGACGGCCAGGCGGCAGTGACGGAGTTCACCCTGGAGCAAGGCCAGACCGCTGAGTTCCTGCTGGGCAGCATCGACGACCCTCGGCTGGTGGACGATACCAGTGCCCTTTGCCTGGAACGAACCCTGGCGTTCTGGCGCGGCTGGATCAGCCAATCGAACTACCGCGGCCGCTGGCGGGAAATGGTCAACCGTTCCGCCCTGGCGCTGAAACTCCTGACATCGCGCAAACAGGGCGCCATCCTCGCCGCCGCCACCTTCGGCCTGCCGGAATCACGTGGCGGCGAGCGCAACTGGGATTATCGCTACACCTGGATCCGCGACGCCTCGTTCACCGTCTACGCCTTCATGCGCCTGGGCTTTGTCGACGAAGCCAACGCTTACATGCGCTGGCTGCGTGGCCGAGTCAGCGATTGTCGCGACCAACCGACCAAACTCAACATCCTCTATGGCCTGGACGGTCGGCTTGAATTGCCCGAAACCGAACTGACGCACCTGAGCGGCTACGGCAACGCGCAGCCGGTGCGTATCGGCAACCTGGCCTACCAGCAGGTGCAGCTGGACATCTTCGGCGAGCTGATGGACGCGGTGTACCTGGTCAACAAATACGGCGAAGCCATCTCCCACCAGGGCTGGAAACACACCGTCGATGTGGTGGATCAGGTATGCACGATCTGGCGGGACGCGGATGTCGGCATCTGGGAAATGCGCGGTGACAAGCAACATTTCCTGCACTCGCGCTTGATGTGTTGGGTGGCCGTGGACCGCGCCATCCGCCTGGCGAGTAAACGCTCCCTGCCCGCCCCGTTCGCCCGTTGGGATGAGACCCGCCAGGCCATCTACGAAGACATCTGGACGAACTTCTGGAGCGACGAACATCAGCACTTCGTCCAGTGCCTGGGCAGCACCGCCCTGGACGGCTCGATGCTGCTGATGCCGCTGGTGCGCTTCGTCAGCGCCCGCGACCCGCGCTGGTTGTCGACGCTGGACGCCATCGAAAAAGACCTGGTGCGAGACGGCATGGTCTATCGCTACCGCACCGACGACAACCCCATCGATGGCCTCAGCGGCACCGAAGGTTCGTTCGTGGCCTGCTCATTCTGGTACGTCGAATGCCTGGCCCGCGCCGGCCGGGTGGAAAAAGCCCAACTGGAATTCGAACAGCTGCTGCGCTACGCCAATCCGCTGGGCCTGTATGCCGAGGAGTTCGACAGCCACGGTTATCATCTCGGCAACCTGCCCCAGGCCTTGAGCCATTTGGCGCTGATCAGCGCGGCGAGCTTTTTGGATCGCAAGTTGAGCGGGGAGAAAAATCATTGGCAGCCGTGA	MVDHDEPQSPIENHGIIGDMRTAALVNDRGSVDFFCWPEFDSPSIFCSLLDTPEAGIFQLAPILPDARRQQIYLPDTNVLQTRWLSDGVVVEITDLLPIGDSEDDLPVLMRRVRMTVGSATFRMRCAVRHDYSRAATTARQEGDHVIFEAPQQPSLRLCADQPLTLDGQAAVTEFTLEQGQTAEFLLGSIDDPRLVDDTSALCLERTLAFWRGWISQSNYRGRWREMVNRSALALKLLTSRKQGAILAAATFGLPESRGGERNWDYRYTWIRDASFTVYAFMRLGFVDEANAYMRWLRGRVSDCRDQPTKLNILYGLDGRLELPETELTHLSGYGNAQPVRIGNLAYQQVQLDIFGELMDAVYLVNKYGEAISHQGWKHTVDVVDQVCTIWRDADVGIWEMRGDKQHFLHSRLMCWVAVDRAIRLASKRSLPAPFARWDETRQAIYEDIWTNFWSDEHQHFVQCLGSTALDGSMLLMPLVRFVSARDPRWLSTLDAIEKDLVRDGMVYRYRTDDNPIDGLSGTEGSFVACSFWYVECLARAGRVEKAQLEFEQLLRYANPLGLYAEEFDSHGYHLGNLPQALSHLALISAASFLDRKLSGEKNHWQP				NA	NA	NA	NA	NA
D1-36_01696	801	gdhI_1	COG1028	Glucose 1-dehydrogenase 1	ATGCAGATTTCCCTCGCCCGACAAGTTGCCCTGGTCACTGGCGCCAGCTCTGGCATCGGCGCCGGCTCCGCCCGGGCATTGGCGGCGGCCGGTGCCGCCGTGGTGCTCAACTACCATTCCAGTGCAGGCCCGGCCGAAGACCTGGCCCGCGAGATCAACGACAGCGGCGGCCGCGCCATCGCCCTCGGCGCCGATGTATCGAAGGAGCAGGATGTCGAACGCTTGTTCGCCCAGACCCTCGACGCCTTCGGCACGCTGGACATCCTGGTCGCCAACTCCGGCCTGCAAAAGGACGCCGCCGCCGTGGACCTGACCCTGGACGACTGGAACACCGTCATCAACGTCAATCTCACCGGCCAATTCCTCTGCGCCCGCGCCGCCCTGCGAATCTTCAACCGCCAGGGCATTCGCCAGGGCGTGTCCCGGGCCGCCGGCAAGATTATCCACATGAGCTCGGTGCACCAGCGCATCCCCTGGGCCGGTCATGTCAACTATGCGGCATCCAAGGGCGGCATCGACCAGCTCATGCAGACCCTGGCCCAGGAAACCAGCCACCAGCGCATCCGCATCAACAGCATCGCCCCTGGCGCCATCCGCACGGCCATCAATCGGGAGGCCATGGCAGGCGACAATGAGGACAAAATCCTCGAGCTCATCCCCTACGGTCGGGTCGGCGATGTGGAGGATGTCGCCAATGCGGTGGTCTGGCTGGCATCGGACTTGTCCGATTATGTCGTGGGCACCACGCTGTTCATCGACGGTGGAATGAGCCTCTATCCGGGGTTCCGCGGCAATGGTTGA	MQISLARQVALVTGASSGIGAGSARALAAAGAAVVLNYHSSAGPAEDLAREINDSGGRAIALGADVSKEQDVERLFAQTLDAFGTLDILVANSGLQKDAAAVDLTLDDWNTVINVNLTGQFLCARAALRIFNRQGIRQGVSRAAGKIIHMSSVHQRIPWAGHVNYAASKGGIDQLMQTLAQETSHQRIRINSIAPGAIRTAINREAMAGDNEDKILELIPYGRVGDVEDVANAVVWLASDLSDYVVGTTLFIDGGMSLYPGFRGNG	PGPT0014705_341	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0014705-gdh|ycdF-K00034	NA	NA
D1-36_01697	1173			hypothetical protein	ATGGCAAACCCCTATCGTGAATTATTCACTGCCCCTGGCAGCCGCGGCTTCGTGCTGGCGGGGATGATCGCGCGCATGCCGATATCCATGACCGGCATCGGCGTGATCACCATGCTTTCGCAGCTCAAGGGCGGCTATGGTCTGGCCGGCGCGGTGGCGGCGACGTTTGCCTTGGCGACCGCGTTCTGCGCGCCTCAGGTGTCGCGGCTGGTGGACCGTTTCGGCCAGGGACGGGTCTTGCCGGCGGCGGCGTTGCTGGGGGGCGGGGCGCTGTTGATGCTACTGCTGTGTACGCGATTGCAGGCGCCCCATTGGACGCTGTTCCTGTTCGCTGCCCTGGCCGGTTGCATGCCCAGTATGTCGGCGATGGTCCGAGCGCGCTGGACCGAGGTGTATCGCGGCCAGCCGCAACTGCGCACCGCTTATGCGCTGGAGTCGGTGCTCGACGAGGTCTGTTTTATTGTTGGGCCGCCGCTGTCGGTGGGGTTGTGCGTGGTGGCGTTCCCGGAAGCGGGGCCCCTGGCCTCGGTGCTGCTGCTGGCGATCGGCGTGACCGCGTTTGTGCTGCAACGTGGGACCGAGCCGCCGGTGCATCCGCACCAGGCCCATCATCAGGGCTCGATCATTGGTTCAGGGGATGTGCTTTTGCTGCTGTTGTTGATGGTCGCCATGGGCGTCATTGTCGGGGTGGTGGACGTGGTCAGTGTCGCGTTCGCCCAGCAGCAGGGGCAACCGGCGGCGGCGAGCATCGTGCTGTCGGTCTACGCCATTGGCTCGTGCCTGGCCGGGCTGGCGTTCGGCGCGCTGCGCTCCAAGCTGCCTCTGCCGCGGTTGTTCCTGTATGGCGGCGTGGCGACCGCGGTCACCACGCTGCCGCTGTTGTTGGCGAGCAATATCCTCGGATTGTCCCTGGCGGTGTTCGTTGCCGGTTTATTTTTCGCGCCGACGCTGATCGTCGCCATGGCCTTGGTGGAGCGCATCGTGCCGCCAGCCCGGCTGACCGAAGGCCTGACCTGGCTGGTGACTGGCCTGAGCATCGGCGTGGCGATCGGCGCGGCCGGTTCGGGGTGGCTGGTGGATACGTTCGGCGCGCGCAGTGGGTTCTGGCTGGCGATAGCGGCCGGGGCGGTGGTGCTGGGGGCGGCGGTGCAAAGTTATCGCCAGCAGAGGTAA	MANPYRELFTAPGSRGFVLAGMIARMPISMTGIGVITMLSQLKGGYGLAGAVAATFALATAFCAPQVSRLVDRFGQGRVLPAAALLGGGALLMLLLCTRLQAPHWTLFLFAALAGCMPSMSAMVRARWTEVYRGQPQLRTAYALESVLDEVCFIVGPPLSVGLCVVAFPEAGPLASVLLLAIGVTAFVLQRGTEPPVHPHQAHHQGSIIGSGDVLLLLLLMVAMGVIVGVVDVVSVAFAQQQGQPAAASIVLSVYAIGSCLAGLAFGALRSKLPLPRLFLYGGVATAVTTLPLLLASNILGLSLAVFVAGLFFAPTLIVAMALVERIVPPARLTEGLTWLVTGLSIGVAIGAAGSGWLVDTFGARSGFWLAIAAGAVVLGAAVQSYRQQR				NA	NA	NA	NA	NA
D1-36_01698	1134			hypothetical protein	GTGGACCTGCAAACCATCCTGGGCAAGCTGTTCGCCAATGCCGGCGCCGTTGGTATCGAAGGCGTCTTCCAGTTCGTGTTCGGCCCGCACCAGGCGTACTGGTCCGAGGTCAAGGCCACCAGCCGCACCCAGGCCGGGCGCCACGCCAGCCCCGACGTCACCATCGAAGTGGCGGAAAAGGACTTCCTCGGGATCATGGCCGGCCTGGCCAATGTCGAGGAACTGTTCGCCAGCGGTCGTTTGAAGATCGGCGGCAACATGGGCCTGGCGACGTTGCTGCCACAGATCATCGACCAGGCGCGCCATGGCAGCCGCCCGGTGGAAAAGGTCGACATGAACAAGCGCTATCCCACTCCTTCGCGCTTCAGCGAAAAGCTCACCGCCAGCCTGCCAACCCAACACAGCGTGGAACGTCGGCCGTGCAGCGGGTTGTCAGTCCAGGAATTCAAGGCGCGCTATCTGCCCCATGGCATCCCGGTGGTCATCAGCGATGCGCTGCAGGACTGGCCCTTGTTCAAGCTCAGCCGGGAAGAAACCCTGGTGCATTTTGCCGAGCTGCAAGGCATCACCCGCCACGGCGACTACATCAAGAAAACCTTCTCAACGGAGCGGGATTTTCGCTCCACCTCCATGGCCGATTTCATCGCCTCCCTCGACAACCCGGTGACCACGGCCGCCAACGGCGAGCCGCCGGCGTACATGGGCAACAACATTCTGCCGGCGCAGTTGATGGAGTTGATCAAATACCCGCCTTACTTCGACGCTTCGCTGTTCATCCCGCCACGTATCTGGATCGGTCCCAAGGGCACCCTCACCCCACTGCACCGCGACGACACCGATAACCTGTTCGCCCAGGTCTGGGGCCAGAAAACCTTCACCCTCGCCGCGCCCCACCACCGCGAAGCCCTGGGCACCTGGTCGACCGCGCCCCAAGGCGGGCTGGACGGCTGCGACTTCAATCCCGACGCGCCGGACTATGCACGTTTCCCCAGCGCCCGGGACGTGACGTTCCTGCGGGCCACACTGGAGGCCGGTGACCTGCTGTTCTTGCCGGAAGGCTGGTTTCATCAAGTGGAATCGGTGTCCACATCGCTGTCAGTCAATTTCTGGGTGAATTCGGGACGGGGTTGGTAG	MDLQTILGKLFANAGAVGIEGVFQFVFGPHQAYWSEVKATSRTQAGRHASPDVTIEVAEKDFLGIMAGLANVEELFASGRLKIGGNMGLATLLPQIIDQARHGSRPVEKVDMNKRYPTPSRFSEKLTASLPTQHSVERRPCSGLSVQEFKARYLPHGIPVVISDALQDWPLFKLSREETLVHFAELQGITRHGDYIKKTFSTERDFRSTSMADFIASLDNPVTTAANGEPPAYMGNNILPAQLMELIKYPPYFDASLFIPPRIWIGPKGTLTPLHRDDTDNLFAQVWGQKTFTLAAPHHREALGTWSTAPQGGLDGCDFNPDAPDYARFPSARDVTFLRATLEAGDLLFLPEGWFHQVESVSTSLSVNFWVNSGRGW				NA	NA	NA	NA	NA
D1-36_01699	771	tam_2	COG4106	Trans-aconitate 2-methyltransferase	ATGAGCTGGTCCGCCCAACAATATGTCGCTTTCGAACAGGAACGCACCCGCCCGTCCCGCGATCTGCTGGCGGCGATCCCGCCGGTACAGGCGCGCCAGGTGATCGATCTGGGCTGCGGCCCCGGAAACTCCACCGAACTGTTGGCGGACCACTTCCCCGGCGCGACGGTGCGTGGCCTGGACAGTTCCGCCGACATGGTCGAAGCCGCCCGCAAGCGCTTGCCCGACGTGACATTCGATACGGCAGACATCGGCCTCTGGAATGAAAGCGGCCCCTTCGAGGTGATCTTCGCCAACGCTGTGCTGCAATGGCTGCCGGACCACGCCACCCTACTGCCGTCACTGGTGGACAAACTCGCACCAGGTGGCAGCCTGGCGATCCAGATGCCCGACACCCTGCATCAGCCGTCCCACCGCTTGATGCGGGAGATTGCGGCCAACGGCCCCTGGGCCAGCCAACTGGCCGGGGCCGCTGATTCTCGGACCGAGGTGGAGGACGCCAGCACCTATTATTCGATCCTCAAGCCCCATTGCAGCCGGGTCGATGTGTGGCGCACCACCTATCATCATCCACTGGCCGGTGGCGCTTCGGGCATCGTGGAATGGTTCAAGGGCAGCGGCTTGCGCCCGTTTCTCGAACCGTTGGACGAGGCGCAACGCGAGCAATACCTGACGCAATACCTCAAGGCTGTCGAACAGGCCTACCCGACCCTGGACGATGGTTCGGTCCTGCTACCGTTTCCACGGGTCTTCATCGTCGCGACACGCTAG	MSWSAQQYVAFEQERTRPSRDLLAAIPPVQARQVIDLGCGPGNSTELLADHFPGATVRGLDSSADMVEAARKRLPDVTFDTADIGLWNESGPFEVIFANAVLQWLPDHATLLPSLVDKLAPGGSLAIQMPDTLHQPSHRLMREIAANGPWASQLAGAADSRTEVEDASTYYSILKPHCSRVDVWRTTYHHPLAGGASGIVEWFKGSGLRPFLEPLDEAQREQYLTQYLKAVEQAYPTLDDGSVLLPFPRVFIVATR				NA	NA	NA	NA	NA
D1-36_01700	735	lgrE		Linear gramicidin dehydrogenase LgrE	GTGACCCAACTGACCCTGCTGTGCCTGCCTTATTCCGGCGCCAGCGCAATGGTGTACAGCCGGTGGCGGCGCAAATTGCCGCAATGGCTGCACGTGCAACCAGTGGAGTTGCCGGGACGCGGGGCGCGCTTCGACGAGCCGCTGCACACCGAGATGGGCCCGTTGGCGATGCAACTGGCGCGGGAGCTTTACCCGACGCTCCAGGCGCCGTACGCCTTGTTCGGTCACAGCCTGGGTGCGCTGTTGGCCTGTGAAATCGCCCATGCCCTGCGTGAACTCGGCTGCCCGGAACCGGTGGCGCTGTTTGCATCCGGCACCGCCGCGCCGACGATGCGGGCCGACTACGATCGCGATTTTGCCACGGCAAAGACCGACGCTGAGTTGATCGAGCAACTGCGCACCCTCAACGGCACGAGCGAGGAGATCCTGGCCAATGAAGAACTGATGGCCCTGACCCTGCCGATCCTGCGGGCCGATTTTTTGCTGTGCGGACGTTTTCAGCCGCGGCAGCGACCGTTGCTCAAATGCCCGGTGCACGTGCTCGGCGGCACCGCCGACAAGGCCACCACGGCGCAACTGATGGGCTGGCGTCAGGAAACCACGGGCAGCTTTTCGGTGGACATGCTGGCCGGCGGGCATTTCTTCATCCACGAGCACGAGGCCAAGGTGCTGCGGCTGATCAAGGATCAGTTGAGCGTGCATCATCGGCGGCATGGGTTGGCGATCAGCGCATAA	MTQLTLLCLPYSGASAMVYSRWRRKLPQWLHVQPVELPGRGARFDEPLHTEMGPLAMQLARELYPTLQAPYALFGHSLGALLACEIAHALRELGCPEPVALFASGTAAPTMRADYDRDFATAKTDAELIEQLRTLNGTSEEILANEELMALTLPILRADFLLCGRFQPRQRPLLKCPVHVLGGTADKATTAQLMGWRQETTGSFSVDMLAGGHFFIHEHEAKVLRLIKDQLSVHHRRHGLAISA	PGPT0004157_1	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_GOLD_RESISTANCE	GOLD_RESISTANCE-DELFTIBACTIN_METABOLISM,PGPT0004157-delftibactin_thioesterase-NA	NA	NA
D1-36_01701	12774	dltA_2		D-alanine--D-alanyl carrier protein ligase	ATGAATGCTGAAAACGCCTTGAAACTTGCTCGCCGGTTTATCGGGTTGCCTTTGGACAAGCGCCAGATGTTCCTGGCGGCGCTGGACAAGGAGGGCGTGGATTTCAGCAGCTTTCCCATTCCCCAGGGCGTCGAAGCCGAGGATCGCCAGGCCCTGTCCTATGCCCAGCAGCGCATGTGGTTTCTCTGGCAGTTGGATCCCGACAGCGGCGCCTACAACCTGCCCGGGGCGGTGCGGCTCAAGGGCGCGTTGAGTCTGTCGTCGCTGGAGCAGGCTTTTGCCAGTTTGGTGGCGCGTCATGAAACCCTGCGCACGGTGTTCCGGCGCCAGGCCGACGACAGCCTCTTGCAAGTGGCGACCGATGCGCCGCTGCTGATCGAGCATCAGGACCTCAGCGGCTTGCCGGCAGGCAATCGCGAGCAAGCGGTGCGCCAGGCTGCGCAAGCACAATCGATGCGGCCCTTCGACCTGTCCAGCGGCCCCTTGCTGCGGGTCGAGTTGCTCAAGATCGATGCGCAGGAGCACGTACTGCTGTTGACCCTGCACCACATCGTCTCCGATGGCTGGTCGATGAACGTGCTGATCGAAGAGTTCATCCGCTGCTACGACGCCCACGAAGCCGGCGTGCCGCCGCAACTGGCCGATTTGCCGATCCAGTACAGCGACTACGCGCTGTGGCAGCGCCGTTGGCTGGAGGCCGGTGAGCAGGGCCGACAACTGGCGTACTGGCAGGCCCAGCTGGGTGATGAGCATCCGGTGCTGGAATTGCCCACCGACCATTCGCGCCCGGCCATGCCAAGCTATCGCGGCAGCCGTTATGAATTCGCCATCGAGCCGGGGTTGGCGGAGCAACTGCGCAGCACGGCCCAGCAGCAGGGCGTCACGCTGTTCATGCTGCTGCTCGGCGCGTTCAACGTGCTGTTGCATCGCTACAGCGGCCAGTCCGACATCCGCGTGGGCGTGCCGATTGCCAACCGCAACCGCGACGAAATCGAAGGCCTGATCGGTTTCTTCGTCAACACCCAGGTGCTGCGCACCGAATTGGATGGCCAGATCCGGGTCGACGAGTTGCTGCGCCGGGTCAAGGAGACCGCGCTCGGTGCCCAGGCCCACCAGGACCTGCCTTTCGAGCGCCTGGTCGAGGCATTGAAATTGGAGCGCAGCCTCAGCCATACGCCGCTGTTCCAGGTGATGTACAACCATCAGCCCCAAGTGGCGGATGTCACCACGATCCGAACGGCGTCCGGGCTGGAACTGGACATGATCGAGTGGCAGACCCGCACCACCCAATTCGACTTGACCCTGGACACTTACGAAAAAGCAGGCACGTTGCGCGCCGCGCTGACTTATTCCGAGGACCTGTTCGAGGCGCCGACCGTCGCGCGCATGGCGCGGCATTGGCTGCGATTGCTCGCGGCGATGATTGCCGATCCGTCCCGGCGTGTCGGGGAGCTGGCGCTGCTTGATGCCGACGAGCACGCCACTCTGGTTTATGACTGGAACGCCACGGCCCAACGCTACCCGACCGAACTGTGCATGCATCAGTTGATCGAAGCCCAGGTGGCGCGCACTCCGCACGCTCAGGCGCTGATGTTTGGCGACCAGAGCCTGACCTATGCCCAGCTCGATGCCCGCACCAACCGTCTGGCCCATCTGCTGCGCGGACGCGGTGTACGAGCGGACAGCTTGGTGGGCATCTGCATCGAGCGTTCGGTTGAGATGGTGCTTGGCCTGCTGGCGATCCACAAGGCCGGCGGCGCCTACGTGCCGCTGGATCCGGAATATCCGCAGGATCGCCTGGCCTACATGATCGAGGACAGCGGCATCGGCTTGCTGCTGACCCAGCGCGCGCTGTCGGCGGAGCTGCTGACCGAGGGGATCGAGGTCATCGCGCTCGACCAACCGGACGGTTGGCTCGACGGTTACAGCGACAGTCGACCCGACGTCGCGGTCGACCCGCTGAACTTGGCTTACGTGATCTACACCTCTGGTTCCACCGGCAAACCCAAGGGCGCGGGCAACAGCCATGCGGCACTGGTCAATCGCTTGTGCTGGATGCAACAGGCGTATCGCCTGGATGGCAGCGACGCGGTGTTGCAGAAAACCCCGTTCAGTTTCGACGTGTCGGTGTGGGAGTTCTTCTGGCCGCTGATGACCGGAGCACGCTTGGTGATTGCCGCGCCCGGTGCCCATCGTGATCCGCGGCAACTGATCGATAGCATCAACCGTCATCGCATCAGCACGCTGCACTTCGTGCCGTCGATGCTGCAGGCCTTCATCCATGAACCTGGCGTGGAATCCTGCGAAAGCTTGAAGCGTATCGTCTGCAGTGGTGAAGCCTTGCCGCTGGATGCGCAGCAGCAGGTCTTCGCCAAACTACCGGACGCAGCGCTCTACAACCTGTACGGCCCGACCGAAGCGGCCATCGACGTGACCCATTGGACTTGCGTAGATGAGGGCGCCGATTGCGTACCGATCGGCCAGCCCATCGCCAACCTGCGTACCCATGTGCTCGACGCCGATCTGTCGCCGGTTCCGTGGGGCGTGGCGGGCGAGTTGTACCTGGGCGGGGCGGGGCTGGCGCGCAGTTATCACCAGCGTCCGACGCTGACCGCCGAGCGTTTCGTGCCGTGCCCGTTCCATGACGGCGCGCGCCTGTACCGCACCGGCGACCGCGTGCGCCAGCGCGCCGACGGTGTGATCGAATACCTTGGCCGTCTCGATCATCAGGTCAAGCTGCGCGGCCTGCGCATCGAACTGGGGGAAATCGAAGCCCGTCTCCTGCAACATCCACTGGTGCGCGAGGCCGTGGTACTGGTGCAGGACGGCAAGCATCTGGTGGGCTACCTGGTGCTGGAAAACGGCGACCCGCACGAGCAGTGGCAACAGGACCTCAAGGCCTGGCTGCTCGTCGGCCTGCCGGAATACATGGTGCCGACCTACCTGATGCCATTGGCCGGCCTGCCCGTGACCGCCAACGGTAAGCTCGATCGCAAGGCCTTGCCACAACCCGACGCCGCGCCCCGGCAAACATTCATCGCCCCGCAAGATGCACTGCAAACCGTCTTGGCTGAAATCTGGCAGAGCGTGCTTGGCGTTGAGCGCGTCGGTCTCGAAGACAACTTCTTCGAACTGGGCGGCGATTCGATCATTTCCATCCAAGTGGTGAGCCGCGCACGACAGGTTGGTGTGCATATTCATCCCCGCGACCTGTTCCAGTACCAGACCGTGCGCAGCCTGGCGCTGGTCGCCCGCCACGACAACCACAGCGCCCTGGACCAAGGTCCGGTCACTGGCGATGCCATGCTCGGGCCGATCCAGCAGCAGTTTTTCGCCCAGGCGATGCAGGCCCGCGAACACTGGAACCAATCGCTGTTGCTGACCCCACGCGAACCGATGAATGCACAATGGCTCGACGCGGCGCTGACCTGCGTCATCAACCACCACGACGCCTTGCGCCTGCGCTTCGTCGAAGACGCCGACGGTTGGCGGCAGAGCCATGCCGCGTTTTTGCAAAGCGCCGACCTGTGGCAACGCGATGCCCGATCCATCGAGCACCTGAATGCGCTGTGCGACGAGGCGCAGCGCAGCCTGGACCTGCAAGACGGGCCACTGGTGCGCGCCATGCTGGTGAACCTGGCCGACGGCAGCCAGCGCCTGGCGCTGGTTATCCATCACTTGGTGGTGGACGGCGTGTCATGGCGCGTGCTGCTGGAAGATTTGCAGCAGGCCTACGAGCAACTGGCGGCCGGTGGCGGCGTTACGTTGCCGGCCAAGACCAGCGCCTTCCAGAGTTGGACGGCGCGTCTGAGGGCCGAAGCATCGCGCTTCGATGACCAGTCGGCCTATTGGAAAAACCAGCACGAGGCCGCGTGGGACCTGCCATGCGAACGCCCGCAGGGCAGCTTGCAAAACATCCACGGCGAGAAAATCCAATGGCGCCTGGAGGCCGAACTGACCCGGCAACTGCTGCAACAGGCGCCCGCTGCCTATCGCACCCAGGTCAACGACCTGCTACTCACCGCGCTGACTCGCACCATCAGCCGTTGGAGCGGGCAGCCAAGCACATTGATCGAGCTCGAAGGTCATGGCCGCGAAGACCTTTTCGATGACATCGACCTGACCCGCACGGTGGGTTGGCTGACCAGTCTGTTCCCGGTCAAGCTGACAGCCACCGAGGACATCGGCGGCTCGATCAAGACCATCAAGGAGCAACTGCGCAGCGTCCCGGACAAGGGCCTGGGCTACGGCGTGCTGCGTCATCTGGCAGCGACGTCGGTGCAAGCTCAATGGACGGATCTGGCGCCTGCGCGCATCACTTTCAATTACCTCGGCCAGTTCGACCGCCAGTTCGATGAGGCGGCGCTGTTCCTGCCGTCCGGCGAAGGCAGTGGCGTCGCCCAGGACCCGACGGCACCGCTGGCCAACTGGCTGACGGTGGAAGGGCAGGTGCATGGCGGCGAGCTGGCGATGAGCTGGGGCTTCAGCCGTGACATGTTCGACAGCACGACCGTGCAGCAACTGGCCGATCAATACGCCGTCGAGCTCAAGGCGCTGATCGACCATTGCGTCAACCTGGCGGAACCGCAAGCCACGCCGTCGGACTTTCCGCTGGCGCGGATCACCCAATCGCAACTCGATCATCTGCCAGTGGCGGCCGGTCAGTTGGATGATGTCTATCCGCTGTCGCCGATGCAGCAGGGCTTGTTGTTCCACACGTTGTACGAGCAGGCGGCTGGCGAATACGTCAATCAATTGCGGGTGGACGTGCAAGGCCTGGATGCCGAGCGCTTCCGTGCGGCGTGGCAGGCCACTGTCGCGGCGCAGGATATTTTGCGCAGCGGCTTCGTCTGGGAAGGTGAATGGCCGCAACCGCTGCAGATCGTTCACAAGCAGGTGCAGTTGCCGTTCACGGTGCTGGACTGGCGCGAGCATGCCGACCCGGCCCACGCCCTCGCCGCGTTAGCCGAGGCCGAGCGTGCCCAAGGTTTCGACTTGAGCCAGGCGCCGCTGTTGCGCCTGGTGCTGGTGCAGACCGGAGCGGCGCAATGGCATTTGATCTACACCCATCACCACATCCTGATGGATGGCTGGAGCAACTCGCAGTTGCTCGGCGAGGTGATGCAGCGCTACAACGGCCGCGCCCCGGCCAGCACTGTTGGGCGTTATCGCGACTACATCGCTTGGCTGCAACGCCAGGACGGCCAGCTCAGCCAGGATTTCTGGAGCGCACAGCTGGCCCCGTTGCAAGAGCCGACCCGACTCGCCCGCGCGGCCTCGGACAGCGGCGAGAGCGGTCACGGCGATCATTTCCTGATCCTCGACATGCCGCGCACCCAGGCACTGGAGTCGTTTGCCCGCCAGCAGAAAATCACCCTAAACACGCTGGTGCAAGCGGCTTGGCTGCTGTTGCTGCAACGCTATACCGGGCACCCGACCGTGACGTTTGGCGCGACGGTTGCCGGTCGCCCGGCGGATCTGCCGGGGATCGAGCAGCAGGTCGGCCTGTTCATCAACACCTTGCCGGTCATCGGCAGCCCGCGTCCGGACCAGACGGTCGGCCAGTGGCTGCAAACGGTGCAGGACCAGAACCTGAGCCTGCGGGAGTTCGAGCACACGTCGCTGGCGGACATCCAGCGTTGGGCCGGGCAGGGCGGCGAGGCGCTGTTCGACAACCTCTTGGTATTCGAAAACTATCCGATTGCCCAGGCTTTGCAGCAAGGCACTGCCAGCGATGTCACATTCGGCGACGTTGCCAACCGTGAGCAGACGCATTACGCCCTGAGCGTGGCGGTTACCCTCGGCGAACAATTGGCGCTGCACTTCAGTTACGAGCGTCGGCAGTTCGCCGACGAGATGATTGATCACATCGGCACTCATCTGCTGCATCTGCTTGAGCAATTCAGCCAGGACGCCGGACGCAATCTGGGTGAAATCGCCCTGGCCAGCGGTGCCGAACATGCGCGCCAACGTGCCGACAACCACCCGCAGCCGTACCCGGTAAACATCCCCGTGCACCAGCGCATCGCCGCGCTGGCCGCCGAGGGCCCGCAACGCACGGCGGTGATTTTCAACGACCGACACGTCAGCTACGGCGAGATCGATCGGCGCGCGAACCAACTGGCCCACACCTTGATCAGCCGCGGCGTCGGCCCGGAAACCCGAGTCGGCGTGGCCCTGCCGCGCAGCGAAGAGGTGATCGTCACGCTGTTGGCGGTGCTCAAGGCCGGCGCTGCCTACGTGCCGTTGGACGTGAGCTATCCCCGCGAACGCCTGGCTTATTTGATGAAGGACGCCGGGTTGGCGCTGCTGGTCAGCGATTCCTCGGTATCGGCCCAGTTGCCCGTGGATGAGTCGTTGCCGTTGCTGGAGCTGGACCGTATCGATCTGCGCGAACTGCCGACCAGCGCGCCCGACGTCCAACTCGACCCGCACAACCTGGCCTACGTGATCTACACCTCCGGTTCCACTGGCAACCCCAAGGGTGTCAGCGTGGCCCACGGTCCGCTGGCGATGCACTGCCAGGCCATTGGCGAGCGTTATGAAATGCGCGACAGCGATTGCGAATTCCATTTCATGTCGTTCGCGTTCGACGGCGCCCACGAGCGCTGGCTCACCAGCCTGACCCACGGTGCGTCGCTGCTGATTCGCGACGACAGCCTTTGGACCCCGGAGCAAACCTACAACGCCATGCACGAGCACGGTGTGACGGTGGTGGCGTTCCCGCCGGTGTACCTGCAACAACTGGCCGAGCACGCCGAGCGTGAAGGCAACCCGCCGAAGGTGCGCATCTATTGCTTCGGCGGCGACGCGGTGCCCAACGCCAGTTTCGAGCGGGTCAAGCGCGCCTTGCGTCCTGAGTACATCATCAACGGTTACGGTCCGACCGAAACGGTGGTCACGCCGCTGATCTGGAAGGCCGGTCGCGAGGCGTGTTGTGGCGCTGCCTACGCGCCCATCGGCAGCCGCATCGGCGACCGCAGTGCCTACGTGCTCGATGCCGACCTTAACCTGTTGCCCCAAGGCATGGCCGGTGAGCTGTATCTGGGCGGCACGGGATTGGCTCGCGGTTACCTGAACCGACCGGGGCTGACCGCCGAGCGTTTTGTCGCCGACCCGTTCAGCGCCGGCGGCTTGCTGTATCGCACCGGAGACCTGGTGCGCCAGCGCGCCGACGGCACTTTCGATTACCTGGACCGCATCGACAACCAAGTGAAGATCCGTGGTTTCCGCATCGAACTCGGTGAAATCGAAGCCAGTCTGCAAGCCCTCGATGGCGTGCGCGAAGCGGTGGTCGTGGCCCAGGAAGGCACCGCCGGCAGCGGCAAGCGTCTGGTCGCCTATGTGGTGGCGGCAGAACCTGCCCGTGAAGACTTCGCCGAGCACTTGCGTGAGCAGCTCAAGGCGACGTTGCCGGCGCACATGATTCCGGCCTATCTGCTGCTGCTCGAATGCCTGCCGCTGACCCCCAACGGCAAGCTCGACCGCAAGAACCTGCCCAAGCCCGACGCCAGCCAATCGCAACACGCCTACCTGGCGCCGCGCACTGCGCTGGAACAGCAACTGGCGGCGATCTGGCAGGACGTGCTCAAGCTTGAACGCGTGGGCCTGCGGGATAATTTCTTCGAACTGGGCGGCGATTCCATCGTCTCGATCCAGTTGGTCAGCCGCGCCCGCCAGGCCGGTATGCACTTCACGCCCAAGGACCTGTTCCAGCACCAGACCCTGGAAACACTCGCCACCGTGGTTCGCCAGGGTGAAGCCGCCCAAGTCATCGATCAGGGTCCGGTGACCGGTGAACTGGCGCTGTTGCCGGTGCAGCGGGTGTTCTTCGAACAGGCGATACCGCAGCGTCATCACTGGAACCAGGCGGTGATGCTCAAGGCGACCGAACGCCTGGATGCATCGGTTTTGAACCAGGCTTTGAATGCGTTGTTAGAGCATCATGATGGCCTGCGCTTGAGCTTCACCGAGCAGGCCGAAGGCTGGAGGGCGGTTTACCGTCTCGCCGACATTCAATGCCAAGACCTGCTCTGGACTGTGGACGCACCTGATGCGCAGGCCTTGCAAGGCATCGCCAATGAGGCCCAACGCAGCCTGGACCTGCAAGATGGGCCGTTGCTGCGGGCAGTCCTGGCGACGCTGGGCGATGGTACCCAGCGGTTGTTGCTGGCGGTGCACCACTTGGTGATCGACGGCGTGTCGTGGCGAATCCTGTTCGAGGACCTGCAAACCGCCTATCGTCAGTTGTCCAGCGGTGCGGCGCTGCGACTGCCGCTGAAGACCACCTCCGCGCAGGCCTGGGCCGAGCGCCTGCAAGCGCATGCCGGCAGCAACCGGCTGGCGCAGGAACTGGCGTTCTGGCAAGCCCAGCTCGAAGACGTCGATGCCTCGTTGCCGATGGATAACCCGGCGGGCGGCCAGCAGAACCGCCTGGCCGTGACGGTGCGCACACGACTCGACGCCACGCTGACCCGGCAACTGCTGCAAGACGCGCCCAAGGCTTATCGCACCCAGGTCAACGACCTGCTGCTCACCGCGCTGGCGCGGGTGATGGTGCGCTGGACCGGCAGCGACAGTGCGCTGATCCAGCTTGAAGGCCATGGCCGCGAAGCCTTGTTCGACGACGTCGATCTGACTCGCACCGTCGGCTGGTTCACCAGCCTGTACCCGGCGCGGCTCACGCCTCGGGCGGACTTGGGCGATTGCCTCAAGCAGATCAAGGAACAACTGCGGGCGATGCCCGACAAGGGCCTCGGTTTCGGCGCCCTGGCCCATCTGGCGGATGACGCGACGCGGGCGATCCTGGCCGGGCTGCCGACGCCCAGCCTGACCTTCAACTACCTGGGCCAGTTCGACGCCAGCTTCAACGAAGCCGACGGCGCTTTGTTCGTGCTGGCCGACGAAGCCGCCGGCGATGAGCTGGACGCCGAAGCACCGCTGTCCAATGCGCTGGCCTTGAACGGCCAGGTGTTCGGCGGCGAACTGGACCTGGGCTGGACCTTCAGCCGCGAGCAGTTCAACGAGTCCACCATCCAGGCGCTGGCCGACGATTATGGGATGGAACTGCAGCGGCTGATCGAGCATTGCTGCCGGGGCGAGCACAGCGGCGTGACGCCGTCGGACTTCCCGCTGGCGAGCCTGAACCAGCAGCAACTGGACGGACTGGCGCTGCCTCCAGCGCAGATCGTCGACCTGTATCCGTTGTCACCGATGCAACAAGGCATGCTGTTCCATGGTGTGTATGGCGACGCGAGCGGCGACTACATCAACCAACTGCGCCTGGACGTCGAAGGGCTGGACCCGGAACGCTTCCGCCAGGCCTGGCAAGCGGCGGTGGATGCCCATGACATCCTGCGCACGCGGTTTGTCTGGCAGGGTGATTTGCCGGCGCCGGTGCAAGTGGTCAGCAAGTACCTGCAACTGCCTTACAACGTGCAGGATCTGCGCGGTGAGTTATCGCCTGACCAGACCCTGCGGGCCCTGGCCGATGCCGAACGCCAGCAACTTCACTTGAGTGCGCCGGCCCTGATGCGGCTGATGATCGTGCGTCTCGACGAGCAGCGTTATCACCTGATCTACAGCCACCATCACATCCTCATGGACGGCTGGAGCAACTCGCAGTTGCTTGGCGAAGTGCTGCAACGCTACAGCGGGCAATCCGTTGCCGTATCGGGCGGTCGTTATCGGGACTACATCGCCTGGCTGCAACGCCAGGACGCGGCGCTCAGCGAAGCGTTCTGGAAACCTTTGCTGCAACGCCTGGAGGCGCCGACGCGGCTGGCCGACTCGGTGGCCAAACCAACGGACGCTGGGGTTGGTTATGGCGATCATGTGCAGGTGCTGGACGAAGCGCTGACCCGCCGCCTGGAAGCCTTCGCGCGTGCCTCGAAAGTCACGGTGAACACGCTTGTGCAGGCGGCGTGGTTGCTGCTGTTGCAGCGCTACACCGGTCGAGAAACGGTTGCCTTCGGTGCGACGGTGGCCGGTCGCCCAGCGGACCTGCCTGGCATCGAGCAGCAGATCGGTTTGTTCATCAACACCTTGCCGGTGATCGCCAGCCCTCGGGCCGAGCAGTCTTTGGACAGCTGGCTGCAAGCGGTGCAAGCGCAGAACCTCGCCTTGCGCGAGTTCGAGCACACCGCGTTGCTGGACATCCAGCGCTGGGCCGGGCAGGGCGGCGACGCGTTGTTCGACAGTTTGTTGGTGTTCGAGAACTACCCGATCGCCGAGGCCCTGGAGCAGGGCGCACCGGACGGTTTGCGCTTTGGTTCGCCGATCACTCAGGAGCAGACCAACTATCCGTTGACGCTGTTGGTGGGGCTGGAGCGGCAGTTGTCGGTGCATATGAGTTATCAGCGGGCGAGTTTCTCGGCGGTTACCGTGGAGCGGTTGGCGGGGCATTTGGCTCAGTTGCTCGGACAGATGACGGCTAATGGCGAGCGCCCGTTGGGTGAGCTGTCGATGCTGGAATTCGATGAACACCAGCGCCTGATCCATGACTGGAATCCGGTGGATGCGCCGTTCGAGCAAGACCTATGCATCCATCAATTGATTGCCCGCCAAGCGGAAAACACCCCGGACGCCTTGGCGGTGACGTTCAATGATATTCGCCTGAGCTACAGCGAACTCGACGGCCGCGCCAATCGTCTGGCCCATAAACTGATCGAGCTGGGCGTCGGCCCGGAAGTGCGCGTGGGCGTGGCGATGCCGCGCTCCGAGCAACTGCTGATCGCCTTGCTGGCGGTGCTCAAGGCTGGCGGCGCGTATGTGCCGCTTGACCCGGATTACCCGGCCGAGCGCGTGGCCTACATGCTCGACGACAGTCGGGCGAAGGTGCTGTTGACCGAGCAGGCTGTGGCTTTGACGTTGACCGTTCCGGCTGGAACCGAAGTGCTGATGCTGGATCGGGTTGAATTGACCTCATATCCCTTAAAAACACCGGACACAGCGGTCACACCAGACAACCTCGCCTACGTCATCTACACCTCCGGTTCCACCGGCAAACCTAAAGGCGTGGCCATCGCCCACCGCAACGTTCTGGCGCTGATCGACTGGTCGAAAACCGTCTACAGCCGCGACGACATCCAAGGCGTGCTGGCCTCGACCTCGGTGTGTTTCGACCTGTCGGTGTGGGAGCTGTTCGTGACCCTGGCCAACGGCGGTTCGCTGATCATCGCTCGCAATGCCCTGGAACTGCCGCACCTGCCGGCCCGCGACCAGGTGCGCCTGATCAACACCGTACCCTCGGCCATCGCGGCGTTGCAGCGCAGTGGGGATATCCCGCAGAGCGTGCGCATCATCAACCTGGCCGGTGAGCCGCTGAAGCAAAGCCTGGTGGATGCCCTCTACCCCACACCCCTAACCTGTGGGAGCGAGCCTGCTCGCGAAAGCGGTGGGTCAGGCAACCCGATGCAAACTGACAGGACGCCTTCGCGAGCAGGCTCGCTCCCACAAGGGGGGGAGCATGTCCATGGCATCATCAACCTGGCCGGTGAACCGCTGAAGCAGAGCCTGGTGGATGCCCTCTACCCCACACCCCTAACCTGTGGGAGCGAGCCTGCTCGCGAAAGCGGTGGGTCAGGCAATCCGATGCAAACTGACAGGACGCCTTCGCGAGCAGGCTCGCTCCCACAAGGGGGGGAGCATGTCCATGGCATCATCAACCTGGCCGGTGAGCCGCTGAAGCAAAGCCTGGTGGATGCCCTCTACCCCACACCCCTAACCTGTGGGAGCGAGCCTGCTCGCGAAAGCGGTGGGTCAGGCAATCCGATGCAAACTGACAGGACGCCTTCGCGAGCAGGCTCGCTCCCACAGGGGATTGAGCATGTCTATGACCTTTATGGCCCATCGGAAGACACGACTTACTCAACCTGGACCCGCCGCACCCAGGGCGGCACGGCCAATATCGGTCGCCCACTCAAGCACACCGCCAGCTACCTGTTGGACGCCAACCTGCAACCGGTCCCCCAAGGCGTGTCCGCTGAGCTGTACCTGAGTGGCGCGGGCATCACCCGGGGTTACCTTGGCCGCGCGGCGATGACCGCCGAAAAATACGTGCCCAACCCGTTCTCCACCACCGGCGAACGCCTCTACCGCACCGGCGACCTGTGCCGTTATCGCGACAACGGCGTGCTCGAATACCAGGGCCGCATCGACCATCAGGTGAAGATCCGCGGCTTCCGTATCGAGCAGGGGGAAATCGAGGCGCGACTGCTGCAACAGCCCGAGGTCAAGGAGGTGGCGGTGCTGGCCCAGGAAGGGCCGGGCGGGCAGCAGTTGGTGGCCTATGTGGTGGCTTCGGCGGATGCCGACACCCTGCGCGATCCACTCAAAGCCCGCCTCAAGGAACATCTGCCCGACTACATGATCCCGGCGCACTGGCTGTTCCTCGATCACCTGCCGTTGACCCCCAACGGCAAACTCGACCGCAAGGCGTTGCCGGGCATCGAGGCCCGGCGATCGCAAAACGCATACCAAGCACCGATCAGCAAACTGGAACAGCAAGTCGCGGCGATCTGGGCCCAGGTGCTCACCGTCGAGCGCGTGGGCCTGAACGATCACTTCTTCGAGTTGGGCGGCCACTCGCTGCTGGCGGTCACCGCCGTCTCGCGCATGACCCTCGAACTGGGGTTGAGCCTGACCCCGCAACTGCTGTTCCAGCACCCCGTCCTGCAGGATTTCGTCGCCCGACTCGACAGCACGAACGGGCCAATCAATGAAGAGAAACTGAACAAGCTGGACGCCCTGCTTGATGAAATGGAGGAAGTCTGA	MNAENALKLARRFIGLPLDKRQMFLAALDKEGVDFSSFPIPQGVEAEDRQALSYAQQRMWFLWQLDPDSGAYNLPGAVRLKGALSLSSLEQAFASLVARHETLRTVFRRQADDSLLQVATDAPLLIEHQDLSGLPAGNREQAVRQAAQAQSMRPFDLSSGPLLRVELLKIDAQEHVLLLTLHHIVSDGWSMNVLIEEFIRCYDAHEAGVPPQLADLPIQYSDYALWQRRWLEAGEQGRQLAYWQAQLGDEHPVLELPTDHSRPAMPSYRGSRYEFAIEPGLAEQLRSTAQQQGVTLFMLLLGAFNVLLHRYSGQSDIRVGVPIANRNRDEIEGLIGFFVNTQVLRTELDGQIRVDELLRRVKETALGAQAHQDLPFERLVEALKLERSLSHTPLFQVMYNHQPQVADVTTIRTASGLELDMIEWQTRTTQFDLTLDTYEKAGTLRAALTYSEDLFEAPTVARMARHWLRLLAAMIADPSRRVGELALLDADEHATLVYDWNATAQRYPTELCMHQLIEAQVARTPHAQALMFGDQSLTYAQLDARTNRLAHLLRGRGVRADSLVGICIERSVEMVLGLLAIHKAGGAYVPLDPEYPQDRLAYMIEDSGIGLLLTQRALSAELLTEGIEVIALDQPDGWLDGYSDSRPDVAVDPLNLAYVIYTSGSTGKPKGAGNSHAALVNRLCWMQQAYRLDGSDAVLQKTPFSFDVSVWEFFWPLMTGARLVIAAPGAHRDPRQLIDSINRHRISTLHFVPSMLQAFIHEPGVESCESLKRIVCSGEALPLDAQQQVFAKLPDAALYNLYGPTEAAIDVTHWTCVDEGADCVPIGQPIANLRTHVLDADLSPVPWGVAGELYLGGAGLARSYHQRPTLTAERFVPCPFHDGARLYRTGDRVRQRADGVIEYLGRLDHQVKLRGLRIELGEIEARLLQHPLVREAVVLVQDGKHLVGYLVLENGDPHEQWQQDLKAWLLVGLPEYMVPTYLMPLAGLPVTANGKLDRKALPQPDAAPRQTFIAPQDALQTVLAEIWQSVLGVERVGLEDNFFELGGDSIISIQVVSRARQVGVHIHPRDLFQYQTVRSLALVARHDNHSALDQGPVTGDAMLGPIQQQFFAQAMQAREHWNQSLLLTPREPMNAQWLDAALTCVINHHDALRLRFVEDADGWRQSHAAFLQSADLWQRDARSIEHLNALCDEAQRSLDLQDGPLVRAMLVNLADGSQRLALVIHHLVVDGVSWRVLLEDLQQAYEQLAAGGGVTLPAKTSAFQSWTARLRAEASRFDDQSAYWKNQHEAAWDLPCERPQGSLQNIHGEKIQWRLEAELTRQLLQQAPAAYRTQVNDLLLTALTRTISRWSGQPSTLIELEGHGREDLFDDIDLTRTVGWLTSLFPVKLTATEDIGGSIKTIKEQLRSVPDKGLGYGVLRHLAATSVQAQWTDLAPARITFNYLGQFDRQFDEAALFLPSGEGSGVAQDPTAPLANWLTVEGQVHGGELAMSWGFSRDMFDSTTVQQLADQYAVELKALIDHCVNLAEPQATPSDFPLARITQSQLDHLPVAAGQLDDVYPLSPMQQGLLFHTLYEQAAGEYVNQLRVDVQGLDAERFRAAWQATVAAQDILRSGFVWEGEWPQPLQIVHKQVQLPFTVLDWREHADPAHALAALAEAERAQGFDLSQAPLLRLVLVQTGAAQWHLIYTHHHILMDGWSNSQLLGEVMQRYNGRAPASTVGRYRDYIAWLQRQDGQLSQDFWSAQLAPLQEPTRLARAASDSGESGHGDHFLILDMPRTQALESFARQQKITLNTLVQAAWLLLLQRYTGHPTVTFGATVAGRPADLPGIEQQVGLFINTLPVIGSPRPDQTVGQWLQTVQDQNLSLREFEHTSLADIQRWAGQGGEALFDNLLVFENYPIAQALQQGTASDVTFGDVANREQTHYALSVAVTLGEQLALHFSYERRQFADEMIDHIGTHLLHLLEQFSQDAGRNLGEIALASGAEHARQRADNHPQPYPVNIPVHQRIAALAAEGPQRTAVIFNDRHVSYGEIDRRANQLAHTLISRGVGPETRVGVALPRSEEVIVTLLAVLKAGAAYVPLDVSYPRERLAYLMKDAGLALLVSDSSVSAQLPVDESLPLLELDRIDLRELPTSAPDVQLDPHNLAYVIYTSGSTGNPKGVSVAHGPLAMHCQAIGERYEMRDSDCEFHFMSFAFDGAHERWLTSLTHGASLLIRDDSLWTPEQTYNAMHEHGVTVVAFPPVYLQQLAEHAEREGNPPKVRIYCFGGDAVPNASFERVKRALRPEYIINGYGPTETVVTPLIWKAGREACCGAAYAPIGSRIGDRSAYVLDADLNLLPQGMAGELYLGGTGLARGYLNRPGLTAERFVADPFSAGGLLYRTGDLVRQRADGTFDYLDRIDNQVKIRGFRIELGEIEASLQALDGVREAVVVAQEGTAGSGKRLVAYVVAAEPAREDFAEHLREQLKATLPAHMIPAYLLLLECLPLTPNGKLDRKNLPKPDASQSQHAYLAPRTALEQQLAAIWQDVLKLERVGLRDNFFELGGDSIVSIQLVSRARQAGMHFTPKDLFQHQTLETLATVVRQGEAAQVIDQGPVTGELALLPVQRVFFEQAIPQRHHWNQAVMLKATERLDASVLNQALNALLEHHDGLRLSFTEQAEGWRAVYRLADIQCQDLLWTVDAPDAQALQGIANEAQRSLDLQDGPLLRAVLATLGDGTQRLLLAVHHLVIDGVSWRILFEDLQTAYRQLSSGAALRLPLKTTSAQAWAERLQAHAGSNRLAQELAFWQAQLEDVDASLPMDNPAGGQQNRLAVTVRTRLDATLTRQLLQDAPKAYRTQVNDLLLTALARVMVRWTGSDSALIQLEGHGREALFDDVDLTRTVGWFTSLYPARLTPRADLGDCLKQIKEQLRAMPDKGLGFGALAHLADDATRAILAGLPTPSLTFNYLGQFDASFNEADGALFVLADEAAGDELDAEAPLSNALALNGQVFGGELDLGWTFSREQFNESTIQALADDYGMELQRLIEHCCRGEHSGVTPSDFPLASLNQQQLDGLALPPAQIVDLYPLSPMQQGMLFHGVYGDASGDYINQLRLDVEGLDPERFRQAWQAAVDAHDILRTRFVWQGDLPAPVQVVSKYLQLPYNVQDLRGELSPDQTLRALADAERQQLHLSAPALMRLMIVRLDEQRYHLIYSHHHILMDGWSNSQLLGEVLQRYSGQSVAVSGGRYRDYIAWLQRQDAALSEAFWKPLLQRLEAPTRLADSVAKPTDAGVGYGDHVQVLDEALTRRLEAFARASKVTVNTLVQAAWLLLLQRYTGRETVAFGATVAGRPADLPGIEQQIGLFINTLPVIASPRAEQSLDSWLQAVQAQNLALREFEHTALLDIQRWAGQGGDALFDSLLVFENYPIAEALEQGAPDGLRFGSPITQEQTNYPLTLLVGLERQLSVHMSYQRASFSAVTVERLAGHLAQLLGQMTANGERPLGELSMLEFDEHQRLIHDWNPVDAPFEQDLCIHQLIARQAENTPDALAVTFNDIRLSYSELDGRANRLAHKLIELGVGPEVRVGVAMPRSEQLLIALLAVLKAGGAYVPLDPDYPAERVAYMLDDSRAKVLLTEQAVALTLTVPAGTEVLMLDRVELTSYPLKTPDTAVTPDNLAYVIYTSGSTGKPKGVAIAHRNVLALIDWSKTVYSRDDIQGVLASTSVCFDLSVWELFVTLANGGSLIIARNALELPHLPARDQVRLINTVPSAIAALQRSGDIPQSVRIINLAGEPLKQSLVDALYPTPLTCGSEPARESGGSGNPMQTDRTPSRAGSLPQGGEHVHGIINLAGEPLKQSLVDALYPTPLTCGSEPARESGGSGNPMQTDRTPSRAGSLPQGGEHVHGIINLAGEPLKQSLVDALYPTPLTCGSEPARESGGSGNPMQTDRTPSRAGSLPQGIEHVYDLYGPSEDTTYSTWTRRTQGGTANIGRPLKHTASYLLDANLQPVPQGVSAELYLSGAGITRGYLGRAAMTAEKYVPNPFSTTGERLYRTGDLCRYRDNGVLEYQGRIDHQVKIRGFRIEQGEIEARLLQQPEVKEVAVLAQEGPGGQQLVAYVVASADADTLRDPLKARLKEHLPDYMIPAHWLFLDHLPLTPNGKLDRKALPGIEARRSQNAYQAPISKLEQQVAAIWAQVLTVERVGLNDHFFELGGHSLLAVTAVSRMTLELGLSLTPQLLFQHPVLQDFVARLDSTNGPINEEKLNKLDALLDEMEEV				NA	NA	NA	NA	NA
D1-36_01702	13563	lgrD_2		Linear gramicidin synthase subunit D	ATGGACAAGAGTGTTGCTTTGAGGGTCGCCAAGCGCTTTATCACTCTGCCGCTGGACAAACGCAGGCTGTACCTTGAGAAGATGCTGGAAGAGGGCGTCTCGCCGGCCAACCTGCCGATCCCCGAGGTGCGTTCCGGGTTCGAGCATATCCCGCTGTCCTACGCCCAGGAGCGTCAGTGGTTCCTCTGGCAAATGGAGCCGCACAGTTCGGCCTATCACATCCCCAGCGCCCTGCGCCTCAAAGGTCGATTGGACGTGCCGGCGCTGGAACGCAGCTTCAACGCTTTGGTCGAGCGCCACGAAAGCTTGCGCACCACGTTCAGCGAGCACGGCGAGCAAGCCGTTCAGGTTATCCACCGGCAGATGCCCCTGAGCATCGCTGTCGAGGCGCTGCCTGCTGGTTCACCGATCAGCGAGGACGCGCGCATCAAGGCATACGTCGAAGGCGAAACCGCGCGTCCGTTCGATTTGCGCCAGGGGCCGTTGCTGCGGGTTTCGCTGTTGAAAGTCGCCGAGGACGACCACGTGCTGGTGCTGATCCAGCATCACATCATTGCCGATGGCTGGTCGATGCGCGTGTTGGTAGACGAACTGGTGCGCTGTTACGCCGCCGACACAGACGGCCAGCCGCTTGTATTGCCGGAGCTGCCGGTGCAATACGCCGACTACGCCATCTGGCAGCGCCATTGGCTGGAAGCCGGCGAGCGTGAGCGCCAGTTGGCCTATTGGGTGCAGACCCTGGGCGACGAGCAACCGGTGCTGGAGCTGCCGTTCGATCATCCGCGTCCCCCGGTGCAAAGCCTTCGTGGCGCGCGGCTGGATTTGACACTGGCGCCGGAGCTGGCTGCCTCGCTGAAACAACTGGCCCAGCGAGAAGGCGCCAGCCTGTTCATGGTTTTGCTCGCCTCGTTCCAGGCGTTGCTGCACCGCTACAGCGGCCAGCCGCAGATCCGCGTCGGCGTGCCGACGGCGAACCGCAACCGGGTCGAGACCGAAGGGCTGATCGGCTTTTTCGTCAATACCCAGGTGCTTAACGCCCACGTCGATGGGCAGCAGCCATTCGACGGCTTGCTCGCCCAGGTCAAGCAAGCGGCCATGGCGGCCCAGGCCCATCAGGATTTGCCTTTCGAGCAACTGATCGAGGCGTTGCAACCAGAGCGCAGCCTCAGCCACAGCCCGATCTTCCAGGTGATGTTCAACCACCAGAACGCCGATGCTAAGGGTCGCCGGCAGACGCACCTGCCGCAACTGCGCGTCGAGGACCTGACGTGGGAAGGGCGCACCGCCCAGTTCGACTTGACCCTCGGTACCTACGAAACCGAGCAGGGCATCGTTGCGGAGCTGACCTACGCCACCGACCTCTTCGAACCGCAGACCATCGAGCGCCTGGCCGCGCATTGGCAAAACCTGCTGCAAGGCATTGTCGATGCACCCCGCCAGCGGGTCGGCGAACTGCCGCTGCTCGACCCGGCGCAACAGCGATTCACGCAACAGCAATGGCTGCGCGTCGCCGACCACGGCGCCGGAGCCGTGTGCGTGCACCAGCGCATCGCTGAACAGGCGCAGCAGAACCCCGACGCACTGGCACTGACCGTGGACGGACCATCCCTGAGCTACCGGCAATTGGACGCCCGCGCCAATCAACTGGCCCACCGCTTGATTGATCTGGGCGTGTCCCCTGGCGAGCTGGTGGGCATCGCGGTGGAGCGCAGCATTGAGATGATTGTCGGCCTGCTGGCGATCCTCAAGGCCGGCGGCGCCTACGTACCGCTGGACCCGGCGTATCCCGAGGATCGCCTGGCCTACATGATCGAAGACAGCGGCATCGGGTTGCTGCTGACCCAGGCCCGTTTGCAGGCGCGATTGCCGATCCCGTCGACGCTCCGGACCCTGCTGCTCGATCAGCGGGACGCCGCGCTGCAAGAGGCTCCGAAAACCTGCCCGGCCGTATCGCCGACCGGCGAGCACCTGGCCTACGTCATCTACACCTCCGGCTCCACCGGCAAGCCCAAGGGCGTGATGGTGCGCCATGGTGCGCTGAGCAATTTCATCACCAGCATGATCGCCCAGCCGGGGCTCGCGGCCAGCGATCGCATGTTGTCGCTGACGACCTTCTCCTTCGATATTTTCGGCCTGGAAATCTACGGGCCGCTCTGCGGCGGGGCCAGCATCGTCCTGACCGGGCAGAACGTGCATCAGGATCCGCAAGCGGTGCTGGCGCTGGTCGAGCATCACGACATCAGCGTGCTGCAAGCCACGCCGTCGAGCTGGCGCATGCTGCTCGACCATGAGCGGGCATCGGTGCTCGCCGGCCGGACATTCCTGTGCGGCGGCGAAGCCTTGCCCCAGGAACTGGCGCAGCGACTGCTGGCGCTTTCGCCAAAGCTCTGGAACCTCTATGGCCCTACCGAAACCACCATCTGGTCGGCCGCGCATCCATTGAGCCCCGAGCGCGACCGGCCGTTCCTTGGCCAGCCGCTGGACAATACCGCGCTGTACATCGTCGGCGGCGACCTGACCCTCAATCCGCCCGGCGCGCCGGGTGAGCTGCTGATCGGCGGCGCCGGCCTTGCCCGTGGTTATTTCCAGCGCCCGGGGCTGACCGCCGAACGCTTCGTACCGGACCCGTTTTCCACCGCCGGCGAACGGCTGTACCGCACCGGCGACCTGACCCGCTATCGCCCCGAAGGCGTGGTCGAATACCTCGGCCGCATCGACCATCAGGTGAAGATCCGCGGCCTGCGCATCGAACTCGGGGAAATCGAAGCCGCGCTGCTGGCCCAGGACAGCGTGCGCGAAACCGTGGTGGTCGCCCACGAGGGCCCGACCGGTGCGCAACTGGTGGGCTACGTCGTGCCTGCCAGCGGCGCGGTGCCGGAGCCCGATGCGCCGTTGCGCGTCGCGCTCAAGGCAGCCCTCAAGGCGCAGTTGCCGGACTACATGGTCCCGGCGCACCTGTTGTTCCTGGCCCGATTGCCACTGACACCCAATGGCAAGATCGATCGCAAGGCCTTGCCGGCGCCCGACGCCAGCGATCTGCAACAGGCCTACGTGGCGCCTCGCAGTGAGGTCGAGCAACAAGTCGCGGCGATCTGGCAGGACGTGCTCAAGCTTGAGCGCGCGGGCCTGGAGGACAACTTCTTCGAATTGGGCGGGCATTCGCTGCTAGTGACCCAAGTGGTCTCGCGAATCCGTCGGGTGCTGGGCATCGAGGTGCCGCTGCGCAGCCTGTTCGAACACAGCACCTTGCAGGCGTTTGTCGCAGCCTTCGAGGCCACGCCAGGCGAACAGGCCCCGGCAATGGTGCCGGTGCCTCGCGATGCGCCACTGCCGCTGTCGTTTGCCCAGGAACGCCAATGGTTCCTGTGGAAAATGGACCCGGACAGCGCCGCCTACAACATCCCCACGGCCCTGCGGATGCGCGGCACGCTGGACAAGGATGCGCTGCGCGAGAGTTTCGCCGCGCTGGTGGCGCGTCACGAAAGTTTGCGCACCGTATTCGCCGAAGAGGATGGCCGCACCTGCCAAGTCATTCGCGAACAGGGTGAGGTCGACTTCGTCGAGCAGCGCCTGGAAGAGGATGAGATCCAGGCCTTTGTCGAACAGCAGACACAGCGCCCCTTCGATCTGTTGACTGATTCATTGCTGCGCGTGGCACTGCTGGAGGTGGATGAGCAGGATCACATCCTGGTGCTGACGCTGCATCACATCGTCTCCGATGGCTGGTCCTTGCAGGTGATGGTCGATGACCTGATGAGCCTGTATTCGGCGTTCGTCCAAGGCCAGCAAGCGCATCTGCCGCCATTGGCGATGCAATACGCCGACTACGCCGTCTGGCAGCGGCAGTGGATGGCGGCCGGTGAGCGGGATCGCCAATTGGCCTATTGGTCCGGGCAACTGGGCGGTGAGCAACCGCTGTTGGAACTGCCCACCGACCGTCCGCGCCCGGCGCAGCAAAGCCTGCGCGGCGCACGCCTGCCGATCAGGCTGGACGCTGCCTTGAGCGCGAACCTCAAGGCCCTGGCCCGACGGGAAAACGTCACGCTGTTCGTGCTGTTGCTCGGCTCTTTCCAGGCGCTGCTGCACCGCTACAGCGGCCAGGCCGACATCCGCGTCGGCGTGCCGATCGCCAACCGTCAACGACTGGAAACCGAGCGACTGATTGGTTTCTTCGTCAACACTCAGGTCCTGCGCAGCGAGTTTCACAATGGGCTGACCGGCGCCGCTCTGTTGCAGCAGCTCAAGCAGACGGCCCTGGCCGCGCAGATGCACCAGGACATGCCTTTCGAGCAACTGGTGGATGCTTTGCAGCCGCAGCGCAACCTCAGCCACAGCCCGTTGTTCCAGGCGATGTTCAACCACCGCAACGAAACCGATTCGGCGTTCGCCAATGCCTTGCCGGACCTTTGCGTCGAGCCCCTGGGCTGGACGCAGCGTACCGCGCAGTTCGACCTGAGCCTGGACACGGTCGAGGGCCCGCAGGGCTTGCACGCGGCCCTGACCTATGCGACGGATCTGTTCGAGCCGGCGACCATCGAGCGCATGGCCCGGCATTGGCTCAACCTGTTGCACGAGCTGGTGCAAGACCTGCATCGCCCGGTGGTGCAGTGGGCGCTGTTGGATGAGGACGAGCGCCGGCACATGCTCAGCGACTGGAACGCGACGGCGCAGCATTACCCGCTCGACCGCAGCGTGCAAAGCCTGATCGAGGAGCAAGTGCGCCGGACCCCGGACGCGCCTGCGCTGGTCTTCGGCGAGCAGCGCCTGAGCTACCGTGAACTCAACGCCCGGGCCAACCGTTTGGCCCATCGGTTGATCGACCAGGGCGTCGGCCCCGACGTGCTGGTGGGCATCGCCGTGGAGCGTTCCGTGGAGATGGTGCTGGGGCTGTTGGCGATCCTCAAGGCCGGCGGCGCCTACGTGCCCCTGGACCCCGAATATCCGCGCGATCGCCTGGCCTACATGTTCGAAGACAGCGGCATCGGCTTGCTGCTGACCCAGCAACACCTGCTGGATGCCTTGCCGATCCCGGACGGGCTGCGCAGCCTGGTGCTGGACTCGCCCGATGACGGCTTGTACGCCAGCCGCGACGGCAATCCCGATATCGAAGTCCATGGCGAAAACCTGGCCTACGTCATCTACACCTCTGGTTCCACCGGCAAGCCCAAGGGCGCAGGCAATCGCCATAGTGCCCTGGTCAACCGGCTGTGCTGGATGCAACAGGCCTATGGCCTCGATGCCTCGGACAGCGTGCTGCAAAAGACACCGTTCAGTTTCGACGTGTCGGTGTGGGAGTTTTTCTGGCCGCTGCTGACCGGTTCGACGCTGGTGGTGGCCGCGCCGGGCGCCCACCGTGACCCGGCGCAGTTGATCGACTTGATCACGGCCCATGGCATCACCACGCTGCACTTCGTGCCGTCAATGCTCCAGGCGTTTATGCAGGACCCGCGCGTGGCCGAATGCAGCGGTTTGAAGCGGATCGTCTGCAGCGGCGAAGCGCTGCCGGTGGATGCCCAGCAGCAGGTGTTCGCCAAATTGCCGAACGCCAACCTGTACAACCTCTACGGCCCGACCGAGGCGGCCATCGACGTCACTCACTGGACCTGTGTCGAGGAGGGCCGCGACAGCGTGCCCATCGGCCAACCGATCGCCAACCTCGGCACCTACATTCTCGACGATGAATTGTCGCCGGTTCCGGTGGGGGTGACCGGCGAGTTGTATCTGGCGGGCGAAGGGCTGGCGCGGGGTTACCACCGACGCGCGGCGTTGACCGCCGAGCGCTTCGTCACCGGGCCGTTCGGCCATGGTCAGCGCTTGTATCGGACCGGCGATCTGGCGCGCTATCGCCCCGACGGCGTGATCGAATACGCCGGGCGGATCGACCATCAAGTGAAGATCCGTGGCCTGCGCATCGAGTTGGGTGAAATCGAAGCGCGCCTGGCCGAACACGATGCCGTGCGCGAAACCGTGGTCCTGGCCCAGGACGGCACGCTGCTGGTGGCTTATCTGGTGCCGGCGCGCGCCGAGCTGCTCGCCGCCGATGGCGCCGTTCGCCAGGCGCTGCAAGCACGCCTCAGGGAACATCTGAGCCAATCCTTGCCCGACTACATGGTGCCGCAACACTGGGTGTGGCTGGAAAAAATGCCGGTCAGCCCCAACGGCAAGCTCGAGCGCAAGGCACTGCCCAAGGCCGAGCCGAGCGCCCATCCCCAGGCCTACATCGCAGCCATGACGGCGCAGCAGCAGACGCTGGTCGATATCTGGCAAAGCGTGCTTGGACGCGAGCGCGTGGGTGTGACCGACAATTTCTTCGAACTGGGCGGCGATTCGATCATCTCCATTCAGGTGGTGAGCCGGGCCCGGCAGGCCGGCCTTCATTTGAGCCCCAAGGACCTGTTCCTGCACCAGACCATCCAGGGTTTGGCCGGCGTGGCGACAACGGGAGACGGCGGGCCGGTCATCGACCAGGGCCCGGTGACAGGCGAGGCGCTGCTGCTGCCGTTCCAGCAGTTGTTTTTCGAGCAGGCCATGGCCGAGCCCCATCACTGGAACCAGTCGGTACTGCTCAAAGGCGTGCGGCCGGTGCACGCCGGGCATCTGGAGCAGGCGTTGCAGGCCGTGGTCGAACATCACGATGCGTTGCGCCTGGCCTTCACCCATGAGGATGGCGCCTGGATCGCTCGCCATAACACCCTGGCCGATCAACGTGCGTTGTGGCAACGCTCGCCGCTGTTGTGGGCCGCCGAGGTTCCCGACGCGCCGGCCCTCGAACGCCTGGCCGAACACGCTCAGCGCAGTCTTGAACTGGGCAGTGGCGCGCTGCTGCGCGGTGTCCTGGCGACCCTGGCCGATGGCAGCCAACGGTTGTTATTGGTGATTCATCACCTGGTGGTGGACGGCGTGTCCTGGCGGGTGCTGCTGGAAGATTTGCAACAGGCATACGACCAATTGCAGGCCGGCCAGATGCCGACGTTACCGGCCAAGACCACGTCTGCACAGACTTGGGCGCAACGGTTGCAGGCCCATGCCAGCAGTGCGGCGTTGCAAGGCCAAGTCGCTTACTGGCAGGCGCAACTGGACGGCGCTCGCCCCGACCTGCCTTGCGACTACCCCCACGGTGATTTGCGTAGGTGTCATGGGACGCAAGTCCAGACGCGGCTGGACAAAGCACTGACACGACGATTGTTGCAGCAAGCCCCCGCGGCCTATCGCACCCAGGTCAACGACCTGCTATTGACGGCGCTGGCCCGGGTGATCGGCCGCTGGACTTCCCAGGCGTCGACCTTGATCCAGTTGGAAGGCCATGGCCGCGAAGCCCTCTTCGATGATGTGGACCTGAGCCGCAGCGTGGGTTGGCTCACCAGCCTGTTCCCGGTGCGTCTGACCCCGACGGCGACCGCCGAAGGCTCGATCAAGGCGATCAAGGAGCAACTGCGGGCGATCCCCGACAAAGGGCTTGGCTTCGGCGTGCTGCGTTATCTGGGCGATGAACCGACGCGTCGTGCCCTCGCGGCACTGCCGGTGCCGCGCATCACCTTCAATTACTTGGGGCAGTTCGACAGCGGCTTCAACGAAGCGGCCAATGGGCTGTTTGTCCCGGCCAGCGAATCGGCGGGCGCGGCGCAAAGTCCGTTGGCACCGCTGGATAATTGGTTGACTCTCAATGGCAGCGTCTATGCCGGTGAGTTGAGCATCGATTGGAGCTTCAGCACGCAGATGTTCGACGAAGCGACGATCCAGGCGCTGGCAGAGGATTACGCTCGGGAATTGCGGGCGCTGATCGACCACTGTTGCCAGACCGAACGCCACGGCTTCACGCCGTCGGACTTCCCCCTCGCCGGGCTGAACCAGGCGCAATTGGACGCGTTGCCGCTGGTGGCGCGAGAGGTGGAGGACCTTTATCCGCTATCGCCGATGCAGCAGGGCATGCTGTTTCACACGCTGTACGAGCAACAGGCCGGCCACTACATCAACCAGATGCGCGTGGAGGTCCAAGGGCTGGACGTCGAACGCTTCCGCCTGGCCTGGCAGGCGGCCACGGATACCCATGACGTGCTGCGCAGCGGGTTTGTCTGGGACGGCGATTTCAAACATGCATTGCAGGTGGTGTACAAGCGCGTCGACGTTGTGTTGCAGCTTGAGGACGGGCGCGCAAATGCTGACCTGGCTCACTGTCTGGAAAACCTCGCAACGGCCCAGCGCCAACAAGGGTTTGCCCTGGACGCGGCGCCGTTGTTGCGGTTGGTGGTCGTGCGCGTGGCGGACGATCGTTATCACCTGATCTACACCTGCCATCACATCCTCATGGACGGCTGGAGCAACTCGCAGTTGCTCGGCGAAGTGCTGCAACGCTACAGCGGGCAGTCCGTTGCCGTATCGGGCGGTCGTTATCGGGACTACATCGCCTGGCTGCAATGCCAGGACGCGGCGGTCAGCGAAGCGTTCTGGAAACCTTTGCTGCAACGCCTGGAGGCGCCGACGCGGCTGGCTGACGCGGTGGCCAAACCCACGGACGCTGGTGTTGGTTATGGCGATCATGTGCAGGTGCTGGACGAAGCCCTGACCCGTCGCCTGGAAGCCTTCGCGCGTGCCTCGAAAGTCACGGTGAACACGCTTGTGCAGGCGGCGTGGTTGCTGCTGTTGCAGCGCTACACCGGTCGGGAAACGGTTGCCTTCGGTGCGACGGTGGCCGGTCGTCCGGCGGACCTGCCTGGCATCGAGCAGCAGATCGGTTTGTTCATCAACACCTTGCCGGTGATCGCCAGCCCTCGGGCCGAGCAGTCTTTGGACAGCTGGCTGCAAGCGGTGCAAGCGCAGAACCTCGCCTTGCGCGAGTTCGAGCACACCGCGTTGCTGGACATCCAGCGCTGGGCCGGGCAGGGCGGCGACGCGTTGTTCGACAGTTTGCTGGTGTTCGAGAACTACCCGATCGCCGAGGCCCTGGAGCAGGGCGCACCGGACGGTTTGCGTTTTGGTTCGCCGATCACTCAGGAGCAGACCAACTATCCGTTGACGCTGTTGGTGGGGCTGGAGCGGCAGTTGTCGGTGCATATGAGTTATCAGCGGGCGAGTTTCTCGGCGGTTACCGTGGAGCGGTTGGCGGGGCATTTGGCTCAGTTGCTCGGACAGATGACGGCTAATGGCGAGCGCCCGTTGGGTGAGCTGTCGATGCTGGAATTCGATGAACACCAGCGCCTGATCCATGACTGGAATCCGGTGGATGCGCCGTTCGAGCAAGACCTATGCATCCATCAATTGATTGCCCGCCAAGCGGAAAACACCCCGGACGCCTTGGCGGTGACGTTCAATGATATTCGCCTGAGCTACAGCGAACTCGACGGCCGCGCCAATCGTCTGGCCCATAAACTGATCGAGCTGGGCGTCGGCCCGGAAGTGCGCGTGGGCGTGGCGATGCCGCGCTCCGAGCAACTGCTGATCGCCTTGCTGGCGGTGCTCAAGGCTGGCGGCGCGTATGTGCCGCTTGACCCGGATTACCCGGCCGAACGCGTGGCCTACATGCTCGACGACAGTCGGGCGAAGGTGCTGTTGACCGAGCAGGCTGTGGCTTTGACGGCGCCGACTGGAACCCGAGTATTGATCCTCGATCAACTCGACCTTTCACGTTATCCATTGAGCGCACCGGTTACTCACGTTTCAGCGGACAACCTCGCCTACGTCATCTACACCTCCGGCTCCACCGGCAAACCTAAAGGCGTGGCCATCGCCCACCGCAACGTTCTGGCGCTGATCGACTGGTCGAAAACCGTCTACAGCCGCGACGACATCCAAGGCGTGCTGGCCTCGACCTCGGTGTGTTTCGACCTGTCGGTGTGGGAGCTGTTCGTGACCCTCGCCAACGGCGGTTCGCTGATCATCGCTCGCAATGCCCTGGAACTGCCGCACCTGCCGGCCCGCGACCAGGTGCGCCTGATCAACACCGTACCCTCGGCCATCGCGGCGTTGCAGCGCAGTGGGGATATCCCGCAGAGCGTGCGCATCATCAACCTGGCCGGTGAGCCGCTGAAGCAAAGCCTGGTGGATGCCCTCTACCCAACACCCCTAACCTGTGGGAGCGAGCCTGCTCGCGAAAGCGGTGGGTCAGGCAATCCGATGCAAACTGACAGGACGCCTTCGCGAGCAGGCTCGCTCCCACAGGGGATTGAGCATGTCTATGACCTTTATGGCCCATCGGAAGACACCACCTATTCAACCTGGACCCGCCGCACCCAAGGCGGCACGGCCAATATCGGTCGCCCACTCAAGCACACCGCCAGCTACCTGTTCGACGCCAACCTGCAACCGGTCCCTCAGGGCGTGTCGGCTGAGCTGTACCTGAGCGGCGCGGGCATCACCCGGGGTTACCTTGGCCGCGCGGCGATGACCGCCGAAAAATACGTGCCCAACCCGTTCTCCACCACCGGCGAACGCCTGTACCGCACCGGCGACCTCTGCCGTTACCGCGCCGACGGCGTGCTCGAATACCAAGGCCGCATCGACCATCAGGTGAAGATCCGCGGGTTCCGTATCGAGCTGGGGGAAATCGAGGCACGACTGCTGCAACAGCCCGAGGTCAAGGAGGTGGCGGTGCTGGCCCAGGAAGGGCCGGGCGGGCAGCAACTCGTCGCCTACGTGGTGGCCTCGCTGGACGCCGACACCCTGCGCGATCCACTCAAAGCCCGCCTCAAGGAACATCTGCCCGACTACATGATCCCGGCGCACTGGCTGTTCCTCGATCACCTGCCGTTGACCCCCAACGGCAAACTCGACCGCAGGGCGTTGCCGGCTGTGGAAACCGGGGCGATGCAAAACGGTTACGCGCCACCCGCAAGCGAACTGGAGCAACAGATCGCCGACGTCTGGCGCGAAGTCCTGGAAGTGGACCAGGTCGGTCGCAACGATCATTTCTTCGAGCGCGGCGGTCACTCATTGCTGGCGACCCAGGCCATCTCTCGGCTGCGCAAACTCACGGGCTATCCGCTGAGCTTGCGTGATCTGTTCGATCATCCACGCCTCAGCGCATTGGCGGCGCTGATGAGCGGGACCGGTGATGCAAGCGTGCGCGCCGGCGACTCCAGCAAGGTCCGGCTCAAGGCCCACGGGCCAAGGCAATCGGCTCCGCTGTCGCTGGTGCAACGGCGGTTGTGGATCGCCGAGCAGCTGTCCGGTGGCACTTCGGCGTATGGCATGCCCATGGCCCTGCGCTTGTGCGGCGAGTTATCGGTCGAACGCCTGATGAGCAGTTTTGCCGAAGTGACGCGCCGTCACGCCGTACTGCGCACCGCGTACGTCCAGGACGACGAAGGCGATCCGCTGGCGCTGATTGCCGACGAAGTCCGGTTGGATTTCCCGCTGGTCGATCTCTGCGATCTATCGCCCGGTGCCCAGCTGGAACAGGTGGCCCAGGCGACGCTGGATAATGCTCGCACGCCGATCGACTTGGAGCAGGCGCCGCTGCTGCGTGGGCGAATCCTGCGCCTGAACCCCACCGAACACGTGTTGTTGTACGCCATGCACCACATCATTTCCGATGGCTGGTCGATGGGGCTGTTGATCAACGAACTGGTGCAGATCTACGAAGCCGCTTCGCGCCATGAACCGATGCCGCTGGCGCCGCTGGAGGTCCAATACCATGACTTCGCCCTCTGGCAACAGGCGTTGGAAGAGCAAGGCGTTCTGGCGCGCCAGGCCGACTATTGGAAGCAACGGCTCGATGGCTACAACGGGCGTCTCGACCTGCCGCTGGACAACCCTCGTGGGCAGACCTCGTCGTATGAGGGCGATGCGTTGCAGTTCGAACTGTCTGCCGACCTCAGCGCGGCATTGCGGCGGCTATCGAGCGAAGCCGGCGTCACGCTGTACAGCACGCTGCTGGCCTCGTTCCAACTGTTGTTGCATCGCCTCTGCGCCGCGCAGGATCTGGTGGTGGGCGCTGACGTGGCGGGGCGCGAGCAACCGGAGCTGGAGCGCTTGATCGGCTTCTTCGTCAACGTATTGCCGCTGCGCTCGCGCTTCGATGCGGGCATGACGTTCACGCGGTTCCTGGCCCAGACCCAGGACGACTTGCTCGGCGCGCTGGAGCATCAGGACTTGCCGTTCGACCAGATCGTCGATGCCTCGGGCGTGCCTCGTCACAAAGGCATGAACCCGTTGCTCCAGGTGCTGTTCGTGATGAACAACGTGCCGGTGCGCACGCGCTCCATGGCGGGCTTGAGCGTGGAGTTCCTGCCAGCGCTGCAGAACCATTCTAAATTCGACATGGCATTGTTCGTTGACGAAGAAGAAGGGCAATTGCGCGGTAATTGGCAGTTCGCCACACGCTTGTTCGGACATGGGCGCGTCCAGTACCTGATCGGGGCCTGGACGACCCTGTTGGAACAGATCGTCGCTGATCAGGATATTCAATTGGGAGCTATCAGCATGCCAGTCGACAACGTGGCGACATCCGCCACGCCTGCCAACGTCCCGGGGCCCAAGGCCGACAAACTGGGCAAGTTCCTCAAGCGATCGGCGACACCGGCCGCGCGGCCGCGTCCGGCGCTGGTGCGTGAATCCCTGGTGGCAGCGCCACAGCGGTTCCCATTGATGCTGGAGCCCGGCGACCCGCACCTCGACGTTATCGAGTGGATCCGGCAAAACCGGCCATTGATCGAGCAGAAGCTGGCCGAACACGCTGGCATCCTCTTCCGTGGTTTCGAGCTGGACGGCATCCAGGGTTTCGAAGCGTTCGCCGAAGCGATTCAACCGGGGTTGTACGGCCAGTACGGCGATTTGCCGAAAAAGGAAGGCGGCAAGAACACCTACCGTTCCACGCCATACCCGGAACGCAAGATGATCCTGTTCCACAACGAGAGCTCCCACCAGGATCGCTGGCCGCGCAAGCAGATGTTCTATTGCGAGCAAGCGGCGCCCGTGGGCGGCGCGACCCCGGTGGTGGACTGCCGCCTGATGTACGAAAAACTGCCGGCGGACCTGCGCGAAAAATTCGAGGACAAGGGGCTGCTCTACGTACGCACCTTCACCGACAAACTCGACGTGTCGTGGCAGCACTTCTTCAAGACCGAGGATCGCCGCGAAGTGGAGGCCCGTTGCCGGGCCGGCGGCATCCAGTGGCGTTGGCTCGATAACGATGAATTGCAAACCCGTACGCCAGGGCCGGCAATCATCACGCACCCGATCACCGGGGAAAAATCTTTCTTCAACCAAGTGCAGTTGCATCACATCCATTGGCTGGAGCCGGACGTGCGCCAGGACCTGTTGTCGATGTACGGCCTGGACCGCATGCCCCGGCATGTCTACTACGGCGACGGCACACCGATCGAAGACGAGGTGATGGCGCGTATCGGTGAGTTGTACGAAGCCTGCGCGGTGCGTTTCGACTGGCGCAAAGGCGATGTGATCCTGCTGGACAACATGCTGGTGGCCCATGCCCGCGACCCGTTCGAAGGGCCACGCAAGATCGTGGTCGCCATGGGTGATATGTACGACCACGCCAGCCTGCAACGGCCCGCGACCGTCGGGCAATCCGCCCGGGGCGTATTCAGTACCGAGGAAACCGGAGCATGA	MDKSVALRVAKRFITLPLDKRRLYLEKMLEEGVSPANLPIPEVRSGFEHIPLSYAQERQWFLWQMEPHSSAYHIPSALRLKGRLDVPALERSFNALVERHESLRTTFSEHGEQAVQVIHRQMPLSIAVEALPAGSPISEDARIKAYVEGETARPFDLRQGPLLRVSLLKVAEDDHVLVLIQHHIIADGWSMRVLVDELVRCYAADTDGQPLVLPELPVQYADYAIWQRHWLEAGERERQLAYWVQTLGDEQPVLELPFDHPRPPVQSLRGARLDLTLAPELAASLKQLAQREGASLFMVLLASFQALLHRYSGQPQIRVGVPTANRNRVETEGLIGFFVNTQVLNAHVDGQQPFDGLLAQVKQAAMAAQAHQDLPFEQLIEALQPERSLSHSPIFQVMFNHQNADAKGRRQTHLPQLRVEDLTWEGRTAQFDLTLGTYETEQGIVAELTYATDLFEPQTIERLAAHWQNLLQGIVDAPRQRVGELPLLDPAQQRFTQQQWLRVADHGAGAVCVHQRIAEQAQQNPDALALTVDGPSLSYRQLDARANQLAHRLIDLGVSPGELVGIAVERSIEMIVGLLAILKAGGAYVPLDPAYPEDRLAYMIEDSGIGLLLTQARLQARLPIPSTLRTLLLDQRDAALQEAPKTCPAVSPTGEHLAYVIYTSGSTGKPKGVMVRHGALSNFITSMIAQPGLAASDRMLSLTTFSFDIFGLEIYGPLCGGASIVLTGQNVHQDPQAVLALVEHHDISVLQATPSSWRMLLDHERASVLAGRTFLCGGEALPQELAQRLLALSPKLWNLYGPTETTIWSAAHPLSPERDRPFLGQPLDNTALYIVGGDLTLNPPGAPGELLIGGAGLARGYFQRPGLTAERFVPDPFSTAGERLYRTGDLTRYRPEGVVEYLGRIDHQVKIRGLRIELGEIEAALLAQDSVRETVVVAHEGPTGAQLVGYVVPASGAVPEPDAPLRVALKAALKAQLPDYMVPAHLLFLARLPLTPNGKIDRKALPAPDASDLQQAYVAPRSEVEQQVAAIWQDVLKLERAGLEDNFFELGGHSLLVTQVVSRIRRVLGIEVPLRSLFEHSTLQAFVAAFEATPGEQAPAMVPVPRDAPLPLSFAQERQWFLWKMDPDSAAYNIPTALRMRGTLDKDALRESFAALVARHESLRTVFAEEDGRTCQVIREQGEVDFVEQRLEEDEIQAFVEQQTQRPFDLLTDSLLRVALLEVDEQDHILVLTLHHIVSDGWSLQVMVDDLMSLYSAFVQGQQAHLPPLAMQYADYAVWQRQWMAAGERDRQLAYWSGQLGGEQPLLELPTDRPRPAQQSLRGARLPIRLDAALSANLKALARRENVTLFVLLLGSFQALLHRYSGQADIRVGVPIANRQRLETERLIGFFVNTQVLRSEFHNGLTGAALLQQLKQTALAAQMHQDMPFEQLVDALQPQRNLSHSPLFQAMFNHRNETDSAFANALPDLCVEPLGWTQRTAQFDLSLDTVEGPQGLHAALTYATDLFEPATIERMARHWLNLLHELVQDLHRPVVQWALLDEDERRHMLSDWNATAQHYPLDRSVQSLIEEQVRRTPDAPALVFGEQRLSYRELNARANRLAHRLIDQGVGPDVLVGIAVERSVEMVLGLLAILKAGGAYVPLDPEYPRDRLAYMFEDSGIGLLLTQQHLLDALPIPDGLRSLVLDSPDDGLYASRDGNPDIEVHGENLAYVIYTSGSTGKPKGAGNRHSALVNRLCWMQQAYGLDASDSVLQKTPFSFDVSVWEFFWPLLTGSTLVVAAPGAHRDPAQLIDLITAHGITTLHFVPSMLQAFMQDPRVAECSGLKRIVCSGEALPVDAQQQVFAKLPNANLYNLYGPTEAAIDVTHWTCVEEGRDSVPIGQPIANLGTYILDDELSPVPVGVTGELYLAGEGLARGYHRRAALTAERFVTGPFGHGQRLYRTGDLARYRPDGVIEYAGRIDHQVKIRGLRIELGEIEARLAEHDAVRETVVLAQDGTLLVAYLVPARAELLAADGAVRQALQARLREHLSQSLPDYMVPQHWVWLEKMPVSPNGKLERKALPKAEPSAHPQAYIAAMTAQQQTLVDIWQSVLGRERVGVTDNFFELGGDSIISIQVVSRARQAGLHLSPKDLFLHQTIQGLAGVATTGDGGPVIDQGPVTGEALLLPFQQLFFEQAMAEPHHWNQSVLLKGVRPVHAGHLEQALQAVVEHHDALRLAFTHEDGAWIARHNTLADQRALWQRSPLLWAAEVPDAPALERLAEHAQRSLELGSGALLRGVLATLADGSQRLLLVIHHLVVDGVSWRVLLEDLQQAYDQLQAGQMPTLPAKTTSAQTWAQRLQAHASSAALQGQVAYWQAQLDGARPDLPCDYPHGDLRRCHGTQVQTRLDKALTRRLLQQAPAAYRTQVNDLLLTALARVIGRWTSQASTLIQLEGHGREALFDDVDLSRSVGWLTSLFPVRLTPTATAEGSIKAIKEQLRAIPDKGLGFGVLRYLGDEPTRRALAALPVPRITFNYLGQFDSGFNEAANGLFVPASESAGAAQSPLAPLDNWLTLNGSVYAGELSIDWSFSTQMFDEATIQALAEDYARELRALIDHCCQTERHGFTPSDFPLAGLNQAQLDALPLVAREVEDLYPLSPMQQGMLFHTLYEQQAGHYINQMRVEVQGLDVERFRLAWQAATDTHDVLRSGFVWDGDFKHALQVVYKRVDVVLQLEDGRANADLAHCLENLATAQRQQGFALDAAPLLRLVVVRVADDRYHLIYTCHHILMDGWSNSQLLGEVLQRYSGQSVAVSGGRYRDYIAWLQCQDAAVSEAFWKPLLQRLEAPTRLADAVAKPTDAGVGYGDHVQVLDEALTRRLEAFARASKVTVNTLVQAAWLLLLQRYTGRETVAFGATVAGRPADLPGIEQQIGLFINTLPVIASPRAEQSLDSWLQAVQAQNLALREFEHTALLDIQRWAGQGGDALFDSLLVFENYPIAEALEQGAPDGLRFGSPITQEQTNYPLTLLVGLERQLSVHMSYQRASFSAVTVERLAGHLAQLLGQMTANGERPLGELSMLEFDEHQRLIHDWNPVDAPFEQDLCIHQLIARQAENTPDALAVTFNDIRLSYSELDGRANRLAHKLIELGVGPEVRVGVAMPRSEQLLIALLAVLKAGGAYVPLDPDYPAERVAYMLDDSRAKVLLTEQAVALTAPTGTRVLILDQLDLSRYPLSAPVTHVSADNLAYVIYTSGSTGKPKGVAIAHRNVLALIDWSKTVYSRDDIQGVLASTSVCFDLSVWELFVTLANGGSLIIARNALELPHLPARDQVRLINTVPSAIAALQRSGDIPQSVRIINLAGEPLKQSLVDALYPTPLTCGSEPARESGGSGNPMQTDRTPSRAGSLPQGIEHVYDLYGPSEDTTYSTWTRRTQGGTANIGRPLKHTASYLFDANLQPVPQGVSAELYLSGAGITRGYLGRAAMTAEKYVPNPFSTTGERLYRTGDLCRYRADGVLEYQGRIDHQVKIRGFRIELGEIEARLLQQPEVKEVAVLAQEGPGGQQLVAYVVASLDADTLRDPLKARLKEHLPDYMIPAHWLFLDHLPLTPNGKLDRRALPAVETGAMQNGYAPPASELEQQIADVWREVLEVDQVGRNDHFFERGGHSLLATQAISRLRKLTGYPLSLRDLFDHPRLSALAALMSGTGDASVRAGDSSKVRLKAHGPRQSAPLSLVQRRLWIAEQLSGGTSAYGMPMALRLCGELSVERLMSSFAEVTRRHAVLRTAYVQDDEGDPLALIADEVRLDFPLVDLCDLSPGAQLEQVAQATLDNARTPIDLEQAPLLRGRILRLNPTEHVLLYAMHHIISDGWSMGLLINELVQIYEAASRHEPMPLAPLEVQYHDFALWQQALEEQGVLARQADYWKQRLDGYNGRLDLPLDNPRGQTSSYEGDALQFELSADLSAALRRLSSEAGVTLYSTLLASFQLLLHRLCAAQDLVVGADVAGREQPELERLIGFFVNVLPLRSRFDAGMTFTRFLAQTQDDLLGALEHQDLPFDQIVDASGVPRHKGMNPLLQVLFVMNNVPVRTRSMAGLSVEFLPALQNHSKFDMALFVDEEEGQLRGNWQFATRLFGHGRVQYLIGAWTTLLEQIVADQDIQLGAISMPVDNVATSATPANVPGPKADKLGKFLKRSATPAARPRPALVRESLVAAPQRFPLMLEPGDPHLDVIEWIRQNRPLIEQKLAEHAGILFRGFELDGIQGFEAFAEAIQPGLYGQYGDLPKKEGGKNTYRSTPYPERKMILFHNESSHQDRWPRKQMFYCEQAAPVGGATPVVDCRLMYEKLPADLREKFEDKGLLYVRTFTDKLDVSWQHFFKTEDRREVEARCRAGGIQWRWLDNDELQTRTPGPAIITHPITGEKSFFNQVQLHHIHWLEPDVRQDLLSMYGLDRMPRHVYYGDGTPIEDEVMARIGELYEACAVRFDWRKGDVILLDNMLVAHARDPFEGPRKIVVAMGDMYDHASLQRPATVGQSARGVFSTEETGA				NA	NA	NA	NA	NA
D1-36_01703	3213	lgrD_3		Linear gramicidin synthase subunit D	ATGAACGAGGTGATGATGGACGTGCAGGACGCGGGTTTCGCCCTGGCGCCCGAGCAGCAACGGGTCCTTGAGCAATTGTCGGGCACGGTGACCACTGGCGAGGCCTTGCGTTGGGTAAGCGTGGCTATCGACGGCGACCTTGACCCGCAGCGATTGCAGGACGCTTTCGACAGGGTGGCGACGCAGCAGCCGATGCTGCTGGCGCGGTTTGTCAAGGTCGCAGGTTTCCACGGCTTGCGTCAGGTTGCCCAGGCCGGGCGCTTCCCGCTGACGATAAACGCAAGCGAACAGCCCGTTGAAGAGGTCCAGGCACAGTTCAACGAAACCCTCGGCCGGGCGTTCGTGGTCGGCGAATCGGCTGGCGTCCAGGCGGTGCTTTATCGTTTGGCGCCACGGCAATGGCAATTGCTGCTGGGCATCGCCCGCTACAGTGCCGATGCGCCATCGATGAACCTGCTGCTTGGACAGGTACGGCAAGCGTATGCGGGCCAGTGCTCGGAAGACGAAGCGCCGGGAGAGTTCGCCCAGTACCTGGAATGGCGCAGCGAAGTGGTCCTGGATGAAGATGCCGCCACCGCGCGAACCTATTGGCAGCAACATCTGCAAGGTTTGCAGGCGCAGATCGACACGCCATGGCTGGCGGCACGCCGCGCCGGCAGCGGGACCGCCGATGCCCGTGTTTCATTGGAGCTGGAACCGGTCCGGCGCGATGCTTTGCAGCGCTTGGCCGATGAGCTCGGGCAACCGTTGGAGACGTTATTGCAGGGCGCATGGTGGGTGCTGCTGGGACGCCTGAGCGGTTCCGATCAGGCACTGGTGGGCGTGCGTCACGACAGCCGCAGCGATTACGACTACTTCGCCAGCGCCATTGGCGTGTTCGAGAAGACCCTGCCGCTTTGCGTGCAGTTGCCCCCCAACGCGCCGTTCAGTGAGTGGCTGGTGCAGTTGGCGGCGGGCCTTGAGGCGCATCGCACCTGGCAGGAATATTGGGTGCCGGAACTGGCACCTTACGCGGCGTATCCGGCCTATGGCTTTGCGATCGGTCGAGCAAGTTTCGTCCACAGCGACGCCGGTTTGAAGTGGAAGGAGTCTTTGCCTGTCCGGACCGATCCGCTTGAGCTACTGCTGCAGGTTCGATTGGAGGATGCCCAGCAGCTTGCCGCGATCGACCTGCAATACGCCGACGCTCGTTATTCGAAAGCCACCGCCAGCACCGTGTTGGAACAATACGACGTGCTGCTGGCCTCTATTCTGGCGGATGCGCAAACGCCGCTGGCGCAGCTCAACCTGCTGGGCCACAGCGAGGAACAGCGCTTGCGCGCGATCAACCCGCCGATGCAAGTATTGGGCGATAACCGCTATCTGCCGCAACGCATCGCGGACCTGGCGCTACGGACGCCGGAGGCCATCGCGCTGACCGACGCCCACCAGTCCTTGAGCTACGGCCAGTTGAATGAGCAGGTCGAACGCGTGGCCCTCGGCCTCCAAGAGCAAGGCCTGGGTAAGGGCTCGATCGTCGCCCTGGCCTTGCCGCGCTCGGCGGATCTGGTGATCGCGATGCTGGCGGCATGGCGCATCGGTGCGGCCTATCTGCCGCTGGATATCCAATGGCCTCAGGCCCGTCAGGCGTTGATGTTGGAGCAGGCGGGCGCCGAAGTGGTGGTCACCGATGCGGCGCACCTGCCGGCGTGGCAGGACCCGCCATGTAACGTGCTGACGTTGGCCGGGCTGAGTCCGTCGAGCGAGCCCTTGCCGGCGCTGGCGACCAAGGGCAACGACACCGCCTATGTGTTGTTTACGTCCGGCTCCACCGGTGTGCCCAAAGGCGTGGTGATCGAACATCGGCAATTGCTCAACTACACCGCCCAGGCCAGCCAGGCGTTGGCGCTGGATCAGTGCACACATGTCGCCTTCAGCTCCACCGTGGCGGCGGACCTGGGCAACACGGCGCTGTTTGGCGCGCTGTTCAATGGCGCGACGCTGCACGTTGCCAATGACGAGCAGATGCAGGACGGCGCGTTGTTTGCCGCGTTCATGCGGCGGCAACAGATCGATTGCCTGAAAATCGTGCCATCGCACCTCGCGGCATTGCTCGACAGCGAGCAGGCGACATTGCCGCGTACCCTGGTGCTCGGCGGTGAGCCGATTGCGCCGACATTGATCGAGCGCATCGCTCGGTTTCGTAGCGATTGCCGAGTGTTCAACCACTACGGGCCGACGGAAGCCACGGTCGGGGTGATGATCCATCCGGTGTCGCTGGAGGGTGCCGCTGAGGATTGTTCGGCGCTGACCCAGGTGCTGGGCAACAATCAGGTTTATATCCTGGATGCTGATTTACGCCTGGCACCGGTGGGCGTGCCGGGTGAGTTGTACTTGGGCGGGGCGCAACTGTGCCGGGGTTATCTGAACGCCGGGGCCGATGGACAGACGTTCATCCAGAGCCCGTTCGATGCGGCGCAGCGCCTCTACCGCACGGGTGACCTGGCGCGTTATCGCCCGGACGGCGGCATTCAACTGCAGGGGCGGCGCGATCAGCAGGTCAAGGTGCGGGGCTTCCGTATCGAACTGGCGGAAATCGAAGCCCAGCTGCTGCGCCTGCCACAAGTAACCGAGGCGCTGGTGGTGCCAGCCACCTCGGCCGAGCAAGGTTTGCTGGCATTTATCGTGGCAGCGCAAGGCTTGCCTACGGATGTGCTGGACACCGTGCGCGCCGAGCTGAGCGCACGCTTGCCCGGCGTGATGGTGCCGCAGCATTGGCACCTGATCGAACGCTTTCCACGGCTGGCCAACGGTAAGATCGATCGCCAGGCGTTGCAGCACTTGGCCGTCGCGACGAGCGATGAAGAGGGCGTCGCACCCCGTGATGGACTCGAACAATTGCTCGCTGCGCGCATGGCCCAATTGCTTGGGCTCGAACGGTTGGGCATCGATCGCGACTTCTTCGCGGCCGGCGGTCACTCGCTGCTGGTGATCAAGTTGGTGGCCGGCATTCGCAAGCTGTTGCAGTGCGACATCCATCCGGGACTGGTCTTCGATCATCCGACCGTGGCGTCGCTGGCGACGGCCTTGCGGGCGGAGGAGAACAGCCCGGGACAACTGGAGAAAATCGCCCAGGCCCGCCTGCGCTTGGAGGCGATGAGTCCCGAAGAAAAGGCTCGACTGACCGAACAGGCTCGGCAACAGCAGGCGGCCAAAGCGGCGCAGGGTCGTTGA	MNEVMMDVQDAGFALAPEQQRVLEQLSGTVTTGEALRWVSVAIDGDLDPQRLQDAFDRVATQQPMLLARFVKVAGFHGLRQVAQAGRFPLTINASEQPVEEVQAQFNETLGRAFVVGESAGVQAVLYRLAPRQWQLLLGIARYSADAPSMNLLLGQVRQAYAGQCSEDEAPGEFAQYLEWRSEVVLDEDAATARTYWQQHLQGLQAQIDTPWLAARRAGSGTADARVSLELEPVRRDALQRLADELGQPLETLLQGAWWVLLGRLSGSDQALVGVRHDSRSDYDYFASAIGVFEKTLPLCVQLPPNAPFSEWLVQLAAGLEAHRTWQEYWVPELAPYAAYPAYGFAIGRASFVHSDAGLKWKESLPVRTDPLELLLQVRLEDAQQLAAIDLQYADARYSKATASTVLEQYDVLLASILADAQTPLAQLNLLGHSEEQRLRAINPPMQVLGDNRYLPQRIADLALRTPEAIALTDAHQSLSYGQLNEQVERVALGLQEQGLGKGSIVALALPRSADLVIAMLAAWRIGAAYLPLDIQWPQARQALMLEQAGAEVVVTDAAHLPAWQDPPCNVLTLAGLSPSSEPLPALATKGNDTAYVLFTSGSTGVPKGVVIEHRQLLNYTAQASQALALDQCTHVAFSSTVAADLGNTALFGALFNGATLHVANDEQMQDGALFAAFMRRQQIDCLKIVPSHLAALLDSEQATLPRTLVLGGEPIAPTLIERIARFRSDCRVFNHYGPTEATVGVMIHPVSLEGAAEDCSALTQVLGNNQVYILDADLRLAPVGVPGELYLGGAQLCRGYLNAGADGQTFIQSPFDAAQRLYRTGDLARYRPDGGIQLQGRRDQQVKVRGFRIELAEIEAQLLRLPQVTEALVVPATSAEQGLLAFIVAAQGLPTDVLDTVRAELSARLPGVMVPQHWHLIERFPRLANGKIDRQALQHLAVATSDEEGVAPRDGLEQLLAARMAQLLGLERLGIDRDFFAAGGHSLLVIKLVAGIRKLLQCDIHPGLVFDHPTVASLATALRAEENSPGQLEKIAQARLRLEAMSPEEKARLTEQARQQQAAKAAQGR				NA	NA	NA	NA	NA
D1-36_01704	258			hypothetical protein	ATGGGGCCGAAGGGCCTGCCGTTCGCCAGCGCGGATTACCTGCTGACCGACCCCTCCCCGGGCACGGTCATCCGGCTGTACGACAGCGACATGTTTTCTGGACACAACCGGCGCCTGGGCTGCCTTGCCCGAGCCGATTCGCCCGCATTCCTTAGTAAGACGAAGCACCTTGGAAAAACCGGAATGAGTTTATTTATCATTTGCACGAAAGTTACAAAAAAGGCCGACGCGTGCTGGCGTCGGCCTTTTGTTGGTTGA	MGPKGLPFASADYLLTDPSPGTVIRLYDSDMFSGHNRRLGCLARADSPAFLSKTKHLGKTGMSLFIICTKVTKKADACWRRPFVG				NA	NA	NA	NA	NA
D1-36_01705	2472	fpvA	COG4773	Ferripyoverdine receptor	ATGTCGGCAATTCATGAGTTGAAACCGCTGTTCAAGGCACTTGTCATGTCCCGCGGCCTGCGTTCGCGGCGGGTGTTGACGGGCTTGGGTCTGGTCTGTGTGTTGCCGTTGAGCACCCAGGTGATGGCCGAAGACGTCAGTGTCAACATCCCAGCGCAACCGCTGCCGCAGGCGCTGCAAGCGTTCGGCCAGCAAACCAACCAACAAATGATCTACAACGTCGACGAGTTGGCCGGCCTGAAAAGCAACCGGGTCAGCGGCAAGATGAGCCCGCAGGCGGCCATCACCGAGTTGCTCAAGGGCACCGGCGTGCGCTACAGCCTCGAGGGCAACACCCTGATATTGGTGAAGGGCTCCCCCGCGGGCCTGGAACTGGGCGCAACGACCATCAACGCCGAACAGTTGGCTGCAACGACCGAAGGCAGCAACTCGTACACCAGCAACGCCGTAACGATCGGCAAGGGCACCCACACCCTCAAGGAAATTCCCCAGTCGGTTACCGTGATGACGCGCAAGCAGATGGATGACCAGAACCTGGTCAACCTCAAGGACGCTGTCAACCAGACCACCGGCATCGTTGGCCTCCAGGGCGTGGGGCAGGGCATGATCCTGTCGTCGCGCGGTTTCCAGATCGACGATTGGCAGTACGACGGTGTGCCGATCCCGCGTAATACCTACTCGCTGGGCAACTGGGCGACCCAGGACCTGATTTTCTACGACCGCCTGGAGATCCTTCGTGGCGCGTCCGGCTTGCTGCAAGGTACCGGCAGCCCCGGCGGCGCTGTCAACCTGGTGCGCAAGCGTGGCCAGAGCACACCGACCGTGACCCTGAGGGGCAAGGCCGGTTCCTGGGACCACTACGGCTTGCAGCTGGACGCTGGCGGTCCGCTGAACGACGCTGGCAACATCCGCGGCCGTATAGTTGCCGACGAAGACCAGAGCAACTCATTCATCGACCACGCGTGGACCAAAACCCACTCGCTGTACGGCTCGTTGGACATCGACTTGAGCGAAGACACCACCTTGGGCTTGGCGGTCAGCCAATCCAATGGCGAATCGCGCGGCAACATCCGTGGTCTGCCGCGCTACGCCGATGGCTCGATGCCGGACGTGTCGCGCTCCACCTACACCGGCGCGCGCTGGAACCGTTCGGAAATCGATGTCACCACCTACTATGCCGATCTGGAGCATCGCTTCAATGAGGATTGGGCGTTCAAGGTGGGGGGCGTGTATATGACCGAGGATAACCAGGCGAAGAACCAGCGCGTCCAAAGAGTCGGTGGTCTCTTGCCCGATGGCAGTGGCGTGCAATATGCCGACTTCCTGACCGACTTCCAGTCTACCAAGGCCGGTCTCGACATGAACCTGACCGGCAAGTTCGAAGCCTTGTCGATGGAACAGGAGGTCATGCTGGGTGGCAACTTCTCCCAATTGGAGACGGATGATAAATATGCCCGTACCTTCAACAGCACCAGCGACTCGATCTTCGACCTTGACAATGACCGCCCGGACATCAGCTACGACAGTTTGATCGCTGCGGGTGGCATGGGCGTCCTCAGCAAGTACGACGTGCGCCAGAAAGGCATATACGGCACCTGGCGCGTCAAGCCGGTGGATGACCTGACACTGATCCTGGGTTCCCGGGTCAGCTGGTACGACTTCAGTTACAAGTCGAAAAATGAACTCGCAGCCGGAATTACACGCAACACGCCAAGCTACTCAACCGAAACCGGCGTGGTCACGCCCTATGCCGGTGTCGTCTATGACCTGAGCCGTGAGTGGGCGGTTTACGCCAGCTATACCGACGTGTTCCAACCGCAGACCAACGTCGATCCCAGTGGTTCGGTACTCAAGCCCATTGTTGGCAAAAACTACGAAGTCGGCCTCAAGGGCGAGTTGATGGATGGACGGGTCAATACCTCCTTGGCTGTGTTCCGCTACGACCACGAAAACCGCGCCGTCAACATCCCTAGCTGCACTGGGGTGAACTGCTCTTCTGCCTCCGGGAAAGTGCGCAGCCAAGGCATCGAGGCCGAAATCAGCGGTGAAGTGGTAGAAAACTTGCAGTTGTTCGCGGGCTACACCTATAACACCACCAAGTACCTGGAAGACACGGGCGGTATCGACAGTAAGGAAGGCAAGGTTTTCAGCACCTGGACGCCAAAACACATGTTGCGCGTGTGGGGCAACTACCAGTTCACCGGCGATTGGAGCCGTGTCAGCACCGGCCTGGGCTTCACCACCCAAAGCCACACGCTGGTTTACGACTATGACCGTGAAATCCCGGGCTACACCGTATGGAACGCCCGTGTCGGCTACAAGTTGACGTCTGAGATCGATCTGGCGGTCAACGCCAACAACCTGTTCGACAAGACCTACATAACGCCGGCTTACAACCAACTCAATGGCAACAACAACTTTGGCGATCCGCGTAATTTGATGTTCACAGTGAAGTACACGCCGCAGTTCTGA	MSAIHELKPLFKALVMSRGLRSRRVLTGLGLVCVLPLSTQVMAEDVSVNIPAQPLPQALQAFGQQTNQQMIYNVDELAGLKSNRVSGKMSPQAAITELLKGTGVRYSLEGNTLILVKGSPAGLELGATTINAEQLAATTEGSNSYTSNAVTIGKGTHTLKEIPQSVTVMTRKQMDDQNLVNLKDAVNQTTGIVGLQGVGQGMILSSRGFQIDDWQYDGVPIPRNTYSLGNWATQDLIFYDRLEILRGASGLLQGTGSPGGAVNLVRKRGQSTPTVTLRGKAGSWDHYGLQLDAGGPLNDAGNIRGRIVADEDQSNSFIDHAWTKTHSLYGSLDIDLSEDTTLGLAVSQSNGESRGNIRGLPRYADGSMPDVSRSTYTGARWNRSEIDVTTYYADLEHRFNEDWAFKVGGVYMTEDNQAKNQRVQRVGGLLPDGSGVQYADFLTDFQSTKAGLDMNLTGKFEALSMEQEVMLGGNFSQLETDDKYARTFNSTSDSIFDLDNDRPDISYDSLIAAGGMGVLSKYDVRQKGIYGTWRVKPVDDLTLILGSRVSWYDFSYKSKNELAAGITRNTPSYSTETGVVTPYAGVVYDLSREWAVYASYTDVFQPQTNVDPSGSVLKPIVGKNYEVGLKGELMDGRVNTSLAVFRYDHENRAVNIPSCTGVNCSSASGKVRSQGIEAEISGEVVENLQLFAGYTYNTTKYLEDTGGIDSKEGKVFSTWTPKHMLRVWGNYQFTGDWSRVSTGLGFTTQSHTLVYDYDREIPGYTVWNARVGYKLTSEIDLAVNANNLFDKTYITPAYNQLNGNNNFGDPRNLMFTVKYTPQF	PGPT0003775_246	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-IRON_COMPLEX_RECEPTOR,PGPT0003775-fptA|fhuE|fpvA|C_FEV_OM1|fauA-K16088	NA	NA
D1-36_01707	372			hypothetical protein	ATGGTCAAGAACACCCCCAACCCTCCAAAAAAAGCCAAAGATCTCTCCGCCTACACCAGCCTCGACTCAGCAGAGCGTCGCGAAGCGGCGGATCGAGCACTAGACATCCACTTATCGCCCAACAAGCCAGCCAAGCCCGACACCCAGGACGGCCAGATCTTTACCGTGGTCAAAGGGCTCAACACCGAATCCATACTGACCACCCTCAGCGAGACCCTGGCTTGCGCTAATGCCATGGCCAACGACCTGGCCTTCGACCTGGAAGGCTCGCGGCGGCATGTGGCGTTGGGGCTCCAGCAATTGATCGAGCTAGGAACGCTACTGGCCAATCGGGCACTGGATGACATCGAGCTGCCCCAGCCTCCACGCTAG	MVKNTPNPPKKAKDLSAYTSLDSAERREAADRALDIHLSPNKPAKPDTQDGQIFTVVKGLNTESILTTLSETLACANAMANDLAFDLEGSRRHVALGLQQLIELGTLLANRALDDIELPQPPR				NA	NA	NA	NA	NA
D1-36_01708	4155	dhbF	COG1020	Dimodular nonribosomal peptide synthase	ATGCTGTTTTACCGCGAGAACACCATGAACGAACTGCTAGATGATGATCTGTTGGCGCTGTTGCTCGATGAGGTCGCCGATGACAGGCACGCCCTGGCCAGCCGCGGCAGGCTGGATCGCGCGCCCCTGTCTTTCGCCCAGCAACGCTTGTGGCTGGAGCAGCAGCGGGACCCGACCCGTTCGGCCTACAACCTGCCACGGGCCTTGCGCCTGAGCGGCGAACTGAACGCCGATGCCTTGGAAGACGCCCTGAACCGCGTCATTGACCGACACGACATCCTGCGCACCGCGTTCATTGAAATCGACGGCGCCGCCACTCAGGTAATCGAGCGCAGCGCCTGCCTGACCCTGCATCGCGAAGACCTTGCCGGGCTCGACCAGCCGGCACTTTCGCAGCGCATCGAGCAACACGCCCGGCAACCGTTCGATCTCACCCAGGCGCCGCTGATACGGGCCACGTTGCTGAGATTGAGCCGTACCGAACATGTGCTGCTGCTCAACATGCATCACATCGTTTCCGATGCGTGGTCCAATACCATCCTCATGCAGGACATGACCCAGGCGTACGGCCGGGCGGTGCTGGGTGATCCGTCTGCGCTGCCACCGTTACCGATGCAATACGCCGATTACGCGATCCACCAGCGCGGCGACTATCTGCAAAGCGCTGCCCGCCTGCGCAGTGGCGAATACTGGAGCGAGTACCTGGGCCGCGACTTGCCCACCCTGGAGTTGCCCCAGGACTTTCCACGCAACACAAGCCAACAACACAGGGCCGGTCGCGTGCACGTATCGCTGGCGCCGTCGTTGGCGCGAGCACTGGACGCTTTTTGCCAACGCCAGGGGCTCACGCCGTTCGTGGTGGCGCTGGGTGCGTGGCAATTGCTGCTGGCCCGCTACAGCCGCCAGGACGATTTTGCCGTCGGTGTCCCCAACGCCAATCGCAACAGCCATGAAAGCCAGGCGTTGGTGGGATTTTTCGTCAGCAGCCAGGTGTACCGGGCGCGGATCGACTCGAGCCGCAGCGCATTGGATTACCTACGAGCGCTGCGCGGCCAATCCCTCGCCGCGCTGGAGCATGCCGATTACCCGCTCGAACTGATCCAGGATCAATTGGGCGCCAACCCGTTGTTCAAGGTCCTGTTCAACTGGCGCACCGGGTCACAGACGGCATCGCTGCCAAGCCTGGATCTACTGACGCTGGAGTTCCTCGACACCGGTGAAGGCCAGGCCAAGTTCGATGTGTCACTGGATGTCGACTATTCACAGCAGCAGATACTCGCGACGTTCGAGTACAGCCGTGACCTGTACCGCGCGGACACCATCGAGCGCATGGCCGAGCATTGGCAGAACCTGTTGCGGGGGCTGATCGAGACGCCCGAACGCGCCCTCGGCGAATTGCAATTATTGAGCGCCGAAGAACGGCGGCTGACCCTGGACGACTGGAACCGCCAACCCACCCGGCTGCATAGCGAAGAATGCCTGCATCGCATGATCGAAACCCATGCCGCCAACACAGGTGAGGCGATAGCGCTAACGTTCGACGGGCAGCAAATGAGCTATGCCGAGCTTAACCGCCACGCTAACCGATTGGCCCATCGATTGATCGAGCAAGGCGTCGGCCCCGATGTGCTGGTGGGCATCGCCGTCGAGCGGACACCGCAAATGATCATCGGCCTGCTGGCGATTCTCAAGGCCGGTGGCGCCTACGTGCCGCTGGACCCGGCCTACCCGGCCGACCGACTGACCTACATGATCCAGGACAGCGGCGTCAGGCAGATCCTGACTCAGGCCCATCTGCTTGAATCGCTGGCGTTGCCGGCCGACATCGACTGCCTGCTGTTGGATACGAGCGATGCCGACAACGCCTGGCCTGAGCACAATCCCGATGTGCCAATGGATCCGGACAACCTGGCGTACGTGATCTACACCTCCGGTTCGACCGGCAAGCCCAAAGGCGCGCTGCTCGCGCACCACAACGTCAACCGCCTGTTCCAGGCCACTGAACAGTGGTTCGGTTTCGACCACCGGGACGTATGGTGCCTGTTTCATTCCTATGCCTTCGATTTTTCCGTGTGGGAGATTTTTGGCGCGCTGCTGCACGGGGGGCGGCTGGTCATCGTGTCCCACGCCGTGAGCCGGTCGCCTGAGGATTTTTACGCCCTGCTCTGCCAGGAAAAAGTCACGGTGCTCAACCAGACGCCTTCGGCGTTCAAGTCGTTGCTGCGAGTTGCATGTGAGCCTGGACAGCCCCTCAGCCACCGGTTGCGGCAGGTGATTTTCGGCGGCGAAGCAGTTGATGTGCACAGTCTGCGCCCTTGGTTCGAACGTTTCGGCGATCAGGCGCCACAATTGATCAACATGTATGGCATCACCGAAACCACCGTTCATGTCACCTGGCGACCACTGTCGATGGCGGACTTGCACGGCGAGGCCGCGAGCCCCATCGGCGAGCCCATCGTCGACCTGTCCTGGTATCTGCTCGATGCGCACCTGAACCCGGTGCCGAGGGGGTGCAGCGGTGAGCTGTATATTGGGCGCGCCGGACTGGCCCGTGGTTATCACCAGCGTGCCGACCTCACCGCCAGCCGTTTCATTCCCGACCCGTTCGACCCCTCGCCAGGTGGACGCCTGTACCGCACCGGGGATCTGGCCCGCTACCTCAGCGACGGCAGTATTGAATACATCGGGCGCCTGGATCACCAGGTCAAGATCCGCGGCTTCCGCATTGAACTGGGCGAGATCCAGGCGCGCCTGCAAGTATTGCCGGGCGTGCGCGAGGGCGTGGTGCTGACCCACGACGGCCCGGGCGGCCTGCAACTGATCGCCTACGTCATCCCGACACAACCGGCCACGGCCGAACTGCGCGATAGCCTGCTGATCGCGCTCAAGGCGCATCTGCCGGATTACATGGCGCCCAGCCATCTGTTGTTCATCGATCATCTGCCGCTCAACGCCAACGGCAAGCTCGACCGCAAGGCCTTGCCCGAACCCGACGCCACGCTTCGGCATTCGAACCACGTGGCGCCCCGCACGCAGATGGAGCAAGCGTTGGCGCAACTCTGGCAGCAGTCCCTCAAAGCCGAGCGCGTGGGTATCAGCGACAGTTTCTTTGAACTGGGCGGGCATTCGATCCTGGCGATCGAGCTGATCGCCAAGCTCAAGGCGAACCTGAACATCACCGTGCGTCTTCAAGAGTTGCTGGCCAACCCGACCATCGCCGAGTTGGCCCTGTTCATCTCACAGAAACACCGTGAACAGACGCAATGCCTCGTTGCCCTGAATAACGCGCCCGCCAGCGCACCGCAGCTGTTTTGCCTGCACCCCAGCGGCGGCATCGTGTTCTGCTACCAACCGCTGGCGCGCAAACTGCAAAACCGGGCGCGCACTGTCGGCATCATGCACCGCGGCTTCAGCGAACCCCATGCACGCCCCGAGGCCTGGCAGGAGATGATTGCCGACTACAGCAAGGAAATCGTCAGGGCCCAACCTGAAGGTCCGTATTACTTGATGGGCTGGTCCCTCGGCGGGGCGATCGCCTTCGACATCGCGGCGGTGCTGGAAAGCCAGGGGCACACGGTTGATTTCCTCGGGTTGGTGGACAGCACGATTCCAGAACACCTGTATCCCTCAGAGCTGCCGCGCCATCGGCATCTGGCGGGTTACGAAAAAGACGATGCGGCCTCCCAGGATCTACTTGAAGCAATTGAATACTTCGACTTGCTGTTTCCTTCGCTGACGGAGCGCACGGCGGCTTATCGACGGGAGCGACCGGACAGTTCGGTCAAGGCGTTCCATGAGTGGGCAGCCGGACAGATCGAGCCTGAGCGAGGCGACCTGTTGTCGATCGTGCAGAGCGTCAAGGAAGAGGTCATGAATGCCCAGGCGTTCTCGGTGCATGATCGGTTGCTGGAGGCATTTGCGGGATTTACTTTCAAGCCTGTGAGGGTTCGACCGAGCTGCTGGTGGACACAGGCGGAGAAAACCCCGCAAGAGCTGGCCTTTTGCGAGGCACTGGTTCGAGAGCATAGCTTGACGGGGACGTTGCGGTGTTCGGTGCAGTCTCCGCTGGGTCATCGCAGCATGATTTTTGATGAGGGGTTGCTTGGGGAGCTGGTCGAGGTTTTTCTGGCCAGTACGGTAGAGAAGCTTTCTTGA	MLFYRENTMNELLDDDLLALLLDEVADDRHALASRGRLDRAPLSFAQQRLWLEQQRDPTRSAYNLPRALRLSGELNADALEDALNRVIDRHDILRTAFIEIDGAATQVIERSACLTLHREDLAGLDQPALSQRIEQHARQPFDLTQAPLIRATLLRLSRTEHVLLLNMHHIVSDAWSNTILMQDMTQAYGRAVLGDPSALPPLPMQYADYAIHQRGDYLQSAARLRSGEYWSEYLGRDLPTLELPQDFPRNTSQQHRAGRVHVSLAPSLARALDAFCQRQGLTPFVVALGAWQLLLARYSRQDDFAVGVPNANRNSHESQALVGFFVSSQVYRARIDSSRSALDYLRALRGQSLAALEHADYPLELIQDQLGANPLFKVLFNWRTGSQTASLPSLDLLTLEFLDTGEGQAKFDVSLDVDYSQQQILATFEYSRDLYRADTIERMAEHWQNLLRGLIETPERALGELQLLSAEERRLTLDDWNRQPTRLHSEECLHRMIETHAANTGEAIALTFDGQQMSYAELNRHANRLAHRLIEQGVGPDVLVGIAVERTPQMIIGLLAILKAGGAYVPLDPAYPADRLTYMIQDSGVRQILTQAHLLESLALPADIDCLLLDTSDADNAWPEHNPDVPMDPDNLAYVIYTSGSTGKPKGALLAHHNVNRLFQATEQWFGFDHRDVWCLFHSYAFDFSVWEIFGALLHGGRLVIVSHAVSRSPEDFYALLCQEKVTVLNQTPSAFKSLLRVACEPGQPLSHRLRQVIFGGEAVDVHSLRPWFERFGDQAPQLINMYGITETTVHVTWRPLSMADLHGEAASPIGEPIVDLSWYLLDAHLNPVPRGCSGELYIGRAGLARGYHQRADLTASRFIPDPFDPSPGGRLYRTGDLARYLSDGSIEYIGRLDHQVKIRGFRIELGEIQARLQVLPGVREGVVLTHDGPGGLQLIAYVIPTQPATAELRDSLLIALKAHLPDYMAPSHLLFIDHLPLNANGKLDRKALPEPDATLRHSNHVAPRTQMEQALAQLWQQSLKAERVGISDSFFELGGHSILAIELIAKLKANLNITVRLQELLANPTIAELALFISQKHREQTQCLVALNNAPASAPQLFCLHPSGGIVFCYQPLARKLQNRARTVGIMHRGFSEPHARPEAWQEMIADYSKEIVRAQPEGPYYLMGWSLGGAIAFDIAAVLESQGHTVDFLGLVDSTIPEHLYPSELPRHRHLAGYEKDDAASQDLLEAIEYFDLLFPSLTERTAAYRRERPDSSVKAFHEWAAGQIEPERGDLLSIVQSVKEEVMNAQAFSVHDRLLEAFAGFTFKPVRVRPSCWWTQAEKTPQELAFCEALVREHSLTGTLRCSVQSPLGHRSMIFDEGLLGELVEVFLASTVEKLS	PGPT0003165_21	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-BACILLIBACTIN_METABOLISM,PGPT0003165-dhbF-K04780	NA	NA
D1-36_01709	1659	yojI_1	COG4615	ABC transporter ATP-binding/permease protein YojI	ATGAGCCAACCAAAACGCGGGGTGATCACTGAGCTGTTCATTCTGCTCAAACCCTTCCGGCTGATTGTCGCAGGCTCCATTCTCCTGGGCATGCTGGGTGGCTTGAGCATCACGGCCCTGCTGGCAACCATCAACGGCGCCTTGAACGCCGATGCGGGGCCCACCCCCCAAGTGTTGGCGACCTTCGCCGGCCTGTGCGTGGCAGCGCTGCTGACCTCGATCCTGTCGGACATCGGCACCAACCACGTCGGCCAGAACATCATCGCCAGCCTGCGCAAATCTCTCGGCCAGAAAGTCCTGCTGGCGCCCATCGAGCAGATCGAGCGGTTCCGCAGTCATCGGCTGATCCCGATCCTGACCCACGACGTCAACATGGTCAGCAACTTCGCGTTTTCCTTCGCACCGCTGGCGATTGCCTTTACCGTCACCCTCGGTTGCCTGGGCTACCTGGCCTACCTGTCGTTGCCGATGTTTGCGCTGCTGTTGGTGGCGCTGGTGATCGGCACGGTCATCCAGTACGTGGCGCGCGCTCGTGGCATTCGTGGTTTCGAAGCCGCCCGCGAGGCCGAAGACGCCCTGCAAAAGCACTACAGCGCCATCGCCGCGGGCGCCAAGGAGCTGCGCATCCACCGCCCGCGCCGCCAGCGCATGTTCAGCCAGCGCATCGAAGCCACCGCCGAGCAGATCTGCGACACCAACATCCGCGCGGTCAATACCTTCGTGGTCGCCAAGACCTTCGGCTCGATGCTTTTTTTCGTGGTCATCGGCTTGGTCCTGGCCCTGCAATCGCTGTGGCTGGGCACCGACAAAGCGGTGCTCAGCGGTTTCGTGCTGGTGTTGCTGTACATGAAGGGGCCGTTGGAATACCTGGTGATGACGTTGCCGGTGATCAGCCGCGCCAACATCGCCTTCAAGCGCATTGCCGAATTGGCCGAGCAGTTTTCCTCGCCGGAACCGCACCTGCTGCTCAACGACAAAAGCGCCCCCAAGCCGACAATTCAGCGGCTCGAATTGCGTGACGTGCATTATGCCTTCCCCGCGGTCGACGGCACCCAGCCCTTCGCCCTTGGACCGGTCAACCTGACCATCGCCCAGGGCGACATTGTGTTTATCGTCGGTGAGAACGGCGGCGGCAAGACCACGCTGATCAAATTGCTGCTGGGCCTTTATGCGCCCCAGGGCGGCGAAATTCTCCTGGATGGCGAGCCGGTATCGGCGGCGCGACGTGACGATTATCGCCAGCTTTTCACCACCATCTTCGCCGACTATTACTTGTTCGATGAACTGGTGCAGGGCGATCAAAACGTACCCGGGGATGCCAACCGCTACCTGGATCGCCTGGAGATCGCCCATAAAGTCAGCATTCGCGACGGCGCTTTCAGCACCACCGATCTTTCCACCGGGCAGCGCAAGCGCCTGGCCCTGCTCAATGCCTGGCTGGAAGAACGTCCCGTGCTGGTCTTCGACGAATGGGCCGCCGACCAGGACCCGGTGTTCCGGCGCGTGTTCTACACCGAACTGCTGCCGGAGCTGAAGGCCCTGGGCAAAACCATCATCGTCATTTCCCACGACGATCGTTACTTCGACATCGCCGATCAACTGGTGCGAATGCAGGCCGGCCGGGTGGTGAGTGAGAAGGTCCCGGCAGCCTTTGCCTGA	MSQPKRGVITELFILLKPFRLIVAGSILLGMLGGLSITALLATINGALNADAGPTPQVLATFAGLCVAALLTSILSDIGTNHVGQNIIASLRKSLGQKVLLAPIEQIERFRSHRLIPILTHDVNMVSNFAFSFAPLAIAFTVTLGCLGYLAYLSLPMFALLLVALVIGTVIQYVARARGIRGFEAAREAEDALQKHYSAIAAGAKELRIHRPRRQRMFSQRIEATAEQICDTNIRAVNTFVVAKTFGSMLFFVVIGLVLALQSLWLGTDKAVLSGFVLVLLYMKGPLEYLVMTLPVISRANIAFKRIAELAEQFSSPEPHLLLNDKSAPKPTIQRLELRDVHYAFPAVDGTQPFALGPVNLTIAQGDIVFIVGENGGGKTTLIKLLLGLYAPQGGEILLDGEPVSAARRDDYRQLFTTIFADYYLFDELVQGDQNVPGDANRYLDRLEIAHKVSIRDGAFSTTDLSTGQRKRLALLNAWLEERPVLVFDEWAADQDPVFRRVFYTELLPELKALGKTIIVISHDDRYFDIADQLVRMQAGRVVSEKVPAAFA	PGPT0003400_236	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-PYOVERDIN_TRANSPORT,PGPT0003400-pvdE-K06160	NA	NA
D1-36_01710	876	egtB		Hercynine oxygenase	ATGAACCGCTTTTTATTGAAGACACTCCCGGCGTTGGCCCTCGCCGCCCTGCTGCCCTCCGATGCCCAGGCCTCGCAACCGGGCCAGGTGTTTCGCGACTGCAAGGACTGCCCGGAAATGGTCGTGCTGCCCACCGGCACCTTCCAGATGGGCACCCCGGAAGACGAAGTGGGCCGCGAGCCCGACGAAGGCCCGCTGCACCCGGTGACGTTCGCCAGGCCCGTTGCGATCAGCCGTTTCCAGGTGCTCAAGGGTGAATGGTTCGCCTACCTGCGCGATACCGGCTACGTGATGCCCGACGGCGACAAGCGCCCCGGCCGCGCGTGCCGGGCCGGCGTGCCGGACTACCAGGGCAGCGACCCGCGCAAGCAATACACCGACCGGCACCCGGCGGTGTGCATGAACCTCCAAGAGGCTACTGCCTACGTGGCGTGGCTTTCGAAGAAGACCGGTAAGCCGTACCGATTGGTCAGTGAATCCCTGCGCGAATACGCCGCACGTGGTGGCAGCACCGGCCCGTTCCCCTTCCCGTTCGATAAAGGCAAGGACTACAGCATCGCCCAGCACGCCAATACCTATGGCGCCGCCGACGGCTTCAACTTCACAGCGCCGGCCGGCAGCTTCGCGCCCAACGCCTTTGGCGTGTACGACATGCACGGTAACGTCTACGAATGGACCGCCGATTGTTTCAACGAAAACTACACCGATGCGCCGAGCGACGGCAGCGCCGCGCTGATTGGCAACTGCAAGGTACGACGCATCCGCGGCAATGACTGGGGCGAAGCCCCGGTGTTTTCCCGTTCGGGCAATCGCAATGCGGTGTTTTCCGATGCCCGCGGTGACTGGCTGGGGTTTCGGGTCGCCCGGGATATGTAG	MNRFLLKTLPALALAALLPSDAQASQPGQVFRDCKDCPEMVVLPTGTFQMGTPEDEVGREPDEGPLHPVTFARPVAISRFQVLKGEWFAYLRDTGYVMPDGDKRPGRACRAGVPDYQGSDPRKQYTDRHPAVCMNLQEATAYVAWLSKKTGKPYRLVSESLREYAARGGSTGPFPFPFDKGKDYSIAQHANTYGAADGFNFTAPAGSFAPNAFGVYDMHGNVYEWTADCFNENYTDAPSDGSAALIGNCKVRRIRGNDWGEAPVFSRSGNRNAVFSDARGDWLGFRVARDM				NA	NA	NA	NA	NA
D1-36_01711	1281	cefD_1	COG0520	Isopenicillin N epimerase	ATGATCGAGCGCCGCGCCTTCCTCAAGCACGCCGGTATTATCGCCGCCGGCCTGCCATTGGCCGCAAACCTGCCTTCGAGTGCCGCGGCCGACTCTCCGCCGCCGCTGTCCCGGGACAAATGGGCGCAGCTGCGCTCGCTGTTCAACCAGGACCCGAACTACCTGCACTTCTCCAATTTCCTGGTCACCACCCACCCGCGCCCGGTGCGCGAGGCCATCGAGCGGCACCGCGCCGCCCTGGATAAGAACCCCGGGCTGTTGATGGACTGGGACTTGGGCGTCACCGAAGCTCGCGAGGAAAACGTGCGGACCTGGGCCGGTCGCTACCTGCAAGCGAACCCGAAGCAGATCGCCCTCACCGGCAGCACCACCGAAGGCCTGTCGATGATTTACGGCGGGGTCCATGTCCGGCCCGACCAGGAAATCCTCACCACCGCCCACGAACACTACGCCACCCACACCATTCTCGATCTGCGCAAGCAACGGGACGGAACACGGGTGCGCAAGATCAAGCTGTTCGAGAACGCCCATGGCGTCAGCGAGGCGCAAATCCTCACGGCCATCGACCGCAACATCCGTCCCGAAACCCGCGTGCTGGGCATGACCTGGGTGCACTCAGGCAGCGGCGTCAAGCTGCCCATCGGCAAGATCGGCGCCCTGGTGGACAAGCACAACCAGGGCCGCAGCGATGAACAGCGCATCGTGTACGTGGTGGACGGCGTGCACGGTTTCGGCGTCGAGGATTTGAGTTTCCCGGCGATGAATTGCGACTTTTTCATCGCCGGCACCCACAAGTGGATGTTCGGCCCACGGGGCACCGGCGTGGTGTGCAGCCGCAGCGAAGAGGTCAGGTACGTCACGCCGATCATCCCGACCTTCTCCGAAGCCACGGCGTTTTCCACCACCATGACCCCGGGCGGCTACCACGCCTTCGAGCATCGCTGGGCGGCGGACGAAGCGTTCAAGCTGCACCTGCAACTGGGCAAGGCCCAGGTGCAGGCGCGTATCCACGCGCTCAACACTTACCTGAAAAAACACTTGCTCGCGTTGCCGCAGATCGAGCTGGTGACGCCGCTGAGCCCAGAACTGTCCGCCGGCTTCACCTTCTTCCGGGTCAAGGATCGCAAGAGCGACGAGATCGCCGCCTACCTGATGCAAAACCGCGTGGTCGCCGATGCCGTGCACCGCGATGCCGGACCGGTGATCCGCACCGCGCCGGGGCTGCTCAACACCGAAGCCGAGATTGATCGCTTCCTGGCGCTGTTGGGCAAAACACTCTGA	MIERRAFLKHAGIIAAGLPLAANLPSSAAADSPPPLSRDKWAQLRSLFNQDPNYLHFSNFLVTTHPRPVREAIERHRAALDKNPGLLMDWDLGVTEAREENVRTWAGRYLQANPKQIALTGSTTEGLSMIYGGVHVRPDQEILTTAHEHYATHTILDLRKQRDGTRVRKIKLFENAHGVSEAQILTAIDRNIRPETRVLGMTWVHSGSGVKLPIGKIGALVDKHNQGRSDEQRIVYVVDGVHGFGVEDLSFPAMNCDFFIAGTHKWMFGPRGTGVVCSRSEEVRYVTPIIPTFSEATAFSTTMTPGGYHAFEHRWAADEAFKLHLQLGKAQVQARIHALNTYLKKHLLALPQIELVTPLSPELSAGFTFFRVKDRKSDEIAAYLMQNRVVADAVHRDAGPVIRTAPGLLNTEAEIDRFLALLGKTL	PGPT0010995_52	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-PENICILLIN_METABOLISM,PGPT0010995-cefD-K04127	NA	NA
D1-36_01712	1371			hypothetical protein	ATGACAATACCACGTTCGAAAAAGGCTCTTTTCACCGGCGTGCCCCTGGCCCTGGCGCTGGTCGTCGGGGCTGGCGTCGCGGCCTGGGACCATTGGTGGCGGGACAACCCCGGCTACTCGGTCAAGGTGATGAAAGAAGCGCGCGAGCTGCACGAACGCCTGCTGTCCTTCGACAGCCACATCACCGTGCCGCTGGATTTCGGCACCGCCGGCAACGAAGCGGACAAGGACGGCGAGGGCCAGTTCGACCTGGTGAAAGCCAATCGCGGCCGCCTCTCCGGCGCCGCGCTGACGATCTTCGGCTGGCCCGAACTGTGGAACGGGCCCAACGCGCCACACAAGCCCACCGCCGGGTTCGTCGAGGAAGCGCGCAACCAGCAAGAGGTGCGCTACAGGATCATCACCGGCATGGTCCGGGACTTCCCCAACCAGGTCGCCATCGCCTACACCCCGGACGATTTCCGGCGCCTGCATGGCGAAGGCAAGTTCGCGATTTTCATCAGCATGCTCAACGCGTATCCCCTGGGCCACGACCTGAACCTGCTGGACCTGTGGACGGCGCGGGGCATGCGCATGTTCGGCTTCAGCTACATCGGCAACAACGACTGGGCCGACTCCTCGCGCCCGCTGCCGTTCTTCAACGACTCGCCCGACGCCCTTGGCGGGCTATCGGACATCGGCAAGCAAGCAGTGACACGACTGAACGACCTGGGCGTGATCATCGATGTGTCGCAGATGTCGACCCAGGCTTTGGAGCAAGTCGCGCAACTGAGCCGCACGCCGCTGGTGGCGTCCCACTCCGCGCCACGGGCGATGGTGGACATCCCGCGTAACCTCAGCGACAAGGAAATGCAGCTGATCAAGGCCAGCGGCGGCGTCGTGCAGATCGTTGGTTTTTCCCAATACCTGCGCCCACTGACGCAAAAGACCCAGGACAGACTCAACGTCCTGCGCGAACGCTTCGACCTGCCGCCACTGCCCAACCTGGCGATGGCGCTGATGCCGGGCGACCCGATCATCGCCGCGTGGCCGGAACAGAAGTTCGGCGAATACGCCGGCCAGCTCTACGGCATTCTCGAAGAGGAACCCAAGGCCAGCCTCAAGGATTTGGGCGATGCCATCGACTATGCCGTGCGCAAGATCGGCATCGACCACGTCGGCATCAGTTCGGACTTCAACGAAGGTGGCGGCGTGAAAGGCTGGCAGAACGTCAGCGACATCCGCAACGTCACCGCCGAACTGCTGACCCGCGGTTACTCCGAAGCCGACATCGCCAAGCTGTGGGGCGGCAATTTCCTGCGGGTCTGGGATCAGGTGCAGAAAGCCGCCCGCCCTGCCATCGCCTCGGCGCAGAAGGCCCCTCAGCCATGA	MTIPRSKKALFTGVPLALALVVGAGVAAWDHWWRDNPGYSVKVMKEARELHERLLSFDSHITVPLDFGTAGNEADKDGEGQFDLVKANRGRLSGAALTIFGWPELWNGPNAPHKPTAGFVEEARNQQEVRYRIITGMVRDFPNQVAIAYTPDDFRRLHGEGKFAIFISMLNAYPLGHDLNLLDLWTARGMRMFGFSYIGNNDWADSSRPLPFFNDSPDALGGLSDIGKQAVTRLNDLGVIIDVSQMSTQALEQVAQLSRTPLVASHSAPRAMVDIPRNLSDKEMQLIKASGGVVQIVGFSQYLRPLTQKTQDRLNVLRERFDLPPLPNLAMALMPGDPIIAAWPEQKFGEYAGQLYGILEEEPKASLKDLGDAIDYAVRKIGIDHVGISSDFNEGGGVKGWQNVSDIRNVTAELLTRGYSEADIAKLWGGNFLRVWDQVQKAARPAIASAQKAPQP	PGPT0020950_400	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
D1-36_01713	1617			hypothetical protein	ATGACGATTTCTCGACGATGGTTCATGGCAGGCCTGGCGCTGACCGGTGCCGCCGTGCCTGCGGTGTATTACGGGCATCGCGAACTGACCCGGCCGGACCCGACCATCACACCCGGCGAAGCTTCCTTCGATGTGGCGGACGTCGCCGGACAGCGGCGGGCGAACACGTTGCGGGGAATCTGGACGATCCGTTTCAGCGGGCGCGATGCCGGCCTCGACGGCTTGCCGGGCGACAATCTGGAGATGTTTCTCGACATCGCCCACAAGGGCCGTGGCCTGGTGGGTTACCTCGACACCGCCGAACGGCTGCGCGGTGGAGATGAGCCGCGTTATCGGGTGCTGGGCGACCTGGCCGGCAGCGACCCGAAGCAATTGAGCTGGCGATTGATCGGTGCCGGGCATGGCACGCCAGACTACGAATTCATCATGACCCTGGACGAAGTCTGGGCCGGTTTCGGCAACGCCGGCACGGCCACCCTCAGCGGCCGGGTGTTGCGGTTGGATCGCCCGTTGGCGTTGCCGGAGCTCGACAATCAGTTCGTCGCCGTCAAACAGCGGTTCCCCGAAGCCCGGGAACGTACGCCGCTGAGCCTGAAGTTGCTGGACTGGCTGGTGTCGCCCGAGCACCGGCTGTTCCATCAACTCTGGCATGCCACGCGAGACAAATGGCACACCCTCGACGAAGACAAGCGCGACGCCCTGCGTGGCATCGGCTGGCAACCCGGGCCGCGGGACAACGAACGTGATGCTCGCGGGCCGCGCAAAGATCGCAACGGCTCGGGCGTGGATTTCTTCTTCATGCATCGGCATATGCTCGGCACGGCGCGTTCTTTCCAGCCGTTGCCGTCATGGCCACGTTTTCCATTGCCGCAACCTGAGTTGGAGCGTGATCGCCTGGGCTTTGCCCGGTATTTCGACAACGTCGACGGGACGGCACTGCCACCAACGTGGCTCGCCCGTGGTGACGAGCAATACGCCCAATGGGTCAGCGACATCAAGACCGCCGAGACCTATCACAGCAATTTCCAGGTCTGGGAATCCCGTTACCGCGACCCACGCTATTTATCCAAACTGACCCTGGGCCAGTTCGGTTCGGAAGTGGAATTGGGGCTGCATGACTGGCTGCATATGCGCTGGGCCTCGGTGCCGCGAGATCCGTCAAACGGCCATCCGGTGCCATTCGCCCGTGATCAGGCCGACTTCGCCCAACGCTGGTTCGAACCGGAAAACGACTTTTTAGGCGATCCGTTTTCCTCCCATGTAAACCCGGTGTTCTGGGCTTTTCACGGCTGGATCGACGATCGCCTCGAAGACTGGTTTTGCGCCCACGAACGCTTTCATCCGGGAGAAGTGAGCCGGCTCGAAGTCAACGGCGTGCCCTGGTTCGCCCCGGGCCGCTGGGTCGAAATCGCCGACCCCTGGCTCGGCCCGGACACCCATGGCTGCAGCACCACGCCGGGGCTGCAGGTCGGGCGCTCGGTGGAGATGGATCCGGAAACCATGAAGTTGGCGTTGCGTATTACGTTTGGCAGTGATGACGACAAGCTGGCTCAACTGTTTCGCCGCGTACCGCAGAGGCCTTGGTATGCGCGCAATCTCAAGGCCAAGGTGGTGTGA	MTISRRWFMAGLALTGAAVPAVYYGHRELTRPDPTITPGEASFDVADVAGQRRANTLRGIWTIRFSGRDAGLDGLPGDNLEMFLDIAHKGRGLVGYLDTAERLRGGDEPRYRVLGDLAGSDPKQLSWRLIGAGHGTPDYEFIMTLDEVWAGFGNAGTATLSGRVLRLDRPLALPELDNQFVAVKQRFPEARERTPLSLKLLDWLVSPEHRLFHQLWHATRDKWHTLDEDKRDALRGIGWQPGPRDNERDARGPRKDRNGSGVDFFFMHRHMLGTARSFQPLPSWPRFPLPQPELERDRLGFARYFDNVDGTALPPTWLARGDEQYAQWVSDIKTAETYHSNFQVWESRYRDPRYLSKLTLGQFGSEVELGLHDWLHMRWASVPRDPSNGHPVPFARDQADFAQRWFEPENDFLGDPFSSHVNPVFWAFHGWIDDRLEDWFCAHERFHPGEVSRLEVNGVPWFAPGRWVEIADPWLGPDTHGCSTTPGLQVGRSVEMDPETMKLALRITFGSDDDKLAQLFRRVPQRPWYARNLKAKVV				NA	NA	NA	NA	NA
D1-36_01714	1401	ttgF_1		Toluene efflux pump outer membrane protein TtgF	ATGAAAGCGCACCTGACTCTCCTGGCCGCCAGCCTGATGCTGGTGGCCTGCGCCACGCCGGTGTCGGCACCGGACAGCGGCATCCAACCGCCCGCAGCCTGGCAGAGCCTCGATACGCCCGGTGTCCGAGCGGATAACCAACAATGGTGGACGCAGTTCGGCAGCCCGTCATTGAACCGCTTGATCGAACAGGCGCGTCGGGACAGCCACGACCTGGCCGCCGCGATGGCTCGGGTTCGCCAGGCCCAGGCCAGCGCGGTGATCGCCGGCGCGCCGTTGCTGCCGCAAATCACCGCCGGGCTCAACGGCAATCGCCAGGAATTGCTGCGGGGCCAGGGCTATAGCCAGCTAGACGTGGATCGGGACAACCGCACCATCGATTACTACGACGCCAACCTCAGCGCCACTTATGAGCTGGATTTCTGGGGCGGTAAACGGGCGGCCCGGGACAGTGCGCTGAGCACGCTGTCGGCCAGCCAATCCGACCGCGCGACCGTGGAGCTGACCCTGCTCAGCGGCGTCGCCAACAGCTACACCCAGGCGTTGTCCCTGCGCGAGCAACAGCGCATCGCCAAATTGAACCTGGGCAACGCCCGCAATGTGCTGGACCTGGTGCAGACTCGCTACGACGCGGGCAGCGCCACGGCCCTGGAACTGTCTCAACAGAAGAGCCTGGTGGCGGCCCAGGAACGCCGCCTGCCGCAAGTGCAGCAACAGGCCCGCGAGGCGTTGATCACCCTCGCGGCATTGTTGGGCGAACCGGTGCAATCGCTGCAACTCGACGATGAACCATTCGACGCATTGCGCTGGCCCGCCATCGATGCCGGCGTGCCCAGCGACCTCTTGCTGCGCCGTCCCGACATCGCCGCCGCCGAAGCGCGCCTTGCCGCCGCCCAGGCCGACATCACTGTCGCCCGCGCCGCCATGCTGCCCTCCGCCACCCTCGGCCTGAGCCTGGCCACCGGCGCCGACATCGCCGACCAGTTGCTGCGCAACAACGTCTACAACCTCGGCGCCGGGCTGGCCGCGCCAATCTTCAACAATGGTCGCCTGAAGGCTGAGCGAGCCCGGGCTACCGCGCGCCAGGAAGAACTGCTGGAGGCCTACCGCGCCGCCATCATCAACGGCTTCGCCGACGTCGAAAAAGCCCTGAACGGCATCCACGGCCTGGACCGCCAACGGCAATGGCAAAGCGAAGAACTGCACCAGGCCCAGACTGCCTTCGACATTGCCCAACGCCGCTACCAGGCCGGCGCTGAAGATTTACTCACGGTACTGGAAACCCAACGTACCCTCTTCGCCGCCCAGGACATGAACGTGCAATTGCGACTGGCGCGGGTGCAGGCGAGCGTGGCGTTGTACAAGGCGTTGGGTGGGGGTTGGCGGGTGAAGCAGATCTGA	MKAHLTLLAASLMLVACATPVSAPDSGIQPPAAWQSLDTPGVRADNQQWWTQFGSPSLNRLIEQARRDSHDLAAAMARVRQAQASAVIAGAPLLPQITAGLNGNRQELLRGQGYSQLDVDRDNRTIDYYDANLSATYELDFWGGKRAARDSALSTLSASQSDRATVELTLLSGVANSYTQALSLREQQRIAKLNLGNARNVLDLVQTRYDAGSATALELSQQKSLVAAQERRLPQVQQQAREALITLAALLGEPVQSLQLDDEPFDALRWPAIDAGVPSDLLLRRPDIAAAEARLAAAQADITVARAAMLPSATLGLSLATGADIADQLLRNNVYNLGAGLAAPIFNNGRLKAERARATARQEELLEAYRAAIINGFADVEKALNGIHGLDRQRQWQSEELHQAQTAFDIAQRRYQAGAEDLLTVLETQRTLFAAQDMNVQLRLARVQASVALYKALGGGWRVKQI	PGPT0009810_2792	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexXY-OprM,PGPT0009810-toxI|oprM|oprM|emhC|ttgC|cusC|adeK|smeF|mtrE|cmeC|gesC-K18139	NA	NA
D1-36_01715	1962	macB	COG0577	Macrolide export ATP-binding/permease protein MacB	GTGGACACGCCCCTGATCGAACTGCGGGACATTCGCAAGGCCTATGGCGGCGGCGACAGCCCCCGGGTGGAAGTGCTGCGCGGCATCGACCTGTCCATTCATGCCGGTGAGTTCCTGGCGATTGTCGGGGCGTCCGGCTCCGGCAAATCGACCTTGATGAACATCCTCGGCTGCCTCGACCGTCCTACCAGTGGCGAGTACCGCTTCGCCGGCGAAGACGTCGCCGGCCTGGGCAGCGACGAACTGGCCTGGCTGCGGCGCGAAGCATTTGGCTTCGTGTTCCAGGGCTACCATTTGATTGCTTCCGGCACCGCCCAGGAAAACGTCGAGATGCCCGCAATCTATGCCGGCACCTCCGCCGCCGAGCGCCACGCCCGGGCCAGCGCCCTGCTCGACCGCCTCGGCCTGGCCAGCCGCACCGGCAACCGCCCCCATCAACTCTCCGGCGGGCAGCAGCAACGAGTGTCGATTGCCCGGGCCTTGATGAACGGCGGCCACATCATCCTCGCCGACGAGCCCACCGGCGCCCTCGACAGCCAGAGCGGGATTGAGGTGATGGCGTTGCTCGACGAACTGGCGAGCCAGGGGCACGTGGTGATCCTGATCACCCACGACCGTGAAGTGGCGGCCCGGGCCAAACGCATCATCGAGATCCGCGACGGTTTGATCATCAGCGACACCGCTACGGCCGCACCGCAGGCCAATCCGAACGCCTTGCACGCCGTGGACCTGCGCCAACGCCTGAGTGCCGGCAGCGAACACAACGGCGCCTGGAAAGGCGAGCTGGTGGACGCGGTGCAGGCCGCGTGGCGGGTGATGTGGATCAATCGCTTTCGCACCGCCCTGACCCTACTCGGCATCGTCATCGGCGTGGCCTCGGTGGTGGTCATGCTGGCCGTGGGCGAAGGCAGCAAGCGCCAGGTCATGGCCCAGATGGGCGCCTTCGGCTCGAACATCATCTACCTCAACGGCACGGCCCCCAACCCGCGGGCCGCCAAGGGCATCATCAGCGAACAGGACATTGCCGCCCTCGCTGCCCTGCCCGAAGTGCAACGCATCATGCCGGTCAACGGCAAGAACGCCAGCGTGCGGTTCGGCAACCTCGACCACACCAGCTACGTGGGCGGCAACGACACCCACTTCCCGATCATCTTCAATTGGCCAGTGGCCGAGGGCGCCTACTTTAGCGACGCCGATGAACGAGGCGCCGCGGCAGTGGCGGTGATCGGCCACAAGGTCCGGCAAAAACTGCTCAAGGACGTCGCCGACCCCATCGGCCGTTACATCCTGATCGAGAACGTGCCGTTCCAGGTGGTCGGCGTACTCGCGGAAAAAGGCGCCAGCTCCGGGGATTCGGATGCCGACAATCGCATCGCCATCCCTTATTCCGCCGCCAGCGTTCGGCTGTTCGGCACCCGTCATCCCGAGTACGTGGTGATCGCCGCCCGGGATGCGGGCAAGGTCAAGGAGGCCGAGCAGGCGGTCTCCCGTACCCTGTCGCGCCTGCACGACGGCAAGCGGGATTTCGAGCTGACCAACAACGCCGCGATGATCCAGGCCGAAGCTCGCACCCAAGGCACGCTGTCTTTGATGCTTGGGGCCATTGCGGCGATTTCGCTGTTGGTGGGTGGCATTGGCGTGATGAACATCATGCTCATGACCGTGCGCGAACGGACCCGGGAGATCGGCATCCGCATGGCCACCGGCGCCCGCCAGCGGGACATCCTGCGCCAGTTTCTCACCGAAGCGGTGATGCTCTCGGTGGTCGGCGGGCTGGCCGGTATCGGCCTGGCCCTGCTGGTGGGCGGCGGCCTGCTGCTGGGCAAGATCGCCGTGGCCTTCGAATGGCTGGCGGTGTTCGGCGCCTTCGGCTGCGCCCTGGTCACCGGCGTCGTCTTCGGTTTCATGCCCGCCCGCAAGGCCGCCCGCCTCGACCCGGTCGCGGCCCTCACCAGTGAATGA	MDTPLIELRDIRKAYGGGDSPRVEVLRGIDLSIHAGEFLAIVGASGSGKSTLMNILGCLDRPTSGEYRFAGEDVAGLGSDELAWLRREAFGFVFQGYHLIASGTAQENVEMPAIYAGTSAAERHARASALLDRLGLASRTGNRPHQLSGGQQQRVSIARALMNGGHIILADEPTGALDSQSGIEVMALLDELASQGHVVILITHDREVAARAKRIIEIRDGLIISDTATAAPQANPNALHAVDLRQRLSAGSEHNGAWKGELVDAVQAAWRVMWINRFRTALTLLGIVIGVASVVVMLAVGEGSKRQVMAQMGAFGSNIIYLNGTAPNPRAAKGIISEQDIAALAALPEVQRIMPVNGKNASVRFGNLDHTSYVGGNDTHFPIIFNWPVAEGAYFSDADERGAAAVAVIGHKVRQKLLKDVADPIGRYILIENVPFQVVGVLAEKGASSGDSDADNRIAIPYSAASVRLFGTRHPEYVVIAARDAGKVKEAEQAVSRTLSRLHDGKRDFELTNNAAMIQAEARTQGTLSLMLGAIAAISLLVGGIGVMNIMLMTVRERTREIGIRMATGARQRDILRQFLTEAVMLSVVGGLAGIGLALLVGGGLLLGKIAVAFEWLAVFGAFGCALVTGVVFGFMPARKAARLDPVAALTSE	PGPT0027920_358	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0027920-macB|ybjZ|pvdT-K05685	NA	NA
D1-36_01716	1149	macA	COG0845	Macrolide export protein MacA	ATGAAACGTCCCCGCCCTACCCGACGCGCCTGGCTTCTCACCTTCGCCCTGCTTCCGGCCGTGGCTTTCGCTGCGTGGCAAGTGGTTGTGCCGGACCGCGCGCCGCTCGACACCGTCCCGGTCACCCGTGGCGACATCGAAAACAGCGTAACGGCCCTGGGCACCTTGCAGCCCCGGCGCTACGTGGACGTCGGCGCCCAGGCGTCCGGGCAGATCCAGAAGATCCACGTCGAAGCCGGCGACGAAGTGACTGAAGGCCAGCTACTGGTGGAAATCGACCCCTCCACGCAAAAAGCCAGGCTCGACGCCGGGCGATTTTCCATCGAGAACCTCAAGGCCCAGCTTCAGGAACAGCGCGCCCAGCACGACCTGGCGCAGCAGAAATTCCGTCGCCAGCAACAGCTCAAGGCCGGCGGCGCCACCCGCGAAGAAGATGTGCAGACTGCCCAGGCCGAGGTGCGCGCGACCCAGGCGCGCATCGACATGTTTCAGGCCCAGATCCGCCAGGCCCAGGCCAGCCTGCGTAGCGACGAGGCGGAACTGGGCTATACGCGCATTTATGCGCCCATGGGCGGCACCGTGGTCGCGGTCGGCGCCCGGGAAGGTCAGACCCTCAACGCCCAGCAGCAGACGCCGTTGATCCTGCGCATCGCCCGGTTGTCGCCGATGACGGTCTGGGCCGAAGTCTCGGAAGCCGACATCGGCCACGTCAAGCCGGGCATGACCGCGTATTTCACCACCCTGGCCGGCGGCAGTCGCCGCTGGAGCAGCACCGTTCGCCAGATCCTTCCCGTGCCGCCGCGCCCATTGGAAGCCAGCCAGGGCGGCAGCCCCACTGGCGGCCGCAGCGGCAGCGAGCGGGTGGTGCTCTATACCGTGCTACTCGACGTGGACAACGCCGACCGCGCCTTGATGGCCGACATGACCGCACAAGTGTTTTTTGTCGCCGCCCAGGCCAAGGACGTGCTGACCGTGCCCATCGCCGCCTTGCAAGAGGCCGACCAGGTACGCGTGCTCGCCGACAATGGTGATGTCCAGCCGCGCACCGTCCGTACGGGCGTCAGCGATCGCCTGCGCACCCAGGTCCTCGACGGCTTGAGCGAAGGCGAGCGCGTGCTGATCGGCCCATCCAGCGCAAGCGGAGGCTGA	MKRPRPTRRAWLLTFALLPAVAFAAWQVVVPDRAPLDTVPVTRGDIENSVTALGTLQPRRYVDVGAQASGQIQKIHVEAGDEVTEGQLLVEIDPSTQKARLDAGRFSIENLKAQLQEQRAQHDLAQQKFRRQQQLKAGGATREEDVQTAQAEVRATQARIDMFQAQIRQAQASLRSDEAELGYTRIYAPMGGTVVAVGAREGQTLNAQQQTPLILRIARLSPMTVWAEVSEADIGHVKPGMTAYFTTLAGGSRRWSSTVRQILPVPPRPLEASQGGSPTGGRSGSERVVLYTVLLDVDNADRALMADMTAQVFFVAAQAKDVLTVPIAALQEADQVRVLADNGDVQPRTVRTGVSDRLRTQVLDGLSEGERVLIGPSSASGG	PGPT0027919_912	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0027919-macA|pvdR-K13888	NA	NA
D1-36_01717	480	fecI_2	COG1595	putative RNA polymerase sigma factor FecI	TTGGAAAACTACTATCGCGAACTGGTGTGTTTCCTGAACGCCAGGCTAGGCAACCGCCAGGCGGCCGAAGACGTGGTGCATGACGCTTATGTGCGGGTGCTGGAGCGCGCCAGCGATACGCCCATCGAGCAACCCCGTGCGTTCCTTTATCGCACCGCATTGAACCTGGTGATCGACGGGCATCGGCGCAACACCTTGCGCCAGGTCGAGTCCCTCGATGTCCTGGACAGTGAAGAACGCTTCTTCACGCCATCGCCCCACACCAGCCTCGACCATGGCCAGCGCCTGGACATGCTGCAACGCGCCCTGGCCGAGCTGCCACCGATGTGCCGCGAGAGCTTTCTGCTGCGCAAGCTCGAAGGCCTGTCCCACCCGCAAATCGCCGAGCGCCTGGGCATTTCCAGGGCGTTGGTGGAGAAACACATCGTCAACGCCATGAAGCATTGCCGCGTTCGTGTGCGGCAGTGGGACGCGACCTGA	MENYYRELVCFLNARLGNRQAAEDVVHDAYVRVLERASDTPIEQPRAFLYRTALNLVIDGHRRNTLRQVESLDVLDSEERFFTPSPHTSLDHGQRLDMLQRALAELPPMCRESFLLRKLEGLSHPQIAERLGISRALVEKHIVNAMKHCRVRVRQWDAT				NA	NA	NA	NA	NA
D1-36_01718	1335	pvdA	COG3486	L-ornithine N(5)-monooxygenase	ATGACACAGGCAATTGCATCGCCCATCGTTCACGACTTGATCGGCATTGGCTTCGGCCCTTCGAACCTGGCGCTGGCCATCGCGCTACAGGAACGAGGGCCGGTCCAGGGTGAACTGGACGTGCTGTTCCTCGACAAACAGGCCGATTATCGTTGGCACGGCAACACCCTGGTGACCCAGAGCGAACTGCAGATTTCCTTCCTCAAGGACCTGGTGACCCTGCGCAATCCCACCAGCCCGTACTCGTTCGTCAACTACCTCAAGCACCACGGCCGCCTGGTGGATTTCATCAACCTTGGCACCTTCTATCCGTGCCGCATGGAGTTCAACGACTACCTGCGCTGGGTGGCCGGGCACTTCACCGAGCAGAGCCGCTATGGCGAAGAAGTGCTGCGCATCGAGCCGGTGCTGCATGACCAGCAGGTCGAAGCACTGCGGGTGATTTCCCGCGGTGCCCAGGGCGAAGAGCTGGTGCGCGCCACGCGCTCTTTGGTGGTCAGTGCCGGTGGCACGCCGCGCATCCCCGATGCGTTCAAGTCGTTCCAGAACGACGCCCGGGTATTTCATCATTCGCAGTACCTGGCGCGCATGGCGAACCAGGCCTGCGTGAGCGGTCAGCCGATGAAGGTCGCCATCATCGGCGGCGGACAGAGCGCGGCGGAGGCTTTCATCGACCTCAACGACAGCTTCCCGTCGGTGCAGGTCGACATGATTCTGCGGGGCTCGGCCCTCAAGCCGGCGGATGACAGCCCGTTCGTCAACGAAGTGTTCTCGCCGGAGTTCACCGACCTGGTGTTCCAGCAACCCCACAGCGAGCGCGAGCGCCTGGTCAACGAGTACCACAACACCAACTATTCGGTGGTGGACATCGATTTGATCGAACGCATCTACGGGATTTTTTACCGCCAGAAAGTCTCTGGCATCGCCCGTCATGCGTTCCGCACCCTCACCACCATTGAGAAAGCCACGGCCACCGACGCGGGCGTGGAGCTGGCGGTGCGCAACAACGCCACCGGCGAGCTGACGGTACGCTGCTATGACGCGGTGGTGCTCGCCACCGGCTACGAACGCCAGATGCATCGCACCTTGCTAGAGCCGCTGGCGCAATACCTGGGGGATTTCGAGGTGGATCGCAACTACAAGCTGATCACCGATGAGCGCTGCAAGGCCGCGATCTATATGCAGGGCTTCTGCCAGGCCAGCCATGGCCTGAGCGACACATTGCTTTCGATCCTGCCGGTGCGCGCCGATGAGATCGCCGGCTCGCTCTATGAGCACGCAAGGCATCGTGGCCAGGGGCATTCGGTACGTGACCTGAAGCTGGCCACGGCTTAA	MTQAIASPIVHDLIGIGFGPSNLALAIALQERGPVQGELDVLFLDKQADYRWHGNTLVTQSELQISFLKDLVTLRNPTSPYSFVNYLKHHGRLVDFINLGTFYPCRMEFNDYLRWVAGHFTEQSRYGEEVLRIEPVLHDQQVEALRVISRGAQGEELVRATRSLVVSAGGTPRIPDAFKSFQNDARVFHHSQYLARMANQACVSGQPMKVAIIGGGQSAAEAFIDLNDSFPSVQVDMILRGSALKPADDSPFVNEVFSPEFTDLVFQQPHSERERLVNEYHNTNYSVVDIDLIERIYGIFYRQKVSGIARHAFRTLTTIEKATATDAGVELAVRNNATGELTVRCYDAVVLATGYERQMHRTLLEPLAQYLGDFEVDRNYKLITDERCKAAIYMQGFCQASHGLSDTLLSILPVRADEIAGSLYEHARHRGQGHSVRDLKLATA	PGPT0003390_372	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-PYOVERDIN_BIOSYNTHESIS,PGPT0003390-pvdA-K10531	NA	NA
D1-36_01719	3273	rcsC_8		Sensor histidine kinase RcsC	ATGATGCTGTTGCTGCGCACGGGCCTGGCGGCGATATGGCTGGGTCTATCCTGTATGGCGCCACAGGTGGGCGCTAAACCCGAGTCGCTGCAGGTGCTCGGACGATCCACTGTGAGCGATTATTCGGTGAGCCTGGACGAAGCCGACTGGGCCTGGCTGCGGCGCAAGGGCACGTTGCTGCTGGGCACCTCGGCACCGGATTATCCGCCGTTCAGCATCACCGGCAATGGCAACGATTACGAAGGCTTGACCGCTGACTACGCCCGGTTGATGGGGCAGTTGTTGCACGTCGAGGTGCGGGTGCAGCGGTACGCCTCGCGGGATGCATCGCTCCAGGCCCTGCGCAGCGGGGAAATCGATGTGCTTGGCACCGCCAATGGCTTCGAGGCCAGCGATCCGGGGCTGGCGATGTCCCAGGCCTATGCCGATGACATTCCTACGCTGGTGGCCAGGGTCGATGCCGGCGAGGAACTGCCCGCGGACCTGGCGGGCAAACGGGTGGCGATGCTGTATCACTACTTGCCCCCGGACAAGGTCGAGGCTTTTTATCCCGACGCCACTTTGCAGTTGTTTCCCTCGACCTTGAGCGCCATCGGCGCCGTGGCGTTCGGCCAGGCCGACGTCTACCTGGGGGATTCGATCAGCGCCCACTACCTGATCAGCAAGAACTACCTGAACAATGTCCAGCTGGTGGATCTTTCCCGCATGGAAGTGCAACCGTTCGCCTTCGCGGTCAGTCGTGGCAACAAGCAGCTGTTGCGCATCGTCAATGCCGCGTTACAGGCCATCCCCATCGGCGAACGCATGGGCATCCTGCGGCGTTGGAATGCCGGCGGGGCAAGCGTGCCGGGCCAGCAGGCGTTGCATTTCAGTGTGAATGAACAGCGCTGGCTCGATGCCCATCCGCGAATCAAGGTGGCTGTCAGCGAAAATTTCCTGCCGTTGACGTTTTTCGATGAGCACGGCCAACTCCGCGGCATCGGAGCCGATGTGCTGGCCAGGATCAGCTTGCGCACCGGCCTGAAATTCGACATCCAGCATGGCGATTCGGTGGATGACCTGGTCGGCAGGATCACCAGCGGCAAGGCCGACGTTCTGGCAACCGCGATCCCCAGCGCGGAACTCGAAGATGAGTTGCGCTTTACCCGTCCGTACCTGACGAACCCCTTCGTGCTGGTGGTGCCGGTCAAGGCGAATGACTCGCTGACGATGGATCGGATGGCCGGCAAACGACTGGCACTGGTGCGCGGGAACATGCTGCGCGAATACCTGCTGGAGCAGTTTCCCACGGTGCAGTTGGTGCCGGTGCAGAACCTGGCCGAGGCCATGTCCATGGTCGCCACAGGCGCGGCGGACGGCGCGATCAGTTCGCTGATCAGCGCTCGCTACATGATCTCTCGCCAGTACCGCGAGAAGCTGCAAGTCACCAGCACCGTCGGCACGGTGCCCGCCCGCGTCGCGCTGGCGACCAGTCATGACGCAGCGCAGCTCTATTCGATCCTGGACAAGGCGCTGCTGAGTATTTCCCCCGAGGAAATGGATGAGCTGACCAACCGTTGGCGCAGTGAAGTGGTAATCGATGACAGCTATTGGCTGCGTCATCGCACCGCGATTGTCCAGGGTTTCGCCATCGCCGCCTTGCTGTTGCTGCTGGCATTGGGCTGGGTTGTTTACCTGCGGCGCCTGCTCGAGCAATTGCGCGTGGCCAAGGCCAGCGCCGATGATGCCAACCGGGCCAAGACCACGTTCCTGGCGACCATGAGCCACGAAATCCGCACGCCGATGAACGCCGTGATCGGCATGCTGGAAATGGCGCTGAAAAAAGCCGAGCAAGGCGTCATGGACCGGGCCGCCCTTGAAGTCGCGTCGAGCGCCGCCCAAGGCTTGTTGGATTTGATCGGCGACATTCTCGACATCGCCCGCATCGAATCGGGGCGGCTGTCGCTGACACCTGAGCGCGCCAACCTGCGCACGATGGTCGAGGCCGTGGCGAGGATGTTCGAGGGCCTGGCCCGGCAAAAACAATTGAACCTGCGACTGGATGTGGACGCGGCGAGCAATCAGGACGTATTGATCGACCCGATGCGCTTCAAGCAGGTGCTCTCGAACTTGCTGAGCAATGCGATCAAGTTCACCGAGCAGGGCCACGTGCGCCTGGTGCTGCGAGCCGAACCGGGAAAGGGAGGGCAGCGCCTGGCCATCCGTCTGCGGGTCGAAGACACCGGCCGCGGAATTTCAGTCCACGACCAGCAACGCTTGTTCAGCCCCTTCGCTCAAGTCGGCGACAGCACCCAGGCGGCGCGCAGCGGTTCGGGGTTGGGGCTGGTCATCAGCCGCACCTTATGCGGCATGATGGGCGGCACATTGCTGCTCGATAGCGTGCCGGGACAGGGTACGCAGGTCGAGATCCGCCTGGAGTTGCCATTGCTTGAAACGGTGGGCGAAGCGCCGGTGGCGCAGACCGAGCCTGTGATGCCCGCACGGCCGTTGAACATCCTGGTGGTCGATGATTACCCGGCCAACCGGTTGTTGCTGGTCCAGCAAATAAACTACCTGGGCCACCGGCTGCGGGAGGCCGAAGACGGTGCCGAGGGGTTGCGGGCGTGGCGCGCCGGGCAGTTCGACGCAGTCATCACCGATTGCAACATGCCGCAGATGAGCGGTTATGAATTGGCCCGCGCCATTCGCGACGACGAGCGGGACCGAGGCCTGGCGCCGACCACGATTCTCGGCTTCACGGCCAATGCCCAGCCCGAGGAAAAGGCCCGTTGCCTTGCGGCGGGAATGGACGATTGTCTGTTCAAACCCATCGGCTTGAACCAATTGAACGCGCGTCTGGCATCGGTTGTGCCCAACGGTGCGGTGGAACCGCGTGTTGCTGACGCAGACTTCGACCTGACCAGCCTGGAACAACTGACCGGCGGCGACTGGGTTTCCACCCAGGGCCTGTTGCTGGAACTGATCGACAGCAATGGACAGGACAAGGCGCGGTTGCAGACATTGTTTTCGCGCCATGACGTGCCCGGGCTGTCCGATCTGGCGCATCGGATCAAGGGCGGGGCCAGGTTGATCCAGGCACAGCGCTTGATTGCCGCTTGCGAAATACTGGAAAACGCCTGCCGCGCGGGCGAAACGTCATCGCTCGCTGCTGCGGCGGATGAGTTGCACGAGGCGATGGAGCACCTGACTGGGCGGCTCCAGGCTTACATGACAAGCAAGCCCGTTGCGCAAGGCAACGCCGGCGCCATCGACCCTACGCGCGACCGGCATTGA	MMLLLRTGLAAIWLGLSCMAPQVGAKPESLQVLGRSTVSDYSVSLDEADWAWLRRKGTLLLGTSAPDYPPFSITGNGNDYEGLTADYARLMGQLLHVEVRVQRYASRDASLQALRSGEIDVLGTANGFEASDPGLAMSQAYADDIPTLVARVDAGEELPADLAGKRVAMLYHYLPPDKVEAFYPDATLQLFPSTLSAIGAVAFGQADVYLGDSISAHYLISKNYLNNVQLVDLSRMEVQPFAFAVSRGNKQLLRIVNAALQAIPIGERMGILRRWNAGGASVPGQQALHFSVNEQRWLDAHPRIKVAVSENFLPLTFFDEHGQLRGIGADVLARISLRTGLKFDIQHGDSVDDLVGRITSGKADVLATAIPSAELEDELRFTRPYLTNPFVLVVPVKANDSLTMDRMAGKRLALVRGNMLREYLLEQFPTVQLVPVQNLAEAMSMVATGAADGAISSLISARYMISRQYREKLQVTSTVGTVPARVALATSHDAAQLYSILDKALLSISPEEMDELTNRWRSEVVIDDSYWLRHRTAIVQGFAIAALLLLLALGWVVYLRRLLEQLRVAKASADDANRAKTTFLATMSHEIRTPMNAVIGMLEMALKKAEQGVMDRAALEVASSAAQGLLDLIGDILDIARIESGRLSLTPERANLRTMVEAVARMFEGLARQKQLNLRLDVDAASNQDVLIDPMRFKQVLSNLLSNAIKFTEQGHVRLVLRAEPGKGGQRLAIRLRVEDTGRGISVHDQQRLFSPFAQVGDSTQAARSGSGLGLVISRTLCGMMGGTLLLDSVPGQGTQVEIRLELPLLETVGEAPVAQTEPVMPARPLNILVVDDYPANRLLLVQQINYLGHRLREAEDGAEGLRAWRAGQFDAVITDCNMPQMSGYELARAIRDDERDRGLAPTTILGFTANAQPEEKARCLAAGMDDCLFKPIGLNQLNARLASVVPNGAVEPRVADADFDLTSLEQLTGGDWVSTQGLLLELIDSNGQDKARLQTLFSRHDVPGLSDLAHRIKGGARLIQAQRLIAACEILENACRAGETSSLAAAADELHEAMEHLTGRLQAYMTSKPVAQGNAGAIDPTRDRH	PGPT0014485_586	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE_EVG-EMR_SYSTEM,PGPT0014485-evgS|bvgS-K07679	NA	NA
D1-36_01720	423			hypothetical protein	ATGCCAAATAAAGCTCTACGCATCATGATTGCCGATCCTGAGCATTATCATCGACTGCAACTAGAACGCCTGTTTAATCACCAAGGCTATTTCCGCATCGCTCCGGTGAGCGACGTGCATGAACTCCTGACGTTGGTGGACTGCGGCTGTGAGCCGTTCGACCTGGTCATCGTCAATGCCAGCGTGGCGGATGACGCCTTGGACCTGCCCGGATTCTTCCTCGACAACCCTCTGGTTCGTCATGCTTTGATCTACAACGCCCAGCAGGGCACCCCGGCGACTCGCCAGCCTTTTCTCCAGGTAAGCAACGCCCGACTGCCCGATGCGATTTCCGTGCAGCGCTTGATGAAAAGCGTCGATCCAGCGGCCAACGAGCCGGTTCCGTCCTGGGCTCGCACCGTCGAACAGCGTCACGGAACCTGA	MPNKALRIMIADPEHYHRLQLERLFNHQGYFRIAPVSDVHELLTLVDCGCEPFDLVIVNASVADDALDLPGFFLDNPLVRHALIYNAQQGTPATRQPFLQVSNARLPDAISVQRLMKSVDPAANEPVPSWARTVEQRHGT				NA	NA	NA	NA	NA
D1-36_01721	615	bvgA_2		Virulence factors putative positive transcription regulator BvgA	TTGAAAAACGTATTGATTGTGGACGATCACCCCGTCATCCGGGGGGCGCTGCGGCTTGTATGCCAGAACGAGGGATTCAGCCAGGTCACTGATGTCAGCGGCGTGGCCGATGCGCGGGCATGTATCAAGCAGGATATCCCGGACGTGGTGATCCTGGACCTGGTCATGAATGGTTTCGATGGCCTGGACCTGCTTGTCTGGATCACCGGCCAATTTCCCGGTTGCGCTGTGCTGGTGTTCACCTCCCAGGATGCCCAGCATTTCTGCAACCGCTGCATTTCTGCCGGGGCCAGGGGGTTCGTGACCAAGAAAAGTGACCTGAAGGAGCTGATAAAGGCCATCCACGCCTTGAAGTCCGGCTATTCCTATTTTCCGCAGATGTCCGTCAGGCTGGACTTTCAACAACGTTCCGAGCAGAAAGCACTCGAGAGTCTTTCCACCCGGGAGCTATCCATCCTGCGGATGCTGGCGATGGGCATGCGTGGCAAGGACATCGCCGAGACTTTGTTCCTCAGCCCGAAGACAGTCAGCACCTACAAGACCCGTTTGCTGGAAAAGCTCGGCTTGAGTTCCCTGGTGGGCCTGTCGGAATTTGCCAAGCGCAATCAGCTTTGA	MKNVLIVDDHPVIRGALRLVCQNEGFSQVTDVSGVADARACIKQDIPDVVILDLVMNGFDGLDLLVWITGQFPGCAVLVFTSQDAQHFCNRCISAGARGFVTKKSDLKELIKAIHALKSGYSYFPQMSVRLDFQQRSEQKALESLSTRELSILRMLAMGMRGKDIAETLFLSPKTVSTYKTRLLEKLGLSSLVGLSEFAKRNQL	PGPT0014490_377	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MdtEF-TolC,PGPT0014490-evgA|bvgA-K07690	NA	NA
D1-36_01722	867			hypothetical protein	TTGAAAAAGATCATAGGCCTCTATACCAGTCCAAGGCCGCATTGGGTTGGCGACGGCTTCCCGGTCCGTACGCTGTTTTCCTACGACAACCTGGGCAAGCACATCAGCCCGTTCCTGCTGCTGGACCACGCCGGCCCCAGCGAATTCACGCCCACCACCGAGCGCCGTGGCGTCGGCCAGCATCCTCATCGTGGTTTCGAAACCGTGACCATCGTCTACCAGGGCGAACTGGAGCACCGCGACTCTACCGGCAGTGGAGGCAAGATCGGCCCCGGCGACGTGCAGTGGATGACCGCTGCCTCAGGAATCATCCATGAGGAATTTCACTCCGAAGCGTTCGCCCGGCAGGGTGGCTTCATGGAGATGGTCCAGTTATGGGTCAACCTGCCAGCCAAGGAAAAGATGGCGCCGGCCGGCTACCAGACCCTTCTCAAGCAGGACATTCCGAACATCACGCTAGAAGACGCGGCCGGCAGCGTGCGGGTAATCGCCGGGCGCTTCGAGGGGCACCAAGGCCCGGCGAAAACCTTTACACCCATCGACGTCTGGGATATCCGACTGAACGCCGGGAAAGAGCTGACCCTGGACCTGCATGACGGCCACAGCAGCGCGTTGGTCGTGCTGCGAGGTTCGATCCAGGCCAACGGCCGCGAACGGGTCGAAGCCGGGCAACTGGCACTGTTTGATCGGGTAGGCGACCAGTTGAGGGTGCAAGCCAACAACGACGCGGTACTGCTGTTGCTCAGTGGCGAGCCGATCGATGAGCCCATCGTCGGCCATGGTCCGTTCGTGATGAATAGTGAGCAGGAAATCCACCGGGCCTTCGAGGATTTCCATTCCGGGCGCTTCGGCCGGATGGATGGCTAG	MKKIIGLYTSPRPHWVGDGFPVRTLFSYDNLGKHISPFLLLDHAGPSEFTPTTERRGVGQHPHRGFETVTIVYQGELEHRDSTGSGGKIGPGDVQWMTAASGIIHEEFHSEAFARQGGFMEMVQLWVNLPAKEKMAPAGYQTLLKQDIPNITLEDAAGSVRVIAGRFEGHQGPAKTFTPIDVWDIRLNAGKELTLDLHDGHSSALVVLRGSIQANGRERVEAGQLALFDRVGDQLRVQANNDAVLLLLSGEPIDEPIVGHGPFVMNSEQEIHRAFEDFHSGRFGRMDG	PGPT0019980_2936	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_FLAVONOID_UTILIZATION	PLANT_DERIVED_QUERCETIN_DEGRADATION,PGPT0019980-yhhW|pirA-K06911	NA	NA
D1-36_01723	1443			hypothetical protein	ATGCTCGCCCCGATCACCGACCATCCGCTGCTGTGTGCCCTGGCATTGCTCGTGCTCGATTTGCTGGCGTGGCGGCTGGTCAGTGCCGAACGGACCTACTGGAAAATCGGCGTGCGGCTGGCGATTTTCATGTTGTTCAGCATGCTGCTGTTCAACGAAGGCCTCAACCCCATGCAGACCGCACAGTGGGTCGACGACGTACCTCGGCACCTGGCGGCGACCGGCCTGCAGATTGCGTGGTGGTTGTTCGCCGCGCGAACCCTGACGGTGATGATCGGCGCGGTCATGATGCAACGGGTCGGCCATACGGGACGGCTGTTGCAGGATCTACTGGGGGCGGTGATTTTCCTGGTCGCTGTCATCGCGGCGCTGGCTTATGTGTTGGATCTGCCGGTCAAGGGCGTGCTCGCGACGTCCGGCGCAATGGCGATCATCGTCGGCCTGGCCTTGCAGAGCACCCTCAGCGATGTGTTTTCCGGCATCGTGCTCAACACCACCAAGCCCTATCAAGTCGATGACTGGATTTCCATCGACGGCACCGAGGGCCGGGTCACCGACATCGACTGGCGGGCCACGCGATTGCAGACCTCCCAGGGCAGCATGGCGGTGATTCCCAACTCCTTGGCGGCGAAAGCCAAGATCGTCAACTTCAGCCGTCCCAGCGACATGCATGGCTTGTCCATCAGCCTCCAGATCAGCCCGCATGCGCGCCCACAAAAAGTGATCGAAGCGCTGGAGCGGGCAATGATCGGCTGCCGGGCGCTGCTCGCCAGCCCGGCGCCCAGCGTCACGCTCAAGAGCGCCGGCAGCGCCGGAGCGGAATACGAGATCAGCGGTTTTGTGGCCTCGATGGGGCAAAAACGCGAAGTCCGCAACCAACTGTTCGATCTGGCGTTCCGGCATCTGCATGCATCGGGCGTGAGCCTGCTGTCTACTGGCGAAAGCGCGGCGGCCGTGGCGGTGTCGCGTCCTCGGGCATTGCTGGAAAGCTCCAGCATCTTTTCCACGCTGCGCCCGGACGAGAAAGACACGTTCAGCCAGAACATGACCCTGCAGACGTTCCGCGCCGGCGACGTGATCCTGGCGGCCGGAGAGGTCAGCGACCACCTGTTCATCATCGAGTCCGGCGTGGTCAGCGCGAGCCTCATGCGTAATGGCCAGCCCATCGAGGGCGGGCGCATGGGGCCGGGTGAAGTCATCGGCGAAGCCGGGGTCGTCGCCGAGCAAGCGGCGTTGGCGAGTTTCACCGCGAAGACGTTCTGCACCCTGTATCGCATCGAGAACAGTTACCTCAAACCCTGTCTCGAGGCCCGTCGTGACATCGGCGACGCCATGAAAAACCTGTTGGACGTACGCATCCACCTGGCTCAGAACCTGACCCGTGACATACCCAAGCCGGTCGCCAAGAAGCGCTTTCTGCAATGGTTGCGCAGCCGGGCCTGA	MLAPITDHPLLCALALLVLDLLAWRLVSAERTYWKIGVRLAIFMLFSMLLFNEGLNPMQTAQWVDDVPRHLAATGLQIAWWLFAARTLTVMIGAVMMQRVGHTGRLLQDLLGAVIFLVAVIAALAYVLDLPVKGVLATSGAMAIIVGLALQSTLSDVFSGIVLNTTKPYQVDDWISIDGTEGRVTDIDWRATRLQTSQGSMAVIPNSLAAKAKIVNFSRPSDMHGLSISLQISPHARPQKVIEALERAMIGCRALLASPAPSVTLKSAGSAGAEYEISGFVASMGQKREVRNQLFDLAFRHLHASGVSLLSTGESAAAVAVSRPRALLESSSIFSTLRPDEKDTFSQNMTLQTFRAGDVILAAGEVSDHLFIIESGVVSASLMRNGQPIEGGRMGPGEVIGEAGVVAEQAALASFTAKTFCTLYRIENSYLKPCLEARRDIGDAMKNLLDVRIHLAQNLTRDIPKPVAKKRFLQWLRSRA				NA	NA	NA	NA	NA
D1-36_01724	441			hypothetical protein	ATGCAACCGCGTATCGATTTTTATGCCGCTTCCCCTGATGCCTACAAAGCCATGCTGGCCCTGGAGAACGCGGTCTCCAGATTGGGCCTTGAAAAGTCCCTGATCGAGCTGGTGAAGCTGCGCGCTTCGCAAATCAATGGCTGCGCGTTCTGCATCGATATGCACACCGCCGATGCGCGCAAGGACGGCGAGACCGAGCGGCGCCTGTATGCCGTGACCGCCTGGCGCGAGGCGCCGTTTTTCACCGGCCGTGAACGCGCCGCGCTGGCTTGGACCGAAGCCCTGACGCGCCTGAGCGAGACCCATGCGCCCGACGCCGACTACGAGCTGCTGAACGAGCACTTTACGCCCAAGGAAATGGTCGACCTGACCGTGGCGATCAACGCCATCAACGGTTGGAACCGCTTGGCGGTGGGCTTCCGAAAAATGCCGGAGGTCTGA	MQPRIDFYAASPDAYKAMLALENAVSRLGLEKSLIELVKLRASQINGCAFCIDMHTADARKDGETERRLYAVTAWREAPFFTGRERAALAWTEALTRLSETHAPDADYELLNEHFTPKEMVDLTVAINAINGWNRLAVGFRKMPEV				NA	NA	NA	NA	NA
D1-36_01725	423			hypothetical protein	ATGCAAGTTCAAGTCAACAGCAACCATATTGAAGGCAGTGCCCGTTTGCAGGAATGGGTTGGCAGTACGGTGGTGGACGCGTTGCAGCGTTTCGAAGATCAGTTGGCCCGCGTCGAGATTCACGTCAGTGATGAAAATGCCCAGAAGGGCGGTGCCGCTGACAAGCGTTGCCAGATCGAGGCACGCGTACAGGGCCATTCATCATTGTCGGTCAGTCACAAGGCCGAGAGCCTGGAGCTGGCCGTGGAGGGCGCTGCCGAGAAAATGCTGCACGCGCTCGATCATCAGATCGGCAAGCTCAACCCCGCCGTCGAATCGATGGGCCGCGTGACCGCACCCGTCGATGAGGCGCCGCCGGAGATGGTGGACGCCATGCTGGAGGAGGACTTCCTCGAAAACCAAGAGGCTCGTGGTAAAGAATAA	MQVQVNSNHIEGSARLQEWVGSTVVDALQRFEDQLARVEIHVSDENAQKGGAADKRCQIEARVQGHSSLSVSHKAESLELAVEGAAEKMLHALDHQIGKLNPAVESMGRVTAPVDEAPPEMVDAMLEEDFLENQEARGKE				NA	NA	NA	NA	NA
D1-36_01726	1176			hypothetical protein	ATGACCGCTCATCAACCCTTCAGCCGGCAGGTGCTGGCCGAGCTCCTGGCGTTCGACGAACAGCCGAGCCTTTCGTTGTACATGCCCACCCATCGCACATTCCCCGAGCGTAGCCAGGACCCGATCCGCTACAAGAACCTGGTGCGTGACCTGCAAACCCAACTTGAACAACAGCACCCTGGCATGGACTGCGCGCCGTTGCTGGCTCCGTTCCTGGCCTTGGTGGAGGACCAGGGTTTCTGGAATTCCAACCGCGACGGCATCGCGGTGTTCGGTGCCCGTGACTATTTCAAAGTCGTTTCGGTGAGCCAGCGCTTGCCGGAATGCGCGTTCGCCAACAGCCATCCTTATCTCAAGCCGTTGTTGCGCCTGGTGCAGTCCACCGAGCGTTACCAGGCGTTGTGCCTGACCCGCAACGAGATCTGGTTGTATGAAGGTTCCAGCGAGCAGTTGGAAAAAATCGAGCTGGCCGATCCGGTCCCGCGCAACCAGAACGAGGCGTTGGGCGATGAGCTGACGTCGGGTGACCAGCAGGGCTTCCCCAATGGTTTCAGCCGCAGCGGCGAGCGTGGCGATGCGATGATGCATGAGTCCGCCGGTGGCGGTAAGCAGGACGAAATCAACCTGGATCGCGAACGGTTTTTCCGCGCGGTGGACAAAGCTATCCTGCAACATCACTCGCAGCCTTCGGGCCTGCCGATGATCCTGGTGGCCTTGCCGGAAAACCAGGCAGTGTTCCGTGCCGTCAGTCATAACCAGCACCTGCTGACGCAGGGTATCGAGGGCGATCCTTCGCGGTTGAGCGTCGAAGAGTTGCGGGTCCAATGCGCCAAGCTCATGGCCCACAGTCACGCCGACCAAGTGGTCGATAGCCTGAATCGCTATGGCGTCGCGGTCGGCCAGGGACGCGCCCTGGACAAGCTGGCCGACATCGCCAAGGCCGCTTGGGAGGGCCGTGTCGCGATGTTGCTGGTGGAGGCGGAGCGCCAGGTTCCCGGCCAGCTGGACCCGGACAAAGGCCGGTTGATCATCGACGAGACGGGCGATGAACAGGCTCCGGATGTGCTGGACGAACTGATCCTCGCGGTGACGCGTCAAGGCGGTGAAGTGGTCGTGGTGCCGCCCGAGCATGTCATGCCGACCGACACCGGGGCGGCCGCGGTGTGCCGGTTCTGA	MTAHQPFSRQVLAELLAFDEQPSLSLYMPTHRTFPERSQDPIRYKNLVRDLQTQLEQQHPGMDCAPLLAPFLALVEDQGFWNSNRDGIAVFGARDYFKVVSVSQRLPECAFANSHPYLKPLLRLVQSTERYQALCLTRNEIWLYEGSSEQLEKIELADPVPRNQNEALGDELTSGDQQGFPNGFSRSGERGDAMMHESAGGGKQDEINLDRERFFRAVDKAILQHHSQPSGLPMILVALPENQAVFRAVSHNQHLLTQGIEGDPSRLSVEELRVQCAKLMAHSHADQVVDSLNRYGVAVGQGRALDKLADIAKAAWEGRVAMLLVEAERQVPGQLDPDKGRLIIDETGDEQAPDVLDELILAVTRQGGEVVVVPPEHVMPTDTGAAAVCRF				NA	NA	NA	NA	NA
D1-36_01727	1152	ybjJ		Inner membrane protein YbjJ	ATGACCGCTATCACCCCTCCACCTACCTTTGTTCCAGGGCGCCTGGAGCAGATGTCCACCCGTGTCGCCTACCTCATCGCCGGAATCGGCATCGCCGCGTGGGCACCGCTGGTGCCTTATGCCAAGGTGCGGGCGAACCTCGACGAAGGCACCCTCGGGTTGCTGCTGCTATGCCTTGGAGTCGGATCGATCCTGGCGATGCCGATTTCCGGCGCGCTGGCGACACGGTTCGGTTGCCGTCGAGTACTCAGTGGCGGCACGCTTCTGGTCTGCCTGGCGCTGCCATTGCTGGCGACCATGAGTTCCTTGCCGTGGCTGGTGGCGGCGTTGTTCCTGTTTGGCGCCGGGCTCGGCACCGTGGACTCGACGGTGAACCTGCAAGCGGTCATAGTCGAGCGCGCCAGCGGCAAGACCATGATGTCGGGTTTCCACGGCATGTTCAGCCTCGGCGGGATCATTGGCGCCGCCGGTGTGAGCGCCCTGCTCGGCCTGGGACTTTCGCCGCTGGCGGCGACGCTTGTCGTCAATGGCGTGCTGTTGGTGGCGCTGTTCAAGGCAGCGCCGCACCTGCTGCCCTATGGCAGTGAAAGTGCTGGGCCGGCGTTTGCCATTCCCCACGGCGTGGTGCTGTTTATCGGCATCCTGTGCTTTATCGTGTTCCTGGCCGAAGGCGCGGTGCTGGATTGGAGCGCCGTGTTCCTGACCGCCGAACGCGCAGTGGATAGCGCCTATGCCGGGCTGGGTTACGCCGCGTTTGCCTTGACCATGACCATTGGCCGGCTGACGGGCGATTCGGTGGTGCATCGACTGGGGGCCAAGCGGGTGATCATTTACGGCGCAACGATGGCCGCCGCGGGATTTCTGATGGCGACCGTCGCGCCCCTGTGGCAAGCCGCGCTGCTGGGTTATGCATTGGTCGGTGCCGGGTGTTCCAACATCGTGCCGGTGCTGTACACGGCCGTTGGTAAACAGACGCTGATGCCCGAAGCCATCGCCGTGCCGGCTATTACCACCATCGGTTATGCCGGCATTCTCGCAGGCCCGGCATTGATCGGCTTCGTCGCCCATGGCAGCAGCCTGGGCATCGCGTTCGGCTTGATTGCGCTATCGCTGGTGGCGGTGGCGTTTAGCGGTAAGGTGTTGAAAGTCTGA	MTAITPPPTFVPGRLEQMSTRVAYLIAGIGIAAWAPLVPYAKVRANLDEGTLGLLLLCLGVGSILAMPISGALATRFGCRRVLSGGTLLVCLALPLLATMSSLPWLVAALFLFGAGLGTVDSTVNLQAVIVERASGKTMMSGFHGMFSLGGIIGAAGVSALLGLGLSPLAATLVVNGVLLVALFKAAPHLLPYGSESAGPAFAIPHGVVLFIGILCFIVFLAEGAVLDWSAVFLTAERAVDSAYAGLGYAAFALTMTIGRLTGDSVVHRLGAKRVIIYGATMAAAGFLMATVAPLWQAALLGYALVGAGCSNIVPVLYTAVGKQTLMPEAIAVPAITTIGYAGILAGPALIGFVAHGSSLGIAFGLIALSLVAVAFSGKVLKV				NA	NA	NA	NA	NA
D1-36_01728	657			hypothetical protein	ATGAAAGACAAGCGCACCTCAACGCCCATGGCAGAGCTCTACAGCGAAGGCCGAAAACACTTCATCGAACTGGTACCCGACGGCGGCGCGCGCCTCGACGCGTTGTTCCACACTGCTCCGGCGCTTGGCGAACTCGCCGTCGGTGTGGTGTACGGTCATTTGCAGAGTCGTCCCGGCCTCGACCCGCGCCTGCGAGAAGGCGCAACGCTGGCCGCCATCGTGGCGGCCGGAATGGTCGGTCCTCCCCTTAGCGTGCATTTGAAAACCGGGCTCGCATCAGGGTTGGCGCCGGGAGAGATGATTGAACTGGTGGTACAGGCCTCGGCGTTCGCGGGTTTTCCGCGAGCCGTCTCCGCGGCCGATCAGCTCAATCGGTTGTTTGCAGAAGCGGGCCTCGCCTCGCCACCGCCACCCACGCCCCGGGAAGTGACGCTGGACTTTTGCGAGCGGGTGCGCAAGGGCCGTCCGCCCATCCCGGTCCAACCTCAGATCAAGCGGTTGCTGCGCAAAGCCCTACGCTTGTCGGTTCATGGAACGTCGGCCCGGAATGTGGTCGTCGAATGCTTCGATGCAGAATCCGACTTCCCCACCGCCCTGGTGTATTTCGAGGTGGAGGCTGACCATGTGATCAGCCTCAGGTTGTATCAGGCGCGATGA	MKDKRTSTPMAELYSEGRKHFIELVPDGGARLDALFHTAPALGELAVGVVYGHLQSRPGLDPRLREGATLAAIVAAGMVGPPLSVHLKTGLASGLAPGEMIELVVQASAFAGFPRAVSAADQLNRLFAEAGLASPPPPTPREVTLDFCERVRKGRPPIPVQPQIKRLLRKALRLSVHGTSARNVVVECFDAESDFPTALVYFEVEADHVISLRLYQAR	PGPT0005005_747	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
D1-36_01729	1020	dapF_1		Diaminopimelate epimerase	ATGGCACAGTTCTACGACGCACGCGGCAATGTTTATGGAGTCGTTTCCCCGCAGCAAATCCGTGCCGAGGGGATCGATCTTCCGCCGTCTGCCGTCCAGGCAGCGCGAACGCGCCAAGCCTGGAGTTGTGCCGCGGTGCAGGCTTTTTGCGCATGGGCGCCGGGCGAAGCGCCGCCGGATGCCAAGGCCCATCGCAGTGATGGCCTGCTGATTGGCCCGTTCCAGGACGAGCCGCCATTCGATGTGTTGATCGTTAATACCGATGGAACGCTGGCCGAGCGCAGTGGCAATGGCTTGACGATTTTTTCCCTGGCCCTGCAAGAGCGAGGTCTGCTGCCGGAGGACATGGACTTTTTGCTAAGGGTCCATCACGACAAACCCGAAGGTGTCTCACCGCTGCAAACGACGGTTCGCGCCGCCGAGTTCGAAGGCGTGCAAGGGTTCTGGCTGGATCTGGGCAAACCGCTGTTCGGACCCCGTGCCGTCGCTGCCCAAGGGGTGGACAAAGTGACGTCCGGCCGGTGCGAAACAAGCCGGGTGCCTGCGCTTCATGCGTTGGATCCGGCGTGGGGCAATAGCCAGTTCGTGCGCATCGGCAACCCCCACTGCGTGACGTTGGTCGATGACGTGGAGGCATTGCCGAATCTTTCACAGATGCGCGCGCCGATGCTGTCGCAGAGCCTGACCGCCATTGCCTATGCCACCCCCGGCGGGGCGGGCGATCCTTGTCCGGCGGGGATCAATCTGCAATGGGCGTGGCGCGCGGGCGAAGGGCAAGTCGCGGCGCGGGTGTTCGAGCGGGGCGAAGGCCCTACCGCGTCATCAGGCACCAGCGCCAGCGCCGTGGCCAGTGCCGCCTGGCGGTTGGGGTGGGTGAGGGCGGGGGTGGTGAGGGTGGTGATGCCCGGCGGTACGGCGCCGATCCTGCTGGAGGAAGAGGCAGGCGGGCTGGTGCGGGTCAGGTTGTTTGGCGCGGCGCGGCCGATGACGTCTTCGCGAGCAAGCTCGCTCCCACAGTAG	MAQFYDARGNVYGVVSPQQIRAEGIDLPPSAVQAARTRQAWSCAAVQAFCAWAPGEAPPDAKAHRSDGLLIGPFQDEPPFDVLIVNTDGTLAERSGNGLTIFSLALQERGLLPEDMDFLLRVHHDKPEGVSPLQTTVRAAEFEGVQGFWLDLGKPLFGPRAVAAQGVDKVTSGRCETSRVPALHALDPAWGNSQFVRIGNPHCVTLVDDVEALPNLSQMRAPMLSQSLTAIAYATPGGAGDPCPAGINLQWAWRAGEGQVAARVFERGEGPTASSGTSASAVASAAWRLGWVRAGVVRVVMPGGTAPILLEEEAGGLVRVRLFGAARPMTSSRASSLPQ	PGPT0007230_253	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-CYTOKININ_METABOLISM	PHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007230-dapF-K01778	NA	NA
D1-36_01730	1248	codA	COG0402	Cytosine deaminase	ATGCACATCATCAACGCCCGCCTGCGCAACCGCGAAGGCTTGCATGAATTGCACCTGGAAAACGGCCTGATCGCCAGCATCGCCCGCCAGACCGAAGCCCCCAGCCTGGGCCCCGAAGACATTGATGCCGGAGGCAACCTGGTGGTGCCGCCTTTCGTCGAGCCGCACATACACCTGGACGCCACACTGACCGCCGGTGAACCGCGCTGGAACATGAGCGGCACGCTGTTCGAGGGCATCGAATGCTGGGGCGAACGCAAGGCCACCATCACCCAAGAAGACACCAAGACCCGCGCCAAGAAGACTCTCCAGGCCCTGGCCGCCCATGGCATCCAACACGTGCGCACCCACGTCGACGTGACCGATCCGGCGCTCACGGCGCTCAAGGCAATGCTCGAAGTGCGCGAGGAAAGCCGCCATCTGGTCGACATGCAAATCGTCGCGTTCCCCCAGGAGGGCATCGAGTCCTACCGCAACGGCCGCGAGCTGATGGAAGAAGCGATCCGCATGGGCGCCGACGTGGTGGGGGGCATTCCGCATTTCGAATACACCCGCGACCAGGGTGTCAGTTCGGTGAAGTTCCTGATGGACCTGGCCGAGCGCACCGGCTGCCTGGTGGACGTGCATTGTGATGAAACCGACGACCCACACTCGCGCTTCCTCGAAGTGCTCGCCGAAGAAGCGCGCAGTCGCGACATGGGCGCGCGGGTGACCGCCAGCCATACCACGGCGATGGGCTCCTACGACAACGCTTACTGCGCCAAGCTGTTCCGCCTGCTCGGCCACTCTGGAATCAGCTTCGTATCGTGCCCGACTGAAAGCATCCATTTGCAAGGACGCTTCGACAACTTCCCCAAGCGTCGCGGCGTCACCCGGGTCAATGAACTGCTCGAAGCCGGAATGAATGTTTGTTTCGGCCAGGATTCGATCGTCGATCCATGGTACCCGCTGGGCAATGGCAACATCTTGCGCGTGCTCGAAGCCGGGCTACACATCTGCCATATGCTCGGCTATCGCAACCTGCAAAGCGCCCTGGACCTGGTCACCGACAACAGTGCCAAGGCCATGGCCCTGGGCGAGCGCTACGGGCTGGAGCCTGGGCGTCCGGCGAACCTGCTGGTCCTTTCGGCCGACAGCGACTACGAAGTGATCCGCAGCCAGGGCCTGCCGCTTTACTCGATTCGCAAGGGCGAAGTGCTGATGAAGCGGCAGATGCCGGTGGTAGAGTTCGGGCCGCAGCTGAGCTGA	MHIINARLRNREGLHELHLENGLIASIARQTEAPSLGPEDIDAGGNLVVPPFVEPHIHLDATLTAGEPRWNMSGTLFEGIECWGERKATITQEDTKTRAKKTLQALAAHGIQHVRTHVDVTDPALTALKAMLEVREESRHLVDMQIVAFPQEGIESYRNGRELMEEAIRMGADVVGGIPHFEYTRDQGVSSVKFLMDLAERTGCLVDVHCDETDDPHSRFLEVLAEEARSRDMGARVTASHTTAMGSYDNAYCAKLFRLLGHSGISFVSCPTESIHLQGRFDNFPKRRGVTRVNELLEAGMNVCFGQDSIVDPWYPLGNGNILRVLEAGLHICHMLGYRNLQSALDLVTDNSAKAMALGERYGLEPGRPANLLVLSADSDYEVIRSQGLPLYSIRKGEVLMKRQMPVVEFGPQLS	PGPT0021315_1331	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021315-codA-K01485	NA	NA
D1-36_01731	1272	codB	COG1457	Cytosine permease	ATGACCCAGAACGATCCCGGTAATGACTACCCCTTGAGTGAAGTCCCGTTGAGCGCACGCAAGGGCCTGGCTTCCACGGCCATGGTGCTGCTGGGCTTTACGTTTTTCACCGCCACCATGTTTGCCGGTGGCAAGCTGGGCGTGGCGTTCGGTTTCGCGGACATGCTCGGCGTCATCGTCATCGGCAATCTGTTGCTGGGCCTTTATGCCGCGGGCCTGGGTTACATCGCGTTCAAGAGCGGGCTCAATTCAGTGTTGATGGGCCGCCTCTGTTTTGGCGAAGTAGGCAGCAAGCTCAGCGATCTGATCCTGGGCTTTACCCAGATCGGTTGGTACGCCTGGGGCACGGCCACCGCTGCGGTGGTGCTGGGCAAGTACTTCGAGTTGGGCCAGGGCACGGTGCTGGGGCTGATGGTGCTGTTCGGCCTGGGATTCTGCGCCACGGCTTATATCGGCTATCGCGGGCTGGAGATCCTGTCGTACATCGCCGTACCGGCCATGCTGTTGTTGCTGATGCTCTCGATGTGGGTCGCGACGCAGAAGGTCGGCGGCCTCGATGGCCTGCTGGCGGTTGTGCCAACGGGTAATCTGGATTGGTCTACGGCAATCACCCTGGTTTTCGGCACGTTCGTCAGCGGCGCCACGCAGGCGACCAACTGGACACGTTTTTCCCGCTCGGCGAAGGTCGCGGTGCTGGCGAGCCTGATCGGCTTTTTCCTGGGCAATGGCCTGATGGTGTTGATCGGCGCATACGGTGCCATCGTCTACCAGCAGCCCGACGTCGTCGAAGTCCTGTTGTTGCAGGGCTTCGCCATGGCCGCGATGGCAATGCTGCTGCTCAATATCTGGAGCACCCAGGACAACACCATCTACAACTTCGCCGTGGCCGGTTGCAACCTGCTGCGCACTCGCCGACGCAGGGCGGTCACGCTGGTCGGCGCCGCGATCGGCACCCTGTTGGCGTTGCTGGGCATGTACGATTTGCTGGTGCCTTACCTGATCCTGCTCGGCACCGTGATTCCACCGATTGGCGGGGTCATCATGGCCGACTTCTTCTTCCGCTGGCGTGGGCGCTATCCTCGCTTGGCGCAGGCGCAACTGCCTGCGTTCAATTGGCCTGGGCTGGGTGCCTATGCCGTCGGCACCGTTGCGGCGTTCAATTCGCCATGGATCGCACCGCTGGTAGGAATCGCCACCGGCGCGCTAACGTATGTGCTATTGATCGGCGTAACAGGCACTCGCACCGCTGACGCGCCCCTACAAGACCTCTAA	MTQNDPGNDYPLSEVPLSARKGLASTAMVLLGFTFFTATMFAGGKLGVAFGFADMLGVIVIGNLLLGLYAAGLGYIAFKSGLNSVLMGRLCFGEVGSKLSDLILGFTQIGWYAWGTATAAVVLGKYFELGQGTVLGLMVLFGLGFCATAYIGYRGLEILSYIAVPAMLLLLMLSMWVATQKVGGLDGLLAVVPTGNLDWSTAITLVFGTFVSGATQATNWTRFSRSAKVAVLASLIGFFLGNGLMVLIGAYGAIVYQQPDVVEVLLLQGFAMAAMAMLLLNIWSTQDNTIYNFAVAGCNLLRTRRRRAVTLVGAAIGTLLALLGMYDLLVPYLILLGTVIPPIGGVIMADFFFRWRGRYPRLAQAQLPAFNWPGLGAYAVGTVAAFNSPWIAPLVGIATGALTYVLLIGVTGTRTADAPLQDL				NA	NA	NA	NA	NA
D1-36_01732	831		COG0596	putative protein	ATGACTCACTGGCCGCTGGATCAGGTCTACCAGTTCAACGGACACCCCGTCCGCTACGCCATCCACGGCGACGGCCCGCCGCTGGTGTTTGTCCACGGCACGCCCTTTTCTTCCCATGTGTGGCACCGCATCGCCCCGCTCTTCTTCGCCACGCACAAAGTGCATTACTTCGACCTGCTGGGTTATGGCCAATCTGCGCAACCGGACGCCGACGTGTCCCTGGGCGTGCAGAACACACTGCTTGCCCAATTGCTGGAACACTGGAACCTGGAGCGTCCAGACGTAGTGGCCCATGACTTTGGCGGCGCCACCGCGCTGCGTACACATCTGCTCGATGGCAAGGATTACCGAAGCCTGACCCTGATCGACCCGGTGGCCCTGTCGCCCTGGGGTTCGCCTTTCGTCCAGCATGTGCGCCAGCATGAAGCGGCGTTCAGCGGCCTGCCCGATTACATCCAGCGCGCCATCGTGCCGACCTATGTCCGCGGCGCGATGAAACGAGACATCTGCGACGCAGAACTGGCGCCCTACGTGAAGCCGTGGCTTGGCGATCCGGGCCAGGCGGCCTTCTACCGGCAGATTGCGCAGATGGACGAGCGCTACACCCGTGAGGTCGAAGGGCTGTACCCCAGCGTACGCTGCCCGACCCAGATATTGTGGGGTGAAGATGACCAGTGGATCCCCATCGAGCGTGGCCGCGCGCTGCACAAGATGATTCCGGGGGCGCTGTTTCAGGCCGTGCCGAACGCTGGACATCTGGTTCAGGAGGATGCGCCGGAAGCCATCGTCGCGGCGGTGTTGCGGTTCTTAAGGCCGCTTTCCCCTACCTGA	MTHWPLDQVYQFNGHPVRYAIHGDGPPLVFVHGTPFSSHVWHRIAPLFFATHKVHYFDLLGYGQSAQPDADVSLGVQNTLLAQLLEHWNLERPDVVAHDFGGATALRTHLLDGKDYRSLTLIDPVALSPWGSPFVQHVRQHEAAFSGLPDYIQRAIVPTYVRGAMKRDICDAELAPYVKPWLGDPGQAAFYRQIAQMDERYTREVEGLYPSVRCPTQILWGEDDQWIPIERGRALHKMIPGALFQAVPNAGHLVQEDAPEAIVAAVLRFLRPLSPT				NA	NA	NA	NA	NA
D1-36_01733	435	queD	COG0720	6-carboxy-5,6,7,8-tetrahydropterin synthase	ATGCTCGCGCATCACACGGATCAACCTGATAAACTCCGCCGCCTGCCTCGCGACCGCTACCTTAAAGAGCCTGAACCTGTGGAAATCTTCAAAGAATTCACCTTCGAATCCGCCCACCGCCTGCCCCACGTACCCGAAGGCCACAAGTGCGGCCGTCTTCACGGTCACTCGTTCAAGGTGGCTATCCACCTCAGCGGTGACATCGACCCGCACACTGGATGGATTCGCGACTTCTCGGAAATCAAGGCGATCTTCAAGCCGCTCTACGAGCGCCTGGACCACAACTACCTCAACGACATTCCTGGCCTGGAAAACCCGACCAGCGAAGTCCTGGCCAAGTGGATCTGGAATGAGTTGAAGCCGCTGCTGCCGGAACTCAGCGCCATTCGCATCCACGAGACCTGCACCAGCGGCTGCATCTATCACGGGGAGTAA	MLAHHTDQPDKLRRLPRDRYLKEPEPVEIFKEFTFESAHRLPHVPEGHKCGRLHGHSFKVAIHLSGDIDPHTGWIRDFSEIKAIFKPLYERLDHNYLNDIPGLENPTSEVLAKWIWNELKPLLPELSAIRIHETCTSGCIYHGE	PGPT0007880_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007880-folE2-K09007	NA	NA
D1-36_01734	1080			hypothetical protein	ATGACCGCCATCCATATCAAATTCCCAGCCCTCACCGTCAAGGCCGGCTCCCGCGCCTTCAAGCGTATCCGCGAGGCGGGCCTCAAGGCCGCCGATGTTGGCATCCTGCCGGGTGCCGCCGGTGGCCCGAAAGCCTTGGGCATCCAGGGATTGGACCTGGCCCTGTTCGGCGAATGGCTCCCCGCCGCGCCGCGAGAGCGGTCGCTGATCGGGGCTTCGGTTGGCTCCTGGCGCTTTGCCAGCGCCTGTCTGCCGAACGCCGCCGAGGGTATCCGGCGCCTGGGCACTTTGTATAACGAACAGAGCTTCGCCAAAGGCGTGACCATGGCCGGCGTCAGCCAAAGCTCCCAGCGCATGCTCGACGACCTGCTGGAAGGCCGGGACCTGACGATCCTCGACAACCCGCTCTACCGGCTCAATATCATGGTGGTCAAGAGCCACGGCTTGCTGGCACTGGACCACCGTGGCCGGCTGGGCCTGGGCTTGTCATCGGTGATTGCCGACAACTTGCGAGGCCGCGCACGCTTGTCGCGGCATTTTGAGCGGCTGATCGTACACGATCCTCGGTTGGCGCCTCCGCTGAATCCGCTGACAGACTTCCCGTCGCGCTTCGTGCCGCTGGCCGCCGATAACCTGCGCCAGGCGTTGCTGGCGTCGGGCTCGATCCCGATGGTAATGGAAGGCGTGCGCGACCTCCCCGGCGCCGGCGCCGGCACCTACCGCGACGGCGGTCTGCTGGACTATCACCTCGACCTGCCCTACAGCGGCGACGACATAGTCCTTTATCCACACTTCACCGATCGGGTCATTCCCGGCTGGTTCGACAAGGGCCTGCCATGGCGCAGGGGCAACGCCGAACGCCTCCAGAACGTGCTGTTGCTCGCGCCATCGCGCGAATACCTGGCTCGCCTGCCCTACGGCAAACTGCCGGATCGCAACGACTTCAAGCGCTTCATGGGCGATGACCCGAGCCGCCGTAAATACTGGCGCACGGCGATGGACGAAAGCCGCCGGCTCGGCGATGAGTTCCTTGAACTGACGGCCAACGGTGGATGGGGCGAGCGTTTGCTGACCCTTTAG	MTAIHIKFPALTVKAGSRAFKRIREAGLKAADVGILPGAAGGPKALGIQGLDLALFGEWLPAAPRERSLIGASVGSWRFASACLPNAAEGIRRLGTLYNEQSFAKGVTMAGVSQSSQRMLDDLLEGRDLTILDNPLYRLNIMVVKSHGLLALDHRGRLGLGLSSVIADNLRGRARLSRHFERLIVHDPRLAPPLNPLTDFPSRFVPLAADNLRQALLASGSIPMVMEGVRDLPGAGAGTYRDGGLLDYHLDLPYSGDDIVLYPHFTDRVIPGWFDKGLPWRRGNAERLQNVLLLAPSREYLARLPYGKLPDRNDFKRFMGDDPSRRKYWRTAMDESRRLGDEFLELTANGGWGERLLTL				NA	NA	NA	NA	NA
D1-36_01735	309			hypothetical protein	GTGAACCGCCTGACTGCCTTTATTCTCGTGACGCTCATGGCCTTTGGCGCTGGCCTGGCTCAAGCACGAGATCTCCATCGCCATGAGATCAAAAAGCTGGTGGACGCTGGTACCATCCTGCCTTTTGACAAGCTCAACGAAGCGGCCCTGGCCGAACACCCTGACGGCACCGTGATTGATTCAGAGCTGGAAGATGAATACGGCAAGTACCGTTACAAGGTGGACCTGCGCGATGCGGATGGCATCGAATGGGAACTGGAACTCGACGCCGTCAGCGGCAAGGTGCTCAAGAATCATCAGGATACGTAA	MNRLTAFILVTLMAFGAGLAQARDLHRHEIKKLVDAGTILPFDKLNEAALAEHPDGTVIDSELEDEYGKYRYKVDLRDADGIEWELELDAVSGKVLKNHQDT				NA	NA	NA	NA	NA
D1-36_01736	312			hypothetical protein	ATGAAGCTTAGTTTACGCGCCCGCAGCCGCTGGGCGCTGGCGCTGCTGGCGTTCTGTTCACTCGCCATGGCCCGGGACCTGGACCAGGACGAGGCCCTGCAACTGCGCCAACAGGGCGTGATCCTGCCGCTGGAGCAATTGCTCCAACAAGCGCTGGACCGCCATCCTGGCGCCAAGTTGCTGGAGGCCGAGCTGGAGGAAAAGCACGGCGTCTATATTTATGAGGTCGAGCTGCTGGATACCGACGGCGTAGTGCGCGAACTGGACCTGGAGGCCGCTACCGGCCGTTTACTCAAAGATAAGGAAGACTGA	MKLSLRARSRWALALLAFCSLAMARDLDQDEALQLRQQGVILPLEQLLQQALDRHPGAKLLEAELEEKHGVYIYEVELLDTDGVVRELDLEAATGRLLKDKED				NA	NA	NA	NA	NA
D1-36_01737	669	qseB_1		Transcriptional regulatory protein QseB	ATGCGCCTGCTCCTGGTGGAAGACCACGTTCCCCTGGCCGATGAGCTGATGGCCGGGCTTGCGCGGCAGGGTTATGCGGTGGATTGGCTGGCCGATGGTCGTGATGCGATCTACCAGGGCAGCAGCGAGCCCTACGACCTGATCATTCTGGACCTGGGCCTGCCGGGCGTTCCTGGGCTTGAGGTGCTGACGCAATGGCGAGCCGGTGGCCTGGCCACGCCGGTGTTGATCCTCACCGCCCGCGGCTCCTGGGCCGAGCGCATCGAAGGGCTCAAGGCCGGGGCCGATGATTACCTGACCAAGCCCTTTCACCCCGAAGAACTGCACTTGCGCATCCAGGCGCTGCTGCGTCGTTCCCACGGCCAGGCCAATCAACCGACGCTCCAGGCGGCCGGGTTGCACCTGGATGAAGGGCGCCAGTGCGTGATTCGTGACGGAGCGGAGATCCAGCTGACCGCCGCCGAGTTCCGCTTGTTGCGCTATTTCATGTTGCACCCCGAGCAAATCCTCTCCAAGAGTCATCTCGCCGAGCACCTGTATGACGGAGAAACCGAGCGCGATTCCAATGTGCTGGAAGTCCATGTCAACCACTTGCGGCGCAAGCTGGGGCGCAACGTGATCGAAACCCGTCGCGGCCAGGGATACCTGTTCGGCGGGCAGACGCAGTGA	MRLLLVEDHVPLADELMAGLARQGYAVDWLADGRDAIYQGSSEPYDLIILDLGLPGVPGLEVLTQWRAGGLATPVLILTARGSWAERIEGLKAGADDYLTKPFHPEELHLRIQALLRRSHGQANQPTLQAAGLHLDEGRQCVIRDGAEIQLTAAEFRLLRYFMLHPEQILSKSHLAEHLYDGETERDSNVLEVHVNHLRRKLGRNVIETRRGQGYLFGGQTQ	PGPT0011060_302	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS|LIPID|IVA_REGULATION,PGPT0011060-phoP-K07660	NA	NA
D1-36_01738	1314	sasA_8		Adaptive-response sensory-kinase SasA	GTGAGATCCATCCAACGGCGCCTGAGCCTTGGGCTGATCGGTGTGATGGTCGTGGTCGGCCTCGTCCTGGCGCAGACCAGCCTGTGGCTGTTCGAACTGGGCTTGCAGCGTTATCTGGAAGCGGGGCTGCGTAACGACAGCGAGAACCTGTTGGTGGCTTTGGTCCGTGGCCCGCAAGGTTTGCAGTTGGACGAGCGGCGCTTGTCACCGGCGTATCTGCGGCCGTTTTCCGGGCACTATTTCCGCATCGATTTCGCCAACGAGCATTGGCGCTCCCGCTCCCTGTGGGACCAGGAACTGCCCCGGCTCGACCATCCGGGCCTGCACAGCAATCTGCAACTGGGCCCCGAAGGCCAGAGGCTGCTGGTACTGCGCACCGACTATCGGCGCTTGGGCCAGGCAATTTCCATCAGCGTGGCCCAGGACTACACGCCCGTGCGGGACAGCTTCCTGAGGATGCAGCAGGTCGGCTTGGGGCTCGGCCTGGCCGGGTTGCTGCTGATCCTGTTACTCCAGCGCCTCACGGTACATCGCGCGTTGCGTCCGTTGGAAAAGGCTCGGGAGCAGATTGCCCAGTTGCAGCGCGGGCAGCGCTCGCAGCTCGATGAGCAAGTGCCCAGGGAGCTGGAGCCACTGGTGGCGCAGATCAACCATCTGCTGGCCCACACCGAAGACAGCCTCAAGCGCTCACGCAACGCCCTGGGCAACCTGGGCCATGCCTTGAAGACCCCGCTGGCGGTGCTGCAAAGCCTGGCGTCGAACGAAAAGCTCGACCCTTATCCGGAACTGCGCAAGTTGCTGCTCGAACAACTGGAGCAGGTTCGCCAGCGCTTGAACCGCGAACTCAATCGCGCCCGGTTGTCCGGTGATGCGTTGCCCGGGGCGCACCTGGACTGCGACGCCGAACTGCCGGGATTGCTGGCGACGCTGAACATGATCCATGGCGAGCATCTGCATCTGGCCTACGTCGGGCCGCCCGGCTTGCACCTGCCTTGGGATCGTGAAGACCTGCTGGAACTGCTGGGCAACCTGCTGGACAACGCGTGCAAATGGGCCGACGCCGAAGTGCGCCTGAGCGTGAGCGAGACGGTCGAGGGCTTCAGCCTGGTGGTGGAAGACGATGGGCCGGGCATCCCCGCGGAGCGCCGCGACCAGGTATTCAGCCGAGGCACGCGGTTGGATGAGCAAACCGACGGCCACGGCCTGGGGCTGGGCATCGTGCGCGACATCGTCGACACCTGGGGCGGGACGCTGGCGCTGGGTGACAGCGAGTGGGGCGGCTTGAAGGTCGTGATCGACTTGCCCAAGCGCTGA	MRSIQRRLSLGLIGVMVVVGLVLAQTSLWLFELGLQRYLEAGLRNDSENLLVALVRGPQGLQLDERRLSPAYLRPFSGHYFRIDFANEHWRSRSLWDQELPRLDHPGLHSNLQLGPEGQRLLVLRTDYRRLGQAISISVAQDYTPVRDSFLRMQQVGLGLGLAGLLLILLLQRLTVHRALRPLEKAREQIAQLQRGQRSQLDEQVPRELEPLVAQINHLLAHTEDSLKRSRNALGNLGHALKTPLAVLQSLASNEKLDPYPELRKLLLEQLEQVRQRLNRELNRARLSGDALPGAHLDCDAELPGLLATLNMIHGEHLHLAYVGPPGLHLPWDREDLLELLGNLLDNACKWADAEVRLSVSETVEGFSLVVEDDGPGIPAERRDQVFSRGTRLDEQTDGHGLGLGIVRDIVDTWGGTLALGDSEWGGLKVVIDLPKR				NA	NA	NA	NA	NA
D1-36_01739	1320			hypothetical protein	ATGATAAATGCAGTAATTGCGGCGGTTGGCGTCATGCTGGTGCTCAGCCTGTCCCGCGTGCATGTGGTGATCGCGCTGATCGTCGGCGCATTGGTGGGCGGCCTGACGGGCGGCCTGGGGATCGAGGCGACGCTCAAGGCGTTCAATGCAGGCCTGGGCGGCGGCGCTACGGTGGCGTTGTCCTACGCATTGCTGGGTGCTTTCGCCGTGGCGATCGCCAAGTCCGGCATGGCTCACGCCTTGGCCGACAAAGCCCTGGCCATGGTCGACCGCCAGGACGCCGCCGGCGGCACGGGCGTCAAGTGGGTGCTGATCGGCCTGCTGGGTACCGTCGCGGTCGCTTCACAGAATATCCTGCCGATCCACATCGCCTTCATCCCGCTGCTGGTGCCGCCACTTTTATATGTACTGACCAAGTTGCAGATGGACCGCCGGTTGATCGCCTGCGTCATGACCTTCGGCCTGATCACGCCCTATATGTTCCTGCCGGTGGGCTTCGGCAATATTTTCCTTAACGAGATCCTGTTGGCCAACGTCGCGAGAAGTGGCGTGGACGTCAGCGGCATCAACATCACCCACGCCATGGGCATCCCGGCGCTGGGCATGGTGTTTGGCCTGGCGCTGTCGTTTATCACCTATCGCAAGAAACGCGTCTATGACCTGAAGAAAATCGCTCGCGCCGAGCAGGTGGCGGTGCGCTATAACCCGCTCAGCCTGTGGGTGGCGGGGTTGGCGATCGCGGCGGCCTTTGCCATCCAGCTGCTGCTCGACTCGATGATCATCGGCGCCCTGGCCGGCTTCCTGATCTTTTCTGTCTCGGGTGTGGTGCGTTGGCGCGAGACCGATGACCTGTTCACCGAAGGCATGAAGATGATGGCGATGATCGGCTTCATAATGATCGCCGCGTCGGGGTTCGCCGAGGTGATGAAGGCCACCGGTGAAGTCCAGAGCCTGGTTGAAACCTCGGCGGCCTGGATCGGCCACAACAAGGGCGTCGGCGCATTGCTGATGTTGCTGGTGGGATTGTTGGTGACCATGGGCATCGGCTCGTCGTTCTCCACGGTGCCGATCCTGGCGACTATCTTTGTGCCGCTGTGCCTGCAACTGGGTTTCAGCCCGCTGGCGATCGTCTGCATCGTCGGCACCGCCGGCGCCTTGGGCGATGCCGGCTCGCCTGCCTCGGACTCGACGCTGGGCCCGACCTCCGGCCTGAACATCGACGGCCAGCATCACCACATCTGGGACACCGTGGTTCCGACCTTCATCCATTACAACCTGCCGTTGCTGGTGTTTGGTTGGGTGGCGGCGATGGTGTTGTAG	MINAVIAAVGVMLVLSLSRVHVVIALIVGALVGGLTGGLGIEATLKAFNAGLGGGATVALSYALLGAFAVAIAKSGMAHALADKALAMVDRQDAAGGTGVKWVLIGLLGTVAVASQNILPIHIAFIPLLVPPLLYVLTKLQMDRRLIACVMTFGLITPYMFLPVGFGNIFLNEILLANVARSGVDVSGINITHAMGIPALGMVFGLALSFITYRKKRVYDLKKIARAEQVAVRYNPLSLWVAGLAIAAAFAIQLLLDSMIIGALAGFLIFSVSGVVRWRETDDLFTEGMKMMAMIGFIMIAASGFAEVMKATGEVQSLVETSAAWIGHNKGVGALLMLLVGLLVTMGIGSSFSTVPILATIFVPLCLQLGFSPLAIVCIVGTAGALGDAGSPASDSTLGPTSGLNIDGQHHHIWDTVVPTFIHYNLPLLVFGWVAAMVL	PGPT0020805_629	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020805-yuiF-K07084	NA	NA
D1-36_01740	1680	mcpP_1	COG0840	Methyl-accepting chemotaxis protein McpP	ATGCGCCTGAGCTTGAAGGCTAAAGTCCTGTCCCTGGCAATACTGCCGGTATTGCTGTCCGCCGTGATCATCAGCCTGACCACTGCGTTCATCTTGAAGGAACAGGCCAGCAAAGAAGTCCAGCAAACCCGCGAGCGCCTGCTCAGCGAGGCCAAGGCCACCCTACAGAATTATGTCGCGGTCGGGCTGACGGCCATCAAGCCGCTCTACGATGCCGCCGCGCCCGGCGATAACGAGGCGCGTGCCCAGGCGATCAAGTTGCTGTCCAATATCAGCTACGGCAAGGACGGCTATTTCTTCGGCTACGACTCCGAGACCATTCGTCTGTTCAAGGCCAACAGCCCTGATGGTGTGGGCAAGAGTTTCAAGGACAACCGCGATCCGAACGGTGTCTACGTCAACCGTGACCTGGTGAAAGTCGCCAAGGACGGCACGCATTACCTCGAATACAGCTCGCCGCTGCCGGGCAGCAAAGACCTGGTGCCGAAGCTCGGCTACACCGAATACTTGTCCAAGTGGGACCTGGCGGTGGGCAGCTCGGTGAATCTGGATGGCATCGAAGGTCAGGTGGCGTTGGTGGAAGCCAAGGTCCACGATCGGCTGCAAGGCGTGATCCTCAGCATCGTCGGGATTGCCGCCGTGGTGTTGCTGGTGATCGCGGTGGTGGGCCTGGTGCTCGCCAACACCATCCTGCGTCCGTTGCACCTGATGAAGGACAACCTCGACGACATCGCGGCGGGAGAAGGCGACCTGACCCGGCGCCTGGCGATTACCAGCCAGGATGAACTGGGCCAACTGGCCGGTTCGTTCAACCGTTTCGTCGACAAGATCCACGGCCTGGTGCGGCAGATCACCGACATGACCTCGCAGCTGACCGGGCTGGTGACGCAAGTCTCCGAGCAAGCCCAGCGTTCAGAGCAGGCCATGGAACGCCAGCGCCACGAAACCGACCAGGTCGCCACCGCGATCAACGAGATGTCCTCCGCCGCCCAGGAAGTCGCCCGCAGTGCCCAGGGCGCCGCCATCGCGGCCCAGCAGACCGACGAAGAAGGCCAGTCGGCCAAGCGCGTGGTGGCCGGCAGTATCCAGCAGATCCATGCGTTGGTGAACGATATCCGCAGCAGCGGCGTGTCCTTGGACAGTCTGCAACAGGACGTGGCCTCGATCGTCAGTGTCCTGGGAGTGATTCGTTCGATCGCCGAGCAGACAAACCTGCTGGCCCTTAACGCCGCCATCGAGGCCGCGCGGGCCGGCGAAGCGGGACGCGGTTTTGCGGTGGTCGCCGATGAAGTCCGTGCCCTGGCCAGCCGGACCCAGCAAAGCACCCAGGAAATTCAAGGGATGATCGACCGGTTGCAGTCCGGCACCCATGCGGCGGTGGAAGCGATGCGCCGTTCCAGTGAGGCCGGCGACGGCACGTCGGAACGGGCCAATGAGGCCGGCGCTTCACTGGACACCATGGCGCAGCTGATCGGCACCATCAACTCGATGAACGCCCAGATCGCCAGTGCCGCGGAAGAACAGACCGCGGTAGCCGAAGAAATCAACCGCAGCGTTCACCAGATCGCCGTGGCCGTGGACAGCGTTGCCGACGAAACCCAACTCGGCGCCCAGACCTCCCGCAGCCTGGCCGACCTGGGCCAGCGCCTGGGCAAGCTGGTGGGGCAGTTCCGGATCTGA	MRLSLKAKVLSLAILPVLLSAVIISLTTAFILKEQASKEVQQTRERLLSEAKATLQNYVAVGLTAIKPLYDAAAPGDNEARAQAIKLLSNISYGKDGYFFGYDSETIRLFKANSPDGVGKSFKDNRDPNGVYVNRDLVKVAKDGTHYLEYSSPLPGSKDLVPKLGYTEYLSKWDLAVGSSVNLDGIEGQVALVEAKVHDRLQGVILSIVGIAAVVLLVIAVVGLVLANTILRPLHLMKDNLDDIAAGEGDLTRRLAITSQDELGQLAGSFNRFVDKIHGLVRQITDMTSQLTGLVTQVSEQAQRSEQAMERQRHETDQVATAINEMSSAAQEVARSAQGAAIAAQQTDEEGQSAKRVVAGSIQQIHALVNDIRSSGVSLDSLQQDVASIVSVLGVIRSIAEQTNLLALNAAIEAARAGEAGRGFAVVADEVRALASRTQQSTQEIQGMIDRLQSGTHAAVEAMRRSSEAGDGTSERANEAGASLDTMAQLIGTINSMNAQIASAAEEQTAVAEEINRSVHQIAVAVDSVADETQLGAQTSRSLADLGQRLGKLVGQFRI	PGPT0015710_17866	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_01741	1062	ydiK_2	COG0628	Putative transport protein YdiK	ATGAACCGCAAGAACCTCCAAAACAAATCGCAGATGTTGCTGCTGATCCTGGTCAGCATCGCCTTCGTCTGGATCCTGCTGCCGTTCTACGGAGCGGTGTTCTGGGCCGTCATCCTGGGCATCGTCTTCGCGCCGCTGCAGCGGCGGCTGCAATTGAAACTCAACTGGCCGCGCAACCTCACGACGCTGCTGACCCTGACCAGTTGCATGCTGATCGCTGTCTTGCCGGTCATCGTCATCAGCACCTTGCTGGTCCAGGAAGGCGCGGCACTCTACAAGAGCCTGGAAAGTGGCGAGCTGGACGTTGCCGATTACCTGGCCCGCTTCAAGGAAGCATTGCCCCCGTACTTCCAGCACCTGCTGGACCGTTTTGGCCTGGGCAACCTGAGCGGGTTGCGGGACAAGATCGTCAAGAGCGCGATGCAGGGCAGCGAATTCTTCGCCACCCAGGCGTTCAGTTTCGGCCAGGGGACGTTCCAATTCCTGGTGAGCTTTTTCGTGATGCTCTACCTGCTGTTCTTTTTCCTGCGCGACGGTCCGGAACTGGTGCGCAAGGTTCGCTTTGCCGTGCCATTGGCGGAGCACCAGAAGCGCCGCCTGCAGTTGAAATTCAACCGGGTGGTGCGGGCGACGGTGAAAGGCAACCTGTTGGTAGCGATTACCCAGGGCGCACTGGGCGGCTTGATCTTTTGGGTGCTTGGCATTCCGACAGTGCTGCCCTGGGCGGTGCTGATGGCGTTCCTGTCGCTGCTGCCAGCCGTGGGAGCGGGCATCGTCTGGGCGCCGGTGGCGGTGTATTTCCTGCTGTCGGGGGCGATCTGGCAGGGCGTCGTGCTGACCCTGTTCGGTGTATTCGTGATCGGCCTGGTGGATAACTTCCTGCGACCGATCCTGGTGGGCAAGGACACCAAGATGCCCGACTACATGGTCCTGGTCTCGACACTGGGCGGGCTGGCGGTGTTTGGCCTGAACGGCTTCGTCATCGGCCCGTTGATCGCGGCACTGTTCCTGTCGTGCTGGGCGTTGTTCGTCGAAAATACGCCTCGGGTGCAATTGCCTTAG	MNRKNLQNKSQMLLLILVSIAFVWILLPFYGAVFWAVILGIVFAPLQRRLQLKLNWPRNLTTLLTLTSCMLIAVLPVIVISTLLVQEGAALYKSLESGELDVADYLARFKEALPPYFQHLLDRFGLGNLSGLRDKIVKSAMQGSEFFATQAFSFGQGTFQFLVSFFVMLYLLFFFLRDGPELVRKVRFAVPLAEHQKRRLQLKFNRVVRATVKGNLLVAITQGALGGLIFWVLGIPTVLPWAVLMAFLSLLPAVGAGIVWAPVAVYFLLSGAIWQGVVLTLFGVFVIGLVDNFLRPILVGKDTKMPDYMVLVSTLGGLAVFGLNGFVIGPLIAALFLSCWALFVENTPRVQLP				NA	NA	NA	NA	NA
D1-36_01742	183			hypothetical protein	ATGCCCAAGGTTCAAATCATGTCTGTCATTGGCAGCGCCGTCCCCGCCCCGCTCAGGGAACGAGGCCTGCTGGCTTGCTGGTATCTGGTGCAGGACGGCGTGACCATCAGCGGTCCGCTGACTTCACTGCCCGCTGCCCAGGCCATGTCGCAACGCATCGGTCCCTATCTGCTGCGCGCCTAA	MPKVQIMSVIGSAVPAPLRERGLLACWYLVQDGVTISGPLTSLPAAQAMSQRIGPYLLRA				NA	NA	NA	NA	NA
D1-36_01743	195			hypothetical protein	ATGCCAACACAAAACCCTCACCGCATCGTGGGACTGTGCACCTCGAGCAAGGTGTACAACGCACTGACCGAGCTCAAGCACCTGGAAGGCCACCGCAGCGCCAAGTTCCTCTCGCTGCTCGCGGAGAGCCTGGTCCGCAAGGGCCTGCTCAACGAGCAGGAAGTGGTGCACATGCTGGACCTGGTGGTCGATTGA	MPTQNPHRIVGLCTSSKVYNALTELKHLEGHRSAKFLSLLAESLVRKGLLNEQEVVHMLDLVVD				NA	NA	NA	NA	NA
D1-36_01745	1197	tyrB	COG1448	Aromatic-amino-acid aminotransferase	ATGAGCCTGTTTTCCGCTGTCGAATTGGCACCACGCGACCCCATCCTGGGCCTCAACGAAGCTTTCAACGCCGACACCCGTACCAACAAGGTCAACCTGGGCGTAGGTGTTTACTGCAACGAGGAAGGGCGCATTCCATTGCTGCGCGCCGTGGTTGAAGCCGAGACAATTCGCGTGGCTCAGCACGTGTCCCGTGGCTACCTGCCGATCGACGGCATCGCCGCCTATGACCAGGCGGTCCAGACCCTGCTGTTCGGCAAGGACTCCCCGCTGATCGCTTCGGGCCGCGTCATCACCACCCAGGCCGTGGGCGGCACTGGCGCACTGAAGATCGGCGCCGACTTCCTCAAGCAACTGCTGCCAGACGCGGTCGTGGCCATTAGCGACCCAAGCTGGGAAAACCACCGCGCCCTGTTCGAAACCGCCGGTTTCCCAGTACAGAACTATCGCTACTACGACGCCGCCACCCACGACGTGAACCGCAGCGGCCTGCTGGAAGACCTCAACGCCCTGCCCGACCGCTCGATCGTTGTGCTGCACGCCTGCTGCCACAACCCGACCGGCGTGGACCTGAGCCCCGAGGACTGGAAAAACGTGCTGGCCGTGGTCAAGGCCAAGAACCACGTGCCGTTCCTGGACATGGCCTACCAGGGCTTTGGCAAGGGTATTGATGAAGACGCCGCGGCGGTGCGCCTGTTCGCCGAGTCGGGCCTGACCTTCTTCGCCTCCAGTTCGTTCTCCAAGTCGTTCTCGCTGTATGGCGAGCGCGTCGGCGCCTTGTCGATCGTCAGCGAGTCGAAGGAAGAAAGTGCCCGCGTCCTGTCCCAGGTCAAGCGCGTGATCCGCACCAACTACTCCAACCCGCCAACCCACGGCGCCAGCATCGTCGCCGCCGTGCTCAACAGCCCTGAGTTGCGGGCCCAGTGGGAAGAAGAACTGGCCGAGATGCGCCTGCGCATCCGCGGCATGCGCGACCAGATGGTGGACATGCTGGCCAAGGCCGCGCCGCACCACGACTTCAGCTTCGTCGCACGCCAGAGGGGGATGTTCTCCTACTCCGGCCTGACCGTTGAACAAGTGACGCGCCTGCGCAACGAGTTCGGCATCTATGCCCTGGACACCGGCCGCATCTGCGTGGCCGCGCTGAACCAGAACAACATCGATGCGGTAACCAAGGCCATCGTCCAGGTGATCTGA	MSLFSAVELAPRDPILGLNEAFNADTRTNKVNLGVGVYCNEEGRIPLLRAVVEAETIRVAQHVSRGYLPIDGIAAYDQAVQTLLFGKDSPLIASGRVITTQAVGGTGALKIGADFLKQLLPDAVVAISDPSWENHRALFETAGFPVQNYRYYDAATHDVNRSGLLEDLNALPDRSIVVLHACCHNPTGVDLSPEDWKNVLAVVKAKNHVPFLDMAYQGFGKGIDEDAAAVRLFAESGLTFFASSSFSKSFSLYGERVGALSIVSESKEESARVLSQVKRVIRTNYSNPPTHGASIVAAVLNSPELRAQWEEELAEMRLRIRGMRDQMVDMLAKAAPHHDFSFVARQRGMFSYSGLTVEQVTRLRNEFGIYALDTGRICVAALNQNNIDAVTKAIVQVI	PGPT0020310_635	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020310-tyrB-K00832	NA	NA
D1-36_01746	2016	uvrB	COG0556	UvrABC system protein B	ATGTCTGAATTCCAGCTAGTCACCCGCTTCCAGCCCGCCGGCGATCAGCCGGAAGCCATCCGCCTGATGGTCGAAGGCATTGAGGCCGGGCTGGCGCACCAGACGTTGCTGGGTGTGACCGGCTCGGGCAAGACTTTCAGCATCGCCAACGTGATCGCCCAGGTGCAGCGCCCGACGCTGGTGCTGGCGCCGAACAAGACGCTGGCGGCGCAGTTGTACGGCGAGTTCAAGGCATTTTTTCCGAACAACGCGGTGGAATACTTCGTTTCCTACTACGACTACTACCAGCCCGAAGCGTATGTGCCGTCGTCGGACACCTTCATCGAAAAGGACGCCTCGATCAACGACCACATCGAGCAGATGCGGCTGTCGGCGACCAAGGCGTTGCTCGAGCGCAAGGACGCGATCATCGTCACCACGGTGTCGTGCATCTATGGCTTGGGCAGCCCGGAAACGTACTTGAAGATGGTGCTGCACGTGGATCGGGGCGATAAGCTCGACCAGCGCGCCTTGCTCCGGCGCCTGGCGGATTTGCAGTACACCCGCAACGACATGGATTTTGCCCGGGCGACGTTCCGCGTGCGGGGTGATGTGATCGACATCTACCCGGCAGAGTCGGACCTGGAAGCGATCCGCATCGAGCTGTTCGACGACGAAGTGGAAAGCATCTCGGCCTTCGATCCGCTGACCGGCGAAGTGATCCGCAAGATGCCGCGCTTCACCTTCTATCCCAAGAGCCACTACGTAACGCCACGGGAAACCTTGCTGGGCGCCATCGAGGGGATCAAGGCCGAGCTGCAAGAACGCCTGGAATACCTGCGTTCGAACAACAAGCTGGTGGAGGCCCAACGCCTGGAGCAGCGGACCCGCTTCGACCTGGAAATGATCCTGGAATTGGGTTACTGCAACGGCATCGAGAACTACTCGCGCTACCTCTCGGGCCGTCCGGCGGGCGCACCGCCACCCACTTTGTACGACTACCTGCCGCCTGACGCCCTGCTGGTGATCGACGAGTCCCACGTCAGCGTGCCGCAAGTTGGCGCCATGTACAAAGGCGACCGTTCGCGCAAGGAAACCCTGGTGGAATATGGTTTCCGCCTGCCCTCGGCCCTGGATAACCGGCCGATGCGTTTCGACGAATGGGAAAGCGTCAGCCCGCAGACGATTTTCGTCTCGGCCACTCCTGGCAATTACGAGGCCGAGCATGCCGGTCGCGTGGTCGAGCAAGTGGTGCGGCCGACGGGGCTGGTGGACCCGCAGGTCGAGGTGCGCCCGGCACTGACCCAGGTCGATGATTTGCTGTCGGAAATCACGAAACGCGTGGCCTTGGAAGAGCGGGTGCTGGTCACCACGCTCACCAAGCGCATGGCCGAAGACCTCACCGATTACCTGGCAGACCATGGCGTGCGGGTGCGTTACCTGCACTCGGACATCGACACGGTGGAGCGGGTCGAGATCATCCGCGACCTGCGCCTGGGCACTTTCGATGTGTTGGTGGGCATCAACCTGCTGCGCGAGGGTCTGGACATGCCGGAGGTGTCGCTGGTGGCGATCCTCGACGCTGACAAGGAAGGTTTCCTGCGCTCCGAGCGCTCGTTGATCCAGACCATCGGTCGCGCGGCGCGAAACCTCAACGGCCGTGCGATTTTGTACGCCGATCGCATCACCGGGTCCATGGAGCGGGCCATTGGCGAGACCGAGCGCCGCCGCGACAAGCAGATCGCCTTCAACCTGGCCAATGGCATTACGCCTAAAGGCGTGTTCAAGGACGTCGCCGATATCATGGAAGGCGCCACGGTGCCTGGCTCGCGCAGCAAGAAACGCAAGGGCATGGCCAAAGCCGCCGAGGAAAGCGCCCGCTACGAAGCCGAACTGCGCTCGCCGAGCGAAATCACCAAGCGTATCCGGCAATTGGAAGAGAAGATGTACCAACTGGCCCGTGACCTGGAGTTCGAGGCCGCGGCGCAGTTGCGCGATGAGATAGGCAAGTTGCGCGAGCGGTTGCTGACTGTCTGA	MSEFQLVTRFQPAGDQPEAIRLMVEGIEAGLAHQTLLGVTGSGKTFSIANVIAQVQRPTLVLAPNKTLAAQLYGEFKAFFPNNAVEYFVSYYDYYQPEAYVPSSDTFIEKDASINDHIEQMRLSATKALLERKDAIIVTTVSCIYGLGSPETYLKMVLHVDRGDKLDQRALLRRLADLQYTRNDMDFARATFRVRGDVIDIYPAESDLEAIRIELFDDEVESISAFDPLTGEVIRKMPRFTFYPKSHYVTPRETLLGAIEGIKAELQERLEYLRSNNKLVEAQRLEQRTRFDLEMILELGYCNGIENYSRYLSGRPAGAPPPTLYDYLPPDALLVIDESHVSVPQVGAMYKGDRSRKETLVEYGFRLPSALDNRPMRFDEWESVSPQTIFVSATPGNYEAEHAGRVVEQVVRPTGLVDPQVEVRPALTQVDDLLSEITKRVALEERVLVTTLTKRMAEDLTDYLADHGVRVRYLHSDIDTVERVEIIRDLRLGTFDVLVGINLLREGLDMPEVSLVAILDADKEGFLRSERSLIQTIGRAARNLNGRAILYADRITGSMERAIGETERRRDKQIAFNLANGITPKGVFKDVADIMEGATVPGSRSKKRKGMAKAAEESARYEAELRSPSEITKRIRQLEEKMYQLARDLEFEAAAQLRDEIGKLRERLLTV	PGPT0014920_2842	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014920-uvrB-K03702	NA	NA
D1-36_01747	1482	gltX	COG0008	Glutamate--tRNA ligase	ATGACCACCGTCCGTACCCGCATCGCGCCTTCGCCCACTGGCGATCCCCATGTCGGCACCGCTTACATCGCCTTGTTCAACTATTGCTTTGCCAAGCAGCACGGTGGTGAGTTCATCCTGCGGATCGAGGACACCGATCAGTTGCGCTCGACCCGCGAGTCGGAACAGCAGATTTTCGACGCCCTTCGCTGGCTCGGCATCGACTGGAGCGAAGGCCCGGATGTTGGCGGCCCGCATGGCCCGTATCGCCAGAGCGAGCGCGGCGAGATCTACAAGCAGTACTGTCAGCAACTGGTGGACATGGGGCACGCATTCCCTTGTTTCTGCACCGCCGAAGAGCTCGACCAGATGCGCGCCGAGCAGATCGCCCGTGGCGAAACCCCGCGCTATGACGGTCGCGCGCTGCTGCTGTCCAAGGAAGAAGTCGCCCGTCGCCTGGCCGCTGGCGAGCCCCATGTGATCCGCATGAAGGTGCCGACCGAGGGCGTCTGCGTGGTGCCGGACATGCTGCGTGGCGATGTCGAGATCCCATGGGACCGCATGGACATGCAAGTGCTGATGAAGACCGACGGCCTGCCGACGTACTTCCTGGCCAACGTGGTCGACGACCACCTGATGGGCATCACCCACGTCCTGCGCGGTGAGGAGTGGCTGCCGTCGGCGCCGAAACTGATCCTGCTTTACGAGTACTTCGGCTGGGAGCAACCGCAGTTGTGCTACATGCCGCTGCTACGCAATCCGGACAAGAGCAAGCTGTCCAAGCGCAAGAACCCGACCTCGGTGACCTTCTACGAGCGCATGGGCTTCATGCCCGAGGCGATGCTCAACTACCTGGGGCGCATGGGCTGGTCGATGCCCGACGAGCGCGAGAAGTTCTCGCTGCAGGAAATGGTCGAACACTTCGACCTCTCGCGTGTTTCCCTGGGCGGGCCGATCTTCGACGTCGAGAAATTGTCCTGGCTCAACGGCCAATGGCTGCGTGACCTGCCTGTGGAAGAGTTCGCCGCGCGCGTGCAGAAGTGGGCGTTCAACCCTGAATACATGATGAAGATTGCCCCGCACGTGCAGGGCAGGGTCGAGACGTTCAGCCAGATCGCGCCATTGGCCGGGTTCTTCTTTGCCGGTGGCGTGACCCCCGATGCGAAGCTGTTCGAATCCAAGAAGCTTTCGGGCGACCAGGTGCGGCAGTTGATGCAATTGATCCTCTGGAAGCTCGAAAGCCTGCGCCAGTGGGAAAAGGACAGCATCACCGCGACGATTCAGGCAGTGGTCGAATCCCTGGAGTTGAAACTGCGCGACGCAATGCCGCTGATGTTTGCCGCCATTACTGGCCAGGCGAGCTCGGTGTCGGTGCTCGATGCCATGGAAATCCTCGGGCCGGACCTGACCCGTTTCCGCCTGCGCCAGGCCATCGATCTGCTCGGTGGCGTGTCCAAGAAGGAGAACAAGGAGTGGGAAAAGCTGCTGGGCGCGATCGCTTAA	MTTVRTRIAPSPTGDPHVGTAYIALFNYCFAKQHGGEFILRIEDTDQLRSTRESEQQIFDALRWLGIDWSEGPDVGGPHGPYRQSERGEIYKQYCQQLVDMGHAFPCFCTAEELDQMRAEQIARGETPRYDGRALLLSKEEVARRLAAGEPHVIRMKVPTEGVCVVPDMLRGDVEIPWDRMDMQVLMKTDGLPTYFLANVVDDHLMGITHVLRGEEWLPSAPKLILLYEYFGWEQPQLCYMPLLRNPDKSKLSKRKNPTSVTFYERMGFMPEAMLNYLGRMGWSMPDEREKFSLQEMVEHFDLSRVSLGGPIFDVEKLSWLNGQWLRDLPVEEFAARVQKWAFNPEYMMKIAPHVQGRVETFSQIAPLAGFFFAGGVTPDAKLFESKKLSGDQVRQLMQLILWKLESLRQWEKDSITATIQAVVESLELKLRDAMPLMFAAITGQASSVSVLDAMEILGPDLTRFRLRQAIDLLGGVSKKENKEWEKLLGAIA	PGPT0008460_2318	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
D1-36_01752	540			hypothetical protein	ATGAGCGATAAAAAAGCACAGACCCGCGAACGCATTCTCAAGGCCGCCAGCGATGCGCTGATCCAGCGCGGGCCGGCCGAGCCGAGCGTGGGCGAGGTGATGGGGGCGGCCGGGCTGACGGTGGGTGGTTTCTACGCTCATTTCGAAAGCAAGGACGCCTTGATGCTGGAGGCGTTCAAGCAGTTGCTGAACCGCCGCCGTGGTTTGATCGCCGACATGGATGCCGAGCTGACGGGTGAAGAACGGCGCGCCTTGGTCGCGGCCTTCTACTTGTCGCGCAAGCACCGCGATTCAACCGAGCAGGCGTGTCCGATTCCGGCATCGGTCGGGGAGCTCGGGCGGCTGCCGGATGCATTTCGTGAGGTGCTCAATGAGCATATCGAGCTGATGGTCGCGCAATTGGCCGCCAGCCCCGAAGACGCGGACAAAGCCCTGGCTGACATTGCCTTGATGGTCGGCGGCCTGGCGCTGGCACGGGCATTGGGCCCGGGTGAGTTATCGGATCGTTTGCTGCGCGCCGCCAAGTCGGCGGTGCGCTGA	MSDKKAQTRERILKAASDALIQRGPAEPSVGEVMGAAGLTVGGFYAHFESKDALMLEAFKQLLNRRRGLIADMDAELTGEERRALVAAFYLSRKHRDSTEQACPIPASVGELGRLPDAFREVLNEHIELMVAQLAASPEDADKALADIALMVGGLALARALGPGELSDRLLRAAKSAVR				NA	NA	NA	NA	NA
D1-36_01753	834	rutD		Putative aminoacrylate hydrolase RutD	ATGGACAGGTTGAGCTGGATTCGTGGCGTCAATGGCACCCTTGGTTGGATAGCACCGCGCCTGGTGGCGAAGAAAATGCGCAGGGTCTTCATGAGTCCACGCAACCTGCCACCGAGGGCCTGGGAGTTGCCATTGCTTGCCTCGTCCGAGCGCATTACCTTGCGCTTCGGCCTGTCTGCCTTGCGCTGGGGCAAAGGCCCGGCGGTCCTGCTGATGCATGGCTGGGAAGGACGGCCGACGCAGTTCGCTGCCTTGATAACCGCGCTGGTGGATGCTGGTTATACCGTGGTGGCGCTGGACGGACCGGCCCATGGTCGCTCGCCGGGCCACGAAGCCAACGTCCTGTTGTTTGCCCGGGCGATGCTCGAAGCCGCAGCTGAGTTGCCACCGCTGCAAGCGGTGATCGGACACTCCATGGGTGGCGCCAGTGCCATGCTGGCGGTGCAGTTGGGCTTGCGGACCGAGACGCTGGTCAGCATCGCCGCGCCTGCGCGGATCCTCGGCGTGCTGCGTGGGTTCGCCCGGATGATGGGAATGCCCGCCAGGGCCCGCTCGGCGTTCATTCGCCAGGTGGAGCAGGATGTGGGCATGCAGGCTTCGAAGATGGATGTTGCGCAATACCAGCTGGATATTCCAGGGTTGATTGTCCATGCCGAGGACGATACGTCGGTTTCGGTCAGGGAATCGCAACTGATCCATGAAGCCTGGTTCGACAGTCGCTTGCTGCGGTTGTCCGAGGGTGGACACCAGCGAGTCCTGGCCGATCCCCGTGTCATTGATGGCGTGTTATCACTGCTGGCGGGGCGCAGCCTGCAAGCGCGGCAATCGGCTTGA	MDRLSWIRGVNGTLGWIAPRLVAKKMRRVFMSPRNLPPRAWELPLLASSERITLRFGLSALRWGKGPAVLLMHGWEGRPTQFAALITALVDAGYTVVALDGPAHGRSPGHEANVLLFARAMLEAAAELPPLQAVIGHSMGGASAMLAVQLGLRTETLVSIAAPARILGVLRGFARMMGMPARARSAFIRQVEQDVGMQASKMDVAQYQLDIPGLIVHAEDDTSVSVRESQLIHEAWFDSRLLRLSEGGHQRVLADPRVIDGVLSLLAGRSLQARQSA				NA	NA	NA	NA	NA
D1-36_01754	450			hypothetical protein	ATGGGCTGGGATCGGGCAACGCCGTTCATTATTGATCTTCAGGTCAATCCAGAAGATATCGATGGGCTAGGCCACGCCAACAACGCGGTGTACGTCACCTGGCTGGAGCGTTGCGCGTGGCGGCATTCCCAGCGCCTGGGCCTGGATCTGGTGGAATACCGGCGACTGGATCGGGCCATGGCGGTGGTGCGGCATGAAATCGATTATCTGGCGGCCGCCTACGAGGGCGACGAATTGCAGTTGGGGACCTGGATCGTCGACTGGGACCAGCGCCTGAAAATGACCCGGCATTTCCAGCTGGTCCGTCCCAGTGATAACACCACATTGCTGCGGGCCCAGACCACTTTCGTCTGCATCGAACTGTCTACCGGCCGGCCCAAGCGCATGCCGCCGGAGTTCATCGAAGGTTATGGCGTGGCGCTGAATTCATCTGGCCTCTTTTTAGACTGA	MGWDRATPFIIDLQVNPEDIDGLGHANNAVYVTWLERCAWRHSQRLGLDLVEYRRLDRAMAVVRHEIDYLAAAYEGDELQLGTWIVDWDQRLKMTRHFQLVRPSDNTTLLRAQTTFVCIELSTGRPKRMPPEFIEGYGVALNSSGLFLD	PGPT0001850_3076	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0001850-ybgC-K07107	NA	NA
D1-36_01755	960	dusC	COG0042	tRNA-dihydrouridine(16) synthase	ATGCAAATTGCCTTGGCGCCCATGGAGGGGTTGGTCGACAACATCCTGCGGGACGTCCTGACCCGTGTTGGCGGCATCGATTGGTGCGTCACCGAGTTCATTCGCGTCAACGACCGTCTGCTCACGCCGGCCTATTTCCATAAGCTTGCCCCTGAACTGTTGACCGGTGCCCAAACAGCGGCGGGTGTGCCCCTGCGTGTGCAGTTGCTCGGTTCCGACCCGGTATGCCTGGCGGAAAACGCGGCGCTGGCCTGCGAGCTGGGCTCCGAGGTGATCGATTTGAATTTCGGGTGCCCGGCCAAGACAGTGAACAAGTCACGGGGCGGGGCGGTGTTGCTCAAGGAGCCAGAGCTGCTCAACGAAATCGTGGAACATGTCCGTCGTGCGGTGCCCAAGCACATTCCGGTTACGGCGAAGATGCGCCTGGGTTTCGACAGCCCGGACGGCGCGCTGGTCTGCGCCACGGCGCTGGCCGAGGGCGGCGCGGCGCACATCGTCGTGCATGCGCGGACCAAGGTCGACGGCTATAAGCCACCGGCCCACTGGGAGTGGATTCCCCGCGTCCAGGAAGTGGTCAAGGTGCCGGTGTTCGCCAACGGCGATATCTGGTGCGTCGATGACTGGCGTCGGTGCCGGGAAATCAGCGGTGTCGAAGACATCATGCTCGGCCGTGGACTGGTCTCCCGTCCCGACCTGGCGCGGCAGATCGCCGCCGCCCGGGCGGGTGAAGAGGTTATCGAGATGTCTTGGGCCGACCTGCAACCGATGCTCCAGGATTTCTGGGTACAGGTGGTGGAGCAATTGACCCCTCGCCAGGCGCCGGGTCGCTTGAAGCAATGGCTGGCCATGCTGACCCGCAATTACCCCGAAGCCGTGGAGTTGTTCGGCGCGCTACGGCGGGAAACGGAACTGGATGCGGTGGGCCATTTATTGGGTGTGCAGCGCACCGAAGCGGCCTGA	MQIALAPMEGLVDNILRDVLTRVGGIDWCVTEFIRVNDRLLTPAYFHKLAPELLTGAQTAAGVPLRVQLLGSDPVCLAENAALACELGSEVIDLNFGCPAKTVNKSRGGAVLLKEPELLNEIVEHVRRAVPKHIPVTAKMRLGFDSPDGALVCATALAEGGAAHIVVHARTKVDGYKPPAHWEWIPRVQEVVKVPVFANGDIWCVDDWRRCREISGVEDIMLGRGLVSRPDLARQIAAARAGEEVIEMSWADLQPMLQDFWVQVVEQLTPRQAPGRLKQWLAMLTRNYPEAVELFGALRRETELDAVGHLLGVQRTEAA	PGPT0013740_4	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927	NA	NA
D1-36_01757	453	ibpA	COG0071	Small heat shock protein IbpA	ATGAGTACTGCATTTTCGCTGGCCCCTCTGTTCCGTTCCTCGGTGGGCTTCGACCGTTTCAACGACCTGTTCGAAACCGCACTGCGCAACGAACCGGGCAGCAGTTATCCACCTTACAACGTGGAAAAACACGGCGATGACGAATACCGCATCGTAGTCGCCGCTGCCGGGTTCCGGGAAGAAGACCTGGACCTGCAAGTGGAAAAAGGTGTGCTGACCATCAGCGGCGGCAAGCGCGAGGCCAGCAACGACAGCGTGACCTACCTGCACCAAGGCATCGCCCAGCGGGCGTTCAAGCTGTCCTTCCGGTTGGCGGATCATATCGAGATCAAGGCCGCCGGCCTGAGCAACGGTCTGTTGAGCATCGACCTGTTGCGCGTGGTACCGGAAGAGGCGAAAGCCAAGCGCATCCCGATCAACGGTGCGCAGCAAAAACCCGCGCTGGAGAATTGA	MSTAFSLAPLFRSSVGFDRFNDLFETALRNEPGSSYPPYNVEKHGDDEYRIVVAAAGFREEDLDLQVEKGVLTISGGKREASNDSVTYLHQGIAQRAFKLSFRLADHIEIKAAGLSNGLLSIDLLRVVPEEAKAKRIPINGAQQKPALEN	PGPT0014641_1039	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014641-ibpA-K04080	NA	NA
D1-36_01758	3279			hypothetical protein	ATGCCCAAACCCGCCGACCATCTTCCGCCCCTGCCGCGTATCCAGGCGCTCGACCCGAAGCGGTCCGAGCAAAGCTGGGACAGCGCGCCACAGCTGCTGGCCGCCCTGAACGGAGCGCGGCTGGGGGCTTGGTCGTGGGACATCGATACCGGGCAGATCAGTTGGTCCCGAGGCACCCAGGCACTGTTCGGCTTCGATCCGCGCCAACCGTTACCCGCCGACGTGGACTACCTCGATCTGTTGCTGCCCGAGGACCGGGCCCGGGCCATGCGCGCGTTTCACGCGGCGGTGGCCGGCGCACCGCTCGAGCAGGCCATGCACCACCGAATCGTCTGGCCCGACGGCAGCCTGCATTGGCTGGAAATCAGCGGCAGCGTATTGCCCGACAAACATGGCCGTCCACGCATGATCGGGGTCATTCGCGAGATCACCCACCAGCGCGAACGGGAACAGGCGCTGCGCAGCTCGGAAAAACGCTTCGCCACGCTTTTTCATCTTTGCCCGAACATGGTCTTGCTGACCCGCCAGGAGGACGGCCTGATCAGCGAAGCCAACCAGTATTTCGAAAGCCTGTTCGGCTGGCCGGTTCACGATGTGATTGGCCGCACCACTCTGGAACTGGGCCTGTGGGTCGACCCCAGGCAACGGACGAAGCTGGTGGAGGCGACCAAGGCCAAAGGCGAACTGGTGAGCATGGAAGTGGAGTTCCGGGCCAGTAACGGCCAGGTCCACAACGGCATCCTTAGCGCGCAGAAAGTCGAACTCGAAGGCCAACCGTACCTGCTGAGCACGTTCCTCGATACCACCGAGCGCAAACTCGCCGAACAGGCCCTCAAGGACAGCCAGGAACGCCTGGACCTGGCCCTCGACTCGGCGCAACTGGGCACCTGGGACTGGCACATTCCCAGCGGCATGCTCTACGGTTCGGCCCGGGCCGCGCAGCTCCATGGCCTGGAGCCCAAAGCCTTTCATGAATCGTTCGACGCGTTTTTCGAGGGCGTACCCACCGAAGAACGCAACAACATGCGCAACGCCTACCGCAGCCTGCGCGAAGGCCCGGCGGGCAACTATCAATTGACCTATCGCGTGCAGCTGCCGGACGGCAGCTCACGCTATCTGGAGAGCCGCGCCCGCCTCTACCGCGACGACGACGGCAGCCCCTTGCGCATGGCCGGCACTTTGCTCGACATCACCGATCAGGTGGAGCGCGAACAGAGCCTGGCGGCATCGGAAGAAAAATTCGCCACACTGTTCCAGGTCAGCCCCGACCCGATCTGCGTGACCCACCAGGACGATGGTAGATTCCTGGAAATCAACTCCAGCTTCACCCAGACCTTCGGCTGGGCGGCCAGCGACGTCATCGGCCGCAGCGCCGACGAGATTGGTCTGTGGGACGCGTCCGGCAGCAGCCTGCAACGCATCGAACGGGTGATCCGCGAGCAATCGCTGAGCAATGTCGCCATCGTCGTCCACCACAAGAACGGCCAGCCGCTGACCTGCGTTATTTCCAGCCGGCAGATCCACGTCGGCAACCAGCCCTGCATCGTCACCACCCTGCGGGACATCACCCAGCAGCAGCGTTCCGAGGCGGCGCTCAAGGCCAGCGAGGAAAAATTCGCCAAGGCTTTCCACTCCAGCCCTGACGCCATCACCATCACTGAATGCGAAAGCGGCCGCTACCTTGAGGTCAACGACGGTTTCTGCCGCCTCACTGGCTATCGCGCCGACGAAGTGGTCGGCCACACAGTGTACGAAGTCGGCATCTGGGCCGAGGAAAAACAACGCACGGCGCTGCTGGCAGAGCTACAGCTCAAGGGCCGGGTCGTGCATCAGGAAATGCTCGGGCGCAACAAGCGTGGGGAAATCCTCACGGTGGAAGTGTCGGTGGAACCCATCACGCTCAACGAGACCGCCTGTCTGCTGCTGACAGCCCGGGACGTCAGCCTGCTGCGCAACGCCGAAGCGCAGATCCGCCACCTGGCCTATCACGACCCACTCACCAACCTGCCCAACCGGGCGTTGTTGATGGACCGCTTGAGCCAGCAGATCGCCTTGCTCAAGCGCCACAACCTTCGCGGAGCCCTGCTGTTCCTCGACCTGGACCACTTCAAGCACATCAATGACTCCCTCGGCCATCCGGTGGGCGATACGGTGCTTAAGATCATCACCGCACGCCTCGAAGCCAGCGTGCGCCTCGAAGACACCGTGGCGCGGCTGGGTGGCGACGAGTTCGTGGTACTGCTCAGCGGCCTCGAAGGCACACGGGCCGCGGTCAGCAAACAGGTACAGAACCTGGCCGACACCCTGCGTGACCTGCTCTCGGAGCCGATGTTCCTGGACGGCCAACGGCTTCAAGTCACCCCCAGCATTGGCATGGCGCTGATTCCGGACCACGGATCCACCCCGACCGACCTGCTCAAGCGCGCCGACATTGCCCTCTACCGCGCCAAGGACTCGGGGCGCAACACGTCGCAGATGTTCCACGCCACCATGCAAAAAGCCGCGAGCGAGCGATTGCGCATGGAAACCGACTTGCGTCAGGCCCTGGCTCGCAACGAGTTCAGTTTGCATTTCCAGCCCCAGATCGATGCCCGGGACAATCGCATCATCGGCGCCGAAGCCCTGGTCCGTTGGCATCATCCGGACCTGGGTGCGCAGTCGCCCAACGAGTTCATCAAGGTACTGGAAGACAGCGGCTTGATCCTGGAGGTCGGGACCTGGATCCTCGATGAAGCCTGCAACGGCTTCAAGCAGTTGATCGCCAAGGGCAAGGTCGATCCGCAGCGCTTCAAATTGTGCGTCAACATCAGCCCACGGCAGTTTCGCCAGAGTGATTTCGTCGAACGCATCGAAAGCAGCCTCTCCCGTCACGGCCTGCCCTATTGCGTGCTCAAGCTGGAAATCACCGAAGGCATCGTAATCCAGAACCTGGACGACACCATCGGCAAGATGCGTCGCCTCAAGAAACTGGGCGTGAGCTTCGCCATGGATGATTTCGGCACGGGATACTCGTCGCTGACGTACCTCAAACGCCTACCGGTCGACACGTTGAAAATCGATCAATCCTTCGTGCGGGACGCCACCAGCGACCCCAACGACGCCGAAATCATCCGCGCCATCGTGGCCATGGCCCGTAGCCTGAACCTGGAAATGATCGCCGAAGGGGTGGAAACGCTGGAACAATTGCAGTTCCTGCAGGGGCTCGATTGTCATTTGTACCAGGGTTACCTGCACAGCCGGCCGTTGCCGCTGGAGGCGTTTGAGCGGTTGTTGCCCTAA	MPKPADHLPPLPRIQALDPKRSEQSWDSAPQLLAALNGARLGAWSWDIDTGQISWSRGTQALFGFDPRQPLPADVDYLDLLLPEDRARAMRAFHAAVAGAPLEQAMHHRIVWPDGSLHWLEISGSVLPDKHGRPRMIGVIREITHQREREQALRSSEKRFATLFHLCPNMVLLTRQEDGLISEANQYFESLFGWPVHDVIGRTTLELGLWVDPRQRTKLVEATKAKGELVSMEVEFRASNGQVHNGILSAQKVELEGQPYLLSTFLDTTERKLAEQALKDSQERLDLALDSAQLGTWDWHIPSGMLYGSARAAQLHGLEPKAFHESFDAFFEGVPTEERNNMRNAYRSLREGPAGNYQLTYRVQLPDGSSRYLESRARLYRDDDGSPLRMAGTLLDITDQVEREQSLAASEEKFATLFQVSPDPICVTHQDDGRFLEINSSFTQTFGWAASDVIGRSADEIGLWDASGSSLQRIERVIREQSLSNVAIVVHHKNGQPLTCVISSRQIHVGNQPCIVTTLRDITQQQRSEAALKASEEKFAKAFHSSPDAITITECESGRYLEVNDGFCRLTGYRADEVVGHTVYEVGIWAEEKQRTALLAELQLKGRVVHQEMLGRNKRGEILTVEVSVEPITLNETACLLLTARDVSLLRNAEAQIRHLAYHDPLTNLPNRALLMDRLSQQIALLKRHNLRGALLFLDLDHFKHINDSLGHPVGDTVLKIITARLEASVRLEDTVARLGGDEFVVLLSGLEGTRAAVSKQVQNLADTLRDLLSEPMFLDGQRLQVTPSIGMALIPDHGSTPTDLLKRADIALYRAKDSGRNTSQMFHATMQKAASERLRMETDLRQALARNEFSLHFQPQIDARDNRIIGAEALVRWHHPDLGAQSPNEFIKVLEDSGLILEVGTWILDEACNGFKQLIAKGKVDPQRFKLCVNISPRQFRQSDFVERIESSLSRHGLPYCVLKLEITEGIVIQNLDDTIGKMRRLKKLGVSFAMDDFGTGYSSLTYLKRLPVDTLKIDQSFVRDATSDPNDAEIIRAIVAMARSLNLEMIAEGVETLEQLQFLQGLDCHLYQGYLHSRPLPLEAFERLLP	PGPT0023624_512	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-GGDEF|EAL|PAC|PAS-DOMAIN-CONTAINING_PROTEIN,PGPT0023624-GGDEF|EAL|PAC|PAS_domain_containing_protein-NA	NA	NA
D1-36_01759	891	cmpR_3		HTH-type transcriptional activator CmpR	ATGGACTTAGCCAACCTCAACGCCTTTATTGCCATCGCCGAGACCGGCAGTTTCTCCGGAGCCGGCGAGCGCCTGCACCTCACCCAGCCCGCTATCAGCAAGCGTATTGCCGGGCTGGAACAACAGCTCAATGTGCGCCTCTTCGACCGGCTGGGCCGTGAAATTGGCCTGACCGAAGCCGGCCGGGCGCTGCTGCCCCGGGCCTATCAGATTCTCAACGTGCTCGACGACACCCGCCGCGCCCTGACCAATCTGACCGGCGAAGTGACCGGGCGGCTGACCCTCGCCACCAGTCACCACATCGGCTTGCATCGCCTGCCCTCCTTATTAAGGGAATTCACCCGACGCTACCCACAGGTGGCATTGGATATTCAGTTCCTTGATTCGGAAGTGGCCTACGAGGAAATCCTTCACGGTCGCGCGGAACTCGCCGTCATCACCCTCGCCCCCGAGCCCCACGCACTGGTAAGGGCCAAGCCGGTGTGGGACGACCCGCTGGATTTCGTCGTAGCGCCGGAACACGCGCTGCTGGAAAACGGCGCAGTGAGCCTGGCGGACATCGCCTTGCATCCGGCGGTGTTCCCTGGCGGCAATACCTTCACCCATCACATCGTCCAGCGACTGTTCGAAGCCCAAGGCCTGACACCGAACATCGCCATGAGCACGAATTATCTGGAAACCATAAAGATGATGGTCTCCATCGGCCTGGCCTGGAGCGTCCTGCCGCGCACCATGCTCGACGAACAGGTGGCGCGCATTCCTTTGCCGGGCATACAGCTCAGTCGCCAGCTAGGCTATATCGTGCACACCGAACGGACGCTGTCGAATGCAGCACGGGCTTTCATGGCTCTACTGGACGCACAAATCGATCTGCCAGGGACAAGGGCATAA	MDLANLNAFIAIAETGSFSGAGERLHLTQPAISKRIAGLEQQLNVRLFDRLGREIGLTEAGRALLPRAYQILNVLDDTRRALTNLTGEVTGRLTLATSHHIGLHRLPSLLREFTRRYPQVALDIQFLDSEVAYEEILHGRAELAVITLAPEPHALVRAKPVWDDPLDFVVAPEHALLENGAVSLADIALHPAVFPGGNTFTHHIVQRLFEAQGLTPNIAMSTNYLETIKMMVSIGLAWSVLPRTMLDEQVARIPLPGIQLSRQLGYIVHTERTLSNAARAFMALLDAQIDLPGTRA				NA	NA	NA	NA	NA
D1-36_01760	1419	leuC_1	COG0065	3-isopropylmalate dehydratase large subunit	ATGGCCGGCAAAACGCTCTACGACAAGCTCTGGGATTCGCATTTGGTCAAGCAGCGCGACGATGGCTCGGCGCTGATCTACATCGATCGTCACATCATCCATGAAGTGACTTCGCCGCAAGCCTTCGAAGGCCTGCGCCTGGCTGGGCGCAAGCCTTGGCGCATCGATGCCAACATCGCCACCCCGGACCACAACGTACCGACCACCCCGGAGCGCAAGGGCGGCATCGAAGCCATTGCCGACCAGGTCTCGCGCCTTCAAGTCCAGACCCTCGACGACAACTGTGATGAATACGGCATCGTTGAATTCAAGATGAACGACGTGCGCCAGGGCATCGTCCATGTCATCGGCCCGGAGCAAGGCGCGACCTTGCCCGGCATGACCGTGGTCTGCGGTGACTCCCATACCTCGACCCACGGCGCATTCGGCGCCTTGGCCCACGGCATCGGCACTTCCGAGGTCGAGCACGTGCTCGCCACCCAGTGCCTGGTCGCCAAGAAAATGAAAAACATGCTGGTGCGCGTCGAGGGCAAGTTGCCGTTCGGCGTGACCGCCAAGGACATCGTCCTGGCCGTGATCGGCAAGATCGGTACCGCTGGCGGTAACGGCCATGCCATCGAGTTCGCTGGCAGCGCGATCCGCGACTTGTCCGTCGAGGGCCGCATGACCATCTGCAACATGTCCATCGAAGCCGGCGCGCGCGTCGGGTTGGTGGCCGCCGATGAAAAAACCGTCGAATACGTCAAGGGCCGTCCGTTCTCGCCAAAAGGCGCGGAGTGGGACATGGCGGTCGAAGCCTGGAAAGACCTGGTCTCTGACCCGGACGCCAAATTCGACACCGTGGTCGAGCTCGATGCGACGCAGATCAAGCCGCAAGTCAGCTGGGGCACTTCGCCGGAAATGGTCCTGGCCGTGGACCAGAACGTGCCGGATCCGGCCAAGGAAACGGACCTGGTCAAGCGCGACTCCATTGTCCGTGCCTTGAAGTACATGGGCTTGAGCGCCAACCAGGCGATCACCGACATTCAGCTCGACCGTGTTTTCATCGGCTCCTGCACCAACTCGCGGATTGAGGACCTGCGTGCCGCGGCGGTCATCGCCAAGGGCCGCAAGGTCGCCTCGACCATCAAACAGGCCATCGTGGTGCCGGGCTCGGGCCTGGTGAAGGCCCAGGCCGAAGCGGAAGGGCTGGACAAGATTTTCCTCGAAGCCGGTTTCGAATGGCGTGAGCCGGGTTGCTCGATGTGCCTGGCAATGAACCCGGACCGCCTGGAGTCGGGCGAGCATTGCGCCTCGACGTCCAACCGAAATTTCGAAGGCCGTCAGGGTGCCGGTGGTCGTACGCACCTGGTTAGCCCGGCGATGGCCGCTGCGGCAGCTGTCAACGGCCGTTTCGTCGACGTCCGCGAATTGATCTGA	MAGKTLYDKLWDSHLVKQRDDGSALIYIDRHIIHEVTSPQAFEGLRLAGRKPWRIDANIATPDHNVPTTPERKGGIEAIADQVSRLQVQTLDDNCDEYGIVEFKMNDVRQGIVHVIGPEQGATLPGMTVVCGDSHTSTHGAFGALAHGIGTSEVEHVLATQCLVAKKMKNMLVRVEGKLPFGVTAKDIVLAVIGKIGTAGGNGHAIEFAGSAIRDLSVEGRMTICNMSIEAGARVGLVAADEKTVEYVKGRPFSPKGAEWDMAVEAWKDLVSDPDAKFDTVVELDATQIKPQVSWGTSPEMVLAVDQNVPDPAKETDLVKRDSIVRALKYMGLSANQAITDIQLDRVFIGSCTNSRIEDLRAAAVIAKGRKVASTIKQAIVVPGSGLVKAQAEAEGLDKIFLEAGFEWREPGCSMCLAMNPDRLESGEHCASTSNRNFEGRQGAGGRTHLVSPAMAAAAAVNGRFVDVRELI	PGPT0001442_1709	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALATE_UTILIZATION,PGPT0001442-leuC-K01703	NA	NA
D1-36_01761	645	leuD1_1	COG0066	3-isopropylmalate dehydratase small subunit 1	ATGAAAGCTTTTACCCAGCACACCGGTCTTGTCGCGCCTTTGGATCGTGCCAATGTCGACACCGACCAGATCATCCCCAAGCAATTCTTGAAATCCATCAAGCGCACCGGCTTCGGCCCGAACCTGTTCGACGAATGGCGCTACCTGGATGTCGGCCAGCCGTACCAGGACAACTCCAAGCGTCCGCTGAACAAGGACTTCGTGCTCAACGCCGAGCGCTACCAAGGCGCCAGCGTGTTGCTGGCCCGTGAGAACTTCGGCTGCGGCTCGAGCCGCGAGCACGCGCCGTGGGCCCTGGAAGAGTACGGTTTCCGCAGCATCATCGCGCCGAGTTACGCGGACATTTTCTTCAACAACAGCTTCAAGAACGGCCTGCTGCCGATCATCCTCAGCGATGCCGAAGTGGACGAGCTGTTCCAGCAGGTCGAGGCCAATCCTGGTTATCAATTGCAGATCGACCTGGCCGCGCAGACGGTGACCCGCCCCGACGGCAAGGTGCTGGGTTTCGAGATCGATGCGTTTCGCAAGCATTGCCTGCTCAATGGCCTGGATGACATCGGCCTGACCTTGCAGGACGGCGAGGCAATTGCCGCGTTCGAGGCCAAGCATCGGGCGAGCCAGCCTTGGTTGTTTCGCGATGCTTGA	MKAFTQHTGLVAPLDRANVDTDQIIPKQFLKSIKRTGFGPNLFDEWRYLDVGQPYQDNSKRPLNKDFVLNAERYQGASVLLARENFGCGSSREHAPWALEEYGFRSIIAPSYADIFFNNSFKNGLLPIILSDAEVDELFQQVEANPGYQLQIDLAAQTVTRPDGKVLGFEIDAFRKHCLLNGLDDIGLTLQDGEAIAAFEAKHRASQPWLFRDA	PGPT0001443_742	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALATE_UTILIZATION,PGPT0001443-leuD-K01704	NA	NA
D1-36_01762	765	ycgJ		putative methyltransferase YcgJ	ATGACCAGCACCGCCCACAGCCAAGTCGTCCAAAAGCAATTCGGTGAACAGGCCTCGGCCTACCTGAGCAGTGCCGTGCACGCCCAGGGCACCGAGTTCGCCCTGCTACAGGCCGAGCTGGCCGGTCGTGGCGATGCCCGTGTGCTGGACCTGGGTTGCGGCGCCGGCCATGTGAGTTTCCACGTGGCGCCGCTGGCCGGTGAGGTGGTGGCGTACGATCTGTCCCAGCAGATGCTCGACGTGGTGACGGCGGCGGCTGCCGAGCGTGGCCTGGGCAATATCAGCACGGTTCGTGGCGCCGCCGAGCGGTTGCCGTTCGCCGACGCTGAGTTCGACTTCGTGTTCAGCCGCTATTCGGCGCATCATTGGAGCGACCTCGGCCTGGCATTGCGGGAAGTGCGCCGGGTGCTCAAGCCGGGCGGGGTGGTAGCGTTCATCGATATCCTGTCGCCTGGCACGCCGTTACTGGACACCTACCTGCAAAGCATCGAAGTGCTGCGCGACACCAGCCATGTGCGCGACTATTCGGCCGCCGAATGGTTGCGCCAGGTCAGCGAAGCGGGGCTGCACACTCGCAGCACGTCGCGCCAGCGCCTGCGCCTGGAGTACCAGTCCTGGGTCGAGCGCATGCGCACCCCCGAGGTGATGCGTGCGGCGATTCTTGAGCTGCAGCGTTCGATGGGCGACGAAGTGCGTGAATATTTTCAGATTGAGGCCGATGGTTCGTTCAGTACAGATGTGCTGGTGCTGTGGGCCGAGCGATAG	MTSTAHSQVVQKQFGEQASAYLSSAVHAQGTEFALLQAELAGRGDARVLDLGCGAGHVSFHVAPLAGEVVAYDLSQQMLDVVTAAAAERGLGNISTVRGAAERLPFADAEFDFVFSRYSAHHWSDLGLALREVRRVLKPGGVVAFIDILSPGTPLLDTYLQSIEVLRDTSHVRDYSAAEWLRQVSEAGLHTRSTSRQRLRLEYQSWVERMRTPEVMRAAILELQRSMGDEVREYFQIEADGSFSTDVLVLWAER				NA	NA	NA	NA	NA
D1-36_01763	1083	leuB		3-isopropylmalate dehydrogenase	ATGAGCAAACAGATTCTGATTCTCCCAGGTGACGGCATCGGCCCGGAAATCATGGCCGAGGCGGTCAAGGTCCTGGAGTTGGCGAACGACAAGTACGGCCTGGGCTTCGAACTCAGCCACGACGTCATCGGTGGCGCGGCCATCGACAAGCACGGCGTACCCCTGGCCGATGAAACCCTGGACCGTGCCCGTGCCGCCGATGCCGTGCTGCTGGGCGCCGTGGGCGGCCCGAAATGGGACAAGATCGAACGCGACATCCGCCCGGAGCGCGGCCTTCTGAAGATTCGTGCGCAACTGGGTCTGTTTGGCAACCTGCGTCCGGCGATCCTTTATCCGCAACTGGCTGACGCGTCGAGCCTGAAGCCGGAAATCGTCTCGGGCCTGGACATCCTCATCGTCCGCGAACTGACCGGCGGTATCTACTTCGGCGCCCCGCGCGGCACCCGTGAGCTGGAGAATGGCGAGCGCCAGGCCTACGACACCCTGCCATACAGCGAAAGCGAAATCCGCCGTATCGCCCGGGTCGGCTTCGACATGGCCCGCGTGCGGGGCAAGAAACTGTGCTCGGTGGACAAGGCCAACGTGCTGGCTTCCAGCCAACTGTGGCGCGAAGTGGTCGAGCAGGTGGCCAAGGATTACCCGGACATCGAACTGAGCCACATGTACGTCGACAACGCGGCGATGCAACTGGTGCGTGCGCCGAAGCAGTTCGACGTGATCGTCACCGACAACATGTTCGGCGACATTCTGTCCGACGAAGCGTCAATGCTCACCGGTTCCATCGGCATGCTGCCGTCGGCCTCCCTGGACGCCAACAACAAGGGCATGTACGAGCCGTGCCACGGTTCGGCGCCGGACATCGCCGGGCAGGGCATTGCCAACCCGTTGGCGACCATCCTGTCGGTGTCGATGATGCTGCGCTACAGCTTCAACTTGAACGATGCCGCCGACGCGATCGAAAAAGCCGTCAGCGTGGTCCTGGACCAAGGCTTGCGCACCGGTGATATCTGGTCGCAAGGCTGTACCAAAGTCGGTACGCAGCAAATGGGCGATGCAGTAGTCGCCGCGCTGCGGAATCTGTAA	MSKQILILPGDGIGPEIMAEAVKVLELANDKYGLGFELSHDVIGGAAIDKHGVPLADETLDRARAADAVLLGAVGGPKWDKIERDIRPERGLLKIRAQLGLFGNLRPAILYPQLADASSLKPEIVSGLDILIVRELTGGIYFGAPRGTRELENGERQAYDTLPYSESEIRRIARVGFDMARVRGKKLCSVDKANVLASSQLWREVVEQVAKDYPDIELSHMYVDNAAMQLVRAPKQFDVIVTDNMFGDILSDEASMLTGSIGMLPSASLDANNKGMYEPCHGSAPDIAGQGIANPLATILSVSMMLRYSFNLNDAADAIEKAVSVVLDQGLRTGDIWSQGCTKVGTQQMGDAVVAALRNL	PGPT0001441_2109	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALATE_UTILIZATION,PGPT0001441-leuB-K00052	NA	NA
D1-36_01764	1113	asd_1	COG0136	Aspartate-semialdehyde dehydrogenase	ATGAAACGTGTAGGTCTGATCGGTTGGCGCGGCATGGTCGGTTCCGTGCTCATGCAGCGAATGCTGGAAGAGCAGGATTTCGATCTCATTGAGCCGGTGTTCTTCACCACTTCCAACGTGGGTGGCCAGGGCCCGTCCGTGGGCAAGGACACCGGTGCGCTCAAGGATGCCTACAGCATCGACGAGCTCAAGACCCTCGACGTGATTTTGACCTGCCAGGGCGGCGACTACACCAGCGAAGTCTTCCCGAAACTGCGTGAAGCCGGCTGGCAGGGTTACTGGATCGATGCCGCTTCCAGCCTGCGCATGCAGGACGACGCGGTGATCATCCTCGACCCGGTCAACCGCAAGGTCATCGACCAGCAGCTGGATGCGGGCACCAAGAACTACATCGGCGGCAACTGCACCGTCAGCCTGATGCTGATGGGTCTGGGCGGCCTGTTCGAAGCGGGCCTGGTGGAGTGGATGAGCGCCATGACCTATCAGGCAGCCTCCGGTGGCGGCGCCCAGCACATGCGCGAGCTGATCAAGCAAATGGGCGTGACTCACGGCGCCGTGGCTGACGAGCTGGCGAACCCGGCCAGTGCCATCCTGGACATCGACCGCAAGGTCGCCGAAGCGATGCGCAGCGATGCCTACCCGACCGAGAATTTCGGCGTGCCGCTGGCCGGCAGCCTGATCCCTTGGATCGACAAGGAACTGCCGAACGGCCAGAGCCGTGAAGAATGGAAGGCCCAGGCCGAGACCAACAAGATCCTGGGCCGCTTCAAGAGCCCGATCCCGGTGGACGGCATCTGCGTGCGCATCGGCGCCATGCGTTGCCACAGCCAGGCGCTGACCATCAAGCTGAACAAAGACGTGCCGATCGCCGACATCGAAGGCTTGATCAGCCAGCACAACCCGTGGGTCAAGCTGGTGCCGAACAACCGTGAAACCAGCATGCAGGAGCTGAGCCCGACCAAGGTCAACGGCACCCTGAACGTGCCAGTGGGCCGCTTGCGCAAACTGAACATGGGCTCGCAGTTCGTCGGTGCCTTCACCGTTGGCGACCAACTGTTGTGGGGCGCGGCCGAACCGCTGCGCCGCATGCTGCGGATTTTGCTCGAGCGTTGA	MKRVGLIGWRGMVGSVLMQRMLEEQDFDLIEPVFFTTSNVGGQGPSVGKDTGALKDAYSIDELKTLDVILTCQGGDYTSEVFPKLREAGWQGYWIDAASSLRMQDDAVIILDPVNRKVIDQQLDAGTKNYIGGNCTVSLMLMGLGGLFEAGLVEWMSAMTYQAASGGGAQHMRELIKQMGVTHGAVADELANPASAILDIDRKVAEAMRSDAYPTENFGVPLAGSLIPWIDKELPNGQSREEWKAQAETNKILGRFKSPIPVDGICVRIGAMRCHSQALTIKLNKDVPIADIEGLISQHNPWVKLVPNNRETSMQELSPTKVNGTLNVPVGRLRKLNMGSQFVGAFTVGDQLLWGAAEPLRRMLRILLER	PGPT0014045_936	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014045-asd-K00133	NA	NA
D1-36_01765	1011	usg	COG0136	USG-1 protein	ATGAGCCAGTCCTTTGATATTGCCGTGATCGGCGCCACCGGTACTGTCGGCGAAACCCTCGTCCAGATCCTTGAAGAGCGCGACTTCCCGATCGGCAACCTGCACCTGTTGGCCAGCAGCGAGTCAGCGGGCAGCTCGGTGATGTTCCGGAGTAAAAACGTGCGGGTGCGCGAGGTCGATGAGTTCGATTTCAGCAAAGTCCAACTGGCGTTTTTCGCGGCGGGGCCGGCGGTCACTCTGAGCTTCGCTCCGCGCGCCACGGCGGCCGGCTGCGCGCTGATCGACCTGTCCGGTGCGCTGCCGGCCGAACAGGCGCCGCAGATCGTACCGGAGGCCAACCCGCACCTGCTGGCGAACCTGTCCAGGCCCGTGCAGGTCAGCAGCCCCAGCCCCTCGGCGACGGTCCTGGCCGTTGCCTTGGCACCGTTGCGCCAATGCCTGGATATCCAGCGCGTGAGCCTGACTGCCAGCCTCGCCGTATCGGCCCAAGGCCGCGTTGCGGTCACTGAACTGGCGCGCCAGACGGCGGAATTGCTCAACGCCCGTCCGCTCGAACCGACGTTCTTCGACCGGCAGATGGCGTTCAACCTGTTGGCCCAGGTGGGTAGTCCCGATGCGCAGGGCCATACCCCACTGGAAAAGCGACTGGTGAGTGAGCTGCGCCAAGTGCTGGAGCAACCTTTGTTAAAGATTTCCGCGACTTGCATTCAAGCCCCGGTGTTTTTTGGCGATAGCTTTAGCGTGACCGTGGAGTCTGCCGGTCCCGTCGACCTGGCGAAGGTCAACGCCGCCCTGGAAGCGGTCCCCGGCATCGAGCTGGTGGAGGTGGGTGATTATCCGACGCCGGTGGGTGATGCGGTGGGGCAGGATGTGGTCTATATCGGTCGCGTGCGCGGCGGCATCGATGATCCGTCGGAGCTGAATATGTGGCTGACGTCGGATAACGTGCGCAAGGGCGCGGCGCTCAACGCGGTGCAGGTGGCTGAGTTGTTGATAAAAGACCTGCTGTAA	MSQSFDIAVIGATGTVGETLVQILEERDFPIGNLHLLASSESAGSSVMFRSKNVRVREVDEFDFSKVQLAFFAAGPAVTLSFAPRATAAGCALIDLSGALPAEQAPQIVPEANPHLLANLSRPVQVSSPSPSATVLAVALAPLRQCLDIQRVSLTASLAVSAQGRVAVTELARQTAELLNARPLEPTFFDRQMAFNLLAQVGSPDAQGHTPLEKRLVSELRQVLEQPLLKISATCIQAPVFFGDSFSVTVESAGPVDLAKVNAALEAVPGIELVEVGDYPTPVGDAVGQDVVYIGRVRGGIDDPSELNMWLTSDNVRKGAALNAVQVAELLIKDLL	PGPT0014045_4950	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014045-asd-K00133	NA	NA
D1-36_01766	2562			hypothetical protein	ATGGTTCAAGTTCGCAAACTGGTGTTAGCAATAGCGGCCGCCTCGGCGCTGTCCTCCGGTATGGCGCAAGCGCTCGGGCTGGGGGAATTGACCCTCAAGTCGCCGCCGAACCAGCCTCTGGTGGCCGAGATCGAACTGCTCGATGTCCAGCAACTGACCGCCGCCGAGGTGGTGCCGAGCCTGGCCCCACCTGAAGAATTCGCCAAGGCGGGCATTGACCGCCAAGCTTTTCTCAATGAATTGAGCTTCACACCGGTGATCAACGCCAACGGCAAGAGTGTCCTGCGGGTGACTTCCAGCCGGCCGCTGACCGAACCGATGGTCAAATTCCTCGTGCAGGTGATGTGGCCCAACGGCCGCTTGCTGCGCGACTACAGCGTACTGCTCGATCCGTCTAAGTTCTCGCCGCAGGCCGCCGACGCCGCTCGGGCGAAGCCGTCCCAGGTGGTGTCTTCGCCGGTCACCGGGGCTACCAAGCCGTCCCAATACACCACGACGCCGCGCGATACCCTATGGGAAATCGCCGCCAAGGTGCGCAACGGTGGTTCGGTGCAGCAAACGATGCTGGCGATCCAGGCGTTGAACCCGAACGCATTCATCGACGGCAACATCAACCTGCTCAAGACCGGCCAGGTGTTGCGCCTGCCCGATCCGGTGCAAAGCACGGCATTGCCGCAGCCCCAGGCCATCGCCGAAGTGGCCGCTCAAAACGCCGCCTGGCGCCAGGGGCGTCGGAGCGGGGCGGGTAACGGACGCCAGCAGGTGGACGCCACCCGGCGTGGCGGTGGCGATAACGCACCGGCCCAGGGCGCGGCTCGCGATAACCTGAGCCTGGTTTCCGCCGAGTCGGCGAAAGCGGGTGCCAAAGGCAAAGGCGCAGCCGGTGATGCCCAGGCCCTGAGTAACCAACTTGCCGTGACTCAGGAAAGCCTCGATTCGGCTCGTCGCGACAATGAAGAACTGAAGAGCCGCATGGCCGATCTTCAGAGCCAGCTGGACAAACTGCAGCGCCTGATCGAGCTGAAGAACAATCAACTGGCGAAAATGCAGGCCGAAGGCGTCGCGGTCCCGCCCACTGGCGAAGCCACCCCGGCGATGTCGGCGGAACTGACCCCCGCGCCAGCGGCACAAGCACCGTCCGCCGCCCCGGCACCCCAGGCCACCCCGGAAGCGACCCCGCCGGTTGAACCGGCGCCGGCCGCAGCCGACGAGAAAAAATACAACGACCTGCTGACCAATCCGATCCTGCTGGGCCTGATTGGCGGCGGTGCGTTGCTCCTCTTGCTGCTGCTCCTGCTGCTCGCTCGCCGCCGCAAGGCCCAGCAGGAAGCCGAGAAACATTTGCGCATGGCCCGAGCCCTCGAGGAGGAGGCCGACTTCTCCCCGGAGCTCGATCTGCCCCCGAGCAGCTTCGAGGGCATTGAAGTACCACCACCCAGCGTAAAGCTCGAACCCAAGCCAGCCCCTAGGCCTGCCCCGGTGGTTGCGCCCGTGGTCGTCACGCCCCCCATAGCCGCACCGCTGGTAGCGCCGGCCGCGGAGCGTTCGGACGACGTGCTGCCCCAGGCTCAGTCGCACATCGATCGTGGTCGCTTGAATCAGGCCGCCGACCTGCTTGAGCAAGGCATCAAGGCCGAGCCCCAGCGCAGCGACCTGCGCTTGAAGCTGATGGAAGTCTACGGCCAGCAGGGCGACCGCGACGCCTTTGTCGCCCAGGAGCGGCAGTTGGTCGCCAATGGCGACAATTACGCCCAGGTCGAACAGCTCAAGAGCCGTTTCCCGGCCATGGCGGTCGCCGCCGGTGCAGGCCTGGCTGCGGCAGCCGTCGCCGCTGAGTTGGATGCCCAGTACGTCAAGGAGCTGTTGGAAGACAAATCGCCGACCGACGACGAGCTCGACAGCGCTTTTGATCTGAGCCTGGAGGACATGGACACCGCTCCGGTCGCGCCAGCCCCCGAGCCGCTTGCCGAACTGGATGCGTTTCCGCAAGACGATGACCTGAGTTTTGAATCGGTGCTCAAGCAACAGACCGAGGCCAACGAAAGCCTCGACGATCTGTCGGAGTTCGATTTGGACCTGGGCGTGGATTCTCCGGCACCCGCCTTGGCGGATGAAGACTTCCTGCTGGACCTGGACGACGATCTCAAGGGGTTGGATATTCCAGCGGCCGAAACGCCCGCGTTGGATGACACGCCGGCCGACGATCTTGAACTGCCGGCGGATTTCGATCTGTCCCTGGCCGACGAGATGGACGCCCACGATCAGCCTAAGGATGCCTTCGAGTCCGAGCTGGACGATGTCAACGCCGAGCTGGATCGCCTGTCCGACAGCATAGGCCAGCCAACCTTCACTGCTGAAGACGCCTTGGCGACTGCCGACGACGAGCCGGACTTCGATTTCCTCAGCGGCACCGACGAAGTGGCAACCAAGCTCGATCTGGCCCAGGCCTACATCGACATGGGCGACAATGACGGCGCCCGGGATATCCTCGGCGAAGTGCTCAGTGAAGGCGATGCCACGCAGAAGAGCGAAGCGAAGGAGATGCTGTCGCGCCTGGCGTGA	MVQVRKLVLAIAAASALSSGMAQALGLGELTLKSPPNQPLVAEIELLDVQQLTAAEVVPSLAPPEEFAKAGIDRQAFLNELSFTPVINANGKSVLRVTSSRPLTEPMVKFLVQVMWPNGRLLRDYSVLLDPSKFSPQAADAARAKPSQVVSSPVTGATKPSQYTTTPRDTLWEIAAKVRNGGSVQQTMLAIQALNPNAFIDGNINLLKTGQVLRLPDPVQSTALPQPQAIAEVAAQNAAWRQGRRSGAGNGRQQVDATRRGGGDNAPAQGAARDNLSLVSAESAKAGAKGKGAAGDAQALSNQLAVTQESLDSARRDNEELKSRMADLQSQLDKLQRLIELKNNQLAKMQAEGVAVPPTGEATPAMSAELTPAPAAQAPSAAPAPQATPEATPPVEPAPAAADEKKYNDLLTNPILLGLIGGGALLLLLLLLLLARRRKAQQEAEKHLRMARALEEEADFSPELDLPPSSFEGIEVPPPSVKLEPKPAPRPAPVVAPVVVTPPIAAPLVAPAAERSDDVLPQAQSHIDRGRLNQAADLLEQGIKAEPQRSDLRLKLMEVYGQQGDRDAFVAQERQLVANGDNYAQVEQLKSRFPAMAVAAGAGLAAAAVAAELDAQYVKELLEDKSPTDDELDSAFDLSLEDMDTAPVAPAPEPLAELDAFPQDDDLSFESVLKQQTEANESLDDLSEFDLDLGVDSPAPALADEDFLLDLDDDLKGLDIPAAETPALDDTPADDLELPADFDLSLADEMDAHDQPKDAFESELDDVNAELDRLSDSIGQPTFTAEDALATADDEPDFDFLSGTDEVATKLDLAQAYIDMGDNDGARDILGEVLSEGDATQKSEAKEMLSRLA	PGPT0016075_686	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-SURFACE_ATTACHMENT	SURFACE_ADHESION	SURFACE_ADHESIVE_FIMBRIAE,PGPT0016075-fimV-K08086	NA	NA
D1-36_01767	855	truA	COG0101	tRNA pseudouridine synthase A	TTGGCAAACATAGACAACCCGGCCGCCGAAATGGCGGCCGACGGCTTTTTCCGAATCGCCTTGGGCGTTGAATACAAAGGCTCGCGCTATCGCGGCTGGCAGCGTCAGGCCTCCGGCGTATTAACGGTGCAGGAAACCCTTGAAGACGCGCTGTCCAAAGTCGCCGATTCGCCCGTGTCGCTGCATTGCGCCGGACGAACCGACGCCGGCGTGCATGCCTGCGGCCAGGTGGTGCATTTTGACACCCAAGTCGAGCGCTCGATGAAGGCTTGGGTGATGGGGGCCAATATCAACCTGCCGCACGATGTCAGCGTCAGTTGGGCAAAGGCGATGCCCGCGCATTTTCATGCGCGCTTCAAGGCCATCGCCCGGCGCTATCGCTACGTGATCTACAACGATCAGATCCGCCCAGCGCACCTGAATGAAGAAATCACCTGGAACCACCGTCCGCTGGATGTCGAGCGTATGGCCGAGGCCGCGAAATACCTGGTCGGCGTCCATGATTTCAGCGCTTTTCGCGCGGGGCAGTGCCAGGCCAAGTCGCCGATCAAGGAACTGCATCACCTGCGCGTAACCCGTCACGGCAAGATGATCGTGCTTGATATCCGCGCCAGCGCCTTTCTGCACCACATGGTGCGCAACATCGCCGGTGTGCTGATGACCATCGGCGCGGGTGAGCGGCCGGTGGAATGGGTCAAGGAAGTGCTCGAAAGCCGCATTCGCCGCTCGGGAGGCGTGACCGCGCACCCGTTTGGCCTGTACCTGGTCCAGGTTGAATATCACGACGAATTCGAGTTGCCTGAGCGTTACATCGGGCCACATTTCCTCACGGGGTTCTCGGAACTCGACGGCTGA	MANIDNPAAEMAADGFFRIALGVEYKGSRYRGWQRQASGVLTVQETLEDALSKVADSPVSLHCAGRTDAGVHACGQVVHFDTQVERSMKAWVMGANINLPHDVSVSWAKAMPAHFHARFKAIARRYRYVIYNDQIRPAHLNEEITWNHRPLDVERMAEAAKYLVGVHDFSAFRAGQCQAKSPIKELHHLRVTRHGKMIVLDIRASAFLHHMVRNIAGVLMTIGAGERPVEWVKEVLESRIRRSGGVTAHPFGLYLVQVEYHDEFELPERYIGPHFLTGFSELDG	PGPT0014045_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014045-asd-K00133	NA	NA
D1-36_01768	633	trpF	COG0135	N-(5'-phosphoribosyl)anthranilate isomerase	ATGTCGGTCGTTCGCAGCAAGATATGCGGAATCACCCGAGTCGAAGACGCCTTGGCGGCGGTCGACGCCGGTGCGGACGCCATCGGGCTCGTGTTCTACGCCAAGAGCCCGCGGGCGGTGACGGTGCAGCAGGCACGAGCGATCATTCAGGCGCTGCCACCCTTCGTCACGCCGGTCGGCCTGTTCGTCAATGCGAGTCGTTGCGAGCTGGGCGAAATCCTCGATGCGGTGCCGCTGGCCTTCCTGCAGTTCCATGGCGACGAGACACCCGCCGATTGCGAGGGTTGGCATCGACCGTACATCAAGGCGTTGCGGGTCAAGGCCGGCGACGACATCGCCGCCAGTTGCAAAGCCTTTTCCGGGGCCAGCGGTATCTTGCTGGACACCTACGTGGAGGGCGTTCCGGGAGGGACCGGTGAAGCGTTCGACTGGACGTTGGTGCCGCAGGGCCTGGACAAGCCGATCATCCTTGCCGGCGGCCTGACGGCGGACAACGTGGCTGACGCCATCGCCCAGGTTCGACCCTACGCGGTGGACGTCAGTGGCGGGGTGGAGCAGGCCAGGGGCATCAAGGACCCGGCGAAGATCCGGGCGTTCATGGCGGCTGTGCGCAGCAGCCAGTCGTCAATGTGA	MSVVRSKICGITRVEDALAAVDAGADAIGLVFYAKSPRAVTVQQARAIIQALPPFVTPVGLFVNASRCELGEILDAVPLAFLQFHGDETPADCEGWHRPYIKALRVKAGDDIAASCKAFSGASGILLDTYVEGVPGGTGEAFDWTLVPQGLDKPIILAGGLTADNVADAIAQVRPYAVDVSGGVEQARGIKDPAKIRAFMAAVRSSQSSM	PGPT0007115_2302	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007115-trpF-K01817	NA	NA
D1-36_01769	921	accD	COG0777	Acetyl-coenzyme A carboxylase carboxyl transferase subunit beta	ATGAGCAACTGGTTGGTAGACAAACTGATCCCTTCGATCATGCGTTCCGAGGTGAAGAAAAGCTCGGTGCCTGAAGGTCTGTGGCACAAATGTCCATCCTGCGAAGCGGTGCTGTACCGTCCCGAGCTGGAAAAGACCCTGGACGTTTGCCCCAAGTGCAACCACCACATGCGCATCGGCGCGCGTGCCCGTATCGATATCTTCCTGGACGCCGAAGGCCGTGTTGAGCTGGGTGCCGACCTGGAGCCCGTGGACCGCCTTAAATTCCGCGACGGCAAGAAATACAAGGATCGCCTGACCGCTGCCCAGAAGCAGACCGGTGAAAAAGACGCCCTGGTTTCCATGAGCGGCACCCTGTTGGGCATGCCGGTGGTGGTGTCGGCCTTTGAGTTCTCGTTCATGGGCGGTTCCATGGGCGCCATCGTCGGCGAGCGCTTCGTTCGCGCCGCCAACTACGCTCTGGAAAACCGGTGCCCGATGATCTGCTTCGCCGCCTCCGGTGGCGCGCGGATGCAGGAGGCCCTGATCTCGCTGATGCAAATGGCCAAGACCTCCGCGGTACTGGCGCGCTTGCGTGAAGAAGGCATTCCGTTCATCTCGGTGCTGACCGATCCGGTCTACGGCGGTGTGTCCGCCAGTCTGGCGATGCTGGGCGACGTCATCGTCGGCGAGCCGAAAGCCCTGATCGGCTTCGCCGGTCCGCGTGTGATCGAGCAGACTGTGCGTGAAAAGCTGCCGGAAGGTTTCCAGCGCAGCGAATTCCTGCTGGAACATGGCGCGATCGACATGATCATTCACCGCCAGGAGCTGCGTCCACGCCTGGGTAATCTGCTGGCGCAACTGATGGGCCTGCCGACGCCGACCTTCGTCGCCACGCCAATCGAGCCGATCGTGGTTCCGCCGGCGCCTGCTGGCCTATGA	MSNWLVDKLIPSIMRSEVKKSSVPEGLWHKCPSCEAVLYRPELEKTLDVCPKCNHHMRIGARARIDIFLDAEGRVELGADLEPVDRLKFRDGKKYKDRLTAAQKQTGEKDALVSMSGTLLGMPVVVSAFEFSFMGGSMGAIVGERFVRAANYALENRCPMICFAASGGARMQEALISLMQMAKTSAVLARLREEGIPFISVLTDPVYGGVSASLAMLGDVIVGEPKALIGFAGPRVIEQTVREKLPEGFQRSEFLLEHGAIDMIIHRQELRPRLGNLLAQLMGLPTPTFVATPIEPIVVPPAPAGL	PGPT0001710_670	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0001710-accD-K01963	NA	NA
D1-36_01770	1308	folC	COG0285	Dihydrofolate synthase/folylpolyglutamate synthase	ATGACCGAACGTACCCTGGGCGACTGGCTTGCCTACCTCGAGCAGTTGCATCCATCGGCCATCGACATGGGGCTGGAGCGCTCGCAAGCGGTAGCGTCCCGCATGGGACTGGCCAAGCCGGCGCCTCGGGTCATCACGGTTACCGGCACCAACGGCAAGGGGTCGACCTGCGCCTTTCTGGCCTCGCTGCTGCGGGCCCAGGGATTAAGTGTCGGCGTCTACAGTTCGCCGCACCTGCTGCGCTACAACGAGCGGGTGCAGGTCAACGGTGTCGAAGCTTCCGACGCCGATCTGTGTGAAGCCTTCGCGGCGGTGGAAGCCGGGCGGGGCGAGACTTCCCTGACCTATTTCGAGATGGGCACGCTCGCGGCGTTCTGGCTGTTCGCCCGTGCCGGCCTGGATGCGGTCGTGCTGGAAGTCGGCCTGGGTGGTCGCCTGGATACCGTCAATCTCGTGGACGCGGACATCGCGCTGGTCACCAGTATTGGCGTGGATCACGCCGATTACCTGGGCGATACCCGCGAGTCCGTGGCTTTCGAGAAGGCCGGCATTTTTCGCCAGGGCGCGCCGGCACTCTGCGGCGATCTCGATCCGCCGCAGCCGTTGCTGGATAAAGTGCGCGAGCTGGGCTGCCCGTTCTTCCTGCGTGGGCGGGACTTCGACCTGGCCATGACGGAGCGGCACTGGCAATGGCGTGGCAGCGATGCTCGGGGCAACCCGGTCGAGCTGCGTGACCTGCCGCAGCTGGACTTGCCAATGGAGAACGCCGCGCTGGCACTGCAGGCCTACCTGCTGCTCGGGCTGCCGTGGGACACCGGACGGATTATCCAGGCACTGCAGGCGACTCGCGTTGTCGGTCGTCTTGATCGCCGCTCGATCGATTGGCAAGGCAAGCGCCTCGACGTGCTCTTGGATGTCGGTCACAACCCCCACGCGGCGCAGTACCTGGCTGAACGCCTGGCGCGTCGACCCGTGGCGGGCAAGCGGCTGGCGGTGTTTGGCCTGCTGTCGGACAAGGACCTGGATGGCGTTGTCGATGCGTTGGATGCTAGTGTCCAGCACTGGGCCGTGACGCCACTGGATTCGCCGCGTTCGCGTCCGGCCAGCGAGTTGCAGGCGGTGTTGCAGCATCGTGGCGCTTCGGTGGAAGCTTATGGCAGCGTGGCCGACGCGCTGGAAGGGCAGTGCGCCCTGGCGACGGCAGACGACGAGATTCTGTTGTTCGGATCATTTTATTGCGTTGCCGAGGCCCTTCAATGGTTGGCCCGGCGCTCCACGGAGGAAGCTGCAGATGGCATTGCTGGATAA	MTERTLGDWLAYLEQLHPSAIDMGLERSQAVASRMGLAKPAPRVITVTGTNGKGSTCAFLASLLRAQGLSVGVYSSPHLLRYNERVQVNGVEASDADLCEAFAAVEAGRGETSLTYFEMGTLAAFWLFARAGLDAVVLEVGLGGRLDTVNLVDADIALVTSIGVDHADYLGDTRESVAFEKAGIFRQGAPALCGDLDPPQPLLDKVRELGCPFFLRGRDFDLAMTERHWQWRGSDARGNPVELRDLPQLDLPMENAALALQAYLLLGLPWDTGRIIQALQATRVVGRLDRRSIDWQGKRLDVLLDVGHNPHAAQYLAERLARRPVAGKRLAVFGLLSDKDLDGVVDALDASVQHWAVTPLDSPRSRPASELQAVLQHRGASVEAYGSVADALEGQCALATADDEILLFGSFYCVAEALQWLARRSTEEAADGIAG	PGPT0007975_2150	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007975-folC-K11754	NA	NA
D1-36_01771	690	dedD		Cell division protein DedD	ATGGCATTGCTGGATAAGGCTTACAAGCAGCGCATGGTCGGGGCCCTGGTGTTGGTGGCCCTGGCGGTGATTTTCCTGCCGATGCTGTTTTCCCGGCAGGACGAGCAGCGCCAGGTCACGGTTGATGCGCCGGCCGCGCCCCAAGCGCCTGCGGTGCCACCCGTGCAAGTCGAGCCCGTGCCAGTGCCCGAGCCGCAGGCACTGCCCCAGGAGCCGGTGCCGAGCGACGCGGAATTGGCTGAACAATCCGCCGCGCCTACCGCGCCGGTCGGGTCCACGCCGACAGCGCCCGCATCTGCCGCTGCCGCGCCTGCCCCGGCGGCACCCGCCAAGCCTGCTGTAGCGCCAACGCCCATCCCGGCGACGCCGGCGATCAAACCGGCGCCAAGCCAGCCGATCACCGCTGCCCCCAAGCCAGACACCACCCAGAGCCGCGTCGATGCCAACGGCCTGTCGGTGAGCTGGTCGGTGCAACTGGCCAGCCTGACCAGTCGCGAGAGCGCGGAAAAACTGCAGAAAAGCCTGCGCAGCCAGGGCTACAACGCCTACATCCGTTCCGCCGATGGCAAGAATCGGGTCTTTGTCGGTCCGTTGATCGAGCGTGCCGAGGCCGACCGCCTGCGCGACTTGCTCAATCGCCAGCAGAACCTCAAGGGTTTTGTGGTTCGCTTCCAGCCAGAGCGCGGTTGA	MALLDKAYKQRMVGALVLVALAVIFLPMLFSRQDEQRQVTVDAPAAPQAPAVPPVQVEPVPVPEPQALPQEPVPSDAELAEQSAAPTAPVGSTPTAPASAAAAPAPAAPAKPAVAPTPIPATPAIKPAPSQPITAAPKPDTTQSRVDANGLSVSWSVQLASLTSRESAEKLQKSLRSQGYNAYIRSADGKNRVFVGPLIERAEADRLRDLLNRQQNLKGFVVRFQPERG				NA	NA	NA	NA	NA
D1-36_01772	561			hypothetical protein	GTGCCATTTACCTGGGTTGACTGGGCGATCGTTGCGATCGTCGCCATCTCCGCATTGATCAGTCTGAGTCGCGGCTTCGTCAAGGAAGCGCTCTCGCTGCTGACCTGGATCATCGCGGGAGTCGTGGCCTGGATGTTTGGTGGCTCGCTGTCCCAGTACCTCGCCGGATACATCGAAACACCCTCGGCCCGCGTGATCGCGGGCTGTGCCATCTTGTTTATCGCCACCTTGCTGGTGGGCGCAATGATCAATTATCTGATCGGCGAACTGATTCGCGTCACCGGGCTTTCCGGGACGGACCGGTTCCTGGGCATGGCTTTCGGCGCGGCGCGTGGCGCCTTGCTGGTGGTCGTGGCCGTCGGGCTGTTGAGCCTGGGGCCGGTACAGCAGGATACGTGGTGGCAGGAGTCCCGGCTCGTGCCACAATTTCTATTGGTCGCAGACTGGTCCAAGAACCTGATCCTGGGTTGGAGCAGTCAGTGGCTTGCCAGCGGTATCAGCGTACCCGCTGAAATACCGTTCAAGGAACAGCTCTTGCCGATGGCCAAAACGCCGCAGTGA	MPFTWVDWAIVAIVAISALISLSRGFVKEALSLLTWIIAGVVAWMFGGSLSQYLAGYIETPSARVIAGCAILFIATLLVGAMINYLIGELIRVTGLSGTDRFLGMAFGAARGALLVVVAVGLLSLGPVQQDTWWQESRLVPQFLLVADWSKNLILGWSSQWLASGISVPAEIPFKEQLLPMAKTPQ	PGPT0011655_827	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|COLICINS,PGPT0011655-cvpA-K03558	NA	NA
D1-36_01773	1506	purF	COG0034	Amidophosphoribosyltransferase	ATGTGTGGCATCGTCGGTATCGTCGGTAAGTCGAACGTCAATCAGGCGCTGTATGACGCGCTAACCGTGCTCCAGCACCGCGGCCAGGACGCTGCCGGTATCGTGACCAGCCATGACGGCCGGTTATTCCTGCGCAAGGACAATGGCCTGGTGCGCGACGTGTTCCATCAGCGTCACATGCAGCGCCTCGTCGGGCATATGGGCATCGGCCATGTGCGTTACCCGACAGCGGGTAGCTCGACTTCGGCCGAAGCCCAGCCGTTCTATGTCAACTCGCCGTACGGCATCACGTTGGCGCACAACGGCAACCTGACCAATGTCGAGCAACTGGCCAAGGAGATCTACGAATCTGACTTGCGCCACGTCAACACCAGTTCCGACTCGGAAGTGATGCTCAACGTCTTCGCTCACGAGCTGGCCCAGCGCGGCAAGCTGCAGCCGACCGAAGAAGACGTGTTCGCCGCCGTGACCGACGTGCACAACCGTTGCGTGGGTGGCTACTCGGTGGTGGCGATGATCACCGGCTACGGCATCGTCGGTTTCCGCGACCCGCACGGTATTCGTCCGATCGTGTTCGGCCAGCGTCACACCGACGAAGGCGTCGAGTACATGATCGCCTCCGAGAGCGTGTCCCTGGACGTGCTTGGTTTCACCCTGATTCGCGACCTGGCCCCGGGCGAAGCGGTCTACATCACTGAAGACGGCAAGTTGTTCACCCGCCAGTGCGCGACCAACCCGAGCCTGACGCCGTGTATCTTCGAGCACGTCTACCTGGCCCGTCCGGACTCGATCATTGACGGTATCTCGGTCTACAAGGCGCGCCTGCGCATGGGCGAGAAGCTCGCCGACAAGATCCTGCGCGAGCGTCCGGACCATGACATCGACGTGGTCATCCCGATCCCGGACACCAGCCGCACCGCGGCCCTGGAGCTGGCGAACCACTTGGGCGTGAAGTTCCGCGAAGGCTTCGTGAAGAACCGCTACATTGGCCGCACCTTCATCATGCCGGGTCAGGCTGCACGGAAAAAATCCGTACGCCAGAAGCTCAACGCCATTGAACTGGAATTCCGCGGCAAGAACGTGATGCTGGTGGACGATTCCATCGTGCGCGGTACCACCTGCAAGCAGATCATCCAGATGGCCCGCGAAGCCGGCGCCAAGAATGTCTACTTCTGCTCGGCGGCCCCGGCCGTGCGCTACCCGAACGTCTACGGCATCGATATGCCGAGTGCCCATGAGCTGATCGCTCATAACCGCACGACCCAGGAAGTGGCCGACCTGATCGGCGCCGACTGGCTGATCTACCAGGACTTGCCGGACCTCATCGAAGCGGTGGGTGGCGGCAAGATCAAGATCGAGCAGTTCGATTGTGCGGTATTCGACGGCAAGTACGTCACCGGCGACATCGACGAGGCCTACCTGAATCGGATCGAGAACGCGCGTAACGATGCGTCAAAGGCCAAGACGCAGGCGGTCAGCGCGATCATCGATCTGTACAACAACTGA	MCGIVGIVGKSNVNQALYDALTVLQHRGQDAAGIVTSHDGRLFLRKDNGLVRDVFHQRHMQRLVGHMGIGHVRYPTAGSSTSAEAQPFYVNSPYGITLAHNGNLTNVEQLAKEIYESDLRHVNTSSDSEVMLNVFAHELAQRGKLQPTEEDVFAAVTDVHNRCVGGYSVVAMITGYGIVGFRDPHGIRPIVFGQRHTDEGVEYMIASESVSLDVLGFTLIRDLAPGEAVYITEDGKLFTRQCATNPSLTPCIFEHVYLARPDSIIDGISVYKARLRMGEKLADKILRERPDHDIDVVIPIPDTSRTAALELANHLGVKFREGFVKNRYIGRTFIMPGQAARKKSVRQKLNAIELEFRGKNVMLVDDSIVRGTTCKQIIQMAREAGAKNVYFCSAAPAVRYPNVYGIDMPSAHELIAHNRTTQEVADLIGADWLIYQDLPDLIEAVGGGKIKIEQFDCAVFDGKYVTGDIDEAYLNRIENARNDASKAKTQAVSAIIDLYNN	PGPT0020225_2650	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0020225-purF-K00764	NA	NA
D1-36_01774	1212	metZ	COG0626	O-succinylhomoserine sulfhydrylase	ATGAGTCAGGATTGGGATGCCGGTCGGCTGGACAGCGACCTTGAAGGCGTAGCGTTCGATACCCTGGCGGTTCGCGCGGGCCAGCACCGGACACCGGAAGCCGAACATGGCGATCCGATGTTCTTCACCTCCAGCTACGTGTTCCGCACGGCCGCCGATGCCGCGGCGCGCTTTGCCGGGGAAGTGCCGGGCAACGTCTACTCGCGTTACACCAACCCGACCGTGCGGGCTTTCGAGGAGCGTATCGCCGCCCTGGAAGGCGCCGAGCAGGCCGTGGCAACTGCCACCGGTATGGCCGCGATCATGGCGGTGGTGATGAGCCTGTGCAGCGCCGGCGATCATGTGCTGGTGTCGCGCAGCGTCTTCGGCTCGACCATCAGCCTGTTCGAAAAGTACTTCAAGCGTTTCGGCGTGGAAGTCGATTACGTGCCCCTGGCGGACCTGTCCGGTTGGGATGCCGCGATCAAGGCCAATACCAAGCTGCTTTTCGTCGAGTCGCCGTCCAATCCGCTGGCTGAGCTGGTGGACATCGCCGCGCTGGCGGAAATTGCCCATGCCAAGGGCGCCATGCTGGTGGTCGACAACTGCTTCTGCACACCGGCGCTGCAACAGCCGCTCAAGCTGGGCGCGGACGTGGTGGTGCATTCGGCCACCAAGTTCATCGACGGCCAAGGTCGTTGCATGGGCGGTGTCGTTGCTGGTCGTGGCGAGCAAATGAAAGAGGTCGTGGGCTTCTTGCGCACCGCTGGGCCGACCCTCAGCCCGTTCAATGCCTGGATCTTCCTCAAAGGCCTGGAAACCCTCGGCCTACGGATGAAGGCTCATTGCGCCAATGCCCAGGCCCTGGCCGAGTGGCTGGAGCAGCAGGACGGTATCGAGAAAGTGCATTACGCCGGCCTCAAGAGCCATCCGCAACACGAACTGGCCTTGCGTCAGCAGCGCGGTTTCGGCGCGGTGGTGAGCTTCGAGGTCAAGGGCGGCAAGGAGGGCGCCTGGCGTTTCATTGACGCGACCCGGTTGATCTCCATCACTGCCAACCTCGGTGACAGCAAAACCACCATTACCCACCCGAGCACCACCTCCCACGGTCGCCTGTCGCCCCAGGAGCGTGAATCGGCGGGTATCCGTGACAGCCTGATCCGCGTGGCGGTCGGCCTGGAAGACGTGGCGGACCTGCAAGCCGACCTGGCCCGCGGGTTGGCGGCCTTGTGA	MSQDWDAGRLDSDLEGVAFDTLAVRAGQHRTPEAEHGDPMFFTSSYVFRTAADAAARFAGEVPGNVYSRYTNPTVRAFEERIAALEGAEQAVATATGMAAIMAVVMSLCSAGDHVLVSRSVFGSTISLFEKYFKRFGVEVDYVPLADLSGWDAAIKANTKLLFVESPSNPLAELVDIAALAEIAHAKGAMLVVDNCFCTPALQQPLKLGADVVVHSATKFIDGQGRCMGGVVAGRGEQMKEVVGFLRTAGPTLSPFNAWIFLKGLETLGLRMKAHCANAQALAEWLEQQDGIEKVHYAGLKSHPQHELALRQQRGFGAVVSFEVKGGKEGAWRFIDATRLISITANLGDSKTTITHPSTTSHGRLSPQERESAGIRDSLIRVAVGLEDVADLQADLARGLAAL	PGPT0020020_1035	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020020-mdeA-K01761	NA	NA
D1-36_01775	774	gdhI_2	COG1028	Glucose 1-dehydrogenase 1	GTGATCGAGCTGGCTACGCCGCCGAGCGGTACTCATGGCCGGGTAGCCCTGGTGACGGGCGCCGCGCGGGGTATCGGCCTTGGGATTGCCGCCTGGCTGATCTGTGAAGGTTGGCAGGTGGTTCTCACCGACCTGGACCGCGAGCGCGGTTCCAAGGTGGCGAAAACTTTGGGTGACAATGCCTGGTTCATCGCCATGGATGTGTCGGACGAGGCCCAGGTTGCCACCGCTATCGCTGAAGTGCTCGGCCAGTTCGGGCGGCTCGACGCGCTGGTGTGCAACGCCGCCATCGCCGACCCGCACAACATCACCCTGGAAAGCCTGGACCTGGCGCATTGGAACCGGGTCTTGGCGGTGAACCTGGGTGGGCCGATGCTGCTGGCCAAGCACTGCGCACCTTACCTGCGTGCCCACAACGGGGCCATCGTCAACCTGGCCTCGACCCGCGCCGCGCAGTCGGAACCGGACACCGAGGCCTATGCGGCCAGCAAAGGAGGCTTGCTGGCCCTGACTCATGCCCTGGCGATCAGTCTAGGGCCGGAGATTCGGGTCAACGCCGTCAGCCCTGGTTGGATCGACGCGCGAGACCCATCGCAACGTCGAGCGCAGCCGCTCACCGATGCCGATCACGCCCAGCATCCGGCGGGCAGGGTGGGTACGGTGGAGGACGTGGCGGCGATGGTGGCATGGCTGCTTTCGCGCAACGCCGGTTTTGTCACGGGGCAGGAGTTCGTGGTGGATGGCGGCATGACCAAGAAAATGATTTATGAGTAA	MIELATPPSGTHGRVALVTGAARGIGLGIAAWLICEGWQVVLTDLDRERGSKVAKTLGDNAWFIAMDVSDEAQVATAIAEVLGQFGRLDALVCNAAIADPHNITLESLDLAHWNRVLAVNLGGPMLLAKHCAPYLRAHNGAIVNLASTRAAQSEPDTEAYAASKGGLLALTHALAISLGPEIRVNAVSPGWIDARDPSQRRAQPLTDADHAQHPAGRVGTVEDVAAMVAWLLSRNAGFVTGQEFVVDGGMTKKMIYE	PGPT0008190_904	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
D1-36_01779	1284	puuB_2		Gamma-glutamylputrescine oxidoreductase	ATGGCGAACACATCCTACCCAGCGTCCTATTACGCCGCATCGGCCAATGCGACGCCGTCGCGCCCTGCCCTGCAGGATGATGTCGAAACCGATGTCTGCGTGATCGGTGCGGGATACACGGGGTTGTCTTCCGCGCTGTTTCTGCTGGAGCACGGTTTTAAAGTGACGATCGTCGAGGCGGCGAAGGTCGGCTTCGGCGCTTCGGGTCGCAACGGTGGGCAGATCGTCAACAGCTACAGCCGCGACATCGATGTGATCGAGCGCAGCGTCGGTCCACAGCAAGCGCAGTTGCTCGGCAACATGGCGTTCGAGGGTGGGCGGATCATCCGTGAGCGGGTGGCTAAGTATCAGATCCAGTGCGATCTGAAGGAAGGCGGTGTATTCGCGGCCCTCACCACTAAACAGATGGGGCACCTGGAGTCGCAGAAGCGTTTATGGGAGCGTTTCGGTCATACACAGCTGGAGTTGCTGGATCAGCGGCGTATTCGCGAGGTGGTGGCTTGCGAGGAGTATGTCGGCGGCATGTTGGATATGAGCGGCGGGCATATCCACCCGCTCAATCTGGCGCTGGGCGAAGCGGCGGCGGTGGAGTCACTGGGTGGTGTGATCTACGAGCAGTCGCCGGCGGTGCGCATCGAGCGCGGTGCCAGTCCGGTCGTGCATACGCCGCAGGGCAAGGTCAGGGCCAAATTCATTATCGTGGCGGGCAATGCTTACCTGGGCAATCTGGTGCCGGAGTTGGCGGCCAAGTCGATGCCTTGCGGTACGCAGGTGATCGCCACTGAGCCGCTGGGGGACGAGTTGGCCCATCGCCTGCTGCCTCAGGATTACTGCGTCGAAGATTGCAACTACCTGCTCGACTACTACCGGCTGACGGGTGACAAGCGCCTGATTTTCGGTGGTGGCGTGGTGTATGGCGCAAGGGATCCGGCCAACATTGAAGCGATCATTCGGCCGAAGATGCTCAAAGCGTTCCCGCAGCTCAAGGATGTGAAGATCGATTACGCCTGGACCGGAAATTTCCTACTGACTCTGTCGCGTCTTCCGCAAGTCGGGCGGCTGGGGGATAACATTTATTATTCCCAAGGCTGCAGTGGTCATGGCGTGACGTATACGCATTTGGCGGGCAAGGTACTGGCAGAGGCATTGCGAGGGCAAGCAGAGCGTTTCGACGCGTTTGCGGACCTGCCGCACTACCCCTTCCCCGGCGGTCAATTGCTGCGCACCCCGTTTGCAGCGATGGGGGCTTGGTATTACGGGTTGCGGGATCGGTTGGGGTTCTGA	MANTSYPASYYAASANATPSRPALQDDVETDVCVIGAGYTGLSSALFLLEHGFKVTIVEAAKVGFGASGRNGGQIVNSYSRDIDVIERSVGPQQAQLLGNMAFEGGRIIRERVAKYQIQCDLKEGGVFAALTTKQMGHLESQKRLWERFGHTQLELLDQRRIREVVACEEYVGGMLDMSGGHIHPLNLALGEAAAVESLGGVIYEQSPAVRIERGASPVVHTPQGKVRAKFIIVAGNAYLGNLVPELAAKSMPCGTQVIATEPLGDELAHRLLPQDYCVEDCNYLLDYYRLTGDKRLIFGGGVVYGARDPANIEAIIRPKMLKAFPQLKDVKIDYAWTGNFLLTLSRLPQVGRLGDNIYYSQGCSGHGVTYTHLAGKVLAEALRGQAERFDAFADLPHYPFPGGQLLRTPFAAMGAWYYGLRDRLGF	PGPT0007637_1575	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINE_USAGE	PLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007637-puuB|ordL-K09471	NA	NA
D1-36_01781	558			hypothetical protein	ATGACCATGTCTGAGACCAATTTGTCACCTGACGCTTCGACTGCTAACGCTGTGGCGGCACCGTCCACTAGCGAAGCGAAGGCTGCTGCTGCGCTATCGGTAGTCATGGAATTTCTGGCCAATACCGCGCCCGATAAGGTTGAAGCCGCTGCAGCGAAGCTGGCAGCTCCGGACGCAACTTACGTTTCTCTCAACTTCGACAATCCAGAATTAAAAAAAATCATGCCCTGGACCGGAACTAACAAGGGCCCGAAAGCCTTTAGTTCCTTATTCATGCAGGTATCGGATTATTGGAAGATTGAAGACTTCATCATCAGCACTAAAATGGCATCCGGTGAGGATGTTGCGGTTTTCGGCAAGTTCACCTACCGATCCGTGGCAGTGGGACACGTATTCACATCGCCGTTTTCCATCCATGCCAAGGTACGTGACGGCAAGATGATTTATTTCCAGTTTATGGAAGATACCTATGCATCGGCGAGTTCGTTCAGACAGTCGGGTTCGTGGATGGTAAAGACATCAGCGGATTCAGCCCCTTTTACGGTGAAGGCAGATTAA	MTMSETNLSPDASTANAVAAPSTSEAKAAAALSVVMEFLANTAPDKVEAAAAKLAAPDATYVSLNFDNPELKKIMPWTGTNKGPKAFSSLFMQVSDYWKIEDFIISTKMASGEDVAVFGKFTYRSVAVGHVFTSPFSIHAKVRDGKMIYFQFMEDTYASASSFRQSGSWMVKTSADSAPFTVKAD				NA	NA	NA	NA	NA
D1-36_01782	642	ycaC_2	COG1335	putative hydrolase YcaC	ATGACAAGCGAAACGATGCGTAATCCACATACCGACCATCTCATCACGCCTCAGAACTCAGCACTTCTGATCATTGATTATCAGCCGATTCAGGTCTCCTCCATCCGCTCGATGCCGCGCGAGGAATTGGTCTTTAACATCACCAGCCTTGCAAAAGCGGCGGTGAGTTATGGCGTTCCAGTCGTTCATACGACGGTGAATGTCTCGTCCGGCCTCAACAAACCACCGATTGAGCAATTGCAGGACGTCCTCGGTCACCTTCCGATCTACGACCGCACCACCGTGAATGCTTGGGAAGATGTCGAATTCAAACAGGCTGTTAAAGCGCTCGGGCGTCGCAAACTTATCGTGACCGCGCTGTGGACAGAGGTGTGCTTGGCGTTCCCTGCGCTTGATGCGCTTCTGGAAGGCTACGAAGTATATGTCCCCGTGGACGCAGTGGGCGGTACCTCGGTGGCGGCCCACGAGGCTGGGCTCCGTCGTATTGAGCAAGCCGGCGGCAAGATGACCAGCCGCGTCCAGTTGTACTGCGAGTTCCAGCGCGATTGGGCTCGTAAGGAAACCGTCCCGGGCTTCATGGAAGTTTTCCAAAGTTATGACGGGTTCAACCCGGAGAAACCCGTCGCAAAAGGCGCCAACTAA	MTSETMRNPHTDHLITPQNSALLIIDYQPIQVSSIRSMPREELVFNITSLAKAAVSYGVPVVHTTVNVSSGLNKPPIEQLQDVLGHLPIYDRTTVNAWEDVEFKQAVKALGRRKLIVTALWTEVCLAFPALDALLEGYEVYVPVDAVGGTSVAAHEAGLRRIEQAGGKMTSRVQLYCEFQRDWARKETVPGFMEVFQSYDGFNPEKPVAKGAN				NA	NA	NA	NA	NA
D1-36_01783	411			hypothetical protein	ATGCCACATCCGAACGTCGCCGCGAACACCACTTCTCGACTCGCCCAAGCGGGCGCTTTGGCGTACATCATCTGGGCTCTGCTACACGTCAATGCCGCTTGGTCCATCTATCAGCTCGGCCAATCCATGGCTGAAGGCATGCCTCGGGGGCGCGTGCTGCAGGACGCCTGGAATCTCTTCTGGCTTTCAATTATCGCGCTCATCGTCGCAGTCGTCTTGAACTGGCGTAACGACGTTCGCGGGTGGTGGATCAACCTCTTGGTCATCAGCGTGGTCGATCTCGGTTTCATCTTTTACATGCTCTTTCCCGGCTATGTTTCGATGTGGCCCGGCCTGTCGGGCCCACTGTTCTGGGTTCTGGGGCTCGCACTGTCGAGCCTGGGGCTATACCGCCCGATGCGCCCCGCATAA	MPHPNVAANTTSRLAQAGALAYIIWALLHVNAAWSIYQLGQSMAEGMPRGRVLQDAWNLFWLSIIALIVAVVLNWRNDVRGWWINLLVISVVDLGFIFYMLFPGYVSMWPGLSGPLFWVLGLALSSLGLYRPMRPA				NA	NA	NA	NA	NA
D1-36_01784	912	dmlR_7		HTH-type transcriptional regulator DmlR	ATGGCTGACCGATTCGAAGATATGCGGGCGTTTGTTGCTGTCGTCTCAGCCGGCGGGTTTGCTGCGGGCGCGGAACGCCTCGGCATCGTCAAGTCGGCGGTGAGTCGCCGAGTTCGGGACCTCGAGGACAGGCTTGGGGCGCGGCTATTTGACCGGACGACGCGCCGTGTCCAGCTCACGGAAGCGGGCCGTGATTTTCATGATCGCGCCGTCGAGTTGCTTGCGGGGCTTGAAGAGGCCGAGGAAGCCGCTTCGAGCGCAAGCAAGGCGTTGAGGGGGCGTATCCGTATCGCCGCTCCGGTCTCATTCACAGCGCACTGCCTGGCACCGGCAATAGGCCAGTTTCTGAACCGCCATCCCGCAGTCTCGGTCTCCATCGACACCGATGATCGAACGGTCGATCTGATACGCAACGGCTTCGATCTCGCGATCCGCATCGCGCGGCTTCCAGACTCATCTCTCGTGGCTCGGCGGCTCGTTACCATCCGGCACGTGTGCGTCGCCAGTCCGGCACTTCTAGAGCGCCTCGGGACACCGCAAAGTCCCGTTGAATTGTCGCGCTTTCCGGGCGTGACTTATTCTAATGTCGAGGACGCTCACTATTGGAAATTCACCGGCAACGTCGTGCCATCAGTGACCAGCCGGCTCGACTTCGCCAACGGCGATGCCATTCGCGAAGCGGCCATCGCAGGGCTTGGCGTAGCGGTACTTCCAACCTTCATCGCCCATGACGCGGTACGGCGCGGAGCGCTTTCTATTGTGCTCGCGCAATATATGCGACCACCAATCGCAATGTATGCGGTGCATCCGTCAATGCGTAATCAAACCGCGCGAGCGCGGGCATTCATCGACTTTCTTGTCGATACGTTTGGCGGTGAGCCATTCTGGGATCGGGATCTGCTTGACAGTTAG	MADRFEDMRAFVAVVSAGGFAAGAERLGIVKSAVSRRVRDLEDRLGARLFDRTTRRVQLTEAGRDFHDRAVELLAGLEEAEEAASSASKALRGRIRIAAPVSFTAHCLAPAIGQFLNRHPAVSVSIDTDDRTVDLIRNGFDLAIRIARLPDSSLVARRLVTIRHVCVASPALLERLGTPQSPVELSRFPGVTYSNVEDAHYWKFTGNVVPSVTSRLDFANGDAIREAAIAGLGVAVLPTFIAHDAVRRGALSIVLAQYMRPPIAMYAVHPSMRNQTARARAFIDFLVDTFGGEPFWDRDLLDS				NA	NA	NA	NA	NA
D1-36_01785	975	yjiE_1		HTH-type transcriptional regulator YjiE	ATGACGGATTTTCGGACCTTAAAGGATTTTATTGTGCTGGCCCGCGTTCGAAGCTTTTCCCAAGCCTCGATACATTGCAATGTAACAACCTCTGGCTTGAGCCGTAGGATCACCGCTTTAGAGGAATGGTTAGGTGCTTCGTTGTTTGATCGTGCACGTCACCAGCTAGAGCTTACCGATGCGGGTGCCGAGTTCCATATCGCTGCTGTCGAAATTGTAGAGCTGTTAGAAAAAACGAGAAACTCGGTTATCCGTACCCAAGAGAAGTTCAGGCGGCAAATTTCTATTGTTGCGCCACATATCATGTCGAGAGCGTTTTTTCCGGCTTGGTTGCCGAGGGCGAGCAAGCAGTTAGAGGCCACTCGTTTTTCCATAGACTTCGCCAATCTTCCTGAATGTTTCAAGCAACTAACCAATCGCTCAGTGGATTTTGTCGTCGCTTTTGATGACAAACATAATGGCATTAACGAACATCTTAATAAAACATTACCACTAGGGGAACTCGAATGCTTGAAAATTGGCCGCGAGTGGCTAGTTCCTGTGAGCGCACCTAATTTGCTAGGAGAACCTCTAAATAGCATTGGTTCACCTAGAGGTGAAATCTCATATCTTCATTACCGCCAGGATTGCTCTTTAAGTTGGGCGCTTGAAAAAATGTTAAAAGTCGCTCCAAACTTACCAGCACTTCGTAAAATTCATGATAGCTCTCTGGCCGATGGTCTTCGTTCTATGGCGATAACCGGATTAGGCGTTGCATGGCTTCCTTTGGAGATCGTTCGGAACGATCTGGAAAGGAAAGATTTGGTTCGGGCGGGCACTGCCGATTTTGATATAGCGTTAGAAATTAATATTTATCGTCGCAAAGAAAAGCTTGGCGCGAATGCTGAGATCTTATGGGACAATCTAAGTAGCATGACAAATGATTCCAGATTTACCGTAGCGAGCCCCGGCACCTCGTACACTTCACTAAGCTAA	MTDFRTLKDFIVLARVRSFSQASIHCNVTTSGLSRRITALEEWLGASLFDRARHQLELTDAGAEFHIAAVEIVELLEKTRNSVIRTQEKFRRQISIVAPHIMSRAFFPAWLPRASKQLEATRFSIDFANLPECFKQLTNRSVDFVVAFDDKHNGINEHLNKTLPLGELECLKIGREWLVPVSAPNLLGEPLNSIGSPRGEISYLHYRQDCSLSWALEKMLKVAPNLPALRKIHDSSLADGLRSMAITGLGVAWLPLEIVRNDLERKDLVRAGTADFDIALEINIYRRKEKLGANAEILWDNLSSMTNDSRFTVASPGTSYTSLS				NA	NA	NA	NA	NA
D1-36_01786	549			hypothetical protein	ATGACTATTAAGGGAGGCCAAGACGCCATCGTTAACGAAGCAATCGAACTTTATGATCTCGGGTGCCGTTACTATCACTATCATGCTCGAAACCCGATCACGCAGGAGCAAACCACCGATAATGATATCTATCAGGCGGTGAGCCGAAATGTACAGCGCTCCTGCAAAGACATTCTATTGAGCTTCGGGGCTAGTCGCAACGGTAAAGAGGTTCAAGAAAACATCAGGGCTTTTGGGGAATGGGAACGGGTTAGCCAATGTGCTTTGCCTTTACATTTCGGCGGAGCTCATTTCGTCACCATCCAAGCCGCGATAGAACTGCAGATCATATGTGAGTTGGAAAAGAAAACGCAAAAACTCGACTTTGAATATATGTACAGCTCTGCTTTTCTTGACGATATAAAAAAATACGTGCCGTCTGCCCGTGTTGTACAGGCGACCATGGGAACAAACTCCACGAGTAAGGGGGCTGACTACGGTAGTACTTCACAGCACAACGTCAAAGGCCTCTCGGCGTACCAGAAAATGCCGGAGCTTTTCAATGACTGA	MTIKGGQDAIVNEAIELYDLGCRYYHYHARNPITQEQTTDNDIYQAVSRNVQRSCKDILLSFGASRNGKEVQENIRAFGEWERVSQCALPLHFGGAHFVTIQAAIELQIICELEKKTQKLDFEYMYSSAFLDDIKKYVPSARVVQATMGTNSTSKGADYGSTSQHNVKGLSAYQKMPELFND				NA	NA	NA	NA	NA
D1-36_01787	1251	nanT_1		Sialic acid transporter NanT	ATGACTGATGTAAACGGTGTGCACCCAAAAGCCAGTTATCGCTGGGTTATTCTTCTGATCGCCACGGTGGCCCAAGCGAGCGCCTGTTTCTTTGTACAAGGTATCGGTGCTATTGCTATTTTCATCCAGCAGGATTGGAACCTGTCCACGATGCAAATAGGATTATTGGTCTCAGCTGCACAGTTAGTTCCCATTCTCGGCTTGCTAGTTGCTGGGGAGTTGTTGGACAGATTTGAAGAGCGCAAAGTTGTAGGTGTGGGAACTTTAATCGTTGCGGTTGCACTTTGCGCATCAACGCTTGCTAGCAGTTACCTGTCATTGCTTATGTTTTTGATTGTGGTCGGTGCTGGCTACAGCACCGCGCAACCAGGCGGCAGCAAATCCGTTTCTAGCTGGTTTCCAAAAAGCCAGTTAGGATTTGCTATGGGTATCCGCCAGGCTGGCTTGCCTTTGGGTGGTGCGCTTTCAGCGGCGATACTCCCCTACATTGCCACCCATTGGGGGTGGCAGTACTCCTTTTTAGCGGGGGGACTTGTTGCGCTGTTTGGAACTCTGACTTTTTTAAGTTTTTATCGGTCTGCCAATGCTAACAAGCCCCCGCCGGTGAAAGCTGAAGGAAAGCAATTAAAAGCAGTTTTGGCTTCGAGATTATCCATGCTAAACGATCCTGCGATGAAGAATATTATGTTCTCGGGGGTTAGCCTTATTTCGGTCCAGTATGGGATTTTGATATTCACCGCACTTTATCTTTATGATTTGCTCGATTTGAGCATCACTGCCGCTGCCACATTGCTGTTGATTGCCCAGGGAGCGGGCATAGCGGGGCGTATCATCTTGGCTGCATGGAGTGATCGCTGTAGATCGGGCCGCTATTTCCCTGTGTTGATCTGTATGCTCGCAGTTATTTTTGGCTTGATCATTCTCGCTTGGGCTCCTATGCGTTCTTTCTGGATGTTGAGCGTATTAGTCGGCTGGCTCGGATTCTTCGGTTTTGGCTGGTATGGTCCTTGGGTAGCCTACGTTGCTGATTCTGCACCACCGGATAAGACTGGATTCGCATTAGGTTTAGCCATGGCGATAAATCAAGTTGCGATTGTCATAATGCCACCCGCATTGGGTTTCCTGAAGGACTTGTCTCATAGTTATCTGCCAGGGTGGAGCGTATTAATAATCATGACTCTAACCGCACTGGTTTGCACAGCCTGGAGCACATTTGGCCTCTCGAAATCACCGTCGCTGAGTAATAAGTAG	MTDVNGVHPKASYRWVILLIATVAQASACFFVQGIGAIAIFIQQDWNLSTMQIGLLVSAAQLVPILGLLVAGELLDRFEERKVVGVGTLIVAVALCASTLASSYLSLLMFLIVVGAGYSTAQPGGSKSVSSWFPKSQLGFAMGIRQAGLPLGGALSAAILPYIATHWGWQYSFLAGGLVALFGTLTFLSFYRSANANKPPPVKAEGKQLKAVLASRLSMLNDPAMKNIMFSGVSLISVQYGILIFTALYLYDLLDLSITAAATLLLIAQGAGIAGRIILAAWSDRCRSGRYFPVLICMLAVIFGLIILAWAPMRSFWMLSVLVGWLGFFGFGWYGPWVAYVADSAPPDKTGFALGLAMAINQVAIVIMPPALGFLKDLSHSYLPGWSVLIIMTLTALVCTAWSTFGLSKSPSLSNK				NA	NA	NA	NA	NA
D1-36_01788	561			hypothetical protein	ATGAGCCTTGATGGCGCGAATGGCCGCCATGTAACCGCTGGTTCCGATGCCGACCTGACCCCAATATCCACATTCATAGCGATATCCCAGCTTCCAGCACCGTTCTTTGCCAAGCCGATCATCATCAGTCCAAGCCACTCCAGCGACTGGGCCACTTGCAAGCCACCGACATCCAACGGACGCAGGCCGAGGCTCGTGAGAAGGGCTGAAACGAGCGCCTTGGGGTTCGCATCGTCCGTCGCGATAAACGCGTCCAGACGTTCATTCTTCGCAAGGACGTGGCCGGACAGGGTATTGAACGCCTTGACGACATGTGAGTTGGCCGGGGATCATCCGCGACATCGTCTTCACTGGGAAAAAGACCTACGGCCAATTCCTAAAATCGGAGGAGGGAATCTGCTCAACATCGTCATGTGGAGCGCCAAGCACTATTCGCAATCGTACGTGCGCCCGGGCTCCAGGCTTTTTGAACAGTTGAGCCTAAATCCCGTACAGGCGATCGAAGAGGTGAAGACGCTATTGCGTAGGGGTGGATGTATTTTTCCGGCGACTAACGAATGA	MSLDGANGRHVTAGSDADLTPISTFIAISQLPAPFFAKPIIISPSHSSDWATCKPPTSNGRRPRLVRRAETSALGFASSVAINASRRSFFARTWPDRVLNALTTCELAGDHPRHRLHWEKDLRPIPKIGGGNLLNIVMWSAKHYSQSYVRPGSRLFEQLSLNPVQAIEEVKTLLRRGGCIFPATNE				NA	NA	NA	NA	NA
D1-36_01789	606			hypothetical protein	ATGAGCAGACGGCAAATAGCCATATTCCGCAGGATAGTGATCCCCGCCGCTTGGGTGTCCGGGCTTACGACGATAGGACTCTTGTGGGGCATGATACGGTTTTCGCCCGATAAGCTTACAGTCGAAGGCCGTCAGCTCTTGCTGGCTTCTTTTTCTATTTTTTTCCTCGCCACAGGGTATCTGATACGGCGCAAGAGACGAGCAAAAGCACTTGTAGCATCCATCAATTTAAAAGAAGGCTTGAGCCTGGACGATACTCAGCTGCTCGGCTATCCCAGCCCCCTGTTTTTCGTCTTTGACGTCTCTAACAAAAAACTCGCTCAATGCCAAAGCACCGCCGGCGATTATCAAATTCGAGACTTCATGTGGGTGACGGGCTGGCATTTTGAGTGGCAACGGATCGACAGCAGGGTGACAGGCGGAGTCCTTCAAATAGTCGATGGGGCAGGCATGAGCGTTCCAGCCGACGAAATTCGGCGCAGATACATAAAGTTCTCGCTAATCCTGACGGTTGCCGATACGAGTCATCCTCTCTTGCGTTTTCCAATGAACCGGAGCGCAGCTGAAGGGTGGTGTAGCCGGTGTAATGTATTTTTCACGTGCTGA	MSRRQIAIFRRIVIPAAWVSGLTTIGLLWGMIRFSPDKLTVEGRQLLLASFSIFFLATGYLIRRKRRAKALVASINLKEGLSLDDTQLLGYPSPLFFVFDVSNKKLAQCQSTAGDYQIRDFMWVTGWHFEWQRIDSRVTGGVLQIVDGAGMSVPADEIRRRYIKFSLILTVADTSHPLLRFPMNRSAAEGWCSRCNVFFTC				NA	NA	NA	NA	NA
D1-36_01790	231			hypothetical protein	ATGAAGTGCTATCTGTGCGCGATGGAAGCGAAGCGGTCCGAAGCGGATCAAAGTGGAGAGCTTGTCGACTGCGGTGACTGCGGCACCTACAAAATTTCAAGTCTTGTGCTCAAAGAGTTGGAGAACAAGAAGTTCGATTATTCTAAAATGCGCGATGACCTTCACCGTCAGCGGCAGTTTAATGCTACTTCTGTCGCCGAGATCAACACAGAGACGGCCATCTGGGCTTGA	MKCYLCAMEAKRSEADQSGELVDCGDCGTYKISSLVLKELENKKFDYSKMRDDLHRQRQFNATSVAEINTETAIWA				NA	NA	NA	NA	NA
D1-36_01791	885	perR_1		HTH-type transcriptional regulator PerR	ATGTTCGCCAAACTACCCCTTACCGCCTTGCGCGGCTTCGAATCCGCCGCACGGCTGGGCAGCTTCAAGGCGGCGGCCCAGGAACTGAACGTCAGCCCGGCGGCGATCTCCCATCAGGTCAAAAGCCTTGAAGCGTTTCTCGGCGTGCGACTGTTCGAGCGTTCCAGTCAAAATGTGCGGCTGAGCGCGGACGGCGAACGCCTCCAGCCCTACATGCACCGCGCGCTGCTCGATATCCAACATGGCCTGCAAACGCTATCGCCATCATGTACCGCACAATCGCTGGTGGTGAGCACAACGCCAGCGTTCGCCAGCCTGTGGCTGATACCTCGGCTCGGAGATTTTCATCGAAGACATCCTGAGATCGACCTCAGGCTGCACAGCAGCAACGACGTGATCGACCTGCGACGTGACGCCAGCATCGACCTGGCGATCCGCGCCCTCTTCACCTCGGATCCTCAACTGCTCGAGCAACCTCTACTGGAAGAATATTTCGGCGCGTATTGCCACCCCGACTGGCAACCACCCGCAGCGGGCTCGCCCATCGAACTGATTGACGTCCCCTGGCTGAGCAGCACAAACGTCACGGTGGACTGGGCTGCATGGTGCGCCAAGTCCGGCACCCTGGGTTGGCTGCAAAACGCGCGCCTGCGCCGCTATGACGAGGAACAGCACGCTCTGCAGGCAGCGGTCGCCGGGCATGGGCTGGTGCTTGCCAGTAATGTGCTGGTTGCGGAAGCGGTTGCACGCGGGCAACTGGTTGGTTATCAGCCTGAGATTCGCTTGGCGGGTGCGCGATATACGGTGGTGTGCGTACCGGGGCGGGAGCGGCAGGTTGAGGTGAGGGCTTTCAGTGAGTGGGTGTTGGGGCAGGATGTTGATTGA	MFAKLPLTALRGFESAARLGSFKAAAQELNVSPAAISHQVKSLEAFLGVRLFERSSQNVRLSADGERLQPYMHRALLDIQHGLQTLSPSCTAQSLVVSTTPAFASLWLIPRLGDFHRRHPEIDLRLHSSNDVIDLRRDASIDLAIRALFTSDPQLLEQPLLEEYFGAYCHPDWQPPAAGSPIELIDVPWLSSTNVTVDWAAWCAKSGTLGWLQNARLRRYDEEQHALQAAVAGHGLVLASNVLVAEAVARGQLVGYQPEIRLAGARYTVVCVPGRERQVEVRAFSEWVLGQDVD	PGPT0026360_6314	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566	NA	NA
D1-36_01792	567			hypothetical protein	ATGCAAGGCGCCTCTCGCAAAATTCTTCAGGCCGTGCTCTATGAGGCCGGTGGTGTGCTTTTTGTCGCGCCATCCCTCGCGCTTATCTATGAGCAGGGAATGGGCTATTCAACCCTGCTGTCCTTGGTGATTTCCGCCGTTGCGCTGGGCTGGAACATGCTTTTCAACGGCCTGTTCGAATGGTGGGAGCGTCGTCAACCCAACCGCCATCGCAACTGGCGGCGCCGACTGCTTCATTCCCTTGGGTTCGAGGGCGGCTTGACCCTGATTCTGACGCCGGTAATTGGAGCCTGGTTGGGTATCGGCCTGTGGTTGGCGCTGGTGACGAATCTTGGATTATTTGTGTTTTTCTTTTTTTATTCGCTGGGTTTTCAGTTGATATTTGATCGAGTGTTCGATGTGCCACTTTCGGCGCAGTCAGATCAGGGATCTACGGCGCAGTCCGCTCAGCACATGGCCGGAACACCCCAGCACTGTCGCGCATCTACCGAAAAACGCACAATCGGAGTGCTCGGCAGTGGATGTGTACAGGATCGAGTTCGAGAACGACCGTTGGACACTTTATAA	MQGASRKILQAVLYEAGGVLFVAPSLALIYEQGMGYSTLLSLVISAVALGWNMLFNGLFEWWERRQPNRHRNWRRRLLHSLGFEGGLTLILTPVIGAWLGIGLWLALVTNLGLFVFFFFYSLGFQLIFDRVFDVPLSAQSDQGSTAQSAQHMAGTPQHCRASTEKRTIGVLGSGCVQDRVRERPLDTL				NA	NA	NA	NA	NA
D1-36_01793	219			hypothetical protein	GTGGATGTGTACAGGATCGAGTTCGAGAACGACCGTTGGACACTTTATAAATCCCATGGCTACAAACCGATCCGCCAAGCGGACAGCCAAGGCGAGTTGATCGATCATGTTCTTGCCTTGACGCAGGGAGAGGGTGTCGTGGTTCGGTTCATTGCAGACGGCGGTATACGCGAGGTGAGATTGGGGGATGTGCAGGGGGACGAACCGCGTTCTGATTGA	MDVYRIEFENDRWTLYKSHGYKPIRQADSQGELIDHVLALTQGEGVVVRFIADGGIREVRLGDVQGDEPRSD				NA	NA	NA	NA	NA
D1-36_01794	525			hypothetical protein	ATGCCCCGAGAATTTGAGCTCATTATGTCCGTGCCCGTCCCCTCGAGGTCCGGCGTCACCCACCTTTACAAGTCGACGAACCTGGCGGACGCTTTTGCGATTCGCCTCCCTGCGGGCACATCCAGCGATCCAGAGGTGCTCGCTCGATTCATCCTTTCCCACCAGCCATCCTGGATCGGATGGCTCATGAAAGTCCGAGACACTGTCGTTGCCTGTTTTAGGCTCAAGACAGCCAGGCATTTGGCAACACTTGCTCATCGTATTCAAATCTTCAAGGTCTACAGCACCGACCAGACTGAAATCGTGCTGGGAGAGGACGACAAGCACCTCGACTTCCGGATATCGATCCTGTGCTCTGGAGAGGTAGAGCAGGAAGGTAGTCGCCAACTGGTTTTCTCAACCGTGGTCCAGTGTCACAACCGTCTGGGCCGGGCCTATATCTTCGTGATTGCGCCATTTCATCGCTTGGTTGTTAAGGCGAGCCTGCGCCGCGCAGCGCGCATTGGTTGGCCTTTGGCTGCCTGA	MPREFELIMSVPVPSRSGVTHLYKSTNLADAFAIRLPAGTSSDPEVLARFILSHQPSWIGWLMKVRDTVVACFRLKTARHLATLAHRIQIFKVYSTDQTEIVLGEDDKHLDFRISILCSGEVEQEGSRQLVFSTVVQCHNRLGRAYIFVIAPFHRLVVKASLRRAARIGWPLAA				NA	NA	NA	NA	NA
D1-36_01795	645			hypothetical protein	TTGAAGAAAATCGTCCTGGTTGCTTTCGACCAATTCACCGATATCGACCTATTCCTGATGTGGGACATCTTAGGCCGCAACACCGAGGACTGGCACGTCCGAATATTGGGTTCCAGCCCTGTCGTACGATCGGCGCATGGCCTGCCTGTTTCGGTGCACGGTCCGCTTTCCGAGGCCAATAATGCCGACGCGGTATTGTTCGCCAGCGGCAAGGAAGGAATACCCGCCGCACTGGCCTCCCCGGATTTCCTACCGTCGTTTGAACTTGACCCGAAACGCCAGCGAATCGGCTCCATCTGCGCCGGCGCTTTCATTCTCCAACGGCTTGGGCTGCTCAGCGGCCGAGCAACGACACACCCGGATGCACGATCGGGCTTGCAAGCCCTGGGACTTGAGCCCGTGGACCAGCCTCTTGTATGCCAGGGCAACGTCGCAACCGCTGGCGGATGCCTTTCGGCGCTCTATCTGGTGGGATGGTTGGTTGAGTCCTGGTTCGATGCCGACAAGCGCCGCGCGACGTTGCTCCCTGTCCTGCCCGCCGGGCAGCAGGCGCTGTATGATGCGCTGATCGGGCTCAGTATCCGACAAGGAGAAGTGGCCGCCTCCCAACAAGAAACGCGACAAGGCATGTCATCTAATTGGTAG	MKKIVLVAFDQFTDIDLFLMWDILGRNTEDWHVRILGSSPVVRSAHGLPVSVHGPLSEANNADAVLFASGKEGIPAALASPDFLPSFELDPKRQRIGSICAGAFILQRLGLLSGRATTHPDARSGLQALGLEPVDQPLVCQGNVATAGGCLSALYLVGWLVESWFDADKRRATLLPVLPAGQQALYDALIGLSIRQGEVAASQQETRQGMSSNW				NA	NA	NA	NA	NA
D1-36_01796	561			hypothetical protein	ATGGAAAAACTAACGCGTCACCATTGGATCGCGGCAGGTTTCGAGGCCCTCGATCAGACAGGGCATATTGGCGTGTCAGCCGAGAGTCTATCGCGCCGTTTGAATGTGACCCGCGGATCGTTCTATCACCATTTCCGCAATCGCGATGATTTTGTCCGCACCTTGCTGGCCGCTTGGGAAGAAGACTACACGGAGCGCATGCTCGCTTTTGCGGCCCAGGGTCGTAGCGCGGGCGAAATCTTGAAACGCTATTTGAATATTGCCGCTGAGAAACAACCTGGGCGGGAAGTCTCCATCCGAGCCTGGTCGCTGCACGATCCGTTGGTGGCCGAGTTTCAGCAGCGTGTAGACACACGACGATTGGACTTCGCGATACGGACGTGTCGTCGCTTGGCCCATAGGCCAGGCGAAGCAGAAGTGATGGGGCAGGTGGCCCACCTGTGCCTGATTGGGGGGCAACAGGCGGGGCTGCGGCGTGATGCCGCTCGTTTCAACCGTTTCGTGCATCGAGCTTTTTCACTTTTCGAAGGGGCTCTCCCACCGTGGCGATCCAGGTCGTGA	MEKLTRHHWIAAGFEALDQTGHIGVSAESLSRRLNVTRGSFYHHFRNRDDFVRTLLAAWEEDYTERMLAFAAQGRSAGEILKRYLNIAAEKQPGREVSIRAWSLHDPLVAEFQQRVDTRRLDFAIRTCRRLAHRPGEAEVMGQVAHLCLIGGQQAGLRRDAARFNRFVHRAFSLFEGALPPWRSRS				NA	NA	NA	NA	NA
D1-36_01797	612			hypothetical protein	ATGAACAGGACGCTCTGTACCGCACTGAGTCTTTCGATTATTGCGTCATCTGCCGGGTGCGCCTCACAAGCTGTAAAGGAACCGTTTAAAGCGCCCCAGATTTACGGTTATACCTTGGGTCAGCCGCTTTCCAGCGATGAGTTCAAGGCGCTTTCCGCTACCGGAGGCGAGTCGCTCACGGGCTCCAAGATTTACAAGCGCGTCGATGAGCAAGGCGATACCTACGAGGTCTTCCTCGATCATCAGATTCGCCCAGATCTCATTACGAAGGCGAGTCGTGCTTTTGTCAGTCAGCCTGAATGTGAGGCTGAATTTGAGGTGCAGGTCGCCCAGTTGAAGCAGCTCCTTGCCAGTCACGAAGACCGTACGCCAGTGACGGGTGATCGTTATGTCAGCTTGAGCACCACGCCATGCAATGTTGACCGGTATGATCAATCCCAAACCTATCGTTATGCCCTGATCGTGTCCGTGGACACCGTCGCCGCTCCCTCGAAACGAAGCCTGGGCGATAAGATCCACGATGCCTACGGGGCCGTCGGGATGACTGTGTTCGTCATCGCCCTGTTGCCGTTTGCGCTGGTTGCTTTGGCCGTTGATAAGGCCACCGATTGA	MNRTLCTALSLSIIASSAGCASQAVKEPFKAPQIYGYTLGQPLSSDEFKALSATGGESLTGSKIYKRVDEQGDTYEVFLDHQIRPDLITKASRAFVSQPECEAEFEVQVAQLKQLLASHEDRTPVTGDRYVSLSTTPCNVDRYDQSQTYRYALIVSVDTVAAPSKRSLGDKIHDAYGAVGMTVFVIALLPFALVALAVDKATD				NA	NA	NA	NA	NA
D1-36_01798	177			hypothetical protein	ATGGCAGATGACCTGAGCAACCGCGGGCCGCAGGACAGGAACCGCATCAACATTACCGAAGCTTGGGAGTTGAAGTACTGGGCGAATGAGTTCGACGTGACTGAAGAAGTACTCAAGGCAGCGGTGAAGGCTGCTGGGCCGATGGTGGCCGATGTTCGCGAACAACTTAAAAAATGA	MADDLSNRGPQDRNRINITEAWELKYWANEFDVTEEVLKAAVKAAGPMVADVREQLKK				NA	NA	NA	NA	NA
D1-36_01799	429			hypothetical protein	ATGAGCACGACTGAACAAGTACAAAGCACTGGTAAATACAGCACCAAGTGGCAGGAACGCTTCGACTTCTTTAACACCTACGGTGCGCCAAGCGACCCGCGCTACAAGGAAGCCTTCAAGGCGCTGCCTGGCTTCAAGAAAAAAATACTGATCAATGCAAACGTGATCGCATTTTTCTTCGGCCCTATCTACCTGTTCGTCCTGGGCCTCTGGAAGAAGAACCTGGCCCTGCTGGGTATTTTCCTGGCGATCAACATCGCCTTGAGCGTCATTTTCGCCATCATTGGGATGGAATTTCCGCGGCCGTTGAGCACGGGTCTGAGCATCGCCATGTCGATGATGTATGCGCTGATGACCAACTACGCGTACTACCTCAAGGAAGTGAAAGGCGAGCAAGGCTGGAACCCGTTCAAAGGCATGCGTCTCTGA	MSTTEQVQSTGKYSTKWQERFDFFNTYGAPSDPRYKEAFKALPGFKKKILINANVIAFFFGPIYLFVLGLWKKNLALLGIFLAINIALSVIFAIIGMEFPRPLSTGLSIAMSMMYALMTNYAYYLKEVKGEQGWNPFKGMRL				NA	NA	NA	NA	NA
D1-36_01800	711			hypothetical protein	TTGTCGAACGATCAATCCCATCTGTATGAGCTGACGCTGAAGCAAGTCTACGACGGTTTCAAGCAACTGATCCCCATCTCTCTTTTTGTCGTCGTGTTCGGTGTTGCTTTCGGCCTGGCGGCTGCACAAACGGGCCTGAGTGACACGTCAGCCGTGCTCATGAGCACGCTGGTTTTTGCCGGCGCTTCTCAATTTGCCGCGCTGGATCTGTGGGGCCAGCAAGTGCCGGTCGTTCCGCTGATGATCACTGTTTTCGCCATCAACGCCCGGCATTTGTTGATGGGCGCGACGCTTTATCCGTGGTTACGGGAGCTACCCGTTGCCAAACGATACGGTGTCATGTTGGTTGTTTCGGACGCCAACTGGGCCATGGCGATGCAGGCGTTCAACCGGGGCAAGCCGGGACTGGGGATTTTATTCGGTGGCGGCATTGCACTCTGGATCACTTGGATCCTGGGAAGTTGGCTGGGACTTCATTTTGGCAGCGTCATCGAGAACCCGGTCAGTTTCGGGCTCGATATGGTGATGGGCTGTTTCTTGTTGGCGATGGTCGTGGGTGGGAAGAAGAACCTGCGCATGTTCATCATCTGGACCGTGGCGGCATGCTCATCGCTATTGGCCTACTGGTATTTGCCGGCTAACAGCCATGTCGTGGTGGGTGCTCTGGCGGGGGGCGTTCTGGGCGCAGTGTGGATGGAGAAACAACAATGA	MSNDQSHLYELTLKQVYDGFKQLIPISLFVVVFGVAFGLAAAQTGLSDTSAVLMSTLVFAGASQFAALDLWGQQVPVVPLMITVFAINARHLLMGATLYPWLRELPVAKRYGVMLVVSDANWAMAMQAFNRGKPGLGILFGGGIALWITWILGSWLGLHFGSVIENPVSFGLDMVMGCFLLAMVVGGKKNLRMFIIWTVAACSSLLAYWYLPANSHVVVGALAGGVLGAVWMEKQQ				NA	NA	NA	NA	NA
D1-36_01801	309			hypothetical protein	ATGAACATTGAAACGGCGGGTTATGGCACCTTGCTTGTCATCTTGATCATGGCCGCAGTAACCTTGGCCACTCGGTGGGGCGGTGTTTTCGTGATGTCGTTCGTGCCGATCAACTATCGGGTGCAGCAGTTCATCACGGCCATGTCCGGCTCGGTGTTGGTGGCCGTGCTGGCTCCGCTGGCGGTTAAAGGTGACAACGGCGCACGCCTGGCTTTGCTGGCCACCGCAATCGTCATGCTGACGCTGAAAAAACCGCTGCCGGCAATTGCGGCCGGCATACTTGCAGCGGCTTTAGCCAGACAGTTTTGA	MNIETAGYGTLLVILIMAAVTLATRWGGVFVMSFVPINYRVQQFITAMSGSVLVAVLAPLAVKGDNGARLALLATAIVMLTLKKPLPAIAAGILAAALARQF				NA	NA	NA	NA	NA
D1-36_01802	207			hypothetical protein	GTGTCAACTCTCAACGAAATCGCAGCGAACCACGCGAGAATGGCAAAGTTAAAGGAAGAGGAGTCGATGCGGTTGAGTGCGCTTCAGGGACAGGTGGTGGGAAGTTTTGAAATTCCGCCCATCGAGGCGCCACAGGAGATGTCGCTGCACTTCATGACGGGTATACAGGATCACTCGTTCGGGGAGGCGGCTGCGCTGAGTTTTTGA	MSTLNEIAANHARMAKLKEEESMRLSALQGQVVGSFEIPPIEAPQEMSLHFMTGIQDHSFGEAAALSF				NA	NA	NA	NA	NA
D1-36_01803	1194			hypothetical protein	ATGCGCAAGGATTACCTGGCTTTTTTCGTCTCGATGTTCCTCTCGCGGTTGGCCGATCAGATCTTGCTGTTCATCGTCCCGCTGATTGTCTTCCAGACCACCAACAGCGTCTCCTGGGCGGGCCTGGCGTTCTTTGTCGAATCCTTGCCACGCTACCTGGCGTTCCCGATCTGCGGCGCGCTGTGCGACAAGTTTCCGCCGATTCGCATCCTGCACATCAGCCAGGTCTATCGCGCCGCAGCCTGCGGCGTCGCAGTCTTGCTCTATGGCGTCTTTGGCGGTGTCTATTGGATCGTGGCCCTGTCGGCCCTCTGTGGCGTGTTGACTACCCAAGGCATCATGGCCCGCGAAGTGGTCATGCCTTACATCTTCAAGCACTACACCTACACCAAGACGCTGTCCTATTCGCAAATCGCCGACCAGACCGGCTTGGTACTGGGCCCGCTGGTCGCAGCGCTGCTGCTTGAAGTGTGGGCGTGGCACTGGGTGCTGCTGGCGATCGCCGGACTGTTCCTGCTGGCAGACCTGGCCATGTTGTACTGGCAACGCACCAGCTCGGTCACCCTTGAGTCCTTCGAGCAACACCACGACCTCTGGTTGAACCCGTTGCGCATTGCCCTGGGTCACATCCGCAACTTGGCGGAACTGAAAAAAGTCATCAGCCTGGCGGTGGGCGTCAACCTGATCATCGGCGTCACCCTCGCCACGTCGGCGGCCATGGTCATCGGCCACTATGGCGCCGGAAAAGATGATTACGCCGGGCTGCAGGCGGCCGGTGCCGTGACCACCATAGTCATCCTGTTTCTCCTGGCCCGGGTCACCTTGCCTTTGAAACTTCTCGGCGCCCTCTCCTACACGCTGATTGCCCTCGGCGCTTTCATCACCGCGCTCAGCCCGAACATCTGGGGCTACGTCGTCGGTTTCCTGCTGATCGTCGGTTTCGACAAGATGTTCAACGTGTACATGCGCAGCATCCGTCAGCAGGTCATTCCCCCACAGGACTTTGGCAAGACCGTCGGCGTGATTACGCTGCTCAACAACCTGTCGCAACCGTTCGCGGGCTTGCTCGTCGCGGTGTTGGCGGCACCGGTTGGGACGCAGGAGGTGATTGTGCTGCTGGCGGTGGTCACCAGCCTGATCGGCGTCGGTGTGGTCGTGATGAACAGGCAATCAGCACAGGGGACAAGCGTCTAG	MRKDYLAFFVSMFLSRLADQILLFIVPLIVFQTTNSVSWAGLAFFVESLPRYLAFPICGALCDKFPPIRILHISQVYRAAACGVAVLLYGVFGGVYWIVALSALCGVLTTQGIMAREVVMPYIFKHYTYTKTLSYSQIADQTGLVLGPLVAALLLEVWAWHWVLLAIAGLFLLADLAMLYWQRTSSVTLESFEQHHDLWLNPLRIALGHIRNLAELKKVISLAVGVNLIIGVTLATSAAMVIGHYGAGKDDYAGLQAAGAVTTIVILFLLARVTLPLKLLGALSYTLIALGAFITALSPNIWGYVVGFLLIVGFDKMFNVYMRSIRQQVIPPQDFGKTVGVITLLNNLSQPFAGLLVAVLAAPVGTQEVIVLLAVVTSLIGVGVVVMNRQSAQGTSV				NA	NA	NA	NA	NA
D1-36_01804	489			hypothetical protein	ATGTTCAAATCGCGCTCGTTGATTGCCGCAGTGACCTGTTTCGCCCTGGCGGCCAGCCCTGGCATTGTTGTCGCGGACCCGGGAAACGGCAAGGGAAACGCTCAATTTGATCAAGGTCCCGGTCAAGGGCAAGGAGGCAAGGGCGGGCAAGGCAACAAGGGGCGGCAAGGGAATCCTGGGAACAAGGGCAACCAAGGTGGTGGCGATTGGCATAACGGCCCCAGCATCGATCGTGGCGGCATCCTGGGTGTGATTGGCGGTTATCGCGATTATTGGAGCCCCGGCCCGGCATTGCCGCCGGGCATTCAGAAAAACCTGGCCCGAGGCAAGCCGTTGCCCCCCGGCATTGCGAAGAAGCTCGATGGCCGGCTGTTGGGACGCTTGCCGCACTATGACGGTTATGAATGGCAGCAGGTCGGCTCGGACCTGATCCTGGTGGCGATTGCCACTGGCATCATTTATGAAGTGCTCAACGGTGCGTTCGACTGA	MFKSRSLIAAVTCFALAASPGIVVADPGNGKGNAQFDQGPGQGQGGKGGQGNKGRQGNPGNKGNQGGGDWHNGPSIDRGGILGVIGGYRDYWSPGPALPPGIQKNLARGKPLPPGIAKKLDGRLLGRLPHYDGYEWQQVGSDLILVAIATGIIYEVLNGAFD				NA	NA	NA	NA	NA
D1-36_01805	1851	acoR_1	COG3284	Acetoin catabolism regulatory protein	ATGGCCGCACCTGCTCCTGCCTTGTCCCACGAGGCCATCATCCAGGCTTCCTGGTCCCGTTGCCGTGCCTTTGGCCTGAACCACCAGAGCGTGCCCGCGTTCGACCAACTGCCGGCCGAAGGTATTGCCCAGTTGTTGGAGAGCCAGCATTCACTGGTGCAGACCACTCACCAGGAAGTGCTGCCGTACTACGAGAACATCCTGAGCAACTCCAATTGCCTGATCATGCTGGCCGATAATCAAGGACAGGTCCTGACGTCCTGGGGCACCCAGCGCTTCATCGAACCGAAACTGGCCCATGGCTTCAGCGCCGGGGCGAGCTGGATGGAGCGCTGCACCGGGACCAACGCTATCGGCACAGCATTGGCTTGCGAGCAGGCCGTTCACATTGAACACGATGAACACTTCCTCAAGGCCAACCGGTTCATGACCGGCTCCGCCGCCCCGATCTTCGATGCCGAGCGCAAGGTCATCGCCGTGCTGGACGTCTCCAGCGACAGCTACCTGCCGCCCTCCCATACCCTGGGCATGGTCAAGATGATGAGCCAGACCGTGGAAAATCGGCTGATCCTCAACCTGTTTCGCGGTGAACATTTCCAGCTGACGTTCAACACCGGCCTGAACAACCTCGACAGCCAATGGGCCGGGCTGCTGATCTTCGATGAAAGCGGCCAAGTGCTCTCGGCCAACCGCCGCGCCGACAACCTGTTGGGCCTAAGCCTGTCGCGGGTGAGCATTGAAAGCCTGTTCAAGGTCTCGCTGATGGAATTGCTGAACCAGCCCGACGGCCTGCCGTTCGCCTTGCAGGCCTCCGGACGCAATCGGTTCCAGTGTGTGCTCAGGCGACCGAAACAGGTTTCGGTCAAGCCGCGCATCTTCGCCGAACCGGCGCCCTCGCCCACGCCAGCACCGGCCAATACCGGCATCAGCCTCAACTCGCTGCACTTCGGCGACAGCCGCGTGGAAAAAGCCGTGCGGCAGGCCGAGCGTTTGCTGGAAAAAGATATTCCGCTGCTGATCCACGGCGAAACCGGTGTCGGCAAGGAAGTGTTCGTCAAGGCTCTGCACCAGGCCAGCTCGCGCTGCCAACAGCCGTTCATTGCGGTCAACTGCGCGGCCATTCCAGCGGAGCTGGTGGAATCGGAACTGTTCGGGTATGAAAAAGGCGCCTTCACCGGCGCCAATCAAAAAGGCAGCATCGGCCTGATCCGCAAAGCGGATCGCGGCACGTTGTTCCTCGACGAGATCGGTGACATGCCCCTGCCGACCCAGGCCAGGCTGTTGCGGGTCCTGCAGGAACGTTGCGTGCAACCGGTGGGCAGCGCCGAGCTGTTCCCGGTGGACATTCGCATCATCTCCGCCACCAACCGTTCGTTGCGTGAACAGGTGCAACTGGGGCGTTTTCGTGAGGACCTGTACTACCGCATCGGCGGCCTGACCCTCGAACTGCCGCCCCTGCGCGAACGCAGCGACAAGCAGGCGCTGTTCAAACGCCTTTGGGAACATCACCGCGAACCGACCCAATGGGCCGGCCTGAGCCGTGAAGTGACGGATTTATTCGAGCGGCATCCTTGGCCCGGCAACCTGCGGCAAGTCAGCAGCGTGCTGCAAGTCGCCTTGGCGATGGCCGAGGAACAACCGATCCGCCCAGAGCACCTGCCCGACGATTTTTTTGTCGACCTGGACATGGAGCCGGTGGAAACGCCCGAACCACTTACGGTGGACCTCAACGATGCTGAAGACTTGAACCGCCAGTTGCAGGCCGTGGGCGGGAATATTTCGCATCTGGCGAGACGGCTGGGAGTCAGCCGCAATACCTTGTACAAACGCCTGCGGCAGCTGGAAAGCTGA	MAAPAPALSHEAIIQASWSRCRAFGLNHQSVPAFDQLPAEGIAQLLESQHSLVQTTHQEVLPYYENILSNSNCLIMLADNQGQVLTSWGTQRFIEPKLAHGFSAGASWMERCTGTNAIGTALACEQAVHIEHDEHFLKANRFMTGSAAPIFDAERKVIAVLDVSSDSYLPPSHTLGMVKMMSQTVENRLILNLFRGEHFQLTFNTGLNNLDSQWAGLLIFDESGQVLSANRRADNLLGLSLSRVSIESLFKVSLMELLNQPDGLPFALQASGRNRFQCVLRRPKQVSVKPRIFAEPAPSPTPAPANTGISLNSLHFGDSRVEKAVRQAERLLEKDIPLLIHGETGVGKEVFVKALHQASSRCQQPFIAVNCAAIPAELVESELFGYEKGAFTGANQKGSIGLIRKADRGTLFLDEIGDMPLPTQARLLRVLQERCVQPVGSAELFPVDIRIISATNRSLREQVQLGRFREDLYYRIGGLTLELPPLRERSDKQALFKRLWEHHREPTQWAGLSREVTDLFERHPWPGNLRQVSSVLQVALAMAEEQPIRPEHLPDDFFVDLDMEPVETPEPLTVDLNDAEDLNRQLQAVGGNISHLARRLGVSRNTLYKRLRQLES	PGPT0001030_1639	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,PGPT0001030-acoR-K21405	NA	NA
D1-36_01806	1095	ugpC_1	COG3839	sn-glycerol-3-phosphate import ATP-binding protein UgpC	ATGTCATTAAAGCTTGAGCACATCTGTCGCACCGTCGAAGGCCAGACCTGGATCGACGATGCCAATCTGAATTTCGAACCCGGATCCTTCAACGTTTTGCTGGGCCGCACGCTGTCCGGCAAGACCAGCCTCATGCGCTTGATGGCCGGGCTGGACAAGCCCGACAGCGGCCGCATCCTGATGAACGGCGTTGACGTCACCCAGCGCCCGGTGCGGTTGCGCAACGTGTCGATGGTCTACCAGCAGTTCATCAATTACCCGACCATGACCGTTTTCGAAAATATCGCCTCGCCGTTGCGCCAGGCAGGCGTGGCCGAGGAGATCATCCAGGGCAAGGTCCTGGAAACCGCGAAAATGCTGCGGATCGAGAAATTCCTCAAGCGCCATCCTCTGGAATTGTCCGGAGGCCAGCAGCAGCGCACGGCCATGGCGCGGGCCCTGGTCAAGGACGCCGAGTTGATCCTGTTCGACGAGCCGCTGGTGAACCTGGACTACAAGTTGCGCGAAGAGCTGCGCCAGGAAATGCGCGAGCTGTTCGAGGCCCGTCATACCATCGCCGTCTACGCCACCACCGAGCCTAACGAAGCGCTGGCCTTGGGCGGCACCACCACCATTCTTCACGAAGGCCGGGTGATCCAGAGCGGCAAGTCTTCTTCGGTCTATCACCAGCCACAAACCGTGCTGGCCGCCGAACTGTTTTCCGAACCACCGATCAACCTCATGCCGGGGCGTATCGCCGGCAATGAGGTCAGCTTCGCCAATTTCGTGCATTTCCCGCTGAACGTCGACCTGCGCCCGGTGGGCGAGGGCGAGTTCCGTTTCGGCGTGCGCCCCAGCCATATTTCCCTGGTGCCGAGCAACGACGATGACCTTGAACTGGCGGTGACCGTCGAGGTGGCCGAGATCAGCGGCTCGGAGACATTCCTGCACGTGCGCAACGAACATTTCCTGCTGGTGCTGCATTTGCCGGGGGTGCATGAATACGACGTGGACGCGCCGATCCGCATCTACATTCCGACCCACAAACTGTTTGTCTTCGACGCCGAGGGCAAGCTGGTCCAAGCCCCGGGTCAGCGTATTGCGAGGGTTGCCTGA	MSLKLEHICRTVEGQTWIDDANLNFEPGSFNVLLGRTLSGKTSLMRLMAGLDKPDSGRILMNGVDVTQRPVRLRNVSMVYQQFINYPTMTVFENIASPLRQAGVAEEIIQGKVLETAKMLRIEKFLKRHPLELSGGQQQRTAMARALVKDAELILFDEPLVNLDYKLREELRQEMRELFEARHTIAVYATTEPNEALALGGTTTILHEGRVIQSGKSSSVYHQPQTVLAAELFSEPPINLMPGRIAGNEVSFANFVHFPLNVDLRPVGEGEFRFGVRPSHISLVPSNDDDLELAVTVEVAEISGSETFLHVRNEHFLLVLHLPGVHEYDVDAPIRIYIPTHKLFVFDAEGKLVQAPGQRIARVA	PGPT0016815_131	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULATION_GLYCEROL_TRANSPORT,PGPT0016815-glpS-K17324	NA	NA
D1-36_01807	1110	sugC	COG3839	Trehalose import ATP-binding protein SugC	ATGGCCGAAATTCGTTTGCAGAACCTCGCCCACAGCTACACCAGCACCCCGGCGAGCCCCGAGGACTACGCGATCCGCGAGATGAACCACATCTGGGAGCAGGGCGGTGCCTATGCGCTGCTCGGGCCTTCGGGCTGCGGCAAGTCCACCTTGCTCAACATCATTTCCGGCTTGCTCAGCCCTTCCGAAGGGCAAGTGATGTTCGACAGCAAAGTCGTCAACGAACTGTCCCCGGAGCGGCGCAACATCGCCCAGGTGTTCCAGTTCCCGGTGGTCTACGACACCATGACGGTGTTCGACAACCTGGCATTCCCGCTGCGCAACCAGGGCATGGCCGAGGCGCGGATCCACACCAAGGTGCAGGAAATCGCCGAGGTCCTGGACCTGCAGAATCTACTGGATAAAAAGGCCCGCAACCTCACCGCCGACGAGAAACAGAAAGTCTCCATGGGCCGTGGGTTGGTGCGCGACGATGTGTCGGCGATTCTGTTCGACGAGCCGTTGACGGTGATCGACCCGCACCTGAAATGGAAACTTCGGCGCAAGCTCAAGCAGATCCACGAGCAGTTCAACATCACTATGGTCTACGTCACCCACGATCAGTTGGAGGCCTCGACGTTTGCCGACAAGATCGCCGTAATGTACGGCGGGCAGATCGTGCAGTTCGGCACACCCCGGGACTTGTTCGAGCGCCCGAGCCACACCTTCGTCGGCTACTTCATCGGCAGCCCGGGAATGAACCTGATAGAGGTCACGGCGCAGCCCGGTGGCGTTGGCTTCGGGTCGACCCATTTGCCCCTGTCGCAAACCTTGCAACGGCGTGTCGCCGAAGCCGAGGGCAAAAGCCTGAAGGTCGGCATCCGTCCGGAGTTCGTCCACGTTTGGGATGGCCCTTACGACGACGCGATGCGCGCTGACGTGGTCCACGTCGAAGACCTGGGCACCTACAAGATCCTGACCCTCAACCTCGATGGCGCTCCGCTGAAAGTGCGCCTGGCCGAAGACAAGCCGGTGCCGGAAGGCACGGCGTACATCAGTTTTCCGGGCCAATGGCTGATGGTCTATGCCGATGAATATTTGCTTGAACCGGTGGGCGAGGTGCAGCCATGA	MAEIRLQNLAHSYTSTPASPEDYAIREMNHIWEQGGAYALLGPSGCGKSTLLNIISGLLSPSEGQVMFDSKVVNELSPERRNIAQVFQFPVVYDTMTVFDNLAFPLRNQGMAEARIHTKVQEIAEVLDLQNLLDKKARNLTADEKQKVSMGRGLVRDDVSAILFDEPLTVIDPHLKWKLRRKLKQIHEQFNITMVYVTHDQLEASTFADKIAVMYGGQIVQFGTPRDLFERPSHTFVGYFIGSPGMNLIEVTAQPGGVGFGSTHLPLSQTLQRRVAEAEGKSLKVGIRPEFVHVWDGPYDDAMRADVVHVEDLGTYKILTLNLDGAPLKVRLAEDKPVPEGTAYISFPGQWLMVYADEYLLEPVGEVQP	PGPT0016820_63	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULATION_GLYCEROL_TRANSPORT,PGPT0016820-glpT-K17325	NA	NA
D1-36_01808	867	melD_1	COG1175	Melibiose/raffinose/stachyose import permease protein MelD	ATGAACAAGGTGCAGAACAACAAGGCCTGGTGGCTGGTGTTGCCGGTGTTCCTGCTGGTGGCCTTCAGTGCCGTGATCCCGATGATGACCGTGGTCAACTATTCGGTGCAGGACATCTTCGACCAGTCCAGCCGATATTTCGTCGGCGCCGACTGGTACAAGCAGGTGCTGCTCGATCCACGGCTGCACGATTCGCTGTTGCGCCAGTTCATCTACTCGGCGTGCGTGCTGCTGATTGAAATTCCCCTGGGTATCGCCATTGCCCTGACCATGCCGACCAAAGGCAAGTGGTCGTCCCTGGTGCTGATCATCCTGGCGATTCCGCTGCTGATTCCGTGGAACGTGGTCGGCACCATCTGGCAGATTTTCGGCCGCGCCGACATCGGCTTGCTGGGCTCCACGCTCAATGGGCTGGGCATTAACTATAACTACGCGGCCAACACCATGGATGCCTGGGTCACCGTGTTGGTGATGGACGTCTGGCACTGGACGTCGCTGGTGGCGCTGCTGTGCTATTCGGGGCTACGGGCAATTCCCGACGTCTATTATCAGGCGGCACGGATCGACCGGGCGTCCAACTGGGCGGTGTTCCGGCACATCCAGCTGCCGAAGATGAAAAGCGTGCTGCTGATCGCCGTGATGCTGCGCTTCATGGACAGCTTCATGATCTACACCGAGCCGTTCGTCCTCACCGGCGGCGGGCCGGGCAACGCTACCACGTTCCTCAGCCAGACCCTGACGCAGATGGCCATCGGTCAATTCGACCTGGGCCCGGCGGCGGCGTTTTCCCTGGTGTACTTCCTGATCATTCTGTTGGTGTCCTGGCTGTTCTATACCGCCATGACGCACGCCGACGCCAACCGTTGA	MNKVQNNKAWWLVLPVFLLVAFSAVIPMMTVVNYSVQDIFDQSSRYFVGADWYKQVLLDPRLHDSLLRQFIYSACVLLIEIPLGIAIALTMPTKGKWSSLVLIILAIPLLIPWNVVGTIWQIFGRADIGLLGSTLNGLGINYNYAANTMDAWVTVLVMDVWHWTSLVALLCYSGLRAIPDVYYQAARIDRASNWAVFRHIQLPKMKSVLLIAVMLRFMDSFMIYTEPFVLTGGGPGNATTFLSQTLTQMAIGQFDLGPAAAFSLVYFLIILLVSWLFYTAMTHADANR	PGPT0016585_387	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULATION_GLYCEROL_TRANSPORT,PGPT0016585-glpP-K17322	NA	NA
D1-36_01809	801	dasC	COG0395	Diacetylchitobiose uptake system permease protein DasC	ATGAGCAAGAGAAAGCTGATTCCACTGCTGATCTACATCCTGTTCCTGCTGGTGCCCATCTACTGGCTGCTGAACATGTCGTTCAAGAGCAACACCGAGATCCTCGGCGGCCTGTCCCTGTGGCCGCAGGATTTCACCTTCCAGAACTACAAGGTGATCTTCACCGATCCGAGCTGGTACACCGGTTACCTCAACTCGCTGTACTACGTGAGCCTGAACACGGTGATTTCCCTGGGCGTTGCGTTGCCGGCGGCCTATGCGTTTTCCCGCTATCGGTTCCTGGGGGACAAGCACCTGTTCTTCTGGCTGCTGACCAACCGCATGGCGCCACCGGCGGTGTTCCTGTTGCCGTTCTTCCAGCTGTATTCGTCCATCGGCCTGTTCGACACCCACATCGCCGTTGCCCTGGCTCACTGCTTGTTCAACGTGCCGCTGGCGGTGTGGATCCTCGAAGGGTTCATGTCCGGGGTGCCAAAAGAAATTGACGAGACCGCCTACATTGACGGCTACAGTTTCCCCAAGTTCTTCGTCAAGATCTTCATCCCGTTGATCGGCTCCGGCATCGGTGTCACGGCGTTTTTCTGCTTCATGTTTTCCTGGGTCGAACTGTTGCTCGCGCGCACGCTCACCTCGGTCAATGCCAAGCCGATCGCGGCGGTCATGACGCGCACGGTGTCGGCGTCGGGTATCGACTGGGGCGTGCTGGCGGCGGCGGGGGTGTTGACCATCCTGCCGGGCATGCTGGTGATCTGGTTCGTTCGCAACCACGTGGCCAAGGGCTTTGCCCTGGGCCGGGTCTGA	MSKRKLIPLLIYILFLLVPIYWLLNMSFKSNTEILGGLSLWPQDFTFQNYKVIFTDPSWYTGYLNSLYYVSLNTVISLGVALPAAYAFSRYRFLGDKHLFFWLLTNRMAPPAVFLLPFFQLYSSIGLFDTHIAVALAHCLFNVPLAVWILEGFMSGVPKEIDETAYIDGYSFPKFFVKIFIPLIGSGIGVTAFFCFMFSWVELLLARTLTSVNAKPIAAVMTRTVSASGIDWGVLAAAGVLTILPGMLVIWFVRNHVAKGFALGRV	PGPT0016810_393	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULATION_GLYCEROL_TRANSPORT,PGPT0016810-glpQ-K17323	NA	NA
D1-36_01810	273			hypothetical protein	ATGGAATGGATGAACTGGACCGTCCCGACGGCGGCGTTTTTTGGTGTCATCGCCTTGTTGTTGATAGGCATGACCACTTGGGAACTGCGTTCGCCGAGTATCCCTCGGCGTGGTTTCCTGCCGATTGCCACCACCCGTGGTGATCGGTTGTTTATCGGTCTTCTCGGTAGCGCCTACCTGCATCTGCTGGTGATCGGCGCCACTGACTGGAGCATCTGGATAGCGTTCGCGTTGTCTTTGGTGTGGCTGTTGGCAGTGATGCGGTGGGGCTAG	MEWMNWTVPTAAFFGVIALLLIGMTTWELRSPSIPRRGFLPIATTRGDRLFIGLLGSAYLHLLVIGATDWSIWIAFALSLVWLLAVMRWG				NA	NA	NA	NA	NA
D1-36_01811	1743			hypothetical protein	ATGTTCGATAAAAACAATAAGCTGCGACATAGCGTTTCATTGGCAGCCGCGCTGGCACTCAGCGGGCTGAGCGCTACGGCCTGGGCCGACGCCTATGAAGACGCCGCTAAAAAATGGATCGGCAGTGAATTCAAGCCGTCGACGCTGACAGCCGAGCAGCAGCTCGAAGAGTTGAAGTGGTTCATCAAGGCGGCCGAGCCGTTTCGCGGGATGAAAATCAACGTGGTGTCGGAAACCATCGCCACCCACGAGTATGAATCCAAGGTGCTGGCCAAGGCCTTCAACGAAATCACCGGGATCCAGCTGACCCACGACCTGCTGCAGGAAGGCGACGTGGTGGAGAAGCTGCAGACCCAGATGCAGTCGGACAAGAATATCTATGACGGCTGGGTCAACGACTCGGACCTGATCGGTACGCACTTTCGCTACGGCAAGACCGAGTCGATCACCGACCTGATGGCCAACGAAGGCAAGAATTTCACTTCGCCAACCTTGGACCTGAAGGACTTCATCGGCATTTCCTTCACCACCGCGCCGGACGGCAAGGTCTATCAACTGCCGGACCAGCAGTTCGCCAACCTGTACTGGTTCCGCGCCGACTGGTTCGAGCGTGCGGACCTGAAGGCCAAGTTCAAGGAAAAGTACGGCTACGAGCTGGGTGTGCCAGTGAACTGGTCGGCTTATGAAGACATCGCCAAGTTCTTCTCCGAGGACGTCAAGGAGATCGACGGCAAGCGCGTCTACGGCCACATGGACTACGGCAAGAAAGACCCGTCCCTGGGCTGGCGCTTCACCGATGCCTGGTTCTCCATGGCCGGCGGCGGCGACAAGGGCCTGCCCAACGGTTTGCCAGTGGACGAGTGGGGTATCCGCGTCGAGGACTGCCATCCAGTGGGCTCCAGCGTGACCCGTGGCGGGGACACCAACGGCCCCGCGGCCGTGTTCGCCACCACCAAGTACGTGGACTGGATGAAGAAGTACGCGCCACCGGAAGCGGCGGGCATGACCTTCTCCGAATCCGGCCCGGTGCCGTCCCAGGGCAACATCGCCCAGCAGATTTTCTGGTACACCGCTTTCACCGCCGACATGACCAAGCCGGGTCTGCCGGTGGTGAACGCCGACGGCACGCCGAAATGGCGCATGGCGCCTTCGCCACGCGGTCCGTATTGGGAAGAGGGCATGAAGCTGGGCTATCAGGACGTGGGTTCCTGGACGTTCATGAAGTCCACGCCTGAGAAACAGCGCCTCGCGGCCTGGCTCTACGCACAGTTCGTAACCTCCAAGACCGTGTCGCTGAAAAAGACGATCGTTGGCCTGACGCCGATTCGCGAATCGGACATCAACTCCCAAGCGATGACCGACCTGGCGCCGAAGCTCGGTGGCCTGGTGGAGTTCTACCGCAGCCCGGCCCGCGTGCAATGGTCGCCGACCGGGACCAACGTGCCGGACTACCCACGCCTGGCGCAGTTGTGGTGGAGCCACATCGCCGAAGCGGCCAGCGGCGAGAAAACTCCGCAACAAGCCCTCGATGGCTTGGCCAAGGACCAGGACGCCATCATGACGCGTCTGGAACGCTCCAAGGCTCAAGCCACCTGCGCACCTAAGATGAACCCTGAGCGCGACGCGCAATACTGGTTCGATCAGCCGGGCGCACCGAAGCCGAAACTGGCGAACGAGAAGCCTAAAGGTGAAACCGTGAGCTACACCGAGCTGCTGAAATCGTGGGAAGCGGCGCGTAAATAA	MFDKNNKLRHSVSLAAALALSGLSATAWADAYEDAAKKWIGSEFKPSTLTAEQQLEELKWFIKAAEPFRGMKINVVSETIATHEYESKVLAKAFNEITGIQLTHDLLQEGDVVEKLQTQMQSDKNIYDGWVNDSDLIGTHFRYGKTESITDLMANEGKNFTSPTLDLKDFIGISFTTAPDGKVYQLPDQQFANLYWFRADWFERADLKAKFKEKYGYELGVPVNWSAYEDIAKFFSEDVKEIDGKRVYGHMDYGKKDPSLGWRFTDAWFSMAGGGDKGLPNGLPVDEWGIRVEDCHPVGSSVTRGGDTNGPAAVFATTKYVDWMKKYAPPEAAGMTFSESGPVPSQGNIAQQIFWYTAFTADMTKPGLPVVNADGTPKWRMAPSPRGPYWEEGMKLGYQDVGSWTFMKSTPEKQRLAAWLYAQFVTSKTVSLKKTIVGLTPIRESDINSQAMTDLAPKLGGLVEFYRSPARVQWSPTGTNVPDYPRLAQLWWSHIAEAASGEKTPQQALDGLAKDQDAIMTRLERSKAQATCAPKMNPERDAQYWFDQPGAPKPKLANEKPKGETVSYTELLKSWEAARK	PGPT0016805_145	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULATION_GLYCEROL_TRANSPORT,PGPT0016805-glpV-K17321	NA	NA
D1-36_01812	939		COG1073	putative protein	ATGCCTTCTTTATTCTCTCGTCTCAAACAGCGCTGGCTGGCCTGGTCGTTCATGGTCGCGATAGTGGCCGGTCTGCCGGTGGGCTGTGCAGTGTTGCAACACAAGGAGCGCGAGCTGGTGTTTCGCATCGAGCCGGGGACGGCGAGCTGGTTCAGTGGCCTTCCCAGCGGTGTGCAGGAATTCGATCTCAAGCCCAAGCAGCTCAGGGCCGGGGAAAACATTCACGGCTGGTGGTGGCCGGCCGAACGCAAGGACGCGCCGGCCATCCTGTACCTGCACGGCGTGCGCTGGAACCTGACGGGCCAGTTGTTTCGCATCCAGCAGCTGAGGGCCTTGGGCTATTCGGTGCTGGCGATCGATTACCGTGGCTTCGGCAAAAGCCAGGGCGACCTGCCATCGGAATCCAGTGTCTACGAGGACGCGCGAATCGCCTGGGAGCGCCTCGAAACGCTGCAACCGGACCCGGCCTTGCGGCTGATCTACGGTCATTCACTGGGCGGTGCCGTCGCGGTTGATCTCGCTGCGGATCTGGCTCAGAAAGCCGCGAGCAGTGGCAGCGCCGTACCGGCCAGGGGCCTGGTGATCGAATCCACGTTTACGTCGTTGGGTGATGTCGCCACTGCGATGGCGGACACATCCTTGCCGGTGCGCTGGTTGCTGTCGCAGAAGTTCGATTCCATCGACAAGATCGGCCAGATCAACATGCCGCTGCTGATTGTCCACGGTGCCGCCGACCGCTACGTACCGCCGCGTTTCAGCGAGCAGTTGTTCAACGCCGCCCGTGAACCCAAGCGTTTGCTGTTGGTGCCAGGAGCCACGCACAACAACAGCATGAGCCTGGCGGGCCGCACGTATCGCCAAGCGCTGGATGCGTTGATGAAACCCCAGCCAACACCGGTGGCCAAACACGCTCAAGCAAGCGCCGCCAAGGCGGGTTGA	MPSLFSRLKQRWLAWSFMVAIVAGLPVGCAVLQHKERELVFRIEPGTASWFSGLPSGVQEFDLKPKQLRAGENIHGWWWPAERKDAPAILYLHGVRWNLTGQLFRIQQLRALGYSVLAIDYRGFGKSQGDLPSESSVYEDARIAWERLETLQPDPALRLIYGHSLGGAVAVDLAADLAQKAASSGSAVPARGLVIESTFTSLGDVATAMADTSLPVRWLLSQKFDSIDKIGQINMPLLIVHGAADRYVPPRFSEQLFNAAREPKRLLLVPGATHNNSMSLAGRTYRQALDALMKPQPTPVAKHAQASAAKAG				NA	NA	NA	NA	NA
D1-36_01813	228			hypothetical protein	ATGACGAACGAACATTCCAAAGGACAAACCCAAGCCGACAATCATGCACCCGCCAAGGATGCCACCGGCGCCCCGGTGCCAGTGGTGGAGCGCGACGTTCACCACCCCGATCCGGCGACCGACAAGGTGGATAAGACCATCACGCCCAAGTCGATCAAAAGCCACGAGCAGGATGCCGAAAAACTGCAGGACGAGGTGGCTCAAGTGGAGAAAAAGCTCGACCGCTAG	MTNEHSKGQTQADNHAPAKDATGAPVPVVERDVHHPDPATDKVDKTITPKSIKSHEQDAEKLQDEVAQVEKKLDR				NA	NA	NA	NA	NA
D1-36_01814	543			hypothetical protein	ATGCGACGTAGAAGCGCACAGTATTGGCTTTGGGTGAACAGTCGGCTGCCGGGCCGCAACCATGAAGAAATCCTCGACGACGGCACCCATGTCGAGGTCCAGGCGAGGATCAATCACCAGTCCGTCACGCAGGTCTTCGTCTGTGTCTATCGTCCGAACGGCGCCGTTTGGGTCGAACAATTCCATGACCGGAGCATGCGCGAGCCGCTGTGCCAGGCGTTGGAGTGGGGCTTGGGCCGGGCGCGGGAAATCGTCGCCGGTACGGCAGGTTTCAAGGCACCGCACAAGATCCAGACGACCCTGGGCCCCTTGATCAAGGACGAATGCGCTTTGGCCCTGCGGCGCATGGACATGAGCGATGAAGAACGACTCCGGCTCAAGGCTCGGGATGCATGGGCTGAATACGTCAACGCCAAGCAAGCGATGCTCGCATTGATGCGTTCGGCCCGGGTCGACGCCGACGTATGGGAGGAGCAAAAACGTCGACTGCGCGAAGCCATCGATCGCCGCGCCTCGCTGGCGCGGGCAAGCCTGCACCACTGA	MRRRSAQYWLWVNSRLPGRNHEEILDDGTHVEVQARINHQSVTQVFVCVYRPNGAVWVEQFHDRSMREPLCQALEWGLGRAREIVAGTAGFKAPHKIQTTLGPLIKDECALALRRMDMSDEERLRLKARDAWAEYVNAKQAMLALMRSARVDADVWEEQKRRLREAIDRRASLARASLHH				NA	NA	NA	NA	NA
D1-36_01815	795	chbG		Chitooligosaccharide deacetylase	ATGCCTCGCCAAGTGATCATCAACGCTGACGATTTCGGACTCAGCCTCAGTGAAAACGAACTGATCCTGCGGGCGTTCGAAGCAGGCGTCATCAGCTCCGCCACCGCCATGGCCAACATGCCGGCCTTCGACCAGGCCTGTGAACTGTCCCGGCACCCGTTGCTTGAAGGACGCATCGGGTTGCATTTCAATCTCAGCTACGGACCGCCACTAAGCCAGGCAATCAGGGCGCGACGGAGGTTTTGCAATGCCAACGGCGAATTCGACCTCAACCTGTCACGCTACTGCCTGCACTTGGGAGCGGCCGATCTGGCAGCAGTGCAAGCAGAACTTCAGGCGCAATGGCAGCATTGCCTGGACCGCGGCCTGCGCCCCAGCCACCTGGACTCGCATCAACACGTGCATAACATCTGGCCCGTCGGAGAACTGGTGGCACGCTTCGCAGCGCGACAAGGCGTGCCTATGCGCCTAGCACGCAACCTCGGCCCCAACCTGAGCGTGCCCAAGCGCATCTTCAAGACGCTGCTCAACCATCGTCTGCGCCAGCTCTGCGGCGCAACCGCCGATTACGTCTGCACCCCGGCGGACCTGCACCACGCCGCACCGCCGGTCCATGGCTCGCTGGAAGTGATTGTCCATCCACTGGAACTGGACGGGGATTTTGGCGATGCCAGCCTGGCGCCTGGCAATTCATTGACCCAAGTGCTTCAGCGGCGCCTGGCGGGGGTGCCAAAGGTCGGGTATGGCGGGAATGGCCGCAGGTTGGCGCTGGTTGAATTTGGGGATGTGCACTGA	MPRQVIINADDFGLSLSENELILRAFEAGVISSATAMANMPAFDQACELSRHPLLEGRIGLHFNLSYGPPLSQAIRARRRFCNANGEFDLNLSRYCLHLGAADLAAVQAELQAQWQHCLDRGLRPSHLDSHQHVHNIWPVGELVARFAARQGVPMRLARNLGPNLSVPKRIFKTLLNHRLRQLCGATADYVCTPADLHHAAPPVHGSLEVIVHPLELDGDFGDASLAPGNSLTQVLQRRLAGVPKVGYGGNGRRLALVEFGDVH	PGPT0012160_695	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	FUNGICIDAL_COMPOUNDS|ANTIBIOTICS	FUNGICIDAL-CHITINOLYTIC_ACTIVITIES,PGPT0012160-chbG-K03478	NA	NA
D1-36_01816	1182			hypothetical protein	ATGCTCATGGCGATCCGGTTCCAATGGTATGGCTCTCTGAGCGCGGCGGATTTCCCTGTAACGGCTTTTGAACAGCTGCGCGCACAGGTGACCGACGCAACGCCGTTCAACACCTTGGCCTGGCTGCAAGCATCGGAGTTCGCGCTGTTGCCCGACCAGCAGTTGCATGTTCTGCTGGGCTGGCAGGACCAGGACCTGCTGCTGTGCCTGCCATTGATCAGCGGACAGGAGCGTGTCGGCGGCCTGCGGTTCCGGGTCTTGCATCACCTGGGTTACCCCTTGGCCGACCGTATCGCCTTACTGGCGCGCCTGGACGCCGACGGCATGGGCCAGGCGCTGACGCAGATCCGCCAGTATTTACCGCATGCGCTGCTGCAATTGAACGAAGTGGTCGAGCCGGTGGGCGAGCAAAGCGTGCTCAGTGCATGGATGGCGATGAGCTCCACCGGGGAGCGGCGGCTCAGTTGCCGGGTTCCGGTGCACTTGATCAGTGCCAGCGATCACCAGGAAATTTCCGGCGACCCACGCTACAAGTTGCGCCGGGCGCGCAAGCGAATCGCCGCGTGTGGTGCACAGATTCGCCGCATCACGCCGGACGCCATCGGCATGGGGCCGCTGCTGCGGACCCTTGCCGAGGTGGAGGCCGCCAGCTGGAAAGGCGAGGAAGGCGTCGGCATCTTCGCCGCCCCCAGGCGTCGGCAATGGATGAACCATGCCTTCACCGCCCTCGCCGCCCAAGGCCTGGTGCGGGTGGTGACGCTGGAGCTGAACGGCGAATGCATCAGCTATCGCCTGGGCCTGTTGGATCAAGGGCGACTATATGACTACAACCTGGCGTTCCTGCCACAGCACGCCGACCTGGGCAGCGGCCGCGTATTACTCGAGGAATGGATTCGCTGGGGGCTGGACGACAACTGGCGGTGGATCGACGCTTCACGGGTCAGCCTGGAAAATTCGAGCCATCAACTGCACGAACGCATGACCGGACAACTGGAACATTGGCGTTGGAGTTTCTATTCCTGGCAGCCCGATGGCCTGCTCATGGGATTCGCCTTGCGGCTATGGAAAAGCCTGAAGCCTTGGCTAGGCAAGCGCCGGGCCAGACCGACCGCGACGACGGCCTCGTCCTCTTCCAAGCGCCAGGAAAACACACATGCCTCGCCAAGTGATCATCAACGCTGA	MLMAIRFQWYGSLSAADFPVTAFEQLRAQVTDATPFNTLAWLQASEFALLPDQQLHVLLGWQDQDLLLCLPLISGQERVGGLRFRVLHHLGYPLADRIALLARLDADGMGQALTQIRQYLPHALLQLNEVVEPVGEQSVLSAWMAMSSTGERRLSCRVPVHLISASDHQEISGDPRYKLRRARKRIAACGAQIRRITPDAIGMGPLLRTLAEVEAASWKGEEGVGIFAAPRRRQWMNHAFTALAAQGLVRVVTLELNGECISYRLGLLDQGRLYDYNLAFLPQHADLGSGRVLLEEWIRWGLDDNWRWIDASRVSLENSSHQLHERMTGQLEHWRWSFYSWQPDGLLMGFALRLWKSLKPWLGKRRARPTATTASSSSKRQENTHASPSDHQR				NA	NA	NA	NA	NA
D1-36_01817	690			hypothetical protein	ATGAAAGCTCTGCAAAAATTGCGCGACCGCATTCAGAAAAAAGGCTTGCGCTCGGTTATCAAACTGCTGGTACGCCGCTTCGTGTTCTTCCATTCGCGACTGGTATGGCTCGAACACGATGTAAGGATCCCGCTCAAACCGCATAACCTGCGGCCCTACCCACCGGTGCGCCGCGAGTTCATCACCGTTAGCAATGCCGATGCCTTCGCCACGCATTTCGGCGACCGTGTCGAAACCATGCGCGAGTTGGCAGCCGAAGGCTATACAGGGTTCATGTACCTGGATGACAAGGGCAACACCGTGGGGTTTGCCTGGGCGAGCACGCGAGACTATTTCGATCGCCATTTCTATCGCTGCTGGTTTCCGGTCAAGCCCGGTGAATACTTTCAGTTCGGTGGCGAGATGACCCGTGCCTACTGGGGTTCGCAGCTTTCGGCGGATGTCCAGGCCGACGTTTGGAAAGTCATGGCTGACCAGGGTTGCAACAAGATGGTCGATGTCTGCGACCTGGAAAACACCCCGGCGATCAAGATGCATATACGCATGGAGTTCGTGGAGCGTGGGCAGATCACCCATGTGTACTGCCTGTTTGGACGCTTTCGGTTTTTCCGCGATACGTTCTACACCGGCTCGGTACTGGACGCCTTCCGTAAACCGGCTCGGCCGGTTGCATCGACTGCGACGGCTTGA	MKALQKLRDRIQKKGLRSVIKLLVRRFVFFHSRLVWLEHDVRIPLKPHNLRPYPPVRREFITVSNADAFATHFGDRVETMRELAAEGYTGFMYLDDKGNTVGFAWASTRDYFDRHFYRCWFPVKPGEYFQFGGEMTRAYWGSQLSADVQADVWKVMADQGCNKMVDVCDLENTPAIKMHIRMEFVERGQITHVYCLFGRFRFFRDTFYTGSVLDAFRKPARPVASTATA				NA	NA	NA	NA	NA
D1-36_01818	2127			hypothetical protein	GTGAATATCGTCGCCCGCCAGACCGCCATCGCGAGCAAGCTCGCTCCCACAGGCGCCGGTTGCGTCCAGCCGAGTTCCCCTGTGGGAGCGAGCTTGCTCGCGATGGCGGTGGGTCAGCTTGCTGTGATGATGAAGCTAACCGCCTCTTCGCGAGAAGGCTGGCTCCCACAGAGGAAAATGGCCGCGGGTCTATGTCTTCTGGTATTGGCCACCTCGGCCCATGGCGCGTCCATGCACTGGACCAACATCCGCGACGGCAGCCTGTATCTGCAAACCGATCGCCCGGACCAAGTGACCGTCCGCTGGGTTCCGGCCTGGCAGGCCGAGGCCAATACCGAACACCTGTATCTGCTCAACGGCCAAGGCCGGTTAGTGGGTGAGCGCCTGGTCAAGGCTGCCCAAGTGCGCGGCGAGCAGCAATGGCCGCTGTTGCCCGGGGCGGCCAGCTATCGGTTGGAGATCCCCGGCTACAGTTTCCGGCGCTATACGGTCGAACACGATGCCCGCACCCGCGCGCTGTTCGCCCCGGCCAAAGTGCACTTCAGCTCGGAAACACACGATGGTGATGAGCTTTATTTCAAAGTCGCAGCCGGTGAACAGGCTGTGCTGGCCGGCAAATTCCACGGCGGCGTGCGTGCGCTGCAAGCCCGGCGCGTTGCCGATGGCAAGCAGGTGCAACTGAACCTCAAGCCCTACCGGGCCTATTGGCAATTCGACACAGTGGCCCTGCCGGTGGCGGACGCGGACCAGGTCTGGCGCCTGCATCTGCAAGGCAACGGCAAGGCGGCGTTCTGGCTGGACGGCACCGCCAACCTGTTCGCCCAGGACCCGGCGCAACTGCAGCCGCTGCGCCAGGATCCGGGGCGAACCCACCTGACGCTTCACGCCGATGTACTCGGCACGACTCCAAAGCTGGGGATGTCCCTGCCCTACGTACTGCCTCCGCCCTCCAGCTACGCCGTGCTCGATGCGCTCAACCCCCGGGCGGCCAGCTATTACAGCCTCGTCGATGTCACGGCGGCCAAGGCCGATCATGAGGACGCGTTTCGACGTCTGTACCAGGATCGCTTTGGCATCACCCAAGACATCACTCTGCTCGCTGGCAGCCAGCGCAGGGCCGATCTGCAAGCCGACCGGACCAGCGGCAACGGCCTGCAAGCCTGGCTCGAATCGACCCGCGCCCTGGGCGGCAAAGGCATCCACTATCTCAGCTTTGCCGATGAGCCGAACCTCAACTATCCCGACTTCGACAGTTTCCAGCAGGTGTTCCAAAGCCTGTCCGCCCAGGTCCGCGCCAACCCTGCCAACAGCCGCGCCGGCGTCCGCATCGCCATACCGGCCAGTTCGCGGTTCACCAACGGTCCATTGGCCGAGAACGCCGCAGACAAACGTGGCATCGACTGGGCACGACGGCTGCTGGAAACATCGAGCGCCCAGATCGACGCCCTGGCCTGGCATGAATGGATGATCCGCGACCTGCTGGCGACCCGCGTCTATCGCAACAGTGTTCGTCGGGCCGCCAACCTGGTGGGATTGGACAACCAGGGCCGGCCGCGCAAAGCCTTGCTGCTGGACCAGACCAATATGTCCAGCGGATCAAGCCTCAGCCCTTACGACCAGGAAACCCATTACGCCGCCCTGTGGTGGACGTCGGTGGCCATCAACGCCTCGGCCGACGGCTGGCTGGACATGCTCAACTGGTTCATGTCCGCCGACGAACCGGAGTACCCCAAGGGCATGGTGCGGATACTGGACAACCAACGCTTCGAGCTCAAGCCGGTGGGGTTGGTCCAGCAATTCATCCAACAGCATTGGCTCGGCCAGGTGCTGCGCATGGACAACGATGCGTTTGAGGTCGATGCACTGGCCATGGCCAACGGCCTGGAGCGCAGCCTGCTTGGCGTGAACAAAAGCGTCCGGGCCCATCAAGTCAGCCTCGACGGCATGACCTGTCCGCAGCCCGGCGCTGCCCTGGTTTATTTCGGCCCGGACAACATCAGCCGCAACGTTCCATTCGAATGCAAAGCCGGCCAACTCGGTTTCCTTTTGCCAGGTGAAACCGTCTTCGCCCTGAGCTGGACGGCCTCTGTTTTTCCTCAACCCGCCACCCGTCAGGAGGCACCATGA	MNIVARQTAIASKLAPTGAGCVQPSSPVGASLLAMAVGQLAVMMKLTASSREGWLPQRKMAAGLCLLVLATSAHGASMHWTNIRDGSLYLQTDRPDQVTVRWVPAWQAEANTEHLYLLNGQGRLVGERLVKAAQVRGEQQWPLLPGAASYRLEIPGYSFRRYTVEHDARTRALFAPAKVHFSSETHDGDELYFKVAAGEQAVLAGKFHGGVRALQARRVADGKQVQLNLKPYRAYWQFDTVALPVADADQVWRLHLQGNGKAAFWLDGTANLFAQDPAQLQPLRQDPGRTHLTLHADVLGTTPKLGMSLPYVLPPPSSYAVLDALNPRAASYYSLVDVTAAKADHEDAFRRLYQDRFGITQDITLLAGSQRRADLQADRTSGNGLQAWLESTRALGGKGIHYLSFADEPNLNYPDFDSFQQVFQSLSAQVRANPANSRAGVRIAIPASSRFTNGPLAENAADKRGIDWARRLLETSSAQIDALAWHEWMIRDLLATRVYRNSVRRAANLVGLDNQGRPRKALLLDQTNMSSGSSLSPYDQETHYAALWWTSVAINASADGWLDMLNWFMSADEPEYPKGMVRILDNQRFELKPVGLVQQFIQQHWLGQVLRMDNDAFEVDALAMANGLERSLLGVNKSVRAHQVSLDGMTCPQPGAALVYFGPDNISRNVPFECKAGQLGFLLPGETVFALSWTASVFPQPATRQEAP				NA	NA	NA	NA	NA
D1-36_01819	1305			hypothetical protein	ATGAGCCGTGCACACTATCTCAAGCATTTGGCGCTAAGCATGGGCACGCGCCTGGCGATGATCGGCCTGCGGCTGTTGCGCAATGTGTTGCTGGCACGAATCCTGGGGCCCAGCGAACGCGGACTGTTCGCGCTGCTCAGCACCCTGCCCGACTTGATCAGCGCCGCCACCAGTGGAGGCCTCAATTCCGCGGTGGGTTACCAGGCGGCGCAGCAGCGCTCCATGGGTCTGTTGCTTTGCCAGGTGTTGGTTTTCGGGTGTCTGCTGGCCGGGTTGCTGACACTGTTGGTGGTGGCGCTGGCGCGTGAGTTCGGCGCTGAGCTGGACATCACCGCGCAGCTGGGATTGCTGGCTTGGCTGCTGTTGCTGGCCGTCCCCCTGACGGTGCTCAAGAGCGGCCTGCTGACATTGCACAATGCTTCCGGCGGCGTAGGCGCGTTCAATGCGCTGCGACTGATGGAATCCCTGGCGCCGTTGCTGCTGTTTGTAGCGCTGTTCTGGATGTGGCAAGACACGGCGCTGGAGGCGGCGCTGATCAGTTGGCTGGCGGGCCTGAGCCTGGTGGTGCTGGCCGGCTGGATGTGGTTGCGGCGCGATCATGTGGTCACCCTGCGCTGGGATCGCACCGGCCAGAACGAACTGTTGCGTTATGGCGCCCGTAGTCATCCGGACCTGTTGTTCCAACAAGTGATGCTGCGCTCGGATTTTTTGTTCATTGGCGCATTGCTGGGCAGCACGGCGCTGGGTCACTACGCCATGGCCAGCGCCGCGGCCGAACTGCTGCTGATCGTGCCCGAAGCGGTCACCACGCCGCTGATGAAACGCCTGCTCCAGCAAGACACCGACATGCAGCGCCTGACCCCGCTGGCCTTGCGCCTGACTGCTACGGTGATGCTTGGTGCCTGCCTGGGCATGGCGCTGATTGGCGAATGGCTGATCATCACCCTGTTCGGCACCGCCTATCAACCGGCGTACCCGGCGCTGTTGGCGTTGCTGCCGGGATTGTTCGGCCTGTGCTACGCCAGCATCTTGCGCCTGGACCTGCTGGGCAAGAACCGTCCCGGCACCGTTTCACTGCTGATGGGCGTGGGCGCGCTGCTGAATCTGGCCCTGAACCTGATCCTGATCCCGCGCTACGGCATCGTCGGCGCTGCCGCCGCTTCCTCGATCGCTTACCTGGGCGTGACCCTGGCGCTGCTGACGATGTACTGCCGTCTCAGCGGTGTGGCGCTGTGGCAGACACTGATCATCCTGCCCAGCGATTTGCTGCCGATGCGCCAGATGTTGTTGGGGAAATCCGCGTGA	MSRAHYLKHLALSMGTRLAMIGLRLLRNVLLARILGPSERGLFALLSTLPDLISAATSGGLNSAVGYQAAQQRSMGLLLCQVLVFGCLLAGLLTLLVVALAREFGAELDITAQLGLLAWLLLLAVPLTVLKSGLLTLHNASGGVGAFNALRLMESLAPLLLFVALFWMWQDTALEAALISWLAGLSLVVLAGWMWLRRDHVVTLRWDRTGQNELLRYGARSHPDLLFQQVMLRSDFLFIGALLGSTALGHYAMASAAAELLLIVPEAVTTPLMKRLLQQDTDMQRLTPLALRLTATVMLGACLGMALIGEWLIITLFGTAYQPAYPALLALLPGLFGLCYASILRLDLLGKNRPGTVSLLMGVGALLNLALNLILIPRYGIVGAAAASSIAYLGVTLALLTMYCRLSGVALWQTLIILPSDLLPMRQMLLGKSA				NA	NA	NA	NA	NA
D1-36_01820	1005			hypothetical protein	ATGTCGATCAAACATGTTTTCAAGCGCACCGGCGGCTGGCTGTACCTGAACACGTCCATGGGTCGCCATCCATTGCGTGGCGCCGGCGTCATCCTGATGTTGCACCGGGTATTGAACAACGACCGCGCCGCCGAGCTGCCCCACCGCAATGAACTGTGCGTGGGGCCCGAAGCGTTCGAACACCTGTTGATCTGGTTGCAACGGCATTTTGAATGCGTGCCCTTGATGACCTTGCTGCTGGCCGACCCGGAAAGCGTTCCGGACCGTCCTCGGGTGGCCCTGACGTTCGATGATGGCTGGCGTGACAACGCCATGAACGCCTTTCCCCTGCTGCGTCAGTACCAGGTGCCGGCGAGTATTTTCCTGTCCACCGATTTTGTCGGCAGTCGCCAGCATTTCTGGTGGGAAAGCATCGGCGAAACCCTGTGGGGCAGCCACGGGCAAGTGGCGCGGCATTCGCTGATCGAGCACTTGCAGCACGTCGGCCGGCCATTGCCGGTGCTGCTCGACGACATCGACGACGAGCGCCGCAGCCTGGCGCTGCTGCATTACCTGCAAAGCCTCAAGACGCTCGAACCAAGCACGTTGAGCGATCTCACCGAAGCCTGCCCGCAAGGCTCGCAACCCCAGGCGCTGGATTGGCCCCAGGTGCGTATGCTCGAAGATTCCGGGCTGATTCGTTTCGGCCCCCATGGCGCCAGCCACGCGATTCTGACCGGGCTGGACGATCAGCGCCTGCATGAAGAACTGACCCGCAGTTGGACCGCGCTGGAAAATGGCTGCGCCCAGCCGCTGCCGGTGTATTGCTACCCCAACGGTGACAATGATGTGCGCGTGCGCGAGCAGGTGGCGGCCCACGGTTTTCCGTTCGCCCTGGGCACCGAGGCCGGGCTGTATCGCCACGACGGCGACCCGTTGAACCTGCCGCGTTTCGGCGTCAGCCAGCGCAACGCCCATCACCCTGAATTGCTCGCCTGGCGCATTCGCCGAGGAGCCCGTCCATGA	MSIKHVFKRTGGWLYLNTSMGRHPLRGAGVILMLHRVLNNDRAAELPHRNELCVGPEAFEHLLIWLQRHFECVPLMTLLLADPESVPDRPRVALTFDDGWRDNAMNAFPLLRQYQVPASIFLSTDFVGSRQHFWWESIGETLWGSHGQVARHSLIEHLQHVGRPLPVLLDDIDDERRSLALLHYLQSLKTLEPSTLSDLTEACPQGSQPQALDWPQVRMLEDSGLIRFGPHGASHAILTGLDDQRLHEELTRSWTALENGCAQPLPVYCYPNGDNDVRVREQVAAHGFPFALGTEAGLYRHDGDPLNLPRFGVSQRNAHHPELLAWRIRRGARP				NA	NA	NA	NA	NA
D1-36_01821	546			hypothetical protein	TTGCTGGCCTTGCGCAGGGCTTTGTTCCAGCCGATTCCGGCCCAGGTCAACGATGATTTTTTCCTAAGCACCTGCGCGCCGGCAGCCGGCAAATCCATTGTTTATGCACCCAAAGCGCGGGTGACCGACCAGGGCGTGGACGAAGCCGACAAGCAGTTTCGTCGTCGTCAGCGCGTCACTGTCGGCGGATTGCAGAGCCTGGCCCAGCGCCGGGAGCTGCTCAACCCGCTGCGCCATGGGCTCTACGCCATTGGCCTGATCAGCCACAAATTGATCCGCCGCCTGGCGCCGGTGCTGCTGTTGCCGTTGCTGCTGAGCAACGCCTGGCTGTGGAATGACCATCCGTTCTATCGCCTGACGCTGGTGGCGCAACTGCTCGGTTATGCCACAGCGCTGATCGGCTTGCTCGACGCAGGCCACCGCTTGCCTCGGCCATTTCGGTTGGCCGCGTTCGTGCTGGTAACACTGGTCGGCATGAGCATCGGGCTCTGGCAATTCCTGCGAGGCCAGCGCTACAGCCAATGGAACCCCGACCAAAACCGCTAA	MLALRRALFQPIPAQVNDDFFLSTCAPAAGKSIVYAPKARVTDQGVDEADKQFRRRQRVTVGGLQSLAQRRELLNPLRHGLYAIGLISHKLIRRLAPVLLLPLLLSNAWLWNDHPFYRLTLVAQLLGYATALIGLLDAGHRLPRPFRLAAFVLVTLVGMSIGLWQFLRGQRYSQWNPDQNR				NA	NA	NA	NA	NA
D1-36_01822	645			hypothetical protein	GTGGCTGAATTCATCTATTGGTCTTGCCTGTTGCTGCCGGTGTACGCCTACCTCGGCTACCCCGTGCTGTTGACCTTGTTGACACCGTTGTTTCCGCTACGGCGCTATGGCAAGCCCCTGCCGATGGACGTCAGCATTGTCATCGCCGCCCACAACGAGGCACGGCACATCGAAGCGAAATTGCGCACGCTGTTGGCCCAGGATTATCCGGCACGCTCGCTGCAAATCATCCTGGCCAGCGACGGTTCCACCGACGAGACGGTGGCCTGTGCGCGCAAAATCGGCGACTCACGCATCACCGTGCTCGACCTGCCACGCCAGGGCAAGGCCGCCGCCCTCAATACCGGCGTGGCCCATAGCTACGGCGAGATCCTGGTGTTCACCGATGCCGACAACCAATGGGCCCACGACACCCTCGGCCACCTGCTGGCGCCGCTGGGCGATCCTGAAGTCGGCGCCTGTGCCGGGCACATGGTCATCCCCGTGCCCGGCAAGGGCCTGAGCCTCGGCGACAGTCTGTATCGGCACTACGAAGGGTGGCTGCGCCGGGTGGAAGCGCACCGGCTGCATGGTCTCGGCCGACGGCGCCTTGCTGGCCTTGCGCAGGGCTTTGTTCCAGCCGATTCCGGCCCAGGTCAACGATGA	MAEFIYWSCLLLPVYAYLGYPVLLTLLTPLFPLRRYGKPLPMDVSIVIAAHNEARHIEAKLRTLLAQDYPARSLQIILASDGSTDETVACARKIGDSRITVLDLPRQGKAAALNTGVAHSYGEILVFTDADNQWAHDTLGHLLAPLGDPEVGACAGHMVIPVPGKGLSLGDSLYRHYEGWLRRVEAHRLHGLGRRRLAGLAQGFVPADSGPGQR	PGPT0023485_1063	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-POLY-N-ACETYL-GLUCOSAMINE_METABOLISM	CE-EPS-POLY-N_ACETYL-GLUCOSAMINE_BIOSYNTHESIS,PGPT0023485-pgaC|icaA-K11936	NA	NA
D1-36_01823	960			hypothetical protein	ATGAGCCGCGTCAGTATCGTCATCCCGATGTTCAACGAGGCCCGCCACATCGGCCGCACCCTGCTGGCCGCGCAGCAAGCTGCTCGCCAGGCGCAACTGGAATGCGAACTGATCGTGGTCGACAACGGCTCGGACGATCATGGGCCGCGCATCGCCAACGAACTGGGCGCCCGGGTGCTGATTGTGCCCGGCGTTCACATCGGCGCCCTGCGCAACCGTGGCGCGGCGGTTGCCAGCGGTGAGTGGCTGGCATTCATCGACGCAGACATGGAAATGCCCGCCGACTGGCTGAAGCTGCTCGTCGAAATGGAGGGCCGTCAGGGCGATGTGTTGGGACTGGACCTGGACACGCCCCGACACGCGCCTTGGTTCGCCCAGGCCTGGCAACGCCGCAGCCAACGTCCGGGCGCCCGTCCGCTGCATCGAGTGCAGTGGCTGCCCAGCGCCAATCTGTTGATGCGCCGCCGTTGGTTCGAACAGGTCGGCGGCTTCGACGAGACCCTGCGTACCGGTGAAGACAAGGATTTTTCCCTGCGCTTGCGCCAAGCCGGTGCGCAGTTGTTGCTGGTGAACGAAAGCCTGGCCCTGCATTGGGGTTACGAAGGCAGCTGGCGCGAATGGATGAGCAAGGAGCTGTGGCGCCAGGGCAGCCATTGGCAGTTGCTGCGCAGCCATGGGCCGAGCCTGCGCTTGCTGCGCTTTCCCGCCTTGTCCGTTGGCGCCTGGGGCCTGGATCTGCTGGCGCTCACCGCCCTGCTCCAGGGCCAGGTGCGCCTGGGGTTGACGCTACTGTTCATCAGCACATTGCCGGCCTTGTTTCTCAGCCTGCGCCAGAGCCAGCGCGACCCGCGCCTGGCGTTGCAACTGTGGGCCTTGCACGGGGTGCGCCTGCACCTGACCGGTGCCGCGTTGCTGCTCAATCTTTTTCAATGGAACGTCAGGAGACCCGCCCGTGGCTGA	MSRVSIVIPMFNEARHIGRTLLAAQQAARQAQLECELIVVDNGSDDHGPRIANELGARVLIVPGVHIGALRNRGAAVASGEWLAFIDADMEMPADWLKLLVEMEGRQGDVLGLDLDTPRHAPWFAQAWQRRSQRPGARPLHRVQWLPSANLLMRRRWFEQVGGFDETLRTGEDKDFSLRLRQAGAQLLLVNESLALHWGYEGSWREWMSKELWRQGSHWQLLRSHGPSLRLLRFPALSVGAWGLDLLALTALLQGQVRLGLTLLFISTLPALFLSLRQSQRDPRLALQLWALHGVRLHLTGAALLLNLFQWNVRRPARG				NA	NA	NA	NA	NA
D1-36_01824	1371			hypothetical protein	ATGATCGTCCCGCTCTCGATCATCAGTTTGCTGGGGCTGGTCTGCCTGGCATTGCTGGCCAGTCCTTATCCGTTCCTGGCGCCCGGCGCGGTGTTCGGCCTGGTCGGCGTCGCCGTGCTGTACCGCAAGCCCGGCTGGGGCCTGCTGGGCATCGCCGCGCTGGTGCCATTCGAAGGGCTGTTCAAGGAAAACGGATTGTCGGGCAGCAAGTTCTTTGGCCTGGCGCTGATTCTGATCCTGGCACTGCAACTGGCCCTGCACCAGATTCCGGCGACGCGCCTGCGCAGCAATATCTGGAAGCCGCTGGTCGGCTTCATGGCGCTGTATGGCCTGAGCCTGCTGCTGTCGGAAAACATGGACCTGTCCCAGACCCATCTGCGGGAACTGACGGTAGGGCTGATTCTGTTCGTGATCACCTTGTTGATCGGACGCGAGCTGAACCTGGACCTGTTTGCCCGCTTGATGACCGTGAGCGTGTCCACCACGTGCGTACTCGCGATGTTCTCGGCCAAATACCAGGACCAGGGCCGCGCGTCCGGACTGCTGGAGGACCCGAACTCCTTTGCGCTGCTGATCGCGTTCACCATACCGCTGGCCTTGTTGCTGGTACTGCGCAGCCCGAACCTGTTGCACCGGCTGTTCTGGGGCGGCGGTTTCATCCTGCTGCTGGGCGGCATGACCAAGACCGAATCGCGTTCCGGGCTGGTGGTGTTGCTGCTCAGCCTGATGATCGGCTTGTACCACTACCGCGCGCAGCTACCGCGGATTCGTCCACGGCACCTGGGCTTCGCCATGCTCGGGCTGGCCCTGATAATTCCCCTGGCGATCGCGGTGATGCCCGCCGGCTACGTGGCACGCATCCAATCGTTGAGCATCCTCAGCGCCGGCGCCAGCGCTCACAAGGATGAATCCCTTGGCCGCCGCGCCTCCTACATCCTGGTGGGCAGCCAGATGATCCGCGAGAACCCCATCCTCGGTTCAGGGCCCGGGACGTTTCCCCTGCACTACGCGCCGACCGGTTATGCCAAGGCCTTCTCGGCCAACCGCAAACTGGGCGACCTGTACCGTCGCGCTCACAACACCTACCTGGAAATATTCAGCGAGATCGGCGTACCGGGCGGGTTGATGTTTGTCGGCATGATCGGTCTTGGCCTCTACAACCTGGTGCGCGCGCGCCAACTCTGGCTCCAGCGTCGGGACTGGGCACAGGCCGACCTGCTCACACATTTGGGGATGAGTTTCCTGGCGCTGGCCTTGTTCCTGATGTTTCTCAGCGCGCCGAACCACAAGTTGCTGTGGATCATGCTCGCCTTGACGAGTGTGTTGCGCTACGACGCCGAACAATCCGCGCCACGGGAGGCCCGCCCATGA	MIVPLSIISLLGLVCLALLASPYPFLAPGAVFGLVGVAVLYRKPGWGLLGIAALVPFEGLFKENGLSGSKFFGLALILILALQLALHQIPATRLRSNIWKPLVGFMALYGLSLLLSENMDLSQTHLRELTVGLILFVITLLIGRELNLDLFARLMTVSVSTTCVLAMFSAKYQDQGRASGLLEDPNSFALLIAFTIPLALLLVLRSPNLLHRLFWGGGFILLLGGMTKTESRSGLVVLLLSLMIGLYHYRAQLPRIRPRHLGFAMLGLALIIPLAIAVMPAGYVARIQSLSILSAGASAHKDESLGRRASYILVGSQMIRENPILGSGPGTFPLHYAPTGYAKAFSANRKLGDLYRRAHNTYLEIFSEIGVPGGLMFVGMIGLGLYNLVRARQLWLQRRDWAQADLLTHLGMSFLALALFLMFLSAPNHKLLWIMLALTSVLRYDAEQSAPREARP	PGPT0023135_109	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0023135-waaL|rfaL-K02847	NA	NA
D1-36_01825	1104	mshA_3		D-inositol-3-phosphate glycosyltransferase	TTGAACGCGCCGTTCGGCCCGTCCCACCGCAGCAGCCCCCTGTCGATCATTCATCTGCTCGACAGCGGCGGCTTCTATGGGGCCGAGCGGATGCTGCTCGATCATTGCCTGGCGACACCGGGGCAGCACCAAGTGCTGTTCCTGGCGGCGCCGCCGACCTTGATCACGCGGTTTCGCCAGGCCGGGGTGGATTGCCGACACTGCGCCAGCTTGGGCGAATTGTTGCAGCATCTGCGGCAACGTCGCGCGGACCGGCCGCTGATCAACACCCACAACTTCAAAGGCTTGCTGTTCGGCTGGGCCGCGGCCACGCTGTTGCGCCTGCCCCTGGTGATTACCCAGCACGGCTTCACGCCGCGCAGCACCAAGCAGCGTTTCTACACCTGGTTGAGCCTGCAACTGTGCCGCACCGCGCCGGTCAAGCGCGTGGTCTGCGTCGCCGAAAGCATCGCGGCATTGCACCGCAAGGCCAGCGTCAAGGCGGACAAGCTCGACGTCATTCCCAACGGTTTGCCGGCCGTCACGACACCGCTGCCCCATCGTGACGACAGGCAGCGCTGGCGGGTCGGGTACGTGGGTCGCTTGAGCAGCGAGAAAGGCCCTGACCTGTTCCTCGACGCGATGATCCCGCTCTGCCAGCGCCATGGTTCGCTGCATGCGGTCATGCTCGGCGACGGTCCGGAACGCCAGCCGCTGCTCAAGCGCATCGCCGACGCGGGGTTGCCGACGCGCATCGAGTTGCCCGGTTATCAAACCGACATGAATGATTGGTGGAGCCGCCTCGACGCTTTGGTGATCAGCTCACGCACCGAAGGCACGCCGATGATCCTGCTCGAAGCCATGCAAGCCGGGGTGCCGGTGGTGGCGTTTGGCGTCGGCGGCATTCCCGACATCCTGCAGGACCGCCACAACGGCCTGCTGGCCACGCCGGCCGACAGCGACGAATTGGCCCGCCAGATCGAAACGCTGTTCAGCGAACCGCCCCTGGCGCGGATCCTCGCCGACAACGCCCGGCGCACCCAACGCGACCGCTACGACCTGCGCACGCTGGCCGAACGCTGGTCGCAACTTTATATCCGCACGGCACGGGAGGCTCGACCATGA	MNAPFGPSHRSSPLSIIHLLDSGGFYGAERMLLDHCLATPGQHQVLFLAAPPTLITRFRQAGVDCRHCASLGELLQHLRQRRADRPLINTHNFKGLLFGWAAATLLRLPLVITQHGFTPRSTKQRFYTWLSLQLCRTAPVKRVVCVAESIAALHRKASVKADKLDVIPNGLPAVTTPLPHRDDRQRWRVGYVGRLSSEKGPDLFLDAMIPLCQRHGSLHAVMLGDGPERQPLLKRIADAGLPTRIELPGYQTDMNDWWSRLDALVISSRTEGTPMILLEAMQAGVPVVAFGVGGIPDILQDRHNGLLATPADSDELARQIETLFSEPPLARILADNARRTQRDRYDLRTLAERWSQLYIRTAREARP				NA	NA	NA	NA	NA
D1-36_01826	1593			hypothetical protein	ATGAACCCCAAGGAAAATTATCTGCACGAGTTTTTCAGGATCTTCTTCGCCAACAAGCAGTGGGTGAAGCGCATCTTCCTGGTTTTCGCCGTGATCGCTCTGGTGTTGCCGTTGATGCTCAAGCAGAGTTTCGACATCACCGCCCAAGTGATCGTCCAGTCGAAAAAACTCTCCCAAGGCGACGCCACTACCTCGTTGAACCAGGAAAACGCGACTTTCATTCCGCCGTCCCTGGCGGACATGGAAACCGAGAGCAACATCCTGCGCTCACCGGCGTTGATTCGCGAAACCATCAAGACCCTGCGCGACCAGGGTGAATACACCCCGAGCCCAGGGGCCCTCAATAAATGGGTGAGCGAACCGCTCAAGCGCTACATCACCCAGCCACTGCGTGAATACGTCATCAATCCGCTTCGCGACGGCCTCGGGCTGGAAGTCGATCCGGTACGCGACACGATGCTCGATACCCTCACCGACGAGGCCATCGCGAACCTGAAAATCGAGACCCTGCCCGGCTCGAACGTCATCTCCATCATCTACAGCTTCGGCGATCCCGCCCAGGGCACCCGGTTCGTCGCGCAGCTGCTGGAAAACTACCTCACCGGCCGCCAGGACCTGCAATCGATCGAATTGCCCCAGACCTTCTACGAGCAGAAAAAAGTCCAATACCAGACGCGCCTCGACGGTCTGGAAGGCACCCGGCTCGGCCTGCTCGAAGGCGTCGGTTCCTCCGATCCCAAGGAAGAAATCACGTTTCGCCTGAACGCCATCAATACCGAAGAACAGGCCCTGAACCTGTACCAGGATCGCCTGCTGCAAAGCCAACGCTGGCTCGATTACCTCAAGACCAGCCTGGCAGCGGCGAACAGCTCGCGGTTCAACGACTACACGTTCCCGTTCACCTTCACCACGACCGTGGACAACATCGCCTTCGAGGACCGGGAAATCAGGCAACTGGGTGAACAGCTGACCAGCCAGGTCAGCCGCTACATGAACGACCTGGCGATCTTCCAGCCCAGCAGCGAACCGATGCTGCTGGCCCGCGAACAGATCATGCGCACACGCCAGCAGTTCCTCAAAGTGGTGAACAACCGCATCCAGGAACGCACCACCGACCTGGCCGTCGTCAGCTCGGTGATCAACCAGAAGGTCGAGCGCATCGCGGCCTTCAAGGAACGCATCCACCAGTTACAGGAAACCCAGAGCAAGCTGCGGCAGATGGACACCGAGATCAACGCACTCCACGCGGCGTTCTCCACCTATGCCCAACGGTTCGCCGAAGCCAGTTCCGCGCGCTCGCTGGACAATGACCTGTCCAACGCCCGTGTCCTGAGCCCCCCGTTCGAACCCACCGCCGCGGTATTCCCCAAGCCGATGCTGATTATCCCGTTCGGCTTGTTCTGCGGCCTGCTGCTGGCGATCGCTCTGGTCTACGTGCGTGAGTTCTTCGACCATCGCTTCAAGCATCCTGCGCAAATCAGCCAGCAACTGGACCTGCCGGTCTTGCTGGTGATCAATGAGCAGTCGCCCGAACAGGTCAATCCGCACCGCAACTGGAGCCTGCCAAGCCTTGTCCATTGGGTGAAAAATTGA	MNPKENYLHEFFRIFFANKQWVKRIFLVFAVIALVLPLMLKQSFDITAQVIVQSKKLSQGDATTSLNQENATFIPPSLADMETESNILRSPALIRETIKTLRDQGEYTPSPGALNKWVSEPLKRYITQPLREYVINPLRDGLGLEVDPVRDTMLDTLTDEAIANLKIETLPGSNVISIIYSFGDPAQGTRFVAQLLENYLTGRQDLQSIELPQTFYEQKKVQYQTRLDGLEGTRLGLLEGVGSSDPKEEITFRLNAINTEEQALNLYQDRLLQSQRWLDYLKTSLAAANSSRFNDYTFPFTFTTTVDNIAFEDREIRQLGEQLTSQVSRYMNDLAIFQPSSEPMLLAREQIMRTRQQFLKVVNNRIQERTTDLAVVSSVINQKVERIAAFKERIHQLQETQSKLRQMDTEINALHAAFSTYAQRFAEASSARSLDNDLSNARVLSPPFEPTAAVFPKPMLIIPFGLFCGLLLAIALVYVREFFDHRFKHPAQISQQLDLPVLLVINEQSPEQVNPHRNWSLPSLVHWVKN	PGPT0026030_76	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-PSL_POLYSACCHARIDE_METABOLISM	CE-EPS-PSL_POLYSACCHARIDES_BIOSYNTHESIS,PGPT0026030-pslE-K20998	NA	NA
D1-36_01827	1023			hypothetical protein	ATGAACGCTAGAATGCTTGTCCTGCTGTTGCTGCCGCTTGCCGGTTGCTCCAGCAACACCGATACCCGCTCGATGCCGGTGCAGATCCTCACCGCGGCGCCGGCCAATGCCCAGGCCACCGACATGCCCAAGGTCGAGCAGACCTTGCGGCCCCAGGATGTGCTGGACGTGATATTCCACATCGGCACCACCTCTTCCCAGGCTTATCGCGTGCAGCCTGGCGACCAGGTTGCCCTGAACTTCACCGCCGCCAGCCAGCTCAACGGCACGCAACAGGTGATGCCCGACGGCAGTATCGAACTGCCGGGCGCCAACACCTCGGTGAAAGTCGGCGGCCTGACCACCGACGAGGCGCGCCTGGCGGTGCAGCGCGCCTATGACCAGAAGATGTTGTTCCAGCCCAATCGCAACCAATTGACCGTACTGGTGACGAGCCCGCTCTCCGGCGAGACGAAGCTGCGCAACACCCTGACTCACCCTGGCACGGGCATGAGCCGGGAAATCACCGTGGGCAGGGATGGCTACGCCAGCTTCCCGGAAATTGGCGCCGTGCCTTTGCAAGGCATGACCGTCAGCCAGCTGGAGACTTTCCTCAACGAGCGCTACGCCCAACTGCCCGGCCACATGACGGTGGACGTGCTGCTCAAGTCCACCGCCGGCAACGAAATCTATGTCCTCGGCGAAGTGGCCCAGCCCGGCTCCTACCCGATCCGCCGGCCGATCTCGGTACTCGAGGCCCTGACACTGGCCAGGGGCACGAACGTCAAGGCCCGGCTCGACTCCGTGGTGATCATGCGCCGCAACGGCAATCAGGTCGAAGCCCGCCACTACGACGTGGAGAAAGCCTTGAGCGGCGACGCGTCGCAGATCGCCTATCTGCAACCGGAAGACATGCTGTTCGTGCCCAAGACCAAGCTTGCAAGTGCCGGTGAACTGGCCAGGCAATTGGCCGATGTGGTGCTGTTCCAGGGCACGGGGTTGAGCTTCGGCTACCGCGTCGACAACAAAGGCAGCGACAACTGA	MNARMLVLLLLPLAGCSSNTDTRSMPVQILTAAPANAQATDMPKVEQTLRPQDVLDVIFHIGTTSSQAYRVQPGDQVALNFTAASQLNGTQQVMPDGSIELPGANTSVKVGGLTTDEARLAVQRAYDQKMLFQPNRNQLTVLVTSPLSGETKLRNTLTHPGTGMSREITVGRDGYASFPEIGAVPLQGMTVSQLETFLNERYAQLPGHMTVDVLLKSTAGNEIYVLGEVAQPGSYPIRRPISVLEALTLARGTNVKARLDSVVIMRRNGNQVEARHYDVEKALSGDASQIAYLQPEDMLFVPKTKLASAGELARQLADVVLFQGTGLSFGYRVDNKGSDN	PGPT0025530_2300	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-EXOPOLYSACCHARIDE_TRANSPORT	CE-EPS-EXOPOLYSACCHARIDE_TRANSPORT-1,PGPT0025530-wza|gfcE|epsA-K01991	NA	NA
D1-36_01828	645	yveL	COG0489	Putative tyrosine-protein kinase YveL	ATGGACGGTTCGACGAATATCCTGACCATAGCCAGCCCGAGCGAGACCAACCTGACCTCGACCGTGCTCGACCCGGATCTGCGGATCCTTCTCATGACAGCGGCCAACACCGGCACCGGCACGAGCACCAGCGCCATGGCGCTGTCCGCCCAGCTGGCGCAGATGAGCAATGGCCGGGTGTTGCTGGTGGACGCCAGCCAGTCGCCGCGCAACCTCAGCCAGCAGCTCTCGCTGCAAAAAGAGCGCGGCTTCAGCGACCTGTTGTTCAACAGCCTGTCCCCACCGTTGTTGCAGGACTGCGTAGTACAGGTGTCGAGCCTGCCCTTCGACGTGCTGCCCCACGGCCGCCTCGGCCACAACGCCGAACGCCTGAGCCCCGAGCGATTGCGCCCGCTGTTCCGGCAACTGGCGGCGCAGTACCGCTTCGTGGTGATCGACGCCGACGCGGTGTATTCGGCCACCGACACGCTGGTGATCAGCACCCAGGTGGACGGCGTGGTGCTGGTGGTGCGCGGCGAAGACACCCGCTGGGAAGTGGCCCAGGCCACCCGACAAAGGTTGGCCCAGGCCGGCGCGAAAGTGGTCGGCAGCGTGTTCAACCGCCGCAAGTACTACATGCCCAAATGGCTCTACAACAACCTGTAA	MDGSTNILTIASPSETNLTSTVLDPDLRILLMTAANTGTGTSTSAMALSAQLAQMSNGRVLLVDASQSPRNLSQQLSLQKERGFSDLLFNSLSPPLLQDCVVQVSSLPFDVLPHGRLGHNAERLSPERLRPLFRQLAAQYRFVVIDADAVYSATDTLVISTQVDGVVLVVRGEDTRWEVAQATRQRLAQAGAKVVGSVFNRRKYYMPKWLYNNL				NA	NA	NA	NA	NA
D1-36_01829	747			hypothetical protein	ATGACCCGACATGAACAAGACATTCCGATCAGCACCTCCGGACGCGACAAACGTGTCGACCCCGAGCATCGCCGACGCCTGGATGCCGCCATCCACCGCCAGGGCCGTGGCTGGCTCACCGGTCGGGACGGTGGTCGGCCCTGGACGGTTTCGCGGACCAATCGGGTCGTGGCTTGCCTCGGCGCGCTGGCGATCCTGGTACTGCTCACCCCGTTGCTGCTGGGTCTGGCATTGCTGATCAAGTTTTCCAGCCCTGGCCCGGTTTTTTTCGTGCAGAAACGCACCGGTTATCGCGGGCGCGTGTTCGGCATGTACAAGTTTCGCACCATGGTCGTCGATGCCGAGGCCCTGAAAGAGTCGCTGCGCCACCTCAACAAGCACGGCGCCGACGCCATCGACTTCAAGATCGACAACGACCCGCGCATTACCCCGATCGGCAGGTTCCTGCGACGCAGCAGCCTCGATGAACTGCCGAACCTGATCAATGTAGTGACCGGCGACATGCGCCTGGTAGGCCCGCGGCCCACCTCGTTCAACGCCTATCGCTACAAGGACAACCATTTGGTGCGCCTGAGCATCTACCCCGGCCTGACCGGCCTGTGGCAGATCTCCGGGCGCAGCAATATCGACTTCGACCAGCGCGTGGAACTGGACCTCAGCTACATCGCCGAGCAGAGCCTGCTGTTGGATCTGAAGATCCTGATGATTACCCCCTTCAAAGTGTTCAGCGGCCACGGAGCGAGTTAA	MTRHEQDIPISTSGRDKRVDPEHRRRLDAAIHRQGRGWLTGRDGGRPWTVSRTNRVVACLGALAILVLLTPLLLGLALLIKFSSPGPVFFVQKRTGYRGRVFGMYKFRTMVVDAEALKESLRHLNKHGADAIDFKIDNDPRITPIGRFLRRSSLDELPNLINVVTGDMRLVGPRPTSFNAYRYKDNHLVRLSIYPGLTGLWQISGRSNIDFDQRVELDLSYIAEQSLLLDLKILMITPFKVFSGHGAS	PGPT0026575_230	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-SUCCINOGLYCAN_METABOLIC_PATHWAY,PGPT0026575-exoY-K16566	NA	NA
D1-36_01830	1059	galE1_1	COG1088	UDP-glucose 4-epimerase	GTGAACGTCCTGGTGACCGGCGCCGCCGGATTCATCGGAGCCCACTGCGTCTTGCGGTTGATGCGCGATGGCCATCACGTGTACGGGCTGGACAACTTCAACGATTACTACGACCCGCAGCTCAAGCACGACCGCGTGGCGTGGGTGCGTGACCAGGTCGGCGCATTTCCCTTGGCGCGTATCGACCTGACCGACGCCTCGGCGATCGACGGACTGTTCCAGAGCCATCGCCCGGAGGTGGTGATCCACCTCGCCGCCCAGGCCGGCGTGCGCTATTCGCTGGACAATCCCCGCGCCTATGTCGACAGCAACCTCGCCGGGTTTCTGAACATTCTCGAAAGTTGCCGCCGTCATCCGGTCAAGCACCTGATCTACGCCTCTTCCAGTTCGGTGTACGGCGCCAACCAGCGCACGCCCTATTCGGTACGGGACGGCGTTGATCATCCGCTGTCGTTGTATGCGGCAACAAAGAAGGCCAACGAATCGATGGCCCACAGCTACAGCCATCTGTTCGGCATCCCGTGCACCGGCCTGCGCTTTTTTACCGTGTACGGCCCGTGGGGTCGGCCAGACATGTCGCCGATCCAGTTCGCCACGGCCATCGCGCAAAACCAAGTGTTGCGGCTGTTCAACCATGGTGAGCACGAACGCGACTTCACCTACATCGACGACATCGTCGAGAGCATCGCCCGGTTGATCGAACGTGCGCCGCAGCCAACGCCCCACTGGGATCGCGAGCAACCGGACCCGGCCACCAGCCTGGCGCCATGGCGCATCTACAACATCGGCGGACAGCACCCGGTGGCGTTGCGAACCTACGTGGCGCTGCTGGAAAAACATCTGGGCCGCACCGCCCGGATCGAGCTGCTGCCCCTGCAACCGGGGGACGTGCTCAACACCTGCGCCGATGCCAGCGACCTGGCCCGGGCCACCGGTTTCCAACCGTGCATTGCACTGGATGACGGCCTGGGTCGCTTCGTCGACTGGTTCCTCGATTACTACGCGCAACCCATCGATCACACGCCGCTTGCGGCCGTACCTCAGCGGAGGAGTCTATGA	MNVLVTGAAGFIGAHCVLRLMRDGHHVYGLDNFNDYYDPQLKHDRVAWVRDQVGAFPLARIDLTDASAIDGLFQSHRPEVVIHLAAQAGVRYSLDNPRAYVDSNLAGFLNILESCRRHPVKHLIYASSSSVYGANQRTPYSVRDGVDHPLSLYAATKKANESMAHSYSHLFGIPCTGLRFFTVYGPWGRPDMSPIQFATAIAQNQVLRLFNHGEHERDFTYIDDIVESIARLIERAPQPTPHWDREQPDPATSLAPWRIYNIGGQHPVALRTYVALLEKHLGRTARIELLPLQPGDVLNTCADASDLARATGFQPCIALDDGLGRFVDWFLDYYAQPIDHTPLAAVPQRRSL	PGPT0019020_818	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-UDP-GALACTOSE-GLUCURONATE_POOL_MODIFICATION,PGPT0019020-cap1J|wbgU-K08679	NA	NA
D1-36_01831	1359	rkpK_1	COG1004	UDP-glucose 6-dehydrogenase	ATGGACGTGAGCGTATTTGGCACGGGGTATGTGGGGCTGATTCAGGCAGCGGCATTGGCCGACGTCGGGCACCGCGTCCTGTGCGTCGATATCGACCCGAACAAGATCCGTCAACTGCAACAAGCCGTACCGCCCATCAGTGAGCCTGGGCTGTCCGTATTGCTGGAAGACAACATCAAGGCCGGCCGGCTTTTGTTCAGTTGCCAGGCCAGCGATGCGGTCAACCATGGCGAGTTGATTTTTATTGCCGTCGGCACGCCAGCCGACGAAGACGGCTCGGCGGACCTGAGCCATGTGCTGGCGGTGACCCGCCAGATCGCCGACTTCATGGACAGTGACCGCACCCTGATCATCAAGTCGACCGTACCGGTCGGAACAGCCGATAAAGTCGCCGAGTGCGCCCGCCAGGCGCTGGCTCGTCGGGGCCTTAAACAGTTGAATGTGCGTGTGGTATCCAACCCGGAGTTCCTCAAGGAAGGCAGCGCTCTCGCCGATTGCATGCGCCCGGACCGCATCATCATCGGCGCCAGCGATCAACTGGCGCGGGATCAGATGGGCGAGCTCTACGCGCCGTTCTGCCGCAACCACGAAAAACTGATGTTCATGGACAACCGCAGCGCGGAGCTGACCAAGTACGCCGCCAACGCCATGCTCGCCACCCGCATCAGTTTCATGAACGAACTGGCCAACCTCACCGAACGCCTGGGCGCCGACATCGAAGCCGTGCGCAAAGGCATCGGCTCGGACCCACGCATCGGCTATCACTTCATCTATCCGGGCTGCGGCTTCGGCGGCTCGTGCTTCCCCAAGGACCTGCGCGCCCTGCTGCACACGGCCGAACAGAGCGGCATGCCGCTGCGCCTGCTGCGCAGCGTCACCGATGTGAACGACAGCCAGCGGCACATCCTTTTCGAGAAGCTGGCGCAGCAATTTCCGGACGGCTTGGCCGGCAAGTCGATTGCCATCTGGGGCCTGGCCTTCAAGCCCAACACCGACGACATGCGCGAAGCCCCGAGCCGCTACCTGATGGAAGCCCTCTGGCGCGAAGGCGCGCGCGTGCAGGCCTACGACCCGGAAGCCATGTCCGAATGCCGGCGCCTGTACGGTTATCGCAAAGACCTGAACCTGTGCGCCACCCGCGATGACACGCTTGAGGACACCGATGCCCTGGTGATTTGCACTGAGTGGAAGAATTTTCGCGTGGTGGATTTCGACCTGCTGGCGAGCAAGCTGCGCGCCCGGGTCATCATCGATGGCCGCAACCTCTACAACCCCGAGCACCTGGCTGCCGCCGGGCTGCTGTACCGTGGCATCGGCTTGCGCCACACCGTGCCCAGCGCCCCGGGGCCACAAGCGTGA	MDVSVFGTGYVGLIQAAALADVGHRVLCVDIDPNKIRQLQQAVPPISEPGLSVLLEDNIKAGRLLFSCQASDAVNHGELIFIAVGTPADEDGSADLSHVLAVTRQIADFMDSDRTLIIKSTVPVGTADKVAECARQALARRGLKQLNVRVVSNPEFLKEGSALADCMRPDRIIIGASDQLARDQMGELYAPFCRNHEKLMFMDNRSAELTKYAANAMLATRISFMNELANLTERLGADIEAVRKGIGSDPRIGYHFIYPGCGFGGSCFPKDLRALLHTAEQSGMPLRLLRSVTDVNDSQRHILFEKLAQQFPDGLAGKSIAIWGLAFKPNTDDMREAPSRYLMEALWREGARVQAYDPEAMSECRRLYGYRKDLNLCATRDDTLEDTDALVICTEWKNFRVVDFDLLASKLRARVIIDGRNLYNPEHLAAAGLLYRGIGLRHTVPSAPGPQA	PGPT0017855_1714	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
D1-36_01832	1698			hypothetical protein	ATGACCCGATACCTCAAGGAACTGCTGCTGTTGCTGTACCTTTTCAGGGGGCATGACTATTACCTGGAGCGTCTCGCTGCGCTGGGTCTTGGTTCTGCAACGGTGCTGTTCGGTGCGATGTTCCTTGTGCTGGTGCTTGCGTTGTGGATGAGCGCCTACATCCGCCAGACGTTGGTGCGGCATCTGTTTGCCTTGACACTGTTTGCCTCGGCGGTGTTCTTCGAGGTGTATACCCGGGTCACCGACAGTTACCTGACCTACAGCCAGTTCGTGTCGCTGGTGTATTCGGGCGGCTTTATCCAGGAGGCGGCTTATCAGTATCGAGAGGTGATTCTCAGCGCGATGGCGGGCGGCCTGTTGCTGCTGTTGGGCATCGGGCTGAAGCCTCGGCGGCGTTTACCATTGCCCGGTTATGTACCGGTCGCCGCGCCGTTGCTCGGGGTATTGCTGCTCAGTGGTGTGCTGTTCGCAAGGGCGGGCGAGGGCGCCCGTGGTCTACCTGTGATGTATACGCCGCTGGCCTATCTGAACCTGTTTGCCTACGAGGCGCTGCACGACACCGTCGGCGTCCGCGAGCCGGTCAGCTTGGCTCGCCGTTCTCCTGCGATCGAGCACGATATCGTGTTGATCATCGACGAAAGCATCGGTGGCAACTATCTCGATATCAACACCCCGTTCGGTGTGAACAGCGGCCTCAAGACCCCGCCGCCTGGGGTGGACATCTTCAATTACGGTTATGCCGCTTCCATCGCCAATTGCAGCGCCGACACCAATATCACCCTGCGTTATGGCGGTACGCGGGCTGATTACGTGCGTATCAACAGCACGCAGCCGTCAATCTGGCAGTACGCCCATGTCGCGGGCTTGCATACCGTCTATATCGATGCCCAGCGCACCGGCGGCAACTTGCAGAACCTGATGACCGAACAGGAAAAACAAGACATCGACCAATTCATCCAATTCGACCAGGTCCGTGTGCTGGACCGCGACATGGCAGCCGCGGCGCAGTTGATCGAGCTCTTGGGCAATGACCGGGCCGAACTGGTGGTGGTGAATAAAGTAGGGGCGCATTTTCCGGTCCACGACAAATACCCCGACGAATTCATGAAACACCGTCCGGCCTTGCCCCGGGGGCGGTTTCAGGACGTGGCCGACACCGGCCAGCGCGACGGCTTCAACGGCCAGCAATATGACTGGTTGCTGTATCGCAATGCGTACCAGAACACGCTCCTATGGAACGTCGGCGAGTTCTTCCGGCGCCTGTTGCGTCAAGGCAACCTTCAGAATGCGGTGCTGATCTATACCTCCGATCATGGCCAGGATCTGCACGAGCGTGGCAATCCCGGGCTCAATACGCATTGCGGCGGCGACCCGGTGGAGGAGGAGGGGCTGGTGCCTTTGGTGGTCATCCAGGGCAGTCAGCTGCGCACCTTGGACTGGCGCGGCGCCTGGGCGCAAAACAAGGATCGTTCCAGCCACTACAACATCTTTGCGACGCTGCTTGAGTTGATGGGCTACGACCCGGCGGCGGTCGTGGCGCGCTATGGAAAACCCCTGAGCCAACCCACCGAGGACGACTTCACGTTCAACTACCGCTTCAACGCGCGGCTGGGTGCCAAGCCAGCCTGGAAGCACATCGATCTGGGCAACATCGTCATACCGGAACCGGCCCAGACCGAGATGGCGGCGGGGCATTGA	MTRYLKELLLLLYLFRGHDYYLERLAALGLGSATVLFGAMFLVLVLALWMSAYIRQTLVRHLFALTLFASAVFFEVYTRVTDSYLTYSQFVSLVYSGGFIQEAAYQYREVILSAMAGGLLLLLGIGLKPRRRLPLPGYVPVAAPLLGVLLLSGVLFARAGEGARGLPVMYTPLAYLNLFAYEALHDTVGVREPVSLARRSPAIEHDIVLIIDESIGGNYLDINTPFGVNSGLKTPPPGVDIFNYGYAASIANCSADTNITLRYGGTRADYVRINSTQPSIWQYAHVAGLHTVYIDAQRTGGNLQNLMTEQEKQDIDQFIQFDQVRVLDRDMAAAAQLIELLGNDRAELVVVNKVGAHFPVHDKYPDEFMKHRPALPRGRFQDVADTGQRDGFNGQQYDWLLYRNAYQNTLLWNVGEFFRRLLRQGNLQNAVLIYTSDHGQDLHERGNPGLNTHCGGDPVEEEGLVPLVVIQGSQLRTLDWRGAWAQNKDRSSHYNIFATLLELMGYDPAAVVARYGKPLSQPTEDDFTFNYRFNARLGAKPAWKHIDLGNIVIPEPAQTEMAAGH				NA	NA	NA	NA	NA
D1-36_01833	1920			hypothetical protein	ATGCCTCACACCCAATATCGCCCCGATATCGATGGTCTTCGCGCTGTTGCGGTGATCGCCGTGTTTATCCATCACCTCAACGCCAGCCTCTTACCAGGCGGCTTCGTCGGGGTGGACATTTTTTTCGTCATCTCGGGGTTCCTCATCACGTCCCAGGTGTTCAGCGAGATCCAACAGAACACCTTCTCCATGAAGCGTTTTTATCAGCGGCGCATCAACCGCATCGTACCGGCGCTGACGACGGTGGTGGTGGCGAGCGTGATTGCCGGGATCTTCGTCCTGTCTCCGGTCGACCTGACCCGACTGAACATCAGCGCGCTGTCCTCCCTGCTCGGTGTTTCGAATATCTATATCTGGATGAAGTACGGAAATTATTTCGCGGCGGACGCCAGCGAAGCCCCACTTCTGCATACCTGGTCACTGGGCATCGAAGAACAGTTCTACCTGCTCTGGCCGCTGCTGATGCTGATGCTGTGTCGATGGGCACCCCGCTACTTGCTGCCGCTGGTGTGCATCGGCGTTGTCGTGACGGTTGGCGTTTCGCAGTACGCCACGACCCTCGTTCCCTCTGCCTCCTACTATCTGCTGCCCACACGTTTTTTCGAACTGCTGCTGGGGGCGACGTTGGCGATTTATCTCGCGCAGCCACGTACGTTCAGTGACGGGGTGGGCCGGATCTGGGCGCTGGCGGGAGCCGGATCGATTGCCTATTCATTGTTTGCACTGAGTCCGGAAACAACCTTTCCCGGCCTCAATGCGCTTATACCTTGCCTGGGGGCGGCGCTGTTGATCCTCGCTGGCAGCGGCGGAACACGCTCGCGCTGGCTGACCAACCGGCCGATGGTATTTGTTGGTCTGATTTCCTACTCGCTTTACCTCTGGCATTGGCCCTTGATTGCGTACCTGAGATATCTGGATATCAACATCACGCTCCCGCTGGGGCTGGGCCTGATGGCAGTGGCGACGCTACTGGCCTGGTGTTCCTGGCATTTTGTCGAAGTCCCCTTTCGACGAACCGGGGCGCTGTTGCCGTTCACCCGCGCATTTGGCCGTCGGTTCATGGTTCCAGCGTTGGGGCTGGCCGTGCTGGCTGTACTGAGCGTGCAATGGCAGGGGTTCCCACAGCGTTTCGTACCGCAGGTGTCAATCCTTGAAGCGATGAGCCTGACCGAACCGAACAAACTGCGTGAGCGCTGCCACATGCCCAATGCGCGCTACAACGCCGCGCCCGATCCGGCGTGCCACCTCGGGGCACGCAAGGCGCAGATCGACGGCGTGATGGTCGGAGACTCTTTCGCCAACCATTTCACCGGCATGGTCGATGTCCTGGCCGAACCCAACGGCATCGCCTTGATGGATTACACCCTCGACAAGTGCCCGCCCATCTTCGGCCACGCCGCCGAGATGTCGGCGGGTTACGGGGCACGCTGCGTGGCGCGCAATGAGCAGGTGTTGCAGTTGATCGAGCGGAACCGGTATCCCTACGTGGTGCTCGCCGGCGCCTGGCCCCGGGACCCGGCAGCAGGAGCCGTCATCGAGGCAAGCATCCGGCAAGTGGCGGACCGGACCGGCCAAGTCATCGTCGTTCTCAGCAATCAGCCAATCGACAACGCCGCGACGTGCCCGGTGCGCCGCTTGATGTTCGCTCCTCTTCGGCAGTGTTCAACGCGGCTGGACGCCGCGGCGCCCTATTGGACGCAGATACGCGCCAGGCTGCCTCAGGTGCGCTTCATCGATCCCAACCAGGTGATTTGCCCGGCCGGCCTGTGCAGCCCGATCATCGACGGACAACTGCTCTACCGGGATGACGCGCACTTGAACGATGTCGGCTCGCGTTTCATTGGCCGCGCGCTCCGCGACCTGGGCTTCACGCTGCTGTACGACCCAGCGCCAACCACGCCGATTGCTACCACCCGATAG	MPHTQYRPDIDGLRAVAVIAVFIHHLNASLLPGGFVGVDIFFVISGFLITSQVFSEIQQNTFSMKRFYQRRINRIVPALTTVVVASVIAGIFVLSPVDLTRLNISALSSLLGVSNIYIWMKYGNYFAADASEAPLLHTWSLGIEEQFYLLWPLLMLMLCRWAPRYLLPLVCIGVVVTVGVSQYATTLVPSASYYLLPTRFFELLLGATLAIYLAQPRTFSDGVGRIWALAGAGSIAYSLFALSPETTFPGLNALIPCLGAALLILAGSGGTRSRWLTNRPMVFVGLISYSLYLWHWPLIAYLRYLDINITLPLGLGLMAVATLLAWCSWHFVEVPFRRTGALLPFTRAFGRRFMVPALGLAVLAVLSVQWQGFPQRFVPQVSILEAMSLTEPNKLRERCHMPNARYNAAPDPACHLGARKAQIDGVMVGDSFANHFTGMVDVLAEPNGIALMDYTLDKCPPIFGHAAEMSAGYGARCVARNEQVLQLIERNRYPYVVLAGAWPRDPAAGAVIEASIRQVADRTGQVIVVLSNQPIDNAATCPVRRLMFAPLRQCSTRLDAAAPYWTQIRARLPQVRFIDPNQVICPAGLCSPIIDGQLLYRDDAHLNDVGSRFIGRALRDLGFTLLYDPAPTTPIATTR				NA	NA	NA	NA	NA
D1-36_01834	669		COG1136	putative ABC transporter ATP-binding protein	ATGCTTGAAGTTCGAGAAGTATTCAAAAGCTACCCAACCCCCCAAGGTCTTTTGCCGGTGTTGCAAGGCATCGACCTGACCTTGCCCCCCGGCAGCAGCTTGGCGCTGATGGGCGAATCGGGCAGTGGCAAGAGCACCTTGTTGCACCTGGTTGCCGGCCTGGACAAGGTCGATCGCGGCAGTATTCGCAGCGGCGGGTATCGGCTCGACGGCATGAGTGAACATGAGTTGGCGAACTGGCGGCGCACGGAAATCGGCCTGGTGTTCCAGCAGTTCAACCTGATCAGCAGCTTGCCGGTGGAAGACAACCTGGCGTTCCAGGCGCGCCTGTGTGGGCGTTTCGACGCGGCCTGGCAAACGCATCTGGTGCAGCGGCTCGGGCTGTCGCAACTGCTGCGGCGTTATCCCGAGCAGCTTTCCGGCGGGCAGCAACAACGGGTCGCCCTGGGCAGGGCGCTGGCGTCACGTCCGCCGTTACTGTTGGCCGACGAACCCACTGGCAATCTGGACGAAGCCACCAGCGACGAAGTGCTGAAGCTGTTGCTGGAATTGCTCGACGGCAGCCCGACCAGCCTGTTGATGGTCACCCATAGCCAGCGGGTGGCGGCGCGCCTGGCCCATCGGGTGGTATTGCAGGGCGGGCGCCTGGCAGAGGCGACCCAGGGGTGA	MLEVREVFKSYPTPQGLLPVLQGIDLTLPPGSSLALMGESGSGKSTLLHLVAGLDKVDRGSIRSGGYRLDGMSEHELANWRRTEIGLVFQQFNLISSLPVEDNLAFQARLCGRFDAAWQTHLVQRLGLSQLLRRYPEQLSGGQQQRVALGRALASRPPLLLADEPTGNLDEATSDEVLKLLLELLDGSPTSLLMVTHSQRVAARLAHRVVLQGGRLAEATQG	PGPT0013345_15507	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003	NA	NA
D1-36_01835	2469			hypothetical protein	ATGATCGTTCGCCAGACCCTCAAGGCGCTGCTCAGCCATTGGCGCCGGCACCCGGTGCAGTTTTTCAGTGTATTGACCGGACTTTGGCTCGCCACCAGCCTGCTGACCGGTGTGCAGGCGTTGAACAGTCAGGCCCGCGACAGCTACGCCCGGGCCAGTCAGTTGATCGGCGGCGAACCCCAGGCCAGCTTGAGCGCCCCCGGCGGTGGCACGTTCGCGCAGCAATGGTTCATCGACCTGCGCCGCCAGGGCTGGCCGGTGTCGCCGGTGTTGCAGGCGCGAGTGACGCTCCAGGGGCACGAAGACCAACGCCTGCAACTGATGGGGATCGACCCGGTGTCGCTGCCGCCGGGTTCGGCTTTGGCGGGGCAGGGGCGGGAGATTGCCGAGGTGGTGGAATTTTTCACAGGTGCCGGCCACACCTGGATTGCACCGCAGACATTGCAGGCCCTGGGGTTGAAGGAAGGCGACCGCCCCCGCACCGTTGACGGCCAGGCCCTGCCACCCTTGCACGTGCAGCCGGACATGGCCCCGGGCGTGCTGCTGATGGACATCGGTTTTGCTCAAGCGCTACTTCGGATGCCGGACCAGCTTTCACGATTGGTACTGCCCAGCACCTACACCGCCGCCTTGCCCGAGGCCTTCAACGGGCTGTTGCAATTCAAGCGCGCCGAGGACGAAAACAACCTGTCGCGCCTGACCGAAAGCTTCCACTTGAATCTCGACGCACTGGGGTTTTTGTCCTTCGTGGTGGGCCTGTTCATCGTCCATGCCGCCATTGGCCTAGCCCTGGAGCAACGCCGCGGCCTGCTGCGGACCCTGCGGGCCTGCGGCGTCAGCGCGCGGGTGCTGATCACCAGCCTGGCGTTGGAACTGGGCGCACTGGCCCTGCTGGGCGGGATCGCCGGCGTGCTCAGTGGTTATTGGCTGGCCAGCCTGTTGTTGCCTGATGTAGCGGCGAGCCTGCGAGGTTTGTACGGCGCCGAAGTCCCCGGACAACTGAACCTCAGTCCCTGGTGGTGGCTGGGCGGTATCGGCCTGGGCCTGCTCGGCGCTGTACTGGCCGGCGCCCAGAGCCTGTTGCGCGCCGCTCGCCTACCGTTGTTGGCCCTGGCCAATCCCCAGGCCTGGCACCAGGCCCATGCGCGTTGGTTGCGGCGCCAAGGTGGGGTGGCGCTGTTGGCGGCGCTGGTCGCCGCGTTGGCGCTTGCCTGGGGCGACAGCCTGGCGAGCGGTTTTGTCCTGATGGCCGCATTGTTGCTGGGCGCGGCGTTGGCCTTGCCGGTGTTGCTCAACGCCGTATTGAACCGACTGCTGCGCCGCAGCCGTTCGGTGCTCGGCCAATGGTTCCTCGCCGATTGCCGTCAACAACTGCCGACGTTGAGCCTGGCGCTGATGGCGCTGCTACTGGCGTTGGCGGCGAACATCGGCGCTGGCAGCATGACGTCGGGGTTTCGCCAGACGTTCAGTGACTGGCTCGAGCAGCGACTGACCGCCGAGCTGTACATCAACCCGCAAACGCCGGCCCAGGCGGCCGAACTGCACGACTGGCTCAACCAGCAACCCACGATCACCGCCGTGTTGCCCAACTGGCAGGTGTCGATGCCGTTGCAAGGTTGGCCGACGGACATCTACGGCATCATCGATCACTCGTCCTATCGCCAGCACTGGCCGTTGCTGGAGTCCGCCGGTGACCAAGCCTGGCAGCAACTGGCAACAGCCGACACGCTGATGCTCAGCGAACAACTGGCTCGGCGCCTGAAGGTGCGGATCGGCGACCGCTTGAACTTGCCGACCCCGCAAGGGCCCTGGACCCCAAGGGTTGTCGGGATTTATGCCGACTACGGCAACCCCAAGGGCCATGTGCTCATCAACGCCGAACATTTACGGGCGCATTGGCCGCAGCTCGCACCCAATCGCTTCAATCTGCGTATCGAGCCGTCGGCCATCCCCCCGATGTTGGCGGCGTTGCAAGACCGCTTCAACCTGGATGACAACCGCATTGTCGATCAGGCTCGACTCAAGGGCTGGTCTACCCAAGTGTTCGAACGCACCTTTGCCGCCACGGCGGCGCTTAACAGCTTGACCCTGGCGGTGGCTGGCGTTGCGCTGTTCATCAGCCTGCTGACCCAGAGCCAGAGTCGCCTCAGTCAGTTGGCGCCGTTATGGGCATTGGGAATCACGCGGCGGCAATTGATGCTGCTCAACCTCGGGCAGACCTGGCTGCTGGCGTTGCTGACGCTGCTGCTGGCCCTGCCGCTGGGCATTGCCCTGGCCTGGTGCCTGGACGCGGTCATCAATGTCCAGGCCTTTGGTTGGCGCCTGCCATTGCGCATCTTTCCGATGCAGTTGGCGCAGCTGCTGGGCCTGGCGATGTTCGCCACGCTGCTGGCATCGGCCTGGCCGCTCTATGCGTTGTACCGCACGCGGCCGGCGGACCTGCTGAGGACTTTCGCCCATGAGGATTAG	MIVRQTLKALLSHWRRHPVQFFSVLTGLWLATSLLTGVQALNSQARDSYARASQLIGGEPQASLSAPGGGTFAQQWFIDLRRQGWPVSPVLQARVTLQGHEDQRLQLMGIDPVSLPPGSALAGQGREIAEVVEFFTGAGHTWIAPQTLQALGLKEGDRPRTVDGQALPPLHVQPDMAPGVLLMDIGFAQALLRMPDQLSRLVLPSTYTAALPEAFNGLLQFKRAEDENNLSRLTESFHLNLDALGFLSFVVGLFIVHAAIGLALEQRRGLLRTLRACGVSARVLITSLALELGALALLGGIAGVLSGYWLASLLLPDVAASLRGLYGAEVPGQLNLSPWWWLGGIGLGLLGAVLAGAQSLLRAARLPLLALANPQAWHQAHARWLRRQGGVALLAALVAALALAWGDSLASGFVLMAALLLGAALALPVLLNAVLNRLLRRSRSVLGQWFLADCRQQLPTLSLALMALLLALAANIGAGSMTSGFRQTFSDWLEQRLTAELYINPQTPAQAAELHDWLNQQPTITAVLPNWQVSMPLQGWPTDIYGIIDHSSYRQHWPLLESAGDQAWQQLATADTLMLSEQLARRLKVRIGDRLNLPTPQGPWTPRVVGIYADYGNPKGHVLINAEHLRAHWPQLAPNRFNLRIEPSAIPPMLAALQDRFNLDDNRIVDQARLKGWSTQVFERTFAATAALNSLTLAVAGVALFISLLTQSQSRLSQLAPLWALGITRRQLMLLNLGQTWLLALLTLLLALPLGIALAWCLDAVINVQAFGWRLPLRIFPMQLAQLLGLAMFATLLASAWPLYALYRTRPADLLRTFAHED	PGPT0013350_5302	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004	NA	NA
D1-36_01836	1071			hypothetical protein	ATGAGGATTAGAATCGGCCTGGTGTTGCTGGCGCTGCTCGGCGGTTGTGACAACACAACGCCTCCGGACAAGGGCTTTGCAGGGCTGGGTACCGAGGCTGTCGCCTTTACGCCGGTGGTACCTGGGCGCGTGTTCAGCTTTCCAGCCGATCATGGTGCGCATGAAGGCTTTCGCATCGAGTGGTGGTACGTCACCGCCAATCTCAAGGACGTCGAGGGGCGGGATTTCGGTGTGCAGTGGACGCTGTTCCGCAGCGCCCTGGATGCCGCGCCTCCGGCCAGCGGTTGGCGCAACCAGACGATCTGGCTCGGCCATGCCGCCGTCACGTCCGCCACCGTCCATCACGCCGCCGAGCGCTACGCCCGGGGTGGAGTGGGGCAGGCCGGGGTGCGTACCACGCCCTTCGAGGCCTGGATCGACGACTGGCGATTCGGTACTCAAGCCGCTGGCCCGGACCCGCTCGCAGACATGCAGTTGCAGGCGCGCGGGCCGCGCTTCAGCTACGACCTGCGGCTGACGTCGAGCCGTCCACTGGTGCTGCAGGGCAACCAAGGCTTCAGTCAGAAATCCGAGCAAGGCCAGGCCTCGTACTATTACAGCCAACCGTTTTTTCGAGCCGGAGGTCACTTGGAAATCGATGGCCAGCGCTATCAGGTCAGTGGCCCGGCCTGGCTCGACCGGGAATGGAGCAGCCAGCCCTTGACGGAAAACCAGACCGGGTGGGACTGGTTTTCCTTGCACTTGGACAAAGGCGAGCACGTGATGCTCTACCGCATGCGCCACAAGGACGGTGAGCCGTACCTCACCGGCACCTGGATTGACGCCCAAGGCCAGGCGACGACACTGGCCGCCAGCCAAATCAGCCTCACACCGCTGGACACCGCCGAAGTTGCGGGAAGGCCCATGCCAGTGAGCTGGTCAATCAGGATTCCCGGCAAGCAATTCGATATCACCACGCGAGCCCTGAACCCCAATGCCTGGATGAACCTTCGCATCCCGTATTGGGAGGGGCCGGTGCAACTGAGCGGCAGTCATGGTGGCACCGGTTATCTGGAAATGACGGGGTATTGA	MRIRIGLVLLALLGGCDNTTPPDKGFAGLGTEAVAFTPVVPGRVFSFPADHGAHEGFRIEWWYVTANLKDVEGRDFGVQWTLFRSALDAAPPASGWRNQTIWLGHAAVTSATVHHAAERYARGGVGQAGVRTTPFEAWIDDWRFGTQAAGPDPLADMQLQARGPRFSYDLRLTSSRPLVLQGNQGFSQKSEQGQASYYYSQPFFRAGGHLEIDGQRYQVSGPAWLDREWSSQPLTENQTGWDWFSLHLDKGEHVMLYRMRHKDGEPYLTGTWIDAQGQATTLAASQISLTPLDTAEVAGRPMPVSWSIRIPGKQFDITTRALNPNAWMNLRIPYWEGPVQLSGSHGGTGYLEMTGY	PGPT0013350_319	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004	NA	NA
D1-36_01837	243			hypothetical protein	ATGAGCGATGACATCAAACAACCGTCGCTGGCCAACTGGCAGCGGCTATTCGACGACAAGGCCTATTGGCAGGAGTCGCCTGATGCTCATTTCACCGAGCTGATGCGGCTCGCCGACGACCTGTTCGGCCTGGGAGAGATTGACCTGGACCGGTGGCAAGATTTGAAAACCAAGGCTGAGGAGCTCCACCAACGCTCGCCAGATGCCAACGTTGCCGAGGAAATGGCAGACCCCGACGCTTGA	MSDDIKQPSLANWQRLFDDKAYWQESPDAHFTELMRLADDLFGLGEIDLDRWQDLKTKAEELHQRSPDANVAEEMADPDA				NA	NA	NA	NA	NA
D1-36_01838	174			hypothetical protein	ATGAAGTCCAGCCATGATCAAACCCAGCAGAACCCCGACGCCCCGGCCTTGCCCGGTGAAGTGGAGCGTGACAACGACGCTTTGCGGCCCAACGACCCGGCCAAGCGCGAACAGCAGCAGGGCAACCCCGATGCGCAGGAAACCGACGCGCAGAAAACAGCAAGGCGCAAATAA	MKSSHDQTQQNPDAPALPGEVERDNDALRPNDPAKREQQQGNPDAQETDAQKTARRK				NA	NA	NA	NA	NA
D1-36_01839	519	hcpA_1	COG3157	Major exported protein	TTGGCTACCCCCGCTTACATGTCCATCGAAGGCACCAAACAAGGTCTGATCACCGCCGGAGCGTTCACCGCCGACTCGGTGGGCAATACCTATCAGGAAGGTCATGAAGACCAGATCATGGTGCAGGGTTTCCAGCACCAGGTGACTATCCCCCGCGACCCTCAGTCCGGGCAGCCAACCGGCCAGCGCATACACAAACCCTTGGTCATCACCAAGGTGTTCGACAAGGCCTCGCCGCTGCTCCAGGCAGCCCTGACCAGCGGCGAACGGCTGACGAAAGTCGAAATCCAGTGGTATCGCACCTCGGCCGCGGGCACCCAGGAACACTACTACACCACCACTCTGGAAGACGCGATCATCGTTGATATGAACGACTACATGCTTAATTGCCAGGACCCTGGCAACAGCCACTTCACCCATCTGGAGGACGTCCACTTCACCTACCGCAAGATCACCTGGACCCACGAGGTGAGCGGCACTTCGGGCTCCGATGACTGGCGCACCCCAGTCACAAGCTAA	MATPAYMSIEGTKQGLITAGAFTADSVGNTYQEGHEDQIMVQGFQHQVTIPRDPQSGQPTGQRIHKPLVITKVFDKASPLLQAALTSGERLTKVEIQWYRTSAAGTQEHYYTTTLEDAIIVDMNDYMLNCQDPGNSHFTHLEDVHFTYRKITWTHEVSGTSGSDDWRTPVTS	PGPT0025980_249	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_PROTEINS,PGPT0025980-hcp-K11903	NA	NA
D1-36_01840	1395		COG5383	putative protein	ATGAGCTTCGTCAGCCCCGACTTGATCCGCCAACGCTTCTCCAAGGCGATGTCCGACATGTACCGCGACGAGGTCCCGTTGTATGGGGCATTGATGAACCTCGTGGAGCAAACCAACGCCCAGGCACTGGCCAACGACCCATCACTGGCCGAGCACCTGAGCAGCACCGGCGAACTTCAACGCCTGGACATGGAACGCCATGGCGCGATCCGCGTCGGCACCGCCCCGGAACTGGCGATGCTGGGCCGGCTGTTCGCGGTCATGGGCATGCAGCCGGTGGGTTACTACGACCTGACGCCGGCTGGGGTGCCAGTGCACTCAACGGCCTTCCGCGCCGTTCATGAAAAGTCGCTGCAAATAAGCCCGTTCCGAGTATTTACGTCGCTGTTGCGCCTGGAATTGATCGAAAACAGCGAACTGCGGACCTTTGCCGAGTCGGTGCTGGCCAGACGGAAAATCTTCACCCCGGGCGCCCTTGAACTGATCGATCTGGCCGAACGCCAGGGCGGCCTGACGCAACCCCAGGCTGACGATTTTGTCCTGCAAGCGCTGGAGACTTTTCGCTGGCACCACAGCGCCACCGTTACCGCCGATCAATACCGACAACTCAGCGCCCAGCATCGCCTGATCGCCGATGTCGTGGCGTTCAAGGGGCCGCACATCAACCACCTCACACCGCGGACTCTGGACATAGACGTCGTCCAGGCCCAGATGCCGCTGCATGGCATCACGCCCAAAGCGGTGGTCGAGGGGCCACCGCGTCGCCGGTGCCCGATCCTGCTGCGCCAGACCAGCTTCAAGGCGCTCGATGAACCCGTCGCGTTCACTGACCAACCCCAATCCCAGGGCAGCCACAGCGCCCGTTTCGGGGAAATCGAACAACGTGGCGCGGCTCTTACGCCAAAAGGACGGGCGCTCTACGACCAACTGTTGAATGCTGCGCGGGATGCCTTGGGCGGATTTCCCAATGAAGCCAATGCCGAACGCTACAACGCGCTGATGGCCGAACACTTTGCTCAGTTTCCCGATGATCACCAATCATTGCGCCGACAGGCGCTGGCTTACTTCCGCTATTTCGTGACGCCGGCGGGGCTTGCCGCCAAAGGCGCGATGGAACCGAATGTCTCGCTGGAACGCCTGTTGGAACAGGGCTATCTGCGCGCCGAACCGCTGGTCTACGAAGATTTCCTGCCGGTCAGCGCCGCCGGGATATTCCAGTCGAACCTTGGCGACGCCGCCCAGAGTCACTACGCAGGGCAATCCAATCGACAAGCGTTCGAAACTGCACTGGGACGGCCGGCCATCGATGAGTTGGGGTTGTACGCCGAGATACAAAAGCGCTCCCTCGAGGAATGCCTGTTGGCGTTGGGCGCTCAGCAAGCGAGCCACGAATAA	MSFVSPDLIRQRFSKAMSDMYRDEVPLYGALMNLVEQTNAQALANDPSLAEHLSSTGELQRLDMERHGAIRVGTAPELAMLGRLFAVMGMQPVGYYDLTPAGVPVHSTAFRAVHEKSLQISPFRVFTSLLRLELIENSELRTFAESVLARRKIFTPGALELIDLAERQGGLTQPQADDFVLQALETFRWHHSATVTADQYRQLSAQHRLIADVVAFKGPHINHLTPRTLDIDVVQAQMPLHGITPKAVVEGPPRRRCPILLRQTSFKALDEPVAFTDQPQSQGSHSARFGEIEQRGAALTPKGRALYDQLLNAARDALGGFPNEANAERYNALMAEHFAQFPDDHQSLRRQALAYFRYFVTPAGLAAKGAMEPNVSLERLLEQGYLRAEPLVYEDFLPVSAAGIFQSNLGDAAQSHYAGQSNRQAFETALGRPAIDELGLYAEIQKRSLEECLLALGAQQASHE				NA	NA	NA	NA	NA
D1-36_01841	930	lip1		Lipase 1	ATGCTGGTGTTGTGGGTGGTCCTCGCCGTGTTCATCGTCTGGAGCTGGCTGACGTATCCAGGCATCGGACATGTGTTGTACGACCTGGGTATGGCCTTGGAAGCGCGCCTTTATCGGCTGCACAAAATCACCGTGCCCATCAGCGAAATGACCGTGTCGACCTGGCAAGGCGGGCCTTACGAAGCCTCCGGCAGCATCCTGATGTTGCATGGCTATAGCGCCGACAAGAACCTGTGGCTGCGCTTCGCCCGGCACTTCGTCAACCAGTACCGGGTGGTCATACCCGACTTGGCCGGCCATGGCGAAACCGGCTTCAAGGCCGGCGGCGGCTACGACATCCCGACCCAGGCCCGGCGAGTCATCGAACTGCTCGATGCCTGCGGCCTGGACAAGGTCCACGTCATCGGCAACTCCATGGGCGGCCACCTTGCGGCGTGGCTGGCGGCGACTTCGCCTGAACGAGTGCTGACCCTCGCGCTGATCGACCCGGCCGGCGTCACTGCTCCCGAGCCCAGCGACATGGAGCGTCACCTGGCCGCCGGCCACAACCCGTTTCTGGTCCACTCCCGGGATGATTTTGCGCCCTTCTACGCCATGACCATGGCATCCCCGCCGTGGCTGCCCAGCGTTGTACTCGCGGCGTTGGCCCAGCGTTACGAGCAGCGCCGGGAGGAATTGGCGGAAATTTTCGTCGACTTGCGCGCCAGCCCGGCGATGGAGCCTCGCCTGGACGATATCCGCGCACCGTCATTACTGCTTTGGGGACGCAAGGACCGGCTGATCGACGTCAGCAGTGTGCCGGTGTGGAGCAAGGGCATCGCCGACCTGCGAGTGGAAATCTGGGAAGGCGTAGGGCACATGCCCATGGTTGAAAAACCCGGCAAGACCGCGGCGCTGTATCGGGACTTTCTTGAGGGATTAGGGCAGTGA	MLVLWVVLAVFIVWSWLTYPGIGHVLYDLGMALEARLYRLHKITVPISEMTVSTWQGGPYEASGSILMLHGYSADKNLWLRFARHFVNQYRVVIPDLAGHGETGFKAGGGYDIPTQARRVIELLDACGLDKVHVIGNSMGGHLAAWLAATSPERVLTLALIDPAGVTAPEPSDMERHLAAGHNPFLVHSRDDFAPFYAMTMASPPWLPSVVLAALAQRYEQRREELAEIFVDLRASPAMEPRLDDIRAPSLLLWGRKDRLIDVSSVPVWSKGIADLRVEIWEGVGHMPMVEKPGKTAALYRDFLEGLGQ				NA	NA	NA	NA	NA
D1-36_01842	1335			hypothetical protein	ATGCGGCTGTGCGTTGTGTTTTTCCTGGGCCTCTGGCTGCCGTGCGTGGCATGGGCCGGCCGTTTGCCCATTCCTGAACACGGCCCCGCCCTGCGCCTGCAGGGCTCCAACACCATTGGCGCGGCGTTGGGGCCGGCCCTGGTCCGAGGCCTGATGGAAGACCAGGGATTGCTCAAGGTCAGCACTGAAATTACCGGCCGCGACAACGAGCAACGCATCGTCGGACAAACCGCCGAAGGCCAGCGAGTCTCAGTCGAGATCGCCGCCCACGGCTCCAGCACCGGATTCACCGCCCTCAAGCAAGCCAACGCCGACCTGGCCGCCTCTTCCCGGCCGGTCAAGGACAGCGAACTGCACGACCTGGCGGCCCTTGGAGACCTGAAAAGTCCTACCGCCGAGCAAGTCATCGCCATCGACGGCCTGGCGATCATTCTTCATCCACAAAACCCGTTGCGACAGCTCGACACCCGGCAACTGGCGCGCATTTTCAGTGGCGAGGCGAAAACCTGGGAAGCCGTGGGCAGTGTCGGCGGGGCAATCCACCTGTATGCGCGGGACGAGCAGTCCGGGACCTACGATACCTTCAAGGAACTGGTACTCAACCGACAAGGGAAAAAGCTGGATCCTACAGCTCGGCGCTTCGAATCCAGTGAGCAGTTGTCGGACGCTGTCAGCCAGGACCCGCAGGGTATCGGTTTTATCGGCTTGCCCTACGTAAGGCAGGCCAAGCCCCTGGCAATTGTCGACGGCGATTCCCAGCCGATGTTGCCGCTGAACAACCTGATTGCCACCGAGGACTATCCCCTGTCCCGACGATTGTTCTTTTACCTACCCCCTCTGCAAAGCAATCCCTGGGCCGAGGCTCTGGTCGATTTCACCCAAAGCGAACAGGGCCAGGCCATCGTTGCAGCGAACGGGTTCATTGCACAGACCGTACAAGCGATGTCCGTCACCCCCAACGCGCTGATGCCAGAGGGTTATCAGGCCCTGAGCCGCCATGCCCAGCGCTTGACGGTGAATTTTCGTTTCGAAGAAGGCAGTGCCAGCCTGGACAACAAGGCCCAACAAGACCTGGGCCGCGTACTCGATTACATCAAGCAGCACGGCAAGGCCGACCGGCGCGTGACCCTGGTAGGTTTCGGCGATCTCAAGGACGACCCGGCGCGAGCCGACCTGCTGTCAAGGCTTCGGGCCATGGCGGTGCGGCGCGAACTGGTCAAATACGGCGTGACCTTGCGCGAGGTACGCGGATTCGGCGCGTTGATGCCGGTGGCGGCCAACAGCGAAGACGAAGGAAGGGTCCGGAATCGGCGGGTGGAGGTTTGGGTATATTAA	MRLCVVFFLGLWLPCVAWAGRLPIPEHGPALRLQGSNTIGAALGPALVRGLMEDQGLLKVSTEITGRDNEQRIVGQTAEGQRVSVEIAAHGSSTGFTALKQANADLAASSRPVKDSELHDLAALGDLKSPTAEQVIAIDGLAIILHPQNPLRQLDTRQLARIFSGEAKTWEAVGSVGGAIHLYARDEQSGTYDTFKELVLNRQGKKLDPTARRFESSEQLSDAVSQDPQGIGFIGLPYVRQAKPLAIVDGDSQPMLPLNNLIATEDYPLSRRLFFYLPPLQSNPWAEALVDFTQSEQGQAIVAANGFIAQTVQAMSVTPNALMPEGYQALSRHAQRLTVNFRFEEGSASLDNKAQQDLGRVLDYIKQHGKADRRVTLVGFGDLKDDPARADLLSRLRAMAVRRELVKYGVTLREVRGFGALMPVAANSEDEGRVRNRRVEVWVY	PGPT0002625_454	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
D1-36_01843	813	xthA_1	COG0708	Exodeoxyribonuclease III	ATGAAGATCGTCTCCTTCAACATCAACGGCCTGCGAGCCCGTCCCCATCAGTTGGCGGCACTGATCGACAAGCACCAGCCGGACGTGATCGGGTTGCAGGAAACCAAGGTCCACGATGAACAGTTCCCACTGGCCGAGGTGCAAGCCCTCGGTTATCACGTGCACTACCACGGGCAAAAAGGCCATTACGGTGTCGCCCTGCTCTCTCGCCAGCCTCCGCTGAGCTTGCACAAAGGCTTCGAGACCGACGACGAAGACGCCCAGCGGCGCTTCATCTGGGGCACGTTTGCCGATGCCAACGGTGTGCCGGTGACCATCATGAACGGCTATTTCCCACAAGGTGAAAGCCGCGATCACCCCACCAAGTTCCCAGCCAAGGAGCGCTTCTACAGCGACTTGCAACAACTGCTGGAAGCCCGCTTCAGCAACGACCAACCGGTCGTGGTGATGGGCGACGTGAACATTTCCCCCGAGGATTGCGACATCGGCATCGGCCCGGACAACATGAAGCGCTGGTTGAAGACCGGCAAATGCAGCTTCCTGCCGGAAGAGCGCGAATGGATGGCTCGCCTGAAGAACTGGGGCCTGGTGGACAGCTTCCGCCACTTGAACCCGGACGTCACCGACCGCTTCAGTTGGTTTGACTATCGCAGCCGTGGTTTCGAAGACGAACCCAAGCGCGGCCTGCGCATCGACCTGATCCTGGCGTCCCAGGGCTTGCTGCCACGGGTCAAGGACGCCGGCGTGGACTATGAACTGCGGGGCATGGAAAAGCCGTCGGACCATGCGCCGATCTGGTTGGAATTGAACTGA	MKIVSFNINGLRARPHQLAALIDKHQPDVIGLQETKVHDEQFPLAEVQALGYHVHYHGQKGHYGVALLSRQPPLSLHKGFETDDEDAQRRFIWGTFADANGVPVTIMNGYFPQGESRDHPTKFPAKERFYSDLQQLLEARFSNDQPVVVMGDVNISPEDCDIGIGPDNMKRWLKTGKCSFLPEEREWMARLKNWGLVDSFRHLNPDVTDRFSWFDYRSRGFEDEPKRGLRIDLILASQGLLPRVKDAGVDYELRGMEKPSDHAPIWLELN				NA	NA	NA	NA	NA
D1-36_01844	645			hypothetical protein	ATGCCTGAAACCGCCACTGCTGATATCCACATGCTCGACAGCGGTTATTCCCGCGAAGCGCGTTCATTGCTGTATCAGGCTTATCGCCACGAGCCGACCTTCAGCTACCTGTTCGAGTCCGAGCGTCCCGGTTACGAGCAGCGGGTGCGGGCGACCGTGCGAGAGCTGGTCAAACAGCATTTCTTCCAGGATCTGCCGGCGATCGGTCTGTTGGTGGACGATCGCTTGATCGGCATCGCGCTGATTGCCCCACCGCAGCGCCGCCTGGGCATTACCGAAAGCTGGGCCTGGCGCCTGCGCATGGTCTTGAGCACCGGATTTCGCTGTACCCGGCGGTACTTGGAGTACCACGCCGCGGTGCTGGCCTGCCTGCCGTCGGAGGCGGTGCACGTATTGCCGTTGTTGGGGGTTCATCCGCAATTCCAGGGCAAACACTACGGTGAGCAGTTACTCGAAGCAGTGCATAACTGGTGCGCCGTGGACGAGCATTCCCAAGGCGTGGTGCTGGACACGGGAAATTCCCGTTACCTCGAATTTTATAAACGCCAGGGTTACGAGGAAATTGGCGAAGTCGCCGTAGGACCGATCCGCGAGCATGTGTTCTTTCATGCGAACCCGCAGGTTCTGCGGAGCGCGACGGCTTAA	MPETATADIHMLDSGYSREARSLLYQAYRHEPTFSYLFESERPGYEQRVRATVRELVKQHFFQDLPAIGLLVDDRLIGIALIAPPQRRLGITESWAWRLRMVLSTGFRCTRRYLEYHAAVLACLPSEAVHVLPLLGVHPQFQGKHYGEQLLEAVHNWCAVDEHSQGVVLDTGNSRYLEFYKRQGYEEIGEVAVGPIREHVFFHANPQVLRSATA				NA	NA	NA	NA	NA
D1-36_01845	1728	tamA	COG0729	Translocation and assembly module subunit TamA	ATGAACTTCCCAGGACGAATGACCGGTGGCGCGCTCTTGCTGTCTCTCAGCTGCGTGGCGCTGGCACAAAGTGAATTGGATGTGCGGGTCAAACCGTCCAATGATGAACTCAAGGCCAACATAGAAGGCTACATCGGTGGTGTGGGCGACCGTGATGAAGAAGCGTTGCTGCGCTTCAGTCGCGGCGCCGAAGAGCAGGCGCGCAAAGCGGCCCAGGCGCTGGGCTACTACCAGCCGCAGATCGACAGCGAGGTCAAGGCGGGGAAGGCGCCGCGCCTGATCCTGACCATCGACCCCGGCGAGCCGGTGCACTTGCGTCATGTCACGATCCGCATCGACGGCCCAGCGTCATCGCTCGAGGGGTTTCGCGTGCCCGGCGGCGCGGGCCTCAAGCCAGGCGCTGTGCTCAATCACGGTCGATATGAAGACGCCAAGCGGACGATCCAGAACCAGGCCTCGCGCTATGGTTTTTTCAGCGGACGCTTCGTCAGCCAGACGTTGCGCGTGGATCCGCAGGCCGGTATCGCCGATATCGAGCTGATCTACGACAGCGGCCAGCGCTACGCCCTGGGGCCGGTCAGTTTCGAAGGCGACACGCCCTTCGACGAAGACCTGCTGCAACGCATGGTGCCGTTCAAGGCGGGCGCGCCCTACGACTCCGAGCTCATTGCCGAACTCAACCAGGCTTTGCAATCGAGCGGCTATTTCGAAGGTGTTCGCGTCGATGCAGCACCCACCGCGGCCACCGACAACGTGATCCCGGTAGCGGTCAAACTCGATACTCGCAAGCCGCGCACCATGGGCCTGGGCCTGGGTTTCTCCACTGACGTCGGGCCACGGGCCAAGGCCAACTGGACGCGTCACTGGGTCAACCCGCAGGGGCACAGCTACGGCTGGGAAGCGGAAGTCTCGGCGCCCCGGCAGAACGTCGGCCTCTGGTATGACGTGCCGCTGGACCCGCCGCTGACCGACAAGCTGCGCTACGCCGGCGGCTATCAATATGAAGAACTGGCCGGCACCGACACCCTCAGCAAACTGCTGACCGTCGGGCCGGAATGGCACAGCAAGTTGCCCAGCGGCTGGCAGCGGGTGGTGTCGCTCAAATGGCAGCGCGAGGAGTACCGTCTCGGTGACGATTCGGGCCTGAGCACGTTGCTGATGCCGGGTGTGAGCTATTCGTACCTGCGCAGCGATAACCGTATCGACCCGCACAATGGCTATCGGCTGCAATTTGACACCAAGGTCGCCAAGGAGGGGTTGGGGTCGGACAATAACCTTTTGTACGGCACCGCCATGGTCAAGGGCCTGACCACCGTGTTCGACAAGCATCGCCTGCTGGCGCGCGCCCAGATTGGCGGCAGCGCCACCAATGGCTACAAATCGATTCCGCCGTCCCTACGGTTCTTTGCCGGCGGCGACCAGAGCGTGCGCGGCTACGACTACCAGAGCCTGTCGCCGGAGAACTCCGAGGGCGACCGTATCGGCGGCCGCTACATGATGGCCGGCAGCCTCGAGTATCAGTATTCAGTCGCGGAAAAATGGCGGGTCGCAACCTTTGTTGATCAGGGCAACTCTTTCAACAGTCTCGAGCTGCCGAGCCTGAAGACCGGCGTCGGCGTCGGCGTGCGCTGGGTGTCGCCGGTCGGCCCGATCCGCCTCGACCTGGCCCACGCGCTGGACGACGACGGCGGCATTCGATTGCACTTTTCCATGGGGCCAGAGTTGTGA	MNFPGRMTGGALLLSLSCVALAQSELDVRVKPSNDELKANIEGYIGGVGDRDEEALLRFSRGAEEQARKAAQALGYYQPQIDSEVKAGKAPRLILTIDPGEPVHLRHVTIRIDGPASSLEGFRVPGGAGLKPGAVLNHGRYEDAKRTIQNQASRYGFFSGRFVSQTLRVDPQAGIADIELIYDSGQRYALGPVSFEGDTPFDEDLLQRMVPFKAGAPYDSELIAELNQALQSSGYFEGVRVDAAPTAATDNVIPVAVKLDTRKPRTMGLGLGFSTDVGPRAKANWTRHWVNPQGHSYGWEAEVSAPRQNVGLWYDVPLDPPLTDKLRYAGGYQYEELAGTDTLSKLLTVGPEWHSKLPSGWQRVVSLKWQREEYRLGDDSGLSTLLMPGVSYSYLRSDNRIDPHNGYRLQFDTKVAKEGLGSDNNLLYGTAMVKGLTTVFDKHRLLARAQIGGSATNGYKSIPPSLRFFAGGDQSVRGYDYQSLSPENSEGDRIGGRYMMAGSLEYQYSVAEKWRVATFVDQGNSFNSLELPSLKTGVGVGVRWVSPVGPIRLDLAHALDDDGGIRLHFSMGPEL				NA	NA	NA	NA	NA
D1-36_01846	3687	tamB	COG2911	Translocation and assembly module subunit TamB	GTGAATCGCGGTTTGAAGATAACGTTGCTGGCCCTCGGCGGGTTGCTGGCGACGCTCGTGCTCGTGTCGAGCATCGTGTTGGGCACGGCGTTCGGAAGCCGCTGGGCACTCGGCCTGGTGCCGGGCCTGACCGTGGAGAGTTTCCAGGGGCGGTTGGGCGGGCAATGGAGTGCCGACCGGGTGCTGTGGCAGCAGGACGCCAGCCGGGTGGAGCTTCATCAGCCGATCTTCGCCTGGTCGCCGTCGTGCCTGCTGCGCATGACCCTGTACATCGATCAGCTCAAGGCCGACAACGTTGCGGTGCAACTGCCGGCATCTGCCGACGAGCCGAGCAGCGGTCCGATCAGCCTGCCGGACCTGGACTTGCCCCTGGCGATCGAACTGGGCGACGTCCAGGTGGGCAGCCTGTCGTTCAACGGCAGCGAGCAACTCAAGGGCCTGCAACTGGCGGCGCACTGGACCGCCGAGGGTTTGCAGATCGACTCGGTGCAACTGCAACGCGACGAACTGAGCCTGAAACTCTCCGGCCTGTTGCAGCCGCATGGTGATTGGCCGCTGAGTGCCGCGGGCCAGCTGACGTTGCCGGCACCGGGTGCGACGCCTTGGGCGCTGGATCTGAAAGTCGATGGCGAGTTGCTCAAGACCCTAAATCTGGCCGCCGACAGCAGCGGCTATCTGCAAGGCCGCCTGACCGGCGAGCTGCAACCCCTGGCGGATAACCTGCCGGCCAAGGTGCGCATCACTGCCGATGGCTTCAAGGCCAGCGCCGATTTACCGGACACGCTGCTGCTCGACCAGGTGGAATTGACCGGCGAAGGCGACCTGAAAAAGGGTTACCAGTTGCATGGCAAGGCGAGCCTTCGCGCCGAAAAAAAACCGGTGGCGTTGCTGTTGCAGGGCAAGGTGGACGCCAACGGTGCGCAGATCGCCGGCCTTGATCTTGACGCCGGCGACCAGCAAAGCCTCAAGCTCACCGGGCGGTTGGATTGGCGCGAGGGCCTGAACGCCGAAGCGGAAGTGGCTTGGCTGGATTTCCCCTGGCATCGCCTCTATCCGCTGATCGAAGAACCGCAAGTCACGCTGCGCAGTTTCAATGGCGAGGTCTCGTACACCGATGGCCAATACCTCGGCAACTTCCAGGCGGCGTTGGACGGTCCGGCCGGGGCGTTCAGCGTCGACAGCCCGTTCAGCGGCGACCTGACGCAAATCCACCTGCCGCAGCTCAAGGTCGCCGCCGGGGAGGGCAAGGCCGAGGGGCACTTGAGCCTGCAATTTGCCGACGGCATCGCTTGGGATACGGCGCTGCAATTGTCGGCCATCAACCCGGCGTATTGGCTTGGCGAGCTTCCCGGCACGCTGGCCGGGCCGTTGCGCAGTAAAGGCGCGATGAAAAACGACCGCCTCGAACTCGACGCGGACCTGGACCTCAAGGGCAAGCTGCGCGGCCAACCGGCGCTGTTCCAGGCCAAGGCCAACGGTGCAGGCGAGCAATGGAACCTCGGCGCCCTGGACATTCGTCTGGGCGACAATCGCATCAACGGCACCGCAAGCCTGCAACAGAAGCTCAGCGGTCAGATCGACATCAAACTGTCACGGCTGGCCCAACTCTGGCCGCAATTGCGTGGCCAAGTCTCCGGACGCGTCGACCTGGCCGGAACGCTCAAGGCGCCCCTAGGCAAGCTCGGTGTGCAAGGCACGCAGTTGGCTTTTCAGGACAACCGCCTGCAAAGCCTGAACCTGGACGCGACGCTCGACAGTGCGCAGCGGGGCAAGGTCGACCTGAAGGCAAGCGGCATCCGGGCCGGCGAAACATCGCTGGGCGTGTTGACGGTCAGCGGACAGGGCGACATCAAGCAACAGAGGCTCAATCTCGACCTGCAAGGGCCTCAGTTGGAAACCAACTTGGCTCTTGATGGTTCGCTCGACCAAGGCAACTGGCGCGGACGCCTTGCCAAGGGAGATGTACAAGTCGGCGGGCAAACCTGGCGCTTGCAGGCGCCGGCCAAATTGGAGCGCCTGGCCAACGGCACGCTGAACTTCGGTGCTCACTGTTGGCGATCCGGCCCGGCCAGCCTCTGCGGCGAGGATCAGCGCCTGATGCCGGAGCCGAAGCTGCGTTATCACCTCAAGCAATTCCCCATCGAAAGCCTGGCCCAGTGGATGCCCAAGGACTTCGGCTGGCAGGGCCGGCTCAATGCCGACCTGCAATTGGACTTGCCGGCCAGCGGCCCAAACGGTCGAGTGTTGGTGGATGCCAGCGGCGGTACGTTACGGATTCGAGACGAAGAGCAGGGCAAGGGGCAATGGTTGGATTTCCCCTATCAGACCCTGACGCTCAACAGCCGCCTGACGCCCACGCGCATCGATACGGACGTCAATTTCGTCGGCGAGAGGCTGGGTGAACTGACGCTTCAGGCGCGAATCAATCCGTTGCCGGCCAGCAAACCGTTGAGCGGCACCTTCCGGCTGAGCGGTCTGGACCTGTCGGTAGCCCGGCCGTTCGTGCCGATGGTGGAAACCCTGACCGGTCGTTTGAACGGCAGCGGCACGCTGTCCGGTGGCTTGCTCGCGCCCCAGGTCAACGGCAACCTCGTGCTCAGTGACGGCGAAGTGTCCGGCCCGGAGCTGCCGGTCAGCCTCGAAGCCCTGCAAATGCGAGCGATGATCGCTGGCGAAACCGTACGGCTCGATGGTGATTGGAAAAGTGGCAAGAGCGGGCAAGGCCGACTGACGGGGAACATCAGCTGGGGCGAGGCCCTGACCCTGGACCTGGCGCTCAAGGGCTCGCAACTGCCGGTCGCCGTCGAGCCTTACGCGGTGCTGGATGTCGCGCCAGACCTGAACATCACGATGCAAGGGGAGCGGCTTTCGATTGCGGGCAAGGTCCTGGTGCCCAAGGGCGAGATCACCATACGCGAGCTGCCGCCGTCTACGGTCAAGGTTTCGGATGACACGGTGATCGTCGGCCACCAGACTGAAGAGGGCGAGGTGCCGATGGCCATGGCGATGGACATCGACGTGATCGTCGGCCAGGAAAAACTCGCCTTCTCAGGTTTCGGCCTGACGGCCAATGTGCAAGGGCAGGTCCACATCGGCGACAACATGGACACACGCGGCGAGCTGTGGCTCAACGACGGCAAATACCGAGCCTATGGGCAACGGCTGACGGTGCGTCGGGCGCGATTGTTGTTCGCCGGGCCGATTGACCAGCCGTACCTGGACATCGAGGCGATCCGCCAGACCGACGATGTGATCGCCGGCATCCGCCTGAGCGGCAGCGCCGAACAGCCAGCCACGCAGATTTTCTCGGAGCCGGCCATGAGCCAGGAGCAGGCGTTGTCCTACCTGGTGCTGGGCCGGCCGTTGAGCACCACGGGGGAGGACAACAACATGCTCGCCCAGGCAGCGCTGGGCCTGGGCTTGATGGGCAGCTCCGGAGTGACCACCAGCCTGGCCAACAATCTGGGGATCGAAGATTTCCAGCTCGACACCCAAGGCAGTGGCAACGACACCAGCGTGGTCGCCAGCGGCAACCTGTCGGAAAAACTCAGCCTGCGCTATGGCGTGGGTGTGTTCGAACCGGCCAATACCATCGCGTTGCGCTACAAGCTGAGCAAAAAGGTCTACCTCGAAGCCGCGAGCGGCGTCGCCAGTTCGCTGGATATCTTTTACAAGCGCGATTTCTGA	MNRGLKITLLALGGLLATLVLVSSIVLGTAFGSRWALGLVPGLTVESFQGRLGGQWSADRVLWQQDASRVELHQPIFAWSPSCLLRMTLYIDQLKADNVAVQLPASADEPSSGPISLPDLDLPLAIELGDVQVGSLSFNGSEQLKGLQLAAHWTAEGLQIDSVQLQRDELSLKLSGLLQPHGDWPLSAAGQLTLPAPGATPWALDLKVDGELLKTLNLAADSSGYLQGRLTGELQPLADNLPAKVRITADGFKASADLPDTLLLDQVELTGEGDLKKGYQLHGKASLRAEKKPVALLLQGKVDANGAQIAGLDLDAGDQQSLKLTGRLDWREGLNAEAEVAWLDFPWHRLYPLIEEPQVTLRSFNGEVSYTDGQYLGNFQAALDGPAGAFSVDSPFSGDLTQIHLPQLKVAAGEGKAEGHLSLQFADGIAWDTALQLSAINPAYWLGELPGTLAGPLRSKGAMKNDRLELDADLDLKGKLRGQPALFQAKANGAGEQWNLGALDIRLGDNRINGTASLQQKLSGQIDIKLSRLAQLWPQLRGQVSGRVDLAGTLKAPLGKLGVQGTQLAFQDNRLQSLNLDATLDSAQRGKVDLKASGIRAGETSLGVLTVSGQGDIKQQRLNLDLQGPQLETNLALDGSLDQGNWRGRLAKGDVQVGGQTWRLQAPAKLERLANGTLNFGAHCWRSGPASLCGEDQRLMPEPKLRYHLKQFPIESLAQWMPKDFGWQGRLNADLQLDLPASGPNGRVLVDASGGTLRIRDEEQGKGQWLDFPYQTLTLNSRLTPTRIDTDVNFVGERLGELTLQARINPLPASKPLSGTFRLSGLDLSVARPFVPMVETLTGRLNGSGTLSGGLLAPQVNGNLVLSDGEVSGPELPVSLEALQMRAMIAGETVRLDGDWKSGKSGQGRLTGNISWGEALTLDLALKGSQLPVAVEPYAVLDVAPDLNITMQGERLSIAGKVLVPKGEITIRELPPSTVKVSDDTVIVGHQTEEGEVPMAMAMDIDVIVGQEKLAFSGFGLTANVQGQVHIGDNMDTRGELWLNDGKYRAYGQRLTVRRARLLFAGPIDQPYLDIEAIRQTDDVIAGIRLSGSAEQPATQIFSEPAMSQEQALSYLVLGRPLSTTGEDNNMLAQAALGLGLMGSSGVTTSLANNLGIEDFQLDTQGSGNDTSVVASGNLSEKLSLRYGVGVFEPANTIALRYKLSKKVYLEAASGVASSLDIFYKRDF				NA	NA	NA	NA	NA
D1-36_01847	474	marR	COG1846	Multiple antibiotic resistance protein MarR	ATGAAGCATTTCACCCCAGACGAATTCCACAATTGCCATCTCGGCATGCTGCTCGGCCGTGCCGCGATGCTCAAGGATCGGATCATCGACACGCACATGGAGCCCGTCGGCATCACTGCCGCGCAGTTCAAGGTGCTGATCATCATGGCCCAGCACGGCATCGACACGCCGGTGGAGCTGTGTCGTTACCTGTCGCTGGACAGCGGCTCGATGACACGAATGCTCGACCGCCTGGAGCAGAAGGGCTTTCTGGTTCGCCAACGCTCGGCCCAGGACCGACGGCAGGTCCGCCTGGTGTTGACCGAGGCCGGCCAAGCGCTGGCTGACCGCCTGCCATTCATCGGGGCCGACGCCATGAATCAACTGGCCGGTGCCATCAGCCGCGAGGAGCTGCAAACCCTCGAGAACATCCTCAAGAAAATACTGCTCGCCGCCGGTGATCCCTTCACCGTCCTGCGATTGGGGGAAAAATGA	MKHFTPDEFHNCHLGMLLGRAAMLKDRIIDTHMEPVGITAAQFKVLIIMAQHGIDTPVELCRYLSLDSGSMTRMLDRLEQKGFLVRQRSAQDRRQVRLVLTEAGQALADRLPFIGADAMNQLAGAISREELQTLENILKKILLAAGDPFTVLRLGEK	PGPT0029244_33	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIPLE_ANTIBIOTIC_RESISTANCE,PGPT0029244-marR-K03712	NA	NA
D1-36_01848	1470	ttgF_2		Toluene efflux pump outer membrane protein TtgF	ATGAAGCGTCAAACCTTGCGTACCGGCCTGAGCCTGGTGCTATTGGCCATGAGCCTGGCCGGTTGTGCCAGCTACAGTGGCCTGAATACCGAAGGTGTCAGCCTCGAGGCCAAAAGCCTCCAGGCAGGACAATCGCTGACTGGCGTCACGTTGTCGCCGGCCTCGTGGCCCAAAAGCGATTGGTGGAAGAGCCTCGGCGATCCGCAACTCGATAGCCTGATCCGCGAAGCGCTGCGTGACAGCCCTGACATGCAGATCGCCAGCGCCCGTGTTCACCAGGCCAGCGCCGCTGCTTACGCCGCCAATGCCGCGCGTCTGCCGTCCCTGGACGCCAGCGGCAGCGTGAGCCGTTCGCGCCTGGCTCGCGACCAGGACCCGCAAGGGCAGGGCGGCGCCTACAGCACCTTGCGTTCGCTGAGCGTGGATTTCAACTACGACTTCGATTTGTGGGGTGGCCAGCGCGCTGCCTGGGAAGCTGCCCTCGGCCAGGCCCGCGCCGCCGAGATTGACCGCCAGGCCGCACAGCTGACCCTGGCCGCTGACGTGGCCCGGGCCTACAGCGACTTGGGCCAGGCCCATATCATTTATGACCTGGCCAACGAAGATCTCAAGCGCACGCGTCAAATGCTCGACCTGGGCAAGCGCCGACTCAGCGCCGGAATCGACAGCGAATATCAGTTCCAACAGACCGAAAGCCTGGAGGCCAGCGCCGATGCCACATTGATCGACGCGGAGAAGCGTTTGCAAAGCGCCAAGATCGCCTTGGCGGTGCTGCTGGGCAAAGGGCCGGATCGTGGCAACGAAATCGCCCGGCCCCACGTGTTGCAGGCCAGCGCGGTCGCCTTGCCGTCGAACCTGCCGGCCGAGTTGCTGGGCCGTCGTCCGGACCTGGTCGCCGCGCGGTGGCGGGTGGAGGCGGCTAGCAAGAACATTGAGGCCGGCAAGACGAACTTCTACCCCAACCTCAACCTGAGCGCGGCGGCCGGGGTGCAATCGTTGCTGGGTGACGCGATGTTTGGTTCAGCGAGTCGCTTCTTCAACGTGGCGCCGACGGTGTCGCTGCCGATTTTCGACGGTGGACGTTTGCGGGCGGACCTGGACGCCCGGGACGCCGACTACGACCTGGCGGTGGCGCAATACAACAAGAGCCTGGTCGCGGCACTTGGCGATGTCAGCGACACCATCAATCAGTTGCGTGACATCGGCCGGCAGATCGGCACCCAGCAGCACGCCGTGGATATCGCACAGAACTCCTATGACACCGTGGTCCAGCGCTACGGCTCGGGCATCGGCAATTACCTGGACGTGTTGAGCATCGAGCAGCAGTTACTCCAGGCCCAGCGCCAACTGGCAACGCTCAATGCCGAGCAGATTGATTTGTCGATCCAACTGATGCAGGCCCTGGGCGGCGGCTTCGACACCCAAACCGTGGCTTCGGCCGCACCGGCCGCCACCGCGCCGGCTCACTGA	MKRQTLRTGLSLVLLAMSLAGCASYSGLNTEGVSLEAKSLQAGQSLTGVTLSPASWPKSDWWKSLGDPQLDSLIREALRDSPDMQIASARVHQASAAAYAANAARLPSLDASGSVSRSRLARDQDPQGQGGAYSTLRSLSVDFNYDFDLWGGQRAAWEAALGQARAAEIDRQAAQLTLAADVARAYSDLGQAHIIYDLANEDLKRTRQMLDLGKRRLSAGIDSEYQFQQTESLEASADATLIDAEKRLQSAKIALAVLLGKGPDRGNEIARPHVLQASAVALPSNLPAELLGRRPDLVAARWRVEAASKNIEAGKTNFYPNLNLSAAAGVQSLLGDAMFGSASRFFNVAPTVSLPIFDGGRLRADLDARDADYDLAVAQYNKSLVAALGDVSDTINQLRDIGRQIGTQQHAVDIAQNSYDTVVQRYGSGIGNYLDVLSIEQQLLQAQRQLATLNAEQIDLSIQLMQALGGGFDTQTVASAAPAATAPAH				NA	NA	NA	NA	NA
D1-36_01849	1197	emrA_1	COG1566	Multidrug export protein EmrA	ATGGCAACTGCCGAAACAACGCAACAAACGTCACAGGACACCGGCAACCCACGCAAACGCAAGGTCATGCTGCTCGCCCTGGCCGTGATCGTCATTCTCGGTGGCCTGGGCGTCTGGGCCTGGCACGAACTGTATGGGCGCTGGAGCGAAAGCACCGACGATGCCTACGTCAACGGCAACGTCGTGGAAATCACCCCGCAGGTCACCGGGACCGTGATAAGCATCGGCGCCGATGACGGCGACCTGGTGCGCGAAGGCCAGGTGCTGGTGCAGTTCGACCCGAACGATGCCGAAGTTGCGCTGCAAAGTGCCCAGGCCAACCTGGCCCGTACCGTGCGCCAGGTGCGCGGCTTGTACAGCAATGTCGATGGCATGAAGGCGCAAGTCCATGCGCAAGAAGCCGAAGTGCAGAAGGCCCAGGAGAACTACAACCGACGCAAGAACCTGGCGGCGGGCGGGGCGATTTCCCAGGAAGAACTGTCCCATGCCCGGGATGACCTGACCTCGGCGCAGAACGCCCTGGCCAATGCCCGGCAGCAGCTCAAGACCACCAGCGCCTTGGTGGATGACACCGTGGTGTCGTCCCATCCCGACGTGCAAGCGGCCGCCGCGCAACTGCGCCAGGCGTACTTGACCAATGCTCGCAGCACCTTGATCGCGCCAGTGACCGGTTACGTCGCCAAACGCACCGTTCAGCTCGGCCAACGGGTGCAACCGGGCACCGCGTTGATGGCCGTGATCCCGCTGGACCAGTTGTGGATCGACGCCAACTTCAAGGAAACCCAACTGCGCGACATGCGCATCGGCCAACCGGTGGACATCGAGACCGATCTGTATGGCAGCGATGTGAAGTACAGCGGCACGGTCGACAGCCTGGGCGCCGGGACCGGCAGCGCATTCGCCTTGCTGCCGGCACAGAACGCCACCGGCAACTGGATCAAGATCGTCCAGCGGGTGCCGGTGCGCATTCATATCAATGCCCAAGAGTTGGCCAAGCATCCGCTGCGGGTGGGGCTGTCGACCCAGGTCGACGTCAACCTGCATGACCAGAGCGGGCCGGTTCTGGCCCAGCAGCCACCGCAAAAAGCCACGTTCAGCACCCAGGTCTACGACCGCCAGCTGGCCGACGCCGACGCGATGATCACGCGCCTGATTCATGAAAACAGCGCGGCGGCGGGCAAGACCGCGCAGCGCTGA	MATAETTQQTSQDTGNPRKRKVMLLALAVIVILGGLGVWAWHELYGRWSESTDDAYVNGNVVEITPQVTGTVISIGADDGDLVREGQVLVQFDPNDAEVALQSAQANLARTVRQVRGLYSNVDGMKAQVHAQEAEVQKAQENYNRRKNLAAGGAISQEELSHARDDLTSAQNALANARQQLKTTSALVDDTVVSSHPDVQAAAAQLRQAYLTNARSTLIAPVTGYVAKRTVQLGQRVQPGTALMAVIPLDQLWIDANFKETQLRDMRIGQPVDIETDLYGSDVKYSGTVDSLGAGTGSAFALLPAQNATGNWIKIVQRVPVRIHINAQELAKHPLRVGLSTQVDVNLHDQSGPVLAQQPPQKATFSTQVYDRQLADADAMITRLIHENSAAAGKTAQR	PGPT0013750_863	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0013750-emrB-K03543	NA	NA
D1-36_01850	1530	emrB		Multidrug export protein EmrB	ATGAGCAATAACGCGTCCTTCACGCCGCCCAGCCTGTTGCTCAGCACCATCGGGTTGTCGCTGGCGACGTTCATGCAGGTGCTCGACACCACCATCGCCAACGTCGCCTTGCCGACCATTTCCGGCAACCTGGGCGTGAGCTCGGAGCAGGGCACTTGGGTGATCACTTCGTTCGCGGTGAGCAACGCCATCGCGCTGCCATTGACCGGCTGGTTGAGCCGGCGGTTTGGCGAGGTGAAGCTGTTTCTGTGGGCAACGATGTTGTTCGTCCTGGCCTCGTTCCTGTGCGGAATCTCGACATCGATGCCCGAGCTGATCGGCTTTCGTGTGCTTCAAGGGCTGGTGGCCGGGCCGTTGTATCCGATGACCCAGACCTTGCTGATCGCCGTGTACCCACCGGCCAGGCGTGGCATGGCCCTGGCGTTGCTGGCGATGGTCACGGTGGTGGCGCCGATCGCCGGGCCGATCCTCGGCGGCTGGATCACCGACAGCTATAGCTGGCCTTGGATTTTCTTCATCAACGTGCCCATCGGCATCTTCGCGGTGATGGTCGTGCGCCAGCAGCTCAAGGCGCGGCCGGTGGTCACCAGCCGCCAGCCGATGGACTATGTCGGCTTGATCACGTTGATCATTGGTGTCGGCGCGTTGCAGGTGATTCTCGACAAGGGCAATGACCTGGATTGGTTCGAGTCGAACTTCATCATCATTGGCGCACTGATTTCGGTGATCGCCCTCGCGGTGTTCGTGATCTGGGAAATGACTGACGGCCACCCGGTGGTCAACCTGCGGCTGTTCGCCTATCGCAACTTTCGCATCGGCACCATTGTGCTGGTGGGCGGTTACGCCGGTTTCTTCGGCATCAACCTGATCCTGCCGCAATGGCTGCAGACCCAGATGGGCTATACGGCCACATGGGCCGGCCTGGCTGTAGCGCCGATCGGTATCCTGCCGGTGTTGATGTCGCCCTTCGTCGGCAAATACGCCCACAAGTTCGACCTGCGCCTGTTGGCCGGGCTGGCCTTCCTGGCGATTGGCCTGAGTTGCTTCATGCGCGCCGGGTTCACCAACGAAGTGGATTTCCAGCACATCGCCCTGGTGCAGTTGTTCATGGGCATCGGCGTAGCGCTGTTTTTCATGCCGACCTTGAGCATCCTCATGTCCGACCTGCCGCCTCACCAGATCGCCGATGGCGCGGGGCTGGCGACGTTTCTGCGGACCCTGGGCGGCAGCTTCGCCGCATCCTTGACCACATGGATCTGGATCCGTCGGGCCGACCAACACCACGCGTACCTGAGCGAAAGCATCAGCACCTTCGAGCCGGCCACGCGCGAGACGATCAACCAGCTCGGCGGGGCGAGCACGCCGGTCTATGCCCAGCTCGACCAGATCCTCACCAGCCAGGCGTACATGCTCTCCACCGTGGATTACTTCACGTTGCTGGGCTGGGCATTCATGGGGTTGATCCTGTTGGTGTGGCTGGCGAAACCGCCGTTCACGGCGAAGGCGGGGCCTGCCGCCAGCGGTCATTGA	MSNNASFTPPSLLLSTIGLSLATFMQVLDTTIANVALPTISGNLGVSSEQGTWVITSFAVSNAIALPLTGWLSRRFGEVKLFLWATMLFVLASFLCGISTSMPELIGFRVLQGLVAGPLYPMTQTLLIAVYPPARRGMALALLAMVTVVAPIAGPILGGWITDSYSWPWIFFINVPIGIFAVMVVRQQLKARPVVTSRQPMDYVGLITLIIGVGALQVILDKGNDLDWFESNFIIIGALISVIALAVFVIWEMTDGHPVVNLRLFAYRNFRIGTIVLVGGYAGFFGINLILPQWLQTQMGYTATWAGLAVAPIGILPVLMSPFVGKYAHKFDLRLLAGLAFLAIGLSCFMRAGFTNEVDFQHIALVQLFMGIGVALFFMPTLSILMSDLPPHQIADGAGLATFLRTLGGSFAASLTTWIWIRRADQHHAYLSESISTFEPATRETINQLGGASTPVYAQLDQILTSQAYMLSTVDYFTLLGWAFMGLILLVWLAKPPFTAKAGPAASGH	PGPT0029220_3488	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029220-emrB-K03446	NA	NA
D1-36_01851	768	lpxH_1	COG2908	UDP-2,3-diacylglucosamine hydrolase	GTGATATTGCTGATTTCAGACTTGCATCTGGAAGAGGAGCGCCCGGACATCACCCGGGCGTTTCTGGATCTGCTCGCCACACGCGCCCGTGCGGCGCAAGCGTTGTACATCCTGGGCGACTTCTTCGAAGCCTGGATCGGCGACGATGCCATGACGCCGTTCCAGCGTTCCATCTGCCAGGCCCTGCGCGAATTGAGCGACAGCGGCACGGCCATTTTCCTCATGCACGGCAATCGCGACTTCATGCTCGGGCAGGCGTTCTGCAAAGCGGCTGGCTGCACCTTGCTCAAGGATCCGAGCGTCGTGCAGTTCAACGGTGAACCTGTATTGCTGATGCACGGCGACAGCCTCTGCACGCGGGATATCGGCTACATGAAGCTGCGCCGTTGGCTGCGCAACCCGGTCACGCTGTTCATCCTGCGCCACCTGCCACTGGGCAGCCGCCAGAAACTGGCGCGCAAACTACGCAGCGAAAGCCGCACGCAGACGCGGATGAAAGCCAACGACATCGTCGACGTCACGCCCGAAGAGATTCCGCTGATCATGCAGCAGTACGGCGTGAAGACCCTGGTCCACGGCCACACCCACCGCCCCGCCATCCATAAGCTGCAACTGGGCGAACACGCAGCGAGACGCATCGTGCTGGGGGATTGGGACAAGCAAGGGTGGGCGTTGCAGGTAGATGAACAAGGGTTTGCGTTGGCGCCGTTCGGGTTTGCCCCGCCGCCACAACTGCCGGCACCCGACGCAATCCCCAGCCACACATAA	MILLISDLHLEEERPDITRAFLDLLATRARAAQALYILGDFFEAWIGDDAMTPFQRSICQALRELSDSGTAIFLMHGNRDFMLGQAFCKAAGCTLLKDPSVVQFNGEPVLLMHGDSLCTRDIGYMKLRRWLRNPVTLFILRHLPLGSRQKLARKLRSESRTQTRMKANDIVDVTPEEIPLIMQQYGVKTLVHGHTHRPAIHKLQLGEHAARRIVLGDWDKQGWALQVDEQGFALAPFGFAPPPQLPAPDAIPSHT	PGPT0022370_462	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LIPID_A_METABOLISM,PGPT0022370-lpxH-K03269	NA	NA
D1-36_01852	504			Peptidyl-prolyl cis-trans isomerase cyp18	ATGACCCAAGTCAAACTGACCACCAACCATGGCGACATCGTCCTGGAACTGAACGCCGAAAAGGCACCGATCACCGTTGCCAACTTCGTTGAATACGTCAAGGCCGGCCACTACGAAAACACCGTTTTCCACCGTGTCATCGGCAACTTCATGATCCAGGGCGGTGGTTTCGAACCGGGCATGAAGGAAAAGAAAGACAAGCGCCCAAGCATCCAGAACGAAGCCGACAACGGTCTTTCCAACGACAAATACACCGTCGCCATGGCCCGCACCATGGAGCCGCATTCGGCCTCCGCGCAGTTCTTCATCAACGTGGCCGACAACAGTTTCCTGAACCACAGCGGCAAGAACGTCCAGGGCTGGGGCTATGCGGTATTCGGTAAAGTCACCGCCGGCACCGATGTGGTCGACAAGATCAAAGGCGTGTCCACCACCTCCAAGGCCGGCCATCAGGACGTCCCGGCAGAAGACGTGATCATCGAGAAAGCCGAGATCATTGAGTGA	MTQVKLTTNHGDIVLELNAEKAPITVANFVEYVKAGHYENTVFHRVIGNFMIQGGGFEPGMKEKKDKRPSIQNEADNGLSNDKYTVAMARTMEPHSASAQFFINVADNSFLNHSGKNVQGWGYAVFGKVTAGTDVVDKIKGVSTTSKAGHQDVPAEDVIIEKAEIIE	PGPT0015111_3389	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
D1-36_01853	1698	glnS	COG0008	Glutamine--tRNA ligase	ATGAGCAAGCCCACTGTCGACCCTACCTCGAATTCCAAGACCGGCCCGGCCGTGCCGGTCAACTTCCTGCGCCCGATCATCCAGGCGGACCTGGATTCGGGTAAGCATACGCAGATCGTCACCCGCTTCCCGCCGGAGCCCAACGGCTACCTGCACATCGGTCACGCCAAATCCATCTGCGTGAACTTCGGCCTCGCCGAGGAGTTCGGTGGCGTCACGCACTTGCGTTTCGATGACACCAACCCGGCCAAGGAAGACCAGGAATACATCGACGCGATCAAGAGCGACGTCAAGTGGCTGGGTTTCGAATGGGCGGGCGAAGTGCGCTATGCCTCGCAATATTTCGACCAGTTGCATGACTGGGCGGTCGAGCTGATCAAGTCCGGCAACGCCTACGTGTGCGACCTGACCCCGGAGCAGGCCAAGGAATACCGTGGCAGCCTGACCGAACCGGGTAAGAACAGCCCGTTCCGCGACCGCAGAGTGGAAGAGAACCTGGACTTGTTCGCCCGCATGCGCGCCGGTGAGTTCCCGGACGGCGCCCGCGTGCTGCGCGCCAAGATCGACATGGCCTCGCCGAACATGAACCTGCGCGACCCGATCATGTACCGCATCCGTCATGCCCATCACCACCAGACGGGCGACAAATGGTGCATCTATCCGAACTATGACTTCACCCACGGCCAGTCGGACGCCATCGAAGGCATCACGCACTCGATCTGCACGCTGGAATTCGAAAGCCACCGTCCGCTGTACGAATGGTTCCTGGAGCACCTGCCGGTGCCGGCCAACCCGCGCCAGTACGAATTCAGCCGCCTGAACCTGAACTACACCATCACCAGCAAGCGCAAGCTCAAGCAACTGGTGGACGAAAAGCACGTCAACGGTTGGGATGACCCACGCATGTCGACGTTGTCGGGCTTCCGCCGTCGTGGCTACACGCCGAAGTCGATCCGCAATTTCTGCGAGATGATCGGCACCAACCGTTCCGACGGCGTGGTGGACTTCGGCATGCTGGAATTCAGCATCCGTGACGACCTCGACCACAGCGCGCCGCGCGCCATGTGCGTGTTGCGTCCGCTGAAAGTCGTCATCACCAATTACCCGGAAGGCCAGGTCGAGAACCTCGAACTGCCGTGCCACCCGAAGGAAGACATGGGCGTACGCGTCCTGCCGTTCGCCCGGGAAATCTACATCGACCGTGAAGACTTCATGGAAGAGCCGCCCAAAGGCTACAAGCGCCTGGAACCTGCCGGCGAAGTGCGCCTGCGTGGCAGCTACGTGATCCGCGCCGACGAGGCCATCAAGGACGCCGACGGCAATATCGTCGAGCTGCGTTGCTCCTATGATCCCGACACCCTGGGCAAGAACCCGGAAGGTCGCAAGGTCAAGGGCGTGATCCACTGGGTGCCGGCCGCCGCGAGCGTCGAGTGCGAAGTGCGCCTGTACGATCGCCTGTTCCGTTCGCCGAACCCGGAGAAGGCCGAAGACAGCGCCAGCTTCCTGGACAACATCAACCCTGACTCCTTGCAAGTACTCACTGGTTGTCGTGCCGAGCCTTCGCTGGGCAACGCACAGCCGGAAGACCGTTTCCAGTTCGAGCGCGAAGGTTACTTCTGCGCGGATATCAAGGACTCGAAACCCGGTGCTCCGGTGTTCAACCGTACCGTGACCTTGCGCGACTCCTGGGGTCAGTGA	MSKPTVDPTSNSKTGPAVPVNFLRPIIQADLDSGKHTQIVTRFPPEPNGYLHIGHAKSICVNFGLAEEFGGVTHLRFDDTNPAKEDQEYIDAIKSDVKWLGFEWAGEVRYASQYFDQLHDWAVELIKSGNAYVCDLTPEQAKEYRGSLTEPGKNSPFRDRRVEENLDLFARMRAGEFPDGARVLRAKIDMASPNMNLRDPIMYRIRHAHHHQTGDKWCIYPNYDFTHGQSDAIEGITHSICTLEFESHRPLYEWFLEHLPVPANPRQYEFSRLNLNYTITSKRKLKQLVDEKHVNGWDDPRMSTLSGFRRRGYTPKSIRNFCEMIGTNRSDGVVDFGMLEFSIRDDLDHSAPRAMCVLRPLKVVITNYPEGQVENLELPCHPKEDMGVRVLPFAREIYIDREDFMEEPPKGYKRLEPAGEVRLRGSYVIRADEAIKDADGNIVELRCSYDPDTLGKNPEGRKVKGVIHWVPAAASVECEVRLYDRLFRSPNPEKAEDSASFLDNINPDSLQVLTGCRAEPSLGNAQPEDRFQFEREGYFCADIKDSKPGAPVFNRTVTLRDSWGQ				NA	NA	NA	NA	NA
D1-36_01854	1383	cysS	COG0215	Cysteine--tRNA ligase	GTGCTTACGATCTACAACACGCTCACCAAGAGCAAAGAAGTCTTCAAGCCGCTGGATGGCAACAAGGTGCGGATGTACGTCTGCGGCATGACCGTGTACGACTATTGCCACCTGGGTCATGGCCGCAGCATGGTCGCCTTTGACCTGGTGACCCGCTGGTTGCGTTTCAGCGGCTACGACCTGACCTACGTGCGCAACATCACCGACATCGACGACAAGATCATCAATCGCGCCAACGAGAATGGTGAAGCGTTCGATGCGCTGACCGAGCGCATGATCAAGGCCATGCACGAGGACGAGGCGCGCCTCAACATCCAGAAGCCGGACCTGGAGCCCCGTGCCACCGATCACATCCCGGGCATGCTGGCGATGATCCAGACCTTGATCGACAAGGGCTATGCCTACGCACCGGGAAATGGCGACGTGTACTACCGCGTCGCCAAGTTCATGGGCTACGGCAAACTGTCGCGCAAGAAGATCGAAGATTTGCGCATCGGCGCACGCATCGAAGTCGACGAGTCGAAGGAAGACCCGCTGGACTTCGTGCTGTGGAAAGGCGCCAAGCCGGGCGAGCCGAGCTGGGAGTCGCCGTGGGGCGCCGGGCGTCCGGGCTGGCACATCGAATGCTCGGTTATGTCCACCTGCTGCCTGGGCGAGACTTTCGACATTCATGGCGGCGGCAGCGACCTGGAATTTCCGCACCACGAAAACGAAATCGCCCAGAGTGAAGCGGCCACCGGCAAGACCTACGCCAATGCCTGGATGCATTGCGGCATGATTCGCATCAATGGCGAGAAGATGTCCAAATCCTTGAACAACTTCTTCACCATCCGCGACGTGCTCGATAAGTACCATCCGGAAGTCGTGCGTTACCTGCTGGTGTCGAGCCACTACCGCAGCGCCATCAACTATTCGGAAGATAACCTCAAGGATGCCAAGGGTGCCCTGGAGCGTTTCTACCATGCGTTGAAAGGCCTGCCGAGCGTGCCACCTGCCGGTGGTGAAGCGTTCGTGGCACGGTTTACCGAAGTGATGAACGATGACTTCGGCACGCCGGAAGCGTGCGCGGTGCTGTTCGAGATGGTGCGTGAGATCAACCGCCTGCGCGAGAGCGATCTCGATGCGGCGGCCGGCTTGGCGGCGCGCTTGAAGGAACTGGCCAGTGTTCTGGGTGTGTTGCAGCTCGAAGCCGATGACTTCCTGCAGGCCGGTGCCGAAGGCCGCGTCGACGCTGCCGAGGTCGACGCGCTGATTCAAGCACGGCTCGCGGCGCGGGCCAACAAGGACTGGGCCGAATCCGACCGCATCCGCGACCAGCTCACTGCCATGGGCGTGGTGCTGGAAGACGGGAAGGGCGGGACGACCTGGCGTTTGGCGGACTAA	MLTIYNTLTKSKEVFKPLDGNKVRMYVCGMTVYDYCHLGHGRSMVAFDLVTRWLRFSGYDLTYVRNITDIDDKIINRANENGEAFDALTERMIKAMHEDEARLNIQKPDLEPRATDHIPGMLAMIQTLIDKGYAYAPGNGDVYYRVAKFMGYGKLSRKKIEDLRIGARIEVDESKEDPLDFVLWKGAKPGEPSWESPWGAGRPGWHIECSVMSTCCLGETFDIHGGGSDLEFPHHENEIAQSEAATGKTYANAWMHCGMIRINGEKMSKSLNNFFTIRDVLDKYHPEVVRYLLVSSHYRSAINYSEDNLKDAKGALERFYHALKGLPSVPPAGGEAFVARFTEVMNDDFGTPEACAVLFEMVREINRLRESDLDAAAGLAARLKELASVLGVLQLEADDFLQAGAEGRVDAAEVDALIQARLAARANKDWAESDRIRDQLTAMGVVLEDGKGGTTWRLAD	PGPT0002985_5309	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002985-cysS-K01883	NA	NA
D1-36_01855	111			hypothetical protein	ATGGCGCTGCGGCGCTGGCAGGTGGCGCGGATCAGCCACCTGCAAGCGTTGCTGCTGATCGTGATGGTCGTGGCGGCCACGGGCATGACCCGTGGCGTGCGCTTGGGCTGA	MALRRWQVARISHLQALLLIVMVVAATGMTRGVRLG				NA	NA	NA	NA	NA
D1-36_01856	195	csrA1		Translational regulator CsrA1	ATGCTGATACTCACCCGCAAAGTCGGTGAAAGCATAAACATTGGTGACGACATCACGATCACCATTCTGGGCGTTAGCGGCCAACAGGTCCGGATCGGCATCAACGCCCCGAAAAACGTTGCGGTGCATCGCGAAGAAATTTATCAGCGCATCCAGGCCGGCCTCACTGCCCCTGACAAACCGCAAACGCCCTGA	MLILTRKVGESINIGDDITITILGVSGQQVRIGINAPKNVAVHREEIYQRIQAGLTAPDKPQTP	PGPT0015065_1421	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ENVELOPE_STRESS_SIGNALLING,PGPT0015065-csrA|zfiA-K03563	NA	NA
D1-36_01857	363			hypothetical protein	GTGCGTAAATTGGCTTGGGTAATTGCGGTACTGGCGCTGGCGGGATGTGGGGAAGGGCGCGACGTCGAAGCACCCAAGCCGAAGCCGGCGGCGACCTCCACGCCGGCAGTCGCGGCGCCGCAGTGGGCTGTCGAGGTGCGAGGCCAGACGCCCCAGGCGGTCAGCGACCTGACGGGCTGGCTGATCGAGCACAGCTTCATGTCCAGTGTCGTCAGGGAAAATGGCAAGGATCGGGTCCTGGTCGGGCCGTTGGGTTCCGAGGCTGAAGCTCAGGCGAAACAGGAGCAGATCAATGCTGCGCTGGTACGAGCCAAGAAGCGCAACATCGAGACCTTGGTCGTGGACTTTCCGCCAGCACGATAA	MRKLAWVIAVLALAGCGEGRDVEAPKPKPAATSTPAVAAPQWAVEVRGQTPQAVSDLTGWLIEHSFMSSVVRENGKDRVLVGPLGSEAEAQAKQEQINAALVRAKKRNIETLVVDFPPAR				NA	NA	NA	NA	NA
D1-36_01858	690	dns	COG2356	Extracellular deoxyribonuclease	ATGAATTTCCGCTGTCTGGTTTTATTGCTCGTCTTCGTTGCCATGGGCGCACAGGCTGGAGCGCCCCGTACCTTCAACGAAGCCAAGAAAGTCGCCTGGAAGCTCTATGCCCCCCAATCCACCGAGTTCTACTGCGGCTGCAAATACACCGGCAACCGCGTGAACCTCGCCGCCTGCGGTTATGTACCCCGCAAAAATGCCAGTCGCGCCGCCCGCATCGAGTGGGAACATATCGTTCCGGCCTGGCATATCGGCCATCAGCGTCAATGCTGGCAACAAGGTGGGCGCAAGAACTGCACTCGCTACGACCCGGTCTACCAACGGGCCGAGGCCGACCTTCACAACCTGGTGCCCAGCATTGGCGAGGTCAATGGCGATCGCAGCAACTTCAGCTTCGGCTGGTTGCCGGTGCAGAAGGGCCAATACGGCTCGTGCCTGACCCAGGTGGACTTCAAGGCCAAAAAAGTCATGCCCCGCCCTTCCATCCGCGGGATGATCGCCAGGACCTATTTCTACATGAGCAAACAATATGGCCTGCGGCTCTCCAAACAGGACCGGCGCCTGTACGAAGCCTGGGACAAGACCTACCCGGTGCAAGCGTGGGAGCGCCAGCGCAACCAGAGCGTGGCATGCGTGATGGGGCGTGGAAACGAATTCGTCGGACCGGTGGACCTGAAGGCCTGCGGCTGA	MNFRCLVLLLVFVAMGAQAGAPRTFNEAKKVAWKLYAPQSTEFYCGCKYTGNRVNLAACGYVPRKNASRAARIEWEHIVPAWHIGHQRQCWQQGGRKNCTRYDPVYQRAEADLHNLVPSIGEVNGDRSNFSFGWLPVQKGQYGSCLTQVDFKAKKVMPRPSIRGMIARTYFYMSKQYGLRLSKQDRRLYEAWDKTYPVQAWERQRNQSVACVMGRGNEFVGPVDLKACG				NA	NA	NA	NA	NA
D1-36_01859	300			hypothetical protein	ATGCCTACGGTTAAATACTGTATGCACGTACAGCTTAATAAGGATAATCCTGTGGCCATGCCCTCCGCTGCAACTACCCCCTTAGACTCCTATGCACGACTCGGTCTACGGGTCTCGAAGATCATCAACGCGCCCACCGCACAAAATGCCAAGGCCGCTCTGATCTTTCGCCTGCCCGATGAGCCGGTGGAGGAATGGGAACGCCTGCTGGCAGAAATCGACGAGAACGACAACGTCACCCTCGCCTATCGCGACGATGGCGGCGTGCAGGTTTTCTGGGTTGTGCCGAAGGAAGATTGA	MPTVKYCMHVQLNKDNPVAMPSAATTPLDSYARLGLRVSKIINAPTAQNAKAALIFRLPDEPVEEWERLLAEIDENDNVTLAYRDDGGVQVFWVVPKED				NA	NA	NA	NA	NA
D1-36_01860	1089	ansB		Glutaminase-asparaginase	ATGACATCTGCCTTAAAGACTCTTGTTCCGGGCGCTTTGGCCCTCTTGCTGCTCCTGCCCAGCGCCCTTCAGGCGAAAGAAAACCCGGTTGAGCAAAAGCTTTCCAACGTCGTCATCCTCGCCACGGGCGGCACCATCGCCGGCGCCGGCGCGAGCTCCGCCAACAGCGCCACCTACCAGGCAGCCAAGGTTGGTATCGAACAACTGATCGCCGGCGTACCGGAGCTCAGCCGGTTGGCCAACGTGCGCGGCGAACAGGTGATGCAGATCGCATCGGAGAGCATCACCAACGAAAACCTTTTGCAACTGGGACGCCGTGTCGCCGAGCTGGCCGACAGCGAGGATGTCGACGGCATCGTCATCACCCACGGCACCGACACGCTGGAGGAGACCGCTTATTTCCTGAATCTTGTCGAGAAAACCGACAAACCGATCATTGTCGTCGGCTCGATGCGGCCCGGCACCGCAATGTCTGCCGATGGCATGCTCAATCTCTACAACGCCGTGGCGGTCGCCAGCAGCAAGGAAGCGCGCGGTAAGGGCGTACTGGTGACCATGAACGATGAAATCCAGTCGGGCCGTGATGTGAGCAAGATGATCAACATCAAGACCGAAGCATTCAAAAGCCCGTGGGGCCCGTTGGGCATGGTAGTGGAAGGCAAATCCTACTGGTTCCGCCTGCCGGCCAAGCGCCACACCTCCGGTTCGGAGTTCGACATCAAGACCATCAAGAGCCTGCCGGACGTGGAAATTGCCTACTCCTACGGCAACGTCAGCGACACCGCGTACAAGGCCCTGGCCCAATCCGGCGCCAAGGCGATCATCCACGCCGGCACCGGCAACGGTTCGGTGTCTTCGCGAGTCGTTCCGTCGTTGCAGGCCTTGCGCAAGGAAGGCGTGCAGATCATTCGTTCGTCACACGCCAACGCAGGTGGTTTCGTACTGCGAAACGCCGAACAGCCTGACGACAAATACGACTGGGTCGTAGCCCACGACTTGAATCCTCAAAAGGCCCGTATCCTGGCAATGGTTGCCCTGACCAAGACCCAAGACAGCAAGGAGTTGCAGCGAATTTTCTGGGAATATTGA	MTSALKTLVPGALALLLLLPSALQAKENPVEQKLSNVVILATGGTIAGAGASSANSATYQAAKVGIEQLIAGVPELSRLANVRGEQVMQIASESITNENLLQLGRRVAELADSEDVDGIVITHGTDTLEETAYFLNLVEKTDKPIIVVGSMRPGTAMSADGMLNLYNAVAVASSKEARGKGVLVTMNDEIQSGRDVSKMINIKTEAFKSPWGPLGMVVEGKSYWFRLPAKRHTSGSEFDIKTIKSLPDVEIAYSYGNVSDTAYKALAQSGAKAIIHAGTGNGSVSSRVVPSLQALRKEGVQIIRSSHANAGGFVLRNAEQPDDKYDWVVAHDLNPQKARILAMVALTKTQDSKELQRIFWEY	PGPT0000700_58	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0000700-aspQ|asnA|asnB-K05597	NA	NA
D1-36_01861	447			hypothetical protein	ATGAGCTTTTCAATCGGCTTTCCAAATGCCGCCGCCGTCACCATCGGCGGTAAATCCGCAGCGACGTTGAATGCCTTGAGCGAGGCAACCGCCGATGCTGCCGACCAAGCCCTTGGCGAAACGCAAGCGCCCGGTAAGGTGCGCGCGAACCTGCATACCGACGCCGAGAGCAAGACCGAAAAAAGCGACAGCACCCAAAGCATCGCCATGAAAGTCCTGCTCAAGCGCATGCAAGAGCTACAGCAGCAACTGCGTGAGCAACAGCAGCAGCTCGCCGCTGCGCAGGCGCGTCCTTATTCCACGCCTGAAGCCAAGACTGCCGCGGTCATGGCCATCCAGGGACAGATCGCCGATACCACCGGTGCGCTGCAGGAAGTCACGGGCAGCTTGATCAAGGAATTGGCGAAGGATTCCAGTTCTGGGACGTTGGTCAACACCACGGCTTGA	MSFSIGFPNAAAVTIGGKSAATLNALSEATADAADQALGETQAPGKVRANLHTDAESKTEKSDSTQSIAMKVLLKRMQELQQQLREQQQQLAAAQARPYSTPEAKTAAVMAIQGQIADTTGALQEVTGSLIKELAKDSSSGTLVNTTA				NA	NA	NA	NA	NA
D1-36_01862	960	rbsB	COG1879	Ribose import binding protein RbsB	ATGAAGCTGCCATTCGCTGGTCGCCTGCTCGCCGTTGCCATGCTCGCGACCGCATCCGCTGCGCTGCCTTTCTCCTCGGCGCTCGCCCAGACTCCCGAAAAACCCAAGGTTGCCCTGGTCATGAAATCCCTGGCCAACGAATTCTTCCTGACGATGGAGGATGGCGCCAAGGCTTATCAGAAAGAACACTCCGCCGACTTCGACCTGATCTCCAACGGGATCAAGGATGAAACCGACACCGCCAACCAGATCCGCATCGTCGAGCAGATGATCGTGTCCAAGGTCGACGCGCTGATCATCGCGCCTGCCGATTCCAAGGCCATGGTTCCGGTGATCAAGAAAGCCGTCGATGCCGGCATCACTGTGATCAACATCGACAATCAACTCGATCCAGCGGTGGTCAAGAGCAAGAACATCACCGTGCCTTTCGTAGGCCCTGACAACCGCAAGGGCGCTCGCCTGGTGGGTGAATACCTGGCCAAGGAGCTCAAGGCTGGTGACGAGGTGGGTATCATCGAAGGCGTGTCGACCACCACCAACGCCCAGGCGCGCACCGCGGGCTTCAAGGATGCGATGGAGGCCGCGCAGATCAAGGTCGTTTCCCTGCAATCGGGCGATTGGGAGATCAACAAGGGCAACCAGGTTGCCTCGTCGATGCTCAGCGAATACCCGAACATCAAGGCGCTGCTGGCCGGCAACGACAGCATGGCGGTAGGTGCGGTCTCGGCCGTGCGCGCGGCTGGCAAGGCGGGCAAGGTGCAAGTGGTCGGCTACGACAATATCAACGCCATCAAGCCGATGCTCAAGGACGGCCGTGTCCTGGCCACAGCCGACCAGTTCGCTGCCAAGCAGGCTGTGTTCGGCATCGAGACCGCATTGAAAATGCTCAAGGGCGAAAAAGTCGACAGCGGCGCCAACGGCGTTATCGAAACTCCGGTCGAGCTGGTGACCAAGCAGTAA	MKLPFAGRLLAVAMLATASAALPFSSALAQTPEKPKVALVMKSLANEFFLTMEDGAKAYQKEHSADFDLISNGIKDETDTANQIRIVEQMIVSKVDALIIAPADSKAMVPVIKKAVDAGITVINIDNQLDPAVVKSKNITVPFVGPDNRKGARLVGEYLAKELKAGDEVGIIEGVSTTTNAQARTAGFKDAMEAAQIKVVSLQSGDWEINKGNQVASSMLSEYPNIKALLAGNDSMAVGAVSAVRAAGKAGKVQVVGYDNINAIKPMLKDGRVLATADQFAAKQAVFGIETALKMLKGEKVDSGANGVIETPVELVTKQ	PGPT0015740_4107	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
D1-36_01863	1554	mglA	COG1129	Galactose/methyl galactoside import ATP-binding protein MglA	ATGTCCGTTCGCGACCCGAACGCTGTCCTGTGCGTCAGCGGTATCGGCAAGACCTATGCCCAGCCGGTACTGAGCGATATCAACCTGACGTTGATGCGCGGTGAAGTGCTGGCGTTGACCGGTGAAAATGGCGCCGGCAAAAGTACCTTGTCCAAGATCATCGGTGGGCTGGTCACGCCGACGACGGGGCAGATGCAGTTCCACGGGCAGGATTACCGTCCCGGCAGCCGGACCCAGGCGGAAGAGCTGGGCGTGCGCATGGTGATGCAGGAACTCAACCTGCTGCCGACTCTTTCCGTGGCCGAGAACCTGTTCCTCGACAACCTGCCCAGCCACGGCGGCTGGATCAGTCGCAAGCAATTACGCAAAGCGGCGATCGACGCCATGGCCCAGGTGGGGCTCGATGCAATCGATCCCGACACGCTGGTCGGTGAACTGGGCATCGGTCATCAGCAGATGGTCGAGATCGCCCGCAACCTGATCGGCGATTGCCATGTGCTGATTCTCGATGAGCCGACCGCGATGCTAACGGCCCGCGAAGTCGAAATGCTCTTCGAGCAGATCACCCGCTTGCAGGCCCGCGGCGTCTCGATCATTTATATCTCCCATCGCCTTGAGGAACTGGCGCGGGTGGCCCAGCGCATTGCGGTGCTGCGCGACGGCAACCTGGTCTGCGTCGAGCCGATGGCCAACTACAACAGTGAGCAGTTGGTGACGCTGATGGTCGGTCGGGAGCTGGGCGAGCATATCGACCTGGGCCCGCGCCAGATCGGCGCCCCCGCGCTGACCGTGAAGGGCCTGACCCGTTCCGACAAGGTCCGCGATGTGTCGTTCGAAGTTCGCAGCGGTGAAATCTTCGGTATTTCCGGGCTGATCGGGGCAGGGCGCACAGAGCTGTTGCGGTTGATCTTCGGCGCGGATGTAGCCGACAGCGGTACGGTGGCACTGGGCTCGCCAGCCAATGTGGTCAGCATCCGTTCCCCGGCCGATGCGGTGGCCCACGGCATTGCCTTGATCACCGAGGATCGCAAGGGCGAGGGCTTGCTGTTGAGCCAATCCATCGCCGCCAACATCGCGCTGGGCAACATGCCGGAGATATCCAGTGCCGGCCTGGTCAATGGCAGCGCGGAGCAGGCCTTGGCGCAGCGGCAGATCGACGCCATGCGCATCCGCAGTTCCAGCCCGACGCAGCTGGTGTCCGAATTGTCTGGCGGCAACCAACAGAAAGTGGTGATCGGCCGTTGGCTCGAACGCGATTGCTCAGTACTGCTGTTCGACGAGCCGACCCGTGGCATCGACGTCGGCGCCAAGTTCGATATTTATGCGTTGCTGGGTGAACTGACTCGCCAGGGCAAGGCGCTGGTCGTGGTCTCCAGTGACCTGCGGGAACTGATGTTGATTTGTGACCGGATCGGTGTGCTTTCCGCCGGGCGCCTGATCGACACATTCGAGCGCGACAGCTGGACCCAGGATGACTTGCTTGCCGCCGCGTTCGCCGGCTACCAGAAACGTGATGCGCTGCTCAACGAAGCGGCGCCTAGGGATCTCTCATGA	MSVRDPNAVLCVSGIGKTYAQPVLSDINLTLMRGEVLALTGENGAGKSTLSKIIGGLVTPTTGQMQFHGQDYRPGSRTQAEELGVRMVMQELNLLPTLSVAENLFLDNLPSHGGWISRKQLRKAAIDAMAQVGLDAIDPDTLVGELGIGHQQMVEIARNLIGDCHVLILDEPTAMLTAREVEMLFEQITRLQARGVSIIYISHRLEELARVAQRIAVLRDGNLVCVEPMANYNSEQLVTLMVGRELGEHIDLGPRQIGAPALTVKGLTRSDKVRDVSFEVRSGEIFGISGLIGAGRTELLRLIFGADVADSGTVALGSPANVVSIRSPADAVAHGIALITEDRKGEGLLLSQSIAANIALGNMPEISSAGLVNGSAEQALAQRQIDAMRIRSSSPTQLVSELSGGNQQKVVIGRWLERDCSVLLFDEPTRGIDVGAKFDIYALLGELTRQGKALVVVSSDLRELMLICDRIGVLSAGRLIDTFERDSWTQDDLLAAAFAGYQKRDALLNEAAPRDLS	PGPT0016600_1053	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
D1-36_01864	978	rbsC_1	COG1172	Ribose import permease protein RbsC	ATGAAAACCGCACCTGCCGTCGGCAAATCCAATGGCAACTTTTATGGTCTGGGCACTTACCTGGGCCTGGCTGGCGCCTTGCTCGCCATGGTCGCGCTGTTCTCGGTCCTGAGCAGCCACTTTCTTTCCTACGACACCTTCAGCACCCTCGCCAATCAGATCCCCGATCTCATGGTGCTGGCGGTCGGCATGACCTTTATCCTGATCATCGGCGGCATCGATTTATCGGTGGGCTCGGTGCTGGCGTTGGCGGCTTCGACAGTCAGCGTGGCGGTGCTGGGCTGGGGCTGGAGCGTCTGGCCATCGGCCTTGCTTGGCATGGCCGTGGCGGCATTGGCGGGCACGGTCACCGGTTCGATTACCGTGGCATGGCGTATCCCGTCGTTTATCGTTTCGCTGGGTGTGCTGGAAATGGCCAGGGGCCTGGCGTACCAGATGACCGGCTCGCGGACCGCCTATATCGGCGACTCCTTCGCCTGGCTGTCCAATCCGATTGGCTTCGGTATTTCGCCTTCGTTCATCATCGCCTTACTGGTGATCTTTGTTGCCCAAGCGGTGTTGACCCGCACGGTGTTCGGGCGCTACCTGATTGGCATCGGCACCAATGAAGAAGCCGTGCGCTTGGCCGGCATCAACCCCAAGCCCTACAAGATCCTGGTGTTCAGCCTGATGGGCTTGTTGGCCGGTGTTGCGGCGCTGTTCCAGATTTCTCGCCTGGAAGCGGCGGACCCCAACGCAGGCTCGGGGCTCGAGCTGCAAGTCATCGCCGCCGTGGTCATCGGCGGCACCAGCCTGATGGGCGGGCGCGGCTCGGTCATCAGCACCTTTTTCGGCGTGCTGATCATTTCGGTGCTGGCGGCAGGCCTGGCCCAGATCGGCGCGACCGAGCCGACCAAACGCATCATCACCGGCGCGGTGATCGTGATTGCAGTGGTGCTCGATACGTACCGCAGCCAGCGCGCCAGTCGGCGGGCTTGA	MKTAPAVGKSNGNFYGLGTYLGLAGALLAMVALFSVLSSHFLSYDTFSTLANQIPDLMVLAVGMTFILIIGGIDLSVGSVLALAASTVSVAVLGWGWSVWPSALLGMAVAALAGTVTGSITVAWRIPSFIVSLGVLEMARGLAYQMTGSRTAYIGDSFAWLSNPIGFGISPSFIIALLVIFVAQAVLTRTVFGRYLIGIGTNEEAVRLAGINPKPYKILVFSLMGLLAGVAALFQISRLEAADPNAGSGLELQVIAAVVIGGTSLMGGRGSVISTFFGVLIISVLAAGLAQIGATEPTKRIITGAVIVIAVVLDTYRSQRASRRA	PGPT0016590_4241	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
D1-36_01865	1020	purR	COG1609	HTH-type transcriptional repressor PurR	ATGGCGACGATCAAGGATGTGGCGGCGCTTGCCGGGATTTCCTACACGACCGTGTCCCATGTGGTGAACAAGACGCGGCCGGTCAGTGACGAGGTGCGGCGCAAGGTCGAGGCCGCCATCGAACGGTTGGACTATGTGCCCAGCGCCGTGGCGCGCTCGCTCAAGGCCAAGACCACGGCCACCATTGGCCTGCTGGTGCCCAACAGCCTCAACCCGTACTTTGCCGAACTGGCTCGGGGGATCGAGGATTACTGCGAGCGCAATGGCTACTGCGTGATCCTATGCAATTCCGACGACAATCCGGACAAGCAGCGCAGTTATCTGCGGGTGCTGCTGGAAAAACGTATCGACGGATTGATCGTGGCGTCGGCCGGGGGCGATGTCGGCCTGGCCGAGGGCCTGACCAACGTGCGTACGCCCATGGTGATCGTTGACCGTGGCCTGGATGGCGTCGATGCGGACCTGGTCCGTATCGACCATGAATATGGCGCGTACCTGGCCACCCGGCATCTGCTGGACCTGGGCCATCGCGACATTGCCTTCATTGGCGGGCCGGCGGACACCAGCGTGGCACAGATGCGCCTGGCGGGTTATTGCCGTGCGCTGAAGGAGGCGGGGATCGAGCTGCCCGTCGAGCGCATGCTCGAGAGCGATTTCACCAGCATCGGCGGTTACCGTGCGGCGGCCCAATTGCTTGGGCAACGGCCGCCCAGCGCGATTTTCGCGGCCAACGACATGATCGGCATCGGTGCATTGCGCGCCGCCGCCGAACGCAATGTGCGCGTGCCCAGTGAGCTGTCGATCATCGGTTTCGACGATATTCAGATGAGCCGTTATGTCTACCCGGCGCTGACCACTGTGGGGCAGTCGATCCTGGACCTGGGCGAGATGGCGGCCGAGGTGTTGCTGCGGCGCATCGCAACGCCGGGGCTTGCCACTGACCAGCGGATCGTGACGCCCAGCATTGTCTTGCGAGAATCGACTGCACCGGTGCCCGGTACATTCGCCCAATACCGCTGA	MATIKDVAALAGISYTTVSHVVNKTRPVSDEVRRKVEAAIERLDYVPSAVARSLKAKTTATIGLLVPNSLNPYFAELARGIEDYCERNGYCVILCNSDDNPDKQRSYLRVLLEKRIDGLIVASAGGDVGLAEGLTNVRTPMVIVDRGLDGVDADLVRIDHEYGAYLATRHLLDLGHRDIAFIGGPADTSVAQMRLAGYCRALKEAGIELPVERMLESDFTSIGGYRAAAQLLGQRPPSAIFAANDMIGIGALRAAAERNVRVPSELSIIGFDDIQMSRYVYPALTTVGQSILDLGEMAAEVLLRRIATPGLATDQRIVTPSIVLRESTAPVPGTFAQYR	PGPT0017992_8685	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
D1-36_01866	915	rbsK	COG0524	Ribokinase	ATGCCAGCAAAAGTAGTGGTGATAGGCAGCCTGAACATGGACCTGGTGACGCGTGCGCCGCGTCTGCCTCGTGGTGGGGAAACCCTGATTGGCGAGTCGTTTTCCACCATCCCGGGGGGCAAGGGCGCCAACCAGGCGGTGGCCGCCGCGCGCCTGGGTGCGCAAGTGTCCATGGTCGGTTGCGTCGGCAATGACGCCTATGGACAGCAGTTGCGTGGCGCGCTGCTCGCCGAGGGCATCGATTGCCAGGCGGTCAGCGTGGTGGAGGGCTCCAGTGGCGTTGCGCTGATCGTGGTCGATGACAACAGCCAGAACGCGATCGTCATCGTTGCCGGCGCCAATGGTGAGCTGACGCCCGGCGTCCTCGATAGTTTTGATGCGGTGCTGCAAGGCGCCGATGTCATTATCTGCCAACTGGAAGTGCCGGACGCCACCGTAGGGCATGCGCTCAAGCGCGGCCATGAGCTTGGCAAGATCGTCATTCTCAATCCGGCGCCGGCCTCCCATGCCCTGCCGGGCGACTGGTACGCCTACGTCGACTACCTGATCCCTAACGAAAGCGAAGCGATGGTCCTCAGTGGCCTGGCCGTGGATTCCCTGGAGACCGCCGAAGCCGCCGCGACGCAGTTGCTCGCGGCGGGTGCCGGCAAAGTCATCGTAACGCTGGGTGCCCAAGGGTTGCTGTTCGCCAACGGAGCGAGCTTCGAACACTTCCCCGCGCCGCGGGTCAAGGCGGTTGACACAACCGCGGCAGGCGATACGTTCGTCGGCGGTTTCGCGGCGGCCCTGGCGAACAGTAAGGACGAAGTCGAGGCCATTCGTTTCGGGCAGGTCGCCGCTGCGCTGTCGGTCACTCGCGCGGGCGCGCAGCCCTCTATTCCTGCATTGTCGGAAGTTCAGGCGTTCGAATCATGA	MPAKVVVIGSLNMDLVTRAPRLPRGGETLIGESFSTIPGGKGANQAVAAARLGAQVSMVGCVGNDAYGQQLRGALLAEGIDCQAVSVVEGSSGVALIVVDDNSQNAIVIVAGANGELTPGVLDSFDAVLQGADVIICQLEVPDATVGHALKRGHELGKIVILNPAPASHALPGDWYAYVDYLIPNESEAMVLSGLAVDSLETAEAAATQLLAAGAGKVIVTLGAQGLLFANGASFEHFPAPRVKAVDTTAAGDTFVGGFAAALANSKDEVEAIRFGQVAAALSVTRAGAQPSIPALSEVQAFES	PGPT0017405_3188	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
D1-36_01867	405	rbsD	COG1869	D-ribose pyranase	ATGAAAAAGACTCCTTTGTTGAACATCGCCCTGTCACGCCTGGTCGCTTCCCTTGGGCATGGCGACAAGGTGGTGATTGGTGATGCCGGGCTGCCGGTGCCGCCACACGTCGAACTGATCGACCTTGCGTTGACCCATGGCGTCCCCGATTTTGTCAGTACCTTGAACGTGCTGCTCAGCGAGATGCAGGTCGAAAGCCATGTATTGGCGCAGGAAATTATCGACAAGCAACCGTCAGCCCTGGCGACGTTGGAGGCGCTGCACGCCGAAGGCGCCTTAGGCGCGCGGGCGTTGGTCAGCCATGAGCAGTTCAAGGTGCTTACTCGCGAGGCGAGGGCGGTCATTCGCACCGGAGAATGCTCACCGTACTGCAACGTGGTGCTGATCGCGGGCGTCACGTTCTAG	MKKTPLLNIALSRLVASLGHGDKVVIGDAGLPVPPHVELIDLALTHGVPDFVSTLNVLLSEMQVESHVLAQEIIDKQPSALATLEALHAEGALGARALVSHEQFKVLTREARAVIRTGECSPYCNVVLIAGVTF	PGPT0016595_512	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0016595-rbsD-K06726	NA	NA
D1-36_01868	1029	rihB	COG1957	Pyrimidine-specific ribonucleoside hydrolase RihB	ATGCACCGCTATGCTCAAAAAATGCATCAACTGTTGCGGAGTCTGCTGCTTTTGTCATTCATCACGGCTACAAGCGCCCAGGCGGCAGAGAAGATCGACTTGATCATCGACACCGATCCGGGCGCCGATGATGTGGTTGCGCTGTTGTTCGCGCTGGCATCCCCCGAGGAGTTGCACGTTCGCGCGTTGACCACCGTGGCGGGGAACGTGCGCCTGGACAAGACTTCCCGCAATGCGCGCCTGGCCCGTGAGTGGGCGGGTGGCGAAGAGGTGCCGGTCTATGCCGGCGCGCCGAAACCGTTGATGCGCACGCCCATCTACGCGGAAAACATCCACGGCAAGGAGGGTTTGTCGGGTGTCACGGTGCACGAGCCGAAGAAAGGCTTGGCCGAGGGCAATGCCGTCAATTACCTGATCGACACGCTTAAGGCGGCCAAGCCCCACAGCATCACCATTGCCATGCTCGGCCCGCAGACGAACCTGGCCTTGGCGCTGGTCCAGGAGCCCGGGATCGTTCAGGGGATCAAGGAGGTGGTGATCATGGGTGGCGCGCACTTCAACGGCGGCAATATCACGCCGGTGGCCGAATTTAATTTATATGCCGATCCTCAGGCGGCGGAGATCGTCGCCAAAAGCGGTGTGAAGCTGACCTACCTGCCCTTGGACGTGACTCACAAGATCCTTACCAGCGAGACACGCCTGAAGCAGATCGCTGCGCTGAACAACAACGCGAGCAAGTTGGTCGGCGATATTCTCAACGAATACGTCAAGGGCGACATGGAGCACTACGGCATGACGGGCGGGCCGGTGCACGATGCAACCGTGGTCGCCTACCTTCTCAAGCCGCAGCTGTTTAGCGGGCGTGCGGTCAACCTTGTGGTGGACAGCCGTGAAGGGCCGACTTTCGGCCAGACCGTCGTCGATTGGTACGACGGCCTGAAAGCGCCAAAAAATGCTTTTTGGGTGAAGGACGGCGATGCCCAGGGGTTCTTCGATCTGCTGACCGAGCGATTGGCGCGGCTCAAGTAA	MHRYAQKMHQLLRSLLLLSFITATSAQAAEKIDLIIDTDPGADDVVALLFALASPEELHVRALTTVAGNVRLDKTSRNARLAREWAGGEEVPVYAGAPKPLMRTPIYAENIHGKEGLSGVTVHEPKKGLAEGNAVNYLIDTLKAAKPHSITIAMLGPQTNLALALVQEPGIVQGIKEVVIMGGAHFNGGNITPVAEFNLYADPQAAEIVAKSGVKLTYLPLDVTHKILTSETRLKQIAALNNNASKLVGDILNEYVKGDMEHYGMTGGPVHDATVVAYLLKPQLFSGRAVNLVVDSREGPTFGQTVVDWYDGLKAPKNAFWVKDGDAQGFFDLLTERLARLK	PGPT0013465_402	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013465-iunH-K01239	NA	NA
D1-36_01869	198			hypothetical protein	ATGAGCACCGTCAGCATCGAAGCCACCATCAATGCAAAATGGGCGCAGGGCCACAGCTCGTACAGCCCAGGCAGCCCGGAAGAACTGGCGATCCTCAGCATCGAGTTGCTGGTGAAAGAACTCGGGACGCAGGCCGCGCAAAACTTCGTCAAGCAAGCGTTCGAGCGCTATCCGAGCATCATTGAGACAACTGCATAA	MSTVSIEATINAKWAQGHSSYSPGSPEELAILSIELLVKELGTQAAQNFVKQAFERYPSIIETTA				NA	NA	NA	NA	NA
D1-36_01870	390			hypothetical protein	TTGGAGTGGGTTTGGCAGTGCGACTTAGGCATCAGGCGAGCACTGTGCGACACTCGGTTTTTTATTTTTCCCGGGGGCTCCTACGTGCAGATCGATTTGAAGGATCCTGAGGCGTTCACCCTCGAGGCCGTGCGTGATTTGCTCGCGTCCGCCAGTGATGACGAACATACCCAGTTGCGTGTGACCAAGGCTGGCATTGCCTATCTTTCCTCGGGTGTCGTAGGCGGTGCCGACATCGCAGGTTTGTTGTTTCGGCTTGAAACCTGGGCGAAGGGTTCGGGGTATGTCGGAAACGTTGCGGCGAGCGATGAGGTCTGGGTGATGCAAATCTACAATGCATTGAAAGACAACTGGCCGAACCCGCCCTTCGATTACATCGACATCTACTGA	MEWVWQCDLGIRRALCDTRFFIFPGGSYVQIDLKDPEAFTLEAVRDLLASASDDEHTQLRVTKAGIAYLSSGVVGGADIAGLLFRLETWAKGSGYVGNVAASDEVWVMQIYNALKDNWPNPPFDYIDIY				NA	NA	NA	NA	NA
D1-36_01871	315			hypothetical protein	ATGCCTTGGAAGCTCGCGTCACTGAGTACTTTGCTGGCCGCTGCGCTCTTGAGCGGTTGCAGCAGCACCTCTGAATCGACCCCTGATCCCGTGACGGCCGAAACCGGGCATAGTCGCTGCGAGGCGAAGGCTGCCGAGTTCGCGATTGGCAAGCAGGCCTCGCCCCAGTTGCTGGAGCAGGCGCGGAGCCGTTCCGGCGCGCAAAACGCCCGTATTCTCAAGCCCAACGACATGGTGACGCTTGAGTACCGCTCCGATCGCTTGAACCTCAATACCGATGCCAAGCTGGTGGTCAACCGGGTCAATTGCGGCTGA	MPWKLASLSTLLAAALLSGCSSTSESTPDPVTAETGHSRCEAKAAEFAIGKQASPQLLEQARSRSGAQNARILKPNDMVTLEYRSDRLNLNTDAKLVVNRVNCG				NA	NA	NA	NA	NA
D1-36_01872	213	capB_1		Cold shock protein CapB	ATGTCTAATCGCCAAACCGGCACCGTTAAATGGTTCAACGATGAAAAAGGCTTCGGCTTCATCACTCCTCAAGGTGGCGGTGACGACCTATTCGTACACTTCAAAGCTATCGAAAGCGACGGTTTCAAAAGCCTGAAAGAAGGCCAGACTGTTTCCTTCGTGGCTGAGAAAGGCCAAAAGGGTATGCAAGCTGCACAAGTTCGCCCAGAGTAA	MSNRQTGTVKWFNDEKGFGFITPQGGGDDLFVHFKAIESDGFKSLKEGQTVSFVAEKGQKGMQAAQVRPE	PGPT0014675_1803	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	LOW_TEMPERATURE_TOLERANCE	COLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704	NA	NA
D1-36_01873	303			hypothetical protein	ATGCGTCTGAATACGTTATTCGCAGTAGTCGCCCCCCTCGCCCTGCTGCTCCCGATTGCCGCCCATGCCGACTGGCCAAAGGGCGAGCGCGAAAAATACATGGCCCAGTGCACCCAGGCGGCAACGCCACAGATCGGCGCGGCAGCGGCCAAGTCACACTGCGCCTGTGGCGCCGACGCCATCAAATCCTATCCGGCCAGTGATATCCAGGCTCTGATGGACAACAAGGCCACCCCTGAACTGCAACAGAAAGCCCTCGGCCAGATCGCCAAATGCAAGGCGAATCCGCCTGCGAAAAAATGA	MRLNTLFAVVAPLALLLPIAAHADWPKGEREKYMAQCTQAATPQIGAAAAKSHCACGADAIKSYPASDIQALMDNKATPELQQKALGQIAKCKANPPAKK				NA	NA	NA	NA	NA
D1-36_01874	1923	thrS	COG0441	Threonine--tRNA ligase	ATGCCAACTATTACTCTTCCCGACGGCAGTCAACGTTCATTCGACCACCCGGTTTCCGTAGCCGAGGTCGCCGCATCCATTGGCGCGGGCCTGGCCAAGGCCACCCTGGCCGGCAAGGTAAACGGCAAACTGGTCGACGCCAGCGATGTCATCGACAGCGATGCCACGCTGCAAATCATCACGCCCAAGGATGAAGAGGGGCTGGAGATCATTCGTCACTCCTGCGCGCACCTGGTCGGTCATGCGGTCAAGCAGCTGTACCCGAGCGCGAAGATGGTCATCGGGCCGGTCATCGACGAAGGCTTCTATTACGACATCGCCTTCGAGCGTCCTTTTACCCCGGACGACATGGCCGCGATCGAGCAGCGCATGCAGCAGCTGATCGAGAAAGATTACGACGTCATCAAGAAAGTCACCCCGCGCGCCGAAGTCATCGAAGTCTTCAAGGCCCGTGGCGAGGACTACAAGCTGCGTCTGGTGGAAGACATGCCGGACGAGCAGGCCATGGGCCTGTACTACCACGAAGAATACGTCGACATGTGCCGCGGCCCGCACGTGCCGAACACGCGTTTCCTGAAATCCTTCAAGCTGACCAAGCTGTCCGGCGCCTACTGGCGTGGCGACGCGAAGAACGAACAGTTGCAGCGCGTCTACGGCACGGCCTGGGCGGACAAGAAGCAGCTGGCGGCCTACATCCAGCGTATCGAAGAGGCTGAGAAGCGCGATCACCGCAAGATCGGCAAGCGCCTGGGCCTATTCCATACCCAGGAAGAATCCCCGGGCATGGTGTTCTGGCACCCGAACGGCTGGACTCTGTACCAGGTGCTAGAACAGTACATGCGCCAGGTCCAGCGTGAGAACGGCTACCTCGAAATCAAGACGCCGCAAGTGGTCGACCGCAGCCTCTGGGAGAAATCCGGGCATTGGGCCAACTACGCCGACAACATGTTCACCACCCAGTCGGAAAACCGCGACTACGCCATCAAGCCAATGAACTGCCCGTGCCACGTGCAGGTATTCAACCAGGGCCTGAAGAGCTATCGCGAGCTGCCGATGCGCCTGGCCGAGTTCGGTGCTTGCCACCGTAACGAGCCATCGGGTGCGCTGCACGGCATCATGCGCGTGCGGGCATTCACTCAGGACGACGCGCACATTTTCTGCACTGAAGAGCAGATGCAGGCTGAATCCGCCGCGTTCATCAAGCTGACCATGGACGTCTACCGGGACTTCGGCTTCACCGAAGTTGAAATGAAGCTGTCCACTCGTCCGGAAAAACGCGTCGGTTCCGACGAACTGTGGGATCGCGCCGAGGCCGCCCTGGCCGCCGCCCTCGACAGCGCGGGGCTTGCGTACGAGCTGCAGCCGGGCGAGGGCGCATTCTACGGTCCGAAGATTGAATTCTCGTTGAAAGATTGCCTTGGCCGCGTCTGGCAATGTGGTACCTTGCAGCTCGATTTCAACCTGCCGATCCGTCTGGGCGCTGAATATGTGTCCGAAGACAACAGCCGCAAGCACCCGGTCATGCTTCACCGCGCGATCCTCGGTTCCTTCGAGCGTTTCGTCGGGATCCTGATCGAGCATTACGAGGGTGCGTTCCCCGCGTGGCTGGCGCCGACCCAGGCAGTGATCATGAATATCACTGATAAACAGGCAGATTTTGCCGCCGAAGTCGAAAAAACTCTCAATCAAAGCGGATTTCGTGCCAAGTCCGACTTGAGAAATGAAAAGATCGGCTTTAAAATCCGCGAGCATACTTTGCTCAAGGTTCCCTTTCTCTTGGTTATTGGAGATCGGGAGGTCGAGATGCAGACTGTCGCTGTGCGTACTCGTGAAGGTGCTGACCTGGGCTCGATGCCCGTCGCCGAATTCGCCGAGTTTCTCGCGCAAGCGGTTTCCCGGCGTGGTCGCCCAGATTCGGAGTAA	MPTITLPDGSQRSFDHPVSVAEVAASIGAGLAKATLAGKVNGKLVDASDVIDSDATLQIITPKDEEGLEIIRHSCAHLVGHAVKQLYPSAKMVIGPVIDEGFYYDIAFERPFTPDDMAAIEQRMQQLIEKDYDVIKKVTPRAEVIEVFKARGEDYKLRLVEDMPDEQAMGLYYHEEYVDMCRGPHVPNTRFLKSFKLTKLSGAYWRGDAKNEQLQRVYGTAWADKKQLAAYIQRIEEAEKRDHRKIGKRLGLFHTQEESPGMVFWHPNGWTLYQVLEQYMRQVQRENGYLEIKTPQVVDRSLWEKSGHWANYADNMFTTQSENRDYAIKPMNCPCHVQVFNQGLKSYRELPMRLAEFGACHRNEPSGALHGIMRVRAFTQDDAHIFCTEEQMQAESAAFIKLTMDVYRDFGFTEVEMKLSTRPEKRVGSDELWDRAEAALAAALDSAGLAYELQPGEGAFYGPKIEFSLKDCLGRVWQCGTLQLDFNLPIRLGAEYVSEDNSRKHPVMLHRAILGSFERFVGILIEHYEGAFPAWLAPTQAVIMNITDKQADFAAEVEKTLNQSGFRAKSDLRNEKIGFKIREHTLLKVPFLLVIGDREVEMQTVAVRTREGADLGSMPVAEFAEFLAQAVSRRGRPDSE				NA	NA	NA	NA	NA
D1-36_01875	534	infC	COG0290	Translation initiation factor IF-3	ATGAGACAAGATAAACGAGCTGCACCGAAAGCCCCGATCAACGAGAATATCTCGGCACGCGAGGTTCGGTTAATTGGCGCTGATGGCGAGCAGATTGGCATCGTCTCGATTGATGAAGCGCTTCGTATTGCTGAAGAAGCCAAGCTTGATCTGGTGGAAATTTCCGCGGACGCAGTCCCACCCGTTTGCCGGGTGATGGACTACGGCAAGTCGATCTTCGAAAAGAAGAAGCAGATTGCCGCGGCGAAGAAAAACCAGAAGCAGATTCAGGTAAAAGAAATTAAGTTTCGTCCAGGGACGGAGGAAGGGGATTACCAGGTAAAACTGCGCAACCTGGTACGTTTCCTGAGTGACGGGGACAGGGCCAAGGTATCCTTGCGATTCCGCGGCCGTGAGATGGCCCACCAGGAGCTGGGGATGGAACTCCTCAAGCGGGTTGAACAAGACCTGCTCGAGTACGGTTCGGTCGAACAGCATCCTAAGATGGAAGGACGCCAGCTGATCATGGTCATCGCCCCGAAAAAGAAGAAGTAA	MRQDKRAAPKAPINENISAREVRLIGADGEQIGIVSIDEALRIAEEAKLDLVEISADAVPPVCRVMDYGKSIFEKKKQIAAAKKNQKQIQVKEIKFRPGTEEGDYQVKLRNLVRFLSDGDRAKVSLRFRGREMAHQELGMELLKRVEQDLLEYGSVEQHPKMEGRQLIMVIAPKKKK				NA	NA	NA	NA	NA
D1-36_01876	195	rpmI		50S ribosomal protein L35	ATGCCAAAGATGAAAACTAAAAGTGGTGCTGCTAAGCGGTTTCTGAAAACTGCTAACGGCATCAAGCACAAGCACGCTTTCAAGAGCCACATCCTGACCAAAATGTCGACCAAGCGTAAGCGTCAACTGCGCGGTAGCAGCTTGCTGCATCCGTCTGACGTGGCAAAAGTCGAGCGCATGCTGCGCCTTCGTTAA	MPKMKTKSGAAKRFLKTANGIKHKHAFKSHILTKMSTKRKRQLRGSSLLHPSDVAKVERMLRLR				NA	NA	NA	NA	NA
D1-36_01877	357	rplT	COG0292	50S ribosomal protein L20	ATGGCTCGTGTAAAGCGTGGCGTCATTGCCCGTAAGCGTCACAAGAAAATTATGAAACTTGCTAAAGGCTACTACGGTGCGCGTTCCCGCGTATTCCGTGTTGCCAAGCAAGCCGTAATCAAGGCAGGCCAATACGCCTACCGTGACCGTCGTCAGAAAAAACGTCAGTTCCGCGCTCTGTGGATCGCTCGTATCAACGCTGGTGCTCGTACCTACGGTCTGTCCTACAGCCGTTTCATCGCCGGCCTGAAAAAAGCGTCCATCGAGATCGACCGTAAGGTTCTGGCTGATCTGGCAGTGAACGAAAAAGCGGCGTTTGCTGCGATTGTCGAGAAAGCTAAAGCCACCTTGGCTTAA	MARVKRGVIARKRHKKIMKLAKGYYGARSRVFRVAKQAVIKAGQYAYRDRRQKKRQFRALWIARINAGARTYGLSYSRFIAGLKKASIEIDRKVLADLAVNEKAAFAAIVEKAKATLA				NA	NA	NA	NA	NA
D1-36_01878	1017	pheS	COG0016	Phenylalanine--tRNA ligase alpha subunit	ATGGAAAACCTGGACGCGCTGGTCGCTCAAGCACTAGAGGCTGTGCAAAGCGCTGAAGATATCAATGCCCTGGAGCAAATCCGGGTTCACTACCTTGGCAAGAAAGGCGAGTTGACTCAGGTGATGAAGACCCTGGGGAACCTGCCGGCCGAAGAGCGTCCGCAGGTTGGTGCGCTGATCAACGTCGCCAAGGAACGTGTCACAGAAGTCCTCAATGCGCGCAAGGCGCTGTTCGAGGAGGCGGACCTGGCGGCCAAGCTCGCGGCCGAATCCATCGACGTGACCCTGCCTGGCCGTGGCCAGACTTCCGGTGGCCTGCATCCGGTGACCCGGACCCTGGAACGCATCGAGCAGTTCTTCACCCGCATCGGCTATGGCATTGCCGAGGGTCCTGAGGTCGAAGACGACTACCACAACTTCGAGGCGCTCAACATCCCAGGCCACCACCCGGCCCGGTCGATGCATGACACCTTCTATTTCAATGCGAACATGTTGTTGCGCACCCATACCTCTCCGGTACAGGTCCGCACCATGGAATCGCAGCAGCCGCCGATCCGCATCGTCTGCCCAGGCCGTGTGTACCGTAGCGACTCCGATATCACCCATTCGCCGATGTTCCATCAGGTCGAAGGCCTGCTGGTGGATCGCGACATCAATTTCGCTGACCTGAAAGGGACTATCGAAGAGTTCCTGCGGGTGTTCTTCGAAAAAGAACTGGCCGTGCGCTTCCGCCCTTCCTATTTCCCGTTCACTGAGCCATCGGCCGAAGTCGACATGGAGTGCGTGATGTGCAGCGGCAAGGGCTGCCGCGTCTGCAAGCAGACGGGCTGGCTGGAAGTCATGGGCTGCGGCATGGTTCACCCGAACGTGCTGCGCATGTCCGGGATCGATCCGGAAGGATTCTCGGGCTTTGCCTTCGGCATGGGCGTGGAACGCTTGGCCATGCTGCGTTACGGCGTGAACGACTTGCGTCTGTTCTTCGACAACGACTTGCGGTTCCTCGCGCAATTTCGCTAG	MENLDALVAQALEAVQSAEDINALEQIRVHYLGKKGELTQVMKTLGNLPAEERPQVGALINVAKERVTEVLNARKALFEEADLAAKLAAESIDVTLPGRGQTSGGLHPVTRTLERIEQFFTRIGYGIAEGPEVEDDYHNFEALNIPGHHPARSMHDTFYFNANMLLRTHTSPVQVRTMESQQPPIRIVCPGRVYRSDSDITHSPMFHQVEGLLVDRDINFADLKGTIEEFLRVFFEKELAVRFRPSYFPFTEPSAEVDMECVMCSGKGCRVCKQTGWLEVMGCGMVHPNVLRMSGIDPEGFSGFAFGMGVERLAMLRYGVNDLRLFFDNDLRFLAQFR				NA	NA	NA	NA	NA
D1-36_01879	2379	pheT	COG0072	Phenylalanine--tRNA ligase beta subunit	ATGAAATTCAGTGAACAATGGCTGCGCGGCTGGGTTAGCCCGCAGGTAAGCCAGGACGAGCTGGTTGCTCGCCTGTCGATGGCCGGTCTTGAGGTCGATAGCGTGACGCCGGCCGCCGGCGCATTCAGTGGCGTGGTGGTGGGGGAGGTGCTGAGCACCGAACAACACCCTGACGCGGACAAGCTGCGGGTTTGCCAGGTCAGCAGTGGCGGGGAAACGTTCCAGGTCGTGTGCGGTGCACCAAACGTGCGTCCCGGCCTGAAGATCCCGTTTGCCATGATCGGCGCAGAACTGCCGGGTGACTTCAAGATCAAGAAAGCCAAGCTGCGCGGTGTCGAGTCCAACGGCATGTTGTGCTCCCAAGCCGAATTGCAGGTTGGCGAAGGCAACGACGGCCTGATGGAGTTGCCGGCGGATGCGCCGGTCGGCAAGGATTTTCGTGAATACCTGGGCCTGGACGATGCGAGCATCGAAGTCGACCTGACGCCGAACCGTGGCGACTGCCTGTCAGTGGCTGGCCTGGCCCGTGAAGTCGGCGCGTTGTACGCCACCCCGGTCACTCGCCCGGTGGTTGCGAGTGTCCCGGCCGTGCATGACGAAGTCCGTCCGATCGAAGTCTTGGCGCCGAGCGCATGCCCGCGTTACCTGGGCCGCGTGATCCGCAATGTCGACCTGTCCAAGCCGACCCCGCTGTGGATGGTCGAGCGCCTGCGACGCTCCGACGTGCGCAGCATCGACGCGGCTGTCGACATTACCAACTATGTAATGCTTGAGCTGGGTCAGCCGCTGCACGCATTCGATCTCGCCGAAATCAACGGCGGCATCCGCGTGCGCATGGCTGAAGAAGGTGAAAAGCTGGTGCTGCTCGATGGCCAGGAAGTGGCCTTGCGCAGCGATACGCTGGTGATTGCCGACCATACCCGCGCCCTGGCGATTGCAGGCGTGATGGGCGGCGAGCACAGTGGCGTCTCCGCCACCACCCGTGATGTATTCCTTGAAAGCGCCTTCTTCGACCAGATCGCCGTCGCCGGCAAGGCTCGTTCCTACGGCCTGCACACTGACGCCTCGCACCGCTATGAGCGTGGCGTGGATTGGCAACTGGCCCGTGAAGCCATGGAGCGCGCCACTGGCCTGCTGCTGGAAATCACCGGTGGCGAAGCCGGCCCGATCATCGAAACCGTCAGCGAACAGCACCTGCCGAATATCGCGCCGGTGACGCTGCGTGCCCAACGCATCACCCAGATGCTAGGCATGGAAATGGCCCCGGCCGAAGTCGAGCGTCTGCTCAACGCCTTGGGCCTGACCGTCCGGGCCGAGGGGGAAGGGCAGTGGCAGGTCGAAGTGCCAAGCCATCGCTTCGATATTAGCCTGGAAGTCGATCTGATCGAAGAGCTGGCCCGCTTGTACGGCTACAATCGCCTGCCGGTCCGCTATCCCCAGGCTCGCCTGGCCCCGCAAGCCAAGGCAGAGGCCCGCAGTGACCTGCCGGAGCTGCGTCGCCTGCTGGTGGCTCGTGGGTATCAGGAAGCGATCACCTACAGTTTCATCGATCCGCGTCAGTTCGAATTGTTCAGCCCAGGTGTTGAGCCACTGCTGTTGGCCAACCCGATCTCCAATGACATGGCCGCGATGCGCTCGTCCCTGTGGCCGGGCCTGATCAAGTCGCTCCAGCACAACCTGAATCGCCAGCAGGACCGCGTACGCCTGTTCGAAAGCGGCCTGCGTTTTGTCGGTCAGTTGGACGGCCTGAAGCAAGAGCCAATGCTGGCCGGTGTCGTTTGCGGCAGCCGCCTGCCGGAAGGCTGGGCCCAAGGTCGTGATGGCGTGGATTTCTTCGACGTCAAGGCCGACGTGGAAGCGGTGCTGGGCTTTGCTGGTGCGCTCGGCGCGTTCACCTTCGTGCCTGGCAAGCATCCGGCGTTGCACCCGGGTCAGACCGCGCGCATCGAGCGAGACGGTCGTGAAGTCGGTTATGTCGGCGCGATCCACCCTGAGTTGTCGAAGACGCTGGGTCTTGATCGCCCAATCTTCGTTTTCGAGCTGGTCCTGGCTGAAGTCGCCCAAGGAAAAATGCCGAAATTCCAGGAGTTATCGCGCTTTCCTGAAGTGCGTCGCGACCTTGCCTTGATAGCCGATGTCGGCGTTGCATCCAGTGCCGTACTGGCAGTAATCCGTGAAAATGCAGGCGAATGGCTGACGGACCTCAGGCTATTTGACGTGTATCAAGGTAAAGGCATTGATCCGCATAGAAAAAGCCTTGCAGTCGGCTTGACCTGGCAGCATCCATCGCGCACTCTTAATGACGATGAGGTGAATACCGCAACGCAGAATATCCTCACCTCGCTCGAACACAGGTTGAACGCCACGTTAAGGAAGTGA	MKFSEQWLRGWVSPQVSQDELVARLSMAGLEVDSVTPAAGAFSGVVVGEVLSTEQHPDADKLRVCQVSSGGETFQVVCGAPNVRPGLKIPFAMIGAELPGDFKIKKAKLRGVESNGMLCSQAELQVGEGNDGLMELPADAPVGKDFREYLGLDDASIEVDLTPNRGDCLSVAGLAREVGALYATPVTRPVVASVPAVHDEVRPIEVLAPSACPRYLGRVIRNVDLSKPTPLWMVERLRRSDVRSIDAAVDITNYVMLELGQPLHAFDLAEINGGIRVRMAEEGEKLVLLDGQEVALRSDTLVIADHTRALAIAGVMGGEHSGVSATTRDVFLESAFFDQIAVAGKARSYGLHTDASHRYERGVDWQLAREAMERATGLLLEITGGEAGPIIETVSEQHLPNIAPVTLRAQRITQMLGMEMAPAEVERLLNALGLTVRAEGEGQWQVEVPSHRFDISLEVDLIEELARLYGYNRLPVRYPQARLAPQAKAEARSDLPELRRLLVARGYQEAITYSFIDPRQFELFSPGVEPLLLANPISNDMAAMRSSLWPGLIKSLQHNLNRQQDRVRLFESGLRFVGQLDGLKQEPMLAGVVCGSRLPEGWAQGRDGVDFFDVKADVEAVLGFAGALGAFTFVPGKHPALHPGQTARIERDGREVGYVGAIHPELSKTLGLDRPIFVFELVLAEVAQGKMPKFQELSRFPEVRRDLALIADVGVASSAVLAVIRENAGEWLTDLRLFDVYQGKGIDPHRKSLAVGLTWQHPSRTLNDDEVNTATQNILTSLEHRLNATLRK				NA	NA	NA	NA	NA
D1-36_01880	303	ihfA	COG0776	Integration host factor subunit alpha	ATGGGGGCTCTGACGAAAGCTGAGATGGCGGAACGTCTGTATGAGGAGTTGGGCCTGAATAAACGGGAGGCCAAAGAATTGGTCGAACTGTTTTTCGAAGAAATCAGGCACGCTCTCGAAGACAACGAGCAGGTCAAATTGTCCGGATTCGGCAATTTCGACCTTCGGGACAAACGCCAGCGGCCTGGCCGCAATCCGAAAACGGGAGAAGAAATCCCGATCACGGCTCGCCGTGTGGTCACCTTTCGTCCAGGGCAGAAGTTGAAGGCCCGAGTTGAGGCTTATGCTGGAACCAAGTCATAA	MGALTKAEMAERLYEELGLNKREAKELVELFFEEIRHALEDNEQVKLSGFGNFDLRDKRQRPGRNPKTGEEIPITARRVVTFRPGQKLKARVEAYAGTKS				NA	NA	NA	NA	NA
D1-36_01881	357			hypothetical protein	ATGCTGGAACCAAGTCATAACGACGAACTACCCGTCATCCCGGGCAAACGCTACTTCACCATTGGTGAAGTCAGCGAGCTGTGTGCGGTTAAACCGCACGTGCTGCGCTATTGGGAGCAGGAGTTTCCTCAACTCAACCCGGTCAAGCGCCGCGGAAACCGACGGTATTATCAGCGCCAGGACGTGCTGATGATCCGGCAGATCCGCGCGCTGCTGTACGACCAGGGGTTCACCATCGGCGGAGCGCGCCTGCGCCTCTCCGGTGACGAGGCCAAGGACGATACAACCCAGTACAAACAGATGATCCGCCAGATGATCGCCGAGCTCGAAGATGTACTGGTGGTGCTCAAGAAATAA	MLEPSHNDELPVIPGKRYFTIGEVSELCAVKPHVLRYWEQEFPQLNPVKRRGNRRYYQRQDVLMIRQIRALLYDQGFTIGGARLRLSGDEAKDDTTQYKQMIRQMIAELEDVLVVLKK				NA	NA	NA	NA	NA
D1-36_01883	876	yjiE_2		HTH-type transcriptional regulator YjiE	TTGGAACTCGTTTGGCTCGAAGACCTTTCAGCACTCGCGGAATATGGGAGCTTCGTTCGGGCGGCTGAAGCGCGGCACGTCACTCAGCCAGCGTTCAGTCGCAGAGTGCGCTCGTTGGAAAATTGGATGGGCGTACAGCTGTTCATCCGCACGCCTCATGGCGCGACGCTGACCGAAGCGGGGAGGCAGATATTGCCGAGCGCCCAGGAAGCCGCGCGGCGCTTGTACCGAATGCGCAACGAGGCTCAGGAAGTGGCGGGAATGGCCGCCAGATCATTGCAGTTCGCTGCAACCCATTCCCTGTCGTTTACCTTTTTCCCAAGATGGCTCCGCGGCGCAGAACACGGCGCCCCCATCGAGGCCGTGCAGTTGCATTCAGGTAGCATGGCCGTCTGTGAGCAAATGCTGATACACGGACAGGTTCAGTTTCTGCTCTGTCACCGCCATCCCGACGTTCCTCCGTTGCTGGCGCCTGACCAGTTCACGGGTAAGAAAGTTGGCGAAGACGTCCTGGTTCCCCTGGCGAGTGCTTCTGCCAACTTTGGTACCTCCCCAGCGGCACTGCCCTACCTCGCCTACACCCATGAATCAGGATTGGGGCGCATCGTTGCTCATCGATTGCAGGGCAAGGAAGACTACCTCCACCTCAAGCCCCTCTTCAGCAGCCACCTCGCGGCGGTGCTGATGTCGATGGCGCTGGAAAGCAAAGGAGTCGCATGGCTACCCAAAAGCCTCACCGAGCAGGAGATCCTGGACGGGCGCTTAGTCAGGGCATTGGACGAGAGTTGGGATATCCCACTGGAAATTCACCTGACCCGCCCGACGGCGCCACTCAGCCAATCCGCAGAAGAGTTCTGGTCCAGGGTGGGCGTCTAG	MELVWLEDLSALAEYGSFVRAAEARHVTQPAFSRRVRSLENWMGVQLFIRTPHGATLTEAGRQILPSAQEAARRLYRMRNEAQEVAGMAARSLQFAATHSLSFTFFPRWLRGAEHGAPIEAVQLHSGSMAVCEQMLIHGQVQFLLCHRHPDVPPLLAPDQFTGKKVGEDVLVPLASASANFGTSPAALPYLAYTHESGLGRIVAHRLQGKEDYLHLKPLFSSHLAAVLMSMALESKGVAWLPKSLTEQEILDGRLVRALDESWDIPLEIHLTRPTAPLSQSAEEFWSRVGV				NA	NA	NA	NA	NA
D1-36_01884	1170	tarD	COG4948	D(-)-tartrate dehydratase	ATGCGCATCGTCGATATTCGTGAAAAAACCGTTTCCATTGCGTCCCCAATCGCCAACGCCTACATCGACTTCTCCAAAATGACCTGCTCGGTCGTCGCTGTGGTCACGGATGTGATTCGCGATGGCAAACCCGTGATCGGATACGGTTTCAACTCCAATGGCCGCTACGGCCAGGGTGCCCTGATGCGTGATCGTTTCCTGGCGCGTGTCACCGAAGCTGAGCCCGACACCCTTGTCGATCATGAAAACAACAACCTGGATCCGTTCGCGATCTGGAAGACCCTGATGACTAACGAGAAGCCAGGCGGACACGGAGAGCGCTCCGTCGCAGTTGGCACCATCGACATGGCCGTATGGGATGCCGTCGCCAAGATTGAAGGCAAACCGCTCTATCGTCTGCTGGCTGACCGCTACCGCAATGGCGTGGCGGATGACAAGGTCTGGGTCTATGCAGCGGGTGGCTACTACTACCCTGGCAAGGACCAGACAAAGCTCAAGGCGGAAATGCAGAGCTATCTGGATCGTGGCTACGATGTGGTCAAGATGAAGATCGGTGCGGTGCCACTGGACGAAGACATCCGTCGCATCGAAGCGGTACTTGAAGTGGTGGGGGACGGTCGTCGATTGGCGGTCGACGCCAATGGTCGCTTCGATCTTCAGACGGGAATCGCTTACGCGGAAGCCATCAAAAAGTACAACCTCTTCTGGTACGAAGAGGTCGGTGATCCGCTTGACTACGCATTGCAGGCTGAGCTGGCCAATCACTATGAATTGCCCATGGCCACCGGTGAAAACCTGTTCTCCCACCAGGATGCTCGCAACTTGTTGCGCCACGGTGGCATGCGGCCCGATCGCGACTTCCTCCAATTCGACTGCGCACTGTCTTATGGCCTCGTGGAATACCTGCGCACCCTTGAAGTCATGGAAGAGCTGGGCTGGTCTTCCCGTCGCGTAGTGCCCCATGGCGGTCACCAGATGTCCCTGAACATCGCAGCCGGCCTGCACCTGGGCGGTAACGAATCATACCCAGACGTGTTCCAGCCATTCGGTGGGTTCGCCGATGGGATCAAGGTGGAAAACGGCTACGTCGGTCTGCCGGATATTCCGGGTGTGGGATTCGAAGCCAAATCTGCCTTGTATGCAGTCATGCGTGAGCTGGGCGAAGGCTGA	MRIVDIREKTVSIASPIANAYIDFSKMTCSVVAVVTDVIRDGKPVIGYGFNSNGRYGQGALMRDRFLARVTEAEPDTLVDHENNNLDPFAIWKTLMTNEKPGGHGERSVAVGTIDMAVWDAVAKIEGKPLYRLLADRYRNGVADDKVWVYAAGGYYYPGKDQTKLKAEMQSYLDRGYDVVKMKIGAVPLDEDIRRIEAVLEVVGDGRRLAVDANGRFDLQTGIAYAEAIKKYNLFWYEEVGDPLDYALQAELANHYELPMATGENLFSHQDARNLLRHGGMRPDRDFLQFDCALSYGLVEYLRTLEVMEELGWSSRRVVPHGGHQMSLNIAAGLHLGGNESYPDVFQPFGGFADGIKVENGYVGLPDIPGVGFEAKSALYAVMRELGEG				NA	NA	NA	NA	NA
D1-36_01885	1308	dctA	COG1301	Aerobic C4-dicarboxylate transport protein	GTGGAAAATTCCAAGTCCCGCTGGTATAGCCAGCTGTACGTGCAAGTGCTGATCGGTATCGTGATTGGCGCAGCAATCGGTTACTTCGTTCCTGATATCGGAGCCAAGCTCCAACCCTTTGCCGATGGCTTCATCAAACTGATAAAGATGCTATTGGCACCCATTATTTTCGGCACTGTCGTGGTCGGCATAGCGAAGATGGGCAACATCAAGGAAGTCGGTCGGATCGGTGTGAAGGCATTGATCTACTTCGAAATCCTGTCCACCATTGCTCTGGTTGTCGGTCTTATCGTCGTCAACATCGTGAAGCCTGGCGTGGGTATGAACATCAATGCCAGCGCGCTTGATGCAAGTGCTATTGGCAAATACAGCCAAGTTGCGAATGAACAGGGCGGCACCGTTGAGTTCTTCCTCAATATCATCCCGCAGACTTTCATTGGTGCGTTCTCCAATGGCGTCATGCTTCAGGTCATCCTGCTTTCGGTATTGATGGGAGTTGCCCTGGTTCAAATGGGCGAAACCAGCAAGCCGTTGATCAATACCATTGACCTGTTCTTGCAAGGCCTCTTCAAAATAGTTGCGATGGTCATGCGCTTGGCGCCGATTGGTGCTGGGGCCGGTATGGCATTCACTATCGGCAAATACGGAATTGGGACCTTGTTCTCACTCGGACAACTGCTTGTCGCGCTCTATGTCACGACGTTGATATTCATCGTGGTCGTGCTGGGTACGGTGGCGAGATGGTCGGGCATGCCGCTGCTGCAATTTCTGCGTTATTTCAAGGATGAAATCCTCATCACGCTGGGCACCTGTTCAACCGAGGCTGTGTTGCCGCGAATGATGGTGAAGCTTGAAAAGCTTGGCTGCAAAAAATCAGTAGTGGGGATGGTGCTGCCTACGGGGTATACCTTCAACGCTGACGGCACTTGTATCTATCTCACCATGGCCGCCATTTTTATTGCCCAAGCCACCAATACGCCGCTGACTTTCGTGGACCAAATGATCCTGCTTGGTGTGTTCCTGCTGACGTCCAAAGGCTCGGCTGGCGTGGCGGGCGCTGGGTTTGTGACATTGGCGGCAACGCTCACGACCATCCACTCCATCCCGTTGGTAGGCCTCGTTTTGCTCTTGGGGATTGACCGGTTCCTGAACGAAGCGCGGGCTGTGACCAACCTCATTGGCAACGGCATCGGCACCATCGCCATTGCCAAGTGGGACAACTCTTTCGACGTCGAGGCCTGCGAGCGTGAAATCGCCGCAATGAAGCAAGACAAGGCTGCGAGAAAGGCATTGTTGGCGCAAAAATAA	MENSKSRWYSQLYVQVLIGIVIGAAIGYFVPDIGAKLQPFADGFIKLIKMLLAPIIFGTVVVGIAKMGNIKEVGRIGVKALIYFEILSTIALVVGLIVVNIVKPGVGMNINASALDASAIGKYSQVANEQGGTVEFFLNIIPQTFIGAFSNGVMLQVILLSVLMGVALVQMGETSKPLINTIDLFLQGLFKIVAMVMRLAPIGAGAGMAFTIGKYGIGTLFSLGQLLVALYVTTLIFIVVVLGTVARWSGMPLLQFLRYFKDEILITLGTCSTEAVLPRMMVKLEKLGCKKSVVGMVLPTGYTFNADGTCIYLTMAAIFIAQATNTPLTFVDQMILLGVFLLTSKGSAGVAGAGFVTLAATLTTIHSIPLVGLVLLLGIDRFLNEARAVTNLIGNGIGTIAIAKWDNSFDVEACEREIAAMKQDKAARKALLAQK	PGPT0001450_1723	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_ASPARTATE_TRANSPORT,PGPT0001450-dctA-K11103	NA	NA
D1-36_01886	762	ygfF_1		putative oxidoreductase YgfF	ATGGCTGACATCCCGCAGGCGCCCTTGATCCTGATAACCGGTGGAAGCCGCGGCGTGGGTGCCGCCACCGCTCGGCTGGCCGCCGCACAAGGCTACGACGTCGCCATCAGCTATATCGCCAACGAGACCGCGGCACTGACCGTGGTGGCGGATGTGGAGGCATTGGGACGGCGCGCGCTGGCCATGCGCGCCGACAGCTCGGACCCCAAGCAGGTAGCCGATCTATTCGCAGCCATCGACCGCTCGTTCGGACGCATCGACGTCCTGGTCAATAACGCTGGGGTACTGTCGGCTCAGTCACGCCTGGAGGACCTCGGCTTCGAGCGCATGCAGCGCATCTTTGCAGTCAATTCCATCGGCCCGATTCTCTGCGCCCAGCAGGCAGTGAAACGCATGTCCCACCGGCACAACGGCCCCGGCGGAGTCGTGATCAATATCTCCTCGGCATCGGCGCGCCTCGGCAGCCCCAATGAATACGTCGACTATGCGGCATCAAAGGGAGCATTGGAGACGTTCACCATCGGGTTCGCCAAAGAGGTGGCCCGAGAAGGCATACGCGTCAACTGCATCCGCCCCGGGCATATCTACACCGAAATGCATGCCAGCGGCGGCGAGCCGGGACGGGTCGATCGGGTCAAGGATTCCATCCCCATGGGGCGTGGCGGTCAGCCGGAGGAAGTGGCGCGGGCCATTCTATGGCTGGCCAGCGCGGAGGCGTCGTTTGTGACCGGGACATTTCTTGATGTGACGGGGGGCAAATGA	MADIPQAPLILITGGSRGVGAATARLAAAQGYDVAISYIANETAALTVVADVEALGRRALAMRADSSDPKQVADLFAAIDRSFGRIDVLVNNAGVLSAQSRLEDLGFERMQRIFAVNSIGPILCAQQAVKRMSHRHNGPGGVVINISSASARLGSPNEYVDYAASKGALETFTIGFAKEVAREGIRVNCIRPGHIYTEMHASGGEPGRVDRVKDSIPMGRGGQPEEVARAILWLASAEASFVTGTFLDVTGGK	PGPT0003180_12326	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
D1-36_01887	879			hypothetical protein	ATGAGGAGACTTCTCTGTCGCCCGGCCGTCGCGCTGCCTAGAATGGCGACCATGCCTACCCATATCGTCCTGCTGGTCCTGTTCGCCGCGCTCCTGCATGCCAGCTGGAATGCCTTGCTGCGTGGCGGCGCCGATCGACTCTGGTCAATGACGGTCATGTGTATCGTCATCGCCATCGTCTGTGCCATCGCCGCGATATTCATGGTGCCACCGGCGCCGGCCAGCTGGGGCTATGGGTTGCTTTCGGCGTTGCTGCACGTGGGCTACAACCTGTTTCTGGTGCGCAGCTACCGGGTCGGCGACTTGGGGCAGATCTATCCGATTTCCCGCGGATCGTCACCGGCGTTGATCACCCTGGGGGCGGCGATCTTTGCCGGAGAAAACATTACCCCCGGTGAGCTGCTCGGTATCGGCCTGGTGTCCGGCGGCATCATTTCCCTGGCCTTCCGTGGACGCAGCCTGTCGGTTCCCAGCCTGCCTTATGCGCTGGGAACGGGTTGCTTCATCGCAGCCTATAGCGTCATCGACGGCATGGGCGCCAGGCTTTCCGGCGCGCCGCTCGCCTACACGGTGTGGATGTGCGCCGCGTGGGGTGTGCTGACGCCTCTCGTGTACATCGGCCTGCGCGACGCCCGCAGCTTATTCTCCGTCCGGCCCGGGATACTCGCCGCGTCGGTCGGCGGGCTGGTCTCGCTGATCGCCTATGCAATTGTCATCTACGCCATGAACGAAGCGCCTCTGGGCGCGGTATCGGCATTGCGCGAGACCAGCGTGTTGTTCGCGGTATTGATCGGCTACCTGTTTCTTGGCGAGACGCTCACCGCCCGCCGGGTCTTGGCGTGCACCGTGATCGCCAGCGGCACCTTCATCATCGGCTGA	MRRLLCRPAVALPRMATMPTHIVLLVLFAALLHASWNALLRGGADRLWSMTVMCIVIAIVCAIAAIFMVPPAPASWGYGLLSALLHVGYNLFLVRSYRVGDLGQIYPISRGSSPALITLGAAIFAGENITPGELLGIGLVSGGIISLAFRGRSLSVPSLPYALGTGCFIAAYSVIDGMGARLSGAPLAYTVWMCAAWGVLTPLVYIGLRDARSLFSVRPGILAASVGGLVSLIAYAIVIYAMNEAPLGAVSALRETSVLFAVLIGYLFLGETLTARRVLACTVIASGTFIIG				NA	NA	NA	NA	NA
D1-36_01888	906	gcvA_6		Glycine cleavage system transcriptional activator	ATGAGAGACCTGCCGCCGACCGCCACATTGCGTGCCTTTGAAGTCGCAACCCGACACCCCACGTTCACCGCGGCCGCGCAGGAGCTGCACGTGACGCAGAGCGCAGTCAGTCACCAGCTCAAGCACCTGGAGGCGCTTTGGGGGTTGCAGTTGTTCGAGCGTGGCAAGTCACTGACCCTCACGGCAGCGGGGGCTACGCTGGCGCCCATCGTGCGGGAATTTTTCATGAGCCTGGAAGCGACCCTGGGCGATCTGCGCGAGCAGAAAGGCAGGGTCAGGCTCGAAGTCAGCACCACGTATTCCTTCGCGCTGAAATGGCTGCTGCCGCGCTTGCCGGGGCTTTCCCGCCATTATCCGGAACTGTTGGTCGCGCTGGACACCACCGATAAGATCATCCATTTCTCCAACGCCCAAGCCGATGTTGCGATCCGGCTTGGCAAAGGCAACTATCCCGGCCTGTATTCGGAGTTCCTGTTCGGCGAGCAGGTGTTTCCGGTGGCGAGCCCCGATCTGCTGCAGCGCTTGGGCATGCCACATAGCCCCGCCGAACTGCTGCATTACCCGCTGCTGACCCGTGACGGCGCCGAGCTGGTACCAAAATGGGAGGACTGGTTTCAGAAGGTTGGGTTGGAATTGTCGCCGCTCAAGGAGAGCGTCAGGTTCGGCGACACCAACATGACAGTGGAGGCCGCGTTGCTCGGCCAAGGTGTTGCCTTGGTGCGTAGCGGCCACGTTGAAACCGAAATCAGCGACGGCCGCCTGGTGCGGCTGTTCGATGTGCCGTTTGCGTCACCGCTTGCCTATTATTTTGTCTGTCCCAAGGGCATCGAATCGCAACCGCACATCGTCAGCTTCCGCCAATGGCTGGCCAGCGAGGCGTTGAAGGTTCAACACGTCTACGACTGA	MRDLPPTATLRAFEVATRHPTFTAAAQELHVTQSAVSHQLKHLEALWGLQLFERGKSLTLTAAGATLAPIVREFFMSLEATLGDLREQKGRVRLEVSTTYSFALKWLLPRLPGLSRHYPELLVALDTTDKIIHFSNAQADVAIRLGKGNYPGLYSEFLFGEQVFPVASPDLLQRLGMPHSPAELLHYPLLTRDGAELVPKWEDWFQKVGLELSPLKESVRFGDTNMTVEAALLGQGVALVRSGHVETEISDGRLVRLFDVPFASPLAYYFVCPKGIESQPHIVSFRQWLASEALKVQHVYD	PGPT0026360_4261	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566	NA	NA
D1-36_01889	609	rhtB_3	COG1280	Homoserine/homoserine lactone efflux protein	ATGCCATTTGAGACTTGGTTGCTCTATCTGCTCACCTGCTGCGGCATTGCGGTAGCGCCAGGCCCCAATGCGTTGTTGGCGCTTACCCATGGGGCAATCCATGGAACCCGCAAGACGTTGTTCACTATCGCAGGCGGCGTACTCGGCTTTTCAGTCGTGCTTTCGCTTTGCGCATTGGGGCTGGGTGCGCTGATCCAGGCATCCGCCACTTGGTTCACGGCACTGAAGATCGTTGGCGGGCTCTACCTGATCTGGTTGGGCTTCGGTCTGTGGCGATCCCCGCCCGTCAGTCTCGACGCGACGAGTAACGAAGGCTTTCGACGGTGGTCGCTGTTCCGCCAAGGCTTGGTATCGGCCATCTCCAATCCCAAGGCGCTGCTGCTGTTCACCGCGTTCATCCCGCCCTTCCTTGATCCGCACCGCAATATCATTGCGCAGACACTCACCATTGCGCTGACTTACGCCGTGGTCGAATTCATCGTTGAATACTTTGTCGCCAGCGCAGCTCACCGGGTCAGGCCTTGGCTGGCTCGAACCGGGCGCCGGTTCAACAAAGTCTGCGGTGGCTTTTTTGTGGCTTTTGGGGTGAGCTTGCCCATTCATAGCTGA	MPFETWLLYLLTCCGIAVAPGPNALLALTHGAIHGTRKTLFTIAGGVLGFSVVLSLCALGLGALIQASATWFTALKIVGGLYLIWLGFGLWRSPPVSLDATSNEGFRRWSLFRQGLVSAISNPKALLLFTAFIPPFLDPHRNIIAQTLTIALTYAVVEFIVEYFVASAAHRVRPWLARTGRRFNKVCGGFFVAFGVSLPIHS	PGPT0021036_1207	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QUORUM_SENSING_RELATED_GENES	CE-QSR-PUTATIVE_TRANSPORTER,PGPT0021036-rhtB-K05834	NA	NA
D1-36_01890	783			hypothetical protein	ATGACCACTCGCAAAACCGTCCTCATCACTGGCGCTTCCACCGGTATCGGCGCTGTCTATGCCAAGCGCTTTGCCCAACGCGGCCACGATCTCGTGCTGGTGGCCCGTGACAACGCCCGGCTGGAAGCATTGGCAACCGAGCTGCGCAACGAACACCATATTACCGTCGATGTGCTCCAGGCCGACCTCACCCAATCCGCTGACTTGAACCGGGTCGAAGCGCGCCTGCGAGATGACGACCGTATCGGCATCCTGATCAACAACGCGGGCGCGGCCCAATCCGGCAGTTTTATCGAACAGACCACCGACAGCGTCGCGCACCTGGTTTCGCTCAACACCACCGCGTTGGTACGGCTCGCCAGCGCCGTCGCTCCACGCCTGGCAAAGGCCGGCGACGGCGCGATCATCAATATTGGCTCGGTGGTCGGCTTGGCGCCGGAATTCGGCATGTCGGTATATGGCGCGACCAAGGCATTCGTGTTGTTCCTCTCCCAGGGGCTCAGCCTCGAACTCAACCCCAAGGGCGTCTACGTCCAAGCCGTCCTGCCGGCGGCTACCCGGACCGAAATCTGGGAACGCGCGGGCATCGACGTCAATACGCTGAGTGAAATCATGGAAGTGGACGATCTGGTCGACGCGGCGCTGATCGGCTTCGATCGTCGCGAACCGGTGACCATTCCGCCACTGCAGGACGGCGCTCGCTGGGATGCGTTGCAGGCCGCGCGCCAAGGGTTGCTGGGGCAGATCAAGCAATCGGCGGTGGCTGAGCGGTACAAGGCCTGA	MTTRKTVLITGASTGIGAVYAKRFAQRGHDLVLVARDNARLEALATELRNEHHITVDVLQADLTQSADLNRVEARLRDDDRIGILINNAGAAQSGSFIEQTTDSVAHLVSLNTTALVRLASAVAPRLAKAGDGAIINIGSVVGLAPEFGMSVYGATKAFVLFLSQGLSLELNPKGVYVQAVLPAATRTEIWERAGIDVNTLSEIMEVDDLVDAALIGFDRREPVTIPPLQDGARWDALQAARQGLLGQIKQSAVAERYKA	PGPT0030485_2515	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-OXIDOREDUCTASE_ACTIVITY	PUTATIVE-OXIDOREDUCTASE_ACTIVITY-1,PGPT0030485-yqjQ-K07124
D1-36_01891	570			hypothetical protein	ATGAGAGTGACTAAGGCTCAGGCACAGGCAAACCGGCAACATATCGTCGAGACGGCGTCTGTTCTGTTTCGTGAACGTGGCTTTGACGGCATCGGTGTGGCGGACCTGATGGCCGCCGCCGGCTTCACTCACGGTGGTTTCTACAAGCATTTCGGTTCGAAAGCCGACCTGATGGCGGAAGCCGCCGCAGACAGTCTTTCGCGCTCATTGACCAGCGCAAGCAAACTGGATGTCGCGGGTTTTTTCGCCATGTATGTCTCGCGCGAGCACCGCGATGCGCGGGGCAACGGCTGCACGATGGCGGCATTGTGCGGCGACGCGGCGCGTCAGGACGATGAGGTGAAAACCACGTTTGCCACTGGATTGGAGGGCACCCTGGCTGCACTGGAGGAAAAGCTCGGGGCGACAGAAGAAGGGGGCCGGGCAGCGATGATCAACCTGTTCGCCCAGGCCGTCGGCGCAGTCATGCTGTCGCGGGCCTGTCCGGATGATGCTCCGTTGGCGGATGAGATACTGCAAGTCTGCCGTGATCGGATCCTGGCGTTATTGCCCGCGTCCGAACCCGTGTAA	MRVTKAQAQANRQHIVETASVLFRERGFDGIGVADLMAAAGFTHGGFYKHFGSKADLMAEAAADSLSRSLTSASKLDVAGFFAMYVSREHRDARGNGCTMAALCGDAARQDDEVKTTFATGLEGTLAALEEKLGATEEGGRAAMINLFAQAVGAVMLSRACPDDAPLADEILQVCRDRILALLPASEPV				NA	NA	NA	NA	NA
D1-36_01892	264			hypothetical protein	ATGACAGACATATATCTGCTGATAGCGAGCGGTACGGACCAGAGCGATGCGTACGTCCTGGGTTGGTTCGATGACCGAACCAAGGCCCGGGAAGTGGCCGAGCAGAAGGAATGGGAAGCTTATCGAGCCAGTCTGAAGGCGGAACACCCTTGGTCAAGCCATAAACCACTGGCACCGGACAAGACCGAATACCGGCGCTACTGGATCAAGACCGTTTCGAAATTCGAACACGTTTCCATCCCGAGGTCCCTCGCGGTGCACTGA	MTDIYLLIASGTDQSDAYVLGWFDDRTKAREVAEQKEWEAYRASLKAEHPWSSHKPLAPDKTEYRRYWIKTVSKFEHVSIPRSLAVH				NA	NA	NA	NA	NA
D1-36_01893	702			hypothetical protein	ATGCCCCAGGTGGGAAAGGCGCGTGGCAAGGCCCAGGACGCAGGTTGGCGAGGGTCGCCCGAAGGGTGGCTGGAAGCGGCCTATGAGGCTTTGAAGGAGTCCGGCATCGATGCGGTCCGGGTCATGCCGTTGGCCAAACGCCTAGGTTTGTCACGCACCAGCTTCTATTGGTTTTTCGAGGATCGCGAACAGTTGCTGGCGGCCTTGCTGTCGCGCTGGCGCGAAACCAACACCGGGGGTTTGATCCGGCAAAGCGAAAGCTACGCCGAGAGCATCTCCGAGGCGATCCTGAATGTTTTTGAATGTTGGCTCAATCCGCGATTGTTCGATTCTCAGTTTGAATTTGCGGTGCGCAGTTGGGCGCTCCAGTCCGCAGACGTCGCGCAACAGGTCGCCATTGTCGACGAGCAACGTATGGGCGCCCTGGCAAGCATGTTCAAGCGCTTCGGCTACGACAGCCAGGGGGCCGACGCACGGGCTCGGACGATTTATCTGACGCAGATCGGCTACATCACCATGAACACCAGCGAGCTGATCACCGTGCGCTTCCAGCGCATCCCGCATTACGTGAGCATTTTCACCGGCAAGGTGCCCAAGCAGCGTGAGCTGGATCGGTTTTATGGCAAATTCGGCTATGCCGAAAAAGAGTCAGGGGTGTTCGTGCCGCTGATGGAAACCTTTGAAGAAACGGCTGAAAAATGA	MPQVGKARGKAQDAGWRGSPEGWLEAAYEALKESGIDAVRVMPLAKRLGLSRTSFYWFFEDREQLLAALLSRWRETNTGGLIRQSESYAESISEAILNVFECWLNPRLFDSQFEFAVRSWALQSADVAQQVAIVDEQRMGALASMFKRFGYDSQGADARARTIYLTQIGYITMNTSELITVRFQRIPHYVSIFTGKVPKQRELDRFYGKFGYAEKESGVFVPLMETFEETAEK				NA	NA	NA	NA	NA
D1-36_01894	786	proC_1		Pyrroline-5-carboxylate reductase	ATGAATGAAGTGACGCTGGGAATCGTCGGCGGAACGGGGTGGTTGGGCGCGGCGATTGCCAAGGCCGTGTTGGCGAAGGCCTGGTTGCCGGCGGGTAATCTGATTATTTCCAATCGCTCAGGTGCCCATCCATTGGCGAAGCAAGGCGTTTGCCTGGTCACCGATAACCAGGCACTGGCGGATCGCAGCGACGTCATCATCATCGCAGTAAGACCCGAGCAATTCGCCAGCCTGACCCTCGACGCATCGGGCAAGACGGTGATCTCATTGATGGCCGGGATCACGGCGCAGGCAATCGCCGCACGGACCTTGGCCTCAAGAGTCGTGCGGGCGATGCCCAACGCGGCGGTGGAAATCGGGCAGTCCTTTACGCCTTGGTATTGCGCTGGCGCGGTGGAACCGATGACGAAGACCCTCATTCAGCAGTTGTTCGAATGCGTGGGCACTGCCGCAGAGGTCCAGCAGGAAGACTTTATCGATTATCTCTCCGCGCTTTCGGGCACCGGCCCGGCCTTTCCTGCCTTGTTGATGACAGCGTTGGCGAGTCAGGCGATGGCAGCCGGTATCCCCGGCGAGATTGCGCAGCTTGCCGCAAGCAATGTCGTGATCAACAGCAGCCAGTTGCTGGCCACCCGCGACGCCCAGCAAATGATCGATACTCTGGTTGCCTACCGCGGCGTGACAGCCGCCGCGTTGCAATCAATGACCCAGGGGCATTTCGAGGCGCAGGTGGGAAGGGCATTGCAAGCGGGCGCCGCCGTGGCGCGCAAAGGGCTTCAAACCTGA	MNEVTLGIVGGTGWLGAAIAKAVLAKAWLPAGNLIISNRSGAHPLAKQGVCLVTDNQALADRSDVIIIAVRPEQFASLTLDASGKTVISLMAGITAQAIAARTLASRVVRAMPNAAVEIGQSFTPWYCAGAVEPMTKTLIQQLFECVGTAAEVQQEDFIDYLSALSGTGPAFPALLMTALASQAMAAGIPGEIAQLAASNVVINSSQLLATRDAQQMIDTLVAYRGVTAAALQSMTQGHFEAQVGRALQAGAAVARKGLQT	PGPT0014225_5581	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_PROLINE_DEGRADATION,PGPT0014225-proC-K00286	NA	NA
D1-36_01895	2037	stcD_1		putative N-methylproline demethylase	ATGTCCAGCGATCCTCTGCTGCAGCCCTACAAAATCAAGCATCTGACGCTCAAGAATCGGATCATGACCACCTCGCATGAGCCCGCGTATCCCGTCGATGGCATGCCGAAGGATCTGTACCGTGCCTATCATGTCGAGCGGGCGAAGGCCGGCGTGGCGCTGACCATGACTGCCGGCTCCGCTGCCGTTTCTCGGGATAGCCCGCCGGTATTCAACAACGTGCTGGCGTACAAGGACGAAGTGGTCAAATGGATGAAAGACCTGACCGATGAGTGCCACGAACACGGCGCGGCGGTGATGATCCAGCTCACCCACCTGGGACGCCGCACGCGCTGGGACAAGGCCGACTGGCTGCCGGTTGTCTCGCCGTCCCATCGCCGCGAAGCGTCCCACCGGGCGTTTCCGAAAAAGCTGGAAGACTGGGACATCGACCGCATCATCAAGGATTACGTCGATGCCGCCGAGCGCATGAAAGCCGCGGGACTTGATGGCCTGGAGTTGCAGGCCTACGGGCACCTCATGGATCAATTCTGGTCGCCACTGACCAATGAGCTTGATGGGCCCTACGGCGGTTCCCTGGAAAACCGAATGCGCTTTACCTTCGATGTGTTGCGCGGTATCCGCCAGCGTTGCGGCGAGGACTTCCTCCTTGGTGTGCGCTACACCGGCGACGAGGATCTTCCCGGCGGTTTTGGTTTCAGCGACGGCATCCAGATTTCCCACATGCTCAAGGACAGCGGCCTGGTGGATTTCCTAAACGTCGTGCGCGGTCATATCGATACCGATGCGGGCCTCACCGACGTGATACCGATCCAGGGCATGCGCAACTCGCCGCACCTGGATTTTGCCGGGGAGATCCGCTCGGCAACCGGTTTCCCGACGTTCCATGCGGCCAAGATTCCGGACGTCGCCACGGCGCGACACGCCATCGCCTCTGGCAAGGTGGACATGATCGGCATGACCCGCGCCCACATGACCGACCCGCACATCGTGCGCAAGATCATCGAAAAACGTGAAGAAGAGATCCGTCCTTGCGTTGGCGCCAACTACTGCCTGGACCGTATCTATCAGGGCGGCGCGGCGTACTGCATCCACAACGCCGCCACCGGCCGCGAAACCACCATGCCCCATGAGATTCCCAAGGCATCGGTCAAGCGCAAGGTGGTGGTGATCGGCACCGGCCCGGCGGGCTTGGAAGCAGCACGGGTGGCCGGCGAACGCGGCCATGACGTCACGGTGTTCGAAGTGGCGGATCAGCCCGGGGGGCAGATCCGCTTGACCGCGCAAAGCGAACGGCGGCGCGAGATGATCAGCATCATCGATTGGCGCATGACGCAGTGCGAACGGCTGGGCGTAAGGTTCCACTTCAACACCTGGGCCGAAGCCGAGACGGTCCTGGCCGAAGAACCGGATGTGGTGATCGTTGCCACAGGCGGCTTGCCCCATACCGAGGTGCTCAAGCTAGGCAATGAGCTGGTGGTGTCGACCTGGGACATCATCTGCGGCGATGTCAAGCCTGGCCAGAACGTGCTGATCTTCGATGACGCCGGCGACCACGCGGCGCTCCAGGCCGCCGAGGTCATCGCCAACAGCGGCGCGAAACTGGAGATCGTCACGCCGGACCGGTCGTTTTCGCCGGAGGTGATGGCGATGAACCTGGTGCCGTACATGCGCAGCCTGCAAGACCTGAACGTCACGTTCACGGTCACGTATCGGGTCGACTCGGTGGAGCAACGCGACGGGCAGCTGGTTGCCCACTTCGGTAGCGATTACGGCCAGGTGCACAAGCAGCGCGTGGTCGATCAGGTGGTGGTCAACCATGGCACCCTGCCGCTGGACGATCTGTACTTCGAACTGCGCCCATATTCGAGCAACAACGGCGCGGTCGAACAGCACAACCTGATCGCAGGGAACCCCCAGAACATCGTGACCAACCCCGAGGGCCGCTTCCAGTTGTTCCGGATCGGCGACGCCGTGTCGGCGCGTAATACCCACGCGGCCATCTATGATGCGCTGCGGCTGGTCAAGGACATCTGA	MSSDPLLQPYKIKHLTLKNRIMTTSHEPAYPVDGMPKDLYRAYHVERAKAGVALTMTAGSAAVSRDSPPVFNNVLAYKDEVVKWMKDLTDECHEHGAAVMIQLTHLGRRTRWDKADWLPVVSPSHRREASHRAFPKKLEDWDIDRIIKDYVDAAERMKAAGLDGLELQAYGHLMDQFWSPLTNELDGPYGGSLENRMRFTFDVLRGIRQRCGEDFLLGVRYTGDEDLPGGFGFSDGIQISHMLKDSGLVDFLNVVRGHIDTDAGLTDVIPIQGMRNSPHLDFAGEIRSATGFPTFHAAKIPDVATARHAIASGKVDMIGMTRAHMTDPHIVRKIIEKREEEIRPCVGANYCLDRIYQGGAAYCIHNAATGRETTMPHEIPKASVKRKVVVIGTGPAGLEAARVAGERGHDVTVFEVADQPGGQIRLTAQSERRREMISIIDWRMTQCERLGVRFHFNTWAEAETVLAEEPDVVIVATGGLPHTEVLKLGNELVVSTWDIICGDVKPGQNVLIFDDAGDHAALQAAEVIANSGAKLEIVTPDRSFSPEVMAMNLVPYMRSLQDLNVTFTVTYRVDSVEQRDGQLVAHFGSDYGQVHKQRVVDQVVVNHGTLPLDDLYFELRPYSSNNGAVEQHNLIAGNPQNIVTNPEGRFQLFRIGDAVSARNTHAAIYDALRLVKDI	PGPT0021970_166	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_STACHYDRINE_USAGE	PLANT_DERIVED_STACHYDRINE_DEGRADATION,PGPT0021970-hpbA-K22551	NA	NA
D1-36_01896	900			hypothetical protein	ATGATGACGTTATCCAGTAAAAATTTTATCGGCTGGTTTGCAGGCCTTGCATTTGCCTGCGGCAGTCTGATCGCTCAGGCCGATGAACCCGCGCCCATCCGCATCGGCTGGGTGAACTGGTCGGATACGGAGATCGCGGTGAAACTGGCGAACACCGCGTTGCAGGATCACCTCAAGCAACCGGTCAAGTTGGTGCTGGCCGATATCGGCATCCAGTTCCAGGCCCTGGCCAACGGCAATATCGACCTGATCCCGATGGTCTGGCTGCCCAGTACCCACAAGTCGTTCTATGACAAGTACAAGGACAGGCTCGAAGACCTCGGCGTGCTGTACGAAGGCCGGATCGGCATGGCGGTGCCCACCTCCATTCCAACCAGCGAGATCGCCAGCGTCGAAGACCTCAACAAGCCTGAAGTGCGGGAGAAACTCGGCGGCAAGATCCTCACTTCGGAAGTGGGCAATGGTCAGTACAAGCTGACGGAAAAAGCCATCGAGCAATACAAGCTCGACGGCTACAAGATGGTCGCTTCTTCAGAGTCCGGGATGCTGAGTGAATTGGATCGCAACCTCAAGCGTGACAAATGGTCACTGATCAACGCCTGGAGCCCGCACTGGATGTTCGCCAAATGGCCGCTGCGCTACCTGGATGATCCGAAGCAGATTTTCGGTGGCGCTGAGCAGATCCACGCCTTCGCACGCAAAGGTTTCAGCGCGGAGCACCCTGATGTGGCCCGATTCTTCGCCAACTTCAAGATTCCGAAAGCGGACCTTGAGAAGTTGATGGCGGACGCCCGTGACAGCTCGGCGGACAAGGTGGTGGCAGAGTATTACGCAGCCAACAAACCGCGTTTCGAAGCGATGTTTGGCAGCCAGACGGCGTCCGCGACACCAGCCCAGTGA	MMTLSSKNFIGWFAGLAFACGSLIAQADEPAPIRIGWVNWSDTEIAVKLANTALQDHLKQPVKLVLADIGIQFQALANGNIDLIPMVWLPSTHKSFYDKYKDRLEDLGVLYEGRIGMAVPTSIPTSEIASVEDLNKPEVREKLGGKILTSEVGNGQYKLTEKAIEQYKLDGYKMVASSESGMLSELDRNLKRDKWSLINAWSPHWMFAKWPLRYLDDPKQIFGGAEQIHAFARKGFSAEHPDVARFFANFKIPKADLEKLMADARDSSADKVVAEYYAANKPRFEAMFGSQTASATPAQ	PGPT0013640_3238	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
D1-36_01897	807			hypothetical protein	ATGCTGATCTTTGCAGCTCAGGATGGGGTCACCAAAGTGCTGGTCAAGGAGCTCCCGATCGCACAATTGGTGATGGTGCGTTATTGGGTGTTCCTGGCTTTTGCTGTCGGTTATAGCGCCTATCAGGGCAGCCTATGGACCGCGTGCCGAAGCCGCCATCCCTACCAGCAGATCATTCGTGCGCTCATTGGCGTGGGTGAGAGCGCCTTGTTCGGATTGGGGCTGCGCTATCTGGGACTCGCTGAAATGCATGCCCTGTACGCGGTATTCCCCTTGATGACACTGGCGTTGGCGGGGGCGTTTCTAGGGGAGTTCATTGGCGTGCGTCGATGGGTTGCCGCCGCCATTGGCTTCACGGGGACGCTGGTTATCCTTCGTCCCGGCTCCAGTGTTTTCGAACTGGCGGCGCTGATTCCGCTGTTGTCTGCCTTGGGTTTTGCGATTTTCAGCGTGCTGACCCGACGAATCAGCCGGGGGGACTCGTTCGCGACGAACATGCTTCACATGGGTTTTTTCGGCGCGATAGCAATCACCTTGTTGGGTCTACCAGGTTGGGTAGCACCGAACCCGGCGCAATGGGGCCTGATAGGTGTGCTCTCCATGACCGGTGTGGTGGCCCAGCTGTTATTGCTTCAGGCGCTGAAGGTTGCAACGGCAGCCACACTTCAACCGTTCAATTATTCTCTTCTGGTGTTCGCTACGCTGATTGGCCTATTGGTATTCGGCGAGCTGCCCGACACATGGACAGTCGTAGGGGCCTGTCTGGTAATTGCCGGCGGGATGTATGCGATCAAGGCAAAAGGGTAG	MLIFAAQDGVTKVLVKELPIAQLVMVRYWVFLAFAVGYSAYQGSLWTACRSRHPYQQIIRALIGVGESALFGLGLRYLGLAEMHALYAVFPLMTLALAGAFLGEFIGVRRWVAAAIGFTGTLVILRPGSSVFELAALIPLLSALGFAIFSVLTRRISRGDSFATNMLHMGFFGAIAITLLGLPGWVAPNPAQWGLIGVLSMTGVVAQLLLLQALKVATAATLQPFNYSLLVFATLIGLLVFGELPDTWTVVGACLVIAGGMYAIKAKG				NA	NA	NA	NA	NA
D1-36_01898	1944	mcpA_2	COG0840	Methyl-accepting chemotaxis protein McpA	ATGAATATCAAACAGAAGCTGACCTGGGCGTTCGCAACCATTGCCTGCCTCCCGGTTATCCTGGTGGCGGTGCTCGTGGTGATGAACCTGCGCGATGCGGCACAAGCCAACTTCCTGGACAGCAGCAGCCGCGAAATCCGCCAGATCGACAACGGCATGAAGCAGTTCTTCGACGGCATCATGCAGAACGTTGAATTCTTCGCCAAGGACCCGCGGATCGTCGCGGCCAAGGACCTGAAGAACTACTCCGGCGCTGATGCTGCGCAAATTCCTCTTACCGAGAACAACAAACAACTGCTGGATATCTTCGATCGGTTCGCCAAGAGCCACCCGACCACCGCCTACCTATCCCTGGGCCTGGCGGACGGTGGCTACGCCAGTTGGCCGGATGATCCGAAAATCTCCAACTACGACCCGCGCCAGCGCCCCTGGTACAAGGCTGCCGTTGCCGCGCCGGGCACCACCGTGAAGACCGATGCCTATTACTGGGCCCCCGACGACGTGTCGCTGATCGGCATCGTGCACACCGTCGCCGATGCCAGCGGCAAGCTGGTTGGCGTGGTGGGCCTGGACGTGTCGCTCAAGCAACTGACCGAACTGGTGAAGAACATCAAGCTGGGCGACAGTGGCTACCTGATGCTGGTGGAAGGCAGCGGCAACGTCTTGGTGGACCCCGCCGACGCCAAGCACAACTTCAAACCCTTGGCCGACCTCGGTCCCAACTACGCAGCATTGGCCAAGAGCAGCGATGGCGCTACCCAGATCGAGATCGACGGCGTGCCGTACATGGCCAACATCGTCACCTCTAAAAGCCTGGGCTGGCGGTTCATCGGCCTGATCAAGCGTGACGAGGTGATGGCCGAAGCCGCGAGCCTGACCTGGTTGATCGCTATCATCGCCGCCGCGCTGGCCGTGGTCTTCGCGATCGTCGGCGCCAGCTTCGCCAGCGTTATCGTCCGGCCGATCCGCGGCGTTGCCAACGGCCTGCAGGAAATCGCTGAAGGTGAAGGCGACCTCACCCGCCAACTCGCTGTACAGGGCAAGGATGAAACCGCCACCCTGGCAAGCTGGTTCAACCAGTTCCTGGGCATGATAGCGCAACTGGTTCAACGCATCGGCAGCGCCTCCTCCGACCTGCAAACCGCAGCGGCGGACACCCGCGACGTCGCACAGAACATGAACGAAGCCGCCGGGCGCCAGCGCCAGGCCGTGGAGCTGGTGAGCACCGCGTTCAACGAAATGGTCGCCACCGCCAACGAAGTGGCCCGCTCGTGCAGCCAGGCCGCCGTCAGCGCGGACACCGGTTATCGGGATGTACACGACGGCCAGCACCACATCGGCGAAGCCACGGGCAGCGTGTTGAGGCTCAGTGAAGAATTGCAGCAGTCGACCCAGACCATGCAGGCGCTGGAACAGGACAGCAAGAACATCAACACGATCCTGGACACCATTCGCTCGATCGCCGAACAGACCAACCTGCTGGCCCTCAACGCGGCGATTGAAGCCGCACGTGCCGGCGACCAAGGCCGCGGCTTTGCCGTGGTGGCCGACGAAGTACGCGCCCTGGCGCGGCGCACCGCTGACTCCACCGGCGAGATCGACAGCTTGCTCGGCAACCTCGCCCGGCGCACCCAGGAAGTGACGCAACAGATGCAGAACAGCCTGCACGTGTCGCAAACCAGCGTCGAGCGCATCCAGCAGGCCCGCGACAGTTTCGACAAGATCCGCACCTCGGTGGACTCGATCCGCGACCAGAACACGCAGATCGCCACCGCCGCGGAACAACAGCACCAAGTGGCCGAAGACATCAACCGGCACATCGCGCAGATCCACTCCGATGCGCAGCTGGTTGAAGAGTTTGCTCACACCGCACAAACCGGTTCGGGGCGTTTGACGGATATCTCCGGACAGCTCAAGGGCTTGGTGGGACGCTTCAAGTTCTAA	MNIKQKLTWAFATIACLPVILVAVLVVMNLRDAAQANFLDSSSREIRQIDNGMKQFFDGIMQNVEFFAKDPRIVAAKDLKNYSGADAAQIPLTENNKQLLDIFDRFAKSHPTTAYLSLGLADGGYASWPDDPKISNYDPRQRPWYKAAVAAPGTTVKTDAYYWAPDDVSLIGIVHTVADASGKLVGVVGLDVSLKQLTELVKNIKLGDSGYLMLVEGSGNVLVDPADAKHNFKPLADLGPNYAALAKSSDGATQIEIDGVPYMANIVTSKSLGWRFIGLIKRDEVMAEAASLTWLIAIIAAALAVVFAIVGASFASVIVRPIRGVANGLQEIAEGEGDLTRQLAVQGKDETATLASWFNQFLGMIAQLVQRIGSASSDLQTAAADTRDVAQNMNEAAGRQRQAVELVSTAFNEMVATANEVARSCSQAAVSADTGYRDVHDGQHHIGEATGSVLRLSEELQQSTQTMQALEQDSKNINTILDTIRSIAEQTNLLALNAAIEAARAGDQGRGFAVVADEVRALARRTADSTGEIDSLLGNLARRTQEVTQQMQNSLHVSQTSVERIQQARDSFDKIRTSVDSIRDQNTQIATAAEQQHQVAEDINRHIAQIHSDAQLVEEFAHTAQTGSGRLTDISGQLKGLVGRFKF	PGPT0015710_9353	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_01899	1044	cdhR_4	COG4977	HTH-type transcriptional regulator CdhR	ATGCCAAGCGCATTCGAAAGCGTACTCAAGAACAAGAACATGGCTTATCGGCCCCAAGGGACTGCGTCGGTCAGCCAGGCGCCGGTGCGCGTCGCGTTTGTGCTGATGGACAACTTCTCGATGATGTCCTTCACCGGAGCGGTGGACGCACTGGTCACCGCCAACCTGATGAACGACACGCCACTGTATGAAGTGCTGACGGTAGGCGCTTCGGGCGGGCAGGTGACGAGCGACCTGGGAATCGTCATCTCAACCGATCTTGAGCTGGCGCAGTTGCCGGACAACCTGGACGTGCTGATTGTCGCCGGCGGCTTTCGCGTGAAGCTTGCGGGTACGCCATTACTGCGGCGCAAGCTGCGCGCCAATGCGGCTTGCGGAGCGTGGTTGGGCGGGTTGTGGAATGGCGTGTTTTTCGTAGCCGAGGCGAACCTGCTCGACGGTTTCGAATGCGCGGTCCACCCGGAAAGTCGCGCAACGATGGCTGAGATGTTCCCTGGCGTGAAAGTGTCCAGTCGCGCTTATGTCGTGGACCGTGAGCGGGTCAGTTGCGCGGGCGCCAACAGTTCGCTGCGCATGATGCTCCAACTGATCCGCCGCACGGGCGGGGAGACGCTGGTGGGAGCCATCGAAGAGATCCTTCGCTGCGATGAGTCAGGGGATGACGCCTCGGATCTGCCGCCAATCTTCGTCGAGACGGACCCGACGCTGCCGGAAAGCCTCAAGCTGGCGCTGGAACTGATGTGGCAGAACGTCGAGGAGCCGTTGACGATCGATGAGCTGGCGGCGTGCGTCAAGGTTTCCAAACGCCAGCTGGAACGGCGGTTCTGCCGGTTTCTCGGCGCGACCCCGACGCGTTATTACCTGGAGCTGCGCCTGACCCGTGCACGCCAGCTGATCCAACAGACCAACCGCTCCGTCACCGAGATCGCCGTCGCGACGGGTTTCGTCAGCTCACCGCATTTCCAACGACGCTTCCGGGATTTTTTCGGCGTACCGCCTGGCAGCTATCGCTCGACGTTTGGACGCAAGCAGATATCGCCGTGA	MPSAFESVLKNKNMAYRPQGTASVSQAPVRVAFVLMDNFSMMSFTGAVDALVTANLMNDTPLYEVLTVGASGGQVTSDLGIVISTDLELAQLPDNLDVLIVAGGFRVKLAGTPLLRRKLRANAACGAWLGGLWNGVFFVAEANLLDGFECAVHPESRATMAEMFPGVKVSSRAYVVDRERVSCAGANSSLRMMLQLIRRTGGETLVGAIEEILRCDESGDDASDLPPIFVETDPTLPESLKLALELMWQNVEEPLTIDELAACVKVSKRQLERRFCRFLGATPTRYYLELRLTRARQLIQQTNRSVTEIAVATGFVSSPHFQRRFRDFFGVPPGSYRSTFGRKQISP				NA	NA	NA	NA	NA
D1-36_01900	207			hypothetical protein	ATGCACGCAAGAAAGATCTTCGAACTCCTGATGTCGTCCCTGGCCTATGTCCTCATCTCCTCGCTTTGGTTCGCCTACGCCGTGCCGGGGATGGTCGAGCTCGACTCTGACTTCTCCCTGATAACGGCCGCCTGCGGCTCGATTATCTGGCTGTGCGCCACGGGTTGTATCGCCTTGTACTTCGTTCAGAAAATGCGTACCGCCTGA	MHARKIFELLMSSLAYVLISSLWFAYAVPGMVELDSDFSLITAACGSIIWLCATGCIALYFVQKMRTA				NA	NA	NA	NA	NA
D1-36_01901	402			hypothetical protein	ATGAAAAGGATTGTTTCACTGGTCGCCGTCCTGACCGCTTACCCAGCCGCAGCGGACGTACATAAAATTCAGTACAGCTACGATGATTCGAATGCCGAATACGCCATCGTCTCGTTCGTTGAAAGTGGTTCGGCTGTACAGGCCACGGTAAAAAGAACCGGTGCCTATTTCACCAATTACACAAAGCTTGAACTTGATTGCGCCAGTCGCAATGTCCGTCACATGGGCATGTATAACAGCGTCGAGGGATTGGAAAAGGCTGATTTCGACCAGATGCAGGGCCGCATCGTCGAGGGCTCGATCGCTGACGAAGTGGGCAAGGTGCTCTGCAAAGGCACTACCCTGACCGCCTCGCAAATGGAAGAAGTGCCAACCGAAAATCTGCTGGACGACCAGGGCTGA	MKRIVSLVAVLTAYPAAADVHKIQYSYDDSNAEYAIVSFVESGSAVQATVKRTGAYFTNYTKLELDCASRNVRHMGMYNSVEGLEKADFDQMQGRIVEGSIADEVGKVLCKGTTLTASQMEEVPTENLLDDQG				NA	NA	NA	NA	NA
D1-36_01902	1206			hypothetical protein	ATGCGTACATCATCCGCGGCGCTCGCTTCATCTTCCACGGGCATCTGGCTACCGATTTTCGCTGGCCTCTGTGCCAGCCTCGTCAGCATTGGCCTGGCGCGCTTCGCCTATACCCCCTTGATTCCGCCGCTGATCCAAGCGCATTGGTTCAGCCCCGGCGACGTGGTCTACCTCGGGGCCGCCAACCTTGTCGGATACCTGATCGGCGCCCTGCTCGGCCGGCCGATGGCCCGTCGACTGTCCCATAAAAACGCCTTGCGACTGATGATGCTGGCCGTGACGGCGGCGTTTTTTGCCTGTGCCTTTCCTGTGTCCGTGGCTTGGTATTTCGCTTGGCGATTGCTGTCGGGCATCGCCGGCGGCGCGATCATGGTGCTGGTGGCGGCCACCGTGCTGCCCCATGTACCTGCCGCCCGCAGGGGGCTGGCCAGTGGCGCGATTTTCCTGGGCATCGGGCTGGGCATCGCCGGCTCCGGAACCCTTGTGCCGCCGCTGTTGAGCCTGGGCCTCGAAGCCACCTGGCTCGGGCTCGGCGTGCTGTCACTGGTCCTGACCGGGCTGAGCTGGTTCGGCTGGCCGCAGGATCTGCCCCAGGCAGCCGTGAGCGTGAAACATGACACGCAAAAAGCACCCATGCCCCGCGCCGTCCATCAATTGTTTGCACAGTACGCATTCATGGCGGCGGGGTTGGTCCCGGCGATGGTGTTTTTGGTGGACTATGTCGCCCGCGGCCTTGAGGCCGGCGCCCGTGTCGGTGCGCTGGTATGGGTGATGTACGGCTTGGGGGCGATTATCGGCCCGGTGACCTATGGCTTCCTGGCGGACCACCTGGGCGCGCGCAAAAGCATCCGATGGGTGCTGGCCGTGCAGGCGACTGCCCTTGTCTTGCTGGCGACCGCCCATTCATTCCTGGCGTTGGCGCTGCTGGCTGTGGTCATCGGTTCGTTCCCACCGGGTATCGTGCCGCTGGCCCTGGCCCGGGTGCATGAACTGGTACCGAACCATCATGGCCAGCAAGTCGCCTGGAGCCGGGCGACCGTTTCATTCGCCACATTTCAGGCGGTGGCGGGTTTTGCGTATTCGGCGCTGTTCAACGCCAGCGGCGGGCATCATGGGCTGCTGTTTTTGATTTCCGCAGGCGCAATTGTCGTCGCGTTGCTGGTGGACTATGTTCCTTCCATTGCGAGTTATGTATCAAAAGATTAA	MRTSSAALASSSTGIWLPIFAGLCASLVSIGLARFAYTPLIPPLIQAHWFSPGDVVYLGAANLVGYLIGALLGRPMARRLSHKNALRLMMLAVTAAFFACAFPVSVAWYFAWRLLSGIAGGAIMVLVAATVLPHVPAARRGLASGAIFLGIGLGIAGSGTLVPPLLSLGLEATWLGLGVLSLVLTGLSWFGWPQDLPQAAVSVKHDTQKAPMPRAVHQLFAQYAFMAAGLVPAMVFLVDYVARGLEAGARVGALVWVMYGLGAIIGPVTYGFLADHLGARKSIRWVLAVQATALVLLATAHSFLALALLAVVIGSFPPGIVPLALARVHELVPNHHGQQVAWSRATVSFATFQAVAGFAYSALFNASGGHHGLLFLISAGAIVVALLVDYVPSIASYVSKD				NA	NA	NA	NA	NA
D1-36_01903	876	dmlR_8		HTH-type transcriptional regulator DmlR	ATGAATTGGGACGATGCGCGGGTATTCCTGGCGGTGTGTCGGGAGTCGACCCTGCGAGGCGCGGCGCGTGTGCTGGGGGTGGACCAGGCGACCGTGGGCCGGCGTATCGCCGCGTTGGAGAAATCCCTGAGCGCCGCGCTGTTTCTGCGCACACCCGACGGTTATGCCCTGACGTCAATGGGCGAGGCCGCGCTCAGGTCCGTGGAAAAAATGGAGCAGTCGGCCCTGGAACTGGAGCGTCGGATACAAGGACTGGACGATCGACTGGTGGGCAACGTGCGCGTCGCCACGACTGATTCATTGGCGATCGACTTCCTGATCCCGGCCATTGCCCGCCTGCACCAACGTCACCCGGACGTGCGCGTGCAGTTGGACGCCTCCACGCAGATCATCAGCCTGGTCAAGCGCGAAGCGGACGTTGCCGTGCGCAACACCCGGCCAGAAAACCCTGACCTGATCGCACGGCGGATCGCGCGCTGGCCGGTGGGGTTGTTCGCGGCGCGCGAGTATGTCGATGTCCATGGGGAGCCGACGCCGGGCAGCGCGTTCGAGGGCCATGACCTAGTTGTCTACCAGCCGTATTTGCAGGCGCAAAAAGATTTTACCCTGGTCGCCGAGCCGGTCAGTCGCGGGCGGATCGTTGCCAGCCTGAGTTCGAGCCTGTTGGTGCGTCGCTCGATTGCGGCGGGTATCGGAGTGGGGGAAATCCCGGTGTACATGGGCGAACGCGACGGGTTGGTGCGCCTATGGCCTGAGCGCACGCGACCGCTGCCGTACGAGGTCTGGCTGGTGACCCATGCGGACTTGCGCCACACGGCGCGGGTGCGGGCGGTGATCGATGAGATTGTCGCGGCGTTTTCCCAGGAAAACGAATAA	MNWDDARVFLAVCRESTLRGAARVLGVDQATVGRRIAALEKSLSAALFLRTPDGYALTSMGEAALRSVEKMEQSALELERRIQGLDDRLVGNVRVATTDSLAIDFLIPAIARLHQRHPDVRVQLDASTQIISLVKREADVAVRNTRPENPDLIARRIARWPVGLFAAREYVDVHGEPTPGSAFEGHDLVVYQPYLQAQKDFTLVAEPVSRGRIVASLSSSLLVRRSIAAGIGVGEIPVYMGERDGLVRLWPERTRPLPYEVWLVTHADLRHTARVRAVIDEIVAAFSQENE				NA	NA	NA	NA	NA
D1-36_01904	723	yhhW	COG1741	Quercetin 2,3-dioxygenase	ATGCTGACCCTACGCAAAGCTTCTGATCGCGGTATCGCCCGTCACGGCTGGCTGACGTCGTTCCACACCTTTTCGTTCGCCAGCTACCGCGACCTCAATCAACAGGGTTTTTCCGACCTGCTGGTGATCAACGACGACCGGGTCGCCGCCGCCAAAGGTTTCGGCCAGCACCCACACCGCGACATGGAGATTTTCTCCTACGTGCTCGAAGGGGCGCTGGAGCACAAGGACACCTTGGGCACAGGTTCGGTCATTCGCCCCGGTGATGTGCAATTGATGAGTGCTGGCAGTGGCGTAGCGCACAGTGAATTCAATCACAGCGCCGACGAGCCGGTGCATTTCCTGCAGATCTGGATCGTGCCCAACGTGGTGGGCGCCACGCCGCGTTATCAGCAGGAACATTTCAGTACCGAGCAAAAACGTGGTCGCCTGCAATTGATCATTTCGCCGGACGGGGCCCAGGGATCGCTCCACGTTCGCCAGGACGCGCGGGTTTATGCCGGGCTGTTCGACGGCCAGGAAAGCGCCACGCTGACGTTGGCTGCCGATCGTTATGCCTATGTCCACGTGGCCCGGGGCAGCGTAGAGCTCAATGGCGTGCCGTTGCACGAAGGCGATGGCGTGCGGGTGCGCCAGGAACAGGTACTGACGCTGGGCAATGGCCAGGATGCCGAAGTGCTGGTATTTGACCTGCGGCCGCAGGAACTGCCGCAAATGCCGTGA	MLTLRKASDRGIARHGWLTSFHTFSFASYRDLNQQGFSDLLVINDDRVAAAKGFGQHPHRDMEIFSYVLEGALEHKDTLGTGSVIRPGDVQLMSAGSGVAHSEFNHSADEPVHFLQIWIVPNVVGATPRYQQEHFSTEQKRGRLQLIISPDGAQGSLHVRQDARVYAGLFDGQESATLTLAADRYAYVHVARGSVELNGVPLHEGDGVRVRQEQVLTLGNGQDAEVLVFDLRPQELPQMP	PGPT0019980_4539	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_FLAVONOID_UTILIZATION	PLANT_DERIVED_QUERCETIN_DEGRADATION,PGPT0019980-yhhW|pirA-K06911	NA	NA
D1-36_01905	951	cdhR_5	COG4977	HTH-type transcriptional regulator CdhR	ATGAAAACCGTAGCAATGGTGCTGTTCCCCGATTTCCTGCTGCTCGACATGGCCGGGCCGCTTGAAGTGTTTTCCATCGCCAACCGTTTTCTTGCACCCGACCAGCACTATCAGTTGCTGACCCTGGGCACCGAGCGAGGCCCGTTGCGGGCGTCCAACGGTGTGACTGTCCATGCCGATATCCATATCGACCAGGCCTGGGCCGCCTACGACGTACTGCTCGTGCCGGGTGGTCCCGGTGCCTATAACGACCGGCACCCGGGCTTGCACACATGGTTGCGGGCGGCGGCGCCAAGGGCCACCTGCTATGGCTCGATTTGTACCGGCGCGTTTGTGCTCGGCGAAGCGGGGTTGCTCGATGGACACCGGGTTACCACCCACTGGCACTACACCGAGCGCTTGATCCAGCGTTTTCCCAAGGCATTGATCGAGACCGACAAAATCTTCTTGCGCGACCGACGGCTGATCACCTCCGGCGGTGTCACGGCCGGCATCGACATGGCCTTGGCCATCGTCGCCCAGGACCACGGCCGCAAAGTCGCGCTGGACGTCGCCAAAGTGCTGCTGGTGCTGATGAAGCGCCAGGGCGGGCAAGCGCAGTTCAGCCCGCTGGTGGCGACCGTGGCGGCCCAGGAGTCGGCGGTCACGCGGGTGCAGAACCACGTGATGGAGCATCTGGAGGAGCCCTTCACCGTGGAACGCATGGCGGCGGTCGCGGCCATGAGCACCCGGCATTTTGCCCGGCTGTTTGTCCGCGAAGTGAAGATGACGCCCATGGAATTCCTTCAAGGGGCGCGCATCGATCGGGCGCGTCAGTTGCTCGAATCCACCGACTTGCCGCTCAAGACCGTGGCGTTTCGCAGTGGCTTTGGCAGCGTGCGGCACATGCGTCAGCTGTTCAGCGAAAAGCTTGGCCTGACGCCGATCCAGTACCGCCAGCAGTTCAGTTGA	MKTVAMVLFPDFLLLDMAGPLEVFSIANRFLAPDQHYQLLTLGTERGPLRASNGVTVHADIHIDQAWAAYDVLLVPGGPGAYNDRHPGLHTWLRAAAPRATCYGSICTGAFVLGEAGLLDGHRVTTHWHYTERLIQRFPKALIETDKIFLRDRRLITSGGVTAGIDMALAIVAQDHGRKVALDVAKVLLVLMKRQGGQAQFSPLVATVAAQESAVTRVQNHVMEHLEEPFTVERMAAVAAMSTRHFARLFVREVKMTPMEFLQGARIDRARQLLESTDLPLKTVAFRSGFGSVRHMRQLFSEKLGLTPIQYRQQFS				NA	NA	NA	NA	NA
D1-36_01906	1485			hypothetical protein	ATGAACAGTTTCGTCAAACCCTGCACCGGGCCAACGGTGTGCTTTGGCCCGTTCGTCTTTCACCGACAGCAGCGGCTGGTCTCTCGCGAAGGTCAACCTCTGGCATTGGGCGGTCGCGCCCTCGACATCCTGCAGATACTGGTCGCGCACGCCGGCGCTTTCGTCAGCAAGCAAGCGCTGATCGACCAGGTCTGGCCCGACAGCGTGGTCGAAGACATCAATCTGCGGGTGCACATCGCCGCGCTGCGACGGGCCTTCGGCGAGACGCGCGAAGGCAATCGCTACATCCTCAATCATCCTCGCCAGGGCTACTGTTTTGCGGTGCCCCTGACCCTGGAATCCGTGGGCGAGTCATCGAGCGCGGAGCCCTCCGAACGGCACAATCTGCCCGCCCGGCTGAGCCCGGTGATCGGTCGCGACAAAATCCTGGGCCGGCTGTTGGTGGAAGTGCCGCGCCAATCCCTCACCACCGTCACCGGCCCGGGTGGCATCGGCAAGACCACCGTGGCGTTGCGGGTGGCGGAACTGTTGCTGGAGCACTTTGCCGATGGCGCCTGGTTTATCGACCTGGCCGGCATCGGCGACCCGGCGCAGGTTGCGCTGCGGATTAAGCATGCCCTGGGCCTGGCGGACGGTTGCTTGGCCCAGCAGCTGCAAGCCCGTCGGATACTGCTGGTGCTCGACGGTTGTGAACAACTGATCGATACCTGCCGGGAATTGGCCTTGACGTTGCGCGCAGGGGCGCCTGGCGTATCACTGTTGGTGAGCAGTCGGGAAATCCTCAACCTGGCCGACGAAAATGTCGTGCAACTGTCCGGTCTGGGGATGGCGTCGGCCGATGAGTCCGATTATGTACTGGGGTGCCCGGCGGTGCAGTTGCTGGTCGAGCGAGTCGGCGCCCGCCAGCAGGGTTTCCAGCCGGGAGAACGCGACCTGGCGGCCCTTGCGCAGATCTGCCGGCGCCTCGACGGGTTGCCGCTTGCCCTGGAACTGGCAGCGGCCCAAGTCGATGTGCTGGGCGTGGCCGGGGTCCTGGAGCAGTTGGACCATGGTCTGTCGCTGCTGAGCCACGGACGTCGAACCGCCGTGCCTCGCCACCGTAGCCTGGAAGCTGCCCTGGATTGGAGCTTCGAGCGCTTGAGCCACGATGAGCGAACGGTGTTCCAACGCCTGGCGGTGTTCGAAGAACGGTTCAGCCTCAAGACCGCCCTGGCGGTGATCAGCTGCCCTGAAGTGGAAGCGGGACGATTGCCCTGGTTGTTGTCGCGGTTGGTCATCCAATCATTGGTGATGGTTGAGCAACGCGCCGAAGGGACGCGTTTCCATCTGCTGCGCACCACCCGCGCCTATGCTTTGGAGAAACTGCGTCACAGTGGGCAGTGGCCGCTTTGGCATCGGCGTTACGCACTGCAACAGGCGTGGCAAACCCGGTCAAGACCCGAGGTGCCCATCCAGCGTACGCAGCAGCGCGTCGGCTTGCTTTAG	MNSFVKPCTGPTVCFGPFVFHRQQRLVSREGQPLALGGRALDILQILVAHAGAFVSKQALIDQVWPDSVVEDINLRVHIAALRRAFGETREGNRYILNHPRQGYCFAVPLTLESVGESSSAEPSERHNLPARLSPVIGRDKILGRLLVEVPRQSLTTVTGPGGIGKTTVALRVAELLLEHFADGAWFIDLAGIGDPAQVALRIKHALGLADGCLAQQLQARRILLVLDGCEQLIDTCRELALTLRAGAPGVSLLVSSREILNLADENVVQLSGLGMASADESDYVLGCPAVQLLVERVGARQQGFQPGERDLAALAQICRRLDGLPLALELAAAQVDVLGVAGVLEQLDHGLSLLSHGRRTAVPRHRSLEAALDWSFERLSHDERTVFQRLAVFEERFSLKTALAVISCPEVEAGRLPWLLSRLVIQSLVMVEQRAEGTRFHLLRTTRAYALEKLRHSGQWPLWHRRYALQQAWQTRSRPEVPIQRTQQRVGLL				NA	NA	NA	NA	NA
D1-36_01907	2811			hypothetical protein	ATGAGCCAGTACCTCAGCCTGCCCGTCGAAAAGACGCTGCATTTCGGCCCTTACCGGGTTCATCCCCGCCAGCGCCTGGTGCTGGAGGGCGGGCAGCCGTTGCGCCTGGGTCGGCGCGCGGTGGAGATTCTATTGGTGTTGCTCGAACACGCAGGCCAAGTGGTGAGCAAGCAGCAACTGATCGCCCGTGTCTGGCCCAAGAGCGTGGTGGAAGACACCAACCTTCGGGTTCACGTGGCGGCGCTGCGCAAGGCGTTGGGCGATGGACAGGCAGGCCAGCGCTACATCGTCACCGTGGCGCAGCGCGGCTACAGCTTCGTCGCGCCGGTGACTTTCGAGTCGCCCGAGCCACTGGCACGTATCCCCCACCCTGCCCTGGCGCGCAACCTGCCGCCGCGCCGAACCCGGGTGATCGGGCGCCAGGGGCTGGTGGAAAGCCTGGTCGCCCAGTTGCCGCGAAAACGCTTCATCACCCTGGTCGGCAGCGGCGGCATCGGCAAGACCACCGTCGCGTTGCGGGTCGCCGAGCGGCTGATCGGCCATTACCGCGACGGCACGTATCTGCTGGACCTCGGCTCGCTCAATGACCCTTCCATGATCGCGCCCAACCTCTGCGCCCTGTTGGAGCTGTCGCCACAAGACGGCGAGCCCTTGGAAGCCGTCGTCCGGCCCCTGAAGGAACGGCATCTGCTGCTGGTGATCGATACTTGCGAACATCTGGTCGACGCCGTGGCCCTGCTCTGCGAGACGCTGCTGCGCGCCGCACCGCACTTGCATATTCTGGCCACCAGCCGCGAAGGCCTGCGCGCCGAAGGCGAACATGTGCAGCGCCTCGATTCACTGGCGATCCCACCCCGGGGGATGGTCATCGAAGGTTATCCGGCCCTGGAATATCCAGCGCTGCAACTGTTTGCTGAACGTGCGATGGCCAGCCAGGACGACTTCGAGCTGACCGACCATGAGGTGCCGCTGATCGTCGACATCTGCCAGCGCCTGGACGGCATTCCCCTGGCCATCGAACTGGCCGCTGCCCAGGTCGGGCACTTTGGGCTGGAGCAGTTGTGCCGGCAACTGCGAGACAGCGTCGCACTGCTCGACCATGACAAGCGCGCCAGCGCACCGCGACAGCAGACCCTGCGCGCCACGCTGGACTGGAGCTTCGCGCTGCTCACTGCCTGCGAGCAGACCTGCCTGCGGCGCCTGGCGGTGTTCATGGGCAGTTTCAACCTCGCCTCGGCGGCGGCCGTCATCGTCGGCCAGCATGTCGCGCCCGACCAGGTGCTGGTATCGGTCAGCCAGTTGGTCGCCAAGTCGCTGCTCAACGTGGAGATCGGTGACGACGAGGTGCGCTACCGCCTGCTGGACACCACGCGCAGCTACGCGTTGGAAAAACTGCTGGAGACAGGCGAACTGGCCGCGAGCCAGGCGCGACACGCCGAACGTTGCCTGACGTTGATGGAACAGGCTGAAAAAGATTGGGAAACCACCCCGACGCAGCTTTGGATCGCGCGCTACGCGTCCTACCGAGACGACATCCGTGCGGCGTTGGACCGGGGGCTGGCTGCCCACGGCTCCCACGCCGTGGCGATCCGCTTGACGGCCCGTAGCCTGCCCCTCTGGCAGGAGCTGTCGCTGCTCAAGGAACATGGCCTTTACGTGAGCAAAGCCCGGGCCCTGCTGCACGGCACCGCCTCGCCATGCCCCAGGTTGACCCTTGCGCTGGAACTGGCCCACGCCAGTCTCAACTACCACACCGAGGGCGGCACGCCGGCCACGGTCGAGGCGTTCGTCACGGCCCGGCGCCTGGCCCGGCAGTGCCACGACCTGGCCGGTGAGCTGCGGGCCGTGTCCGGCCACATGGCCGTCAACCTCAGTTGCGGCCGCTACCAACAGGCGCTGGAACAATGCCAGGACTTCGACCGGCTGGGCCCCCCGGGCGACCCGGTGCTGTCCCTGAGCACCCAGCGCCTGCGGGTGCTGGCGTTGCATTTCATTGGCGACCAGGGCGCGGCGCGGCGCGATGCCGAACAGGTCATCCAGCGCCTGGCCCAGAACGGCCACCTGGGCCGCTTCACCCACGGTTTTGGCGTGCAGTACGAACAGAGCGTGGCGGCGCTGACAATCCTGGCGCGCATCCTCTGGCTGCAAGGGTTCGCCGATAAAGCCCGGCGCACCGCCAATCTCGCGCTGCAGATTGCCCTGCAGATCAATCACGGTCTTTCGATTTGTTACACGCTGGTGATCAGCGGTTGCTTGATCGCCCATTACACCGGCGAACATTCAATCGCACGGGAACGGCTCGGTATGTTGAAACACCAGGCCCGGAAGCATTCGGTGATGTTGTTCCATGAGTGGGCCTGCCAGTACGAGAACGCGTTCGATGGAGCGTCCCTGGAGGCCTGCCCGACCAAGAGCGGCTTGATGCAGGACATCGTCGTGACGCTGCGGGCGGATGCCGTGGGACCGGGTCAGATCGAACGCGCCCATAGCGGCGCCGCAGGCTGGTGCTGCGCCGAGATCCTGCGAGCCAGCGCCGAAGCCCTGTTGGCGCAGGATGACCCATCGGCCGAAAAACAAGCCGAAGAGCAACTGCTCGCCGCCCTGGCCGTCGCCCGGCAGCAAGGCGCGCTGGCGTGGGAATTGCGCAGCGCCTTTTCCCTGGCGCGGCTGTGGCAACGGCGTGGCCAGGATGAGGCCGCCGCGGATCTGCTGCGCCCCGTCTATCGGCGTTTCAATGAGGGCTTCGACACGCCCGACCTAAAGCAAGCCGACGCGCTGCTGCGTACGCTGGATGGGCACCTCGGGTCTTGA	MSQYLSLPVEKTLHFGPYRVHPRQRLVLEGGQPLRLGRRAVEILLVLLEHAGQVVSKQQLIARVWPKSVVEDTNLRVHVAALRKALGDGQAGQRYIVTVAQRGYSFVAPVTFESPEPLARIPHPALARNLPPRRTRVIGRQGLVESLVAQLPRKRFITLVGSGGIGKTTVALRVAERLIGHYRDGTYLLDLGSLNDPSMIAPNLCALLELSPQDGEPLEAVVRPLKERHLLLVIDTCEHLVDAVALLCETLLRAAPHLHILATSREGLRAEGEHVQRLDSLAIPPRGMVIEGYPALEYPALQLFAERAMASQDDFELTDHEVPLIVDICQRLDGIPLAIELAAAQVGHFGLEQLCRQLRDSVALLDHDKRASAPRQQTLRATLDWSFALLTACEQTCLRRLAVFMGSFNLASAAAVIVGQHVAPDQVLVSVSQLVAKSLLNVEIGDDEVRYRLLDTTRSYALEKLLETGELAASQARHAERCLTLMEQAEKDWETTPTQLWIARYASYRDDIRAALDRGLAAHGSHAVAIRLTARSLPLWQELSLLKEHGLYVSKARALLHGTASPCPRLTLALELAHASLNYHTEGGTPATVEAFVTARRLARQCHDLAGELRAVSGHMAVNLSCGRYQQALEQCQDFDRLGPPGDPVLSLSTQRLRVLALHFIGDQGAARRDAEQVIQRLAQNGHLGRFTHGFGVQYEQSVAALTILARILWLQGFADKARRTANLALQIALQINHGLSICYTLVISGCLIAHYTGEHSIARERLGMLKHQARKHSVMLFHEWACQYENAFDGASLEACPTKSGLMQDIVVTLRADAVGPGQIERAHSGAAGWCCAEILRASAEALLAQDDPSAEKQAEEQLLAALAVARQQGALAWELRSAFSLARLWQRRGQDEAAADLLRPVYRRFNEGFDTPDLKQADALLRTLDGHLGS				NA	NA	NA	NA	NA
D1-36_01908	822	cpo_1		Non-heme chloroperoxidase	ATGAGCGCATTCATCACCCGCGACGGCACAGAGATCTACTACAAGGATTGGGGTACTGGTCAACCGGTGGTCTTCAGTCACGGCTGGCCGTTGAACTCCGACAGTTGGGAGGCGCAGATGATGTTCCTGGCGTCCAATGGCTACCGGGTGATTGCCCACGACCGTCGCGGTCATGGGCGTTCCAGCCAGCCGTGGGACGGCAATGACATGGACACTTACGCCGACGACCTGGCGGAGCTGATCGAACGCCTGGACCTGAAGAACGCCGTGTTGCTCGGCTTCTCCACCGGCGGTGGCGAAGTGGCCCGCTACATCGGCCGTCACGGCGCCGCCCGCGTCGCCAAGCTTGGCCTGATCTCGGCTGTCACGCCGCTGATGCTCAGGACCGCGGCCAACCCCGGTGGCTTGCCTGTCGAAGTCTTCGACGGTTTCCGCCAGGCCTCCCTGGCCGACCGTTCTCAGCTATACAAGGATGTAGCCAGCGCGTTTTTCGGCGCCAACCGTCCGGGCGCCAAGGTCTCCCAAGGCATGATCGACTGGTTCTGGATGCAAGGCATGCTCGCCGGCCACAAGAACACCTACGACTGCATCAAGGCGTTCTCGGAGACCGATCTTTCCGACGACCTGCGCAACATCGACGTGCCGACCCTGGTGGTCCATGGCGATGACGACCAGGTCGTGCCGATCGAAACCGCCGGCATCGCGGCCGCCAAATTGCTCAAGAACTCGCAGCTGCTGGTTTACCCAGGCGCGCCCCATGGCCTGACCGATACCCATAAGGACCGCTTGAACGCGGACCTGTTGGCGTTCATCCAGGGCTGA	MSAFITRDGTEIYYKDWGTGQPVVFSHGWPLNSDSWEAQMMFLASNGYRVIAHDRRGHGRSSQPWDGNDMDTYADDLAELIERLDLKNAVLLGFSTGGGEVARYIGRHGAARVAKLGLISAVTPLMLRTAANPGGLPVEVFDGFRQASLADRSQLYKDVASAFFGANRPGAKVSQGMIDWFWMQGMLAGHKNTYDCIKAFSETDLSDDLRNIDVPTLVVHGDDDQVVPIETAGIAAAKLLKNSQLLVYPGAPHGLTDTHKDRLNADLLAFIQG	PGPT0013125_2336	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013125-cpo-K00433	NA	NA
D1-36_01909	948	nodD2_1		Nodulation protein D 2	ATGAACCGCAATGATCTACGCCGTCTCGACATGAACCTGCTGGTGATCTTCGAGGCGCTGATGTTCGAGAAGAACCTGACCCGCGTTGCCGAAAAACTGTTCATGGGCCAGCCGGCGGTGAGCGCGGCGCTTGGGCGGCTGCGGGATCTGTTCGATGACCCGCTGCTGATCCGTCATGGCCGGGGCATGGAACCGACGCCTCGGGCCCTGGCGATCCTGCAGGAATTGCAGCCGGCCATGGACACGATTTCCGGTGCGGTCAGCCGGGCCAAGGCGTTCGACCCGTCCACCAGTTGCGATGTGTTTCGCATCGGTCTGTCCGACGATGCCGAATTCGGCCTGTTTCCACCCTTGCTGAGCCAACTGCGCGAGGAAGCACCGGGCATCATCGTGGTGGTGCGCCGGGCCAATTTCCTGCTGATGTCGTCGCTGCTGGCCAGCGGTGAGATCAGCGTCGGCGTCAGCTACACCACCGATCTCCCTGCTAACGCCAAGCGCAAGAAACTGCGGGACATTCCTTGCAAGGTCTTGCGTGGCGACAAGCGCCCGGGTCCGTTGACCCTGGACGAATATTGCTCGCGGCCCCATGCGATGGTTTCGTTCTCCGGCGACCTGAGCGGCAACATCGACCTGGACCTGGCCCGCATCGGCCGGGCGCGCAAGGTCGTGCTGGCGGTGCCGCAATTCAGCGGGCTGCGCGCCTTGCTGGCCGGCACCGAGCTGATCGCCACCGTGCCGGACTATGCCGCCTGCGCACTGGTGGAAGGGTGCGCGTTACGCGCCGAAGATCCGCCGTTCGAAATCAATGCCGCCGAGTTGTCGATGGTCTGGAGCGGCGTGCATGACAACGACCCCGCCGAGCGCTGGCTGCGCTCGCGCATTGCGGCCCACATGTCCCAACCGCTGCCGGCCGCCGCTTCGACGGACCCGGCCGGAGCCCACCGATGA	MNRNDLRRLDMNLLVIFEALMFEKNLTRVAEKLFMGQPAVSAALGRLRDLFDDPLLIRHGRGMEPTPRALAILQELQPAMDTISGAVSRAKAFDPSTSCDVFRIGLSDDAEFGLFPPLLSQLREEAPGIIVVVRRANFLLMSSLLASGEISVGVSYTTDLPANAKRKKLRDIPCKVLRGDKRPGPLTLDEYCSRPHAMVSFSGDLSGNIDLDLARIGRARKVVLAVPQFSGLRALLAGTELIATVPDYAACALVEGCALRAEDPPFEINAAELSMVWSGVHDNDPAERWLRSRIAAHMSQPLPAAASTDPAGAHR	PGPT0028130_108	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexEF-OprN,PGPT0028130-mexT-K18297	NA	NA
D1-36_01910	414			hypothetical protein	ATGAATACCACTGACGAAAGCCGCTTGCAGGACCTTGGCCTGCTGTTGCTGCGCCTGAGCGGCGCGCTGTTCCTGTTATGGGTGCATGGCTTGCCGAAATTGCTGAATTACAGCGCCGAGCTGACCCGCATCGAAGACCCGTTCCACCTCGGCGCGGCGACCACGCTGGTCTTGGCGATTTTTGCCGAGGTGCTGTGTCCCTTGCTGATCATGGCCGGCGTGCTGGTGCGGTTGGCGTGCCTGCCCATCCTGTTCCTGCTGGCCGTGGCGCTGCTGGTCGTGCATCCGCAGTGGAGCCTGGAAGAAGGCCAGTTCGGCTGGTTGCTGTTGATCATATTTACCAGCGTGTTCATTGCCGGCCCTGGACGTTTGGCGATGAACGCGCGCTTTGCTGGAGTGCTGCGTCATGCCTGA	MNTTDESRLQDLGLLLLRLSGALFLLWVHGLPKLLNYSAELTRIEDPFHLGAATTLVLAIFAEVLCPLLIMAGVLVRLACLPILFLLAVALLVVHPQWSLEEGQFGWLLLIIFTSVFIAGPGRLAMNARFAGVLRHA	PGPT0028505_4890	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028505-catD-K15977	NA	NA
D1-36_01911	639			hypothetical protein	ATGCCTGAGTCCCAAACCCTCGGATCCACCGCGAGCCCGGCGGTACCCGGTTTCGATGAAATCGTCACCCTGGTGGTCAAGCACCGGATCAAAGCCGGGCAGAACGATGCCTATGAGGCCTGGTTGCGGCGCATCGTCACCGTGGCCGGCCAGTGGCCGGGCCATTTGGGCGTCGACGTTGTGCGGGGCAAGCAGGACGGACTGTCGTTGTTTACCTGCGTGCTGCGTTTTCGCTCCACCGAGGCCATGCAACGCTGGCTGGATTCCTCCGAGCGTCGTGAATTGGTGGCCGAGGCAGCGCCACTCTTGGCCGACGGCGACAAGATCGAGGTCGGTTCCCATAAGGAATTCTGGTTCGCCCCGCTGGCCGATGCCGCCACGCCGCCACCGCGCTGGAAGCAATCGGTGGTGACGCTGCTGGTCATCCTGCCGCACACCTTGCTGGTGCCGTTGCTCTGGGGCCCGCTGCTGCAGCTCAACGCATTTCTGTCCAACTACGTGGTCGCCACGTTCCTCATCACCGTGACCATCGTGCTCTCGGTGGTGTACGTGTGCATGCCGTTGGCGACCCGGTTGTTCGCGCCCTGGTTGGAATCCTCCAAAACCCACGAACACCTGGAGCCCGGCCATGGCCAATAA	MPESQTLGSTASPAVPGFDEIVTLVVKHRIKAGQNDAYEAWLRRIVTVAGQWPGHLGVDVVRGKQDGLSLFTCVLRFRSTEAMQRWLDSSERRELVAEAAPLLADGDKIEVGSHKEFWFAPLADAATPPPRWKQSVVTLLVILPHTLLVPLLWGPLLQLNAFLSNYVVATFLITVTIVLSVVYVCMPLATRLFAPWLESSKTHEHLEPGHGQ				NA	NA	NA	NA	NA
D1-36_01912	1968	nfdA		N-substituted formamide deformylase	ATGGCCAATAACGACGACCCAACCGATCCACTGCGCCGCCAATTGCTTGCCGCCGGATCCTTGCTCAGCGCCGCCGCCGCTTTCTGGCCGCGCCTGTCCCTTGCTTCTTCCCATTCACAAGGAAACCCGATGAACGCCGATCTGATTCTGTTCAATGGCCAATTCCACACCGTCGACCGTGAGAAGCCTCGCGCCAGCGCGGTTGCCATCAGCCAGGGCCGCTTCGTCGCCGTGGGCACCGACGCCGAGGCCATGGCCCTGCGTGGCAGCGGCACCCAGGTCATCGACCTCAAGGGCCGCACCGTCATCCCCGGCCTCAACGATTCGCACCTGCACCTGATCCGTGGTGGCTTGAACTACAACCTGGAGCTGCGCTGGGAAGGTGTGCCCTCGTTGGCCGATGCCTTGCGCATGCTCAAGGACCAGGCTGATCGCACGCCGACCCCGCAATGGGTCCGCGTGGTGGGCGGCTGGAACGAATTCCAGTTCGCCGAAAAACGCATGCCGACCCTGGAAGAACTCAACCAGGCCGCTCCCGATACGCCCGTGTTCGTGTTGCACCTCTACGATCGTGCCTTGCTCAACCGCGCCGCGCTGCGCGTGGCCGGCTACACCCGTGACACGCCGAACCCACCGGGTGGCGAAATCGTGCGTGACAGCAGGGGGGAACCCACCGGCATGCTGGTGGCGCGCCCCAACGCGATGATCCTTTACTCGACGCTGGCGAAAGGGCCGAAACTGCCGCTGGAGTACCAAGTCAACTCCACGCGGCAGTTCATGCGCGAGCTCAATCGCCTGGGCCTGACCAGCGCCATCGACGCCGGCGGCGGCTACCAGAACTACCCGGACGACTACGAAGTCATCGAGCAGTTGGCCCGCGAGCAACAGTTGACGGTGCGCATCGCCTACAACCTGTTCACCCAGAAGCCCAAGGAAGAACTCACCGACTTCAAGAACTGGACCGGCAGCGTCAAGCTGCACCAGGGCGATGACTTTTTGCGGCACAACGGCGCCGGCGAAATGCTGGTGTTCTCTGCGGCAGACTTCGAAGACTTCCTCGAACCGCGCCCAGACCTGCCGCCGGGCATGGAACAGGACCTGGAGCCAGTGGTGCGTCACCTGGTGGAACAGCGCTGGCCATTCCGCCTGCACGCGACCTACGACGAATCCATCAGCCGCATGCTCGACGTGTTCGAGAAGGTCAACCGCGACATTCCGTTCAACGGCCTGCCGTGGTTCTTCGACCACGCCGAGACCATCACGCCGAAAAACATCGAACGCGTGCGGGCGCTGGGCGGCGGTATCGCAATCCAGGACCGCATGGCTTTCCAGGGTGAATATTTTGTCGATCGCTACGGCGCCAAAGCCGCCGAAGCCACACCGCCGATCAAGCGGATGCTCGCCGAAGGCGTGCCGGTGGGCGCTGGCACCGACGCCACTCGCGTCTCCAGCTACAACCCGTGGACCTCGTTGTACTGGATGGTCAGCGGCCGCACCGTCGGCGGCCTGTCATTGCATGAAGAAGGGTTGCCGCGCCTGACCGCGCTGGAGCTGTTTACCCACGGCAGTGCCTGGTTCTCGTCGGAGCAGGGCAAGAAAGGCCAGATCAAGGTCGGCCAACTGGCGGACCTGGCGGCCCTGAGCGCGGATTTCTTCAGCGTCGAGGAAGAAGCCATCAAGTGGATCGAATCGGTGCTGACGGTGGTGGACGGCAAGGTGGTCTACGGGGCTGGCGATTTCGAGAAACTTGGCCCAGCGAGCGTCCCGGTGTTGCCGGACTGGTCGCCGGTGGTCAAGGTCCCGGGCCACTGGCGCCCGACATCGCCCTTGCAGGCGCAAGTCCACCAGTGCAGCGGTCCTTGCACGGTGCATTCCCATAGCCACGAGCGGGCGCGCCTGTCGAACGTCCCGGTCAGCGACTTCCAGGGTTTCTGGGGCGCGTTTGGCTGTTCCTGTTTTGCCTTTTGA	MANNDDPTDPLRRQLLAAGSLLSAAAAFWPRLSLASSHSQGNPMNADLILFNGQFHTVDREKPRASAVAISQGRFVAVGTDAEAMALRGSGTQVIDLKGRTVIPGLNDSHLHLIRGGLNYNLELRWEGVPSLADALRMLKDQADRTPTPQWVRVVGGWNEFQFAEKRMPTLEELNQAAPDTPVFVLHLYDRALLNRAALRVAGYTRDTPNPPGGEIVRDSRGEPTGMLVARPNAMILYSTLAKGPKLPLEYQVNSTRQFMRELNRLGLTSAIDAGGGYQNYPDDYEVIEQLAREQQLTVRIAYNLFTQKPKEELTDFKNWTGSVKLHQGDDFLRHNGAGEMLVFSAADFEDFLEPRPDLPPGMEQDLEPVVRHLVEQRWPFRLHATYDESISRMLDVFEKVNRDIPFNGLPWFFDHAETITPKNIERVRALGGGIAIQDRMAFQGEYFVDRYGAKAAEATPPIKRMLAEGVPVGAGTDATRVSSYNPWTSLYWMVSGRTVGGLSLHEEGLPRLTALELFTHGSAWFSSEQGKKGQIKVGQLADLAALSADFFSVEEEAIKWIESVLTVVDGKVVYGAGDFEKLGPASVPVLPDWSPVVKVPGHWRPTSPLQAQVHQCSGPCTVHSHSHERARLSNVPVSDFQGFWGAFGCSCFAF				NA	NA	NA	NA	NA
D1-36_01913	630	ycaC_3	COG1335	putative hydrolase YcaC	ATGAGCAACGTTCCCGCCTACAACCGTCTGAACAAAGACGACGCGGTCGTCCTGCTGGTCGATCACCAGACCGGTCTGATTTCCCTGGTCCAGGACTTCTCGCCCAACGAGTTCAAGAACAACGTGTTGGCCTTGGCCGACCTGGCGAAGTTCTTTGAACTGCCGACCATCCTGACCACCAGCTTCGAACAAGGCCCCAACGGCCCGATCGTGCCGGAACTCAAGGAAATGTTCCCGGACGCGCCGTACATCCCCCGTCCAGGTCAGATCAATGCCTGGGACAACGAAGACTTCGTCAAGGCGATCAAGGCCACCGGCCGCAAGCAACTGATCATCGCCGGCGTGGTCACGGATGTCTGCGTGGCGTTCCCCACCCTGTCGGCGCTGGCCGAAGGCTTCGACGTGTTTGTCGTCACCGACGCTTCGGGTACCTTCAACGAAACCGTGCAACAAGCCGCCTGGGTACGCATGACTGCTGCTGGCGCGCAGATGATGAACTGGTTCTCGGTGGCCTGTGAGCTGCACCGCGACTGGCGCAACGACATCGAAGGCCTGGGCAACCTGCTGTCCCAGCGCATTCCGAACTACCGCAACCTGATGAACAGCTACTCGGCACTGACGGCCAAGTAA	MSNVPAYNRLNKDDAVVLLVDHQTGLISLVQDFSPNEFKNNVLALADLAKFFELPTILTTSFEQGPNGPIVPELKEMFPDAPYIPRPGQINAWDNEDFVKAIKATGRKQLIIAGVVTDVCVAFPTLSALAEGFDVFVVTDASGTFNETVQQAAWVRMTAAGAQMMNWFSVACELHRDWRNDIEGLGNLLSQRIPNYRNLMNSYSALTAK				NA	NA	NA	NA	NA
D1-36_01914	879	dmlR_9		HTH-type transcriptional regulator DmlR	ATGAACCCCTTCGAAGAGATGCGCATCTTTGCCCAGGTCATGGAGTCGGGCAGTTTCACCGCCGCAGCGGACAAGCTCGGGCTGTCCAAGCAATTCGTCAGCCGCAAGCTCATGGAGCTGGAGCAACGCCTGGGGGTGCGCCTGCTCAATCGCTCGACCCGTCGGCTGGATGTCACGCCGCTCGGCCAGCGCTACCACGAAGCGGCGTTGCGCCTGCTCAGCGAAGTCGAGCAAGTGGAGCAGGGCATCAGCGGCCAGACCAGCGAGCCGCGTGGGACCATCCGGCTCAGCGCGCCGTTGTCATTCGCCGTGGCGCACCTGGGCAGCCTGCTGCCGCTGTTCTTGCAACGCTACCGGGATGTCAGCGTCGAGGTGGACCTGAGCGACCGCTCGGTTGACCTTTTGGGGGAAGGCTATGACCTGGCACTGAGGATCGGCGTGCTGGAGGATTCAACGCTGATCGCCCGGCGCATCGCGAGCATCGAACGCGTGTACTGCGCCAGCCCGGCTTATCTGTCAGACAAAGGCACACCCATACGACCCGAAGACCTGCGCAATCACGACTGTTTGCCTTATGGACACAGCCGTCAGGTGCAGTGGCGTTTCGAGGGGCATGGCAAACCGCTGGTCCTGGAAGTGGTGGGACGGATGCGGGCCAATAACGGCGACCTGCTCAGGGACGCGGCAATTGCCGGGATGGGGATCACGTATCTGCCAACCTTCATCGTCGGCGATGCGCTAAAGGATGGTCGCCTGGTCAAGGTGCTGGAGGGGTTCGAAACCGAGCCGTTGACGCTGTCGGCGGTCTATCCGCAACACCGTCAGGCTTCGCGACCGGTGCAGGCGCTGGTGGAATTCTTGCGCGAGCAGACGATATGA	MNPFEEMRIFAQVMESGSFTAAADKLGLSKQFVSRKLMELEQRLGVRLLNRSTRRLDVTPLGQRYHEAALRLLSEVEQVEQGISGQTSEPRGTIRLSAPLSFAVAHLGSLLPLFLQRYRDVSVEVDLSDRSVDLLGEGYDLALRIGVLEDSTLIARRIASIERVYCASPAYLSDKGTPIRPEDLRNHDCLPYGHSRQVQWRFEGHGKPLVLEVVGRMRANNGDLLRDAAIAGMGITYLPTFIVGDALKDGRLVKVLEGFETEPLTLSAVYPQHRQASRPVQALVEFLREQTI				NA	NA	NA	NA	NA
D1-36_01915	477		COG5592	DNA nickase	ATGAACGCCATCGACCTGTTGAAAGCCGACCATGAACGCGTCAAAGCCATTCTCACTCAATTGAGTGAGTCCACTGATCGCGCGGTCAAGAAACGCACCGAGCTACTGGCGAAGCTGGAAATGGAAGTCACCATCCACACCCGCCTGGAAGAAGAAATCCTGTACCCGGCCTTCAAGCAGGAAGGCGGCAAGGAAGAAGCCGAGATGTATTACGAAGCCAAGGAAGAGCACCGCACCGTCGATTCGCTGGTGCTGCCCGACCTGAAAGCCACCGACCCTTCCCAGCCTGAATTCGCGGGCCGCGTCAAAGTGGTGAAAGAGCTGCTGGAGCACCACATCGAGGAAGAAGAGAAAGAAATGTTCCCTCAAGCCAAGAAGGTGCTGGGCAAGGCTAAGCTGGACGCCTTGGGCGAGCAGATGGAAACCATGAAAGCGCAGTACAAGAAAGAACTGAGCAGCGCCAACCTCGCCGCTTGA	MNAIDLLKADHERVKAILTQLSESTDRAVKKRTELLAKLEMEVTIHTRLEEEILYPAFKQEGGKEEAEMYYEAKEEHRTVDSLVLPDLKATDPSQPEFAGRVKVVKELLEHHIEEEEKEMFPQAKKVLGKAKLDALGEQMETMKAQYKKELSSANLAA				NA	NA	NA	NA	NA
D1-36_01916	1149	lhgD	COG0579	L-2-hydroxyglutarate dehydrogenase	ATGCTCAAGCGCTATCGTGCCTTTGAAGGAGATCCAGCGTTGAATGTGGATATAGATTGCATGGTCGTCGGCGCAGGCGTCGTCGGCCTGGCCGTGGCGCGGGAGATGGCGCAGGCCGGGCATGAAGTGCTGGTGATCGAAGCAGGCGATGCCATCGGCGCGGGTATCAGCTCGCGCAATTCGGAAGTGATCCATGCCGGGCTGTATTACCCGCCCGGCAGCCTCAAGGCGCAGCTGTGTGTCGAAGGCCGGCGACGGCTGTATGACTACTGCGCCAGCCACGGCGTCCAGACTCGCCGGCTCGGCAAACTGATCGTGGCGAAGGATCAGGCACAACTGGCCGAGCTTGAAAAGCTTCTGGCGCGCGGCCTGGTCAACGGGGTGGATGACCTGCGTCTGCTCGATAAAAGGCAGGCACAGGCGCTGGAGCCGGAGCTGTCCTGTATCGGCGCGTTGTATTCGCCCTCCACCGGTATTGTCGACGCCCATGGGTTGATGCTGGCGTTGCAAGGCGACGCCGAGGCGGCCGGTGCCGACGTCGTGTTCCGCACGCCCTTATTGGAGGCGAACATCCTCGACGGAGGCTTCAGCCTGACATTGGGCGGCACGGCGCAGATGACGTTGTCGTGCCGCCGCCTGATCAATGCCGCCGGCCTCCAGGCCCCTGCCCTCGCCCGCCGGATCGAGGGGCTGGCCCGGCAGTGGATTCCCGATGGTTACCTGTGCAAAGGCAACTACTTCCAACTGGCCGGGCGGGCACCATTCCGCCATTTGGTTTATCCGGCGCCAGAAGCCGCTGGCCTGGGCATTCATATGACGCTCGATCTGGCGGGCCAGGCGCGTTTCGGTCCTGACACCGAATGGGTCGAAGCAGAAGACTACCGAGTGGATCCGGCCCGGGCCGAAGCGTTCTACCAGGCCATTCGAAACTACTGGCCGGGCTTGCCCGACCGGAGCCTGCAACCCGCCTACAGCGGCATTCGCCCGAAAATCTCCGCCCCGGGGGAACCGGCCCGGGACTTTCTTATCAGCGCTGAAACCGAGCACAAGGTGCCGGGGCTGATCAACCTGTTCGGTATCGAATCCCCGGGGCTGACGTCCTGCCTGGCACTGGCGGAACGGGTCAGGCAATCGATCGACAACCCCTGA	MLKRYRAFEGDPALNVDIDCMVVGAGVVGLAVAREMAQAGHEVLVIEAGDAIGAGISSRNSEVIHAGLYYPPGSLKAQLCVEGRRRLYDYCASHGVQTRRLGKLIVAKDQAQLAELEKLLARGLVNGVDDLRLLDKRQAQALEPELSCIGALYSPSTGIVDAHGLMLALQGDAEAAGADVVFRTPLLEANILDGGFSLTLGGTAQMTLSCRRLINAAGLQAPALARRIEGLARQWIPDGYLCKGNYFQLAGRAPFRHLVYPAPEAAGLGIHMTLDLAGQARFGPDTEWVEAEDYRVDPARAEAFYQAIRNYWPGLPDRSLQPAYSGIRPKISAPGEPARDFLISAETEHKVPGLINLFGIESPGLTSCLALAERVRQSIDNP				NA	NA	NA	NA	NA
D1-36_01917	1464	nuoN	COG1007	NADH-quinone oxidoreductase subunit N	ATGGAATTCACGATTCAACACTTTATCGCGCTTGCGCCGCTGTTGATCACCAGCGCCACGATCATCGTGGTGATGCTGGCGATCGCCTGGCGCCGCAATCACGCACAAACCTTCCTGCTGTCGGTGGCGGGGCTGAACCTGGCCCTGCTGTCGATCCTGCCGGCCCTGAAAGTCGCGCCCCTGGCGGTCACGCCACTGATACAGATCGACAGCTTCGCCTGCCTGTATATGGCGCTGATCCTGGTCGCCACCCTCGCCTGCGTCACCCTCGCCCACGCCTATCTGGGTGATGGGGGTTCGGGTTACCCGGGCAACCGCGAAGAACTGTACCTGCTGATCCTGATGGCCGCCGCCGGTGGCCTGGTCCTGGTCAGCGCACAGCACCTGGCGAGCCTGTTCATCGGCCTGGAACTGCTGTCGGTGCCGGTTTATGGCCTGGTGGCCTACGCCTTCTTCAACAAGCGCTCCCTGGAAGCCGGCATCAAGTACATGGTGTTGTCGGCCGCCGGTTCCGCGTTCCTGTTGTTCGGCATGGCCCTGCTTTACGCTGAAGCCGGCACCCTGAGCTTCGTCGGTATCGGCCAGGCCCTGGCGGCCACCGGCCTGCCTAGCCCGATCGCTCAACTGGGCCTGGGCATGATGCTGATCGGCCTGGCGTTCAAGCTGTCGCTGGTTCCGTTCCACCTCTGGACCCCGGACGTCTACGAAGGCGCCCCGGCGCCCGTGGCGGCGTTCCTCGCCACCGCATCGAAGGTGGCGGTGTTCGCGGTCATGGTGCGTCTGTTCCAGATCTCGCCAGTGGCCAGCAGCGGCGTGTTGAGTAACGTGCTGACCATCATCGCCATCGCGTCGATCCTGTTCGGTAACCTGCTGGCGCTGACTCAGAGCAACCTCAAGCGTCTGCTGGGTTACTCGTCCATCGCCCACTTCGGCTACCTGCTGATCGCTCTGATCGCCAGCAAGGGCCTGGCCGTGGAAGCCATCGGCGTATACCTGGTCACCTACGTGATCACCAGCCTCGGCGCTTTCGGCGTGATCACTCTGATGTCCTCGCCGTACAACGGCCGCGACGCCGATGCCCTGTACGAATACCGTGGCCTGTTCTGGCGCCGTCCGTACCTGACCGCCGTGCTGACCGTGATGATGCTGTCCCTGGCCGGCATCCCGCTGACCGCCGGCTTCATCGGCAAGTTCTACATCATTGCCACCGGCGTCGAGGCTCACCAATGGTGGCTGGTCGGCTCCCTGGTGCTGGGCAGTGCCATCGGCGTGTTCTACTACCTGCGCGTCATGGTCACCCTGTACCTGATGGAACCGAACCTGCGTCGCCACGATGCCGAGTTGCACTGGGAACAAAAGGCAGGCGGCGTCATGCTGCTGGCCATCGCCGTATTGGCGTTCTTCCTGGGTGTGTACCCGCAGCCGTTGCTGACCCTGGTTCAGCAGGCTGGTCTGACCGGCTGA	MEFTIQHFIALAPLLITSATIIVVMLAIAWRRNHAQTFLLSVAGLNLALLSILPALKVAPLAVTPLIQIDSFACLYMALILVATLACVTLAHAYLGDGGSGYPGNREELYLLILMAAAGGLVLVSAQHLASLFIGLELLSVPVYGLVAYAFFNKRSLEAGIKYMVLSAAGSAFLLFGMALLYAEAGTLSFVGIGQALAATGLPSPIAQLGLGMMLIGLAFKLSLVPFHLWTPDVYEGAPAPVAAFLATASKVAVFAVMVRLFQISPVASSGVLSNVLTIIAIASILFGNLLALTQSNLKRLLGYSSIAHFGYLLIALIASKGLAVEAIGVYLVTYVITSLGAFGVITLMSSPYNGRDADALYEYRGLFWRRPYLTAVLTVMMLSLAGIPLTAGFIGKFYIIATGVEAHQWWLVGSLVLGSAIGVFYYLRVMVTLYLMEPNLRRHDAELHWEQKAGGVMLLAIAVLAFFLGVYPQPLLTLVQQAGLTG	PGPT0026860_1743	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
D1-36_01918	1533	nuoM	COG1008	NADH-quinone oxidoreductase subunit M	ATGATTCTGCCCTGGCTAATCCTGATCCCCTTCATCGGCGGCCTGCTGTGCTGGATGGCGGAGCGTTCCAGCTCTACCCTCCCGCGCTGGATTGCGCTGCTGACCATGTCCCTGGAACTCGCGCTCGGCCTCTGGCTGTGGGCGACCGGCGACTATTCATTCGCACCGGCCCCTGGCGCCGATCCGACCTGGGCACTTGAATTCAAGCACGCCTGGATCGAGCGCTTCGGCATCAGCGTGCACCTGGCCCTCGACGGTCTGTCGCTGCTGATGATCCTGCTGACCGGCTTGCTGGGTATTCTCTCGGTGCTCTGCTCCTGGAAAGAGATCCAGCGTCACGTCGGTTTCTTCCACCTGAACCTGATGTGGATCCTGGGCGGTGTCGTCGGCGTGTTCCTGGCGCTGGACCTGTTCATGTTCTTCTTCTTCTGGGAAATGATGCTGGTGCCGATGTATTTCCTCATCGCGCTCTGGGGTCACAGTTCTTCGGACGGCAAGAAGACCCGGATCTACGCAGCGACCAAGTTCTTCATCTTCACCCAGGCTTCCGGCCTGATCATGTTGGTGGCGATCCTTGGCCTGGTCCTGGTGAACTTCAACAACACCGGCGTGATTACCTTCAACTACGCCGACCTGTTGAAAGTAGAGCTGTCGCGCACCACCGAGTACGTGCTGATGCTGGGCTTCTTCATCGCCTTCGCGGTGAAGCTGCCGGTGGTGCCGTTCCACTCCTGGCTGCCCGACGCCCACGCCCAGGCGCCGACCGCCGGTTCCGTGGACCTGGCCGGTATCTTGTTGAAGACAGCGGCCTACGGCCTGCTGCGCTTTGCCTTGCCGCTTTTCCCGAACGCCTCGGCCGAGTTTGCGCCGATCGCCATGACCCTTGGCCTGATCGGTATTTTCTACGGTGCGTTCCTGGCCTTCGCCCAGACCGACATCAAGCGCCTGATCGCGTTCTCCAGCGTTTCGCACATGGGCTTCGTGCTTATCGGGATCTACTCCGGCAGCCAGTTGGCCCTGCAAGGCGCGGTGATCCAGATGCTGGCCCACGGCCTGTCGGCTGCGGCGCTGTTTATCCTCAGCGGCCAGTTGTACGAGCGCCTGCATACCCGAGACATGCGTGAAATGGGCGGCATCTGGTCGCGCATCGCCTACCTGCCGGCCATCAGCCTGTTCTTCGCAGCCGCTTCCCTGGGCCTGCCAGGCACCGGCAACTTCGTCGGCGAGTTCCTGATCCTGATCGGCTCGTTCGTCAGCGCGCCATGGATCACCGCGATTGCCACGTCCGGCCTGGTGTTCGGTTCGGTCTACTCGCTGATCATGATCCACCGCGCCTACTTCGGTCCGGCCAAGTCCGATGAAGTGCTGCGCGGCATGGACGGTCGCGAACTGATCATGGTGCTTGGCCTTGCGGTGCTGCTGGTTTACCTCGGCGTCTATCCGCAGCCATTCCTCGACACTTCCGCCGCCACGATGCATGGCGTGCAGCAGTGGCTCGGCACCGCCTTCTCTCAACTCGCTTCGGCCCGGTAA	MILPWLILIPFIGGLLCWMAERSSSTLPRWIALLTMSLELALGLWLWATGDYSFAPAPGADPTWALEFKHAWIERFGISVHLALDGLSLLMILLTGLLGILSVLCSWKEIQRHVGFFHLNLMWILGGVVGVFLALDLFMFFFFWEMMLVPMYFLIALWGHSSSDGKKTRIYAATKFFIFTQASGLIMLVAILGLVLVNFNNTGVITFNYADLLKVELSRTTEYVLMLGFFIAFAVKLPVVPFHSWLPDAHAQAPTAGSVDLAGILLKTAAYGLLRFALPLFPNASAEFAPIAMTLGLIGIFYGAFLAFAQTDIKRLIAFSSVSHMGFVLIGIYSGSQLALQGAVIQMLAHGLSAAALFILSGQLYERLHTRDMREMGGIWSRIAYLPAISLFFAAASLGLPGTGNFVGEFLILIGSFVSAPWITAIATSGLVFGSVYSLIMIHRAYFGPAKSDEVLRGMDGRELIMVLGLAVLLVYLGVYPQPFLDTSAATMHGVQQWLGTAFSQLASAR	PGPT0026850_1614	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
D1-36_01919	1854	nuoL	COG1009	NADH-quinone oxidoreductase subunit L	ATGAACCTTCTTTTCCTGACTTTCATATTTCCCCTCATCGGTTTCCTGCTGCTGTCGTTCTCCCGTGGACGCTGGTCGGAAAACCTTTCGGCGCTGGTTGGCGTGGGCTCCATCGGCCTGTCTGCCATCGTTACCGCGTATGTGATCTGGCAATTCAACGTCGCCCCGCCGGAAGGTGGCGCGTACGTGCAGGTGCTGTGGCAGTGGATGGCGGTGGAAGGCTTCACGCCGAACTTCGCCCTTTACCTGGACGGCCTGTCGGTGACCATGCTCGGCGTGGTGGTCGGCGTGGGTTTCCTGATCCACCTGTTCGCCTCGTGGTACATGCGCGGTGAAGCCGGTTACTCGCGCTTCTTCGCCTACACCAACCTGTTCATCGCCAGCATGCTGTTCCTGGTGCTCGGCGATAACCTGTTGTTCCTGTACTTCGGCTGGGAAGGCGTGGGCCTGTGCTCGTACCTGTTGATCGGTTTCTACTACGGCAACCGCAACAACGGTAACGCCGCGCTCAAGGCCTTCATCGTGACCCGCATCGGCGACGTGTTCATGGCCATCGGCCTGTTCATCCTGTTCCAGCAGCTGGGCACGCTGAATATCCAGGAATTGCTGGTCAAGGCGCCCGAGCACTTCAAGGCCGGCGACTTCTGGATCGTCCTGGCGACCCTGATGCTGCTGGGCGGCGCTGTCGGCAAATCCGCGCAACTGCCGCTGCAGACCTGGTTGGCGGACGCGATGGCGGGCCCGACGCCGGTTTCGGCACTGATCCACGCGGCGACCATGGTCACCGCCGGTGTCTACCTGATCGCCCGTACCCACGGCCTGTTCGCCCTGGCGCCGGACATCCTGCACCTGGTCGGCCTGGTTGGCGGCGTGACCCTGGTGCTGGCCGGTTTTGCCGCGCTGGTACAGACCGACATCAAGCGCATCCTCGCCTACTCGACCATGAGCCAGATCGGCTACATGTTCCTGGCCCTGGGCGTCGGTGCCTGGGAAGGCGCGATCTTCCACCTGATGACCCACGCCTTCTTCAAGGCCCTGCTGTTCCTTGCCTCCGGTGCGGTGATCGTTGCCTGCCACCACGAGCAGAACATCTTCAAGATGGGCGGCCTGTGGAAGAAACTGCCGTTGGCCTATGCCAGCTTCATCGTCGGTGGCGCGGCCCTGGCGGCCCTGCCATTGGTCACCGCCGGCTTCTACTCCAAGGACGAGATCCTCTGGGAAGCGTTCGCCAGCGGTAACCAGGGTCTGCTTTATGCCGGCCTGGTGGGTGCGTTCATGACCTCGCTGTACACCTTCCGCCTGATCTTCATCGCATTCCACGGTGAAGCCAAGACCGAAGCCCACGCCGGCCACGGCATTGCCCACTGGCTGCCGCTGTCGGTGCTGATCGTGCTGTCCACCTTCGTCGGCGCCATGATCACCCCACCGCTGGCCGATGTGCTGCCGCAAAGCGTCGGCCATGCCGGCGGCGAAGCCAAGCACAGCCTTGAGATTGCCTCGGGCGCCATCGCCCTGGCGGGTATCCTGCTGGCTGCCCTGCTGTTCCTCGGCAAGCGTCGCTTCGTCACGGCCATCGCCAACAGCGGCATCGGGCGTTTCCTCTCGGCCTGGTGGTTCGCCGCCTGGGGCTTCGATTGGATCTACGACAAACTGTTCGTCAAGCCATACCTTGCGATCAGCCACATTCTGCGCAAAGACCCGCTCGACCAGACCATTGGCCTGATCCCGCGCATGGCAAAGGGTGGCCACACTGCCCTGAGCCGTACCGAGACCGGTCAACTGCGTTGGTATGCGGCTTCCATGGCGGCTGGCGCCGTGCTGGTTATCGGCGCCATCGTGCTGGTAGCGGTCTGA	MNLLFLTFIFPLIGFLLLSFSRGRWSENLSALVGVGSIGLSAIVTAYVIWQFNVAPPEGGAYVQVLWQWMAVEGFTPNFALYLDGLSVTMLGVVVGVGFLIHLFASWYMRGEAGYSRFFAYTNLFIASMLFLVLGDNLLFLYFGWEGVGLCSYLLIGFYYGNRNNGNAALKAFIVTRIGDVFMAIGLFILFQQLGTLNIQELLVKAPEHFKAGDFWIVLATLMLLGGAVGKSAQLPLQTWLADAMAGPTPVSALIHAATMVTAGVYLIARTHGLFALAPDILHLVGLVGGVTLVLAGFAALVQTDIKRILAYSTMSQIGYMFLALGVGAWEGAIFHLMTHAFFKALLFLASGAVIVACHHEQNIFKMGGLWKKLPLAYASFIVGGAALAALPLVTAGFYSKDEILWEAFASGNQGLLYAGLVGAFMTSLYTFRLIFIAFHGEAKTEAHAGHGIAHWLPLSVLIVLSTFVGAMITPPLADVLPQSVGHAGGEAKHSLEIASGAIALAGILLAALLFLGKRRFVTAIANSGIGRFLSAWWFAAWGFDWIYDKLFVKPYLAISHILRKDPLDQTIGLIPRMAKGGHTALSRTETGQLRWYAASMAAGAVLVIGAIVLVAV	PGPT0026845_3029	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
D1-36_01920	309	nuoK	COG0713	NADH-quinone oxidoreductase subunit K	ATGCCTGCTATCCCTCTCGAGCATGGTCTGGCGGTTGCCGGCATCCTGTTCTGTCTCGGTCTGGTCGGCCTGATGGTCCGCCGCAACATTCTGTTCGTGCTGATGAGCCTGGAGGTGATGATGAATGCCTCCGCCCTGGCCTTCATCGTTGCGGGCGCTCGCTGGGCGCAACCGGATGGACAGATCATGTTCATCCTGGTGATCAGCCTGGCAGCCGCCGAGGCCAGTATTGGCCTGGCGATCCTGTTGCAGCTGTATCGCCGCTTCCACACTCTCGATATTGACGCTGCCAGCGAGATGCGCGGATGA	MPAIPLEHGLAVAGILFCLGLVGLMVRRNILFVLMSLEVMMNASALAFIVAGARWAQPDGQIMFILVISLAAAEASIGLAILLQLYRRFHTLDIDAASEMRG	PGPT0026840_890	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
D1-36_01921	501	nuoJ	COG0839	NADH-quinone oxidoreductase subunit J	ATGGAATTCGCTTTCTATTTCGCATCGGGTATCGCGGTGGTGTCCACGCTTCGTGTGGTCACCAACACCAACCCCGTGCACGCCCTGCTCTACCTGATCATTTCGCTGATCGCCGTGGCCATGACCTTCTTCGCCCTCGGCGCGCCGTTCGCCGGTGCCTTGGAAGTGATCGCTTACGCCGGCGCCATCATGGTGCTGTTCGTGTTCGTGGTGATGATGCTCAACCTCGGCCCGGCGGCGATCCAACAGGAACGCGCCTGGCTCAAGCCTGGCATCTGGGCGGGGCCGGTGATTCTCGCCGCCCTGCTGCTGGGAGAACTGCTGTATGTGCTGTTCGCCCACCAGAGCGGCCAGGCCATCGGCCACACCACCGTAGACGCCAAGGCCGTGGGCATCAGCCTGTTCGGCCCGTATCTGCTGGTGGTCGAACTCGCCTCGATGCTGCTGCTTGCCGCAGTCGTCACGGCGTTCCATTTGGGCCGTAATGAGGCGAAGGAGTAA	MEFAFYFASGIAVVSTLRVVTNTNPVHALLYLIISLIAVAMTFFALGAPFAGALEVIAYAGAIMVLFVFVVMMLNLGPAAIQQERAWLKPGIWAGPVILAALLLGELLYVLFAHQSGQAIGHTTVDAKAVGISLFGPYLLVVELASMLLLAAVVTAFHLGRNEAKE	PGPT0026835_2981	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
D1-36_01922	549	nuoI	COG1143	NADH-quinone oxidoreductase subunit I	ATGTTCAAATATATTGGCGACATCGTTAAGGGTACCGGTACCCAACTGCGAAGCCTGGTCATGATCTTCGGCCATGGCTTTCGCAAGCGCGACACCCTGCAATACCCGGAAGAACAGGTCTACCTGGCGCCGCGTTATCGCGGGCGCATCGTCCTGACCCGCGACCCTGACGGCGAAGAGCGCTGCGTGGCCTGCAACCTGTGCGCCGTGGCGTGCCCGGTAGGCTGCATCTCGCTGCAGAAAGCCGAGACCGAAGACGGTCGCTGGTACCCGGACTTTTTCCGCATCAACTTCTCGCGCTGCATCTTCTGCGGTTTGTGCGAGGAAGCGTGCCCGACCACCGCGATCCAGCTCACGCCGGATTTCGAAATGGCTGACTTCAAGCGTCAGGACCTGGTGTACGAGAAAGAAGACCTGCTGATTTCCGGTCCCGGTAAAAACCCTGATTACAACTTCTATCGTGTTGCAGGTATGGCCATTGCCGGCAAGCCGAAAGGCGCCGCGCAGAACGAAGCCGAACCGATCAACGTGAAGAGCTTGCTGCCTTAA	MFKYIGDIVKGTGTQLRSLVMIFGHGFRKRDTLQYPEEQVYLAPRYRGRIVLTRDPDGEERCVACNLCAVACPVGCISLQKAETEDGRWYPDFFRINFSRCIFCGLCEEACPTTAIQLTPDFEMADFKRQDLVYEKEDLLISGPGKNPDYNFYRVAGMAIAGKPKGAAQNEAEPINVKSLLP	PGPT0026830_1008	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
D1-36_01923	1008	nuoH	COG1005	NADH-quinone oxidoreductase subunit H	ATGAGCTGGTTCACCCCTGAAGTGATCGCCGTGATCCTGACGGTCCTCAAGGCCATCGTGGTCTTGCTGGCCGTGGTGGTCTGCGGCGCGTTGCTGAGCTTCGTCGAACGTCGCCTGCTGGGCTGGTGGCAGGACCGCTACGGTCCGAACCGCGTCGGCCCGTTCGGCATGTTCCAGATCGCCGCCGACATGGTGAAGATGTTCTTCAAGGAAGACTGGACGCCACCGTTCGCCGACAAGGTGATCTTCACCCTGGCACCGGTCGTGGCCATGAGCGCCTTGCTGATCGCCTTCGCGGTCATCCCGATCACCCCGACCTGGGGCGTGGCGGACCTGAACATCGGCCTGCTGTTCTTCTTCGCCATGGCCGGCCTGTCGGTGTACGCGGTGTTGTTCGCCGGTTGGTCGAGTAACAACAAGTTCGCCCTGCTCGGCAGCCTGCGGGCCTCGGCCCAGACCGTGTCCTATGAAGTGTTCATGGGCCTGTCGCTGATGGGCATCGTGATTCAGGCCGGCTCGTTCAACATGCGCGACATCGTCGAGTACCAGGCCCAGAACCTGTGGTTCATCATTCCGCAGTTCTTCGGCTTCTGTACCTTCTTCATCGCTGGCGTGGCCGTGACTCACCGTCACCCCTTCGACCAGCCGGAAGCGGAACAGGAACTGGCCGACGGTTACCACATTGAATATGCCGGCATGAAATGGGGCATGTTCTTCGTTGGCGAGTACATCGGCATCATCCTGATCTCGGCACTGCTGGTGACGCTGTTCTTCGGTGGCTGGCACGGTCCGTTCGGCATCCTGCCGCAACTGCCCTTCGTCTGGTTCGCCCTGAAGACCGCGTTTTTCATCATGCTGTTCGTTCTGTTGCGCGCCTCGATCCCGCGCCCACGCTACGACCAGGTGATGGATTTCAGCTGGAAATTCTGCCTGCCGCTGACCCTGATCAACATGCTGGTGACCGCTGCGATCGTTTTGATGAACGCGCCCGCGGCTGCGGTTCAGTGA	MSWFTPEVIAVILTVLKAIVVLLAVVVCGALLSFVERRLLGWWQDRYGPNRVGPFGMFQIAADMVKMFFKEDWTPPFADKVIFTLAPVVAMSALLIAFAVIPITPTWGVADLNIGLLFFFAMAGLSVYAVLFAGWSSNNKFALLGSLRASAQTVSYEVFMGLSLMGIVIQAGSFNMRDIVEYQAQNLWFIIPQFFGFCTFFIAGVAVTHRHPFDQPEAEQELADGYHIEYAGMKWGMFFVGEYIGIILISALLVTLFFGGWHGPFGILPQLPFVWFALKTAFFIMLFVLLRASIPRPRYDQVMDFSWKFCLPLTLINMLVTAAIVLMNAPAAAVQ	PGPT0026825_2464	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
D1-36_01924	2715	nuoG	COG1034	NADH-quinone oxidoreductase subunit G	ATGGCCACTATCCACGTAGACGGCAAAGAGCTCGAAGTCGATGGCGCAGACAACCTGTTACAGGCATGTCTGTCGCTGGGCCTCGACATTCCTTATTTCTGCTGGCACCCCGCCCTTGGCAGCGTTGGCGCCTGCCGCCAGTGCGCGGTCAAGCAGTACACCGACGAGAACGACAAGCGTGGTCGGATCGTCATGTCTTGCATGACCCCCGCCACCGACGGCAGCTGGATCTCCATCGACGACGAAGAAGCGAAAGTGTTTCGCGCCAGCGTCGTCGAATGGTTGATGACCAACCACCCTCACGACTGCCCGGTCTGTGAGGAAGGCGGCCATTGCCACCTGCAAGACATGACCGTGATGACCGGCCACAACGAGCGCCGTTATCGCTTCACCAAGCGTACCCACCAGAACCAGGATCTCGGCCCGTTCATTTCCCACGAGATGAACCGCTGCATCGCCTGCTACCGTTGCGTGCGTTTCTACAAGGACTACGCCGGCGGCACCGACCTGGGCGTATTCGGCGCCCACGACAACGTCTACTTCGGTCGCGTTGAAGACGGCACCCTGGAAAGTGAATTCTCCGGCAACCTCACCGAGGTCTGCCCGACCGGTGTGTTCACCGACAAGACCCACTCCGAGCGCTACAACCGCAAGTGGGACATGCAGTTCGCGCCAAGCATCTGCCACGGCTGCTCCAGCGGTTGCAACATCAGCCCGGGCGAGCGTTACGGCGAACTGCGCCGCATCGAAAACCGCTACAACGGTTCGGTGAACCAGTACTTCCTGTGCGACCGTGGCCGTTTCGGCTATGGCTACGTCAACCGCAAGGATCGCCCGCGCCAGCCGCTGCTCGCAAACGGCGCCAAGCTGAGCCTGGACGAAGCCCTGGACAAGGCCGCCGAGCTGCTGCGCGGACGCAACATCGTCGGCATCGGTTCGCCTCGCGCCAGCCTGGAAAGCAACTACGCCCTGCGTGAGCTGGTCGGCGCCGAGCACTTCTACAGTGGCATCGAGGCCGGCGAGCTGGAACGCATCCGCCTGGTGCTGCAAGTGCTCAAGGACAGCCCACTGCCCGTGCCGACGATGCGCGACATCGAAGACCACGACGCAGTGTTCGTCCTCGGCGAAGACCTGACCCAGACCGCCGCCCGCATGGCCCTCGCCCTGCGCCAGTCGGTCAAGGGCAAGGCCGAGGACATGGCCGACGCCATGCGCGTCCAGCCATGGCTCGACGCCGCCGTGAAGAACATCGGCCAGCACGCGCTGAACCCGCTGTTCATCGCCAGCCTCGCTGAAACCAAGCTCGACGACGTGGCCGAAGAATGCGTCCACGCCGCTCCGGACGATCTGGCGCGCATCGGTTTTGCCGTGGCCCACGCCCTGGATGCCAGCGCCCCGGCCGTCGACGGCCTGGACAGTGAAGCAGCCGCCCTCGCCCAACGCATCGCCGACGCCCTGCTGGCCGCCAAGCGTCCGCTGATCATCGCCGGCACCTCCCTGGGTTCCAAGGCGCTGATCCAAGCCGCGGCCAACATCGCCAAGGCACTGAAGCTACGCGAAAAAAATGGCTCCATCAGCCTGGTTGTACCTGAGGCCAACAGCCTCGGCCTGGCCATGCTTGGTGGCGAATCGGTCGACGCGGCGCTGCAAGCGGTGATCGACGGCAACGCCGACGCCATCGTCGTGCTGGAGAACGACCTGTTCACCCGCACCGACAATGCCAAGGTCGATGCCGCCCTGAGCGCCGCCAAGGTCTTGATCGTCGCCGACCATCAGAAAACCGCCACCACCGACCGCGCCGACCTGGTGCTGCCGGCGGCAAGCTTCGCCGAAGGCGACGGTACGCTGGTCAGCCAGGAAGGCCGCGCCCAGCGCTTCTTCCAGGTTTTCGACCCGCAATACCTGGACGCCAGCATTCTGGTCCACGAAGGCTGGCGCTGGCTGCACGCCCTGCGCGCCACCCTGCTGAACCAGCCGATCGACTGGACGCAACTGGACCACGTCACGGCCGCCGTTGCCTCGAGCACTGCGCAACTGGCCGGTGTGGTCGACGCCGCGCCGTCCGCCGCGTTCCGCATCAAGGGCCTGAAACTGGCTCGCGAACCGCTGCGCTACTCCGGTCGCACCGCGATGCGCGCCAATATCAGCGTCCACGAACCGCGTACTCCGCAGGACAAGGACACCGCGTTCGCCTTCTCCATGGAAGGTTACTCGGGCTCCGCCGAACCGCGCTCGCAAGTGCCGTTCGCCTGGTCGCCGGGCTGGAACTCGCCGCAGGCCTGGAACAAGTTCCAGGACGAAGTCGGCGGCCACCTGCGTGCCGGTGATCCGGGCACTCGCCTGATCGAAACCCAGGGCGATGGCCTGGGCTGGTTCGCCAGCGTCCCACGTGCCTTCAACCCGGCACCGGGCACCTGGCAGGTCGTGCCGTTCCATCACCTGTTCGGCAGCGAAGAGAACTCTTCCAAGGCCGAGCCGGTGCAGGAGCGCATCCCGGCCGCCTACGTGTCGCTGGCCAAGTCCGAAGCCGATCGCCTGGGCGTCAACGACGGTGCCCTGCTGAGCCTGAACGTGGCTGGCCAGACCTTGCGTCTGCCGCTGCGCATCAATGAAGAACTGGGCGCCGGCCTGGTGGCCCTGCCGGCTGGCCTGGCGGGTATTCCACCGGCGATTTTCGGCAAAACCGTCGACGGTCTGCAGGAGGCAGCGCAATGA	MATIHVDGKELEVDGADNLLQACLSLGLDIPYFCWHPALGSVGACRQCAVKQYTDENDKRGRIVMSCMTPATDGSWISIDDEEAKVFRASVVEWLMTNHPHDCPVCEEGGHCHLQDMTVMTGHNERRYRFTKRTHQNQDLGPFISHEMNRCIACYRCVRFYKDYAGGTDLGVFGAHDNVYFGRVEDGTLESEFSGNLTEVCPTGVFTDKTHSERYNRKWDMQFAPSICHGCSSGCNISPGERYGELRRIENRYNGSVNQYFLCDRGRFGYGYVNRKDRPRQPLLANGAKLSLDEALDKAAELLRGRNIVGIGSPRASLESNYALRELVGAEHFYSGIEAGELERIRLVLQVLKDSPLPVPTMRDIEDHDAVFVLGEDLTQTAARMALALRQSVKGKAEDMADAMRVQPWLDAAVKNIGQHALNPLFIASLAETKLDDVAEECVHAAPDDLARIGFAVAHALDASAPAVDGLDSEAAALAQRIADALLAAKRPLIIAGTSLGSKALIQAAANIAKALKLREKNGSISLVVPEANSLGLAMLGGESVDAALQAVIDGNADAIVVLENDLFTRTDNAKVDAALSAAKVLIVADHQKTATTDRADLVLPAASFAEGDGTLVSQEGRAQRFFQVFDPQYLDASILVHEGWRWLHALRATLLNQPIDWTQLDHVTAAVASSTAQLAGVVDAAPSAAFRIKGLKLAREPLRYSGRTAMRANISVHEPRTPQDKDTAFAFSMEGYSGSAEPRSQVPFAWSPGWNSPQAWNKFQDEVGGHLRAGDPGTRLIETQGDGLGWFASVPRAFNPAPGTWQVVPFHHLFGSEENSSKAEPVQERIPAAYVSLAKSEADRLGVNDGALLSLNVAGQTLRLPLRINEELGAGLVALPAGLAGIPPAIFGKTVDGLQEAAQ	PGPT0026820_482	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
D1-36_01925	1359	nuoF	COG1894	NADH-quinone oxidoreductase subunit F	ATGACCCTGACTTCCTTCGGGCCCGCCAACCGCATCCAGCGTTCGGCCGAAACCCATCCCCTGACGTGGCGTCTGCGTGACGACGGCGAAGCGGTATGGCTGGACGAATACCAGGCGAAGAACGGCTATGCCGCCGCGCGCAAGGCATTCGCCGACATGGCCGCCGATGACATCGTCCAGACCGTGAAGGACGCCGGCCTCAAGGGCCGTGGCGGCGCGGGCTTCCCCACCGGCGTGAAATGGGGCCTGATGCCAAAGGACGAGTCCATCAACATCCGCTACCTGCTGTGCAACGCGGACGAGATGGAACCCAACACCTGGAAAGACCGCATGCTGATGGAGCAACTGCCCCATCTGCTGATCGAAGGCATGCTGATCAGTGCCCGCGCGCTGAAGACCTACCGTGGCTACATCTTCCTGCGTGGCGAATACACCACCGCCGCCAAGCACCTGAACCGTGCCGTGGAAGAAGCCAAGGCCGCTGGCCTGCTGGGCAAGAACATCCTGGGCTCAGGCTTCGATTTCGAGCTGTTCGTCCACACCGGCGCCGGGCGTTACATCTGCGGTGAAGAAACCGCGCTGATCAACTCCCTGGAAGGCCGCCGCGCCAACCCACGCTCCAAGCCGCCCTTCCCCGCCGCCGTCGGCGTGTGGGGCAAGCCGACCTGCGTGAACAACGTCGAGACCCTGTGCAACGTTCCGGCGATCATCGCCGACGGCGTCGACTGGTACAAATCCCTGGCCCGTGACGGCAGTGAAGACATGGGCACCAAGCTCATGGGCTTCTCCGGCAAGGTCAAGAACCCTGGCCTGTGGGAACTGCCGTTCGGCGTCACCGCGCGCGAGCTGTTCGAAGACTACGCCGGTGGCATGCGCGACGGCTACAAGCTCAAGTGCTGGCAGCCCGGCGGCGCCGGCACCGGTTTCCTGTTGCCGGAACACCTGGACGCACAAATGTATGCCGGTGGCATCGCCAAGGTGGGCACCCGGATGGGTACCGGCCTGGCGATGGCGGTGGACGACAGCGTCAACATGGTTTCGCTTCTGCGCAACATGGAGCAGTTTTTCTCGCGCGAATCCTGCGGTTTCTGCACCCCTTGCCGCGACGGCCTGCCCTGGAGCGTCAAGCTCTTGATGGCCATCGAGAAAGGCCAAGGCCAACCCGGCGACATCGAGACCCTGCTGGGCCTGGTGGGTTTCCTCGGCCCAGGCAAGACCTTCTGTGCTCACGCACCGGGTGCCGTGGAGCCGTTGGGCAGCGCCATCAAATACTTCCGCCCTGAATTCGAGGCCGGCATCGCGCCAACCCGCGCGGACGATCTCAATCAGGTGGTCTCGCCGACCATGGTCGGCGCGTAA	MTLTSFGPANRIQRSAETHPLTWRLRDDGEAVWLDEYQAKNGYAAARKAFADMAADDIVQTVKDAGLKGRGGAGFPTGVKWGLMPKDESINIRYLLCNADEMEPNTWKDRMLMEQLPHLLIEGMLISARALKTYRGYIFLRGEYTTAAKHLNRAVEEAKAAGLLGKNILGSGFDFELFVHTGAGRYICGEETALINSLEGRRANPRSKPPFPAAVGVWGKPTCVNNVETLCNVPAIIADGVDWYKSLARDGSEDMGTKLMGFSGKVKNPGLWELPFGVTARELFEDYAGGMRDGYKLKCWQPGGAGTGFLLPEHLDAQMYAGGIAKVGTRMGTGLAMAVDDSVNMVSLLRNMEQFFSRESCGFCTPCRDGLPWSVKLLMAIEKGQGQPGDIETLLGLVGFLGPGKTFCAHAPGAVEPLGSAIKYFRPEFEAGIAPTRADDLNQVVSPTMVGA	PGPT0026815_879	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
D1-36_01926	498	nuoE_1	COG1905	NADH-quinone oxidoreductase subunit E	ATGAACAGCACGCTTATCCAGACTGACCGTTTCGCCCTGAGCGAAACCGAGCGCTCGGCCATCGAGCACGAGCTGCATCACTACGAAGACCCGCGCGCGGCGTCGATCGAAGCCTTGAAGATCGTCCAGAAGGAACGTGGCTGGGTGCCTGACGGCGCGCTCTACGCCATCGGCGAGATCCTCGGCATCCCGGCCAGCGACGTCGAAGGCGTCGCTACCTTCTACAGCCAGATTTTCCGCCAGCCCGTAGGCCGCCACATCATTCGCGTCTGCGACAGCATGGTCTGCTACATCGGCGGCCACGAATCGGTGGTCGGCGAGCTCCAGAGCAAGCTGGGCATCGGCCTGGGCCAGACCACCGCCGACGGCCGCTTCACCCTGCTGCCCGTGTGCTGCCTGGGCAACTGCGACAAGGCACCGGCGCTGATGATCGATGACGACACCTTTGGTGACGTCAAGCCGGACGGCGTCGCCAAACTGCTGGAGGGCTACGTATGA	MNSTLIQTDRFALSETERSAIEHELHHYEDPRAASIEALKIVQKERGWVPDGALYAIGEILGIPASDVEGVATFYSQIFRQPVGRHIIRVCDSMVCYIGGHESVVGELQSKLGIGLGQTTADGRFTLLPVCCLGNCDKAPALMIDDDTFGDVKPDGVAKLLEGYV	PGPT0026810_2064	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
D1-36_01927	1782	nuoC	COG0649	NADH-quinone oxidoreductase subunit C/D	ATGACTACAGGCAGTGCTCTGTACATCCCGCCTTACAAGGCAGACGACCAGGATGTGGTCGTCGAACTGAACAACCGTTTTGGCGCAGAGGCGTTCACGCTCCAGTCGACCCGCACCGGCATGCCGGTGCTTTGGGTTGCCCGCGCCAAGCTGATCGAAGTCCTGACCTTCCTGCGCAACCTGCCCAAGCCGTACGTCATGCTCTATGACCTGCATGGCGTGGACGAGCGTCTGCGCACCAAGCGCCAGGGCTTGCCTGGTGCCGATTTCACCGTGTTCTACCACCTGTTGTCGGTGGAGCGTAATAGTGACGTAATGATCAAGGTCGCCTTGTCCGAAAGCGACCTCAGCGTGCCGACCGTGACCGGCATCTGGCCGAACGCCAACTGGTACGAGCGTGAAGTCTGGGACATGTTCGGCATCGATTTCCCCGGCCACCCGCACCTGACGCGCATCATGATGCCGCCGACCTGGGAAGGTCACCCGCTGCGCAAGGACTTCCCGGCCCGTGCCACGGAGTTCGACCCGTACAGCCTGACCCTGGCCAAGCAGCAACTCGAAGAAGAGTCCGCGCGCTTCAAGCCTGAAGACTGGGGGATGAAGCGTTCCGGTGCCAACGAGGACTACATGTTCCTCAACCTGGGCCCGAACCACCCCTCGGCCCACGGTGCGTTCCGCATCATCCTGCAGCTGGACGGCGAAGAGATCGTCGATTGCGTTCCGGACATCGGCTACCACCACCGTGGCGCCGAGAAAATGGGTGAGCGCCAGTCCTGGCACAGCTACATCCCCTACACCGATCGCATCGACTACCTTGGCGGGGTAATGAACAACCTGCCGTACGTCCTGTCGGTGGAAAAACTGGCGGGCATCACGGTGCCGGACCGTGTCAACGTGATTCGCATCATGATGGCCGAGTTCTTCCGTATCACCAGCCACCTGCTGTTCCTGGGCACCTACATCCAGGACGTGGGCGCGATGACGCCGGTGTTCTTCACGTTCACCGACCGCCAGAAAGCCTACACCGTGATCGAAGCCGTCACCGGTTTCCGCCTGCACCCGGCCTGGTACCGCATCGGCGGCGTGGCCCACGACCTGCCGCGCGGCTGGGAAAAGCTGGTCAAGGATTTCGTCGAGTGGATGCCCAAGCGCCTGGACGAATACACCAAGGCCGCCCTGAAGAACAGCATCCTGCGCGGCCGAACCGAAGGCGTGGCCGCCTACAACACCAAGGAAGCGCTGGAATGGGGCGTTACCGGCCCGAACCTGCGCGCCACCGGCCTGGACTTCGACCTGCGCAAGGCGCGCCCGTATTCCGGCTACGAGAACTTCGAGTTCGAAGTCCCGCTGGCGACTCACGGTGACGCCTATGACCGCTGCATGGTTCGCGTCGAGGAAATGCGCCAGAGCGTCAAGATCATCGAGCAGTGCATGCGCAACATGCCGGAAGGCCCGTACAAGGCGGACCACCCGCTGACCACGCCGCCACCGAAAGAACGCACGCTGCAACACATCGAGACCCTGATCACCCACTTCCTGCAAGTTTCGTGGGGCCCGGTCATGCCGGCCAACGAATCCTTCCAGATGATCGAAGCGACCAAGGGCATCAACAGTTATTACCTGACGAGCGACGGCGGCACCATGAGCTACCGCACCCGGATTCGCACCCCAAGCTACCCGCACCTGCAGCAGATCCCTTCGGTGATCAAAGGCAGCATGGTCGCGGACTTGATCGCGTACCTGGGTAGTATCGATTTCGTTATGGCCGACGTGGACCGCTAA	MTTGSALYIPPYKADDQDVVVELNNRFGAEAFTLQSTRTGMPVLWVARAKLIEVLTFLRNLPKPYVMLYDLHGVDERLRTKRQGLPGADFTVFYHLLSVERNSDVMIKVALSESDLSVPTVTGIWPNANWYEREVWDMFGIDFPGHPHLTRIMMPPTWEGHPLRKDFPARATEFDPYSLTLAKQQLEEESARFKPEDWGMKRSGANEDYMFLNLGPNHPSAHGAFRIILQLDGEEIVDCVPDIGYHHRGAEKMGERQSWHSYIPYTDRIDYLGGVMNNLPYVLSVEKLAGITVPDRVNVIRIMMAEFFRITSHLLFLGTYIQDVGAMTPVFFTFTDRQKAYTVIEAVTGFRLHPAWYRIGGVAHDLPRGWEKLVKDFVEWMPKRLDEYTKAALKNSILRGRTEGVAAYNTKEALEWGVTGPNLRATGLDFDLRKARPYSGYENFEFEVPLATHGDAYDRCMVRVEEMRQSVKIIEQCMRNMPEGPYKADHPLTTPPPKERTLQHIETLITHFLQVSWGPVMPANESFQMIEATKGINSYYLTSDGGTMSYRTRIRTPSYPHLQQIPSVIKGSMVADLIAYLGSIDFVMADVDR	PGPT0026795_365	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026795-nuoCD-K13378	NA	NA
D1-36_01928	675	nuoB	COG0377	NADH-quinone oxidoreductase subunit B	ATGCAATACAATCTCACCAGGATCGACCCCGATGCTCCTAACGAGCAGTATCCGATCGGCAAGCGGGAAACCGTCGCCGATCCGTTAGAAGATCAAGTCCACAAGAACATCTTCATGGGCAAGCTCGAAGACGTGCTGAACAGCACGGTCAACTGGGGTCGCAAGAACTCCCTTTGGCCGTACAACTTCGGCCTTTCGTGCTGCTACGTGGAAATGACCACCGCCTTCACGGCGCCCCACGACATCGCGCGCTTTGGCGCCGAGGTGATCCGGGCATCGCCGCGCCAGGCGGATTTCATGGTTATCGCCGGTACGCCGTTCCTGAAAATGGCCCCCATCATTCAGCGCCTGTACGAACAGATGCTGGAACCCAAGTGGGTCATTTCCATGGGCGCCTGTGCCAACTCCGGCGGCATGTATGACATTTACTCCGTGGTCCAGGGGGTCGACAAATTCCTCCCCGTGGATGTCTACGTGCCCGGCTGCCCGCCCCGCCCCGAAGCGTTCCTGCAAGGCTTGATGCTGCTGCAGGAATCCATCGGCCAGGAGCGTCGCCCACTGTCCTGGGTCGTCGGTGATCAAGGCGTCTATCGCGCCGACATGCCGTCGCAAAAGGAACAGCGCCGCGAACAGCGAATCGCAGTCACGAATCTGCGCAGCCCCGACGAAGTCTGA	MQYNLTRIDPDAPNEQYPIGKRETVADPLEDQVHKNIFMGKLEDVLNSTVNWGRKNSLWPYNFGLSCCYVEMTTAFTAPHDIARFGAEVIRASPRQADFMVIAGTPFLKMAPIIQRLYEQMLEPKWVISMGACANSGGMYDIYSVVQGVDKFLPVDVYVPGCPPRPEAFLQGLMLLQESIGQERRPLSWVVGDQGVYRADMPSQKEQRREQRIAVTNLRSPDEV	PGPT0026785_287	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
D1-36_01929	414	ndhC		NAD(P)H-quinone oxidoreductase subunit 3, chloroplastic	ATGCCCGAAGCGACAGGACTCATGGCCCACAATTGGGGCTTTGCCATTTTCCTTCTGGGCGTCGTCGGCCTGTGTGCCTTCATGCTCGGCGTGTCGAGCCTGCTCGGGTCAAAAGCCTGGGGCCGCAGCAAGAATGAACCGTTCGAGTCCGGCATGCTGCCTACCGGTGGCGCCCGCTTGCGGCTCTCAGCCAAATTCTATCTGGTCGCGATGCTCTTCGTGATCTTCGATATCGAAGCCCTTTTTCTCTTTGCCTGGTCTGTGTCCGTCCGCGAAAGCGGCTGGACCGGATTCGTCGAAGCTCTCGTTTTCATAGCAATTCTGTTGGCAGGTCTTGTCTACCTTTACCGGGTGGGAGCTCTTGATTGGGCTCCGGAAGCTCGGCGTAAGCGGCAAGCGAAGCTGAAACAATGA	MPEATGLMAHNWGFAIFLLGVVGLCAFMLGVSSLLGSKAWGRSKNEPFESGMLPTGGARLRLSAKFYLVAMLFVIFDIEALFLFAWSVSVRESGWTGFVEALVFIAILLAGLVYLYRVGALDWAPEARRKRQAKLKQ	PGPT0026780_553	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
D1-36_01930	1326	aceA	COG2224	Isocitrate lyase	ATGGCACTGACACGCGAACAGCAAATTGCAGCCCTTGAAAAAGACTGGGCTGAAAACCCGCGCTGGAAAGGCGTGAAGCGCAATTATTCCGCTGCTGACGTCGTCCGTCTGCGTGGTTCGGTTCAACCTGAACACACCTTTGCGAAAATGGGCGCCGAGAAGCTGTGGAACCTGGTCACTCAGGGCGCCAAGCCTTCCTTCCGCCCCGAGAAAGACTTCGTCAACTGCATGGGCGCCCTGACTGGCGGCCAGGCTGTGCAGCAAGTCAAGGCCGGTATCCAGGCGATCTACCTGTCGGGCTGGCAAGTGGCCGCGGACAACAACTCCGCCGAATCCATGTACCCTGACCAGTCGCTGTACCCAGTGGACTCGGTTCCAACCGTGGTCAAGCGCATCAACAACTCGTTCCGTCGCGCCGACCAGATCCAGTGGAAAGCCGGCAAGAACCCGGGCGACGAAGGCTACATCGACTACTTCGCACCTATCGTGGCTGATGCCGAAGCCGGTTTCGGCGGCGTACTGAACGCCTACGAACTGATGAAGAGCATGATCGAGGCAGGTGCCGCCGGCGTTCACTTCGAAGACCAATTGGCCTCGGTGAAGAAATGCGGCCACATGGGCGGCAAGGTACTGGTTCCTACCCAGGAAGCCGTACAGAAGCTGACCGCCGCTCGCCTGGCGGCCGACGTTGCTGGCGTACCGACCATCATCCTGGCCCGTACCGACGCCAACGCCGCTGACCTGCTGACCTCGGATTGCGACCCGTACGACCAGCCGTTCGTCACCGGCACCCGTACCCAGGAAGGCTTTTACAAAGTACGCGCTGGCCTCGACCAGGCCATCGCCCGCGGCCTGGCCTACGCCCCGTACGCCGACCTGATCTGGTGCGAAACCGCCAAGCCGGACCTGGACGAAGCCCGTCGCTTCGCCGAAGCGATCAAGAAGGAATACCCGGACCAACTGCTGTCGTACAACTGCTCGCCTTCCTTCAACTGGAAGAAGAACCTGGACGACGCGACCATCGCCAAGTTCCAGCGCGAACTGTCCGCCATGGGCTACAAGCACCAGTTCATCACCCTGGCCGGCATTCACAACATGTGGCACAGCATGTTCAACCTGGCGCACGACTACGCCCGCAACGACATGACCGCCTACGTGAAGCTGCAAGAGCAGGAATTCGCTGACGCCGCCAAAGGCTACACCTTTGTGGCCCACCAGCAGGAAGTCGGCACCGGCTACTTCGACGACATGACCACCGTGATCCAGGGCGGCACCTCGTCCGTGACCGCGCTGACCGGGTCGACCGAAGAAGAGCAGTTCCACTGA	MALTREQQIAALEKDWAENPRWKGVKRNYSAADVVRLRGSVQPEHTFAKMGAEKLWNLVTQGAKPSFRPEKDFVNCMGALTGGQAVQQVKAGIQAIYLSGWQVAADNNSAESMYPDQSLYPVDSVPTVVKRINNSFRRADQIQWKAGKNPGDEGYIDYFAPIVADAEAGFGGVLNAYELMKSMIEAGAAGVHFEDQLASVKKCGHMGGKVLVPTQEAVQKLTAARLAADVAGVPTIILARTDANAADLLTSDCDPYDQPFVTGTRTQEGFYKVRAGLDQAIARGLAYAPYADLIWCETAKPDLDEARRFAEAIKKEYPDQLLSYNCSPSFNWKKNLDDATIAKFQRELSAMGYKHQFITLAGIHNMWHSMFNLAHDYARNDMTAYVKLQEQEFADAAKGYTFVAHQQEVGTGYFDDMTTVIQGGTSSVTALTGSTEEEQFH	PGPT0001550_1159	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-GLYOXYLIC_ACID_BIOSYNTHESIS,PGPT0001550-aceA-K01637	NA	NA
D1-36_01932	762			hypothetical protein	ATGTCCCTACGCACCTTGCTGACCACCCTGCTGCTCGGCTGCAGCCTGTCAGTCATGGCCGCAACCGAAATCGTACCGCTGAACTACCGCACCAGCGCGGATCTACTGCCGGTGGCACAGAATTTCCTCGGCAAGGATGGCCAGGTCAGCGCCTACGGCAACCAACTGATCGTGAATGCCGAACCGGGCAAGATCGAAGAACTCCGGCAATTCCTGGCGCAACTGGACACCGCTCCCAAGCGCTTGCTGATCACCGTCGACACCAACGAGAACAACCTGCAAGGCGACCAGGGCTACTCGATCAACGGCGCCGCGCCCAGCCAGACGCGCATCATCAACCGCAGCACCGCCAGCCGTGAGGGCGGCGTGCAGCAGATCCAGGCCAGCGAAGGCCAGCCGGCGCTCATCCAGGTCGGTCAGAGCGTGCCATTCACCAGCAACCAGACCGACGGCTACGGTCGCATGCAAAGCCAGACCGAATACCGCAACGTCACCCAAGGTTTTTATGTCACCGCCAGTGTCACTGGCGAGACCGTTCACCTGAGTATCAGCACCAACCGTGACCGCATGAGCCAGGAACGTCCAGATGTAGTGAACGTGCAAAGCACCGACACAACCGTCAGCGGGCGCCTCGGCGAATGGATCACCCTCGCTGGGGTGAACCGCCAGACTCAAGCCGACAAACAAGGCCTGACCCGCAGCTACTCGACCCAAGGCCGGGATGACATGATTCTGCGGGTGAAGGTCGACACCCTGAACTGA	MSLRTLLTTLLLGCSLSVMAATEIVPLNYRTSADLLPVAQNFLGKDGQVSAYGNQLIVNAEPGKIEELRQFLAQLDTAPKRLLITVDTNENNLQGDQGYSINGAAPSQTRIINRSTASREGGVQQIQASEGQPALIQVGQSVPFTSNQTDGYGRMQSQTEYRNVTQGFYVTASVTGETVHLSISTNRDRMSQERPDVVNVQSTDTTVSGRLGEWITLAGVNRQTQADKQGLTRSYSTQGRDDMILRVKVDTLN				NA	NA	NA	NA	NA
D1-36_01933	426			Acetyltransferase	ATGAATAAAATTCACGTTCGTGTCGCAGACTGGCAAAAGGATAACGCCGAGATCCGGCGCATTCGTGAAACGGTGTTCATTGCCGAGCAATCCGTACCCCCAGAGTTGGAGTGGGATTCGGATGACCAGGACGCCGTGCATTTCCTGGCCTTCGAAGGCGACTTCCCCATCGGTACCGCGCGCCTGCTGACTGACGGCCATATCGGTCGCGTATCGGTCCTCAAGGACTGGCGCGGTCTGAAGGTCGGCGATGCGTTGATGCATGCAGTGATCGCCGAGGCCGAGAGACGCGGATTGCAACAGCAGATGCTCAGCGCCCAGGTCCATGCCACGCCGTTCTATGAGCGACTGGGGTTTGCGGTGGTCAGCGAGGAATTCCTCGAGGCCGGCATTCCCCATGTGGACATGGTGCGGCGCTCGGCCTGA	MNKIHVRVADWQKDNAEIRRIRETVFIAEQSVPPELEWDSDDQDAVHFLAFEGDFPIGTARLLTDGHIGRVSVLKDWRGLKVGDALMHAVIAEAERRGLQQQMLSAQVHATPFYERLGFAVVSEEFLEAGIPHVDMVRRSA				NA	NA	NA	NA	NA
D1-36_01934	1167	roxA	COG2850	50S ribosomal protein L16 3-hydroxylase	ATGAATCCTGACATTCCACTGCAACTTCTGGGCGGCATCACGGCACGGGAGTTCCTGCGCGATTACTGGCAGAAGAAACCCCTGCTGATCCGCCAGGCGATTCCTGACTTCGAAAGCCCGATCGATGCCGACGAACTGGCCGGCCTTGCGCTGGAAGAAGAGGTTGAATCGCGCCTGGTGATCGAGCACGGCGAGCGTCCCTGGGAGTTGCGTCGCGGCCCGTTCGCCGAAGATGAATTCAGCAAGCTGCCGGAGCGCGAGTGGACGCTGCTGGTGCAGGCGGTCGACCAGTTCGTCCCCGAAGTCAGCGAGCTGCTGGAGCATTTCCGCTTCCTGCCGAGCTGGCGCATCGACGACGTGATGATCAGCTTCGCCGCCCCGGGTGGCGGTGTCGGTCCGCACTTCGACAACTACGACGTTTTCCTGTTGCAAGGCCATGGCAAGCGCAACTGGAAGATCGGCCAGATGTGCGACTCCGAAAGCCCGCTGCTGCCCCATGCGGACCTGCGCATCCTCGCCGATTTCGAGGCCACCGACGAGTGGACCCTGGAACCCGGCGACATGCTCTACTTGCCACCGCGCCTGGCCCACTGCGGTGTCGCCGTGGATGACTGCATGACCTACTCGGTCGGCTTCCGAGCGCCGAGCGCGGCCGAAGTGCTCACCCATTTCACCGACTTCCTCAGCCAGTTCTTGCCGGACGAAGAGCGTTACACCGACGCCGACGCACGCCCCGTCGCGGACCCGCACCAGATCCAGCACGACGCCCTGGACCGCCTCAAAGGCCTTCTGGCCGAGCACATGAGCGATGAGCGTTTGCTGCTGACCTGGTTCGGCCAGTTCATGACCGAACCCCGCTACCCGGAACTGGTGGTGGGCCCGGAATTGGAAGAAGACGACTTGCTGGCCGGCCTGGAACAGGGTGCCGTGATCATCCGCAACCCGAGCGCGCGCCTGGCCTGGTCGGAAGTCGATGACGACCTGGTGCTGTTCGCCAGCGGCCAGAGCCGTTATCTGCCGGGCAAGCTGCGGGACCTGCTGAAGATGATCTGCGCCGCCGACGCGCTGCACATCGAAAACCTCGGCCCATGGCTGGACGATGAAGAAGGCCGCGGCCTTATCCACGAATTGGTCAAACAAGGCAGCCTGGGGTTCGCCGATGAATAA	MNPDIPLQLLGGITAREFLRDYWQKKPLLIRQAIPDFESPIDADELAGLALEEEVESRLVIEHGERPWELRRGPFAEDEFSKLPEREWTLLVQAVDQFVPEVSELLEHFRFLPSWRIDDVMISFAAPGGGVGPHFDNYDVFLLQGHGKRNWKIGQMCDSESPLLPHADLRILADFEATDEWTLEPGDMLYLPPRLAHCGVAVDDCMTYSVGFRAPSAAEVLTHFTDFLSQFLPDEERYTDADARPVADPHQIQHDALDRLKGLLAEHMSDERLLLTWFGQFMTEPRYPELVVGPELEEDDLLAGLEQGAVIIRNPSARLAWSEVDDDLVLFASGQSRYLPGKLRDLLKMICAADALHIENLGPWLDDEEGRGLIHELVKQGSLGFADE				NA	NA	NA	NA	NA
D1-36_01935	1371	purB	COG0015	Adenylosuccinate lyase	ATGCAGCTCTCTTCGCTCACTGCGGTTTCCCCTGTAGACGGCCGCTACGCCGGCAAAACCCAGGCCCTGCGCCCTATTTTCAGCGAGTACGGCCTGATCCGTGCCCGTGTCCTGGTTGAAGTGCGCTGGCTCCAGCGCCTGGCCGCCCACCCTGGCATTGGTGAAGTTCCGGCCTTTTCCGCCGAAGCCAACGCAGTGCTGAACGCTCTGGCCGACAATTTCGCCCTGGAGCACGCTGAGCGCGTCAAAGAGATCGAGCGCACCACCAACCACGACGTCAAGGCCATCGAGTACCTGCTCAAGGAGCAGGCGGCCAAGCTGCCGGAACTGGCCAACGTCAGTGAGTTCATCCACTTCGCCTGCACCAGCGAGGACATCAACAACCTGTCCCACGCCCTGATGCTGCGCGAAGGCCGTGACGATGTGCTGCTGCCTCTGATGCGCCAGATCGCCCAGGCCATTCGCGAGCTGGCGATCCGCTTCGCCGACGTGCCGATGCTGTCGCGCACCCACGGTCAACCGGCTTCGCCGACCACCCTGGGCAAGGAGTTGGCAAACGTCGTCTACCGCCTGGAGCGCCAGATCACCCAGGTAGCCGCCGTGCCCCTGCTGGGCAAGATCAACGGCGCCGTGGGCAACTACAACGCCCACCTTTCGGCCTACCCGGACATCGACTGGGAAGCCAACGCCCGCGCCTTCATCGAAGACGAACTGGGTCTGAGCTTCAACCCGTACACCACCCAGATCGAACCGCACGACTACATCGCCGAGCTGTTCGATGCGATCGCACGCTTCAACACCATCCTGATCGACTTCGACCGCGATATCTGGGGCTACATCTCCCTGGGTTACTTCAAGCAGCGCACCATCGCCGGCGAGATCGGTTCCTCGACCATGCCGCACAAGGTCAACCCGATCGATTTCGAAAACTCCGAAGGCAACCTGGGCATCGCCAACGCGCTGTTCCAGCACCTGGCGAGCAAGCTGCCGATTTCCCGCTGGCAGCGCGACCTGACCGACTCCACCGTGCTGCGCAACCTAGGCGTGGGTTTTGCCCATAGCGTCATCGCCTACGAGGCCAGCCTCAAGGGCATCGGCAAGCTGGAACTGAACGAGCATAAGATCGCCGCCGACCTGGACGCCTGCTGGGAAGTCCTGGCCGAGCCGATCCAGACCGTGATGCGTCGCTACAACATCGAAAACCCGTACGAGAAGCTCAAAGAGCTGACCCGTGGCAAGGGCATCAGCCCTGAAGCGCTGCAGACTTTCATCGATGGCCTGGACATGCCTGCCGAAGCCAAGGCCGAGCTGAAAAAGCTGACCCCGGCCAGCTACATCGGCAACGCGGCGGCACAAGCCAAGCGCATCTGA	MQLSSLTAVSPVDGRYAGKTQALRPIFSEYGLIRARVLVEVRWLQRLAAHPGIGEVPAFSAEANAVLNALADNFALEHAERVKEIERTTNHDVKAIEYLLKEQAAKLPELANVSEFIHFACTSEDINNLSHALMLREGRDDVLLPLMRQIAQAIRELAIRFADVPMLSRTHGQPASPTTLGKELANVVYRLERQITQVAAVPLLGKINGAVGNYNAHLSAYPDIDWEANARAFIEDELGLSFNPYTTQIEPHDYIAELFDAIARFNTILIDFDRDIWGYISLGYFKQRTIAGEIGSSTMPHKVNPIDFENSEGNLGIANALFQHLASKLPISRWQRDLTDSTVLRNLGVGFAHSVIAYEASLKGIGKLELNEHKIAADLDACWEVLAEPIQTVMRRYNIENPYEKLKELTRGKGISPEALQTFIDGLDMPAEAKAELKKLTPASYIGNAAAQAKRI	PGPT0021555_2895	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021555-purB-K01756	NA	NA
D1-36_01936	624	hflD	COG2915	High frequency lysogenization protein HflD	ATGACGCCAATCCAGGAACAACTGACGGCGCTGGGCGGCGTCTTCCTGGCCGCCGTGCTGGTGGACCGGATCGCCAAGACCGGCCAGGCCACCGAGGCCGGCCTGGGCTGCATGCTCGGCAGCCTGCTGGTACGCGACCCCAAGGACACCCTGGAGGTCTACGGTGGCGACGACTTGAACCTGCGCGAAGGCTACCGCGCCTTGATCGGCGCCCTGGAGCGCGACCCCAGCGCCCTGCAACGCGAACCGCTGCGCTACGCCCTGTCGATGCTGGGCCTGGAGCGCCAGTTGGCCAAGCGTGACGACCTGCTGGAAACCATCGGCAATCGTTTGCCGCAGATCCAATCCCAGGTCGAGCATTTCGGCCCGTCCCACGAAAACGTGATCGCCGCATGCGGCGCGCTGTACCAGGACACCTTGAGCACGCTGCGCCAGCGCATCCAGGTGCATGGCGACATGCGCAACCTGCAGCAACCGAGCAACGCCTCGAAGATCCGCGCCCTGCTGCTCGCCGGGATCCGCTCGGCACGGCTGTGGCGGCAGCTGGGCGGCCATCGTTGGCAACTGGTGATCAGCCGACGCAAATTATTGAAAGAGCTTTACCCGTTGATGCGCAACGAATAA	MTPIQEQLTALGGVFLAAVLVDRIAKTGQATEAGLGCMLGSLLVRDPKDTLEVYGGDDLNLREGYRALIGALERDPSALQREPLRYALSMLGLERQLAKRDDLLETIGNRLPQIQSQVEHFGPSHENVIAACGALYQDTLSTLRQRIQVHGDMRNLQQPSNASKIRALLLAGIRSARLWRQLGGHRWQLVISRRKLLKELYPLMRNE				NA	NA	NA	NA	NA
D1-36_01937	1125	mnmA	COG0482	tRNA-specific 2-thiouridylase MnmA	ATGCGTGATCCAGCCTCTTCGAACACCCCAAAGCAACGCGTCATCGTCGGCATGTCCGGTGGCGTGGACTCTTCCGTTTCCGCCCTTCTGCTGATCGAGCAGGGTTATGAGGTGGAAGGCCTGTTCATGAAGAACTGGGAAGAAGACGACGGAACCGAATACTGCACCGCCATGGACGATCTGGCGGACGCCCAGGCCGTGTGCGACAAGATCGGCATCAAGCTGCACACCGCGAATTTCGCCGCCGAGTACTGGGACAACGTGTTCGAGCATTTCCTGGCCGAATACAAGGCCGGTCGCACACCGAACCCGGACATCCTCTGCAACCGCGAAATCAAGTTCAAGGCGTTCCTCGACTACGCCATGATGCTCGGCGCCGACCTGATCGCTACTGGCCACTACGTGCGCCGCCGCGACATCGACGGCCGTACCGAACTGCTCAAGGGCCTGGATCCGAACAAGGACCAGAGCTACTTCCTGCATGCCGTTGGCGGCGAGCAGATCGCCAAGACCTTGTTCCCGGTTGGCGAGCTGGAAAAGCCCGAAGTACGCGCGATCGCCGAGAAGCACCAACTCGCCACCGCCAAGAAAAAGGACTCCACCGGGATCTGCTTCATTGGCGAGCGCCGTTTCAGCGACTTCCTCAAGCAATACCTGCCGGCGCAGCCGGGCGAGATCAAGACGACCGAAGGCGAGGTCATCGGCCGCCACCATGGCCTGATGTACCACACCATCGGCCAGCGCCAAGGCCTGGGCATCGGCGGGTTGAAGGACGCCGGCGAAGAGCCGTGGTACGTGCTGGTCAAGGACCTGGAGCACAACGAGCTGATCGTTGGCCAGGGTAACGACCACCCGTGGCTGTTCTCCGGCGCCCTGCTCGCCTCGGACATCTATTGGGTCAACCCGATCGACCTCAGCGAACCGCGCCGCCTGACGGCCAAGGTTCGCTATCGCCAGAGCGACCAGGCCTGCACCTTGGAAAAAACCGAGACAGGCTACCGCGCCACCTTCGATGACCCGCAGCGCGCGGTCACGCCCGGCCAGTCGGTGGTGTTCTACGACGGCGAAATCTGCCTGGGCGGCGGCGTGATCGAAGTCGCCGAGCCATGGAGCAGCAAGGCATGA	MRDPASSNTPKQRVIVGMSGGVDSSVSALLLIEQGYEVEGLFMKNWEEDDGTEYCTAMDDLADAQAVCDKIGIKLHTANFAAEYWDNVFEHFLAEYKAGRTPNPDILCNREIKFKAFLDYAMMLGADLIATGHYVRRRDIDGRTELLKGLDPNKDQSYFLHAVGGEQIAKTLFPVGELEKPEVRAIAEKHQLATAKKKDSTGICFIGERRFSDFLKQYLPAQPGEIKTTEGEVIGRHHGLMYHTIGQRQGLGIGGLKDAGEEPWYVLVKDLEHNELIVGQGNDHPWLFSGALLASDIYWVNPIDLSEPRRLTAKVRYRQSDQACTLEKTETGYRATFDDPQRAVTPGQSVVFYDGEICLGGGVIEVAEPWSSKA				NA	NA	NA	NA	NA
D1-36_01938	447	nudJ	COG0494	Phosphatase NudJ	ATGGACTGGAACCCCCACATCACCGTCGCCACCATTGTTGAAGACAACGGCCGCTTCTTGATGGTCGAGGAATCCAAGGGCGGGCGCGCCGTGCTCAACCAGCCCGCCGGCCACCTGGATCCGAACGAAACACTGATCGAGGCCGCCGTGCGCGAAACCCTGGAAGAAACCGGCTGGGACGTAGAGCCCACCAGCGTAACAGGCATCTATCTGTACACCGCCCCCAGCAACGGCGTGACCTACCAGCGGGTCTGCTTCGCCGCCAAGGCCCTGAAACTCCACCCCGAGTATCAACTGGACGATGGCATCCTAGGCGCCAAATGGCTGACCCGCGACGAACTGCTCGAGCAGCGCGACCGCTGGCGCAGCGAGCTCATCATCCGTTGCATCGACGATTACCTGGCCGGCCATCGCCATAGCCTGGAGCTTATCCGCCCTTCTCTTTAG	MDWNPHITVATIVEDNGRFLMVEESKGGRAVLNQPAGHLDPNETLIEAAVRETLEETGWDVEPTSVTGIYLYTAPSNGVTYQRVCFAAKALKLHPEYQLDDGILGAKWLTRDELLEQRDRWRSELIIRCIDDYLAGHRHSLELIRPSL	PGPT0028060_19	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BACIMETHRIN|CF3-HMP_DETOXIFICATION,PGPT0028060-nudJ|ymfB-K12152	NA	NA
D1-36_01939	2226	icd_1	COG2838	Isocitrate dehydrogenase [NADP]	ATGCCCACCCGCTCGAAGATCATCTATACCTTCACCGACGAAGCGCCTGCCCTCGCCACCTATTCGCTGCTGCCGATCGTCGAAGCCTTCACCGCTTCGGCCGATATCGCCGTGGAGACCCGCGATATCTCCCTCGCAGGACGCATCCTGGCCAGCTTCCCCGAGCAACTGGGTGACAAAGCCGTAGCCGACCACCTCGCCGAATTGGGCGACCTGGCCGTCACGCCTGAAGCCAACATCATCAAGCTGCCGAACATCAGCGCCTCGGTGCCGCAACTGCAGGCCGCGATCAAGGAATTGCAGGCCCAGGGCTACGCACTGCCGGACTACCCGGAAACCGTGACCACCGACGCCGAGAAAGACGCTCGTGCCCGTTACGACAAGGTCAAGGGCAGCGCCGTGAACCCGGTCCTGCGCGAAGGCAACTCCGACCGCCGCGCGCCGCTGTCGGTCAAGAATTATGCTCGCAAGCACCCGCATAAAATGGGCGCCTGGGCTGCCGACTCCAAATCCCACGTCGCTCACATGAGCGCCGGCGATTTCTATGGCAGCGAAAAAGCCGCCCTGATCGACGCCGCGGGCACCGTGAAGATCGAGCTGATCGCCAAGGACGGCACTGCCACCGTCCTCAAGGAAAAAACCACCGTACAAGCCGGTGAGATCCTCGATTGCGCCGTGATGAGCAAAAACGCCCTGCGCAACTTCATCGCCGCTGAAATCGAAGACGCCAAGCAAAAAGGCGTCCTGCTGTCGGTCCATCTGAAGGCGACCATGATGAAGGTCTCCGACCCGATCATGTTCGGTCAGATCGTCGCCGAGTACTATAAGGACGCGCTGGCCAAGCACGCCGAGGTGCTGGAGCAGATCGGCTTCAACCTGAACAACGGCATCGGCGACCTGTACGCGCGCATCAAGGCCCTGCCGGCCGAGCAGCAAGCCCAGATCGAAGCCGACATCCAGGCGGTCTACGCCGTTCGTCCGGCGCTGGCGATGGTCAACTCCGACAAGGGCATCACCAACCTGCACGTACCGAGCGACGTCATCGTCGACGCCTCGATGCCGGCCATGATCCGTGACTCCGGCAAGATGTGGGGCACCGACGGCCAACTGCACGACACCAAGGCTGTGATCCCGGATCGCTGCTACGCCACCATCTACCAAGCGGTGATCGAAGATTGCAAGCAACACGGCGCCTTCGACCCAACCACCATGGGCAGCGTGCCGAACGTTGGCCTGATGGCCAAGAAAGCCGAAGAGTATGGCTCCCACGACAAGACCTTCCAGATCAAGGCTGACGGTGTGGTTCGTGTTTCGGACAACAACGGTCAAACCCTGCTGGAGCAGACCGTCGAGGCTGGCGATATCTTCCGCATGTGCCAGACCAAGGACGCGCCGATCCAGGATTGGGTCAAGCTGGCCGTCAACCGTGCCCGCGCCAGCGCCACCCCGGCGATCTTCTGGCTCGACCCGATGCGCGCCCACGACGGTGTGATGATCGAGAAGGTCCAGGCCTACCTGAAGGACCACGACACCAGCGGTCTGGACATCCGCATCATGTCGCCTGTCGACGCGATGAAGTTCACCCTGGCTCGCACCCGCGAAGGCAAGGACACCATTTCGGTGACCGGCAACGTACTGCGCGACTACCTGACTGACCTGTTCCCGATCATGGAACTGGGCACCAGCGCCAAGATGCTGTCGATCGTGCCGCTGATGAACGGCGGTGGCCTGTTCGAAACCGGCGCCGGCGGCTCGGCACCCAAGCACGTGCAGCAACTGCTGGAAGAAAACTTCCTGCGCTGGGATTCCCTGGGCGAGTTCCTCGCCCTGGCCGCATCCCTGGAACACCTGGGCGCGACCTACAACAACCCCAAGGCGCTGGTGCTGGCCAAGACCCTCGACCAGGCGACTGGTGAGTTCCTGGACCGCAACAAGTCGCCTTCGCGCAAGGTCGGCGGCATCGACAACCGCGGCAGCCACTTCTACCTGACCCTGTTCTGGGCCCAGGCACTGGCCGCTCAGGATGACGACGCAGCCCTCAAGGCGCAATTCACCACCCTGGCGAAGACCTTGACCGACAACGAAGAAAAAATCGTTGCCGAACTCAATGCCGTGCAAGGCAAGCCCGTGGACATCGGCGGCTACTACTTCGCCAACCCCGAGCTGACCAGCAAGGCCATGCGCCCAAGCGCCACCTTCAACGCGGCGATTGCTGCGCTGGTGTAA	MPTRSKIIYTFTDEAPALATYSLLPIVEAFTASADIAVETRDISLAGRILASFPEQLGDKAVADHLAELGDLAVTPEANIIKLPNISASVPQLQAAIKELQAQGYALPDYPETVTTDAEKDARARYDKVKGSAVNPVLREGNSDRRAPLSVKNYARKHPHKMGAWAADSKSHVAHMSAGDFYGSEKAALIDAAGTVKIELIAKDGTATVLKEKTTVQAGEILDCAVMSKNALRNFIAAEIEDAKQKGVLLSVHLKATMMKVSDPIMFGQIVAEYYKDALAKHAEVLEQIGFNLNNGIGDLYARIKALPAEQQAQIEADIQAVYAVRPALAMVNSDKGITNLHVPSDVIVDASMPAMIRDSGKMWGTDGQLHDTKAVIPDRCYATIYQAVIEDCKQHGAFDPTTMGSVPNVGLMAKKAEEYGSHDKTFQIKADGVVRVSDNNGQTLLEQTVEAGDIFRMCQTKDAPIQDWVKLAVNRARASATPAIFWLDPMRAHDGVMIEKVQAYLKDHDTSGLDIRIMSPVDAMKFTLARTREGKDTISVTGNVLRDYLTDLFPIMELGTSAKMLSIVPLMNGGGLFETGAGGSAPKHVQQLLEENFLRWDSLGEFLALAASLEHLGATYNNPKALVLAKTLDQATGEFLDRNKSPSRKVGGIDNRGSHFYLTLFWAQALAAQDDDAALKAQFTTLAKTLTDNEEKIVAELNAVQGKPVDIGGYYFANPELTSKAMRPSATFNAAIAALV	PGPT0001170_766	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
D1-36_01940	1257	icd_2		Isocitrate dehydrogenase [NADP]	ATGGGGTATCAAAAGATTCAGGTTCCGGCCGTCGGTGACAAAATCACCGTCAATGCAGACCATTCTCTTAATGTTCCCGACAATCCGATCATCCCTTTCATTGAAGGCGACGGCATTGGCGTTGATATCAGTCCGGTCATGATCAAGGTGGTGGACGCTGCGGTCGAAAAGGCCTACGGCGGCAAGCGCAAGATTTCCTGGATGGAAGTTTATGCGGGCGAAAAAGCGACCCAGGTCTACGACCAGGACACCTGGCTACCCCAGGAAACCCTGGACGCGGTCAAGGATTACGTGGTTTCCATCAAGGGCCCGCTGACCACGCCGGTCGGTGGCGGTATCCGCTCGCTGAACGTTGCATTGCGCCAGCAGCTCGATCTGTATGTCTGCCTTCGCCCGGTGCGCTGGTTTGAAGGCGTCCCGAGTCCGGTCAAGAAACCGGGCGATGTGGACATGACCATCTTCCGCGAGAACTCCGAGGACATCTACGCCGGTATCGAGTGGAAGGCCGGTTCGGCCGAAGCCACCAAGGTGATCAAGTTCCTCAAAGAGGAAATGGGCGTCACCAAGATCCGTTTCGACGAAGATTGCGGCATCGGCGTCAAGCCGGTCTCCAAGCAGGGCACCAAGCGCCTGGCACGCAAGGCCTTGCAATATGTCGTCGACAATGACCGCGATTCGCTGACTATCGTGCACAAAGGCAACATCATGAAGTTCACCGAAGGTGCCTTCAAGGAATGGGCCTACGAGGTGGCGGCCGAAGAGTTCGGCGCGACCCTGCTCGACGGCGGCCCATGGATGCAGTTCAAGAATCCGAAGACCGGCAAGAATGTCGTGGTCAAGGACGCCATCGCCGACGCCATGCTCCAGCAGATCCTGCTGCGCCCGGCCGAATACGACGTGATCGCGACCCTGAACCTCAACGGCGACTACCTCTCCGATGCCCTGGCGGCTGAAGTGGGCGGTATCGGTATCGCGCCGGGCGCCAACCTGTCCGACACCGTGGCAATGTTCGAGGCCACCCACGGCACCGCGCCTAAATATGCGGGCAAGGACCAGGTCAACCCGGGGTCGTTGATCCTCTCGGCGGAAATGATGCTGCGCCACATGGGGTGGACCGAGGCGGCCGACCTGATCATCAAGGGCACCAACGGCGCGATTTCGGCCAAGACCGTGACCTATGACTTCGAACGCCTGATGGACGGTGCCAAGCTGGTGTCGTCTTCCGGTTTCGGCGATGCGCTGATTTCCCATATGTAA	MGYQKIQVPAVGDKITVNADHSLNVPDNPIIPFIEGDGIGVDISPVMIKVVDAAVEKAYGGKRKISWMEVYAGEKATQVYDQDTWLPQETLDAVKDYVVSIKGPLTTPVGGGIRSLNVALRQQLDLYVCLRPVRWFEGVPSPVKKPGDVDMTIFRENSEDIYAGIEWKAGSAEATKVIKFLKEEMGVTKIRFDEDCGIGVKPVSKQGTKRLARKALQYVVDNDRDSLTIVHKGNIMKFTEGAFKEWAYEVAAEEFGATLLDGGPWMQFKNPKTGKNVVVKDAIADAMLQQILLRPAEYDVIATLNLNGDYLSDALAAEVGGIGIAPGANLSDTVAMFEATHGTAPKYAGKDQVNPGSLILSAEMMLRHMGWTEAADLIIKGTNGAISAKTVTYDFERLMDGAKLVSSSGFGDALISHM	PGPT0001170_3492	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
D1-36_01941	315			hypothetical protein	ATGTCAGGTACCACCAGTATGCGAGTCAAGGGAAAGGTCAAGTGGTTCAACAATGCCAAGGGCTATGGTTTTATTATCCAAGACGGGAAGGACGAAGACCTCTTCGCTCACTACTCTGTAATCCAGATGGAAGGTTATAAAACCCTGAAGGCAGGTCAGCCGGTGACGTTCTGCATGATACAAGGGCCAAAGGGTACACATGCCGTTGAGATTTGCCCGGTTGCCGTGGACGTCGACCCCAACAGCACCGAGGCCAGCGTAAAGCCAGAACCGATCAAGGTCCGCCTCAAGCCGCGGGTAACCGAAGACCACTAG	MSGTTSMRVKGKVKWFNNAKGYGFIIQDGKDEDLFAHYSVIQMEGYKTLKAGQPVTFCMIQGPKGTHAVEICPVAVDVDPNSTEASVKPEPIKVRLKPRVTEDH	PGPT0014675_1790	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	LOW_TEMPERATURE_TOLERANCE	COLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704	NA	NA
D1-36_01942	246	clpS	COG2127	ATP-dependent Clp protease adapter protein ClpS	ATGTACAAGGTGGTTTTGTTCAACGATGACTACACACCGATGGATTTCGTCGTCGAAGTGCTCGAGGTGTTTTTTAACCTGAATCGCGAGCTGGCGACCAAGGTCATGCTGGCCGTTCATACAGAGGGACGGGCAGTATGTGGTGTGTTTACCCGCGACATTGCGGAGACCAAGGCCATGCAGGTCAACCAGTACGCCCGGGAAAGCCAGCATCCGCTACTCTGTGAAATCGAGAAGGACGGTTAA	MYKVVLFNDDYTPMDFVVEVLEVFFNLNRELATKVMLAVHTEGRAVCGVFTRDIAETKAMQVNQYARESQHPLLCEIEKDG	PGPT0014575_3	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014575-clpA-K03694	NA	NA
D1-36_01943	2271	clpA	COG0542	ATP-dependent Clp protease ATP-binding subunit ClpA	ATGTTAAACCGCGAGCTCGAAGTCACCCTCAATCTTGCCTTCAAGGAGGCTCGTTCGAAGCGTCATGAATTCATGACCGTCGAGCACCTGCTGTTGGCCCTATTGGATAACGAGGCTGCCGCCACCGTTTTGCGTGCCTGCGGCGCGAACCTCGACAAACTCAAGCATGACCTGCAGGAGTTCATCGACTCCACCACGCCACTGATCCCCGTCCACGACGAGGATCGCGAAACCCAGCCAACCCTGGGATTCCAGCGTGTGCTGCAGCGTGCTGTCTTTCATGTGCAGAGCTCGGGCAAGCGCGAAGTCACCGGCGCCAACGTGCTGGTTGCCATTTTCAGCGAGCAGGAAAGCCAAGCGGTGTTCCTGCTCAAGCAACAGAGCGTTGCGCGTATCGATGTCGTCAACTACATCGCCCATGGCATCTCGAAAGTGCCGGGGCATGGCGATCATTCCGAAGGTGAGCAGGACATGCAGGATGACGAGGGCGGCGAGTCTTCTTCATCAGGCAATCCGCTGGACGCGTATGCCAGCAATCTGAACGAACTGGCTCGCCAGGGCCGTATCGACCCGCTGGTCGGGCGCGAGGCGGAAGTCGAGCGCGTTGCGCAGATCCTGGCCCGGCGCCGCAAGAACAACCCATTGCTCGTAGGCGAAGCGGGCGTGGGCAAGACCGCGATCGCTGAAGGCCTGGCCAAGCGCATCGTCGATAACCAGGTGCCAGACCTGCTGGCCAACAGCGTGGTGTATTCCCTCGACCTGGGTGCCTTGCTGGCCGGTACCAAATACCGGGGCGATTTCGAGAAGCGCTTCAAGGCGTTGCTCGGCGAACTGAAAAAACGTCCGCAGGCGATCCTGTTCATCGACGAAATCCACACCATTATCGGTGCCGGGGCGGCGTCGGGCGGGGTCATGGATGCGTCCAACCTGCTCAAGCCGCTGCTGTCCTCGGGCGATATCCGTTGCATCGGCTCGACCACGTTCCAGGAATTCCGTGGGATTTTCGAGAAGGACCGTGCGTTGGCCCGGCGTTTCCAGAAGGTCGACGTGTCGGAGCCTTCGGTGGAAGACACCATCGGTATCCTGCGTGGCCTGAAAGGGCGTTTCGAGTTGCATCACAGCATCGAATACAGTGACGAGGCATTGCGCGCTGCCGCCGAACTGGCGTCGCGCTACATCAACGATCGGCACATGCCGGACAAGGCCATCGATGTCATCGACGAGGCGGGCGCCTATCAGCGGCTGCAACCGGTGGAGAATCGAGTCAAGCGCATCGACGTGCCGCAAGTCGAGGACATCGTCGCGAAAATCGCGCGGATTCCGCCAAAACACGTCACCAGCTCCGACAAGGAATTGCTGCGTAACCTGGAGCGTGACCTGAAGCTGACGGTGTTCGGCCAGGATGCGGCCATCGACTCGCTGTCGACCGCGATCAAACTGTCCCGCGCGGGACTCAAGTCGCCGGACAAGCCGGTCGGTTCATTCCTGTTCGCCGGGCCTACCGGTGTCGGCAAGACCGAGGCGGCGCGGCAGTTGGCCAAGGCGCTGGGGATCGAGTTGGTGCGCTTCGACATGTCCGAGTACATGGAGCGTCATACCGTATCGCGTCTGATCGGTGCGCCTCCAGGCTATGTCGGTTTCGACCAGGGTGGTCTCTTGACCGAGGCAATCACCAAGCAGCCTCACTGCGTGCTGTTGCTCGATGAGATCGAGAAGGCGCATCCGGAAGTCTTCAACCTGCTGCTGCAGGTCATGGACCACGGTACGCTGACCGATAACAACGGGCGCAAGGCGGATTTCCGCAACGTGATCATCATCATGACCACGAACGCCGGTGCCGAAACCGCCGCGCGCGCTTCGATCGGTTTCACCCATCAGGACCACTCGTCCGATGCGATGGAAGTGATCAAGAAGAGCTTCACGCCTGAATTCCGCAACCGCCTGGACACCATTATCCAGTTTGGTCGCCTCAGTCATGAGGTCATCAAAAGCGTGGTGGACAAGTTCCTTACCGAACTCCAGGCGCAGCTCGAAGACAAGCGTGTGCTGTTGGAGGTCACCGATGCGGCGCGCAGCTGGCTCGCGGAAGGTGGTTACGATGTGACGATGGGCGCAAGGCCAATGGCTCGCTTGATTCAGGACAAGATCAAGCGTCCGCTGGCCGAGGAGATCCTGTTTGGCGAACTGGCCGAGCATGGCGGTGTGGTTCACATCGACATCAAGGACGGCGAGCTGACCTTCGACTTCGAAACCACGGCCGAGATGGCTTGA	MLNRELEVTLNLAFKEARSKRHEFMTVEHLLLALLDNEAAATVLRACGANLDKLKHDLQEFIDSTTPLIPVHDEDRETQPTLGFQRVLQRAVFHVQSSGKREVTGANVLVAIFSEQESQAVFLLKQQSVARIDVVNYIAHGISKVPGHGDHSEGEQDMQDDEGGESSSSGNPLDAYASNLNELARQGRIDPLVGREAEVERVAQILARRRKNNPLLVGEAGVGKTAIAEGLAKRIVDNQVPDLLANSVVYSLDLGALLAGTKYRGDFEKRFKALLGELKKRPQAILFIDEIHTIIGAGAASGGVMDASNLLKPLLSSGDIRCIGSTTFQEFRGIFEKDRALARRFQKVDVSEPSVEDTIGILRGLKGRFELHHSIEYSDEALRAAAELASRYINDRHMPDKAIDVIDEAGAYQRLQPVENRVKRIDVPQVEDIVAKIARIPPKHVTSSDKELLRNLERDLKLTVFGQDAAIDSLSTAIKLSRAGLKSPDKPVGSFLFAGPTGVGKTEAARQLAKALGIELVRFDMSEYMERHTVSRLIGAPPGYVGFDQGGLLTEAITKQPHCVLLLDEIEKAHPEVFNLLLQVMDHGTLTDNNGRKADFRNVIIIMTTNAGAETAARASIGFTHQDHSSDAMEVIKKSFTPEFRNRLDTIIQFGRLSHEVIKSVVDKFLTELQAQLEDKRVLLEVTDAARSWLAEGGYDVTMGARPMARLIQDKIKRPLAEEILFGELAEHGGVVHIDIKDGELTFDFETTAEMA	PGPT0014575_1539	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014575-clpA-K03694	NA	NA
D1-36_01944	219	infA	COG0361	Translation initiation factor IF-1	ATGTCGAAAGAAGACAGCTTCGAAATGGAAGGCACTGTCGTCGACACCCTGCCCAACACCATGTTTCGTGTGGAGTTGGAAAATGGGCACGTCGTAACCGCGCATATCTCCGGCAAGATGCGCAAGAACTACATTCGTATTCTTACCGGTGACAAAGTGCGCGTCGAGCTGACGCCCTATGACTTGAGCAAAGGGCGCATCACTTACCGCGCTCGCTAA	MSKEDSFEMEGTVVDTLPNTMFRVELENGHVVTAHISGKMRKNYIRILTGDKVRVELTPYDLSKGRITYRAR				NA	NA	NA	NA	NA
D1-36_01945	708	bpt	COG2935	Aspartate/glutamate leucyltransferase	ATGACCGAGTTGGCGCGCTTGAAGTTTTATGCCACTCAACCTCACTCTTGCAGCTACCTGCCAGAGGAGCAGGCCACGACCCTGTTCCTCGATCCCAGCCAGCCCATGGATGTGCATGTCTATGCAGACCTGTCGGAGATGGGGTTTCGTCGCAGCGGCGATCACCTCTACCGGCCCCATTGCCAGCATTGCAATGCGTGCGTGCCGGCGCGCATTCCCGTGGCCCGCTTTACCCCGAACCGGCAGCAGAAGCGTATTTTCAAGCGCAACGCCGATTTGCAGGTGCGCCCGGCCAAACCGCAGTTCAGCGAAGAATATTTCGACCTGTACCAGCGCTACATCGAACAGCGCCACGCCGATGGCGACATGTACCCGCCCAGCCGGGACCAATTCTCGACCTTCCTGGTGCGCGACCTGCCGTTCTCGCGTTTCTATGAGTTCCGCCTCGACGGGCGGCTGGTGGCCATCGCCGTCACCGACCTGCTGCCCAACGGCCTGTCGGCGGTCTACACCTTTTATGAGCCCAACGAGGAAAAGCGCAGCCTGGGACGGTTCGCGATCCTTTGGCAGATCAACGAATGTCGGCGCCTGGGCCTGGAAGCGGTGTACCTGGGCTACTGGATCAAGAACTGCAAAAAAATGAACTACAAGACCCAATATCGGCCCATTGAATTGTTGATCAACCAGCGGTGGGTTGTCCTGAACTAG	MTELARLKFYATQPHSCSYLPEEQATTLFLDPSQPMDVHVYADLSEMGFRRSGDHLYRPHCQHCNACVPARIPVARFTPNRQQKRIFKRNADLQVRPAKPQFSEEYFDLYQRYIEQRHADGDMYPPSRDQFSTFLVRDLPFSRFYEFRLDGRLVAIAVTDLLPNGLSAVYTFYEPNEEKRSLGRFAILWQINECRRLGLEAVYLGYWIKNCKKMNYKTQYRPIELLINQRWVVLN				NA	NA	NA	NA	NA
D1-36_01946	681	aat	COG2360	Leucyl/phenylalanyl-tRNA--protein transferase	ATGCTGACTTGGTTACAACGCAACACTTTCGATTTTCCGCCACTGGAAAAAGCCATGCGCGACCCCAACGGCCTGCTCGCCGCCGGCGGGGACCTGTCCGCCGACCGCTTGATCCAGGCCTATCGCCACGGCTGCTTTCCATGGTTCTCCGAAGGCCAGCCGATCCTGTGGTGGTCGCCGGACCCGCGCACGGTGCTGTTTCCCGACGAGCTGCATGTATCGCGCAGCCTGGGCAAGCTATTGCGCAAGCAGCGCTATGAAGTGACGTTCGACCGGGATTTCGCCGGAGTCATCCAGGCTTGCGCCGCGCCCCGGGATTATGCCGATGGCACCTGGATCACCGACGCCATGCAGACCGCCTATCTGGAACTTCACCGACGCGGCTTCGCCCATTCCGTGGAAGTTTGGGATCAAGGCACGCTGGTCGGCGGCCTGTATGGCTTGGCAATGGGTCAGTTGTTTTTTGGCGAGTCCATGTTCAGTCGCGCCGACAATGCGTCGAAATTCGGCTTCGCAACCCTGGTCCAACACCTCAAGGAGGCGGGTTTCGTCCTGATCGACTGCCAGATGCCCACCGAGCACTTGCATAGCCTGGGCGCGCGGCCGATTCCGCGAACCGAGTTCGCGGCTTACTTGAAGGCCCATCTGGACCACCCCAACCATGCCACCTGGGTTTGCTGA	MLTWLQRNTFDFPPLEKAMRDPNGLLAAGGDLSADRLIQAYRHGCFPWFSEGQPILWWSPDPRTVLFPDELHVSRSLGKLLRKQRYEVTFDRDFAGVIQACAAPRDYADGTWITDAMQTAYLELHRRGFAHSVEVWDQGTLVGGLYGLAMGQLFFGESMFSRADNASKFGFATLVQHLKEAGFVLIDCQMPTEHLHSLGARPIPRTEFAAYLKAHLDHPNHATWVC				NA	NA	NA	NA	NA
D1-36_01947	960		COG0492	Glucosaminate ammonia-lyase	ATGAGCGAAGCGAAGCATTCACGCCTGATTATTCTCGGTTCCGGCCCTGCAGGGTACAGCGCTGCTGTCTATGCGGCCCGTGCCAACCTCAAACCCGTTGTCATCACCGGCATACAGGCCGGTGGCCAGCTCACCACCACGGTCGAAGTCGATAACTGGCCCGGCGACGTCGAAGGCCTGACCGGCCCGGTGCTGATGGAGCGCATGCAACGGCACGCCGAGCGCTTCGACACGCAGATCGTCTACGACCATATTCACACCGCCAAGTTGCAACAACGTCCGTTCGAATTGATCGGTGACAGCGGCACCTACACCTGCGACGCACTGATCATCGCCACCGGCGCCTCAGCCCAGTACCTCGGCCTGCCGTCGGAGGAAACCTTCGCTGGCAAAGGTGTTTCAGCCTGCGCGACCTGCGATGGTTTTTTCTACCGAAACCAGGTGGTGGCGGTGGTCGGTGGCGGCAACACCGCCGTGGAAGAAGCCCTGTACCTGTCGAATATCGCCAAGGAGGTGCATTTGATTCACCGGCGGGACAAGTTGCGCTCCGAAAAGATCTTGCAAGACAAACTCTTCGAGAAAGCCGCCAATGGCAATATCCGTTTGCACTGGAACCAGAACCTGGACGAGGTCCTGGGCGATGCCAGCGGCGTGACCGGCGCGCGCCTGCGGCACAGCGAGACCGGTGAAACCAGCACGTTGTCGCTGGCCGGCGTCTTCATCGCCATCGGGCACAAACCCAATACCGACCTGTTCCAGGGCCAACTGACGATGCGCGATGGTTACCTGATCGTGCGCGGCGGCAGCGACGGCAATGCCACGGCCACCGACATCGAAGGCGTGTTTGCCGCTGGCGATGTGGCCGATCATGTCTATCGCCAGGCCATTACTTCGGCCGGCGCCGGCTGCATGGCCGCCCTGGACGCAGAGAAGTATCTCGATGACATCCCGGCCGTTTGA	MSEAKHSRLIILGSGPAGYSAAVYAARANLKPVVITGIQAGGQLTTTVEVDNWPGDVEGLTGPVLMERMQRHAERFDTQIVYDHIHTAKLQQRPFELIGDSGTYTCDALIIATGASAQYLGLPSEETFAGKGVSACATCDGFFYRNQVVAVVGGGNTAVEEALYLSNIAKEVHLIHRRDKLRSEKILQDKLFEKAANGNIRLHWNQNLDEVLGDASGVTGARLRHSETGETSTLSLAGVFIAIGHKPNTDLFQGQLTMRDGYLIVRGGSDGNATATDIEGVFAAGDVADHVYRQAITSAGAGCMAALDAEKYLDDIPAV	PGPT0018945_75	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018945-trxB-K22345	NA	NA
D1-36_01948	2328	ftsK	COG1674	DNA translocase FtsK	TTGATCGCCATCGGTGCCTTGTGCCTGTTCCTGATGATGGCCTTGCTGACCTACGGCAAGGACGATCCGGGCTGGAGCCACAACAGCAAGATCGAAGACGTGCAGAATTTCGGCGGTCCGGCCGGTTCCTACAGCGCCGACATCCTGTTCATGGTGCTGGGCTATTTCGCCTATATCTTCCCGCTGCTGCTGGCGATCAAGACGTACCAGATATTCCGCCAGCGCCATGAGCCCTGGCAGTGGAGCGGCTGGCTGTTCTCCTGGCGCCTGATCGGCCTGGTCTTCCTGGTGCTGTCGGGAGCCGCGCTGGCCCATATTCATTTCCACGCCCCCACTGGCCTGCCCGCAGGGGCGGGTGGCGCACTGGGTGAAAGCCTCGGCGACCTGGCCCGCAATGCCCTGAACATCCAGGGCAGCACGCTGCTGTTCATCGCCTTGTTCCTGTTTGGCCTGACGGTATTCACCGACCTGTCGTGGTTCAAGGTGATGGACGTCACCGGCAAGATCACCCTTGACCTCATTGAATTGATCCAGGGCGCGCTGAACCGTTGGTGGGCGGCGCGCAACGAACGCAAGCAACTGGTGGCGCAACTGCGTGAAGTCGACGACCGCGTCCATGACGTTGTGGCGCCGACGGTGACTGACAAACGCGAGCAGGCCAAGGTCAAGGAGCGCCTGATCGAACGTGAGCAGGCCCTGAGCAAGCACATGTCCGAGCGCGAAAAGCAGGTGCCGCCGGTCATCACCATGGCCCCGGCCAAGCCGCCGGAGCAAAGCAAGCGCGTGCAGAAAGAGAAACAGGCACCGCTGTTCGTCGACAGCGCGGTGGAAGGCACCTTGCCGCCGATCTCGATCCTCGACCCGGCCGAGAAGAAACAGCTCAACTATTCCCCCGAGTCCTTGGCGGCCGTCGGGCATTTGCTCGAAATCAAGCTCAAGGAGTTCGGTGTGGAGGTCTCGGTGGATTCGATCCACCCGGGCCCGGTCATCACCCGTTACGAAATCCAGCCGGCCGCCGGCGTGAAGGTCAGCCGTATCGCCAACCTGGCGAAGGACCTGGCGCGCTCGCTCGCCGTGACCAGCGTGCGGGTGGTGGAGGTGATTCCCGGCAAGACCACCGTGGGCATCGAGATTCCCAACGAAGACCGGCAGATTGTGCGCTTCTCCGAAGTACTGTCGACGCCGGAATATGACAACCACAAGTCGCCGGTCACCTTGGCCTTGGGTCACGACATCGGCGGCAAGCCGGTCATCACCGACCTGGCGAAAATGCCCCACCTGCTGGTGGCCGGTACCACCGGCTCCGGTAAGTCGGTGGGCGTGAACGCGATGATCCTTTCGATCCTGTTCAAGTCCGGCCCGGAAGACGCCAAGCTGATCATGATCGACCCGAAGATGCTCGAATTGTCGATCTACGAAGGCATCCCGCACCTGCTGTGCCCGGTGGTCACCGACATGAAGGACGCGGCCAACGCCTTGCGCTGGAGCGTTGCCGAGATGGAGCGCCGCTACAAGCTGATGGCGAAGATGGGCGTGCGCAACCTGTCGGGCTTCAACGCCAAGGTCAAGGAAGCCGAGGAAGCCGGTACACCGCTGAGCGACCCGCTGTATCACCGCGAAAGCATCCACGACGAAGCGCCGCTGCTGCATAAGCTGCCGACCATCGTCGTGGTGGTGGACGAATTCGCCGACATGATGATGATCGTCGGCAAGAAGGTCGAAGAACTGATCGCCCGTATCGCCCAGAAGGCCCGTGCGGCCGGTATCCACCTGATCCTCGCTACGCAGCGACCGTCGGTGGACGTGATCACGGGCCTGATCAAGGCCAACATCCCGACCCGCATGGCGTTCCAGGTGTCGAGCAAGATCGACTCGCGGACCATCATCGACCAGGGCGGCGCCGAGCAACTGCTGGGTCACGGTGACATGCTCTACATGCCGCCCGGCACGAGCCTGCCGATCCGTGTCCACGGCGCGTTCGTCTCCGACGATGAAGTACACCGCGTGGTGGAAGCCTGGAAATTGCGCGGCGCGCCTGAATACAACGACGACATCCTCAACGGTGTCGAAGAAGCAGGCAGCGGTTTTGAAGGCAGCAGCGGTGGAGGCGGTGATGATGACGCAGAGACCGACGCGCTTTATGACGAAGCGGTGCAGTTCGTGCTCGAAAGCCGCCGTGCCTCGATTTCCGCCGTGCAGCGCAAGCTGAAGATCGGCTACAACCGCGCCGCTCGCATGATCGAGGCCATGGAAATGGCTGGGGTCGTGACGGCCATGAACACCAACGGTTCGCGCGAAGTGCTCGCGCCTGGCCCGATGCGCGACTGA	MIAIGALCLFLMMALLTYGKDDPGWSHNSKIEDVQNFGGPAGSYSADILFMVLGYFAYIFPLLLAIKTYQIFRQRHEPWQWSGWLFSWRLIGLVFLVLSGAALAHIHFHAPTGLPAGAGGALGESLGDLARNALNIQGSTLLFIALFLFGLTVFTDLSWFKVMDVTGKITLDLIELIQGALNRWWAARNERKQLVAQLREVDDRVHDVVAPTVTDKREQAKVKERLIEREQALSKHMSEREKQVPPVITMAPAKPPEQSKRVQKEKQAPLFVDSAVEGTLPPISILDPAEKKQLNYSPESLAAVGHLLEIKLKEFGVEVSVDSIHPGPVITRYEIQPAAGVKVSRIANLAKDLARSLAVTSVRVVEVIPGKTTVGIEIPNEDRQIVRFSEVLSTPEYDNHKSPVTLALGHDIGGKPVITDLAKMPHLLVAGTTGSGKSVGVNAMILSILFKSGPEDAKLIMIDPKMLELSIYEGIPHLLCPVVTDMKDAANALRWSVAEMERRYKLMAKMGVRNLSGFNAKVKEAEEAGTPLSDPLYHRESIHDEAPLLHKLPTIVVVVDEFADMMMIVGKKVEELIARIAQKARAAGIHLILATQRPSVDVITGLIKANIPTRMAFQVSSKIDSRTIIDQGGAEQLLGHGDMLYMPPGTSLPIRVHGAFVSDDEVHRVVEAWKLRGAPEYNDDILNGVEEAGSGFEGSSGGGGDDDAETDALYDEAVQFVLESRRASISAVQRKLKIGYNRAARMIEAMEMAGVVTAMNTNGSREVLAPGPMRD	PGPT0030468_5361	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
D1-36_01949	624	lolA	COG2834	Outer-membrane lipoprotein carrier protein	ATGCGCCTGATTCGCATGTTGCTGTTGCCCGTACTGGCCTTGTCTACTTTTTCGGCCCACGCCGGCGAAAAGGACGTGGCCCGCCTGACCCAGTTGCTGGGCGGCTCCCAGACCCTGACTGCGCGTTTTTCCCAGTTGACCCTCGACGGCAGTGGCACCCAGCTGCAGGAAACCGCCGGTGAAATGGCCCTTCAGCGTCCTGGCCTGTTCTATTGGCACACCGATGCTCCCGCCGAACAACTGATGGTTTCAGACGGCAAGAAAGTCTCGCTGTGGGACCCGGACCTGGAGCAGGTGACCATCAAGACTCTTGACCAGCGCCTGACCCAGACGCCAGCGTTGCTGCTGTCCGGTGACATCTCGGAGATCAGCCAGAGCTTCGACATTACCTCCAAGGAAGCCGGCGGGGTGATCGACTTCACCCTCAAGCCCAAGACCAAGGACAGCCTGTTCGACAGCCTGCGCCTGTCGTTCCGCAACGGCCTTGTTAACGACATGCAGCTGATCGACAGCGTTGGCCAGCGCACCAACATCCTGTTCACCGGGGTCAAGGCCAATACGCCGATCGCCGCGTCCAAGTTCAAGTTCGACATCCCCAAGGGTGCGGATGTGATCCAGGAATAA	MRLIRMLLLPVLALSTFSAHAGEKDVARLTQLLGGSQTLTARFSQLTLDGSGTQLQETAGEMALQRPGLFYWHTDAPAEQLMVSDGKKVSLWDPDLEQVTIKTLDQRLTQTPALLLSGDISEISQSFDITSKEAGGVIDFTLKPKTKDSLFDSLRLSFRNGLVNDMQLIDSVGQRTNILFTGVKANTPIAASKFKFDIPKGADVIQE	PGPT0024475_918	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024475-lolA-K03634	NA	NA
D1-36_01950	1326	rarA	COG2256	Replication-associated recombination protein A	ATGGACCTGTTTCGAAGCGCCCCGATTGCCCAGCCATTGGCCGCCCGCTTGCGCGCGACCAACCTGGATGAGTATGTCGGTCAGGAACACGTGCTCGCTCGCGGTAAGCCTCTGCGCGAAGCCTTGGAGCAGGGTGCCTTGCACTCGATGATTTTCTGGGGGCCGCCGGGCGTGGGCAAGACCACCCTGGCGCGGCTGCTGGCGGAGGTTTCTGACGCGCATTTCGAAACGGTCTCGGCGGTGCTGGCCGGGGTCAAGGAGATCCGCCAGGCTGTGGAAATCGCCAAGCAACAGGCCGGCCAGTACGGCAAGCGCACCATCCTGTTCGTCGACGAAGTACACCGGTTCAACAAATCCCAGCAGGACGCTTTCCTGCCCTATGTGGAAGACGGCACGCTGATATTCATCGGCGCCACCACCGAAAATCCTTCGTTCGAACTCAACAACGCCTTGCTGTCGCGGGCGCGGGTCTATGTGCTCAAGAGCCTCGATGAAACCGCGATGCGCAAGCTGGTGCATCGCGCGCTGACCGAAGAGCGGGGCTTGGGCAAGCGCCAGCTCAGCCTCAGCGATGAAGGTTTCCAGATACTCTTCAGCGCCGCCGACGGCGATGGTCGACGGCTGCTCAACCTGCTGGAAAACGCCTCGGACCTGGCCGAAGACAACAGCGAGATCGGAGTCGAGCTGCTGCAAAGCCTGCTGGGCGATACCCGCCGACGTTTCGACAAGGGCGGCGAGGCGTTCTACGACCAGATCTCGGCGCTGCACAAGTCCATCCGCGGTTCCAACCCCGATGCCGCGTTGTATTGGTTTGCGCGGATGATCGACGGTGGTTGCGATCCGCTGTACCTGGCTCGGCGGGTGGTGCGCATGGCCAGCGAGGACATCGGCAACGCCGACCCTCGGGCCCTGAGCCTGTGCCTGGCGGCCTGGGACGTGCAGGAGCGCCTCGGCAGCCCGGAGGGCGAGCTCGCCGTGGCCCAGGCCATCACTTACCTGGCCTGCGCACCGAAGAGCAACGCCGTGTACATAGGCTTCAAGGCCGCGATGCGCAGCGCCACCGAACACGGCTCCCTCGAAGTACCGCTGCACCTGCGCAACGCACCGACCAAGCTCATGAAACAGTTAGGTTATGGCGATGAATACCGCTATGCCCACGATGAGCCCGACGCTTATGCCGCCGGCGAAGACTATTTTCCCGAAGAACTCGAACCCCAGCGCTTCTACCAGCCCGCACCTCGAGGCCTTGAGTTGAAGATTGGCGAAAAGCTCAACCATTTGGCCCAGCTGGACCGATTGAGTCCACGACAGCGGAGAAAACCGTGA	MDLFRSAPIAQPLAARLRATNLDEYVGQEHVLARGKPLREALEQGALHSMIFWGPPGVGKTTLARLLAEVSDAHFETVSAVLAGVKEIRQAVEIAKQQAGQYGKRTILFVDEVHRFNKSQQDAFLPYVEDGTLIFIGATTENPSFELNNALLSRARVYVLKSLDETAMRKLVHRALTEERGLGKRQLSLSDEGFQILFSAADGDGRRLLNLLENASDLAEDNSEIGVELLQSLLGDTRRRFDKGGEAFYDQISALHKSIRGSNPDAALYWFARMIDGGCDPLYLARRVVRMASEDIGNADPRALSLCLAAWDVQERLGSPEGELAVAQAITYLACAPKSNAVYIGFKAAMRSATEHGSLEVPLHLRNAPTKLMKQLGYGDEYRYAHDEPDAYAAGEDYFPEELEPQRFYQPAPRGLELKIGEKLNHLAQLDRLSPRQRRKP				NA	NA	NA	NA	NA
D1-36_01951	375	crcB		Putative fluoride ion transporter CrcB	GTGATCCCCTTGATTCTCGCAGTCTCCGCTGGGGGCGTTGCCGGTACGTTGTTGCGTTTCGCCACGGGTAACTGGATCAGTGCAAATTGGCCGCGGCACTTCTATACCGCGACGCTGGCCGTTAATATCGTGGGCTGTCTGCTGATCGGCGTTCTTTACGGCCTGTTTTTGATTCGTCCCGAGGTGCCCATCGAGGTGCGCGCGGGGTTGATGGTCGGCTTTCTTGGCGGCCTGACGACTTTTTCATCTTTTTCACTGGATACGGTGCGCCTGCTGGAAAGCGGGCAGGTGCCGCTGGCCCTGGGCTATGCGGCCATCAGCGTGTTCGGCGGGCTGCTCGCCACCTGGGCCGGCCTGTCCTTGACCAAACTTTGA	MIPLILAVSAGGVAGTLLRFATGNWISANWPRHFYTATLAVNIVGCLLIGVLYGLFLIRPEVPIEVRAGLMVGFLGGLTTFSSFSLDTVRLLESGQVPLALGYAAISVFGGLLATWAGLSLTKL	PGPT0004985_3903	DIRECT EFFECT	BIO-REMEDIATION	FLUORIDE_DETOXIFICATION	FLUORIDE_RESISTANCE	FLUORIDE_RESISTANCE-FLUORIDE_TRANSPORT,PGPT0004985-crcB-K06199	NA	NA
D1-36_01952	1281	serS	COG0172	Serine--tRNA ligase	ATGCTCGATTCCAAACTGTTACGTAGCAACCTTCAGGACGTAGCGGACCGCCTGGCTTCCCGTGGCTTTGCCCTGGACGTCGCGCGCATCGAAGCGCTGGAAGAACAGCGCAAGACCGTCCAGACCCGCACCGAGGCCCTGCAGGCAGAACGTAACGCGCGCTCCAAGTCCATCGGCCAGGCCAAGCAGCGTGGCGAAGACATCGCGCCGCTGATGGCCGATGTCGAGCGCATGGCGGGCGAGTTGAGCGTCGGCAAGGTCGAGCTGGACGCGATCCAGACCGAGTTGGATTCGATCCTGTTGGGCATTCCGAACCTGCCTCACGAGTCGGTGCCGGTCGGTGAAGACGAAGACGGCAACGTCGAAGTACGCCGCTGGGGCACGCCGAAAACCTTCGATTTCCCCGTGCAGGACCACGTGGCCCTGGGCGAGAAATTCGGCTGGCTCGACTTCGAAACCGCCGCCAAATTGTCGGGCGCGCGTTTTGCCCTGTTGCGCGGGCCGATTGCCCGTCTGCATCGGGCGCTGGCGCAGTTCATGATCAATCTGCACGTCACCGAGCACGGCTACGAAGAGGCCTACACGCCGTACCTGGTCCAGGCCCCGGCCCTGCAAGGCACCGGCCAGTTGCCAAAGTTCGAGGAAGACCTGTTCAAGATCGGTCGCGACGGCGAAGCCGACCTGTACCTGATCCCCACTGCCGAAGTGTCGCTGACCAACATCGTCGCGGGCGAAATCGTCGATGCCAAGCAACTGCCGATCAAGTTCGTTGCCCATACGCCGTGCTTCCGCAGCGAAGCCGGCGCGTCGGGCCGTGATACCCGCGGCATGATTCGCCAGCACCAATTCGACAAGGTCGAAATGGTGCAGATCGTCGAGCCGTCCAAATCCATGGAAGCCCTGGAAAGCCTGACCGCCAACGCCGAAAAGGTTCTGCAACTGCTGGAGTTGCCGTATCGCACCCTGGCGCTGTGCACCGGCGACATGGGTTTCAGCGCGGTCAAGACCTATGACTTGGAAGTCTGGATCCCGAGCCAGGACAAGTACCGCGAGATTTCGTCGTGCTCCAACTGTGGCGACTTCCAGGCCCGCCGCATGCAGGCGCGTTTCCGCAACCCGGAAACCGGCAAGCCGGAACTGGTCCACACCCTCAACGGCTCCGGCCTGGCGGTGGGTCGTACGCTGGTGGCGGTGCTTGAGAACTACCAGCAGGCCGACGGCTCGATCCGTGTGCCCGAGGTGCTGAAACCGTACATGGGCGGCATCGAGGTCATCGGCTAA	MLDSKLLRSNLQDVADRLASRGFALDVARIEALEEQRKTVQTRTEALQAERNARSKSIGQAKQRGEDIAPLMADVERMAGELSVGKVELDAIQTELDSILLGIPNLPHESVPVGEDEDGNVEVRRWGTPKTFDFPVQDHVALGEKFGWLDFETAAKLSGARFALLRGPIARLHRALAQFMINLHVTEHGYEEAYTPYLVQAPALQGTGQLPKFEEDLFKIGRDGEADLYLIPTAEVSLTNIVAGEIVDAKQLPIKFVAHTPCFRSEAGASGRDTRGMIRQHQFDKVEMVQIVEPSKSMEALESLTANAEKVLQLLELPYRTLALCTGDMGFSAVKTYDLEVWIPSQDKYREISSCSNCGDFQARRMQARFRNPETGKPELVHTLNGSGLAVGRTLVAVLENYQQADGSIRVPEVLKPYMGGIEVIG				NA	NA	NA	NA	NA
D1-36_01953	1395	cysG_2	COG0007	Siroheme synthase	ATGGACTATTTGCCACTGTTCCACAACCTGCGCGGCAGCCGCGTGCTGGTGGTTGGCGGCGGGGAGATTGCCTTGCGCAAGTCTCGCCTGCTGGCCGATGCCGGCGCATTGTTGCGGGTGGTCGCACCCGATATCGAACCGCAGTTGCGGGAACTGGTCGGTGGCAGCGGCGGCGAATGTGTCCTGCGGGGCTACGTGGAAGCGGACCTGGACGGCTGTGGCCTGGTCATCGCCGCCACGGATGACGAACCGCTCAATGCCCAGGTCTCGGCGGACGCCCACAAGCGCTGCGTGCCGGTCAACGTGGTGGACGCGCCGGCGCTGTGCAGCGTGATTTTCCCGGCGATCGTCGATCGCTCGCCCCTGGTGATCGCGGTGTCCAGCGGCGGCGACGCGCCGGTGCTGGCGCGGCTGATCCGCGCCAAGCTGGAAACCTGGATTCCGTCGACCTACGGGCAGTTGGCCGGTTTGGCGGCGCGCTTTCGCAATCAGGTCAAAGGCTTGTTTCCCGATGTCCAGCAACGGCGGGCCTTCTGGGAAGAAGTGTTCCAAGGCCCCATCGCCGACCGCCAATTGGCCGGGCAGGGCGCCGAAGCCGAGCGGCTGTTGCGGGAAAAGATCGACGGCCAGGCGCCGAATGCGCCGGGTGAGGTCTATCTGGTGGGCGCCGGGCCGGGTGATCCCGACCTGCTGACGTTCCGCGCCCTGCGCCTGATGCAACAGGCGGACGTGGTGCTGTACGACCGTCTGGTGGCGCCGGCCATCCTCGAACTGTGCCGCCGCGACGCCGAACGGGTCTACGTCGGCAAGCGCCGCTCCGAGCACGCCGTGCCCCAGGACCAGATCAACCAGCAACTGGTGGACCTGGCCCGGCAAGGTAAACGTGTGGTGCGGTTGAAGGGCGGCGATCCTTTTATCTTCGGTCGTGGTGGCGAAGAGATCGAAGAGCTGGCGGCCCATGGCATCCCGTTCCAGGTGGTCCCGGGCATCACTGCCGCCAGTGGCTGCGCGGCCTACGCCGGGATTCCGCTGACCCATCGCGATTATGCCCAGTCGGTGCGCTTCATTACCGGTCATCTAAAGGACGGCACCAGCGACTTGCCATGGGCCGATCTTGTCTCGCCAGCACAGACGCTGGTGTTCTACATGGGCTTGGTGGGGCTGCCGGTGATTTGCAACGAGCTGATCAAGCACGGTCGCGCGGCGGACACGCCGGCGGCGTTGATCCAGCAAGGCACGACTTCAAACCAGCGCGTTTTCACCGGCACGTTGGCGGACTTGCCACGGCTGGTGGCGGAGCATGAAGTCCATGCGCCGACGTTGGTGATTGTTGGCGAAGTGGTGCAGTTACGCGAGAAGCTGGCTTGGTTTGAAGGGGCTCAGGGGCAGGTTTGA	MDYLPLFHNLRGSRVLVVGGGEIALRKSRLLADAGALLRVVAPDIEPQLRELVGGSGGECVLRGYVEADLDGCGLVIAATDDEPLNAQVSADAHKRCVPVNVVDAPALCSVIFPAIVDRSPLVIAVSSGGDAPVLARLIRAKLETWIPSTYGQLAGLAARFRNQVKGLFPDVQQRRAFWEEVFQGPIADRQLAGQGAEAERLLREKIDGQAPNAPGEVYLVGAGPGDPDLLTFRALRLMQQADVVLYDRLVAPAILELCRRDAERVYVGKRRSEHAVPQDQINQQLVDLARQGKRVVRLKGGDPFIFGRGGEEIEELAAHGIPFQVVPGITAASGCAAYAGIPLTHRDYAQSVRFITGHLKDGTSDLPWADLVSPAQTLVFYMGLVGLPVICNELIKHGRAADTPAALIQQGTTSNQRVFTGTLADLPRLVAEHEVHAPTLVIVGEVVQLREKLAWFEGAQGQV	PGPT0003690_964	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003690-cysG-K02302	NA	NA
D1-36_01954	987	yqjG	COG0435	Glutathionyl-hydroquinone reductase YqjG	ATGGGTTTGTTGGTCGAGGGTCGCTGGCAGGACCAGTGGTATGAAAGCAAGGACGGCAGTTTCCAGCGTGAGCAGGCGCAACGCCGCGACTGGATCACCGCCGACGGCAAAAGCAGTTTCCCCGCCGAGGCCGGGCGCTACCACTTGTATGTATCCCTGGCCTGCCCCTGGGCGCACCGCACGCTGATCTTTCGCAAGCTCAAGGGCCTGGAAGCGCTGATCGACGTTTCAGTGGTCAGCTATCTGATGCTGGAAAACGGCTGGACGTTCGACAAGGCCCACGGCTCGACCGGCGACAACCTGGATAACCTGAGCTTCCTGCACCAGCGCTACACCGCCGACACGCCGGACTACACCGGTCGCGTGACCGTTCCGGCCTTGTGGGACAAAAAGCAACGGCGCATCGTCAACAACGAATCGGCGGAAATCATCCGCATGTTCAACAGCGCGTTCGATGGCCTGACCGGCAACGACCTGGACCTGTATCCCGAGCACCTGCGCCACGAGATCGATGGGTTGAACGAGCGCATCTACCCAGCGGTGAACAACGGGGTATACCGTGCGGGGTTCGCGACGACCCAGGCCGCTTATGAAGAAGCCTTCGATCAACTGTTTGCCGAACTGGACCGAGTGGAAGCCTTGCTGAAAACCCGTCGCTACCTGGCGGGTGAATACCTGACCGAAGCGGATATCCGCTTGTTCACTACGATGATTCGTTTCGACGCGGTGTATTTCGGCCACTTCAAATGCAACCTACGCCGCATCGCCGATTACCCGAACCTGTCGAACTGGCTGCGCGAGCTGTATCAGTGGCCGGGCGTTGCCGAGACCGTGGACTTCACCCATATCCAGCGGCACTACTACGGCAGCCACAAGACCATCAACCCGAATGGGATCGTGCCCAAGGGGCCGGAGCAGGATTTTACGGTGGCCCACGATCGAGAGAGGTTGAGCGGGAAAGGGATTTGGCTTCGGGCTGAAAGCTGA	MGLLVEGRWQDQWYESKDGSFQREQAQRRDWITADGKSSFPAEAGRYHLYVSLACPWAHRTLIFRKLKGLEALIDVSVVSYLMLENGWTFDKAHGSTGDNLDNLSFLHQRYTADTPDYTGRVTVPALWDKKQRRIVNNESAEIIRMFNSAFDGLTGNDLDLYPEHLRHEIDGLNERIYPAVNNGVYRAGFATTQAAYEEAFDQLFAELDRVEALLKTRRYLAGEYLTEADIRLFTTMIRFDAVYFGHFKCNLRRIADYPNLSNWLRELYQWPGVAETVDFTHIQRHYYGSHKTINPNGIVPKGPEQDFTVAHDRERLSGKGIWLRAES	PGPT0013050_953	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013050-yqjG-K07393	NA	NA
D1-36_01955	1002	trpD_1		Anthranilate phosphoribosyltransferase	ATGACCGACTTTCCAGCATTGACCCTCCAAACCCCTGCCGAACACCCGTTCGCCCAGTTCGTGCGCATCCTTGGCAAGGGCAAGCGCGGCGCCCGTAACCTCACCCGTGACGAAGCGCGGGAGGCCATGGGCATGGTGCTGGATGAGCGGGTCGAAGAAACCCAACTGGGCGCGTTCCTCATGCTGTTGCGGCACAAGGAAGAAAGCGCTGAGGAAATGGCCGGGTTTACCGACGCCCTGCGTCAGCGCCTGGTTATCCCGGCCATGGCGGTAGACCTCGACTGGCCAACCTACGCCGGAAAGAAGCGTCATCTGCCCTGGTATCTGTTGGCCGCCAAATGCCTCGGGCAAAACGGTGTGCGAATCTTCATGCACGGCGGCGGCGCCCACACGGCGGGCCGGCTCTACACGGAACAGCTGCTGGATTTGCTGGTCATCCCCTTGTGCCGCGACTGGCAGCAGGTCGGCGCGGCGCTGGACAACGGCGGCCTGGCCTTCATGCCGCTGGTGGACTGGGCGCCGCAAATGCAGCGCATGATCGACCTGCGCAACACGCTGGGCTTGCGCTCGCCGATTCATTCCCTGGCGCGCATTCTCAACCCGTTGGGTGCGCGTTGCGGCCTGCAAAGCATCTTCCATCCCGGCTACCAGGCCGTGCATCGCGAGGCCAGCGGACTGCTGGGCGACACCAGCATCGTGATCAAGGGCGACGGCGGTGAGATCGAGATCAACCCCGACGCCGACAGCCATTTGTACGGCACCACCGGCGGCGCCAGTTGGGATGAAGAATGGCCGCGACTGTCCGAACAGCGCCACGTCAAGCCGGAGCGCCTCGACCCCGAGCATTTGAAAGCGGTATGGCGCGGTGACCTCGAGGACAGTTATCCGCAGCTGGCGCTGATCGCCACCATGGCCCTGGCCTTGCGCGGCTTGGGCCTGACCCGAGAAGCAGCGTTCGACAAGGCCCGGCAGTATTGGGATGCGCGCGATAGATCGATTTAG	MTDFPALTLQTPAEHPFAQFVRILGKGKRGARNLTRDEAREAMGMVLDERVEETQLGAFLMLLRHKEESAEEMAGFTDALRQRLVIPAMAVDLDWPTYAGKKRHLPWYLLAAKCLGQNGVRIFMHGGGAHTAGRLYTEQLLDLLVIPLCRDWQQVGAALDNGGLAFMPLVDWAPQMQRMIDLRNTLGLRSPIHSLARILNPLGARCGLQSIFHPGYQAVHREASGLLGDTSIVIKGDGGEIEINPDADSHLYGTTGGASWDEEWPRLSEQRHVKPERLDPEHLKAVWRGDLEDSYPQLALIATMALALRGLGLTREAAFDKARQYWDARDRSI	PGPT0003690_2	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003690-cysG-K02302	NA	NA
D1-36_01956	336	tusE	COG2920	Sulfurtransferase TusE	ATGAAGACCCTGAACGTGGGCGAGCGCAGCATTGCGCTGGACAAGGATGGCTACCTGGCTGATCTCAACGAGTGGTCCGCCGACGTGGCCACGGCCCTGGCCACCGCCGAAGACATCGAGCTGAGCCCCGAACACTGGGAAATCCTCGAACTGCTGCGCGCGTTCTACGCTGAGTTCCAGTTGTCTCCGGCCACCCGCCCGCTGATCAAGTACACCGCGCTGAAACTGGGAGCGGATAAAGGCAACAGCCTGCACCTGAACCGATTGTTCAAAGGCACTCCCGCCAAACTCGCCGCCAAGCTGGCGGGCCTGCCCAAACCGACGAATTGCCTATGA	MKTLNVGERSIALDKDGYLADLNEWSADVATALATAEDIELSPEHWEILELLRAFYAEFQLSPATRPLIKYTALKLGADKGNSLHLNRLFKGTPAKLAAKLAGLPKPTNCL				NA	NA	NA	NA	NA
D1-36_01957	294	tusB	COG2168	Protein TusB	ATGTCGACTTTGCATGTGTTGTCTCATTCCCCTTTCGGCGACAGCCGCCTCGCCAGTTGCCTGCGGATCCTGGGAAGCCAAGACGCGCTGCTGCTGTGCGGCGACGCAACGTATGCGCTGCGAACCGGTACCGTGCCGTTCGACACGCTGCGTGCCGGCGGCGCCAAGGTGTTCATCCTGGCCGAAGATGCACAGGCCCGCGCCCTGCCCATTCCGGACTGGGCCGAGGCCATCGATTATGCGGCCTTCGTCGAGCTCTCGATCCAGCACGACAAGGTCAACAGCTGGCTATGA	MSTLHVLSHSPFGDSRLASCLRILGSQDALLLCGDATYALRTGTVPFDTLRAGGAKVFILAEDAQARALPIPDWAEAIDYAAFVELSIQHDKVNSWL				NA	NA	NA	NA	NA
D1-36_01958	363	dsrF	COG2923	Intracellular sulfur oxidation protein DsrF	ATGGCCAGGTCTTTGTTGCTCATCAGCCGCCAGGCCCCCTGGTCCGGCCCCGGTGCCCGGGAAGCGCTGGACATCGTGTTGGCCGGCGGCGCCTTCGACCTGCCCATCGGTCTGCTGTTTCTCGATGACGGCGTGTTCCAGCTCGCCGCCGGTCAGGATGCCAAGGCTGTCCGGCAAAAAGACTTGAGCGCCAACTTGCAGGCGTTGCCGATGTTTGGCGTCGAAGACCTGTTCGTCTGCGCCGACAGCGCCGCACAGCGCGGTCTCGCCGTCGATGCCCTGGCGCTGGACGACCTCAAAGCGCTGGGCGCCGCGGACATCGCCGCGCTCATTGACCGTTACGACCAGGTGATTACCCTCTGA	MARSLLLISRQAPWSGPGAREALDIVLAGGAFDLPIGLLFLDDGVFQLAAGQDAKAVRQKDLSANLQALPMFGVEDLFVCADSAAQRGLAVDALALDDLKALGAADIAALIDRYDQVITL				NA	NA	NA	NA	NA
D1-36_01959	393	dsrE	COG1553	Putative sulfurtransferase DsrE	ATGAAGTTCGCCATCGCGCTGTTTTCCGCCGCCCACGCGCCCTCCTCGCGCCGCGCCTTGCTGTTTGCCCAGGCAGCTTTGGCCGGTGGGCATGAGATCGTGCGGCTGTTTTTCTACCAGGACGGCGTCTACAACGCCGCCAACAGCGTCGTCACGCCCCAGGACGAGCAAGACCTGCCCCAGCAATGGCGCGCCTTCGTCAGCGAGCACCAGCTCGACGGCGTGGTGTGCATTGCGGCGGCGTTGCGCCGTGGCGTGCTTAACGAGGAAGAAGCCCAGCGTTACCAGCGTTCGGCGGCCAGTGTCCAAGCGCCGTGGGCGTTGTCCGGGCTGGGCCAGTTGCACGATGCGATCCAGGACGCCGACCGCTTGATCTGTTTTGGAGGCACATGA	MKFAIALFSAAHAPSSRRALLFAQAALAGGHEIVRLFFYQDGVYNAANSVVTPQDEQDLPQQWRAFVSEHQLDGVVCIAAALRRGVLNEEEAQRYQRSAASVQAPWALSGLGQLHDAIQDADRLICFGGT				NA	NA	NA	NA	NA
D1-36_01960	330			hypothetical protein	ATGGCGACAACCGAACAGCAACACGAACGAGCCCTGCAGATTTTTCTCGAGCAACGCCCCGAGCTGCGCGACGAACTGGACAACCTCAACCCGCTGCTGGCCCAGGCCAAGGGCGAAACCGCCGCGCAGTACCGCGCCGAGCGGTTGCATGAAGCCTTCGAAGCCGAGGCCGAGAGCGCCGGATTGTTCGCCTGGGAACTGACGCTGCTGCTGACGACCGATTCAGCCGAGGACTACCAGGCCCAACGCATGGAAGTTCACAAGGAAGTGGCGGAGATGGCAGGAATGGAATGGCCGGAGTATTGCGAGCTGTATGGCCTCGAGCCCTGA	MATTEQQHERALQIFLEQRPELRDELDNLNPLLAQAKGETAAQYRAERLHEAFEAEAESAGLFAWELTLLLTTDSAEDYQAQRMEVHKEVAEMAGMEWPEYCELYGLEP				NA	NA	NA	NA	NA
D1-36_01961	351			hypothetical protein	ATGCGAATGCTGATGGTGGCCGTGGCCGCAACCCTGCTGGCCGGCTGCGCGGGTTCGGCGATGGAGCAGGCCCGGACCCAAGCCCCCTACAAGACCCTGTCCTCGGACAAGCCGGAACAGAACGTCGCCCAATGCGTGAAGTTTGCCTGGGAAGACGAAGCGGCGTTCGGGGTCGATGCCGGCGCCTATCTGCAGCCCGGCAAGCAAGGCGGCTCGACGGTGTACACCCGATCGGCCGAGTCGTTTGTGGATCTGCAAGCCAGCGCCACGGGCACGGCGCTGAATTATTACGCCAAGCATGATGATTTTGTCGCCAAGCGCCGGTTGGCGGCGTTGGCGACGTGTCTCTAA	MRMLMVAVAATLLAGCAGSAMEQARTQAPYKTLSSDKPEQNVAQCVKFAWEDEAAFGVDAGAYLQPGKQGGSTVYTRSAESFVDLQASATGTALNYYAKHDDFVAKRRLAALATCL				NA	NA	NA	NA	NA
D1-36_01962	432			Acetyltransferase	ATGACGCTGCGAATCGAACGCACGGACGCTCCAACCGATGAAGAACGCCAGGCCATCCTCGCGCCGCTACGCGCCTATAACACCGCCCAGACCGGTGGAAGCGCACCGGAAGCGGTCGCCTGGCTGGTGCGCGACGAGCACGATGAAATCGTCGGCGGCCTGTATGGCCGGGTATTTTTTCGTTGGCTCTATATCGAATTACTGGTGGTGCCCGAACAGGCGCGCGGCCAGGGCACGGGCTCGGAATTGATGCGCATGGCCGAACAACTGGCCAGGGAAAAGGATTGCGTGGGCATCTGGCTCGACACCTTCGACTTCCAGGCTCCGGATTTCTATCGCAGACAGGGTTTCACCCAGTGCGGCCAGATCGATGACTATCCGCCGGGTCACCGGCGCTACTTTTTCCAGAAGCGCCTGGATCTCGAGAATTAA	MTLRIERTDAPTDEERQAILAPLRAYNTAQTGGSAPEAVAWLVRDEHDEIVGGLYGRVFFRWLYIELLVVPEQARGQGTGSELMRMAEQLAREKDCVGIWLDTFDFQAPDFYRRQGFTQCGQIDDYPPGHRRYFFQKRLDLEN				NA	NA	NA	NA	NA
D1-36_01963	1728	ggt_1		Glutathione hydrolase proenzyme	ATGAAGTTCCAATCCCTGGCCCGGACCCTCGTCGCCACCTCGCTTTCCCTTTACTGTCTGACTGCCCACGCCGCGTCCCAGGCCCCGGTTGCCGCCGAGAACGGCATGGTGGTGACGGCCCAACACCTGGCGACCCATGTCGGCGTCGATGTGCTCAAGAACGGTGGCAATGCCGTTGATGCGGCAGTGGCGGTGGGCTACGCCCTGGCGGTGGTTTATCCCGCGGCGGGTAACCTGGGGGGTGGCGGTTTCATGACCTTGCAGATGGCCGACGGCCGCAAGACCTTCCTGGATTTCCGTGAAAAAGCCCCCCTGGCCGCCACGGCCGACATGTACCTGGACAAGGCAGGCAACGTCATCCCCGAGCTCAGCACGCGCGGCCATTTGGCAGTAGGCGTACCCGGCACCGTGTCTGGCATGGAACTGGCGCTGAAGAAATACGGCAGCAAACCCCGGGCGGAATTGATCGCGCCGGCGATCAAGTTCGCCGAGGACGGTTTTGTCCTGGAACAGGGCGACGTGGATCTGCTGGAAACCGCCACGGATGTCTTCAAGAAAGATGCGCGCGATTCCGGCGCAATCTTCCTGCACAACGGCGAGCCGATGCAGGTCGGCCAGAAGCTGGTGCAGAAAGACCTCGCCAGGACCCTGCGGGAGATTTCCGACAAGGGTGCCGACGGCTTCTATAAAGGCTGGGTCGCCGATGCGCTGGTGACGTCCAGCCAGGCCAACAAAGGCATCATCACCCAGGCCGACCTGGACAAGTACAAGACCCGTGAACTGGCGCCGGTCGAGTGCGACTATCGCGGCTATCACATCATTTCCGCGCCGCCACCCAGTTCAGGTGGCGTGGTGCTTTGCCAGATCATGAACATCCTCGATGGCTATCCGATGAAAGACCTGGGTTTCCATTCGGCCCAAGGCATGCACTACCAGATCGAAGCCATGCGTCACGCCTATGTCGACCGCAACAGCTACCTGGGCGACCCGGACTTCGTGCAGAACCCCATCGATCATCTGCTGGACAAGAATTACGCCGCGAAACTGCGCGCCGCCATCGAGCCGCAGAAAGCCGGCGACTCCCAGAAGATCAAGCCCGGCGTGGCGCCCCACGAGGGCAGCAACACCACCCATTATTCGATCGTCGATCAATGGGGCAACGCCGTCTCCGTCACTTACACCCTCAACGACTGGTTCGGTGCCGGCGTGATGGCGAGCAAGACCGGGGTGATCCTCAACGATGAAATGGATGACTTCACCTCCAAGGTCGGCGTGCCCAACATGTACGGCCTGGTGCAGGGCGAGGCCAATGCCATCGCGCCGGGCAAGGCGCCGCTGTCGTCCATGAGCCCGACCATCGTCACCAAGGACGGCAAGACCGTGATGGTTGTCGGCACGCCGGGCGGCAGCCGCATCATCACGGCGACTTTGCTGACCATCCTCAACGTGATCGACTACGGCATGAACTTGCAGGAAGCCGTCGACGCGCCGCGCTTCCATCAACAGTGGATGCCGGAGGAGACCAACCTGGAAACCTTCGCGGCGAGCCCCGATACCCTCAAGTTGCTGGAAAGCTGGGGCCATAAGTTTGCTGGGCCGCAGGACTCCAACCACATCGCCGCGATCCTCGTGGGCGCGCCGTCGTTGGGTGGCAAGCCGGTGGGCAAGAACCGTTTCTACGGCGCCAACGACCCGCGTCGCAACACGGGGTTGTCGTTGGGCTATTGA	MKFQSLARTLVATSLSLYCLTAHAASQAPVAAENGMVVTAQHLATHVGVDVLKNGGNAVDAAVAVGYALAVVYPAAGNLGGGGFMTLQMADGRKTFLDFREKAPLAATADMYLDKAGNVIPELSTRGHLAVGVPGTVSGMELALKKYGSKPRAELIAPAIKFAEDGFVLEQGDVDLLETATDVFKKDARDSGAIFLHNGEPMQVGQKLVQKDLARTLREISDKGADGFYKGWVADALVTSSQANKGIITQADLDKYKTRELAPVECDYRGYHIISAPPPSSGGVVLCQIMNILDGYPMKDLGFHSAQGMHYQIEAMRHAYVDRNSYLGDPDFVQNPIDHLLDKNYAAKLRAAIEPQKAGDSQKIKPGVAPHEGSNTTHYSIVDQWGNAVSVTYTLNDWFGAGVMASKTGVILNDEMDDFTSKVGVPNMYGLVQGEANAIAPGKAPLSSMSPTIVTKDGKTVMVVGTPGGSRIITATLLTILNVIDYGMNLQEAVDAPRFHQQWMPEETNLETFAASPDTLKLLESWGHKFAGPQDSNHIAAILVGAPSLGGKPVGKNRFYGANDPRRNTGLSLGY	PGPT0002935_3194	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_TAURINE_UTILIZATION,PGPT0002935-ggt-K00681	NA	NA
D1-36_01964	1221			hypothetical protein	GTGGATGAAGCGATTGGCGCGGCGGCGCGCGCATTGGCGGCTGGTGATCCCGTGGCGGCGCTCAATCGTGTCGCCCTGCGCAATGATGCCCCGGCCCTCGCGCTCCGCGGCATCGCCATGGCGCAGTTGGGGGACCTGGAAAAAGCCAGAAGCCTGTTGCGCCGGGCAGGTACGGCCTTCGGATCCACGGACGCCGTGGCACGGGCGCGCTGTGTCGTGGCCGAAGGTGAAATCGCCTTGGCCTCTCGTGACCTGTCCTGGCCGCCGAAACGCCTCGACGCCGCCCGTACGGTGCTCGAAGCTCACGGCGATCGGGCCAACGCCGGTCATGCACGGATCATCGAGATCCGCCGCCTGTTGCTGATCGGTCGACTCGACGAGGCGCAACTCAAGCTCATCGACCTGGAGCCCGCCGGTCTGCCGTTGGCGTCCTGGGCGGTGTGCCAGTTGGTGGCTGCGGGAATTGCCATGCGGCGGCTACAAGCGCAAACCGCCCGTGAGGCTTTGGAACGGGCCGGGCAAGCCGCGCAACAAACAGGGATCAGCGCGTTGAACGGCGAAATCGACAACGCCTGGCGGATGCTGAGTACGCCCGCAGCCCGGCTGATCGCTCGAGGCGAAGAGCGTTTGCTGGTGCTGGAGGAGGTGCAATCGCTGCTGGCCGGCCCGGCGCTGGTTGTAGATGCCTGCCGGTTCGGTATCCGCTGCGCGGGCGTCCAGGTCGTGCTTGTACGGCGGCCGGTGCTGTTTGCCCTGGCCCGTGGGTTGGCCCAGGCCTGGCCCGGCGATGCGTCGAGGGAAGCGCTCATGACCCAAGCCTTTGGTTTGAAATTGACGGACGAGACCCATCGCGCCCGGTTGCGGGTTGAAATGGGACGGTTGCGAGAGGCGCTGCGCCCAATGGCTGGCGTAGTCGCAACCCGGCGCGGTTTCAGGTTGTCGCCACACCATGCTCACGAAGTCGTGATCCTGGCGCGGGTCGTTGAGGAACCCCACGGGGCGGTGCTGGCATTGTTGGCGGACGGTGAAGCCTGGTCCAGTTCGGCCCTGGCGCTGGCCTTGGGCACCAGCCAGCGCAGCGTGCAAAGAGCCTTGGAAAACCTGGCTGCTTGCGGCAAGGCGCAGTCGTTCGGTCGCGCACGGGCCCGGCGCTGGACAGTACCGTCAATGCCCGGATTCGCGACCATATTGTTACTCACTGCACTGCCGTTCGATGGTTAG	MDEAIGAAARALAAGDPVAALNRVALRNDAPALALRGIAMAQLGDLEKARSLLRRAGTAFGSTDAVARARCVVAEGEIALASRDLSWPPKRLDAARTVLEAHGDRANAGHARIIEIRRLLLIGRLDEAQLKLIDLEPAGLPLASWAVCQLVAAGIAMRRLQAQTAREALERAGQAAQQTGISALNGEIDNAWRMLSTPAARLIARGEERLLVLEEVQSLLAGPALVVDACRFGIRCAGVQVVLVRRPVLFALARGLAQAWPGDASREALMTQAFGLKLTDETHRARLRVEMGRLREALRPMAGVVATRRGFRLSPHHAHEVVILARVVEEPHGAVLALLADGEAWSSSALALALGTSQRSVQRALENLAACGKAQSFGRARARRWTVPSMPGFATILLLTALPFDG				NA	NA	NA	NA	NA
D1-36_01965	639			hypothetical protein	ATGAAACGTTCAGAGGCACAAATCCTGCGTGAATACGGCCCGTTCCCTGGCGTTGATTGCGTCCACGGCGTGAGCCATGACGGCGAGCGCGTCTGGCTCGCCTCGGGCGAAAAGCTTCACGCCTTCGATCCCGCCAGTGGCCAAACCGTGCAAACCCTCGACGTCCCGGCGAACGCCGGCACCGCGTTCGATGGCCAGCATCTGTTCCAGATCGCCGGCGACAGCATCCGCAAGATCGATCCGCGCACTGGCCAGGTACTGGCGACGATTCCGGCGCCCAACAGTGGCGATGACTCCGGGCTGGCCTGGGCCGAAGGTTCGCTCTGGGTCGGTCAGTACAAGGCGCGCAAGATCCTGCAGATCGATCCGGCCGACGGCAGGATTGTGCGTACGATCGAATCCAACCGTTTCGTCACGGGCGTGACTTGGGTCGATGGCGAGCTGTGGCATGGCACCTGGGAAAACGACGATAGCGAATTGCGGCGTATCGATCCGCAAACGGCGCAAGTACTGGAAAGCGTGACGATGCCGCCGGGGACCGGCGTGTCGGGGCTGGAGTCCGACGGCGCGGACCGATTTTTCTGCGGCGGGGGTGGCAGCGGCAAGGTAAGGGCGGTGCGTCGGCCGGCTCGAGATTGA	MKRSEAQILREYGPFPGVDCVHGVSHDGERVWLASGEKLHAFDPASGQTVQTLDVPANAGTAFDGQHLFQIAGDSIRKIDPRTGQVLATIPAPNSGDDSGLAWAEGSLWVGQYKARKILQIDPADGRIVRTIESNRFVTGVTWVDGELWHGTWENDDSELRRIDPQTAQVLESVTMPPGTGVSGLESDGADRFFCGGGGSGKVRAVRRPARD				NA	NA	NA	NA	NA
D1-36_01966	963			hypothetical protein	ATGACCCGCTCCACCGCCGCATCCAATACCCCTGTTCCCTTTCCCCGCCATATCGCCGTGCTTGTCCTGCTTTGCATGGGGTGCGCCTTTGCCGGCAACCATGTCGCCGCGCGGGCGGCGTTCGATGATGGCGCCGGCGTGCTGCTGGCGATCCTGCTGCGCTCGGGCGGAACGTTGCTGGTACTGGCGGCGATGGTGTTGTGGCAACGGCAAAGCCTTCGCTTGCCCGCCGGCGCCTGGCGCTGGCAGTTGCTGCTGGGCGTGCTGATCGGCGCCCAGAGCCTATGCCTGTATTCCGCCGTGGCCCGGGTTCCGGTGGCGCTGGCGCTATTGGTGGGCAACGTGTTCCCGATCCTCCTGGCCCTGTTGACTTGGGCCCTAGGCGGCCCGCGCCCCACCGCCCGGACGGCGGCACTGATGGGCATGATCCTGGTGGGTCTGGTGTTCGTGCTGGAAGTGCCGACGCGGTTGGCCTCCCAGGCAGACGTCGGCCCGCAGTGGCTGTTGGGGGTTGGCCTGGCCTTCTGCGCCGCGTGCGTCTTCGCTTGTGCGTTGTGGATCACCGATCACAAGTTGTCCCAGGTGCGCGGATCGGTGCGCAGCCTGCTGACGATTTTCATTGTGTTCAGCAGCGTCAACCTCGCCGGCCTGACCGGCGCCCTGCCCGGCGGCCTCGACCTGCCCGCCAGCAGCACCGGTTGGTTCGCGCTCGCCACCCTGGTGGTGCTTTATGGGACGGGGTTCATCGTTTTGTTCATGTGCGTGCCACGCCTGGACATGCCGCGCAACGCCCCGGTGATGAACATCGAGCCGCTGGCGACACTGTTGATCGGCTGGCTGGTGCTGGACCAGATGCTCAACCCGGGGCAGATCCTGGGCGGCGCGATCGTGGTGACCGGCATCGTATTGCTGACCTGGCGCAAGGCCGAGCGGGTCAAGGCGCCGGTGGCTGCACACGATTGA	MTRSTAASNTPVPFPRHIAVLVLLCMGCAFAGNHVAARAAFDDGAGVLLAILLRSGGTLLVLAAMVLWQRQSLRLPAGAWRWQLLLGVLIGAQSLCLYSAVARVPVALALLVGNVFPILLALLTWALGGPRPTARTAALMGMILVGLVFVLEVPTRLASQADVGPQWLLGVGLAFCAACVFACALWITDHKLSQVRGSVRSLLTIFIVFSSVNLAGLTGALPGGLDLPASSTGWFALATLVVLYGTGFIVLFMCVPRLDMPRNAPVMNIEPLATLLIGWLVLDQMLNPGQILGGAIVVTGIVLLTWRKAERVKAPVAAHD				NA	NA	NA	NA	NA
D1-36_01967	1089	gnl		Gluconolactonase	ATGGATGCTTCGCAACCTGCAACCGCCGATCAGGGGCGCCGGATTTTCCTGAAAAAATCCCTTGTGGTCTCGGCCGCCGCCGCGACGCTGGGAAATCTTCCCGGGCTCGCCCAGGCCGCGCCTTTGAGCCAGCGCTATCCAGACCCTCTGATCAATATCCTCGACCCCAGCTTCATGGACTTGCGCATCTTCAATGCCAGCGTCGAGAAGCTCGCCGATGGCTTGCGCTGGGCGGAAGGGCCGGTGTGGATCGGTGACGGTCGTTACCTGCTGGTCAGTGACATCCCCAACAACCGCATCGTGCGTTGGGACGAAGTCACCGGAGGTTTGTCGGTGTACCGCGAGAACTCGAACTTCTCCAATGGCATGTGCCGTGATCGCCAAGGACGGTTGCTGGTCTGTGAGGGCTCGACCACGTCCACCGAAGGGCGGCGTATCACCCGTACCGAACACAACGGCACCATCACCGTGCTGGCCGACAGTTTCGACGGCAAGCCATTGAATTCGCCGAATGACATCGTCTGCAAGCGGGATGGCTCGATCTGGTTCACCGATCCGCCGTTCCAGACCGGCAATAACTATGAGGGGCATAAAGTCACCCCGGCGCAGCCCCACGCGGTGTACCGGATCGACGGCGCGACCGGCAAGCTCAGCCGGGTGATCGACGATTTGGCGGGGCCGAATGGCTTGTGCTTTTCCCCGGATGAAAAAATCCTTTATGTGGTCGAAGGGCGGGCCAAGCCGAACCGTCTGGTCTGGGCGATCACGGTCAAGGACGACGGCACCCTGGGCGAGCGACGCAAGCATATCGAAGGGCTCGACTATGCGGCCATCGACGGCATCAAGTGCGACGAGAGCGGTAACCTCTGGTGCGGTTGGGGCGGGAATGGCGACCCCAAGGCCGACCTGGAGAAACTCGACGGCGTGCGGGTATTCAATCCCGAGGGCAAGGCCATCGGGCACATTTCGTTGCCGGAACGCTGCCCCAACGTCTGCTTTGGCGGGCGAGAGGGCAACCGGCTGTTCATGGCCGGCAGCCACTCGCTGTACTCGCTGTTCGTGAACACCCGAGGAGCCACCTTCGCCTGA	MDASQPATADQGRRIFLKKSLVVSAAAATLGNLPGLAQAAPLSQRYPDPLINILDPSFMDLRIFNASVEKLADGLRWAEGPVWIGDGRYLLVSDIPNNRIVRWDEVTGGLSVYRENSNFSNGMCRDRQGRLLVCEGSTTSTEGRRITRTEHNGTITVLADSFDGKPLNSPNDIVCKRDGSIWFTDPPFQTGNNYEGHKVTPAQPHAVYRIDGATGKLSRVIDDLAGPNGLCFSPDEKILYVVEGRAKPNRLVWAITVKDDGTLGERRKHIEGLDYAAIDGIKCDESGNLWCGWGGNGDPKADLEKLDGVRVFNPEGKAIGHISLPERCPNVCFGGREGNRLFMAGSHSLYSLFVNTRGATFA	PGPT0001285_343	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION_D_GLUCONATE_BIOSYNTHESIS,PGPT0001285-gnl-K01053	NA	NA
D1-36_01968	441			hypothetical protein	ATGAATCAGGTTCTCGGTATGTTCAACAGCACAGGTCCGGATGCTTTCAGCAAAATGGCCTGTCAGATGGCACCGTACTTTTCCACTATCAACCCGCTGGTCACAGAGTTGCGCCAGGGCGCGGCGACCGTGCAGGTGCCGTTTCGCAAGGAAATCACCAATCATCTGGGCACCGTCCACGCCATCGCCATGTGCAACGCCGCCGAGCTCGCCGCTGGCATGATGACCAACGTTTCCATCCCCGACGGCGCCCGGTGGATTCCCAAAGGCATGACCGTGCAATACCTGGCCAAGGCCAAGAGCGACGTGACGGCGGTCGCGAACGGCGACGAGGTGGACTGGCAGACCGAAGGCGACAAGGTCGTGCCGGTGGACATTCATGATGCGCAGGGCAAGAAAGTATTCACGGCGCAGATCACCATGAACGTGAAGTTGGGTTGA	MNQVLGMFNSTGPDAFSKMACQMAPYFSTINPLVTELRQGAATVQVPFRKEITNHLGTVHAIAMCNAAELAAGMMTNVSIPDGARWIPKGMTVQYLAKAKSDVTAVANGDEVDWQTEGDKVVPVDIHDAQGKKVFTAQITMNVKLG				NA	NA	NA	NA	NA
D1-36_01969	618			hypothetical protein	ATGGAAACAGCAGATCTACTCGAACGCGCCTTCCCCGGCAGAAGGGCTGAACTCAAGCGCGATATCTTTCGTAAGGCCCTGGCGCTGTTCAACGAGCAGGGCATCGAGGCGACCACTATTGAAATGATCCGCACCGAATGCCAGACCAGCGTCGGTGCCATCTACCATCATTTCGGCAACAAGGAAGGCTTGGTGGCGGCGCTGTTCTTCACCGCCCTGGACGATCAGGCGCGTTTGCGCGAGCAATATCTGTCCGAAGCAACCACCGCCGAGCAGGGCGTGCAGGCGTTGATCTATAGCTACGTCGATTGGGTGGACAGCCAACCCGAATGGGCGCGTTTCCAGTATCACGCGCGCTTTGCGGTGACCAAGGGACCGTTCAAGGACGAACTCGCCAGCCGCAACACCTCACGTAACGGTCAGCTTTGGCAGTGGTTGAGCGCGGCAGAGCAGGGCGAGGCGCTCAAGCGCTATCCCGCCGAGTTGATGTTTTCGTTGATCATCGGCGCGTCTGAAAGTTATTGCCGGGCATGGCTGGCGGGGCGGGTGCCCTCCAGCCCGAAGGCTCACCGGGCGCTACTGGCGCAAGCGGCGTGGCGCTCAATCAGCGGCGACTGA	METADLLERAFPGRRAELKRDIFRKALALFNEQGIEATTIEMIRTECQTSVGAIYHHFGNKEGLVAALFFTALDDQARLREQYLSEATTAEQGVQALIYSYVDWVDSQPEWARFQYHARFAVTKGPFKDELASRNTSRNGQLWQWLSAAEQGEALKRYPAELMFSLIIGASESYCRAWLAGRVPSSPKAHRALLAQAAWRSISGD				NA	NA	NA	NA	NA
D1-36_01970	384			hypothetical protein	GTGATTGGCTTGTGCCTGGGCTTGTCCGGCGTGGTCTGGGCACAACTTGAACTCAGCGAGTTTACGTTGGCCTGGAACCACACCATCGAGAAGATCCGTTGGGAGGAGGATTACCGGGTCAGCGAACAGGGCCTGATCCTGGGTGAGGCCAGGGTCAAGGGCAACGGCGCTGGGATGGAAATTCCCGAAGGCGCACGCTTGGAGAACGGCAGCTGGCGATACCATCGCTCGCTGCCGCCCCTGCAACCGTTGAGGCTCGGCCGTACCCCCCAGGCCGGGGATTATCAGCTGTGCGATGACGGCCATTGCCAGCCGATGGCCCATTGGCTGGGGCCGCCCGACGCGCAAAGACCAGCCGTGGAATTATGGAGCTGCCCGCTGTGA	MIGLCLGLSGVVWAQLELSEFTLAWNHTIEKIRWEEDYRVSEQGLILGEARVKGNGAGMEIPEGARLENGSWRYHRSLPPLQPLRLGRTPQAGDYQLCDDGHCQPMAHWLGPPDAQRPAVELWSCPL				NA	NA	NA	NA	NA
D1-36_01971	2028			hypothetical protein	ATGAGTGAAGACCAGCACGGCATCGCCACGGACCCGCGGGACTGGCCCAAGACGCTGTTCTACGTGGCGTTGCTGTTTTCCATCTTTCAAATCATCACGGCAGCTTTTTCACCGGTTTCCAGCATTGTGTTGCGGGCGGTGCATGTGGGCTTTCTGCTGTGGGTGGTGTTTCTGAGCTACCCGGCCCACGGCAAGCAAAGGCCATGGCAACCCCTGGCCTGGGCGTTGGGGCTGGCGGGGATGGCCACGGCGCTCTATCAATGGGTGTTCGAGGCCGACCTGATCCAGCGCTCCGGCGACCTGACGACTGCCGACATGGTCGTCGGCGTCGTCCTGATCGTGCTGGTGTTCGAGGCGGCGCGGCGAGTGATGGGCATCGCGCTGCCGATCATCTGCGGCCTGTTCCTGGCCTATGGCCTGTTCGGCGAACACCTGCCAGGCGACCTGGCCCATCGCGGCTACGGCGTCGATCAGCTCGTCAACCAACTGTCCTTCGGCACCGAAGGGCTCTACGGCACGCCGACCTACGTATCGGCCACCTACATTTTCCTGTTCATCCTGTTTGGCGCCTTCCTGGAAAAGGCCGGCATGATCAAGCTGTTCACCGATTTCGCCATGGGCCTGTTCGGTCACAAGCTTGGCGGTCCGGCGAAGGTGTCGGTGGTGTCATCGGCGCTCATGGGCACCATCACCGGCTCGGGAATCGCCAACGTGGTGACGACCGGGCAGTTCACCATTCCGCTGATGAAACGCTTTGGCTACAAGGCGGCGTTCGCCGGCGGCGTGGAAGCGACGTCGAGCATGGGCAGCCAGATCATGCCGCCGGTGATGGGCGCGGTGGCGTTCATCATGGCCGAGACCATCAACGTGCCGTTCGTGGAAATCGCCAAGGCCGCGTTGATCCCGGCGTGCCTGTATTTCGGCTCGGTGTTCTGGATGGTTCACCTGGAAGCCAAGCGCTCCGACCTCAAGGGCCTGCCCAAGGATCAATGCCCGAGCGCCTGGGGCGCGGTCAAGGAAAGCTGGTTCCTGCTGATCCCGCTGGGGGTGCTGGTGTACCTGCTGTTTTCCGGACGCACGCCGTTGTTTTCCGGCATGGTCGGGCTGGCACTGACGGCCATCGTGATTCTCGGCTCGGCGATCATCCTCAAAGTCTCGAGCTACGCCTTGCGCTGCGCCTTCTGGGTCGCGCTGGGCATTCTGTGCGTCGGATTCTTCCGGATGGGCATCGGCATCGTGTTCGCCGTGATCGGCGTGCTGGTGGTGGCTTGCTGGTTCATGAAAGGCACTCGGGAAACCCTGATCATCTGCCTGCACGCATTGGTGGACGGCGCTCGGCACGCCGTTCCGGTGGGGATCGCCTGCGCCTTGGTCGGCACCATCATCGCGGTGGTGTCGCTGACAGGCGTGGCGTCCACCTTCGCCGGTTACATCCTGGCGATCGGCAAGGACAACCTGTTCCTGTCGCTGCTGCTGACCATGCTCACTTGCCTGGTGCTGGGCATGGGCATCCCGACCATTCCGAACTACATCATCACCAGTTCGATTGCAGCGCCCGCGCTCCTGGAATTGGGCGTGCCGCTGATCGTGTCGCACATGTTCGTGTTCTATTTCGGCATCCTCGCCGACCTGACCCCGCCCGTGGCCCTGGCCTGCTTCGCCGCCGCGCCCATTGCCCGGGAAAGCGGGCTGAAAATCAGCTTCTGGGCGGTGCGCATCGCCCTGGCAGGCTTCGTCATTCCGTTCATGACGGTGTACAACCCGGCGCTGATGCTCCAGGGCGACAACCTGTGGATGACTGCCTACATGCTGGTCAAGACGTTGCTGGCAATCGGCCTATGGGGCATGGCGTCTACCGGTTACATGCAACAGAAAATGCCCATTTGGGAGCGTCTGATGTGCTTCGCCGCCGGTGCATTGCTGGTGGTTGCCCTGCCGCTGACCGATGAAATCGGCTTCGCCCTGGGTGCGCTGTTGATCGGGCAACACCTCTGGCGCGCCCGGCGTGTCGGGCGAGCCTTGGCGTGA	MSEDQHGIATDPRDWPKTLFYVALLFSIFQIITAAFSPVSSIVLRAVHVGFLLWVVFLSYPAHGKQRPWQPLAWALGLAGMATALYQWVFEADLIQRSGDLTTADMVVGVVLIVLVFEAARRVMGIALPIICGLFLAYGLFGEHLPGDLAHRGYGVDQLVNQLSFGTEGLYGTPTYVSATYIFLFILFGAFLEKAGMIKLFTDFAMGLFGHKLGGPAKVSVVSSALMGTITGSGIANVVTTGQFTIPLMKRFGYKAAFAGGVEATSSMGSQIMPPVMGAVAFIMAETINVPFVEIAKAALIPACLYFGSVFWMVHLEAKRSDLKGLPKDQCPSAWGAVKESWFLLIPLGVLVYLLFSGRTPLFSGMVGLALTAIVILGSAIILKVSSYALRCAFWVALGILCVGFFRMGIGIVFAVIGVLVVACWFMKGTRETLIICLHALVDGARHAVPVGIACALVGTIIAVVSLTGVASTFAGYILAIGKDNLFLSLLLTMLTCLVLGMGIPTIPNYIITSSIAAPALLELGVPLIVSHMFVFYFGILADLTPPVALACFAAAPIARESGLKISFWAVRIALAGFVIPFMTVYNPALMLQGDNLWMTAYMLVKTLLAIGLWGMASTGYMQQKMPIWERLMCFAAGALLVVALPLTDEIGFALGALLIGQHLWRARRVGRALA				NA	NA	NA	NA	NA
D1-36_01972	954			hypothetical protein	ATGCGAGTCAACAAGCGCTTCACCTTCCTGGCCGCCGCCGCAGCCTTGGCGGTCACCACCGCCGCTCATGCGGCTCCACCGGTGTTCATCAACATCCTGACCGGGGGCACCAGCGGAGTGTATTACCCGATCGGGGTCGGGCTTTCACAGATCTACAGCAGCGGCATCGAGGGCTCCAAAACGTCGGTCCAGGCCACCAAGGCGTCGGTGGAGAACCTCAACCTGCTGCAAGCCGGGCGCGGGGAGCTGGCGCTGGCCTTGGGCGACTCGGTCGCCGATGCGAAAAACGGCGTGGAGGATGCCGGCTTCAAGGCACCGCTCACCAAACTGCGAGCGATTGCGGGCGCCTACCCCAATTACATCCAGATCGTTGCCAGCGAGGAATCGGGGATCAAGACCCTGGCAGACCTCAAGGGCAAAACCGTCTCCGTGGGCGCGGCTAAATCCGGCACCGAACTCAACGCCCGGGCGATCTTCAAGGCGGCCGGCCTGACCTACGACGACATGAAGGTCCAATACCTGCCCTTCGCCGAGTCGGTCGACCTGATCAAGAACCGCCAACTGGACGCCACCCTGCAATCCTCTGGCCTGGGCATGGCGGCGATTCGTGACCTGGCGTCAACGATGAAGCTGAACTACGTGTCGATTCCCACCGACGTGGTGGAAAAAATCGGCAACCCGGCCTACCAGAGCGCGATGATCCCCGCCAACACCTACGACGGCCAGGCTGAGGCCGTGCCCACCGTGGCCATCACCAATATCCTGGTGACACACAAGGATGTCCCGGATGAGGTGGCCTACCAAATGACCAAGCTGATGTTCGACAACCTCACCCGCCTGAGCACCTCCCATTCAGCGGCCAAGGACATCTCGCTGAAGAACGCCGCGAAAAACCTGCCCATCGCCCTGCACCCTGGTGCCGAGCGCTACTACAAGGAAGTGGGCGCGCTATAG	MRVNKRFTFLAAAAALAVTTAAHAAPPVFINILTGGTSGVYYPIGVGLSQIYSSGIEGSKTSVQATKASVENLNLLQAGRGELALALGDSVADAKNGVEDAGFKAPLTKLRAIAGAYPNYIQIVASEESGIKTLADLKGKTVSVGAAKSGTELNARAIFKAAGLTYDDMKVQYLPFAESVDLIKNRQLDATLQSSGLGMAAIRDLASTMKLNYVSIPTDVVEKIGNPAYQSAMIPANTYDGQAEAVPTVAITNILVTHKDVPDEVAYQMTKLMFDNLTRLSTSHSAAKDISLKNAAKNLPIALHPGAERYYKEVGAL				NA	NA	NA	NA	NA
D1-36_01973	1011	cytR	COG1609	HTH-type transcriptional repressor CytR	TTGTCCAATATTCGTGAAGTGGCCCGGCTGGCCGGCGTGTCGGTGGCAACCGTGTCCAGAGCACTCAAGTCCCCGGAGCGGGTGCTGCCCCAGACGCGGGACAAGGTCAACGCAGCCGTGCTGCAAGCCGGTTATCGACCGAACCTGATGGCGGTGCAGTTTCGCTCCCGACGTACCGGCAACCTGGTGATCCTGGTGCCGAAAATCGCCAACACTTTTTTCGCCCGCGTCATCAGCGGCGCCCAACAAGCGGCGCAAGCGGCCGGTTATCGGCTGCTGCTGTGCGACACCCAGGGCCGCGAAGCCATCGAGCAGGAATTCGCTGCCCTGGTCTACGCCCATCAGGCCGACGGCGTGATCCAATTGCGCGCCGGCGACCCTTTCGTCTCCCTGCCTCCCGGCACCGACGCGCTACCGCTGGTCAACGCCTGCGAAGTGGTGAAGGACGCGCCCTACCCGACCATCAGCCTGGATAACCGCAGCGCGGCGCGCGCCATGACCGAGCACCTGATCGGGCTTGGCCACCGGCGCATCGGCATCATCAAAGGCCCGCGCAGCAGCCCTCTGACCCTGGACCGTGTGGCCGGTTACCAGGACGCCCTGCGCAACGCCGGTATCGCCCTTGCACCTGAACTGATCTGCCACGGGGATTTCACTCTCAAGGCCGGCTACGAAGGAGCCGGGACAATGCTCGCCTTGGCCGAACGCCCCAGCGCGCTGTTCTGCGAGAACGACGAAATGGCCATCGGCGCGCTCAAGCGCATCAAGCAGACGGGGTTGCGGGTGCCCGAGGATATTTCCCTGGTGGGTTTTGACGACATTCCGTTTGCCGCGTATTGCGACCCGCCGTTGACGACCATCTCCCAACCGGCCGAAACCTTCGGCCAGAAAGCGGTGGACATGTTGATCGCCTTGATCGAGAACAAGCCCATCACCCAGCGACACGTGCGCCTACCGTTCGAGCTGACCGTGCGCGGCAGCAGCGCGGCCCCAGGCAGCCACCCTGTTTAA	MSNIREVARLAGVSVATVSRALKSPERVLPQTRDKVNAAVLQAGYRPNLMAVQFRSRRTGNLVILVPKIANTFFARVISGAQQAAQAAGYRLLLCDTQGREAIEQEFAALVYAHQADGVIQLRAGDPFVSLPPGTDALPLVNACEVVKDAPYPTISLDNRSAARAMTEHLIGLGHRRIGIIKGPRSSPLTLDRVAGYQDALRNAGIALAPELICHGDFTLKAGYEGAGTMLALAERPSALFCENDEMAIGALKRIKQTGLRVPEDISLVGFDDIPFAAYCDPPLTTISQPAETFGQKAVDMLIALIENKPITQRHVRLPFELTVRGSSAAPGSHPV	PGPT0021075_1329	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499	NA	NA
D1-36_01974	1176			hypothetical protein	ATGAATCCTGTAGCACCCAAAATAAGAATGGGCTTCGTTGGCGGTGGGGAGGGTGCGTTCATCGGCCAGGCCCATCGCCAGGCGGCGGGCCTGGACGGCGGTTTCGAGCTGGTGTGCGGCGCGTTCAGCCGCGACCCTCACAACAATCGACAGACCGGTGCGGCCCTGGGGCTCGCCGCGTCCCGTTGTTACCACGACTGGCAGCAGATGCTCGACGCTGAAGCGTTGCTGCCGCTGGACCAACGCATGGAATTGCTGGTGATCGTCACGCCCAATCACCTCCATGCACCGATTGCCAGCCAGGCGTTGAAAGCCGGTTTCCACGTGTTCAGCGAGAAACCCGCCGCGCTGAACCTCAAGCAGTTATTGGCCCTCAAGGACGTGTTGCAAGGCAGTCGTTGCCTCTACGGCCTGGCCCACACCTACCTGGGTTATCCGATGGTCTGGCAGGCCCGTGAAATGGTTCGCTCAGGCCTGATCGGCAAGGTGCGCAAAGTATTCGTCGAGTACCCCCAAGGCTGGCTCAGCCAGGACGTCGCCGCCCAAGGCAACAAGCAGGCCGAGTGGCGCGATGATCCGGCCCAGTCCGGGTTGGGCGGTTGCATCGGCGACATTGGCACCCATGCTTTTTCCCTGGCGGAGTTCGTCGCGGACCAACCCATCCAGCAACTCTGCGCCACCCTGGGCACCCATGTTCCGGGGCGGCAGTTGGACGATGACGCAGCAATGCTCTTCAAGATGAAGGACGGCGCCACCGGCGTGTTGCTGGCCAGCCAGGTCTGCACCGGCGAAGAAAACCCGCTGAAGATCCGCGTCTATGGCGACAAGGGCGCGCTGCAATGGCGCCAGGAAGAGCCGTCGAGCCTGATCCACCGCGCCTTCGACCAACCGCTGCGCATTCTGCGCGGGGGTGTCGGCCAGCCTTGGCTGTGCGAGGCGGCGACTCAGCGCATGCGTCTGCCGGCGGGGCATCCGGAGGGTTATCTGGAGGCGATGGCCAATCTGTACGGCGATTTTGCCCGGGCCATTCGGGCGCGGGTGGAAGGCCCGGACGTTCCTGGCGTACCCGGCATCGAGACCGGTTTGCGCGGCATGGCGTTTATCGAGGCGGCCCTCATCAATCACCGGGGCGACACAAAGTGGACCGCGCTGGAAACCGGAGAGTCGCAGCTGTGA	MNPVAPKIRMGFVGGGEGAFIGQAHRQAAGLDGGFELVCGAFSRDPHNNRQTGAALGLAASRCYHDWQQMLDAEALLPLDQRMELLVIVTPNHLHAPIASQALKAGFHVFSEKPAALNLKQLLALKDVLQGSRCLYGLAHTYLGYPMVWQAREMVRSGLIGKVRKVFVEYPQGWLSQDVAAQGNKQAEWRDDPAQSGLGGCIGDIGTHAFSLAEFVADQPIQQLCATLGTHVPGRQLDDDAAMLFKMKDGATGVLLASQVCTGEENPLKIRVYGDKGALQWRQEEPSSLIHRAFDQPLRILRGGVGQPWLCEAATQRMRLPAGHPEGYLEAMANLYGDFARAIRARVEGPDVPGVPGIETGLRGMAFIEAALINHRGDTKWTALETGESQL				NA	NA	NA	NA	NA
D1-36_01975	1080	iolE_1		Inosose dehydratase	GTGAATACACACGACCAAACACCAGGCGGCCTGCGCGGGCCGGCGATCTTCCTGGCGCAGTTCATGTCCGATGAAGCGCCGTTCGATACCCTGGCGGACATCGCCCGGTGGGCCGCCTCGCAAGGCTACAAGGCCATCCAATTGCCGACCCTGGGCACGCGTTACATCGACCTGGCCCGGGCCGCCGAGAGCCAGGATTATTGCGATGAACTCACGACCACCTGCGCGGCGGCCGGCGTCGAGATCAGCGAGTTGTCGACGCACCTGCAAGGGCAACTGGTGGCGGTGCATCCGGCATTCGACGCGCTGTTCGATGACTTCGCCCCGGCCCACCTGCGCGGCCAGCCCCAGGCGCGCACCGAGTGGGCCATCGAGCAATTGAAACTGGCGGCTCGCGCCAGCCAGCGCCTGGGCCTCAAGGCCCACGCGACGTTTTCCGGAGCTTTGTTGTGGCCCTACATATACCCGTGGCCGCAGCGGCCCACAGGACTGGTCGAGCAAGGTTTCGCCGAACTGGCCCGGCGCTGGCTGCCGATCCTCGACTGCTTCGACGCGGCCGGCGTGGACCTGTGCTACGAGATCCACCCTGGCGAAGACCTGCATGACGGCGCCTCGTTCGAGCGCTTCCTGCAAGCCGTCGATCATCACCCACGGGCCGCCATTCTCTACGACCCCAGCCACCTGCTGCTGCAACAGATGGACTACCTGGGCTTTATCGACCGCTACCACGGGCGCATCCGGATGTTCCACGTCAAGGACGCCGAATTCCGCCCTGACGCCCGCTCCGGTGTCTATGGCGGCTACCAGGGCTGGGTGGACCGCCCCGGCCGGTTCCGTTCCCTGGGCGATGGGCAGATCGACTTCAAGGCGATTTTCAGCAAGCTGACCCAATACGGCTTCGACGGCTGGGCGGTTCTGGAATGGGAATGCTGCCTGAAGGATTCGCAACAGGGGGCGGCCGAAGGCGCGGCGTTTATCCAGCGGCACATGATCACCAGGACGGCCAAGGCGTTCGATGATTTTGCCGGGGTCACGGCGGATGAGGCATCCAATCGGCGGTTGTTGGGGTTGTCTGGGTAA	MNTHDQTPGGLRGPAIFLAQFMSDEAPFDTLADIARWAASQGYKAIQLPTLGTRYIDLARAAESQDYCDELTTTCAAAGVEISELSTHLQGQLVAVHPAFDALFDDFAPAHLRGQPQARTEWAIEQLKLAARASQRLGLKAHATFSGALLWPYIYPWPQRPTGLVEQGFAELARRWLPILDCFDAAGVDLCYEIHPGEDLHDGASFERFLQAVDHHPRAAILYDPSHLLLQQMDYLGFIDRYHGRIRMFHVKDAEFRPDARSGVYGGYQGWVDRPGRFRSLGDGQIDFKAIFSKLTQYGFDGWAVLEWECCLKDSQQGAAEGAAFIQRHMITRTAKAFDDFAGVTADEASNRRLLGLSG	PGPT0016785_21	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISM	CE-BACTERIAL_FITNESS-RHIZOPINE_CATABOLISM,PGPT0016785-mocC-K03335	NA	NA
D1-36_01976	1233	yegT		Putative nucleoside transporter YegT	ATGACGACGATGTACGCACGCCTCAGTACGATGATGTTCCTGCAATTCTTTATCTGGGGTGGCTGGTTCGTCACCCTCGGCACGTTCCTGTCCAACACCCTGGGCGCCAGCGGCGAGCAGGTCGGCAGGGCCTTCGCCACCCAGTCCTGGGGCGCGATCATCGCGCCGTTCGTGATCGGCCTGATCGCCGATCGCTACTTCAACGCCGAGCGCATCCTGGCGGTGTTGCACCTGGTGGGCGCGGTCTTGTTGTACCGGTTGTATTCGGCGGAGGATTTCAGCGCGTTCTACCCGTTCGTGCTGGCTTATATGGTGATCTACATGCCGACGTTGGCCCTGGTCAATTCCGTGGCCTTCCGGCAGATGCGCGACCCCGCGCTGGAATTCTCGCGGATTCGAGTCTGGGGCACCCTCGGTTGGATCCTCGCCTGCGTGGTGATCAGCTATGCGTTCGCCTGGGATTCACGCGAGTCGATCTCAGCGGGCGGCCTGCGCAATACTTTCCTGATGGCCGCGGTCGCTTCGCTGGTCCTCGGGCTCTACAGCTTCACGCTGCCCGCCACGGCACCGCTCAAGGAGCAGGCGAGCACCAGCGGCATCAAGCAGTCCCTGGGGCTCGATGCGTTGGGCCTGCTCAAGGATCGCAGCTACCTGGTGTTCTTCATCGCCTCGATCCTGATCTGCATTCCCTTGGCGTTTTATTACCAGAACGCCAACCCGTTCCTGGCCGAAACCGGGATGACCAACCCGACGGCGAAAATGGCCATCGGGCAAGTCTCCGAGGTGCTGTTCATGTTGCTGTTGCCGCTGTTCATCCAGCGCTTCGGCATCAAGTTGGCGTTGCTGGTGGGCATGCTGGCGTGGGCGTTGCGCTACGTGTTGTTTGCCTATGGCGATAACGGTGAGCTGGCATTCATGCTGTTCATCGGCATCGCCCTGCACGGCATCTGCTACGACTTCTTCTTTGTCTCGGGGCAGATCTACACCGACGCCAAGGCGCCCAAACACCTGCGCAGCTCGGCCCAGGGCTTGATTACCCTGGCGACCTATGGCGTGGGGATGTTGATCGGTTTCTGGGTGGCGGGGCAGGTGACCGATCACTTTGTCGTGGCAGGCGGGCACGATTGGAAAAGCATCTGGCTGTTCCCGGCCGGTTTTGCGCTGGTGGTATTCGTGTGTTTCCTGCTGACCTTCAGTGGTCGGCAAGGGGTCGTGGCACCGTCCGAGGCATGA	MTTMYARLSTMMFLQFFIWGGWFVTLGTFLSNTLGASGEQVGRAFATQSWGAIIAPFVIGLIADRYFNAERILAVLHLVGAVLLYRLYSAEDFSAFYPFVLAYMVIYMPTLALVNSVAFRQMRDPALEFSRIRVWGTLGWILACVVISYAFAWDSRESISAGGLRNTFLMAAVASLVLGLYSFTLPATAPLKEQASTSGIKQSLGLDALGLLKDRSYLVFFIASILICIPLAFYYQNANPFLAETGMTNPTAKMAIGQVSEVLFMLLLPLFIQRFGIKLALLVGMLAWALRYVLFAYGDNGELAFMLFIGIALHGICYDFFFVSGQIYTDAKAPKHLRSSAQGLITLATYGVGMLIGFWVAGQVTDHFVVAGGHDWKSIWLFPAGFALVVFVCFLLTFSGRQGVVAPSEA				NA	NA	NA	NA	NA
D1-36_01977	657			hypothetical protein	ATGATTGACGTGACGGTCTGGAGCGTCACCCTGCCGGTGCAAACGCCCGCGCAGGTCGTGGCGACCAAAGCCATGCCGAGTTTGAAAAACAAGTATTTCGACAATAACGGCCAGAGGATTGTCTTCTGGGCCCCCGTCACCGGCTCTCATACCGGTAACAGCGATTACCCGCGCTCAGAACTGCGGGAAACCAGCCGGGACGGGAAACACCGCAACTGGCGCTACAACAGTGGCGTCAACACCCTCAAGGGTGAATTGACGGTCAACCAGGTGCCTTCGGAAGGCCGTGTAGTGGTGGCGCAGATTCACGCCAAGAATGCGCCGACGCCGTTGTTGAAACTGGTTTACCGCTATGCAAAGGGCACCGGCAACATTGACGTGGAATACCGGGTCAAGCCCAAGGACAAGAAAAGCCCGGTGATCTACACCGTGCCCAAGGTTCCGTTGAACAAGTCCTTCTCCTACACGCTGCAGATGGACAAGCAAGGCCAGCTCTCGGTGCTGATCGGCAACAGTGGCAAAAAGGTGAAGCTCGACAAGTCCTGGTACGGCTACGACTTCTATTTCAAGGCCGGCGTCTACACGCTGGACAACAAGGGTTACTCCAACGAAGGCGGGAAAGTGACGTACACCAAGCTGAGCGTCAGTCACAAGTGA	MIDVTVWSVTLPVQTPAQVVATKAMPSLKNKYFDNNGQRIVFWAPVTGSHTGNSDYPRSELRETSRDGKHRNWRYNSGVNTLKGELTVNQVPSEGRVVVAQIHAKNAPTPLLKLVYRYAKGTGNIDVEYRVKPKDKKSPVIYTVPKVPLNKSFSYTLQMDKQGQLSVLIGNSGKKVKLDKSWYGYDFYFKAGVYTLDNKGYSNEGGKVTYTKLSVSHK	PGPT0019417_620	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERS	PLANT_DERIVED_ALGINATE_DEGRADATION,PGPT0019417-putative_alginate_lyase_2-NA	NA	NA
D1-36_01978	336			hypothetical protein	ATGAACCACCTCAGCAAAGTTGTCGCCTGCGCACTGTTTGGCCTGGTCCTGGCGGGTTGCACCGGCACCCCGATGAAGACCCAGCAATACGACAGCAGCCAATACACCGTCGTCGGTCACAGTGAAGCCAAGGCCACCGGCCTGCTGCTGTTCGGCGTGATCCCGATTCGCCAGAACAACCGTTTCGTGCGCGCCCAGAACGCAGCGATCCAGGCCAAGGGCGGCGACGCCATGATCAACACCCAAGTCCAGGAAAACTGGTTCTGGGCCTGGGTCCTGACCGGTTACACCACTTCGGTTTCCGGTGATGTGGTCAAGCTGAAGAACGTTCAGTAA	MNHLSKVVACALFGLVLAGCTGTPMKTQQYDSSQYTVVGHSEAKATGLLLFGVIPIRQNNRFVRAQNAAIQAKGGDAMINTQVQENWFWAWVLTGYTTSVSGDVVKLKNVQ				NA	NA	NA	NA	NA
D1-36_01979	1764	glcA_2	COG1620	Glycolate permease GlcA	ATGGTCTGGCAACAAGTCTACGATCCCTTCGGTAATGCGGTGCTGTCGACGTTCCTGGCGGCGGTCCCGGTGGTGGTGATGCTGGCGTCCCTGGCGTTCTTTCACGTCAAGGCACACCTGGCGGCGCTGTATGCCCTGGCCTCGGCGTTGCTCATCGCGATTTTCGCCTTCGGCATGCCCGCCGACATGGCCGGTTCAGCGGCGCTTTATGGCGCGGCCAACGGGCTGCTGCCCATCGGCTGGATCGTGCTCAACATTATCTTCCTGCACCGACTGACCACCGAGAACGGTTCGTTCAAGGTCCTGCAGGATTCCCTGGCGCGCATCACCGATGACCGCCGCTTGCAGTTGCTGTTGATCGCCTTTTGTTTCGGCGCGTTTTTCGAAGGCGCGGCGGGTTTTGGCACGCCGGTGGCGGTAACCGGGGCGATCCTGATCGGGCTGGGCTTTTCGCCGCTGGCCGCTTCGGGCTTGGCATTGATCGCCAACACCGCTCCCGTGGCCTTCGGCGCGCTGGGCACCCCAATCATTACACTGGCCAAGGTCACCGGCCTGGATGAGATGGAGCTGTCGATGATGGTCGGCCGACAATTGCCGTTCTTCTCGGTGATCGTACCGTTCTGGCTGATCTGGGCGTTCGCCGGCTGGCGCAAGATGCTTGAAGTATGGCCCGCAATCCTGGTGGCCGGTGTCAGCTTCGCTATTCCGCAGTTTCTGGTGTCGAACTACCACGGGCCGATGTTGGTGGACGTGATTGCCGCGCTGATATCCATGGCCTGCCTGGCCGGTTTTCTCAAAATCTGGAAACCGGCCACGATTCACACCTCGGCGGCGCTGACCGGCCGGCACGACGACTCGAAGATTGACGCCAGCGAACAACAAACACCAGTGGCCAGCGCCGCGTTTTCCAATGACGCTCGACCCGCCGTGCTGCGCGCCTGGATGCCGTGGATCATCCTCACGGTGTTCGTATTCGCCTGGGGCACCCAGGGCTTCAAGAACATTTTCGACACCCGCCCGGCCATCGACCCGCAGACGCAATCGGCCAGGCTCGACCCCCAAGGCAAGCCGATGCGCGAGGCGAATCCGATCTTCTCGCCGCTGTTGACCTTCGGCACCATCCACCAACAGATCGAAAAAGTCCCGCCCGTAGTGCCCCAGCCTAAAACCGAGGAAGCGGTCTACAAGTTCAACTGGTTCACCGCCACCGGCAGTGGCATCTTCCTGGCGGCAATCGTGGGAGGCTTGCTGATGGGTTATTCCATCCCGCAACTGGTGCGCCAATACCTGCGAACGCTCTGGGTGGTGCGCTATTCGCTGATCACCATCGTGGCGATGCTGGCGTTGGGTTTCCTCACGCGTTATTCGGGCCTGGACGCCACCATGGGCCTGGCGTTCGCCGCGACGGGCATCTTCTATCCGATGTTCGGCACCCTACTGGGCTGGCTTGGCGTGGCGCTGACCGGTTCGGACACCGCTTCCAACGTGCTGTTCGGCGGTCTGCAGCGGGTCACGGCGGAACAGCTGGGGATCAGCCCGGTGCTGATGGCTGCCGCGAACAGTTCAGGCGGGGTGATGGGCAAGATGGTCGACGCCCAGTCGATCGTGGTCGCTTCCACCGCGACACGGTGGTACGGCCACGAAGGAGAAATCCTGCGCTACGTGTTTTTCCACTCGGTGGTACTGGCGATTCTGGTGGGCGGATTGGTGACATTGCAGGCGTATGTGGCGCCGTTCAGTCACATGGTGGTGGGAGGACGCTGA	MVWQQVYDPFGNAVLSTFLAAVPVVVMLASLAFFHVKAHLAALYALASALLIAIFAFGMPADMAGSAALYGAANGLLPIGWIVLNIIFLHRLTTENGSFKVLQDSLARITDDRRLQLLLIAFCFGAFFEGAAGFGTPVAVTGAILIGLGFSPLAASGLALIANTAPVAFGALGTPIITLAKVTGLDEMELSMMVGRQLPFFSVIVPFWLIWAFAGWRKMLEVWPAILVAGVSFAIPQFLVSNYHGPMLVDVIAALISMACLAGFLKIWKPATIHTSAALTGRHDDSKIDASEQQTPVASAAFSNDARPAVLRAWMPWIILTVFVFAWGTQGFKNIFDTRPAIDPQTQSARLDPQGKPMREANPIFSPLLTFGTIHQQIEKVPPVVPQPKTEEAVYKFNWFTATGSGIFLAAIVGGLLMGYSIPQLVRQYLRTLWVVRYSLITIVAMLALGFLTRYSGLDATMGLAFAATGIFYPMFGTLLGWLGVALTGSDTASNVLFGGLQRVTAEQLGISPVLMAAANSSGGVMGKMVDAQSIVVASTATRWYGHEGEILRYVFFHSVVLAILVGGLVTLQAYVAPFSHMVVGGR	PGPT0001800_173	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_LACTATE_TRANSPORT,PGPT0001800-lctP-K03303	NA	NA
D1-36_01980	336			hypothetical protein	ATGTTCAAAGTAACCCCCAACCCTCCCGACACCGATCCAGCCGACTCGAAAGACTTAGACGAAGCCGCCGACCGCGCCCTCGACTTCTACCTCAAGCCCAAGTCCAGCCAATCGAAAACTGACCCAGGCCGGCTGTTCACCGTGAATGAAGGCATCGACACCGAAGCCCTGCTCGCCAACCTCAGCGAAACCCTCGCCTCGGCCGATGCCATGATCAACGACCTGGCGTTCGACCTGGACGGCTCGCGACGACACGTTGCCCTGGGCATCCTGCAGTTGATCGAACTGGGCGCGATGCTCGCCAACCGCGCGCTGGAAAACGTCGAAGCGCGATAG	MFKVTPNPPDTDPADSKDLDEAADRALDFYLKPKSSQSKTDPGRLFTVNEGIDTEALLANLSETLASADAMINDLAFDLDGSRRHVALGILQLIELGAMLANRALENVEAR				NA	NA	NA	NA	NA
D1-36_01982	381	rutC_1		Putative aminoacrylate peracid reductase RutC	ATGGCGAACCCAGACATCACGTTCACTCCCGACCCGGACACGGACTCCATCTCATCCGACGTCGCCGGCTTCGGCGGCCTGCTGGTTTCCACGCAAATCCCCACCCGCGCCGACGGCAGCCTGGAACTGGGCGATATCACGGCGCAGAGCGAATGCACGTTGCAGGCACTCAAGACCGCGTTGGAACGCGCCGGCAGTTCCATGGACCGCGTGTTGCACCTGACCATCTACCTCACCGACATGGCCGACCGCGCGGCCTTCAACGAAGTCTACAAACGCTTTTTTGCCAAGCCCTGGCCCGTGCGCGCGGCTGTCGGCGTGGCGGCGTTGGCGGTTGAAGGGATGCGGGTGGAAGTGACGGCGATGGCGGCGAAGGGCTGA	MANPDITFTPDPDTDSISSDVAGFGGLLVSTQIPTRADGSLELGDITAQSECTLQALKTALERAGSSMDRVLHLTIYLTDMADRAAFNEVYKRFFAKPWPVRAAVGVAALAVEGMRVEVTAMAAKG	PGPT0020030_2325	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020030-ridA|tdcF-K09022	NA	NA
D1-36_01983	684			hypothetical protein	ATGTGTGAATGTTTCGTTCAGCCTGTTTCTTCCAAGGATTCCCTGGCGTTCTTTGCCCAGCGCGAGCCCTTCGGCGCCAACCAATCAAGCTTGTCCGCCGACAGCCTTCACGCCGCGACGGCTCCCGCGCTTCATGACCGACAAAGCGTGATCAAGCCGAACATGCAGGTCAGCGCCATCCGCAACCGTGGCGGGCGCCTGGAAAGCATCAAGGTGCGCTGGGGGTGGTCGCCCGTCTGGTCGATGGGCACGATGCCGCCCTTGACCCACCTGCCCTTGCACCTGGTGATGCGCTCCAAAGTGTTTGACCGGATCAAGCGCGACGGCCGCGTCCTGGTAGCGGTGGACGGCTGGTATGAAGCCGCCTCGGACACCATCGCGCCCGCCCAGGCCAACCGCCTGAGCTATACGACTTCGCGGCAGTCGTCGCCCATCTTTCTCGCCGCCCTGGCCCAGGCCAGTGAAACGCCCAACGGTTGCGACGGGCTGGCCTTGGTGACTTATGGCGACATAGCCAATCAACAGCAGCGACTGCTGGCCTTCACTGGCGAAAACGCCCTCCAGTGGTTGCGCCCTGACCTGGATTGGGAACAGGCACGACACATGGCCGCACACGTGGCCGTCGACGAACCGCAACTGGAGCACGTGCTGACCGCCAAGCGGATGGTCCAGGGTCGCCGGTGA	MCECFVQPVSSKDSLAFFAQREPFGANQSSLSADSLHAATAPALHDRQSVIKPNMQVSAIRNRGGRLESIKVRWGWSPVWSMGTMPPLTHLPLHLVMRSKVFDRIKRDGRVLVAVDGWYEAASDTIAPAQANRLSYTTSRQSSPIFLAALAQASETPNGCDGLALVTYGDIANQQQRLLAFTGENALQWLRPDLDWEQARHMAAHVAVDEPQLEHVLTAKRMVQGRR				NA	NA	NA	NA	NA
D1-36_01984	1176			hypothetical protein	ATGACCAAAATCGATAATCTGCTGGATAACAAAGGGACGCCCCTCGACAAGCAGACCTTTACCTGGCGTGAGCTGGCCGGCAAACCGATCAGCAAACTGGACGACGATGCGTTCACCCGTGTGCGGGTGATATTGATGAACGGCGTCGAGTCCGACGCCCTGCGCCTCAAGCATTTCGGTGCGCGTTTCCACAAGGAGCTGCAGCTGCCCCTGGCTCAGGTCAGGCGTGCCGAACACCATCAGATGACGGCCATCAACTGGTTGCTGTCGGCGGATCATTCCCCCCTGGAAACCACCGTGGCCTACGAACAGGTCGCCATCGAAGTCACCGCCGCGGTGGCCCAGAACGAGCCGGATCCTTACCAGGCGCAGACATACCGCTTCGGTTTGCTGGAAGATTTCGACCACCTCTACCGTTACGCCGCGATGCTTGATCGCCTGGAAGGCAAGGACGCCAATAACATCCTGCAAGGCTACACGGACATCGTGCCCGGCCGGCCCACCAGCGAGCACCACCGCGCCCCCGGCGATGACCTTCGAGACAACTACCAGAAGGACAGCGCCGCACTGATCACCAAAATCCATGCCGCGCTGATTACCGGCGCGGAATACCAGACCCACGATTACTACATGAACATCGGCCCGCTGTTCGCTGACCCGGTGGCACGGGCGTTGTACGCCGAGATTGCCTCGGTGGAGGAACAGCACGTCACCCAGTACGGCTCGCTGCAGGACCCCAGCGAATCCTTCATGGAGAAGTGGCTGGTGCATGAGGCGATGGAGGTCTACACCTACGCCAGTTGCGCCGAGCAGGAAGAAAACCCGCGCATCAAAGCGATGTGGGAACGCTTCCTCGACTACGAACTGGGCCACTTGAACCTGGCCTGCGAGTTGTTCAAGAAGCACGAACGGCGCGATCCCGCCGAAATCCTGGCCGGTCCGCTGCCACGCATGATCGCCTTCAAGAGCCAGCGCGATTTTGTCCGCGAGACGTTGTCCCGGGAAGTCGACCTGCGCGCCCATGGCATCGACTACGTGCCCAAGGAGCGCGAAGCCCATGCGTCCCTCGACTACCGCGCCCAGCTCAACAGCGAAGGCGTGCCCGCCAACATCGCCTCGGCCGGCTACACCTTCAAGCCCGGCTCCGAACTCAACCCAGTGGGAGAACAGCAATGA	MTKIDNLLDNKGTPLDKQTFTWRELAGKPISKLDDDAFTRVRVILMNGVESDALRLKHFGARFHKELQLPLAQVRRAEHHQMTAINWLLSADHSPLETTVAYEQVAIEVTAAVAQNEPDPYQAQTYRFGLLEDFDHLYRYAAMLDRLEGKDANNILQGYTDIVPGRPTSEHHRAPGDDLRDNYQKDSAALITKIHAALITGAEYQTHDYYMNIGPLFADPVARALYAEIASVEEQHVTQYGSLQDPSESFMEKWLVHEAMEVYTYASCAEQEENPRIKAMWERFLDYELGHLNLACELFKKHERRDPAEILAGPLPRMIAFKSQRDFVRETLSREVDLRAHGIDYVPKEREAHASLDYRAQLNSEGVPANIASAGYTFKPGSELNPVGEQQ				NA	NA	NA	NA	NA
D1-36_01985	726			hypothetical protein	ATGAGCGAACGCCAAGTCACCATCGGCATGAATCGTACCGGCACCCAGATGTCTCCCGAGGACACGGCTCGCCAACTGGAAGCCACCCGACTGTTCCCGGCGGACGTGCCTGGCGACATCAGCGACTACACCGCCGAACGCGAGCGCGCCATTCGCGAGGCCGACCTGATAGGCTCGGTGCCGGCGCCAGGCTCGGTCAAAGGCATGGTCAAGACCGCGTTGGACAAGACCATCGGCAAGGCGCCGGAAGTGTTGCTGGACAAGCTCGGCGAACGCCTGGCCTTCGAGCGCACCGGCGTGAGGCTGTATGAGGCGATGGTCGCCAAGGCCACGTCCGCGCCCGGTGCCGACCCAGCATTGGTGGAAACCTTGCGTCAGATCCAGGCCGAGGAACTGGAGCACATGAACATTGTGCGCGAAGCCATCGAAACCCTCGGCGGCGACCCGACGGCCATGACGCCTTGCGCGGACGTGGCGGGCGTCAAGGCCATGGGCGTGCTGCAAGTATTGACTGACCCACGCACAACCGTCTCGCAATCGATGAGCGCGATCCTGACCATCGAACTGGAAGACAACGCGGCTTGGGAACTGCTGATCGAGCTGGCGCACAAGGGTGGTCATCCGCTGATCGCCAAGCGCTTCGGCCATGCGCTGGAACAGGAGGAAACGCACTTGGCCACGGTGCGCAACTTCATCAAGCAAGACCTGCTTGCGCAAGTGAGCTGA	MSERQVTIGMNRTGTQMSPEDTARQLEATRLFPADVPGDISDYTAERERAIREADLIGSVPAPGSVKGMVKTALDKTIGKAPEVLLDKLGERLAFERTGVRLYEAMVAKATSAPGADPALVETLRQIQAEELEHMNIVREAIETLGGDPTAMTPCADVAGVKAMGVLQVLTDPRTTVSQSMSAILTIELEDNAAWELLIELAHKGGHPLIAKRFGHALEQEETHLATVRNFIKQDLLAQVS				NA	NA	NA	NA	NA
D1-36_01986	267			hypothetical protein	GTGAGTGAAACCGACCTTGAGATGGAATTGAAAGCCTGGCGGCTTTTGCTCGAAGACGACGCGTATCGCCTGGACTTTCCCGAGGATTATCGCGACACGCTGATTCGGCGCGCCGATGAATTGGTGTTGCATCAATTTATCAGCCTGGAGGACTGGCAACTGCTCAAAGATGCGGCCGATCAGGCGTATCAGCAGACCGTGGAGATGCTTTCGAGGAACCAGCGCGATTGTTTGAATGTGAAGGGGATGCGGTTGCCTGGTGGCTGA	MSETDLEMELKAWRLLLEDDAYRLDFPEDYRDTLIRRADELVLHQFISLEDWQLLKDAADQAYQQTVEMLSRNQRDCLNVKGMRLPGG				NA	NA	NA	NA	NA
D1-36_01987	1047	galE	COG1087	UDP-glucose 4-epimerase	ATGATTCTGGTAACAGGTGGTGCGGGCTACATAGGTGCCCATGTGGCGGTCGAGTTGATGAACCAGGGCAACGGGGTGCTGATCCTGGACAATCTCTGCAACAGCTCCCGGGGGACACTGCAGCGCATTGCGGACGTGACGGGACGCGAGCCCGGTTTTGTCTATGCCGACGTGCGCAACCGACGGGCGCTGGATAACGTGTTCAAGGAATACCCCATCGAAGCCGTCGTTCACTGCGCCGGGCTCAAGGCCGTGGGCGAAAGCGTGCGCGAGCCGCTGCGATATTTCGATACCAACGTCAGTGGCAGCGTGACGCTGTGCCAGGCCATGGCCGAAGCCGGGGTGTTCAACCTGGTGTTCAGTTCATCGGCGACGGTCTATGGCGATTGCCCACAGATGCCCATCGCCGAGACCTGCCCAACGGGACAGCCGACCAACCCTTATGGCCAGTCGAAGCTGATGGCCGAGCATGTCATGCGTTGCACCGCGAATTCGGACTCTCGTTGGTCCATCGGCCTGCTGCGCTATTTCAATCCCATCGGCGCCCATTGCTCCGGCCTACTGGGAGAGACGCCGACGCAGACGCCCAACAACCTTTTGCCGTACCTGTTGCAGGTAGCCAACGGTGAGCGGGAGGTGCTGCGGATATTCGGTTCCGACTACCCGACGCCGGACGGCACGGGGATCAGGGATTATGTCCATGTGGTAGACCTGGCCGAGGGACATCTGCGGGCGCTGGAGTTTCTGCGTGGGCAGACCGGTGTACACATCTGGAACCTGGGCACTGGGCGTGGTTATTCGGTGCTGGAGGTGGTCAGCGCGTTCGAGCGCGTGACCGGTGAGACGGTGCCGCTGGCCTTTGAGGCGCGTCGCCCGGGCGATATCGCCCGGTGCTGGGCCGACCCTGGCAAGGCCGCCGAACAACTGGGCTGGAGCGCCCGTCATGGGCTTGAGCGGATGCTGGAGGATGCCTGGCGCTGGCAGTGCCTGAACTTCCCTCGGGCCGAGCGCAAGGAGGTGGTCTGGCCGAGTGTTGAACAGGGATGA	MILVTGGAGYIGAHVAVELMNQGNGVLILDNLCNSSRGTLQRIADVTGREPGFVYADVRNRRALDNVFKEYPIEAVVHCAGLKAVGESVREPLRYFDTNVSGSVTLCQAMAEAGVFNLVFSSSATVYGDCPQMPIAETCPTGQPTNPYGQSKLMAEHVMRCTANSDSRWSIGLLRYFNPIGAHCSGLLGETPTQTPNNLLPYLLQVANGEREVLRIFGSDYPTPDGTGIRDYVHVVDLAEGHLRALEFLRGQTGVHIWNLGTGRGYSVLEVVSAFERVTGETVPLAFEARRPGDIARCWADPGKAAEQLGWSARHGLERMLEDAWRWQCLNFPRAERKEVVWPSVEQG	PGPT0017825_35	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
D1-36_01988	1155			hypothetical protein	ATGAATCAACAAGAACAACTTCACCCCAAGCAGAGCGCCGCTTCCACCACGAGCCTGCGACCCACGCTGTTGTGCCTGTCACATTTGCGCTGGGGTTTCGTCTACCAACGGCCCCAGCACGTGATGTCGCGATTGGCCAGGGACTACGACGTTCTGTTCTTCGAGGAGCCGATTTTCGAAGGGCGGCAGACCGCGCACCTGGAACACTATGGGGTGGCCGAGGGCGTGACGGTGCTGGTGCCCAGGCTTCCGGAAGGGCTGGATGAAGCTCAGGTGATCGATGCCCAGCGCGAGCTGCTGGACGCCTGGCTGGCGCAACACTGGCCGAGTGAGCTGATGCTCTGGTACCTCACGCCCATGAGCCAGGTCTTCACCGATCACCTGGAGGCTAACGTGGTGATTTTCGATTGCATGGACGAGCTCTCGGCCTTCAAGTTCGCCCCGCCCGCGCTGGTGGAAATGGAGCGGCGGTTGATGGCAAAGGCCAACGTGGTGTTCACCGGCGGCTACAGCCTGTGGGAGGCCAAACGCCAGCACCATGACAACGTCCACGCCATGCCCAGCAGCGTTGATGTAGCGCACTTTGCCGCGGCCCGACAGCCGATTCCGGACCCGGCGGACCAGGCCGCGATTGCTCATCCGCGGCTGGGGTTCTTCGGGGTCATCGACGAGCGTTTCGATATCGACCTGGTGAGGGAACTGGCTACCCAACGCCCCGAGTGGCAGATCGTGCTGATCGGGCCAGTGGTCAAGATCGATCCGGCTACATTGCCGCGCTCGCCTAATATTCATTATCTGGGCGCCAAGCAATATGAGGAGTTGCCCGCTTACCTGGCGGGTTGGGACGTAGCGTTGATGCCGTTCGCCCTGAACGAATCCACGCGCTTCATCAGCCCCACCAAGACGCCCGAATACCTGGCGGGCGGTTGCCCGGTGGTATCCACGCCGATCCGTGATGTCGTCAACGGCTACGGCGGCAGTGGCGTCGTTGCCATTGCTGATTCACCCCAGGCATTCATCGAGGCGATCCAGGCCGCGCTGGACCTGCGCACCCAGCCAGGCGTGATTGCGCAGTACGCCGATAAAGCCCTGGACGGCATGTCCTGGGACAAGACGTGCGCAATGATGAAGGAGCAGATCGAATGCCAACGATAA	MNQQEQLHPKQSAASTTSLRPTLLCLSHLRWGFVYQRPQHVMSRLARDYDVLFFEEPIFEGRQTAHLEHYGVAEGVTVLVPRLPEGLDEAQVIDAQRELLDAWLAQHWPSELMLWYLTPMSQVFTDHLEANVVIFDCMDELSAFKFAPPALVEMERRLMAKANVVFTGGYSLWEAKRQHHDNVHAMPSSVDVAHFAAARQPIPDPADQAAIAHPRLGFFGVIDERFDIDLVRELATQRPEWQIVLIGPVVKIDPATLPRSPNIHYLGAKQYEELPAYLAGWDVALMPFALNESTRFISPTKTPEYLAGGCPVVSTPIRDVVNGYGGSGVVAIADSPQAFIEAIQAALDLRTQPGVIAQYADKALDGMSWDKTCAMMKEQIECQR	PGPT0022675_30	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0022675-glf-K01854	NA	NA
D1-36_01989	1182	rfbD_2		UDP-galactopyranose mutase	ATGCCAACGATAACCCTCGAGACCCTGGACAACTCACTCGATGCCACGCCGTACGACTACCTGATCGTCGGCGCCGGTTTTGCCGGCAGCGTACTGGCCGAGCGACTGGCCGATGGGTTGGGCAAGCGCGTCCTGCTGATCGATCGTCGCGATCACATTGGCGGCAACGCCTACGACCATCTGGATGAGGCGGGGGTGCTGGTCCATCGCTACGGCCCGCATATCTTCCACACCAACGCCCAGCGCATTATCGATTACCTGTCGCGGTTCACCGAATGGCGGCCCTATGAACATCGGGTCCTGGCCCAGGTCGACGGCCACCAGGTGCCGATTCCGATCAACCTGACCACCCTCAACACGCTGTTCGGCTTGTCCATGGATGAAGCCCAGGCCGAGGCGTTCCTGGCGCAGCGGGCGGAGCCGGTCGAGACGATCCGTACCTCCGAGGACGTGGTCATCAACCAGATCGGTCAGGAGTTGTACGAGAAATTCTTTCGCGGCTACACCCGCAAACAATGGGGCCTGGACCCTTCGCAGCTGGACAAATCGGTAACCTCGCGAGTGCCGACACGCACCAACACGGACGATCGGTATTTCACCGACCAGTTCCAGATGATGCCCTTGCACGGCTACACGCGAATGTTCGAGCGCATGCTCGACCATCCGAACATCGATGTGCTGCTGTCCACCGATTTCAGGGCTGTGCGCCAGCGCATTCCACATCGCGAACTGGTCTATTGCGGGCCCATCGATGAGTACTTCGACCACTGCTTCGGTCGGCTGCCGTACCGCTCGTTGCGTTTCCAGCACGAAACCATGGATCAGGAGCAGTTTCAGCCGGTGGCGGTGGTCAATTACCCGGACGAGGCCGTGCCCTACACGCGTATCACCGAGTACAAGCACCTCACCGGCCAGCAACACCCGCGCACCAGCGTGACCTACGAATTTCCCTGCTCCGACGGTGACCCGTACTACCCGGTTCCGCGTCCGGAGAATGCCGAGTTGTACAAGCGGTACAAGGCGTTGGCCGATGAAACGCCGGGGGTGACTTTTCTCGGGCGGCTGGGCACCTACAAGTACTACAACATGGATCAGGTGGTAGGGCAGGCGCTCGCGTTGTACCAGCGTATCGCCGAGCAAGAGGGTGTTCAGGCGAAGGCCCACGAGGTCGAGCCAGGTTGA	MPTITLETLDNSLDATPYDYLIVGAGFAGSVLAERLADGLGKRVLLIDRRDHIGGNAYDHLDEAGVLVHRYGPHIFHTNAQRIIDYLSRFTEWRPYEHRVLAQVDGHQVPIPINLTTLNTLFGLSMDEAQAEAFLAQRAEPVETIRTSEDVVINQIGQELYEKFFRGYTRKQWGLDPSQLDKSVTSRVPTRTNTDDRYFTDQFQMMPLHGYTRMFERMLDHPNIDVLLSTDFRAVRQRIPHRELVYCGPIDEYFDHCFGRLPYRSLRFQHETMDQEQFQPVAVVNYPDEAVPYTRITEYKHLTGQQHPRTSVTYEFPCSDGDPYYPVPRPENAELYKRYKALADETPGVTFLGRLGTYKYYNMDQVVGQALALYQRIAEQEGVQAKAHEVEPG	PGPT0022675_400	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0022675-glf-K01854	NA	NA
D1-36_01990	1137			hypothetical protein	GTGCAGGACAGGATCTTCAGCAGTTTCATGATGGCCGGCTACGAGTGCTCCACCCAGCGCCGCGCCGATGGGCGCCGATTGGACATGCTCGCGGCGACTCGCCACGACCGCTGGGCAGGCGAGGATTATCGCCAGCTCGCCAGGTTGGGCATCCGTTGCGCCAGGGATGGCCTGCGCTGGCATCTGATCGAGCGGCAACCGGGCCGTTACGACTGGAGCAGCTTCCTGCCGATGCTGCGCGCCGCCCGGCGTTGCGATGTGCAAGTGGTATGGGACTTGTGTCATTACGGCTATCCCGACGACCTGGACATCTGGCGCCCCGCTTTCGTGGAGCGGTTTGCCCGCTTCTGCGCCGCCGTGGCGCGGTTGATGCGCGAGGAGGGGATCGAGGTCCCGTTCTACTCGCCGATCAACGAGATTTCTTTCTGGAGCTGGGCCGGCGGCGACGTCGGTTATTTCAACCCAGGCGCGCAGCGTCGGGGTACTGAACTCAAGCATCAGTTGGTGCGCGCAAGCATCGCGGCCATCGAAGCGATTCGAGAGGTCACGCCCGGTACGCGGTTCGTCCAGTGCGATCCACTGATCAACGTACTGTCCTCGACTCGGCGAGCCGAGGACATCGAGGCCGCCGAGGCGTATCGACAATCCCAGTTCGAGGCCTGGGACCTGCTGACCGGCAGAAGCTGGCCGGGGCTGGGCGGACGAGAGGAGTACCTGGATATCGTCGGGGTGAACTTCTATCCCCATAACCAGTGGTTCCTCCATGGCAATCGGATCGAGCCGGGCAGCCCCGAATATCGCCCGTTGGTGGGCATGCTCAGCGAGGTCCACCAGCGCTACCGCAGGCCGATGCTACTGTCGGAAACCGGTGCCGAAGACACCGCCCGTGTTCCGTGGTTGAACTACATCGGCGAGCAACTGGCGCTGGCCATCGAGCGGAAAATTCCGATGGAGGGAATGTGTTGGTATCCGTTTCTCGATTACCCGGGCTGGGACGATGACCGCTACTGTCCCACCGGTGTGTTCGGTTATGCCGACAATGAGGGAAGCCGCGCGTCCTTCCATCCACTGCTGGTGGCGATCACCGCGTTGCAGGCGCGCTTCGCCTCACCCGTGGCGACGGCACAAGTGCCATGA	MQDRIFSSFMMAGYECSTQRRADGRRLDMLAATRHDRWAGEDYRQLARLGIRCARDGLRWHLIERQPGRYDWSSFLPMLRAARRCDVQVVWDLCHYGYPDDLDIWRPAFVERFARFCAAVARLMREEGIEVPFYSPINEISFWSWAGGDVGYFNPGAQRRGTELKHQLVRASIAAIEAIREVTPGTRFVQCDPLINVLSSTRRAEDIEAAEAYRQSQFEAWDLLTGRSWPGLGGREEYLDIVGVNFYPHNQWFLHGNRIEPGSPEYRPLVGMLSEVHQRYRRPMLLSETGAEDTARVPWLNYIGEQLALAIERKIPMEGMCWYPFLDYPGWDDDRYCPTGVFGYADNEGSRASFHPLLVAITALQARFASPVATAQVP	PGPT0026085_5	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-PEL_POLYSACCHARIDE_METABOLISM	CE-EPS-PEL_POLYSACCHARIDES_BIOSYNTHESIS,PGPT0026085-pelF-K21011	NA	NA
D1-36_01991	1767		COG1132	Putative multidrug export ATP-binding/permease protein	ATGAACAGCCAGCAACCCCATGGGCTGCCGTTGCCCAATACGGCGATCGCTTTTCTCTGGCGCTACGTCACCCTCAGGCCGTGGCATTTCGCGACCTTGTTTTTGCTGATTATCGGCGCCGCGAGCTGCGCCGTGGCGGTGCAGTTCGGTATGAAGCTGTTGGTGGACGCGATGGCCCAGGGCAGGGAGGCCGCCGGGCATGTGTGGCTGCCGTTCACGGTGTTCATTGCCTTGATCGTGATTGAAAACGTGTTCTGGCGCTCCGGTGGTTACCTGGGTTGTCGGACGGTGGTCGCCAGTTGCGCGGATCTGCGCATCGACCTGTTCAATCACCTGACGGGCCATCCAATGCGCTATTTCTCCCAGCATTTTGCCGGGGCCCTGGCCAATCGGATTTCCTCGGCGGGCGCCGCGGCTGGGTCCATCTACGGTGGGCTGGCCTGGAAAATCATCCCGCCTTGCGTCGATTTCATCGGGGCCGTGGTGGTGTTGTTCACCGTGCGACTTTCCATGGGCATCGCGTTGATTGGCGCCGTGGTCGTGGTGGCAACCTTGATCACAGTGATGGGCCTGCGAGGCCGCAGTCGCCACATCGACTTCGCGTCCCAGGCCGCGCGCGTCGGCGGCGAGCTGGTGGACCAGGTTTCCAACGTCTGGACGATCAAGGCTTTCTCCGCCCGGCATCGGGAACGGCGTCGACTGGAGCAAGCGATAGGTGTCGAGGCCAAGGCTCAACGCCGCAGTTGGATCTACCTTGAAAAAGCCCGAGTCCTGCATGACATTTGCCTGTCGATCATGGCCGGCGGCATGCTCGGCTGGTCGATCCTGTTGTGGCAGGACGGGCAGATCACCCCGGGCGATGTGGTGATGGTCAGTGCATTGTCGTTTCGCATCCTGCACGGCTCGCGGGACCTGGCCCTGGCTTTGGTGGATACTTCGCAGCAAATGGGCGTGATCGCCGAGACCCTGCGCATCATCGTCCAGCCGCACGCCCTCAGCGACACCCCGGCAGAACTGGCGCCGGGGCGCGGCAACATTCGCTTTATCGACGTCAGCTACAGCTACGCCGACGGTCGGGGTGCGATCAAGCACCTGTTCCTCGATATTCCCGCCGGACAGAAAGTCGGCATTGTCGGCCCTTCGGGGGCGGGCAAGTCGACGCTGGTCAGTCTGGTCCAGCGCCTTGACGATGTGCGCAGCGGGGTGATCCTGATCGATGACCGAGACGTGCGCTCGGTCAGCCAGGACAGCCTGCGCAGACAGATCGCCGTGGTGCCCCAGGAACCGGCGCTGTTCAATCGCACCATCTACGAGAACATCGCCTATGGTCAGCCCGATGCCACCGAGGAACAGGTGATCGACGCGGCCCGCCATGCCTATTGCGAAGAGTTCATCCGTGGCCTGCCGGACGGGTTCAATACCCTGGTGGGTGAGCGCGGCGTGATGCTGTCGGGCGGTCAGCGCCAGCGCCTGGGGTTAGCGCGGGCGTTCCTGAAAAACGCGCCGATCCTGATCCTCGATGAAGCCACCTCGGCCCTGGACACGGAATCGGAAGCCAAGGTGCAAATGGCCCTGGACGACCTGATGCGCGGCCGCACCGTACTGGCAGTGGCCCATCGGTTGTCGACGGTAGCAAGGTTCGATCGGATCCTGGTGCTGCAGGCCGGAAGAATCGTCCAGGACGGCGCGCCCGATGAACTGCGCCAACGCGCAGGGCCGTTCCAAACGCTGTGGCAGGCCCAGGGGATGGAGTTGGGCAAGCGCTAG	MNSQQPHGLPLPNTAIAFLWRYVTLRPWHFATLFLLIIGAASCAVAVQFGMKLLVDAMAQGREAAGHVWLPFTVFIALIVIENVFWRSGGYLGCRTVVASCADLRIDLFNHLTGHPMRYFSQHFAGALANRISSAGAAAGSIYGGLAWKIIPPCVDFIGAVVVLFTVRLSMGIALIGAVVVVATLITVMGLRGRSRHIDFASQAARVGGELVDQVSNVWTIKAFSARHRERRRLEQAIGVEAKAQRRSWIYLEKARVLHDICLSIMAGGMLGWSILLWQDGQITPGDVVMVSALSFRILHGSRDLALALVDTSQQMGVIAETLRIIVQPHALSDTPAELAPGRGNIRFIDVSYSYADGRGAIKHLFLDIPAGQKVGIVGPSGAGKSTLVSLVQRLDDVRSGVILIDDRDVRSVSQDSLRRQIAVVPQEPALFNRTIYENIAYGQPDATEEQVIDAARHAYCEEFIRGLPDGFNTLVGERGVMLSGGQRQRLGLARAFLKNAPILILDEATSALDTESEAKVQMALDDLMRGRTVLAVAHRLSTVARFDRILVLQAGRIVQDGAPDELRQRAGPFQTLWQAQGMELGKR				NA	NA	NA	NA	NA
D1-36_01992	537			hypothetical protein	ATGTGCCACCGCCATCGCGAGCAGGCTCGCTCCCACAGGGGGGTAGTGTTGTTTGTTGAATTTGGCCACACCGCAGGGCTTTTTGTGGGAGCGAGCCCTGCTCGCGATAGCGGTGGTTCAGCTTGCAGAGATGTTGGATGTGCGGCCGCCATCGCGAGCAAGCTCGCTCCCACAGGGGGGCAGTGTTGTTTGTTGAATTTGGCCACACCGCAGAACCTATTGTGGGAGCGAGCCCTGCTCGCGATAGCGGTGGTTCAGCTTGCAGAGATGTTGGATGTGCCGCCGCCATCGCGAGCAAGCTCGCTCCCACAGGGGGCAGTGTTGTTTGTTGAATTTGGCCACACCGCAGGACCTATTGTGGGAGCGAGCCCTGCTCGCGATAGCGGTGGTTCAGCTTGCAGAGATGTTGGATGTGCCACCGCCATCGCGAGCAAGCTGAACTGGTCAAGTAATCTTGGACACCGATTAAGGTTCACGCCGCCAACCTTTCCTTCGCGACCGGCGACCGGTAGTCGTTGTAGCTGTGAGGCCTGCTGA	MCHRHREQARSHRGVVLFVEFGHTAGLFVGASPARDSGGSACRDVGCAAAIASKLAPTGGQCCLLNLATPQNLLWERALLAIAVVQLAEMLDVPPPSRASSLPQGAVLFVEFGHTAGPIVGASPARDSGGSACRDVGCATAIASKLNWSSNLGHRLRFTPPTFPSRPATGSRCSCEAC				NA	NA	NA	NA	NA
D1-36_01993	609			IS3 family transposase ISSlo2	ATGGCTCGCAGTTTGATGCGCGAAGCTGGCATCGCTAGTCGTCAGCGCAGGCGCCATAAGTACAAGTCGCCGGGCGTTGAGGCATTGGTGGCGCCGCACGTGCTCAAGCGAAAATTTGATGTAACGGCGGTTAACCAGGTGTGGTGTGGCGACGTGACTTACATCAAGGTCGGCAAGCGGTGGATGTACTTCGCCGCCGTTCTGGATCTGTACGCTCGGAGGATCGTGGGTTGGTCGTTCTCGATGATTTCTGATGCCAACCTGACCTGCGAAGCGCTACGCATGGCGGTTGAGCTACGCGGCCACCCCCAGGATGTGTTGTTTCATTCAGACCAAGGTTGTCAGTACACCAGTCATAAATTCCGAAACGAGCTTGTGAAACACGGGTTTAGGCAAAGTATGAGCCGTAAAGGCGAGTGCTGGGACAACGCCCCCATGGAGCGTTTCTTTGGTAGTTTGAAATCAGAGTGGGTTCCTGAAACGGGCTACAAACTGGAACATGAGGCCCGGGCAGACGTGCAGCGCTATGTCTCGCGCTACAACATCAGCAGGCCTCACAGCTACAACGACTACCGGTCGCCGGTCGCGAAGGAAAGGTTGGCGGCGTGA	MARSLMREAGIASRQRRRHKYKSPGVEALVAPHVLKRKFDVTAVNQVWCGDVTYIKVGKRWMYFAAVLDLYARRIVGWSFSMISDANLTCEALRMAVELRGHPQDVLFHSDQGCQYTSHKFRNELVKHGFRQSMSRKGECWDNAPMERFFGSLKSEWVPETGYKLEHEARADVQRYVSRYNISRPHSYNDYRSPVAKERLAA				NA	NA	NA	NA	NA
D1-36_01994	303			hypothetical protein	ATGCGTAAATCTTATTCGAGTGAGTTCAAGCTCAAGGCTGCCAGCATGGTGCTGGATGAAGGCCAGCCGGTTACCGAGGTCTGTGCCAGCCTAGATATCGGCCCCACTGCTCTGCGCCGCTGGGTCGATCAAGTGCAAAAAGAACGCCTGGGTTCGACCCCGGTAGGGGCCAAGGCGATTACTGCTGATCAGCGAGAAATCCAGAGGCTCAAAGCCCTACTCAGGGAGAAAGACCTGGACATTGAAATCCTAAAAAAGGCCAGTGCTCTCCTGCTTTTGGACGCCAAAGATCATTCACGCTGA	MRKSYSSEFKLKAASMVLDEGQPVTEVCASLDIGPTALRRWVDQVQKERLGSTPVGAKAITADQREIQRLKALLREKDLDIEILKKASALLLLDAKDHSR				NA	NA	NA	NA	NA
D1-36_01995	903	pgrR_2		HTH-type transcriptional regulator PgrR	ATGGCGACAAATATCCAGGACTTGCTGTCCTTCGTGGCGGTGGTGAACGCGGGCGGGTTTCGTGAAGGCGCGCGGATCAGCGGCAAATCCGCCTCCAGCCTCAGCGATGCCGTGCGACGCATCGAAAGCCGGCTCGGCGTGCGCCTGCTCAACCGCACCACCCGTAGCGTGGTGCCGACCGAGGCCGGCGCGCGCCTGATGGAACGCATCGTGCCGGCCTTGGGCGAGGTGGAATCCGCGCTGGACGTGGTCAACGATTTTCGTGATCGTCCCTCGGGCACCCTCAGGCTGAACGTACCGGTCAGCGCCGCCCGGCTGGTGCTGCCTGCGATCATCGCGCCGTTCCTCAAAAGCTACCCTGACATCCGCCTCGAAGTGGTCACCGAGGAAAGTTTCGTCGACATGCTCGCGGCCGGGTGTGACGCCGGCATTCGCTACGACGAACGCCTTGAGCAGGACATGATCGCCATTCCCATCGGCCCACGCTTGCAGCGCTTCGCCACCGCCGCCTCACCGGCATACCTCGACGCCCGTGGCCGACCCGAGCACCCGCGGGACCTGCTGCGGCACGCCTGCCTGGCCGGCAAGTTTCCCAGCGGGGCCCTACCGCTCTGGGAGTACGAACGGGACGGGGAAACCATCAGCGTCGAGCCGAACGGCCCGTTGATCGTGCGCATCGGCGGCGCCATGGACCTGGCGGTGCAGGCGGCGGTGGATGGGATGGGCATCGTTCATTTGTTCGAGGACTGGCTGCGGCCACACCTGGACAGCGGCCTGCTCGAACCGGTACTCGAACCCTGGTGGCAGCATTTCACCGGGCCGTTCCTCTACTACCCCGGCCGCCGCTACCTACCCTCGCCGCTGCGGGCGTTCGTGGACTTTGTCAATCAGAACCGCGACTAA	MATNIQDLLSFVAVVNAGGFREGARISGKSASSLSDAVRRIESRLGVRLLNRTTRSVVPTEAGARLMERIVPALGEVESALDVVNDFRDRPSGTLRLNVPVSAARLVLPAIIAPFLKSYPDIRLEVVTEESFVDMLAAGCDAGIRYDERLEQDMIAIPIGPRLQRFATAASPAYLDARGRPEHPRDLLRHACLAGKFPSGALPLWEYERDGETISVEPNGPLIVRIGGAMDLAVQAAVDGMGIVHLFEDWLRPHLDSGLLEPVLEPWWQHFTGPFLYYPGRRYLPSPLRAFVDFVNQNRD				NA	NA	NA	NA	NA
D1-36_01996	864	pdxI		Pyridoxine 4-dehydrogenase	ATGAGCAGGGCAGACACCGCAGGGACTTTTCAACTGGGTGATCGTACGGTCAAGCGCATGGGCTACGGCGCGATGCAACTGGCAGGCCCCCAGGTTTTCGGGCCATCCAAGGATCCGGCGGCGGCCATCGCCGTGCTGCGCGAAGCGGTGGCGGCGGGCGTCAACCATATCGACACCGCTGACTTCTACGGGCCCCATGTCACCAACCGGCTGATCCGTGAAGCGCTCCATCCTTACGCCGACGAGCTGGTCATCGTGACCAAGGTTGGCGCCGTCCGGGGTACGGATGCGTCATGGAACCCGGCCCACAGCCCGGCCGAGCTGACTCGCGCTGTCCATGACAACCTGCGCAACCTTGGCGTGGATGTGTTGGAGGTGGTCAACCTGCGCGCCTGGGGCAATTTGCATTCGCCAGCCGATGACGACATCGAGGAACAGTTCTCGACGCTGGCCGAGTTGCAGCATCAGGGCCTGATCCGCCATCTGGGCTTGAGCAACGTCACCGCGTCCCAGGTCAAGCAGGCCCAGGGCATTGCGAAGGTGGTCTGCGTGCAGAATCACTACAACCTGACCCATCGCGTCGACGAACAACTGATTGTAGAGCTGGGCAAGCAAGGCATCGCCTACGTGCCGTTCTTCCCACTGGGTGGGTTTACGCCGCTGCAATCGCAAACCCTGTCGGATGTCGCCGCGCGCCTGGACGCTTCACCGCTGGGCGTCGCGTTGGCCTGGCTGCTGCAACGTGCGCCGAATATGTTGCTGATTCCCGGTACGTCATCCGTGGCGCACCTGCAGGAAAACCTCTCGGCAAGTGAGCTGCGAATTCCCGCGCAGATGCTGGCCGAGCTTGACGCCATGCTGTAG	MSRADTAGTFQLGDRTVKRMGYGAMQLAGPQVFGPSKDPAAAIAVLREAVAAGVNHIDTADFYGPHVTNRLIREALHPYADELVIVTKVGAVRGTDASWNPAHSPAELTRAVHDNLRNLGVDVLEVVNLRAWGNLHSPADDDIEEQFSTLAELQHQGLIRHLGLSNVTASQVKQAQGIAKVVCVQNHYNLTHRVDEQLIVELGKQGIAYVPFFPLGGFTPLQSQTLSDVAARLDASPLGVALAWLLQRAPNMLLIPGTSSVAHLQENLSASELRIPAQMLAELDAML	PGPT0009140_1466	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009140-ydbC-K05275	NA	NA
D1-36_01997	1266	cypC		Fatty-acid peroxygenase	ATGGCAGACCCTGGTATTCCCGGCCATCGCTGGGCTGATTCGACATGGGCTTTTTTACGCGAGGGCTACCCGTTCATTCGCAAGCGGTGCGCCGCCTATGGCAGCCCGGTTTTCCAGACCCGGCTGCTGGGTCGGCGCACGCTTTGCCTCAGCGGGCTGGAGGCGGCGGAGCTGTTCTACGACGCGCGGCGCTTTGTCCGAACGCCCACGTCCACGCCTGCGCCGCTGCGCAATATTCTGCTGGGGGCCGGTGGGGTCCAGGGGCTCGACGGAGCCCCTCATGCGCGACGCAAGCAATTGTTCCTCGAACTGCTGGACAAGGAAAACGTCCAGCGTTTGACCCAGGTTTATGAAGCTCGCTTGAGCGAGGCCACGGCAAGACTTCCAGTGGGCGAGGCGTTCGAATGCCTGCCTTGGATCGAGGCCCAGTTGTGTCGGTCGGTCTGCGAATGGGCCGGCGTTGCGACGATGAGCGACCAACAAATGCACCGGCTGACCCGGCGGTTGGCCTCGCTGATCGACGGCAGCGGTCGCCTGGATTGGCGCATGCCGGCCGCGTGGTGGCGGCGCAAGGCCTGCGAAGCCGAGGCCGCGCGCTGGATCGAAAACTGCCGGCGAGGCGCCCACCCTGCGTTGCCGGAGTCCCCCCTGCACAAGCTTGCCCAGCATCGCGATGAGCAAGGGCAATTGTTGGCGCCACGGGTAGCGGCCGTCGAATTGCTCAACATTCTGCGCCCGGTGGTCGCGGTGGGGCGCTTCCTGTTGTTCGGGCTGATCGAGCTGGAGCGACAGCCGCGATGGCGCACCTCCATCGCCCGCAACGAAGGCGCGGCGTGGGCCTTCGCCGAGGAAACGCGGCGCTTCTACGCGTTCTTTCCGATGGTGGCCGCGTTCGTGCGCGAGAGCTTCGAATGGCGCGGCTATCGTTTCGACACAGGCACCCGGGTGCTGCTGGACCTTTTCGGCAGCAACCGCGATGCGGCGCATTGGAAGGCGCCGGACAGTTTTTCGCCCGAACGTTTCGGCCAATGCCCGATGAAAACGTCGGTCATCAGCCAGGGCGGCGGCGAGTACACCTACCACCGTTGTCCTGGCGAGCCGTTGACCTTGTCGTTGATGCAGGCAACGTTTGAATATTTGTGCCGGCACCTACAATGGCGTTTGGACGTGAAGGCCGTCGATTTCCAACGCCTGCCCATGTTGCCCCGAGAGGCCGTGCCGATGACCGTGACGGGTCATTGGGGGGACGAAAAGACCAGTGCCTGA	MADPGIPGHRWADSTWAFLREGYPFIRKRCAAYGSPVFQTRLLGRRTLCLSGLEAAELFYDARRFVRTPTSTPAPLRNILLGAGGVQGLDGAPHARRKQLFLELLDKENVQRLTQVYEARLSEATARLPVGEAFECLPWIEAQLCRSVCEWAGVATMSDQQMHRLTRRLASLIDGSGRLDWRMPAAWWRRKACEAEAARWIENCRRGAHPALPESPLHKLAQHRDEQGQLLAPRVAAVELLNILRPVVAVGRFLLFGLIELERQPRWRTSIARNEGAAWAFAEETRRFYAFFPMVAAFVRESFEWRGYRFDTGTRVLLDLFGSNRDAAHWKAPDSFSPERFGQCPMKTSVISQGGGEYTYHRCPGEPLTLSLMQATFEYLCRHLQWRLDVKAVDFQRLPMLPREAVPMTVTGHWGDEKTSA				NA	NA	NA	NA	NA
D1-36_01998	816			hypothetical protein	ATGGAACGCTCGCCCAACAAGGAACGCTCCATGAAAATCCAACAGATCCGCAACGCCACGATCATCCTTGAGTTCGGCCCGTACCGCGTGCTCGTCGACCCCATGCTGGCCGGCAAAGGCGCCCTGCCGCCGCTTCGCCTGTTCGGCGCGACCCAGCGCAATCCGCTGGTGGAGCTGCCGGCGTCCACGGCAAGCGCTCTTGAAACCGTGACTCATTGTCTGATCACGCACTGCCAGAAAGGCCACTTCGATCATCTCGATCGGGCGGCGAAACACTGGCTGCGAGAACGCCAGATCCCGGTCATCTGCACGCCCCGCGACGCCGGGTACCTCGCCAGGCGAGGCTTGAACGTCCAACCGCTCGCCAACGATCACGAGCAACCCGGCGCGTTCCTGGGTGGCAGCATTCGGTCCGTCAAATGCACCCACGGACGGGGCCTGGTGGGCAAGCTGATGGAGCACGGCGTCGGCTACCTGATCGAGTTGCCCGACGAGCCCAGCGTCTACCTCACCGGCGACACCGTGCTCACCCCCACGGTGTGCGATTTCGTATTGCGCCATAAGCCGCAGGTCAGCGTGGTCCCGGCAGGCGGGGCACGTTTCGATATCGGCGACGACATCATCATGGGCATGGAAGAAACCCTGGAATTCACCCGTCTGTCTCGTGGGACCGTGGTGGCCAATCACCTGGAAGCCATCAGCCATTGCCCGACGACGCGAGAGGCACTGCGCGCTGCCGCCGAGCGGGCGGGGGTTGCGGAACGGCTGCTCATCCCGGACGACGGTCAGGCACTGGTCTTTTCGTCCCCCCAATGA	MERSPNKERSMKIQQIRNATIILEFGPYRVLVDPMLAGKGALPPLRLFGATQRNPLVELPASTASALETVTHCLITHCQKGHFDHLDRAAKHWLRERQIPVICTPRDAGYLARRGLNVQPLANDHEQPGAFLGGSIRSVKCTHGRGLVGKLMEHGVGYLIELPDEPSVYLTGDTVLTPTVCDFVLRHKPQVSVVPAGGARFDIGDDIIMGMEETLEFTRLSRGTVVANHLEAISHCPTTREALRAAAERAGVAERLLIPDDGQALVFSSPQ				NA	NA	NA	NA	NA
D1-36_01999	969	cdhR_6	COG4977	HTH-type transcriptional regulator CdhR	ATGCCGAAAAAACTCCGCGTCGGTTTGTTGCTGTTTCCCGGTTGCATGCCTGCCGGCCTGTTTGCCTTTGCTGATTTGCTGCACGCGGCCAACCGCCGCAGTGGTCGGGTGCTGTTCGAGGCGACCTATGTCGCGCTGCAAGCCGGCCCGGTGACCTGCGCCCATGGCATCGGTCTTCAGGCTGAGAAGTCGTTGGGCGAGGCCGACCTGGATGCGCTCATGGTGCCTGGTTTCTGGGCCGAATCGGCCGAACAGGTCAAGGGTGTGCTTGCCGGCCAGGCTCCGCTGTTGAAAGCGCTGTCAAACCGCCCCCGGCGCTTGCAACTCTGGGCCTACTGCACCGGGGTCTGTCTGCTGGCCGCCTGTGGCCGATTGGACGGGCAGGGCGCGACAGTCACCTGGTGGTTGGCGCAGTCGATGCAGGAGCAGTACGGCAACGTGCGCTGGCAGAGCGAACAGAACTGCGTGTTCAACGAGCGAACCGCCACCGCGTCGGGGGTGAACGGTTACCTGCCCATCGCCGAGCACCTGATCGAACGTAACGTCAGTCACGATGCACTGCGCGATATTACCCGGCTGATGGTGTTGCCGCGCCCGGCCGTCCCTCACGTGGCGTTTCAGGGGATTGCGCTGATACAGCAGCCCGACGGATTGCTGCGCCGGTTGCATGGCTTGATCGAGCAGATGCCGGCGGAGCAGATCACGGTCAAGGCGCTGGCGAGTCGGCTTGCCATGTCCGAGCGCACGCTGGCGCGCAAGGTTGGCGACGCAACCGGCCAGACCGTCGCCGCGTATGCCCGGTGCATCAAGTTGAATCAGGTGGGCGAACGCCTGACATTGACGTCGCTGCCCCTGGCCAGCATCGGCGCCGAGCTGGGTTTCAGCAGCAGCTCCAACCTGCAGCGGATGTTCAAGGCGCTGACAGGGCTGACGCCGGTGCAGTACCGGCGCCAGTTCGGGCGGGTGTGA	MPKKLRVGLLLFPGCMPAGLFAFADLLHAANRRSGRVLFEATYVALQAGPVTCAHGIGLQAEKSLGEADLDALMVPGFWAESAEQVKGVLAGQAPLLKALSNRPRRLQLWAYCTGVCLLAACGRLDGQGATVTWWLAQSMQEQYGNVRWQSEQNCVFNERTATASGVNGYLPIAEHLIERNVSHDALRDITRLMVLPRPAVPHVAFQGIALIQQPDGLLRRLHGLIEQMPAEQITVKALASRLAMSERTLARKVGDATGQTVAAYARCIKLNQVGERLTLTSLPLASIGAELGFSSSSNLQRMFKALTGLTPVQYRRQFGRV				NA	NA	NA	NA	NA
D1-36_02000	1827	kefC_1	COG0475	Glutathione-regulated potassium-efflux system protein KefC	ATGCAGACGCACAGCCTGATCGAGATGCTTATCTACCTGGCCTCGGCGACGCTGATCGTGCCGATTGCCGTGCGCTTCGGCCTGGGCCCGGTGCTGGGTTACCTGCTGGCCGGTTGCGTGATCGGCCCGTGGGGCCTCAAGCTCATCACCGATGTAAAAGCTATTTTGGAGTTCGCCGAAATCGGCGTCGTCCTGATGCTGTTCATCATTGGTCTAGAGCTCGACCCCAAGCGGTTGTGGGCGCTGCGCAGGATGGTGTTCGGCGGCGGCGCCCTGCAGATGCTGGCCTGCGGCGGTGCAATCGCCGCGTTCTGCGCGGCCCTGGGGCTGAATTGGACGGCGGCGCTGCTGGTCGGCCTGACGTTGAGCCTGTCCTCAACCGCCATCGCCATGCAGGCGATGAGCGAACGCAACCTGACCGCCACCGCCGTCGGGCGCAGCAGCTTTGCGGTGCTGTTGTTCCAGGACATCGCGGCCATTCCCCTGGTCGCCATGATCCCGTTGTTGTCGGCCCACGGCCAAACCCCGTCAGGCATGGCCTTGGCGCTGTCGATCGTCAAAATTGTCGCCGCCATCAGCGTCGTCGTGCTGCTGGGGCGCTACGTAACGCGACCGCTGCTGCGCTTCGCCGCGCGCTCGGGCCTGCGGGAGATTTTCAGTGCGGTGGCGCTCTTTCTGGTGTTCGGTTTCGGCTTTCTTCTCGAAGAGGCCGGCCTGTCGATGGCCATGGGCGCGTTCCTCGCCGGCGTGCTGTTGGCAAGCTCCGAATACCGCCACGCCCTGGAAAGCGACATCGAGCCGTTCAAGGGCCTGCTGCTGGGGCTGTTCTTTATCGGCGTGGGCATGTCGATCGATTTCGGCACGCTGATCAACGCACCGCTGAAGGTCATCACCCTGACCCTGGGTTTCATCCTGATCAAACTGCTGGTGATCAAGACCGTCAGCCGCTTCCTGAACGTGCCCGCCGGCCAGCGCTCCTGGCAAGCGGTGCTGCTCGGCCAGGGCAGTGAATTCGCGTTCGTGGTGTTCGGCGCTGCAACGTTGGCCGGCATCCTCACCGACCAGTGGGGCAAAAGCCTGACGCTGGCGGTCGCCCTGTCCATGTGCCTGACGCCCTTGCTGATCCTGCTGCTGGACCGCGTGGAATCGGCCACCAAAAAGGACAACCAGCAATCCGATCTCGTCGACCAGCAGAATCCAAGGGTGATCATTGCCGGCTTCGGTCGTTTCGGGCAGATCGCCGGTCGCTTGCTGATGTCCTGCGGCGTTGAGGTGGTGGTTCTCGACCATGACCCCGACAACATCGAGACGCTGCGCAAGTTTGGCGTAAAAGTGTTCTACGGCGACGCCACGCGCCTCGATCTGCTCCACGCCGCCGGCGCGGCCCAGGCGATGGTGCTGATCAATGCGATAGACGATCAGCAGGACAACCTGACGCTGACCCGAATGGCCCAGGAACACTTCCCCGGATTGAAACTGATCGTGCGGGCGCGGGACATGGCGCACCTGATCACCCTGCGGCAGTTGGGCGTGGAAAGCGCCGAGCGGGAGACCTTTGAAAGCGCGCTGTCATTGGGTCGACGCGCGCTGGTGCAGATGGGTGTCGGCGCATACGAGGCGCGCGAACGCGCCGACCAGTTCCGTCGTCTCAACCTGCAGATGCTAGAAGAAATCGTCGCCCAGCCGGAAGACGACCTCAAGTTCCGGCACGACGCCTACCGCCGCGCCAATGCGCTGCTCACGGAAATGTTCAACGAGGACCGCGCGCACCCGGTCGACAGCTGGCCGGACCATCACCGAAACGAGAAGGAGCAGGCGCGCAGCTGA	MQTHSLIEMLIYLASATLIVPIAVRFGLGPVLGYLLAGCVIGPWGLKLITDVKAILEFAEIGVVLMLFIIGLELDPKRLWALRRMVFGGGALQMLACGGAIAAFCAALGLNWTAALLVGLTLSLSSTAIAMQAMSERNLTATAVGRSSFAVLLFQDIAAIPLVAMIPLLSAHGQTPSGMALALSIVKIVAAISVVVLLGRYVTRPLLRFAARSGLREIFSAVALFLVFGFGFLLEEAGLSMAMGAFLAGVLLASSEYRHALESDIEPFKGLLLGLFFIGVGMSIDFGTLINAPLKVITLTLGFILIKLLVIKTVSRFLNVPAGQRSWQAVLLGQGSEFAFVVFGAATLAGILTDQWGKSLTLAVALSMCLTPLLILLLDRVESATKKDNQQSDLVDQQNPRVIIAGFGRFGQIAGRLLMSCGVEVVVLDHDPDNIETLRKFGVKVFYGDATRLDLLHAAGAAQAMVLINAIDDQQDNLTLTRMAQEHFPGLKLIVRARDMAHLITLRQLGVESAERETFESALSLGRRALVQMGVGAYEARERADQFRRLNLQMLEEIVAQPEDDLKFRHDAYRRANALLTEMFNEDRAHPVDSWPDHHRNEKEQARS	PGPT0013800_328	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013800-kefC-K11745	NA	NA
D1-36_02001	522	kefF_1	COG2249	Glutathione-regulated potassium-efflux system ancillary protein KefF	ATGATCCTGATCGTTTACGCCCATCCCTACCCCGACCAATCGCGGGTCAACCAACAGATGCTCAAGCGCGCGTCCGACAACCCAGATGTGGTCATACGGTCTCTCTACGAGCTTTACCCAGACTTCAACATCGACGTCGAGGCCGAACAGCGCGCTGCCGAGCAGGCTGACCTGATTGTCCTCCAGCACCCGATGTACTGGTACGGCATGCCGCCTCTCTTGAAATTGTGGATCGATAAAGTGTTCACCCATGGCTGGGCCTATGGCAAAGGCGCCACGGCCCTCAACGGTAAGCGCCTGTTGTGGGCCGTGAGCACGGGTGGCGAACGGGAGCATTTCCAGATCGGCGCGTACCCGGACTTTTCCGCGCTGGCCCAGCCGCTCCATGCCACGGCGCTCTATTGCCACATGCGCTGGCTCGAGCCGGTCGCCGTGCACGGCGCCTACGCCGCCGAGTCCGACACTCAACGGGCACAAATCGAACACTACGGCGCACGCCTGGCCGCTTGGAAGGAAGATTGA	MILIVYAHPYPDQSRVNQQMLKRASDNPDVVIRSLYELYPDFNIDVEAEQRAAEQADLIVLQHPMYWYGMPPLLKLWIDKVFTHGWAYGKGATALNGKRLLWAVSTGGEREHFQIGAYPDFSALAQPLHATALYCHMRWLEPVAVHGAYAAESDTQRAQIEHYGARLAAWKED	PGPT0013805_372	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013805-kefF-K11746	NA	NA
D1-36_02002	1347	sasA_9		Adaptive-response sensory-kinase SasA	ATGACCACCGGGCCCACGAAGGTCCATCGACCACGGGACACCGTGGCACGCTGGATCGCGCTGACCACAATGGTGGCGATGCTGACGTTGCTGGCGCTCAACGAGCTGTTCAGCCTGTTGGCCGGCGCCTGGGCGCGCCCTCCCCTGATGGAAACCGGCCTGATGGAAAAGGCCGCTGCGATTACCCGCATCATTGATTCGGTCAAGCCCGCACAACGACCCGACATTGCCGTGGCGGCCAGTGACGAGGCGTTCAGCGTCCAGTGGCTGCGGCGCTATGAAGATGCGCGGCTACCGGTGATCGACGACCCGGAGTTCAGCGAAGGCTCGGCATCCCTGCATCGGCAGTTGGGCAGGCCCGACGCACGGATCGACGCCTACGAACCAGGAGACTGGCCAGCCGATGACCCCGCCAGGCGCTACGCCGTAATCATCGAACTGTCCGATCGCTCCTGGGTAACCGTCTCTGTGACCTCGCGCAGCTGGGGCCTGGGAGAATGGGCCCGCAACCTGATCATCATCGCACTGATCATGCTGTCGACACTGATCGTCGCCCTGATCGCCACGCGACACCTCGCCACACCGCTGGAGCGCTTTGCCGAGGGCGCCCGACGCTTTGGCGTGGACTTCCGGGCACCGCCGATCCCGGTCGTAGGTCCCTTCGAAATCCGCCAGGCGATCCTGGCGTTCAACGCCATGCAGGCCCAGCTCAAGCACTTCGTCCAGGACCGCACGCAGATGCTCGCCGCCATCTCCCACGACTTGCGAGCCCCCCTGACCCGCATGCGCCTGCGCGGCGAATTCATAGAGGACCCCGAACAGCAATCGAGGTTGTTCCGGGACGTCGACGAGATGCAGGCGATGGTCAACGCCGCCTTGGAATTCTTCCGCGACGAAGCGCGCCTGGAACACGCCACGGCGTTCGACCTGGCGGAACTGCTGCACACCGTCGTCGACGATTTCCGGGACGCTGGCACCGAAGTGTCCTTCGAAGGCGCCCAGCGGTTCGTGTATGTCGGCCGGCCCATCGGGATCAAGCGCGCGCTGAGCAACCTGATCGACAACGCGGCGAAATACGGCAGCGAACCGGGCGTGCGGTTGAAGTCCTTCGCCGACTGCGTCGAGATCCGCATCGTCGATCGCGGGCCGGGCATCGCGCTCCAATATCAGGAGCAAGTGTTCGCGCCGTTCTTTCGCATCGAAGGCTCGCGCAATAAGACCACCGGCGGCGTCGGCCTGGGCCTGTCGGCGGCACGGGCGACGGTACTGGAGCATGGCGGAACGCTGATGCTCAGGAACCGCAGGGACGGTGGCCTCGAGGTCAGGGTCTCGCTGCCGCTCAATTGA	MTTGPTKVHRPRDTVARWIALTTMVAMLTLLALNELFSLLAGAWARPPLMETGLMEKAAAITRIIDSVKPAQRPDIAVAASDEAFSVQWLRRYEDARLPVIDDPEFSEGSASLHRQLGRPDARIDAYEPGDWPADDPARRYAVIIELSDRSWVTVSVTSRSWGLGEWARNLIIIALIMLSTLIVALIATRHLATPLERFAEGARRFGVDFRAPPIPVVGPFEIRQAILAFNAMQAQLKHFVQDRTQMLAAISHDLRAPLTRMRLRGEFIEDPEQQSRLFRDVDEMQAMVNAALEFFRDEARLEHATAFDLAELLHTVVDDFRDAGTEVSFEGAQRFVYVGRPIGIKRALSNLIDNAAKYGSEPGVRLKSFADCVEIRIVDRGPGIALQYQEQVFAPFFRIEGSRNKTTGGVGLGLSAARATVLEHGGTLMLRNRRDGGLEVRVSLPLN	PGPT0012975_1042	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OSMOLARITY_SIGNALLING,PGPT0012975-envZ-K07638	NA	NA
D1-36_02003	720	ompR_4		Transcriptional regulatory protein OmpR	GTGACCACCGTGAGCCACTTGTTACTGGTGGACGATGACCTCGAAGTCCTCGCCCTGCTGCGCAAATTCCTTGAGCAACATGGCTATAGCGTCGAAGTCGCCGCCGACGGCAACGCCCTGTGGCAAGCGGTGGAGCGCCGGCAGCCAGACCTGATCATCCTCGACGTGATGTTGCCGGGCGACAATGGGCTGGTGCTGTGCCAGCGCCTGCGCAACGAGCACCGGGTCGGGATCATCATGCTCACCGCCATGGGCGAATTGAGCGACCGTGTCGTCGGCCTGGAAATGGGCGCCGACGACTACCTCACCAAGCCCTTCGATGCCCGAGAATTGCTGGCCCGGGTGCGCGCCGTCCTGCGGCGCACCGGCGAAGCCAGGGGCAGCCCGAGCGACCTCGCCCGGCCGACCCTGGAGTTCGAAGGTTGGCAACTGGACGTCACCCGTCGCGAATTGCGCTCGCCCGACAAGGTCATGATTCCGCTGTCTACCGGGGAATTCGAATTACTGCTGGTCTTCGCCGAACATCCACGCCGGGTGCTCACCCGCCAGCAACTGCTCGACCTGGCCCGTGGCGAGACCTTCGATGCGTTTGACCGAAGCATCGATGTCCAGGTCAGCCGTTTGCGGCGCAAATTGGAAAACGACGTCACCGGTCCGTCGATGATCCGCACCGTTCGCAACAGTGGCTACCTGTTCAGTCCCCACGTGGTGAAGCGATGA	MTTVSHLLLVDDDLEVLALLRKFLEQHGYSVEVAADGNALWQAVERRQPDLIILDVMLPGDNGLVLCQRLRNEHRVGIIMLTAMGELSDRVVGLEMGADDYLTKPFDARELLARVRAVLRRTGEARGSPSDLARPTLEFEGWQLDVTRRELRSPDKVMIPLSTGEFELLLVFAEHPRRVLTRQQLLDLARGETFDAFDRSIDVQVSRLRRKLENDVTGPSMIRTVRNSGYLFSPHVVKR	PGPT0004100_30	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
D1-36_02004	786	mlaA_1	COG2853	Intermembrane phospholipid transport system lipoprotein MlaA	ATGTCGATCCTCAAACCCGCGCCGCTGTTTGTCCGATCCACCGTCATCGTCGCGCTGGCGGTACTCGCCAGCGGCTGCAGCAGTACGCCAACCGCCAAGCCGGGCAGTTGCGAAAGTGTTCCCTATGCGGTGCACGATCCGGCCGAACCGGTGAACCGCGGCATCTTCGCCTTCAACCGTACCGTGGACGATTACGCCCTGGCCCCCGTCGCCCGTGGGTATCGCAAACTGCCGGACATGTTCCAGGCTGGCGTACACAACTTCGTCGCCAACTTCGGTGAGCCCAAGGTGTTCATCAACGATTTGCTGCAAGGCAATGGACAGCGTTCGGTCACGACTCTTGGGCGCTTCGTCATCAACACCACCGTGGGCATCGTCGGGCTGATCGACGTGTCGGGCAAGATGGGCATCGCGCGTCATGAATCGGATTTCGGCCAGACGTTTGGCGTCTGGAATATCGCCCCCGGACCGATCGTGGAATTGCCGCTGCTGGGCACTGCCAACCTGAGGGACGCGACCGGCAAGGTGGTGAGCTTCGTCGTGGACCCTTTCGGCGACAACAGCGATACCGTCCAGACCCTGGGTACGATCAAGACCGTGGGCGGCGTCGTCGATGGACGCGCGCAGGCGCTGCCGCTCACCGACCAGTTGCAGGCGCGACCGGACTATTACGTGGCGCTGCGCGACGCCATCGCGCAACGACGTGCTGATTTCGTCGCGGATGGCAAACTGGGCGCCGTCCAGGACGAGCCGCAATGCCCGGAACGCGGTGGCGCCGATGAATAG	MSILKPAPLFVRSTVIVALAVLASGCSSTPTAKPGSCESVPYAVHDPAEPVNRGIFAFNRTVDDYALAPVARGYRKLPDMFQAGVHNFVANFGEPKVFINDLLQGNGQRSVTTLGRFVINTTVGIVGLIDVSGKMGIARHESDFGQTFGVWNIAPGPIVELPLLGTANLRDATGKVVSFVVDPFGDNSDTVQTLGTIKTVGGVVDGRAQALPLTDQLQARPDYYVALRDAIAQRRADFVADGKLGAVQDEPQCPERGGADE	PGPT0024485_991	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024485-mlaA|vacJ-K04754	NA	NA
D1-36_02005	240			hypothetical protein	ATGAATAGCCAGGCGCTGGTCCTGCATCGGCGGGTGAAGACCATTGACCAAGGCTCGCTGCATTGCCGCGAGCTCGAACTGCGGCTTGCCGAGGACGGCCAGCACGTACTGCTCAGCCGCTACGTCGAATGGTACGACCCGCAGCAACCGGGCCTGTGTGCAGCCCAGCACTATCGGGTGCCGTTGGCGAGCATGATTCGTTGGATGATCAACAATGGCGAGCGGGGCAGCGGGCCGTGA	MNSQALVLHRRVKTIDQGSLHCRELELRLAEDGQHVLLSRYVEWYDPQQPGLCAAQHYRVPLASMIRWMINNGERGSGP				NA	NA	NA	NA	NA
D1-36_02006	1302	mntH		Divalent metal cation transporter MntH	ATGTCGAGCATTCCCTCCGCAGAAGGCCAGGCCGTGGCCCCCGCGCAGAGCCGCTTCGTACGCCTCTTGAAGCTACTTGGCCCCGGTATCATCGCGGTACTGTCATGGCTGGGCGCTGGCGATCTCATCACATCTTCCGTGGCCGGCGCGAACTACGGCTACGCAATGATGTGGGTGCTGGCGGTGTCCTTGCTGCTCCGATACCTGATCGTCAACATCATTGCCCGCTTCCAGCTGTGCAATAACCAGGGCATGACCATCCTGCAGGGTTACGCCCAGCTCAATCCGTTTTTCGCCTGGTTCATGCTGGTGTATGCGCTGCTCATGGGGCACCTGATGAACGCCTACATGATCAAGGGCGCCGGCGAGGCCTTGGCGATGCTGCTCAAGACCGACTACCCGCTGCTGTGTTCGGTGGCGGTGGTGTTGGCGGTGTGGATGCTCGTCGGGCGCAATATCTACTCGATGATCGAGGGCGTGATGAAAGTGTTGCTGGCGATCATGACCCTGGCGTTCCTCGCCTTGGCGGTCATGTCCGGCCCGGATGTCGCCGGGATCGTCAAAGGCACCATCGGCTTCAGCATTCCACCCGATGAAGGCGTGCACGGTGCGCTGCTGGTGGCGGTGTCGGTGATTGGCGCGGTGGCGGGTTCCATCGCCAACTTCGTCCACCCTTATGTCATGCGCCAGAAAGGCTGGGTTGGCCCTGAGCACAAGCGCATCCAGCGCAACGACCTGTTGTTTGCGGTGTTTGTCGGGATCGTCATCAACCTGGCGATCTGGATCGTCGGCGCCGAGATCCTGCGGCCTAATGGCATCGAGGTGAAAACCCTGGGCGACCTGGGCAAGGCCCTGGAAATGTTCTTCGGCTCGATCGGTTGGTATGTGTTCTTCGTCGGTGTGTTCGCCACGCTGTTCGCGAGCATTTCCGGCAAGACCACGGCATTCCCGATGCTGATCACCGATGCCTTCCAGCACGTGCGTCCTGAGCGTCGCGAGCGCTATGGCAAGGAGTTCCACCGCGACCCGATGCACAAGTGGTTCATGCTGTTCATCCTCGTCACGCCGCTGATCTGGTCGCTGCCGGGCATGCCAGACTTCGTGACCCTGACCATCGGTGTCAACGCGCTGAACATCGTCGGCCTGCCAGTGATCTCCCTGGGCCTGCTGATCATGTCCAACCAGAAGTCGCTGCTGGGCAAGGAATACCGCAACAACCTGTTCGAGAACATCGCGCTGGTGTTCGCGACCGGCCTGGCGTTGTGGGTGGCGTTCCAACTGGGCGTCGATCTGTTTGCCTGA	MSSIPSAEGQAVAPAQSRFVRLLKLLGPGIIAVLSWLGAGDLITSSVAGANYGYAMMWVLAVSLLLRYLIVNIIARFQLCNNQGMTILQGYAQLNPFFAWFMLVYALLMGHLMNAYMIKGAGEALAMLLKTDYPLLCSVAVVLAVWMLVGRNIYSMIEGVMKVLLAIMTLAFLALAVMSGPDVAGIVKGTIGFSIPPDEGVHGALLVAVSVIGAVAGSIANFVHPYVMRQKGWVGPEHKRIQRNDLLFAVFVGIVINLAIWIVGAEILRPNGIEVKTLGDLGKALEMFFGSIGWYVFFVGVFATLFASISGKTTAFPMLITDAFQHVRPERRERYGKEFHRDPMHKWFMLFILVTPLIWSLPGMPDFVTLTIGVNALNIVGLPVISLGLLIMSNQKSLLGKEYRNNLFENIALVFATGLALWVAFQLGVDLFA				NA	NA	NA	NA	NA
D1-36_02007	480			hypothetical protein	ATGAACAACAAGAACAGGATTTGCCTCTGGTACGACGGCACCGCGCAGGACGCAGCTGAGTTCTACGCAAGCACGTTTCCCGACAGCGCGGTGAACGCGATCCACCATGCGCCGGGCGATTATCCGGCGGGCGAGCAGGGCGATGTCATCACGGTGGATTTCACGGTGATCGGCATTCCCTGCATCGGCTTGAATGGCGGCGCGATGTTCAAGCACAACGAAGCCTTCTCCTTCCAGGTCGCAACCGATGACCAGGCCGAGACGGATCGCCTCTGGAACGCGATCATCGACAACGGCGGCCAGGCGAGCGCTTGCGGCTGGTGCAAGGACAAGTGGGGTGTGTCGTGGCAGATCAGCCCCCGGGTTCTGGTCGAGGCGATCACCAGCGCCGACAAAGCCGCCGCCAAGCGCGCCTTCGAAGCCATGATGAACATGACCAAGATCGACATCGCGGCGATCGAGGCGGCGGTGAAGGGGTAG	MNNKNRICLWYDGTAQDAAEFYASTFPDSAVNAIHHAPGDYPAGEQGDVITVDFTVIGIPCIGLNGGAMFKHNEAFSFQVATDDQAETDRLWNAIIDNGGQASACGWCKDKWGVSWQISPRVLVEAITSADKAAAKRAFEAMMNMTKIDIAAIEAAVKG				NA	NA	NA	NA	NA
D1-36_02008	402	yjgH	COG0251	RutC family protein YjgH	ATGACCACCCGAGACGTTGTTTTCCCGCCCGGACGCCAGGCGCTTTACGAGCGCAACCGCTATTCGCCGGCGATTCGCTCCAATGGTTTGCTGTTCGTATCCGGACAGGTCGGCAGCCGCGAGGACGGCTCGCCCGAGCCCGTGCTGGAAGACCAGGTGCGCCGCGCCTTCACCAATCTTGCGGCCATACTCGCCGCCGCCGATTGCAGCTTTGACGACGTGATCGACGTCACGGTCTTCATGGTTGATCCCGAATCGATATTCGAACGGGTCTGGAGCGTGGTGCCCGAATTCTGGGGCCACGCGCCGCACCCAACGCTGACAGCGGTGGGTGTGACATGGCTGTATGGTTTCCAGTTCGAGATCAAGGTGATTGCCAGGTTGCCCGGAACCGCAAGCTGA	MTTRDVVFPPGRQALYERNRYSPAIRSNGLLFVSGQVGSREDGSPEPVLEDQVRRAFTNLAAILAAADCSFDDVIDVTVFMVDPESIFERVWSVVPEFWGHAPHPTLTAVGVTWLYGFQFEIKVIARLPGTAS				NA	NA	NA	NA	NA
D1-36_02009	927	pgrR_3		HTH-type transcriptional regulator PgrR	ATGAACCGTTTCGATGCGATGCAGGCGTTCGTGCGTGTGGTGGAGTCGGGCAGTTTCACCAAGGCCGCCGAGACGCTGCACATGAGCAAGACCACCGTGACCCAGCTGGTGCAACAGCTCGAAGCGCGGCTGCGAGTCAAGTTGCTCAACCGCACGACACGCAAGGTCAACGTCACGGCGGACGGCGCGGCCTTCTATGAGCGTGCGATTCGCCTGTTGGCGGACCTGGACGACGCCGAGACCAGCTTGTCCGGCGCCCAGGCCCTGCCGCGCGGGCGGCTGCGGGTGGATGTGCCGAGCCCGCTGGCGGCGCTGATCCTGATACCGGCGCTGCCGGAGTTCTACGAGCGTTACCCCGACATCCAGATCGACATGGGCGTCAGCGACCGCATCGTTGACATAATCGACGAAAACGTCGATTGCGTGGTTCGCGGCGGCGAACTGAAGGACCAATCGCTGATCGCCCGACGCGTCGGCGACCTGGCCCTTGGGGTCTTCGCCGCGCCAAGCTACCTGGCGCGTCTGGGTACCCCGGTCCATCCGCGTGAGCTGGAGGATTCCCAACATCGCGTCGTCGGTTTCCTGTGGGCACGCACCGGCAAGGCCTTGCCCTATGCCATGCACCGACAGGACGAGCACCTGCGCATCAAGGGGCGTTACGCCCTGGCGATCGACGATGGCAACGCCTACCTGGCCGCCGGCCTGGCGGGGCTGGGGGTGCTCTGGTTGCCCATCTATATGTCGCGGACTCACCAGGCGCAGGGGACGTTGGTCCCGTTGTTCGAAGATTGGCGCCTGGAGTCGATGCCGATGTACGTGGCCTACCCGCCGAACCGGCACATCAGTGCCAAGCTGCGGGTGTTCATTGACTGGGTGATGGAGCTGATGGCGCAGCATGCGCCTATCCTTGATCGGCAGGCGTCATGA	MNRFDAMQAFVRVVESGSFTKAAETLHMSKTTVTQLVQQLEARLRVKLLNRTTRKVNVTADGAAFYERAIRLLADLDDAETSLSGAQALPRGRLRVDVPSPLAALILIPALPEFYERYPDIQIDMGVSDRIVDIIDENVDCVVRGGELKDQSLIARRVGDLALGVFAAPSYLARLGTPVHPRELEDSQHRVVGFLWARTGKALPYAMHRQDEHLRIKGRYALAIDDGNAYLAAGLAGLGVLWLPIYMSRTHQAQGTLVPLFEDWRLESMPMYVAYPPNRHISAKLRVFIDWVMELMAQHAPILDRQAS	PGPT0028940_432	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028940-bpeT-K18900	NA	NA
D1-36_02010	393			hypothetical protein	ATGGAACGATTCACCGGCGGTTGCCTGTGCGGCAACGTTCGTCTTGAAGCGTCTGGCCGTCCATACCGGGTCGGCCTTTGCCACTGCCTGGATTGCCGCAAGCATCACGGTGCACTGTTTTTTGCGGCGGCGGTGTTCCCCGAGGACGCCGTCACCGTCACGGGCGAGCCCCGGGATTATGCCGGGCGCTTCTTCTGCCCCAATTGCGGCTCGTCGCTGTTCGCCCGCAGCGGCGACGAGATCGAAGTGCACCTCGGCACGCTCGATACTCCCGACCAACTGACGCCCACCTACGAATGCTGGACCGTGCGCCGCGAGTCCTGGCTGCCGGCGTTCCCGCTGGCGCGGCGGTATCAGCATGATCGCGGGGGCAGCGGGCGGACAGAGGAGTAG	MERFTGGCLCGNVRLEASGRPYRVGLCHCLDCRKHHGALFFAAAVFPEDAVTVTGEPRDYAGRFFCPNCGSSLFARSGDEIEVHLGTLDTPDQLTPTYECWTVRRESWLPAFPLARRYQHDRGGSGRTEE				NA	NA	NA	NA	NA
D1-36_02011	1446	ald		3-succinoylsemialdehyde-pyridine dehydrogenase	ATGACCAAACCCTCATATATTCCGCAAAATACCGGGCAGTTCTACATCGACGGTCATTGGCAATCGCCGACCCGGGGGACGACGCTGGCAGTCGTCAATCCGGCCACCGAAGAGGTGCTCGCCGAGGTTGCCCAAGGATCATCCGACGACGTTGACCGCGCCGTCGCGGCGGCAAAGGCGGCGATGCCCGGCTGGGCCGCGACCGCAGTGGCGGATCGCGCCCGAATCCTCGGGAAGATCCATGAACTGATGCTCGAACGCAAGGAAGCGCTGGCCCAGGTGCTGTGCCTGGAAATGGGCGCGGCAATCGGTTTCGCCCGATCCATGCAAGTGCCGCTGGCGGCCGAACACGTTCGTGTGGCGCGCGATGTGCTGTCCACTTATGCATTTCAGAAAATCGAGAACGGCACCGCCATCGTGCGCGAACCCATCGGCGTCTGCGGTTTGATCACGCCGTGGAACTGGCCGCTCTATCAGATCACCGCCAAGGTCGCCCCGGCGATCGCCGCCGGTTGCACCGTGGTGCTCAAGCCCAGCGAACTGTCGCCTTTGAGCGCCCTGCTGTTCGCCGAACTGGTGCATGACGCCGGCCTGCCGGCAGGCGTGTTCAACCTGGTCAACGGCGGCGGTGCCGAGGTCGGCGCGGCCATGGCGGCGCACCCCGACATCGACATGATTTCCATCACCGGCTCCAATCGCGCCGGCGCCCTGGTGGCCCAAGCCGCCGCCCCCACGGTCAAGCGGGTCACCCAAGAGCTGGGCGGCAAGTCGCCAAACGTGTTTCTGCCCGACGCCGACTTCGCCAAGGCCGTGCCGCCCGGCGTGATGTCGGCGTTGCGCAATGTCGGCCAGTCCTGCAGCGCGCCGACGCGGATGATCGTACCCAGGAACCGCCTGGCGGAAGTCGAGGCACTGGCGGCCGCCACGGCCAATGCCATCATCGTCGGTGACCCACGGTCGGAAGACACCGTGCTCGGCCCGATTGCCAACCAGGCCCAGTTCAAGCGCGTGCAGGCGATGATCGAAGCGGGCCTGGAGGAAGGGGCCAAGCTGATTTGCGGTGGGCCGGGACGCGTCGACGGTTTCACCAAAGGCTTCTACACCCGGCCAACCGTGTTCTCGCAAGTCGACAACGGCATGCGCATCGCCCAGGAAGAAATCTTCGGCCCGGTGCTGTGCATCATCCCGTACGACACGCTGGACGAAGCCGTCGCCATCGCCAACGACACCGTCTACGGGCTGGGCGCGCACGTTCAGGGCCGCGACCTTGACCAGGTACGCGCCGTGGCCAAGCGCATCCGTGCCGGGCAAGTGCTGCTGAACTATCCGACCTGGAACCCCATGGCCCCGTTCGGCGGTTACAAGCGCTCGGGCAACGGGCGCGAATATGGGGTCCATGGGTTCGAGGAGTATCTGGAGATCAAGGCGATTGTCGGGTTCGAGTAA	MTKPSYIPQNTGQFYIDGHWQSPTRGTTLAVVNPATEEVLAEVAQGSSDDVDRAVAAAKAAMPGWAATAVADRARILGKIHELMLERKEALAQVLCLEMGAAIGFARSMQVPLAAEHVRVARDVLSTYAFQKIENGTAIVREPIGVCGLITPWNWPLYQITAKVAPAIAAGCTVVLKPSELSPLSALLFAELVHDAGLPAGVFNLVNGGGAEVGAAMAAHPDIDMISITGSNRAGALVAQAAAPTVKRVTQELGGKSPNVFLPDADFAKAVPPGVMSALRNVGQSCSAPTRMIVPRNRLAEVEALAAATANAIIVGDPRSEDTVLGPIANQAQFKRVQAMIEAGLEEGAKLICGGPGRVDGFTKGFYTRPTVFSQVDNGMRIAQEEIFGPVLCIIPYDTLDEAVAIANDTVYGLGAHVQGRDLDQVRAVAKRIRAGQVLLNYPTWNPMAPFGGYKRSGNGREYGVHGFEEYLEIKAIVGFE	PGPT0006875_6794	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_DEHYDROGENASE|DEHYDRATASE_ACTIVITY,PGPT0006875-aldH|dhaS-K00128	NA	NA
D1-36_02012	447			hypothetical protein	ATGAGCTCGCTCATCACTCACGTCAGCACTCAAAAGGACTACCGCACGGCGCTCAAGACCTGGCGCCCGGTGGTCTTTTATTTCGGCCATCCGCACTGCTACGCCTGCGGCATGGCCGACCTGCTGTTCTGCAAGGTTGCCGAGACCTTCGAGAATCGGGCCGTGATCTACAAACTGAGCACCGATCAATCGCCTCGGCACCCGGAAGTCACCGGCACGCCCACCGTGCTGTTCTATAAAGACGGAAAACTACAGCGCAAGCTCAAGGGCATCGGTGACCCGGCCTCATTCGTCCAGACCTTTACCGAGCTCGTCGGCCGGACCAGACCCAGGCGCTTGCCGACGCCACGGCGGCACGATTTGCGCTGGTTGCGCCAGCAACTCAAAACACTGTGCACCGCCCGCCGGGCCCCGGCACTTTTGCGGCTGCGGGCGACGCCTCGGTAG	MSSLITHVSTQKDYRTALKTWRPVVFYFGHPHCYACGMADLLFCKVAETFENRAVIYKLSTDQSPRHPEVTGTPTVLFYKDGKLQRKLKGIGDPASFVQTFTELVGRTRPRRLPTPRRHDLRWLRQQLKTLCTARRAPALLRLRATPR	PGPT0013055_1634	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013055-trxA-K03671	NA	NA
D1-36_02013	849	peb1A	COG0834	Major cell-binding factor	ATGCAACGCCGACCTTCCTTGTTCAAAGCGTGTGTTTTTCTCTTCGCGGCCACGACGGCCGCCATGGGTGTCGCCCAGGCGGCCGACAGCAAGCTGGACAGCGTGCTGCAACGCGGAAAATTGATCGTGGGCACGGGCAGCACCAATGCGCCGTGGCACTTCCAAGGAGCGGATGGCAAGTTGCAGGGGTTTGATATCGACATCGCGCGGATGGTCGCCAAGGGGCTGTTCAATGACCCGGAAAAAGTCGAGTTCGTGGTGCAATCATCCGATGCGCGGATTCCCAACCTGCTGACCGACAAGGTCGACATGAGCTGCCAGTTCATCACCGTCACCGCCAGCCGCGCCCAGCAAGTGGCGTTTACGCTGCCGTACTACCGCGAAGGGGTGGGCCTGCTGTTGCCGGCCAACAGCAAGTACAAGGAAATCGAGGACCTCAAGGCCGCCGATGACGACGTCACCGTGGCGGTGCTGCAAAACGTCTACGCCGAAGAACTGGTCCACCAGGCGCTGCCCAAGGCCAAGGTCGACCAATACGACAGCGTCGACCTGATGTACCAGGCGGTGAACTCCGGCCGCGCCGATGCCGCCGCCACCGACCAATCCTCGGTCAAGTACCTGATGGTGCAGAACCCCGGTCGCTACCGCAGCCCGGCCTACGCCTGGAGCCCGCAAACCTACGCCTGCGCGGTCAAGCGCGGCGACCAGGACTGGCTGAACTTCGTCAACACCACCCTGCACGAGGCCATGACCGGTGTGGAATTCCCCACCTATGCGGCGTCGTTCAAGCAGTGGTTCGGCGTTGAGTTGCCGTCTCCGGCGATCGGTTTCCCTGTTGAATTCAAATGA	MQRRPSLFKACVFLFAATTAAMGVAQAADSKLDSVLQRGKLIVGTGSTNAPWHFQGADGKLQGFDIDIARMVAKGLFNDPEKVEFVVQSSDARIPNLLTDKVDMSCQFITVTASRAQQVAFTLPYYREGVGLLLPANSKYKEIEDLKAADDDVTVAVLQNVYAEELVHQALPKAKVDQYDSVDLMYQAVNSGRADAAATDQSSVKYLMVQNPGRYRSPAYAWSPQTYACAVKRGDQDWLNFVNTTLHEAMTGVEFPTYAASFKQWFGVELPSPAIGFPVEFK	PGPT0020800_5433	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
D1-36_02014	663	glnP_4	COG0765	Glutamine transport system permease protein GlnP	ATGAATTATCAGTTGAATTTTGCCGCCGTCTGGCGCGATTTCGACACCTTGCTGGCGGGGCTTGGCCTGGGGCTTTCCCTCGCGCTGGTGTCGATCGCCATCGGTTGCGTGATCGGCCTGGCGATGGCGTTTGCGCTGCTCAGCAAGCATCGCTTGTTGCGGGTGTTGGCCTCGGTGTACGTCACCGTGATCCGCAACACGCCGATCCTGGTGCTGATCCTGTTGATCTACTTCGCCTTGCCGAGCCTGGGCATTCGCCTGGACAAGCTGCCGTCGTTCGTTATCACGCTCTCGCTGTACGCCGGGGCCTACCTGACCGAAGTGTTTCGCGGCGGGCTGTTGAGTATTCATAAGGGCCAGCGCGAAGCGGGGTTGGCGATCGGCCTGGGCGAGTGGCAGGTCAAGGCCTACGTCACCGTGCCGGTGATGCTGCGCAACGTGTTGCCGGCCCTGTCGAACAACTTCATTTCGCTGTTCAAGGACACCTCCCTGGCGGCGGCGATTGCCGTGCCGGAGCTGACCTATTACGCCCGCAAGATCAACGTGGAGAGCTACCGGGTGATCGAAACCTGGCTGGTGACCACGGCCCTGTATGTCGCGGCCTGTTACCTCATTGCCATGCTGCTGCGTTATTTCGAGCAGCGCCTGGCGATCCGCCGTTAG	MNYQLNFAAVWRDFDTLLAGLGLGLSLALVSIAIGCVIGLAMAFALLSKHRLLRVLASVYVTVIRNTPILVLILLIYFALPSLGIRLDKLPSFVITLSLYAGAYLTEVFRGGLLSIHKGQREAGLAIGLGEWQVKAYVTVPVMLRNVLPALSNNFISLFKDTSLAAAIAVPELTYYARKINVESYRVIETWLVTTALYVAACYLIAMLLRYFEQRLAIRR	PGPT0000725_664	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GLUTAMINE_TRANSPORT,PGPT0000725-glnP-K10037	NA	NA
D1-36_02015	663	tcyB	COG0765	L-cystine transport system permease protein TcyB	ATGTACGAATCCCCCAGTTGGTTGCACGAGTTGTGGGTCGCCCGAGACACTTTGTGGAGTGGCTTCCTGGCCAGCGTGCAATGCTCGGCGCTGGCGATTGTGTTGGGCACATTGATCGGTCTCTTCGCCGGGTTGGCGCTGACATACGGGCGGGTCTGGATGCGCGCGCCGTTTCGGTTCTATGTCGACTTGATCCGCGGTACGCCGGTGTTCGTGCTGGTGCTGGCTTGCTTCTACATGGCGCCGGCCCTGGGCTGGCAGATTGGTGCGTTCCAGGCCGGTGTGCTGGGCCTGACGCTGTTCTGCGGCTCTCACGTGGCCGAGATCGTGCGCGGCGCCCTGCAGGCGTTGCCCCGTGGGCAGATGGAAGCGAGCCAGGCCATTGGCCTGACATTCCAGCAGGCGCTGGGCTACGTGCTGTTGCCCCAGGCGTTGCGGCAGATCCTGCCGACCTGGGTCAATTCCTCCACCGAGATCGTCAAGGCCTCGACCCTGCTGTCGGTGATCGGTGTGGCCGAGTTGCTGCTCAGCACCCAGCAGATCATCGCCCGGACGTTCATGACCCTGGAGTTCTACCTGTTCGCCGGTTTTCTCTTTTTCATCATCAATTACGCCATCGAGTTGCTCGGGCGGCACATTGAAAAGCGGGTGGCCTTGCCATGA	MYESPSWLHELWVARDTLWSGFLASVQCSALAIVLGTLIGLFAGLALTYGRVWMRAPFRFYVDLIRGTPVFVLVLACFYMAPALGWQIGAFQAGVLGLTLFCGSHVAEIVRGALQALPRGQMEASQAIGLTFQQALGYVLLPQALRQILPTWVNSSTEIVKASTLLSVIGVAELLLSTQQIIARTFMTLEFYLFAGFLFFIINYAIELLGRHIEKRVALP	PGPT0020795_9020	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
D1-36_02016	789	glnQ_7	COG1126	Glutamine transport ATP-binding protein GlnQ	ATGACTGATATTTCCCTCTCCAACGCCCAACCGTTGCTGGACATTCGTGGCCTGCGCAAACAATACGGCCCGCTGGAAGTGCTCAAGGGCGTTGACCTGAGCATGCAGCGCGGCAACGTGGTCACGCTGATCGGCTCCAGTGGTTCGGGCAAGACCACGCTGCTGCGTTGCGTCAACATGCTGGAAGAATTCCAGGGCGGCCGGATCATGCTCGACGGCGAGTCCATCGGCTATGACGAGGTGGACGGCAAGCGTGTGCGCCACCCCGAGAAAGTCATCGCCCGGCACCGGGCCATGACCGGCATGGCCTTCCAGCAATTCAACCTGTTCCCGCATCTGACCGCGTTGCAGAACGTCACCCTGGGCCTGCTCAAGGTGAAAAAACTGCCCAAGGACGAAGCCGTGGCCCTGGCCGAAAAATGGCTGGAGCGGGTCGGCCTGCTGGAACGGCGCGATCACTTCCCCGGTCAGTTGTCCGGCGGTCAGCAGCAGCGCGTGGCGATTGCCCGGGCGATTGCGATGAACCCGAGCCTGATGCTGTTCGACGAAGTGACCTCGGCCCTGGATCCGGAACTGGTCGGCGAAGTATTGAACGTGATCAAGGGCCTTGCCGAAGACGGCATGACCATGCTGCTGGTGACCCACGAGATGCGCTTTGCCTTCGAAGTTTCGGACAAGATCGTCTTCATGAACCAGGGCCGCATCGAAGAGCAGGGGCCGCCGAAGCAATTGTTCGAGCGACCGCAATCGCCGCGCCTGGCGGAATTCCTCAAGAACACCCGTTTTTAA	MTDISLSNAQPLLDIRGLRKQYGPLEVLKGVDLSMQRGNVVTLIGSSGSGKTTLLRCVNMLEEFQGGRIMLDGESIGYDEVDGKRVRHPEKVIARHRAMTGMAFQQFNLFPHLTALQNVTLGLLKVKKLPKDEAVALAEKWLERVGLLERRDHFPGQLSGGQQQRVAIARAIAMNPSLMLFDEVTSALDPELVGEVLNVIKGLAEDGMTMLLVTHEMRFAFEVSDKIVFMNQGRIEEQGPPKQLFERPQSPRLAEFLKNTRF	PGPT0020790_1337	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
D1-36_02017	390	yabJ_1	COG0251	2-iminobutanoate/2-iminopropanoate deaminase	ATGAGCATTACCCGTTACGGCACCGGCAGCACCGCAGGCGGCGGCCAGCCACGGCCCTTCGCCCGCGCCGTGGAGGCCGATGGCTGGCTGCACGTGTCCGGCCAGGTGCCGGCAGTGAACGGCGAAATCATCGTTGGCGGTATCGTCGAGCAGACCCACCAGACCATGAAGAACCTGATCGCCATTCTCCAAGAGGCCGGTTATGGCCTGGAAGATGTGGTTCGCTGCGGTGTCTGGCTGGAAGACCCGCGGGATTTCTGGAGCTTCAACAAGGTGTTCGGTGAGTATTTCAGCCCGGAACACGCCCCGGCGCGGGCGTGTGTGCAGGCGAGCATGATGGTCGATTGCAAGGTCGAGATCGACTGTGTGGCCTACAAGAAAAAGGCCTGA	MSITRYGTGSTAGGGQPRPFARAVEADGWLHVSGQVPAVNGEIIVGGIVEQTHQTMKNLIAILQEAGYGLEDVVRCGVWLEDPRDFWSFNKVFGEYFSPEHAPARACVQASMMVDCKVEIDCVAYKKKA	PGPT0020030_4268	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020030-ridA|tdcF-K09022	NA	NA
D1-36_02018	765	xynR_2	COG1414	HTH-type transcriptional regulator XynR	ATGACCGAAGACACCATCAAACGCCGGGCCCGGGGATTGGATCGGGCGTTCGATATCCTCGATTTCCTCAAGGAGATCGGCCAGCCGTTGCGCCCGAACGACATCGCCAGCGGCATCGGCAGCCCCAAGTCCACGGTCTATGAGCTGGTGGCGTCGCTGCTGGAGCGTCGCATCCTCGAGCCGGTGGGCAAGGATGGCCATGTCTACCTGGGGCGCCAGTTGTACTTTCTCGGCCAGGCGCATTTGCGGCATTTCGACCTGAGCCGCGAAGCCGACCAGGCCTTGCAGGACATCGTCCGGCAGACCCGGGAAACCGCGCAGATGTGTCTGCTCAACGGGCGCAAATACACGGTCGCGCTGATGAAGGAGGGCGAGCGGCACTTTCGCATCTCTTCGGACATCGGTGAAAACGCGCCGATCCCCTGGACGGCCTCCGGTCGCCTGTTGCTGGCGCATCTGAGCGACCAGCAGATCATCGACCTGATCGACCCCAATGACTTCATCCTGCCGGACGGCGAACGCCTGCCGCTGGAGCGGTTTCTAGGAGAGATCCGCCAGGCCGGCATCGATGGATTTTTCTCCTTCGATAGCGTTGCCGACACCTTCACCCACTGCTTCGCCGCACCGGTCAAAGACCCCAACGGCGTGGCCATCGCGACCCTGTGCATCGTCGCCCCGAGGGCTGACGCCAAGAACAATTACGCCGACTACCGCCGGGTGCTGATCGAAAGCGCCAACCACCTGGCCCGTCGCATCAACGAATAG	MTEDTIKRRARGLDRAFDILDFLKEIGQPLRPNDIASGIGSPKSTVYELVASLLERRILEPVGKDGHVYLGRQLYFLGQAHLRHFDLSREADQALQDIVRQTRETAQMCLLNGRKYTVALMKEGERHFRISSDIGENAPIPWTASGRLLLAHLSDQQIIDLIDPNDFILPDGERLPLERFLGEIRQAGIDGFFSFDSVADTFTHCFAAPVKDPNGVAIATLCIVAPRADAKNNYADYRRVLIESANHLARRINE				NA	NA	NA	NA	NA
D1-36_02019	1218			D-threonine aldolase	ATGTCTTCTGCCATTACTAACGCGGCCGTCGAGAAGGGCGCCGCGCCCATCGGCGCTCATTTGCTGCGGGACGTGAGCCTGCCGGCGCTGGTGCTGCATCGCGAGGCCCTGGAGCACAACATCCGATGGATGCAGAAATTTGTCAGTGACAGCGGTGCGCAGCTGGCGCCCCACGGCAAGACCAGCATGACCCCGGCGTTGTTTCGTCGCCAGATCGAAGCCGGCGCCTGGGGCCTGACTTTGGCCACGGCGGTGCAGACCCGTGCCGCCTACGCCAATGGCGTACGGCGCGTGCTGATGGCCAATCAATTGGTCGGCAAGCCCAACATGGCATTGATCGCCGATCTGCTGGCCGACCCGGCGTTCGAATTCCATTGCATGGTCGATCATCCGGACAACGTCGCCCAGCTCGGCGCTTATTTCGCTTCTCGCGGCGTGCGGCTGAACGTGATGATCGAATACGGCGTCGTCGGCGGTCGTTGCGGTTGCCGTACAGAAGCCCAGGTGCTGGCCCTGGCCGAGGCCATCGGAGCGCAACCGGCACTGGCATTGACCGGCATCGAAGGCTATGAAGGGGTCATCCACGGTGATCATGCCGTCAGCGGCATCCGCGCATTCGCCGCTTCCCTGGTGGGGCTGGCCATGCAGTTGCAGGACAGCGGCGCGTTTGCCATCGACAAACCCATCATCACCGCCTCGGGGTCGGCCTGGTACGACTTGATCGCTGAATCTTTCGAAGCCCGCAACGCCCAGGGCCGTTTCCTCAGCGTGCTGCGCCCCGGCAGTTACGTGGCCCACGACCATGGCATCTATAAGGAGGCCCAGTGCTGCGTACTGGAGCGGCGCAGCGATTTGCACGAAGGCTTGCGTCCGGCCCTGGAAGTCTGGGCCCACGTGCAGTCGATGCCGGAGCCGGGCTTCGCGGTGATCGCCCTGGGCAAGCGCGACGTGGCCTACGACGCCGGGCTGCCGGTGCCGCTCAAGCGCTACAAGGCGGATTCTGATTCGGTGGCAGGCGACGATGTCAGCGCCTGCAAGGTGACGGCGGTGATGGACCAGCATGCGTTCATGACCGTGGCGCCGGGGGTCGAGCTGCGGGTCGGGGACATCATTGCGTTCGGGACCTCCCACCCGTGCCTGACATTCGACAAGTGGCGGGTGGGGTGCCTGGTGGATGAGGGGTTGCGGGTGGTTGAGAGCATGGAAACCTGTTTCTAG	MSSAITNAAVEKGAAPIGAHLLRDVSLPALVLHREALEHNIRWMQKFVSDSGAQLAPHGKTSMTPALFRRQIEAGAWGLTLATAVQTRAAYANGVRRVLMANQLVGKPNMALIADLLADPAFEFHCMVDHPDNVAQLGAYFASRGVRLNVMIEYGVVGGRCGCRTEAQVLALAEAIGAQPALALTGIEGYEGVIHGDHAVSGIRAFAASLVGLAMQLQDSGAFAIDKPIITASGSAWYDLIAESFEARNAQGRFLSVLRPGSYVAHDHGIYKEAQCCVLERRSDLHEGLRPALEVWAHVQSMPEPGFAVIALGKRDVAYDAGLPVPLKRYKADSDSVAGDDVSACKVTAVMDQHAFMTVAPGVELRVGDIIAFGTSHPCLTFDKWRVGCLVDEGLRVVESMETCF	PGPT0001970_1152	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_SERINE_DEGRADATION,PGPT0001970-dsdA-K01753	NA	NA
D1-36_02020	915	kdgK_1	COG0524	2-dehydro-3-deoxygluconokinase	ATGAGCAACACTAAACCCCGCATCGCCCTGATCGGCGAATGCATGATTGAACTGCAACACCGCGCCGACGGCAGCCTGCGGCAAAGCTTCGGCGGCGACACGCTGAACACTGCGGTGTATCTGTCCCGTGCGTTGGGCGACAAAGGCTCGGTGGATTACGTCACCGCCCTGGGCGACGACTCTTTCAGCGATGCCATGTGCCAAAGCTGGGCTTCGGAAAACATCGGGTTGGAAAGGGTCCAGCGTTTGCCCGGTCGTCTGCCGGGCCTGTATTGCATCCAGACCGATGCGGCGGGCGAGCGGCGTTTCCTGTACTGGCGCAATGAGGCTGCCGTGCGGGATTGCTTCACCACGCCGGCCGCCGTGCCGATCCTGGAAGCGTTGCCCGGATACGACGTGCTGTATTTCAGCGGCATCACCCTGGCGGTGATTGGCGAGCAGGGCCGGCGCAAACTCATCGAGACCCTGATCGAGGCACGGCGCCGGGGCGCGCAGGTGGTGTTCGACAACAATTACCGGCCACGGCTCTGGGCCTCGGTCGAGGCGGCCCGGGCGGCCTATCGCAGCGTATTGCCCTATGTGGAGCTGGCGTTGCTGACCGTGGATGACGAACAAGCACTGTTCGGCCATGCCGACAGTGACGCAGTGTTCATCGCCTATGAGCAACTGGGGACACCGGAAGTGGTACTCAAGCGCGGCGCCGAGGCGTGCCTGATTCGTTGTGATGGCCGGTCTTATGACGTGCCGGCCCAACGGGTAGAGCGCGTGGTGGATACGACAGCGGCGGGGGACTCGTTCAGCGCCGCCTACCTGGCGAGTCGCTTGCTGGGGGGCAGCCCGGCGGAGGCGGCCGAGGCCGGGCATTTGCTGGCGAGCCGGGTGATCCAGGTGCCGGGGGCATTGATACCAAAGTAG	MSNTKPRIALIGECMIELQHRADGSLRQSFGGDTLNTAVYLSRALGDKGSVDYVTALGDDSFSDAMCQSWASENIGLERVQRLPGRLPGLYCIQTDAAGERRFLYWRNEAAVRDCFTTPAAVPILEALPGYDVLYFSGITLAVIGEQGRRKLIETLIEARRRGAQVVFDNNYRPRLWASVEAARAAYRSVLPYVELALLTVDDEQALFGHADSDAVFIAYEQLGTPEVVLKRGAEACLIRCDGRSYDVPAQRVERVVDTTAAGDSFSAAYLASRLLGGSPAEAAEAGHLLASRVIQVPGALIPK	PGPT0018060_3213	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
D1-36_02021	276	ppiC_1	COG0760	Peptidyl-prolyl cis-trans isomerase C	ATGAAAGCCCAAGCCCGCCATATCCTGGTGAAAACCGCCGAAGAAGCCGAACAGCTCAAACAACGCATCGCCAAGGGCGAAGCGTTCGACGTGTTGGCAAAGAAATACTCCACCTGCCCCTCCGGCAAGCGCGGCGGCGACCTGGGTGAAGTGCGGCCCGGGCAAATGGTCGGCGCCATCGACGCGGTGATCTTCAAGAAACCACTGCGGGTGGTGCATGGGCCGATCAAGAGCAAGTTTGGCTATCACCTGGTGCAGGTGTTTTACCGGGATTGA	MKAQARHILVKTAEEAEQLKQRIAKGEAFDVLAKKYSTCPSGKRGGDLGEVRPGQMVGAIDAVIFKKPLRVVHGPIKSKFGYHLVQVFYRD	PGPT0000050_2874	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-ATMOSHPHERIC_NITROGEN_FIXATION	N-FIX-NITROGENASE_BIOSYNTHESIS,PGPT0000050-nifM-K03769	NA	NA
D1-36_02022	2538	rcsC_9		Sensor histidine kinase RcsC	ATGAATGCAGTACCTGCCAGCAGCGACACACAGCAGTTGATCGCCCGTCTGGACTGGACTTCCAGCCCGCTGGGCGCCCAAGAAACCTGGCCCCCGAGCCTGCGCACCGCCGTGGACATCGTGGTCCATTCGCCCATGCCGATGGCCGTGCTGTGGGGGCCGCAGTTGATCCATCTGTACAACGACGCCTATGCGCGATTGGTCGGCGACAAGCACCCCAGGGCGTTTGGCCAGCCAACCCACACGGCCTGGCCCGAACTTCGCAGCGAAACCGAAGGGGTTTATCGCAGCGTGTTGCAGGGCCGGGTGCGCACCTGCCGCGATCAACGTTGGCGCATGCCATTTGGCGGCCGCCTCTGCGATGTCTGGCTGGACCTGACCTACAGCCCGATCCATGACGAAAACGCCAGCGTCGCCGGAATACTGATCACTGCCATCGAGACGGGCGAGCGGCGACGCCTGGCTCAGGAATTCGAACGGCGCTCCGAGGCCAGCCTCAAGGCCCAGCAGGAAAGCGAAGAACGCTTGCAACTGGCCTTGGCGGCCACCGATGCGTTGGGCACCTGGGACTGGGACATCGGCGAGGATCGCTTCATCGCCGATGCGCATTTTGCCCTCCTCCATGGCGTCGACCCGGCCCTGTCACGGCAATTGCCCATCAGCGCCTATCTCGAGGGCGTCCACCCGGAAGATCGGGCGATGGTTGCGCGCAGCATCAAGCACTGCATCACCCATGGCACCGAGTACGCCGAGGAGTATCGGCTGCAGCAGCCCCACGGCGAGCTGCGCTGGGTGTTCGTGCGTGGACGTTGCTACAAGGATCGCCATGGCCGGCCCAAGCGCTTTCTCGGCGCGGCGCTGGACCTGACCGAACGCAAGCGCACCGAACATGCCTTGCGCCAGAGCCAGACCGAGCTGCAACTGATCATCAACGCCATGCCGGTGCTGATCGGCTACGTCGACCGCGAGGAGCGTTTCCGGCTGAACAACAGTGCCTATCTGAATTGGTACGGGCTGACGCCGCAAGAGCTCTACGGCAAGACCATCCGTGAGGTCATCGGCGACGAGGCCTACGCCGCCCGAGCCGAACAGATCGCCGGCGCCCTGGTGGGCAAGCCGTGCAGTTTCACCGTAGAGTCGCCCCACCGCGACGGCCGGCCGCGCCATGCGTTGATCAACTACCTGCCACGCCGTGGCGCCGACGGATCGGTGAACGGTTTTTACATTTTTGTCATCGACGAAACCGAGCGCAAGAAAACCGAGGAAGCCCTGCGCCACCTCAACGAAACGCTGGAAGAAAGGGTGATCGCCCGCACCCAGCAGCTAGCCGAGGCCAACCATCGACTGCAAAGCGAGATGTTCGAACGCGAACGCGCCGAAGAAGCCCTGCGCCATGCGCAGAAGATGGAAGCCGTGGGCCAACTCACCGGCGGCATCGCCCATGACTTCAACAACATGCTCACTGGCATCCTCGGCAGCCTCGACTTGATGCAGCGCTACATCGCCTCCGGTCGTGCCGCCGAGATCGGCCGTTTTACCGAAGCTGCGATTTCATCGGCCAACCGCGCCGCCGCCCTGACCCACCGCCTGCTGGCTTTTTCCCGACGCCAGTCACTGGACCGCAAGCCTCTGGATGCCAATACGCTGGTTCGCTCGCTTGAAGACCTGCTGAGCCGCACCACCGGCGATCACATTGTGCTGCGACTGCAACTGGCCGGCGAGTTGTGGCCGGTCAGCACCGATGCCAGCCAATTGGAAAACGCCTTGCTCAACCTGGTCATCAACGCCCGGGACGCGATGCCCGATGGCGGCGAGTTGAACATCGAGACCGCCAACGTCTACCTCGACGGCAGCGACATCAGCACGCTGGAGCCGGTGAAGGCCGGCGATTACGTGATGATCGCCGTGCGCGACAACGGCAGCGGCATGACCCCCGCCGTGTTGGCAAAGGCCTTCGATCCGTTTTTCACTACCAAGCCCATCGGCCAGGGCACCGGCCTGGGGCTGTCGATGATTTATGGTTTCGCCCAGCAATCTGGCGGTCACCTGAGCCTGGACAGTGTCCCGGGCCAAGGTACGCGCGTGCAGTTGTACCTGCCGCGCCTGCACGTCGCGCCGGCGGAACAGGCAACGGCACCGACTACCACCGACGCTCCGCCCGCCATCGCCGGCGAAACGGTGTTGCTGGTGGAGGACGAACCGGCGGTGCGCATGCTGGTGCTCGACCTGCTCGCCACCCTGGGCTACACCGCCCTCGAAGCCGAGGACGCCAAGCGGGCGCTGGTATTGCTCGAATCCGAGCAACGCATCGATCTGCTGGTGACCGACGTCGGTCTGCCGGGCATGAACGGCCGCCAGCTGGCGGAAATCGCCCGTCAGCACCGGCCCGGCTTGAAGGTGCTGTTCATGACCGGCTATGCGCAGAAAGCCGCCGAACGCCAAGGTTTCCTGGATCAGGGCATGGACATGGTCGCCAAGCCGTTTACCCTGGACCTGTTGGCCAACAAGATTCGGACGATGATCAACCATGACCACTGA	MNAVPASSDTQQLIARLDWTSSPLGAQETWPPSLRTAVDIVVHSPMPMAVLWGPQLIHLYNDAYARLVGDKHPRAFGQPTHTAWPELRSETEGVYRSVLQGRVRTCRDQRWRMPFGGRLCDVWLDLTYSPIHDENASVAGILITAIETGERRRLAQEFERRSEASLKAQQESEERLQLALAATDALGTWDWDIGEDRFIADAHFALLHGVDPALSRQLPISAYLEGVHPEDRAMVARSIKHCITHGTEYAEEYRLQQPHGELRWVFVRGRCYKDRHGRPKRFLGAALDLTERKRTEHALRQSQTELQLIINAMPVLIGYVDREERFRLNNSAYLNWYGLTPQELYGKTIREVIGDEAYAARAEQIAGALVGKPCSFTVESPHRDGRPRHALINYLPRRGADGSVNGFYIFVIDETERKKTEEALRHLNETLEERVIARTQQLAEANHRLQSEMFERERAEEALRHAQKMEAVGQLTGGIAHDFNNMLTGILGSLDLMQRYIASGRAAEIGRFTEAAISSANRAAALTHRLLAFSRRQSLDRKPLDANTLVRSLEDLLSRTTGDHIVLRLQLAGELWPVSTDASQLENALLNLVINARDAMPDGGELNIETANVYLDGSDISTLEPVKAGDYVMIAVRDNGSGMTPAVLAKAFDPFFTTKPIGQGTGLGLSMIYGFAQQSGGHLSLDSVPGQGTRVQLYLPRLHVAPAEQATAPTTTDAPPAIAGETVLLVEDEPAVRMLVLDLLATLGYTALEAEDAKRALVLLESEQRIDLLVTDVGLPGMNGRQLAEIARQHRPGLKVLFMTGYAQKAAERQGFLDQGMDMVAKPFTLDLLANKIRTMINHDH				NA	NA	NA	NA	NA
D1-36_02023	1119	pilT_1	COG2805	Twitching mobility protein	ATGGAAATTGATCCTTTACTGCGAGTCCTGGCAAGCCAGGACGGCTCCGACCTCTACATGTCCACCGGCGCGCCGCCCTGCGCGCGTTTCGAAGGTGTGCTCAAGCCGCTGAGCAACCAGGCGTTCAAGGTTGGCGACATCGCTGGGCTTGCCGAGTCATTGATGGACGCCGAACAGCGCCTTGAGTTCGATCGGGAATTGGAAATGAACCTGGCGATCTCCCTGGCCGGTGTCGGACGGTTTCGCGTCAACATCTTCAAACAGCGCAATGACGTGTCCATGGTCATACGCAACGTCAAGCTGGATATCCCGCGTTTCGAAGACCTGAAGCTGCCCAAGGTGCTGCTCGAAACCATCATGCACAAACAAGGGCTCATGCTGTTCGTCGGCGCCACGGGCTCGGGCAAATCCACATCACTGGCGGCGCTGATCGACTACCGCAACCGCAACAGCAGCGGCCATATCATCACCATCGAGGACCCGGTGGAATATATTCACCGGCACAAGAAATCCATCGTCAACCAGCGAGAAGTCGGTGTGGATACCCGCAGCTTCCACGCCGCTCTCAAGAACACCCTGCGCCAGGCGCCGGACGTAGTGCTGATCGGCGAAATACGCGACCGCGAGACCATGGAACACGCCTTGGCCTTCGCCGACACCGGCCATCTGGTGATTTCCACCCTGCATGCCCACAACGCCAACCAGGCCCTGGATCGGGTGGTCAATTTCTTCCCGGAAGAACGCCGGCCGCAACTGCTGCAGGATCTGGGCAACAACCTCAAGGCGTTTGTCTCCCAGCGGCTGGTGCGCACCCGCACCGGCCAGCGGCGGGCGGCCGTGGAGGTGATGCTCGGCTCGCCCACGGTGGCCGACCTGATCCGTCGCAACGAGTTGGGCGAGCTCAAAGGCATCATGGAAAAATCCGAGGAACTGGGGATGCAAACGTTCGACCAGGCGCTGTTCAACCTGGTGGTGGAAGGGGCGATCGATGAAGAAGAGGCGTTGAAAAACGCCGACTCTGCGAACAATCTGCGCTTGCGGCTCAAGCTCCATGCCGAATCGGGAGCGGCGCCACCGGCTGAGCCGTCGGCGGGCGGGGAATGGGGGCTCATGGACTGA	MEIDPLLRVLASQDGSDLYMSTGAPPCARFEGVLKPLSNQAFKVGDIAGLAESLMDAEQRLEFDRELEMNLAISLAGVGRFRVNIFKQRNDVSMVIRNVKLDIPRFEDLKLPKVLLETIMHKQGLMLFVGATGSGKSTSLAALIDYRNRNSSGHIITIEDPVEYIHRHKKSIVNQREVGVDTRSFHAALKNTLRQAPDVVLIGEIRDRETMEHALAFADTGHLVISTLHAHNANQALDRVVNFFPEERRPQLLQDLGNNLKAFVSQRLVRTRTGQRRAAVEVMLGSPTVADLIRRNELGELKGIMEKSEELGMQTFDQALFNLVVEGAIDEEEALKNADSANNLRLRLKLHAESGAAPPAEPSAGGEWGLMD	PGPT0015880_977	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015880-pilU-K02670	NA	NA
D1-36_02024	1956	acsA_1	COG0365	Acetyl-coenzyme A synthetase	ATGTCCGACATCCTTTGGCACCCCAGCCCCGAACGCATCGCCCAGTCGCGAATGGACGCCTTTCGCCGGTTCGTCAACGAACGGCACTCGCTGCAACTCAACGACTACCCAACCCTGCATGCCTGGAGCACCGACCACCGCGAAGCCTTCTGGCAGGCCATCGTCGACTTTTTCGAGATCCGCTTCCATCAAGCGCCTGGCGCGGTGCTCGACGAAGGCCCGCAGATGCCCAGTGCCCGCTGGTTCCCAGGGGCGACGCTGAATTTCGCCGAACACTTGCTGCGTCGCCGCGACAGCGCCGTGGCAGTGGTCGCACTCGATGAAAACGGCGGCGAAGAAACGCTGACCTGGGCCGATCTCGCCGCCCATGTCGCCGGCCTGCAAAAAAGCCTGCAAGGCGCTGGCGTGACCCAGGGCGATCGGGTCGCCGCTTGCATGCCCAACACCTGGCAGACGCTGGTGTGCATGCTCGCCACCACCAGCCTGGGCGCCATCTGGTCATGTTCATCGCCGGATTTCGGCACCCAGGGCGTCATCGACCGGTTCGGTCAGATAGAACCCAAGGTCCTGATCACCTGCGCCGGTTATCGCTACGCCGGGAAAACCATCGACCAGCGGCCCAAGGTCAACGAAATCCTCGAACGGCTACCGTCGCTGCAACAATTGATCGTACTGCCCTACGCCCAGCCCGACGCCCGCGTCGAAGATTTCAAGACCCCGGCCCGCGTGGCCCTGTGGGACGGTTTCTACCAATGCGGCGGCGAGCCGGTGTTCAACCCCGTGCCGTTCGATCACCCGCTGTACATTCTCTATTCCAGCGGCACCACCGGGGTGCCGAAGTGCATCGTCCACGGCACCGGTGGCGTGCTGCTGCAACATCTCAAGGAACATGGCCTGCACGTCGACCTGGGCCCCGAAGACCGGCTGTTCTACTACACCACCTGCGGCTGGATGATGTGGAATTGGCTGGTGTCGGCGCTGGCCGTGGGCAGCGCGGTTGTGCTCTATGAAGGGTCGCCGTTCCACCCCAGCCCGGAACGCCTGCTCGACCTGATCGACCGACAAGGCATCAGCGTATTCGGCACCAGCCCCAAATACCTGGCCGCCCTGGAAAGCCAAGGCATCAAGCCACGCCAGACCCACGACCTGGGTAGCCTGAGGACGATCCTGTCCACGGGATCAGCCTTGGCGCCCCACAGTTACGATTATGTCTACCGCGACTTCAAGGCCGATGTTTGCCTGGCCTCGATGTCCGGCGGCACTGACATCGTGTCGTGCTTCGTCAACGGCAATCCGCTGGCCCCTGTGCGCCGCGGCGAGATGCAAGGCAAGAGCCTGGGCATGGCCGTGCAGGTATGGAACGAAGCCGGCGAAGCGGTGGTTGGCGAAAAAGGCGAACTGGTCTGCACCCGGCATTTCCCGGCGATGCCCATCGGGCTGTGGAATGATCCCCAGCGGGAGAAACTTCGCGCCTCCTATTTCAGCCAGTTCCCGGGCGTGTGGGCCCAGGGGGACTACGCCGAAGAGCTGCCCCACGGCGGCCTGCTGATCCACGGCCGCTCCGACGCGGTGCTCAACCCCGGTGGCGTGCGCATCGGCACGGCGGAAATCTATCGGCAGGTGGAAAAAGTCGAGGAAGTCCTGGACAGCGTCGCCATCGGCCAGCAATGGCAGGGTGATGTGCGGGTGGTGCTGTTTGTGCGCCTGCGAGAGGGCTTGGTGCTGGACGACGCCTTGGAGCGGAAGATCCGCCAGGTCATCCGCGCCAACACCACACCGCGCCATGTGCCGGCGAAAATTCTCGCGGTCAACGATATCCCACGCACCATCAGCGGCAAGGTGGTGGAACTGGCGGTGCGCAACGTGGTGCATGGCGAGGCGGTAAAGAACACCGATGCACTGGCCAATCCCGAGGCGCTGGAGCAGTTTCGTGGGCGGGTGGAGCTTGCGACCTGA	MSDILWHPSPERIAQSRMDAFRRFVNERHSLQLNDYPTLHAWSTDHREAFWQAIVDFFEIRFHQAPGAVLDEGPQMPSARWFPGATLNFAEHLLRRRDSAVAVVALDENGGEETLTWADLAAHVAGLQKSLQGAGVTQGDRVAACMPNTWQTLVCMLATTSLGAIWSCSSPDFGTQGVIDRFGQIEPKVLITCAGYRYAGKTIDQRPKVNEILERLPSLQQLIVLPYAQPDARVEDFKTPARVALWDGFYQCGGEPVFNPVPFDHPLYILYSSGTTGVPKCIVHGTGGVLLQHLKEHGLHVDLGPEDRLFYYTTCGWMMWNWLVSALAVGSAVVLYEGSPFHPSPERLLDLIDRQGISVFGTSPKYLAALESQGIKPRQTHDLGSLRTILSTGSALAPHSYDYVYRDFKADVCLASMSGGTDIVSCFVNGNPLAPVRRGEMQGKSLGMAVQVWNEAGEAVVGEKGELVCTRHFPAMPIGLWNDPQREKLRASYFSQFPGVWAQGDYAEELPHGGLLIHGRSDAVLNPGGVRIGTAEIYRQVEKVEEVLDSVAIGQQWQGDVRVVLFVRLREGLVLDDALERKIRQVIRANTTPRHVPAKILAVNDIPRTISGKVVELAVRNVVHGEAVKNTDALANPEALEQFRGRVELAT				NA	NA	NA	NA	NA
D1-36_02025	777	bdhA		D-beta-hydroxybutyrate dehydrogenase	ATGACAACCACCCTTTCCGGCAAGACGGCCCTGGTCACCGGCTCCACCAGCGGCATCGGCCTGGGCATCGCCCTGAGCCTGGCCAAGGCCGGCGCCAACCTGATCCTCAACGGCTTTGGCGATGCTTCGGCGGTGGTCGCCGAAGTCGCTCGACACGGCGTCAAGGTCGGCCATCATCCGGCCGACGTCAGCGACCCCGCGCAGATCGCCGACATGCTCGCCTACGCCGAGCGCGAATTCGGCGGCGTCGACATCCTGGTGAACAATGCCGGCATCCAGCACGTGGCGGCCGTGGAGGATTTCCCGGTGGAGCGCTGGGATTCGATCATTGCGATCAACCTGTCCTCGGTGTTCCACGCCACCCGCCTGAGCCTTCCGGGCATGCGCGCCAAGGGCTGGGGACGGATCGTCAACATTGCCTCGGTGCATGGCCAGGTCGGTTCGGTGGGCAAGGCGGCGTACGTCGCGGCCAAGCACGGGGTGATCGGGTTGACCAAGGTAGTGGGCCTGGAGACTGCCGCCAGCAACGTCACGTGCAACGCCATCTGCCCGGGCTGGGTCCTGACGCCGCTAGTGCAGAAGCAGATCGACGACCGCATCGCCACGGGTGTGGACCCGCAACAGGCCCAGCATGATCTGCTGGCCGAGAAGCAACCGTCCCTGGAGTTCGTGACCCCGCCGCAGTTGGGTGAGCTGGTGCTGTTCCTGTGCAGTGAAGCGGGCAGCCAGGTGCGGGGCGCGGCGTGGAATATTGATGGTGGGTGGTTGGCTCAATAA	MTTTLSGKTALVTGSTSGIGLGIALSLAKAGANLILNGFGDASAVVAEVARHGVKVGHHPADVSDPAQIADMLAYAEREFGGVDILVNNAGIQHVAAVEDFPVERWDSIIAINLSSVFHATRLSLPGMRAKGWGRIVNIASVHGQVGSVGKAAYVAAKHGVIGLTKVVGLETAASNVTCNAICPGWVLTPLVQKQIDDRIATGVDPQQAQHDLLAEKQPSLEFVTPPQLGELVLFLCSEAGSQVRGAAWNIDGGWLAQ	PGPT0008310_1840	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008310-bdh-K00019	NA	NA
D1-36_02026	1392			hypothetical protein	ATGAGTGTGATCATTGCCTTGGCAGCCCTCACGCTGCTGATGGTTGCCGCCTACCGTGGCTACAGCGTCATTCTTTTTGCCCCCATCGCCGCCCTCGGCGCGGTGTTGCTCACCGATCCGTCCGCCGTTGCCCCAGCCTTCACCGGGGTGTTCATGGACAAGATGGTCGGCTTCATCAAACTCTACTTCCCGGTGTTCCTGCTCGGCGCCGTGTTCGGCAAGCTGATCGAGCTGTCGGGGTTTTCCCGCTCCATCGTCGCGGCGGCGATTCGCCTGCTGGGCACGCGCCAGGCCATGCTGGTGATCGTGCTGGTGTGCGCGCTGCTCACCTATGGCGGCGTGTCGCTGTTCGTCGTGGTCTTTGCGGTTTATCCGTTCGCGGCCGAGATGTTCCGCCAGAGCAACATTCCCAAGCGGCTGATCCCGGCCACCATCGCCCTCGGCGCTTTTTCGTTCACGATGGACGCCCTGCCCGGCACGCCACAGATCCAGAACATCATCCCCAGCACCTTCTTCAATACCACTGCCTGGGCAGCGCCGTGGCTGGGCGTGATCGGTACGATATTCGTGTTCAGCTTCGGCATGCTGTTCTTGCAGCGCCAACGCAACAAGGCCCAGCGCACGGGCGAAGGCTACGGTACCGAGCTGCGCAACGAGCCGGAAACCGCCGAAGACATCAAGCTGCCCAACCCCTGGATCGCCGTTTCGCCATTGCTGGCGGTAGGGGTCATGAACCTGCTGTTCACCCAGTGGATCCCACAGTGGTACGGCAAGACCCATAGCCTGGCCCTGCCGGGCATGGCGGCGCCGGTGACCAGCGACATCGCCAAGCTCACGGCGATCTGGGCCGTGCAAGCGGCCTTGCTGGTGGGCATCGTCATGGTGCTGTTGTTCGGCTTCCGAGCCATTCGCAGCAAGCTGGCCGAAGGCAGCAAGAGCGCGGTGGGTGGTGCGTTGCTCGCGGCCATGAACACCGCGTCGGAATACGGTTTCGGTGCGGTGATCGCCTCCCTGCCGGGCTTCCTGGTGCTCGCCGACTGGCTCAAGAACATCCCCAATCCGCTGGTCAACGAAGCCGTGACCGTGACGCTGCTGGCGGGCATCACCGGGTCCGCGTCGGGTGGCATGAGCATCGCCCTTGCGGCGATGTCGCAAACCTTCATCAGCGCCGCCAACGCCGCCAACATTCCACTGGAAGTGCTGCACCGGGTAGCGGCCATGGCCAGCGGCGGCATGGACACCCTGCCCCACAACGGCGCGGTCATCACCTTGCTGGCGGTCACGGGCCTGACCCACCGTGAAGCCTACAAAGACATTTTCTGTATTACGCTGATCAAGACCCTCGCGGTGTTCTTCGTGATCGGTGTGTTCTACGCCACTGGCATTGTGTGA	MSVIIALAALTLLMVAAYRGYSVILFAPIAALGAVLLTDPSAVAPAFTGVFMDKMVGFIKLYFPVFLLGAVFGKLIELSGFSRSIVAAAIRLLGTRQAMLVIVLVCALLTYGGVSLFVVVFAVYPFAAEMFRQSNIPKRLIPATIALGAFSFTMDALPGTPQIQNIIPSTFFNTTAWAAPWLGVIGTIFVFSFGMLFLQRQRNKAQRTGEGYGTELRNEPETAEDIKLPNPWIAVSPLLAVGVMNLLFTQWIPQWYGKTHSLALPGMAAPVTSDIAKLTAIWAVQAALLVGIVMVLLFGFRAIRSKLAEGSKSAVGGALLAAMNTASEYGFGAVIASLPGFLVLADWLKNIPNPLVNEAVTVTLLAGITGSASGGMSIALAAMSQTFISAANAANIPLEVLHRVAAMASGGMDTLPHNGAVITLLAVTGLTHREAYKDIFCITLIKTLAVFFVIGVFYATGIV				NA	NA	NA	NA	NA
D1-36_02027	1416	norR_1		Anaerobic nitric oxide reductase transcription regulator NorR	ATGAACTCCACCGAAAGCCTCAAGGATTACAAGCGCGTGCGTACGCTGGCGATCCGCTCGTTGTTCGAAATCATCGAGCAGTCCAGCGAAGGCACGGTGATCGTCGACCGCGATGCAAACATCGTCTGGATGAACGAGCGCTACGCTCGTCGCTTCGGCCTGAATTCGGCGCAAGAGGCCATCGGCCGGGCTTGCGAAAGCGTCATTCCGGGCAGCTTGTTGCGAGAGGTGGTGCGTACCGGGCGGCCGATCCTGCTGGACATGCAGGACACGCCCAAGGAACCGCTGGTGGTGATGCGCCTGCCGATCCATGACAGTGCCGGCGCGGTGATCGGCGCCATCGGTTTTGCCCTGTTCGACGAGTTGCGCAGCCTGTCGCCGATGCTCAAACGCTACCTGAGCATGCAGGAAGAACTGGCCTCTACCCGCTCGCTGTTGCGGGCACGGCAGACCAAGTACAACTTTGCCCATTTCATCGGCACCAGCGCTGCGGGACTCGAGGTCAAGCGCCGTGCCCGACGCAGCGCCAGCACCGACTCCCCGGTATTGCTCCTCGGCGAAACCGGCACCGGCAAGGAGCTTCTGGCCCAGGCGATTCACGGTGCTTCGCCGCGTGCGCACAAGGCGTTTGTCAGCATCAACAGCGCCGCCATCCCCGAATCCTTGCTGGAAGCCGAATTCTTCGGCACCGCGCCAGGCGCCTTCACCGGTGCCGACCGCAAGGGCCGCGCCGGCAAGCTGCAAATCGCCCAGGGCGGCACATTGTTCCTCGACGAAATCGGCGATATGCCGCTGCCCTTGCAAAGCAAACTGCTGCGCGTGTTGCAGGAAAAGGAATACGAACCGGTCGGCTCCAATGAAGTACTGCAAAGCGATGTTCGGGTGATTGCCGCGACCTCCACCAACCTGGAGGCGGCGATCCAGCGTGGCGAATTCCGGGCGGATCTGTATTACCGCCTCAATGTGCTGCCCATCCAGGTCCCGCCGCTGCGCGAACGCCTGGATGACCTGCCGGCCCTGAGCGAGGCGATCCTCGAAGAATTGCGCAGCCAGCACGAACTGAATCCCGACGCCCTCGACCTGCTGGGCCAGCACGCCTGGCCGGGCAACATCCGGGAGTTGCGCAACGTGCTGGAACGGGCCGCGCTGCTCAGCGACGACCTGATGCTCACCGCCGCCGACATTCGTGCCGCCATCGGTACTTTCACGCCGGTGGTACGCGCGGCGAGTCCGAGCCTCGAGCCGTTGCCCCAGGAAACCTTCAGCCAGGCCCGGGCCCGATTCGATCGACATTTGATCGAGACCACCCTCGCGCAATGCGGTGGGCGGGTGATTGAGGCAGCCGAGCGGTTGGGACTGGGGCGGTCGACGCTTTACAAGAAAATGGTGGCTCTGGGGATTGTTGAGTCTCAATAG	MNSTESLKDYKRVRTLAIRSLFEIIEQSSEGTVIVDRDANIVWMNERYARRFGLNSAQEAIGRACESVIPGSLLREVVRTGRPILLDMQDTPKEPLVVMRLPIHDSAGAVIGAIGFALFDELRSLSPMLKRYLSMQEELASTRSLLRARQTKYNFAHFIGTSAAGLEVKRRARRSASTDSPVLLLGETGTGKELLAQAIHGASPRAHKAFVSINSAAIPESLLEAEFFGTAPGAFTGADRKGRAGKLQIAQGGTLFLDEIGDMPLPLQSKLLRVLQEKEYEPVGSNEVLQSDVRVIAATSTNLEAAIQRGEFRADLYYRLNVLPIQVPPLRERLDDLPALSEAILEELRSQHELNPDALDLLGQHAWPGNIRELRNVLERAALLSDDLMLTAADIRAAIGTFTPVVRAASPSLEPLPQETFSQARARFDRHLIETTLAQCGGRVIEAAERLGLGRSTLYKKMVALGIVESQ	PGPT0019455_175	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERS	PLANT_DERIVED_PROPIONATE|PROPANOATE_UTILIZATION,PGPT0019455-prpR-K02688	NA	NA
D1-36_02028	1581	yejF_1	COG4172	putative ABC transporter ATP-binding protein YejF	ATGAGCGAAAACCTGATCGAAATCCGTGACCTGAGCGTGGCCTTCAACGGCCAGACGGTGGTGCGCAACCTGTGCCTGGACATCCGCCAAGGCGAATGCCTGGCGCTGGTGGGCGAGTCGGGCTCCGGCAAGTCGGTGACGGCCCATTCCATCCTGCAACTGCTGCCGGAAACCGGCACGCGCACCACCGGCAGCATTTGCTATCGCGGCGAAGAACTGGTGGGTGCCGAGGCCAAGACGCTACGGGAACTGCGCGGCAATCGGATCGCAATGATCTTCCAGGAGCCGATGACTTCGCTGAATCCGCTGCACAGCGTCGAAAAGCAGATCGGCGAAACACTGATGCTGCATCGCGGCCTGGGCGGCAAGGCCGCGCGCCAGCGCATCCTGGAATTGCTGGCCCTGGTCGGCATCCAGAAACCCGCCGAACGACTCAAGGCCTATCCGCACCAGCTATCGGGCGGCCAGCGCCAGCGCGTCATGATCGCCATGGCCCTGGCCTGCGAGCCGGAGCTTCTTATCGCCGACGAACCGACCACCGCCCTGGACGTAACGGTGCAGCGCAAGATCCTGCTGCTGCTCAAATCGTTGCAGCAGCGCCTGGGCATGTCCCTGCTGCTGATCAGCCACGACCTCAACCTGGTGCGCAGCATCGCGCAGCGGGTGTGCGTGATGAAGGCCGGGGAGATTGTCGAGCAGGCACCCTGTGAAACCTTGTTCAGCACCCCCCGCCACCCTTATAGCTGCGAATTGCTGAACGCCGAACCGGAAGGCGAAGCGCTGCCCCGGGACGAACGCGAAGACGTCCTGCAAGTGCAGGAACTGCGCGTCAGCTTTCCCCTCGGTGGCGGATTGTTCCGGCGCAAGCAGTACCTGCAAGCCGTGGACGGCATCAGCCTGAATATCCAGCGTGGCAAGACCCTGGGCATCGTCGGCGAATCCGGTTCCGGCAAATCCACCCTCGGCCAGGCCATCCTGCGGCTGATAGAGTCCGAAGGCAGCATTCGCTTCCAGGGCCAGGCGCTTGATCATCTGTCGCATAAAGAGCTTCGGCCATGGCGCAAGCAGATGCAGATCGTCTTCCAGGACCCGTTCGGCAGCCTCAGCCCGCGAATGTCAGTGCAACAGATCATCAGTGAAGGCCTGGAGGTCCACAGCCGGTCCAGTGCCGAGCAATGCGAAGCCCAGGTGATCCAGGCGCTCAAGGAGGTCGGCCTCGACCCGCAGAGCCGGCATCGCTACCCCCACGAGTTTTCCGGTGGGCAGCGCCAACGCATCGCCATTGCCCGGGCATTGGTGCTCAAGCCCGCCCTGATCCTGCTTGACGAACCTACGTCCGCCCTCGACCGCACCGTGCAAAAGCAGGTGGTCGCCCTGCTCCGCCAGCTCCAGGAAAAATACGGCCTGACCTACCTGTTCATCAGTCACGACCTGGCGGTGGTCCGCGCCCTGGCCCACGACATGATCGTGATCAAGGACGGCAAGGTGGTCGAGCAAGGCCCCAGCCATGATGTGTTCGATTCACCCCAGCACCCGTATACCAAGGAGTTGTTGGCGGCGGCGCATCCAGAGTGGGCATAA	MSENLIEIRDLSVAFNGQTVVRNLCLDIRQGECLALVGESGSGKSVTAHSILQLLPETGTRTTGSICYRGEELVGAEAKTLRELRGNRIAMIFQEPMTSLNPLHSVEKQIGETLMLHRGLGGKAARQRILELLALVGIQKPAERLKAYPHQLSGGQRQRVMIAMALACEPELLIADEPTTALDVTVQRKILLLLKSLQQRLGMSLLLISHDLNLVRSIAQRVCVMKAGEIVEQAPCETLFSTPRHPYSCELLNAEPEGEALPRDEREDVLQVQELRVSFPLGGGLFRRKQYLQAVDGISLNIQRGKTLGIVGESGSGKSTLGQAILRLIESEGSIRFQGQALDHLSHKELRPWRKQMQIVFQDPFGSLSPRMSVQQIISEGLEVHSRSSAEQCEAQVIQALKEVGLDPQSRHRYPHEFSGGQRQRIAIARALVLKPALILLDEPTSALDRTVQKQVVALLRQLQEKYGLTYLFISHDLAVVRALAHDMIVIKDGKVVEQGPSHDVFDSPQHPYTKELLAAAHPEWA	PGPT0011640_799	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011640-yejF-K13896	NA	NA
D1-36_02029	1023	yejE_1	COG4239	Inner membrane ABC transporter permease protein YejE	ATGTTCAAGTTATCGCCCCTGGGGCGGCGGCGTTTCGAACGTTTCAGGAAAAACCGTCGCGGCTGGTGGTCGCTGTGGCTGTTCATCGGGCTTTTCGTCTTGACCCTGGGTGGGGAATTGATCGCCAATGACAAGCCCTTGGTGGTGAGCTACCAAGGCTCGTTGTATTTCCCGGTGTTCAAGCGCTACACCGAACAGCAGTTCGGCGGTCAATTGCCGTTCCAGGCTGACTATCGCAGCAGCTATGTGCAGGACCTGATTCACCAGGGCAACGGCTGGCTGCTGTTTCCGCCTATTCCTTTCAGCGACGACACGCCCAACTATGACCTTGAGCGGCCGGCCCCAAGCCCGCCGTCGAGGGTGAACTGGCTGGGCACCGACGACCAGGCACGGGACGTGATGGCGCGGGTCATATTCGGCGCGCGGGTGTCGATCCTGTTCGCCCTGGCGCTGACCGCCATCAGCGCGCTGATCGGCATCGCCGCCGGTGCCCTGCAAGGTTACTACGGCGGCTGGGTGGACCTGCTGGGGCAACGCCTGCTGGAAGTCTGGTCCGGTTTGCCGGTGCTTTACCTGCTGATCATCCTGTCGGGTTTCGTCGAGCCTAATTTCTGGTGGCTGCTGGGTATCATGGCGCTGTTCTCCTGGCTCGCGCTGGTGGACGTGGTGCGTGCCGAATTCCTGCGCGGGCGCAACCTCGAATACGTGAAAGCCGCGCGGGCGCTGGGCCTGACCGACCGCAAGGTCATCGTGCGGCACATACTGCCCAATGCCATGAACGCCACCCTGAGCTACCTGCCGTTCATTCTCACCGGGGCGATCTCCACCCTGACAGCGCTGGATTTCCTGGGATTCGGCATGCCGGCCGGCAGCGCATCCCTGGGTGAGCTGATCGCGCAGGGCAAGCAGAACCTGCAAGCGCCGTGGCTGGGGCTGACGGCGTTTTTTACTTTGGCGCTGATTCTTTCTCTGTTGGTGTTTATCGGCGAAGCGTTGCGAGACGCGTTCGACCCTCGGTCATGA	MFKLSPLGRRRFERFRKNRRGWWSLWLFIGLFVLTLGGELIANDKPLVVSYQGSLYFPVFKRYTEQQFGGQLPFQADYRSSYVQDLIHQGNGWLLFPPIPFSDDTPNYDLERPAPSPPSRVNWLGTDDQARDVMARVIFGARVSILFALALTAISALIGIAAGALQGYYGGWVDLLGQRLLEVWSGLPVLYLLIILSGFVEPNFWWLLGIMALFSWLALVDVVRAEFLRGRNLEYVKAARALGLTDRKVIVRHILPNAMNATLSYLPFILTGAISTLTALDFLGFGMPAGSASLGELIAQGKQNLQAPWLGLTAFFTLALILSLLVFIGEALRDAFDPRS	PGPT0011635_1045	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011635-yejE-K13895	NA	NA
D1-36_02030	1059	yejB_1	COG4174	Inner membrane ABC transporter permease protein YejB	ATGTGGGCTTACATTGCGCGGCGCTTGCTGCTGATCATTCCCACGCTGGTGATCATCCTGCTGGTGAACTTCGTGATCGTCCAGGCCGCGCCAGGCGGGCCGGTGGAGCAGGCGATCGCTCACCTGCAGGGCATTGGCGGCGCCAGCGTCGGCAGCTCGGGCAATGCCATGACCGGTAGCTCCCGCGCCAGCCGAGGCCTGGATCCGCAATTGATCAAGGACATCGAAAAACAGTACGGCTTCGACAAGCCCGCCCACGAACGCTTGTGGCTGATGCTCACCAGCTACGCCCGCCTGGACTTCGGCAAAAGCTTCTTCCGCGGTGCCACGGTCACCGACCTGATTCTGGAGAAAATGCCGGTGACCATCTCCCTCGGGCTCTGGGCGACGCTGATCACCTACCTCGTGTCGATTCCCCTGGGGATTCGCAAGGCGGTACACAACGGTTCGGCATTCGATGTCTGGAGCAGCACCGCAATCATTATCGGCTACGCCATGCCGGCGTTCCTGTTCGCGATGTTCCTGATCGTGATCTTCGCTGGCGGCACCTCGCTCAATTGCCTCCCGGTGCGCGGGCTCGTCTCGGACAACTTCGAGTCCCTTTCGACGCTGGGCAAGGTCGCCGACTATTTCTGGCACCTGGTGCTGCCCGTCACGTCGTTGGTCATCGGCGGCTTCGCTACCCTGACGATCCTGACCAAGAACTCGTTCCTCAACGAAATCACCCGCCAATACGTGGTCACGGCGCGAGCCAAGGGGATGAGTGAACGACGCGTGCTGTATGGACACGTGTTTCGCAATGCGATGCTGCTGGTGGTGTCGGGCATTCCCCAGGCGTTCATCAGCGTGTTCTTCGCCGGTTCTTTGCTGATCGAGGTGATCTTCTCCCTCGACGGCCTCGGACGCATGAGCTATGAGGCCGCCGTGTCCCGGGACTATCCAGTGGTGTTCGGCTCGCTGTTTATCTTCACGTTGTTCGGCCTGCTGATCAAACTCATAGGCGATCTTTGCTACACCTTGGTGGACCCGCGCATCGACTTCGCCGCGAGGAACGCCTGA	MWAYIARRLLLIIPTLVIILLVNFVIVQAAPGGPVEQAIAHLQGIGGASVGSSGNAMTGSSRASRGLDPQLIKDIEKQYGFDKPAHERLWLMLTSYARLDFGKSFFRGATVTDLILEKMPVTISLGLWATLITYLVSIPLGIRKAVHNGSAFDVWSSTAIIIGYAMPAFLFAMFLIVIFAGGTSLNCLPVRGLVSDNFESLSTLGKVADYFWHLVLPVTSLVIGGFATLTILTKNSFLNEITRQYVVTARAKGMSERRVLYGHVFRNAMLLVVSGIPQAFISVFFAGSLLIEVIFSLDGLGRMSYEAAVSRDYPVVFGSLFIFTLFGLLIKLIGDLCYTLVDPRIDFAARNA	PGPT0011630_938	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011630-yejB-K13894	NA	NA
D1-36_02031	1869			hypothetical protein	ATGCGACTGGCTTTTCCCTCCTGGCTGTTCACTGCCGTGGTCCTGCTGACTGGCGCCGCAGGCGTGAATGCCGCCCCCCAACATGCCCTGACCGTTTATGGCGAACCGGCCAAGTACGCCGAAGGCTTCGCCCATTTTGCCTACGCCAATCCCCAGGCCCCCAAGGGCGGGACGATGCGCCGCTCGGCCGTGGAGATCGGCCATTTCGACCATGTGCTGCCTTATATCGACAAAGGCATCGGCGTCAGCCAGGTCGACGGCATGCTCTATTCGCCGCTGGCCCAACGCTCCCTGGACGAACCCTATACCGTCTACGGCCTTGTCGCCGAAAAAATGGAACGCGCCGAAGATGGCCTGTCCCTGCGCTTCTACCTCAATCCCAAGGCGCGTTTCGCCGATGGCAAGCCCATCACCGCGCAAGACGTGCGCTACAGCTTCGACCTGCTGATGACCCAGGGCAGCCTGCGCTATCGCACGCAGTTCGCCGCCGTCAAAGATGTCGAGGTGGAATCGGAACGAACCGTTCGCTTCGACTTCAAGAATAACGAAAGCCGCACCCTGCCCCTGGACATCGCCACCCTGCCGGTTTTTCCCGAGCACTGGTGGAAGAGTCGCGACTTCGCCAACGGCGGCGGTTACGAGGCGCCTCTGGGCAGCGGACCGTACAGGGTGAGCAAGGTCGACTCGGGCCGCAGCATCACCTTCGAGCGCAACGCCGACTGGTGGGGCAAAGACCTGCCGGTCAGCCGCGGGCTCTACAACTTCGACCACTTCAGTATCGAATACTTCGGCGACACCGACGTGGCCCGGCAGGTCTTGCGTGGCGGCGCCTACGATTACAACCGCGAGTTCTCCGCCACGGGCTTTTCCATCGGCTACGACAGCCCGGCCCTGCGCGACGGTCGGCTGCAAAAAGCCCACCTTGCCACCGAGGCGCCCCAGCCGGCCCAGGGTTTTGTGTTCAATCTGCAACGGCCACAATTCCGGGACCGCCGCGTACGCCAGGCGCTGGCCATGCTCTGGGACTTCGAGTGGAGCAATCGCCAGATGATGCGCAACCTCTACGTGCGCCAGCAGAGCTTTTTTTCCAACACCGACCTCGCCGCCCGGGAGCTCCCCGACGCGGGGGAACTGGCGATTCTCGAACCGCTGCGCGGCAAAGTACCGCTAGAGGTGTTCACCCAGGTGTTCCAAGCGCCGAAGACCGACGGCAGCGGGGTCATCCGCGACAAGCAATTGCAGGCCCTGGCGCTATTGGAACAGGCCGGCTGGAAACCTGAAGGCGACCGCCTGGTCAATGCCGAAGGCGAGCCACTGAGCTTCACGTTCCTGGTCACGCAAAACGGAATAGACCGCCTGTTGTTGCCTTACAAGCGCACCCTCGCACAGATCGGCGTCGACATGCACATCCGGCGCATCGACTCGTCCCAGTACGTCAATCGCCTGATGAGCCGCGACTACGACATGATCATTACCGGCTACCCAGTCAGCACTTCGCCGGGCACGGAGCTTTACAATTATTTCGGCTCGGCGGCGGCCAACGACCCGGGAGCCAACAACTACATGGCCTTGCAGAATCCTGCCGTGGACGCCCTCATCGATGGCCTGGTCAAAGCCAGCACCCAGGACGACATGCTCCGCCATGCCCATGCGCTGGACCGGGTGCTGCAATGGAACTACTACTGGATTCCCAACTATTACCCGCCAGGCAGCTCGACGGTCTGGTGGAATCGCTTCGGCATGCCGAAAGTCCAGGCGAGCAATGACGAAGCCATCGAGAGCTGGTGGGAAGTCAGCACCACGCCACTGACCAACGAACAGATGACCGCCGAACGCATCAAGCGTGGCTCGCCTGGAGGGCATCACTGA	MRLAFPSWLFTAVVLLTGAAGVNAAPQHALTVYGEPAKYAEGFAHFAYANPQAPKGGTMRRSAVEIGHFDHVLPYIDKGIGVSQVDGMLYSPLAQRSLDEPYTVYGLVAEKMERAEDGLSLRFYLNPKARFADGKPITAQDVRYSFDLLMTQGSLRYRTQFAAVKDVEVESERTVRFDFKNNESRTLPLDIATLPVFPEHWWKSRDFANGGGYEAPLGSGPYRVSKVDSGRSITFERNADWWGKDLPVSRGLYNFDHFSIEYFGDTDVARQVLRGGAYDYNREFSATGFSIGYDSPALRDGRLQKAHLATEAPQPAQGFVFNLQRPQFRDRRVRQALAMLWDFEWSNRQMMRNLYVRQQSFFSNTDLAARELPDAGELAILEPLRGKVPLEVFTQVFQAPKTDGSGVIRDKQLQALALLEQAGWKPEGDRLVNAEGEPLSFTFLVTQNGIDRLLLPYKRTLAQIGVDMHIRRIDSSQYVNRLMSRDYDMIITGYPVSTSPGTELYNYFGSAAANDPGANNYMALQNPAVDALIDGLVKASTQDDMLRHAHALDRVLQWNYYWIPNYYPPGSSTVWWNRFGMPKVQASNDEAIESWWEVSTTPLTNEQMTAERIKRGSPGGHH	PGPT0011625_527	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011625-yejA-K13893	NA	NA
D1-36_02032	282	ppiC_2	COG0760	Peptidyl-prolyl cis-trans isomerase C	ATGGCCAAAGCCACTGCCCGCCACATCCTGGTTTCCAGCGAAGACAAGTGCAACGAACTCAAGGCCCAGATTGAAGCTGGCGCTGATTTCGCTGAAGTCGCCAAAACCAACTCCACATGCCCATCCAGCCGTCAGGGCGGCGACCTGGGCTCGTTCGGCCCGGGCCAGATGGTCAAGGAATTCGACACCGTGGTATTCAGCGCTCCGATCAATGTGGTTCAAGGCCCGGTCAAGACCCAGTTCGGCTATCACCTGCTGGAAGTAACCAGCCGCCAGGACTGA	MAKATARHILVSSEDKCNELKAQIEAGADFAEVAKTNSTCPSSRQGGDLGSFGPGQMVKEFDTVVFSAPINVVQGPVKTQFGYHLLEVTSRQD	PGPT0000050_2513	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-ATMOSHPHERIC_NITROGEN_FIXATION	N-FIX-NITROGENASE_BIOSYNTHESIS,PGPT0000050-nifM-K03769	NA	NA
D1-36_02033	885	lips_2		Triacylglycerol lipase	ATGCAACGGAATGCAACCACCCGCTTTCCCATCCTTTTGGTACATGGTTTGTTCGGGTTCGACAGGGTCGGCCCGCTCGAACTTTTTCACGACGTCAGACAGGCGTTGTGCAATGCCGGCGCCCGAGTATTCGTCCCGTACGTGTCGGCCACCCACTCCAACGAAGCGCGCGGCGAACAGTTGCTGGCTCAGATGGACCGGGTTCTCGAAGGAACCGGGGCCGCGAAGGTCAACCTTATCGGCCACGGGCAAGGCGCGTTGGCCGCTCGTTATGCCGCCGCCCTGGCGCCCGGCAGTGTCGCCTCGGTCACCTCCGTCAGCGGCCCCAACCAAGGGTCGGAACTCGCTGATTTCCTGCGCAAGGCCCTCACGCCTGGTCGTTTGCCGGAACACGTGGCGAACCGGGTCGCCACGCTTTTCGCCGATTTCATTTCACTGCTCAGTGGCCAGGCACAGCTTCCGCAAAACGCTATTGCAGCGCTGGCGGCGCTGACTACCGAAGGCGTAGGCGCATTCAATGACAGGTATCCGCAAGGCTTGCCCCGACATTGGGGCGGCAACGGGCCGCAATTGGTTAACGGCGTGCGGTATTACTCTTGGAGTGGCACGGTGCAGGAAACCGTGAAACAAGCCGGCAATAGCGCGCCCGATCCGTTGCATGACTTCTGCCGCGCTTTTTCCGAATATTTCACCACCGAGGCGGGACAGAACGATGGCATCGTCGGACGCTTCAGCTCCCACCTGGGCAAGGTGATCCGCTCCGACTACCCAATGGATCACTTGGACACCCTCAACCAGGGCGCTGACGGAGGCTGGCGCAAGGGAAACGACCCGATGGAGCTCTACGTGAAACATGCAGAACGCTTGCGGATCGTCGGACTCTGA	MQRNATTRFPILLVHGLFGFDRVGPLELFHDVRQALCNAGARVFVPYVSATHSNEARGEQLLAQMDRVLEGTGAAKVNLIGHGQGALAARYAAALAPGSVASVTSVSGPNQGSELADFLRKALTPGRLPEHVANRVATLFADFISLLSGQAQLPQNAIAALAALTTEGVGAFNDRYPQGLPRHWGGNGPQLVNGVRYYSWSGTVQETVKQAGNSAPDPLHDFCRAFSEYFTTEAGQNDGIVGRFSSHLGKVIRSDYPMDHLDTLNQGADGGWRKGNDPMELYVKHAERLRIVGL	PGPT0024445_1589	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_LIPASE_ACTIVITY,PGPT0024445-lip|lipC-K01046	NA	NA
D1-36_02034	1053			hypothetical protein	ATGACCATTGAATCAACTGTACGAAAAAGCCGGCCTCCATCGCGAAAGCTGCCCGCGCCTTTGCTGGCGAGGGCCCGCGAAGGCATCGTCGACCCTGCCTGGAGCAAGGCCGTCATCACCGTCAAGCCGTACCCGCTCATGTCCTGTGGCGACGAGCTGATGTTGTATTGGCGCGGGCTCAATAACGAAGGCGAGCAGTACCACCATCAAATTCGCCGGTTCGTCACGGAGCGGCAGGTCGGGCGCGAGCTTGTCTTTGTTGTACGCGAACCGCATATCGCCGAACTCGACGGCGGCTCGCTGGAAATTTCGTACCGGGTCATTGGCAAGCAGTTGCCGACCGAATTGGCCTCACAGGCCCTTCAGTTGCAAATTGGCGACGTGGCGCCGCTGCTGCTGCCACCCATCGCCAATGATGCGGTGGGTGGGCACCTTGATCCGGGGCGGGTGCCTGAAGGCACGACGATGACCGTGCGGCCTTATTCGCGAATGGCGGCCGGTGATCGACTGATCCTTCTGGCCAGCCGCGATTCCAAGCCATTGTGGCGGGATGTGCTGGACATAGAGGCTCATGCAGTGGGAGAAAAAGTATCGTTCTGGATCGATCATGGAGACATCGCTTCCCATATCGGGCACTCGTTGACCGTGGCTTATGTCGTCAGGCGCGGACATTCGATACGTCGAGCCGAGCCGCTGTCCGTCTGGATCGGTCCTCTGGTACGCCCAGCGCTGGTCGCGCCGAGGGTATTGGAGTTGATGGAGGGTGAGCTGGATGTCGACGGGCTCCATGGCGCAGCGACGGTGGTGATCGACGGCGTAGGGCTGGAGGCGGGCGAACGGGTCTGGTTGCAATGCGACGGCAGCTACTCGGATGCCCAGGAGCGGGAAATCACCGAGGCCACGGCCGGCCAGCCAGTTGTCTTCACGGTGCCGATTGCCTATTGGCAGGAGCAGGGCGGCCAATCGGTCCGCCTGTTCTATCAGGTTGAGCGTCTGGATGATGTAAGCCAGCGCTCGCCGGAGATCACCATTGAAGTTCGCGCCAGGCCGTAA	MTIESTVRKSRPPSRKLPAPLLARAREGIVDPAWSKAVITVKPYPLMSCGDELMLYWRGLNNEGEQYHHQIRRFVTERQVGRELVFVVREPHIAELDGGSLEISYRVIGKQLPTELASQALQLQIGDVAPLLLPPIANDAVGGHLDPGRVPEGTTMTVRPYSRMAAGDRLILLASRDSKPLWRDVLDIEAHAVGEKVSFWIDHGDIASHIGHSLTVAYVVRRGHSIRRAEPLSVWIGPLVRPALVAPRVLELMEGELDVDGLHGAATVVIDGVGLEAGERVWLQCDGSYSDAQEREITEATAGQPVVFTVPIAYWQEQGGQSVRLFYQVERLDDVSQRSPEITIEVRARP				NA	NA	NA	NA	NA
D1-36_02035	1071	aroF_1	COG0722	Phospho-2-dehydro-3-deoxyheptonate aldolase, Tyr-sensitive	ATGAATTCGTCCGTCTCCGCTTTGCCGCTGTCCACGCTCAGCCCTGCCAATGAAACCCTGACCCTGCGCCTGCCAAGCGCGTTGCAACTCAAGCAACAACTGCCGCTAGACAGCATATTGAGCCAACAAGTTGGCGCCCATCGCCAGGCCATCCGCGCCATCCTCGACGGCGAAGATTCCCGCCTGCTGGTCATCGTTGGCCCATGCTCCATCCACGACCCGAAATCCGCGCTCGAATACGCCGCCAACCTGGCTCGCCTTGCCCGGGAAGTCAGCGACAGCATGCTGTTGGTGATGCGCGCCTACGTGGAAAAGCCCCGCACCACCGTGGGCTGGAAAGGCCTGGCCTACGACCCCCATCTCGATGGCAGCGACGACATGGCCACCGGCCTCGAGCTGTCGCGGGAGTTGATGCGTGAGATGCTCCGACTCGGCCTGCCCGTGGCCACCGAGCTGTTGCAGCCGATGGCCGCCGGTTACTTCGACGACCTGCTTAGCTGGGTCGCCATTGGCGCGCGCACCACTGAATCGCAGATTCACCGGGAAATGGCCAGCGGTCTGGGCATGCCGGTCGGTTTCAAGAACGGCACCGACGGCGGGGTTGGCATCGCCTGCGATGCCATGCGCTCCGCGGCGCACCCCCATCGACATTTCGGCGTCGACAGCCAAGGGCATCCGGCGATCATCCAGACCCAAGGCAACCCTGATACGCACCTGGTCCTGCGCGGCGGCCACCGCGGCCCGAACTACGATTGCCAAAGCGTGGCGCAGATTCACGCCGACCTCGCCCGCCTCAACATCCCGGCCCGCATCCTGGTTGATTGCAGCCACGCCAACAGTGGCAAGGATCCGCTGCGCCAGCCCCATGCGTTCGAGGACGTGCTACAACAGCGCTTGCAAGGCAACAAGGCCCTGATCGGCATGATGCTCGAAAGCCACCTCTTCGAAGGCTGCCAACCGTTGGGGCCGGCGATGCGCTACGGCGTGTCGGTGACCGATGGATGCCTTGGCTGGGAGTCCACCGAGCAGTTGCTGCGCCAGGCTCATCGCAGGTTGCGATTGGGCGTCTGA	MNSSVSALPLSTLSPANETLTLRLPSALQLKQQLPLDSILSQQVGAHRQAIRAILDGEDSRLLVIVGPCSIHDPKSALEYAANLARLAREVSDSMLLVMRAYVEKPRTTVGWKGLAYDPHLDGSDDMATGLELSRELMREMLRLGLPVATELLQPMAAGYFDDLLSWVAIGARTTESQIHREMASGLGMPVGFKNGTDGGVGIACDAMRSAAHPHRHFGVDSQGHPAIIQTQGNPDTHLVLRGGHRGPNYDCQSVAQIHADLARLNIPARILVDCSHANSGKDPLRQPHAFEDVLQQRLQGNKALIGMMLESHLFEGCQPLGPAMRYGVSVTDGCLGWESTEQLLRQAHRRLRLGV	PGPT0012920_4617	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
D1-36_02037	429			hypothetical protein	ATGAGTTTTGTATGGCGCCCGGCTGAAGTCGGTGACGTTGAATTCGCACGTCAATTGACTTGCAGCAATATGCTTCCCTATTACCTTCGCCATGATTTGCTGTGGCAGGACGAAGCGTTCGATCTGGCCTGGGTCATCCGCCAGAACTGGATTCTTCAGCGCAATGAACAGGCGCTGGGTTTCGTCAGTCTCAGTCGTGATGCTCGCGCCTTGTACATTCGGGAGTTGCAGATCGATGAGGCGTTTCGTCGGCAGGGTGCCGGAACCTGGGCGATCGGACAGGTCTGGACGATGGTGGCAAATGAGCATCGACCGGCGTTGCGGCTCACCGTTTTCAAGGACAACCCGGCCCGCGCGCTCTATGAACGCATGGGGCTGCGGGTGGTCGGTGAGGATGAGTGTTTCCTGAGGATGCAGCGAGACGCCTAG	MSFVWRPAEVGDVEFARQLTCSNMLPYYLRHDLLWQDEAFDLAWVIRQNWILQRNEQALGFVSLSRDARALYIRELQIDEAFRRQGAGTWAIGQVWTMVANEHRPALRLTVFKDNPARALYERMGLRVVGEDECFLRMQRDA				NA	NA	NA	NA	NA
D1-36_02038	642	gacA		Response regulator GacA	TTGATTAGGGTGTTAGTGGTCGACGACCATGATCTCGTCCGTACGGGCATAACACGAATGCTGGCTGACATCGATGGCCTGCAGGTGGTTGGCCAGGCCGAATCCGGGGAAGAATCCCTGATCAAGGCGCGTGAATTGAAACCCGACGTGGTGCTGATGGACGTCAAGATGCCGGGCATCGGTGGTCTTGAAGCCACGCGAAAACTGTTGCGTAGCCATCCGGACATCAAGGTCGTCGCGGTGACCGTCTGTGAAGAAGACCCGTTTCCCACCCGGCTGCTTCAAGCTGGGGCGGCGGGCTATCTCACCAAGGGCGCTGGCTTGAACGAGATGGTCCAGGCCATCCGCCTGGTATTTGCCGGACAACGCTACATCAGCCCGCAAATCGCCCAGCAATTGGCGATCAAGTCTTTCCAGCCGACCAACGATTCGCCCTTCGATGCGCTGTCCGAGCGAGAGATCCAGATTGCGCTGATGATCGTCGGCTGCCAGAAGGTCCAGATTATTTCCGACAAATTGTGCCTGTCGCCCAAAACCGTCAATACCTACCGTTACCGTATCTTCGAAAAGCTTTCGATCAGCAGTGACGTCGAGTTGACGCTGCTGGCGGTGCGTCATGGCATGGTCGACGCCAGCGCCTGA	MIRVLVVDDHDLVRTGITRMLADIDGLQVVGQAESGEESLIKARELKPDVVLMDVKMPGIGGLEATRKLLRSHPDIKVVAVTVCEEDPFPTRLLQAGAAGYLTKGAGLNEMVQAIRLVFAGQRYISPQIAQQLAIKSFQPTNDSPFDALSEREIQIALMIVGCQKVQIISDKLCLSPKTVNTYRYRIFEKLSISSDVELTLLAVRHGMVDASA	PGPT0012935_980	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR|BF-VarA|VarS_SIGNALLING_SYSTEM,PGPT0012935-gacA|uvrY|varA-K07689	NA	NA
D1-36_02039	1824	uvrC	COG0322	UvrABC system protein C	ATGACCGAACAGTTTGATCCAAGTGCTTTCCTGTCCACGTGCAGCGGCCGCCCCGGCGTGTACCGCATGTTCGACAGCGACGCGCGCCTGCTTTATGTCGGTAAGGCCAAAAACCTCAAGAAGCGCCTGGCCAGCTACTTCCGCAAGACTGGCCTGGCACCGAAGACGGCCGCGCTGGTGGGTCGCATCGCGCAGATCGAAACCACCATCACCGCCAATGAAACCGAGGCGTTGCTGCTTGAGCAGACGCTGATCAAAGAATGGCGGCCGCCGTACAACATTCTGCTGCGCGACGACAAATCCTATCCGTACGTGTTTCTGTCCGACGGGGCGTTTCCGCGCCTGAGCATTCATCGCGGAGCCAAGAAGGCCAAGGGCCGATATTTCGGTCCTTACCCCAGTGCCGGGGCGATCCGTGAAAGCCTGAGCCTGTTGCAGAAAACCTTTTTCGTACGCCAATGCGAAGACAGCTACTACAAGAACCGCACCCGGCCCTGCCTGCAACACCAGATCAAACGCTGCAAGGCGCCCTGTGTCGGCCTGGTGGAGCCCGAGGTCTACGCCGAAGACGTGCGTCACTCGGTCATGTTCCTGGAGGGGCGTAGCAATGCGCTGACCGATGAGCTGTCGGCCGCCATGGAAGAGGCCTCGATCAATCTCGAATTCGAACGCGCCGCTGAGCTTCGCGACCAGATCGGGCTGCTGCGCCGGGTTCAGGACCAGCAAAGCATGGAAGGCGGCAGCGGCGACGTCGATATCGTGGCCGCGTTCATCAACCCGGGCGGCGCCTGTGTGCACTTGATCAACGTGCGGGGCGGCCGGGTTTTGGGCAGCAAGAACTTCTTCCCCCAGGTAGGGATCGAGGAAGACGTCTCCGAAGTCATGGCCGCTTTCCTGGGTCAGTACTACATCAGCAGTCCGGAACGCGACTTGCCCAGCGAGTTGATCGTCAACGTGGTTCATGAGGACTTTCCGGCCTTGATCGAAGCCATCGAAAAGCTTCGCGGTCGCGAACTAACCATCAGCCACCGTGTGCGTGGCACCCGTGCGCGCTGGCAGCAACTGGCCGTGACCAACGCCGAACAGGCCCTTGGCGCACGCTTGGCCAACCGCCAGCACGTCGCGGCGCGGTTCGATGCCCTGGCCGATGTCCTCCACCTGGACGAGCCGCCGCAACGGCTGGAGTGTTATGACATCAGCCACTCCAGCGGCGAGGCAACGGTAGCCTCCTGCGTGGTTTTCGGCCCGGAAGGTCCGATCAAGTCCGATTACCGTCGCTACAACATCGAAGGCGTTACCCCTGGCGATGACTATGCCGCCATGCATCAGGCATTGATGCGGCGTTTCAGCAAGATAAAGGACGGGGAGGGCAAGTTGCCGGACATCCTTCTGGTAGACGGCGGCAAGGGCCAGTTGTCCATGGCCCGGGACGTCCTCAACGAGCTGGCCGTTCCTGACCTGATCCTGCTCGGCGTGGCCAAAGGCGCGACGCGAAAGGCCGGTTTCGAGACGTTGTACCTGAACGACGCGGCCCACGAGTTCACGTTGAAAGGGGATTCGCCGGCGCTGCACCTGATCCAGCAGATCCGCGACGAAGCCCACCGTTTCGCTATCACCGGCCACCGTGCCCGCCGAGGCAAGACCCGCCGCACCTCCACGCTGGAAGGCGTTGCAGGGGTCGGGCCGACGCGCCGGCGCGATCTATTGAAACATTTTGGTGGATTGCAGGAACTGTCTCGTGCCAGCATCGAGGAGATAGCCAAAGCACCCGGTATCAGTAAAAAGCTCGCAGAGTCGATTTATGCAAACCTGCATAGCGAGTAG	MTEQFDPSAFLSTCSGRPGVYRMFDSDARLLYVGKAKNLKKRLASYFRKTGLAPKTAALVGRIAQIETTITANETEALLLEQTLIKEWRPPYNILLRDDKSYPYVFLSDGAFPRLSIHRGAKKAKGRYFGPYPSAGAIRESLSLLQKTFFVRQCEDSYYKNRTRPCLQHQIKRCKAPCVGLVEPEVYAEDVRHSVMFLEGRSNALTDELSAAMEEASINLEFERAAELRDQIGLLRRVQDQQSMEGGSGDVDIVAAFINPGGACVHLINVRGGRVLGSKNFFPQVGIEEDVSEVMAAFLGQYYISSPERDLPSELIVNVVHEDFPALIEAIEKLRGRELTISHRVRGTRARWQQLAVTNAEQALGARLANRQHVAARFDALADVLHLDEPPQRLECYDISHSSGEATVASCVVFGPEGPIKSDYRRYNIEGVTPGDDYAAMHQALMRRFSKIKDGEGKLPDILLVDGGKGQLSMARDVLNELAVPDLILLGVAKGATRKAGFETLYLNDAAHEFTLKGDSPALHLIQQIRDEAHRFAITGHRARRGKTRRTSTLEGVAGVGPTRRRDLLKHFGGLQELSRASIEEIAKAPGISKKLAESIYANLHSE	PGPT0014925_3197	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014925-uvrC-K03703	NA	NA
D1-36_02040	561	pgsA	COG0558	CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase	ATGAATATCCCAAACCTGATTACCGTTCTACGCGTCCTGCTCATCCCGATCTTCATATTGCTGTTCTATTTGCCGTACCACTGGAGCTACGTGGCCTCCGCCTCGGTCTTTGCCTTCGCCGCCGCGACGGACTGGCTCGACGGCTACCTGGCTCGCCGCCTGGAGCAGAGCACGCCGTTCGGCGCGTTCCTCGACCCAGTGGCCGACAAACTGATGGTCGCGGTGGCCCTGGTGCTGCTGGTGCAGGAACACGGCAATCTCTGGCTGACCCTGCCGGCGGCGGTGATCATCGGCCGGGAAATTGTCGTCTCGGCGCTGCGTGAGTGGATGGCCGAGCTGGGCGCCCGCGCCCAGGTAGCCGTGTCGAACCTCGGAAAATGGAAAACCGCCGCGCAGATGCTGGCCCTGGTGATTCTGCTGGCCAACCCCTCGGATTTCAGTTTCTGGGTGCTGTTGGGTTATGCCTTGCTGCTGGTGTCCGCTGGGCTGACGCTATGGTCGATGGTCCAATACCTGCGCGCCGCCTGGCCGCACCTGCGGACTGACGTTGATCCGAAATAA	MNIPNLITVLRVLLIPIFILLFYLPYHWSYVASASVFAFAAATDWLDGYLARRLEQSTPFGAFLDPVADKLMVAVALVLLVQEHGNLWLTLPAAVIIGREIVVSALREWMAELGARAQVAVSNLGKWKTAAQMLALVILLANPSDFSFWVLLGYALLLVSAGLTLWSMVQYLRAAWPHLRTDVDPK	PGPT0007705_3899	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_PHOSPHATIDYLTRANSFERASE_ACTIVITY,PGPT0007705-pgsA|PGS1-K00995	NA	NA
D1-36_02042	1842			hypothetical protein	ATGGCACTCTCAGAAATGACAGTTCGGCATGCCCGAATCACCGGTAATGACTACACCCTCGGCGACAGTGATGGTCTCACGCTCAATGTGACGGCCAGAGGCGGAAAAGTCTGGCTCTTCCGTTATTACTGGGCAGGCAAGCAGAAGCGCATGTCCCTCGGTAGTTACCCCCAAATTGGGCTTAAAGAAGCCCGTACCCGTCGTGATTCAGCACGTACCTTGGTTGCCCAGGGCATCAATCCCTATGAGCATCGCAAACAACAGCGGCTTGCTGTTCATGCTGCGAAGGAGCACACCTTCGAGGCCGTGTTCAATCAGTGGGTGGAGTTCCGCAGGCTGAGCCTGAAGGAAGGGCGTCAAAGCACGCTCTCGCAGATATTGAGGATCTTCAATAAAGACGTCTTGCCCACCCTGGGCGGGCGGTCCATCTACGAGATCAATCGTCACGATCTGCTGGATTTACTGAGCAGGATCGAACAGCGCAAGGCCTTAACGACAGCTGAAAAATGCCGGACTTGGTTCAACCAACTGTTCCGCTATGCGCTGGTGAAGATCGAGGGGTTGGAACACAACCCGGCTTCAGACCTCGATGTGGTCGCACTTCCCAAGCCTTCCGTGACGCACAATCCGTTTCTCCGCATGGACGAGCTGCTGGCATTGATGGCTGCTCTTCGAAAATACGGTGGCGCCAACCAAACTCGGCTTGGCCTTCGGTTGTTGCTGCTGACCGGTGTCCGCACGGGCGAGCTGCGGTTGGCGACGCCCGACCAGTTCGATCTGGCGAAGCGTTTGTGGGTCATACCGGCGGAGGTGGTGAAGCAGCTCCAGTTAGCGATGCGGAAGCCAGGTAAGCAGACCCAAAATGTACCGCCGTACATTGTCCCGCTGTCGGTTCAGGCGCTGGAGATCGTGCGTCACTTGCTGGACCAGGTTGTCCCCGCACAGCGCTACTTGTTTGCGCATCGAAGTGACCTGAGCAAGCGTATCAGCGAGAACACGCTGAATGGCGCGTTGCGTCGGATGGGGTATGCCGATCAACTCACCGGTCATGGCATGAGGGCGACGATCTCGACGGCGTTGAACGAGATCGGGTATCCAAAGGTTTGGGTGGATGCTCAGCTTTCTCATGCTGATCCGGACAAGGTGAGCGCGGCCTACAATCACGCGGAATACGTTGAACAGCGCCGGACCATGATGCAGGACTGGGCGAATCGTCTGGACCTTTGGGGGCAGGGCCAGCTGAAAGCGGCAAGCTCTCCGCTTACCATCCGATTGGAGGGGGCTACTTCGCTGCCGTCACTTGAAAACGTGAGCGCAAATTCCATTCAGTTCAACGGCAACTTTCCAGTGGCAACGGTCTCGGTGCCCAAGGCTTCGGTTAACGACGAGCCGGCTCTTGTCGTGTCGCATCAGTCGCCTGTCGTACCTCTTTCGGTGTCGACTGAAAAACCGCAAAAATCCCACGTGTCTGACATCCAGCGCGAACGTGCCGAGATGCTGGCCACCTATGAGGCTTCGAGTAATTTGCCGCTGCTGGTCTTCGCCAAATTGGCAGGCAAATCCCGAGATCAGATCAATCGCGACATCAAGGCTCGCCGTCTGCTGTCGCTGAGCCTGGGGAATCGCGGTCAGCGTATTCCCGATTGGCAGCTTGATCCACTGCGGCACAAGTTGGTGCTTGCTGCGTTAGCGCGGTTTCCGGATGTCGATGCGTGGAGGCTTTATGGCGCCCTTTGTAAGCCTCATGAGCGATTAAAAGGTCGCGCGCCAATCGATGTGCTTACTACGGAGAATTTCGATGTGACCGCACAAATCGTTTGCAGTGCGCTGGGTTCAAGCTGA	MALSEMTVRHARITGNDYTLGDSDGLTLNVTARGGKVWLFRYYWAGKQKRMSLGSYPQIGLKEARTRRDSARTLVAQGINPYEHRKQQRLAVHAAKEHTFEAVFNQWVEFRRLSLKEGRQSTLSQILRIFNKDVLPTLGGRSIYEINRHDLLDLLSRIEQRKALTTAEKCRTWFNQLFRYALVKIEGLEHNPASDLDVVALPKPSVTHNPFLRMDELLALMAALRKYGGANQTRLGLRLLLLTGVRTGELRLATPDQFDLAKRLWVIPAEVVKQLQLAMRKPGKQTQNVPPYIVPLSVQALEIVRHLLDQVVPAQRYLFAHRSDLSKRISENTLNGALRRMGYADQLTGHGMRATISTALNEIGYPKVWVDAQLSHADPDKVSAAYNHAEYVEQRRTMMQDWANRLDLWGQGQLKAASSPLTIRLEGATSLPSLENVSANSIQFNGNFPVATVSVPKASVNDEPALVVSHQSPVVPLSVSTEKPQKSHVSDIQRERAEMLATYEASSNLPLLVFAKLAGKSRDQINRDIKARRLLSLSLGNRGQRIPDWQLDPLRHKLVLAALARFPDVDAWRLYGALCKPHERLKGRAPIDVLTTENFDVTAQIVCSALGSS				NA	NA	NA	NA	NA
D1-36_02043	1044			hypothetical protein	ATGTCAGGCGGCGAAACCGAAAAAATTGCGAGGCTCGCGGAGCTCGTTTCCAGCGACATCTTCAACTTCTTCCGCTGGAAGAAAGAGGGGCCTGCCAACCTCAACTTCGCCTGTGTGAAGAAGGAAACACACGCGCCCTTGAAGAAGTCTGAGCACACGCACCCGACTGACGTGGTGTTCAAGTACGCAGATCCTTATCTGAACAAAGCCATCTACCTTCATACCGATTTGAAAAGCTATGCGGTTGGCTCCATCACGCTGGACTCGATCAAGATGGCCCTGAAGTCCCTGGGCAAGACCATCGACTGTGCCCGTGCTTCGCTGGAATGGCAGACTCGCTACCATTTGGCCAAGCGTGAGAAGTATGAAATTCGTGGGATGCTATTCGTCTATAACCACGATGACGAATACGATAAGAATTTCTACGATCACTTCAAGGATTACAAAGGTGAGAATCTGCATATCAAAAATTCTCAGCAGGTTCATATCGTCGAACCTTCATTAATCAATTACCTGAAGACGCTGCAGCTCGATGTAAACACCCTCAGAGCAGAAGGGACATTCCCGAAGGAAAATTACACCTTCTATTACCCTGACCTCGTCTTGCACAAGGCTAGTGGTGAGTACTGGGATCGTGCGGCAACCGCAGAGCTCATCGCTTCGCCGTATATGATCATTCACCACAAAGAGGTGATGTCGTACTGCGAGAAAGCCAAAGACGTGACTGAAACGTATAGCGAAGGCTATCTGATCTATTATCGCCGCGATGGTAGCACCGAGATCGAGTTCAGGTACCTATTTGACGCGCTATCCAGGTTCCAGATCCTCAACGCCAACAAGGACTTGAAAATCCGAATCAGAGTTGCCACTCGCCACCATCACAGCAGCATCCTCAGCAACTTCAATGCTGCCATCAACAGCTATGTGACCGAGTGGGGCGAAGACGAAAACCGCAAACGGAAACTGCAGGCGATCGAACTGGAGATCGTGAATCACGCGATTCCGAACTATAAGCCCGAAGCGATCGGATGGGAGCGAGACTGA	MSGGETEKIARLAELVSSDIFNFFRWKKEGPANLNFACVKKETHAPLKKSEHTHPTDVVFKYADPYLNKAIYLHTDLKSYAVGSITLDSIKMALKSLGKTIDCARASLEWQTRYHLAKREKYEIRGMLFVYNHDDEYDKNFYDHFKDYKGENLHIKNSQQVHIVEPSLINYLKTLQLDVNTLRAEGTFPKENYTFYYPDLVLHKASGEYWDRAATAELIASPYMIIHHKEVMSYCEKAKDVTETYSEGYLIYYRRDGSTEIEFRYLFDALSRFQILNANKDLKIRIRVATRHHHSSILSNFNAAINSYVTEWGEDENRKRKLQAIELEIVNHAIPNYKPEAIGWERD				NA	NA	NA	NA	NA
D1-36_02044	1179			hypothetical protein	ATGAGAATGGGTAGTTTGTACTTTGCATCCGACAAAGCGATCTACGATGCGCTAACGCAGCGAAGCCTGACGAGCGCTGAGCTCAGAAAAGTCTTCCTCTCCAGAGGGATCGTGATCTCCAACGAGTCGGACAAAAAATTCCTAGCCAATCGATTCAGTGCCCTATTCCATGACTACTACGATTATCGGAATCTGTCGCTCTTGGTGGGTGGCCGTGACAGTCGTGAGAAAACCACCAACGTGGTCGTCACGACAGCGGTTACTAAAGACCAACTGACCGACGCTCTCACCTCCGTCAAGGAATGGCTGGTGGATGACCAGCACGAGCAGGCTGAGGTGGCCGTCCACGGTGATCAGCTCAAGCTCACCGTCAAATACCAGAAGCTCGATCTGAGTCAGGCAGAGTTCCGTCAGGTGGTTGAGAAGACGGCGGAGGTGATCCTCGAGAAGCAGGGCAGTGGCTGGAAGATCACTGGCCCCATGAACGACAAGTTCAAGGACATCACAGATCAGTTGTATTCCCAAATCGAGATCGTCACTGATCAGGACGTGGCGACCCGAACCATTTCCTTGGAGGCGGTCCCTGATGCGGGCATCAGGACGAACTTTCTTCGCAGCTTGATCCGCAATCTCAAGGACATGGAGGTGGTCGATGTGGTCGACGTCTCCACGTTCAACCCTAAAGACCAAGAAGATGATGATCTGGATCTCAGTGACGATGCGCTGGTGATCGAGGATTCGATTGAGGTTGAGTCAGAAGATGAGGGGGAGGAAGTGGGGGATGGCGACCCTGAAGCTGAACTGGCCAGGCCGCAGCCAGAAGCCAGGATTCACAAGATCATCCGCATCGACAAGGCGTCCCTGAAGGGTAAGGGTGTCCTGGAGTCGAAGCAGTTGCTTGAGCTTGAAGGCCACGGGTTCTATATGTGGAAGATTCGATGGAAAGCTCGTGAGAAGCTCGTTGGATCTGAGCTAGTCCTGTTTGAGGCTCAGTTTGGTAACCAGACCAAGTACTGCGATTTCTCCTACATCGTCAAAGGTGTCTATAACTACCACAACGGGAAATACGCTAAAAACCTGGTACGTGCCGAGCCGGTGTTCGAGCAGAAGCTTAAGATCCGCCTGGAGGAGGCGGCGCAGAACACCCTGAATGACATCGAAAGGAGTCTGACGACATGA	MRMGSLYFASDKAIYDALTQRSLTSAELRKVFLSRGIVISNESDKKFLANRFSALFHDYYDYRNLSLLVGGRDSREKTTNVVVTTAVTKDQLTDALTSVKEWLVDDQHEQAEVAVHGDQLKLTVKYQKLDLSQAEFRQVVEKTAEVILEKQGSGWKITGPMNDKFKDITDQLYSQIEIVTDQDVATRTISLEAVPDAGIRTNFLRSLIRNLKDMEVVDVVDVSTFNPKDQEDDDLDLSDDALVIEDSIEVESEDEGEEVGDGDPEAELARPQPEARIHKIIRIDKASLKGKGVLESKQLLELEGHGFYMWKIRWKAREKLVGSELVLFEAQFGNQTKYCDFSYIVKGVYNYHNGKYAKNLVRAEPVFEQKLKIRLEEAAQNTLNDIERSLTT				NA	NA	NA	NA	NA
D1-36_02045	687			hypothetical protein	ATGAAGTCAAAGCGGCTGAAACTCTGGGTTCTGACCGCTCGCATTGACTTTCAGACCCTTGTGCATGGACTTCGACAACAGCCGTTCAACGACCAGAATCGCGTTGGTGTCGAGGCTATCGAGATCCTGGATGGCAAGGCAACCTTTCGGTACCACGAGCAGCGGGAGATCACCCAGTCGTTCACGAACCCTCTGGGCGAAACCGTCGAATCGAGTTACTCGACGCTCATCAGCTTCGACATGGTTTTCGAAATGCTTGGGCCGGATCGGTATTCGATCTGCATGGGTTCGCCACCGAAGGATTTGAAGCCGTTCGTGGAGCTCATGCGAGCGGCAGCCGGGACGAACTTCGCACTGGAGATCGTGAAGCCGGACATCTCTTCGATTTATCAGCAGCTCAAGGATGACAAGCGCTTCGCAAGAGTTATGGCCAAGCGGATCGTTTCTGGAGCGGTGCCGTTCGACATCGAAAGCAGCTACCGGGTCGATATTGCATCGACGGGGAACGCGATGTCGAAGCTGTTGGAGATCACGGGCGGCCGCGCGGCACCGATCGACAAGATCAAAATCGTCTATACGTACGACTCAAGGCCTGTTCAGATTGAACTCTCGCGCTCAGGTTCGATTGCAGTGTCGTGGGATGATGAGGAGCACCTGCACCTGCTGACAGGCCTCTTGATCCGGTAA	MKSKRLKLWVLTARIDFQTLVHGLRQQPFNDQNRVGVEAIEILDGKATFRYHEQREITQSFTNPLGETVESSYSTLISFDMVFEMLGPDRYSICMGSPPKDLKPFVELMRAAAGTNFALEIVKPDISSIYQQLKDDKRFARVMAKRIVSGAVPFDIESSYRVDIASTGNAMSKLLEITGGRAAPIDKIKIVYTYDSRPVQIELSRSGSIAVSWDDEEHLHLLTGLLIR				NA	NA	NA	NA	NA
D1-36_02046	627			hypothetical protein	ATGCGCAACGCGATCAAAGCAAACCTCGAAGCATGGGTCGAGAAACTGGAATCACAACAAAGCGTCGACGGGGATTATCTAGATCACGACTTTTTCCTGGACTACAAATTGCTGGGCGTAGCGACCTTTCTTAAGCAGATCGCCTTTGAAGGGGACGACATGGAGCTGCTGGCCATTGCATCAAAAGCAGAAATGCTGGTCACGAGGAAGATTCAAGCGGACGAGGAGGCAGAGGAGGAAGAGGATCTGCTACTGCAGCAGCGCTACGAGGCGGACGAACGAATTAAGGCAGCTTGTTATCGCTACTTCTACACTGAACCTGCTTTCGCCGTGGACATGTCTAAATACGAGGCGCTGATCGAAGCATCTGCTAAAAACTTCTCTGACCTCTATAAGCTGTCGAGCCTGCGCCGCTATGTTGAGCAGAGCCAAGTGCTAGCAAAGCTGTACGACAAAGTGAAAGCTCGCCTGCGTCGCGGTTGCGACGGGCAAGCGACGCCGACATTTGAAGACGTTGCGCGAGCATTCGACGCGGAGCTCCCGGTAATCTATCGCCGCGCCGATGCTCATGTCGAGAGAACGATTGCTCGGTACGCGGCGGCACCTGCGCCAGCAAGCCTGGCCTGA	MRNAIKANLEAWVEKLESQQSVDGDYLDHDFFLDYKLLGVATFLKQIAFEGDDMELLAIASKAEMLVTRKIQADEEAEEEEDLLLQQRYEADERIKAACYRYFYTEPAFAVDMSKYEALIEASAKNFSDLYKLSSLRRYVEQSQVLAKLYDKVKARLRRGCDGQATPTFEDVARAFDAELPVIYRRADAHVERTIARYAAAPAPASLA				NA	NA	NA	NA	NA
D1-36_02047	972			hypothetical protein	ATGAGCGAAAAAATCGAAAAACACCTCGAAAGCATTCATCGTGAGCTGCGAGGGACTGAGCAGGACCTGTCTCGGGAACGTCAGAAGTCTTTGAAGTATTACGTTCGCGACATCCACCACCGCTTAGGGGAATGGCTGAGCGCCCAAGGGCATGAGAAAGCCAGGCAGCGATATGAGCTCAGTTGGGCCCTTGGCTTGATTGGCATTGTGGGTGTCTTGTTGGCAATCATTCGATCAGCTAGCAGCGATATGGACTGGGTGCGCGAGCATACCTTGGCATTTCGCTTATGGGCTGTGGTCCTGTGCACGATCTTCATTGGGGTGTCTTTGGAGCGCTCGGCGGTGGTGAGATCGCTATGGAGCTTCGCCATTACCAAGTTTCTGGTTTCAATCCTCCTCTCGGTTGTAGTTCTCTGCGCCCGTGGTAAAGCTGCGAGTTACCTCAATGGGGTTTTCCACATTGATGCTTCCGCCTTACCCATTACCTTGGTCCTCACCACTGGTCTGTTGGTGCTCAAGTGGCTGGTGCCGTTCATACTCACCGTGGCAGTGACGCTGTCATTGGTTCACGGCCTAATTGGCGCCGGCTGGATCAAAGGTAAGCTTGATGGCTCATCCGTTGATGAGCCACCCCTGTACTCGTTACTGTCCTTCTTGGTGTCCGGTGTGATTCTCTATTTCGGATGGGGCTGGTCCAGTGATCAGATAGCTGATTCCCGCGTGCCGGAGAAAGTCTATCTGATGGCACATGCATTGGACTTTAACTACTCCCACGAGTGCGCCAACGTCGCGGCGAACCAACCGGTGGTTTTCCTAGGAAACTCCCAAGAATCCGTGCTTGTCGCCCCATATAGGCTGGCCGATTTTGACTTCGAGGAGTTCTTTGAGGCGTTCGTAACAGTACCGACTGACTTCGTGCGGCAACGGTGCGAATACAAACCATCGCCGGCGGTGGAGGATGGGTGGGGTTGA	MSEKIEKHLESIHRELRGTEQDLSRERQKSLKYYVRDIHHRLGEWLSAQGHEKARQRYELSWALGLIGIVGVLLAIIRSASSDMDWVREHTLAFRLWAVVLCTIFIGVSLERSAVVRSLWSFAITKFLVSILLSVVVLCARGKAASYLNGVFHIDASALPITLVLTTGLLVLKWLVPFILTVAVTLSLVHGLIGAGWIKGKLDGSSVDEPPLYSLLSFLVSGVILYFGWGWSSDQIADSRVPEKVYLMAHALDFNYSHECANVAANQPVVFLGNSQESVLVAPYRLADFDFEEFFEAFVTVPTDFVRQRCEYKPSPAVEDGWG				NA	NA	NA	NA	NA
D1-36_02048	4008			hypothetical protein	ATGGCAGTGGAGCAGTCGCCCCTGGAACTGGAATCCAGCACTCTCGAAGAAGTTGTCGAGGCGCTGTCGTTGGGTCGATCCATTACGCTGCCTGAGGACGCTGGGAGCTTTCTTTTCGGCACCGAAGACGCCCGAATAGCATTTCGCTTCTACGCGTCTAGACGAGAACTTTGGGCCCAACAAAAGCAACTCTCCAGTACCGAGATAGACCAGTTGCTCCAAGCGCTGGAAACGCCTAAGGCAGCCGTGCCTAAAGTACAGGTTGCAGCCTCCGCGTTGAAGCGTCCTCGGTGGCGCATCACGCAGATCAGAGCCCATAGGTTTGCGGGCTTACACCGACATTGCGGTGCAGATGGTCAGGCACCGGACCCTGTTTCGCTGGAACTCGACCGTGATGTCACCTGCGTATGGGGATTCAATGGCGCCGGAAAGACGGCCTTTCAAAGCGCGATCATGTGGTGTCTGACTGGTCAGGCACATCGCTCCCAGCACAAACCGTCGTTTGTGCATCAGCCGATAACCCTTGAACTGATGCAGGCGTCGGACGAGGAGAATCCTGCACCGGATGAGGTCGCGAACTCCATCGCTCTGCCCCCCATAGTCCCACTTCCTTCTGCCGAAGATTTAACTGCGCTGCAGGATAAGCCTGCAGTTGATACCTGGGTTGAGCTGACCCTAAGGGAGCACTCCGGGCAAGAGGTCGTGGTGCGACGAGAGCTCAAGCTAGGTGCCAGAGGAACTGTCACCACCCCAGTGAGCGGCATCGAACAGCTCGGCCTCCCTCAATGGGCAATTGAAGCGGGTACCTTGATGCCCGCGATCGCGACCACCATGCGCTTTGACGAGAAAACCACGTTTGCGGATGCGATTGCTCAGTTGACTGGACTGAGGCCATTGCAAGATCTTGGAAAGCGCTCCGAACGACTGGCCAAGCGCTTAACGGGTGAAGAAAGCGACAAGGCCAAAGAGGATGAGAGTGCCGCGCTTCTGCGATTTTTGACCAGCAAACGCACATTGGGTGAAGCATGGACAATGCAGGCGGAGGCGCTTGGTGATGTGCCCGACCTCATATCCCCCGATCAGGAAAGTGAAGAAAAAAGCTGTAAAGCCTCAATCGAATCGTCGATAAACCACCTAGAGGAACTTCGCCAGCAAGGACAGAATGACATAGATGAGATTCTCGCGAGCGCGGTCCGGTTGGAAACGAAGGAGCAAGTGGAGGCTTTCGTAAACACCCTCGCGACGGCGAAGGAGCGTCTCGCGACTGTGGCACTTGGATCTCTGCCATCTATCGAAACACTCAAACGGCTAGGCGAAATCCAAGACGCCGATAAAGCCGTTGTGATCGCGAAGCTCGAAGAAATTAGGGGAAGAGCACTTGAGCAGGTTGCACGACAGAAGAAAAAGGAGGAAACCGCACGGTGGCAGCTGTACGCCATAGTTTCCCAGTGGCATCGCCGTCATCACCCTGAAGAGCCGCTCAGCGATTGCCCGGTATGCGGTTCAGATCTTACCCAAGTACCTCCCGATGCATTGCTGGACAAGGCGGTGCTCGATGCGCTGGAAGCGAGCGCGCTCGCGCATACGGACGCCACGAAGACACTTCAGGACTGGCAGCAAGCCGCTGCAAGCGAGCTGCTGGAGGCGCTTCCTAACTCGCTTCGCCCGTTCGTTGACGTTAGATCCCGTGCAACGTTGTTGGAGATCTATCGGGATGCGTACCTAAGTGAGCTGTTGAAGGATCCGGCCTTTAGCACCCAGTTGCGCTCGCTGAAACGAAATGCCGAGAAGGTTTGGAACCATTCAGTGCAGGCGCATCCTCTACCCGCGTTGCCCGAGTCCCAGACAATAGAGTTACCGCAAGAACTTCGATCGACCTCTCTTGCTACCAGGTTTGCCAATCTGCAGGCCGCGCTATTGCTCGCGCTTCATCGACAGCTCAGTGAGGATCAGATCAAGCTGGTCACGCAGCGCTATTTTGGTAGCGGCTCGTTCAGCCGAGCCAAGGCCTCTGACGATCAGCTCGAAATGGCCATGTGCCCATTAAGGCACCAGGTGATTGCACTGCAGCAAGCCGTTACATCCGCCGACCCCATCATTGCGCTTCTGCGCCAGATGAATGAGATCGAAGTGATTCGGCAAAGCTGGGTGAAAGCTCGCAAGCGACATCGATTGGTACGTCGAGCCGCCGCCGCGATCAAGGAGTTCGCACGACTGCCTGGACTCGTTCATCACCAGGTAGAGGGCCTGATAACGGTACTAGATGAAAGGACGACGGCGTGGTTGAAGGTCATTTACAGACCGCACTACGTCGGAGGGCCAGCCTATATCGGTCTGGATCCCGCTAGGGCCCAAGGTGTTGGGCTGTACGCTGGCCTCGGATCTGTTCGAGTGCACGCTCATGATGTGATGAATTCCTCGCATCTTCGCGCTTGCGTCTGGGCGTTTGTCTTCAGTCTGTGGGAGCGTATTCGTGATCGTGCCGGGGTACTTGAGGTGCTTCAGTTGGACGATCCGCAGACCTATTTCGATCCAATCAATACCGAGAACCTGGCTGCCGCTATACCGAAACTCGTCGAGGCTGGCATGGCTCCGATCATCACCTCGAATGACAGCCGGTTTATCGCGGCCGTAAAGAGCCGATTGCCAAAAACTTCTTTGGCTTCTCCATCCTGGACGATGCTGCAAATCAGCCCCATCTCTTCCTCTCGGTATACGGCTGCGTTCACCCCAGCCGTCGAGGAGGTGTTGGAGCGGCGCGCCGTATGGCTTGAAGACGAATCGGACGTTGCCAAGGCGCAGGAGTTCGTCGAGCGAGTACGCCTTCATATTGAGAACCGGTTGTGGGATTTGCTGGCTTCAGATCCGATCCTCATCTACAAGCCTACTCTTGCGGACCTGATCGCCCACATCAGTAGTGCTCGCAACGGCGGTGAGCAGCCCTTCAATGAAGTACCGTTCGAACGTCTGCTGAACTGCAAATCACTGCGCCCAGGTTCAACGTTCTATTCAATCATCAATAACGCGCATCACCACCTGCGCGACGTCACCCCTTTTGATGCCGGAGAAGTGAGCGGCGCTTTTGATGAAGTCGACCGATTTATCCGCAGTTGCAGTGCGTCATATGCCCGGTTCATGGGGCGACTCACCCGTGAGGACGAAGACTTCTTTTTTGCGGCTTCGCCCCCTGCGCCTGCACCGATCCCTCTCAACGAGAGTCCGATTCGAGTTCTCGGCGACTTTAGCGCTCGCACACATTCGGATGCGGTTGCCGTAGAGGGTGAGCTCACCACGGTCTCACTCTCCGACTTGGGTGAGATTGCCCTTTATGTCATCCGAAGTTCCAGCCTTGGAGCACTTGCATTGCCGGGCCAGACGGTAGCTGTTTCGCTGAGCGAAGAAGCCAAAAACGGTGACCCTGTTATTGCTCTCTATGGGAGCACCGTCTTGGCCCGTCGATATCACTCCGACCAGAGAGATCCTTCTAAACTGACTTTGGCGTGCGACCAGTCCGGCACAGAGCGCGTGGCGCCTGCCATGACGTTGTCAAAAAATAAGGTTCGTATACTTCCTATAGTCGGCATTTTCTACGGCAGCACATCGCGAGAGGGAGATCAGGAAGCTCGCTGCGTCGATGCCTGTTCGATACTGGACAAGCCGCTCCTCGCCGCACGCATCATCGAGGACAGCGGCTACCCGGTCGTCAGAAACGGCGATCTCGTGTTGCTGGAGTCTGTTGAGTTATCGAGTGAGTCACTTCTGGATCCGATGAAGGGTGACGTCGTAGCACTCGTGGCCGAGAAACACGGCGAGCAATTCGCCTATCTGAAAAGGGTCGGGTTTTCCATCCAGGGCACTGGCCTACGCATTTTCGAGAACGTGGGTACCTTCGGCGACTCACTGGCGGTGTCCTGTTCTGAGGGGAACCACAGCGCTATTGACTGTTTACAGCTGCAGAGCATGTGGCGCGTTCACGGGGTTATCAGAGCAAGGCTGCCAGAGCACTAG	MAVEQSPLELESSTLEEVVEALSLGRSITLPEDAGSFLFGTEDARIAFRFYASRRELWAQQKQLSSTEIDQLLQALETPKAAVPKVQVAASALKRPRWRITQIRAHRFAGLHRHCGADGQAPDPVSLELDRDVTCVWGFNGAGKTAFQSAIMWCLTGQAHRSQHKPSFVHQPITLELMQASDEENPAPDEVANSIALPPIVPLPSAEDLTALQDKPAVDTWVELTLREHSGQEVVVRRELKLGARGTVTTPVSGIEQLGLPQWAIEAGTLMPAIATTMRFDEKTTFADAIAQLTGLRPLQDLGKRSERLAKRLTGEESDKAKEDESAALLRFLTSKRTLGEAWTMQAEALGDVPDLISPDQESEEKSCKASIESSINHLEELRQQGQNDIDEILASAVRLETKEQVEAFVNTLATAKERLATVALGSLPSIETLKRLGEIQDADKAVVIAKLEEIRGRALEQVARQKKKEETARWQLYAIVSQWHRRHHPEEPLSDCPVCGSDLTQVPPDALLDKAVLDALEASALAHTDATKTLQDWQQAAASELLEALPNSLRPFVDVRSRATLLEIYRDAYLSELLKDPAFSTQLRSLKRNAEKVWNHSVQAHPLPALPESQTIELPQELRSTSLATRFANLQAALLLALHRQLSEDQIKLVTQRYFGSGSFSRAKASDDQLEMAMCPLRHQVIALQQAVTSADPIIALLRQMNEIEVIRQSWVKARKRHRLVRRAAAAIKEFARLPGLVHHQVEGLITVLDERTTAWLKVIYRPHYVGGPAYIGLDPARAQGVGLYAGLGSVRVHAHDVMNSSHLRACVWAFVFSLWERIRDRAGVLEVLQLDDPQTYFDPINTENLAAAIPKLVEAGMAPIITSNDSRFIAAVKSRLPKTSLASPSWTMLQISPISSSRYTAAFTPAVEEVLERRAVWLEDESDVAKAQEFVERVRLHIENRLWDLLASDPILIYKPTLADLIAHISSARNGGEQPFNEVPFERLLNCKSLRPGSTFYSIINNAHHHLRDVTPFDAGEVSGAFDEVDRFIRSCSASYARFMGRLTREDEDFFFAASPPAPAPIPLNESPIRVLGDFSARTHSDAVAVEGELTTVSLSDLGEIALYVIRSSSLGALALPGQTVAVSLSEEAKNGDPVIALYGSTVLARRYHSDQRDPSKLTLACDQSGTERVAPAMTLSKNKVRILPIVGIFYGSTSREGDQEARCVDACSILDKPLLAARIIEDSGYPVVRNGDLVLLESVELSSESLLDPMKGDVVALVAEKHGEQFAYLKRVGFSIQGTGLRIFENVGTFGDSLAVSCSEGNHSAIDCLQLQSMWRVHGVIRARLPEH				NA	NA	NA	NA	NA
D1-36_02049	1725			hypothetical protein	ATGCTCAGTCTGTTTCGGCACAAAAGGCAAAAGCCTCCTCCGTCACCAACCGTAAACGTCGCCGATGGGTACCTGCCCATCGAATCGTCCCAGAACTTGTTAGCAGCCGAGCATCGCCGGCAGTTGCTTGATCGCATTTGGCAGTACACCGCCCTCTCCCATTCCCAATTCAGCCAGCTCTATTTAAATCCGATCCATCGCTACGCCGAACTGGTCCAGCAGCTTCCGGCCAGCGAGACGCACCATCATGCTTATCTCGGCGGCATGCTCGACCATGGCCTCGAGCTGGTTGCTTGCAGTTTGAAATTGCGTCAGTCGTATCTGCTTCCCACCGGCGTCGCACCCGAAGACCAAGCCGCCCAGACCGACGCTTGGTCTGCTGGCATCGCCTATGGCGCGTTGCTCCATGACATCGGCAAGATCGCCGTGGACCTGCTGGTCGAACGCCAGGATGGCCGTGTCTGGCATCCTTGGCAGGGATCGCTGGATCAGCCCTACCGTTTTCGCTACCTCAAAGATCGCGACTACCACCTGCACGGCGCGGCCGCAGGCTTGCTCTACACCCAGATTCTCGGCCGCTCAATCCTCGATTGGCTCAGTGGATTTCCTACGATGTGGGCCAGCCTGCTGTATGTCCTGGCCGGCCAGTACGAACGTGCTGGCGTGCTCGGTGAATTGGTGATGCAGGCCGACCGCTTTTCCACTGCGCAGAACATCGGTGGCAACCCAAGCAAGGCGCTGCAAGCACCCATTCATTCACTGCAACATCACTTAATCAGCGGACTGCGTCATCTGGTTCAGCACGAACTGAAACTCAACCAGCCAGGTGCCGCAGGATGGCTGACGCACGACGCACTATGGCTAGTCAGCAAGGTTGTCACAGACAAGCTGCGAGCCTACCTGCTGTCGCAATCGATTGAAGGCATTCCCTCGTCCAACCTCGCGGTGTTTGACGAGCTGCAGTCACATGGATTGGTTGAGTCCACTCCGGAAGGCAAAGCCATCTGGACCGCGCTTGTGACACAGGGAACCTGGCAGCAGAGTTTCACTTTTCTGCGCCTTCAACCGGCGTTGATCTGGGGGAGCGAAGACCGGCCTGAGGCTTTCAGTGGAACGGTGAGCATTGCAGTCCATGACCGTTCAACTGACACCCCGGTACCAACACCAACGCCCGAAACAGCTAGTACAAGGTCAGGTCAAAGCCAACCGCAGCCTGATCTCATGGCGCTAGAGAATGCCGATTACCTCGGCACGCTGCTGGACCTGTTCGAGTTGGGTGAGCATGGGACGAACGATGCACCGTCAGAAAATGCTGACGATACTTCAACGCTTCAATTGGATAACCCAGGCCAGGCATTCCTGAATTGGGTCAAGGAAGGCATTCTGAGCCACAAGCTGATCATCAATGACAGCAAGGCCAAAATCCACACGGTGGGTGGCAGCGTATTTCTGGTCACGCCTGGTCTCTTCCAACGCTATGCGCAGGAGTTTCCAGGCGTTTCGCAGGGTTCAGATCAGGAGGTTGAGGAATGGCGCTGGGTGCAAAAGCAGTTCGAGAAGCTGAAGGTTCACAAGAAGCGAGACAACGGCCTGAATATCTGGGCATGCCAAGTGCAAGGCCCTAGGAAGAAAACAACTTTGAAGGGCTACTTGATTGAGGATCCCAAACTCTTTTTTGAAGTGATGCCACTCGACAATCCGTTTCTTAAAATCGAAAGAGATTAA	MLSLFRHKRQKPPPSPTVNVADGYLPIESSQNLLAAEHRRQLLDRIWQYTALSHSQFSQLYLNPIHRYAELVQQLPASETHHHAYLGGMLDHGLELVACSLKLRQSYLLPTGVAPEDQAAQTDAWSAGIAYGALLHDIGKIAVDLLVERQDGRVWHPWQGSLDQPYRFRYLKDRDYHLHGAAAGLLYTQILGRSILDWLSGFPTMWASLLYVLAGQYERAGVLGELVMQADRFSTAQNIGGNPSKALQAPIHSLQHHLISGLRHLVQHELKLNQPGAAGWLTHDALWLVSKVVTDKLRAYLLSQSIEGIPSSNLAVFDELQSHGLVESTPEGKAIWTALVTQGTWQQSFTFLRLQPALIWGSEDRPEAFSGTVSIAVHDRSTDTPVPTPTPETASTRSGQSQPQPDLMALENADYLGTLLDLFELGEHGTNDAPSENADDTSTLQLDNPGQAFLNWVKEGILSHKLIINDSKAKIHTVGGSVFLVTPGLFQRYAQEFPGVSQGSDQEVEEWRWVQKQFEKLKVHKKRDNGLNIWACQVQGPRKKTTLKGYLIEDPKLFFEVMPLDNPFLKIERD				NA	NA	NA	NA	NA
D1-36_02050	195			hypothetical protein	ATGAACCTCACTGACGCCACGCTCATATTGCTGCTCGCGGCACGTATCCATGGAACAGACGAAGCCGTCAGGGCCTCGGCGAAAAGCGTGGTCAAGAAGCTTCCGCGCAGCAAGCGTGATCTGATCTACAAGGTGATCGACAGCCGAAGTCCGCTTGAGCTGGTGGATTACCTGGCGGAGAATCTGGATACGTAA	MNLTDATLILLLAARIHGTDEAVRASAKSVVKKLPRSKRDLIYKVIDSRSPLELVDYLAENLDT				NA	NA	NA	NA	NA
D1-36_02051	963	traC		DNA primase TraC	ATGCGCAATATCTACCAAGACGTGACTGACAAGATCGTTACCGCGTTGGACCAAGGCGTAGCGCCCTGGATCAAACCCTGGTCCTCAAATGGCTCAGCTGACATTGCCCACCACCAACCCTACCCCATCAACGCCATTACGCAGCGTCCCTATTCAGGCATCAATTTACCGTTGCTCTGGGCCGAGGCCAGATTGCAGGGGTTCACTCAAGATCGTTGGCTGACCTTCAACCAAGCCAAAAAAGCCGGCGGGCACATCCGTAAGGGTGAGCACAGCACTCTGGCCGTGCTCTATAAGCCGATGGAGCGCGAGGAACAGACCGAATCAGGCCAACCCGTTCTTGATGAGAACGGTCAACCCAAGGTCGCTCACTTTGGCATTCTCAGGACGCATTTTCTGTTCAACATCGAGCAAACGGAGGGGCTCGAAACGCTCAACGAAACCGTGCTCGAAACAGAACCGAGCGATCCCTTCTTCCCCAACAGCGCTGCGGAAGATCTGCTGCTAAGTTCGGGCGCAAACATCATTCATCGATTTGCCGACGAAGCCTTTTACCACCCGGTCAGGGATCTCATCCAACTGCCGACAAAAGCGCAATTCCACGATCAAGGTGGATACTACGCCACTGCACTTCACGAGCTGACGCACTGGACCGGACACCACACTCGATTGCAGCGTGAAGGTGTGGCCACACCTCGCCCATTCGGCTCGCCAGACTATGCATTTGAAGAGTTGATCGCCGAAATGGGCGCCGCTTTTTTATGTGCCTACGCCGGTATACGGGGAGAGCTTCGGCACGAGGGCTATATCGACTCCTGGCTCGGCCTGCTGAAGGCTGACAACCGCGCGATTTTCCGCGCCAGTGGCCAGGCCCGATGCGCGTCGGAGTATGTCCTCAACCTGGAACAGCAACGGAAGCAGTCGGGAATGGATGGCTCGCGATGCATGGACGATGGAGCTTGA	MRNIYQDVTDKIVTALDQGVAPWIKPWSSNGSADIAHHQPYPINAITQRPYSGINLPLLWAEARLQGFTQDRWLTFNQAKKAGGHIRKGEHSTLAVLYKPMEREEQTESGQPVLDENGQPKVAHFGILRTHFLFNIEQTEGLETLNETVLETEPSDPFFPNSAAEDLLLSSGANIIHRFADEAFYHPVRDLIQLPTKAQFHDQGGYYATALHELTHWTGHHTRLQREGVATPRPFGSPDYAFEELIAEMGAAFLCAYAGIRGELRHEGYIDSWLGLLKADNRAIFRASGQARCASEYVLNLEQQRKQSGMDGSRCMDDGA				NA	NA	NA	NA	NA
D1-36_02052	330			hypothetical protein	ATGTCCGACTCACTCACAAGCGAAGCACTGAACACTCTGCGCTTGCCCGTTGTGTTCACTCCAGACGCGTGGCAACACGCGGTATTGCTCGATGGTTCAAATCATCCTGAAAAACTGCAGCTCGATAGGCTGAGCAACGTCGTACGCGCAGCCTTCAAAGCTCACCTGGCCGATCCAAACGCACCCTACGTGGTGTTTGAGGTAGCCAAGTTCGGGTCAGTGAGTGATGCAGAACATGAACCATTGCTGCGACTGAGCCTCAGCCTACTTCAGGTATCAGACCAGCCTAACGCCTTACTGATAGCGCTTGCGGAAGAGCAGCAACGCTGA	MSDSLTSEALNTLRLPVVFTPDAWQHAVLLDGSNHPEKLQLDRLSNVVRAAFKAHLADPNAPYVVFEVAKFGSVSDAEHEPLLRLSLSLLQVSDQPNALLIALAEEQQR				NA	NA	NA	NA	NA
D1-36_02054	1539			hypothetical protein	ATGCTCATGAGCACCAACAGCTACCTGGAGTTTTACCTCTCCCTGCTGGCATGGATCATTAACAACGGTATCTGGAACGTCCTGTCCGATACTGGACTGTTCGCCGCGCCCTTTGGTGCAATCATCTTGCAAGAATGGTTGTCGGCCCGTCAGCAAGGCGCGGATGAAGGCAACAAGGGATTGCTCTCGGTGCCTCGAATCGAAAACCGGCTTTGGTTGGCTTACATCGTCGTATTGTTCGGCTGCGCGCCGGTCTTCCCGCTAAACCTCGCCTCAATGGCCTTCGATGATGCAGCGAGCCAACGGTGCGGTGTCAGTGTGGCCAAGCCATCGGAAACCGCCTGGGGAATCACTTTCAACACCATCGGCGAACGCTCTGCCAATGTGCCGATCTGGTGGTTTCTGGTGCACGCCTTGAGTAAAGGAGTGACCGCAGCGGCCACCGCCTCCATTCCCTGCGCACCGGACATCCGGCAGATGCGCATGGAGATCGACAGTTCTCGCATCGATAACCAGGTACTGCTACAGGAAGTCGCCGACTTCACTCGCGACTGCTACGGCTATTCCCGCTCTCGGCTGTTCACCAATCGTCCGCAGCTGGACAAGGCGCAAAGTCATGATGCGTCCTGGATCGGCTCAAGCTATTTTCTCGACACTCCGGGCTACTACGACACCGATCGCTCACGGACACCGCGAGTCAGTTGGCCCTATGATGAAACACGCGATATTTCTTTGCCACGGCTGGAGAATGGCGCTGGCTACCCCACTTGCAAACAGTGGTGGAATGATGGCGGTGTCGGGTTGCGAGCACGATTGATCGAGCAAGTTGACCCTTCGCTGCTGACTCAGCTGAACGGCTGGTTGACTGGCCGCTCAAGCAACGAGATCGAGGATGCCACCCTGCGCGAACTGGTCAGCCCGCGCCAGCAATCGATGTCCATGTCGCCCGGACAGGTGTACCAGGACTACGGCTCCAGTGCTCGCGGCGGGTCGATCAATCAGGGGCTCAACAACTTAGCCACCAACACTGGGCTGGCCCTCGGCTCCTTCAGCAACTTCCCGGCAATGAATGCACTACGCGCTGCCCTGCCGATGGTGCAGGCTTTCCTGATCATGGGCGTCATCATCAGCCTGCCGCTGATCCTGCTGGTCAGTACCTACCAATTGAAGACCGTCATGACGGCGACGTTCGCGCTGTTCACGCTACACATGCTGACCTTCTGGTGGGAGTTGGCCCGCTGGGTCGACTCCAGCATGCTCGATACCTTGTACAACCAAGTGTCGGCGTCCAATCAGGTGCTGTTGTCGCTGCCGACATCCGGATTTATGGATGGAACCGTCACGGCACAGGTGATTGAGTATGTGATGGGGGCGATGTTCGTCGTGCTTCCGATGTTGTTTTTGGCTGCAATGAGCTGGGCAGGATATAGCGTTGGCTCAATCGCCGACGGCATGCTTAGCAAAGGAGCAGCTCAAGCGCAGGACGCTGGTGCAAGGGGCACTGGAGCTCTGATGTCTGCCGGAAAGGCCTTAAAGTAG	MLMSTNSYLEFYLSLLAWIINNGIWNVLSDTGLFAAPFGAIILQEWLSARQQGADEGNKGLLSVPRIENRLWLAYIVVLFGCAPVFPLNLASMAFDDAASQRCGVSVAKPSETAWGITFNTIGERSANVPIWWFLVHALSKGVTAAATASIPCAPDIRQMRMEIDSSRIDNQVLLQEVADFTRDCYGYSRSRLFTNRPQLDKAQSHDASWIGSSYFLDTPGYYDTDRSRTPRVSWPYDETRDISLPRLENGAGYPTCKQWWNDGGVGLRARLIEQVDPSLLTQLNGWLTGRSSNEIEDATLRELVSPRQQSMSMSPGQVYQDYGSSARGGSINQGLNNLATNTGLALGSFSNFPAMNALRAALPMVQAFLIMGVIISLPLILLVSTYQLKTVMTATFALFTLHMLTFWWELARWVDSSMLDTLYNQVSASNQVLLSLPTSGFMDGTVTAQVIEYVMGAMFVVLPMLFLAAMSWAGYSVGSIADGMLSKGAAQAQDAGARGTGALMSAGKALK				NA	NA	NA	NA	NA
D1-36_02055	309			hypothetical protein	ATGAAACGCTCACTGCTATTCACTTTGCTTTCAAGTCTCTGGGTTGCAGCAGTGATGATCCTGACCGCCGCAATGGTCGCCTGGATCGGCCGCACTGCGCTGGGCAGTTTCGAGGTCTGGCAGCAAACCTTGGAATCGATACGGCCTTATCTGCGGTGGTGGCGCGCCCTGCTCTATGGCGTCCTCTTTGCGCTCTGGTGGGACCTGCTGAGGCACTACCGATATCGACCGCAGGACCGACTGCGCGTGAAACGCGCCGGGATATTAGGGCTGTTGCTCTTTACCTGCGTCGAGCTCACTCGATTGTGA	MKRSLLFTLLSSLWVAAVMILTAAMVAWIGRTALGSFEVWQQTLESIRPYLRWWRALLYGVLFALWWDLLRHYRYRPQDRLRVKRAGILGLLLFTCVELTRL				NA	NA	NA	NA	NA
D1-36_02056	1383			hypothetical protein	ATGAGTCGACTTCTCGCAGGATCATGGTTGGGCTCGATGATTTTATTGCTCAGCGGGCTGCTCGCCGTGGCCACCCATGCCCATGCCGCCGAGGACGATTACCGTCTAGGCACTCAAGGCGAAGTGCTCGACGACCGGGTGATGTACACCATCGGTGGTGGCTCGGCAGCGGGCTCGCCGAGCTCGCTCTATCGCCCCAACGGGCTCGGTGTCGGCGGATCCTGGCAGGCGAACATGATGTGCGGAAACATGAGCCTCACCAACACCTTGCAAAACCAGTTGAACGGCGTCACCGAAGGTTTCCAGCAGATCATGGGCAGCATCGTGCGAAACGCGACCCAAGCAGTCATGTCGCTGCCGGCGCTGATTATTCAGCGCGCTAATCCCGGACTCTATGAGTTGCTCAGTAACGGGGTGATGCAGGGGCGTATCGACTTCGACCGCTCCAAACTGACCTGCCAGGCCATGGCTGAGAAGATGGCGGACAAGGTCGGTCAAGCCGGCTGGGGCGCATTGGCCAAGAACCAGGAGATGCAGGGCAACCTCGAACAAACCGGCGGTGATGCGGTGGCCGCAGTGAAAAACACCGAGGCCCGTAACGGCAACAATGGGGTGTCATGGGTCGGCGGGCAGAAGGCTGGAGGTAGCGGACAAACACCCATCCGGGCAACCTCCGACGTAGTGCGCGCGGGCTACAACCTGCTGCATAACCGGTCCGTGGATGACAGCGCCTCGATCAGTAGCAGTGATTGCCTGGGCGGCGCTATTTGCCAGGCATGGACCTCACCCCAAGAGGAATCCGAATGGGCTGTTCGAGTGTTGGGCGAGACCGAAGTCGCCACCTGCGACACCTGCGAGACTCTGCGGGCTACCGCTGGCAGCGGACTGACGCCGCTGATCCAGGAGGCCTACAGTGAACACCTCAAGACCCTGCAAGGGCTGTTGTCCGGCTCATTGCCGCCTACCCCTGACAATCTGAGCAACGCCTCCAGCCCGATGCTGCCAGTGACCCGAGGTGTGATCGAAGCCCTGCGCGACGATCCTGATCAGGAACTTCTGGCACGGCGCCTGGCCAGTGAGACGGCCCTATCCAGCGTGCTCGACAAAGCGCTCCTGCTATTGCGCACGCTGCTGGCAGGCAGCCACGAACCTAACATCGCTTCCGCCGAACCGGCCCAAACAGCCTTGACGAAAAACATCGACACGCTGGAGCGCGAAATCCGCCTGTTGCAGACCGAGCTGCAGGTCCGGCAGATGCTCACCACTAATACCGCCAGTCTGGTGCTCGATCGACATGCCGGAGGTGCTGATGCGTCGCGCACCGTCGAACAAGGCGACCCTGAACCTGGCCGACTCGACGACGCTGATGCCAGGCGCAAGTGA	MSRLLAGSWLGSMILLLSGLLAVATHAHAAEDDYRLGTQGEVLDDRVMYTIGGGSAAGSPSSLYRPNGLGVGGSWQANMMCGNMSLTNTLQNQLNGVTEGFQQIMGSIVRNATQAVMSLPALIIQRANPGLYELLSNGVMQGRIDFDRSKLTCQAMAEKMADKVGQAGWGALAKNQEMQGNLEQTGGDAVAAVKNTEARNGNNGVSWVGGQKAGGSGQTPIRATSDVVRAGYNLLHNRSVDDSASISSSDCLGGAICQAWTSPQEESEWAVRVLGETEVATCDTCETLRATAGSGLTPLIQEAYSEHLKTLQGLLSGSLPPTPDNLSNASSPMLPVTRGVIEALRDDPDQELLARRLASETALSSVLDKALLLLRTLLAGSHEPNIASAEPAQTALTKNIDTLEREIRLLQTELQVRQMLTTNTASLVLDRHAGGADASRTVEQGDPEPGRLDDADARRK				NA	NA	NA	NA	NA
D1-36_02057	957			hypothetical protein	ATGTCTGCTGCCTGCCCGCATATTTCGCCCCAGAAGTTACATCCTTTGGTGCTGAGCATTCTGCTGGCATCCGGGTCAAGCGTAGCGCTGGATACCGGCAGCATTACCGCCTCCGTGCTTTCTCCAGACTGCATCGAGTACAGGGTCGTCGGCATCTGCTTCTGGTTGCTCTGCACCCCTTTTGGCTGCACGGTTAAAACCTCAACCAGGGTTCGTCATTTCATTCCTGAACTGGTGGTCTCCAGCTATGCCACCACCGGTAGCAATCCGTGGACCGAGATGGCCGCTCTCTCATCTCCCACCAGCGGTGCGGAAGGTGGCGGTAACCTAATCACGCCGAACACCCAGCGCGATAACCTGCCTCGTTTCAAAAATGTTGATGGCATCGGCCATCCCGGTGGCTGGGCCGCCACGCAACTTGCCTTGCAAACCGGCTACGCCTGCACCAGCGGCGCCACTGCGTTCATGCCCTACTACCTGAGCACTTGGGACTCACTGGCCTGGCGTCATGGCATCCCGGAAAGCTTTTACCCCGAGTCGCTCGCGCCCGGGATCCGTGAAATCGGTCGTCAGCTCGCGGGAAACATGTGGGGCAACGTCTATCCCCGGCAAGGATTTTTGGTGCAACCCGACGACTTCAAAGCCGCTGCGGTGATGGCGCAGCGAGCGGGTGACGTCATTACCCGCAACTGGCAACCGCACGTGTATGTCCCGCTCACACCCGTACCACGCGATGGTTATTGGCCGCCTGGCCCGATCGTTGAAAACGACGCTTCGACCCACAAATGGCAATTGCTCTACCCCCGGGTTCATCCCACATGCGCCATCTTCCCCAGCGATCCGGTGCAGAGCGCGGATGGCGGCTACGCCTGGTCGCTGTGGCGCCCCTATAGCTGCTGCAAGCGTGAGGGACAGACCTTCCTGTTCAGCATCGACTTCGAAGGTGGAACGTCATGA	MSAACPHISPQKLHPLVLSILLASGSSVALDTGSITASVLSPDCIEYRVVGICFWLLCTPFGCTVKTSTRVRHFIPELVVSSYATTGSNPWTEMAALSSPTSGAEGGGNLITPNTQRDNLPRFKNVDGIGHPGGWAATQLALQTGYACTSGATAFMPYYLSTWDSLAWRHGIPESFYPESLAPGIREIGRQLAGNMWGNVYPRQGFLVQPDDFKAAAVMAQRAGDVITRNWQPHVYVPLTPVPRDGYWPPGPIVENDASTHKWQLLYPRVHPTCAIFPSDPVQSADGGYAWSLWRPYSCCKREGQTFLFSIDFEGGTS				NA	NA	NA	NA	NA
D1-36_02058	255			hypothetical protein	ATGACTCAAGACTACGAACAGCTCCGTCTGCAACTCGCGGAAAACATCCGCTCGATGCGACGCGTGAAGAACCTTACCCAGGAGCAATTGGCGCTCATGGCCGAGGTGGATCGTACCTACGTGAGTCAAATCGAACGAGGGGTAGGCAATCCGTCGTTATTGGTCCTCTGCAAACTCGCCAACATTTTCGAGATCAAAACGGATCAGCTGCTCATTGAGTCTGACGTGCTTGCTCGTACACTGAGCGCTGAATGA	MTQDYEQLRLQLAENIRSMRRVKNLTQEQLALMAEVDRTYVSQIERGVGNPSLLVLCKLANIFEIKTDQLLIESDVLARTLSAE				NA	NA	NA	NA	NA
D1-36_02059	249			hypothetical protein	ATGAAAGCCGAACAAGTGTTGAGTGATGATCTGGTGAGCCGACTGGAGGGTAAAATCCCAGCTATGGCTGAAGGTGCGATCAATACGGCCTATATCAACGCGCTGGCGGCCGGACGCAGCGTGATGGAAGTCATGGACGGCATGCTCGTTGAGACGACTGCTGATGGTAAGCACAAGGTTATTCGAGTGGCCAAGCCCAAGCATAAAGTGACCTTGGGCGGCATTATCAAGGTGCGTCACTGCTCATGA	MKAEQVLSDDLVSRLEGKIPAMAEGAINTAYINALAAGRSVMEVMDGMLVETTADGKHKVIRVAKPKHKVTLGGIIKVRHCS				NA	NA	NA	NA	NA
D1-36_02060	747			hypothetical protein	ATGACGGTTCCTCGGCTGAGGATGTTTGCCGGTCCTAACGGTTCTGGCAAAAGCACGATGAAAAGTGCCGTTCCTTCCCATCTGATTGGTATCTACATCAATCCGGATGAAATCGAAAAGGCTGCCAAAGAGGGTGGACGCCTGGAGTTCAGCGATTTTCAACTGGAAGTCGAAGGTGACGAGGTTCTCGGCTTTATCAAGGCGCATCGACTGATTCGGTCGACCCAGCTCGTTGAAGAGGCATCCAAAATAGGCTTCAGCAATAACGGGCTGAATTTCCAGTCCGTCGCGATGAACTCCTATTTTGCTTCCGTGCTCTCTGATTTCATGCGGCACAAGCTCCTTGAAGCGCAGTTGTCTTTCACCTTCGAAACGGTGATGTCTAGCGAGGACAAAGTCGCTTTTATGCTTAAGGCAAAAGCGTCGGGATATCGAACCTACCTCTACTTTGTCGCCACTGAAGATCCTGACATCAATATCAACAGGGTCAAGAACCGTGTCGCGGCAGGTGGGCACCCAGTCCCCACGGAAAAAATTGTGCAGCGCTACGGTCGTTGCCTGAACCTATTGCCAGCAGCCCTCGCAGCCTCGAACCGGGCTTATATCTTTGATAACTCAGGCGCTGATCTTGTGCTGCTCGCTGAAGTAACAGACGGGACCGACCTTGAATTCAGGGCTGATGAGATTCCTGACTGGTTCATGCAAGCCTACGTGGAGAAGGTGTTCAAGGATTTGCTGCCGGGTTGA	MTVPRLRMFAGPNGSGKSTMKSAVPSHLIGIYINPDEIEKAAKEGGRLEFSDFQLEVEGDEVLGFIKAHRLIRSTQLVEEASKIGFSNNGLNFQSVAMNSYFASVLSDFMRHKLLEAQLSFTFETVMSSEDKVAFMLKAKASGYRTYLYFVATEDPDININRVKNRVAAGGHPVPTEKIVQRYGRCLNLLPAALAASNRAYIFDNSGADLVLLAEVTDGTDLEFRADEIPDWFMQAYVEKVFKDLLPG				NA	NA	NA	NA	NA
D1-36_02061	2748			hypothetical protein	GTGCGTACCAGCGATGCGGGCAACCGAACTTCTGCATGGAAAGCCTGGCGCCACCCATTGCGCCCTCGGGCCACCTTGGCCGATGAAGCTGCACTCTATGCGCATAACCCCAGCTTCACCGATCACCTGCCATGGGTCGAATACCTCGACACCCAGCAGTGTTTTCTACTGGATGACAACCGCTCGGTGGGTGCCGTGTTCGAGTTGCTGCCCATTGGTACTGAAGGGCGCGAACCCGATTGGTTGATGGCCGCCCGCGATGCCCTCGAGGATGCCCTGCAGGATAGCTTCGATGAGCTGGACCAAGCGCCGTGGGTGGCGCAGTTTTTCTGCCAGGACGATAACGATTTCACCCCCTACCTGACGCGGCTCACCGATTATATTCATAACAGCGCGCGAGGCACGGTCTTCACCGAAACGTTTTTGGAACTCAGTCGTCGTCATCTGAAGGCCATCGCCAAGCCGGGAGGTCTGTTCGAGGACAAGGCCGTCACGCGCCTACCCTGGCGCGGCAATAATCGACGGGGGCGCCTGGTGATCTATCGCTGGCTTGAGGATGGCATTGAGGAGACGGGACTTACCCCGGTGCAATCCCTGCAACAGGCTTGCGAACGTATCGTGGCTTCGTTGCAAGCATGCGGGGTGCAATCGGCGCGAGTCGATGGCCACGGTCTGTATGCTTGGTTGTTGCCCTGGTTCAATCCGGCGCCCAGGCTCACCGATGAAGCGTCCGAGGATTTTTACCAACGCGTGGCCTATCCGGAGTCAGGTGATGGCGAGTCGCTGGAACTGCCCTTCGATCACGACTTCGCCGAACGGCTGTTTTTCAACGAACCGCGTTCGGATGTGCAACAGGGACTCTGGTTTTTCGATGGACAACCCCATCGGGTGATGGTGGTGGACAAACTGCGGCGGGCACCGTCGATTGGCCAACTCACCGGAGAAACCCGCAAGGGCGATGCAGTCAATGCGCTGTTCGACCAGTTACCCGAAGGCACGGTGATGAGCCTGACCCTAGTGGTCAAGCCGCAGGACGTGCTCGAGGATCAGTTAAACCGGCTGGCGCGCAAAGCCATCGGTGAAAACCTGGCCTCGACCCAGACCCGCCAGGATGTTGAAGAGGCTCGCGCGATCATCGGCTGTCAGCACAAGCTATACCGGGGCACCCTGGCATTTTACGTGCGCGGTCACGATGAACAGCAATTGCACCAGCGATCGGTCAGCCTGGCCAACGCGCTGCTGGGTGCGGGGCTGCAACCGGTACGTGAAGGCGATGAGGTCGCCGCGTGCAACAGTTACCTGCGTTGGCTACCGATGTCTTACAACCCGGCCCGCGACACGCGCAACTGGTACACGCGGCTGATGTTCGCCCAGCACCTGGCGAATCTGATCCCGGTGTGGGGGCGCAGTACCGGTACCGGTCACCCGGGCATCACCTTGTTCAATCGTAGTGGCTCGCCGTTGAGCTTTGATCCGTTGTCACGCCTAGACCGGGCCATGAACGGCCATCTGCTGTTGTTCGGTCCGACCGGCGCCGGTAAGTCGGCCACCCTGGTCACCCTGCTGATGCAGGTCATGGCGGTGTACCGCCCTCGCCTGTTTATCATTGAGGCCGGTAACTCATTCGGCTTGCAGGGCGACTACTTCGCAACGCAAGGCCTATCAGTCAATAAGGTCCAATTGAAACCTGGCGCCTCGGTCAGCCTCGCGCCTTTCGCTGATGCTTACCGTCTAGTCGAGCAGCCAGATCAGGTGGCGAGTCTTTCCATAGATGAGTGGGACGATGAGACGGCAGCCAGCAGAGAAGACCAGCGCGATGTTCTTGGCGAACTGGAGATCACCGCCCGGCTGATGATCACTGGCGGCGAGGCCAAGGAAGAAGCCCGCCTGAGTCGGGCCGATCGCAGCTTAATCCGCGAGTGCATTCTCGATGCGGCGCAGACCTGTGCGGCGGCGATTCGCCAGGTACTGACCCGCGACGTGCGCGACGCGTTGCTGCGAGTCGCCGCCGATACGCACTTGCCGGAGAAGCGTCGTGAGCGTGCCCAAGAAATGGGCGAGTCTATCGACCTGTTTTGCCAGGGTTTCGAAGGTGAACTGTTTGATCGCGAAGGCACACCTTGGCCCGAGAGCGATGTGACCATTGTCGATCTCGCCACTTACGCTCGCGAAGGCTACGAGGCACAGATGTCCATCAGCTACATCAGCCTGATGAACACCGTGAACAACCTTGCCGAGCGCGACCAGTACCTAGGCCGACCGATCATCATGGTCACCGACGAGGGCCATATCATCACCAAGAACCCGCTGCTGGCGCCCTTCGTGGTCAAGGGCACGAAGATGTGGCGCAAGCTCGGTGCCTGGTTCTGGCTGGCGACGCAAAACCTTGCCGACTTCCCCACCGCCGCGCAGACCATGCTCAACATGATCGAATGGTGGATTTGCTTGAACATGCCGCCCGCGGAAATCGAAGAAATCGCACGGTTCAAGAAACTCACGCCGGCACAGAAAGCCTTGCTGCTCTCCGCCAGTAAGGAGCCGGGGAAATACACCGAAGGAGTGGTGCTATCGAAGAAGCTCGAAACGCTGTTTCGGGCCGTGCCGCCCAGTCTTTATCTCGCCCTGGCCATGACGGAGCCCGAGGAAAAAGCCGAACGCTGGACACTGATGCAGAGCACCGGCTGCTCGGAATTGGAGGCGGCTTACCGGGTAGCTGAACGGATCGATAGGATGCGAGGAATTAAGTGA	MRTSDAGNRTSAWKAWRHPLRPRATLADEAALYAHNPSFTDHLPWVEYLDTQQCFLLDDNRSVGAVFELLPIGTEGREPDWLMAARDALEDALQDSFDELDQAPWVAQFFCQDDNDFTPYLTRLTDYIHNSARGTVFTETFLELSRRHLKAIAKPGGLFEDKAVTRLPWRGNNRRGRLVIYRWLEDGIEETGLTPVQSLQQACERIVASLQACGVQSARVDGHGLYAWLLPWFNPAPRLTDEASEDFYQRVAYPESGDGESLELPFDHDFAERLFFNEPRSDVQQGLWFFDGQPHRVMVVDKLRRAPSIGQLTGETRKGDAVNALFDQLPEGTVMSLTLVVKPQDVLEDQLNRLARKAIGENLASTQTRQDVEEARAIIGCQHKLYRGTLAFYVRGHDEQQLHQRSVSLANALLGAGLQPVREGDEVAACNSYLRWLPMSYNPARDTRNWYTRLMFAQHLANLIPVWGRSTGTGHPGITLFNRSGSPLSFDPLSRLDRAMNGHLLLFGPTGAGKSATLVTLLMQVMAVYRPRLFIIEAGNSFGLQGDYFATQGLSVNKVQLKPGASVSLAPFADAYRLVEQPDQVASLSIDEWDDETAASREDQRDVLGELEITARLMITGGEAKEEARLSRADRSLIRECILDAAQTCAAAIRQVLTRDVRDALLRVAADTHLPEKRRERAQEMGESIDLFCQGFEGELFDREGTPWPESDVTIVDLATYAREGYEAQMSISYISLMNTVNNLAERDQYLGRPIIMVTDEGHIITKNPLLAPFVVKGTKMWRKLGAWFWLATQNLADFPTAAQTMLNMIEWWICLNMPPAEIEEIARFKKLTPAQKALLLSASKEPGKYTEGVVLSKKLETLFRAVPPSLYLALAMTEPEEKAERWTLMQSTGCSELEAAYRVAERIDRMRGIK				NA	NA	NA	NA	NA
D1-36_02062	417			hypothetical protein	ATGAAAAAGACCACGTTTCTCTGCCTGACCTGGATTAGCGTGTTTTCCTTGGTCCTGACGGGGTGTTCCACTGATAAGGAGACGCTGCTGCCCCATGGCGAGCAAACCATGCTGGACATCTGGAACAACGCCGGGTCGCAAGGCACTCAGCAGCAACTGTTGGATGCAAGGCAGCAGTTACGCCGTCCGCTGGCTCAGGCAGATGTCTCCGCGGCTCTCCAGGAACCGTACACGCGCACAGCGGCGAACGAGATCCGCAACCTGTTCCCGCGCCTGCCCAATCCCGATCTGGTGCTGTACGTGTATCCGCATTTGAGTGGTACCGAGCAAGCACCGGTTCCTGGTTACTCGACCGTCTTTCCGTTCTACCAACGGGTGCAGTACGCATTACCCGGTGAACGTCAGGAAGACTTGTAG	MKKTTFLCLTWISVFSLVLTGCSTDKETLLPHGEQTMLDIWNNAGSQGTQQQLLDARQQLRRPLAQADVSAALQEPYTRTAANEIRNLFPRLPNPDLVLYVYPHLSGTEQAPVPGYSTVFPFYQRVQYALPGERQEDL				NA	NA	NA	NA	NA
D1-36_02063	1515			hypothetical protein	ATGAAAGCTAACGCCTTACTTAAATGGCTAGTACCAGCTGTGCTGCTGGGCGTGGCTTTCATCATCTTGAAAACCTGGATAGCGGGTAGTACCTCCCCTCCAGAGCACCCAGTTGGCCAGGACAATATTCAGTTATCCGCCGAGCAAGCCAAGTCGCTCGGTGTTGCGGGCGACACTCCACGCGATACGGTCGCCACCTTGATCGGCCAAGTGAAGGCCATGCGTAGCGACATGCTCGGTTTGAAGAAACACAACGATTCGCTGCAGGCGGAAAACAATCGCCTGCGGGACAGGGAAAACAGTGTTGATTCGCGAATCCAAACGGCGCTTGGCAGTGTGACCCAGCAGGTCGACGAAGGCCGCCGACAAGCCAACGAAGCCCGACTCAAAGCAGAACAAGACAGTCGTCAGGCTCGCGGTCTGCTGACGCAATTGCAGGAACAGTTGTCGGGGTTGACCGGCAAAGGCAAGGATATGCCGATCGGACTGGGGCTTGAACCGGGCGACGGTGCTCAGTTCGAAGGGCAGCATTCTGCCAATGATGCACTGCAGTGGATTGAGCCCTTGGATGCTATGCCCACTGACGCCCAGGGCAATACCAAGACCGGGGCCGCCATGAGTCTGCCTACTGCTTTCAACTCACTGAAGGGTTTGAAGGACAATGCCATCGACCGCAGCCAGAAGCAGTTACGCGAGGTCTCCAAGGGTGAACGTGACTTGACACGCTCCGCTGATCGTACCGAAGGCGCGAAGCCGGTCTACACCATTCCCGAAAACGCAACATTGATGGGTTCGGTCGCCATGACCGCGCTGATCGGCCGAGTCCCAGTCGACGGCACCGTGAATGATCCTTATCCCTTCAAAGTGCTGGTCGGCCCTGAGAACCTGACCGCCAACGGCATCGATCTGCCGGACGTCGCGGGGGCCGTTATGAGCGGCACGGCCTCCGGCGACTGGACCCTGTCGTGCGTACGCGGACAGGTCGAGTCAATTACCTTTGTGTTTACCGACGGCAGTATTCGCACGGTGCCTCAGCCGAAGGCAGTCGCCAGCCGCAATGCATCCACCGCCCAGAGCTCGAACACCGACAAGATTCGTGGCGGACTCGGTTACCTATCCGATCCATATGGCATCCCGTGCATTGCCGGCGAACGCCGCTCAAACGCTCAACAGTACCTTGGCAGCCAGAGCTTGATCACCGCCGCCGGCGCCGGTGTCGCCGCCTTGCTTGGGGATGAGCAGAACAACAGCAGCTTGATCAGTTCGGGCGGCAGTACGCTTGGGGTCACCAGCAGCAGTGGCAATAGCGCGCTGAATTCAATTCTCAGTGGTGGGGTCAGCGACATTCGCGAGTGGATCAACAAACTGTATGGCGAGACCTTTGCTGCCGTGTACGTGCCACCGGCCGCCCAAGTCGCGCTGCACCTCGACCATGAAATTACTATCGACTACGAGCCCAAGGGCCGGAGCGTTCGCCATGAAAAAGACCACGTTTCTCTGCCTGACCTGGATTAG	MKANALLKWLVPAVLLGVAFIILKTWIAGSTSPPEHPVGQDNIQLSAEQAKSLGVAGDTPRDTVATLIGQVKAMRSDMLGLKKHNDSLQAENNRLRDRENSVDSRIQTALGSVTQQVDEGRRQANEARLKAEQDSRQARGLLTQLQEQLSGLTGKGKDMPIGLGLEPGDGAQFEGQHSANDALQWIEPLDAMPTDAQGNTKTGAAMSLPTAFNSLKGLKDNAIDRSQKQLREVSKGERDLTRSADRTEGAKPVYTIPENATLMGSVAMTALIGRVPVDGTVNDPYPFKVLVGPENLTANGIDLPDVAGAVMSGTASGDWTLSCVRGQVESITFVFTDGSIRTVPQPKAVASRNASTAQSSNTDKIRGGLGYLSDPYGIPCIAGERRSNAQQYLGSQSLITAAGAGVAALLGDEQNNSSLISSGGSTLGVTSSSGNSALNSILSGGVSDIREWINKLYGETFAAVYVPPAAQVALHLDHEITIDYEPKGRSVRHEKDHVSLPDLD				NA	NA	NA	NA	NA
D1-36_02064	813			hypothetical protein	ATGAAGCGGATGTCTACCCCGGCGCTCACCATCGCACTGATGCTATGGGGAGCTGCAGCGCAGGCAGTTGAGTTGATGCGTTGGGAACGCCTCCCCCTCGCGGTACCGCTGGTGATCAATCAGGAGCGGGTGGTCTTTGTCGATGAGGCTGTTCGCGTCGGAGTGCCCTCAACCCTGACGGGCAAGCTGCGTGTGCAATCAACTGGCGGCACGCTGTACCTGCGCGCGTCGGAGGCCATCGCCCCGACCCGCCTACAGCTGCAATCGGTCGCGACGGGCGAGATCATCCTGTTGGACATTGCAGCCAAGCCTGGCGATCAACCGCTGGAACCCGTGCGTATTCTCGAGAATGCTCAGGAGCAGCCTAGCGAGGCTGAATCCAGCACCGTCCCTGCTCCAGAACGTACGCCAATCCCAGTCGCTTTGACGCGCTACGCCGCGCAAAGCCTGTACGCACCGCTACGCACCGTGGAGTCCCTGCCCGGCGTACGTCGCGTCCCGCTAAAGCTGCGCACAGAACTGCCAACCCTGCTGCCGACCGAAAACGTGTCCAGCACGCCCGTCGCCGCCTGGCAACTCGGAGACTACTGGGTTACAGCAGTGAAGTTGCGCAACCGTGGCTCAGCGACGGTGCAACTCGATCCGCGTTGGCTACAGGCCAAGCTATTCGCCGCGGCATTCCAGCACACCTTCCTCGGACCTGTCGGCAGCGCCGAAGACACTACGGTTGCCTACCTCGTCACCCGCGGCGCCGGTCTTGAACACGCCGCGCTGCTCCTGCCTGTTTCGGAAGGTGCCGACGATGAAAGCTAA	MKRMSTPALTIALMLWGAAAQAVELMRWERLPLAVPLVINQERVVFVDEAVRVGVPSTLTGKLRVQSTGGTLYLRASEAIAPTRLQLQSVATGEIILLDIAAKPGDQPLEPVRILENAQEQPSEAESSTVPAPERTPIPVALTRYAAQSLYAPLRTVESLPGVRRVPLKLRTELPTLLPTENVSSTPVAAWQLGDYWVTAVKLRNRGSATVQLDPRWLQAKLFAAAFQHTFLGPVGSAEDTTVAYLVTRGAGLEHAALLLPVSEGADDES				NA	NA	NA	NA	NA
D1-36_02065	642			hypothetical protein	ATGAGCCGCTTTCGGAACAAGGTGGATGCCCAACAGGCCCATATTTTCAGCCTGCGCCTGGCAGTAGTGATCCTTGTCCTGGTCTGTGCCGGACTCTGGTACGGCTGGCGCTCGGCACCGACCGATCTGACCGTGCATGTACCACCAGATCTGCGCTCGGGCAGCACTCGCAAGTGGTGGGATATCCCTTCAGAAAATATCTATGCCTTTGCCCTGTATATCTTTGGTCAGCTCAACCGCTGGCCCTCGGATGGCGAGCAGGATTATCGCCGCGCCATCTATGGCTTGCAGTCCTACCTGACACCTGCCTGCAAGGCCTTCCTCGACGGCGACTACGAATACCGCAAGGCCGCCGGTGAACTCCGCCAGCGGGTGCGTGGCGTCTACGAAATTCTGGGCCGCGGTTACAGCGAAGATCCGGAACTCAGGGTCAAGCAACTCGACCGCGATAGCTGGCTGGTCACCCTCGACCTCAACGCTGATGAATATTACGCCGCGGAACCGGTGAAACGGGTGGTGGTGCGCTATCCACTACGCGTGGTGCGGTTCGACCTCGATCCCGAACGCAACAAGTGGGGACTGGCACTGGATTGTTATCAAGGCACGCCACAAAAAATCGCTCTGCCTGGAGGTGATTCATGA	MSRFRNKVDAQQAHIFSLRLAVVILVLVCAGLWYGWRSAPTDLTVHVPPDLRSGSTRKWWDIPSENIYAFALYIFGQLNRWPSDGEQDYRRAIYGLQSYLTPACKAFLDGDYEYRKAAGELRQRVRGVYEILGRGYSEDPELRVKQLDRDSWLVTLDLNADEYYAAEPVKRVVVRYPLRVVRFDLDPERNKWGLALDCYQGTPQKIALPGGDS				NA	NA	NA	NA	NA
D1-36_02066	414			hypothetical protein	ATGAACGACACTATCGAACGCCTTGCCGACGGCACCTTAGTGTTTCTGCCTGAGCGACTCAATCGTGATCCTGCCGTGTTGCGCGGTTTGACTAATGATGAGATGTGGGTAGCGCTCGGTACCGGCGCAATCATTGGGCTGGTGCTGGGAGTTCCTTTGGCGATTGCCACCGCCTCTATTGCCGTGGCGCCAACCAGCATGATCGCAGGCATGGCGGTAGTGTTATTGGCCGGTGGGGCGCTACTGCGTCGGGCCAAACGAGCCCGCCCCGAGACCTGGTTGTACCGCAAACTCGAATGGGTCCTCGCCAGCCGTTGGCGCCTGGGTCGCGGAAGTTTGATCCTTCACTCCGGCGCCTGGACGGTTCGCCGTTCGCGTCGGCTGCGCCCTGCTCTGTGCCGGTGGCAGCGATGA	MNDTIERLADGTLVFLPERLNRDPAVLRGLTNDEMWVALGTGAIIGLVLGVPLAIATASIAVAPTSMIAGMAVVLLAGGALLRRAKRARPETWLYRKLEWVLASRWRLGRGSLILHSGAWTVRRSRRLRPALCRWQR				NA	NA	NA	NA	NA
D1-36_02067	372			hypothetical protein	ATGCTCAAGTGCCTTGCCCCTCTGAAAAACAATCTGCGTGATCGTACGAGCCAACGCTTGATCGGTCTGCTGCTGGTGCTCGGCCCAAGCCTAGCTTTCGCCGAGCTCCCCACTATGGAAGCCCCTTCTCGCGGCGAAGGATCCGGGTTGATCGAGACGATCAAAAACTACGCCTATGACGGCGGCATCCTGCTCGGTCTGCTGATCGCTCTGCTCGCGTTTCTCGGCGTGGCCTGGCACTCCCTGACCGTTTATGCCGACGTGCAGAACCAGCGCAAGACCTGGAAGGACCTCGGCGCAGTGGTAGGCATCGGCGCCTTGCTGGTGGTGATCATTATCTGGTTCTTAACCAAGGCTGCCGCAATCCTGTGA	MLKCLAPLKNNLRDRTSQRLIGLLLVLGPSLAFAELPTMEAPSRGEGSGLIETIKNYAYDGGILLGLLIALLAFLGVAWHSLTVYADVQNQRKTWKDLGAVVGIGALLVVIIIWFLTKAAAIL				NA	NA	NA	NA	NA
D1-36_02068	240			hypothetical protein	ATGAGCATGACTGACGCCCAAACCGCAGCGTTCCAAAACGCCTCCGGTTTCTCGGCACAGAGCAGTTCGACGCTGTGGCTTTCCCTGGTTCTCGTTCTGGCTTTGCTTTGGTGCGCCTGGGTGATGTGGACGGCCTACCGGGGTTGGGCCGCCGGCAGTTTGCGCTTTGGAGCCTTCGGGGGCAGCGCCGTGCGCGTCTTGCTCGCCTTGCTCGTACTGATGTTCTTCACCCTGTCCTAA	MSMTDAQTAAFQNASGFSAQSSSTLWLSLVLVLALLWCAWVMWTAYRGWAAGSLRFGAFGGSAVRVLLALLVLMFFTLS				NA	NA	NA	NA	NA
D1-36_02069	369			hypothetical protein	ATGCTAGCCCCAATAACCAAATGGGCTTTCCACGTGCCAACTGTATTTTGCCAAATCTGCTGCCTGCTCGTACTGATCACGTTCAATAGTGGCAGCTATGCCGCATCTGCTCCTGAACAGGATCAGTTGAGCCTAATTTTGCAGCAACTCGAAACTATCGAACGCCTTGCGACTCGTGCGAAGACGGTCAGTACGGCTGAACCCAACGACCGCTATTGCTTCGACTACTTGCGCCTGTCTCAGGACATCCAACGTATTCGCCAGGGCGTGCAGGGCTATCTGTCCCCCTCCCGAGCTCAGCCCCGCGACCCCGCTGAACTGGTCGGCGACTACCGGCTCGACACTCCGCCTGAGGAACTGTCGCCATGA	MLAPITKWAFHVPTVFCQICCLLVLITFNSGSYAASAPEQDQLSLILQQLETIERLATRAKTVSTAEPNDRYCFDYLRLSQDIQRIRQGVQGYLSPSRAQPRDPAELVGDYRLDTPPEELSP				NA	NA	NA	NA	NA
D1-36_02070	867			hypothetical protein	ATGTCTAAGACAATCCAACGGTCGATGCTAGGCCTGATAGAAAACCTCGAACAGCAACGTACTGAAACTTCCAACTCTCTGAATTGGAAGGATTTTGAGGATCACGTTCTATATGTTTATCAGACGCTTCTGAGGCTCGGCGGCCACAACATCTTGGTCGCGAAGGATGCTTGTTTAATGGGCCGAGAAGGCGCCGAGTATCAGATTGACGTCTATTACGAGTTTGAATTGGCTGGGATACGGCATCGAGTTGCTATTGAGTGTAAAAATACAAAAAGACGCCTAGAACGCAACGACGTGTTGGCGTTCAAAGCCAAGATTGATGAGTTTTCTGATGTAATAGGCGTCATCGTTTCTGCCAGCGGTTTTCAATCTGGAGCTAAGGATTTCGCTGAGCGGAACCGAATTTCAGCTTTGAGTATCGAAGAAATCCCCTCAATTGGACAGCTGTTGGGAATGCGGCTTCGTCATAATGCAATACCAACCGAACTCAGCGTAGGAACCCCTTTCTGGACTTTCTTTGACTTGGAAACCGGAGCACCGTTTGGGTTGGGCCATGATAATGGTGTCCATGCATTACTATTTTGGTCAAAAAATCAAGCCGCGAAATACCATGCTCGAAATCAAGTTGCGCCGAACTGGCAGATTCGCGGCCTGGAAGGGCGCCATCTCTTTTCTTATATCCTCGTCGTTGATGCAATGAATGGAATTTTTGCGACGGCCCCACCGCCCAATCACGAATTTGCTGACGAAAGCAACATGTTCAGCGATATGCCCAGGCAGATTCTCATCGATGAATATTGTGAGCAATACAAAGAGCAGCTCCGAGTTCGACGCGTGATGCCAGGCGCAACCAAAGGGGGATAA	MSKTIQRSMLGLIENLEQQRTETSNSLNWKDFEDHVLYVYQTLLRLGGHNILVAKDACLMGREGAEYQIDVYYEFELAGIRHRVAIECKNTKRRLERNDVLAFKAKIDEFSDVIGVIVSASGFQSGAKDFAERNRISALSIEEIPSIGQLLGMRLRHNAIPTELSVGTPFWTFFDLETGAPFGLGHDNGVHALLFWSKNQAAKYHARNQVAPNWQIRGLEGRHLFSYILVVDAMNGIFATAPPPNHEFADESNMFSDMPRQILIDEYCEQYKEQLRVRRVMPGATKGG				NA	NA	NA	NA	NA
D1-36_02071	831			hypothetical protein	ATGTCCTTTCTCTGGCGTCTCGAATCACTCATAGAAGATTGGCTCGACAGCATCAGCCGGTTTTACCAATCAACTCGCAATCGCATGTCTGGCTCGAGTGTAATCGCCGTACTTTCATTGGCGGCGACGATTGGATCTACCGCCGCTGCCTTTCTGGCATGGGACGCTGCGCGTAACGCCAACCAAGTTTCAGCTGCCTCACAAGCACTGACGCTAAAGTTCTACAGTGATCAGATCGCGCTCGGACACCCTTCGATTTCAGTGTTGTCTGGTCAGACCACAGTCTCGGCCGTTCGCCAAAGTGGATATCGGAAAGGTGTCCATGATTATGTGGCAACCTTAATTCTGAGAAACTCAGGGCAGCGCGATTCGCCGCGAGCTTGGGTTGCGCTCTACGCCGATGCTTTTAGCTCAAGTAATCCTCATGCATCGCTCGTAACGCTTCCTAAGGAAACCGACGTTGGTGTTCGATTTCCTATAGGTACATTGTTTGGAGTCGATGAGGACGAAAGTTCATGGCTTATCGCTGTCCTCTACCAGGACGAAGTGCCATCACCAGTTCTCAGTAGTACCTCTGAGCTATCTTCCCCGCAGCCGCTGCGCATGCTCTGTGCACCGCCCATTGTCTTTCGAATGACGTCATGGCCTAAGGAGCCGGATAAAGATCCCGCAATCAGGGTGTTCTCCTCTGGGGCACCCGTGACGGCTGAACAATTGTCGCATGAATGGGACGGTGGGGAGAAAGCGGCGCAGCGAGTTAAGACAGTAAGGGGTGAGGTGATCCGGGCTGCTCATAGCGCAAATGCTTGCATGGATCTGCCTAGTTCCTAA	MSFLWRLESLIEDWLDSISRFYQSTRNRMSGSSVIAVLSLAATIGSTAAAFLAWDAARNANQVSAASQALTLKFYSDQIALGHPSISVLSGQTTVSAVRQSGYRKGVHDYVATLILRNSGQRDSPRAWVALYADAFSSSNPHASLVTLPKETDVGVRFPIGTLFGVDEDESSWLIAVLYQDEVPSPVLSSTSELSSPQPLRMLCAPPIVFRMTSWPKEPDKDPAIRVFSSGAPVTAEQLSHEWDGGEKAAQRVKTVRGEVIRAAHSANACMDLPSS				NA	NA	NA	NA	NA
D1-36_02072	732			hypothetical protein	ATGGCGACTTCCGTACAGAGCACGCCGCCACAGCCGATCCAGCGTCCGGGATTGGTCATCTCGGCGATCAGCGTGGTGCTGCGCATCATCGGCTTGGTGATCGCCTCGTTGCTGTTCTCGATCCTGATCGAATTCGCTGGTTTGCTGCTGTTCTGGAGCGATCAGGGTTGGCGACACAGCCAGGCCATGCTGACTAGTGAATTGGGTTGGCTCAGCGAGCACTTCAAAGCTTCACTCATCATCCAACAACCCGGACAGACGATTGTCCAGTGGCTGGACGTTCTCAATCAGTGGCTGCTAGTCAGGACTGGCTTGGCGGATTTTGCCCAGCAGGCGCGGGTGTCAAACCAGGGCAGTGGTTTCAGGAGTTGGATCAATCAGCTTTACCTAAGCATTGAGGATTTCGCGCTGGCGGCGGTGTATGTCACCTTCACCTTCGTGGTTCGCCTGACCATTCTAGTCCTGTCCATACCATTATTTTTGTTAGCTTCGTTCACCGGTTTTGTCGATGGTTTGATGCGCCGCGACCTTCGCAAGTTTGGAGCCGGGCGAGAAAGCAGTTTTGTCTACCACCGCGCTAAACGAGCAGTGATACCCCTGCTGCTCGTGCCCTGGATCATGTATCTGTCCCTGCCCTTTTCGCTCAATCCAATGACCGTCTTTTTGCCTTGCGCGATGATGCTCGGAATAACGACCGCTATCACCGCGGCGACGTTTAAAAAATACATTTGA	MATSVQSTPPQPIQRPGLVISAISVVLRIIGLVIASLLFSILIEFAGLLLFWSDQGWRHSQAMLTSELGWLSEHFKASLIIQQPGQTIVQWLDVLNQWLLVRTGLADFAQQARVSNQGSGFRSWINQLYLSIEDFALAAVYVTFTFVVRLTILVLSIPLFLLASFTGFVDGLMRRDLRKFGAGRESSFVYHRAKRAVIPLLLVPWIMYLSLPFSLNPMTVFLPCAMMLGITTAITAATFKKYI				NA	NA	NA	NA	NA
D1-36_02073	2106			hypothetical protein	ATGGCCGAGCATCCGATGGAGTCCAAGCTCCGGCCAGCAGTGGAGCTGTACACCGTAGCGATCTGCATCGCGGCCGCGGTGCTGTGCGTGTACTCACCCTGGGCGGTGGCCCTTTCACCCGAGATCGGGCTGGTTACGGCGCTGGCTTACACCTTGTTCGGCCTTATCCGCCTGCGGCAAGCCTGGGAGGTGCTGCGCTATCGGCGCAATATCCGCCGGCTGCCCCGCTATGAGCTGACCAGTCGACAGATTCCGGTGAGCCGCAAACGTCTGTTCATGGGCCGCGGCTTTCGCTGGACCCGTCTGCACACACAGCGCTTGGTCGAAGCCCAAGACCCGACGGTAGCTCACTATGTCGAGCAACCGGCCTGTTACCGTCTGGCCCGAGAACTTGAACGCCGTCTGGAACATGCACCATTTCCACTCTCGGCTCTGGCTCGTGTCACGGCTTGGGACAGTGCCTTCAATCCGCTGCGCCCTTTGCCCCCCGTAGGCGGCTCACCATTGCTGCATGGGGTCGAGCCCGACGAAACGGAAGTCAGCCTGCCGCTGGGCGAACGGGTCGGACATACCCTGGTGTTGGGCACGACCCGTGTCGGCAAGACGCGACTCGCCGAGGTGTACATCACCCAGGACATACACCGCGTTGAACACGAAGTAGTCATCGTCTTCGATCCGAAGGGCGATGCCGACTTGCTCAAACGGATGTATGTTGAAGCCAAGCGGGCCGGTCGGGATAAGGAGTTCTATGTTTTCCATCTAGGCTGGCCGGAGATATCTGCTCGCTACAACGCCGTGGGACGTTTTGGACGCATTTCTGAGGTGGCCTCACGCATCGCCGGACAGCTCAGCGGTGAAGGCAACTCGGCAGCCTTCCGTGAATTCGCTTGGCGTTTCGTCAACATCATCGCCCGAGCTCTGATTGAGTTGGGCCGGCGCCCAGACTACCTGCAGATCCAGCGACATGTGGTCAACATCGATGCGCTGTTCATCGAATACGCCCAGCAGTTTTTCGCCAAGACCGACCCGAAGGCGTGGGAGGTGATCGTACAGCTTGAGGGCAAGCTCACCGAGAAGAACATCCCCCGGCATATGATCGGACGCGAAAAGCGAGTGGTGGCCATCGAGCAGTACCTGGCGGTGAAGCGGGTATTTGATCCGGTAATGGACGGACTGCGTTCGGCAGTGCGCTACGACCGTACTTACTTCGACAAAATCGTTGCCTCGCTACTACCGCTGCTGGAGAAACTTACCACCGGTAAGACCGCTCAGTTACTGGCTCCCAACTACACCGATTTAGATGACCCGCGGACAATCTTCGACTGGATGCAGATCATACGTAAACGCGGCATCGTCTACATCGGCCTGGATGCGCTGACCGACGCCGAGGTGGCCGCCGCTGTGGGCAATTCCATGTTCGCCGACTTGGTCTCAGTCGCGGGCCACATCTACAAACATGGCATTGACCATGGCCTACCCCAATCGGGCGGCACCGGTGACAAGCTGCCGATCAACCTGCACGCCGATGAATTCAACGAGTTGATGGGCGATGAATTCATCCCGCTGATTAACAAGGGTGGCGGTGCCGGCATCCAGGTAACCGCCTACACCCAGACCCTCAGCGATATCGAGGCGCGAATTGGCAACCGGGCCAAAGCCGGTCAAGTGATTGGCAACTTCAACACCCTGCAGATGCTCCGAGTGCGCGAAACCGCTACCGCAGAGTTACTCACCAAGCAGTTGCCTATGGTGAATGTACTGACAAAGACGCTGGTATCCGGAGCCACAGACACCTCCGATCCTGAGGCCAACACCGATTTCACTTCGTCTTCGCAGGATCGCGTCAGCAGCACCAACGTGCCATTGATCGAGCCCGCTCACATCGTCAGCTTGCCCAAGGGGCAAATGTTCTCCTTCCAGGCCGGTGGGCAGCTTTGGAAAGTCCGCATGCCATTGCCTAAGCCTTCCAACGACGATGCCATGCCCAAGGACCTGCAGGAGCTTACCCAGCGGATGCGGGCCACTTACAACGAACAGGCGGGTCAATGGTGGAGTGCGAGCGGTGGCAGCCCAACAACCAACTTCGATCTGGATCAGGTGGGGTAG	MAEHPMESKLRPAVELYTVAICIAAAVLCVYSPWAVALSPEIGLVTALAYTLFGLIRLRQAWEVLRYRRNIRRLPRYELTSRQIPVSRKRLFMGRGFRWTRLHTQRLVEAQDPTVAHYVEQPACYRLARELERRLEHAPFPLSALARVTAWDSAFNPLRPLPPVGGSPLLHGVEPDETEVSLPLGERVGHTLVLGTTRVGKTRLAEVYITQDIHRVEHEVVIVFDPKGDADLLKRMYVEAKRAGRDKEFYVFHLGWPEISARYNAVGRFGRISEVASRIAGQLSGEGNSAAFREFAWRFVNIIARALIELGRRPDYLQIQRHVVNIDALFIEYAQQFFAKTDPKAWEVIVQLEGKLTEKNIPRHMIGREKRVVAIEQYLAVKRVFDPVMDGLRSAVRYDRTYFDKIVASLLPLLEKLTTGKTAQLLAPNYTDLDDPRTIFDWMQIIRKRGIVYIGLDALTDAEVAAAVGNSMFADLVSVAGHIYKHGIDHGLPQSGGTGDKLPINLHADEFNELMGDEFIPLINKGGGAGIQVTAYTQTLSDIEARIGNRAKAGQVIGNFNTLQMLRVRETATAELLTKQLPMVNVLTKTLVSGATDTSDPEANTDFTSSSQDRVSSTNVPLIEPAHIVSLPKGQMFSFQAGGQLWKVRMPLPKPSNDDAMPKDLQELTQRMRATYNEQAGQWWSASGGSPTTNFDLDQVG	PGPT0030045_13	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_IV_SECRETION_SYSTEMS	CE-T4SS-CONJUGAL_TRANSFER_PILUS_ASSEMBLY_PROTEIN,PGPT0030045-traD-K12071	NA	NA
D1-36_02074	516			hypothetical protein	ATGAAGCGACTTATCAGTGCGTATCACTTCGCGGTGCTCTTGGCTGCGCTCGCCCAGCCGGAACTATCGTTTGCAGAAGTTCAGCCTGGCGGTTTCACCCGCCCCCAGTTTGAAGCTGTCAGGCCGCCAATAAACAACAAGACCCAGCCTGCTCGGGCCAGACATGCGGACCTATCTGCATTTGCCGATGAGACCTGGATACTGCCCGTGCGCAGCTCTCACTTGAGCCCAGGCCAAATCACAACCCGCACCTTGGACATGCCGGGCTTGCAGCCATTTTTCCTGGTCGGGGAGGATCCCCAATCGTTGGCTTGGCTGCATCAGCGTGCGACTGAACTGCAAGAAATGGGTGCAGCCGGGCTGGCGGTTGAAGTAACCGATACCGAAGCTTTAGCCCGAATTCGCGCAGCCGCGCCCGGTATCACAATCCTGCCGGTCAACGGCAATGACATTGCCACCCGCCTGCGGATTGAGCACTACCCCGTCTTGATCACTGCCACCTCACTGGAACAGTGA	MKRLISAYHFAVLLAALAQPELSFAEVQPGGFTRPQFEAVRPPINNKTQPARARHADLSAFADETWILPVRSSHLSPGQITTRTLDMPGLQPFFLVGEDPQSLAWLHQRATELQEMGAAGLAVEVTDTEALARIRAAAPGITILPVNGNDIATRLRIEHYPVLITATSLEQ				NA	NA	NA	NA	NA
D1-36_02075	543			hypothetical protein	ATGGCAACGCCTAGACTGAGTGGACTTGCGCTCATGCTGACGATGCTCGCAGCCCAGGCTGACGAGCTTCCGCCGCCTGCCTATCAACTAGCGGCGCATGACGCTGGCATCCCTTCAACGGTGTTGTTCGCGATTGCGCTGCAGGAGAGTGGTATCCGCGTCCGTGATCAACTGCTGCCCTGGCCCTGGACCCTGAACATCGCCGGAATACCTTACCGATTCACCACCCGAGCGGCCGCCTGTCACGCCTTGCTTCAAGCACTCGTTCGACATGCCGCCAAGCGGGTTGATATCGGTCTTGGACAAACCAATCTGGGTTACTACGGACAACGTTTTTCCAGCCCTTGCGAAGCCCTTGATCCTTACCGAAATCTCGCCGTGACTGCCGCACTGTTGCAGGAGCATCACGCCGCTACCGGTGATTGGGTGTTAGCTGCTGGCCGGTATCACCGCCCGGCAGGAGGAACGCCGGCCGCGCGTTACCGCGCCGGCTTTACCCGCCAACTCGACAAGCTTTCCTTCAAACAGGGCACACCACCATGA	MATPRLSGLALMLTMLAAQADELPPPAYQLAAHDAGIPSTVLFAIALQESGIRVRDQLLPWPWTLNIAGIPYRFTTRAAACHALLQALVRHAAKRVDIGLGQTNLGYYGQRFSSPCEALDPYRNLAVTAALLQEHHAATGDWVLAAGRYHRPAGGTPAARYRAGFTRQLDKLSFKQGTPP				NA	NA	NA	NA	NA
D1-36_02076	720			hypothetical protein	ATGAACCGAGCGCTACTGTCCCCCGTCGTCTGTCTCGCTTCACTGCTTAGCACAGCCGCTACGATGGCTAACCCTGTCACGACACCGTCACGGGTCCAGGACACACAGCCCACTTCGCTGGGGCGCTCGCACTCCGAACAGGCGGCAAGCTGGGGTCTAACGGAGCAAGAGTGGACACGCTTCGAACAGATCCAAGCTGGCCCGCGTGGTTTCTGGAGTCCGACCCTCGATCCGCTGACTGCGCTTGGCGTCGAGGCAGCGACCGACCAAGAGCGCCAGCGCTATGCCGAATTGCAGGTAGCGCTGGAAGCCAAACGCGCCGAGCGCGAGTTGTCTTACCAAAATGCTTACACCGCGGCTTGGGCCAAGCTATTTCCTGGACTTTTGCCGATTCAGGGTATGGCATCCCCGCATCCTGCCAGCTCATCGCTAGAGCCGCGCCAAGCGCTGTTTGTCGAGGACCATTGCCCAGCATGCACCGCCGAAGCACAGCGTCTGCAAAGCAGTAATACGGCCTTCGATATCTACCTGGTGGGTAGCCAAGGTGAGGATGAACATGTCCGTGGCTGGGCCCGGCAAGCAGGCATTGATCCGAGCAAGGTCCAACGCCGGCAAATCACCCTGAACCATGATCGTGGTCGCTGGTTCAGCCTAGGTGCCCCGAGACCGCTACCCGTCAAATTTCAGCAGGTGAGTGAACAATGGCAACGCCTAGACTGA	MNRALLSPVVCLASLLSTAATMANPVTTPSRVQDTQPTSLGRSHSEQAASWGLTEQEWTRFEQIQAGPRGFWSPTLDPLTALGVEAATDQERQRYAELQVALEAKRAERELSYQNAYTAAWAKLFPGLLPIQGMASPHPASSSLEPRQALFVEDHCPACTAEAQRLQSSNTAFDIYLVGSQGEDEHVRGWARQAGIDPSKVQRRQITLNHDRGRWFSLGAPRPLPVKFQQVSEQWQRLD				NA	NA	NA	NA	NA
D1-36_02077	672			hypothetical protein	ATGAAAGCCTCGACATTTCAAACCCTCATTGTCGGCTCACTTTGCCTGGCGGTCTCCGGACTGAGTGGTGGTTTGTATAACCAGTATCAACGCGTGACCGAGCTGGAAAATGCGAACGCCCAACGCCTTCAGACCCTGGATACCCTGCAACGTGATTCAAGCACCCTCTTGAATGCCCAGCAAAAGCTGCAGTACGCACTGAAAGACCTGAAGCAGATGGTCGATACCGGTGAGCAACAGGCCAATACCCTCGATCCGATGTTGGATCAATGGGCGCAAGAGATTCAGGAGCTACGCGACGGTCTGGCAGACCGTGCCACCGTAGCCGATATGATCGCGCTACGCGCACGGCTTGAGCACGTTGAGCAGCGACTCCTGGACCTCAAGCCCCAGTCATCACTCCCATCACCGACGCCTTCCTCAGCCAAGCCGAAAAAAGCCGCTCGCCCCAAGCCTGCCCCGCTCTCGCCGCCATTCTCAGTGCTGGGTGTTGAATCCCGCGGTGGCGAGCGCTTTCTGGCGGTCGCACCTCCTGACAGTCGCTCACTCAAGGATATCCAGTTGCTGCACAACGGCGAGCAGCTCGGCGCATGGCAGCTGAAGGCGCTGGAGCCGAACGCGGCCGTCTTCGCGGTGACCACTCAGCCAGACCAGACCGTGCAACTCCCTTGA	MKASTFQTLIVGSLCLAVSGLSGGLYNQYQRVTELENANAQRLQTLDTLQRDSSTLLNAQQKLQYALKDLKQMVDTGEQQANTLDPMLDQWAQEIQELRDGLADRATVADMIALRARLEHVEQRLLDLKPQSSLPSPTPSSAKPKKAARPKPAPLSPPFSVLGVESRGGERFLAVAPPDSRSLKDIQLLHNGEQLGAWQLKALEPNAAVFAVTTQPDQTVQLP				NA	NA	NA	NA	NA
D1-36_02078	543			hypothetical protein	ATGGAGCGTTTTTTCACGCCTGTCTGCCTGCTGGGTTTGTTGAGCGCCTGCACTGCGCAAATCCCCAACCCTTTGCCCGCCAATCCTGAGATCGACAGTGGCTACAATCGGGCCCAGCACTCGAAGGGCATAGCCGAAGAAAGCCATCCGGCAGAGCTTCGTTATGGCCGCTACACGCTGGTCAGCACCGAGCCCACCACGGAACAACGCGATCTTCTCGCTCAAATCATTGACGTGAGCATTCCGTCCCACCTGAATTCTTCGGTACAGGAGGCGATGCACTACGTGCTGCAGCGCTCAGGTTATTCGCTCTGCCCTGCTGCCGAACCCGTAAAGATACTGTTTACCCGGCCTCTGCCCGCCGCCCATTACCGGCTCGGCCCGATCTCACTGCGCAACGCGCTACAAGTGCTGGCTGGCCCCGCATGGCAACTCACGACCGATGAGGTCAGCCGTTCGGTCTGCTTCGAACGGGAGAAAAGTGATAGTGGCAAGGTGCGGGTCACACCAACCTCGTCCCGTCAGTCGGAGGCACGCCTATGA	MERFFTPVCLLGLLSACTAQIPNPLPANPEIDSGYNRAQHSKGIAEESHPAELRYGRYTLVSTEPTTEQRDLLAQIIDVSIPSHLNSSVQEAMHYVLQRSGYSLCPAAEPVKILFTRPLPAAHYRLGPISLRNALQVLAGPAWQLTTDEVSRSVCFEREKSDSGKVRVTPTSSRQSEARL				NA	NA	NA	NA	NA
D1-36_02079	747			hypothetical protein	ATGACCCACTCATCCCAACCCCCAGCTCTGCCGGAAACCTCAAACCCATTTGCTCGCGGCTACGACAACTTTCATATCGAACGACTGCTACAGATCACCTACGCAAATGACTGCCCTCCCTGCTTTCGCCCCGTCCATGACTCACAAGTCCATCTGCCCGATGATGCGTTAGAACTGTACCCGTGCCTGTTCAATGACGATTTCACTCTGATTAGCGAGGGTCAGTCCATCCCGGATGAATTGGATGAACGCTTCCCGTCTACCGGACTAGTACGGCAAGTGATCTATGCCGTGACTGGTGAAATGCTAAACGATCGACGTCACGTCGGTGACCTGTACTCTCTGGAAGAAGCCCAGGCCATGGTCCATCGTTTGAGCTTCGACACAGGGCATTACAGTCGAGCCTGGGAGATCAGCACCGCACACCTCACTGACGAAGCACTGCGCCACTTGGAAGTCCGGGTTGGCAATTTCGACTCCAAGCCAACCGGACTGCTGTTTGAACCCTTTGCCCTGCCAGACTGCAATGGCGTCGGGTGTAAGCTGATCGGCACGCCCTGGACCGACGATAACTTGGTGAAGATCGAAGGCGCCCCTTACTCGTCGCTGAGGCAAGAGCAGCTCGACGCCGGTACGCCGGAGGCCTTGGTCAATGTGCTGTATCTCGCGGCATTGGCGGATGTAAGGTTGTTGATCTTCGACCCCGACGCTGCCGTCTTGGATGGGCTCGCCATTTTTGATAAATAG	MTHSSQPPALPETSNPFARGYDNFHIERLLQITYANDCPPCFRPVHDSQVHLPDDALELYPCLFNDDFTLISEGQSIPDELDERFPSTGLVRQVIYAVTGEMLNDRRHVGDLYSLEEAQAMVHRLSFDTGHYSRAWEISTAHLTDEALRHLEVRVGNFDSKPTGLLFEPFALPDCNGVGCKLIGTPWTDDNLVKIEGAPYSSLRQEQLDAGTPEALVNVLYLAALADVRLLIFDPDAAVLDGLAIFDK				NA	NA	NA	NA	NA
D1-36_02080	495			hypothetical protein	ATGAGCACCCAACTTACCCTGATTGAAACCTCGGATGTCGAGACGGATCGTATCGCTCAAGAAAACCAGTTGATTGATGAAGCGCTGCGTATTCTGGATCGTCGGCTGTTCACCCGCGGCCCTAACCTGACGTCACCTGACGCCGTGGCCTCATACCTAAAACTGCATCTTGCACCACAAGAGCATGAAGTCTTCGGTGTGATTTTTCTCGATGCCCGCCATCGCGTTCTTGCGTTCGAGATCCTCTTTCACGGGAGCATCGATGGCGCCAGTGTCTACCCGCGCCAAGTCATCAAGCGCTCCTTAGCACATAACGCAGCAGCTGCCATTGTCGTTCACAACCACCCCTCCGGTTGCACGGAACCCAGCCTGGCGGATCGCGCGTTGACCGCACGGTTGAAAGAGGCCTTGGACTTGATCGAAGTTCGTGTACTGGATCACTTCATCGTCGGTGAGGGTCGTCCTCTCTCCCTTGCCGAGCATGGCTGGCTTTAG	MSTQLTLIETSDVETDRIAQENQLIDEALRILDRRLFTRGPNLTSPDAVASYLKLHLAPQEHEVFGVIFLDARHRVLAFEILFHGSIDGASVYPRQVIKRSLAHNAAAAIVVHNHPSGCTEPSLADRALTARLKEALDLIEVRVLDHFIVGEGRPLSLAEHGWL				NA	NA	NA	NA	NA
D1-36_02081	258			hypothetical protein	ATGGAATCCTTCTGGCTTTGCGACGACTGCCTCTTCGCTACGGCTTACGAGGACTACAGCACGTTATCGCTCTACTACATGACGGATGAGATCGAGAAACGCATCGCCGGCCTCGATCTTGGGCTGGTTCGGCTAATGCCCATCAGTGCCGACTTCGACCCCGAAACTGGCCAGGGTATAAGACCTGCCTCTCCATTGCCCTGCGACGGTTGCGATTCACACCTGCACGGACAACGCCACCGATTCACTCGGCTGTAA	MESFWLCDDCLFATAYEDYSTLSLYYMTDEIEKRIAGLDLGLVRLMPISADFDPETGQGIRPASPLPCDGCDSHLHGQRHRFTRL				NA	NA	NA	NA	NA
D1-36_02082	582			hypothetical protein	ATGGCCCACACCAACCAATCCCAAGAAGCGACCACTTACTTCAATCTGCACACCGTCGGTATCGGCTACCTCAACCGTGTTCGTGAAGTACAAGTCCGCCGCGGCCAGCCGTTCATGGCCTGCGATATCGCAGCCCTGCACGGTGCCACCGATGCAGTCGAGTACACCCGCTTCGACTGCAAAGTCGCTGGAGGCGAAGCTGAACGCTTGATTCGTCTCTATATGGACGCCGTCAAAGCCGAGGAAAAGGTCTTGCTGTCGTTCCGTATCGGCGACCTGTGGATCGACCCATTTCTTTATGAGAAAGGCGATAAACAAGGCCAGCCGGGTGCCAGCCTGAAAGGCCGTCTGCTGTACATCGACTGGATCAAGGTCAACGGCACGTTCGAATACAAAGCGCCTGCCAGGCAGGAGGCAACAGCACCTGCTGAGCCCGCGCCAACCAGTGAGCCATCCTCCACGTCAGCTGATGCCGACGCTGAAGATACCGACAACCCAAAGGAATCCAGGATTGAACCTGAATCTCCATCCACTCCCCGCACGGCCCGCCGTGTCGCCACACGTACTGTTCAGCCCGCCTGA	MAHTNQSQEATTYFNLHTVGIGYLNRVREVQVRRGQPFMACDIAALHGATDAVEYTRFDCKVAGGEAERLIRLYMDAVKAEEKVLLSFRIGDLWIDPFLYEKGDKQGQPGASLKGRLLYIDWIKVNGTFEYKAPARQEATAPAEPAPTSEPSSTSADADAEDTDNPKESRIEPESPSTPRTARRVATRTVQPA				NA	NA	NA	NA	NA
D1-36_02084	303			hypothetical protein	ATGATCGCGAAGCACCGCACTCAGCGTAATCTGACCCAGGAAGAGGTCGCTGAACGCCTAGGGATCGGCAGCGAAGCCATTTCGCGCCTTGAGCGGGGTGTGGTGGAGCTTTCCGTGATCAAGCTGATGCAATTGGCGGACATCTTCGACTGCCGGATGGATGAACTGTTGACGGAGTCAAGCAATCGCCCCAACGACCAGGGCCAGATGATCGCGGGCCTGCTGAGCGGCCTTCAAGAACGCGACCGTGCCTTTATCCTGACGACCGTCGAACAGCTGGCCGCTCATCTCAGTAGCAAATAA	MIAKHRTQRNLTQEEVAERLGIGSEAISRLERGVVELSVIKLMQLADIFDCRMDELLTESSNRPNDQGQMIAGLLSGLQERDRAFILTTVEQLAAHLSSK				NA	NA	NA	NA	NA
D1-36_02085	258			hypothetical protein	ATGGATGAGCCGCGCGAGAACGACATGGACCTGATCTGGGATCGAACACTGGAGCTGTTCATCAAGATCCATGACTGCCCTAATAGCCCCGAACATCTCGACAGCCTTGTTCATTGGCTAAACGAAGATCCTGCTCACCTGAAAGCGTTCAACGAACTGGGGCAGATATGGATCGCGACAGGCATCGCCTTGGCCCGTGAAATCGGACGACCGCTAGACGAGTTGGAGAAGGATCAGGCGCCGTTGATGATGCACTGA	MDEPRENDMDLIWDRTLELFIKIHDCPNSPEHLDSLVHWLNEDPAHLKAFNELGQIWIATGIALAREIGRPLDELEKDQAPLMMH				NA	NA	NA	NA	NA
D1-36_02086	1968	topB_1	COG0550	DNA topoisomerase 3	ATGCGTCTCTTTCTCTGCGAGAAACCCTCCCAAGGTCGTGACATCGCCAAGGTTCTCGGAGCCAGCCGACGTGGCGATGGTTGCTTGATCGGACGCGAGACAACCGTCACCTGGTGTATCGGTCACCTGCTGGAAACGGCCCCACCTGAAGCCTATGGCGATCAGTACAAAATCTGGTCGCTGGATCATCTACCGATCATTCCCGCGCAGTGGAGGGTTGAGGTCAAACCCAAGACTGTCGCGCGGTTCAAAATCATCAAACAGCTGCTCAGCGAAGCTACCACCGTCGTCATCGCCACCGACGCCGATCGCGAAGGTGAAATGATTGCCCGCGAGTTACTGGAGCTCTGCAACTATCGTGGCTCTGTTGAGCGCCTCTGGTTGTCGGCACTCAATGAGGCGTCGATTCGCAAAGCTTTGTCCTCGCTGAAGTCTGGTCAGGAGACCTTTCAGCTCTATCATTCAGCCCTCGCCCGCAGCCGCGCTGACTGGCTGATTGGCATGAACCTCAGTCGTTTGTTTACCCTCCTAGGACGGCGGGCGGGCTATGACGGCGTCCTGTCGGTTGGACGCGTCCAAACACCCACTTTGCGCTTGGTGGTTGAACGAGACCGCGCGATTGCCAGCTTCGTCTCTGTGCCGTACTGGGTGGTGGTTGTGCACCTGTCTTCAATGGAGCAACCCTTCATCGCGTCGTGGATACCACCAGGCTCAGGACGTGACGAAGCCGGTCGCTGCCTGCAGCAGGCGCTTGCCAGTCAGACCGTCCAAGCGCTTTCTGGCAGCAAGACCGCCACCGTAGTCTCGCTGCAGACTGAGCATTTGCGCGAAGCGCCACCCCTGCCCTTCGACCTGAGCACACTGCAAGAAGTCTGTTCACGCAAGTTGGGACTCGGCGCTCAGGAAACACTGAACATCGCCCAAGCCTTGTATGAAACCCACAAAGCCACCAGCTATCCGCGCAGCGATTGCCGCTATTTGCCAGAGAGCATGTTCAACGAGGTAGCCGCAGTATTCGATGCCCTGCTCAGAATGGATGCCGCGTTACGCCCAGCGCTCGGAAGCGTCGATCGATCATTGCGCTCACGAGCGTGGAACGATGCCAAGATCACCGCGCACCACGCCATTATCCCCACCACCGAGCCGGCGAACCTTGAGCGGATGTCTGAACAAGAGCGCCAAGTCTACGAATTGATTCGTAGCCACTACCTAGCGCAATTTCTGCCGCATCACGAGTTTGATCGAACCGAGGTCGAACTGGAGTGCGGCGCCGAGCGTTTGACTGCTGTTGGCAAACGGATCCTCGTCCAAGGCTGGAAAGGCTTGCTCTCCGACAGCACCGAAGACGATGAACCCAGTCAAAAATCCCAGGTGTTGCCCGCTCTACAACAGGGTGTGAAGTGCACAGTGGACAACGTCGAACTCAAATCCATGCGCACCGCTGCGCCCAAACCGCTCACCGAGGGCGATCTAATTAAGGCAATGAAAAATGTGGCCAAGCTGGTCAACGATCCACGCCTGAAACAGAAACTTCGGGACACAACCGGTATCGGCACCGAAGCCACACGTGCCGGTATCATTAAGGGGTTGATTGATCGCGGTTATTTGTTGAAGAAAAAAAGAGCTTTGATGGCCTCCGCAGCGGCCCATACCCTGATCGAGGCGGTGCCCGCTGCAGTCGCGGATCCGGGTATGACAGCAATCTGGGAGCAGGCTCTGGATGAAATCGAAGCGGGACGTCTGACCTTGGATGCATTCGTTGCCAAGCAGGCGCACTGGATTACGCAGCTGATCGCAAACTGCGGAGCGCTCACTTTGTCGGTACCGGTCGAAGCCGGGCCGGCTTGCCCCAATTGCAATGCCTCAATGCTCAGGCGTAAGGGAAAATCAGGGCCGTTCTGGTCATGCTCCCAGTACCCGGACTGCAAAGGCACTGTGCCGATCAGCAAAGGTACGCGTCGTCCATGA	MRLFLCEKPSQGRDIAKVLGASRRGDGCLIGRETTVTWCIGHLLETAPPEAYGDQYKIWSLDHLPIIPAQWRVEVKPKTVARFKIIKQLLSEATTVVIATDADREGEMIARELLELCNYRGSVERLWLSALNEASIRKALSSLKSGQETFQLYHSALARSRADWLIGMNLSRLFTLLGRRAGYDGVLSVGRVQTPTLRLVVERDRAIASFVSVPYWVVVVHLSSMEQPFIASWIPPGSGRDEAGRCLQQALASQTVQALSGSKTATVVSLQTEHLREAPPLPFDLSTLQEVCSRKLGLGAQETLNIAQALYETHKATSYPRSDCRYLPESMFNEVAAVFDALLRMDAALRPALGSVDRSLRSRAWNDAKITAHHAIIPTTEPANLERMSEQERQVYELIRSHYLAQFLPHHEFDRTEVELECGAERLTAVGKRILVQGWKGLLSDSTEDDEPSQKSQVLPALQQGVKCTVDNVELKSMRTAAPKPLTEGDLIKAMKNVAKLVNDPRLKQKLRDTTGIGTEATRAGIIKGLIDRGYLLKKKRALMASAAAHTLIEAVPAAVADPGMTAIWEQALDEIEAGRLTLDAFVAKQAHWITQLIANCGALTLSVPVEAGPACPNCNASMLRRKGKSGPFWSCSQYPDCKGTVPISKGTRRP				NA	NA	NA	NA	NA
D1-36_02087	471			Single-stranded DNA-binding protein	ATGAGTACTTTTTTCGTCGGCGAAGGCAACATCGGTAGTGCGCCAGAATTTCAGGAGTTCCCGTCAGGCAATGACGAGCCACGGCGTTTGCTGCGCCTGAATGTATACTTCGACAACCCCGTGCCACGCGATGGCAACTATGAGGATCGAGGCGGCTATTGGGCGCCGGTTGAGCTTTGGCACCGCGAGGCTGAACACTGGAGCACGCTGTACCAGAAAGGCATGCGCGTGTTGGTCGAAGGCCGCACCGTGCGCGATGAGTGGGAGGACAGTGAAGACAATGCGCGGGTCACCTTCAAGATCGAGGCGCGTCGTGTCGGCATCCTGCCTCATCGCGTGCAGAACGTGGCAATGCGGGAGCGCTCCAATGATCCAGCCCAATCTGCGGCTCACGTCGGGCAGGCTACAGACCAGACCAGCTCGCCTGCGTCGAAGTCCAAAAAGCGCAGAGGGCAGCCACCATCGGCATGA	MSTFFVGEGNIGSAPEFQEFPSGNDEPRRLLRLNVYFDNPVPRDGNYEDRGGYWAPVELWHREAEHWSTLYQKGMRVLVEGRTVRDEWEDSEDNARVTFKIEARRVGILPHRVQNVAMRERSNDPAQSAAHVGQATDQTSSPASKSKKRRGQPPSA				NA	NA	NA	NA	NA
D1-36_02088	519			hypothetical protein	ATGAAGCCCCTGATCCCGACTCAACCAATCCCCCTCGAAACACTCACGCCGGATGCCTATCGACACCTCGAACACGCTACCTCCCTAAAAGGCCTTTTAAAACCTTTTAAGGGTAAGGGGGAGTTGGAACTCCTGGCGCAGATGGCGAGGGAAATCGAGGCGCAATTATGTCACCTGATGGAGGCTGTGGCGCAGCAGGCCGGACAACCGCCTTACTCGCTGCTGGATATTCGATTGGTGCTGCAGAACACCAGTGCAGGCAGCACATTTTTGCGTTGGCGTACCCGAGACTTCGGCCGTATGGGGGTTGCGGTTTGGGAACGTCAGGCCTCCAACAAGGCCCTGCCGCAGTCCGTACGCGAGGAGCTGCATCGTTTCGAATGCGAGCGTATCGCACTGAACTTGCAGATGAGCGTGGTGCATTCGCTCTACCGTCAGGCTTCAACCTGCGCGATCAAAATGGCCAGCGCCGAACGGTTGCTGCGCCAGTTCACACCAGCAGCGGAGATATCACAATGA	MKPLIPTQPIPLETLTPDAYRHLEHATSLKGLLKPFKGKGELELLAQMAREIEAQLCHLMEAVAQQAGQPPYSLLDIRLVLQNTSAGSTFLRWRTRDFGRMGVAVWERQASNKALPQSVREELHRFECERIALNLQMSVVHSLYRQASTCAIKMASAERLLRQFTPAAEISQ				NA	NA	NA	NA	NA
D1-36_02089	756			hypothetical protein	GTGGCCGATCACTATCAGCTCAACCTTGGCTCATTGCGCAGCAGCATCACCCTGACACTGCACACCCACCACGCCGCCCGAATCTGGCAAGGTCGAACCGCACGCGAAGGCGTCCACTCGATCATGGGCATGGCGGGCTACATCAGCGTCACTAACCTGATCAAACAAGCCGCAGCGCAGGACGATCCTTATGCCGACTGGGCGATCATGCAGCTCGAAGAAAAATTGATGCAGGCAAAGGCTGGGATGCTGGAACTGACCCAGCAGTTGGGCCGGATCAGACAGGACTTGCCGACACAGATCGACATGGGCGACAACCTCAACATCCATCCCGTCACCTTGCCGTTGTACATCGGCAGCCAGCTGGGCTTCCTCGCCGTCTACCTGCTGACTGACTACGACACCTTGGTGCGCCATACCTTGTTGGCCCATCACACCGCCTTGATCGGCCGCCGAGACATGGAAGCCTGGATAGACGACGGCGCCCATCTGCTGCGCAGCCTGTTCGGCCAGGCCCAGCGCTATCGGCATGCTGGCGTCACCCGTGATGACATGGCGGCGAACAACGCTCGTGCTCTGGCGGCAATCGAGAGAATGGGTTTGCCCCCTACGGACATCCTTGAGGGGCATCGCCGCTCTCAGTTCGCGCCGCCCATCGTTCGTCGTGGTGCTGTGGCAGTGGATGACGCTGACGCGTTGGCGGAGAACGCGGCAGAGCCATCTGCGACAGTAGATGAGCCGGAGGATGAAGTATGA	MADHYQLNLGSLRSSITLTLHTHHAARIWQGRTAREGVHSIMGMAGYISVTNLIKQAAAQDDPYADWAIMQLEEKLMQAKAGMLELTQQLGRIRQDLPTQIDMGDNLNIHPVTLPLYIGSQLGFLAVYLLTDYDTLVRHTLLAHHTALIGRRDMEAWIDDGAHLLRSLFGQAQRYRHAGVTRDDMAANNARALAAIERMGLPPTDILEGHRRSQFAPPIVRRGAVAVDDADALAENAAEPSATVDEPEDEV				NA	NA	NA	NA	NA
D1-36_02090	1188			hypothetical protein	ATGAGCACTGTCCCGTCCGGTCGCTGGCAACGCGTCCTGCAGCAATGCACCCAACAACTAAGTGAACGCTGGCCTGCACACCCGACCACCGAACCACCTTCCAACCAAGCTCTCCAAGCTGGCTTTCTGTTCAGTGGCCAATCACACGAAGTCGTACCGCGTCGTCTGCTCCTGGATTGTCGGCTAACGCCGTTGGAACGTAATGCATGGCAAGTCTTTCGACTCATGCTGCAAGGCCATGGCGTGGTCACGCCGCGTTATGAAGATCTGCAACCTTACCTGTCGAGCGTACCCTATGGTGTATCTGCATCCCGTGAAACCATCGCTCGCGTCTTGACGATGCTCAGGTTGACGCGCTGGCTTAGTTTGGTAAGCCGTGGTCGCGATCAGCTCAGCGGACGCCTACAAGGTTCTCTTTACGTCCTGCACGATGAACCGTTAACCCCCGCCGAAGCCATGGAGCTGGATCAGGATTATCTGGAGCTGGTCGGCCATGCCCTCTCTCACGCGACCAAGGCTGTGCGAATTGTCGCTCGGCATGTGTTGGAAGAAATTCGTCAGGACACCGATATCGATTTGGGTCAACTCCCCACCCGGCTCGACAGTTGGGGCGACCATTGGACAAAACAAGGATTGGATAAGGCGCCCAATGAAGCGTCACACGATTCCGAATTGGGTGGCGACCACCTCGTTCGGAATCGTGTGGAACCTCGTTCGGATTCCGAACCGGGTCTGAACGCCAAGGTTTCCGGCAGCGTTCGGAATCCGAACACTGCCTGTACTGTATTTAAAGAAAGTATTTGTACGGTACCGCGCGCGACCCCAGCGGTGGACAACCTGCACTGGCCTGATCCGCTGTACCTGAGTCCGAGCGAGCGGCAGGCCGTCACCGTGACGCTGAACAAGCTGAAACCAGCAGACCGGCAGGCGGTGCTCAACGAAGCGGCCGCGCGGTGTGCGGCAGGTAGCGTCCGCAAACCGGCGGCGTATCTGATGGGCCTGATCCAGCGGGCGCTGAAAGGCGATTTCCGCCCTTGGGCAGGTCAGGCTGAATCGTTACCCGTTGCAGAACCGCCACCCGCTTCCCCGCGCCAGCTTAGGAAAAAGGGCGAACCCGCCTCTGCCCTCGCCCAAGCGTGCCTGGATGAACTACGCCAGCTGCGTAGCAAACGCCCTGGACGTCAGTAG	MSTVPSGRWQRVLQQCTQQLSERWPAHPTTEPPSNQALQAGFLFSGQSHEVVPRRLLLDCRLTPLERNAWQVFRLMLQGHGVVTPRYEDLQPYLSSVPYGVSASRETIARVLTMLRLTRWLSLVSRGRDQLSGRLQGSLYVLHDEPLTPAEAMELDQDYLELVGHALSHATKAVRIVARHVLEEIRQDTDIDLGQLPTRLDSWGDHWTKQGLDKAPNEASHDSELGGDHLVRNRVEPRSDSEPGLNAKVSGSVRNPNTACTVFKESICTVPRATPAVDNLHWPDPLYLSPSERQAVTVTLNKLKPADRQAVLNEAAARCAAGSVRKPAAYLMGLIQRALKGDFRPWAGQAESLPVAEPPPASPRQLRKKGEPASALAQACLDELRQLRSKRPGRQ				NA	NA	NA	NA	NA
D1-36_02091	549			hypothetical protein	ATGAACCTGTCCTTCAATGTGCTCAACCAGGCCATGCTGACTCAGGTCCTTCACGAGTTGCGCCTGGGTAACCTGCAACGCTGCAAAGCACTCGGGCTGGATGAAGAGGACATTTACCTATTGCAGTCCTTACCGCCCACCACGCTGTCACGCCTGGCCCACGCCACCGTCCCCTGGGTTGAGATCAGGATTGATTCGCCGGTGCTGCATCGATTGATCGACCAGGCCGAACGCGACGAACAGAATGAGCGCTTAATCAACCGAGCGCTAAAGCTCGGTGCCAGCAGCACCATCATGTATCAGTGCTTCGGCTTGGCGCATTCGGAGACCGCCCTGCGCCGACGGCTGCTCAAGATAGAAACCCGTAAAGGCCGCCCCCAAAACTTGAGCGAAGCGCAGGAACATGCGCTCTGGCATCGTTGGTGCCAGCTACGCGCTGAGGACGGTGCTGAGGATCAGCTCGACGCCATGATGATGTTGGCCGAGGAGCAACAGATCAGCCTGACCATCGTTTGGCAGCAAATCGACCATTACAACAACGGAACATGA	MNLSFNVLNQAMLTQVLHELRLGNLQRCKALGLDEEDIYLLQSLPPTTLSRLAHATVPWVEIRIDSPVLHRLIDQAERDEQNERLINRALKLGASSTIMYQCFGLAHSETALRRRLLKIETRKGRPQNLSEAQEHALWHRWCQLRAEDGAEDQLDAMMMLAEEQQISLTIVWQQIDHYNNGT				NA	NA	NA	NA	NA
D1-36_02092	1584			hypothetical protein	ATGAAGAAGCTCACTCAGGAGGAAATCACAGGAAAATTGCACCAGAACTACTTCCCTTGCGGTCCAGAACTGGGGCGGTTGTCCGATCCACTCACTGATACGCCTATGCTGGTCACGCTGGAGCAGTTGCGGCCCTACGAACACAACCCGCGATTCATCCGTAACCCGCTGTATGACGATCTCAAGGCCTCCATCCGTGAACGCGGGCTGGACCAACCTCCACCGATTACCCGCCGCCCGGGTGAAACCCACTTCATCATCCGCAACGGCGGTAATACACGCTTGGCGATTCTGGGCGAGCTGTGGCAGGAAACCCGCGACGAGCGTTTCTTCCGCATCCATTGCTTGTTCCGACCCTGGACCGATGAAATCAGCGCCCTACTCGGCCATCTGGCCGAAAGCGATCTGCACGGTCAACTCACCTTCATCGAACGTGCTCAGGCAGTGGCCAAACTCAAGACCATGCTTGAATCAGATGACGCAACACTCTCGCAACGTGAGCTGGCACAACGTCTTGCCGCTGGAGGCTATCCGATTTCGCAGTCGCACATCAGCCGGATGCTGGACACCCTTGAACATCTTCTGCCCGCCATTCCACAAACCCTGTATGCCGGGTTGGGAAAACCAAAAATTGAACGCCTGATTGGTCTGCGCAGACAGGCTGAACGAACCTGGAATCGTTATCCAACCGACGCCATCGCTTTTCCCGAGTTTTGGCTCGACACCCTAGAGCAATTCGATGCCGATCCAGAGTCTTTCGACCTTGAGCAAATCCAGGATGAACTGCTCGAACGCATGAGTCGCTTAGTCGGACAGTCCTACCGCATGTTGGCCCTGGAGCTGGGCGACACCCATCGGGTTATCCAGACGCCCGGCGTAATCGTCACGCCCCCGCAGAACAACCTACTGCCGAGCGTTGATGAGCCCGCGGCCGAACCTCCTCCACCCGAGCCGCATCCCAAATCAGCTGAAACCGGGGCGCAGACCGAAACAGAGCGAGAGGAGCAGTTCACGCTGCCCGAAACGAATGTCGCATCAGCAATCAGCCCTCCGTCACGTGTCCAGCAGATCCGCGAACAGATTGATCGCGCCACTGCCACCGAACCATCACAGATCGTCGAAACCTGCCCGATCGACGACATCTGGATCATCGCACCAACACTGGATACCCCTGAACAACTGCGTTTAGCCATTGCCGGCCTGGCTAGGGAAATGGCGGCCTACGCCGGACATCCCGAGAGCATCATCGATCAGAAATGTGGTTTGGGCTTCGCCCTCAACATGGAGCAACTAGATCTTGCAGCACCTCGTGCAACCAGCATTCACTTGATGCTCCTGGCCCTGCTGCGTGCCCAAGACGAAGTAAACTGGGCGGATCGCAAGCAATTGCCCTCAGCCCTGTTCGGGCAACTGCTATTGGGAGTTTATCAACTCCCGCTGGCAGATCGTCCCGCCATGGACGTAGGGCTGGAGCGACTGCCCGACAGTCTGTTAATCAAACTGTATCGTCTCATTCGCTTAGCCCGGCGCTTGATCGACTTATCGATTTCCGTTGAAGTCGACTCACCAAGGGAGGAGCCATGA	MKKLTQEEITGKLHQNYFPCGPELGRLSDPLTDTPMLVTLEQLRPYEHNPRFIRNPLYDDLKASIRERGLDQPPPITRRPGETHFIIRNGGNTRLAILGELWQETRDERFFRIHCLFRPWTDEISALLGHLAESDLHGQLTFIERAQAVAKLKTMLESDDATLSQRELAQRLAAGGYPISQSHISRMLDTLEHLLPAIPQTLYAGLGKPKIERLIGLRRQAERTWNRYPTDAIAFPEFWLDTLEQFDADPESFDLEQIQDELLERMSRLVGQSYRMLALELGDTHRVIQTPGVIVTPPQNNLLPSVDEPAAEPPPPEPHPKSAETGAQTETEREEQFTLPETNVASAISPPSRVQQIREQIDRATATEPSQIVETCPIDDIWIIAPTLDTPEQLRLAIAGLAREMAAYAGHPESIIDQKCGLGFALNMEQLDLAAPRATSIHLMLLALLRAQDEVNWADRKQLPSALFGQLLLGVYQLPLADRPAMDVGLERLPDSLLIKLYRLIRLARRLIDLSISVEVDSPREEP				NA	NA	NA	NA	NA
D1-36_02093	210			hypothetical protein	ATGTTGGACCAGCTTCCTATCATTGTTCAACCATCCATCCACCCCTGCCGCCCACCTAGCGAGGACTACTGCACAGTGGTCTTTCGTCTACAAGAAGGGCGCTCAGCCATGGGGTCGTTCCTCGCGGAACTGTCTCGTTATTTCGAAGGCTCGGGCACTGCCGAAATCGTCAAGTTCGAGATCGGTGACCATTTGCGCCCTCGACGTTAA	MLDQLPIIVQPSIHPCRPPSEDYCTVVFRLQEGRSAMGSFLAELSRYFEGSGTAEIVKFEIGDHLRPRR				NA	NA	NA	NA	NA
D1-36_02094	843	soj_2	COG1192	Sporulation initiation inhibitor protein Soj	ATGGTTGTGGTATCAGTGGTGTCCACCAAAGGTGGAGTAGGCAAAACAACAGTGGCTGCCAATCTCGGCGGTCTGCTGGCGGATGCTGGCCTACGCGTCCTGCTGCTCGATCTGGATAGCCAACCCACCCTCTCCAGCTACTACGCCTTGAAACACGAGGCCATCGCCGGTGCTTACGAACTCATCGCGCTCAACCAGACAGATCCTGCGCAGATAATTTCCACGACTGTGGTCGTCGGTCTCGACCTGATCCTCTCCAACGATGATCAAGGCCGACTGAGCACTTTGCTGCTGCACGCCCCTGACGGGCGATTACGGCTGCGCAATTTGCTCGACCATTTCCGCCCCTGTTACGACCTTTTATTAATCGACACCCAAGGCGCACGTAGCGTGCTGCTGGAAATGGCCATCCTGGCCTCCGATCTCGCCCTCTCTCCCATTACGCCGGAGATGCTCGCCGCCCGCGAGCTGCGCCGTGGCACCTTGAAGCTGCTCAGCGAACTCGAACCGTTCCGCCACCTGGGCATTCCACCACCACCCTTGCGACTGCTACTGAACCAGGTGAACGCCATTAGGATCGACACCCGGATGATCGTCTGTAGTTTGCGTGAGACCTTCGCTGGGGCCACCAGCATCTCCGTGTTAGACACTGTAGTTCCAGATGCAGTGGCGTATCTCAATGCTGCCTCCCTCGGTCTGCCAGTCCACCGGATCGAGACGCGCCGGTCCCATAAAAGACGCTCGCCATCGGCACTGGAAACCATGCAAGCACTGGCCATCGAATTGTTCCCGGAATGGCGCACAGCGATAGCTACTTTGAGCAAGTGCGAGGAGGTTCGATGA	MVVVSVVSTKGGVGKTTVAANLGGLLADAGLRVLLLDLDSQPTLSSYYALKHEAIAGAYELIALNQTDPAQIISTTVVVGLDLILSNDDQGRLSTLLLHAPDGRLRLRNLLDHFRPCYDLLLIDTQGARSVLLEMAILASDLALSPITPEMLAARELRRGTLKLLSELEPFRHLGIPPPPLRLLLNQVNAIRIDTRMIVCSLRETFAGATSISVLDTVVPDAVAYLNAASLGLPVHRIETRRSHKRRSPSALETMQALAIELFPEWRTAIATLSKCEEVR	PGPT0029965_218	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_IV_SECRETION_SYSTEMS	CE-T4SS-CONJUGAL_TRANSFER_PILUS_ASSEMBLY_PROTEIN,PGPT0029965-parA-K12055	NA	NA
D1-36_02095	231			hypothetical protein	ATGTCCAGCTCATCCGTCTCGCTCACTGACAGCCCTCAACCACCGGCCGAACGTCACATCATGCGGCGTGACGAAGTGGAGCGAAAAACCGGCTTCAAGCGTGCGCACATCTACAATTTGATGAAGGAGGGTAAATTCCCTCATTCCAAACGCATTGGACTGCGCGCCGTCGGCTGGGACTCGCTGGAGATCGAACAGTGGATCAATGAGCGTTTGGCGCAGCAGGCCTGA	MSSSSVSLTDSPQPPAERHIMRRDEVERKTGFKRAHIYNLMKEGKFPHSKRIGLRAVGWDSLEIEQWINERLAQQA				NA	NA	NA	NA	NA
D1-36_02096	753			hypothetical protein	ATGCACGGACCTAGCAGTTTTAACCCCTACGAAAAGCTCTTTTACAGACCCATCGAGGCGGCCATACGCTGGTGTGACTTGATGGATTACGAGGCAAAAATTCTCGGGTTAGTTTGGGATAGCCCTGAGCGTGTTATCACAGCCTTCCCGCAATGGCCATGCCTTTACAAGAAATTAGAGATAATCCTGGATGCCATACGAAATCAGGAGTTGCGCTACGGTGCTTTAGGCACCACCGTTACGCCAGGCACACCTGTCGACTTCAAATTGCTGACCATCCGACATTCGGACCTAAAGTCATGGATAACCCATCAATATCCAGATCAGCGACCGTCCTTTCTTTTTCATCCAACCGCTACTGACGAGGCTGTCCGCTATGACACCTACCTTATTCTGCAGGCAGATAGGGAAGCCCTTCAGGTACGGTTGAAAGTAACCGAAGCGAGACTGCAGGAGTTAATGGACGAACTGACCGCTGCGGGACTGGAACGCGAAAGTCTTAGCGCGCTTGCTGAGGATAAAAAAGATGTGAGCGAGCATAGCAAAGCCAGCTTTCTCAACATCATTGGAGCGCTACTCGAAACGATGCTCGGCTCCTCCGAAGCAGGAAGACGTCATTCGATATTCAACAGCCAAGCCTCAATCGTCGACTCCATAACCGCACATTACGGCGACGTTCCTGGGCTAGGTAAGCGTTCACTGGATGAAAAATTTGCGGCGGCTCGTCGGAGTCTTGCCCAAGCTAGGCGGTAA	MHGPSSFNPYEKLFYRPIEAAIRWCDLMDYEAKILGLVWDSPERVITAFPQWPCLYKKLEIILDAIRNQELRYGALGTTVTPGTPVDFKLLTIRHSDLKSWITHQYPDQRPSFLFHPTATDEAVRYDTYLILQADREALQVRLKVTEARLQELMDELTAAGLERESLSALAEDKKDVSEHSKASFLNIIGALLETMLGSSEAGRRHSIFNSQASIVDSITAHYGDVPGLGKRSLDEKFAAARRSLAQARR				NA	NA	NA	NA	NA
D1-36_02097	1200	fdhA_2		Glutathione-independent formaldehyde dehydrogenase	ATGTCTGATAATCGTGGTGTGGTTTATCTGGGCGCGGGAAAAGTGCAAGTGCAAAAAATCGACTACCCGAAGATGCAAGATCCTCGGGGTCGAAAGATCGAGCACGCAGTTATTCTCAAAGTGATTTCTACCAACATCTGCGGCTCCGACCAGCACATGGTGCGAGGCCGTACCACTGCTCAGGTTGGTCTGGTTCTGGGCCACGAAATCACAGGTGAAGTCATCGAAAAAGGCAGCGACGTTGAAAGTCTGAAGATTGGCGACCTGGTGTCGGTACCTTTCAACGTAGCCTGCGGTCGCTGTCGTTCCTGCAAAGAGCAACACACTGGCGTTTGTTTAACCGTCAACCCCGCCCGTGCCGGTGGCGCCTACGGTTACGTCGACATGGGCGACTGGACTGGCGGACAGGCCGAATATGTTCTGGTGCCATACGCCGATTTCAACTTACTCAAATTGCCGGACCGCGACAAGGCCATGGAGAAAATTCTCGACCTCACCTGCCTGTCCGACATCCTGCCCACCGGTTACCACGGCGCCATTACCGCAGGAGTCGGTCCGGGAAGTACTGTGTACATCGCAGGGGCCGGTCCGGTCGGTCTGGCAGCAGCTGCGTCGGCACGTTTGCTCGGTGCTGCGGTGGTGATCGTCGGTGATATCAACACAATCCGCTTGGCGCATGCCAAAGCCCAGGGTTTTGAAATTGTCGACCTGTCGAAAGACACACCGTTGCACGAGCAAATCGCCGCACTATTAGGCGAACCGGAAGTGGATTGTGCGGTTGATTGTGTGGGCTTCGAAGCCCGCGGCCACGGCCATGACGGTGCGAAACGCGAGGCACCGGCCACTGTGCTCAACTCGCTGATGGGGGTCGTGCGCGTGGCAGGAAAAATCGGCATTCCCGGCCTGTACGTCACCGAAGACCCGGGCGCTGTGGATGCTGCGGCTAAAATGGGCAGCCTAAGCATTCGCTTCGGCTTGGGCTGGGCCAAATCCCACAGCTTTCACACAGGCCAGACGCCGGTGATGAAGTACAACCGCCAACTGATGCAGGCGATCATGTGGGACCGCATCAATATCGCAGAAGTGGTGGGAGTGCAGGTCATCGGTCTGGACCAGGCTTCAGAGGGTTACGGCGAGTTCGATGCCGGTGTGCCAAAGAAATTTGTAATTGATCCCCACAGAACCTTCAGTGCGGCTTAG	MSDNRGVVYLGAGKVQVQKIDYPKMQDPRGRKIEHAVILKVISTNICGSDQHMVRGRTTAQVGLVLGHEITGEVIEKGSDVESLKIGDLVSVPFNVACGRCRSCKEQHTGVCLTVNPARAGGAYGYVDMGDWTGGQAEYVLVPYADFNLLKLPDRDKAMEKILDLTCLSDILPTGYHGAITAGVGPGSTVYIAGAGPVGLAAAASARLLGAAVVIVGDINTIRLAHAKAQGFEIVDLSKDTPLHEQIAALLGEPEVDCAVDCVGFEARGHGHDGAKREAPATVLNSLMGVVRVAGKIGIPGLYVTEDPGAVDAAAKMGSLSIRFGLGWAKSHSFHTGQTPVMKYNRQLMQAIMWDRINIAEVVGVQVIGLDQASEGYGEFDAGVPKKFVIDPHRTFSAA	PGPT0002115_256	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_HYDROCARBONS|OIL_DEGRADATION	XENOBIOTIC_DICHLOROMETHANE_DEGRADATION,PGPT0002115-fdhA-K00148	NA	NA
D1-36_02098	1068	tsaM1		Toluene-4-sulfonate monooxygenase system iron-sulfur subunit TsaM1	ATGTATTTGCACAACTGCTGGTATGTGGCAGCGTGGAACTATGAGGTGACTGACGGGCTGGTTGCTCGAACCATTATCAATGAGCCAATCGTGCTCTATCGCATGGAGAATGGTGCCATCGCCGCTCTCCAGGACCGCTGCTGCCATCGCTCGGCGCCGTTATCTATCGGGAGAAAAGAAGGCGACTCCGTTCGCTGCATGTACCACGGCCTGAAGTTTGACAGTTCAGGCAAATGCACCGAAATACCTGGTCAAGACATCATCCCTGCGCAGACATGCGTCCGTAGCTTCCCTGTCATTGAACAAGACAGTTGGGTATGGGTCTGGCTCGGCGACCCACAGCAGGCAGATCCCACGCTTATCCCTCCAGCTGTAGGTCATGATCATCCAGATTGGATTTTCCGATCAGGCAGCATCGAGTATCAAGCCAATTATCAGTTGGTTAACGACAACCTGCTGGACTTTTCGCACCTCTATTTCCTCCATCCAGAAAGCTTCGGCATGGGCATAGATTGGGCACACGTTCGACCGAAGGTTAGCCGGCTCGATCGCGGAGTACGTGTAGAACGTTGGTTACCTGCCCAACCCACACCGAATCACATCAAAGGAGTCGTGAATTCCGACACGGTTGATATTTTTACGGCCTACGATTATTTGGCACCGGGCGTAATGGTGATGAATTCGTACAGTTTTCCGCGTGGAACCCTGGAGCAATTCAATGGTGAAAAACCGCAGGACGTAGCGCCCATTACTCACGACGTGACATGCCAGGCCATCACGCCAACTGATGACACTAACTCAAGATACTTTTTCTCTTGGGCGCCTAATCGCCATGCGCTTGCCGGATGCAGCGAGAAACTTGCCGATGACATGATCGCTATTGCCCGCATGGCCTTCGAAGAAGATCGGATCATGATTGAGGCTCAAGCCCGCGTCCTCCAACACACCCCGAATCCAACGCAAGTCCCCATCGCTTTTGACAATGCCTTGTCCCAAATGCGGTGGGTTTTGAATAAGTTGAAGAAAGATGAACAGGCCCAGGCTGAGCTGATCGCAATGCCCGAATAA	MYLHNCWYVAAWNYEVTDGLVARTIINEPIVLYRMENGAIAALQDRCCHRSAPLSIGRKEGDSVRCMYHGLKFDSSGKCTEIPGQDIIPAQTCVRSFPVIEQDSWVWVWLGDPQQADPTLIPPAVGHDHPDWIFRSGSIEYQANYQLVNDNLLDFSHLYFLHPESFGMGIDWAHVRPKVSRLDRGVRVERWLPAQPTPNHIKGVVNSDTVDIFTAYDYLAPGVMVMNSYSFPRGTLEQFNGEKPQDVAPITHDVTCQAITPTDDTNSRYFFSWAPNRHALAGCSEKLADDMIAIARMAFEEDRIMIEAQARVLQHTPNPTQVPIAFDNALSQMRWVLNKLKKDEQAQAELIAMPE	PGPT0005905_1	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_TOLULENE|DERIVATE_DEGRADATION	XENOBIOTIC_TOLULENE-4-SULFONATE_DEGRADATION_PATHWAY_2,PGPT0005905-tsaM-K15768	NA	NA
D1-36_02099	906			hypothetical protein	GTGAACTCGGGGGGCATCTATGCGCTGGGGGATCCGTGGGGGCTAAGGGTTCCCGGCTTTTCTGCCGCCAGCGCCTTCACGTTGTGTTGCCTTGATGCCCCGCTGTGGTTGACGGTTTCGGGACAAGCCCCGGTTCGGCTCGAGCCGGGCGACTCGGTTCTGATATTGCACGGAGCTGCGTATACGGTGGCCTCGAGCCCTGACGCGGACTGCATCGATTTGATGGACTACTGGTATGCGAGAGGATTACCGCTGCTGGTCGCCGGAGAACGACAGTCGGCTCCTATTTCCGGACTGGAATTGGGACAGGGCGAAAAGAAGGGGCGGATGATGATTCTCGCCTTTTTACTTCAGGCCGCGGACAGCAATCCGTTGTTACGGTCATTGCCCCGGATGATTCACCTGCACGGAAGTGCCAGTGGCATGTTCCCCTGGATGAATTCAATGCTGGAGTTTCTCGTCAGCGAAGATACGGCCAACCGCGCCGGTTACGTGGCGACTGCTGCACATCTTTCAAACGTGATTTTTACAAGTTTTATCCGAGCGCATGCGCTGTCAGTTCCAAGGGAGAGTAGCGGCTGGCTGCAGGGGCTGGCGGATCGACGCATTCGCCAGGCTCTGGTTTCCATGCATGCGCGCCCCGGTGAGCACTGGACCACCGAGTCACTGGCGGAAGAGGCGGGAATGTCTCGTCATACCTTCGGTCGCCGCTTCACTCGTCTGGTGGGTCAGTCGCCCATCGATTATTTGATAGATCTTCGGATGCTGGTGGCGGCGGAGCATCTGCGCGCCGGCAATCCGGTTGCCCGGGTGGCTGAAGCCGTGGGGTATCAATCGGAGCGTGCCTTTCGCGAGGTGTTTCGCAGGCGATTTGGAGTACCTCCGTTGCGCTATAGCAAGGCGTAG	MNSGGIYALGDPWGLRVPGFSAASAFTLCCLDAPLWLTVSGQAPVRLEPGDSVLILHGAAYTVASSPDADCIDLMDYWYARGLPLLVAGERQSAPISGLELGQGEKKGRMMILAFLLQAADSNPLLRSLPRMIHLHGSASGMFPWMNSMLEFLVSEDTANRAGYVATAAHLSNVIFTSFIRAHALSVPRESSGWLQGLADRRIRQALVSMHARPGEHWTTESLAEEAGMSRHTFGRRFTRLVGQSPIDYLIDLRMLVAAEHLRAGNPVARVAEAVGYQSERAFREVFRRRFGVPPLRYSKA				NA	NA	NA	NA	NA
D1-36_02100	822	gno		Gluconate 5-dehydrogenase	ATGAGTACAGCCTCACGTTTATTCGACGTATCCGGTCGAGTTTGTGTAGTCACTGGTGGAGCAAGCGGTATCGGATTGGCCTGCGCAGAAGCGCTTGCAGAAAATGGTGCAAAAATCACCCTGATGGATATCAATGCCCATTTCCTCGATGACGCGGTCTCTTCGCTCACTCGCCGCGGCTTTGACGTACGTGGTGAACTCGTGGACGTCAGCGACCGGGCGTCCGTCGCCAATGCATTTCAAAACACAGTCAATCATTACGGCAGACTGGACGTGGTGTTCGCGAATGCAGGGATCGATTCGGGTCCTGGTTTTCTTGGGCGCGAGGGGCAGCGACTTTTGCAAGGTAGCCTGGAAAACCTCGACCTCAGCAATTGGGAGCGAGTCATGGCGATCAATCTGAATGGCGTGCTGTACTGTCTGCAGGAGTCAGCCAGACATATGAAGCCCCAGGGTTCCGGCAAGATCGTGGTGACCACGTCGATTGCAAGCTGTCTCAATGCCGCCTGGGTAGGCACGTCTTACTTCCCGGCAAAGGCCGGCGCCTCCCATTTGATGCGTCAAGCCGCTTTGGAGCTGGCCAAGTACAACATTCAGGTGAATGCCATTGCCCCGGGTGCATTCGCTACCAATATCGCAGATGGCCATGTCAACGATCCCGAAATGCGGCGGTTGCTGGAGGCGGGAAACCCGCAGCATCGCGTTGCGGAGCCCGCAGAAATCAAGGGGGTTGCGCTCCTCCTCGCCTCTGCAGCGTCTTCCTACATCACCGGTACCGAAATCGTTATCGACGGTGGCGGCCTGTTAGGCCAGGCAGACTAA	MSTASRLFDVSGRVCVVTGGASGIGLACAEALAENGAKITLMDINAHFLDDAVSSLTRRGFDVRGELVDVSDRASVANAFQNTVNHYGRLDVVFANAGIDSGPGFLGREGQRLLQGSLENLDLSNWERVMAINLNGVLYCLQESARHMKPQGSGKIVVTTSIASCLNAAWVGTSYFPAKAGASHLMRQAALELAKYNIQVNAIAPGAFATNIADGHVNDPEMRRLLEAGNPQHRVAEPAEIKGVALLLASAASSYITGTEIVIDGGGLLGQAD	PGPT0018070_38	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_IDONATE_DEGRADATION,PGPT0018070-idnO-K00046	NA	NA
D1-36_02101	1614			hypothetical protein	ATGGCGATTAATAAAGACCGTATCTGTTTCAACACTGGAAAAAAGGGAGAGTTTACGTCGAGGTCGTTGCTCACCGCTGCGCTTCTGGGCTTCGCGTTAGCAACGCTCAGTACCAGTTCAGCTGTTCGCGCAGCACAGTTCGAAGTGGGTGAAGTCGACGTTAACTGGACCAACACCCTCAAGTACTCCCTGGGTTCCCGCCTCGGTGAACCTAATGATAAAAACCTGGCCAATCCGAACGTCGATGATCCTGATCGAAATTTCGATAAAGGATCATTGATGATGAATCGGTTTGACTGGTTGAGCGAATTCAATGCGCGTTGGAAAAACTTTGGACTGAGTTTGAGTGGTGCGGCCTGGTACGACAACGTCTACAACCGCAACAACGATAACAACTCGCCATCGACGTTTAACCCGTACTCAGTCAGCAACGATCATTTTGCCGACCAGACAGAGAAATGGGCGGGTAAGAAAATCGAGCTGATGAACGCCTTTATATCCGGTCAGTTTACGCCGATGGATGTACCGGTCAGCATGCGATTAGGGCAACACACGCTTATTTGGGGCGAAAGTCTATTTTTTACCGATAACGGCATTGCTGCCGGTATGGCACCCGTGGATGCTTACAAAGCGTTAAGCGTTCCTAATATTAAAGCGCAGGAAGTGTTCCTTCCGACCAACCAGCTTTCAATGAGTGTGCTGTTATCTGATAGCTGGGTAGTCGAAGGCTACTACCAGTTTGAATGGGAAAAAACCCGTATTCCCCCGGCGGGCAGTTATTTATCCTCAGTTGACCTTTTGGACGAAGGGGGTGAACGAATCATCGCGGGCTCTGGTACCTATTTTTATCGTGCTTCTGATAAAGAACCGGACGCTGCGCAATATGGGGTGTCGGTGCGCTGGCGACCAGTCGACTTGAACCTCGATATCGGCGCTTATGCACTTCGCTATAATGACAAAACTCCCCGTGTCAATACCGTCCCTTCAGGCGGCTTTGATCCGGCAACGGGTTCAATTGGACAGTACTTTCTCGATTATAAGGAGAAGATTGGACTGTATGGTTTGAGCGCCAACATGTCGTACGGCTCGCTGAACCTTGGAGGGGAGGTATCTTATCGCGATGGTGTGCCGCTTCGGGCAAACGGCAATGTACTTGTCCCGGATGTCCTGGGTAACACGCTGCACGCCCAGGTATCGGCAATCTGGGTCGGAAACGCCGGGCCCGCGTGGGATGGTGTCAGTATCGCCGCAGAGTTGGCAGGACATAAACTCCTTGAGGTCACCAAAAACAAGGAGCAACGTGATACCAGTTTAGATGATTCGGTTTACGATATTCGCGGCGTCACCACCTTTCAATACTTCCAGGTGATGCCAAGTCTGGATATCGAACTTCCAATTGGTCTTGGCTACAACTTTAAAGGTAAGTCTCCGATTTCCGCGGCCTTTAATAATTATGGTAGTAACGAAGGGGGCGATCTCACTGTCGGCGTGGTCGGTACTTACCAACAAGACTGGAAGTTGGGCCTTAATGCGACCCACTTCTTTGGTAGTGAGTCGGGTAATTACTACTCGGGGCGTGATTTCCTGATGGCGTCTGTCAGTCGATCCTTCTAA	MAINKDRICFNTGKKGEFTSRSLLTAALLGFALATLSTSSAVRAAQFEVGEVDVNWTNTLKYSLGSRLGEPNDKNLANPNVDDPDRNFDKGSLMMNRFDWLSEFNARWKNFGLSLSGAAWYDNVYNRNNDNNSPSTFNPYSVSNDHFADQTEKWAGKKIELMNAFISGQFTPMDVPVSMRLGQHTLIWGESLFFTDNGIAAGMAPVDAYKALSVPNIKAQEVFLPTNQLSMSVLLSDSWVVEGYYQFEWEKTRIPPAGSYLSSVDLLDEGGERIIAGSGTYFYRASDKEPDAAQYGVSVRWRPVDLNLDIGAYALRYNDKTPRVNTVPSGGFDPATGSIGQYFLDYKEKIGLYGLSANMSYGSLNLGGEVSYRDGVPLRANGNVLVPDVLGNTLHAQVSAIWVGNAGPAWDGVSIAAELAGHKLLEVTKNKEQRDTSLDDSVYDIRGVTTFQYFQVMPSLDIELPIGLGYNFKGKSPISAAFNNYGSNEGGDLTVGVVGTYQQDWKLGLNATHFFGSESGNYYSGRDFLMASVSRSF				NA	NA	NA	NA	NA
D1-36_02102	1350			putative protein	ATGAATAATTACAGTGTGAAATTTCTGCTATCGGCTGCGTTTTTCGTAGCGCTTATCAATACTCCTGTTCGAGCCGCTGTAACCCCAGTGGAGGCGGCGAAACTGAACAGCGAGCTTACGCCGCTTGGTGCCGAGCGATCGGGCAACGCATCAGGTAGTATTCCTGCGTGGTCGGGTGGTTACAAAGGCATGCCTACTGGCCACAAGCCGGGCAGTATGAACAGTGACCCGTTTCCAGACGAAAAACCAGTTTTGGTTATTAACAGCAAGAACGCCGCAGCCTACAAGGATCAACTATCTCAAACGGTGCAGTTACTGTTACAGCAAAATCCCGAGTGGCGCCTTGATGTATATCCAACGCATCGCACCGCGTCGGCTCCAGAGGCTTTTTATAACTACACGAAAACCAATGCTACTACGGCGCAGCTCAGTGGCGACGGTGTGGGTGTCACCCATGCCTACGGTGGTATCCCGTTCCCTTTACCGAAGAATGGTTCAGAAGTTCTTTGGAATCACTTCCTTTCCTGGAAAGGAGTCGGAGTGGAAATGGAGGGTGGAATGTATATGGTCGATAGCAAGGGGCGTTCTTCGTTGACGGCTGCGTTAAAAATGGACGGCTTCTATCGATATGCGTTACCTGGTGGCGAAAAGGATTTTGATGGGTTCTTTCAATGGCATCGATCGTTAACCACCGCTCCGGGTCGCAGTGCAGGTGAGGCATTGATCGGCATTTGGCCGCAAGACTTCACCAGCCAGCAGCCAGGCTCATGGCAATATATGCCGGGTCAGCGCCGGGTTAGAAAACTACCTAATGTACAGTTTGATACGCCAAACTTTCTGATGTCCGGCTTGACTCAGTTCGATGAGGCCTATGGGTTCTTCGGTTCCCCAGAGCAATACGATTGGAAGTTGGTCGGAAAGAAGGAGATGTATATTCCTTATAATACCAACAAGCTTTTTTCCGTTATTCCGGAGGAGTTGTTGACTCCAAAAGTGCTTAATCCGAATGTCATTCGTTGGGAGCTGCATCGGGTTTGGGAGGTTGAGGCGACGCTTAAGCCTGGCGTTCGAAACGTTGTGCCTAAGCGCCGTGTCTATATGGACGAGGATACATGGGCCATCGTTATGGCAGACCTTTGGGACTCTCAAAACAAGCTCTATCGCGGTGCGATCAACTACCCGGTTGTGAACTATGATCTGCCTGGTGTGGTGATGCGACCTTTTATGTCAATAGACTTTCAACAACAGGCTTATACCTTGGGCGAGTTGGACACCAAGTACCTTCCGGTCACCCCGAAGCCTCGTTCCTTTTATTCCGCTGAAGCATTGGTACAAGACGCCCTGCGTTAA	MNNYSVKFLLSAAFFVALINTPVRAAVTPVEAAKLNSELTPLGAERSGNASGSIPAWSGGYKGMPTGHKPGSMNSDPFPDEKPVLVINSKNAAAYKDQLSQTVQLLLQQNPEWRLDVYPTHRTASAPEAFYNYTKTNATTAQLSGDGVGVTHAYGGIPFPLPKNGSEVLWNHFLSWKGVGVEMEGGMYMVDSKGRSSLTAALKMDGFYRYALPGGEKDFDGFFQWHRSLTTAPGRSAGEALIGIWPQDFTSQQPGSWQYMPGQRRVRKLPNVQFDTPNFLMSGLTQFDEAYGFFGSPEQYDWKLVGKKEMYIPYNTNKLFSVIPEELLTPKVLNPNVIRWELHRVWEVEATLKPGVRNVVPKRRVYMDEDTWAIVMADLWDSQNKLYRGAINYPVVNYDLPGVVMRPFMSIDFQQQAYTLGELDTKYLPVTPKPRSFYSAEALVQDALR				NA	NA	NA	NA	NA
D1-36_02103	1071	hcf136_1		Ycf48-like protein	ATGGTTTATACGATCGCGCGCGCAGCTCATTGGTTGAGCGCATTGTATCTGGTTGTCGCTGCATATGGCGCGAGTGCCGAGGAAGGGCGACCCGCTGTGTTGGACCGTCCTGCCCGTGAAGTACTGCAGCCAGCTTCAACGTTTCTTCTGGGCGTGACCAAAGCAGGCGAGCGCCTGGTAGCTGTCGGCGAGTCGGGCCGTATCGTCCTGTCGGATGATCAGGGTCAGAGTTGGCGCCAAGCCAAGGTGCCGACCAGTGTACTGCTTACGGCTGTCGAGTTCGCGGATGCGAAAGTTGGCTGGGCAATCGGTCATTCAGGGGTGGTGCTTCGCACTGAGGACGCTGGTGAAACCTGGAGCCGCCAACTGGATGGTGTTCAAGTCGCTCAATTTATCCATGACGCCGCCTCCCGATCAGCTACGGGTGCCCCAGGGATCGCCAAGGGTATTAGCGTCGATCAAGCTGAGCGGTTGATGAGCGATGGCCCGGACAAGCCTTTTCTCGCCCTCCATGTTGAGGACAGGCAAAAGGTCACCATCGTAGGCGCCTTTGGCTATGCGCTGAGCACCCTGGATGGTGGTAAACACTGGGTATCTCTGGACAGACAACTCGATAACCCGATGGGCCTGCATTACTACGGAATAGCTAAAACGGACGAGGGCCTGGTGCTGGTGGGCGAACAAGGCATTGTTCAGCGTCAGATCAGGGCCGAAGAGTTTCACCGTGAGACCCCGTTCGAAGGAACACTGTTTGGCATTCTGTCTCCTGGCAATCACGTCTTTGTGGCTTATGGATTGCGCGGGAAAGTGTTACGCAGCCTGGACGACGGAAAGACCTGGAATAAAGTCAGCAGTGGTATTGAGGCCTCCATTCAAGCGGGGGCGGTACTTCAAGATGGCACCCTTCTGTTAGTGGCGGAAAATGGTCAAATGATCTCCAGCCAGGACCGTGGAAGCACTTTCAATTTGCTGTCGGTTCGAGGCTTGCCCACTGCTTACGTTCTTCCTGTTTCCGCCAAAAGTTTGATTGCGGTGGGGCCTCTCGGGCCACAAACCGTCCCTGCGCCGTGA	MVYTIARAAHWLSALYLVVAAYGASAEEGRPAVLDRPAREVLQPASTFLLGVTKAGERLVAVGESGRIVLSDDQGQSWRQAKVPTSVLLTAVEFADAKVGWAIGHSGVVLRTEDAGETWSRQLDGVQVAQFIHDAASRSATGAPGIAKGISVDQAERLMSDGPDKPFLALHVEDRQKVTIVGAFGYALSTLDGGKHWVSLDRQLDNPMGLHYYGIAKTDEGLVLVGEQGIVQRQIRAEEFHRETPFEGTLFGILSPGNHVFVAYGLRGKVLRSLDDGKTWNKVSSGIEASIQAGAVLQDGTLLLVAENGQMISSQDRGSTFNLLSVRGLPTAYVLPVSAKSLIAVGPLGPQTVPAP				NA	NA	NA	NA	NA
D1-36_02104	2478			hypothetical protein	ATGAAAATTGAGACGACCTCGGCGACAAAGGTCGAAGATTTTGATCCTGCTGCCGGTACGCTTCTTGAGCGGGTTTTATTTAACAATCGCTTGTTTGTCGTGATGTTCTGCGCGTTAGTAACGGTTTGCCTGGGATGGAGTGCTCAGCATATTGACCTGAATGCAAGCTTCAAGGCAGTGATTCCTAATGATCACCCGTATATCCAAAACTATTTCGCTAATGAGGCCGATCTGCAAGGCCTGGGAAATACCCTAAGAGTGGTGGTTGCTACCCAGGGCGATAGCATTCTGAACGCTGATTATTTAGAGACCTTGCGAAAAATAAACGATGAAATTGTCACCATTCCCGGCGTTGAACGACCCTTTCTGCAGTCCTTGTGGACTCGAAGCACCCGTTGGTTGATGGTGACCGAAGTGGGTATCGATGGCGGCCCGGTCATGCCGGATACGTTCGATGGCAGTTCTTCCAGCCTGGAGCAGTTGAGGCTTAACATTCTTCGTTCGGGAGAAGTCGGAAAATTGGTGGCTGCCGACTTTCGGTCGAGCGCTATCGTTGTTCCCTTGTTGGATTATGACGCTCAAGCGCAGAAGGCGCTTCACTATGGTGAGCTATCCAAACAACTGGAAAACATCAGGAGGAAGTACGAAGGTCAGGGTGTCAGTATTCATATCGTCGGCTTTGCAAAAGTCGTCGGCGATCTGATTGATGGCTTGAATCAAATATTAATATTCTTTGCAATTGCCGTCGCCATTGCGGCTGCGATGGTTTTTTGGTTCACCCATTGTATGCGAAGTACTTTGTTGGTTGTGGCCTGTTCCCTTGTCGCTGTGGTTTGGCAGTTGGGAATCTTACCGTTGATTGGCTTTCGCCTGGACCCCTATTCGATTCTGGTTCCGTTCCTCATCTTTGCCATTGGGATGAGTCACGGTGCGCAAAAAATGAATGGTGTGATGCAGGATATCGGCCGCGGCATGCATCGTCTTCATGCGGCACGCAATACCTTCCGGCGTTTGTTTATGGCAGGCTTTACAGCGTTGGTTTGCGATGCGGTCGGCTTTGCGGTGCTGTTCATGGTCAATATTCAGGCGATCCGCGAGTTAGCCATCGCTGCGAGTATCGGCGTGGCCATTCTGATCTTCACCAATCTAATCCTGCTGCCCGTCCTGTTAACCTATACAGGGGTCAACGATCGTGCGGCCAAACGGGCTCTTGTCCAAGAGCAAAATTCCCTGGACGCGTCTCATGAAAGGCTTTCCCTGTGGCGAGTGCTGACACTCTTCACCCAGCGGCGCTGGGCTATTGGCGCGATTGCCTGCGCAGTGATATTGGCGGTAGCCGGTTTAGTGGTGGCGTCGCGGTTGCAGGTGGGGGATCTGGATGCCGGGGCTCCGGAATTACGTGCCGATTCTCGATATAATCTGGATAACGCCTACTTGACCGGCCATTACGCGACCAGCAGTGATGTCATGGCAATTATGGTCAAGACCCCTCCTGATCAATGTGTTAACTACGAAACGCTGGTGAAGGTCCGCGATCTGCAAATCCTTTTGGGGCAATTACCCGGCGTCGAAGCCACCAACTCCTTTGCCAACCTGGCCAGGCAAATGACTTCTGCTTACAGCGAAGGCAGCTTCAAATGGGCAGAAATTCTGCCCAATCAAGCGGCGTTGAACTCGCTGATCGGTCAAACGCCTCGGGGGCTGCTTAACACCAATTGTGATCTCCTTACCGTGTACGCCTACCTGAAAGACCACAAGGCGCAGACACTCCAGCAAACGGTGGAAGTTGTTGAGGCTTTTGCCAAGGAGAACGACACCGCAAACGTGAAGTTCTTGCTCGCTGCGGGGAACGCAGGCATTGAGGCGGCGACCAATCAAGTGGTCAAGCACCACAACTACTTGATGCTGGTCGGGGTCTATCTCGTCGTCATTGTGCTTGCACTGGTTGCATTTCGCTCCTGGCAAGCGGTGGTGGTCGCAGTGGTACCGCTCGTATTGACAAGTATTCTTGCCGAAGCGCTGATGGTTTGGGTGGGCGTCGGGCTGAAGGTCGCTACGCTACCCGTAACGGCTTTGGGAGTAGGAATCGGGATCGACTATGCGCTGTATATCTTAAGTGTGACGTTAGCCTGGATGCGTATGGGGGCATCACTCAGTGAAGCGTACTACCGTTCACTGCTGTTCGTAGGGCGAGTGGTGATGCTCACGGGCGCGACATTGGCGGCGGGCGTTGCGACTTGGGTGTTCTCACCCATCAAGTTTCAAGCCGATATGGGTATGCTGTTGGCCTTTATGTTCCTTGTAAACATGTTCGGTGCGCTGATCTTGCTGCCCGCGTTGGCCAGTTTCCTGCTGAAACCACAGCTTCAGGCTCGCGAGAGTCAACATGTCGCCGTTGAGTCTTGCGAGTTCGACGAGCTACAAGAGCCTCAGAGTCGGACATGTAGTCGTGCGACGCTGGAAGTGAGAGGCGTCTAA	MKIETTSATKVEDFDPAAGTLLERVLFNNRLFVVMFCALVTVCLGWSAQHIDLNASFKAVIPNDHPYIQNYFANEADLQGLGNTLRVVVATQGDSILNADYLETLRKINDEIVTIPGVERPFLQSLWTRSTRWLMVTEVGIDGGPVMPDTFDGSSSSLEQLRLNILRSGEVGKLVAADFRSSAIVVPLLDYDAQAQKALHYGELSKQLENIRRKYEGQGVSIHIVGFAKVVGDLIDGLNQILIFFAIAVAIAAAMVFWFTHCMRSTLLVVACSLVAVVWQLGILPLIGFRLDPYSILVPFLIFAIGMSHGAQKMNGVMQDIGRGMHRLHAARNTFRRLFMAGFTALVCDAVGFAVLFMVNIQAIRELAIAASIGVAILIFTNLILLPVLLTYTGVNDRAAKRALVQEQNSLDASHERLSLWRVLTLFTQRRWAIGAIACAVILAVAGLVVASRLQVGDLDAGAPELRADSRYNLDNAYLTGHYATSSDVMAIMVKTPPDQCVNYETLVKVRDLQILLGQLPGVEATNSFANLARQMTSAYSEGSFKWAEILPNQAALNSLIGQTPRGLLNTNCDLLTVYAYLKDHKAQTLQQTVEVVEAFAKENDTANVKFLLAAGNAGIEAATNQVVKHHNYLMLVGVYLVVIVLALVAFRSWQAVVVAVVPLVLTSILAEALMVWVGVGLKVATLPVTALGVGIGIDYALYILSVTLAWMRMGASLSEAYYRSLLFVGRVVMLTGATLAAGVATWVFSPIKFQADMGMLLAFMFLVNMFGALILLPALASFLLKPQLQARESQHVAVESCEFDELQEPQSRTCSRATLEVRGV				NA	NA	NA	NA	NA
D1-36_02105	810	hsaD		4,5:9,10-diseco-3-hydroxy-5,9,17-trioxoandrosta-1(10),2-diene-4-oate hydrolase	ATGAGCAGCTTTCCATTCGGCGACCGCAGGGGTGATCACCGCACTTACATCCGAAAAAAATTAAACATTGATAACACTGGAACTGTCGTATATCAAAACGGAACGGGTGAGTCGTTGGTGTATTTCCATGGAGCCGGAACCTGGCATGGAATAGGGTTTTCCGATCAGTGGGACAAGTACTTTACGACGTATCTGCCCTATCATCCGGGTTTCGGCGCGTCGGCAATCAACCCTCGAATTGATTCAATTCAAGGTTATGTCGATCACTACGCCAAGCTATTTGACGTGTTGGGCCTGGATCGCGTTCACCTGGTCGGAACCTCGCTTGGGGGATACCTCGCTGCCGAGTTTGCGGCGCAGCATGGCTCGCGCGTAAATCGGTTAGTGCTCGCGTGTCCCGCCGGCCTTGATGTGAAGGAGCATCCGCCCACTGACCTGAGTAAAGTTCCGCCAGAGCAGATCCCCAACTACCTGGTACACAATGTCAGCAGCCTGGCGCCCTACCTCCCTGAAGGGCCAGATGAAGAATTCAATGCCATGCGCAAGAAGGAAGGAGATTCAGCCTGCCGGTTATTACTCAACGGGAAAATGATAAATACCGCGATGCCTTCGACCCTGCAGAAAATTCAAACGCCTACCCTGGTTGTCTGGGGTAAAGAAGACAGAATTCTTCCGGTCGGCCAAGCCGGACACTGGCAACAAGCCCTTCCCCACTGCGAAGTGAACATAGTGGGAAATGCAGGGCACCTGGTACTGGACGAATCCGAAACCGCTCGCCATGCCGTTCGTGAATTCCTGCTGCGCGATTAA	MSSFPFGDRRGDHRTYIRKKLNIDNTGTVVYQNGTGESLVYFHGAGTWHGIGFSDQWDKYFTTYLPYHPGFGASAINPRIDSIQGYVDHYAKLFDVLGLDRVHLVGTSLGGYLAAEFAAQHGSRVNRLVLACPAGLDVKEHPPTDLSKVPPEQIPNYLVHNVSSLAPYLPEGPDEEFNAMRKKEGDSACRLLLNGKMINTAMPSTLQKIQTPTLVVWGKEDRILPVGQAGHWQQALPHCEVNIVGNAGHLVLDESETARHAVREFLLRD				NA	NA	NA	NA	NA
D1-36_02106	1347			IS66 family transposase ISPsy43	TTGATCAGTGAACTCAAGCACGAACTTGATCGCCTGCGGGTCAGCCAACCGGGACATTCCTCTGCGGATGTTCTGGGTGAAATGGCGTCGTCAGCGGGACACTATGCTCAAAACCTGGATGATTTGGTCCGCCTGACCGATTCCGTCGGCCTATTTGCTGGGCGTGAGGAAATCGAGGCGCTTAACACTGGCCTGGACAAAGATGCTGGGCGGCTTCTCGAGTTAGGAAAGGAGGTCTACTCCGCACAAAGCCATGAAATGCTTGCTTTGAAAGCACACATATTCCAGTCGCTCGGCGCCAGCGTGCTTCTGCTCCTCTTCGTCGCGGCAGGCTCTACCTTCGTGCTTCAGGCCCAAATAGTGGGTCCTTTACGAAAGGCGGTAGGGGTACTGCAAGAAGTTGCAAAAGGAAATCTGGCGGTTCGGATGGACAGCCATCGTCGTGACGAAATAGGTCAGTTGTATGCTTCCATGCAGCGAATGTGTGACGGATTGCGGGGGCTGGTGACTGGAATCGGCGATGGCATCCATCAACTTGGGCAGGTTGCGCAGGCGTTTTCTGAATATGGCATTGCCAGTCAAAATACAGCCCATGTTCAGGCGCAAGAGTCTGAGCAAGCTGCCTCGGCGATGACGCAGATGGTCGCGAGCGTTCAGGAAGTGGCTTATAACACGCAGCAGGCCCGAGAGGCCGCAGAGTTGGCGGAACGTCAGGCAACAGCCGGAGTGGACGTTGTCGGTGAGACGGTACGGCAGATTGATCGACTGGCGCTCGGCGTTGAGCGCTCTACCGAGTCGGTGGTTCGCCTGGAGACGGAAAGCAATCGAATCAGTGGCGTGCTTGACGTCATTCGATCAGTGGCAGAACAGACCAACCTGCTTGCCCTCAATGCGGCAATCGAAGCTGCGCGAGCCGGTGATCAGGGACGCGGCTTTGCCGTCGTGGCGACGGAAGTGCGAGCCCTGGCCAGGCGGACTCAGGAGTGCACTGTGGAAATCGACCTGCTTACACATAGCTTGCAGAGCATTGCTGGCGAAGCCGTTGCGCAAAGTCGGGAAAGTCTCACGCTCACCCGGCAAACCGTAGAACTCGCAGGCAAGGCAAGCACAGCGCTTGGAGAAATCAGTATCGCAGTCTCGCTGATTGAGCAGATGAATCAGCAAATCGCTGCCGCGGCAGTACAACAGCACGCAGTGGCAGAAGATGTCGGGCGCAGTGTTACACGGGTGCGGGATTTGGCGGACAGCACTGCTTCGAATGTGAAAGGCAGCGCCCAATGCGGTCTCACCCTCACGCAATTGAGTGGCGAACTACAACAATGGGTTGGCAGCTTTAGTGTGAATTGA	MISELKHELDRLRVSQPGHSSADVLGEMASSAGHYAQNLDDLVRLTDSVGLFAGREEIEALNTGLDKDAGRLLELGKEVYSAQSHEMLALKAHIFQSLGASVLLLLFVAAGSTFVLQAQIVGPLRKAVGVLQEVAKGNLAVRMDSHRRDEIGQLYASMQRMCDGLRGLVTGIGDGIHQLGQVAQAFSEYGIASQNTAHVQAQESEQAASAMTQMVASVQEVAYNTQQAREAAELAERQATAGVDVVGETVRQIDRLALGVERSTESVVRLETESNRISGVLDVIRSVAEQTNLLALNAAIEAARAGDQGRGFAVVATEVRALARRTQECTVEIDLLTHSLQSIAGEAVAQSRESLTLTRQTVELAGKASTALGEISIAVSLIEQMNQQIAAAAVQQHAVAEDVGRSVTRVRDLADSTASNVKGSAQCGLTLTQLSGELQQWVGSFSVN	PGPT0015710_8515	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_02107	351			hypothetical protein	ATGAAGCCGTCACTCCTGGCCCTCCTCGCAAGTGCGCCGCTAAGCTGGGCCATAACCGCAGACGCCGCAGAAAGCCAAGGCAAGTTGGTGTATGAGAAGTGGTGTGCTCCTTGCCACTCTCGAGGGGAGGTCTATCCCGGCACTACGGCCTTGGATGCGCGATATAAAGGAGCCGTTCCAGCAAGCCTCGAGGACCGCTCGGACCTTTCGCCAGAACTGGTCAAGTACTTCGTTCGCAATGGCATTTCGGTGATGCCATTTTTCCGCAAAACAGAAATTAACGATATTGAGTTGGACTCCCTGGCGCGCTACCTCGCCGAGCCTGCAAACAAAAAGCAGACTGGCAATTAA	MKPSLLALLASAPLSWAITADAAESQGKLVYEKWCAPCHSRGEVYPGTTALDARYKGAVPASLEDRSDLSPELVKYFVRNGISVMPFFRKTEINDIELDSLARYLAEPANKKQTGN				NA	NA	NA	NA	NA
D1-36_02108	1659	pchF		4-cresol dehydrogenase [hydroxylating] flavoprotein subunit	ATGCAAACCCCGCCCGGCGTCAGCGCCGAAGACTTCGCCCAGGCACTCAGTAAATTCAGGCAAGTGGTAGGAGACGAATGGGTCTTTACCAGCCAGGAAGACCTGCATCTGTATCGCGACTCTTACTCGCCCTATTGGGGAGAGGCCGAAGAAATTCTCGCATCGGCGGCAGTGGCTCCATCAAGTACTGAAGAAGTTCAGCAACTGATGCGCATCGCCAACCAGTTCAAAATCCCGATGTATCCGATCTCCACAGGGAAAAACCTGGGCTATGGAGGGTCAGCACCCACCTGTTCAGGTTCGGTGGTACTGGATCTGAAGCGAATGAACCGGATCCTGGAGGTTAACGAGAAGCAGGCCTACTGCGTCGTAGAGCCAGGGGTCAGCTACTTCGACCTTTACCGTTATCTGCAGGAAAAAAACATCAAGTTGTGGATGGATGTTCCTGACCCAGGCTGGGGGAGCATGTTAGGGAACGCTGTAGATCGCGGAGCAGGTTATACGGCTGCACAGTTTCGCAACCACTTCGATGCTCATTGTGGAATGGAAGTGGTGCTGGCCAATGGCGAGGTAATGAGAACGGGTATGGGAGCGATGCCTGGCGCAGAGACCTGGCAGCTCTACAAGACCGGCTTTGGTCCTTGGGTTGACGGCATTTTCAGCCAGTCAAACTTTGGCATTGTGACCAAGATGGGATTTTGGTTGATGCCTGAACCAGAGGCATTTCTAAAAGGCACAGTGCACCTGTCCAACTATCGGGACCTCATACCGTTGGTGGACATCATGACCGAGATGGAGAATCAAAAGATCTTTACCGGCTTTCCGGACATCAACAGCCCTCTGCTGGGATCGCCAAGTCTGGCCGGCCTGCACGACTTCCTGCTTCACGGGCCGGTGGCGCGCGATGCCGAGTACAAAGCACTGGCGGACCGCGGCGCGAAACCGCAAGAGTATGAAGGCTACGGCAAGCAACATGGCATCCCTTTTTGGAATGGCGCCTTCACTTTCTACGGTCCCGAAAAAATCATTCGCGCTCAATGGAAATATGTCCAGGAACGCTTTCGCAAAGCAATTCCTGACGCCAAATTTGAGGAAAGTGAGTATTACGATCTGCCCCTGTCGCCAGAGCAGCAAAAGCAGGTGCAATATCCCGCTCAGTTTGGCATTCCCAACATGCGCGCCTTTTCGATCGGTGCACGCTCTCACTGGAATCCCGCACCACCTTCCGAAGGTCATGCGTGGTTTTCCCCGATAATTCCCCGAGACGGTGAAGCCATTCTTAAAATCAATGAAGTGCTCGGAACAGCCGCTCGGAAACTCGGCGTGCCATTTGCTTTCGCCCTCAACGTCCCCGTCCCCTGCTGGGAACGGTGCTTTGTTTTCATCATCCCGTTCTGGATCTCAAAAGATCCTGCAAAGAACAAACAGACGCGGGCAGCGTTTCGCGCATTGATCAAAATCGCCGCGGAAAATGGCTGGGGTGAGTACCGAACCGCCACCGCCTTCCAGGGCGATGTCATGGACACCTACTCCTTCAACAGCAATATTCTATTGCGCTTCCATGAAACGCTGAAGGATGCCGTTGACCCTAATGGCATCATCTCTCCGGGGCGCTATGGAATTTGGCCGAAGAATCTACGGCAGGAGAAAAAACCATGA	MQTPPGVSAEDFAQALSKFRQVVGDEWVFTSQEDLHLYRDSYSPYWGEAEEILASAAVAPSSTEEVQQLMRIANQFKIPMYPISTGKNLGYGGSAPTCSGSVVLDLKRMNRILEVNEKQAYCVVEPGVSYFDLYRYLQEKNIKLWMDVPDPGWGSMLGNAVDRGAGYTAAQFRNHFDAHCGMEVVLANGEVMRTGMGAMPGAETWQLYKTGFGPWVDGIFSQSNFGIVTKMGFWLMPEPEAFLKGTVHLSNYRDLIPLVDIMTEMENQKIFTGFPDINSPLLGSPSLAGLHDFLLHGPVARDAEYKALADRGAKPQEYEGYGKQHGIPFWNGAFTFYGPEKIIRAQWKYVQERFRKAIPDAKFEESEYYDLPLSPEQQKQVQYPAQFGIPNMRAFSIGARSHWNPAPPSEGHAWFSPIIPRDGEAILKINEVLGTAARKLGVPFAFALNVPVPCWERCFVFIIPFWISKDPAKNKQTRAAFRALIKIAAENGWGEYRTATAFQGDVMDTYSFNSNILLRFHETLKDAVDPNGIISPGRYGIWPKNLRQEKKP				NA	NA	NA	NA	NA
D1-36_02109	594			hypothetical protein	ATGAACCGCCGTGACTTTTTGAAAGTTGGGCTCACCTGCGGTGTGGTTGCCGGTTTCAACTCCAACGTGATTGCCGCAAGCCTCGACGCTGCTGCGCTGCGCCAACCCGACTTAGTCATCGCTGATAACCGGTTCGAGGCGAGCCAACGCTTTGGTAGTGAGGCAGCACGCAATGGTCTGCCCCACCACATGATCGACGGAGATATCACCGACCTGTGGTTTGAAACACTGGACCCACAGTGGCGCCGGCATCCCACAATCATTGCAGGCATGACAGCCCCGCAACCGCTCTTTTGCCTTGAGCGCCTTGCTCAGGACCGCGGCATGAGAGTAGTCCTGCGCATCACTCATGAAGCTTTGCCGAACAATCAGCTAAGCCATCAGATTGAAACGACAGAGCATTTGCTTCAGCCATTGAGCCAGCTTCTGGAGGGCCCGGATTGGAGCGAGCGCATGGCCAGGCTGGCCGGTGTCTGCTCGTGGCGTGGTACTCCGGGTTCGTGCAGCTCGCATCGCATCATTTCAGGGACTGCTGACGCCAGCCTGCTTGTCAGTCCACTCGTCAGCTGGGTTATCGCTCCGCTGATCAGCTGA	MNRRDFLKVGLTCGVVAGFNSNVIAASLDAAALRQPDLVIADNRFEASQRFGSEAARNGLPHHMIDGDITDLWFETLDPQWRRHPTIIAGMTAPQPLFCLERLAQDRGMRVVLRITHEALPNNQLSHQIETTEHLLQPLSQLLEGPDWSERMARLAGVCSWRGTPGSCSSHRIISGTADASLLVSPLVSWVIAPLIS				NA	NA	NA	NA	NA
D1-36_02110	1281	pnpA		Para-nitrophenol 4-monooxygenase	ATGGCCACAGGTAAACGAGTCATTATCGTCGGCGCAGGACCGACAGGTTTAATCACGGCGCTGGGGCTGGCCCGTCAGGGCGCGCAAGTCACCGTTATCGACCGAGAGCGAGATATCCTGCGTTGGCCCCGGGCGATGGTGTATCTGTCATCTACGTTGAAGGTGCTGGATGAGCTTGGTTTGCTTGAATCCGCTCAGAAAGTCGCGGCGTGGGGTTATGAATACAACCTGCGTTTTATGATGTCGGGCACTGTTGGTCGCCTCAATTTTCGCGATATTGAAGACCTCACTCCTTATGCCTATAACCTGCATTTTGGGCAGGATCTGCTGGCCGAGATTGTGTTGGAAGCATTCCTGAAACTGCCTGGCACTGCCCTTTTATGGGATACCGTTTTCGATACTGTGCTGGAAAGCGATGAGCAGGTTATGGTTTCCGTGCTGACTGCCGAAGGGCCGCGCACGCTTGAAGCAGACTGGTTAATTGGCGCCGATGGTGCCCGCTCGAGTGTCCGGAAAGAATTGGATATCGCATTTGAGGGGTTCACCTGGGACGAAGTCTTCATGGCAACCAATGTCATCTATGACTTTGACAAGCACGGCTACGCACCCTCCACAATGCTTGCGAACGGTGATAACTGGGCGGTGATTGCCAAGATCGACAATAACCATCAGTGGCGAATTGCATATGGCGAAGCTGGCGAATTGTCCGAGGAGGAACGTCTTGCTCGAATCCCCGAGCGTATCCAACAATTTTTCCCGGACCCGGAGCAACCGTACGAACTACTAATGGCTAATTCGTACCGAGTCCACCAGCGCTCCGCCAGTACCTATCGCCAAGGTCGTGTGTTGCTTGCAGGTGATGCTGCCCATGCGACTAACCCTATAGGTGGCCTGGGGTTCACCAGTGGCATTCAAGACGCCGACATGTTGAGCAAGTGCCTGGGTGGGGTCATCAATGAAAAGTATGCCGATGACGCGCTGGATTGGTACGCCTATGAGCGTCGCCGCTGTTTCCTCGAGATCGCCAACCCTACAGCGATTGAGATGAAACGCCGCACGCAGGAAAAGAATCCAGTCAAACGTCAGGAGGATGAGGACAACTTTTTCACGCTGGTGAACGATCGCGACCTGCGACGCCAAGCGTTGACCTCGGTCTTCAACCTTGCTGGTCGTGATTATCGCGCCGATTGGAACGAGGTATATCTGAAAGCCGATGAAACCGGGACTACCCCAAAGCTCGGCGCTCATGGTGGGATTGTCTTCTCGCAAGAGACACACTGA	MATGKRVIIVGAGPTGLITALGLARQGAQVTVIDRERDILRWPRAMVYLSSTLKVLDELGLLESAQKVAAWGYEYNLRFMMSGTVGRLNFRDIEDLTPYAYNLHFGQDLLAEIVLEAFLKLPGTALLWDTVFDTVLESDEQVMVSVLTAEGPRTLEADWLIGADGARSSVRKELDIAFEGFTWDEVFMATNVIYDFDKHGYAPSTMLANGDNWAVIAKIDNNHQWRIAYGEAGELSEEERLARIPERIQQFFPDPEQPYELLMANSYRVHQRSASTYRQGRVLLAGDAAHATNPIGGLGFTSGIQDADMLSKCLGGVINEKYADDALDWYAYERRRCFLEIANPTAIEMKRRTQEKNPVKRQEDEDNFFTLVNDRDLRRQALTSVFNLAGRDYRADWNEVYLKADETGTTPKLGAHGGIVFSQETH	PGPT0019755_1485	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,PGPT0019755-mhpA-K05712	NA	NA
D1-36_02111	2766	malT_2		HTH-type transcriptional regulator MalT	ATGCGCGGTGATAACCATAAGTTCCTTCGGGAACCGCAGGATGCTTTAAACATCGCTCTGCTCAGTTCGAAGTTGTACCCTCCCAGCTTCGCTCAACTTATCCCGCGGCCACACCTCCAGAACCGTCTGATGGAGGCGATCGACACCCCGCTGATCCTGCTGCAATCCCCACCAGGTTATGGCAAGACTTGCGTACTTGCGCAGTACTGCGAGAGTTTACTCGCGCAGGGTAAACGCGTTGCCTGGTTAGCTATCGACAGCTCCGAGCGCGAACTCTCGGTTTTCACCGCGTATCTCAAGGCGATGATTGAACTGGCAGGCCAACCCCGAGCACGATCAGGGCAGTTGACCCGAGTTGGCGACACGGGGTTGATGGATGCTCTCAACGCTTTGCTCGCCTTATTGGATGGGCACCTGGCGACGCCTCTCTATCTGATTTTTGATGACGTTCATCAACTCGCGGGCAGCGATTCCGTCCGGGTCCTTTCCATGCTAATTGAGCGAGCTCCCGCCAACCTCCATTTTGCTCTCAGTTTCCGCGGTGAACCCTGCCTGTCGGTAGCGCGACTTCGAATGCACGGCAAGGTATTCGACCTAGGCGTACGCGATCTCTATCTGACAGACATGGAAACCAGTGCACTACTGGAATTGCATGGCGTTCAAGGAATCGATCAACGCCAGCTTCATACGCTGGGCAGGCGCCTCGAAGGATGGACCGGCGGCCTGGTTTTGAGCGCCATCCAACTCCGTCGCGATCCGGAGTTGATCCACAACCTCACCCACTTCTCCGGCGACAGACGACAGTTCGCCGAGTTTTTTCTTCAGGACGTATTCAATCGACAGTCTGCAGTCATTCGAACGTTTCTCTTGCGCACCTCTGTGGTGGAGCGATTGTGCGCCCCGCTATGCCATCTACTGACAGAAATTGAGCACAGTCAAGAATTGCTGCGCGAATGCGAAGGTCTTGGCTTGTTCCTGACCCCCATAGACGACCAGCAATCCTGGTATCGCTATCACCCACTGTTCGCTGAGTTCCTGAGGAGGGAATTACGCGAACAGGACGGCGGACTGCTCCTGTCCCTGCACGCCCGCGCCAGCGACTGGTTTTCCGAGCAAGGCGATTACCTGGAGGCCTTCAACCAAGCCTTCGCTGCGAGAGAAATGCACCGTGCAGCAGAAATCATGGACACCCATTGTCAGGACATTTTTGCGACCCAGGAGTATGCCTGGCAAATGGTGGATAAACTGCCGAGAGAGATCATCGGGCGCTTCCCCTACATCCTTCTCGCGCAGGTTTGGCAGCTTGAAATGCTCTGGCAATTTGAGACCTGCGCAGAACTGATGGAGAAGGCTCGTCAGCGCATCAATCAGTTAGAACGCGATAAATTGCTACCGGAAGAGAAGCTGCGTTCGCTCAATTACTTACTTCAACACCGTGAGTTGATGCGGGCACTGATGAGTGACGACCTGTCCACTGTGCAAGTGCGTGCCCAGGCCCTGCTTGAGTCTTACGACGACGCCCATCCCGTAGTACGGGCCAGCCTTTACACGGCGCTGATCAGTGCTCAGCGCGAACATTACAAACTGGGCGATGTGGAGCGCTTAAATGCTTTGGCTACGGAGCACCTGAAGCGCTTGCCCAACGACCTGGGCCAAGTATTTCACAACGCGGTTGTCGGCCCCTCAAGACTGATGGTTGGCCGAACACACGCAGCGATCCAGGCACTCAATAACGCTCTCAGAACCGCAGAACACCTTGCCGGCAAGAGCTCACCCCTGGCGGCGATGGTCGCTGTGCTGCTGGCCAAAGTTCACTACGAGCGCGATGAATTGGAACAGTCAGCAAGTTTGCTGGACCACTACCTTCCTCAAGCAACATTTATCGGCTACGTCGATCAGGCAATTGCCGGTTGGTTGACCCGCGCTCGTCTTTTGATGATTGAAGGCAATCAAGCCGCTGCATTCTCCACGCTGGATGAGGCGGATGTGTTTGCGACTGAGCATAACTTCGAACGCCTGCGACTGTTCACCTTGGCCGAGCGCCTGAAGTGGTTACTGCGCCGGGGAGATACCGACGAAGTCATCCGCCTGGGTCGGCGCAATGGACTACGATGCCCGATCAATGACGTCTCGCCCAGCACACGAGCAAATACTCGTGATGAAGCGCGCGCCATAGCGTGGATCAGAATTGCGCAGGCCGAAGATCGCTTACCAGAGGCATTGAACCTGGCAAAGCTTTGGCACCGGTATCTTGAAAATGTCGACGCGATACGAAACATGATTCGCTGGGGTTTACTGATCACCCACCTTTCGGTGCTGTCCGGAGACCATAGGGCAGCTCAGCGCATGTTACGCAGAACGATATTGCAAGCAGCCCCTTGCGGTTTCATCCGCGTATTCCTTGATGAAGGACCGTGGCTGGAAAGCCTGCTTCGAGAACAACTGAAAAATGCGGTCCTGAGTAAGGAACCTGCCGATGCCTTTGCGACTGACTTGCTGAGTCGTATGCAAGGATCCGAGGGCGTCACCCTCAAGCCAAGCCTCGACACGAGCGACCCCTCGCCCATCCTTGGAGCGCTGAATAGCCGCGAGATCGATATTCTGGAAATGGTCGCCATGGGCCTGCTCAATCGGGAGATCGGCGGCAAATTAGGGATGACCGAAGGCTCGGTGAAATGGTACCTCCAACAGATATACGACAAGATCGGCGTCCGTCGTCGCACGCAGGCCGCTGATCGGGCGCGCCAACTCGGCATATTGCGCTGA	MRGDNHKFLREPQDALNIALLSSKLYPPSFAQLIPRPHLQNRLMEAIDTPLILLQSPPGYGKTCVLAQYCESLLAQGKRVAWLAIDSSERELSVFTAYLKAMIELAGQPRARSGQLTRVGDTGLMDALNALLALLDGHLATPLYLIFDDVHQLAGSDSVRVLSMLIERAPANLHFALSFRGEPCLSVARLRMHGKVFDLGVRDLYLTDMETSALLELHGVQGIDQRQLHTLGRRLEGWTGGLVLSAIQLRRDPELIHNLTHFSGDRRQFAEFFLQDVFNRQSAVIRTFLLRTSVVERLCAPLCHLLTEIEHSQELLRECEGLGLFLTPIDDQQSWYRYHPLFAEFLRRELREQDGGLLLSLHARASDWFSEQGDYLEAFNQAFAAREMHRAAEIMDTHCQDIFATQEYAWQMVDKLPREIIGRFPYILLAQVWQLEMLWQFETCAELMEKARQRINQLERDKLLPEEKLRSLNYLLQHRELMRALMSDDLSTVQVRAQALLESYDDAHPVVRASLYTALISAQREHYKLGDVERLNALATEHLKRLPNDLGQVFHNAVVGPSRLMVGRTHAAIQALNNALRTAEHLAGKSSPLAAMVAVLLAKVHYERDELEQSASLLDHYLPQATFIGYVDQAIAGWLTRARLLMIEGNQAAAFSTLDEADVFATEHNFERLRLFTLAERLKWLLRRGDTDEVIRLGRRNGLRCPINDVSPSTRANTRDEARAIAWIRIAQAEDRLPEALNLAKLWHRYLENVDAIRNMIRWGLLITHLSVLSGDHRAAQRMLRRTILQAAPCGFIRVFLDEGPWLESLLREQLKNAVLSKEPADAFATDLLSRMQGSEGVTLKPSLDTSDPSPILGALNSREIDILEMVAMGLLNREIGGKLGMTEGSVKWYLQQIYDKIGVRRRTQAADRARQLGILR	PGPT0018616_1835	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_COMPLEX_SUGAR_UTILIZATION	PLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018616-malT-K03556	NA	NA
D1-36_02112	810			hypothetical protein	ATGATGCGCCCACTGCCTGAGTACGAAATATTTGCCGTGCGCTATGCACATCTCGATCGCTCGCGCCGCGACAACTTTATAGCTCCAGATCCACACGATGGTCCGATGCCCATGGACTATTTCGTCTGGGTAATTCGCGGCTCGTCCAATCACTACCTGGTGGACACCGGCTTTAATCAGGCTGCGGCTGATGCTCGCGGGCGAACGCTGCTGCGCTGTCCAATTCAGGCATTACAGCTACTGGGTTTAACTCCCGAAGACATACGCGAAGTCATCCTTACCCACATGCATTACGATCATGCCGGCAACGTGGATTTGCTACCGAACGCCCGGTTCCATCTCCAGGAATCGGAGCTGCACTACGCGACAGGCCGTTACATGCGCTACTCCCCCCTACGTCACCCTTTCAATGTGAATGATGTGATCAATATCGTACGGGGCGTCTACCAACAACGTGTCGTCTTTCATCAGGGCAGCACAATACTCACTCCGGGCGTTGAGCTGATCCACATTGGTGGTCATACCCAGGGACTGCAGGCCGTGCGGGTCCATACGTCGCGCGGCTGGGTGGTCCTGGCCTCGGATGCGAGTCACTACTACGACAATATGATCGAAGAATCGCCATTCCCTTTGGTGTTCCACGTAGGGGACATGCTCGATGGATATCAAAAAATACTCTCCCTGGCCGACTCGCCGGATCACGTGATCCCAGGACACGATCCAATGGTGCGCAGGTACTTCCCCTTTGAGGGCGACCCGATCAACGACATTGTTGCTTTACACAAAGCCCCCCAAATCGAGCGACGCTGA	MMRPLPEYEIFAVRYAHLDRSRRDNFIAPDPHDGPMPMDYFVWVIRGSSNHYLVDTGFNQAAADARGRTLLRCPIQALQLLGLTPEDIREVILTHMHYDHAGNVDLLPNARFHLQESELHYATGRYMRYSPLRHPFNVNDVINIVRGVYQQRVVFHQGSTILTPGVELIHIGGHTQGLQAVRVHTSRGWVVLASDASHYYDNMIEESPFPLVFHVGDMLDGYQKILSLADSPDHVIPGHDPMVRRYFPFEGDPINDIVALHKAPQIERR				NA	NA	NA	NA	NA
D1-36_02113	387			hypothetical protein	ATGAGTAACGAAACGTTCGAGAAAGGCTTTGCCAATCGCAAGGCGGTACTGGGTGCTGCACACGTTGAAAAGTCGTGGGCCAGCGCTGACGAATTCAACAAGCCGATGCAGGAACTGGTAACCAGGTATTGCTGGGGCGAAGTATGGGGCGACGACACGCTGTCGTTCAAGACTCGAAGCATCGTAAACCTTGCAGCGTTGACTGCGATGAGCCAACACCACGAGCTGTCCGTACACGTCAAAGGTGCTTTGACCAATGGCGTGACCAAAGAAGAAATTCGTGCAGTGCTAATGCAGGCTGCCATCTATTGTGGCGTGCCACTGGCTTTGGCCGCCTTTCGTGTAGCCAGCGAAGCGATCGCCGCGTGGGAAGCACAAAACTCCTGA	MSNETFEKGFANRKAVLGAAHVEKSWASADEFNKPMQELVTRYCWGEVWGDDTLSFKTRSIVNLAALTAMSQHHELSVHVKGALTNGVTKEEIRAVLMQAAIYCGVPLALAAFRVASEAIAAWEAQNS	PGPT0005005_2994	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
D1-36_02114	897	garR	COG2084	2-hydroxy-3-oxopropionate reductase	ATGAACATAGGTTTTATCGGACTCGGAACCATGGGTGAGCCCATGGCCACGCGTCTTGTCCAAGCCGGATTAGCCTTGACGGTGTTTGACCTGAATAACGACGCGGTAAATCGCCTGACCACACTCGGAGCGCAGCGTGCCGAGTCAGCGGCGGATGTGGCGAGTAAGACCGAAATCGTATTTGTAAGCCTGCCCACCCCCGAAATCGTTGAGAAAGTCGCATTGGGTGAAAATGGCGTAGTCGAAGGCAAAAAAGTACGTGTCTATATCGACTTGTCGACCACTGGCCCACGGGTCGCCAAGGTGGTAGCCAATCAACTTGCAGCGCACAAAATCATCGCCCTTGATTGCCCTGTCAGTGGCGGCGCTGCGGGTGCGGCAAAGGGCACGCTGGCTCTAATGGTCTCCGGCCCCGGCGCGGCATTTGATGAAATCGCCCAGACGCTCCATCTGCTCGGTAAAGCGATTTACTGCGGAGAAGGTGCGGGTTTGGGGCAGACGATGAAACTCGTCAACAATCTGGTTTCGGTCACTGCGCTGGCGGTTTCTTCCGAAGCACTGGTGATGGGCGTCAAAGCCGGGTTAGCCCCTCAAGTAATGCTGGATGTCTTCAATGCTGGCAGTGGTCGTAATAGCGCCACTGTCGACAAGCTTCCTCGAGCGGTGCTGCCGCGCACCTTCGACTTCGGTTTCACGACTGCTCTGTCTTTGAAAGACACACGTTTGTGCCTGGATGAAGCTGAAGCGATGGGTATTCCAATGCCGGTCGGCAGTGCCGTTCGCCAGATGCTCAATATGACTCGCGCTGCCTACGGTGACAGTTCCGACTTTACCCGAATGGTCTGCGTGCTCGAGCAATGGGCCGGGATCGAAGTGCCTAAGGTTCCTGCAGTCTGA	MNIGFIGLGTMGEPMATRLVQAGLALTVFDLNNDAVNRLTTLGAQRAESAADVASKTEIVFVSLPTPEIVEKVALGENGVVEGKKVRVYIDLSTTGPRVAKVVANQLAAHKIIALDCPVSGGAAGAAKGTLALMVSGPGAAFDEIAQTLHLLGKAIYCGEGAGLGQTMKLVNNLVSVTALAVSSEALVMGVKAGLAPQVMLDVFNAGSGRNSATVDKLPRAVLPRTFDFGFTTALSLKDTRLCLDEAEAMGIPMPVGSAVRQMLNMTRAAYGDSSDFTRMVCVLEQWAGIEVPKVPAV	PGPT0018170_38	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
D1-36_02115	696			hypothetical protein	ATGAGCGCAAACCCACACTTGGCATTACCCGTCCATTGCTCAGGTCCAGCGCCTGAGAGCGTTGGCTGGGTGGCGATATTCATCCACGGCAGAACGCAGTCATCCAGCGACATGCTGACTATCGCCAGTCGACTGAACCTTTCGGAAATGCCATGTATCGCGCTGGATGCCGCGGATAATTCCTGGTACCCCAACCCGTTCATGGAGCCGCTGGCGAATAACCAACCACGTCTGGACTTCGCTCTGGAGCGACTCGATCAGTTGCTGAGCGAGTTCAATGAACGCGGGATTGCAAACGAAAACATCGCGATCGTCGGCTTCTCGCAAGGCGCCTGTCTCGCGTGCGAGTACGTCTTCAGGAAACAGCAACGCTTCGCCGCATTGGTGGCGTACACCGGCGGACTGATCGGACCGGAGGAAACCCGTTGGGAAACAACCGGTTGCCTTGAAGGAATGCCTGTATTGCTCAGCAATGGAGATCAAGATCCCTGGGTCCCTTTAGACCGCACCAGGCAAACGTTGGCAGTCTTCAATGCCATGGGCGCCAACGCCGAACTGAAGGTTTACCCCGGGCGAAGTCATGAAGTCTGCGACGACGAAATCATGATCAGCAGGACATTGCTGAGAAGTGCGATGCGACTTGCAACGAAACAGCCTGAATCAGCCCAGTCGCCAGATCGCATGCCCTGGCCATGA	MSANPHLALPVHCSGPAPESVGWVAIFIHGRTQSSSDMLTIASRLNLSEMPCIALDAADNSWYPNPFMEPLANNQPRLDFALERLDQLLSEFNERGIANENIAIVGFSQGACLACEYVFRKQQRFAALVAYTGGLIGPEETRWETTGCLEGMPVLLSNGDQDPWVPLDRTRQTLAVFNAMGANAELKVYPGRSHEVCDDEIMISRTLLRSAMRLATKQPESAQSPDRMPWP	PGPT0028515_2657	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028515-mhqD-K06999	NA	NA
D1-36_02116	957	linE		Chlorohydroquinone/hydroquinone 1,2-dioxygenase	ATGGAACTCAATCCCCATATTTTGCGCCATCATCACATCACCCTGAACGTGGGTAGTGCTCAGGATGACTACGACTTTCATACAAAAGTGTTGGGTTTGAAGAGCGTCAAGAAAACCGGCCTCTACGACGGTAACGATCCGATCTACCACTTCTACTACGGAAACGATATCGGCGAAGAGAGTACGTTGGTGACATGCTTTCCGATGCGCCAATCCGGTCGAAAGGGACGCCCGGGAAGTGGACAAATCAAGACCCTCGCGCTTTCCGTTCCGGTGTCATCACTTGTGTTTTGGGCAAAACACCTGGAAAGCCACGGTTTCAAACCCGAGTATCAGGAGCGTTTCGGCGAGAAACTTCTTCATTTCGCCCACCCCTGTGGAATTTGTTACGAGCTGGTAGGTATTGCAGATGATGATCGCAAGCCCTATTCAAATGGTGTTGTGCCTTCCGGGTTCGGCATCCGTGGAACGCACGGCATTACGGTGTCTGTGCGAGACCTGGAGAACTCTTCGGAATTCATGCACTACGGATGGAACGGCACCAGGACCAATACGGACGGACGGTTCACCCGCTTTGAAGTAGGCAACGGCGGCAGCGGTGCGGTCATCGATTATCAACTTGAACCGGACCTGCCCCAAGGTTCATGGGCATACGGGGAAGGTACTGTTCACCACTGCGCGTTCGAGGTGGCGGACCTCGACGTGCAACGCAACGTTAAGTTGCATCTGGAAGGCCTCGGCTACACCGATGTCTCTGACCGCAAAGACCGTGGTTACTTCGACTCCGTCTATGTCCGCACACCCAGCGGAGCATTGTTCGAAGCGACTGTTTCCAAGCCCGCCGGATTCACCGTTGACGAGCCCTTCGAGTCGCTCGGTAAATCCATCCAGATCCCTCCCCAACTAGGGGCCAGGGCACAAGAAATAATCGCTTACCTCGAACCACTGAAATATTGA	MELNPHILRHHHITLNVGSAQDDYDFHTKVLGLKSVKKTGLYDGNDPIYHFYYGNDIGEESTLVTCFPMRQSGRKGRPGSGQIKTLALSVPVSSLVFWAKHLESHGFKPEYQERFGEKLLHFAHPCGICYELVGIADDDRKPYSNGVVPSGFGIRGTHGITVSVRDLENSSEFMHYGWNGTRTNTDGRFTRFEVGNGGSGAVIDYQLEPDLPQGSWAYGEGTVHHCAFEVADLDVQRNVKLHLEGLGYTDVSDRKDRGYFDSVYVRTPSGALFEATVSKPAGFTVDEPFESLGKSIQIPPQLGARAQEIIAYLEPLKY	PGPT0028510_651	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028510-mhqA|mhqE|mhqO|yaiA-K15975	NA	NA
D1-36_02117	1056	linF	COG1454	Maleylacetate reductase	ATGCAACCATTTGTTTTCAATGCCCTGCCCGGGCGAGTGATTTTTGGATCAGGCACTTTGAGCCAGGTTGGGGACGAGATCCGGGGCCTGGGATGTGCTCGCGCGCTGTTGCTCAGTACGCCTGAGCAACAGACGCAAGCCGAACACTTTGCCGCGCAGTTGGGTGATCTGGCTGTTGGTGTCTATGCGAATGCGACGATGCACACGCCTACTGATGTCACACTCCACGCCCTGCAAATTTTTCGAGAGGCCGAGGCGGATTGCGTCGTAGCGCTGGGTGGCGGCTCCACAATCGGACTTGCAAAAGCCATTGCGCTGCACACTGATGTGCCGCAAATCGTAATTCCGACAACCTACGCCGGATCAGAAGCCACGCCTATTATTGGTCAAACTGAAAACGGTATTAAAACCACTCAGAAGACCCTGAAAGTCCTACCTGAAGTCATCGTGTATGACGTCGATCTAACCCTCGGACTACCGGCTGAGATGACCGTCACCAGTGGGCTCAACGCAATCGCCCATGCTGTGGAAGCGCTGTACGCGAAAGACGCCAATCCGCTGATCTCAATGCTTGCAGAACAGGGCATTGCAGCGATTGCCCGGGCTCTGCCGCGCATCATCAAGAATCCGCAAGACCGAGAGGCGCGCTCGGACGCTTTGTATGGCGCGTGGGCGTGCGGCGTATGTCTTGGTGCGGTCGGAATGTCCATTCACCACAAGTTGTGCCATACGCTGGGCGGTACCTTCAACCTTCCGCATGCCCAAACTCACACAGCAGTGCTGCCCCATGCAACCGCCTACAACTTCGACGCCGCGCCGGCGGCCATGGCTCGAATTGCAGCAGCACTGGGTGTCGATAACGCACCTCGCGGATTATTCGATTTAGCCAAAAGCCTTGGAGTTCCCACCAGCCTTGCCGAGCTGGGATTGAAGCAATCGGACCTTGCAAAAGCGACCGATATTGCCTGCGCGTCGCCCTATTGGAATCCGCGTGCAATTGAGCCGAAAGCAATTGGCGAATTGCTGGCCAACGCCTGGGCCGGTACTCGGCCGTAA	MQPFVFNALPGRVIFGSGTLSQVGDEIRGLGCARALLLSTPEQQTQAEHFAAQLGDLAVGVYANATMHTPTDVTLHALQIFREAEADCVVALGGGSTIGLAKAIALHTDVPQIVIPTTYAGSEATPIIGQTENGIKTTQKTLKVLPEVIVYDVDLTLGLPAEMTVTSGLNAIAHAVEALYAKDANPLISMLAEQGIAAIARALPRIIKNPQDREARSDALYGAWACGVCLGAVGMSIHHKLCHTLGGTFNLPHAQTHTAVLPHATAYNFDAAPAAMARIAAALGVDNAPRGLFDLAKSLGVPTSLAELGLKQSDLAKATDIACASPYWNPRAIEPKAIGELLANAWAGTRP	PGPT0005915_558	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_HYDROCARBONS|OIL_DEGRADATION	XENOBIOTIC_CHLOROBENZENE_DEGRADATION,PGPT0005915-EC_1_3_1_32-K00217	NA	NA
D1-36_02118	561			hypothetical protein	ATGACCAGGGATCGAATTGTAGAAGCGGCCTTTCAGGCATTCTCGGTCAAAGGGTATCAGGCGACATCCGCTACGGAGATCGCTTCTGCCGCAGGAGCCAGCAGAGCGACCTTTTATCTGCATTTTGCTACGAAGGCGGAAATCATCGTTGATGTGATCGAGCGAAACCAGACTGAGCTGTTCCAGCGCTATACCCTTTTTGCCAGAGAGTGCTGCGGCACGGAGAGAGATATCTGTGTTTGGCTGATGGGCAACATCGAGAGTTGGAAGGGGGAAAGCCTTCACTACCAGGCCATGGAGCAGGCTGTTGCCACTGAGCCCAAGGTCGCGCAGCGATGGATCGATAGCATCAGTGAAGCCGCCACTCGATTCACACGCGAGCTTGATCCAGCGTCCAACGCGGACCATTTCAACGATAATCATCGCGCAGTATTGGCCTTGATGATTCAGTTCGAGAGGGTGATGTTTTTTTCGGTTGTCGGCAATCTGCTCGACGTAGAGCCTTTCTGTCGCGTCCTGGCCGCCCAGTGGTGGGCCGTCCTTTCCCGCATCCGCGGATAA	MTRDRIVEAAFQAFSVKGYQATSATEIASAAGASRATFYLHFATKAEIIVDVIERNQTELFQRYTLFARECCGTERDICVWLMGNIESWKGESLHYQAMEQAVATEPKVAQRWIDSISEAATRFTRELDPASNADHFNDNHRAVLALMIQFERVMFFSVVGNLLDVEPFCRVLAAQWWAVLSRIRG				NA	NA	NA	NA	NA
D1-36_02119	1029	ddmC		Dicamba O-demethylase, oxygenase component	ATGTTTCAACTGAACGCGTGGTACGTCGCCTGTACCCCTGATGAGTTGGTCGAGAAACCCCTTGGCAGGCAAATCTGCGGCAAGAAGATGGTGTTCTTCCGTGGCGCTGATGACCTTGTATGTGCCTTGGAAGATTTTTGCCCGCATCGCGGGGCACCACTCTCTCTGGGGTATGTCGAAAACGGTAATCTGGTCTGCGGCTATCACGGTCTCGCTATGGGCTGCGATGGGCATACCGCCTCCATGCCCGGGCAGCGAGTCGGTGGTTTCCCCTGCATTCAAAAGTTCGCTGCGGTTGAGCGATACGGTTTCATCTGGGTCTGGCCAGGTGATCAATCGTTGGCCAACGCCGACGAAATTCATCATCTTGAATGGGCGCAAAATCCAGAGTGGGCTTACGGCGGCGGTCTGTATCACATCGCCTGTGACTATAAACTCATGATTGATAACCTCATGGATTTGACCCATGAGACTTATGTTCACGCCTCCAGCATCGGACAGAAAGAGATTGATGAGGTCCCTTGCAAAACGTCCGTCAATGACAATGAAGTGGTGACCGAGCGGCACATGCACAGCATCATCGCGCCGCCATTTTGGAAGATGGCGCTTCGGGGTAACGATCTGGATGAAAATGCCCTGGTCGATCGCTGGCAGATCTGCCGATTTACTCCCCCGAGTCACGTGCTCATCGAAGTGGGTGTTGCCCTTGAAGGAAAGGGTGGTGTTCATGCGTTACCTGAACACAAAGCCTCTTCCATCGTGGTGGACTTTATCACTCCGGAAACCGAGACTTCTATTTGGTACTTCTGGGGCATGGCTCGCAATTTCAAACCAGGCGATAATGAGCTGACGGATACAATCCGTGAAGGTCAGGGGAAAATTTTCTCGGAAGATCTGGATATGCTCGAACAACAGCAGAAGAATCTGCTGCTGTATCCGGAGCGTGCGCTGCTTAAACTTAATATTGACTCGGGCGGTGTTCAATCGCGGCGAGTGATAGATCGCCTTATTTCCGCAGAAGTCAGTTAA	MFQLNAWYVACTPDELVEKPLGRQICGKKMVFFRGADDLVCALEDFCPHRGAPLSLGYVENGNLVCGYHGLAMGCDGHTASMPGQRVGGFPCIQKFAAVERYGFIWVWPGDQSLANADEIHHLEWAQNPEWAYGGGLYHIACDYKLMIDNLMDLTHETYVHASSIGQKEIDEVPCKTSVNDNEVVTERHMHSIIAPPFWKMALRGNDLDENALVDRWQICRFTPPSHVLIEVGVALEGKGGVHALPEHKASSIVVDFITPETETSIWYFWGMARNFKPGDNELTDTIREGQGKIFSEDLDMLEQQQKNLLLYPERALLKLNIDSGGVQSRRVIDRLISAEVS	PGPT0005490_118	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005490-vanA-K03862	NA	NA
D1-36_02120	948	pobB		Phenoxybenzoate dioxygenase subunit beta	GTGATAAGTGTCAGGATTGCCGACCGTAAGTGCGAAGCCCATAATATTTTCAGTTTTGAACTGGTGTCTGCCAGTGGAGAGGCGTTGCCACCTTTCAGCGCAGGCTCCCATATTGACATCCATCTTCCCAATGGGTTGATTCGACAATACTCGTTGTACAATAGCTCGCAAGCTGACCACAGCTACAAAATTGCCGTCTTGCTGGCCCCCGAGGGGCGCGGTGGCTCTAGCGCGATGCACCAGTTACAAACTGGCCAGGAATTAAAGATTAGCCAGCCTCGAAACTTGTTTCCTTTAAGCCATGAGGCGAAAAGGACGCTGTTGTTTGCTGGAGGCATAGGTATCACGCCGATACTTAGCATGGCTGAGAGACTGTCTCAGATAGATGCCGAATTCGAATTACATTACTACAGTCGATCCTCGGAACATGCCGCATTTGCTGAAAAACTAAAAAATTGCAGTTTCTCTGATCGGGTCAACCTGTATTTCGACTCGGAACCGGATACCAAACCGGACCTGGCCTCGATGCTGGCAAACCGAACCCTTGATGAACATCTCTTCGTCTGCGGACCCACCGGTTTCATGAACTTCGTCCTGGATACCGCCCGCACTGTAGGCTGGGGAGAGGCCCGGCTGCATAGAGAGTATTTTGCCAACGAGGCCGCTGATACTAATTCAGATCAAAGTTTTGAAATCACTATTGCCAGTACCCAACAGGTATTGAATGTACCTGCCGAGCGCAGCATCCTGCAGGTGCTGATGGAGAACGATATTGAAATCCCTTACTCCTGTGAGCAGGGTGTATGTGGAACCTGTCTTGTGCGGGTGCTGGAAGGCACGCCGGATCATCGTGACCTTTATCTGTCGGCTAGCGAGAGAAGTGCGAATGATCAGATTCTGACATGTTGTTCCCGAGCGCTTGGGAAAAAGCTCGTGCTGGATATTTGA	MISVRIADRKCEAHNIFSFELVSASGEALPPFSAGSHIDIHLPNGLIRQYSLYNSSQADHSYKIAVLLAPEGRGGSSAMHQLQTGQELKISQPRNLFPLSHEAKRTLLFAGGIGITPILSMAERLSQIDAEFELHYYSRSSEHAAFAEKLKNCSFSDRVNLYFDSEPDTKPDLASMLANRTLDEHLFVCGPTGFMNFVLDTARTVGWGEARLHREYFANEAADTNSDQSFEITIASTQQVLNVPAERSILQVLMENDIEIPYSCEQGVCGTCLVRVLEGTPDHRDLYLSASERSANDQILTCCSRALGKKLVLDI	PGPT0005495_205	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005495-vanB-K03863	NA	NA
D1-36_02121	807	baiA_1		3-alpha-hydroxycholanate dehydrogenase (NADP(+))	ATGAAACTTGAAGGAAAAGTCGCTTTTGTTACCGGTGCCGCATCGGGTATTGGCGCCGCAACGGTTGAACTTTTTGTATCAGAGGGTGCTACTGTAATTGCCACAGATCTGTCCCTGGCAAAGTTGATCGACAAGTTTCAAGATCCACGGATCGAGTGCGTGGAGTTGGATGTGAGTAATAGTAAACTGGTAAGTACAGTGTTTTCCAGCGTCAATAAAAAATATGGCAAGCTCGATATTCTCATTAACGCTGCCGGCATCAATGCACCGACCAAGGAAGCTAACGATAAGTTGGTGAAGGCCAATATCAGCGCTTTTGAAGCAGCTGCTCGAGGTGAGCGATTTCTCCCTGCGTTTCTCGAAGATACGACAGATGAAGAGTTCGCTAAAGTCCTGGCTGTCAACCTGGCCGGTACTTTTTATTGCCTGAGGGCAGCCGCGCCACTCCTGAAAAAAGCCGGCGGCGGGTCGGTAGTCAATATCTCGAGCGTGGCCGCTTTGGTCGGCGTGCCCATGCCTCTTTATTACCCTGCTTCAAAGGCCGCTGTCCTTGGCATGACCCGTTCAGCTGCCGGCGAGTTGGCGCCTCACAACATTCGTGTCAATGCGGTAGCCCCCGGGGCCGTCGATACCCCGCTGCTGAGTTCACAGCCTCCCGAAATCATGGAGAAAATCATCGCAATGCAACCTATCCCAAGAGCCGCACAGCCATCGGAAATTGCCCAAACATTGCTGTTCCTCGCCAGCGACGATGGAGCGTATTACACGGGGCAAACGCTCTGCCCATCCGGCGGCATTTACATGTAA	MKLEGKVAFVTGAASGIGAATVELFVSEGATVIATDLSLAKLIDKFQDPRIECVELDVSNSKLVSTVFSSVNKKYGKLDILINAAGINAPTKEANDKLVKANISAFEAAARGERFLPAFLEDTTDEEFAKVLAVNLAGTFYCLRAAAPLLKKAGGGSVVNISSVAALVGVPMPLYYPASKAAVLGMTRSAAGELAPHNIRVNAVAPGAVDTPLLSSQPPEIMEKIIAMQPIPRAAQPSEIAQTLLFLASDDGAYYTGQTLCPSGGIYM	PGPT0003180_2132	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
D1-36_02122	1167	yfeW_1		Putative D-alanyl-D-alanine carboxypeptidase	ATGCCAAACAACAATAAATGTTTTGACCCTGCTGCTTTGCAACGCCTGGACGATGCCATCAAGAATGATATCGAGTCGGGGCTGTACGACGGCGCCAATATAATCCTGGCACGCCATGGTCAGATTGGCTATGAAGCCTCGATTGGCTGGGCCGATAAAGAGAGCGGTCGACATTCCGCGCCGGATGATATTTATCGGGTGTTTTCTCTCACCAAGGCGTTTACCAATGTCATGGTGCTTCAGGCCATCGACAGGGGCATCTTGTCACTGACCACCAAGGTCGTAGACTTGATTCCCGAGTTCTATGGCCGGGATCGATTCCGCAGCGGGCGCAAAGACAGAATCAACCTGGGGCATCTGCTCACTCATCGTGCTGGCCTGGTTCCGACGCCTTGCCCGCTTCCCTACGACCAACTGGGCGATATGAATGCCGTGGTTGATGCAATCTGTCAGCTGGATGTGACAGGCGAGCCCGGGATGACACTCAATTATTCCCCGACGCTGAACCACGTACTGATGGCTGAAATGGTTCGGCGCGCCAGTGGCGTAAATCGGTTCAAAGATCTACTGCAGAGCAATCTCTTCGATTCCCTGGGAATGTCCAGTACCGCTTTGGGGGCTCCTGATGCGTGGAGCGATCGGTATGTCCCGATCAGAGCCAGGTTTCCTGATGGTGGCTGGCTCTCGGTGGCAGATATCGAGGTGATGAACGACATCATCAACAGTGAGGCTGAGATGCCTTGGGTTGGGGCGGTATCAACAGCCAGAGATGTGTTCAAGTTTGCCGAAATGCTGCGCTCTGCCGTCAAAGGCGCTGAGGGCACGATCATAAGCTCGGCGATGATGGACGTCGCAACGACCAATCAGACGGGTGACCAGCCAAGCGACCTCTATAAAGCGCTGGCGGAAGCACGGGGTTGGGAAGTTCCTCCTGCCAACTTCGGCTTGGGGTTTGCACTTTCAGGATCCGGTCTCTATCCGTCCTATTTTGGACCAACTACCAGCCCCCGGACATTCGGAAACTACGGGGCTGGCTCCACGCTTTTCTGGGTTGAACCGGCACGGCAAGTCACATTCGTATGCCTGACCGCCGGGATCATGGAGGAAAGTGAAAACCTTTTGAGATTTCAGCGCCTTTCAACCTTGGCTATCGCTGCAGCCATCTAA	MPNNNKCFDPAALQRLDDAIKNDIESGLYDGANIILARHGQIGYEASIGWADKESGRHSAPDDIYRVFSLTKAFTNVMVLQAIDRGILSLTTKVVDLIPEFYGRDRFRSGRKDRINLGHLLTHRAGLVPTPCPLPYDQLGDMNAVVDAICQLDVTGEPGMTLNYSPTLNHVLMAEMVRRASGVNRFKDLLQSNLFDSLGMSSTALGAPDAWSDRYVPIRARFPDGGWLSVADIEVMNDIINSEAEMPWVGAVSTARDVFKFAEMLRSAVKGAEGTIISSAMMDVATTNQTGDQPSDLYKALAEARGWEVPPANFGLGFALSGSGLYPSYFGPTTSPRTFGNYGAGSTLFWVEPARQVTFVCLTAGIMEESENLLRFQRLSTLAIAAAI				NA	NA	NA	NA	NA
D1-36_02123	1260	yjiB	COG2124	Putative cytochrome P450 YjiB	ATGATTCGTTGCCCTTTTAATCACTCCGCACCGGCAGAGTTCGACCTCTTCAGCAATTTCTATTTGAATGATCCTGCAGCTGTATTCCAGGGCGCCAGGGAAAATACCCCGGTATTTTGGTATGAGCCCATAGGTGCATGGATCATTACTCGCCGCGCGGATGTTGACGCAGCTCTGATGGATTGGGAGCTGTGGTCATGCCAGTCTAACGGCGCGTTCATTGAAATCCCGGCTGAGTACTCTTCGATCGTGAGTACCGAGCTCATGAGCGAGATTATGATCGGTATGGACCCGCCTAAGCATACGGCTGCTCGCAAAGTCGCTCAGAAGGGTTTTCTCAAGCCCAATATCGCCAAACTCGCACCGGAAATTGAGGCTCGTGCCAACAAAATTCTCGACAAGCTGGCGCCTGCCGGCGCAGCAGAGTTCATGGAGAGCTATTGTCTGGAATTGACCACTCAAACCTTGATGGCGCTCTTGGCGCTCCCTCCAGAAGATGAAGGTTTCATCCGCCAACTGCGAGACGATCATTTCCGTGTTCTCGCCAGTGGTCGTGAACCGATACCTGAACCGGAACGTTCAACCGTCTGGCAGCGGTACGCAGCGGCACAAATTCATCTGCGCAAACTTGTTGACGAGCGACGGGAAAGTGAAGAGAGCGATATCATTTCCATTATGGCGCGCGCGCGCGAGCCTGATGGGTCGCATGCGCTTTCCAAAGAGCGAATCTCAATGCACCTGACGGAGTTTGCTGCGGCGGGAACAGACACCACTGCCCAAGCGATGGCAAACGGGATCACGTTTTTATCTCAGCACCCTGATCAACTGGCAGATGCACTTGGTGATCCCTCCCTGTGGCCGAAGGTCTTCGAAGAAACGGTTCGACGCAGGCCATCCGCTCCGTTCTCTTCGCGTGTTGCGACCAGGGACACTGAGGTGGCTGGGGTAAAAATCAAAAAAGGAGACTTCGTGTGGCTTGCATTGGTGAGTGCAAACACCGATCCGGCCGGTGTAGTCGACCCGATGGTTTTCAATATCCATCGCGAAGTGTTGGATGAGCAGAGTCACTACGCCTTCACCAAAGGACGCCACACTTGCCTGGGTGCACCTCTAGGACGCCTCCAGGGAACGATTGGTCTGCGCGTTGCCTATGAACGTCTGAAGTCGCTCCAAACCAAGCCTGATCAGGCACCGGACTTTCTGCCGCTGGCACTGCTGCCGATTCGTCGTTCCCTCCAAGTCCAATGGGATGCCACATAA	MIRCPFNHSAPAEFDLFSNFYLNDPAAVFQGARENTPVFWYEPIGAWIITRRADVDAALMDWELWSCQSNGAFIEIPAEYSSIVSTELMSEIMIGMDPPKHTAARKVAQKGFLKPNIAKLAPEIEARANKILDKLAPAGAAEFMESYCLELTTQTLMALLALPPEDEGFIRQLRDDHFRVLASGREPIPEPERSTVWQRYAAAQIHLRKLVDERRESEESDIISIMARAREPDGSHALSKERISMHLTEFAAAGTDTTAQAMANGITFLSQHPDQLADALGDPSLWPKVFEETVRRRPSAPFSSRVATRDTEVAGVKIKKGDFVWLALVSANTDPAGVVDPMVFNIHREVLDEQSHYAFTKGRHTCLGAPLGRLQGTIGLRVAYERLKSLQTKPDQAPDFLPLALLPIRRSLQVQWDAT				NA	NA	NA	NA	NA
D1-36_02124	960			hypothetical protein	ATGTACTGCGCCAAGCGAATTTCAGAAATTACTTCCACCGCTGCGATATTGATTATTTCATTAAATGTGAATGCCGCAGAATCAATCTCCCCCGCAGGGCCTATCGGAGGAACCGATATACGATCCGCATTACTTCCTCCGCCGGGTAACTACGGCGCTGCTGTCACGGGCGGTATGAATATTGATAAGTGGTATTCGTCCGGCGGGGAATCAATGGATGCGGATGGGCATGTCTACTTTGCTGGTACAGGATTGCTGCACGTCTATAACCAGACCTTTCTGTCTGGAACTATCGCTTCCAGTCTCTACCTGGGGGCGTTAGAAACTTGCTTCGGTATTTCCAAAGTGTCCTGTGACTCAGGTATTCAAGACATCTACTCTGATGTGTTCGCCTGGAGTCTGTTTAACCCGTCGAAAAATTTCTCACCTGATAGCCCCATACCCTATGGCACAGCGTATTGGGTCGGACTTGGCTTGAATATTCCAACCGGAGATTTCAAGAAGGACCGAGTGCCCAACGTAGGTTCTAATTTTTACACTCTTTCGCCAAACGTAGGCATCACACATACCATGCCCAGCATTTTACCCAAAGGGGCAGGGGACGCTACAGAGCTAAGTGCGAGGCTCTTCTTTAATTACTATACTGAAAACCCTAATACTGATTACCAGTCGGGCTATGTCGTAAGCCTGGATTTTGCGGGCACTCAACGTAGTGGATCATGGCAGTACGGTATTACGGGGACCGCCTATAAGCAGCTTAGTGATGACACGCTCAATGGCGAGCATTTGGGCAATGGCGGCAATCGCGCTGCGTTACTCAGCGTGGGTCCATTGCTGGCCTATGATTTCAAAATTGATGGTAAACCATACAATTTGATGGCCAAGTTCCTCACCTCGGCTTGGGGGGAAAATACTACCGGGGTAAGTGGTCTGACACTTCGTTTGGTAACCGAATTTTAA	MYCAKRISEITSTAAILIISLNVNAAESISPAGPIGGTDIRSALLPPPGNYGAAVTGGMNIDKWYSSGGESMDADGHVYFAGTGLLHVYNQTFLSGTIASSLYLGALETCFGISKVSCDSGIQDIYSDVFAWSLFNPSKNFSPDSPIPYGTAYWVGLGLNIPTGDFKKDRVPNVGSNFYTLSPNVGITHTMPSILPKGAGDATELSARLFFNYYTENPNTDYQSGYVVSLDFAGTQRSGSWQYGITGTAYKQLSDDTLNGEHLGNGGNRAALLSVGPLLAYDFKIDGKPYNLMAKFLTSAWGENTTGVSGLTLRLVTEF				NA	NA	NA	NA	NA
D1-36_02125	423	cya	COG2931	Bifunctional hemolysin/adenylate cyclase	ATGGTTGGCGGTACCGGTAATGACACCATGATCGGTGGTTACTACGCCGACACCTACGTGTTCAACCTGGGAGATGGTAAAGACGTTGTTACAGACGACGATGGTGGCTACGTCGCGACTGATACTGTTGCATTCGGAGCAGACCTAAATCCTCAGGATTTGTGGTTTAGCCGTAGCGGTTCGAACATGGAAATCCGAGTCACTGGGGCTACTGATCAAGTGACAGTCAACAATTGGTACCAAGGCACGGCTAACCAGATTGAGGTCTTCGAAATGGCCGACGGCAAAGGTCTTTTGAACAGTCAGGTTCAGAACCTTGTCGACAAGATGGCATCGTTCGGAGTGCCACCGGGAGCTGAAACGAGTCTTACTATAGATCAACCTGCACAACTAGATTTGGTACTGGCTGTGAACTGGAAATAG	MVGGTGNDTMIGGYYADTYVFNLGDGKDVVTDDDGGYVATDTVAFGADLNPQDLWFSRSGSNMEIRVTGATDQVTVNNWYQGTANQIEVFEMADGKGLLNSQVQNLVDKMASFGVPPGAETSLTIDQPAQLDLVLAVNWK	PGPT0022155_36	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
D1-36_02126	897	dmlR_10		HTH-type transcriptional regulator DmlR	ATGAACCTGATTGAAGCCATGCAAATGTTCGTGGCAGTGGTTGAGCATGGCAGCTACACCAAAGCGGCCGAGGCGCTCAATGTTCATCGCCCGGCGCTCTCTAAGAACATCCAGAATCTTGAGCGCGAATTGGGCGTGCAGCTGTTACACCGCACCACGCGTAGAGTGAACACCACGCCAGCTGGCGATGAATTCTATGACCGCAGCCGGAAATTACTCGCTGAACTAGCAGACACACTGGACTCGTTTTCGCCGACTCGTCCGCCGCGAGGCAAGCTCAGGATCGACATGCAGACCGTACTCGGTCACGCGGTCATAATCCCGCGACTGCCCGAGTTCCTGGAGCGTTACCCTGGCCTGGAAATATCTTTGGGAGCCACTGACAACCTGAACGACCTTATCGCAGAAGGCATCGATTGTTCCGTGCGGCTAGGTGATCTGGATGATTCGAGCCTGATTGCCAAACGTATCGGCGAGGTAACTTTGGTGACCTGCGCGGCTCCCGCCTACATAAAGAAACATGGTTTACCAGATACGCTGGATGATTTGCAGGCGCACTTGGCAGTCAATTTCATGGTTGAACAGCGCCGCCAGATCATGCCCTGGCGCTTCAGGGCCAACGGTAACGCTATTAATGTGAAGATGCGCAGCGGCATTGTCGTCGATAACGCTGAGGCTTTGCTTTACTGCGCATTGGCGGGGATTGGGATGGTGCAAGGGCTGCGCCCGGCGTTGCAGCGATACATCGATAGCGGACGTCTGGTGGAGGTTCTGCCGGATGTTCCAGTCGAGCCGAAGACCGTTTCCGTGTTGTTTCCAGATCGCCGTCATCTCTCACCCAATGTGCGGGTATTCGTCGAGTGGGTAAGTGCGTTGTTCCAAGAAAAACTGCCTTAG	MNLIEAMQMFVAVVEHGSYTKAAEALNVHRPALSKNIQNLERELGVQLLHRTTRRVNTTPAGDEFYDRSRKLLAELADTLDSFSPTRPPRGKLRIDMQTVLGHAVIIPRLPEFLERYPGLEISLGATDNLNDLIAEGIDCSVRLGDLDDSSLIAKRIGEVTLVTCAAPAYIKKHGLPDTLDDLQAHLAVNFMVEQRRQIMPWRFRANGNAINVKMRSGIVVDNAEALLYCALAGIGMVQGLRPALQRYIDSGRLVEVLPDVPVEPKTVSVLFPDRRHLSPNVRVFVEWVSALFQEKLP	PGPT0028940_507	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028940-bpeT-K18900	NA	NA
D1-36_02127	993	qorA_2	COG0604	Quinone oxidoreductase 1	ATGTCCAAGGTTGTCCAATTTCACCGTACTGGTGACGCTGATGTTCTGACCCTCGATGAAGTCGCAGTACCGGAGCCGAAAAGCGGCGAGGTTCAGATCGAAGTCAAAGCCATCGGCCTGAACCGTGCTGAAATCATGTACCGCACGGGGCAGTATGTGATCGAGCCCCAGTTCCCGGCGAAGCTGGGCTATGAAGCGGCCGGGATTGTCCGCGCGGTTGGCAGTGACGTCCGCGACGTTGTTCCTGGTGACGTAGTAAGTGTCGTGCCGGCGTTCTCCTTCGCTGATTACGGCATGTATGGTGAGGTGGTCAATGCGCCTGCGCATGCTGTCGTCAAGCATCCGTCCAATCTCAGCTTCGTGGAGGCAGCGGCCAGCTGGATGATGTTTGTCACTGCGTACGGCGCGTTGATTGAGTACGGAAATCTACAGGCTGGTGAAACCGTGCTGATTCCGGCTGCATCGAGCAGTGTCGGGCTGGCAGCGATCCAGATCGCCAATATGCAAGGAGCCATCCCGGTGGCCCTTACCCGCACAAGTGCCAAACGTCAGGCATTGCTGAATGCGGGTGCAAAACATGTCATCGCCACTCAGGAAGAAGATCTGATTGCCGAGGTGGCAGCGATCACTCGTGGCAAAGGTGCGCGTATTGTTTTCGACCCCGTTGGTGGCCCCGAGGCAACCAAACTGATTAAGTCTATGGCCAACACGGGAATCTTCTTCCAATACGGCGCCCTGGATCATCGCGATATCCCGGTTCCAGTCTTTGACATTCTTGGCAAGCATCTGACCGTGCGCGGCTACGAGCTATTCGAAATCACCATGGATATGCAAAAGCTGGCCAATGCCAAGGCGTTCGTTACCAAAGGCTTGGCAGGCGGCCAACTCAAGCCCGTCATCGACCAGGTCTTCCCGCTTACTGACATCGCGGCAGCACACCGCCGAATGGAATCGAATGCGCAAATCGGCAAAATCGTCGTAGTGGTCGACTGA	MSKVVQFHRTGDADVLTLDEVAVPEPKSGEVQIEVKAIGLNRAEIMYRTGQYVIEPQFPAKLGYEAAGIVRAVGSDVRDVVPGDVVSVVPAFSFADYGMYGEVVNAPAHAVVKHPSNLSFVEAAASWMMFVTAYGALIEYGNLQAGETVLIPAASSSVGLAAIQIANMQGAIPVALTRTSAKRQALLNAGAKHVIATQEEDLIAEVAAITRGKGARIVFDPVGGPEATKLIKSMANTGIFFQYGALDHRDIPVPVFDILGKHLTVRGYELFEITMDMQKLANAKAFVTKGLAGGQLKPVIDQVFPLTDIAAAHRRMESNAQIGKIVVVVD	PGPT0013255_4117	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344	NA	NA
D1-36_02128	987			hypothetical protein	ATGGGTACACTGAATCTACCGCCGCGTCTGAAAACGCTCGGCATCATAGCGGTTATGACTGTCGCATCGCAGGCTGCACTCGCAGCTCCAGCCAACCAACATCAGCAGTCAGTCGGCTTTTACCGACAGATGGTCGGCAACACCACTGTGACTGCTGTATACGACGGCTATATCGATCTGAACCCGAAGCATCTCGCGGGCATGTCGCAGGAAAAGATCCACGAGCACATCCTGCGTGAGTATCAGAAGGCGGCTCCGTTCGTACAGACGGCGGTCAATGCCTTTCTTGTCGATGACGGGAAACAGCTGGTGCTTATCGACTCGGGTTCGTCTGATTGCTTCGGCCCCACCATGGGGCGGATGGTCGACAACATCCGTGCTGCCGGTTATAGGCCCGAAGAGGTTGATGCAGTGCTGCTGACGCATATGCATCCTGATCATGCCTGCGGGGTGACGCTGCCAGGCGGCAAACGAGCCTTTACTAACGCAACCGTCTGGGCCGCAGACCGAGATGCGAAGTACTGGCTCGACGTAAAGCAGGAGGGCTCGTTGCCTGAGGAGCAGCGCCCGTTCTTCAAGATGGCGCGCGATGCAATTTCACCTTATTCAGATGTAGGAAAATTCAAAACCTTTAATGAGGGAGACTCCATCACCCCAGGAATTCAGGTCGTGCCGTCAAATGGTCACACCCCTGGCCACACGTCGTACCTGCTCAGTTCGGGAGACGAAAAGCTGCTGCTTTGGGGCGACATTGTGCATGTGCATTCTGTGCAATTGCCGCATCCGGAAGTAACCATCGCGGTGGACGTCGATCCCAAAGCCGCCGTTGCATCTCGCACACGGCTGTTCGCTGAGGCTGCCAGGGAGCGCTGGTTTGTGGCCGCGGCTCACTTGCCTTTTCCTGGTATTGGGCATCTGCGTAAAGAAGAAAAAGGCTACAGCTGGGTGCCCGTTGAGTACCGAAACCCTGTTACCTTTGAACCCTGA	MGTLNLPPRLKTLGIIAVMTVASQAALAAPANQHQQSVGFYRQMVGNTTVTAVYDGYIDLNPKHLAGMSQEKIHEHILREYQKAAPFVQTAVNAFLVDDGKQLVLIDSGSSDCFGPTMGRMVDNIRAAGYRPEEVDAVLLTHMHPDHACGVTLPGGKRAFTNATVWAADRDAKYWLDVKQEGSLPEEQRPFFKMARDAISPYSDVGKFKTFNEGDSITPGIQVVPSNGHTPGHTSYLLSSGDEKLLLWGDIVHVHSVQLPHPEVTIAVDVDPKAAVASRTRLFAEAARERWFVAAAHLPFPGIGHLRKEEKGYSWVPVEYRNPVTFEP	PGPT0006762_5	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_DEGRADATION_OF_ORGANO-PHOSPHORUS_INSECTICIDES	XENOBIOTIC_ORGANOPHOSPHATE_DEGRADTION,PGPT0006762-mpd-NA	NA	NA
D1-36_02129	459			hypothetical protein	GTGTTGTTAGTCAATCACTTCAAAAGCAAAGGCTACGGCAGCCTCTCTGACTCGGCCAAAAGAAGACTTGCCCAAGCCAGTCGAGTGAAGGAAATCTATAACTCTTTGATTGAGCAAGGCGAACAATATGTCGCCGTTGTAGGTGACTTGAACGACACGCCGGACAGCGACGCATTGAAGCCGCTCCTTGGAGATACGACGCTGAAGGATGCATTCACTCACAAGCGTTTCGATGACGGCGGTTATCCGGGAACATACGGCTCGTGCACAGCAACCAACAAAATTGACTATCTACTGCTGTCGCCGGAACTCTTTCTGAAGGTAAAAGCTGGTGGGGTTTACCGCAAGGGAATGTGGCCAGGTTCAAGACCGGTACGCTGGGAGACCTACCCGGAAATCATCAAGAAAGAAAATGCGGGGTCCGACCATGCTGCTGTGTGGGTAGATCTAGATATTTGA	MLLVNHFKSKGYGSLSDSAKRRLAQASRVKEIYNSLIEQGEQYVAVVGDLNDTPDSDALKPLLGDTTLKDAFTHKRFDDGGYPGTYGSCTATNKIDYLLLSPELFLKVKAGGVYRKGMWPGSRPVRWETYPEIIKKENAGSDHAAVWVDLDI				NA	NA	NA	NA	NA
D1-36_02130	702			hypothetical protein	ATGAGACTTGCCACGTACAACGTCGAAAACCTCTTCAACCGCGCCGCAATAATGAACCTTGACGGATGGGCAGAAGGTAAACCGACATTGGAGCGCTTCGCAAAACTCAATGGATTGCTGAGTCAAGAAACCTATTCAGCAGCGGATAAGCGACTCATGGTGCGTTTACTAGGCGAGCTAGGACTTAGCCGCTCAGACCAAGGACCTTTCACCTTGCTTCGACAAAATCGCGGCAGCTTGGTCAAACGATCCCGCAACGGGGAAATAACAATTGTTGCCAATGGGCGATCCGATTGGGTCGGCTCGCTGGAATTGGTTCAGGCGCCTGTTGACGAGGAAGCCATGCGTAACACCGCCAGGGTCATGATTGATTTGAAAGCCGATGTACTGGCGGTGGTAGAAGCAGAAAGCAGACCAGCGCTACGCGACTTCAACACTGAGATCATCGGTGGGCTAGGCGGTGACCCGTTCAGCCACGTGATGCTGATTGACGGCAATGACGAGCGCGGCATTGATGTCGGTGTGGCCGCGTGCGCAGGCTTTCCAATTGGAACCATGCGCAGCCATGTGGATGATCGTGGACGCCGGTCCCCTGATTTTTTCGAGAGATTGCCCAGAGTTTTATCTGGCAATGCCATCCGGTCTCCGATTGGTGTTGTTAGTCAATCACTTCAAAAGCAAAGGCTACGGCAGCCTCTCTGA	MRLATYNVENLFNRAAIMNLDGWAEGKPTLERFAKLNGLLSQETYSAADKRLMVRLLGELGLSRSDQGPFTLLRQNRGSLVKRSRNGEITIVANGRSDWVGSLELVQAPVDEEAMRNTARVMIDLKADVLAVVEAESRPALRDFNTEIIGGLGGDPFSHVMLIDGNDERGIDVGVAACAGFPIGTMRSHVDDRGRRSPDFFERLPRVLSGNAIRSPIGVVSQSLQKQRLRQPL				NA	NA	NA	NA	NA
D1-36_02131	1704			hypothetical protein	ATGTGTTTACTTGTCGTAGCTAGGTTGTGTCTAGCGCTGCTGTGCCTTTCTCCACTCTCGCTGGCTCACGCCGCCCCCACGCCAGGCGACACGGACTTGATCCGCGAACGCCAGAATCGCTTGCTTGAAGAGCAGCGCCGTCGCCTGGAGGAACTCAAGGACCTGCCCGGCAAGGAGGCCAAGCCGACACAGCCGACAGCACCTGCCGATACCCGTTGCTTCCCCATCAAGACCATCGAACTCAAGGGAGCCGACAGTCTTTCCGCCGGCGAACGTGAGCACCTGCTCAAGCCTTACATCGACCAATGCCTGGGCGTGCCGCAGCTCAACGAGTTGCTTAAGGTCATCACCGACCACTACATCGAAAAAGGCCTGGTCACCAGCCGCGCTTATCTGCCGCAACAAGACCTGTCCAGCGGGCATTTGAGCGTGTTGGTGGTGGAAGGGCGGCTCGAAGGCCTCAAGGGCGCCGAGAACAGCAAACTGTCGGACCGCGAGTTGGCGATGGCCTTTCCCGGCAAGGCCGGTGACTGGGTCAACCTGCGGGAGATCGAGCAGATGGTCGATCAGCTCAATCGCCTGCCGTCGAATCAGGCAAAGATGGAGCTGACTCCCGGCCAGAACGTCGGCGGCAGTGAGGTGCGCGTTACCAACGAACCGAAAAAGCCTTGGCGCGCCGGACTGTCGCGCAGCAACGACGGCCAGCGCAGCACCGGCGAGCAGCAGTGGGGCAGCAGTTTCGAGTGGGACAGCCCGTTGGGCCTGGCCGATCAGTTGATGTTGCGCGGCGGTCACGACGCGATGACCGACCACCAGCACACCTCCCGCAACGCCATGCTCTATTACAACCTGCCGTTTGGCTGGTGGAACGTCAGTTACACCTACAGCCAGAGCGAGTACCGCTCGCAGATCCCGGCCAACGGATTCAACTTCAAGCAGACCGGCGACAGCCAGAACCATCAGTTGCGGGTCGAGCGGGTGATCCATCGCGACGCCCTGAGCAAGACCTCCCTCAACACGGGCCTGGCGTACCTGCGCACCAACAACTTCATCGAAGACAGCAAGCTGGCGGTGAGCAGCAATCGGCTCAGCGAAGCCCAGTTCGGCATCAACCATGGCCGGCGGGTTGGCAATGCTTTCGTCAACCTGGACCTGGGCATGCAAGAGGGTATCGGCGCCTTCGATGCCCAGGGCGACAACGATCCGGGCCCCGGCCAGGCTGATGCCCGTTACCGCAAATACACCGCCACCGCCAGTTACCTGCAACCGTTCCAGGTGTGGGGCGAATCCTTCAGCTTCAGCAGCCTGATGACCGGCCAGAGCAGTGAAGACGTGCTGTTCAGCCCGCAGCGCATGAGTCTGGGCGGGCAATCGTCGATTCGTGGCTACAAGGATCAGTCGCTGTCCGGCGACAGCGGCGGCTATTGGCGCAACGACCTACGCTGGAGCCGCCCGGTGACGCTGGAGTGGCTGCGCCCGGTGTTCGCCGAATACGGCACCAGCCTAGGTTATGACCAGGGCGTGATTCGTGGCGATCGCTACAACGGCGATCAGCATGGGCGCATGTCGAGCAACTCGCTGGAACTGTTCGCCCGTGGTGAGCACCTGAGCGCCAGCGTCATCTTCGCCCACTCCCTGGAACGCCCGGATGCCCTGACCGAGCGCGAGGCGCCGATCTACTTCCGCGTGGATGTATCCATCTAA	MCLLVVARLCLALLCLSPLSLAHAAPTPGDTDLIRERQNRLLEEQRRRLEELKDLPGKEAKPTQPTAPADTRCFPIKTIELKGADSLSAGEREHLLKPYIDQCLGVPQLNELLKVITDHYIEKGLVTSRAYLPQQDLSSGHLSVLVVEGRLEGLKGAENSKLSDRELAMAFPGKAGDWVNLREIEQMVDQLNRLPSNQAKMELTPGQNVGGSEVRVTNEPKKPWRAGLSRSNDGQRSTGEQQWGSSFEWDSPLGLADQLMLRGGHDAMTDHQHTSRNAMLYYNLPFGWWNVSYTYSQSEYRSQIPANGFNFKQTGDSQNHQLRVERVIHRDALSKTSLNTGLAYLRTNNFIEDSKLAVSSNRLSEAQFGINHGRRVGNAFVNLDLGMQEGIGAFDAQGDNDPGPGQADARYRKYTATASYLQPFQVWGESFSFSSLMTGQSSEDVLFSPQRMSLGGQSSIRGYKDQSLSGDSGGYWRNDLRWSRPVTLEWLRPVFAEYGTSLGYDQGVIRGDRYNGDQHGRMSSNSLELFARGEHLSASVIFAHSLERPDALTEREAPIYFRVDVSI	PGPT0030385_369	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_V_SECRETION_SYSTEMS	CE-T5b_TWO-PARTNER_SECRETION,PGPT0030385-fhaC|tpsB-K07326	NA	NA
D1-36_02132	11928			hypothetical protein	ATGGACGACCGCCAATACGCCTTCCTGGCCCGCCAACCTTCCGCTGCCCTGAAAAACCGCGAGCGGTTTCTCGGCATGCCCAAGCGCGGCCTGGCGTTCCTGTTGGCCAACGTCATGTTCTGGCAGCCCATGTGGGCCCAGGCCGACGGCATCGTCGTCAGCGCGCCGGGCACCGGCCTGGACCGGGCGGGCAACGGCGTGCCCATCGTCAATATCGCCAAGCCCAACGGCAGCGGCCTGTCCCATAACCAATTCCAGGATTACAACGTCGGCAGCAACGGCGTGATCCTCAACAACGCCACCGCCCGCACGCAGTCCACGCAACTGGGCGGAATCATCCTTGGCAACCCGAACCTCCAGGGTTCAGCCGCCACCACCATCCTCAACGAAGTCAACGGCGGCAACCCCAGCCAGTTGCGCGGCTACACCGAAGTGGCGGGGCAGTCGGCCCACGTCATCGTTGCCAACCCTTACGGCATCACCTGCAACGGTTGCGGCTTTATCAACAGTCCGAAAGTGACCTTGAGCACCGGCAAACCGGTGGTGGAAAACGGCCAGTTGAGTCGCTATCAGGTGGACCAGGGCAGCGTCACGATTGAAGGCGCGGGCCTGAACGCCAATAACGTCGATCACTTCGAAATCATCACCCGCAGCGCCAAGATCAACGCCGAGATCCAGGCCAAGAACCTGACCATCGTCGCCGGGCGCAATGACGTTAATGCCAATACCCTCGACGCCACCGCCCGCGCGGATGACGGCAGCACCAAACCGCAACTAGCCATCGACTCCTCGGCCCTAGGCGGCATGTACGCCGGGGCCATCAAACTGGTGGGCACCGAGGCCGGCGTCGGTGTGAAGCTGGACGGTAAGTTGATTGCCAGCGGCGGGGATATTCAGCTCGATGCCAATGGTCATTTGAGCCTGGCCGAGACCTCGGCCAGCGGGGCGGTCAATGTCAAAGCCGCGAGCCTTGATGCCCAGGGACCGGTCTATGCTGGCACGACCCTGAACGCCCAGACCCAGGGCAAGCTGACTAACCAACAAACCCTTGCGGCGCGGGACAGCATTGTCCTGAACGCGGGTGGGCAGTTGAGCAACAACGGCATCATTGAAGCCGGGGTCAACGCCGATAACGCCCGCAATGCTTCGGGGGACGTGAGCGTCACGGCGCAGACGCTCAATAACAACGGCAAGAGCATCATTGCCAGCCGCAACCTGACGGCCAATGTTGCGCAGACATTGAACAACCAGGGCGGGACCCTGAGCGCCGGGCAAACCGCTACGCTCAACGCCGGGACGCTGGATAACCAGAACAAAGGCCGCGTGTTGAGCAGCGGTGCGCTGAACATCACCGCCGATAAGCTGCTCAACACCCAGGGCGTGGTCAGCAGCAATGGCAACCTGACGGCCAATGTCGGGCAGTTGAATAACCACGACGGCGAAGTCTCCAGCGCCGCTGCCACTCAAGTCACCGGCACTGCGCTGGACAACAGTGACGGCTTGCTCACCGGCGATGTGGCGCTGAATATCGGTTTGATCGGCGCCCTGAATAACCAGAACGGCGCGTTGGGTTCTGGCAAGAGCTTGGCGATCACCGCCGCCAGCCTGGATAACACCCTCGTGGGCAGCCTGGTCAGCGATGGCAACCTGACCACGCGCATCAGCGGCCTGTTCGACAACCGCCAAGGCAGCCTTGGTGCCAAGGGTATGGCTGATGTCCAGGCAGACAGCCTGGACAATCGCGCAGGCAAGGTCCAGTCCGTGAAGGATCTGCAGCTGACTGTCGCCAAGCTCGACAATCGTCAGCAAGGTTTGCTCAGCAGTCAGGCAGCGTTGCGTGTCGATGGCACGCAGTTGGATAACCGCGGCGGCCTGCTCAGCGCCGTTGGCCCGGTGCACCTGCAGACGACGGGCGTTGATAACAGTGGCGGACGAATCTCCAGCAAAACCGACCTCACCGCCAACGTCGCGCAACTGACCAACCAGGGCGGCGAGTTGGTTGCCCAGGGCCTGCTCACCGTCAGCGGCCAGAATCTGGATAACCGCAACGGCGGATTGGTGGGCGCGACCAAAGCGCTAAAACTCAATGTCAATGCGCTGGACAACCGGGGCGGGGAGATCTCCAGCACTGCCGGCATCAACATCACCGGCCAGCGCCTGGACAACAGCGATAACGGCAAAGTCCTCGCCGGCACCGACCTGGGCCTGAAAGTCGCCGCCATCATCAACCAGACCAAGGGCCTGCTGTTCAGCACGGGCATTACCACTGTTGAAGGTCAAAGCCTGGACAACAGCGGCGCCAGTCTTGTCGCTCGCCAGGGTTTGGACATTCGCCTGGACAACGCCTTGAGCAACGTCGCGGGCCTGATCAGCAGCGACGGCACCCTGAGCGCCAACGTCGGCACACTCGACAACACCGACGGCAACCTCACCAGCGTTGGTGCGCTGGCACTCACCACCTCGGGCGCGTTGGTCAACCGTGGCGGCGCCATCACCACCGATGCCGGCCTGAGCGTCAAGAGCCAAAGCCTGGACAACCATGGCGCAGGCCTGCTCAGCGCCAAAGGCGCCACCGGGGTTACCACCGGTACGTTCGACAACACCTCAGGCGGCTATCTGGTCAGTGGCGACACCCTTGATCTCACCGCCACCCAGGTCAACAACGGCACTGCCAGTCGCATCGCTAGCGACAAGGCCCTGACCGCCAGCGTCACCGGTTTCGATCAGCAGGGCGGTGAGCTGTTCAGCAAGACTGCCTTGAGCCTGGACCTGAATCACGGCCAGTTGAACAACCTCAAGGGGGTGATCAACGCGCCGGTCCTGGTGCTGAAAAACCTCCAGGACGTGGACAACCGCGGCGGCGAGATTTCCAGTGCCCAGGCCTTCACCTTGGCCGCGCAAAGCCTGAACAACGGCGATGGCAAGCTGATCAGTAACCAGGCGCTGACCCTGCGTATCGACCGGGCGCTCAACAACATCAAAGGGCTGGTTTCCGGCCAGTCCATCGACACCCACAGCGCGAGCCTGGACAACACCGATGGTCTGATCAGCAGCCGTGGCACGCTGGTCATGACCGTGGACGGTCAGTTGATCAATCGCAATGCTGCGATGATCGCCGACGGTGACTTGCATATCGAAGTGGCGAACCTGGACAACAGTGCAGGGCAGATCGCCGGCAAAACCGATGTCACCGCCGACATTACGACCGTGAACAACCAGGGCGGCCAGTTGATCGCCCTCGGCGCACTGACGCTGACTGGCACCTCGCTGGACAACCGCAATGCGGGCCTGGTCGGGGCGACCGACACGCTGACACTGAACGCTGATTCGATCGACAACCGTGGCGGCGAGTTATCCGGCCACGCCGATGTAGCGTTGACGGGCGACGCGCTGGACAACAGCGACGGCGGCCAAGTGCTCGCCAACGGCGCATTGGCCCTGACGGTGACGCAGGTGCTCAACCGGACCAAGGGCCTGCTGTCCGGCAAGACCGGCCTGACCCTGACTGGCGAGACGCTGGATAACAGCGGCGGCGCGCTGCTGACCCAGCAGAACCTCACCGCTCACCTCGACGGGGGCCTGAACAACGCCGAGGGCGCATTGAGTGCCGAAGGCGCGCTTGAAGTCACTGCCGCCAGCCTCACCAACACCCTGGGCAGCGTTTCCAGCGCCGGGACGCTGGCACTCACCCTCGACAACGCCCTGCTGAACCAGGGCGGCGAAATCGTCACCGACGCCGGCCTCACTCTCAAAAGCGCCAGCCTGGACAACCGCAACAAAGGCAGCATCAGCGCCAAGCAGGTGGTGGTCGTTGAGACCGGTGCGTTCGACAACAGCCAGGCCGGACGCCTGAGCAGCGGCGCCAACCTCGACCTGACCACGAAAAAACTGACCAACCAGGACGGCGGCCGCATCGCCAGCAGCGGTGCGCTGACCGCCAGCGTCACCGGCCTCGATCAGCAGGGCGGCCAGCTTTTCAGCAACACGTCGCTAAGCCTTGATCTGAACCAAGGGCTACTGAACAACCAGAACGGCTTGATCAACGCACTGTTGCTGATGCTGAAAAACCTCAAGGGCGTCAACAACGACGGCGGCGAAATCTCCAGCGCCCAGGCGTTCATCCTGGCTGCGCAAACCCTGAACAACGACAACGGCAAATTGCTGAGCAACCAGGCCCTTACCCTGCGCATCGATAACGCGCTGACCAACCTCAAGGGCCTGATCGCTGCCGCCGCCTTGGATGTCGAGGCTGCCAGCCTGGACAACAGCGCCGGCACCCTGACCAGCCGCGCCAACCTGGACCTGAAACTCACCGGTCAACTGACCAACCGGAACCAGGGCTTGATCAATGCCACCGACGCTTTGAACATCACCTCCAGCGGCCTGAACAACCAGCAAGGTTCGTTGCTGGGCAGCGCCATCGCTATTGACTTCGGCGCGGCCACCGGAGACCTGAACAACAGCGCCGGCCTGATCACCACCACCGGCGTGCTCAGCCTTAAAAACCTGCGGGACCTGAACAACCAGGGCGGTGAATTGTCCAGCAGCCAGAACCTGGACTTGGTCGCCCGCGATCTCAATAACAGCGCTGGCAAACTCATCAGCAACGGTTCGCTGACGGTGAACGCCCGCGACGTCATCAACCAGGGCGGCCTGATCTCGGGCTTCAAGGGGCTGGACCTGAGCGCCGCGAGCCTGGACAACCGCAACAGCGGCACCCTGTCGAGCCGCGACGAAGACCTTAGCGTCACCTTGAGCGGCGCGCTGCTTAATAGCGCTGACGGTGCGTTGGCGAGCAAGAAAAAGCTGACCGTCAGCACCGCCAGTGTGGACAACCGCGGCGGTATTCTGTCCAGCGGTGGCGATCAGACCGTGACCGTCATTGGTGGTTTGCTGAATAACGCCCAAGGCGGTTTGATCGACAGCGGCGCCACCCTGGTCATGAACGCCATGACCCTGGGCAACGTCGGCGGCACGGTCAACGCGCAAAACGCACTGAGCTTCACCGGCACCACGCTGGACAACAGCGGTGGCAAGCTGATCGGCAACGCCGCCGTGACCTTGGACCTGCTCGGTGCCTTGACCAACACCAACGGTAAACTCGCCAGCGCCGGCCCGCTGCGGGTCGAGCGCGCCACACAGATCAACAACCAGGGCGGCCAGATCGCCAGCCAGGGCTTGTTGACCTTGCGCACCGATGGCCTGGACAACCGCAATCGCGGCACCGTCGCGGCCAATGATCAACTCGTTCTGACCACCGCTGGCGCGGTGCAGAACAACGCCGATGGTTTGATCTACAGCCAGAATGGCGGCGTAAATATCGACGCGGACAGCCTCGCCAATGGCAAGGGCACCGTACAGAGCCAGGGCGACCTGATCCTGACCATTGATCAAGACATCGATAACCAGAGCGGCCGCCTTCTAGCCAAGGCTGGGGATGTGACCGTAGCGGGGCGCCATCTCGATAACCGTGGCGGCGTGATCGCTAGCCTGCAAGGTTTGCTCACCACGCAATTGACCGGCGTGCTGAAAAACGGCTATGACCTGAACAACAACCGCCAGGGCGGCATCACCCAGGCCCAGCGCCTGAACCTGAGCGCACTGGGCGGTCTCGACAACTATGGCGGGCGCGTTTCCGCACAAACCGGCGATGCCGTCATCACCACCGGCAACTTCGACAACCGTAACGGCGGCCTCTACGCCAAAGGCAAGGTCAACGTCACCGCCAACAACTTCGATAACAGCGGTGACAAGGACGGCCAGATCGCCGGCAGCCAGATCGACCTGAACCTGACCGGTGCGTTGAACAACCGGTTGGGTATCATCGAAAGCGACAGCACGCTGATGATCAAGGCCAAGAGCCTGGATAACCAGACGGGGCAGATCCGCGCATTGGGTACCGACGGCAAGACCAATTTCCAGATTGATGGGTTGTTCGATAACCGCAGCGGTGTCCTGGAAAGTGCAAACACCGATTTGAGTTTGGGTGTGGGCAACCTGCTCAACGCGGGTGGCAGCATCCTGCACGTCGGGAGCGGCAATTTTGGTGTCGCCATCACCGATGTCATCAATGCAGGCGGCAGTTTCGTCACGCGTGGTGCCTTGACACTCAGCGCTGATAGCTGGACCAACACCAGCGTCCTGCAAGCCGGCACGCTGAACGTCAATGTCAATAACTTCACCCAGACCGCGACCGGACAATTGCTCGCGTCAACAGCTTTGGTGGGCACCGGTGGCAACTGGCGCAATGATGGGGTGATTGCCAGTGACGGCAGCCTGAGCCTGAACTTGGGCGGTACCTATTCTGGCAATGGCCGGGTCAGCAGTTTGGGCACGCTAGGTCTAGCCGTTGGGCAACTGAGCCTGGCCAGCTTGGGCAGCATTGCAGGTGGCGGGACCACCTCGGTAAGTGCCTCGGGCCAGTTGAACAACTATGGACGGATCAGTTCCAGCGTGGCACTGACAGCCAATGCCGGTGTTTTGAATAACTATGGGACGCTGGGTAGTGGGCAGAACCTGACGGTCAATGCGGCTTCATTGCTGAACGATCATGGCTTGATCTTCAGCGGTGGGGACATGGCATTGCGGGTGACCGACTTCAACAACCTGTATGCCGATGTCTACAGTCTGGGTGGGATCGATATCGCTGCTGACAGCGCAGGGGGCCGGGCGCGACTGGTTTCCAATCGATCTTCGACCATGGAGTCGGCTGGGGATTTCTCGCTTTCGGCTACGACTTTTGAAAATACCAAGGATCGTTTTGCTTTCACGTCCAACAAGGTATCGGGTGCATTAGATGCTATCTGTCTCCGTGATTGCTGGAGCGAAGACACCAGATACAAGACGTTTCGCGGGTCAGGGACGTACGTATTGACTGAGCATTTCGAAGCTATCACCAGTGAGGACAGTGCCAGTTCGCTGATGACTGCGGGGGGAAGCATCCGGATCGCGGGAAGCAAAATATCAAATCTTTACAGTACGATTTCAGCGTCGGGAAATATTTCGATTATTGCGGATGACTTTCAGAATCAGGCTGCCCAAGTAGGATCGTATTCGGTAAAGAGCACCTATGAATCCCAGGGAGATATGGCCGCTGCGATTACCGATGAGTTTCTCTATTACAACCAACGCAACAACCCTGATTTCCCAACCGTTAAATACGAGTGGCATGGGGACGTTTACGGAAACAGCCCCCCCGGTGTCATCCAGTATGAAATGGTTCCTGTAGCTCATCACGTGCCGTGGGTGGATGGTGCTGGCGACTATAATGAGGTTTTCTGGTTCGATAAAAACTATGAGGTTTCGACCGATCTGCCTTTGGCAAGTCAACCGTACCTGATGTACAGCCGCATACATCTGAACGATGAGAATGCGTATTTCAGTTCCAGTTCGACGTATAACAAAAACAACTTGTTGGAAACGCCGTCCTGGCTGAACTCCCTGCCTCTGCTCAGTCGCGAAGTCACCGGCGCCCTAAGCAGCACGCCCGCCGTCATCCAAGCCGGTGGACAAGTCTCGATCAACGCCACATCTTCCATCAACAACAGCCTCATCACTCCATTCACCGCAGTAACAAAAGGTGGTGACAAGACATCCAGTACCGCTGTCTCTCCAGCGTCCCAAGCGGTGTTTATCCCTGTCAGCCTGCTTCCCCCCGAGTTACGCCAATCCCAGGTCAACCCATTGGCCTTGCCGGGCTTCAGCTTGCCCTCCGGTCAGAACGGAATGTTCCGCCTGAGCGGGCAGGGCGGTAGCACTCCCGTGGCCAGTGGCCCGAACAACTGGACAATGGCCGACACCAGCGTTACCTCGGCCCAGCGTCAACTAGCGCTACCCAACGCCGTGGCGCGGGATCTTCAATTTGGCAGCAACGCCCAGCCCAATGCTCGCGTGGTAGACCTGAGCATTGGCGACCGGCAGGCAGCCACTGTAAACAATCAGGTCAGCACGTTTGACACCTCTACATCGGGAGACGCGGTGTCAGGCGTCATGCCGGCTCGCTCCTCCGGGTTCACGCTCAACCGTGTTCAGGGACTTCCAAGTAGCACCGCAACAAGTATTTCGCACAAATACCTGATCGAAACCAACCCGGTGCTGACCGAACTCAAGCAGTTCATGAGCTCGGATTATTTGCTGGCGAACCTTGGCTACAACCCGGACGACAGCGCCAAACGCTTGGGGGACGGACTATATGAACAAAGACTGATCCAGCAGGCCGTCCTGGCTCGCACCGGTCAGCGTTACATCGATGGTCAGACGACAGACGAAGGCTTGTTCAAATACCTGATGAACAACGCCGTAGCCAGTAAGGACGCGTTGAACCTGAGCCTGGGCGTAACGCTGACCGCCGAGCAGGTCGCGGCGCTGACCCATGACATCGTCTGGCTTGAGGAGCATGAGGTCAATGGCGAGAAGGTGCTGGTGCCAGTGCTCTACCTGGCGAACGCCAATCAACGCCTGGCCGCTAACGGCGCCCTGATCCAGGGCAAGGATGTTTCGCTGATCGCCGGCAAGGATCTGACCAACTCAGGCACCTTGCGTGCGACCGAAAATCTGGCCGCTATTGCCGGCACCGATCTGGTCAACAGCGGTTTGATCGAGGCGGGCAATCGCCTTGACCTCTTGGCTGGCAATGATCTGGTGAACAAGGCGGGAGGGATTATTTCCGGGCGCGATGTCAGCCTCACTGCATTGAAGGGCGACGTCATCAATGAACGCAGCGTCCATACCTATGACTCTGAGGTGGGCCGCTGGGATCAGCATCAGGAGTTCCTCGACAGCGCGGGTCGGATCGAAGCTGCGAACGACCTGACAATCAAGGCAGGGCGCGATGTCGCCAACATCGGCAGTACCTTGCAAGCCGGTCGAGATATGTCTATCAGCGCCGGTCGGGATGTCATCATTACCTCGGCCACCGAGCACAACACCGAGGAAAAAGGCAAAAACGACACCAAGGAGCAAATCACCCAATTTGAGTCACGCCTCATCGCGGGTCGCGACATATCGATCGACACCGGGCGTAACCTTGCCATCGTCGCCAGCCAGCTAGAGGCCAAGCGTGACATCGCCATGGCGGCTATCGAAAACGTCACAGTGAGTTCGGCGGCGGACGAAGAGCACTCGTTCTACAAAACTAAAAGAGTCACCGATCAGAAAGATCATGTCAGTCAGGTGCAAAGCTCAATCACTGCTGGGGGAGATGTAGGTATCTCTGCTGGTAAGGACATGGCGTTGATCTCGAGTCGGATTACGGCGGGTGACGAGGCTTATCTGGTTGCTGGTGGCGATTTGGAGTTACTGGCGGCGCAGGACCGCGATTACTCGCTCTACAGTCGGAAGAACAAAACTAGTTTCGGTACACGCACTCAACGAGACGAAGTTACCAAAGTCACCCACGTTGGAAGCGAAATCAATACTTGGGGCGATCTCACGATCGTCAGCAATGGAGATCAGACCTACCAAGTGGCCAAGCTCGAGAGCGGTAATGACCTGGTGCTGAACAGCGGCGGGTCAATCATCTTCGAGGGCGTGAAGGATCTCGTTCAAGAGAGCCACGAAAAGAGCAGCACCAGCCTTGCTTGGAATTCCATGAAAGGCAAAGGGCACACCGACGAGACGCTGCGTCAAAGTCAGCTGATTGCTAATGGCGACGTGGTCATCAAAGCCGTCGATGGCTTGAACATCGATATCAAAGACATTGACCGGAACACCGTCAGCCAGACCATCGATGCCATGGTCAAGGCCGATCCTCAATTGGCCTGGCTCAAGGACGCCGAACAGCGTGGCGACGTGGATTGGCGGCTGGTCAAGGAAACTCATGAATCGTTCAAATACAGCAGCTCAAGCCTGGGGCAGGGCGCCATGCTGGCGATCGTCATTATCGTGACCGTTCTAACAGCCGGAGCCGCGAGTGCCGCTGTGGGTAGTGCGGCCGGTGCCACGGCGGGCTCAGGTACCGCCATGGCGGCAGGAGGTGTGGCATCCGCCTCAGCGGTAGCTGGTGGAGCAGCAGTTGGTTCAACAGTGGGGGCGGGCCTGGGGAATATGATGGCTTCCGCCGTGCTGACCTCCATGGCCAGCAACGCAGCGGTGAGTGTTATCAATAACCAGGGCAATTTAGGGGCGACGTTCAAGGACATAACCTCTTCGGAAGCGATGAAGGGCTATCTGACGTCCGCCGCTATGATCGGGGTGTCTCCAGGGTATAACCCGGCAGCACTTGGTTTTAACCTGCCAAGTCTTCAAGCCGTGCTGCTCAAATCAGCTTCTGATGCGTTCGTGAATACAGTCATCAACGGGGGAAGCTACACCGATAACCTAGGCAACGCTTTAGCGAGTCAAGCCAGCAATGTGGGGATGGCTGTTGGCTTCAAGATGGTTGGCGACTATTCCTTAGGAAAATACGAGGATGGAAGCATTCAGAAGGTCTTGGCCCATGCGTTGATGGGTGGACTTCTGGCTGAAGCCACGGGCAGCGATTTCAAAACGGGGGCCATGGCAGCAGGCGCGAACGAAGCGCTTATCAATGTGCTCAGCACCATGGTGGGCGGAAATAAACAACTGGAATCAATGGCTTCGCAGTTGACAGGTCTTGTCGCAGCCGCCGCGGTGGGTGGAGATCTGTCGAAGGGCGCAGAAATTGCGCAGTACGCGACTGCTTACAACCGACAGCTGCATTACGACGAGCAGAAATGGCTCGAGGAGAACGCCAAAACGTTCGCGCAAACGCAGGGCATCACTGAACAAGTGGCGATGGAACGCCTTAGCCAGCAGGCGCTGAAGAACACCGACTACCTTTGGCGTTCCGTTTTGAGCGATGGCGATGACAGTGCTGCATTGGCGTTCCTGTCGGGGGCCGGGAAAACATTCGTTAACGACCTGGGGGAAAAACAGGCACTGTTTACCGCCTCAGGACAACAGCTCTTCCGTCCGGAAATGTTCGCCGATACGGCGGATCCGGCTTTTTACAAGAAATTTGTACAGAGCGGCATCAGTCGAGAGCTGAGCGCAGGCCTTACCAAGGAGCTCAAGGACTCGGGTATCGCGATCAAGGACGGTGCCATCAACCTCTATGATGCTGTTAGAGAACATCCTGCGGCTGTAATGGGGGGGCTTTGGGAGGGCGTGAAAGGTCTGCCCCAAAGCGTAGTCGACAGTTTTCGCGAGGGCGGTAATGCAATTGGAGAAGGTGCAGCCGTTGCGTTAGAACCGGAACTGAAGGCCAAACTTAACGCGATCTATGGACAGGACGTATCGACTGCACAGCAGGCGCTTCTGCTCATTCGAACAATTAGTGCTGTTTCGCTGGCGGGTACAGGTGGCAAGGTTGGAGGGAAGCTAACGGGGGCGGCAGCTGAGGCTGCGGGTAAGAAGCTGGATGAGATTCTTGCTGAGGCGACTGAAAAGGGACTGGTAAAAAGTGGTAAGGAAGAACCTCGTTCGATAGTTGATGAGGAGAAAGATGCACTAGATCGTATAGCGCAGAACCCCAAAGGTCCTGATTTGACGGATAAGCAACCTGGGACGATTCTGCAGCAGCAATCGGATAATCGGATTAGCGAGCTTGTATCGCAGTACAATAGCCCAAGCCTTCAACCAAGGGATTTTAATCTAACTATAGGTGGGAAGACGTTCCTAGCTGATCCTCAGCTTAGTGTTGGTGCCCCTGTTTACTCTGGCACTACGACATCAGATGTAATGAACTATTTTAGACAGTTGACAGGTGTTGTCAGTATGCCCGTTGTAAAGTCGATTCCGGGGAAGGGCGATGTTTATGCTGCGATGATAACCACTGGAGCTAATGCAGGCAGTAAAATTACTTTGAGAAATTTTTCTAAGTCTACTCAGCAATCAGGTGCTACTTGGACTATAGATGTAATAAATCCATCAATTAATGCTGGCAAGCGAATCGAGATCAAATTTAAATGA	MDDRQYAFLARQPSAALKNRERFLGMPKRGLAFLLANVMFWQPMWAQADGIVVSAPGTGLDRAGNGVPIVNIAKPNGSGLSHNQFQDYNVGSNGVILNNATARTQSTQLGGIILGNPNLQGSAATTILNEVNGGNPSQLRGYTEVAGQSAHVIVANPYGITCNGCGFINSPKVTLSTGKPVVENGQLSRYQVDQGSVTIEGAGLNANNVDHFEIITRSAKINAEIQAKNLTIVAGRNDVNANTLDATARADDGSTKPQLAIDSSALGGMYAGAIKLVGTEAGVGVKLDGKLIASGGDIQLDANGHLSLAETSASGAVNVKAASLDAQGPVYAGTTLNAQTQGKLTNQQTLAARDSIVLNAGGQLSNNGIIEAGVNADNARNASGDVSVTAQTLNNNGKSIIASRNLTANVAQTLNNQGGTLSAGQTATLNAGTLDNQNKGRVLSSGALNITADKLLNTQGVVSSNGNLTANVGQLNNHDGEVSSAAATQVTGTALDNSDGLLTGDVALNIGLIGALNNQNGALGSGKSLAITAASLDNTLVGSLVSDGNLTTRISGLFDNRQGSLGAKGMADVQADSLDNRAGKVQSVKDLQLTVAKLDNRQQGLLSSQAALRVDGTQLDNRGGLLSAVGPVHLQTTGVDNSGGRISSKTDLTANVAQLTNQGGELVAQGLLTVSGQNLDNRNGGLVGATKALKLNVNALDNRGGEISSTAGINITGQRLDNSDNGKVLAGTDLGLKVAAIINQTKGLLFSTGITTVEGQSLDNSGASLVARQGLDIRLDNALSNVAGLISSDGTLSANVGTLDNTDGNLTSVGALALTTSGALVNRGGAITTDAGLSVKSQSLDNHGAGLLSAKGATGVTTGTFDNTSGGYLVSGDTLDLTATQVNNGTASRIASDKALTASVTGFDQQGGELFSKTALSLDLNHGQLNNLKGVINAPVLVLKNLQDVDNRGGEISSAQAFTLAAQSLNNGDGKLISNQALTLRIDRALNNIKGLVSGQSIDTHSASLDNTDGLISSRGTLVMTVDGQLINRNAAMIADGDLHIEVANLDNSAGQIAGKTDVTADITTVNNQGGQLIALGALTLTGTSLDNRNAGLVGATDTLTLNADSIDNRGGELSGHADVALTGDALDNSDGGQVLANGALALTVTQVLNRTKGLLSGKTGLTLTGETLDNSGGALLTQQNLTAHLDGGLNNAEGALSAEGALEVTAASLTNTLGSVSSAGTLALTLDNALLNQGGEIVTDAGLTLKSASLDNRNKGSISAKQVVVVETGAFDNSQAGRLSSGANLDLTTKKLTNQDGGRIASSGALTASVTGLDQQGGQLFSNTSLSLDLNQGLLNNQNGLINALLLMLKNLKGVNNDGGEISSAQAFILAAQTLNNDNGKLLSNQALTLRIDNALTNLKGLIAAAALDVEAASLDNSAGTLTSRANLDLKLTGQLTNRNQGLINATDALNITSSGLNNQQGSLLGSAIAIDFGAATGDLNNSAGLITTTGVLSLKNLRDLNNQGGELSSSQNLDLVARDLNNSAGKLISNGSLTVNARDVINQGGLISGFKGLDLSAASLDNRNSGTLSSRDEDLSVTLSGALLNSADGALASKKKLTVSTASVDNRGGILSSGGDQTVTVIGGLLNNAQGGLIDSGATLVMNAMTLGNVGGTVNAQNALSFTGTTLDNSGGKLIGNAAVTLDLLGALTNTNGKLASAGPLRVERATQINNQGGQIASQGLLTLRTDGLDNRNRGTVAANDQLVLTTAGAVQNNADGLIYSQNGGVNIDADSLANGKGTVQSQGDLILTIDQDIDNQSGRLLAKAGDVTVAGRHLDNRGGVIASLQGLLTTQLTGVLKNGYDLNNNRQGGITQAQRLNLSALGGLDNYGGRVSAQTGDAVITTGNFDNRNGGLYAKGKVNVTANNFDNSGDKDGQIAGSQIDLNLTGALNNRLGIIESDSTLMIKAKSLDNQTGQIRALGTDGKTNFQIDGLFDNRSGVLESANTDLSLGVGNLLNAGGSILHVGSGNFGVAITDVINAGGSFVTRGALTLSADSWTNTSVLQAGTLNVNVNNFTQTATGQLLASTALVGTGGNWRNDGVIASDGSLSLNLGGTYSGNGRVSSLGTLGLAVGQLSLASLGSIAGGGTTSVSASGQLNNYGRISSSVALTANAGVLNNYGTLGSGQNLTVNAASLLNDHGLIFSGGDMALRVTDFNNLYADVYSLGGIDIAADSAGGRARLVSNRSSTMESAGDFSLSATTFENTKDRFAFTSNKVSGALDAICLRDCWSEDTRYKTFRGSGTYVLTEHFEAITSEDSASSLMTAGGSIRIAGSKISNLYSTISASGNISIIADDFQNQAAQVGSYSVKSTYESQGDMAAAITDEFLYYNQRNNPDFPTVKYEWHGDVYGNSPPGVIQYEMVPVAHHVPWVDGAGDYNEVFWFDKNYEVSTDLPLASQPYLMYSRIHLNDENAYFSSSSTYNKNNLLETPSWLNSLPLLSREVTGALSSTPAVIQAGGQVSINATSSINNSLITPFTAVTKGGDKTSSTAVSPASQAVFIPVSLLPPELRQSQVNPLALPGFSLPSGQNGMFRLSGQGGSTPVASGPNNWTMADTSVTSAQRQLALPNAVARDLQFGSNAQPNARVVDLSIGDRQAATVNNQVSTFDTSTSGDAVSGVMPARSSGFTLNRVQGLPSSTATSISHKYLIETNPVLTELKQFMSSDYLLANLGYNPDDSAKRLGDGLYEQRLIQQAVLARTGQRYIDGQTTDEGLFKYLMNNAVASKDALNLSLGVTLTAEQVAALTHDIVWLEEHEVNGEKVLVPVLYLANANQRLAANGALIQGKDVSLIAGKDLTNSGTLRATENLAAIAGTDLVNSGLIEAGNRLDLLAGNDLVNKAGGIISGRDVSLTALKGDVINERSVHTYDSEVGRWDQHQEFLDSAGRIEAANDLTIKAGRDVANIGSTLQAGRDMSISAGRDVIITSATEHNTEEKGKNDTKEQITQFESRLIAGRDISIDTGRNLAIVASQLEAKRDIAMAAIENVTVSSAADEEHSFYKTKRVTDQKDHVSQVQSSITAGGDVGISAGKDMALISSRITAGDEAYLVAGGDLELLAAQDRDYSLYSRKNKTSFGTRTQRDEVTKVTHVGSEINTWGDLTIVSNGDQTYQVAKLESGNDLVLNSGGSIIFEGVKDLVQESHEKSSTSLAWNSMKGKGHTDETLRQSQLIANGDVVIKAVDGLNIDIKDIDRNTVSQTIDAMVKADPQLAWLKDAEQRGDVDWRLVKETHESFKYSSSSLGQGAMLAIVIIVTVLTAGAASAAVGSAAGATAGSGTAMAAGGVASASAVAGGAAVGSTVGAGLGNMMASAVLTSMASNAAVSVINNQGNLGATFKDITSSEAMKGYLTSAAMIGVSPGYNPAALGFNLPSLQAVLLKSASDAFVNTVINGGSYTDNLGNALASQASNVGMAVGFKMVGDYSLGKYEDGSIQKVLAHALMGGLLAEATGSDFKTGAMAAGANEALINVLSTMVGGNKQLESMASQLTGLVAAAAVGGDLSKGAEIAQYATAYNRQLHYDEQKWLEENAKTFAQTQGITEQVAMERLSQQALKNTDYLWRSVLSDGDDSAALAFLSGAGKTFVNDLGEKQALFTASGQQLFRPEMFADTADPAFYKKFVQSGISRELSAGLTKELKDSGIAIKDGAINLYDAVREHPAAVMGGLWEGVKGLPQSVVDSFREGGNAIGEGAAVALEPELKAKLNAIYGQDVSTAQQALLLIRTISAVSLAGTGGKVGGKLTGAAAEAAGKKLDEILAEATEKGLVKSGKEEPRSIVDEEKDALDRIAQNPKGPDLTDKQPGTILQQQSDNRISELVSQYNSPSLQPRDFNLTIGGKTFLADPQLSVGAPVYSGTTTSDVMNYFRQLTGVVSMPVVKSIPGKGDVYAAMITTGANAGSKITLRNFSKSTQQSGATWTIDVINPSINAGKRIEIKFK				NA	NA	NA	NA	NA
D1-36_02133	186			hypothetical protein	ATGAAATATGGGGTAGAGCTGTCTAGAGAAAGTCCTTATGCGGAGGATATGTTAGAGGGTTTGGCTAGTGCCTATGAAAAATGCGGCCTCGATGATTTGGCAGAGGTTGGGCTTAAAGGGGAGCCGCTGGCAGAAATAATCGATTGTATGGAGCAGGTTAGGAAAAAATATCTTCTGCCTGGCTAA	MKYGVELSRESPYAEDMLEGLASAYEKCGLDDLAEVGLKGEPLAEIIDCMEQVRKKYLLPG				NA	NA	NA	NA	NA
D1-36_02134	459			hypothetical protein	ATGCAGAAAAAATGTGACTTGTATCTATGTTCTGAGGTGGATGTATCTCAAATTGCGATGCTGAGCCTATTTGATAAGAGTCTCCTTTTAAAGGAAGGCACGGTGCGCAGTGGCTATCTCTCTGTAAATATTGATAGGGTTAAGCTCGTTGCGATAGTGTCCGATTTGCGTCGGCAAAATATATCCTGTTTTAGCGATCCTATTGAGTATAGAGATAGCAATCTTTCGTTTGAGGCTGCATTTGAAGTTGCAAAAAAATCTGCGATAGAACAAAACGCGATTGCCGGGCGTCTGGATCAGACGCGGGCTCCGCCCCTATTTTGGTCTTTTAGCTTGGCGTCTGTATCTTCCTCAGAGAAGAAAGCAGGCGGGGTGCTCATGATCGATCGCTTGGACGGCCATATTTGGAGTCCGGAGGAGTATGAAGAATATATGTATGACTACAATAAAGTATTTTAG	MQKKCDLYLCSEVDVSQIAMLSLFDKSLLLKEGTVRSGYLSVNIDRVKLVAIVSDLRRQNISCFSDPIEYRDSNLSFEAAFEVAKKSAIEQNAIAGRLDQTRAPPLFWSFSLASVSSSEKKAGGVLMIDRLDGHIWSPEEYEEYMYDYNKVF				NA	NA	NA	NA	NA
D1-36_02135	687			hypothetical protein	ATGAAGAATATATGTATGACTACAATAAAGTATTTTAGTAGGAGCTTAGAGTTAGCGAGCTTTGTCAAACTAACGATGTGTGCTGGGCGAATTTTTCTTTTGTTAATCATGAGGTCTAGGTGTCGTATGCGATTTTTTTTCTTAGGGGTGTCGCTGGGCTCGGCATTGATTTTGTCAGGTTGCAATACAACTCCATACGATAGGTCCACTATCTATTACGAGCGAGAGCAATTTGCGGCGCAGCTCTCCAAGGATTTAGGAGTGGCTGATCCCGTTCTTCAGCACGGTCGCTGCTCTCTGATCGTTTCAACCCCGGATTCGAACACTGGCACCTACTATTTTTGCACCTATGCGCTGACAGCCAATAGGCTTTACGTACAGGGGTGGGATGCTAAAACGTTGAAATATGTTGAACTCGTTCAGATAGACGTAACGAATCTTAAGAAAATGTCTCTCTACACTTTTTTACGGACCAAGCAGCTTCAGCTGACCGAAGAGAGACGACAGATCGCGCTCAGCGCATCTATAGACGATGGCGGGTACGTAGATGCGGAGGCTACGGAGCATTTGTTCGATGCGATTAAAGCGAAAGGTGTGCCGGTCGCGAAAAGCGAAGGCCTGATAACGCCACCTGCTGCACCGGCGCCGATGATTATTCCTATCGTCATGCCCAAGTCATATCGGTAA	MKNICMTTIKYFSRSLELASFVKLTMCAGRIFLLLIMRSRCRMRFFFLGVSLGSALILSGCNTTPYDRSTIYYEREQFAAQLSKDLGVADPVLQHGRCSLIVSTPDSNTGTYYFCTYALTANRLYVQGWDAKTLKYVELVQIDVTNLKKMSLYTFLRTKQLQLTEERRQIALSASIDDGGYVDAEATEHLFDAIKAKGVPVAKSEGLITPPAAPAPMIIPIVMPKSYR				NA	NA	NA	NA	NA
D1-36_02136	303	intA_2	COG0582	Prophage integrase IntA	ATGGTCCTTACCAATACGGCGGTCCGACACGCCAGGCCTCGCGCCAAAAACTACACCCTTCCTGACTTTGATGGCCTTGCGCTTTTCGTGAATACGAAAGGCACCAAGAGCTGGCACTTCCGTTTTTCTTGGGCGGGCAAACAGCCTCGTATTTCGCTCGGTACTTATCCTGAAATAGGTCTACGCGATGCTCGCGCTCTGCGCGATATCGCCAGGGCGCTGGTCGCGAAGGGTCTCGATCCCCGCGATCAGCGACGCCTTGAGCGCAATGCCAAACTGTTGGCCGAGAGAACACATTCTTAG	MVLTNTAVRHARPRAKNYTLPDFDGLALFVNTKGTKSWHFRFSWAGKQPRISLGTYPEIGLRDARALRDIARALVAKGLDPRDQRRLERNAKLLAERTHS				NA	NA	NA	NA	NA
D1-36_02137	672			hypothetical protein	ATGAGCGTTACAGAGCAGTCGGGCGTCTCCACCTTGGTCGGTACGCCTAAGGAGGCTCGGGCGAGCTTAAGCCGCTCGCATGCGGACCGAGTACTGGTCGTGTCTTTTGATCAGGTCAACCTCAGCGTATTTGAGGCGTTGGCGGAAAACTTCGCCAATGTGGCTTCTTCGATGTACGAGGTGCTGCAGGAGCGTCAGGACCCGAAGTCGCTGGAGCGACTGGCCGAGGTGTTTGTGACGCGTAAGCCGCCTTCGCCTCGCCTGCTCAAGGAAGCGGCAATGCTGGTCCAAGCCCGCAAAGCGGTGTTGGAAAGCGGTGATTGGCTGACCGCCGCAGACATCGCCCAGGTGGCCCAGTTGAGTACTAGAAACCCGAGTGCCCAGCCCAACAAATGGAAAAAGCAGGGGCAGATCTTTGCCATCAGCCACGGCGGGGTCGACTATTTCCCTGGCTACGGCTTGGACCCGGACGCGGGCTATCGGCCGTTCAAGGCACTGGCCAAAATCATTGAGGCTTTCGCTGGCCACAAGGACAGCTGGGGGATGGCTTACTGGTTTCGCTCAGATAACAGTTTTCTGGGCGGCAAAAGGCCTCAGGACCTGTTGGCATTGGCGCCTGATCGGGTGATTGCTGCAGCACTGGATGAAATCCAAGGCATTGTCCATGGCTAA	MSVTEQSGVSTLVGTPKEARASLSRSHADRVLVVSFDQVNLSVFEALAENFANVASSMYEVLQERQDPKSLERLAEVFVTRKPPSPRLLKEAAMLVQARKAVLESGDWLTAADIAQVAQLSTRNPSAQPNKWKKQGQIFAISHGGVDYFPGYGLDPDAGYRPFKALAKIIEAFAGHKDSWGMAYWFRSDNSFLGGKRPQDLLALAPDRVIAAALDEIQGIVHG				NA	NA	NA	NA	NA
D1-36_02138	708			hypothetical protein	ATGGCTAAGCAACGTACCGAGTCCAGTGAGGGTAGGGCGACGCCTCCCACGGATTTGGCGGCGTCCGTTACCCCAGTGCCTGCGGCTACGTTGCACGTCACTTTCACCGTGATCGCCAAAGGCGATATGCTTCACCGTGTGCACCAGGATAAGTATCAGCCTGATCAATTCAATCCTGGAGTGCACGGCAACGCACGCTTCAGCCCGATCCAGGATGATCAGGGGCGGGCGATTCCCACCTTGTATGGAGGCACGACAGTCGATTGCGCCTTGATGGAGACCGTCTTCCACGACGTTCCCCATACGGCTGGGTTTAAGAGCTTCGACAAAGGCAAGCTAACTGGACAGGTGCATTCTGCCGTCCAGGTTAGCCAACCGCTGCACCTGGTTGATCTGTCCAGCGTGCCCCTGCGGAAACTGGGCATCACGCGCAAACAATTGATCGACACCGAGAAAGATCAATATCCTGCGACACGCAAATGGGCCGAGGCAATACACCGTCAGTGTCCAGATGCCCAAGGGCTGTCTTGGGTGTCGCGACAAGATGATTCGGCACGTGCGGTGGTGCTCTTTGGTGACCGGATTCCTGACGGCGCACTTCATCCGCAGGGGGCATCACGCAGCTTGACCGGCGACTCGACTGTGTTCGACACGGTGCTCAATCTGGCAGAGCGGATTGGGGTCGTTATCATCGCGGGAAAAAGCTGA	MAKQRTESSEGRATPPTDLAASVTPVPAATLHVTFTVIAKGDMLHRVHQDKYQPDQFNPGVHGNARFSPIQDDQGRAIPTLYGGTTVDCALMETVFHDVPHTAGFKSFDKGKLTGQVHSAVQVSQPLHLVDLSSVPLRKLGITRKQLIDTEKDQYPATRKWAEAIHRQCPDAQGLSWVSRQDDSARAVVLFGDRIPDGALHPQGASRSLTGDSTVFDTVLNLAERIGVVIIAGKS				NA	NA	NA	NA	NA
D1-36_02139	249			hypothetical protein	ATGGACGTCAACCCGATGTTAAGTGATGAACTGGTGAGCCGGCTGGAACAGAAAATTCCAGACATGGCGAAAGGCGCGATTAAGGCTGCCTATATCAATACGCTGGCGGCCGGACTCAATGTGATGGAAATCAGGGATGGCATGCTCGTTCAAACAACGGCCGATGGTCAGCACAAGGTTATTCGAGCGGCCAAGCCCAAGCATAAGGTAGCTTCGGACATGATTATCAAGGTGCGCCGCTTTTCATAA	MDVNPMLSDELVSRLEQKIPDMAKGAIKAAYINTLAAGLNVMEIRDGMLVQTTADGQHKVIRAAKPKHKVASDMIIKVRRFS				NA	NA	NA	NA	NA
D1-36_02140	213			hypothetical protein	ATGCCCACCGAATATTCCCTTTCTGATGTTCTTGAGCGGCTTTACCAAAATCAGCTCGCCTTGGAGGCCGCGGTGATGGAGCTGACCTTGAAGGTAGAAGACCAAGGTGCAGCGGAGATTGGTGCCAACGTCCGAGGTGCACTTCAGACCATCGGAGAGAATGCCGGACACATCAAGCAGGGCTTGGCTAAGCTGAGAACCCAGGGTCACTGA	MPTEYSLSDVLERLYQNQLALEAAVMELTLKVEDQGAAEIGANVRGALQTIGENAGHIKQGLAKLRTQGH				NA	NA	NA	NA	NA
D1-36_02141	864	fac-dex		Fluoroacetate dehalogenase	ATGTTCGAAGGTTTCCAGCTAAAAATGATTGACTTGCCTGAGGCGACATTACGCGTTCGCTATGGTGGCTCGGGCCCGCCGTTATTGTTACTTCATGGGCACCCGCGTACGCACACGACTTGGCATAGGGTTGCACCGCTGCTCGCCAGTTCTTTTACGGTGGTCTGTCCCGATTTGAGAGGGTTCGGCAAGTCCAGCCGGCCTGCGACCCCCAATGATCACGAAGCTCATTCAAAGAGAGCGAAAGGACGAGACTGCGTTGCCCTCATGGATAGCCTTGGGTTCGATAAGTTTTACCTAGCGGGTCATGATCGAGGTAGCTACGCTGCTTTCCGCTCAGCGTTAGACCATCCGTCACGCGTGCTAAAACTGGCAATCCTAGACGGTGTGCCTATCTTGGAGGCTCTTGAGCGATGTGACGCGCGGTTCGCATCCAAATGGTGGCACTGGTTCTTCTATGCTCAGCCCGACAAGCCAGAGAGGGCAATCCTCGCGGATCCAAAGGGTTGGTATGGGGGTTGCTCAGAAACGATGGGACGGGAAAATTACGAGGATTTTCAGGCTGCGATTCACGATCATGAAACTATTATTGGAATGCTCGGTGACTATCGCGCGGGTATCGAGCTGGACTACCTGCATGATCGGGAAGACCGTGAGGCTGGTCGAAAACTTCAATGTCCGCTCCATGTTATTTGGTCGTTAAGGGATGACCTAGAGGACCTGTACGGCGATGTGGTTGCGGTTTGGGAGCCATGGGCAGAGCTGAAAGTCACCGGAGAAGGTATCGACTGCGGTCACCACATTGCTGAAGAAGCTCCGGTCGAGTTGGCTCGTGCACTGAAGGCGTTCTTCACCGAGCGATGA	MFEGFQLKMIDLPEATLRVRYGGSGPPLLLLHGHPRTHTTWHRVAPLLASSFTVVCPDLRGFGKSSRPATPNDHEAHSKRAKGRDCVALMDSLGFDKFYLAGHDRGSYAAFRSALDHPSRVLKLAILDGVPILEALERCDARFASKWWHWFFYAQPDKPERAILADPKGWYGGCSETMGRENYEDFQAAIHDHETIIGMLGDYRAGIELDYLHDREDREAGRKLQCPLHVIWSLRDDLEDLYGDVVAVWEPWAELKVTGEGIDCGHHIAEEAPVELARALKAFFTER	PGPT0006880_806	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_HYDROCARBONS|OIL_DEGRADATION	XENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006880-dehH-K01561	NA	NA
D1-36_02142	1014	cheB_1		Protein-glutamate methylesterase/protein-glutamine glutaminase	ATGCAACTCGATAGCCACTGTCGGAATATTATCGTTATTGGGGCTTCCGCCGGTGGAGTCGAAGCATTAAGGAGTCTATTTCGCTCCTTACCCTCTGACTTGCCAGCGGCTTTTTTGGTAGTGCTACATATTCCTCCGCACTCGCCGAGTGAGCTAGGCAGGATACTTGCTCGTGAAACCAGCATGAAGGTCATTTCGGTCCAAGCCAATCAACCGCTCAAGACCTCAACCGTCTACGTCGCCAGCGCTGATCACCATCTGCTTGTGACGAAGGAGGGGGTCCGCCTTACTCGCGGACCGAAGGAATGCAGAGTTCGTCCGGCTATCGATGTACTCTTTCGCTCAGCGTCGGTGGCTTATGACTCCAGGGTGATCGGAGTGATACTGACCGGAGCGCTGGACGACGGAACAGCGGGACTTTGGGCGATAAAGGACAAAAACGGTACGGCACTCGTGCAGGATCCTTCTGAAGCTACTTATGATTCCATGCCCCGTAGTGCAATAGAGCACGTCGAAACAGACTTTGTAGGCACACTCACTGAGCTGGCGAATCAGATAGCAACGCGGGTTAGATTGCCGATCAAGCAACTGGCCACAAGATCCTTAAACGAGCGCCATCTGATCGAGACGAGCATCAGTGAAAATGGCAACGGCTTGGAAGCTGGCGTCATGAGTATAGGGAATATTTCAAGCTATACATGCCCCGATTGTCATGGAATTCTGGTGCAGATAGAAGAAGGATCGATTGTCAGGTTTCGCTGCCATACGGGCCATGCGTTTTCGATCAAGACCCTAATCGCTGAAATTAACGCCGCGATTGATACTGGGCTCTGGGATGCGCTCAGGGCGGTTGAAGAAAGAATTCTGCTGCTTCGTCAAATGGGCGACCTGGCAGAAGCGCAAGGTTCTAAGAAAGATGCCGAGCGTTCCCGTTCACAAGCCAAGGACGCAGAAGACCGCTTGAAGCCGCTCCGCGAACTTGTACTGGACCCAGACTTTTTTCGCACCAGCTGA	MQLDSHCRNIIVIGASAGGVEALRSLFRSLPSDLPAAFLVVLHIPPHSPSELGRILARETSMKVISVQANQPLKTSTVYVASADHHLLVTKEGVRLTRGPKECRVRPAIDVLFRSASVAYDSRVIGVILTGALDDGTAGLWAIKDKNGTALVQDPSEATYDSMPRSAIEHVETDFVGTLTELANQIATRVRLPIKQLATRSLNERHLIETSISENGNGLEAGVMSIGNISSYTCPDCHGILVQIEEGSIVRFRCHTGHAFSIKTLIAEINAAIDTGLWDALRAVEERILLLRQMGDLAEAQGSKKDAERSRSQAKDAEDRLKPLRELVLDPDFFRTS	PGPT0015650_3470	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015650-cheB|chpB|wspF-K03412	NA	NA
D1-36_02143	234			hypothetical protein	ATGAGAAATAACGCCATTATTTCCGCTTGGCATGAAGCCACCGACCGCACCAACGAGCTGTTTCGAGAGGCTGATCGTCTCAACGCGATCGCTTATGAACTGCTAACCCATGCCACAGATTCGCCTGAAGCCATGATCGCGTTTCAAAACGCGCGCGCAGCAGCTGATGCGAAATGCCTTGAAGGCAAAAAAGCCTGGGACCAGGCGAGGGCCGTATTTCGGAAGAAACACTGA	MRNNAIISAWHEATDRTNELFREADRLNAIAYELLTHATDSPEAMIAFQNARAAADAKCLEGKKAWDQARAVFRKKH				NA	NA	NA	NA	NA
D1-36_02144	285			hypothetical protein	ATGGTGGCGGGCGTCAAGGTCGTGGGCGTGCTGCAAGTATTGACCGCCCCACGCACGGCCGTGTCCCAATCGATGAGCGCGATCCCGACAATCGAGCTAGAGGACAACGCCGCTTGGGAGTTGCTGATCGAACTGGTTCAGAAGGGGGCCCATCCACTGATTGCCAAGCGCTTCGGCCATGCCCTGGAACAGGAGGAAACGCACCTGGCCGGTGCGCAACTTCATCAAGCAAGATCTTCTTGCGTAAGTGAGCTGAGCCTTGCTTACCACCTGGCGCCACCCTAG	MVAGVKVVGVLQVLTAPRTAVSQSMSAIPTIELEDNAAWELLIELVQKGAHPLIAKRFGHALEQEETHLAGAQLHQARSSCVSELSLAYHLAPP				NA	NA	NA	NA	NA
D1-36_02145	138			hypothetical protein	ATGATTCGACGCGCCGATGAACGGGTGTTGCAGGAGTTCATCAGGCTGGAGCGCTGTATCGAGTTGCTCGCGGACATGACAGCGAAGGGGTGCGGGCGACACGACTTTGACGTCCGCGGCATTGCTCATCAGGAATAA	MIRRADERVLQEFIRLERCIELLADMTAKGCGRHDFDVRGIAHQE				NA	NA	NA	NA	NA
D1-36_02146	444			hypothetical protein	ATGGTGATCAGCCTGCAATACGCCATTGGCCGAAGAGTCTCTCAACATCATCTGAACCTGTGGCTGGCGGCTGGGCTGAGTCTGTTCATCCTTGGGTTGGCCGGCTTTGCCCTGGCCGATACTCTCGTGCTCTGGGTGATTGCCATGGCGGTGTTCACGCTCGGAGAGATCATCGTCTTCCCCGCTGAATACATGTTCATCGACAACATCGCGCCCGACCACTTGCGAGGCATGTACTACGCTGCGCAAAATCTTGGCAACCTCGGCGCCGCCTTCGGACCGGTGCTGTGTGCCCTGGTATTGGCGACAACCGCCTCACTGCATCTTCTACATGCTCGCCCTCTTCATTGCTGCCGGTGGCGTGTTTTATTTCCTGGGGGCTTGGAGGCTGGTCGACTCGCCGGCCAAGACGTAACGCACGGCTTGTCACGGGCCGGTAAATAA	MVISLQYAIGRRVSQHHLNLWLAAGLSLFILGLAGFALADTLVLWVIAMAVFTLGEIIVFPAEYMFIDNIAPDHLRGMYYAAQNLGNLGAAFGPVLCALVLATTASLHLLHARPLHCCRWRVLFPGGLEAGRLAGQDVTHGLSRAGK				NA	NA	NA	NA	NA
D1-36_02147	372			hypothetical protein	TTGATTCATGACACGGTGACCAACATCGGTTATACCGTTGGGCCGTTTCTGGGGGCGGGCATGGCCAAGCTGGACATCAGCTTGCCATTCCTGTTATCCGGCATGCTGGGTGCCGGATTCTGTCTGGTCTATTTCGTCTGGGGCGACAGAGGCCTGACGGTCGTTGATGCGAGCCACAAACCTGTGCCTTTCCTGGCCGTAGGCAAGCTTTTGCTCCGGGATAACCGCTTAGTGTGCTTCACCCTCGGCGGTCTGCTCAGCGCGGTGGTCTTCGGCCAGTTCACGGCCTATCTCTCACAGTACCTGGTGGTCACGACACAGCAGAGTTCACCTATCGCACCATCAGCGCCATTGTCACGACCAATGCCCTGA	MIHDTVTNIGYTVGPFLGAGMAKLDISLPFLLSGMLGAGFCLVYFVWGDRGLTVVDASHKPVPFLAVGKLLLRDNRLVCFTLGGLLSAVVFGQFTAYLSQYLVVTTQQSSPIAPSAPLSRPMP				NA	NA	NA	NA	NA
D1-36_02148	495	pgrR_4		HTH-type transcriptional regulator PgrR	ATGTTTTCCTCCGAACGATTGAAGGGCATCGATGTATTCGTCTGCGTCGCTGAATCCGGCAGCTTCAAGGCTGCTGCTGAACGGGTGAGCCTCACGGGTTCTGCCATCAGTAAAAGCGTTGCTCGCCTGGAAAGCCGGCTCGGCGTCCGACTGCTCGACCGTACGACCCGACGTGTTTCGCTTACCGATGCAGAGGGGCCCCTTTTTCGCACATGCACAAGCGTGCTTGCCGACCTCGAAGAAGCCGAGCTGTCGCTACAGGCTGAAAACGCCGAGCCCCGTGGCAGGGGCCGGATCGACCTTCCCGGTGCTTTCGGCCGTTCCCAGGTACTGCCTGTCGTCTTGCGCTGCCTGGAGCGATACCCGCAATTGGTCCCGCACATTTCGTTCTCCGACAGTTTCATCGACGCCGTACAGGAAGATGTGGACATCGCTATCCGTTTGGGCGGCGCAGAGGTATGGCCGGACACGGTGGGGGCATCGGTACCTGGGTAG	MFSSERLKGIDVFVCVAESGSFKAAAERVSLTGSAISKSVARLESRLGVRLLDRTTRRVSLTDAEGPLFRTCTSVLADLEEAELSLQAENAEPRGRGRIDLPGAFGRSQVLPVVLRCLERYPQLVPHISFSDSFIDAVQEDVDIAIRLGGAEVWPDTVGASVPG	PGPT0031690_1	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-MALLEOBACTIN_METABOLISM,PGPT0031690-mbaP-NA	NA	NA
D1-36_02149	1653			hypothetical protein	ATGGCCGTCACCGCGGCCGTGAGTCCCACCACGTTGTTCTGGACAAATGAGACGCGCCTGGAGCGTAACGTTGTCGAGGCCCAGATAGATCGTATTCGCAACGTTCAGAGCTTGTTGGTGGATGCTGAGACCGGTGAGCGCGGTTACGTGTTGACGGAAAAGGAAGTCTTTCTACAACCATACTATATCGCCATATCCCAACTGCCTCCGGCCCTCAAGAGCCTGCGCGAATCCTATCAAGGCGATCCAGCGGAAGAGGTTGGGCGCGTTGAAGAATTCATCCGCCACGCTGAAATGAAAATGGCGCATTTGGATCGTGTGGTGAAGCTGGTAAGCCCCCACGGAAATGACGCGGCAGTGACGGAGATTGCTGCTGGCGGTGGTAAAGCCCTGATGGACACGGTGCGCACCATCAGTGCGGAACTAATCAGTGACGAAGCAGAGGAACTGGCAGCGCTCGAACGTCAACTTTTGAGCAACATCCGCTGGGCCGTCGCGGTTTCCATCATAAGTTTTATCGTGACCTTGGGCTTGGGTCGCTTTATCTATACATCCATGCGACGTAGCATCCGACGTCAATCGGAGTCCGCCGCAGCGGCCATCCTTGTCAGCGATCAACTCAGCCAGAGCCTGGAGCGGTTGGAGCGGCGCAACGGGGAGATAGGCCTTCTCGCTGAGATGGCGAGGTTGGCGCAGACGGAGTTGACTCAAACGGAAACGCTCCAACTAGCGAGCACGTACTGTCAGCAATTAATACCTGCGAGTGAAGGGGAGTTTTTTCTCTATCGCAATTCGGCGGATGTCCTTCAGCAAGCGGCGTCGTGGGGCCAAGCTGAAGGGAAGAATGCTGATGTCATGCTCAGCCCAAAGGATTGTTGGGCAATCAGGCGAGGGCGATGGCATTTGACCGAGCATCACCACGATCTTTCCTGTCGCCATTACCCAGCGGCGTTGGGCACCGACCAAGTGACCGATTGCTGTTTGCCCTTAATGGCTTATGGCGAGATTCTGGGTCTGTTGCATATCCGTCAGGTTGGACTGCAGGACCTGTCCGAAGAGCGGTTACAGATTGCTGAGGCTGTGGCGGAACAAACGGCTCTGGCGTTGGCGAATGGCCGGATGCGCCAAGTATTGGAGACTCAGTCCATCAAGGATCCGCTGACAGGGCTGTATAATCGGCGGTTCATGGACGAGGCGCTAAAGCGCGAGCTGGCGCGCTCTGAGCGCAACGGGTCAGCCCTGAGTGTCGTCATGCTAGACCTCGATAACTTCAAACATCTGAATGACTCCTATGGCCATCCAGCAGGCGACGCTGTGCTTCGTGCGGTTTCCGCTTTGCTTTTGCGATCGTTGAGGTCGTCAGACATCGCATGTCGATTTGGCGGAGAGGAACTGATTGTGATTCTTCCAGAATGTCCCTCAGAGAGCGCTACGTCACGTGCTGAGCTCATACGAGCATCTCTTGAAGGGTTGAGTCTTACGGATCACGGTCAGACATTCACAGTGACTGCTTCGTTCGGGGTCGCTTCTACAGAAACCAGCGGGTTGGACCAAGGCTCTCTTTTGAAGGCGGCTGACTCAGCGCTTTACGCAGCCAAGCGGTTGGGGAAAAACAGAGTTGAATGCTGGCCTCTGGTGAAGCATGAGCGCTAG	MAVTAAVSPTTLFWTNETRLERNVVEAQIDRIRNVQSLLVDAETGERGYVLTEKEVFLQPYYIAISQLPPALKSLRESYQGDPAEEVGRVEEFIRHAEMKMAHLDRVVKLVSPHGNDAAVTEIAAGGGKALMDTVRTISAELISDEAEELAALERQLLSNIRWAVAVSIISFIVTLGLGRFIYTSMRRSIRRQSESAAAAILVSDQLSQSLERLERRNGEIGLLAEMARLAQTELTQTETLQLASTYCQQLIPASEGEFFLYRNSADVLQQAASWGQAEGKNADVMLSPKDCWAIRRGRWHLTEHHHDLSCRHYPAALGTDQVTDCCLPLMAYGEILGLLHIRQVGLQDLSEERLQIAEAVAEQTALALANGRMRQVLETQSIKDPLTGLYNRRFMDEALKRELARSERNGSALSVVMLDLDNFKHLNDSYGHPAGDAVLRAVSALLLRSLRSSDIACRFGGEELIVILPECPSESATSRAELIRASLEGLSLTDHGQTFTVTASFGVASTETSGLDQGSLLKAADSALYAAKRLGKNRVECWPLVKHER				NA	NA	NA	NA	NA
D1-36_02150	564			hypothetical protein	ATGACAGTGAGCCGGTCACAACCCAAACCCTCTTTGCGCCGCGCCGTGACGGGGCCGATGCTGTTTCTGTTCATCCTTGGCGATGTACTGGGCGCTGCCGTTTATGCGCTGGCGGGTACCATCGCCGGAGAGGTAGGCGGGGCGATCTGGGTGCCGTTGTTGATCGTGTTGTTTTTCGCCATGTTGACGGCAGGTTCGTATGCCGAACTGGTCTCGAAATATCCTCACGCGGGCGCGGCGTCGGTGTTTGCCGAAAAGGCTTTCAAGTCACCGCTGATATCGTTCCTGGTCGGTTTTTGCATGCTCGCCGCGGCGGTGACCAGCGCTGCCGGTCTCTCGCTGGCTTTTGCAGGGGACTATCTTGGCGCATTTATCGAGGTATCACCCCACGTTGCTGCGCTGATCTTCCTGCTGGTCATCGCCCTTTTGAATGCGCGAGGGATCAAGGAGTCTCTGGGGGCGAACCTGGTGATGACCGTGATCGAGCTGTCAGGCCTGATGTTGGTCATCGTTGCTGCGGGTTACTTTTCAGTTCTGGCGAAGCTGAACTGGCAAGGGCGCTAA	MTVSRSQPKPSLRRAVTGPMLFLFILGDVLGAAVYALAGTIAGEVGGAIWVPLLIVLFFAMLTAGSYAELVSKYPHAGAASVFAEKAFKSPLISFLVGFCMLAAAVTSAAGLSLAFAGDYLGAFIEVSPHVAALIFLLVIALLNARGIKESLGANLVMTVIELSGLMLVIVAAGYFSVLAKLNWQGR	PGPT0020810_5552	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
D1-36_02151	735	yhdG_1	COG0531	putative amino acid permease YhdG	ATGCTGGCGGTGTTGGGCGCGGCGTTGCTCGCGTTCTATTCGTTCGTGGGTTTTGAGACGTCCGCCAATCTCGCGGAAGAGATCAAGGATGTTCGCAAGGTATACCCACGGGCGTTGTTCGCGGCGCTGATTACCGCAGGGGTGGTTTACATGGCTGTTGGGGTCGCCGCGTCCTCAGTATTGCCAACGGAGAAACTGCTCGCGACCTCAGCTCCATTACTCGAGGTGGTTCGGGCTTCCGGGCTCGACATTTCGCCTCGCCTGTTCGCCTTTATCGCGCTCATCGCGGTGGCCAACGGAGCGCTGCTGACCATGATCATGGCCAGTCGACTCACCTATGGGATGGCAAATCTGGGGCTGTTGCCAGATGTCCTGGGACGGGTCCTGCCGCACAGGCGCACACCATGGGCGGCCATTATTGCCACGACGCTCGTCGCCATCGCACTGACGCTGACAGGAACGTTGGCGACCTTGGCGCAAACCGTGGTGCTGCTTTTACTGTTCGAGTTCCTCAGCACCAACGTGGCCGTGCTGGTGTTACGCAAGGACAAGGTTGCAGAAGAACATTTTCAGGTTCCCACCTGGGTACCCTGGCTGGCGATCCTGTCTTGCCTCGTATTGCTGAGTCAGCAAAACATGGGCACTTGGCTGCGAGGCGGGGCACTTGTTTCAGTGGGTGTGCTGCTGTATGTGTTTACCCGGCTTACCGTGCCTACCGTTGTTAAGCTTAACTAG	MLAVLGAALLAFYSFVGFETSANLAEEIKDVRKVYPRALFAALITAGVVYMAVGVAASSVLPTEKLLATSAPLLEVVRASGLDISPRLFAFIALIAVANGALLTMIMASRLTYGMANLGLLPDVLGRVLPHRRTPWAAIIATTLVAIALTLTGTLATLAQTVVLLLLFEFLSTNVAVLVLRKDKVAEEHFQVPTWVPWLAILSCLVLLSQQNMGTWLRGGALVSVGVLLYVFTRLTVPTVVKLN	PGPT0020810_6422	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
D1-36_02152	270			hypothetical protein	ATGCCCTCAGCCATGCTGTACATCATCGATTACGAAATACATGGAGTGCCGAAGTCTTTCATCATTCGCTTAGACATCATGAATAACGCTGAGGCATGGCATTGGGCGAGTTGCGATGCGGGCGTGGGCCGGATTCCGAAGTTCGGTCGAGAAAAGGTCAGGCGTGTCAGTAAGCCCCTCGCGGAGCGTTTAGGCATTTCCAATGTTCGCTGGCGCTTGTCGGGCGCAGAACCTTTCAAGCCCGCGGCCTACGTCCCACCAAGGTATTAG	MPSAMLYIIDYEIHGVPKSFIIRLDIMNNAEAWHWASCDAGVGRIPKFGREKVRRVSKPLAERLGISNVRWRLSGAEPFKPAAYVPPRY				NA	NA	NA	NA	NA
D1-36_02153	678			hypothetical protein	ATGTCTCCCGAAGACACTATTCGCCAACTGGAAGCCACCCGCCTGTTTCCGGCGGATGTGCCGGGCGACATGAGCGACTACACCGCAGAGCGCGAGCGCGCCATTCGCGAGGCCGATCTGATCGGCTCGGTACCGGCACCGGGTTCGGTCAAAGGCATGGTCAAGACCGCACTGGACAAAACCATCGGCAAGGCGCCGGAAGTGCTGCTGGACAAGCTCGGCGAACGCCTGGCCTTCGAACGCACCGGCGTGCGGTTGTATGAAGCGATGGTCGCCAAGGCGACGTCCGCCCCCGGCGCCGATCCGGCGTTGGTCGAGACCTTGCGGCAGATCCAGGCCGAGGAACTCGAGCACATGAACATCGTGCGCGAAGCCATCGAAACCCTCGGCGGCGACCCGACGGCCATGACGCCTTGCGCGGACGTGGCGGGCGTTAAGGCGATGGGCGTGCTGCAGGTATTGACCGACCCACGCACGACCGTGTCCCAATCCATGAGCGCGATCCTGACCATCGAACTGGAAGACAACGCGGCTTGGGAGTTGCTGATCGAACTGGCGAAGAAAGGCGGTCATCCGCTGATCGCCAAGCGCTTCGGCCATGCCCTGGAACAGGAGGAAACGCACCTGGCCACGGTGCGCAACTTCATCAGGCAAGATCTGCTCGCGCAAGTAAGCTGA	MSPEDTIRQLEATRLFPADVPGDMSDYTAERERAIREADLIGSVPAPGSVKGMVKTALDKTIGKAPEVLLDKLGERLAFERTGVRLYEAMVAKATSAPGADPALVETLRQIQAEELEHMNIVREAIETLGGDPTAMTPCADVAGVKAMGVLQVLTDPRTTVSQSMSAILTIELEDNAAWELLIELAKKGGHPLIAKRFGHALEQEETHLATVRNFIRQDLLAQVS				NA	NA	NA	NA	NA
D1-36_02154	330			hypothetical protein	ATGAGTGAGACCGACCTTGAGATGGAATTGAAAGCCTGGCGGCTTTTGCTCGAGGACGATGCGTATCGCCTGGACTTTCCCGAGGATTATCGCAACACGCTGATTCGGCGCGCCGATGAGTTGGTGTTGCAACAATTTATCAGCCTGGAAGATTGGCAACTGCTCAAGGATGCGGCCGACCAGGCTTATCAACTGACGGTGGAAATGCTGGCGCGCAATCAGCGTGATTGTCTCAACCTAGCCTCGTTTTGCCTGCTTGGGAAGGGAGGGACGGGGGAGCGCAAGGAGTGCGTAGGGTCGTCTATCCTCGTTCAACGTATGAAAAAGTGA	MSETDLEMELKAWRLLLEDDAYRLDFPEDYRNTLIRRADELVLQQFISLEDWQLLKDAADQAYQLTVEMLARNQRDCLNLASFCLLGKGGTGERKECVGSSILVQRMKK				NA	NA	NA	NA	NA
D1-36_02155	300	intA_3	COG0582	Prophage integrase IntA	ATGGCTCTCACCGCCACTGCAGTCCGGCATGCCAAACCCCGTGCAAAGGACTACACCCTCCCTGACTACAACGGCCTTGCCCTTTTCGTAAATACCAAAGGCGCCAAGTGCTGGCACTTCCGCTTTTCCTGGGCGGATAAGCAACCCCGTATTTCGCTCGGTACCTATCCTGAAGTCAGCTTGCGAAATGCTCGGGCGCTGCGTGATGTTGCGCGGGCACAGGTCGCCAGGGGCATTGATCCGCGTGTCCATCGGCAGTTGGAGCGTAATGCCAGGCGCCTGGCCACGGAAAACGCCTAA	MALTATAVRHAKPRAKDYTLPDYNGLALFVNTKGAKCWHFRFSWADKQPRISLGTYPEVSLRNARALRDVARAQVARGIDPRVHRQLERNARRLATENA				NA	NA	NA	NA	NA
D1-36_02156	357			hypothetical protein	GTGCCGCAATATCGGATTTCCAACGCGGCGCGCGCCGACATTATCGACATCCTCAAACTCTCCCGGATGCAGTTCGGCGATCAAGCACGCCAGCGCTACCAGGCACTGATCCTCGCGGCGCTGCAAGCGATTGCCGACACGCCTTATCGCATTGGCAGCCACGACCGCGATGAGCTTGCACCGGGCCTTCGCAGCTATCACCTCATCTATTCACGCCAGCAGGCCAAACACCCCCATGGGACGGTCAAAAGCCCACGCCATATCATGTTCTATCGCGTGGGAAACGACGACGTGATCGAGGTCGTCCGACTCCTTCATGACGCCATGGAGGTCCAGTTGCACCTGCCCAACGACTGA	MPQYRISNAARADIIDILKLSRMQFGDQARQRYQALILAALQAIADTPYRIGSHDRDELAPGLRSYHLIYSRQQAKHPHGTVKSPRHIMFYRVGNDDVIEVVRLLHDAMEVQLHLPND	PGPT0027550_130	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-ParE-ParD|paaAR_TOXIN-ANTITOXIN_SYSTEM,PGPT0027550-toxin_parE1_3_4-K19092	NA	NA
D1-36_02157	291			hypothetical protein	ATGGCGACGCGAAATGTTGTGCTCACTCCTCACCAGGAACAGGTTATCCAGGACCTGGTGCAGTCCGGCCGTTATCAGAATGCCAGCGAAGTGATGCGAGAAGGCTTACGGCTGTTGGAGCAGCGCGTCGCCGAAGACACCGCCAAAATTGAGGCCCTGCGTCAGGCGACCTCGATCGGCATCATGGACCTTGAGCACGGGCGCTTCACTCAGTTGAACGAAGGGGATCTGGAGCACTACCTCGAGGGCTTGAGCCAGGAGGTCACCCTCCCCGCACGCGAGAAACACTGA	MATRNVVLTPHQEQVIQDLVQSGRYQNASEVMREGLRLLEQRVAEDTAKIEALRQATSIGIMDLEHGRFTQLNEGDLEHYLEGLSQEVTLPAREKH	PGPT0027540_170	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-ParE-ParD|paaAR_TOXIN-ANTITOXIN_SYSTEM,PGPT0027540-antitoxin_parD1_3_4-K07746	NA	NA
D1-36_02158	870			hypothetical protein	ATGAACCACCCACGGCGTTTGCACGAGGCTGGCTTCATCGATGTGCATTACCACGCCGGTCCCGACGCCTATCTGCGGCGCCATGGGGTGATGGAGGCCGGTCGGCGCTACAGCTCGCTGAACGGGTGGGTGGTGTTGAAGAATCACCTGGGCTGCAGCGCGTCCCAAGCTTGGGAGGCCCGGCAGGAGGGGCTTCCCGTCTCTGGTTCAGTGGTCCTCAACGAAATCGCCGGCGGTATCGATTTCAGGGTGGTACAGCGTTCGCTGTGCCACCACGGAGACAGCGAAGCCCGGCTGATCGTGCACCTTCCCACCGTCACAGGCCGCTCCCACCAATCCCGACTCAAGCGCAACAGCGCTCATTGGATCTTGGATAAATACCCCATCCGGCCACTGACCATCAGCCATGAGGGGAAACTGAACGAGCAAACACTGGATGTGCTGCGGATGGCCCGGGACTACCCGATCGTCATTTCTACCGGTCATGCCGACGCTCAGGAGGTGCGTCTGTTGATAGACGCGGCGGTGCGGTTGGATGTACCCCGATTGATGCTAAACCAGCCGGCCAACCCCTTGACCGGATTGGACGCCAGTGCCCTGCTGGAATTGGCTCAAGCGCCCATGGTTTACACCGAACAAACCGCCCTGACCTACCTGCTCGGCTACCAGCCGTGGGACGACTTCAGCCAGGTCCTGCGCGACGTGCCCAGGGCGCTCTACAGCTCCGACCTGGGCCAGACCTCCCAGCCTGATATCGAACAATGGCAGGTGGACAGTCTGCTGTGGTTCGAACGGATGGGATTAGGCAGCGAGCGAGTGCAGCAGATCAGCCAGGGGAATGCGCGGGAACTGTTGCGACTCGAACCGTAA	MNHPRRLHEAGFIDVHYHAGPDAYLRRHGVMEAGRRYSSLNGWVVLKNHLGCSASQAWEARQEGLPVSGSVVLNEIAGGIDFRVVQRSLCHHGDSEARLIVHLPTVTGRSHQSRLKRNSAHWILDKYPIRPLTISHEGKLNEQTLDVLRMARDYPIVISTGHADAQEVRLLIDAAVRLDVPRLMLNQPANPLTGLDASALLELAQAPMVYTEQTALTYLLGYQPWDDFSQVLRDVPRALYSSDLGQTSQPDIEQWQVDSLLWFERMGLGSERVQQISQGNARELLRLEP				NA	NA	NA	NA	NA
D1-36_02159	777			hypothetical protein	ATGCAAACGTCCAATGCAGTAAGCAGCCAATGGGGCAACGGCCATCAACTGGCGGTGGTCATGTCGCCGGTCATGCCCGCCTGGGATGAAGGCCAGTTCTTCCAACCGATGATCGCCCCGCTGGTAAAAGCGGGCTACCGGGTGGTGGTATTCGACACGTTATCCCTACTGGTCGACGGGCACGAATCGCTCGAGGCATTTTCGCGCCGTTGGCTGCACGTGTTGTCAACGCTGGGCCAGATTGACCTGCTGGTAGGCTCGGCCCTGGGTGGCGCCGTCGTCCAGGCGCTACTCGGCACCCATCTTGCCCCGCACATCAGCAAAGTGCTGTTGCTGTCCTCCCCTGCCCTGGCGGATGGGATTCTCGACGGTCGACTGGGGAAAATGGCTGACCTGGCCCTGCTCGGCGATCTCGAACAAGCGCTCCAACTACTCGATCAACTCGTACAACCGGCGACCCGTATACGCCCCAGCGGGCCCATCGACATCGACCAGGCCAGTGCCGCATTCCAGGCCAGGCGCCTGCACTTGGGTTTCCGGCTGCTCAATCGCCTCGACCTGCGGCAGGCCAGCCACAGTTTTCCCGGTGAGTTATTGACGGTCTATGGCGAACAGTCACAGCTGGTGCGCGGTATCAACGTGCATGTCAGCGAACAGGCGCGCCATTACCGGTTATCCATCCCCGACGGCGGCATGCGCCCATTGCTCGATGCCCCGGCGTTGGTCATGCGCACTGTGCGCGACCATTTGGGTATCGACCTAGAGGTGGCCGCATGA	MQTSNAVSSQWGNGHQLAVVMSPVMPAWDEGQFFQPMIAPLVKAGYRVVVFDTLSLLVDGHESLEAFSRRWLHVLSTLGQIDLLVGSALGGAVVQALLGTHLAPHISKVLLLSSPALADGILDGRLGKMADLALLGDLEQALQLLDQLVQPATRIRPSGPIDIDQASAAFQARRLHLGFRLLNRLDLRQASHSFPGELLTVYGEQSQLVRGINVHVSEQARHYRLSIPDGGMRPLLDAPALVMRTVRDHLGIDLEVAA				NA	NA	NA	NA	NA
D1-36_02160	990	IMPDH_1		Inosine-5'-monophosphate dehydrogenase	ATGGCTGACCTCAACACGCGCCTTACACAACGCTTCAATATCTCCCATCCCATCGTCCTCGCACCCATGGGAGGGGCTTCGGGGTCGAAACTGGCCACTGCGGTCTCCAAGGCCGGTGGGCTCGGGCTGGTCGGCGCCAGCTATGGCGACGAGCAGTGGATGCGCACCGAGCTGGCGCCCATGCGGGAATTGAAGCAGCCATGGGGCGTCGGCCTGGTGATGTTCACTGTGGCCCGGAATATGGCGCTGCTGGACCTGGCACTGGAATACGGACCCAACGCCGTCGCCTTGTCATTTGGCGATCCTGGGGTATTCGTCCCGATCATCCATCGGGCCGGCGCGAAAGCCATCGTCCAGATCCATGAGCTGGACCAGGCCCGTGCGGCCCTGGACGCCGGAGCCGATGCATTGATCGTCCAAGGTGCCGAGGCCGGCGGGCACAGCTTGCGCCGCGGCCTGATGCCACTGTTGCCCGCCGTGCAGGATCAAGTCGGCGACAAGATCCCGCTGATAGCCGCCGGAGGTATCGCAGATGGGCGTGGCATGGCCGCAGCGCTGATGCTGGGGGCTGATGGGGTCATGCTGGGCACACGTTTCCTCGCTTCCGAGGAGGCCCTGCCCTCGGCCGCGTTCAAGAAACGCCTGATCGAGTCTGGTACATCGGACACGGTGCGTACACGGATCTTCGATCTGGTGCGCGGCATCGAATGGCCTGAACACTACAGCGGCCGGGCCATCGCCAACCGGTTTTCGCAAGCGTGGCTGGGCCGCGACGAGGCACTGCGAGAGGCGCCGGATTCGATCCGCCAGGACTACGCCAATGCGGTCCTCGCTGACGATCTCGACAACCGGGCAATCTGGGCGGGTGAGGTTCTGGATCTGGTTGGCGACATCAAGCCGGCACGCCAGATCGTCCACGACCTGTTGAGCGAAACCACGCGCATCTTGCGCAACAGCCAACAACTGTTGGCGCTCGACAAAATCGCCTGA	MADLNTRLTQRFNISHPIVLAPMGGASGSKLATAVSKAGGLGLVGASYGDEQWMRTELAPMRELKQPWGVGLVMFTVARNMALLDLALEYGPNAVALSFGDPGVFVPIIHRAGAKAIVQIHELDQARAALDAGADALIVQGAEAGGHSLRRGLMPLLPAVQDQVGDKIPLIAAGGIADGRGMAAALMLGADGVMLGTRFLASEEALPSAAFKKRLIESGTSDTVRTRIFDLVRGIEWPEHYSGRAIANRFSQAWLGRDEALREAPDSIRQDYANAVLADDLDNRAIWAGEVLDLVGDIKPARQIVHDLLSETTRILRNSQQLLALDKIA	PGPT0006800_3311	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
D1-36_02161	369			hypothetical protein	ATGACTCAGATCGAACAATTCCAGACACCACAACCGGGCGAAGACCAGGCCATTTTTCTGGTGAACGTGGTCCATGTGAATCCAGGCCAGCAAGATGCAGCCCTCGCCGTCCTGCGCGACACCGTCCAGTACGTGGCGCAAACCTACCCAGCCTTCCAATGGAGCCGACTGTACAAGAGCCTCGATGGGAAGACCGTCATCAACCAGGCGCAATGGACCAGCAAGGACGCCTTTGACTCGTTGTTCCAGGACGAGTCATTCATGTCCCGTTATTCAGGGCTCAAGGACACCGGGACCTGGGAATTCCACCTTTACCAGGTAAGCGATTTCATCCCCCAGGCGCTGACCGCGGCACTCATCGCTGAGTGA	MTQIEQFQTPQPGEDQAIFLVNVVHVNPGQQDAALAVLRDTVQYVAQTYPAFQWSRLYKSLDGKTVINQAQWTSKDAFDSLFQDESFMSRYSGLKDTGTWEFHLYQVSDFIPQALTAALIAE				NA	NA	NA	NA	NA
D1-36_02162	561	rutF		FMN reductase (NADH) RutF	ATGACCAGACTCTCCCAGGCCCGCAATGCTTCGGGCAACGTCACGGTCTTGCCCATCGCCACGGATGTCGACGCTGACGAATTGGCGGATCAGTTCAAGAACGCCATGCGCAGGCTGACGTCCAGCGTGGCAATCATTGCCAGCCGCGACGGCAATGACCCGGTAGGTATGGTCGCCACGGCAGTGATCTCAGTGAGCACCACGCCCCCTGCGCTACTGATCTGCGTCAACCGCTCGGCCAGCCTCCACAGCCCACTCATGCTGGCTGGACGCTTTAGCGTCAACCTGCTGAGCGCGGCCCATAGCGCCCTGGTGCCGGTGTTCGCCGGCCAGGTCAAGGGACCCGACCGTTTCGCCCACGGGCAATGGGAAGACATCCAAGGCCTGCCCTGCCTGGCGGATGCGCAATCGAGCCTCATCTGCACCGTGGACAAACGCCTCAGCTACGGCACCCACGACGTGATCATCGGCCGCGTCGACGCAGTCCAGTTCGCCGAGCCTATCCATCCACTGCTTTGGGAAAACGGCAGCCCGGCGATATCCGCCCGGCTGGCGCAATAA	MTRLSQARNASGNVTVLPIATDVDADELADQFKNAMRRLTSSVAIIASRDGNDPVGMVATAVISVSTTPPALLICVNRSASLHSPLMLAGRFSVNLLSAAHSALVPVFAGQVKGPDRFAHGQWEDIQGLPCLADAQSSLICTVDKRLSYGTHDVIIGRVDAVQFAEPIHPLLWENGSPAISARLAQ	PGPT0021265_542	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021265-rutF-K09024	NA	NA
D1-36_02163	1170	sfnG		FMNH(2)-dependent dimethylsulfone monooxygenase	ATGACCACTGCAAACGTGTCCATTCGCAAGCCTAACCCGGTGCGCGACAGCCAGAACAAAATCAAACTCGGCGTGTTCGGTTTCAACATCGAGGGCGGCTGCACGCTGACTAGCGCCCCGGAGCGCCACCGGGCGGCCGATTGGCAAAGCAACCTGGCGATCGCCACCCTGGCCGATCGCGCAGGCCTGGAGCTTTTGCTGCCCGTCGGCCGTTGGCGCGGCTGGGAAGGCGCCAGCAACCCGATGGGTGTTTCCTACGAAACCTATACCTGGGCCGCCGGTCTGGCATCGGTCACCGAGCAGATCGCGTTGTTCACCACATCCCACCTGTCCACAGTCCATCCTTTGTTTGCCGCCAAGCAGGCGGTGACCATCGATCACATCAGCGGTGGCCGTTTCGGGTTGAACATGATCTGCGGTTGGTTCGGCCAGGAAATGGGCATGTTCAATGGTCACCAGCGTGACCACGACAAACGCTACGACCACGCCGATGAGTGGATAGAGATCGCTAGAAAAGCGTGGGAAGCCAACGGGTATTTCGACTATGAGGGCGAGTTCTTCAACGTCGAGCAAGGCTACGCCGAACCCAAGCCGATCAACCGGCCTTTCCTGATGAACGCCGGTGGCTCGCCAAGGGGCCGCCAATTCTGTGCCAAGCATTGCGATGCGGCGTTCCTGATCCTCAAGCACGAAGATGACGACGACACCATCCGCGCGCAGATCAAGGCCTACCGCGACCTGGCGCGCCTGGAGCATGGCAAGGAACTGCAAATCTGGGTGTACGCCTACGTCGTTCACGATGACACGCTGGACCAGGCGAACCAGCAGCTCGACTACTACGTGACCCAGCATGGCGACGACGCCGCGCTGGATAACGTGACCCGCGAGATCGGCGTGCAAAGCGGCATGTTCAAGGACGCCGCCGATGCCGAGCGTTTCCGCTTTCATTTCAAGGCGGGGTTCGCTGGCGTGCCGTTGGTGGGTACCTCCGAGATGATCGTCGACCAGATGCAGCGCTGGTCCGACCTGGGCGTGGACGGCATCAACCTGACCTGGCTGGACTACCAGAGCGGACTCCGGCGCTTCGTCAAGGAAGTGCTGCCGTTGATGGAACAAGCCGGCCAACGTGCGCCGCACAAACCGGGCAGGATCATGGAGGCCGTGGCATGA	MTTANVSIRKPNPVRDSQNKIKLGVFGFNIEGGCTLTSAPERHRAADWQSNLAIATLADRAGLELLLPVGRWRGWEGASNPMGVSYETYTWAAGLASVTEQIALFTTSHLSTVHPLFAAKQAVTIDHISGGRFGLNMICGWFGQEMGMFNGHQRDHDKRYDHADEWIEIARKAWEANGYFDYEGEFFNVEQGYAEPKPINRPFLMNAGGSPRGRQFCAKHCDAAFLILKHEDDDDTIRAQIKAYRDLARLEHGKELQIWVYAYVVHDDTLDQANQQLDYYVTQHGDDAALDNVTREIGVQSGMFKDAADAERFRFHFKAGFAGVPLVGTSEMIVDQMQRWSDLGVDGINLTWLDYQSGLRRFVKEVLPLMEQAGQRAPHKPGRIMEAVA	PGPT0002830_106	DIRECT EFFECT	BIO-FERTILIZATION	SULFUR_ASSIMILATION|MINERALIZATION	S-ASSSIMILATION-SULFUR_METABOLISM	S-METABOLISM-SULFONE_DEGRADATION,PGPT0002830-sfnG-K17228	NA	NA
D1-36_02164	708			hypothetical protein	ATGAACGCGATCATTTCCCCCGCCGTGCAGAACAACGATGCACTGCTCAAAGCCTGCGAGGCGCTCGACACCGCCAGCCTGTCGGATGCACTGGACAGCCTGGGGCTGGCCGGCGGCCTGGCAGGCCTCAACCAGCAGGTACCGGGAACCCGCTGCGTGGGTTTCGCCTACACAGTGCTGTACGAGCCCCTGCTAGAACGCAGCGGCTTCAGGACCGCCGCCAACTACATCGATGAGGTGCCGTCCGACGCGGTCATCGTGTCCAGCAACCCTGGGCGCACCGACTGCACGACCTGGGGCGACATCCTGACCCACGTCGCGATAAGCAAGGGCATTCGCGGCACGCTGATCGACGGTGCCGCGCGGGACATCGATACGGTCCAACGCCTGAACTACCCGCTGTTCAGTCGCGCCCGCTTCATGCAATCGGCGAAAAACCGAGTGCAGCTCAAGGCGACCCAGGTGCCCGTGCAGATATCCGGGGTAACGGTCAATCCGGGTGATCTGGTGATCTGTGACAGCAGCGGCTGCCTGGCAATACCTGCCGACAAGGCGGAACAAGTCATCCAACGCGCCCAGTCCGTCGAACAAACCGAGAAGGAGATCATCCAGAGCGTGAGCGATGGCTACACCCTGGAACAGGCACGCGCCCTGCACCGCTACGACCAGCCCTGGCTGTCATCCAGGGAAAAGCAGGCCAACGTCTGA	MNAIISPAVQNNDALLKACEALDTASLSDALDSLGLAGGLAGLNQQVPGTRCVGFAYTVLYEPLLERSGFRTAANYIDEVPSDAVIVSSNPGRTDCTTWGDILTHVAISKGIRGTLIDGAARDIDTVQRLNYPLFSRARFMQSAKNRVQLKATQVPVQISGVTVNPGDLVICDSSGCLAIPADKAEQVIQRAQSVEQTEKEIIQSVSDGYTLEQARALHRYDQPWLSSREKQANV	PGPT0002085_685	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
D1-36_02165	1191	hicd	COG0473	Homoisocitrate dehydrogenase	ATGAGCCAGCGCCAACAAGTGTGTGTATTGGCCGGTGACGGCATTGGCATCGAAGTTACTGAGGCGGTGCTGCCGTTATTTGAAGCCCTTGAACTTCCCATCGATTTAAAATTTGGAGATATCGGTTGGAGCTGTTGGCAGAAAGAGGGAAATTGCATTCCCGATAAAACGTGGGACCTGATCAACGAAAGTCAGGCAACGCTGTTGGGCGCTATTACCAGCAAGCCTCTTCGTGAGGCGGAAGCAGAACTTTCATCGACACTCAGGGGGACTGGGCGAGTTTATGTTTCGCCGGTTATCCAGCTTCGCCAAAAGCTCGGGTTATTTGCCAACGTGCGGCCTGTTACCGATGTACTGGGCGACAACCGTTATCGTTTTTCGGTGATTCGAGAGAACACCGAGGGCCTCTATGCAGGGCTGGATTTCGCCAGCATTCCGCAAGCCTTCGAGCCGATCCTGGCTGAGCGCGAACGCAATGGAGCGCCATGGACGCGAGAGAGCTGCCGCGATGCCACGATGACGGTGCGCCTGCAAACCCGCGCAGGGCTCTTGCGACTGTTCCGCTTTGCCTTCGAGCACGCGCGCCAGCAAGGCTATGACCGCGTCACGCTGGCGGATAAACCCAACGTCCTGCGGTACAGCGGCGCGTTCGCCCGAGAGATCCTGGAGTCGGTTGCCGCTGATTTTCCCGACATCCAATGCAACATCGATAACGTCGACGCCGTGGCGTTGTGGATGGTCCGACGCCCCGAGCGCTTCGGGGTGATCGTGGCCGAAAACATGTTCGGCGACATTCTTTCCGACCTGGGGGCCGGGGTGATGGGTGGCCTGGGCCTGGCGCCCAGCGCAAACATCGGGGCCCAGGGTGCCTACTTCGAACCTGTGCATGGCAGCGCGCCCACCTATGCAGGCCAGCATCGGGCCAACCCGAGCGCGATGTTCCTGTCGGTCGCGCTGATGCTTGAGCACCTGGGACATGCCCACCCCGCCCAAGCGACGCGCAACGCCGTTGCCCAGGTGGCTCGCAGTGATTGCCGCACCTACGACCTGGGCGGTACGGCCGGCACTTTCGAGGTCGCGGCAGCCATCGTCAAGCAAACCCTCGAATGGGCGGCGCGGCTTGATGGGCCGACCTCCCGGCAGACCGGAAACCAGGACAAGCATGCCCTGAAAAAAGGAGCCCACGCATGA	MSQRQQVCVLAGDGIGIEVTEAVLPLFEALELPIDLKFGDIGWSCWQKEGNCIPDKTWDLINESQATLLGAITSKPLREAEAELSSTLRGTGRVYVSPVIQLRQKLGLFANVRPVTDVLGDNRYRFSVIRENTEGLYAGLDFASIPQAFEPILAERERNGAPWTRESCRDATMTVRLQTRAGLLRLFRFAFEHARQQGYDRVTLADKPNVLRYSGAFAREILESVAADFPDIQCNIDNVDAVALWMVRRPERFGVIVAENMFGDILSDLGAGVMGGLGLAPSANIGAQGAYFEPVHGSAPTYAGQHRANPSAMFLSVALMLEHLGHAHPAQATRNAVAQVARSDCRTYDLGGTAGTFEVAAAIVKQTLEWAARLDGPTSRQTGNQDKHALKKGAHA	PGPT0001170_3	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
D1-36_02166	1023	mhpE		4-hydroxy-2-oxovalerate aldolase	ATGAGCCAGATAAAGATTATCGATGTCACGCTGCGAGACGGTGGGTACCGTAATGATTTCAACTTCACCGTTGATTACGCCCAGTCTGCAATTTCTCAAATGATCGAAGCCGGCATTCCTTATTGCGAAATCGGGTACCGCAACGGTTCGTTCGTACGCAAACACGAGCATGGGCTGACCAGCGCTGTCGATGCCCAGTACCTGAGCGCGGTCCAGGCCGCCGCCGCGGGTCGGATCGATTTGTGCGTCATGGTGCATCCGCACAATGTCGATGCCAGTGATTTCCAGCTGCTTCAGGAACATGGCGTGTCCATGATCAGGGTTTGCCTGCGCCGCGACCGCCTGGAAGATGGCTTGGCCACCTTGCGGCTGGCCAAGGCCTACGGCTTCCAGGTCAGCGCCAACATCACCCACGTCACGACCCTGGGGCCTGGGGAAATTTCCGATATGAGCCTTCGCGCGGAAAACGCCGGGGCAGACTTGCTGGTGTTCGCGGACTCCAACGGCAACATGATTCCGGCCGATGTCGACCGGCTGATCACGCGGATTTCCAGCCGGGTCCTGATTCCCTTGGGCTTTCATGCCCACAACAACCTGTCCCTGGCGCTTTCCAATTCCATCGCCGCCATGGATGCCGGGGCCGAATACATCGATGCGTCCATTTGCGGCATGGGCAAGGGGGCTGGCAACCTGCACCTGGGCGTGTTTGTCGCCTATCTGCATCGTGCGGGCATACGCAACGACTATGACCTGGTGAGTGCCCTGCATTTATCCCAGCTCACCGCTGACACGGTGCCAGCCAGCAGCCTCCCCCTGTCGCTGACGGATGTCATGATGGGCACTTACAACATGCCCTTCGATGTTCAGCAACGTTTGGACGAAGTGATAAAGGCGCACAGCCCCGCTTCAACTTTCCATGCCTTGCAGATCTTGCATGAACAAGGTAGCCGCAAACCGGAAAAGTCCATCAAGCCATTGCCGGCAACGCTGTCGCCCTCGCTGGCAAGTGGAGGTATCCGCTAA	MSQIKIIDVTLRDGGYRNDFNFTVDYAQSAISQMIEAGIPYCEIGYRNGSFVRKHEHGLTSAVDAQYLSAVQAAAAGRIDLCVMVHPHNVDASDFQLLQEHGVSMIRVCLRRDRLEDGLATLRLAKAYGFQVSANITHVTTLGPGEISDMSLRAENAGADLLVFADSNGNMIPADVDRLITRISSRVLIPLGFHAHNNLSLALSNSIAAMDAGAEYIDASICGMGKGAGNLHLGVFVAYLHRAGIRNDYDLVSALHLSQLTADTVPASSLPLSLTDVMMGTYNMPFDVQQRLDEVIKAHSPASTFHALQILHEQGSRKPEKSIKPLPATLSPSLASGGIR	PGPT0002050_637	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,PGPT0002050-mhpE-K01666	NA	NA
D1-36_02167	921	dmlR_11		HTH-type transcriptional regulator DmlR	ATGGATGTTAGCAGCACCTCACTCACAGCCACCCAGGCCGTCGATTTCCCTGTGGACAGCACCCAGTTCGATTGGGAAAACCTTCGGTACTTCATCGCCTTCGCGCGAATACGCTCCCTGGCCGCCGCAGCGCGATCGCTGAACGTCGAGCACGCTACCGTCTCACGGCGGATAGCAGCCCTCGAAACCGCACTGAAAGTGCGTCTGGTGGACCGACGAAGTCACCGGTACGAGTTGACCGAAAACGGCGAGCGAATCGCCCAGCTGGGCAACCGCATGCAAGAAACCGCTTGTGCCCTGAGTCGAGCAGTCTGCGCGATTCGAACCGACAAGGTCGCAGATGTCACCCTTAGCTCGCCTCCGCACTTGACGACGCATTTCATTGCCCCCCATCTTGGGCGGTTAAGGGAACAATGCCCTGACATCAACGTGCGGATCCTGTCCAATCCGCGCATGGCTTCCATGGCCAGGCGCGAAGCGGATATCGCAATCAGCGTCGGACGACCGACCGAGACGGATCTGGTCGTGCGCAAGATCGGCACCCTGGACTTCGGTTTCTTCGCTGCACAAGCCTATCTCCAGGAACGCGCGCCCTCAGCCTATGAATTCATTGCCCATGACGATGAGCAGGAGCCCTCTCCTCAGCGCATCTGGCTGGAGAATGCCGCAGGCCAAAGGCCCGTGGTGTTAAGGGTCAAGTCCTTCGACGTGCAGGCCGAAGCGGCCAGGGCGGGAGCTGGTATCGCGTTGCTACCGGTCTTCATGGCCGATGCTCCGGGCGGCTTGCAAAGGGTCCCCATCGAAGAGCAGCCGTTACATGCCGAACTCTGGCTGGTGGTCCATCGCGACATGCGAACTGCTCCTGGAATACGGGCAATGATGGATTTCGTCATTCATTGTTTTGCCCGGCAACATCGTTAA	MDVSSTSLTATQAVDFPVDSTQFDWENLRYFIAFARIRSLAAAARSLNVEHATVSRRIAALETALKVRLVDRRSHRYELTENGERIAQLGNRMQETACALSRAVCAIRTDKVADVTLSSPPHLTTHFIAPHLGRLREQCPDINVRILSNPRMASMARREADIAISVGRPTETDLVVRKIGTLDFGFFAAQAYLQERAPSAYEFIAHDDEQEPSPQRIWLENAAGQRPVVLRVKSFDVQAEAARAGAGIALLPVFMADAPGGLQRVPIEEQPLHAELWLVVHRDMRTAPGIRAMMDFVIHCFARQHR				NA	NA	NA	NA	NA
D1-36_02168	1191	ydhP_1	COG2814	Inner membrane transport protein YdhP	ATGAAAATGTTCAACCCGTTGTTCTTCATTGCCCTGGGTTTGTTCGGTGTCTACACCATCGAATTCGGCGTGGTCGGTATCTTGCCGGTGATCATCGAGCGCTACAGCGTCAGCGCATCCGAGGCGGGCTATCTGGTGGGACTGTTCGCCCTGATCATTGCGGTGTTCGGTCCCTTCATGGTGTTGTGGTTTTCGCGTTACAACCGCAAGCGGGTCCTGACCCTGTCGCTGTTTATTTTCGCCGGTGCAAGCGCCTTGTCGGCCTATGCGCCCAATTATGGAACCCTCGCAATCCTGAGGATCATTCCGGCGTTCTTTCATCCGGTGTATTTCTCGCTGGCATTTGTCGCGGTGGTCTCTCTATATCCCAAGGAGCAGGCAACTCAGGCGACGGCCAAGGCGTTTGTCGGCACCAGCATGGGCATGGTGCTCGGCGTGCCTATCACCACCTGGATCGCTGCACGCTTTTCCTACGAAGCGGCCTTCCTGTTCTGCACCACAGTCAACGTGATCGCCGGGCTGGGCATCATCGCCCGGTTACCCGATACCTTTGCCGGGCAGCGGACGCCTTATGGGGAACAGTTGGCTATCCTGCGCAAACCGACGTTGTGGCTCAATATCCTGGCCTCGACACTGATCTTCGGAGCAATGTTTTCGGTGTATTCCTACAGCGCCGAGTATCTGTCTCGGGAAGCCGGAATGAGCGGTGAGGTGATCAGCGCCATGTTGATTCTGTTCGGCGTGGGCGGTGTGGCCGGTAATCTGCTGGCAGGCCGTTTATTATCCAAAAATAAAGTGGGTACCACGCTAATGCATCCGATCATGCTGGGGGCGTCGTATCTGATCCTGCATTTCTTTGCCAGTCCGGACATCATGCCGATGATTTTGATCGTCGTGCTGTGGGGAGCCACCCACACCAGTGGCCTGATCGTGACCCAGGTCTGGCTGACCTCCGAAGCCCCGGAGGCGCCTGAGTTCGTTACGGGTCTCTACATCTCGTTCATCAATCTGGGCGTGACGCTCGGTGCGACTGCCGGTGGCTGGTTCCTCGCACGCATGGGCATGGAAGGCACCATTGTCAGCGGCCTGGTTTTCTGCGCGCTGGCCGCCGCGACCATCGCGACCAAGGTGTTGGTGTATGGGGCACGACAGCCAAGCCTTGCGCCGGAAACCCAAGCGGTTTTGCACTAA	MKMFNPLFFIALGLFGVYTIEFGVVGILPVIIERYSVSASEAGYLVGLFALIIAVFGPFMVLWFSRYNRKRVLTLSLFIFAGASALSAYAPNYGTLAILRIIPAFFHPVYFSLAFVAVVSLYPKEQATQATAKAFVGTSMGMVLGVPITTWIAARFSYEAAFLFCTTVNVIAGLGIIARLPDTFAGQRTPYGEQLAILRKPTLWLNILASTLIFGAMFSVYSYSAEYLSREAGMSGEVISAMLILFGVGGVAGNLLAGRLLSKNKVGTTLMHPIMLGASYLILHFFASPDIMPMILIVVLWGATHTSGLIVTQVWLTSEAPEAPEFVTGLYISFINLGVTLGATAGGWFLARMGMEGTIVSGLVFCALAAATIATKVLVYGARQPSLAPETQAVLH	PGPT0028991_2217	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
D1-36_02169	1002			2-haloacrylate reductase	ATGACACGTGTCGTTCGATTTTATGAGTATGGTGATCCAGAAGTGCTGCGGATAGAGGACTTGCCGGTCGCCCAGGCGGGCCCCGATGAGGTCCGCATCCGCGTGAAAGCCATCGGTCTCAACCGCGCCGAATCGATGTTCAGGCGCGGCCAGTATCTTGAACAGGCGACGTTTCCCAGCCGACTGGGTTATGAAGCAGCCGGTTTTGTCGAAGCCGTGGGCGACGCCGTAGACGGCTTCGAAATAGGTGATCCAGTCAGCCTGGTCCCACCTTCGAGCATCGCCCAATGGGGCACCTACGCCGAGCAGGCGGTAGTGCCGGCGGCGATGCTGGTTCGTCATCCGGACAACCTCAGCATGGAACAAGCTGCTGGTATCTGGATGCAATACCTCACAGCCTGGGGCGCGTTGCTGCCCGTGGCCGGGCTGGTCGCGGGTGACTACGTACTCATCACCGCGGCTTCGAGCAGCGTAGGCCTGGCCGCCATCCAGATCGCCAACCGCGTAGGGGCGATTCCTATCGCAGTGACCCGTGGTGAAGAAAAGGTGCGCAAACTGCTGGCGGCCGGTGCGGTCCATGTGATCGTCAGCGACCAAGAAGACCTGGTAGCGCGCGTCGAGCACATCACCGCTGGCAATGGCGTGCGGGTTGTCTTCGATCCTGTCGGCGGGCCGGCTATCGAGCAGTTGGCGGACGCCACCCGTCGCGGCGGCATCATCATCGAATACGGTGCGCTGAGCAGCGAACCCTCGCCTTTTCCGCTGTTCACCGTGTTGGGTAAAAGCCTCACGCTGCGGGGCTATCTGCTACACGAAATCATCAACGACCCCGCCCTGTTCGCCCAAGGCAAGGCGTTCGTCTCCAGCGGCCTGGTCGATGGCAGCCTGTCCCCTGTGATCGCCAAGACCTTTGCCTTCGATGAAATCGTCGAGGCCCATCGCTACCTGGAAGCCGGCGAGCAGTTCGGCAAAGTCATCGTGACGCTGGAGGACCGGCCATGA	MTRVVRFYEYGDPEVLRIEDLPVAQAGPDEVRIRVKAIGLNRAESMFRRGQYLEQATFPSRLGYEAAGFVEAVGDAVDGFEIGDPVSLVPPSSIAQWGTYAEQAVVPAAMLVRHPDNLSMEQAAGIWMQYLTAWGALLPVAGLVAGDYVLITAASSSVGLAAIQIANRVGAIPIAVTRGEEKVRKLLAAGAVHVIVSDQEDLVARVEHITAGNGVRVVFDPVGGPAIEQLADATRRGGIIIEYGALSSEPSPFPLFTVLGKSLTLRGYLLHEIINDPALFAQGKAFVSSGLVDGSLSPVIAKTFAFDEIVEAHRYLEAGEQFGKVIVTLEDRP	PGPT0013255_4072	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344	NA	NA
D1-36_02170	3177	oqxB10		multidrug efflux RND transporter permease subunit OqxB10	ATGATGAACATTTCCGGATTCTTCATCGACCGTCCGATTTTTTCCGGTGTCCTCAGCGCCCTTGTACTGTTGGCCGGCATGCTCTCGCTGGCGCGACTGCCGGTGTCGGAGTACCCCGATGTCGTGCCGCCGTTGATCTTGGTGAACGCCCAATACCCGGGCGCCAACCCCAAGGTGGTGGCGGAAAGCGTCGCCGCGCCGCTTGAAGAGCGCATCAACGGCGTGGAAGGCATGCTGTACATGCAATCCCAGGCCAACAGCGATGGCACCTTGGCGATCAACGTGACGTTCGCCTTGGGCACCGACCCCGACAAGGCTCAGCAACTGGTGCAGAACCGCGTCTCCGAAGCGCTCCCGCGCCTGCCGGCCGACGTGTTGAATCTGGGGGTGACCACCAGCAAGTCGTCATCGACCCAGACCCTGGCGATTCACCTAGTGTCACCCAACAACGAATACGACGCCAACTACCTGCGCAACTACGGCATCCTGAACATCAAGAGCCAGCTCGAACGCATCCCGGGCGTCGGCGAAGTGCGAATCTGGGGCGGCGGCGATTACGCCATGCGTATCTGGATCGACCCCGACAGCGTGGTGCAGCGAGGTCTCACCGCCGGCGAGGTGGTTCAGGCCATCCGGGAGCAAAACATCCAGGTCGCGGCCGGCGTCATAGGCGCTTCACCTATGCGCGCCGGCGTCCCGCTGCAGCTCTCGGTCAATGCCCAGGGGCGGCTGAAAACCGAAGAGGAATTCGGCAACATCGTCGTCAAGACGGTGCCGGACGGGGGCGTGACGTATTTGCGCGATGTGGCCCGGATCGAATTGGCAGCTTCTACCTACGCGCTTCGCTCGCTGGTGGACGGGCAGCCGGCGGTGGGCTTCGGCGTCTTCCAGATGGCAGGCGGCAATGCGCTGGACATCTCTGCCCGTGCCAGACAGATCATGGCTGAAGCCAAGGCCGATATGCCGGCAGGCGTCGATTACAAAATCGTCTTCGACCCGACCCAGTTCGTTCGTTCCAGCATCGATGCGGTCATCAGCACCCTGTTCGAAGCCATCGTGCTGGTCGTGCTGGTGGTCATCGTGTTCCTGCAAACCTGGCGCGCCTCAGTCATTCCACTGCTCGCTGTGCCAATCTCCATTGTCGGCACGCTGGCGTTCTTGCTGGCGTTCGGTTTTTCCATCAACGCCTTGTCACTGTTCGGCCTGGTATTGGCGATCGGCATCGTCGTGGACGACGCGATCGTGGTGGTGGAAAACGTCGAACGCAATATCAGCCAGGGATTGTCACCTCACCAGGCGACTCACCGAGCGATGGCGGAAGTCAGCAAACCCATCGTTGCCATCACCCTGACGCTGGTTTGCGTGTTCATTCCGTTGGCGTTCATGCCCGGTCTCTCCGGCGGGTTCTACCGCCAGTTCGCCTTGACCATTGCTATTTCCACGGTGATTTCGGCGTTCAATTCGCTGACCCTTTCCCCGGCCCTCTGCGCACTGCTGCTCAAACCACACGGCGCGCCGAAGGATCCACTGGAGCGCTGCATCGACAAAGTCATGGGGCGCTTTTTCAAGGGTTTCAATCGTCGGTTCAAGCAGGCCGAGGACCGTTATGGCGCCGGCGTGCGCGGTGTCCTGGCGCACAAAGGCAGGACGTTCGCGTTATTCGGCGTTCTGCTGTGCGCCTGCGCATGGCTCAGTCACACGCTGCCGACGGGCTTCGTCCCGGCCCAGGACAAGGAGTTCCTGGTGGGTTTCGCCCAATTGCCCGCTGGTGCCTCGCTGGATCGCACCGAGCAGGTCATCCAGCAAATGAACGACATCGCGCTCAAGCATCCCGGCGTTGCCCATACCCTCGAATTCCCCGGCATGTCCGTCAACGGCCTGATGAACTCCTCCAGCTCAGGGATCATTTTCGTGATCCTCAAACCCTTCGCCGAACGCTCCAGCGAGGCGCTGGGGGCGAACCAGATAGCGGCGGATCTCAATGGCGAGTTCAGCAGGATCGCGCAGTCGTTCACGGCTGTCTTCCCGCCGCCGCCCGTACTGGGCCTGGGAACGCTTGGTGGTTTCAAACTGCAGATCGAGGACCGGGCGAGCCTGGGCTATGTCGCCTTGGACAGCGCGGTCAAAGCCTTCATGGCCGAGGCTGCCAAAGCGCCTGAATTGGGACCGCTGTTTTCCAGCTACCAGATAAACGTGCCCCAACTGGACGTCGATCTCGACCGGGTCAAAGCCAAGCAGCTCGGCGTCTCGGTGACCGACGTATTCGAGACCCTGCAGATTTACCTGGGGTCTTTATACGTCAACGATTTCAATCTGTTCGGGCGGGTCTACCAAGTGCGGGCACAGGCCGATGCGCCGTTCAGGGCCAACCCGGAAGACATTACCCGCTTGAAGGTGCGCAATGCCTATGGCGACATGGTGCCCCTGTCGACGCTGCTGTCGGTGGACCCCAGCTACGGACCAGAAATGGTCGTGCACTACAACGCCTTTACCGCGGCGGATGTCAACGGCGCGTCCGCCCCCGGTTACTCCTCGGGCCAGGCCGAAGCGGCCATCGAGCGCATCGCCCGGCAAACCCTGCCCCAGGGCATACGCATGGAATGGACCGACCTGACCTACCAGCAGCGGCTGGCCGGTAACGCGACCGGCTGGGTATTGGCGGTAAGCACGCTGCTGGTTTTCCTGGTGCTGGCGGCGCTGTACGAAAGCCTTCTGCTGCCGCTGGCGGTGATTCTGATCGTGCCTATGGGTGTGTTCTCGGCCTTGGCGGGCGTCTGGCTGACCGGAGGTGATAACAATATCTTTACTCAGATCGGCCTGATGGTACTGGTGGGTCTGGCGTCGAAGAACGCCATCTTGATCGTCGAATTTGCCAGGGACCTGGAGCGCCAGGGGCGAACCCCGCTGAGCGCCGCCTGGGAGGCCAGCAAGCTGAGGCTTCGACCGATCCTGATGACCTCGATTGCCTTCGTCATGGGCGTCGTTCCTCTGGTGATCTCCACCGGTGCCGGGGCGGAAATGCGCCAAGCAATGGGTGTCGCGGTGTTCTTCGGCATGTTGGGTGTGACCGCATTCGGACTGATTTTCACGCCGCTCTTCTACGTGCTGGTTCGCAGCGTCGGCCGCCGGCTACCCCAGGGCCAGTCCATTGCCATTGCGGACACATATATCCGTTAA	MMNISGFFIDRPIFSGVLSALVLLAGMLSLARLPVSEYPDVVPPLILVNAQYPGANPKVVAESVAAPLEERINGVEGMLYMQSQANSDGTLAINVTFALGTDPDKAQQLVQNRVSEALPRLPADVLNLGVTTSKSSSTQTLAIHLVSPNNEYDANYLRNYGILNIKSQLERIPGVGEVRIWGGGDYAMRIWIDPDSVVQRGLTAGEVVQAIREQNIQVAAGVIGASPMRAGVPLQLSVNAQGRLKTEEEFGNIVVKTVPDGGVTYLRDVARIELAASTYALRSLVDGQPAVGFGVFQMAGGNALDISARARQIMAEAKADMPAGVDYKIVFDPTQFVRSSIDAVISTLFEAIVLVVLVVIVFLQTWRASVIPLLAVPISIVGTLAFLLAFGFSINALSLFGLVLAIGIVVDDAIVVVENVERNISQGLSPHQATHRAMAEVSKPIVAITLTLVCVFIPLAFMPGLSGGFYRQFALTIAISTVISAFNSLTLSPALCALLLKPHGAPKDPLERCIDKVMGRFFKGFNRRFKQAEDRYGAGVRGVLAHKGRTFALFGVLLCACAWLSHTLPTGFVPAQDKEFLVGFAQLPAGASLDRTEQVIQQMNDIALKHPGVAHTLEFPGMSVNGLMNSSSSGIIFVILKPFAERSSEALGANQIAADLNGEFSRIAQSFTAVFPPPPVLGLGTLGGFKLQIEDRASLGYVALDSAVKAFMAEAAKAPELGPLFSSYQINVPQLDVDLDRVKAKQLGVSVTDVFETLQIYLGSLYVNDFNLFGRVYQVRAQADAPFRANPEDITRLKVRNAYGDMVPLSTLLSVDPSYGPEMVVHYNAFTAADVNGASAPGYSSGQAEAAIERIARQTLPQGIRMEWTDLTYQQRLAGNATGWVLAVSTLLVFLVLAALYESLLLPLAVILIVPMGVFSALAGVWLTGGDNNIFTQIGLMVLVGLASKNAILIVEFARDLERQGRTPLSAAWEASKLRLRPILMTSIAFVMGVVPLVISTGAGAEMRQAMGVAVFFGMLGVTAFGLIFTPLFYVLVRSVGRRLPQGQSIAIADTYIR	PGPT0028950_406	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028950-bpeF-K18902	NA	NA
D1-36_02171	1167	mdtA_3		Multidrug resistance protein MdtA	ATGTCATCGTTAATTCGCAGGTTGACCAGCGTGCCCGTTTGGGCGCTGGGTGTATTGGTGCTAGCGGGACTTGCCGGCTTTGCTATCAGCATGCGGGCCCCGGTTGCCCAGGCAAAAACCGCCCCCGCGCCGCTGCCCCAGGTGCAAGTGATGACTGCCGTCACGCGTGATGTTATCGACTGGCAGAGCTACACCGGCCGCCTGGTCGCCACCGACACCGTGGTGATCAAGCCCCTGGTGGCGGGCACCCTCGTCAGCGTGCATTTCAAGGACGGCGCGCTGCTGCGCAAAGGCGACCTGATGTTCGAGATCGACCCCCGCCCTTATGCCGCCACGCTGCAACAAGCCCAAGCCGCGTTGGTGGCTGCCCGGTCGATGAGCCTGTTTGCGCAAAAAGAGCTGCAGCGCTACGAGCATTTGATCACCAGCAATGCCATCGCGAAAACCGACCTGGACAAGCGCATACAAAGCGCCAACGAAGCCCAGGCCAGGGTGAACGAAGCCCTGGCCAGGGTCGAGCTGGCCCGGCTCGATCTCGAGCATACCCGCATCCTCGCGCCATTTGACGGCCGGGCTTCACGGGTAGAGGTGACACCGGGCAACATCGTCGATGTGGGGGAACGCTCTACGGCGCTGACAAACCTAGTGTCGATCTCGCCGATCTATGCCGACTTCGACGTGGATGAGCAAACCTTCCTGCGCTACCTGGGCAACCGTCCGGCGGGCGACCCGGTCCCGGTCATGCTCGGATTGGCCCACGAAGAGGGATACCCACGCAAAGGCAACCTGAGTTACCTGGACAACCGGCTGGATACCCGGTCGGCCACTATTCGGGTAAGGGCCACTTTCGACAACAGCAACGGGGAGCTGCGCCCGGGCCTGTTTGCCAGGGTCCTGCTGCCAGGCAGTGCCAGCCGCTCCGCGACCTTGGTGGAAGACAGCGCCATCGGCACCGACCAGGACAAAAAGTACGTGCTGGTGGTCGATGCCGAGGGTCGCGTCCAGTATCGCCAGGTCAAGCCCGGGATACGCCAGGGTGCGCTACGTGTCATTGACCAGGGCATCGCGCCCGAGGAGCAGGTTGTCGTGAGTTCCTTGCACCTGGCGACGCCGGGCAGCCAGGTTGCTCCGGTACTCGCGCCGTCACAACCACAGGCGCAACAATGA	MSSLIRRLTSVPVWALGVLVLAGLAGFAISMRAPVAQAKTAPAPLPQVQVMTAVTRDVIDWQSYTGRLVATDTVVIKPLVAGTLVSVHFKDGALLRKGDLMFEIDPRPYAATLQQAQAALVAARSMSLFAQKELQRYEHLITSNAIAKTDLDKRIQSANEAQARVNEALARVELARLDLEHTRILAPFDGRASRVEVTPGNIVDVGERSTALTNLVSISPIYADFDVDEQTFLRYLGNRPAGDPVPVMLGLAHEEGYPRKGNLSYLDNRLDTRSATIRVRATFDNSNGELRPGLFARVLLPGSASRSATLVEDSAIGTDQDKKYVLVVDAEGRVQYRQVKPGIRQGALRVIDQGIAPEEQVVVSSLHLATPGSQVAPVLAPSQPQAQQ	PGPT0028945_597	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028945-bpeE-K18901	NA	NA
D1-36_02172	1149			hypothetical protein	ATGACGCATTCACGCCTCTACCACAACTACGCCAACGTACGCCTGGACTCCCTGACGGGGTTTCGATTTGTCGCCGCGACCTTGGTGTTTTTCTTTCACGCCTCACTGACGAAAATCATCGGATTCAATCCGTATGCAGACCCACAGATTGTCGCCGGTTTCCAGCGCTTATTCAGTGTGGGTGGCTGGCTTGGGGTCTCGTTTTTTTTCGTGCTCAGTGGTTTCGTCATCACCTGGTCCGCTCGCAGGAACGATACGCTAGGGGCGTTCTGGCGCCGACGCCTGGTGAAGATCTACCCCAACCATCTGGTCACCTTCGTCCTGGCGATGATCTTGTTCGCCGTACCACTGACGGTCGTCAGCGCCTGGTTGCCCAACTTGCTGCTGGTCCATGCGTGGGTGCCGGACATATCAGTGTTCCTAAGCGTCAACGGGCCATCCTGGTCGCTGTGTTGTGAATTGGTTTTCTACTTGGCGTTCCCGTTTCTCTTGCGCGCGTTGTGGAAGGTTGCAGAGGACCGACTCTGGCTGACTGCCGGCCTGACAGTCTGCGCAATGGCTGCGACCCACTGGCTCATCGCCAAGTTTGTCAACGGTACGCCCCAGATCGCCGAGTACCCAATATCACTGAACCAGTGGTGGCTGGCTTATTATTTTCCGCCGCTACGGTTGTTCGAATTCGTTCTCGGCATGCTGATGGCGCGGATCCTGATGACGGGACGCTGGGTTGCTATCCCGGTCGCTCCGACCTTGATGTTGGCGGCAGCGGCTTACTTCCTCGCAGGAGAAGTGCCCTTCATCTATAGCCTGTCCCTCACTACCGTCATCCTGATTGCCCTCCTGATTACCAGCCTGGCCGCCGCGGATATGGCGCAACGAAAGTCCTGGTTTCGTCATCCGCTGATGGTGTGGCTGGGGGAGATTTCGTTCGGGTTTTACATGATCCATTTGCTGATCATGATGGGCCTGACCTCGCTGTTGGACGGCCAACGTTTTTCCGTTGTGCCGGCCTCTTTCATTCTTGCCGCCACGTTCTGCCTGTCGCTACTAGGCGGCTGGCTGCTCTTCGCCTTTGTTGAGCGGCCCGCCATGCAACGTTGGGGCAAGGCCAAGCCGATGGAACGGCCATTGAGTGTCCCTCAAGTCTGA	MTHSRLYHNYANVRLDSLTGFRFVAATLVFFFHASLTKIIGFNPYADPQIVAGFQRLFSVGGWLGVSFFFVLSGFVITWSARRNDTLGAFWRRRLVKIYPNHLVTFVLAMILFAVPLTVVSAWLPNLLLVHAWVPDISVFLSVNGPSWSLCCELVFYLAFPFLLRALWKVAEDRLWLTAGLTVCAMAATHWLIAKFVNGTPQIAEYPISLNQWWLAYYFPPLRLFEFVLGMLMARILMTGRWVAIPVAPTLMLAAAAYFLAGEVPFIYSLSLTTVILIALLITSLAAADMAQRKSWFRHPLMVWLGEISFGFYMIHLLIMMGLTSLLDGQRFSVVPASFILAATFCLSLLGGWLLFAFVERPAMQRWGKAKPMERPLSVPQV	PGPT0010985_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-MEGALOMYCIN_METABOLISM,PGPT0010985-megY-K15999	NA	NA
D1-36_02173	1182	estB_2	COG1680	Esterase EstB	ATGACCGCCAAAGAAACCATCCTACTCTCCAGCGCTATCGCCACCGACCCCATGCAGGTGCGAATCGACGCTGCCCTGAACAGCGCCATCGAAGAAAAACGCCTGGTGGGGGCCGTGGCGCTGGTTGCTCGTCGCGGCGAAATCACTTATCGCAAGGCCGTGGGCCTGGCCGACCGAGAGGCTGGCCTGCCGATGCGCACCGACGCCTTGTTCCGGCTCTCCTCGGTGACCAAACCTATCACCTCGGCCGCCGCCCTGGCCTTGGTCGCCCAAGGCCGCATTGGCCTGGATGATCCTATCGCTCGCTGGCTACCGGGGTTTCAACCAACCTTGGCGGACGGCACTGGCGTATCCATCAGCGTGCGCCAGTTGCTTAGCCATACAGCGGGCCTTGGTTACGGTTTTCTCGAAGGCACGGGCGGCGGCGCCTATGCACAGGCCGGAGTGTGTGACGGGCTGGAAAATGCGCCGGTGACCCTGGAGGAAAACATTCGGCGACTGGCGACGGCGCCGCTGCTCTATCGTCCTGGCACCGATTGGGGGTATTCAATTGCCACTGATGTGTTGGGCGCGCTTATCGCCAAGGTATGCGGGACCAGTCTGGCCGATGCAGTCAATCAACTTGTGTGCGAGCCACTCGGTCTGTCCGATACCCGTTTCAATGTCGTCGACACTTCCCGCCTGACGGCCGCCTATCTCAATGCCGACCCCGCGCCACGTCGTATGAATGGTATCGAAGTGATCGAGGTTTTCGAGAACACCGCCGGCATCCGGATGGACGCGGATCGGGCCCTCGACAGCAATGCCTACCATTCGGGAGGCTCAGGGATGATCGGCTCCGCCGAAGAATTCCTGACCTTGCTCGAAACCTTGCGCCAGGGTGGTGGCCCGCTCATGCCGGCGAGCCTGGCAAAAGAAATGGGAACCGTCCAGACCGGCAACCTGGAACTCGCCAACTGGCCTGGCCGTGGCTTCGGCCTCGGATTCACGGTGATGACTGACCCGCAAGCGGCACAAGCGCCGGAGTCCGTCGGGACCTGGCGCCTGGGTGGGGCTTTTGGTCATTCCTGGTTTGTCGATCCGGCGCAGCAGATCTCCGTGGTGGCGTTTACCAACACCGCCTTCGAGGGGATGTTCGGACAGTTTACGGTCGATCTGTGCAACGCCGTATACGGCGCTTGA	MTAKETILLSSAIATDPMQVRIDAALNSAIEEKRLVGAVALVARRGEITYRKAVGLADREAGLPMRTDALFRLSSVTKPITSAAALALVAQGRIGLDDPIARWLPGFQPTLADGTGVSISVRQLLSHTAGLGYGFLEGTGGGAYAQAGVCDGLENAPVTLEENIRRLATAPLLYRPGTDWGYSIATDVLGALIAKVCGTSLADAVNQLVCEPLGLSDTRFNVVDTSRLTAAYLNADPAPRRMNGIEVIEVFENTAGIRMDADRALDSNAYHSGGSGMIGSAEEFLTLLETLRQGGGPLMPASLAKEMGTVQTGNLELANWPGRGFGLGFTVMTDPQAAQAPESVGTWRLGGAFGHSWFVDPAQQISVVAFTNTAFEGMFGQFTVDLCNAVYGA				NA	NA	NA	NA	NA
D1-36_02174	879	pgrR_5		HTH-type transcriptional regulator PgrR	GTGGACAACCTCAGCGGAATCTCGGTTTTCGTCCAGGTCGCCGAAACGCGCAGTTTTGTCGCGGCCGGACGGCTATTAGGCGTGTCTTCATCGGCGATCGGCAAAAGCGTCGCGCGCCTGGAACAGCGCCTGGGCGTCAGGCTGTTTCATCGCAGCACCCGCAGCATCAACCTGACGGCGGAGGGCATGCTTTTCCTGAACCGCTGCCAGCGCGTGCTCAATGAGCTGGAAGCAGCAGAACTGGAACTGTCGAGCACCAGCAGCGAACCGCGCGGCAAGCTGCGGGTGAGCCTGCCCTTGGCCGGGCAGTTCCTGTTCACATTGTTGTCCAGCTTTGCCAAGCGATACCCGGACATTCATCTGGAATTGGATTTCAGCGATCGCCTGGTGGATGTCGTGGAGGAGGGCTTCGATGCGGTGGTCAGGACCGGTGAGTTGAATGACTCTCGCCTGGTGGCGCGGCGATTGGGCGCTTTCCGTTTCCTGCTGGTGGGCGCCCCGGCCTATTTCCAGGCCCAGGGGACGCCGGTGGACGCCAGCGACTTGAGCAACCATGACTGCCTGTTATACCGGGTGCCTTCCACCGGAAAGCTTGAGCGCTGGCCGCTACCGGATAAGTCCCACAACGGCACGCAGGACCTGCGGGCCGTGCTGGTCTGCAACAACATCGACATGCTTTTCAACGCCGCCATGGAAGGGCGGGGCATTGCCTGCCTGCCGGAATTTGCCGTCAAGGAGGCCCTCGAGTCCGGGGCGCTGCAGGCCGTGCTGACCCAAGAGGTGACCCGCACCATTCACTTCAGTGTGCTGTGGCCGCCGAATCGCTTTATCACGCCCAAGCTGCGCTGTTTCGTGGATTTCATTTCTTTGCATATGTGA	MDNLSGISVFVQVAETRSFVAAGRLLGVSSSAIGKSVARLEQRLGVRLFHRSTRSINLTAEGMLFLNRCQRVLNELEAAELELSSTSSEPRGKLRVSLPLAGQFLFTLLSSFAKRYPDIHLELDFSDRLVDVVEEGFDAVVRTGELNDSRLVARRLGAFRFLLVGAPAYFQAQGTPVDASDLSNHDCLLYRVPSTGKLERWPLPDKSHNGTQDLRAVLVCNNIDMLFNAAMEGRGIACLPEFAVKEALESGALQAVLTQEVTRTIHFSVLWPPNRFITPKLRCFVDFISLHM	PGPT0028940_359	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028940-bpeT-K18900	NA	NA
D1-36_02175	225			hypothetical protein	ATGGGCAAGTGGAGATGGCTGAGCAAAATGAAGTACCTGAGCAATCCCCGAAGTCCCGTTTTCCAATCGAACCAGGCAGTAAGGCTCACCGCCGCCTGTAGCCGCAAAGGGAAGAAAGGTTCGACCTTGCTGGTCATCAGGGTTAAGCCACTCATTGATTTCTCGTTCTGCTTCTTCGGCATCGAGCCAGTGAAAATCTACAAGGCTACTCAGTGCAGCCTTTGA	MGKWRWLSKMKYLSNPRSPVFQSNQAVRLTAACSRKGKKGSTLLVIRVKPLIDFSFCFFGIEPVKIYKATQCSL				NA	NA	NA	NA	NA
D1-36_02176	387			hypothetical protein	ATGATCATGGCCATACCGAAGATCGAACTTAAGGAACTGTCGGTGAAAGCGGAAGCAGACGGTTTAACGCTGAGTGATCTTGTCCCCATTTGCGAAAGGTTCGCCGTTGCACCGCATGATGTGCTGAACGAGCTATCCGTCGCGGTTGCGGAAGGCTATCTACAAGGATCTCTGCTCTATGATTTTTGCAACGGCGTAATGAACGGGATCATAAATGCTGTGGTTGAAGTAGGTATGACTAACGACATGCCTCAGCCCGCTTTCTCGCTTTACCAGGCATTCGATCAAGGTGAATGGTTCCGCAGTAACGACCCACCGGAAACTGATCCCAGTGAGAAATACACGAAGCCGGTGGTCGAGGAAATAATGCGTACCCTTAGAGACTAG	MIMAIPKIELKELSVKAEADGLTLSDLVPICERFAVAPHDVLNELSVAVAEGYLQGSLLYDFCNGVMNGIINAVVEVGMTNDMPQPAFSLYQAFDQGEWFRSNDPPETDPSEKYTKPVVEEIMRTLRD				NA	NA	NA	NA	NA
D1-36_02177	906	dmlR_12		HTH-type transcriptional regulator DmlR	ATGGACTTGATTCATGTGATGCGATCGTTCGTGCGAGTCTACGAAACGCAGTCTTTCAGCGCTGCTTCTAAAGACTTGAGCCTGAGCCAGCCCTCGGTATCCAAGGCAGTTGCGCAGCTCGAGCAAGCGCTGGGGACACAGCTTTTTCTGCGCTCGACACGCGGCCTGACGCCGACCGATGCGGGACAGAAATTCTATGAGCATTCGATCCGTACGTTGGATGAGGCCGACCGGGCCGTAAGAGCGGTCAAAGGTGAGAACGCGCCGTTGACCGGTAGGTTGCGGGTAAGCGGCACCATCACGTTCATGAGCCAGCACATTATCCCAAGACTGCCCATATTTTTGGAGCGACACCCTGACCTGACCATCGACATGCTCCTGGATGATGGAAACATTGGCCTTGTGGAAGAGGGAGCAGAGGTCGCACTACGTATGGGTAAGTTGGCCAGTTCTAACCTGACAGCGCGCAGAATAGGCCAATGTCGTCGTGTCGTCATTGCGTCTCCCAGCTATCTGGAAAAGCATGGCAGGCCTAAAAAGCCGAGCGACCTCGAGACGCATGCAGCCATCGTCTTGTCTCGGGGCGAAGGAGGCGAACATATTGCATTTTCCAAGGATGACCTTTCGATTGAGGTGGTGCTCCAGCCCAGGATGCGCGTTAGTGCGCTGGAGGGGCTGAGGGCTGCGGTACTGGCCGGTATGGGCTTGGCAGTGGCAAGTGAATGGATCGTTCAGGATGAGCTGGAGAGCGGACAGGTTGTTGAAGTAGTTAGCGACTGGACTATGCAGAGCCTCGATTTGTGGATGGTGCTGCCAAACGGGGCTCGCCACGCGAGCTCCAACGCCCGCGCTTTCATTGCCTTCGTCGAAGATCAACTTGCAGCTACGCGATACGGCGTGAGTTGA	MDLIHVMRSFVRVYETQSFSAASKDLSLSQPSVSKAVAQLEQALGTQLFLRSTRGLTPTDAGQKFYEHSIRTLDEADRAVRAVKGENAPLTGRLRVSGTITFMSQHIIPRLPIFLERHPDLTIDMLLDDGNIGLVEEGAEVALRMGKLASSNLTARRIGQCRRVVIASPSYLEKHGRPKKPSDLETHAAIVLSRGEGGEHIAFSKDDLSIEVVLQPRMRVSALEGLRAAVLAGMGLAVASEWIVQDELESGQVVEVVSDWTMQSLDLWMVLPNGARHASSNARAFIAFVEDQLAATRYGVS	PGPT0028940_797	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028940-bpeT-K18900	NA	NA
D1-36_02178	669	gstB_3	COG0625	Glutathione S-transferase GstB	ATGACGATTAAAATCCACGGCGACTTGGGCTCGGGCAGTCTTCGTCGTGTCACGACTGCGGCAAAGCTCATGGGTATCGAGATCGAGCGAATCAATGTCGACCTCTTCAAAGGCGAAAGCCATACACCTGAGTTTCTGAAGCTCAACCCGCATGGTCTGACTCCAGTTCTTCAGGAGGGCGAAACGATCCTCTGGGAGTCTTCGGCAATTAATATCTACCTCGCTGAAAAGGCCAACTCCCCCCTGCTTGGGAAAACGGCGAAAGAGCGCTCGGAAGTCTTGCAGTGGATGTTTTGGTCAGGCGAGCAGTGGCGTGTCTTCTTCGTGCTGCTCTTTGATGAGCGTGTAGGTGCCCGAGCGATGGGCAAACCCCAGAACACTGCTGTGATCGATCTTGCCTTGAGCAAGATTCGCGCGGCGGCTTGGGTTCTTGATACGCACCTCGCAAATCGGCAGTTCATTGTCGGCGATGAACTCACCTTGGCTGACATCGATATCGCCGCGCCGTTCTCCCAGATCAACCGATCCAAGCCGCCACTTGAGGAGTTCCCTAACCTTTATGCATGGCAACAGCGCCTTCTGGATACGGTACCGGCGTGGGCGGAAACCAAGGGGGAGCTAGACGGCCGAATGGATGCATTCTTCAGCGCCGTTGGCCTTACGTTTTGA	MTIKIHGDLGSGSLRRVTTAAKLMGIEIERINVDLFKGESHTPEFLKLNPHGLTPVLQEGETILWESSAINIYLAEKANSPLLGKTAKERSEVLQWMFWSGEQWRVFFVLLFDERVGARAMGKPQNTAVIDLALSKIRAAAWVLDTHLANRQFIVGDELTLADIDIAAPFSQINRSKPPLEEFPNLYAWQQRLLDTVPAWAETKGELDGRMDAFFSAVGLTF	PGPT0013170_11715	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799	NA	NA
D1-36_02179	483			hypothetical protein	ATGGAAATTGCGCCGCATTTTATTATTCATCAAACCGATCATTGGATTATCAACCATCACCTCGTGAGCACGCTTCCCGGCTACTTGATGCTGGGAACAAAAATGCAGACCACGTCGTTGACTGACCTGTCATCAGATGCGCTTACAGAGTTGGGAGGGTTGCTCGCCAATACTCAAAATATAATTGAGCAGCGACTCCGGCCCAAGCGGCTATATATCGGTCGCTTCGGTCATGAACCAGGTTTACCAATTCACTTCCATTTCATACCGGTCTACCACTGGGTCGAAGACATGTTCTGGAGTGATGCTCGTTATCGGGTCCTTGAAAATTTCTCCTACGCTGAACATGGCCCCTCTTCAACTGACGGCGCAGAGCTGACCTTGTTCATATGGAGAGAGTTTGGGGAAAATCCTACCCCACCAAAAATTCCAGATCTCACGGTAGGCGGTGTGATTAAAGATCTACGTGACGCCTTTCTGTAG	MEIAPHFIIHQTDHWIINHHLVSTLPGYLMLGTKMQTTSLTDLSSDALTELGGLLANTQNIIEQRLRPKRLYIGRFGHEPGLPIHFHFIPVYHWVEDMFWSDARYRVLENFSYAEHGPSSTDGAELTLFIWREFGENPTPPKIPDLTVGGVIKDLRDAFL				NA	NA	NA	NA	NA
D1-36_02180	621			hypothetical protein	ATGAACACCTTCAAATCGTCAGTTCAAAACGTAGCTGCGGCCATAGGCCTTATCGCAGCAGTGACAGTCGGTGGATGCGTGATGATCCCTTACGACACGCCGGAATCAAAAGCCCAAATCCAGCGCGATCTGAAAATTGCACCATCGGATATTCAAGCCGTGTCGGAAACGAACTGGTGCTTGTTCCCATATGGAAGCGAAGGCAGCTGCAGAGCCACTCAAGGCCTGGGAGTGTTGACCAACAAAGGCCTGATCCTCAGCCGCTACAACAACCACACCTACACTGAAACCGCACGCATCCTCCCAGAACAAGTGCAGTGCGTGAAGACGGTTGGTGGCCGCCCTGGAGTCGAACCGTTCGTTGTATTCACCAAAGACCGAGCGATCATGCTCGCCGTCATTACGCCGGGTGGGCAAATGAATGTGCCTGTGAAAGTCAGTTTCTTTGATTATCTGACGAAGCCAGGGCAGCACGTCTTCACTGGGACGGATGGCGGATATGTGCGCAAGTCGGGTCGACAGCAAACCGTAGGCGGAATGGTGTCAGGCACTGCCGTCCCGTGGCATACAACACTCGACGTAACCGAGGTGTTTAACCCTTGCCCGCGGGTTACAGATTAA	MNTFKSSVQNVAAAIGLIAAVTVGGCVMIPYDTPESKAQIQRDLKIAPSDIQAVSETNWCLFPYGSEGSCRATQGLGVLTNKGLILSRYNNHTYTETARILPEQVQCVKTVGGRPGVEPFVVFTKDRAIMLAVITPGGQMNVPVKVSFFDYLTKPGQHVFTGTDGGYVRKSGRQQTVGGMVSGTAVPWHTTLDVTEVFNPCPRVTD				NA	NA	NA	NA	NA
D1-36_02181	996			hypothetical protein	ATGATCCCCGTTGCACTGCCCTCCGCCGAACTACTGCTTTACCTTGCCTTTTTCGTCGCCGCGACGCTTTTCTGGTTCGGGTGGACGATAAGGCTGGGGGTTCGATATATCAAAGGTCGCTGGCGCCGCCCTCTCCTCCTGCCTTACATGCTTGTCACCGCGTGTGCGCTTTTTACCCTGTGGCAGTCCGCGGCTTTTTATGTGCAGATGCGCAGCTATGAACGGGATAGAGAGGCAAGTTATCGCCCGGAACTAGTAGAGCCGATGCGCCTTGGCCAGATCGACATGCCCAAAGGCACAAAACTCGAATTAGCCGTTGCGGATCATCGGGAATCCTTCAAACGAGCCGTATTTCCAAGCCCTGTGCGTATGCTCGATATGGATGCCGTCGAAGTAGCCCGCTACATCGCGATTCAAACCAACGAAAAATACGAAACGGTGGGCTTCACGCCAGAGAACATGCGGCTAACCGGCCACGGCACGACGATGCAGATCGGCTGGCGGTGCAATGCGCTGCAACCGGTGGAGTTTGAGCTCAAGCCAGATGGCGGCGTATCGAGGTTCAGCACCTGTACGCTTGCTGATGGCAATGTAGTCGATGGCATCACCTTGCCCGAAGGCACCTCGCTCCGGGCTTCGACCGGCAATGTCTATGCCGATGGGTTTGTAGACTCTGACCGGTGGGTTCTCGATATGCCGGAAGGCGTACCCGTGCGTATCGATAATTTCGAGCTTGCGGATGCCAGTATTGCGCTCGACGCAGAGCGAAGGCTCTATGAAGTCAGAAGTGCGGTGCTTTCGAGCGTTGCCACACTCGCAGGGCGCCGTTATGCGGCGGCAAGCGCTATCCGCTTCAATCCGCTCCATATCCGGGAAGACTATGCGGGTGCCTGGTTGATAACCCCACCGCCGGGCGCCGACGGCTCACAGCCGGTAGCGCCTAAGACCATCGTGCAGCGCAGAGACGGAAAGGTGTTGGCCACACTTACTGACTAA	MIPVALPSAELLLYLAFFVAATLFWFGWTIRLGVRYIKGRWRRPLLLPYMLVTACALFTLWQSAAFYVQMRSYERDREASYRPELVEPMRLGQIDMPKGTKLELAVADHRESFKRAVFPSPVRMLDMDAVEVARYIAIQTNEKYETVGFTPENMRLTGHGTTMQIGWRCNALQPVEFELKPDGGVSRFSTCTLADGNVVDGITLPEGTSLRASTGNVYADGFVDSDRWVLDMPEGVPVRIDNFELADASIALDAERRLYEVRSAVLSSVATLAGRRYAAASAIRFNPLHIREDYAGAWLITPPPGADGSQPVAPKTIVQRRDGKVLATLTD				NA	NA	NA	NA	NA
D1-36_02182	1281	umuC	COG0389	Protein UmuC	ATGACAACACGTGAACCTGTCTTCGCCCTGATTGACTGCAACTCGTTTTACGCCAGCTGCGAGCGCGTCTTCAGACCGGACCTCGCGAAGACACCTATAGTGGTGCTGTCCAACAACGACGGCTGTGTAATTGCGCGTAGCTACGACGCAAAACCTTTCGTAAGGATGGGCCAGCCGTACTTCCAAATCAAAGATCATCTACGTCGGCATGGGGTTGTGGCGTTCAGCAGTAATTACGCTCTGTACGGCGACATGAGCGAGCGTGTCATGACGATCATTGAATCGTTAGTACCGACGCTTGAGGTCTACAGCATTGATGAGGCGTTCGCCGACCTCACCGGTATCCCAGGTGACTTATCTGCGTTTGGCCGGCACATGCGTTCTACCCTTCTCAAACGCACTGGCATTCCTGTCGGGGTTGGAATCGCGCACACCAAGACGCTGGCCAAGCTTGCCAACCATACCGCCAAGCGGCTGCTGGATATCACGGGCGGCGTAGTGGATCTCTGTGATCCCTTCAAACGGGATTGGACGCTGCGCAACACTGATGTCGGCGAGGTCTGGGGCATCGGCAGGCGCATGAAGGCGCATCTGGAAACAATGGGGATCCAGACCGCGATGGATTTGGCCAAAGCCGACCCGTGGATGCTTCGTCAAAAATTCAGCGTGGTGATCGAGAAAACCGCTCGCGAACTTGCCGGCACCCCATGTTTGGAGTTGAGTGAGGCTGATCCACCCAAGCAGGAGATTTGTTGTAGCAGGATGTTCGGCACGCGGCTCACCGAGATTGAGCCAATCAAGGAAGCTATCGCTACCTACACACAACGCGCGGCGGAAAAGCTCCGAGCTCAAAGCTCACTGTGCAAGAAAATCCGCGTGAGCATTAGAACCGGCATGTTCAACCCTCAGGAAGCGAAGTATGCGAACGGGGCGTTGGTCGAATTACCTTACCCGACCAACGACGTGCGGCTCATGACCAAGGCCGCAACCGAAGCGGTAAACCGTCTATTCCGGCCCGGCTTCAAGTACAGCAAAGCAGAAGTTTTGCTGATGGATCTGCGCCAGCCTGGCGAATTCACTGATGATCTGTTCGCTCATTCTCAACCCGTCATGGCTGATAAGGTGATGAGTGTTTTGGATGAAATCAATGGTCGATGGGGAAAGGGGGTTATTCGGATAGCGAGTGTGCCTGCAGCGCCTGGTTGGGCAATGCGTCGAGAGCTGATGAGTCAGAGCTATACGACGAACTTTGATCAGTTGTGGACGGTGAAAGCCCGCTAG	MTTREPVFALIDCNSFYASCERVFRPDLAKTPIVVLSNNDGCVIARSYDAKPFVRMGQPYFQIKDHLRRHGVVAFSSNYALYGDMSERVMTIIESLVPTLEVYSIDEAFADLTGIPGDLSAFGRHMRSTLLKRTGIPVGVGIAHTKTLAKLANHTAKRLLDITGGVVDLCDPFKRDWTLRNTDVGEVWGIGRRMKAHLETMGIQTAMDLAKADPWMLRQKFSVVIEKTARELAGTPCLELSEADPPKQEICCSRMFGTRLTEIEPIKEAIATYTQRAAEKLRAQSSLCKKIRVSIRTGMFNPQEAKYANGALVELPYPTNDVRLMTKAATEAVNRLFRPGFKYSKAEVLLMDLRQPGEFTDDLFAHSQPVMADKVMSVLDEINGRWGKGVIRIASVPAAPGWAMRRELMSQSYTTNFDQLWTVKAR	PGPT0014882_866	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ADAPTIVE_MUTATION	CE-BACTERIAL_FITNESS-ENVIRONMENT-INDUCIBLE_DNA_POLYMERASES,PGPT0014882-umuC-K03502	NA	NA
D1-36_02183	432	umuD	COG1974	Protein UmuD	ATGAGCATCACCATCCTGGGCCTGTTGGCTACCGGCGGCGAGAAGCTGCCTCTTTATTCATTCAAGGTGCCTGCAGGCTTCCCTTCGCCCGCTGCTGACCACATCGAAAAGCACATTTCCCTGGATGAGCTCTTCGATGTACGAGCTCCCCACGTCTATCTCGTGAGGATCGATGGCGACAGCATGCAGGGCGCGGGGATCTATTCGGGGGATATGGTGGTGGTTGATCGAAGCATAGATCCGATCAGTGGGGACATCGTTATAGCTGCGCTTAACTCCGAGCCACTGCTCAAGCGTCTGCATTTGCGCGACAACGCCGTAATACTTCTGTCGGAAAATCCCAAGTATCCGGCAAGGCACGTGATGGAAGGCGACGAACTCATGATTTGGGGTGTAGTGAAATACAGCGTCCGCGATCATGACAACACGTGA	MSITILGLLATGGEKLPLYSFKVPAGFPSPAADHIEKHISLDELFDVRAPHVYLVRIDGDSMQGAGIYSGDMVVVDRSIDPISGDIVIAALNSEPLLKRLHLRDNAVILLSENPKYPARHVMEGDELMIWGVVKYSVRDHDNT	PGPT0015094_826	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ADAPTIVE_MUTATION	CE-BACTERIAL_FITNESS-ENVIRONMENT-INDUCIBLE_DNA_POLYMERASES,PGPT0015094-umuD-K03503	NA	NA
D1-36_02184	2127	cntO_1		Metal-pseudopaline receptor CntO	ATGTTATGTTATTACATCTTTATGGGAGAGTTCATTTTGAAACATCACGTTCCGCTGCTGACAGGATTCACCCTCGGGCTACTTGGACAACCTATTTCAGCCGCACAACCTCTGACGCTGAACGCGTTGACTATCACCGGATCCACCGTGGAGGAGCGTGCCGATGGTCCAGTGCAAGGTTATCGAGCAACGCGTTCGAGCACAGCTACTCGCACCGATTCAGACATTCGCGATACCCCGCAAAGCATCGATGTAATACCCGCCCAGGTGATCAAGGACCTCAACACCACGCGAATCGACCGCGCCCTGGATTTCGCAGGCGGTGTCTCACGACAGAACAACTTTGGCGGACTAACTTTTCTCAACTACAGCGTCCGTGGTTTTACCACCGGCGAACTCTATAAGAACGGCTTTGCCATCAACCGTGGCAGCTACAGCGCGCCGGACACTTCCAATATCGAACGTATCGAAGTGCTCAAAGGCCCGGCTGCAAGTCTCTACGGTCGAGGCGATCCCGGCGGCCTGGTCAATATCGTGACCAAGCGTCCGCAGGCTGAGGCGTTCAGCAACCTGAACATCAGCGCCGGCACCTGGGACCGTTACCGCAGCAGCCTCGACGTCAACTCGCCACTCGACAGCGAGGGCAACCTGCTGGCACGAGTAAACATGGCCATCGAAGACAATGGCAGTTTTCGCGATCACGTTGACAGTCAACGACGGATCATCAGCCCGTCGTTGAGCTGGCAGATTTCACCAGACACCCGCCTGATGTTCGACACCGAGTTCTCCCGTACCGAATCGGTGTTCGACCGCGGCATTCCGGCAGTCAATGGTGAGCTTGGCTCGGTCAAGCGGTCGACCTTCATGGGTGAGCCCAACGATGGCCAGATACGCAACGACAACCAGACCATTGATCTGGCGCTGGAACATTATTTGAACGACAACTGGAAGGTTCGCCTGGCCAATCACTACACGCAGGGCACGCTCAATGGCGCGAGCTCGGAACCTCAAGCATTGGTCGGCACCACCATCACGCGTTTCTATCGCGAGCGTGACTTTGAATGGAACGACAACATCACCCAGGCCGAGCTACATGGCAACTTCGAACTGGCCGGCTGGCAGCATCAGACGCTGGCGGGACTGGAGTATGAAAACTACCGCAACAGCCAGAAGTACCCCCAGAGCGCCACGCTTGCAAGCTATGGCTTGGATATCTACAACCCCGTTTATGGTCAGCCCAAGCCGGCCCTGACCCGCGCCAACGATTTCCACGAGCACACCGAGAGCTACGCGCTCAATTTGCAGGACCAGATCGCCTTTACCGATCGTCTGCGCGGATTGATCGGCGTGCGCCTGGAGCGCATCGAGCAGACTTCGCTGAATCGCACGACAGCTGTCAGCAACAGCCAGGAAAAAGACGTCGCCACTCCACGCGTTGGGCTGCTTTACCAATTGGCACCACAGGTCGGCGTATTCGCCAACGCGTCCACGTCTTTCAAGCCCAATACCATCGGCACGCAAGGCCAGGTCTATAAACCGGAAAAAGGCCTGGGTTATGAAACCGGTTTAAAACTGGACCTGTTCGACAGCCGTATTGGCGCGACCATCGCTCTGTTTCACATCGACAAGGAAAACGTCGTGACAACCGACGCGCTCGGTGAAAGTGTCGCAGCCGGTGAGGCTCGCAGCCAGGGCCTGGATCTGCAGTTCAGCGGCCAGATCACCGATGCCCTGCGTGTTATCGGTGCTTATGCCTACATCGACGCCGAGGTGACCAAAGGCGACTCCGCGCTACCCAAAGGCAGCGACCTGTTAGGCATCGCCCGCAACAGCGGTAGCCTGATGGGTGTTTATGAGTTTCAGGACGGCGCCTTGCGTGGATCGGACATGGGCGCAGCCTTCAACTATGTCGGCGAACGCTCAGGCCAGGCTGGCAGTAGCTTCAAACTGCCGTCGTATAGCACTGTCGATCTGCTCGCGCACTACAAAGCCAGCGAAGACGTTACGCTCGGGCTGAACCTGAACAATCTGTTCGATCGCAAGTACTACGAACGATCCTATAACAGTGCCTGGGTCCTGCCCGGAGAGCCGCGTAACCTCAGTGTGAGTCTGAGCCTCGACCTCTGA	MLCYYIFMGEFILKHHVPLLTGFTLGLLGQPISAAQPLTLNALTITGSTVEERADGPVQGYRATRSSTATRTDSDIRDTPQSIDVIPAQVIKDLNTTRIDRALDFAGGVSRQNNFGGLTFLNYSVRGFTTGELYKNGFAINRGSYSAPDTSNIERIEVLKGPAASLYGRGDPGGLVNIVTKRPQAEAFSNLNISAGTWDRYRSSLDVNSPLDSEGNLLARVNMAIEDNGSFRDHVDSQRRIISPSLSWQISPDTRLMFDTEFSRTESVFDRGIPAVNGELGSVKRSTFMGEPNDGQIRNDNQTIDLALEHYLNDNWKVRLANHYTQGTLNGASSEPQALVGTTITRFYRERDFEWNDNITQAELHGNFELAGWQHQTLAGLEYENYRNSQKYPQSATLASYGLDIYNPVYGQPKPALTRANDFHEHTESYALNLQDQIAFTDRLRGLIGVRLERIEQTSLNRTTAVSNSQEKDVATPRVGLLYQLAPQVGVFANASTSFKPNTIGTQGQVYKPEKGLGYETGLKLDLFDSRIGATIALFHIDKENVVTTDALGESVAAGEARSQGLDLQFSGQITDALRVIGAYAYIDAEVTKGDSALPKGSDLLGIARNSGSLMGVYEFQDGALRGSDMGAAFNYVGERSGQAGSSFKLPSYSTVDLLAHYKASEDVTLGLNLNNLFDRKYYERSYNSAWVLPGEPRNLSVSLSLDL	PGPT0003790_24425	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014	NA	NA
D1-36_02185	516	fecI_3	COG1595	putative RNA polymerase sigma factor FecI	ATGCGCAGCGATGAACCACTAGGTACTGCAGATCTAGGGCTGCTCTATCGAACCCACCACTCGTGGTTGCACGGCTGGCTAATCCGACGCATTGGATGTCGCGATAACGCAGCAGATTTGGCGCAGGACACCTTCGTACGCCTGCTCAAATCCCGTCAGCCCAGCCCCTTGCGTGAACCACGCGCCTATTTGAGCAGTATCGCCCGCGGGTTGATGATTGATCAGTATCGCCGTCGCGAACTCGAACGTGCCTACCTGGAGAGCGTCGCATTACTGCCTCAACACGAGGTTCCCTCGGAAGAAAGCCGACTGCTGATTCTCGATACGCTCGAGCGGATAGATCGCATGCTCGATATGCTTAAACCGAGAGTTCGCCAGGCGTTTTTATTTGCCCGGCTCGACGGCTTGACCTGCGCGCAAATAGCCGAAAAGTTGGGTGTTTCCCGTGCGACGGTGGAACGCGATCTGGCCACCGCCCTGCAACACTGTTATCGCTTGCGTTATGTCGAGGCGTGA	MRSDEPLGTADLGLLYRTHHSWLHGWLIRRIGCRDNAADLAQDTFVRLLKSRQPSPLREPRAYLSSIARGLMIDQYRRRELERAYLESVALLPQHEVPSEESRLLILDTLERIDRMLDMLKPRVRQAFLFARLDGLTCAQIAEKLGVSRATVERDLATALQHCYRLRYVEA	PGPT0003900_364	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003900-prhI|fecI-K23514	NA	NA
D1-36_02186	981	fecR_2	COG3712	Protein FecR	ATGTCGAGGCGTGAGTCCCAGACGCTGGATCCGGCCGTTGTCGACCAGGCGATCTACTGGCAGGTGCGCCTGCGCTTCGATCAGCCAGATGAGCAAACACAGCGCACATTTGAGCACTGGCTGCAGCAGTGCCCGGAGCACGTGTTGGCGTGGCAGCGCGTGGAAGCGCTTGGGGATGAATTCGCAGGCGTGCCAGCTCAACTGGCCCGGCAAACCCTTAATGGGACCAATCATGGAATGCGGCGGCGGGAAAGCCTGAAACTCCTGGGCATATTGGCGACTGTTGGCACTGCAGCCTGGCTCGGCCGGGACTACACACCCGTACCCGCCATGCTTGCGCAGCAGCGCAGCAGTACCGGCGAGCAACGGCGCTTCCAACTCGATGATGGCAGCCTAATCCAGCTCAATAGCGATAGCGCCGTCGACAGCGATTTCGACGCCCAGCGACGTCTGATAATCCTGCGACGTGGTGAAATCATCGTGAATGTCGGCGCGGATCAACACTCGCCTCGAGCGCGACCGTTCTGGGTGCAATCACGTGACGGGATCATGCGCGCTCAGAGTTCCCGCTTTCTGGCACGCGAGTTCGACGATGGCACGCTGGTCGCGGCTCAGGAAGGATCAGTCACGGTTTTCCCCGGCTCCAGTCAAACGCCTGCCAGCCGCAGTGTTCAGGCAGGAAATCAGCTGCTGTTCACATCAAGTGGGGCCCGAATGTTCAAAGGCAACGGCCTTGATCTATGGAGCTGGGGTGACGGGGTGATCAGTGCGCGCAATATGCGCCTCGATGATTTCATCGTGGAGTTGTCGCGCTATCGCCCCGGGGTACTGCGCTGCGCCGACGAGGTCGCGGATCGTCGCGTTTCCGGCACCTTCCAACTCGCCGACAACGATCAGGTCCTGGCATTGATCGCGCAGTCACTGCATTTGCACGTTGATTATCGGACCCGTTATTGGGTGACCGTGACCGCTGCCACCTAA	MSRRESQTLDPAVVDQAIYWQVRLRFDQPDEQTQRTFEHWLQQCPEHVLAWQRVEALGDEFAGVPAQLARQTLNGTNHGMRRRESLKLLGILATVGTAAWLGRDYTPVPAMLAQQRSSTGEQRRFQLDDGSLIQLNSDSAVDSDFDAQRRLIILRRGEIIVNVGADQHSPRARPFWVQSRDGIMRAQSSRFLAREFDDGTLVAAQEGSVTVFPGSSQTPASRSVQAGNQLLFTSSGARMFKGNGLDLWSWGDGVISARNMRLDDFIVELSRYRPGVLRCADEVADRRVSGTFQLADNDQVLALIAQSLHLHVDYRTRYWVTVTAAT	PGPT0003910_4157	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165	NA	NA
D1-36_02187	2391	fhuA_2	COG1629	Ferrichrome outer membrane transporter/phage receptor	ATGAGTTCGTCCCCTGTTTCCCAGCGCCATCCATTAAGTCGTGCCTTGCACGGTGCGATTTTGGGGCTGATCGTAAGCAGCTACGCCTTGCCATCGCTGGCGCAAACGCCGAGCGCTGACCACAGCAATCAGGTCAGGCAGTGGAACATCGCTGCCGGCCCGCTGGCGCCGGCGCTTGACCGCTTTGCGCGCGAGGCTGGCATCAGCCTTTCCTTCGACGCGTCGAGTGTAGCGAACCGTACCACTGCTGGCGTGAATGGCACGCTCGATACGTCGGCAGCGCTGTCATCCTTGCTACAGGGAAGCGAATTGCAAATCCAACAGCAAGGCCCGAATGCCTATCTACTGTTCCCTCAGCCTACGCCCGCCGGCCCGCTGGAACTCGACACAACGTCCGTCGAGGACTATCGCCTTGCGCCCCTCATCATCAATGCCAAGGTCAGGGTCAGTGCCGACGACGACGCCAACTCGGTTGTCGCCAAGGAACTCTGGGTGGGCGGCAAGGTGGCAACCAGCATTCTCAATACACCGGCATCGGTGTCGGTTGTTACCAACAAGGAAATGGAACAACGCAGCGTCAGCACCACGGAAGAGGCGCTGCAATACACCCCCGGTGTGGTCAGTGACTTCTATGGTACGGATGACCGCAACGACTATTTCCAGATCCGGGGCTTCCAGGCCACCACCTACCGTGACGGCTTGACCCTGAGTTCGATGCGCGGCGTACGCGAAGATCCATTCGCTTACGAACGCATAGAGATTTTGCGTGGCGCCAACTCCACGCTGTTTGGCCCAGCGGACCCGGGCGGTTCGGTGAATTTCGTGACCAAACAGCCGCGCTTTGAGCAGTTTGGCCAAGGCTATGTGACCTACGGTTCGTTTGACCATGTCGAGACAGGCATCGATGTGGGGGATGCGCTGAACGACGAGAAAACCTTGGCTGGCCGCTTTACTGCCAAAGGCCAAAACAGCGACCGCGAGTACGATCACTCACAGGACGACAACCAGTTGCTGATGGGTGGCCTCACCTGGGCGCCCACGGATTACACGTCAGCCACCGTGATTCTGGACTATCTGAAAACCGAAAGTTCGCCCAACAGTGGCGGCTATCCGCTGGACAAGGAATACGACCGCAGCAAGTTTTATGGTGAGCCGAGCTACAACTTTCACGATGTCGAGCGCACCAGCCTCAGCGGTAACGTCACCCATGACTTCGACAACGGCTTCGTATTGCGCAGCAATCTGCGTTACAGCAAATTGACCGATGATTTTGGCTACGTTTACATCAGCGACAGCGCCGCGCGTGTCGGTACTACCGTTGACCGGTACTTGTTTGGAACGGACAGTGAGGCCGACCAGTTCAACGGCAACCTGATGCTGCAATACGATGCCCGCTTCGAGAACATCGACAGCAGCAGCCTGGTGGGCGTGGAATACCTCGATTCGACTACCAAGGAAAGCTCGGTCTACGCCCTGACGACCCCGATTGACGTTGCAAATCCCGTGTTTACTGGCGTTTCACGCTCTATCACCCCGTATGCGGTCAACAAGCGAGACGCGACCACCAAGGCCGTATTTCTTCAGCAGAACCTATCGTTCTACCAGCGTTTCATCGTCACCGCCGGTATGCGCAACGATTCGATGGACCTTACCAGCAAAGGCTTGCAATCGTCCGAAAAAGACAACTTCTCCGAAACCTCCTACCGAGGTGCGTTGACCTATATCGTCAACGATGAGGTGTCCACCTATGTGAGCATGGTGGAGTCCGTCTCGCCGCCTCAGGTTGGCGTAACACCGCAGACCGGCAGGCAGTACGAAGTGGGCGTGAAGTATGCGCCGATGGGGATGGACGCACTGTTCTCCGCGGCCGTTTATGACTTGACCCAGGAAAACGTCACCATCGCCGTGGTGCTGCCGAGCGGCATCATCGAGCAACAGACGGTGGGCGAATCGCGGGCGCGTGGCCTCGACCTGGAGGCCAAGGCGCAGGTGACGCAGAACCTCAGCCTGATTGGTGGCTACTCCTATATGGAGTCCGAGGTACTGCGCGGTTCGTTGTACGACGGCAGCTCCCTGAAGGGTAATGAGTTCACCACGGCACCCAAGCATTCCGCTTCGCTCTGGAGTTATTACGACGTGCCCGGCACTGATGTCAGCGTTGGCTTGGGCGCGCGCTACGTCGGCTCTTATTACTTCGATGCAGCCAACTCCGGCAAAAGCGATGGCGCCACGCTGTTCGACGCCGCGTTCAACTACGAGATCGCCAAGGGCACCGACCTTGCGGTGAACGTCAGCAACCTGCTGGATGAGCAGCACGTGGTCGGTTCCGGCACAGCGAACTTCTACAACCCGGGTCGCGAGATTACCGCCAAAGTGAGTTACAGCTGGTAA	MSSSPVSQRHPLSRALHGAILGLIVSSYALPSLAQTPSADHSNQVRQWNIAAGPLAPALDRFAREAGISLSFDASSVANRTTAGVNGTLDTSAALSSLLQGSELQIQQQGPNAYLLFPQPTPAGPLELDTTSVEDYRLAPLIINAKVRVSADDDANSVVAKELWVGGKVATSILNTPASVSVVTNKEMEQRSVSTTEEALQYTPGVVSDFYGTDDRNDYFQIRGFQATTYRDGLTLSSMRGVREDPFAYERIEILRGANSTLFGPADPGGSVNFVTKQPRFEQFGQGYVTYGSFDHVETGIDVGDALNDEKTLAGRFTAKGQNSDREYDHSQDDNQLLMGGLTWAPTDYTSATVILDYLKTESSPNSGGYPLDKEYDRSKFYGEPSYNFHDVERTSLSGNVTHDFDNGFVLRSNLRYSKLTDDFGYVYISDSAARVGTTVDRYLFGTDSEADQFNGNLMLQYDARFENIDSSSLVGVEYLDSTTKESSVYALTTPIDVANPVFTGVSRSITPYAVNKRDATTKAVFLQQNLSFYQRFIVTAGMRNDSMDLTSKGLQSSEKDNFSETSYRGALTYIVNDEVSTYVSMVESVSPPQVGVTPQTGRQYEVGVKYAPMGMDALFSAAVYDLTQENVTIAVVLPSGIIEQQTVGESRARGLDLEAKAQVTQNLSLIGGYSYMESEVLRGSLYDGSSLKGNEFTTAPKHSASLWSYYDVPGTDVSVGLGARYVGSYYFDAANSGKSDGATLFDAAFNYEIAKGTDLAVNVSNLLDEQHVVGSGTANFYNPGREITAKVSYSW	PGPT0003790_11153	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014	NA	NA
D1-36_02188	411			hypothetical protein	GTGACCTGCGCGGCTCCCGCCTACGTAAAGAAACATGGTTTACCAGCCACGCTGGATGATCTGCAGGCGCACCTGGCTGTCAACTTCATGGTTGAACAGCGCCGCCAGATCATGCCCTGGCGGTTCAGGGGCAACGGTAAAATTATCAGTGTGAAGATGCGCAGCGGCATCGTCGTCGACAACGCAGAGGCATTGCTTTACTGCGCATTGGCGGGGATTGGGATGGTGCAGGGGCTGCGCCCGGCGCTGCAGCGATACATCGATAGCGGGCGTCTGGTGGAAGTTCTGCCGGATGTTCCAGTCGAGCCGAAAACCGTTTCCGTGTTGTTTCCGGATCGCCGTCATCTATCACCCAATGTGCGGGTATTTGTCGAATGGGTGAGTGCGTTGTTCCAAGAGAAGAGGCATTAG	MTCAAPAYVKKHGLPATLDDLQAHLAVNFMVEQRRQIMPWRFRGNGKIISVKMRSGIVVDNAEALLYCALAGIGMVQGLRPALQRYIDSGRLVEVLPDVPVEPKTVSVLFPDRRHLSPNVRVFVEWVSALFQEKRH	PGPT0028940_507	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028940-bpeT-K18900	NA	NA
D1-36_02189	585			hypothetical protein	TTGTCCAGGCCGTCGCCCACCGACACTATCGGCCGGCAACCTTCGGTTACGTTGAGTCTGACGCTACAGAATCCAGGAGTTACCGTGACAGAGAAAGAGCTGTACTGGGAAGACTTCACGCCAGGTAGCCTCTGGACGGCCAAGCAATCTGCGCCTATTACAACGCAGGCGATCATTGCCTTTGCCGCAGAGTACGATCCTCTCGATATTCACATAGATCCTGACCTTGCCCGTTCGAGTCCGCTTGGCGTGCACTGTGCCAGTGCAGTGCAAACCTTCGGTATTTCGCAGCGGCTGATGTGCGACGCCTTGCTGCTTCAAACCAATGTCGTGGCGGGTGGCAAGATCGATGGTTTCAGGATGGTTGCTCCGGTGGTGCCCGGAGACACGCTCAAGCTATCCGTTCAAGTCGTTCGATCATTCATTCATGCGTCAAATCATCAACGGGGCTGGGTCGTGTTTAAGGTCGATGTCACCACCCATTCCGGAAAAACAGTGCTTGTTTATGAGGTGGCCGTATTGATATTGCGAAGGGGCGACCGACCTTATTGCAGAAGGCATCGATTGTTCCGTGCGGCTCGGTGA	MSRPSPTDTIGRQPSVTLSLTLQNPGVTVTEKELYWEDFTPGSLWTAKQSAPITTQAIIAFAAEYDPLDIHIDPDLARSSPLGVHCASAVQTFGISQRLMCDALLLQTNVVAGGKIDGFRMVAPVVPGDTLKLSVQVVRSFIHASNHQRGWVVFKVDVTTHSGKTVLVYEVAVLILRRGDRPYCRRHRLFRAAR				NA	NA	NA	NA	NA
D1-36_02190	1026			hypothetical protein	GTGCTCATCCAGGATAAAGGAACGACTTCAATCGGATTGGTGCATGAGGCCCTGGAGGGCGCGTTGCGTCGCCAGCTGGACACCTCCCTTGCACTGCAGCAAGCACGTATCGACCCTGTACTCCTCACTTCCCCCCAAGCCAGGGTTTCGGCTGCAGCATTTTCTCGGCTGTGGGTCGCGCTCTCGGATCTGCTCGACGATGAGTTTTTCGCAATCGATAGCCATCCCATGCGACGGGGCAGCTTCCGATTGATGTGCCAGTCGTCGATTGACTGCGAGTCGTTAGAGCAAGCGTTGCGACGGATTCTGAAATTTTTGCGTCTCGTACTGGACGATATTCACGGTGAGCTGAGTTTTGATGGCGACTTCGCCGTTATCGTTATCCATGACAACGCCATTGAACGTCGTCTCTTTAGTTATGGAACATGGCTGATCCTTGTCCATGGACTGCTCTGCTGGTTGGGTAACAGACGCATTCCCATTAAAGAGCTCTGCTTCAGGCCGAATCGACCACTCGACGATAGCGACTATCGGATGCGCTTCTGTGAAGACATTCAGTTTGGTGCGCCAGTGACGATGATTCGTTTCGAGCGCAGTTTTCTAAGCCTCAAAGTCGCGCAAAACAAAGCCAGTCTATCGGCGTTCTTGAAGGAGTCGCCTGCCAGTCTGCTGGTGAAATATCGTAACGAGGACAGCATCAGCGCCCAGATCCGCCTCAGATTGAGAGGCCTCGATCCGGAGCAATGGCCAGAGCTGGACAAGATGGCAAGCACGCTGTGCATGTCTTATTCGACGCTCCAGCGAAGACTGCAGGCCGAGGGGGTCAGTTATCAGCGTTTGAAAGACAATCTGCGCCGTGACATGGCGATCAATCTGTTGTGCCAGCCGAATATGACCGTGACTGAAGTGGCTGCCCTCACGGGTTTCCAGGAAAGCAGTGCCTTTCATCGTGCATTCAAAAAGTGGACGGGCGTGAGTCCCGGCGCTTACCGCCGCTCCAATGCTGACGAATCGGGCGAGATTTAA	MLIQDKGTTSIGLVHEALEGALRRQLDTSLALQQARIDPVLLTSPQARVSAAAFSRLWVALSDLLDDEFFAIDSHPMRRGSFRLMCQSSIDCESLEQALRRILKFLRLVLDDIHGELSFDGDFAVIVIHDNAIERRLFSYGTWLILVHGLLCWLGNRRIPIKELCFRPNRPLDDSDYRMRFCEDIQFGAPVTMIRFERSFLSLKVAQNKASLSAFLKESPASLLVKYRNEDSISAQIRLRLRGLDPEQWPELDKMASTLCMSYSTLQRRLQAEGVSYQRLKDNLRRDMAINLLCQPNMTVTEVAALTGFQESSAFHRAFKKWTGVSPGAYRRSNADESGEI				NA	NA	NA	NA	NA
D1-36_02191	1344	genK	COG0477	Gentisate transporter	ATGCAGCCGGTAAACGTCTATACACTCGCGGTTGAATCAAAGTTCAACCGCTTCCATGGGCTCATCCTGTTTTGGTGTGTGCTCATTCTGATCATCGATGGTTATGACCTTGCGGTCGTCGGTGCAGCCCTTCCGGCGATCATGAAGGACATGAACGTCGATCCAACCAGCGCCGGCGTCATGGCGGGCTCTGCGCTCTTCGGAACGATGCTGGGGGCCATTTTTCTTGGCACGCTAGCCGATCGTATCGGGCGTCCCAGGATGATCGCCATCTGCGTGGCCTTGTTCAGTATTTTCACGGCGGCGGCAGGCCTCACCAGTGACCCGATCAGCTTCAGCGTAGCCCGCTTCATCGCCGGCCTTGGCATCGGCGGCGTACTGCCTATCTGCACCGCTCAGATGGGTGAATTTTCTCCACTCAAACTGCGTACTCGGCTGGTCACCCTGGTTTTCGCGGGGTACTCCGTGGGCGGAATCCTGGTCGCGCTGACGGGTAAGCAACTGATCGAGAGTCATGGATGGCAATGGGTGTTTTATGTGGCGTTGCTGCCCGTGGTGCTTATTCCCCTGATCCTGAAGACCATGCCTGAATCCATCGGCTACCTGCTCAAGACCGGACGTCAGGACGAACTGCGAGCGATCGCTCGTAAACTGGACCCTGCTCTCGTTATCGACGAAAACACGCTGATGACTGGGAACGCCACGGTCCTGGATAAGCAGCAAGCACCGGTTCGTAACTTATTCAGGGAGGGGCGGGGCTTCAGCACTTTAATGATCTGGGCCGCGTTCATGACGGGCCTGTTCATGGTCTACGCCCTTAACTCCTGGCTAACCAAGCTGATGGCGATGGCTGGATTCAGCCTGGGTTCTGCGTTGAATTTTGTGATTGTTTTCAACTTGGGAGCCATCGCCGGTGCAATAGGCGGAGGGTGGTTGAGCGACAAGCTGAACATCAAGCACGTATTGGTCTGCTTCTATATCGTCGGTGCGATTGCACTCACCGTTTTGGGTTATACGCGTTCAACGTCGTTGCTGTTTCCAGTGGTGTTCATCGTCGGCGCATCGACCCTGGGAACTCAATTGCTGGCGTATGCGTACGCCGGCGATTTCTACCCGTCATCGATTCGTTCAACCGGCGTGGGTTTCGCGTCTGGTGTGGGACGAATAGGCGCAATCGTCGCCCCTGTCCTGATTGGCTGGCTGGTGTCGTTGAACCTTGCGCTCGAGAAAAACTTCATGGCCATCAGCCTGGCTGGCCTCATTGGCGCTGTCGCCGTAACCCTGATCAATCAGTCACGCGCCGACTCTACCCAAGTCAGAAAATCCCCGGCCCTGTCGAACTGA	MQPVNVYTLAVESKFNRFHGLILFWCVLILIIDGYDLAVVGAALPAIMKDMNVDPTSAGVMAGSALFGTMLGAIFLGTLADRIGRPRMIAICVALFSIFTAAAGLTSDPISFSVARFIAGLGIGGVLPICTAQMGEFSPLKLRTRLVTLVFAGYSVGGILVALTGKQLIESHGWQWVFYVALLPVVLIPLILKTMPESIGYLLKTGRQDELRAIARKLDPALVIDENTLMTGNATVLDKQQAPVRNLFREGRGFSTLMIWAAFMTGLFMVYALNSWLTKLMAMAGFSLGSALNFVIVFNLGAIAGAIGGGWLSDKLNIKHVLVCFYIVGAIALTVLGYTRSTSLLFPVVFIVGASTLGTQLLAYAYAGDFYPSSIRSTGVGFASGVGRIGAIVAPVLIGWLVSLNLALEKNFMAISLAGLIGAVAVTLINQSRADSTQVRKSPALSN	PGPT0005390_380	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_BENZOATE|DERIVATE_DEGRADATION	XENOBIOTIC_BENZOATE-DEGREDATION-BENZOATE_TRANSPORT,PGPT0005390-benK-K05548	NA	NA
D1-36_02192	747	cnbA		Chloronitrobenzene nitroreductase	ATGAAAATGAATCGCTTATCCAAACCGCCCATACCGCCTGAACCGCTTGCTCAAACGGTTGATTGGGCGATCGCTTCGCGCCGCAGTATTCGGGCTTTCTTGCCCACTCCTGTACCGCGCGAAGACATTGAGGCGATCCTTGATGTCGCTCGGTTCTGCGCTACGGGGGTGAACATGCAGCCTTGGCGCGTGCATGTCGTCACTGGAGAAGCAAAGGCTCGTCTTTCATGCGCCATCGCGGAAATTGACAACGATCCATCACAGAGCAACGACCTTGAAGATGCCTATGACTATTACCCACGCGAGTGGACTTCACCCTACGTGGATCGGAGAAGGCAGGTCGGGTGGGAGCTCTATGGGCTGCTGGGCATTGAAAAGGGAGACAAGCAGCGGATGCATGCGCAACACGGCCGCAATTACCAGTTCTTCGACGCCCCAGTCGGCCTGATCTTCACCATGGATCGGGTGTTGAAGGAAGGCAGCCTTCTTGACTACGGCATGTTTCTACAGGCCGTGATGGTCGCTGCGCGTGGAAGGCATCTGCACACCTGCCCACAAGCCGCTTTTTTGAAATATCACCAGGTCATTTCGCAAGCCCTTGCGATTCCCTCGGATCAAATGCTGGTTTGCGGAATGAGCCTTGGATACGCCGACGAGAGCAGCATCGAGAACACCTTGGTCACTGATCGGGAGCCGGTGAGCGCGTTCTGCACTTTTCATCACAATAATAAGGAAACAACATCATGA	MKMNRLSKPPIPPEPLAQTVDWAIASRRSIRAFLPTPVPREDIEAILDVARFCATGVNMQPWRVHVVTGEAKARLSCAIAEIDNDPSQSNDLEDAYDYYPREWTSPYVDRRRQVGWELYGLLGIEKGDKQRMHAQHGRNYQFFDAPVGLIFTMDRVLKEGSLLDYGMFLQAVMVAARGRHLHTCPQAAFLKYHQVISQALAIPSDQMLVCGMSLGYADESSIENTLVTDREPVSAFCTFHHNNKETTS				NA	NA	NA	NA	NA
D1-36_02193	1653		COG0318	Long-chain-fatty-acid--CoA ligase	ATGACCCCTGGTGCTTATGAAAGTGGGCTTGATCGCTGCAAGGCCAACTATCTGCCCCTGACGCCACTTGGTTTTCTGGATCGGGCAGCCCTTGTGCACCCGGATCGGGTAGCGGTGGTGCATGGCGAACTGCAACGAACCTGGCGTGAAACCCGCGAACGCTGCTATCGACTTGCCTCGGCACTTTGCGAAAAAGGCCTGGGAGCAGGGGACACCGTTTCAATTCTGTCTCCTAATACTCCTGCCATGCTCGAAGCGCATTTCGGGGTCCCCCTCAGCGGCGCGGTACTCAATGCGGTCAACTACCGCCTCGATGCCGAAGGTGTGGCATTCATTCTGCGTCATGGCGAATGCAAGTTGCTGCTGGTGGATCGAGAGTTTGCTGCGCTTGCGAAGGCTGCATTGGCACTCCTCGAACATCCCCCGATGGTGATTGATATCAATGATCACCTGGCGCCACTTTGCGCGAGTGTCGCAGACATTGACTACGAAACCTTCATCCGCAGCGGCAGCCCTGATTTCGAAGGCGTCTGGCCGGATGATGAGTGGCAGCCGATAGCACTCAACTACACCTCCGGTACAACCGGTGATCCAAAGGGCGTCGTCGCGAGCCATCGTGGCACCTACCTCATGAGTCTGCTGCAGATGACCAACTGGCCGCTCACGCGGGCGCCTCGTTACCTGTGGACATTGCCGATGTTCCACGCCAACGGATGGTGTTTTACCTGGGCGATCACGGCTGTGGCCGGCACGCACGTCTGCCTGAGAAAAGTGTGCGCAGAGACGGTGTTCGATGCGATCGATAACCACGGTGTCGATCACTTCTGTGCGGCGCCGATTGTCATGGCCATGATTGCCAACGCCGAAGACCGCCCCGCGCTCAAGACGCCGGTTCGAGTGTTGACTGCTGGTTCTCCACCTCCGGCCAGCATACTCAACGCAGTTGTTTCACGAGGCTTCGACGTGGACCACGTGTACGGAATTACCGAAGTGTCCGGTACGCCGATCAGCTGCGTCTGGCAAGACGGTTGGGACGATTTAACGCCCGGTGAGCAAGGCGCTTTGCGAGTACGCCAAGGGGCTCGTGCAGCCGCCTTCGAAGGTTTGATGGTGGCTGACGCCGATACGATGCGGCCAGTCGCAAAAGATGGCCAGACAACGGGTGAGCTGCTGCTCAGGGGCAACACCGTAATGATGGGTTATCTGAAGAATGACATTGCAACCCGAAAAGCATTCGAAGGCGGTTGGTTTCATACGGGTGATGTCGCCGTCGTGCACCCTGACGGCTACGTCCAGATTACCGACCGGTGCAAAGACGTGATTATCTCCGGTGGGGAAAATATTTCGTCTGTAGAGATCGAGGAGGCGATCCACTGTCACCCGTCTGTTCTGTATGCCGCGGTAGTCGCTCAGCCGGATGACAAATGGGGTGAAGTACCGTGCGCGTTTGTCGAGCTGAAAACGGGCGTCGAGCCTCCCACCGAAGCAGAAATAATGGAGTTCTGCCAAGCACGTCTGGCTCGATTCAAATGTCCGCGCAGGGTGGTCTTTACGGTGTTGCCGAAAACCGCAACCGGGAAAATCCAAAAGTTTGTACTTCGTGAGCAGGCAGGCAGTCGCGATGCCATTGTCCGTTTGGCTTCGAATGGCTAG	MTPGAYESGLDRCKANYLPLTPLGFLDRAALVHPDRVAVVHGELQRTWRETRERCYRLASALCEKGLGAGDTVSILSPNTPAMLEAHFGVPLSGAVLNAVNYRLDAEGVAFILRHGECKLLLVDREFAALAKAALALLEHPPMVIDINDHLAPLCASVADIDYETFIRSGSPDFEGVWPDDEWQPIALNYTSGTTGDPKGVVASHRGTYLMSLLQMTNWPLTRAPRYLWTLPMFHANGWCFTWAITAVAGTHVCLRKVCAETVFDAIDNHGVDHFCAAPIVMAMIANAEDRPALKTPVRVLTAGSPPPASILNAVVSRGFDVDHVYGITEVSGTPISCVWQDGWDDLTPGEQGALRVRQGARAAAFEGLMVADADTMRPVAKDGQTTGELLLRGNTVMMGYLKNDIATRKAFEGGWFHTGDVAVVHPDGYVQITDRCKDVIISGGENISSVEIEEAIHCHPSVLYAAVVAQPDDKWGEVPCAFVELKTGVEPPTEAEIMEFCQARLARFKCPRRVVFTVLPKTATGKIQKFVLREQAGSRDAIVRLASNG				NA	NA	NA	NA	NA
D1-36_02194	1308	nicP_1		Porin-like protein NicP	GTGAGCCTGAAAAAAATAACTGCAACGTTGGTGTCTGGCAGCATCGCCCTCAGTGGCCAGGCCTTTGCCGACTTTCTAAGTGATAGCAAAGCCACCTTGGGCATGAGGAGCTTCTACTTCAATAACGACAACCGCGATGGTGTCGCTGCCCCTTCAAAAACCGAAGAGTGGGCGCAGGGCTTCATGCTGGACTTCAAGTCGGGTTATACCGAGGGCGCCGTTGGTTTTGGTGTTGATGCCCTTGGGTTGCTGGGCGTCACCCTGGACAGTGGCAAGGGACGTCACGTTGGCAGTTCGATGATTCCCTCGGACAGTGACAACCGCGCCGTCGACGAGTGGAGCCGGCTGGGACTGACCGCGAAGGTCAAAATGTCCAGGACCGAACTGCGCTACGGCACCTTGATTCCGAAACTTCCGATTCTGGTCGCCAACGATGGACGGGTGCTTCCACAAACCTTCGAGGGCGGCCAAATGACTTCGAGCGAGTTCAAGGACTTGACCCTGACGGGTGGGCGAATTGAACGGGCAACCGGTCGTGCCTCAACGGATCAGACGGGGCTCGCCGCTATGGGCGGTACGCGTCAAAGCAACCAGTTCGCCTTCGCCGGGGGTGACTGGAAAGTCACCAAGGACCTGACGGCTCAGTACTACTATGCCCAGCTCGAAAACTACTACAACCAACAGTTTTTCGGACTGACGCACACCCTCGCGTTCTCGGACAGTCAATCGTTGAAAACCGACCTGCGTTACTTCAGGACTGACGCGTCAGGTGAAAACAGTTCCGGTACATCGGGCTACCGAATCAGCGGTTACACCAAAAACGGAGATGGCGTTATCGACAATCGTCTCTGGAGTGCTGCATTGATCTACAGCATCGGCGCTCATGCGATGACGGCGGGTTACCAAAGCGTCTCGGACGGTAGCAGCTTCACCCAGCTCAATCAGGGTGGCCTGATAGATAAAGGCGCAGCAGGCAGCTCCTTATACCTGCACACAGATCGTCTGATCCAGAGTTTCACCCGTGCAGGGGAGCGCACAGTATTCGGTCAGTATGTCTATGACTTCGCCGCCCTGGGTGTCCCGGGCCTGAAAGCCTCGGTCATGTACCTCTCCGGTGACAACATCAAGACGAGATCCGGTGACGATCAGAAAGAATGGGAGAGGGATATCTTTCTGGACTACGTCATTCAGTCGGGAGCGCTCAAAGGGGTTGGCTTCGGCTGGCGTAACGGTAAATCCAATAGCGAAGCCGCCCGTGACCAGGACCATAACCGGGTGTTTGTCAGCTACAGCATTGCGCTGCTCTAA	MSLKKITATLVSGSIALSGQAFADFLSDSKATLGMRSFYFNNDNRDGVAAPSKTEEWAQGFMLDFKSGYTEGAVGFGVDALGLLGVTLDSGKGRHVGSSMIPSDSDNRAVDEWSRLGLTAKVKMSRTELRYGTLIPKLPILVANDGRVLPQTFEGGQMTSSEFKDLTLTGGRIERATGRASTDQTGLAAMGGTRQSNQFAFAGGDWKVTKDLTAQYYYAQLENYYNQQFFGLTHTLAFSDSQSLKTDLRYFRTDASGENSSGTSGYRISGYTKNGDGVIDNRLWSAALIYSIGAHAMTAGYQSVSDGSSFTQLNQGGLIDKGAAGSSLYLHTDRLIQSFTRAGERTVFGQYVYDFAALGVPGLKASVMYLSGDNIKTRSGDDQKEWERDIFLDYVIQSGALKGVGFGWRNGKSNSEAARDQDHNRVFVSYSIALL				NA	NA	NA	NA	NA
D1-36_02195	501			hypothetical protein	ATGCGGCTTATGATCCTGCTGATCGGTGCACTACTGAACTTCCACGTGTTGGCGCAGGAGTCAGCCCAATCAAAAGCTCTGGATCAACCTAAAGATCTAAACCAGCCGGCGATGAAGTGGACCCTGCTGGATCAGAACGAGAAGGCGTATACCTTGAACGACAGCGCTCAGGTGCTGTTGATAGCGCGCAGTATGTCGGCCGCCAAGTTAGTGGATGCGGCGATGGACGGTCACCCGGAGGGCTATCTGGAAGCGCGCCACATTGTGTACCTGGCGGATATCGAGAAGATGCCTTCCATGATCAAGCTGGTGGCAGTACCGGCCATGCGTTCGGCCAAATACAGAATTATGCTCGACCAGGACGGCAGGGTTGCCACCCGCTATGGCGGCGACCGGGACACCGTTCAGTGGCTCGCCTTGAACAATGGCGCGGTCGTCAATGAGCAGCGTTTTGCCGACGCCGAAAAGTTGAAACAAGCAATCGCCGAGCAGGCCAAGTAG	MRLMILLIGALLNFHVLAQESAQSKALDQPKDLNQPAMKWTLLDQNEKAYTLNDSAQVLLIARSMSAAKLVDAAMDGHPEGYLEARHIVYLADIEKMPSMIKLVAVPAMRSAKYRIMLDQDGRVATRYGGDRDTVQWLALNNGAVVNEQRFADAEKLKQAIAEQAK				NA	NA	NA	NA	NA
D1-36_02196	918	crtE		Geranylgeranyl diphosphate synthase	ATGACCATCGAGCCTGACGCAACCGTCGAATATGGGTTTAGCGAACGTTTGGAAGATGTGCGCGCGGCTATTGAGCAGCGTCTGGACCAACTGCTGCCGAGCAGCAGCGACGAGCGCGACCTTGTCGCGCTGGCCATGCGTGACTCCACGCTGGCGCCCGGCAAGCGGATGCGGCCGATTCTGTTGATACTGGCTGCACAAGGCTTGGGGCACGGTGGTGATCAGGCACTGGAATTGGGCTGCGCCGTGGAATTGATCCACGCAGCGTCACTGGTTCTGGACGACATGCCGTGCATGGACAACGCCCGATTGCGCCGTGGGCAGCCGACCGTGCACCTGAAGTTTGGCGAAGACGTGGCGATTCTTGCCGCCGTTGCCCTCCTCAGCCGCGCATTCGGGGTGGCCGCCGGGATTACCGATCTGGCACCCGCAATCCGCATGCAATTGGTGGAGGTCATGGCCAATACCGTTGGCATGCAGGGTCTGGTCAAGGGTCAGTTCAAGGATCTGCGTGACGGCCAGAAAAACCGCCCCCCCGAGGAAATTGCACTGACCAACAACCTCAAGACGGGGGTACTGTTTAGCGCGATCATGGACATGGCCTGGCTGATCAGTGGTGCCAAAGCTCACACACGCCCGATCTTGCAGGACTTCGCCGTTGAGCTGGGTCAGGCGTTCCAAATGCATGATGACCTTTTGGATCGTTGTCCGGACAGCAATAAGGACCAGGGCAAGGACGAGGGCAAGTCGACGTTCATTGCGCTTTACGGCGAGCAAAAAGTCCGCGAACAGCTAGAGGCTCATCTAATGAGCGCCGAAAGCCATTTGCGAGAAGTTTTCGGGCCCTCGCGAATGATCACCTGGTATGTGCGGATGATCTTCGAGAAAGCGGTGCGACAACGTGGCGCAAGGCTGTAG	MTIEPDATVEYGFSERLEDVRAAIEQRLDQLLPSSSDERDLVALAMRDSTLAPGKRMRPILLILAAQGLGHGGDQALELGCAVELIHAASLVLDDMPCMDNARLRRGQPTVHLKFGEDVAILAAVALLSRAFGVAAGITDLAPAIRMQLVEVMANTVGMQGLVKGQFKDLRDGQKNRPPEEIALTNNLKTGVLFSAIMDMAWLISGAKAHTRPILQDFAVELGQAFQMHDDLLDRCPDSNKDQGKDEGKSTFIALYGEQKVREQLEAHLMSAESHLREVFGPSRMITWYVRMIFEKAVRQRGARL	PGPT0007560_1161	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007560-crtE|ispA-K13789	NA	NA
D1-36_02197	1056	fni	COG1304	Isopentenyl-diphosphate delta-isomerase	ATGACCGAGCATCCCTTAAGTCGGAGAAAGGATGATCATCTCAATATCGTGCTGGACGGCCGTGGTGTGAGCCATAACCCACGACAGGGTGGCGGCAACGGGCTGGATGCCTTTCAGTTCGAGCATTGCGCGTTGCCCGAGCTGAATCTGAACGACATTGACCTTGCCAGCGCGCTGGTTGGGATCCCCCTCAGAGCGCCCTTGCTGATCAGTTCCATGACCGGCGGGGCGCAGCGTTCTTCGGCCATTAACCGCCATCTGGCTGAGGCCGCCCAGGAGCTTGGCATCGCCATGGGCGTAGGTTCGCAGCGCGTCGGTCTGCGCAGTGGCAACGATCAGGGCTTGACCCGTGAGCTGCGGCGGCTGGCGCCCGACATCCCGTTACTGGGAAATATCGGCGCGGCACAGTTATTGGAAAAGGATGGCCAGGAGTTGGCGCGCCGCGCCGTGGAGACTTTGCAGGCCAACGCTTTGATCATTCATCTGAACCCGTTGCAGGAAGCCGTTCAGGCCGAAGGTGATCGGGATTGGCGAGGCGTGCTGGATGCCATCGGGCTGACGGTGCAAAGTCTCGGCGTGCCGGTGATCGTCAAGGAAGTCGGGGCGGGTATATCGGCATCGGTGGCGGTGGCCCTGGCTGGAGTCGGGGTCAGCGTGATCGATGTGGCAGGCAGCGGCGGCACCAGTTGGGCAGCGGTAGAGGCTGAACGCGCCAGCAGCCCCGCCGATCGCGAGGTGGCAATGGCGTTTGCCGATTGGGGTATAACGACGTCCACCAGCCTGATCGGCGTGCGTGAGGCATTGCCCGGCATGACGCTGATTGCATCCGGCGGCATTCGCAACGGCGTGGATGCGGCCAAGGCGCTGTGTCTGGGGGCCGACCTGGTAGGGCAGGCGGCCGGAGTGCTGCGCGATGCGACGGTGTCGACAGCGTCGGTCATCGAGCATTTCGACATCGTCATCAAGCAGCTGCGCATTGCCTGTTTCTGCACCGGTTCCGGAGATCTGGCGGCATTGCGTCAAGCCAGATTACTGCCACCGGTTCATCGCCCATGA	MTEHPLSRRKDDHLNIVLDGRGVSHNPRQGGGNGLDAFQFEHCALPELNLNDIDLASALVGIPLRAPLLISSMTGGAQRSSAINRHLAEAAQELGIAMGVGSQRVGLRSGNDQGLTRELRRLAPDIPLLGNIGAAQLLEKDGQELARRAVETLQANALIIHLNPLQEAVQAEGDRDWRGVLDAIGLTVQSLGVPVIVKEVGAGISASVAVALAGVGVSVIDVAGSGGTSWAAVEAERASSPADREVAMAFADWGITTSTSLIGVREALPGMTLIASGGIRNGVDAAKALCLGADLVGQAAGVLRDATVSTASVIEHFDIVIKQLRIACFCTGSGDLAALRQARLLPPVHRP	PGPT0007530_706	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007530-idi-K01823	NA	NA
D1-36_02198	1299	crtX		Zeaxanthin glucosyltransferase	ATGAGCCATTTCGGCGTGGTGACCCCGGCGTTCCATAGCCACTTCCAGGCCTTTCAGGCGCTGGCGGTAGAGCTGTTGAATCGTGGGCATCAGGTCACGTTCTTCCAGCAGGCCGACGCGCGCCGTTGGCTGGGTGATTCGCGCATCGGTTTTCATGCGATGGCTGCTAGCAGCCATCCACCGGGGAGCCTGGACGCTGTGCTGCAGCGCGCGGCCAGCTCTAATAACCCGCTGACCTTGCGGCGGGTTATTGCCGATATGTGTGCAACCACAAACATGCTGTGTAATGAATTACCCGCGGCGCTGGCTTACGAGCAGGTCGATGCACTGCTCTGCGATCAGATGGAAGCTGCCGGTGGGCTGGTCGCCGAGGCCTTGGGGCTACCTTATGTCTCGGTGGCTTGCGCGTTGCCGGTCAACCGCGAGCCAGGCTTGCCGCTGCCGGTGATGCCGTTTGCCTACGGTCGCGACGAACGTAGCCTACGCATGTACGCCGGTAGCCAGCAGGTCTACGATTGGCTGATGCGACCGCTCAGAGACGTATTGCGGGGTGCATGTCGACGGCTTGCCATCGTGCCTCGCGATGCGCTGCATGAATGCCTTTCTCCGCTTGCCCACATCAGTCAGACCCTTGCGGGATTTGATTTTCCCCGTTTGCAGCAGCCCGCGCATTTCCACGCAGTCGGACCGTTGCGCCTGCCTTTTTCGGGTACGGGGCAACCTTCGCTAGGCAATGAAACCTTCGAGTGGCAGATTGATAAAAATCGACCCTTTGTCTTCGCCAGCCTGGGTACCTTGCAGGGCGGGCGCCTGGGTATGTTCCGGCAGATTGCAAAGGCTTGCCGTCGCCTGGATGCGCAATTGTTGGTCGCCCATTGCGGCAGGCTTGATTCGGTTCAGGAACGCATGCTTCTCGACAGTGGCGCGACCTGGGTCACTGCGTTCGCCCCCCAGCAAGCGGTGCTTGAACACGCCGATGTAGTCGTGACCCATGGAGGACTCAACACCGTGATGGATGCCATAGCCACCACTACGCCGATGCTCGTCATGCCCATCGGTTTTGACCAGCCGGGGGTGGCTGCGCGTGTCAGCTACCGAGACCTGGGCCTGAAGTTGAACCGCCGGGCGAGCGCCGCCACCATTGCTGATGGGCTGGCCCGGCTGCTTGTTCTGCCACGAGAGCCCTTACAGCGGATGGCGGCTGAGTTGCAGCGCGCCGGTGGCGCCAGCAAAGCGGCGGACATCGTTGAGGCGGCGGTGCGTAGCGGCGAACCCGTGCTGACGCAGGCGGTGGCATGA	MSHFGVVTPAFHSHFQAFQALAVELLNRGHQVTFFQQADARRWLGDSRIGFHAMAASSHPPGSLDAVLQRAASSNNPLTLRRVIADMCATTNMLCNELPAALAYEQVDALLCDQMEAAGGLVAEALGLPYVSVACALPVNREPGLPLPVMPFAYGRDERSLRMYAGSQQVYDWLMRPLRDVLRGACRRLAIVPRDALHECLSPLAHISQTLAGFDFPRLQQPAHFHAVGPLRLPFSGTGQPSLGNETFEWQIDKNRPFVFASLGTLQGGRLGMFRQIAKACRRLDAQLLVAHCGRLDSVQERMLLDSGATWVTAFAPQQAVLEHADVVVTHGGLNTVMDAIATTTPMLVMPIGFDQPGVAARVSYRDLGLKLNRRASAATIADGLARLLVLPREPLQRMAAELQRAGGASKAADIVEAAVRSGEPVLTQAVA	PGPT0007475_137	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007475-crtX-K14596	NA	NA
D1-36_02199	1179	crtY		Lycopene beta-cyclase	ATGAACTATGACCTGATCCTCGCCGGTGGTGGGCTGGCCAATGGGCTGATCGCCTGGCGGCTCAAGCAGTTGCGCCCTGAGTTACAGGTGCTGTGCGTTGAAGAGCAGGCCCGGATCGGTGGTAACCATACCTGGTCCTTTCACGACTCGGACTTGACGGCCGAGCAACATCAGTGGATCAGGCCCTTGGTGGTTCAAACCTGGCCTGCCTACGAGGTGCATTTCCCGGGGCGTTCGCGACGGCTGAACAGCGGTTATGCCAGCATCACCTCCGAACGCTTTGCCCAAGTGATCGAACCGGCGCTCAGTGACGAGGGGCGGGCAGGGTTGCGTGTGTCACAGCGGATCGAACAGATCACCCCGACTTCGCTGTTGCTGGAGGACGGCGAACAGCTGTGGGCCAAAGCCGTCATCGACGGGCGTGGCGTCCAGCACAGCGAACATCTGGTGCTGGGCCAACAGGCGTTCCTGGGTCAGGTGCTGCAGCTACAGGCCCCTCATGGGCTGGACGTGCCCATCATCATGGACGCCCGGGTGGCTCAAGGACAGGGCTATCGTTTCGTCTACGTCTTGCCGTTTTCAGCCGACACGGTGCTGGTGGAGGACACCCACTACGTTGACCGCCAGAGCTTTTCTTCAGAACAACTGCGCCAGCATGTCCGTGATTATGTGCAAGATCGCGGATGGATCATTGCCCGCTGCCTTCGCGAAGAGCAAGGCGTGTTGCCGATCACCCTGGCAGGCGACTTTTCCGGCTTCTGGCGCGAGGCGCCCGGCCAGCCGCGTTCCGGTTTGCGGGCCGGTCTTTGCCATTGCACAACAGGTTATTCGTTGCCCCAGGCGGTGCAACTGGCGGACTGGGTCGCCCGCCAGCAGAACCTGCAGGCGGACGCCTTATACCTTGGCATTCGCGCATTCGCTGAACAGGCGTGGCGGCGCCAGGGGTTTTACCGTTTGCTTAATCGCATGCTGTTCCTGGCAGGCAAACCCCAGGACCGCTGGCGGGTGATGCAACGTTTTTATGGTCTGCCCGAGGGGCTGATCAGGCGTTTCTATTCGGGCGACAGCACGCTGCAGGACAAGCTTAGAGTGCTGATCGGCAAGCCGCCTGTTCCCATCAATGAGGCCCTGCACGCGGCACGTCGCTGCCTGCCTCGGCATTACAAGGATCAAGCATGA	MNYDLILAGGGLANGLIAWRLKQLRPELQVLCVEEQARIGGNHTWSFHDSDLTAEQHQWIRPLVVQTWPAYEVHFPGRSRRLNSGYASITSERFAQVIEPALSDEGRAGLRVSQRIEQITPTSLLLEDGEQLWAKAVIDGRGVQHSEHLVLGQQAFLGQVLQLQAPHGLDVPIIMDARVAQGQGYRFVYVLPFSADTVLVEDTHYVDRQSFSSEQLRQHVRDYVQDRGWIIARCLREEQGVLPITLAGDFSGFWREAPGQPRSGLRAGLCHCTTGYSLPQAVQLADWVARQQNLQADALYLGIRAFAEQAWRRQGFYRLLNRMLFLAGKPQDRWRVMQRFYGLPEGLIRRFYSGDSTLQDKLRVLIGKPPVPINEALHAARRCLPRHYKDQA	PGPT0007410_361	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007410-crtL1|crtY|lcyB-K06443	NA	NA
D1-36_02200	1491	crtI	COG1233	Phytoene desaturase (lycopene-forming)	ATGACCCAGGGGAAAAGCGCGATTGTGATTGGCGCAGGCTTTGGTGGCCTGGCACTGGCGATCCGGCTGCAGGCGGCGGGCGTGCAAACCACCTTGCTGGAAAAACGCGACAAGCCCGGCGGCCGCGCCTATGTGTATCACGACGAGGGATTCACTTTCGATGCCGGGCCGACGGTGATTACCGATCCCACCGCCATCGAGGAATTGTTCACAGCGGCCGGCAGATCCATGCGTGACTACGTCGAGATGCTGCCGGTCTCGCCGTTCTATCGCTTGTGCTGGGAGGACGGTACGCAGTTTGACTATGCCAACGATCAGGCCGAGCTGGACCGCAATATCTCCAGGCTCAACCCCAAGGATGTTGAAGGCTACCAGCGGTTTCTGGCGTACTCCAAGGCGGTTTTTCGCGAGGGTTATCTCAAGCTGGGCGCCGTGCCGTTTTTGTCGTTTCGGGACATGGTCAAGGCCGGGCCGCAGCTAGCTCGGCTGCAGGCGTGGCGCAGTGTCTACTCGATGGTTTCTGAATTTATCGAAGACGAAAAACTGCGCCAGGCGTTTTCGTTTCACTCCCTGCTGGTGGGCGGCAATCCGTTTTCCACCTCATCGATCTACACCTTGATCCATGCACTGGAGCGCGAATGGGGCGTGTGGTTTCCCAAGGGAGGGACGGGGGCGCTAGTGCAGGGGCTGGTGAGGTTTTTCGAAGACCTCGGCGGGCGTTTCGAGCTCAATGCCGACGTCGCCAGCATCGAGGTGCAAGCGGGCAGGGCCAGCGGCGTGCGCTTGAAAAACGGTCGCTTGCTGAATGCCGACTGCGTCGCTTCCAATGCGGACGTGGTGCATACCTATGAGCAACTTCTGGGCGGCCATGCCCGTGGCATCAAGGAAAGCGCGCGCCTCAAAGGCAAGCGTTTCAGCAACTCGCTGTTCGTCATCCATTTCGGCCTCAAGCGGCCGCAACCTCAGCTTCGACACCACACGGTCTGCTTCGGGCCGCGCTACCGGTCATTGATTCAAGAAATATTCAATGGCGCTGAGCTGGCTGAGGATTTCTCGCTCTACCTGCATGCGCCCTGCATCACGGATCCGAGTCTCGCCCCGCCGGGCTGCTCCAGCCACTACGTGCTCTCGCCGGTTCCTCATCTGGGTAACGCGCCTATCGACTGGGAGGTAGAGGGGCCACGCTACCGTGATCGGATTTTCGCGTATCTGGAAAAACACTACATGCCTGGCCTGCGGGAAGATTTGGTGACCAGTCGGATTTTCAACCCGGATGATTTTCGCAGTGAGTTGAACGCACATTTGGGTTCGGCGTTTTCACTTGAACCTGTCCTTTGGCAGAGTGCCTGGTTCCGGCCCCATAACCGCGACGCGAGCCTTGGCAACGTTTACCTGGTGGGCGCGGGCACTCACCCCGGTGCGGGCGTCCCCGGTGTCATCGGCTCGGCCAAGGCCACGGCAGGTTTGATGCTGGAGGATCTGCACTCATGA	MTQGKSAIVIGAGFGGLALAIRLQAAGVQTTLLEKRDKPGGRAYVYHDEGFTFDAGPTVITDPTAIEELFTAAGRSMRDYVEMLPVSPFYRLCWEDGTQFDYANDQAELDRNISRLNPKDVEGYQRFLAYSKAVFREGYLKLGAVPFLSFRDMVKAGPQLARLQAWRSVYSMVSEFIEDEKLRQAFSFHSLLVGGNPFSTSSIYTLIHALEREWGVWFPKGGTGALVQGLVRFFEDLGGRFELNADVASIEVQAGRASGVRLKNGRLLNADCVASNADVVHTYEQLLGGHARGIKESARLKGKRFSNSLFVIHFGLKRPQPQLRHHTVCFGPRYRSLIQEIFNGAELAEDFSLYLHAPCITDPSLAPPGCSSHYVLSPVPHLGNAPIDWEVEGPRYRDRIFAYLEKHYMPGLREDLVTSRIFNPDDFRSELNAHLGSAFSLEPVLWQSAWFRPHNRDASLGNVYLVGAGTHPGAGVPGVIGSAKATAGLMLEDLHS	PGPT0007405_687	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007405-crtI-K10027	NA	NA
D1-36_02201	1002	crtB	COG1562	15-cis-phytoene synthase	ATGAATCGCGATGCTAACCAGGACCAAGTCCTGCTGGAGCATGCCGAACGCAGCATTGCTGTGGGCTCGAAGAGCTTTGCCGCGGCCTCGCGCTTGTTCGACCCCTCGACCCGGGCCAGCGCCATGATGCTCTATGCGTGGTGCCGGCATTGCGATGACGTGATAGATGGTCAGGAGGCGGGGCATTCGGCGACCGTGTTGAACCAGTTCGACATTGAACGGCGCCTTGCCGACCTTACCGCTCAGACTTGGGCGGTGTACGCCGGGTTGCCTGTGCAGCACGAAGCCTTCGCTGCTTTCAGAGAGGTGGTGGTCAAACATCGCATTCAGGAGCGTTATGCCCTGGAGCACCTGGCGGGTTTTGCGATGGATGTACACCAGCGCCGCTATCAGAGCGTAAACGACACCTTGGACTACTGCTACCACGTGGCCGGGGTCGTCGGGCTGATGATGGCTCAGGTCATGGGCGTCAGCGACCAAAAGACATTGGACCGCGCCTGCGACCTGGGCATGGCGTTTCAATTGACCAACATTGCCCGGGATATCGTCGAAGACGCTGCCGTCGGCCGGTGCTATCTGCCACGAGACTGGCTGGATGAGCTTTCGATCCCCGAGGCGTCACTTGCCGACGATCAGCATCGGCCCGGTCTGGCCATCCTCGCGCAACGGCTGGTGCAGCTGGCCGAGCCTTTTTACGCCAGTGCCGAGGCGGGATTAAGGGCATTGCCGTGGCGCTCCGCGTGGGCGGTGGCGACTGCGTCGGGTGTCTATCGGCAAATTGGCATCAAGGTCTCAAGGCGGGGCGAGCATGCCTGGGATACGCGGGTGTCGACCTCGAAGGTCGACAAGTTGCGGCATGTGCTCGGCGGCCTGTGCCGCGCCGTCACTGCTCGCGGGCGTCACTGGCCTGAGCGTCTGCCGAGCCTGTGGCAGCGCCCGGATCATTCTTGCGAAGAGGTCCGCCATGCAGATCGCGCAACTGAACCCGAAGCACCGCGGTAG	MNRDANQDQVLLEHAERSIAVGSKSFAAASRLFDPSTRASAMMLYAWCRHCDDVIDGQEAGHSATVLNQFDIERRLADLTAQTWAVYAGLPVQHEAFAAFREVVVKHRIQERYALEHLAGFAMDVHQRRYQSVNDTLDYCYHVAGVVGLMMAQVMGVSDQKTLDRACDLGMAFQLTNIARDIVEDAAVGRCYLPRDWLDELSIPEASLADDQHRPGLAILAQRLVQLAEPFYASAEAGLRALPWRSAWAVATASGVYRQIGIKVSRRGEHAWDTRVSTSKVDKLRHVLGGLCRAVTARGRHWPERLPSLWQRPDHSCEEVRHADRATEPEAPR	PGPT0007375_597	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007375-crtB-K02291	NA	NA
D1-36_02202	534			hypothetical protein	ATGACGAACGCACTGGTTTTTTTCGCGACCCTTATCGGTATGGAGGGTTTTGCGTTTCTCGCCCACAAATATGTGATGCACGGCTGGGGCTGGGGCTGGCACCGCTCCCATCATGAGCCCCGCACCGGCTGGTTCGAGAAAAACGACCTGTACGCGATCGCGTTTGCGCTGATCGCCATCGTACTGATCGCGCTTGGCACCCAGGGCATGCACCCGCTGGAATGGATAGGGGCCGGGATGACGGCTTACGGTTTCCTGTACTTTCTGGCCCATGATGGGCTAGTCCACAAACGCTGGCCATTGAAGTACGTCCCCCGCACCGGCTATCTCAAGCGTCTGTATCAAGCGCATTTGATGCACCATGCCGTGTCGGGCAAGGACCGCTGTGTCTCATTCGGTTTTCTCTATGCCCCACCTACCGCGGTGCTTCGGGTTCAGTTGCGCGATCTGCATGGCGGACCTCTTCGCAAGAATGATCCGGGCGCTGCCACAGGCTCGGCAGACGCTCAGGCCAGTGACGCCCGCGAGCAGTGA	MTNALVFFATLIGMEGFAFLAHKYVMHGWGWGWHRSHHEPRTGWFEKNDLYAIAFALIAIVLIALGTQGMHPLEWIGAGMTAYGFLYFLAHDGLVHKRWPLKYVPRTGYLKRLYQAHLMHHAVSGKDRCVSFGFLYAPPTAVLRVQLRDLHGGPLRKNDPGAATGSADAQASDAREQ	PGPT0007485_277	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007485-crtZ-K15746	NA	NA
D1-36_02203	1251	yfeW_2		Putative D-alanyl-D-alanine carboxypeptidase	ATGCACTCATCCGCGATTTTTCGTGCGACTGCGACTGCGTCTGGTCGCTCGCTGCTTCTCTCACTGGGTCTGCTCGCTGCGGGTATCACCTCGGGCGCATGGGCTGAGGATTATCCCCACGCCAAGGAACCGATTGGCACGGTGGAGCAGATCTATGACGGCGCCATGCTCCCGGATCTGGCGGTCAGTACCTACCGCAACATCGACCGGCTTTTCCCCACCCACAGGATCAAGGCCGGCGATCACCCGTATGCACTGCCCAAATCAGACAAACAGTTGCCCAACGTTCGGTTCACTGTCGGGGACAAAAAGTACGACCTGTATGACTTTGTCGCACTGGACAGCATTACGGCGATGCTCGTGCTCAAGGACGGCAAGATCGTGTTCGAGACCTATCAGCGTGGCAACACGGAGAAAACCCGATGGATGTCGATGTCGATAGCCAAATCCATCACCTCCACGCTGGCGGCTGCAGCGATCAAAGACGGCCTTATCAAGAGCCTTGACGCGCAAGTGGTGGATTACGTTCCCGAGCTCAAGGGCAGCGCCTACGAAGGCGTGACCGTGCGCGACGTGCTGATGATGTCTTCGGGCGTGAAGTGGAACGAAACCTACACCGATCCGGCGTCTGATCGTCGCGCGCTACTCAAAGCGCAGATTTCGCAGAAACCGCGTTCTGCCATGGCCTTGATGGCAAGTTTGCCGCGAGCGGCCGAGCCCGGCACGGCCAACACGTACAGCACTGGCGAAACGCAGGTACTCGGCGAGATCGTCCGTGGCGCTGTGAAGATGCCACTGGCCGATTATCTATCGCAGAAGATCTGGCAGCCGTTCGGTATGGAAAGTGATGCCCGGTGGTGGCTCGATTCGCCTGACGGCGTGGAAATCGGTGGCAGCGGTATCAGCGCCACGCTGCGTGATTATGGACGCTTCGGGCTGTTTTTCATGAACGGCGGCAAGATCAATGGCACCTCGATTCTGCCCGAAGGTTGGGTCAAGGAGGCGACGCTGCCGACCACCCTCAAAGGCGGTAAGACCCTGGACTACGGCTACATGTGGTGGACGGCGTGGACCGAGCCGTCGGTGAAAGACGGCGCCTATGCGGCGGTCGGTATCCAGGGCCAGAACATCTACCTCAACCCTGCCAATAACGTGGTGATTGTCACCTTCGGTGCCCAACCCAAGCCGGTTGACAAAGAGCCGATCGACCCGATGGTGTTCTTCGATGCCGTGGTAGCTGCGTTGAAGTAA	MHSSAIFRATATASGRSLLLSLGLLAAGITSGAWAEDYPHAKEPIGTVEQIYDGAMLPDLAVSTYRNIDRLFPTHRIKAGDHPYALPKSDKQLPNVRFTVGDKKYDLYDFVALDSITAMLVLKDGKIVFETYQRGNTEKTRWMSMSIAKSITSTLAAAAIKDGLIKSLDAQVVDYVPELKGSAYEGVTVRDVLMMSSGVKWNETYTDPASDRRALLKAQISQKPRSAMALMASLPRAAEPGTANTYSTGETQVLGEIVRGAVKMPLADYLSQKIWQPFGMESDARWWLDSPDGVEIGGSGISATLRDYGRFGLFFMNGGKINGTSILPEGWVKEATLPTTLKGGKTLDYGYMWWTAWTEPSVKDGAYAAVGIQGQNIYLNPANNVVIVTFGAQPKPVDKEPIDPMVFFDAVVAALK				NA	NA	NA	NA	NA
D1-36_02204	996			hypothetical protein	ATGCATAACCACGCGCGGTTCCAACTCGCGGCCCTTCTGACAGCCGCCCTGGTCACGGGCGCAACCTACTCACTGTCGTCCACCGCAGCGCAAGCCTCACAGACATCGACCGCAACGACTGCCTCGACCCATAAGCCCGCACACGCAGGCGTCTATGCCTTCAACCTGGGCAAGTTCCGCATCACCGCACTGAGCGACGGGACGCTGCCCCTCGATCTACATCCGCTGCTTAGAGGCATCAGTCCAAAGCAGATCGACGCAATGCTGCAACGCGGATTTGCTCGCAACCCGCTGGAGACGTCTATCAATGCCTACGTTATCGACACTGGCTCACGTGTCGTACTGGTCGATACCGGTGCCGGTGAATTGTTCGCAAGCGTTGGCGGCAAGCTACCCGAAAGCCTGGCGGCTGCGGGTTACCAGCCGGCGCAGGTCAGCGATGTGCTGATTACCCACATCCACACCGATCACTCTGGCGGCCTGACACGCGGCGGCCAGATGATGTTTCCCAATGCGACCATCCACGTCGGCCAGGCCGACGTCGACTTTTTCCTGGACCGCGCCAATCTGGACAAGGGGTTAAAGCCGGCATATCTGGAGGAAGCGTTGAAGACCATTGGCCCGTATCAGCGCGCAGGTAAGCTGAAGCCATTCTCTGCCGAATCCGAAATCCTCCCGGGTATCACTGCCATACCCACGCCGGGACATACCCCGGGCCACAGCTTTTTCCGGGTCACAAGCGAAGGCGAGAGCATCGATTTCTGGGGCGACATCATGCATGTCGGCCTCATTCAATTCTCGAGGCCAGAAGTGACAATAACCTTCGACGTCAATCAGAACGCTGCTCGCGCCCAGCGGCTAGAACAATTCGAGACAGCCGCGAGTGAACGACGGTTGTCAGCAGTCGCTCACTTGCCATTTCCGGGTATCGGCCACATCAGGCGCGAAGCCGGCAGGTATGAGTGGGTACCCGTCCAATACCGCAATCGCGACTAA	MHNHARFQLAALLTAALVTGATYSLSSTAAQASQTSTATTASTHKPAHAGVYAFNLGKFRITALSDGTLPLDLHPLLRGISPKQIDAMLQRGFARNPLETSINAYVIDTGSRVVLVDTGAGELFASVGGKLPESLAAAGYQPAQVSDVLITHIHTDHSGGLTRGGQMMFPNATIHVGQADVDFFLDRANLDKGLKPAYLEEALKTIGPYQRAGKLKPFSAESEILPGITAIPTPGHTPGHSFFRVTSEGESIDFWGDIMHVGLIQFSRPEVTITFDVNQNAARAQRLEQFETAASERRLSAVAHLPFPGIGHIRREAGRYEWVPVQYRNRD	PGPT0006762_2	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_DEGRADATION_OF_ORGANO-PHOSPHORUS_INSECTICIDES	XENOBIOTIC_ORGANOPHOSPHATE_DEGRADTION,PGPT0006762-mpd-NA	NA	NA
D1-36_02205	504			hypothetical protein	ATGCAGCACATCACGAGCGTCACCAGCAGCCAGGCTGCTTCCATTTCCAGTGTTTCGAAACTCCAGAAGGTAAGCCGCGCGATTGTCTTATCGGGTGTTGTTCTTCCCCTGCTAATGATTGGTCTGCTTAAGTCCACACAGATTGAGGTGCAGGCACTCATACCCCTTATCAGCGGCACTCCTTGGCTAGCCTGGCTTTATCCAGTTTTTGGCGAAGCCGGTACCTCTTACTTACTGGGTGTAGTCGAGATATTGACTGCACTGCTGCTTATCGCTTCACCCTGGTCTGCTCGAACAGCTATCGCGGGTGGCTTGTTAGCCTCGCTGATCTTCTTCACGACCATTTCCATGCTGTTTGTATTGCCAATCTGGGAGGCGGGATCGGGAGGTTTTCCATGGCTGAACTTCCTAGGCACGTTCCTGATAAAAGACGTTGCGTTGTTAGGCGTGAGCCTGGTGATCCTCACCGAGGGCCTGCAGCGACTGCGCCCAAACTTGGGATAA	MQHITSVTSSQAASISSVSKLQKVSRAIVLSGVVLPLLMIGLLKSTQIEVQALIPLISGTPWLAWLYPVFGEAGTSYLLGVVEILTALLLIASPWSARTAIAGGLLASLIFFTTISMLFVLPIWEAGSGGFPWLNFLGTFLIKDVALLGVSLVILTEGLQRLRPNLG				NA	NA	NA	NA	NA
D1-36_02206	813			hypothetical protein	ATGTCAGCGCACCAAAGCCTTATTGTCCTAGCACGCGGAGGGTACGCCGCGCGAGGTGTGATTTACCTCATCATCGGTATCTTCGCATTGCTTGCGGCACAAGATTCGACAAAACCGAAAGATAGCCAGAAAAGCCTGGAAGCCTTATTGGGCCAGCCGTTTGGCTATTTTTTAGTTGGGATCGTCGTGGCGGGTTTGCTCGCATTTTCGGCTTGGCGTGTTCTGCAAGCTACCCGTGATGTCGACCACCACGGCAAAAATCTCAAGGGACTGGTAATTCGCACCGGTCTTTTTGCGGGGGGGGTGGTCAATGGTGCTCTGGCATTTTTTGCGTTAGGCCTACTTGTAAGCGGAGTGGGTAGCTCTGGCAACTCAGGAGAACAGAACACAGATTGGCTGGCGCATCTATTGTCCTGGAAGCATTCCAACCTATTGGTGTATCTGCTTGCTCTCATTCCGCTTGGCGTTGGAATTGCTCACATTTACAAGGGATGGAAGGCATCGTTTGAAAAGTATTTCGAGGCTGACGAAGACGTCATGCGGTACGTCCGCCCGGTGTCTCGGTTTGGCCTGATCGCACGTGGCGTCGTCTTTATAGAGATTGCATTGCTGTTGGCCTTTAGCGGCTCGGCCTATCAAGCCATGGATCCACCCGGTATGAAGGAAGCCCTCGACGCACTTCAGGGTTTGCCCGCTGGATGGTTGGTTTTGATGGTGATGGCCTTCGGATTGATTGCTTTCTCGGCATACAGCTTCTCTGAAGCCTTTTGGCGCAAGATAAATATGGAAGTACCCGGATTGTCGAAAGCGTAG	MSAHQSLIVLARGGYAARGVIYLIIGIFALLAAQDSTKPKDSQKSLEALLGQPFGYFLVGIVVAGLLAFSAWRVLQATRDVDHHGKNLKGLVIRTGLFAGGVVNGALAFFALGLLVSGVGSSGNSGEQNTDWLAHLLSWKHSNLLVYLLALIPLGVGIAHIYKGWKASFEKYFEADEDVMRYVRPVSRFGLIARGVVFIEIALLLAFSGSAYQAMDPPGMKEALDALQGLPAGWLVLMVMAFGLIAFSAYSFSEAFWRKINMEVPGLSKA				NA	NA	NA	NA	NA
D1-36_02207	1245	nhaP	COG0025	Na(+)/H(+) antiporter NhaP	ATGCTGGATATCGTTGCTGTCTTTGTGAGTATCACGGCGGTTCTTGCCTTCCTCAATCGCCGTTATGTTGGGCTGCCGCCAGCGATTGGTGTCATGGGCATTGCGCTGGGCCTCTCTGTGCTGAATATGGCGTTGGATGCGATGGGTTTTCATGCACTCCACACGCTTGAGCAATCGTTGGTGGAATCGATCGATTTTTCCGAACTGCTCATGCAGGGGATGCTTTCCTTACTACTGTTCGCTGGAGCGTTGCACGTCGATCTTTCGCAGCTGCGTTCTTACCGGTGGCAGGTGGCTTCTCTGGCACTAGTAGGTACAACAGCCTCCACATTGTTGATTGGCTATGGGCTGTGGCTACTTCTGTCACTAACGTCTCTGGAACTTCCCCTTGCCTACTGCCTGGTATTCGGTGCCCTGATTTCTCCCACGGATCCCATAGCGGTCATGGGTATCCTGAAGTCCGCCGGGGCTCCCAAAAGCGTCGAACTGGTGATAGCGGGCGAATCACTGTTCAACGACGGAGTCAGTGTTGTGCTGTTTTCACTCATTGTGGCGATGATAGCCAGTGGCGAAGCACCGTCGGCGTTGGGCGCATCGAAGTTGCTTCTGACAGAGGCCGGTGGCGGCGTGCTTCTAGGCGCAGCCATTGGATATCTAGCCTATTTGATGCTGAAAAGCATCGACAGCTACCAGGAAGAAATCTTGATCACATTGGCTGCGGTGCTAGGTGGGTACGCGCTGGCGAACCATCTTCATGTGTCCGGCCCCCTGGCGATGGTAGTCATCGGGCTTATCGTCGGAAACCAGGGACGATCCTACGCAATGTCCGAGCAGACTGAAAAACATGTGGACATGTTCTGGGAGCTGATAGACGAGATCTTGAACGCCGTTTTGTTCGTACTGATCGGCCTGGAGGTGGTTCTCATCCAGTTCTCGAACTCCCTGATCGTCACCGGGCTGGCGGTAATAGCACTTACCTTGCTGTCTCGATTGCTTACGGTAGGCGTTCCTATTGCTGCGCTTGGAAGACGCTTTCGTTTACCCAGCGGTTCATGGCGCGTTTTGACCTGGGGAGGTTTGCGAGGGGGCATATCGGTAGCCTTGGCGCTGTCACTGCCAGCCGGAGGCGCGCGGGATATTGTCGTTTCACTCACCTACATGGTGGTGATATTTTCAATTTTGATCCAAGGCATGTCTATCGCAAGCGTGGTTAAACGAGTCATCCCATGCGCGGACACTCAGTAA	MLDIVAVFVSITAVLAFLNRRYVGLPPAIGVMGIALGLSVLNMALDAMGFHALHTLEQSLVESIDFSELLMQGMLSLLLFAGALHVDLSQLRSYRWQVASLALVGTTASTLLIGYGLWLLLSLTSLELPLAYCLVFGALISPTDPIAVMGILKSAGAPKSVELVIAGESLFNDGVSVVLFSLIVAMIASGEAPSALGASKLLLTEAGGGVLLGAAIGYLAYLMLKSIDSYQEEILITLAAVLGGYALANHLHVSGPLAMVVIGLIVGNQGRSYAMSEQTEKHVDMFWELIDEILNAVLFVLIGLEVVLIQFSNSLIVTGLAVIALTLLSRLLTVGVPIAALGRRFRLPSGSWRVLTWGGLRGGISVALALSLPAGGARDIVVSLTYMVVIFSILIQGMSIASVVKRVIPCADTQ	PGPT0013930_1094	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013930-nhaK|TC_CPA1-K03316	NA	NA
D1-36_02208	996			hypothetical protein	ATGACTTCGCTAGACTCAATTGAGCAAAGACAAATCAATCTTACCCACGCGTACGTGGTGAACAATGCGGCGTTGGCCTCGCCGGATTGGCAAAACATGAAGAAACCTTCGCCGACCCAGGTCAAAGACAACATTCTTACGCGCCTTAACGGCTCCAAGTTTGGTGGCGGCTATGACGTAGCCTGGGGACCCGCCCTGGTCCCGGATGGCGAGCATGTGGCCCACATCACGGTGGTGTTGGTCGGCGGGCAGGACAAAAACGACATTGTGGTGGTGACGAGTGGAACCCTCGCCGATTCGGTCAAGGATCAGATAGATGATCTTGATATTTCTTCAATGGTGCCGCTGCAGAGCCTCATCAAGAACTGCCCGGTGCCGGCACACCTGGCGCAGGGAACTGCGGAAGGTGTAAAGGCGATATTGGGTCAGGAATCGACAATCGGTTTCCAGGGCACACTTTGCGATTTTCTGGCGGAACAGCGCAGTGGGGCAACGATCCGGTTGGTCGGGCATAGCCTCGGCGGTGCCTTGATGTCGGTTCTTGCGCTTTATTTGAAAGATAAATTCTCGAACTTTAATTTCCGTTGCGAAACAATTGCTGCACCAACGGCCGGCGACGGTGTTTTTGCAAGCTATTTCAATAAGCAAATGGCCGGCAATGCGCTACGCATCTACAACACGCTGGATGTCGTTCCGATGGCCTGGTGCGCAACCTCTCTCGACTTCTCCTTGACGCTTTATGAGCCGACCAATGTCATCGATGAAAAAATGAAGGGACTGGTTTGCTCCAATATCGATACCGTCACCCGTAATAACTCCAACTACACGCAATGGGGCATGGGCGGCGCAAACATGGAGCTGCGGCTCTGTGGAGAACTTCAATCCCCGTGCCCTAGCTATGAAGCGCAATCGGGCTACCAGCACATCTACGAATACATGACGCTGCTGGGGCTGCAGCTGGGTGATATTCCGATGCCGGCGCCGTCTGGCAGCTAG	MTSLDSIEQRQINLTHAYVVNNAALASPDWQNMKKPSPTQVKDNILTRLNGSKFGGGYDVAWGPALVPDGEHVAHITVVLVGGQDKNDIVVVTSGTLADSVKDQIDDLDISSMVPLQSLIKNCPVPAHLAQGTAEGVKAILGQESTIGFQGTLCDFLAEQRSGATIRLVGHSLGGALMSVLALYLKDKFSNFNFRCETIAAPTAGDGVFASYFNKQMAGNALRIYNTLDVVPMAWCATSLDFSLTLYEPTNVIDEKMKGLVCSNIDTVTRNNSNYTQWGMGGANMELRLCGELQSPCPSYEAQSGYQHIYEYMTLLGLQLGDIPMPAPSGS	PGPT0024445_915	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_LIPASE_ACTIVITY,PGPT0024445-lip|lipC-K01046	NA	NA
D1-36_02209	1902	acoR_2	COG3284	Acetoin dehydrogenase operon transcriptional activator AcoR	ATGCTGATAAAAACAACTCATCCCAAACTTCATCGCGAAGCACGGCTGGCCCGGGAAAAGCTGCACCTCGAAGGCACCGTCCCCGATGGCGTATTGCGTGCGGAAATCGATGCGTCGTGGCGGCGCAGCCTCAGCCATGGCGTGCATTTCAATGCCAAGCAAGAACTGGCGTTGGAGTCGAACGCCAGCCTTGATGTGCTGCTGGAGAGCAATCGCTTGTTGATCGATGCGGCGATGCCGGCCATCGATTATCTGGCCGAACGCCAGGGCAAGGAAGGGCTCATCATCCTCGCCAATTCCGACGCCACCATCCTTGCAGCCGAAGGGCACGCCGACCGTTTCAAAGGCAGTGGCCTGCAAGACATCACGCTGGGGGCTTGCTGGAGCGAAGCGGTGCGCGGCACCAACGCCCTGGGTACCGCACTGGTGGAAGCCCGACCGACGATGATCGATTGCGGCGAACATTACCTTGACCGTCTGACTGATTTTTCCTGCACCTCGGTGCCTATCCATTGCCCGCAGGGCGACATCCTCGGCGTCCTTGACCTGACCCGCGAAGGCCCGCTCGGCCGTGTTCACGACAGCACCGCGTTGCTGACCATGGCCGTCAGCCAGATCGAAAGTCGCGTGTTCAATGCCTGTTACCCGGACCAGATCGTTCTCGCCTTCCACAGCCGTCGGCAGTACCTCGAATCCCCTTGGCAGGGCTTGCTCGCGGTGAGTCTCGGGGGGCAGATTCTCGCGGTCAGCGCCCAGGCGTGTCAGTTGCTTCACGCCGAGCGTTCGGCGCTCGTGGGGCGGCGCTGTGAAGATTTCCTGGGTGTCGATGGCCTGCAGCTGTTATCGCGTCTGCATCAGGGCGGCGTCGGCAGCCTGCAAACCGCCAAGGGTGAATTTTTCTACAAAGCCCTGCGGGCACCGCAGCGCTCGATTAACGTCAGCACGGTATCGCGCACCCCAGCTAAAAGCGCTAAACCACAACCCGATCTAGAATCCCTGGCCGGCAACAATGCCCGTTATGCCCGGGCGCTGCGCATGGCTCGCCAGGGTCTGGCCAATGAATTACCGGTGTTGCTGCAGGGCGAAACGGGCACCGGTAAGGAAGTCATCGCCCGAGCGTTGCATACGGCTGGAGCGCGCTGCGACAAACCTTTCGTGGCGGTGAACTGCGCGGCAATCCCTGAAGGCCTGATCGAGTCGGAGCTGTTTGGCTATCGCGAGGGTGCCTTTACCGGGTCGCGCCGGGGCGGCATGGTCGGGCGTCTGCAGCAGGCCCATGGCGGCACGTTGTTTCTGGATGAAATCGGCGACATGCCGCTGGCCTTGCAGGCCCGTTTACTCAGGGTATTGCAAGACCGCAAAGTCGCGCCGCTGGGCGCTGGCGAAGAGCAAGACATCGACATCGCGCTGATCTGCGCCACGCATCGCGACCTCAAGCGTCTGGTGGAAGACAAACACTTTCGCGAGGATCTGTTCTACCGAATCAACGGCATCAGCGTGATGCTCCCGGCCCTGCGCGAGCGCGACGACTTCACTGGCCTGGTCGACCGTTTGCTGGCCAAGCTCGATGCGCCGACGGTAGTCCTGCATGACGATTTGAACCGGTTGCTCGGCGGCTATCACTGGCCGGGCAACATCCGCCAGCTGGAAATGGTCTTGCGCACCGCGCTGGCCATGCGTGAACCGGGGGAGACTGTGTTAACCCTCGACCATTTGCCCGACAGCACGCTCGATGAGCTCACCGCCGGCGAGCGCCCTCCAAGTGGCAGTATTCGAGAGCATGAACTGGAATTGATTCGTCAGTCCCTGGACACGCACCAAGGTAATGTCTCGGCCGCCGCCGAAGCCCTGGGCATCAGCCGCGCGACCCTGTATCGCAAGCTTAAACAGCTGCGCTCGTGA	MLIKTTHPKLHREARLAREKLHLEGTVPDGVLRAEIDASWRRSLSHGVHFNAKQELALESNASLDVLLESNRLLIDAAMPAIDYLAERQGKEGLIILANSDATILAAEGHADRFKGSGLQDITLGACWSEAVRGTNALGTALVEARPTMIDCGEHYLDRLTDFSCTSVPIHCPQGDILGVLDLTREGPLGRVHDSTALLTMAVSQIESRVFNACYPDQIVLAFHSRRQYLESPWQGLLAVSLGGQILAVSAQACQLLHAERSALVGRRCEDFLGVDGLQLLSRLHQGGVGSLQTAKGEFFYKALRAPQRSINVSTVSRTPAKSAKPQPDLESLAGNNARYARALRMARQGLANELPVLLQGETGTGKEVIARALHTAGARCDKPFVAVNCAAIPEGLIESELFGYREGAFTGSRRGGMVGRLQQAHGGTLFLDEIGDMPLALQARLLRVLQDRKVAPLGAGEEQDIDIALICATHRDLKRLVEDKHFREDLFYRINGISVMLPALRERDDFTGLVDRLLAKLDAPTVVLHDDLNRLLGGYHWPGNIRQLEMVLRTALAMREPGETVLTLDHLPDSTLDELTAGERPPSGSIREHELELIRQSLDTHQGNVSAAAEALGISRATLYRKLKQLRS	PGPT0001030_1208	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,PGPT0001030-acoR-K21405	NA	NA
D1-36_02210	1719		COG1132	Putative multidrug export ATP-binding/permease protein	ATGCTGCGTTTGATCGTTCGGCTGATCGACAGCCAGAACCCTGCGGCCCAGCAAGCGGCGTTGCGCTGGCTCTACGGCTTCGTGCGTCCGCACCGGCTGGCGATTGCCGGGCTGCTCGGGCTGTCGGCCTGCGCCTCGGCGTTGGTATTGGTGCAACCTTGGCTGACCAAGCTGCTGATCGACGATGGTCTGTTGGCGCGCAACTTTACGATGCTGGTGCTGATCGCCGGGTTGATGATGGCCGCCGGGTTGCTGGGCACGGCACTGTCGGGCGTGAATCGATATCTGCACACGCGATTGTCCGGACGGATTCTGTTTGCCCTGCGCGATGACCTTTATCGGCATTTGCAGACGCTCTCGCCGGGTTTCTACGGCCAGCGGCGAATCGGCGATCTGATGTCGCGCCTCGATGGTGATGTCGCGGAGATCCAGCGTTTCGCCGTGGACTCGCTGTTCTCCGCGGTGTCGAGCGTGATCGGTCTGGTGGTCGCCGTGGCGATGCTGGTGACCTTGTCGTGGAAACTCTCGTTGTTGGCCCTGGTACTGATTCCGATCGACGTGCTCTGGCTACGCTGGATGCGCCGTAAGGTCGAGCGCGATGTCCGGCAGTTGCGCGAGCGTTCGGCGGACATGTCCTCATTCATGGTCGAGACCTTGCCGGTGATGAAGTTCATCCAGTCCGCCGGCCAGCAACGGCGCGAAGCACGGCGCCTGGAAACGTTGGGCCAGGGGTACATGAGCCAGCTCTTGCGCTTGCAAGTGACCGAGTTCTTCACACAGGCGGTGCCCGGCACCCTGACGTCGTTGTCGCGGGCCTGTGTATTTTTGATTGGCGGTTACTGGGTGGTGCAAGGGACTTGGCAGTTGGGCGCGCTGATCGCGTTTTCGACCTATCTGGGAATGGCGGTGGGCCCGGTCCAGAGCCTGCTCGGGCTCTATGTCGCGGTTCAGCGGATGACCGTGAGCCTTGGGCGGGTCATGGAACTGCGCGGTGAAGAGCCAACCGTCCTCACTCCGGTTACACCCCAACCGATGCCGGTTTCTGGCGATTTGCGTTTCGATAACGTGCACTTCAGCCATCCCGGTCGCGCGACGACCCTGCGTGGCGTTGAAGCGCAAATTCCCTACGGTTTGAAAGTCGCCTTGAGCGGCGGCTCCGGTGTCGGTAAATCAACCCTGATCGATCTGCTGCAACGGCACCATGATCCGCAATCCGGCCGGGTTTTGCTGGGGGAGGTCGATCTGCGGGAACTGGACCTGTTCCAGCTGCGTCGGCGCATTGCCGTGGTCAGTCAGGACATCGTGCTGTTTCGCGGCAGCCTTGCGGACAACCTGGCCTATGCCGTCCCGGACGCCAGCCGCCAGGCCATCGCCGAGGTGGCGCGGCTGGCTCAGCTCGATAGCCTCATCGAGTCACTGCCCGAAGGTCTCGACAGCCCTTTGGGCGAGCGTGGCCAACAGTTGTCCGGCGGACAGAAACAGCGCATCGCCATCGCCAGGGCGCTGTTGCAGGATCCGTTGATCCTGGTGCTGGACGAAGCGACGTCGGCGGTCGACGAAGCCACCGAGCGCGAAGTGATCGAGGCCATCGACCGGCTGTTCGCCGGGCGCACGCGAATTCTGATCAGCCATCGTCCGTCGACCCTGGCCGATGCCGATCTGCGCTTTGAACTGCTGGATGGCGTGCTCACGTCAAAATCGGTGCAGCATGAAACCTGA	MLRLIVRLIDSQNPAAQQAALRWLYGFVRPHRLAIAGLLGLSACASALVLVQPWLTKLLIDDGLLARNFTMLVLIAGLMMAAGLLGTALSGVNRYLHTRLSGRILFALRDDLYRHLQTLSPGFYGQRRIGDLMSRLDGDVAEIQRFAVDSLFSAVSSVIGLVVAVAMLVTLSWKLSLLALVLIPIDVLWLRWMRRKVERDVRQLRERSADMSSFMVETLPVMKFIQSAGQQRREARRLETLGQGYMSQLLRLQVTEFFTQAVPGTLTSLSRACVFLIGGYWVVQGTWQLGALIAFSTYLGMAVGPVQSLLGLYVAVQRMTVSLGRVMELRGEEPTVLTPVTPQPMPVSGDLRFDNVHFSHPGRATTLRGVEAQIPYGLKVALSGGSGVGKSTLIDLLQRHHDPQSGRVLLGEVDLRELDLFQLRRRIAVVSQDIVLFRGSLADNLAYAVPDASRQAIAEVARLAQLDSLIESLPEGLDSPLGERGQQLSGGQKQRIAIARALLQDPLILVLDEATSAVDEATEREVIEAIDRLFAGRTRILISHRPSTLADADLRFELLDGVLTSKSVQHET				NA	NA	NA	NA	NA
D1-36_02211	678	epr	COG1404	Minor extracellular protease Epr	ATGAAACCTGAGCTGCGGATTGGGGTGGTGGACAGCGGTCATTCAGCCGCGCAACGAGTGCGGGTGATTGCCGGTCGACGGTTCTCGCTGCTGGAGGATGGACTGGCCGAAAGCGATTTACGCGACGATCCGCTGGGTCATGGCAGCGCGGTAATCGAGGCCATCGGCCGACGAGCGCCGGCGGCGGTTTTTTGCATCGCCCAGGTGTTCGACCAGCGAGGCATCACCAGCGCCTTGCAGATCGCTGCCGCTATCGATTGGCTGGTGGCGCAGGACGTGCGGGTGATCAACCTGAGCCTCGGTCTTCGGCAGGATCGCAGCCTGTTGCGTGAGGCCTGTGCCGCGGCGGTGGCGCGGGGTGTTTTGCTGTGTGCGTCCAGCCCGGCCCAAGGCGAAGGGGTGTTCCCAGCGAATTATCCGCAAGTGCTACGGGTGACCGGCGATGCGCGTTGTACCGAACAGCAATGGTCGTGGCTCGACAGCGCCCAGGCAGATTTCGCCGCGTGTGTTCACGGCACCCACCCGGGGCAGTCGGGTGCAAGCCTGGGCTGTGCGGCATTGAGCGGACACATTGCGAGTTTTCTCGTTGAAAATCCCGAGGCGAGCAACGCGCAAATTGTCGAATGGCTGCAAAGAAACGCCTGTTATCACGGCCCTGAACGGCGCGTCGGCCCATGA	MKPELRIGVVDSGHSAAQRVRVIAGRRFSLLEDGLAESDLRDDPLGHGSAVIEAIGRRAPAAVFCIAQVFDQRGITSALQIAAAIDWLVAQDVRVINLSLGLRQDRSLLREACAAAVARGVLLCASSPAQGEGVFPANYPQVLRVTGDARCTEQQWSWLDSAQADFAACVHGTHPGQSGASLGCAALSGHIASFLVENPEASNAQIVEWLQRNACYHGPERRVGP				NA	NA	NA	NA	NA
D1-36_02212	1353			hypothetical protein	TTGTCGAATGGCTGCAAAGAAACGCCTGTTATCACGGCCCTGAACGGCGCGTCGGCCCATGAAGCCGATTGTGATTCTCGGCGCGGGGCCTGCGGGGGCTGCGGTGGCCCTGGGGCTGCGGCGGCTCGGCTACCCGTAACGCTGGTCAGCGAGTGGCGGCGCTTCGCGGCGCTGGAAGGGGTTTCGGCACGGGTGCTGGATGCGTTGCGGGGCGCGGGGCTGCATCAGGCGTTGACGGACGCGGCGCAGCCTTCCCAACGGCAGGTGTCCTGGAACGGTCAGCGGCATGCGCAGAACATTGAGTTTTTGCTGGACCGTCCGAGCTTCGATCGAGGCTTGCGCGAGGATTTGCGGCTGGCCGGCGTCGAGTTGATCGAAGGCCGAGTGCTGACGGTGCAGTCGCACGCTTCGGGGCATCGAATCGAACTGCAAGGGCGCGAAGCGCTGCTCGCGGATTTTCTGGTGGACGCTCGCGGACGTCAGGCACCGGCCCTTGGCAAAGGGCTGCGGGGGCCGGAGACGGTCAGTTTGCTCAATCGCTGGCGAGGCGCGTCGGGTATCACCGCCAGTGCCGTGGAAAGCCTTGGGGACGGCTGGGCCTGGATGGCGCGTCGGGCTGACGGTCAGTGTTACTGGCAATGGACGGTGGACGTGGCCAGTGCCGAGTTGCCGGGTAAGGCGCTGCTGCTCGATCACTGCCGGCAGCGCCGCCAGGATTCGCCATTGGCCCGGGAGTTTTTCGGGAGTGAACCGGAAACCGGACTGCATTTGCATGCCCGCAGCAGCACGGCGATTTTGTGTCCCCACGTCTGTGGCGATAACTGGATTCGGGTAGGGGACGCGGCCATGGCGGTCGATCCACTGTCGGGTAATGGCATTTTTCAGTCGTTGTCTTCGGCGTTGCAGGCGCCTGCGGTGGTCAACACGCTGTTGCGCAAACCTGAGCGGGCGTTGCTGGCGCAGCGTTTTCATCAGCGGCGGGTCGAGCAGCTGTTTTTGCGTTTTGCGCGCATCGGGCGGGATTTTTATGCCGATGAGCAGCGTTGGCCGGACCAGCCGTTCTGGCTGGCGCGGCGTCAGTGGCCGGATGCTGAAGTCGCCCACGCCGAGGGGGATTACGCCACGTTGAGGGTTGAGCGGGCACCGGTATTGCGCGATGGCTTCGTGGAGGAGGCCGAGGTGGTGATCACGGCGGATCAGCCGCTCGGTATCTGGCATCTGCAAGGCGTGGAGTTGGCACCCTTGGTGCGACGGTTGCGCAGCGAGCCAGCCGAGCGTGTGTTGGAGGGGTTGACGGTGGAGCAGGGGAGGATGGTTCGGAGCTGGTTGTCGGGGCAGGGGTTCAAGCCCTGA	MSNGCKETPVITALNGASAHEADCDSRRGACGGCGGPGAAAARLPVTLVSEWRRFAALEGVSARVLDALRGAGLHQALTDAAQPSQRQVSWNGQRHAQNIEFLLDRPSFDRGLREDLRLAGVELIEGRVLTVQSHASGHRIELQGREALLADFLVDARGRQAPALGKGLRGPETVSLLNRWRGASGITASAVESLGDGWAWMARRADGQCYWQWTVDVASAELPGKALLLDHCRQRRQDSPLAREFFGSEPETGLHLHARSSTAILCPHVCGDNWIRVGDAAMAVDPLSGNGIFQSLSSALQAPAVVNTLLRKPERALLAQRFHQRRVEQLFLRFARIGRDFYADEQRWPDQPFWLARRQWPDAEVAHAEGDYATLRVERAPVLRDGFVEEAEVVITADQPLGIWHLQGVELAPLVRRLRSEPAERVLEGLTVEQGRMVRSWLSGQGFKP				NA	NA	NA	NA	NA
D1-36_02213	1491	styD		Phenylacetaldehyde dehydrogenase	ATGCCCCTGCCTAATCTGCTTCCCGCCACCTCGGCCTTCGTCCAACGCGCCCCACGCATGCTCATCGGCGGCGACTGGGTCGAGGCCGCGGACGGCCAGACCATGCCCCTGCACAACCCGGCCACGGGCGAAGTGTTATGCGTGGTGCCACGGGCCACGCCCGAGGATGTCGACCGTGCAGTGCTCGCCGCCCGTCAGGCGTTCGACGATTCGGCCTGGACCCGCACCCGCCCTCGGGAACGGCAGAACCTGCTGTGGAAACTCGCCGATCTGATGCAGCGCGACGCCGAACTGCTGGCGCAACTCGAATGCCTGAACAACGGTAAGAGCGCGGCGGTGGCGCAAGTGATGGACGTGCAGCTGTCTATCGATTTCCTGCGCTACATGGCCGGTTGGGCCACCAAGATCGAAGGTTCCAGCGTTGACGTGTCGCTGCCGCTGATGCCCAACGATCAATTTCACAGTTTCATTCGTCGCGAAGCGGTGGGCGTGGTCGGGGCCATCGTCGCCTGGAATTTCCCGCTGCTGCTGGCTTGCTGGAAACTCGGTCCGGCCCTGGCCACCGGTTGCACCGTCGTGCTCAAACCTGCCGACGAAACACCGTTGACCGCGCTGAAGCTCGCCGAACTGGTGCTGGAAGCCGGTTACCCCGAAGGCGTGTTCAATGTGGTCACCGGCACCGGTGTCACGGCGGGCTCCGCCCTGACTCATAACCCGTTGGTGGACAAGCTGACGTTCACCGGCTCCACCGCCGTGGGCAAGCAGATCGGCAAGATCGCCATGGAATCCATGACCCGGGTCACCTTGGAGCTGGGCGGCAAATCCCCAACCATTGTGATGGCCGACGCCGACCTGAAGACCGCCGCAGCGGGCGCCGCCAGCGCGATCTTCTTCAACCAGGGCCAGGTCTGCTGCGCCGGGTCCCGGCTGTATGTGCAACGCAAGCATTTCGACAATGTGGTGGCGGACATCGCCGACATCGCCAATGCGATGAAACTGGGCAATGGCCTGGACCCCAGTGTCGCAATGGGCCCGCTCATTTCCGCACGTCAACAGGAGCGGGTTTATGGTTACATCGAAAAAGGTCGGGAAAGCGGCGCGACCATCGCTTGCGGCGGTGAGCAATTCGGCCCAGGCTTCTTCGTCAAGCCCACGGTGATTGTGGATGTCGATCAGCGGCATTCATTGGTACAAGAGGAAATCTTCGGCCCGGTGCTGGTGGCGATTCCGTTCGATGACGAAGCCGATGCGCTGCGCCTGGCCAATGACAGCCCTTATGGCCTTGGGGCGAGTATCTGGTCGAATGACTTGGCGGCGGTGCACCGGATGATTCCGCGGATCAAGTCGGGCTCGGTGTGGGTCAACTGCCACAGCGCCCTGGACCCGGCATTGCCGTTTGGCGGCTACAAGATGTCGGGGGTCGGGCGTGAAATGGGGTATGCGGCGATCGAGCATTACACCGAGTTGAAGTCGGTGTTGATCAAGTTGTGA	MPLPNLLPATSAFVQRAPRMLIGGDWVEAADGQTMPLHNPATGEVLCVVPRATPEDVDRAVLAARQAFDDSAWTRTRPRERQNLLWKLADLMQRDAELLAQLECLNNGKSAAVAQVMDVQLSIDFLRYMAGWATKIEGSSVDVSLPLMPNDQFHSFIRREAVGVVGAIVAWNFPLLLACWKLGPALATGCTVVLKPADETPLTALKLAELVLEAGYPEGVFNVVTGTGVTAGSALTHNPLVDKLTFTGSTAVGKQIGKIAMESMTRVTLELGGKSPTIVMADADLKTAAAGAASAIFFNQGQVCCAGSRLYVQRKHFDNVVADIADIANAMKLGNGLDPSVAMGPLISARQQERVYGYIEKGRESGATIACGGEQFGPGFFVKPTVIVDVDQRHSLVQEEIFGPVLVAIPFDDEADALRLANDSPYGLGASIWSNDLAAVHRMIPRIKSGSVWVNCHSALDPALPFGGYKMSGVGREMGYAAIEHYTELKSVLIKL	PGPT0006035_518	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATION	PLANT_LIGNIN_DEGRADATION|LIGNINASES	PLANT_LIGNIN_DEGRADATION-DEHYDROGENASE_ACTIVITY,PGPT0006035-feaB-K00146	NA	NA
D1-36_02214	1581			hypothetical protein	ATGAAGAGAAAACTCCGATCAGGCCTGAGCGCCAGTCTGTTGACCGTGGCGGCCTGTGTAGCGCTGCATTCGCCTTACAGCCTGGCAGCTCGCGACGCCCAGACCATCCTCAGGGAAACCTGTCAGGGCTGTCACATCCCCGAAGCCGATAACGCCCTGAGCCGTATCAGCCACCAGCGCAAAACGCCGGAAGGCTGGCTGATGAGTATTGCCCGGATGCAGGTCATGCATGGTGTGCAGATCAGCGATGACGATCGCCGGACCCTCGTCAAATACCTGGCTGACACCCAAGGCCTGGCGCCCAGTGAGACCGATGGTGTGCGTTATGCCTTGGAGCGACGGCTCAATACCGTCGAGAAGTTCGACGACCAGACCAGCCAGATGTGTGGCCGCTGTCACTCCGGTGCGCGGGTTGCCCTGCAGCGTCGACCTGCCCAGGAATGGGAGCGCCTGGTGAACTTCCACCTCGGCCAATGGCCGTCCCTCGAATACCAGGCCCTGTCCCGCGACCGCGATTGGTTCGATCTGGCCCGCAAAGAGATGGTGCCGCTGCTGGCCAAGCGTTATTCGCTGGACAACCCGGCCTGGAAGAAATGGGTGGAAAGCGCGCCGAAAGCCGAGGCGCTGGTCGGCGACTGGAGCTTCAGCGGGCACCTGCCGGGTAAAGGCGAACTGGCTGGCGTCATGAGCGTGACTGCCGATGGCAGCGACACGTTCAAGGTCAACGTCAAAGGTCAGTATGCCGACGGCAGCCCGTTCAACGGCGATGGCAGTGCGATTCTCTACACCGGTTACGAATGGCGCGGCAACGTGACCATCGATGGCGTAGTCATGCGTCAGGTGTTCGCCGCCCAGGGCAACGCCATGCAGGGTCGGATGTTCGAGGCCGAGCACGACGAGCGGGGCCTGGACTTTGTCGCCGCCAAACAGGGCTCCAAGCGTTTGCTGGCCGTGCAGCCGGGGTATCTGAAGGCGGGCAGCGAAACCGAAGTTACCCTGATCGGCAGCGGCCTGACCGGCAAACCGGATTTTGGTAAAGGCGTGGAAGTGGTTCAGGTGCTTGAGCAAAGTCCGGAGCGCCTGCGAGTCAAGATCAAGGCCGCTGCCAATGCGCAACCGGGCCTGCGCAACGTCGCGCTCGGCACGCTGAAAGGCCCGACACTGTCGGTCTATAGCAAGATCGCTGAAGTCAAAGTCGTGCCCGAATTTTCAGTGGCGCGGATCGGCGAGGGCGGTGGTTCGACGCCAAAAGTCCAGGGCCGTTTCGATGCCGAAGCCTGGGGCAAGGGCGCTGACGGCAAGCCCTATCGCATCGGCGTATTCCCTGCGCAATGGAAGGTCGAGGCTTTCGATGACCGTGCCAAAGAGGATGAAGACGTCAAGTTTGCCGGCACCATGCAGGCCGATACCGGTGTGTTCACCCCAGGCGATGCCGGGCCGAACCCGCAGCGCAAGATGTCCACCAACAATGCCGGCAATCTCAAGGTGATCGCCGCCGTCGACGACGCAGGGAAATCCCTGACCGGCGAAGGCCACATGATCGTCACCGTGCAACGCTGGAACAATCCACCCATTCCATAA	MKRKLRSGLSASLLTVAACVALHSPYSLAARDAQTILRETCQGCHIPEADNALSRISHQRKTPEGWLMSIARMQVMHGVQISDDDRRTLVKYLADTQGLAPSETDGVRYALERRLNTVEKFDDQTSQMCGRCHSGARVALQRRPAQEWERLVNFHLGQWPSLEYQALSRDRDWFDLARKEMVPLLAKRYSLDNPAWKKWVESAPKAEALVGDWSFSGHLPGKGELAGVMSVTADGSDTFKVNVKGQYADGSPFNGDGSAILYTGYEWRGNVTIDGVVMRQVFAAQGNAMQGRMFEAEHDERGLDFVAAKQGSKRLLAVQPGYLKAGSETEVTLIGSGLTGKPDFGKGVEVVQVLEQSPERLRVKIKAAANAQPGLRNVALGTLKGPTLSVYSKIAEVKVVPEFSVARIGEGGGSTPKVQGRFDAEAWGKGADGKPYRIGVFPAQWKVEAFDDRAKEDEDVKFAGTMQADTGVFTPGDAGPNPQRKMSTNNAGNLKVIAAVDDAGKSLTGEGHMIVTVQRWNNPPIP				NA	NA	NA	NA	NA
D1-36_02215	1431			hypothetical protein	ATGGGCGCTATTTTGAATCTGGTCGAACGCAATCTGCACGAAGTGCATGTCGACGCCGACCGCATGCTGTTCCACATTCCCAGCAGCTCGCTGTTCGCCAGCGATGAGCTGACGGGCACCATCATCGACACCTTGCGCGGTCCCGGCTGTTCATCGGACGACCTGATCCAACGCTTGGCCGCACGCTTCAACGGCGAAGAAATCACCGAAACCCTGCGTGAGCTGATCTCCCTGGAACTGGTCAGCGACGGCTCACCGCTGTCGCCGGACATCGGTACCAAACGGGTGGAGCGCACCGCAATCAATACCGTGGTGCTCAACGTCAACACGGGCTGCAATCTGAGCTGCACCTACTGCTACAAAGAAGACCTCGACAAGCCCTCGGCGGGCAAGAAGATGGACGTCGAAACGGCGGTCGCTTCGGTAGAAATGCTGCTGCGCGAATCCCCCGATGAAGAGCGTTTTACTGTGGTGTTCTTCGGGGGAGAGCCGCTGAGCAACCGCAAGCTGATCGAGTACATGGTCGACTACTGTGAAAAGCGGTTTGCCGAGGCGGGCAAGTTCGTCGAGTTCGTCATGACCACCAACGCCACGTTGCTCACCGAAGACACCGTGGACTACCTCAACGCCCATCGCTTCGGGCTCTCGGTGAGTATCGACGGGCCGAAGACCGTGCATGATCGCAATCGCATCACGGTGGGTGGGCAGGGCACGTATGACGTGGTGCGGCGCAAGGCCGAGATGCTGTTGTCGCGTTACAACAGCCGTCCAGTGGGCGCGCGGGTGACCCTGACCACTGGCGTTACCGATGTAGAGACCATCTGGGACCACCTGTTCAACGAACTGGGATTTGCCGAGGTCGGTTTTGCTCCGGTGACGTCCGGTGATATCAGCAGCTTCAACCTTTCCAGCGACGAACTGATCGAGGTCTTCGCCAACATGAAAAAGCTCGGTCGTCGTTACCTGGAAGCGGCACTGGAGCACCGCAACATCGGGTTCTCCAACCTGCACCAGTTGATCACCGACATCCATGAGGGCCACAAGAAAGCCCTGCCGTGCGGCGCGGGCCTGAAGATGCTGGCGGTGGATCACAAGGGCGAATTGAACCTGTGCCACCGCTTTACCGGTTCGAGCCTGCCGACGTTCGGCAACGTTCACAGCGGGGTGAAACAGGTCGAGTTGAATGACTTCCTGTCCCAGCGGCTCGACCGTACCAATACTGGCTGTGAAGACTGCCAGATCCGCAATCTCTGCTCCGGCGGCTGCTACCACGAGAGCTACGCCCGATACGGCGACCCGACTCATCCGACCTACCACTACTGCGAACTGATGCGTGACTGGGTCGACTTCGGCATCGAGGTCTACACCCGGATCATGGCTCACAACCCTGCGTTTATCAGCAGTTACATCACTCCGCGCAAGGCTCACTGA	MGAILNLVERNLHEVHVDADRMLFHIPSSSLFASDELTGTIIDTLRGPGCSSDDLIQRLAARFNGEEITETLRELISLELVSDGSPLSPDIGTKRVERTAINTVVLNVNTGCNLSCTYCYKEDLDKPSAGKKMDVETAVASVEMLLRESPDEERFTVVFFGGEPLSNRKLIEYMVDYCEKRFAEAGKFVEFVMTTNATLLTEDTVDYLNAHRFGLSVSIDGPKTVHDRNRITVGGQGTYDVVRRKAEMLLSRYNSRPVGARVTLTTGVTDVETIWDHLFNELGFAEVGFAPVTSGDISSFNLSSDELIEVFANMKKLGRRYLEAALEHRNIGFSNLHQLITDIHEGHKKALPCGAGLKMLAVDHKGELNLCHRFTGSSLPTFGNVHSGVKQVELNDFLSQRLDRTNTGCEDCQIRNLCSGGCYHESYARYGDPTHPTYHYCELMRDWVDFGIEVYTRIMAHNPAFISSYITPRKAH	PGPT0026880_384	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-ANAEROBIC_SIGNALLING,PGPT0026880-ydeM|yidF|alsB|chuR-K06871	NA	NA
D1-36_02216	324			hypothetical protein	ATGAAACATCTCAAGGCAATCAACAACAAAGCCCAGAAACTCGATCAGGCCGCGGCCGAGAACCGAATCGAAGAAGTGGTGGCGATGAGCTCCGTCGCCGGCTGCGCCTCGACCACCGATCCTGGTTGGGAAATCGACGCGTTCGGCGGCGTGTCGTCGCTGTGCCAGCCGATGGAAGCCGACCTGTATGGTTGCTCCGACCCCTGCTGGTGGCCGGCCCAGGTGCCGGACATGATGAGCACCTATCCGGACTGGAACAAGGATGCCCAGGCGTCCAACGAAAACTGGCGCAACCTCGGCACCGTTTTTCCTAAAGACAAGTGA	MKHLKAINNKAQKLDQAAAENRIEEVVAMSSVAGCASTTDPGWEIDAFGGVSSLCQPMEADLYGCSDPCWWPAQVPDMMSTYPDWNKDAQASNENWRNLGTVFPKDK				NA	NA	NA	NA	NA
D1-36_02217	1119			hypothetical protein	ATGCAATGCATCAAAGCCTGCGGCTTGGCCGCGTTCGGTGTCCTGGGCGTTATCTCATTCGATGTCCTGGCCGATGAAAACACCGCACTGCAAAGCGGTCACGAGTACATGGTGACCACCAATTATCCGAACAACCTGCACGTGATCGACCTGGCCACCGACAGCCTGTTCAAGACCTGCAAGATGCCGGACGCCTTCGGTCCCGGCACCGTGCAACTGTCGCCGGATCGCAAGACCGCGTACGTGTTGAACAACCATTACGCGGATATTTACGGTGTTGAGCTGGACAGCTGTAAACAGGTCTTTCACGCCAGCATCACCCAGAAACCGGGGGAGAAAGCGAAATCCATGTTCGCTTTTACTGTTGGCCACGACGGCAAGGAACTCTTTGCCATCGCCAACCCGACGTTGATGCTCAACGACCGTTACGAAGTACAGCAACCCCGGCTCGATGTGTACGCCACCGATGCCGGCATGAACGCCAAACCTGTTCGCAGTTTTCCGGCACCGCGGCAGCTGACCATCATGCAAAGCGGTGACGATGGCACGCTGTATGTGGCGGGAGCGGATGTCTACAAGGTCAACGTGAACACCGGCAAATTCGACGTGCTGATCCCCAGTCGTCATTGGAAGCGTGAAAACTACAGCGCGCCGGACGTGCTTTATGTGTGGAACCAGCAAACGTACCGCCATGATTTTTCGCTGCTCTATACCGCCGCGAAATTCAAGGACAAGCAGCAGGACCCGGCCACCGCCGAATACCTCTATGGGTTGTTCAGCATCGACCTGAAAACCGGCAAGACCGAAACCACCGACTTCGGCCCTCTGACGGAGATCTATTTCAGTGGCATGCGTTCGCCCAAGGACCCGAACTTGATGTTCGGTGTACTCAACCGTCTGGCCAAGTACGACATGAAGCAGAAAAAACTGCTTCAGGCCGCCACGCTGGACCATTCCTTTTACTGCATTTCGTTCAACAAGGCCGGCAGCAAGATTTACCTGGCGGGTACCTTCAACGACGTAGCGGTGTTCGACGCCGACAGTTTGAAGCAGATCGGCAACATCAAATTGCCCGGCGGTGATATGGCGATTACCACGGCGCAGATATTCACGCGTTAA	MQCIKACGLAAFGVLGVISFDVLADENTALQSGHEYMVTTNYPNNLHVIDLATDSLFKTCKMPDAFGPGTVQLSPDRKTAYVLNNHYADIYGVELDSCKQVFHASITQKPGEKAKSMFAFTVGHDGKELFAIANPTLMLNDRYEVQQPRLDVYATDAGMNAKPVRSFPAPRQLTIMQSGDDGTLYVAGADVYKVNVNTGKFDVLIPSRHWKRENYSAPDVLYVWNQQTYRHDFSLLYTAAKFKDKQQDPATAEYLYGLFSIDLKTGKTETTDFGPLTEIYFSGMRSPKDPNLMFGVLNRLAKYDMKQKKLLQAATLDHSFYCISFNKAGSKIYLAGTFNDVAVFDADSLKQIGNIKLPGGDMAITTAQIFTR				NA	NA	NA	NA	NA
D1-36_02218	1701	fadD3_1	COG0318	3-[(3aS,4S,7aS)-7a-methyl-1,5-dioxo-octahydro-1H-inden-4-yl]propanoyl:CoA ligase	ATGAGTGTCCCCAGTTACACCCGTGGACCGCAAACCACACCCTTGCTGGCGATGACCATTGGCGCGGCGTTCGACCTAGCGGTGGAACGGTTCTGCGATCGCGAAGCGTTGGTCGTACGGCATCAAGGGCTGCGCTACACCTGGGCACAGTTGGCCGAGGAGGTGGACTGTTGCGCACGAGGATTGCTCGCGCTGGGCCTCAAGGCCGGTGAACGGGTCGGCATCTGGTCGCCGAACTGCGCGCAATGGTGCATTGCCCAATTCGCAACCGCCAAGGTGGGAGCGGTGTTGGTGAACATCAATCCGGCCTACCGCCTGACCGAGCTTGAATACACCCTCAAGCAGTCGGGGTGCCGCTGGCTGATTTGTGCCGATTCGTTCAAGACCTCCAACTACCACGCGATGCTTCATGATCTGCTGCCCGAACTCCAACGCTGCGCCGTAGGCGCACTGCAAAGTGGCCGGTTGCCTGAGTTGCGGGGCGTGATCAGCCTTGGCGATGCGCCAGCCGCCGGTATGTTGTCATGGGAGGGGTTGCGAGACCTGACGGAACGAGTGGCTCCGGAGCAATTGCGCGAACGCGGCGAACAATTGCAGTTCGACGATCCGGTCAACATCCAGTACACCTCGGGGACCACCGGATTCCCTAAAGGCGCCACCCTCAGCCATTACAACATCCTGAATAACGGCTTTATGGTCGGTGAAAGCCTGAAGCTCAGCGAGCAAGACCGGCTGGTAATACCGGTGCCGTTGTATCACTGCTTCGGCATGGTCATGGGTAACCTGGGTTGTGTCACCCACGGAACGACAATGATCTACCCCAGTGCGGCGTTCGATCCTCTGGAGACCTTGCGGGCCGCCGCACAGGAGAAAGCGACCGGCGTGTATGGCGTGCCGACCATGTTCATCGCGATGCTCGACCACCCGCAGCGCCAGTCATTGGATTTGAGTCATCTGCGAACGGGCATCATGGCCGGCTCCACCTGCCCGATCGAAGTCATGAAGCGGGTGATCGAAGACCTGCACCTCAAGGAGATGCAGATCGCCTACGGCATGACCGAAACCAGCCCGGTCTCCACCCAGACCGGGCCGGAGGACGATATCGAACACCGAGTCACCCGTGTCGGCCGCACCCAGCCGCACTTGGAAAGCAAGGTCATCGACGAACAGAACCGGGTCGTTCCTCGCGGTCAGATTGGCGAACTGTGTACTCGCGGCTACAGCGTGATGCTGGGCTACTGGAACAACCCGCAGGCGACCGCGCAGGCCATCGACGATGCGGGCTGGATGCACACCGGCGACCTGGCAATCATGGACGACGAGGGTTATCTGAAGATCATCGGGCGCAATAAGGACATGATCATTCGAGGGGGCGAGAACGTCTACCCGCGCGAAATAGAGGAGTTCTTCTTCAGCCACCCTTCGGTGGCAGACGTTCAGGTCATCGGTGTTCCGGACAAGGTTTATGGGGAAGAGATCGTTGCTTGGATCAGGCTGCACGAGGGACACCAGGCAAGCGCTGAAGAGCTGCGCGATTATTGCAAGGGCCGGATCGCTCATTTCAAGACGCCACGCCACTTCAAGTTCGTTGACAACTTTCCGATGACCGTCAGCGGTAAGGTGCAGAAGTTCCGCATGCGTGAAATCAGCGTAGAGGAACTGGGAACGCCCGGTTCGCCGATGCCCTTGATAGGCGGTTGA	MSVPSYTRGPQTTPLLAMTIGAAFDLAVERFCDREALVVRHQGLRYTWAQLAEEVDCCARGLLALGLKAGERVGIWSPNCAQWCIAQFATAKVGAVLVNINPAYRLTELEYTLKQSGCRWLICADSFKTSNYHAMLHDLLPELQRCAVGALQSGRLPELRGVISLGDAPAAGMLSWEGLRDLTERVAPEQLRERGEQLQFDDPVNIQYTSGTTGFPKGATLSHYNILNNGFMVGESLKLSEQDRLVIPVPLYHCFGMVMGNLGCVTHGTTMIYPSAAFDPLETLRAAAQEKATGVYGVPTMFIAMLDHPQRQSLDLSHLRTGIMAGSTCPIEVMKRVIEDLHLKEMQIAYGMTETSPVSTQTGPEDDIEHRVTRVGRTQPHLESKVIDEQNRVVPRGQIGELCTRGYSVMLGYWNNPQATAQAIDDAGWMHTGDLAIMDDEGYLKIIGRNKDMIIRGGENVYPREIEEFFFSHPSVADVQVIGVPDKVYGEEIVAWIRLHEGHQASAEELRDYCKGRIAHFKTPRHFKFVDNFPMTVSGKVQKFRMREISVEELGTPGSPMPLIGG	PGPT0008380_8037	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897	NA	NA
D1-36_02219	1986			hypothetical protein	ATGAGTCAGGACATTTCGCCCGCCGCTGCAGCGGCGCGGAACACAGGCATGGTTGCCACCACCTTATGGGGCTCGGACACTGTCGCAGGTATCACGGTCGATCCGGACGGTGCTATCTGGCTGGGCGCTTACAGTCGCCTGGGATTGGGAGGCGAAGAGGACTCGGGCTTCACCGGTAGCCTGGTCCGGTTCAATGCCGACGGTAGCCTGGACCGCAGCTTCAGTGGAGACGGTAAATCGCTTCTTCCTGTGTCGCTCGATATCGAGGACGGCGGTAATGCCGCGGTGCAGCCGGGAGGCGGTTACCTGGTGGCGCAGTACGTGCAAGTCGGCGACGCCTGGGTATCGGGGATAAGTCGCACCTTGGCGGACGGCAGCCTGGATACGAGTTTCGGGAATGGCGGCACCGCGATCGTGCCTTTTTACTGGAATGACAATTTAGGCCAGCAAGCGTCGTTCTCCGTGCAACGCGACGGAAGCTTTTTCGCAAGCGCGGGGTATCCCTCCGGGGAGATCTATATCGCCCGCTTCGACGCGACGGGGGCCTTGATCCCGTCTTTCGCAGAGGCAGGGGTCTTGCACCTGCCAGCCTCCGTCGGCATTCACCCCGGCGGCACGATCGACGTTTCGCTGCAGGAAGACGGGAAAGTATTGGTCACAGGGCAAGATACCCTGACCCGCCTCAACCCGGACGGTACCCTGGATAGCGGCTTCGCGAACGGGGGCAGCCTGGCCCTGGATGTCCATGCGGATGCCCTCGTCATCCAGGATGACGGCAAAATCCTGCTGGCGGGCGCCTCGGGGGGCGTGGCGACCGTCACCCGACTCAACGCCGACGGCTCGCTCGACAGCAGCTTCGGTGACCAGGGTAAGGTGAGTTGGGGCTCGCAAAACGCTCCTTTTGCGATCGCCGACATGATTGTGCTGGCCAACGGCAAGGTATTGATTGGCGCAAGCCAAGGTACAAGCGCGGACGGCTACCTGGCCTCCCTGGTTCAGTTGAACCCCGACGGTAGCCTGGACCACAGCTTTGGCAATCCCGACGACGGCTATCACCACGTCGACGGTGGCCGCGATGATGATTTCTTGCCCGGTACCGCGTCATTCGACGATGCGATCTCTGGCGGGGCCGGTAACGATCTGCTCGATGGCCAGGAAGGTCGTGACCTGCTGACGGGCGGGGCCGGTGCCGATACGTTCCGTTACGAGTCAGTCGCAGACAGTTACCGAACCGCAACCACCGCCCATAGCGACCGAATCACCGACTTCGACCCCAGCACCGATACCCTCGATCTCTCATCCCTGGGCTTCCTCGGGCTAGGCAATGGCTATGACGGAACGCTGGCGATACGCGTCAATGAAAGCGGGACGCGGACCTACCTCAAGAGTTTCGAGGCCAACGCGGATGGGGAACGCTTCGAAGTGGTCTTCGAGGGTAATCTGGGCCAAACGCTGGATGAAACCAACGTCCTGTTCCAGCAAGCCAGGTTGGTGGGCACCGAAGGGGACGATCGTTTACAAGGCAACGCCCGAGGCGAAATCATCGAAGGGCACGCGGGCGATGATCGCCTCTATGGAGCGTTAGGCAATGACGTATTGATTGGCGCAGAAGGCCGGGACCAATTGGTCGGTGGCGGCAACAACGACGTGTTCCGCTTCGACCTGCTGAGCGACAGCTACCGTACCGCCACCGAAAACCACACTGACCGCCTGATGGACTACACCACGGGTGAAGACACGATCGATGTGTCCGCCTTGGGCTTCACCCGACTCGGCAATGGGTACAACGGCACCTTGGATGTGGTTGTCAATCAAGCCAAGAACCTGACTTACTTGAAGAGCTACGAAGCCGACGCATCAGGGGCTCGATTCGAGTTGAGCCTGGTCGGGGATCACTCCGGTTACCGTGACTTGAACATCATCTTCGCCGAGCCCCCGCAAGAGGAGGTCTTTCAACTGATCGGAGTGGCTGACTCGCTGGCGTGA	MSQDISPAAAAARNTGMVATTLWGSDTVAGITVDPDGAIWLGAYSRLGLGGEEDSGFTGSLVRFNADGSLDRSFSGDGKSLLPVSLDIEDGGNAAVQPGGGYLVAQYVQVGDAWVSGISRTLADGSLDTSFGNGGTAIVPFYWNDNLGQQASFSVQRDGSFFASAGYPSGEIYIARFDATGALIPSFAEAGVLHLPASVGIHPGGTIDVSLQEDGKVLVTGQDTLTRLNPDGTLDSGFANGGSLALDVHADALVIQDDGKILLAGASGGVATVTRLNADGSLDSSFGDQGKVSWGSQNAPFAIADMIVLANGKVLIGASQGTSADGYLASLVQLNPDGSLDHSFGNPDDGYHHVDGGRDDDFLPGTASFDDAISGGAGNDLLDGQEGRDLLTGGAGADTFRYESVADSYRTATTAHSDRITDFDPSTDTLDLSSLGFLGLGNGYDGTLAIRVNESGTRTYLKSFEANADGERFEVVFEGNLGQTLDETNVLFQQARLVGTEGDDRLQGNARGEIIEGHAGDDRLYGALGNDVLIGAEGRDQLVGGGNNDVFRFDLLSDSYRTATENHTDRLMDYTTGEDTIDVSALGFTRLGNGYNGTLDVVVNQAKNLTYLKSYEADASGARFELSLVGDHSGYRDLNIIFAEPPQEEVFQLIGVADSLA	PGPT0027825_379	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0027825-prtC-K01406	NA	NA
D1-36_02220	369	rutC_2		Putative aminoacrylate peracid reductase RutC	ATGGCAACGATTGAACGTTTTCAGAGCAACGCGCGAATGTCCGGTGTGGTTAGTCACGGCGATCTGCTTTACCTCTCCGGCCAGGTACCTACCGATCTACAGGCCGGCATCGAAGAGCAGACGCAGCAGGTGCTGGCCAAAATCGAAGCCTTGTTGGCGTTGGCGGGCAGCGACAAGGGCCAGCTTTTGAGCGCACAGATCTGGCTTAAAGACATTGATCGTGATTTCGCGGCGATGAACTCAGTGTGGGATGCTTGGCTTCCAACCGACTGCGCTCCTGCACGGGCCACTGTTCAGGCAAATCTGGCGCGACCCGAGGTGCTGGTTGAGATCATGGTAATAGCAGCGAAACCTGCCCTTGATGCTTGA	MATIERFQSNARMSGVVSHGDLLYLSGQVPTDLQAGIEEQTQQVLAKIEALLALAGSDKGQLLSAQIWLKDIDRDFAAMNSVWDAWLPTDCAPARATVQANLARPEVLVEIMVIAAKPALDA	PGPT0020030_15	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020030-ridA|tdcF-K09022	NA	NA
D1-36_02221	879	gltC_1		HTH-type transcriptional regulator GltC	ATGTCTCTACGCGCACTTCGAACACTGCTTGCCATTGCCCAATACGGTTCTTTTGTTAGGGCCGCGGACGCCGTGCATTTGACCCAGTCAGCGATCAGCCTTCACGTCCGGTCTTTGGAGGAAGATTTCAATACACTTCTGTTTGATCGCTCACGGCGGTTGCCGGTGCTGACGGATGCTGGGCATATTGCCGTTGAGCGCGCGCGAGAAATTCTAGCCTTATACGACGGCATCTCGTCCGAGATTGGAGGCGACACTGAGTTGCGCGGCAGGCTTAGAATCGGTGCCATTCATACAGCGCTGGCGAGCGTGTTGCCTCTCGCGCTGTCGGCATTGCGTGCCGAACATCCTCACCTGCGCATCACTGTTGCGTCGGGAATGTCCGCCGAATTGGCCACGCGCGTAGAGGCGGGCGAGCTTGACGTTGCGATCACCACCGAACCGGTAAAACCACACCCTTACGGCCTGGCAAGCACAGTCCTTTACGAGGAAGGGTTCTGGATCATCGCGCCGGTATCACGTGCCCACGAGGACTTGAAGCTTCTACTCAAAAGCCAGCCGTTCATTCGATTCGATCGTCGCGCCTGGGCAGGTCGAACCATTGAGCGAGAGCTTCGCGCTATGCGGCTGCGTGTGGAGACCAGCATGGAGCTGGATAGCCAGGATGCGATTATCAAGATGGTCTCAAGCGGGTTGGGCGTATCGATCGTTCCGCTCTCCCGGCATCAAGTCATAAGCTTGAAAACACTGGCCGTTCAACCGTTCGGCATCCCTCAAAAAACCAGGCGTGTGGTATTGCTGGAGCGCGAAGATCGTCCGCTTGCGCGACTGGCGGCAGCGCTGGCGAACGCGGTGAAAGCCCATGTCTTGCCCGATTAA	MSLRALRTLLAIAQYGSFVRAADAVHLTQSAISLHVRSLEEDFNTLLFDRSRRLPVLTDAGHIAVERAREILALYDGISSEIGGDTELRGRLRIGAIHTALASVLPLALSALRAEHPHLRITVASGMSAELATRVEAGELDVAITTEPVKPHPYGLASTVLYEEGFWIIAPVSRAHEDLKLLLKSQPFIRFDRRAWAGRTIERELRAMRLRVETSMELDSQDAIIKMVSSGLGVSIVPLSRHQVISLKTLAVQPFGIPQKTRRVVLLEREDRPLARLAAALANAVKAHVLPD				NA	NA	NA	NA	NA
D1-36_02222	927			hypothetical protein	ATGACCCTCTCCTTGATGACTGCCTTGTTGCCCATCGCGCTATTGATCGTGCTGGGCGCGTGGCTCAAGCATTGTCAGTTTCTGGCGGATACTTTTTGGGCGCAGGCAGAGCGCTTGGCGTATTACGTGTTGTTGCCTTCTCTTTTCTTTCACGGACTGGCGACCGCCAACCTTGATGGCGTGCCGTTTCAAAGCATGGTTTCGGTGCTCGTATTCTCGACTGTTGTGGTATCGCTAATGTTGTTGAGCGCCAGATCGCTGATCACCGCGGACGATGCTGCGTTCACTTCGGTTTTTCAGGGGGGGATACGTTTCAATAATTACGTGGGCGTGTCGGCAGCTGCGGGCTTGTTCGGTGTGCAGGGTATAGCCCTGGCCGCGGTCGCGAACGCGGCCATCGTGCCCAGTGTGAACATTTTGTGTGTATTGGTCTTCGCAAAGTACGGCTCAGGCGGCAGGATGTCATTGGGCAAAGTCCTCAAACAGTTGGCATTGAACCCGCTGATACTTGCGTGCTTCGCCGGCGGATTGATCCAATTCTCGGGCTGGGGATTACCTGTGGGCATTGAGCCGATGCTCAAAGCCTTGGGGCAAATGTCACTACCGCTCGGATTGCTCTGCGTGGGTGCTGCGCTTGAGTTCGCAAGCATCAGGCAATGGTGGCGTCCGGTTGGTTACTCGTCGCTGACCAAGTTTTTAATCATGCCGCTGGTGACACTTTGGGCGTGCCACCTATTCGGACTTGAAGGAAAGGCCGCGGTTGCAGCACTTCTGTTCCAAGCACTGCCCACGGCCTCGTCCTCCTACATCATGGCAAGGCAGTTAGGAGGGGATGCCCCTCTTATGGCTGGGATCATCGCTTGCCAGACCATGCTGGCAGGACTGGCACTTCCAGCTGTCATCCTCGTGATGACCCAGTGGATTTGA	MTLSLMTALLPIALLIVLGAWLKHCQFLADTFWAQAERLAYYVLLPSLFFHGLATANLDGVPFQSMVSVLVFSTVVVSLMLLSARSLITADDAAFTSVFQGGIRFNNYVGVSAAAGLFGVQGIALAAVANAAIVPSVNILCVLVFAKYGSGGRMSLGKVLKQLALNPLILACFAGGLIQFSGWGLPVGIEPMLKALGQMSLPLGLLCVGAALEFASIRQWWRPVGYSSLTKFLIMPLVTLWACHLFGLEGKAAVAALLFQALPTASSSYIMARQLGGDAPLMAGIIACQTMLAGLALPAVILVMTQWI	PGPT0007208_3269	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-ABSCISIC_ACID_DEGRADATION	PHYTOHORMONE-AUXINE|INDOLE‐3‐ACETIC_ACID|IAA_METABOLISM	PHYTOHORMONE-IAA-AUXIN_TRANSPORT_PLANT_LIKE,PGPT0007208-auxin_symporter-NA	NA	NA
D1-36_02223	2151	cntO_2	COG1629	Metal-pseudopaline receptor CntO	ATGTTTCGCTTGACTACTTTGGCGCTGCTCGCGGGCAGCACCTGCGCGTGGGCGCAAGACACAACCCTGAATTTACCCACCAGCTATATCAACGCCTCGGCCGACCAGCCGAAACCGGCGACCAGCCTGGGCCTGGACACCCCCATCGAAAGCGGCTCGCGTCTGAACCTCAGTGCCCGGGAAAACCCGGCCTCTGTGAGCGTGGCCGATCGCAAGACAATGGAACGCATCGGCGCGCGCAACTTTCAGGATGCGGCGAACGCTCTGCCAGGCGTAAACGCTTCTGCACCGCCCGGCTGGGGCGGCTATGTGTCGTATCGTGGTTTCAACGGTGCCCAGATCAGCCAGTTGTTCAACGGAATCAACCTGCAATACGGCGGCGCAGCACGTCCGGTCGGCGCATGGATTTATGACCGGGTGGAATTGCTCGGCGGCCCCTCCTCGTTCCTCAACGGCAGCGGTGCCGTGGGTGGCAGCCTGAACGTGATCACCAAGCTCGCCAACCGCGAGGAAGATACCTTCGAGGGCCGGATGAGCTACGGTCGCTACGACACTTGGGAAACCGCGGTCGGCTTCAATAAGGCGCTCAACAGCGGTGACGGTCCACGTCACTATGCGCGGCTCGACTACAGCCGCACCAGCAGCAACGGCTACATCGATCGCCAGGAGAATGGTGCGGGCAACCTGGCCTTCTCCCTGCTCAGCGACATCAACGACCGACTCTCCCATACGCTGGCGATCGAATACCTGGAGGAGAAGGAAGACAGTCCCTACTGGGGCACGCCGGTATTGCAACCGCTGTCCGGCAAGTTGCACATCGACAAGCAAAACCGCTTCAACAACTACAACGTCGAGGACGGTCGTTACGAGCAGCGCACCCGCTGGATACGTTCAATCACCGACTACCATCTGGACGACAACACTCAATTGCGCAACACCTTCTATCACTACGACGGCCAGCGCGATTACCGCAACCTTGAGGTCTACCGCTACAACAGCGACAACAGTGCCATCGCCCGCTCCGGCGGTTACCGCCAGCGGCACGACCAGGAGGTCAACGGTGACCGTATCGAGCTGACTCACCAGGCTCAGCTGTTCGGCCTGGCCAGCGATTGGGCCCTGGGCGTGGATTACAACACCAACCAGCAAACCAACTACCCACTGTCCAAAGGTGCCTTCGATACCATCGACCCAAATGGCTTTGAGCCGGGCCAGTTTTTGGACATTCCGGGGATGGACGCACCCCGCGCTAAAGGTCGCAGCACCTGGACCGATACCTCCTCGGCTTTCGTCGAGAACCGTACGCGCCTGACCGAACAGCTGGCGCTGATCACTGCGCTGCGCTATGACCACATCGACTTCGAGGTCGTCGATCATATGGCCCAGGCCAGGCTCGACAAGCGTTGGGATGCAGTCACGGGTCGCGTGGGCCTGGTGTACGACCTGACGTCCAATGTCAGCCTTTATACCCAATACAGTACGTCGGCCGAGCCGCCGGGAGGCACGCTGACCAGCGCCTCCATTGCCCAGGTGGGCGATTTTGACTTGAGCACCGGTCGCCAAGTCGAGGTGGGCAGCAAGTTCGATTTTCTTGACGGTCGCGGCTCGGCCACCGCCGCGGCCTACCGCATCGTGCGCAAGAACATCTCCGTCCCCTCCTCGACGGTGCCCAACACCACCGAGCAAGCGGGTCAGCAAACCTCCACCGGCATTGAGCTGGCAGCGTCGTTCAAGGTCACGCCCAAGCTATTGGCGGCCGGCAACGTCACTTGGGTCAGGGCCGAGTACGACGAGTTCAATGAAACCATCGCAGGCGTCGTGCACTCACGCAAAGGCAATAATCCGGTGAACATTCCAGATCGGGTAGCCAATCTATGGCTGACCTATGACGTGGCTCCTGGCTGGCAACTCGGGGCCGACGCGCGCTACGTGTCGTCGGTTTACGCCAACACCGCCAATACGATGTGGGTGCCTTCCTACACCCTGTACGGCCTGTCCATGACCCACGACCTGGACAAACACCTGCAAGTCAGCGCGCGCCTGCGCAACCTGACCGACGAGGTCTATGCCCGTTTCATCCACCAGAGCAACACTCAATATTACGTGGGGGAACCGCGCAGTCTGGAAGTCGCCATGCAGTGGAAGTACTGA	MFRLTTLALLAGSTCAWAQDTTLNLPTSYINASADQPKPATSLGLDTPIESGSRLNLSARENPASVSVADRKTMERIGARNFQDAANALPGVNASAPPGWGGYVSYRGFNGAQISQLFNGINLQYGGAARPVGAWIYDRVELLGGPSSFLNGSGAVGGSLNVITKLANREEDTFEGRMSYGRYDTWETAVGFNKALNSGDGPRHYARLDYSRTSSNGYIDRQENGAGNLAFSLLSDINDRLSHTLAIEYLEEKEDSPYWGTPVLQPLSGKLHIDKQNRFNNYNVEDGRYEQRTRWIRSITDYHLDDNTQLRNTFYHYDGQRDYRNLEVYRYNSDNSAIARSGGYRQRHDQEVNGDRIELTHQAQLFGLASDWALGVDYNTNQQTNYPLSKGAFDTIDPNGFEPGQFLDIPGMDAPRAKGRSTWTDTSSAFVENRTRLTEQLALITALRYDHIDFEVVDHMAQARLDKRWDAVTGRVGLVYDLTSNVSLYTQYSTSAEPPGGTLTSASIAQVGDFDLSTGRQVEVGSKFDFLDGRGSATAAAYRIVRKNISVPSSTVPNTTEQAGQQTSTGIELAASFKVTPKLLAAGNVTWVRAEYDEFNETIAGVVHSRKGNNPVNIPDRVANLWLTYDVAPGWQLGADARYVSSVYANTANTMWVPSYTLYGLSMTHDLDKHLQVSARLRNLTDEVYARFIHQSNTQYYVGEPRSLEVAMQWKY	PGPT0003790_20759	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014	NA	NA
D1-36_02224	390			hypothetical protein	ATGAAGCTGGCCAGCCGCAAAAAATCGATGATTGCCTGGGTGCTGTATTTCAGCGTCCTGTTCGCATCGTTGCTGTGCGCGATGGGCCACGGGCAAATGGCCGGCTTGCGATTGAGCGGTTTGGACGGCGGACTGCTTTGCTCCACAGGCGGCGGTGCAGTCTTCGAAAGCCTGCATGATGCGCCCGCCCCGTCACTGCCCGTCGAGTCTGATTGCGTCATTGCCAGCCTGTTCGGTGCGATCCTGCTCGCGGCGTTCTTCGGGCTGCTCGCCTTGCTTGCCGGCGAACCAGCCTGGCCCTTGCCCGCACAACCTACCCGTTGCTTACCCAGGCAGCGCTGGCCCCTGATCAATCCTCGCGCCTCCCCCGCCCTGCTTCCCTCGCCTTGA	MKLASRKKSMIAWVLYFSVLFASLLCAMGHGQMAGLRLSGLDGGLLCSTGGGAVFESLHDAPAPSLPVESDCVIASLFGAILLAAFFGLLALLAGEPAWPLPAQPTRCLPRQRWPLINPRASPALLPSP				NA	NA	NA	NA	NA
D1-36_02225	633	kstR2_1		HTH-type transcriptional repressor KstR2	ATGGGAAAAAAGAACGCCGTCGTCGCTGCCGAACCTGCTGAAACCAGCACCAAGGAGCGGATACTGAAAGTCGCTGCGCAATTGTTTTCGACGCGCGGGTTTCACGCGACCGGCATGGCTGAGTTGGAAAAAGCCACCGGCCTGGCTCGAGGCGCGCTGTATTACCACATCGGCAGCAAGGAAGAGCTCCTGTTCGAGATCACCAGCCGGTACTTGCGGGTGCTCATCGCTGAGGGCACGCCTCTGTGCGAGAGTGACCTGCCCGCGGAGGATAAATTTCGCCAGTTCTCGGCCATTGTGATGCGCACGATCGTCACTCACCTGGCCGAAATGACGGTATGTTTCCGGGAGGTGTATTCCGTCATTGGCGAGCGCCAGACCGAGTTGCTCGACCTGCACCGGCAGTATGAAAAGCTCTGGTCGCAAATCCTCAAGGCCGGCGTGAACGAGGGGACCTTCCGTACAGCTGACGCGTTGGCCGTCAAGGCTATCCTTGGCATACACCATTACAGCTACTTGTGGATCAAGCCCGGCGGCCCGCGCTCGCCGGAATCCATCGCGACGTTTTTCTGCGACACCCTCCTGCCCGGACTGAAGGTTGAGCAAGGCAGTCCCTGTAGGTCGGACTGTTGA	MGKKNAVVAAEPAETSTKERILKVAAQLFSTRGFHATGMAELEKATGLARGALYYHIGSKEELLFEITSRYLRVLIAEGTPLCESDLPAEDKFRQFSAIVMRTIVTHLAEMTVCFREVYSVIGERQTELLDLHRQYEKLWSQILKAGVNEGTFRTADALAVKAILGIHHYSYLWIKPGGPRSPESIATFFCDTLLPGLKVEQGSPCRSDC				NA	NA	NA	NA	NA
D1-36_02226	882			hypothetical protein	ATGACAATAAGCAAACACCCCACACTGGCGTCCAACTCGTCAGCATCGGCCAGATTGATAGCGATGACCTGTTTCGCCCTGTTCGCCTTCGCCGCTAACTCATTGCTGTGCCGCCTGGCGCTTAAGCACACTGATATCGATGCCGCGAGCTTCAGCGTTGTCCGGCTGGTCAGCGGGGCCTTGGTGTTAGGGCTGATGTGCCTCATGAGGCGGTCCTCAACCCAAACCAAAGGCAGTTGGAAGGGCGCCGCAGCCTTGTTCGTTTACGTCTTTGCTTTTTCCTTCGCGTACCGTCATTTGGAGACCGGGACGGGGGCGCTGTTGTTGTTTGGCGCGGTTCAACTGAGCATGGTTCTGTTCGGCTTGTTCAAAGGCGAACGGATGCATACGCGGGCAATCGTTGGGTTTGTGTTGGCGATGGCTGGCCTGGTCAGTCTGCTGCTGCCAGGCGCAGCCGCTCCCGACCCCGCTAGCGCGCTTACGATGCTGTTATCGGGGCTGGCATGGGGAATCTACTCGCTGCTTGGCAAAACTGTCGCCGATCCGCTGGCGACCACAACCGGCAATTTCCTGAGGTCGATTCCCCTGGTCCTGGTGGCAAGCTTGCCGTTTCTCTCAACGCTGCGTTGGGATGCGCTGGGTATGTTTTATGCGGTTCTTTCCGGCGCGCTGGCGTCAGGCGTCGGCTACGCGGTCTGGTATGTCGCGGTGCGTCATCTTGCGGCGTTTCAAGCCGCGACGGTGCAGTTGAGCGTGCCCATCCTGGCTTCGCTGGCGGGTATCGTATTTCTGGGTGAAAGCCTGAGCGTAAGGATGGTGTTGGCATCCGTCGCCGTGCTGGGGGGTGTTGCTTTGGTGCTGGGTAGCAAACGGCACGGCTAG	MTISKHPTLASNSSASARLIAMTCFALFAFAANSLLCRLALKHTDIDAASFSVVRLVSGALVLGLMCLMRRSSTQTKGSWKGAAALFVYVFAFSFAYRHLETGTGALLLFGAVQLSMVLFGLFKGERMHTRAIVGFVLAMAGLVSLLLPGAAAPDPASALTMLLSGLAWGIYSLLGKTVADPLATTTGNFLRSIPLVLVASLPFLSTLRWDALGMFYAVLSGALASGVGYAVWYVAVRHLAAFQAATVQLSVPILASLAGIVFLGESLSVRMVLASVAVLGGVALVLGSKRHG				NA	NA	NA	NA	NA
D1-36_02227	1323	yhdG_2	COG0531	putative amino acid permease YhdG	ATGAAAGTAAACACGTCCCAATCCAAGACCTCTTTGCGTCGCGCTGTCACGGGGCCGATGCTGTTTCTGTTCATACTTGGCGATGTGCTGGGCGCTGGCGTTTATGCGCTGGCGGGTACCATCGCAGGGGAAGTCGGCGGCGCGATCTGGGTGCCGTTGTTGATCGCGTTATTGTTCGCAATGCTGACGGCGGGTTCGTATGCCGAACTGGTCTCGAAATACCCTCACGCGGGCGCAGCGTCGGTGTTTGCCGAAAAGGCTTTCAAGTCACCGTTGATATCGTTCCTGGTTGGTTTTTGCATGCTCGCCGCGGCGGTGACAAGCGCTGCCGGTCTCTCGCTGGCTTTTGCGGGGGACTACCTTGCAGCGTTCATTGAAGTACCCGCCCATGTCGCAGCCTTGATTTTCTTGTTGGTCATCGCGCTGTTGAATGCCAGAGGGATCAAGGAATCCCTCGGGGCGAATATGGTGATGACCGTGATCGAGCTGTCGGGGCTGATCCTGGTCATCGTCGCGGCGGGGAGTTTCTTCAGTTCTGGCGAAGCGCAACTCGCAAGGTCGCTGGAATTCAAGCCTGGAGTCAGCCCGATGCTCGCCGTCCTGGGCGCTGCGTTGCTCGCGTTCTATTCGTTCGTGGGTTTTGAGACTTCCGCCAACCTCGCGGAAGAGATCAAGGACGTCCGCAAGGTATACCCCCGCGCCTTGTTTGCGGCGCTGATAACCGCGGGCGTCGTTTACATGGCCGTTGGGGTCGCAGCCTCGTCAGTACTGTCCACGGAGAAACTGCTCGCGACCTCGGCGCCGTTACTTGAGGTGGTCCGTGCGTCCGGGCTAGATATTCCGCCTCGCCTGTTCGCGTTCATCGCGCTCATCGCAGTGGCCAACGGGGCGCTGCTGACCATGATCATGGCCAGTCGTCTCACGTATGGGATGGCAAATCTAGGCCTCTTGCCAGACTTCCTGGAAAAGGTACTGCCCCACCGGCGCACGCCGTGGGCGGCCATTGTCGCAACGACCCTCGTAGCAATCGCACTGACGCTCACGGGGACCTTGGCTACCCTGGCGCAAACCGTGGTTCTGCTCTTACTGTTCGTTTTCCTCAGCACCAACATAGCGGTGCTGGTGTTACGCAAGGACAAGGTCGCAGAAGAGCATTATCAGACGCCTACGTGGGTACCCGTGCTAGCCATCCTGTCTTGTCTCGTATTGCTGAGTCAGCAAGACATGGGCACTTGGCTGCGCGGCGGGGCACTCATCCTGGTGGGCATGCTGCTGTATGTCTTTGCTCGGATGACCGTGCCTACCGTTGCGAAGCCAAACTAG	MKVNTSQSKTSLRRAVTGPMLFLFILGDVLGAGVYALAGTIAGEVGGAIWVPLLIALLFAMLTAGSYAELVSKYPHAGAASVFAEKAFKSPLISFLVGFCMLAAAVTSAAGLSLAFAGDYLAAFIEVPAHVAALIFLLVIALLNARGIKESLGANMVMTVIELSGLILVIVAAGSFFSSGEAQLARSLEFKPGVSPMLAVLGAALLAFYSFVGFETSANLAEEIKDVRKVYPRALFAALITAGVVYMAVGVAASSVLSTEKLLATSAPLLEVVRASGLDIPPRLFAFIALIAVANGALLTMIMASRLTYGMANLGLLPDFLEKVLPHRRTPWAAIVATTLVAIALTLTGTLATLAQTVVLLLLFVFLSTNIAVLVLRKDKVAEEHYQTPTWVPVLAILSCLVLLSQQDMGTWLRGGALILVGMLLYVFARMTVPTVAKPN	PGPT0020810_5910	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
D1-36_02228	471			hypothetical protein	ATGGCCGCCTTGCTTGCGTGGCAATTTGCTACGGCGTTTTCCCATCTTCTACTGGAGGACACGGCCGTCGAGAAATTTTTGTGGGGCACCCACAAGACACTCGGGTTCGTATTGATACTTCTGGTGATACTGCGGGCGTGCTGGTCCTTGCACAATCGCGGCCATAGGCCCGCGTCCCTGAGCATCGCAGCGACACTGGGTCACCTGGCGATGTATGCCCTGGTCATCATCATTCCGCTGATCGCACTGGTCCGGCAATACGGCTCCGGGCGGGCTTTTTCGCCGTTGGGCATTCCGTTGATGCCGGGTTTCGATGAAAAAGTCGAATGGATGATGTTGCCCGCGAACCTCCTGCATAGCTGGTTGGGTTGGTTGCTGCTGCTACTGATCATCGGCCACGTCGCCATGGTGCTGATCCATCGGCGGCGTGGCGGGGAAGGCGACGTTCTGGTGCGAATGTTCGGACGCTAG	MAALLAWQFATAFSHLLLEDTAVEKFLWGTHKTLGFVLILLVILRACWSLHNRGHRPASLSIAATLGHLAMYALVIIIPLIALVRQYGSGRAFSPLGIPLMPGFDEKVEWMMLPANLLHSWLGWLLLLLIIGHVAMVLIHRRRGGEGDVLVRMFGR				NA	NA	NA	NA	NA
D1-36_02229	894	dmlR_13		HTH-type transcriptional regulator DmlR	ATGGACTTCAACGGCAGATCAGGGGAAATGGCTGTGTTCGCCACGGTGGCGCAGGAAGGCAGCCTGTCGGCCGCCGCGCGCGTATTGGGGCTGACGCCCTCGGCGGTCAGCCGGACCATCGCGCGGACCGAACAGCGTCTGGGCACCCGCCTGCTGTTGCGCACCACGCGGGCTATCACCTTCACGGCCGAAGGCGAGGCTTACCTGCGCGGCGCTCGGCGGATCCTGGCCGACATGGCCGAGGTCGAAGAAGCCGTCGCCGACCAGGGCGTGCCCCGGGGCCGCTTGCGCGTCAGTGCCGCCCTCGGCCATGGGCGGCAAGCCATCGTTCCCTTGGTGGCGGCCTTCAGCGCCCGCTACCCGAACATCGTCGTCGACCTCACCCTCGGCGACGAAGTGGTCGACATCCTCGGCGGCCAGGCCGACGTCGCGGTGCGGTTTGGCCACTTGCCCGACAGCCCACTGACCGCGCGCCGGATCGGCGACACCGGCCAGGTGGTGGTGGCTTCGCCCGCCTATCTTGAGCGCCATGGCACACCCCAGGAACCGGAAGACCTGCTGCAACACAACTGCCTACGCTTCAATTTCCGTCGCGCCGAACCCAACTGGCCGTTCATCCGCGACGGCGAAGAATTTTCCCTGAAAGTCACCGGCAACATCGAATGCAGCAGCGGCGAGGCGCTGGCACAACTCGCGCGTGTGGGCGCCGGCATCGCCCGTATCGGCGAGTTCACCGTGGCCGAGGATTTGCGGCGCGGCGATCTGGTACCGCTACTAGGTGCCTGGAACCCCGGGGACCGGGAACCGATCCACGCAGTTTTTGTTGGCGGGACGGCAATGCCAGCGCGGGTGCGGGTATTCGTCGATTTTCTGCTGGAGCATCATCGACTGTGA	MDFNGRSGEMAVFATVAQEGSLSAAARVLGLTPSAVSRTIARTEQRLGTRLLLRTTRAITFTAEGEAYLRGARRILADMAEVEEAVADQGVPRGRLRVSAALGHGRQAIVPLVAAFSARYPNIVVDLTLGDEVVDILGGQADVAVRFGHLPDSPLTARRIGDTGQVVVASPAYLERHGTPQEPEDLLQHNCLRFNFRRAEPNWPFIRDGEEFSLKVTGNIECSSGEALAQLARVGAGIARIGEFTVAEDLRRGDLVPLLGAWNPGDREPIHAVFVGGTAMPARVRVFVDFLLEHHRL	PGPT0028940_727	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028940-bpeT-K18900	NA	NA
D1-36_02230	1167	ydhP_2	COG2814	Inner membrane transport protein YdhP	ATGCGTATCAATCCACCGCTTGTTGCACTCGCCATTGGTGCCTTTGGCATCGGCGTTACCGAGTTCGCGCCGATGGGCATGTTGCCGGGCATCGCTGCGGATCTTGGCGTTTCCATTCCCTCCGCCGGCCTGCTGGTCAGTGCTTACGCCCTCGGCGTACTGCTCGGCGCGCCGTTGATGACCCTGACCACCGGCAGGATTCCCCGACGTTATCTGCTGATCGGGCTCATGGCGATTTTCACCCTCGGAAACCTGATGTCAGCGCTGGCGACCGACTACTACAGCCTCATGATCGCCCGGGTGGTGACCTCACTGAATCACGGAGCGTTCTTTGGCGTTGGCTCTATTGTCGCTGCCAGCGTGGTCGCGCCGCAGAAACGTGCCGGAGCGGTCGCGGCCATGTTCATGGGCCTGACCCTGGCAACCATCGGCGGTGTGCCGCTGGCCGCCTGGTTTGGCGAACTGTTCGGCTGGCGCACGGCATTCTGGGGCATTACTGGCCTGGGCGTGGCGGCGATGGCCGCGCTGTGGTTCGCCCTGCCCAACGTGCCGACGCCGCAAAGCATCGGTGTGTTGGCGGAAATCCGGGTGCTGGGCCGTGGCCCGGTGTTGGGGGCATTGGCCCTGACCGTTGTCGGTTCAGGTGCGATGTTCACCGTCTTCACCTATATCGCCCCGATCCTGAGCAGCGAGACCCATGCTCGCACCCCTTTCATCACCGCGATGTTGGTGTTGTTCGGTGTCGGGCTGACGCTGGGCAATATGTGGGGCGGCAAGGCCGCCGATCGCTCGATAGACCGCACGCTGATCGTATCGCTGAGCATACTGATTGTTGTCCTGCTGACGTTTACCGTGCTGATGCGCTGGCCGCTGCCGGCCGCGGTAGCCATCCTGATCTGGGGCATCGCCAGCTTTGCCTTGGTGCCGCCTTTGCAGATGCGCGTGATGGAAGCCGCCAAGGACGCGCCTAACCTGGCGTCTGCGGTAAACATCGGTGCCTTCAACCTGGGCAACGCGATTGGCGCGGCGCTGGGAGGCGCGGTGATCAACGCGGGGTTGGGTTATCCGGCGATCTCCCTGGCCGGAGCAGCGATGGCGGCCCTGGGGTTGCTGATGGTGCTGGCTTTTGCCTGGCGTTCCAGGGTGGTTGCGGCTGCTGCAGTGTGA	MRINPPLVALAIGAFGIGVTEFAPMGMLPGIAADLGVSIPSAGLLVSAYALGVLLGAPLMTLTTGRIPRRYLLIGLMAIFTLGNLMSALATDYYSLMIARVVTSLNHGAFFGVGSIVAASVVAPQKRAGAVAAMFMGLTLATIGGVPLAAWFGELFGWRTAFWGITGLGVAAMAALWFALPNVPTPQSIGVLAEIRVLGRGPVLGALALTVVGSGAMFTVFTYIAPILSSETHARTPFITAMLVLFGVGLTLGNMWGGKAADRSIDRTLIVSLSILIVVLLTFTVLMRWPLPAAVAILIWGIASFALVPPLQMRVMEAAKDAPNLASAVNIGAFNLGNAIGAALGGAVINAGLGYPAISLAGAAMAALGLLMVLAFAWRSRVVAAAAV	PGPT0028991_3548	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
D1-36_02231	1218	lutA_2		Lactate utilization protein A	ATGCAGACCAACTTGAGCGACAACGCCCGCCAACTGCCTCGCGCCGAAGAAGCCGAACGGATTCTGCGAAGTTGCGTGCACTGCGGCTTTTGCAATGCCACCTGCCCGACCTACCAATTGCTGGGCGATGAACTGGACGGCCCGAGGGGGCGCATCTACCTGATCAAGCAGGTGCTCGAAGGCAACGAAGTGACCCGCAAGACCCAGGAACACCTGGACCGTTGCCTGTCATGCCGCAACTGCGAAACCACCTGCCCCTCCGGCGTCGACTATCACAATTTGCTGGACATCGGTCGGGCGGTGGTGGATGCGGCAGTCCCACGCTCACCCGGCCAACGGCTGTTGCGCGAGGGATTGCGCGGCGTGCTGCCCAATCCAGGATTGTTCAAAGGGCTGGTGAGCAGTGGCCAGGTTTTCCGTGCCGTGCTGCCCAATGCGCTGCAAGCCAAACTGCCTCGCAACACTCATCGGGCAAAGCCACGACCGACCCTGCGCCATGATCGGCAAGTGCTCATGCTCGAAGGCTGCGTGCAACCGAGCCTGTCGCCCAATACCAATGCCGCCGCCGCCCGGGTACTGGACCGGCTGGGAATCAGTGTCACCCCGATTCGCGAGGCCGGCTGCTGCGGTGCGCTGGATTACCACCTGGATGCCCAGGCCGCCGGCCTCGATCGAGCCCGACGTAACATCGACGCGTGGTGGCCGGCCGTCGAAAGCGGTGCCGAGGCCATTGTGCAAACCGCCAGCGGCTGCGGCGCCTTCGTCAAGGATTACGGGCATCTGCTCAGCACCGACCCAGCGTATGCCGACAAGGCCGCAAGGATCAGTGCGTTGTCCAAGGACCTGGTCGAAGTACTGCGTGACGAGCCACTGGAAAAGCTCGGCGTACACAGCGATCAGCGCCTGGCCTTCCACTGCCCCTGCACCTTGCAGCACGCGCAAAAGCTTGGGGGAGCGGTTGAAGCCATCCTCGAGAGGCTCGGATTCAACCTCACGCCGGTGCCCGACAGTCACTTGTGCTGCGGCTCGGCGGGCACCTATTCGCTGACCCAACCTGCACTGTCCCGGCAATTGCGGGACAACAAGCTCAATGCGCTGGAAAGCGGACACCCCGAGATCATCGCCACCGCCAATATCGGCTGCCAGTCCCACCTCGACGGTGCTGGCCGAACCTCGGTCCGGCACTGGATAGAATTGGTCGAAGCCGCGATGCCTTGA	MQTNLSDNARQLPRAEEAERILRSCVHCGFCNATCPTYQLLGDELDGPRGRIYLIKQVLEGNEVTRKTQEHLDRCLSCRNCETTCPSGVDYHNLLDIGRAVVDAAVPRSPGQRLLREGLRGVLPNPGLFKGLVSSGQVFRAVLPNALQAKLPRNTHRAKPRPTLRHDRQVLMLEGCVQPSLSPNTNAAAARVLDRLGISVTPIREAGCCGALDYHLDAQAAGLDRARRNIDAWWPAVESGAEAIVQTASGCGAFVKDYGHLLSTDPAYADKAARISALSKDLVEVLRDEPLEKLGVHSDQRLAFHCPCTLQHAQKLGGAVEAILERLGFNLTPVPDSHLCCGSAGTYSLTQPALSRQLRDNKLNALESGHPEIIATANIGCQSHLDGAGRTSVRHWIELVEAAMP				NA	NA	NA	NA	NA
D1-36_02232	1065			hypothetical protein	ATGGGCAGCGAACATGATTTCGACGACAGCGCAGCGCTGCTGCAGCAGGTCAACCAGGCGCTGGAAAGCGCCACCGCGCTGCGCATCCAAGGCTCCAACAGCAAAGCGTCACTTGGACGCAGCGTCGCCGGTGAGGTCCTCGACACGCGCTCGCACCGAGGCATCGTCAGCTACGATCCGACAGAACTGGTGATCACCGTTCGCTGCGGTACGCCACTGGCTCATCTTTGCGAGGTGCTGGACGCGGCGCAGCAAATGCTGCCTTGCGAACCGCCCTCCTTCGGCGAGAACGCCACCGTGGGCGGCATGATTGCCTGCGGGCTCTCAGGGCCCCGGCGCCCCTGGTCTGGGTCGGTGCGCGATTTCATTCTCGGCACACGGGTCATCACCGGTCACGGTAAACACCTGCGTTTCGGTGGCGAAGTCATGAAAAACGTCGCTGGCTACGATCTGTCGCGCTTGATGGCCGGCAGCTACGGCGCGCTGGGCGTGGTGACCGAAGTGTCCCTAAAGGTCCTGCCAAAACCGCGGCAAACGTTGAGCATCAGCCTGGAAATGGACGCCGCCCGGGCCTTGCTGCGCCTCGCGGAATGGGGCCAGCAACCCCTGCCCATCAGCGCGGCGTGCCACGATGGCGAGCGCCTGCACCTGCGGCTCGAAGGTGGCGAAGGCTCGGTCGCCGCGGCCCGCGACCGTCTGGGCGGCGAGTGGCTGGACTCTTCGTACTGGCAGGATCTGAATGAACACCGGTTGAGCTTCTTCGATGAGGACCGCCCCCTTTGGCGCCTCGCCGTGCCCAATGGCACGCCTCGACTGCCCTTGCCGGGCGTTCAGTTGATCGATTGGGGCGGCGCCCAGCGCTGGCTCAAATCCGCTGCCGAAGCGCCCTTTATCCGCTCGCTCGTCGAACAAGCCGGAGGGCATGCCACCTGCTACACCCCTGGCGTGACCGACACCCCCTTCCAGCCGCTGCCCGACGCGCTGATGCGCTACCACCGGAACTTGAAGCAACAACTCGACCCGCGTGGCATCTTCAACCCCGGTCGCCTGTATGCGGAGCTCTGA	MGSEHDFDDSAALLQQVNQALESATALRIQGSNSKASLGRSVAGEVLDTRSHRGIVSYDPTELVITVRCGTPLAHLCEVLDAAQQMLPCEPPSFGENATVGGMIACGLSGPRRPWSGSVRDFILGTRVITGHGKHLRFGGEVMKNVAGYDLSRLMAGSYGALGVVTEVSLKVLPKPRQTLSISLEMDAARALLRLAEWGQQPLPISAACHDGERLHLRLEGGEGSVAAARDRLGGEWLDSSYWQDLNEHRLSFFDEDRPLWRLAVPNGTPRLPLPGVQLIDWGGAQRWLKSAAEAPFIRSLVEQAGGHATCYTPGVTDTPFQPLPDALMRYHRNLKQQLDPRGIFNPGRLYAEL				NA	NA	NA	NA	NA
D1-36_02233	1500		COG0277	putative FAD-linked oxidoreductase	ATGAATATTCTCTACGACGAACGCGTCGACGGCGCCCTGCCTGACGTCGACAAAAACGCGCTGCTGCAAGCCTTGCAAACCCAATTGCCCGATTTGGAAATCCTGCATCAGCGCGAGGAGCTCAAGCCGTACGAATGCGACGGGCTCTCCGCTTACCGCACCACGCCCATGCTGGTGGTGCTGCCGCGCCACATCGAAGAGGTCCAGGGCGTGCTGCGGCTCTGTCATGAGCGCAAGGTCCCCGTCGTTGCCCGTGGCGCCGGCACTGGTTTGTCCGGCGGTGCGCTGCCGCTGGAAAAAGGCGTGTTGCTGGTAATGGCGCGCTTCAACAACATCCTGCACATCGACCCTGCCGCCCGCACCGCACGGGTCCAGCCGGGGGTGCGTAATCTGGCGATTTCCCAGGCGGCCGCGCCGTTCGGCTTGTACTACGCGCCGGACCCCTCCTCCCAGATCGCCTGCTCGATCGGTGGCAATGTCGCGGAGAACGCCGGTGGCGTGCATTGCCTCAAGTACGGGCTGACCGTCCACAACCTGTTGAAGGTGGACATTCTCACCGTCGACGGCGAACACCTGACGTTGGGGTCGCAGACCCTCGACTCACCCGGGTTCGATCTGCTGGCGTTGTTCACCGGTTCCGAAGGCATGCTCGGGGTGATCACCGAGGTCACAGTCAAACTGCTGCCCAAACCGCAAACGGCCAAAGTCCTGCTGGCGGCCTTCGACTCGGTTGAAAAGGCCGGCCGCGCCGTGGGTGACATCATTGCCGCCGGCATCATCCCGGGCGGCCTGGAAATGATGGACAACCTGGCCATCCGCGCCGCCGAGGACTTCATTCACGCCGGCTATCCGGTAGACGCCCAAGCCATCCTGTTGTGTGAGCTCGACGGCGTGGAGGCCGACGTCCACGACGACTGCGATCGCGTGCGCCAGGTATTGCAGCAGGCCGGCGCCACCGAAGTGCGCCAGGCTCGCGACGAGGCCGAGCGCGTGCGTTTCTGGGCTGGACGCAAGAATGCGTTTCCTGCGGTGGGACGCCTCTCGCCGGATTACTACTGCATGGACGGGACCATACCGCGCCGGGAACTGCCCGGAGTGCTTCGCGCCATCGCGGCGTTATCGGCCGAACATGGCCTGCGGGTGGCCAACGTTTTTCACGCGGGCGACGGCAACATGCATCCGCTGATCCTCTTCGATGCCAATCAACCGGGTGAGCTCGATCGCGCCGAAGCCCTGGGCGGCAAGATCCTCGAACTGTGCGTGAAAGTCGGTGGCAGCATCACCGGGGAACACGGCGTGGGCCGGGAAAAGATCAACCAGATGTGCGCGCAGTTCAACAGCGACGAGTTGACCGTGTTTCACGCCGTCAAAGCCGCATTCGATCCGAGCGGACTGCTCAACCCTGGCAAGAACATTCCCACGCTGCATCGCTGCGCCGAGTTTGGCGCCATGCACGTCCACATGGGTCAGATGCCCTTCCCTGAACTGGAGCGTTTCTGA	MNILYDERVDGALPDVDKNALLQALQTQLPDLEILHQREELKPYECDGLSAYRTTPMLVVLPRHIEEVQGVLRLCHERKVPVVARGAGTGLSGGALPLEKGVLLVMARFNNILHIDPAARTARVQPGVRNLAISQAAAPFGLYYAPDPSSQIACSIGGNVAENAGGVHCLKYGLTVHNLLKVDILTVDGEHLTLGSQTLDSPGFDLLALFTGSEGMLGVITEVTVKLLPKPQTAKVLLAAFDSVEKAGRAVGDIIAAGIIPGGLEMMDNLAIRAAEDFIHAGYPVDAQAILLCELDGVEADVHDDCDRVRQVLQQAGATEVRQARDEAERVRFWAGRKNAFPAVGRLSPDYYCMDGTIPRRELPGVLRAIAALSAEHGLRVANVFHAGDGNMHPLILFDANQPGELDRAEALGGKILELCVKVGGSITGEHGVGREKINQMCAQFNSDELTVFHAVKAAFDPSGLLNPGKNIPTLHRCAEFGAMHVHMGQMPFPELERF	PGPT0001890_13	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001890-dld-K00102	NA	NA
D1-36_02234	768	glcC_1	COG2186	Glc operon transcriptional activator	ATGGAAAGCGTGGAAACGAGCCGCAACCCGCAGGTCGCCGACGTCGTCTGTGAGCGCATCGAACGCCTGATTGTCGATGGCGTACTCAAGACCGGGCAATTGTTGCCTTCGGAGCGCCGGTTGACAGAAAAACTCGGCGTCTCCCGGACTGCGCTTCGCGAGGGCCTGAAGCTGTTGCGCGCCCGCGGAATCATCAAGACCGAGCAGGGCAAGGGGTCCTTCGTGGCCGACCTGGCTGGGCATGGCTTGGCGTCGCCGCTGATGCACCTGTTCAGCTCGCAGCCACGCACACTCTACGACTTGTTTGAAGTGCGCAGCCTGCTTGAGGGCGAATCGGCGCGCTTGGCGGCCCTGCGCGGGACCGAGGCTGACTTCGTACTGATTACCCGCAGCTACGAGGCCATGCTCGACGCCCATAGCCATCCCCTGGAGGCCAGCGCCCATGCCCGGCTCGACCATGCGTTTCACTTGGCGATCTGCGAGGCCTCACATAACCCGGTGCTGGTGCAGACCTTGCGTTCATTGACGGACTTGCTGCTCAGCTCGGTGTTCGCCTCGGTCAACAACCTCTACCACCGTGAACCACAGAAGCGCCAGATCGACCGGCAACACGCCCGGCTCTACAACGCCGTGACCGGACGCCTGCCGGAGCAGGCACGCAAGGCGGCCATCGCCCACATCCAGAGCATTTGCGAAAACCTCAAGGAAATCGAAAACGAAGAACAACGCCTGGTGCGCGCCACGTTGCGGCTTGAGGGGTGGGTGTAG	MESVETSRNPQVADVVCERIERLIVDGVLKTGQLLPSERRLTEKLGVSRTALREGLKLLRARGIIKTEQGKGSFVADLAGHGLASPLMHLFSSQPRTLYDLFEVRSLLEGESARLAALRGTEADFVLITRSYEAMLDAHSHPLEASAHARLDHAFHLAICEASHNPVLVQTLRSLTDLLLSSVFASVNNLYHREPQKRQIDRQHARLYNAVTGRLPEQARKAAIAHIQSICENLKEIENEEQRLVRATLRLEGWV				NA	NA	NA	NA	NA
D1-36_02235	897		COG0596	Fluoroacetate dehalogenase	ATGTTCGCCTCATTTGAATCGGGCCGATGCCAAGTCAACGGCATTACCGTCAACTACCGCAAAGGTGGGAGCGGCCAAGGTCTGCTCTTGCTCCACGGGCATCCCCAGACCCACGTCATGTGGCACAAAGTCGCCGAACCCCTGGCGGAGCATTTCACCGTGATCGCGGCGGATCTTCGCGGCTACGGTGACAGCGACAAACCGGCAGGCGACGCAGAACACGTCGCCTACTCCAAGCGGCAAATGGCCCTGGACGGGCTCGAACTCATGCGCGCGCTGGGGTTCGTGAAGTTTGACGTATTGGCGCATGACCGAGGCGCACGCGTGGCCCATCGCATGGCGATGGATCACCCGGATGCAGTGAAGCGCTTGATCACGCTGGACATCGCTCCGACACTGGCGATGTACGAGCAAACCAACGAAGCGTTTGCCCGCGCCTATTGGCACTGGTTTTTCCTGATTCGCCCGGCTCCGTTTCCCGAAACGCTCATCGAGGCCGATCCGGAGCTCTATCTGCGCAGCGTCATGGGCACTCGCAGCGCTGGCATGGCGCCTTTCACTGATTCAGCATTGGCCGAATACCTGCGCTGCCTGTCACTCCCCGGCGCAGCTCATGGTGTTTGTGAAGACTACCGGGCAAGCGCCAGCATCGATCTGGAGCACGACAAGAGCGACCGACAAGCCGGCCGAAAAGTCTCAGTGCCATTGTTGGCCTTGTGGGGAGCGGACGGCGTCGTGGGCCGTTGCTTCGATCCGCTGAAGGAATGGCAAAAAGTCGCGACCGATGTGCGAGGGAAAGCGTTACCTTCGGGGCATTACATAGCGGAAGAAGCGCCGAAGCTTTTGCTGGACGAGGTGCTTGGATTTTTGCTCCCTTCGATCCCCCGAGGCCGGTAA	MFASFESGRCQVNGITVNYRKGGSGQGLLLLHGHPQTHVMWHKVAEPLAEHFTVIAADLRGYGDSDKPAGDAEHVAYSKRQMALDGLELMRALGFVKFDVLAHDRGARVAHRMAMDHPDAVKRLITLDIAPTLAMYEQTNEAFARAYWHWFFLIRPAPFPETLIEADPELYLRSVMGTRSAGMAPFTDSALAEYLRCLSLPGAAHGVCEDYRASASIDLEHDKSDRQAGRKVSVPLLALWGADGVVGRCFDPLKEWQKVATDVRGKALPSGHYIAEEAPKLLLDEVLGFLLPSIPRGR	PGPT0006880_562	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_HYDROCARBONS|OIL_DEGRADATION	XENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006880-dehH-K01561	NA	NA
D1-36_02236	2178	qgdA		Quinohemoprotein alcohol dehydrogenase ADH-IIG	ATGACACAGATTGGCCTCGCCGTGCCTACTGCTTCTCGGAACGCGCCCCTTCGCGCTCCCCTCAAGGCGCTATATGTCGTGCTGGCGCTTACCCTCAATACTGCTCCGAGCTGGGCCCAGGACATGCCGGCGAATGTCGACGGCAAGCGCATCATCGCCGCCGACCAGGAGCCCGGTAACTGGATGAGCACCGGTCGCACCTACGACGAACAACGCTACAGCCCGTTGAAGAAGATCAGCGACCAGAACGTCGACCAGTTGGGGCTCGCCTGGAGCTACAAGCTGGACCTGGATCGCGGTGTCGAGGCCACGCCTATCGTGGTCGACGGCGTGATGTACACCACCGGCCCGTTCTCGGTGGTCTACGCCCTGGACGCCCGCGACGGCAGGTTGATCTGGAAGTACGACCCCAAGTCCGACCGCAACCGCGCCGGCGAGGCCTGTTGCGATGCGGTCAACCGGGGCGTCGCGGTGTGGAAGGGCAAGGTTTACGTGGGCGTGCTCGATGGTCGCCTGGAGGCCATCGACGCCAAGACCGGCCAGCGGGCGTGGTCGGTGGACACCCGTGCCGATCACTCGCGCAGCTACACCATCACCGGTGCGCCGCGCGTGGTCAACGGCAAAGTGGTGATCGGCAATGGCGGCGCCGAGTTCGGCGTACGCGGTTATGTCACCGCCTATGACGCCGAGACCGGCAAGCAGGCCTGGCGCTTCTTCACGGTGCCGGGTGACCCCAAGCTGCCGCCCGAAGACAAGGCCATGGAAATCGCCGCCAAGACCTGGCACGGCGACGCCTATGTGGCCCAAGGCGGTGGCGGCACGGCCTGGGACTCGTTTGCGTTCGACCCGGATCTGAACCTGCTGTACATCGGCGTGGGCAATGGTTCGTTGTGGGACCCGAAATGGCGGAGCCAGGCCAAGGGCGACAATCTGTTCCTGTCGTCCATCGTCGCGGTCAATGCCGATACGGGGGAATACGCCTGGCACTACCAGACCACGCCGGGTGACGCCTGGGACTACACCGCTACCCAGCACATGATCCTTGCGGAGCTGCCGATCGACGGAAAGCCGCGCAAGGTGCTGATGCAAGCGCCGAAGAACGGTTTTTTCTACGTGATCGACCGCGCCACGGGTGAGCTGCTGTCCGCCAAGGGCATCGTGCCCCAGAGCTGGACCAAGGGCATGGACATGAAGACGGGCCGGCCCATCGTCGATGACGAGAATGCCGCGTACTGGAAGGACGGCAAACGTAAACTGGTCACGCCCGCGTTCTGGGGCGCCCACGACTGGCAGCCGATGTCCTACAACCCGAACACCGGGCTTGTGTATATCCCCGCGCACATCATGTCCGCCTATTACGAGCACATCCCCGAGGCGCCGAAGCGCAACCCGTTCAAGAGTATGTACCAACTGGGCCTGCGTACCGGGATGATGCCGGAGGACGCCGATGGGCTGTTGGAAATGGCCAAGGGCTGGTCAGGCAAACTGATTGCCTGGGACCCGGTCAAGCAGCAACCGGCCTGGGAAGTGCCCTATGTGACGATCTTCAACGGCGGCACTTTGAGTACCGCCGGCAACCTGGTGTTCGAGGGCAGCGCCGACGGCCGTGTGATCGCCTACGCTGCCGACAGCGGCAAGAAACTCTGGGAGCAGCCGGCGGCCAGCGGTGTGATGGCGGCGCCGATTACCTACAGCGTGGACGGTGAACAGTACGTGACGTTCATGGCCGGTTGGGGCGGTGCCTTCTCGACATTCGCCGGAGCCTTGTCCCTACGCGCCGGGGTTCGGCCGTTCTCCCAGGTGTTGACCTATAAATTGGGCGGCACCGCGAAACTCAACGAGCCGGCACCGCTCGCCGACACCCCGAAACCGCCACCCCTGACCGGCGACCTGGCGGCAGTGGAGGCCGGCGGCAAGCTGTACGACGGCTACTGTTCTCAGTGCCACGGCATCCACGCGGTCAGCGGCGGTGTGCTGCCGGACCTGCGCAAGCTGACGGCGGAAAAACACCAGGTGTTCCTCGGCATTCTCTACGGCGGCCGGGTGCCGGACGGCATGCCGTCCTTTGCCGACGCCTTCACGCCGGAACAGGTGGAGCAGATCCACCAATACCTGATCAAGCGCGCCCACGACCTGCAGCAAGAAGGCGGGGTCTGGAAGACCTTCACCGCCAAATGA	MTQIGLAVPTASRNAPLRAPLKALYVVLALTLNTAPSWAQDMPANVDGKRIIAADQEPGNWMSTGRTYDEQRYSPLKKISDQNVDQLGLAWSYKLDLDRGVEATPIVVDGVMYTTGPFSVVYALDARDGRLIWKYDPKSDRNRAGEACCDAVNRGVAVWKGKVYVGVLDGRLEAIDAKTGQRAWSVDTRADHSRSYTITGAPRVVNGKVVIGNGGAEFGVRGYVTAYDAETGKQAWRFFTVPGDPKLPPEDKAMEIAAKTWHGDAYVAQGGGGTAWDSFAFDPDLNLLYIGVGNGSLWDPKWRSQAKGDNLFLSSIVAVNADTGEYAWHYQTTPGDAWDYTATQHMILAELPIDGKPRKVLMQAPKNGFFYVIDRATGELLSAKGIVPQSWTKGMDMKTGRPIVDDENAAYWKDGKRKLVTPAFWGAHDWQPMSYNPNTGLVYIPAHIMSAYYEHIPEAPKRNPFKSMYQLGLRTGMMPEDADGLLEMAKGWSGKLIAWDPVKQQPAWEVPYVTIFNGGTLSTAGNLVFEGSADGRVIAYAADSGKKLWEQPAASGVMAAPITYSVDGEQYVTFMAGWGGAFSTFAGALSLRAGVRPFSQVLTYKLGGTAKLNEPAPLADTPKPPPLTGDLAAVEAGGKLYDGYCSQCHGIHAVSGGVLPDLRKLTAEKHQVFLGILYGGRVPDGMPSFADAFTPEQVEQIHQYLIKRAHDLQQEGGVWKTFTAK	PGPT0006870_7	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUBSTRATE_UTILIZATION-OTHERS	PLANT_DERIVED_ALCOHOL_DEHYDROGENASE-CYTOCHROME_C,PGPT0006870-exaA-K00114	NA	NA
D1-36_02237	1437	aldA	COG1012	Lactaldehyde dehydrogenase	ATGACCGAGATCACCGATTACCAGAACTTCATCGCCAACGCTTTTGTTCCCAGCGACCCAAGCATCGAAGTGCGCAACCCGGCCAACGGCCGTTTGCTCGCACGGGTCCCCGAAGCCAGTGGCGAGCAAGTCGAAGCGGCCATTGCCGCAGCGCGCAAGGCGCAAAAAAGCTGGGCTGCCCGTCCGGCCATCGAGCGCGCCGGTTACTTGCGAAAAATCGCCACGAAAGTGCGCGACAACGCCGAACGCCTCGCCCATATCATCACCGCCGAGCAGGGCAAAGTGCTGGGATTGGCGCGGGTGGAAGTCAACTTCACCGCCGATTATCTGGACTACATGGCCGAGTGGGCGCGGCGCCTTGAGGGAGAGGTGCTGACCAGCGACCGTGCCGGCGAAAGCATCTTCCTGCTGCGCAAGCCCCTGGGCGTAGTGGCCGGGATTCTGCCGTGGAATTTCCCGTTCTTCCTGATTGCTCGCAAAATGGCCCCGGCGCTGGTGACCGGCAATACCATCGTGATCAAGCCCAGCGAAGAAACCCCCATCAATTGCTTCGAGTTTGCTCGCCTGGTGGCTGAGACCGACCTGCCGGCCGGTGTGTTCAACGTTGTCAGCGGCACGGGGGCGACCGTGGGGCATGACTTGACCCGTCATGCCGGCATCGACTTGATCAGCTTCACCGGCAGCGTCGGCACCGGCTCGCGAATCATGGCGGCGGCAGCGCCAAACATCACCAAACTCAACCTGGAGCTCGGTGGCAAGGCGCCGGCCATCGTGCTGGCGGACGCCGACCTGGACCTCGCGGTCAAGGCCATCACGGCTTCGCGGGTGATCAACACAGGGCAAGTCTGCAATTGCGCCGAACGGGTGTACGTCGAGCGCAAGGTCGCCGATCGGTTCATCGAGCAGATTGCCGCCTCGATGGCCGCGACCCGCTACGGCGACCCGCTGGCCGAGGACAATCTGGACATGGGGCCGCTGATCAACCAGGCGGCCCTGGACAAGGTTGCGCGAATGGTCACGGTCGCGAAGGGAGAGGGGGCCGAAGTGGTCACCGGCGGCGCGGTGGCCGACAAGGGCCAGGGTTTTCACTATCAGCCGACGGTGCTGGCCGGGTGCGGCGGCGAGATGGCGATCATGCGCCAGGAGATCTTCGGCCCGGTACTGCCGATCCAGATTGTCGACGACCTGGACGAAGCCATTGCCCTGGCCAATGACAGCGAATACGGCCTGACTTCATCGATCTACACCCGCAGCCTGAGCGCGGCCATGCGCGCCAGCAATGAGCTCGATTTCGGTGAGACCTACATCAATCGAGAAAACTTCGAAGCGATGCAGGGCTTCCATGCGGGGGCGCGCAAGTCTGGTATTGGCGGCGCGGACGGCAAGCACGGCTTGTATGAATACACCCATACCCATGTGGTTTACATCCAGGTCTGA	MTEITDYQNFIANAFVPSDPSIEVRNPANGRLLARVPEASGEQVEAAIAAARKAQKSWAARPAIERAGYLRKIATKVRDNAERLAHIITAEQGKVLGLARVEVNFTADYLDYMAEWARRLEGEVLTSDRAGESIFLLRKPLGVVAGILPWNFPFFLIARKMAPALVTGNTIVIKPSEETPINCFEFARLVAETDLPAGVFNVVSGTGATVGHDLTRHAGIDLISFTGSVGTGSRIMAAAAPNITKLNLELGGKAPAIVLADADLDLAVKAITASRVINTGQVCNCAERVYVERKVADRFIEQIAASMAATRYGDPLAEDNLDMGPLINQAALDKVARMVTVAKGEGAEVVTGGAVADKGQGFHYQPTVLAGCGGEMAIMRQEIFGPVLPIQIVDDLDEAIALANDSEYGLTSSIYTRSLSAAMRASNELDFGETYINRENFEAMQGFHAGARKSGIGGADGKHGLYEYTHTHVVYIQV	PGPT0001725_428	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0001725-aldA-K07248	NA	NA
D1-36_02238	1944	acoR_3	COG3284	Acetoin catabolism regulatory protein	ATGACCCTGCATAGCGCGCAGCCTATCCCGAGCGAACTGGCAGCCTTCGTCAACGACCATTTTTCCGGACGCGGCCTGAAGCCCGATGGCCTCATCGCCCAGTCCTGGTACCGCAGCGTCGTGGAGCACCGGCTCGACCCTGGCGCGGCGAGCCGCAAGAACATCCTCAGCGCCGAGGACATCCGCCGTCATCAGGAACAGCACCAGCAGTATCTTTCCATCGCCAGCCAAGGCGTCAGCGGTCTGGCCCGGCGCGTGGTGCCCGCCGGTTTTGCCGTGCTGCTGAGCGACGAGCGCGGCATTACCCTGGATTCCCGACTGCCCGACCAGCACGACATCTATACGCAGTCCGGGCTGGTGGTGGGTGCGCAGTGGGAGGAATCGGTGGTGGGGACCAATGGCATCGGCACCACGCTAGCAGCCGCGCAGCCGTTGATCATTCATCGGGAGGAGCATTTCCTGGCGTCCAATTTCAGCCTGAGTTGTTCGGTGGCGCCCATTTTCGATGCCCAAGGCCTGTTGCGCGGTTGCCTCAATGCGACCTGCATGAACAGCGCAGGCCCCCGGGAAAGCCAATACCTGACGCTGCAACTGGTGATCATGTATGCGCGTCTGATCGAGAACGCACATTTTCGCCAGAGCTACCGCGACCGCTTGACCTTGTCCCTCAAGCCCCTGGATGAAATCGCCGACCTGGCCAACGAGCAATTGCTGGCGCTCGATGAAAACGGCCGCGTCATCGGGGCCAACCGTGCGGCATTTGTTGCCCTGGAGCTGGCTCAGGGGCCGCAGTTGCTGGGCACGCCCATCGATCGCCTGCTTCCCACCACAATGGACGAATTGCTGAAGCTCACCAATGGCGGCGCCCAGGGCGTGCGTTTGCGTGGCCTTCGCGATGAAGCGCTGCTGGAGGTCGGCCTGCGGATTCCATCCCAACAGCACCGCCCGCGCCCCATCGCCCGCCCTACCCTTGACGCTCACCCGGAGCTGCAACAACTTGCCGGCCTCGACCCTCAACTGCAACAGAGCGTGCGGCGGGTGCGCAAGGTGATCGACAAAGGCATCCCTATTTTGATTACCGGCGAAACCGGCACCGGCAAGGAAGCCTTTGCCCGAGCCATCCACCAGGCCAGCCATCGTCGCTCAGGCCCGTTCGTTGCGCTCAATTGCGCGGCCATCCCGGAGACGCTCATCGAGAGCGAGCTGTTCGGCTATCGCGCCGGCAGTTTTACCGGCGCCAACCGAAAAGGCATGAAGGGCAAGCTGGAGCTGGCGAACGGCGGCACGCTGTTTCTCGATGAGATTGGCGACATGCCCGCCCATTTGCAAACCCGCTTGCTGAGGGTACTGGCGGAGCGGGAAATCGCGCCGCTGGGGGCTGAAGTGCCGGTGACGCTGGACGTCCAGGTCATCTCGGCGACTCACCAGGACCTGCCTACGATGATCGGCGAGAAGCGCTTTCGCGAAGATCTGTTCTATCGCCTCGCCGGCATGAACCTGGCGCTGCCCGCCTTGCGCGAACGCAGTGATCGCGCCGCGCTGATCGATCAATTGCTCGCGGCTCAGGACGAAACTCGTGGGCTACGGCTGAACGCGGACGCCCGCCAATGCCTGCTCGACTATCAGTGGCCTGGCAATATCCGCCAATTACTCAACGCCCTGCGTTACGCGGTAGCCCTGGCCGAAGACGGGGTCATCGACTTGGACTGCTTGCCCAGCGAAGTGCTGGCGCCACGGTGGCTGTCATTGCCCAACAACACCACACCGTTGTCCGGCAAGCTGGGCGAACAGTTGGGCGACGAAGAGGCCCGCCGCTTGCTGGCGACCTTGCGTCAGCATCGTTGGAACATCAGCGCCGCCGCTACCGAACTGGGCATCTCTCGCTCCACGCTGTACCGCAAGATGAAAAAGCACGGCGTCGTCGCGCCCAACGACCAGTTCTGA	MTLHSAQPIPSELAAFVNDHFSGRGLKPDGLIAQSWYRSVVEHRLDPGAASRKNILSAEDIRRHQEQHQQYLSIASQGVSGLARRVVPAGFAVLLSDERGITLDSRLPDQHDIYTQSGLVVGAQWEESVVGTNGIGTTLAAAQPLIIHREEHFLASNFSLSCSVAPIFDAQGLLRGCLNATCMNSAGPRESQYLTLQLVIMYARLIENAHFRQSYRDRLTLSLKPLDEIADLANEQLLALDENGRVIGANRAAFVALELAQGPQLLGTPIDRLLPTTMDELLKLTNGGAQGVRLRGLRDEALLEVGLRIPSQQHRPRPIARPTLDAHPELQQLAGLDPQLQQSVRRVRKVIDKGIPILITGETGTGKEAFARAIHQASHRRSGPFVALNCAAIPETLIESELFGYRAGSFTGANRKGMKGKLELANGGTLFLDEIGDMPAHLQTRLLRVLAEREIAPLGAEVPVTLDVQVISATHQDLPTMIGEKRFREDLFYRLAGMNLALPALRERSDRAALIDQLLAAQDETRGLRLNADARQCLLDYQWPGNIRQLLNALRYAVALAEDGVIDLDCLPSEVLAPRWLSLPNNTTPLSGKLGEQLGDEEARRLLATLRQHRWNISAAATELGISRSTLYRKMKKHGVVAPNDQF	PGPT0001030_945	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,PGPT0001030-acoR-K21405	NA	NA
D1-36_02239	942	aes_2		Acetyl esterase	ATGTCTGATGAATGGCTCGATCCCATATTCCGCGGTCTTGTGGCCTCGGGTGCGGAACAATGGTCGGTGGGCACGCTACCCGCCATCCGCGCCCGAGTGCATTCGACCTTCAAACCCGAGCACCGCGCGCGATGCGAAGTGCGGTGGATTCCAGGCACCGATGACGAACGCCTGCGCCTGTGCGTCTACCGGCCGGAAGGCCTCGAGCCTGATGCTAACCTGCCGGCGATCCTGTCTATCCATGGTGGTGGCTTCGTACTCGGAAGCCCCGAAATGGCCGATGACTTTCTGGCCGACCTGGCCGACGAGTCAGGTGCGTACATCGTTGCAGTGGATTATCGACTGGCGCCCGAATATCCCTTTCCAGCGCCCCTTGACGACTGTTACAGCGCCCTCGCCTGGCTGTTCGAAAACAGCCAGGACCTGGGCCTGGATCCCCGGCGCATTGCGGTCATGGGTCATAGCGCCGGTGGCGGGCTGGCCGCCGCATTGGCCATCATGGCTCGCGACAAAGCGCGGTATCCGATCGTCGGCCAGGTGCTCGTCTATCCGATGCTCGATCACCGCACAGGCTCGACGCAATCACCCTACCCGAGCCGCGACACAGACACACTCAGTTGGCTGCCGGAGCCCAATCAGTTCTGCTGGCAGTGCCTTCGCGGGGGCGCCCCCCTGGACGATGATCGTGTCGGTCTGTTCTCACCGGCGCTGCAACCAGACCTGCGTAACCTGCCACCGACGTTCATTTCGGTCGGTTCTCAAGATTTGTTCCTCGAGGAGGACGTCGATTTTGCAATGAGGCTGATTCGCGCAGGCGTTGCCACCGAACTTCATGTCTATCCCGGCGCGCCCCATATGTTCGACCAGGTGCCAGGGCGCATCGCGGATCAAGCGTCCCGCGACATCGTCCGGGCGCTGAGCGTTTTTCTGAGGAGGGGGTGA	MSDEWLDPIFRGLVASGAEQWSVGTLPAIRARVHSTFKPEHRARCEVRWIPGTDDERLRLCVYRPEGLEPDANLPAILSIHGGGFVLGSPEMADDFLADLADESGAYIVAVDYRLAPEYPFPAPLDDCYSALAWLFENSQDLGLDPRRIAVMGHSAGGGLAAALAIMARDKARYPIVGQVLVYPMLDHRTGSTQSPYPSRDTDTLSWLPEPNQFCWQCLRGGAPLDDDRVGLFSPALQPDLRNLPPTFISVGSQDLFLEEDVDFAMRLIRAGVATELHVYPGAPHMFDQVPGRIADQASRDIVRALSVFLRRG				NA	NA	NA	NA	NA
D1-36_02240	1023	aptB	COG3958	Apulose-4-phosphate transketolase subunit B	ATGAGCAACGCCGCCAATACATCGAACGCGAAAATCGAGCCGGGCAAAAAACGCCTGACCACTTCGGCGATGATTGCCTCGATCGCGGCCGAGGGCCAAGCGACGAAACCTGCGCCATTCGGCCATGCACTGGCCGCATTGGCGGACCAGCGCCAGGACATCGTCGGGCTGTCCGCCGACTTGTCCAAATACACCGACCTGCACATCTTCGCCAAGGCCCATCCGGACCGTTTCTACCAGATGGGCATGGCTGAGCAATTGCTGATGAGCGCTGCGGCGGGTATGGCCCGGGAAGGTTTCGTGCCGTTTGCCACGACCTATGCGGTGTTCGCTTCCCGTCGGGCCTACGATTTCATCTGCATGGCAATTGCCGAGGAAAACCTCAACGTCAAGATCGTCTGTGGCTTGCCGGGTCTTACCACCGGTTATGGTCCGAGCCACCAGGCCACCGACGACCTGGCGATATTTCGCGCCATGCCCAACCTGATGATTGTCGATCCCTGTGACGCGCTGGAAATCGAACAGGCCGTGCCCGCCATCGCCGCCCACCAAGGCCCGGTCTACATGCGTTTGTTGCGCGGTAACGTACCCTTGGTGCTGGACGAATACGGCTACACGTTCGAGATCGGCAAGGCCAAGACCCTGCGCACCGGCAATGATGTCCTGATCATTTCCACCGGGTTGATGACGATGCGTGCGTTGGAAGCAGCCAAGCAACTGCAGGCAGACGGCGTCGATGTCGCGGTATTGCACATGCCGACCATCAAGCCGCTGGATGAACATACCCTGCTTGCCGAGGCCAGAAAGCCGGGACGATTGGTGGTGACCGCAGAAAACAGCTCCATCATCGGCGGGCTGGGCGAAGCGGTTGCCGGGGTCCTGCTGCGCAACGGGGTGACGCCGACGTTCAGACAAATTGCATTGCCAGACGCCTTCCTCGACGCAGGCGCGCTGCCGACACTGCATGATCGCTACGGCATTTCCACCCAGGCCGTTTGCGCGCAAATCAAAGCCTGGCTTTAA	MSNAANTSNAKIEPGKKRLTTSAMIASIAAEGQATKPAPFGHALAALADQRQDIVGLSADLSKYTDLHIFAKAHPDRFYQMGMAEQLLMSAAAGMAREGFVPFATTYAVFASRRAYDFICMAIAEENLNVKIVCGLPGLTTGYGPSHQATDDLAIFRAMPNLMIVDPCDALEIEQAVPAIAAHQGPVYMRLLRGNVPLVLDEYGYTFEIGKAKTLRTGNDVLIISTGLMTMRALEAAKQLQADGVDVAVLHMPTIKPLDEHTLLAEARKPGRLVVTAENSSIIGGLGEAVAGVLLRNGVTPTFRQIALPDAFLDAGALPTLHDRYGISTQAVCAQIKAWL	PGPT0011200_6721	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
D1-36_02241	849	aptA	COG3959	Apulose-4-phosphate transketolase subunit A	ATGACTCGCTCGCTTTCACCTGCTTCACCCCTGTCCCTGGCCGACCGTGCCCACAACATCCGTCATCACGCGCTGCGCATGGGGCAGGTGCAAGGCCAAGGCTATGTCGGCCAGGCCCTGGGCGCCGCCGACCTGCTGGCGGTCGCGTACTTCCACGCCATGAGCTATCGACCCCAAGACCCTGAATGGGAGCAACGTGACCGCTTCTATCTCTCCATCGGCCACTACGCGATTGCGTTGTACGCGGCATTGATCGAGGCCCAGATCGTTCCGCTCGATGAGTTGGAAACCTACGGCGCGGACGACAGCCGGCTGCCCATGTCGGGCATGGCGGCGTACACGCCGGGCATGGAAATAACCGGAGGCTCCCTCGGCCAAGGGCTGGGCATCGCGGTAGGCGCCTGCCTGGGCCTCAAGCGCAAAGGCTCGTCGGCTTTCGTCTACAACCTGCTATCGGACGGTGAATTGAACGAAGGTTCGACCTGGGAAGCGGTGATGTCCGCTTCGCACTGGAAGCTCGACAACCTGATCGCAATCGTCGACGTCAACAACCAGCAGGCCGATGGATACTCCAGCGAGATCCTCTCGTTCGAGCCGATCGTTGACCGCTGGCAAGCGTTTGGCTGGTTCACCCAGCGCGTCGACGGCAACGACCTGGACGCCTTGGTGACGGCCTTCGATGCCGCGCGCAACCACTCCTCCAGCGTGCCTCGGGTGATCATCTGCGATACACGCATGGGCAAAGGTGTGCCGTTCCTGGAGAACCGCGAAAAGACCCATTTCATCCGCGTCGAAGAACACGAGTGGGACCTGGCGCTGAACAACCTCGAAGAAGGAAGACACTCATGA	MTRSLSPASPLSLADRAHNIRHHALRMGQVQGQGYVGQALGAADLLAVAYFHAMSYRPQDPEWEQRDRFYLSIGHYAIALYAALIEAQIVPLDELETYGADDSRLPMSGMAAYTPGMEITGGSLGQGLGIAVGACLGLKRKGSSAFVYNLLSDGELNEGSTWEAVMSASHWKLDNLIAIVDVNNQQADGYSSEILSFEPIVDRWQAFGWFTQRVDGNDLDALVTAFDAARNHSSSVPRVIICDTRMGKGVPFLENREKTHFIRVEEHEWDLALNNLEEGRHS	PGPT0011200_9587	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
D1-36_02242	1299	nicT_1		Putative metabolite transport protein NicT	ATGACTACTTTGTCGCTCGAAGCGGTTTCGACCGTGCGCTCCAATGCCTACCGGAAAACGGCCTGGCGGCTGATGCCCTTCCTGATGCTGTGCTATTTGTGCGCCTATCTGGATCGGGTCAACGTCGGCTTTGCCAAGCTGCAGATGATGAACGACCTGGCGCTCAGCGAAACCGTCTACGGACTGGGCGCGGGGATGTTTTTCATCGGCTACTTCCTCTGCGAAGTACCCAGCAACGTCATCCTGCACAAGGTCGGCGCTCGCGTCTGGATCGCGCGAATCATGATCACCTGGGGCATCATTTCCGCGATGTTCGCCTTCGTTGAGACCGCTTGGCAGTTCTATGCCTTGCGCTTTCTGCTCGGGGTCGCCGAAGCAGGGCTGGCACCGGGTTTGCTGCTGTACCTCACCTACTGGTTCCCGTCCTACCGGCGTGCGCGCATGACCGTGCTCTGGTTTATCGCCATCCCGTTGTCGGGCATGGTGGGCGGCCCGCTGTCGGGCTGGATCATGAACCATTTCGCCGGCGTGCACGGCTGGGCCGGTTGGCAGTGGATGTTCGTGCTCGAGGCCATTCCCACCGTCGTTGTCGGGTTGCTGGTGCTGAGTTACCTCAAGGATGGCGTGCATCAGGCCCATTGGCTGGACGACGAAGAGAAAGCGCTGGTCAGCCGTGAGCTGGCCGAGGACAACCAGCAGAAGGTCACCCATGCCTCGGTGGGCGAGTTCGTCCGGGACCGCCGCCTGTGGCTGTTGGCCGGTATTTACTTCTGCGTGGTCATGGGCCAATACGCCATTACTTTCTGGCTGCCGACGCTGGTGCGCAACGCCGGGGTTTCCGATCCGCTGCACATTGGTTTCCTGACCAGCCTGCCCTACCTTTGCGCGATTGCGGCCATGTTGTTGATCGGCCGCAGCGGCGACAAACACCGCGAGCGACGCTGGCACCTGATTGCACCAATGATTGCCGGTGCCATCGGCCTGACGCTCGCCGCGCTGCTGGGAGGCAACATCTTGTTGTCCATCCTGAGCCTGTGCCTGGCGGCGTCCGGCATCCTGTCCGCCTCCTCGATGTTCTGGATGCTGCCCACGACCCTGCTCGGCGGGGTGTCCGCCGCCGCAGGCATCGCGGCGGTCAACAGCTTCGCCAACCTCGCCGGCTTCTGCTCGCCCTACCTGATTGGCTGGATCACCACGCAAACCGGCTCCAGCGCCATCGGCATGTACCTGATCACCGGCGTACTGCTGGGCGGCGCCTCGTTGGTGCTGCGCATTCCTGCCGCCCTGGTCAATCGTTAA	MTTLSLEAVSTVRSNAYRKTAWRLMPFLMLCYLCAYLDRVNVGFAKLQMMNDLALSETVYGLGAGMFFIGYFLCEVPSNVILHKVGARVWIARIMITWGIISAMFAFVETAWQFYALRFLLGVAEAGLAPGLLLYLTYWFPSYRRARMTVLWFIAIPLSGMVGGPLSGWIMNHFAGVHGWAGWQWMFVLEAIPTVVVGLLVLSYLKDGVHQAHWLDDEEKALVSRELAEDNQQKVTHASVGEFVRDRRLWLLAGIYFCVVMGQYAITFWLPTLVRNAGVSDPLHIGFLTSLPYLCAIAAMLLIGRSGDKHRERRWHLIAPMIAGAIGLTLAALLGGNILLSILSLCLAASGILSASSMFWMLPTTLLGGVSAAAGIAAVNSFANLAGFCSPYLIGWITTQTGSSAIGMYLITGVLLGGASLVLRIPAALVNR	PGPT0002325_307	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-ORGANIC_ACID_METABOLISM	P-SOLUBILISATION-TARTARIC_ACID_TRANSPORT,PGPT0002325-ttuB-K13021	NA	NA
D1-36_02243	750	fabG_6		3-oxoacyl-[acyl-carrier-protein] reductase FabG	ATGCTTCTCCAAGGCAAAGTCGCGATCATTACTGGCGCCGCATCCGCCCGTGGCATTGGCCGCGCCACCGCTACGACGTTCGCGCAGCACGGCGCCCGCGTCGTGATTCTGGACCTGGACGAATCCGCCGCACGCGATGCCGCCAACGCTCTGGGCGAAGGCCATCTCGGCCTTGCGGCCAACGTCGCCGATGAAGCGCAGGTCCAACGGGCCGTCTCACGGGCCATCGAACATTTCGGCCGCATCGATATTCTCGTCAACAACGCTGGCATCACCCAACCCCTCAAAACCCTCGACATTCGCGGGTCGGACTACGACAAGGTATTGGACGTCAGCCTGCGCGGCACCCTGCTCATGTCGCAAGCCGTGATCCCACTGATGCGCGAGCAGCAAGGCGGCAGCATCGTCTGCATGTCTTCGGTGTCTGCCCAACGTGGTGGCGGCATCTTTGGTGGGCCGCACTACAGCGCCGCCAAGGCCGGTGTGCTGGGCCTGGCCAAGGCAATGGCCCGCGAATTGGGTCCGGACAAGGTGCGGGTCAATTCCATCGCCCCGGGCCTGATCCACACCGACATCACCGGCGGCCTCATGCAGGATGAGCGTCGCCACGCCATCATCGACGGCATTCCGTTGGGTCGCCTGGGCGAGGCCCAGGACGTCGCGAACGCGGCCCTGTTCCTGGCCAGCGATTTATCCTCGTACCTGACTGGCATCACCTTGGATGTGAACGGCGGAATGCTGATTCACTGA	MLLQGKVAIITGAASARGIGRATATTFAQHGARVVILDLDESAARDAANALGEGHLGLAANVADEAQVQRAVSRAIEHFGRIDILVNNAGITQPLKTLDIRGSDYDKVLDVSLRGTLLMSQAVIPLMREQQGGSIVCMSSVSAQRGGGIFGGPHYSAAKAGVLGLAKAMARELGPDKVRVNSIAPGLIHTDITGGLMQDERRHAIIDGIPLGRLGEAQDVANAALFLASDLSSYLTGITLDVNGGMLIH	PGPT0005315_475	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATION	PLANT_DERIVED_CYCLOHEXANECARBOXYLIC_ACID_DEGRADATION,PGPT0005315-badH-K07535	NA	NA
D1-36_02244	918	perR_2		HTH-type transcriptional regulator PerR	ATGCGTACCGACGCCGATGCACCCTTGATTCTCCCACCGCTGAAAGCCATTCAGGCTTTTGAGCAGGCGGCCCGGTTCAGCAACGTCGCCAGGGCAGCGGAAGTGCTGGACCTGACGCCCTCCGCGGTCAGCCATCAATTGGCGAAACTTGAAGCGATGATTGGCCGGCAGTTGTTTGTGCGTGCCGCGCGAGGCGTAACGCTCACGCCCGTGGGAGAGCAATACCTGAAGGAGGTTTCAGGGATCCTCCATAGCCTGGCCGTCGCCACCGAGCGCGCGGCCAGCGACGTGAGCCTGGATTGTTTGCGTCTGCACTCGGCGCCCAGCTTCGGGTTGTTGTGGTTGATGCCGAGGCTGGAAGCGTTCCGCGCCTGCAACCCTGACATCCAGATCAATCTTTCGTGCTCTTACGAATCGCTGCATTTCAGTCGGGACAAGATTGACGTGGATATCCGCCACGGCACTGCAAACTGGCCCAGTTATGAAGTGCGCACCGTCCAGAACGAAACCTTCGCGGTATTGGCTTCGCCGAAACTGCTCGCACAATGTCCGATCCGCAGCGCGTCCGATTTATTGAATTGCGACCTGGTGCTGTCCGAAGCCACTTTGCTCAAATGGCCGCAATGGTTTGCGCAACATGGCCTGGCGCGCCCGGAGAAGCCTTACGCCTTGAGTTTCGATCGGTCGTACATGTCGCTGGAGGCCGCCAGTCATGGATTGGGCTTCGCCTTGGAAAGCACATTGCTGGCGCAAAAATATCTGGCGACCGGCAGCCTGGTCGAGGTGGCGCCCGAGGCGCTCAGCGCGCCTGTGGCTGCCCACCACCTGGTATTCCCGAAAGCCCACTCGAGCTTCCCCCGCGTCCGGCGTTTCCTGGAGTGGATGGAAAGTGAGCTGGGGCAGGGCTTCGCGTATTAA	MRTDADAPLILPPLKAIQAFEQAARFSNVARAAEVLDLTPSAVSHQLAKLEAMIGRQLFVRAARGVTLTPVGEQYLKEVSGILHSLAVATERAASDVSLDCLRLHSAPSFGLLWLMPRLEAFRACNPDIQINLSCSYESLHFSRDKIDVDIRHGTANWPSYEVRTVQNETFAVLASPKLLAQCPIRSASDLLNCDLVLSEATLLKWPQWFAQHGLARPEKPYALSFDRSYMSLEAASHGLGFALESTLLAQKYLATGSLVEVAPEALSAPVAAHHLVFPKAHSSFPRVRRFLEWMESELGQGFAY	PGPT0026360_3181	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566	NA	NA
D1-36_02245	1122			hypothetical protein	ATGATCTACCTGTCGCCGGTGCCATGGGCCAGCTTCAGCCAGCGCCCCCATCACTTCGTCGACTGGTATCACCACCGGACCGGGGCAACGGTGCTTTGGATCGATCCGTATCCGACGCGCTTGCCAACACTCGATGATTTCAGGCGCAAGCCACCTGTTGCCAACCCGCAAAACACCAACGCCCCTGCCTGGTTGCGGGTCTGCAAACCCCACAGTCTTCCCATCGAACCCCTTCCCGGCTCGGCGCTGGTGCTCAAGCGGCTGTGGCGCAACCTGTTCAGGGAGGTCATGGCATTTTCCGCAGAAAAGCCCTGCATGATGTGTATTGCAAAGCCTTCGGAACTGGCCTTGCAACTGTTGGCGCGCATACCCGCAAGCCGTGCCGTCTACGATGCCATGGACGATTTTCCGGCCTTCTACCAGGGCCTGTCACGCAGGTCGATGGCACGTCGCCAGACGCAGCTCATCCAACGGGTGGATAAAGTGCTGGCATCGTCCAGCCCCCTTCGCGACAAGCTCCTGGGCATGACCGACCAGATAGAACTGGCCCTCAACGCCTGCGACATGCAGCGACTGGCACCGGTCGAAAGCCTCGACCTGGGCCCCAAACAACAAGTGATCGGCTACGTCGGCACGCTGGGTCATTGGTTCGATTGGGATCTGGTGATCGCGCTGGCCCAGGCCAACCCTGGAAACCGGATCAAACTGATCGGCCCCCTGTTCACTCCACCGCGTCGCGTCTTGCCCGCCAACATCGAACTACTCCCCGAGTGTGCCCATGCCGGTGCGATCGCCGCCATGGCCACGTTTTCGGTGGGTTTGATCCCGTTCAAGCTCAACCGCCTGACCGCTTCGGTCGACCCGATCAAATACTACGAGTACCGCGCCCTCGGCCTGCCCGTCCTCACCACCCGCTTCGGTGAAATGGCCTTGCGAGACAAGGAACCGGGGGTCTGGATCGTGGATGAGGACACGGACCTGCGAAAAGCCGCCACTGACGCGCTTGCCAGTCGAAGCGACCGATCAGCCATTCAACAGTTTCGTGAGGCGCATCGTTGGGCGGTTCGTTTTTCTTCGATAAACCTCACCGGTTGCGCATTGGAAACGCCGCAAGCACCCTAA	MIYLSPVPWASFSQRPHHFVDWYHHRTGATVLWIDPYPTRLPTLDDFRRKPPVANPQNTNAPAWLRVCKPHSLPIEPLPGSALVLKRLWRNLFREVMAFSAEKPCMMCIAKPSELALQLLARIPASRAVYDAMDDFPAFYQGLSRRSMARRQTQLIQRVDKVLASSSPLRDKLLGMTDQIELALNACDMQRLAPVESLDLGPKQQVIGYVGTLGHWFDWDLVIALAQANPGNRIKLIGPLFTPPRRVLPANIELLPECAHAGAIAAMATFSVGLIPFKLNRLTASVDPIKYYEYRALGLPVLTTRFGEMALRDKEPGVWIVDEDTDLRKAATDALASRSDRSAIQQFREAHRWAVRFSSINLTGCALETPQAP				NA	NA	NA	NA	NA
D1-36_02246	1110	wecB	COG0381	UDP-N-acetylglucosamine 2-epimerase	ATGACTCGTAAGGTACTTTGCATCGTCGGTACGCGCCCGGAAGCGATCAAGATGGCTCCCGTGATCAAGGCGCTGCAAGCCGAAAGGAATATCGTTTGCCGGGTGCTCGCCACCGCCCAGCACCGAGCGCTGTTGGACCAGGTACTGGAGGGCTTCGCAATCACAGCCGACCTGGACCTGGACATCATGCGGCCCGATCAGTCATTAGCGACATTGACCTCACGCTTGCTGCTTGAACTCGACGGCGTGCTGCAATCGGAAAAGCCGGATATCGTGTTGGCGCAAGGTGACACGACCACGGTCATGTCCGCCGCACTGGCGTGCTTCTACTTGCGCATTCCCTTTGGCCATGTCGAAGCGGGCCTGCGGACCGGGGACATCTTCAATCCGTTCCCCGAAGAAGCCAACCGGGTGATCGCCGGCAAACTGACCCGCTGGCATTTCGCGCCAACCCAGCGCGCCGTCGACAATCTGCTATGCGAAGGCGTCGACGCCAGCGCCGTCACCCTGACGGGCAACACCGTGATCGATGCCTTGCTGATGACCGCGGCACAAGACTGCGACTTGGACGTCCCAGTGGACCCCGGCAAACGCCTGGTACTGGTCACCTCCCATCGCCGGGAGAACTTCGGCGAGCCGTTCCAGGATATCTGCCAGGCCCTCAAGCGCCTGGCCGAACGCAATCCAGGCATTCAAATACTCTATCCCGTCCACCCCAATCCAAACGTCAAGGATGTCGCGCACCGCCTGCTCGGCCAGACCCCGAACATCCTCCTCTGCGCGCCTTTGGACTACGCGCCGTTCATCGCGGCGATGAAGCGCTCGTACTTGATCATCAGTGATTCGGGGGGAGTGCAGGAAGAAGCCCCGGCCCTGGGCAAACCGGTGCTGGTGCTGCGAGAGGAAACCGAGCGCCCGGAGGCGGTCGACCTCGGCGTGGTCAAGCTGGTGGGCGCCAACCGGACCACCATCGTCGAACAGGCACAGCGCCTGCTCGATGATCCCCAGGCCTATCAGAGCATGGCACGCGGGGTTTCTCCCTATGGCGACGGCAAGGCCGCAGCCCGCATCGTCGAAGTCTTGAGGCAGCACTTGCAGTCATGCGGATGA	MTRKVLCIVGTRPEAIKMAPVIKALQAERNIVCRVLATAQHRALLDQVLEGFAITADLDLDIMRPDQSLATLTSRLLLELDGVLQSEKPDIVLAQGDTTTVMSAALACFYLRIPFGHVEAGLRTGDIFNPFPEEANRVIAGKLTRWHFAPTQRAVDNLLCEGVDASAVTLTGNTVIDALLMTAAQDCDLDVPVDPGKRLVLVTSHRRENFGEPFQDICQALKRLAERNPGIQILYPVHPNPNVKDVAHRLLGQTPNILLCAPLDYAPFIAAMKRSYLIISDSGGVQEEAPALGKPVLVLREETERPEAVDLGVVKLVGANRTTIVEQAQRLLDDPQAYQSMARGVSPYGDGKAAARIVEVLRQHLQSCG	PGPT0018905_2415	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-TEICHOIC_ACID_METABOLISM	CE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0018905-wecB-K01791	NA	NA
D1-36_02247	1605			hypothetical protein	GTGAAAGTGAAGCCCACCGTGACGCCTGAATTCGATGTGATCATCGTCGGCAGCGGCCCGGCCGGGACTTCGGCTGCCTACCCGTTGGTCAAGGCGGGCCTGAAGGTCCTCATGGTCGATGCCCAGGCCGACATCGGCTCACCGGTACTACCGAGTCGCCCATTCCTCGACGCACGGGCAAACGACGAGCATCAATGGAAATGGATGATCGGCGAAAACTTCCACGCCCTGAACCAACAGGAGGCTGTGTCGCCCAAGCTGAAGACACCGACCCACGCCCATGTCTTCGATGGATTCAGCGCCGGCAACCGCATTCAGACCGACCACTTCATCGGCGTCGGCTCACTGGCAACGGGTGGCCTGTCCAATGCCTGGGGCTGCGGCGTGGCGACGCTTGGCGCCAGCGACTTTGCCGGGCTGCCCATCGATTATTCCGAGATGCAGGCGTCCTACGAAACGGTCGCGCGCCGGATCGGTATCAGTGGCCGAATCGACGATGACCTGTCGAACTACTTCGGCCTCGATGAGTGGTCGCAACCGCCCCTGCCGCTGGACGCTTTGCACCAACGCCTGCTCGATCGATACGCGCGGCGCCGACCGGCGTTTCCTGAACTGGGGTTTCGCCTTGGCCGCTCCAGGGTCGCCGTGCTGAGCCAGCCCCTGGACGAGCGCAGGGCCTGCGACTTGTCTGGAAACTGTTTGTGGGGCTGTCACAACCAGGCCCTGTACAGCGCCTCGCAAGAGTTGGGAAAGCTCAAGCAGTACCCCGGCTTCCAGCATGTCCAGGGCTTTCTGGTGGACGACCTGCTGGGGCAGGACGGTTCATGGGTGATCAGTGATCGTCGTTCCGCCCGGCGTTTCTGCGCAACACGCCTGCTGCTGGCGGCCGGCACCCTGGCCTCGACCCGGCTCGCCCTCAAGCGCCTGAACCATTTGGCCCCGATACCATTGCTCTCATCGCCAACGGCGGCCTTTGTGCTATGGCTGCCCAGAATGCTCGGCACTCCAAGGGGGCCGACCTTTGGCCTGGGGCAGCTTTCGTTCGCCCTGGAGCTATCGGCCAATGCCACAGCCTTTGGCTCGACGTTCAGCACCACAGGCTTGCCGATGAGCGAGTTCGTCAGCCGGATACCCCTGGACAAACGCCACAGCATCGAACTGCTGAAGAACCTGCTCAGCGCCTGCCTGGTGGGGAACCTTTTCCTGCCGGGGCACTTGTCCCACAACACAGCGCGCTTGCGCCCCGATGGTTCGTTGAGCGTCACCGGCCAAATCCACCCCGAGCTGCCCCGGCTCATGAAGGCTGCCGAAGCAAAGCTGCGGCGGATCTACTGGAAAATGGGCGCGCTGTTGATGCCCATGAGCTTTACCCCCGGCGGGCCCGGGGCCGATATTCATTACGCGGGAACCCTGCCCATGCACTCGGTGCCCAAGATCGGACAGACCGATAACCTGGGCGAAGTCGCGGGCCTTGGCGGCGTGCATATTGTCGACGGGGCCTGCCTGCCCAGTCTGACGGAAAAATCCCACACGCTGACGCTCATGGCCAACGCGGACCGGATAGCCCGCTCACTTGCCACAACGATAGGAAATCAGAAGGCATGA	MKVKPTVTPEFDVIIVGSGPAGTSAAYPLVKAGLKVLMVDAQADIGSPVLPSRPFLDARANDEHQWKWMIGENFHALNQQEAVSPKLKTPTHAHVFDGFSAGNRIQTDHFIGVGSLATGGLSNAWGCGVATLGASDFAGLPIDYSEMQASYETVARRIGISGRIDDDLSNYFGLDEWSQPPLPLDALHQRLLDRYARRRPAFPELGFRLGRSRVAVLSQPLDERRACDLSGNCLWGCHNQALYSASQELGKLKQYPGFQHVQGFLVDDLLGQDGSWVISDRRSARRFCATRLLLAAGTLASTRLALKRLNHLAPIPLLSSPTAAFVLWLPRMLGTPRGPTFGLGQLSFALELSANATAFGSTFSTTGLPMSEFVSRIPLDKRHSIELLKNLLSACLVGNLFLPGHLSHNTARLRPDGSLSVTGQIHPELPRLMKAAEAKLRRIYWKMGALLMPMSFTPGGPGADIHYAGTLPMHSVPKIGQTDNLGEVAGLGGVHIVDGACLPSLTEKSHTLTLMANADRIARSLATTIGNQKA				NA	NA	NA	NA	NA
D1-36_02248	1275			hypothetical protein	ATGAAACTGGTGATCACCGGCGCGACCGGCTACATCGGACAACGTTTGTCAGCCCTTGCGGCGGCAAGCGGGCACGAGGTCATTTGCGCCACCCGCCGGCCGTGCGCCGCCGCTCATGCCTGGCTTCCCTATGACCTGCGGGGCCCAGCCCCCGAATGCCCCGCCGGTACCCAGGCGCTGATCCACCTGGCTGCCGACACTGCCCACACCGACCCGGACGAAGAACTCAGGGCGGCCCAGGCGCTGATTCGTTGTGCCCGACAAGGCTCGGCCAAGTTTGTTTTCATTTCCAGTCAAACCGCCGAGGCCGCGGCTCCCAGCGTTTATGGCCGGACGAAATGGCGCATTGAACAAGACGTGCTCGCCGCCGGCGGCACCGTGGTCCGCCCCGGCCAAGTCTATGGCGGGCCCGAACGTGGGCTCTTCGGCCTGTTGTGCGGGCTGGTTCGCCGAAGCCCGTTCATACCGGTCCTCCTGCCGGCGCCTCGGGTGCAACCCATTCATGTCGACGACCTCGCGGCCTCCATTCTGGCCGTTGTCGAGCGGGACGACATTCGTGCCGAAATCCTTAACCTGGGCGCCGCGCGACCGATTACCTTTGGCCACTTCCTGATGTCGACCGCGACGCACCGGGTCCGTGCCATGCGCCTGCCCATCCCCGTACCGGTGGCATTGCTCAGGCTGTTGCGCCGGTCACTGGGGCAATCCTTGAGTACGAAACTGGGCCTGACGCGAATTTTCTCCCTGGTCCAGCTGCCACCCATGGACAGCGAGCGCTCCCTGCAAGAAATAGGCATCCGGTTGCGTCCCCTTGCCCATGGCATGCACCGCTCCGGCCATGGACAACGTCGGGGCCTTCTTCGGGAAGCCGGGGTGCTCTTGAGCTATCTGCTCAAACGGCCCCCGCCAACAAGCTTGGTCATTCGCTACGCCAGGGCACTGGAGCACGCTGGCAAAACCCGACCCGTCGTCCACTCCCGCTTGTTGATGCGCTGGCCGATTCTACTGGCCCTGCTGGACGACCCTGGCCCCCAGCAGTCATCCGATGGCCAGGAGCTGGCCTGGCGCCTGCAGGTGGCACTGGGTATCGCCGAAGCCAGCCCCCGGGGCGCGCAGGTGTTTCTCGGCGCCCAGCCACCGGGCCGACTGGTCGGGACGCTGGTTGCGCTGGGCGTGGCCGTGCTCAAGGCCCTGGCGTGGAAACTGGCGGCGCTGGCGTGCCGTCCCCTGGCCCGCCAACTGCTGCGTGAAAGTGAAGCCCACCGTGACGCCTGA	MKLVITGATGYIGQRLSALAAASGHEVICATRRPCAAAHAWLPYDLRGPAPECPAGTQALIHLAADTAHTDPDEELRAAQALIRCARQGSAKFVFISSQTAEAAAPSVYGRTKWRIEQDVLAAGGTVVRPGQVYGGPERGLFGLLCGLVRRSPFIPVLLPAPRVQPIHVDDLAASILAVVERDDIRAEILNLGAARPITFGHFLMSTATHRVRAMRLPIPVPVALLRLLRRSLGQSLSTKLGLTRIFSLVQLPPMDSERSLQEIGIRLRPLAHGMHRSGHGQRRGLLREAGVLLSYLLKRPPPTSLVIRYARALEHAGKTRPVVHSRLLMRWPILLALLDDPGPQQSSDGQELAWRLQVALGIAEASPRGAQVFLGAQPPGRLVGTLVALGVAVLKALAWKLAALACRPLARQLLRESEAHRDA				NA	NA	NA	NA	NA
D1-36_02249	402			hypothetical protein	TTGACCTTTATCAAGTACGGCGCCATCCAACTCATCGCCTATGCCTTGGACATGGGCGCTTTCGTGCTGTTGGTCGCGCTATTCGAATATCACCCCATCCTGGCCAACATCGCTGGCAAAGGCATCGCCGGCGTGTTCGCGTTTTTCTTGCATCGGCACTTCACGTTCCAGTCGTCCCATGGCAGCGCCAAGGCCCAAGCGGTGCGTTATTTCTCTTTGCTGGCCATCAATATCCCGGTCGCTTCGGTGCTGTTCAGCGTGGGGCTGTATTTCGTCGACAGCCCGGCCCCGGTGAAATTTGTCTGCGACGTGGTCTGCGTGGCCTTGACCTATTGGATCAGCAAACTGTTCGTTTTTCATTCCAATACGCGCACGCCCGCTGACCGAGCCGAGGGCATTTGA	MTFIKYGAIQLIAYALDMGAFVLLVALFEYHPILANIAGKGIAGVFAFFLHRHFTFQSSHGSAKAQAVRYFSLLAINIPVASVLFSVGLYFVDSPAPVKFVCDVVCVALTYWISKLFVFHSNTRTPADRAEGI				NA	NA	NA	NA	NA
D1-36_02250	774			hypothetical protein	TTGTTATCGGACCCGTCGCTCAAGGCACTGGATGTCGACGGCATCGAGCGCCTTGATCTTCACGGCAAAGTACTGGCGCGCAAGCGGATGCTGCGCGAAGTGTTCGTGGAGTTCCACCACACGTTTCATCGCCTGGCAGCGCGCTACTTCAAAGTCGAGGGCCTTGAAGTGGAATTGGGCGCCGGCATCGCGCCCATGCGTGACTCATACCCCGAGGTACTGGCCACCGACGTTGTCTGCACCGAACAACTGGACATGGCACTCAATGCCGAGGCCATGAGCCTGGACGATCATTCGGTCAGGGCCTTTTACGGCCAAAACTGTTTTCACCATTTTCCTCATCCCGATCGGTTTTTCACCGAGTTGCAAAGGACCCTCAAGATTGGCGGCGGCGTCATTTTGATCGAGCCCTTCCACGGTCCCTTTGCCGCGTTTCTCTACAAGCGCCTGTTCAGGTCGGAAGGGTTCGACCGGCACTTCCCGTCCTGGGAAACGCCGTCGACCGGCCCCATGAACGGCGCCAACCAGGCCCTGAGCTACATCATCTTCGTACGCGACAGGCAAGCATTCGAACGCAAGTACCCTGGCCTGGAAATCGTCCATCAGGAGATATGCGGCAATTACCTGCGCTATTTGATTTCCGGAGGCCTGAACTTCCGCCAGTTATTGCCTGACGCACTGATCCCCGCGCTCAAAGTCATGGAGAAACTACTGCATCCGTTGCGACGGCTACTGGCGCTGCATCACATTGTGGTGCTCAGGAGATCGTCTTGA	MLSDPSLKALDVDGIERLDLHGKVLARKRMLREVFVEFHHTFHRLAARYFKVEGLEVELGAGIAPMRDSYPEVLATDVVCTEQLDMALNAEAMSLDDHSVRAFYGQNCFHHFPHPDRFFTELQRTLKIGGGVILIEPFHGPFAAFLYKRLFRSEGFDRHFPSWETPSTGPMNGANQALSYIIFVRDRQAFERKYPGLEIVHQEICGNYLRYLISGGLNFRQLLPDALIPALKVMEKLLHPLRRLLALHHIVVLRRSS				NA	NA	NA	NA	NA
D1-36_02251	1023			hypothetical protein	ATGAATTCAAAAACAGCGCTTTTCACGGACGAACAACGCGTCGCCGTCGTCATCCCCAGCTATCGGGTCACCGCGCACATCCTCGGCGTCATAGACGCCATAGGGCCGGAGGTGTGGCGCATCTATGTCATCGACGATGCCTGCCCGGACGATTCAGGCGCGCACGTACTGGCGTCCTGTAACGACCCTCGGGTCAAGGTGCTGCCCCACCACGTCAACAAAGGCGTGGGTGGCGCGGTCATGACCGGCTACCGGGCCGCCCTCGCCGACGGTGCGAGCATCATCGTCAAAGTCGACGGCGACGGCCAGATGGACCCGGCCCTGATACCGCTGTTCATCGAGCCGATCCTCGCCGGTGAAGCCGACTACACCAAGGGCAACCGGTTTTTCAATCTGGAGGAAGTCCAGTCGATGCCGCGGCTTCGCCTGTTTGGCAACGCCATATTGTCGCTGATGGCCAAACTGTCGACGGGTTACTGGGATCTGTTCGACCCCACCAACGGCTACACGGCGATTCACCGCGACGTCGCCAGGCTGTTGCCCCTGGACAAGGTCAGCGAGCGCTATTTCTTCGAGACGGACATCCTGTTCCGCCTGAACACCGTGCGCGCCGTGGTGGTGGATATTCCAATGGAGGCCCGATATGGCGACGAAGTCAGCCACCTCAAGATCTCGAAAATCATTGGCGAGTTCCTGTTCAAACATCTGCGCAACTTCACCAAGCGCGTGCTCTATAACTACTACTTGCGCGACATGTCCCTGGCTTCGATCGAGTTGCCGATCGGGATCCTGATGTTCTTGTTCGGCATCCTCTTCGGCAGTTACCACTGGTTCGATTCGGCGCAGAACGGCGTTGCGACACCCGCCGGAACCGTGATGCTCAGCGCATTGCCTATGCTCATGGGGTTGCAATTGATCATGGCGTTCCTCGGTTACGACATCGCCTCGGTGCCTAGCAGGCCACGACATTCCAGGCGTAGTAAAGCCACATCACTGCGGGAAGAAAACTCATTAAAGCGCTAA	MNSKTALFTDEQRVAVVIPSYRVTAHILGVIDAIGPEVWRIYVIDDACPDDSGAHVLASCNDPRVKVLPHHVNKGVGGAVMTGYRAALADGASIIVKVDGDGQMDPALIPLFIEPILAGEADYTKGNRFFNLEEVQSMPRLRLFGNAILSLMAKLSTGYWDLFDPTNGYTAIHRDVARLLPLDKVSERYFFETDILFRLNTVRAVVVDIPMEARYGDEVSHLKISKIIGEFLFKHLRNFTKRVLYNYYLRDMSLASIELPIGILMFLFGILFGSYHWFDSAQNGVATPAGTVMLSALPMLMGLQLIMAFLGYDIASVPSRPRHSRRSKATSLREENSLKR	PGPT0017834_680	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
D1-36_02252	2409			hypothetical protein	TTGCCGAGATACAGCCTGAAATACGCAATGGTGTTGGTGGTTCTGTTGGCCAGTGCGGCGGTAGGCGCGTACGGTTTTTCGACGCTTGAGCTGGCGCCCATGAACAGCGCCACCCGGACGATATTGCTGTCGGTGGCAAGCCTGGCCGCCCTCAGCGTCTTCACTCGCAAGTCACCGTTTATCCTCTGCCTGGGTTTGCTGGCGTGCTTGTCCGTCATTTGTGGGCAGGCAGGGCCGGTGATCGTCGTCGCGGTCTTCGGTTTGTCTGCTGCTGTGCTCGGCAGGTGGATGCTCAGCCGGCACCTTGCGACCGATTGGAGCGTCCACCTGCTGGTGGGAGCGGGTACGCTCGGGACGTTCACGGGCTTGGCGGCCTATTGGCCGATCAATTACCCCGGACTGTATGGCGCGCTGCTGTCATTGCCGCTTTTACTGGGGCACAAACATGCCATGTCGATAGGTCGCGAACTGCTGGGGCACATCCAGGCCTTCCGCACGGCACAAACCTCTATCCAAACGGCGCTCGACGTACTGATCTGCGGCTTCGCCTGCCTCTACGTCTTGGTGGCCTTCATGCCGGAGGTCGGTCACGACGCATTGGCCATGCACCTCTTCGTTCCATCACAACTGGCGCAGCGGCATCAATGGTCGTTCGACGCGAGCACCTATGTCTGGGCGGTCATGCCGATGCTGGCCGACTGGATCTACAGCATTGTCTATCTGCTCGCCGGCGAAACGGCGTCACGCTTGAGCAACTGTGCATTCACCCTATTGGTGACCTGGCAGATCCACAACATGACGCTCTGGGCCGGAGGCTCTGCCTCCAGTGCTCGCTGGGCAAGCCTGATTTTTCTCTCGACGCCTCTCGCCTTTGCCGAGAGCAGCAGCCTGCACATCGAGTCGGCATGGACCGCCTTCCTGCTGGCCGGGACCCTGGCGATCCTGAAGGTCTCAAGCTTCACACCCAAGCCTGGGGAGCGCTTGTCGCAATTGCTCCTGGCCGGCCTCCTGCTGGGCTTCGCCATGGCGGCCAAGGCCGTGACCCTGAGCGTCCTGCCGGTCCTGCTGGTGGTTCTCTTGTGGCAGTACAAGGCCTGGGCGATCCAAGGCATCGTCAAAACGCTGCTGCTGGGCAGCGCTGGCCTGATACTGGCCGGTGCGACCCCTTACGTCTCGGCCGGGTATTTGACTGGCAATCCGGTGTTTCCGTTTTTCAATGCCATCTTCCATTCGCCGCTCTGGCCGAACATCAACTTCGAGCCGCCAGCCACTTTCGGCACTGGGATGACCTGGGACACCCTCTATCGAATGGTCTTTGACTCGCCCGAGTTCATTGAGGGGCGAGTCGGAGCGGCAGGCTTCCAGTGGCTGTTGCTGCCCACGGCCGCCCTCGCCGTGCTGTTGAGCGGCAGCCGCAAAGCCCTGTGCATTCTCCTGGTGGGTGCTGGCGCGATGTTCATGACGTTTCAATCGACGGCTTATCTGCGTTACGTGTTCCCCTCTTTCGCGCTGTTCTCGGTGATCCTCGCGCTGCCGTTTTCCCACGACAAGACCTTCCCACGCAGCCTCGCCATCGGGGCCGGTGTCTTGTTGATCCTGACCAATACCCGTTTCATCCAGGCCGCGACTTACTACGGCGAAATCAAACCCTCTGCATTGTTGAGCCAGGCAGGTCGAGAGAGGTATCTGCAGGAACGCTTGCCCATCCGGAAAATGGTCGACACCGTCAACGCCTTGAACACCAGCTATCAGCCCGTGGCGGTCTTTGCGGCTCCGTTGATGGCGGGCCTGCGCAGCGATGCCCTTTACGCGTCTTGGTACAACCTGAAGTGGAAAGGTGAGTTCGAGACAGCGACGTCTCCATCGGAACTTGCACGGCGCTTGCGCCAGCGCCAGGTCAACTGGTTGATCATCGACCTCAAGTCAGTTCCCCAGGCGCGACTCGATCTTCTGCGCAATGTGTCCACGTCATACGCCCGACTGGGTGACCTGGACCTGCGCAAACTCAACGTCTCGCACGTCGAGCACCTGCTCAACCCGGCGCTGTCCAGCCTCGAGGGATGGAACCTGACGTCGCCTTCGAGCTATGACCCGTCGCGCAAGATCCTCACGGTCGACGTGAAGACGCCTGCAACACAGCGGGTCGAAGTGACACCAGGGCTGACGTACATCAACGGCGTGTCTGCGCGCTGCGCAACGACAGCCACCACGGGAAGAATCCAGGCCAATTGGATGGATGCCAAAGGTGACTTCATTGCCGCCAGCATCGAGACGTTTGAATGCACCGAGCAATGGGAGACCCATGAGATGAATGTCGTTGCCCCCGCGAATGCCACGTCCGTGATCATTTATGCGTCCGGCCATACAGACACTCCCCTGGAGTTCAAGTCACTATCATTCAGGCAATAA	MPRYSLKYAMVLVVLLASAAVGAYGFSTLELAPMNSATRTILLSVASLAALSVFTRKSPFILCLGLLACLSVICGQAGPVIVVAVFGLSAAVLGRWMLSRHLATDWSVHLLVGAGTLGTFTGLAAYWPINYPGLYGALLSLPLLLGHKHAMSIGRELLGHIQAFRTAQTSIQTALDVLICGFACLYVLVAFMPEVGHDALAMHLFVPSQLAQRHQWSFDASTYVWAVMPMLADWIYSIVYLLAGETASRLSNCAFTLLVTWQIHNMTLWAGGSASSARWASLIFLSTPLAFAESSSLHIESAWTAFLLAGTLAILKVSSFTPKPGERLSQLLLAGLLLGFAMAAKAVTLSVLPVLLVVLLWQYKAWAIQGIVKTLLLGSAGLILAGATPYVSAGYLTGNPVFPFFNAIFHSPLWPNINFEPPATFGTGMTWDTLYRMVFDSPEFIEGRVGAAGFQWLLLPTAALAVLLSGSRKALCILLVGAGAMFMTFQSTAYLRYVFPSFALFSVILALPFSHDKTFPRSLAIGAGVLLILTNTRFIQAATYYGEIKPSALLSQAGRERYLQERLPIRKMVDTVNALNTSYQPVAVFAAPLMAGLRSDALYASWYNLKWKGEFETATSPSELARRLRQRQVNWLIIDLKSVPQARLDLLRNVSTSYARLGDLDLRKLNVSHVEHLLNPALSSLEGWNLTSPSSYDPSRKILTVDVKTPATQRVEVTPGLTYINGVSARCATTATTGRIQANWMDAKGDFIAASIETFECTEQWETHEMNVVAPANATSVIIYASGHTDTPLEFKSLSFRQ				NA	NA	NA	NA	NA
D1-36_02253	2451			hypothetical protein	ATGGACCAGATCAACCGTCTTGTTGATTGCATTAACCAACTGTCTCGCTCAACACAATCCAGATCCATTGAAGCCCAGCAGTTGGTCAAGGAAATCGAGAACCGAGATCGGCTTATCAGACAACTGCGTCTTGGTTCACAAGCGCTTCGCACTCGCCTGGCGCTCCAGGAAGGCAAGACCGGGCGCTTGCGTGAGCAACTGCGAGTGGCCGAGCAGCGCCTCAAAGAAACCGAGGCACTGCTGCGGACAAAACACAGCGAGGCGGTCGCGCTTTCCGATTGGGCGGTGGACCTGCGCGCCCAGTTGGCGGCGAAACAGGCTGAGCTGTTCAAGCTTTCGGACTGGGGCAACGCCATCGAACGCGCCCCCCTGCGTTACTCCATACGCAAGCAGCTTTATCGGATATCCCGCCGGGTCTATGCCTGGTTGCCCCTCACCGCGCACCAGAAAAGCAAGCTGGCGCATCGGCTTCGAAGCTGGTTGAAACGCCCCAAGGCGACGCCGGGCGAGCCCGCGACAGCCACCAGCCTGATCCCGCTGCAATCGCTGCCACCGCCCGTAGACCTAGCCGTACCGTCGAGCCAAGGCCAGCCCACGATTTTGATGTTCGGGGTGATCGATTGGCACTTTCGCATCCAGCGTCCGCAAAACCTGGCCAAGGAGCTGGCCAGGGCCGGACAGACCACTTTTTATATTTCCAACAACTTCATCGACGATGATGCCCCAGGCTTCGAAGCAGAACCCTTGGCAGGCTCCGACCGGCTGTTCCAGATCCGTTTCAAGGTGCGCGGCGCGCCGCCCATCTATCACGCCCCACCGTCCGCCGCCGCGATCCATCAGTTGTGCCAAGGCCTGGCGATGCTGCTGGAATCGGCGAATGTCGGCGCCGTGGATTGCATCGTCCAGCACGCCTACTGGTTCCCCATGGCGAGGCGTGTCCCCAACGCCACGCTGGTCTATGACTGCATGGACCACCACGAAGGCTTCGGCAATGTCGCCCAGGAATTGCTCGACCTTGAGATCGCCTTGATGCGCAGGGCGGACCTGTTGGTGGCGACCTCCGACTGGATCGAACAACACGGCAAACGGGAAAACCGCAACGTCAAGGTGATCCGCAACGCCTGCGAGTTCAGCTTCTTCAGGCAGCGTCCCGACAAGGTCTATCAGGACACCGAGAACAGGAAGATCATCGGCTATTACGGCGTCATCGCCGAATGGTTCGATCTGGACCTGGTCAAGCAAGTCGCCCGGACGTTTGCGCAACACTTGATCCTGTTGATCGGCAGCGACACCGTCCAGGCAAGGAAATACTTCAAATCCTGCCCGAACGTGGTCTTTGAAGGCGAAGTCCCCTATGCCTCCCTGCCCTACTACCTGCACGCCATGGACGTGTGCCTGCTTCCGTTCAAGGTCATGCCGCTGACCCTCGCCACCAACCCGGTCAAGGTCTATGAGTACCTGAGTGCGGGCAAACCGGTGGTGTCGGTAAAACTGCCGGAGTTGAGTCAGTTCGGCGAACTGGTCTGGACGGTTGAACAGCCAACGCAGTTCATCTCGGCCGTCCGCAACGTCCTGGATGCGCTGCCAGAGGCCGGCGCCACGCGACAGGCGCGCCAATCCTTCGCCCAGGGCCAGACCTGGCAGCATCGAGCCGCCAGCCTGCGCCAGGCCATCGCGACGTTGCCATTGCCCAAGGTCAGCGTCGTGGTGTTGACCTACAACAACCTCGAACTGACCAAGGCCTGCCTCGACAGCCTGCTGACCCAAAGCCAATACCCGAACCTTGAGATCATCGTCGTCGACAATCACTCCAGCGACCAGACCCCGAGCTACCTCACGGCCTGGGCCGACGGCCATCCTGACCGGATCGTCATCCTGAACTCCGAGAACAAGGGGTTCGCCGCCGGCAACAACCTGGGCCTCGCGGCGGCCACTGGCGACTATCTGGTCATTCTGAACAACGACACAGTCGTCACCGCCGGCTGGGTCAGGGGCTTGATCCGCCATCTGCGCGACAACAAGGAAATCGGCATCATCGGCCCGATCACCAACAACATCGGCAATGAAGCCAAGGTCGGCACCCACTATGAGCGAATAGAGGACATGCCCGCCGAAGCCGCGCAAATGACCCGCGCCCGCATGGGCGAGTGGTTCGAAATCAACACCCTGGCGTTTTTCTGCGTGATGCTTCCACGCTCGACCTACGAGCAGATAGGCGGTCTCTGCGAAGAATATGGCCTGGGGTTCTTCGAGGATGACGATTACTGCCGCCGCGTGCAGCGCCGTGGCATGCGCGCGGCCTGTGCCGAAGACGTCTTTGTCCACCATCACCTGTCCGCCTCGTTCAACGCCTTGGGTGCCAGTAAAAAACAGGCACTTTTCGAGAAGAACCGGGCGATCTACGAGAGCAAGTGGGGCACCTGGGTCCCCCACAGGTACCGAGATGCATAG	MDQINRLVDCINQLSRSTQSRSIEAQQLVKEIENRDRLIRQLRLGSQALRTRLALQEGKTGRLREQLRVAEQRLKETEALLRTKHSEAVALSDWAVDLRAQLAAKQAELFKLSDWGNAIERAPLRYSIRKQLYRISRRVYAWLPLTAHQKSKLAHRLRSWLKRPKATPGEPATATSLIPLQSLPPPVDLAVPSSQGQPTILMFGVIDWHFRIQRPQNLAKELARAGQTTFYISNNFIDDDAPGFEAEPLAGSDRLFQIRFKVRGAPPIYHAPPSAAAIHQLCQGLAMLLESANVGAVDCIVQHAYWFPMARRVPNATLVYDCMDHHEGFGNVAQELLDLEIALMRRADLLVATSDWIEQHGKRENRNVKVIRNACEFSFFRQRPDKVYQDTENRKIIGYYGVIAEWFDLDLVKQVARTFAQHLILLIGSDTVQARKYFKSCPNVVFEGEVPYASLPYYLHAMDVCLLPFKVMPLTLATNPVKVYEYLSAGKPVVSVKLPELSQFGELVWTVEQPTQFISAVRNVLDALPEAGATRQARQSFAQGQTWQHRAASLRQAIATLPLPKVSVVVLTYNNLELTKACLDSLLTQSQYPNLEIIVVDNHSSDQTPSYLTAWADGHPDRIVILNSENKGFAAGNNLGLAAATGDYLVILNNDTVVTAGWVRGLIRHLRDNKEIGIIGPITNNIGNEAKVGTHYERIEDMPAEAAQMTRARMGEWFEINTLAFFCVMLPRSTYEQIGGLCEEYGLGFFEDDDYCRRVQRRGMRAACAEDVFVHHHLSASFNALGASKKQALFEKNRAIYESKWGTWVPHRYRDA				NA	NA	NA	NA	NA
D1-36_02254	819			hypothetical protein	ATGCAGTCGTTCAGTATTTCTCCTGCCGCCATGATCAAGAGCGTCTTGATCAATCGGATCCTCATCTACGTGTTGATCCGCCGGGAAGTGACCGGTCGTTACAAAGGTTCGATGCTCGGTATCCTTTGGTCGTTCTTCACGCCGGTTTTCATGCTCGTGGTCTATACCTTCGTGTTCAGTGTCGTCTTCAAGGCTCGGTGGTCCGGCGGCGGCGAATCCAAAAGTGAATTTGCCCTGGTGCTGTTCGCCGGCCTGCTGGTTTTCAACCTGTTCTCCGAATGCCTGACCCGCGCGCCGGGCCTGGTGCTGGCCAATACCAATTACGTCAAGAAGATCGTGTTCCCATTGGAAACCCTGCCCCTCGTATCGCTCGGCGCAGCGCTGTTCCACATGGCTATCAGCGTGCTGGCATGGCTGCTTTTTTATGTGCTTCTGTTCGGCCTTCCCCCGATAACCGCGCTGCTGCTGCCATTGGTGCTGTTGCCGCTGATATTGCTGACGCTGGGTATCTCCTGGTTTCTCGCCTCGATAAACGTTTACCTGCGCGATATCGGCCAGTTCATCGGCATCGTCGTCACCGCGATGCTGTTCCTGTCGCCGATCTTCTACCCTCGCTCGACGCTTCCGCAAAACTACCAGGTCGCCTTGCAGGCAAACCCGCTGACGCTGCCGGTGGAGATGGTTCGCGACGTGTTGTTCTGGGGCAGGCCGCCGCAATGGGAACAATGGGCCACTTACTCGGTAGTCGCCGTGCTGATTGCCTGCGTCGGGTTTGCGTGGTTCCAGAGGACACGCAAAGGCTTCGCCGATGTCATTTGA	MQSFSISPAAMIKSVLINRILIYVLIRREVTGRYKGSMLGILWSFFTPVFMLVVYTFVFSVVFKARWSGGGESKSEFALVLFAGLLVFNLFSECLTRAPGLVLANTNYVKKIVFPLETLPLVSLGAALFHMAISVLAWLLFYVLLFGLPPITALLLPLVLLPLILLTLGISWFLASINVYLRDIGQFIGIVVTAMLFLSPIFYPRSTLPQNYQVALQANPLTLPVEMVRDVLFWGRPPQWEQWATYSVVAVLIACVGFAWFQRTRKGFADVI	PGPT0023304_1140	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
D1-36_02255	2724	btuD_3		Vitamin B12 import ATP-binding protein BtuD	ATGTCGTTTGAAGTGGCCATCAGTGCCGAGAACCTGAGCAAGTGTTATCAGATTTACGAGGCGCCCAAGGACCGTCTGTTGCAGATGCTGGTGCGCGGCAGGAAGCGTTTCTACCGCGAGTTCTGGGCCCTGGACGATGTTTCCCTGACCATCGCCAAGGGGGAGACCGTCGGCATCATCGGCCGTAACGGCAGTGGCAAATCCACCCTGTTGCAACTGATCTGCGGAACGTTGACGCCGACCCGGGGAAGCGTCCGCGGGCATGGCCGGATTGCGGCGTTGCTTGAGCTGGGGTCCGGTTTCAACCCGGAGTTCACCGGCCGCGAAAACGTCTATGTGAATGCGGCGGTGCTGGGCTTGAGTCGCGCGGAGATCGACGCTCGGTTCGAAGACATCATCGCCTTCGCCAACATCGGCGACTTTATCGACCAGCCCACCAAGATCTACTCCAGCGGGATGCTGGTGAGGCTCGCTTTCGCCGTTTCGGTTTGTGTGGAGCCGGAGATCCTGATCGTCGATGAGGCTCTTTCCGTCGGCGATGCATCCTTTCAATTCAAATGCCTGAATCGGCTCGAAGAGCTGGCGGCCAAAGGCACGACGCTGCTGTTCGTCTCCCATGACATGAGCATGGTCAAGCGCTTCTGCCACCGGGTGATCTATCTGCGCGGCGGGCGGGTCGTCGCCAGCGGATCGCCCGATGAAATGGCCGAGTTGCACTTGCTCGACATGCGTGATGAGCAACGGCGCTGGGCCAGTGGCGGTGCCACACAGGTGACGCGCAAGCCGTTCATGGGTGGCCAGGAGGGGATCGCCTTCGGGACCGAAGAGGGGCACATCAGCGCTGCCTGCTTCACCAATACCCAACAGCCTTGCTCCAGTTACCTGTATGGCGATGACATCGAGATCCGCGTCGAGGTGGTGCTGCATGAATCGATCACGCAACCCAACATCAGTTTCACTGTGCAAGAGGCAAGGCTGCTGGTGATTGGCGGCGGCAACTTCGCGCTGTCACCGGGCCCGGCCGAAAACGGCTGGCGGCGGTCGGCGATCACGGTGCGCTTCCCGGCCAACCTCGCCGAGGGACGCTATCATGTCACCCTCAAGCTGTTGCACGGCGCCACGGAAGAGACCTCGCAGTTGATCGAGAAACAGGTCGCGCCATTAGCGTTCGGTATGTTGCCAAACCACAGGAATTTTCTGGGCATGGTCGACCTGGGATTGCAGCGGGTCGGCTCGCGAGCGGTTGAGACGCTTGCCGAGGCTTGTCGGACTCAAGGAGAGGAAACGATGACGGAACACCCGGACGAGCACACATGGCAGGTTGCTATATGTGGCACTTTTGATGTCGAGAATTACGGCGACCTGCTGTTTCCGATCATTGCCGAGGCGGAGTTGGCCCAGCGCTTGGGTCGAGTCGAGCTGCATCGGTTTTCCTACCATGAAAAGAAACCACCTGAGTGGCCCTACGCGGTAACGTCGCTGACGGAGCTTCCCCATGTCGCGGCCCGCCTGGATGGCGTCTTGATCGGCGGCGGTTTCCTGATTCGATTCGATAAAGTCGTTGCCCACGGCTATGGTCCGACAACGCCCGATATTCATCACCCGACCGGCTATTGGCTGACGCCTGCGCTGATCGCGCTGCAGCACGCGATTCCGGTGATCTGGAACGCCCCCGGGATGCACTGCAACGGTGTCCCCGATTGGGCCAGGCCATTGTTGACGATGGCCCTGGAGCAAAGCCAGTACGTGAGGGTTCGTGATGCCCTCACGCGCGACACCCTTGGCGCGCTCACCCAGCGCGCCGAGATCGAGGTGCTGCCCGATACCGCGTTCGGCTTGCCCCGCTTGATCGACGAGCAGCAGCCCTGCGCTGAGTTCATTCGCCTGCGCGAGAGCGCTGGGCTGACGGGGCCCTACATCGTGATCCACGCCATCCACGTGGTGGAGTCCTTCGTAAAACTGTTCGAAGACCACCCCGAGGCGTTCCAGGATTATCAGTTCCTGGTGGTGCCGATAGGTCCGGTGTTGGGTGACGATCCGTCCGTCATTGCCGCGCGCCTGCCCGGGGCCATTACCTTGGCGGTCTGGCCAGAACCGTTGCTGATGGCAGAGATTATCAGCCAGGCGCAAGCGGTGATCGGCCATAGCTACCACTTGGCGATCACCGCCCTGGCGTTTGGCGTCCCGGTGTTTTGCTCGGCGGACCTGACCACGGGCAAGTACACGGCACTGGCGGGGTTCGACTCGCTTCATGCCTTGCCGGAGGCTGGGACGATCGACCCGCAATGGTTCGTTTCGCGCGTCGGCAAGACCCGTCCATCGCCGGCGGCGCTCGAGGCGGCGGATCGGTTGGTCGAGCACTGGGATCGGGTCGCGACGATCATTCGCCAGGGTAAAACCTCATCCCAACCTGCATTGGGCGCGTTTATGCAGCACCTGCCCAATCTGCTCGAAGCCGCCGTCCAGGGACATGAACCGTTGGCGGTTGAGTCGACGGCAAGCCACATCGTACCGGAGCCGGGCATCATCGAGCCGGCGCCAGACCTCGCTGCGCAGGACCTGGCCCAGCAACATCGGATAGTCCAGCTCAGCCAGCAGTTGGCCCTCAGTGACGCCAGGATGCTTGAGCTGCAGAATTCCAATTCGTTCCGAATGACCGCGCCACTGCGTTCCATCGCCCGTGGTATCAGAAACCTGACAGCGAACAGGAACAGACAATGCTAG	MSFEVAISAENLSKCYQIYEAPKDRLLQMLVRGRKRFYREFWALDDVSLTIAKGETVGIIGRNGSGKSTLLQLICGTLTPTRGSVRGHGRIAALLELGSGFNPEFTGRENVYVNAAVLGLSRAEIDARFEDIIAFANIGDFIDQPTKIYSSGMLVRLAFAVSVCVEPEILIVDEALSVGDASFQFKCLNRLEELAAKGTTLLFVSHDMSMVKRFCHRVIYLRGGRVVASGSPDEMAELHLLDMRDEQRRWASGGATQVTRKPFMGGQEGIAFGTEEGHISAACFTNTQQPCSSYLYGDDIEIRVEVVLHESITQPNISFTVQEARLLVIGGGNFALSPGPAENGWRRSAITVRFPANLAEGRYHVTLKLLHGATEETSQLIEKQVAPLAFGMLPNHRNFLGMVDLGLQRVGSRAVETLAEACRTQGEETMTEHPDEHTWQVAICGTFDVENYGDLLFPIIAEAELAQRLGRVELHRFSYHEKKPPEWPYAVTSLTELPHVAARLDGVLIGGGFLIRFDKVVAHGYGPTTPDIHHPTGYWLTPALIALQHAIPVIWNAPGMHCNGVPDWARPLLTMALEQSQYVRVRDALTRDTLGALTQRAEIEVLPDTAFGLPRLIDEQQPCAEFIRLRESAGLTGPYIVIHAIHVVESFVKLFEDHPEAFQDYQFLVVPIGPVLGDDPSVIAARLPGAITLAVWPEPLLMAEIISQAQAVIGHSYHLAITALAFGVPVFCSADLTTGKYTALAGFDSLHALPEAGTIDPQWFVSRVGKTRPSPAALEAADRLVEHWDRVATIIRQGKTSSQPALGAFMQHLPNLLEAAVQGHEPLAVESTASHIVPEPGIIEPAPDLAAQDLAQQHRIVQLSQQLALSDARMLELQNSNSFRMTAPLRSIARGIRNLTANRNRQC	PGPT0023305_2	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
D1-36_02256	687			hypothetical protein	ATGCTAGATATCTCTCGTCTCACGCGTGCGGCGCTCAAAGCTCACCCGTACTCATGGGCGCAAATTGACGGCCTGTATTCGGCCGAGGATGCAACGGCGTTGGCGGCATCCTTTCCCCACGATCATTTCAAGACCGTGAGCGGATATGGTGGCGAAAAAAACTATGACTACGAGGCCCGCGCCCTGGTGGGCATGGGCACCAACGCGATTGCCTTCCCGCAGGAGCTGAGCGAAGCGTGGTTGCGGCTGGCGCGGGATCTCGGCTCGGCCGGCTATCGAGAAGCCATGTCGGAAATGACCGGGATCGATCTGCGTACCGTGCCCATGGAGGTCAACGTTTTTCATTACGGTCCCGGTGCGAGCCTCGGGGCCCATCCGGACCTGCCGGATAAACTGGTCACCCATATCCTGTATTTCAACGAGTCCTGGGACCGCAACGACGGCGGTTGCCTGAACATCCTGCATCGCAACGATCCCACCGCCGTGGCGGCCGAGATTGAACCGCTGGTGGGCAATTCGGCGGTTCTGGTGCGCTCGGATAATTCCTGGCATGCGGTCACTCCCGTGGTGAGCGGTTGCCATGCTTCCCGCCGTAGCCTGACGGCTACGTTCTATCGACCAGGGTCAGTCAGTTCCATGTGGCCGCCCGGCGACAACACACCGCTGCATGGGTACCCACGTGCTTGA	MLDISRLTRAALKAHPYSWAQIDGLYSAEDATALAASFPHDHFKTVSGYGGEKNYDYEARALVGMGTNAIAFPQELSEAWLRLARDLGSAGYREAMSEMTGIDLRTVPMEVNVFHYGPGASLGAHPDLPDKLVTHILYFNESWDRNDGGCLNILHRNDPTAVAAEIEPLVGNSAVLVRSDNSWHAVTPVVSGCHASRRSLTATFYRPGSVSSMWPPGDNTPLHGYPRA				NA	NA	NA	NA	NA
D1-36_02257	2172			hypothetical protein	ATGGGTACCCACGTGCTTGAGCTCGACCGAACCTTGATCGACCGCGACGCCGCGTTGGCCCAAAGAGACGCGGCCATCAATGAGCGCGACACTGCCTTGGCGAAAGTCGAGTTCCTGCAAAACACCCGTTCGTGGCGTTTCACCCGGCCACTGCGCTCGCTTTTCCGTGTGATGCGTTATGGTTTTGGCGCAGCAACGCAGGAACTTCCCGAACCCGCCGCCGCACTTGTCTACCCGGCGGCACCGGAGCCGTTGCCGAACGTTGAGGCGCAACCGGATTTCGCCACTCAAGGGCGCCTGGATATTCTCTGCTTCGCCAACATCGATTGGGCCGCACGCTTCCAGCGACCCCAGCAATTGATGAGTCAGTTTGCGAACCATGGTCATCGGGTTTTCTACATCGTCCCCTCCAGTGTGCCGGAGCAGGGAGAGCCCTATCGTTTGACGTCAGTGGCGCCCAATGTCTTTGAAGTTGCACTGCAGCGAGGGGCGCAAGAGGCGTATTACGAAAAAACAGTGACACCTGAAAATCATCAGGCGTTATCTGGTGCCTTGGCTGCGCTGATTGCCGATATGCGCATCAGGACCGCGCTCACAGTGGTGCATATAGCCTACTGGAGTCCCGTGGTGCTCAGCCTGCGTGCCGAACGTGGCTGGCGCGTCCTCTACGATTGCATGGATGACTGGGATGGTTTCCCGAACATCGGCGAACAGCTGCTGGACGAGGAAAAGACCTTGATCGCCCAGGCGGACGTCGTCACTGTTTCCGCCGCGCTGCTACACCAGAAATGGTCCGCCCATAACCCTCGTTGCGTGCTGGTGCGAAATGCCGTGGATTTCGCTTTTTTTCGCCAGCACTGTTTTAGCAACGATGTGCTGAGCGGGCTTTGCGGCCCGGTTATCGGGTACTACGGCGCCCTGGCGCAATGGCTCGATTACCCATTGCTGGCGGCGTTGGCGGACAGGCGCCCAGGGTGGAATTTCATTCTGGTGGGAGACGTTTTCGTCGAGGACATGGCGGGCCTGGAGCACAAGCCCAATGTGCAATTGCTGGGCCGCAAGCCTTACTCGCAAATGCCGCTTTACCTGGATCATTTCGATGCCTGCCTGATTCCCTTCAGGCTCTATAACGTGACGCATGCGGTTGATCCGGTGAAATTCTATGAGTACATCAGCGCAGGCAAACCGGTGATCTCCACGCCACTGGCGGAGATGAGCCTTTATGAAGACCTGCTGTACTTCGCAACCGGTGTCGATGAGTTCATCGAGCAGATCGAACGGGCCTTGGCCGAGCGCGACCTGGCCCTGTTCAAGCGACGTGTGGAACTCGCCCGGGCCAACGATTGGAAGGACCGCTACAACAGCATGCAACAGGCTATTGTCGGGCTGTACGAAAAAGTCTCCATCGTCGTGGTGACGTACAACAACCTCAACCTGACGGTTCAATGCGTAAACAGTATTTTGCGCAATACCGCCTGGCCCAACTACCAGCTCATCGTCGTCGACAACGGCTCGGAGGACGGCACGAGGGAGTATCTGGAGCGTCTGAGTCGAGAGGTGCCGACGACAAAAGTTATCCTCAATCCTGACAATCGGGGCTTTGCCGCGGCCAACAATCAGGGCTTGCGCGAAGCCGATGGTGACGTGTTGCTGCTGCTCAATAACGACACGGTAGTGCCTGACGGCTGGCTGGATCCGTTGGTCATGCATTTGAGGGATTCGAGCATCGGCTTGGTCGGGCCGGTCACGAACACGGTCGGAAACGAAGCGAAAATTGAAATTTCCTACACCGATATTCAACATATGCAGGCGTTTGCAGACCGTCACACCCAAGCTCACACCGGACAGTCGTTCGATATCCCGATGCTCGCAATGTTCTGTGTGGCATTTCGCCGAGGCATCCTCGACGAGGTGGGGTATCTGGATGAAGCATTCGGTATCGGAATGTTCGAAGACGATGACTACAGCCGTCGCGTGCAGGCGGCGGGCTATCGCACCGTCTGTGCCGAAGATGCGTTCGTTCATCACTACGGGCAGGCGTCCTTCAGGAAGCTGATCGCCAGTGGTGAGTACCAAGCCCTTTGGGATAAGAACCAGGCGTACTACGAAAGCAAATGGGGCGCTTGGCAGGCCCATGTTCATCGCCCAGGCAAGTCCTCATCCATCAAATGA	MGTHVLELDRTLIDRDAALAQRDAAINERDTALAKVEFLQNTRSWRFTRPLRSLFRVMRYGFGAATQELPEPAAALVYPAAPEPLPNVEAQPDFATQGRLDILCFANIDWAARFQRPQQLMSQFANHGHRVFYIVPSSVPEQGEPYRLTSVAPNVFEVALQRGAQEAYYEKTVTPENHQALSGALAALIADMRIRTALTVVHIAYWSPVVLSLRAERGWRVLYDCMDDWDGFPNIGEQLLDEEKTLIAQADVVTVSAALLHQKWSAHNPRCVLVRNAVDFAFFRQHCFSNDVLSGLCGPVIGYYGALAQWLDYPLLAALADRRPGWNFILVGDVFVEDMAGLEHKPNVQLLGRKPYSQMPLYLDHFDACLIPFRLYNVTHAVDPVKFYEYISAGKPVISTPLAEMSLYEDLLYFATGVDEFIEQIERALAERDLALFKRRVELARANDWKDRYNSMQQAIVGLYEKVSIVVVTYNNLNLTVQCVNSILRNTAWPNYQLIVVDNGSEDGTREYLERLSREVPTTKVILNPDNRGFAAANNQGLREADGDVLLLLNNDTVVPDGWLDPLVMHLRDSSIGLVGPVTNTVGNEAKIEISYTDIQHMQAFADRHTQAHTGQSFDIPMLAMFCVAFRRGILDEVGYLDEAFGIGMFEDDDYSRRVQAAGYRTVCAEDAFVHHYGQASFRKLIASGEYQALWDKNQAYYESKWGAWQAHVHRPGKSSSIK				NA	NA	NA	NA	NA
D1-36_02258	852			hypothetical protein	GTGCGGATAGGACTATTGGGCGGCTCCAGCTTCCTGGGCGAGCGCGCATTGCCATTGCTGACACAGGCCGGCCACTCGACGACATCATTCACCCGAAGCCCGCCAAAGCCGCCCTGCCCCGGTGTGACGTGGCGAAAAACCGGCGACTGGCACGGACTGACGCTGGACACTTTCCTATCCTTTGCTCCTCTTTGGGTGTTGCCCGATTATCTAGAGCGTCTTGCCAGCACCGGCGTCAAACGTGTTGTGGCCCTGTCCTCCACGAGCCGCTTTGCCAAGCAAGCATCGCCTGACGTTCGGGAGAAGGACGTCGCGCAACGCTTGATAAACGCAGAAGAACAGTTGGAACAGTGGGCGACCGAACGGCGGATCGAATGGGTGGTCCTGCGACCGACCCTGATCTATGGCTTTGGCGCCGACAAGAATATTTCAGAGATAGCGCGCTTCATCCAACGCTTTGGATTTTTCCCGCTCATTGGCGGCGCGACTGGGTTGCGCCAACCGGTGCATGGTGCGGACGTAATCCAGGCGTGCCTGGGCGCCTTGAGCGTGCCGGGGCTGCCCAGTGGCGCCTACAACCTATCGGGAGGAGAAACGCTGCCGTACCACACGATGGTGGGCCGGATATTCCAGGCCATGGGACGCCCGGCGCGAACATTGCCTCTTCCCGCCGGAGCGGTGAGCCTGGGCGTTTCGATCCTGCGCTGCCTGCCCCGCTACCGACACCTTTCAAGCGCATTGGTGGCGCGGATGAATCAGGACCTGGTGTTTGACCACTCGAATGCCCGTGATCGGCTTGGCTTTGCTCCCAGGGCATTTCATTTGATGGATGAGGACTTGCCTGGGCGATGA	MRIGLLGGSSFLGERALPLLTQAGHSTTSFTRSPPKPPCPGVTWRKTGDWHGLTLDTFLSFAPLWVLPDYLERLASTGVKRVVALSSTSRFAKQASPDVREKDVAQRLINAEEQLEQWATERRIEWVVLRPTLIYGFGADKNISEIARFIQRFGFFPLIGGATGLRQPVHGADVIQACLGALSVPGLPSGAYNLSGGETLPYHTMVGRIFQAMGRPARTLPLPAGAVSLGVSILRCLPRYRHLSSALVARMNQDLVFDHSNARDRLGFAPRAFHLMDEDLPGR				NA	NA	NA	NA	NA
D1-36_02259	948			hypothetical protein	ATGTCAGAAGCAGTGGAACTGCTCGCTATAGATGAATGGGCCAAGCCATCGCCACACAGCGAGTGTGACGTGATTATCGTCAACTACAATGCCGGCGACCTTTTGCTGGCGAGTGTCAGGTCGGCGTTTGCGGCCGGTGCCTCCAAGGTGATCGTGGTGGACAACGACTCCCGCGATGACAGCCTGATGCTGCTTGCGCGAATCGACGCTGCGACCGGCTCGCTTCGGATTGTCCGTAATGCCACCAACCTCGGCTTCGCTGCGGCGTGCAACCAAGGTGCCCGCCTGTCGGAGGCGTCCAATCTGCTTTTCCTGAACCCGGACACCGAGCTCGCCGCCGATGCCATAGACCGCATGCTGCAGGCACTGCGCAGCTCACCGGGGATCGGCATGGTCGGCGGCTTCCTGTGCAATCCGGACGGCAGCGAGCAAGCGGGTGGGCGCAGGGTGTTTCCAACGCCCAGGCGAGCTTTCATGCGGGCCTTCGGCCTTTCGCGGCTCTCGGCTCTTTTCCCATCGGTGCTGTCCGATTTTTTACTGCACAAGGAGCCGCTGCCCCGCGTTCCCGTTGCCGTCGAGGCCATTTCCGGGGCTTGCATGCTGGTCAAGCGCGAAGCGATCGAAAGCGTCGGGCTTTGGGATGAGGATTATTTTCTTCATTGCGAGGACTTGGATTGGTGCATGCGGTTCCATCAGGCCGGCTGGCGCGTTCTGTTCGTGCCGCATGCCCGGGTGATGCACGTCTTCGGCGGCTGCAGCCGTCACCGTCCCTATTTCGTCGAGTGGCACAAACACCTGGGGTTCCTGCGTTTCTATCGCAAGTTTTTCCGTCGCAAGTACCCAACCGTCCTATGGGTCAGCGTGATCATCGGGGTCTGGCTTCGATTCGGCCTGGTGGTGCTTCGCCACGCGACTAACCGGCTTGGACAAACCTGGAATCCACGGTAA	MSEAVELLAIDEWAKPSPHSECDVIIVNYNAGDLLLASVRSAFAAGASKVIVVDNDSRDDSLMLLARIDAATGSLRIVRNATNLGFAAACNQGARLSEASNLLFLNPDTELAADAIDRMLQALRSSPGIGMVGGFLCNPDGSEQAGGRRVFPTPRRAFMRAFGLSRLSALFPSVLSDFLLHKEPLPRVPVAVEAISGACMLVKREAIESVGLWDEDYFLHCEDLDWCMRFHQAGWRVLFVPHARVMHVFGGCSRHRPYFVEWHKHLGFLRFYRKFFRRKYPTVLWVSVIIGVWLRFGLVVLRHATNRLGQTWNPR	PGPT0024205_281	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-ARABINOGALACTAN|LIPOARABINOMANNAN_REMODELLING	CE-REMODELLINGL-RHAMNOSYLTRANSFERASE_ACTIVITY,PGPT0024205-wbbL-K16870	NA	NA
D1-36_02260	570			hypothetical protein	ATGACTAATCGAATGGGGGCAGGCGAAATCGACAAGGTCGCTCGATTATTTTTCAGATGGCTTATGCAGACCGCTGGAGCATCTTCGCCAAGCGCGACGCTTGAACCTGGCAAGGCCCCGGGCCTGGGCCCGGAATTGCCATATGTGCGGCGTATCGCAGCAGATCATTACTTCTTGATCGCTATCAGCAGGTCGAAAAGCAACTGCGCGACGGGCGACAATGTTCGCCCGCGACGTGATATCAGCCCCAAGGTCCGGCTGATCGCCGGATCCATCAGCGGGCGCGTGCTTGACTTCACAGAACGACCGGGGCCGGACATCGCGATTGGCCAGGGCCTGGTCGATCAGAAAGCGGTTGCCGCTGCCTTGCGCCAGGCTGATGTAGTCCACCTCGGTCAGGTCGTCCCACGTCAGCGATTCACGTTCGGTCAATCGAGACCTCGGCGACTTCCAGAAAAGCACGATCAAGTGGGCGGTGCTGCTTTCGCTTCTGATGACGGGCTTGTCGTTGCTTACCGGGGCGATAAGCCTGTTTACCTGACGGCCCAAGACGAAACTGGTCGAAGTTAA	MTNRMGAGEIDKVARLFFRWLMQTAGASSPSATLEPGKAPGLGPELPYVRRIAADHYFLIAISRSKSNCATGDNVRPRRDISPKVRLIAGSISGRVLDFTERPGPDIAIGQGLVDQKAVAAALRQADVVHLGQVVPRQRFTFGQSRPRRLPEKHDQVGGAAFASDDGLVVAYRGDKPVYLTAQDETGRS				NA	NA	NA	NA	NA
D1-36_02261	426			hypothetical protein	ATGCGATTTATGGTTATCGTCAAGGCCAGTCCGGAATCGGAAGCCGGGGAAATGCCCAGCGCGCAACTGCTGGCCGCCATGGGCGCTTACAACGAAGAGTTGGTCAAGGCCGGGGTGATGCTCGCCGGTGAAGGCCTGCATCCCAGTGCCCAGGGCGTGCGCGTGCGCTTTTCTGGTAAGGACCGGAGCGTCGTCAAGGGCCCCTTCGCTGAAACCAGGGAGCTGATCGCCGGTTTCTGGATCTTCCAGGTCAGTTCATTGCAGGAGGCCATCGACTGGGTCAAGCGTTGCCCGAACCCGATGGTCAGCGATAGTGAAATCGAGATTCGCCAGATCTTCGAAGCCGAGGAATTTGGCGAGTCCTTTACCCCCGAGTTGCGCGAGCAGGAAGATCGCTTGCGGGCTCAGATGTCTGGTCAACAATGA	MRFMVIVKASPESEAGEMPSAQLLAAMGAYNEELVKAGVMLAGEGLHPSAQGVRVRFSGKDRSVVKGPFAETRELIAGFWIFQVSSLQEAIDWVKRCPNPMVSDSEIEIRQIFEAEEFGESFTPELREQEDRLRAQMSGQQ	PGPT0014960_2	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
D1-36_02262	408			hypothetical protein	ATGAAAATCATTCCGTACCTGACCTTCGACGGCCGCTGCAAGGAAGCCTTTGCGTTGTACAAGGAGGTGCTTGGCGGCGAACTGTTTTCCATGTCCTTCGCCGACGCGCCAGAGGACGTGGGCATGCCCAAGGACCCAAACCTGATCATGCACGCCTGCCTGACGGTCGGCGATTTCAGCCTGATGGCTTCCGACTGCTCGCCTTGCCAGCCGTTCAGCAAGCCGCAGGGCGTGTCGGTTTCCCTCAACGTCGACAGCGCGCAGGAGGCTGAGCGACTCTTCAAAGGCTTGAGCGAGGGCGGCCAGGTACAAATGCCATTGGCGCAGACATTCTGGGCGGAACGTTTTGCGATGTTCGAGGACCGTTTCGGAGTGGCCTGGATGGTCAATTTCGAAGGGCGGAAATAA	MKIIPYLTFDGRCKEAFALYKEVLGGELFSMSFADAPEDVGMPKDPNLIMHACLTVGDFSLMASDCSPCQPFSKPQGVSVSLNVDSAQEAERLFKGLSEGGQVQMPLAQTFWAERFAMFEDRFGVAWMVNFEGRK	PGPT0030505_3038	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM	PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030505-phnB|yjdN-K04750
D1-36_02263	1437	nylA		6-aminohexanoate-cyclic-dimer hydrolase	ATGAAAAGCGCTGAATACGCCGAATACGATGCACTGGGCCTGGCTGAGCTGATCGCCAACGGTCACGTCACCCAAGATGAAGTCCGGGCCGCGGCCTTGTCCGCTATCGAACAGCTCAACCCGAAAATCAATGGGCTGGTAGAGGTTTGGGAAACTGAACCCGAGGCTCCGTCCGGGCCGTTCCAGGGCGTGCCGTTCCTGGTCAAAGACCTCGGACTGACCGCCAAAGGGCGTCTGAATGAGCTGGGCAGTCGCTTGGCCGCCGGATGCATCGCCGACGAAGACTCCACCCTGATGACGCGCTTGCGCCAAGCGGGACTGGTGACCCTCGGCAGGACCAACACGCCGGAACTGGCGGCCAGCACCACCACCGAAGCCGTATTTCCAGGGCCGACACGCAACCCGTGGGATCTGAGTCGCAGCGCAGGCGGGTCAAGCGGTGGTTCGGCCGCCGCTGTAGCCGCCGGCCTCGTACCGGCGGCGCACGCCACCGATGGCGGCGGCTCTATCCGCGTACCCGCCGCCGCCACCGGACTGTTCGGGCTCAAGCCCAGCCGGGGCAGGATTGCGATGGGCCCGGCGGTGGACGAAGTATGGGCCGGGCTTGCGGTGCACGGTGTCGTCAGTCGAACCGTGCGTGACAGCGCTGCTTTACTGGATGCCATCGAGGGCGCCGCCCTGGGTGATCCCTTTGAGATCCCCAGACCGCAGCAGCCCTATCTATCCGAATTGAATCGCGCCCCCGGGTCACTGCGCATCGGCCTGCTCCCGCATCCGCTGAACGGCACTCGCTGCGCCGAGCCGGTCGCGACAGCCACTCGCCAGGTTGCCGCCCAGCTCGAAGGCCTGGGGCACCGTGTGGAAGAGATCCGCCTGGACATCGGCCTGAGCTGGGACGCCTTCGTTGAAATGAATGCCCGCTTCTGGTCAGCCAACACCGCAGCCTGGATCAATGCCATCGCAGCGGCAACCGGCCGGCCCGTCGATGACAGCACACTGGAGCCCGCCACGCTTTCGCTGCATCGAATGGGCAGTGAACTCACTGCCATCGATCTGCTTGGGGCCATGCATTCAAGGAACCTCGTCACTCGCAGCATGGGCAGCTTTTTCTGCAACTTCGACATCTTGATGAGCCCGACACTGCCAGCGCTGCCTCCTGCCATTGGCCACTATAACGAAGGCCAGGAGTTCCTAGATGGCAGGGGCTGGATGGATCGGGTCTTCAGCCATTCGCCGTTCACCGCATTGGCAAACGTGACGGGGTCCCCTGCCATGTCCATGCCACTGGCGTTCGATCCGCATACCGGCCTGCCAATCGGCATGCAGTTCTCGGCGGGTTTTGGTCGGGAAGACAGGTTGCTGCGTCTGGCGGGACAACTGGAGGGTGTGTTGCCTTGGGCTGGACGCAAACCCGAGGTTTGGGCTGGGAAGCTTTGA	MKSAEYAEYDALGLAELIANGHVTQDEVRAAALSAIEQLNPKINGLVEVWETEPEAPSGPFQGVPFLVKDLGLTAKGRLNELGSRLAAGCIADEDSTLMTRLRQAGLVTLGRTNTPELAASTTTEAVFPGPTRNPWDLSRSAGGSSGGSAAAVAAGLVPAAHATDGGGSIRVPAAATGLFGLKPSRGRIAMGPAVDEVWAGLAVHGVVSRTVRDSAALLDAIEGAALGDPFEIPRPQQPYLSELNRAPGSLRIGLLPHPLNGTRCAEPVATATRQVAAQLEGLGHRVEEIRLDIGLSWDAFVEMNARFWSANTAAWINAIAAATGRPVDDSTLEPATLSLHRMGSELTAIDLLGAMHSRNLVTRSMGSFFCNFDILMSPTLPALPPAIGHYNEGQEFLDGRGWMDRVFSHSPFTALANVTGSPAMSMPLAFDPHTGLPIGMQFSAGFGREDRLLRLAGQLEGVLPWAGRKPEVWAGKL	PGPT0006115_4504	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
D1-36_02264	573			hypothetical protein	ATGCGGCCCGAACGTATTCCCCAGTTAGCCCCCAAAGAAAGGATTCTCGATGCTGCCGAGGCGCTGTTTTTCAGCGAGGGCATCAGTCGGGTGACGGTGGATGCCATCGCGGCGAAGGCCAAGTCGACCAAGATGACGGTGTACCGGCATTTCGATTCGAAAGACGCGCTGGTGCTTGAATGGCTACGTTTGCTCGTCGAGAAATATGCCGAGGTCTTCGAGGCGCTGTCGGCGCAACACATCGACGATCCCAAGGCGCAGATTCTCGGGTTTGCCGAGTTCATCGCCCACGACCTTTCGGCGTTGTCATACAGGGGCTGTCCATTCACCAATTCGCTGGCGGAAATACCCGAGTCGGCCAATCCCGCCCGCGTTCTGATCGAGGAACATAAAAAGCGTCAGTTCTTGCGATTGGTCGCGCTCTGTGAAGAAGCTGGCCTGCCCGAGCCGGACGAAGTGGCAATGGAGCTCACGTACCTGATGGAAGGGGCCCAGGTCGTTGCGCAGAACAAAAGCATCGAGGACGTCGGCGCAAACCTCATGACAATGGTTCAGAAAAAAATTGCTGGATAA	MRPERIPQLAPKERILDAAEALFFSEGISRVTVDAIAAKAKSTKMTVYRHFDSKDALVLEWLRLLVEKYAEVFEALSAQHIDDPKAQILGFAEFIAHDLSALSYRGCPFTNSLAEIPESANPARVLIEEHKKRQFLRLVALCEEAGLPEPDEVAMELTYLMEGAQVVAQNKSIEDVGANLMTMVQKKIAG				NA	NA	NA	NA	NA
D1-36_02265	912	dmlR_14		HTH-type transcriptional regulator DmlR	GTGAAAAGAATCATTCGAGTCGATGATCTCCAAGTATTTGTGACCACGACGGATGCCGGAAGCTTTTCAGCGGCAGCACGGTTGCTGGACATCTCTCCGGCATTGGCGAGCGTCGCGGTGCAACGACTCGAGGCCAGCCTGGGGGTGAGGTTGTTCGTGCGGTCCACCAGGCGGCTGCGTTTGTCGGATGACGGCGAGCGGTACCTGAGCCACGCGCGGCAGGCGCTGGAGGCCTTGGAAAATGGGGAGCTTGCCCTGGCCCAGGGGCGCGATGAAATTTCCGGGACGCTGCGCTTGTCCATGCCCTCGGACATCGGCCGCAACCTGCTTCTGCCATGGCTGGATGAGTTCCAGCAGTTGCATCCCAAGGTCCTGTTGCAGTTGCGCGTCAGCGACCAGGTGGCTGATCTGTTTACCGAACACCTGGACGCGAGCATTCGTTATGGCCAGTTGGCTGATTCAAGTCTCGTGTCCCTGGCGCTCGCGCCGTCCAACAGACGGACGGTGTGTGCCTCGCCCGACTACATTGCACGCCATGGCCGCCCAGAAACGCCCGGCGAGCTGAGCAGGCATAATTGCCTTCGTTATGTGATGGGCGAGCAGACCTTCGAACGCTGGAGTTTCCAGACGCCGCAGGGGGTGGAAACCGTCCAGGTGCTGGGCAACCGCATCAGCGATGACGCTGACATCGTCAGGCGTTGGGGGGTGTCGGGACTTGGCGTCGTCTACAAATCCAAGCTCGATGTGATGGACGATATCCGCAGCGGGCGCCTGGTGGAAATCTTCCCGCCGGACTATGGCCAGCCCGCGCCGCTGCAACTGGTGTGCGCCCACCGGACCTCGCTGACGCCGGCGGTCCAGGTGTTGAGGGCGTTCCTGGTGGCGCGTTTCGAGCGTTACATCAGCGGGTGA	MKRIIRVDDLQVFVTTTDAGSFSAAARLLDISPALASVAVQRLEASLGVRLFVRSTRRLRLSDDGERYLSHARQALEALENGELALAQGRDEISGTLRLSMPSDIGRNLLLPWLDEFQQLHPKVLLQLRVSDQVADLFTEHLDASIRYGQLADSSLVSLALAPSNRRTVCASPDYIARHGRPETPGELSRHNCLRYVMGEQTFERWSFQTPQGVETVQVLGNRISDDADIVRRWGVSGLGVVYKSKLDVMDDIRSGRLVEIFPPDYGQPAPLQLVCAHRTSLTPAVQVLRAFLVARFERYISG	PGPT0012355_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	INSECTICIDAL_COMPOUNDS	INSECTICIDAL-FIT-SYSTEM,PGPT0012355-fitG-K19618	NA	NA
D1-36_02266	1557			hypothetical protein	ATGGAATGGATCGTTGATCCCACGGCCTGGCTGGGCCTACTGACGTTGATCGTGCTGGAGCTGGTGCTCGGCATCGATAACCTTGTCTTCATCGCCATCCTGGCCGATAAACTTCCCCCCGAACAACGCGACCGTGCCCGTGTCATCGGCTTGTCCCTGGCATTGCTGATGCGCCTGGGCCTGCTGGCGAGCATTTCGTGGATGGTGACCCTGACCAACCCGCTGTTCGAAATCTTCGGCAAGACGTTCTCGGGCCGAGACTTGATCATGCTGTTCGGCGGTGTGTTCCTGTTGTTCAAGGCAACCATGGAACTGCATGAGCGCCTCGAAGGCCACGTGGCGCAACGCTCCGGCAATGCTGCCTATGCGTTGTTCTGGCCCATCGTCGCGCAGATCGTGGTGCTGGACGCGGTTTTTTCCCTGGATGCGGTGATTACCGCCGTGGGCATGGTGGAGCACCTGTCGGTCATGATGATCGCGGTGATTTTCTCCATCGGCTTGATGATGATCGCGAGCAAGCCGCTGACCCACTTCGTCAACAGTCATCCGACCGTCATCATGCTCTGCCTGGGCTTCCTGATGATGATCGGCTTCAGCCTCACCGCCGAAGGGCTGGGCTTCCACATTCCGAAGGGCTATCTGTACGCCGCGATTGGCTTCTCGATCCTGATCGAAATGTTCAACCAGTTGGCACGCTCGCGGCGCAAGAAAAGCCTGCAGGGTTTGCGGCCGATGCGCGAGCGTACCGCCCACGCGGTGATGCGCTTGCTGGGCGGCCAGAAGCTCGGCCCCGACGAAGTCGGCGAGGAAATAGCCGACATGTTGGCCGGCGAAGAACCCGAACAGGTTTTCCATAGGCGGGAACGGGTGATGATCAGTGGCGTGCTGCAATTGGCGGAGCGCCCGATACGCAGCGTGATGACTCATCGCGCGCAGATCGATCACCTTGACCTGGCGAACACTGCGCAGGAAATCCGTACGACACTGATGCATTCGTCGTATTCACGCTTGCCGTTGATCCGCGAAGGTCGCGTCGACGAACCCTTGGGCTTCGTCCACAAGAAAGAGCTGCTTAAGGAAATGCTGGCGGGCAACCCGCCGAATCTGGAAACCATGGCGCGCAAGGCCATCAACCTGCTGGACAGTTTCACGATCCTCAACGCACTGGAACAAATGCGTAAGGAGTCAACCCACATCGCCTTCGTGGTGAACGAGTTCGGTGATTTCGTCGGCCTGTTGACCATGACTGACATTCTCGAGTCCATCGCCGGGGAACTGCCCGATGCCAGTGAAATCGAGGGTCCGAACATCGTTGCCCAGGAGGGAGGTTTTCTGGTCAGCGGCGCCCTGAATCTCAGCCAGGTCCGCGAACATATCGGCTTCCAGGCGAAAGCGACGGAGGACTACCAAACGCTCGCCGGCTTGGTGATGAGCTTGCTGGACCGTCTGCCCATCATCGGCGATAGCCTGCGTTGGGAACAATGGAGCATGACGGTCGTCGAGGTGGAAGAGCGGCGGGTGACCCGGGTGTTGTTACGCGTCGAGGACCAGGGCTGA	MEWIVDPTAWLGLLTLIVLELVLGIDNLVFIAILADKLPPEQRDRARVIGLSLALLMRLGLLASISWMVTLTNPLFEIFGKTFSGRDLIMLFGGVFLLFKATMELHERLEGHVAQRSGNAAYALFWPIVAQIVVLDAVFSLDAVITAVGMVEHLSVMMIAVIFSIGLMMIASKPLTHFVNSHPTVIMLCLGFLMMIGFSLTAEGLGFHIPKGYLYAAIGFSILIEMFNQLARSRRKKSLQGLRPMRERTAHAVMRLLGGQKLGPDEVGEEIADMLAGEEPEQVFHRRERVMISGVLQLAERPIRSVMTHRAQIDHLDLANTAQEIRTTLMHSSYSRLPLIREGRVDEPLGFVHKKELLKEMLAGNPPNLETMARKAINLLDSFTILNALEQMRKESTHIAFVVNEFGDFVGLLTMTDILESIAGELPDASEIEGPNIVAQEGGFLVSGALNLSQVREHIGFQAKATEDYQTLAGLVMSLLDRLPIIGDSLRWEQWSMTVVEVEERRVTRVLLRVEDQG				NA	NA	NA	NA	NA
D1-36_02267	1362	srpC	COG2059	putative chromate transport protein	ATGAACCCCAAGCTTGCCGAATCTGCCCTTGAAAATGATCCTGCGAGACCTGAACCGATCAGCTTGCGCGTCGCCTTCTGGTTCTGGCTGAAGCTGGGCTTCATCAGCTTCGGCGGCCCAGCGGGACAGATTTCGATCATGCATCAGGAGTTGGTCGAGCGACGGCGCTGGATCTCCGAGCGACGCTTTCTTCATGCCCTCAACTATTGCATGTTGCTTCCCGGGCCGGAGGCCCAGCAGTTGGCGACCTACATCGGCTGGCTATTGCATCGGTCCTGGGGCGGCGTAATCGCCGGCGCCCTGTTTGTATTGCCCTCTCTTTTCATCCTGATCGTCTTGTCCTGGGTGTACATCGCCTTTGGTGAAGTTCCGGTAGTGGCCGGCCTGTTCTACGGGATCAAGCCAGCAGTGACCGCGATCGTCGTGCAGGCGGCGCATCGAATCGGCTCCAGGGCGTTGAAGAATAATTGGCTTTGGGCCATCGCCGCCGCCTCGTTCACGGCGATCTTCGCTTTCAATGTTCCGTTCCCGCTGATTGTGCTGGGTGCGGCGCTGATCGGTTACATCGGTGGCCGCCTGGCACCAGGAAAATTCCAGGTTGGTGGGCACAGCGCCGCCAACAAGTCATTCGGCCCGGCCCTGATCGATGACGAGACACCCACGCCCGAGCATGCCCGGTTCAGTTGGCCAAGGCTGGCATTGCTGGGATTGATTGGCGCCGTGCTGTGGGCCTTGCCAATGGCCGCCCTGACCGCGCTGTTTGGTTGGGAAGGCACGCTGACCCAGATGAGTTGGTTCTTTACCAAGGCCGCGCTGCTGACCTTCGGTGGTGCGTATGCGGTGCTTCCCTATGTTTACCAAGGCGCGGTCAGCCATTACGGCTGGTTGACTCCGACTCAAATGATCGACGGCCTTGCGCTCGGCGAAACCACCCCCGGGCCGCTGATCATGGTCGTGGCTTTCGTAGGTTTCATCGGGGCGTATGTCTCGCAAGTGTTTGGCGCCGATCAAGTGTTCCTGGCCGGTGCCGTTGCGGCAGCGTTGGTGACGTGGTTCACCTTCCTGCCCTCCTTCCTGTTCATTCTCGCGGGCGGGCCGTTGGTGGAATCGACTCACAACGCGCTCAAGTTCACCGCGCCGCTGACCGCCATCACCGCGGCGGTGGTCGGGGTCATCCTCAACCTGGCGTGTTTCTTTGGTTACCACGTGCTCTGGCCAACCGGGTTCAGCGGCAGCCTCGACTGGCCTTCGGCGTTGATAGCGATCGGGGCGGCGATTGCGTTGTTTCGCTTCAAGCGGGGCGTGATCCAGGTATTGCTCGGCTGTGGGCTTGTTGGCTTGGCCGTGCACTTATTTCGCTAG	MNPKLAESALENDPARPEPISLRVAFWFWLKLGFISFGGPAGQISIMHQELVERRRWISERRFLHALNYCMLLPGPEAQQLATYIGWLLHRSWGGVIAGALFVLPSLFILIVLSWVYIAFGEVPVVAGLFYGIKPAVTAIVVQAAHRIGSRALKNNWLWAIAAASFTAIFAFNVPFPLIVLGAALIGYIGGRLAPGKFQVGGHSAANKSFGPALIDDETPTPEHARFSWPRLALLGLIGAVLWALPMAALTALFGWEGTLTQMSWFFTKAALLTFGGAYAVLPYVYQGAVSHYGWLTPTQMIDGLALGETTPGPLIMVVAFVGFIGAYVSQVFGADQVFLAGAVAAALVTWFTFLPSFLFILAGGPLVESTHNALKFTAPLTAITAAVVGVILNLACFFGYHVLWPTGFSGSLDWPSALIAIGAAIALFRFKRGVIQVLLGCGLVGLAVHLFR				NA	NA	NA	NA	NA
D1-36_02268	870	azoB		NAD(P)H azoreductase	ATGAGCATCTTGATCACCGGCGCCACGGGCACCATCGGTTCTCTCATCACCACACGACTTGCCGAGAAAGGCGCCGAAGCGAAGGCCCTGGTGCGTCAGCCCGGCAAGCGCGACTTCCCGGTTGGCGTGACGGAAGTCGTTGGCGACCTGACCGACGTAGCCTCGATGCGCGCCGCGCTCGCGTCGGTACGCACGTTGTTTCTACTCAACGCCGTCACGCCGGACGAAGTGACACAGGCCTTGATCACACTCAACCTGGCGCGTGAAGCCGGTATCGAGCGCATCGTCTACCTGTCGGTGATACATGCCGACAGGTTCACCAATGTCCCGCATTTCACCGGCAAGCATACGGTGGAGCGCATGCTCGAAAGCCTCGACATGCCGGCGACCATCCTGCGTCCGGCGTATTTCATGCAGAACGAGCTCATGGTCCGGCAGACCATCCAGGACTATGGCGTATACCCGATGCCGATCGGCTCGGCCGGGGTCTCGATGATCGATGCGCGAGACATCGCCGACATCGCCGTCGCCGAATTGCTGCGACGCGACCGGGCTCCCGCTGCCCTCGAACGGCTCACGCTGGAACTGGTCGGCCCCCGGGCCCTGACTGGCGCAGCCGTGGCGCAAACCTGGGGTTCGGCGTTGGGCCGGGAGGTGGTTTATGGCGGTGACGACGTGGCCGCCTTCGAAACCCAGATGGCGTCGTTCGGCCCTGGCTGGCTGGCCTACGACATGCGCCTGATGATGGCCGGTATCCAGGCGTTCGGCATGCAAGCCGAGGCAGGAACGGTGGAGCGACTCCAAGCCATTCTGGGCCGTCCGTTGCGCAGCTATGAAGACTTCGTTCGCGAGGCCGTCGGCGGCGCTTGA	MSILITGATGTIGSLITTRLAEKGAEAKALVRQPGKRDFPVGVTEVVGDLTDVASMRAALASVRTLFLLNAVTPDEVTQALITLNLAREAGIERIVYLSVIHADRFTNVPHFTGKHTVERMLESLDMPATILRPAYFMQNELMVRQTIQDYGVYPMPIGSAGVSMIDARDIADIAVAELLRRDRAPAALERLTLELVGPRALTGAAVAQTWGSALGREVVYGGDDVAAFETQMASFGPGWLAYDMRLMMAGIQAFGMQAEAGTVERLQAILGRPLRSYEDFVREAVGGA				NA	NA	NA	NA	NA
D1-36_02269	876	dmlR_15		HTH-type transcriptional regulator DmlR	ATGAACCTGAATGCGCTCATTGATTTCGCGCTGGTCGCCACCAACGAAGGATTGGGCAAGGCAAGCCGCGCGAGCGGCCGGTCGAAAGCCACCTTGTCGCGGCGCATCGCCGAATTGGAGGAACAGCTGGGCGTCAGGCTGATCGAGCGTAGCGCCCGTGGCCTCAAGCTTACCGAAGCCGGCGAAATGCTGATTGCCCGGACCGAAGGGCCGCTGGGGGAGGTGATCGAAGCCATGACGGCGACCCAGGAAGGCGTGTCGACGCCTAACGGACGCTTGCGGGTGGCGGCGCCGGTCCTGTTTTCCCAATTGACGATGGGGCGCATTGGCGCGGATTTCTGCGCGGCCTATCCGCAGGTGACGATCGATGTGCGGGCGGAGGACCGCCTGGTGGATCTCGTCGAGGAACAATTCGACGTCGCCATCCGAGTCAACCCAAGCCCGGACAGCAATCTCGTCGGACGTTGCTTCGCCAAGGACCGGTTGGTAGTCGTGGCCGCGCCTGGCGTGGCCAAGCCTGAACCCGGAGCGGTCAGGCCAGTCCCCAGTATCGTGCCTTCCAATTTCCAGCCGACCCACTGGAATCTTGATGATGGGCGCTTGATCCTGGAGCCCATCCCCAAGCTGTGGTTCTCTTCCTACCTGATGATTCGCGACGCCGCGGTCGCGGGTGGGGGCGCCGCGCTGCTTCCGAAATCGATTGCCTGGAATCAATTGGCCCGCGGCGAGTTGGTCCAGTGGGGGATGGTCGCAAGCGCCGAGCGACAGTTGTGGGTCCTGCACACCTCCAGGCGCCTGGCGGCGCCGAAGGTTCGCGCGTTTGTGGACTTCCTGTGCGCCCGTTACCCGGATATGTCATTGACACTGGAAGGATAA	MNLNALIDFALVATNEGLGKASRASGRSKATLSRRIAELEEQLGVRLIERSARGLKLTEAGEMLIARTEGPLGEVIEAMTATQEGVSTPNGRLRVAAPVLFSQLTMGRIGADFCAAYPQVTIDVRAEDRLVDLVEEQFDVAIRVNPSPDSNLVGRCFAKDRLVVVAAPGVAKPEPGAVRPVPSIVPSNFQPTHWNLDDGRLILEPIPKLWFSSYLMIRDAAVAGGGAALLPKSIAWNQLARGELVQWGMVASAERQLWVLHTSRRLAAPKVRAFVDFLCARYPDMSLTLEG				NA	NA	NA	NA	NA
D1-36_02270	249			hypothetical protein	ATGATGACTGTCTATTTTCTTGTCATGAGGATCTGTAGTGGCATGGAAGGCTGTGTGGAAGAGCGAAACCCCGGGCCGACCTATGCATCCAGACAGATGTGTATTGAAAGCGCGCAAGTCATGGCACCGCGCAAAGGCGTGAAATACAAATGCCGCAGCGAGCGGTTATGGGTCTCCGACGAAGTGCAGAGCCCGGGCGGTTACGACGCGGTCGTTTCAACCAAGGTCAAGGAACAGCCCTTACCTTGA	MMTVYFLVMRICSGMEGCVEERNPGPTYASRQMCIESAQVMAPRKGVKYKCRSERLWVSDEVQSPGGYDAVVSTKVKEQPLP				NA	NA	NA	NA	NA
D1-36_02271	1416			hypothetical protein	ATGAAGCAGTTATTTGAAGGTTGTGTAAAAGTGATTGTCCCCTGTGGTTCATTGGGAGCGGGTGTACGAGAAGAAGAAATTGCTTATGGGCTGGCGGCGGGGGCGCAAGTAATTGCCACGGACGCGGGTTCAACCGACAGCGGCGCGGCTTATCTTGCCCTTGGCAAATCGAAGAATAACCGAGGCGCGGTCAAGCGCGACCTGACTATTCTGATGAAGGCCCAGGCGCAATCCGGCGTGCCGATTATTGTCGGGACTTCGGGGCAGGCGGGCGGCGATCTGAATCTTGATTGGACGCGTGATATTGCCTTGGAAATTGCCGGGGAGTTGGGTGTGTCACCAAAGATTGCGCTCATTTATTGCGAGCAAGACAAGCAAACCATTAAAAAGCTGAACGCTGAAGGTCGTATCAAACCATTGCCGCCCCACGCCGAGTTGGACGACGCGACAGTGGACGCCTGTGAGCACATTGTCGCTGCCCTAGGGGTTGAACCCTTCCTCGCCGCGCTGGACGCGGGCGCCGATATCATATTGGCCGGCCGTTCGACCGACACAGCCGTCATAGGCTGCTATCCCATTTGGAAAGGCGCGCCATGGGGACCGTCCTGGCATGCCGGCAAGACCGGTGAATGCGGCGTGCAATGCGCCGTCAACCCGACGCTAGGGTCGGGGATCCTGCTCAGTGTTGACGCGAACGGCTTCGAAGTCGAGCCGTTGAGCCTGGACAACCAGTGCACGCCCCATAGCGTATCGGCCCATATGCTCTACGAAAACAGTGACCCGTTCCGGTTGTTGGAGCCCGGTGGAATCTTGAACGTGGCCCAGGCGCGCTACACCGATTTGAATGGGCGGGCTGTTCGGGTAGAAGGCTCGCAATGGGAGCCGATGCCTTACACCATGAAGTTGGAAGGCGCTGCCGCCGGTTTGTACCAAACCATCATGCTGGTGGGCATCCAGGACCCCGATGTGCTAAAGGACATCGATGGTTTTCATGACCGTTTGCTGGACGCGCTATATAAGAGAACACGTCAGTCGATTCCCGCTGAAGAGTTGGGCGAGTTTCATATTTCCCTGCGCATGTACGGGTGGAATGGCGTGACCGGTGTCAAACCCGCAGCCGGAACGTTACCGCCACCGGAAATAGGGATGTTGTTTGTCGCCACGGCTGCAACGCAGGAAATGGCCAATACCATTGCCCAGGCGTGTAATCCGTACTTCTTCCATTATCCAAGCGTGATGGGTAAGGAGTTGCCTTCCTATGGGTTTGCCTTTACACCGGCCGATATACCTCGCGGGCAAATATTCGAGTTCAAGTTGAATCACGTGGTGCAACTTGAGAATCCCCTTGAATTGGTTCGTTTGAAGTGGATTGATCTGTCGGACACCACAATAGCTGTGAAGGAACTTGCACAATGA	MKQLFEGCVKVIVPCGSLGAGVREEEIAYGLAAGAQVIATDAGSTDSGAAYLALGKSKNNRGAVKRDLTILMKAQAQSGVPIIVGTSGQAGGDLNLDWTRDIALEIAGELGVSPKIALIYCEQDKQTIKKLNAEGRIKPLPPHAELDDATVDACEHIVAALGVEPFLAALDAGADIILAGRSTDTAVIGCYPIWKGAPWGPSWHAGKTGECGVQCAVNPTLGSGILLSVDANGFEVEPLSLDNQCTPHSVSAHMLYENSDPFRLLEPGGILNVAQARYTDLNGRAVRVEGSQWEPMPYTMKLEGAAAGLYQTIMLVGIQDPDVLKDIDGFHDRLLDALYKRTRQSIPAEELGEFHISLRMYGWNGVTGVKPAAGTLPPPEIGMLFVATAATQEMANTIAQACNPYFFHYPSVMGKELPSYGFAFTPADIPRGQIFEFKLNHVVQLENPLELVRLKWIDLSDTTIAVKELAQ				NA	NA	NA	NA	NA
D1-36_02272	309			hypothetical protein	ATGACTAAGTTGCGTGATGTATGCCGGCACGTCCGATCCAAACAAGCGGGGCCGTTCTGGGTTACGTTCGATATCTTTTTCAACGGACGCGAGAATTTCGAACGTTATTCCAATTGCGCGGCACTCTCGCCGGCTCAATTCGCAACGCTCTATGGCACCGACCCGGAACGGGTCAAGCGCATCCCGGTGCCGGATCTGGAAATGGTCAAGATCTCCTATCCCCGTGCGACGCCCCAGGGCGGAATGGTCGAGCGCGACATGCACGCCGGCCAGCAATACGTCCGTCTGCTGGACGTGATCGTCGACTGA	MTKLRDVCRHVRSKQAGPFWVTFDIFFNGRENFERYSNCAALSPAQFATLYGTDPERVKRIPVPDLEMVKISYPRATPQGGMVERDMHAGQQYVRLLDVIVD				NA	NA	NA	NA	NA
D1-36_02273	1374			2-methylcitrate dehydratase	ATGACGGACCCGACCGTTGCGATGCGCCTTGCGCAATATGCCCATGAATTTCGTAGCCAACGCCTGCCCGAAGACATCATCAAACTGGTACGCCAGCGTTTCATCGACAGCCTGGCGTGCATACTGGGCGCCTACGGGGCTGACCCGGTCAAGGCTGCCCTCTGTTACGCCGCTGCAAACACGGCGCAATCATCCAGCGTATTCGGCACCAACCTCAGAACAACGACGGAAATCGCAGCTTTCGCCAACGGCTTGATGGTTCGTTTCCTGGACTACAACGATGGCTACATGGGCCTGGAGCCCGGCCATCCGAGCGATAACATCCCGGCCTGCCTGGCGGTGGCGCAAGCCGAAAACGCATCCGGGGCTGAGTTGGTCTCGGCCATCGTCCTGGCGTATGAGATCCAAATGCGCTTGCAGGATGTGGCGAGCCTGAACAAACGTGGCTGGGACCACGTGAACTACATCAACGTCGCGATGGCGGCGGCGGCTTCCAACTTGATGAAGCTGGACGTGGCGCAGACCGAGCAAGCGATCAACATCGCCCTGAGCGGGCATTTGGCGATGCGGCAAGTGCGCAGCGGGTCGTTGTCCGATTGGAAGGGCTGTTCCGCGGCCAATGCCGCTCGCAACGCGATTTTCGCCGCGCAACTGGCGCGCCATGGCATGACCGGGCCGTCGCCGATCTTCGAAGGCGAGATGGGCTTCTTCAAACAGATTAGCGGACCGTTCGACCTGGACATCAGTCGTTTCGGCACGCCCGGCAACGGCGACTACGCGATACGGCGCTCGCTGACCAAGACGTTTCCCACCAATGGCGAATTGCACACGGCCGTCTGGGCCGCGCTGGATATCCGCAAGCGGATTGACGGCGTGCAGGACATTGCCGCCATTTCAATCGAAACGTCTGAATTCAACCGTCGGGTACTCGCCGATACCCCAGAGAAATGGCTGCCGAAAACCCGCGAAACGGCTGACCACAGCCTGCCTTACAACGTCGCCCGGGCCTTGCTCGATGGCGATATCACGGTCGGCTCGTACGCCGCAGAAAAGATCGCCGATCCCGCAGTGATTGCCTTGATGGAGAAAGTCAGCGTCGTCGAAGATCCGGCGCTCACCGCGCTGTTTCCGCGGCACCTTGCCAACCGTGTTTGCGTAACCCTGAAATGCGGCGAGCTGGTCGTGAGCGAGATGATCACCGGTCCCGGTTCGGTCGAAACGCCAATGACCGATAGCGACTTCGAGCGCAAGTTCCGGCGCATGGCGATGCCGCATCTCGATGCATCGGCACAGGCTGCGGTGCTTGGATTCGTGGCGGGGCTCGAGCATCAAACCGAGTTCGAGACATTGTTTGCGGCGATGGTTGCCTCCTAG	MTDPTVAMRLAQYAHEFRSQRLPEDIIKLVRQRFIDSLACILGAYGADPVKAALCYAAANTAQSSSVFGTNLRTTTEIAAFANGLMVRFLDYNDGYMGLEPGHPSDNIPACLAVAQAENASGAELVSAIVLAYEIQMRLQDVASLNKRGWDHVNYINVAMAAAASNLMKLDVAQTEQAINIALSGHLAMRQVRSGSLSDWKGCSAANAARNAIFAAQLARHGMTGPSPIFEGEMGFFKQISGPFDLDISRFGTPGNGDYAIRRSLTKTFPTNGELHTAVWAALDIRKRIDGVQDIAAISIETSEFNRRVLADTPEKWLPKTRETADHSLPYNVARALLDGDITVGSYAAEKIADPAVIALMEKVSVVEDPALTALFPRHLANRVCVTLKCGELVVSEMITGPGSVETPMTDSDFERKFRRMAMPHLDASAQAAVLGFVAGLEHQTEFETLFAAMVAS				NA	NA	NA	NA	NA
D1-36_02274	1206			hypothetical protein	ATGCCAGAACAAGAAGGCCTTTACCTCTCGGCAGACGAGGCAGCCGCCCTGCTCCGGATCAGCCTGCCGACGTTGTACGCCTACGTCAGTCGCAAGAATATCCGCTCCATCAAAATCGCCGGGACGCCCAAGCGTCGCTATTGGGCAGAGGATATTCAGCGGCTGGTGAAAGTGCCGGCGGCGGAGAAACCCGTGGCGAAGCGCTCATCGCCCTCGGACAGTGCGATTACGCTGATCACCGACGATGGGCTGTTTTATCGTGGCCATGACGTCGTCGAGCTCGCGGACCGGGCCACCGTCGAAGAGGTGGCCGAGTTGATCTGGCAGGTGCCTTCGGCGTTCGGCGATTCGCTGCCTCGCACCCCGAAGGACAGCGCCAAGCTGTTGCAGATTTACGAGCACATGTCTGCCCAGGAAAAAGCCATCGCGCTTTTCCCCTTGGTTCAGCGAGAGAATCCCAAAGCGTTCGACCTTTCCCCGGACAGCTACGCCCGTACAGGCGCCGATGTCGTGAGGTGGTTTGCCGCGTTGGTCGTGGGGACGACCGAACCGAGTACGCAACCCCTGCATGAGTTCATCACCCAGTCGTGCGGCGCCCCGCCGGCCCACGCCGATCTGATCCGGCGCCTGTTGATCCTCAGTATCGACCATGAGCTGGATCACACCACCCACAGCGTCCGCGTCGCCGCCACCACCGGCGCCACTCCGTACTACGCGGTCATCGCTGCACTCGCCGCCGCACGGGGCCATAAAATCGCCTATGGCAGGAATGAAGCCGCCAGTCGGATGATCGAAGAGATTTGTACCGCCGTGGACCCTACGCGACCGATCTTGCAGCGCTACAACCAGGACGGACACATTGTCGGGTTCGGTCCCAATGTCCACTCGATCAACGACCCGCGTGCCAGCAATCTTTTGGCGGCGCTCACGGCTGCCTTTGATGGCGACAGTGAGTTCATCAAGCTGCAAAAAGCCTTCTCGGTGGCCTCGGAGCTCGTGGCGTACCCACCGGAATTCATTCTCATGGTGAGCTTCATCGGCAGGAAACTGGGATTGCGCGGGCAGGAAATTTCATTGGGAGGCGTAGGTCGATCCATCGGCTGGATCGCCCACGCCAGCGAGCAATACAACCAACACCACGAGGGCCGCCCTCGCGCTCGCTACACCGGGACGCTGCCAACGGCGACCGATACCGGACGCCGCTGA	MPEQEGLYLSADEAAALLRISLPTLYAYVSRKNIRSIKIAGTPKRRYWAEDIQRLVKVPAAEKPVAKRSSPSDSAITLITDDGLFYRGHDVVELADRATVEEVAELIWQVPSAFGDSLPRTPKDSAKLLQIYEHMSAQEKAIALFPLVQRENPKAFDLSPDSYARTGADVVRWFAALVVGTTEPSTQPLHEFITQSCGAPPAHADLIRRLLILSIDHELDHTTHSVRVAATTGATPYYAVIAALAAARGHKIAYGRNEAASRMIEEICTAVDPTRPILQRYNQDGHIVGFGPNVHSINDPRASNLLAALTAAFDGDSEFIKLQKAFSVASELVAYPPEFILMVSFIGRKLGLRGQEISLGGVGRSIGWIAHASEQYNQHHEGRPRARYTGTLPTATDTGRR	PGPT0001455_4724	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
D1-36_02275	1290	citN_2	COG2851	Citrate transporter	ATGGCTTGGTTAGGTTTCGCAATGGTCGTCACGTTTATGGCCTTGATCATAAGCAAACGACTTTCTGCTGTGACGGCACTCATCCTTATTCCGGTTGCCTTCGGGCTGGCCAGTGGGGCAGGACCGGAACTGGGCGCGATGGTGATGAACGGCGTCAAGCAAGTTGCGCCCACCGCGTTGATGCTGATGTTTGCAATCCTGTATTTCGCGATCATGTTCGACGCCGGGCTCTTCGAACCCGCCGTGAGGAAAATCCTGCGCCATGTAGGAAATGATCCTCTTAAAGTCGTACTGGGCACTGCATTGCTGGCCACCGTCATCTCCTTCGACGGCGATGGCGCAACGACTGTGCTGATCGTCACGACGGCGTTCCTGCCGCTTTACCTGCGGCTGGGGATGAACCCGCTGATCCTGGCATTGATGCTTTTGCTGACGAATACCGTGGTCAATCTCATCCCTTGGGGAGGACCGATCGCCCGCGCCGCCAGCGCCCTTCACCTTGATGTGGCAGAAATGTTCCTGGGGCTGGTGCCGGCGATGCTGGTGGGGCTTGCCTATGCGTTTGCCGTGGCGTTCTGGATAGGCCGCAAGGAGCGGCGCCGCTTGGGATGGACGCCCGGCACCCAGGACGCCGCACCGCAGGAGGTCGCTTTGCCGACCGTACACGCCGAAACCCATCGGCCGAAACTCTTCTGGGTCAACCTGGTGCTTACCGCGGGGCTCATGTACTCCATGGCCACAGGGCTGGCACCCTTGCCGTTGCTGATGATGGTGGGTTTTTCCCTGGCGCTGCTGATCAACTATCCACGCTTGGCGGAGCAGAAGGCTAGAGTCGCGGCTCACTCGGAAAGTGTGCTGATGGTCATCGCGCTGATATTTGCCTCAGGTGCGTTCACCGGCATCTTGTCCGGCACCGGGATGGTTGATGCCATGTCAGGGAAGATCGTCCAGCTGATTCCCGACGGCGGTGGCCAATACTTCAGCATCATTACTGCGCTGGTGGCCTTGCCGCTCAATTTCCTGCTGTCCAATGACGCGTTTTTCTTCGGCATCTTACCGGTGCTGGGGGCCGCGGCTGCCGAATATGGCATCGACCCGATGCATATCGCTCGCGCGTCGGTGCTGGGGCAGCCGGTGCATGCATTGAGCCCATTGGTTGCAGCGGTCTATCTCATCAGTGGAATCATCAAGCGCGACATGGGCGACATGCAACGCTATTGCCTGCTCTGGGCGATCGGCAGCAGCGTTGTCCTGATTGTAACGGCAGTTATTACCCGGGCGATTTATTAA	MAWLGFAMVVTFMALIISKRLSAVTALILIPVAFGLASGAGPELGAMVMNGVKQVAPTALMLMFAILYFAIMFDAGLFEPAVRKILRHVGNDPLKVVLGTALLATVISFDGDGATTVLIVTTAFLPLYLRLGMNPLILALMLLLTNTVVNLIPWGGPIARAASALHLDVAEMFLGLVPAMLVGLAYAFAVAFWIGRKERRRLGWTPGTQDAAPQEVALPTVHAETHRPKLFWVNLVLTAGLMYSMATGLAPLPLLMMVGFSLALLINYPRLAEQKARVAAHSESVLMVIALIFASGAFTGILSGTGMVDAMSGKIVQLIPDGGGQYFSIITALVALPLNFLLSNDAFFFGILPVLGAAAAEYGIDPMHIARASVLGQPVHALSPLVAAVYLISGIIKRDMGDMQRYCLLWAIGSSVVLIVTAVITRAIY	PGPT0001500_359	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_CITRATE_TRANSPORT,PGPT0001500-TC_CITMHS|CitMHS_family|citN-K03300	NA	NA
D1-36_02276	1398			hypothetical protein	ATGAAATCGATTAACGCCGTCGCTATGACGTTCCTGTCGACATTGTTAATGTCTGAAGTTTGCCTTTCGGCAACCATCAGTGATCCTGACAGGTTCCAGCATGAAGGGAAGTTGAATGCTTATCTTCGTTCGGTCTATATCAATACGCGTATCGCCAACGATTTGATCGAAGATCGCTTTGGCGGTTTTCCGGACGGTGCCGAGCTGGGTGGCACAGGCGTCGGTGCGATCCTGGATTACAACTCCAGTTATTGGGCCGGGGTTGTAGGGATTGATGCCTCTTTGTATGGCGTGGCAATGATCGATTCAAAAGACAATGGCCGGGACCTGTTCGATGATACTGACGGCACCAACGGGGGCTTTGCCAAAGTTGGACAGAGTTATTTCAAGTTGCGTTACGAGGGCAACGGCTGGAATGCCGATTCCCAAGTAGGTCGGGGGCGGTTCGACGCCGGAACGTTGGTCACGCTGGACACTCGGATCGTGCCCGGCTCCTACCAGGGAGGCCGCGCCCATTTGAACTTCACCGAGATGGGAATCGGTCCGCTTCCTGGCACGTTGGGGTTCGAAACCGCCTATATCAACCGCACCTCGCCTCGGGACAGGGAAGACTTCGAGCACCTGCTGAGCCAGACGGGCGAGGAAATCAAGGATCTGTATACCTACGGCATCAATTACGACTTGAAAGCTGTCGAGCTGGGTTACGCCCACGGGGTGGCGCGGGACTTCAATGAAAACACCCGTTATGGGCTGACATTAAAAGCGCCGCTGGGCGACAAAGCCGGTGTGGTATTGGACACCCAATATTATGAGTTCCAGAAAGCCGGGCGAATCTGGGAGCGTGACTGGGAGGCGGGTGAGGCGGCTTACGATGATGACGCGACATGGTTGAATATCAACCTGGGTTTATTGCTCGATAAACTTCGCCTGGGTCTTTCTTTTTCCGAGACCCAGGCAAAGTTGAGCAACGGGCAACTGGGTTATGCCTACTTCGACCACGGCGATAATGTTGACGGCCGGATGGATGCCTGGACACGCTCCGGCAATGATTTCAATAACGACGGTGAGCGAACCTGGCAGATTGGCGCCGAATACGACTTGGGCGGGCATTCTTTATTGGGCGCTTCGCTGGATGGTTTCAAGGTCATGACTATTTATAAACAAGGTGAGTTTGATGCGACCGACCCGTTCAGCGGTCGACGCACCGACGTGACCGAGCGACAAAATGAATATCGCCTCTACTATCGCTTTGACGAAAAAGAATACGCAGGACTTTCCGTGGGCCTGATTTATATCAACTACCGGATTAATCAGGACTTCGTCGCACTGGTTTCCGCTCAACCCGATAACGTGGTGAGCGGTTCGGAAGCGCGGGTCTATCTGGACTACGCATTTTAG	MKSINAVAMTFLSTLLMSEVCLSATISDPDRFQHEGKLNAYLRSVYINTRIANDLIEDRFGGFPDGAELGGTGVGAILDYNSSYWAGVVGIDASLYGVAMIDSKDNGRDLFDDTDGTNGGFAKVGQSYFKLRYEGNGWNADSQVGRGRFDAGTLVTLDTRIVPGSYQGGRAHLNFTEMGIGPLPGTLGFETAYINRTSPRDREDFEHLLSQTGEEIKDLYTYGINYDLKAVELGYAHGVARDFNENTRYGLTLKAPLGDKAGVVLDTQYYEFQKAGRIWERDWEAGEAAYDDDATWLNINLGLLLDKLRLGLSFSETQAKLSNGQLGYAYFDHGDNVDGRMDAWTRSGNDFNNDGERTWQIGAEYDLGGHSLLGASLDGFKVMTIYKQGEFDATDPFSGRRTDVTERQNEYRLYYRFDEKEYAGLSVGLIYINYRINQDFVALVSAQPDNVVSGSEARVYLDYAF				NA	NA	NA	NA	NA
D1-36_02277	1029	ghrB_2		Glyoxylate/hydroxypyruvate reductase B	ATGTCTACACTTCGTCATAAAATAGTGGTCACGCAGCGATTCTTCGATGCCATGGCGACCGACTTCCTGAAGAGCCGCGGCTGTGATGTAGTCGTCGCCGACCTGGCGCCCGGGCAAGCGGACGGCGACCTGAGTGAACAGCAACTGACCGACATCTTGAAGGACGCTGATGGCTGGATCGTCGGGCACGCGACTATCACGTCCAGCCTGTTGGGCTCGCTCCCGCGCTTGCAGGTCATCGCCCGTCGCGGTGTGGGTTACGAACGGGTTGATACGGCGGCGGTGGAAGCGGCGGGGAAGGTCGCGACCATAGCGATCGGCGGCAACGACGCAAGCGTCGCCGACCACACCGTGGCATTGATGCTCGCTGTGTGCCGCCAACTCAAACGCTGCCAATCGGGATTGTCCGCAGGGGATTGGTCGATCCCCCTGGGCGGCGATTTGTACCGCAAGACGGTGGGCGTCGTCGGGATGGGGCGGATCGGCCGGGGCGTTCTGCAGCGCTTGTCCGGGTTTGAAGTTACACCGTTGATTTTTACCCCTGATCCTCACAAAACACAGCTCGACGGTATCGCCCACGGTAAATTCGTTGGTCTGGAAACGCTGCTCGAGGAAAGCGATTTCGTCACCCTTCATGCGCCTCTCAATCCTCAAACCCAAGGGTTGATCGACGAGCACGCATTGAGACTGATGAAGGGGTCCTCGGTGTTGATCAACACCGCGAGGGGCGGGTTGGTGCGCGATGCGGATCTGCTCTGCGCGCTGCGGGAGAACCGGTTGGCAGGGGCGGGGCTCGATGTCTTCGAAAGCGAGTCTGACCCCACGCTTTTACCTGTGACCGAACGATTGATCCAACTGCCGAACGTGGTCGTGACGCCCCACGTCGGGGCCTCCACGGTCGAGGGGCTCAATCGCACCAACCTGGTTGCCGCCCAGTGCGCGGTGGCCGTCCTGCAAGGGCGCAGTCCGCCCAGCCATTGCGTTATCGCGGACGGACGACGACCCGCCGGCACGCAGGTGTGGCCATGA	MSTLRHKIVVTQRFFDAMATDFLKSRGCDVVVADLAPGQADGDLSEQQLTDILKDADGWIVGHATITSSLLGSLPRLQVIARRGVGYERVDTAAVEAAGKVATIAIGGNDASVADHTVALMLAVCRQLKRCQSGLSAGDWSIPLGGDLYRKTVGVVGMGRIGRGVLQRLSGFEVTPLIFTPDPHKTQLDGIAHGKFVGLETLLEESDFVTLHAPLNPQTQGLIDEHALRLMKGSSVLINTARGGLVRDADLLCALRENRLAGAGLDVFESESDPTLLPVTERLIQLPNVVVTPHVGASTVEGLNRTNLVAAQCAVAVLQGRSPPSHCVIADGRRPAGTQVWP	PGPT0009155_5226	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009155-serA-K00058	NA	NA
D1-36_02278	984	aes_3	COG0657	Acetyl esterase	ATGAGTCGTAGCGAAAACCCGTCGCCGGACTCACGCCCGCCGGTTCATCCCGACTTGCTCGCGGTGGCGACGTCGCTGCGCCAACAGGGCCTGCTTCCGATTGTCCAGGGCGATGTGCAGAGCGTCCGGGGCCAGTTGGAGCGGATCGATGCGTGGGCGGCGCACCGCAGCGTGCCCCTGAGCTACGAGCGCACGCTGGGCTTTTGCGTCAACGGCCGAACGGTTCCCTGCAAGCTTTATTGGCCGGAGGGCGATGAGACGCCTTGCTTGATGTTCTACTGCCATGGCGGCGGATTTCGCCATGGTTCGCTGGCCGGCTGGGACGCGCCGCTGCGTCAGTTGGTTCGCAACAGTGGCCTGGCGGTGCTCTCCATCGACTACGCGTTGTCGCCGGAGCATCGCTTTCCCGTGGCGTTCAACGAGGTGGTAGCGATCGTCAGCCGTGTCATCAAGCTCGGGGCAATCACCGACTGCCCGGTGCGCGGCTATGCCCTGGGCGGCGATTCGGCGGGCGCGAACCTGGCCCTGGGCGCGGCCATTGCGTTGCGTGACGCGGGGATCGATGCGCTGCGCCAGTTGTTGCTGTTCTACGGCAGCTACTCGCGGGACATGACCTCCAACTCGTGGCAACGGTTGGGCGGATACGCAGGGCAGAATCTGTCGGTCGAAACCATGAGCGCCTATTGGGCCAGCTATCTGGCCAATGATGAGGACGACTGGCGGGTACAGCCAATCACGGCTGACCTGACGGACCTGCCGCCGACGCGATTGGTCATTGGCGAGCTGGACCCACTGCTGGACGAAAACCGAGGGTTGGCGCAGCGCTTGAAGGACGCAGGTGTGGTGACGAGCCTGCAAGTCCTGGCGAACATGACCCACGGTTTTATCCGTTTCAACGAAGTGGCGCCCATCGCGCGCAACGTACTCGCTGCTCAGGGCAACGCGTTGCGCAAGGCGCTTTCCAATCAGGCGAACCTCCCATGA	MSRSENPSPDSRPPVHPDLLAVATSLRQQGLLPIVQGDVQSVRGQLERIDAWAAHRSVPLSYERTLGFCVNGRTVPCKLYWPEGDETPCLMFYCHGGGFRHGSLAGWDAPLRQLVRNSGLAVLSIDYALSPEHRFPVAFNEVVAIVSRVIKLGAITDCPVRGYALGGDSAGANLALGAAIALRDAGIDALRQLLLFYGSYSRDMTSNSWQRLGGYAGQNLSVETMSAYWASYLANDEDDWRVQPITADLTDLPPTRLVIGELDPLLDENRGLAQRLKDAGVVTSLQVLANMTHGFIRFNEVAPIARNVLAAQGNALRKALSNQANLP				NA	NA	NA	NA	NA
D1-36_02279	1254			hypothetical protein	ATGAATGTTTTCCGAATCGCCGCCTTTGCATGGGCCTGCGTCGCGGCATCCGTTGGCATGGCCGCCGGTACGCTGCCTGTCGGGCCCGTTGCCGGGGATGTGCAGTTGTCGGCGTTTTATCGCTGGCCTGAGGCAATGCCCGAATCGCCGGGTACGCTGCTGCGAAACGAGCGCATGCCAGTGCAGGCACTAATGCCTGCCGCCGCGCAGGCGATACGCCTGCTCTACAGTTCGGTTGACGAACGCTGGCATTCCGGCCTCGTTCCGGTCAGCGGCGCGTTATACCTGCCTGCGGGCAATCCCCCCGCCGAAGGCTGGCCGCTGCTGGCCTGGGCCCACGGTACGCTGGGGATCGCCGATGCGTGCGCGCCCTCCTGGACCGGGCTGCGCGACCGTGACGCGGCGTACATCAATCGTTGGCTGGCGCGAGGGTTCGCGGTGGTCGTGACTGACTACCAAGGACTGGGCGGGCTGGGGCCGCATCCCTATACATTCTGGCAAGCCGAGGGACGTTCCGTTCTCGACTCGATTCGCGCTGCCCGCGCCATCAGACCAGGGCTGATCGCCCCTCGCACGTTCCTCGCCGGGCAATCCCAGGGCGGCGGGGCGGCGTTGGGCGCGGCGATACTTGCAACAACCTACGCACCCGAACTGCCTATCCTGGGGGCGATACTCACGGCGCCGAACAGCACGTTTCCCCAAGGCCCCATTGCGCTGCCGCCACGCCAATCCAACACCGTGTTCCTGGTCCTGGCGTCCGGTGGCCTGCGCGAAGACGGACCGCCAATCGAAACCATCCTGACCGCCAAGGGCCTCCAATTGCTGGACGTCGCCCGGCAGGGCTGTACCCGTGACATTGCGCTCAAATCCAAGGCGTTGCGGATCGGTTCGTTTGCAGAGCTGTTGACAATCACCCCCGAGGCATTGAACGCAGCGCGCATCCCGTCCACCGACATGCCGCAGGCTTCGATTGCGTTTGCGTTGTTCATCGCCACCGGCCAGGCAGATCAGACGATCACGCCAGAGCGGCAGTACGCGGTCGCGGCGGCGTTGTGCGCCGCCGGCAACCCCGTCACTTGGCGCACCTATGAAGGCCTGGGGCATGACGGGGTGTTGCACGGTTCGCTGGAAGATGCCTTCGCATTCGTCAGGGCCCGACTCGATGGGCAGGGCGATGGTTCGAATTGCGCCACCTTGCAAAGACCTGGTCCGCCGGGGGAGAGAGACGAAGGAGCGCTGTTCAACGACGACTGA	MNVFRIAAFAWACVAASVGMAAGTLPVGPVAGDVQLSAFYRWPEAMPESPGTLLRNERMPVQALMPAAAQAIRLLYSSVDERWHSGLVPVSGALYLPAGNPPAEGWPLLAWAHGTLGIADACAPSWTGLRDRDAAYINRWLARGFAVVVTDYQGLGGLGPHPYTFWQAEGRSVLDSIRAARAIRPGLIAPRTFLAGQSQGGGAALGAAILATTYAPELPILGAILTAPNSTFPQGPIALPPRQSNTVFLVLASGGLREDGPPIETILTAKGLQLLDVARQGCTRDIALKSKALRIGSFAELLTITPEALNAARIPSTDMPQASIAFALFIATGQADQTITPERQYAVAAALCAAGNPVTWRTYEGLGHDGVLHGSLEDAFAFVRARLDGQGDGSNCATLQRPGPPGERDEGALFNDD				NA	NA	NA	NA	NA
D1-36_02280	2019			hypothetical protein	ATGCTCAAGGCGGCAAGGCAGCGGGCCAAGCTTTACTCGGGACAAGGGCGCCTGTGGCAACAGCCCTTCGCACACACCCGGCCCCGTGACGCCTGCGCGCTATCCTCCGTTTGGTTCACCGCGTACCCGGCCTCCATCGTCACCCGGGAAGATGGCACGGTGCTCGAAGCGCTGGGGGATGAAACCTTGTGGCATGCGCTGTCGAAGATCGGCATCCAGGGCATCCACAACGGCCCCTTGAAAAGGTCCGGAGGCCTGCACGGCACTGAATTTACGCCGACGATCGACGGCAACTTCGACCGCATCAGCTTCGACATCGACCCGGAACTGGGCACCGAGGCCCAGTTGCAGGCATTGACACGCATGGCCGCTGCCCACAATGCCGTGGTCATCGACGACGTCATCCCGTCCCACACCGGCAAGGGCGCGGATTTCCGCCTGGCGGAGATGGCCTACGACGACTATCCAGGCCTCTACCACATGGTGGAGATCCGCGAGGAAGACTGGCCGCTGTTGCCTGAAGTCGAGGAGGGGCGCGACGCGCAGAATCTCACCGCGCAGCAGGTGGACGCCCTGCGCGACAAGCACTACATCGTCGGCCAGTTGCAGCGGGTGATCTTCTTCGAACCCGGCGTCAAGGAAACCGACTGGAGCGCAACCCCCGTCGTCATGGGTGTGGATGGCAAGCCGCGGCGTTGGGTCTACCTGCATTACTTCAAGGAAGGGCAGCCGTCGCTGAACTGGCTTGATCCAAGCTTTGCCGCGCAACAGATGATCATTGGCGATGCGCTGCACGCCATCGATTGCATGGGGGCGAAGATCCTGCGCCTGGACGCCAACGGTTTCCTGGGCGTCGAGCGCAAGCTCGATGGCACTGCATGGTCCGAGAGCCACCCGCTGTCGATCACCGGTAACCAGCTGCTCGGCGGTGCGATTCGCAAGGCAGGGGGTTTCAGTTTCCAGGAATTGAACCTGACGTTGGATGACATCGCCGCCATGTCCCACGGCGGGGCGGACCTGTCCTATGACTTCATCACGCGACCGGCCTACCAGCATGCCTTGCTGATGGGCGATACCGAATTCCTGCGCTTGATGCTGCGCCAGATGCACGCCTTTGGCATCGATCCGGGGTCGCTGATCCACGCGCTGCAAAACCACGACGAATTGACCCTTGAGTTGGTGCACTTCTGGACGCTGCACGCCCATGACACCTACCTCTACCAAGGCCAGACGTTTCCCGGCAACATCTTGCGCGAGCACATTCGCGAGCAGATGTATGAGCGCCTGTCCGGTGAACATGCGCCTTACAACTTGAGGTTCGTGACCAACGGCGTGTCCTGCACCACGGCCAGCATCATCACCGCCGCGCTGGGCATCCGCGACCTCGATGCCATCACCGCCGCCGATATCCAGCAGATTCGCCAGGTGCATCTACTGCTGGTGATGTTCAACGCCATGCAGCCGGGCGTGTTCGCCTTGTCAGGCTGGGATCTGGTGGGGGCATTGCCGTTGCCGGCGGAGCAGGTCGAGCATTTGATGCGCGACGGCGACACGCGCTGGATCCATCGCGGCGCCTACGACCTTGTAGACCTCAACCCGCAAGCGCCGATGTCTGCCGGGCAAATGCCCCGCGCCAGGACGTTGTATGGCAGCCTGCCGAGCCAATTGAAGGATCCGGATTCGTTCGCCTCGCAACTGCGCAGAATCCTGGCCGCGCGCCGGGCCTACGACATCGCCGCGAGTCGCCAGATATTGATTCCGGACGTTGAGCATCCAGGGTTGCTGATCATGGTCCATGAACTGCCGGCCGGCAAAGGCACGCAGATCACCGCGCTGAATTTCGGCTCGACGCCCATCACTGAAACCCTCCATCTGCCAGATATCGCGCCGGGACCGGTGGTGGACATCATCAATGAGCGAGTCGAAGGGGATCTCACGTCGGAAGGCGAGTTCACCATTACCTTGGACGCGTTCGAGGGGCTGGCGTTGCGGGTGGTGAGCAGTTCGCCGATGATCTGA	MLKAARQRAKLYSGQGRLWQQPFAHTRPRDACALSSVWFTAYPASIVTREDGTVLEALGDETLWHALSKIGIQGIHNGPLKRSGGLHGTEFTPTIDGNFDRISFDIDPELGTEAQLQALTRMAAAHNAVVIDDVIPSHTGKGADFRLAEMAYDDYPGLYHMVEIREEDWPLLPEVEEGRDAQNLTAQQVDALRDKHYIVGQLQRVIFFEPGVKETDWSATPVVMGVDGKPRRWVYLHYFKEGQPSLNWLDPSFAAQQMIIGDALHAIDCMGAKILRLDANGFLGVERKLDGTAWSESHPLSITGNQLLGGAIRKAGGFSFQELNLTLDDIAAMSHGGADLSYDFITRPAYQHALLMGDTEFLRLMLRQMHAFGIDPGSLIHALQNHDELTLELVHFWTLHAHDTYLYQGQTFPGNILREHIREQMYERLSGEHAPYNLRFVTNGVSCTTASIITAALGIRDLDAITAADIQQIRQVHLLLVMFNAMQPGVFALSGWDLVGALPLPAEQVEHLMRDGDTRWIHRGAYDLVDLNPQAPMSAGQMPRARTLYGSLPSQLKDPDSFASQLRRILAARRAYDIAASRQILIPDVEHPGLLIMVHELPAGKGTQITALNFGSTPITETLHLPDIAPGPVVDIINERVEGDLTSEGEFTITLDAFEGLALRVVSSSPMI				NA	NA	NA	NA	NA
D1-36_02281	696			hypothetical protein	ATGTCTTTTCGTACGCTTCGCACCCTCGCGACACTGACCGTTCTTGCCTGCCTGACCCTCACCGGTTGCGCCCACGTTCAACCGCCGGTACCGCTGGACCATCAATTCTGGGACGCCAAGGAGCCGACCATTGGCGTGGCGATCAACGTGGTGCCGGAGCCGGTGCTGGCGCTGACCGGCAATCAGGGGTTGCTGGACCTGGCCATCAATAAAGGCGTCAACAGCAAGCTCAGCGATAACGTTGAAAAATGGCAAGTACGCGACCTCAACACCTTGCCGGACGCCATCGTGGCCAAATTGCAGGCCAAGGGTTACAAGGCCAAGCGCATCAACGAGCCGGTGGACCTGACTAAATACAAGGAAGTCAGTTTCCGCGAAGGCTACACCACCCGTGACCTGACGCCGATCAAGGCCACCTACGGTGTCGATCGCCTGCTGCTGGTGAACGTGATGGGAACGGGCGCTACCCGCAGCTATTACAGCATCGTGCCGACCAGCGTCCCGATGGCGCAGGTGGGCGGGCAGGGCATGGTGGTCGATCTGGCCAACAACCGGCTCCTGTGGTTCAAGCCTTTCTCCGTTGTGCAGGCAGCCCAGGGCGAGTGGGACGAACCGAACTACACCAATCTGACCAACGCCTTTTACCAGGCGATGGACACGAGTCGCCAGCAAATGATCACACCGTTCGAGCAATGA	MSFRTLRTLATLTVLACLTLTGCAHVQPPVPLDHQFWDAKEPTIGVAINVVPEPVLALTGNQGLLDLAINKGVNSKLSDNVEKWQVRDLNTLPDAIVAKLQAKGYKAKRINEPVDLTKYKEVSFREGYTTRDLTPIKATYGVDRLLLVNVMGTGATRSYYSIVPTSVPMAQVGGQGMVVDLANNRLLWFKPFSVVQAAQGEWDEPNYTNLTNAFYQAMDTSRQQMITPFEQ				NA	NA	NA	NA	NA
D1-36_02282	909			hypothetical protein	ATGAAGCGCGGATTGATAGCGCTCGGCTCGGTGGCCTTGCTGATAGTGGCGGGTTGCGCGCAGAAGCCAGCCCCGCCGGCCGGTTTCAAAACGCTGGACGCGGTGTCCTATGTCCAGACCCACGGGGTGAAGGTTGACCTGCAACTGCCCCAGGCGTTTGTCGGCGCCAGTACCGTGGTGGACGCCGAGGCCGCACAGAAGGCTGCTTCGTCGAGTCATAACCTGGTCGCCAGTTCCGGCAACGCTGCTGGGCTTGCCGGTTTGCTGGTTGCCAGCCTGATCAATACCCAGATGGGCAGCGGTAGCTTGCAACGCGATGCCGAACAAACCGCCGCGAAGGAGTCCAGGCCGTTGGCGGACCTGCTTGCCGGCGTGCCGTTGCAGGAGCGCCTGCAACAGCGTTTCCAGCAGGCTTCGCTGGCAGCGGGTCTCAAGCAGGGCGCGGGAGATATCAGTGCCCGCCTGGTGATCGAGCCCAAGCTGATGCTGACGCCTGATCGTGGCAGCTTCGTATTGATCAATCAGGTGCAGGTCCAGGACATCGCCGGTTCGGCGTTGTATCGCATGCGCATTGAAGTCTCCAGCCAGCCGATCCGGCGTTGCGGCAAGCGTTGTGTCGACGACGGCTCGCTGGACCTGGCGCAAGTGACGACGGCGCTCGACGAATGTATCGATGAGTCGATGCGTGTGCTGGCTGCCGACCTGATGTTGCCGGCGCCGCCGGAAGCGGCCCAGGAAACCCTGCGCTATGTGCTTGATGGGCAGCGTGTAGTCGAGCGCGGTTATCAGTTGGCCAACAATGGGAATTACTGGCGCTACCGCAACCTCTACGGCGCGGTGAAATCAGTGCCGGTGCCGTTCGAAGACGCGTTGACTCAGGAGCAGTTGCGCCAGGTATACGGCCGCTGA	MKRGLIALGSVALLIVAGCAQKPAPPAGFKTLDAVSYVQTHGVKVDLQLPQAFVGASTVVDAEAAQKAASSSHNLVASSGNAAGLAGLLVASLINTQMGSGSLQRDAEQTAAKESRPLADLLAGVPLQERLQQRFQQASLAAGLKQGAGDISARLVIEPKLMLTPDRGSFVLINQVQVQDIAGSALYRMRIEVSSQPIRRCGKRCVDDGSLDLAQVTTALDECIDESMRVLAADLMLPAPPEAAQETLRYVLDGQRVVERGYQLANNGNYWRYRNLYGAVKSVPVPFEDALTQEQLRQVYGR				NA	NA	NA	NA	NA
D1-36_02283	531			hypothetical protein	ATGAGCACGTTCAACGCACTCCCGGATTCAATCCAGACCTTGTTGCTGGAACGCAACGATTGGGTACCCAACAACCCACGCCTGCCGGTGATCATTTACCGTGATGCGGTCGCGACCCATACCGACGATCTGGCCGCCCGCCTGGAGCAGACTTTCCACGCCAACGGCTGGCCACCGCAATGGCGTTACGGGATCTACGACTTTCACCACTATCACACTGAAGGCCACGAAGTGCTCGGTGTTGCCAGCGGCAAGGCTCGCTTGATGATCGGTGGCCCCAACGGCCAAGTCATCGACGTCAAGGCCGGTGATGCGCTGCTTCTCCCCGCCGGCACCGGGCATTGCAACCTGGGCTCCAGCGAGGACTTCCTGGTGGTCGGCGCGTATCCACCCGGCCAGCAGGCCGACATCTGCCGCGAAGCGCCGAGCGAGGCGCAACTGGCAAACATCGAAGGGTTGCCGTTTCCGGATCGGGATCCGGTGCAGGGTGCCAACGGCGGCGTCAGCCGGTTTTGGACGGACCAACGCTGA	MSTFNALPDSIQTLLLERNDWVPNNPRLPVIIYRDAVATHTDDLAARLEQTFHANGWPPQWRYGIYDFHHYHTEGHEVLGVASGKARLMIGGPNGQVIDVKAGDALLLPAGTGHCNLGSSEDFLVVGAYPPGQQADICREAPSEAQLANIEGLPFPDRDPVQGANGGVSRFWTDQR				NA	NA	NA	NA	NA
D1-36_02284	735			hypothetical protein	ATGCGCCACTCATTGATGCTCTGTTCATGGGTATTCCTGGCCTTGAACAGCCTTCAAAGCCAGGCCGAAACCATCGAGGTCGTGACCGAGGACTCGTTGTATGCCTATCTGCGCGACGAGAAATTGGTCGGCCCCGGTATCCATATCGCCGCCGATACCTTGAAGCAGGCCGACCTCGACGATTTCCACATGGCCCTCTACCCCTGGGCGCGGGCCTATGAAATGGCGCTGCGCGAGCCCAACGTGCTGATCTTCCCGCTGGATCGCACCCCGGCCCGTGAACAGCTGTTCAAGTGGGTCGGTGAAATCCATCGCTCCACCAGCCGGCTCTACAAGCTGCGCGACACGGCCTCCATCGCCATTGGCACCCTGGAAGAGGCCAAGCAGTACAGCATCGGCGTGGTACGAAATGACGCCAAGCAGGTTTATCTGCAAGGTCGTGGCTTCAGCCGACTGGTCGTTTCAGCGAATAACCACGATAACTTCCAGAAACTGTTGAACCGTCAGGTCCAGCTGGTGCCGATGCCGGAGAACACCGCGCGCCTGATGAGCCAGGATGCCCGGATTGACTTCAATCTGCTGGAGGAGGTCTACGCGCTGGATGAGCAGCCCCATCGGGTTTACCTGGCGTTCAGCCTGAGCACACCCGACGAGACGGTCGCCAAGGCACAACGCGCTTTCGAACAGCTCAAGGCTTCGGGTGAAGTGGAGCGGATCATGAAGGAAAAGCGCTGA	MRHSLMLCSWVFLALNSLQSQAETIEVVTEDSLYAYLRDEKLVGPGIHIAADTLKQADLDDFHMALYPWARAYEMALREPNVLIFPLDRTPAREQLFKWVGEIHRSTSRLYKLRDTASIAIGTLEEAKQYSIGVVRNDAKQVYLQGRGFSRLVVSANNHDNFQKLLNRQVQLVPMPENTARLMSQDARIDFNLLEEVYALDEQPHRVYLAFSLSTPDETVAKAQRAFEQLKASGEVERIMKEKR	PGPT0020800_15770	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
D1-36_02285	1371			hypothetical protein	ATGCCATCGCGCGCAAGTGGTTATGAGATGGACAGCCATCTCACACCCCCACCCTCTCAACGGGCACAGGCCAAGACCCTCAGCTCCCTGGGTCGGCGCCTGGTCCTGGCGACCCTGCTGTTCTGCCTGTTTTTCACAGTGGCGATGGTCACCTGGCGCACCTGGCTGGCCTGGGAAAGCAACCTGACGGACATGAATGCCGAGCTGGGGCTGATCGACCAGGTTTTCCGCGACACCTTGGCTCATGCGATCTGGGAGATGGACCGCGACTCCCTGGACAAACAGCTTGCCAGCGTCGCCAAGGCCGCGCCGGTCGGACGCGTGGCGCTGAATGTCCTGCGGCCCGGCCGGTCGCCGGAAATCATCGAGCTCAATCGCTACACCACCGGTAACGAAGGGGTAGCACCGGTATTGCACCGCGAGCTCATCGCGCAGCCTTATCTCGGCGCCCACGAAAAAGTCGGCGAGCTCATCATCGAAGGCGATAACCAACTGCTGTGGCAGCGCCTGTGGGGCGAAGCGCGCAGCATCGTCATCACCCAGATCATCCAATCCATGCTGCTGGCGGGCCTGGTCATGACCATGTTCAACCGCCTGGTGACGGTCCACGTGGTGCATATCGCCCGGCACCTGGGCGAGCTCGAGCCACAAACACTCAAGCACCACCTCAAGCTGCAGCGTTCGGTGGATCGCCAGGACGAGTTGAGCTTGCTCGAATCCCAGGTCAATGAACTCCAGGACAATCTCCACGCCCACCTGGAGCGCCAGCGTTCGGACGAGCTGGCGATCGCCGCCAGCCGCGACCAACTGGTCGAGCTGGTCGAGGCGCGCACCGCTGAGCTCAAGGCCGCCAACCAGGCCCTCGAAGCCTTGTCCCGTCACGACGCCTTGACGGGCCTGGCCAACCGTCGCCATTTCGACGAGCTGAAGGAAGTCGAGTTTCGCCGCGCCATGCGCCACAAGACGCCGCTTGCGGTGCTGATGTGCGACGTCGATTTCTTCAAGATCTACAACGATACCTATGGCCATATGAACGGCGACCAATGCCTGCAACAGATCGCTGAAACCCTGCGCGAGGTCTTCGGCCGCTCTGGCGAGCTGACCGCACGGGTCGGTGGCGAGGAATTTGTCGTCCTGCTGCCCAATATCGACGCAGGGCAGGCCTGGGAGGCGGCCCAACGCTTGCGTGGCGCCCTGGCCGAACGCCAACTGCCCCACAGCGGCTCATCGATCTCCCCATTCGTCACCCTGAGCATCGGCGTCGCCGAGCTGGACCCCGAGGCCATGGATCATTTCGACCAATTGATGCAACGCGCCGACCAGGCGCTGTACCGGGCCAAGCACCAGGGCCGCAACTGCGCGTCCCTCTAA	MPSRASGYEMDSHLTPPPSQRAQAKTLSSLGRRLVLATLLFCLFFTVAMVTWRTWLAWESNLTDMNAELGLIDQVFRDTLAHAIWEMDRDSLDKQLASVAKAAPVGRVALNVLRPGRSPEIIELNRYTTGNEGVAPVLHRELIAQPYLGAHEKVGELIIEGDNQLLWQRLWGEARSIVITQIIQSMLLAGLVMTMFNRLVTVHVVHIARHLGELEPQTLKHHLKLQRSVDRQDELSLLESQVNELQDNLHAHLERQRSDELAIAASRDQLVELVEARTAELKAANQALEALSRHDALTGLANRRHFDELKEVEFRRAMRHKTPLAVLMCDVDFFKIYNDTYGHMNGDQCLQQIAETLREVFGRSGELTARVGGEEFVVLLPNIDAGQAWEAAQRLRGALAERQLPHSGSSISPFVTLSIGVAELDPEAMDHFDQLMQRADQALYRAKHQGRNCASL				NA	NA	NA	NA	NA
D1-36_02286	771			hypothetical protein	ATGGCTTCGCTGGTTAACCGCTTACTGATGTGTGGCGCCCTGATGCTCCTGGTTGCAGGTGGATCGGCGTTGGCCATCGCGGCTGAGCCGCCACTGCGCATCGTCACCGAGGAGTTGCCGCCCTACAACATGACGCAGGACGGCCGGGTGACCGGCATGAGCACCGAAGTGGTCGAGGCTGTGCTCAAGGAGATCGGCGTCGAAGCGTCGATCCAGCCCATGCCTTGGGCGCGGGCCTATGAACTGGCGCTCAATGAAAGCAATGTGTTGATCTATTCCATCGTGCGCACCCCGGCACGCGAATCGCTGTTCCAGTGGATCGGCGCCATCGCCCCGACCCAGTGGTATATCTATTCACTGGCCGAGCGGCCGGTGAAACTCGACTCCCTGGCCGATGCCCATGGGCACCAGATCGCTACCGTCAATCAGGATGTGGGCGAGCAGTTTCTCGTCTCGAAGGGCTTCCGCATCGGCGAAGAACTTCAGTCCAGCACCAAATATGAACACAATTACCGCAAGCTCAAGGTCGACCACGTGGAGCTGTGGATTTCCAACGAGCTCAATGCGCTGTACCTGACCCGTCAGAACGGCGAAGACCCGGACAAAGTATTGATCAAGTCGCTGGCGCTGCCCGAACTGAGCAGTGCCGACGGCCTGAGTATGGCGTTCAGCCGCAACACGCCGCCGCAGACCGTCGAAAAATTCCGCGCAGGCCTGCAAGCCATACGTCGCAACGGCGTCTACGATGCCATCGCGCGCAAGTGGTTATGA	MASLVNRLLMCGALMLLVAGGSALAIAAEPPLRIVTEELPPYNMTQDGRVTGMSTEVVEAVLKEIGVEASIQPMPWARAYELALNESNVLIYSIVRTPARESLFQWIGAIAPTQWYIYSLAERPVKLDSLADAHGHQIATVNQDVGEQFLVSKGFRIGEELQSSTKYEHNYRKLKVDHVELWISNELNALYLTRQNGEDPDKVLIKSLALPELSSADGLSMAFSRNTPPQTVEKFRAGLQAIRRNGVYDAIARKWL	PGPT0020800_13972	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
D1-36_02287	1737			hypothetical protein	ATGGATCCAACCTCGACCTCCCACGTGCGCCCCGTAGAGCGCGAGTTCAGCCCACGCGCGGTAATCACCGGGATCGTGCTGGGTATTTTGCTGACGCCCTCCAATGTCTATGCAGGATTGAAGATCGGCTGGTCGTTCAACATGTCGATCATCGCCTTGCTGGTTGGCTACGGCATCTGGCAGGGCCTGGCCAAGCGATCGTCCGGCCGGCTGCCCTGGACGCTCCACGAGAGCAACATCAACCAGACCGTGGCGTCGGCCGCGGCATCGATCATTTCCGGCGGGCTGGTGGCGCCGATCCCGGCGTACACCTTGCTGACCGGCCAGCAACTCGACGCGTTGCCCATGGTCGCGTGGGTATTTTCGGTGAGTTTCCTGGGTATCTGGATTGCCTGGTACCTGCGGCCCTCGTTGCTCAACGACAAGGCGCTGAGGTTTCCCGAGGGCATGGCGACCCTGGAGACCTTGTTGCATATCTACAATCACGGCCACGAAGCCGCGACGCGCCTCAAGGTGCTGCTCGGCGCAGCCGTGCTGTCCGGGTTCGCCAAGTGGGTCGATACCTTCGTCTGGGCCATCCCGCGTTGGTCGCCGAGCGCCCAACTGGAGCGGCTGACATTTACCGCGGATCCGTCGCTATTGCTGGTGGGATTTGGCGGCATCATCGGCATCCGTGTCGGCCTGACCCTGTTGCTCGGCGCGCTGTTGGCGTGGGGTGGGTTGGCGCCGTGGCTGTTGGAAAATGGCCTCGTGCACTTGCCGCCCGGCAGCAGCGGCCCGCAATTCGCCGTGCTAGTGGAATGGCTGCTGTGGCCGGGCGTGAGCCTGATGGTTTGCGCGACCCTGGCTTCCCTGGCGATCCGCTTGTGGTCGCTGCACCGCTCAACCAAGGCCAGTGGCGCGGCGTCCTGGGCGGTGCCCAAGGCCGGGCCCGCCGTTGGATTTCTGCTGGCAATCGTCTTGGTGGTCAGCTTGCAAGCCATGTTGTTCGGCATCAATCCCTGGATGGCGTTGCTGACGATTCCCTTGGCCATTTGCCTGGCGGCGGTGGCAGCCCGGGTGGTCGGCGCCACCGGAATTCCGCCCATTGGCGCCATTGGGCAACTGTCCCAGCTGAGCTTCGGCATCGTTGCACCGGGGCAGGTGCCGATCAACTTGATGAGCGCCAACACCGCCGGCGGTTCGGCGGGGCAATGCACGGACCTGATGAATGATTTCAAGGTCGGCCGGGCGATCGGCGCGACGCCGCGCAAGCAACTGCTGGCCCAGACGCTGGGGATTTTCATCGGCAGCATCGTCGGCGTGCTCGCTTACCTGGCGTTGATCCCCGACCCGCAAACCATGCTGCTCACCGAAGAATGGCCGGCCCCGGCCGTCGCCACCTGGAAGGCCGTGGCGCAAACCCTGACCCATGGCTTGGACTCGTTGTCGGTGAGCATCCGCTGGGCGATCTTCATCGGCGGCGCCGTCGGTTTGCTGCTGGGCATCCTCGACAGCCTGCTGCCGGCCCATCGCGCCCGCTACCTGCCCAGCACGGCTGCCCTGGGCCTGGCGTTTGTCCTGCCGGCCTCGGTGTCGTTGATGATGGCCCTTGGCGCCGTGCTGACCTGGCTGGTGAGCTGCCGCTGGCCGAGCCTCACCGAACGCTTCGCCATCACGGCGGCGGCGGGGTTGATTGCCGGGGAGAGCATTACCGGGGTGGGGGCTTCGTTGTGGGAGATGCTCGGTAATCTGTGA	MDPTSTSHVRPVEREFSPRAVITGIVLGILLTPSNVYAGLKIGWSFNMSIIALLVGYGIWQGLAKRSSGRLPWTLHESNINQTVASAAASIISGGLVAPIPAYTLLTGQQLDALPMVAWVFSVSFLGIWIAWYLRPSLLNDKALRFPEGMATLETLLHIYNHGHEAATRLKVLLGAAVLSGFAKWVDTFVWAIPRWSPSAQLERLTFTADPSLLLVGFGGIIGIRVGLTLLLGALLAWGGLAPWLLENGLVHLPPGSSGPQFAVLVEWLLWPGVSLMVCATLASLAIRLWSLHRSTKASGAASWAVPKAGPAVGFLLAIVLVVSLQAMLFGINPWMALLTIPLAICLAAVAARVVGATGIPPIGAIGQLSQLSFGIVAPGQVPINLMSANTAGGSAGQCTDLMNDFKVGRAIGATPRKQLLAQTLGIFIGSIVGVLAYLALIPDPQTMLLTEEWPAPAVATWKAVAQTLTHGLDSLSVSIRWAIFIGGAVGLLLGILDSLLPAHRARYLPSTAALGLAFVLPASVSLMMALGAVLTWLVSCRWPSLTERFAITAAAGLIAGESITGVGASLWEMLGNL				NA	NA	NA	NA	NA
D1-36_02288	1785	araC_1		L-arabonate dehydratase	ATGAGTGACACGCCAAAACGCCGCCTGCGCAGCGAGCAATGGTTCAACGACCCGGCCCACGCGGACATGACCGCGCTGTATGTCGAACGCTACATGAACTACGGGATGACCCGCGAAGAGTTGCAATCGGGCCGGCCGATCATTGGCATCGCCCAGACCGGCAGCGACCTGACACCCTGCAACCGCCATCACTTGGAACTGGCGCAACGGGTCAAGGCCGGGATCCGCGACGCCGGTGGCATTCCGATGGAATTCCCGGTGCACCCCATCGCCGAACAGTCGCGTCGCCCAACGGCGGCCCTGGACCGAAACCTGGCGTATCTGGGCCTGGTGGAAATCCTCCACGGCTATCCCCTGGACGGCGTTGTGCTCACCACCGGTTGCGACAAGACCACCCCCGCCTGCCTGATGGCGGCAGCCACCACCGACCTGCCGTCCATCGTGCTGTCCGGCGGGCCGATGCTCGACGGTCGTCACAAGGGCGAGCTGATCGGCTCCGGCACAGTGCTGTGGCACGCTCGCAACCTGATGGCCGCTGGCGAGATCAACTACGAAGGTTTCATGGAAATGACCACGGCGGCCTCGCCCTCCGTGGGCCACTGCAACACCATGGGCACCGCCCTGTCGATGAACGCGCTGGCCGAAGCCCTGGGCATGTCGTTACCCGGTTGCGCAAGCATTCCGGCGCCGTACCGCGAGCGCGGGCAGATGGCCTACGCCACTGGCAAGCGCATCTGCGAACTGGTGCGCCAGGACGTGCGCCCTTCCCAGATCATGACGCGTGAAGCCTTCGAAAACGCCATCGCCGTCGCCTCGGCACTCGGCGCATCGAGCAACTGCCCGCCGCACCTGATCGCCATCGCCCGGCACATGGGCGTCGAGTTGAGCCTGGACGACTGGCAAAAAATCGGCGAGGACGTGCCGCTGTTGGTCAACTGCATGCCCGCTGGCAAATACCTGGGCGAAGGCTTCCACCGCGCGGGCGGCGTGCCGGCAGTCATGCACGAATTGCAAAAGGCCGGCCGCCTGCATGAGAACTGCGCCACGGTCAGCGGCAAGACCATCGGCGAGATCGTCAGCGGCAGCCTGACCTGCGACGCCGACGTCATCCACCCCTTCGACACCCCACTCAAGCACCGCGCCGGTTTCATCGTACTCAGCGGAAACTTTTTCGACAGCGCGATCATGAAGATGTCGGTGGTGGGCGAAGCGTTCCGCAAGACTTACCTGTCCGAACCCGGCGCCGAGAACAGCTTCGAAGCGCGGGCCATCGTATTTGAGGGGCCGGAGGACTACCACGCACGCATCGACGACCCGGCGCTGGACATCGACGAGCGCTGCATCCTGGTCATCCGCGGCGCTGGCACCGTGGGCTATCCCGGCAGCGCCGAGGTGGTGAACATGGCTCCGCCCGCCGCGCTGATCAAGCGCGGCATTGACTCCCTGCCGTGCCTGGGCGATGGTCGCCAGAGCGGCACCTCGGCGAGCCCGTCGATCCTCAACATGTCCCCGGAAGCGGCCGTTGGCGGCGGCCTGGCGCTGCTACAGACCAATGACCGGCTGAAAGTCGACCTGAACACCCGCACCGTGAACCTGCTGGTGGACGACGCCGAGATGGAGCGGCGCCGCCGCGCCTGGACGCCGAACTTCCCGCCGTCGCAAACGCCTTGGCAGGAACTGTACCGGCAACTGGTCGGCCAGCTTTCCACGGGAGGTTGCCTGGAGCCGGCCACGTTGCACCTGAGGGTGATCGCCCGCAGTGGTGAGCCTCGACATTCACACTGA	MSDTPKRRLRSEQWFNDPAHADMTALYVERYMNYGMTREELQSGRPIIGIAQTGSDLTPCNRHHLELAQRVKAGIRDAGGIPMEFPVHPIAEQSRRPTAALDRNLAYLGLVEILHGYPLDGVVLTTGCDKTTPACLMAAATTDLPSIVLSGGPMLDGRHKGELIGSGTVLWHARNLMAAGEINYEGFMEMTTAASPSVGHCNTMGTALSMNALAEALGMSLPGCASIPAPYRERGQMAYATGKRICELVRQDVRPSQIMTREAFENAIAVASALGASSNCPPHLIAIARHMGVELSLDDWQKIGEDVPLLVNCMPAGKYLGEGFHRAGGVPAVMHELQKAGRLHENCATVSGKTIGEIVSGSLTCDADVIHPFDTPLKHRAGFIVLSGNFFDSAIMKMSVVGEAFRKTYLSEPGAENSFEARAIVFEGPEDYHARIDDPALDIDERCILVIRGAGTVGYPGSAEVVNMAPPAALIKRGIDSLPCLGDGRQSGTSASPSILNMSPEAAVGGGLALLQTNDRLKVDLNTRTVNLLVDDAEMERRRRAWTPNFPPSQTPWQELYRQLVGQLSTGGCLEPATLHLRVIARSGEPRHSH	PGPT0017560_327	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017560-xylD-K22186	NA	NA
D1-36_02289	1182			hypothetical protein	ATGTCGCTATTGCTTACTCCCGAGAACACTCTGCCGGTCGATGGCGTGGCCGGCACGTTGATTGGTCGCGCCTGGGTCCCGGGGCGGATCGCCGGGCCTTCGCCCATCGTGCTGCGCAGCGACGGGGTGTTCGACCTCTCGGATCGGTTCGCGACACTTAGCGACCTACTGGAAACACCCTCGCCCCTGGCGACGGTAAGAGAGACGCCTGGCACCTTCATCGCCACCCTCGAAGCACTCTTGGCCAACACCGGCCCCCACGCCGACCCGGCCAAGCCGTTCCTGTTGCCTCCGCTGGACTTACAAGTGATCAAGGCGGCCGGCGTGACGTTCGCGGCGAGCATGATCGAGCGGGTCATCGAGGAACAGGCCGGCGGCGACGCGGCCCGCGCCGAAGCCGTGCGCGCCACGGTCCACGGCGTGATCGGCGACAACCTGCGCTCGATCGTGCCAGGCTCCGAGCAAGCGATGCGCCTCAAGGCGTACCTCATCGAACAAGGTATGTGGTCGCAGTATTTGGAAGTGGGCATCGGCCCGGACGCGGAAATTTTCACGAAGGCGCCGGTGCTGGCCGCCGTGGGCAGCGGCAGCCAGATCGGCATTCACCCGGCCTCGCAATGGAACAACCCGGAACCGGAAGTGGTGCTGGCGGTGAACAGCCGTGGCCAGATCCACGGCGCCACCCTGGGCAACGACGTCAACCTGCGGGACATCGAAGGCCGCAGTGCGCTGTTGTTGAGCAAGGCCAAGGACAACAATGCATCGTGCGCCATTGGGCCGTTCATTCGCCTGTTCGACGAGCAGTTCAGCCTGGACGATGTGCGCGCCTGCGAAGTCGATCTGCACGTACAAGGCGAAGACGGTTACCGGCTGCACGGTTGCAGCTCCATGAGCCAGATCAGCCGCGATCCGCAGGACCTGGCCGGCCAGACACTCAACGCCAACCATCAATACCCCGATGGCTTCCTGCTGTTTCTCGGTACGCTGTTCGCCCCCACCGAGGACCGTGATCATGCCGGCAGCGGTTTCACCCACAAACTCGGCGACCGCGTCAGTATCAGCAGCCCGCTACTGGGCAGCCTGCATAATCAGGTGACCCATAGCTGCGACGCCGCGCCGTGGACCTTCGGCGTCGGCGCGCTGCTGCGTAACCTCGCCGCGCGGGGGCTGCTCGATCGCTGA	MSLLLTPENTLPVDGVAGTLIGRAWVPGRIAGPSPIVLRSDGVFDLSDRFATLSDLLETPSPLATVRETPGTFIATLEALLANTGPHADPAKPFLLPPLDLQVIKAAGVTFAASMIERVIEEQAGGDAARAEAVRATVHGVIGDNLRSIVPGSEQAMRLKAYLIEQGMWSQYLEVGIGPDAEIFTKAPVLAAVGSGSQIGIHPASQWNNPEPEVVLAVNSRGQIHGATLGNDVNLRDIEGRSALLLSKAKDNNASCAIGPFIRLFDEQFSLDDVRACEVDLHVQGEDGYRLHGCSSMSQISRDPQDLAGQTLNANHQYPDGFLLFLGTLFAPTEDRDHAGSGFTHKLGDRVSISSPLLGSLHNQVTHSCDAAPWTFGVGALLRNLAARGLLDR	PGPT0018165_1	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GLACTURONATE|GLUCURONATE_DEGRADATION,PGPT0018165-aldH-K13877	NA	NA
D1-36_02290	939	gbpR		HTH-type transcriptional regulator GbpR	ATGTCCGATCTGTCCTTTTCCAGCTTTTGCGGCTGGCTCAAATTTCGTCATCTGCTGCTGATCGACACGTTGGGACGCACCTGCAACATGCATTTGGCGGCCGAGCAGATGAACCTCAGCCAGCCGGCCGTGAGCAAAATGCTCAAGGAAATCGAGAGCCTGCTCGGCTTCGCCCTGTTCGAGCGTCGACCGCGCAGCATGCCGCCCACCGCCCTGGGCGAGCACGTGCTGCGCTACGCGCAAATAGCCCTGAATGACGCCCGTTCGTTCGTCGAACAGATCAGCAGCCTGCGAGAAGGTGGCCACGGTTACTTGAAGGTCGGCGGTATTTTTGCCGCGACGGCGGTGGCGTTGCCCGAGGCGATCCTGCAGATCAAGCAGCGCTGGCCCTTGCTGTCCATCGAAGTGGTGGAGCAAACCAGTAATCATCTGATGAAGATGCTCGAAGAAAAGAAGCTCGACCTGGCCGTGGCGCGTTTCACCGATCAAAGCCAGCAGCAGCGCTACGACTTCCAGCCCCTGGCCCCCGAACCGTTCTGCATCGTGGTCAACGATCGCCATCCGCTGGCCAACGCTGGGCCGACATCCTTGCAGCAACTGGTGGACCTGCCGTGGATTCTCTATCCGGTCGGCACGCCGATTCGCGCCCGCATGGAGCTGGCCTTTGCCGAAGCTGGTGTGGGGATGCCGCGCAACACCATCGACACGATTTCGATGCAGACTTTCCTCCAGGTCCTGCAACGTGGCCCCATGATTGGCATGTTGCCCAACGCCATGGTCGACCCGTTGCTCGAAAGCGGCCAGCTCAAGACCCTTGACACGCCGCTGCACCTGGTGCCCCAAGACTACGGCATTCTCACCCGCAAGGACGAGCCGCTGGTGGGCGCGGCCCTGGAGTTCGCCGAGATCCTCAAGGACAACGCCCGCTTGAGTGGTTGA	MSDLSFSSFCGWLKFRHLLLIDTLGRTCNMHLAAEQMNLSQPAVSKMLKEIESLLGFALFERRPRSMPPTALGEHVLRYAQIALNDARSFVEQISSLREGGHGYLKVGGIFAATAVALPEAILQIKQRWPLLSIEVVEQTSNHLMKMLEEKKLDLAVARFTDQSQQQRYDFQPLAPEPFCIVVNDRHPLANAGPTSLQQLVDLPWILYPVGTPIRARMELAFAEAGVGMPRNTIDTISMQTFLQVLQRGPMIGMLPNAMVDPLLESGQLKTLDTPLHLVPQDYGILTRKDEPLVGAALEFAEILKDNARLSG				NA	NA	NA	NA	NA
D1-36_02291	1383	nicT_2		Putative metabolite transport protein NicT	ATGCAAACCATCTCCGAGCATTCGCCCGCCCAGGCTTCCGCCAGCGGACTCGATTTCGAGGACCGGACCTACCGCAAGGTCATCTGGCGAATCCTGCCTGTCCTGCTGTTGTGCTACATGGCGGCCTACCTCGACCGGGTGAACATCGGTTTCGCCAAGCTCGACATGCTCAACGAGCTGCAATTCAGCAACACGGTCTATGCCTTGGGCGCCAGTATGTTTTTCTGGGGCTATTTCCTGTTCGAAGTCCCCAGCAACCTGTTGCTGCATCGCTTTGGCGCGCGGTTCTGGATCGCCCGGATCATGCTCAGCTGGGCGGTGATCTCCATGGCGGTGGCCTACACTGTGCCGCTGGCGGCGTTCTTCCATATCGAATCCAGCACCATGTTCTATGTGCTGCGTTTCCTGCTGGGTATCTGTGAAGCGGGCTTTTTCCCGGGCGTGATCCTTTACCTCAATTACTGGTTTCCGACCCACCGGCAGAGCCGGGTGATGTCCGGGTTCCTGTTGGCCTTGCCGGTCAGCCTGACCCTCGGCGGGATCTTGTCCGGCTGGCTGATGAATAGCATGCAGGGCGTGCAAGGCCTGTCCGGCTGGCAATGGATGCTGATCATCGAGGGCATTCCTTCGATCATCATGGCTTTCGTGGTAATCGTCTGCCTGGCCGACAACATCGACAAGGCCAAGTGGCTGTCGGCAGCAGAAAAAGCCATGCTCAAGGCCAACCTGCAAACCGACAACCAGGGCAAGGCGTCGCGCTTGAGCGAGGTGTTTTTCAACCCTCGGGTGTGGTTGCTGGTGTTGATTTTGCTGACCTTCAACACCGGCTTCTATGGCCTGGCATTCTGGATGCCTTCGATCATCAAGAGCACCGGCATCACCAACAGCCTGCACATCGGTTTGCTCACCGCCATCCCTTATTCGGTGGCCGTCGTGGCGATGCTGCTCAACGCCCGGCACTCCAACCGCACCGGTGAGCGGCGCCTTCACGCGGCGATTCCAGCCTTCATCGGTGGCGCCGGGCTGATCCTCAGTGCGTTCTTCGCCGATAACCTGGTGCTGTCGGTGCTGTTCCTCAGCGTCTCCGCTTCGGGGATCCTGAGCCTTATGCCGATCTTCTGGACCCTGCCGGGCACCGTGTTGTCGGGCGTCGCTGCCGCTGCCGGGATCGGCATGATCAACGCCATCGGCAACCTGTCGGGCTTCACCGGATCGATGATCACCGCCGTGGCCGAGACGCTTACCGGTAATATCAACAATGGTACGTATGTCCTGGCCCTGTGCCTGTTGGTCAGTGGCGGGCTGATCCTGGCCATTCCGGCCTCGATGCTCGCCAGGGCACCAAAAAGCGCAGTCCCGGCAACGCAACTGGAGACCGCATGA	MQTISEHSPAQASASGLDFEDRTYRKVIWRILPVLLLCYMAAYLDRVNIGFAKLDMLNELQFSNTVYALGASMFFWGYFLFEVPSNLLLHRFGARFWIARIMLSWAVISMAVAYTVPLAAFFHIESSTMFYVLRFLLGICEAGFFPGVILYLNYWFPTHRQSRVMSGFLLALPVSLTLGGILSGWLMNSMQGVQGLSGWQWMLIIEGIPSIIMAFVVIVCLADNIDKAKWLSAAEKAMLKANLQTDNQGKASRLSEVFFNPRVWLLVLILLTFNTGFYGLAFWMPSIIKSTGITNSLHIGLLTAIPYSVAVVAMLLNARHSNRTGERRLHAAIPAFIGGAGLILSAFFADNLVLSVLFLSVSASGILSLMPIFWTLPGTVLSGVAAAAGIGMINAIGNLSGFTGSMITAVAETLTGNINNGTYVLALCLLVSGGLILAIPASMLARAPKSAVPATQLETA	PGPT0002325_209	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-ORGANIC_ACID_METABOLISM	P-SOLUBILISATION-TARTARIC_ACID_TRANSPORT,PGPT0002325-ttuB-K13021	NA	NA
D1-36_02292	741			2-keto-3-deoxy-L-fuconate dehydrogenase	ATGAGCTTGCAGAACAAACGGGTACTGGTGACGGCGGCCGGGCAGGGTATCGGTCTCGCCAGCGCGGTGGCCTTCGCCCAGGCCGGGGCCGAGGTGTTTGCCAGTGACATCGATACGCGCGCATTGGCGGGCATCGAAGGGGTGACGGCGGTCACCCTGGATGTCACCTCGGCCAGCGCCATCGAGGCTGTCCGCGACTGGATCGGCGGCCTGGACGTGCTCTTCAACTGCGCCGGCTACGTGCACAGCGGCAACATCCTGGACTGCGACGAAGCGGCCTGGGTGCGTTCGATGGACCTCAACGTCACGGCCATGTACCGGATGATCCGTGCGTTCCTGCCGGGCATGCTGGCGCGGGGTGGCGGGTCGATCATCAACATGTCGTCGGTGGCGTCCAGTGTCAAAGGCGTGCCCAATCGTTTCGCCTACGCTGCCAGCAAGGCAGCGGTGGTGGGGCTGACCAAATCTGTCGCCATCGACTTCGTCAGCCAGGGGATCCGCTGCAACGCGATCTGCCCCGGCACCGTGGATTCACCATCGCTGCGCCAGCGCATTGCCGACCAGGCCGCGCAGCAGGGTGTCGATGTGCAACAGGTCTACCGGCAGTTTCTCGACCGTCAGCCCATGGGGCGCATTGGCAACACTCAGGAAATCGCGCAACTGGCGCTGTACCTGGGCAGTGACGCGTCCGCCTACACCACGGGAGCGGTGCACGTGATCGATGGCGGCATGAGCCTTTGA	MSLQNKRVLVTAAGQGIGLASAVAFAQAGAEVFASDIDTRALAGIEGVTAVTLDVTSASAIEAVRDWIGGLDVLFNCAGYVHSGNILDCDEAAWVRSMDLNVTAMYRMIRAFLPGMLARGGGSIINMSSVASSVKGVPNRFAYAASKAAVVGLTKSVAIDFVSQGIRCNAICPGTVDSPSLRQRIADQAAQQGVDVQQVYRQFLDRQPMGRIGNTQEIAQLALYLGSDASAYTTGAVHVIDGGMSL	PGPT0008310_2927	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008310-bdh-K00019	NA	NA
D1-36_02293	849			Ureidoglycolate lyase	ATGAAACTGTTGCGATACGGCGAAAAAGGTTCGGAAAAGCCCGGGCTGCTGGATGACGACCATCAGGTCCGCGACCTGTCGGGCCATGTGCCGGACATCGCCGGCAACGTCCTGGAGCCGGAAGGCCTGGCCAGACTCGCGGCCATCGACCCGCACAGCTTGCCGGTGGTGACCGGCCAGCCTCGGATCGGCCCGTGCGTCGGGCAGGTCGGCAAGTTCATCTGCATCGGTTTGAACTACGCCGATCATGCCGCCGAATCTAACATGGAGGTGCCAAAAGAGCCGATCATCTTCAACAAATGGACCAGTGCCATTTGCGGGCCGAATGACGATATCCAGATCCCCCGCGGCTCGCTCAAGACCGACTGGGAAGTCGAGCTGGGCGTGGTCATCGGCAAAGGCGGGCGCTACATCGACGAAGCGAATGCCCTGGAGCACGTCGCCGGATATTGCGTCATCAACGACGTGTCGGAGCGCGAATGGCAGCTCGAACGTGGCGGCACCTGGGACAAAGGCAAAGGCTTCGACACCTTCGGCCCGCTCGGGCCGTGGCTGGTGACCAAGGATGAGATCCCAGACCCGCATACGCTGGACCTGTGGTTGGAAGTCGACGGGCATCGCTATCAGAACGGCAACACCCGGACGCTGATCTTCAGCGTGCCGCAACTGATCGCCTACCTCAGCCGGTGCATGAGCCTGCAACCGGGCGACGTCATTTCGACCGGCACGCCGCCGGGTGTCGGGCTGGGCATCAAGCCCAACCCGGTGTTCCTGCGGCCGGGCCAGACCATGCGCCTCGGGATTGCAGGATTGGGTGAGCAGCGTCAGGTGACCGTGCAGGCGGATTGA	MKLLRYGEKGSEKPGLLDDDHQVRDLSGHVPDIAGNVLEPEGLARLAAIDPHSLPVVTGQPRIGPCVGQVGKFICIGLNYADHAAESNMEVPKEPIIFNKWTSAICGPNDDIQIPRGSLKTDWEVELGVVIGKGGRYIDEANALEHVAGYCVINDVSEREWQLERGGTWDKGKGFDTFGPLGPWLVTKDEIPDPHTLDLWLEVDGHRYQNGNTRTLIFSVPQLIAYLSRCMSLQPGDVISTGTPPGVGLGIKPNPVFLRPGQTMRLGIAGLGEQRQVTVQAD	PGPT0021665_77	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021665-ugl-K16856	NA	NA
D1-36_02294	927	hdfR_3		HTH-type transcriptional regulator HdfR	ATGATCAAAGAACTCAAGACCCTCATTGCCGTCGCGCGCGAAGGCACCTTCGCCGCAGCCGGGCACAAGATCGGCCTCACCCAGGCGGCGGTCAGTGCGCAGATCCAGCGCCTGGAAGCCGAGCTGGGCTTCGAGCTATTCGACCGCAAGGGGCGCACGGCCCACCTCAACAAGCGGGGCCACCAGGTTCTCCTGCAAGCCCAGGAACTGCTTCGCCTTTACGAGAGTCTCGGCTCCGCCACCCCCGGGCTTCCCGCCAGCGTGCTGGTGAACATCGGCGCGATCGCCTCGGTCCAGCGCTCGTACCTGCCGGACGCTCTCGCCAGGTTTCACCAGCAATGCCCGCAGTGCCGCACACGCATCGTGCCGGGCCTGTCGGTGGAATTGATCAATCTGGTGGACGCCGGTGAAATCGACATGGCCGTGATGATCCGCCCGCCGTTCTCGCTGCAAAGTGATCTGCGCTGGACCACCCTGGCATTGGAGCCTTATCGGCTGATCATTCCCCGTGCAATGCCCGGCGAGGATTGGGCGGCGCTGCTGTCCAGCCAACCCTTCATCCGTTATGACCGGTCCTCGTTCGGCGGCAGGCAGGTCGATCGTTTCCTGCGGCAGATGCATTTCACCCTGCGGGAAGTGTGCGAACTGGATGAACTGGACGCGATCATCAAACTGGTGGAAAAAGGCGTCGGTGTCGCCCTGGTGCCGCATACGTCAGCCCATCAGCCGTGGCCCAAAGGCGTGCGGGCCCTAGACCTGGGGCCACACACGTTTCATCGGGACATCGGCCTGATCCATCGGTCGCGACAGAGCCTGGCCGACCCCGTTGCGATTCTTGCGGAGCTGGTCATCGAGCAAGCAGGCACGCCCGCAAGCGCGTCAGGTGTCGCAGACCCGAATAGGATTGGCGGCACTACTTACCCTTGA	MIKELKTLIAVAREGTFAAAGHKIGLTQAAVSAQIQRLEAELGFELFDRKGRTAHLNKRGHQVLLQAQELLRLYESLGSATPGLPASVLVNIGAIASVQRSYLPDALARFHQQCPQCRTRIVPGLSVELINLVDAGEIDMAVMIRPPFSLQSDLRWTTLALEPYRLIIPRAMPGEDWAALLSSQPFIRYDRSSFGGRQVDRFLRQMHFTLREVCELDELDAIIKLVEKGVGVALVPHTSAHQPWPKGVRALDLGPHTFHRDIGLIHRSRQSLADPVAILAELVIEQAGTPASASGVADPNRIGGTTYP				NA	NA	NA	NA	NA
D1-36_02295	426			hypothetical protein	ATGAGCGTCTCGCCTTTCCATTTAGCAATTCCGGTCTATGACCTTGCGGCAGCCCGTACTTTTTACAGCCAAGTGTTTGGGTTGGAGGAGGGCCGCTCCAGTGAACAGTGGGTCGATTTCAATTTCTACGGTCACCAGTTGGTGATCCACGAGCACCCCAAGACCGCGTCCCAGGAAAGCGTGCACAGCAACGCCGTGGATGGGCACGATGTGCCGGTGCCTCATTTTGGTGTGGTATTGGGGTGGGCTGAATGGGAAGCGCTGGCCGAGCGACTGAAATCCTTCGGCACTCAATTTGTGATCGAGCCCTACGTGCGTTTCAAGGGGCAGGTGGGCGAACAGGCGACGATGTTCCTGTTCGACCCTTGCGGCAATGCGCTGGAGTTCAAGGCGTTCAAGGACATGAGTCAGTTGTTCGCCAAATAA	MSVSPFHLAIPVYDLAAARTFYSQVFGLEEGRSSEQWVDFNFYGHQLVIHEHPKTASQESVHSNAVDGHDVPVPHFGVVLGWAEWEALAERLKSFGTQFVIEPYVRFKGQVGEQATMFLFDPCGNALEFKAFKDMSQLFAK				NA	NA	NA	NA	NA
D1-36_02296	954			hypothetical protein	ATGACCGACTCCATCGATCTGAACGAATTCCACTGGTTGCTGGCCATCGTTCAGAGCATCGACGTCGGCGTGGTGGTGCTCGACCGTGAGTACCGCGTTCAGGTCTGGAACACCTTCATGGAGAACCGCTCCGGCGTCCAACCCAAGGACGCCCAGAACCGGAATTTCTTCAGCCTGTTCCCGGAAATCGACCGCCAATGGTTCAGCCGCAAGGTGGAAAGCGTCGCGACCCTGGGCACCCCCGCGTTCACAGTCTGGGAGCAGCGCCCGTACCTGATGCGCTTCAAGAGCTACCAACCGATCACCGGCCAGGAAGAGTTCATGTACCAGAACACCACCTTGCTGCCGCTGCGCTCGCCTGACAACCGAATCAACCATATCTGCCTGGTGATCTATGACGTCACCGACGTCGCGACCAATCGCCATCAGATCCAGGCCGCCAATGCACAACTGCAATTGCTCTCCAGCACCGATCGCCTGACCGGCCTCTATAACCGCGGCCATTGGGAAGGCACCCTGAAAGCCGCCTACGCCCGCCATCAGCGCTATGGCAACGCCCTGAGCCTGGTGATGCTGGACATCGATCATTTCAAGCAGGTCAACGACACCTACGGCCACCAGGCCGGCGACAAGGTGATCGAACAGGTTGCCGCGCTATTGCACGAGCACGTACGCGAGTCCGACGTGGCCGGGCGCTACGGGGGCGAAGAGTTCGGCGTGGTGCTGTCGGACACCGACCAGGCCGGCGCACGGATTTTCGCAGAGCGCCTGCGCAAGGCTGTCGAACAATTGTTGGTGCAGTACAACGGCCAGGAGATTCGGTTCACCATCAGCCTGGGCGTGGCCGACCTGAGCACGCCGGCGAACGACCACGCCGAGCTGATCGCCCGGGCCGACCAGGCGTTGTATACATCGAAGAAGACAGGGCGCAATCGCGTGACGGTGCATGGCTAA	MTDSIDLNEFHWLLAIVQSIDVGVVVLDREYRVQVWNTFMENRSGVQPKDAQNRNFFSLFPEIDRQWFSRKVESVATLGTPAFTVWEQRPYLMRFKSYQPITGQEEFMYQNTTLLPLRSPDNRINHICLVIYDVTDVATNRHQIQAANAQLQLLSSTDRLTGLYNRGHWEGTLKAAYARHQRYGNALSLVMLDIDHFKQVNDTYGHQAGDKVIEQVAALLHEHVRESDVAGRYGGEEFGVVLSDTDQAGARIFAERLRKAVEQLLVQYNGQEIRFTISLGVADLSTPANDHAELIARADQALYTSKKTGRNRVTVHG	PGPT0026210_474	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-CELLULOSE_METABOLISM	CE-EPS-CELLULOSE_BIOSYNTHESIS,PGPT0026210-adrA-K18968	NA	NA
D1-36_02297	999	cheB_2		Protein-glutamate methylesterase/protein-glutamine glutaminase	GTGCCGTTGATCCCTCTGGTTGTGTGCGATGACTCCACCATGGCGCGCAAGCAAGTGTTGCGTGCGCTGCCGCAAGACTGGCCGGTTTCAGTCACCGAGGCGGTCAATGGCCGCCAGGCCATGGATGCCATACGTCAGGGCCTCGGCCATGTGGTGCTGCTCGACCTGACCATGCCGGAAATGGATGGATACCAGGTCCTGAGCGCGTTGCGCGCCGAAGGCCTCAAGGCGCAGGTCATCGTGATTTCCGGTGACATCCAGGATGAGGCCGTGCGCCGCGTCCTTGAGCTGGGCGCGTTGGCCTTCCTGAAAAAACCATTCGATGAAAACGAACTGCGCCAGACCCTCAACCGCGTGGGGCTGTTGAGCCAGCCCGCTCAGGCGCCGCCGCAGAACCGAGCGACACCGAACACGGCCATCAGCTTCCAGGACGCGTTCCGCGAAACGGTCAACGTTGCCATCGGCCAGGCCGCCGCCCTGATTGCCAAGGTGCTGGGGGTTTTCGTGCAACTGCCGGTGCCGAACGTCAACGTGCTCGAAGTCGGCGAATTGCACATGGCCTTGAACGACGTCGGCGGTTCCCAGCAACTCACGGCCATCTGCCAGGGGTTTATCGGCAGCGGGATTGCCGGCGAAGCCCTGCTGATCTTCCATGATTCGGAAATCGCCGATATCGCCCAGTTGATGCAGCGCGAAAGCGCCGACTATTCAGACCTGGAGATGCTGGTGGACCTTTCGAGCATCCTGATCGGTGCGTGCCTGAGCAGCATCGCCGAGCAGATCGATGTGGTGTTCTCCCAAGGTCATCCGCAGGTCCTCGGCCAGCATGCGGCCATCGAGGAATTGATCCGGGCAAACCGCGTCCATTGGAAAAAAACCCTCGCGGTGGAGATCAGCTACGGCCTCGAAGGCCAGGATATCCGCTTCGACCTGTTACTGCTGTTCACGGAGGATTCCATCGAGCGGCTGACCCACAAACTCGCCTACCTGATGAGCTGA	MPLIPLVVCDDSTMARKQVLRALPQDWPVSVTEAVNGRQAMDAIRQGLGHVVLLDLTMPEMDGYQVLSALRAEGLKAQVIVISGDIQDEAVRRVLELGALAFLKKPFDENELRQTLNRVGLLSQPAQAPPQNRATPNTAISFQDAFRETVNVAIGQAAALIAKVLGVFVQLPVPNVNVLEVGELHMALNDVGGSQQLTAICQGFIGSGIAGEALLIFHDSEIADIAQLMQRESADYSDLEMLVDLSSILIGACLSSIAEQIDVVFSQGHPQVLGQHAAIEELIRANRVHWKKTLAVEISYGLEGQDIRFDLLLLFTEDSIERLTHKLAYLMS				NA	NA	NA	NA	NA
D1-36_02298	813	rhaS_4		HTH-type transcriptional activator RhaS	ATGAGCCATCGAAACCGCCCACAGCCACCGCGCCCGACTGAATCGACCCGTCGCGTCGAGGCCGGCCCGTGGCTCATCGAACTGCTCCCCGGTAGCGCCTATTCGGCTCGATACGTTGCAACCCAGCCGGTCATCGGCTTTGCCTTCGACAGCCAGCGAGGCCTGCATGCCATTGGCAGCGACCGGGTGCAGCCGTTCTACGCCAAGCCCAACGGCCTGGCGTTCGTCCCAGCCCAGTGCGACGTGTATTCGGAGTCACCCGTAGGCGGCGAATACCTGCGTTTGGTGCGCACTGACGGCGTCGTGCTGCCTGGAGATCATGCGTTCAACAATCGCGTCGACCCACGCGCCAGCGCCCTCGCGCAACGCATGCGCAAGGCGTTGCTGCACGCTTCGGTCGAAGATGATTGGCAAGCCTGGGCCGTGGCGCTGGCCGAGCGCGTGACGCCGGGCGAACATTCTTGCGCAACGCTCCAGGGCTCCATGACCGACAGCCGGATGCGCCTGCTCGACGAGTTCATCGATGCCGGCCTCGATCAACCGCTGGGCGTCTCGGCAATGGCGCAGTTGCTGGGATTGTCCGAAGGTTATTTCATGCGCGCCTTCAAGTTCGCGACGGGCAAAAGCCCCCACGCTTACCTGATCGACCGCCGCCTCGCCAAAGCCCGGGCGTTGATACGCGACTCATCGGCGACGTTGGCACAAATCGCCCACGCCTGCGGTTTCAGCTCCCAGGCGCACATGACAACAACGTTCAAGCAGCGCCTAGGGGTGAGCCCGGCGCAGTTGCGCCAGATGACGAGTGGCGTTTGA	MSHRNRPQPPRPTESTRRVEAGPWLIELLPGSAYSARYVATQPVIGFAFDSQRGLHAIGSDRVQPFYAKPNGLAFVPAQCDVYSESPVGGEYLRLVRTDGVVLPGDHAFNNRVDPRASALAQRMRKALLHASVEDDWQAWAVALAERVTPGEHSCATLQGSMTDSRMRLLDEFIDAGLDQPLGVSAMAQLLGLSEGYFMRAFKFATGKSPHAYLIDRRLAKARALIRDSSATLAQIAHACGFSSQAHMTTTFKQRLGVSPAQLRQMTSGV				NA	NA	NA	NA	NA
D1-36_02299	957	tdcB_2	COG1171	L-threonine ammonia-lyase	ATGTACGCACTGACTCTCGACGATATCGAACAAGCGGCTCGCCAGGTCTACCAGGTCATGCCCGCCACGGCCCAGTACGCCTGGCCCTTGCTGGCGCAACGCCTCGGTTGCACGGTGTGGGTCAAGCACGAAAATCATACCCCCACGGGCGCGTTCAAGGTCCGCGGCGGCATCACATTCATGGATTGGCTCAAGCGTGAGCATCCGCGAACGAAAGGCATTGTCACCGCGACCCGTGGCAACCATGGCCAGAGCCAGGCGCTGGCGGCCAGCGCGGCGGGGCTGCGGGCATTGATCGTGGTGCCGGAGGGAAACTCGGTCGAGAAGAACGACGCCATGCGCGGCTTCGGTGGCGAAGTGATCGAATACGGCCGCGATTTCGATGAGGCTCGTGAAGAAGCGGCACGCCTGGCGCAGACCCAGGGACTCTATCTCGTACCGCCGTTTCATACCGAGCTGGTCAGAGGCGTCGCTACCTACGCGCTCGAGCTGTTCAAGGCCGTGCCTGACCTGGACACCGTCTACGTGCCCATTGGCTGCGGCTCCGGGATCTGCGCGGTCATCGCTGCCCGTGATGCCCTGGGCTTGCAAACCCAGGTCGTGGGCGTGGTGTCCACCGAGGCGACGGCGGCGAAACTGTCATTTGAAGCGGGTGAAATCCGCGAAACCGCCTCGGCCGATACCTTTGCCGACGGCCTCGCCGTGCGCAAGCCGATTGCACAGGCCTTCGCCATCTACGGCGCTGGCGCGGCGCGCATCGTAGCGGTCAGCGACCAGGAAATTGCCGAGGCCATGCGCGTCTATTACACCGACACCCACAACCTGGCCGAAGGTGCCGGCGCGGCGGCGTTGGCGGCGCTTATCCAGGAGCGCGGGAAGATGGAAGGGAAGAAGGTCGGGGTGATTTTGTCCGGCGGTAATATCGATCGATCGGTGTATGCCCGCGTAATCGAGTAG	MYALTLDDIEQAARQVYQVMPATAQYAWPLLAQRLGCTVWVKHENHTPTGAFKVRGGITFMDWLKREHPRTKGIVTATRGNHGQSQALAASAAGLRALIVVPEGNSVEKNDAMRGFGGEVIEYGRDFDEAREEAARLAQTQGLYLVPPFHTELVRGVATYALELFKAVPDLDTVYVPIGCGSGICAVIAARDALGLQTQVVGVVSTEATAAKLSFEAGEIRETASADTFADGLAVRKPIAQAFAIYGAGAARIVAVSDQEIAEAMRVYYTDTHNLAEGAGAAALAALIQERGKMEGKKVGVILSGGNIDRSVYARVIE	PGPT0001960_6657	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
D1-36_02300	621			hypothetical protein	ATGAACCAGCCATCCATTGCACCACCCAGCGCCCGTGGACCCGCCGATCACGACATTCGTGACCAGATCATAGCGGCCGCCCATGAACATTTCAGCCAGTACGGCTTTGGCAAGACCACGGTTTCCGACCTGGCCAAGGCTATCGGCTTCTCCAAGGCGTACATCTACAAGTTCTTCGATTCCAAGCAGGCGATCGGCGAAGCGATCTGCGCCAACTGCCTGTCGACGATCGTCGAGGCGGTGGAAGAGGCGATCAACGTAAACGGGCTGACGGCAACGGAGCGCTTGCGCAGGCTGGTCAAAACATTAGTCGTCACGGGCGTGAACCTGTTTTTCAACGACCGCAAGCTCTACGATATCGCGGCTTTCTCGGCTTCGGAGCGCTGGCCTAGTTCCCAGGCGTATAACGAACGGATCAAGAGCTTCGTGCTGGAGATCATCCGCCAAGGGCGTGAGCTCGGCGAGTTTGAACGACGCACGCCTCTGGACGAAACGGTGGAGGCCATCCACCTGGCCTTGCGGCCGTTCGTCAACCCCTTGCTGCTGCAATACAACCTCGACTTCGTCGAGGAAGCCCCCACGCTCACGACCAATCTCATCCTGCGTAGCCTGATGCCCTGA	MNQPSIAPPSARGPADHDIRDQIIAAAHEHFSQYGFGKTTVSDLAKAIGFSKAYIYKFFDSKQAIGEAICANCLSTIVEAVEEAINVNGLTATERLRRLVKTLVVTGVNLFFNDRKLYDIAAFSASERWPSSQAYNERIKSFVLEIIRQGRELGEFERRTPLDETVEAIHLALRPFVNPLLLQYNLDFVEEAPTLTTNLILRSLMP				NA	NA	NA	NA	NA
D1-36_02301	1461	ttgF_3		Toluene efflux pump outer membrane protein TtgF	ATGCTACCCCTGCGCCCCCTGGCTTTTTTTCTGAGCACCGGCTTGTTGACAGGTTGCGCGGTCGGCCCGGACTACCATCGTCCCGCAGTCCCACTTTCGAGTCGTTACGTAGGCCAGCCTCTGGTCGAACAGCGGTCCGCGAGCGTTCGGGCCGACTCGATTATCTGGTGGGAAGCGTTTGGTGATCCAAACCTCACGGTGTTTGTCACCAAGGCCCTTGAACAAAACCTGGACTTGGCGCAGGCATCGGCGCGCGTGACGCAGGCACGGGCCGGACTGGGCGCAGCGAACGCCGCTTTGCTGCCCTCGGGAAATATCAGTGGCCAGGCCGCGCGCGCCTACCAGTCGGTGGAGACCCCGCTCGGCCAGGTGCTCGATTCAACGCCTGGCTATGATCGATACGGAAGTTCCTACGAACTCAACCTCGGCGCCAGTTGGGAGATAGATGCCTTCGGCGGCCTGCGGCGTGGACGCGAAGCAGCGCTGGCGGACTACCAGGCGTCCGAGGCCGGTGCGGTCGCCACGCGCTTGGCGGTCGCCGCGCAGGTCGCCGACACCTACATCACCGTTCGTGGACTGCAGGCCCGGCTGGACATTGCAAACCGACAGGTCAGGACGCAGCAAGACCTGCTAAAAAAAATCCAATTGCTGTACAACAAAGGCCTCGCCGCCAGCTATCAGGTTCGCCAGACCGAGGGGCAACTGGCACAAGTCCAGGCAACGTTACCGGTCCTGCAGACCGGCCTGGATGCCGCGATGAACGCCTTGGATGTCATGCTCGGCACTCCGCCCGGCACCCATCGGCCGCTATTGGCCGAGCGCCGCGACATTCCCCTCGCCCCACAAATAACCACAACCGGAACGCCGGCGGACCTGCTGCGTCGCCGGCCAGACCTGATCGTCGCCGAGCGTCACCTTGCGGCCTCCAATGCGCGCATCGGCGAGGCCGTCGCCGAGTACTATCCAAAGTTCTCCCTCAGCGCCTTGCTCGGCAGCGCCACGGCGGTGTCCGGCGGTAACTTGTTCAGTGGCGGCGCCAGCCAATCGGCGGGCGTGCTGGGGCTGCGCTGGAGGCTCTTCGATTTTGGCCGCATCAACGCCCGGATCGACGAGGCCAAGGGCGAGGAAGCCGAAGCGTTGGCTGCTTATCGCCAGTCCGTGCTGCGCGCCACTGAAGACGTCGAAAACGCCTTTAGCGCGCTGGTCAATCGCGAAACCCAGGCGACCACCCTCACCCAAGGCGAAACGTCTTTGAACCAGGCCCGTCAATCGGCCTTCGTCGCCTACCAGAAAGGCACCGCCAGCCTGATCGACGTGCTCAACGCCGACGAGACGTTGCTGCAGGCATCCGATGCCCGAGCGCAGGCTCGAACGGAATCAGCACGGGCAGCGGTCGCGGCATTCCGTGCGCTTGGCGGTGGTTGGCAAGCTCCCGAGGAAGGAGCTGTGGCGACAAGGTGA	MLPLRPLAFFLSTGLLTGCAVGPDYHRPAVPLSSRYVGQPLVEQRSASVRADSIIWWEAFGDPNLTVFVTKALEQNLDLAQASARVTQARAGLGAANAALLPSGNISGQAARAYQSVETPLGQVLDSTPGYDRYGSSYELNLGASWEIDAFGGLRRGREAALADYQASEAGAVATRLAVAAQVADTYITVRGLQARLDIANRQVRTQQDLLKKIQLLYNKGLAASYQVRQTEGQLAQVQATLPVLQTGLDAAMNALDVMLGTPPGTHRPLLAERRDIPLAPQITTTGTPADLLRRRPDLIVAERHLAASNARIGEAVAEYYPKFSLSALLGSATAVSGGNLFSGGASQSAGVLGLRWRLFDFGRINARIDEAKGEEAEALAAYRQSVLRATEDVENAFSALVNRETQATTLTQGETSLNQARQSAFVAYQKGTASLIDVLNADETLLQASDARAQARTESARAAVAAFRALGGGWQAPEEGAVATR				NA	NA	NA	NA	NA
D1-36_02302	1110	mdtA_4		Multidrug resistance protein MdtA	ATGCTCCGGCGCCGACCTGTCACCCTTGCCGCTTGCTTGCTGCCTCTCGTCCTGACGGCGTGTGGCGAGTCATCCACCGAGAAAGATCCACGCACGCTTGCGCCCATCGTGAGGGTCGCGCAAGTTTTGGGTTCGCCCGACCGGTCGCGTTCGTTTACCGGCGTGGTCACGGCCAGGGTCCAGAGCGACCTGGGCTTTCGCGTGTCGGGCAAGGTCCTCGAGCGGCTGGTCGACACCGGCCAGACGGTCAAGCGCGGCCAGCCACTGATGCGCCTGGACCCTGTCGACTTGGGGCTGCAAGCGCGAGCACAACAGGAGGCCGTTGCCGCCGCTCGGGCGAGGGCGAAGCAGACCGCCGATGACGAGGCTCGTTACCGAGACCTCGTCGCTGCCGGCGCCATTTCCGCCTCGGGCTACGACCAGATCAAGGCCGCCGCCGATACCGCAAGGGCGCAACTCAGCGCGGCCCAGGCCCAGGCTGACGTTGCCCGCAACGCTTCTGGTTATGCCGTGCTGCTCGCCGACGCCGATGGCGTTGTGATGGAAACGCTCGCCGAGCCCGGGCAAGTTGTCGCTCTTGGACAAATCGTGGTTCGACTGGCCCGGGCAGGCCAGCGCGAAGCCGTGGTGCAACTGCCTGAAACCCTGCGGCCGACGTCGGGGTCAGTCGCCCAGGCGACGCTGTACGGCAATGCCAGCGAGGCGGTCAATGCGAAGCTGAGGTTGCTGTCGGATTCCGCCGACCCTGTAACGCGCACCTTCGAGGCGCGTTACGTGTTGGAGGGCGCGCTGGCCAGCGCACCGCTGGGATCCACGGTCACGCTCCGGGTCGCCGCGGGGCCTCGGACGGAACAGGCACTGCAAGTTCCGATCGCTGCCATTTTCGACTCGGGCAAAGGCAGTGGTGTCTGGGTCATCACGGGCGAACCGGCGACAGTCGCCTGGCGTCCGGTGAAGGTCGTCGGCTTGAGCGACGACGCCGCGCAGGTCTTGGGCGAGCTGAAAATGGGCGAGCAGATCGTTGCGCTCGGCGCCCATCTGCTGCACGAGGGCGAGGCGGTGCGTCTTGCGCAACCGCAAGACGTGAAGGTTGCGGGGAATCGCCCATGA	MLRRRPVTLAACLLPLVLTACGESSTEKDPRTLAPIVRVAQVLGSPDRSRSFTGVVTARVQSDLGFRVSGKVLERLVDTGQTVKRGQPLMRLDPVDLGLQARAQQEAVAAARARAKQTADDEARYRDLVAAGAISASGYDQIKAAADTARAQLSAAQAQADVARNASGYAVLLADADGVVMETLAEPGQVVALGQIVVRLARAGQREAVVQLPETLRPTSGSVAQATLYGNASEAVNAKLRLLSDSADPVTRTFEARYVLEGALASAPLGSTVTLRVAAGPRTEQALQVPIAAIFDSGKGSGVWVITGEPATVAWRPVKVVGLSDDAAQVLGELKMGEQIVALGAHLLHEGEAVRLAQPQDVKVAGNRP				NA	NA	NA	NA	NA
D1-36_02303	3063	cnrA_1		Nickel and cobalt resistance protein CnrA	ATGAGCTTCAACCTCTCCGCGCTCGCCGTCCGCGAGCGTTCCATCACGGTATTCCTGCTGTTGCTGATCGCCGTTGCGGGTGTCCTCGCTTTTTTCCAGCTCGGCCGCGCGGAAGACCCACCCTTCACGGTAAAGCAACTGACGGTCATCACCGCCTGGCCAGGCGCGACAGCCCAGGAAATGCAAGACCAGGTCGCCGAACCGCTGGAAAAACGCCTGCAAGAATTGAAGTGGTACGACCGCACGGAAACCTATACCCGTCCCGGCCTTGCGTTCACGATGGTGTCGCTGGTCGATCGGACGCCGCCGTCGCAAGTGCAGGAAGAGTTCTACCAGGCGCGCAAGAAGCTGGCTGACGAGGCGATCAAACTGCCGCCCGGGGTTATAGGGCCGATGGTCAATGATGAATTTTCCGACGTGACCTTCGCCTTGTTCGCCTTGAAAGCCAAAGGCGAGCCGCAACGACGGCTGGTGCGTGATGCCGAAGCGCTACGCCAACAACTGCTGCATGTGCCAGGCGTGAAGAAGATCAATATCATCGGCGAGCAGGCCGAACGGATCTTCGTGTCCTTTTCCCACGATCGCTTGGCGACCCTGGGTGTGTCGCCCCAGGATATTTTTACCGCCCTCAACAGCCAGAACATGCTCACGCCAGCCGGCTCCATCGAAACCGTCGGGCCGCAGGTGTTCCTGCGCCTGGATGGCGCTTTCGACAAGCTGCAGAAGATTCGCGACACGCCGGTCGTGGTACAGGGGCGCTCGCTGAAGCTGTCGGACGTGGCGACTGTCGAGCGCGGCTATGAAGACCCCGCCACGTTCCTGGTGCGCAACGGTGGCGAAGAAGCGTTGTTATTGGGCGTGATCATGCGCGAGGGCTGGAATGGCCTGGACCTGGGCAAGGCCTTGGATACGCAGATCAGCAAGATCAACCAAGACATGCCGCTGGGCATGGCGCTGACCAAGGTTACCGATCAATCGGTCAATATCGACTCGGCGGTCGGCGAGTTCATGGTCAAGTTCTTCGTCGCGCTGCTGGTGGTGATGATTGTCTGTTTCCTCAGCATGGGCTGGCGCGTGGGTGTCGTGGTCGCGGCGGCCGTGCCGTTGACGTTGGCCGTGGTGTTCGTGGTCATGGCCGCCACCGGCAAGAATTTCGACCGAATCACCCTCGGCTCCCTGATCCTCGCGCTCGGTTTGTTGGTGGACGACGCGATCATCGCCATTGAAATGATGGTGGTGAAAATGGAGGAGGGCTACGACCGGATCAAGGCCAGCGCGTATGCCTGGAGCCACACGGCCGCACCGATGTTGTCCGGCACGCTGGTGACCGCCATCGGCTTCATGCCCAACGGGTTCGCGCAATCGACCGCTGGCGAATACACCAGCAACATGTTCTGGATCGTCGGCATCGCGCTGATTGCTTCCTGGGTGGTCGCGGTGGCATTCACACCGTACCTGGGCGTGAAATTGTTGCCCGACATCAAGCAGGTCGAAGGCGGGCACGCGGCCATCTACAACACGCGGCACTACAACCGTTTCCGCCGAGTGCTGACGCGAGTCATCGCGCGCAAATGGTGGGTGGCCGGTACGGTGATCGCGACATTCGTGGTGGCGATCCTCGGCATGGGCCTGGTGAAAAAACAGTTCTTTCCGACCTCGGATCGGCCCGAGGTGCTGGTGGAAGTGCAGATGCCGTACGGCACCTCCATCGAGCAAACCAGCGCCACCACCGCCAGGGTCGAGGCCTGGCTGCAACAACAGGAAGAGGCCCGGATCGTCACCGCCTACATCGGCCAAGGCGCGCCGCGTTTCTACCTGGCGATGGCGCCGGAACTTCCCGATCCGTCATTTGCCAAGATTGTCGTGCTGACGGACAGCCAGCAAGCACGCGAAGCCCTCAAGTTCCGTCTCCGCGAAGCGATCGCCCAAGGGCTGGCTCCCGAGGCGCGGGTGCGGGTCACTCAATTGGTGTTCGGCCCGTATTCACCGTTCCCCGTGGCGTATCGTGTGATGGGCCCTGATTCGACGAAGCTGCGCGAGATCGCCAGTCAGGTCCAGGGCATCATGCAGGCGAGCCCGATGATGAGGACCGTCAACACCGACTGGGGACCCTTGGTGCCGACGCTGCATTTCAATCTCGACCAGGACCGCTTGCAAGCGGTGGGGCTGACGTCCAATGCGGTCGCCCAGCAATTGCAGTTTCTGCTCAGCGGCGTGCCGATCACGGCAGTGCGCGAGGACATCCGTTCGGTGCAGGTGATCGGCCGCGCCGCCGGTGACATCCGCCTCGACCCCGCGCGGATCGAAGGTTTCACCCTAGTGGGCGCGACAGGCCAGCGCATTCCGCTGTCCCAGGTCGGCGAGGTGGATGTGCGCATGGAAGATCCGATCCTGCGCCGTCGTGATCGCACGCCGACCATGACGGTGCGCGGCGATATTGCCGAAGGCCTGCAGCCGCCGGACGTCTCCAGCGCGATTATCAAGCAACTGCAACCGGTCATCGACAGGTTGCCCGCCGGCTACCGGATCGAGCAGGCGGGCGCCATCGAGGAGTCGGGCAAGGCCGGCAAGGCCATCGTGCCGCTGGTGCCGATCATGGTCGCCTTGACGTTGCTGATCATCATCCTGCAAGTGCGCTCGATCTCGGCGATGATCATGGTGTTCTTGACGGCGCCACTGGGGCTGATCGGCGTCGTGCCGACATTGCTGATCTTCAATCAGCCATTCGGTATCAATGCATTGGTCGGCCTGATCGCCCTGTCGGGCATTCTCATGCGCAATACGCTGATCCTGATCGGGCAAATCCATCACAACGCCAACGAAGGGCTGGATCCGTTCCATGCGGTGATCGAGGCCACGGTGCAGCGTGCACGGCCGGTGTTGCTCACGGCACTGGCGGCAATCCTGGCATTCATCCCCCTGACACATTCGGTGTTCTGGGGCACGCTGGCCTACACCCTGATCGGCGGCACGTTCGTCGGCACCATCATGACGCTGGTGTTCCTGCCGGCGATGTATTCCATCTGGTTCAAGATCCGTCCTGATACGAAGAGGGCTCCATGA	MSFNLSALAVRERSITVFLLLLIAVAGVLAFFQLGRAEDPPFTVKQLTVITAWPGATAQEMQDQVAEPLEKRLQELKWYDRTETYTRPGLAFTMVSLVDRTPPSQVQEEFYQARKKLADEAIKLPPGVIGPMVNDEFSDVTFALFALKAKGEPQRRLVRDAEALRQQLLHVPGVKKINIIGEQAERIFVSFSHDRLATLGVSPQDIFTALNSQNMLTPAGSIETVGPQVFLRLDGAFDKLQKIRDTPVVVQGRSLKLSDVATVERGYEDPATFLVRNGGEEALLLGVIMREGWNGLDLGKALDTQISKINQDMPLGMALTKVTDQSVNIDSAVGEFMVKFFVALLVVMIVCFLSMGWRVGVVVAAAVPLTLAVVFVVMAATGKNFDRITLGSLILALGLLVDDAIIAIEMMVVKMEEGYDRIKASAYAWSHTAAPMLSGTLVTAIGFMPNGFAQSTAGEYTSNMFWIVGIALIASWVVAVAFTPYLGVKLLPDIKQVEGGHAAIYNTRHYNRFRRVLTRVIARKWWVAGTVIATFVVAILGMGLVKKQFFPTSDRPEVLVEVQMPYGTSIEQTSATTARVEAWLQQQEEARIVTAYIGQGAPRFYLAMAPELPDPSFAKIVVLTDSQQAREALKFRLREAIAQGLAPEARVRVTQLVFGPYSPFPVAYRVMGPDSTKLREIASQVQGIMQASPMMRTVNTDWGPLVPTLHFNLDQDRLQAVGLTSNAVAQQLQFLLSGVPITAVREDIRSVQVIGRAAGDIRLDPARIEGFTLVGATGQRIPLSQVGEVDVRMEDPILRRRDRTPTMTVRGDIAEGLQPPDVSSAIIKQLQPVIDRLPAGYRIEQAGAIEESGKAGKAIVPLVPIMVALTLLIIILQVRSISAMIMVFLTAPLGLIGVVPTLLIFNQPFGINALVGLIALSGILMRNTLILIGQIHHNANEGLDPFHAVIEATVQRARPVLLTALAAILAFIPLTHSVFWGTLAYTLIGGTFVGTIMTLVFLPAMYSIWFKIRPDTKRAP	PGPT0028890_426	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexJK-OprM,PGPT0028890-mexK-K18303	NA	NA
D1-36_02304	1299	fabF_3	COG0304	3-oxoacyl-[acyl-carrier-protein] synthase 2	ATGAAAAATCGCGAAGGTCAAAAACGCATCGTCATCACTGGCGTAGGCATCGTCGGCCCGCTGGGCTGCGGGGTGGAAGAGGTCTGGCAGCGCTTGCTGGCCGGGCAATCCGGCATTCGCAACCTGTCCGCCGACGTCACCGACGGGACCGGCGTCGCCGTGGGGGGGCAAGTGCCGACCTTGGAAGAGGACGGTATCGCCGGTTACGACCCGGAGCGCCTCATCGCGCCCAAGGATCGCAAGAAGATGGACCGCTTCATCGAGTTCGCCCTGGTGGCGGCTCACGAAGCCCTGGAGCAGGCGGGCTGGCATCCCGTTGATCCCGTCCATCAGGAGCGGACTGCCACGATCATTTCTTCGGGCGTGGGTGGTTTCGCCACGATTGCCGATGCGGTGCGCACCACCGATGCTCGCGGTCCACGTCGACTGTCGCCGTTCACCGCGCCGGCTTTCCTGGCCAATATGGCGGCCGGGCAGGTGTCCATCCGACATGGTTTCAAAGGGCCGCTAGGTGCGCCCGTTACCGCTTGTGCTGCCGGCGTACAAGCCATTGGCGATGCCGCTCGGCTGATCAAGAGTGGCGAGGCGGACATTGCCATTTGCGGCGGCACCGAGGCGGCGATCGACCGGGTGACGTTGGGCTGCTTCGCGGCGGCGCGGGCACTGTCCACGGGATTTGCCGAGCGTCCACAAGAGGCCTCGCGGCCGTTCGATCGGGAGCGCGACGGCTTCGTCATGGCCGAAGGCGCCGGGTTGCTGGTGATCGAGTCGCTGGAACACGCTCTGGCCCGGGGTGCCAAGCCCCTGGCGGAATTGGTGGGGTATGGCACCAGCGCCGATGCCTACCACCTGACCGCGGGCCCGGAGGATGGCAACGGAGCCCGCCGCGCCATGGAGCAAGCGTTGCGCCAGGCAGGTCTCAACCCCAGCGAGGTGCAGCACATCAATGCCCACGCGACGTCCACCCAGGTGGGTGATGCCGGTGAGCTGGCGGCGATCCGCGCGGTTTTTGGCACGAACGGCGGCGCGGGCGCAGGCGTGGCGATCACTTCTACCAAATCAGCCACTGGCCACTTGTTGGGCGCGGCCGGCGGCATCGAAGCGATCTTCACGGTTTTGGCGCTGCGTGATCAGATCGTGCCGCCGACGCTGAACCTGATGCATCCCGACGAGGCAGCCAACGGCCTCGATCTGGTTGGCCTGAAGGCCCGGAAAATGCCGATCACCCATGCACTGTCGAATGGGTTCGGTTTTGGTGGCGTCAATGCCAGCGTGTTATTCCGTCGTTGGGACGATTGA	MKNREGQKRIVITGVGIVGPLGCGVEEVWQRLLAGQSGIRNLSADVTDGTGVAVGGQVPTLEEDGIAGYDPERLIAPKDRKKMDRFIEFALVAAHEALEQAGWHPVDPVHQERTATIISSGVGGFATIADAVRTTDARGPRRLSPFTAPAFLANMAAGQVSIRHGFKGPLGAPVTACAAGVQAIGDAARLIKSGEADIAICGGTEAAIDRVTLGCFAAARALSTGFAERPQEASRPFDRERDGFVMAEGAGLLVIESLEHALARGAKPLAELVGYGTSADAYHLTAGPEDGNGARRAMEQALRQAGLNPSEVQHINAHATSTQVGDAGELAAIRAVFGTNGGAGAGVAITSTKSATGHLLGAAGGIEAIFTVLALRDQIVPPTLNLMHPDEAANGLDLVGLKARKMPITHALSNGFGFGGVNASVLFRRWDD	PGPT0008360_1439	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008360-fabF-K09458	NA	NA
D1-36_02305	1215	bcr_2		Bicyclomycin resistance protein	ATGAAAACCGCAGATGCATCAGCGATTGTGCAAACGCAGCCACTCGCATCGAGCCCAGCCCTGACCGGCCGAATCGTCGCACTGCTCGCCGGCCTCGCGGCCATCGGCATGCTCTCCACCAATATCATCCTCCCTGCGTTCCCGGTGATCGGTGATGACCTCGGCGTGACCGCCCGCGAACTGGGCCTGACGCTCTCCAGTTACTTCGTCACCTTTGCCCTGGGTCAGTTGGTGGTCGGGCCGTTGGCTGACCGTTATGGACGGCAGAAACTGGTGCTGGGCGGACTGTCGGTGTTCATAGTCGGCACCGTCATCGGCGGCCTCGCCACCACCCTTGAGGTACTGATTGCCGGCCGCGTCGTTCAGGCGTTGGGCGTGTGCGCGGCCTCGGTGCTGTCGCGGGCCATCGCACGGGATCTGTTCGAAGGCGAGACACTGGCCCGCGCCCTGTCATTGACGATGGTCGCCACGGCCGCTGCGCCAGGTTTCTCACCCTTGGCGGGCAGCGTGCTGTCCGTCACGCTCGGATGGCGCGCCATCTTTTTCCTGGTGGGATTGGCCGCCGTGGTGCTGGCGTTCTTCTATGTACGCGATCTTGGCGAAACCCATCCCGCCGACCGCCGGGCGCCGCACTCTACCGGCAGTGTGGTGCGCGCTTACGCCAGGCTGGTGGTGGACAAGCGTTTCATCCTCCCTGCCCTGTCGATGAGCCTGTTGCTCAGCGGTCTGTTCGCGTCATTCGCCGCTGCCCCGGCCATTCTCATGAAAGGCATCGGCCTGACGTCCCTGCAGGCCGGCCTGTATTTCGCATCAACGGTGTTTGTGGTGTTCGCCGCCGGCCTGGCCGCTCCTCGCCTGGCCCGACGTTTTGGCCCAGGTAACACCGCCCTGCTGGGCATTGCCTGCGCCATGATCGGCGGTGGTTTGCTCATCGTGGGGCCGGCCAGCCCGGGGCTTGGCTGGTATGCGGTGTCGATGGTGACGTTCCTTTGGGGCATGGGCCTGGCGAACCCCTTAGGCACGGCAATCACCATGGGACCTTTCGGCAAAGAGGCCGGGATGGCCTCGGCGCTGCTGGGTTTTCTCTCCATGGGTGCGGCAGCGTTGACCACCTGGCTCGCCGCCGTGCTGAGCTTTTCACCCATCGCCACACTGGGCGCGATACAGGCGTTGACCTGCCTGGTCGCGCTGGTGCTGTTCCGCTTGCGCCGCTGA	MKTADASAIVQTQPLASSPALTGRIVALLAGLAAIGMLSTNIILPAFPVIGDDLGVTARELGLTLSSYFVTFALGQLVVGPLADRYGRQKLVLGGLSVFIVGTVIGGLATTLEVLIAGRVVQALGVCAASVLSRAIARDLFEGETLARALSLTMVATAAAPGFSPLAGSVLSVTLGWRAIFFLVGLAAVVLAFFYVRDLGETHPADRRAPHSTGSVVRAYARLVVDKRFILPALSMSLLLSGLFASFAAAPAILMKGIGLTSLQAGLYFASTVFVVFAAGLAAPRLARRFGPGNTALLGIACAMIGGGLLIVGPASPGLGWYAVSMVTFLWGMGLANPLGTAITMGPFGKEAGMASALLGFLSMGAAALTTWLAAVLSFSPIATLGAIQALTCLVALVLFRLRR	PGPT0029005_2211	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
D1-36_02306	2211	fhuA_3	COG1629	Ferrichrome outer membrane transporter/phage receptor	ATGCTCGTAAGAAAAACAACAGTTGGCACCGAAAAACGTTACGTCTCGCGTCATCCAGCGTTTCACTTGAGCACTCTGGCCCTGGCTTTGGGGAGCATCTTTTCAGCACAGGCGTTCGCCGCACAAGAAGAGGCTGCAGCCAACGCTCCTCTTCAACTCGGCGAAATCAACATCAATGCCGCCGCCGTGGAAAACCCCACGGCGCCGCTGGCCGGCAAAGTCGCCCTGCGCAACGGCAGTGCCACCAAGTCCAACGCGGCCATCACTGAAACGCCGCAATCGGTGTCCGTGGTCACCGCCGATGAAATGCGCGATCGCAAGTCCGACACCATGGCGGACGCCCTCAGCTACACCCCGGGCTTCACCAGCCAACCGAGCAGCTTCAACCGCACCTCGGACCGGTTCCGCATTCGCGGCTTCGACGTCGAATCCGCCACTGGCGGCTCCCTGCGCGACGGCATGCGCCTGCAAAACAACTCCTACGATGGCGTCCAGGACCCGTATGGGTTAGAGCGCGTGGAAGTTATCCGCGGCGCGGCGTCGGTGCTGTACGGCCAACTGTCGCCAGGCGGCTTCGTCAACGGTGTCAGCAAGCGCCCGACCGAAACCCCGCTGCATGAGTTGGGGCTGCAATATGGCAACCATGATCGCAAGCAACTGACCGCCGACTTCAGCGGCCCGCTCGGTGACAGCGAGGTCCTCACCTACCGCCTGACCATGCTCAAGCGCGACAGCGACACCCAGCAGGATTACGTCAACGACGACAAGCTCTACATCGCCCCGGCCCTGACCTGGCGCCCTGATGAAGACACGTCCCTGACCCTGCTCTCGTTCTATCAGAAGAGCGACACGCGTTTCTCCGCCCCGCTGCCCTATCAATTGGTCAAAGGCGTAGGCAACGGCCCCTTCACCATCGGCCGCCACGATTTCATCGGCGAACCCGACTACGACGACATGAACGGCGAGATGTCCGCCATCGGTTATGAGTTCGAACACCGGTTTGATGAACACACCCGTATCAGCAACAAGTTGCGTTACTACGAAGCGGATGTGAAGTGGAAATACATGCAGATTCGGACAGGGAATCCAGTCAATACAGCAGCCGCCACGGGCGTTTTGGGTCGTCAGTACAGTGATCGGCGGGAGCGCTCCCGGGCGTTGGCCAGCGACACCAACATCGAGACGCGTTGGAACATTGGCGGGATTGAAAACACCTTCCTGGTGGGTGCCGATACCTACGACGCGTCATACGACTCGCATAACTTCCGAGCCAACTCGACCTCTATCAATATTGGTGACTACAACTACGGTCAGCCAGTGGTGGTGGACAAGAGCCGGAACCGCGACCGCGGTTCACAGATCGATACCTTCCAGACAGGTATCTACCTGCAAGACCAGATCAAGTTCGACGATCATTGGCTATTGCTGCTCGGCGGTCGCCACGATTGGGCAGATCAGGATCAGGAAGGCTTCGCCACCGGCGAGAAGCTGAGCCAGAACGACGAATCCACCACTTGGCGCGCCGGCCTGGTGTACCAGGCGGACAACGGCCTGGCACCTTACATCAGCTACAGCGAATCATTCTTCCCAGTTGCGGTGGCCGACGCGCCTGGCCAGACATTCAAGCCTACAGAAGGCAAGCAGTACGAAATCGGCATCCGCTACCAACCTCCGGGCAGCAATACACTGTTGAGCGCAGCGGTTTATGAACTGACGCAGGAAAACGTCGTGAAGCGCGACCTGGCTGGCCTCAATCCCCAGCAGATTGGCGAGCAGCGCTCCCGTGGCCTGGAACTCGAAGCCAAGTCCGACATCACGCCTCAACTGACGGTCATCGCGACGTACGCCTACACCGATGCGCGCATCACCAAAAGCGTAATCCAGAGCGAAGTGGGTCAGCGCAGCGAAGATACGCCTTACCACCAAGCCGCGCTGTGGGCCGACTACAACTTCGCCCGTTTCGGCGTACCGCAGCTGAAAATCGGCGGCGGCGCGCGCTACAAGGGAACCACCCAAGCTTCGGGCATCGATTCGCAAATGCCTGCCTACACGCTGTTCGATGCAATGGCCAGCTACCAGATCGACAAGAACTGGGACATCGCCCTCAACGCCAACAACGTGACGAACAAAAAATACACTTATTGCGAATTTGCCATCTGCCGCTACGGCGACGAGCGCGAGTTGGTGACCTCCGTCAACTTCCGCTGGTAA	MLVRKTTVGTEKRYVSRHPAFHLSTLALALGSIFSAQAFAAQEEAAANAPLQLGEININAAAVENPTAPLAGKVALRNGSATKSNAAITETPQSVSVVTADEMRDRKSDTMADALSYTPGFTSQPSSFNRTSDRFRIRGFDVESATGGSLRDGMRLQNNSYDGVQDPYGLERVEVIRGAASVLYGQLSPGGFVNGVSKRPTETPLHELGLQYGNHDRKQLTADFSGPLGDSEVLTYRLTMLKRDSDTQQDYVNDDKLYIAPALTWRPDEDTSLTLLSFYQKSDTRFSAPLPYQLVKGVGNGPFTIGRHDFIGEPDYDDMNGEMSAIGYEFEHRFDEHTRISNKLRYYEADVKWKYMQIRTGNPVNTAAATGVLGRQYSDRRERSRALASDTNIETRWNIGGIENTFLVGADTYDASYDSHNFRANSTSINIGDYNYGQPVVVDKSRNRDRGSQIDTFQTGIYLQDQIKFDDHWLLLLGGRHDWADQDQEGFATGEKLSQNDESTTWRAGLVYQADNGLAPYISYSESFFPVAVADAPGQTFKPTEGKQYEIGIRYQPPGSNTLLSAAVYELTQENVVKRDLAGLNPQQIGEQRSRGLELEAKSDITPQLTVIATYAYTDARITKSVIQSEVGQRSEDTPYHQAALWADYNFARFGVPQLKIGGGARYKGTTQASGIDSQMPAYTLFDAMASYQIDKNWDIALNANNVTNKKYTYCEFAICRYGDERELVTSVNFRW	PGPT0003790_17279	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014	NA	NA
D1-36_02307	804	fepC	COG1120	Ferric enterobactin transport ATP-binding protein FepC	ATGCTGAAAGCCAGCAATGTGCGGCTGAGCTATGGCGAGCAACAGATTCTCAACGGTGTCAGCCTGGACATTCCCGAAGGCTGCTTCACGGCGTTGATCGGGGCCAACGGCTGTGGCAAGACCACACTCTTGAATGTGCTGGCACATATGCTGCGCCCAAGCGCGGGTGAGGTGCACCTGTCCGGCAAGGCTCTGGGGCAGTATTCGCGCCGGGCGCTGGCGCAGCGCATGGCGTTGTTGCCCCAGCGCACTACGTCACCGGCCGGCATGAGCGTGCGAGAGCTTGTGATGCAGGGACGTTTCCCCTGGCAGAGCTGGTGGCGGCAATGGTCCGAACAGGATCAGCAGGCAATCGACCGTGCCATCGAACTGGCGGGCATCGCACCGTTGCTCGATCGCTCGTTGGCCACCCTGTCGGGTGGACAACTGCAGCGCTGCTGGATTGCCATGACCTTGGCCCAGGACACCCCAGTGATCCTGTTGGACGAGCCCACGACGTTTCTCGATATCGCTCATCAGATCACCTTGCTCGAACTGCTGGTGGACCTGCGCGAGCAAGGCAAGACCGTCGTCGCCGTGCTTCACGATCTCAACCAGGCCGCGCGTTATGCCGATCACCTGGTGATGATGCGTGAAGGCCGCTTGCTGGCCCAGGGCGCGCCCGCTGAAGTCTTTACCCGTGAGAATCTCAAGGCGGTCTTCGACCTGGACGCGCACATCATCACCGACCCTTATTCGGGCGACCCGCTGTGTGTTCCGCAAACCACCCGTAGCCAGCCATCGGCTGTACGGGAGGCGATGTGA	MLKASNVRLSYGEQQILNGVSLDIPEGCFTALIGANGCGKTTLLNVLAHMLRPSAGEVHLSGKALGQYSRRALAQRMALLPQRTTSPAGMSVRELVMQGRFPWQSWWRQWSEQDQQAIDRAIELAGIAPLLDRSLATLSGGQLQRCWIAMTLAQDTPVILLDEPTTFLDIAHQITLLELLVDLREQGKTVVAVLHDLNQAARYADHLVMMREGRLLAQGAPAEVFTRENLKAVFDLDAHIITDPYSGDPLCVPQTTRSQPSAVREAM	PGPT0003760_3071	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
D1-36_02308	984	yfiZ	COG0609	putative siderophore transport system permease protein YfiZ	GTGAGTCACGGTTTGCGAATACCGGTGTGGCTGGGCCTGCTGGTTGCCATCGCCTTGGCCGCGCTGCTGCACCTGGCGGTTGGCGCCAAGAGCATCCCTTGGAACGAGGCCTGGCAGGCACTGGTGGCGTATGCACCGGACAACGCCGATCAGAGCGTCATCCGTGGCAGCCGCCTGCCACGCTTGCTGGTTGCCATGCTGGTGGGCGCCAGCCTTGGCCTGGCGGGAGTGATCATGCAGGCGGTAGGTGACAACCCCCTGGCCGACCCCGGCATTCTCGGCATCAACAGCGGCGCGGCATTATTCGTGGTGTTCGGCTTGCTGGTGCTGCCCGGTCACGACCTGTCGATGATCCCATTGTTTGCTTTCAGCGGTGCCCTGGTGGCAGCCATTGGTGTCCTGCTGCTGGCGGGCAGGGGCCATAACCCGATTCGACTGACCTTGTCCGGCGCGATGATCGCGGCGTTGTTCAGCGCCATCACGTCAATCCTGCTGTTGCTCGACCAGCAGGGGCTCGACAGCCTTCGCCGCTGGCTCACCGGGTCGATCGGCGTGACCGGAGGCTCGATGCAGGCATGGGTCTGGCCTTATGTGGTGTTGGGCATGGTCTTGTGCCTGGTCAATGTCCGGGCCTTGAACGCCCATCGGCTCGGTCCGCAGGCCGCGGCCGGCATGGGCGTCAACTTGTTGAAAATGCGCCTGTTCGGGCTGGCTTCCGTGGTGCTGCTGTCAGGATGCGCCGTGGCGCTGGCGGGACCGATCGGTTTTGTCGGGTTGGTGGTGCCCCATGCGGCGCGGCTGTTGTTTGGCGATGATTATCGACGGCTATTGCTGGCCGCGCCGCTGCTCGGCGCGTTGCTGCTGATCCTGGCGGACATTGCCGCACGAACCGTTGTGCGGCCCTTTGAGCTGAACACCGGGATTGTCACGGCACTGATCGGCGGGCCGATTTTCGTCGCGTTGGTGTTGAGGAAAGTCAAATGA	MSHGLRIPVWLGLLVAIALAALLHLAVGAKSIPWNEAWQALVAYAPDNADQSVIRGSRLPRLLVAMLVGASLGLAGVIMQAVGDNPLADPGILGINSGAALFVVFGLLVLPGHDLSMIPLFAFSGALVAAIGVLLLAGRGHNPIRLTLSGAMIAALFSAITSILLLLDQQGLDSLRRWLTGSIGVTGGSMQAWVWPYVVLGMVLCLVNVRALNAHRLGPQAAAGMGVNLLKMRLFGLASVVLLSGCAVALAGPIGFVGLVVPHAARLLFGDDYRRLLLAAPLLGALLLILADIAARTVVRPFELNTGIVTALIGGPIFVALVLRKVK	PGPT0003770_9277	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
D1-36_02309	1050	yfhA	COG0609	putative siderophore transport system permease protein YfhA	ATGACGCGCGTTGGGCTCATCTTGCCCAGGGCACTTCCATTACTGCCTTGGGTGGCCCGGCCCATCGACGTGATTTCGGTGCTGGCCCTGATGTTCGCATTGGTTGCCTTATCGTTGTACGCGTTGACTGTCGGCAGTTATTCGTTGGGGGTTGTCCAGGCCTGGCAAGCGCTGTGGGCGCCTGAACAGGTCGACTCGACGACGCGCAATCTGCTTTGGGAATTGCGACTGCCACGTGTGGCCCTGGCGATCCTCGCCGGCATGGCCATGTCGCTGGCCGGCCTGTTGATGCAGTCGTTGACGCGCAATCCGCTGGCGGCGCCGGGGCTGGTGGGCGTGGAGTCGGGCGCCAGTGTGACGATGCTGCTGATCATTGTGCTCTGGCCCACGCTGTTGCCCCTTGAGCTCTATCCATTGGCGGCACTGGCGGGCGGGTTGGCCGTGGCATTCTTCGTCGCGCTGCTGTCGTGGCGCCAGGGGATTTCGCCGCTGCGGTTGATCCTTGTCGGCGTTGGGCTCACCGCGATGCTCAGTGCAGTAGCCGATTTACTGATCACCTACGGCAACATCGACCAGGTCGAGTCGGCCCTGATGTGGCTGGGCGGCAGCTTGCACCGGGCCGGTTGGCCGCAGGTTCACAGCCTCGGCACCTGGCTGTTGCTCGCGGGGGTTCCCTTGCTGTTTTTTCACCGTCAATTAAACCTGTTGCAGTTGGGCGAAAAAGTCGCGCTCAGCCGGGGCCTGAACGTCACGGGTGTCATGGCTTTCCTATTGCTGTGCAGTGTCATGCTGACAGCGGCCGCCGTGGCGAACGTCGGCACCATGACTTTCGTCGGGCTGGTGGCGCCGCACCTGGCGCGCCAACTGGCAGGCGATCGCCACGGTGCGCTGATGCCTTTGTCGGCGTTGATGGGGGCATTGCTGGTACTGGCGGGGGATACACTGGGCAGGGGGCTGTTCCCACCGCTGCAATTACCGGCGGGGCTGGTGGTTGCAATTATCGGCGCACCTTATCTGATCATATTGTTGGCGCGTCAACGCAGTCGCTGA	MTRVGLILPRALPLLPWVARPIDVISVLALMFALVALSLYALTVGSYSLGVVQAWQALWAPEQVDSTTRNLLWELRLPRVALAILAGMAMSLAGLLMQSLTRNPLAAPGLVGVESGASVTMLLIIVLWPTLLPLELYPLAALAGGLAVAFFVALLSWRQGISPLRLILVGVGLTAMLSAVADLLITYGNIDQVESALMWLGGSLHRAGWPQVHSLGTWLLLAGVPLLFFHRQLNLLQLGEKVALSRGLNVTGVMAFLLLCSVMLTAAAVANVGTMTFVGLVAPHLARQLAGDRHGALMPLSALMGALLVLAGDTLGRGLFPPLQLPAGLVVAIIGAPYLIILLARQRSR	PGPT0003770_3483	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
D1-36_02310	951	yfmC	COG4594	Fe(3+)-citrate-binding protein YfmC	GTGCGGGTAGGGATGAGAGAAGTGTTCAAGAGGTTGTTTGGCATGCTTTGCGTGCCGTTTGCATTGATGTCGATGCACGCTGGCGCGGCCGAAACCAAAGTGTTCGAGAACAGTTTCGGTCGTGTCGAGGTGCCTGTTTCACCCCACTGCATTGTCTCCCTGCACGATTTCAGCCTGACCGATCAGTTGCTCGAATTGGGTATCAAGCCCTGCGGATCGACAGGCAGGAAGAAGCTGTTTTCGGACGTGCTGTTTCGCGGCGCCCAGGAGCGCTTCGACGTGACAGGCATTCAATACATCGGCTCGCACCAATCTCCTGACCTGGAAGCTATCGCCGCCCTGAAGCCTGACCTGATTGTCGGCCTGTCTTATCACGCGGACCTAAAGGAAAAGCTCAGCAAAATCGCACCGGTCGTGCTGCTGCCCTCCCGGGAAAGCGACATCAAGACCTACGCCAGGCAGCTCGCCGAGCTGGTCGGCAAACAGCAGCGTTACGAAGAAATGCTCCATGAATACGAATGGGTCGTCAGCGAGTTCAAGAAGCGGGTCAAGGACCCTTCGCGGATCACGGTCACGACGCTCGAAGTCTATACCGATGGTTTCCAACTGATCGGCCGTGGCGGTATGGACGACGTCATCAAGGATTTCGGTCTCGGGCGTGTCGCCGCCTATCGTGAGGCGCGCCAGAACGTGCCCTACAGCCTGGAGCGCATCGGTGACTTCGACAGTGATTTCATTATCGACACATACGAGGAGTTACTCGATTCGGAAGCGAGCACGGCAGCGTTTCGCCAGTCGCCTCAATGGCAGAACCTGTTTGCGGTGAAAAACCGCCAGTTTCTCTACCTGAACCGCAGCCGATACGCCGATACGATGCAAGGCTTGCTGGGTTCCGCCTACCTGCTGATGTCCCATATTGCCGAGCGAGAAAGCGTGCTTCAGGCCAAGTGA	MRVGMREVFKRLFGMLCVPFALMSMHAGAAETKVFENSFGRVEVPVSPHCIVSLHDFSLTDQLLELGIKPCGSTGRKKLFSDVLFRGAQERFDVTGIQYIGSHQSPDLEAIAALKPDLIVGLSYHADLKEKLSKIAPVVLLPSRESDIKTYARQLAELVGKQQRYEEMLHEYEWVVSEFKKRVKDPSRITVTTLEVYTDGFQLIGRGGMDDVIKDFGLGRVAAYREARQNVPYSLERIGDFDSDFIIDTYEELLDSEASTAAFRQSPQWQNLFAVKNRQFLYLNRSRYADTMQGLLGSAYLLMSHIAERESVLQAK	PGPT0003765_10038	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
D1-36_02311	990			hypothetical protein	ATGGAAACGGGTTTGGCGCGTGCACAGGTTCAACCCATGGAAGGCGTACCGGGCGACGAACAGACCTTGCCATTTATCTTCCACGCGCCAGGCGCGGGGGCTGCTTGGCAGGACAGCCGGGCGCAGATCCTGCAAGCAGTCGAGGCGCAGTTACCGCGAGCGGGCGGCATCCTGTTTCGTGGCTTTGTGTTCAATGGCGAAGCGGACTTTGAAGCATTCGCCCGCGGTTTCGGTCATGAACTGCTGACCTACGACTACGCCTCAACGCCGCGCACCAAGCTCAACAACCGGGTCTACACGTCGACCGAGTACCCGGCCCACCAAGTGATCCCTCTACACAACGAGCAGTCCTACTCGCTTAACTGGCCAATGAAAATCTGGTTCCACTGCATGCAGGCCTCTGCGGTGGGCGGTGAAACCCCCATTGCCGACAGCCGCAAGGTCTACCAGCAACTCGACCCCGCCATACGTCAGCGTTTCGCCGAGAAGCGCCTGATGTACGTGCGCAACTATGGCAACGGCCTCGACTTGCCCTGGCAACAGGCGTTCAGCACGGAAGACCGTTCACAAGTCGAACATTTCTGCCGCGCCAACCAGATCCAGTTCCAGTGGAAAGAGGACGGCGAGCTGTCCACCCGCCAGATCTGCCAGGCCGTGGCCCAGCACCCGGTGACTGGGGATTGGGTGTGGTTCAACCAGGCGCATCTGTTCCATATCTCCAATCTCGCCGCACCCGTGCGCGAGACGCTGATTTCCATCGTCGGCGAAGAGGGCGTGCCACGTAACGTTTTCTACGGTGATGGCTCGCCTATCGAGCTTGATGCCCTGGAGCATGTCCGTGCCGTATTGCAGCGCTGCCAGGTGAGCTTTCCCTGGCAAGCCGGTGACGTGCTGATGCTCGACAACATGCTGGTGGCCCATGGCCGTTCGACATTCCAGGGCGCGCGAAAGGTCGTGGTCGCCATGGCCGAGCCTGCTTCCGCGAACTGA	METGLARAQVQPMEGVPGDEQTLPFIFHAPGAGAAWQDSRAQILQAVEAQLPRAGGILFRGFVFNGEADFEAFARGFGHELLTYDYASTPRTKLNNRVYTSTEYPAHQVIPLHNEQSYSLNWPMKIWFHCMQASAVGGETPIADSRKVYQQLDPAIRQRFAEKRLMYVRNYGNGLDLPWQQAFSTEDRSQVEHFCRANQIQFQWKEDGELSTRQICQAVAQHPVTGDWVWFNQAHLFHISNLAAPVRETLISIVGEEGVPRNVFYGDGSPIELDALEHVRAVLQRCQVSFPWQAGDVLMLDNMLVAHGRSTFQGARKVVVAMAEPASAN	PGPT0031670_3	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-MALLEOBACTIN_METABOLISM,PGPT0031670-mbaH-NA	NA	NA
D1-36_02312	4815	dltA_3		D-alanine--D-alanyl carrier protein ligase	ATGCTCGATCGCTTGATGCATCGCTGCTGGCTGCGTGGGATTCGCCTATCGAAAGTCGAAGGCCAATTGGTCATCACCCCCGGATCACCTAGGGCGTTGGACGATGAACTGGCAAGCGAACTGACGGCGCACGGCGCCGACGTGCTGCAATGGCTGGCCCGGCACCCCGATTATTTTGAAGCGCGCCCGCTGACGGATAACGAGCAGGCGCTCTGGTTCTTGCAACGACTGGAGCCGGACAGCTGCGCCTATAACATCGCTTACGCAGGGCGCATCAAGGCGCAGTTCGTCACCGACGACTTGCCCCGACGCCTGCAAGGCGCCTGGGAAACGGTGCAGCGACGCTATCCCATGCTGTGCACCGCCTATGCCGAGCGCAATGGCGACCTGTTGCAGTGGAGCGACCGCGAGCGAGTCCGGCCGCTGGAGCGCATCGCGCTGCAGGCGGCCGACAGGCAGGCGTTGCAGCAGCGCGTCACCGAGTGGGCCGATAAGCCTTTCGACTTGGAAGCCGGCGACGTCAGTCGGGTCGTCCTGTTGAGCAACGTTCACGCCGATGATGTCGAGCACACCGTGCTGCTGGTAATTCATCACATCGCCGCTGACCTGGCCACGTTCTACATCGTGCTCAATGAACTGTTCGCGCTGATCAACGAGCAAGCATTGCCCGCTGTGAATCCAGATGCCTATCGCGACTATTGCAGCGAATTGCACATACGCAGCGAAGCTGCCGAACCGATGGAGCTGGCCTGGTGGCAGGCGCAATTGGAAGGCGCCCCGGCACTGGAGCTACCGACCGATTTTCACTACGGCAGCAATCAGGCATTCCAAGGCGGGGAGCTGTCGTTTCGTTTCGACCGGGCCACCACGGCCAGAATTCGTGCCGTGGCCCGTCAATGGGGCGTGACGCCTTATATCTGTTGGTTCTCTTTGTTCCAGCAGTTTCTCGGCGTGCTGTCCGGCCAGGATGACTTTGTGCTGGGCACTCCCAGCGGTTGGCGCCTGCGCCGCGAGCACGTCAATCTGCCGGGCTACCTGGTCAACCCGTTGCCGGTCCGCTGTCGTTTGCAGCGCGAGCTGTCCGGCGGCGATTGGGCCAGGCAGGTGGACGCCAACGTCAAACAAACCTTGCAGCACCGTCATTATCCGTTCTCGCGCCTCGTCAAACAGTTGGATCTGCCCCGGCAGATGGGCAGGGCGCCGCTGTTTCAGCACATGTTCACCCTCAACAAGGAGCGCATCGCGCCGTTCGAGCAGTACGTCGACCGTCTGCTGTCGGAGCAGCGTGGCGCGGCCCATGAGCTGAACATGGTCATGATCGACGAGGAAGACGGCTTCCTGTGCCGGTGGCGTTACAGCAAGGCCTTGTACCGCCACGAAACAGTCCAACGTTTTTGCGAACAGTTCGTTGCGTTGGTCCACGCGGTCATCGAACAGCCGGACGTACCGTTTGCCCAGCTCGACTGGCTGGCACCGGCGCAGCAATCCTTGCTCTGTGGCGAGGACCTGCCGGTCCCGGTCAGCAACGCCTGGCAGGCGTTCGTCCAGCAGTGCGTTCGAAAGCCCGAGTCAATTGCCCTGCAAGACGAACAGGGCACGCTCAGCTATGCCGAATTGGGCCGTGCAGTGGTCGCCCGTGGCGAGCGCTTGCAAGCAGGCGCGAATCTGGAGGGCGCACGCATCGCCTTATGCTTGCCCCGCAGCCGCGAGCTGGTGATGCACATGCTCGCCGCCTGGCAGTGCGGCGCCACCTACCTGGCCCTCGATCCGCAGTGGCCGCAGTCGCGTTTGCAGGACATCTGCCAGGATGGCACGCCCAAGGTCTGGGTCGGCGAGGGCCAGCGTCCCGAGTGGCTGCCTGAAACGGTGCGGTGGCTGTCGTTGCCAACTGAGGCGTTGTCGGGTGAATCGCCGTTGCGCGCGTCCTTGCCCGCTGAAAGGTCGGCCTACGTCGTCTACACCTCCGGCTCCACGGGACGGCCGAAGGGGGTGATGGTCAGCCAGGGCAACCTGATCCATTACGTGGTCGGGTGCCTGGAACGCCTGGATCTGTCCGCCGATGCCAGTCTGGTAAGTCTCGCCAGCTGCGCCACCGACTTGGGGCACACGGCCTTGTTCGGTGCGTTGCTCAGCGGCCGTCGCCTGCGGCTATTGGCTGAGGAACTGTCATTCGACGCCGAGGAGCTGGCGGCCGTGCTTGAGCGCGATCCCGTGGACCTGCTTAAAATTGTGCCTTCACACCTCAACGCCTTGCTGGTCGCCAACGATCCCCAGCGCCTATTGCCGCGCCGATGCCTGGTCACCGGTGGCGAAGCCCTGGGCCATGAGCTGGTTTCGCGCTTGCGGGCATTGATGCCGGACCTGCGTATCGTCAACCACTACGGCCCCAGTGAAACCACCGTCGGGGTGTTGACTCATGAGGTCGATATCGATGGCGCGGCACCGCTGGGACGACCGCTGCCCAATGTCCAGGTCAGCGTGCGTTCGTCCGAGGGCCGTCTGTTGCCGATCGGTGTCAGCGGCGAACTTTGCGTGCAGGGCAAAACGGTTGCGCTGGGTTACCTCAGCGCCAACGATTCAGACCACGCCCGCTTCGGTGCCCATGGCTATCGCACCGGTGACCGGGTGCGGCTCAATCATCGGGGGCAGATGGAGTTTCTCGGTCGGCTCGATGAGCAGGTCAAGATCCGCGGGTATCGGGTCGAGCCGGCAGAGGTTGCGGCACGGCTGCGGGCGATGCCGCAGGTCGGCGACGTACAGGTGCTGAACAACCCATCGCCCCTGACGGGCAACCGCTTGGTGGCGTTCCTGGTCGCACCATTGGCCGCGTTGCCTGATATTCAGGCCGCCCTGCAAGCGCAACTGCCGGACTATATGCAACCGTCCCAGTGGCATTGCCTCGATGGGTTTGCCTTGTTGCCCAACGGAAAAGTCGATCGCAAGGCATTGCAGCATTTGGCCGGGCAAGCGCCGGCCACCGCGCAGACGACGTCTCCCATCGAGGAACCTCTGAATGCGGTTGAAAGCGCGTTGCTGGATATCTGGCGCGGGCTGCTCGGCAACCCCGACCTCGGCCCCGATGACAACTTCTTCGCCTTGGGCGGCGATTCGATCCTCGGCCTGCAGATCATTGCCTTGGCCCGCCAGCAACATATCCTGATGACGCCCAAGCAGTTGTTTGCCGAACAGAGCGTACGCGCCTTGGCCCGAGTGGTGCAGACGCCACAGCGCAACCTCGAACAGCGTCTGCTCAATATCGCTCGTGAGATTCTCAATAACCCCGACCTGAGGGTCGATGACAATTTCTTCAGTGTCGGGGGAGACTCGATCCTGAGCTTGCAGATCATCGCCCGGGCCAAGCAGCACGGGCTGCAGCTCAAGCCCAAGCAGATTTTCGAGTTCCCAACCGTGCGTGGTTGGGCCGAGCAGGTGGTTGATCTTGGCGCGGTGGAGACGGGCGCTACGCCGGCCGTGCTCGAACCTGTCACAGCGTTCGCCCTGACGCCGATCCAGCAATGGTTTTTCGCCCAGGAGCAAACCGAGCCCGAGCATTGGAACCAATCCTTGCTTCTGGCATTGAACGCACCATTGGAACAGGCGCGGTTCATCCAGGCTGTTGGCGCACTGTTACAACGTCATGCCAGCTTGCGCCTGATATTTGAAACGTCGGAGCAGGGTTGGCAACAACGCTACCAGGCGTTTTCCTCGGGCCAGCTCGACGGGTTGTTCCACATCGAAGACCAACCCTTGGACGAAGCGCTGTTGCAGCGCTGGCAACAAGGCTTTGATTTGGGCAAGGCGCCTTTGATCCGCTGGGTGTATTTCTCCCATAGCCGTGAGCTGCTATGCACGGCGCATCACTTGCTGGTCGATGCCGTGTCCTGGCAAGTGCTGCTGGAGGAATTGGAAAGCCTCTACTTGCAACCGAACGCGGCGTTGCCTGCCGTGTCGGCGGGTTTCCACGCATGGAGCGAGGCCTTGCAGCAGCATCGCCGCGAGCCCGCCGTCCTGGCCCAGGTTGGCTACTGGCATGAGCAGGTAGCCGCCGAACATAGCGCTCCTCAACAGCCCAATACATACGGCGAAAGCCGGACACTGGACATGCAACTGTCGGTCGAGCAAACACAATTGCTGTTGGGCGATTGTCACTCGGCCTACAGCACTCAGGTCCAGGATCTGCTGGTGGCCGCGTTGGCCGGTGTCATCGGCCAATGGCAGGGGCGCGAGCGCGTCACCCTGGAGCTGGAAAGCCACGGTCGTAGTGGCTGGGAGCAAGGCCCCGAGCTGTCGCGCTCCATCGGTTGGCACACCAGCCGATATCCGCTGGCCATCGATACTTCCTGGGATTTGGAATCCTCGATCATCGCGGCCAAGGAAGCCCTGCGCCGCGTCCCCGAACAAGGCATCGGCTACGGCCTGCTGCGCCAGGATCCGGCCCACGGCCTGGGTGCCGTCACGCTGCTGACGTTCAACTACCTGGGGCGTGTCGATCAGTGGATCGGCGCATCGAGCCTCTGGCGCCTGGCGCGGCCGATGTGCCCCGGCATGCGCGCCGACAGCACCTGCCGCACCCATTGGCTGGACGTGACGGCGCTCGTCAATGAAGGCCAGCTACACGTCGAATGGCGTTATGCGCCGCAGGTCCACGATCAGGTGTTGGTGAACGAACTGGCGCGGCAATTCCAGCAGCGACTCAGCACCTTGCTGGATCACTGTCAGGCCCCTGCGGCGGGCCGCGCCACGGCTTCGGATTTCGCCGACTCGGGCCTGTCCGACGATGAATTTTTGGGGTTGCTCGAACAACTTGAGCAATGA	MLDRLMHRCWLRGIRLSKVEGQLVITPGSPRALDDELASELTAHGADVLQWLARHPDYFEARPLTDNEQALWFLQRLEPDSCAYNIAYAGRIKAQFVTDDLPRRLQGAWETVQRRYPMLCTAYAERNGDLLQWSDRERVRPLERIALQAADRQALQQRVTEWADKPFDLEAGDVSRVVLLSNVHADDVEHTVLLVIHHIAADLATFYIVLNELFALINEQALPAVNPDAYRDYCSELHIRSEAAEPMELAWWQAQLEGAPALELPTDFHYGSNQAFQGGELSFRFDRATTARIRAVARQWGVTPYICWFSLFQQFLGVLSGQDDFVLGTPSGWRLRREHVNLPGYLVNPLPVRCRLQRELSGGDWARQVDANVKQTLQHRHYPFSRLVKQLDLPRQMGRAPLFQHMFTLNKERIAPFEQYVDRLLSEQRGAAHELNMVMIDEEDGFLCRWRYSKALYRHETVQRFCEQFVALVHAVIEQPDVPFAQLDWLAPAQQSLLCGEDLPVPVSNAWQAFVQQCVRKPESIALQDEQGTLSYAELGRAVVARGERLQAGANLEGARIALCLPRSRELVMHMLAAWQCGATYLALDPQWPQSRLQDICQDGTPKVWVGEGQRPEWLPETVRWLSLPTEALSGESPLRASLPAERSAYVVYTSGSTGRPKGVMVSQGNLIHYVVGCLERLDLSADASLVSLASCATDLGHTALFGALLSGRRLRLLAEELSFDAEELAAVLERDPVDLLKIVPSHLNALLVANDPQRLLPRRCLVTGGEALGHELVSRLRALMPDLRIVNHYGPSETTVGVLTHEVDIDGAAPLGRPLPNVQVSVRSSEGRLLPIGVSGELCVQGKTVALGYLSANDSDHARFGAHGYRTGDRVRLNHRGQMEFLGRLDEQVKIRGYRVEPAEVAARLRAMPQVGDVQVLNNPSPLTGNRLVAFLVAPLAALPDIQAALQAQLPDYMQPSQWHCLDGFALLPNGKVDRKALQHLAGQAPATAQTTSPIEEPLNAVESALLDIWRGLLGNPDLGPDDNFFALGGDSILGLQIIALARQQHILMTPKQLFAEQSVRALARVVQTPQRNLEQRLLNIAREILNNPDLRVDDNFFSVGGDSILSLQIIARAKQHGLQLKPKQIFEFPTVRGWAEQVVDLGAVETGATPAVLEPVTAFALTPIQQWFFAQEQTEPEHWNQSLLLALNAPLEQARFIQAVGALLQRHASLRLIFETSEQGWQQRYQAFSSGQLDGLFHIEDQPLDEALLQRWQQGFDLGKAPLIRWVYFSHSRELLCTAHHLLVDAVSWQVLLEELESLYLQPNAALPAVSAGFHAWSEALQQHRREPAVLAQVGYWHEQVAAEHSAPQQPNTYGESRTLDMQLSVEQTQLLLGDCHSAYSTQVQDLLVAALAGVIGQWQGRERVTLELESHGRSGWEQGPELSRSIGWHTSRYPLAIDTSWDLESSIIAAKEALRRVPEQGIGYGLLRQDPAHGLGAVTLLTFNYLGRVDQWIGASSLWRLARPMCPGMRADSTCRTHWLDVTALVNEGQLHVEWRYAPQVHDQVLVNELARQFQQRLSTLLDHCQAPAAGRATASDFADSGLSDDEFLGLLEQLEQ				NA	NA	NA	NA	NA
D1-36_02313	9465	tycC		Tyrocidine synthase 3	ATGAACGACAAGGTCAAAGCTGTTTCGCGCAATATCGAAGCTATTTACCCGCTGGCTCCCATGCAGCAAGGACTGCTGTTTCACAGCCTGATGCACCCTGGCAAGGGCATGTATCTGCTCCAATATCGCCATGTCATGGTCATGCCGGACCTGGACCTCGCGGCCTTCCGCCAGGCCTGGGCGCAGGTGGTGGAGCGCCATGAACTGCTGCGCACATCGTTCGTCTGGAAGCAGCAGAAACGCCCGATGCAGGTGGTGCACAAGCAGGTCGAATTACCGATCACCTATGAAGATTGGTCGCATCTGAGCGAAGGCGAGCAGCAGGACCGCCTCGAGCAATTGCTCAGCGCGGAGCGTGCCGAAGGCCTGGACTTCACCAAGGCGCCACTGATGCGGGTCAGGCTGTACAAACTGGCGCCCGACACCTACCAGTTCGTGCGCAGCTACCACCACATCCTCATGGATGCCTGGTGCTTCTCGATCATCATGATGGACTTCCTCAACGGCTACCGCGCCGCCCGGGAAGGGCGCCGACTGAGCCTGCCGACACCGCGCCCGTATCGCGACTTTATCCGGTGGCTGGAAACCCAGAAACCGGAAGATCACCAAGCCTTCTGGCAACAGCGACTGGCGGGCTTCGATACGCCCAACGAGTTTGGCTTTGGTCATGTCGGTCGCATCCAAGGTGCTGCCGAACCGGTCGAAGACTGTGTCGAACTCCTGGAGCCCGGGCAGACCCAGGCGTTGCAGAACGTCGCGGCGCAGCACGGCCTGACCCTCAACACCCTGGTGCAAGGCGCCTGGGCGCTATTGCTCGGGCGCTACAGTGGTGATCGCGACTTGGTAATGGGCATCACCGTCGCTGGCCGCCCGGTGCACCTGCAAGGCATGGAAAGCATCGTCGGCCTGTTCATCAATAGCTTGCCGCTGCGCTGGAGCTGTGGTCCGGAGGATAAGCTCGGCCCGTGGCTGAAAGCCTTGCAGACCGAAAACCTGAGCCTGCGCGAACACGAAAGTGTTTCCCTGGCCGACATCCAGCGCTGGAGCGACGTTCAGCGACAGGACTTGTTCCAGAGCCTGTTCGTGTTCGAGAACGCGCCCATTGCCGCCGACTTGCGCCAGGGCCAGTTGGATTACCTGATCAGCGACATGGCCAACCGCACCCACACCAACTACCCGGTCACTGTGGTAATCGTGCCGGGCGAGCGCCTGCACCTGCAGTTGACCTATCAAACCGACTGGTTCCTGCGCGAAGAAATCGAGCAGATGCTGCGGCATTTCCGCACCTTGCTGTTGAACATGGGCGATGCCCTCGGCGCAGACGCCGGCACGCCCTTGCATCATTTGGCGATGCTGGATGAAAGCGAAGTCACTCACCAGCACGAGGTTTGGGCCGGCGGTGGCCTGGCGGCGGACGAGCAACTGCTGCAACCCTTATACATTGAGCGATTCCAGCAACAGGTGCGCCAGACGCCAGAGCGTGTCGCCGTTGTCCATGGCGAGCAAAGCCTGACGTTCGATCAGCTGAACCGCGCCGCTAACCGACTGGCTCGGCACTTGCGCGCCCAGGGTGTGGGCAGCGACGACCTGATCGCGGTGTTCGACGAGCGGGGCCTGGATCTGGTGGTGATGATTGTCGCCACGCTGAAGGCCGGTGCCGGTTGGCTGCCGCTCGATCCGCGCAACCCGGCGCAGCGCCTGGCCCAAGTGCTGCGCCAGAGCCGCACGCCGTTGCTGATCCATAGCGCAGGGCAGGGCGAGCTGGCGATGCAGGCCCTCGACCTGCTCATGCACCGACCCAAGGCCGTTCGCTACGACCCTTCGGTGCTGGGCAGCTATAGCGACGATAACCTCGACATCACGGTGCACGGCACATCATTGGCATACTGCATCTTCACTTCTGGCTCCACTGGCACGCCGAAGGGCGCGATGGTGGCGCAGGCGGGCATGCTCAATAACATTCTCGGTAAATTGCCGGGGCTGGGGCTCGATGCGAACGATGTGATTGCCCAGACCGCGCCGCAGTGCTTTGACATCTCAGTCTGGCAGACCCTCGCCGGCCTGGTGCTCGGAGCCCGCACCGTGATCCTCGGCGACTGCGTGGTGCAGGACCCCGAGGCATTGGCCTCGGCCATCGGGCGGCACGGCATCAGCATCCTCGAAGCGGTGCCGTCCTTGATGCAAAGCCTGCTGGACGCTGGATTGCAAACGTCCCCCCTGCGCTGGGTGCTTGCCACGGGCGAGGCCTTGCCGCCGGCCTTGGCGCGTCGCTGGTTCGAGCGCTACCCGGCGATCCCGCTGATGAATGCCTACGGGCCGGCTGAGTGCTCCGATGACGTGGCCTTTCATCCGCTGCTCGAGCGCCTGCCGGAACAGCGCATCAACGTACCGATCGGCCGCGCCACGCTGAACAATCGCTTGTACCTGCTCAACGCCGATCTGCAGCCGATACCGGTCGGCGCGGTCGGGGAGATCTTCGTTGCCGGTGTCGGCGTTGGGCGCGGTTACATGGCCGACCCTGCGCGTACGGCGGCGGTGTTCCTGCCGGACCCGATCGCCAACGACGGTTCGCGCCTGTACCGCACCGGTGACCTGGCGCGCTTCCTGCCCAACGGCGACCTGGAATACGTCGGACGCACCGACCATCAAGTCAAGATTCGCGGCCACCGCATCGAGCTGGACGAGATCGAGGCATGCCTGACCCATTACCCCGGCGTGCGCGAAGCCGTGGTCGTGGCCCGTGACGACCAGCAACGCGCCAAGGTACTGGTGGCTTACGTCGTGGCCGATGACGCCTGCAGCATCGAGATGTTGCGCGAGCATGTACTGGGCAATCTCCCGGCCTACATGATCCCGAGCGCATTCGTATTCCTGGAGCGTTTCCCGCTCAACGGCAACGGCAAGATCGACCGCAAGTCGTTGCCCTCCCCGGATTTTGCCGCGCAAAGCCAGGCCCGCTATGTGGCGCCGAGCAGCGAGTTGCAAGGCCAGTTGGTGCAAGCCTGGCAAAGCGTGCTCGGCCTGGACCAGGTGGGTGTCGAGGACAACTTCTTCGAGCTGGGCGGCCATTCGCTGCTGGCGACCCAGTTGATCGGCCTGATCGGTAAGCTCAGCGGCAAGGATTTGCCGTTGCGCGTGGTCTTCGAGCGTCCGACCATTACCGCCATGGCGGATTGGCTGGAGAACCAGGCCGGCGCGGTAAAGCCGTCGCCGACCTTGCTGCCGCGCCCGGAAACGCTGCCGCTCTCGTTTGCCCAGCAACGGTTGTGGTTCCTGCAACAACTCGACCCCGACAGCCCGGCGTACAACCTGGCCGGCGCCGTGCGCCTGACTGGCGAGCTGTACGTCGCTGACCTGCACGCGGCGTTGCAAGCGGTCCTCGACCAGCACGAGGTGCTGCGCACCGGGTTCATCGGCGCGGCCCAAGGGCCGAGCCAGGTTGTCCTGGCGCACAGCGAAATTGAGTTGCCGGTCATCGATGTGGCGAGCGAAGACGCGCTGCACGAACGGCTACGCCTGGACGCCATGACACCGTTCGCCCTCGACGCGGCGCCGCTGTTGCGCGCCAGGCTGTATCGCCTGGCGCCGGAGGCGTTTGTCCTGTCGTTGAATTGCCACCACATCGTTGCCGATGGCTGGTCCTTGCAACTGATCATCGACGGCCTCTGCGAGCAGTACCGCAATCGTCGCAAGGGCGTCGCGACCCCACGGCCCGCCCCGGCAATGCAATACGCCGACTACGCCGTGTGGCAACGCCAGTGGATGGGCAGCAAGGCGTGCGAGCAAGAGCTGGCCTACTGGCGCGAGCAACTGGCCGGCGAGCTGCCGGTGCTTGACCTGGCGGCCGATTTCCCTCGTCCCGCCCAGGCGAGCCAGGCCGGTGGACGTGTCGAGCGTCGCTTGCCCGACGACCTGGCGGCGCGGCTCAGGACCTTCAGCGCTCGCCATGGCTGGAGCAACTTCATCCCGATGCTGACCGCTTTCCAACTGCTGTTGCGCAGTCGCAGCGGAGAAAACGACATCCTGGTCGGTGTACCGGCGGCCAACCGGCACCATGCGGCGTTGCAGCCGCTGGTGGGTTGCTTCGTCAACACATTGGTGTACCGCAAGAAAATCTCCGGCGAGCGCAGCCCGCTGCAACTGATGAGCGAATTGCAGGCATTGTCGGTTTCGGTCCAGTCCCACCAGGACTTGCCGTTCGATTACTTGATCGAACAGTTGGGAGTGGTCCGGCAGGTGAGCTACAACCCGCTGTTCCAGGTCATGTTCAATTACTTCCCGGGCAACGCTCTGGAGCGTTTCGAACTCACTGACGTCATCGCCGAGCCGCTGGACAACCGCCCGGAGAGCACCTTGTGCGATCTGCACCTGGACGTGCGCGACAGCGAACACGGGATTAACCTGAGTTTGCAATACAGCAGCGACCTGTTCCGCGAGCAGACGGTGCGAGGCATGGCCGAGCAGTACCTGGCCTTGCTCGATGCGGTGATCCAACAGGCCGGGCGGCCGCTGGGTGAGTTGACATGGCAGCCCGCTGAACGGGCCCTGGCGCGGATCGATGGGCGCGCCCTGGCCGGTCAGCAAGACATCCTTGACGCCTTCGCGCTTCAGGTTGCGCGCCAGCCCGAGGCGATTGCCGTCGTGGCAGGCAATCAACAAATGACCTACGCCGAATTGGACCAAGCCGCCGAGGCACTCGCAACGAGGTTGCAGGTCCAGGGTGTCGGTGTCGAAGACCGCGTAGCGTTGAGCCTGCCGCGCGACGCTCGCCTGCCCATGGCCATGCTGGCGGTCCTCAAGGCCGGGGCGGCGTATGTGCCGTTGGCCGAGGACACGCCGCCGGAGCGCGGCCGCTACATTCTCCAGGCGGCGCAGCCCACGTTGTGCCTGGGCACCGCCGCGAGCCTCGGCGTGTTGGCGCAGTGGAACCCCGGCCTGCCGCTGCTGGACATCGACGCCAGTGGGGCGACCGGTACGCGCAAGCCTGTGGACTGCAACCCCGGTCAACTCGCCTACGTGCTGTACACCTCGGGTTCCACCGGCCAGCCCAAAGGGGTGGCGATCAGCCGTGGCAACCTGATGAACCTGATGCTGGCCGTCGAGCAGGTCCTGCCAATGACGGCCCGGGACCGGGTCCTGGCCTTGACCACCGCGACCTTTGACATTGCCATTGTCGAGTTGCTCCTGCCCTTGGCCCATGGCGCCAGCATCCTGCTGGCCGATCGAGAGCAGGCGCGGGACCCGCAAGCGATCGATCAGTTGCTGATAGGCGGACGACCCACCGTCATGCAGGCCACGCCGGCCACCTGGCGAATGCTCGTGGCGCATACCTCCCGCAGCTGGCGGGGCGTGCGTGCCATCTCCGGTGGCGAAGCCTTGCCGTGCGCGTTGGCCGAAGCCATCGAGGGCAGGGGTGCCAAGGTCATCAACGGCTACGGGCCGACTGAAGCGACCGTCTACAGCACCTTCGAAGTGCGCGGTGGCGAAGAAAGCGCGGTCGAGGTGCCGATCGGGCAACCGGTGGCGAACACCGCCGCATACGTGCTCGACGCTGACTTGCAACCGGTGGCTGCCGGCGTGCCAGGTGAGCTGTACCTCGCGGGGGCCAACTTGGGTCGCGGCTATTTCGCAGCCGCGCGCCTGACCGCCGCCGCGTTCCTGCCGGACCCTTTCGTGGCTGGCGCGCGCATGTACCGCACCGGCGACCGGGTCCGACGCAATGGCAACGGCAGCCTGGATTACCTCGGGCGCCTGGATTTCCAGGTCAAGCTGCGGGGTTTCCGTATCGAACTGGGGGAAATCGAAGCGCTGTTGTCCCGCGTCCCCGGGGTCCGCGAGGCGGCCGTGGTGCTGCTGGGCAGCGGTGACGCGGCGCGGCTGGTGGGCTACTACGCTGGCGATGCGCTGGACGAAACGACGCTGCGCGCCAGCCTCGGCGCCCAATTGCCGGACTACATGTTGCCCGGCCAGTTCGTTCGCCTCGACACCTTGCCGTTGAGCCCCAGCGGCAAAGTCGACCGCAAGGCCTTGCCGGCGCCGCAACAGCGTGACGGCCAGCAGGGCGCGCTGTCGAGCTCGTGGGAACAAACCCTGGCCGGCCTCTGGGAAGAGCTGCTGGAATGCACCGACATTGGCGCCGATGATAACTTCTTTGCCCTGGGCGGACACTCGCTGTTGGCGGCTCGGCTGGTGGCGCGAATCGCCGAACAGCATGGCCGCCGCCTGCCATTGCGCAGCGTGTTCGAACAACCGGTGCTACGGGACTTGGCCGCCATTTTGGCCCAGGCAAGCACCGAGGCTGATCGCATCCTGCGCCCGTTCGCAGAACCCTTGGCGCCGTTGCATTTCACTCAGCAACGCTTGTGGTTCCTTGACCGTTTACAGGGCGATACCCAGGCCTACCATCTGTCCTTGGCGCTGCGCCTGGATGGCATCCTACAACCCGATTTGCTGGAGCAGGCGCTGGCGCAACTGGAGGCTCGCCAACACAGTCTGCGGACGGTGTTCAGCGACACCGCCGACGGCGCACGCCAGCATATCGAAGACCTTGTGGCGGTGCCGCTGAGCTTCGAACCGCTGGAAGTCGATGAGCATTCGAGCGGCTTCGCCCAGAAGCTCAGCCAGGAGGCGCAGCATTCATTCGATCTCACAGCGCCGCCGCTGTGGCGGGTGCGTGTGTACCAGGGCCAGGATCGCAGCGTTCTGCAGGTGACCTTGCATCACATCATCGCTGACGCGCGTTCGCTGGAGATTCTCTTCAATGAACTGCAAGTGATCTACCAGGCTTTGCTGGAAAGGCGTGACGCTTGTCTGCCAGCGTTGCCGTTGCAGTTTTCCGACATCGCGGCCAGTTGGCAGAGCCCGGCGGGGCAGGCGCAGATCGAGTCGCAACTTGACTATTGGCGCCGTACCCTGGCGGGCGAGCCGCCGGTGCTGAACCTGCCGACCGACATGCCTCGGCCCGCCGAGCAGGGCTACAAGGGCCAGCGTCTGCGCTTCAACCTGTCGGCTAGGCTGGTCAAGCACCTGCGCGAGACGGCGCAACGCCATGGCCTGACCGCTTTTGCACCGTTGCTGGCCGCCTGGAAAACCTTGCTGGCCAGGCACTCGGGCCAACGTGAAATCTGGATTGGCTTGCCGGTCGCCCATCGCCATCAGGCTCATACCGACAACCTGATCGGCTATTTCGCCACCACCCAGGTCCTGCGCAGCCATCTCGATCCGCAACAATCGGTCGAACAGTTCTGGCAGCAGTTGCAAACCACGCACCTGGCGGCGCAACAGCACGCCGACGTGCCTTTCGAGCGCCTGGTGGAAGCCCTGCAAGTACGCCGCGATCTCAGCCACACGCCGCTGTTCCAGGCGTTGTTCAACCTGATCCAACGCGATCCCACCGCAACGACCGAGCAGCACTTCGCCGGCTTGCCCGTACAGCGACTCAACGTTGAAAGCGACAGTGCCCTGGTGGACATCGGTCTGCACATCGAGCAGCAGGGCGAGGAGTGGCAATGCGTGCTGGAATACAACACCGACCTGTTCCTGGCGCACACCGCGCAACGTTATGCCGATGAGTTCCGCTACCTGCTCGAAGGCATGTTGGAACAACCCGAAGTGCGCCTCTGGGACATCGACCTGGCCAATGCCGACCACGCCTTGGCCCAGCGTCCTTGGAACCGTCCGGCGCAATCCTCGACGCCAGTGGTGGACGTCATCGCCCGTTTCGAACAGCAGGTCGTCCTGACACCTGAAGCGCTGGCGGTGGATTGCCAGGACCAGCAACTGACCTATGCGCAACTCAACGCCATCAGCAATCGCCTGGCCCAGTGGCTGCGCGCGCAAGGTGTCGGCACGGATGACCTGGTTGCGGTCTGTCTGACTCGCGGTCCATGGCTGCTGCCAACCCTGTTGGCGGCCCACAAGGCCGGTGCGGCGTACCTGCCACTGGATCCGCAGCAGCCGGGCGAGCGCCTGGGCTTAATCATCCGGCATGCGCGTGCGGCCATGGTGCTTACTGAAAGCCTTTGCGCCGGGGCCTTGGGCGGCGTCAACCACTTCCTGCTCGACGGGTTGGCGCTGGACAATTGCAGCGACGCCAACCTTGCATTGCCGATCGATCCACAGCAGCGCGCCTACGTGATCTATACCTCGGGCTCCACCGGCACACCGAAAGGCGTGCAGGTCAGCCGCGGTAACCTGAGCAATCTGCTGGCAGGCCTCGATCGCTTGCTGCCGCTTGGCGCCGAGGATGTTTGGCTCGCCAGCACCACGTACGCCTTCGATATGTGCAAGCCGGAGCTGTTCCTGCCGCTGGTCAACGGCGCGGCCATCCTGCTGGCGCGCCGCGAGCAGGTGGTCGACGGGCATCAACTGTTCGCGCTGCTGCGCCGGGCGACGGTATTCCAGGCTACCCCCGCTGGATGGCAGATCCTGCTGGAAACCGGCCAGGCCGATTGGCCGCCGCTGCGTGGCCTGATCGGTGGCGAGGCGGTGCCCGGTGAGCTGGTGAACGAACTGCGCAGTCGTGGCGTGGCGCTGATCAACGCCTATGGCCCGACGGAAACCACCGTCTGGTCGACCACCCAGGCGTTGCAGGAGGTGCCGTCCGGCGTCGCCGACATCGGCGCGCCGTTGCTCAACACGCTCTGCTACGTGCTCGACGACATGCTCCGCCCGGTGCCGCTCGGCGCGACGGGTGAGCTGTATATCGCCGGCTCCGGCGTCACGCGAGGGTATCAGCATGCGCCGGCCACCACGGCGGCGGCGTATTTGCCAGATCCCTATGCAGGCGAACCCGGTAGCCGCATGTACCGCACCGGCGACTTGGTACGCCGCCGCAACGACGGGCGGCTGGCCTATGTAGGTCGCGGCGATTTTCAGGTCAAGGTGCGCGGTTTCCGTATCGAGCCCGGTGAAATCGAATCGCTGCTGCGCCGTTACCCAGGCGTGGAAGAAGCGGTGGTGATGATCGATCCGTGCAGCCAGAGCCTGTTTGCCTGGCTGCAGACACCGAGCCCGGTCGATCAGGCGGCGTTGCGTCGGTATCTGGAAGGCGTGCTCCCGGGCTACATGATCCCGGCTGGCTTCATCGAGCAGCCACGTCTGGCCCTCAACGCCAATGGAAAGATCGACCGCAAGGCCTTGCCGGCACCACAGCCTGTGGCGATCCAGGGAGTGGCGCCGCGCAGCGAGCTGGAGCGGCAGTTGGCGGTCATCTGGCAGGACCTGCTGGCGTTGCCGCAGGTTGGCGTGTTCAGCAGCTTCTTCGAGCTGGGCGGACATTCGTTGTTGGCCATGCGTTTGATGACTCAGGTCGAGAGCCGTTTCGGCGTCAAGCTCGAACTGCGCAGCCTGTTCCAGAACCCGACGATCGCCGCGCTCGCCGAACAGATAGAAAAACCCCAGGGGCCGTCGACCGACGAAGCCCTGGACGAAATGCAGCGCCTGTTGGCCGAGATGGAAATGTAA	MNDKVKAVSRNIEAIYPLAPMQQGLLFHSLMHPGKGMYLLQYRHVMVMPDLDLAAFRQAWAQVVERHELLRTSFVWKQQKRPMQVVHKQVELPITYEDWSHLSEGEQQDRLEQLLSAERAEGLDFTKAPLMRVRLYKLAPDTYQFVRSYHHILMDAWCFSIIMMDFLNGYRAAREGRRLSLPTPRPYRDFIRWLETQKPEDHQAFWQQRLAGFDTPNEFGFGHVGRIQGAAEPVEDCVELLEPGQTQALQNVAAQHGLTLNTLVQGAWALLLGRYSGDRDLVMGITVAGRPVHLQGMESIVGLFINSLPLRWSCGPEDKLGPWLKALQTENLSLREHESVSLADIQRWSDVQRQDLFQSLFVFENAPIAADLRQGQLDYLISDMANRTHTNYPVTVVIVPGERLHLQLTYQTDWFLREEIEQMLRHFRTLLLNMGDALGADAGTPLHHLAMLDESEVTHQHEVWAGGGLAADEQLLQPLYIERFQQQVRQTPERVAVVHGEQSLTFDQLNRAANRLARHLRAQGVGSDDLIAVFDERGLDLVVMIVATLKAGAGWLPLDPRNPAQRLAQVLRQSRTPLLIHSAGQGELAMQALDLLMHRPKAVRYDPSVLGSYSDDNLDITVHGTSLAYCIFTSGSTGTPKGAMVAQAGMLNNILGKLPGLGLDANDVIAQTAPQCFDISVWQTLAGLVLGARTVILGDCVVQDPEALASAIGRHGISILEAVPSLMQSLLDAGLQTSPLRWVLATGEALPPALARRWFERYPAIPLMNAYGPAECSDDVAFHPLLERLPEQRINVPIGRATLNNRLYLLNADLQPIPVGAVGEIFVAGVGVGRGYMADPARTAAVFLPDPIANDGSRLYRTGDLARFLPNGDLEYVGRTDHQVKIRGHRIELDEIEACLTHYPGVREAVVVARDDQQRAKVLVAYVVADDACSIEMLREHVLGNLPAYMIPSAFVFLERFPLNGNGKIDRKSLPSPDFAAQSQARYVAPSSELQGQLVQAWQSVLGLDQVGVEDNFFELGGHSLLATQLIGLIGKLSGKDLPLRVVFERPTITAMADWLENQAGAVKPSPTLLPRPETLPLSFAQQRLWFLQQLDPDSPAYNLAGAVRLTGELYVADLHAALQAVLDQHEVLRTGFIGAAQGPSQVVLAHSEIELPVIDVASEDALHERLRLDAMTPFALDAAPLLRARLYRLAPEAFVLSLNCHHIVADGWSLQLIIDGLCEQYRNRRKGVATPRPAPAMQYADYAVWQRQWMGSKACEQELAYWREQLAGELPVLDLAADFPRPAQASQAGGRVERRLPDDLAARLRTFSARHGWSNFIPMLTAFQLLLRSRSGENDILVGVPAANRHHAALQPLVGCFVNTLVYRKKISGERSPLQLMSELQALSVSVQSHQDLPFDYLIEQLGVVRQVSYNPLFQVMFNYFPGNALERFELTDVIAEPLDNRPESTLCDLHLDVRDSEHGINLSLQYSSDLFREQTVRGMAEQYLALLDAVIQQAGRPLGELTWQPAERALARIDGRALAGQQDILDAFALQVARQPEAIAVVAGNQQMTYAELDQAAEALATRLQVQGVGVEDRVALSLPRDARLPMAMLAVLKAGAAYVPLAEDTPPERGRYILQAAQPTLCLGTAASLGVLAQWNPGLPLLDIDASGATGTRKPVDCNPGQLAYVLYTSGSTGQPKGVAISRGNLMNLMLAVEQVLPMTARDRVLALTTATFDIAIVELLLPLAHGASILLADREQARDPQAIDQLLIGGRPTVMQATPATWRMLVAHTSRSWRGVRAISGGEALPCALAEAIEGRGAKVINGYGPTEATVYSTFEVRGGEESAVEVPIGQPVANTAAYVLDADLQPVAAGVPGELYLAGANLGRGYFAAARLTAAAFLPDPFVAGARMYRTGDRVRRNGNGSLDYLGRLDFQVKLRGFRIELGEIEALLSRVPGVREAAVVLLGSGDAARLVGYYAGDALDETTLRASLGAQLPDYMLPGQFVRLDTLPLSPSGKVDRKALPAPQQRDGQQGALSSSWEQTLAGLWEELLECTDIGADDNFFALGGHSLLAARLVARIAEQHGRRLPLRSVFEQPVLRDLAAILAQASTEADRILRPFAEPLAPLHFTQQRLWFLDRLQGDTQAYHLSLALRLDGILQPDLLEQALAQLEARQHSLRTVFSDTADGARQHIEDLVAVPLSFEPLEVDEHSSGFAQKLSQEAQHSFDLTAPPLWRVRVYQGQDRSVLQVTLHHIIADARSLEILFNELQVIYQALLERRDACLPALPLQFSDIAASWQSPAGQAQIESQLDYWRRTLAGEPPVLNLPTDMPRPAEQGYKGQRLRFNLSARLVKHLRETAQRHGLTAFAPLLAAWKTLLARHSGQREIWIGLPVAHRHQAHTDNLIGYFATTQVLRSHLDPQQSVEQFWQQLQTTHLAAQQHADVPFERLVEALQVRRDLSHTPLFQALFNLIQRDPTATTEQHFAGLPVQRLNVESDSALVDIGLHIEQQGEEWQCVLEYNTDLFLAHTAQRYADEFRYLLEGMLEQPEVRLWDIDLANADHALAQRPWNRPAQSSTPVVDVIARFEQQVVLTPEALAVDCQDQQLTYAQLNAISNRLAQWLRAQGVGTDDLVAVCLTRGPWLLPTLLAAHKAGAAYLPLDPQQPGERLGLIIRHARAAMVLTESLCAGALGGVNHFLLDGLALDNCSDANLALPIDPQQRAYVIYTSGSTGTPKGVQVSRGNLSNLLAGLDRLLPLGAEDVWLASTTYAFDMCKPELFLPLVNGAAILLARREQVVDGHQLFALLRRATVFQATPAGWQILLETGQADWPPLRGLIGGEAVPGELVNELRSRGVALINAYGPTETTVWSTTQALQEVPSGVADIGAPLLNTLCYVLDDMLRPVPLGATGELYIAGSGVTRGYQHAPATTAAAYLPDPYAGEPGSRMYRTGDLVRRRNDGRLAYVGRGDFQVKVRGFRIEPGEIESLLRRYPGVEEAVVMIDPCSQSLFAWLQTPSPVDQAALRRYLEGVLPGYMIPAGFIEQPRLALNANGKIDRKALPAPQPVAIQGVAPRSELERQLAVIWQDLLALPQVGVFSSFFELGGHSLLAMRLMTQVESRFGVKLELRSLFQNPTIAALAEQIEKPQGPSTDEALDEMQRLLAEMEM				NA	NA	NA	NA	NA
D1-36_02314	9018	ppsD	COG0318	Plipastatin synthase subunit D	ATGACGCAACAAGCTTTCCTGGAGATTGCGCAGCGGCTGGCATCCTTGCCCGCGGAGAAGAAAAAGGTCTTTCGCCAACGCCTGTCCGAGAAGGGCATCGACAGCTGGCGCCTGCCGATCGTCCCCGCTCTGCTCGGCGAAGGAGAACACAGGCCGCTGGCGCAGGCGCAGCGGCGCTTCCTGTCGGCTGAAGCCCTGAGCAGCCGGGCCCTTTATAACCTGTGCTCGGTGCTGCGCTTCGATGGGCGCCTGGACGGCGCGCGTTTGCGGCAGGCGATGCAACAGGTGGTCGATCGCCATCAGATCCTGCGCACACGCTACCGCCCTGATGCCAGCGGACAGCTGCAGCCCCATTGCGCGCCACAACAGGTGCAGCTGCCGGGCGTCGAGCGCTTGACCCTCGCCGCATCCGAGCACGAGCAATGGTGTGCCGATGAATATGCCCGCCAACTCGCCGAGCCCTTCGACCTGGCGCAGTCGATGCCTTGGCGCTGGAAGGCATTCAGCGATGCCCAGGAGCATTGCACCTGGCTTTTTTTCACCATTCACCACGTCGCCTATGACGCCTGGTCGGCCCAACAACTGACCCTGGAACTGGCCGAGGCTTACCGGGCACTCGCTTCGAACGAGCCTGCCGCGTTAGCTGAACTGAGTATCCAGTACGCCGATTACGCCGCATGGGAACGTGAGTGGCTGGACAGCGATAGCTGCCGGCAGCATATCGATTTCTGGCGCGACCAACTGGCCGATGCACCGGCGCCGATGGCGTTGCCACTGGACCGTCCGCGCCCCACGCCCACACAACGTCGCCACAGTGGCGCGGTCCTGACCCGGGAGCTCCCGCCGCAACTGACCACGGCAGTCGAAACCGCGATCCGCAATCATGGCGTGACGTTGTATATTTATGGCCTGACGGCATTCACCTGCCTGCTGTCGCGCTATAGCGGCGAGACTGATCTGTGCCTGGGCACCTCGATTGCCCAACGTGACCGTCCGGAACTGGCATCGTTGATCGGGCCGTTACTCAATACCCTGGTGATTCGCCAGCGCCTTCAAGGCAATCCGGACTTCAGCAGCGCGTTGCAGCGCACCCGCGACACCGTTGCGGCGGCGTTCGACCATCAACAGTTGCCCTTCGAAAACGTCCTCGAAAACCTTGAACGTCCACGTTCGAGCCCGTTGTTCCAGGTCATGTTCGTCCAGGTCGATCTGCCCGAAAGCCGCACCCTGGCCTTGCCCGGCGTGGCGGTGGAGGTACTCGACCCGCCGCAACGCCACGCGCGTTTCGACTTGACGTTGCGCATGGTCCGTACCGCCGACGCGCGGCTGCGTTGCGAACTGGAATACAGCGACGAATTGTTCGACACGGCCACGGTCGAGCAAATGCTCGACGACTTGCTGGCGATCTTCCACGAGGTCTCGGCTCATCCGCAGCGGCGGTTGTCGGACCTGCAACTGGTTTCCACGCCGAGTGAAGTGCGCGGCCCGGTCCTGGGCGCGATCACGTTGCCGTTGGACCAGCAGGTGCTGCATTGGGCCACGCACACGCCGAATGCCGTGGCGTTGTGCAGTGTGGGGCAGAGCATCGATTACGCCACGCTCGGCGCGGCCAGTCGCTCGATGGCCGCACGGCTGGCCGCGCAGGGCGTTGGGCCGGGTCAGGTGGTCGCGCTGTGCATGCCGCGCTGTGCCGAACAAGTGCTGGCGACCCTGGCGTGCTGGCAGCGTGGCGCCACCTGTCTGTTTCTCGACCCGGCGCAACCAGCCCGGCGACTCGCACAACTGTTGCACGACAGCGGCGCGAGCCTGTGGCTGACATTGGCGCAAGCACCCGAGACCGGCGTGGGCATCCCATGCCTGGTGCTGAGCGCCGACGATTGGTCTCTCAACGCGAACATCCACCAGTACGAAAGCCTCAGCCAGCCTCAGTTGCCTGCCTACCTGATCTACACGTCGGGCTCGACCGGCCAGCCGAAAGGCGTTCAGGTCACGCATGCCAACCTCGCCCATTACGCCAATGCCGTCGGTGAACGCTTGCAAGCCAAATCGGGTAGCCGCTGGGCGACCTTGGCAACGGTCGCCGCCGACCTCGGCTTGACCTCTGTTTTCGCCGCGCTCAACGCAGGCGACACGCTGGTATTGCCACCGGCGTCGTTGGCCTTCGACCCGCCCGGCTGGGCCGATTTTCTCGACCAATATCCGGCGGATTGCCTCAAGATCGCCCCTTCGCACCTGCGCGGTTTGCTGGCGTTGGACGACGCCCGTCGCGTGTTGCCCAAGGTGCTGTTGATTCTTGGTGGCGAGGGGTTCGACCAGGCGTTATTCGCCAAGGTGCGTGAACTGGCGCCGCAACTCCGTATCTTCAATCACTATGGCCCGTCGGAAACGACTGTCGGCGTGGTCTGCGGTGAAATTCTGGACTCCGAGGCGTTCGTAGCGGGTCAGTATCTGCCGCTGGGCCAGCCGCTGTCCGGCTGTGAGTTGCGCATCGTCGATGGTCAAAATCGGTGCGTACCGCTGGGTGTCGCCGGTGAGCTGCTGATTGGTGGTCCCCAGGTTGCCCAAGGCTATCTCGGCCAGCCTGAGTTGACAGCACGTGCGTTCGGCGTCACGGCCCAGGGCCAACGCTTTTATCGCAGCGGCGACCGGGTTCGCCTGGATCGCGACGGGCGCCTGGTGTTTCTCGGACGTCAGGACGATCAAGCTAAGATCCGCGGGTTCCGCGTCGAACCGGGCGAAGTCAGCGCCTGGCTCAACGCCCAGCCTCAGGTTCGCGAAGGCGCCGTGCTGGCTTGTGAAGTAAAAGGGCGGACGCAACTGGTGGCGTATGTCAGCCCCTCGATGACAACCCAAGCGCTGGCGGCGCTGCAAGCCGAGGCCAAGCGGCAACTTCCGGAACACATGGTGCCGGCCCATTGGTTGGCGCTGGACGCTTTGCCGCTGACTGCCAATGGCAAGCTGGACCGACGTGCATTGCCTGAGCCGACGATCGATGAGCCGGCCGCCGAAGCCACCGAGCAGCCCAGCGGAGCGACCGAACAACGATTGGCGCAACTGTGGTGCCAGATCCTCGGCTGCGCGCCAGTTGGCCGCGCGGACGATTTTTTCGCTCTGGGCGGGGATTCGATTCTCAGCCTGCAATTGATCGGCCTGGCATCCCGGGAAGGGCTCAAGCTGGAACCGCGGGACGTGCTGCAGCATCCGACCCTGGCGGCCATGGCCCTGTGCATCGACTGCCGCGCCGAGCCGGCATTGCTTGCGGTTCTGACGGCTTTTCGCGAGTTGCTCGGACAACCTGGCCTGGGGCCGGACGCCGATTTCTTTGCCATGGGCGGCGACTCGATCCTCAGCTTGCAGTTGATCGCGCGCTTGCGTCAGGCCGACTTGCGCCTGATGCCCCGGCAATTGCTGGAAAACCCGACCCCTCGGCAACTGGCCAAGGTGCTCGCACCGATCGTCGCACCGGTCGCTGATGCCGTGGCGCCGTGCGAGGACGCGGCGCAACCGCAGGCTCTGTCCCATGCCCAGCAACGGGTGTGGTTCATGCAGCAATTCGACCCGGCTGAAACCGCCTACAACGTTACCCAACTGTTGGCCTTGCGCGGCGACCTGGATGTGCCCCGCCTGCAACGCGCCTGTCAGGCGCTGGTGACCCGGCATGACGCATTGCGCTGCCGTTTTTTCGAAGAGCACGGGCAAGTCTGGCAGCGGCTGGACGATACGGCTGCACCGATCTTCAACGTCCATGACATCGGCGCCCTGAGTGACTCGGAACAGGACGCGGCCATTGCCAGTGCCGCCAAGCGGGTGTTCGATCTCACGCGAGGTCCGCTGCTGGCCATCGATGTGTTTTGTGTGGCGCCTGGCGACTATCGCCTGCTGTTCAACGTGCACCACATTGCCGTGGACGGTTGGTCGATGGGCTTGCTCGTCCAGGATCTGGCAGCGCTTTATCAAGATCAGACCCTACCGGCGGCAAGCGCTTTGCTGCCGTTGATCAAGGCGCATCGAGAGCGCTTGGATGGCGCGTATGGCAAGGATTCGTTGGCCTATTGGCAACAACGCCTGGAAGGCCTGGGCAACGAGCCGCTGGAGCTGCCTGAGCAATCCACGCGGCCGGCGGTGCAGGCGTTCGGTGGAGCGCGAGACGAATATGTGCTGCCCGGTTCGCTGAGCACTGCGGTCGAGGCGCGGGCGAGGGTGCTAGGCGTCACGCCGTTCGTGCTGTATTTCGCGGCCTATCAGTTGCTGCTCTGGCGCCACGGCGGGCGCAGTGATTTCGCCATCGGCTTGCCGGTGGCGGGGCGTGAGTCAGTCCAGAGCCAGGCGTTAGTCGGGTTGTTCGTCAACACCCTGGCCCACCGTGTCCAGATCGACGGCCGCCAGAGCCTGCAAGCATTCGTCCAGGCACTGGACAGCACGCTGAATGAGGACCTGGCCCATCAATCGCTGCCGTTCGAGCAGTTATTGGAAGTGCTGGATGTAGAGCGCAGCCTGGATCGCACGCCGCTGTTCCAGACGATGTTCAACTATCAGGTCGACCATCAGGATTCCCGCAGCCTGAACCTGCCCGGCATCAGTGCCCAGGCTTTGGCGCTGCCGGGTGGCGTGGTGAGCGCCAAATTCGACCTGACGTTCAACCTGTTCACCCAGGGTCGCGGTGCCGAGGCCAGCACCGGTTTGATCGTCGAATACGCGACCGCATTGTTGCGGCCCGACATCACTCGCCGGTTGGTAGAGGATTACCAGGCATTGCTCGCCAGCCTGTCGGGCCAGGATCTTGATGCGCGCCTGCTGGAAATCCCGCTGCGTTCGGTTGCGACGTTGGCGACTGCCGGGAAGTCGTTGCCCTTGCACGGCGAAGCGGATTGGGTGACGCGTTTCGAAGTGCAAGCCGCTGTGCATCCCGAGTGCATCGCCGTCTATTGCGCCGACCGCCAATTGAGCTATGCCGCGCTGGAGGCCCAGGCTAACCGCTTGGCTCATTGGTTGCTGGCCCAGGGCGTCGGGCCTGAATCGTTGGTTGCCTTCTGCCTGCCTCGGGATGAACGCCTGTTGGTGTGCATGTTGGGCATCCAGAAGGCCGGTGCCGCCTATTTGCCACTCGACCGCGCCCATCCACCGGCCCGCCAGGCGCAAGTGCTCAACCGGGCGCAGCCACATATGCTGCTTTGCGATTCGACGACAGGGGATTGGCCTGCCGACCTACGTGTTTGCCTGTGGGCAGATCTGCCATTGGCGCAATTTCCCACCCAGGCGCCTGGATTGGCGACGCACCTCGGGCAACTGGCCTACACCCTCTACACCTCGGGGTCGACCGGGCAACCCAAGGGCGTGCAGATCAGCCGCGGTAACTTTGCCAATTTCCTGCTCGCCATGGAGCAGGCGCTGCCCTTGGATAACGTGCAGCGTTACCTGGCCTTGACCACTGTCACTTTCGACATTTGTGGCCTGGAGCTCTGCCTGCCGCTGGTGCGTGGCGGCTCGGTGGTCCTGGCGGACGAGGACGAGCGCCAGGATCCGCTGCTGCTTGCACGCTTGATTGACGAACGGTCCGTTGACCTGATCCAGGCCACGCCCGCTACCTGGGCGATGTTGTTGCAAGGCGACCGCCGGGTGTTGGAAGGGCGAGTGGCCCTGGCCGGCGGCGAGGCGGTGCCGAAGGAGCTGGCCAGCGAGCTGAAGCAGCACGTGGCGCGCTTGATCAATGTCTACGGCCCGACCGAGACCACGGTGTGGTCGACCCAGACGCCGATCGACACACTTCAATTGCCCGTCGCCCCGATAGGCCGGCCGTTGCTCAACACCCGCTGCCATGTTCTCGATGAATACCTGTGTGAAGTGCCGCCAGGCTGCGTCGGTGAACTCTATATCGCCGGTGACGGACTGGCCCGGGGTTATGCCGGGCAGCCGGGGCTGACCGCAGAGCGCTTCATTGCCGACCCGTTCGGTAACGGTGGTCGCTTGTACCGCACCGGCGATCTGGCGCGCTGGCAGCCCGACGGCCAGCTGTACTACCTCGGACGCACCGACGACCAGATCAAGTTGCGTGGCTATCGCATCGAACTGGGGGAAATCGAAGCCGTCCTGCTCAGCCATCCTCAAGTGCTGCAAACGGTGGTGGCCGTGCAAGGCGAGCAGTTGGCCGGATTCTGGGTGGCGAATCCTGACGATGCACCTGGTGAGGCAGCTGTTCGAGATTATTTGCAGGCGCGCTTGCCGGTCTACATGGTGCCGACGCACCTGCAGGCGCTTGAGCAACTGCCGCTCAACAGCAATGGCAAGGTCGATCGCAGACAACTGCCGCGCTTGCAATCGGTTGTCGGCAGCGCGCCAGCAACCGGGCGCCCGCTGTCGGCCGGCGAGGGGATGCTGGCGCAGATCTGGGCCTCGGTGCTGAACGTGCGGGACGTCCCACCCGACGGACATTTCTTCCAATTGGGCGGGCACTCCCTGATGGCGGCCCAGGTACGCGGGCGCCTGCGGGAACAGGGCTTCGAGGTGCCATTGCGCTGGCTGTTCGAAACACCGGTGCTGGCGCGACTGGCCGAGCGAATCGAGGGCCTCGCCGCTGAGCAGGATCTGGCGTCGGTGACGATTCCGGTGGTTGACCAAGGCATCGATCAACCCTTGTCCTCGGCGCAGCAACGGGTCTGGTTGATGCAACAACTGGATGAGGTCGACAGCAGCTTCAACATGAGTAGCAACGTGCGCTTGCGTGGGGAACTGGATAACCAGGCCCTGGAGCGTTCGTTGCAACGGTTGGTGAATCGACATGCCATCCTGCGCACCACCTATCACCAGTGCGGCGGCGAGTTGCGCCAGCGAATCCACCCGCAATTGGCGGTGGCTTTGCAACGCCTGCCGTCGAGCGAATCGAAGTGGTCACTCGATGCCCGGGACATGGCGCTGCGACCGTTCGATCTCGGCAGCGAAGCGCCGCTTCGGGTGGTCCTGTATCGCCTCGGCGAACAGGAGCATGTACTGCAAATGGTCATGCACCACATTGCCTCCGACGGTTGGTCCGGCGCGGTGTTGGTCGATGAGCTGATCGAAGGTTACGAGGCCTACAGCACCGGCGTGCTGCCAACCCAGGAAGCGCTGCCGATCCAATACGTCGACTACGCCGTTTGGCAAGGTTCGGCGGCGGTCCAGTTGCGTCAAAGGGAAGGCTTGGAGTTCTGGCGAAGGACCCTGGCGGGGATTCCCGCGCAGGTGCCATTGCCATTCGATTTCCCGCGTCCGGAGCGAGATAGCGGTGCCGGGGCGGCGGTGGATTTCCAATTGTCGCCCGCCACGGTGGGCCGGTTGAAAACCTTTGCCCAGGACAGCGGCATGTCGCCTTTCATGGTGCTGCTGACGTGTTATGCAGCCGTGCTGCAAGGTGAGACACAAGGCCGCGATCTGGTGATTGGCACGGACGTGGCGAACCGCGACCATCCGGCCACCGAATCGCTGATCGGCTTCTTCGTCAACCTGCTGGCCTTACGCATCCGCGTGCAACCGGAACTGAGCTTCCATGAGCAGGCCATGCAAGTCCGCGAGTTATGCCTGCAAGCGTTCGCCTGGCAGGACACGCCGTTCGAACGCGTGGTTGAATGCCTGGAATTGCCGCGGGTGGCCAATGTGCATCCACTGTTGCAGACACTCTTCGTGCTCGACAACACGCCGCGTCAGCAGCGCCAACTGGGCGATCTGCAGGTCGAGCCGTTGACGGGCGAGCAGCACCACTCCAAGTTCGACATGGCGCTGTTCGCCAGCGAAGACCGCGACGCGCTCAGCCTGCGCTGGGTGTACCGCACCAGCCTGTTCCGTCCGGCCACCATCGAACGCTTGCGCGATGCTTTCGAGTTACTGCTGGAGCGCGCGCTCGCCGCGCCGCAAACCCCTATCGATACCTTGATGCCGACTGTGAAGGGAGCTGCTGCAATGTCCACGGACAACCCGCTGCAACGCAAAATGAGCAAATTGGGCAAGATGCGCCAGGGCGGATCGGCGGCTACCCGTGAGCCCATCGAGGCCCGGCCGCTACGAGCGGACTCGGCATTCCCGTTGCTGGTTTCGTTGCGTGACCGCGAACTGGCCCCGGCCATCTGGGCGCAAGCCAACCGCGACAAGGTCGAGCACTGGTTACGCGAGCATGGCGGCATCCTGTTCCGTGGCTTCGACCTGCCGACCCCGGCGGATTTCGAGGCGTTCTGCCAGGCGCTGTGCCCGCAGCTGTACGGGCAATACGGTGACCTGCCGAAAGAGGAAGGCGGCAAGAACATCTACAAGTCCACGCCATACCCCAAGGACCGGATGATCCTGTTCCATAACGAAAGCGCGCATCAGCACCGCTGGCCACGTCGGCAGTGGTTCTACTGCGAGACGCCCGCGACGTCCGGGGGCGCGACGCCAATCGTTGACAGTCGCCAGGTCTACCGCGAATTGCCGACGTGGTTGCAGGCGAACCTACGAAGCAAACAACTGATGTACGTGCGCAATTTCAGCACCAGCCTGGACGTTAGTTGGCAGCACTTCTTCCAGACCGAGGACCGAGCCGACGTCGAGCGGATCTGTCGTGAGAGCAACATCGAGTTCCAGTGGCGCGGCGCCAATGACCTGCACACCCGGCAGGTGTGCCCGGCGGTGATCCTGCACCCGTTGACGGGCGAAGAAAGCTTCTTCAACCAGATCCAGCTGTACCACCCGGCATTGCTCGATGAGGATGTTCGCGAGCAATTCCTGCGCGACGGCGAATCGGCAATGCCCAGGCAAGTGTTTTATGGGGACGGCTCGGAGCTCGAACCAGCGGCTATCGATGCCATCAATGCCGCCTACGACCGTTGTGCGGTGCGCTTCGACTGGCAACAGGGCGACGTGGTGATGCTCGATAACATGCTAGCGGCCCATGCTCGGGATCCGTTCGAGGGCGAGCGCAAAATCGTCGTCGCCATGGGGGAAATCTATGCCCGCCAGCAAGTCATGGCCGCGCCGGCGCAGACCGAAGAGACACTTGAAGAGTTGACCCCATGA	MTQQAFLEIAQRLASLPAEKKKVFRQRLSEKGIDSWRLPIVPALLGEGEHRPLAQAQRRFLSAEALSSRALYNLCSVLRFDGRLDGARLRQAMQQVVDRHQILRTRYRPDASGQLQPHCAPQQVQLPGVERLTLAASEHEQWCADEYARQLAEPFDLAQSMPWRWKAFSDAQEHCTWLFFTIHHVAYDAWSAQQLTLELAEAYRALASNEPAALAELSIQYADYAAWEREWLDSDSCRQHIDFWRDQLADAPAPMALPLDRPRPTPTQRRHSGAVLTRELPPQLTTAVETAIRNHGVTLYIYGLTAFTCLLSRYSGETDLCLGTSIAQRDRPELASLIGPLLNTLVIRQRLQGNPDFSSALQRTRDTVAAAFDHQQLPFENVLENLERPRSSPLFQVMFVQVDLPESRTLALPGVAVEVLDPPQRHARFDLTLRMVRTADARLRCELEYSDELFDTATVEQMLDDLLAIFHEVSAHPQRRLSDLQLVSTPSEVRGPVLGAITLPLDQQVLHWATHTPNAVALCSVGQSIDYATLGAASRSMAARLAAQGVGPGQVVALCMPRCAEQVLATLACWQRGATCLFLDPAQPARRLAQLLHDSGASLWLTLAQAPETGVGIPCLVLSADDWSLNANIHQYESLSQPQLPAYLIYTSGSTGQPKGVQVTHANLAHYANAVGERLQAKSGSRWATLATVAADLGLTSVFAALNAGDTLVLPPASLAFDPPGWADFLDQYPADCLKIAPSHLRGLLALDDARRVLPKVLLILGGEGFDQALFAKVRELAPQLRIFNHYGPSETTVGVVCGEILDSEAFVAGQYLPLGQPLSGCELRIVDGQNRCVPLGVAGELLIGGPQVAQGYLGQPELTARAFGVTAQGQRFYRSGDRVRLDRDGRLVFLGRQDDQAKIRGFRVEPGEVSAWLNAQPQVREGAVLACEVKGRTQLVAYVSPSMTTQALAALQAEAKRQLPEHMVPAHWLALDALPLTANGKLDRRALPEPTIDEPAAEATEQPSGATEQRLAQLWCQILGCAPVGRADDFFALGGDSILSLQLIGLASREGLKLEPRDVLQHPTLAAMALCIDCRAEPALLAVLTAFRELLGQPGLGPDADFFAMGGDSILSLQLIARLRQADLRLMPRQLLENPTPRQLAKVLAPIVAPVADAVAPCEDAAQPQALSHAQQRVWFMQQFDPAETAYNVTQLLALRGDLDVPRLQRACQALVTRHDALRCRFFEEHGQVWQRLDDTAAPIFNVHDIGALSDSEQDAAIASAAKRVFDLTRGPLLAIDVFCVAPGDYRLLFNVHHIAVDGWSMGLLVQDLAALYQDQTLPAASALLPLIKAHRERLDGAYGKDSLAYWQQRLEGLGNEPLELPEQSTRPAVQAFGGARDEYVLPGSLSTAVEARARVLGVTPFVLYFAAYQLLLWRHGGRSDFAIGLPVAGRESVQSQALVGLFVNTLAHRVQIDGRQSLQAFVQALDSTLNEDLAHQSLPFEQLLEVLDVERSLDRTPLFQTMFNYQVDHQDSRSLNLPGISAQALALPGGVVSAKFDLTFNLFTQGRGAEASTGLIVEYATALLRPDITRRLVEDYQALLASLSGQDLDARLLEIPLRSVATLATAGKSLPLHGEADWVTRFEVQAAVHPECIAVYCADRQLSYAALEAQANRLAHWLLAQGVGPESLVAFCLPRDERLLVCMLGIQKAGAAYLPLDRAHPPARQAQVLNRAQPHMLLCDSTTGDWPADLRVCLWADLPLAQFPTQAPGLATHLGQLAYTLYTSGSTGQPKGVQISRGNFANFLLAMEQALPLDNVQRYLALTTVTFDICGLELCLPLVRGGSVVLADEDERQDPLLLARLIDERSVDLIQATPATWAMLLQGDRRVLEGRVALAGGEAVPKELASELKQHVARLINVYGPTETTVWSTQTPIDTLQLPVAPIGRPLLNTRCHVLDEYLCEVPPGCVGELYIAGDGLARGYAGQPGLTAERFIADPFGNGGRLYRTGDLARWQPDGQLYYLGRTDDQIKLRGYRIELGEIEAVLLSHPQVLQTVVAVQGEQLAGFWVANPDDAPGEAAVRDYLQARLPVYMVPTHLQALEQLPLNSNGKVDRRQLPRLQSVVGSAPATGRPLSAGEGMLAQIWASVLNVRDVPPDGHFFQLGGHSLMAAQVRGRLREQGFEVPLRWLFETPVLARLAERIEGLAAEQDLASVTIPVVDQGIDQPLSSAQQRVWLMQQLDEVDSSFNMSSNVRLRGELDNQALERSLQRLVNRHAILRTTYHQCGGELRQRIHPQLAVALQRLPSSESKWSLDARDMALRPFDLGSEAPLRVVLYRLGEQEHVLQMVMHHIASDGWSGAVLVDELIEGYEAYSTGVLPTQEALPIQYVDYAVWQGSAAVQLRQREGLEFWRRTLAGIPAQVPLPFDFPRPERDSGAGAAVDFQLSPATVGRLKTFAQDSGMSPFMVLLTCYAAVLQGETQGRDLVIGTDVANRDHPATESLIGFFVNLLALRIRVQPELSFHEQAMQVRELCLQAFAWQDTPFERVVECLELPRVANVHPLLQTLFVLDNTPRQQRQLGDLQVEPLTGEQHHSKFDMALFASEDRDALSLRWVYRTSLFRPATIERLRDAFELLLERALAAPQTPIDTLMPTVKGAAAMSTDNPLQRKMSKLGKMRQGGSAATREPIEARPLRADSAFPLLVSLRDRELAPAIWAQANRDKVEHWLREHGGILFRGFDLPTPADFEAFCQALCPQLYGQYGDLPKEEGGKNIYKSTPYPKDRMILFHNESAHQHRWPRRQWFYCETPATSGGATPIVDSRQVYRELPTWLQANLRSKQLMYVRNFSTSLDVSWQHFFQTEDRADVERICRESNIEFQWRGANDLHTRQVCPAVILHPLTGEESFFNQIQLYHPALLDEDVREQFLRDGESAMPRQVFYGDGSELEPAAIDAINAAYDRCAVRFDWQQGDVVMLDNMLAAHARDPFEGERKIVVAMGEIYARQQVMAAPAQTEETLEELTP				NA	NA	NA	NA	NA
D1-36_02315	3783	dltA_4		D-alanine--D-alanyl carrier protein ligase	ATGATGGACCTTGGACTCACGCTTTCACCCCAGCAGAAACAACTGGCCCAGGCCAACCCACACGCCTGGCGCTGGGTGCGCATGGTGCTGACAGGCGTTCCCGAAGGCATCGTCGAGCAACGCTTGCGCGACAGCCTGGCGCAGCATCAAGCGCTGCGCTTGCGCTATGAGCGGCCACTGGGCGCCACCGGGCTGCGCCAAAGGGTGATCGAACCTCAGGCATTGCGCCTTGACTGGCGCCTGGGGCGCGCAACCGACGGTCACGATGAGCAGGATTGGCTGGAAGAGGCGCGGCGTCGCTGCCAGGCCGAACAGCCCGACGTGCTGGCTTGGCTGCTCGATGATCAATTGTTGCTGGCGGTCCCGGCCTACTCGCTGGACGCGCGCAGCCTGGTCCAGTTGCGCGAGCATTTGCTGGGCCGCGCCGCGCCGCTGGATGACGAGCCCATGCAGTACGTGGACTACGTCGAGTGGATCAACGGCCTGCAACTGGATGAAGACGCTGAGCAGGGCGCACAGTTCTGGCGCAACCTGGCCTTGCAGGACATCCCGGGCATGCGCCTGGTCGAACGTTATGGCATCGCCAGTGGCCGTCATGCCGTCGTCCGTCAGGAGTTGGCGCAAAGCGAGGTGACGGGGCTGACCGCCCTGGCCGAGCAGGAAGGTATCGCTGAGGAGCAGTTGGTCTTGGCGGCCTGGGGATCATTGCTCGGCAGGCTCAATGGCCAACGGCAGGGCCAACTGGGTTTGCAGCATGACCCTCGAGATAACTACGAGGAACTGACCGGCGCGTTTGGTGTGTTCGAACAGACGTTGCCGATGGTGATGCAAATGTCCGAGCACAGCACCCTGGTCAACCTGGCCCGGCAAATGGCCCGGCAACTGGAGAGTGCCGTCGACTGGCAGGAATACGTCGGCCAGGCGCAGTTGTTGCCAGAGTGGCGAGCCAGTTTCCAGGCAGGATTGCAGGTTCTGCAAGTGCCGCAACCGGACGCGTTGCAGTGGCTCTCGTTTGACACGCCGATCGAGCTGCAACTTCAGTTGACCCTCCACACCCAGGGCAATGGCGAGCTGGCGTTGGCGTATGATTGCGGGGTGTATCGCGAGGAGCAGATGCAGGCGCTGCTCAAGCGTGTCAAGCATTGGCTCGGCCAACTGATGCAGTCGCCCAATGAGCTTATCGATGGCATGGATGCGTGTCTGCCCGAGGAGTCGCAGGTGTCCTCGCCGCGTCCTGACCTCGGAGCGGACCTTGACATCATCGTTGCCCTGCGCCGGCACGCCCAGGCACACCCGGATCGCCCGGCGCTGCGGTATGCCGACCAATTTCTCTCATACGCTGAACTCGATGCCTTGAGTGACCGCGTCGCCGGCAGCCTGGATCAGGCGGGCGTGGGCCGCGGCGACGTGGTGGGGCTGTATCTGCCACGCGGCGCGCAGATGCTGGTTGCGATGCTCGCTTGTTTCAAGGTCGGTGCCGCGTATCTGCCTTTGGATTCCCAACAGCCGCCGCTGCGGCTGGCTGCGGTACTGGATGACGCCCGACCTGCGTTACTCCTGCACTTGGAGGGCCTCTTGCCTGACACGTCGACCCGGACGCTGTGCTGGTCCCAGGCAAGCAAAGGGCCTGTGTCAGCTACATCGCACTCCGGCACCGCGCAAGACCTGGCCTACGTGCTCTACACCTCGGGCACCAGCGGCAAGCCAAAAGGGGTGCAGATCGAACAAGGGCAATTGCGCCATTACGTCACCCAAGTAACCCGTGCACTGCAACTGCCCGAGGGCGGGCATTATGGGTTGGTGTCCTCGCTGCTCGCGGACCTGGGCAATACCGTGTTGTTCCCGGCGTGGCTGCAGGGCGGTTGTGTGCATGTGCTGGCGCAGTCGACGGTGACCGACGCCCAGGCCTTTGCCGAGGAGCTAAGGCGTTATCCCCTCGACGTGCTGAAAATCGTCCCATCGCACCTCGAAGCCTTGATGGGCGAGCAAGCCGTCGGCGTACTGCCTCGCCAGGTGCTGGTATTGGGCGGGGAACCGATTGGCGAGGCGTTGCTGACACGCTTGGCCCAGGCCGAGCCGGCCTGCCGACTGTATAACCACTATGGCCCGACCGAAACCACCGTCGGGGTGTTGTGGCGAGCCATTGATCTTGCGCAGGGCGTGACTGGTTGTGCGTTGAATCAAGTGTTGGGTGCCAACCGTATTCATCTGCTTGACGAGCAGCAACGGCCAGTGCCGCCCGGCCAGGCTGGCGAGTTGTACATCAGTGGCGCCAGTGTCGGCAGGGGATACGTCGGCAATGTCGGTGGCGAGGCCTTCGGTGTAGATCCTGCCAGCGGCGATCGCCTGTACCGTACCGGTGACTTGGCCTTGCGCCAGGCCGACGGGGCCCTGCGCATTCTGGGGCGCAATGACCATCAGGTGAAAATTCGTGGGTTTCGCCTTGAGCTGGCGGAGGTCGAGCAGGCGATGCTCGCCCAGCCGGGCGTCTTGCAAGCCGCTGTGCTGCTGGATGGCGAAGGCGATCTCGGGCGGTTGCTGGCATTTGTAGTCACGGACGATGTTCAGTTCCAGGGGACGGATCCGTTGCGCGCCAGCTTGGCTCGTCAATTGCCGGATTACATGCTGCCCAGCGGAATCTTTGCGTTGAAGGCCATGCCTCTGAACAGCAACGGCAAGCTCGATCGTAAGCACCTGCTCGAACGGGCCCGGCAGCGATTGCAGAATACGCGGGTGAAGCCGGAGGGAGAGCTGGAGACGGTGGTCCTTGCGATCTGGTGTGACGTGCTGGGGGTCGATGACCTCGGCGTAACGGACAATTTCTTCAACGTTGGCGGGCATTCGCTGGCGGCGATCAAAGTGGTGTCGCTGATCCGTGAACGGTTGGGCCTCAACCTGCCGACCAATCTGTTGTTCGAGCGGCATACGGTGCGTGATCTGGTGCAGGACCTGGACGATATCGGCAGCGGCCCCTTTAAGATCTTGAGCGACGCCGATCCGCACGCACCGGCCTTGCTGGCGGTGCATGGTGCGCAAGGGCACCTGCAGGCTTACCAGCCGCTGGTGGAAAACCTGCGCGGCGAAGTGGCCGTCTTTGGCCTGGCCGCCCTTGAAAATGACTGGGCCCACGGCGATATGGATGCGCTGTTGCAGCAATACGTGGCGAGTATCCCGGTCCAGCTCAAACAGCGACCGATGGTGTTGTTGGGCTGGAGCCTGGCCGCGCGCCTGGCCTTGTTGCTGGTGCCGCATCTGCAAGCCAGCGGCTTCAGCGTCGAAGGCCTGGTGTTGCTCGATCACGATGCTCAGCGCAGCCTGGCCGGCGAGGGCGACGAAGCGGGCCAGTTGATTGCCGATTTCGCGTTTTATTGCCGCAGCCACGGCCAGCCGATCGGCGAGTCGCTACGGGAACGGTTGACGGGCCTGTTGGCCGGCCTCGACTATGCCGAGGGTGTCGCCCGGCTGCTCGACGATGAACAGGTGCGCGGGCACCTGCAATGGAAAGCGGCGGATGGTGAACTGCTGGCGCTGATGGCGCGATATCGCGCCATCAAGACCCGTTTGTACGAGCAGGCCTTGCCAACCGTTGACGTGCCAGTCTGGTTGTGGCGCGGCAATGCCCACGGCGACTTGCGCGCACAATGGCAAGTCCACGCGCGCCAACCGGTTAGCCAGTGGACGCTGGACGTGGGGCATCATGAGATGCTCGGCGAGCCGCGACTGGTCGAAAACCTGCTGCCTTTACTGTTGCAAACCTCTGCCAAGGTGGTGTCGGTCCCATGA	MMDLGLTLSPQQKQLAQANPHAWRWVRMVLTGVPEGIVEQRLRDSLAQHQALRLRYERPLGATGLRQRVIEPQALRLDWRLGRATDGHDEQDWLEEARRRCQAEQPDVLAWLLDDQLLLAVPAYSLDARSLVQLREHLLGRAAPLDDEPMQYVDYVEWINGLQLDEDAEQGAQFWRNLALQDIPGMRLVERYGIASGRHAVVRQELAQSEVTGLTALAEQEGIAEEQLVLAAWGSLLGRLNGQRQGQLGLQHDPRDNYEELTGAFGVFEQTLPMVMQMSEHSTLVNLARQMARQLESAVDWQEYVGQAQLLPEWRASFQAGLQVLQVPQPDALQWLSFDTPIELQLQLTLHTQGNGELALAYDCGVYREEQMQALLKRVKHWLGQLMQSPNELIDGMDACLPEESQVSSPRPDLGADLDIIVALRRHAQAHPDRPALRYADQFLSYAELDALSDRVAGSLDQAGVGRGDVVGLYLPRGAQMLVAMLACFKVGAAYLPLDSQQPPLRLAAVLDDARPALLLHLEGLLPDTSTRTLCWSQASKGPVSATSHSGTAQDLAYVLYTSGTSGKPKGVQIEQGQLRHYVTQVTRALQLPEGGHYGLVSSLLADLGNTVLFPAWLQGGCVHVLAQSTVTDAQAFAEELRRYPLDVLKIVPSHLEALMGEQAVGVLPRQVLVLGGEPIGEALLTRLAQAEPACRLYNHYGPTETTVGVLWRAIDLAQGVTGCALNQVLGANRIHLLDEQQRPVPPGQAGELYISGASVGRGYVGNVGGEAFGVDPASGDRLYRTGDLALRQADGALRILGRNDHQVKIRGFRLELAEVEQAMLAQPGVLQAAVLLDGEGDLGRLLAFVVTDDVQFQGTDPLRASLARQLPDYMLPSGIFALKAMPLNSNGKLDRKHLLERARQRLQNTRVKPEGELETVVLAIWCDVLGVDDLGVTDNFFNVGGHSLAAIKVVSLIRERLGLNLPTNLLFERHTVRDLVQDLDDIGSGPFKILSDADPHAPALLAVHGAQGHLQAYQPLVENLRGEVAVFGLAALENDWAHGDMDALLQQYVASIPVQLKQRPMVLLGWSLAARLALLLVPHLQASGFSVEGLVLLDHDAQRSLAGEGDEAGQLIADFAFYCRSHGQPIGESLRERLTGLLAGLDYAEGVARLLDDEQVRGHLQWKAADGELLALMARYRAIKTRLYEQALPTVDVPVWLWRGNAHGDLRAQWQVHARQPVSQWTLDVGHHEMLGEPRLVENLLPLLLQTSAKVVSVP				NA	NA	NA	NA	NA
D1-36_02316	1644	yojI_2	COG4615	ABC transporter ATP-binding/permease protein YojI	ATGATGTTATTGAGAGAACTGCTGCACAACGCGCGATGGCGCATTTTCCTAGCGGTGCTGAGCAGTGCCCTGAGCGCGGCCACCAGTATCGGCCTGATCGGCTACATCAACCGTTGCCTGGAACAAGGTCTCAATGACCTCGGCCAGGGCTTGCTGCTGTTCGGTGGCCTGCTGGTGCTGTTGTTCATCAGCGGGGTCACCGCGCAATGGCTGCTGGTGCAGATCGGCCATCGGCTGGTGTACCAGCTGCGCTTGCGGCTGGTGGGCAAGGTGCTGGGCACCGCGCTGGAACGCATCGAACGGTTGGGCAGCCCACGCATCTACAACGCCCTGACCAAGGACGTGACCACCGTCGCCACGGCCTTCAAGCAATTGCCGATTTCCTTGTACAACGGCTTGCTGCTGTTGGCGGGGCTGGCCTATATGGCGTGGTTGAGCCTGCCGTTCTTCGGCCTGACGCTGGCAGTGATCGCCGCTGGCGTCGGCCTCGACGTGCTGCTCGGGCGCAAGGTCAAGACCTTGATGCAGGCGGTCCGGCAGCAGGACGACCAACTCACCGAGCAGTTCGAAGCCGCCATCCAGGGGCGCTGCGAACTGGGCCTGAGCCGGGAGCGTCGGCATTTGCTCTATCAACGCAAGCTCGAACCCATCGCCCGGGCGTCGCTGGACGCATCGGTACGCGCTGACACTTTGTGGGCCGTCAACCTGAACTGGACGACGTTGCTGGTGTTCGTGCTGATCGGCACGCTGTTTTTCCTCGGCCAGGGGCTGGGATTGCTGAGCCAGCAGGTGGTGGTGGGCTACGTCTTGGCGATCATGTTCCTGCGCACGCCGATCTCGATGATCCTCGACGCTATTCCCGCTGTCATTCGTGGTCATGTCGCTTTACAGGCCATTGATGCCCTGGCACTGGGCGAGACGGTAGAGTTCAAGGCGTCCGCGCAAGCAGCGCAGCCGTTTCGGGATCTGCGTCTGTCGAACGTGCATTACCGGTATGCCGGCAAGAACGAGGAATTTGCCTTTGAATTGGGACCGATCGACCTGACGATCCGGCGCGGCGAGTTGATCTTCATTGTGGGGGGCAACGGCAGTGGCAAGTCGACCCTGGCCAAGCTGCTGACCGGGCTCTATGTGCCCGCTTGCGGGGAGGTTTCACTCAACGGCGTGGTGCTCGATGCCAGCACCAGCGAATGGCATCGCGAGCACTTCGCCGCGATCTTTGCCGACTTCTATCTGTTCGCCGATGTGTTGGGCGAGGCGGGCGACCATGAAGGGCTGGAGGCTCGGGTGGACCATTATCTGGAGCGCCTGGGGCTGGCCCACAAGGTTGAATTCGCCGCTGGACGCCTGTCCACCACCGCGTTGTCCCAGGGCCAGCGCAAGCGCCTGGCCTTACTGTTGCTGATGATGGAAGGCCGTGAAGTGTTCCTGCTGGACGAGTGGGCGGCTGACCAGGACCCGGTGTTCCGCCATGTGTTCTACAACGAATTGCTGCCCGAGCTCAAAGCGGCCGGCAAGACGGTCATCGCGATCACCCATGACGACCGTTATTTCGACGTGGCGGACCGGGTCTATCGTCTCGACTACGGCCACCTCGTCGATTACGACCGGGCGACGGAGAATCCCTTTCAATTGGCAAAATGA	MMLLRELLHNARWRIFLAVLSSALSAATSIGLIGYINRCLEQGLNDLGQGLLLFGGLLVLLFISGVTAQWLLVQIGHRLVYQLRLRLVGKVLGTALERIERLGSPRIYNALTKDVTTVATAFKQLPISLYNGLLLLAGLAYMAWLSLPFFGLTLAVIAAGVGLDVLLGRKVKTLMQAVRQQDDQLTEQFEAAIQGRCELGLSRERRHLLYQRKLEPIARASLDASVRADTLWAVNLNWTTLLVFVLIGTLFFLGQGLGLLSQQVVVGYVLAIMFLRTPISMILDAIPAVIRGHVALQAIDALALGETVEFKASAQAAQPFRDLRLSNVHYRYAGKNEEFAFELGPIDLTIRRGELIFIVGGNGSGKSTLAKLLTGLYVPACGEVSLNGVVLDASTSEWHREHFAAIFADFYLFADVLGEAGDHEGLEARVDHYLERLGLAHKVEFAAGRLSTTALSQGQRKRLALLLLMMEGREVFLLDEWAADQDPVFRHVFYNELLPELKAAGKTVIAITHDDRYFDVADRVYRLDYGHLVDYDRATENPFQLAK	PGPT0029175_235	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029175-yojI-K06159	NA	NA
D1-36_02317	729			hypothetical protein	ATGATTCCCAGCCTTGCTCCGCTGTTCACCGGGCCGCTCGCGGCCTTCGAAGAAAAACTGCAACTGCGCAGCCACTCGCCCACCGTTCTGTCGGTGGAACTGTTCTTCCAGCGCGAGACGTTCAGTCAGTTCGTCGACGAGCTGCTGGCGCGCTACAAGACCGATGAACGCCTGGCCCTGGTGTCGCTGTGGTCCAAGTGGTATTTCAGTACCTTCCTCGCGCCGGTGATGGGCGCCAACCTGTTGCTGCAACGGGACCTGCCAGTCGCTCTGAACGATGTTGGGTTGAAACTCGGCGACGACGCCAGGCCACAGGCCTTACATGTTCGCGACGCCGGGCAACCACTGCCCGAATGCACAGCCTTTGAACGGTTCCATACGCTGGTCGAACAACACCTGGAACCGGTCATCGACACGCTGGCCAGTGTCAGCCGCGCATCGCCCCGCTTGTTCTGGAGCAATGCCGGCAACACCTTCGAATTCGTCACCACGCGGATCGACCTGCATCCGCTGGCCAATCCCGAGAGCACCCTGCCCGCCCGGCAAATCCTCACTGCCCGCCTGCGCCCCGATGGTCGGCGCAACCCGCTGTTCGCCCCCGTGCGTTACCACGATATCGGCGAGGAAGAGCCGCAGCGCCTGCGGCGAATCTGCTGCATTCGGTATCGCCTTCCCAGCGTCGGCTATTGCAGCAGTTGCCCCCTCGATGAATGCAAGCGGCAGCATTGA	MIPSLAPLFTGPLAAFEEKLQLRSHSPTVLSVELFFQRETFSQFVDELLARYKTDERLALVSLWSKWYFSTFLAPVMGANLLLQRDLPVALNDVGLKLGDDARPQALHVRDAGQPLPECTAFERFHTLVEQHLEPVIDTLASVSRASPRLFWSNAGNTFEFVTTRIDLHPLANPESTLPARQILTARLRPDGRRNPLFAPVRYHDIGEEEPQRLRRICCIRYRLPSVGYCSSCPLDECKRQH	PGPT0003315_461	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FERRICHROME|FERRIOXAMINE_METABOLISM,PGPT0003315-fhuF-K13255	NA	NA
D1-36_02318	204	mbtH_1	COG3251	Protein MbtH	ATGAGTTTGGATAGCCCGGATACGCGGTTTCTGGTTGTCGTCAACGAAGAGGAGCAGTACTCGATCTGGCCGGACTACCGCAGTGTGCCCGATGGCTGGCGCACCGTAGACATGCAGGGCAGCAAGGAAGAGTGCCTGGCCTACATCGAGAAAGTCTGGACCGACATGCGCCCACTGAGCCTGCGCCAGGCAATGCAGGCATAA	MSLDSPDTRFLVVVNEEEQYSIWPDYRSVPDGWRTVDMQGSKEECLAYIEKVWTDMRPLSLRQAMQA	PGPT0003370_780	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-NOCARDICIN_A-D_METABOLISM,PGPT0003370-mbtH|nocI-K05375	NA	NA
D1-36_02319	1431	dat_1	COG0160	Diaminobutyrate--2-oxoglutarate aminotransferase	ATGGAAAGTGTCCAGCCCCGCTCATCATCCAGCGCCACCTTCACGCTGGAGCAGTTCCGCCAACAGGCGCCTCGCGAACTGAATACCAATCCGTACCTGCAACGCCAGGCGGCCCGGGAATCGAATGCGCGTTCATACCCGCGACGCATCCCGCTAGCCCTGCAAGAGGCTCACGGCCTTTATGTTCGCGACACGCAGGGGCAATTGTTCATGGACTGTCTCGCCGGCGCGGGAACCTTGGCGCTGGGCCATAACCACCCGGTGGCCATTGCGGCGATGCGCCAGACGCTCGATTCCGGCTTGCCCTTGCACACCCTGGACCTGACGACGCCGGTCAAGGATCGCTTTGTCGAGGACCTTTTCAATGCCATGCCGGAAAACTTCGCGCGTCACGCGCGCATACAGTTTTGCGGGCCGACGGGTGCAGATGGCATCGAGGCGGCCCTGAAACTGGCGAGAATCGCCACCGGGCGTAAGCCGATCCTGACGTTCTCCGGCGGCTATCATGGCATGACCCTGGGGACATTGAGCCTGATGGGCAACCTGGGGCCGAAACAGGCGCTGGGCTCGCTGATGGCCGACGTGCAATTCCTGCCGTACCCTTACGACTACCGTTGTCCGTTCGGCATCGGTGGTGAAGCTGGCATCGATGCCGGGCTGCACTTCATCGAACAACTGCTGAGCGACCCGGAATCGGGCGTGTTGCCGCCGGCGGCAGTGGTCGTGGAGGTGGTGCAGGGCGAGGGCGGGGTGATCCCGGCACCGGTACGCTGGCTCCAGGGCTTGCGCCAATTGACTCGCAAGTACGGCGTGGCCCTGATCATCGACGAAGTGCAGACCGGCCTGGGTCGTACCGGCAAGCTGTTCGCTTTCCAGCATGCCGATATCGAGCCAGACATTCTGGTGCTGTCCAAAGCCATCGGTGGCGGCCTGCCACTGGCGGTGATGGTCTATCGCGAAGAGCTGGACACCTGGAAGCCCGGTTCCCATGCCGGCACGTTCCGTGGCAACCAGATGGCGATGGCTGCAGGTGCCGCGACATTGCGCCATATCATCAGCGAAAACCTGCCAGAACATGCCGATGCCATGGGGCAGCGCCTGATGGAGCAACTGCGCCAGTTGCAGGGCGACTACCCTTGCCTGGGCCAGGTGCGCGGTCGGGGGTTGATGGTGGGCGTGGAAGTCGTCAGCGACACCCCGAGCGACAGCCGTGTTCCTCCGGCGGACACCGCATTGGCCCAGGCCATCCAGCGCCAATGCCTGCGCCTGGGTGTCATCCTGGAACTGGGCGGGCGTCACGGCGCCGTGGTGCGATTCCTGCCGCCGCTGATCATCCAGGCCGACGAGATTGATGTGCTGGTCGAACTGTTCCGTGTTGCATTGAACAACGCCCTCGCCGAGACCAAGGGCCGAGCGTTGCACATCGCTTGA	MESVQPRSSSSATFTLEQFRQQAPRELNTNPYLQRQAARESNARSYPRRIPLALQEAHGLYVRDTQGQLFMDCLAGAGTLALGHNHPVAIAAMRQTLDSGLPLHTLDLTTPVKDRFVEDLFNAMPENFARHARIQFCGPTGADGIEAALKLARIATGRKPILTFSGGYHGMTLGTLSLMGNLGPKQALGSLMADVQFLPYPYDYRCPFGIGGEAGIDAGLHFIEQLLSDPESGVLPPAAVVVEVVQGEGGVIPAPVRWLQGLRQLTRKYGVALIIDEVQTGLGRTGKLFAFQHADIEPDILVLSKAIGGGLPLAVMVYREELDTWKPGSHAGTFRGNQMAMAAGAATLRHIISENLPEHADAMGQRLMEQLRQLQGDYPCLGQVRGRGLMVGVEVVSDTPSDSRVPPADTALAQAIQRQCLRLGVILELGGRHGAVVRFLPPLIIQADEIDVLVELFRVALNNALAETKGRALHIA	PGPT0014050_138	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014050-ectB|dat-K00836	NA	NA
D1-36_02320	927	thpA	COG1879	D-threitol-binding protein	ATGCGTCGTTGCACACTGCTGTTCGCCACGCTGCTCCTGCTCTTCAGCCAATGGGCCGCCGCCGACTATCGCATCGGCGTCAGCATCGCCAGGGTCGACGATAACTTCATGACCTATGTGCGTAACGGCCTGGACGAGGCCGCCAAGAAGGACAACGTCCAGATCCAGTTCGAGGACGCCCAGGGCGATGTGGTTCGCCAGCTCAACCAGGTCCAGGGCTTCATCAACCAGAAAGTGGACGCGGTCATCGTCCTGCCGGTCGACACCTCCGCCACCGCCAATATCACCCGTGCCGCAGTCGAGGCGAAGACGCCACTGGTCTACGTCAATCGGCACCCGGACGAGCGTACGCTGCCCAAAGGGGTGGTCACGGTGGCGTCCAATGACATCGAGGCTGGCCAATTGCAGATGCGTTACCTCGCCGAAAAGCTCGGCGGCAAAGGCAACCTGGCGATCATCATGGGTGACCTCGCGCAAAACGCTACCCACGACCGCACCGAAGGGGTCAAGCAAGTGCTCAAGGACTTTCCCGGCATCAAGATCGTCGAGCAGCAGAGTGCCGAGTGGCAACGCAACAAGAGCATGGACCTGACCAGCAACTGGTTGCTCGCCGGCAGCCGGTTCGATGCCATCGTCGCCAACAATGACGAGATGGCCATCGGTGCGGCCATGGCCTTGCAACAATCCGGCAAGGCCAAGGGCGAGGTTGCGATTGTCGGAATTGACGGCTTGCCGGACGGCCTGGCGGCGATCAAGCGCGGGATGCTAGTCGCCTCGGTATTCCAGGACCCTAAGGCCCAGGCGACCAGCGCGGTGCAGGCAGCCATCAAGATGATCAAGGGCGAGCCGGTCGAGACAGAAGTCTGGGTGCCCTTCCAGTTGATCAAGCCTGAACAACTGGCGGTGTTCGAGCAGCGTTACAAGTAG	MRRCTLLFATLLLLFSQWAAADYRIGVSIARVDDNFMTYVRNGLDEAAKKDNVQIQFEDAQGDVVRQLNQVQGFINQKVDAVIVLPVDTSATANITRAAVEAKTPLVYVNRHPDERTLPKGVVTVASNDIEAGQLQMRYLAEKLGGKGNLAIIMGDLAQNATHDRTEGVKQVLKDFPGIKIVEQQSAEWQRNKSMDLTSNWLLAGSRFDAIVANNDEMAIGAAMALQQSGKAKGEVAIVGIDGLPDGLAAIKRGMLVASVFQDPKAQATSAVQAAIKMIKGEPVETEVWVPFQLIKPEQLAVFEQRYK	PGPT0016780_451	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISM	CE-BACTERIAL_FITNESS-RHIZOPINE_TRANSPORT,PGPT0016780-rbsB|mocB|mglB-K17213	NA	NA
D1-36_02321	792	otnI	COG3622	2-oxo-tetronate isomerase	ATGAGTCTCGTACCGTTCAAGCTGGCGGTCAGCGCGGAGATGGTGTTCCTCGACCTGCCCTTTATCGAACGCGTCAAACGCATCCATGCGCTGGGCTTCAGCGTCGAGATATGGAACTGGACGACCAAGGACATCCCTGCCCTCGCCGCGACGGGCGCTGACTTTACCTCGATGACCGGCTACATCACGGGCAACCTCACCGACCCCGAGGACATCCGGCAACTGCTGGACAGTGCCCAGGAGTCCTTGGGTGTCGCCGCGCAATTGAATTGCCCGAGCCTGAACCTGCACGGCACCGGCCTGGGGGACCAGGGTCTGCCGGTCAAACCCGTGGCCCAGGCCACCGGCCGCATGTGGTTGAGCGCCTGCAAGACCCTGGAAAAAATCGCCCGCCTGGGGGAAGACGCCGGCCGTGTGTTCCTGCTGGAAAACCTCAACACCGAAGTCGACCATCCGGGCACGCCTTTCGCTCGCGCCGACGACACCCTGGCGCTGATCGAAGCCGTAGGCAGCCCGCATCTGAAAATGAACCTGGACCTCTATCACGCGCAGATCGGCGAAGGAAACCTGACCGAACTGATCCAGCGCGCCGGCGGCGCCATCGGTGAAATCCAAGTCGCCGATGTGCCTGGCCGCATGGAGCCCGGCACTGGCGAAATCAATTATCCGGCGATTGCCAGGGCGTTGTCCGGCATGGGATACAGCGGTGTAGTCGGCCTCGAAGGTTGGGCCAGCGGAGACAGCGAGCGGGCGCTTGAGCGATTCAGGCGGGCCTTCACGCTGGATGGGTAA	MSLVPFKLAVSAEMVFLDLPFIERVKRIHALGFSVEIWNWTTKDIPALAATGADFTSMTGYITGNLTDPEDIRQLLDSAQESLGVAAQLNCPSLNLHGTGLGDQGLPVKPVAQATGRMWLSACKTLEKIARLGEDAGRVFLLENLNTEVDHPGTPFARADDTLALIEAVGSPHLKMNLDLYHAQIGEGNLTELIQRAGGAIGEIQVADVPGRMEPGTGEINYPAIARALSGMGYSGVVGLEGWASGDSERALERFRRAFTLDG				NA	NA	NA	NA	NA
D1-36_02322	1023	iolG_1	COG0673	Myo-inositol 2-dehydrogenase	ATGGGTACGTCAAAAACCGTCCGCCTGGGTCTTATCGGTGCGGGTCGCATGGGCAGCTTTCACGGCCTGACCGCCGCTCGCCACATCCCCGGCGCATACCTTGCCGCCATTGCCGATCCTACCCCCGGCCAGGCCGAGCGCCTGGCCGCAGAACTAGGCGTAGGGAAGGTTCATACCGATCCACAACAGTTGCTGAATGACCCGGATATCGACGCGGTGCTGATCGCCGCGCCAGCTCGCAGCCACGCCGAACTGGTGATCAGCGCGGCGCAGGCGGGCAAAAGCGTTTTCTGCGAAAAACCCATGGCCGTCACGCTGGAGGAAGCCGATCGGGCCATTGCCGCCGCTGCCGATGCGAGGGTCACGCTGCAAGTCGGCTTCAACCGGCGCTTCGCCAAGAGCTTCCGCACCGCGCACCTGGACGTGGTCGCCGGCCGAATCGGCACGCCACAGCTTCTGCGTTCGCTGACCCGCGACCCGGCGCTGAACAATCCCGCCGCCTCGCCGCAATGGGTCATTTTCCTGGAGACGCTGATCCACGACTTCGACACCCTGCGCTACCTCAATCCGGGTGCAGAAGCGGTCGAGGTGTTCGTCATGGCCGACGCGTTGATCGCGCCGGACTTCAAACACAAAGGGTTCCTCGACACGGCGGTGGTCACGATCCGATTCGACAACGGCGCCATCGCCACGGCCGAGGCTAACTTCCAGGCGGTTTACGGCTACGACGTCCGCGGCGAAGTGTTCGGCAGCGCCGGCATGCTGACCATGGGCAGCGTCAACGACAGCGACTTGCTGCGCTACCTGGCAAGTGGCGTCCAGGCCGATACCCAGCGCATGGACACCGACTTGCTGCGTGACGCCTACGTGACCGAGCTCAATCACTTCGTCAATTGCGTACGCAGCGGTGAAAAGCCCCTAGCCAGCGGTGAGGACGCCCGGGCCGCGCTGGCGATTGCCCGTGCCTGTATCGAGTCTTTCCAGCAAGGCAAAGCGGTGCGTGTCCAAGGAGCGCAGTCATGA	MGTSKTVRLGLIGAGRMGSFHGLTAARHIPGAYLAAIADPTPGQAERLAAELGVGKVHTDPQQLLNDPDIDAVLIAAPARSHAELVISAAQAGKSVFCEKPMAVTLEEADRAIAAAADARVTLQVGFNRRFAKSFRTAHLDVVAGRIGTPQLLRSLTRDPALNNPAASPQWVIFLETLIHDFDTLRYLNPGAEAVEVFVMADALIAPDFKHKGFLDTAVVTIRFDNGAIATAEANFQAVYGYDVRGEVFGSAGMLTMGSVNDSDLLRYLASGVQADTQRMDTDLLRDAYVTELNHFVNCVRSGEKPLASGEDARAALAIARACIESFQQGKAVRVQGAQS				NA	NA	NA	NA	NA
D1-36_02323	2001	norR_2		Anaerobic nitric oxide reductase transcription regulator NorR	ATGAACACACAGCCGATGACGTTGAGCGTTGAAGACCGTGATTACCTGACTGCCCTGGGGCCTGCGTCATTGAATGGCGGATCAAGCCCGGCGCTGGATGAAGCCTGGCGAGCCTGCTTGAGCGGCGTCACCGAGCGTCCTGAAGGTGTCCGGCAGGTTATCTGGAGTTCCTGGCAGCGTAGCGTCGATGCCGGCCTCGACTCGGCAGACGGCGAGTACCGTTTTGTCTCGCCTGCCGAGCTGACCGCCACACTGGCGGCGAATCGACTGTTGATCGCCGCGGCGGCGCAGGTCATGCGCGGCCTGCTTGCCTACAATCCCAACGGGCATATCAACCTCACGGATGCCCAGGGCACCACCTTGTACTTCTGTGGCTTGGACCTCACACCCATCGGCAGTCGCTTGCTTGAATCGGTACAGGGCACCAATTGCACCGGCCTGGCGCTGGTTGAAGACCGCTTGGTATACGTGCTGTCTGGCGAGAATTTCGGCGCCGGCCTGCGCCAGCGGCAGATGCATTGTGCCGCCGCGCCCATCCGCGATGCCCATGGCCGGACCCTGGCCATGTTGACCCTAACGGCCGAGCCCGGCTGGTTTCACTTCCACACCTTGGGCACCGTCCAGGCTGCAGCCGAAGCTGTTTCCAGGCAAATGGCGCTGCAAGCGTTGCTGGAAGAACAACAAACGGTTTTGGAAGTGCTCAACGAGGGCTTGGTCGTATTGGATGAAAAAAACAATATCAAGGCCCTCAACCATTACGCCCGGCAATTGTTTCGTGTCGACCCTGCCTGGCTGGGCAAGCCGTTCCAGAGCCTGGGCCAGACCGAACTGAGCGATGAAATCCTGCGCAGGGCCGGGGAAGGAGTACGGGACCTGGACTGTACGTTTGAGCTGCACGATCGCAGCCACCTGGCCTGCCTGGTGTCGGTCTGTCCCCTGGCGCAGGGCGGTCGCATTGTTTCATTGCGCGAGAACCGGCGCATCCGCGAGATTACCCGGCGCATCATGGGTACCCAGGCCAGCTATACCTTCGAAACCATCCAGGGCCATTCACGCGCCATCCAGGACGCATTGCACCTGGCTCGAATCGCCAGCCGCAGCGATTCGACCACGCTGATTCTCGGGGAGAGCGGCACCGGCAAGGAACTGTTTGCCCAGGCCATCCACAATGGCAGCGAGCGTTGCGGCGGACCTTTCGTTGCGGTCAATTGCGGGGCCATTCCTCGCGACCTGGTCCAGAGTGAACTGTTCGGCCATGTCGAAGGCGCGTTCACCGGATCGGTGCGTGGCGGTTCGGCGGGCAAGTTCGAATTGGCTGACGGCGGGACGATCTTTCTCGACGAAATCGGCGACATGTCATTCGATGCTCAAGTCAGCTTGCTGCGTGTCCTGCAGGAAGGCGAAGTCACTCGGGTGGGGGCGAAAAAATCGTTGCGGGTGAACGTGCGCATCATCGCTGCGACCCATCGCAACCTGAGCCAGGCCGTGGCCGAAGGGGCTTTTCGCGAAGATCTTTATTACCGCCTCAACGTGCTGGGCCTGACGGTGCCGCCCTTGCGCATGCGCCGCGAAGACGTGCCGATGCTGGCACGGCATTTTCTTGCGCGTTGCGCCCGGTCGCTGCGAAAACCCATGCGCGACCTGTCCCCGGAGGCGCTGGAGCTCTTGGGCGCCTACCACTGGCCGGGCAACGTCCGTGAGCTGGAAAACGTCATTGAGCGCGCGACCAACCTGGCTGGTACCGAGCTGATCCAAGCGAGTGATCTTGCGTTGGAGATCAGGCAGGGAGGACAGCCAGCGGCCCGGCATTTTGCCCCCGAGCCGCGGGCAGCCGTGGATCTAGGTACCCATGAAATGAATGCGATCATCGCGGCCCTCAGGGACACGCGGGGCAATATCCGCCTGGCCGCCCGGCAGTTGAACGTTTCCCGTGGCGGTTTGTACAACAAGATGAACCGATTCGGGCTCAAGGTGGAAGCGTTCCGTTCGGGATTGGCCTGA	MNTQPMTLSVEDRDYLTALGPASLNGGSSPALDEAWRACLSGVTERPEGVRQVIWSSWQRSVDAGLDSADGEYRFVSPAELTATLAANRLLIAAAAQVMRGLLAYNPNGHINLTDAQGTTLYFCGLDLTPIGSRLLESVQGTNCTGLALVEDRLVYVLSGENFGAGLRQRQMHCAAAPIRDAHGRTLAMLTLTAEPGWFHFHTLGTVQAAAEAVSRQMALQALLEEQQTVLEVLNEGLVVLDEKNNIKALNHYARQLFRVDPAWLGKPFQSLGQTELSDEILRRAGEGVRDLDCTFELHDRSHLACLVSVCPLAQGGRIVSLRENRRIREITRRIMGTQASYTFETIQGHSRAIQDALHLARIASRSDSTTLILGESGTGKELFAQAIHNGSERCGGPFVAVNCGAIPRDLVQSELFGHVEGAFTGSVRGGSAGKFELADGGTIFLDEIGDMSFDAQVSLLRVLQEGEVTRVGAKKSLRVNVRIIAATHRNLSQAVAEGAFREDLYYRLNVLGLTVPPLRMRREDVPMLARHFLARCARSLRKPMRDLSPEALELLGAYHWPGNVRELENVIERATNLAGTELIQASDLALEIRQGGQPAARHFAPEPRAAVDLGTHEMNAIIAALRDTRGNIRLAARQLNVSRGGLYNKMNRFGLKVEAFRSGLA	PGPT0001030_416	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,PGPT0001030-acoR-K21405	NA	NA
D1-36_02324	1302	hcaB_2		3-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenase	ATGATTTCCCCGGCAACCGGAATGAGGACGGGCGAACGCTATGCCGTCGAAAGCGTCGAGCGAGCGCCACATTTCCCGGGCTTTTTCCTTGATGGAAAGTATTACCTGGGCCCAGAACTGAACACCGCGGTGGGCTGGCTGGAGAGCGAAAAGTTTGTCTATGACCAACTCGACCCCGAGGGCGAGCCGGTGTACCCGGACAGGGTCGCCGGCACCGTCCAGGACCTGACGCTGATCATGGCGGACGGGGTGCGCCTGAAGCTTTCGCCCATGCAGCCCGAGATCCATCAGTCGACAGGCGAAACCGCCCCGAGCCGTAAGACGACGTCGTATCCCTTGTCGGAGAAACTGGTGGTCATCACCGGCGCTTCGAGCGGGATCGGCCGCGCCACCGCCCAGGCGTTTGCCAGGCAGCGCGCACGCCTGGTCCTGGCGGCACGCGACCGTGCGGCGCTCGATGAGGTCGTTGCCCAATGCCAGGCCCAGGGAGCCGACGCGTTGGCGGTGTGCACAGACGTCACCAGCAGTGAGCAAATGCAGGCGCTTGCCGCCGAAGCCGCAACGTTCGGTGACGGTCGCATTGACATCTGGATCAACAATGCCGGCGTGGGTGCGGTAGGCAGCTTCGAGCAGACGCCGCTCGATGTGCATGAGCAGGTCCTGCAAACCGATTTACTTGGCTACCTGCGCGGCGCCTACGTGGCCTGGCCGTATTTCAAGAAGCAACAACGCGGCATCCTGATCAATACCCTGTCGTTAGGCAGTTGGGTCGCCCAGCCTTACGCCGCCGCCTATTCCGCCAGCAAGTACGGACTGCGCGGGTTGTCCGAAGCCTTGCGCGGTGAGTTGGGGGAATACCGGGACATCCACGTCTGCGACATCTATCCCGCGGTCATCGATACGCCGGGTTTTCGCGATGGCGCCAACTTCACCGGCCACGCGCTGAAGCCACCACCACCGGTCTACGACCCCCATCGCGTCGCCGAGGCGATGGTCAGTTGCGCACTCAACCCCAAGCCCACCACCACCGTGGGCAGCGCCGCGACACTGGCAAGGATGGCGCATTTTCTTGTGCCCGGGTTTGCGCAACTTTCCGGCTGGCTGACACGCCGGGGCCTGGATCGCAGCCCGGCAATGGCTTCATCCTCCGGAAACCTGTTCGCCCCGCCCAGCGGCCAGCGACGTGTCGAAGGCGGTTGGCGCAAGCCGACGCGGCGATCCGCGCCCCTGCTGGTGGCGGGCGCCGCATTGTTGATTGGTGGGTGCCTGGTGGCGCTGGGTCGGGAACGAAGTCGTCGCTGA	MISPATGMRTGERYAVESVERAPHFPGFFLDGKYYLGPELNTAVGWLESEKFVYDQLDPEGEPVYPDRVAGTVQDLTLIMADGVRLKLSPMQPEIHQSTGETAPSRKTTSYPLSEKLVVITGASSGIGRATAQAFARQRARLVLAARDRAALDEVVAQCQAQGADALAVCTDVTSSEQMQALAAEAATFGDGRIDIWINNAGVGAVGSFEQTPLDVHEQVLQTDLLGYLRGAYVAWPYFKKQQRGILINTLSLGSWVAQPYAAAYSASKYGLRGLSEALRGELGEYRDIHVCDIYPAVIDTPGFRDGANFTGHALKPPPPVYDPHRVAEAMVSCALNPKPTTTVGSAATLARMAHFLVPGFAQLSGWLTRRGLDRSPAMASSSGNLFAPPSGQRRVEGGWRKPTRRSAPLLVAGAALLIGGCLVALGRERSRR				NA	NA	NA	NA	NA
D1-36_02325	1605	treA_1	COG1626	Periplasmic trehalase	ATGCGTTCTGTTTATCTCGCCAGCCTGTCCTTCACCGCGTTGTTGTGCGCAGCATGCTCAAGCCAATCGCCTGCGACATGGCGCTACGAGGACGCGCGAAGTCGCACCCCCGTGCCGCCCGACCAGGCCTATCCCGAATTGTTTGAGGCGGTGCAAGGCAAACAGTTGTTCACTGACCAAAAACACTTCGTCGATGCGCTGCCCAAGCGCGACCCCTCGCAGATTCGCGCCGATTACCTGGCCCGCCGCGACAGTGCCGATTTCGATCTCAACGGGTTCGTGAAGGACAACTTCGTCGAGTCAGGCCAGGCTGAGAGCCCTACCCCAAAACCCGGCGCGCCGATCAAGGAACACATCGACAATCTCTGGCCGGTGCTCAGCCGAACCTACACCGAGGTTCCGCAATACAGCAGTCTATTGCCGTTGCCGCAGCCCTATGTCGTGCCAGGCGGGCGTTTCCGAGAAATGTATTACTGGGATTCGTATTTCACCATGCTGGGGTTGGAGCAAAGCGGTGACCAGGCGCAGGTTCGCCAGATGACCGACAACTTTGCCTACATGATCGACACCTTCGGCCACATTCCCAACGGCAATCGCACCTACTACCTGAGCCGATCGCAGCCGCCATTTTTTGCCTATATGGTGCAATTGCAGGCGCATATCGAGGGCGAGCAGGCCTACGGGCGTTACCTTGGGCAACTGCAAAAAGAATATGCCTACTGGATGGAAGGGGCGCAGACCCTCAAGCCGGGTGAGGCTGGGCGACACGTCGTCAAGCTTGCCGATGGCAGCGTGCTCAACCGCTATTGGGACGCCAGCCCCACGCCTCGTCAGGAGTCGTGGCTGCAGGACGTCAAGACCGCTGAACAGGCAGCCGACAGGCCCAAGCAAGAAGTCTGGCGCGACTTGCGCGCAGGCGCTGAAAGCGGCTGGGATTTCAGTTCCCGCTGGCTGGGAGACGGTAAAAACCTGGCGACCATTCGCACGACCTCCATCGCACCCGTGGACCTGAACAGCCTGATGTATCACTTGGAGCGCACCATCGCCAAGGCCTGTGAAACGGTGCGGAACACGCCGTGTACCCAAGCCTATGGGCAACGGGCCGAGCAACGCCAGCGCGCCATCGAGACGTACCTGTGGAACGCCGAAGGCGGCTATTACGTGGACTACGATTGGCAGCAGAACCGGCAGCGCCCGGCACTCACTGCCGCGACGCTGTTCCCGCTCTATACCGGCCTGGCTTCCAGCGAACGCGCCAACCGCACTGCCGACGCCGTGCGCAAGGGCTTGCTGCGTCCCGGCGGCATCGCCACCACCCAGGTCAATAACGGCCAGCAGTGGGATGAACCCAATGGCTGGGCGCCCCTGCAATGGGTGGCGGTCGAGGGGTTGGAGCGCTACGGCCAAACCGACCTGGCCAGGGAGGTTGGCAGCCGTTTTCTGCAACAGGTCCAGGATCTCTACCGCAAGGAAGACAAACTGGTCGAGAAGTACGACTTGTCCGGTCAAGGCGACGGTGGGGGCGGGGGCGAGTATGAATTGCAGGATGGCTTTGGCTGGACGAACGGCGTGACGCTTAAATTGCTGGGCAAATACGGCGGTTGA	MRSVYLASLSFTALLCAACSSQSPATWRYEDARSRTPVPPDQAYPELFEAVQGKQLFTDQKHFVDALPKRDPSQIRADYLARRDSADFDLNGFVKDNFVESGQAESPTPKPGAPIKEHIDNLWPVLSRTYTEVPQYSSLLPLPQPYVVPGGRFREMYYWDSYFTMLGLEQSGDQAQVRQMTDNFAYMIDTFGHIPNGNRTYYLSRSQPPFFAYMVQLQAHIEGEQAYGRYLGQLQKEYAYWMEGAQTLKPGEAGRHVVKLADGSVLNRYWDASPTPRQESWLQDVKTAEQAADRPKQEVWRDLRAGAESGWDFSSRWLGDGKNLATIRTTSIAPVDLNSLMYHLERTIAKACETVRNTPCTQAYGQRAEQRQRAIETYLWNAEGGYYVDYDWQQNRQRPALTAATLFPLYTGLASSERANRTADAVRKGLLRPGGIATTQVNNGQQWDEPNGWAPLQWVAVEGLERYGQTDLAREVGSRFLQQVQDLYRKEDKLVEKYDLSGQGDGGGGGEYELQDGFGWTNGVTLKLLGKYGG	PGPT0019170_1319	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-TREHALASE,PGPT0019170-treA|treF-K01194	NA	NA
D1-36_02326	918	dmlR_16		HTH-type transcriptional regulator DmlR	ATGAACACAACCCGTGATCAATTCCCCTTGCCGGAGGACCTGAAGGTCTTTCTGACTGTCGTCCGAAAGAATGGCTTTGCCAGCGCGGCCGAGGCATTGGGCTATTCACCGGCCTATATCAGCAAGCGCATCTCGGTATTGGAGTCGACGCTCGCCACCCGACTGCTGCATCGCACGACCCGGCGCATCGCATTGACCGACGACGGCGAGCGCGTGCGGGTGTGGGCCGAAAAGCTGCTGGGGGATTTCGATGAGTTCGTCGGTGAAATCGCCCGGGCTCGCCATCAGCCCACCGGCTCGTTGCATATCTGCAGCAGCTTTGGTTTTGGCCGCAACCATGTCGCGCCGGCAATCGGCAAGCTGTCGCAGACGTACCCTGGCCTCGACATCCGACTGGATGTGTTCGACCGCGTCGTCGATATCGTTGGCGAGGGGTTCGACCTTGAGATCCGCGTCGGTGATGACCTGCCAGGGCAGCACCTGGGCCGCAAGCTGGTGAGCAATCGGCGCGTGCTCTGCGCAGCCCCCGGGTATCTGGAACGACGGGGCACACCGCGTTCGCTCGATGACCTCAAGGACCATGATTGCCTGGTGCTCAAGGAGCGCGACAACGCCTTCGGCATCTGGACCTTGAGCAAGGATGGGGTGCAGGAGACTGTGCGCATCGGCGGCCCGTTGTCCTCCAACAGCGGCGAGATTGTCCTGGAATGGGCGTTGAGTGGCGGCGGGATCCTGCTGCGCTCGATGTGGGACGCCGGGCCCCTGCTTGAACAGGGGCGGTTGGTTCAGGTGCTGCCGGCGTATTCGCAAAGCGCCAACGTCTGGGCGGTGTACCCGACCCGGCTCAGTCAGTCGGCGAAGCTGCGGGTTTGCGTTGAATTTCTTGAGACGTGTTTTCGGGACTTGTCGGCTGGGTAG	MNTTRDQFPLPEDLKVFLTVVRKNGFASAAEALGYSPAYISKRISVLESTLATRLLHRTTRRIALTDDGERVRVWAEKLLGDFDEFVGEIARARHQPTGSLHICSSFGFGRNHVAPAIGKLSQTYPGLDIRLDVFDRVVDIVGEGFDLEIRVGDDLPGQHLGRKLVSNRRVLCAAPGYLERRGTPRSLDDLKDHDCLVLKERDNAFGIWTLSKDGVQETVRIGGPLSSNSGEIVLEWALSGGGILLRSMWDAGPLLEQGRLVQVLPAYSQSANVWAVYPTRLSQSAKLRVCVEFLETCFRDLSAG				NA	NA	NA	NA	NA
D1-36_02327	606	leuD1_2	COG0066	3-isopropylmalate dehydratase small subunit 1	ATGCAACCCTTCAATACTGTAAGTGGCACCGCCGCCCCGCTGCTGGCCGCCAACATCGACACCGATGTGATCATGCCCAAGCAGTTCCTCAAGGGCATCGACCGCAACGGGCTGGACCGTGGCCTGTTCTTCGACTTGAAGTGGCTGGGCAACGGCGATCCCAATCCTGAATTCGTGCTCAACAAACCGGGCTGGCGCGGCGCAACGTTCCTGGTGGTGGGGGAAAACTTCGGATGTGGCTCAAGCCGCGAACATGCGGTGTGGGGTTTGAAGCAAGTGGGCATCCGGGCGTTGATCGGCAGCAGCTTCGCCGGGATCTTCTATGACAATTGCCAGCGTAACGGGGTGTTGGTCATTCAATTGCCCGAAGCGCAACTCAAGAGACTCGCGCAGACGATCAGCCGCGCCGAAACCGCCAGCATCAGCGTTAACCTGCCGGCGCAACAGATCAGATTGGCGGACGGTGAGGTAATTTCTTTCGAGATCGACGAGCTGCGCAAGCAATCCTTGCTGCTCGGCCTGGATGCCATTGGCACGACCCTTCAACGTGCAGACCAGATACGCCGCTTCGAAAGCCGGCACCTCGCGGAAAATCCCTGGCTGTAG	MQPFNTVSGTAAPLLAANIDTDVIMPKQFLKGIDRNGLDRGLFFDLKWLGNGDPNPEFVLNKPGWRGATFLVVGENFGCGSSREHAVWGLKQVGIRALIGSSFAGIFYDNCQRNGVLVIQLPEAQLKRLAQTISRAETASISVNLPAQQIRLADGEVISFEIDELRKQSLLLGLDAIGTTLQRADQIRRFESRHLAENPWL	PGPT0001443_1729	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALATE_UTILIZATION,PGPT0001443-leuD-K01704	NA	NA
D1-36_02328	1422	leuC_2	COG0065	3-isopropylmalate dehydratase large subunit	ATGAACAGCCCCCGAACGCTCTATCAAAAGCACATCGACAGCCATACCGTTTGCCCGTTGGACGATCAGGGCCACGTGCTGTTGTACATCGACCGCCAGGTCGCCAACGAATACACCAGCCCGCAAGCCTTCAGCGGCCTTCGTGAAAACGGCCGCAGCGTCTGGCGGCCGAGCGCGACGCTGGCGGTGGTCGATCACGTCAACCCGACGGCGCCCCAGCGCATCGCAGCCATGCCGGATGCCGGCGGCGCCCGGCAGGTCTCGTACTTCGCAGAAAACTGCCGGGACTTTGGCATCGAACTGTTCGACGTGCTGGACAAACGCCAGGGCATCGAGCACGTCGTCGCCCCCGAGCAAGGCTTCATCCTGCCGGGCATGGTGGTGGCCGCGGGCGACAGCCACACCACGACATACGGTGCGTTGGGGGCCTTTGGTTTTGGCATCGGCACGTCTGAAATCGAACACCTGCTGGCTACGCAAACGCTGGTCTACAAGCGCCTGAAAACCCTGCGCGTCACGGTCAACGGCACGCTTGGGGCAGGTGTCACCGCCAAGGACATCATCATGGCGCTGATCGAAAGGATCGGCGCCTCGGGCGCCACCGGTTATGCGATCGAATTCACCGGCCCGGCAATCACCGCCCTTAGCGTCGAAGCCCGCATGACCATCTGCAACATGGCCGTGGAAGCCGGCGCCCGGGGCGCGTTCATGGCGCCGGATGACAAGGTTTTTGCCTATCTGCAAAGCAAGCCCCGCGCTCCCAGGGGCGAGCTGTGGGAACGGGCCGTGACCAAATGGCGAGCCCTGCACAGCGATGAAGGCGCGGTGTTCGACCGGGAAGTGACGCTCGATGTCGACGCATTGGAACCCATGGTCACCTGGGGCACCAGCCCTGACCAGGCTGCACCGATCGGAAGCCAGGTACCCGACCCTGCGACAGAACCCGACCTGATCCTGCGCCAAGGCCTGCAGCGTGCCCTCAACTACATGGGCCTGACGCCAGGCATGCCGCTCGCCGACGTGGTCATCAACCATGCTTTCATCGGCTCGTGCACCAACGCGCGGATTGAAGACTTGCGCGATGCGGCGCGTGTCGTACAGGGCAAGCACGTTGCCGCCCATGTGCGCGCGATGATCGTGCCCGGCTCGACCATGGTGCGCGAACAGGCCGAAGAAGAAGGCCTGGCGGCAATATTCCGCGAAGCCGGTTTCGAATGGCGCCAATCCGGCTGTTCGATGTGCCTGGCGATGAACGATGACGTGCTCGCCCCTGGGGATCGCTGCGCCTCCAGTACCAATCGCAACTTCGAAGGACGCCAGGGCGCCGGCGCGCGCACCCACTTGATGAGCCCGGCCATGGTGGCCGCCGCCGCGATTGCTGGTCATTTGACCGATGTTCGTTCACTGCTGCCGGAGGCCTGA	MNSPRTLYQKHIDSHTVCPLDDQGHVLLYIDRQVANEYTSPQAFSGLRENGRSVWRPSATLAVVDHVNPTAPQRIAAMPDAGGARQVSYFAENCRDFGIELFDVLDKRQGIEHVVAPEQGFILPGMVVAAGDSHTTTYGALGAFGFGIGTSEIEHLLATQTLVYKRLKTLRVTVNGTLGAGVTAKDIIMALIERIGASGATGYAIEFTGPAITALSVEARMTICNMAVEAGARGAFMAPDDKVFAYLQSKPRAPRGELWERAVTKWRALHSDEGAVFDREVTLDVDALEPMVTWGTSPDQAAPIGSQVPDPATEPDLILRQGLQRALNYMGLTPGMPLADVVINHAFIGSCTNARIEDLRDAARVVQGKHVAAHVRAMIVPGSTMVREQAEEEGLAAIFREAGFEWRQSGCSMCLAMNDDVLAPGDRCASSTNRNFEGRQGAGARTHLMSPAMVAAAAIAGHLTDVRSLLPEA	PGPT0001442_1435	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALATE_UTILIZATION,PGPT0001442-leuC-K01703	NA	NA
D1-36_02329	1137	xylH	COG4214	Xylose transport system permease protein XylH	ATGAACCAAGTCAAACAAGTGTTCACCCGCTACAAAATGCTCGCCCTGGTGATTGCCGTGGCGGTCATCTGGTTGTTCTTCAGCTGGCAGACCGAGGGCGGATTCCTGACTCCGCGCAACCTCTCCAACCTGCTGCGGCAGATGTCCATCACCGGCATCCTGGCTTGTGGCATGGTGCTGGTGATCATCAGTGGCGAGATCGATTTGTCGGTGGGCTCGTTGCTCGGTTTATTGGGAGGTCTGGCGGCGATACTCGACGTGGTCTATCACATCCCGCTGCTGGCGAACCTGAGCCTGGTCGCCCTGTGTGGGCTGATGATCGGCCTGGCCAACGGCTACATGACCGCCTACCTGCGCATCCCCTCCTTCATCGTCGGCCTGGGTGGCATGCTGGCGTTTCGCGGAATCCTGCTGGGCATCACTGGCGGCACCACCATCGCGCCGGTATCGCCGGAGCTGGTTTACGTCGGCCAGGGTTACCTGCCTCACGCAGTCGGCACGGGCCTGGGCGTGTTGTTGTTCGCGCTGACGCTTTTCCTGACCTGGAAACAGCGCCGCAACCGCGCGCTGCATGGCCTCGCGGCCCATTCCCTGACGCGGGACGTGGCGCGGGTGGTGTTGATCGGCGCCGTGCTGGCCGGGTTCGTCTATACGCTCAACAGCTACGACGGGATCCCGGTTCCGGTGCTGCTGCTGTTGGTTCTGCTGGGGGTGTTCAGCTACGTGACCAGCCAAACCGTATTCGGCAGGCGTGTCTACTCGGTGGGCAGCAACATGGAGGCCACGCGCCTGTCCGGCATCAATGTACAGGCAGTGAAGCTGTGGATCTTCGGCATCATGGGCGTGATGTGCGCCCTCGCCGGCATGGTCAACACCGCGCGCCTGGCCGCCGGCTCGCCCTCGGCGGGCAACATGGGCGAACTGGACGCTATCGCCGCCTGCTTTATCGGCGGCACATCCATGCGCGGTGGCTCGGGCACGGTCTACGGCGCGCTGCTGGGCGCGCTGGTCATCACCAGCCTGGACAACGGCATGTCCATGCTCGACGTCGACAGCTACTGGCAGATGATCGTCAAGGGCAGCATTTTGGTCCTGGCCGTGTGGGTGGATGTCAGCACCCGCACCGCCCGACGCTGA	MNQVKQVFTRYKMLALVIAVAVIWLFFSWQTEGGFLTPRNLSNLLRQMSITGILACGMVLVIISGEIDLSVGSLLGLLGGLAAILDVVYHIPLLANLSLVALCGLMIGLANGYMTAYLRIPSFIVGLGGMLAFRGILLGITGGTTIAPVSPELVYVGQGYLPHAVGTGLGVLLFALTLFLTWKQRRNRALHGLAAHSLTRDVARVVLIGAVLAGFVYTLNSYDGIPVPVLLLLVLLGVFSYVTSQTVFGRRVYSVGSNMEATRLSGINVQAVKLWIFGIMGVMCALAGMVNTARLAAGSPSAGNMGELDAIAACFIGGTSMRGGSGTVYGALLGALVITSLDNGMSMLDVDSYWQMIVKGSILVLAVWVDVSTRTARR	PGPT0016655_1003	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_XYLOSE_TRANSPORT_I,PGPT0016655-xylH-K10544	NA	NA
D1-36_02330	1557	xylG	COG1129	Xylose import ATP-binding protein XylG	ATGTCTGAATACCTGCTGCAAATGAACGGCATCGTCAAGACCTTCGGCGGTGTCAAGGCGCTGAACGGCATCGACATCAAGGTCAGGCCGGGTGAATGCGTCGGCCTGTGCGGCGAGAACGGCGCCGGCAAATCCACCTTGATGAAAGTCCTATCGGCGGTCTATCCCTACGGCACCTGGGAGGGTGAGATCCTCTGGGACGGCCAGCCGCTGAAGGCGCAATCGATCAGCGAAACCGAAGCTGCCGGCATCGTCATCATTCACCAGGAACTGACCCTGGTGCCCGACCTGTCGGTGGCCGAAAACATCTTCATGGGCCACGAGCTGACCTTGCCCGGCGGACGCATGAATTACCCGGCGATGATCCACCGCGCCGAAGCCCTGATGCGTGAACTCAAGGTGCCGGACATGAACGTCTCGCTGCCGGTTTCGCAGTACGGCGGTGGCTACCAGCAATTGGTCGAGATCGCCAAGGCCCTGAACAAACAGGCCCGCCTGCTGATCCTCGACGAGCCTTCGTCGGCCCTGACCCGCTCGGAAATCGAAGTGCTGCTGGACATCATCCGCGACCTCAAGGCCAAGGGCGTGGCGTGCGTCTACATCTCCCACAAGCTCGATGAAGTGGCCGCCGTGTGCGACACCATCGCGGTGATACGCGATGGCAAACACATCGCCACCACTGCCATGGCCGACATGGATATTCCCAAGATCATCACGCAAATGGTCGGGCGGGAGATGAGTAACCTCTACCCCACCGAACCCCACGCTATCGGCGAGGTGATTTTCGAGGCACGCCATGTGACCTGCTACGACGTCGACAACCCCAGGCGCAAACGCGTCGACGATATTTCGTTCGTGCTCAAGCGCGGCGAAATCCTTGGCATCGCCGGGTTGGTGGGTGCGGGTCGCACGGAGCTGGTGTCGGCGTTGTTCGGCGCCTACCCCGGCCGACATGAGGGCGAAGTCTGGCTGGACGGCCAGCGCATTGACAGCAGCACGCCCCTCAAGTCGATCCGGGCCGGCCTGTGCATGGTCCCTGAAGATCGCAAGCGCCAGGGCATCATCCCGGACCTGGGCGTCGGCCAGAACATCACCCTGGCGGTCCTGGAAAACTTCTCGAAGATGACCCGCATCGACGCCGAGGCCGAGCTGGGCAGCATCGACCGGGAAATCTCGCGCATGCACCTCAAGACCGCGAGCCCGTTCCTGCCGATCACCAGCCTTTCCGGTGGCAACCAGCAGAAAGCTGTGCTGGCGAAGATGCTCCTGACCAAGCCTCGGGTATTGATTCTCGACGAACCCACCCGGGGCGTGGACGTCGGCGCCAAGTACGAGATCTACAAGCTGATGGGCGCGCTGGCGGCCGAAGGCGTGTCGATCATCATGGTGTCCTCGGAACTGGCCGAAGTGCTGGGTGTGTCGGACCGCGTGCTGGTGATCGGCGAGGGGCAACTGCGCGGCGATTTCATCAACCAGGAATTGACCCAGGAACAGGTGCTTGCCGCCGCGCTCAGCCATCCCGAAAGCAATAACAACAATGATCGGAAGTCCGCGTAG	MSEYLLQMNGIVKTFGGVKALNGIDIKVRPGECVGLCGENGAGKSTLMKVLSAVYPYGTWEGEILWDGQPLKAQSISETEAAGIVIIHQELTLVPDLSVAENIFMGHELTLPGGRMNYPAMIHRAEALMRELKVPDMNVSLPVSQYGGGYQQLVEIAKALNKQARLLILDEPSSALTRSEIEVLLDIIRDLKAKGVACVYISHKLDEVAAVCDTIAVIRDGKHIATTAMADMDIPKIITQMVGREMSNLYPTEPHAIGEVIFEARHVTCYDVDNPRRKRVDDISFVLKRGEILGIAGLVGAGRTELVSALFGAYPGRHEGEVWLDGQRIDSSTPLKSIRAGLCMVPEDRKRQGIIPDLGVGQNITLAVLENFSKMTRIDAEAELGSIDREISRMHLKTASPFLPITSLSGGNQQKAVLAKMLLTKPRVLILDEPTRGVDVGAKYEIYKLMGALAAEGVSIIMVSSELAEVLGVSDRVLVIGEGQLRGDFINQELTQEQVLAAALSHPESNNNNDRKSA	PGPT0016660_84	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_XYLOSE_TRANSPORT_I,PGPT0016660-xylG-K10545	NA	NA
D1-36_02331	1002	xylF	COG4213	D-xylose-binding periplasmic protein	ATGAAAACATTCAAACGTACCCTGCTCGCCGGCGCCCTCGCCCTGCTATCGCTCCCGGCCATGGCCGACGCCACCCACCCCAAGATCGGTTTCTCCATCGATGACCTGCGTCTGGAACGCTGGTCCCGCGATAGAGACTACTTCGTCGCGGCGGCAGAAAAACTCGACGCCAAGGTTTATGTCCAGTCCGCCGATGCCAACGAGCAGAAGCAAATTTCCCAGATCGAAAACCTGATTTCCCGTGGCGTCGACGTCATCGTGATCGTGCCGTTCAACGCCACTGTGCTGACCAACGCCGTCGCCGAAGCCAAGAAGGCCGGGATCAAGGTGGTGTCCTATGACCGGCTGATCCTCAACGCCGATATCGACGCTTACATTTCCTTCGATAACGAAAAGGTCGGCGAGATGCAGGCCGGCGGCGTGTTGAAGGCAGCGCCCAAGGGCAACTACTTCCTACTCGGCGGCGCGCCTACCGACAACAACGCCAAAATCCTGCGTGAAGGCCAGATGAAGGTGCTGCAACCGGCCATCGACAAGGGCGACATCAAGATTGTCGGCCAGCAATGGGTGAAGGAATGGAACCCCACCGAAGCCCTGAGCATCGTCGAAAACGCCCTGACCCGGAACAACAACAAAATCGACGGCATCGTCGCCTCCAACGACGCCACCGCCGGCGGCGCCATCCAGGCCCTGGCCGCGCAAAAGCTGGCTGGCAAGGTGCCGATCTCCGGCCAGGACGCCGACCTGGCGGCGGTCAAGCGAGTGATCGACGGCACCCAGACCATGACGGTCTACAAGCCCTTAAAGCTGATCGCCTCCGAAGCCGCCAAGCTTTCGGTACAACTGGCGCGCAACGAAAAACCCACCTACAGCTCGCAGTACGACAATGGCAACAAGAAAGTCGACACCATCCTGCTCACGCCTACCGCGCTGACCAAGGACAACATCGACCTGCTGGAAAAGGACGGGTTCTACACCAAGGCGCAGATCGCGGGGCAGTGA	MKTFKRTLLAGALALLSLPAMADATHPKIGFSIDDLRLERWSRDRDYFVAAAEKLDAKVYVQSADANEQKQISQIENLISRGVDVIVIVPFNATVLTNAVAEAKKAGIKVVSYDRLILNADIDAYISFDNEKVGEMQAGGVLKAAPKGNYFLLGGAPTDNNAKILREGQMKVLQPAIDKGDIKIVGQQWVKEWNPTEALSIVENALTRNNNKIDGIVASNDATAGGAIQALAAQKLAGKVPISGQDADLAAVKRVIDGTQTMTVYKPLKLIASEAAKLSVQLARNEKPTYSSQYDNGNKKVDTILLTPTALTKDNIDLLEKDGFYTKAQIAGQ	PGPT0016650_1030	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_XYLOSE_TRANSPORT_I,PGPT0016650-xylF-K10543	NA	NA
D1-36_02332	1317	xylA	COG2115	Xylose isomerase	ATGTCGTACTTCCCCGATGTTCAGCCGATCCGCTATGAGGGCCCGGGCAGCGACTCGCCGCTCGCTTTCCGGCACTACGATGCCGACAAACTGATCCTAGGCAAACCCATGCGCGAGCACCTGCGCATGGCGGTCTGCTATTGGCACACCTTTGTCTGGCCGGGGTCCGATGTGTTCGGTGCGGGAACCTTCAAACGCCCATGGCAGCACGCAGGGGACCCGATGGAAGTGGCCATCGGCAAGGCCGAGGCGGCGTTCGAGTTTTTCTCCAAGCTGGGCATCGACTACTACTGCTTCCACGACACCGATGTCGCGCCGGAAGGCCAATCGTTGAAGGAATACCGCAACCACTTCGCGCAAATGGTCGATCACCTCGAGCGTCACCAGGAACAGACCGGCATCAAGCTGCTCTGGGGCACCGCCAACTGCTTCAGCAACCCGCGTTTTGCCGCCGGCGCCGCCAGCAACCCTGACCCGCAAGTCTTCGCCTGCGCCGCCGCCCAGGTGTTCAGCGCCATGAATGCCACCCAGCGCCTCAAGGGCTCCAACTACGTGTTGTGGGGCGGCCGCGAAGGCTACGAAACCCTGCTCAATACTGACCTGTCCCGCGAACGCGAGCAACTGGGCCGGTTCATGCGCATGGTGGTCGAGCATAAATACAAGATCGGCTTCAAGGGCGACCTGCTGATCGAGCCCAAGCCCCAGGAGCCGACCAAGCACCAGTACGATTACGACAGCGCCACGGTGTTCGGCTTTCTGCAGCAGTTCGGCCTGGAAAAAGAGATCAAGGTCAACATCGAGGCCAACCATGCGACCCTGGCCGGGCACAGTTTCCATCATGAAATCGCCACGGCGGTCTCCCTGGGGATCTTCGGCAGCATCGACGCCAACCGGGGCGATCCGCAGAACGGCTGGGACACCGATCAGTTCCCCAACAGTGTCGAAGAAATGACCCTGGCCACCTACGAGATCCTGAAGGCCGGAGGCTTCGGCAACGGCGGTTTCAACTTCGATTCCAAGGTACGCCGCCAGAGCTTGGACGACGTCGACTTGTTCCACGGCCATGTCGCGGCCATGGACGTGCTCGCCCTTTCGTTGGAACGCGCAGCCGCCATGGTGCAGGACGATCAGTTGCAGAAATTCAAGGACCAGCGCTACGCCGGCTGGCAGCAGCCGTTCGGCAAGGCGCTGCTCGCGGGGGACTACAGCCTCGAATCCCTGGCCGAGCATGCATTCACCAACGAGCTGAATCCGCAGGCGGTCAGCGGTCGGCAGGAAATGCTCGAAAACGTCGTCAACCGGTTCATCTACTCCTGA	MSYFPDVQPIRYEGPGSDSPLAFRHYDADKLILGKPMREHLRMAVCYWHTFVWPGSDVFGAGTFKRPWQHAGDPMEVAIGKAEAAFEFFSKLGIDYYCFHDTDVAPEGQSLKEYRNHFAQMVDHLERHQEQTGIKLLWGTANCFSNPRFAAGAASNPDPQVFACAAAQVFSAMNATQRLKGSNYVLWGGREGYETLLNTDLSREREQLGRFMRMVVEHKYKIGFKGDLLIEPKPQEPTKHQYDYDSATVFGFLQQFGLEKEIKVNIEANHATLAGHSFHHEIATAVSLGIFGSIDANRGDPQNGWDTDQFPNSVEEMTLATYEILKAGGFGNGGFNFDSKVRRQSLDDVDLFHGHVAAMDVLALSLERAAAMVQDDQLQKFKDQRYAGWQQPFGKALLAGDYSLESLAEHAFTNELNPQAVSGRQEMLENVVNRFIYS	PGPT0017550_1136	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
D1-36_02333	1188	xylR		Xylose operon regulatory protein	ATGAAAATCGTCCCGCCCGTCCACCGCATCGCCCTTTTGTTCAACGGCAGCAAGATCTACGACCGAGGCATCATCAGCGGCATCGGTAACTACCTGAGCAGTACCCGCGCGTCCTGGGATCTGTTTCTCGAGGAAGATTTCCTATGCAGGTTGAAAGGGATCGAGCGTTGGCAGGGCGACGGGATCATCGCCGACTTCGACGACCCGCTGATCGGCGAGGCGCTGGCCGGGATCAAGATGCCCGTGGTGGCGGTGGGCGGCTCGTACCAGGACGAGCGCGCCTATCCCAAGGGCATTCCCTATGTCGCCACGGATAACCATGGGCTGATCAAATTGGCTTACGAACATCTGATCGAAGCCGGACTGACGCGATTCGCCTGTTTCAGCCTGCCGGAGTCCCAAGCCAATCGCTGGGCCCAGGAACGGGAGAAAGCCTTTCGCCGGTTGATGCTGCGCGATGGTCTGCACGCCGAGGTCTATCGCGGCATGGGCACCAGCGCGCCGCTCTGGGACAGCGCCGTCGAACAGCAGATCGCCTGGCTGCAAAGCCTGCCCAAACCCATCGGCATCATCGCCGTCAGCGATGCGCGAGCCCGCCAGCTGTTGCAGGCTTGCCTGACCGCCGGCATTGCTGTTCCGGAGCAGGTGGCGTTAATCGGCATCGACAACGATCCACTGACCCGCAGCCTGACTCGGGTGCCGCTGAGCTCCGTGGTGCAGGGCACCGAAACGATGGGTCGGACCGCCGCGCGGCTGCTCCACCAGATGCTGCATGGCATGCCGTCCACAGGCACGCAGGTGCTGATCCCGCCGGATGCTATCAATGTGCAGACATCCAGTTTGCACCAGCCGCTGGGCAATCCTTATGTGATGCAAGCGCTGTTGTTCATCCGCCAGTACGCATGCCAGGGCATCAAGACCGCGCAAGTGGCGGCGTATGTCGGTGTCTCGCGCTCATCCCTGGAAGCGCATTTTCGCAAGGAGCGAGGTTGCAGCGTTCATGACGAAATCCTGCGCTTCAAATTGGCCGCGGCGGCCAACGGCTTGGAAAACACCGACTCGGCGATCGCCGACATCGCCCGCAATTGCGGCTTCAAGTCGGCGCAATACCTGCACACGGTGTTTCGTCGCGAGTTCGGTTGTACGCCTCGGGAGTATCAGCAGGGCGCGAGCGTGGTGAGCGAGTAG	MKIVPPVHRIALLFNGSKIYDRGIISGIGNYLSSTRASWDLFLEEDFLCRLKGIERWQGDGIIADFDDPLIGEALAGIKMPVVAVGGSYQDERAYPKGIPYVATDNHGLIKLAYEHLIEAGLTRFACFSLPESQANRWAQEREKAFRRLMLRDGLHAEVYRGMGTSAPLWDSAVEQQIAWLQSLPKPIGIIAVSDARARQLLQACLTAGIAVPEQVALIGIDNDPLTRSLTRVPLSSVVQGTETMGRTAARLLHQMLHGMPSTGTQVLIPPDAINVQTSSLHQPLGNPYVMQALLFIRQYACQGIKTAQVAAYVGVSRSSLEAHFRKERGCSVHDEILRFKLAAAANGLENTDSAIADIARNCGFKSAQYLHTVFRREFGCTPREYQQGASVVSE	PGPT0017992_318	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
D1-36_02334	342			hypothetical protein	ATGCGCCCTTTATCTTTCCTTGCCCTGGCGTTTCCCCCTTTGTTGCTAGCAGGTTGCGCTTCGGCTCCGAACGATCCGACCCTGACCTTGCAGACCAGCAAGACACCGGCCGAATACGCCGAATGCGTCGTACCGAAGCTGCAGGGCAGCGCCCTGAACCCGACGGTCTCGCAGACCCAGCGCAGCTACCGCATCGTCGTGCCGAGCAAAATTGCGGCGGACAACGTGCTCGAAGCCTACAAGGCTGGCAACGGTGGGAAGGTGTTCATTTACGACCGGCATCTGCTGGCCTCCAATCTCTTGCCTTCGAATTTTGAACGCGCCGCCCAGGAATGCATCTGA	MRPLSFLALAFPPLLLAGCASAPNDPTLTLQTSKTPAEYAECVVPKLQGSALNPTVSQTQRSYRIVVPSKIAADNVLEAYKAGNGGKVFIYDRHLLASNLLPSNFERAAQECI				NA	NA	NA	NA	NA
D1-36_02335	378			hypothetical protein	ATGAACCTGCCCCCTGCCCATGCCGTGCCATTCATCCTGATGCTCTCAGCCTTGTGCGTCCCGGTGCACGCCGCGACGTGGCAGATCTGCGATATGCAATTGCGGGTCACTGAAGTGGTCAAGCAGCCGTTCCCTGGTCTCCGGGCTCAGGTTCTGAAAACCAGCCCGGCCTCGCCCAAGGTGGAATGCCCAGAAGTCGGCGCAGTGATCAGCTTCATCCCGGAAACCGCTGACTATCAGTCAACGCTTGCGCGGCGAAAATGGCCCGCAAAAGGCCAGGCGATTCGGATCAGATACCATTACCTGGACGGCATCTGCAAGGGCGACGGCAACGAGCATCCTTGTCGGATCGAGCATTATCCGTTCGTGGCCCAATGA	MNLPPAHAVPFILMLSALCVPVHAATWQICDMQLRVTEVVKQPFPGLRAQVLKTSPASPKVECPEVGAVISFIPETADYQSTLARRKWPAKGQAIRIRYHYLDGICKGDGNEHPCRIEHYPFVAQ				NA	NA	NA	NA	NA
D1-36_02336	423	gcvA_7		Glycine cleavage system transcriptional activator	GTGTGCAGTCCGAAATTGCTGGCGGGGCCCAATGCCCTGAAGGCACCCGGCGATCTGACCCATCACACCCTGTTGCAGGTCAGTGGTATGACGCGGGACGATTGGAGCCTCTGGCTGGGGGCCGCCGGGCAACCGAGCGCCCTGGCCGAAGGCTCACGGTTGACCTTCGACCTGGCGATGATGGCCGTGCAGGCAGCCATCGACGGCTTGGGTATTTGCATCGGCCGCTCGACCTACGTCGACGACGATCTGAAGGCAGGTCGACTGGTCGCGCCATTTGCCCTGAGGTTGAAGTCCGATCTCGGTTTCTATCTGGTGACACCCGTCGAGACAGCCCACTCGAAAAAGGTCGAGGCGTTCAGGGCCTGGTTGATCGATTCGACCAGGGAGGCAAACACACCGGGTATGCGGTCGTTGGATTAA	MCSPKLLAGPNALKAPGDLTHHTLLQVSGMTRDDWSLWLGAAGQPSALAEGSRLTFDLAMMAVQAAIDGLGICIGRSTYVDDDLKAGRLVAPFALRLKSDLGFYLVTPVETAHSKKVEAFRAWLIDSTREANTPGMRSLD	PGPT0026360_2198	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566	NA	NA
D1-36_02337	309			hypothetical protein	ATGGACTGTCGTGTATTCGCGCTGCTGCTTGCTGCCCTTCCCTTGTGGGCCCAAGCCGCCGAGCCGGCGAATGAGGGATGCATCAATGTCGAGGTGAACGGGTACAAGGCGCTGTCCTACGAATGCCTGAGCGAACAGATGGCCAACCCGAAGGGTACGCCGGCAGCGCGCAAGAACCAGGAAGCGTTGAACGTGCCGATAGAGCAGCGAGCGCCGAACAGGCTGGGTCTGTACAACCAGTCGGCCACGCGGATTCGCATGGGCAATACCTTCGGCCACTCGGCGTTGCCGCAACGCCCACCGCAGTGA	MDCRVFALLLAALPLWAQAAEPANEGCINVEVNGYKALSYECLSEQMANPKGTPAARKNQEALNVPIEQRAPNRLGLYNQSATRIRMGNTFGHSALPQRPPQ				NA	NA	NA	NA	NA
D1-36_02338	729			hypothetical protein	ATGTCAAGAGAAGCGCTGAGCAGGTGCTGCCTCGCGCCCACGGTACTGTTCTTGTTGCTCCATGCATTGATGCCGCAACGCGACGCGTGGTCTGCCACGCCTGCGCCTGTCGAGGTGGACGATCGGCTGGCGCGTTTTGTCGAGTTTGCGATACCCGCCCAGGAAATGACCGTTGCCCTGGAGCTGTACAGCAGGGCCAGCGGGATGGCGATCCTGGTGGACCGTCAACTGGCACATGGGCGACGGTCGACCGCGGTGCACGGACGCTTGAATGCCCGCCAGGCGTTGGAGCAACTGCTGGCCGGTAGCGGCTTGGCGGCGCTCTACACCGGCGCAGACGCTTTCACCGTGAAAGAGGCAAAGCTGACCCTCCGCGCCGATGCGTCTTCGCGCAACGGTGGTCCTACAGTGCGCGAGGACAATTTTGCCCGTGCATTGCAGGTCGCGTTGGAGCAGGCGCTTTGCCGGTCAATGGTGACTCGCCCGGGCCATTATCGAGCAGCGTTACAGCTGTGGGTGGGGGCATCGGGCGAGGTGCGGCGCAGTCGCTTGCTGGCCTCCACCGGTGACGCCCGGCGCGATGCGGCGATTATCGAGGGGCTGGGCACATTGGACATCGGCCGGGTTCCGCCGTCCTCGTTGCCGCAGCCGGTGACGGTGCTGGTGGTGCCAGGCGCCGCTTCGGCAGGCACGGAATGCAACCCATGGGAAGGAGCGGTAGAGCCATGA	MSREALSRCCLAPTVLFLLLHALMPQRDAWSATPAPVEVDDRLARFVEFAIPAQEMTVALELYSRASGMAILVDRQLAHGRRSTAVHGRLNARQALEQLLAGSGLAALYTGADAFTVKEAKLTLRADASSRNGGPTVREDNFARALQVALEQALCRSMVTRPGHYRAALQLWVGASGEVRRSRLLASTGDARRDAAIIEGLGTLDIGRVPPSSLPQPVTVLVVPGAASAGTECNPWEGAVEP				NA	NA	NA	NA	NA
D1-36_02339	546			hypothetical protein	ATGAAGGAAAAGGAGCAGAGCACCATGCTCAAGGTGTTCCTGGCTTCCTATGATGTGTTTCGCGCACGCTTGCGTCGGCGTCTGGGCTCCGATGACCTGGCCAACGACGTACTGCACGAAACCTATCTTCGGGTAGACCGCATGGAACAGCCGGTGGACGTGCAGAAGCCTGGCGCCTACCTGTTCCGCATGGCCCTGAACATCGCGGCTGACCGTCGTGCGCAGGATGCACGCTTGCTCACCGGCACTGAAATCGAGGAACTGATGCAAACCGCCGACGAACATCAGGACCCGGCGGTGATCGTCGGTGGCCAGATTGAAATTCGCGCGCTGATGCAGGCGCTGACCGAGCTTGCGCCCCGGCGCCGGCAAATATTGATGGCGTCGCGCATGGAGCAAACACCGCATCAGGAGATCGCCCAGCGATTCGGCATCTCCACCCGGATGGTTGAGAAGGAACTCAAGGCTGCGCTGCAATACTGTGCCGATCGCCTGGAAAGAAAAGTGATTCAGCGGTTCGGTCCCGGCGCGGGAAAACAGTCTTAG	MKEKEQSTMLKVFLASYDVFRARLRRRLGSDDLANDVLHETYLRVDRMEQPVDVQKPGAYLFRMALNIAADRRAQDARLLTGTEIEELMQTADEHQDPAVIVGGQIEIRALMQALTELAPRRRQILMASRMEQTPHQEIAQRFGISTRMVEKELKAALQYCADRLERKVIQRFGPGAGKQS	PGPT0014960_9166	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
D1-36_02340	957			hypothetical protein	ATGTCTATAAGCGCATCTGAATCGGCCACTGCCACGGCTAACCAGCTCCGGGAAGAAGCGTTCCATTGGCTGGTGCGCTTGACTTCAGGGCACGCCACCCACGCCGACGCCGAGGCTTTTCGGCGCTGGAGTGCGCAAAGTTCCGAGCACGCCCGGGCCTTTTTCCTGGCCCGCCAGTTGTGGCAGGCCATGGCGCCCGCCGAGCAAAAGCTCCAGCAGGAGCAGGCGGCAAAGGTCGTCAACCACCCGCGGCGTTTCGGGCGCCGAGCGTTTCTCGGCGGCGCGATTGCCGCGTCGGTTGCGGTGCTGGTCGCGCGCCCGTCGCTGCTGGACGGCTGGCCCGTGGGCGCGGATTTTCATACAGGTGTCGGCGAGCAACGCCGCGTCGACCTGACCCAGGGCGTGGTGCTTGAGCTCAATACCCAGACGCGCATCAGCCAGCGCAGCGAGGCCCCTGGTGACGCCGCCATCGAAGTACTGAGCGGTGAACTGGAAATCCAGGCCAGCACGGCGTTGCGTGTGCTTGCCGGCAATGGCGAGTTGTTCGCCGATGGGGCGCGGTTCAATGTGCGGGCCACCGAGGGTAGCGTGTGCGTAACGTGCCTGGAGGGCCGCTTGCAACTGAAGCATCAGGGGCGGCGCGTGAGCTTGGAGCAGGGCCGACAATTGACCTATACCGCGCAGCGACAAGGCCAACCCACCCCCTTCGATACCCAGCAAGTCATGGCTTGGCGTCAACAGTTGCTGGTGTTCAACGATGCCCCCTTGGCGAGCGTGATCGATGAGATCAACCGCTACCGTCCCGGCATGATCGTACTGATGAACGCTGAGCTCGGGCGGCGCAAGGTTCAGGCGCGCTTCAGCCTGGCGCAACTGGCGAATGTCGCCGTACTGATTCGCGATGCCTACGGCGCGACCATTACCGAGCTACCGGGCGGTGTCGTGCTGGTCAGCTAG	MSISASESATATANQLREEAFHWLVRLTSGHATHADAEAFRRWSAQSSEHARAFFLARQLWQAMAPAEQKLQQEQAAKVVNHPRRFGRRAFLGGAIAASVAVLVARPSLLDGWPVGADFHTGVGEQRRVDLTQGVVLELNTQTRISQRSEAPGDAAIEVLSGELEIQASTALRVLAGNGELFADGARFNVRATEGSVCVTCLEGRLQLKHQGRRVSLEQGRQLTYTAQRQGQPTPFDTQQVMAWRQQLLVFNDAPLASVIDEINRYRPGMIVLMNAELGRRKVQARFSLAQLANVAVLIRDAYGATITELPGGVVLVS	PGPT0003910_5787	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165	NA	NA
D1-36_02341	612			hypothetical protein	ATGGTCCGGCAAAACGGCTTCACGCTGATTGAAGTGATGGTCGCCATCCTGCTGATGACAATTGTCAGCCTGATCGCCTGGCGCGGGCTCGACGGTGTGACCCGCGCCGACGCCCACTTGCAGGACAGCGCCGAACAGCACGCGCAACTGATGCGCGCACTCAACCAACTGCAGCGTGACTTCGCCCTGCGCGCCACCACTGAACTGGCCGAACCGCCTCCACCCGACGAACCCTCGGCCAGCCGCCCCCCGGTGCCCGCTGCGATCAGTATTCGCAGCAGCGACAGCGACCCTTTGCAGTTGGAATTGATACGTGCCGCGGCGGACCAGGACGGCAAGATGCAACGGGTGAGGTGGTGGATTGAAAGCGGCACGCTTTTCCGTGCCTCGGGCGTCGCGCGGTCACGCTATCCCCTACCGGCGCCCAAGGAGCGTGTCGCGGTGTTGAGTGAGCTTGAGCGCGTTGATGTGCGGGTATGGCGCACCGACCGGGGCTGGAGCCATCTGACTGGCAGCAAGGAGGAAAATCCGGCGGGTGTGGAAATCAGCTTCAGCCGCCGCACGGCATACGGCACCGAGCGCTACCGCCAGGTGCTGGCACCGCTTCAATAG	MVRQNGFTLIEVMVAILLMTIVSLIAWRGLDGVTRADAHLQDSAEQHAQLMRALNQLQRDFALRATTELAEPPPPDEPSASRPPVPAAISIRSSDSDPLQLELIRAAADQDGKMQRVRWWIESGTLFRASGVARSRYPLPAPKERVAVLSELERVDVRVWRTDRGWSHLTGSKEENPAGVEISFSRRTAYGTERYRQVLAPLQ	PGPT0026455_1050	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026455-gspJ|epsJ-K02459	NA	NA
D1-36_02342	459			hypothetical protein	ATGAATGAATGGCGACACCGACAACGCGGCTTCACGCTGATCGAATTGATGGTCGTGCTGGTGATCATCGGCATCGCCAGCGCCGCCATCAGCTTGAATATCCACACCGACGCGGCAAGTGGCTTGCGCGAGGATGCCAAGCGCCTGGCCTTGCTGCTGGAAACCGCCCAGGCCGAAGCGCGCAGCGACGGTCGTCGCATCGCCTGGGTCGCCGACAGCCAGGGTTACCGTTTCGTGCGGCTGGACGCTTTCGGCGCACAGGATCGGGAGTTCATCAACGACCCGCAACTGCGCCCCAGGCACTGGAGCGCGGGACCGGTGCAGGTGGGCATCCACCCAGGCAAAACACTGGTGCTCGATGCCGAATGGATCGCCGCGCCCCTGCACGTCATTCTGTCCAGCGACCAGGCCAGCGTATCGGTGAGGCGCACCGCGGCTGGCCGCATCGAGGTGCATTGA	MNEWRHRQRGFTLIELMVVLVIIGIASAAISLNIHTDAASGLREDAKRLALLLETAQAEARSDGRRIAWVADSQGYRFVRLDAFGAQDREFINDPQLRPRHWSAGPVQVGIHPGKTLVLDAEWIAAPLHVILSSDQASVSVRRTAAGRIEVH	PGPT0026445_1050	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026445-gspH|xcpU|epsH-K02457	NA	NA
D1-36_02343	429			hypothetical protein	ATGCGCCATTTCCATCGCCTTGATCCGGCCACGCTGGTCCAGGCTGTCGCCGTGTTGGCCAGCGTGGCGGGGCTTGTCACCTGGGGCTTCTTGCTCAACGATTCGGCGCCCGTGCAAGCCCAGGCCAATAGCGAACCCTTGCCGCCCTTGGCAGCCACTGGCCAAGCCGCGGCGCAATGGTTCGCCAGTTCCCCGCACAACCTGGAGATCAAGCTCAGCGGCCTACTGGCCGGACCCCATGGCGCGGTGGCGATTCTCAGCATCGAGGACTCGCCGCCGCGGGCTTTTCGTGCGGGTGAGCCATTGGGCGAAGGCGTGCGCCTGAGAGGAATCGAGGCTGATGCCGTGGTCATCGAGCGGGCCGGCGTTGAGTCTCGCCTGTCGATGGCTCGTTTGCCGGTGCCGGTGGCGCTGCCGTCGTTGCGCTGA	MRHFHRLDPATLVQAVAVLASVAGLVTWGFLLNDSAPVQAQANSEPLPPLAATGQAAAQWFASSPHNLEIKLSGLLAGPHGAVAILSIEDSPPRAFRAGEPLGEGVRLRGIEADAVVIERAGVESRLSMARLPVPVALPSLR	PGPT0026420_986	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026420-gspC|epsC-K02452	NA	NA
D1-36_02344	393			hypothetical protein	ATGCTCATTGCCATGACCCGACAGGTACCCCGGCAACGCGGCTTTACCCTGATCGAAGTATTGGTGGCGCTGCTGATCGTGGCGGTGGCGATGTCAGCGGCCGTTCGCGCCAGTGCACAGATGAGCCAGAGCAACGCGCTGTTGCGGGATCGCTCGATGGCGCTGTTGGCGGCCCAGAACAGCCTGGCAGAAGTGCGTCTGCGCGGGACCACAGATAAGGGCAGCGCCATGCAACGCTGTGATCAAGGACGCTTGAAACTCAGCTGCGAGCAGCAGGTAACCCGCAGTGGCGACCTGCTGAGAGTGAAAGTGCTGGTGCATGAACGTGAACATGACGGACCGCCGCTGGCGCGCCTGGAAACGCTGCTCAGCCGCCCTGTCACCCCGCCATGA	MLIAMTRQVPRQRGFTLIEVLVALLIVAVAMSAAVRASAQMSQSNALLRDRSMALLAAQNSLAEVRLRGTTDKGSAMQRCDQGRLKLSCEQQVTRSGDLLRVKVLVHEREHDGPPLARLETLLSRPVTPP	PGPT0026450_716	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026450-gspI|epsI-K02458	NA	NA
D1-36_02345	450	epsG	COG2165	Type II secretion system protein G	ATGGGTGTCGCATCGTCTGGCCGTCCCCCACATGGCCCTCGCCGGCAGCGAGGTTTTACCCTGATCGAGATCATGGTCGTGGTGGTCATTCTCGGCATTCTTGCCGCCATGGTCGTGCCGAAGGTGCTTGACCGCCCCGACCAGGCCAGGGCCACGGCGGCCCGCCAGGATGTTGCGGGCCTGATGCAGGCACTCAAGCTGTTCCGTCTCGACCAGGGTCGCTACCCGACCATGAATGAAGGGCTAAAGGCCCTGGCGGAAAAACCCGCCAACGCCACCAGCGGCAATTGGCGCGCGTATCTGGAACGGCTGCCCAAGGACCCTTGGGGCCGCGCCTACAACTACCTCAACCCGGGCACCAACGGTGAGGTCGATGTGTTTTCCCTCGGCGCCGATGGGCAGCCCGACGGCGAAGGTGTCAACGCTGATATCGGCTCCTGGCAGCTCTAG	MGVASSGRPPHGPRRQRGFTLIEIMVVVVILGILAAMVVPKVLDRPDQARATAARQDVAGLMQALKLFRLDQGRYPTMNEGLKALAEKPANATSGNWRAYLERLPKDPWGRAYNYLNPGTNGEVDVFSLGADGQPDGEGVNADIGSWQL	PGPT0026440_1171	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026440-gspG|epsG-K02456	NA	NA
D1-36_02346	945	xcpX	COG3156	Type II secretion system protein K	ATGGCGGTGATCAGCGCCTTGCTGGTGGCGACCGTGGTCGCGGTGATCGCCGCCGGCATGATCGCCCGACAGGTCCAGGTGACTCGCGGCGTGGAAAGCGAAAGCCAGCGGGTGCGGGGCGCCTGGCTGTCCAATGGCGTATTGGAATGGACCCGCCAGGCGCTCTGGCAGCAACGCCTGCGCGAGCCCATGACGCGTTTGGACCAGGCGTGGGCGCAGCCCTTGCGTGGGGTGCGCCTGGGCACTGAAAGCGGGGTGTTCGACGGCCATATCAGCGATGAGCAAAGCAAGTTCAACCTGCGCAACCTGATCCTCGACGGCCAACTCGACACACTGGAAGTCGCCGTATTCGAACGCCTGTGCGCCGAGCTGGGCGTGCCCGTGGCCCAGGGCAACCGTATCGTCCAACGCGTGGTAGAGGCCTACCCCAAGCGCCTGCGTCCACCGCCGCCAGTCTCCAGCGCGGCACCCGGGTTCGATAGCGGTCGCCTGACATCGCCGGACGCCGAAAGCCAGCCGCTGCCCGCCACCCGGCCGATGTTGCGCGGTCTCGATGACCTAGCCGGCCTGCCCGGGATCGACCTCGCTGCCCTTGAGCGCCTGCGCCCCTATGTCACGGTGCTGCCGGCGCTCACTTGGGTGAACGGCAATACCACCACGGCCCAGGTCTTGGCCGCACGAGTGCCCGGTATGAGCGTGGCCCAGGCACAGGCGGTGATTGCCGAGCGTGACCGTGGCCAGTGGTTCATCAACAGCGGGGATTTCCTCAACCGCTTGCGCGTGCCGCAGATGAGCACCGAGCAGCTGCGCCTGGGCATTACCAGCGAGTGGTTTCTATTGCGGGGACGGGCCACGGTCGAACAACGCCGCTTCGGTGTCGAAGCGTTGTTTTATCGCAGCGAGCAGCGCAGGCCCCAGGTGGTCTGGTCGCGGGTGGGCGCATGA	MAVISALLVATVVAVIAAGMIARQVQVTRGVESESQRVRGAWLSNGVLEWTRQALWQQRLREPMTRLDQAWAQPLRGVRLGTESGVFDGHISDEQSKFNLRNLILDGQLDTLEVAVFERLCAELGVPVAQGNRIVQRVVEAYPKRLRPPPPVSSAAPGFDSGRLTSPDAESQPLPATRPMLRGLDDLAGLPGIDLAALERLRPYVTVLPALTWVNGNTTTAQVLAARVPGMSVAQAQAVIAERDRGQWFINSGDFLNRLRVPQMSTEQLRLGITSEWFLLRGRATVEQRRFGVEALFYRSEQRRPQVVWSRVGA	PGPT0026460_691	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026460-gspK|epsK-K02460	NA	NA
D1-36_02347	1164			hypothetical protein	ATGAGCACCTTGCTGCGCATAGCGCTGGCGCCGTTGGCACAGTTGACCGCCGACAGCCCGTTGGACTTCGCCTGGCTCGATCGCAAGGGTGCGCTGGTCGAGCAGGGGCGGCGACCCCTGCGGGAACTGAGCGGCGCGGCCCAAGGCAAAGCCCTGGAACTCTGCTTGCATCCTCAAGACACGTTGCTCGCCTGCGTCGAGTTGCCGCCACTGCCACCGGCGCGCCTTGGCGATGCCGTGCGATGTGCGGCAGACAACCTTCTGCTGGGCTGCGACGATACCGTGCACCTGGTGCACGGGCCTCGTGATGCGGGCGGCCAGGTTCAACTGGCCTGGTTCGAGCGCGCGGCGCTTTCGCGTCTTTCGCAACTGTTGCAGGGGCTCAGGTTGCAACCGCGTGGCGTGTACGCGGCGCCTTGTTTTCTGCCGCTGGCTGAGCCGGGCACGTGCACGGCGGCAAGCGTGGAAGGTCATTTGCTGGTCCGTGAGGATCGCCAACGCGCATGGGTGCATCCGATGATGCAAGAAGGCGCCGAACAGTTGCGCGAAAGGACGGTGCGTTGGATCGGCGAGGGTGCGCAATCCGTCGATCCATGGCCGGACGAGCAACGCTGGATCGGTCCCGTCCCGGCGTGGAACTTACTGAGCGGGATCGAACAAAGCGTCCGGGGCAATCAGCGCTGGGGCCGCGCGGTCGGCTGTTGCGCGATGGCGGCGTTGATCTGGACCCTGGGCCTCAACCTGTACGCGATGCGGTTGGCCGGCGAGGGCCAGGCAATCAAGGGGCAGATGAGCAGCCGGGTCCAGCAGGCTTTTCCTGAACTGCCGGTGATTCTCAATCCCTTGCAGCAGGCTCGCCAGCAACGCGATGCCCGGCGCAATGGCGCGCTGGCGGAGGGTCCGGTCAGCTTCGCTGCCCTGGTGCAGCAGGCGGCTGGGCAGTTGCCGTTCATGGCGGGCGCGGTCGACAAACTCGACTTCGATGGCAGCGAATTGCACCTGACCCCCCGCACGCCTGCCCGCAAGCCACCCGCCGACAGCAACTGGCAAACCAGCCTGGCGCAAGCGGGCATCGTGGCCGATCTCGCCAATGGGCGATGGACGCTGAAGCGTTTGCCAGCGCACGCCGCGGCAACGCCCGTTGCGGGAGGCGCGGATGAATAG	MSTLLRIALAPLAQLTADSPLDFAWLDRKGALVEQGRRPLRELSGAAQGKALELCLHPQDTLLACVELPPLPPARLGDAVRCAADNLLLGCDDTVHLVHGPRDAGGQVQLAWFERAALSRLSQLLQGLRLQPRGVYAAPCFLPLAEPGTCTAASVEGHLLVREDRQRAWVHPMMQEGAEQLRERTVRWIGEGAQSVDPWPDEQRWIGPVPAWNLLSGIEQSVRGNQRWGRAVGCCAMAALIWTLGLNLYAMRLAGEGQAIKGQMSSRVQQAFPELPVILNPLQQARQQRDARRNGALAEGPVSFAALVQQAAGQLPFMAGAVDKLDFDGSELHLTPRTPARKPPADSNWQTSLAQAGIVADLANGRWTLKRLPAHAAATPVAGGADE	PGPT0026465_549	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026465-gspL|epsL-K02461	NA	NA
D1-36_02348	555			hypothetical protein	ATGAATAGCCTTGCCCGTTACCGCGCCCGCTGGCAGGCGCAGCGAGCCAGCGCTCAGCAGTTCTGGCAACGCAGCAGTGCCCGGGATAAACGCATCCTGCGGGTCGCCGCGCTGGTGTTGCCCGTGGTGCTGCTGTGGTACGGCCTGATCCAGCCGCCACTCCAACGCATCGACCATTGGCAAGCCGAACTGCCGCGCCTGCGCTCCCAGGCGGCGGCCCTGGAGGGAGTGCTGGCCGAGGTTCAGGATGCCGGCGTGGTGTCCGGCGCGGTCACGCCACAGCTTGTGAAAGCGCGTTTGGATGACATCGGTCTGGCCGGCGCCTACGACCTGGAGCACCGCGTCGAGGCCGGCGCCGTGACCTGGCGGCTGACCCTCGACGACGCGCCCGCCGATGCCTTGTTGAACTGGTTACTGGACGACGCACCCAGGCTCGGCCTGCAGGTGCGCGACGCTCATTTGCAACGGGCAACCTCGCAAAGCACTGAGACGGCCGCGCGGATTTCCGGGGTCGTTGGCATGGAACAGGCGCCCGGCGCTAAGGAATCCTCATGA	MNSLARYRARWQAQRASAQQFWQRSSARDKRILRVAALVLPVVLLWYGLIQPPLQRIDHWQAELPRLRSQAAALEGVLAEVQDAGVVSGAVTPQLVKARLDDIGLAGAYDLEHRVEAGAVTWRLTLDDAPADALLNWLLDDAPRLGLQVRDAHLQRATSQSTETAARISGVVGMEQAPGAKESS	PGPT0026470_324	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026470-gspM|epsM-K02462	NA	NA
D1-36_02349	2373	gspD	COG1450	Putative secretin GspD	ATGAAGCGGTTTGGTCTGTATGCGTCAACAATTCCCTTGGCGCTGTTGCTCAGTGCCTGTAGTCAATTGGGCAGCGAGCAGGCGCAGCCCATTCCCGCTCAAAGTGAGCTGGGCCAGCCGCTGGCACAGACCGGCAGCGGTGACGCGTTGGCGGAGCGCCAGCGCGTGCAGGCACAGGCAGAGCAGCGACGCCAGGTCACGCGCAAGGCCCCATCGCGCTCAAGCCTTCGGCCGCCCGCCGACAATGCCGGCCCGACCGGCAACGGACTGGGCAACCAACCGGTGCAGCTGAATTTCGTCGAGGCGGATATACCCGCGGTGGTGCGTGCGCTGTCACGCGCCACCGGTCGCCAGTTCCTGGTGGACCCACGTGTCAAAGGCCAACTGACCCTGGTGTCCGAAGGCGAAGTGCCGGCCCGCACGGCCTATGACATGCTGCTCGCGGCCCTGCGCATGCAGGGTTTTGCCGTGGTCGAAGTGCAAGGCGTCAGCCAGGTGGTACCGGAAGCCGACGCCAAGTTGTTGGGCGGACCGGTGGGAGACGCCGATCGTGCGGCAGGCAACGGCATGATCACCCGGACCTTTCGCTTGCAATACGAAAACGCCGTCAACCTGATTCCGGCACTGCGGCCCATCATATCGGCCAACAATCCCATCAATGCCTACCCTGGCAATAACACGGTGGTGGTCACCGACTATGCGGAAAACCTTGATCGGGTGGCGCAGATCATCGCCAACGTCGACATACCCGGCGCCATCGACACGGATGTAGTCCCCGTGCAGAACGGCATTGCCGTCGACATTGCGACGATGGTGTCGGAGTTGCTCGACGTGCAGGGCGCCGATGCGACGCAAAAGGTGTCGGTGATTGGCGACCCTCGATCCAACAGCATCATCCTGCGCACCGGCAGCCCCGAACGCACCGAGCTGGCCAGGCAACTGATCTACAAGCTCGACAATGCCCAGAACAACCCGAGCAATCTCCACGTGGTGTACCTGCGCAACGCCCAGGCCAATAAGCTGGCGCAAGCTTTGCGCGGCTTGCTCACGGGTGAAGGGGAAATGGCCGGTGCGTCCACCGACAGCGCACGGAGCCTGTTGAACGGCGGTGGCCTGGGTGGCCCGGCGGGCAGCAGTACGACCAGCAACGGCAGTCATTCGTCGAGTACTACCGGCAGCAGTTCGCAAACCAACAATGGGCAGAACGCAGGCCTGCAAATGTCGAGCGGCCAGGGCAGCCATCAGGCAGGCGAAGGCGCAGTGGCGTTTTCCGCCAACGGCGTCACTGTGCAGGCCGATACCACCACCAACACGTTGCTGATTTCCGCGCCCGACCCGCTGTATCGAAACCTGCGTGAAGTCATCGATCTGCTCGACCAGCGCCGCGCTCAGGTGGTGATCGAAAGCCTGATCGTCGAGGTCAGCGAAGACGATGCGAGTGCGTTCGGCATTCAGTGGCAAGCCGGCAACCTGGCGGGCAACGGCTGGATCGGTGGCGCCAACCTGGGCGGTGCCGGCATCAATACCTCGGCCAAGAACAGCATTGATGCGTTGCCCGGTGGCTTGAGCATTGGCAAGGTCTCGGGCACGGTGAATATTCCCGGCATCGGCCAGGTGCTGGATCTGAAAGTGTTGGCCCGCGCCCTGAAAAGCAAGGGCGGAACCAATGTGTTGTCCACGCCCAACCTGCTGACGCTGGACAACGAAGCGGCGAGCATTTTCGTGGGCCAGACCATCCCCTTCGTCACCGGCAACTACGTGACCAACGGCGGCGGCAACAGCAACAACCCGTTCCAGACAATCGAGCGGGAGGAAGTGGGGCTGCGCCTGAATGTACGCCCGCAGATTTCCGAGGGTGGCACGGTCAAACTGGACATCTACCAGGAAGTCAGCAGCGTGGACCCGCGCGCCTCCAGCGACGCCGGCACGGTGACCAACAAGCGCGCCATCGACACCAGCATCCTGCTCGACGACGGACAGATCATGGTGTTGGGCGGCCTGCTGCAAGACGGTTTTACCGAAAGCACCGACGCGATTCCGGGGCTGGGCAGCATCCCGGGCATTGGCGCGCTGTTTCGCAGCGACAGTCGTTCGCGGACCAAGACCAACCTGATGGTCTTCCTGCGCCCCTACATCATTCGCGACAGTAACGTCGGCCGCAGCATTACCCTCAATCGCTACGATTTTATCCGTCGTGCCCAAGGCAATCTGCAGCCAGCGCACAAATGGCCGCTCACGGATATGCAGGCGCCGCAGTTGCCGCCGGCCGCCCAGGCGATGCCGCTCAATCCGTCACCCCGTCAGCCGATACCGCTCAATCAGCCACCCCGAGCGATGCGCGCCGTGCCGCTGGAACCAGGTGGGCAGCCATGA	MKRFGLYASTIPLALLLSACSQLGSEQAQPIPAQSELGQPLAQTGSGDALAERQRVQAQAEQRRQVTRKAPSRSSLRPPADNAGPTGNGLGNQPVQLNFVEADIPAVVRALSRATGRQFLVDPRVKGQLTLVSEGEVPARTAYDMLLAALRMQGFAVVEVQGVSQVVPEADAKLLGGPVGDADRAAGNGMITRTFRLQYENAVNLIPALRPIISANNPINAYPGNNTVVVTDYAENLDRVAQIIANVDIPGAIDTDVVPVQNGIAVDIATMVSELLDVQGADATQKVSVIGDPRSNSIILRTGSPERTELARQLIYKLDNAQNNPSNLHVVYLRNAQANKLAQALRGLLTGEGEMAGASTDSARSLLNGGGLGGPAGSSTTSNGSHSSSTTGSSSQTNNGQNAGLQMSSGQGSHQAGEGAVAFSANGVTVQADTTTNTLLISAPDPLYRNLREVIDLLDQRRAQVVIESLIVEVSEDDASAFGIQWQAGNLAGNGWIGGANLGGAGINTSAKNSIDALPGGLSIGKVSGTVNIPGIGQVLDLKVLARALKSKGGTNVLSTPNLLTLDNEAASIFVGQTIPFVTGNYVTNGGGNSNNPFQTIEREEVGLRLNVRPQISEGGTVKLDIYQEVSSVDPRASSDAGTVTNKRAIDTSILLDDGQIMVLGGLLQDGFTESTDAIPGLGSIPGIGALFRSDSRSRTKTNLMVFLRPYIIRDSNVGRSITLNRYDFIRRAQGNLQPAHKWPLTDMQAPQLPPAAQAMPLNPSPRQPIPLNQPPRAMRAVPLEPGGQP	PGPT0026425_448	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026425-gspD|epsD-K02453	NA	NA
D1-36_02350	1443	hxcR	COG2804	putative type II secretion system protein HxcR	ATGAGCCCCTCCCTGCAAACCGGTGCGGGCGCGTTGCCCTATGCGTGGGCCAAGGCGCAGCGGCTCCTCCTCAAGGCCGGTGAGGAGGGCAACGTGTTGCTGGTCAGTGCCGCGACGCCGGGCTGGGCCATCAACGAGGTACGCCGGCGTTATGGTCTCACTGCGTTGCAACGGATACGCGACGAAGAGCTCGAAGCGCTGTTGACCAGCGCTTATGCCGACACCGGCAGCGCCGCGGCGATCGTTGGCGCGGCGGAAAACGAAGTCGACCTTGATCGCCTGATGCAGGACATCCCGGAGATCACCGACTTGCTGGACAGTGAGGGTGGCGCGCCAGTCATCCGCATGATCAACGCATTGCTGACCCAGGCCGCGCGGGATGAGGCCAGCGATATTCATATCGAACCGTTCGAAAGCCATTCCGTGGTGCGTTATCGCGTTGATGGGGCCCTGCGCGATGTGGTCGCGCCGCGCAAGGCCCTGCACGCGGCGCTGGTGTCGCGGATCAAGATCATGGCGCAGTTGGACATCGCCGAAAAGCGCTTGCCCCAGGACGGCCGCATCGCCCTGCGTGTTGCCGGACGGCCCATTGATGTGCGGGTGTCCACCGTGCCCACCGGCCACGGCGAGCGGGTGGTGATGCGCCTGCTGGACAAACAGGCCGGGCGCCTGCAATTGGAAACCCTGGGCATGGCGCCCGCGGTGCTGAGCCAACTGGATCAATTGATCCGCCAACCCCACGGCATCGTGCTGGTCACCGGCCCCACCGGCAGCGGCAAGACCACCACGCTTTATGCCGCCTTGGCCCGTCTGGATGCCAGCACCAGCAATATCCTCACCGTTGAGGACCCTGTGGAATATGACCTGCCGGGCATCAGCCAGATCCAGGTCAATACCCGGATCGACATGAGCTTCGGCCTGGCCTTGCGCGCGATCCTGCGCCAGGATCCGGACGTCATCATGATCGGTGAAATCCGCGACCAGGAGACTGCGCAGATCGCGGTCCAGGCTTCGCTGACCGGACACCTGGTGCTGGCGACCCTGCATACCAACGACGCGGTGTCGGCGGTGACGCGGCTGACCGACATCGGGGTCGAGCCGTTCCTGTTGGCGTCGTCATTGCTCGGCGTCCTGGCGCAACGCCTGGTGCGTCGCCTGTGTCCGGAGTGCAAGCAACCTGACGAAGCCGCGCCGGGCCAATGGCGTCCCCATGGCTGCCCGCGCTGCAACCACACCGGCTACAGCGGGCGTACCGGCATCCACGAACTCTTCGTGGTAGACGACGAGGTGCGGCGCTTGATCCATCAGGGCGAAGGCGAGCAGGCGTTGCGCACCTGTGCGCGACAGGCCGGCATGTTAAGCATGCGCGAGGACGGCGAACGGTGGGTGAGCAGTGGCTCCACCGCCCGCGAGGAAATCCTGCGCGTGACCCGAGACGCTTGA	MSPSLQTGAGALPYAWAKAQRLLLKAGEEGNVLLVSAATPGWAINEVRRRYGLTALQRIRDEELEALLTSAYADTGSAAAIVGAAENEVDLDRLMQDIPEITDLLDSEGGAPVIRMINALLTQAARDEASDIHIEPFESHSVVRYRVDGALRDVVAPRKALHAALVSRIKIMAQLDIAEKRLPQDGRIALRVAGRPIDVRVSTVPTGHGERVVMRLLDKQAGRLQLETLGMAPAVLSQLDQLIRQPHGIVLVTGPTGSGKTTTLYAALARLDASTSNILTVEDPVEYDLPGISQIQVNTRIDMSFGLALRAILRQDPDVIMIGEIRDQETAQIAVQASLTGHLVLATLHTNDAVSAVTRLTDIGVEPFLLASSLLGVLAQRLVRRLCPECKQPDEAAPGQWRPHGCPRCNHTGYSGRTGIHELFVVDDEVRRLIHQGEGEQALRTCARQAGMLSMREDGERWVSSGSTAREEILRVTRDA	PGPT0026430_2464	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026430-gspE|epsE-K02454	NA	NA
D1-36_02351	1212	epsF_1	COG1459	Type II secretion system protein F	ATGAACCGCTACCGTTTCGAGGCCGCCGATGCCTCGGGTAAAATCGAGCAAGGCGTGCTGGAGGCCGACAACCAGCGCGGTGCGATGGCTGAACTGCGTGGCCGTGGGCTGACGCCGTTGCGCATCGACGAGCAGTTGCAAGTCGGCAGCTCGGGTGCCTCGGGCCTGTTCAGCCCGAAATTGTCGGACAGCGACCTGGCCTGGGCTACCCGTCAATTGGCGAGCCTGTTGGGCGCCAGTCTGCCCCTGGAAGCGGCCCTGTCGGCCACCGTCGACCAGGCCGAGAAACGCCACATCGCCGACACCCTCGGCGCGGTGCGCGGCGATGTGCGCAACGGCATGCGCCTGGCCGATGCGCTGGCCGCGCGACCACGGGATTTTCCCGAGATCTACCGGGCGATGATCGCAGCGGGGGAGGAGTCTGGCGATCTCGCCCAGGTGATGGAGCGCCTGGCCGACTACATCGAAGAGCGCAACAACCTGCGGGGCAAGATCCTCACGGCCTTCATCTACCCAGCGGTGGTGGGCGTGGTGTCCATCGTCATCGTCATTTTCCTGCTGGGTTTCGTGGTGCCGCAGGTGGTCAGCGCGTTTTCCCAGGCGCGCCAGGACCTGCCAACCCTGACCCGAGTGATGCTGCAGGCCAGCGATTTCCTGCGCGCCTGGGGCTGGGCCTGTTTCGCCGGGCTGGCCGGTTGCTGGTGGGGGTGGCGCCGCTATTTGCGTAACGCCGAGGCACGCCTGGCCTGGCATAGCCGGGTGTTGCGGCTTCCGCTGATCGGCCGCTTCGTGCTTGGGGTGAACACGGCGCGTTTCGCCTCGACCTTGGCGATTCTCGGCAGCGCCGGCGTGCCGCTGTTGCGCGCCCTGGACGCCGCTGGGCAGACGCTGGCCAACGATCGCCTGGCTCATTGCGTTGCTGATGCGACGCTGCGGGTACGCGAAGGCGTGGGCCTGGCCAATGCGCTGCGAGTCGGCAAGGTGTTCCCGCCGATCCTGATCCACCTGATCGCCAGTGGCGAAAAAACCGGTAATTTGCCGCCCATGCTCGAACGCGCCGCGCAAACCCTGTCCCGCGACATCGAACGGCGGGCCATGGGCATGACGGCGCTCCTGGAGCCGCTGATGATTGTGATCATGGGAGGCGTCGTGCTGACCATCGTCATGGCTGTGTTGCTGCCGATCATCGAGATCAATCAGCTGGTGCAATGA	MNRYRFEAADASGKIEQGVLEADNQRGAMAELRGRGLTPLRIDEQLQVGSSGASGLFSPKLSDSDLAWATRQLASLLGASLPLEAALSATVDQAEKRHIADTLGAVRGDVRNGMRLADALAARPRDFPEIYRAMIAAGEESGDLAQVMERLADYIEERNNLRGKILTAFIYPAVVGVVSIVIVIFLLGFVVPQVVSAFSQARQDLPTLTRVMLQASDFLRAWGWACFAGLAGCWWGWRRYLRNAEARLAWHSRVLRLPLIGRFVLGVNTARFASTLAILGSAGVPLLRALDAAGQTLANDRLAHCVADATLRVREGVGLANALRVGKVFPPILIHLIASGEKTGNLPPMLERAAQTLSRDIERRAMGMTALLEPLMIVIMGGVVLTIVMAVLLPIIEINQLVQ	PGPT0026435_881	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026435-gspF|epsF-K02455	NA	NA
D1-36_02352	1233	phoA2	COG0226	Alkaline phosphatase L	ATGTTCAAGCGCAACGTTCTTGCTGTTTCCATGGCCGTCGCCGGCCTTTGCTCCGCCCAGGCCATGGCCGCTGTCGTCGGTGGCGGTGCCACTCTGCCGCAGAACCTGTACGGCGTGCCTCCAACCGGTGGCGTCGCTGCTCCCGTCGGCATCCTCAACGGCCCTGCGCCACAACCGGCCTTCGCCAACTACGTGGGTGTGGGCAGCGGCGGCGGCAAGACTGCTTTCCTGACCAACAACTCGGACGTGCTGGTCTGGAACCTCGACGGCAACTCGGCAACTGCCCTGGAAAAGGTCTACGTTCCGGCCGTGACCGTTGACTACGCCGGCAGCGATTCGATCCTGTCCAGCGCTGAACTGACCACCTATCGCGCCGCTCACCAGTCGCCAGCCGTGCCGACCGGCAACGCCGCCAACTGGGGTCCGATCATTCAGATCCCTGCCGAAGCCACTTCGGTCACCGTTCCATACAAACTCACGTTGGCCAACGGCACCGCCGTCAACAACCTGAACCTGACCAGCGCCCAGCTGTGCGACATTTTCTCTGGCACTGTCACCACCTGGAACCAGGTCAACAGCACCTACCCCAGCACCCCGATCAAGGTCTACTACCGTGCTGGCAGCAGCGGCACCAGTGAGATCTTCACCCGTCACCTGAACAGCCAGTGCCCGACCAAGTTCACCACCAACGGCACCTTCACCACGGCTGTCGGCACCGTTCCGGCGAACTCCACTGCCGTGACCGGCAGCACCGCGATGGCCAGCACCGTGCTTTCCACCGAAGGCGCCATCGGCTACGTCGGTCCGGAAGACGTCAACGCCAGCAGCAACGCCGTGGTCGCTCGCGTCAACGGCAACCTGCCCACCGTCGGCAACGTGACTACCGCCCTGAGCACCATCGCTCCGCCAGCCGCTGCTGATCGTGGCCTGCCGGAAAACTGGGCCAAGGTCCTGCCTAACCCGGCGACGGGCTACAGCATCGTTGGCTACACCTTCCTGGTGTTCAACCAGTGCTACAAAGACAGCACCGATACCGCGGCTGTACGTGACTTCATCGGTCGCCACTACACCCTGTCCGATGCCAACAACAACGACGATGAAATCATCGCCGCCAAGCTGATCCCGATCACCGACACCTGGAAAACTGCCATTCGCAGCACCTTCTGGACCGCCAGCAACTCGCTGTCGGTGGGTAACGCCACCGCCTGCAACGGCATTGGTCGTCCGCAATAA	MFKRNVLAVSMAVAGLCSAQAMAAVVGGGATLPQNLYGVPPTGGVAAPVGILNGPAPQPAFANYVGVGSGGGKTAFLTNNSDVLVWNLDGNSATALEKVYVPAVTVDYAGSDSILSSAELTTYRAAHQSPAVPTGNAANWGPIIQIPAEATSVTVPYKLTLANGTAVNNLNLTSAQLCDIFSGTVTTWNQVNSTYPSTPIKVYYRAGSSGTSEIFTRHLNSQCPTKFTTNGTFTTAVGTVPANSTAVTGSTAMASTVLSTEGAIGYVGPEDVNASSNAVVARVNGNLPTVGNVTTALSTIAPPAAADRGLPENWAKVLPNPATGYSIVGYTFLVFNQCYKDSTDTAAVRDFIGRHYTLSDANNNDDEIIAAKLIPITDTWKTAIRSTFWTASNSLSVGNATACNGIGRPQ	PGPT0002625_832	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
D1-36_02353	12510			hypothetical protein	ATGCGTTGCCGCCCCCAGAAAGCCACTCGCCGTAATGCTGATTCCGCCGCTGTGCCGTGCCTCAAGCCCTTGGCCCAAGCCATCGCCTTGCTGTTGCTAGCCAACCCCGCCTACGCAGCGACCAGTTTCAGTTCGGCCTGGTTCGCGGCCAAGGGCGCGGCTCCGGCGGCGGGCCCGGCCAGCCCCAGCGCGCCTCGCCCTGGAACGCCTCCACCGCTGGCGCAGCAGCAACGGGTGCAGCAGCAGTTGGGCCGTTCGCTGGCGAACATGAACAGCACGGTGGCGGCCATTGCGGCCAGCCAAGCTGCCCAGGCGGCAGGACGTGCGGCTACCTTTGGCGCACCGCAAACCATCCATAACGGTTTGGGTGGCAATGGCCTGAACGCGGTGATTGGTCCGGACGGCAAGCCGCTGTTCGTCAACGCCAATGGCCCGGTACAGACCGATGCCAATGGCAAGGTCGTGGTGACCGTCAAGCAGACCGCCGACAAGGCCATCCTCAACTGGGACACGTTCAATATCGGCCGTGACACCACCCTGGCGTTTCAACAGGACGCCAGTTGGGCGGCGTTGAACAAGGTCAACAACAGCACCGCGCCGAGCCAGATCCAGGGCCAGATCAAGGCCGACGGCACGGTGATGATTCTCAACAGCAACGGCGTGGTGTTCAGCGGCAGCAGCCAGGTCAACGTGCGTAACCTGGTGGCGGCCGCCACGGATTTCAGCGACGAACAGTTCAAGACCGGTGGCCTCTACAACGCCAACGCGGCGAGCTTTACCAACGCCCAGGGCGGGATCCGGGTGGAGAAGGGCGCGCAGATTTCCACGGCCGCCCCGAGCAAATCGACCGCCGGTGGCGGCTATGTGTTGTTGCTGGGCAAAAACGTCGACAACGCGGGCACCATCAGTACCCCGCGTGGACAGACCGTGCTGGCGGCGGGCGGCAGCTTTACCATCAAGAAGGGCTTCGCCAGCGATGGTAACTCGACGTCGACCACGCGCGGCAATGAAGTCATCGCCCACCAGGATGGCGGCACGGGCGCCGGCCGGGTGAGCAACACAGGATTATTGATGGCGGCCAGCGGTGATGTGACGCTGACCGGCAATCAAGTGCGGCAGAACGGCGTAGCCGTGGCCAGCACTTCGGCGGACACCCGTGGCACGCTGCACCTCACGGCGCGAGGCAGCGATGCCAGCGTGGCCCTGGGCGAGGGCAGCACCACGGCGATTCTAGTGGATGCCAGCGCGAAGGCTCTGGACAGCCAACGCGACAGTGCCTTGAAACCGATCGTCAGCCAGGACGGCAAAGTCATTCCAGCGGACACCTATCGCCGCGACCTGTCCCTGGTGCAGATCGACAGCGCCGGCAGCGTCGATTTCCAGAAGGGATCGATCACCCTCGCCACGGGCGGTCAGGTGGCGGTGAACGCCGGCACCCGCAGCCTGGTGCGCGACGGTGCGGTGATCGACGTCTCCGGCGCCACCGGCGTCAAGGTGGCGATGGAAGCCAACAGCATCAAGGTCAACATCCAGGGAAACGAGCAGCGCGATGCCGCCGGCAACCGGGATGAAGGTGCGTTGAACAACAATGATGTTTGGGTGGATGCCCGAGAGTTGGTATTCGTACCCGCCGGCACCAACGGCTACGCCACTGATCGCTGGTACACCGCCGGTGGTCTGCTGGAAGTCAGCGGCTACCTCGGTACTCAGGGCCACAGCGCCGCCGAATGGATGGCCCAGGGCGGCACCGTGAGTTTTACCGGTAATGATGTGGTGACCCAGGCCGGCTCGCAGGTCAATCTGTCCGGCGGCACGCTGGATGTGCAGAGCGGCACCGTCAAGCAGACCTGGCTCAAGGGCGCCGATGGCCGCTTGTATGAACTCAACAGTGCGCCTGGGGACATGCTCTACACCGGGATCTACAAGGGATACGAAGACCACACCCAGCGCTGGGGACAAACGAAGTATTACTACAATCCCTTGATTGCTCCACGTTCGCGCCAGGAGGCCGGCTACACGGTCGGCCGCGACGCCGGCACCCTGGTGATCGGGACTAAAAACGCGGTGCTCGAAGGCACGCTCGCCAGCGATACCTTCCAGGGTGACCGTCAGACCCGCGCCGCCCAGGCCGGCCTGGATGGCTACCAGCAATCGCAGAAAGCGGTGGCCCGTGGCGGGCAGTTGGTGGTCGGCTCGTACGTGCCGTTCTACGTGAAGGAAAGCGGCACTGTGGAATATGCCCTTGGCGCCACGGCCAATACCTTGAAGAACGTGATCTTCGGCCAAGACGCGGCGGGCGTTGCCGGTAGCGTCGGTCTGGACGGTGCCTTGCCGACGGATCGCCAGGGCACGTTGTACCTGGACAGTAACCAGCTCAACGGCTTCAAGCTCGGTGCCGTCAAGGTCGCTGCGAGCGAAGGCATCACAGTCAACGGTGCGTTGCAGGTGGCTCCGGCCGGTTCCATCAGCCTGTTTGGCCCGAAGGTGGCCGTGAATGCCAATCTTACTGCCCACGCTGGTGCCATTCAGGTAGGCAGGGATTTCGTCCAGGTCGACGGCACGATGCCAGTTGCCGGCGCGTCCTCGGTCAGGGTGGCTGACCGGGTGCGTCTGGATGCCAGCGGGCTGTGGAGCAATCTACAACTGGACCCTGGCGATATCAGCGCCTTGCCTTACCAGAACGGCGGCAGCATCGCCCTGAAAGCCGGCGGCGCCATCGTGCTGGGTGCCGGCAGCGTGCTGGACGTTTCTTCCGGAGCGGCACTGCTCAACTCAGGCAAGTTCCAGGGCGGCAAGGGCGGCGATGTCACCTTGAGCACTCTCACGGGCGAATTGAGCCTGGGCGGCGAATTGCGGGGCCAGGGTGTAAAGGGCGGCGGCACTCTTCAAATGCAGGCCGGTAAAGTGCTGATCAGTGACACCGCGACGTCGGCGGCGGAAGGTACCTTGCTGCTCCATGGCGACTTCTTCAAAAAAGGCTTTTCCGCCTACGACATCATCGGCAACGACGGCCTTGAGGTTGCCGAGGGCACCCGGGTCGATGTCACCATGCCGGTTTATCGCCAAGGTGCTGGCGCGCCTGGGGTCGCCACCGGTGGTGCATCGGGCAGCGCGCTGGAAACCTGGACGCCGCCGCTGTACCTCGAAGACGCCAGCAAGGGCGTGCTGACCCAGCGCCAGGGTGCCAGCCTGTCCTTGCAAGCCGGCAGCCAGCAAACCGGCGCGGCGAATGTCGCCACGGCTGACCTGCTGGTGGGCAAGTCGGCGGTGTTGAATGTCGACCCCGGACAAGCGATCCGCTTGACGGGCATTGGCCAAATCACCGTGGACGGCACCTTGAATGCCTGGGGCGGCTCGATCACTGTCGGCTCCGCGCCTGGGCCGCAAGCGGCGGTCATACCGCCCGGTGACAACTTCAAGTCGATCTGGATCGGCGAGAACGCGGTCCTGGACGTAGCCGCTCGCGCCGCCACCGCCACGGGTACCAGGGGGACCCAATACGGGTTCGTGCGTAACGGCGGAAGTATCGTCATCGGTGGTGAAATCGACCATGCGACGGGCGACGGCGGCGGTATCGGAAAATTCATCGTGGTGCGCGAAGGCGCGTTGCTCGATGCTTCGGGTGCCCAGGCGGTGCTGGATGACGCGGGGCAACGCCGAGTGGTTGCCAGCCACGGCGGCGACATCAGTTTTGGCTCGACCAGTGGGCTTTACCTGGACGGTCAGTTCAAGGCTGCCGCCGGCGGTGCCGGAGCGGCGGGCGGGAGCTTGTCGGTCGGGCTCGGGGCGACGGTTTATTTGAACAGCTCGGATTTGCCGGACAACCAGCGCAAGACTCGCGAACTGATTATCGAGCAGCACCATTCCGCGACGGGTATCACGGCCGGGAGCGCGCCAGAGCAGGGCGCCTCCCTGCTGGAGCACGGCTATGCACGGCTTGCGGTGGATCAGGTCGAGGCCGGCGGCTTTGATACGTTGTCCCTTTTCAGTACCGGTCTGCTGACCTTCGATGGCAATGTCAACCTGACGATGGCCAATGCGCTTCAGCTCTACGCGGGTGCGTACGGCATGGCGGAGACAGCGGCGGCGGACTCGGTGGTCAAACTGCGCGGTAACTATGTGCGCTTGGCCGGCGCGCAAGATAATACGACCGCCGGGGCTGACAACAGCAGCACCGGCATAGGGCTGGCGCCTTCGGCACGACCTGCCGCAGGGCAGTTGTTGGTGTCAGCGACCGGGTTGCTTGAGGTTCGCGACGCGGTGAGGATCGGTGGCAGCGGAACGCTGACGATGGCCCAGGGCGAAGTTCGAAACGTCGATCGTCGTGGTTTTGCGGATTTGCAATTGAACAGCCAGGGTGACATTCGGATGGCGAGCAGCCAGGCCGATCATAAAATGTTACTTCGAACGCCCGTCGTCCTGGGCCTCACCGCCGCGCAGATCTATCCCGGCACCGGCGTGCAAGGGACGCTGACCGCCAAGCGCATGGACATAGGCCGCAACGGCTCGGCGATTCCCTCGGTGCCTTATTCCGCGTTCGGCGAGTTGCGGCTTGAAGCGGATGTCATCAACCAGGGCGGCATTCTGCGAGCGCCATTGGGCAACCTGATCATCGGCCAGACGGCGCTGGAAACGGAGGGGCGACCTGGCAGTGACGTGAACCTGCTGTCAGGCAGCCTGACCTCCGTCAGCGGCGCGGGGCTCGTCATGCCCTATGGCGGAACAGCGGATGGCAAGTCCTACGTGTTCGATGGCGTGACGCTCGACAAGAGCCTGCTGCGGCCCGCCCTCAATGGCGTGCCGGGAAAGATAGATCTGGTGGGCGAGACCATCGACGTCGCGGCGGGAGCCGTGGTGGACGTGTCCGGTGGGGGTGAATTGACCGGCGCCGGGTTCATCTCGGGGCGTGGCGGCTCCACTGACGCGCGCTTCAACCCCTTGGTGCAGTTCGGTTCGGACGGTTTCCTGTTACCGGCACTGAGCAGCAACCCGGTCTACGCCATCGTTCCTGGCGTACAGACCGGCTATGCGCCCGTGGGCGGTGAAGCCGGCGCCGTCGCCCCCTTGGCCGGCCAACAGATTACCCTCGGTGCCGGCGTCCCCGGCTTGCCGGCCGGCACCTATACCTTGCTGCCCTCGACCTACGCGCTGCTGCCGGGTGCGTTTCGCATCGAGGTCAACGGCCTGGCCGGGCAGGGCGGGGTGGTGCCGACCCAGGCCATGCGTAACGGCTCCTGGGCAACGGCCGGTACCCTCGGCATTGCCGGCACCGGCGTACGCGACAGTCTGGCGAGCCAGGTGATCGTCACCGCGGCCGATACGCTGCGCCGCTATTCGCAGTACAACGAGACCAGCTTCAGTCAGTTCGCCCTGGCGGACGCGGCGCGCCTGGGCGTGCCCGCCGTCCTGCTGCCCCGGGATGCCAAGGCGTTCAACGTCACGTTCGAGCGCAACCAGAGTGACCAACCGAGCTTCAGTTTTGCCGGCAAACTGCTGAGCAAAGCAGCCAAAGAGGGTCGCGGCAGCACCACCTCACTCACGTTGGTCAGGGCCGGGGACCTGGAAATCATCAAGGCTGGACAGGTAGCCAACGCCGGATTGAACGGTGTAACCCTGACCGACGATGCGGTGAACGCCATCGGCGCCAGCAGCCTGTTCATCGGCGGTTATGCCTTGGCCCGCTATGGCCAGGGCGGTAACTTCCTTGAGTTCGGAGATGGTAATGGCTCCGTCGCCAGGACCCAAAATATCACCTTGCGCAGCGGCGCGACCTTGCGGGCACCTGAAGTGTTCCTGGTGACGTCCAGCCCGAATGGCGGCATCACCGTGGAGCAGGGCGCGTCGATCAATACGCTGGGCATGGGCGCCGTGGCCCGTGACTCGCGTGATGGCTATCTCTACAACCCCGGCCGCAACAGCGTGCTCGCCGTCTCCAATGGCTACGTGAACATGCTGGCACCTGCGGCGCCCAACCCGATGACGCCGGACAGCGCACCTGGCATTATCCGCATCGGTGTATGCGATGGTGTTTGCAGCGGTACAACCCGTTTGTACTCCGAAGGCACCATCGCTTCGGCCACGGACAATCGCTTCGAGCTGACGGATGCCGTACGCTTCGGTACCCGTAACCTGACCCTGGCGGTTGGCGGCATCAACGTTGGCAGCGCCGAGACCCTGGCCGACCTGGCGTCACGCAATCTGTTGCCCAGCGGGCTGACACTCAACCAGCAGGTGCTCGACCGCCTGTTGCAGGGCGATACCAGCGCTGGCGCGCCGGCGCTCGAAACCCTGGTGCTGGGCGCGCGCGATTCACTGAATTTCTATGGCAACGCCAGCCTCGATACCTTTGACGCTGTGACCGGCAAGTCGCGGCTCAAGGAATTGGTGCTTGGCACTCCAGCGATCTATGGCAAAGGCAATGCCAATGAAACGGCGCTGATTCGCACCGGTAACCTGATCTGGAATGGGGTGCAAAACGAGGCTGGCAGCATCGTGGCCGGCGGCGCGGGCACCGGCACGGGCAACCTGCAGATCGATGCCCAACGCATCGAGTTTGGTTATGCCCCAGCCACCGAGTCCAAGGCGGCCAAGGCCTATGACCGGCTTGCACTGGGATTTGCCAACGTCAATCTCAACGCCAGCGAACGCATCACCGCCAACCATAAGGGTGGCCTGCTGGTTTACCAGCGTCAGGGTGAATACATCACAGGCAAGGGGTTCCAGTACAGCGGCGGCAACCTGAACATCCTCACGCCGTTGATGACCGGCGAGGCCGGGTCGGTCAACCGGATCACCGCAGGCGGCAATATCCGTGTCAGCGCTCCGTCGGGCAGTCGCTTGCCGGTGGCCAGCGCCGATAGCTTGGGCGCCGAGCTGGCGTTGAACGGCAAGAACGTGCGGGTCGAAGGCAACGTGGTACTGCCCAGCGGCAAGCTGACCCTCAGCGCCGAGGATGAATTGACCCTCACCGATGCCGCGCGCCTCGACCTGGCCGGACGCAAAATCACCTTCAACGATGTCAGCAAGTACAGCTGGGGTGGTGACCTGATCCTCGAAAGCCGCAACGGCAATATCCGCCAGGCCGCCGGCTCGGTGATCGATCTCTCCGCCGTGAACAACCAGGCCGGGACCCTCAAGGCCACCGCATTGGCGGCGGCCGCTGGCAAGGTCGACCTGGCGGGCAGCGTGCTGGGCAGCAGCAGCGGCTACTACGATGCGGGCGGCACCGCGGTGCCCTACAAGGCCGGCAGCGTGGACATCCGCGCCCAACGCCTGGGCGATGGCAGCCTGAGCGATGACTTCGCCGCCCTCAACCAACGCCTGAACCAGGGCCAGGTCTTCGGCGGCCGCAGCTTCCAGCTCAAGCAGGGTGACCTGGTGATCGGCGATGGCCTCAAGGCCGGCGTGATCAGCGTGTCAGTGGACAGCGGCAAACTCACCGTCAACGGCACCGTGGACGCCAGTGGCGAGCGCGTGGGGTCCATTCGCCTGGCGGGCAAGCAAGGCTTGACCGTGGGCGGCGACGCGGTGCTCGACGCCCACGGCCGCGTGCTGCGGGTGGACAGTTACGGCCAGATCATCGATTCGCCGAACCGCGCCATGGTTGAGCTCAGTTCCGGAGATGGCCTGCTGACGCTGGCCGGTGGCGCGCGCATCGATTTGCGCCATGGCACCGCCACCACGGTCGGCCACGACGGCAAGGCCCGTGGCACCCTGGAGCTGAATGCGCCACGCCTGGGCGGGGCCACGGCCGGCGACATCGCCATCGACGCCAGCGGCAACCTGAACATCCAGGGCGCCAAGCTGATCGCGCTCAATGGCGTGCAACGCTACGACGATGCCGCCTACGGCACCGACCCGGCGGCCAGTGGCCGGCCGTACCAAGTCATCAATCAGGACTACCTCAACGGTATCCATGACGACAACCGCGACTTTATCGACAATGCCTTGAACAACAATGGCTTACGCGATGGCAAGCTGGCGGGCCTCAACAATGCCGCCTATCGCAACGCTTTCCACCTGCGCCCCGGCGTCGAAATCGTCAGTGCCACCGCCGACGGTGACCTGGTGGTGCAGGGCGACCTGGACCTGTCCGGCTATCGCTACGCCAGCCTCAATCCGCTGACACCCCAAACGTCTGTATACGGTTCCGGCGAAGTCGGCAGCCTGGTACTGCGTGCCGGGGGCGACCTGACCGTGCTTGGCAGCATCAACGATGGTTTCGCGCCGCCGCCAGAAACACCGGACGACGATGGTTGGGTGTTGACCCCCGGCAAGCAAATGTTCAACGGCGATGTGATCGTGCCGCGAGCGGGCATTGAATTGCAGGACGGCACCACGTTCCTGTCCGGCGCGACCCTCAACTACGACCTGCCACTGCAAGCCATTACCCTGGCCGCGGGAACCCGCCTGCCCGTGGACGGCGAGTTGGCCGAAGCGATTTCATTGCCTGCCGGCACTGTTTTGGCGGCAGATATCCGTTATAGCGATGGCCGTGTGGCCTATGCCGCCGGTACACGCCTGACGGCCGATCTGACCGTGGCTCAAGGAATGGTCCTTGGAGGTGGTTCGGTGTTGATCGGCGATACCGCCTTGACCGGATTGGTCTGGCCAAAAGGTGTGGCCCTGCCCAGCCGTCCGGCAAGTTCGGTGACAGTTCATAGCCCAAGCACCGTGGTTCAGGCGGGCGCGCTGCTCTTGCCTTTGGGCGCGCTGATACCCGCGGGTACCGACGTGAAGCTGGCCGCAGGCGTGGAAAAAATCAATCTGCGCGGCGGCGATGGCAAGGGCCGTAACTGGGCGATAGCCCCGATGTTGGCCGAGGGCTCGCAGTCCTGGTCGTTGCGTGCCGTGGCGGGCGCCGATTTGCAGGCCGCTGATACCCGCCTGGCCAATCCTTATGCCGAGCATGGACGCTTCACGGTGGCCGACACTCACTATGGAATGCTGGCCAAGGCGGGTGGCTTGGTGTTGACCGATCAAGCCTCGCTCGACTATTACGGTGACTTGAGCTACTCCGGGCGGCCTGTCGCCGAGTTGGCTGACCTCTACGGCATAAGCGTCGACGAGTTCTGCGGGCAGGGGGCAGGGCTCTGTGTCGCTGCGGGGCGGACGCTGACCGAGCAAGCCTCGCTCGACTATTTCGGTGACCTGACTTATGTCGGGCGACCGGTGGCGGAACTGGCGGACCTGTATGGCATGTCCGAGGACGAATTCTGTTCGCAAGCGCCCGGGTTATGCATCGGTGGGAGCGTTTACACCTACGTGGTGGGCACCAGCAGCTTCAGTGTTCTTCGTACCGGTACCGGCGATCTGGACTTGATCAGCGCGGGTGATTTCAGCATGCAGTCGCTGTTTGGCATTTATACCGCGGGCACCTCGTCCTTGAGCCTGGCTGACTCGGCGGGCTACAACCTTGCGCGAGGCGTCTCGCTGAATAAAACCGGCCTGCCGACTGACTCGATTCTGGGGAACGGTGACAGCCCTTATGAACGCTTGGTGGATGGCGGCGCAGACAGCCGATATCGCGCATGGTATCCAGACCATGGCGGTAATCTGCTGCTGTCGGTGGGCGGCGATTTGGCCGGTGACATAGTCGGCAGAAAACAAAGTACTCTCGTGACCGAAGACGCACCGCAGATAGAGAGCTCGGGGGTTGGGAATTGGTTGTGGCGCCAGGGCGATGGTGACGGTACGCCTACCGCCTGGTGGATTAACTTCGGCACTTATGTGCCCCATGGCACCGATCCGGTATTGAACGGTTTTACCGGTATCGGCACCTTGGGTGGCGGCAACGTGGATGTGCGAGTCGCAGGCGACGCGGGTATGTTGGCCCCCCGTGGAGAGCGAGGTGAGCAGAGCGCCAGTCGCAGTCAGGGGATCGTCTTGGCGGTCGGCTCGACCGGGCGCATGGTGGACGGTCAATTGAAGTTCACGGGTGGCGGTGACCTGTCGCTGACAATCGGCGGCGCGCTCAACCCTTCACTGGAGGCTAGGGCGTTTCTCGACTTAGCCGGCCAGCCGGTTGATTCGCGCCATGACATGAATGGCAGCCTGACGAACTTGCGGGGTTCGCTGAGGGCCAGTGCCGGTTCGTTCGGCGGCATGGAATTGATCAACGGTCCGGACAAGGTTTCGCAGGACCCCCGAGAGATCCGTGCCTACAACCCATACGATGCAACGATGGCCAGCGCGACCGGTGGACTGCTGCTGGTACCCGGCGATGCCACCGCCAGTCTGGATGCCCGTGGCGATCTCGTACTTGGCGGCGCAGTGGACCCGGGCCGTGCGCCGACACGAGTCGCCCAGTCGGTGGACCTGGGCGGCGGGACCAGAGGCCCCGGATATTCCTGGTTCAGCCTGTGGACCGACCATACCGCTATCGATCTGTTTGCCGCCGGAGGGAACCTTACGCCTTCGACCCAAGGCGCAGAGCTTTCGATTGGCGTCAATACCGCCACGCCTCGTAGCGGCATGGACTATTCGCAAACCGACGGGCGTTTCGTCTATCCGTCGATTTTGCGGGTAGCCGCGCCCTCAGGCAGTCTGTATTACGGGCCCTCATCACGCGGGGTAGGGGGTTTTGTGACCCCCTATTCCTTGATCCTGGCGCCTGGAAACCAGGCGCAGCTGGAATTTCTCGCTGGGGATTCGATTTATGCGGGAGGCTACGCAATATCACCCACCCGTGCTCCGGCAAGCAGCCTGACGACCCCAGACAATCCTGCGTTCTATTACAAGGACGAGTCGGGCGGGCTGCATGGCGATCTGGAAGGGGCGAGTGCGACCCCCTCGGTAAGGAGTATCGGAATGGGCTTGTTCGCGTTTGGCGGTACAGGGTCTGGCGGAGATTATCGAGGCGCGGACCAGCCGGTACGCTTCTACGCCGTCAGGGGCGATATCGTTGGGTTGCGCACGGGTGAGTTGATTGCCATTAGTGCCGGTCGCTGGGCCGGCGAGACCTGGTACGAGGCCGCCAGCCCCGCATGGATCATGGCGGGGCGGGATATCGTTAACAGTGGTGACATTGCGGGCACTTCACTGACGCAGTTTGAAAGCTCGCCCATCAGCACCGGCAACCTGTTCGTCCACGACGACCCCACCGACATCTCCATTGTCTCCGCCGGCCGGGACATTCTCTACAGCACTTTCAATGTCGCCGGCCCCGGCACGCTGGAGATCAGCGCCGGGCGCAATATCCTGATGGAAGACCAGGCCGCGGTGACCAGCCTCGGTCCGGTGAAGTCCGGTGACAACCGCCCAGGCGCAAGCATCGTGATGCAAGCCGGCGTGGGCGCGACGGGGCCGGATTACCTGGGCTTCGTGCGGCAATACCTGGACCCGGCCAACCTGGCGGACGCCGCTGTCGGCCTGGCCCAACAGCCGGGCAAGGTGGCGAAAACCTATGAGGTCGAGTTGGCGGCCTGGCTGGCGTCGCGGTATGGCTTCAGCGGTGAGGCCGATCAGGCGCAGGCTTATTTCGCCGCGTTGCCGGCCGAGCAGCAGCGGGTGTTCGCCCGCGAGGTGTACTTTGCCGAGCTGCGTGCCGGTGGTCGCGAGTACAACAACGCCAGCAGTCCTCGTTCCGGTAGCTACTTGCGTGGTCGCAACGCCATCGCCGCGCTGTTTCCGACCCACGACGTGGCTGGCAACCCGCTGGCTTACCAGGGCGATATCACGATGTTCGGCGGCGCTGGGGTGCACACCAACTTTGGTGGCGATATCCAGATGCTGACGCCAGGCGGGCAGCAGATTTTTGGTATCGAAGGCGAAGCGCCGCCGTCCAGTGCCGGGGTCATCACTCAAGGTGTCGGCGACATCCAGTTGTTCAGCAACGGCAGCGTGTTGCTGGGACAAAGCCGGATCATGACCACCTTTGGCGGCGACATCCTCGCCTGGTCGGCGACGGGTGATATCAACGCCGGTCGCGGTTCGAAAACTACCCTGGTGTACACACCGCCCAAGCGCGTCTACGACAACTGGGGCAACGTCACCCTGTCGTCGTCGGTGCCGAGCACTGGCGCCGGTATCGCCACGCTCAACCCCATCGCCGAGGTCGCGCCGGGCGATATCGACCTGCTCGCGCCGCTCGGCACCATCGACGCGGGAGAGGCGGGCATCCGGGTCTCGGGCAACATCAACATTGCCGCGTTGCATGTAGTGAACGCCGCCAACATCCAGGTGCAAGGCAAGTCCAACGGCGTGCCGGTCAGCGCGGTGGTCAACACTGGCGCACTGACCAACGCCAGCTCCGCCGCAGCGTCGGCGAGCGATGCCGCCGAAGGCGTCGCGCGCGAGCAACAGGCCGCGTCGCGCAACCGTATGCCATCGGTGTTCAGCGTGCAGGTCCTGGGCTTCGGCAACGAACGTCTGGCGCCGTCCCAGGAAGGCGCCAGCCGGGCACCGGACCCTGAACCGAACAACAGCGTGCGGGTATTGGGCGCCGGACGGTTGGACGACCAGGCGCGTAATCAGTTGACCCCGGAGGAACAGCGCAACCTGACGCTCTAA	MRCRPQKATRRNADSAAVPCLKPLAQAIALLLLANPAYAATSFSSAWFAAKGAAPAAGPASPSAPRPGTPPPLAQQQRVQQQLGRSLANMNSTVAAIAASQAAQAAGRAATFGAPQTIHNGLGGNGLNAVIGPDGKPLFVNANGPVQTDANGKVVVTVKQTADKAILNWDTFNIGRDTTLAFQQDASWAALNKVNNSTAPSQIQGQIKADGTVMILNSNGVVFSGSSQVNVRNLVAAATDFSDEQFKTGGLYNANAASFTNAQGGIRVEKGAQISTAAPSKSTAGGGYVLLLGKNVDNAGTISTPRGQTVLAAGGSFTIKKGFASDGNSTSTTRGNEVIAHQDGGTGAGRVSNTGLLMAASGDVTLTGNQVRQNGVAVASTSADTRGTLHLTARGSDASVALGEGSTTAILVDASAKALDSQRDSALKPIVSQDGKVIPADTYRRDLSLVQIDSAGSVDFQKGSITLATGGQVAVNAGTRSLVRDGAVIDVSGATGVKVAMEANSIKVNIQGNEQRDAAGNRDEGALNNNDVWVDARELVFVPAGTNGYATDRWYTAGGLLEVSGYLGTQGHSAAEWMAQGGTVSFTGNDVVTQAGSQVNLSGGTLDVQSGTVKQTWLKGADGRLYELNSAPGDMLYTGIYKGYEDHTQRWGQTKYYYNPLIAPRSRQEAGYTVGRDAGTLVIGTKNAVLEGTLASDTFQGDRQTRAAQAGLDGYQQSQKAVARGGQLVVGSYVPFYVKESGTVEYALGATANTLKNVIFGQDAAGVAGSVGLDGALPTDRQGTLYLDSNQLNGFKLGAVKVAASEGITVNGALQVAPAGSISLFGPKVAVNANLTAHAGAIQVGRDFVQVDGTMPVAGASSVRVADRVRLDASGLWSNLQLDPGDISALPYQNGGSIALKAGGAIVLGAGSVLDVSSGAALLNSGKFQGGKGGDVTLSTLTGELSLGGELRGQGVKGGGTLQMQAGKVLISDTATSAAEGTLLLHGDFFKKGFSAYDIIGNDGLEVAEGTRVDVTMPVYRQGAGAPGVATGGASGSALETWTPPLYLEDASKGVLTQRQGASLSLQAGSQQTGAANVATADLLVGKSAVLNVDPGQAIRLTGIGQITVDGTLNAWGGSITVGSAPGPQAAVIPPGDNFKSIWIGENAVLDVAARAATATGTRGTQYGFVRNGGSIVIGGEIDHATGDGGGIGKFIVVREGALLDASGAQAVLDDAGQRRVVASHGGDISFGSTSGLYLDGQFKAAAGGAGAAGGSLSVGLGATVYLNSSDLPDNQRKTRELIIEQHHSATGITAGSAPEQGASLLEHGYARLAVDQVEAGGFDTLSLFSTGLLTFDGNVNLTMANALQLYAGAYGMAETAAADSVVKLRGNYVRLAGAQDNTTAGADNSSTGIGLAPSARPAAGQLLVSATGLLEVRDAVRIGGSGTLTMAQGEVRNVDRRGFADLQLNSQGDIRMASSQADHKMLLRTPVVLGLTAAQIYPGTGVQGTLTAKRMDIGRNGSAIPSVPYSAFGELRLEADVINQGGILRAPLGNLIIGQTALETEGRPGSDVNLLSGSLTSVSGAGLVMPYGGTADGKSYVFDGVTLDKSLLRPALNGVPGKIDLVGETIDVAAGAVVDVSGGGELTGAGFISGRGGSTDARFNPLVQFGSDGFLLPALSSNPVYAIVPGVQTGYAPVGGEAGAVAPLAGQQITLGAGVPGLPAGTYTLLPSTYALLPGAFRIEVNGLAGQGGVVPTQAMRNGSWATAGTLGIAGTGVRDSLASQVIVTAADTLRRYSQYNETSFSQFALADAARLGVPAVLLPRDAKAFNVTFERNQSDQPSFSFAGKLLSKAAKEGRGSTTSLTLVRAGDLEIIKAGQVANAGLNGVTLTDDAVNAIGASSLFIGGYALARYGQGGNFLEFGDGNGSVARTQNITLRSGATLRAPEVFLVTSSPNGGITVEQGASINTLGMGAVARDSRDGYLYNPGRNSVLAVSNGYVNMLAPAAPNPMTPDSAPGIIRIGVCDGVCSGTTRLYSEGTIASATDNRFELTDAVRFGTRNLTLAVGGINVGSAETLADLASRNLLPSGLTLNQQVLDRLLQGDTSAGAPALETLVLGARDSLNFYGNASLDTFDAVTGKSRLKELVLGTPAIYGKGNANETALIRTGNLIWNGVQNEAGSIVAGGAGTGTGNLQIDAQRIEFGYAPATESKAAKAYDRLALGFANVNLNASERITANHKGGLLVYQRQGEYITGKGFQYSGGNLNILTPLMTGEAGSVNRITAGGNIRVSAPSGSRLPVASADSLGAELALNGKNVRVEGNVVLPSGKLTLSAEDELTLTDAARLDLAGRKITFNDVSKYSWGGDLILESRNGNIRQAAGSVIDLSAVNNQAGTLKATALAAAAGKVDLAGSVLGSSSGYYDAGGTAVPYKAGSVDIRAQRLGDGSLSDDFAALNQRLNQGQVFGGRSFQLKQGDLVIGDGLKAGVISVSVDSGKLTVNGTVDASGERVGSIRLAGKQGLTVGGDAVLDAHGRVLRVDSYGQIIDSPNRAMVELSSGDGLLTLAGGARIDLRHGTATTVGHDGKARGTLELNAPRLGGATAGDIAIDASGNLNIQGAKLIALNGVQRYDDAAYGTDPAASGRPYQVINQDYLNGIHDDNRDFIDNALNNNGLRDGKLAGLNNAAYRNAFHLRPGVEIVSATADGDLVVQGDLDLSGYRYASLNPLTPQTSVYGSGEVGSLVLRAGGDLTVLGSINDGFAPPPETPDDDGWVLTPGKQMFNGDVIVPRAGIELQDGTTFLSGATLNYDLPLQAITLAAGTRLPVDGELAEAISLPAGTVLAADIRYSDGRVAYAAGTRLTADLTVAQGMVLGGGSVLIGDTALTGLVWPKGVALPSRPASSVTVHSPSTVVQAGALLLPLGALIPAGTDVKLAAGVEKINLRGGDGKGRNWAIAPMLAEGSQSWSLRAVAGADLQAADTRLANPYAEHGRFTVADTHYGMLAKAGGLVLTDQASLDYYGDLSYSGRPVAELADLYGISVDEFCGQGAGLCVAAGRTLTEQASLDYFGDLTYVGRPVAELADLYGMSEDEFCSQAPGLCIGGSVYTYVVGTSSFSVLRTGTGDLDLISAGDFSMQSLFGIYTAGTSSLSLADSAGYNLARGVSLNKTGLPTDSILGNGDSPYERLVDGGADSRYRAWYPDHGGNLLLSVGGDLAGDIVGRKQSTLVTEDAPQIESSGVGNWLWRQGDGDGTPTAWWINFGTYVPHGTDPVLNGFTGIGTLGGGNVDVRVAGDAGMLAPRGERGEQSASRSQGIVLAVGSTGRMVDGQLKFTGGGDLSLTIGGALNPSLEARAFLDLAGQPVDSRHDMNGSLTNLRGSLRASAGSFGGMELINGPDKVSQDPREIRAYNPYDATMASATGGLLLVPGDATASLDARGDLVLGGAVDPGRAPTRVAQSVDLGGGTRGPGYSWFSLWTDHTAIDLFAAGGNLTPSTQGAELSIGVNTATPRSGMDYSQTDGRFVYPSILRVAAPSGSLYYGPSSRGVGGFVTPYSLILAPGNQAQLEFLAGDSIYAGGYAISPTRAPASSLTTPDNPAFYYKDESGGLHGDLEGASATPSVRSIGMGLFAFGGTGSGGDYRGADQPVRFYAVRGDIVGLRTGELIAISAGRWAGETWYEAASPAWIMAGRDIVNSGDIAGTSLTQFESSPISTGNLFVHDDPTDISIVSAGRDILYSTFNVAGPGTLEISAGRNILMEDQAAVTSLGPVKSGDNRPGASIVMQAGVGATGPDYLGFVRQYLDPANLADAAVGLAQQPGKVAKTYEVELAAWLASRYGFSGEADQAQAYFAALPAEQQRVFAREVYFAELRAGGREYNNASSPRSGSYLRGRNAIAALFPTHDVAGNPLAYQGDITMFGGAGVHTNFGGDIQMLTPGGQQIFGIEGEAPPSSAGVITQGVGDIQLFSNGSVLLGQSRIMTTFGGDILAWSATGDINAGRGSKTTLVYTPPKRVYDNWGNVTLSSSVPSTGAGIATLNPIAEVAPGDIDLLAPLGTIDAGEAGIRVSGNINIAALHVVNAANIQVQGKSNGVPVSAVVNTGALTNASSAAASASDAAEGVAREQQAASRNRMPSVFSVQVLGFGNERLAPSQEGASRAPDPEPNNSVRVLGAGRLDDQARNQLTPEEQRNLTL	PGPT0003647_25	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-HEMOPHORES-HEME|HEMIN_TRANSPORT,PGPT0003647-hxuA-NA	NA	NA
D1-36_02354	693			hypothetical protein	GTGGACGAAAAGGCCTTATGCAGGGAAGCCGGACAACTTTTTTCTGGCGCTATTTCGCGCTGGATGCCAGGTGTGACAGGGGCATTGGGGTCTATGGAAAGTTACTCGAAAGTGGGCATGCAGGAGCTGGACCAGCGCCTGTCGAAAATTGTTGAAGCCGCGCGCAAAAAACCGGTCTCGGTGTACCGCTACGGCGCGCCTTGGGTGTGGATTGTGTCCCAGGACGATTGGCAGAGTGCCTTGAAGGAACTGTCCAGCTACGTGCCGCCAGGTCATTCCCTGGTGATGTTGCGCCCGCAAATCGAGGAGCTGCTGGAGGCCGCGTCCGAGCCCTTGCAGCAATGGGCCCGGGAACACCACATCCAGGTGCCGGTACCGGCCTTGATGCTCGCGTTGCTTTTGCAACTGCTGTACTCGCTGCCCAGTGAAAAACAGTTGTACGAGCAGCTCAATTACAACCTGTTGTTCCGCTGGTTTGTGGGCCTTGAGCTGAACCAGCGGGTCTGGGCGTTCTCGGTCTTTGTGCGCGATATCGGCGAGCTGCTGGACAGCCCGCACGCGGCGAAATTGCTCGAGCGCATCGTCAGTGAAGTGTTCTGCGGCGACCTGATGCACATGCCGGAGTTTTCGCTGAACTTCGCCTTGTTGCACACCTGGCTTTCCAGGCACGCAGGCCATTCCAAACGCAAATAA	MDEKALCREAGQLFSGAISRWMPGVTGALGSMESYSKVGMQELDQRLSKIVEAARKKPVSVYRYGAPWVWIVSQDDWQSALKELSSYVPPGHSLVMLRPQIEELLEAASEPLQQWAREHHIQVPVPALMLALLLQLLYSLPSEKQLYEQLNYNLLFRWFVGLELNQRVWAFSVFVRDIGELLDSPHAAKLLERIVSEVFCGDLMHMPEFSLNFALLHTWLSRHAGHSKRK	PGPT0030640_92	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MOBILE_ELEMENTS	CE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030640-truncated_tnp-K07487	NA	NA
D1-36_02355	1590			hypothetical protein	ATGGCGCTCGCGCTGATGCTCGTCGCCGAGGCGCCAACGCTGTGGGCCGAGGAAGCCGATACAGCGGCCGAGGCCGGAACGCCTGCGCGCCTGGTGGACGTGAATGAGTACGTGGTGCGCGGCAACACCGTGCTCGATGCCCGGGAAATCGAAGAGGCGGTGTATGCGTTCCTGGGGCCGCAACGCAAGCTCACCGATATCGAAGGCGCACGCGATGCCCTGCAACAGCGCTACCAGGCCAAGGGTTACCAGTCGGTGTTCGTCGAACTGCCGGAGCAGCAGGTCGAAGGCGGCGTGGTGTACCTGCAGGTCAGCGAAACCAGGATCGGCCGGGTACGCGTGGTCGGCACCGAGCACTATTCGCCGGTCAATGTCCGCGAAGAAGTGCCGGCACTGGAAGAGGGCAAAGTGGCCGATTTCGCCGCGGTGCAAAGCCAGTTGGCCGTGGCCAACCGCAACCCTGGGCGTCAGGTGGTACCGGTGGTGCGCGAAGGGCAACGTCCGGGAACCATGGATGTCGACCTGCAAGTCGAAGACAAGAATCCCTGGCAAGCCAGTGTCGGGCTGAACAATGACTACAGCGCCGACACCGAAAAACTGCGTTCGGTGGTCACGCTGGGCCACAACAACCTCTGGCAACGCGGCCACTCGGCCTCGCTGACTTATTTCACCGCCCCCCAAGACCGGGACAACGCGCAAGTCTGGTCGGGATCCTATAACGCGCCCCTGAGCGAGCGTTGGAACGTTCAGTTGTCCGGCTACCAGTCCGACAGCAACGTCGCGACCATCGGCGGCAGCAACGTATTGGGCAAGGGGCATTCCTATGGTGCGTCGCTGATCTACAACGTGCCGCCCCAGGGCGTTTGGGCCAACTCGCTGTCGGTGGGCGTGGACTTCAAGGATTTCGAGGAGGCCCTGCAATTTGGCGGCTCCAGTGATGAAGTGCCGATCAAGTACGCGCCCATCACCCTTGCCTACAACGGCTTTCGCTACACCGAAACCTCACAGTTCGGCCTGGGCCTGAGCATCGTTGCCGGCACCCGCAGCTTCTTCGGTTATGGCAGCGACGCCGATGAATTTCGGGCCAAGCGCTACGAGGCCAATCCCAGCTTCGCCGTGTTCAAGGGCGACAGCACCTTCACCCGGAATTTTTCCGGGGACTGGCAAGCGGCAAGCAAGCTGAGCTTCCAATTGGCCTCCGGGCCGCTGGTCTCCAACGAACAGTTTTCCGCCGGTGGCGCCACCAGTGTGCGCGGTTATCTCGCTGCGGAACGCACTGGCGATGATGGCGTGCTGTTTTCCCAGGAACTGCGCACACCGTCGTTGAGCAAGCACCTGGGCAAAGGCATCGGCAGCTACGTCGACAACTGGCGTTTATACATCTTTGCCGAAGGCGCGCAGTTGGCCCTGCAAGACGCGCTGCCCGACCAGGAGGCCGACTACAGCCTGGCGAGTATCGGCTTCGGCACCCGCGCCACGTTGCGCGAATGGCTGTCGGGCAGCCTCGACTGGGGCCTGCCGCTCAAGGACGGCCCGAACACCCGCAAACACGATTCACGCGTGCACTTCAATGTGCAGGCGACCTTTTGA	MALALMLVAEAPTLWAEEADTAAEAGTPARLVDVNEYVVRGNTVLDAREIEEAVYAFLGPQRKLTDIEGARDALQQRYQAKGYQSVFVELPEQQVEGGVVYLQVSETRIGRVRVVGTEHYSPVNVREEVPALEEGKVADFAAVQSQLAVANRNPGRQVVPVVREGQRPGTMDVDLQVEDKNPWQASVGLNNDYSADTEKLRSVVTLGHNNLWQRGHSASLTYFTAPQDRDNAQVWSGSYNAPLSERWNVQLSGYQSDSNVATIGGSNVLGKGHSYGASLIYNVPPQGVWANSLSVGVDFKDFEEALQFGGSSDEVPIKYAPITLAYNGFRYTETSQFGLGLSIVAGTRSFFGYGSDADEFRAKRYEANPSFAVFKGDSTFTRNFSGDWQAASKLSFQLASGPLVSNEQFSAGGATSVRGYLAAERTGDDGVLFSQELRTPSLSKHLGKGIGSYVDNWRLYIFAEGAQLALQDALPDQEADYSLASIGFGTRATLREWLSGSLDWGLPLKDGPNTRKHDSRVHFNVQATF	PGPT0003648_87	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-HEMOPHORES-HEME|HEMIN_TRANSPORT,PGPT0003648-hxuB-NA	NA	NA
D1-36_02356	1833	tolQ_3		Tol-Pal system protein TolQ	ATGCATCGCTTGATTTTCATTCTTCTCGCTTGCCTGGGCCTCGTGCTGCCGGCAACGGCCAGCGCTTGGTGGCAGGACGATTGGCACTACCGCAAACAGATCAGCATCGACACCACGCCCCAGGGCGCGGCGATCAGCCAGGCGGTGGGGCGCACCTCGCTGCTGGTGCGTTTGCACACCGGCAATTTCACCTTTGACGGTGTCAACGAAAACGGCTCGGACATTCGCTTTGTCGCCGCCGACGACCACACCGTGCTCAACCACCAGATTGAGAGCTTCGATCCGCTGATGGGCATGGCCTTGATCTGGGTGGACGTGCCCATGGTGGAGGGGGGCAAGCGCTCGGACATCTGGATGTACTACGGCAACCCGAAAGCACCGGCCACCAGCAATCCCCAGTTGGCGTTCGATGCCGATTACAGCCTGGTCTATCACTTCGATGGTGCCGTTGGCGCACCACCGCGTGATGCCAGCGCCTTTGCCAACCACGCGCAGAACGCCCCGGCAAACATCATTGACGGTGTCATCGGGCGCTCGGCACAGCTCAACGGTCAGCCGCTGTTGCTGCCGGCCAGTCCATCCCTGGGCGTGAGCGCGGGTGGTGCGTTGACCTTCAGCACCTGGTTGCGAATGGAGCAGGGCGCAGGCGAGCAACTGCTGCTGGCCCGTCGTGATGCCGGCAATGCGCTGCTGGTGGGCGTGAACCAAGGCGTGCCCTTTGTGGAAGTGAACGGCCAGCGCGCCGTGGCCAACCAGGCCGTGGCACTGGGACAATGGCAACACTTGGCGTTGACGGCTGACGCCAGCGGGTTGCGTTTGTATGTGAATGGAAAGCCGGCGGCGAGCCTGGCGCAACCGTTGCCGGCCTTGCAGGGTGCGATTGCCATCGGCGCCGACTCACCGGCCGCCGTCGATGCCGGCGCGGTGGCACCGACCGCTACGTATCAAGCCTTCACCGGCGCCCTCGATGAACTGCGCTTGTCCCGCGTCGCCCGTTTGCCTGAACAGATCCTGGCCGATGCCACCGCCCAGGGCGCCGAGTCGCGCCTGGTGGTTTACGGGGTGGACGAAGAACAGTCCGGCTTTGGTTTCGGCAGCCTGGGTTTCTTGCTCAATGCGGTGCCGCTGGACGCCTGGGTGATCATCGCCGTCCTGGTGCTGATGATGCTGCAGTCGTGGGTGATCATGGTGCGCAAGAGCCGCAATGTCAGCCGAGTCAGCCATGCCAACGAAGTCTTCCGCAGTCATTTCGCCAAGGTCGGGACACGGCTGGAACTGCTTGCAGATGACCGCGACCTGGCGCAGCGCCTGGCGGACTCGTCGCTGTGGCGCCTGTATACGGTGGCGGTGGCCGAGATCCGCACCCGTCGCGACCAGGGCGCCGATACGTCGTCGATTTCCGCCGCCACCATCGAAGCCATCCGTTGCTCCATGGACGGCGTCCGGACGCGCGAAAACCAGCAGCTCAGCGCCAAGCTGTCGACCCTGTCCAACGCCATTGCCGGCGGGCCCTACATCGGCCTGCTGGGGACGGTGCTGGGGATCATGGTGGTGTTCCTCGGCACCGCCATGGCCGGTGATGTGAACATCAACGCCATCGCCCCCGGCATGGCGGCTGCGTTGCTGGCCACCGCCATGGGGTTGTTCGTCGCGATTCCGGCGCTATTTGGCTACAACCGCCTGACCACGCGAAACAAGGAAGTCAGCGCCGACATGCGGGTATTCGTCGACGAGTTCATCACCCGCCTGGCCGAAGTCCACGGCGAAAGCCAGTCCAGTGAAGCGGCGCATCGACGGGGCAACCACGTCGCCAGCCCGTCGTTGACGGTGTAA	MHRLIFILLACLGLVLPATASAWWQDDWHYRKQISIDTTPQGAAISQAVGRTSLLVRLHTGNFTFDGVNENGSDIRFVAADDHTVLNHQIESFDPLMGMALIWVDVPMVEGGKRSDIWMYYGNPKAPATSNPQLAFDADYSLVYHFDGAVGAPPRDASAFANHAQNAPANIIDGVIGRSAQLNGQPLLLPASPSLGVSAGGALTFSTWLRMEQGAGEQLLLARRDAGNALLVGVNQGVPFVEVNGQRAVANQAVALGQWQHLALTADASGLRLYVNGKPAASLAQPLPALQGAIAIGADSPAAVDAGAVAPTATYQAFTGALDELRLSRVARLPEQILADATAQGAESRLVVYGVDEEQSGFGFGSLGFLLNAVPLDAWVIIAVLVLMMLQSWVIMVRKSRNVSRVSHANEVFRSHFAKVGTRLELLADDRDLAQRLADSSLWRLYTVAVAEIRTRRDQGADTSSISAATIEAIRCSMDGVRTRENQQLSAKLSTLSNAIAGGPYIGLLGTVLGIMVVFLGTAMAGDVNINAIAPGMAAALLATAMGLFVAIPALFGYNRLTTRNKEVSADMRVFVDEFITRLAEVHGESQSSEAAHRRGNHVASPSLTV	PGPT0003750_47	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	OTHER_HEAVY_METAL_RESISTANCE_SYSTEMS	HEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003750-exbB-K03561	NA	NA
D1-36_02357	426	exbD_2	COG0848	Biopolymer transport protein ExbD	ATGGCCAACCTCAATAGCGCCTCGGACGACGACGAAGATGCCGCCGTCGATACCATCAACATCACGCCACTGGTGGATGTGCTCATGGTGGTGCTGGTGATGTTTATTCTCACCGCCACCGCCCAGGTCTCCGGGATCCAGATCAACCTGCCGAAGGCCAGCTCGACCATTTCGCTTTCGCAGCCCAAGACCAAGGCGATTTCCATCAATGATGGCGGCCAGGTGTTCCTCGATGCTTACCCGGTCACCCTTAACGAACTGGAAGATCGCTTGCGCATCGAGAAAGCCCAGAGCCCGGATTTTCCGATCATCGTGCGCGGTGACTCGGCCGTGCAGTACCAGAAAGTCGTTGAAGTGCTGGACCTGTTGCGCCGCCTGGAGTTGTCCCAGGTGGGCCTGGTCACCGGCAAACCGAGCCAGGGCTGA	MANLNSASDDDEDAAVDTINITPLVDVLMVVLVMFILTATAQVSGIQINLPKASSTISLSQPKTKAISINDGGQVFLDAYPVTLNELEDRLRIEKAQSPDFPIIVRGDSAVQYQKVVEVLDLLRRLELSQVGLVTGKPSQG	PGPT0003755_1757	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	OTHER_HEAVY_METAL_RESISTANCE_SYSTEMS	HEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003755-exbD-K03559	NA	NA
D1-36_02358	723			hypothetical protein	ATGACGTCTTTTCCTGAACAGCCGCAAAACGAACGCCTGGAACGACAGCGGGACGGCACCGGCAGGGTGCGCCGCGTATTGCAGTGGACCATCGGTTTGCTGGTGGGCGCGGGCCTGGCCTGGCTGCTGTGGACATGGGCCAACGACATGAGCGGCATCCGTCGCGAGGCGCCGAAGATTCCCGCGATCATTCCGTTGCCGCCACCGCCGCCTCCGCCCCCGGAAAAACCGCCGGAGCCGGAAAAGCCGGTGGAAGAAAAAATCGTCGAGCCCGAACCCACGCCCGAACCGGAGGAAGTCAAGCCGGAGGAAGAAGCACCGCCTTCACCCGCCGAGGACCTGGCCGACCCGATGCAAATGGACAGCGACGCCCAGGCTGGCTCCGACGCTTTCAATATCGGCGCGGGCAAGGGCGGCGGGATGGCTGGCGCCGGTGGCGGACGCCTCGGCAACGGCACCTACAGCCAGTTCCTTGCCTACAGCTTCCAGCGCTTGCTGCGCGAGTCGCCCGAGCTGCGCAACCTGGCGTTCCGCCTGGAGGCCGACGTCTGGCTGGACCAGGCCGGTCGCGTGACGCGCGTGGAGCTGGGACGCAGCAGTGGCGATGCCGAACTCGACGCCAAGGTCCTGGCGACCTTGCGCGCTTCACCCCATCTGGAACGTCCACCCGCCTCGTTGCAGGTGCCGGTGCGTATCCGCCTACAAGGACGCCGACCGGGCTGA	MTSFPEQPQNERLERQRDGTGRVRRVLQWTIGLLVGAGLAWLLWTWANDMSGIRREAPKIPAIIPLPPPPPPPPEKPPEPEKPVEEKIVEPEPTPEPEEVKPEEEAPPSPAEDLADPMQMDSDAQAGSDAFNIGAGKGGGMAGAGGGRLGNGTYSQFLAYSFQRLLRESPELRNLAFRLEADVWLDQAGRVTRVELGRSSGDAELDAKVLATLRASPHLERPPASLQVPVRIRLQGRRPG	PGPT0003745_4895	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	OTHER_HEAVY_METAL_RESISTANCE_SYSTEMS	HEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003745-tonB-K03832	NA	NA
D1-36_02359	1692			hypothetical protein	ATGATCTGCAAAATCAATCGAGTGGCGCTGGGCGTCGGCCTGGTGATCGCCAGCCTGGCGGGCAGCGCGTTGGCGCAGACACCCTCGCAGAACGCGACGGTCAATCTGATTCGCCTGTTGGTGCAACAAGGCGTGCTCAAGCAGGACCAGGCGCAAGCGCTGATCGATCAGGCCGAAGCCGAGGCCGTGCAAGCCCGGCAGGCCGCCGCGACTGCCGCGCCGGTGCCAGCGCCCGGCGCGCCGGGGGAGGTGCGGGTGCAATACGTGCCGGCCATCGTTCGGGAACAGATTCGCGACCAGGTGAAAGCCGAAGTGATCGCCCAGGCCAAACAGGAAAACTGGGCCCAGCCCAACACCTTCCCCGACTGGGTCTCACGCATCACCTTTGAAGGCGACGTGCGCTTGCGCAACGAGTCGCGCTTCTACTCGGGCAGCAACAGCAACGAGATCGTCGACTTCGCCGAGCTCAACAACAGCGGGCCTTATGACGTCAACCCCAACAGCGGCTCGCAACTTCCGCCGTTGCTCAATACCCGCGAAGACCGCGAGAACATGCTGCGCCTGCGGGCTCGCATGGGGATGCGCGCCGCGCTTTCCCCGCAATGGACAGCGGCTATCCGCCTGGGCACGGGATCGGACAGCAGTCCTGTCTCCACCACCCAGACCCTCGGCGGCGGCTTTGACAAAAAGGACCTGTGGCTCGATCAGGGCTACCTCAACTATCGCCCCACCAAGGAACTGAGCTTCACCGGCGGGCGCATGCCCAACCCGTTCATGTCCACCGATCTGCTGTATTCCAACGATCTCAATTTCGACGGCTTGGCCGGCTCGTTCAATCACCCGTTGAGCCGCGACCTGGCAATGTTCGGCACCCTCGGTGCGTTCCCGGTGGAGTACAGCTCCGACAGCGCGTCGAGCGATGGTTTCAACAAGGAAGACAGCGAGAACAAGTGGCTCTACGGCGCCCAGCTTGGCGCAACCTGGGCGTTTGCGCCGGACAACAGCATCAAAGGGGCACTGGCTTACTACCAGTTTGACGACATCGAAGGGCGGCGCTCCAACCCTTGCGCTATCTACGACGGCGCGCCGGCCTGTGACAGTGACGAAACGCGTCCGGCGTTCATGCAAAAGGGCAACACCCTGATGGAACTGCGCAACCTGGTGCCTGACCCTTCCGCGCCGACCACGTCGCCGCAACCACAGTTCGTGGGCCTGGCCTCGGAGTTCAACGTGCTTGACCTCAATCTGGTCTGGGACACCTTGCTGTTCGACGATCTCAAGTTGCGCAGCCAGGGCAACTACCTGGTCAACCTCGGCTACGACGAAGGCAAGATGCGCAAGCGCTCGGCCGGTGCGCTGGTCAACAACGTGGACGAAAACGGTGACATCGAAAGCGGCGATACCGCCTGGATGCTGCAGTTCACCTTGGGCAGTTCCCTGGACCTGAAGAAGCGCGGCGATTGGAACCTGTTCGCCGGCTACAAATACATCGAGCCGGACGCCTTGCCGGACGGCTTCAACGACTCCTCGTTCCACCTCGGCGGCACCAACGCCAAGGGTTATTTCCTCGGCGGCAACTACGGCATCGAAGACAACGTCTTCGCGACCGCGCGCTGGTTGAGCAGCGAAGAAGTCTACGGCGCGCCGTTCGATATCGACGTTCTGCAACTTGAGCTCAACACGCGCTTCTAG	MICKINRVALGVGLVIASLAGSALAQTPSQNATVNLIRLLVQQGVLKQDQAQALIDQAEAEAVQARQAAATAAPVPAPGAPGEVRVQYVPAIVREQIRDQVKAEVIAQAKQENWAQPNTFPDWVSRITFEGDVRLRNESRFYSGSNSNEIVDFAELNNSGPYDVNPNSGSQLPPLLNTREDRENMLRLRARMGMRAALSPQWTAAIRLGTGSDSSPVSTTQTLGGGFDKKDLWLDQGYLNYRPTKELSFTGGRMPNPFMSTDLLYSNDLNFDGLAGSFNHPLSRDLAMFGTLGAFPVEYSSDSASSDGFNKEDSENKWLYGAQLGATWAFAPDNSIKGALAYYQFDDIEGRRSNPCAIYDGAPACDSDETRPAFMQKGNTLMELRNLVPDPSAPTTSPQPQFVGLASEFNVLDLNLVWDTLLFDDLKLRSQGNYLVNLGYDEGKMRKRSAGALVNNVDENGDIESGDTAWMLQFTLGSSLDLKKRGDWNLFAGYKYIEPDALPDGFNDSSFHLGGTNAKGYFLGGNYGIEDNVFATARWLSSEEVYGAPFDIDVLQLELNTRF				NA	NA	NA	NA	NA
D1-36_02360	648			hypothetical protein	ATGAAAAAGTCATTTCATCCCGCGATCCACGCCGTGGTGCTGCTGTTGGGGCTCGGTGCAGCCCTGGGCGCATCGGCGCAAACCTTGGAAGAACGCCTGCGTGCCCAGTTGCGCAGTACCACTCAACAGCTGCAAACCTTGCAGAGCGAACAGGCGCAAGGCGCCGCCGCGCGCCAGGCAGCACAAACCGAGCTGAGCGCGGCACAAGCGCAAATCAAGCAACTGACCGCCGAACTCGCCAAGGCCCGCAGCCAGAGCGAACAACTGGGCGCGCAACAGGACGCCGTACGCAGCAGCGCCCAGGCGCAGATCGCGGCCAGTACCGAGCAGGTCGGCAAGTTCAAACAAGCTTATGAAGAGCTGCTGGGCCGCGCACGGGGTATAGAGGCGGCGCGCGCCACGCTGCAAGCCAGCCTGACCAGTCGGGACAGTGAAGTGCAGCAGTGCGTGGCGAAAAACCAAGAGATGTACGGCATCGCCAAGGAGATCCTCACTGCCTACGAAAACATCGAGGTCAGCGACGTATTGAAGATCCGCCAACCCTTCGCCAGTGGGGCGCGGGTGAAGTTCGAAGAATTGGCGCAGCGCTACGGCGATGCGCTGTACCAGACCCAGTTCGATGCCGCCAAGTCCACTGCCGGCAACTAA	MKKSFHPAIHAVVLLLGLGAALGASAQTLEERLRAQLRSTTQQLQTLQSEQAQGAAARQAAQTELSAAQAQIKQLTAELAKARSQSEQLGAQQDAVRSSAQAQIAASTEQVGKFKQAYEELLGRARGIEAARATLQASLTSRDSEVQQCVAKNQEMYGIAKEILTAYENIEVSDVLKIRQPFASGARVKFEELAQRYGDALYQTQFDAAKSTAGN				NA	NA	NA	NA	NA
D1-36_02361	483			hypothetical protein	ATGACCGCACAGACACTGATCCATAGCATCACTCCCGAGCAACTGGGCGAATTACTGCAAGCCTCCGGTTATCGTGTCAATCGTACCGAGCAAGGCGCCGTGGTTCAGTTGTTGAGCGCCAGCCAGGGCATTGGTTTTGCCGTGCGTTTCGGCAACCCGGCCGCCACCGAGGGCAGCTTTGTCGATTTCACGTTCAGTTGCGCGTTGCGCATCGAGGGCCAATTGCCTGACGGTCTGGTCCAGGTATGGAATGCCAGTCGCCGCTTTGCCCGCCTGAGTCGCCAGGGCGATTTCCTGGTGATGGAAATGGATGCCATCGTTGCCGCCGGTGTCAGTGAAGACCACGTGCGTGGCGTGCTGGAACTCTGGGACCGCCTGTTGCAGGAGTTCGTGGTGTACCTGCGCGACTACAGCCAGCACACACGCGAGCAGCACAAAGACGGTGCGGATGTAACGCAGGAAGCTGCGGTCGAAGAGGTCTGA	MTAQTLIHSITPEQLGELLQASGYRVNRTEQGAVVQLLSASQGIGFAVRFGNPAATEGSFVDFTFSCALRIEGQLPDGLVQVWNASRRFARLSRQGDFLVMEMDAIVAAGVSEDHVRGVLELWDRLLQEFVVYLRDYSQHTREQHKDGADVTQEAAVEEV				NA	NA	NA	NA	NA
D1-36_02362	966	surA_1		Chaperone SurA	ATGAACAGGTTTAGTAGACTGGCTGGCATCAGTGCGGCTGTCCTGATGCTCGGCGGCATTGTGCTGACGGTGATCTCCAACCCTGACGGCGTATCCCAAGCCTCGGTGCCTGCGGCACAACCGAAACCCGCCAGAGCCCCGGCCGAGGCTGCACCGGCCGTGGCCAGTCTGGGCGAACTGCAACTGAGCAGCGCCGAGCTCAACGCTGTGTTGAGCGCGCTCACACCGCAGGTGCGCGAGCAGCTGCGCGGCAATCGTGGTGCGCTGGAGGGGTGGGTCCGAGCGCGCCTGGCAGAGAAAGCCCTGTTGCAGCAGGCCGACGCCCAAGGTTGGCAGGAGCGTCCGGACATCCAACAGATGACCCGCGCGGCTACCGAACAGATTTTGCTGCGCACTTACTTGCAATCCGTCAGCCAGGTCCCCGCCGACTATCCGGATGACCAAGCCCTGCAACAGGCTTACGAGAGCGCCAAGGACAAGCTGCAAAGCCCGGCGCTGTACCGAGTCAGCCAGATTTTCATCGCGGTTGAGCCGGGAGCCAACGAAGAACCGCTGCGCAAGAAAGCCACCGAGCTGGCTCGTCGTGCCCAGGCCCCCAACGCGGATTTCGCCGACCTCGCCCGGCAGTTTTCCGAGGACCAGGCGACGGCCCAACGGGGCGGTGACAGCGGCTTGCAACCGTTGCAGCAATATGTGCCGGAGATGCGCCAAGTCTTGAGCCGACAACGGGTCGGCAGCGTCTCCGACGCGTTGCGTAGCCAGGCGGGTTTTCACATCCTCAAACTGACCGACATGCAGCCGGCACGCGCCGCCAGCCTGGATGAAGTTCGTGAACAACTGCGCGAGGCGCTGCGCAATCAGCGCCAGGAACAAGTGGCCAGGGCCTATATGGAAGGGCTGGTGAGCAAGGCAACGCTGAGCATCGATGGCGCGCAACTGAATCAGGCATTGGAGTCTGTACGTTAA	MNRFSRLAGISAAVLMLGGIVLTVISNPDGVSQASVPAAQPKPARAPAEAAPAVASLGELQLSSAELNAVLSALTPQVREQLRGNRGALEGWVRARLAEKALLQQADAQGWQERPDIQQMTRAATEQILLRTYLQSVSQVPADYPDDQALQQAYESAKDKLQSPALYRVSQIFIAVEPGANEEPLRKKATELARRAQAPNADFADLARQFSEDQATAQRGGDSGLQPLQQYVPEMRQVLSRQRVGSVSDALRSQAGFHILKLTDMQPARAASLDEVREQLREALRNQRQEQVARAYMEGLVSKATLSIDGAQLNQALESVR				NA	NA	NA	NA	NA
D1-36_02363	960			hypothetical protein	ATGGCGTTGGAGGAGGTTGATCTCATTCACGAGTGTGCGCGGCAGGCCACCTCGGTAGGTACCGATGTCTTGAACGGCTTCAAGGATCTCCAGGCATTGGAGTTCTTCCTGGTGGCGGCCCGTTGCAGCTGTTTTATGCAGGCGGCGCGGAGCCTCAACGTCAAAGCTTCGTTGTTGCGCAAAAAAGTTTCGCGGCTATCGAGCCATTACGGGCGTCCTTTGTTCGAGCACCGAGGCAATGCGCTGGTGCTCAGCCAGGACGGTCGTCATCTGCGCAGCCAGTTGCTGGCCCACCGTGCGTTGCTGGCATTGCCCGGCACGTCCGACGAGGACCCGGCGCTGGTTCGTGTGGCCGTGGCGGAGCCCTTGTTGCATGACATCCTTAATCGCGACCTGCTCGGCTTCCTGCGCCAGCACGCCAACGTACGCCTGAACCTGCTGCGCCTCGACAGCGAACCGGTCGAGGCGGATGTCATCGTCTGGCTCGCCGACTCGCAAGTCGTGGCTCCGAGGCTGTCGTTTCCGGTGGCCGAGCTCAGTTGTCTCGCCGAACTGGAATACATTCCGCACATCGCCAAGCGTTATTCACGGGAAGCGAGCCGCCCGCGCAGCCTGGTCGAACTGCAGGACTACATGTTGGTGAGCCTGCACAGCCACGCGGACATTGCTTCCCTGCAGCCTTGGAATAGAGCAGTCGAGGCGCGTCGTTCTGGCGTCACCCACGTGAATTCCTATGAATTGATGCGCCAGATGATCCAGTGGAGCGCTTGCGTGGGCCTGCTGCCGCATTACGTAGGCGCGCTCGAAAAAAACCTGCAGCCGCTACCCGAGTTGTTCGGCCGGGACATGACGATGCAGGTCTGGATGGCCGTGCACGGCGACGAAGCACACCGGGAAGAAGTCGCCCGGCTGGCGGCGCTGGTCCGCGCGGCGTTTGAGGAACACCGGGAATGGTTCTAG	MALEEVDLIHECARQATSVGTDVLNGFKDLQALEFFLVAARCSCFMQAARSLNVKASLLRKKVSRLSSHYGRPLFEHRGNALVLSQDGRHLRSQLLAHRALLALPGTSDEDPALVRVAVAEPLLHDILNRDLLGFLRQHANVRLNLLRLDSEPVEADVIVWLADSQVVAPRLSFPVAELSCLAELEYIPHIAKRYSREASRPRSLVELQDYMLVSLHSHADIASLQPWNRAVEARRSGVTHVNSYELMRQMIQWSACVGLLPHYVGALEKNLQPLPELFGRDMTMQVWMAVHGDEAHREEVARLAALVRAAFEEHREWF				NA	NA	NA	NA	NA
D1-36_02364	1650	mqo_1	COG0579	Malate:quinone oxidoreductase	ATGAACACTGCAATCATTGCGACCCTGCTGACCGTCGCTCTCTCATTGAGCGTCAACGGTGCCCAGGCCGCGGAAACGAAAAAAGTCGATGTGCTGCTGGTGGGCGGCGGCATCATGAGTTCAACCTTGGGCATATGGCTCAACGAGCTAGAACCGGGCTGGTCGATGGAAATGGTCGAACGCCTGGATGCCGTGGCCGAAGAAAGCTCCAACGGCTGGAATAACGCCGGCACCGGCCATTCGGCGCTGGCCGAGCTGAACTACACGCCGATGGACGACCAAGGCAACGTCAACATTACCAAGGCCATCGAGATCAACGAGGCCTTCCAGATCACCCGGCAGTTCCTGGCGTGGCAGGTCAAGAGCGGCGTCTTGAAAAACCCCCGTTCGTTTATCAACTCCACCCCGCACATGAGCTTTGTATGGGGTGACGACAACATCAAGTTCCTGCGCAAACGCTACGAAGCGCTGCAGGCGAGCCCCTTGTTCCGCCCAATGCAATATTCGGAAGACCCGGAGCAGATCAAGAAGTGGGTGCCCTTGATGATGGAAGGCCGCGATCCGAATCAAAAGCTCGCGGCCACTTGGGCGCCGATCGGCACCGATGTGAACTTTGGTGAAATCACCCGCCAGTACGTCAGCTATCTGCAAAGCAAACCCAACTTCAGCCTGAAGCTGTCCAGCGAAGTGCGCGACATCACCCGCAATGACGACGGTACCTGGCACGTTGAATACAAGAACCTCAAAGACGGCGAAACGAGCGCCACCGACGCCAAGTTCCTGTTTATCGGCGCAGGCGGCGGCGCCCTGCATCTGTTGCAGAAGTCAGGCATTCCAGAGGCTGACGAATACGCGGGCTTCCCGGTCGGCGGCTCGTTCCTGGTCGCCGAGAACCCCAGCGTTGCCGAACGACACATGGCAAAGGCCTACGGGATTGCGTCCACCGGCGCGCCGCCGATGTCGGTGCCTCATTTGGATACGCGGGTACTGGACGGCAAGCGCGTCGTCCTGTTCGGGCCATTTGCGACCTTCTCCACCAAGTTTCTCAAGGAAGGTTCCTACTTCGACCTGTTCACCAGCATGACCACGCACAATGTCTGGCCCATGACCAAGGTCGGCATCGAGCAATACCCCTTGGTTGAATACCTGGCCGGCCAGCTCATGCTGTCGGATGATGATCGTTTCAAGGCCTTGCAGGAGTATTTCCCCCAGGCCAAGCAGGAAGACTGGCGCCTCTGGCAAGCCGGCCAACGGGTGCAGGTCATCAAGCGCGATGAGGAAAAAGGCGGCGTGCTGAAGTTGGGCACCGAAGTGGTGGCCTCCCAGGACGGCAGCATCGCCGGCCTGCTTGGCGCGTCCCCTGGCGCATCGACGGCGGCCCCGATCATGCTTGAAGTGATGCAACGGGTCTTCAAGGACAAGGTCGCCTCCCCGGCCTGGCAGCAAAAGCTGCACAAGATCGTGCCCAGCTATGGGACACGCCTCAACGACGATCCTGACCGTGTCTACGAGGAATGGAAATACACCAGCGACGTGTTACAACTGACACCGCCACCGGATATTCGTGGCAACAGTGAGCCGAAGGCTCCGACCAACAGCGATCCGGTGGGCCAGAAGCACAGCGACTCCGACCCGGACCTGGCGTTGTGA	MNTAIIATLLTVALSLSVNGAQAAETKKVDVLLVGGGIMSSTLGIWLNELEPGWSMEMVERLDAVAEESSNGWNNAGTGHSALAELNYTPMDDQGNVNITKAIEINEAFQITRQFLAWQVKSGVLKNPRSFINSTPHMSFVWGDDNIKFLRKRYEALQASPLFRPMQYSEDPEQIKKWVPLMMEGRDPNQKLAATWAPIGTDVNFGEITRQYVSYLQSKPNFSLKLSSEVRDITRNDDGTWHVEYKNLKDGETSATDAKFLFIGAGGGALHLLQKSGIPEADEYAGFPVGGSFLVAENPSVAERHMAKAYGIASTGAPPMSVPHLDTRVLDGKRVVLFGPFATFSTKFLKEGSYFDLFTSMTTHNVWPMTKVGIEQYPLVEYLAGQLMLSDDDRFKALQEYFPQAKQEDWRLWQAGQRVQVIKRDEEKGGVLKLGTEVVASQDGSIAGLLGASPGASTAAPIMLEVMQRVFKDKVASPAWQQKLHKIVPSYGTRLNDDPDRVYEEWKYTSDVLQLTPPPDIRGNSEPKAPTNSDPVGQKHSDSDPDLAL	PGPT0001440_267	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
D1-36_02365	786	glpR_2	COG1349	Glycerol-3-phosphate regulon repressor	ATGAGCGCCACTCACGAAGTATTTCCCGGCGAGCGCCAACGCTTGATCAGTGAGCGACTCGCCGTTTATGGCCGGGTCATCGCGGCGGACCTGGCCAGCGAATTCAATGTATCCGAACACTCGATCCGCAGGGACCTCGGGGCATTGGCGGCGGCAGGCTTGTGCAAGCGCGTCTATGGCGGCGCGATTCGCCTGCCGGCGGCCGAAGCGCCCATAGACGTTCGGATCCATCAGGATCCGGCGCGCAAGGACGACCTTGCCCGGACGGCGGCGTCGTTGCTCAGCGCCGGTCAGCACGTCTTTCTCGATGCCGGGTCGACCAACCTGGCGATTGCCCGTGCCATCGATCGAGCGCTGCGCTTGACCATCAGCACCAACTCGCCCTTGATCGCGGTGGAGTTGATGAAGCTGCCCAACGCCGAGGTCATCCTGCTCGGTGGCCGTCTGAACCCTGTCGCCGGCGGTGCGATCGGGCTGGCGGCCGTCCAGCAATTGCGCCAGTTCAATTTCGACCTGTGTTTTGTCGGTGCCTGCGCCATCGACCCGGACAATGGCGTGACGGCGTTTGGCCTGGATGACGCCGAATTCAAGCGTGCGGTGGTCGCGGCGAGCGGTCAGGTGGTGGTGGCGGTTACCAACCAGAAGCTGTCCAGCGTTGCTCATTACCAAGTGGCGACGTGTGAAGAAGTCACCGCGCTGGTGGTGGAACACGATGCACCCCATGAGCGGCTCGACCCCTTCCTGGAGCGCATCGCCAAGGTCATCAAAGCCCCCGCCAAGACATAA	MSATHEVFPGERQRLISERLAVYGRVIAADLASEFNVSEHSIRRDLGALAAAGLCKRVYGGAIRLPAAEAPIDVRIHQDPARKDDLARTAASLLSAGQHVFLDAGSTNLAIARAIDRALRLTISTNSPLIAVELMKLPNAEVILLGGRLNPVAGGAIGLAAVQQLRQFNFDLCFVGACAIDPDNGVTAFGLDDAEFKRAVVAASGQVVVAVTNQKLSSVAHYQVATCEEVTALVVEHDAPHERLDPFLERIAKVIKAPAKT				NA	NA	NA	NA	NA
D1-36_02366	927	gal		Galactose 1-dehydrogenase	ATGCAACCGATCCGTCTCGGTCTGGTGGGCTACGGTAAAATTGCCCAGGACCAACACGTGCCCGCTATCCGCGCCAACCCTGCTTTCGAGTTGGTGGCGGTCGCGACCCAAGGGCAGCCTTGCGCTGGAGTGGAGAACTTCCAGTCCCTGGGGGAGCTGCTGGACAAAGGTCCGCGCGTCGATGCGGTCGCGTTTTGCACGCCGCCCCAGGGCCGGTTCGAGCTGGTGCGGCAGGCGCTGGAGGCGGGTAAACACGTCCTGGTGGAAAAGCCGCCGTGCGCCACATTGGGCGAGGCCATGGCGTTGGTGGACCAGGCGCATGCGGCAGGCGTCAGCGGGCTGTTCGCCTGGCATTCGCGTTATGCGCCCGGCATCGAGGCGGCCCGCGACTGGCTTGCCAGCCGCACGCTGCAAAGCGTCCAGATCGATTGGAAGGAAGACGTGCGCAAATGGCACCCCGGCCAGGCATGGATCTGGCAACCCGGCGGCCTGGGCGTGTTTGATCCGGGCATCAACGCCTTGTCCATCGCCACCCACCTGTTGCCGCTGTCATTGTTCGTCGAGTCGGCCGAACTGCGGGTTCCCGACAACTGCCAGTCACCCATCGCCGCGAGCATCAAGATGTCGGACGCGCGCGGTCTCGATATCCGCGCGGAGTTCGATTTCGACCATGGTCATGATGAGCTCTGGAGCATCGAGATTCGTTGCGCCGAAGGCACTTTGCGCTTGGACAACGGCGGTGCGCTGCTGAGCATCGACGGCGTGCGCCAGGTCGTGTCGCAGGAGGGTGAGTACGCGGCGGTGTACCGGCACTTCCAGCAACTGATCAATGACAAGGCGTGCGACATGGACCTGCAACCGCTGCGCCTGGTGGCGGACAGCTTTTTCGTCGGCAGCCGTACCTTGGTCGAGCCGTTCTACGACTGA	MQPIRLGLVGYGKIAQDQHVPAIRANPAFELVAVATQGQPCAGVENFQSLGELLDKGPRVDAVAFCTPPQGRFELVRQALEAGKHVLVEKPPCATLGEAMALVDQAHAAGVSGLFAWHSRYAPGIEAARDWLASRTLQSVQIDWKEDVRKWHPGQAWIWQPGGLGVFDPGINALSIATHLLPLSLFVESAELRVPDNCQSPIAASIKMSDARGLDIRAEFDFDHGHDELWSIEIRCAEGTLRLDNGGALLSIDGVRQVVSQEGEYAAVYRHFQQLINDKACDMDLQPLRLVADSFFVGSRTLVEPFYD	PGPT0002205_212	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-GALACTONIC_ACID_BIOSYNTHESIS,PGPT0002205-gal-K00035	NA	NA
D1-36_02367	840	yghU	COG0625	Disulfide-bond oxidoreductase YghU	ATGAGCCAAGCGTCTTACGTTCCACCCAAAGTCTGGAAACACGAGGCCCCCTCGGGTGGCCACTTCGCGAGCATCAACCGGCCTGTCGCCGGGCCGACCCACGAAAAAGACTTGCCGATCGGCGAGCATCCTTTGCAGCTCTATTCGCTGGCAACGCCCAATGGCGTGAAAGTCACGATCATGCTCGAAGAGCTGTTGGCCCTCGGGCACACCGGCGCGGAATACGACGCCTGGCTGATTCGCATCGGCGAAGGCGACCAGTTCTCCAGCGGCTTTGTCGAAGTCAATCCGAACTCAAAGATCCCGGCCCTGCTGGACCGCAGCGTCGAGCCGCCGACCCGTGTGTTCGAGTCCGGTTCGATCCTGCTGTACCTGGCGGAGAAATTCAGCGCTTTGCTGCCCAGCGATCTGGCCGGCCGCACTGAAACCCTGAACTGGTTGTTCTGGCAGATGGGCTCGGCCCCTTACCTGGGCGGTGGTTTCGGCCATTTCTACGCCTACGCGCCGGACAAACTGGAATACCCCATCAATCGCTTCACCATGGAAGCCAAGCGCCAACTGGATGTCCTGGACCGTCGCCTGGCTGAAAACCGCTACCTGGCCGGCGAGGCGTACACCATCGCCGACATCGCGGTCTGGCCTTGGTATGGCCAACTGGTGCGGAACAACGTGTACTCGGCGGCCGAATTTCTTAGCGCCCATGAGTACACCCATGTGCAGCGCTGGGCGGAGGAAATCGCCCAGCGGCCCGCAGTCATGCGCGGACAGCGTGTCAACCGGACCTGGGGCGATGAGGCGAGCCAGGTGCCGGAGCGGCATCGGGCGCAGGATTTGGGCTAG	MSQASYVPPKVWKHEAPSGGHFASINRPVAGPTHEKDLPIGEHPLQLYSLATPNGVKVTIMLEELLALGHTGAEYDAWLIRIGEGDQFSSGFVEVNPNSKIPALLDRSVEPPTRVFESGSILLYLAEKFSALLPSDLAGRTETLNWLFWQMGSAPYLGGGFGHFYAYAPDKLEYPINRFTMEAKRQLDVLDRRLAENRYLAGEAYTIADIAVWPWYGQLVRNNVYSAAEFLSAHEYTHVQRWAEEIAQRPAVMRGQRVNRTWGDEASQVPERHRAQDLG	PGPT0013045_848	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013045-yghU|yfcG-K11209	NA	NA
D1-36_02368	2055	hmp_2		Flavohemoprotein	ATGAACGAAGCCACCAAAGCACAATCTTCGCCCTGGCATGAAGGGGAGTTGACCTTGCAGCGCTCCGTCGGGGCGGTTGAGATGATGGCCGGCGTCGGTCAGCGACAACTGGCGCGTACCTGGATGCCGGACCAGCACCGGGAGTTCTACGGGCAATTGCCGTTTGTGGTGCTTGGGGCAGTGGATCGTCAGGGCGATGTCTGGGCGACTCTGCGCACCGGGCAGCCCGGCTTCATGAATTCACCTGATCCTGAAACGCTGCATATCCATTTCGATCCGCAGCCTGAAGACCCGGCACAAGAAGGGCTGGGCGAGGGCGACGCCATCGGCATGCTGGGTATCGAATTGCACACCCGTCGGCGTAATCGCATGAACGGCGTGGTGCGCCGCGAGCTTGACCAGGGCCTGGAGATTTCGGTGACCCAGGCCTATGGCAACTGCCCGCGCTACATCAATCTGCGCCAATACCGCTTCGTCGATGAGCAGCCTGCTGCCTCACGTGAGCTGGAAGTAGCCGATCCTTTGGTTCGTCGTCTGGTCACCGCGTCAGACTCGTTCTACATCGCCACTTACGTGGTACGCGACGGTGAACGGCAGGTCGACGCCTCCCATCGCGGCGGCAAGCCCGGTTTCGTACGCATGGACGAGGACGGGACGCTGACCATCCCGGATTTTTCTGGAAACCTGTTCTTCAACACGCTCGGCAACATCCTGCTGAACCCCCGCGCAGGCTTGGTGTTCGTCGATTTCCAGACCGGCGACCTGCTGCAGATGAGTGGTTCAGCGCAGGTGGTGTTGGAAGACCCGCAGATCGCCGCGTTCCAGGGCGCCGAACGGTTATTGCGGTTCACCCCGCAGCGCGTGGTCTACCGTTCGACGGCAATACCGTTGCGCTGGAAGGATCAGGCTGAAGGCGACTCGCCCAATTCACTGATGACCGGCAACTGGGAACAGACTGCCGAACGCTTGCAGGCCGAGGTCCTGCGTACCCATTGGCGTGCGCTGCAAGTCACGCGAGTGGTGGACGAAAGCCACAACATCCGCTCGTTCTATCTGCAAACCACCGACGGTGCCGGCTTGCCCCGGTTCGAGGCCGGGCAGCATCTGCCCGTGCGGGTGTTGTTGGAGGGGCAGGGCGTGCCTTCGATCCGGACGTACAGCGTGTCCAGCGCGCCCTCGGATGATTTCCTGCGCATCAGCGTCAAGCGTGACGGCGCGGTCTCTTCGCATCTGCATGAGCAGATCCAGGCGAGCCACGATATCGAAGCCCGGGCGCCACAAGGTCATTTCACGGTGGACGCCACCGAGCGCCGGCCGTTGGTGCTGCTGGCGGCGGGCGTTGGCATCACGCCGCTGTTGTCGATGCTGCGCGAGGTGGTCTATCAAGGAAAACGCATTAGCCGCATGCGTCCGGTCTGGCTGGTGCAAAGTGCCCGGCACGTGGCCGACCTGGCCTTTGGCGAGGAAATCGATGAGCTGGTGGCGCGTGCCGGTGACAAAGTGAAAGTGCTGCGCCTGGTCAGCCAACCGCCCACCGACGGCAAACCCGGGCAGGGTTATGACGTGGCCGGACGAATCGATGTGACGCTGCTCAAGCAACTGCTGCCGCTGGACGACTACGATTACTACCTGTGCGGTCCGGGCACGTTTACCCAGGCGCTCTACGACGGCCTGCGCAAGCTGCGTATCCCGGATGATCGCATTCACGCTGAAACCTTTGGTCCGTCTACGCTGGTGCGCGATATCGAGGTCCGCGTACCGGCCGCCGAACAGGTGCCGGCGGCGACTGAGGCGGTGAAAGTGCTGTTCTCCGGTTCGGCCAAGGAAGCCCGCTGGGAACCCGGCAGCGGGACGCTGCTCGAGCTCGCCGAGGCCCGCGGCCTGAATCCGGAATTCAGTTGCCGTGGCGGTTCCTGCGGTACCTGCAAAACCCGCATGACCCAAGGTCAGGTGCACTACCTGACCCAACCCGCCGAACCCGTGGCCGACGGCGAAGTGCTGATCTGTTGCGCGGTACCGGCCCAGGGCAGCGAGCCTTTGGTGCTCGAAGCCTGA	MNEATKAQSSPWHEGELTLQRSVGAVEMMAGVGQRQLARTWMPDQHREFYGQLPFVVLGAVDRQGDVWATLRTGQPGFMNSPDPETLHIHFDPQPEDPAQEGLGEGDAIGMLGIELHTRRRNRMNGVVRRELDQGLEISVTQAYGNCPRYINLRQYRFVDEQPAASRELEVADPLVRRLVTASDSFYIATYVVRDGERQVDASHRGGKPGFVRMDEDGTLTIPDFSGNLFFNTLGNILLNPRAGLVFVDFQTGDLLQMSGSAQVVLEDPQIAAFQGAERLLRFTPQRVVYRSTAIPLRWKDQAEGDSPNSLMTGNWEQTAERLQAEVLRTHWRALQVTRVVDESHNIRSFYLQTTDGAGLPRFEAGQHLPVRVLLEGQGVPSIRTYSVSSAPSDDFLRISVKRDGAVSSHLHEQIQASHDIEARAPQGHFTVDATERRPLVLLAAGVGITPLLSMLREVVYQGKRISRMRPVWLVQSARHVADLAFGEEIDELVARAGDKVKVLRLVSQPPTDGKPGQGYDVAGRIDVTLLKQLLPLDDYDYYLCGPGTFTQALYDGLRKLRIPDDRIHAETFGPSTLVRDIEVRVPAAEQVPAATEAVKVLFSGSAKEARWEPGSGTLLELAEARGLNPEFSCRGGSCGTCKTRMTQGQVHYLTQPAEPVADGEVLICCAVPAQGSEPLVLEA				NA	NA	NA	NA	NA
D1-36_02369	555			hypothetical protein	ATGGAAAAACCCAGCTTCTACACAATCGGCCATTCAACCCGAACCCTTGAGCAATTCGTTGACATCGTGAAGAGCTTCGGTGTCGAGATGATTGTCGACGTGAGGACTGTTCCAAGATCGCGCACGAATCCCCAGTACAACCTCGATACGCTTCCCGCGCTTTTGGAACGGTACGGGCTCAAGCATGAGCAAATACGGCAGTTGGGTGGGCTGCGAAAAAAATCCAGGATCGTTGCCGATGAGGTCAATGGGTTCTGGGAAAACCGCAGTTTTCACAATTACGCGGATTACGCGTTGTCGGATGAGTTCGAGGCGGGCCTGGATCATCTTTTGGTACACGGCCAGACTCTCAAATGCGCAATCATGTGCGCGGAAGCGCTCTGGTGGCGTTGCCATCGCAGGATCATCACCGATTATCTGTTGCTCCGTGATGTCGACGTCTTCCATATACTGGACAAAGACAAGGCGACTCAAGCCGTGTTGAATCCAGCGGCACAAAACTCTGGGCTGAAGTTGACCTATCCAGCGTATCCCGACTCAGCACACCCGCCATGA	MEKPSFYTIGHSTRTLEQFVDIVKSFGVEMIVDVRTVPRSRTNPQYNLDTLPALLERYGLKHEQIRQLGGLRKKSRIVADEVNGFWENRSFHNYADYALSDEFEAGLDHLLVHGQTLKCAIMCAEALWWRCHRRIITDYLLLRDVDVFHILDKDKATQAVLNPAAQNSGLKLTYPAYPDSAHPP				NA	NA	NA	NA	NA
D1-36_02370	261			hypothetical protein	ATGCAATCCGAGCAAAGGCAAGGGATTGGCCGTCGATTGATGGAAATCGCGATGGCCCACGCGCGCGCCAAGGGGCTGCTAGCCATTACCTTGACTACTTTCAAGAACGTACCGTGGAACGCACCATTCTACGCCCGACTGGGTTTCGAACAGTTGCCCGAAGCCACGCTGGCCCCGCGCCTGGCCGCCATCCTGGCAGAGGAATACCGTCGCGGCTTCGCACCGGGCAGCCGTTGCGCCATGTCATGGCGGGTGTGCTGA	MQSEQRQGIGRRLMEIAMAHARAKGLLAITLTTFKNVPWNAPFYARLGFEQLPEATLAPRLAAILAEEYRRGFAPGSRCAMSWRVC	PGPT0007605_19	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007605-ispE-K00919	NA	NA
D1-36_02371	501			hypothetical protein	ATGACCAGTGCTGAAACCGTAGTTGGTAGGGCCAAGCAAGCGGACCTGACCGGTATCCTGGCCCTCCAGGCTAAGAACCAGATGGATCGGGGAGGATCGCTTTCTGCCAGCCTCCCGCGAACCCGCGTAAAAGCCATGATGAGGAATATGCCGTTGATCGTCGCGCGTCGTAATGGCCAGGTCACCGGTTTCCTGATGGCGACTCCTCGTGCGATGAACCTGGATCTTCCCATCGTCCAGGCCATGTTTTCTTCGTACGGGGGAACCTCGGATGCATACATCTATGGGCCTATTTGCGTAGGGGAAGAGGAGCGCGGCAAGGGCTTGGCCCAACGAATGTTCGACGAGCTCAAGCGACTCGCCCCCAAGCGCGAGGGCGTTCTTTTCATTCGCACGGATAACGCCCCGTCGCTTCGTGCGCATCAGAAAATGGGTATGAAGGAAGTGGGTTCTTTTCGCTTCAACGATTTCCAATACGCTGTGTTTTCCTATTTTGGCTAG	MTSAETVVGRAKQADLTGILALQAKNQMDRGGSLSASLPRTRVKAMMRNMPLIVARRNGQVTGFLMATPRAMNLDLPIVQAMFSSYGGTSDAYIYGPICVGEEERGKGLAQRMFDELKRLAPKREGVLFIRTDNAPSLRAHQKMGMKEVGSFRFNDFQYAVFSYFG				NA	NA	NA	NA	NA
D1-36_02372	987			hypothetical protein	ATGAACCCGACCAAATCGATCACCCGCTCGTTGCCGCCCAGTGCGTATTGGCTGATTCCGTTGCCCTTGCTCGAAGCGGCATTACTCGTGGCCTGGAGCTCCGGCTTCGTCGGCGCGCGATTCTCCATCGATTACGCCCCGCCGCTGCTTGTGGTGTTCTGGCGTTGCGTGCTGGTCACGCTCCTGCTGTTTCCTTTCGTCGTCCGGCAACTGAGGCGTACCGCCCTCGTCACCCTCCTGAAAAACGCCGGTATCGGACTGCTGGCGATGGCGGGTTACCTGGCTGGTATTACCCAGGGCATTGCCTGGGGTGTGCCCGCTGGCCTGGCCGCCTTGTTCGCCGACTTGTTGCCGATGGGCCTGGCGCTGATGGCCGCGGGTATCCTGGGGCAGCGCATGGCGCCGCGGGTCTGGGCAGGTTTGTTCATAGGCCTGACGGGCGTTGCCCTGGGCACCCATGGCGCGCTCGGGTGGGGCAGCGCGCCGTTGTGGGTCTACGGGCTGCCACTGCTGGGCATGTTGTCGCTCGCTGCGGCGACACTCTGGCAAAAACACCTGCCAGCCTCGCAATCCATGGGGCTGCTACCGAACCTCTGGTTGCAATGTTGTGTCTCGGGCCTGGCCTTTGCCCTGATCGAAGGCGTGCAAGGCAGTCTGGCGCCGATACCCAGTACCGGGTTCGCCCTGAGCGTCATATGGACGGCCGGACTGTCGACGATGGGCGGCTATGGACTCTACTGGCTATGCCTGCGCCGGGCCTCGGCGACCCGGGTCGCCAGCGTCCTCTACCTGAGCCCGCCCATTACCATGGTGTGGGCCTGGGTGATGTTCGACGAGCCGCTGTCTTGGCAGATGGCGCTGGGGATGGCGGTGTCTGCTGTCGGGATCGGGTTGGTTGTGCGCGATGAGGCTCGTCAGGCTCGGGGTCAATCGAATCCAAGCGGGACTAGCCAAAATAGGAAAACACAGCGTATTGGAAATCGTTGA	MNPTKSITRSLPPSAYWLIPLPLLEAALLVAWSSGFVGARFSIDYAPPLLVVFWRCVLVTLLLFPFVVRQLRRTALVTLLKNAGIGLLAMAGYLAGITQGIAWGVPAGLAALFADLLPMGLALMAAGILGQRMAPRVWAGLFIGLTGVALGTHGALGWGSAPLWVYGLPLLGMLSLAAATLWQKHLPASQSMGLLPNLWLQCCVSGLAFALIEGVQGSLAPIPSTGFALSVIWTAGLSTMGGYGLYWLCLRRASATRVASVLYLSPPITMVWAWVMFDEPLSWQMALGMAVSAVGIGLVVRDEARQARGQSNPSGTSQNRKTQRIGNR				NA	NA	NA	NA	NA
D1-36_02373	855	gltR_2	COG0583	HTH-type transcriptional regulator GltR	ATGACAGCCATACTGGATATCGAACTGATCCGGACGTTTCATGCAGTCGCGCGCCTGGGCAAGTTCAGCGGCGCGGCGCAGCAGCTCCACAAGAGCCCGGCAGCGGTGAGCGTGCACATCCAACGATTGGAAGCAGTCGCCGGGGGCCGTTTGCTGGACCGTGACAATCAGTCGGTTTCCCTGACCGCCCTGGGCAAGCGCCTGCTCGTGTCCACCACGGAGCTGCTCGCGACCCATGACCGCGTGCTCGCCGACCTACACGGGACACGGCTGGCGGGGCGCGTCACCCTGGGCGTGCCGGACGAATACGCCGATCATGTCATTCGCGACATTCTGCCGACATTCACCGCAGCCTGGCCAAACGTGGTCCTCGAACTCAAGACCGCACCCAGCTATGCGCTGCGCGAGTATGTCCAACGTGCAAAACTGCAGGCCGCCGTACTCACCCAGCCAATGGACCAGCCTGAGGCGGCGGGCCAGATCCTGGTCACCACCACGCCGGTTTGGGTAGGCGCGACCCATGGGGCGCCGAGCGCGACGGACCCGCTCCCGCTGGCCGTGCATGCGGCGCAATGCCCTTACCGCCAAGTCATGCTGCAGGCGCTGCGGCAAAGCGGGCGCAAGGTGCGAATCGTCCTGGAGAGCCCCTCGAACCAGGCCATCAAGGCATGCGTGGAAGCCGGACTGGGAATCAGCCTGATCGACCGCGCCCGGGTGACGGAGAACATGCGCATCCTCGAGGGTTTGCCGGTGGTGCCCGATCATGAAGTGGTGTTCGTGCGCTCCCAGGCCTCACACGCCGATGAAGCGGTAGACCTGTTGGGCAAAGCGATCCAGCAGCGCTTTCGACTGTAA	MTAILDIELIRTFHAVARLGKFSGAAQQLHKSPAAVSVHIQRLEAVAGGRLLDRDNQSVSLTALGKRLLVSTTELLATHDRVLADLHGTRLAGRVTLGVPDEYADHVIRDILPTFTAAWPNVVLELKTAPSYALREYVQRAKLQAAVLTQPMDQPEAAGQILVTTTPVWVGATHGAPSATDPLPLAVHAAQCPYRQVMLQALRQSGRKVRIVLESPSNQAIKACVEAGLGISLIDRARVTENMRILEGLPVVPDHEVVFVRSQASHADEAVDLLGKAIQQRFRL				NA	NA	NA	NA	NA
D1-36_02374	273			hypothetical protein	ATGCGCATCATCGGAGCGGCTCTAACCATCGCACTGCTGACCGGCTGCGCAACGGCCAACGAAACCTTTGGCCCCGGGTCGCTCTGCGGTGTGCAGCCTTATTGCGGTACGTATTTCGATTATCAGGTGCTCAAGGAAGCGGCGACGGAGGATAACGCGACGTACGCCAGTGCGTTTGCGCCGCTCGCGGCCATCGATCTGCCCCTCAGTTTTGTCGCCGATACGCTTATCCTGCCCTACACCCTCTTTCACATAAGGCCGGCGGAAGAATAG	MRIIGAALTIALLTGCATANETFGPGSLCGVQPYCGTYFDYQVLKEAATEDNATYASAFAPLAAIDLPLSFVADTLILPYTLFHIRPAEE				NA	NA	NA	NA	NA
D1-36_02375	1209			putative transporter	ATGACCGCACCCATCTTCCCAAGCCAAGGCCTGTCCCCAGCCCTCACATCCCTGTTATCCATCACCTGCGCACTGGCCGTCGCCAACGTCTACTTCGCCCAACCCCTCCTAGCCTCGATGGCCGAGAGCCTGGGTGTCGCTCCCGCCTCGATCGGCATCGTGGTCACGGCCACCCAGCTTGGATACGCATTGGGCTTGCTCTTTATCGTCCCGCTGGGCGACAGGGTCGACGGCAAACGGCTGATCCTGACCCTGGTGACGTTGTCCGTGATTGCATTGGCGGCCGTCGGCGCATCCCAGCATTGGCTCATCCTCCTGGGCGCCATGATCACCACGGGCCTGCTCGCGGTCGTCGTCCAAGTGCTGGTGGCCTATGCAGCCGTGCTATCGGCACCGTCCCGACGAGGCCAGACCGTCGGCACCCTCACCAGCGCAGTCGTGATGGGCATACTTCTGGCGCGATTCATCTCGGGGTTCATCGCCGACCTCGCCGGCTGGCGTGCGGTTTATTTTGTGTCGTCGGGACTGATGCTGATCATCGCGACGGTGTTCTGGAAAGTGGCACCCACCACGGCGTCACCGGGAAATCGGCAGCCCTATCCAGCCCTGATCCGCTCGCTGTTCCAACTGTTCATGACCGAACCGCTGTTACGAATCAGGGGGCTGTTCGCGCTGCTGATCTTCGCCGCGTTTTCCGTCCTCTGGACCGCCATGGTCCTGCCGTTGAGTGCCCCGCCATTGTCGCTTTCCCACACCGCCATCGGCCTGTTTGGCCTGGCCGGGGTTGCCGGCGCGCTGGCGGCTCGCAGAGCCGGTCGCTGGGCCGATCGAGGACTGGGGCAACGCGTGACGGGTCTTTCGCTGGGTCTGCTGGTGCTCTCATGGTTGCCCATCTCCTTCGCCGAAAGCTCCCTGATCGCCCTGGTCTTCGGCGTGGTCCTGCTCGACTTTGCCGTACAAGCCGTGCATGTCACCAACCAGAGCCTCATCCTCGCCGCACGTCCCGACGCGCAAAGCCGCATGGTCGGCGCCTACATGTGTTTCTATTCGATCGGCAGCGCACTGGGTGCCGCCGCCGCGACCCAGGTCTATGCGCTATGGGGCTGGGCCGCGGTCAGTTGGCTGGGTGGGTCGATCAGTGTTGTAGCGTTGGGTTTGTGGGGCGTTTCGATTCATCGGGGCGGGTGCGCTGAACAGAAATCGGCGTGA	MTAPIFPSQGLSPALTSLLSITCALAVANVYFAQPLLASMAESLGVAPASIGIVVTATQLGYALGLLFIVPLGDRVDGKRLILTLVTLSVIALAAVGASQHWLILLGAMITTGLLAVVVQVLVAYAAVLSAPSRRGQTVGTLTSAVVMGILLARFISGFIADLAGWRAVYFVSSGLMLIIATVFWKVAPTTASPGNRQPYPALIRSLFQLFMTEPLLRIRGLFALLIFAAFSVLWTAMVLPLSAPPLSLSHTAIGLFGLAGVAGALAARRAGRWADRGLGQRVTGLSLGLLVLSWLPISFAESSLIALVFGVVLLDFAVQAVHVTNQSLILAARPDAQSRMVGAYMCFYSIGSALGAAAATQVYALWGWAAVSWLGGSISVVALGLWGVSIHRGGCAEQKSA				NA	NA	NA	NA	NA
D1-36_02376	459			hypothetical protein	ATGTCAGAAAACACCCCATCGCCCAACAGCGAATGCCCGGTAGCCCGAACACTGGAAATCATCGGTGACCGCTGGTCGCTCATGATCATCCGCGATGCCTTCGACGGCATTCGCCGCTTCAGCGAATTCCAGAAGAGCCTGGGCGTTGCCAAGAACATCCTCGCATCGCGCCTCAAAGGCCTGGTTCAAGTCGGTGTATTGCGCGTGCAGCCCGCATCGGACGCAAGCGCCTACAAGGAATATGTCCTGACGGAAAAAGGCCAGGAAATCTTTCCAATCGTGATCAGCCTGCGGCAGTGGGGCGAACGTTTTTTGTTCGCCGAGCACGAGACGCGGTCGGTGCTGTTGGACAACGCCTCTGGCGAGCCGTTGATGCCCATCGAGGTCCGCGCATTGAGCGGCCAGAAATTGCAACCGGGGGATTGCCACAGGGTGAGACGCATCGCCGGCGAGCCGTGA	MSENTPSPNSECPVARTLEIIGDRWSLMIIRDAFDGIRRFSEFQKSLGVAKNILASRLKGLVQVGVLRVQPASDASAYKEYVLTEKGQEIFPIVISLRQWGERFLFAEHETRSVLLDNASGEPLMPIEVRALSGQKLQPGDCHRVRRIAGEP	PGPT0028680_3	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-STREPTOMYCIN|KANAMYCIN|AMIKACIN,PGPT0028680-aadA-K00984	NA	NA
D1-36_02377	747			hypothetical protein	GTGAAGTATTCGATGCCTGCCGCAGTGCTGCTCAGCCTGTTGCTCGGCCCGGCGACCGCACACGGGCAATATCAGGTCGTCACCGAGGAATGGGCACCCTACAACTATGTGGAGAACCATCGGCTCACCGGCATGACCACGGAAATCGTCCGGGCCATCATGGCGCTGACTGGCGATCATTTCGAGATGTCGGTGCAACCCAGCATGCGCGCCACGCAGATCCTGAAGAACCGGCCCAAGACCATCATGTATTCGCTGTTCCGCACACCGGAGCGTGAGCCATTGTACAAATGGGTCGGCCCGATCGTTGAGGAATCCATCCACGCCTACCAACTGGCCGGCTCGCCGCCGATCAACTCTCTCGAACAACTGCTGCGCGCTCCGCAGATCACCACGCGGCACGCGGGCCTGGTGCCGCAGACGTTGCAATCGCTGGGTTTCAATAACCTGGACAAAAGTGCGACCGAAAGCAGGCTGCTGTACCGCATGCTGCTTGCCGGACGAACCAGCATCATCGTCGGCGACACCGCGGCCGGAGTGGCGTATTACAGCCGCCAATTGGACATCGCGCCGGGCACCCTGCGCAAGATTCCCATCGAGCTTTACCGCTCGTCGCTGTACATCGCCTTCAGCACCGACAGTGACGACGAACTGATCACCGCTTGGAGCAACGCGCTGGAGCAACTGCGCCGGTCCGGCGAATTGGCGCGTATCCAGCAACGCTATGAGCAGCCTCCCCAGCCCTGA	MKYSMPAAVLLSLLLGPATAHGQYQVVTEEWAPYNYVENHRLTGMTTEIVRAIMALTGDHFEMSVQPSMRATQILKNRPKTIMYSLFRTPEREPLYKWVGPIVEESIHAYQLAGSPPINSLEQLLRAPQITTRHAGLVPQTLQSLGFNNLDKSATESRLLYRMLLAGRTSIIVGDTAAGVAYYSRQLDIAPGTLRKIPIELYRSSLYIAFSTDSDDELITAWSNALEQLRRSGELARIQQRYEQPPQP	PGPT0020800_14820	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
D1-36_02378	696	trmK	COG2384	tRNA (adenine(22)-N(1))-methyltransferase	TTGAACGAACAGACATTGTCCATGCGCCTTGAACGCGTGGCGGGGCTCGTGCCGACAGGGGCGCGCCTGGCCGATATCGGCTCGGACCATGGCTACCTCCCGGTGGCGTTGATCAAGCGTGGGGTGATCGCGGCGGCGGTGGCGGTAGAGGTGGCGTTGACGCCGTTCCGCGCGGCTGAGCGCACCGTGCGTGAAAGCGGCCTGGACGAATGGATCAGCGTGCGCCTGGCCGACGGCCTGGCGGCGATCGAACCGGCGGACGGCATCACGGCGATCAGTCTGTGCGGCATGGGCGGCGAGACGATTCGCGACATTCTTGACAGTGGCAAGTGTCGCCTGAGCGGTCGGGAACGCCTGATCCTCCAGCCCAATGGCGGCGAACAGCCCTTGCGCCAATGGCTGATGGACAACGACTACCGCATCCTGTGCGAAGACGTATTGCGGGAAAACCGCTTCTACTACGAAATCATCGTCGCCGAGCGTGACGGGCCGGTGATGTACAGCGCCGAGGAGCTGTACTTCGGCCCGCTGCAAATGCAGGCCCGCAGCCCGGTATTCCTGGCCAAGTGGCAACGCATGCTGCGCCTCAAGCACAAGACCCTGGCCAATTTCACCCAGGCGCAGCAGGCCGTGGCTGAAGAAAAAGTACAAGACGTCGCGCGGCAGGTGCGGTGGATCAACGAGCTGCTGGCGTGA	MNEQTLSMRLERVAGLVPTGARLADIGSDHGYLPVALIKRGVIAAAVAVEVALTPFRAAERTVRESGLDEWISVRLADGLAAIEPADGITAISLCGMGGETIRDILDSGKCRLSGRERLILQPNGGEQPLRQWLMDNDYRILCEDVLRENRFYYEIIVAERDGPVMYSAEELYFGPLQMQARSPVFLAKWQRMLRLKHKTLANFTQAQQAVAEEKVQDVARQVRWINELLA				NA	NA	NA	NA	NA
D1-36_02379	2304	adiA	COG1982	Biodegradative arginine decarboxylase	ATGACGGAACATCGAAATCTATTGGGGATGCTGGCCCTGCTCGTCTCCAACGCACCCGACAAGCGCAGCGTATTCGGCCGGGCCCTGATCCAGCTGATCAGTGACGTAGAGGATCGCGCCGTCAGTGTGCTGACTTCCGAGACCCTGAGCGATGCCAAGTCGATCCTCAGTTCCGACCCGGCCATCCAGTGCGTGCTGCTCAGCTGGGAAATAGACACCAGCGAAGACCATCGCGAATGCATCGACCTGCTGACCGCCCTGCGCGAGCGCAACACCCGCGTGCCGGTGTTCCTGATCAGTGATCGCAGCACCGCGTCCAACGTGCCGTTGATCGTCATGCAACACGCCGACGACTTCATCTGGCTGCCCGAGGACACCAGCCGGTTCCTGAGCGGGCGGATCCTGGCGGCGATCGAACGTTATCGCCAGGCAGTGTTGCCACCGATGTTCGGCGCCCTGCTGAAATTTGCCCGCAGCTACGAATATTCATGGCACACGCCGGGCCACGCCGGCGGCACGGCCTTTCTGAAAAGCACGGCGGGCCGGGCATTCTATGAATTCTTCGGGGAAAACCTGCTGCGCTCGGACCTGTCCATCTCCGTCGGCGAGCTGGGTTCGCTGCTCGACCACAGCGGCCCCATCGGGCAAGGCGAGCGTTATGCCGCCAAGGTCTTCGGCGCCCATCGCACCTACTACGTCACCAACGGGTCATCGATGTCCAACCGCGTGATCCTGATGGCCAGCGTGACGCGGGACCAGATCGCCTTGTGCGACCGCAACTGTCACAAATCCGCCGAGCATGCGATGACGCTGTCCGGGGCAATTCCGACCTACCTGGTGCCGACTCGCAACCGCTTCGGCATCATCGGCCCGATCCTGCCGCAGACCCTCAGCGCCGAGGGCGTGAAGGCCGCCATAGCCAGCAATCCGTTGGTCAAGAGCGACATCGACCCGACACCCGTGCACGCGATTATCACCAATTCCACCTACGACGGCCTGACCTACAACGTCACCCGCGTCGAGGAACTGTTGGGGCAAAGCGTCGATCGCTTGCACTTCGACGAAGCCTGGTATGGCTACGCGCGCTTCAACCCGCTGTACAAGGACCGCTTTGCGATGCACGGCAGCCCGGACGACCACGACCCGTCGAAACCGACCGTGTTCGCCACCCAGTCCACTCACAAGCTGCTGGCTGCGCTGTCCCAGGCGTCGATGATCCACGTGCGCAATGGCCGTAATCCGATTCCCCACGGGCGCTTCAACGAGTCGTACATGATGCACGCCTCGACCTCGCCCAACTACGCGATCATGGCCTCGTGCGATGTCAGCTCGGCGATGATGGAGGCGCCCAGCGGGCAGATCCTCACCAGCGAGGCGATCGAAGAAGCTGTCGCCTTCCGGCAGGTCATTTCCCATATGCAGAGCGAGATGTTCAGTCACGACGATTGGTTCTTCTCGTGCTGGCAGCCGCCGATGGTGCAAGTGGACGGGCAGTCGATCGCCTTCCATGAGGTCGATCCAGCGCGGCTCAAGGCCGATCCTGGTTGCTGGGTGCTGCACCCCAATGAGGTCTGGCACGGCTTCGGCGACATTGAAGACGGCTACTGCATGCTCGATCCGATCAAGGTCTCGATCCTGAGCCCTGGCATGGGCGACGACGGGAATCTGCTGGACTTTGGCATCCCGGCCTGTGTACTCAGCGCCTACCTGGGCACGCAAGGCATCGTGGTGGAAAAAACCACCGACTTCACCATCCTGTTCCTGTTTTCCATCGGCATCACCAAAGGCAAATGGGGCACCCTGGTGAACGCCCTGCTCGACTTCAAGCGTGACTACGACGCCAACCTCGAACTGGAGCTGTGCCTGCCCGACCTGTTGAGCGCCAACCAACAGCGCTATGCCGGCATGGGGCTCAAGGACCTGGCCGAAGAGATCTTCGCCGCCATGAAAAAAACCAAGACCACCGCAGCCATGGCCAAGGCTTTCGGCACGCTGCCGCAAGCGCAGTTCAGCCCCGTGGAGGCCTACGAAAAACTGGTCAGAAACGAAATCGAGCAGGTGACGCTGGACGAGGCCGCCGGTCGGATCGCGGCAACGGGGATCGTGCCGTATCCACCGGGCATCCCCCTGTTGATGCCAGGGGAAAATGCTGGCCCATCAGACGGACCCTTGCTGGCTTACCTGAAGGCTCTGGAGAGTTTTGACCGGTCATTCCCTGGCTTCACCCATGACACCCATGGGATCGAAAATGACGGCGGCGTCTATCGGTTGCTGGTGTTGAAACAGGACGCGACGGACCGTTAG	MTEHRNLLGMLALLVSNAPDKRSVFGRALIQLISDVEDRAVSVLTSETLSDAKSILSSDPAIQCVLLSWEIDTSEDHRECIDLLTALRERNTRVPVFLISDRSTASNVPLIVMQHADDFIWLPEDTSRFLSGRILAAIERYRQAVLPPMFGALLKFARSYEYSWHTPGHAGGTAFLKSTAGRAFYEFFGENLLRSDLSISVGELGSLLDHSGPIGQGERYAAKVFGAHRTYYVTNGSSMSNRVILMASVTRDQIALCDRNCHKSAEHAMTLSGAIPTYLVPTRNRFGIIGPILPQTLSAEGVKAAIASNPLVKSDIDPTPVHAIITNSTYDGLTYNVTRVEELLGQSVDRLHFDEAWYGYARFNPLYKDRFAMHGSPDDHDPSKPTVFATQSTHKLLAALSQASMIHVRNGRNPIPHGRFNESYMMHASTSPNYAIMASCDVSSAMMEAPSGQILTSEAIEEAVAFRQVISHMQSEMFSHDDWFFSCWQPPMVQVDGQSIAFHEVDPARLKADPGCWVLHPNEVWHGFGDIEDGYCMLDPIKVSILSPGMGDDGNLLDFGIPACVLSAYLGTQGIVVEKTTDFTILFLFSIGITKGKWGTLVNALLDFKRDYDANLELELCLPDLLSANQQRYAGMGLKDLAEEIFAAMKKTKTTAAMAKAFGTLPQAQFSPVEAYEKLVRNEIEQVTLDEAAGRIAATGIVPYPPGIPLLMPGENAGPSDGPLLAYLKALESFDRSFPGFTHDTHGIENDGGVYRLLVLKQDATDR	PGPT0012235_380	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ARGININE_DEGRADATION,PGPT0012235-adiA-K01584	NA	NA
D1-36_02380	1410	potE_1	COG0531	Putrescine transporter PotE	ATGTCAGCCGCCAAGAAAATGAGCGTGGGGCAACTCACCATGCTGACTGCCGTCAACATGCTGGGATCCGGCATTGTCCTGTTACCCACCAAGCTCGCCGAAGTCGGCGGCATCTCCATCCTGTCCTGGTTGATCACCGCCACGGGCTCCCTGGCGCTGGCCTACGCGTTCGCCCGCTGCGGCATGCTCAGTCGAAAGACCGGCGGCATGGGCGGATACGCCGAATACACCTTTGGCAAATCCGGCAACTACATCACCAACTACACCTATGGCCTATCGCTGCTGATTGCCAACGTGGCGATCAGCATCACGGCCGTCGGCTATATCCAGACGCTTTTCAGCATCCAGCTCGACTCGCTGCAAGTCGGCCTGGCAACCATCGCCTTGTTGTGGCTGACCACCTTCGCCAATTTCGGCGGCGCAAGCGTTACCGGCAAGATCGGCGCCGTGACCGTATGGGGCGTCATTGCCCCGGTGGTGCTGGTGTCGACCCTTGGTTGGTTCTGGTTCGACAGCAGTGTCTATGCGGCCGGTTGGAACCCTCACGACAAACCCTGGTACGAAGCGGCTGGCGCATCGGTGGCAATCACGCTCTGGGCCTTCCTGGGCCTGGAGTCGGCGTGCGCCAACGGTGACGCGGTGGAGAACCCCGAGAAGAACGTGCCGATCGCCGTTCTCGGCGGGACGCTCGGCGCCGCTGTGATCTACATCGTCTCGACCAACGTCATCGCCGGTATCGTCGACAACGCCGAGCTGGTGTCCTCCACCGCGCCGTTCGGCCTGGTGTTCGCCAAGATGTTCACGCCCCTGGTGGGCAACATCGTCATGGGGCTGATGGTGCTGGCGTGCGTCGGCTCCCTGCTCGGTTGGCAGTTCACCGTCGCCCAGGTGTTCAAGAGTTCGGCGGACACGGGTTACTTCTTGCCGATCTTCGCCAAGGCCAACAAGCATGGCGTGCCGATCATCAGCATGTTGATCCTGCTGGCGATGCAGACGGCGATGGCGCTGCTGACCATCAGTCCCGACCTCGCCAAGCAGTTCGATACGCTGGTGAACCTCGCCGTGGTGACCAACCTGGTGCCGTACATTCTCTCCATGGCGACGCTGGTGACCCTGCAGAAGGTTTCCAATGTCCCGGCGAACAAGGCTCTGGTCACCAATATCGTCGCAGGCATCGCCGCGGCCTACAGTTACCTGGCGCTCTACAGCTCGGGCGAACAAGCGCTGATGCTCGGCGGCGTGGCGGTCATCGTCGGCTACACGCTGTTCGGTTACGTCAATACCCGCCTGATCCGCCTGGAGGCCATGAACAACAGCGTACCGACCCAGACCGTCGCGGCGCAGCACATCGTTGGCGAGCCCATTCCCGTCAACCACTTGAAGCCGGCTAACCTGGAGGCATTGCCATGA	MSAAKKMSVGQLTMLTAVNMLGSGIVLLPTKLAEVGGISILSWLITATGSLALAYAFARCGMLSRKTGGMGGYAEYTFGKSGNYITNYTYGLSLLIANVAISITAVGYIQTLFSIQLDSLQVGLATIALLWLTTFANFGGASVTGKIGAVTVWGVIAPVVLVSTLGWFWFDSSVYAAGWNPHDKPWYEAAGASVAITLWAFLGLESACANGDAVENPEKNVPIAVLGGTLGAAVIYIVSTNVIAGIVDNAELVSSTAPFGLVFAKMFTPLVGNIVMGLMVLACVGSLLGWQFTVAQVFKSSADTGYFLPIFAKANKHGVPIISMLILLAMQTAMALLTISPDLAKQFDTLVNLAVVTNLVPYILSMATLVTLQKVSNVPANKALVTNIVAGIAAAYSYLALYSSGEQALMLGGVAVIVGYTLFGYVNTRLIRLEAMNNSVPTQTVAAQHIVGEPIPVNHLKPANLEALP	PGPT0007800_9	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007800-putE-K03756	NA	NA
D1-36_02381	996	yhdN	COG0667	Aldo-keto reductase YhdN	ATGATCACCCGCCAACTTGGCCATCAAGGCCCACACGTCAGCGCCATCGGCTTGGGCTGCATGGGCATGTCGGATTTCTACACCACCGGCGCGGATGAGCGAGAGGCAATCGCTACGCTCCACCGCGCCGTGGAACTGGGCGTAACACACTTCGACACCGCGGACATGTACGGGCCGCACACCAACGAGCAATTGGTGGGACGGGCGTTGCGCGGCAAGCGCGATGGGATTTTTCTGGCGAGCAAGTTCGGCCTGGTTCGCAGCGACGATCCACATGCCCGGGGCGTCGATGGTCGCCCGGAGTACGTCCGGCAATCGATCGACGGCAGCCTCAAGCGCCTCGGAACCGATTACCTGGATCTTTACTATCAACACCGAATCGACCCTCAGGTGCCGGTGGAAGAAACGATTGGCGCCATGGCCGAATTGGTCAAGGCCGGCAAGGTTCGCCACATCGGCATTTCGGAAGCCAGCGCCGAGACAATCGAGCGGGCCCATGCCGTGCATCCCCTGGCGGCGGTGCAAAGCGAATATTCGTTGTGGTCCAGGGAGCCGGAACACAACGGCGTGCTCGAAACCTGCCGACGCCTGGGAATCGCTTTTGTCGCCTACAGCCCGTTGGGGCGTGGTTTCCTGACGGGCGAGTTGAAGACGCCGGAGGACTTTGCCGCCGACGACTATCGGCGCTTCAATCCGCGTTTCGAGGCCGACAACTTCTATCGCAACCTCGCCCTGGTCGAACGAGTCCGGGCCATGGCCGAGGACAAGCACATCAGCGCCGCGCAACTGGCCTTGGGCTGGGTACTGGCCCAGGGAAGCAATGTCACCGCGATCCCGGGCACCAAGCAGCGTCGATACCTGGAAAGCAACGTCGCCGCCGCCAGCGTTTTCCTGAGCAGCGATGACTTGAATCATCTGGACGCCATTTTCGCCCCCGAAGGCGCCGTGGCCGGCGAGCGCTACAGTGCCGAGGTGATGACCTTGCTCGACGGCTGA	MITRQLGHQGPHVSAIGLGCMGMSDFYTTGADEREAIATLHRAVELGVTHFDTADMYGPHTNEQLVGRALRGKRDGIFLASKFGLVRSDDPHARGVDGRPEYVRQSIDGSLKRLGTDYLDLYYQHRIDPQVPVEETIGAMAELVKAGKVRHIGISEASAETIERAHAVHPLAAVQSEYSLWSREPEHNGVLETCRRLGIAFVAYSPLGRGFLTGELKTPEDFAADDYRRFNPRFEADNFYRNLALVERVRAMAEDKHISAAQLALGWVLAQGSNVTAIPGTKQRRYLESNVAAASVFLSSDDLNHLDAIFAPEGAVAGERYSAEVMTLLDG	PGPT0009140_364	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009140-ydbC-K05275	NA	NA
D1-36_02382	924	dmlR_17		HTH-type transcriptional regulator DmlR	ATGGACCGATTACAGGCAATGCAAGTGTTCCGACGCATCGTCGAGCTGGGCGGTTTTGGCAGGGCGGCCGATGACCTGGGGCTGCCCAGGGCCACCGTCAGCTTGTTGATCCAGCAGTTGGAAAGCCACTTGGGCGTGCAGTTGTTGCAGCGCACCACCCGGCAAGTGCGTGCCACCCTCGACGGCGAAGCCTATTACCAGCGCTGCGGCCACTTGTTGGAAGAACTGGACGACCTGGAAAACTCGCTCTCCACGCAACGGAGCCAACCCCGGGGCACCTTGCGCGTGGACATGCCGATCGCCTTCGGCTGCACTTGGATCGTGCCAAACCTGGCGGACTTCTATCGACGCTATCCGCAGTTGCAACTGGACCTTGGTTTCCATGATCGGCAAGTACATCTGCAACGCGAGGGGGTCGATTGCGCCATCCGGGCCGGCAATATCGTCGACCAGGCGCTGGTGGCGCGGCCGATCGTGCGGCTGCATCAAGTGACCTGCGCCAGCCCGCAGTACCTGGCTCGCGAGGGCACGCCACGGCGACCTGAAGAATTGTCCGGGCACCGCGCCGTTGGCTTCGCGTCCGGCAATGGACGTTTTTTTCCGTTCGAGTTCGAGGCAGCGGGGCAGGTGCGAGAGCTGAACATGCCTTCGGAACTGACCGTCAACAATGCCGACGCCTACGTGACGGCCTGCGAAGCGGGACTCGGCTTGATTCAGGCGCCGCGTTATCACGTGCAGCGGCAGTTGGCAGAAGGGCGCTTGGTGCAAGTGTTGACGGAACATCCAGTGCCGTCATGGCCGATTTCGGTGGTCTATCCGCCCCATCGGCAACTGTCGCCCCGGGTGCGGGTGTTTATCGACTGGGTGATCGAGTTGCTCCATGGCGAAGCGGATGCCCAAGGCGAGTTGATGATGAAGGTGTAA	MDRLQAMQVFRRIVELGGFGRAADDLGLPRATVSLLIQQLESHLGVQLLQRTTRQVRATLDGEAYYQRCGHLLEELDDLENSLSTQRSQPRGTLRVDMPIAFGCTWIVPNLADFYRRYPQLQLDLGFHDRQVHLQREGVDCAIRAGNIVDQALVARPIVRLHQVTCASPQYLAREGTPRRPEELSGHRAVGFASGNGRFFPFEFEAAGQVRELNMPSELTVNNADAYVTACEAGLGLIQAPRYHVQRQLAEGRLVQVLTEHPVPSWPISVVYPPHRQLSPRVRVFIDWVIELLHGEADAQGELMMKV	PGPT0028940_470	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028940-bpeT-K18900	NA	NA
D1-36_02383	2001			hypothetical protein	ATGGACAACGCACACAGCAATGCAGGATTGGCCCCACGAGCAGGCACCGGGAAGACCTTCGTCGACCTTGACGGCTACAACGACACCAAGAAAATCGCGGTGGCCCCGGACGGCACGATATGGCTGGCGGGCATGACAAAGGTAGAAAAGGATTGGGAGTACGAAGGCTACCGGACCTCCCTGATGCGCTTCAATGCCGACGGCACCCTCGATACGACCTTCAGCGACGACGGCAAGACGCAGCTCCCTCACGATATTTTCCCAGGGGAAGGCTACAGTGCGGCCGTGCAGCCAGACGGGAAGTATCTGCTCGTCTACCCACAATTCACGTCCGGCATCGCCATGATCCGGCTCAATACCGACGGCACGGTGGACCAGGGGTTTGGTGTCAACGGTAAGGCCATCGTGCCGGGGTCCTGGGGCGATTATGCCAGTGCCACGGTACAGCCTGACGGCAAGATCCTGGTGTCGAATCAGGACAGCTACGAGAGTCTGTTTTCGGTCAGTCGCCTCAATGCCGACGGAACGCTTGACTCGACCTTCAATGGCGGCAACGCCATCCAATTCAATATCCCGAACATGGGCGCGCTGGAAGGGTACGGATTCACCCTGCAAGCGGATGGCAAATTGCTGGTGCCGGGTTACAACGGCGAGATGGTGGTCGCGCGCTTGAATGCAGACGGCAGCCTGGACAGCAGTTTCGGCACGGACGGCCTGGTCGATACGCAGGTGGCGGGCCTTGCAGCCTCGGTCACCGTCCAGGCCGATGGCAAGATCCTGTTGGCCGGTGGCGGCGAACAAAATGGCAGCGGTTTTGATTTCAAGATCATCAGGCTGAACCAGGACGGCACTCTGGACACAAGTTTCGGCAACGCTGGCGTCGCGGTGATCGACCTGACCGGTGATCGGGACATGGCTCGGGACATTACCGTTCTGGCGGACGGGAAAATCCTGGTGGCGGGGCAGAGCACCTATTTCGGCAACGCTGATTTCAGCCTTATCCGGCTCAACCCTGATGGTACGCTCGATACCACCTTCGGCGCACTTGACGGTGTGTTGCCGGGCATCGATGGAGGGCGGGGCGATGACGTCCTGTCAGGCACCTATGTCCCGGAACGACTCAGCGGCCATGACGGTGCCGACTTGCTTGATGGCGCTGGGCAACGGGACGTGCTGGAGGGCGGAGCCGGTGCCGATGTCTTCCGGGTCAGTACGATCGGCGACAGTTACCGCACCGACAACCAGGCCGTCAGCGATCGAATCGTCGACTTCGACGCCGATCTGGATCGGATCGATTTGACGTCGCTGGGGTTCAGCGGGTTCGGCAACGGATTGGATGGAACCCTGGCGGTGCACGTCAACGAGGCCGGAACGCGAACCTATCTGAAAAGCTTCGACGCGGACGGGCGGGGGCATCGTTTCGAATTGGTCCTGGATGGCGACGTGGCTCAGGCCCTCGATGAAACCAACGTGGTATTCGCGCCGCACCTGATCCAGGGGACCGAGTCAGCCGACCGACTGATGGGTTCGGTGGTCGGTGACCAGATTGTCGCCGGCGCCGGTAACGATGTCGTTTCGGGCGGCAATGGGCACGATGTCATCGACGGCGGGCTGGGACGCGACGTGCTCAGCGGCGGCGAGGGTTGGGATGTTTTCCGCTTCGATGCTCTCGATGACAGCTTTCGCACGGCCGACGGCAATTTCCAGGATCGGATCATCGACTTCGATCCGCTCACGGACAAGATCGACGTGTCGGCGTTGGGCTTCACCGAGTTCTGGAGCGGCTATAACAAAACGCTGCAAGCGGTCGTCAGTGAAGACGGCCAGCGGACCTACCTGAAAAGCTATGAGGCCGATGACGAGGGGCGCCGATTCGAGGTCACCCTGGAGGGGAATGTGGCAGCGCAACTGAGCGACAAGAACTTTATCTTCGCTTCAGGTGACGAGCCCTTTGCGCAACTGCAACTCTTGGGCGTCGCGGCCCCGGAACAGTTCGGGTAG	MDNAHSNAGLAPRAGTGKTFVDLDGYNDTKKIAVAPDGTIWLAGMTKVEKDWEYEGYRTSLMRFNADGTLDTTFSDDGKTQLPHDIFPGEGYSAAVQPDGKYLLVYPQFTSGIAMIRLNTDGTVDQGFGVNGKAIVPGSWGDYASATVQPDGKILVSNQDSYESLFSVSRLNADGTLDSTFNGGNAIQFNIPNMGALEGYGFTLQADGKLLVPGYNGEMVVARLNADGSLDSSFGTDGLVDTQVAGLAASVTVQADGKILLAGGGEQNGSGFDFKIIRLNQDGTLDTSFGNAGVAVIDLTGDRDMARDITVLADGKILVAGQSTYFGNADFSLIRLNPDGTLDTTFGALDGVLPGIDGGRGDDVLSGTYVPERLSGHDGADLLDGAGQRDVLEGGAGADVFRVSTIGDSYRTDNQAVSDRIVDFDADLDRIDLTSLGFSGFGNGLDGTLAVHVNEAGTRTYLKSFDADGRGHRFELVLDGDVAQALDETNVVFAPHLIQGTESADRLMGSVVGDQIVAGAGNDVVSGGNGHDVIDGGLGRDVLSGGEGWDVFRFDALDDSFRTADGNFQDRIIDFDPLTDKIDVSALGFTEFWSGYNKTLQAVVSEDGQRTYLKSYEADDEGRRFEVTLEGNVAAQLSDKNFIFASGDEPFAQLQLLGVAAPEQFG	PGPT0027825_379	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0027825-prtC-K01406	NA	NA
D1-36_02384	429			hypothetical protein	ATGACCGTTACCGCCCATCCTATCTACCGAAGCACGCCGGGACCGCTCCATGCGGTCCTGCTTGCCGGCACGGTTCCACTGTTTCTCGGGGGCCTGCTCAGCGACATCGCTTACTACAAGACCTACCAGATCCAATGGAGCAATTTCGCCTCCTGGTTGATTGCCGGTGGGTTGCTGTTTTGTGGGCTGGCGTTGGTGTTCGCGCTGGTCAATCTGATTCGCGCGGACCACAAGGCCGGTCGTCCGGTAGGCTATTTCCTGTTGTTGCTCGTCACCTGGGTGCTGGGGCTGATCAACGCCTTCGAGCACGCCAAAGACGCCTGGGCCGCGATGCCCCAGGGCCTGGCATTGTCCGTCGTCGTGACCTTGCTGGCCTGCCTGGCGGCATGGGTCGGGCTGACCAACCTGCGTTCGGGAGGTGAGCAATGA	MTVTAHPIYRSTPGPLHAVLLAGTVPLFLGGLLSDIAYYKTYQIQWSNFASWLIAGGLLFCGLALVFALVNLIRADHKAGRPVGYFLLLLVTWVLGLINAFEHAKDAWAAMPQGLALSVVVTLLACLAAWVGLTNLRSGGEQ				NA	NA	NA	NA	NA
D1-36_02385	1293			hypothetical protein	ATGAACTCTCGCATCCCATTGACGGCCTTGAGCATGGCCCTGCTGTTGAGCGGTTGCGGAGGCGAAGGGGACGCTACGCAAGCGCGCGGTCCGGACCCGAAGTTGCCGGAGCCCCAGCGTAGCCTCCTGCCCAGCATGAAAATCGCCGAGCCGGTGGCTTGGGGTGACCAGAAGCCTACGGTGCCGCAAGGCTACGACATCACCGCCATCGCCACCGACCTGAAAATACCGCGCCAGACCCTCGTCTTGCCCAACGGCGATATCCTGGTGGCCGAAGGCAGAGGCGGAAATGCACCGAAGTTGAAGCCCAAGGATGTGATCGCCAGCGTCATCAAGGCGAAGGGCAACACGCAGGTCAAGGGCGGTAACCGCCTGACCCTGTTGCGCGACGCCGATGGCGATGGCACTTACGAGCTCAAGACTGTCTTCGCCGAAAACCTCAACGCGCCCTATGGGCTGGCGTTTGCCGACGGCAAGCTGTACGTGGCGAACCAGGATGCGCTGGTCCGCTTCGACTACCAGGAGGGCCAGACCAAGGCCAGCGGGGCGCCCGTCAAGGTCACTGATCTACCGTCGGCGATCAACCATCACTGGACCAAGGCGTTGGCCATCAGCCCCGACGGGCGCTCGCTGTATGTCGGTATCGGTTCCAACAGCAACGTCACCGAGCGTGGCATGGAAGTCGAGATCGACCGAGCGATGGTCTGGCAGATCGACGCCGAGACGGGCGCCCACAAGCCTTATGCGACCGGCCTGCGCAACCCGACGGCGTTGAAGGTCGAACCTGGTTCCGGGCAGTTGTGGGCGGTGGTCAACGAGCGGGACGAGTTAGGGCCGGACCTGGTGCCGGATTACCTGACTTCCGTGCGCGAAGGCGCGTTCTATGGGTGGCCCTATAGCTATTGGGGGCAGAACGTCGATCCACGGGCGCAGCCGCAGGATCCGCAAAAAGTCGCCGCTGCGGTCAAGCCCGACTACAGCCTGGGGTCCCACGTCGCCGCCCTGGGTGTCGATTTTTCCATTCCGGCCATGGGCGAACAGTTCGCCGAAGGGGCGTTCGTGGGTGAGCACGGCAGTTGGAACCGTGACCAGCCTGTGGGCTACAAGGTGATCTTCGTGCCGTTCAGCAACGGGCGGCCCGCCGGTGAGCCGGTGGATTTCGCGACTGGCTTTCGCGGGTCCGATGGCAAGACCCGGGGGCGGCCAGTGGGTGTGACGGTCGATCCTCGGGGTGCCTTGATCATCGCCGACGACCTCGCGAACACGGTCTGGCGTGTAACCCGCAAGCCATGA	MNSRIPLTALSMALLLSGCGGEGDATQARGPDPKLPEPQRSLLPSMKIAEPVAWGDQKPTVPQGYDITAIATDLKIPRQTLVLPNGDILVAEGRGGNAPKLKPKDVIASVIKAKGNTQVKGGNRLTLLRDADGDGTYELKTVFAENLNAPYGLAFADGKLYVANQDALVRFDYQEGQTKASGAPVKVTDLPSAINHHWTKALAISPDGRSLYVGIGSNSNVTERGMEVEIDRAMVWQIDAETGAHKPYATGLRNPTALKVEPGSGQLWAVVNERDELGPDLVPDYLTSVREGAFYGWPYSYWGQNVDPRAQPQDPQKVAAAVKPDYSLGSHVAALGVDFSIPAMGEQFAEGAFVGEHGSWNRDQPVGYKVIFVPFSNGRPAGEPVDFATGFRGSDGKTRGRPVGVTVDPRGALIIADDLANTVWRVTRKP				NA	NA	NA	NA	NA
D1-36_02386	1341	oprD_4		Porin D	ATGTCGCCTGTCACGAAAAACCTGATCGCCCCCGGGCAAGCGACGTTTACGCTGAAGCCGCTCTGGTTCCTCGCCCTGCTGACAGCAAACGCCCCAGCACTGGCGGCGCCCGGCCTCTTGGAAGGGGCGTCGCTGGAGGTACTGAGCCGCAACTTTTACCTCAACAGTGACTACCGGTCCCCTACCCCGGCGGGCCAAAGCTACAAGAAGGAATGGGCGCAAGGATTCATCGCCACGTTCGAGTCTGGCTTCACCCCCGGCATCCTCGGCGTAGGCATCGACGCCCACGGGTTCCTGGGCTTGAAACTGGACGGCGGCAAGGGCCACGCCGGAACGGGATTGCTGCCGCTGGACAGCGACGGCCGTAGCGAGGATCAATATTCCAGCGCCGGCGGCGCGCTGAAATTCAACCTGTCGCGAACCACCCTGGCACTGGGCGAAATGACCGTGGCGACGCCGGTATTCGACACTGCGGACAAACGCCTGCAACCGGAATACGCCAGCGGCGCACTCCTCACCAGTCGGGAGATCGACGGGGTCGATCTCCAGGCCGGTCATTTCAGCGCGTTCAAGAATCAGGATGCGTCCACCGCCAAGGGAGATTTTTCCGGCTACGGGGCAACCACCCGACACGCCAGCATCGATTTCATCGGTGCCGATCTTTTCAGCGGCCAGCGAGTGGGTGGCGCGCTCTACGCCTCCGAACTGAGCGACACCTGGCGTCAGTACTACGGCAATCTGCACGCAACCGCTGGCGACCTGTTCCTCGACGGCAACCTGTATTACACCCGCGACCACGGCCAGGCCAGTGCCGGGGCCATCGACAACACGGCATTCAGCCTCGCGGGTAAATACCGACGCGAGGCCCAGGCATTCACCCTGGCCTATCAGAAAGTCCGCGGCGACACGCCTTTCGACTTCGTCGGCGGCGACTCCATCTACTTGGCCAATTCGATCAAATATGCCGACTTCAATGGCCCGGGCGAACGCTCCTGGCAGGCACGCTACGACCTTGACATGGGCGCCATGGGCGTTCCCGGCCTTAGCTTCATGGCCCGCTACGTGACAGGGCGCGGGATAGATGGCAGCCATGCTCCCCGGGGCGGCGCCTACAACCCGTACGACGGCAACATCGGCAACTACGTCCCGCAGCAGGGAGACGGCGGCCGACATTGGGAACGCGACATCGACCTGCGCTATCTCGTGCCGTCAGGCCCGGCCAAGGACTTGTCGTTGCAGCTGTCCCACGTCACCCATCGCGCCAACAGCGCCCAGGCCGGCGATGACATCGACAGGCTGTACATCGTCATCCAGTACCCACTCAAACTGGGCCCGTTCTGA	MSPVTKNLIAPGQATFTLKPLWFLALLTANAPALAAPGLLEGASLEVLSRNFYLNSDYRSPTPAGQSYKKEWAQGFIATFESGFTPGILGVGIDAHGFLGLKLDGGKGHAGTGLLPLDSDGRSEDQYSSAGGALKFNLSRTTLALGEMTVATPVFDTADKRLQPEYASGALLTSREIDGVDLQAGHFSAFKNQDASTAKGDFSGYGATTRHASIDFIGADLFSGQRVGGALYASELSDTWRQYYGNLHATAGDLFLDGNLYYTRDHGQASAGAIDNTAFSLAGKYRREAQAFTLAYQKVRGDTPFDFVGGDSIYLANSIKYADFNGPGERSWQARYDLDMGAMGVPGLSFMARYVTGRGIDGSHAPRGGAYNPYDGNIGNYVPQQGDGGRHWERDIDLRYLVPSGPAKDLSLQLSHVTHRANSAQAGDDIDRLYIVIQYPLKLGPF	PGPT0028135_31	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028135-oprD-K18093	NA	NA
D1-36_02387	423	rhaR_1		HTH-type transcriptional activator RhaR	ATGACTCATCCATCGCTCAGCGCCGTCAGGACGCCCCTTACGCCGTTGCAGAAATCCAACCACGGCGGCCTTTCGCCCTGGCGTGAAAGCCTGGTCAAGAAAATGATCTTCGACGGCCTCGGTGAAACATTGGCAATAGCCCGGCTGGCCGAGGCGTGCGCGCTTTCGCGTAGTCACTTTTCCCGAGCGTTCAAGGCCAGCACCGGTCAGTCCCCTCAAGCCTGGATCAGGGGCCAGCGCATCATGCGCGCCAAGCGCCTGATGCAGACCACCGACCTGACCCTCACGCAAATCAGCCAGGAATGCGGCTTTTGCGACCAGGCGCACTTCTGCCACATCTTCACCCATAGCGAAGGCATCAGCCCGTTCGCCTGGCGATCCCGCATGCTGCGCACGTTACTGCACGCGGGAGAGCCTGGGTGA	MTHPSLSAVRTPLTPLQKSNHGGLSPWRESLVKKMIFDGLGETLAIARLAEACALSRSHFSRAFKASTGQSPQAWIRGQRIMRAKRLMQTTDLTLTQISQECGFCDQAHFCHIFTHSEGISPFAWRSRMLRTLLHAGEPG				NA	NA	NA	NA	NA
D1-36_02388	780	bluF		Blue light- and temperature-regulated antirepressor BluF	ATGACCCAATCTTCTTCCCATCCCAACTTCAAGTCCCTTGGCTGCGCCGAGTGTCGTGACCACGAGGCGCTGGGGTTCGAATTCACCATGGCGTTCCAACCCATCTTCAATGTCCGCACGCGCCAGGCGTTTGCGTACGAGGCGTTGGTCCGAGGCCTGAAGGGTGAGTCGGCCGGCCATATCCTGGGGCTGGTGAACGACAGCAACCGCTACCGATTCGACCAGGCCTGTCGCGTGAAGGCCATCGAAGAAGCCGCTCGGCTGGGTATCCTGGAGATTCCCGGTTGCCTGCTCAGCATCAACTTCCTGCCCAACGCCGTTTACCGGGCCGAAACCTGCATTCGCGCAACCCTGGAGGCTGCGCGTCAGACCGGCTTTCCGCCAGACAGGCTGATGTTCGAAGTGACGGAAGGCGAGCGTGTCGACGACCCGGATCACTTGAAATCGATTTTCATGGAATACGAGCGCCAGGGCTTCACCACAGCCATCGATGATTTCGGGTCTGGCTACTCAGGGCTCAACCTGTTGGCGCTGTTCCAACCCCAGGTGCTGAAAATCGACATGGCGCTGACCCGAGGCATCGATCACGATCCGGTCAAGCGTGCCATCGTCGAGGGGATCATCCTGGTCGCCAACCGGCTGGGGATTACCATCATTGCCGAGGGCGTCGAGACGCGCGAAGAGAGCGCTACGCTGCTGGCGATGGGCATCGAGTTGATGCAAGGATTTCTTTATGCGCGGCCCGAAATCGGCCGGCTGGCGGTCGGAAGCTTTGATTAA	MTQSSSHPNFKSLGCAECRDHEALGFEFTMAFQPIFNVRTRQAFAYEALVRGLKGESAGHILGLVNDSNRYRFDQACRVKAIEEAARLGILEIPGCLLSINFLPNAVYRAETCIRATLEAARQTGFPPDRLMFEVTEGERVDDPDHLKSIFMEYERQGFTTAIDDFGSGYSGLNLLALFQPQVLKIDMALTRGIDHDPVKRAIVEGIILVANRLGITIIAEGVETREESATLLAMGIELMQGFLYARPEIGRLAVGSFD	PGPT0026255_256	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-BF-BLUE_LIGHT|COLD|STARVATION_SIGNALLING,PGPT0026255-bluF|ycgF-K21973	NA	NA
D1-36_02389	1701	QRSL1		Glutamyl-tRNA(Gln) amidotransferase subunit A, chloroplastic/mitochondrial	ATGATTGAAATCACCGAAGTCTCCATCGCCCAACTCCGGGCTGCGCTCGAATCCGGCCAGACCACGGCGGTCGAATTGGTCCAGGCCTACCTTGCCCGAATCGACGCCTACGACGGCCCCGAAACGCCCACGGCCCTCAACGCCGTGGTGGTTCGCAACCCCGACGCGCTGCAAGAGGCGAAGGCGTCGGATACCCGTCGGGCCAAGGGCCAGACACTGGGCCCGCTCGACGGCATTCCTTACACGGCCAAGGACAGTTACCTGGTGAAGGGCCTGACCGCTGCCTCTGGCAGCCCGGCCTTCACGGACCTGGTTGCCTATCGCGACGCCTTCACCGTCGAGCGGCTGCGCGCCGCCGGGGCCATTTGCCTGGGCAAGACCAACATGCCGCCGATGGCGAACGGCGGCATGCAACGCGGCGTATATGGCCGCGCCGAAAGCCCGTACAACGGTGACTACCTCACCGCGCCCTTTGCCTCCGGCTCGTCCAACGGTGCGGGCACCGCCACCGCCGCCAGCTTCGCCGCCTTTGGCCTCGCCGAAGAAACCTGGTCCAGCGGACGCGGCCCCGCGTCCAACAACGGGCTGTGCGCCTACACGCCTTCGCGGGGAGTGATCTCGGTGCGCGGCAATTGGCCGTTGACGCCGACCATGGACGTTGTCGTGCCCTTCGCCAGGACCATGGCCGACCTGCTCGAAGTGCTTGACGTGGTGGTGGCCAATGACCCCGACACCCGCGGAGACCTGTGGCGCCTGCAACCCTGGGTGCCGATTCCCTCCGTCGATTCCGTTCGTCCCGCGTCCTACCAAAGCCTTGCCGCCAAACCGCAGGTGCTGGCCGGCGTGCGCTTTGGGGTCCCGCGCATGTACATCAACGCCGACCCCGAGGCGGGCACGGCCGAAAAGCCAGGGATCGGTGGCCCGACCGGCCAGCGCATCATCACGCGCCCGTCGGTGATCGCTCTTTGGGAAGAAGCGCGCAAGGCTCTGCAAGCCCAGGGCGCCGAGGTGATCGAGGTGGATTTCCCGTTGGTATCCAACTGCGAGGGTGATCGCCCTGGCGCGCCGACCGTGTTCACCCGCGGCCTGGTGTCCAAGGAGTTCCTGCACCACGAATTGTGGGATCTATCGGCCTGGGCATTCGATGATTTCCTGCGGGCCAACGGTGATCCGAAACTCAATCGCCTGGCCGACGTCGACGGACCGCTGATTTTCCCCCACGACCCTGGCACCCTGCCCAACCGCGAGGATGACCTTGCCGCCGGCATGGACGAGTACGTGAAGATGGCCCTGCGCGGAATCACGCCGTGGGACCAGATTCCTACCTTGCCTGATGGCTTGCGAGGTCTCGAAGAGACGCGCCGGATCGACTTGGAAGATTGGATGGCGCGCCTGGGCCTCGATGCGGTGATCTTCCCCACGGTGGCCGACATCGGCCCAGCGGACGCGGACGTCAATCCAGCCTCGGCCGACATCGCCTGGAGCAATGGGGTCTGGGTCGCCAACGGCAACCTCGCCATCCGCCACCTGGGCGTGCCCACCGTCACCGTGCCGATGGGCGTCATGGCAGACATCGGCATGCCTGTCGGCCTGACGTTCGCCGGCCGAGCCTATGACGATTCAAAGCTGTTGCAGCTGGCTTCGGCGTTCGAGTCGCTGGGATCGAAACGGATGATCCCGCCGCGGACTCCGCCGTTGTAA	MIEITEVSIAQLRAALESGQTTAVELVQAYLARIDAYDGPETPTALNAVVVRNPDALQEAKASDTRRAKGQTLGPLDGIPYTAKDSYLVKGLTAASGSPAFTDLVAYRDAFTVERLRAAGAICLGKTNMPPMANGGMQRGVYGRAESPYNGDYLTAPFASGSSNGAGTATAASFAAFGLAEETWSSGRGPASNNGLCAYTPSRGVISVRGNWPLTPTMDVVVPFARTMADLLEVLDVVVANDPDTRGDLWRLQPWVPIPSVDSVRPASYQSLAAKPQVLAGVRFGVPRMYINADPEAGTAEKPGIGGPTGQRIITRPSVIALWEEARKALQAQGAEVIEVDFPLVSNCEGDRPGAPTVFTRGLVSKEFLHHELWDLSAWAFDDFLRANGDPKLNRLADVDGPLIFPHDPGTLPNREDDLAAGMDEYVKMALRGITPWDQIPTLPDGLRGLEETRRIDLEDWMARLGLDAVIFPTVADIGPADADVNPASADIAWSNGVWVANGNLAIRHLGVPTVTVPMGVMADIGMPVGLTFAGRAYDDSKLLQLASAFESLGSKRMIPPRTPPL	PGPT0006115_510	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
D1-36_02390	732	dasR	COG2188	HTH-type transcriptional repressor DasR	ATGAACCCACTCCCCAGCGATGCCCGCTTGCCGCTCTATCAACGTTTGCGCGACCAATTGGCCGAGCAGATTGCCAACAATCGCTGGCGTCCGGGGGAGGCGATTCCCACCGAGGCGGCGCTTTCAGCCGAATACCAACTGTCCACCGGGACGGTGCGCAAGGCGATCGATGCGTTGGTCAGCGAAGGCGTCCTGGAGCGTCAGCAGGGCCGAGGCACCTTCATTCGTCGCCCCCAGTTCCAGTCGTCGTTGTTTCGTTTCTTCCGTTTTCAGTCCGCGTCCGGGGAGCGCCGGGTTCCAGAGAGCCGCATCTTGTCGGTAGAGCCGGTGGCGGCGCCGTCAGCCGTGGCCCAGGCGTTGGGGCTGCCAGTGGAGGCGGCGGTGATTCGTATCGTGCGGGTGCGTCTGCTGGACGTCGAGCCCGTGCTCGCCGAAGAGATCTGGCTGCCTCGCAGCCGATTCCAGCCGTTGCTGGAAATCGACCTGAACCACAAAGGCCCGTTGCTTTATCCCATCTATGAAGAGACCTGCGGGCAGGTTGTCGCTTATGCGCAGGAAACCCTCACCGCCGAGTCAGTCAACGACGTGCATGCCCGCTTGTTGCAAGTGCCGGTCAATAGCCCGGTGGTGGTAATCGAGCGCCTGGCCCGTGATTACGCGGGCAACCCGCTGGAGTGGCGACGTTCGCGCGGGCATGCCGAGCATTTCCGCTACAGCGTAGAGATTCGTTGA	MNPLPSDARLPLYQRLRDQLAEQIANNRWRPGEAIPTEAALSAEYQLSTGTVRKAIDALVSEGVLERQQGRGTFIRRPQFQSSLFRFFRFQSASGERRVPESRILSVEPVAAPSAVAQALGLPVEAAVIRIVRVRLLDVEPVLAEEIWLPRSRFQPLLEIDLNHKGPLLYPIYEETCGQVVAYAQETLTAESVNDVHARLLQVPVNSPVVVIERLARDYAGNPLEWRRSRGHAEHFRYSVEIR				NA	NA	NA	NA	NA
D1-36_02391	1290	naiP_2		Putative niacin/nicotinamide transporter NaiP	ATGTTCAGTTGGTATCGGCAAATCACCTCCCGGGAGCGTAAGACGTTCTGGGCCTGTTTCGGCGGATGGTCCCTCGACGCGCTGGAAGTTCAGATGTTCGGCCTGGCGATCCCGGCGCTGATCGCCGCGTTCGCCTTGTCCAAAGGTGATGCGGGGCTGATCAGCGGGGTCACGCTGGTGACCTCGGCCCTGGGTGGCTGGGTGGGCGGGACGCTGTCGGATCGCTACGGGCGGGTGCGCACGCTGCAGTGGATGATCCTGTGGTTTTCGTTCTTCACCTTCCTGTCGGCGTTCGTCACTGGCTTCCATCAATTGTTGATCGTCAAGGCCCTGCAAGGCTTCGGGATCGGTGGCGAATGGGCCGCCGGCGCGGTGCTGATGGCCGAGACGATCAATCCGAAATACCGCGGCAAGGTCATGGGCACGGTGCAGAGTGCCTGGGCGGTGGGCTGGGGGTTGGCGGTGGGCGTCTTTACGCTGATCTATTCCCTGGTGCCGCAGGACATGGCCTGGCGGGTGATGTTCATCGTCGGCTTGCTGCCGTCGTTCCTGATCATCTGGGTGCGTCGCAACGTCGAGGAGCCGGACAGCTTCCAGCGCCTGCAAAAGGAACAGGCCATTCCCCAGAGTTTTTTCAAGTCCCTGGGCGGTATCTTTCGCCCTGAGTTGATTCGCGTGACATTGTTCGGTGGCTTGCTGGGGCTGGGGGCACACGGGGGTTACCACGCGGTGATGACGTGGTTGCCGACGTTCCTCAAGACCGAACGCAACCTGTCGGTGCTCAACTCCGGCGGCTACCTGGCGGTGATCATCCTCGCCTTCTGGTGTGGCTGTGTGGTCAGCGGGCTGCTGATCGATCGCATCGGCCGACGCAAGAACATCCTGCTGTTTGCGCTGTGCTGCGTCGTGACGGTGCAGTGCTACGTGTTCCTGCCGCTGACCAATACCCAGATGTTGTTCCTGGGTTTCCCCCTCGGCTTTTTCGCGGCCGGCATTCCGGCCAGTCTCGGGGCGTTTTTCAACGAGTTGTACCCGGCGGATGTGCGCGGCGCCGGTGTCGGCTTTTGCTACAACTTCGGCCGGGTCCTCTCGGCGCTGTTTCCGTTCCTGGTTGGTCATATGAGCGACTCCATGTCCCTGGGGTCGGCCATCGGTATCGACGCCGGCATTGCCTACGGCGTAGCGGTGCTTGCGGCGCTTTGCCTGCCGGAAACCCGAGGCCGCAGCCTTGAGGCCACGGCGCCGCCTGCACCGGACGGAGCGCCTGGCACCGAGAGCGCCCGGGCCTGA	MFSWYRQITSRERKTFWACFGGWSLDALEVQMFGLAIPALIAAFALSKGDAGLISGVTLVTSALGGWVGGTLSDRYGRVRTLQWMILWFSFFTFLSAFVTGFHQLLIVKALQGFGIGGEWAAGAVLMAETINPKYRGKVMGTVQSAWAVGWGLAVGVFTLIYSLVPQDMAWRVMFIVGLLPSFLIIWVRRNVEEPDSFQRLQKEQAIPQSFFKSLGGIFRPELIRVTLFGGLLGLGAHGGYHAVMTWLPTFLKTERNLSVLNSGGYLAVIILAFWCGCVVSGLLIDRIGRRKNILLFALCCVVTVQCYVFLPLTNTQMLFLGFPLGFFAAGIPASLGAFFNELYPADVRGAGVGFCYNFGRVLSALFPFLVGHMSDSMSLGSAIGIDAGIAYGVAVLAALCLPETRGRSLEATAPPAPDGAPGTESARA				NA	NA	NA	NA	NA
D1-36_02392	831	pmdD	COG3618	2-pyrone-4,6-dicarbaxylate hydrolase	ATGGTTGATACCTGCACTACGCCGATCACCGGCATCGACAGCCATGCCCATGTGTTCAGCCGTGAACTGGAGCTGGCTGCGGTGCGGCGCTACACACCGGATTATGACGCCACGCTTGCGCAATACCTGGATCACCTGCGTTCCCACGGCCTGAGCCATGGGGTATTGGTCCAGCCGAGCTTTCTCGGCACCGATAACCGTTACCTGCTGGCCGCCCTCCGGCAGGCACCGGGGCAACTGCGCGGCGTTGTGGTGGTGGAACCCGAGATCAGCCGGACCGTGCTGAATGAAATGGCACGGCTGGGGGTGGTCGGCGTTCGCTTGAACCTGATGGGCAAGGCCGTGCCTGATTTTTGCGAGACAAGGTGGAAAGGCTTCCTGGCGCATCTTGCCGAGTTGGACTGGCACGTGGAACTGCATGCGCCGATCGACCAACTGGCCGGGTTGATCAGCCAACTGATCCCTTTTGGCATCCGCCTGGTGGTCGACCATTTCGGTCGTCCGGATGCCCGTCTGGGCCTCGACCAACCGGGTTTCGCCGAGCTGCTTGAGTTGGGGCTCGGCGGGCAAGTCTGGATGAAGGTCTCGGGCATCTACCGATTGGCGGGGACGGATCGAGAAAATCTCGACTTCGCCCGCTCCGCGTTGGCGATGCTGGAGCAGAGCCTGGGCCCTCATCGGATGGTGTGGGGCAGCGATTGGCCACATACACAACATGAAGGCGTCGTGGGCTTCGACACCGTTGTCCGGCAGTTGCGGGCTTTGCAATGCCCGGCGCCGCTCTTGCGCGCGCTCATGGTGGAAACCCCCCGCAGATTATTCAAGTTTTAA	MVDTCTTPITGIDSHAHVFSRELELAAVRRYTPDYDATLAQYLDHLRSHGLSHGVLVQPSFLGTDNRYLLAALRQAPGQLRGVVVVEPEISRTVLNEMARLGVVGVRLNLMGKAVPDFCETRWKGFLAHLAELDWHVELHAPIDQLAGLISQLIPFGIRLVVDHFGRPDARLGLDQPGFAELLELGLGGQVWMKVSGIYRLAGTDRENLDFARSALAMLEQSLGPHRMVWGSDWPHTQHEGVVGFDTVVRQLRALQCPAPLLRALMVETPRRLFKF				NA	NA	NA	NA	NA
D1-36_02393	2184			hypothetical protein	ATGTCGAATATAGAAGCGTTTCCCACGGGGACGCGCACGCCGAGCGAGTATGAAAGCCTTGTGGCAACGGGCGCCAGCGCACTTGATGCGATTCCTGGCGCGGTGTACCTGTGCGATCACAACGGCTGGCTGGTGCGGCACAACAGCGAGGCGGCCGCCATGTGGGGGCGGACGCCGATTCTGGGGGAGGGCGGTGATCGTTTCTGCGGTTCCTACCGTTTGTTCCTGCCCGACGGCACTCCGCTTGCCTTCGAAGACTGCCCGATGGCCACAGCCCTCGTCACGGGTGAGGCAACGCGCAACCAGGAAGTGTTCATCGAGCGTCCGGATGGGTCGCGATTCATTGCCCTGGTGAATATCAGGCCGTTGAAAGACTCCCAAGGCATCATCCAAGGGGCGATCAACTGCTTCCAGGACATTTCGGCGCAGCATGCCTTGGCCGAAGAGTTGCGACGCAAGAATGAGGACCTTGAAGATTTCTTCGAGAACAGCGCCGTGGGCCTCCACATCGTCAGTGGTGAAGGCATCATCCTGCGCGCCAACAAGGCCGAACTGGCCTTGCTGGGTTATTCGCCGGAGGAATACATCGGCCGTAGCATCACCGATTTCCATGCCGACGAGCCGGTCATCAGCGACATCCTGAACAAGCTCGGCAGCGGTCAATGCCTGCAGGATTACCCGGCGCGCCTGAAGGCCAAGGACGGCTCGATCAAGCATGTCACCATCACGTCCAACGGCCGGTTCGAAGAGGGAAAACTGTTCAATACGCGGTGCTTTACGGTGGACATGACCAGTGTCCACGTGGCCGAGACGGCGCGCCAGGAGAGCGACGACAGACTCCTGGCGACTTACCAAGCGGCGACGATCGGCATTGCCGAGTCCGGCGCGGATGGCCGGCTGCTGCGCGTCAATGACGCCCTCTGCAACATGCTGGGCCGCACGCGCGAAGAGCTATTGGAAATGACATTCCTGGACTACACGCACAGGGACAGTACCGACGAGGATGCAGCCCTTTATGCACGCCAGGTGGCGGGTGAACTGGACAATTACGTGCTGCGCAAGCGCGCCTTCAAGCCCGATGGCGAGACCGTCTACCTGGACATCCACAGCTCGTCCGTGCGCGACGCCAACGGCGCGTTTCGGTATGGGGTCCGGATACTGCAGGACGTCACGCTGGCGCGTCGCATGGAAAATCAGATCCGCGACAGCGAGCGGCATATGCGCAATCTGCTCGAGGCCCTGCCGGCGGCTGTCTACACCACCGATGCTCAAGGCCGTATCACCTTTTTCAATCGGGCAGCAGTGGAGTTGTCGGGACAAACACCACAGTTGGGCGACCTTTGGTGCGTGACCTGGAAATTGTTCACCACCGACGGGACCTTCCTGCCCCACGACCAGTGCCCGATGGCAGTCGCCCTGAAGGAAAACCGGCCGATACGCGGGGTCGAAGCCGTCGCGGAGCGGCCCGACGGCACACGGGTGCCGTTCGCCCCGTACCCTACGCCGCTGCACGATGCCGAGGGCAACCTGGTGGGCGCCATCAACATGCTGGTGGATATCTCCGAGCGAAAACAAGCGGAAGACCGGCAAAAAACCCTGATCGACGAGCTCAACCATCGGGTCAAGAACACCTTGGCCACGGTGCAATCCCTGGCGGCCCAGACGGCACGCAACGCAGAAAGCGCCAAGGACGGTTACAACCGGTTCGAAGCGCGGCTGCTCGCGTTGTCCCGCGCCCATGACCTGCTGACGAGGCGGCATTGGGGCCATACGGCCCTGGGGTCCCTGGCCCAGGAGGTGCTCATGCCCATTTTCGGCACTGATTCTGACCGTATCACGATCGAGGGTGATCCCATTGACGTCGATACCCGGGTCGCGCTCGGCCTCACGATGACGCTCAACGAATTGGCGATCAACGCCCTCAAATACGGTTCGATGTCCGTCGAGACGGGCCGCCTTTCAGTGAGCTGGAATGTCCAGCCGCAATCAAACGGCGTGTTGCTGACCGTGGACTGGCGCGAGCAAGACGGACCGCCAGTGTCGCAACCGGAACGCGAGGGTTTGGGTTCGCGATTGATGAAGCGCTGCATCGAACGCGACCTGGGTGGAATATTTGTGCTGACCTTCGCGCCTGAAGGCGTGCTCTGCCGGTTCTCCTTCATGGTTCCCGAGCACCACGCATGA	MSNIEAFPTGTRTPSEYESLVATGASALDAIPGAVYLCDHNGWLVRHNSEAAAMWGRTPILGEGGDRFCGSYRLFLPDGTPLAFEDCPMATALVTGEATRNQEVFIERPDGSRFIALVNIRPLKDSQGIIQGAINCFQDISAQHALAEELRRKNEDLEDFFENSAVGLHIVSGEGIILRANKAELALLGYSPEEYIGRSITDFHADEPVISDILNKLGSGQCLQDYPARLKAKDGSIKHVTITSNGRFEEGKLFNTRCFTVDMTSVHVAETARQESDDRLLATYQAATIGIAESGADGRLLRVNDALCNMLGRTREELLEMTFLDYTHRDSTDEDAALYARQVAGELDNYVLRKRAFKPDGETVYLDIHSSSVRDANGAFRYGVRILQDVTLARRMENQIRDSERHMRNLLEALPAAVYTTDAQGRITFFNRAAVELSGQTPQLGDLWCVTWKLFTTDGTFLPHDQCPMAVALKENRPIRGVEAVAERPDGTRVPFAPYPTPLHDAEGNLVGAINMLVDISERKQAEDRQKTLIDELNHRVKNTLATVQSLAAQTARNAESAKDGYNRFEARLLALSRAHDLLTRRHWGHTALGSLAQEVLMPIFGTDSDRITIEGDPIDVDTRVALGLTMTLNELAINALKYGSMSVETGRLSVSWNVQPQSNGVLLTVDWREQDGPPVSQPEREGLGSRLMKRCIERDLGGIFVLTFAPEGVLCRFSFMVPEHHA				NA	NA	NA	NA	NA
D1-36_02394	387			hypothetical protein	ATGACGATATTTGCCGGGATCAAGGTGTTGCTCGTCGAGGATGAAGGCACAGTCGCCATGCTGATCGAGGAAATGCTCGAAGAGCAGGGGTGCGAGGTGGTGGCCTCCATCCCGCGGCTTGCCATGGCCCGGGAGGCGGCGGGCACGGTTGAGGTCGATCTGGCGATCCTGGACGTCAACCTGGCCGGAGAACGGGTTTTTCCGGTGGCTGAAATCCTTCGTGATCGTAAAATTCCTTTTTTATTCAGCACCGGATACGGCGCCAGCGGCCTGCCCGCCGAGTTTGCCCAGTGCCCGGTGTTGCACAAGCCGTTTTCGGAAAACGAGTTGCAATTGAAGATAGCGTTGACGCTGGAAAACCAAAGCATGTCCAAGGAGCGACCATGA	MTIFAGIKVLLVEDEGTVAMLIEEMLEEQGCEVVASIPRLAMAREAAGTVEVDLAILDVNLAGERVFPVAEILRDRKIPFLFSTGYGASGLPAEFAQCPVLHKPFSENELQLKIALTLENQSMSKERP				NA	NA	NA	NA	NA
D1-36_02395	444	hit	COG0537	Protein hit	ATGAGTCTGCACGGCCAATACGATTCCCAGAACATTTTCGCGATGATCCTTCGGGGTGAAGCACCTGCCTACAAGATCTACGAAGATGACGATGTGCTGGCCTTCCTCGACATCTTTCCCCAGTCCCGGGGCCATGTGCTAGTCATTCCAAAGGGGGCCCAGGCGCGCAACATCCTCGACGTCGACCCGGCAATCCTTGGCAAGATGATGGCAGCGGTACAACGCCTGACCCGCATCATCGTCGACGAGTTGCAACCCGACGGCGTGCAAATCGCCCAATTCAACGGCGCGCCGGCGGGGCAGACGGTCTTTCACATCCATGTGCACATCGTTCCGCGCTGGGAAGGACAGGCGCCTGGCCTACATGGGCAAGGGAAAGCCGATCCGCAGGAGCTTGAGGCGTTGCAGGCGCGGTTGGTGGAGCGGATTCGCTCGGGGGCTTGA	MSLHGQYDSQNIFAMILRGEAPAYKIYEDDDVLAFLDIFPQSRGHVLVIPKGAQARNILDVDPAILGKMMAAVQRLTRIIVDELQPDGVQIAQFNGAPAGQTVFHIHVHIVPRWEGQAPGLHGQGKADPQELEALQARLVERIRSGA				NA	NA	NA	NA	NA
D1-36_02396	870	rob	COG2207	Right origin-binding protein	GTGCCCGACTTGCCAAAGACCTCCACCTATAAAAGACGCTTCGACGCCGTCCTCGCCTACATCGACGCCAATCTGGAAGGGGATCTCTCGGTGAAAACGTTGAGTGATGTGGCGAACTTCTCGGTGTTTCACTTCCATCGACAATTCACGGCGTTCATGGGCGTGCCCGTTTCACGTTATGTGCAGCTGATGCGGCTACGACGCGCGGCACATCAATTGGTTGCCTTTGCTGGGTACTCGGTACTGGATGCCGCATTGGATGCGGGCTTTAAAAGCCCCGAGGCGTTCTGTCGAGCGTTTGGCCGAGCGTTCGGCATGGCGCCAAGCGCGTTCCGGAAGAAACCCAACTGGCAGGTCTGGAGTACGGTGTTTGCCATCCCCCATTTCTCACGGAGTATCTTTATGCAAGTTCGAATCATCGAGTTCCCTGAAGTCAGGATTGCGGCGCTTGAACATCGCGGCCCGGCCGGGCTCGTCAGCGAAAGCGTGGACCGGTTCATCGAATGGCGTATGCGTAGCGGGCAGTCGCCCGTGGCATCAAGCCGTACGTTTGGCATTCCCTACGGCAACCCCGACACCACACCGCCACACGACTTCCGCTTCGCGATCTGCGGCGAGATTGATGAGGAAGTGGCGCCGAACGCGTTCGGTGTTCAGCCGATGGTCATCCCCGGCGGTCGCTACGCAGTGGTCCGCCACGCCGGATCGCCTGATCATATCGGCGAAACGATCTATCCGATCTACCGTGAATGGCTACCCGCAAGCGGCGAGGAACTTCGTGACCAGCCGCTGTTTTTCCACTACCTGAGCGCCTATCCCGAGACACCACGAGATCAATGGCAAACCGATGTGTACGTTCCGCTGCGGTGA	MPDLPKTSTYKRRFDAVLAYIDANLEGDLSVKTLSDVANFSVFHFHRQFTAFMGVPVSRYVQLMRLRRAAHQLVAFAGYSVLDAALDAGFKSPEAFCRAFGRAFGMAPSAFRKKPNWQVWSTVFAIPHFSRSIFMQVRIIEFPEVRIAALEHRGPAGLVSESVDRFIEWRMRSGQSPVASSRTFGIPYGNPDTTPPHDFRFAICGEIDEEVAPNAFGVQPMVIPGGRYAVVRHAGSPDHIGETIYPIYREWLPASGEELRDQPLFFHYLSAYPETPRDQWQTDVYVPLR				NA	NA	NA	NA	NA
D1-36_02397	294			hypothetical protein	ATGGACGAACGCCTAGCAATTATCAAGAAGCTGATCCGAGCCGTTGTGACCACGAGCCATTCTGATGAAATCACCTATCAATCAGAGTGGCTCGGCTACATGCCCTTTCCCGTCGATCACTGGGTTGAACATCAAGGCAAGACGTTCTCCGGCGACTTCCCGTTTGACTGGACGCTAGAGGACTTGGCCGGTCTTGAGCCCATAGGCTTCCTGGAAAAGCTGGAAGCCTATGAAAATCCGGAAGACCGATTCGATCGACATATCCGGTACCGCGTGCATATCGGACCCGCGTAA	MDERLAIIKKLIRAVVTTSHSDEITYQSEWLGYMPFPVDHWVEHQGKTFSGDFPFDWTLEDLAGLEPIGFLEKLEAYENPEDRFDRHIRYRVHIGPA				NA	NA	NA	NA	NA
D1-36_02398	1029		COG1073	putative protein	ATGAAAAAGATCCTCGTTCTATTAACGCTTTTCGTCACGTCTCTTTCAGCGATAGGAGCCGATATATCCAACGGCGCAGACAATTTCTACACCAGCGACGAAGTGACCGTGAAAAAGGTCAGTTTCAAGAACCAATATCAGATGAATGTGGCAGGCAACCTGTTCATCCCGAAAAAACTCAACGGCAACACAAGCAATCCGGCGATTGTCGTGGGCCATCCAATGGGCGCGGTGAAGGAACAGAGCGCGAATCTATATGCGACGAAGATGGCTGAAAAAGGCTTCGTGACCCTCTCTCTCGACCTGTCGTTCTGGGGCGAAAGCGAGGGACGGCCACGCAACGCGGTCTCGCCGGATATCTACGCCGAGGACTTCAGCGCGGCGGTGGACTATCTCAGTGCCCAACCTTTCGTCGACAAGGAACGGATTGGCGCCCTCGGTATCTGCGGCAGCGGCAGCTTCGTGATCAGTGCCGCCAAGATCGACCCGCGCATGAAGGCCATCGCCACCGTGAGCATGTATGACATGGGCGGCGTCAATCGCAACGGGTTGAAGCATTCCCAGACGCTCGATCAACGCCGAGCCATCATCGCTCAGGCAACGCAGCAGCGTAACGTCGAGTTCGCCGGCGGTGAAACGCTGTACACCAGCGGTACGGTGCACAAGCTGGATGAAAACACCCACCCTATCCAACGCGAATTCTTCGACTTCTACCGCACCCCACGCGGCGAGTTCACGCCATCCGGCTCGTCCAGGGACTTGACTACGCACCCCACGCTCACCAGCAACATCAAGTTCATGAACTTCTACCCGCTCAATGACATCGAGACCATTTCACCTCACCCGATGCTCTTCATTGCCGGCGCCGATGCCCACTCCAGGGAGTTCAGCGAAGAGGCCTATAAACTTGCCGGCCAGCCCAAGGAACTGGTGATCATCCCTGGGGCCGGGCATGTGGATCTTTATGATCGGGTCGATCTGATTCCGTTTGACAAGTTGATGAGTTTCTTTCAGAACAGCCTGAAGTGA	MKKILVLLTLFVTSLSAIGADISNGADNFYTSDEVTVKKVSFKNQYQMNVAGNLFIPKKLNGNTSNPAIVVGHPMGAVKEQSANLYATKMAEKGFVTLSLDLSFWGESEGRPRNAVSPDIYAEDFSAAVDYLSAQPFVDKERIGALGICGSGSFVISAAKIDPRMKAIATVSMYDMGGVNRNGLKHSQTLDQRRAIIAQATQQRNVEFAGGETLYTSGTVHKLDENTHPIQREFFDFYRTPRGEFTPSGSSRDLTTHPTLTSNIKFMNFYPLNDIETISPHPMLFIAGADAHSREFSEEAYKLAGQPKELVIIPGAGHVDLYDRVDLIPFDKLMSFFQNSLK				NA	NA	NA	NA	NA
D1-36_02399	342			hypothetical protein	ATGTGGATGACCGTGGGTGAACAGCGTTTCGCCATTACCGTGGCTGACAACGCCGCTGCCCAGAGGTTTGTCGCGCTATCGCCACTGGCACTGGAGATGAGCGATCTCAATCGCAACGAGAAATACGCCACCCTCCCCCAAACGCTGCCCGCCACGGCGAGCAGGCCGGGAACCATCCGCAACGGCGACCTGATGCTGTACGGCAAGGACACCCTGGTCGTGTTCTACAAGGATTTCGACTCGACCTACGCCTACACGCGCCTCGGTCAAGTGACCGACACCTCGGGACTCGCTCAGGCATTGGGCCCAGGCACCGTGCGAGTGACGTTCTCCCACGATTGA	MWMTVGEQRFAITVADNAAAQRFVALSPLALEMSDLNRNEKYATLPQTLPATASRPGTIRNGDLMLYGKDTLVVFYKDFDSTYAYTRLGQVTDTSGLAQALGPGTVRVTFSHD				NA	NA	NA	NA	NA
D1-36_02400	891	pgrR_6		HTH-type transcriptional regulator PgrR	ATGGTCAAAAGAAATCTCAACGATCTGCTGTCTTTCGTCACCGTGGCGAGGGAGGGCAGTTTCACCCGGGCTGCCGGCGCATTGGGCGTCACCCAATCGGCGCTGAGCCAGGCGATCAGTGGTCTGGAGGCACGCCTGCAGATCCGCCTGCTCACGCGCACCACCCGCAGCGTGTCGCCGACCATCGCGGGGGAGCGCCTGCTGCAGGCCATCGGCAATCGTTTCGATGAGATCGAAGCTGAGCTGGCTATGCTCACGGAAATGCGCGACAAGCCCGCAGGCATTGTTCGCATCACCTGCGGCGACCACGTCTTGCGCACCACTTTGCTGCCGAAACTGACTGGGTTGCTGCATGACTATCCGGACATCAACGTTGAATTTGACGTCAGTTACGGCTTCCGTGACATCGTCGCGGACCGTTTCGATGCCGGGGTACGCTTGGGCGACACCATCGACAAGGACATGGTGGCAGTGCCGATAGGTCCTGAATTGCGAATGGCTGCCGTGGCTTCACCTGGTTACTTCGACACCCGCGCCATTCCCAAGAGCCCCCGCGACCTGCTCGGCCATCGCTGTATCAACCAGCGCATGCCGACTTCTGGCGGGCTTTATGTCTGGGATTTCGAGCGGCGCGGCAAGCAGGTCAACGTCCGAGTAGACGGCCAGCTCATCTTCAATACCTCGACCCACATCGTTGACGCCGCGTTGGCCGGACTGGGCATTGCGTACCTGCCGGAAGAGGAATTCGAACCGCACCTGGAGGCGGGCCGGCTGGTGCGCGTACTGGAGGATTGGTGCCCACCATTTCCAGGCTACTATCTGTACTATCCCAGCCGACGGCAGCCTTCGCCTGCCTTCACCCTGGTTGCCAATGCATTGCGCAACGTCTGA	MVKRNLNDLLSFVTVAREGSFTRAAGALGVTQSALSQAISGLEARLQIRLLTRTTRSVSPTIAGERLLQAIGNRFDEIEAELAMLTEMRDKPAGIVRITCGDHVLRTTLLPKLTGLLHDYPDINVEFDVSYGFRDIVADRFDAGVRLGDTIDKDMVAVPIGPELRMAAVASPGYFDTRAIPKSPRDLLGHRCINQRMPTSGGLYVWDFERRGKQVNVRVDGQLIFNTSTHIVDAALAGLGIAYLPEEEFEPHLEAGRLVRVLEDWCPPFPGYYLYYPSRRQPSPAFTLVANALRNV				NA	NA	NA	NA	NA
D1-36_02401	531			hypothetical protein	GTGCATACTATTAACATCATTCTTAAAATATCGAAAAGAACAGCAGTATTGGTTGCTCTAGCGGTTGTATTTTTTGCTGCCTTTCAACTCAGATACAAAGAACCCGTAAACATTGAACTTGCCTGCGAGGGCACTCCACCTCTGCTAACAAACAACATAAATAGCTGCGGCTTTGTTGATCAGACATTGAGTTTTCTTGAGGCGGAAGGCTACAAGCCAGTAATCCTAGAAAGCTCAGAAAAGAACAGCGGCCTTCTACGAAAAAAATTTTCTTTAAAAATATTTGAAGTATCCAACTATAAAATAGACAACGATACTGGATCTGCGCAATTCAGCTTTATAAATGGACGATTATTTGCCATTTCCTACTTCCCAAAAGCTTCAGATACGGTATTTGAAAGGTATCCAGCAAGTAAATCCGAGGCGCTGACTATAAAACACCTGACCAACCACCAAGGGTTGAAATACATATCATGGTCAAACAATCACCTCGAAGCCTATATCACTTGGTGGATATCGAGATTCTCATAA	MHTINIILKISKRTAVLVALAVVFFAAFQLRYKEPVNIELACEGTPPLLTNNINSCGFVDQTLSFLEAEGYKPVILESSEKNSGLLRKKFSLKIFEVSNYKIDNDTGSAQFSFINGRLFAISYFPKASDTVFERYPASKSEALTIKHLTNHQGLKYISWSNNHLEAYITWWISRFS				NA	NA	NA	NA	NA
D1-36_02402	1254	wapA		tRNA3(Ser)-specific nuclease WapA	TTGGCCGTTTTCCTGACTGTCAGCGACGGCCTGGGAAACCTGACGCGGGTGAACAGCCCTGACAGCGGCGCCACTCACTACCAGCACGATGCCGCAGGCAACGTGACGCAACAGGTGGACGCGCGTGGTGTGGTCACGACTTTTAGCGACGATGCGCTCAATCGCCTGACCGCCCGCCGCTATTCGACGAACCCGGCATTGGACGTTCAGTTCCACTACGATTCGATTGCCGCCGGTAACAAAGGCATCGGCCGACTGACAGCCGTGGAGGATGTCAACGGGGTGCTGAATTACACCTACGACGCCCAAGGCAACGTTACAGCCCAGCGGCAAACAGCGCCCGCAAACACAGCCACTCAGCCAGAAAAAATCGGCTATGGATACGATGTCGCCAATCGATTGAGCAGCATCGACTATCCGGCGGATTTTGGCATCGTCTACTCGCACAACACCGCAGGACAAATCAGCCAAGTGCAGATCCGGCGCGGCACAGGGCAGCCAACCGCATTTGCCAGTCACATCACGTATCAACCTTTCGGTCCGCTTAAAAACCTGACCTGGGCCAACGGGGCTACGCTTCAACGTACCTACGATCTGGACTACCGGCTGACCGCTCAAACCGTTGCCGGCCAGAGCAAGACCTATACTTACGACGGCCAGGGAAACATGACTCAATTGCAACGCGACTCAGTCGACAACCATGGCTACAGCTATGACTCACTGGATCGCCTGATAGGGGAATCTACTGCTTTCAACCGGATGACTTACGTTTATGATCCGGCGGGGAACCGCACCCGAAAAGCGCTCAGCACTTTGATTGACGGCGAGTTACGTATCACCGCTGGCACGTCTTATCGGTATGGGGCGAGCAACAATCGGTTGACGCAGGCAGGCACCCACTCGGTAGACTTCGACGCGGCAGGCAACCTGACCGCAGACCGCGCTAATCGTCAGTTTTCCTACGACGAGCAGAATCGCCTGAGCAAAGTGAAAATCAAGGGGGTTATCAAGGCTCGGTTCCGCTACAACGCTCTCGGCCAACGCAGCCAGAAAATCACCTCTCAAGGCACGACAACGTTTATCTACGGATTAAATGGCGAACTCCTTGGCGAGCATTTACAGGCTGGGCAAATGAAATATCCAATTTTGGACAAAATCCCAGCGAAAGAGCCATGGATGATTTTAACAACCAAGCAGGTATATGCGCAGCCAAGGGCAACAACCCCCCAGAAAACTGCCCCCAAAGCTGCATGA	MAVFLTVSDGLGNLTRVNSPDSGATHYQHDAAGNVTQQVDARGVVTTFSDDALNRLTARRYSTNPALDVQFHYDSIAAGNKGIGRLTAVEDVNGVLNYTYDAQGNVTAQRQTAPANTATQPEKIGYGYDVANRLSSIDYPADFGIVYSHNTAGQISQVQIRRGTGQPTAFASHITYQPFGPLKNLTWANGATLQRTYDLDYRLTAQTVAGQSKTYTYDGQGNMTQLQRDSVDNHGYSYDSLDRLIGESTAFNRMTYVYDPAGNRTRKALSTLIDGELRITAGTSYRYGASNNRLTQAGTHSVDFDAAGNLTADRANRQFSYDEQNRLSKVKIKGVIKARFRYNALGQRSQKITSQGTTTFIYGLNGELLGEHLQAGQMKYPILDKIPAKEPWMILTTKQVYAQPRATTPQKTAPKAA				NA	NA	NA	NA	NA
D1-36_02403	483	nuoE_2	COG1905	NADH-quinone oxidoreductase subunit E	ATGCCTGATGAGACGCTTCACCTGCCTCTGATTCACGACGTGCTGGCGCGCAAGAAGGACACCCCCGGTGCCTTGTTGCCCATCCTCCATGCCATCCAGGAAGGGTGCGGGTACGTTCCCGACACCGCCGTCCCTGAAATCGCCCATGCCCTCAACCTCAGCCAGGCTGAAGTGCGCGGGGTGATCAGCTTCTACCATGACTTTCGCACAACGCCACCGGCGCGCCACACCCTGCGCCTGTGCCGGGCGGAGTCGTGCCAGAGCATGGGGGCCGAGGGGCTGGCTGCGCAGTTGCGCGAACAGCTTTCGCTGGATGACCACGGCACCAGCGCCGATGGAGCGATCAGCCTGCGACCCGTCTATTGCCTGGGCGCCTGCGTCTGTTCGCCGGCCCTGGAGCTGGACGGGGAACTGCATGCGCGGCTGACCCCGGAGCGCCTGCGCCAATTGGTGAATGGCTGCCTGGAGGATGGCCCATGCTGA	MPDETLHLPLIHDVLARKKDTPGALLPILHAIQEGCGYVPDTAVPEIAHALNLSQAEVRGVISFYHDFRTTPPARHTLRLCRAESCQSMGAEGLAAQLREQLSLDDHGTSADGAISLRPVYCLGACVCSPALELDGELHARLTPERLRQLVNGCLEDGPC	PGPT0019670_1594	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_FORMATE_UTILIZATION,PGPT0019670-fdoI|fdsG-K00127	NA	NA
D1-36_02404	1560			hypothetical protein	ATGCTGACCCTCTGCGTTCCCCGTGATTCAGTGGCCCGCGCCGTCGGTGCGGACAAGGTGGCCGATGCGCTGGTCCGCGAGGCCGAGCGGCGTCAATTGCCCTTGCAGGTGTTGCGCACCAGTTCCCGTGGGCTTTATTGGCTGGAACCGTTGGTGGAGCTGGACACACCTGAAGGACGCTTGGGTTTTGGCCCAGTCACGGCCCAGGACGTACCGGGCCTGCTCGACGCGCTGGCGGGTGATCCTGGTAGCCATCCATCGGCATTGGGATTGGTTGAGCACATTCCCTACCTCAAGAGCCAGCAACGCCTGTTATTTGCCCGTGCCGGCATCACTCAACCTTTGTCCCTCGATGACTACCGCGCCCAGGGCGGGTTCCTTGGCCTGGCCCGGGCGATCCAGACGGACGGCGCCGAGGTGGTGGCGCAAGTGCTCGACTCTGGCCTGCGAGGCCGGGGTGGGGCGGCTTTCCCGGCGGGCATCAAGTGGCGCACCGTGCGCGACGCTCCGGGGCCGCAGAAGTACGTGGTATGCAATGCCGACGAAGGCGACTCCGGCACCTTTGCCGACCGCATGCTGATGGAAGGCGACCCGTTCCTGCTGATCGAAGGCATGATCATCGCCGGCATCGCCGTCGGCGCGACTATGGGTTACATCTACGTGCGCTCGGAATACCCCGACGCCGTCAGCACCTTGAACGAAGCACTGCGCATCGCCCGCGAGGCCGGTTACCTGGGGACCGATGTGGGCGGCAGCGGTCGCGCCTTCGAGCTTGAAGTCCGGGTTGGCGCCGGCGCCTATATCTGTGGTGAGGAAACGGCGCTGCTCGAATCCCTCGAAGGCAAGCGCGGCACGGTGCGCGCCAAGCCGCCGCTGCCGGCGTTGCAGGGCCTGTTTGGCTTGCCGACGCTGGTGCACAACGTGGTGACGCTGGCCTCGGTACCGGTGATCCTGGAGAAGGGCGCGCAGTTCTATCGCGATTTCGGCATGGGTCGTTCCCTGGGAACCATGCCGTTTCAATTGGCCGGCAACGTTCGCCGTGGCGGCCTGGTTGAGAGAGCGTTCGGCCTGAGCCTGCGCGAATTGGTGGAAGAATATGGCGGCGGCACCGCTAGCGGTCGTCCGCTGAAGGCCGCGCAAGTCGGCGGGCCGTTGGGCGCCTGGGTGCCGCCAGCGCAGTTCGACACGCCATTGGACTACGAGGCGTTCGCCGCCATGGGCGCAATGCTCGGCCACGGTGGCGTGGTGGTCGCCGATGACAGCCTGGACATGGCCAGGATGGCCCGGTTTGCCTTGCAATTCTGCGCCGAGGAATCCTGCGGCAAGTGCACGCCGTGCCGCATCGGCTCGACCCGTGGCGTCGAGGTGGTGGATCGCCTGCTCGCCAGCACCGATGCCCATGCCCGTCAGGACCAGGCGCTGTTGCTGCAAGACCTGTGCGACACGCTGCAATACGGCTCGCTTTGTGCCCTCGGTGGGATGACGTCCTACCCCGTCGCCAGCGCCCTCAAGCATTTCCCCGCCGACTTCGGTCTGGCGACCTCGGAGGCCGACCAATGA	MLTLCVPRDSVARAVGADKVADALVREAERRQLPLQVLRTSSRGLYWLEPLVELDTPEGRLGFGPVTAQDVPGLLDALAGDPGSHPSALGLVEHIPYLKSQQRLLFARAGITQPLSLDDYRAQGGFLGLARAIQTDGAEVVAQVLDSGLRGRGGAAFPAGIKWRTVRDAPGPQKYVVCNADEGDSGTFADRMLMEGDPFLLIEGMIIAGIAVGATMGYIYVRSEYPDAVSTLNEALRIAREAGYLGTDVGGSGRAFELEVRVGAGAYICGEETALLESLEGKRGTVRAKPPLPALQGLFGLPTLVHNVVTLASVPVILEKGAQFYRDFGMGRSLGTMPFQLAGNVRRGGLVERAFGLSLRELVEEYGGGTASGRPLKAAQVGGPLGAWVPPAQFDTPLDYEAFAAMGAMLGHGGVVVADDSLDMARMARFALQFCAEESCGKCTPCRIGSTRGVEVVDRLLASTDAHARQDQALLLQDLCDTLQYGSLCALGGMTSYPVASALKHFPADFGLATSEADQ	PGPT0019665_359	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_FORMATE_UTILIZATION,PGPT0019665-fdoH|fdsB-K00124	NA	NA
D1-36_02405	2877			Putative formate dehydrogenase	ATGATCACCATTTTCGATCCAGCCAGCGACATCGACCTGGGCACCCCGGCCCGCGAAAGCGACGTGCAGGTCAGCCTGACCATCGACGGGCGCGAAATCAGGGTTCCGTCCGGCACCTCGGTGATGCGCGCGGCGGCCCTGGTCGGCACCACCATCCCCAAACTGTGCGCCACCGACAGCATGGAAGCCTTCGGCTCCTGCCGCATGTGCCTGGTGGAAATCGATGGCATGCGCGGCTATCCGGCCTCGTGCACGACGCCGGTGACCGACGGCATGGTGGTCCGCACGCAGACGTCCAAGCTCGCCACGCTGCGCCGCAATGTGATGGAACTGTACATTTCCGATCACCCGCTGGACTGCCTGACATGCCCGGCCAACGGCAACTGCGAACTGCAGACCGTGGCGGGGCAGGTGGGTTTGCGTGAGGTGCGCTACGGCTACGAAGGGGCCAATCACCTGGCCGAAGCCAAGGATGTGTCCAACCCGTATTTCGATTACGACCCGAGCAAGTGCATCGTCTGCAGTCGCTGCGTGCGCGCCTGCGAGGAAATCCAGGGCACCTTCGCCCTGACCATCAGCGGGCGCGGCTTCGACTCCCGAGTAGAAGCGGCTGGCGGCGAGAACTTCCTCGATTCCGAATGCGTGTCTTGTGGCGCCTGCGTACAAGCCTGCCCGACGGCCACACTGATCGACAAAAGCGTCGTGGAGATCGGCCAGCCGGAACGCAGCGTTGTCACCACCTGCGCCTATTGCGGCGTGGGTTGTTCGTTCCGCGCCGAGATGAAAGGCGAACAACTGGTGCGCATGGTCCCGGACAAGAACGGCCAGGCCAACCACGGCCACTCCTGCGTCAAGGGCCGCTTCGCCTGGGGCTACGCCACGCACCCGGACCGCATCACCAAGCCGATGATCCGCAAGCACATCAGCGACCCGTGGCAGGAAGTCAGCTGGGATGAGGCGGTCACCTACGCCGCCAGCGAACTGCGGCGCATCCAGCTCAAGTACGGGCGCGATTCCATCGGCGGCATCACCTCCAGCCGTTGCACTAACGAAGAAACCTACCTGGTGCAGAAACTGGTGCGCACCGCGTTCGGCAACAACAACGTCGACACCTGCGCCCGGGTCTGCCATTCGCCGACCGGCTATGGCCTCAAGCAAACCTTGGGCGAGTCCGCCGGCACGCAGAATTTCGACTCGGTGATGAAGGCCGACGTCATCCTGGTGATGGGCGCCAACCCTACCGATGCACACCCGGTGTTCGGCTCCCAGCTCAAGCGTCGCTTGCGCCAGGGCGCACGTCTGATTGTCATCGACCCACGGCGCATCGACCTGGTGGATTCACCCCACGCCCGCGCCGAGCTGCATTTGCAACTGCGTCCAGGCACCAATGTGGCGATGCTCAACGCGTTGGCCCATGTGATCGCCACCGAGGGCTTGATTGACCAACCCTTTGTCGAGGCCCGTTGCGAGGCGACGGATTTCGCTCGCTGGCGCGATTTCGTCAGCCTGCCGGAAAATGCCCCCGAAGTCCTCGGCCCTGTCTGCGGCGTGCCTGCCGAGCAGATCCGCGCCGCCGCAAGGGTCTACGCCACGGGCGGCAACGCGGCCATCTACTATGGCCTCGGCGTCACCGAACACAGCCAGGGCAGCACGTCGGTGATGGGCATTGCCAACCTGGCCATGGCCACCGGCAATATCGGTCGCGAAGGCGTCGGGGTGAACCCGTTGCGTGGGCAGAACAACGTCCAGGGCTCTTGCGACATGGGCTCCTTTCCCCACGAACTGCCCGGCTACCGGCACATCTCCAACGAAACGGTGCGCGCCCAGTTCGAACAGGCTTGGAACGTGACCCTGCAACCCGATCCGGGCCTGCGCATCCCGAACATGTTCGAGGCGGCGCTGGACGGCACCTTCAAGGCGCTTTACTGCCAAGGCGAGGACATCGCCCAGAGCGACCCCAATACCCAGCACGTCACCGCTGCCCTGACCGCCCTTGAATGCGTGATCGTCCAGGACATCTTCCTCAACGAAACGGCCAAGTTCGCCCACGTGTTCCTGCCGGGCAGCTCGTTTCTGGAAAAGGATGGCACCTTCACCAATGCCGAGCGCCGCATCTCCCGCGTGCGCAAAGTGATGGAGCCGTTGGCCGGCAAGGCCGATTGGGAAGCCACCGTCGCCCTGGCCGATGCCCTGGGCTACAAAATGGACTACCGCCATCCCTCGGAAATCATGGATGAAATCGCCCGTTTGACGCCGACCTTCAGCCGCGTCAGCTACGCCGAACTGGAGCGTCATGGCAGCCTGCAATGGCCGTGCAACGACGCCGCGCCGGACGGCACGCCGACCATGCACATGGAGGCATTCGTGCGGGGCAAAGGGCGTTTCATGCTCACCGGCTACGTGCCCACCGACGAGAAGGTCAACGGCCGTTATCCGCTATTGCTGACCACCGGGCGCATCCTCAGCCAGTACAACGTCGGCGCCCAGACCCGGCGCACCGACAACGTCGCCTGGCACGAGGAAGATCGCCTGGAAATCCACCCGACCGACGCCGAGAACCGCGGTATCGCCGAAGACGATTGGGTCGGCATCAGCAGCCGCGCCGGGCAGACCGTGCTGCGGGCCAAGGTCACCGAGCGGGTGGCGCCGGGCGTGGTCTACACCACGTTCCACTTCCCCGAATCCGGCGCCAACGTGATCACCACCGACAACTCCGACTGGGCCACCAACTGCCCGGAATACAAAGTCACGGCGGTGGAAATCGTGCGGGTCAGCCAGCCTTCGGAATGGCAGAAGCGGTATCAGGCCTTCAGCGACGAGCAACGCCGCTTGCTCAAGGAACGCCGTCAAGGGGAAAAGGCCGAGGTGCGTCGATGA	MITIFDPASDIDLGTPARESDVQVSLTIDGREIRVPSGTSVMRAAALVGTTIPKLCATDSMEAFGSCRMCLVEIDGMRGYPASCTTPVTDGMVVRTQTSKLATLRRNVMELYISDHPLDCLTCPANGNCELQTVAGQVGLREVRYGYEGANHLAEAKDVSNPYFDYDPSKCIVCSRCVRACEEIQGTFALTISGRGFDSRVEAAGGENFLDSECVSCGACVQACPTATLIDKSVVEIGQPERSVVTTCAYCGVGCSFRAEMKGEQLVRMVPDKNGQANHGHSCVKGRFAWGYATHPDRITKPMIRKHISDPWQEVSWDEAVTYAASELRRIQLKYGRDSIGGITSSRCTNEETYLVQKLVRTAFGNNNVDTCARVCHSPTGYGLKQTLGESAGTQNFDSVMKADVILVMGANPTDAHPVFGSQLKRRLRQGARLIVIDPRRIDLVDSPHARAELHLQLRPGTNVAMLNALAHVIATEGLIDQPFVEARCEATDFARWRDFVSLPENAPEVLGPVCGVPAEQIRAAARVYATGGNAAIYYGLGVTEHSQGSTSVMGIANLAMATGNIGREGVGVNPLRGQNNVQGSCDMGSFPHELPGYRHISNETVRAQFEQAWNVTLQPDPGLRIPNMFEAALDGTFKALYCQGEDIAQSDPNTQHVTAALTALECVIVQDIFLNETAKFAHVFLPGSSFLEKDGTFTNAERRISRVRKVMEPLAGKADWEATVALADALGYKMDYRHPSEIMDEIARLTPTFSRVSYAELERHGSLQWPCNDAAPDGTPTMHMEAFVRGKGRFMLTGYVPTDEKVNGRYPLLLTTGRILSQYNVGAQTRRTDNVAWHEEDRLEIHPTDAENRGIAEDDWVGISSRAGQTVLRAKVTERVAPGVVYTTFHFPESGANVITTDNSDWATNCPEYKVTAVEIVRVSQPSEWQKRYQAFSDEQRRLLKERRQGEKAEVRR	PGPT0019635_1727	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_FORMATE_UTILIZATION,PGPT0019635-fdoG|fdhF|fdwA-K00123	NA	NA
D1-36_02406	222			hypothetical protein	ATGAGCGCTCAGAACCTGATCAAAATGGCCAACGAGATCGCCCGGTATTTCGCCACCGAGCCTGACCACGCCCTGGCGGTGAACGGCGTTCGGCAACACATCAAGAACTTCTGGACACCAGGCATGCGCCGGGACCTGGGGGCTTGGCAGGAGAAATATCCGGATGCGGTGCTGCATCCGTTGGTGTTGGCGTCGCTGAAAGAGCCGGAGGAGGCGGCCTGA	MSAQNLIKMANEIARYFATEPDHALAVNGVRQHIKNFWTPGMRRDLGAWQEKYPDAVLHPLVLASLKEPEEAA	PGPT0019675_468	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_FORMATE_UTILIZATION,PGPT0019675-fdsD-K00126	NA	NA
D1-36_02407	1140			hypothetical protein	ATGTTCGTCCGACCTTTCTCCATCGCCGTCCCTGACAGCGCGCTTGACGACCTGCACGATCGCCTGCGTCGCACCCGGTTGCCAGAGCCCTTGGCCGGCGTGGGCTGGAGCGAAGGCATGGACGCGGACATGCTGCGCGATCTGCTCGCCCAATGGTCGACAAACTTCGACTGGCGGGCCCAGGAAGCGGCGCTCAATCGCCTGCCGCACTTCGTCGCCACGTTGGGCGAGCAAGAGATTCACTTCGTCCATCAGCGCGGGATCGGGCCCAATCCCATGCCCCTTGTGCTCACCCATGGCTGGCCCGGCTCGTACATCGAGATGCAGCGCATCATCGAGCTGCTGACGGACCCCGCCAGCCATGGCGGCGACCCGGCCGATGCTTTTGATGTGGTAGTACCGTCCTTGCCGGGCTACACCTTTTCGGCGCCGTTCATGCAAACCGGGTGCGGGCCTTATGAAGTGGCCGGGTTATGGAGCGAGCTGATGACCGGGCTGGGTTACGAGCGGTTCGGTGCCCAGGGCGGCGATGTCGGCGCGGCTGTCACCAGTTGGTTGGGCGTGCGCTTTGCCGAGCGTCTGACCGGCATCCACCTCAACTACATCCCCGGCGCCTACCGCCCGCCCCTGGGCGAAACCGACCCGCCTCTGCGCGAAGAGGAAACCGCATTCCTGCAACGCGCCGCGGCGTTCAGCGAAGCCGAAGGTGCCTATGCGCATATCCAGCGAACCAAGCCGCAAAGCCTGGCCGTGGGCTTGAACGACTCACCTGCTGGATTGCTGGCCTGGATGGGCGAAAAGATTCTGTCGTGGTGCGATCCGAGCGCCCCCATCGATCGCGAATGGCTGCTGACCAATGTGACGCTTTATTGGCTGACCAACTGCATTGGCTCGTCGTTTCGCCCGTATGTGGAAGGCAGTCGGCGGCCTCTGGTGCTTGCCAGCGGTGAGCGAATAAAGCCGCCGTTGGGGGTCGCGCTGTTTCCCAAGGAACTGCCGCTGCCGCCACGCAGTTGGGTGGAGCGTGGCTACAACGTCCAGCGCTGGACGCAGATGCCCCGGGGCGGTCATTTTGCGGCGTTGGAGCAGCCTGAGTTGTTGGCGGAGGATATTCGGGCATTTTTCCGGGACTTGCGATAA	MFVRPFSIAVPDSALDDLHDRLRRTRLPEPLAGVGWSEGMDADMLRDLLAQWSTNFDWRAQEAALNRLPHFVATLGEQEIHFVHQRGIGPNPMPLVLTHGWPGSYIEMQRIIELLTDPASHGGDPADAFDVVVPSLPGYTFSAPFMQTGCGPYEVAGLWSELMTGLGYERFGAQGGDVGAAVTSWLGVRFAERLTGIHLNYIPGAYRPPLGETDPPLREEETAFLQRAAAFSEAEGAYAHIQRTKPQSLAVGLNDSPAGLLAWMGEKILSWCDPSAPIDREWLLTNVTLYWLTNCIGSSFRPYVEGSRRPLVLASGERIKPPLGVALFPKELPLPPRSWVERGYNVQRWTQMPRGGHFAALEQPELLAEDIRAFFRDLR				NA	NA	NA	NA	NA
D1-36_02408	441	tspO	COG3476	Tryptophan-rich sensory protein	ATGACCTTCTTTATTTTTCTCATCGCCTGCTGTGCTGCTGCGAGTACTGGCGTCATTTTCAAACCGGGCCAATGGTACGAATCCCTCGTCAAACCCAGCTTCACACCGCCCAACTGGATGTTCCCGGTGGCCTGGTCGATTATTTACCTGCTGCTTGCCTGGGCAGGGTACCGCTTGAGCCTGATACCGGGAAGCCAGTTGGTCTTGGCGCTGTGGGCGGCGCAAATTGCGCTCAACACGTTATGGACGCCGGTGTTTTTCGGGGCGCATCAGATTCTCGCCGGCATGGTGATCATCGCGTTGCTCTGGCTCGTGGTGGCGGCGATGGTGGTGTTGGCACTGCGTTTGGATGTGATCACCGGGCTGATCCTGTTTCCCTACCTGGCGTGGCTATGCGTGGCTGCTGCGCTGAACTTCTCCATCCTGCGCAACAACCGTTGA	MTFFIFLIACCAAASTGVIFKPGQWYESLVKPSFTPPNWMFPVAWSIIYLLLAWAGYRLSLIPGSQLVLALWAAQIALNTLWTPVFFGAHQILAGMVIIALLWLVVAAMVVLALRLDVITGLILFPYLAWLCVAAALNFSILRNNR	PGPT0014330_2174	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014330-ytaB-K05770	NA	NA
D1-36_02409	1032	emrA_2		Colistin resistance protein EmrA	ATGGCATTACCCAAGAAAGCCAAGCTCATCATTGCATTGCTGCTCACCGTGGCGATCAGCGGGGCCGCCTACCTCAACCGACCCGAGTCGGCTGCCGCCATCCAGTCGACCGACGATGCTTATGTCCACGCCGACTTCACCACGGTAGCGCCGCAAGTGTCGGGCACGGTGGCTTCGGTATGGGTCGAACACGACCAACCGGTGGCCAAGGGCGACTTGCTGGCGACCATCGACGACCGTGATTTCGTGGCGGCGCTGAGCGCGGCGACAGCCCAGGTCGCCAGTGCCCGGGCCGGTATCGCCAGCTTGCAGGCACACCTGGCCCGGCAGGCCACCGCCATTCGCCAGGCCCAGGCTGCGCTGGCGGCAGACGAGGCCGCGGTCAAGTTGGCGACTGCCAACCAGACGCGGTATCGCAACCTGGCCAATGACGGCTCGGGCACCGTGCAGGCACGGCAACAGGCCGAAGCGCAACTGAGCATCCAGCAGGCACGCCGGGACAAGAGCGAGGCGGGTCTGCAAGCTGCCCGGCAACAAGTCGAAATCCTCAAGGCCGACCTGGAAAAAGCCGTGGCGACCCTCGCCCATGCCGAGGCCACGCAATCCATCGCGCAACTGCAGCTGTCCTACACCCGGATCACGGCACCGATCAGCGGCATGATCGGGCAGAAATCGGTACGGGTCGGTGCGTTCGTCAATGCGGGCAAACCGTTGCTGGCCATCGTCCCGCTCGACGCCGTCTACATCACCGCGAACTTTCGCGAGACGCAACTGGCGCGGGTTGAGACCGGACAGCTGGTGGACATCGAAGTGGACGCATTGCCGGGCGAGGCGTTGCAAGGCACGGTGCAAAGCCTGGGACCGGCCAGTGGCGTGAGTTATTCGGCCGTTGCGCCACACAACGCGACCGGGAACTTCACCAAGATCGTCCAGCGCCTGCCGGTACGAATCCACATTGCCCCCGACCAGCCCGCTGCCAGGAAGCTGCGGGTGGGGATGTCCGTTACGCCGCATATTCGTGTGGGGGATTAG	MALPKKAKLIIALLLTVAISGAAYLNRPESAAAIQSTDDAYVHADFTTVAPQVSGTVASVWVEHDQPVAKGDLLATIDDRDFVAALSAATAQVASARAGIASLQAHLARQATAIRQAQAALAADEAAVKLATANQTRYRNLANDGSGTVQARQQAEAQLSIQQARRDKSEAGLQAARQQVEILKADLEKAVATLAHAEATQSIAQLQLSYTRITAPISGMIGQKSVRVGAFVNAGKPLLAIVPLDAVYITANFRETQLARVETGQLVDIEVDALPGEALQGTVQSLGPASGVSYSAVAPHNATGNFTKIVQRLPVRIHIAPDQPAARKLRVGMSVTPHIRVGD	PGPT0013750_3466	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0013750-emrB-K03543	NA	NA
D1-36_02410	1566	farB		Fatty acid resistance protein FarB	ATGAACAGCATGGCCTTGCCGACGGCCGCCGTCGCTGTCAGCGAAGCGCCCCACGCCGGGGCCTCGAAGCGGCCGTTGGTCGGCCTGCTGGGCATCTTCCTGGCGGCAATGATGGCGGGACTGAACATCCGCGTCGGTGCTTTGGCCCTGGCGGACGTGAGGGGCGCGTTGGGCTTCGGCCTGGACGACGCCTCCTGGCTCACCACGGCGTACAGCGCCGGGGAGCTGATCGCGATGCCCTTTGCGGCCTGGTTTGCCATGACGCTTTCGGTCCGCCGCCTCGAACTGTGGGTGTTGGGCACTTGTACCGCGCTGGCGGCGATATTGCCCTTCATCCGGGACCTGGACCTGCTGCTGGCGTTGCGCTTTGTTCAAGGCCTCGCCAGTGGCATGACGATCCCCTTGCTGATGATGGCTGCGCTGAAATTCTTGCCGCCATCGATACGGCTGTATGGGTTGGCGTTGTATGCCATGACCGCCACCTTCGCGCCCAACCTGTCCATCTGGCTGGCCGGCCATTGGACAGATGGCCTGCAGGACTGGCGCTGGGTGTACTGGCAGATTATTCCGCTGGCCTGTATCGCTGCGGCATTGATTGGCTGGGGATTGCCCAAAGAACCCATCCAACCCCAGCGTTTCGGGCATGCCAACTGGCTGGGCATGGCATTCGCGGTGCCGGCCTTCGGCCTGATCACGGTGGCACTGGACCAAGGCACGCGCCTGGACTGGTTCAATTCGCCGCTGGTCACCTCCTCGCTGCTGGCCGGCCTGGCATTGCTGGTGATCTACTTGTTGACCGAGTGGTATCACCCCTCGCCCTTCATCAAATTGCAAGTCCTGGGGCGCCGCAACCTGGGGCTGGGCTGCACCTTGTTTCTCTGCTTGCTGGTGGTGCTGATGTCCAGCTCGCTGTTGCCCGCCAGCTATCTGGCCACGCTCCAGGATTATCGGCCCTTCCAGATGGCCTCCATTGGCCTGATCGTGGCGCTGCCGCAGTTGATCCTGGGCCCCCTGGTGGCGCTGCTGCTCTACCAGAAGTGGGTCGATGCGCGCCTGGTCTTCGCCGCGGGGTTGTGCCTGATTGCCCTGGCGTGCCTGTGTGGCGCGCAATTGACCAGCGACTGGAACCGCGAACAATTCGTCTTGGCGCAAACGCTGCAATCGCTGGGGCAACCCATGGCCGTGGTGTCGATGCTGTTCCTGATTACCAGCGTGGTGCAGCCTGCCGAGGGGCCTTTTTTCTCCGGCACCATCAATACAGTGCGCGCCTTCGGGTCCCTGGCCGGCGCTGCGCTGGTCGGGCAGTTGATGGTATTGCGCGCACGTTTCCACTCGGAAATGCTGCTGGACCACACGGCCATGGTGGGCGGCGCCTTGCCGTCCATGCCCGATCCACAGCAACTGATGATGCTCATCGGCGGGCAGGCGCTGGTGCTGTCTATCGCCGACGCCTACCGCGTCCTGGGCGCACTGGCCGTGCTGCTGATTCCGCTGGTGCTGCGCCTGAGCTTCATCCCTGCCCCGGTCATACGGGCCGCCTCGCCCCCTTCTTCCTCCCATCGGTGA	MNSMALPTAAVAVSEAPHAGASKRPLVGLLGIFLAAMMAGLNIRVGALALADVRGALGFGLDDASWLTTAYSAGELIAMPFAAWFAMTLSVRRLELWVLGTCTALAAILPFIRDLDLLLALRFVQGLASGMTIPLLMMAALKFLPPSIRLYGLALYAMTATFAPNLSIWLAGHWTDGLQDWRWVYWQIIPLACIAAALIGWGLPKEPIQPQRFGHANWLGMAFAVPAFGLITVALDQGTRLDWFNSPLVTSSLLAGLALLVIYLLTEWYHPSPFIKLQVLGRRNLGLGCTLFLCLLVVLMSSSLLPASYLATLQDYRPFQMASIGLIVALPQLILGPLVALLLYQKWVDARLVFAAGLCLIALACLCGAQLTSDWNREQFVLAQTLQSLGQPMAVVSMLFLITSVVQPAEGPFFSGTINTVRAFGSLAGAALVGQLMVLRARFHSEMLLDHTAMVGGALPSMPDPQQLMMLIGGQALVLSIADAYRVLGALAVLLIPLVLRLSFIPAPVIRAASPPSSSHR	PGPT0029220_1857	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029220-emrB-K03446	NA	NA
D1-36_02411	1470	oprM	COG1538	Outer membrane protein OprM	ATGTCAGGCTTCGACGAATTACCCCAGTACCTACGCTCTCGCTTCCCCGCCATCACCGCGGCGCTTGGCGCTGCTTGCCTGGCGGGCTGCATGGTGGGCCCGGATTTCATCAGGCCTGAAAACGGATTGGACGCCGCGCAACTGACGCCCCGCCAGGAACACCACGGCGAGCCTCGCTCCTCCACTGCGGCCGTGCCCATGCAATGGTGGCGGCTGTTCAATGACGCCCTGCTCACCCAGTTGCTGGCGCGCACGCTGGAGGGAAACCTTGACTTGCAAATGGCCGCCGAACGCATCGAGCAAAGCCGCGCACGGCTGGGCATCGTCGCGTCGCAGCTGTTGCCCATTGTCGGCGCCAACGCCAGCTACGCCCGCGAGGGGCTAAGCGAGCATGGCAAATTCGCCGCCCTGGGGGCTCCCACCGATCCCAGCAATTTCTGGCAGCTGGGTTTCGATGCGAACTGGGAAATCGACCTCTGGGGCCGGGCCCGACGTTCGCGCGAAGGTGCCGAGGCGACAGTCCAGGCCTCGCTGTACGATCGCGAAGCCGTAAGGGTGGCGCTGGCCGCCGAAGTGGCGCGCACGTATCTGCAGTTACGCGGGACCCAGGCACAACTGGACATTGCCCGGCAGAACCAAGCGGTTGCCGAACGCACCCTGGCCCTGGCCGAAAGCCGCGAACGCAACGGCGTGGCGACACGCTTCGAAACCTCATCGGCCCGCGCGCAGTTGGCGACGGTCAAAGCCCTGTTTCCCGAGCTGGCCCAGCGTCGTAACGCCCAGATGAACGCCCTTGCCCTGCTCATGGGTGAACAACCGCGAGCCCTCGATGCGCAACTGCGCCAGGCCATGCCCCTGCCGTCGCTGCCTGCACGCATTCCGCTGGGCGTGCCGTCGGAACTGGCCCACCGGCGCGCGGATATCCTGCGCGCCGAGGCGCAACTCCACGCTGCCACGGCGGCTATCGGCGTGGCCAAGGCTGATTTCTATCCGCGTATCGGCTTGAAAGGCCGCATCGGCGTGGAGGCTTTCGACAGCGGCGACCTCACCAGTTGGGACTCGCGGATGTTTTCGGTCGGGCCGACCGTCTACCTGCCCATCTTCGAGGGTGGCCGCCTGATGCAGCGCTTGGCCCTGAACGAATCGCGGCAAAAAACCGCCGCCCTCGCCTATCGCCAGACCGTGCTGCAAGCCTGGCACGAGGTAGACAATGCCTTGGACGCCTGGGCTGCTCAACGGCGCCAGCACGACGAGCTGCAGGTTTCGTACGAACAGAACAGGGAGGCACTGGACGCGGCGGAGCGTGGCTATCAACAAGGCGCCGCCGACTATCTGAGCGTCCTCACGGCGCAACTCAACTTGTTGGCCAGCCAGACCCACCTCAACACCAGCGCGACCAACGCCACCCTCACCGTGGTCAATCTGTACAAATCCCTGGGCGGCGGCTGGGATCCGGAGCAGGTTCGATGA	MSGFDELPQYLRSRFPAITAALGAACLAGCMVGPDFIRPENGLDAAQLTPRQEHHGEPRSSTAAVPMQWWRLFNDALLTQLLARTLEGNLDLQMAAERIEQSRARLGIVASQLLPIVGANASYAREGLSEHGKFAALGAPTDPSNFWQLGFDANWEIDLWGRARRSREGAEATVQASLYDREAVRVALAAEVARTYLQLRGTQAQLDIARQNQAVAERTLALAESRERNGVATRFETSSARAQLATVKALFPELAQRRNAQMNALALLMGEQPRALDAQLRQAMPLPSLPARIPLGVPSELAHRRADILRAEAQLHAATAAIGVAKADFYPRIGLKGRIGVEAFDSGDLTSWDSRMFSVGPTVYLPIFEGGRLMQRLALNESRQKTAALAYRQTVLQAWHEVDNALDAWAAQRRQHDELQVSYEQNREALDAAERGYQQGAADYLSVLTAQLNLLASQTHLNTSATNATLTVVNLYKSLGGGWDPEQVR	PGPT0015295_454	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0015295-nodT|ameC-K18904	NA	NA
D1-36_02412	375	tdiR		Transcriptional regulatory protein TdiR	ATGGAAGACACCCCCGTGTGCAACAAGACGATCGCAGTCATCGATGACGATGAATCCGTACGCACGGCGCTCAATAGCCTGTTGCGGTCCAGCGGCCATCAGGTCCGTACGTATCGCAGCGCCAGGGAATTCCTCGATTCAGAAGCGCCCGCGCAAACCGGCTGCCTGGTTTGCGACATACAGATGCCGGGCATGAGCGGCATCGAGTTGCATCGGCACCTGCTGAAAAACAAGGTGCGTATCCCTACCCTGTTCATTACGGCGTACCCGGAACTGGCCGCCAACACGTCGGGGCTGGTGGATTGCCTGCCCAAGCCCTGCGATGCCAGAAGGTTGCTGGACTGCATCGCAAAAGCCCTCGGTCAGCCGCACTGA	MEDTPVCNKTIAVIDDDESVRTALNSLLRSSGHQVRTYRSAREFLDSEAPAQTGCLVCDIQMPGMSGIELHRHLLKNKVRIPTLFITAYPELAANTSGLVDCLPKPCDARRLLDCIAKALGQPH	PGPT0000145_449	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-REGULATION	NITROGEN_REGULATING_FUNCTIONS,PGPT0000145-fixJ-K14987	NA	NA
D1-36_02413	5475	pknD_1		Serine/threonine-protein kinase PknD	ATGCAAACACAATGGGACGATGGCGAGCGTATCTTCTGCCGGGAACGACGCCCAGGTGCCGACGGCGATAAACCTGTCCTGGTGGTTCGGCCCGCCACCCGCCAGCCGCGGCCCGATTGCCTTGAGCGTCTTGCTCATGAATTCGGCCTGAGGGACCAGTTGGATGCTTCGTGGTGCGTACGGCCCCTGGAATGGATCAGTGAAGGTCCTCAAGTGCAACTGGTCGCCAGCGACCCGGGTGGTTTGCCGCTGTTGCAATTGCTCACCTCGCCCTTGGAGACGACCCGGTTCTTGCAGCTCGCGGTGAGCATTGCCGTCGCATTGGGCAAGCTTCACGAGCGTGGCCTGATCCATAAGGACATCAAGCCCAGCCATATCCTGGTGGATTGCGACGACGGCCAGGCCCGGCTCACCGGGTTCGGCATGACGTCACGCTTGCCCCGCGAGCGGCAGGCTCCCGAGACGCTTGCCGGGACGCTGGCCTACATGGCGCCCGAACAGACCGGCAGGATGAATCGCTCGATCGACTCGCGCAGTGATCTCTATTCTTTCGGCGTCACGCTCTACCAGATGTTGACCGGCTCGCTGCCGTTCACGGCATCAGACCCGATCGAATGGGTGCATTGCCATATCGCCAAGAGGCCGCTGGCGCCCAACGAGCGGATCCAAACCATTCCCGACATGCTGTCGCGGATCGTCATGAAGCTGCTCGCCAAGACCGCCGAGGAACGCTACCAGACGGCCGCGAGCGTAGAGCACGACCTGCGTCAGTGCCTGGCGCATTGGCGGCAGTGGCGTCGCATCGAAGATTTTGCATTGGGCGAGCAAGGCGGCTCAGACCGCCTTTTGATTCCCGAGAAACTCTATGGACGCGAGCCCGAGGTCCAAGCGTTGGTAAGCGCGTTCAACCGGGTGGTTGAACGTGGCGCGCCGGAACTCGTGCTGGTCACGGGGTATTCCGGGATTGGTAAATCTTCCGTGGTCAACGAGCTGCACAAGGTACTCGTGCCGCCAAGGGGGTTGTTCGCCCGTGGCAAGTTCGATCAGTACCGGCGCGATATTCCCTATTCGACGCTGATCCAGGCGTTTCAGAGCCTGGTGCGTACGCTGTTGGGCAAGAGCGATGCCGAGTTGGCCGGTTGGCGCGATGCATTGCGCCAGGCCCTGGACCCCAACGCACGGCTGATGACGGACCTGATCCCTGAACTGAGGCTGATCGTCGGGGAGCCGCCTGCGGTGCTGGCACTCGATCCCCAGCAGGAGCAACGGCGTTTCCTGCTGGTGTTGCGCCGTTTTATCGGTGTGTTCGCCCGCCGCGAGCATCCCCTGGCGCTGTTTCTCGACGACTTGCAATGGCTTGACGCGGCGACGCTCGACCTGCTGGAAGACCTGCTGACCAGCGACGACGTGCAATATCTGCTGCTGGTCGGTGCGTACCGCAGCAACGAAGTGGATGCGAAGCACCCGCTGTCAGGCAAACTCAAGACGCTGCGCAGCGTCGGCGGCAAGGTCAGCGAAATCATGCTCTCACCGCTCGCCAAGGGGCATATCGAGCAATTGATCGCCGAGGCGCTGCATGACGAGCCTGCTCGCATCGAGCCGTTGGCGCAGTTGGTGCTGGACAAGACCGCGGGCAATCCGTTCTTCGTGATCCAGTTCTTGCAGGCGCTCGCCGATGAGCACTTGCTGGCGTTCGATCATGGCAGCCGACAGTGGTGGTGGGACCCGGATCGGATTCACGCCAAGGGGTACACCGACAACATCGTCGACTTGATGAGCGGCAAGCTGGCGCGCCTGCCGGCCCAGACGCAGCAGGCCTTGCAGCAGCTTGCTTGCATGGGGAACGTCTGCGGGCTGAACGCACTGGCAATTATCCTTGAGGTCCCCAGAGCGCAAATCCGCACGGTCCTCTGGGAGGCGGTCCGCCAGGAACTGGTAGAGCGCCGCGACGGTGCTTACGGTTTTGTCCACGACCGTATCCATGAAGCGGCCTACTCGATGATCCCCCCAAAGTCACGCGCCTCGGCCCATTTGAAAATCGGCCGGCTGCTGGCCCGGCAGACCGCTCCCGAGGGCCGGGACGAGGCGATATTCGACATCGTGGGCCAGCTCAACCTCGGCGCCGGGTTGCTCGTCGATCAGGCCGAGCGAGAGGAGCTGGCCGCGCTCAACTTGCTCGCCGGCCAACGGGCCAAGGCGTCGACGGCCTATGCGTCGGCGCTCAATTACCTGGCCCATGGTGCCCAGCTGCTGGGCGATGACAGTTGGACGCATCGGCACGGCTTGAATTTCGCCCTTGAGCTGAACAGGGCCGAATGCGAGTTCCTCACCGGCCAGCTCGCCATTGCCGACGAGCGGCTGACGGCGCTGGCCAATCGCGCCATGACGGTGAGCGAACGGGCCAGCGTCGCCTGCCTGTTGATGGATGTGTACTTGCTGATGGATCGCAGCGACGGCGCGGTGGCGGTGTGTCTCGCGTATTTGCGGCATGTCGGCATTCACTGGGCCGCGCAGCCAAGTGACGAGGCCGTGCGCCAGGAATACGACCGCATCGCCACATTGCTCGGCGATCGGGCCATCGAGGATTTGATCGATTTGCCCTTGATGGAAGACGCGACCGCGTTGGAGACCGTCAATGCGCTGAGCAAGCTCTTCGCCCCGGCCCTGCAAAGTGACGCGAACCTGGCGGACCTGTTGATCTGCAAGGCCATCACCTTGAGCCTGGAACGCGGCAATTGCGATGCGTCCTGTGTGCTCTATGCCAATCTGTTCAGAGTCGCGGGCCGGCGGTTCGGCGACCATGAGGTGGGGTTTCGTTTCGGGCAGCTGGGCTGCGACCTTGTCGAGCACCGTGGCATGACTCGATTCGAAGCCAGCACCTATCTGTGCTTCTCTTGCTTTGCCGTGCGCTGGATGAGACCGGTCGGACAATGCCGCGACCTCTTGCGTCGTTCGTTTGCGGCTGCGAACCGGATCGGGGACCTGCCCTACGGTGCTTACGCGGGCAACAACCTCACTGCGGATCTGCTCTTCGCCGGGGAACCGCTGCCCAAGGTACAAGATGAAGCCGAGCGTGGCCTGGACTATGCGAGGAAGGTGCGTTTCGGGCTGGTGACGGATTTTATCGTCACGCAATTGCTGCTGATCCGGATGCTTCGCGGCCAGACGTCGATCTTCGGGCGCCTGGATGACGACGAACTGGACGAGGTGACCACCGAATCCCATTTGTCCAGCAATCCGGACCTGGTCCTGGCTGAATGCTTGTACTGGGTTCGCAAGCTACAGGCCCGCTGTATGGCCGACGAGCCAGAAGCGGCCTTGGCCGCTGCCGAAAAAGCGCGCCGGTTGCTCTGGGTTTGCCAGTCCTTTTTCGAGGAAGCCGAATATCACTTTTTCGGTGCCCTGGCCCATGCTGCCGTTTATGACAAAGTCCCTGCGGATCAGCGAGGGGCGCATCTGGACGCAATGAAGGAGGGCCATGGACAGCTTCAGGCCTGGGCGCAGCAGTGCCCGGACAACTTTGCGAGCCGCGCCGCACTGGTGGGCGCGGAGATTGCCCGTGTCGAAGGGCGGCCAATCGATGCCGAGCTGCTTTACGAACACGCCATGAACCTCGCCCGGCAAAGCGGCTTCGTCCATGTCGAGGCGCTTGCCAACGAACTAGCCTCACGTTTCTACGCCGCCCGTGGCCTTGGGAAAATCGCTCGCATGTATATGCAGGACGCCTGCTACGGCTATCTGCGTTGGGGAGCCGACGGCAAGGTTCGACAGCTCGAAGCCCGGTATCCGTGGCTGCGCGAAACAGAACCCGCGCCCGGCCCGGCGACTACGATGGCGACTCCGGTGGAACACCTGGACATCGCCACCGTGCTCAAAGTCTCTCAGGCAGTGTCGGGAGAAATCGTCCTGGAGAAGCTGATTGATCGGGTGATGGCCACGGCCATCGAGCAGGCCGGCGCTGAGCGCGGCCTGCTGATCCTGTCCACTGGCGAGGGGCACCGGATCGCGGCGCAAGCGACGACCGGCGGGACCACGACGCAACTGCGTGACGAGCCGGTCAGTTCGGCGCTGTTGCCGGAGTCGATTTTTTACCATGTGCTGCGGACCCAGGAGAGCGTGTTTCTCGACGACGCCATGGGCCCGGCTGCCGCGACGTTTGCCGCCGATCCCTACTTTCGCCAATGTCCCGTGCGGTCGATCCTCTGTCTGCCGCTGGTCAACCAGGCCACGCTGGTGGGCGTGCTGTATTTGGAAAACAGCCTTGCCGCCCATGTATTCAGTCCGAACCGCCTCGCCATCCTGAATCTGGTGGCGTCTCGCGCGGCTATCTCCCTGGAAAACGCTCGTCTGTACCGAGAGGTGGCCGAACGGGAGGCAAAGATCCGTCGTCTCGTCGATGCCAACATCATCGGGATTCTGGTCTGGAATGCCGAGGGCGACATCATCGAAGCCAACGACGCGTTCCTGCGCATGGTGGGCTATGAGCGCGAAGACCTTGCCTCCGGCCGGCTGCGTTGGCGGGACCTGACGGTGCCGGAGCATCGCGAGCTGAGCGAGCGTTCTTTGGCCCAGGCCCTGCGCACCGGACAAGCCTGCCCGTACGAGAAGGAGTACTTCAGGAAAGACGGCAGCCGTCTGCCGGTGATCGTTGGCCTGGCCATGTTCGAAGCCAGCAGCCGGGAAGGCGTGGCCTTTGTGCTGGATCTGACCGAGCGCCGACAGGCCGAGGAGAAGATTCGCGAAAGCGAGCGTCGCTATCGCGAAGTGCAGGCCGAACTGGCCCATGCAAACCGAGTCGCGACGATGGGCCAGTTGGTCGCCTCGATCGCCCATGAGGTCAACCAGCCGATCGCCGCGACGATCCTCAATGCCGACGCCGCCCTGCGTTGGCTCAACGCCCAGCCGCCGGAAATCGAGGAAGTCCGGCAGATTCTCGGGCATCTGGTCTTCGATGCCAATCGAGCCGCCGATGTGCTGGGGCGAATCCGCGAGCACATCCGCAAGGCTCCACCGCAGAAAGGGCCGCTGGACATCAACGCAGCCATCGAGGAAATGGTCGAGTTCAGCCGCAGCCAGATCATCAAGAGTGGCGCCTCGATCCAAACACACCTGGCCGACGCGCTGCCTGCTATCGACGGGGATCGCGTGGAGCTGCAACAGGTGCTGCTCAACCTGATCATGAACGCATTGGAGGCCATGAGCGCCGTCGATGAAAGCGAGCGGCACTTGTCGATCAGTTCCGGGCTGGACGATGCCGGTTGCGTGTGGGTGAAAGTCTGCGATTCGGGGCCGGGCTTTGCCTTGGGATGCGCGGAACGGGTGTTCGCATCGTTCTACACCACCAAGGCTTCGGGCCTTGGGCTGGGATTATCCATCTGTCGATCGATCATCGAAGCCCACGGCGGCTGTTTGCAGGCGCACGCCAACCAGCCCCGTGGGGCTGTCCTCGAGTTCTCGCTGCCCGTTGCTCGTTAA	MQTQWDDGERIFCRERRPGADGDKPVLVVRPATRQPRPDCLERLAHEFGLRDQLDASWCVRPLEWISEGPQVQLVASDPGGLPLLQLLTSPLETTRFLQLAVSIAVALGKLHERGLIHKDIKPSHILVDCDDGQARLTGFGMTSRLPRERQAPETLAGTLAYMAPEQTGRMNRSIDSRSDLYSFGVTLYQMLTGSLPFTASDPIEWVHCHIAKRPLAPNERIQTIPDMLSRIVMKLLAKTAEERYQTAASVEHDLRQCLAHWRQWRRIEDFALGEQGGSDRLLIPEKLYGREPEVQALVSAFNRVVERGAPELVLVTGYSGIGKSSVVNELHKVLVPPRGLFARGKFDQYRRDIPYSTLIQAFQSLVRTLLGKSDAELAGWRDALRQALDPNARLMTDLIPELRLIVGEPPAVLALDPQQEQRRFLLVLRRFIGVFARREHPLALFLDDLQWLDAATLDLLEDLLTSDDVQYLLLVGAYRSNEVDAKHPLSGKLKTLRSVGGKVSEIMLSPLAKGHIEQLIAEALHDEPARIEPLAQLVLDKTAGNPFFVIQFLQALADEHLLAFDHGSRQWWWDPDRIHAKGYTDNIVDLMSGKLARLPAQTQQALQQLACMGNVCGLNALAIILEVPRAQIRTVLWEAVRQELVERRDGAYGFVHDRIHEAAYSMIPPKSRASAHLKIGRLLARQTAPEGRDEAIFDIVGQLNLGAGLLVDQAEREELAALNLLAGQRAKASTAYASALNYLAHGAQLLGDDSWTHRHGLNFALELNRAECEFLTGQLAIADERLTALANRAMTVSERASVACLLMDVYLLMDRSDGAVAVCLAYLRHVGIHWAAQPSDEAVRQEYDRIATLLGDRAIEDLIDLPLMEDATALETVNALSKLFAPALQSDANLADLLICKAITLSLERGNCDASCVLYANLFRVAGRRFGDHEVGFRFGQLGCDLVEHRGMTRFEASTYLCFSCFAVRWMRPVGQCRDLLRRSFAAANRIGDLPYGAYAGNNLTADLLFAGEPLPKVQDEAERGLDYARKVRFGLVTDFIVTQLLLIRMLRGQTSIFGRLDDDELDEVTTESHLSSNPDLVLAECLYWVRKLQARCMADEPEAALAAAEKARRLLWVCQSFFEEAEYHFFGALAHAAVYDKVPADQRGAHLDAMKEGHGQLQAWAQQCPDNFASRAALVGAEIARVEGRPIDAELLYEHAMNLARQSGFVHVEALANELASRFYAARGLGKIARMYMQDACYGYLRWGADGKVRQLEARYPWLRETEPAPGPATTMATPVEHLDIATVLKVSQAVSGEIVLEKLIDRVMATAIEQAGAERGLLILSTGEGHRIAAQATTGGTTTQLRDEPVSSALLPESIFYHVLRTQESVFLDDAMGPAAATFAADPYFRQCPVRSILCLPLVNQATLVGVLYLENSLAAHVFSPNRLAILNLVASRAAISLENARLYREVAEREAKIRRLVDANIIGILVWNAEGDIIEANDAFLRMVGYEREDLASGRLRWRDLTVPEHRELSERSLAQALRTGQACPYEKEYFRKDGSRLPVIVGLAMFEASSREGVAFVLDLTERRQAEEKIRESERRYREVQAELAHANRVATMGQLVASIAHEVNQPIAATILNADAALRWLNAQPPEIEEVRQILGHLVFDANRAADVLGRIREHIRKAPPQKGPLDINAAIEEMVEFSRSQIIKSGASIQTHLADALPAIDGDRVELQQVLLNLIMNALEAMSAVDESERHLSISSGLDDAGCVWVKVCDSGPGFALGCAERVFASFYTTKASGLGLGLSICRSIIEAHGGCLQAHANQPRGAVLEFSLPVAR	PGPT0015287_4	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULE_REGULATION,PGPT0015287-nodV_like-NA	NA	NA
D1-36_02414	600			hypothetical protein	ATGAAACTGACAGGCATCGCGGCGGATGAATTTTCGTCACTTCGTTCAATAGTGCTTATCTGCCTGGCGTTGGTAGCGGCCAACGTCTCCTACCGTTTGGTTGTGCCGGTGTCGGCAGGCGTGACTCTGGAACCCCGCCACGGCACCAAAAGGCCCGGAGGGCTGGCGATCGATTCGCTGAGGTTGGTCGATATCAGCGCCTTGGGCGAGGTGCCCATCGGGGCGCATCTGATCAGTCCGCGCCGTTTCTATATCCATCACGGGATTTACCTGGGCGCCGGAAGCGTTGCCCATTATTCGGGGTTCAGTGGCGCGCTGGAAGCGGGGCCCATCGAAGTGACCGATCTGGAGCATTTCGCCAGTGGCAGGCCGGTGTGGATCATCGAACAACCCGCCCGCTATCCGGCCAACGAAGTGGCCCGTCGGGCCCGCTCCAGGTTGGGCGAAAACCGCTACAGTCTCCTGGCCAACAACTGCGAACATTTCTGCACCTGGTGCCTTACCGGGAAGGGCTACAGTGCCCAGGTCGGCGCGTATTGGCACCGGCCGCGCGAGTTCCTGGCAACGATTACCGCACTGAAGGCTCTTTTCGTTGCGTGA	MKLTGIAADEFSSLRSIVLICLALVAANVSYRLVVPVSAGVTLEPRHGTKRPGGLAIDSLRLVDISALGEVPIGAHLISPRRFYIHHGIYLGAGSVAHYSGFSGALEAGPIEVTDLEHFASGRPVWIIEQPARYPANEVARRARSRLGENRYSLLANNCEHFCTWCLTGKGYSAQVGAYWHRPREFLATITALKALFVA				NA	NA	NA	NA	NA
D1-36_02415	648	tmoT_1		Response regulator protein TmoT	ATGAACGGCAATATCAAAAACAATGAGCCGGGCAGCGAAGGTCCTGTTGTGTTCGTGCTGGACGACGATGCGTCCATACGTTGTGCATTGAGCAATCTCCTGCGCTCTGTCGGCATGCGCGTCGAGACATTCGCGTCCACCGCCGAGTTTCTCCAGCGGCCCAAACCCGATTGCGCCAGTTGCCTGGTACTCGATGTCCGGTTGCAGGGCAGTAGCGGGCTGGATTTCCAGCGCCAGTTGGCGGCGTCGAATATCAGGATTCCCATCATCTTCATTACCGGTCACGGCGACATTGAAATGTCCGTCAAGGCGATGAAGGCCGGCGCCATGGACTTTTTGGCTAAACCGTTTCGCGAACAGGATTTGCTGGACGCCGTGTCAGCTGCGCTTGAGGCGGACGTCAAACGGCGGGAAATCGAGCAGCAGCTTTGCGGCTTGCATACGCGTTACCAGACGTTGACGGCGCGCGAGAAGGAGGTCATGGCCCTGGCCGCCAAGGGGCTGATGAACAAACAGATCGCCGGGCAGATGAACCTGAGCGAGATTACCGTGAAAATCCATCGCGCCCATGCCATGAAGAAAATGCACGCCAAGTCGTTCGCCGACCTGGTGCGGATGGCTGAAACCCTCGGCGCAGAACCTGCCTAA	MNGNIKNNEPGSEGPVVFVLDDDASIRCALSNLLRSVGMRVETFASTAEFLQRPKPDCASCLVLDVRLQGSSGLDFQRQLAASNIRIPIIFITGHGDIEMSVKAMKAGAMDFLAKPFREQDLLDAVSAALEADVKRREIEQQLCGLHTRYQTLTAREKEVMALAAKGLMNKQIAGQMNLSEITVKIHRAHAMKKMHAKSFADLVRMAETLGAEPA	PGPT0015288_16	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULE_REGULATION,PGPT0015288-nodW-NA	NA	NA
D1-36_02416	1722	prsD		Type I secretion system ATP-binding protein PrsD	ATGGGTTTTTTTCTCGATCCACGGCATGACATTGATGCCGCTTTGTTAAGTTATCGCCGTGTATTCTGGTCCCTGGCCTTGTTCAGCGGCGTGATCAATCTGCTGGTGCTGGTGCCGTCGCTCTACATGATGCAGGTCTACGACCGGGTCCTGACCAGTCGCAACGAAACCACCCTGGTCATGCTCACCTTGATCGCCCTTGGGCTGTTCATGTTCAGTGCGTTGATCGAGTGGGTGCGCGGCGAGGTGATGATCCGCATGAGCGCCGGGCTGGACGACGCCTTGGGCGAGCGGATTTTCGATGCGGCGTTTGCCCGCAGCCTGCGCGAGCACAACGCCAACCCGGCACAAGTGCTCACCGATCTTGCCACCTTGCGACAGCTGATTACCGGCCAGGGCCTGATCGCCTTGCTCGATGCGCCGTGGCTGCCGATCTTCCTGCTGGTGGCGTTCATCTTTCACCCTTGGTTCGGCGTATTGACGCTGGTGCTCGCCGTATTGCTGATCGGCCTGGCGCTGTGGGGCGAGTTGGCGACCCGTTCCCGCCTGGGAGAGGCCAATCGACTGGGCGTGCAGTCCTCGGTCTACGTCAACAGCACATTGCACAACGCCGAGGTCATCCAGGCCCTGGGCATGCTCGGGCCCCTGCGCCAGCGCTGGAGCCTGCTGCAACAACGGATCATCGCCGCGCAGGCCCACGCCAGCGACCGCGGGGCGCGCATCACCTCGGCGACGCGATTCGTGCGGATTTCCGGTCAGTCCCTCGCTTTGGGATTGGGCGCGCTGCTGGTGCTGGAGGGGCAGCTCTCGGCGGGGATGATGATCGCCATGTCGCTGCTGCTGGGACGTGCCCTGGCTCCGGTGGAAATCGCCATCGGCTCGTGGAAGCAATTCAACAGCGGCCGCCAGAGTTACCAGCGCCTGAGCCAACTGCTCGCGCAACATCCGCGCGATCGCTTGCGCATGCCGCTGCCACCGCCCACCGGCGCGCTGCGCCTGGAGCAGTTGTACGTCGGACCGCCCGGGGCATCACAGCCGATTCTGCGGGGCATCAATTTCAGCCTCGGCAAGGGCGAAGTGCTCGCGGTGGTTGGTCCCAGTGCCAGCGGCAAATCGACTCTGGCTCGCGCGTTGGTTGGCGTGTGGCCGGCCATGGGCGGATCGGTGCGCCTGGACGATGCCGAGATCAGCCAGTGGTCCCATGACGCGCTGGGGCCATACCTGGGCTATCTGCCCCAGGACATCGAACTGTTCGATGGCAGCGTCGCCGACAACATCGCCCGTTTCGGCGAGCAGGACGCCGACAAAATCATCGCCGCCAGCCGTCAAGCGGGCATTCACGAAATGATTCTCAGGTTTCCCAAGGGCTACGACACACCGTTGGGCCCTGGCGGGCTTGGCCTGTCTGGCGGTCAGAAGCAACGCCTGGGCCTGGCGCGCGCGCTGTATGGCAGCCCGTCCGTGATCGTGCTCGACGAGCCCAACTCCAACCTCGATGAAGCCGGTGAACTGGCGCTGGTGCAGGCCATCGGCGTGCTCAAGGCCGCCGGCAGCACCGTGGTGTTGATCACCCATCGGCCCAACGTGCTGGCGGTGGTCGATCACATCCTCGTGTTGAAGGACGGCACTCAACAAGCGTTCGGCCCTCGGGACCGAGTGCTCAAGGCGCTGATGCCGGGGCCGCGGCCGGCCGCTGTCCGGGAGGCAGGCAAGGATGCGTGA	MGFFLDPRHDIDAALLSYRRVFWSLALFSGVINLLVLVPSLYMMQVYDRVLTSRNETTLVMLTLIALGLFMFSALIEWVRGEVMIRMSAGLDDALGERIFDAAFARSLREHNANPAQVLTDLATLRQLITGQGLIALLDAPWLPIFLLVAFIFHPWFGVLTLVLAVLLIGLALWGELATRSRLGEANRLGVQSSVYVNSTLHNAEVIQALGMLGPLRQRWSLLQQRIIAAQAHASDRGARITSATRFVRISGQSLALGLGALLVLEGQLSAGMMIAMSLLLGRALAPVEIAIGSWKQFNSGRQSYQRLSQLLAQHPRDRLRMPLPPPTGALRLEQLYVGPPGASQPILRGINFSLGKGEVLAVVGPSASGKSTLARALVGVWPAMGGSVRLDDAEISQWSHDALGPYLGYLPQDIELFDGSVADNIARFGEQDADKIIAASRQAGIHEMILRFPKGYDTPLGPGGLGLSGGQKQRLGLARALYGSPSVIVLDEPNSNLDEAGELALVQAIGVLKAAGSTVVLITHRPNVLAVVDHILVLKDGTQQAFGPRDRVLKALMPGPRPAAVREAGKDA	PGPT0029385_1043	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_I_SECRETION_SYSTEMS	CE-TSS1-HEMOPHORE|METALLOPROTEASE_TRANSPORT,PGPT0029385-hasD|prtD|-K12536	NA	NA
D1-36_02417	1371	prsE_2		Type I secretion system membrane fusion protein PrsE	ATGCGTGATTTGAAATCGGCCACACCGGCCCACGGCGAGCATGGCCTGAGCGTGCTCAGCAGCGACACATTGCCCACCGCGAGCACCGATGCGGGCGGCGCGGCGCGCTACGGCGTGGTTTTCCTGGCCCTGACCCTTGGCGGCTTTCTGCTTTGGGCCTGCCTGGCGCCACTCGACCAGGGCGTGGTGGGCAGCGGCACCGTGGTAGTGGCGGGGGAGCGCAAAGCGGTGCAGTCACTGGTGGGGGGCGTGGTGGAAAAACTGTTGGTCAGTGATGGCGATCGTGTCAGCCAGGGGCAGTTGCTGGTGCAGCTCAACACGGTGCAGGCGCAATCGCAGTTGGACGTGACCCTGGGCAAGCTGCTCAACGACCGCAGCATCGAGGCGCGGTTGATGGCCGAGCGCCTGGGCGCCGATGAAATCCAATGGCCGCAACAATTGCTGGAGCGCGCCGATGAGCCACGTGTCAAGGCGGCCATGGCCCTGCAGAGTCAGCTGTTCATGACCCGGCGTGCCGAACTGGGCAGCCGCCTGAAGATCATCGAGCATGAAATCGGCGCCTTGCAGCAACAACTGCAGGGCTACGAAGGGGTCAAGCGCAACTACGATGCGCAAATGCGCTTCCAGCAACAGGAACTCGAGGGCTTGCGCGAGTTGGCCCGGGAAGGCTACGTGCCGCGCAACAAACTTTTCGAGGCCGAGCGAAACGCGGCGCAACTGGCCGGACAGATCGCTTCGGGCATCGGCGACGTCGGGCGCACCCGCCAGGCGATCAACGAAAGTCGGCTCAAGGCCTTGCAGGCGCAGCAGGAGTTTCGCCGCGATGCCGAAACCCAGCTCAGCGAGGTTTCGGCCGAAGCCGCTGCCTATGCCGATCAGATCCGCGCCTTGCAGTTTGAAGTCGATAACGGTGCGATCCGCGCGCCGGTGGCGGGCCAGGTCATGGACATGTCGATCCACACCGTGGGCGGCGTCGCCCAGGCCGGGCAGACGCTGATGCAGGTGGTGCCGTTGGACGCGCCGATGGCGATCACCGCGCGTTTCGATCCGTTGATGGCCAATAAGCTCACCCCCGGATTGCCGGTGCATGTGCATTTCACCGCCCTGCAGCGGGTGGATACGCCGACTGTGACCGGCACGGTGACCACCGTGTCGGCGGACCAACTGATCGACCAGCAGACCCACCAGCCGTACTTCTCCGCCAAGGTAGAAATTCCCGCCGAGACAGTCGTCGCGCTGCAAGGCGCCGGTTTGCTGGTGCGGCCCGGCATGCTCGCCGACGTCACCGTCGTGACCGGTGAACGCACCTTGATGAACTACCTGATGAAACCATTGCGCGAACGCTTGCTGGCTGCCTTCAAAGAGGAATGA	MRDLKSATPAHGEHGLSVLSSDTLPTASTDAGGAARYGVVFLALTLGGFLLWACLAPLDQGVVGSGTVVVAGERKAVQSLVGGVVEKLLVSDGDRVSQGQLLVQLNTVQAQSQLDVTLGKLLNDRSIEARLMAERLGADEIQWPQQLLERADEPRVKAAMALQSQLFMTRRAELGSRLKIIEHEIGALQQQLQGYEGVKRNYDAQMRFQQQELEGLRELAREGYVPRNKLFEAERNAAQLAGQIASGIGDVGRTRQAINESRLKALQAQQEFRRDAETQLSEVSAEAAAYADQIRALQFEVDNGAIRAPVAGQVMDMSIHTVGGVAQAGQTLMQVVPLDAPMAITARFDPLMANKLTPGLPVHVHFTALQRVDTPTVTGTVTTVSADQLIDQQTHQPYFSAKVEIPAETVVALQGAGLLVRPGMLADVTVVTGERTLMNYLMKPLRERLLAAFKEE	PGPT0029390_234	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_I_SECRETION_SYSTEMS	CE-TSS1-HEMOPHORE|METALLOPROTEASE_TRANSPORT,PGPT0029390-hasE|prtE-K12537	NA	NA
D1-36_02418	1350	tolC_2	COG1538	Outer membrane protein TolC	ATGACCGACCGTTGCCGTTACGGCGTCCGTGTGCTGTTGAGCCTGTACACCAGTTGGGCGGTGATCGGCCCCGCCTGGGCGGCGGAGGGCGGGCTGAGCCTGACTGCCGCCTACGATGCCTCGCGGCTCAATGACCCGACCTTGCAGACCGCGACCCACGCCTACGACGCGTCCCGGCAGGAAGAAGCGATTGGGCGTGGCGGGCTTTATCCGCAGGTCTCGCTGTCCTCGCGGTATGGGTATGGCGGGCGTACCGATGGCGGTGACGACAGCAGTTATGTGAACAGCAACGACTACCAGGCGAACAGCGTGACGCTGGCGGCGCAACAGCCGCTGTATGACAAGGGGCGCTGGGCGGCTTATCAGGAAGGCAAAGCCCGCGGCGTGCTCGGTAGCCAACAATTCGACGTGGCCGGCCAAGCCTTGTTCGACCGGGTCGCCAAGGGCTATTTCGATGTGGCCCGGGCCGAGAATGAATTGAAGTTGATCGCCCAGCAGAAGACCGCCATTCGTGGCTTGGTCATCCAAAGCAAAAAGCTCTATGAAGGCGGCCAGGGGGCAATCACCGACATCGACGAGGCCCAGGCCCGGCTCGATCTGGTGGAGGCCCAGGAAACCGAAGCCCAGGCCCGTCGCGTGGCCGCGCTGCGGGCACTGTCGGGACGGGCAAGCGTGCCCATCGAGGACATCCAGCCGATGCGCGAAGAATTGCCTGCCGGCAGCCCCATCCCGCCGGAGCAGGATTTGCCGTACTGGACGGCAATCGCCCGCGAGGCCAGCCCCGAACTGGCCGCGCGGCTGGCGGCGGTGAAAGTCGCCGAGGCCCAGGCCGACAGCCAGCGCGCCGGGCATTACCCGACGTTGTCGTTGACCACGCAGTTGACGCGCCGGGAAACCCGCCAGTACCAAGAGCTCGACCCGCGCCAGGACACCTATTACGTCGGTGTGCAGCTGGACATCCCCTTGTATCGCGGCGGCGCGGTGCGCGCTTCGGTGGCCAAGGCCGAGGCACAACTGGCCGGCGCCCAGTCCGACTATGACGTGCAGCGTCAGGAGCTGGCCGAGTCCATCGAGACCGATTACCTGGGCGTGGTGGCGGGGTTCGCCAAGAGCAGGGCCATGCTACGGGCGGTGGAGTCCAATCAGCGCGCGCTGACGTCGACGGAAAAAGGCTTCCAGGGCGGCGTGCGCTCGACGGTCGACATCCTCGACGCCCAGCAACGGCTGTTCCAGGCGCGCCGGGACCTGCTCGACACCAAGCTCGACATGCTCCAAAGCTACGTAAGCCTGCACACCCACACCGGCCAGATGAACCGTGCGGTGCTGGAGCAGGTGCAAAGTCTGTTCTGA	MTDRCRYGVRVLLSLYTSWAVIGPAWAAEGGLSLTAAYDASRLNDPTLQTATHAYDASRQEEAIGRGGLYPQVSLSSRYGYGGRTDGGDDSSYVNSNDYQANSVTLAAQQPLYDKGRWAAYQEGKARGVLGSQQFDVAGQALFDRVAKGYFDVARAENELKLIAQQKTAIRGLVIQSKKLYEGGQGAITDIDEAQARLDLVEAQETEAQARRVAALRALSGRASVPIEDIQPMREELPAGSPIPPEQDLPYWTAIAREASPELAARLAAVKVAEAQADSQRAGHYPTLSLTTQLTRRETRQYQELDPRQDTYYVGVQLDIPLYRGGAVRASVAKAEAQLAGAQSDYDVQRQELAESIETDYLGVVAGFAKSRAMLRAVESNQRALTSTEKGFQGGVRSTVDILDAQQRLFQARRDLLDTKLDMLQSYVSLHTHTGQMNRAVLEQVQSLF	PGPT0029395_177	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_I_SECRETION_SYSTEMS	CE-TSS1-HEMOPHORE|METALLOPROTEASE_TRANSPORT,PGPT0029395-hasF|prtF-K12538	NA	NA
D1-36_02419	5613			hypothetical protein	ATGATTTTCAACGTACAAAATTTTGGCGCCAAAGGAGATGGCGTCACTGACGACACGGCGGCCATTCAAAGTGCAATTGATGCGGCAGCTGCCGCGGGCGGGGGCCAGGTGTACATGCCGACGGGCACTTACATCGTGTCAGGGGGCGAGGAACCCTCCGACGGCTGCCTGATGCTCAAGAGCAACGTTTACCTGTACGGCGACGGCATGGGCGACACCACGGTGAAATTGGTCGATGGCTCCGATGCCAAGATCACCGGCATCATCCGCTCAGCCTATGGCGAAGAAACCCATGATTTCGGGGTCAGCAACCTCACCATCGACGGCAACCGCGACGCCACCACCGGCAAGGTGGACGGCTGGTTCAACGGGTATATCCCCGGCGAAGAAGGCTACGACTCCAACGTCACCCTCGACAGCGTCGAGATCAAGGATTGCTCCGGGTATGGCTTCGACCCCCACGAGCAAACCGTCAACATGGTTATCAAGAACAGCGTGTCCCACGGCAACGGCCTGGACGGATTCGTCGCCGACTTCCTCAGCGACAGCACCTTCGAAAACAACGTTGCCTACGACAACGACCGCCACGGTTTCAACGTTGTCACCAGTACCCACGATTTCACCATGACCAACAACGTCGCTTATAACAACGGCGGCAACGGCATCGTGGTGCAGCGCGGCAGTGAAGACATCCCCTCCCCCAGCAACATCACCATCACCGGTGGCGAGATGTACGGCAACGGCGCTGAAGGCGTGCTGATCAAGCTGTCCAGCGACGTAACCGTGACCGGGGTCGACATCCATGACAACAACGGCGCCGGTGTCCGCATCTATGGCAGCAACCATGTCGAGGTACTGGACAACACGCTGAACAACAACGCGCTGGGCAGCGCGGTGCCGGAAGTGATCATTCAGTCCTACGACGATACGCTCGGGGTGTCCGGCAAGTACTTCAACGGCAGCGACAACCTGATCCAGGGCAACATCATCAGCGGCAGCAACCTGTCCACCTACGGTGTCGCCGAGCGCAACGAAGACGGCACCGATCGCAACGCCATCATCGCCAACACCATCAGCCACACCAGCAAGGGCGCCACGCTGGTCTATGGCGATGGCAGCTACGTCAGCGCCACGGTGCCGATGACCACCGTACAGGGTACGGCCGGCAACGACACACTCACCGGCACCAGCGCCAGCGAGATCTTCTTTGGGGCGGCGGGCAACGACACCATCAACGGCGCGGCCGGAAGCGACATTCTGGTGGGCGGCGCGGGCGTCGACAAACTCACCGGCGGCACGGGCGCCGATACGTTCCGTTTCACCAGCCAGTCCGACAGCTACCGCAACGCAACGGCGAGCTTCGACGACACCATCACCGACTTCGACGTGACCCAGGACAAGATCGACCTCGCCGATCTCGGCTTCACCGGCCTGGGCAATGGCCGTGGCGGCACCCTGCAGGTCAGCTACAACGCCAGCAGCAACCGCACCTACATCAAGGACTACGACGCCGATGCCAGCGGCAATCGCTTCGAGCTGATTCTCTCAGGCAACCTGGCGAGTACCTTGACGGCAGATAACTTCATCTTCAACCGGGTGATCACCGGCACCACCGGCAGCGACTCGTTGCAGGGCAGCGATGCGGCGGACACCCTGCTCGGCCTGGCGGGCAACGACAGCCTCAGTGGTGGCGCGGGCGCCGACAAGCTCGACGGCGGCGCAGGCATGGACACCCTCACCGGTGGCGCCGGGGCAGACACCTTTGTGTTTGCCAACCGACTCGACAGCTACCGCAACTACAACACCGGCGGCGCGAATCTGGGTGACCTGATCACCGACTTCGACATCGCCGCCGACAAGATCGACCTTTCCGCCATGGGCTTTACCGGCCTTGGCGACGGCAAGAACAACACCGTCTACCTGGTGCTCAACAGCGCCGGCACCAAGACCTACATCAAGTCCTTGGAGGCAGACGCTAACGGCAATCGGTTCGAGGTAGCGCTGGACGGCAATTACCTCAATAAGCTGACCAATGCCAATTTCGTCTTCGCCACGTCCTCGCCCACCAACCAGGCGCCGGTGGTAGCCACGCCATTGCTGGATCAGAACGCAACCGAAAAGACACCTTTCAATTATGTGGTCCCGGCCACCAGCTTCAACGATCCGGACAATGACAGCCTCAGCTACACCGCCAAGCTGGCCGACGGCAGCGCCCTGCCCAGCTGGCTGACGTTCGATGCCGCCACGCGCACCTTCAGCGGCACGCCTCCCGACACGGCGTCGGGCACTTACTCGATCCAGGTCACCGCAACCGATGGCAGCAACGCCACCGTCAGCGACAGCTTTACCCTGGCCGTGCAAGACGTGCCCTCGTCCGTGGTGATCAACGGCACGCCGAACAACGACACCTTGACCGGCACCGTCGCCAACGAGCAGATTTTCGGCGGTGCGGGCAACGACACCCTCAATGGCGCCGCCGGCAACGATGTCCTGGTGGGCGGCACCGGCGTGGACAAACTGACCGGTGGTACGGGCGCCGACGTATTCCGCTATACGTCCAAGCTCGACAGCTACCGCACCAGTTCCACCAGCGCCAGTGACCAGATCCTCGATTTCGACGTGGCCGCCGACAAGATCGACGTCGCGGCTCTCGGTTATACGGGCCTGGGCAACGGGCTCAATGGCACGCTGCAAGTCACTTACAGTGCATCGACCAACCGCACCTACCTCAAGGACCTCACGGTCGATGCCAACGGCAACCGCTTCGAAATCTCGATGGCCGGCAACCTGGTCAGCAGCCTGACCGCCAATCATTTTGTCTTTGCCGACCAGAACACTCCGACGAACGTCGCGCCGGTGGTGGTCATCCCCCTTCTGGACCAGAACGCCAGCGAAAGCACGCCGTTCAAATACACCGTGGCCAGCAACAGCTTCAGCGACGCCAACCAGGATGTGCTGACCTACACCGCGACCCTCGCCAACGGCAACGCCCTGCCTTCGTGGCTGACGTTCAACGCCGCCAACCTGACGTTCAGCGGCACGCCCACCACCACCGCCGCTGGTAACTACGACGTGCTGGTCAAGGCCACCGACCCCTCGGGCGCCTCGGTCAGCGACAACTTCGCCCTGGTGGTCGCCGATGCGCCGGCCAACACCATCACCGGTACCGCCAACGCCGAAAGCCTCAACGGCACGGCAGGCGCCGACCTGATCCTCGGCCTCGGCGGCAACGACACCATAAAGGCCGGCACCGGCGCGGACATCATCGACGGCGGCGCCGGACGCGACTCGTTGTATGGCGGCGACGGCGCCGACACGTTCCGCTACAACAACCTGGCCGACAGCTACCGGGATTACGACATCGGCGGCGTGACCGCCACGGACACGATCTACGACTTCACCGTGGGCGTGGACAAGATTGACGTCTCCGGGCTGGGCTTCCTTGGCCTGGGCGACGGCAACAACGGCACGCTCTACATGACCCTGAACGCGGCGGGCGACAAGACCTATGTCAAATCCAGCCAGGCCGACGCCGATGGCAATCGCTTCGAAATCGCCCTGAACGGCAACTACCTCAACACCCTCACCGCCGACGATTTCGTCTTTGGCGAACGCGCTCAGCAAGACATCCTCTACCTGCCGACTCTTGGCCAATCCAACGCGCGCCTGCTGCGCATGAGCGAAGACGACGATCAATCCGGCACCTCGATGCTGGTCAACGATCTGAGCAAGTACACCACCTACGACGTACGCAGCCAGTTCGACGATGCCGATGGCAACGGCATCGACATCGCCGTCGGCGGCAGCACGGTCAACGGCTTGTCGACGCTGGGCGCCGAGGAGCTGAAGTTGTGCTGGTGGCTGACCGATACCAATCAACCGGGGCCGGCGCTGTTGCGCGCCGTGACGTTGCTGCGTGACCAGCTCACCGAACTGAAGTCCATCGATAACGTGACCATGGGCATCATCTGGGGCCAAGGCGAAGAAGCCGCCCAGGAAATCGCCCGCTCCACGGACAAGGCGGCAGCAGCGGCAGCCTACAAAGCGGCGACATTGAAGGTATTCGATTACCTGCACAGCCAATTCGGCAACTTCAACGTGTACATCATGGAGACCGGCCACTACGAGCAGGACGCCGCGCGCGCCCGTGGTTACCCGGAGGATAAGATCGCCGACATTGTCGAGGGTGTGGGCTACGTTCGCGCCGTCCAGGAAGCCATCGCCGCCGAGCGTGCCGATGTAAAACTGGCGGTGGACCCCAACGACCTGCCCTTGCGTTATGAAGTGGACCCGCTGGTTTATCCCGACGACGTCTGGCACCTGCACGAGGAATCAGCGGAAATCGTTGGCCAGCGCCTGGCCGACTACATCGCCGATGACCTCGGTTTCCAGGGCAACCCCAACGACAACAACAGCGTGCAGGACATTTTCGACGGCGCGCAGAATGAGGGCGGGATGATTTCCGGCACCGACCAGGACGATACGCTGGTGGGCAGCTCGGGCAACGATACCCTGAACGGCGACCTGGGCGCCGACACGTTGACCGGTGGCGATGGCAACGATATCTACGTCGTCGACAACGCGTTCGACAGCGTCGTGGAAACCAACACCTCGACCGCGCAGATCGATACGGTACAGGCTTCGGTCAGTTGGACACTGGGCGCCAACCTGGAAAACCTGGTGCTGACCGGCGTTTCGGACATCGACGGCACCGGTAACGATCGGCGAAATTTCATCACCGGTAACGTCGCCAACAACGTGCTCAATGGCGCTGCGGGAGCCGACAGCATGAGCGGTGGCGACGGCGACGATACCTACTACGTCGACAATGCCAGCGATACCGTCATCGAGAAAAGCAGCAATCCGGTGACCGGCGGTATCGACAGCGTCCACAGTAGCCTCGCCGCCTACACCTTGGGCACCAACGTGGAGAACCTCTACGTCGACAGCCCCGGCGTCGCCAACGGGACGGGTAACGCGCTGGCCAACACCTTGTTCGCCGGTGCCGGCGACAACATCCTCGACGGGCGTGATGGTAACGACACCGTGTCCTACGACCGAGCCCTGGCCGGGGTCACCGTGAACCTCTCGACCTCTGCCCAGCAAAACACCGTGGGCTCCGGGCTGGACACCTTGAAGTTCATCGAGAACCTGACCGGTAGCGCCTACGCCGACACATTGTCGGGCAACAGCGCTGGAAACATCCTCGACGGCGGTGCCGGCAACGACACCCTGGTGGGCGGCTCGGGCGATGATCGGCTGATCGGCGGTGCGGGCACCGATAACCTCACCGGCGGCACCGGCGCGGACACCTATGCGTTTGGCGCGTTGTCGGACATGGGCGTCGGGGCGGCACGGGACGTGATCAACGGCTTCAAGAGCACGGAGATGGACAAGCTGGACTTCACCGGCCTGGACGCCAACCCGCTGACCGCCAACCTCGATGCGTTCACCTTCATTGGCAGTAACGCCTTTGACACCACCAACGCCACCGGCCAATTGCGCTTTGTCGACGGCATCCTCTACGGCAGCGTCGACTCCGACGCCACCGCCGAGTTCGAACTCTCTCTGGTGGGCGTCAAGGAGCTGCATGCCAGCGACTTCACTGCCTGA	MIFNVQNFGAKGDGVTDDTAAIQSAIDAAAAAGGGQVYMPTGTYIVSGGEEPSDGCLMLKSNVYLYGDGMGDTTVKLVDGSDAKITGIIRSAYGEETHDFGVSNLTIDGNRDATTGKVDGWFNGYIPGEEGYDSNVTLDSVEIKDCSGYGFDPHEQTVNMVIKNSVSHGNGLDGFVADFLSDSTFENNVAYDNDRHGFNVVTSTHDFTMTNNVAYNNGGNGIVVQRGSEDIPSPSNITITGGEMYGNGAEGVLIKLSSDVTVTGVDIHDNNGAGVRIYGSNHVEVLDNTLNNNALGSAVPEVIIQSYDDTLGVSGKYFNGSDNLIQGNIISGSNLSTYGVAERNEDGTDRNAIIANTISHTSKGATLVYGDGSYVSATVPMTTVQGTAGNDTLTGTSASEIFFGAAGNDTINGAAGSDILVGGAGVDKLTGGTGADTFRFTSQSDSYRNATASFDDTITDFDVTQDKIDLADLGFTGLGNGRGGTLQVSYNASSNRTYIKDYDADASGNRFELILSGNLASTLTADNFIFNRVITGTTGSDSLQGSDAADTLLGLAGNDSLSGGAGADKLDGGAGMDTLTGGAGADTFVFANRLDSYRNYNTGGANLGDLITDFDIAADKIDLSAMGFTGLGDGKNNTVYLVLNSAGTKTYIKSLEADANGNRFEVALDGNYLNKLTNANFVFATSSPTNQAPVVATPLLDQNATEKTPFNYVVPATSFNDPDNDSLSYTAKLADGSALPSWLTFDAATRTFSGTPPDTASGTYSIQVTATDGSNATVSDSFTLAVQDVPSSVVINGTPNNDTLTGTVANEQIFGGAGNDTLNGAAGNDVLVGGTGVDKLTGGTGADVFRYTSKLDSYRTSSTSASDQILDFDVAADKIDVAALGYTGLGNGLNGTLQVTYSASTNRTYLKDLTVDANGNRFEISMAGNLVSSLTANHFVFADQNTPTNVAPVVVIPLLDQNASESTPFKYTVASNSFSDANQDVLTYTATLANGNALPSWLTFNAANLTFSGTPTTTAAGNYDVLVKATDPSGASVSDNFALVVADAPANTITGTANAESLNGTAGADLILGLGGNDTIKAGTGADIIDGGAGRDSLYGGDGADTFRYNNLADSYRDYDIGGVTATDTIYDFTVGVDKIDVSGLGFLGLGDGNNGTLYMTLNAAGDKTYVKSSQADADGNRFEIALNGNYLNTLTADDFVFGERAQQDILYLPTLGQSNARLLRMSEDDDQSGTSMLVNDLSKYTTYDVRSQFDDADGNGIDIAVGGSTVNGLSTLGAEELKLCWWLTDTNQPGPALLRAVTLLRDQLTELKSIDNVTMGIIWGQGEEAAQEIARSTDKAAAAAAYKAATLKVFDYLHSQFGNFNVYIMETGHYEQDAARARGYPEDKIADIVEGVGYVRAVQEAIAAERADVKLAVDPNDLPLRYEVDPLVYPDDVWHLHEESAEIVGQRLADYIADDLGFQGNPNDNNSVQDIFDGAQNEGGMISGTDQDDTLVGSSGNDTLNGDLGADTLTGGDGNDIYVVDNAFDSVVETNTSTAQIDTVQASVSWTLGANLENLVLTGVSDIDGTGNDRRNFITGNVANNVLNGAAGADSMSGGDGDDTYYVDNASDTVIEKSSNPVTGGIDSVHSSLAAYTLGTNVENLYVDSPGVANGTGNALANTLFAGAGDNILDGRDGNDTVSYDRALAGVTVNLSTSAQQNTVGSGLDTLKFIENLTGSAYADTLSGNSAGNILDGGAGNDTLVGGSGDDRLIGGAGTDNLTGGTGADTYAFGALSDMGVGAARDVINGFKSTEMDKLDFTGLDANPLTANLDAFTFIGSNAFDTTNATGQLRFVDGILYGSVDSDATAEFELSLVGVKELHASDFTA				NA	NA	NA	NA	NA
D1-36_02420	2637	uvrA_1	COG0178	UvrABC system protein A	ATGCCCCCACGCTCCGCCCCTGCTTTAACCGCTGGCACCGGTTTCGTCCGGGTGCGTGGCGCCCGCGAACACAATCTCAAGAACGTTGACGTGGACATTCCTCGCGATGCCCTGGTGGTGTTCACCGGCGTGTCGGGTTCCGGCAAATCCTCGCTGGCCTTCTCCACGCTTTACGCCGAAGCCCAGCGTCGTTATTTCGAGTCCGTCGCACCTTATGCCAGGCGCCTGATCGACCAGGTCGGCGTGCCGGACGTAGGCAGCATCGAAGGCCTGCCGCCGGCGGTCGCCTTGCAACAACAGCGCGGCACGCCCAGCGCGCGCTCCTCGGTGGGCAGCGTCACCACCTTGTCGAGCCTGATCCGCATGCTTTACTCCCGCGCCGGCAGCTACCCGGCCGACCAGCCGATGCTGTATGCCGAGGACTTTTCGCCCAACACGCCCCAGGGCGCGTGTCCGCAATGCCACGGCCTGGGCCGGGTTTACGAAGTGACCGAAGCCACCATGGTCCCCGACCCTTCGCTGACCATCCGCGAACGCGCGGTAGCCGCCTGGCCCATGGCATGGCAAGGGCAGAACCTGCGGGACATCCTCGTGACACTCGGCTATGACGTCGACATTCCCTGGCGCGACCTGCCGAAGAAGCAACGCGACTGGATCCTCTTCACGGAAGAGACCCCCACCGTCCCGGTGTACGCCGGGCTCACCCCGGCCCAGACCCGCGACGCCCTCAAGCGCAAACTCGAACCTAGCTACCAGGGCACGTTCAGCGGGGCCCGGCGCTACCTGTTGCACACCTTCATGCATTCGCAAAGCGCGCAGATGCGCAAGCGGGTGGCGCAATATATGCGCGCCAGCCCCTGCCCGGTCTGCGAAGGCAAGCGCCTCAAGCGCGAGGCGCTGACCGTTACCTTTGCCGGGCTGGACATCGCCGAGCTGTCCAACCTGTCATTGCTGGAATTGGCCGAGGTGCTCAAGGCCGTAGCGGCGCCGGATTATCTGGAGCAGCCCGAAGAATCGGGCGATGTTCTCACCCATCGCCAGACGCGCGAGGCTCGTGAGCAGCGCGCCGCCAGGGGCGACAACCCGCACGCTGGCGGGCCGGACGCGCGCCACACGCCCAATCTGTCCCTGGAAAAGCGCTTGGCCGCCCAGCGCATTGCCGCCGAACTGCTGGAGCGCATCGTCACGCTGATCGACCTGGGCCTCGGCTATCTGGCCCTGGAGCGCAGCACGCCGACGCTTTCCTCCGGCGAACTGCAACGCCTGCGCCTGGCGACCCAGCTCAACTCCCAATTGTTCGGGGTGATCTATGTGCTGGACGAACCTTCCGCCGGCCTGCACCCGGCCGACAGTGAAGCGCTTTTTGGCGCCTTGCAACGGTTGAAAGCAGCAGGAAACTCGGTGTTTGTGGTCGAGCACGACCTGGACACCATGCGCCGCGCCGACTGGCTGATCGACGTGGGCCCCGACGCGGGCGAGCAAGGCGGCAGGGTCCTTTACAGTGGCCCGCCCGAAGGCCTTGGGCAAGTGCCCGAATCCCGCACCCGCGCCTACTTGTTCGCCGAAGAACGGGCCATTGCGCGCCATCCGCGCCCACCCAAGGACTGGCTGCGGCTGGACGGCATCACCCGCAACAATCTCGACAACCTGAGCGTGGGTTTTCCCCTGGGCTGCTTCACGGCTGTCACCGGCATTTCCGGTTCGGGCAAATCCAGCCTGGTCAGCCAGGCCCTGCTGGATCTGGTCGGCGCCCACCTGGGCCAGCCCGGCGCCAACGCCGATGGCGAAGAGCAAAGCCTGGAAGACGAACCGGTGCTGGCCAGCGGCGGCCAGGTCACCGCCGGGCTCGAGGGGGTCAAGCGACTGGTTCAGGTCGACCAGAAACCCATCGGCCGCACGCCACGCTCCAACCTCGCCACCTATACCGGGCTGTTCGACCATGTGCGCAAGCTCTTCGCCGCGACGGAGCAGGCACAAGCGCTCGGTTTCGATGCCGGACGGTTCTCCTTCAACGTCGCCAAGGGCCGTTGCGAAACCTGTGAGGGGGAAGGTTTCGTCAGCGTGGAATTATTATTCATGCCCAGCGTGTACGCCCCCTGTCCGACCTGCCATGGCGCCCGCTACAACCCACAGACCCTGGAAGTGACCTGGCAAGGCCTGGACATCTCCCAAGTGCTGCAATTGACGGTGAACCAGGCCCTGGAGGTCTTCGCCGAGCAACCGCCAGCCAGGCGTTCGCTCCAGGTACTCAAAGACATCGGCCTGGGCTATCTGCGCCTGGGCCAACCGGCCACCGAACTGTCCGGCGGCGAGGCCCAGCGGATCAAGCTGGCGACGGAACTGCAACGCAAGGCCCGAGGCGCGACGCTTTACGTGCTGGATGAACCGACCAACGGCCTGCACCCCCAGGACGTGGACCGCTTGCTGGTGCAGCTCAATCGACTGGTGGATGAAGGGCATACGGTGGTCGTGGTGGAACATGACATGCGCGTGGTAGCGCAAAGCGACTGGGTCATCGACATCGGGCCAGGGGCCGGGACCCAGGGAGGCAACGTCGTGGTGTGCGGCGCGCCGCAGGTGGTGGCGAACTGCGGGGAGAGCCGCACGGCGCCGTTTCTCAAGAAGGTCTTGGAGTGA	MPPRSAPALTAGTGFVRVRGAREHNLKNVDVDIPRDALVVFTGVSGSGKSSLAFSTLYAEAQRRYFESVAPYARRLIDQVGVPDVGSIEGLPPAVALQQQRGTPSARSSVGSVTTLSSLIRMLYSRAGSYPADQPMLYAEDFSPNTPQGACPQCHGLGRVYEVTEATMVPDPSLTIRERAVAAWPMAWQGQNLRDILVTLGYDVDIPWRDLPKKQRDWILFTEETPTVPVYAGLTPAQTRDALKRKLEPSYQGTFSGARRYLLHTFMHSQSAQMRKRVAQYMRASPCPVCEGKRLKREALTVTFAGLDIAELSNLSLLELAEVLKAVAAPDYLEQPEESGDVLTHRQTREAREQRAARGDNPHAGGPDARHTPNLSLEKRLAAQRIAAELLERIVTLIDLGLGYLALERSTPTLSSGELQRLRLATQLNSQLFGVIYVLDEPSAGLHPADSEALFGALQRLKAAGNSVFVVEHDLDTMRRADWLIDVGPDAGEQGGRVLYSGPPEGLGQVPESRTRAYLFAEERAIARHPRPPKDWLRLDGITRNNLDNLSVGFPLGCFTAVTGISGSGKSSLVSQALLDLVGAHLGQPGANADGEEQSLEDEPVLASGGQVTAGLEGVKRLVQVDQKPIGRTPRSNLATYTGLFDHVRKLFAATEQAQALGFDAGRFSFNVAKGRCETCEGEGFVSVELLFMPSVYAPCPTCHGARYNPQTLEVTWQGLDISQVLQLTVNQALEVFAEQPPARRSLQVLKDIGLGYLRLGQPATELSGGEAQRIKLATELQRKARGATLYVLDEPTNGLHPQDVDRLLVQLNRLVDEGHTVVVVEHDMRVVAQSDWVIDIGPGAGTQGGNVVVCGAPQVVANCGESRTAPFLKKVLE	PGPT0014915_6088	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014915-uvrA-K03701	NA	NA
D1-36_02421	1740	dapE_1		Succinyl-diaminopimelate desuccinylase	ATGAACTTCCCGTTCAAGCGCCTGGCTATTGCCACCCTCGTCCTGTCCACCCTCTCGTCCTACTCGATATCCGCCAACGCCAACATCACCGCCCAACAGAGCGCGGACTTCGTCAAGACCTACGCCGATACCTCGGTCAGCGATTTCCGCCAGTTCCTGGCGAGCGTCGCCAAGAGTGAGCTGGCCAAATCCGCGAATCTCGGCCCGGCCATCGATGCCTTCCAAGGCAACAAAACCCTGTCGGCGGAACAACAGAACGAAATCCATCGGCTGCTCGGTATCTACGCCCGGGTGAAGTATGGCAAGGCCGCCACCGAGACCTTGCGCCAGTTGGTGGAAATCCCGACCTTTCGCAAGGACGGCGTGGCCCAGCATGAAAACCCCGAGTTTCTCAAGATCGCCGACAAGATCAAAAGCCTGGCCAACGACTTCAACCTGAACTTCCGCAACATCGACAACCGCGTCTATGAGATTTCACTCGAAGGCAGCGGTGACGAAGTCGTGGGCATTCACGCCCATGCCGACGTGGTGCCGGTGACGCCGGAAAACTGGGTGCTCAAGGACGGCACCAGGCTCGATCCGTTCAAGGTCACGCTGGTGGGCGATCGCATGTACGGTCGAGGCACCGAGGATGACAAGAACGCCATCGTCGTGGTGCTCTACGCCATGAAGATCATCAAGGACGAAAAACTGCCGCTGGCGCGCCACTTCAAGCTGCTGGTGGACACGACCGAAGAAACCACCGGCGACGCCATCCCCTACTATTTCGAGCGCAACCCGACGCCCAATTACAACCTGGCGCTCGATGGCAGCTACCCAGTGGTGATCGCCGAGAAAGGCTACGGCACGGTCATGGCGAACTTCCCTCGCCGGGCGGGCCAAGGCAAAGGGGCTGAAGTCGTTGCAATGACCGGCGGCATGGCGACCAACCAGATCCCGTCGACTTCAGTCGCGACGTTCAGCACCGACAAACCCGCCGAGCTGGCCGCCAGCCTGCTCAAGGCCGGCACCGACTACGCCAAAGCCAATGGCGGCGACTTTGAAGTAAGAAGCGAGGTGGCCGATAAAACCGTCAAGCTGACCTTTACCGGCGTATCCGCCCATTCCTCCGAGCCCGAGTCAGGCGTCAACCCGGTCGCCAGGATGCTGGCCTTCATCAATGGCCTGGATGGCAAGGTCGCGCTCAAGCACAACCACATCACCGACGCTGCGCGTTACGCCACCGACAACTGGGGCCTGGATTACCTGGGCAACAAACTGGGCATCGGCTTTTCCGACGCGTTCATGGGCCCGCTGACCGCCTCGCTGACCTACGTCGGGATGGACGACAAGAGCTTCAAGCTCGCCGTGAACCTGCGAGTGCCCGTGGGCAAGCCAACGGACACGCTGAAGGCTGAGATCAACGACAAGCTCTCCGCGTGGGCCAAGAAGTCCGAGGTTGCCGTGACATTCGACAACACTATCGACGAACCCATGTACCGTAACCCCGAAGGCGAATGGGTCAAGGCACTGCTGGCCGTCGCCACCGAGAACCTGGGCATGGAGCACAAGTTCGGCACGTCCGCCGGGGCCACGTCGGTCCATGACTTGCCCAACGGCGTGCAGTTCGGCCTGGCCATGCCCGACGTCAAGTACACCGGCCACAACGACAACGAGTTCAAGACCGTGGAGCAGTTCCTGCTGGACCTGCAGGTCGTGACCGAGATGATGGGGCGGATCGGGCAGTTGCCGAAGCTCTAG	MNFPFKRLAIATLVLSTLSSYSISANANITAQQSADFVKTYADTSVSDFRQFLASVAKSELAKSANLGPAIDAFQGNKTLSAEQQNEIHRLLGIYARVKYGKAATETLRQLVEIPTFRKDGVAQHENPEFLKIADKIKSLANDFNLNFRNIDNRVYEISLEGSGDEVVGIHAHADVVPVTPENWVLKDGTRLDPFKVTLVGDRMYGRGTEDDKNAIVVVLYAMKIIKDEKLPLARHFKLLVDTTEETTGDAIPYYFERNPTPNYNLALDGSYPVVIAEKGYGTVMANFPRRAGQGKGAEVVAMTGGMATNQIPSTSVATFSTDKPAELAASLLKAGTDYAKANGGDFEVRSEVADKTVKLTFTGVSAHSSEPESGVNPVARMLAFINGLDGKVALKHNHITDAARYATDNWGLDYLGNKLGIGFSDAFMGPLTASLTYVGMDDKSFKLAVNLRVPVGKPTDTLKAEINDKLSAWAKKSEVAVTFDNTIDEPMYRNPEGEWVKALLAVATENLGMEHKFGTSAGATSVHDLPNGVQFGLAMPDVKYTGHNDNEFKTVEQFLLDLQVVTEMMGRIGQLPKL				NA	NA	NA	NA	NA
D1-36_02422	2004	rlhA	COG0826	23S rRNA 5-hydroxycytidine synthase	ATGTCCTTGCCTAAACATCATCTGGAATTGCTCAGCCCCGCCCGCGACGTGACCATCGCCCGCGAGGCCATCCTGCATGGCGCCGACGCCGTGTACATCGGTGGCCCGAGTTTCGGTGCGCGTCACAACGCCTGCAACGAGGTGAGCGATATCGCCGGGCTGGTGGAGTTCGCCCATCGCTACCATGCCCGGGTGTTCACCACGATCAACACGATCTTGCATGACAACGAGCTGGAGCCGGCCCGCCAGTTGATCCATCAGCTCTACGATGCCGGCGTCGATGCCCTGATCGTCCAGGACCTGGGCGTGATGGAACTGGACATTCCGCCGATCGAGCTGCACGCCAGCACCCAGACCGACATTCGCACACTCGCCCGGGCGAAATTCCTCGACCAGGCCGGTTTCTCGCAGCTGGTGTTGGCCCGCGAGCTGAACCTGCAGGAAATCCGCACCATCGCCGACGAAACCGACGCGGCCATCGAGTTCTTCATTCACGGCGCGTTGTGCGTGGCGTTTTCCGGCCAGTGCAACATCTCCCACGCGCAAAACGGCCGCAGCGCCAACCGTGGCGATTGCTCCCAGGCCTGCCGCCTGCCCTACACCCTCAAGGATGATCAAGGCCGGGTGGTCGCCTACGAAAAGCACCTTTTGTCGATGAAAGACAACAACCAGAGCGCCAACATCCGCGCCCTGGTTGAAGCTGGCGTGCGCTCGTTCAAGATCGAAGGCCGCTACAAGGATGCGGCCTATGTGAAGAACATCACCGCCTACTATCGCCAGCGCCTGGACGATGTCCTCGAAGACCGCCCGGACCTGGCCCGCGCTTCCAGTGGCCGCATCGCGCACTTCTTCGTGCCGGACCCGGACAAGACCTTCCACCGTGGCAGCACCGACTACTTCGTCAGCGAGCGCAAGATCGACATCGGCGCCTTCGACTCCCCCACGTTCACCGGCGTACCGGTGGGCGTGGTGGAGAAAGTCGGCAAGCGCGACCTGCACGTGGTGACGTCTGATCCGTTGTCCAACGGCGACGGCCTCAACGTGCTGGTCAAGCGCGAAGTGGTGGGTTTCCGGGCCAACATCGCCGAGCCCAAGGGCGAGTTCCTCGATGACGAAGGCCAGAAGCGCTACCGCTACCGCGTCGAGCCCAACGAGATGCCCGCCGGCATGTACCAGTTGCGGCCCAACCATCCGCTGAGCCGCAACCTGGACCACAACTGGCAGCAAGCCTTGCTCAAGACCTCCGCCGAGCGTCGCGTGGGCCTGGCCTGGGTCGCGCAGTTGCGCGAAGAGCGCCTGGAGCTGACCGCCACCAGCGAAGAAGGCATCAGCGCCAGCGTTGCCCTCGACGGTCCTTTCGGCCTGGCGAACAAGCCAGAACAAGCCCTGGAGCAGTTGCAGGACCTGCTCGGCCAACTGGGCACCACCGAGTACCACGCCACGTCGATCAAGCTGGACGCGCCCCAGGCGTTTTTCATTCCCAACTCCCAGCTCAAGGCACTGCGCCGCGAGGTGATCGAAGCCCTGACCACGGCGCGCGTCGCAGCGCATCCACGGGGCGGGCGCAAGGCCGAAACCACGCCGCCACCGGTGTACCCGGAGTCGCACCTGTCGTTTTTGGCCAACGTCTACAACCAGAAGGCCCGGGACTTCTACCACCGCCACGGCGTCAAGCTGATCGACGCGGCGTTCGAGGCCCACGAGGAAACCGGCGAAGTACCGGTGATGATCACCAAGCATTGCCTGCGTTTTTCGTTCAACCTCTGCCCCAAGCAAGCCAAGGGCGTCACCGGTGTGCGCACCAAGGTCGCGCCGATGCAGCTGATTCACGGCGATGAAGTGCTGACCTTGAAGTTCGATTGCAAACCCTGCGAGATGCATGTGGTCGGCAAGATCAAGGGGCATATCCTCGACCTGCCATTGCCGGGCAGCACGGCTCAGCCGGTGGTGGGGCATATCAGCCCGGAAGATCTGCTCAAGACGATTCCGCGCGGGACGCATTGA	MSLPKHHLELLSPARDVTIAREAILHGADAVYIGGPSFGARHNACNEVSDIAGLVEFAHRYHARVFTTINTILHDNELEPARQLIHQLYDAGVDALIVQDLGVMELDIPPIELHASTQTDIRTLARAKFLDQAGFSQLVLARELNLQEIRTIADETDAAIEFFIHGALCVAFSGQCNISHAQNGRSANRGDCSQACRLPYTLKDDQGRVVAYEKHLLSMKDNNQSANIRALVEAGVRSFKIEGRYKDAAYVKNITAYYRQRLDDVLEDRPDLARASSGRIAHFFVPDPDKTFHRGSTDYFVSERKIDIGAFDSPTFTGVPVGVVEKVGKRDLHVVTSDPLSNGDGLNVLVKREVVGFRANIAEPKGEFLDDEGQKRYRYRVEPNEMPAGMYQLRPNHPLSRNLDHNWQQALLKTSAERRVGLAWVAQLREERLELTATSEEGISASVALDGPFGLANKPEQALEQLQDLLGQLGTTEYHATSIKLDAPQAFFIPNSQLKALRREVIEALTTARVAAHPRGGRKAETTPPPVYPESHLSFLANVYNQKARDFYHRHGVKLIDAAFEAHEETGEVPVMITKHCLRFSFNLCPKQAKGVTGVRTKVAPMQLIHGDEVLTLKFDCKPCEMHVVGKIKGHILDLPLPGSTAQPVVGHISPEDLLKTIPRGTH				NA	NA	NA	NA	NA
D1-36_02423	1566			hypothetical protein	ATGCTCGGACGCAAACAGCCAGAGCCCAGGATTGAAAGCCCCGATCAAGCGTTCCCGCAGGCTGTGCGAGCCGGGGCGGCGTTTCGGCTGACGGTCAGTTTCATGCTCGTGGTCGTCATGGCCTTCCTCGCCGTCGAGGGCTGGCGCACATGGCGCGATTATCGCGCGGCCTTCGCTTCCGCCCGCGACTCGGTCACCAACCTGGCGAGGGCAACCGCCCAACACGCCGAAGACGCCATCCGCCAAGTGGACGTGCTCACCGCCGCCCTTGCCGAACGAGTGGAAGGCGACGGGCTGCAAAACATGGACATTGCCCGTATCCACAAGCTGCTCATCCAACAAGCCGCGATCATGCCGCAACTGCACGGCTTGTTTATCTACGGCCCGGACGGTCAATGGCTGGCGACAGACAAGGACGTGATACCGGAAATGGCGAACAACGCCGATCGAGACTACTTCCAGTACCACCGCACACACCAGGACCGTGGCGTGCGTATCGGCGAAGTGATCAAGAGTCGTTCCACCGACGACTTGATCATTCCTGTCTCGCGCCGCTTGAACAACCCCGACGGCTCTTTCGCCGGCGTGATGCTCGGGACCGTCAAGGTCAGCTATTTCGTCGACTATTACGGTGACTTCAAGATCGACGACAAAGGCGCGCTGGTCCTGGCATTGCGCAGTGGCACGATCCTGGTACGACGGCCCTTCGTCGCCTCGGTGATCGGCAAGAGCCTGGTCAACAGCGTGATCTTCCGTGAGCACCTGCCAACCTCCAACCAGGGCGTGGCCGAAGCCCGGGCGGTCGTCGACGACACCGAACGCTTGTACGGCTACCGGGCCCTGACCACCTACCCGCTGGTGGTGGAAGCCGGTTTGTCCCGCGAATCGATCGTCGCCCCGTGGCGCCGGGACTTGTTCAAGACCAGCCTGGTGCTGATATTCCTGATCGCCATCCTGGTGGGTTTCGGGCTCATCGTGTTGAGCCAGCTGCGCTACCGCATGACCATGGAAAAGCAGATCCGCAGCGCCCACCAAGCCATGCGGGACATGGCCCTGACCGACAGCCTGACCGGCCTGGGCAACCGTCGGCGGCTAGACAGCGCCCTGGCCGATGAGCTGCGCCTGGCCAAGCGCCAGGGTTCGTCCCTGGCCCTGATCATGCTCGACGTCGACTACTTCAAACGCTTCAACGACAAGTACGGCCATGCCGCCGGCGACGACTGCCTGCGGGCGATTGCCAGCGCGATCGGGCAGACGATCAAGCGGCCCGGGGACCTGGCGGTCCGCTACGGCGGCGAGGAATTCACGGTGTTGCTGCCCAATACCGACAGCACTGGCGCCGCCCAGGTCGCGCAACAAATCCTCGAAGCCGTCAGGGCCCTGAACATCGAGCATGGCGATCATCCCCTGGGCATCGTCACCATCAGCGCGGGCATCAACACCTGCCAGCCGAGCAGCGAGGACGTGAGCCCCGCCATGTTGATCAAGGCCGCCGACGCGTTCCTGTACCTGGCGAAGAACACCGGGCGCAACCGCTGGTGCAGCATCGGCGCCGCCCAGGGCTGA	MLGRKQPEPRIESPDQAFPQAVRAGAAFRLTVSFMLVVVMAFLAVEGWRTWRDYRAAFASARDSVTNLARATAQHAEDAIRQVDVLTAALAERVEGDGLQNMDIARIHKLLIQQAAIMPQLHGLFIYGPDGQWLATDKDVIPEMANNADRDYFQYHRTHQDRGVRIGEVIKSRSTDDLIIPVSRRLNNPDGSFAGVMLGTVKVSYFVDYYGDFKIDDKGALVLALRSGTILVRRPFVASVIGKSLVNSVIFREHLPTSNQGVAEARAVVDDTERLYGYRALTTYPLVVEAGLSRESIVAPWRRDLFKTSLVLIFLIAILVGFGLIVLSQLRYRMTMEKQIRSAHQAMRDMALTDSLTGLGNRRRLDSALADELRLAKRQGSSLALIMLDVDYFKRFNDKYGHAAGDDCLRAIASAIGQTIKRPGDLAVRYGGEEFTVLLPNTDSTGAAQVAQQILEAVRALNIEHGDHPLGIVTISAGINTCQPSSEDVSPAMLIKAADAFLYLAKNTGRNRWCSIGAAQG				NA	NA	NA	NA	NA
D1-36_02424	285			hypothetical protein	ATGAAAGTTGGCGTCATATCCGACACCCACGGCTTGCTGCGCCCCGAGGCGTTGGACGCGCTGCAAGGCTGCGAGAGGATCATTCATGCCGGTGATATCGGCAGCCACCAGATCCTGGAAGCCCTGGCATCCATCGGCGAGCTGTACGTGGTACGTGGGAACAACGACCTGGAGGCCGACTGGGCGGGACAGATCGCCGATCAGTTGCAATTCGACCTGGGCGGGTGGCAGGTGCTGTTGGTCCAGACATCGCCGATGTGCCGGCGACGCTCGATCCAGCTGTAA	MKVGVISDTHGLLRPEALDALQGCERIIHAGDIGSHQILEALASIGELYVVRGNNDLEADWAGQIADQLQFDLGGWQVLLVQTSPMCRRRSIQL				NA	NA	NA	NA	NA
D1-36_02425	903			hypothetical protein	ATGAAAATCGCCCTCGATCCCTACATGCACCGCCACCTGAGCCTGCCGGACCTGTGCCGCAAGACCGCCGAGCTCGGCTACCAATACCTGGAACTGTCGCCGCGTGAAGATTTCCTGCCGTGGTGGGTTCGCCCTCGCGCCCACAAGGAACGCATCACCGAATTCAAGAAAGCCCTGCGCGACCATGACCTGCAACTGGCGTCGCTGCTGCCGATGTACCGCTGGGCCAGCCCCCACGAGGACGAACGCCGGGCGGCGGTGAACTACTGGAAGGAAGCGATCCAGGTTGCCGTGGAGATGGGGTGTACGACGATGAACTCGGAGTTCGGTCGCGGGCCGTCGCCCGATCGCGGGCACAAGGTCAGCTGCTGTGGCGGCATGCACAGTCATGAGTCGAGCGAAGCGGCCTGGTGGCGCTCGATGGAAGAGCTGGTGCCGATCCTCGAATCCGAAGGCGTTACCCTCAACGTCGAGCCGCATCCGGAGGACTGGTGCGAGACCCTTCAGCCGGCCCTGGACATGCTCAAGACCGTCGGTTCAGACAACGTGAAGTTTTTGTACTGTGCCCCCCACACGTTCTACTTCGGCGATGACATGCAAGCCATGATCGCTGAAGCCGGATCGATGATCACCCATGTCCACATTGCCGACACCTACAACCACAAGGCCTCGTCCGGCCTGCGCTATATCGTCAACCCACCCGGAGCCAAGGTGACGGTGCATCAGCACATGGACATGCACCAGGGCGAGATCGACTGGGACCTGTTCTTTGGCGAACTGGCGAAGACCGGCTTCGACGGCATCGTCACGGCGTGTGTGTTCGGCTGGGAGGAACGGGCCGATGAATCCGGGCGTTTCATGCGCCAGGAGATCCAGTCCTACGTCGACAAATACTTCAGGTAA	MKIALDPYMHRHLSLPDLCRKTAELGYQYLELSPREDFLPWWVRPRAHKERITEFKKALRDHDLQLASLLPMYRWASPHEDERRAAVNYWKEAIQVAVEMGCTTMNSEFGRGPSPDRGHKVSCCGGMHSHESSEAAWWRSMEELVPILESEGVTLNVEPHPEDWCETLQPALDMLKTVGSDNVKFLYCAPHTFYFGDDMQAMIAEAGSMITHVHIADTYNHKASSGLRYIVNPPGAKVTVHQHMDMHQGEIDWDLFFGELAKTGFDGIVTACVFGWEERADESGRFMRQEIQSYVDKYFR	PGPT0020845_100	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0020845-iolH-K06605	NA	NA
D1-36_02426	1170	iolG_2		Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenase	ATGATCAATGGCAGCAAAACCCTTGGCCGGCCCCTGCGCTGGGCCATGATCGGCGGCGGCGAGCACAGCCAGATCGGTTACATCCACCGCTCGGCCGCCCTGCGCGATCGCAACTTCGAACTGGTCGCCGGCGCGCTGGACATCGATCCGGGCCGTGGCCAGGCCTTCGGCGAAGCGTTGGGGATCGACCCGGCGCGCTGTTATCCGGACTACCTGAGCTTGTTCGAGCTGGAAGCACAGCGGCCCGACGGCATCGAGGCGGTGTCGATCGCCACCCCCAACGGCACGCACTACGCCATCACCCGCGCCGCCCTGGAAGCCGGCTTGCATGTGGTTTGCGAGAAACCGCTGTGCTTCACCCTCGACGAAGCCGAGGCGTTGCGGACCCTGGCCAGGTCCCGGGGCCGTATCGTCGGCCTGACCTACGGCTACGCCGGGCACCAGTTGATCGAACAGGCGCGGGCAATGATTGCAGCCAAGGAGCTGGGGGAGATCCGCATGGTGCATATGCAGTTCGCCCACGGTTTTCACAGCGCGCCGGTAGAGGCTCAGAGCCAGGCGACGCAATGGCGCGTCGACCCGCGCCAGGCCGGGCCCAGTTATGTGCTTGGGGATGTCGGTACGCATCCGTTGTATCTGTCCAAGGTGATGCTGCCTGAGCTCAAGATCAAGCGCTTGATGTGCAGCCGGCAGAGCTTCGTCGCCAGCCGCGCGCCGCTGGAGGACAACGCCTACACCTTGATGGAGTACGAAAGCGGCGCGATGGGCATGGTCTGGTCCAGCGCGGTGAATGCCGGTTCCATGCACGGCCAGAAAATCCGCGTGATCGGATCCCGGGCGAGCCTGGAATGGTGGGATGAGCGCCCCAACCAGCTCAGTTTCGAGATCCAGGGCCAGCCCGCGCAAACCCTGGAGCGCGGCATGGGCTATCTGCACGACGACGCCTTGCTGGACGACCGCATCGGTGGCGGTCATCCCGAAGGGCTGTTCGAGGCCTGGTCCAATCTCTATCGCCGCTTCGCCCTCGCCATGGACGCCGCCAACCGTGGCGACGCCCAAATGCTGACCGCGCTGCGCTATCCCGACATCGACGCCGGCGTGGACGGCGTGCGCTGGGTGGAGCGCTGCGTGGAATCGGCCAACAACGATTCAACCTGGATCGCCTATTAA	MINGSKTLGRPLRWAMIGGGEHSQIGYIHRSAALRDRNFELVAGALDIDPGRGQAFGEALGIDPARCYPDYLSLFELEAQRPDGIEAVSIATPNGTHYAITRAALEAGLHVVCEKPLCFTLDEAEALRTLARSRGRIVGLTYGYAGHQLIEQARAMIAAKELGEIRMVHMQFAHGFHSAPVEAQSQATQWRVDPRQAGPSYVLGDVGTHPLYLSKVMLPELKIKRLMCSRQSFVASRAPLEDNAYTLMEYESGAMGMVWSSAVNAGSMHGQKIRVIGSRASLEWWDERPNQLSFEIQGQPAQTLERGMGYLHDDALLDDRIGGGHPEGLFEAWSNLYRRFALAMDAANRGDAQMLTALRYPDIDAGVDGVRWVERCVESANNDSTWIAY				NA	NA	NA	NA	NA
D1-36_02427	924	iolE_2	COG1082	Inosose dehydratase	ATGGCGATCCACATCTGCACGGCGCCTTGCTGCTGGGGCGTCGATGACATCAAGAACGCGTTTCTGCCACCGTGGCGACGGGTGCTGCGCGAAGCCGCCGATGCGGGCTATCGCGGCATCGAGCTGGGGCCCTATGGTTATCTGCCGCTGGAGGCGGAAATCCTCAATCCAGCACTGTCGGAGCACGGCCTGCACATCGTCGCGGGAACGATTTTCGATGACTTGGTAAACCCAGCCAATCTGCCCGAACTGCTGCGCCAGACCCACTCCATCTGCGGCTCACTCAAACAACTGCCGCCCTTGAAACCCCAGCCCGGCCAGCGCTTCGGCGGGCCCTACCTGGTGATCATCGACTGGGGCCACGACGAACGCGATTACGCGGCCGGCCATTCGGACCGCGCGCCACGCCTGGACGACGCGCACTGGAACGCGATGATGGCGCATATCCGCGCCATCGCCGCCCTCGCCTGGGACACCTATGGCATCCGCGCCGTCATCCATCCTCACGCCGGCGGCTACATCGAATTCGCCGATGAGCTGGCGCGGCTGGTGGATGACATCCCCCACGACATTGCCGGGTTGTGCCTGGACACCGGGCACCTCTACTACGCCGGCATGGACCCGCTCGCATCGCTGCGCACCTACGCCCATCGCTTGGACTACCTGCACTTCAAAGACATAGACCCGGCGGTCTTCGACCAGGTGCTGAACGAGCGCATCCGCTTCTTCGCCGCCTGTGCCCGGGGCGTGATGTGCCCGATAGGACGCGGTGCCATCGACTACCCGGCCCTGCATGGCCTGCTGCGTGAGCTCGGCTACCAAGGCGCGATTACCGTCGAACAGGAACGCGACCCGCGCAACGCCGCCACCAGCCTGGACGACGTGGCGGCCAGCCGCGCCTATTTGGCCGGCATCGGCTTCTGA	MAIHICTAPCCWGVDDIKNAFLPPWRRVLREAADAGYRGIELGPYGYLPLEAEILNPALSEHGLHIVAGTIFDDLVNPANLPELLRQTHSICGSLKQLPPLKPQPGQRFGGPYLVIIDWGHDERDYAAGHSDRAPRLDDAHWNAMMAHIRAIAALAWDTYGIRAVIHPHAGGYIEFADELARLVDDIPHDIAGLCLDTGHLYYAGMDPLASLRTYAHRLDYLHFKDIDPAVFDQVLNERIRFFAACARGVMCPIGRGAIDYPALHGLLRELGYQGAITVEQERDPRNAATSLDDVAASRAYLAGIGF	PGPT0016785_392	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISM	CE-BACTERIAL_FITNESS-RHIZOPINE_CATABOLISM,PGPT0016785-mocC-K03335	NA	NA
D1-36_02428	1056			hypothetical protein	ATGTCAAAGCAGCCACGCCGAAAATTGCGCCCCACCATGGCCGATGTCGCCCGGGAAGCCGGTGTGAGCCTGTCGACGGTGGACCGGGTGCTGAACCTGCGCGCCGACGTGCGTGCCGACACCGCCCAGCGCATCGCGGCAGCGGCGGGGCGCTTGGGCTTCCATGCCAAGGGGGTGATCGAGCAGCGTGTGCTCAACGACCGTCCCACCCTGCGTCTGGGGTTCCTGTTGCAGAAAAGCGGGGTGCCGTTCTATCAGGGGCTGGCCCACGCCCTGTCAAACACCGCCGCCACCTGCACGCGAGCGCGGATTCGCGTGGTCATTGGTTACCTGGACGACCTTGATCCGGTCAACGTGGCCCAACGCATCCTCGCCTTGCGTGACCAGGTGGACGGCCTTGGCGTGGTGGCGGTCGATCACCCCAAGGTGCGTGAGGCGGTGGCCCAATTGCGCGCGACAGGCATATCGGTCGTGGCGCTGCTCTCGGAACTGTCCAGCGGCGCCGGCACTGGTTACGCCGGCCTCGACAATCGCCTCACGGGACGCACCGCCGGTTGGTTCATCAGCCGCCTCGCCAGGCAGCCCGGGCCAGCGGCGGTCATGCTCAGCAGCCAGCGTTTCCAATGCCAGGAATTGTGCGAATTGAGCTTTCGCAGCTACTTGGCGGAGCAAACCGGCGAATGGGAGCTGCTCGCCTCGCGCCTGACCCTGGAGGACGACGAGTTTGCTTATGGCAACACCGTCGACCTGCTCACGGCAGAACCCGACCTGGCGGGGCTTTACGTGGCCGGCGGCGGCATCGCCGGGGTATTGCGGGCCCTGCGCAGCCTCCAGCAGCAACAGCTGCGCCTGCCCGTCGTGGTGTGCCATGACCTGACGCCGCTGACCCGGGAGGCGTTGAAAACCGGATTGGTCCAGGCGGTGCTCTCCCACCCGGTGACCACCCTGGCCGAAGAAGCCGTGGATGCTCTGGTCGAAGCCGCGACGGCCACGTCGGTGGGGCCGGTGGCGAGGCGGGTGGTGGCGTTGCAGATCGATGTGCCTGAAAGCACCTAG	MSKQPRRKLRPTMADVAREAGVSLSTVDRVLNLRADVRADTAQRIAAAAGRLGFHAKGVIEQRVLNDRPTLRLGFLLQKSGVPFYQGLAHALSNTAATCTRARIRVVIGYLDDLDPVNVAQRILALRDQVDGLGVVAVDHPKVREAVAQLRATGISVVALLSELSSGAGTGYAGLDNRLTGRTAGWFISRLARQPGPAAVMLSSQRFQCQELCELSFRSYLAEQTGEWELLASRLTLEDDEFAYGNTVDLLTAEPDLAGLYVAGGGIAGVLRALRSLQQQQLRLPVVVCHDLTPLTREALKTGLVQAVLSHPVTTLAEEAVDALVEAATATSVGPVARRVVALQIDVPEST	PGPT0017992_3118	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
D1-36_02429	933			hypothetical protein	ATGCAAATCGAAAATCTAAGGCGCTTTCTCGACGCGGGAACCACCTTTTCCTTTGGTGAATCAGCTACGCCTCATACGGCCAACGACTTTTGGCAATGGGCTTTTTCCAACATGAACGTACCGGTTCTGCGAGGTGTGCTGATCGAATATCTGGTGGCCAGAAAGCTGATCGCCAACAACGATGACATCGTCGGAGATACGGTCAGGACGTTAACTACCTACACGCCTCGCAAAGGTGACCTGACCCGAAGCATCGAGCAGTTCTACCAAGTGCAACCTCATGGTGATGTATTTGATTTGCAGTTGAGCTGGGGCGTGACACTGGAAATCAAGAGCACCGCATCACCGGATACCTGGAGGCTGAACAAGACCTGCCGCTGGAACATTATTGAAGACAAGAATCTCAAGGAAGCGGTCTTTCCCGCTCAGTTCTATATCCTGGCGCAAATGGACTCCCAGGTGAATTTCACCGACAGCGCACTGGATTTGGGTTCAATCAAATTCCATGTGCGTACGGGAGAAGAGATGGATACGCTCGCCGCCAAGTATCAATCGCTGGGGTTCACCAAGTTCGTAGGCGAGGTGCCCAACCAGCGTACCTGTCAATATGATGAACTGCCCGTTGTGTTATCTGAATTGCAATCAAAACGTCTCGCCCGGGTCCGGAAAAAACTGCTGCCGGACTGGAAGCTTGAACCCCTCGCCCGCGCAGGAAACTTCATGCCGTTGGCCGTTGAAATGGCTGGCTATGTCGAAGCGGGGTGGTATGAGGAGGTTCAAGTGCAAGGCAAATGGACGGCCGTGCGGATCGCACCGATTGCGTCGCCGTGGTTGCCGGACGAAACACCAGGCTGGCGGGATTGGGAGGCAGCGGGTTTTGCTTACGTTCCGGAGATTGTTGCGGTAATCGAACCGGAAGATGCGACTGCCTGA	MQIENLRRFLDAGTTFSFGESATPHTANDFWQWAFSNMNVPVLRGVLIEYLVARKLIANNDDIVGDTVRTLTTYTPRKGDLTRSIEQFYQVQPHGDVFDLQLSWGVTLEIKSTASPDTWRLNKTCRWNIIEDKNLKEAVFPAQFYILAQMDSQVNFTDSALDLGSIKFHVRTGEEMDTLAAKYQSLGFTKFVGEVPNQRTCQYDELPVVLSELQSKRLARVRKKLLPDWKLEPLARAGNFMPLAVEMAGYVEAGWYEEVQVQGKWTAVRIAPIASPWLPDETPGWRDWEAAGFAYVPEIVAVIEPEDATA				NA	NA	NA	NA	NA
D1-36_02430	342	nemA_2	COG1902	N-ethylmaleimide reductase	ATGCTCAGCCGTTATGGCTTGGCGTACCTGCACATCGTGGGGCGGCGAAGGACCGTTCGATTTCCTCGAACTCAGCGCCGCTTCGGCGGGCCCTATATCGCCAACGGCGGCTACAGCGTCGAACGCGCTGGCACGGCCATCAGTGAGGGCACCGCCGACGTGGTGTCATTTGGAACACCGTTCCTGGCACACCTGGATCTGGTGGAGCGCTTCCGATTGGGTGAGGCGTTGAACGCGGCCGATCCGGCCACGTTCTATCAGGGCGAGGCGCAGGGTTATACGGATTTATCCGACACTGACCGGGCATCAAGGGCAACAGTAAGAACCAAAGGTCATGGCTGA	MLSRYGLAYLHIVGRRRTVRFPRTQRRFGGPYIANGGYSVERAGTAISEGTADVVSFGTPFLAHLDLVERFRLGEALNAADPATFYQGEAQGYTDLSDTDRASRATVRTKGHG	PGPT0005930_2216	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_TOLULENE|DERIVATE_DEGRADATION	XENOBIOTIC_NITROTOLULENE_DEGRADATION,PGPT0005930-nemA-K10680	NA	NA
D1-36_02431	1305			hypothetical protein	ATGCCCGTTGAAACCCTACGCATCGATACGCTTGTAATAGGCGCCGGCCAGGCCGGCGTCGCCATGAGTGAACATTTGAGCCGCCAAGGCGTGCCGCATCTGGTGGTGGAGCGCGACCGCATCGCCGAGGCCTGGCGCACGGCGCGCTGGGACTCGCTGGTCGCCAACGGCCCGGCCTGGCATGACCGCTTTCCTGGGCTGGAATTCGACGGCCTGGATCCCGATGCGTTCGCCTCCAAGGACCAGGTTGCCGAGTACTTCGAAGCCTACGCCCGCAAGTTCAACGCGCCGATCCGCACGGGTGTGGAAGTGCGCAAGGTCGAGCGCACTGTCGGTCGCCCAGGTTTTACTATTGATACCTCCGACGGTGTGATCGAAGCCACTAACGTGGTGGTCGCCACCGGGCCCTTCCAACGTCCCGTCATCCCGCCCATCGCGCCGCAGATGCCTGCGGTCACCCAGATTCACTCGGCGCAATACCGCAACCCCGGGCAGTTGGCCGAAGGCGCCGTGCTCGTGGTGGGAGCGGGGTCGTCGGGGGTGCAGATCGCCGATGAATTGCAGCGGGCCGGCAAGCAGGTCTACCTCTCTGTCGGTGCCCATGATCGTCCGCCACGCGCCTATCGCAATCGGGATTTCTGCTGGTGGCTCGGGGTGCTGGGCGAGTGGGACGCCGAGGCGGTCAAGCCGGGCAAGGAGCACGTGACCATCGCTGTGAGTGGCGCCCGGGGCGGCCACACCGTGGATTTCCGCCGGCTGGCCCACGAGGGCATCACGCTGGTGGGCCTGACCCGAGCGTTCAACGGCCACGTAGTGAGTTTCGAATCCAACCTTGCCGAAAACGTCGCCCGTGGCGATGAAAACTACCTGGCGTTGCTCGACGCCGCCGATGCCTATATCGAGCGCAATGGCCTGGACCTGCCGCCCGAGCCCGAGGCGCGCCGGCTATTGCCCGATCCTGAATGCATGACCCATCCGATCCTTGAGCTGGACCTGGTCGAGGCGGGTGTCAGCACCATCATCTGGGCCACCGGGTACTCGGTGGATTACAGCTGGCTGAACGTCGATGCATTCAAAGCCGATGGCAAGCCTCGGCATCAGCGTGGGGTCTGCAGCGAACCTGGCCTCTATTTTGTCGGCCTGCCTTGGCTGTCGCGCCGGGGGTCGGCGTTCATCTGGGGCGTGTGGCACGACGCCCGGCATATCACCGACCACATCGTCAAACAGCGCACGTATCTCGACTACCGCGATGCATCCCAGCGCATTTCGCAACCTTTGAAAACCAGCCTGACGGGAGTTCGTTGA	MPVETLRIDTLVIGAGQAGVAMSEHLSRQGVPHLVVERDRIAEAWRTARWDSLVANGPAWHDRFPGLEFDGLDPDAFASKDQVAEYFEAYARKFNAPIRTGVEVRKVERTVGRPGFTIDTSDGVIEATNVVVATGPFQRPVIPPIAPQMPAVTQIHSAQYRNPGQLAEGAVLVVGAGSSGVQIADELQRAGKQVYLSVGAHDRPPRAYRNRDFCWWLGVLGEWDAEAVKPGKEHVTIAVSGARGGHTVDFRRLAHEGITLVGLTRAFNGHVVSFESNLAENVARGDENYLALLDAADAYIERNGLDLPPEPEARRLLPDPECMTHPILELDLVEAGVSTIIWATGYSVDYSWLNVDAFKADGKPRHQRGVCSEPGLYFVGLPWLSRRGSAFIWGVWHDARHITDHIVKQRTYLDYRDASQRISQPLKTSLTGVR	PGPT0013865_455	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013865-czcO|noxC|yrdP|trkA|hapE-K07222	NA	NA
D1-36_02432	411			hypothetical protein	ATGCCTACTCACACTCGCATCCGCATGTTCAACACCAAGGACACCTATCCCAACCAGACCCTGGACAACGACCTGTGCCAGGCCGTGCGCGCGGGCAATACCGTTTACGTCCGTGGGCAGGTCGGCACCGATTTCAACGGCCAGCTGGTGGGCCTCGGCGATCCGCGGGCCCAGGCCGAACAGGCCATGCGCAACGTCAAGCAACTGCTGGAAGAAGCCGGCAGTGACCTGAGCCACATCGTCAAGACCACCACCTACCTGATCGACCCGCGCTACCGCGAGCCGGTGTACCAGGAGGTCGGCAAATGGCTCAAGGGCGTGTTCCCGATTTCCACCGGGCTGGTGGTCAGTGCCCTCGGCCAGCCGCAGTGGCTGATGGAAATCGATGTGATCGCGGTCATCCCCGAATAA	MPTHTRIRMFNTKDTYPNQTLDNDLCQAVRAGNTVYVRGQVGTDFNGQLVGLGDPRAQAEQAMRNVKQLLEEAGSDLSHIVKTTTYLIDPRYREPVYQEVGKWLKGVFPISTGLVVSALGQPQWLMEIDVIAVIPE	PGPT0020030_989	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020030-ridA|tdcF-K09022	NA	NA
D1-36_02433	675			hypothetical protein	ATGACGTTTTCCATCGTCGGACGCTGCGCCGAAACCGGCCAGTTGGGCATCGCCATCAGCTCGTCGAGCATTGCCGTCGGCGCCCGTTGCCCCTGGCTGCGGGCAGGGGTTGGCGCGGTGTCGAGCCAGAACATCACATTGCCTGCGCTGGGCCCGCAGATCCTCGACGAATTGGCCGCCGGTTCGGTGGCCCAAGAGGCGCTGGACCGTGCCCTGGCACGCAACGGCTACAGCGAGTATCGCCAGGTGGCCGTGGTGGATGCCCAGGGGCGCACGGCGGTTTTCAGCGGTCGCCACGCGTTGGGCGTCCATGGCGCCGGGGTCGGCGAACAGTGTGTGGCGGCCGGCAACCTGCTGGCGGGCGACGGGGTCATTGCCGCAATGGTCACGGCATTCGAACAGGGTGAGGGCAGCCTCGCGTCCCGCCTGTTGAGCGCGTTGCAGGCGGGCCAGGCCGCAGGCGGAGAAGCCGGGGCGGTGCATTCGGCGGCGTTGTCGGTGGTGGATGACCTGACCTGGCCAATCGTCGATCTACGGGTCGATTGGGCGGATGAAAATCCCATCGGCGAACTGGAAAAACTCTGGCTCGCCTATCAGCCGCAGTTGCAGGACTACCTCACTCGCGCCCTCGATCCAACCCAGGCGCCCAGCTACGGGGTGCCGGGCGATGAGTGA	MTFSIVGRCAETGQLGIAISSSSIAVGARCPWLRAGVGAVSSQNITLPALGPQILDELAAGSVAQEALDRALARNGYSEYRQVAVVDAQGRTAVFSGRHALGVHGAGVGEQCVAAGNLLAGDGVIAAMVTAFEQGEGSLASRLLSALQAGQAAGGEAGAVHSAALSVVDDLTWPIVDLRVDWADENPIGELEKLWLAYQPQLQDYLTRALDPTQAPSYGVPGDE				NA	NA	NA	NA	NA
D1-36_02434	1170	argE_1	COG0624	Acetylornithine deacetylase	ATGAGTGAGTTGCGCAGCCGTGCATTACTCGCCGAGCTGGTGGGCTTTGCCACGGTCAGCCGCGATTCGAACCTGGCGTTGATCGAGTTCGTTCGCGATTACCTGCACGGCCTGGGCGTGACCAGCGAGCTGATCTACAACACGGAACGGACCAAGGCCAACCTGCTGGCGAGCATCGGCCCGTCGGTGCCGGGCGGCGTGGTGTTGTCCGGGCACACTGATGTAGTGCCGGTGGACGGGCAAGCCTGGACCGCGGAGCCGTTCCGCCTTAGCGAGCGGGACGGCAATTTGTTCGGACGCGGTACGGCGGACATGAAAGGCTACCTGGCCTCGGTGCTGGCTGCGGTGCCGACATTCCTGTCCAGCCCGTTGAAGCGTCCTGTACACCTGGCGTTCTCTTATGACGAAGAAATCGGTTGCCTGGGCGTGCGCGGCCTGCTGGAAGTCCTGCCGCAACGCGTCCCGCAACCGGCCTTGTGCCTGATCGGCGAGCCCACCGAGCTGCGACCGGTGTTGGGCCACAAGGGCAAGTTGGCGATGCGTTGCCACGTCAAGGGCGCGCCTTGCCATTCCGCCTATGCGCCTTACGGGGTCAATGCCATCGAACAGGCGGCGCGCTTGATCGGCCATCTGGGTGAGATCGGTGCGGAGCTGGCCGAGCCCTCACGACACGATCCGCGTTTCGACCCGGCGTATTCGACCGTACAGGTCGGCGTGATCCAGGGCGGCACGGCATTGAACATTGTCCCGGCCGATTGCCGCTTCGATTTCGAGGTGCGCGCCTTGCCGGACTTCGCCCCGCAGGCAGTGGTCGAGCAGTTGCGCGATTACGCCGAACAGACGCTGCTGCCCAGGATGAAGGCAATAAACGCCGACACCGCCATTCGTTTCGAACCCTTGTCCGCTTACCCGGGCCTGGCGACCTCGCCGCACAGCGCGGCCGCGCGCCTGGTGGCCCGGCTGTGCGGCAACGACGGTTTCGGCACCGTGGCGTTCGGCACCGAGGGCGGGCTGTTCCACCAGGCCGGCATCCCAACGGTGGTGTGCGGCCCCGGCAGCATGGACCAAGGCCACAAACCCGACGAATACGTGAGCGTCGAGCAAATGGCTGCCTGCGATCGCTTGATGGACCGCCTGGCGGTTTACCTCAGCGAACCCAATGACGTTTGA	MSELRSRALLAELVGFATVSRDSNLALIEFVRDYLHGLGVTSELIYNTERTKANLLASIGPSVPGGVVLSGHTDVVPVDGQAWTAEPFRLSERDGNLFGRGTADMKGYLASVLAAVPTFLSSPLKRPVHLAFSYDEEIGCLGVRGLLEVLPQRVPQPALCLIGEPTELRPVLGHKGKLAMRCHVKGAPCHSAYAPYGVNAIEQAARLIGHLGEIGAELAEPSRHDPRFDPAYSTVQVGVIQGGTALNIVPADCRFDFEVRALPDFAPQAVVEQLRDYAEQTLLPRMKAINADTAIRFEPLSAYPGLATSPHSAAARLVARLCGNDGFGTVAFGTEGGLFHQAGIPTVVCGPGSMDQGHKPDEYVSVEQMAACDRLMDRLAVYLSEPNDV	PGPT0014254_1675	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014254-argE-K01438	NA	NA
D1-36_02435	1494	puuC_1	COG1012	NADP/NAD-dependent aldehyde dehydrogenase PuuC	GTGAACGAATTCAATGATTGGAAGGCGCGTGCCGCTCAAGTGCGCCTGCGCGACAGCGCCCTGATCGACGGCGAGCCCCACGAAGCCCTCGATGGCGCCCGATTCGAAGTGATCAACCCCGCCAACGGCGTGTTGCTCGCCAATGTCGTGGCCTGCGCTGAACCGGAAGTGGACCTTGCCGTGAAAAGCGCACGCATGGCATTCGAGCAGGGCCCTTGGGCGCGCATGGCGCCCAGCGAGCGCAAGGCCGTGTTGTTGCGTTTGTCTCAGTTGATGCTGGCTCATCGCGAGGAACTGGCGCTGCTGGATTGCTTGAGCATGGGCAAACCGGTCATGGATGCCTGGAACATCGACGTGCCGGGTGCCGCCCATGTTTTTGCCTGGTATGGCGAAAGCCTCGACAAACTCTACGACCAGGTCGCGCCCTCGGCGGCGAACGTCCTCGCCACGATTACCCGCGTTCCGCTCGGCGTGATTGCGGCGGTGGTGCCGTGGAATTTTCCGTTGGACATGGCGGCCTGGAAAGTCGCGCCAGCGTTGGCGGCGGGCAACAGTGTCGTGCTCAAGCCGGCGGAGCAATCGCCGTTTTCGGCCCTGCGCCTGGCTGAACTGGCCCTCGAGGCAGGCGTGCCACCGGGTGTGCTCAACGTCGTGCCGGGCCTGGGCGAGCAGGCCGGGCGGGCGCTCGGCTTGCACCCGGACGTCGATTCGCTGGTGTTCACCGGATCGACCGAGGTCGGTAAATATTTCATGCAGTACTCGGCCCGATCGAACCTCAAGCAGGTCTGGCTGGAGTGCGGTGGCAAGAGCCCGAACCTGGTGTTTGCCGATTGTCAGGACCTCGACCTGGCGGCGCGCAAAGCCGCGTTCGGAATCTTCTTCAACCAAGGCGAAGTGTGCTCGGCTAACTCGCGGTTGTTGGTCCAACGGTCGATTCACGACGCGTTCGTAGAACGCCTGGTGGAACAGGCTCGCCTGTGGCAACCCGGCGATCCGTTGGACCCTGCGAGCCCTGCCGGCGCTATCGTCGATGCGCGTCAGACCGCGAGGGTCATGCAATACATCCAGCAGGCCAAGGCTGAAGGCGCACGCCTGGTGTGTGGGGGACGCCAACTGAACATTAATGGGTCGAGCAATTTCATCGAACCGACGATCTTCACCGACGTGCGCCCAACCATGCAATTGGCCCATGAAGAGGTGTTCGGGCCGGTGCTGGCAATCAGCGCGTTCGATGACGAAGAGCAGGCCATCGCCATGGCCAACGAACACATCTACGGCCTGGCGGCCTCCGTGTGGACCGACGACCTGAACCGGGCCCACCGTGTGGCGCGGCGTTTGAACGCGGGCACGGTGTCGGTCAATACCGTGGACGCCCTCGACGTCACCGTGCCCTTTGGCGGCGGCAAGCAATCGGGCTTCGGACGCGATCTGTCGCTGCACGCCTTCGACAAATACACACAACTGAAGACCACCTGGATCCAGCTGCGCAGCTGA	MNEFNDWKARAAQVRLRDSALIDGEPHEALDGARFEVINPANGVLLANVVACAEPEVDLAVKSARMAFEQGPWARMAPSERKAVLLRLSQLMLAHREELALLDCLSMGKPVMDAWNIDVPGAAHVFAWYGESLDKLYDQVAPSAANVLATITRVPLGVIAAVVPWNFPLDMAAWKVAPALAAGNSVVLKPAEQSPFSALRLAELALEAGVPPGVLNVVPGLGEQAGRALGLHPDVDSLVFTGSTEVGKYFMQYSARSNLKQVWLECGGKSPNLVFADCQDLDLAARKAAFGIFFNQGEVCSANSRLLVQRSIHDAFVERLVEQARLWQPGDPLDPASPAGAIVDARQTARVMQYIQQAKAEGARLVCGGRQLNINGSSNFIEPTIFTDVRPTMQLAHEEVFGPVLAISAFDDEEQAIAMANEHIYGLAASVWTDDLNRAHRVARRLNAGTVSVNTVDALDVTVPFGGGKQSGFGRDLSLHAFDKYTQLKTTWIQLRS	PGPT0007638_320	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINE_USAGE	PLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007638-puuC|ordL-K09472	NA	NA
D1-36_02436	1443	potE_2		Putrescine transporter PotE	ATGGACAGTTCCTCAAGCGTGCCGCTACAAACCGTTACGCCATCGCAGGTCGGCCCCCGCAAACGGCTGGGCCTGAGCGCCTTGTTGGCCGTCGCCGTGGGCCTGGTGGTTTCCCAGGGCGTCATGGTGCTGATGCTGCAAGGGGCCGGGATCGCCGGGCTGGGCTTCGTGATTCCGTTGGCCTTGGCCTGGCTGTTGGCCCTGAGCTACGCCTGTTCGTTTTCCGAACTGGCCTTGATGATTCCGCGCGCAGGCAGCCTGAGCAGTTACACCGAAGTCGCCATCGGCCAGTTCCCGGCGATCCTGGCGACGTTTTCCGGTTATGTGGTGGTGGCGATGTTTGCCCTGTCGGCGGAACTGCTGCTGATGGAATTCATCATCGACAAGGTCTACCCGCACTCGATGCCGCCGTTGAGTGTCGCGGTTGGCGTGCTGTGCCTGTTCACGGTGCTCAACCTGTTCAACATCGACATTTTCTCTCGGCTTCAAACGGTGTTGGCCTTGGTCATGACGGTGATGCTGTTGGTCATGGGCCTCGGCGCCTTGGCGAGCGATGGGGCAGGCAGCGTATCGACGTTGGTGGCGGCTACGGGCTGGAACCCCATGGGGCTCGGTGTCATTGCCCTGACCGCGATGGCGGTGTGGGGATTTGTCGGGGCCGAATTCGTCTGCCCACTGGTCGAGGAAACCCGCCGTCCGGAACGCAACATCCCGGCCTCGATGATGATTGGCCTGACGGTGATCTTCGTCATTATCTGCCTGTATTGCCTGGGCGCTTTGCTCACCGTTCCCCAGGCTGAGCTCGCCAGCAATGGCTTGCCGCACTATCTGTTCGCGACTTCGGTGTTCGGCGAGGCCGGGCAGGTATTCCTGGTGACCGCCGCCATCACCGCAACGTGCAGTACGCTGAACAGTTCCCTCGCTGCCATACCGCGCATGTTGCTGGGCATGGCCCGTAGCGGCCAGGCGTTCGGCATCTTCAAGCGCCAGGGCAAGCGCAGCGGTGCTCCTTGGGTGGCGGTGCTGTTCGTGGCGCTGGTTACCGGCTTGCCGCTGCTGCTGATGCACGACACGCCCGACGCCATCAACCTTTTGCTTCTGGCGGCGGCCCTGGCCTGGCTGCTGGCCTACGTCATCACTCACATCAACGTGATTGCCCTGCGGCGCCGCTATCCCCATGTCCACCGGCCGTTTCGCACGCCGTTCTACCCGGTGCCGCAGCTGTTCGGCATTGCCGGCATGCTCTTTGCCATCTGGCACGTGTCCCCCAGCCCTGAAATGACTGTTCCGATCTTCGCCAGCGCTGGCGCGGTGCTGGGCATCGTTTCGCTGATCGCGCTGGTGTGGGTCAAGTGCGTGATGGGCAAACCGCTGTTCAAGCCCGAGCCGCTGGCGTCTGTCCAGGGCACCGAAACCGACAAGATCAACAAAGGAGACCTTTAA	MDSSSSVPLQTVTPSQVGPRKRLGLSALLAVAVGLVVSQGVMVLMLQGAGIAGLGFVIPLALAWLLALSYACSFSELALMIPRAGSLSSYTEVAIGQFPAILATFSGYVVVAMFALSAELLLMEFIIDKVYPHSMPPLSVAVGVLCLFTVLNLFNIDIFSRLQTVLALVMTVMLLVMGLGALASDGAGSVSTLVAATGWNPMGLGVIALTAMAVWGFVGAEFVCPLVEETRRPERNIPASMMIGLTVIFVIICLYCLGALLTVPQAELASNGLPHYLFATSVFGEAGQVFLVTAAITATCSTLNSSLAAIPRMLLGMARSGQAFGIFKRQGKRSGAPWVAVLFVALVTGLPLLLMHDTPDAINLLLLAAALAWLLAYVITHINVIALRRRYPHVHRPFRTPFYPVPQLFGIAGMLFAIWHVSPSPEMTVPIFASAGAVLGIVSLIALVWVKCVMGKPLFKPEPLASVQGTETDKINKGDL				NA	NA	NA	NA	NA
D1-36_02437	1383	spuC_2	COG0161	Putrescine--pyruvate aminotransferase	ATGAACGCGCCATTGAACCCGAACCGCAGCACCCGCGAATATCAGGCCCTGGATGCGGCGCACCACATCCATGCGTTTCTCGACCAGAAAGCCCTCAATGCCGAAGGGCCACGGGTCATCGTCCGTGGCGAAGGGCTGGCGCTCTGGGACAACGATGGCAAGCGTTATCTGGACGGCATGTCGGGCCTTTGGTGCACCAACCTGGGCTACGGGCGCCAGGACCTGGCGGCAGCGGCCAGCCGTCAGCTGGAGCAATTGCCGTACTACAACATGTTCTTCCACACCACCCATCCGGCCGTGGTGGAGCTGTCCGAGCTGCTGTTCAGCCTGCTGCCGGATCATTACAGCCACGCCATCTACACCAACTCCGGCTCCGAGGCCAACGAGGTGCTGATTCGTACCGTGCGCCGCTATTGGCAGATCCTCGGCAAGGCGCAGAAGAAAATCATGATCGGTCGCTGGAACGGCTATCACGGCTCGACCCTGGGCGCGTCGGCGCTGGGCGGCATGAAGTTCATGCACGAAATGGGCGGGGTGATCCCGGATGTCGCGCACATCGACGAGCCGTACTGGTTCGCCCACGAAGGTGACCTGACCCCAGCCGAGTTTGGCCTGCGGGCGGCCCGGCAGTTGGAAGAGAAAATCCTCGAACTGGGCGCCGAGAATGTCGCGGCGTTCGTGGCCGAACCCTTCCAGGGGGCCGGCGGCATGATTTTTCCGCCAGAGAGCTACTGGCCGGAAATCCAACGCATTTGCCGGCAGTACGACGTATTGCTGTGCGCCGACGAAGTCATCGGTGGCTTCGGTCGCACCGGCGAATGGTTCGCCCATGAGTATTTCGGCTTCGAGCCCGACACATTGTCCATCGCCAAGGGCCTGACCAGCGGCTACATCCCCATGGGTGGCCTGGTCCTGTCCAAACGCATGGCCGAAGTGTTGGTGGAGCAGGGCGGCGTGTTCGCCCACGGCCTGACGTATTCCGGGCACCCGGTGGCGGCCGCGGTGGCGATAGCCAACCTCAAGGCCCTGCGCGACGAGGGCATCGTGACACGGGTCAAGGACGACACCGGGCCGTATCTGCAACGGTGCCTGCGGGAAACGTTCGACGGGCACCCGCTGATCGGCGAGATCCAGGGCGCCGGCATGGTCGCGGCCCTGCAACTGGCCGAAGACAGGAACAGCCGCAAGCGCTTTGCCAACGAAAACGAAATGGCCTGGCAATGCCGCACCTTCGGTTTCGAGGAGGGCCTGATCATTCGCTCCACCTTGGGCCGGATGATCATGGCCCCGGCGCTCGTGGCCAGCCATGCCGATATCGACGAACTGGTCGACAAGACCCGTATTGCTGTAGACCGCACCGCCCGCGCTTACGGTCGCCTCTGA	MNAPLNPNRSTREYQALDAAHHIHAFLDQKALNAEGPRVIVRGEGLALWDNDGKRYLDGMSGLWCTNLGYGRQDLAAAASRQLEQLPYYNMFFHTTHPAVVELSELLFSLLPDHYSHAIYTNSGSEANEVLIRTVRRYWQILGKAQKKIMIGRWNGYHGSTLGASALGGMKFMHEMGGVIPDVAHIDEPYWFAHEGDLTPAEFGLRAARQLEEKILELGAENVAAFVAEPFQGAGGMIFPPESYWPEIQRICRQYDVLLCADEVIGGFGRTGEWFAHEYFGFEPDTLSIAKGLTSGYIPMGGLVLSKRMAEVLVEQGGVFAHGLTYSGHPVAAAVAIANLKALRDEGIVTRVKDDTGPYLQRCLRETFDGHPLIGEIQGAGMVAALQLAEDRNSRKRFANENEMAWQCRTFGFEEGLIIRSTLGRMIMAPALVASHADIDELVDKTRIAVDRTARAYGRL	PGPT0007865_408	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007865-spuC-K12256	NA	NA
D1-36_02438	1041			hypothetical protein	ATGTCCAGATCCTTGCGTTACAACATGGCGTGTGCCCTGGCGTTGCTGAGTACCAGCGTCCTGGCCGCGCCACAAAGCCTGACCGTGATTTCATTCGGCGGCGCCACCAAGTTGGCCCAGGACAAGGCCTACTTCCAACCCTTCAACGCCAGCGGTGCGGGAAACATCGTGGCCGGCGAGTACAACGGCGAGCTGTCGAAGATCAAGGCGATGGTCGCGGCCGGGCATACCAGTTGGGATGTGGTCGAAGTGGAGAGCCCCGAACTGCTGCGTGGTTGCGAGGAAGGCTTGTTCGAAAGACTCGACCCGGCGGCCATAGGGAAGCCTGCGGATTTCGTTCCGGGAGCGCTCACTGAGTGCGGCGTGGCCACGTACGTCTGGTCGATGGTCCTGGCCTATGACCAGAGCAAGCTCGCCAAGGCACCCACCTCCTGGGCCGATTTCTGGAACGTGACCGAATACCCGGGCAAGCGTGGGTTGCGCAAGGGGGCCAAGTACACCCTGGAAATCGCCTTGCTGGCGGACGGCGTCAAGACAGAAGATGTGTACAAGGTCTTGAATACGCCGGAAGGCGTGGCGCGGGCATTTGCCAAGCTGGACCAGATCAAGCCGAATATCCAGTGGTGGGAGGCGGGCGCCCAGCCGGCGCAATGGCTGGTGGCCGGGGATGTGGCGATGAGCGCAGCCTACAACGGTCGCATCGCCTCGGCGCAGAAAGAGGGCATGAAACTGAGCATCGTCTGGCCGCAAAGCCTGTATGACCCGGAATATTGGGCGGTGGTGAAAGGCACGCCAAACAAGGCCTTGGCGGAGAAATTCATTGCCTTCGCCAGCCAGCCGCAGACCCAGAAAGTCTTCTCGGAGAACATCCCCTACGGACCGGTGCATCGCCAGACACTGGGCCTGCTGCCCGCTGAAGTCCGCGAGCAACTGCCCACCGCCGAGGCCAACCTGGCACAGGCGCAAGCGGTGGACGCGGAGTTCTGGGTCGACCATGGCGAAGAGCTGGAACAGCGCTTCAACGCCTGGGCGGCTCGCTAG	MSRSLRYNMACALALLSTSVLAAPQSLTVISFGGATKLAQDKAYFQPFNASGAGNIVAGEYNGELSKIKAMVAAGHTSWDVVEVESPELLRGCEEGLFERLDPAAIGKPADFVPGALTECGVATYVWSMVLAYDQSKLAKAPTSWADFWNVTEYPGKRGLRKGAKYTLEIALLADGVKTEDVYKVLNTPEGVARAFAKLDQIKPNIQWWEAGAQPAQWLVAGDVAMSAAYNGRIASAQKEGMKLSIVWPQSLYDPEYWAVVKGTPNKALAEKFIAFASQPQTQKVFSENIPYGPVHRQTLGLLPAEVREQLPTAEANLAQAQAVDAEFWVDHGEELEQRFNAWAAR	PGPT0007855_4051	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007855-ABC_SP_S|ydcS-K02055	NA	NA
D1-36_02439	912	cysB_1		HTH-type transcriptional regulator CysB	GTGGCGTCCTACTCCCTGCGTCAGTTGAAGTACTTTGTCATCACCGTGGAGTGTGGCAGCGTCGCCGAAGCCTCCCGCAAGCTGTATATCGCCCAACCGTCGATTGCCACGGCGGTCAAGGGCCTGGAGGACAGTTTCGGCGTGCAGTTGTTGATCCGTCATCACGCCCAGGGCGTCTCGCTGACGCCGGCCGGTGCGCGTTTCTATCGAAAGGCCCAGGAGCTGCTGCGCATGGCCCGGGAATTCGAACAGAACGCGTTGGCCGACAATGACGTCGTCAGCGGGCAGATCGACATCGGCTGCTTCGAGACCGTCGCCCCGCTCTACCTGCCACGGCTGATCGCCGGTTTTCGCGAGCGTTTTCCTGGCGTGGAGATCCGCGTGCAGGACGGCGAACAGCAGGAGTTGGTTCAAGGCCTGACCGGTGGACGTTTCGACCTGGCGATTTTTTATGAGCACGATCTCGACAGCACGATCGAAACCGAAGCGCTCACGGCACCGCAACGGCCGTACGCACTGCTGCCGGCCGGACACCGCTTTGCCAATCAATCCCAGGTATCGCTTCGCGACCTGGCGCTTGAGCCGATGATCCTCTTGGATGTGCAGCCCAGCCGCACCTATTTCGTCAGTATTTTCGAGGAGCTGGGCCTGACGCCAAACATCGTCTTCAGCTCGCCCTCCATCGAAATGGTGCGCGGCATGGTCGGCCAGGGATTTGGTTTCGCCGTGTTGGTGACCCGCCCGCAATCGAGCTGCACCTACGACGGACAGGACGTGGTGTGCGTCAGCATCGCCGAGGACGTAACCGGTTCGGCCCTGGTGGCCGGCTGGCTCAAGCGCGCGCACCTGACCAAGCCGGCGCAGCTGTTCGTGGATTACTGCAAGGAGCAGTTCGGGGAATGGCTGGCGTAG	MASYSLRQLKYFVITVECGSVAEASRKLYIAQPSIATAVKGLEDSFGVQLLIRHHAQGVSLTPAGARFYRKAQELLRMAREFEQNALADNDVVSGQIDIGCFETVAPLYLPRLIAGFRERFPGVEIRVQDGEQQELVQGLTGGRFDLAIFYEHDLDSTIETEALTAPQRPYALLPAGHRFANQSQVSLRDLALEPMILLDVQPSRTYFVSIFEELGLTPNIVFSSPSIEMVRGMVGQGFGFAVLVTRPQSSCTYDGQDVVCVSIAEDVTGSALVAGWLKRAHLTKPAQLFVDYCKEQFGEWLA				NA	NA	NA	NA	NA
D1-36_02440	1203		COG1252	NADH dehydrogenase-like protein	ATGAAACAGCAAATCTTGATCGTCGGCGCCGGTTTTGGCGGTGTATGGAGCGCACTCAGCGCGGCTCGCCTGCTCGACCAGCATGATCGCAATGACGTACAGATCAGCGTCCTGGCGCCCCAGGCCGAGTTGCGCATCCGCCCGCGTTTCTACGAACCCGACGTCCACACCATGATGGCGCCGTTGGCCGGGTTGTTCGACGCGGTCGGGGTAAATTTCGTCCAAGGCTTTGCCGAGAGCATCGACGTCAACCGCAAGCAGGTCGGCTATCGCGACGTGTTTGGCGGCCAAGGCACGCTGGGCTATGACCGGCTGGTACTGGCAGCGGGCAGCAAGCTGGTTCGCCCCGACCTTGAGGGCATGCTGGAGCATGCGTTCGACGTCGATGAGATCGAACAGGCGACGCGCCTCGAAGCCCACCTGAAATCCCTCGCCACCCTGCCCGACAGCCCCGCTCGCAACACCGTGGTGGTGGCCGGCGGCGGGTTTACCGGGATCGAAACCGCCACTGAGATGCCCGCCCGCCTGCGCGCCGTCCTGGGCAGCGACGCCAATATCCGCGTGATCGTGGTCGACCGGGGGCCGACAATCGGTGCGGCGCTGGGCGAAGGAATCAGCCCTTCGATCATCGAAGCGTCCGACCACCTTGGCATCGAGTGGATGCTCAATGCCTCGGTCGAATCGGTGGATGCCGGCGGCGTCACGCTGTCGGACGGCCAGCGCATCGAATCCAGGACCGTCATCTGGACCGTCGGTTTCCGCGCCAGCCCGCTGACCGAACAAGTGCCCGGCACCCACGATCGCCAGGGCCGGCTGCATGTCGACGGGAACCTGAAGGTGCTCGGGCAGAGCGATATCTTCGCCACCGGCGACGTGGCCTACGCCGCCACCGACGACCTGGGCAATTACGCGGCGATGTCCTGCCAGCACGCCATCGCCCTGGGCCGCTACGCGGGCAACAACGTGGCAGCCGATCTGCTGGGCGTCGCGCCGATGACCTACAGCCAACCCAAGTACGTGACGTGCCTGGACCTGGGCGCCTGGGGCGCGGTGTACACCGAAGGTTGGGATCGCCAGGTCAAGTTGGTCGGACAAGAAGCGAAGGACCTCAAGACCCAGATCAACTCTGTGTGGATCTACCCACCCGCCGCCGACCGCGCCACCGCACTGGCTGCCGCGGATCCATTGATCCCTGTCGCCTGA	MKQQILIVGAGFGGVWSALSAARLLDQHDRNDVQISVLAPQAELRIRPRFYEPDVHTMMAPLAGLFDAVGVNFVQGFAESIDVNRKQVGYRDVFGGQGTLGYDRLVLAAGSKLVRPDLEGMLEHAFDVDEIEQATRLEAHLKSLATLPDSPARNTVVVAGGGFTGIETATEMPARLRAVLGSDANIRVIVVDRGPTIGAALGEGISPSIIEASDHLGIEWMLNASVESVDAGGVTLSDGQRIESRTVIWTVGFRASPLTEQVPGTHDRQGRLHVDGNLKVLGQSDIFATGDVAYAATDDLGNYAAMSCQHAIALGRYAGNNVAADLLGVAPMTYSQPKYVTCLDLGAWGAVYTEGWDRQVKLVGQEAKDLKTQINSVWIYPPAADRATALAAADPLIPVA	PGPT0004020_4863	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
D1-36_02441	375	tmoT_2		Response regulator protein TmoT	ATGTCCGACACCGCAATTATTTCAATTATCGATGACGATGAATCGGTTCGAGTTGCATTGGATGGTTTACTGCGCTCCCACGGTTATCGCGTCAAGACTTACCCCAGTGCTCTCGATTTCTTGTCTTCAGCTGGCTATGTGAATACAGCTTGCTTGCTGTCGGACATTCAAATGCCGGGGATGACCGGGATTCAACTGTGCGATGAGCTTCGTGCCCGCGGCATCGAGATTCCGCTTATTTTCATAACGGGCCTGCCTGCCGTACCGCCGCGAACCCGCTCGGGCGGGATGAGCCCGGTGGCGGTTTTTCCCAAGCCGTTTGATTGTGGTGAGTTGATTGCCTGCATTGAATCGGTGATGGGTGGCGAGGGGTGA	MSDTAIISIIDDDESVRVALDGLLRSHGYRVKTYPSALDFLSSAGYVNTACLLSDIQMPGMTGIQLCDELRARGIEIPLIFITGLPAVPPRTRSGGMSPVAVFPKPFDCGELIACIESVMGGEG	PGPT0000145_572	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-REGULATION	NITROGEN_REGULATING_FUNCTIONS,PGPT0000145-fixJ-K14987	NA	NA
D1-36_02442	651	tmoT_3		Response regulator protein TmoT	ATGAACCCAAGCCACACCCCGAACGCTGCCTTCACCGCTGAGCCCATCGTTTACGTGGTCGATGACGATGCGTCGTTACGCCAAGCGCTCCGCAGTCTGCTACGGTCCATCGGCCTGCGGGTCGAGCTGTTCGACTCGGTGGCAGACTTCATGCGCCATCCACGCGCCGACGGGCCCAGTTGCCTGCTACTGGATGTGCGCCTTCGCGGCACCAGCGGCCTCGACTTCCAGCAACAGCTGGCGAGCGCCGACGTTCACCTGCCCATCGTGTTCATGACCGGCCATGGCGATATCGCCATGACGGTAAGGGCCATGAAAGCCGGCGCAGTGGACTTCCTGACCAAGCCGTTTCGTGAACAGGACCTGATCGATGCGGTGTCCACCGCCCACCAGCGCGACCGCCTGCGTCGCGAGGCCGAGCACAGCCAAAAGGCGCTCCAAGACCGCCACGCCAGCCTCACCGCCCGGGAAAGACAAGTGATGCTCCTGGCTGCGTCGGGGTTGATGAACAAACAGATTGCCGGGCAGATCGGCTTGAGCGAAATCACCGTCAAGATTCATCGCGGCCAGGCCATGCGCAAGATGGGCGCGCGCTCGTTTGCCGAGCTGGTGCGCATGGCCCAGGCATTGGACCCGGGGCGCGGTCAGTGA	MNPSHTPNAAFTAEPIVYVVDDDASLRQALRSLLRSIGLRVELFDSVADFMRHPRADGPSCLLLDVRLRGTSGLDFQQQLASADVHLPIVFMTGHGDIAMTVRAMKAGAVDFLTKPFREQDLIDAVSTAHQRDRLRREAEHSQKALQDRHASLTARERQVMLLAASGLMNKQIAGQIGLSEITVKIHRGQAMRKMGARSFAELVRMAQALDPGRGQ	PGPT0015288_16	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULE_REGULATION,PGPT0015288-nodW-NA	NA	NA
D1-36_02443	1176	sasA_10		Adaptive-response sensory-kinase SasA	ATGCGCATCAGCGCCCACCCAGTGGTCAACGCCCTGGGCTGGGCCGTGGGCCTGGTGGTGGCCTGCGGGATTGTCATCATCAACTCCGAAACCCATTCCGACCTGGCGCCGACGCTGCTGTACATCACTTTGCTGCTGATGGCGGCGAACCTGTTTTCCATCAACCTGGTGATCACCGTAGCGCTGATGTGCATGTTTTTGCTGACGGCGATGTTTGCGTACAACGGTGGCTATCACCGCTGGGAGTCCATCACTGGGTTCTTTCGTTGCCTGACGGCCCTGTCCGCCATTGCGTTTCTCGCGTTGCGCAGCAAGCAGGCCGCGGACCGCCTGCGCCACAACCAGGCCTACCTGATCAACGCCCTGATCGCCAGCAAACACGCCGAGCAAGCGTTGTCCCGCGCCCACGCCCAGTTGGCCCACGTCACGCGCCTCACGTCCCTGGGAGAGATGGCCGCCTCGATTGCCCATGAAGTCAACCAGCCGCTGACCGCCATCACCAGCAGCGGCGAGGCCTGTCGTCGCTGGCTCGATCGCCCGGTTCCGGACCTCAAGGAAGCCCTCGACGCGCTGGAGCGGATCGTCACCAATGCCTGTCGCGCCAGCGAAGTCATCAATCGTACACGAGCGATGGCGCGCAAATGCGACCCTCTGCGTCAGCCTGAGCTACTGGACGACATCGTCAACGAGTCGCTGGACCTGGTGCGCCAGCAGTTGGCTCATCACAAGATCAGCCTGAAGGCGAACCTCGCGGCAAAGGCGTGCCAGGTCAACGCCGACCGGGTGCAACTGCAGCAAGTGATCATCAACCTGATCATCAATGCGTGCCAGGCGATGGAAACGATTGACTCGCCCGATCGGATCCTGCGCATACGCACCTGGACGCAGGAGCACGAGGTGCTATTGGAGGTGGCGGACCGCGGTATCGGAATTTCCGACGAGATCCTGCCTTCTTTGTTTACCCCCTTCTTCACCACCAAGGAAAACGGCCTGGGCATCGGGCTTTCCATTTGCCGCTCCATCATCGACTTCCATGACGGCAGGATCTGGGCCGCCAGCGCGGCTGGACAAGGCACCTCGTTCACGTTTTCGTTGCCATTGCTTACCTCTGCCCGCCCCGCCAAGGACGCCGCCCATGAACCCAAGCCACACCCCGAACGCTGCCTTCACCGCTGA	MRISAHPVVNALGWAVGLVVACGIVIINSETHSDLAPTLLYITLLLMAANLFSINLVITVALMCMFLLTAMFAYNGGYHRWESITGFFRCLTALSAIAFLALRSKQAADRLRHNQAYLINALIASKHAEQALSRAHAQLAHVTRLTSLGEMAASIAHEVNQPLTAITSSGEACRRWLDRPVPDLKEALDALERIVTNACRASEVINRTRAMARKCDPLRQPELLDDIVNESLDLVRQQLAHHKISLKANLAAKACQVNADRVQLQQVIINLIINACQAMETIDSPDRILRIRTWTQEHEVLLEVADRGIGISDEILPSLFTPFFTTKENGLGIGLSICRSIIDFHDGRIWAASAAGQGTSFTFSLPLLTSARPAKDAAHEPKPHPERCLHR	PGPT0000140_605	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-REGULATION	NITROGEN_REGULATING_FUNCTIONS,PGPT0000140-fixL-K14986	NA	NA
D1-36_02444	942	leuO		HTH-type transcriptional regulator LeuO	ATGATGAACAGAAATGACCTGCGTCGTGCTGACATCAATCTGCTGGTTGTCTTCGAAACCATGATGCATGAGCGAAATGTCACACGTGTGAGCGAGAAGCTGTTTCTCGGGCAACCGACCATCAGTGCGGCCCTGGCGCGTTTGCGCTTGATGTTCGACGACCCGCTGTTCGTCAGGACCGGGCGGTTGATGGAGCCAACGTCTCGGGCCCGGGAGATTTTTTCCAACCTTTCACCCGCTTTGGACGGCATCGCCGCCGCCTTGAGTCGCTGCCAGGCGTTCGACCCTGGCACCAGCGAGGCAACGTTTCATATAGGCCTTTGCGACGATGTCGAGTACGCGCTGCTGCCGGATTTGCTGCGCCGCCTGCGGGTCGAGGCGCCGGGCACGACGTTGGTGGTGCGTCGCACCGATCAATGGCAGATGTGCCAGTTATTGGTCAGTGGGGAAATTTCCCTCGGTATCAGCCATACCCTGGAACTGCCGGCCAACGCCCGGCGCAAGGCGCTGCGCCCGATCCGGCCGATGCTGCTGCGGGCCGATTCGCGTCCCGGCGAGTTGACCCTGGACGACTTTTGCCGCCGGCCCCACGCCGTGGTTTCATCCATGGGCCACGTCATCGATGATTCGGACCGCGCGTTGAGCCTGGTAGGCCGGCAGCGGCGGGTGGTGCTGACGGTGCCGCAATTCAGCGCATTGCCCGTGTTGTTGGATCGCAGCGACATGATCGCCATCGTGCCCGACTATGTGGCCCGGGCCATGGCGGCAGTCGCAGGCTTGCGGGCGGAGCCGGCGCCGGTCCAATTGCCTGAGCATGAGCTGTCGATGGTCTGGCGAGGTGCCTCCCATGATGATCCAGGCGAGCGCTGGCTGCGTTCTCGTTGCTGCGCGTTCATCGCCGAGCAGGCCCAGTCGGCGCCGCAAGCCCGGCGCGTGGCCTGA	MMNRNDLRRADINLLVVFETMMHERNVTRVSEKLFLGQPTISAALARLRLMFDDPLFVRTGRLMEPTSRAREIFSNLSPALDGIAAALSRCQAFDPGTSEATFHIGLCDDVEYALLPDLLRRLRVEAPGTTLVVRRTDQWQMCQLLVSGEISLGISHTLELPANARRKALRPIRPMLLRADSRPGELTLDDFCRRPHAVVSSMGHVIDDSDRALSLVGRQRRVVLTVPQFSALPVLLDRSDMIAIVPDYVARAMAAVAGLRAEPAPVQLPEHELSMVWRGASHDDPGERWLRSRCCAFIAEQAQSAPQARRVA	PGPT0028130_148	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexEF-OprN,PGPT0028130-mexT-K18297	NA	NA
D1-36_02445	1020	rhaS_5		HTH-type transcriptional activator RhaS	ATGAACGAGATGACCCATGACATTCACATCGCCGCCGAGTCGATGTCCCAACCGCGTGCGTTGGTGTTCCTCGCCTATCCGCAAATGGGCCTTCTGGACCTGACCGGCGCCCAGACCGTGTTCTGGGCCGCCACCAAAGCCATGGCCGAACGCGGCCGGCCGGGCTATCGGATGCACACCGCAAGCCTGGCCGGCGGGCTGATGCAGACCGCTGAAGGCCTGGTCGTCGAGACGGCGTCCCTGCATCAGTTCGACGACGTCATCATCGACACGCTGATCGTGCCCGGTGCCCCGAACATTCGTCAGGCGATGATTGACTGTGTCGAGCTGGTGGACTGGCTGCGCGCGGCCTCCACCAGGGCCCGGCGCACGGCGTCGGTGTGCAGCGGGACCTTCCTCATGGCCCAGGCCGGCTTGCTCGATGGCCGCCGTGCCGCCACGCATTGGGCCATGTGCGAGATGCTCAAGAGCGGTTTCCCATTGATCGAAGTGGACCTGGACGCCATCTTCATCCAACAGGACAAGGTCTGGACCTCCGCGGGGGTAAGCGCCGGCATCGACATGGCCCTGGCGCTGGTGGAGGCCGACTGCGGTCGCGACGTGGCCCTGCAAGTGGCCCGGGAACTGGTGGTGTTTCTCAAGCGGCCCGGTGGACAGGCACAGTTCAGCCAATTGTTGCTGTCCCAGACCCAGGACAGCGCCGGGTTCGATGAATTGCACGCCTGGCTCGCCGAGCACCTGAACGAGGCCGACCTGACCATCGAACGTCTGGCCCGGCAGGCGCGGATGAGCCCGCGCAATTTTGCCCGGGTCTACAAGCGCCAGACCGGACGAACGCCGGCCAAGGCCGTCGAAATGTTCCGCCTCGAAGCCGCGCGAAGGTTGTTGGAGGACTCCGAGCGCAACATCGACCAGATCGCCCGCTCGTGCGGCTTCGGCGACGAGGAACGGATGCGCCATACGTTCCAGCGGCATCTGTCGATCTCACCGCGCGAATATCGCAGCCGGTTTTCCCTTTGA	MNEMTHDIHIAAESMSQPRALVFLAYPQMGLLDLTGAQTVFWAATKAMAERGRPGYRMHTASLAGGLMQTAEGLVVETASLHQFDDVIIDTLIVPGAPNIRQAMIDCVELVDWLRAASTRARRTASVCSGTFLMAQAGLLDGRRAATHWAMCEMLKSGFPLIEVDLDAIFIQQDKVWTSAGVSAGIDMALALVEADCGRDVALQVARELVVFLKRPGGQAQFSQLLLSQTQDSAGFDELHAWLAEHLNEADLTIERLARQARMSPRNFARVYKRQTGRTPAKAVEMFRLEAARRLLEDSERNIDQIARSCGFGDEERMRHTFQRHLSISPREYRSRFSL				NA	NA	NA	NA	NA
D1-36_02446	405			hypothetical protein	ATGAAAACGCTCTATTTGATCGCCGCCCTGAGCCTGCTTCCCGTTGCCCCGCTCTACGCCCACGAAACCGCGCCGTCGGAGAACGTTCAGGTGCTCCAGGAAAAACTGCTCAAAAACCTGCCCGGCAAAAAAGCCATGATGTTGACCGTCGACTATGCACCGGGCCAGTCGTCCATCGCCCACAAGCATGACGGCACCGCCATGGCCTATGTGCTCGAAGGCGCAGTCACGTCCCAGGTCAAGGGCGAGCCGGCCATCACCTACAAGGCTGGCGAGTACTGGTACGAAGCCGCCGGTTCCGAGCATCTGGTCTCCAGGAACGCCAGCGCCACCCAACCGGCAAAGCTTTTGGTGTTCATGGTGATGGGTGAGAACGAAGCGGTGCTGATTCCGCTCAAGCAATGA	MKTLYLIAALSLLPVAPLYAHETAPSENVQVLQEKLLKNLPGKKAMMLTVDYAPGQSSIAHKHDGTAMAYVLEGAVTSQVKGEPAITYKAGEYWYEAAGSEHLVSRNASATQPAKLLVFMVMGENEAVLIPLKQ				NA	NA	NA	NA	NA
D1-36_02447	294			hypothetical protein	ATGTCTCGCCAAGTGATCAATACCGTTCAGGTGCAGGCCGCCGCCGGGCGCTCGGAAGAACTGGGCCGGCAGTTGCAGCAAATCGTCGAAACCCTGCGGGCCTCGCCAGGCTGCGACGCCTATATGGTCGACCGTTGCCCGCAAGACAATGACCGCTGGAACGTCAGCGCCCGCTGGCAATCGGAAGCAGCGATGCAGGCGCATTTCAACTGCCCCGAAGTCCAGGGCTTCATCAGCCTGATCGAAAGCCGCCTGGCTCGCAGCGTGGATTTCAACAGTTTCCCGGTGGTGTGA	MSRQVINTVQVQAAAGRSEELGRQLQQIVETLRASPGCDAYMVDRCPQDNDRWNVSARWQSEAAMQAHFNCPEVQGFISLIESRLARSVDFNSFPVV				NA	NA	NA	NA	NA
D1-36_02448	1434	gabR_1	COG1167	HTH-type transcriptional regulatory protein GabR	ATGGAACTTCACGTCGTCATCAACGGCCGCAAGGACCTGGCGGGCCAGTTGTACCGACAATTGCGCAGCGCCATCGAGAGCGGTCGGCTGGCGGCCGGCACGCAACTGCCACCCAGCCGGCTGCTGGCCGAGCAGTTGGGCGTCTCGCGCAAGACCGTCTCCGACACCTACGCGCAACTGACCTACGAAAATCTCCTCACCGGCGTCATCGGCAAGGGCACCTATGTCAACGCGCGCCCGGCCAGCGTCGTGCGCAAGCACAGTCACCGTGAGCTGGCCGGGGCGGACGTGGTCGAGACCTGGCGCAATATGCCGGACCTGCTGCGCCATCCGCTGCCTGAAAGCGCGCTGCGCTATGACTTCATCGGCGGCGCAACCGGCAAGGGCCAGTTCCCCCTGGATGACTGGCGTCGCTGCACCGCCCACGCCCTTCGCCAGATCGCCACCGCCAAGGGTTTCTACAGCCAACCCGAGGGATTGCCGACGCTGCGCAATGCCATCGCCCGGCACATCGCGTTTTCCCGAGGGGTCAACTGCCAGGACGACGACGTGGTGGTGTGCAACGGCGCGCAACAGGCCCTCGATCTGATTTCCCGGGTACTGACCCGCCCCGGCAGCCTGGTGGCGATGGAAGATCCCGGCTACCCGCCGGCACGCCTGCTGTTCGGATCCCACGGCGCGACGGTGGCCGGGGTGCCGGTGGATGAGCAAGGCATGCGCGTGGACATGATTCCCGACGGCACGCGGTTGATCTACGTGACGCCGTCCCACCAGTTTCCCCTGGGCATGCCCATGAGCCAGCCCCGGCGCGAGGCGCTGCTGGCACGGGCCTATGAGCTGGGCGCGATCATCATCGAAGACGACTACGACAGTGAATTCCGCTATGAAGGCCGGCCCACCGACTCCCTGCAGAGCATGGACGAGCGCGGGATCGTGGCGTACGTCGGGACCTTCTCCAAGACCTTGCTGCCGGAGCTGCGGCTCGGCTACGCCGTCCTGCCGCCGGCGATTCTCGAGGCGGTGATCCTCGCCAAGCGCCTTACCGACCAGCACACCTCCACCCTGCCCCAATGGGCACTGGCCAAGTTCATCGCCGAGGGCTGCCTGCTCAAGCACATCCGGCGCTGCCACGCGCTGTATGCCGGCCGGCGCGAGCGGATCCTGGCGCGCTTGGCCGATGACCTGTCACCGTGGTTCGAGGCCGTGCCCACCACAGCGGGCTTCCATATGGCGGTGCTGTGCAAGGTGCCGATCGACCTGCCGTTGGTGATCGAATTGGCGAAGAAAGCCGAGGTTGGGCTCTATAGCCTCGACGGATTCTTTACCGCGGCACCGGTGCGTCCAGGCTTGATACTGGGCTTTGGCGCCATCGAACTGCTCGACATTGATATCGCCTTCGACCGCCTGCGGGACATCCTGCAGCAGGTCGCCTGA	MELHVVINGRKDLAGQLYRQLRSAIESGRLAAGTQLPPSRLLAEQLGVSRKTVSDTYAQLTYENLLTGVIGKGTYVNARPASVVRKHSHRELAGADVVETWRNMPDLLRHPLPESALRYDFIGGATGKGQFPLDDWRRCTAHALRQIATAKGFYSQPEGLPTLRNAIARHIAFSRGVNCQDDDVVVCNGAQQALDLISRVLTRPGSLVAMEDPGYPPARLLFGSHGATVAGVPVDEQGMRVDMIPDGTRLIYVTPSHQFPLGMPMSQPRREALLARAYELGAIIIEDDYDSEFRYEGRPTDSLQSMDERGIVAYVGTFSKTLLPELRLGYAVLPPAILEAVILAKRLTDQHTSTLPQWALAKFIAEGCLLKHIRRCHALYAGRRERILARLADDLSPWFEAVPTTAGFHMAVLCKVPIDLPLVIELAKKAEVGLYSLDGFFTAAPVRPGLILGFGAIELLDIDIAFDRLRDILQQVA	PGPT0016790_3223	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0016790-mocR-K00375	NA	NA
D1-36_02449	441			hypothetical protein	ATGAGCCCGCGTCTTGATTACTACAGCGCATCCCCCGGGGCGATGAGGGCAATGATTGGCCTGGAAGCGCTGACCAGCCGCCTGAGCATCGAGCCGGCGCTGCAGCATCTGATCAAGATCCGCGCCTCGCAACTCAATGGCTGCGCCTTCTGCACCGACATGCATTCGGTGGATGCGCGCCGCCAGGGCGAGACGGAGCGGCGTCTGTATGCCGTAGCGGTATGGCGCGACAGCGGATTCTTCAGCGAACGCGAAAGGGCGGCCCTGGCCTGGACCGAAGCGGTCACCCTGTTGGCTGAAAGCCAGGTGCCCGATGACGTCTATGCCGTGGCCCGCGCCAGCTTCACCGAAGAGGAACTGGTGGACCTGACGCTGGCGATCAGCACCATCAACAGCTGGAACCGATTGGCGGTGAGTTTTCGCCAGAGTCCGGGAGGCTAG	MSPRLDYYSASPGAMRAMIGLEALTSRLSIEPALQHLIKIRASQLNGCAFCTDMHSVDARRQGETERRLYAVAVWRDSGFFSERERAALAWTEAVTLLAESQVPDDVYAVARASFTEEELVDLTLAISTINSWNRLAVSFRQSPGG				NA	NA	NA	NA	NA
D1-36_02450	2574			hypothetical protein	ATGAATGAAGATGCTGGCAATGGCTCCACGGTGATTTCCGGCGAGCGGCCTACCCGAAGTTTCACTCGCCGCACCTTTCCGGCCATCATGCTGTTGCTGTTCATCATGTCCGCGCTGGCCATCGCGGTATTGCTCAACATCACCCAGTCCCAGGACGAACAGGCCCGTTCCCAGAGCCTGTTCTTTGCCCAACGGGCCGTCGACGGGATTCGTACCGGCATCGGCCGCGACCTGAGCGATTATTCCAAGTGGAGCGACGCCTACCGCCACCTGCACGTCGAGGTCGACAAAGACTGGGCCTACGACCAGGAAAATGTCGGCAGCAGCGTGTTCTCGCTGTATGGCTACCAGGCTGTGTTCGTGATTTCCCCGACCGGCAAGACGGTTTATTCGGTCATTGATGGTGAAATGAGCGAAGCGCACGCCGACACATGGCTGACTGGCAACCTGCGGGCACTCGCCAGAAAGGCCAGCGCTGCGGAGAATCGCGATGAAGTGATCGTCGAATTGCTCCATCACGAAGACGCGCCTGCCTTCGTCGCCGTCTCGGCCATCACCACTGGCACCGACAACAGCGTGGCTGAGATTCCTGGCCCGCCGAGCCTGCTTTTATTCGTCAAAGTCCTCGATACGGACGCGTTGCAGGACCTGGCACGAGACTTTGCCCTGCCGGACGCGCATATCGCCCATACCCCAGGCCCGAAAGACACCGCCCAGGTGCTGCTCAATGACCTGACCCGCGAAGCCCTGGCCTGGCGCCCCGCTACCCCCGGCAAGGATCTGCGTAAAGCCCTGTTGCCGTTGTTGGCACTGGCGTTGCTGTTCCTGGGCGTCATGGCCCTGTTGGTATTGCGCCACGCCTTGGTCATGCTTCGCGCACAGGAACAGCAGTACGTCAGCCTCCTGGCCCATCGCAAGGCGTTGGAGCGCAGCGAGGAACGCTTTCGCGACATTGCCGAAGTGTCGTCAGACTGGCTGTGGGAAGTCGACTCGGCCGCAAACCTGACCTATCTGTCGGAGCGCTTTGAACAGGTGACGGGCTTCAGCCCCACGCAATGGATCGGCAAACCGTTGCACCGGTTGCTGGAACCCCACAGCGGGTCGATCTCCATTGCCCATTGGCTGCTCGGCGGCGCCAACAGTGCCTCGTCTGCCCCGCTGCTGTGCGAGTACATTGCGCGTAACCAACGCATACGCACCTGCAAGCTTTCGGTACGGGCCATCGACGCCGGTAGCCAGGGCTTTCGTGGCACCGCCACCGACATCACCGATGAATTGCGCGCCCTGGCACAAATCAAGCACCTGTCCCAGCACGACCCGCTGACCGGGCTGGCCAATCGCAACCGTCTGTTCGATTGCCTCAGCGAACACCTGGACCACGCGCAGAGCACACCACTGGCGCTACTGAACCTGGACATGGATCGATTCAAGCCGGTCAACGACTCCCTGGGCCATGCCGTGGGCGACAAAGTGCTCAAGGAAGTGGCTCATATCCTCCAGCAAAACGTTCGCAACAGCGATCTTGTGGCGCGACTGGGGGGCGACGAATTCGTCATCGTCATGCCCAACCCAGGCAGCGCAAGAGACCTCGATCAGCTCTGCGAGCGCTTGATCGACTGCATGCAGCGCCCTATGCACCTGGACGGCAATACGCTGTACCTGGGCGTGAGTATCGGCGTGGCGTGGTCGCACCCCCGTGACCCACGTGCCGAGGAGCTGCTGCGCCAGGCTGACATTGCCTTGTATGCGGCCAAGGCCGCCGGCCGCAACACCTGGCGCATCTATGAAGAGGCCATGGGCAACGTCGCCCGTGACCGGCGCCGCTATGAACAGCAATTGCGCGACGCGATGCAGGAAGGCCAGCTTGAACTGCGTTACCTGCCACGCTTCGACGTGAATGCCGAGCAGTTGCACGGCTTTGAAGCCCAGGCGTTCTGGCACCATCCCGAACGCGGCGAACTGGGCGGCATCGACTTCATCCCGGTCGCCGAAGCGTCCGGGCAGTTGGAAGAGCTGGGCAGCTGGATGCTGATCAACGCGTGCGAGGAAGCGACGAGCTGGCCCAACGCACTCAACGTTTCCCTGGCCGTTTCGCCTCGGTGGTTCAGCAGCAGTTTCCTGTTCAACCAGGTACACAAAGCCCTGGAGACCAGCGGTCTTCCCGCCCAACGCCTGACCCTGGAAGTGGCCGAAGGCGTACTGCTCACCGACCACAAGACCCTCGCCAATACCTTGCATGCCTTGAAGGCGCTGGGCGTACGTATCAACATCGACAAGTTCGGCACCAACATCGCTTCCCTTAGGGAAGTCCTCGACCAGCCATTCGACGGCATCCGCTTCGATCGCAATATCCTCACGCAATTGGGCCTGGAGCATGATCAGGAAGGCGTGCTGGCGATGATCCGGCTGAGCCGCAGCGTCGGGCTGATGGTCACCGCCGAGGGCATCGAGAATGCCCGGCAGTTCAGCCAATTGCGCAGCGTGGCGTGTGACCAGGTACAAGGGCCTTACTTCGGCGCGGCATTGGCTCGCTCGGAAATGGCCTCGTTCTTTACAACGCCGCGGTGGCTCTAG	MNEDAGNGSTVISGERPTRSFTRRTFPAIMLLLFIMSALAIAVLLNITQSQDEQARSQSLFFAQRAVDGIRTGIGRDLSDYSKWSDAYRHLHVEVDKDWAYDQENVGSSVFSLYGYQAVFVISPTGKTVYSVIDGEMSEAHADTWLTGNLRALARKASAAENRDEVIVELLHHEDAPAFVAVSAITTGTDNSVAEIPGPPSLLLFVKVLDTDALQDLARDFALPDAHIAHTPGPKDTAQVLLNDLTREALAWRPATPGKDLRKALLPLLALALLFLGVMALLVLRHALVMLRAQEQQYVSLLAHRKALERSEERFRDIAEVSSDWLWEVDSAANLTYLSERFEQVTGFSPTQWIGKPLHRLLEPHSGSISIAHWLLGGANSASSAPLLCEYIARNQRIRTCKLSVRAIDAGSQGFRGTATDITDELRALAQIKHLSQHDPLTGLANRNRLFDCLSEHLDHAQSTPLALLNLDMDRFKPVNDSLGHAVGDKVLKEVAHILQQNVRNSDLVARLGGDEFVIVMPNPGSARDLDQLCERLIDCMQRPMHLDGNTLYLGVSIGVAWSHPRDPRAEELLRQADIALYAAKAAGRNTWRIYEEAMGNVARDRRRYEQQLRDAMQEGQLELRYLPRFDVNAEQLHGFEAQAFWHHPERGELGGIDFIPVAEASGQLEELGSWMLINACEEATSWPNALNVSLAVSPRWFSSSFLFNQVHKALETSGLPAQRLTLEVAEGVLLTDHKTLANTLHALKALGVRINIDKFGTNIASLREVLDQPFDGIRFDRNILTQLGLEHDQEGVLAMIRLSRSVGLMVTAEGIENARQFSQLRSVACDQVQGPYFGAALARSEMASFFTTPRWL	PGPT0023624_1257	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-GGDEF|EAL|PAC|PAS-DOMAIN-CONTAINING_PROTEIN,PGPT0023624-GGDEF|EAL|PAC|PAS_domain_containing_protein-NA	NA	NA
D1-36_02451	1800	ydaP	COG0028	Putative thiamine pyrophosphate-containing protein YdaP	ATGAGCATGACCGTCGGCGATTTTCTGGTTGAACGCCTTTATGAATGGGGCGTTCGGCGCATCTACGGCTATCCTGGCGATGGCATCAACGGTGTGTTCGGGGCTCTGAACCGGGCCAAGGGCAAGATCCGATTCATCCAGGCGCGGCACGAGGAAATGGCGGCCTTCATGGCCTGCGCCCATGCCAAGTTCACTGGCGAGCTGGGCGTTTGCATCGCAACCTCCGGCCCTGGGGCGTCGCATCTCATTACCGGCCTGTATGACGCGCGCATGGACCATATGCCGGTCCTGGCGATCTGCGGCCAGCAGGCCCGAAACGCCCTCGGCGGCCATTATCAGCAAGAACTGGACCTGCCCAGCCTGTTCAAGGACGTTGCAGGCGCGTTCGTCCAGCAAGCCAGCGCCCCGGCCCAGGTCCGCCACCTGCTCGACCGCGCGGTACGCACGGCGGTGGGTGAGCGTCGGGTCACCGCGCTGATCCTGCCCAACGACCTCCAAGACCTGGAATACACACCGCCGCCCCACAAGCACGGCACGCTGCATTCCGGCGTCGGCTACCGCAAACCTAAGGTCGTGCCCTACGAGGAAGACCTGCGCCGAGCGGCAGAGGTGCTCAATGCCGGCAAGAAAGTTGCCATCCTGGTGGGCGCCGGCGCCCTGCATGCAACGGACGAAGTGATCGCCATCGCCAACAAACTCGGCGCCGGCGTCGCCAAGGCCCTGCTCGGCAAAGCCGTGGTGCCCGATGAACTGCCATGGGTCACCGGCTCCATCGGGCTGCTGGGCACCGAGCCCAGCGACAACCTCATGGCCGGTTGCGACACCCTGCTGATGATCGGGTCCGGCTTTCCCTATGCCGAATTCCTGCCTGGCGAGGGCCAGGCGCGTGGCGTGCAGATCGACCTTAAGCCAGACATGCTCAGCCTGCGCTACCCCATGGAAGTCAACTTGCAAGGTGACAGCGCCGACACCCTGCGGGCCCTGCTGCCGCTGATCGAAGAAAAAACCGACCGCACCTGGCGCGAAAAAATCGAGAAATGGCGAGCGGACTGGGACAAGACCCTGGAAAAACGCGCCCTGGTCTCGGCCAAACCGATCAACCCGCAGCGCGTCACGTTCGAACTCTCGCCACGGCTGCCGGATCGCGCCGTCATCACCTGCGACTCCGGCTCCTGCGCCAACTGGTATGCGCGGGATGTCCAGATCCGTCGCGGCATGATGTGTTCACTCTCCGGCGGCCTCGCCTCGATGGGCGCCGCCGTGCCCTACGCCATCGCCGCCAAGTTCTGCCACCCGGATCGTCCGGTGATCGCGTTGGTCGGTGATGGCGCGATGCAGATGAATAACATGGCCGAATTGATCACCGTCGCCAAATACTGGCGCACCTGGACCAACACCACCTGGATCTGCGCGGTGTTCAACAACCAGGACCTGAATCAGGTGACCTGGGAACAACGAGTGATGGAAGGCGACCCGAAATTCGAGGCGTCCCAGGATATTCCCGACGTTCCCTATCATCTGTTCGCCGAGTCGATCGGCCTCAAGGGCATCCTCGTCGACCAGGAAAGCGACGTGGCGAGCGCCTGGGACCAGGCGTTCGCCGCCGAACGCCCGGTGGTGATCGAGTTCCGCACCGACCCCGACGTGCCACCGCTGCCGCCGCACATCAAGCTGGAACAGGCGAAGAAGTTCGCCTCGACCCTGCTCCAGGGCGATCCGAACGAGCGCGGCATCGTGGTCGAGACCGCCAAGCAGGTGCTCGGCGCGTTGCTGCCCGGTCATCGCAAGGACAAAGAATAA	MSMTVGDFLVERLYEWGVRRIYGYPGDGINGVFGALNRAKGKIRFIQARHEEMAAFMACAHAKFTGELGVCIATSGPGASHLITGLYDARMDHMPVLAICGQQARNALGGHYQQELDLPSLFKDVAGAFVQQASAPAQVRHLLDRAVRTAVGERRVTALILPNDLQDLEYTPPPHKHGTLHSGVGYRKPKVVPYEEDLRRAAEVLNAGKKVAILVGAGALHATDEVIAIANKLGAGVAKALLGKAVVPDELPWVTGSIGLLGTEPSDNLMAGCDTLLMIGSGFPYAEFLPGEGQARGVQIDLKPDMLSLRYPMEVNLQGDSADTLRALLPLIEEKTDRTWREKIEKWRADWDKTLEKRALVSAKPINPQRVTFELSPRLPDRAVITCDSGSCANWYARDVQIRRGMMCSLSGGLASMGAAVPYAIAAKFCHPDRPVIALVGDGAMQMNNMAELITVAKYWRTWTNTTWICAVFNNQDLNQVTWEQRVMEGDPKFEASQDIPDVPYHLFAESIGLKGILVDQESDVASAWDQAFAAERPVVIEFRTDPDVPPLPPHIKLEQAKKFASTLLQGDPNERGIVVETAKQVLGALLPGHRKDKE	PGPT0001371_225	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-ACETIC_ACID_BIOSYNTHESIS,PGPT0001371-poxB-K00156	NA	NA
D1-36_02452	519			hypothetical protein	ATGTACGCCTCTTTCTCGAAAGCCCTGAACGGCCTGCACCTGAACCTCGATCACGCCGGTTCGTGGCTCGCACCGCTGGGGCTGCGCCTGTTCCTGGCCTGGGAGTTCTTTGAATCCGGCCTGGAAAAATGGAACGGCCAGAACTGGTTCGCCGAGATCCAGTCGGCTTTTCCGTTCCCGTTCAACCATGTGCCGGCCAGTTGGAACTGGGAATTGTCGATGGGGGCGGAGCTGATCTGCGCCGTCGCCCTGTTGATCGGCCTGGGCACACGCGCCTCGGCGCTGGTGCTGATGATCGTCACCGTGGTCGCTACCGCCGCCGTGCACTGGCCGGCGGATTGGTCGAGCCTGAGCGAGCTGGCCCAAGGATACGCGATCACCAACAAGGGCTACGGCAACTTCAAGCTGCCATTGATTTACCTGGTCGCATTGCTGCCGCTGCTGTTGCAGGGCGCCGGGCGGTTGAGCGTCGATGCGCTATTGAAGTCGTTGCTCCGGTCAAAAAAATCGAAACCTTGA	MYASFSKALNGLHLNLDHAGSWLAPLGLRLFLAWEFFESGLEKWNGQNWFAEIQSAFPFPFNHVPASWNWELSMGAELICAVALLIGLGTRASALVLMIVTVVATAAVHWPADWSSLSELAQGYAITNKGYGNFKLPLIYLVALLPLLLQGAGRLSVDALLKSLLRSKKSKP	PGPT0028505_1342	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028505-catD-K15977	NA	NA
D1-36_02453	639			hypothetical protein	ATGCCTACCGCCACCGCAACGCCGCCTGCTTTCCGTTACCAGGGCTGGTCGCTGTTCAGCCTGCTTGCCGCCCTGGTATTGCTGATGACCGTGCTGGTCCTGATCATCAATCCAGACCTCACAGAAGGCGTGCGCAGTGCCATTCGCGCGACCGCCCGTTCGTCCTTCGTCCTGTTCCTGCTGGCCTTTACAGCGTCGGCGTTCGCCGTGCTGGTGCCCTCGCCCCTGAGCAAATCCCTGGTGCGCGAACGGCGCTTCATCGGGCTGGCCTTTGCCTTTTCCCATTTAGTCCACGCCGCATTGATCTACTGGTACGGCCAGCTCAACACCGAGTTCTGGCCCGGCCGGACCACCCTTGGCAACGTGCCCGGCACCGTGGGCTACGTGTTTATCCTGCTGCTGGCCCTGACTTCGTTCAAAAGCACCACGCGGCTGATCGGCGCCACCGCCTGGAAGCGCCTGCATACCACCGGCATGTGGGTACTGGCGGCGATCTTTGCCTATTCCAATTTCAAGCGCATTCCGATGAGCGCCTGGTACGTGCTGCCCTTCGGCCTGATATGCGCCGCCACGGCGGTCCGCCTGGTGGGCAAGCTGGCCCAGGCCAACAAGCGTCAACCCCTGCAACGTGCGGCCTGA	MPTATATPPAFRYQGWSLFSLLAALVLLMTVLVLIINPDLTEGVRSAIRATARSSFVLFLLAFTASAFAVLVPSPLSKSLVRERRFIGLAFAFSHLVHAALIYWYGQLNTEFWPGRTTLGNVPGTVGYVFILLLALTSFKSTTRLIGATAWKRLHTTGMWVLAAIFAYSNFKRIPMSAWYVLPFGLICAATAVRLVGKLAQANKRQPLQRAA				NA	NA	NA	NA	NA
D1-36_02454	1317	rcsC_10		Sensor histidine kinase RcsC	ATGACCCTGTCTCTGCGGTGGCCGCGTACCCTCGCCTCGCGCTTGTCGTTGATTTTCCTGATCGGTCTGGTCCTGGCCCAGGGTTTGTCGTTCGGCGTCCAATACTACGAACGCTACGAGAGCGCCAAGAACACCATGCTCGGCAACCTGGAGACTGACGTCTCGACGTCCGTGGCGATCCTCGATCGCCTGCCTGCCGCCGAACGCCCCGCGTGGCTGCCAAAGCTTGCGCGACGCAACTACGGCTATGTGCTTGATGAGGGCCAGCCTGGCATGCCAATGCTCCCGGACAACGCGCCGATATCGGTCAGCTCGATCCAGGAAGCCTTGGGCGAAGCCTATGCCCTGACCTACAACCAGATCCCGGGACCGAAGATGCACTATCAGGCGCACCTGCGCCTCAAGGACGGCAATCCGCTGACCATCGACGTACGTCCGGCGATGGCACCGCTTTCGCCCTGGCTGCCGGTGGTCTTGCTGGGGCAACTGGCGCTGCTGATCGGCTGCACGTGGCTTGCCGTGCGCATCGCCATCAGCCCCCTCACCCGGCTGGCCCAGGCCGTCGAAACCCTGGACCCCAACGCCCACGGCGTGCGCCTGGACGAAAAAGGCCCGACCGAGGTGGTACATGCGGCCAAGGCCTTCAATGCCATGCAGGACCGCATCGCCGCCTATTTGAAGGAGCGCATGCATCTGTTGGCTGCGATCTCCCATGATCTGCAGACCCCCATCACCCGCATGAAGCTGCGGGCCGAATTCATGGATGACGGCATCGAAAAAGACAAACTTTACAGCGACCTGGGGGAAATGGAGCACCTGGTGCGTGAAGGCGTGGCCTACGCCCGCAGCATCCATGGCGCCACCGAGGCCAGTTGCCGGATCAGCCTGGATGCGTTTCTCGACAGCCTGGTGTTCGACTACCAGGACACCGGGCAGGACGTGCAGCTGTCCGGCAAGAACGCCGCGATCATCGATACCCGTCCCCACGCATTGCGCCGGGTGCTGGTCAACCTCGTGGATAATGCGTTGAAGTTCGGCGGCGCGGCGCAGATCCAGGTCCTGCCCGCCTCGAACGGGCAGTTGGCGATCCGGGTATTGGACCGTGGCCCCGGCATCAGCGAGCAGGAACTGGCCGAAGTGCTCAAGCCGTTCTACCGGGTGGAAAGCTCGCGCAACCGGGAAACCGGCGGCACCGGCCTGGGTTTGGCCATCGCACAGCAACTGGCGAATGCCATGGGCGGTTCGCTGACCTTGAGCAACCGTGAGGGCGGTGGGCTGTGCGCTGAGCTGCGGTTGGGTTGCGATACCCAGGTCTGA	MTLSLRWPRTLASRLSLIFLIGLVLAQGLSFGVQYYERYESAKNTMLGNLETDVSTSVAILDRLPAAERPAWLPKLARRNYGYVLDEGQPGMPMLPDNAPISVSSIQEALGEAYALTYNQIPGPKMHYQAHLRLKDGNPLTIDVRPAMAPLSPWLPVVLLGQLALLIGCTWLAVRIAISPLTRLAQAVETLDPNAHGVRLDEKGPTEVVHAAKAFNAMQDRIAAYLKERMHLLAAISHDLQTPITRMKLRAEFMDDGIEKDKLYSDLGEMEHLVREGVAYARSIHGATEASCRISLDAFLDSLVFDYQDTGQDVQLSGKNAAIIDTRPHALRRVLVNLVDNALKFGGAAQIQVLPASNGQLAIRVLDRGPGISEQELAEVLKPFYRVESSRNRETGGTGLGLAIAQQLANAMGGSLTLSNREGGGLCAELRLGCDTQV				NA	NA	NA	NA	NA
D1-36_02455	741	ompR_5		Transcriptional regulatory protein OmpR	ATGGATCATGTCGATCATGTGCTGATCGTGGATGACGATCGCGAGATCAGGGAGCTGGTAGGCAACTACCTGAAAAAGAACGGTTTGCGCACCACCGTGGTCGCGGATGGCCGGCAAATGCGCGCCTTTCTGGAGACCACTCCGGTGGACCTGATCGTGCTGGATATCATGATGCCCGGCGACGATGGCCTGGTGTTGTGCCGGGAGCTGCGGGCCGGCAAGCACAAGGCCACGCCTGTCCTGATGCTCACCGCTCGCAACGACGAGACCGACCGCATCATCGGCCTGGAAATGGGCGCGGACGATTACCTGGTCAAGCCTTTCGCCGCCCGGGAGCTGTTGGCGCGGATCAACGCCGTGCTGCGCCGTACGCGCATGTTGCCGCCTAACCTGGTGGTCACCGAGAGCGGGCGCCTGCTGGCGTTTGGCCGTTGGCGGCTGGATACCACCGCTCGCCACCTGCTGGACAGCGACGGCACCATGGTGGCCCTGAGCGGCGCCGAATACCGCTTGCTCCGGGTATTCCTCGACCATCCACAGCGGGTACTCAACCGCGACCAGTTGTTGAACCTGACCCAGGGCCGTGACGCGGACCTGTTCGACCGCTCCATCGATTTGTTGGTCAGTCGCCTGCGCCAACGCCTGTTGGACGACGCCCGCGAGCCGGCGTACATCAAGACGGTACGCAGTGAAGGTTACGTGTTCTCGCTGCCGGTGGAGATCCTCGAGGTCTCGGTATGA	MDHVDHVLIVDDDREIRELVGNYLKKNGLRTTVVADGRQMRAFLETTPVDLIVLDIMMPGDDGLVLCRELRAGKHKATPVLMLTARNDETDRIIGLEMGADDYLVKPFAARELLARINAVLRRTRMLPPNLVVTESGRLLAFGRWRLDTTARHLLDSDGTMVALSGAEYRLLRVFLDHPQRVLNRDQLLNLTQGRDADLFDRSIDLLVSRLRQRLLDDAREPAYIKTVRSEGYVFSLPVEILEVSV	PGPT0004100_30	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
D1-36_02456	264			hypothetical protein	ATGAACACCAAAGCCATCTACGCCGCCTGCCTGTTCGCCGCGCTGAACATCTGCACCCTGTCGGCCCGGGCCGAAAGCACCGCGCCGGCGCACACCTACACCTACGGCACACACCTGGATGTACGCAAAGTGCTGTCCCTGAGCGAAGACCCGCAGCCAGCCTGTGGCGTGGTCGACGCCCACATGACCTACCTGGACTCGGCGGGCCATGAGCAGGCGCTGGATTACCGCAAGCTCTCCGATAACTGCACCAACCAGAACTGA	MNTKAIYAACLFAALNICTLSARAESTAPAHTYTYGTHLDVRKVLSLSEDPQPACGVVDAHMTYLDSAGHEQALDYRKLSDNCTNQN				NA	NA	NA	NA	NA
D1-36_02457	1209	dipZ	COG0785	Protein DipZ	ATGCTTCTGATCGCATTTCTCGGCGGGATCCTGACGATCCTCAGCCCTTGTATCCTCCCGGTGGTGCCGTTCCTGTTCGCCCGGGCCAATCAATCGCGCCGTTCGGTGTTGCTGACGCTCGCCGGCATGGTGCTGACCTTTGCCTTGGTGTCCAGCCTGGCGGTGGCCAGCAGCGAATGGGTGATACGCGCCAGTAGCGTCGGCCGGCAGGTCGCCTTGGTGGTGATGGTGCTGTTTGCGCTGTCGCTGATGTTCAGTCGGGTGGGCACTTGGTTGGCGCGGCCGCTGGTCAGCCTGGGCAATCGTCTTGACACCGGTGCCGGGCGGATGGGCGGGGCTCTGGCGTCAGTGTCGGTCGGTGTCGCCACCGGGTTGCTCTGGGCGCCGTGTGCCGGGCCGATCCTCGGCGTGATCCTGACCGGGGCCATGCTGCAAGGCGCCAGCGCCCAGACCAGCCTGTTGCTGCTCGCCTACGGCCTGGGCAGCGCCCTGTCGCTGGGTACCCTGATCCTCGCCGGTCGAGGCCTGATCGGTCGGTTGAAACTCTCGCTGCCGATCACCGCCTGGCTGCGCCGCGCCACCGGGGCAGTGGTGTTGCTGGCCGCCGTGGCGATCGGCACTGGGGCGGATGACCGGTTATTGGCCGCGACGTCGTCGCAACAGTCGGCCAGCCTGGAAAAAAGCCTGTTGGAGAGCGTGCCCAAAGCCATCGACTATGTGGTGAGCAAGGCCAGCGCGAGCGCCATGCCCGACCTCGAAGCCCAAGGCGCCATGCCTTCGCTGGACGGCGCGGTGCAATGGCTCAACTCGCCGCCGCTGAGCAGCGAGTCGTTGCGGGGCAAAGTGGTGCTGGTGGATTTCTGGACCTACGACTGCATCAACTGCCAGCACACGCTGCCGTATGTGAACGAGTGGGCGAAGAAATACGAAAAGGACGGGCTGGTGGTCATCGGCGTTCATACCCCGGAATACGGCTACGAAAAGATCATCGACAACGTACGCGCACAGGTGCGCAAGCTGGACATCCAGTACCCGGTGGCTATCGATAACCGCTATGCGATCTGGCGTGCCTTCAACAACCAGTACTGGCCGGCCCATTACTTCATCGATGCCAAGGGGCAGGTGCGCTATAGCCACTTCGGCGAAGGGCGGTATGGCGAACAGGAACAGGTGATCCAGCAACTGCTACAAGAGGCGAAGTCTGGATAA	MLLIAFLGGILTILSPCILPVVPFLFARANQSRRSVLLTLAGMVLTFALVSSLAVASSEWVIRASSVGRQVALVVMVLFALSLMFSRVGTWLARPLVSLGNRLDTGAGRMGGALASVSVGVATGLLWAPCAGPILGVILTGAMLQGASAQTSLLLLAYGLGSALSLGTLILAGRGLIGRLKLSLPITAWLRRATGAVVLLAAVAIGTGADDRLLAATSSQQSASLEKSLLESVPKAIDYVVSKASASAMPDLEAQGAMPSLDGAVQWLNSPPLSSESLRGKVVLVDFWTYDCINCQHTLPYVNEWAKKYEKDGLVVIGVHTPEYGYEKIIDNVRAQVRKLDIQYPVAIDNRYAIWRAFNNQYWPAHYFIDAKGQVRYSHFGEGRYGEQEQVIQQLLQEAKSG				NA	NA	NA	NA	NA
D1-36_02458	330			hypothetical protein	ATGCGTGTTTCTATCTGGATCGCGGCGGCCATGCTCATGGCCGCCGTTTCGCATGAAGCCCAAGCCAGGGCGCTGACGGCAAACCAGCAATCGGTGTGTCGCTGGGGTTCGGACATTGCCGCTGGAGCGCAGGCGTCCAAGCTGTCCGGAGTGAGCCTGTATGGGGCGCGCAAGAAACTGCAGGTGCGCAAGTTTCCCCGGCCCTGGATGCGCATGACCGCCCTGGGCATCACCGAACAGACCTACAACAGCACCTCGCGGCTCAAACCTGCCGCGGTCAAGCAGACCTACTACGAACAATGCGTGCGCCATGAGCTGGCGCGACGATAA	MRVSIWIAAAMLMAAVSHEAQARALTANQQSVCRWGSDIAAGAQASKLSGVSLYGARKKLQVRKFPRPWMRMTALGITEQTYNSTSRLKPAAVKQTYYEQCVRHELARR				NA	NA	NA	NA	NA
D1-36_02459	1875	acoR_4	COG3284	Acetoin catabolism regulatory protein	ATGCTTTCCGCTCACTCCAGGGCGCACGTGGATTGCATCAGCCGCGTGCTGAAGAACGCCGCCCAACTGCCGCAACTGCCCGTGCCGGACCTGATCCTCGACTCCTGGCGCCGCTCCATGGAGCAACATCACCTGGACCCCGGCTCGCTGCAGGGCCCACGGATCCTGTCCCACGACGTGCTCAAGCAATGCCGCGAGCGCTCGGAGCTGTTCCTCAATATCGCCAGCGACGAAGTGGCGCGCCTGCACGGCCGGGTGCGCGATGCCGACTATTGCGTGCTGCTGACCGATGCCCAGGGCCAGACCATCGATTACCGGGTGGAAACCACCCTTCGCAACGACTGCCGCAAGGCCGGGCTCTACCTGGGTACGTGCTGGTCGGAAGGCGAAGAAGGCACGTGCGGCGTGGCGGCGGTGCTCACGGCCAAGACTGCGGTGACGGTGCACAAGCGTGATCACTTTCGCGCGGCGTTCATTGGCCTGACCTGCTCCGCCGCGCCGGTCTTCGATCCGCAAGGCGAGCTGCTCGGCGTGCTGGACGTCTCGGCGGTGCGCTCGCCGGATGATCGACGTTCCCAGCACCTGATCCGGCAAATGGTGGTGCAGAGCGCCCGGGAGATCGAACAGGCGTTTTTCATGAGCAGCGTCCAGGGTTATTGGGTGTTGCGGGCCCATCGCAACGCGGGGTACGTCGACAGCCAGCCGGATCTGCTGCTTGCCTGGGATGACGATGGCTGCCTGCAAGCCCTGAACCCGGCGGCGCGCCAATACTTGATGCAACGCTACGGCCAGTTGCCTCGCCACATCAGCCAGGTTTTCGACCCGCAATTGCTGCACCGGGCCCGGGATGAAAGCCTCTACCCACTCGATGTCGATTTGCATGGCCGCCTGAGCGCGCCACGGCGCCGGGCCAAGCCTCGCCAGCGCGTCGCGATGACTCCCACCGAACTCGATCCACGCCTGGCCGACAGCCTGAACCTGGCGGTGCGGGTCAAGGATCGCAACCTGCCGGTGCTGATCCAGGGCGAGACCGGTTCCGGCAAGGAGGTCTTCGCCCGCCAGTTGCACCAGGCCAGCCAGCGCCGCGATCGGCCCTTCGTGGCCTTGAACTGCGCGGCCATACCGGAAAGCCTGATCGAGAGTGAGCTGTTCGGCTACGTCGCCGGTGCCTTCACCGGGGCCTCGGCCAAGGGCATGCAGGGTCTGTTGCAGCAGGCCGATGGCGGCACGCTGTTCCTCGATGAAATCGGGGACATGCCGCTCGCCTTGCAAACCCGCCTGTTGCGGGTGCTGGCCGAAGGCGAAGTAGCGCCACTGGGGGCTTCAAGGCGCAAGGCCGTGGACATCCAGGTGATCTGCGCCACCCACCGCGACCTGGAGGCGCTGGTGGCGGCTGGCGAGTTTCGCGAGGATCTGTATTTCCGTCTCGGCGGCGCCCGCTTCCAGCTGCCGCCGCTGCGCGAACGCACCGACCGGCTGGCGTTGATCAATCGAATCCTTGAAGAAGAGTCGGCGCTGTGCGGCGGTGCGGTGCAACTGAGCGGCGCCGCGCTGGAATGCCTGCTGGGTTATCACTGGCCGGGCAATGTCCGCCAGTTGCGGCATGTGCTGCGCTATGCCTGCGCGGTCTGCGAGGCGAGCGTGATCCAGCTTAGCCACTTGCCCGAGTCATTGCACACCACGGACGCCGCCGATCATGGGCCGGAGCCCAGCGCCAGCCCTGAACGCCAGGCGTTGCTGGACGCCCTGGTGCGTCATCGCTGGAAACCCACCCCGACGGCCCGGGCGCTGGGCATTTCCCGAGCGACCCTGTATCGACGGGTGCATCAGCACGGTATCGAGATGCCCGGCAGGCGTCCTGACGCTGTTCACTAA	MLSAHSRAHVDCISRVLKNAAQLPQLPVPDLILDSWRRSMEQHHLDPGSLQGPRILSHDVLKQCRERSELFLNIASDEVARLHGRVRDADYCVLLTDAQGQTIDYRVETTLRNDCRKAGLYLGTCWSEGEEGTCGVAAVLTAKTAVTVHKRDHFRAAFIGLTCSAAPVFDPQGELLGVLDVSAVRSPDDRRSQHLIRQMVVQSAREIEQAFFMSSVQGYWVLRAHRNAGYVDSQPDLLLAWDDDGCLQALNPAARQYLMQRYGQLPRHISQVFDPQLLHRARDESLYPLDVDLHGRLSAPRRRAKPRQRVAMTPTELDPRLADSLNLAVRVKDRNLPVLIQGETGSGKEVFARQLHQASQRRDRPFVALNCAAIPESLIESELFGYVAGAFTGASAKGMQGLLQQADGGTLFLDEIGDMPLALQTRLLRVLAEGEVAPLGASRRKAVDIQVICATHRDLEALVAAGEFREDLYFRLGGARFQLPPLRERTDRLALINRILEEESALCGGAVQLSGAALECLLGYHWPGNVRQLRHVLRYACAVCEASVIQLSHLPESLHTTDAADHGPEPSASPERQALLDALVRHRWKPTPTARALGISRATLYRRVHQHGIEMPGRRPDAVH	PGPT0001030_1519	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,PGPT0001030-acoR-K21405	NA	NA
D1-36_02460	1116			hypothetical protein	TTGCACGCCAAGCCCGTTGACTGTTCCCGCCACGGTGGCGCCATGAGCCGCCGTCCGCTCACCGTCGGCATCATCGCCAACCCCGCATCGGGCCGTGACGTGCGGCGGTTGACCGCCAATGCCGGATTGTTCTCCAGCACCGACAAGGTCTCGGTGATCCAGCGCTTGCTGGCGGCGTTTGGCGCCACCGGCATCGAGCAGGTGTTGATGCCCACCGACATGATCGGCATGGCCGCCGCCGTGCTGAAGAACAGCCACAGCCGCCAGGCCCGCAGTAGCCATTGGCCGGCCCTGGAATTTCTCGACCTGACCCTGCGCCAGACCGTCGAAGACACTCGCCGCGCCGCGCGCCTGATGGCCGAGCGCGAGGTGGCGCTGATCGCCGTGCTCGGCGGCGACGGCACCCACAAGGCTGTCGCCGCCGAAGTGGGCGACATTCCTCTGTTGACCCTGTCCACCGGCACCAACAATGCCTTCCCCGAATTGCGCGAGGCCACCAGCGCCGGGCTGGCCGGCGGGTTGTACGCCAGCGGGCGAATTCCAGACGAGGTCGGTCTGCGTCGCAACAAGCGCTTGCTGGTTTGCGACGCCGGGCGTGGTTTGCGGGAAGTCGCTCTGGTGGACGTTGCCGTGTCGCCGCTGCGCTTTGTCGGCGCGAGGGCGATCAGCCGCGCGCAAGACCTGGCCGAAGTGTTCGTGACCTTCGCCGAACCGCAATCCATCGGCCTGTCGGCGCTGTGCGGGTTGTGGTTTCCGGTGTCTCGCCAGGCGCCGGGCGGTGCCTGGATGCGCCTGGACCCGCAATCCCCCGAGGCGCTGCTGGTGCCGCTCGCGCCGGGCTTGCTGCAAGGTTGCGGCGTGCTGGCCGCCGGGCCTCTGGAGCCCGGCGTCGCCCATGGCTTGTCGCTGTCCGCCGGCACCTTGGCCCTGGATGGCGAGCGGGAAATCGAATTCAACGTCCATGACCGGCCCACGGTCACCCTCGATGCCGGCGGCCCGCTGAGCATCGACGTCAACGCGGTGCTCACCTACGCCGCGCAACAGCGCTTGTTGGCCATTGGTCGCGAGCACCCGCAACACCCCTCGAACCTTCAAGAAGACACGCCTGGAGAATAA	MHAKPVDCSRHGGAMSRRPLTVGIIANPASGRDVRRLTANAGLFSSTDKVSVIQRLLAAFGATGIEQVLMPTDMIGMAAAVLKNSHSRQARSSHWPALEFLDLTLRQTVEDTRRAARLMAEREVALIAVLGGDGTHKAVAAEVGDIPLLTLSTGTNNAFPELREATSAGLAGGLYASGRIPDEVGLRRNKRLLVCDAGRGLREVALVDVAVSPLRFVGARAISRAQDLAEVFVTFAEPQSIGLSALCGLWFPVSRQAPGGAWMRLDPQSPEALLVPLAPGLLQGCGVLAAGPLEPGVAHGLSLSAGTLALDGEREIEFNVHDRPTVTLDAGGPLSIDVNAVLTYAAQQRLLAIGREHPQHPSNLQEDTPGE	PGPT0013490_1102	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013490-ppnK-K00858	NA	NA
D1-36_02461	978	acoA	COG1071	Acetoin:2,6-dichlorophenolindophenol oxidoreductase subunit alpha	ATGTCGACATCGCTCAACCATGATCAATTACTGCACGCCTATCAGGTCATGCGCACCATCCGCGCCTTCGAAGAGCGCCTGCACGTGGAATTCGCCACGGGGGAGATCCCCGGGTTCGTCCACTTGTATGCCGGCGAAGAAGCCTCGGCCGCGGGCGTCATGGCCCATCTCGGGGACGACGATTGCATTGCCTCGAACCACCGTGGTCACGGCCATTGCATCGCCAAGGGCGTGGATGTGTACGGGATGATGGCCGAGATCTACGGCAAGAAAACCGGCGTCTGCCAAGGCAAGGGCGGCTCGATGCACATCGCCGATTTCGAAAAAGGCATGCTCGGCGCCAACGGCATCGTCGGCGCCGGTGCGCCACTGGTCGTCGGCGCTGCCCTGGCGGCTCGGCTCAAGGGCACCGACAGCGTCGCCGTGGTGTTTTTCGGCGACGGCGGTTCCAACGAAGGCGCAGTGTTCGAAGCCATGAACATGGCCTCGGTGTGGAACCTGCCATGCCTGTTCATCGCGGAAAACAATGGCTACGCCGAAGCCACCGCGTCCAATTGGTCAGTGGCCTGCGACCACATCGCCGACCGCGCCGCCGGCTTCGGCATGCCCGGCGTGACCGTCGATGGCTTCGACTTCTTCGCCGTCCATGAAGCCGCCGGGGCCGCCGTCGAGCGCGCCCGTGCCGGGGAAGGGCCGTCGCTGATCGAGGTCAAGCTGACCCGCTACTACGGCCACTTCGAAGGCGACGCCCAGACCTATCGCGCACCCGACGAGGTCAAGCATTTCCGCGAAAACCAGGACTGCCTGATGCAGTTCCGCGAGCGCACCACCCGGGCCGGGCTGCTCACCGTCGAGCAGTTGGACCAGATCGACAAAGAGGTGGAAATGCTGATCGAAAATGCCGTGTACAAGGCCAAGTCCGATCCCAAGCCGGCGGCGTCCGACCTGCTGACCGACGTCTACGTCAGCTACCCCTGA	MSTSLNHDQLLHAYQVMRTIRAFEERLHVEFATGEIPGFVHLYAGEEASAAGVMAHLGDDDCIASNHRGHGHCIAKGVDVYGMMAEIYGKKTGVCQGKGGSMHIADFEKGMLGANGIVGAGAPLVVGAALAARLKGTDSVAVVFFGDGGSNEGAVFEAMNMASVWNLPCLFIAENNGYAEATASNWSVACDHIADRAAGFGMPGVTVDGFDFFAVHEAAGAAVERARAGEGPSLIEVKLTRYYGHFEGDAQTYRAPDEVKHFRENQDCLMQFRERTTRAGLLTVEQLDQIDKEVEMLIENAVYKAKSDPKPAASDLLTDVYVSYP	PGPT0008230_706	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,PGPT0008230-acoA-K21416	NA	NA
D1-36_02462	1017	acoB	COG0022	Acetoin:2,6-dichlorophenolindophenol oxidoreductase subunit beta	ATGGCGAGAAAAATCAGCTATCAGCAGGCAATCAACGAAGCCCTGGCCCAGGAAATGCGTCGCGACTCCAGCGTGTTCATCATGGGTGAAGACGTGGCCGGCGGCGCTGGCGCACCCGGTGAAAACGATGCCTGGGGCGGCGTGCTCGGCGTCACCAAGGGGCTTTACGACCAATTCCCCGGGCGGGTGCTGGACACGCCGCTGTCGGAAATCGGCTATGTCGGCGCGGCGGTCGGCGCCGCCACCTGCGGCGTGCGCCCGGTGTGCGAACTGATGTTCGTCGATTTTGCCGGGTGCTGCCTGGACCAGATCCTCAACCAGGCGGCGAAATTCCGCTACATGTTCGGCGGCAAGGCGTCCACGCCCCTGGTCATTCGCACCATGGTCGGCGCCGGCCTGCGGGCCGCGGCCCAGCATTCGCAGATGCTCACTTCGTTGTGGACACACATCCCGGGACTGAAAGTGGTGTGTCCGTCATCGCCCTATGACGCCAAGGGTCTGCTGATCCAGGCCATTCGCGATAATGACCCGGTGATCTTCTGCGAGCACAAGTTGCTCTACAGCATGCAGGGCGAGGTGCCGGAAGAGCTCTACACCGTGCCGTTCGGCGAGGCCAACTTCCTGCGCGACGGCAAGGACGTGACTCTGGTGTCCTACGGGCGGTTGGTCAACACCGCGATGGATGCGGCACGCAACCTGGCCGGACGTGGCATCGACTGCGAAGTCATCGACCTGCGCACCACCAGCCCGCTGGACGAGGACAGCATCCTTGAAAGCGTCGAGAAAACCGGACGCCTGGTGGTGATCGACGAGGCCAACCCGCGCTGCTCCATGGCCACCGACATCTCGGCGCTGGTGGCGCAAAAGGCTTTTGGCGCGCTCAAGGCACCGATCGAGATGGTCACCGCGCCGCACACGCCGGTGCCGTTTTCCGACTCCCTGGAAGACCTGTACATCCCCGACGCGGCAAAAATCGAGCAAGCCGTGCTCAACGTGATCGAGTGGAGCAAGCACTGA	MARKISYQQAINEALAQEMRRDSSVFIMGEDVAGGAGAPGENDAWGGVLGVTKGLYDQFPGRVLDTPLSEIGYVGAAVGAATCGVRPVCELMFVDFAGCCLDQILNQAAKFRYMFGGKASTPLVIRTMVGAGLRAAAQHSQMLTSLWTHIPGLKVVCPSSPYDAKGLLIQAIRDNDPVIFCEHKLLYSMQGEVPEELYTVPFGEANFLRDGKDVTLVSYGRLVNTAMDAARNLAGRGIDCEVIDLRTTSPLDEDSILESVEKTGRLVVIDEANPRCSMATDISALVAQKAFGALKAPIEMVTAPHTPVPFSDSLEDLYIPDAAKIEQAVLNVIEWSKH	PGPT0008235_490	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,PGPT0008235-acoB-K21417	NA	NA
D1-36_02463	1113	acoC		Dihydrolipoyllysine-residue acetyltransferase component of acetoin cleaving system	ATGAGCCAGATTTTTACCCTGACCATGCCCAAGTGGGGCCTGTCGATGACCGAGGGCCGAGTCGATGCCTGGCTCAAGGAAGAAGGCCAGGCCATCACCAAAGGCGATGAAGTGATGGACGTCGAGACCGACAAGATCTCCAGCAGCGTCGAGGCGCCATTTTCCGGCGTATTGCGCCGCCAGGTGGCGCGCCAGGATGAAACCCTGCCGGTCGGCGCCTTGCTCGGCATCGTCGTCGAAGGCGAAGCCAGCGACGCCGACATCGACGCGGTCATCGAGCAGTTTCAATCCAATTTCGTGCCTGGCGACGCGGCTGACGAGGACAGCGGCCCGAAACCGCAGAAAGTCGAGGTGGACGGTCGGCTGATCCGCTATTTCGAGCGCGGCGAGGGCGGTACGCCGCTGGTGCTGGTGCACGGTTTTGGTGGTGACCTCAACAACTGGCTGTTCAACCATGAAGCCTTGGCCGCTGGGCGCCGGGTGATTGCCCTGGATCTGCCAGGGCATGGCGAATCGGCGAAAACCCTGGAGCGCGGTGACCTCGACGAGCTGAGCGGTGTGGTGCTGGCCTTGCTCGATCATCTGGACATCAACGCGGCCCATCTGGTCGGGCATTCCATGGGCGGGGCCGTTTCGCTGAATGCCGCGCGCTTGATGCCGCAGCGCTTGCGCTCACTGACCCTGATCGGCAGCGCCGGCCTCGGCGCCCAGATCAACGGCAGTTACTTGCAAGGCTTCGTCGACGCCGCCAACCGCAACGCCCTCAAGCCACAGCTGGTGCAACTGTTCTCCAATGCCGAGCTGGTCAACCGGCAGATGCTCGACGACATGCTCAAGTACAAGCGCCTGGAAGGTGTGGACGTGGCCCTGCGCCAATTGGCAGCGAACTTGTTCAAGGACGGCCGCCAGCAAGTGGAGCTACGCGAGGTGGTGCAGGCCGGCCATGTCCCGACCCTGGTGATCTGGGGCAGTGATGACGCCATCATCCCGGCGGTCCACGCCGAAGGGTTGAGTGCCCAGGTCGAAGTGCTGCCGGGCCAGGGCCACATGGTGCAGATGGAGGCGGCCGAGCAGGTCAATCGATTGATTATCGAGTTCATCGGACAGCACTGA	MSQIFTLTMPKWGLSMTEGRVDAWLKEEGQAITKGDEVMDVETDKISSSVEAPFSGVLRRQVARQDETLPVGALLGIVVEGEASDADIDAVIEQFQSNFVPGDAADEDSGPKPQKVEVDGRLIRYFERGEGGTPLVLVHGFGGDLNNWLFNHEALAAGRRVIALDLPGHGESAKTLERGDLDELSGVVLALLDHLDINAAHLVGHSMGGAVSLNAARLMPQRLRSLTLIGSAGLGAQINGSYLQGFVDAANRNALKPQLVQLFSNAELVNRQMLDDMLKYKRLEGVDVALRQLAANLFKDGRQQVELREVVQAGHVPTLVIWGSDDAIIPAVHAEGLSAQVEVLPGQGHMVQMEAAEQVNRLIIEFIGQH	PGPT0001390_6374	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
D1-36_02464	1095	ydjJ	COG1063	putative zinc-type alcohol dehydrogenase-like protein YdjJ	ATGAACGTTTCAATCAAGCCGACCCGCAGCATGCGCGCCGCCGTTTGGCATGGCCGTAATGACATCCGCGTCGAAGACGTGCCGCTGCCGGTTTCACCGCCCGCCGGTTGGGTGCAGATCCGCGTGCAGTGGTGCGGCATCTGCGGTTCGGACCTGCACGAGTACGTGGCGGGGCCGGTGTTCATCCCGGTGGACGCGCCACACCCCCTGACCGGGATCAAGGGCCAGTGCATCCTCGGCCATGAGTTCTGCGGCGAGATCGTCGAGCTGGGCGAGGGCGTCGAAGGTTTCAACGTCGGCGAACCAGTGGCCGCCGATGCCTGCCAGCATTGCGGCACTTGCTATTACTGCACCCATGGGCTCTACAACATCTGCGAGAACCTGGCTTTTACCGGGCTGATGAATAACGGTGCGTTTGCGGAGTTGGTCAATGTCCCGGCCAACCTGCTGTACAAACTCCCGGCCAACTTTCCTGCCGAGGCCGGCGCGTTGATCGAACCGCTGGCGGTGGGCATGCACGCAGTGAAGAAGGCCGGCAGTTTGCTTGGCCAGAACGTCGTGGTGGTCGGCGCCGGGACCATCGGCCTGTGCACGATCATGTGCGCCAAGGCGGCCGGCGCGGCCCAGGTCATCGCACTGGAAATGTCCGGCGCGCGCAAGGCCAAGGCCCTGGAAGTCGGGGCCAGCCATGTGATCGATCCCAATGAGTGCGACGCCCTGGCCGAAGTTCGGCGCCTGACCGGCGGCCTGGGCGCCGATGTCAGCTTCGAGTGCATCGGCAACAAGCACACCGCCAAGTTCGCCATCGACCTGATCCGCAAGGCGGGCAAATGCGTGTTGGTGGGGATTTTCGAAGAACCGAGCGAGTTCAACTTCTTCGAACTGGTTTCAACCGAGAAGCAGGTGCTGGGCGCATTGGCCTACAACGGTGAGTTCGCCGACGTGATTGCGTTCATCGCCGACGGACGCCTGGACATCTCGCCGCTGGTGACCGGGCGCATCCAGTTGGAAGAAATCGTCGGCCAGGGCTTCGAGGAGTTGGTAAACAACAAGGAACACAACGTGAAAATCATCGTGTCACCCGCACGGATCTGA	MNVSIKPTRSMRAAVWHGRNDIRVEDVPLPVSPPAGWVQIRVQWCGICGSDLHEYVAGPVFIPVDAPHPLTGIKGQCILGHEFCGEIVELGEGVEGFNVGEPVAADACQHCGTCYYCTHGLYNICENLAFTGLMNNGAFAELVNVPANLLYKLPANFPAEAGALIEPLAVGMHAVKKAGSLLGQNVVVVGAGTIGLCTIMCAKAAGAAQVIALEMSGARKAKALEVGASHVIDPNECDALAEVRRLTGGLGADVSFECIGNKHTAKFAIDLIRKAGKCVLVGIFEEPSEFNFFELVSTEKQVLGALAYNGEFADVIAFIADGRLDISPLVTGRIQLEEIVGQGFEELVNNKEHNVKIIVSPARI	PGPT0008200_103	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
D1-36_02465	501			hypothetical protein	ATGCAGGTCACTGGCCCGGTCGCGCAAGGCTGGATGGACCGATTGGGCGACTCGCCCTTGGCCTCGGCCATGCGCAGCGAGCTATGGCTCTATCCGCTGGTGGAAGTGCTACACATCATCGGGTTCTCGATACTGGTGGGCGCGGTGGTGATGTTCGATCTGCGCGTCCTCGGGCTGTCCAGGGACATCGCCGTGACCGCACTGGCTCGCCATCTGCTGCGATGGGCCGTCGGGGCCCTGCTGTTGATCGTGCCTGCCGGCTTGATGATGTTCAGTGCGCACCCTCATGATTTCGCCAGCAACAACGTGTTCATTCTCAAGCTGTGCCTGATCGCGGCGGCAGGCGTCAATGCCCTGCTGTTCCATCTGGTGCCCTACCGCTCCGTCCAGCAATGGAATACCCACCTCACGGCGCCGAGCCTGGCCAAGCTCCAGGCGCTGCTGTCCGTGGCGTTGTGGATCGCGGTGATCGGCTGCGGGCGCTTGCTGGCCTACACCTGA	MQVTGPVAQGWMDRLGDSPLASAMRSELWLYPLVEVLHIIGFSILVGAVVMFDLRVLGLSRDIAVTALARHLLRWAVGALLLIVPAGLMMFSAHPHDFASNNVFILKLCLIAAAGVNALLFHLVPYRSVQQWNTHLTAPSLAKLQALLSVALWIAVIGCGRLLAYT				NA	NA	NA	NA	NA
D1-36_02466	351			hypothetical protein	ATGAACCTGATCTTTCGTTGCATCGGCTTGTCCACGATGCTGGTCGCCACCGCCGCCCTTGCCCACCATGGCTGGAGCGAATACGACGCCAGCAAGCCACTGACGCTCGAAGGTACGATCAAGGAGTCCGGTTACTCCCACCCCCACGGGACCGTACGCCTGCAAACCACGGAAAAGACGTGGTTCGTCGTGCTCGCGCCGCCTTCTCGCATGGAAAATCGGGGGCTGACCAAAGACATGCTCAAAGCCGGTAACCGGGCCACCGTGGTCGGCTACGCCAATAAAAACAAGCCTGACGAGCTTCGCGCCGAACGCATCACCATCGACGACAGAACCACCGAGCTGCGCTGA	MNLIFRCIGLSTMLVATAALAHHGWSEYDASKPLTLEGTIKESGYSHPHGTVRLQTTEKTWFVVLAPPSRMENRGLTKDMLKAGNRATVVGYANKNKPDELRAERITIDDRTTELR				NA	NA	NA	NA	NA
D1-36_02467	555			hypothetical protein	ATGAATTATTTCCTGGCCCAGGCCCTGAACAACCAATGGGCCAATCACAGGCTGCTGGACGCCTGCGCACAGCTGAACACCGTGGAATACGAGGCCTACCGCACCAGTTTCTTCCCCTCCATCCAAGCCACGCTGTGCCACATACTGGAAGTAGATCGCTATTACCTCACCGCCCTCAAAGGCGATGTCCTGGGCCAGGAGCGGGATTTTTCCGAGATGCTGGCGTTCAACCAGCTCAGGGAAAGCCAGGACCGGACCGACCGGCAACTGGCGGCATTGTGCAGCAACCTTAAACGCACAGACCTGTCTCGCACCGTCGACCTGGTGCGTGCCGACGGCAACGCTTTCGAACGGATCGACCGCTTACTGCTGCACCTGTTCGAGCACCAGATCCATCACCGCGGCCAGGTCCACACCATGCTCAGCGCCACCCACGTCGAACCGCCGCAGCTCGACGAGTTTTTCCTCGATTGCGACCGCCGCTTCCGCGAAGAGGAGGAACAGTTGCTGCAACTCGACGAGCAGCGGGTCTGGCGAGAGTACCAGCCCGATTGA	MNYFLAQALNNQWANHRLLDACAQLNTVEYEAYRTSFFPSIQATLCHILEVDRYYLTALKGDVLGQERDFSEMLAFNQLRESQDRTDRQLAALCSNLKRTDLSRTVDLVRADGNAFERIDRLLLHLFEHQIHHRGQVHTMLSATHVEPPQLDEFFLDCDRRFREEEEQLLQLDEQRVWREYQPD				NA	NA	NA	NA	NA
D1-36_02468	918	dapA_1	COG0329	4-hydroxy-tetrahydrodipicolinate synthase	ATGAGCCAACGCATCAACTGGAGCGGCGTATTCCCCGCCGTTACTACCCAATTCAACGATGACTTTTCCATCAACCTGGAAAAAACCCATCAGGTCATTTCCAACGTCATTCGCGATGGCGTATCCGGCCTCGTGGTCTGCGGGTCGGTGGGGGAAAACACTTCCCTGAGCGCGGAGGAAAAGATTGCCGTGACCGAAGTGGCGGTGGACGCTTCCGGGGGCCGGGTGCCGGTGATATGCGGCGTGGCCGAGTTCACCAGCGTGCAGGCCGCCAAAGTCGCCAATGCGGTGCGCAAGGTCGGTGTCGACGGGGTGATGCTGATGCCCGCGTTGGTCTACGGCTCCAAGCCGTTCGAAACCGCCGAACATTTCCGCTATGTCGCCCGGCATGCCGACGTGCCGCTGATGGTCTACAACAACCCGCCTATCTACAAGAACGACGTCACCCCGGACATCCTGATTTCCCTGGCCGATTGCGACAACGTGGTGTGTTTCAAGGACTCCTCCGGCGACACCCGGCGTTTCATCGACGTGCGCAATGAAGTGGGCGATCGCTTCGTGCTATTCGCCGGTCTCGATGATGTGGTGCTCGAAAGCCTCGCCGTAGGCGCAGAAGGTTGGGTCTCGGGCATGTCCAACGTGTTCCCCAAGGAAGGTGAAACGATCTTCCGGCTGGCCCGCGCCGGACGGTTCGCCGAAGCCATGCCGATCTACGAATGGCTGATGCCGATCCTGCACCTCGACGCCCGCGCCGACCTGGTGCAGTGCATCAAGCTCTGCGAAGCCATTGCCGGCCGAGGCAGCGCTCTCACCCGCCCACCGCGCCTGGCCCTGCCGGAAGCAGACCGGGTGTACGTGGAGCAGATCATGGCCACGGCCCTGGCCAATCGGCCAGTGTTGCCGGAGGTGGGGCTTTAA	MSQRINWSGVFPAVTTQFNDDFSINLEKTHQVISNVIRDGVSGLVVCGSVGENTSLSAEEKIAVTEVAVDASGGRVPVICGVAEFTSVQAAKVANAVRKVGVDGVMLMPALVYGSKPFETAEHFRYVARHADVPLMVYNNPPIYKNDVTPDILISLADCDNVVCFKDSSGDTRRFIDVRNEVGDRFVLFAGLDDVVLESLAVGAEGWVSGMSNVFPKEGETIFRLARAGRFAEAMPIYEWLMPILHLDARADLVQCIKLCEAIAGRGSALTRPPRLALPEADRVYVEQIMATALANRPVLPEVGL	PGPT0002080_3671	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISM	CE-BACTERIAL_FITNESS-RHIZOPINE_BIOSYNTHESIS,PGPT0002080-dapA|mosA-K01714	NA	NA
D1-36_02469	1029		COG3938	putative trans-3-hydroxy-L-proline dehydratase	ATGCGCTCATCCAGAATCATCCACATAGTCAGCTGCCACGCCGAAGGCGAAGTCGGCGATGTGATCGTCGGCGGTGTCGCGCCGCCACCCGGCGCCACGGTCTGGGAACAATCACGCTGGATCGCCCAGGACCAGACCCTGCGCAACTTCGTCCTCAACGAGCCTCGTGGCGGGGTGTTCCGCCACGTCAACCTGCTGGTGCCGGCCAAGGACCCGCGGGCGCAGATGGCCTGGATCATCATGGAACCGGCCGACACCCCACCCATGTCCGGCTCCAATTCGTTGTGCGTCGCCACCGTGCTGCTGGACAGCGGCATCCTGCCGATGACCGAACCCCAGACGCGCTTGGTCCTGGAGGCACCGGGCGGCTTGATCGAGGCCGTGGCCGACTGCCGCGACGGCAAGGTGCAACGGGTCGAGATCAAGAACGTGCCCTCCTTCGCTGACCGCCTCGATGCCTGGATCGAAGTCGAGGGCCTGGGAACATTGCAGGTGGACACCGCCTATGGCGGCGACAGCTTCGTCATCGTCGACGCCCAGCGCCTGGGCTTCGCCATTCGCCCCGACGAGGCCGCCGATCTCGTGACCGTGGGGCTGAAGATCACCCGGGCCGCCAACGAGCAGTTGGGCTTCGTACACCCCTTGAATCCCGATTGGTCGCACATTTCGTTCTGCCAGGTCGCCGCGCCCGTCGTCATGGAAAACGGCATCGCCACCGGCGCCAACGCCGTCGTCATCCAGCCCGGCAAGATCGACCGCTCGCCCACCGGCACCGGTTGCTCGGCCCGCATGGCGGTGCTGCACGCCAAAGGCCTGATGCAGGTGGGTGAACGGTTTATCGGCCGCTCGATCATCGGCTCCGAATTCCATTGCCGCATCGACTCACTGACCGACGTTGCCGGTCGCCCGGCGATCTACCCGTGCATCGCCGGGCGGGCGTGGATCACCGGAACCCACCAATTGCTGCTGGACCCGGCCGATCCGTGGCCGCAGGGCTACCGGCTCTCAGACACCTGGCCCGGCGCATGA	MRSSRIIHIVSCHAEGEVGDVIVGGVAPPPGATVWEQSRWIAQDQTLRNFVLNEPRGGVFRHVNLLVPAKDPRAQMAWIIMEPADTPPMSGSNSLCVATVLLDSGILPMTEPQTRLVLEAPGGLIEAVADCRDGKVQRVEIKNVPSFADRLDAWIEVEGLGTLQVDTAYGGDSFVIVDAQRLGFAIRPDEAADLVTVGLKITRAANEQLGFVHPLNPDWSHISFCQVAAPVVMENGIATGANAVVIQPGKIDRSPTGTGCSARMAVLHAKGLMQVGERFIGRSIIGSEFHCRIDSLTDVAGRPAIYPCIAGRAWITGTHQLLLDPADPWPQGYRLSDTWPGA	PGPT0014240_43	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_PROLINE_DEGRADATION,PGPT0014240-prdF-K01777	NA	NA
D1-36_02470	723	glnQ_8		Glutamine transport ATP-binding protein GlnQ	ATGATTGAAATCGAAAACGTTCATAAATCCTTCGGCAACCTGGAAGTCGTCAAGGGTGTCAGCCTGACGGTGGACAAGGGCGAAGTCGTGTCGATCATCGGTGGCTCCGGTTCCGGTAAATCGACCCTGCTGATGTGCATCAACGGCCTGGAGCCGATCCAGAAAGGCAGCATCCGCGTGGACGGCGTCTCGGTACACGACAGCGCCACCGACCTCAACCGCCTCCGGCAGAAGATCGGCATCGTTTTCCAGCAGTGGAACGCCTTTCCCCACCTGACCGTGCTGGAAAACGTGATGCTCGCGCCGCGCAAGGTGCTGGGCAAGACCAAGCAGGACGCCGAGGCGCTGGCGGTCAAACAGCTTGAGCACGTGGGCCTGGGGGACAAGCTCAAGGCCTTTCCCGGAAAGCTCTCCGGCGGCCAGCAGCAGCGCATGGCAATCGCCCGTGCCTTGGCGATGTCGCCGGACTACATGCTGTTCGACGAAGCCACCTCGGCCCTCGACCCGCAACTGGTCGGTGAGGTGCTGGACACCATGCGCATGCTGGCCGAAGACGGCATGACCATGGTGCTGGTGACCCACGAGATCCGCTTCGCCCGGGACGTATCCGACCGCGTGGCGTTCTTCTGCAATGGGCGAGTCCATGAGATCGGCCCGCCGGAGCAGGTGATCGGCAATCCGGTGCAGCCGGAGACGGCGGCGTTCCTCAAATCGGTGAAATAG	MIEIENVHKSFGNLEVVKGVSLTVDKGEVVSIIGGSGSGKSTLLMCINGLEPIQKGSIRVDGVSVHDSATDLNRLRQKIGIVFQQWNAFPHLTVLENVMLAPRKVLGKTKQDAEALAVKQLEHVGLGDKLKAFPGKLSGGQQQRMAIARALAMSPDYMLFDEATSALDPQLVGEVLDTMRMLAEDGMTMVLVTHEIRFARDVSDRVAFFCNGRVHEIGPPEQVIGNPVQPETAAFLKSVK	PGPT0014280_32	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_PROLINE_TRANSPORT,PGPT0014280-lhpO-K23064	NA	NA
D1-36_02471	651	artQ_2	COG0765	Arginine transport system permease protein ArtQ	ATGTTCTCTACAAGCCTTACCGTCAACGACGTGTTGTATCTGCTCGAAGGTGCCTGGGTCACGGTGCAATTGACCGTCTGGTCGATCCTGCTGGGCACCGTGGCCGGGTTGTTGTTCGGCCTGTTGCGGGCGCTGTTGCCCAGGGTCAGCCTGCCATTGGCCTGGGTACTCGATGCGTTTCGCAGCGTGCCACTGCTGATCCAGTTCGTGCTGTTCAATTCCCTCAAGAGCATCGTCGGCCTGGACCTCAGCGCCTTCGCCGTCGGTTGCATCGTGCTGGGGGTCTACGCCGCCGCGTACTTCACCGAGATTGTCCGCGGTGGCGTGCTGGCGGTACCGACGAGCACCCGGCGGGCCAGCCGATCCCTGGGGCTCACGTACTGGCAGGACCTGCGCTTCATCGTCCTGCCGATTGCCACGCGGGTGGCGTTTCCCGGCTGGTTGAACCTGGTGCTGGGGGTGATGAAAGACACCGCGCTGGTGATGTGGATCGGCATCGTCGAACTGCTGCGGGCTTCGCAAACCATCGTCACGCGTATTCAGGAACCCCTGCTGGTGCTGTGCATCGCGGGCCTCATTTATTACCTCATGAGCCTGGTGGTCGCCCGCCTCGGCGCTCGCCTGGAAAGAAGGTGGCAAGAAAATGATTGA	MFSTSLTVNDVLYLLEGAWVTVQLTVWSILLGTVAGLLFGLLRALLPRVSLPLAWVLDAFRSVPLLIQFVLFNSLKSIVGLDLSAFAVGCIVLGVYAAAYFTEIVRGGVLAVPTSTRRASRSLGLTYWQDLRFIVLPIATRVAFPGWLNLVLGVMKDTALVMWIGIVELLRASQTIVTRIQEPLLVLCIAGLIYYLMSLVVARLGARLERRWQEND	PGPT0014275_83	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_PROLINE_TRANSPORT,PGPT0014275-lhpM-K23063	NA	NA
D1-36_02472	666	occM_3		Octopine transport system permease protein OccM	ATGTTTGACTACAGCTTCCAGTGGCGCCCCGCCTTGCGCGCCCTGCCCGATATGCTTGCCGGCGCCTGGGTGACCTTCGAAACCGCCGCGTTGTCGATGATTTTCGGCGTGCTGATCGCCCTCGTCCTGACGGTGATGCGCCAGGCACGCCATCCGCTGTTGCGCGGTGTCGGCAATGGTTGGGTGTCGATCGCCCGCAACACACCCTCCTTGTTCCAGATCTACATCCTCTACTTTGGCCTCGGCTCCCTCGGGCTGCACGTCAGTTCGTGGTTTGCGTTGCTGGCGGGTATCACCTTCAACAACGCCGGCTACCTGGCGGAAAATTTTCGCGGCGGCCTCAAGGCCGTACCGGGCACGCAGATGCGCGCCGCCCGTTCCCTGGGCATGAGCGCGTTCCAGGCCTACCGGATGATCATCGTCCCGCAACTGTTGCGCATCGTTTTCTACCCGCTGACCAATCAGATGGTCTGGGCGGTGTTGATGACGTCCCTGGGTGTGGTGGTCGGTTTGAATAACGACCTCACGGGGGTGACCCAGGAATACAACGTCAAGACGTTCCGCACCTTCGAATATTTCGCCCTCGCGGCGGTGCTCTATTACCTGATCGCCAAGTTGATCGTCGGGTTGGCCCGGCTGTTGTCCTGGCGCCTGTTTCGTTATTGA	MFDYSFQWRPALRALPDMLAGAWVTFETAALSMIFGVLIALVLTVMRQARHPLLRGVGNGWVSIARNTPSLFQIYILYFGLGSLGLHVSSWFALLAGITFNNAGYLAENFRGGLKAVPGTQMRAARSLGMSAFQAYRMIIVPQLLRIVFYPLTNQMVWAVLMTSLGVVVGLNNDLTGVTQEYNVKTFRTFEYFALAAVLYYLIAKLIVGLARLLSWRLFRY	PGPT0014270_25	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_PROLINE_TRANSPORT,PGPT0014270-lhpN-K23062	NA	NA
D1-36_02473	1779			hypothetical protein	ATGCCAAGCACGCCTATCCGCTTGCACGGCCGCAGCCTGGTGGAGGGTGCCGCCCAGGGCACCCTGTTGTTCGCCGACGTTGGCCTGAGCTTCTGGGGCGGGGTCGATCCCATTACGGGCGAAATCATCGACCGGCATCATCCTCTGAGTGGCGAACGCCTGGGCGGCCGCGTGCTGGCGATTCCCAGCGGGCGGGGTTCCTGCACCGGCAGCAGCGTGTTGATGGAGCTCATCAGCAACGGCCACGCACCGGCCGCACTGGTACTGGCCGAAGTCGACGAGATCCTGGCCCTTGGAGTACTCGTGGCCGAGGTGATTTTCCAGCGCTCGCTGCCGGTGTTGTGCATCGGCCACGAGGCGTTCGCTGGCTTGCGCGGCCAAGGATTCGTGCGCGTCGAGGGCAACCGCCTGACGTTGTCCGGCCGACGGCCCAACGATCAATGGCATGGGACGGATATGGCCCCGCAGCCGTCCATGCCGTTCACCGTCCGGTTGAACGAGCGGGATCGGGCAATGCTCGACGGCGCGCACGGCAAGGCAGCCCAAGTAGCGATGCAAATCGTCCTGCGGATGGCCGAGATCCAGGGCGCCGACCAACTGCTGGACATCACCCAGGCGCACATCGACGGCTGTATCTATACCGGCCCGGCCAGCCTGCGCTTTGCCGAACAACTGGTGCGGTGGGGGGCAAAAGTGAGTGTGCCCACGACCCTCAATTCGATCTCCGTGGACCAGCGCCGCTGGCGGGAACTGGGCGTCGACGCTGCGCTGGGCGAACCGGCCAGCGCCTTGGGTGATGCTTACATGGCCATGGGCGCGCAATTGAGCTTCACCTGTGCGCCCTACTTGCTGGACACCGCGCCCGTGGCCGGCGAACAGATTGTCTGGGCCGAGTCCAACGCGGTGGTCTACGCCAACAGCGTGCTCGGCGCCCGCACGCAGAAGTACCCGGACTTTCTCGACATCTGCATCGCCCTGTGCGGTCGCGCGCCGCTGGCCGGATGTCATCTCGATGGGCCGCGAAAGGCCGGGCTGATCGTCGAAGTGACAAGGCCCGACCCGATGGACGACAGTTTTTATCCGCTGCTGGGCTATCACATCGGCGGCCTGACGGGACGACGTGTCCCGCTGATACGGGGCCTGGAAGACGCCGCGCCCACCCGGGATGATTTGAAGGCTTTTGGCGCCGCGTTCGCGACCACCAGCGCCGCGCCACTGTTCCACATCGCCGGGGTGACGCCCGAGGCCTTGGACCCGGCCAATGTGCTGGACTGCGACGCTGTGTTACCGGTGGAAACCGTCAACGCTGCCGGGCTGCTTGTCAGTTGGCGCGAGCTCAACAGTGCCCGGCATCGCAACGTGGATGTGATTTCCCTGGGCAACCCACATTTCTCCCTCAGCGAATTCGCCGCCCTGGCACACCTGTGTTCGGGCCGGAACAAACACCCCGGCGTGGTGCTGGCGATCACCTGTGGCCGTGCCGTACTGGAACAGGCCCGCCAGGCAGGTTACCTGGACGCGATCCGGGCCTTCGGGGCGACGCTGGTCACTGACACCTGTTGGTGCATGTTGGGCGAGCCGGTGATCCCGCCGACCGCCACCACCCTGATGACCAATTCCGGAAAATACGCGCACTACGCGCCGGGCCTGGTGGGGCGCGGCGTGCATTTTGCCGGTCTGGCCGATTGCATCGAGGCGGCCTGCACCGCCACCGCCAGCGATCAGCCGCCACAGTGGTTGCAACCTTCCGCACCCAAGGGGACTCCGAGCCATGTTTGA	MPSTPIRLHGRSLVEGAAQGTLLFADVGLSFWGGVDPITGEIIDRHHPLSGERLGGRVLAIPSGRGSCTGSSVLMELISNGHAPAALVLAEVDEILALGVLVAEVIFQRSLPVLCIGHEAFAGLRGQGFVRVEGNRLTLSGRRPNDQWHGTDMAPQPSMPFTVRLNERDRAMLDGAHGKAAQVAMQIVLRMAEIQGADQLLDITQAHIDGCIYTGPASLRFAEQLVRWGAKVSVPTTLNSISVDQRRWRELGVDAALGEPASALGDAYMAMGAQLSFTCAPYLLDTAPVAGEQIVWAESNAVVYANSVLGARTQKYPDFLDICIALCGRAPLAGCHLDGPRKAGLIVEVTRPDPMDDSFYPLLGYHIGGLTGRRVPLIRGLEDAAPTRDDLKAFGAAFATTSAAPLFHIAGVTPEALDPANVLDCDAVLPVETVNAAGLLVSWRELNSARHRNVDVISLGNPHFSLSEFAALAHLCSGRNKHPGVVLAITCGRAVLEQARQAGYLDAIRAFGATLVTDTCWCMLGEPVIPPTATTLMTNSGKYAHYAPGLVGRGVHFAGLADCIEAACTATASDQPPQWLQPSAPKGTPSHV				NA	NA	NA	NA	NA
D1-36_02474	819		COG0834	putative amino-acid ABC transporter-binding protein	ATGAAAAACCCTGCATTGGCCGTAGCCCTTGGCGTTGTCCTCTTTCCCCTGCTTGCCCTACCCGCCCATGCCGACAAGCTCGACGACATCATCGGCTCGGGCAAGCTGCGTTGCGCGGTGACACTGGACTTCCCACCCATGGGTTTTCGCGATGAAAGTAACAAACCGGCGGGCTTCGACGTGGATTACTGCCACGACCTGGCGAAGGTCCTCGGCGTCGACGCCGAAGTGGTGGAAACGCCATTCTCCGACCGCATCCCCGCGCTGCTTTCGGGCCGCGCCGATGTCATTGTCGCTTCCACTTCCGACACCCTGGAGCGGGCCAAGACCGTTGGCCTGACCGTGCCCTACTTTGCCTTCCAGATGGTGGTGCTGACCCGCGACGACACCGGTATCAACAGCTACGCCGACCTCAAGGGCAAGAAACTCGGAAACACCAGCAGCACTTACGAAGCCATCGCCCTGGAGAAAGACCAGAAGAGTTGGGGCAGCGGCAGTTTCCGCGCCTACCAGTCGCAGAACGACACATTGCTGGCCGTCGCCCAGGGGCACATCGACGCCACCGTCGTGACCAACACCGTGGCCGCCGCGACCATCAAGTCGGGCAAGTACAAGGGCCTGAAGATCGCTGGCGATGCTCCCTATGTCATCGACTACGTGTCCCTCGGCGCCAAGCGCAGCGAGTACGGCTTGCTCAACTACCTCAACCTGTTCGTCAACCAGCAAGTGCGCACGGGCCGCTACAAGGAGCTGTTCGTCAAATGGGTCGGCACCGAGATCCCGCCGGCCAACCTGACCGTGCCCCAGGTGTACTACTGA	MKNPALAVALGVVLFPLLALPAHADKLDDIIGSGKLRCAVTLDFPPMGFRDESNKPAGFDVDYCHDLAKVLGVDAEVVETPFSDRIPALLSGRADVIVASTSDTLERAKTVGLTVPYFAFQMVVLTRDDTGINSYADLKGKKLGNTSSTYEAIALEKDQKSWGSGSFRAYQSQNDTLLAVAQGHIDATVVTNTVAAATIKSGKYKGLKIAGDAPYVIDYVSLGAKRSEYGLLNYLNLFVNQQVRTGRYKELFVKWVGTEIPPANLTVPQVYY	PGPT0014265_35	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_PROLINE_TRANSPORT,PGPT0014265-lhpP-K23061	NA	NA
D1-36_02475	750	rhaS_6		HTH-type transcriptional activator RhaS	ATGTACCCCTCGCTGACGACCTTCACTCCCTGCGACTTCGACACCCTGCTGCGCAGTCTGCTGCCCATCGCGCCGTTGCTCGATACCCTCTCGGACACGGTGTTTTTCATCAAGGACACCCAAGCCCGCTACGCATTCGTCAACCAGACCCTGGCCCGGCGTTGCGGCTTCAAGCAATGCAACGACCTGCTCGGTCTGACTGCCGAGCAAGTGTTCCCGGAGCGCTTCGGCCCGCTGTACACCGAACAGGATCGACGGGTGCTGGCCAGCGGACGGGAGCTGGCCGACCAGCTCGAATTGCACCTCTATTACGGCAACCAACCGGTGTGGTGCCTGACCCACAAGCTTGCCTTGCGCGAACCTGAGGGCGGGATCGTCGGCCTGGCCGGGATTTCCCGTGACTTGCAGTCGCCGCAATCGAGCCATCCGGCGTACCAACAACTGGCGGCCGTGGACGCGCATATCAAGCAGCACTTCGCCCGCCCCATCAGCCTGGCGGAACTCACTGCCATCGCCGGGTTGTCGGTGGCGCAGCTGGAACGACACTGCAAGCGCATCTTCCAGCTCACGCCTCGGCAGATGATCCACAAGGCGCGCCTGGGAGAGGCCTCGCGATTGTTAATGGAGCACGATCTGCCCATTACCGAGATCGCCCTGCGCTGTGGTTACACCGATCACAGTGCCTTCAGCCGCCAGTTCCGCGCGCTGACGAGCCTTTCACCCAGCCAGTACCGGGACAACCAGCGTTGA	MYPSLTTFTPCDFDTLLRSLLPIAPLLDTLSDTVFFIKDTQARYAFVNQTLARRCGFKQCNDLLGLTAEQVFPERFGPLYTEQDRRVLASGRELADQLELHLYYGNQPVWCLTHKLALREPEGGIVGLAGISRDLQSPQSSHPAYQQLAAVDAHIKQHFARPISLAELTAIAGLSVAQLERHCKRIFQLTPRQMIHKARLGEASRLLMEHDLPITEIALRCGYTDHSAFSRQFRALTSLSPSQYRDNQR				NA	NA	NA	NA	NA
D1-36_02476	1248	hcnB_1		Hydrogen cyanide synthase subunit HcnB	ATGACCGAACTCGCCGACATCCTCATCATCGGCGCCGGCCCCGCCGGCATGGCCGCTGCGCTGGCCGCGGCACGCAGCGGGGCGCGCATCGTGCTGCTGGACGACAACCCGAGCCCTGGCGGACAGATCTGGCGCGACGGTCCCCAGGCCAGCCTGCCTGCCCAGGCGGGTCGGATGCGTGATCGTCTGAACGCCTGCACTAATGTGTACTGCCACGCCGGCACCCGGGTCATTGCCTGCGCGGGCGAGAAGACACTGTTGGTGGAAAACGCCGAGCAGGGATGGCTGATCCGCTACGAGCGGCTGATTCTTTGCACGGGCGCGCGGGAACTGCTGCTGCCCTTCCCTGGCTGGACACTGCCCGGCGTCACCGGTGCTGGTGGCTTGCAGGCACTGATCAAGGGCGGCCTGCCGGTGCGCGGCGAACGCCTGGTGATTGCCGGCAGCGGCCCGTTGTTGTTGGCCAGCGCGGCGACGGCCAGGCATCACGGGGCGCAAATATTGCGCATCGCCGAACAAGCCAGCGGTGCCGCCGTTACAGGTTTTGCCATGCAGTTGCCGCGCTGGCCGGGCAAGTTGACGCAGGCGTTCAGCCTGTTCGATTCCCACTACCGCGTCGGCACGCATGTGCTGGAAGCCCTGGGACGGGACAAGCTCGAAGGCGTGCGCCTGCAACAGCGGGGCAAGACTGTGGAACTGGCGTGCGACCGGTTGGCCTGCGGATTCGGCCTGATTCCCAATACCCAGCTGGGTCAGGCGTTGGGCTGCGAGCTGGCTGGACAAGCCCTGGCGGTCGACGCCTGGCAGGCCACCACGCGCCGTGATCATTACGCCGCTGGTGAGTGCACCGGTTTCGGTGGCAGCGAACTGGCCCTGGTGGAAGGCGCCATCGCCGGTCACGTCGCCGCCGACGACACCTCGGCAGCCGAACGCCTCTGGCCTCGCCGGGCGCGATGGCAGGGCTTTGCCCTGGCGTTGAACAAGGCTTTCGCCCTAGATGCTCGTTTGAAAGGCCTGGCCCGGGGCGACACCTTGGTGTGTCGCTGCGAAGACGTGGCCTATGCAGAACTGAGCAGCCATGCCGACTGGCGCGAAGCAAAACTTGCCAGCCGCTGCGGGATGGGCGCCTGCCAGGGTAGGGTTTGCGGCGCGGCGCTGGAGCATCTGTTTGGCTGGGCGCCGCCGGCTCCTCGTCCACCGTTCAGTCCGGCACGGGTTGAGACGTTGCTTAATCTGGCAGATGAGTGA	MTELADILIIGAGPAGMAAALAAARSGARIVLLDDNPSPGGQIWRDGPQASLPAQAGRMRDRLNACTNVYCHAGTRVIACAGEKTLLVENAEQGWLIRYERLILCTGARELLLPFPGWTLPGVTGAGGLQALIKGGLPVRGERLVIAGSGPLLLASAATARHHGAQILRIAEQASGAAVTGFAMQLPRWPGKLTQAFSLFDSHYRVGTHVLEALGRDKLEGVRLQQRGKTVELACDRLACGFGLIPNTQLGQALGCELAGQALAVDAWQATTRRDHYAAGECTGFGGSELALVEGAIAGHVAADDTSAAERLWPRRARWQGFALALNKAFALDARLKGLARGDTLVCRCEDVAYAELSSHADWREAKLASRCGMGACQGRVCGAALEHLFGWAPPAPRPPFSPARVETLLNLADE	PGPT0020395_393	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0020395-lhpC-K22549	NA	NA
D1-36_02477	237	hcnA_1	COG0446	Hydrogen cyanide synthase subunit HcnA	ATGCCTGAGTTATTCCTCGATGGCCGCCCGCTCTCGGTGGCCGATGGCACCAGCGTCGCGGCGGCATTGGCGTTGGGTGCTGACGGTTGCAGTCGCACTTCGGTCAGCGGCCAACGCCGGGCCCCCTTGTGTGGCATGGGCATCTGCCAGGAATGCCGGGTGATGATCGACGGCCGCCGGCGCCTGGCGTGCCAGACGCTGTGCCGCGACGGCATGCGCGTGGACACCCGACCATGA	MPELFLDGRPLSVADGTSVAAALALGADGCSRTSVSGQRRAPLCGMGICQECRVMIDGRRRLACQTLCRDGMRVDTRP	PGPT0020400_346	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0020400-lhpD-K22550	NA	NA
D1-36_02478	1116	hcnC_1		Hydrogen cyanide synthase subunit HcnC	GTGAGCCAAGGCCATGTCGCAGACGTGATCATCGTCGGCGCGGGCATCATTGGCGCCGCCTGCGCGCAAGCCTTGGCCCAGCGTGGTTTGAAGGTGCTGGTGCTGGACGCCGGTTGGCACGGCGCCACGGCGGCCGGCATGGGCCACTTGCTGGTACTCGATGACAACCCGGCGGAGCTGGCCCTGAGCCAATACTCCCTGCGACGCTGGCGCCAGATGGCCCCCGATCTTCCAGAACGCTGCGCCTGGCGCAACAACGGCACGTTGTGGCTGGCGGCCAACGCCGAAGAGATGGCCGTGGCCCACAGCAAATACATGAACCTGATGGCCCATGACGAAGCCTGTGAACTGATCGGCCGAGCCGCACTGCTCCAGCGCGAACCGGAACTGCGGCCCGGCCTGGAAGGTGGGCTGCTGATCAAGGGCGACGGCATTCTCTACGCACCCGCGGCCGCCCGCTGGATGCTCGATCACGCCAACATTCGCCATCAACGGGCGCAAGTCAGCGAAGTGGACGGTCACCGCGTGCGCCTCGCAGGGGGCGGTTGGCTCCGCGCCGACGCAGTCGTCCTCGCCAACGGCATCCAGGCCACTGAGCTGTGCCCGGAGCTGCCGATCGAACCCAAGAAGGGACACCTGCTGATCACCGACCGCTACCCCGCCACTGTCAGCCACACCTTGGTTGAGCTGGGTTACGTCACCAGCGCTCACAACGCCAGCGGACCGTCGGTGGCGTGCAACATCCAACCGCGCCCGACGGGACAACTGTTCATCGGCGCTTCGCGGCAGTTCGGCAATGTAGACCCAGCGGTGGAAGGCTGGATGCTGGCGAAAATGCTCAAGCGTGCCGTGGACTACATGCCTGGCCTGGCGCACCTCAACGGTATCCGCGCCTGGACGGGCTTTCGCGCGGCGACCCCCGACGGCTTGCCACTGGTGGGCCAACATCCGCAGCGCAAGGACCTATGGCTGGCGGTGGGTCATGAAGGGCTCGGCGTTACGACCGCACCGGCGACGGCTGATTTGCTGGTCGCCCAGCTATTCAACGAAACCTCGCCGCTGGCGGCGCAACCTTACCTGCCGCAACGTTTCCTGGGAGAAGCGGTCCATGCCTGA	MSQGHVADVIIVGAGIIGAACAQALAQRGLKVLVLDAGWHGATAAGMGHLLVLDDNPAELALSQYSLRRWRQMAPDLPERCAWRNNGTLWLAANAEEMAVAHSKYMNLMAHDEACELIGRAALLQREPELRPGLEGGLLIKGDGILYAPAAARWMLDHANIRHQRAQVSEVDGHRVRLAGGGWLRADAVVLANGIQATELCPELPIEPKKGHLLITDRYPATVSHTLVELGYVTSAHNASGPSVACNIQPRPTGQLFIGASRQFGNVDPAVEGWMLAKMLKRAVDYMPGLAHLNGIRAWTGFRAATPDGLPLVGQHPQRKDLWLAVGHEGLGVTTAPATADLLVAQLFNETSPLAAQPYLPQRFLGEAVHA	PGPT0020390_479	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_PROLINE_DEGRADATION,PGPT0020390-lhpB2-K21061	NA	NA
D1-36_02479	933		COG3938	4-hydroxyproline 2-epimerase	ATGAAACGCATCACCGTGATCGACTCCCACACCGGCGGCGAACCGACCCGACTGGTGACCGATGGCTTCCCCGACCTGGGCCAGGGCAGCATGGCCGAACGCAGGCAGCGCCTGGCCGAGCAGCACGACGCCTGGCGCACCGCGTGCGTCCTGGAACCGCGCGGCAGCGATGTGCTGGTGGGCGCGTTGCTGTGCGAACCGGTGGACCCGACCGCCTGTGCCGGGGTGATCTTTTTCAATAACAGCGGCTACCTGGGCATGTGCGGCCACGGCACCATCGGCCTGGTGGCGTCATTGGCTCATCTGGGCCGGATCGGCCCGGGCGTGCACAGCATCGAGACACCGGTGGGCACAGTGCAGGCGACGTTGCACGAGGATCGCTCGGTCAGCGTGCGCAACGTGCCGGCCTACCGTTACCGCCAAGGGCTGCGCCTGGAGGTGCCGGGCATCGGGCCGGTGTCTGGCGATGTGGCGTGGGGCGGGAATTGGTTTTTCCTGATCGCCGACCACGGGCAACGCGTGGCGGGCGACAACCTGGAAGCACTGACCGCCTACACCTTCGCCGTGCAACAAGCCCTGGAGCAACAGGGGTTTCGCGGCGAGGACGGCGGGCTGATCGATCATATCGAGCTGTTCGCCGACGATCCCCAGGCCGACAGCCGCAATTTCGTGCTGTGCCCCGGCAAAGCCTATGACCGCTCTCCCTGCGGCACCGGCACCAGCGCCAAACTGGCGTGCCTGGCGGCCGACGGCAAACTGCAACCCGGGCAGATCTGGCGCCAGGCCAGCGTCATCGGCAGTGAATTCGAAGGGTCGTATGAACGTTCAGGCGATCGCATCGTGCCGACCATTCGCGGCCGGGCCTATATCAGTGCTGAAAGCACCTTGCTCCTCGAGCCGGACGATCCGTTCGCTTGGGGCATTCGTCCGTGA	MKRITVIDSHTGGEPTRLVTDGFPDLGQGSMAERRQRLAEQHDAWRTACVLEPRGSDVLVGALLCEPVDPTACAGVIFFNNSGYLGMCGHGTIGLVASLAHLGRIGPGVHSIETPVGTVQATLHEDRSVSVRNVPAYRYRQGLRLEVPGIGPVSGDVAWGGNWFFLIADHGQRVAGDNLEALTAYTFAVQQALEQQGFRGEDGGLIDHIELFADDPQADSRNFVLCPGKAYDRSPCGTGTSAKLACLAADGKLQPGQIWRQASVIGSEFEGSYERSGDRIVPTIRGRAYISAESTLLLEPDDPFAWGIRP	PGPT0014235_627	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_PROLINE_DEGRADATION,PGPT0014235-lphA-K12658	NA	NA
D1-36_02480	1011			hypothetical protein	ATGTCTAATCAGCACCGGTTGAGCATGAGCTCATTCAATCAAAGCGACGCAGCTTCGTCCGTCGCAGCGTCAAACATCACCCCAGATACAATCGTCTCAGCGTTCAATCAGCCCATCATCGACACGCTGACTGTCACGGCGCAGATAAAGAATACTTACTACGCGGGAACCGACGACACACTATTGATATCAATGGGACCGTACAACGAGTTACAGACTTACATCGAAGCCCCGAGAGTCGGTCAGACGATTCACATTTCGATTGATATCCAAAGGATGTTTGGCAGGTCGAGCATTTCGCTATCGGACATTCGCGGCCTGACGTTCTATCAAGCGCCTGTGCCGCACCCGATCATCTCGGATGCCTGGGAACTCGAGTCGCTACTGATTACCGCCAACGATATCTACACCAACGCAATGAATAAAATAGATACGTGGATTTTTAACAAATCACCGCATCTTCGCCCGGTATGGTCAGGCATCGTGGATTTCTCCAACTGGACGAACTCCGATCGTCGCCCCTTAGATCTGAGCGCTCAGACGTATCCAATACGCTGGATGCCGTATATCAGTGACTTGACCCGCTGGCGCTGTTACAACCCGGCACAACTAGAAGGGGTGGGTCAACTGCTCGGCGTCTGGAACGGCAAGTTGATCGGTAATCAACTGAAAGGTCAAACAAGCGAACTCCTTGCCCCAAACAGCGAATCCAACAGCTATACATGGGTATATACGCCTGAGGGATCGATTATTTATAAGCGCTGGGAACATGCCAAACCATCGGAGTATTTAAGACACAGTCAACTTGGAAGCGGCAGACCGGTCATTTGCGCGGGAGAGTTCAGGGTCAAGGAACACCGTATGCAAAATGTCCTAGCGATGGTCAACGATGCCTCCGGACACTACAAACCCGACGGAGGAGCCTGCTTGCGCTATGTGGCGGAGAAGTTCGAGTCTATCAATATCGATACAAGCCATACCGAATGGCGATGGACAAACGCACGCAGTTGA	MSNQHRLSMSSFNQSDAASSVAASNITPDTIVSAFNQPIIDTLTVTAQIKNTYYAGTDDTLLISMGPYNELQTYIEAPRVGQTIHISIDIQRMFGRSSISLSDIRGLTFYQAPVPHPIISDAWELESLLITANDIYTNAMNKIDTWIFNKSPHLRPVWSGIVDFSNWTNSDRRPLDLSAQTYPIRWMPYISDLTRWRCYNPAQLEGVGQLLGVWNGKLIGNQLKGQTSELLAPNSESNSYTWVYTPEGSIIYKRWEHAKPSEYLRHSQLGSGRPVICAGEFRVKEHRMQNVLAMVNDASGHYKPDGGACLRYVAEKFESINIDTSHTEWRWTNARS				NA	NA	NA	NA	NA
D1-36_02481	672	rspR	COG1802	HTH-type transcriptional repressor RspR	GTGACTTTATCCAAATTCAACCTGCCCGACCTGGGCAACACCCCGTCCACCTCGGAAATCATTACCCGCCACTTGCGCGACGCTATCGTGGCCGGGCTTTTCGCCGAGGACGAGCCGATTCGCCAGGACGACATCGCCCGGCAATTCAACGTCAGCAAGATCCCCGTGCGCGAAGCGCTCAAGCGCCTGGAAGCCGAGGGCCTGGTGATGTTCCAGCGCAATCGCGGGGCGATGGTTACGCGGATCTCCGAGGCGGAACTGGCGCAGATGTTCGAGGTGCGGATGTTGCTGGAGGACAAGGTGCTGCGCCTGGCGATCCCCAACATGACCGACGCGACCTTCGCCCGTGCCGAAAGCATCTGCCGGGAGTTCATCGGCGAGGACGACGTCGGCCGCTGGGCCGAGCTGAACTGGCAGTTGCACGCCTGCCTTTATGAACCGGCGCAACGGCCCTTCATGGTGAGCCTGATCCGCTCGGTTCACGACAAACTCGAACGTTACCTGCGCATGCAGATGAGCCTGTCGGCCGGCAAGGATCGCGCCGACCATGAGCACCGCGAAATCCTCGACGCCTGCCGCGCCGGTGACGTGGAGCGCGCGGTGAAACTGCTGGACGAACATATCGCCGGGGTCTGCAGGACGCTGTTCGAGTTCTTGCCTTCCGGTCACTGA	MTLSKFNLPDLGNTPSTSEIITRHLRDAIVAGLFAEDEPIRQDDIARQFNVSKIPVREALKRLEAEGLVMFQRNRGAMVTRISEAELAQMFEVRMLLEDKVLRLAIPNMTDATFARAESICREFIGEDDVGRWAELNWQLHACLYEPAQRPFMVSLIRSVHDKLERYLRMQMSLSAGKDRADHEHREILDACRAGDVERAVKLLDEHIAGVCRTLFEFLPSGH				NA	NA	NA	NA	NA
D1-36_02482	1167			hypothetical protein	TTGGACGCACAGCAACGACATTCACGGGGCCTGGCCTTTGGTCTGTGCCTGATCACCCTGGCGGTCAACCTGCAGGCGCCGCTGTACACCACCTATGCGCAGCTTTCCGGTTACGGCGCAGGCGCCACGGCGGTGGCGTTTTCCGGTTATGTGCTCGGCGTGTTGCCCGTGCTGCTGGCGTTCGGCGGACTGGCCGACCGGATGGGCCGCAAACCGTTGATCCTGGTGGCGCTTGGCCTGTCGATGCTGGCAACGGTCATCACCTCGATCTGGCCCAACCTGATAGCGCTGGGCGTGGCGCGCCTGATGATGGGCGTCGGCACCGGGTTGGCCTCGGCGACTTCCACGGCCTACATGGTGGAATTGATGCCGACCGGCGATGCCCGGTCGCCGGCCAACCGGGTCACCGCCAGCACCTCTCTGGGTTTTGGATTGGGCGCGGCGTTGACCAGCCTTTTCCTGTTCGTCCATCACAGCGTTACGCCAGGCAGTTTCTGGGTGCAGTTGGCGTTGGCCGCCCTGGCGATCGTCGTGGTCGCGCGACTGCCGGACCCAGCCCCGAAAATCAGGCACGCGCCGCTGTTGCGCCTGCCGTTGTTCCCTGCTGGCAGCCTGCCCTACAGCTTCTCCATGCTGCTGGCCTGGGCGACTTCCGGGCTGGTGATCGCCATCCTGCCTTCGGTGCTCGCGGCCCATGACTTGCAGCGCTGGTCCGGCCTGTCGACCTTCACCGTGATCAGTTGCGGGCTGATCTTCCAGCCTTGGGTGAAACGCATGCAGCCGGCCAGGGCCACGGGATTGGGGCTGCTCGTCTTGCCTTTGAGCTATGCGCTGCTCGCCTGGGGCGCGAGCCAGGGTTCGCTGGCCGCCGTGCTGCTCGGCGCACTGGGGGCCAGCAGTGCGTGCTATGGCTTTCTTTACCTCGGCGGACTGTCGGCGATCACGGCCATGGCCGGTACGCAAAAAGCCCGAGTCAGCGCCGGTTTCTTCCTCTTCGCCTATGTCGGGTTCAGCATTCCGGTCGTGGTGACGGGTTGGATGGCTGACCATTTCGGCGCTGATGTCGCGTTGACGGTGTTTGGCCTGGCGTTGCTGGCAGGCGCAACGATCACCGGGTTGCGCATCGTCCGGACGCAGGCTTTCATCACCCAACCCTCCCACGGCTGA	MDAQQRHSRGLAFGLCLITLAVNLQAPLYTTYAQLSGYGAGATAVAFSGYVLGVLPVLLAFGGLADRMGRKPLILVALGLSMLATVITSIWPNLIALGVARLMMGVGTGLASATSTAYMVELMPTGDARSPANRVTASTSLGFGLGAALTSLFLFVHHSVTPGSFWVQLALAALAIVVVARLPDPAPKIRHAPLLRLPLFPAGSLPYSFSMLLAWATSGLVIAILPSVLAAHDLQRWSGLSTFTVISCGLIFQPWVKRMQPARATGLGLLVLPLSYALLAWGASQGSLAAVLLGALGASSACYGFLYLGGLSAITAMAGTQKARVSAGFFLFAYVGFSIPVVVTGWMADHFGADVALTVFGLALLAGATITGLRIVRTQAFITQPSHG				NA	NA	NA	NA	NA
D1-36_02483	1416	hisC_4		Histidinol-phosphate aminotransferase	ATGGACCTGAACATCGATCGCAACGCCAGGGGAAGCGTGGTCCGGCAACTGGTTGCCAGCCTAACCGCGTGGATCGATACCCATGGCATCCGCCCCGGTGCGCGAATGCCTTCGATCCGCCAGTTGGCGACGGAAAACGGCTTGAGCCTGTCGAGCGTGATCAAGGCATATGACCAACTGGTCGCCAGCGGCGTATTGGAATCGCGCCATGGTTCGGGTTTTTTCGTGGCCCAGCAGTTACCCCAGGCGCTGGCGGCGCAGATCGAGGATGAGGCGATATCCTGGCCGCTGTTCGACAACGAATCGACCCAGCTCAAGCTGGGTTGCGGCTGGCTGCCGGACGCGTGGCGCGATGATACCGACCTGGGCCAAGCGATCCGGCAGGTGGTGCGCAGTGACAATAAGGCGCTGTTCAATTACAGCACGCCGTTGGGCTCGGCTGATCTGCGCCAGCAAATCCAGAAGCGCCTGGGCCTGATCGACATTCACGTCGATCCTCGCCAGATCATCACCACCCAAGGCGCCAGCCATGGCTTGGACCTGTTGGTGCGCACGCTGCTCAAGCCCGGTGACCTGGTGTTGGTGGAGAGCCCTGGCTATTACAACCTGTTCAACCTGCTGAAGCTGCATGGAGTCAGGACCCTGGCGGTGCCGAGAACCGCCCATGGTCCGGATATCGCCCGGCTGGAGCAGTTGCTCAAAGCGCACAAGCCCACGTATTTCTTCATCAACAGCATGTACCAGAACCCCACCGGCACCAGCCTTGCGCCGAGCGTGGCCTATCGCCTGTTGCAACTGGCGACGCTGCACGACTTTCGGCTCATCGAGGATGATATCTACGCCGATTTCCAGAACGGCCCGACGTCGCGCCTGGCCTCCCTCGATGCCATGGACCGGTTGATCTACCTGGCGAGTTTTTCCAAGACCTTGTCCAGCTCGTTGCGCATCGGCTACGTCGTCGCCCAGCCTGAAATCATCCAGCGCCTGGCGCAGGTCAAGATGGTGACCGGTATTGGTTGTTCATTGCTGACGGAAAACGTCGTGGCGACGCTGTTGGCGAACGGGGCGTATCGCAAGCTGATCCAGCGCCTTCGCGGGCGCCTGAACAAGCAGATGGCGAGCACGTTGCGTCAGCTTGACCCGACGCACTGGGAAGTGTTTGCCGAGCCCAGTGGCGGGCTGTTCGTGTGGGCGCGGCCTCGTCTTGTGCCGGCCGAGCGGGTGCGACAGATCGCCAAGCAGCTGCAGGTCCAGTTGTCCCAAGGGTCGTCGTTCCTGCCAGAGGGGGGAGCCTGCGACTGGTTGCGGCTGAACGTTGCGTTCACCCAGGATGCCCGGGCCCAGGCGTTTCTCAGGCAAATTCGACAAGTTTCCACAGCTGGAACGGGCGTACTAATGGGAATAGATGTCAAATAG	MDLNIDRNARGSVVRQLVASLTAWIDTHGIRPGARMPSIRQLATENGLSLSSVIKAYDQLVASGVLESRHGSGFFVAQQLPQALAAQIEDEAISWPLFDNESTQLKLGCGWLPDAWRDDTDLGQAIRQVVRSDNKALFNYSTPLGSADLRQQIQKRLGLIDIHVDPRQIITTQGASHGLDLLVRTLLKPGDLVLVESPGYYNLFNLLKLHGVRTLAVPRTAHGPDIARLEQLLKAHKPTYFFINSMYQNPTGTSLAPSVAYRLLQLATLHDFRLIEDDIYADFQNGPTSRLASLDAMDRLIYLASFSKTLSSSLRIGYVVAQPEIIQRLAQVKMVTGIGCSLLTENVVATLLANGAYRKLIQRLRGRLNKQMASTLRQLDPTHWEVFAEPSGGLFVWARPRLVPAERVRQIAKQLQVQLSQGSSFLPEGGACDWLRLNVAFTQDARAQAFLRQIRQVSTAGTGVLMGIDVK				NA	NA	NA	NA	NA
D1-36_02484	2142	cntO_3		Metal-pseudopaline receptor CntO	ATGCGTCGGATACTCGTTTCACTGTGTGTGCTCCAAGCTTATTCCATCTCCTCCTGGGCAGAAGAGCCCGTTTCCACGGACAAGGCGCCACTGGAGTTGCAAGCCACCGACATTGTCGGCACCTCGGACTTCGAGACTGCACAAGGCCCGGTAAAGGGCTACCACGCCACCCGTTCCGCCAGCGCCACGCGTACCGACACCGCTATCCACGAAACCCCGCAGTCTATTTCTGTCGTGTCCCGCGATGTGGTCGAAGACCTCAGCGCCACGCGCCTGCAAGATGCCCTCGATTACGCTGGCGGCGTCGGCAGGGGGAACAATTTCGGCGGCCAGGGCCTGACCACGTTTACCGTGCGTGGCTTTACCACGGGCGAGTTCTACCGCAACGGCTTCCCGATCAATCGGGGTTACCCGAACATGCCCGACGCCAACACCATCGAGCGTCTGGAAGTGCTGCGTGGGCCGGCGTCCATGCTGTATGGGCGTGGCGATCCCGGCGGCACCTTCAACGTAGTGTCCAAGCAACCATTGGCCGAGCGCACGGTGACCCTGGGCAGTCAGATCAGCGATCAGGGAATGCGTCGCGGCACCTTGGATGCGTCCGGCCCGTTGGATGACGAAGGCCGCCTGGCTTATCGCTTGAATGTGGTGGGCGAGGGCGGCGATACGTTCCGCGATCATGTCGAGACCGAACGTTATGGCATCGCCCCTGTGGTCACTTGGCAGGTCAACGACACCACGCGCCTGACCTTCGAAGGCGACTTCATGCGCAACAATGCGCCGCTGGACCGTGGCCTGACGCATTACGCAGGCCAGCGTGGCACCGCGTCCCGCGATACCTTCTTCGGCGAAAAAGACGTCGGCAAGTTGCACAACGACAACAACATGCTGCAGGTGCGTTTCGAGCACATGCTCAACGACGACTGGACCCTGGCCGGTGGCACCCAGTGGCTCGACGGCACGTTGCAGGGCAACGCTGTCGAAGGCAACGGCATCGCCGCCGATGGGCGCACCCTGGGGCGCAACTTCAACTACCGCAAGCTGGAATGGACCGACCGCGATACCCAGCTCAACCTCACCGGGCACTTCTCCACGGGAGGGTTCGAACATACGCTGCTGACGGGTGTGGAATACGAAGACTACAGCTACGAATCCATCATCCAGCGTTCCGCCGGTGGTTCTGGCGCGTACCCGATCGACATCTTCGATCCGGTCTATGGCCAGCCGCGCCCGGCCTTGACCCGCACCCCAACCGACGACCAGGAAAATCTCAAGACCTTCGGCGTGTTTGTCCAGGACCAGGTGGCGCTGACCGAGCGGCTGAAGGTGCTGGCGGGGGCGCGTTTCGAGCGGTTTGAGCATGAGTATGAAAGCTTTGTGCCCCAAGCACGCCCCGGCAGCCGCAACTGGGAGGTTACCGACAATGCAGTCACCCCACGCCTAGGCGTGATCTATGACCTGACCGACACGGTGGCGGTCTATGCCAACACCGCGCGCTCGTTCAAACCCAACAACGGCGCGAGCCGCGAGGGTGGCGGGTTCAAGCCGGAAGAGGGTAAGTCCTATGAAATGGGCGTTAAGTGGGAAGCGCTGGATCGCCAGTTGAGCGTCGATGCGGCGGTCTATCAGATCGAAAAACGCAACGTGCTGACGCCCGATCCGTTGGATTCGACCTTCAACGTCGCCGCTGGCGAAGTGCGCAGCCGTGGTTTCGACTTGAACGTGGCGGGCAACCTGACACCGGAGTGGCGCGTCATCGGCGGCTACGCCTATGTGGACGCCGAAGTGACCAAGGACGAGAACATCCCCACCGGTACTCGGCTGCTCAACGTACCGAAAAACACCGTCAGCCTGTTGAACGTCTATGAATTCCAGGACGGTGGCTTGAAGGGGCTAGGCCTGGGCCTGGGCGCCAGGTATGTGGATGAGCGGGCCGGCAACACCGCCGCCACCACCTTCACCATGGACGACTACACGGTGGTCGACCTGCTCGGCTACTACAAGGTCAACGAGCGCATTCGCCTCAACCTGGACCTGAAGAACCTGTTCGACGCCGATTACGAAGAGGGCGCGTTTGGTGGCGTCTACGCCTATCCGGGCGCACCGCGGACGGTGCAGGCGGGCATCTCCTACACGCTGTAG	MRRILVSLCVLQAYSISSWAEEPVSTDKAPLELQATDIVGTSDFETAQGPVKGYHATRSASATRTDTAIHETPQSISVVSRDVVEDLSATRLQDALDYAGGVGRGNNFGGQGLTTFTVRGFTTGEFYRNGFPINRGYPNMPDANTIERLEVLRGPASMLYGRGDPGGTFNVVSKQPLAERTVTLGSQISDQGMRRGTLDASGPLDDEGRLAYRLNVVGEGGDTFRDHVETERYGIAPVVTWQVNDTTRLTFEGDFMRNNAPLDRGLTHYAGQRGTASRDTFFGEKDVGKLHNDNNMLQVRFEHMLNDDWTLAGGTQWLDGTLQGNAVEGNGIAADGRTLGRNFNYRKLEWTDRDTQLNLTGHFSTGGFEHTLLTGVEYEDYSYESIIQRSAGGSGAYPIDIFDPVYGQPRPALTRTPTDDQENLKTFGVFVQDQVALTERLKVLAGARFERFEHEYESFVPQARPGSRNWEVTDNAVTPRLGVIYDLTDTVAVYANTARSFKPNNGASREGGGFKPEEGKSYEMGVKWEALDRQLSVDAAVYQIEKRNVLTPDPLDSTFNVAAGEVRSRGFDLNVAGNLTPEWRVIGGYAYVDAEVTKDENIPTGTRLLNVPKNTVSLLNVYEFQDGGLKGLGLGLGARYVDERAGNTAATTFTMDDYTVVDLLGYYKVNERIRLNLDLKNLFDADYEEGAFGGVYAYPGAPRTVQAGISYTL	PGPT0003790_21226	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014	NA	NA
D1-36_02485	735	baiA_2		3-alpha-hydroxycholanate dehydrogenase (NADP(+))	ATGAGCAATCAAAAAACCGTCATCATCACCGGCGCGTCCAGCGGCATTGGCCTTGGCTTGGTCAAGGCGTTCCTGGCTCGCGGCTATAACGTAGTGGGCAATGCCCGTTCCCAGTCGGGCCTGGACGATGCGGCCGGCCAGTTGGGCCATCCAGCGAGCTTCATCGGCGTGGCCGGAGACATTGCCGATCCGGCGACCTCTACCGCCCTTGTCGGCAAAGCCATCGCGGCGTTTGGCGCGGTTGATGGGCTGGTCAACAACGCTGGTTTTTTCCTGCCCAAACCCTTTGTCGAATACAGCCCGCAGGACCTGGAATCGCTGCTGGACACCAATCTCAAAGGGCTCGTCTACGCAAGCCAGGCCGCAGCCGCGCACATGATCGATCGCCAGCAGGGTTTCATCATCAACATTTCCGCCTCGGTGGCCTTGCAACCGAACCTCCAGGTGCCGGCAGCACTGCCAGTGTTGATCAAGGGCGGCGTCAACCAGATGACCCGCGCCCTGGCCCTGGAGTTGTCGCCTTTCAACATCAAGGTCAACGCCGTGGCGCCCGGTATCATCGACACGCCGATGCATGACCCGGCGCACCGCGACTTCCTCAACAACCTGGCGCCGGCCGGTCGGGTGGGCACCATCGAAGAGATCGCCGAAGCCGTGTTGTACCTCGCGGGCGCCGACTTCACGACTGGCGCGGTCCTGCCGGTGGACGGCGGCATGAGCACCGGCAAATGGTGA	MSNQKTVIITGASSGIGLGLVKAFLARGYNVVGNARSQSGLDDAAGQLGHPASFIGVAGDIADPATSTALVGKAIAAFGAVDGLVNNAGFFLPKPFVEYSPQDLESLLDTNLKGLVYASQAAAAHMIDRQQGFIINISASVALQPNLQVPAALPVLIKGGVNQMTRALALELSPFNIKVNAVAPGIIDTPMHDPAHRDFLNNLAPAGRVGTIEEIAEAVLYLAGADFTTGAVLPVDGGMSTGKW				NA	NA	NA	NA	NA
D1-36_02486	207		COG1942	putative tautomerase	ATGCCTTTCGTCAATGTACGTATCACCCGCGACGGCGTTACCCGCGAACAGAAAGCCCAGGTGATTAGCGAAATCACCGAAACCCTGCAGCGTGTGTTGGGCAAGGACCCGCACCTGACCCATATCGTGATCGAGGAAGTCGATACCGATAACTGGGGTTATGCCGGCATGACGACGACGGAGTATCGAAGCAAACCCAAGGAGTAA	MPFVNVRITRDGVTREQKAQVISEITETLQRVLGKDPHLTHIVIEEVDTDNWGYAGMTTTEYRSKPKE	PGPT0005210_1362	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATION	PLANT_DERIVED_CATECHOL_DERIVATE_UTILIZATION,PGPT0005210-praC|xylH-K01821	NA	NA
D1-36_02487	924	pgrR_7		HTH-type transcriptional regulator PgrR	ATGAAGCGGCACTTCGAAGACTTGCAGTTGGGCAGCATCGAGCTTTTCTGTCTGGCGGCGGAGGCGGGCAGTTTCACGGCGGCGGCGCAGGTGGCGGGCGTGACCCCAGCGGCGGTGAGCCGCTCGATTTTTCGGTTGGAAGAGCGTCTGGGTTCGCGCCTGTTTGTGCGCACCACCCGCAGCATCCGCCTGACCGACGCCGGCAGGACTTTTTTCGAGCAATGCCGTCAGGCATTGACGCAATTGGTCGAGGCGCAACAGGAAGTCATGGGGGCGCAATCCGTGCCATCCGGGCAACTGCGCATCAGCGTGCCGACGACTTACGGCCATCACCGCATCCTGCCACTGCTGCCGGCGTTTCGCGCGCAATACCCGCAAGTCACCGTTGATGTCCACTTGAGCAACCGCAACATCGATTTTGTCGCCGAAGGTTATGACCTCGCCATCCGTGTTCGGGCCCAGCCGGACTCCTCGATGATCGCCCGGTTGCTGGAAGACGCGAAACTGGCGGTGGTCGCGTCCCCGGATTACTTGCGCAGGGTAGGCACGCCGCAAACGCTGGAAGACCTGCAATTTCACGAGTGCATCCAATTCGAGCTGCCCAGCAGTGGTCGTCGTATCTCTTGGTTGTTCAACGTCGAGGGCAAGGAGAAGGAAGTGTTCGGGCAGGGTGGGTATTGCTGTTCCGACGACGTGTTGGGCGGGGTGACGCTGGCCAAGCATGGCGCCGGGCTGTTCCAGACCTATCGATTCATCGTTGAAACAGAGTTGGCGGACGGGCAATTGGTGGAAGTGCTGACACCGTTCGCGGGGCGTTCGCGCCCGTTCACGTTGCTGTATCCCCATGGCCGATACGTGCCGCAGCGGGTGCGGGCGTTTGTGGATTTTCTGTTGCAGTACCGGGAGCAGTGGGCCGCGACTTGA	MKRHFEDLQLGSIELFCLAAEAGSFTAAAQVAGVTPAAVSRSIFRLEERLGSRLFVRTTRSIRLTDAGRTFFEQCRQALTQLVEAQQEVMGAQSVPSGQLRISVPTTYGHHRILPLLPAFRAQYPQVTVDVHLSNRNIDFVAEGYDLAIRVRAQPDSSMIARLLEDAKLAVVASPDYLRRVGTPQTLEDLQFHECIQFELPSSGRRISWLFNVEGKEKEVFGQGGYCCSDDVLGGVTLAKHGAGLFQTYRFIVETELADGQLVEVLTPFAGRSRPFTLLYPHGRYVPQRVRAFVDFLLQYREQWAAT				NA	NA	NA	NA	NA
D1-36_02488	429			hypothetical protein	ATGAAAAAAGCATCATTGCTGATCGGTTTCGTTTGCCTCTTCAGCGGCTACGTCGCAGCCGCCGCACCGGCCGAAAAAGAGGTGGCCGAAGCTGTAGACCACCTGACCCAGGCCATGCTTCACAAAGACATCCCCCAACTCCAGGCCCTTGCCGCCGAGAACCTGACCTACGGCCACTCCAGCGGCAATATCCAGGACAAAAAAGCCTTCATCGCCGACATCGAAACCGGCAAGAGCGCATTCAAGACCCTGGAAATGAAAAATCAGAAAATCACCCTTTCTGGCGACGTGGCCCTGGTACGCAACCACTTCTCTGCCCAGGCGCTCAAGGGCACCGAAGTGGTCCCGACCGAAATCGAAAACTTCCAGATTTGGCAAAAACAGAACGGCAAATGGCTGCTGATTGGTCGTCAGGCATTCCGGTTCTGA	MKKASLLIGFVCLFSGYVAAAAPAEKEVAEAVDHLTQAMLHKDIPQLQALAAENLTYGHSSGNIQDKKAFIADIETGKSAFKTLEMKNQKITLSGDVALVRNHFSAQALKGTEVVPTEIENFQIWQKQNGKWLLIGRQAFRF				NA	NA	NA	NA	NA
D1-36_02489	897	hcaR		Hca operon transcriptional activator HcaR	ATGTTTGAGCTGGCCCAACTGCGCTGCTTCACCACCGTGGCGACCGAACTCAACTTCCGTCGCGCCGCCGAACGCCTGAACATGACCCAACCACCCTTGAGCCGGCAGATCCAATTGCTGGAGCATCACCTGGGCGTCGAACTGTTCACCCGCAGCACCCGCAGCGTCGCCCTCACCGCCGCCGGCCGGGCGTTCTTCATCGAGGCGCAGAACCTGTTGCAACAGGCGCAGCAGGCCGCAGTGGCCGCCAAGCGCTTTGCCCAGGGCCATATCGGTTCGGTCACCATCAGCTTCGTCGGCAGCGCGGTGTATGAATTCCTGCCAAAGGTGATCGCCGAAGCGCGGCTCAAGCAACCGCAGGTGAAGATCGTCCTGTCGGAGATGAACACCTACCAACAACACGAAGCCCTGCGCGCCCGGCGCATCGACCTGGGCATCGTCCGCTCGCCGCTGCTGGAAACCGGCTACGCCACTGAGTGCCTGGTGCGCGAGCCGTTTGTCCTGGCCGTGCCTGCGGGCCACCCGCTGGCCAACGCCGAGTCTGTCAGCGTGCAGGACCTGGATGGACAGCCGTTCCTGATGTACGCCCACTCCGCCTACCCGCCCTTCAACGAACTGCTCACCGGCATGCTGCGCTCGGCCCGTGTCACTCCGCAGTTCGTGCAATGGCTGGGGTCTTCGCTGACCATCCTGGCGCTGGTCAACGCCGGCATGGGCCTGGCACTGGTGCCGCGTTGCGCGACCAGCGTGGCGTTCAGGCAAGTGGTGTTTCGCGAGATCGATCTGGGTGAAGGGGTGCAGAGTGAGCTGCATCTGGTTTGGCGGGAGGATAACGACAATCCGGCGTTTACGATGTTGCTGGAGGGGATTCGAGGGGCGGTTCGGGAGGGACTGTAG	MFELAQLRCFTTVATELNFRRAAERLNMTQPPLSRQIQLLEHHLGVELFTRSTRSVALTAAGRAFFIEAQNLLQQAQQAAVAAKRFAQGHIGSVTISFVGSAVYEFLPKVIAEARLKQPQVKIVLSEMNTYQQHEALRARRIDLGIVRSPLLETGYATECLVREPFVLAVPAGHPLANAESVSVQDLDGQPFLMYAHSAYPPFNELLTGMLRSARVTPQFVQWLGSSLTILALVNAGMGLALVPRCATSVAFRQVVFREIDLGEGVQSELHLVWREDNDNPAFTMLLEGIRGAVREGL				NA	NA	NA	NA	NA
D1-36_02490	1275	gudD_1	COG4948	Glucarate dehydratase	ATGAAAATCAAACGCGTCACCGTCACCCCCATCGCTTTCCGCGACCCCCCGCTGCTTAACGCCAGCGGCATCCATGAGCCCTTTGCGCTGCGCTCGATCATCGAGATCGAAAGCGACAACGGCTACATCGGCCTCGGCGAGAGCTACGGCGATGCGCCGGCCCTGGCGATCCAGCAACAGGTCCAGGACCAACTGGTCGGCATGGACCCGTTCAACCTCAACCAGTTGCGGGCCATCGTTCAGGCCACCGTGGCGGCCCACAAGCCGGCCAGCGTTGCCGGGGCGGAACTGGCGCCGGGCTCCCATGCGAGCAAAGCGGTGAGCAATGCCTATTCGGCCTTCGAGGTGGCTTGCCTGGACTTGCAGGCGCATTACCTGAACGTGCCGCTGGTGGACCTGTTGGGCGGTGCGATTCGCGATGAAGTGCCGTTCAGCGCATACCTGTTTTTCAAATATGCCGAGCACATCGACTCGCCATATCCTGCGGACAACTGGGGCGAAGCGCTGAACGAGCAGCAGATCGTCGCCCAGGCACGGCGGATGATCGAGGAATACGGGTTCAAAAGCATCAAGCTCAAGGCCGGCGCCCTGGAGCCGGAGCATGAAGTGGCCTGCATCAAGGCGTTGAAAAAAGCGTTTCCTGGCTTTCCGCTGCGCATCGATCCCAACGGCAACTGGTCGCTGGAAACCTCGATCCGCATGGCTGAGCTGCTAGGGGACGACCTTCAGTATTACGAAGACCCGACGCCTGGCCTGGAGGGCATGGCCGAGCTGCACAAGCGCACTGGCCTGCCGCTGGCGACCAACATGGTGGTCACCGATTTTGACGAGTTCCGCCGAAGCGTGGCCCAGGACAGCGTGCAGATCGTCCTGGCCGACCACCATTATTGGGGCGGGCTGCGGGACACCCAGGTACTGGCGAAAATGTGCGACACCTTTGGCCTGGGGGTTTCCATGCATTCCAATTCGCACTTGGGCATCAGCCTCATGGCCATGGCCCACGTGGCGGCTTCGGTGCCGAACCTGGATTACGCCTGCGACACGCATTACCCATGGCAGGAACCGGATGAAGAAGTGATCAAGGGTGGCAAGCTTCCGTTTGTCGACGGCTGCGTGAAGATCACCCGGGCGCCGGGCCTGGGGTTGGAGCTTGACCGCGATCAACTGGGCAAGCTGCACGAGCAGTTCCTGAGCTGCGGCATTCGCCAGCGCGATGACGTGCGGCAGATGCGGCGCTATCGGCCTGATTGGAAGACGGTCAAACCGAGGTTCTGA	MKIKRVTVTPIAFRDPPLLNASGIHEPFALRSIIEIESDNGYIGLGESYGDAPALAIQQQVQDQLVGMDPFNLNQLRAIVQATVAAHKPASVAGAELAPGSHASKAVSNAYSAFEVACLDLQAHYLNVPLVDLLGGAIRDEVPFSAYLFFKYAEHIDSPYPADNWGEALNEQQIVAQARRMIEEYGFKSIKLKAGALEPEHEVACIKALKKAFPGFPLRIDPNGNWSLETSIRMAELLGDDLQYYEDPTPGLEGMAELHKRTGLPLATNMVVTDFDEFRRSVAQDSVQIVLADHHYWGGLRDTQVLAKMCDTFGLGVSMHSNSHLGISLMAMAHVAASVPNLDYACDTHYPWQEPDEEVIKGGKLPFVDGCVKITRAPGLGLELDRDQLGKLHEQFLSCGIRQRDDVRQMRRYRPDWKTVKPRF	PGPT0018180_898	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018180-gudD-K01706	NA	NA
D1-36_02491	1185			hypothetical protein	ATGCACAACAATAAAAATACCTGCCTGCGTTTTTTGCCTGCGGTCATCGCAGGCCTCTCGACTCTCGCCCCGATGCCTTGGGCCCACGCCGAAATCATGCTGTACGACAAGGACCAGACGACCTTTTCCACCGACGGCTACATCAACGCTTTCTACGTCAACAGCGACGTGGACCGTGCCGGCGAACAGTTCGACCGCCGCCAGTCGCGGGTCAAGATGGGCTTCTTGCCCAACTACCTGGGCTTCAACATGGGCAAGCAGGTCGATGACCTCAAGCTCGGCGCCCGGGCGTCGTTCTGGGTGACCATCAACGACAGTGAAACCAACGGCACCGACACTGCCATCGACGTGCGCCAGTTCTACGGCACCGTCGCCAACCCGGAGTGGGGCGAAGTACTGATCGGCAAGGACTTCGGCCTGTTCGCCCGTTCCAACATCCTGCTCGATGAGCTGCTGGCCGGTTATGGCCAGGTCAGCGACACCTTGGGCCTGGTGGACGGCGGCGGCGTCTCGTTCGGCAATATCGGCAGCGGTTATCCGTACCCGTTCCCGACGTCGCAAATCACCTATCGCACCCCCGTGATGGACGGGTTGCGCGTGGCGGTGGGCATCATGGACCCGGTGGACACCAACGACAGCAGCGCCACCGGCAAGGCCTACCAGGAGAACCCTCGCACAGAGAGCGAGGTTACTTATCAGTTCGACCTGGGCGCAGCGAAGATCTACAGCTGGCTGAACGGCAGCTACCAGACCTCCGACAACACCGATTCCAGCGTCGAGTCGGTCACGTCCAAAGGTTTGGGTTATGGGGTGCAGGCGAAGATGGGTGGGCTGTCGCTCACCGGCTCGGGGTTTCAGGCCAAGGGTATCAACCCGTTCTTCACAAACAATGCCGGCGAGGCCACGTTGCGCAATGTCGACAGCAAGGGCTACCTCTTGCAGGGCTCCTACAAGCTGGGCAAGAACCGCCTGGCGCTGTCCTATGGCAAGACCGAGGACGACGGAAATGGCGTGGTCGGCAGCGGCGCCGACTATGAGACTCGCGGTGTCGCGCTGTTCCACGACATCAACGATAACCTCAAGCTCGTCGCCGAATACAACCAGTTCGAAATCAACGGCCATGACACCAGCGCGCAGAACGAAGACACCGATACCTTCGCGGTGGGGGCGGTGTTGACCTGGTAA	MHNNKNTCLRFLPAVIAGLSTLAPMPWAHAEIMLYDKDQTTFSTDGYINAFYVNSDVDRAGEQFDRRQSRVKMGFLPNYLGFNMGKQVDDLKLGARASFWVTINDSETNGTDTAIDVRQFYGTVANPEWGEVLIGKDFGLFARSNILLDELLAGYGQVSDTLGLVDGGGVSFGNIGSGYPYPFPTSQITYRTPVMDGLRVAVGIMDPVDTNDSSATGKAYQENPRTESEVTYQFDLGAAKIYSWLNGSYQTSDNTDSSVESVTSKGLGYGVQAKMGGLSLTGSGFQAKGINPFFTNNAGEATLRNVDSKGYLLQGSYKLGKNRLALSYGKTEDDGNGVVGSGADYETRGVALFHDINDNLKLVAEYNQFEINGHDTSAQNEDTDTFAVGAVLTW				NA	NA	NA	NA	NA
D1-36_02492	1164			hypothetical protein	ATGCAGCAGGCCCAGAGCGAGGGCGTGGTCAGCGCCATGTCCCAGGCAACGGACGTCGAGCAAGTGGCCCAGGAGCTGGCGCGACAGTTGTTGCACCCGTACCTGGGGTTCGTGCTGTTTTTCTGTTCCGCCGAATACAATCTGCCGGCCCTGGGCCACGCGCTTTCGCGCAGCTTTGGCGGGATCCGGCTGGTGGGATGCACCAGCGCGGGGGAAATCACGCCACAAGGTTACGGCCGCAACTGCGTGACGGCGGTGGGTTTCGACCACCGGCATTTTTCCATCGCTGCCGAACTGATCGGCGAAATGGAGCACTTCAGCCTGATCGATGCCCAGCAGATGGTCGAGCGCCTTGCCAGTGGTTGCCGCAGCAACGCCTTGGCGCCGATCAAGGGCCACAGCTTCGCCTTGACCTTGCTCGACGGTTTGTCCAGCCGCGAGGAGATGGTGCTGGCAGCCTTGAGCGCCGCCCTGGGGGACATCCCGCATTTCGGCGGCTCGGCCGGGGATGACAATTACCTGACCCACACCCACGTCTACTTTGAAGGTCAATTCCACAGCGGCGCGGCCGTGGTGGTGTTGATCAATACTTGGCTGGAGTTCGAAGTGTTTACCACCCACCACATCCTGCCCCGGCAGGAAAAACTGGTGGTGACCGGCGCCGACAGCGCCACGCGCAGGGTCTACGAGCTAAACGCCGAGCCTGCGGCCGAAGAATACGCACGGCACATTGGCGTGCCGGTAAACGCGCTGGATTACCGGGTCTTCGCTGCCCATCCATTGGCCGTGCGCATCAATGACCAGTACTACGTGCGAGCGATCCAGCAGGTCCATTCGGACCTGAGCCTGAGTTTCTATTGCGCGGTGGAGAACGGCATCGTCCTCACCGCCATGAGCCCGGGGCCGTTGCTGCACAACCTGCAAGATCTGTTCGATGGTTTGCAGGCGCGCCTCGGGGACTTGCTGCTGACCCTGGGCTGCGACTGTTTCCTTCGACGCCTGGAGCTGGAAGATCGCGACGGCCTGGAACAGATCGGCCAGTTCCTGCGTGAACATCGGGTGATGGGGTTCAACACCTATGGAGAGCAATTCAATGGCATGCACATCAACCAGACGTTCACCGGAGTTGCCATTGCCCGCCATCGCGTCCCCGACCATCGCTGA	MQQAQSEGVVSAMSQATDVEQVAQELARQLLHPYLGFVLFFCSAEYNLPALGHALSRSFGGIRLVGCTSAGEITPQGYGRNCVTAVGFDHRHFSIAAELIGEMEHFSLIDAQQMVERLASGCRSNALAPIKGHSFALTLLDGLSSREEMVLAALSAALGDIPHFGGSAGDDNYLTHTHVYFEGQFHSGAAVVVLINTWLEFEVFTTHHILPRQEKLVVTGADSATRRVYELNAEPAAEEYARHIGVPVNALDYRVFAAHPLAVRINDQYYVRAIQQVHSDLSLSFYCAVENGIVLTAMSPGPLLHNLQDLFDGLQARLGDLLLTLGCDCFLRRLELEDRDGLEQIGQFLREHRVMGFNTYGEQFNGMHINQTFTGVAIARHRVPDHR				NA	NA	NA	NA	NA
D1-36_02493	2604	rcsC_11		Sensor histidine kinase RcsC	TTGCCCGCCATCGCGTCCCCGACCATCGCTGAACTGCAGGCGCAGCTCGCCGCTCTGGAGCATGAGAACCGCAAGCTGCGGCGCATCAATGAAGCGCTGATCGAGCGGGTGGAATCCGGCGTGACGCGCGGCAGCGACCCATACGCAGCCTTCCAGCATTCGGTGGTGCTGGCCGAACAGGTGCGTGAGCGTACCGACGCCTTGAACCAAGCCATGGCCGAGTTGAAGGCCGGCAACCATTTGCTCGGCGAAGCGCGGTTGCGGGCGGAAACGGCCCATCGGCATTTGATCGACGCGATCGAGAGTATTTCCGATGCCTTCGTGCTGTTCGACGCGCAACAGCGCATCGTCCTGTTCAACAGCCGTTTCAAGGCGTTCTGGGCCCACAGCCGGGTGCGGATCATCGCGGGGATGCGCCTTGCCGAGGTCAAGCGTTTGATGACCGCCAACGGCTTGTTCAGCGAAGAAACCCGCGGCCAGCCCGACGAACCGGTGCTGTACCGATTGCAGAACGGGCGCTGGCTGCAAGTCAGTGAACGGCCGACCCAGGAAGGCGGCCGGGTGATTCTCTTCACCGATATCACCGACGTCAAACTCAGTGAAACCGTGCGCCGGGAACAGGCCATCGCGCAGAAATCCCATCTGTTGCAGCGCGCCGTGGACAACCTGTCCCAGGGCGTGGCGATGGTCAACGCTCAAGGCGTGCTGGAACTGTGGAACCGGCGCTTCCTGGAGCTCAGTGGCCTGGCACCGGTAGCGGCCCATCGGCCGTTCAACGAGGTCATCGCCGACAGCGAGCTGCAACTGCTTACACCGACCAGTCGCGATGGCAATGGCCGGCTGATCCAGGAGTGTGAGCAACGGCTGTCCGATGGCCGAGTCCTGGAGATCCGCACCCATCCACTGCCCACCGGTGGCTACGTCAACACCTTCACCGACATCACCGAGCGCTACCAGCACGCCGAGGCGTTGAGCGAGAGCGAGCGCTGGATCCGCCTGATCACCGACCACGTTCCGGCGTTGATCGCCTATCTCAACGCCGATCTGGTCTATGAGTTCACCAACAAGGTCTACGAGCAATGGTATTGCTGGCCCCGTGGCGTGATGCTCGGCCAGAGCCTGCGAGAAGCCCACAGCGAGCAGCACTATCAGCGCTTGGAAGCCTACGTGGCCCGGGCACTGGCGGGCGAGAGCGTGACGTTCGAATTCGCCGAGACCAACATCAACAACCAGGAGCGCTACATGCTGCGCTCCTATGTGCCCAACGTGCTGGCCAACGGCGAGGTGGTGGGGATCTTCGTGTTGATCCGCGACATCACCGAGCGCCGTCGCACAGCCGAGGCGTTGCACCAGGCCTATCAAAACCTGGAGCAGCGCGTGCAGGAGCGCACCGCTGAACTGACCAGCCTCAACGACCAGTTGCTGCGCGAGATCGATGAGCGCAGCCGGGTGGAACTGCGCTTGCGCGAAGCCAAGCGCGAGGCCGAGCGGGCCAACCTGTCAAAAACCAAATTCCTCGCGGCGGTCAGTCATGACCTGCTGCAACCGTTGAACGCCGCGCGGCTGTTCACCAGCGCCTTGCTGGAGCGCCGCGAGCCGGTGGCGAACGCGCACCTCGTGCGCAACGTGAGCAATTCGCTGCAGGACGTGGAAAACCTGTTGGGCACCCTGGTGGATATCTCCAAGCTCGATGCCGGCGTGATCAAGGCCGACGTGGCGCCGTTCGCCTTGAGTGAATTGCTCGACAACCTGGCGGCCGAATATCGCCAAGTGGCGCGCAGCGAGGGTCTCGAATTGTGTTTCGTACCTTGTTCGGTGCTGGTGCGCAGTGACATCCAACTGTTGGCGCGGATCCTGCGGAACCTGCTGAGCAATGCGCTGCGCTACACCCCGAACGGGCGGGTTCTGCTGGGATGCCGGCGTCTTGGCAATCGTGTTTCGATCGAGGTCTGGGATTCTGGCATAGGCATCGCCCAGGATCGCCTGGAGGAGATTTTCCAGGAGTTCAAGCGCGGTGATGTCCAGCGACCGAACCAGGATCGAGGCTTGGGCCTGGGGCTGGCGATTGTCGAGAAGATCGCCAGGATACTTGGGCACCGGATCCGGGTGCGCTCATGGCCGGGCAAAGGCTCGGTATTCGCCATTGAGGTGCCCCTCAGCGCCACCGCGCCCAAGCCGCTGCCGTGCCTGGACATGAGCGAGCCCATGCTTGAACGCCTGCGCGGGGCGCGGGTCTGGGTGCTGGATAATGATGGAGCGATCTGCGCCGGCATGCGTACCTTGCTCGAAGGTTGGGGCTGCCTCGTGGTGACTGCGCTGTCGGAACAGGACCTGGCGCGGCAAGTGGACGGCTACCGTGCCGAAGCCGACCTGCTGATCGCCGATTACCACCTGGATCACGACCAGAACGGCGTGGACGCCGTGGCCCGGATCAACGCCTGCCGTGCCTCACCGATCCCGGCCATGATGATCACCGCCAATTACAGCAATGAACTCAAACAGCAGATCCGCGAGCTTGGGCACACACTGATGCACAAGCCGGTGCGGCCGATGAAACTGAAGATTGCGATGAGTCACTTGCTGGGCCAAACAACCAGCCGATGA	MPAIASPTIAELQAQLAALEHENRKLRRINEALIERVESGVTRGSDPYAAFQHSVVLAEQVRERTDALNQAMAELKAGNHLLGEARLRAETAHRHLIDAIESISDAFVLFDAQQRIVLFNSRFKAFWAHSRVRIIAGMRLAEVKRLMTANGLFSEETRGQPDEPVLYRLQNGRWLQVSERPTQEGGRVILFTDITDVKLSETVRREQAIAQKSHLLQRAVDNLSQGVAMVNAQGVLELWNRRFLELSGLAPVAAHRPFNEVIADSELQLLTPTSRDGNGRLIQECEQRLSDGRVLEIRTHPLPTGGYVNTFTDITERYQHAEALSESERWIRLITDHVPALIAYLNADLVYEFTNKVYEQWYCWPRGVMLGQSLREAHSEQHYQRLEAYVARALAGESVTFEFAETNINNQERYMLRSYVPNVLANGEVVGIFVLIRDITERRRTAEALHQAYQNLEQRVQERTAELTSLNDQLLREIDERSRVELRLREAKREAERANLSKTKFLAAVSHDLLQPLNAARLFTSALLERREPVANAHLVRNVSNSLQDVENLLGTLVDISKLDAGVIKADVAPFALSELLDNLAAEYRQVARSEGLELCFVPCSVLVRSDIQLLARILRNLLSNALRYTPNGRVLLGCRRLGNRVSIEVWDSGIGIAQDRLEEIFQEFKRGDVQRPNQDRGLGLGLAIVEKIARILGHRIRVRSWPGKGSVFAIEVPLSATAPKPLPCLDMSEPMLERLRGARVWVLDNDGAICAGMRTLLEGWGCLVVTALSEQDLARQVDGYRAEADLLIADYHLDHDQNGVDAVARINACRASPIPAMMITANYSNELKQQIRELGHTLMHKPVRPMKLKIAMSHLLGQTTSR	PGPT0025850_87	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QUORUM_SENSING_REGULATORS	CE-QSR-QUORUM_SENSING_REGULATED_FLS,PGPT0025850-PA1979-K20975	NA	NA
D1-36_02494	666	degU_1	COG2197	Transcriptional regulatory protein DegU	ATGTATAAAATCCTGATAGCCGACGATCACCCACTGTTTCGCGAAGCCATCCACAACGTCATCAGCGACGGGTTCGCCGGTAGCGAGGTGATGGAAACCGCCGACCTGGACAGCGCCCTGGCGCTGACCCGCGAACACGACGACCTGGATTTGATCCTGCTGGACTTGAACATGCCCGGCATGCACGGCCTCAACGGCCTGATCAACCTGCGCAACGAAGCGCCGACCATCCCCGTGGTGATCGTGTCTGCCGAACAGGACAAGCAAATCGTTCTGCAGGCCATCACCTATGGCGCGGTGGGTTTCATCACCAAGTCTTCACCTCGCTCGCAGATGACAGACGCCATCGAGCAGATCCTCAATGGCAACGTGTACTTGCCGCCGGACATCATCCGCACCCAGAAGAGCCCCACGGGCCGCCGCTTGAACGAAACCCCGGCGTTCCCGCCCGAACTGCTCCAGGCCCTGACGCGCAAGCAACTGCTGGTACTCGAACGCATGACCAAGGGCGAGTCGAACAAGCAGATCGCCTACACGCTGGACATCGCCGAAACCACGGTCAAGGCCCACGTCTCGGCGATCCTGCGCAAGCTCAACGTGCATAACCGGGTGCAGGCGATTCTCAGCGCGGGGGATATTGATTTCGGGGCTTATTTGCGGCGTTGA	MYKILIADDHPLFREAIHNVISDGFAGSEVMETADLDSALALTREHDDLDLILLDLNMPGMHGLNGLINLRNEAPTIPVVIVSAEQDKQIVLQAITYGAVGFITKSSPRSQMTDAIEQILNGNVYLPPDIIRTQKSPTGRRLNETPAFPPELLQALTRKQLLVLERMTKGESNKQIAYTLDIAETTVKAHVSAILRKLNVHNRVQAILSAGDIDFGAYLRR				NA	NA	NA	NA	NA
D1-36_02495	534			hypothetical protein	ATGCCCCGTTTGCTGGCCATCGTCTTGCTGGGCCTGGCGCTGAATGTCGCCCAGGCCGACACTGCGTTGTTTTCGGCGCAGGGCTATCGCATTACCCAATACCGCAGCCCCACGCCCGCCTCCGCCCAGGGCGCGCAAACCGTCGACACCGAAGGCTTGCAGCGCCTGCTTGGGCAAACGCCCGCCCCGGTGTTGATCGACGTGTACCGTCGTCCATGGGTCCAGGGGCGCTTCATCGACACCGAGCCCCACGCCAACCTCCCCGGCAGCCTATGGCTGGCCAATACGGGCGATGGTGAGCTGGAGGGGAACTGGCAAGATTACTTCACCTCCCACCTACGCAAGGCCACCGACGGGCGCCTGGACCAACCCTTGGTCTTTTACTGCCGCTCCGATTGCTGGTTGAGCTGGAACGCGGTAAAACGCGCCGCGTCCATGGGCTATAAACATTTGTATTGGTACCGCGACGGCCTCGACGCCTGGGAGGCGGCCAACCTGCCCTTGCAAGCGGCCCGCCCCGAACCTTTTCCCTGA	MPRLLAIVLLGLALNVAQADTALFSAQGYRITQYRSPTPASAQGAQTVDTEGLQRLLGQTPAPVLIDVYRRPWVQGRFIDTEPHANLPGSLWLANTGDGELEGNWQDYFTSHLRKATDGRLDQPLVFYCRSDCWLSWNAVKRAASMGYKHLYWYRDGLDAWEAANLPLQAARPEPFP				NA	NA	NA	NA	NA
D1-36_02496	792			hypothetical protein	ATGAACGCGTATTGGCGATGTTTCCTTGGCGTCGTGATGCGCGAATGGCTGCGCTTCGTCTTGCAACGCACGCGATTGCTCAGCGCACTGGTGCGACCGTTGTTGTGGCTGCTGGTGTTCGCCGCCGGCTTCCGGGCGGCGCTGGGCATCGCCATCATCGCGCCCTATGACACTTACATCCCCTATGAGGTGTACATCGTGCCGGGGCTGGCCTGCATGATCCTGTTGTTCAATGGCATGCAAGGCTCGCTGTCGATGGTCTATGACCGCGAAATGGGCAGCATGCGCGTGCTGCTGACCAGCCCCCTGCCCCGGGCCTTTTTGCTGGCGAGCAAATTGCTCGCAACCTCGCTGATCTCGCTCTTGCAGGTCTACGCCTTCCTCGCCATCGCCTGGCTCTACGGTGTCCAGCCGCCAGCCATGGGCGTGCTGGCGGCATTGCCGGCCTTGCTTTTGGTGGCGCTGATGCTCAGTGCCCTGGGCCTGTTGTTGTCCCACGCGATCCGCCAGCTGGAGAACTTCGCCGGGGTGATGAACTTCGTCATCTTCCCGATGTTTTTCCTGTCTTCGGCGCTGTACCCGTTGTGGAAAATGCTCGAAGCCAGCCCCTGGTTGTACTGGCTGTGCGCGGTGAACCCCTTCACCCATGGCGTGGAGCTGGTGCGGTTCGCGTTGTATGGGCAATTCAATGTGCTGGCGATGGTTGTGTGCGTGGGGCTGACGCTGCTGTTCGCGCTGCTGGCGGTGTGGACGTTCAATCCGCAGCATGCGGCGTTGCGCAAGGCCAATTGA	MNAYWRCFLGVVMREWLRFVLQRTRLLSALVRPLLWLLVFAAGFRAALGIAIIAPYDTYIPYEVYIVPGLACMILLFNGMQGSLSMVYDREMGSMRVLLTSPLPRAFLLASKLLATSLISLLQVYAFLAIAWLYGVQPPAMGVLAALPALLLVALMLSALGLLLSHAIRQLENFAGVMNFVIFPMFFLSSALYPLWKMLEASPWLYWLCAVNPFTHGVELVRFALYGQFNVLAMVVCVGLTLLFALLAVWTFNPQHAALRKAN	PGPT0006730_15698	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992	NA	NA
D1-36_02497	732	lnrL	COG1131	Linearmycin resistance ATP-binding protein LnrL	ATGAACGCCTTGGAGGTCAGCGACCTGAGTTTCGCCTATGGTGCGCGGCAAGCCCTGCGCCAGATCAGCTTCAGCGTACCGCCCGGACGCTTCGCCGCCCTCCTCGGACCGAACGGCGCTGGGAAGTCGACGCTGATTGCGTTGCTGACGCGTCTGTACGATGTTCAGCGCGGCGAGATCCGCGTCGGCGGTCATTCATTGCGCACGTCACCGCACCAGGCGTTGCGCCAGTTGGGCGTGGTGTTCCAGCAAAGCACGCTCGACCTGGACCTGAGCGTCGAGCAGAACCTGCGTTATCACCTCGCGCTGCATGGCTTTTGCCGGCGCCAGGCCGATGCCCGGATTGAAGCCGAACTGGCCCGCCAGCAGTTGACCGAACGACGTCACGAGCGGGTGCGCCACCTCAATGGCGGACACCGGCGCCGGGTGGAAATCGCCCGGGCCCTGCTCCACGAACCGCGCTTGCTGCTGCTGGACGAGCCGAGCGTCGGGCTCGATCCGGCCAGCCGCCAGGCTTTGGGGCAACACATTCGCCAACTGTGTCGCGAACAGGACATCAGCGTGCTCTGGGCCACGCACCTGCTGGACGAAGTGCAGCCCAGTGATGACCTGCTTATCGTGCATCAGGGCCGGCTGGTCGCCAGCGGACGGGCCGAGGACGTGAGCGAGGAACACGGCGGCAGTCTCGGCTCGGCCTTTGATCGATTGACCGCCTCGGGAGTTGCCGCATGA	MNALEVSDLSFAYGARQALRQISFSVPPGRFAALLGPNGAGKSTLIALLTRLYDVQRGEIRVGGHSLRTSPHQALRQLGVVFQQSTLDLDLSVEQNLRYHLALHGFCRRQADARIEAELARQQLTERRHERVRHLNGGHRRRVEIARALLHEPRLLLLDEPSVGLDPASRQALGQHIRQLCREQDISVLWATHLLDEVQPSDDLLIVHQGRLVASGRAEDVSEEHGGSLGSAFDRLTASGVAA	PGPT0006725_24746	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990	NA	NA
D1-36_02498	990			Hydrazine synthase subunit beta	ATGCGCCGCCCCCTGCTCAACCCGGCTCTGCTTTGCCAAGCCCTCGCCCTGGGCGCCTCGCTGCTCCTTGCCGGTCCCGCTGCCGCCAGTATCGCCTGGGTCTCCAACGAAAAAGACAACAGCCTCAGCCTGATCGACCTGCAGAGCCTGGAAGTTGTCGATACCTTGCCGGTAGGCCAGCGCCCGCGAGGCTTGTTGTTGTCCCATGACAACCGCCTGTTGTACATCTGCGCCAGCGATTCGGACCGCGTCCAGGTGATGGACGTCGCCACTCGCAAGATCATCAAGGAGCTGCCCTCCGGCAAGGATCCGGAGCAATTCGCCCTGCACCCCAACGACCGCTGGCTCTACGTTTCCAACGAGGACGATGCGCTGGTCACAGTGATCGACACCCATACCTCCGAAGTGCTGGGCCAGATCGGCGTCGGCGTCGAGCCCGAAGGCATGGCCGTCAGCCCCGACGGCAAGTGGGCGGTCAACACCAGCGAAACCACCAACATGCTGCACTGGATCGACACCAGCACCCAGACCCTGGCCGACAACACCTTGGTGGACCAACGGCCGCGTTTCGTCGAGTTCAATCGCGACGGCACGCAACTCTGGGCCTCGGCGGAGATCGGCGGGACGCTGACTATCCTCGACGTTGCCTCGCGCCAGGTGCTCAAGACTCTGACCTTCCAGATCAAGGGCGTGCACCCGGACAAGGTGCAGCCAGTGGGCATCAAGCTCAGCGCCGACGGCAAGCTGGCATTCGTCGCCCTGGGCCCGGCTAACCATGTGGCAGTGATCGATGCCAAGACTTTCGAAGTGCTGGATTACCTGCTGGTGGGCCGACGCGTCTGGCAGCTGGCGTTCACCCCGGACCAGAAGCAACTGCTGGCAACCAACGGAGTCAGCGGCGACGTCTCGGTGATCGACGTGCAGAGCCGCAAGGTGCTCAAGTCGGTGAAGGTCGGCCGCTATCCCTGGGGCGTGGTGGTGACGCCATGA	MRRPLLNPALLCQALALGASLLLAGPAAASIAWVSNEKDNSLSLIDLQSLEVVDTLPVGQRPRGLLLSHDNRLLYICASDSDRVQVMDVATRKIIKELPSGKDPEQFALHPNDRWLYVSNEDDALVTVIDTHTSEVLGQIGVGVEPEGMAVSPDGKWAVNTSETTNMLHWIDTSTQTLADNTLVDQRPRFVEFNRDGTQLWASAEIGGTLTILDVASRQVLKTLTFQIKGVHPDKVQPVGIKLSADGKLAFVALGPANHVAVIDAKTFEVLDYLLVGRRVWQLAFTPDQKQLLATNGVSGDVSVIDVQSRKVLKSVKVGRYPWGVVVTP				NA	NA	NA	NA	NA
D1-36_02499	1167			hypothetical protein	ATGCGCTGGCTTGTCAGTTACGCCCTGATCTACCTGTTGGCCGCATCGACCGCCCAGGCCAGCGATGCCGCGCCGTTGCAGGTGCGCATCGGCTACCTGGGTTACCGTCCCGACCCCGGCCCGCTGCTGTCCAACGTCATCGCTGAACCCACCGATGCCGGATTGCGCGGCGCCGAACTGGCGATCATCGACAGCAACAGCACCGGGCGATTTCTCAAGCACGACTACCGTCTCGAAAGCGCTAACGTCGACAACCCGCAGGCACTGCTGGAGGCCGCCCGTGCCCAGCATGAACAGGGCCTGCGTTTGTTCGTGGTGAATGCGCCAGGCGAAAGCCTACGCCAGCTCAGCGCCGCCCTGCCCGACAGCCTGCTCTTCAACGCCGGCAGCCCCGACGACAGCCTGCGCACCAGCGGCTGCCTGAGCAACGTGCTACACACCCTGCCCGACCGCGCGACACTGGCCGACGCTTTGATCCAGTTCAGCGTCGTGCGCAAATGGCAGCGGGCCTTGCTGATCGTCGGCCAGACACCCGAAGACCAGGCCTACGCCGCTGCATTGCGCCGGGCCATGAAACGCTTCGGCATGAAGATCGTCGCCGAGAAACCTTGGCAGTTCGATAACGACCAGCGCCGCAGTGCCCAGGCCGACATGCCGCTGTTCACCCAGGCCGTCGAGTACGACGTGGTGCTGGTAGCCGACGAGCGCGGCGACTTCGGCGAATACGTGCCCTATCAGACCTGGCTCCCGCGCCCGGTCGCAGGGACTCAGGGACTGACGCCCACCGGTTGGCACAAGACCGTCGAGACATACGGCGCGGCGCAGTTGCAAAAGCGCTTCGAAGCCTTGGCCGGCCGCTGGATGAACGACCGCGACTTCGCCGCCTGGATCGCCGTGCGCAGTATCGCCGCCGCCGTGAGCAAGCTGCGCCAGGACGAGCCATTCGCCATTCGCCAACTGGCCCTTGGCGACGAGCTGCCGCTGGATGGATTCAAGGGCCGCAAGCTCAGCTACCGGCCCTGGAATGGTCAACTGCGCCAACCGATTCCCCTGGTTCAGCCTCGGGCCTTGGTCAGCACGTCGCCCCAGGACGGTTTTCTCCACCCGTCCAACGAAATGGACAGCCTGGGCTTCGACCGGCCCGAAGTGAGCTGTCGCTACCCCTGA	MRWLVSYALIYLLAASTAQASDAAPLQVRIGYLGYRPDPGPLLSNVIAEPTDAGLRGAELAIIDSNSTGRFLKHDYRLESANVDNPQALLEAARAQHEQGLRLFVVNAPGESLRQLSAALPDSLLFNAGSPDDSLRTSGCLSNVLHTLPDRATLADALIQFSVVRKWQRALLIVGQTPEDQAYAAALRRAMKRFGMKIVAEKPWQFDNDQRRSAQADMPLFTQAVEYDVVLVADERGDFGEYVPYQTWLPRPVAGTQGLTPTGWHKTVETYGAAQLQKRFEALAGRWMNDRDFAAWIAVRSIAAAVSKLRQDEPFAIRQLALGDELPLDGFKGRKLSYRPWNGQLRQPIPLVQPRALVSTSPQDGFLHPSNEMDSLGFDRPEVSCRYP				NA	NA	NA	NA	NA
D1-36_02500	198			hypothetical protein	ATGTTCAAGACGCTGCTGTTGCCGTTGTTGCTGATCCTGAGTTTGATAGGCGTGGATCGACCTAAAGTGTCCTTTGTGGGAGCGAGCCTGCTCGCGAAAGCGTTGGTCCAGCCGACGTTGATGTTGGATGTGCCTTCGCTTTCGCGAGCAGGCTCGCTCCCACAGGGGGCCGGTGTGATTCGCAGATTGGAGCACTGA	MFKTLLLPLLLILSLIGVDRPKVSFVGASLLAKALVQPTLMLDVPSLSRAGSLPQGAGVIRRLEH				NA	NA	NA	NA	NA
D1-36_02501	1257			hypothetical protein	ATGTCTGCCCTCTGGCGCATCAACCTCTGGGTCACGGCGTTCTTCGCCCTGGTCACCCTGGCCTGCGCAACGCTGCTGTTGCACCAGGCCACGGTGGATGTGCGACGCGAACTGCAATCGGCCGAGTCGGTGGTGCATTACCTGCGCGAGACTGCCCAGCGCGACCCGGCCAGCCTCCAGTCGCGGCTCACCGGCAGCCTGCGTCACGTTCGGGTGCGCTGGTTGGCGCCCGGCGAAAACGCGCCGGCACAGGAGCCTGGCTTGAACGCCTGGTTGGGGCGTCGACTCCTGGCCCAAGGGCCTGCCGCCCAGATCGTCGAGTTGCAGGACGGTCGTCGGGCCTGGATTGCCGTCGACCCCGGTGACGAAGTCGATGAAATCTTCGATTCCCTGGTGCAGTTGCTTGGCGTTTGCGCGATGGCGTTGCTGCTCAGCCTGCTGGCGATCCGCTGGGCGGTGCGCCGGGGTATGCGCCTGCTGGACGAGTTGCTACAGGCGTTGCACCAGGTGTCCAGCGGCGACCTGCAAGTGCATCTGCGGCCCGAGGGCCTATCGGAAGCCCAGCAATTGGCGGCGCATTTCAACCGCATGACCGCCGCCCTGGGCCAGACTCGGGCCGACAATGCGCGGCTGACCCAGGCGTTGCTGGCCGTCCAGGAGCAGGAGCGCAGGTCCCTCGCGCAAACCTTGCACGACGATTTGGGCCAGTACGTGGCAGGTATTCGCGCGAGGGCCTGTTTGTTGCGCCTGGTGATTCATCAGCCGCCCGTGCTGGAGCAGACCGCCAACGAATTGGAAGAACACTGCGATCATTTGCAGCAAGGCTTTCGCGCCTTGGTCAACGACTTGTATCCGGTCGTGCTCCAGCATCTGCCGTTGGGTGAGGCCATTGAATTGTTGGCCCGGCAATGGCAGGACAGCCACGGCATCGCCTGTCAGTTACGGGTCGATGGAGCACCGCCGCCATTGGCCGCATCGCACAAGGCTCAGTTGTACCGCCTGTTGCAGGAAGCGCTGACCAACATCGCACGGCATGCCGACGCCAGCCAGGTGCGGATCCGCATGCAGCACCGCGCCGGTCGCCTGCGGCTATGGGTGCGCGATAACGGACGCGGTGCCCAGCAGCCCTCCCGGGCCGGCGTGGGCCTGCATTCCATGGCGGAACGGGCGCGCAGCCTTGGTGGTGAGCTGCGGATCATCAGTCGGCCCGGGGCGGGTTGGGCGCTGGCCTTGAATATTCCCTTGGAGGCCTCATGA	MSALWRINLWVTAFFALVTLACATLLLHQATVDVRRELQSAESVVHYLRETAQRDPASLQSRLTGSLRHVRVRWLAPGENAPAQEPGLNAWLGRRLLAQGPAAQIVELQDGRRAWIAVDPGDEVDEIFDSLVQLLGVCAMALLLSLLAIRWAVRRGMRLLDELLQALHQVSSGDLQVHLRPEGLSEAQQLAAHFNRMTAALGQTRADNARLTQALLAVQEQERRSLAQTLHDDLGQYVAGIRARACLLRLVIHQPPVLEQTANELEEHCDHLQQGFRALVNDLYPVVLQHLPLGEAIELLARQWQDSHGIACQLRVDGAPPPLAASHKAQLYRLLQEALTNIARHADASQVRIRMQHRAGRLRLWVRDNGRGAQQPSRAGVGLHSMAERARSLGGELRIISRPGAGWALALNIPLEAS	PGPT0017175_807	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_HEXOSE_PHOSPHATE_UPTAKE_SENSING,PGPT0017175-uhpB-K07675	NA	NA
D1-36_02502	639	exaE		Transcriptional activator protein ExaE	ATGAACATTTTGTTGGTGGACGACCACGCCGTGGTTCGGCAGGGCTACGCCAGCTTGTTGCGGACTTTGATGCCACAGCTGCAGGTGCGCGAAGCGGCCTGCGGCGAAGAGGCGTTGAGCCAGGTGCAGGAACAAGTGCCGAACCTGGTGATCATGGACTTCGGCCTGCCGGGGATCAGCGGGCTGGAAACCACCCGGCGCCTGCGTCAACGCTTGCCGCAACTGCGGGTGCTGTTCTTCAGCATGCACGACGAGTTGCCGTTGGTTCGCCAGGCGTTGGACGCGGGCGCTGCGGGCTACCTGACCAAGAATTCGGCGCCGCAGGTATTGATCGAGGCGGTACGGCGAGTGCTGGCCGGCCATGCCTACATCGAGCAGGCCCTGGCCACTCAGTTGGCCTGCGCCACCACCCGCCACGACAGCGATCCACGCCTGCAATCGATGACCCAGCGCGAGCTGGAGATCTTCGTCATGCTCGCCAATGGCACTCCCGCGCGCACCATTGCCGAACAGCTATGCATCAGCGCCAAGACCGTGTCCAACCATCTGACGTTGCTCAAGAGTAAGTTGCAGGTCAGTTCCCATGCCGAGTTGGTGCATTTGGGGATCGATATGGGAGTGGTGCGGGTGGCTGGGTGA	MNILLVDDHAVVRQGYASLLRTLMPQLQVREAACGEEALSQVQEQVPNLVIMDFGLPGISGLETTRRLRQRLPQLRVLFFSMHDELPLVRQALDAGAAGYLTKNSAPQVLIEAVRRVLAGHAYIEQALATQLACATTRHDSDPRLQSMTQRELEIFVMLANGTPARTIAEQLCISAKTVSNHLTLLKSKLQVSSHAELVHLGIDMGVVRVAG	PGPT0012935_1088	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR|BF-VarA|VarS_SIGNALLING_SYSTEM,PGPT0012935-gacA|uvrY|varA-K07689	NA	NA
D1-36_02503	639	pipB2	COG1357	Secreted effector protein PipB2	ATGAAATCATTGCCCTTGTTGCTTCTGTTCATCAGCGCGTTTGCCAACGCCGACGACACCCCACTGACCCTAAACGGCTGCCTCATTGCCGAATCCAGCCAATGCCCCGGCGCTAACCTGCGGGGCGCCCACCTGGCCAACCAGGACCTGCGCAAGATGAACCTCGCCGGCGCGGATCTGCGCGACGCCGACCTGCGCCATGCCCGGCTGGACCTGGCGAATCTAGAAAAGGCCCAGCTACAGGGCGCCAACCTGAGTCGCGCGAGCCTGCAACAAAGCAACCTTCGCCTGGCGGACTTCAGCGATGCCACGCTCAAGGCGATCCAGGGCTGGGGCCTGTTTGCCCAGGGCGCGCAGTTTCAGCGAGCCGACCTGACGGCCGCCTATCTCCAGTTCGCCCGCTTGTCCGGCGCCCGCCTGCACGACGCCAACCTGCAAGCCGCCGACCTGGAAATGGCCTGGCTGAGCAAAGCCGACCTCAAGGGCGCCGACTTGCGCGATGCCAACCTGCAGGAGGTCAAACTGGGCGAAAGCAACCTGGAACAGGCCAACCTGACGGGCTCGCGGCAGCACTATGGGAATTTCCAGGATGCGAATATGCAGGGGTGTGTCGGATGCCCAACGTCTTGGGAACAATGA	MKSLPLLLLFISAFANADDTPLTLNGCLIAESSQCPGANLRGAHLANQDLRKMNLAGADLRDADLRHARLDLANLEKAQLQGANLSRASLQQSNLRLADFSDATLKAIQGWGLFAQGAQFQRADLTAAYLQFARLSGARLHDANLQAADLEMAWLSKADLKGADLRDANLQEVKLGESNLEQANLTGSRQHYGNFQDANMQGCVGCPTSWEQ				NA	NA	NA	NA	NA
D1-36_02504	1857	qedA_1		Quinoprotein alcohol dehydrogenase (cytochrome c)	ATGACAATAAAAACGCTCCCTGCCCTCTCGTCCCTGACCGTTGCCTTGCTGCTGGCCGGCAGCCTGTCCCTGGGCCCACAGGCCAACGCCGCCGTTACCTGGGAAGACATCGCCAACGATCACCTGACCACCAAGGACGTGTTGCAATACGGCATGGGCACCAACGCCCAGCGCTGGAGCCCGCTGGCCCAGGTCAACGACAAGAACGTCTTCAAGCTGACCCCGGCCTGGTCCTATTCCTTCGGCGACGAGAAGCAACGCGGCCAGGAATCCCAGGCCATCGTCAGCGACGGCGTGGTCTACGTCACCGGCTCGTACTCACGGGTGTTCGCACTCGACGCCAGGACCGGCAAGCGCCTGTGGACCTACAACCACCGCCTGCCGGACAACATCCGCCCATGCTGCGACGTAGTTAACCGGGGCGCGGCCATCTATGGCGACAAGATCTACTTCGGCACGCTGGACGCCCGGGTCGTCGCCTTGGACAAAAACACTGGCAAGGTGGTGTGGAACAAGAAGTTCGGCGATCACGCCGGCGGCTACACCATGACCGGCGCCCCGGTGCTGATCAAGGACAAGACCAGCGGCAAGGTTTTGCTGATCCATGGCAGCTCCGGCGACGAGTTCGGCGTGGTCGGGCAATTGTTTGCCCGCGATCCGGACACCGGTGAAGAAGTCTGGATGCGCCCCTTCGTCGAAGGCCACATGGGGCGGCTAAACGGCAAGGACAGCACCCCGACCGGCGACGTCAAGGCGCCGTCCTGGCCCGACGACAAGACCACCGAGACCGGCAAGGTCGAGGCCTGGAGCCACGGCGGCGGCGCGCCCTGGCAAAGCGCCAGTTTCGATCCCGAGACGAACACCATCATCGTCGGCGCGGGCAACCCCGGCCCGTGGAACACCTGGGCGCGCACGGCGAAGGACGGCAATCCCCACGATTACGACAGCCTCTACACCTCCGGGCAGGTAGGCGTCGACCCCAGCACCGGTGAAGTGAAATGGTTCTACCAGCACACGCCCAACGATGCCTGGGACTTTTCCGGCAACAACGAACTGGTGCTGTTCGACTACAAGGACAAGGACGGCAAAATGGTCAAGGCCACCGCCCACGCCGACCGCAACGGCTTCTTCTACGTGGTGGACCGCAACAACGGCAAACTGCAGAACGCCTTTCCCTTTGTCGACAACATTACCTGGGCCAGCCACATCGACCTGAAGACTGGCCGCCCGGTGGAAAACCCTGGCCAGCGTCCGGCCAAGCCATTGCCCGGTGAAACCAAGGGCAAGCCGGTGGAAGTCTCACCGCCATTCCTCGGTGGCAAGAACTGGAACCCCATGGCCTACAGCCAGGACACCGGGCTGTTCTACGTACCGGGCAACCAGTGGAAAGAGGAGTACTGGACCGAGGAAGTCAGCTACAAGAAAGGCTCGGCTTACCTGGGCATGGGCTTTCGAATCAAGCGCATGTATGACGACCACGTCGGCAGCCTGCGAGCCATGAACCCCACCACCGGCAAGGTGGTGTGGGAGCACAAGGAGCCGCTGCCACTGTGGGCCGGTGTGCTGGCGACCAAGGGCAACCTGGTCTTCACCGGTACTGGGGATGGCTTCTTCAAGGCCTTCGACGCGAAAACCGGCAAAGAGCTGTGGAAGTTCCAGACCGGCAGCGGCATTGTCTCCCCGCCCGTCACTTGGGAGCAGGACGGCGAGCAATACATCGGCGTGACCGTTGGCTACGGCGGCGCCGTACCGTTGTGGGGCGGAGACATGGCCGAACTGACCAAGCCGGTGGCCCAGGGTGGTTCGTTCTGGGTGTTCAAGATTCCGAGTTGGGATAAGGCGACGGCGCAGAAATAA	MTIKTLPALSSLTVALLLAGSLSLGPQANAAVTWEDIANDHLTTKDVLQYGMGTNAQRWSPLAQVNDKNVFKLTPAWSYSFGDEKQRGQESQAIVSDGVVYVTGSYSRVFALDARTGKRLWTYNHRLPDNIRPCCDVVNRGAAIYGDKIYFGTLDARVVALDKNTGKVVWNKKFGDHAGGYTMTGAPVLIKDKTSGKVLLIHGSSGDEFGVVGQLFARDPDTGEEVWMRPFVEGHMGRLNGKDSTPTGDVKAPSWPDDKTTETGKVEAWSHGGGAPWQSASFDPETNTIIVGAGNPGPWNTWARTAKDGNPHDYDSLYTSGQVGVDPSTGEVKWFYQHTPNDAWDFSGNNELVLFDYKDKDGKMVKATAHADRNGFFYVVDRNNGKLQNAFPFVDNITWASHIDLKTGRPVENPGQRPAKPLPGETKGKPVEVSPPFLGGKNWNPMAYSQDTGLFYVPGNQWKEEYWTEEVSYKKGSAYLGMGFRIKRMYDDHVGSLRAMNPTTGKVVWEHKEPLPLWAGVLATKGNLVFTGTGDGFFKAFDAKTGKELWKFQTGSGIVSPPVTWEQDGEQYIGVTVGYGGAVPLWGGDMAELTKPVAQGGSFWVFKIPSWDKATAQK	PGPT0006870_88	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUBSTRATE_UTILIZATION-OTHERS	PLANT_DERIVED_ALCOHOL_DEHYDROGENASE-CYTOCHROME_C,PGPT0006870-exaA-K00114	NA	NA
D1-36_02505	462			hypothetical protein	ATGACAACAAAACGCAACGCCATCATCGCTACCGCATTGCTGATGGGGCTGACCGGCGCAGGCTCCGCATGGGCCCATGGCAACGTAGTGCCCCAGGCAGTGGAAACCCAGGGACTGACTCCGATCAAAGACACCAACCTGCCGTTGGATGCCGATGGCTGGGCCTCGCAAAACCCCTATCGCAATGCTCCCGAACGGGACAAAGCAGTCGAAATCGGCGCATCGGCGTACAACCAGAACTGCGCGGCCTGCCATGGCCTGGAAGCCAAGTCCGGCGGGATCGCCCCGGACTTGCGCATGCTCGATGCCGCCGAAGCCGGTGACGAATGGTTCGTCGAACGGGTGCGCCATGGCGCGGTGCGCGACGGCCGGGTCTATATGCCGAAGATGGCCGACTACCTGAGCCAGGAAGCGCTGTGGGCGGTGCGGACCTATCTGGACAGCGTACACGTCGAGGAGTGA	MTTKRNAIIATALLMGLTGAGSAWAHGNVVPQAVETQGLTPIKDTNLPLDADGWASQNPYRNAPERDKAVEIGASAYNQNCAACHGLEAKSGGIAPDLRMLDAAEAGDEWFVERVRHGAVRDGRVYMPKMADYLSQEALWAVRTYLDSVHVEE				NA	NA	NA	NA	NA
D1-36_02506	876			hypothetical protein	ATGCGCCTGTTCGCCTGGGTGATGTGCAGCCTGTTGCTGTGGGGCTCGGCGGTGCAGGCGCAGGTCCGCGGCTATGACCAGATGATCGCCGACGGCGAATTGAAGGTCGCGGTCTACAAGGACTTTGCCCCCTACAGTTTCGAAGACCAGGGCCAGCCCAGGGGCGTCGACGTTGAATTGGCCATGGCCTTGGCCAAGGCCATGGGCGTGCGGCTGAAACTGATGTGGGCGCCACCTGGCGAGAAGCTCGACGATGACCTGCGCGACTACATCTGGCGCAGCAGTCCGCTGCACGACCGGCAACTGGCCGACCTGATGATGCGAGTGCCGTACGATCACGACTATGTGCAGCGGCGCAACGACATTGGCGAACGGGAAAACGCCCAGGTCGTGATGTTCGGGCCATATCAGCAGGAGTGCTGGCAGGTGGCGTATGACCGCCGTCGATTGGCGTCGGTGGGCAGTGTCGCGGTGTTCCAGCGGCACCCCATCGGCGTCGAAGTCGACAGCGTGCCATCGTTCTACCTGACCTCGGTGTTCAACGGCATGCTCAGTGCCAAGACCCGCCATTACCCCAGCGTTGCCAAAGCCTTCGGGGCCATGCAGGCCGGCGAAGTCGATGCGGTCATGGCGATGCGCGGCGAGATCGACTGGCAAGTGCATCAGGCTGCCGACTCGCAGTTGGCCCTCGCTGAAAACGCTTATCCGAACATGGGTAAGCAGCGCTGGGAGATCGGCATGGCGGTGCATGAAAGCAACCGTCAGCTGGCCTATGCGGTGGAGGAGGCGCTGGAAGGCTTGATTCGCGACGGCAGCCTCAAGGCGGTGTATGCCCGCTATGGCCTGCGCTACGAAGTACCGCAAATGTACCAATAG	MRLFAWVMCSLLLWGSAVQAQVRGYDQMIADGELKVAVYKDFAPYSFEDQGQPRGVDVELAMALAKAMGVRLKLMWAPPGEKLDDDLRDYIWRSSPLHDRQLADLMMRVPYDHDYVQRRNDIGERENAQVVMFGPYQQECWQVAYDRRRLASVGSVAVFQRHPIGVEVDSVPSFYLTSVFNGMLSAKTRHYPSVAKAFGAMQAGEVDAVMAMRGEIDWQVHQAADSQLALAENAYPNMGKQRWEIGMAVHESNRQLAYAVEEALEGLIRDGSLKAVYARYGLRYEVPQMYQ	PGPT0020800_3928	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
D1-36_02507	756			hypothetical protein	ATGAACTGGCGTGTGTTGGGGCTGCTGTTGGGCTGGCTGCCATTGATGGTTAGCGCAATCGAGCCGGGAAAGGATCCGGTGCCATCGGTGATGTGGGCCTTCTATCACAAGCAATTGCTGGCTGACGCACAGTTCGTTTTCGACGACCGGGTGCGGCTGCTGGCGCCACCTTTTGCCGAAGATGCGCGGCAGGTGCCGCTGGAAATCGATGCCAGGGCGTTCACCGGCGATGTCGTACGAGTGCTGGCGTGGGCCGAGCTCAACCCACTGCCGAAAATCGTCGACTTCCAACCTTCGGAGCGGGTGCTGCCGTGGCTGTCGATCCGCATTCGTATCGAGCAGGCCACGCCGTTACGTGCCGCCGTACAGACCCGCGACGGCCTGTGGCACGTTGGCTCGGCGTTGATCGACGCGGCCGGTGGTGGTTGCACGGCGCCCAGCGTGGTGCGCACCCAACCGGGTTGGGAAGAACACCTGGGCGAAGTGCTGGGCGGGCGCTACCCGCGTGGGGACTCGAATCGCCTGCGCTTGCAGATAGCCCATCCCATGGACAACGGCCTGGTGAGCGGCATCCCTGAGTTTTTCCTCAACCAGGCGCAACTGTTGGACGCTGACGGCAAGCTGCTGGCGCGCCTGGAGCTGTTCCCGGCGGTCAGTGAAAACCCCAACCTGGGCTTCGACATCCAAGGCCCGGGACAGACCCGCCTGGTGCTGCGAGACAACAGCGGCAACGAATTCGAGGCGGCCATTCCCTGA	MNWRVLGLLLGWLPLMVSAIEPGKDPVPSVMWAFYHKQLLADAQFVFDDRVRLLAPPFAEDARQVPLEIDARAFTGDVVRVLAWAELNPLPKIVDFQPSERVLPWLSIRIRIEQATPLRAAVQTRDGLWHVGSALIDAAGGGCTAPSVVRTQPGWEEHLGEVLGGRYPRGDSNRLRLQIAHPMDNGLVSGIPEFFLNQAQLLDADGKLLARLELFPAVSENPNLGFDIQGPGQTRLVLRDNSGNEFEAAIP	PGPT0002355_319	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILISATION-OTHER_ACID_METABOLISMS	K-SOLUBILISATION-SULFURIC_ACID_BIOSYNTHESIS,PGPT0002355-soxY-K17226	NA	NA
D1-36_02508	936	gloB_1		Hydroxyacylglutathione hydrolase	ATGCGCTGGTTGTTGCTGATCTGTCTTGGACTGTGCCTGCCGGCGTGGTCCTCCGATTATTCCCTCAAGCCCCGGCAGATCGCCGAGGGCACCTGGCTGCTGGAAGGCAGCACGGATAATTTCGCCAAGGCCAACGGTGGCAACATCGTCAACACGGCGTTCATCGTCACCGACGTCGGGGTGGTGGTCATCGACACCGGCCCGTCCAAGCGTTATGGCGAGGCGCTGCGCCAGGCCATCGCGGCGACGACGGAAAAACCGGTGATCCAGGTGCTGCTGACCCACCATCACCCCGATCATGTGCTGGGCAACCAGGCCTTCAACGGCGTGCCTGTTGGTGCGCTGGCGGGCACCGCCGACCTGCTGCGACAGCAGGGCGATGCGATGGCGGAAAACATGTACCGGCTGGTGGGCGACTGGATGCGCGGCACCGAAGTGGTTTTGCCGACCCAGGCGCTGACCCCCGGTACGCTGAAGGTCGGCGATCACTCGCTGCGCCTGCTTGCGTTGGCCGGGCACACCGGGGCGGACCTGGCGATCCTCGATGAAACCACCGGCGTGCTGTTTGCCGGTGATTTGGTGTTTTATGAACGGGCCCTGACCACCCCGAACAGCCCCGGCCTGGATATCTGGCTCAACGATCTGAACACGCTGCAGGCGCTGCCCTGGAAGCAGATCGTCCCCGGCCACGGCCCGGTGGCCATCGACGCCCGGCCTTTCGAACAGATGCACGATTACCTGGGCTGGCTCGATCAACTGATGCGCGAGGGCGCCGCCCGGGGCGACGACATGGCCGAAATGATCCGCAGCCCCATCCCCGAGCGCTTCGCCGGGATCAGCTTGAGCCGGTATGAGTTGATCCGCAGCGTCAGTCATCTTTACCCGCGTTATGAGCGGGCGGGGATGACGCGGGTGGATACCCGAAACCCTGACTGA	MRWLLLICLGLCLPAWSSDYSLKPRQIAEGTWLLEGSTDNFAKANGGNIVNTAFIVTDVGVVVIDTGPSKRYGEALRQAIAATTEKPVIQVLLTHHHPDHVLGNQAFNGVPVGALAGTADLLRQQGDAMAENMYRLVGDWMRGTEVVLPTQALTPGTLKVGDHSLRLLALAGHTGADLAILDETTGVLFAGDLVFYERALTTPNSPGLDIWLNDLNTLQALPWKQIVPGHGPVAIDARPFEQMHDYLGWLDQLMREGAARGDDMAEMIRSPIPERFAGISLSRYELIRSVSHLYPRYERAGMTRVDTRNPD				NA	NA	NA	NA	NA
D1-36_02509	1776	qedA_2		Quinoprotein alcohol dehydrogenase (cytochrome c)	ATGATTCATCCCGCACGTCGCCAGCCCTTCGCCGTAAGCCTGCTGCTCAGTGCCATGCTGCTGTCCGGCTCGGCCTTGGCCGCCGTGACCGACCAGGAAATTCTCCAGGACCCGAAGAATCCGCAGCAGGTCGTGACCAACGGCCTGGGCGTGCAGGGCCAGCGCTACAGCCCGCTCGATGCCCTCAATGTCGATAACATCAAGGACCTGCGTCCGGTCTGGGCGTTCTCTTTCGGCGGTGAAAAGCAGCGCGGTCAACAGGCCCAGCCCATGATCAAGGACGGGGTGATGTACCTCACCGGCTCCTACTCTCGGGTGTTTGCGGTGGATGCGCGCACCGGCAGGAAGCTTTGGCAATACGACGCGCGCTTGCCCGATGACATCCGCCCTTGCTGCGACGTGATCAACCGGGGCGTGGCGTTGTATGGCGACCTGGTGTTCTTCGGCACGCTGGACGCCAAGCTGGTGGCCCTGAACAAGGACACCGGCAAAGTAGTGTGGAGCAAGAAGGTCGCCGACCACAAGGAAGGCTATTCCATCAGCGCCGCGCCCATGGTTGTGAGTGGCAAGCTCATCACCGGCGTGGCGGGGGGCGAATTCGGCGTGGTCGGCCAGATCACCGCATTCGATCCGAAAAATGGTGCGTTGCTGTGGACCCGGCCGACCGTTGAAGGCCACATGGGCTACGTCTACAAGGACGGCAAGGCCGTGGAGAACGGTATTTCCGGCGGCGAGGCGGGCAAGACCTGGCCGGGCGATCTCTGGAAAACCGGCGGCGCCGCGCCTTGGCTGGGCGGCTACTACGACCCGGAGACCAACCTGCTGCTGTTCGGCACCGGCAACCCGGCACCGTGGAACTCCCACCTGCGCCCTGGCGATAACCTTTATTCGTCGTCGCGCCTGGCCCTGAACCCGGACGATGGCACCATCAAATGGCACTTCCAGAGCACGCCCCATGACGGTTGGGACTATGACGGCGTCAACGAGCTGATCTCGTTCAACTACAAGGACGGCGGCAAAGACATCAAGGCGGCGGCGACCGCCGACCGTAACGGCTTCTTCTACGTGCTCGACCGCACCAACGGCAAGTTCATCCGCGGCTTCCCATTCGTCGACAAGATCACCTGGGCCACTGGCCTGGACAAGGATGGCCGTCCGATTTACAACGAGGCCAGCCGTCCGGGTGCGCCGGGCAGCGAGGCCAAGGGCAGCTCAGTCTTCGTCGCTCCGGCATTCCTCGGCGCGAAGAACTGGATGCCGATGGCCTACAACCAGGACACCGGTCTGTTCTACGTGCCATCCAACGAGTGGGGCATGGACATCTGGAACGAAGGCATCGCCTACAAGAAAGGCGCGGCGTTTCTCGGCGCTGGGTTCACCATCAAGCCGCTGAACGAGGATTACATCGGCGTGCTGCGGGCCATAGACCCGAAAACCGGCAAGGAAGTGTGGCGCCACAAGAACTTCGCGCCGCTGTGGGGCGGGGTGCTGACCACCAGGGGCAATCTGGTGTTCACCGGTACGCCTGAAGGTTTCTTGCAGGCGTTCAACGCCAAGACTGGGGAAAAGGTCTGGGAATTCCAGACCGGCTCCGGCGTGCTGGGCTCGCCGATCACCTGGGAAATGGACGGCGAACAGTACGTCTCCGTGGTCTCGGGTTGGGGCGGTGCGGTGCCGCTGTGGGGCGGTGAAGTGGCCAAGCGCGTGAAGGACTTCAACCAGGGCGGCATGCTCTGGACCTTCAAGTTGCCGAAGGAACTTGTCGCCAAGCGCTAA	MIHPARRQPFAVSLLLSAMLLSGSALAAVTDQEILQDPKNPQQVVTNGLGVQGQRYSPLDALNVDNIKDLRPVWAFSFGGEKQRGQQAQPMIKDGVMYLTGSYSRVFAVDARTGRKLWQYDARLPDDIRPCCDVINRGVALYGDLVFFGTLDAKLVALNKDTGKVVWSKKVADHKEGYSISAAPMVVSGKLITGVAGGEFGVVGQITAFDPKNGALLWTRPTVEGHMGYVYKDGKAVENGISGGEAGKTWPGDLWKTGGAAPWLGGYYDPETNLLLFGTGNPAPWNSHLRPGDNLYSSSRLALNPDDGTIKWHFQSTPHDGWDYDGVNELISFNYKDGGKDIKAAATADRNGFFYVLDRTNGKFIRGFPFVDKITWATGLDKDGRPIYNEASRPGAPGSEAKGSSVFVAPAFLGAKNWMPMAYNQDTGLFYVPSNEWGMDIWNEGIAYKKGAAFLGAGFTIKPLNEDYIGVLRAIDPKTGKEVWRHKNFAPLWGGVLTTRGNLVFTGTPEGFLQAFNAKTGEKVWEFQTGSGVLGSPITWEMDGEQYVSVVSGWGGAVPLWGGEVAKRVKDFNQGGMLWTFKLPKELVAKR	PGPT0006870_234	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUBSTRATE_UTILIZATION-OTHERS	PLANT_DERIVED_ALCOHOL_DEHYDROGENASE-CYTOCHROME_C,PGPT0006870-exaA-K00114	NA	NA
D1-36_02510	1521	adh_1	COG1012	Aldehyde dehydrogenase	ATGATCTACGCACAACCCGGAACCCCAGGCGCCGTCGTTTCCTTCAAACCGCGCTATGGCAATTTCATCGGCGGCGAGTTCGTCGCGCCGGTCCACGGCGAGTATTTCACCAACACTTCGCCGGTCAATGGCGAAGTCATCGGCGAGTTTCCGCGCTCCAGCGCCGCCGACATTGACAAGGCCCTGGACGCGGCCCATGCCGCCGCCGATGCCTGGGGCAAGACGTCGGTCCAGGACCGCTCCCTGATCCTGCTGAAAATCGCTGACCGCATCGAACAGCACCTGGAAATCCTGGCGGTCAGCGAGACCTGGGACAACGGCAAGGCCGTGCGCGAAACCCTCAACGCCGACGTACCGTTGTCAGCCGACCATTTTCGCTACTTTGCCGGCTGCATTCGCGCGCAAGAGGGCGGGGCCGCCGAGATCAACGAGTTGACCACCGCCTACCATTTCCACGAGCCGCTGGGCGTGGTCGGGCAGATTATCCCGTGGAATTTCCCGCTGCTGATGGCCGCCTGGAAACTCGCCCCGGCCCTGGCCGCCGGTAACTGCATCGTGCTCAAGCCGGCGGAGCAGACGCCGCTGTCGATCACGGTGTTCGTCGAGCTGATCGCCGATCTGCTGCCGGCCGGCGTGTTGAACATCGTCCATGGTTTTGGCCGCGAGGCCGGTGAGGCCCTGGCCACCAGCAAGCGCATCGCCAAGATTGCCTTCACCGGCTCCACACCGGTGGGTTCGCACATCATGAAGTGCGCGGCCGAGAACATCATCCCGTCCACCGTGGAACTGGGCGGCAAGTCGCCGAATATCTTCTTCGAAGACATCATGCAAGCCGAGCCGGCGTTCATTGAGAAAGCGGCGGAAGGCCTGGTGCTGGCGTTCTTCAACCAGGGCGAAGTCTGCACCTGCCCATCCCGTGCCTTGGTGCAGGAATCGATCTATGCGCCGTTCATGGCCGAGGTCATGAAGAAAATCGCCAAGATCAAGCGCGGCAACCCGCTGGACACCGAGACCATGGTCGGTGCCCAAGCGTCCCAGCAGCAATACGACAAAATCCTTTCGTACCTGGACATCGCCCGGCAAGAGGGCGCCGAACTGCTTACCGGCGGCGCGGCCGAATGCCTTGAAGGAGACTTGTCGAGCGGCTATTACATCCAGCCGACCCTGCTCAAGGGCCACAACAAGATGCGCGTGTTCCAAGAAGAGATCTTCGGGCCGGTGGTGGGCGTGACCACTTTCAAGGACGAAGCCGAAGCCCTGGCGATCGCCAACGACACCGAGTTCGGCCTCGGTGCCGGCCTCTGGACCCGCGACATCAACCGCGCCTACCGCATGGGCCGGGCGATCAAGGCCGGTCGCGTCTGGACCAACTGCTACCACCTGTACCCGGCGCATGCGGCGTTCGGTGGCTACAAGAAATCCGGCGTCGGGCGTGAAACCCACAAGATGATGCTCGACCATTACCAGCAGACCAAGAATCTGTTGGTGAGCTATGACATCAATCCGCTGGGGTTCTTCTGA	MIYAQPGTPGAVVSFKPRYGNFIGGEFVAPVHGEYFTNTSPVNGEVIGEFPRSSAADIDKALDAAHAAADAWGKTSVQDRSLILLKIADRIEQHLEILAVSETWDNGKAVRETLNADVPLSADHFRYFAGCIRAQEGGAAEINELTTAYHFHEPLGVVGQIIPWNFPLLMAAWKLAPALAAGNCIVLKPAEQTPLSITVFVELIADLLPAGVLNIVHGFGREAGEALATSKRIAKIAFTGSTPVGSHIMKCAAENIIPSTVELGGKSPNIFFEDIMQAEPAFIEKAAEGLVLAFFNQGEVCTCPSRALVQESIYAPFMAEVMKKIAKIKRGNPLDTETMVGAQASQQQYDKILSYLDIARQEGAELLTGGAAECLEGDLSSGYYIQPTLLKGHNKMRVFQEEIFGPVVGVTTFKDEAEALAIANDTEFGLGAGLWTRDINRAYRMGRAIKAGRVWTNCYHLYPAHAAFGGYKKSGVGRETHKMMLDHYQQTKNLLVSYDINPLGFF	PGPT0007176_929	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_METABOLISM,PGPT0007176-aldB-K00138	NA	NA
D1-36_02511	1176	dhaT	COG1454	1,3-propanediol dehydrogenase	ATGAGCCCCCCTGAAAAAATGAGCCTCAGCCCGCTGCGCAAGTTCGTTTCCCCTGAAATCATGTTCGGCGCAGGATGTCGGCACAACGTCGGCAACTACGCCAAGACCTTCGGCGCGCGCAAGGTGTTGGTGGTGACTGATCCCGGGGTCATCGCCGCCGGTTGGGTCGGCGATGTCGAAGCCAGCCTGCAAGCCCAGGGCATCGATTACTGCCTCTACAGCGACGTCTCGCCCAACCCACGGGTCGAGGAAGTGATGCTCGGTGCCGAGACGTACCGCGAGAACCATTGCGACGTCATCGTCGCGGTCGGTGGCGGCAGCCCCATGGACTGTGGCAAGGCGATCGGGATCGTGGTTGCCCATGGCCGCAGCATCCTTGAATTCGAAGGCGTGGATACGCTGCACGTGCCCAGCCCGCCGCTGATCCTCATTCCCACCACCGCCGGCACCTCGGCCGACGTCTCGCAGTTCGTCATCATTTCCAACCAGCAGGAACGCATGAAATTTTCCATCGTCAGCAAGGCGGCGGTGCCGGACGTGTCGCTGATCGACCCGGAAACCACCCTGAGCATGGACCCGTTCCTGTCCGCCTGTACCGGTATCGACGCCCTGGTGCACGCCATCGAGGCGTTCGTCTCCACGGGCCACGGGCCGCTGACCGATCCCCATGCCCTGGAGGCAATGCGGCTGATCAACAACAACCTGGTGCAGATGATCGCCAACCCGGCGGACGTCGCCCTGCGGGAGAAGATCATGCTCGGCAGCATGCAGGCCGGGTTGGCATTTTCCAATGCGATCCTCGGCGCCGTGCATGCGATGTCCCACAGCTTGGGTGGCTTCCTCGATCTGCCCCATGGGTTGTGCAACGCAGTGTTGGTGGAACATGTGGTGGCGTTCAACTACACCTCGGCACCGGAGCGTTTCAAAGTGATTGCCGAGACCCTGGGCATCGATTGCCGGGGCCTCAACCATCGGCATATCCGCACCCGGTTGGTGGAGCACCTGATCGCCCTCAAGCACACCATCGGCTTCCATGAAACCCTCGGACTGCATGGCGTCAGCACGTCGGACATTCCATTCTTGTCGCAACATGCGATGGACGATCCGTGCATCCTCACCAACCCTCGAGAGTCGAGCCAGCGGGATGTCGAGGTCGTCTATGGCGAAGCCCTCTGA	MSPPEKMSLSPLRKFVSPEIMFGAGCRHNVGNYAKTFGARKVLVVTDPGVIAAGWVGDVEASLQAQGIDYCLYSDVSPNPRVEEVMLGAETYRENHCDVIVAVGGGSPMDCGKAIGIVVAHGRSILEFEGVDTLHVPSPPLILIPTTAGTSADVSQFVIISNQQERMKFSIVSKAAVPDVSLIDPETTLSMDPFLSACTGIDALVHAIEAFVSTGHGPLTDPHALEAMRLINNNLVQMIANPADVALREKIMLGSMQAGLAFSNAILGAVHAMSHSLGGFLDLPHGLCNAVLVEHVVAFNYTSAPERFKVIAETLGIDCRGLNHRHIRTRLVEHLIALKHTIGFHETLGLHGVSTSDIPFLSQHAMDDPCILTNPRESSQRDVEVVYGEAL	PGPT0006370_246	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006370-yiaY-K13954	NA	NA
D1-36_02512	1371	rpfC	COG0642	Sensory/regulatory protein RpfC	ATGGCGAAGCCCTCTGAGGAGCAGCAAAAAGCCCTGGCAGGCTTGCTGGGGCTGGGCAACCACTCGACACGCAAAAGCCACTACCCTGAACTGGCGGCGCGCCTCGATGAGCTGGAGCAGGCCCGACGGCACCTGCAACAGCTCAATGATCAACTGGAACAACGGGTGGCCGAACGCACCGATGCGTTGCTGGAGGCCAATCACAACCTGCAGCAGCAAATTGCCCAGCGCGAACTGGTCGAGCAACAGCTGCGAGATGCCCGGGACGCCGCCCAGGCGGCCAACCGCAGCAAGGACAAATACCTGGCCGCCGCCAGCCATGACCTGCTGCAACCACTCAACGCCGCGCGCTTGCTGATTGCGACGTTGCGCGAGCGGCAACTGCCCGCCCCGGAACACGTACTGGTGGAGCGGACCCACCAGGCGCTCGAAGGCGCCGAGGATTTGCTCACTGACCTGCTGGACATCTCCCGCCTGGATCAAGCTGCTGTCAGGCCGGACCTGGCGCCTTATCGAGTGGATGAGCTACTCGCGCCGCTGGTGTCCGAGTTCCAATCGGTGGCCGGTGCCGCGGGCCTGGAATTGCGCGTGCGGTTTGCCGATGACGCGGTACTGACGGATCTGCGATTGATCACTCGCATCCTGCGCAACCTGCTCAGCAACGCCTGCCGATACACCGACCAGGGCGGCATCCTGCTGGCGGCTCGGCGTCGGGGAGGGCGGTTGCGTCTGGAAGTCTGGGACACGGGGCGAGGCATTGCCGCCGATTGCCTGGAGTCGATCTTCCTGGAGTTCAACCAACTGGACGTCGGTCGTGCGGCGGATCGCAAGGGCGTGGGCCTGGGACTGGCGATCGTCGAACGCATTGCCCATATCCTCGGTTATCGGGTGCAGGTGCGTTCGCGGCCGGGACGCGGCTCGGTGTTCAGCATCGACGTGCCGCTGTCGGCCGAGCGGCCGCTGCCCATGTCCCAGGTCCCGGTCCAGCCAGTGGCGGGCAATCCGCTGCCGGGTCGAAGGCTGTTGGTCATCGATAACGAAGTGAGCATTCTGCAAAGCATGGCGGCGCTGCTGGAACAGTGGGGTTGTGAAGTGCTGACCGCCACCGATCAAGCCGCTGCCCTCGACGTTCTGCGGGGCCGTGCCCCGGAACTGATCCTGGCGGATTTCCACCTTGATCATGGTGTGGTCGGCTGCGAGGTGGTCAGGCATCTGCGCGAGCATTTCCAGCGGGCGATTCCCGCCGTGATCATCACTGCCGACCGCAGCGACCAATGCCGCCGCACCTTGCGCAAACTGAACGCGCCGCTGCTGAACAAACCGGTCAAGCCTGGAAAGTTGCGGGCGGTGTTGAGCCAGTTGCTCGCATAG	MAKPSEEQQKALAGLLGLGNHSTRKSHYPELAARLDELEQARRHLQQLNDQLEQRVAERTDALLEANHNLQQQIAQRELVEQQLRDARDAAQAANRSKDKYLAAASHDLLQPLNAARLLIATLRERQLPAPEHVLVERTHQALEGAEDLLTDLLDISRLDQAAVRPDLAPYRVDELLAPLVSEFQSVAGAAGLELRVRFADDAVLTDLRLITRILRNLLSNACRYTDQGGILLAARRRGGRLRLEVWDTGRGIAADCLESIFLEFNQLDVGRAADRKGVGLGLAIVERIAHILGYRVQVRSRPGRGSVFSIDVPLSAERPLPMSQVPVQPVAGNPLPGRRLLVIDNEVSILQSMAALLEQWGCEVLTATDQAAALDVLRGRAPELILADFHLDHGVVGCEVVRHLREHFQRAIPAVIITADRSDQCRRTLRKLNAPLLNKPVKPGKLRAVLSQLLA	PGPT0025850_302	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QUORUM_SENSING_REGULATORS	CE-QSR-QUORUM_SENSING_REGULATED_FLS,PGPT0025850-PA1979-K20975	NA	NA
D1-36_02513	1206			hypothetical protein	ATGAGTCTATCCCCAAGCGCGACAAGCCCAGCCGCTGTCATCGCGCCGACCCTTGCATCCACCACCGCAACAGCCGCCACACGCTTGCTCGCCATCGACGCCCTGAGGGGATTCGTCATGTTGTTGATGCTGGTGGACCATGTGCGCGAAACGTTTCTTCTGCATCGTCAGGTCACTGATCCGATCGATGCCCTGAGCGTGACCCCGGACCTGTTTTTCACCCGTTTGCTCAGCACGCTGTGCGCGCCGGTGTTCATCTTCCTTACCGGTTTGTCGGCATGGCTCTACAGCCAGAAACACACCGCCGGCCAGACCTCGGTGTTCCTGCTCAAGCGCGGTCTGTTTCTGGTGTTTCTGGAACTGACGTTCGTGTGTTTCGCGTGGAACGCCGAGTTTCCGCCGAAGACGCTGTGGTTGCAGGTGATCTGGTGCATCGGGATCTGCATGATCGTCCTGGCGGCGCTGCTGCATTTCAAGCGCAGCTGGCTGATTGTGCTTGGGGTCGCCATCGTCGCTGGGCACAACCTGCTGGACGGTATCGTGCTCGGGCCGGATTCACCGTTTTTCGTGCCGTGGTCGATTCTTCACCAGCGGGCGTTCATCGACATCACCGAGTTCACCCGGGCCCGCACCACCTATCCGGTGCTGCCATGGATCGGCGTGATCCTGCTGGGTTGGGGTATCGGGCCATGGTTCGCCAAGGACGTGGAGCCCGCCGTGCGCCTGCGGCGGTTGTTCATGGTCGGCCTTGGCTTATTGATCGCCTTCGCGTTGATCCGCTATGTCAATGTCTACGGTGATAAACCCTGGGTCCAGACCGGTGATGGGTTGCGCACATTCATGAGTTTCATGAGTGCGACGAAATATCCGCCGTCGTTGATGTTTCTCATGCCGACGCTGGGGCTGGGCTTGATCCTGCTGGCCCTGTTCGAAAAAGCCCAGGAGCGGGGGAGCATCGCGAAACTGGCGATCTACGGCGGCGCGCCGATGTTTTTCTACTTGCTGCACCTCTACGTGCTGAAGGCCATGTACCTGGTTGCGGTCGCCTTGTGGGGAACCAACCAGGGCGCGTATTTCGGCTTCGATCACTTGCCAATGGTCTGGTTGTGGAGCGTTATGCTGGCCGTCGTGCTGTTTTTTCCAACACGTTGGTTCGCCGCCTTGAAACAACGCCGTCGCGATATCTCGCTCCTCAAGTACCTCTGA	MSLSPSATSPAAVIAPTLASTTATAATRLLAIDALRGFVMLLMLVDHVRETFLLHRQVTDPIDALSVTPDLFFTRLLSTLCAPVFIFLTGLSAWLYSQKHTAGQTSVFLLKRGLFLVFLELTFVCFAWNAEFPPKTLWLQVIWCIGICMIVLAALLHFKRSWLIVLGVAIVAGHNLLDGIVLGPDSPFFVPWSILHQRAFIDITEFTRARTTYPVLPWIGVILLGWGIGPWFAKDVEPAVRLRRLFMVGLGLLIAFALIRYVNVYGDKPWVQTGDGLRTFMSFMSATKYPPSLMFLMPTLGLGLILLALFEKAQERGSIAKLAIYGGAPMFFYLLHLYVLKAMYLVAVALWGTNQGAYFGFDHLPMVWLWSVMLAVVLFFPTRWFAALKQRRRDISLLKYL				NA	NA	NA	NA	NA
D1-36_02514	1671	mqo_2	COG0579	Malate:quinone oxidoreductase	ATGGCGTTCCATCCTAGGGATACACACATGTTGAAGAAAACACACACGGCGCTATTGGGCCTGGCGATGGCGATGGGTCTTGCGACCACGCACGCCGCCGAGCCGAAAAAAGTGGATGTCTTGCTCATTGGTGGCGGCATCATGAGTTCGACCCTCGGCGTCTGGCTCAATGAGCTGGAGCCGGGCTGGACCATGGAAATGATCGAGCGCCTGGACGGTGTTGCCGAAGAAAGCTCCAACGGCTGGAACAACGCCGGTACCGGTCACTCCGCGCTGGCCGAGCTGAACTACACGCCGGAAGACAAGAACGGTAAGGTCGAGATCGTCAAGGCCATCGAGATCAACGAAGCGTTCCAGATCTCCCGTCAGTTCTGGTCCTGGCAGGTCAAGAACGGTGTGCTGAAGAACCCGCGCTCGTTCATCAACTCCACGCCGCACATGAGCTTCGTCTGGGGTGATGACAACATCGCGTTCCTGAAGAAGCGCTACGACGCGCTCCAGGCCAGCCCGCTGTTCGCCGGCATGCAGTACTCCGAGGATCCGGCGCAGATCAGCAAATGGGTTCCGCTGATGATGCAAGGGCGTGACCCGAGCCAGAAAGTCGCGGCCACCTGGAGTCCGCTGGGTACCGACGTGAACTTCGGCGAAATCACCCGTCAGTTCGCAGCTCACCTGCAATCCAAGCCGAACTTCTCCCTCAAGCTTTCCAGCGAAGTGGAAGACATCACCCGCAACGAAGACGGCACCTGGCGCGTTTCGTACAAGAACCTCAAAGACGGGACCGAAACCGAGACCGACGCCAAGTTCGTGTTCATCGGTGCCGGTGGCGGCGCGCTGCACCTGCTGCAGAAGGCTGACATTCCAGAAGCCCGTGAATACGCCGGTTTCCCGGTGGGTGGTTCGTTCCTTGTGACCGAAAACCCGACCATCGCTCAGCTGCACCTGGCCAAGGCCTACGGCAAGGCTTCGGTTGGCGCGCCGCCGATGTCGGTGCCGCACCTGGACACCCGCGTGCTTGATGGCAAGCGCGTGATCCTGTTTGGCCCGTTCGCGACGTTCTCCACCAAGTTCCTGAAGAACGGTTCGTACTTTGACCTGCTGACCAGCACCACGACCCACAACGTGTGGCCGATGACCAAGGTCGGTATCGAACAGTACCCGCTGGTGGAATACCTCGCCGGTCAGCTGATGCTGTCGGACGAAGACCGCTTCAATGCTCTGAAAGAGTATTTCCCGGACGCCAAGCAGGAAGACTGGCGCCTGTGGCAAGCCGGCCAGCGCGTGCAGATCATCAAGCGTGACGAAGAGAAGGGCGGCGTGCTGAAACTCGGCACTGAAGTCGTCGCTTCCCAGGACAGCAGCATCGCCGGCCTGCTGGGCGCCTCGCCAGGTGCCTCGACCGCTGCGCCGATCATGCTGACCGTGCTTGAAAAAGTCTTCAAGGACAAAGTCGCCACCCCGGCCTGGCAGGAAAAACTGCGCCAGATCGTACCGAGCTACGGCACCAAGCTGAACGAAAGCCCTGAGCGTGTTGCGCAGGAATGGGCCTACACCAGCGAAGTGCTGCAACTGGACCCGCCACCGGCTATCGGCAAGGCTGGCACCGTTGTAGCTCCGGCCCAGCCGGCTGCTGCCCGGGAATCCAATCCAGCGGCTGACATGGCGCTGTAA	MAFHPRDTHMLKKTHTALLGLAMAMGLATTHAAEPKKVDVLLIGGGIMSSTLGVWLNELEPGWTMEMIERLDGVAEESSNGWNNAGTGHSALAELNYTPEDKNGKVEIVKAIEINEAFQISRQFWSWQVKNGVLKNPRSFINSTPHMSFVWGDDNIAFLKKRYDALQASPLFAGMQYSEDPAQISKWVPLMMQGRDPSQKVAATWSPLGTDVNFGEITRQFAAHLQSKPNFSLKLSSEVEDITRNEDGTWRVSYKNLKDGTETETDAKFVFIGAGGGALHLLQKADIPEAREYAGFPVGGSFLVTENPTIAQLHLAKAYGKASVGAPPMSVPHLDTRVLDGKRVILFGPFATFSTKFLKNGSYFDLLTSTTTHNVWPMTKVGIEQYPLVEYLAGQLMLSDEDRFNALKEYFPDAKQEDWRLWQAGQRVQIIKRDEEKGGVLKLGTEVVASQDSSIAGLLGASPGASTAAPIMLTVLEKVFKDKVATPAWQEKLRQIVPSYGTKLNESPERVAQEWAYTSEVLQLDPPPAIGKAGTVVAPAQPAAARESNPAADMAL	PGPT0001440_342	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
D1-36_02515	450	ywnA	COG1959	Putative HTH-type transcriptional regulator YwnA	ATGAGAAACGACACCCGCCTATCACGCATGCTGCACGTCTTGATTCATATGGATCGCCACCAGCAATCGGCGACCTCCGACACCCTCGCCCAGATGCTGGGTACCAACCCGGTCGTGGTACGCCGAACCATGGCGTTGCTCAAGGAACGGGGTTACGTCACTTCGGAGAAAGGCCATCGCGGTGGATGGAGCCTGGCTAAACCGTTGGCGGAGATGACGCTGCTGGACATTCATCAGGCGTTGGGCAGCACGTCGATTTTCGCCATCGGCCTGTCCACTGATCATCCGCAATGCCTGGTTGAACAAGCGGTGAATGCGGCGCTGACGGATGCGTTCGATGAGGCCCAGGCGTTGTTGCTTGAGCGTCTGGGCAGTATCACGTTGGCCCAGTTGGCGGAGGATTTTGATACGCGGTTTCGGGACGAGCCCAAGGTCGAGCGTCACCTCTGA	MRNDTRLSRMLHVLIHMDRHQQSATSDTLAQMLGTNPVVVRRTMALLKERGYVTSEKGHRGGWSLAKPLAEMTLLDIHQALGSTSIFAIGLSTDHPQCLVEQAVNAALTDAFDEAQALLLERLGSITLAQLAEDFDTRFRDEPKVERHL				NA	NA	NA	NA	NA
D1-36_02516	900			hypothetical protein	ATGGAACACGACATCATCATCGCTGGCGGCAGCTACGCCGGCCTGTCCGCTGGCCTCCAATTGGCCCGCGCCCGTCAAAAGGTGCTGGTAATCGACGCCGACCAGCGTCGCAACCGGTTTGCAGCGACTTCCCATGGTTTCCTAGGACAGGACGGCCGCGCCCCGGATGACATTGCCAGTGACGCCCGTGCCCAACTCATGGCTTACCCGACCGTGGAATGGCTGTCGGATAGCGCGATCCACGCCACCCGCGACGCGGACGGCTTCGTCGTCGAGACGGCCCGTGGACAACGCTACAGTGCCAAACGCCTGTTGCTCGCCACCGGCGTGATCGATGAGTTGCCCGATGTGCCAGGATTGAGGGAGCGTTGGGGAAAAAACGTTTTCCATTGCCCGTACTGTCATGGCTATGAATTGGAGCAGAGGCCGATTGGTGTGCTGGCGACGTCGCCGATGTCGCTGCACCATGCCTTGATGCTGCCCGACTGGGGCCCGACGACGTTTTTCACCAATGGTGTGTTCGAGCCTGACCGTGAGCAACAGGACAGCCTGGCGCAACGCGGTGTGACCGTGATGCCGGAACGTGTCGAACGTATTGAAGGCGATCGGGCCAATGTGGTGTTGGCGGGCGGGCGAGTGATCGCCATTGAAGGCCTGTTTGTCTTGCCGCATACCCGCGTTGCCAGTTCCCTCGCCAGATCCCTGGGTTGCAACTTTGAAGAAGGCCCGCTCGGGGCGTTCATCCAGGCCGACCCGATGACCCGGGAAACCAGCATTCCCGGGGTGTTTGCTTGTGGCGACGCGGCGATTCCGTTCGGCTCGGTCGCGCTGGCCGTTGGTGATGGGGTGAGGGCGGGCTCCGGGGTGCATCGGTCGTTGATCTTCCAGACCCACCCTTGA	MEHDIIIAGGSYAGLSAGLQLARARQKVLVIDADQRRNRFAATSHGFLGQDGRAPDDIASDARAQLMAYPTVEWLSDSAIHATRDADGFVVETARGQRYSAKRLLLATGVIDELPDVPGLRERWGKNVFHCPYCHGYELEQRPIGVLATSPMSLHHALMLPDWGPTTFFTNGVFEPDREQQDSLAQRGVTVMPERVERIEGDRANVVLAGGRVIAIEGLFVLPHTRVASSLARSLGCNFEEGPLGAFIQADPMTRETSIPGVFACGDAAIPFGSVALAVGDGVRAGSGVHRSLIFQTHP				NA	NA	NA	NA	NA
D1-36_02517	1308	citN_3	COG2851	Citrate transporter	ATGATTACAACCCTGGGTTTTTTGATGATGCTTGCCATCATCGGACTGATATTGCTGCGCAGGATCAGCCCGGTGGTGGCGTTCACCACCCTCCCCGTGATCGTTTGTCTGCTCGCGGGGTTCAATCTCGGGCAGATCGGCGAATTCATCAAGGCGGGCCTGATCACGGTTGCGCCGACTGCCGCGCTCTTCCTGTTTGCCATCCTGTTCTTTGGCATCATGCGTGACCGGGGGTTGTTCGATCCTCTGGTCAACCTGCTGATCCGCAGCACGGGCGGCAAACCCCTGGCTGTGGCGTTGGTGACCGTATTGGTGACGTCGGTGGTGCACCTGGATGGCGTGGGCGCCGCCACGTTCCTACTGACCATCCCGGCGCTACTGCCGTTGTACAAACGCTTGAACATGAGCCCGGCGATGTTGCTGTGTCTGGTGGGCACCACGGCGGGCGTCATCAATATGGTGCCTTGGGGCGGCACGACCGCCCGCGCCGCCGCGGTGTCGGGCCTGGACGCCACCGAGCTGTGGCTGGGCTTGCTGCCGGTGCAGATGGTGGGCCTGGTGTGCATGCTTGGGGTGGCGACGATATTGGGTATGCGCGCGCAGCGTCGCCAACCGATGTCGCTGGGGGCGGCCGCAACGTGTGATGTAGATGGTCTGCAAACCCAGGATCGCGAATTCAGTCTTTCTCCCCGGGAGCCGCGCTACTGGCTGAACGTGGCCCTGACCGGTGGCATTCTGGTGTGCCTGTTCACCGGTATTTTCCCTTTGTATGCGTGTTTCATGGTGGGACTGGGCATCGCCCTGCCGCTGAATTTCCCATCCCTGGACGCCCAGGCCGAACGCCTCAAGGCTCATGCATCCGATGCACTGCAGATGGTCCTGGTGATGATGGCTGCCGCCGTCCTGCTGGGCGTGCTCTCCGGCGCGAAGATGTCCGACGGCATGGCCTTGGCGCTGATCGATATCCTGCCTGCGGGTTCTGCCCAATACCTGCACGTGATCGTCGGCTTCTTCGGCGTGCCCCTGGGCATGATTTTTTCGCCGGACGCCTATTATTTCGCCCTGCTACCGGTGATCAGGGACGTGGCCGCCGCGGCCGGCGTTCCCCTCGAAGCGGTCGCCCGGGCCATGTTGATCGGCGAGAACACCGGGTTCTCCATCAGCCCGGTGGTGCCCAGCGTCTACCTGGCGCTTGCGCTGTCCGGCGTCGAACTGCGCAAGCACATGGCCTATACGTTTTTCTGGGCCTGGGGCGTCAGCCTGGTGATGCTCGCTTTCGCCGTGGCAACCGGCGCGGTACAGGTCTGA	MITTLGFLMMLAIIGLILLRRISPVVAFTTLPVIVCLLAGFNLGQIGEFIKAGLITVAPTAALFLFAILFFGIMRDRGLFDPLVNLLIRSTGGKPLAVALVTVLVTSVVHLDGVGAATFLLTIPALLPLYKRLNMSPAMLLCLVGTTAGVINMVPWGGTTARAAAVSGLDATELWLGLLPVQMVGLVCMLGVATILGMRAQRRQPMSLGAAATCDVDGLQTQDREFSLSPREPRYWLNVALTGGILVCLFTGIFPLYACFMVGLGIALPLNFPSLDAQAERLKAHASDALQMVLVMMAAAVLLGVLSGAKMSDGMALALIDILPAGSAQYLHVIVGFFGVPLGMIFSPDAYYFALLPVIRDVAAAAGVPLEAVARAMLIGENTGFSISPVVPSVYLALALSGVELRKHMAYTFFWAWGVSLVMLAFAVATGAVQV	PGPT0001500_720	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_CITRATE_TRANSPORT,PGPT0001500-TC_CITMHS|CitMHS_family|citN-K03300	NA	NA
D1-36_02518	324			hypothetical protein	ATGAACCTCGTCACGCTCGCCGATTTTGCCCACGCCCGTGCCGGCGACAAAGGCAACATTCTCAGCATCGCGGTGTTTCCCCATGACGCGGCCCACTACGCCTGGTTGCTGCGGGAGCTGACCTGCGAACGGGTGGCCGAGCAATTCGCCACGCGGCGGCCTTCCATGGTGCATCGCTATGAACTGCCGAACCTCAATGCATTGAACTTTGTCCTTGAAGACGCCCTGGAGGGCGGCGTGAACCGCAGCTGCGGCCTGGACCGCCACGGCAAGAGCTTGAGCTATCTGCTGTTGGCCCTGCACCTGCCAGGCCCGCGAGACTGA	MNLVTLADFAHARAGDKGNILSIAVFPHDAAHYAWLLRELTCERVAEQFATRRPSMVHRYELPNLNALNFVLEDALEGGVNRSCGLDRHGKSLSYLLLALHLPGPRD				NA	NA	NA	NA	NA
D1-36_02519	1347			hypothetical protein	ATGACAAAAACAATTCTCGTCGGGTGTGGCGCCGGTTTCGCCAATGACCGGCCTGACGCGGCCCTGCGACTGGCCCAGGACCTGGCACAACGCAGCGGCCAGCGGTACATCATGCTCGAGCTGCTGGCGGAGCGGACCCTGGCCGAAGCGCAACTGCGCAAGCGCCTCGATCCACAGGCCGGTTATTCCGCCCGGTTGTTCGATTTTCTTGAGCCCATGCTGGACCTTTGCATCGAAGCCGGGATTCCGATCATCACCAACGGCGGCGCCGCCAACCCGAGGGCGGCCGCCCAGCGACTGCGCGGAGCATTGGCCGGTCGTTTCCCTGGGCTGAAAATTGCCTGCGTGCTCGGCGACGACCTGCTTGAAGAAACACCGCCGCGCTATGAGCGATGGCTGTCGTCCGATACTCAACAGCCTGTCTCCGTGAACGTCTACACCGGCGCCGACGGTATCGTCCAGGCGTTGACCGACGGTGCCGGCATCGTTCTTTGTGGCCGTGTCGCCGACCCTTCGCTGGCGGTAGGCGCGATTCGTCATGGGTTGGGTTGGAGCGCCGACGATTGGCAGAAAATCGCCGTCGCCACGGCGGCCGGCCATCTGTTGGAGTGCTGTACCCAGGTCACCGGCGGTTATTTTGCTCATCCCGGGATGAAAGACATTCCAGACCCGGTCAATCTCGGTTGTCCGATCGCCGAAATCCACGAGGACGGCCGCTTGATCCTGGGCAAGACCCGCCACAGCGGCGGCCGGGTCAGCGAGCAGACCGTGAAGGAGCAGCTTCTTTACGAAGTCCACGACCCTCGCCGCTACCTGACGCCGGATGTTGTACTGGATCTGGGCGAAGCACGCGTGCAGGACCTGGGCGACGACCGTGTGGAGATCAGCGGCCTGCTCGGCCATCCGCGTCCTGACACGCTCAAAGGATTGGCGGGCGTGCGTGGCCTCTGGTTCGGCGAGGCGGAAATATCCTATGCCGGCCCCGGCGCCGTGGCGCGTGCGGCGTTGGCGCGAGAAATCCTGCTGGAGCGTTTCGACCGGTTGGCGCCAGGCGTACAGCCCTGGATCGATCTTTCCGGCGTCGCCAGCCTGTTCAACGACCAGGGCGGTCGCTATCTGCAAAAGCAACTCGCCCAGGCACCAGCCCTCGAAGATGTGCGCGTGCGCATCGGCCTGACCCACACCGACCGGTCGTTGCTCGAAGTGCTGTTGGCCGAGGTGGAATCGCTCTACACCAACGGGCCAGCCGGCGGCGGTGGCGTTCGGCGACACCTCGTCGAGGCCGTCACCACTCGCAGTTTCCTGCTGCCGCGCGGTGAAATCCATACAACCCTGGAGTGGTACTGA	MTKTILVGCGAGFANDRPDAALRLAQDLAQRSGQRYIMLELLAERTLAEAQLRKRLDPQAGYSARLFDFLEPMLDLCIEAGIPIITNGGAANPRAAAQRLRGALAGRFPGLKIACVLGDDLLEETPPRYERWLSSDTQQPVSVNVYTGADGIVQALTDGAGIVLCGRVADPSLAVGAIRHGLGWSADDWQKIAVATAAGHLLECCTQVTGGYFAHPGMKDIPDPVNLGCPIAEIHEDGRLILGKTRHSGGRVSEQTVKEQLLYEVHDPRRYLTPDVVLDLGEARVQDLGDDRVEISGLLGHPRPDTLKGLAGVRGLWFGEAEISYAGPGAVARAALAREILLERFDRLAPGVQPWIDLSGVASLFNDQGGRYLQKQLAQAPALEDVRVRIGLTHTDRSLLEVLLAEVESLYTNGPAGGGGVRRHLVEAVTTRSFLLPRGEIHTTLEWY				NA	NA	NA	NA	NA
D1-36_02520	867	cynR_2		HTH-type transcriptional regulator CynR	ATGAACGTATCCTTCCGCCAGCTGCGTGCGTTTATCCTGATCGCTGAAACGTCCAGCTTTACCCGCACCGCCGAACAGCTGCACCTGTCCCAGCCGGCGCTGAGCTACAGCATCCGCAAACTCGAAGAGAGCATGGGCCTGCAATTGCTCGCGCGAAACACCCGCAGCGTCGAGCTGACCCCGGCCGGCGAGCATTTCCTGCCCCAGGCCCGGCGCATGCTTCGGGACATGGACGATGCCGTGCGCGACGCCCGCGACACCCTCAGCTTGAGCCGGGGCACGCTCAGGCTCGCAGCGTTGCCGACCGCTGCCGCGTCGTTCCTGCCGGTGGTCATCGCTTCTTTCCAGCGTGAGCATCCGGGCGTGAACGTGCATCTGCTGGATGGCCGAGCGGGGGAAATCATGGGCTGGGTGCAGCGTGGCGAGGTGGATGCCGGCATCAGTTCACTGCCGGACGACCTGTCTGGCTTGAGCTTCGAGCGCCTGTTGGATGACAACCTTGTGCTGCTGAGCCACAAGGATCATCAACGCGATTGGACGCAGCAGCCTTATATCGCCCTGACGCCGGACACCAGTATCCGGCCGTTGGCTGACGCTGCGTTGCGTTACCTGAATGTCGATCCGTTGCCCGCCTGGGAAGTGGCGCATATGAGCACCGCCACGGCCTTGGTGCGGGAAGGGCTGGGATTTTCGCTGTTGCCGGCCAGTTGTACGGCGGTGTTCAACATCGGCGAGCAATGCGCCGTCACCGCCATCGATCAACCGGCAAAACGTTCGATTGGCCTGCTGCAGCGCAAGCCAGTAGCCCCGTCACCGTCGTTGAGCCAGTTCATGGGGCATGTGCGGCAGGTATTGCGGCTGGAATGA	MNVSFRQLRAFILIAETSSFTRTAEQLHLSQPALSYSIRKLEESMGLQLLARNTRSVELTPAGEHFLPQARRMLRDMDDAVRDARDTLSLSRGTLRLAALPTAAASFLPVVIASFQREHPGVNVHLLDGRAGEIMGWVQRGEVDAGISSLPDDLSGLSFERLLDDNLVLLSHKDHQRDWTQQPYIALTPDTSIRPLADAALRYLNVDPLPAWEVAHMSTATALVREGLGFSLLPASCTAVFNIGEQCAVTAIDQPAKRSIGLLQRKPVAPSPSLSQFMGHVRQVLRLE	PGPT0021950_571	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARNITHINE_USAGE	PLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021950-dhcR-K17737	NA	NA
D1-36_02521	852			hypothetical protein	ATGCGTGCCATTTTTTCCGTCATGCGTCTTGCCGCGCTGTCGCTGGGACTGGCGTTTGCCACCAGCGCCGCAGCCACCGAGGAGACGCAACTGGTCGAGTCCATCAACCTCTACCGCAGCCAGTCCCAAAGCTGCGCGGGCCAGGCGTCCCTGGAATTGCCACCGCTGGCGATGGATTCGCGGTTGATCCTGTCGGCCAATGGCATCGGCGATCTGCAACAGGCGTTGGCGCGAGCAGCCTACCCGATGGTCAATGTGCAGGCCATCAGCCTGTCCGGGCCGCGCGACGCCCAAGCGGCAATGAAGGCTGTACAGGAAAGCTTCTGCCAAGTTGTGCTGGACCCACAATTTGTCGATATCGGCGTCAGTCGCCTGGACCGTGAGTGGCGCATCGTGCTCGCCCGCCCGCTGTTATCGGCGCGCCTGGGTGATTGGCAGGCCGAAGGGCAGAAATTGCTCAAACTGATCAATAGCGCCCGCGCACAGCCGCGCCGCTGCGGCACCGATGCGTTCAGCGCCACGACGCCGCTGGCCTGGAACGCCACGCTAGCCCTGGCCGCTGTCAATCACACCCGGGCCATGGCCAACAACAATTTCTTCGATCACAAGGACCGTGACGGACGCATGCCGGGCGATCGCGCTGAATTGGCGGGTTACCTGGGCCAGGCCATCGGCGAAAACATCGCCGCCGGCCAGGACACCGCGCTGAAGGTAGTGGACGGCTGGCTGGCAAGTCCGGGGCACTGCGCCAACCTGATGAATCCGCAATATCGCGAACTGGGCGCCGGGTATGCGGTGGACCCGAAGAGCGATGCGGGGATCTATTGGACGGCGATGTTTGGCACTCAGTAA	MRAIFSVMRLAALSLGLAFATSAAATEETQLVESINLYRSQSQSCAGQASLELPPLAMDSRLILSANGIGDLQQALARAAYPMVNVQAISLSGPRDAQAAMKAVQESFCQVVLDPQFVDIGVSRLDREWRIVLARPLLSARLGDWQAEGQKLLKLINSARAQPRRCGTDAFSATTPLAWNATLALAAVNHTRAMANNNFFDHKDRDGRMPGDRAELAGYLGQAIGENIAAGQDTALKVVDGWLASPGHCANLMNPQYRELGAGYAVDPKSDAGIYWTAMFGTQ				NA	NA	NA	NA	NA
D1-36_02522	774	polS		Sorbitol dehydrogenase	ATGAAACGACTGGAAGGAAAAAGCGCCCTGGTGACCGGCGCCGCCCGCGGCATCGGGCGCACGTTTGCCCAGGCCTATATCAACGAAGGCGCGACGGTGGCGATTGCCGATATCGACCTCGAGCGTGCCAAAGCCACCGCCACTGAACTGGGCGACAGCGCCTTTGCGGTCAAGATGGACGTGACTGACCAGGCGTCAATCGATGGCGCCATCGACGCAGTCGTGGCCCGTGCGGGCAAGCTGGATATCCTGATCAACAACGCGGCCCTGTTCGACCTCGCGCCCGTCGTCGAAATCACGCGCCAAAGCTACGAGCGGCTGTTTTCCATCAATGTCGCTGGCACCTTGTTCACCTTGCAGGCCGCCGCTCGGCAGATGATCAGCCAGGGCCACGGCGGCAAGATCATCAACATGGCAAGCCAGGCCGGCCGGCGCGGCGAGGCCCTGGTGGCGGTCTATTGTGCCTCCAAGGCTGCCGTGATCAGCCTGACCCAGTCCGCCGGGCTGGACTTGATCAAACACCGGATCAACGTCAACGCCATCGCCCCTGGCGTGGTGGACGGCGAACATTGGGACGGCGTCGACGCGCTGTTCGCGCGCCGTGAGAACCTGCCGTTGGGAGAAAAGAAGCGGCTGGTCGGGCAACAGGTCCCGTATGGCCGGATGGGCACGGCCCAGGACCTGGTCGGCATGGCGATTTTCCTGGCGTCGGCGGAAAGCGAATACGTAGTGGCACAGACCTACAACGTCGACGGAGGCAACTGGATGAGCTGA	MKRLEGKSALVTGAARGIGRTFAQAYINEGATVAIADIDLERAKATATELGDSAFAVKMDVTDQASIDGAIDAVVARAGKLDILINNAALFDLAPVVEITRQSYERLFSINVAGTLFTLQAAARQMISQGHGGKIINMASQAGRRGEALVAVYCASKAAVISLTQSAGLDLIKHRINVNAIAPGVVDGEHWDGVDALFARRENLPLGEKKRLVGQQVPYGRMGTAQDLVGMAIFLASAESEYVVAQTYNVDGGNWMS	PGPT0018410_50	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATION	PLANT_DERIVED_ALTRITOL|GALACTITOL_DEGRADATION,PGPT0018410-sorbD-K21620	NA	NA
D1-36_02523	942	rhaS_7		HTH-type transcriptional activator RhaS	ATGCCTGACCACCGAACGCTGCTGTACGATCACCGGCCTGCCGAGCTGGAAGTCATCCTGACCGAGCCCGAGCACAGTTTTCGCTGGTACGAGCACGACTATCCCTATCCGCTGGCACGCTGGAACCATCATCCGGAGTTTGAAATCCACCTGATCCGCCAGGGCAGCGGCAGATTGCTGGTCGGTGACTACATGGGCCCTTTCGGGCCAGGCCATGTGGCGATGATCGGGCCGGATTTGCCTCACGACTGGATCGGCGATGTCGCACCCGGGGAGCAGTTGGTCGGGCGCGACGTGGTGTTGCAGTTCGACGGTGCCACGCTGTTGTCGTTGCGCCGGACCTTACCTGAACTGGGGGATCTGCAGCGATTGTTCGAGCGGGCCAGACGTGGCCTGGCCTTTAGCGGCGGCACTGCGCGCCGTGCCGCGCAACTGCTCGAAGCGATCGGCCCGGCCAGGGGGCTGGCGCGACTGGCGCTGTTTCTCGAACTGCTCGACACCCTTGGCCATGCCGGCGACGGCGAGGCCTCATGCCTGGCCAGTCCTTGCTATGCGCCGGTCCTTGACGCGCGCAGCTCGGAGCGCATCCAAAAAGCGTTCGAATACCTGCAAGCTGAACTCACGGGCGACCTGCGCGTGTCAGAGATCGCCCAGCAACTGGGCATGAGCGAGCCCGGGTTCTCTCGGTTCTTCAAACGCATCACCGGGCACGGGTTCATCGACCTGACGCGCAAGCTCCGGGTCCAGCGCGCCTGCCGGTTGCTGTCGCAGAGCGAAATGGCGGTGACCGACATCTGTTTTGAAGTCGGTTACAACAACCTGTCCAACTTCAATCGGCACTTTCGCGTCGAGATGAACCAGACGCCCAGCGAGTATCGCCACAGCCTCGAGGCAGGCTCGCCACATCCCGTCACGCAATCGCATTCGACAGACCGCACCTGA	MPDHRTLLYDHRPAELEVILTEPEHSFRWYEHDYPYPLARWNHHPEFEIHLIRQGSGRLLVGDYMGPFGPGHVAMIGPDLPHDWIGDVAPGEQLVGRDVVLQFDGATLLSLRRTLPELGDLQRLFERARRGLAFSGGTARRAAQLLEAIGPARGLARLALFLELLDTLGHAGDGEASCLASPCYAPVLDARSSERIQKAFEYLQAELTGDLRVSEIAQQLGMSEPGFSRFFKRITGHGFIDLTRKLRVQRACRLLSQSEMAVTDICFEVGYNNLSNFNRHFRVEMNQTPSEYRHSLEAGSPHPVTQSHSTDRT				NA	NA	NA	NA	NA
D1-36_02524	1227	rtcB	COG1690	RNA-splicing ligase RtcB	ATGCAAGAAAACACCTACGACCTGCTGGAAGTCGCCAACGGCAAGCCCATCAAGCTCTGGACCCAGAGCGTCCCGGTGGAGCCCGAGGCCCGACAGCAATTGATGAACACCGCGAAGATGCCGTTTATCTTCAAGCACTTGGCGGTGATGCCCGATGTCCACCTCGGCAAGGGCTCGACCATAGGCAGCGTGATCCCGACCGTGGGGGCAATCATTCCCGCTGCGGTGGGGGTGGACATCGGTTGCGGCATGATTGCGGCCCGTACTTCACTGGATGCCGCCGATCTGCCCGACAACCTCCACGCCCTGCGTAGCGCCATTGAAAAAGCCGTGCCCCATGGCCGCAGCCTCAGCCATGGCGGGCGCGACAAAGGCGCCTGGAGCAACGTCCCACGGCACGCGGACCAGGCGTGGTCCGCGCTGGCCGCGCGGTTCAAGGCGATTACCGACAAATACCCGAAGCTGGCCCGCACCAACAATCGCCAGCACCTCGGGACCCTGGGCAGCGGTAATCATTTCATCGAGGTGTGCCTGGATGAGGCCAATCGGGTCTGGCTCATGTTGCACAGTGGCTCCCGGGGCGTGGGCAACGCCATCGGCAACCTGTTCATCCAGCTGGCCCAGGCCGATATGCGCCAACACCTCGCCAATCTGCCGGATCGAGACCTGGCCTATTTTGAAGAAGGCAGCCGGCATTTCGATGACTACGTCGAAGCGGTGGGCTGGGCTCAGGATTTCGCCCGGCAGAACCGGGCGTTGATGATGGACGCCGTGATACAGGCCACGCGACAGGTGATCAGCAAACCGTTCGAAGTGGCTTTGGAAGCGGTGAACTGCCATCACAACTATGTGCAGAGGGAGCGACACTTCGGACGCGAGGTGCTGGTGACCCGCAAAGGCGCGGTATCGGCGCAAAAAGGCGAACTGGGCATCATTCCCGGCTCGATGGGCGCCAAAAGTTTCATCGTCCGGGGCCTGGGCAACGAGCAATCGTTCTGTTCGTGCAGCCACGGGGCCGGTCGGGTCATGAGCCGCACCGAAGCGAAAAAGCGTTTCACCGTCGACGACCAAGTGCGCGCCACCGCCCATGTAGAGTGCCGCAAGGACGTCGCCGTGATAGATGAAATCCCCATGGCTTACAAAGACATAGAAAAGGTAATGCATGCACAACGTGAACTTGTCGAAGTGCTGCATACACTGCGTCAAGTGGTGTGCGTCAAGGGTTAG	MQENTYDLLEVANGKPIKLWTQSVPVEPEARQQLMNTAKMPFIFKHLAVMPDVHLGKGSTIGSVIPTVGAIIPAAVGVDIGCGMIAARTSLDAADLPDNLHALRSAIEKAVPHGRSLSHGGRDKGAWSNVPRHADQAWSALAARFKAITDKYPKLARTNNRQHLGTLGSGNHFIEVCLDEANRVWLMLHSGSRGVGNAIGNLFIQLAQADMRQHLANLPDRDLAYFEEGSRHFDDYVEAVGWAQDFARQNRALMMDAVIQATRQVISKPFEVALEAVNCHHNYVQRERHFGREVLVTRKGAVSAQKGELGIIPGSMGAKSFIVRGLGNEQSFCSCSHGAGRVMSRTEAKKRFTVDDQVRATAHVECRKDVAVIDEIPMAYKDIEKVMHAQRELVEVLHTLRQVVCVKG				NA	NA	NA	NA	NA
D1-36_02525	636			hypothetical protein	ATGTTGAGGATCGTTGAACAGTCGACCAGTGATGCGTTGCGCCAGCGGATGGAGAAAGCCGGTTGCGCGTTTGATTTCCTGGTCTTCGCGCCCGAGGCGGTTGATACCGTCGACCAAGCGCTGCATGGCCAGGCGGTAGACCGGCTGTTCCAGTACATCAAGGCTCAATGGCTCGAACAGCACCGTCAGTTGGTCGTGGATCCGTCCGTTGCCGACGTCCCGCCTCCAAACATGAACTGGGACTTGGCCAAAGCCCGACCCAGAGCGCTAGGGCGCGATGAGATCCTTCAACTGGTGCGTGTTGAAAAGACCGGGCGAAACCCGGAATCCTTCGCTTTGTACGACGCGTTCTGCGAGCCACCCTATGGCACTCGCTTCGTTGACGACACGCCCCAGGCGCTGTTCAAGGAATGGCTTGACGTGTTGGGGCTTGCACCGGATGCCCGCGTGGTGGTGGTGGACTGGGTCGATAATTTCAACTTCAACGGGTTGGCCAGCGACGAGCCCGATCCGACCCGGGACCCCTGGAGTGATTATTTCGCCGATGGCATGGAATGGTGGGGCGTTTGGTGCCTGAGTATCTGGAACCCCGAGCGTTGCACGCTGGGGGTGCTGGCGGCGAGCACGACGGATTGA	MLRIVEQSTSDALRQRMEKAGCAFDFLVFAPEAVDTVDQALHGQAVDRLFQYIKAQWLEQHRQLVVDPSVADVPPPNMNWDLAKARPRALGRDEILQLVRVEKTGRNPESFALYDAFCEPPYGTRFVDDTPQALFKEWLDVLGLAPDARVVVVDWVDNFNFNGLASDEPDPTRDPWSDYFADGMEWWGVWCLSIWNPERCTLGVLAASTTD				NA	NA	NA	NA	NA
D1-36_02526	906	occR		Octopine catabolism/uptake operon regulatory protein OccR	ATGAACCTTCGTCAGCTCGAAGCCTTTCGCGCAGTGATCCTGGGGCAGACGGTGACCCGCGCCGCCGAGATGCTGCACATTTCCCAGCCCGCCGCGACCCGGCTGATCGCCAGCCTGGAAGAAGACATCGGCTTCAGCCTGTTCGACCGGATCAAGGGGCGGCTGCAACCCACCGCCGAAGCCATGACGCTTTATCAGGAGGTGCAGCGGTCGCTGCTGGGCGTGGAACGCATCGCGCGGACCGCACAGGACATCCGCAACCTCAAGCGCGGATCGCTGCACATCGCCTGCGCGCCGGCCATGGGCTTGTCGTTCCTGCCACGGGCCATCGCCGCGTTCATGGCCGAGCATGACCAGGTGCAGGTTTCCCTGGTGGTGCAATCCTCGCGGGAAGTCGTGGACCTGGTGGTGGGCCAGCGTTGCGACCTGGGCTTGATCGTCCTGCCCAACACCTACCCGAGTCCCCGCGCTGAAAAACTGCTGGCGACACGGATGCTCTGCGCCCTTCCCGCTGGCCATCGTCTGACGGATCGCCGGATGATCGTGCCGCAAGACCTGCACGGTGAGCGGTTCATCTCCTATCCGCAGTCCATTGGTTCTCGCCAGCACATCGACGCGATCTTCGCCGCACACGGCGTGGAACGTGAATTGCGCCTGGAGACGCAGCTTTCCCAGCCCATGTGCACGTTCGTCGAGCAAGGCCTGGGCGTTGCGTTGGTGGACGCCATCAGCGCGGTCGAATACCGGGGCAACGGCATCGTCTTCCGCGCCTTCGAGCCGGCGATTGAAATGGACTTCAGCATGTTGCTGCCGATTCAGGGACCCTTGTCGAAATTGCAGGCGTGCTTTCTGGAACACATGCAGCGATTCATCGAGGCGCAGGTGCCGGCGGCGTATCGGTTTTAG	MNLRQLEAFRAVILGQTVTRAAEMLHISQPAATRLIASLEEDIGFSLFDRIKGRLQPTAEAMTLYQEVQRSLLGVERIARTAQDIRNLKRGSLHIACAPAMGLSFLPRAIAAFMAEHDQVQVSLVVQSSREVVDLVVGQRCDLGLIVLPNTYPSPRAEKLLATRMLCALPAGHRLTDRRMIVPQDLHGERFISYPQSIGSRQHIDAIFAAHGVERELRLETQLSQPMCTFVEQGLGVALVDAISAVEYRGNGIVFRAFEPAIEMDFSMLLPIQGPLSKLQACFLEHMQRFIEAQVPAAYRF				NA	NA	NA	NA	NA
D1-36_02527	1125	hcnC_2		Hydrogen cyanide synthase subunit HcnC	ATGCAAAAAACTGATGTCATCATCGTCGGCGGTGGGTTGGTAGGTATGTCCATCGCTTATGGCCTGGCCCTGCTCGGACGCCAGGTGAGTGTGCTCGACGAGGGCGACGATGCCATACGCGCCGCCCGGGGCAACTTCGGTTTGCTCTGGGTCCAGGGCAAGGGTTTTGGGATGAGTCCTTATGCGCAATGGACCCGTGAGTCCGTGGCGCTGTGGCCACGCTTCGCCGCTGCGTTGCAGGCCGATACCGGCATCGATATCCACCTGCGCCAGCAGGGCGGTTTCCAACTGTGCCTGAGCGACGCGGAAATGGCCGAGGAGGCCGCGCGCCTTGGCTGGCTGCGCGAAGCCCTTGACGGCGATTACCCCTACGAACTGCTGGCACCGGCACAACTGCGCAGCCGTCTGCCCGGCATCGGGCCAGACGTGGTGGGCGGTTGCTTCTCGCCCATGGACGGTCATGTGAATCCGTTGAAACTGTTGCGTTCGCTCTACGCCGCATGCCAGGCCCGGGGCGTAACGTTGATCAATGGTCATCACGTCGATGCAATCGAACCCGATGCCAGTGGTTTTCGGCTACGTGCCGGCGACCAGCACTGGTCGGCCCGGCAGGTTGTCCTGGCCGCTGGCCTGGGCAATCGGAGCTTGGGTGAAATGGTTGGTCTGGATGTGCCCGTGCAACCGAACCGAGGGCAGATCCTGGTGACCGAGCGCCTCAAGCCCTTTCTCGATTACCCCACCACTTACGTGCGTCAGACCGACGAGGGCACCGTGCAATTGGGCGATTCCCATGAATCGGCAGGTTTCGACGATGGCACCGGTAGCCAAGTCATGGCTGCTATCGCGAGGCGCGCGGTGCAGTGTTTCCCGCTGTTGGGTGACGTGCGGCTGGTGCGTGCCTGGGGCGCGTTGCGGGTGATGAGCGCGGACGGGTTCCCCATCTACGAAATGTACCAGGGCTGCCCCGGGCTGTCGGTCGTCAGTTGCCACAGTGGTGTGACGTTGGCCGCCGCTCATGCCCTGCGCCTGGCCCCGTGGATTGCCGGTGAATTCGATGACCCGGCCGTGAAGCCATTCGGCTTGCACCGCTTTAGCTCATCCGTGGAGGTACGCCATGCTGGCTGA	MQKTDVIIVGGGLVGMSIAYGLALLGRQVSVLDEGDDAIRAARGNFGLLWVQGKGFGMSPYAQWTRESVALWPRFAAALQADTGIDIHLRQQGGFQLCLSDAEMAEEAARLGWLREALDGDYPYELLAPAQLRSRLPGIGPDVVGGCFSPMDGHVNPLKLLRSLYAACQARGVTLINGHHVDAIEPDASGFRLRAGDQHWSARQVVLAAGLGNRSLGEMVGLDVPVQPNRGQILVTERLKPFLDYPTTYVRQTDEGTVQLGDSHESAGFDDGTGSQVMAAIARRAVQCFPLLGDVRLVRAWGALRVMSADGFPIYEMYQGCPGLSVVSCHSGVTLAAAHALRLAPWIAGEFDDPAVKPFGLHRFSSSVEVRHAG				NA	NA	NA	NA	NA
D1-36_02528	330			hypothetical protein	ATGCTGGCTGACAGCCTTTTCAGACCTTTGGTCGCTGCGCAGCACAATGTGTTGATCGAATTCGAAGGCCAACCGTTGAGCGTGCCGGGGAATGTCTCGCTGGCGGCCGCCTTGCTCGCCAGCGGCGTCCGCCATACCCGCGAAAGCGCCATCAACGGCAGGCCCGGGGCGCCGTATTGCATGATGGGCGTGTGCTTCGAATGCCTGGTGCAGGTGGATGACCAGGCCAACGTCCAATCCTGCCTGGTGGCCGTGCGCGCCGGCATGCGCGTGCGCCGTCAATGTGGCGCCGCCAGCCTGGTAACGGGCCGGGAGCAAAGCGATGAGTAA	MLADSLFRPLVAAQHNVLIEFEGQPLSVPGNVSLAAALLASGVRHTRESAINGRPGAPYCMMGVCFECLVQVDDQANVQSCLVAVRAGMRVRRQCGAASLVTGREQSDE	PGPT0020400_52	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0020400-lhpD-K22550	NA	NA
D1-36_02529	1374	hcnB_2		Hydrogen cyanide synthase subunit HcnB	ATGAGTAACGTCGCGATCGATCTGGTCATCATCGGCGCCGGACCTGCCGGCATGAGCGCGGCGCTCGAAGCCCGGTCCCGTGGATTGTCAGTGGTGGTACTGGACGAACAGGCCAGCCCCGGCGGGCAGATCTATCGCCAGGTCCTTCACGCCGATGCCTGCAGCCGCGCGGTCCTGGGTGAGGATTACCGCGTGGGCGCTGGATTGGCGGCGGAATTCATGCAGTGTGGAGCCCGCTATTTGCCCAACGCGGCAATCTGGCAAGTCACACCGCAGCGCGCGGTTCATTACCTGATCGACGGCCGTGCGCGAGTCTTGCAGGGGCGCCATCTGCTGATTGCCACCGGCGCCCTCGAACGGCCGATGCCGATTCCCGGCTGGACCTTGCCCGGGGTGATGACCGCCGGCGCGGGGCAGATCTTGCTCAAGAGCGCGGCGATGGTTCCGGCCGGGCCCGTGGTCCTGGCAGGTTGTGGTCCGCTGTTGTACCTGCTGGCAGTGCAGTACCTGCGGGCCGGGATCGTCATCGACGCGCTGGTCGATACCAGCCATCGGCGCGATCTCATCAAGGCCTGGCGTGAGATACCCGGGGCGCTCCGTGGTTGGCGTGACTTGCTCAAGGGGGCGGGGTTACTGGCTGAATTGAAGCGTGCCGGTATCCGCCATTTTCGCGGTGCCGCTCATTTGCGCATCGAGGGCGAGGATCGTGCCAGGGCGTTGAGTTTCGACAGTGGCGGGCGGCATCACCAGGTAGGTGCCGAGCTGATTTTGTTGCACCAGGGCGTGGTCCCTCATACGCAGGTCAGCCGGTCGCTGCGCCTGGAACATGACTGGAGCGAGTCGCAGCTGTGCTGGGTCCCGCGCCGCAATGGCTTTGGCGAAACCAGTGCTCCTGGCATCTTCATTGCCGGTGACGGCGGTGGCATCGGCGGCGCCCAGGTGGCGCGACTCGAAGGGCGGTTGGCGGCGCTGGCCGTGGCCGGATGTCAGGAGCCCGCGCGTCGCGTCCAGAAGGCATTACGCCGCGCCCGTGCGGCGCGGCCATTGATCGATGCCCTTTATCGCCCATCGACGCAGAGCTGCGTTCCCGCCGATGACGTCACGGTGTGCCGCTGCGAAGAAGTCAGCGCCGGTGATATCCGCCGTCATGTCGACCTCGGCTGCCTGGGGCCCAACCAGACCAAGGCCTTCGGCCGCTGCGGCATGGGCCCGTGCCAGGGCCGCCAGTGTGGCTTGACTGTCACGCAGATCATCGCCGCCCATCGCCGGGTTTCACCCGCCGAGGTCGGCGACTACCGCATCCGTGCGCCCCTCAAACCCATCACGCTGGCCCAACTGGCCGGCGAAAGCCACTCATTGGAGCAACTGTCATGA	MSNVAIDLVIIGAGPAGMSAALEARSRGLSVVVLDEQASPGGQIYRQVLHADACSRAVLGEDYRVGAGLAAEFMQCGARYLPNAAIWQVTPQRAVHYLIDGRARVLQGRHLLIATGALERPMPIPGWTLPGVMTAGAGQILLKSAAMVPAGPVVLAGCGPLLYLLAVQYLRAGIVIDALVDTSHRRDLIKAWREIPGALRGWRDLLKGAGLLAELKRAGIRHFRGAAHLRIEGEDRARALSFDSGGRHHQVGAELILLHQGVVPHTQVSRSLRLEHDWSESQLCWVPRRNGFGETSAPGIFIAGDGGGIGGAQVARLEGRLAALAVAGCQEPARRVQKALRRARAARPLIDALYRPSTQSCVPADDVTVCRCEEVSAGDIRRHVDLGCLGPNQTKAFGRCGMGPCQGRQCGLTVTQIIAAHRRVSPAEVGDYRIRAPLKPITLAQLAGESHSLEQLS				NA	NA	NA	NA	NA
D1-36_02530	351			hypothetical protein	ATGACCATCCAACGTATCGAAAGCAACCCGCGCCTGAGCCGTAGCGTCGTGCACAACGGCGTGGCCTGGCTCAGCGGCATCGTCGCCGCCGATTGTAGCCAGGACATCGAGGGCCAGACCCGCCAGGTGCTGCAACGGGTCGATGAACTGCTCGCCGCGTCGGGTAGCGATAAACGTCGGCTGCTCAGCGTGCAAATCTGGATGAAAGACATGGGGCGCGATTTCGCCGCGATGAATGCGCTGTGGAGTGATTGGGTCGAGGCCGCGCATACCCCGGCGCGGGCCACCGCACAGGTGGCGTTCGATGACCCGCAGATCCTGCTGGAACTGATCGTCACCGCGGCGGTGTAG	MTIQRIESNPRLSRSVVHNGVAWLSGIVAADCSQDIEGQTRQVLQRVDELLAASGSDKRRLLSVQIWMKDMGRDFAAMNALWSDWVEAAHTPARATAQVAFDDPQILLELIVTAAV	PGPT0020030_15	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020030-ridA|tdcF-K09022	NA	NA
D1-36_02531	783	argT_3	COG0834	Lysine/arginine/ornithine-binding periplasmic protein	ATGAACATCAAACGCATTGCACTTAACCTGGGCATCGTCTCGTTGCTGGCGTTCGGCGCCAACCTGCAGGCCGCGCAGACTTCGTTGCGCATCGGCATCGAAGCGGCCTATCCACCGTTCGCCTCTAAAACCCCGGACAACGCCATCGTGGGTTTCGACTACGATATCGGCCAGGCCTTGTGCGCCGAGATGAAGGTCCGTTGTGAATGGAAAGAGCAGGAGTTCGATGGCTTGATCCCGGCGCTCAAAGTGAAGAAAGTCGACGCGGTGATTTCCTCCATGTCGATCACGCCGGAGCGGATGAAATCGGTCGACTTTACCGACCGTTACTACCGAATCCCGGCTCGCCTGGTGTTTCGCAAGGGCAGCGGCATCAACGCGATTCCCGCGCAGCTCAAGGGCAAGCGAATCGGCGTGCAACGGGCGACCAACTTCGATCGCTACGTCACCGACAAGCTTGCCCCGGCCGGCGCCGAAGTCATCCGCTACGGTTCGCAGAACGAGATCTTCCTCGACCTGCTGGGCGGCCGTCTGGACGCGACGATGGCCAGTTCGGTCGTCATCGACGAAAGCTTGCTCAAGCGGCCGGAAGGCAAGGATTTTGAATTTGTCGGACCCAATTTCGTCGAAGAACAATACTTCGGCACGGGCATCGGTATCGCGGTGCGCAAAAACGATCCGCTGGCGAGCCGCTTCAACCGGGCCCTGGCAACCATTCGCGCCAATGGCACGTACGATCGGATTCGCCAAAAATATTTCGATTTCGATATCTACGGTGAATAA	MNIKRIALNLGIVSLLAFGANLQAAQTSLRIGIEAAYPPFASKTPDNAIVGFDYDIGQALCAEMKVRCEWKEQEFDGLIPALKVKKVDAVISSMSITPERMKSVDFTDRYYRIPARLVFRKGSGINAIPAQLKGKRIGVQRATNFDRYVTDKLAPAGAEVIRYGSQNEIFLDLLGGRLDATMASSVVIDESLLKRPEGKDFEFVGPNFVEEQYFGTGIGIAVRKNDPLASRFNRALATIRANGTYDRIRQKYFDFDIYGE	PGPT0020680_108	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020680-aotJ-K10022	NA	NA
D1-36_02532	426			hypothetical protein	ATGAAAACCAAAGCGGTACTCACGGAACAGGACGTTGCACAACTACTGGTGGCGGCCAAGGAGCTTGCTCACCAGCGCCAATGGGCGGTGTCGGTGTGTGTGGTGGACGATGGCGGGCATCCCCTCGGGCTGCTGCGCCTGGACGGCGCGTCGCCCTTGTCGACCTACATCGCCACCGAAAAAGCCCGCACCGCCGCCATGGGACGGCGTGACAGCAAGGCCTTCGAGGACATGATCAACGGCGGCCGCCTGGCCTTCTTGAGCGCGCCGCACTTGCAGGGCATGCTCGAGGGCGGCGTGACGATCCGCCATGACGGCCAATGCATCGGCGCCATCGGAGTTTCCGGTGTGAAGGCCGAGGAAGATGCGGAGCTGGCGCGGTTGGCGGTGGAGACGGTGCTGCCGGTAATCACGCCCGATGCGTGA	MKTKAVLTEQDVAQLLVAAKELAHQRQWAVSVCVVDDGGHPLGLLRLDGASPLSTYIATEKARTAAMGRRDSKAFEDMINGGRLAFLSAPHLQGMLEGGVTIRHDGQCIGAIGVSGVKAEEDAELARLAVETVLPVITPDA				NA	NA	NA	NA	NA
D1-36_02533	834	rhaS_8		HTH-type transcriptional activator RhaS	ATGACAGCGCGCAACTGGATCGATCTCAAGCAGGACGCCACGTCCGGCATCGAGACCGTGCGCGCGCATTTCGAGGGGCATGCCTACGATCCGCATTGGCACGACGCCTACCTGGTGGGCGTGACGGAGCAGGGCGTGCAGCAGTTCCATTGTCGCCGACAACAACACACCAGCACGCCGGGCAAAGTGTTCCTGCTCGAGCCCGGCGAACTGCATGACGGTAACGCCCCTCACGAACACGGTTTCACCTACCGCACGTTGTATCTCGAACCGCAATGGCTGGAGCGCGAACTGCGCTCGCTGTTCGAAGAAGCGCCGGACAACGCCCGCCTGGGCTTCGCCGCAACCCTCAACGACGACGCACAACTGGCGCGCGCCACCGCCACGGCTTTCCAGAGCTTGCATGAACAGGACATCCTGATCGTGCGCCAAACCGCCCTCGACATGCTGCTGTCCAACCTCACCCAACACCTGCACTGGCGCGCGCGGATCAATCCCGACCCGCGCTTGCCGCTGGTGGCCCAGCAGGCCCGCGACTACCTGCACAGCCATTTGAGCGAGGACATCGGCCTCGACGACCTCGCGCGGGCCACCGGTGTGGATCGCTTTCGCCTGAGCCGCGCGTTCAAAACCGCTTTCGGCCTGGCGCCCCATGCTTACCTGATCCAGCTGCGCCTGGCTCGGGCGCGACGTCTGCTGGCTCGTGGCGAAAGCGCCGTGGCGGTGGCTGCGATGCTCGGTTTTGCCGACCAGAGCCACCTCGGCCGTTGGTTCCAGCGTGCCTATCGCATGAGCCCGGCGGACTATCGCAAGCGAGCACTCCGGAACCAATGA	MTARNWIDLKQDATSGIETVRAHFEGHAYDPHWHDAYLVGVTEQGVQQFHCRRQQHTSTPGKVFLLEPGELHDGNAPHEHGFTYRTLYLEPQWLERELRSLFEEAPDNARLGFAATLNDDAQLARATATAFQSLHEQDILIVRQTALDMLLSNLTQHLHWRARINPDPRLPLVAQQARDYLHSHLSEDIGLDDLARATGVDRFRLSRAFKTAFGLAPHAYLIQLRLARARRLLARGESAVAVAAMLGFADQSHLGRWFQRAYRMSPADYRKRALRNQ				NA	NA	NA	NA	NA
D1-36_02534	1182			hypothetical protein	ATGAATACAAGACAAAGCACTGTCGAGGCGTTGAGTAACGTGCCCCCCGCCTCGCCCGTCAGTGTTTACTCGTCGAATCATGACTGGGTCCGCATCGCCGCGCAGCGATTCGTGCTGGACCCAGGGGTTCCAGAGGCAAGGGATTGGGTTATTCAAGGCATCATGGAAGTGGTCGACAACTACGACATCGATGGCGTTCATCTCGATGATTATTTCTATTACGAAACGCCAGACTCGCCACTTGATGATGCGGACACTTTTGCGAAGTATGGTAATGCCTTTCAAGACAAGGGCGATTGGCGCCGAAATAACATCACCGAGATGATAGCCCTGCTTTCCAGGCGAATACGAGCCTCGAAATCACATGTCAAGTTCGGTGTCAGTCCCGCAGGAGTATGGCGCAACCAAAGAGACGATATAGAGGGGTCGGATACCACGGCCGGCAGTCCCACCTACGATAAGCAGTTCGCCGATACGAGACAGTGGGTATTGGATGAACTGCTCGACTATATCGCGCCTCAAGTGTATTGGCCGCTGACGCGCAGAATAGTGCAGTACGACATTATTTCGAACTGGTGGGCAAGTGTCGTTCGCGGCAAAAGTGTGCATCTATATATCGGCATGGCACTCTATAAAGTAGGAGTCGCCAGCAGTGCGGAACCACAGTGGCTCGTGGAAAATGGCACGACTGAAATCGGTAACCAACTCCTGTGGAACCTCACATCGGAGGGCGTTCACGGAAGTGTTCTTTTTCGAGCGTCATTCTTCCATGCCCCGGCGGTGCTGCCCGCGACAGGTGTGATCAAGCAAAGTATATGGCCAACCCTGGCGCTCGTTCCTTCCATGCCGTGGAAAGGCACAAAGCCCCCCGCCCCACCCATAGAGCCGGAATGCCGCACGGCGTCGCAAGGGGTTGAACTTCGATGGGTGGATGGAAATGACGAGGGGACCGTGTACTACGCGATTTACAGATTCGCGTGCAATCAGTCAGTCATGATCGACAATCCTGAAAATCTGATCGCTACGGTGCGTAGGGCGGGAACACAACAGTGTTGGGTGGATACGTCACCGTCGAGTTCCGAGGGGATGATGTATGCCGTGACAGCACTTGATCGCAACCACAATGAAAGCGCCATGGCGCTCGCCCGTTGGAGCGCCCTTGTACCGCAACAAAGCGAATGA	MNTRQSTVEALSNVPPASPVSVYSSNHDWVRIAAQRFVLDPGVPEARDWVIQGIMEVVDNYDIDGVHLDDYFYYETPDSPLDDADTFAKYGNAFQDKGDWRRNNITEMIALLSRRIRASKSHVKFGVSPAGVWRNQRDDIEGSDTTAGSPTYDKQFADTRQWVLDELLDYIAPQVYWPLTRRIVQYDIISNWWASVVRGKSVHLYIGMALYKVGVASSAEPQWLVENGTTEIGNQLLWNLTSEGVHGSVLFRASFFHAPAVLPATGVIKQSIWPTLALVPSMPWKGTKPPAPPIEPECRTASQGVELRWVDGNDEGTVYYAIYRFACNQSVMIDNPENLIATVRRAGTQQCWVDTSPSSSEGMMYAVTALDRNHNESAMALARWSALVPQQSE				NA	NA	NA	NA	NA
D1-36_02535	240			hypothetical protein	TTGACTAACATCAAGCGCCATCTTCGAGGCACGTGGATCTCGACAGTAATCAATCTCGACTGGCCGTCAAAAAACTCCCTCTCGCTTGTTGATCCTCAGGCACGCATCAACCAACAAAAGAACGAACTCAAAAACCTGCTGGACGAGGCAGTCAAGCTGCGGCTCAATGCGGTGTTCTTTCAGGTCAAACCGGCTTGCGATGCCTTCTACCGTTCGCAAGTACTGCCTTGGTCGGCCTAA	MTNIKRHLRGTWISTVINLDWPSKNSLSLVDPQARINQQKNELKNLLDEAVKLRLNAVFFQVKPACDAFYRSQVLPWSA				NA	NA	NA	NA	NA
D1-36_02536	603			hypothetical protein	ATGGACCAATTACTGCCGTTTGCCTTGTTTGCCTTCGTCGCCTCCATCACGCCGGGCCCGACCAATATCCTCGTACTGAGCCACAGCTCACGCTACGGCCTGGCGACCACTTGGCCGATAATCCTCGGCGCTTGCGCAGCCGCCGCCATGTTGGTGCTATTGGTGGGCACCGGGCTGGGGGACGTGCTGGCCCGGCATGGCATGGTTCAAACGGCGCTGTCATGGGCCGGCATCGCCTGGCTCAGCTGGATGGCTTGGCAGATCTACAGCGCACCGGCTGAAGCCATCGACCCGGACCGACCTGTGGACGGGCCCCGACTCGGCCTGGTGGGCGCCGCCGGGTTGCAGCTGGTGAATCCCAAGACCTGGATGATGGCGTTGGCGGTGGTCAGCGTGTTCGCCGGGTCCGAGGCCGACCGTACGGCGCGGGTGCTGTGGCTGTCCCTCGCATTCTTCGCGATTTCGATCCCCTGCATGACTGCCTGGGCCTGCTTGGGGCGTGGCGCGGCGAGGTTTTGCCGTTCCGCCGTTGCGATGGGCCGCTTCAATCGGGCCATGGCGGTGTTGCTGCTGGTCTCGGCGTGGTTGACGTTGGTTGTCTAG	MDQLLPFALFAFVASITPGPTNILVLSHSSRYGLATTWPIILGACAAAAMLVLLVGTGLGDVLARHGMVQTALSWAGIAWLSWMAWQIYSAPAEAIDPDRPVDGPRLGLVGAAGLQLVNPKTWMMALAVVSVFAGSEADRTARVLWLSLAFFAISIPCMTAWACLGRGAARFCRSAVAMGRFNRAMAVLLLVSAWLTLVV				NA	NA	NA	NA	NA
D1-36_02537	5106			hypothetical protein	ATGTCCATTCAAACTCATGTCGCCATCATCGAGGCCAAGCTGCCCGGCTGGTTGAAGCGAGCCGCGCGCCCTCATCAGACGCGCTTGAAAGCCCTCATGAAGCAGTTACAGAGCGACAGCGACGCACTCAACGCGTTGGTTGCCGACCTGCCGAAACCAGCGGTTTTCGCAACCAACCTGCTGCAAGCCGAGCCACAGATACAACGCTGGATTGCGGTAAACGGCTTTGGCACGGCTGTCGATGCGGTGAGCAGGGCAAGGGTGAGTCGCACCCACTACATCCGTGACCCCGCCCTCACGGTGGTGAAAGCCGCGATGCAAAATTTCCCGTCCGCCGATGCTGTGACAGGTAGCGACTTCGATAAGGACGGCGTGCTCTACATTCAAGGTCGCAGCCTGGAGTTCCAGGACGCCGAAGAACGATCGGATACCGCGGCATTGCCCATGTCACCCGCCGAATTTGCGCGTCTTTGCCGCCGGATTAACGCAGGCGGGGCTTACCGACAGGTGCTCGAAAGCAGGTTGCCGCACCTCGGCGCCGAAGTCCCCGCCATTGCGCATGTCTACATGAGCTATGCACGCAGCCGTCTCGCCTACGATGCCTATGAAGCGAAGTTGGACGGGCGCCTGGATGAAACCGGCGAGCGGATGCTGGCCCACGTCGGTGTGCACCTGGAAGAGCGACCTGCCGTGCCGCTGGCTTGCGAGGTCAAGTCCCTTGAGCTGCTGTCGGTGCCGTTGTTCGGTGCACGGGTTTACTGGGGCGTGCAAGGCAACGCCGAAGGCGTTCGGCCAGTCGTCCTGCACATGCCCCATGATGCGGTGGCGCCCCTCAAGCAATTCAAAAGCCTGCAAGCCATGTCTGCCGAGCTGATCGAACGGGTACGTAAACGCAGTTATCGCCAGAGCCTGATGCATTACTTCCCGTTGCGCTTGCAGGCCTCGTTGGGGACCGCGTTGCACGATCAGGTGGAATGGCGGGTGGATGCCCACCCTAACGTGATGCAGGAGATCTACGGCCGCATCACCGGCTGGCGCGAGGGTGAGCGGGGCGAGGACGGGACGCGGGAACGCATCCGGGTGCCGATACCAAAGGTTGCCTGGGGCCTGGGTGATCTGCGCGAGCAGCCTTGGCCCGCTTGCTATCGCGAGTGGCGCGGCCATGTATTGGCCAACGCGGCTACGCTGATGGTTCCCACCGAGGAGAAGGACTGGCAGGCGCGGATGGCGCGGTTTGCCTACTGGGAAAGCCTTGCCGAGCGTGCGTTGATGGTCACGGCCATGCTGTTCCCGTTCTACGCACCGGTTGGCATGACCGCGGCGGCGGTCGGGGGCGCGCAGATGGTGTATGAGATTTTTGAAGGCATCCAGGCGTTCAACGAAGGCCAGGCCCAGGAGGGCATCGACCATATCTTCAATGTCTTGTTCGGGATCGCCCAAGGTGCCTATCTGGGATTCGTGGGCGGGACCCTCGAGCCGATGTCCGCCCATGACGGTAGCACGCGCTTGTGGAACGGCGATGTGCGTAGTTTCCGGGCGCAAGGCGTGCCGCCGGCAGAAGCCGAACAGGACGCGTGGGGCGTCTGGCGCACACCGGAGCAGGCCTGGGTTCGAATCGACGATGACTACTTCGAAGTCCAGGGAGCCGGCGACGTGCTCGACCTGCGCTTGCCTGCCGACCATCGTGGTATCCGACCGCCCCTGAAGTGGAACCGTGCCCGTGGTTGGCAGTGGGCCCATCGCGATCCGATGCAGCAGGGCAACCTGGAGCTGCTGCGATCCTTCGCCGAAACACCCTCCGAGCTGGATGACCAGACAATCCTCTCATTGCAGCGCCAGACAGGTATCAACGAGGAACATCTACGCTATTTGCAGGTCGAGGGCCAGCCATTGCCGGCAATACTCGCCGACAGTCTGGATGACGCGAGGAACTGGCAGGACCTGAAACAGGCCGTCGCACGACTGCGCCGCAATGAGTCGATGGGGGGCGCGCACTTTCGGATCGTCCAGACCCTTGTCGATCTTCCAGGCTGGCCGAGAGGCGCCACGCTGCGCTACGACGATGGCGTCAGGGTCTACCCCATTGGGCGTGCGGGCGACGTGCGGTTTATCCGATTGACCAGCACAGATTTGCAGAGCGATGCCTGGGCCAACTATGTGCTCTCGAATTTGGGCAGGGAAGAACAGACCGAGATACTCGGGCAACGCAGCATCGGCCTGCGCCCAGCAGAGCGTAGTCGGCTGTTGGCGGACCGCTGGGCCGACCTGTTGGAGCGCAACGCGGTACGGGTGACCGATGGCATGCGTCGCGGTGTCGAGCTGGATCCGTTGGCCGCGCCGATCAAGCGTGCTTTTCCCGGTATGCCGGAGTCCATCGCCAACGAGCTTGCCCGTCAAACGACGGGGGTCGAACGGTTGCGCTTGGTCCAAGGGCGTGTGGCCGGGGACTTGGGTGACCAATGCGCCGAAGCGTTGCGTGAGTTGCGCCTGACCCGCGCGCTGGGCGCATTGGAACGCGGTGAAAGCACCGGCGACCGGGATCGCCTGGTCATGGGCCTGCTCGACCAGTCGCCGCTGGCCAAGGGGCGTTTGCATCTTCGCCTGTGGTCGCGGGAACTCCGAACTCCGCTTGAGCTGGAAGGAGAAGGGCCGATGAAGACCATCCGCCAGGAAGGTGAGCGATACCAGCCTTTCGATGAACAAGGTGAAGAACTGGTGGGCCCTCTCCCGTTGGAGGACGCGCTGCTCAGGGCCATGCCCGATGACGCGCGCAAGGCGCTCGGCCTGGATATATGGGAAGCGACGAAGCTGCGCACCCGTTTGCTTGACCAGGCCTTGGATGATCGGCAGGCACTCCGTGGTTTCCTACAGATGAAGCGCATCGGTGATGACGGGCCCGGCCTGCAATCGCTCAACGGCCGCATGGGTTACCCGCTCAGCGGGCGTGGACGCCTTCCTCTATCGGCGTGGCGCAACGGCCTGGACCATCGGATCGAACAGCTTTATCCCGGTCATGCCGGTGATGCCATGGTCCAGCTTCGGCTGGATCTGAGCCAGCAGGCGAGGCGGGCGGGCACGACGCTGGAGGTGTTGGTCGACCGGCTGCAAGCCCAGTGGACGGCACTTGACCAAGAGCTGCATCACTGGGAATCCCATGGAGACGTGCATCACCCCGCCGAGAACCTGCTCGACCCGCAGGCGCGGGCCGAGCAGCGCAGGATCGTCGGCGGGGAAATCCGCCGTGCCTGGCGACGCACCCCGGTTCCGGGCCAGGAGGGGAGCGAGGTGCGGTTGAAGCTGTCGGGGCACTACCTCGGCCGATTACCGACCATCAGCGCAAATTTCGAGCACATCGAAGAGTTGATGTTGACGAATCTGAGCCTGGATGAGGACCCATCTGATTTCCTCCGGTTGTTTCCCAACATCGATACCTTGCACCTGCGGGGCAACCAGCTGAATACGATACCCGTGGCTGCCGGCGAGTTGCGCGGGCTGCTGGAGTTGTCGATGAAAGACAATCCCTTGTTGATGACCGCCGATGTCTTCGTACCTCTGCTTGGCGGCGATTCGGCGAGCAACCTGCATATCCTGAACCTGTCGGGAGTCAGCAGTGGGGTAGGGCCGTCGATGAGTGCCGCCACGGTCGAGGCCATCGGTCGCCTCGCCGAGCTGCCTTCGCTGCAGGACCTGGTATGGGCTGATAATCTGCATTTCACTCCCGAGCAGCTGCGAGCCATCGCCGCCTTGCCGGAGCTGCGCATCTTGAACCTGTCGCGCTGTGGCCTGAGGCTCGATGAGGAAGGCAGCGCATTCCTGCGCACGGCGACCGGGCTGGAGGAGCTCGCCTTGAACGGCAACAATTGCACCCATCTGCCAAGCCTGCCCGAGCTCAGACTGTTGCGGGACCTGGGACTGGCCAATACCGGGCTCGATACGGTGCCCCCGGCGGCCCTGGCGATGCTGTCCAATCCATCCGCCGCGCATATCACCCTCGACCTCATGAATAATCGGATCAGCAATATCCAGGATGACCTGCTGCCTCTATTGGGCGGTGAGCCAACACCTGAGGTGCTGGCAATACTCCTTCAGAACAATCCGTTGCCGAGCGCCCAGATCCAAGCGCTTCGCGTCTTGCGACCGGAGGCCTTTCGCTACACGGCCGATGATTGGTTGAAGGGCTTTGACTCTTTTCGAGGCTCCCTGGAGGCGGCGCGCGATGAGCCCGGGAACAGGCGGTTCATTGACTGGTTTTCAGTCCGGATGACCAGCGATATCAACAGTGCCGACCCGGGGCTGCCGTCCAATGCTCGTTCCAGGGGAGCCGCCGTGCTTCAGCATTACACGAATTTCGAGGACATCTATGCCGAGCTACCGAGCCGACTGACAGACTTTGATCCACAACTGGCAGCGCTGCGCAGCCGGTTGCAGGCGCGCATCCTGGACAGGGTATCGCCTGATTTGTCAGAGCTTGAAGTACACATATCCATGTTCATTACGGTACAGCGCGCCCGCCTTTTGAATGAGCCAGTGCCTTTTGCCAGTTTCATGAGAATTCAATACGACTTCTGGAATTACTCGCTATCGCTCAGGCCGCTCACTGTTGCCGAGCGTGCCGCACTGATGAGCCGGGAGGCGTTCATCGACTGGCTTTGCACGGCCCAGGACATTTTCAACGATGCTGATCAAGTCGCTTTCGTAGGGGAAACCACTTGGCGGCCGTACCTTGGCCTGATGTCCCGGGACTGGACTGAAGGAGCGACCATTTGGGAAAGCGTGGACGAGAAGCTGTCGGATGCCTTCAGCGAACCGGTGGACGCGGCCGGCTGGCCGCAAGCGCTGCTGGACAACCTCAGGCATCCAACCGCCGATCTACCGAGTGCCTGGGAGCACGCTCCGGTGGATGGCCAGATGGTTTGGCGCCGAGCGAACCTGGAGGCCGTGAACGATGTGGACTGGACTGCTGGCCAGCCGGTGGCACTCAATGATGATCAGTTCCGGCGCACCATGGCGATCTACCGCTCGGTGAGGACTCGGGAGATCGACGCCCTGGTTCGTCGCGTGACTACCGATCTGGTCGATCCATGGTGGCCGTTGCGGCCTCAATAG	MSIQTHVAIIEAKLPGWLKRAARPHQTRLKALMKQLQSDSDALNALVADLPKPAVFATNLLQAEPQIQRWIAVNGFGTAVDAVSRARVSRTHYIRDPALTVVKAAMQNFPSADAVTGSDFDKDGVLYIQGRSLEFQDAEERSDTAALPMSPAEFARLCRRINAGGAYRQVLESRLPHLGAEVPAIAHVYMSYARSRLAYDAYEAKLDGRLDETGERMLAHVGVHLEERPAVPLACEVKSLELLSVPLFGARVYWGVQGNAEGVRPVVLHMPHDAVAPLKQFKSLQAMSAELIERVRKRSYRQSLMHYFPLRLQASLGTALHDQVEWRVDAHPNVMQEIYGRITGWREGERGEDGTRERIRVPIPKVAWGLGDLREQPWPACYREWRGHVLANAATLMVPTEEKDWQARMARFAYWESLAERALMVTAMLFPFYAPVGMTAAAVGGAQMVYEIFEGIQAFNEGQAQEGIDHIFNVLFGIAQGAYLGFVGGTLEPMSAHDGSTRLWNGDVRSFRAQGVPPAEAEQDAWGVWRTPEQAWVRIDDDYFEVQGAGDVLDLRLPADHRGIRPPLKWNRARGWQWAHRDPMQQGNLELLRSFAETPSELDDQTILSLQRQTGINEEHLRYLQVEGQPLPAILADSLDDARNWQDLKQAVARLRRNESMGGAHFRIVQTLVDLPGWPRGATLRYDDGVRVYPIGRAGDVRFIRLTSTDLQSDAWANYVLSNLGREEQTEILGQRSIGLRPAERSRLLADRWADLLERNAVRVTDGMRRGVELDPLAAPIKRAFPGMPESIANELARQTTGVERLRLVQGRVAGDLGDQCAEALRELRLTRALGALERGESTGDRDRLVMGLLDQSPLAKGRLHLRLWSRELRTPLELEGEGPMKTIRQEGERYQPFDEQGEELVGPLPLEDALLRAMPDDARKALGLDIWEATKLRTRLLDQALDDRQALRGFLQMKRIGDDGPGLQSLNGRMGYPLSGRGRLPLSAWRNGLDHRIEQLYPGHAGDAMVQLRLDLSQQARRAGTTLEVLVDRLQAQWTALDQELHHWESHGDVHHPAENLLDPQARAEQRRIVGGEIRRAWRRTPVPGQEGSEVRLKLSGHYLGRLPTISANFEHIEELMLTNLSLDEDPSDFLRLFPNIDTLHLRGNQLNTIPVAAGELRGLLELSMKDNPLLMTADVFVPLLGGDSASNLHILNLSGVSSGVGPSMSAATVEAIGRLAELPSLQDLVWADNLHFTPEQLRAIAALPELRILNLSRCGLRLDEEGSAFLRTATGLEELALNGNNCTHLPSLPELRLLRDLGLANTGLDTVPPAALAMLSNPSAAHITLDLMNNRISNIQDDLLPLLGGEPTPEVLAILLQNNPLPSAQIQALRVLRPEAFRYTADDWLKGFDSFRGSLEAARDEPGNRRFIDWFSVRMTSDINSADPGLPSNARSRGAAVLQHYTNFEDIYAELPSRLTDFDPQLAALRSRLQARILDRVSPDLSELEVHISMFITVQRARLLNEPVPFASFMRIQYDFWNYSLSLRPLTVAERAALMSREAFIDWLCTAQDIFNDADQVAFVGETTWRPYLGLMSRDWTEGATIWESVDEKLSDAFSEPVDAAGWPQALLDNLRHPTADLPSAWEHAPVDGQMVWRRANLEAVNDVDWTAGQPVALNDDQFRRTMAIYRSVRTREIDALVRRVTTDLVDPWWPLRPQ				NA	NA	NA	NA	NA
D1-36_02538	1002	rlmL_1		Ribosomal RNA large subunit methyltransferase K/L	ATGAATCCTCAAGCCCTTCAAACATTGCAGAGCCACTTGTCGACGGCGCTGGGATCGGTGCCCGACGAAACCCGTCGCCTATTCCACGGTCGCGGGCGCTGCTGGCCAGGGCTGGAGCAAATCACTGTCGACTGGCTGCAAGGCGTGGTGCTGGTTTCGCTGTTCAAGGAGCCCGATCCAACGCAACTGGATGACTTGTTCACCATGCTGCGCGCCCTCGCCGCCTCGCCCGCCTGGCAACACAGCGGCGCCCATACCCTCGCCGTGCAGTATCGATACCTGCCCGACAGTCTCACCCAGTGGCTGATAGGCGAACCGATCGATGAATGGACCCTGACCGAAGGCGGCCTGCGCTACCGAATCGATCTGGGAAGGAAGCAGAACAACGGCCTGTTCCTCGACATGCGCTACGGGCGCGACTGGGTGCGGGCCAATGCCTCTGGCATGCGGGTGCTGAACCTCTTCGCCTACACCTGCGGTTTTTCGGTAGCGGCCATTGCCGGCGGTGCGCACCACGTGGTCAACCTGGATATGTCCCGCGCGGCCTTGAGCCGTGGACGCGACAATCACCGGTTGAATGGCCATGACCTGGGCCAGGTCAGTTTCCTCGGCCACGACTTGTTCAAGTCCTGGGGCAAGGTCATCAACAACGGGCCGTACGACCTTGTCATCATCGATCCACCCACTTTCCAGAAAGGCAGCTTTCTGCTGACCAAGGACTATCAGCGTGTACTGCGCCGCCTGCCGGAACTGTTGACGCCTGCCGGAACCGTCCTGGCTTGCAGCAACGATCCGGCCACCGGCCCGGACTTCCTCATCGACGGTGTCATGCGCGAAGCGCCGGGGCTGTTATTTGCAGAGCGGCTGGCCAATCCCCCGGAGTTTCCAGACGCTGACCCGGCCTGTGGCCTCAAGGCCCTGGTATTCAGGCGACAGGCCTCAGGCAAGGGTATGGACGCTATTGAGGCCGCAACGGCCACCATGGATCGACCAGATCGGTAG	MNPQALQTLQSHLSTALGSVPDETRRLFHGRGRCWPGLEQITVDWLQGVVLVSLFKEPDPTQLDDLFTMLRALAASPAWQHSGAHTLAVQYRYLPDSLTQWLIGEPIDEWTLTEGGLRYRIDLGRKQNNGLFLDMRYGRDWVRANASGMRVLNLFAYTCGFSVAAIAGGAHHVVNLDMSRAALSRGRDNHRLNGHDLGQVSFLGHDLFKSWGKVINNGPYDLVIIDPPTFQKGSFLLTKDYQRVLRRLPELLTPAGTVLACSNDPATGPDFLIDGVMREAPGLLFAERLANPPEFPDADPACGLKALVFRRQASGKGMDAIEAATATMDRPDR				NA	NA	NA	NA	NA
D1-36_02539	777			hypothetical protein	ATGCAGACAAACGAAACCGGACGGGATGCCGCAAACGAACGCCACCATAAGCTGTTTTCGCCTGTATCGGCCTACTTGCGCCGACTTTGCCTGGTCATGACCAGCCTGGGCGTCGTGTGCAGCCCCGCGCTGGCCGAAAAGCCCAAGACCCAGCCTCTTTACAACAGCCTCGCCCACGCCGCGCCGGAACTCAATCCCCAGGCGCTGAAAAGTGCCCTGAGTGCGATGCAGTGCGCAGTTGCCAACGGCGCTGGACAGGCCCGCCACCTGGCGGTGATCGACTATTCGCAACCGTCCACGGCCCGCCGGCTATGGATTTTCGACCTGCGCCAGAAAAAGCTGGTGCTGCGCGACCTGGTGGCCCACGGGCAGAAATCCGGGGAAAACTTCGCCACGCAGTTCTCCAATCGCCTGGGCAGTTATCAGTCCAGCCTCGGGTTGTTCCGTACCCAGGAAAGCTACCAGGGCGCCCATGGCTATTCACTGCGCATGGACGGCCTCGAACCCGGTTTCAACGACCTGGCCCGGGACCGGGCGATCGTGATCCACGCCGCCGATTATGTGAATCCGCTGTGGAGCGCGCGCCAGGGTCGCATCGGCCGCAGCCTCGGCTGCCCCGCCGTACGCCCGCAAGTGGCGCGCCAGGTGATCGACAAGCTCAAGGGTGGGCAATTCATGTTTTCCTGGTACCCCGACCCGGCGTGGCTCAAGCGTTCGGCCTATCTCAATTGCCAGCCGCAACAGGTGGCGAGCATCCTGGCGACCAGCGGCGGCTAG	MQTNETGRDAANERHHKLFSPVSAYLRRLCLVMTSLGVVCSPALAEKPKTQPLYNSLAHAAPELNPQALKSALSAMQCAVANGAGQARHLAVIDYSQPSTARRLWIFDLRQKKLVLRDLVAHGQKSGENFATQFSNRLGSYQSSLGLFRTQESYQGAHGYSLRMDGLEPGFNDLARDRAIVIHAADYVNPLWSARQGRIGRSLGCPAVRPQVARQVIDKLKGGQFMFSWYPDPAWLKRSAYLNCQPQQVASILATSGG				NA	NA	NA	NA	NA
D1-36_02540	1563			hypothetical protein	TTGTTTAAAAAGCCCGCATGTTACCTGAGCCTTTTATTGCTCGTTGCGCCATTGGTCGCTACGGCCGATGACGGCGATCCGGGGCAGGCGCAAACCACGCTGGCGCAGCTGTCGGTCAACTGCCCTGAGTTGGCTGCAAGCGTTGATTTTCCGACAGTCATGAGCTTGCAGTCCCTGTACCAGCAAAACGCAGGCCAGGCGATCTGGATGGACGATGAGCGGTTACAGGCGCTACAAATCCAATTGCAACAACTGGCGGATGATGGAATGGATCCGGCCCGCTACAGCCTACCGGGCCAGGGCGCCTATTCGAATGCGGCGTGTACCGACATCGCCATCAGCCAACGCTACCTGCAAGCCCTGCATGATTTGCGCTTCGGTTATCTGCCACAGAACCGCCTGGAGCCGATCTGGAAAGCCAATCCGCAATTGCCGGATCGTCGATCCATGGTGCTGCACTTCGCCATCGCGGGCCTGCACAATCCGGTAGAGGCTTTCGAACTGGCTCGGCCGAGCCTGATGCTCTATCGCAACCTGCGCGAGCTTTACGCCCGGCAGCGGCAGCAACCCCTGGCGGACTGGCAATCGGTGCCCGGTGGTCCGCTTTTGCAGCCAGACAAGCGCGACGCCCGCGTCCCGGCACTCGCGCGGCGCTTGTTCAACGAAGGCTACCTGAGCGTGCCGCCACTCGATGCCGATGAGCATTACAGCCCGAGCCTCGTGGACGCGATGAAGAATTTCCAACTTGACCATTCGCTGCAAGCAGATGGGGTAGTAGGCCCCTGGACCGTCTCCGAGCTCAACATCAGCCCGGCCATGCGTCGCGAGCAGTTGCGCATCAACCTGGAGCGCATGCGTTGGTTGGCCCAGGACCTGGAGCCGGACAGCGTGCTGGTCAACGTGGCGGCGGCGCAACTGACGGTTTACCAGGGCGGCGCTCCAGTGTGGCAAACCCGCACCCAGGTGGGGCGTGCCGAACGCCAGACGCCGCTGATCAAATCGCGTATCACCCGCCTGACGCTGAACCCCACCTGGACGATCCCGCCGACCATCATGCGCGAGGACAAACTGCCCGAAATCCGTCGCGACCCGGAATTTCTCACTCGGCACAATCTCCGTGTGCTCGATCGGGACGGCTTGCCGGTGGCAGCGGAGAGTATCGACTGGGAGCACCCCGGCGATCTCATGCTGCGCCAGGATGCCGGCTCGAAGAATCCCTTGGGCAAACTGGTCGTGCGCTTTCCCAACCCGTTTTCCGTGTACCTGCACGACACGCCCAGCCAGGCTTTGTTCAGCAAAGGCCCGCGGGCCTTCAGCTCTGGCTGTGTGCGCATCGAGCAGGTCATGCACATGCGGGACTTGCTCGTAACCCCGGCCGAACGCAAGCGGACCGACACGCTGCTGGCAAGCGAGCTGACCCATGAATTCAGGCTGGCCAAGCCCGTGCCGATCCTGCTGGGCTATTGGACAGTGCAAGCGGACAGCCAGGGCCGGGCGGTGTATATCCCGGATATCTACCAACGCGATATCGCCCTGTCTGCCGCTGACCGCCGTGCGCTCTGA	MFKKPACYLSLLLLVAPLVATADDGDPGQAQTTLAQLSVNCPELAASVDFPTVMSLQSLYQQNAGQAIWMDDERLQALQIQLQQLADDGMDPARYSLPGQGAYSNAACTDIAISQRYLQALHDLRFGYLPQNRLEPIWKANPQLPDRRSMVLHFAIAGLHNPVEAFELARPSLMLYRNLRELYARQRQQPLADWQSVPGGPLLQPDKRDARVPALARRLFNEGYLSVPPLDADEHYSPSLVDAMKNFQLDHSLQADGVVGPWTVSELNISPAMRREQLRINLERMRWLAQDLEPDSVLVNVAAAQLTVYQGGAPVWQTRTQVGRAERQTPLIKSRITRLTLNPTWTIPPTIMREDKLPEIRRDPEFLTRHNLRVLDRDGLPVAAESIDWEHPGDLMLRQDAGSKNPLGKLVVRFPNPFSVYLHDTPSQALFSKGPRAFSSGCVRIEQVMHMRDLLVTPAERKRTDTLLASELTHEFRLAKPVPILLGYWTVQADSQGRAVYIPDIYQRDIALSAADRRAL	PGPT0023755_1264	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-L|D_TRANSPEPTIDASE_ACTIVITY,PGPT0023755-ycbB-K21470	NA	NA
D1-36_02541	633	kefF_2		Glutathione-regulated potassium-efflux system ancillary protein KefF	ATGCATGCCGTTATCGTTGTTGCACACCATAACCCGGGTTCTTTGACCCATGCCCTCGCCCAAGCCATTGGCAACGGGATCAATCAAGCCAATCCGACGGATACGTTCGAGATAGCCGATTTGGCGGTCGAAGGATTCGACCCACGCTTTGATTACGCCGACGGTGCGGTTCATCGCCGCGTTGCAGCACCGCCCGCCGATGTTCTGGCCGAGCAGGCCCGGATCGACCGTGCCGACGCATTGGTCGTGGTGTACCCGATCTACTGGTGGTCGATGCCGGCATTGCTCAAGGGATGGATCGACCGGGTATTTTCCAACGGCTGGGCGTTCGATTACATCCCCGGTCAACCATTTGTCCAGAAACTCCAGCGGCTGCGGGTTCATTTGGTGGGCGTCGGCGGCGCAGATGCCGGCAGTTTCGAACGCCACGGCTACGACAAGGCGATGGTCACGCAAATCGAACACGGCATCTTCGACTACTGCGGCGCCCACGTCGTGAGCTCCGACAGATTGCTCGAATCGGAAAGCCTCGATCCGAAGCTACATCTGCAAACGGCAGAGGCCCTTGGCCAACGGCTCTTTTCGACAACTGACGAGACAGCCCATATAACGGGCGAAGCGGCCTGCGCCTGA	MHAVIVVAHHNPGSLTHALAQAIGNGINQANPTDTFEIADLAVEGFDPRFDYADGAVHRRVAAPPADVLAEQARIDRADALVVVYPIYWWSMPALLKGWIDRVFSNGWAFDYIPGQPFVQKLQRLRVHLVGVGGADAGSFERHGYDKAMVTQIEHGIFDYCGAHVVSSDRLLESESLDPKLHLQTAEALGQRLFSTTDETAHITGEAACA	PGPT0009455_1041	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_K_METABOLISM	PLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009455-kefF|nqo|ywrO-K00355	NA	NA
D1-36_02542	630			hypothetical protein	ATGTCAACCCACGAAGAAAATGGGCGCCCCGGCGCTGCACCCCGGCGGCGGCTATCGCGCGCCGACAGGCAGCGGCAGCTGTTGGAAGTTGCCTGGCGCATGGTGCGCGAAGAAGGCAGCGAGGCGCTGACCCTGGGCCGCCTGGCGGAACAGGCTGGCGTGACCAAACCCATCGTCTACAACCACTTCATCACGCGATCAGGGCTACTGGCCGCGCTTTATCAGGATTTCGATGTCCGTCAGACCGCGTTGATAGGTGCCGCGATCGACGCCAGCGAGCCGGATCTGGAAAGCCGCGCGCAGGTGATTGCTTGCTCCTTTGTGGATTGCGTGCTGCTTCAGGGAAGGGACATACCGGGCGTCAGCGCGGCGCTGAGCGGCACGCCTGAACTTGAGTCCATAAAAAGGGAATGTGAACGAAGCTTCCTGGAAAAATGCCGATCGGTCCTCGAACCCTTCGCCGGAACCGGACGCCTTTCCCAAGCGAGCCTGCGGGCGATGCTGGGGGCGGCGGAGGCGTTGTCCGATGCGGCGGCCAATGCAGAGGTCAGCGCGGAGGAGGCCAAGCGGGAGTTGTTCCTGACCATCGTTGCGATGGTCGAGCGGGCTGCCGGAAATGCCTCAAACTGA	MSTHEENGRPGAAPRRRLSRADRQRQLLEVAWRMVREEGSEALTLGRLAEQAGVTKPIVYNHFITRSGLLAALYQDFDVRQTALIGAAIDASEPDLESRAQVIACSFVDCVLLQGRDIPGVSAALSGTPELESIKRECERSFLEKCRSVLEPFAGTGRLSQASLRAMLGAAEALSDAAANAEVSAEEAKRELFLTIVAMVERAAGNASN				NA	NA	NA	NA	NA
D1-36_02543	1527	malL	COG0366	Oligo-1,6-glucosidase	ATGCCCAACTCCTTCCATTCGCCCTGGTGGAAGAACGCTGTGATCTACCAGGTTTATCCTCGCTCTTTTGCCGATGCCAACGGCGATGGCATTGGCGATCTTCCCGGTTTGACGGCACGTCTGGACCACCTGCAACGTCTGGGCGTCGATGCATTGTGGCTGTCGCCGGTGTACCGCTCGCCGATGTGTGACGCAGGCTACGACATCTGCGACTACACCGATGTCGATCCGCTCTTCGGCAACCTGGCCGACCTCGACGCATTGATTGCCCAAGCCCACGAACGAGGCTTGAAGGTCCTACTCGACTTCGTGCCCAACCATACGTCCGACCAGCATCCCTGGTTCCTCGAATCACGTTCCAGCCGCGACAACCCCAAGCGCGACTGGTACATCTGGCGCGACCAGCCCAACAACTGGCGGGCCTCGATCGATGGCGGCAGCGCATGGACCTGGGACGAGACCAGCCAGCAGTACTACTTGCACTTCTTTTTGCCGCAACAACCGGATCTCAATTGGCACAATCCAGAAGTCGTGGCCGCCATGCACCAAGTCCTGCACTTCTGGCTCGAGCGCGGCGTGGACGGGTTTCGCGTCGACGTGGTGCATTGCGTCGGCAAGGACCCGAGTTTCGCCGACGACCCGCGCTGCATGGCCGGTGAAACGATGGTCAAGATCAACGACCAGCCCTATAGCCATGAAGTGTTGCGAGGGTTGCGACGCCTCGTTGACAGCTACCCCGGCGAGCGGGTGCTGATCGGTGAGGTGAACATTCGCTCCACGGCACAGGTGGCGGCCTACTACGGCGCCAGTGACGAATTGCACATGTCATTCAATTTTCCACCCCTGGACGCCCCCTGGGACCCGGTGGTGTTTCGCATGTGCATCCGCGAGGTGGAAAACGACCTCGGCCCCTTGCAGGCCTGGCCCACGTGGGTGCTGTCCAACCACGACAACAGCCGTCACCGCAGTCGCTATGGTGGCTCGTTGCGCCGGGCGAGGGCCGCGGCAGTGATGCTGCTGACGCTGCGGGGCACACCCTTCATCTACCAGGGCGAGGAATTGGGGCTGGAAGACACCCAAGTAACCGCCCAGACCCGCGTCGATCCTGGCGGGCGGGACGGCAGCCGGGCACCGTTGCCGTGGACGTCCCAGGCGCCGCACGGTTGGTCGGGGCAGGCGCCGTGGTTGCCATTTGCAGCAGACGCCGGCGCGTTGTCGGTGGAGTCGCAGGAACGTGCCGCCGATTCGGTGTTGGCCCTTTATCGCCGTTTGCTCGCCTGCCGTCGCAATAGCCTGGCGCTGCGCCTGGGCGGCTGGGAAGAACTGCCGTCCCATCCACAAGTGCTGGCCTATCGTCGCCATTGTGAAGGCGACGAGCGCCTGGTCTGCATCAACTTTGCCGACAACGAACACACCTTTCCTTTGGCCGATCCCTGGCGGGTGGAAGTCGCCAGTGATGGGGCGGACGAAGGCCAGCCGTTCAGCGGTCTTCTGGCTGCCGAGCAGGCCGTGATCCTGTGTCGATAA	MPNSFHSPWWKNAVIYQVYPRSFADANGDGIGDLPGLTARLDHLQRLGVDALWLSPVYRSPMCDAGYDICDYTDVDPLFGNLADLDALIAQAHERGLKVLLDFVPNHTSDQHPWFLESRSSRDNPKRDWYIWRDQPNNWRASIDGGSAWTWDETSQQYYLHFFLPQQPDLNWHNPEVVAAMHQVLHFWLERGVDGFRVDVVHCVGKDPSFADDPRCMAGETMVKINDQPYSHEVLRGLRRLVDSYPGERVLIGEVNIRSTAQVAAYYGASDELHMSFNFPPLDAPWDPVVFRMCIREVENDLGPLQAWPTWVLSNHDNSRHRSRYGGSLRRARAAAVMLLTLRGTPFIYQGEELGLEDTQVTAQTRVDPGGRDGSRAPLPWTSQAPHGWSGQAPWLPFAADAGALSVESQERAADSVLALYRRLLACRRNSLALRLGGWEELPSHPQVLAYRRHCEGDERLVCINFADNEHTFPLADPWRVEVASDGADEGQPFSGLLAAEQAVILCR	PGPT0018560_5604	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187	NA	NA
D1-36_02544	1608	treS	COG0366	Trehalose synthase/amylase TreS	ATGAAAGCCAATTGGCACCGAAACACTTTGATCTATCAGATCGATCCATCCTTGTTCTACGACAGCAACGGCGATGGCCGGGGCGACCTTAAGGGCATCATTCGCCAGCTCGACTACCTTCAGGCGTTGGGCGTCGGTGCGCTCTGGCTGATGCCGCTGTATCGGTCACCGTTCAAGGACGCCGGTTATGACGTCAGCGATTTCATGGCACTGGACCCGCGCTTTGGCAGCGAAGAAGACTTGCGCCAGTTGATCGTCCAGGCCGGTGAGCGCGGCATTCGAGTGATCCTTGAATTGGTGGTGCAGCACACCAGCGATCAGCACCCCTGGTTCCTTCGCGCGCGGCGGGACAAGGACAGCGTCTATCGAGATTATTATCTGTGGTCCGACACGCCGGTGGACGATGGCAACCAGCCAATCTTCCCATCGGTGGAGGACAGTATCTGGCGCTGGGACGAACAGGCCGGACAGTACTATCGACACCTGTTCTACCGCCATGAGCCGGACCTCAACCTGGCGAACCCTCGCGTGGTCGAGGAGATCGAGCGCATCATGGTCCATTGGCTCGAGCTGGGCATCGCCGGCTTTCGCCTCGATGCCGCTTCACACCTGGTGGAACAGGCTGGCGGCGGCAATGAAGAGCAGGGCGTCTGGGTGCTCGACCGATTCTACAAATGCATGACCCGCATCAACCCCGAAGGCGTGCTGATGGGCGAAGTGGATGTCGAGCCGGAGCGCTTCAGCCACTATTTCGGTACCGGGGAACGCTTGGGCCTGGTCTTGGATTTCTGGGTCAATAATCATTTGTTCCTGGCACTGGCCCGTGGCGAGGCCGAGCCTTTGCAGCGGGCCATCATCCGGCGTCCGGCGCCACCGGATGGTGCGAATTACGCGGTCTGGCTGCGCAACCATGACGAACTCGATCTGGAGCGCTTGAGTGAGCAGGAACGCGAGGAAGTGATGCAGGCGTTCGCCCCGGAACCGGACATGCGCCTGTACGGCCGAGGCATCCGCCGGCGCCTGGCGCCGATGCTCGGCGGCGATGTCCGGCGTCAGGCCTTGGCCCAGGCATTGTTGTTGTCACTGCCCGGGACGCCGATCGTGCGCTACGGCGAAGAAATCGGCATGGGCGAGGACCTGTCCCGTCCCGAGCGCCTTTCGGTGCGCACGCCCATGCAATGGAGCGACGAGGCCAATGCCGGGTTCTCATCGGCCCAGCGCCTGGCCGCGCCGCTGATCGACGAAGGGCCGTTCGCCTATACGCGACTGAACGTGGAAGCGCAGCTGGATGCCCCCGATTCGCTGCTGAGTCGCGCCCGTCGATTGCTGTTGGCGCGCAGGCGGTTGGGTGAAGTGGGCGACGGCAAGGCGCGCCTGTTGACGGTCGATCATCCAGCGGTGTTCGCCATCGCGCATGAATGCAGAGCAACCTCGGTGATGCTGGCGAATCTCGGCACCGACGCGGTCACCGTGCAGTTGCGCGAGCTGGACCTGGAGGGTTTCGAGGAAGTGCTCTCGGACAGCCCGTACCCGGCCCCGGCGCAATCGAAGCTGGCGCTGAACGGATACGGGTATCGCTGGTTCCGGCGCGGTGGCTCAGAACAGTAG	MKANWHRNTLIYQIDPSLFYDSNGDGRGDLKGIIRQLDYLQALGVGALWLMPLYRSPFKDAGYDVSDFMALDPRFGSEEDLRQLIVQAGERGIRVILELVVQHTSDQHPWFLRARRDKDSVYRDYYLWSDTPVDDGNQPIFPSVEDSIWRWDEQAGQYYRHLFYRHEPDLNLANPRVVEEIERIMVHWLELGIAGFRLDAASHLVEQAGGGNEEQGVWVLDRFYKCMTRINPEGVLMGEVDVEPERFSHYFGTGERLGLVLDFWVNNHLFLALARGEAEPLQRAIIRRPAPPDGANYAVWLRNHDELDLERLSEQEREEVMQAFAPEPDMRLYGRGIRRRLAPMLGGDVRRQALAQALLLSLPGTPIVRYGEEIGMGEDLSRPERLSVRTPMQWSDEANAGFSSAQRLAAPLIDEGPFAYTRLNVEAQLDAPDSLLSRARRLLLARRRLGEVGDGKARLLTVDHPAVFAIAHECRATSVMLANLGTDAVTVQLRELDLEGFEEVLSDSPYPAPAQSKLALNGYGYRWFRRGGSEQ	PGPT0014120_1363	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-AMYLASE,PGPT0014120-treS-K05343	NA	NA
D1-36_02545	984			hypothetical protein	ATGGATGAGCGAAACCCACCTGTCGTTGTCATCAGTGGATCCACCGCCGGCGTCGGTCGTGCGACCGCCCACCGGTTTGCCGCGGCGGGCTACCGCGTCGGGTTGCTGGCCCGGGGCGAACAAGCCTTGGCGGCTACCGCAGAAGAACTGAACCAATTGGGTACGACGTGCCTGGCGATCAGCGTCGATGTCGCCGACGCCGATGCAGTCTTCGAAGCGGCCCAGCGGATGGAGCGCGAACTGGGACCTGTCGATGTGTGGATCAACTGCGCAATGGTCACGGTGTTTTCGCCGATCCGTCAGTTGAGCGCCGAAGAAATCCACCGAGTCACGAAGGTGACTTACCTGGGCACCGTCCACGGCACCCTCGCAGCGCTGGACCTGATGGGACGACGTAATCGCGGGGTGATCATCCAGGTCGGCTCGGCACTGTCCTACCGCGCGATTCCCCTGCAAGCCGCTTATTGCGGAGCCAAGTTCGCGGTGCGTGGCTTTACCGATTCATTGCGCTGCGAACTGCTTCATGAGCACAGCAAAATCAAGGTCTGCATGGTGCAACTGCCGGCGGTCAACACGCCGCAGTTCGATTGGGCCCGGAACAAGCTGGGCAAGCGCCCGCAACCGGTGCCACCGATTCATGATCCGGACGTGGCCGCCCGGGCGATATTGAGCGTGGTCAAGCGCACGCCCAGGGAATTGTGGCTGGGTGCGGCGTCGCTCAAAGCCATTGTCGGCACGTGTCTGATGCCTGGGCTGCTCGATCGCCTGTTGGCCCGCAACGCCTGGTCGGGGCAAATGACCAACGAGGATGACGACAATCAGCGCCCGGACAATCTGTTCGAGCCGCAGGAGTCCATGCATCGTACCCGCGGGCGCTTCAACGGCCGCTCCCGGGACTCTGCGCTGGCCCTGAGCTCGACACAGGTGTCGGCCCTGCTGTTGGCCTGTGGCGGGTTGTTGGCGCTCGTGCTGCTACTGTTCTGA	MDERNPPVVVISGSTAGVGRATAHRFAAAGYRVGLLARGEQALAATAEELNQLGTTCLAISVDVADADAVFEAAQRMERELGPVDVWINCAMVTVFSPIRQLSAEEIHRVTKVTYLGTVHGTLAALDLMGRRNRGVIIQVGSALSYRAIPLQAAYCGAKFAVRGFTDSLRCELLHEHSKIKVCMVQLPAVNTPQFDWARNKLGKRPQPVPPIHDPDVAARAILSVVKRTPRELWLGAASLKAIVGTCLMPGLLDRLLARNAWSGQMTNEDDDNQRPDNLFEPQESMHRTRGRFNGRSRDSALALSSTQVSALLLACGGLLALVLLLF				NA	NA	NA	NA	NA
D1-36_02546	2562	nasD_1	COG1251	Nitrite reductase [NAD(P)H]	ATGAATTCCAACGTTGCTTCCCTGAACAAACTGCAAACGCTGATCGTGATCGGCAATGGCATGGTCGGCCATCACTGCGTCGAGCAACTGATCGAGCGCGGTGCCCTCAACCATTACCGCGTGCATGTCTTCAGCGAAGAGCCGATGCGGGCCTACGACCGCGTGCATCTGTCCGAATATTTTTCTGGGCGAGACGCCGAATCCCTGGCCCTTGGCGAAGCGACGTTGTACCAGACGCCGGGTGTGACGTTGCACCTGGGCGTGCCGGTGTTGGAAATCGACCGCCAGGCGCGTGAGGTGGTCACCGCCACTGAACGCCTCGGCTATGACAAGCTGGTGCTCGCCACCGGTTCCTATCCGTTCGTGCCGCCGATCCAGGGCGCCGAGGGTGATTCTTGCCTGGTCTACCGCACCCTCGAAGACCTCGATGCGATCCGCGCCGCCGCCAGCAACGCCCGTCGTGGCGTGGTGGTCGGTGGCGGATTGTTGGGCCTGGAAGCGGCCAATGCCTTGAAGAGCCTCGGCCTGGAAGCTCACGTCGTGGAATTCGCCCCCCGGTTGATGCCCGTGCAATTGGACGAGCAAGGCGGCCTGGCACTCAAGGCGCGCATCGAGAAACTGGGCGTTGGCGTGCATTTGTCCAAGGGCACCCAATCGATCAGCGCGGGCGAGCAGTATCGTTATCGGATGAACTTCGGCAACGACGATTTCCTCGAAACCGACTTGATCGTGTTTTCCGCCGGTATTCGCGCCCAGGATGCGTTGGCCCGTCAATGCCAATTGCCGATCGGCCCCCGCGGTGGCGTGGTAATCGACGACCATTGCCAGAGCAGCGACCCGGACATTTACGCCATCGGCGAATGTGCGGCGTGGAACGGCAGCATTTTTGGACTGGTCGCGCCGGGCTACCAGATGGCCCGCAACGTCGCGTCGCGCCTGTGCGGCGAAGCCGGCGAGGCGTTTACCGGCGCGGACATGTCCACCAAGCTCAAATTGCTGGGCGTGGACGTCGGCTCCATCGGCGACGCACACGGCAACACGCCGGGTTCGCGCAGCTTCCAGTTCATCGACGAAACCAGCGCCAGCTACCGTCGCCTGGTAATCGACGCTGACGGCAAGCGCGTGATCGGCGCGGTTTTGGTAGGCGACAACAGCTACTACGACACCTTGCTGCAGTACATGCAGAACGGCATCGCGTTGCCCAAGGACGCCGCCAGCCTGATCCTGCCATCGTCCGAAGGCGCCCCGACACTGGGCCCGGCGGCTTTACCCGAATCCGCCACCCTCTGCTCGTGCCACAACGTCACCAAGGGGGCGGTCTGCTCGGCCATCGACGGCGGCTGCACCGATCTCGGCCAGCTCAAGTGCGACACCAAGGCCGGCACCGGTTGTGGCGGCTGCGCGGCGCTGGTCAAGCAAGTCTTCGAGCACGAACTGATCGCCCGCGGCGTCAGCGTCGACAAGAGCCTGTGCGAGCACTTCGCCTATACCCGCCAGGAACTGTATGCCCTGGTGCGCGTGGAAGGCATCATCAGTTTCGAAGAATTGCTCGCCAAACACGGTCGTGGCCACACCGGTTGCGACCTGTGCAAACCGGCCGTGGGCTCGATCCTGGCGTCGTGCTGGAACCAGCCGATCATGGACCCGCACCTGGTGCCGTTGCAGGACACCAACGACACCTTCATGGCGAACATGCAGAAGAACGGCACCTATTCGGTGGTGCCGCGCATCGCCGGTGGAGAAATCACCGCCGACAAACTGATCGCCATCGGCGTGGTTGCCAAGAAATACGACCTTTACACCAAGATCACTGGCGGACAGCGCATCGACCTGTTCGGCGCGCAGCTGCACCAGTTGCCGGACATCTGGGCCGAATTGATCGAAGCCGGGTTCGAAACCGGCCACGCCTACGGCAAATCCACGCGCACGGTAAAATCCTGCGTGGGCAGCACCTGGTGCCGCTACGGCGTGCAGGACAGCGTGCAAATGGCCCTGACCATCGAGGATCGCTACAAAGGCCTGCGCTCGCCCCACAAGCTCAAGTTCGCGGTGTCTGGCTGCACCCGTGAGTGCGCCGAAGCCCAGAGCAAGGACGTCGGCGTGATCGCCACTGAAAAGGGCTGGAACCTCTATGTGGCCGGAAATGGCGGTATGCGTCCGCGTCACGCCGAACTGTTCGCCACCGACCTGGACGATGCGACGCTGATCCGTTACATCGACCGCTTCCTGATGTTCTACATCCGCACCGCCGACAAGCTGCAACGCACCTCGGTGTGGCGCGAGAGCCTGGAAGGTGGCCTGGACTATCTCAAGGACGTGATCATTCACGACAGCCTGGGCCTGGGCGCCGAGCTCGAAGCGCAGATGCAACTGGTGGTCGATCGCTACGAATGCGAATGGGCCAACGCCCTGAAGGACCCGGAAAAGCTCAAGCGCTTCCGCACCTTCGTCAACGACAAGCGCGGCGATCCAGACGTTCATTTCGTCCGCGAACGCGGCCAGCGCCGGCCGGTGCATGCCGGCGAACTTCACTTGATTCCCGTCACCGAGGAGGTGCTCTGA	MNSNVASLNKLQTLIVIGNGMVGHHCVEQLIERGALNHYRVHVFSEEPMRAYDRVHLSEYFSGRDAESLALGEATLYQTPGVTLHLGVPVLEIDRQAREVVTATERLGYDKLVLATGSYPFVPPIQGAEGDSCLVYRTLEDLDAIRAAASNARRGVVVGGGLLGLEAANALKSLGLEAHVVEFAPRLMPVQLDEQGGLALKARIEKLGVGVHLSKGTQSISAGEQYRYRMNFGNDDFLETDLIVFSAGIRAQDALARQCQLPIGPRGGVVIDDHCQSSDPDIYAIGECAAWNGSIFGLVAPGYQMARNVASRLCGEAGEAFTGADMSTKLKLLGVDVGSIGDAHGNTPGSRSFQFIDETSASYRRLVIDADGKRVIGAVLVGDNSYYDTLLQYMQNGIALPKDAASLILPSSEGAPTLGPAALPESATLCSCHNVTKGAVCSAIDGGCTDLGQLKCDTKAGTGCGGCAALVKQVFEHELIARGVSVDKSLCEHFAYTRQELYALVRVEGIISFEELLAKHGRGHTGCDLCKPAVGSILASCWNQPIMDPHLVPLQDTNDTFMANMQKNGTYSVVPRIAGGEITADKLIAIGVVAKKYDLYTKITGGQRIDLFGAQLHQLPDIWAELIEAGFETGHAYGKSTRTVKSCVGSTWCRYGVQDSVQMALTIEDRYKGLRSPHKLKFAVSGCTRECAEAQSKDVGVIATEKGWNLYVAGNGGMRPRHAELFATDLDDATLIRYIDRFLMFYIRTADKLQRTSVWRESLEGGLDYLKDVIIHDSLGLGAELEAQMQLVVDRYECEWANALKDPEKLKRFRTFVNDKRGDPDVHFVRERGQRRPVHAGELHLIPVTEEVL	PGPT0000450_640	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-DENITRIFICATION|NITRATE_USAGE	DENITRIFICATION-NITRATE_REDUCTION,PGPT0000450-nirB-K00362	NA	NA
D1-36_02547	372	nirD	COG2146	Nitrite reductase (NADH) small subunit	ATGAGCCAGCCAAACGTCGTTCGTATCGCCCAAGAATCCGTGCAATGGCGTGCCCTGTGCAGCCGCGATGACCTGGTGCCCAACTCCGGCGTGGTCGCCTGGCACGACGGCAGCCAAGTGGCGCTGCTCTATCTCCCAGAGCATGCGGACAAGCCACTGTACGCCGTCGATAATCGCGATCCGAAGTCCGGCGCCAACGTCATCGGCCGCGGCCTGTTGGGCAATATCAAGGGCGAACTGGTCATTGCCTCGCCGATGTACAAACAGCATTTCCGCCTGGAAGACGGCCTTTGCCTGGAGTACCCGGAGCAGCGCTTGCGCGTCTGGCCGGTGCGCTTGAATGGCGATGTGGTGGAAATAGGCGAGGGCTGA	MSQPNVVRIAQESVQWRALCSRDDLVPNSGVVAWHDGSQVALLYLPEHADKPLYAVDNRDPKSGANVIGRGLLGNIKGELVIASPMYKQHFRLEDGLCLEYPEQRLRVWPVRLNGDVVEIGEG	PGPT0000455_253	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-DENITRIFICATION|NITRATE_USAGE	DENITRIFICATION-NITRATE_REDUCTION,PGPT0000455-nirD-K00363	NA	NA
D1-36_02548	441	IMPDH_2		Inosine-5'-monophosphate dehydrogenase	ATGAAGACCGCCGCGCAACTGGTAAGGCTCAAGAGCGTACAGAACCAGCGGGTCCACAGCATCGCACCGGATCAGACCGTGCTCGAAGCGTTGCAGATCATGGCCGAGAAAAATGTCGGGGCGCTGCCGGTGATCGAAGGCGGGCAGGTGGTGGGGGTGTTCAGCGAGCGGGACTATGCGCGCAAGATGGTCCTCAAGGGCCGTTCATCCGTGGGCACTGCGGTGCGCACCATCATGAGCACGCCGGTGATCACCGCCGACAGCCAGCAGAGCATCGACCGCTGCATGGCGGTCATGACCGACAGCCACCTGCGGCATTTGCCGGTGCTGGAGAACGGCGAGCTGATCGGGCTGTTGTCCATTGGCGACCTGGTCAAGGAAGCGATCGTCGAACAAGCGGACCTGATCCGGCAGTTGGAGCATTACATTCGCGGGCATTGA	MKTAAQLVRLKSVQNQRVHSIAPDQTVLEALQIMAEKNVGALPVIEGGQVVGVFSERDYARKMVLKGRSSVGTAVRTIMSTPVITADSQQSIDRCMAVMTDSHLRHLPVLENGELIGLLSIGDLVKEAIVEQADLIRQLEHYIRGH				NA	NA	NA	NA	NA
D1-36_02549	483	cheB_3		Protein-glutamate methylesterase/protein-glutamine glutaminase	ATGAATCGCGACCTGCGCATCCTGATCATCGACGATCAGCGCCCCAACCTGGATCTGATGGAGCAATTGCTCGCCCGCGAAGGGCTGCACAATGTACTGAGCAGCACCGAACCGCTGCGCACCCTTGACCTGTTCAACAGTTTCGAGCCGGACCTGGTCATCCTGGACCTGCACATGCCTGCGTTCGATGGCTTCGCGGTGCTGGAGCAGCTCAACCGGCGGATCCCGGCCAATGATTACCTGCCGATCCTGGTCCTGACGGCCGACGCGACCCGCGACACCCGCCTGCGTGCCCTGGCGCTGGGCGCGCGCGACTTCATCAGCAAACCCCTCGATGCGCTGGAAACCATGTTGCGCGTGTGGAACCTGTTGGAAACCCGCGCCCTCTATAAATCCTTGCGCACCTTGATTCCCGCCCAACAAATCGAATTGTTGCGCCAGCACCGGCCAAGCGCTGATGCGGCCCAGCACGGAAGCGATTGA	MNRDLRILIIDDQRPNLDLMEQLLAREGLHNVLSSTEPLRTLDLFNSFEPDLVILDLHMPAFDGFAVLEQLNRRIPANDYLPILVLTADATRDTRLRALALGARDFISKPLDALETMLRVWNLLETRALYKSLRTLIPAQQIELLRQHRPSADAAQHGSD	PGPT0015900_1812	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-CELL_FATE_CONTROL	PUTATIVE-CELL_FATE_CONTROL-1,PGPT0015900-pleD-K02488
D1-36_02550	2313	rcsC_12		Sensor histidine kinase RcsC	ATGAAGATCCTCGCGGCCCGTCGCTGGGCCGACCTGCCCTTGCGGGGCAAGGCATTGGTGGTGATTTCCCTGCCGCTGGTTGTCCTGTTGCTGTCACTGGTGCTGATTTACATCACCGAGCGCCAGACCGCACGCGCCGAAGAGGATGTGCGCCGGGTGCTGCTGGTACAGGGCGACATCCAGGCGGTGCACACCCTACTGGCCGAAGCAGCCGCCAGCGTGCGCGGTTACCTGCTGACCCGCCGCGAAGATTTCCTGCCCGGCTACGAACAGGCCACCCCAAAGATCCAGGCCGCACTGCAACGCCTGGATCATAATATCCGCGACGCCAGAATGCGCGAGCACCTAAAGACCATCACACCGCTGATCACTGAAAAGCTCAACGGACTGGTCTCCCTGCGCACCGGCAAAGGCGACGACACCGCGACCATCACCGCCATCCTGATCGAAAACAAACAAGTGCTGGACGTGCTGCGCGAGCAGATCAGCGCCATGCGTATCCGTGAGGACGCCCTGCTCACCGACCGCAGCGCCGCCGCTTCCGCTACGCGCATGCGCCTGTTGTTCGCGACTCTGCTGGCGGCGCTGTGCGGACTGTTCGGCGCCATCGTTGCAGTGCTGTTCCTGTCCAAGGGCATCGTCGCCCGGGTCCAGAAGGTGCAAGGCAACGCCCAGCGTCTGGCGCTGGGCCAACCGCTGTTGCCACAACCACCGGAGCGCGATGAGATCGGCCAGTTGGGCACGCGCCTGGTGGAGGCTGGGCAATTATTGGCCGAGCGGGAACGAGCCTTGCGCGACAACGAAGAACGCCTGCGGCTGATCATCGATGGGGTGAAGGACTACGGGATCTTCGCCCTGGACGCCCAAGGCCACGTGATCACTTGGAACGTCGGCGCCGAACGGATCAAGGGCTATACCGAACAGGAAGTGCTCGGCCGGCATTTCTCGTTGTTCTACCTGGCCGAAGAATGCCCGGCGCATCCGGACATGGCCTTGCTCGCGGCCACCCGCGAAGGTCATTACATGGAAGAAGGCTGGCGATGCCGCAAGGACGGCAGTCGTTTCTGGGCCAGCGTGGTGATTACCGCCCAATATGACAGCACCGGCGCCCTGCGAGGCTTCTCCAAGATCACCCGGGACATCACCGACCGACGTGCCGCCGAGATAGCCCTGCGCACGGCCCGTGAAGAAGCCGAAAGCGCCAGTCGCGCCAAGAGTGAGTTCTTGTCGCGCATGAGTCATGAACTGCGCACGCCGTTGAATTCCATCCTGGGCTTCGCGCAACTGCTGGACATGGATTCCATTGCCGGCCAGCGCCCGCAAGTCAGCCACATCCTGCGAGCCGGTCAGCACTTGTTGGCGTTGATCAACGAGGTACTCGACATCGCCCGAATCGAAGCCGGCCGCCTGCCCCTCAACATCGAACCGATCGGATTGCCGGCGGTGCTGCACGAAGCGTTGACGCTGGTGTCGCCGATGGCGGCCGACGCCGGGATCCATCTGGCCGAGCTTGCATCGCTGCCCGAGGGCAGCGGCGTGCTTGCCGATCGCCAGCGCCTGGTGCAGGTATTGCTGAACCTGCTGTCCAATGCCATCAAATACAACCAGCCGGGTGGCGAAGTACGCATTGAGGTCACGGCTGAAGCTCCCCATGTCAGTATCGCCATCAGCGACACCGGGCGTGGCATCGCCCCCGAGCTGTTGGATCAGCTGTTCAAGCCATTCGAGCGCCTCGGCGCGGATCCCCAGGTCGAAGGCACTGGGCTCGGCCTTTCGCTGAGCAAGAGCCTGCTGGAGATGATGCAAGGCAGCCTGCAAGTGCGCAGCGATCCGGGACAAGGCTGTTGCTTCACGTTGCGACTGCCCGGCGCCCGGGTATCCGGCGCTCTGCTGCCGCCCATGGTTGCGCTGGAAGTGGCACGCCCACGCACCGAATTCGACGGCAAGGTGCTGTGCATCGAGGACAACCTGTCTAGCCTCGCCCTGATCGAGACCCTGATGCAACGCCGTCCAGGCATTCAGTTGCTGTCCAGCATGCAAGGCCAGATGGGCGTCGACCTGGCTCGCCAGCACGCGCCGCAATTGATCCTGCTGGACGTGACATTGCCCGATCTGGATGGCCTGGAAGTTCTTCGCCGCCTGCGCCAATCCCCGACCACGGCCTACACGCCGGTGTTGATGATCACCGCCGATGCCAGCGACCTGTCCCACCGGGCCCTGCTTGACGCCGGCGCCACGGCGATCCTCACCAAACCCATTCATATCCAGGCCTTCCTTGGCCACCTTGAGCGTTATCTACCGGAGTCCGCATGA	MKILAARRWADLPLRGKALVVISLPLVVLLLSLVLIYITERQTARAEEDVRRVLLVQGDIQAVHTLLAEAAASVRGYLLTRREDFLPGYEQATPKIQAALQRLDHNIRDARMREHLKTITPLITEKLNGLVSLRTGKGDDTATITAILIENKQVLDVLREQISAMRIREDALLTDRSAAASATRMRLLFATLLAALCGLFGAIVAVLFLSKGIVARVQKVQGNAQRLALGQPLLPQPPERDEIGQLGTRLVEAGQLLAERERALRDNEERLRLIIDGVKDYGIFALDAQGHVITWNVGAERIKGYTEQEVLGRHFSLFYLAEECPAHPDMALLAATREGHYMEEGWRCRKDGSRFWASVVITAQYDSTGALRGFSKITRDITDRRAAEIALRTAREEAESASRAKSEFLSRMSHELRTPLNSILGFAQLLDMDSIAGQRPQVSHILRAGQHLLALINEVLDIARIEAGRLPLNIEPIGLPAVLHEALTLVSPMAADAGIHLAELASLPEGSGVLADRQRLVQVLLNLLSNAIKYNQPGGEVRIEVTAEAPHVSIAISDTGRGIAPELLDQLFKPFERLGADPQVEGTGLGLSLSKSLLEMMQGSLQVRSDPGQGCCFTLRLPGARVSGALLPPMVALEVARPRTEFDGKVLCIEDNLSSLALIETLMQRRPGIQLLSSMQGQMGVDLARQHAPQLILLDVTLPDLDGLEVLRRLRQSPTTAYTPVLMITADASDLSHRALLDAGATAILTKPIHIQAFLGHLERYLPESA				NA	NA	NA	NA	NA
D1-36_02551	669	liaR	COG2197	Transcriptional regulatory protein LiaR	ATGAACCGTCCTCTGCGCGTGCTGTTGGCCGATGATCACGAAGTGACCCGTACCGGTTTCATTTCAATGCTTTGCGGTATCGAGGGCTTCGAGGTGGTCGGCCAGGCCAGAGACGGCCAGGAGGCACTCGATTTGTGCCAGCAGCTGCAACCGGACATCGCGATCCTGGATATTCGCATGCCGGTGCTCAATGGCCTCGGCGCGGCGCGCATCCTGAAACAACGTCAGCCGCAGCTCAAGGTCATGATTTTCACCATGGACGACAGCCCCGACCACCTGGAAGCGGCCATCGGCGCGGGCGCCGTCGGTTATCTGCTCAAGGATGCCAGTCGCGCCGAGTTGATCGATGCGCTGAGAAGGGTCGCCCAGGGAGAGGAAGCCTTGAACAGCTCGGTCAGCGCCCGCCTCTTGCGGCGCATGGCCGAGCGCGGCGCCGGAGGTACGGCTCAGGTCCAGGCCCTGACCGCCCGTGAGCGGCAGGTGCTCGGCCTGGTCGCCAGTGGTTTCAGCAATCGTGAAATCGGCGAAAAACTCGGCATCGCCCCCGGCACCGCAAAGGCCCATGTCGAGCGGGTCATCGGCAAGCTTGGCGCCGCCGACCGCACCCAGGCCGCGGTGCGCGGTGTCGCCCTGGGGTTGGTCGCGCAACCGTCGGGGCAATGGCCATGA	MNRPLRVLLADDHEVTRTGFISMLCGIEGFEVVGQARDGQEALDLCQQLQPDIAILDIRMPVLNGLGAARILKQRQPQLKVMIFTMDDSPDHLEAAIGAGAVGYLLKDASRAELIDALRRVAQGEEALNSSVSARLLRRMAERGAGGTAQVQALTARERQVLGLVASGFSNREIGEKLGIAPGTAKAHVERVIGKLGAADRTQAAVRGVALGLVAQPSGQWP				NA	NA	NA	NA	NA
D1-36_02552	1185			hypothetical protein	ATGCAAAGCCCACCCCACGACCCTGGCAGCGCCCTGGCGATCCGCAGCCAATACCGCCAGTCGCAAAGCCGCGCGGCACGTTTGGGCCTTCTGTTGGGCACCGGGCACGAATTGACCCGCCTGCCCTTGGCGCAAATGCGCGAGCGCGCGGTGCAGCGAGCGTGCGCATTCGTCGCCATGGACCATGGCTTGCTGCTGGAGTGGACGCCGCAAGCCACGTTGCAAACCGTTGCCAGTCACGGCAGCGGCGATGGGCTCGATTTGCTTGCCCAGCTCGCGCAGCCGTCGGCGCCCGAACCGCAGTGGTTGGACTGTCCGGGGAAAACCCTGGCGCAGGTTCTGCGCGTGCCGCTGCGAGGCGCGGACGGCATCGTGTTCGGTGCCCTGCTGCTGGGTAACAGCGTGCCCCTCGGGGCCCCCGACAACGAGGACATCGAGTCGCTGCAATTGCTCGCGACGCTGCTGGCGGCGCACCTGGAAAACAGCCGGCTGCTCCAGGCGCTGCAAGCCCGTGAGCGGACCATGTCCGAGCTGGTCCATCGGCTGTTCAGCGCCCAGGAAGACGAACGCAAGCGCGTGGCCTATGACCTTCACGATGGCCTTGCGCAGAACCTCGCGGGGCTGCATCAGCGCCTGCAAGGTTTCGCCGGCCGCTGCCCGCCGCTGTCGTCGACGCTGGACAGCGAACACCAGGCCATCCTCGACCTGGCCCAGCGTTGCGTCGGCGAGAGCCGGCAGTTGATCGGCGGCCTTCGCCCCCATGTACTGGACGATTTTGGCTTGTACACCGCCATCGACAAGGAAGCCGATCGCCTGCGTGACGCCGGGCTGACGGTGGACTGGGTCGAGCACAGCGCTGCGCGGCTGTCGGGAAACGCCGAGATTGCCCTGTTCCGCATCGCCCAGGAAGGCATCAACAATATCCTCAAGCATGCCCAGGCCAGGCATGTTTGCCTTGGCTTGGTGGTGCGTGACGGACGGGCAACGTTGCGGGTCGAGGACGATGGCCGCGGGTTTGCCCTCGAACAGCCCATCGAAAGCCATGGCTCCAGCCACCTGGGCCTGGCGGCCATGCAGGAACGTGCCAGCCTCCTGGGAGGCCATCTGGACTGTCGCAGCGAACGCAACGGTGGTACTCGCCTGTTGGCCAGCGTGCCCCTGCCAACCCATGGAGTCCAATCATGA	MQSPPHDPGSALAIRSQYRQSQSRAARLGLLLGTGHELTRLPLAQMRERAVQRACAFVAMDHGLLLEWTPQATLQTVASHGSGDGLDLLAQLAQPSAPEPQWLDCPGKTLAQVLRVPLRGADGIVFGALLLGNSVPLGAPDNEDIESLQLLATLLAAHLENSRLLQALQARERTMSELVHRLFSAQEDERKRVAYDLHDGLAQNLAGLHQRLQGFAGRCPPLSSTLDSEHQAILDLAQRCVGESRQLIGGLRPHVLDDFGLYTAIDKEADRLRDAGLTVDWVEHSAARLSGNAEIALFRIAQEGINNILKHAQARHVCLGLVVRDGRATLRVEDDGRGFALEQPIESHGSSHLGLAAMQERASLLGGHLDCRSERNGGTRLLASVPLPTHGVQS				NA	NA	NA	NA	NA
D1-36_02553	522			hypothetical protein	ATGAAAATGAAAACCTGTGCCATCGCCGCTTTTTTCGTGCTGGCTGCTCCCTTTGTCCAGGCTGCGGAGACCGCGCCGTTCGTCTATCGCACCGTCGTCGAGCAACCGCAAAAGCAAACCGACCGGGAAATAGCGGGGCTTTTCGACCGCTGGAACGCAGCACTGCAAACCGGCAGCGCCAGCGCGGTGACCGCCCTCTACGCGCCGGATGCGGTATTGCAACCGACTGTTTCCAACAAGGTGCGCAGCACACCGGACCAGATCCAGGATTACTTCGTGCACTTCCTGGCGGCCAAGCCGGTCGGGGTAATCAACTACCGGGAGATCCGTCACCTGGGCGCCGACGCTGCGATGGACAGCGGGGTCTACACGTTCACGCTGATCCAGGCCGACGGTTCCAAGCGAGAGGTCCAGGCGCGGTACACCTTCCTCTATGAACGACTCGACGGGCAGTGGAAAATCATCAACCATCACTCATCGGCCATGCCTGAAGTGCCCAAGACCCTCCACGCCAGCCATTGA	MKMKTCAIAAFFVLAAPFVQAAETAPFVYRTVVEQPQKQTDREIAGLFDRWNAALQTGSASAVTALYAPDAVLQPTVSNKVRSTPDQIQDYFVHFLAAKPVGVINYREIRHLGADAAMDSGVYTFTLIQADGSKREVQARYTFLYERLDGQWKIINHHSSAMPEVPKTLHASH				NA	NA	NA	NA	NA
D1-36_02554	402			hypothetical protein	ATGACCGCGTCGATGCCCATCCGTCCCCCCTGCCCGCCTGGCGTCTGTGATTGCGGGCGTGATGCGTTGCTGCAAACGCCGGGCAGCGATCTGCGCATCCTTTGCCTGAACCGCCAGGAAGAGAAACGCCTGCTTGAGCGACTGGAAAATATCCAGAGCCTGGACGAGCTTGAACGGTTGCAGCAGCGGTTGTTCGAGAACCTGGGTGTGCGGGTAACCATCGAGCCCGGCTATAACGAGGTTCGGACGATGCGCGGTATTGCCATCGAATTCCAGGAGCAGCCGGGGCTGTGCCGCAAGATTCGCCAGTCGATCCCGGCTGCGATTCGCCGGGGGCTGGAGAAGCGGCCTGAGATTGCCTGGCGGTTGCTGGACTCGCGGGATCTGTTTCGGGGTGGTTGA	MTASMPIRPPCPPGVCDCGRDALLQTPGSDLRILCLNRQEEKRLLERLENIQSLDELERLQQRLFENLGVRVTIEPGYNEVRTMRGIAIEFQEQPGLCRKIRQSIPAAIRRGLEKRPEIAWRLLDSRDLFRGG				NA	NA	NA	NA	NA
D1-36_02555	1071	ysdC	COG1363	Putative aminopeptidase YsdC	ATGCAACCCAATCCGTCTACCTTGCCGCTGCTGGAGGAGCTGCTGATGGCCCGTGGGCCCGGCGGGCAGGAGCATGAAGTGCGCGACATCTGCCTTCGGGAGCTGAAACCGCATTGCGACGAAACCTGGGTCGACCCGGCGGGCAATGTCATCGGGCTGATCAAGGGCGCCCGGCCGGACACGAAGCCGCATCAGTCGATCCGGATCATGGCGCACCTGGACGAGATCGCCATGCTGGTCAAGCGCATCGAGTCTGACGGCACGTTGCGCGTGGTGGCCCTGGGCGGTGCCAATCCGATCAACTTCGGGGTCTGCCCAGTGGACATTCTTGGCGACCAGGATTTCATTCCTGGCGTGTTGTCGTTCGGGTCGATGCACAGCACCGGTGAAACCCACCAGGGCGCGGACGTGTTGTCGGGAAACGTCAATTGGGGTGACGTCCATGTGATTACCCGTCGCACGAGCGAGCAATTGCAGGCCCATGGGGTACGCCCCGGCACGCGGGTGGTGTTGAGCCAGCACTGGCGACGACCGTTCCGGGTCGGCGACGCCATCGCCGCGCATTTCCTGGACGACCGCGCGCCCATGGTGGCTGCGCTCCAGGCCGCCACGCTCTTGGCCGAGCGCCGTAAAGAGCTGCCGCACGACGTTTATTTTGTTTTTACCACCCAGGAAGAAGAGTCCAATGCCGGCGCCCTTTATGCCGCCAGCCATTTGCCCGGGGACGCCACGGTGGCGGTCGAGGTCGGCCCCGTGGTCGCGGAATACGCGACCCGATTGGGCGTCGATCCGATCATCAACACGGGTGACAAGAATGGCTGTTACCACCGTGGGCTCGTCGACCAGCTGTACCAGGCCGGTAAACGCAGCGGGCTGACACCACAATTTGCCTTGTTGGCGGATTTCGCCAGTGACGCCAGTGCGATCATGAGCAGCGGGGCGTCCGCCCAAGGCGGTTGTATCGCAATCCCGACCGAAAATACCCACGGCTATGAGCTGATCGTGGAAGGCAGTATCGAGGCTTGCGCGGTGACATTGCTGGAATTCTTGTTGAGTCGACGTAGTGCCTGA	MQPNPSTLPLLEELLMARGPGGQEHEVRDICLRELKPHCDETWVDPAGNVIGLIKGARPDTKPHQSIRIMAHLDEIAMLVKRIESDGTLRVVALGGANPINFGVCPVDILGDQDFIPGVLSFGSMHSTGETHQGADVLSGNVNWGDVHVITRRTSEQLQAHGVRPGTRVVLSQHWRRPFRVGDAIAAHFLDDRAPMVAALQAATLLAERRKELPHDVYFVFTTQEEESNAGALYAASHLPGDATVAVEVGPVVAEYATRLGVDPIINTGDKNGCYHRGLVDQLYQAGKRSGLTPQFALLADFASDASAIMSSGASAQGGCIAIPTENTHGYELIVEGSIEACAVTLLEFLLSRRSA				NA	NA	NA	NA	NA
D1-36_02556	480			hypothetical protein	ATGTCGTCCTCTGCCGAAGTTCGCCCACCGCTGCCACCTTTCACTCGTGAAACAGCTATCGAAAAAGTTCGCCTGGCCGAAGACGGCTGGAACGGTCGTGACCCGCAGAAAGTATCGCTGGCCTACACTCTCGATACTCAATGGCGTAACCGCGCTGAATTCGCCCATAACCGGGAAGAAGCGAAGGCGTTTTTGACCCGCAAGTGGGCCAAGGAACTCGACTACCGGCTCATCAAGGAGCTCTGGGCCTTTACTGGCAACCGTATTGCCGTGCGCTACGCCTATGAATGGCACGACGACTCGGGCAACTGGTTCCGCTCCTACGGCAATGAAAACTGGGAATTCGATGAGAACGGCCTGATGGCCAACCGCTACGCCTGCATCAATGACATGCCGATCAAGGAAAGCGAACGTAAATTCCATTGGCCGCTGGGCCGTCGGCCGGACGATCACCCAGGCCTTTCTGAGCTGGGGCTGTAA	MSSSAEVRPPLPPFTRETAIEKVRLAEDGWNGRDPQKVSLAYTLDTQWRNRAEFAHNREEAKAFLTRKWAKELDYRLIKELWAFTGNRIAVRYAYEWHDDSGNWFRSYGNENWEFDENGLMANRYACINDMPIKESERKFHWPLGRRPDDHPGLSELGL				NA	NA	NA	NA	NA
D1-36_02557	615			hypothetical protein	ATGAAAAAATATTTGACCAAGGAGAATGACCGTTCTACTTTAAGTCGCATGAACGAAATCACTGGCACTGAAACACGAGACATCATCCTTGATGTCGCCGAAAAGTTGATCTACAGAAGTGGCATCGCGGCCACCGGCATGGATCTTCTGGTAAAAACCGCCGGCGTCTCCAGGAAGAGTATCTACCGCTACTTCGCCAACAAGGAGGAGCTCGTCGTCGCGGCGCTCAAGCGCCGTGATGAACGCTGGATGCAGTGGTTCAGCAGCGAAGTGGGCAAGGCGCCGACACCCCTCGCACGTTTGTTCAGCCTGTTTCCCGTGCTCAAGGGCTGGTTCCAGAGCGAAGGCTTCCGTGGTTGTGCATTCATCAACACAAGCGGCGAAACCGGCGACCCTCAGGATCCGGTCCGCCAGGTTGCGAAAATGCACAAACAGGCATTGCTCGACTATGTGACCCGCTTGTGTACCGAACAGGGTATTGAGCAGCCGCACGTGCTTGCCCGACAGCTGCTCATCCTGATTGACGGCGCCATTACCCTCGCGCTCGTCATGGGCGATCACGATGCTGCCGATCAGGCCCAAGACGTCCTGAAGATGTTGTTGGCGATTGAATAA	MKKYLTKENDRSTLSRMNEITGTETRDIILDVAEKLIYRSGIAATGMDLLVKTAGVSRKSIYRYFANKEELVVAALKRRDERWMQWFSSEVGKAPTPLARLFSLFPVLKGWFQSEGFRGCAFINTSGETGDPQDPVRQVAKMHKQALLDYVTRLCTEQGIEQPHVLARQLLILIDGAITLALVMGDHDAADQAQDVLKMLLAIE				NA	NA	NA	NA	NA
D1-36_02558	1344	pssA	COG1502	CDP-diacylglycerol--serine O-phosphatidyltransferase	ATGCCGTCGCTTTTCAAACGTTCCTTGCTGCCCAAGCTGCGCAGCTTTCCACTCACCGCCGACGCCGTGACGATCCTCGACGGTGCCGCCGAGTTTCGCCGTTGCCTGCTTGAGAAAATCGCCCAGGCCACCCAGCGCATCTACATCGTCGCCCTCTACCTGCAAGAGGACGAGGCCGGCCAGGAAATCCTCGATGCCTTGCATGCCGCCAAAACCGCACGTCCCGAACTGGACATTGCGGTGGTGGTGGACTGGTTGCGGGCGCAACGTGGGCTGATCGGGGCCAAAAAACAGCCGGGCAACTCGGCGTGGTATCAAAAACAGACCCGCGCCCATGCCAGCGAAGTGCCGATCTACGGCGTGCCGGTGCAGACCCGCGAGCTGTTCGGGGTACTGCACCTCAAAGGCTTCGTGATCGACGACTGTGTGCTCTACAGCGGTGCGAGCCTCAACAACGTCTACCTGCACAAGTTCGACAAGTACCGCTACGACCGTTATCACCTGCTGCAGAACGCCCCGCTGGCCGATTCGATGCATCATCTGGTGCAACATGGCCTGATCGCCTCCAGGGCCGTGCATCGCCTTGACCTGCCGGACCTGCCCAGCACCCGCAGTTTGCGCAAGGACATCGGCGACCTGCGCAGCCGCCTCAAGTACGCGGCCTACGACACCACGGCGGGCAGCCTCGACAAGAATGGCCTGTCGGTGAGCCCGTTGCTGGGCGTCGGCAAGAACAACCCGCTGAGCAGGGTGATCGGTGAACTGATCGCCGGCAGCCGCAAGCAACTGACCATCTGCACGCCGTATTTCAACCTGCCATTGGCTGTAACGCGGGAAATCAACCGTGCCCTGGCTCGCGGCGTGCGAATCGACATCATCGTTGGCGACAAGACCGCCAACGATTTTTATATTCCTGCGAGCGAGCCGTTCAAGATCATCGCTGCGTTGCCCTACCTGTACGAAATCAGCCTGCGTCGCTTCGCCAAGCGGCACCAGCGCTACATCGACAGCGGCCAGTTGAACCTGCACCTGTGGCGAGACGGCGACAATACCTACCACCTCAAGGGCATGTGGGTGGACGAGCGCTATACCTTGCTCACCGGCAACAACCTCAACCCACGGGCGTTTCGCCTGGACCTGGAAAATGCCCTGTTGCTGGACGATCCCAAGGGCGAGTTGTCGGGACCGCGCCAGGCCGAGCTCGAGCGGATCTATCGGCACACCCAGCGAATCGAACGCTACCTGGACCTGGAAACCCTGCCGGATTACCCCGCAGCGGTGGGCAAGTTCCTCAAGCGCGTCAGCCGGGTGCGAATAGAGCGTCTGCTTTACCGGATCCTGTGA	MPSLFKRSLLPKLRSFPLTADAVTILDGAAEFRRCLLEKIAQATQRIYIVALYLQEDEAGQEILDALHAAKTARPELDIAVVVDWLRAQRGLIGAKKQPGNSAWYQKQTRAHASEVPIYGVPVQTRELFGVLHLKGFVIDDCVLYSGASLNNVYLHKFDKYRYDRYHLLQNAPLADSMHHLVQHGLIASRAVHRLDLPDLPSTRSLRKDIGDLRSRLKYAAYDTTAGSLDKNGLSVSPLLGVGKNNPLSRVIGELIAGSRKQLTICTPYFNLPLAVTREINRALARGVRIDIIVGDKTANDFYIPASEPFKIIAALPYLYEISLRRFAKRHQRYIDSGQLNLHLWRDGDNTYHLKGMWVDERYTLLTGNNLNPRAFRLDLENALLLDDPKGELSGPRQAELERIYRHTQRIERYLDLETLPDYPAAVGKFLKRVSRVRIERLLYRIL	PGPT0007690_418	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-PSS-RELATED_EXOPOLYSACCHARIDE_METABOLISM	CE-EPS-PSS-RELATED_EXOPOLYSACCHARIDE_BIOSYNTHESIS,PGPT0007690-pssA-K00998	NA	NA
D1-36_02559	1017			putative HTH-type transcriptional regulator	ATGTCGGAAAAAGACACCATCTCGGTCCACTTGGTGCGCGAAGCACTGCTGCAAAGCTGTGCCCCTGGCGCTGCGACCGACGAGGTGCTGCGCAAAGTGGGCATCGACCCGGCGTTGCTCGGCGATGCCCTGGCGCGGGTCCCGGCCCATGCCTATGCGCAGCTTTGGCGCCTGCTGGCGAGGCGCCTGGATGATGAATTTTTCGGCATGGACCCGCGCAAGCTCAAGTCCGGCAGCCTGGCCTTTCTGTGCCGCTGCGCCATGGCCCAGCCGACATTGGCCTCCGGGCTGACGGCGGGGCTGGGGTTCCTTTCGCTGATGCTCGAACACCTGCCGGCGCAATGGGCTCGCCAACAAAGCCTGGCGGAAATTGTCCTGCTCGAAGAAGACCAGACACCGCGCCGGGCCTTCACGTATTTCACCTATTGGATGATCGTCCATGGCGTGGCCTGCTGGCTGGCCGGGCGACGCATTCCGATCCTGTCCGTCGAGTTGCGGTGCCCGCAGCCCGACTTCTGTGATGATTACCGCGTCATGTTCTCCCAGAACCTGCGCTTCGACCGGCCCCGTACGCGGATGATCTTTTCCGCCGACTGCCTGGACCTGCCCATCCGCCGCAGTCCCGAGGAGCTCAAGCGCTTCCTGGCCCAGGCACCGGCGAATATCCTGGTCAAGTACCGCGACCCGCAAAGCCTCTCCAGCCGCATTCGCCATGACCTGCGCCAGCTGCCCGCCGAGCAGTGGCCGGAAACCGAAGCCCTGGCCCAGCGGTTATGCGTTTCCGCCTCGACCCTGCGCCGACGCCTGGCAGAGGAGGGGCAAACCTACCAGGGCCTCAAGGACGGCGTCCGCAAGGAACTGGCCATTGCCTGGCTGGCCGAACCTTCCATCAGTTTCGTGGAAATCGCCTCGCGCCTGGGGTTCGCCGACGCCAGTTCGTTCTACAAGGCGTTTCGCAAGTGGTCCGGGTCCAATCCTGGGCACTATCGCAGCTTGATTCTCAACGAGGCGGGCTGA	MSEKDTISVHLVREALLQSCAPGAATDEVLRKVGIDPALLGDALARVPAHAYAQLWRLLARRLDDEFFGMDPRKLKSGSLAFLCRCAMAQPTLASGLTAGLGFLSLMLEHLPAQWARQQSLAEIVLLEEDQTPRRAFTYFTYWMIVHGVACWLAGRRIPILSVELRCPQPDFCDDYRVMFSQNLRFDRPRTRMIFSADCLDLPIRRSPEELKRFLAQAPANILVKYRDPQSLSSRIRHDLRQLPAEQWPETEALAQRLCVSASTLRRRLAEEGQTYQGLKDGVRKELAIAWLAEPSISFVEIASRLGFADASSFYKAFRKWSGSNPGHYRSLILNEAG				NA	NA	NA	NA	NA
D1-36_02560	1665	acsA_2	COG0365	Acetyl-coenzyme A synthetase	ATGCGCGATTATTCGTCCGCCACGTCGCAGTTCGATTACCTGAACACCGTCAATGCCTCGTTGCACGGCTCGCTCGAAGCGCTCAATGCCTGCGTCGAATGCTGCGACAGGCACACCTTGCCGGGGCGCATCGCCTTGTTTTGGGAGGGCCGTGACGGCAGTGACGCGACCTGGACTTACCGTGACCTGCAGGACAACGCGGCGCGCTTCGCCAATTTCCTGCGCGCCCAGGGCGTCGGCAAGGGTGACAGGGTGGCCGGCCTGTTGCCGCGCACTGCCGAATTACTGATCGTGGTGCTCGCCACCTGGCGCATCGGCGCGGTGTACCAGCCGCTGTTCACCGCGTTCGGCCCGAAAGCCATCGAACACCGCCTCGGCAGCTCCGGGGCACGGGTTGTGGTCACTGACGCCGTCAACCGTCCAAAACTCACTGAGGTTGCCGATTGCCCCATCGTCGTCACGGTCGGCGGGAAAAAGGGCGAGGGCATCGTTCGTGGCGATTTCAGCTTCTGGGCCGAAGTCGCCAATCAGCCCAACCAGTGCGAACCCCTGATGCTGACTGGCGAAGACCCGTTCCTGCTGATGTTCACCTCCGGCACCACCGGCCCGGCCAAGGCGTTGTCGGTGCCGCTCAAGGCGATCATGGCGTTCCAGAGCTACATGCGCGACGCCGTTGACCTGCGCCCCGAAGACGCGTTCTGGAACGTTGCCGATCCCGGCTGGGCCTACGGCATCTATTTTGGCGTGACCGGGCCTTTGGCGATGGGGCATCCGATCACGTTCTACGACGGCCCGTTCACCCTGGACAGCACCTGCCGGGTCATCAATAAATACGGCATCACCAACCTCGCGGGCTCGCCAACGGCCTATCGCCTGCTGATCGCTGGCGGCGAGCAGTTCGCCCGCTCAATCAAAGGCAAGCTGCGCATCGTCAGCAGCGCCGGCGAGCCGCTGAATCCGGAAGTGATCCGCTGGTTCGCCGACAACCTGGACGTGGTGATCCACGACCATTACGGCCAGACTGAACTGGGCATGGTGCTGTGCAATCACCACGGCCTCAAGCATCCGGTGCACCAGGGCGCCGCGGGTTTTGCCTCGCCGGGCCATCGCATCGTGGTGCTGGATGAAAGCCATCAGGAGTTGGGCGTCGGCCAACCGGGCATTCTTGCGGTCGACCGTAGCCAGTCACCCATGTGTTGGTTCGCCGGCTACCAGGGCGGGCCGACCAAGGCCTTCGTCGGCGATTATTACCTGAGTGGCGACACCGTCGAGTTCAATCCGGACGGCAGCATCAGCTTCGTCGGGCGCAGCGATGACGTGATCACCACGTCCGGCTATCGCGTTGGCCCGTTCGATGTGGAAAGCGCGTTGATCGAGCATCCGGCGGTGGTCGAAGCTGCCGTGGTCGGCAAGCCCGATCCGGAACGTACCGAGCTGGTCAAAGCCTTTGTGGTGCTCAGCGCCCAGTACCGCGCCGCGCCAGAGCTGGCCGAAGAGCTGCGGCTGCACGTGCGCAAGCGCCTCGCTGCCCATGCGTATCCGCGAGAGATCGAATTTGTCAGCGACTTGCCGAAAACCCCAAGCGGCAAATTGCAGCGCTTTATCTTGCGCAACCAGGAAATCGCCAAAGCTCAAGAGGCTGCGGCGAAGAACGTTTCAGCTTGA	MRDYSSATSQFDYLNTVNASLHGSLEALNACVECCDRHTLPGRIALFWEGRDGSDATWTYRDLQDNAARFANFLRAQGVGKGDRVAGLLPRTAELLIVVLATWRIGAVYQPLFTAFGPKAIEHRLGSSGARVVVTDAVNRPKLTEVADCPIVVTVGGKKGEGIVRGDFSFWAEVANQPNQCEPLMLTGEDPFLLMFTSGTTGPAKALSVPLKAIMAFQSYMRDAVDLRPEDAFWNVADPGWAYGIYFGVTGPLAMGHPITFYDGPFTLDSTCRVINKYGITNLAGSPTAYRLLIAGGEQFARSIKGKLRIVSSAGEPLNPEVIRWFADNLDVVIHDHYGQTELGMVLCNHHGLKHPVHQGAAGFASPGHRIVVLDESHQELGVGQPGILAVDRSQSPMCWFAGYQGGPTKAFVGDYYLSGDTVEFNPDGSISFVGRSDDVITTSGYRVGPFDVESALIEHPAVVEAAVVGKPDPERTELVKAFVVLSAQYRAAPELAEELRLHVRKRLAAHAYPREIEFVSDLPKTPSGKLQRFILRNQEIAKAQEAAAKNVSA	PGPT0002265_6695	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ACETATE_UTILIZATION,PGPT0002265-acs-K01895	NA	NA
D1-36_02561	762			putative oxidoreductase	ATGCAGATCGACAACAAGATATTCCTCGTCAGCGGTGGCGCTTCCGGCCTCGGCGCGGCCACCGGTGAAATGCTGGTCAAGGCCGGCGCCAAGGTGATGCTGCTGGACCTCAACGCCGACGCCGTGGCCGCCCAGGCGCAAAAGCTTGGCTGCCAGAGCGTGGTCGCGGACATCAGCAACGAAGCAGCCGCCGAAGCGGCGATCAAGGCCACGGTCGATGCGTTTGGTGGCCTCAACGGCTTGGTCAACTGTGCAGGGATCGTGCGCGGCGAGAAGATCCTCGGCAAGAACGGTCCTCACGCCCTCGCCAGTTTCAGCCAGGTGATCAACGTCAACCTGATCGGCAGTTTCAACCTGTTGCGCCTGGCCGCTGCGGCCATTGCCGAAACCGAAGCCAACGCCGACGGCGAGCGCGGTGTGATCATCAATACCGCGTCGGTGGCGGCCTTCGACGGCCAGATCGGCCAGGCAGCCTATGCCGCATCCAAGGGCGCGATCGCCAGCCTGACCCTGCCGGCCGCCCGTGAGCTGGCACGCTTCGGCATCCGTGTGATGACCATCGCGCCGGGCATTTTCGAAACCCCGATGATGGCCGGCATGACCCCGGAAGTGCGCGACTCCCTGGCCGCCGGCGTGCCGTTCCCGCCGCGCCTGGGCAAACCCGCCGAGTACGCGGCGCTGGTCCGGCATATCATTGAAAACAGCATGCTCAACGGCGAGGTGATCCGTCTCGACGGCGCCTTGCGCATGGCCGCCAAATAG	MQIDNKIFLVSGGASGLGAATGEMLVKAGAKVMLLDLNADAVAAQAQKLGCQSVVADISNEAAAEAAIKATVDAFGGLNGLVNCAGIVRGEKILGKNGPHALASFSQVINVNLIGSFNLLRLAAAAIAETEANADGERGVIINTASVAAFDGQIGQAAYAASKGAIASLTLPAARELARFGIRVMTIAPGIFETPMMAGMTPEVRDSLAAGVPFPPRLGKPAEYAALVRHIIENSMLNGEVIRLDGALRMAAK	PGPT0002265_65	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ACETATE_UTILIZATION,PGPT0002265-acs-K01895	NA	NA
D1-36_02562	1188	thlA_1	COG0183	Acetyl-CoA acetyltransferase	ATGTCCCATGATCCAATTGTCATCGTCAGCGCTGTCCGCACCCCGATGGGCGGCTTCCAGGGCGAACTCAAAAGTCTGACCGCGCCGCAGCTGGGTTCCGCCGCCATCAAGGCTGCCGTGGAGCGTGCCGGCATCGCACCGGACACGGTTGAAGAAGTGTTGTTCGGGTGTGTGCTCGCCGCAGGCCAAGGCCAGGCGCCGGCACGGCAGGCAGCCCTCGGCGCCGGGCTCGACAAATCGACCCGTTGCACCACACTCAACAAGATGTGCGGTTCGGGCATGGAAGCAGCGATCCTCGCCCATGACATGCTCGTCGCCGGCAGCGCCGACGTCGTGGTGGCGGGCGGCATGGAAAGCATGTCCAACGCCCCGTATCTGCTGGACCGTGCTCGCGCCGGCTTGCGCATGGGCCACGGCAAGGTGCTGGACCACATGTTCCTCGACGGCCTCGAAGATGCCTACGACAAGGGGCGCCTGATGGGCACCTTTGCCGAAGACTGCGCCGAGGCCAACGGCTACAGCCGTGAGGCCCAGGATGCCTTCGCCATCGCGTCCACCACCCGCGCGCAACAGGCAATCGAGGATGGCAGTTTCGATGCCGAAATCGTGCCGTTGCAGGTCATGGTCGGCAAGGAACAGGTCACCGTTCGCCACGACGAGCAACCGCCCAAGGCACGCATCGACAAGATCCCCACGCTCAAACCGGCGTTCCGCGAAGGCGGTAGCGTGACGGCGGCCAACTCCAGCTCGATTTCCGATGGCGCCGCAGCCCTGGTGATGATGCGCCAGAGCCAGGCGCAACAGCGCGGCCTCAAACCGCTGGCGGTCATCCATGGCCATGCGGCCTTTGCCGACGCCCCGGGCCTGTTTCCCACGGCGCCGATTGGCGCGGTCAAGAAGCTGATGGGCAAGACTGGCTGGTCGCTGGGCGAGGTTGATCTGTTCGAAGTCAACGAAGCTTTTGCCGTGGTGGGCGTGGTAACGATGGACAAGCTGGAAATCCCCCATGACAAGGTCAACGTCCATGGGGGCGCCTGCGCCCTGGGCCATCCGATCGGTGCATCCGGCGCACGGATCCTGGTGACCTTGTTGTCGGCCCTGCGCCAGAAGAGCCTCAAGCGCGGCGTCGCGGCCATCTGCATCGGCGGCGGCGAAGCCACGGCCATGGCCGTCGAATGCCTGTACTAA	MSHDPIVIVSAVRTPMGGFQGELKSLTAPQLGSAAIKAAVERAGIAPDTVEEVLFGCVLAAGQGQAPARQAALGAGLDKSTRCTTLNKMCGSGMEAAILAHDMLVAGSADVVVAGGMESMSNAPYLLDRARAGLRMGHGKVLDHMFLDGLEDAYDKGRLMGTFAEDCAEANGYSREAQDAFAIASTTRAQQAIEDGSFDAEIVPLQVMVGKEQVTVRHDEQPPKARIDKIPTLKPAFREGGSVTAANSSSISDGAAALVMMRQSQAQQRGLKPLAVIHGHAAFADAPGLFPTAPIGAVKKLMGKTGWSLGEVDLFEVNEAFAVVGVVTMDKLEIPHDKVNVHGGACALGHPIGASGARILVTLLSALRQKSLKRGVAAICIGGGEATAMAVECLY	PGPT0008320_6858	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626	NA	NA
D1-36_02563	1128	mmgC_3	COG1960	Acyl-CoA dehydrogenase	ATGCTCCCGACTGAAGAACAGACACAAATCCGCGACATGGCTCGGCAATTCGCCCAGGAGCGTTTGAAACCGTTCTCGGCTGAATGGGACCGCGAGCATCGTTTTCCCAAGGAGGCCATTGGTGAAATGGCCGAGCTGGGCTTTTTCGGCATGTTGGTGCCGGAACAGTGGGGCGGCTGCGACACCGGTTACCTGGCCTACGCGATGACGCTGGAAGAAATCGCCGCCGGCGACGGCGCGTGCTCGACCATCATGAGTGTGCACAACTCGGTGGGTTGCGTGCCGATCCTGAAATTCGGCACTGACGAGCAGAAAGCCAGGTTCCTCACACCCCTGGCCAGCGGCACGATGCTCGGCGCCTTTGCCCTGACCGAGCCTCAGGCCGGCTCCGACGCCAGCAGCTTGAAGACCAGGGCGCGGTTGGAGGGCGACCATTACGTGCTCAACGGCAGCAAGCAGTTCATCACGTCCGGGCAGAACGCTGGGGTGGTCATCGTGTTTGCGGTCACCGATCCGAGCGCCGGCAAGCGCGGTATCAGTGCTTTCATCGTGCCCACCGACTCGCCGGGCTACAGCGTGGCGCGGGTCGAAGACAAACTCGGCCAGCACGCCTCCGACACTTGCCAGATCCTCTTCGAGGACCTGAAGGTGCCTGTGGCCAATCGCCTGGGAGAAGAGGGCGAGGGCTACAAGATCGCCCTGGCGAACCTGGAAGGCGGGCGGGTCGGCATTGCCGCGCAGTCGGTGGGCATGGCACGCGCGGCATTCGAAGCGGCGCGCGACTATGCCCGTGAGCGCCAAAGTTTCGGCAAACCGATTATCGAACATCAAGCCGTGGCGTTCCGCCTGGCCGACATGGCGACTCAAATCGCCGTGGCACGGCAGATGGTTCATCATGCCGCAGCCCTGCGCGATGGCGGCCAGCCTGCGCTAGTGGAAGCATCCATGGCCAAACTGTTCGCCTCGGAAATGGCCGAGCAGGTCTGCTCCAAGGCGCTGCAAACCCTGGGCGGCTACGGTTACCTCAACGATTTCCCGCTGGAGCGCATCTACCGCGACGTGCGGGTCTGCCAGATCTACGAAGGCACCAGCGATATCCAGCGCATGGTCATTTCGCGCAATCTTTGA	MLPTEEQTQIRDMARQFAQERLKPFSAEWDREHRFPKEAIGEMAELGFFGMLVPEQWGGCDTGYLAYAMTLEEIAAGDGACSTIMSVHNSVGCVPILKFGTDEQKARFLTPLASGTMLGAFALTEPQAGSDASSLKTRARLEGDHYVLNGSKQFITSGQNAGVVIVFAVTDPSAGKRGISAFIVPTDSPGYSVARVEDKLGQHASDTCQILFEDLKVPVANRLGEEGEGYKIALANLEGGRVGIAAQSVGMARAAFEAARDYARERQSFGKPIIEHQAVAFRLADMATQIAVARQMVHHAAALRDGGQPALVEASMAKLFASEMAEQVCSKALQTLGGYGYLNDFPLERIYRDVRVCQIYEGTSDIQRMVISRNL	PGPT0002285_1171	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002285-bcd-K00248	NA	NA
D1-36_02564	774	echA8	COG1024	putative enoyl-CoA hydratase echA8	ATGAATTACGAAACGATTTTGTTGGAGATCAAGGACCGCGTCGGCCTGATCACGCTAAACCGTCCTCAGGCGCTGAATGCGCTCAACGCGCAGATTGTCAGCGAGCTGAACCAGGCGCTGGACAGCCTGGAGGCGGACCCGCAGATCGGTTGCATCGTGCTGACCGGCTCGAAAAAAGCCTTCGCCGCCGGCGCCGACATCAAAGAGATGGCCGAGCTGACCTACCCGCAAATCTATTTGGACGATCTGTTCAGCGACAGCGATCGCGTTGCCAATCGCCGAAAGCCGATCATTGCGGCGGTGAACGGTTTTGCCTTGGGCGGCGGGTGCGAGTTGGCGTTAATGTGCGACTTCATCCTGGCGGGTGACAACGCCAAGTTCGGCCAGCCGGAAATCAACCTCGGCGTGCTGCCGGGCATGGGCGGCACCCAGCGTCTGACCCGCGCCGTGGGCAAGGCCAAGGCTATGGAAATGTGCCTCACAGGGCGTTTTATCGATGCGGTCGAGGCCGAGCGTTGCGGCATCGTTGCGCGGATCGTGCCGGCTGATGAGCTGCTGGACGATGCAATGAAGACGGCGGCACTGATCGCCTCCAAGTCCGTGCCTATCAGCATGATGATCAAGGAAAGCGTCAACCGCGCTTTTGAAGTCAGCCTGTCCGAAGGCGTGCGTTTCGAGCGGCGGGTATTCCACGCCGCGTTTGCGACACAGGACCAGAAGGAAGGCATGGCGGCGTTCGTGGCCAAGCGTGCGGCGGCGTTCCAGGACAAGTAA	MNYETILLEIKDRVGLITLNRPQALNALNAQIVSELNQALDSLEADPQIGCIVLTGSKKAFAAGADIKEMAELTYPQIYLDDLFSDSDRVANRRKPIIAAVNGFALGGGCELALMCDFILAGDNAKFGQPEINLGVLPGMGGTQRLTRAVGKAKAMEMCLTGRFIDAVEAERCGIVARIVPADELLDDAMKTAALIASKSVPISMMIKESVNRAFEVSLSEGVRFERRVFHAAFATQDQKEGMAAFVAKRAAAFQDK	PGPT0001860_5828	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001860-paaF|echA-K01692	NA	NA
D1-36_02565	1152	mmgC_4	COG1960	Acyl-CoA dehydrogenase	ATGCAAGACCTTGAGCTGACCGAAGAACAAGTGATGATCCGCGACATGGCCCGTGACTTCGCCCGCGGTGAAATCGCGCCCCACGCTCAGGCCTGGGAGAAAGCCGGGTGGATCGACGACGGCCTGGTGGCGAAGATGGGCGAGTTGGGCCTGCTGGGCATGGTCGTGCCGGAGGAATGGGGCGGCACCTATGTCGATTACGTGGCCTACGCCCTCGCCGTGGAAGAAATCTCCGCTGGCGACGGTGCCACGGGCGCATTGATGAGCATTCATAACTCGGTGGGTTGCGGGCCGGTCCTCAATTTCGGCACCGATGAGCAAAAGCGGGCGTGGCTGGCGGATCTTGCCAGCGGCCAGGCGATCGGCTGCTTTTGCCTGACCGAACCCCAGGCCGGCTCCGAAGCCCACAACCTGCGCACCCGCGCCGAGCTGCGGGACGGCCAATGGGTGATCAACGGCGCGAAGCAGTTCGTCAGCAATGGCAAACGGGCGAAGCTGGCGATCGTCTTCGCTGTGACCGACCCGGACCTGGGCAAGAAAGGCATCTCGGCGTTCCTGGTGCCGACCGATACCCCGGGCTTCAATGTCGATCGCTCCGAACACAAAATGGGCATTCGCGCTTCCGACACCTGTGCGGTGACATTGAGCAACTGCACCGTGCCCGAGGCCAATCTGCTGGGTGCCCGAGGCAAAGGCCTGGCCATTGCGCTCTCCAACCTCGAAGGCGGTCGCATCGGCATTGCCGCCCAGGCACTAGGCATCGCCCGCGCAGCGTTTGAAGCGGCCCTGACCTATTCCCGCGATCGTGTTCAGTTCGACAAGCCAATCATCGAGCACCAGAGCATCGCCAACCTGCTGGCCGACATGCACACCCGCCTGAACGCCGCCCGCCTGCTGATCCTCCACGCCGCGCGCCTGCGCAGCGCTGGCAAACCGTGCTTGTCGGAAGCGTCGCAAGCCAAGCTGTTTGCTTCGGAAATGGCCGAGAAAGTCTGCTCGTCGGCGATACAGATCCATGGGGGGTACGGGTATCTGGAGGATTATCCGGTGGAGCGCTACTACCGGGATGCGCGGATTACCCAGATCTACGAAGGATCTAGCGAAATACAACGCATGGTCATTGCCCGCGAACTCAAGCACTACCTGGCGTAA	MQDLELTEEQVMIRDMARDFARGEIAPHAQAWEKAGWIDDGLVAKMGELGLLGMVVPEEWGGTYVDYVAYALAVEEISAGDGATGALMSIHNSVGCGPVLNFGTDEQKRAWLADLASGQAIGCFCLTEPQAGSEAHNLRTRAELRDGQWVINGAKQFVSNGKRAKLAIVFAVTDPDLGKKGISAFLVPTDTPGFNVDRSEHKMGIRASDTCAVTLSNCTVPEANLLGARGKGLAIALSNLEGGRIGIAAQALGIARAAFEAALTYSRDRVQFDKPIIEHQSIANLLADMHTRLNAARLLILHAARLRSAGKPCLSEASQAKLFASEMAEKVCSSAIQIHGGYGYLEDYPVERYYRDARITQIYEGSSEIQRMVIARELKHYLA	PGPT0002285_893	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002285-bcd-K00248	NA	NA
D1-36_02566	1107	menB_1		1,4-dihydroxy-2-naphthoyl-CoA synthase	ATGACAGCTCAGGTTTCATCCCAAGCTGCGGACGGCGTCGAGACCGCGCCATACGAGGTGCTGTTCGACGTCCGCAACCACATTGGCCACTTGACCCTGAACCGCCCCGCCGGCCTCAATGCCCTTACCTTGGGCATGGTGCGCAGCATGCAACAGCAACTCGATGCCTGGGCGCAGGATGCGCAGATTCGCGCGGTGGTCCTTCGCGGTGCCGGCGACAAGGCGTTCTGTGCCGGCGGTGATATCCGCTCGCTGTACGACAGCCACAAGCAGGGCGATACCCTGCATGAAGACTTCTTCGTCGAGGAATACGCCCTCGACTTGACCATCCACCACTATCGCAAGCCCATTCTGGCCCTGTTGGACGGTTTCGTGCTGGGCGGCGGCATGGGCCTGGCGCAAGGCGCCGACCTGCGGGTAGTGACCGAGCGCACTCGCCTGGGCATGCCTGAAGTGTCCATCGGTTATTTCCCGGACGTGGGCGGCAGTTATTTCCTGCCGCGCATTCCCGGTGAGCTGGGGATCTACCTGGGCGTCAGTGGTGTGCACATCCGCGCCGCCGACGCGTTGTACTGTGGGCTCGCCGACTGGTACCTCGATAGCCGCAAGCTTGCCCAGCTCGATGAGCGTCTCGATCGACTGGAGTGGCGCGATACCCCACTCAAGGACTTGCAAAGCCTGCTGGCAAAAATGGCGGTTCAACAGCTACCTGCACCGCCCCTCGCCGATTTGCGGTCCGTCATCGACCATTTCTTCGCTCTGCCCGATGTGCCGAGCATGGTCGAGCAGTTGCGTCAGGTCACGGTTGCCAACAGCCATGATTGGGCGATGGAAACCGCCAATCTGCTGGAAACCCGCTCGCCGTTGGCCATGGCGGTGACCCTGGAAATGTTGCGTCGCGGCCGTCACTTGAGCCTGGAAGACTGTTTCGCCCTCGAGCTGCACCTGGACCGCCAGTGGTTCGAGCGCGGTGACCTGATCGAAGGCGTACGCGCCTTGCTGATCGATAAAGACAAGCGCCCGCGCTGGAACCCGCCGACCCTGGAGGCGCTGGACGCCTCGGTCGTGGCGAGTTTCTTCGACGGCCTCGACTACCACGGGAATTGA	MTAQVSSQAADGVETAPYEVLFDVRNHIGHLTLNRPAGLNALTLGMVRSMQQQLDAWAQDAQIRAVVLRGAGDKAFCAGGDIRSLYDSHKQGDTLHEDFFVEEYALDLTIHHYRKPILALLDGFVLGGGMGLAQGADLRVVTERTRLGMPEVSIGYFPDVGGSYFLPRIPGELGIYLGVSGVHIRAADALYCGLADWYLDSRKLAQLDERLDRLEWRDTPLKDLQSLLAKMAVQQLPAPPLADLRSVIDHFFALPDVPSMVEQLRQVTVANSHDWAMETANLLETRSPLAMAVTLEMLRRGRHLSLEDCFALELHLDRQWFERGDLIEGVRALLIDKDKRPRWNPPTLEALDASVVASFFDGLDYHGN	PGPT0001860_827	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001860-paaF|echA-K01692	NA	NA
D1-36_02567	708			hypothetical protein	ATGTTTTCTCGCTGGTTCCCCGCTGCTATCAATACCCGTCCCACCGAATGGAGCCGTGCCGCGATCGGCATGGCTTTAGGAACAATGTTCAGTGTCTGGCTCTGCGGCCAGGTGTTTGGCCTCGAAGTGGCGCAACACCTGATCGGCCCTCTCGGGGCCTCGGCGGTATTGTTGTTCGCCGTGTCGTCGGGCGCCCTGGCCCAGCCTTGGTCGATTTTTGGCGGTTACCTCTGTGCTTCAGTCGTGGCGTTGCTGGTCGCCCATGTGCTCGGCCGAACACTGGGCAGCGCTTGCCTGGCGGCCGGCATGGCGCTGGTTCTGATGTGCTGGCTGCGTTGCCTGCACCCGCCGGCGGGGGCCTTGGCGGCCACGCTGGTGCTGGCGGATCATTCGATCATTGCCCTGGATTGGCAGGCGCTTGGCGCTTCGATGCTGGCCGGCTCCGGTCTGCTCGCCTTCGCATTGGCCTACAACAACCTGACGCGCGTACGCTACCCCAAGCGCGCCAGCGAGCCGGTCGCCGCCATTCCGGCCGACCACCCGCCCGTGGATCGCCAGGCCATCACCGCCGAAGACTTGAAGCTTGCGCTCGAGGAAATGGAAGCATTCTTCGACGTAACTCCCGAGGATCTCGAACAATTGATCCACGCCAGCGAGCGCCATGCCAAGCGCCGCAGCATCACGGAGGTGCTGTCGGGTCGCGGTTGA	MFSRWFPAAINTRPTEWSRAAIGMALGTMFSVWLCGQVFGLEVAQHLIGPLGASAVLLFAVSSGALAQPWSIFGGYLCASVVALLVAHVLGRTLGSACLAAGMALVLMCWLRCLHPPAGALAATLVLADHSIIALDWQALGASMLAGSGLLAFALAYNNLTRVRYPKRASEPVAAIPADHPPVDRQAITAEDLKLALEEMEAFFDVTPEDLEQLIHASERHAKRRSITEVLSGRG				NA	NA	NA	NA	NA
D1-36_02568	1377	rkpK_2	COG1004	UDP-glucose 6-dehydrogenase	ATGAAGATCAGCGTGTTCGGCAGTGGTTACGTTGGATTGGTGCAAGCCGTCGTGTTGGCCGAGGTCGGTCATGACGTGGTGTGCATGGACATCGACGAGCAAAAGATCGAGAACCTGCGCCAGGGCCAGGTGAGTATTTTCGAACCCGGCCTGGCGACGCTGGTACGCGAGGGGCTCGATGCCGGGCGCTTGCGTTTTACCAGCGACGAACAAATGGCCGTCCGGCATGGGCAGGTCGTGTTCATCGCCGTCGGCACGCCGTCCAGGGAAGACGGCTCGGCGGACCTGCGCCAAGTCCTCGCCGTCGCTGAAGCCGTTGCCCGCTACGGCGAACAGCCGCTGGTGGTGGTGGAAAAGTCCACCGTGCCGGTGGGCACTGGCGATATCCTGCGCGCCCACATCGATAAGTGCCTGCTCAAGGCCGGGCGCCTGCTGCAATTCGATGTCGTGTCCAATCCCGAATTTCTCAAGGAGGGCTCCGCGGTCTCCGATTGCCGGCGTCCCGATCGCATCGTGATCGGCTGTGAGCGCGAGGAAGTTCGGGAAACCATGCGCGAGCTGTATGCGCCATTCAACCGCAACCACGACCGGATCCTGTTCATGGACGTGCGCAGCGCCGAGCTCACCAAATACGCGGCCAACGGCATGCTGGCGACCAAGATCAGCTTCATCAACCAGATCGCCGAACTGGCCGAACACCTTGGTGCCGACATCGAGTCGGTGCGCCAGGGCATAGGGGCTGACTCGCGCATCGGCTATCACTTCATTTATCCCGGTTGCGGCTACGGCGGTTCGTGCTTCCCCAAAGACATGCGGGCCTTGATTCATACAGCGCGGCAAGCCCATTGCGCCAGTGACCTGCTGCAGGCGGTGGAGTCCATCAATCTGCGGCAGAAACACAAACTGTTCGAACGCATCAATGCTTACTACCAGGGCGACTTGCACGGCAAGAACTTTGCCCTGTGGGGCCTGGCCTTCAAGCCCAACACCGACGACATGCGCGACGCCCCCAGTCGCATGCTCCTGGAAGCGTTGTGGGCGGCTGGGGCCAACGTCCGCGCGTTTGACCCCGAAGCAATGCAACAGACCCAGCTGCTCTACCCCAACGAGCCGAAACTGATGCTGATGGGAACGCCAGAGTCAGTCCTGGCCGGCGCCGATGCGTTGATCATCTGCACCGAATGGCAGTCGTTCAAGGCCCCCGATTTCCAGCTGATCCGGCAGCGCCTGAACGCGCCGGTGATTTTTGATGGGCGAAACCTCTATGAACCGGAACGCATGGCGGACAGAGGTTTCGTCTATTTCCCGATGGGCCGCGGACAGTCATGCAGCTTGCCCATTGCCCACCAGCCTTGGTTGCAAGCCAGAAGCGCTTGA	MKISVFGSGYVGLVQAVVLAEVGHDVVCMDIDEQKIENLRQGQVSIFEPGLATLVREGLDAGRLRFTSDEQMAVRHGQVVFIAVGTPSREDGSADLRQVLAVAEAVARYGEQPLVVVEKSTVPVGTGDILRAHIDKCLLKAGRLLQFDVVSNPEFLKEGSAVSDCRRPDRIVIGCEREEVRETMRELYAPFNRNHDRILFMDVRSAELTKYAANGMLATKISFINQIAELAEHLGADIESVRQGIGADSRIGYHFIYPGCGYGGSCFPKDMRALIHTARQAHCASDLLQAVESINLRQKHKLFERINAYYQGDLHGKNFALWGLAFKPNTDDMRDAPSRMLLEALWAAGANVRAFDPEAMQQTQLLYPNEPKLMLMGTPESVLAGADALIICTEWQSFKAPDFQLIRQRLNAPVIFDGRNLYEPERMADRGFVYFPMGRGQSCSLPIAHQPWLQARSA	PGPT0017855_1431	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
D1-36_02569	942	gltR_3	COG0583	HTH-type transcriptional regulator GltR	ATGAATATCAAGTTCCTGGAAACCTTCGTCTGGGTCGCCCGCTTGAAAAGCTTCCGGCTGACGGCGGAAAAGCTCTTCACCACCCAGGCGTCGATTTCCAGCCGTATCGCGGCCCTTGAAGATGAAATGGGCGTGCGCTTGTTCGTCCGCGATCCTAAGGGCGTGTCGCTGACATCCGAAGGCCTGCGGGTACTCGAATATGCCGAGCGCATCATGGAAACCATGCAAAGCATGAAGGCGGTGATCAAGGATCCCCGTCAGGTGCGCGGTCGGATCCGCATCGGCGCGATGGACACGGTGATCCATACCTGGCTCAGCCCGTTGGTGACACGGCTGATGGAATGCTACCCGGCCCTGGAAATCGAGTTGTCGGCCGATACCGCGAGCAACCTGTGCTCGCAGTTGGAAAAAGGCTATCAGGACATCATCTTCCAAACCGACATCCTGCGCCTGGACAGCGTGCGCAATACGCTTTTGACCCGTTATCCGATGCATTGGGTGGTGCGCACCGGCTCCGCCTATGACCGCGATTATGCTTCGCTGGAAGAATTATCCCAGGAGCGCATCGTGACCTTTTCGCGCAACTCGCGTCCGCACCAGGACATCCTCAATTTGCTGCACTCGGCCAATATCGTCTCGCCGCGCATCAATTGCGTGAATTCGGCGTCGGCCATCACGCGGCTGGTGCGCGACGGCTTTGGCATAGGCGCCATGCCCGCGGCCCTGGTTCAAGGCGAACTGGCCCAGGGCACGTTGAGGCTGGTGGATGGCGTGCCGCTGCCCTCGGTGATGGACGTGGTCGCCAGCTGGCGCACCGGCGCGGGCATGGAGCGGGTCGAAGACATCGTCACCCAGACCCGGGAGGTGGTTGAAGAATTCAGCGCGCAACTGCCTGCCCAATACCGGCTGGCGGCGGACCCTGCCCCGGCAGGCTGTCAGTGA	MNIKFLETFVWVARLKSFRLTAEKLFTTQASISSRIAALEDEMGVRLFVRDPKGVSLTSEGLRVLEYAERIMETMQSMKAVIKDPRQVRGRIRIGAMDTVIHTWLSPLVTRLMECYPALEIELSADTASNLCSQLEKGYQDIIFQTDILRLDSVRNTLLTRYPMHWVVRTGSAYDRDYASLEELSQERIVTFSRNSRPHQDILNLLHSANIVSPRINCVNSASAITRLVRDGFGIGAMPAALVQGELAQGTLRLVDGVPLPSVMDVVASWRTGAGMERVEDIVTQTREVVEEFSAQLPAQYRLAADPAPAGCQ				NA	NA	NA	NA	NA
D1-36_02570	549			hypothetical protein	ATGAACAGCCCGCGACGATCGATCGAGCAGTACATCCGCGCCAAGGACGGCAACCGCCCCCACCTGCTGGACCAGGCGTTTACCAATGACGCGACCCTGGACATGGTGGTATGCACCGGATCCATTTCATTCCCCGATCATGTCCAAGGCCGTGGCGCCATCGGTGATGTGCTGGTGAGCCGTTTCAACCAGACCTTCGAGAACGTCTACACGTTTTGCCTGGACGCTCCTCCTGCGTCCAACGCCGAGACGCTACAGTGCCGTTGGATGGTCGCCATGGCGGACAAGCACAGCGGTGAAGTCCGGGTCGGGTGTGGCCGGTATGACTGGCGATTCAGGCCCCAGTCATGGTTGGCTGAGGGACTCACCATCACCATTGCACACATGAAAACCTTGCCTGCAGACGATCTATCGGCAGTCATGGCCTGGGTGTCGCGTTTGGCGTACCCGTGGTGCAGCGTTGATGACGCCATGGATGCGGTGCCGGATTCAAGCGCGCTTGAAGACGTGATCCAATACCTGTCAGTCAGGAGTGATCGAACGGTTTGA	MNSPRRSIEQYIRAKDGNRPHLLDQAFTNDATLDMVVCTGSISFPDHVQGRGAIGDVLVSRFNQTFENVYTFCLDAPPASNAETLQCRWMVAMADKHSGEVRVGCGRYDWRFRPQSWLAEGLTITIAHMKTLPADDLSAVMAWVSRLAYPWCSVDDAMDAVPDSSALEDVIQYLSVRSDRTV				NA	NA	NA	NA	NA
D1-36_02571	804		COG4336	Putative hydro-lyase	ATGAGTCCATCAGCCCTGTCCCTCGAGCAACTGCAGCAGTGTTCACCGCAAGCCTTGCGCCAGAAAATCGCCGCCGGGCAATACCACGGCCATACCAGCGGCCTGGGCCAGGGTCGGGTCCAAGCCAATATCGTGATCCTGCCGGGAGACTGGGCCGACGAGTTCCTGCGCTACTGCACGCTCAACCGTCAGGCTTGTCCGGTGCTGGACGTGACGGAACCGGGTGACCCCTTCCTGCGCAACCTGGGCGCTCCCATCGACATCCGCCACGAGGTCCCAAGCTACCGGGTCTTTCACCACGGAGAGATAAGTGAGGAACCTTCGGACATCGAACACCTTTGGCGCGATGACCTGGTGACTTTCGCCCTCGGCTGTTCGTTTTCTTTCGAGCAACCGTTGCTTGAGGCCGGCATTCGGATGAGGCACATCGACCTGGGTCGCAACGTCGCCATGTTCCGCACCAACATCGACACACGCCCCACCGCGCGACTGTCTGGCAAAATGGTCGTGAGCATGCGCCCGATGAAAGCGGCGGCGGCGATCCAGGCGATCCAGATCACCGGGCGCATGCCCGGCGTCCATGGCGCCCCGGTACACATTGGCGATCCATCGTTGATCGGCATTGAGTCCCTGGAGACGCCGGACTACGGCGATGCGGTACCGGTCGAAAGCGATGAAATACCGGTATTCTGGGCCTGTGGCGTGACGCCGCAATCGGTGGTCAAGGCGTCGCGTCCGCCGCTGTGTATCACTCACGCGCCGGGTTGCATGCTGGTCACCGATCTATGGAACAGCGCATTGTGA	MSPSALSLEQLQQCSPQALRQKIAAGQYHGHTSGLGQGRVQANIVILPGDWADEFLRYCTLNRQACPVLDVTEPGDPFLRNLGAPIDIRHEVPSYRVFHHGEISEEPSDIEHLWRDDLVTFALGCSFSFEQPLLEAGIRMRHIDLGRNVAMFRTNIDTRPTARLSGKMVVSMRPMKAAAAIQAIQITGRMPGVHGAPVHIGDPSLIGIESLETPDYGDAVPVESDEIPVFWACGVTPQSVVKASRPPLCITHAPGCMLVTDLWNSAL				NA	NA	NA	NA	NA
D1-36_02572	939	hdfR_4		HTH-type transcriptional regulator HdfR	ATGAACCTCAAGTTCCTCGAAACCTTCGTCTGGGTCGCTCGCCTGCAAAGCTTCAGCCTGACCGCCGAAAAGATGTTCAGCACCCAGGCCGCGATTTCCAGCCGGATCGCCTCGTTGGAAGACGAGCTGGGCCTGCGCCTGTTCGTGCGTGATTCACGGGGCGTGTCATTGACCCCGGAAGGCACCAAGGTCCTTGAATATGCCGAGCGAATGCTCGACGTCCAGCGCGAGTTGAAGCAGTCCCTGGACAACAGCACCCCACAGCAAGGCCTGGTGCGCATCGGTGTGATGGACACGGTGATTCACACCTGGCTGAGCCCGTTGATGTCGATGCTGATGCAGGCGTTTCCCGCCGTGGAGATCGAAATCACCGCCGACGCGGCGCGAAATCTTTGTGAGCAGCTGCAAAAAGGTTACCTGGACATCGCCTTCCAGACCGACCTGGTCCGCCACGAAAGCGTGCGCAATCTCGAGCTGGGGCATTACCCGATGCACTGGATCGCCGCCAGCCAATCGATTTACGCCCGGCCCTACGCCTCGCTGGCGGAAATGGCGAGCGAGCGCATCATCACTTTCGTCAAGCATTCACGGCCTCACCAGGATGTGCTCAACCTGCTGTATGCCCATGGCGTCGGTACGCCGAGGGTCAGTTGCGTCAATTCGGTATCGGCGATGACGCGACTGATACGCGACGGTTTCGGCATTGGTGCGCTGCCCGCGGCGCTGGTGACCAAGCCGCTGGCCCGTGGCGAGTTGATCCAGCTGGAACCGGGCGCGCCCCTTCCCCAGCTCGATGTCGTCGCATCGTGGCGGGCCGGCGTGGGGCTCGAACTGATCGAAAGCATCGTGCACATGAGCCGCCAAGTGGTCTGCCAGTACGCCACGGACGTCGGACCGCAACGCATGGTCGCGGCACCGGGGCTGTCGACGGTCGAATAA	MNLKFLETFVWVARLQSFSLTAEKMFSTQAAISSRIASLEDELGLRLFVRDSRGVSLTPEGTKVLEYAERMLDVQRELKQSLDNSTPQQGLVRIGVMDTVIHTWLSPLMSMLMQAFPAVEIEITADAARNLCEQLQKGYLDIAFQTDLVRHESVRNLELGHYPMHWIAASQSIYARPYASLAEMASERIITFVKHSRPHQDVLNLLYAHGVGTPRVSCVNSVSAMTRLIRDGFGIGALPAALVTKPLARGELIQLEPGAPLPQLDVVASWRAGVGLELIESIVHMSRQVVCQYATDVGPQRMVAAPGLSTVE				NA	NA	NA	NA	NA
D1-36_02573	1242	nicP_2		Porin-like protein NicP	ATGCCCTGTTTCATCGATACCCACTGGAGCCGTTCGCCCATTGGTCCCTTGCTCGGCCTGGGCCTGATCGGCGCGCCGGTGGCCCATGCCGATTTCATTGGCGACAGCAAGGCCAGCCTGGAAGCTCGCAATTTTTATTTCAACCGCGATTTCAGGCAGGAGGGCGCTCGGGACAAGGCCGAGGAATGGGCGCAAGGGTTCTTGTTGCGCCTGGAGTCGGGGTACACGGCCGGCACCGTGGGTTTTGGTCTCGACGCCTTGGCCATGGCCGGCATCAAGCTGGACTCGGGCGGCGGCACGGCGGGTACCAATCTTTTGCCCGCGGACCTGTCCGGTGGCTCCCAGGATCGCTACGGCGAAGTCGGGCTCACCGCGAAAATGCGCTTGTCCAACAGCACGCTGAAAGCCGGGACGCTGCAGATCAAGGACCCGGTGGTGAATTCCAACGACACGCGCCTATTGCCGAGCACCTTCAAGGGCGGGCTGTTGAACGTGCAGGAAATCGACCGCCTCAAGCTCACCGCCGGGCAGCTCTCCCAGATCAATTTCGTCGATTCCACCGACTATCAAGACATGACCGCCAATCGCATCGGCGGCACCAGCGACAGGTTCCAGTTCGCCGGGGCGGACTACCAGCTTCTGCCCAATCTCACGGCGCAGTACCGCTACGGCAAGCTCGAGGATATCTACCAGCAGAACTACCTCGGCTTCGTCCACACCCTGGACCTGGGCGATGGCCAGTCACTGAAAAGCGACGTGCGTTACTCGCGCAGCACCGAGGACGGCAGTTTCCGCAGGATCGATAACCAAGCGTTCGGCGCACTGTTCACCTACAGCCTCGCTGGCCACGGGTTCGGGCTGGGCTATCAGCGCATGAGCGGCGACGATCCATTCCCCTACATCTCCCGCAGCGATCCCTATCTGGTCAACTTCGTGCAGATCGGCGACTTCGCCAACACCGACGAACGCTCCTGGCAAGCCCGCTACGACTACAACTTCGCCGCCCTCGGTGTGCCGGGCCTGACATTCATGACCCGCTACATCAGTGGCGACAACGTGCAACGCAGCGCGCCAGGGGAGGGCCAGGAATGGGAGCGCAACACCGACATTGCCTATGTGATCCAGGACGGCACATTGAAAGGGCTGGGTTTCAAATGGCGCAATGCAACGGTGCGTTCGAACTTCGGCAATGACCTGGATGAGAACCGTTTGATCGTCAGCTATACGATGGCGTTGTGGTGA	MPCFIDTHWSRSPIGPLLGLGLIGAPVAHADFIGDSKASLEARNFYFNRDFRQEGARDKAEEWAQGFLLRLESGYTAGTVGFGLDALAMAGIKLDSGGGTAGTNLLPADLSGGSQDRYGEVGLTAKMRLSNSTLKAGTLQIKDPVVNSNDTRLLPSTFKGGLLNVQEIDRLKLTAGQLSQINFVDSTDYQDMTANRIGGTSDRFQFAGADYQLLPNLTAQYRYGKLEDIYQQNYLGFVHTLDLGDGQSLKSDVRYSRSTEDGSFRRIDNQAFGALFTYSLAGHGFGLGYQRMSGDDPFPYISRSDPYLVNFVQIGDFANTDERSWQARYDYNFAALGVPGLTFMTRYISGDNVQRSAPGEGQEWERNTDIAYVIQDGTLKGLGFKWRNATVRSNFGNDLDENRLIVSYTMALW	PGPT0005395_12	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_BENZOATE|DERIVATE_DEGRADATION	XENOBIOTIC_BENZOATE-DEGREDATION-BENZOATE_TRANSPORT,PGPT0005395-benP-K21758	NA	NA
D1-36_02574	768	phnE	COG3639	Phosphate-import permease protein PhnE	ATGAGTCGCCTGCTCAACGCGCTGTTGCTGCTGTGCATCGGCGCGGCCGTGGTTGCCTCGTTCGTCTATCTGGGTATCGACCTGGACGCCCTTGGCGAAAACTCGAATCTCAAGCAAATGGCCGCTTATGCCCAGCGTTTCCTGACCCCTGACCTGAGCCCGACCTACCTCAAGGCGATCGGCCATGGCGCGCTGGAAACCATCGCCATGTCCGCCCTTGGCACACTGCTCGCGGCAGTGCTGGGTTTGGCCTTGGCGCTGCCCGCCGCCGGGCGCCTTGGCTGGCCGTTGCAGAGCGTGTCGCGCCTGTTGTTGAACGCCTTGCGCGCGGTGCCGGAGCTGGTATGGGCCGCGCTGATGGTGCTTGCCGCCGGGCTTGGCCCCAACGCCGGTACGCTGGCGCTCGCCCTGCACACGGTCGGCGTGCTCGGTCGATTGTTTGCCGAAGCCTTGGAAAACACTCCGTCGCAACCCGCCGATGCCCTCCGCCTGCAAGGGGCCAGCGCCCTCTGGGCGTTCTGCTACGGCACGCTGCCCAACCTGATGCCGCAACTGTTGGCCTACACCTTGTACCGCTGGGAAAACAACATCCGCATGGCCAGCGTTCTAGGGTTCGTCGGCGCCGGCGGCCTGGGCCAGATGCTCTACGTCAGCCTCAGCCTGTTCCAGGAGGCGCAAGGCAGCACGGTGATCCTGGCGATGTTGCTGCTGGTCTTCACCGTCGATACGTTGAGCAGTTGGAGCCGTCAGCGTTGGGTCAAGGCTTGA	MSRLLNALLLLCIGAAVVASFVYLGIDLDALGENSNLKQMAAYAQRFLTPDLSPTYLKAIGHGALETIAMSALGTLLAAVLGLALALPAAGRLGWPLQSVSRLLLNALRAVPELVWAALMVLAAGLGPNAGTLALALHTVGVLGRLFAEALENTPSQPADALRLQGASALWAFCYGTLPNLMPQLLAYTLYRWENNIRMASVLGFVGAGGLGQMLYVSLSLFQEAQGSTVILAMLLLVFTVDTLSSWSRQRWVKA	PGPT0002530_3122	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-OTHER_ACID_METABOLISM	P-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002530-phnE-K02042	NA	NA
D1-36_02575	828			hypothetical protein	ATGCTGACGCGTGACGCTCGGGACCCCGCCGCCCTCCCTCGCCTGCTCCTTGGCCTGCTGGCCATTGCCCTGCTGTGGCCGGGTATCCATTTCAGCGAATTGGACCTGGGTGTGCTGCTGGCCGGCGATAGCCAAAGCGAGATGGGCCGGTTCGCCGCCGCGTTCTGGCCGCCGGCCCATGACGAAACGTTTGTCGAATTGCTGCTGCAAGCCACGCTGCAGACGCTCGCCATCGCTACCGCCGGCATGGCCTTGGCACTGCTGTTGGCGGTGCCCGCGAGCCTGTTCGCCAGCCGGGCGCTGTCGTTGTCGGCCGCGTACCGCGCAGGCAGGCCTGGCCTTTGGGGTCAGTGGCTGCGTTGGCCGGTCCGTGGCCTGCTCATCTTCCTGCGCAGCGTGCCGGAGATTGTCTGGGCGTTGCTCTTCGTCCGGGCCGTCGGTCTTGGCCCCACCGCCGGGGTATTGGCCATCGCCATCACCTACAGCGGCATGCTGGGCAAGGTCTACGCGGAAATCTTCGAGTCGGTTGACCAGCGCCCCGCACACGCGCTGATGCAAGCCGGAAGCGGTCGGCTCGCCGCCTTCTGCTACGGCATCTTGCCCAACGTCGCCGCCGAGCTGCTGTCGTACACCGTGTACCGCTGGGAATGCGCCATCCGCGCCTCGGTGGTGATGGGCTTCGTCGGCGCTGGTGGACTGGGCCAACAGATGGACCTGTCGTTGCGCATGTTCGCCGGCGGTGAAGTCGCCAGCCTGCTGCTGACTTTCTTGATATTGGTGCTGCTCGCCGACCAGCTCAGTCGCGTGCTGCGCTGGAGGTTGGCATGA	MLTRDARDPAALPRLLLGLLAIALLWPGIHFSELDLGVLLAGDSQSEMGRFAAAFWPPAHDETFVELLLQATLQTLAIATAGMALALLLAVPASLFASRALSLSAAYRAGRPGLWGQWLRWPVRGLLIFLRSVPEIVWALLFVRAVGLGPTAGVLAIAITYSGMLGKVYAEIFESVDQRPAHALMQAGSGRLAAFCYGILPNVAAELLSYTVYRWECAIRASVVMGFVGAGGLGQQMDLSLRMFAGGEVASLLLTFLILVLLADQLSRVLRWRLA	PGPT0002530_1690	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-OTHER_ACID_METABOLISM	P-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002530-phnE-K02042	NA	NA
D1-36_02576	798	phnC	COG3638	Phosphate-import ATP-binding protein PhnC	ATGACATTGCGTTTGACCCAGGCCAGCGTCATCCACGCCAACGGCGCCCAGGCGTTGCGCGGCGTGGACCTGCACCTGCGCGCAGGGGAACAGGTCGCGATCATCGGCCCGTCCGGCGCTGGCAAGTCCAGCCTGCTCAACGTCCTTGCCACCGCGCTGCGGCCAGGCCACGGTGAAGTAGAAGTGCTGGGCGAGCGGGCCTGGCAGCTGTCGGCGCGCCAGCGCCAACGCCTGCGTGCACGCATTGGCTTGATTCATCAAGCGCCTCCCCTGCCCCCGCGCCAACGTGTGGTCACCGCAGTACTGGCCGGCAAGCTGGGGCAATGGGGAATCGGCAAAAGCCTGCTGAACCTGTTCCATCCGCTGGATATCCCCGGGGCTCGGGCAGCCTTGGCCCGTCTGGACCTGGGGGAAAAACTGTTCGTGCAATGCCAGCAATTGTCCGGCGGGCAGCTGCAACGCGTCGGCATCGCCCGCGTGCTTTACCAGGCGCCGGAGGTGTTGCTGGCGGATGAACCGGTATCGGCGATGGACCCGGTGCTCGCCGAGCACACGCTCTCGGTGCTCTGCCAGCATGCCCGGGAGCAGCAGGTCACCCTGGTGACCAGTCTGCATGCGGTGGACCTGGCGCTTGCGCATTTTTCGCGAATCATTGGTTTGCGTGACGGCCAGATTCTCTTCGACTTGCCGACCGAAGCGGTTGATCGCAAGCAGCTCGATGCACTTTATGCCAATGAGCAACTGGAGTCGCTGTCGAGCCCACCGCCGCCGTCGAGCGTGCAGATTCCCCGATGCTGA	MTLRLTQASVIHANGAQALRGVDLHLRAGEQVAIIGPSGAGKSSLLNVLATALRPGHGEVEVLGERAWQLSARQRQRLRARIGLIHQAPPLPPRQRVVTAVLAGKLGQWGIGKSLLNLFHPLDIPGARAALARLDLGEKLFVQCQQLSGGQLQRVGIARVLYQAPEVLLADEPVSAMDPVLAEHTLSVLCQHAREQQVTLVTSLHAVDLALAHFSRIIGLRDGQILFDLPTEAVDRKQLDALYANEQLESLSSPPPPSSVQIPRC	PGPT0002520_1128	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-OTHER_ACID_METABOLISM	P-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002520-phnC-K02041	NA	NA
D1-36_02577	852	phnD1	COG3221	putative ABC transporter phosphite binding protein PhnD1	ATGCTCAAGCGTTCCCTGGCTTTGGCCGTCGGTTTCACCCTGATCCTGAGTTCTGTCCTGGCGCAGGCCGCCGACACCCTGAAAGTCAGCGCGATTCCCGACGAAGCGCCGACCGAATTGCTGCGCAAGTTCAAGCCGCTGGGTGCTTATCTGGAGCAGCAGATCGGCATGAAGGTCGAGTTCGTACCGGTGAGCGACTACCCCGCGGTGGTCGAGGCATTGGCCACCGACCGCATCGACATGGCCTGGCTGGGCGGTTTTACTTTCGTCCAGGCTCGCCTGAAGACCGGCAACGCCATTCCATTGGTGCAACGTGAGCAGGACGCGCAGTTCACCAGTAAATTCATCAGTGCCAACCCGGCCGTCAAATCCCTGCGCGACCTGAATGGCAAGACCTTTGCCTTTGGCTCTGTTTCGTCTACTTCCGGCAGCCTGATGCCGCGTTACTTCATGCTCCAGGATGGCATCAAGCCGGAAATCTACTTCAGCCGCGTGGCCTACTCCGGTGCCCATGACGCGACGGCGGCGTGGGTCCAGGCCGGCAAGGTCGATGCCGGCGTGCTCAACGCCAGCGTCTGGGAAAAACTGGTGGCCGCCGGCAAGGTCGACACCAGCAAGGTCAAGGTCTTCGCCACCACCCCAGCGTATTTCGACTACAACTGGACGGTGCGCGGGACCCTCGACCCGGCGGTGGCCGCGAAGATCAAGGCCGCGTTCCTGGCGCTCGATCCGGCGAACCCAAAGGACAAGGAGATCCTTGATTTGCAAGCCGCCAGCCGCTTCATCGAAACCAAGCCTGAGAACTACAAGGGCATCGAAGAAGCCGCACGCGCCGCTGACCTGCTCAAATGA	MLKRSLALAVGFTLILSSVLAQAADTLKVSAIPDEAPTELLRKFKPLGAYLEQQIGMKVEFVPVSDYPAVVEALATDRIDMAWLGGFTFVQARLKTGNAIPLVQREQDAQFTSKFISANPAVKSLRDLNGKTFAFGSVSSTSGSLMPRYFMLQDGIKPEIYFSRVAYSGAHDATAAWVQAGKVDAGVLNASVWEKLVAAGKVDTSKVKVFATTPAYFDYNWTVRGTLDPAVAAKIKAAFLALDPANPKDKEILDLQAASRFIETKPENYKGIEEAARAADLLK	PGPT0002525_2771	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-OTHER_ACID_METABOLISM	P-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002525-phnD-K02044	NA	NA
D1-36_02578	1440			hypothetical protein	ATGTCTGACACTCCTGCGCAGCGGGGCGAAAGTCCATACATCCCGCTCGGTCCTTTCAAGGTCCGGTTGCCGTTTCTCCATTACAAGATCGAACTTCCAGACTACCTCCAAGGCTTGTTGATGTGTGCCGTGGACCTGGCCGCGATCCCGCTGATGACCGAACTGCTGGGCATGCCTTTCGAAGTCGCGCTTGCCGTGGTGATGCTCAACGGCTTGCTTTACCTGGCGCACCATTTGCTCGGTGACCCGACCGTTCCTGGCTGGATCACGCCGGCGGTTCCTCTGTTGATGGCTTACTGCGCGCAGTTCCCAATGGGCCCGGAGCGTGTCCATGCCTTGATAGCCTTCCAACTGATGCTTGGCGTATTTTCAATTGCCCTGGGGGCGACTGGAATGGCGAAAAAGGTTGTGGAATTCGTGCCCTCGGCAATCAAGTCCGGCATCATCGTCGGGGCTGGCTTGAGTGCCGTGATCGCGGTGTTCCAGGTGGGCGGGAAATTCAATGTACTGCCCTGGACCATCTCCATTGCGGTGGGCATAGCCTTCTACCTGATCTTTTCCCAGCACTTCAACGAGCTCAAGCAACGCAACCGCTTCTGGTGGAACTTCGCCAAGCTCGGCATCCTGCCGATCATCCTGCTGGCGGTGGTGATTGCACCGTTGTTTGGTGAGGCGCCATGGCCGACGATTCAGTGGGGAATCAGCCAACCGGACTTTGCCGGATTGTGGAATGACTACACCGTCTTCGGTCTGGGCATGCCGCCAGTCTCCATGTTCATCTCAGCGTTGCCAACCATGCTGGCGGCCTACATCATCGTGTTCGGCGACGTGCTCAGCGCCAAATCGCTCCTTGATGAGGCAGAAACCGTGCGCACCGACGAAGTCGTCGACTACAACGCCGATCGCGCTCACCTGATCTTCGGCGCGCGCAACGCGTTCATGAGCATCTTTGGTCCCGATGTCGCCATGTGCGGGCCAAAATGGGCCGCGATGCTGGTGGTCGTGATCGAGCGTTTCAAAGGTGGACCGAAGGCAATGAAGTCGATCATTGGCGGCGTCGGGTCGTTCCGCTGGGGTACCAACAGCGGTCTGCTGTTGTTGCCGGTCGTCACGCTGGTACAGCCGATTCTCGGTGTCGCCTTGTCACTGACGCTGCTGATCCAAGGGTACGTTAGCGTACGCCTGGGCATTCTCGAAGCCCGAAGCCAGCGTGACCTGGGCATCGCGGGCGTGATTGGCGCGGTGCTCGCGATCAAAGGCGCGAGCTGGGCATTTGGAATTGGCGTTGTGTTGTGCTTGCTGATCTACGGCAAGAACTTTTTCAAGGGGGAGGTGGATGGGACGTTTGCCAAGGACCTGAAGGCGCCGGGCGGCAACCCTGTCAGAGATGTCGGGTCGGCCCCCGCGATCAGGCGGGTTGCAACGGAGAATGTGCTTTAA	MSDTPAQRGESPYIPLGPFKVRLPFLHYKIELPDYLQGLLMCAVDLAAIPLMTELLGMPFEVALAVVMLNGLLYLAHHLLGDPTVPGWITPAVPLLMAYCAQFPMGPERVHALIAFQLMLGVFSIALGATGMAKKVVEFVPSAIKSGIIVGAGLSAVIAVFQVGGKFNVLPWTISIAVGIAFYLIFSQHFNELKQRNRFWWNFAKLGILPIILLAVVIAPLFGEAPWPTIQWGISQPDFAGLWNDYTVFGLGMPPVSMFISALPTMLAAYIIVFGDVLSAKSLLDEAETVRTDEVVDYNADRAHLIFGARNAFMSIFGPDVAMCGPKWAAMLVVVIERFKGGPKAMKSIIGGVGSFRWGTNSGLLLLPVVTLVQPILGVALSLTLLIQGYVSVRLGILEARSQRDLGIAGVIGAVLAIKGASWAFGIGVVLCLLIYGKNFFKGEVDGTFAKDLKAPGGNPVRDVGSAPAIRRVATENVL				NA	NA	NA	NA	NA
D1-36_02579	1149	adh1_1	COG1454	Long-chain-alcohol dehydrogenase 1	ATGAACATTTCTTCTTTCAAAATCGCCAATAAATTAATCACCGGACCCGGCGCAATCGAGCAGCTTTGCGCTGAGCTGACGCGCCTTGAAATCAAGAACCCACTGATCGTCACGGACACCGTCCTGGTGAACTCCGGCACTGTGGACCTGGCGCTGGCGCAACTCGGTGATCGCCACTACGGCGTTTTCGACCAGGTCAAACCGGAGCCTGAGGTGGCCATCGTGGAGGAGTGCACTCGCGCCTATCGCGAGGGTGGACACGACGGATTGATTGCGGTGGGTGGCGGCAGTGCCATCGATATTGCCAAGGGCGTCGCGGCGTATGCCGGTCATGCAGGTCCGCTGACGGAACTGTTCGGTGTCGATTTGGTGAAACGCAAGGGCCCGCCCTTGATTGCTATCCCGACAACTGCCGGCACAGGTTCGGAAGTGACCAACGTCGCGATTTTCTCCGACAAGCAAGCACAGCTGAAAAAAGGCATCGTCAGTGACTACCTGCTACCGGACGTGGCGCTGGTCAGTCCGACCATGACGTTGACCTGCCCACGCAGTGTGACGGCGGCCAGTGGCGTCGATGCGCTGGTGCATGCGGTCGAGTCCTATCTTTCAGTCAACGCTTCGCCAATCACCGATGCCATCGCGCTCGGTGCGATCAAGTTGATCAGCAAGGCGCTGCCGAAGGCTTATGCCAACCCAACCAACCTGCAAGCCCGGGAAGACATGGCCACTGCGAGCCTGATGGCCGGCATGGCGTTTGGCAACGCGGGGGTAGGGGCGGTGCATGCGCTGGCGTACCCGCTCGGCGGACGGTTCAACATTGCCCATGGCGTCAGCAACGCCTTGCTGCTGCCGTACGTAATGGAGTGGAACAAGACAGCTTGCGTCGAGCGTTTCCGTGACATCGCCGAAGCCATGGACGTGCGCGTCGCGAACCTGAGCGACAGGGACGCTGCGGACCAGGCTGTGAAAGCCATGGCGGATCTGTGTGCTGGCGTTGATATTCCCTCCGGGCTGCGCAGTTTCAACGTGCCCGAGGAGGCCATCCCAGCGATGGCGGAGGAGGCCAGCAAGATCGACCGTTTGATGCGCAACAACCCGCGCAAGCTGACGGCCGCCGATATCGAGAAGATCTATCGCGCCGCCTACTGA	MNISSFKIANKLITGPGAIEQLCAELTRLEIKNPLIVTDTVLVNSGTVDLALAQLGDRHYGVFDQVKPEPEVAIVEECTRAYREGGHDGLIAVGGGSAIDIAKGVAAYAGHAGPLTELFGVDLVKRKGPPLIAIPTTAGTGSEVTNVAIFSDKQAQLKKGIVSDYLLPDVALVSPTMTLTCPRSVTAASGVDALVHAVESYLSVNASPITDAIALGAIKLISKALPKAYANPTNLQAREDMATASLMAGMAFGNAGVGAVHALAYPLGGRFNIAHGVSNALLLPYVMEWNKTACVERFRDIAEAMDVRVANLSDRDAADQAVKAMADLCAGVDIPSGLRSFNVPEEAIPAMAEEASKIDRLMRNNPRKLTAADIEKIYRAAY	PGPT0008305_373	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008305-adh1-K19954	NA	NA
D1-36_02580	1374	norR_3		Anaerobic nitric oxide reductase transcription regulator NorR	GTGAACGTCAATGACGCCAGCTTCGAAGAACTGCTCAACGCTCTCCATGACGGCGTCTACATCACGGATGGCGACGGCAATACGCTAAAAGTAAATCAAGCCTATGAGCGCCTGACCGGGCTCAGTGGTGCGGATCTCGTCGGTCGATCCATGCAGGAGCTGGTGAAGGAGGGCGTCATCTCGCAATCGGCCACATTGCGCGTGCTACAGGGTGGTCGGCCGGTATCGGTGATGCAGAGCCTGAGCCATGGCAAGAAGTTGCTCGTCAGTGCCACGCCAATTCTCGACGCCGGAAAGCGAATCTCATACGTGGTCAGCACCGTGCGCGACATGACTGAACTGCTGCGCATGAAACACGAGCGCGATGAGTTGCAACAGCTCAAACAACTGCGCAACAGCACCGCCAAGCTTCATGCCGGGCACCGGGACAATCTGCTGCGTTCTCCGCTCATGGCCGATCAGGAGGTTTCCGGCCGCGTCCTTTCGCTGGCCCGGCAGGTTGCGAGCAGCTCGGTGAAGGTGTTGCTTCAAGGCGAAACCGGCGTCGGGAAGACCCTCGTCGCGCAATTCATCCATAACGCCAGCCCACGTGCCAGCGAACCCTTCCTCGCGCTCAACTGCGGCGCGCTGCCCGAGAATCTGATCGAAGCCGAGCTGTTTGGCTATGCACCTGGGGCGTTCACTGGCGCAGGTCCCAAAGGCAAGCGTGGCCTGCTGGAACTGGCGCATCACGGCACGTTGTTTCTAGATGAGATTGGTGATCTTCCGCTGCCGGTGCAGGTCAAGCTGCTCAAGGTCATCGAAGAAAACCGCTTCATTCCTGTCGGCGGCCTGGAATTGAAGGAGGTGGATGTACGCATCATCAGCGCCACCCACCATGACCTCAAGCAGCGGGTGGCGGAGGGGCATTTTCGGGCTGATTTGTATTACCGGCTCAACGTGGTGCCGATTCACATTCCGGCACTGCGCGAACGTCGGGAGGAGATTGCGCCACTCCTGCGTTACTACCTCGACCGATTCAACGTTCGTTATGAACGCCAGGTCCAGTGGAGTCTGGATGCCCTCGACTTGATGTGCGAATACGCCTGGCCCGGCAACATTCGCGAGTTGATCAATGTCGTCGAACGGCTGGTGGTGACCAATCAGACCGGGACTGTCGAGGCGCTTGATATGCCGGAAGAGATCCTCAACCTTAATCCGTCGAAAACCAATGACGCGGGGCTGCCACTGCGCAAGGTATTGGAAAATGCCGAGCGCAGCGCGATTCGCGCCGCGCTGCTTGCGCACAAGACCACGCGCCTTGCGGCCAAGGCGTTAGGGGTGAGCCAGGCGACTGTGGTGCAGAAAATGAAACGCTGGGAACAGTCTGATTAG	MNVNDASFEELLNALHDGVYITDGDGNTLKVNQAYERLTGLSGADLVGRSMQELVKEGVISQSATLRVLQGGRPVSVMQSLSHGKKLLVSATPILDAGKRISYVVSTVRDMTELLRMKHERDELQQLKQLRNSTAKLHAGHRDNLLRSPLMADQEVSGRVLSLARQVASSSVKVLLQGETGVGKTLVAQFIHNASPRASEPFLALNCGALPENLIEAELFGYAPGAFTGAGPKGKRGLLELAHHGTLFLDEIGDLPLPVQVKLLKVIEENRFIPVGGLELKEVDVRIISATHHDLKQRVAEGHFRADLYYRLNVVPIHIPALRERREEIAPLLRYYLDRFNVRYERQVQWSLDALDLMCEYAWPGNIRELINVVERLVVTNQTGTVEALDMPEEILNLNPSKTNDAGLPLRKVLENAERSAIRAALLAHKTTRLAAKALGVSQATVVQKMKRWEQSD	PGPT0001030_2471	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,PGPT0001030-acoR-K21405	NA	NA
D1-36_02581	1881	btuD_4		Vitamin B12 import ATP-binding protein BtuD	ATGCGTCAGATCGTTTTGGAAATCACCATGCTTCGCCTATTTGAACAACGGCTAGACCCTTTCCCACCCGATGAAGTCCCCCCGCCACCCGACGGTCTGGCGCGGTTCCTGTGGGCTTGCACGCGAGGCGCACGCGGTTACATTCTCGCATTCGCGCTGCTCAGTGCCGGTGTGTCGATCTACGAAGCCTGGCTGTTTTCTTTCCTCGGTCAGGTCGTGGACTTGCTCTCGACCTGGCAGGCAGGCGGCGATGCGGCAGCGCAAGAGAGTCGGGTGCTGTGGGGCATCGGCATCATCCTGGTGGCCAGCGTTGGGCTGGTCGCGTTGCGCACGATGGTGCAGCACCAGATTCTAGCGATCAATTTGCCGTTGCGCCTGCGCTGGGATTTTCACCGGCTGATGCTGAGGCAAAGCCTGTCGTTCTTTTCGGATGAGTTTTCCGGCCGGGTCACCACCAAAGTGATGCAGACGGCGCTGTCGGTGCGTGAGGTGCTGTTCACCATCATCGAGATCGTTCCCGGGATCGGCGTGTACTTCATCGCGATCATCGCCCTGGCAGGCGGTTTTGACCTGAAACTGATGCTGCCTTTCATTGCCTGGATGGTCTTGTTCGGTGTCGCCATGCGCTACTTCGTGCCGCGCCTGGAGAAAGTAGGGCAGGAACAGGCCAATGCGCGGTCGTCGATGACCGGGCGAGTTTCAGACGCCTACACCAACATCACCACGGTAAAGCTGTTCTCCCACTCCAAGCGCGAAGCGCATTTTGCGCGCGCCGCCATGGAGGATTTCAAGCAAACCGGCTTTCGCCAGATGCGCTTGGTCAGCCAGTTCGAGATCGTCAACCAGGCCTTGGTGGTCGGGTTGATCATGGGCTCGGGCGGTTATGCCCTTTGGCTATGGCACCAAGGCGAAGTCGGCACCGGTGCCGTCGCGGCGATTACCGCCATGGCGTTGCGCATCAATGGCATGTCGCACTGGATCATGTGGCAAATGACCTCGCTGTTCGAGAACATCGGCACGGTGCAGGATGGCATGGCGACCCTGACCCGCGGCCCCAAGGTGCAGGATGCGCCAGACGCCGGCGTGCTGGTCACCACGGGCGGCGCGGTGACCTTCGACAAGGTGCGCTTCAACTATAACGGCGAACGCCAGGTGCTCGATGGTCTGAGCCTGAGCATCCGCCCGGGCGAAAAGATCGGCCTGGTAGGCCGTTCCGGCGCCGGGAAATCCACGCTGATCAACCTGCTGCTGCGTTTCTACGACGTGGACAGCGGCGAGATTCGGATCGATGGGCAGAATATCGCCCACGTCACCCAAGACAGCTTGCGCAGTGCCATCGGCATGGTCACCCAGGACACGTCGCTGTTGCACCGCTCCATCCGCGACAACATCGCCTATGGCCGCCCCGATGCAACCGACGCGCAGATCCGCAGCGCCGCGATCAGCGCTCAAGCCGATGGATTCATCAGCCAACTGAGTGACAAGCAAGGTCATTGCGGCTACGACACCCTGGTTGGGGAGCGTGGGATCAAGCTTTCGGGAGGCCAGCGACAACGCATCGCCATTGCCCGGGTGATGCTCAAGAACGCCCCGATCCTGCTGCTTGACGAAGCCACCAGCGCACTGGATTCAGAAGTCGAGGTCGCCATCCAGGAAAGCCTCGATGAAATGATGGAGGGCAAGACCGTGATCGCCATTGCCCATCGACTGTCGACGATCGCGGCCATGGACCGGCTCATCGTCATGGATGAGGGCCGCATCATCGAGCAGGGCACCCACGCCGAGCTGCTCGGGAGGAACGGGACCTATGCGCGATTGTGGCATCACCAGAGTGGCGGTTTCCTGGGGGAGGATCAGGGGGTGGTTGAGGCGGTGGAGTAG	MRQIVLEITMLRLFEQRLDPFPPDEVPPPPDGLARFLWACTRGARGYILAFALLSAGVSIYEAWLFSFLGQVVDLLSTWQAGGDAAAQESRVLWGIGIILVASVGLVALRTMVQHQILAINLPLRLRWDFHRLMLRQSLSFFSDEFSGRVTTKVMQTALSVREVLFTIIEIVPGIGVYFIAIIALAGGFDLKLMLPFIAWMVLFGVAMRYFVPRLEKVGQEQANARSSMTGRVSDAYTNITTVKLFSHSKREAHFARAAMEDFKQTGFRQMRLVSQFEIVNQALVVGLIMGSGGYALWLWHQGEVGTGAVAAITAMALRINGMSHWIMWQMTSLFENIGTVQDGMATLTRGPKVQDAPDAGVLVTTGGAVTFDKVRFNYNGERQVLDGLSLSIRPGEKIGLVGRSGAGKSTLINLLLRFYDVDSGEIRIDGQNIAHVTQDSLRSAIGMVTQDTSLLHRSIRDNIAYGRPDATDAQIRSAAISAQADGFISQLSDKQGHCGYDTLVGERGIKLSGGQRQRIAIARVMLKNAPILLLDEATSALDSEVEVAIQESLDEMMEGKTVIAIAHRLSTIAAMDRLIVMDEGRIIEQGTHAELLGRNGTYARLWHHQSGGFLGEDQGVVEAVE	PGPT0029145_509	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029145-vcaM-K18893	NA	NA
D1-36_02582	735			hypothetical protein	ATGAAAATCGGAATTATCGGCGCAGGCAACATTGGGGTGACCCTTGCCCGCAAACTCGCGGCGTGCGGGCATGACGTCAAACTGGCGAACTCAAAAGACCCTCAAAGCCTCCAGAAACTTGCCAGCGAAATCGGCGTGCATGCCGTGACCAAGGACGATGCGGTGTCCGGCGTGGACGCTGTAATCCTGTCGATTCCATTTGCTAGATACCCTGACCTCAAGCAGACGTTGAGCAATGCTTCCCCGAAGACCGTCGTCATCGATACTTCCAATTACTATCCGGGTCGCGACGGGGCAATCAAGGAAGTTGAGGACGGCAAGCCCGAGAGCGTCTGGGTGAGCGAACAGCTTGGTCGCCCGGTGGTCAAGGCATGGAATGCCCTGCTCGCCGCCACGCTTGCCGACAAAGGCCAGCCGGCGGAAGCTTCAACGCCCATCGCGATACCCGTGGCTGGGAACGATGCCGCCGCTGTGGCGCTAGCGCAGGATCTTGTCGAGCAGACAGGCTTTACCGCTTTTGCCGCCGGTAGCCTCGAAGCCTCATGGCGTCAGCAGCCAGGCACACCGGCTTACTGCACCGAGTTGACACTGCCGGAGCTGGAAATGGCGCTGGACGCGGCTGAAAAGGCACGGGCACCGGAGAACCGCGACGCACTGATCGCCAGGTTCATGGATCCCGGCAGTCAGCTTACCCATGAGCAGATTGTGGCCCTGAATCGCACGATGACAGCCTGA	MKIGIIGAGNIGVTLARKLAACGHDVKLANSKDPQSLQKLASEIGVHAVTKDDAVSGVDAVILSIPFARYPDLKQTLSNASPKTVVIDTSNYYPGRDGAIKEVEDGKPESVWVSEQLGRPVVKAWNALLAATLADKGQPAEASTPIAIPVAGNDAAAVALAQDLVEQTGFTAFAAGSLEASWRQQPGTPAYCTELTLPELEMALDAAEKARAPENRDALIARFMDPGSQLTHEQIVALNRTMTA				NA	NA	NA	NA	NA
D1-36_02583	627			hypothetical protein	ATGAGCAGGGCTCTTGTGCTCGCCGGATGCAAAACCTTAGGTGGCCGGGTAGGGCAGGCTATCCGTAGCGTCAATCCGACGCGGCTGCTCCAACGCCAGCGCATACGCATTTCGTTCGACATCGACGACACGCTCGCCTGCCAACTCCACCACTGCGATGTCGAGCGAAGCCGGTTGCCGGCCTGTGTTCACCGCTGGCTGGGAGAGCCGCTGCGCATGGGTACGCGCTCGCTGATCCGGGAGCTGCGTCGCCAGGGTTGCAGTATCTGGGTCTACACATCATCTGGGCGCACGCCGTCCTACATCAGGCGTTGGCTGCTGCTGTACGGCATCCGCGTCGACGGTGTCGTCAACAGCGTGCTGCACAACCGCGCCTTGACGACACATGGGCTGTCCAACTCACCCTCCAAGTACCCGCCGGCGTTCGATATCGACTTGCACGTCGATGATTCCGAGGGTGTGCAGATTGAAGGGGATGACCACGGGTTTCGCGTTGTCGTGGTGCATCCGGAGGATGAAGGCTGGGCGCAGAAGGTGCTGGATGCGGTGGCCATGGTCCAGGCGCAGCTTGATTGGCAGCAGAGGCCGGTCCAGCGGGCTCCGTTGCGCCGGGTTACGACCGGCTAG	MSRALVLAGCKTLGGRVGQAIRSVNPTRLLQRQRIRISFDIDDTLACQLHHCDVERSRLPACVHRWLGEPLRMGTRSLIRELRRQGCSIWVYTSSGRTPSYIRRWLLLYGIRVDGVVNSVLHNRALTTHGLSNSPSKYPPAFDIDLHVDDSEGVQIEGDDHGFRVVVVHPEDEGWAQKVLDAVAMVQAQLDWQQRPVQRAPLRRVTTG				NA	NA	NA	NA	NA
D1-36_02584	699			hypothetical protein	ATGCCTGCTACGCATCGCCTTGATTTGCCTGCGATTGAGCGCGCACTGCGCGAAGTGCAAAAGAGCTTCGCCGCGCTGAGCCGGCACTTCACGGAGCCGCGGGACCCCCTGACGGATGAAGTGCTGCAAAATGTGCTTGAAGGCTATGGGCTGATTGACGACTATGTGGCCCGCGGCGTCGACCTGTTCGATCTCCAGCAACTGAACCTGATGCTCGAGATCAACGCCACGGTGCTGTGTGGCCGAGACCCCGTACGCCGGCTGGAATACGCCCAGCACCTGGCGGCGACCGAGGCGCATTTCTTCAACAACGTTGAGGGCGGCATCAAGGATTTGTACAACTGGTATTGCGCCTATCGCAGTGAGTCGGTGTGGAAGCGTGCGGCCGGCGTCTATGTACGCATTCTCAGCAAGCCGCAGTTGTTCATCGAGGGCAACAACCGCAGTGGGTCGCTCATCGTCAGCTATCTGCTCATGCGCGCGGGGCTTCCTCCTTTTGTGCTGTCTTTGGAAAACGCCGAGGGCTACTTCAATCCGTCCTCGGTCATACGCAACTCCGCCAAGCATGGCGTCAAGGCTTTGTATGAATTGCCCAAGATCAAGAAGAAATACGCAGCGTTCCTCGAAGAACAGGCACCGGATCCAATGAAATTTTTCCTCGAGGGCAAATCCTTGCCCGTCTCACAGGGCCGTCACTGA	MPATHRLDLPAIERALREVQKSFAALSRHFTEPRDPLTDEVLQNVLEGYGLIDDYVARGVDLFDLQQLNLMLEINATVLCGRDPVRRLEYAQHLAATEAHFFNNVEGGIKDLYNWYCAYRSESVWKRAAGVYVRILSKPQLFIEGNNRSGSLIVSYLLMRAGLPPFVLSLENAEGYFNPSSVIRNSAKHGVKALYELPKIKKKYAAFLEEQAPDPMKFFLEGKSLPVSQGRH				NA	NA	NA	NA	NA
D1-36_02585	819	pstB3	COG1117	Phosphate import ATP-binding protein PstB 3	TTGAACGTATCCACTGCGCAAATAGCCGCTCCGTTTGTCACCCAGGCGCCTGTAGTCATGGACTGCAAACTGGACAAGATTTTCTATGGCAACTTCATGGCGGTGCGTGACAGCCACGTACCGATCGAGAAAAACAAGATCACCGGCTTCATCGGCCCATCCGGCTGCGGCAAGAGCACCGTGCTGCGCAGCCTCAACCGGATGAACGATCTGGTGAAGGGGTTCCGCTTCGAGGGCCACGTGCATTTTCTTGGCCAGGACGTCTACGGCAAGGGTGTCGACCCGGTGGTGGTGCGCCGTTATATCGGCATGGTGTTCCAACAGCCGAACCCGTTCTCGATGAGCATCTTCGACAACGTCGCGTTCGGCCTGCGCCTCAATCGCTATAAAGGTGACATTGGCGACCGGGTCAAGCATGCGCTGCAAGGCGCGGCGCTGTGGGACGAGGTCAAGGACAAGCTCAAGGTCAGCGGCCTGTCGCTCTCCGGTGGCCAGCAACAACGGCTGTGCATTGCCCGCGCCATCGCCACCGAGCCGGAAGTGTTGCTGCTGGATGAACCCTGTTCGGCGCTCGACCCGATCGCTACCCGGCGGGTCGAGGAACTGATGGTCGAGTTGAAAAAGGACTACACCATCGCGCTGGTGACTCACAACATGCAGCAAGCCATCCGCGTTGCTGACACCACAGCGTTTTTCTCGGTGGACATTTCCCAGGGCACACGCACCGGCTATCTGGTGGAAATGGGCCCGACGACGCAGATTTTCGATAACCCCCGTGAACAGATGACCGGCGATTACATCAGCGGCAAGTTCAGCTGA	MNVSTAQIAAPFVTQAPVVMDCKLDKIFYGNFMAVRDSHVPIEKNKITGFIGPSGCGKSTVLRSLNRMNDLVKGFRFEGHVHFLGQDVYGKGVDPVVVRRYIGMVFQQPNPFSMSIFDNVAFGLRLNRYKGDIGDRVKHALQGAALWDEVKDKLKVSGLSLSGGQQQRLCIARAIATEPEVLLLDEPCSALDPIATRRVEELMVELKKDYTIALVTHNMQQAIRVADTTAFFSVDISQGTRTGYLVEMGPTTQIFDNPREQMTGDYISGKFS	PGPT0002615_1344	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
D1-36_02586	912	pstA	COG0581	Phosphate transport system permease protein PstA	ATGACTGATCTCACTGCTGCAACAGATTTGACGGCTCCAGCGGGCGCGATGCCCAGCCTGCAACGCAGGTTCGAGGGCCGGGCCCTGCGCAGCCTGATCTTGACCACCCTGGTCTGGGCGGGGGCACTGCTGGCAAGCGTACCGCTGATTTCGGTGCTGTACATGCTGATCACCCGCGGCGGTGCGCGCTTGAACCTGGAAGTGTTCACCGAGCTGCCGCCGACAGGCTTCGAGATGGGCGGCGGCTTCGGCAACGCCATGGCAGGCACCTTCGTAATGGTGGGTATCGCGGCGGCCATCGCGGTGCCCGTCGGCATCATGGCAGCGATCTTCCTCGCAGAGCTGGGGCCGGACAGCAAACTGGCAAACGCCGCGCGTTTTGCGGCCAAGATGCTCACGGGTCTGCCATCGATTCTTGCCGGTGTCTTCGCTTATGCCCTGGTGGTGATGACCACCGGCACGTATTCGGCACCGGCCGGTGGCGTGGCGCTGGCGGTGCTGATGCTGCCTATCGTCGTGCTGACGGCGGAAGAGTCGATGCGGATGGTGCCCAAGATCATGAAGGACGCCGCCTATGGCATGGGCTGCACCCGCTCGCAGGTGATCTGGAAAATCATCTTGCCCACCGGCATGCCCGCGATCCTCACCGGCGTGATGCTGGCGGTAGCGCGCGCCGCCGGCGAAACCGCGCCGTTGCTGTTTACCGCGCTGTTCAGCAACTACTGGATCTACCACCAAGGCAACCTAGAGGTCATGAATCCGACGGCATCGCTTGCCGTGCTGATCTACAACTTTTCCGGCATGCCTTTCGACAACCAACTGGAGCTCGCCTGGGCGGCCTCGTTGGTGCTGGTGATGATCGTGCTGGTCGTGAACATCATCAGCCGTATTTTCGGCAAGCCCAAGTATTGA	MTDLTAATDLTAPAGAMPSLQRRFEGRALRSLILTTLVWAGALLASVPLISVLYMLITRGGARLNLEVFTELPPTGFEMGGGFGNAMAGTFVMVGIAAAIAVPVGIMAAIFLAELGPDSKLANAARFAAKMLTGLPSILAGVFAYALVVMTTGTYSAPAGGVALAVLMLPIVVLTAEESMRMVPKIMKDAAYGMGCTRSQVIWKIILPTGMPAILTGVMLAVARAAGETAPLLFTALFSNYWIYHQGNLEVMNPTASLAVLIYNFSGMPFDNQLELAWAASLVLVMIVLVVNIISRIFGKPKY	PGPT0002610_2524	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002610-pstA-K02038	NA	NA
D1-36_02587	966	pstC	COG0573	Phosphate transport system permease protein PstC	ATGAACAAACCTTTTGTCGTACCGGTTAATCCGGACTCTGCCTGCCAACCACCATCGGCGAAGGACTTCCTGGTTGATCGCACCTTCCGTGCGCTTGCACGCATCGGGGTGGTTCTGATCCTGGCGCTGGTATTTGCGCTGGTGTTCGAGGTGGGGCGCAAGGCGCTTCCGGGCATGGAGAAGCATGGCACGGATGTGCTTTTCGGCACTGTCTGGGACGTTAACCAAGGTAAATACGGCATCCTGCCGGCGATCTGGGGCACGCTCTACAGCGCCTTGATCGCATTGCTCATTGCAGGTTTCTTCGGCGTCAGCATGGCGATTTTCCTGACCCAGGACTTTCTGCCCCCCAAGCTCGCCGCCATTTTTCGCACCATCGTCGAACTGCTCGCGGCTATCCCCAGCGTCGTCTACGGCCTATGGGGCATCTACGTGGTCATCCCTGCGATCCGTCCGCTGACGACTTGGTTGAACAGCGAACTGGGCTGGATCCCGTTCTTCGGCACTTCCTTGAGCGGGCCGGGGCTGCTCCCTGCGGCGCTGGTGCTGGCCATCATGATCCTGCCAACCATTGCCGCCGTTTCCCAGGATGCGCTCACGGCCGTACCGATGAAAACCAAGCAGGCCGCCTACGGCATGGGCACCACCCACTGGGAAGCGATTCTCAAGGTGATGGTGCCGTCTGCCGCCACCGGCATCTTCGGCTCGCTGGTCCTTGGCTTGGGCCGGGCGCTGGGTGAAACGATGGCGCTGGCCATGCTGGTCGGTAACGCCAACACGCTTTCGCTCTCGCTGTTCGCACCGGCCAATACCCTCGCGGCGCTGTTGGCGCTGAACTTCCCCGAGGCCGGGCCGAACGAGATCGAGGTGTTGATGTATGCCGCACTGGTGTTGATGTTCATCACGCTGCTGGTGAACATCATCGGTTCGATGATCATGATGTACGCCCAACGGGGTAACAAGTGA	MNKPFVVPVNPDSACQPPSAKDFLVDRTFRALARIGVVLILALVFALVFEVGRKALPGMEKHGTDVLFGTVWDVNQGKYGILPAIWGTLYSALIALLIAGFFGVSMAIFLTQDFLPPKLAAIFRTIVELLAAIPSVVYGLWGIYVVIPAIRPLTTWLNSELGWIPFFGTSLSGPGLLPAALVLAIMILPTIAAVSQDALTAVPMKTKQAAYGMGTTHWEAILKVMVPSAATGIFGSLVLGLGRALGETMALAMLVGNANTLSLSLFAPANTLAALLALNFPEAGPNEIEVLMYAALVLMFITLLVNIIGSMIMMYAQRGNK	PGPT0002620_2681	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
D1-36_02588	1032	pstS_1	COG0226	Phosphate-binding protein PstS	ATGAAAAGTTTGATGAAGTCTGCTGCGCTTGCCGTTACGGTTTCTCTTTGTGCCAGCTCGGCATCCTTCGCCGCAGAGAGCGTCCGCCTGACGGGCTCTGGCGCCAGTTTCCCCGCGCCGATCTACCTCACCTGGTTCAAGGATTTCAGCAAGAAGTCCGACGGTGTCACCGTGGATTACCAATCCAAGGGCAGCGGCGCCGGGGTTCAGGATTTCCTGAACAAGACCGTCGATTTCGCCGCCAGCGACTCGGCCATGAAAGACGAAGACATCGCCAAGGTCGCCGAAGGCGTGCAGTTGCTGCCGATGACGGCCGGTGAAATCGTCCTGGCCTATAACCTGCCGGGCAATCCCAAGGGCCTGAAGCTGCCAAGGGACGTATACTCCAACATTTTCCTGGGCAAGATCACCCGTTGGAACGACCCCCAGATCGTCGCCGCCAACCCGGACCTGAAACTGTCCGATACGCCGATCACCGTCGTTGTGCGTGCGGATTCCAGCGGTACGACTGCGGTGTTTACCAAGCATTTGGCGACCATCAACCCTGAGTTCAAGCAGGCGCTGGGCGAGGGCAATACGGTCAACTGGCCGGCCAGCGACAAGTTCATCAAGTCGCCCAAGAACGATGGTGTGACGGCCACCGTGCGCCAGACCCCGGGTGCGATTGGCTACATCGAATACGGCTTCGCCAAACTCGCCAAGGTCGACTTTGCCCAGTTGCAGAACAAGGCCGGCCAGTACGTCGTGCCGAACGCCGAAAGCGGTGCCGAGGCCTTGGCTGCGGTGAAGATGCCGCAAAGCCTGGTGTCGTGGCTGCCTGATCCGGACGGTGCCAAGTCCTACCCGATCACGTCCTACACCTGGATGATTTTCCGCAAGGACAACGGCAATCCGGCCAAGGCCAAGGCCATGCGTGAAATGGTCGAATACAGCCTGACCGAAGGCCAGAAGATTGCCGACTCGATGGGTTACATCCCACTGCCGGCCTCCGTCGTCGAGCAGGTTCGCAAAGCGTCCGCCAACATTCAGTGA	MKSLMKSAALAVTVSLCASSASFAAESVRLTGSGASFPAPIYLTWFKDFSKKSDGVTVDYQSKGSGAGVQDFLNKTVDFAASDSAMKDEDIAKVAEGVQLLPMTAGEIVLAYNLPGNPKGLKLPRDVYSNIFLGKITRWNDPQIVAANPDLKLSDTPITVVVRADSSGTTAVFTKHLATINPEFKQALGEGNTVNWPASDKFIKSPKNDGVTATVRQTPGAIGYIEYGFAKLAKVDFAQLQNKAGQYVVPNAESGAEALAAVKMPQSLVSWLPDPDGAKSYPITSYTWMIFRKDNGNPAKAKAMREMVEYSLTEGQKIADSMGYIPLPASVVEQVRKASANIQ	PGPT0002625_3631	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
D1-36_02589	759			hypothetical protein	ATGAGCCATCCCGATGGGCACGACAGCACGCTCGATCAATTGACCTGGCGGGCGACCCTTGACCGCAATCTGGACAAGAAAGACCTGTTGCTTCACATGCTCGCCGAACAGCAGTTCGTGGTCGCGCAGCTGCGAGCCCGCAATATGGATCATCGGGACTATCTGCTCGCGGTGATTGATTCAGCATCGGCCGTGAGCGAAGGCGCAGGCCAACCCTCCCCCTTCGATGCCCATCGAATGCGTCGCGTCATTACCGAGGCGGCCGCGAGGGGCCATTGGGGCAAGGCAGGCGAACGTGGCCGGAGTCAGGGGATCGCCGCTCATTACGATGCCCAGGGCTGCGCCGCGATCGTCGTCGATATCGAGATGAGCGATGAGCGCCGCTTGATTGTTCATCACGCGGTCGTAGTGGCGGACCTGGGTTATGTAGAGAGCCCAGGCCGTGTGCGCTCGCAGCTTGAAGGCGCCTGGCTGATGGGCGTGGCTCTGGTGACGTCTTGTGATATCGGGCCCGCGATGGGCAATCGTTGCGCGATACTGGCCAACCGTGCGAGTTGGCCACTGGTTCCATGGTTGCCAGGCGAAATCGCCGTGCACCTGATCAACCCAACGGGTGCTGTCAATGTCGGGCAGCCCAGTCAGGTGAGCTACGTACCGGTCGTCCGGGCCCTTTGCAGCGCAATTTGCCAGGGCCCGGACAACCGAGCCAGCGACGCGCGGCTCAGCAGCCAGGTGCTCGAAAAGGCCGGCGAACGTTGA	MSHPDGHDSTLDQLTWRATLDRNLDKKDLLLHMLAEQQFVVAQLRARNMDHRDYLLAVIDSASAVSEGAGQPSPFDAHRMRRVITEAAARGHWGKAGERGRSQGIAAHYDAQGCAAIVVDIEMSDERRLIVHHAVVVADLGYVESPGRVRSQLEGAWLMGVALVTSCDIGPAMGNRCAILANRASWPLVPWLPGEIAVHLINPTGAVNVGQPSQVSYVPVVRALCSAICQGPDNRASDARLSSQVLEKAGER				NA	NA	NA	NA	NA
D1-36_02590	1008			hypothetical protein	ATGTCACTCAATCCTATCTTGTTCATGGGCGGTTCCGGCGCAATCGGCCACCACACAGCCCGAGCGCTACGCGCCGCTTATCCAGACGTGCCGCTGCTGATTGGTGGGCGGGACCTTGCGAAGGCCCAACGGGTCGCAGCGCAGATGGCCGGGGCGCAGGCCGTGGTGATCGATTCCAGCGCAGACGACCTGGGCCTCGGCGATCGTCCGGTCAGCGCCGTGGTGGTTTTCTACATGGACCACGCCCTCGCCGGATTGCGCTATGCGCAAAAGCGCGGGGTGCCGCACCTGAGCATATCTTCCGGGGTCTTCGAGATCGCCCCCGAAATCGCAATGTACATGCATGCGCCAGGCGCCTCGCCCATTGTTCTGGGTTACGAATGGATGGCCGGCGCAACGACGGCGGCGACGTTGAGCGTGGCCCGGGAATTTGGCCGGATCAATGATATCCGCATCGATGCGCTGGTCGATGAGCAGGACACTGGCGGGCCGACCGTCGCCAGCGATTTCGAACACCTCAACAAGATGCTCCCCGCAGCGCTGACAAGGCGCGACGGGATGTTCGTATGGCGTGAAGGCGAACATTCCAATACGCAGTTCCAAGCCGTGGACGGTACGTCAATCGACGCCGGCGGCTTCTCATCCATTGATGTCGCCGGCCTGGCGGCTGCGACGGGCGCGGCCAATGTCCAGTTCAACATTGGCATCGGGGTGAGCTCCAGTCGGCGACAAGGACAACCGATGTCCACCGAAATCATCATCGAGCTTGCCGGCGCGGACCTGAAAGGCGAACCGCTGCGCACCCGTCACGCCGTCGTTCACCCGGCGGGCACGGCGCCGCTGACCGGCCTTAGCGTCGCCATGCTTCTTGAACGCCTGCTTGGGTTGGATGGTCAGCCGGTGACGTCGGCAGGGCTTTATTTTCCCTATCAGTTGTTGGACGCTGCGGCGTACCTGGAACGCTTGAAACAAGAGGGCGGCGAGTTGCGCCGGTTGCAGGTGCAATGA	MSLNPILFMGGSGAIGHHTARALRAAYPDVPLLIGGRDLAKAQRVAAQMAGAQAVVIDSSADDLGLGDRPVSAVVVFYMDHALAGLRYAQKRGVPHLSISSGVFEIAPEIAMYMHAPGASPIVLGYEWMAGATTAATLSVAREFGRINDIRIDALVDEQDTGGPTVASDFEHLNKMLPAALTRRDGMFVWREGEHSNTQFQAVDGTSIDAGGFSSIDVAGLAAATGAANVQFNIGIGVSSSRRQGQPMSTEIIIELAGADLKGEPLRTRHAVVHPAGTAPLTGLSVAMLLERLLGLDGQPVTSAGLYFPYQLLDAAAYLERLKQEGGELRRLQVQ				NA	NA	NA	NA	NA
D1-36_02591	636			hypothetical protein	GTGCAAAAAGAAATCGAGCCGACCCCTGTCAGCGCTCCGTCCCGCAGGCTTTCCAAAGCCGAACGGCGACGCCAGCTACTGGACACTGCCTTGTTGATCGTGCGCGAGGAAAACGCCGACCGACTGACCCTGGGCCACCTGGCCGTCCGCGCCGGGGTGTCCAAGCCCGTCGTCTATGATCATTTCGGGACACGCTCGGGGCTGTTGATCGAGCTCTACAAGTGGATCGATACCGAGCGGGTCAACGCGTTCCGGGACGCGATGTCCAGCACCACCCTAAGCCTTGAGCAAACCGCCCAGGCTCTGGCCAGCGCCTACATCCAGTGCGCGGCGGACCATACCGACGAGTTTCACGCGGTGGGCGCGGCCTTGGCCGGCAGTGACGAAAAGGTGGCGTTCCAGGAATTGCTCGACAATTGCGTAAAGATGTTCATGGCCGTTCTCAAGCCCCACGCCCGTCTGGCAGAAGCCGAACTTGAGCGGTGCTGCATCGGCCTGGTTGGCGCGGGAGAAGCGCTCTCCGGCGCCTTGGTTAGGGGGCGACATGGCGAGGACGAAGTGATCGAAGCGTTCACGGCATTGATACAGGGCGTTCTGAAGCCGATGTCCTCGCAGCCTCAGGGGCCTGCTGATTAG	MQKEIEPTPVSAPSRRLSKAERRRQLLDTALLIVREENADRLTLGHLAVRAGVSKPVVYDHFGTRSGLLIELYKWIDTERVNAFRDAMSSTTLSLEQTAQALASAYIQCAADHTDEFHAVGAALAGSDEKVAFQELLDNCVKMFMAVLKPHARLAEAELERCCIGLVGAGEALSGALVRGRHGEDEVIEAFTALIQGVLKPMSSQPQGPAD				NA	NA	NA	NA	NA
D1-36_02592	432			hypothetical protein	ATGCACGACCCATACAATCTGGCCCGTTTCGTTGACGCGCAACACCCGGTATTCAGTCGCGTCATGGATGAGTTGCGTGCGGGCCGTAAGACGAGCCACTGGATGTGGTTCATATTCCCGCAATTGCGCGGGCTTGGCCGTTCCGAAATGGCCAGTCGCTTCGCCATTTCCGGCCTTGCCGAGGCCCGCGCGTATCTGCAACACGATGTGCTCGGTCCGCGACTGGGGGGCTCTGTTGAAGCGGTGTTGCAACACAGCGACGTCAGCGCCGAGCGCATATTCGGCTCGCCCGATGATATGAAGTTTCGTTCCTGTCTTACGCTGTTCGTCAGCGCCCAGTCGGGCTCTCCTTTGTATCAACAGGCGCTCGACCAGTTCTATTCCGGCGAGCCGGATCGCAAAACCCTCGCCCTGCTTGAGCAACAGGTATGA	MHDPYNLARFVDAQHPVFSRVMDELRAGRKTSHWMWFIFPQLRGLGRSEMASRFAISGLAEARAYLQHDVLGPRLGGSVEAVLQHSDVSAERIFGSPDDMKFRSCLTLFVSAQSGSPLYQQALDQFYSGEPDRKTLALLEQQV				NA	NA	NA	NA	NA
D1-36_02593	693	hchA		Protein/nucleic acid deglycase HchA	ATGAAAATTTTGATGGTACTTACATCTCATGATCAGTTGGGCGACACCGGCAAGAAGACCGGTTTCTGGCTGGAAGAATTCGCGGCCCCTTATTACGTGTTCATCGACGCCAACGCCGCGGTGACGCTGGCGTCCCCGAAGGGCGGGCAGCCCCCTCTGGACCCCAAGAGCGATGAGGAACAAGCCCAGACCGACGCCACGCGGCGCTTCGCCACGGATACCAGCGCCCAAGCGGCACTGGCCGATACCGTGCCCCTGGGCGAGGTCGATCCCTATGATTTCGATGCGGTGTTCTATCCTGGCGGCCACGGCCCCCTGTGGGATCTCGCCGAAGACACCGACTCCAAGACCCTCATCGAAGCCTTTTATGCATCGAACAAACCCATCGCCGCGGTCTGCCATGCGCCTGGGGTGTTCAAGGATGTCAACGCACCGGATGGCGAGCCTGTGGTGAAAGGTAAAAAAGTCACCGGATTCACCAACTCCGAAGAAGAGGCGGTGGGCCTGACGCAAGTGGTGCCGTTTTTGGTGGAGGACATGCTCAAGGCCAAAGGCGCCCAATACTCCAAGGGAGCGGACTGGGCGAGTCATGTGGTGGAGGATGGGCACCTGATCACCGGCCAGAATCCGGCCTCATCGCAAGCGGCCGCCCATGCGTTGCTCAAGCGGCTGAAGCAAGAGCAGAGCGCTTGA	MKILMVLTSHDQLGDTGKKTGFWLEEFAAPYYVFIDANAAVTLASPKGGQPPLDPKSDEEQAQTDATRRFATDTSAQAALADTVPLGEVDPYDFDAVFYPGGHGPLWDLAEDTDSKTLIEAFYASNKPIAAVCHAPGVFKDVNAPDGEPVVKGKKVTGFTNSEEEAVGLTQVVPFLVEDMLKAKGAQYSKGADWASHVVEDGHLITGQNPASSQAAAHALLKRLKQEQSA				NA	NA	NA	NA	NA
D1-36_02594	1323			hypothetical protein	ATGAGTACGACTTCCTACTTGCATCGGCTGAGTCTCGCCCTCAACGCCCGCGACGGCGAGCTGCGTCCGGCGCTGTGCGGGTTCCTGCTGTTTCTTTGCCTGTTTACCGGTTACTTCATGCTGCGTCCGATCCGCGAATCGATGGGCATTGCAGCAGGCGTCGAGAACTTGCAATGGCTGTTTACCGCGACCTTCCTGGTCATGCTCGCGGCCGTTCCGCTGTTCGCCTGGCTCAGTTCCCGGGTGCCGCGATTGCGTCTGATCGACTGGGTCTACGGCTTTTTCGGCATTAACCTGTTGATGTTCGTCGAGTTCTTTCAATTCCAACCGGACAGCGTCTGGCTGGCCCGGGTGTTTTATGTCTGGATATCGGTTTACAACCTGTTCGTCGTGTCGGTGGCCTGGAGCTTGATGGCGGATGTATTCGACAGCGAGCAGGCCAAGCGCTTGTTCGCGTTCATCGCCGCCGGCGCCAGTGTCGGCGGCCTGTTGGGGCCGGCCCTGAGCGCTTTGCTTATCGACATCGTGGGTGCGTCAGGCTTGATGCTGTTGGCGGCGGTGTTGCTCGGTGCGACGCTGGTGTTGAAACGGACCTTGATGAACTGGCGTGAAGAAGGTGGGGCGGGGCGGCCCGGTGCTGCGCCCACGCAAAGCCCCCGACAGCCGTTGGCCGGCAATCCGTTGAGTGGGATGGTTGCCGTGCTTCGCTCGCCTTACTTGTTGGGCATCGCCGGTTTCGTGGTGTTGTTGGCGACGGTCAGTACGTTTCTCTATTTCGAGCAAGCGCGTCTGGTGGCCGAACACTATCCGGACCGCGCCTCGCAAGTTCGCATCTTCAGCACCATCGACATCATCGTGCAGGCCGGTGCGTTGCTGTCCCAGCTATTCATCACCGGCAGAATCGCACCGAAGCTTGGCGTGCGCGCGTTGCTGGCTATCGTCCCGTTGCTGATGTGCATCGGCTTCCTGGGCCTGGCCCTGGCGCCTGGGTTTGCGCTGCTGGCGACCCTGATGATTGTGCGACGCATCGGCGAATACGCATTCGTGCGGCCGGGCCGGGAGATGCTCTTCGCACCGCTGGATGCTGAAAGTAAATACACGGCCAAGAATTTCATCGACACCGTGGTCTATCGCGCCGGCGACGCCATGAGCGGCTGGGCCAAGAGCCTGCTCGACCAACTGGGCCAAGGGGCAGGGGTGGCGGCAATGGTGGGTGCGTGTTGCGCGTTACTGTGGGGTTACCTGGGCTGGCAACTGGGGCGACAGGCGGATTACGCCGCATCAAGGGAACTGCGCCTGGCGGCCATTTCGGCCAGGACATGA	MSTTSYLHRLSLALNARDGELRPALCGFLLFLCLFTGYFMLRPIRESMGIAAGVENLQWLFTATFLVMLAAVPLFAWLSSRVPRLRLIDWVYGFFGINLLMFVEFFQFQPDSVWLARVFYVWISVYNLFVVSVAWSLMADVFDSEQAKRLFAFIAAGASVGGLLGPALSALLIDIVGASGLMLLAAVLLGATLVLKRTLMNWREEGGAGRPGAAPTQSPRQPLAGNPLSGMVAVLRSPYLLGIAGFVVLLATVSTFLYFEQARLVAEHYPDRASQVRIFSTIDIIVQAGALLSQLFITGRIAPKLGVRALLAIVPLLMCIGFLGLALAPGFALLATLMIVRRIGEYAFVRPGREMLFAPLDAESKYTAKNFIDTVVYRAGDAMSGWAKSLLDQLGQGAGVAAMVGACCALLWGYLGWQLGRQADYAASRELRLAAISART				NA	NA	NA	NA	NA
D1-36_02595	1056			hypothetical protein	ATGTGGAATAGAACGATCACCCCCGCCGTTGGCTTTTCATACAACATCAGCAAGCTCATGAGGCTGGCCCGTACGTTGACGGCCGGCGTCGCGCTCCTCAGTGCGATGAGTCTTGAAGCATCGGATCGTGCCGCGCCGAAACCCGACTGGTCGGCCCGTGACATGCCCTCCCAGAAGGGCCGGATCGTGCTGGTGACCGGCGGCACCAGCGGCATGGGCTACGAAGATGCGCTGGCGTTGGCGCGCGCCGGCGCCGAAGTGATTATCGCGGCGCGTAACCCGGAGCGGGGCGCGGAGGCCATCAAGCGTATCCGCCAGGCCGTACCCGACGCCAAGTTGCAGTTCGAGCCCGTCGACCTGGCCAACCTGTCATCGGTGCGCGGCCTGGCCGAGCGGCTCAACCAGCGATTGCCGCGCCTCGACGTGCTGATCAACAACGCCGCCATCATGGCGCCGCCGGAGCGGGGCACCTCCGCCGATGGCTTTGAGCTTCAGCTGGCGACCAATTACCTGGGGCACTTCGCGCTGACTGGCCTGCTGGTTCCGCTTCTGCGCCAAAGCGACGACGCGCGAGTGGTAAGCCTTTCCAGCATCGCGGCCACGCGCGGCGCGGTGAATCTCGATGACTTGCAGTCCGAGGAGAAATACGACCCTTATGCAGCCTATGCCCAGTCAAAACTGGCTGTGCTCCAGTGGTCGTTCGAATTACAACGGCGTAGTGACGCGCAAAAATGGGGTATCCGCAGCATTGCCGCCCATCCCGGCGTGGCCGTCACCGAACTGATCGCCCGCGGCCCGGGCGTCAATAGCGTGTTCGGCCAGCGCTGGGCGAAGGACCGCGATGCGTACCATTCCGCGGCGCAAGGTGCGCTGCCCACGCTCTACGGGGCCACCGCCGAGCAGGCCGTTGGCGGTGCCTACTACGGCCCGACGGGCGATGAGGAAAAACGCGGCCCGCTGGGGTTCGCCAAGACACCGCCAGCCGCGACCAACGAAGCGGACGCCGAACGGCTCTGGGCCGCCTCCGAACGTCTGACCGGCGTTACCTATCGCTGA	MWNRTITPAVGFSYNISKLMRLARTLTAGVALLSAMSLEASDRAAPKPDWSARDMPSQKGRIVLVTGGTSGMGYEDALALARAGAEVIIAARNPERGAEAIKRIRQAVPDAKLQFEPVDLANLSSVRGLAERLNQRLPRLDVLINNAAIMAPPERGTSADGFELQLATNYLGHFALTGLLVPLLRQSDDARVVSLSSIAATRGAVNLDDLQSEEKYDPYAAYAQSKLAVLQWSFELQRRSDAQKWGIRSIAAHPGVAVTELIARGPGVNSVFGQRWAKDRDAYHSAAQGALPTLYGATAEQAVGGAYYGPTGDEEKRGPLGFAKTPPAATNEADAERLWAASERLTGVTYR				NA	NA	NA	NA	NA
D1-36_02596	261			hypothetical protein	ATGAACATTCAAACCTTGTCGGTCGCAAGTCTGCTGGCAGTGATCACGTTGAGCGGTTCGCCTCTGTTTGCCAAAGAGCAAACCCATATTCCGGCTTATGAATACGGCATGCCGCTGGACGTTGCCCAAGCCCTGCGTATCGAGGAGCCGAAATCAGCCGTATGCGAGGTCGCGCAGGCAAAGATGACCTATGTAGACACCCAAGGACAGATCCGGCACGTCAGTTTCCTTCAGCAGACTGACGCCTGCGCCATTCAGTAA	MNIQTLSVASLLAVITLSGSPLFAKEQTHIPAYEYGMPLDVAQALRIEEPKSAVCEVAQAKMTYVDTQGQIRHVSFLQQTDACAIQ				NA	NA	NA	NA	NA
D1-36_02597	795			hypothetical protein	ATGTGCCGGCATCTTCGCGAGCAGGCTCGCTCCCACAGGGGGGGGTTGTGTTGCCCTCGGGATTCAAGTCAGCCGCAGATCCAATGTGGGAGCGAGCCTGCTCGCGATGGCGGTGCTTCAGTTGATGAAGATGCTGAATGTGCCGGCGTCTTCGCGAGCAAGCTCGCTCCCACAGGGGGTTGTGTTGCCCTTGGGATTCAAGTCAGCCGCAAATCCGGTGTGGGAGCGAGCCTGCTCGCGATGGCGGTGCTTCAGTTGATGAAGATGCTGAATGTGCCGGCGTCTTCGCGAGCAAGCTCGCTCCCGCAGGGGGGGTGTGTTGCCCTCGGGATTCAAGTCACCCGCAGATCCAATGTGGCAGCGAGCCTGCTCGCGATGGCGGTGCTTCAGTTGATGAAGATGCTGAATGTGCCGGCGTCTTCGCGAGCAAGCTCGCTCCCACGGGGTTTGTGTTGCCCTCAAGATTCAAGTCACCCGCAGATCCAATGTGGGAGCGAGCCTGCTCGCGATGGCGGTGCTTCAGTTGATGAAGATGCTGAATGTGCCGGCGTCTTCGCGAGCAGGCTCGCTCCCACAGGGGGGTGTGTTGCCCTTGGGATTCAAGTCAGCCGCAAATCCGGTGTGGGAGCGAGCCTGCTCGCGATGGCGGTGCTTCAGTTGATGAAGATGCTGAATGTGCCGGCATCTTCGCGAGCAGGCTCGCTCCCACAGGGGGGTTGGGTTGCCCTTGGGATTCAAGTCAGCCGCGAATCCAGTGTGGGAGCGAGCCTGCTCGCGATGGCGGTGCTTCAATGA	MCRHLREQARSHRGGLCCPRDSSQPQIQCGSEPARDGGASVDEDAECAGVFASKLAPTGGCVALGIQVSRKSGVGASLLAMAVLQLMKMLNVPASSRASSLPQGGCVALGIQVTRRSNVAASLLAMAVLQLMKMLNVPASSRASSLPRGLCCPQDSSHPQIQCGSEPARDGGASVDEDAECAGVFASRLAPTGGCVALGIQVSRKSGVGASLLAMAVLQLMKMLNVPASSRAGSLPQGGWVALGIQVSRESSVGASLLAMAVLQ				NA	NA	NA	NA	NA
D1-36_02598	1374	sasA_11		Adaptive-response sensory-kinase SasA	ATGAAAGGATCGATCTCCAAGCGGCTCGCCCTGATGTTTGCCCTCGCGGTCATGCTTATCACCGCGGTCAGCGCAACGCTGCTGCGCTGTTCCTTGAAGCAATCGCTCGAAGACCAGATGCAGAACGAGCTTATCCTGCGGCATTCGGTTCTCGATCCGGTGCTCGCGAAATATGATTCACCGGAATTCTGGGTGGGGCTGCGGCAAAAGCTCGACGGCCTGACACCCACCGATGAGCGCGTGCGTTACTGGGTCCTGGTCGATAACCCGGCCTACAGCTATGGCGGGGCGATGCCGGACGGCCAGGATTGGTCAAAGCGTCCGGATGGGTTTTCCACGGTCGCCATCCCTGACCGGGATCGCCCCATGGTGCTGATGATCGAAACCATCGCGGCCATGGGCAGCCGGCCGGAGGTGCGTTTTATCGTGGGGCTCGATTCGACGCCGTTCATGAAGACCCTGAATAATTTCACCAAGACGTTGATCGTAACGTCCGCGTTGGGTGTCGTGCTGGTCGCGCTGCTGGGGTATTGGATCGCGCGTTTTGGCCTGGGACCGGTCCGGCGCCTGAGCCGCCAGGCCAACAGCCTGCCGCCGGGGGATTCCAAGCAACGGCTGGACACCGAGGCGTTGCCTGGTGAGTTGCAGGAGCTGGCTGTGTCGTTCAACGGCGCCCTGGCTCGCCAGGAGGCCGCCTGGTGCCAGCTCGAAGGGTTCAATGCCAATGTCGCCCATGAATTGCGCACGCCCTTGACCAACCTGATCGGCCAGACCCAGGTCGCCCTGGCCCACGGCCGGGACGTGAATGAGCTTCAAGACCTGCTGCAATCGAACCTCGAAGAGCTGGAGCGGATGGGCACCATCGTCAATGACATGCTGTTCCTGGCGGGTGCCGAAAGCGGGCAGCGAGCCACGGAGCTGAGCGATGTCTCGCTCTATGAAGAGGCGTCCAAGACAGTGGACTACCTGGAGCCGGTCTTGCACGACAAGCAGTTGAGCGTGGTGATTCAAGGCGACATGCGGGTGTGCATCGACCGACGTCTGTTCCACCGTTCCCTGGCCAACCTGATCCAGAATGCTGCGCGATACGCGGTACCGACCAGCACGATCACGGTAAGCCTGGTCAGCCATGGCATGCAGGCCGAGGTGAGCGTGTCCAATGCTGGCGAGCCGATTGATAACGTTCATCTGCAGCGTCTGTTCGAGCGCTTCTACCGGGCCGACGCCGCCCGGGCCCGCAGTGACGCGCATCATGGCTTGGGGCTTTCCATCGTACGGGCGGTGGCCTCCATGCACGGCGGTCGCGTGTTCGCCCACAGCAAGGACGGGCTCAATACCTTCGGGTTCTCGTTGACAAGCCAGGCAGCGCGTTAG	MKGSISKRLALMFALAVMLITAVSATLLRCSLKQSLEDQMQNELILRHSVLDPVLAKYDSPEFWVGLRQKLDGLTPTDERVRYWVLVDNPAYSYGGAMPDGQDWSKRPDGFSTVAIPDRDRPMVLMIETIAAMGSRPEVRFIVGLDSTPFMKTLNNFTKTLIVTSALGVVLVALLGYWIARFGLGPVRRLSRQANSLPPGDSKQRLDTEALPGELQELAVSFNGALARQEAAWCQLEGFNANVAHELRTPLTNLIGQTQVALAHGRDVNELQDLLQSNLEELERMGTIVNDMLFLAGAESGQRATELSDVSLYEEASKTVDYLEPVLHDKQLSVVIQGDMRVCIDRRLFHRSLANLIQNAARYAVPTSTITVSLVSHGMQAEVSVSNAGEPIDNVHLQRLFERFYRADAARARSDAHHGLGLSIVRAVASMHGGRVFAHSKDGLNTFGFSLTSQAAR	PGPT0004980_1271	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004980-cusS|copS|silS-K07644	NA	NA
D1-36_02599	705	czcR_3		Transcriptional activator protein CzcR	ATGCGCTTGCTGATCGTCGAGGACGAAGAAAAAACCTCCTCCTATGTCCACCGCGGCTTGAGCGAGCTCGGCTACATTGTCGATGTCGCGACGAACGGCATCGATGGCTTGCACTACGCCCTGGAGCTTGAGTACGACGTGGTCATCCTCGATGTCATGTTGCCGGGCAAGGACGGCTATGCCGTGTTGCAGGGCCTGCGCCTGCACAAGAAAACCCCGGTGATCATGTTGTCGGCCAGGGGCACGGTGGATGATCGCGTCCGGGGATTGCGCGAGGGCGCTGATGACTACTTGGGCAAGCCCTTTTCGTTTGCCGAGCTGGTGGCGCGCGTCCAGGCGTTGATCCGCCGTCGCGCCGATGACGCGGCCGATCCCACGCATCTGCGCATCGACGACCTGGAGGTCGACCTGCAAGCCCGCAAGGTCACCCGGGCCGGTTTGCGGCTGGACCTCACGGCAAAGGAGTTCTGCCTGTTGAGCCTGCTGGCGCGACACCAGGGGGAGATTCTTTCCAAATTGATGATTGCCGAGCAGGTCTGGGACATGAATTTCGACAGCGATGCCAACGTGGTGGAGGTCGCGATCAAGCGTGTGCGCGCCAAGGTGGATGCGCCATATCCACGCAAATTGCTGCATACCGTGCGCGGAATGGGCTATGTATTGGAAAGTCGTGAAGCGGACGACAGGCACGTTGGGATGGTGTGA	MRLLIVEDEEKTSSYVHRGLSELGYIVDVATNGIDGLHYALELEYDVVILDVMLPGKDGYAVLQGLRLHKKTPVIMLSARGTVDDRVRGLREGADDYLGKPFSFAELVARVQALIRRRADDAADPTHLRIDDLEVDLQARKVTRAGLRLDLTAKEFCLLSLLARHQGEILSKLMIAEQVWDMNFDSDANVVEVAIKRVRAKVDAPYPRKLLHTVRGMGYVLESREADDRHVGMV	PGPT0004105_123	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
D1-36_02600	1254	nicP_3		Porin-like protein NicP	ATGAGTATTTACCTGATTCGCGGGGTTCTGTTTCCGATTCTTGGTCTGCTGCCGTTGGCCAACGCCAGTGCAGAGGGATTCGTCGACGACAGCAAGCTCAAATTGCAGTTGCGCAATGTTTACTTCAACGAGAACTTTCGCGATGAACATGGCATGAGTGCGCGAGCGGCGCGGACCGCCAAAAGCGAGCGCACCGAATGGGCTCAGGGCTTGCTGTTGGATTATCAGTCAGGCTACACGTCAGGCACGGTCGGTTTCGGCGTCGATGCCCTGGGCCTGCTCGGATTCAGGCTTGATTCGGGGCCCGGTCGTAGCGGCACTGGCTTGCTACCGGTCCATGACGACGGTCGTGCCGCTGAAGAGTTCGCCAGCGCGGGGATGACCGCCAAGGCCCGACTGGCGAAAACCACGTTCAAATACGGCACGCTGCTGCCCAAGAACCCAGTACTGATCTACAACGACGCGAGGCTGCTGCCCCAGACCTATCAGGGGGGGCAGGTCAGCAGCAACGACATCGACAACCTCACCCTGACGGGTGGGCGGCTGGAACGATTCAAACTGCGCGATTCAAGCGACAGCATGCCGATCGTGCCCGACGGCTACAGTGGCAACGAGTCAGGCGACTTCATTTATGCCGGCGCCGACTACAAGCTGGGAAAGAACATTCGCTTGAGCTATTTCTATGGCGAACTGGAAAACTTCTACCGGCAGAACTTCGCCGGTGTCCAACATGACCTACAGCTCGGTCCCGGCGTGCTCACCAGCGACCTGCGCTACTTCAACAGTGCCGATTCGGGCTTGGCCCATGGCGGTAAAGTCGACAATGACATGTTCAGCGGCTCGCTGTCGTACGTTGCCCTCGGCCACACGTTCAGTGCCGGTTACCAGAAGCTCAGCGGGGAAGGGGGCTTGCCATACATCAGCGGCGCCACGGTCTATTCCTTCAGCAACGTTGGGATCGGCAAGTTCATCGAGGAAGATGAAAAGACCTGGATGCTCGGCTACGGCTACGATTTCGCTCGCCTAGGCGTGCCCGGCCTGACGTTTTCCAGCCGCTACCTCAGTGGCGCCGATGGCAAATCCAACAGCGTCGTGAACGAGTGGGAGCGCGACGCCGAAGTCGCTTACATTGTGCAGCAAGGTAAGTTGAAGGGGTTGGGTGTCAAATTGCGTAACTATGTCTATCGCTCCGACTTTTCACGGGGACGCGATAGCAACCGTGTCTACGTCACTTATGACGTCGCGCTTTGGTAG	MSIYLIRGVLFPILGLLPLANASAEGFVDDSKLKLQLRNVYFNENFRDEHGMSARAARTAKSERTEWAQGLLLDYQSGYTSGTVGFGVDALGLLGFRLDSGPGRSGTGLLPVHDDGRAAEEFASAGMTAKARLAKTTFKYGTLLPKNPVLIYNDARLLPQTYQGGQVSSNDIDNLTLTGGRLERFKLRDSSDSMPIVPDGYSGNESGDFIYAGADYKLGKNIRLSYFYGELENFYRQNFAGVQHDLQLGPGVLTSDLRYFNSADSGLAHGGKVDNDMFSGSLSYVALGHTFSAGYQKLSGEGGLPYISGATVYSFSNVGIGKFIEEDEKTWMLGYGYDFARLGVPGLTFSSRYLSGADGKSNSVVNEWERDAEVAYIVQQGKLKGLGVKLRNYVYRSDFSRGRDSNRVYVTYDVALW				NA	NA	NA	NA	NA
D1-36_02601	1305	citN_4	COG2851	Citrate transporter	ATGCTCGCTTTACTTGGCTTGGCCATGGTGGTGGTCTTCACCTTTCTGATAATGACCAAACGGCTGTCGCCGATCGTCGCCCTGACGATCGTGCCGATAGTCTTCGCGGTGATCGGCGGCTTCGGTGGGACCACTGGCAAGATGATGCTGGATGGGCTGAAGATGGTTGCACCGTCGGCGGCACTGCTGTTGTTCGCGATTCTTTTTTTCGGTCTGATGATCGACGCGGGCCTGTTCGACCCGCTGATCCGCAAGATCCTCAAGCGGGTCAATGGCGATCCGATGAAAATCGCCGTGGGCACCGCACTGCTGTCGCTTCTCGTTGCACTGGACGGTGACGGCACGACGACCTACATGATTACCTGCGCCGCGATGCTGCCACTGTACAAGCGCATCGGCATGAATCCGATGATCCTGGCGACCGTCGCGATGCTTTCGCTGAGCATCATGAGCGGCATGACGCCTTGGGGCGGGCCGGCGACCCGGGCCATCGCGGCACTCGGCCTGGATGCCGGCGAGTACTTCGTGCCTTTGTTGCCGACTATGATCGGTGGCGCGATGTGGGTGGTGTTCACCGCGTTCCTGCTGGGTCGTGCCGAGCGCAAGCGTATCGGCAACATTCAACTACAGAGCGGAGGTGGCGATTGCTATATCAAGGCCATCCTGGAGGACACGCCGCACAAGCGTCCGAAACTGGCCTATGTCAATTTGCTGTTGGTCGTCGCAGTCATGGTCGCGCTGGTGATGGGCCTCATGCACTCGGCGATTCTGTTCCTGATCGGTTTCGTCCTGGCGCTGGTGATCAACTATCCGCAGCTGGACATCCAGAAAGAGCGCATTCTCGCCCACTCGGGTAACGCCATGACCGTGGTCCTGCTGGTGTTCGCGGCGGGTATTTTCGCCGGAATTTTCTCCGGAACAAAAATGGTCGATGCCCTGGCGCAAACGCTGGTCGACTGGATTCCGCCTTCCTGGGGCCATTTGTTCCCCCTGGTGGTGGCAATTACCAGCATGCCGCTGACGTTCGTATTGTCCAACGATGCCTATTACTTTGGGGTCGTGCCTATCCTGGCTAACGCCGCTGCCGCCTACGGGATTCACCCGGTCGAAATAGCTCGGGCGTCCATCCTCGGTCAGCCGGTGCACCTGATGAGCCCATTGGTGGCCTCGACCTTGTTGCTGGTGGGCATGGTCGATCGCGACCTGGGCGATTTCCAGAAAGCCACCATCAAATGGGCGGTGCTCACCTCAATCGTAATAACGGCGTTGGCGCTTCTGACCGGGGCGCTGACGCTGTTCTCCTGA	MLALLGLAMVVVFTFLIMTKRLSPIVALTIVPIVFAVIGGFGGTTGKMMLDGLKMVAPSAALLLFAILFFGLMIDAGLFDPLIRKILKRVNGDPMKIAVGTALLSLLVALDGDGTTTYMITCAAMLPLYKRIGMNPMILATVAMLSLSIMSGMTPWGGPATRAIAALGLDAGEYFVPLLPTMIGGAMWVVFTAFLLGRAERKRIGNIQLQSGGGDCYIKAILEDTPHKRPKLAYVNLLLVVAVMVALVMGLMHSAILFLIGFVLALVINYPQLDIQKERILAHSGNAMTVVLLVFAAGIFAGIFSGTKMVDALAQTLVDWIPPSWGHLFPLVVAITSMPLTFVLSNDAYYFGVVPILANAAAAYGIHPVEIARASILGQPVHLMSPLVASTLLLVGMVDRDLGDFQKATIKWAVLTSIVITALALLTGALTLFS	PGPT0001500_876	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_CITRATE_TRANSPORT,PGPT0001500-TC_CITMHS|CitMHS_family|citN-K03300	NA	NA
D1-36_02602	1083	ybhH	COG2828	Putative isomerase YbhH	ATGCAACGAATTCCTTGTGTACTCATGCGCGGCGGCACTTCCAAAGGTCCGGTTTTTCTCGCCTGGGATTTGCCGGCAACGATTCCCGAACGTGACGAGTTGCTGCTCAACCTGATGGGTTCTGGCCATGAGCTGGAGATCGACGGCATCGGGGGTGGTAGTCCACAAACCAGCAAGGTGGCGATCGTCAGCCCATCGCTGCACCCTGAAGCCGACGTGGATTACCTGTTTGTCCAGGTCATGGTTTCCCAGCGCCGGGTCGACACTGCACCCAACTGCGGCAACATGCTCTGTGCCGTCGGCCCGTTCGCCATTGAGCAAGGGCTGGTCAAGGCCACAGGCGACCTGACCCGCGTGCGGATCCGCAACCTCAATACCGGAACCTTCGTCAATGCCGAGGTCCAGACACCGAAGGGCAAGGTCAGCTACGAAGGCGACACTGCCATCGACGGTGTGCCGGGCACGGCCGCTCCAGTGCAACTGACCTTTCTCGACGCAGCCGGCAGCAAGACCGGAAAACTCTTCCCCACGGGGCAATCCGTCGACTTGATCGATGGCATCCCGGTGACTTGCATCGACATGGCCATGCCGATGCTGATTGTCGAGGCCGGCCAGCTCGGCAAGCGTGGCGACGAAAGCCCCGCCGAGCTTGATGGCGATACGGCGTTCTTGCAGCGTTTGGAGTCCTTGCGTTTGAAGGCCGGCTTGGCGATGGGCCTGGGCGACGTCAGCGACAAAGTGATTCCCAAGCCAGTGCTGGTCTCGACGGCCACGTGTGGCGGGACGATCCAGGTGCGCTACTTCATGCCGCATAGCTGTCATCGCGCCTTGGCGATTACCGGTTCCATCGGGCTGGCGACGGCCTGCGTGACCGACGGCAGTGTCGCGGCCAACCTGCTTGGCGGCGTCAGCGAACCACGCCTTCAACGGGTGCGCATCGAGCACCCCAGTGGCGGTATCGATGTCGTGTTGTCCTACACCGGCGAAAAGGGTGAGACCATCCGCGCCTCGGTGGTCCGTACCGCCCGCAGGCTTTTTTCAGGTTTTGTCTACGCCACGGTTCCCCAGCGCCTGGCCGGATGA	MQRIPCVLMRGGTSKGPVFLAWDLPATIPERDELLLNLMGSGHELEIDGIGGGSPQTSKVAIVSPSLHPEADVDYLFVQVMVSQRRVDTAPNCGNMLCAVGPFAIEQGLVKATGDLTRVRIRNLNTGTFVNAEVQTPKGKVSYEGDTAIDGVPGTAAPVQLTFLDAAGSKTGKLFPTGQSVDLIDGIPVTCIDMAMPMLIVEAGQLGKRGDESPAELDGDTAFLQRLESLRLKAGLAMGLGDVSDKVIPKPVLVSTATCGGTIQVRYFMPHSCHRALAITGSIGLATACVTDGSVAANLLGGVSEPRLQRVRIEHPSGGIDVVLSYTGEKGETIRASVVRTARRLFSGFVYATVPQRLAG	PGPT0005280_144	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0005280-galD-K16514	NA	NA
D1-36_02603	891	cynR_3		HTH-type transcriptional regulator CynR	ATGGAATATGAACTTCAGGACATCCGATCTTTCGTTAAGATCGCCGAACTTGGCAGTTTCCATGAAGCCGCCGATGCACTGCACCTATCCCAGCCCGCCCTCAGCCGACGGATGAAAAAGCTTGAGGAAGGATTAGGCACCGCCTTGCTCGACCGCACGACGCGAAAGGTCAGCCTGACCAGCGTTGGGCGTGATTTCCTGCCTAAGGCGCGGCGCTTGTTGGATGATTTTGACGATTCCATTCTCAATATCCGCGAATTGGCCGAGCGGCAGATCGGCCGAGTCACCTTGGCCTGCATCCCGACGGCGGCGTTCTATTTTCTGCCCTCGGTGATCCGGCTTTATAACGAACGCTACCCGAAGATCCGCATACGTCTGCTCGATCTCAGTGCCAACGAAGGATTGGAGGCTGTACTGCGTGGCGAAGCAGACTTCGGCATCAACATGATGAGTGGCCAGCACCCGGACATCGAGTTCGTGCCCCTGGTCAACGAGCCCTTTGTGCTGGCCTGCCGACGAGACCATGAGCTCGCTGGCCGCAGTGCGGTCACCTGGTCGGAGCTCAGCGACTATCGGCTGATCGGTGTCGGTCGCTTGAGTGGCAACCGCATGCTGCTTGACCACGCCTTGTCAGGCCTGAGCTGGCGTCCGCAGTGGTTCTACGAAGTGCAGCACCTGTCCACATCCTTGGGCTTGGTCGAGGCTGGCCTCGGCGTGTCGGCGATGCCCAGCCTGGCGATGCCGGCGGTCGATCATCCGACGCTGGTCAGCGTACCGCTGATCGAGCCGGTGGTGAATCGGTCGCTGGGCCTGGTTTATCGACGCGGTGCCTCCCTTTCCCCCGCTGCGGAAAAATTTGTCTCGATCCTGCTGGAGCAGTGGCCACAGTAG	MEYELQDIRSFVKIAELGSFHEAADALHLSQPALSRRMKKLEEGLGTALLDRTTRKVSLTSVGRDFLPKARRLLDDFDDSILNIRELAERQIGRVTLACIPTAAFYFLPSVIRLYNERYPKIRIRLLDLSANEGLEAVLRGEADFGINMMSGQHPDIEFVPLVNEPFVLACRRDHELAGRSAVTWSELSDYRLIGVGRLSGNRMLLDHALSGLSWRPQWFYEVQHLSTSLGLVEAGLGVSAMPSLAMPAVDHPTLVSVPLIEPVVNRSLGLVYRRGASLSPAAEKFVSILLEQWPQ				NA	NA	NA	NA	NA
D1-36_02604	3105	mdtC_1		Multidrug resistance protein MdtC	ATGAGCCTTAACGTGTCGTCCTGGTCGATCCGCAACCCAACGCCTTCGGTGCTGTTGTTCATCCTGCTGACATTTGCCGGCGCGATGGCCTTCTGGAAGATGAAGGTGCAGAACTTTCCCGACATCGACCTGCCCATGGTCGCTATCTCAGCCGAGCTGCCGGGTGCTTCGCCGGTCCAGCTGGAAAACGATGTGGCCCGCAAGATCGAGGATTCTCTCGCCACCGTGCAGGGCGTCAAGCATATCCAGAGCACCTTGACCGACGGCAACGCCGATATCACGGTTGAGTTCCGCCTCGGCAAACCCACCCAGGAAGCGCTCGATGACGTTCGTGATGCGGTTTCCAGGGTTCGGGCAGACCTGCCCGCCGACCTGCGCGACCCGGTGATCAGCAAGATCGAGGTTGCTGGCACGCCGATCCTGACCTATACGGTGTCGGCCGCGGGCCTGGACGAAGAGGCGCTGTCATGGTTCGTCGACAACACCCTCAGCAAGGCCTTGCTGGCTGTCCCTGGCGTGGGCGCAGTCGAGCGTGTCGGTGGGGTGACGAGGGAAATCCGCATCGATCTGGACCCGGCACGCCTGTTGGCCTTGAATACCACGGCGCTGGATATTTCCCGTCAACTTCGCCAGATCCAGCAAGAGGCCTCCGGCGGGCGCGTGGATCTGGGTGGCATCGAGCAAACGGTGCGTACGCTTGCCACGGTACGGTCGGCCAATGAAGTCGCGATGCTGGACGTGACCTTGAGTGACGGCAGGCGAGTGCGGCTCGACCAGGTCGCGACGGTATCCGATACCGTTGGCGAGCGACGTTCGGCGGCGCTGCTGGACGGCGAGCCGGTGGTCGCGTTCGAAATCGTACGGGCAAAAGGGGCCGGGGAAATCGAGGTCGATGAAGGTGTACGCGCCGCCCTTGAGCGGCTCAAGAACCGACATCCTGGAATCACGTTCAACCAGGCGTTCAGTTTCGTCGAGCCGGTGATCGAAAATTACCAGGGTTCCCTGCACCTGCTCTACGAGGGCGCGGCACTGGCGGTGCTGGTGGTGTTCCTGTTCTTGCCGGATTGGCGAGCGACCTTCGTCTCGGCTGTCGCGCTGCCGCTGTCGGCGATACCGACATTCGCGGTGATGCACTGGATGGGGTTCACGATCAACACCGTTACGCTGCTGTCGCTGTCGCTGGTGGTCGGTGTGCTGGTGGACGACGCCATCGTCGAAGTGGAAAACATCGGGCGTCACTTGCAGATGGGCAAGAAACCCTACCAGGCGGCCATGGATGCCTCTGAGGAGATCGGCCTCGCGGTGGTCGCCACGGCGTTTACGTTGATTGCGGTGTTTCTGCCCACCGCGTTCATGAGCGGCACGGTCGGCAAGTTTTTCGTCCAGTTCGGCTGGACGGCGGCCACGGCGGTATTTTTCTCTCTCGTTGTCGCGCGCCTGCTGACGCCCATGATGGCGGCCTACCTGATGCGCGCCCCGAAAAAACCCGAGCCCAGGGTGGCCGGATGGGTGACGCACTACTTGTCCTGGGCCCGCTGGTGCCTGCGTCATCGAGCCGTGACCGCTGTTGGCGCAGCGATTTTTTTTGTCGGCGGGTTGATGCTCGCGGCAGCGTTGCCGGGCACCTTCATGCCGCCCGATGACGACTGGCAAACCCAGGTCACCCTCACGCTTGCGCCCGGTAGCAGACTGGGCGACACCCTGGTGCTGGCCGAGCAGGCCCGGGGGATAGTCCGGCACAACCCCCAGGTGAAAAAGGTCTACACCGCCGTCGGGGACGGCAATGCCGGCACGGACCCTATAGGAGCGGGCGGCAACGTCAAAAATGTCCGCACGGCGGTGCTGACACTTAACCTGACGCACCGCAACGAACGACCCGGACTGAGTAAGCAACAGATCGAGAAACAATTGCGCGAAGCCCTCGCGATACTGCCCGCAACGCGGGTGAAGGTGGGCATGGGCGAGTCGGAGAACTACGTGCTGGTGCTCGCCGGCGAAGACGGCGCCTTGCTCACCCGGCATGCGCAGCTGGTGGAGCGCGAACTGCGCGGCGTGCCTGGCGTGGGCGCGGTGATTTCGACCGCGAGCCTGAAACGCCCCGAACTGCTGGTGCGACCCGATTTCGCCAGGGCGGCCGACCTTGGCGTGACCTCCGCAGCTATCGCCGACACCCTGCGCGTCGCCACCTTGGGTGACTACGACCAGGCGCTCGCCAAACTCAATTTCAGTGAACGGCAAGTGCCTGTTGTCGTGCGCTTGACCGACGCCGCTCGTCAGGATTTCGAGACGCTCAAGCGCCTACCGGTGCCCGGCGCCCGTGGTCCGGTGCCGCTGGAGAATGTCGCGTCGCTGGAGATCGCCAGCGGCCCGGCGCAGATCGAACGTTTCGACCGCATGCGCAACGTCAACATCGAAATCGAGACAAACGGCCAGCCATTGGGCGACATTGAACAGGCAGTGCTTGCCTTGCCGAGCCTGCAAGCACTGCCGCCCGGCCTGGTGCGCACTTCGGTGGGAGATGCCGAAGCCATGGGGGAGCTTGCCTCGGGATTCGGCGTGGCGATGCTGACCGGGGTGTTGTGCATCTATATGGTCCTGGTCCTGTTACTGAAGGACTTCCTGCAACCGCTGACCATTCTCGCCGCCCTGGTGCTCTCGGTGCCAGGCGCCTTCCTGGCGCTGTTCGTCACCGGCTCGACATTGTCGATGCCGTCGATGATTGGGCTCATCATGCTAATGGGGATTGCCACGAAGAATTCGATCCTGCTGATCGACTACATCCTCCTCGCGCGCCGAGACCACGGACTGACGCGCTCTGAAGCGATCATCGATGCCTGCGGCAAGCGTGCGCGGCCCATTGTCATGACGACAATCGCCATGGGCGCCGGCATGATGCCCATCGCACTCGGTTGGGGGGCTGACCCGAGCTTCCGCGCGCCGATGGCCATCGTGTTGATTGGCGGGCTTATCACTTCGACAGTGCTGAGCCTGCTGGTCATTCCCGTAGTGTTTTCCTTGGTGGACGACGGCGCGCAGGGAATATATGCGCGTATGCGTAACATCACGGGTAATGAAACGGTGGGGGGTCACTCCGAGCACTCATGA	MSLNVSSWSIRNPTPSVLLFILLTFAGAMAFWKMKVQNFPDIDLPMVAISAELPGASPVQLENDVARKIEDSLATVQGVKHIQSTLTDGNADITVEFRLGKPTQEALDDVRDAVSRVRADLPADLRDPVISKIEVAGTPILTYTVSAAGLDEEALSWFVDNTLSKALLAVPGVGAVERVGGVTREIRIDLDPARLLALNTTALDISRQLRQIQQEASGGRVDLGGIEQTVRTLATVRSANEVAMLDVTLSDGRRVRLDQVATVSDTVGERRSAALLDGEPVVAFEIVRAKGAGEIEVDEGVRAALERLKNRHPGITFNQAFSFVEPVIENYQGSLHLLYEGAALAVLVVFLFLPDWRATFVSAVALPLSAIPTFAVMHWMGFTINTVTLLSLSLVVGVLVDDAIVEVENIGRHLQMGKKPYQAAMDASEEIGLAVVATAFTLIAVFLPTAFMSGTVGKFFVQFGWTAATAVFFSLVVARLLTPMMAAYLMRAPKKPEPRVAGWVTHYLSWARWCLRHRAVTAVGAAIFFVGGLMLAAALPGTFMPPDDDWQTQVTLTLAPGSRLGDTLVLAEQARGIVRHNPQVKKVYTAVGDGNAGTDPIGAGGNVKNVRTAVLTLNLTHRNERPGLSKQQIEKQLREALAILPATRVKVGMGESENYVLVLAGEDGALLTRHAQLVERELRGVPGVGAVISTASLKRPELLVRPDFARAADLGVTSAAIADTLRVATLGDYDQALAKLNFSERQVPVVVRLTDAARQDFETLKRLPVPGARGPVPLENVASLEIASGPAQIERFDRMRNVNIEIETNGQPLGDIEQAVLALPSLQALPPGLVRTSVGDAEAMGELASGFGVAMLTGVLCIYMVLVLLLKDFLQPLTILAALVLSVPGAFLALFVTGSTLSMPSMIGLIMLMGIATKNSILLIDYILLARRDHGLTRSEAIIDACGKRARPIVMTTIAMGAGMMPIALGWGADPSFRAPMAIVLIGGLITSTVLSLLVIPVVFSLVDDGAQGIYARMRNITGNETVGGHSEHS	PGPT0016195_314	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
D1-36_02605	1140	mdtA_5		Multidrug resistance protein MdtA	ATGAAAAGAAAAACCCTCCACGTCGTTCTGTTTGTCGCGACCATCGCCTGCACCGTTGCATTGGTGATGATGGGCCTGTCGCCGGACCCGCGACCGCCCGGTCCTGAACATCACCCCAAACCGGCACTGACCGTGGCCGTCACCCGGCTTGAATCGGCCATGCTGCCGGTTCGCATCCAGGCCAATGGCAACATCATGGCGTGGCAGGAAGCGAGCGTCGGCACCGAGGCCGATGGCTTGCGGTTGGCCGAGGTCATGGTGAACGTTGGCGATGTGGTGCGGCGTGGCCAGGTGCTCGCAACGTTCAGCTCCGATACGGTGGCCGCCGAACTCGCGCAACGTCGCGCGGCCACCGCCGAAGCACACTCGGCCCTGGCCGAAGCCCGGGCCATCGCGCGGCGTGCCCGGCAGTTGCAGTCGAGCGGGGCGCTCTCGCAGCAGCAGGTCCATCAACATGTGACAGCCGAACGCACGGCGCAGGCAAGGCTTGAGGCGGGCGAGGCCGCCGAACGATTGCAGCACCTGCGCCTGGCCCAGACCCGCGTCCTGGCGCCCGACAACGGAGTGATATCGGCGCGCAGTGCCACGGTGGGCGCCGTATTACCCGCCGGCCAGGAGCTGTTTCGCCTGATCCGCGAGAGCCGGCTCGAATGGCGCGCCGAGGTCGCGGCAGCGGATCTCGCGAAATTCCATCCCGGCCAGCTTGCGCGTGTGGTGCCGGTCAACGGCGCGGCGATCGAGGGCAGGGTGCGCAGGGTTGCGCCCACGGTGGACATGCAGACCCGCAATGGTCTGGTGTATGTCGACCTGCCCGCCGACACGGCGGCGCGTGCCGGGATGTTTGCCCGTGGCGAGTTCGACGTCGGGGCCGAGCGGATGGCGACGCTGCCGCAAACTGCCGTGCTGCAGCACGACGGCTTCAGTTACGTCTTGCAGGTCGGCGCGGCGTTCCAAGTGGCCCAGGCCAAGGTGACAGTAGGGCGCCGCGTCGGCGATCGAATCGAGATCACCGCTGGCATCGACAGCACCGCCGCCGTGATCGAAGCCGGAGGCGGTTTTCTCGCTGAAGGTGACCTTGTCCGCGTCGTCCAGGGGCGCACCCAACCGATACACAATCTCACCAGCGGGAGCGCGCAATGA	MKRKTLHVVLFVATIACTVALVMMGLSPDPRPPGPEHHPKPALTVAVTRLESAMLPVRIQANGNIMAWQEASVGTEADGLRLAEVMVNVGDVVRRGQVLATFSSDTVAAELAQRRAATAEAHSALAEARAIARRARQLQSSGALSQQQVHQHVTAERTAQARLEAGEAAERLQHLRLAQTRVLAPDNGVISARSATVGAVLPAGQELFRLIRESRLEWRAEVAAADLAKFHPGQLARVVPVNGAAIEGRVRRVAPTVDMQTRNGLVYVDLPADTAARAGMFARGEFDVGAERMATLPQTAVLQHDGFSYVLQVGAAFQVAQAKVTVGRRVGDRIEITAGIDSTAAVIEAGGGFLAEGDLVRVVQGRTQPIHNLTSGSAQ				NA	NA	NA	NA	NA
D1-36_02606	804	mipA	COG3713	MltA-interacting protein	ATGCGCGCCTTGACCTTATCGAAACCTTACCTTGCGATCCGGCTGACCATCGCCAGCTCCGCGCTTGTGCTGGGCGTGTGCTCACCGATCGCGGCCAGTGCCGACGAGTCTGAAGGCTCCGCTTGGGGCCTCGGCGTGGGTGCAGCCAGCAGCCAACAGCCCTACAAAGGCATCGACCGTGACAGCGAGGTCCTGCCGCTGATCTATTTTGAAAACGAATATGTGCGCGTCTTTGGCCCAACCGCCGAGATCAAATTGCCGAGCCTGGACATCAGCGACACCCAGCAACTCGAATTCAGCCTCGTCGGTGAGTACGATTTCAGTGGCTATGATGACGATGACGCCCGCATCCTGGACGGAATGAGCGACCGCAAGGGCGGCTTTTGGGCGGGGGGCAAGGTGCAGTGGCGCAACGACCTGGCCGATGTCAGCGCCGAGTGGTTGGGCGACGTTTCGAGCAACAGCAAGGGCCAGCGCTTCACCCTGGGCCTGGAACGGTCGTGGAATTTCGGCGAGCACATCAGGCTCACGCCACGGCTGGCCGCCATCTGGCAGGACGACAACTACGTCGACTACTACTTCGGCGTCCGGGAAAATGAAGCTCGCGCCGATCGGGCAGCCTATGATGGCAAGTCCGGCATGAACACCGAAATCGGCTTACGTGGAAACTATATGTTCGATGATCATCACTCCGTGTTTCTGGACCTCAAGGCCACGAGCCTGTCCGATGAAATCAAGGACAGCCCGCTGGTAGATCGATCTACCGAAAACAGCGCGCTGTTCGGCTACCTGTACCGTTTCTGA	MRALTLSKPYLAIRLTIASSALVLGVCSPIAASADESEGSAWGLGVGAASSQQPYKGIDRDSEVLPLIYFENEYVRVFGPTAEIKLPSLDISDTQQLEFSLVGEYDFSGYDDDDARILDGMSDRKGGFWAGGKVQWRNDLADVSAEWLGDVSSNSKGQRFTLGLERSWNFGEHIRLTPRLAAIWQDDNYVDYYFGVRENEARADRAAYDGKSGMNTEIGLRGNYMFDDHHSVFLDLKATSLSDEIKDSPLVDRSTENSALFGYLYRF				NA	NA	NA	NA	NA
D1-36_02607	687	qseB_2		Transcriptional regulatory protein QseB	ATGAGCCGCATACTGCTGGTCGAAGACCATGAGCGTCTGGCGCAACTGGTGTGCAAGGGTTTGTCGAGCGCAGGCATCGCCGTCGACGTCATCAGCCGCATCGATGCGGCATGGGCGGCCATCCAACAGGTGCCCTACCAGGCGTTGATTCTCGACCGGGGTTTGCCGGATGGCGATGGGCTGCTACTGCTCGAACGCTTGCGCAACGCCGGGTTGGGCGTGCCCTGCCTGGTGCTGACGGCCCGCGACGCGCTGCATGACCGGATCGAAGGCCTGGACGCCGGGGCCGATGACTACCTGCCCAAGCCATTCGCCATGGACGAAATGGTCGCACGCGTGCGGGCCTTGTTGCGCCGCCCCGTGGAGCGCCGCCCCTTGGCGCCGTCACACGGCGACCTCAGCGTGCAACCCGACGCAGGGGTCATGTGCAGCGTCAAAGGCAGCGTTCCACTGGCGCCGGCGGAAATGCAGATCATGTTGTTGTTACTGCGCAAGCCCGGTGAAATCGTCCGTCGCAGCGCCATCGAGGCGGCTGCGTGGGGCTTGAGCGAAGCCGTGACGCCAAACGCCCTCGACGTGGCCTTGCATCGTATTCGCCGCAAGCTTTTGGCGGTCGGCTCCCACCAACGGATAGTCAACTTGAGAGGCCTGGGCTATGCCCTTCGTCAAGACGACCTGGCGCAATAG	MSRILLVEDHERLAQLVCKGLSSAGIAVDVISRIDAAWAAIQQVPYQALILDRGLPDGDGLLLLERLRNAGLGVPCLVLTARDALHDRIEGLDAGADDYLPKPFAMDEMVARVRALLRRPVERRPLAPSHGDLSVQPDAGVMCSVKGSVPLAPAEMQIMLLLLRKPGEIVRRSAIEAAAWGLSEAVTPNALDVALHRIRRKLLAVGSHQRIVNLRGLGYALRQDDLAQ	PGPT0003915_254	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
D1-36_02608	1410	sasA_12		Adaptive-response sensory-kinase SasA	ATGCCCTTCGTCAAGACGACCTGGCGCAATAGCATCAGTTTCAAGGTCCTGCTCGCCTACGTCGCCGGCGTGGGCTTGAGTATCTTGCTGATTGCGCTGGGCGCTGTCGCGCTCATTACGTCCAGGAGCGATATCCTCCTGACCACCGACGTCGCCGAACGCACCCATGAACTCGCCGGCAAGCTGATGTTCGACGCGGCGGGCCATCCTACCGGCTTCGATGACAGCGAAGGTGATCGCGTCTGGACCTTCAAGAGCCTGGGGGTGGAAATCGGCTATCGCGTGCTGGACTCGCAGGCAAACGTCGTCCTGGCCTCCACCGACGAGGCATTCTGGTCGCCGGTCGCCAAATCACCGCCTTCGGACCAAGGGCGCTTCAAGTTCGAGCGTGAGGGCATGCTGATGTACGCCGCCACCGCCCCGGTGGAGCGCGACGGCACGATCTGGTATCTGCAATTCGCCGTCAGCGAACGACTGATGGAACTGCTTCATCAGGGTTTCGCCTGGCCTTTCATGGGGGCCGGTATCGTCCTGTTCAGCCTGGTGCTGCTTTTTGTCTTCGGCGCTTGCGCCTATTTCACGCTGGGGTATGCGCTCAAGCCACTGCGCGAAGTCTCGGAATCAGCGGCGGCCATTTCCCCTCGATCCTTGCATTCACGCCTGGACAGCAAAACCGTGCCGTCGGAAGTCGCGCCACTGGTCAGCAGCTTCAACAGCGCCCTTGAACGCCTGGAACAGGGATACCGTGTGCAGCAGGAGTTCCTCGCGACCGCGGCCCATGAACTGAAGACGCCACTGGCGCTGATCCGCGCGCAAATCGAATTGATGGCTCCAGACAAGACCCGCGACTCGCTGCTCAATGACGTCGAGCACATGACACGCCAGGTTCAACAATTACTGCTGCTGGCCGAGACCAGCGAGGCCCACAACTACAGCTTTGCCGCCGTGAACGTCGGGGAAGTGGTGCAGCAAGCCGCAGACTACCTGCAACGCATGGCCGACGCCGCGCGGGTCGGCATCGTCCTGACAGGGCATACGGCCACGCAAACGCCTTGGCAGGCCGACCGCAGCGCCCTGTTCACGCTGCTGAAAAACCTGCTGGAAAACGCCATCCAGCACGCGCCTGAAGGCACGCAGGTGCGGGTGCAATGTACCGCCGACAAGTTAACCGTGCGCGACTGGGGCCCCGGCGTGGAGCAAGCGCAACTGCCCTACATATTCACTCGTTTCTGGCGCGGCGCCCATCGGCGCGATCACGGCGCGGGACTGGGGCTGACCATCTGCCAGGAGATCGCTCGCGCACACGGGTGGACACTGGTTGCGCACAGGGCGGAACCGGGATTGGCGTTTTGTTTGTCCCCGCCTGTCACCGATTCACCGAGTATAAATAGCAGTCAGGAGAGTTCATGA	MPFVKTTWRNSISFKVLLAYVAGVGLSILLIALGAVALITSRSDILLTTDVAERTHELAGKLMFDAAGHPTGFDDSEGDRVWTFKSLGVEIGYRVLDSQANVVLASTDEAFWSPVAKSPPSDQGRFKFEREGMLMYAATAPVERDGTIWYLQFAVSERLMELLHQGFAWPFMGAGIVLFSLVLLFVFGACAYFTLGYALKPLREVSESAAAISPRSLHSRLDSKTVPSEVAPLVSSFNSALERLEQGYRVQQEFLATAAHELKTPLALIRAQIELMAPDKTRDSLLNDVEHMTRQVQQLLLLAETSEAHNYSFAAVNVGEVVQQAADYLQRMADAARVGIVLTGHTATQTPWQADRSALFTLLKNLLENAIQHAPEGTQVRVQCTADKLTVRDWGPGVEQAQLPYIFTRFWRGAHRRDHGAGLGLTICQEIARAHGWTLVAHRAEPGLAFCLSPPVTDSPSINSSQESS				NA	NA	NA	NA	NA
D1-36_02609	159			hypothetical protein	ATGAAAATCCATCGCCTGTTTTTCGCATGCGCGTTAGTACCGGGTCTCTTTGCTGGTGGCTGGGCATCGGCGCAAAGCTTCCCTTCCACGGTCGTGGTCCGTATCGCGCAACTTGAGATCGACATTTCAAGCTTTACGTCGAGCAAACCAAGTCGATGA	MKIHRLFFACALVPGLFAGGWASAQSFPSTVVVRIAQLEIDISSFTSSKPSR				NA	NA	NA	NA	NA
D1-36_02610	930			hypothetical protein	ATGACGATGCATCTGCAAGACACGCCGCAAAAAACCATCCAGGGAGTATCCGCGACCGAGGAACTGGTTCCGTCGCGCTACGCACTCAAGGTCGGCGACATCGATGTACTGGTGGTGAGCGACGGCGTGCTGCCGCTGCCGACCTCGACCATGTCCACCAATGCCGACCCCGCCGCACGTGCTGCCTGGTTCAAGGACATGTTCCTTGGCCCGGACGCGTTCGATTGGGCGTTGAACGTGCTGGTGGTGCGCAGCGGCGAGCAAACCCTGCTGGTCGACGCGGGGCTGGGCGGGCAGTTCCCCGGCTTCCCACGTGCAGGGCTGTTTCCAAAGCGGCTGGAGGCGGCCGGCATCGAGCTTTCCTCCATTACCGACGTGGTCATCACCCACATGCATATGGATCACATAGGCGGCCTGCTCGTCGACGAGGTACGGACCCGCCTGAGCCCGGACGTGCGGATCCATGTTTGCCAAACCGAGGTCGATTTCTGGGCGGAGCCTGACTTCTCCCGCACCGTCATGCCCGCGCCGATACCGGACGTGCTGCACACGACCGCGCGGCAGTTCATGGAGGCATACCACGACAAACTGCACACCTTCGAGCAGGAGCATGAAGTGGCGCCGGGTGTCGTGGTCAAACGCACCGGCGGGCATACCCCGGGGCACAGTGTGGTGCATGTGACGTCTGGCCGCGAAAAGCTCACGTTTGCCGGCGACGCCTTGTTCCCGGTGGCTTTCGACCATCCCGATTGGCAAAACGGCTTCGAGCATGACCCTGAAGAAGCGGTGCGCGTTCGCGTACGGTTGATGCAAGAGGCCGCGGCAAGCGGGGAGCTGTTCGTGGCGACCCACCTTTCGTTTCCTTCCGTGGGCCGTGTGGCGGTGGATGGCGACGCGTTTCGTTGGGTGGCGGGGTCCTGGGATTATTGA	MTMHLQDTPQKTIQGVSATEELVPSRYALKVGDIDVLVVSDGVLPLPTSTMSTNADPAARAAWFKDMFLGPDAFDWALNVLVVRSGEQTLLVDAGLGGQFPGFPRAGLFPKRLEAAGIELSSITDVVITHMHMDHIGGLLVDEVRTRLSPDVRIHVCQTEVDFWAEPDFSRTVMPAPIPDVLHTTARQFMEAYHDKLHTFEQEHEVAPGVVVKRTGGHTPGHSVVHVTSGREKLTFAGDALFPVAFDHPDWQNGFEHDPEEAVRVRVRLMQEAAASGELFVATHLSFPSVGRVAVDGDAFRWVAGSWDY				NA	NA	NA	NA	NA
D1-36_02611	474	iorA_2		Isoquinoline 1-oxidoreductase subunit alpha	ATGAGCGCCCTCAATATCAATGGCCGTGAGCACACGGTTGACGTAGACCCTGGCACCCCTATTCTCTGGGCCCTGCGCGACACGCTGGGCATGACCGGCACCAAGTTCGGCTGCGGTGCGGCCTTGTGCGGCGCCTGCACCGTTCATCTGGATGGCCAGGCCATTCGCTCCTGCGTGACGCCGATAGCCGCGGCGGTCGGCAGGAAGATCACGACCATCGAGGCGGCCACCGACGGCAGCGACCCGGTAGGCACCGCGGTGCACGAAGCCTGGGTCAAGCATGACGTGGCGCAGTGCGGCTACTGCCAGAGCGGGCAGATCATGAGCGCGACCGCGTTTCTCAAGGCCCAGCCCAAGGGCAAGCAGCCGACACCGGCCGAGATCGACTCGGCGATGGCCGGCAATATCTGCCGCTGCGGCACCTACGCACGAATCCGCGCCGCGGTGGCCGACGCCGCCAAAGCCCTCGCCTGA	MSALNINGREHTVDVDPGTPILWALRDTLGMTGTKFGCGAALCGACTVHLDGQAIRSCVTPIAAAVGRKITTIEAATDGSDPVGTAVHEAWVKHDVAQCGYCQSGQIMSATAFLKAQPKGKQPTPAEIDSAMAGNICRCGTYARIRAAVADAAKALA	PGPT0009812_615	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-QUINOLINE_RESISTANCE,PGPT0009812-iorA-K07302	NA	NA
D1-36_02612	2241	iorB		Isoquinoline 1-oxidoreductase subunit beta	ATGCTGAACGAGATTTTTCCAACCGAACTTCCGCGAGCCTTGCAGCACCTGCTCGAACGCGATGACGCGGACGGTCCCGCGACCCTGCCCCGCCGCAGCTTCCTCAAGATCGTCGGCATCGGCGGCCTGGCCTTGGGGGCTTTTCCTCACCTGGCCCTGGCCGAACAGGCTAACGGCGCGGGCGAAGGCCCACTCAAGCCGACCCAGCAACCCTCTGCCTTCGTCCAGATCGCGCCTAACGGCGAGGTGACGGTGACCATCAATCGCCTTGAGTTCGGCCAGGGCGTGCAGACCGGCCTGCCGATGATCCTCGCCGAAGAGCTCGACGCCGACTGGAGCCTGGTGCGCACGCGCAACGGCAGCAACGACGCGGCGTACATGGATCCGGCCTTTGGCATTCACCTTACCGGCGGCTCCAATTCGATCAAGAACAGCTACACCCAATACCGCGAACTGGGCGCCCGGGCCCGTTCGATGCTGCTGGCCGCCGCAGCGGCGCGCTGGAATGTCGACGCCTCCAGCCTGACCACGCAAAACGGCGCTGTGCTTGGCCCTGGCGGTCGCAAGGCCAACTACGGTGAGTTGGCCGAAGCCGCCATGGCGATGCCCGTGCCGGAGAAGGTCACGCTCAAGGACCCCAAGGACTTCCGCCTCATCGGCCAGGCCACCACCCGCCTCGACGCCAAGGCCAAGAGCAGCGGCCAACAGGATTTCGGCATCGACGTGCATCTGCCGGGGCAACTGACCGCCGTGGTCGCCCATCCACCGGTATTCGGCGCCCGCATCGCCTCCCTGGACGACAGCGCCGCACGCGCGACCAAAGGTGTAAAAGCCGTGCTGCGCGTGCCGTTGGACGGCGGTGCCGAAGGCGTCGCGGTGATCGCCGACGGCTACTGGCAGGCCAAGCTGGCGCGTGATGCGCTGAAGGTCGAATGGGACGTAGCCAAGGTCGAAAAAGTCGACACGGAAAAACAACTGGCCCAGTACCGCGAACTGGCCGGCCAATCCGGACCGCTCCACTTCGATGCCGACATGAAGCCCCTGGCGTCGGCGCCCCATCAACTGGAAGCCGAGTTCGTATTTCCTTATCTGGCCCATGCGCCCATGGAGCCGCTGAACTGCACCGTCCAGCTGTCCGAGGGCCGTGCGCAGTTGTGGGTGGGTACGCAGTTTCCCGGCGGCGACGGCGCGGCAGCGGCCAAGGTGCTCAATCTCAAGCCTGAGCAGGTCCAGGTGAATGTGCAGACGGCGGGCGGTGGCTTCGGCCGGCGCGGCGTGCCCACCAATGATTTCGTCGTACAGGCTTGCGAAGTGGCCGAGGCGGCCCGCGCCGCCGGGCTCGATGCCCCCATCCGCACCCTTTGGAGCCGTGAAGACGACATCAAGGGCGGCTACTACCGCCCCATGCACCTTCACCGCGCGCGGATCGGCTTCGACGACAGCGGCAAGGTGTTGGCCTGGGACCACGCGCTGGTGGGGCAATCCATCTTGACCGGCACCTTGTTCGCCGGGCAGATGAAAAACGGCATCGACCCCACCGCCACCGAAGGCCTGCGCGATCCGTATCCGCTGCCGATGCGATTGACGGTGCATCATCCCAAGCTCAATGTGCCCGTACTGTGGTGGCGCAGCGTCGGCTCGACCCACACCGCCTTCGTAATGGAGACGCTGCTCGACGACATCGCCCGCACGACCAAGCAGGATCCGGTGGCGTACCGCATGAAGCTGTTTGGCGACCAGAACCCGCGTCATCGCGACGCGCTACAGTTGGCGGTCGACCGCAGCGGATACGGCAAGCGCCAGTTACCCGCCGGTCAAGCCTGGGGCGTGGCGGTGCACGAGTCGTTCAGCTCGGTGGTGGCCTACGTGGTCGAAGCCTCGGTGCAGGATGGCCGTCCCGTGCTCCATAACGTCACGGCGGGCGTGCACTGCAATCTGGCGGTCAACCCACGCAGCATCGAAGCCCAGGTCCAAGGCGCTGCGCTGATGGGCCTGTCGATGTGCCTGCCTGGTGGCGCCGTGACGTTGAAGGATGGTGTCGTGCAACAAAGCAACTTTGCCGACTTCAGCGTGCCGCGTATCACCGACATGCCGCAAATTGCCGTCCACATCGTCCCGAGCGCTGAGCCACCGACCGGCATGGGCGAACCCGGCCTGCCCGCCTTGGCCCCGGCGTTTGCCAATGCCATTGCCAGCCTGACGGGCAAACCCCTGCGGCAGTTGCCGTTCAGCCTGGCTTGA	MLNEIFPTELPRALQHLLERDDADGPATLPRRSFLKIVGIGGLALGAFPHLALAEQANGAGEGPLKPTQQPSAFVQIAPNGEVTVTINRLEFGQGVQTGLPMILAEELDADWSLVRTRNGSNDAAYMDPAFGIHLTGGSNSIKNSYTQYRELGARARSMLLAAAAARWNVDASSLTTQNGAVLGPGGRKANYGELAEAAMAMPVPEKVTLKDPKDFRLIGQATTRLDAKAKSSGQQDFGIDVHLPGQLTAVVAHPPVFGARIASLDDSAARATKGVKAVLRVPLDGGAEGVAVIADGYWQAKLARDALKVEWDVAKVEKVDTEKQLAQYRELAGQSGPLHFDADMKPLASAPHQLEAEFVFPYLAHAPMEPLNCTVQLSEGRAQLWVGTQFPGGDGAAAAKVLNLKPEQVQVNVQTAGGGFGRRGVPTNDFVVQACEVAEAARAAGLDAPIRTLWSREDDIKGGYYRPMHLHRARIGFDDSGKVLAWDHALVGQSILTGTLFAGQMKNGIDPTATEGLRDPYPLPMRLTVHHPKLNVPVLWWRSVGSTHTAFVMETLLDDIARTTKQDPVAYRMKLFGDQNPRHRDALQLAVDRSGYGKRQLPAGQAWGVAVHESFSSVVAYVVEASVQDGRPVLHNVTAGVHCNLAVNPRSIEAQVQGAALMGLSMCLPGGAVTLKDGVVQQSNFADFSVPRITDMPQIAVHIVPSAEPPTGMGEPGLPALAPAFANAIASLTGKPLRQLPFSLA	PGPT0009811_1081	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-QUINOLINE_RESISTANCE,PGPT0009811-iorB-K07303	NA	NA
D1-36_02613	264			hypothetical protein	ATGAACGTCAAGAATCTCAGCATTGCTTCACTGTTCGCCGTCCTCAGCCTCGGCGCTCTGGCAGCCAACGCCCAGGACGCCGTCAAGCCGCATACCTATATGTACGGTGATCACCTGGACATCGCCCAGGTGCTGTCGGTCAAGCAAGGGATGGGCTCAGGCTGCGGCGTCGTCGAGTCGCGAATGACCTACCTGGATTCCACCGGGGCGATCCAGGCGCTGGACTACAGCGCGATCGAGCAGGATTGCGGTCAGGGCAATTGA	MNVKNLSIASLFAVLSLGALAANAQDAVKPHTYMYGDHLDIAQVLSVKQGMGSGCGVVESRMTYLDSTGAIQALDYSAIEQDCGQGN				NA	NA	NA	NA	NA
D1-36_02614	1149	patB	COG1168	Cystathionine beta-lyase PatB	ATGACTTTCGATTTCGACCTGGTGTTCGAGCGCCACGGCACCGGTAGTACCAAGTGGAGCCGCTACCCGGCGGATGTATTGCCAATGTGGGTGGCCGATATGGATTTCGCCGCGCCACCGGTCGTCGTCGATGCGCTGCGCAAACGCCTGGAGCACCCGATGCTCGGCTACAGCGTTGCCCAGGACAATCTGCGCGCGGCCATCGTCGCCGATCTCTGGAGCAAATACGCCTGGCGCGTCGAGCCCCAGCAAATCCTATTCCTGCCTGGGGTCGAGCCGGGTTTCAACATGGCACTGCATGCGCTGGTGGAACCGCAGCAGAACGTCGTGGTGCAGGTGCCCAACTATCCACCGCTACGCAACGCGCCTGGGAACTGGAACCTGAACAAGGTGGAATTGGCATTCGACACGGTCGATGGCGAGTTCCGCACACCGCAGGCCGAACTACGGGATGCCCTTCAAGGCGGCGGTGCACTGTTGCTGAGCAACCCTCATAACCCACTGGGCAAGGTATTCGGTCGCGACGAACTCAAGGCGGTGGCGGATATTTGTGTCGAGCAGGACGCCTGGATCATCTCCGACGAAATCCATGCCGAGCTATGCTTCGATGGCCGCGTGCACATCCCCACCGCCAGCCTGGGCGCGGACATTGCCGAACGCACCATCACCCTGATGTCCGCCAGCAAGGCCTATAACATCGCGGGGCTGAAAACCTCCTTCGCCATTATCCAGAACGCCAAGCTGCGCGAGCGGGTCAACGGCGCCAGGGCCGGCATGGTCGACAGTGTGAACGCCCTTGGCCTGGAGGCCACCCGCGCCGCGTACAGCGAAGCGGGACCGTGGCTGGAGGCCTTGAAGCAGTATTTGCAGGCCAATCGTGATTACCTGGTCGAGGCGGTGAAGACCCGCTTGCCGGGCATCACCATGACCGTGCCGCAGGGAACGTACCTGGCGTGGCTGGATTGCTCCGGATTGGGGTTGGACGACCCACAGGGCTTTTTCCTGAAGCAAGCCAAGGTCGGCCTGAGCGCCGGGCTGGATTTCGGCGACGACGCGGGGCAGTTCGTGCGGCTGAACTTCGGCTGCCCACGGGCGTTGCTGGAGGAAGGGATTGCGCGGATGGAGCGTAGCCTGAAATCCCGAACCTGA	MTFDFDLVFERHGTGSTKWSRYPADVLPMWVADMDFAAPPVVVDALRKRLEHPMLGYSVAQDNLRAAIVADLWSKYAWRVEPQQILFLPGVEPGFNMALHALVEPQQNVVVQVPNYPPLRNAPGNWNLNKVELAFDTVDGEFRTPQAELRDALQGGGALLLSNPHNPLGKVFGRDELKAVADICVEQDAWIISDEIHAELCFDGRVHIPTASLGADIAERTITLMSASKAYNIAGLKTSFAIIQNAKLRERVNGARAGMVDSVNALGLEATRAAYSEAGPWLEALKQYLQANRDYLVEAVKTRLPGITMTVPQGTYLAWLDCSGLGLDDPQGFFLKQAKVGLSAGLDFGDDAGQFVRLNFGCPRALLEEGIARMERSLKSRT	PGPT0001990_2554	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
D1-36_02615	405			hypothetical protein	ATGTTCAGTCATATACAGATCGGCGCGCGCGACCTACCGAAGATGGTCGCGTTTTATGATGCGGTCCTGGGCTGCCTTGGCCTGGTGCGCATGGACAGCGAGGACGACTCTGGCCCACCCGGCGAGGGCTGGCATCAGCCCGGCAGGCATTGGCCGCAGGTGTTCGTCCAGGTGCCCATCAACGGGCTGCCGGCGACCTGGGGCAATGGGATGCAGGTCAGCTTTGCCGCTGAATCACAGCAAGCCGTACGCGAAGCCTGGAAGATGGCGATGGACATGGGAGGTTTCGACGAAGGCGAGCCGGGCCCGAGGCACCAATATTCGAAGGATTACTTCGGCGCCTATTGCCGGGATCCGGAGGGGAACAAGCTGTGTTTTGTGCATACGCCGGATATGCATGACTGA	MFSHIQIGARDLPKMVAFYDAVLGCLGLVRMDSEDDSGPPGEGWHQPGRHWPQVFVQVPINGLPATWGNGMQVSFAAESQQAVREAWKMAMDMGGFDEGEPGPRHQYSKDYFGAYCRDPEGNKLCFVHTPDMHD				NA	NA	NA	NA	NA
D1-36_02616	858	ydaD		General stress protein 39	ATGGCCGATTACCCAACCCCACCCTTCCCTAAGCAAAACCAACCCGTACCTGGCAGCCAGCAGAAAATGGACCCTTATCCAGACTGCGGCGAACAGAGTTACAAAGGTTCAGGACGCCTGGCGAACAAGATCGCCCTGATCACCGGCGCCGACAGCGGCATCGGGCGCGCCGTGGCGATTGCCTTCGCCCGTGAAGGCGCGGACGTGGCCATTTCCTACCTGAACGAACACGAAGATGCCAAGGAAACCGCGCGCTGGGTTGAACAGGCCGGTCGCCAGTGCCTGTTGCTGCCGGGCGATCTTGCCGACAAGGCCCAGTGTCGCAAGGTTGTCGATGAAACCGTGGCGCGCTTCGGGCGTATCGATGTCCTGGTCAACAACGCCGCGTTCCAGATGACCCATGAAACCCTCGAAGAAATTCCCGATGAAGAATGGGTGCGCACGTTCGATATCAACATCACGGCGATGTTCAGGATCTGCCAGGCCGCGGTGCCGCACATGAAGGCCGGAGGCTCGATCATCAACACCACATCGGTCAACTCCGACATGCCCAAGCCGACGCTGCTGGCCTATGCTACGACCAAGGGCGCCATTGCCAACTTTACCGGCGGTCTGGCCCAGATGCTCGGGCCCAAGGGTATTCGCGTGAACAGTGTTGCGCCGGGGCCGATCTGGACGCCGCTGATCGTCGCCACCATGCCCGAGGAAGAAGTGCAGAATTTCGGTTCCCAGACGCCGCTGGGCCGCCCCGGCCAACCGGTGGAAGTGGCGCCGATCTTCGTGCTGCTGGCGTCGGATGAGTCCAGCTACATCTCCGGCTCGCGGTATGCGGTGACGGGGGGCAAGCCGATCCTGTAA	MADYPTPPFPKQNQPVPGSQQKMDPYPDCGEQSYKGSGRLANKIALITGADSGIGRAVAIAFAREGADVAISYLNEHEDAKETARWVEQAGRQCLLLPGDLADKAQCRKVVDETVARFGRIDVLVNNAAFQMTHETLEEIPDEEWVRTFDINITAMFRICQAAVPHMKAGGSIINTTSVNSDMPKPTLLAYATTKGAIANFTGGLAQMLGPKGIRVNSVAPGPIWTPLIVATMPEEEVQNFGSQTPLGRPGQPVEVAPIFVLLASDESSYISGSRYAVTGGKPIL				NA	NA	NA	NA	NA
D1-36_02617	444			hypothetical protein	ATGGATTCGGTACTGCGAGCCGCCGCGATGTATGCGGTGCTGATGGTGTTGTTCAAGATCGCCGGGCGTCGTTCGTTGGCGGAAATCACCACGTTCGATTTCGTGCTCTTGATGATCATTGGCGAGGCGACCCAGCAAGCGCTGCTGGGGGATGACTTTTCGATGACCAACTCGTTCATGGTCATCGTCACGCTGATCGCCATTGATGTCGGATTTTCGTTGCTCAAGCTGCGCTCCGACTGGGTGTCCCGGCTCATCGATGGCGGCCCGACCATCATCGTCGAGGACGGGCGCATCCTCCAGGGCCGTATGCGCCACGCACGGCTGGTTGAGGCGGACATCATGGAAGCGGCACGCTCGAGCCAGGGCATCGAGACCCTGGACCAGATCAAATTCGCGATCATCGAGCGCAATGGGAAGATTTCGGTGATTGCCAAGGAGTGA	MDSVLRAAAMYAVLMVLFKIAGRRSLAEITTFDFVLLMIIGEATQQALLGDDFSMTNSFMVIVTLIAIDVGFSLLKLRSDWVSRLIDGGPTIIVEDGRILQGRMRHARLVEADIMEAARSSQGIETLDQIKFAIIERNGKISVIAKE				NA	NA	NA	NA	NA
D1-36_02618	519			hypothetical protein	ATGACCGACCAATGCGAACAGGACGATCATCGCAGTCGCCAGTACCCGGTATGCGAGGACATGGCGTTCCAGCACAAGGTCTGGCGTTTCGAACGGGTGGGTTGGTATGCGTTGGTGCTGCTGGTCTTGTTGACGTTGCTCGGGCTGTTTTCCCATGGGCCACTGAGCAATAGCGAGATTCACAGTGCTGACGGCAGCATCGGGGTCGAATACGAGAGGTTCCATCGCAACGGCTCGACCAATCCGGTGATCGTGCGCTTGAAGGGAGCACCCAATGCAGTGCTGGAAATCGAGCTCGGGGGCGACTGGCTGGAGGGATTCGACGTGCAAAGCGTGCAACCTACGCCCATGCGCTCGGCCGCCGCGGGTCCGGGCATGAAGCTCTGGCTCCAGGCGGATGGTCAGGGGCAGGCGAACCTGCACCTGTCATTGCTCAGCGAAGGCCTCGGCACGTACCAGAGCCGCATCGCAACGCCCAACGGCGCCGTGGTCACGTTCAGTCAATTCATCTTTCCTTAG	MTDQCEQDDHRSRQYPVCEDMAFQHKVWRFERVGWYALVLLVLLTLLGLFSHGPLSNSEIHSADGSIGVEYERFHRNGSTNPVIVRLKGAPNAVLEIELGGDWLEGFDVQSVQPTPMRSAAAGPGMKLWLQADGQGQANLHLSLLSEGLGTYQSRIATPNGAVVTFSQFIFP				NA	NA	NA	NA	NA
D1-36_02619	609	cinA		Putative competence-damage inducible protein	ATGACCAGGGGTTTCATTTATTTGACCGCTTGGCGCGACGGCGCGATAAAGGGAATGATTCGAGGCGGCGGGGGTCAACCCATCAGCATCCATGAAGGACTGTATGCCATGACTGTTGCCCATTCCCTGATCGAGTACATGCGTGAACATGAGTTGCGCCTGACCACTGCCGAGTCCTGCACCGCAGGGCTTATCGTCACGCTGTTGGCCGAAGTGCCGGGCAGCGGTTCGCTGATCGAAAGCGGTTACGTGGTGTATTCCCCCGAAGCCAAGCAGCGGCTGCTGGGTGTCAAGCCGCGGACCATCGATACCTTCAACCTGACCAGCCGCGAAGTCGCCGAGGAAATGGCTTTTGGCGCATTGCGCGACGCCAACGCCAACGTGGCGGTGGCCACCACCGGCCTGCTCGGGCCCGACGACAAGGACGGTATTCCCGCCGGCACGGTGTGTTTTGCCTGGGCGTTCGAATTGAACGGGCAGCGCGCGCTGTTCAGCCGCCGAGAGCGTTTTTTCGGCGATCGGCGCCAGGTGCAACGGTTATCCAGTGAATACGCCTTGCAGCAATTGCCCAGCTATCACCGGCGCGCCATGGCGGGTGAACGTCGATAG	MTRGFIYLTAWRDGAIKGMIRGGGGQPISIHEGLYAMTVAHSLIEYMREHELRLTTAESCTAGLIVTLLAEVPGSGSLIESGYVVYSPEAKQRLLGVKPRTIDTFNLTSREVAEEMAFGALRDANANVAVATTGLLGPDDKDGIPAGTVCFAWAFELNGQRALFSRRERFFGDRRQVQRLSSEYALQQLPSYHRRAMAGERR	PGPT0013460_343	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013460-pncC2-K03743	NA	NA
D1-36_02620	612	yohC_2		Inner membrane protein YohC	ATGTCCGTGCTTTTCGTCAAACTGTTCACCCATCCGGAATTCGCCTGGGGGGACATTCGCGAGCAGGAACAGGCCCATCCCCACCATTACCTGGCGCATCTTCTGTTGCTCGCACTGATTCCGGCGGTAGCCCTGTTCGTCGGTACCACTTGGACCGGTTGGAGTCTGGCCGAAAACGAAACCGTGCGACTCAGCCACGCCAGTGCGCTGCAGCTGTGCGTCTTGCTGTATGTGACCATCGTTGTCGGCGTAACGTTGATGGGGCTGTTCATCCGCTGGATGTCGCGCACCTTCGAGGCCCGGCCAACCGTCAACCAATGCATCGGTTTCGCTGCCTACACCGCGACCCCCTACTTCCTGGCCGGAATATTCGGCGTGTACCCCAGCCGATGGCTGGCAGTGGCCGTCCTGCTGGCGGCTTCGGTGTACTCGACTTTCCTGCTGTTCGTCGGCCTGCCTAAGTTCATGGGTTTGAAGAAGGAACAGGGCCTACTGTATTCGGCCAGTGTCTGGGGCGTCGGCCTGCTGGTGCTGGTCACGATTCTGGTGGAGATGATCCTGCTGTGGTTCAACTATTTGCAGCCGGAGTATTTGCGGGTTCCGGTAGGCTGA	MSVLFVKLFTHPEFAWGDIREQEQAHPHHYLAHLLLLALIPAVALFVGTTWTGWSLAENETVRLSHASALQLCVLLYVTIVVGVTLMGLFIRWMSRTFEARPTVNQCIGFAAYTATPYFLAGIFGVYPSRWLAVAVLLAASVYSTFLLFVGLPKFMGLKKEQGLLYSASVWGVGLLVLVTILVEMILLWFNYLQPEYLRVPVG				NA	NA	NA	NA	NA
D1-36_02621	4068	rcsC_13		Sensor histidine kinase RcsC	GTGGGCATCGGCGCCTCGGCGGGTGGGTTGCAGGCCATCAAGCAGTTTTTCGAGCACATGCCCAAGGACAACGGCATGGCGTTCGTGATCGTACTTCACTTGGCGCCGGATCATCAGAGCATCGCCGACAAGATCATCCAGGAATCCACCAAGATGCCTGTATTGCAGGTGACCGAGGCGGTGCCGATCGAGAAGAACCATGTCTATGTGATTTCCCCGGCCCATCATTTATCGATGAACGACGGGTATCTGAAGGTTACCCCGGCCGAACCGCGCCAGGGTGGGCACGTGGCGATCGACCTGTTTTTCCGTGACCTGGCCGATGTGCACAAGGACCGCGCGTTTTGCCTGGTGCTGTCGGGCACCGGTTCCGACGGTGCCGTGGGTCTGTCAAGAATCAAGGAGCAAGGGGGGGTGACCCTCGCTCAGTCGCCCCAGGACGCCGAATTCGATGGCATGCCACAGGCGGCCATCGACACCCAGATGGTCGATCTGGTGCTACCGGTGGCGGAAATGCCGCAAAAACTCCTGGAGCTGTGGCAAAACTCCCAGGCCATCCGCCTGCCGACCGCCAACGACCCTGAGATACATGCCCAGCCGCCGACATCCGAGCGAGAAGCCGTTGCCGCCGAGCAATCGCTGCACGACATCCTGGTGCAGCTGCGGGCAGGCACCGGCCATGACTTCAAGCATTACAAACGGGCCACCGTGCTGCGGCGTATCGAACGACGCATGCAAGTCACCGCCCAACCGGACCTCAACGCCTACTACAGCTATCTGCAGAATCATCCGGAGGAAACCAAGGCCCTGCTCGGTGACCTGCTGATCGGTGTGACCAACTTCTTCCGGGACCGTGAGGCCTTCGAAGCCCTGGAGCGCGACGTACTGCCCAACCTGCTCAAGCCGGTGGAACCGGGCAGCGTCCCGCCGGAGGAAATCAGGGTCTGGTCGGCCGGCTGCTCGACCGGCGAGGAAGCCTACACCCTGGCGATGTTGATCAGCGATCAACTGCAACACGACGCCAGCAACGCCAAGCTGCAGATATTCGCCACCGACATCGATGAGCGGGCAATAACCGTGGGCCGCAGCGGGGGCTACCCCGAAGCGATCATCACCGACGTGCCGCCCACCCGCCTGCGCCAGTACTTCGTCAAGGAAAACTCGACATTCCGTGTGCGCAAGGAAGTCCGCGAACGGGTGCTGTTCGCCAAGCACAGCCTACTCTCGGACCCGCCGTTCTCGCAGATCGACCTGATCGTGTGCCGCAACCTGCTGATCTACCTCGACCGCGAGGTGCAGCGTGAAATCCTGCAAATGTTCCACTTTGCCCTGCGGCCGGGCGGCTATCTGTTCCTCGGCTCTTCGGAATCGGCCGACGCCTGCAGCGAATTGTTCAGCCCGGTGGACAAGCGCAACCGGATCTTCCGCGCCAAGTACGGCACCGCCAGCAGCCGCCGCACACCGACCATGCCCCGTGGCGGTTATGTGCGCAGTACCTCGGCGTTGGTCCCGCCCCAGGTCGCGGTGCCACGCAAAGTCTCGTTCGCCGATATCCACCTGCGCGCCATCGAGCGTGCCGCGCCGCCCAGCATGATTGTCGACAACAATGGCGACATCCTGCACATGATCGAAAGTGCCGGCCGCTACCTGCGCCATGTCGGCGGCGAAATGTCGCGCAACCTGCTGACGCTGATCAATCCGCAACTGCGCCTGGAAATCCGCACGGCGTTGTTTCAGGTCAACCAGAACGGCCAACCGGTCAAGTCACGCCAAGTCAACATGGAACGCGACGGACGGCGTTTCCTGGTGGACCTCCTGGTCCAGCCCTATCGCGACGAACAGTCCGATGGCGACTTTGTGCTCGTCGTCTTCGAAGAGGAAGAAATCGACCCCGTCCAGCAGGTTGCCGCCATTACCAGCCAGACCGAAAACCAGGTGCTTGCCAACCTGGAACGCGAACTCCAACGCACCAAGTCGCACCTGCAGGACACCATCGAGCAGGCAGAAGTCTCCAGCGAAGAGCTCAAGGCTTCCAATGAAGAAATGCAGGCCATCAACGAGGAGTTGCGATCAGCCACCGAGGAGCTGGAGACCAGCAAGGAAGAGCTGCAATCGATCAATGAGGAACTGCTGACGGTCAACTACGAGCTCAAGACCAAGGTGGAGGAAACCGACAAGATCAACGACTACCTCACCAACCTGATCGCCTCCACCGATATTGCCACGGTATTCGTCGACCGCAGCATGCGCATCAAGTGGTTCACGCCTCGGGCCACGGAGATTTTCAGCATGCTGCCGGTGGACACCGGCCGTTCGTTGCTGGACATCACCCATCGGCTGGACTACCCGGACATGGCGGCGGACGCCACCCAGGTATTCGAATCCCTGAACATGATCGAGCGCGAAGTCACTAGCAGCGACGCTCGCTGGTACATTGCCCGGCTGCTGCCATACCGCTCCAGCGAAGATCATATCGACGGCACGGTGCTGACCTTCATCGATATCACCAAGCGTCGCGCGGCCGAAGAAGAGCTGCGCTTGGGCGAGGAACGCATGCGCCTTGTGGCTGAAAGCACCCGCGACTACGCGATTATCCTGTTGGACGAGCACGGCGTGATCACCAGCTGGAACACCGGGGCGGAGCTGATCTTCGGGCATACCAAGAGCGAAGCCGAAGGCAGTTACTACGACTTCGTGTTCACGCCCGAGGACCGCGCCACTGGCGTACCCGAAACAGAATTGAGCACCGCTCGAACCAAAGGCCGTTGCGAAGACGAGCGCTGGCACCAGCGCAAGGATGGCAGCCGCTTCTTCTGCAGCGGCGAAGTCACACTGCTCAGCGGCGAATGTCTGCAGGGTTACGTGAAGATTGCCCGTGACCTCACCGGCCACAAGCGCCTGCACGAGGAACAGACCCAGCGGCTCCTGGAAACCCAGAACTCCAGCCATTTGAAGGATGAGTTCTTCGCCGTCATGTCCCACGAGCTCAAGCACCCGCTGAACCTGATCCAGCTAAACGCCGAATTGCTTCGCCGCCTGCCGGTGACCAAGGCCGCCACCACCGCGGCCCGGGCCGTCAATACCATTTGCGATGCGGTCAACAGCCAGGCACGCATTATTGACGATCTGCTGGACGTGGCCCGTGTCCGCACCGGCAAGCTCAAGCTCAAGCGCCAAGCCGTCGATCTGGCGCGGGTGCTACAAGACATCTACACCGTGGTGATCAACGACAATCATCCCAACAAGGTCACTCTGGACCTGCCCGAGGGTTCCAATGGAGAACTGATCGTCAATGCCGACCCGACCCGGCTGGAACAGATCATCTGGAACCTGGTGAACAACGCGCTGAAATTCACCCCTAGCGGCGGCCGCGTGCAACTGGTCGCCAGCCACGACGACCATATGGCGCGCCTGGACGTAAAGGATTCCGGCGTGGGTATCGCGGCGGAGCACCTGAGCGAAGTGTTCGACCTGTTCGGCCAGGCCGAGACCCAACACGCGACACACCAGCGCGAAGGCCTGGGGATCGGCCTGTCACTGGTCCGGCAATTGACCGAAGCCCACGGCGGCAGCGTCGAGGTCAAGTCCGAGGGGCTGGGGAAAGGTTGCACCTTCACGATTCGCCTGCCCCTGAGCAATGCCGCGATCGTGCCCAAACCGCAGGCTTGCGAGGAACAGTCGGGACGCCTGAGCGGCCTGACGGTGTTGCTGGTGGACGACTCCCCGGACGTGCTCGATACCCTCAAGTTGCTGCTGGAAATGGAAGACGCCAACGTGGTCGCTTTCGACCAGCCGCTGCAAGCCTTGCAGGCCGCCAAGGACGCCCGTTTCGACGTGGTGATCTCCGATCTGGGCATGCCGGTGATGAATGGCCATGAATTGATGCAGGCGCTGCGCGAGCTGCCTCACATCAAACACATCCCGGCCATCGCCCTGACGGGCTACGGTGCGTCCATCGACCTGCATAAATCACAACAATCGGGCTTCGACCAGCACATCGGCAAGCCGGTGTCCTATGACGAGTTGATTGAAACGATCGAGCAGTTGCGGCGTTCGCGGGTTTACTAG	MGIGASAGGLQAIKQFFEHMPKDNGMAFVIVLHLAPDHQSIADKIIQESTKMPVLQVTEAVPIEKNHVYVISPAHHLSMNDGYLKVTPAEPRQGGHVAIDLFFRDLADVHKDRAFCLVLSGTGSDGAVGLSRIKEQGGVTLAQSPQDAEFDGMPQAAIDTQMVDLVLPVAEMPQKLLELWQNSQAIRLPTANDPEIHAQPPTSEREAVAAEQSLHDILVQLRAGTGHDFKHYKRATVLRRIERRMQVTAQPDLNAYYSYLQNHPEETKALLGDLLIGVTNFFRDREAFEALERDVLPNLLKPVEPGSVPPEEIRVWSAGCSTGEEAYTLAMLISDQLQHDASNAKLQIFATDIDERAITVGRSGGYPEAIITDVPPTRLRQYFVKENSTFRVRKEVRERVLFAKHSLLSDPPFSQIDLIVCRNLLIYLDREVQREILQMFHFALRPGGYLFLGSSESADACSELFSPVDKRNRIFRAKYGTASSRRTPTMPRGGYVRSTSALVPPQVAVPRKVSFADIHLRAIERAAPPSMIVDNNGDILHMIESAGRYLRHVGGEMSRNLLTLINPQLRLEIRTALFQVNQNGQPVKSRQVNMERDGRRFLVDLLVQPYRDEQSDGDFVLVVFEEEEIDPVQQVAAITSQTENQVLANLERELQRTKSHLQDTIEQAEVSSEELKASNEEMQAINEELRSATEELETSKEELQSINEELLTVNYELKTKVEETDKINDYLTNLIASTDIATVFVDRSMRIKWFTPRATEIFSMLPVDTGRSLLDITHRLDYPDMAADATQVFESLNMIEREVTSSDARWYIARLLPYRSSEDHIDGTVLTFIDITKRRAAEEELRLGEERMRLVAESTRDYAIILLDEHGVITSWNTGAELIFGHTKSEAEGSYYDFVFTPEDRATGVPETELSTARTKGRCEDERWHQRKDGSRFFCSGEVTLLSGECLQGYVKIARDLTGHKRLHEEQTQRLLETQNSSHLKDEFFAVMSHELKHPLNLIQLNAELLRRLPVTKAATTAARAVNTICDAVNSQARIIDDLLDVARVRTGKLKLKRQAVDLARVLQDIYTVVINDNHPNKVTLDLPEGSNGELIVNADPTRLEQIIWNLVNNALKFTPSGGRVQLVASHDDHMARLDVKDSGVGIAAEHLSEVFDLFGQAETQHATHQREGLGIGLSLVRQLTEAHGGSVEVKSEGLGKGCTFTIRLPLSNAAIVPKPQACEEQSGRLSGLTVLLVDDSPDVLDTLKLLLEMEDANVVAFDQPLQALQAAKDARFDVVISDLGMPVMNGHELMQALRELPHIKHIPAIALTGYGASIDLHKSQQSGFDQHIGKPVSYDELIETIEQLRRSRVY	PGPT0015655_237	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015655-cheBR-K13924	NA	NA
D1-36_02622	2637	ligD_1	COG1793	Multifunctional non-homologous end joining protein LigD	ATGACCAGCAAAACCCTCGACGACTACAACCGCATGCGCGATTTCGGCGCCACCCCGGAACCGTCGGCGAAGCGCTCTCGCAAATCGGCAAAAACCACCCACGGGTTGCAGTACTGCATACAGAAGCACGATGCAACGCGGCTGCATTACGACTTTCGCCTGGAGCTGGATGGCGCGCTCAAGAGCTGGGCGGTGCCCAAGGGGCCGTCCCTGGACCCGAAGGTCAAGCGCCTGGCGGTTCACGTTGAAGACCATCCCATCGATTACGCGACGTTCGAGGGCAGTATCCCGGAGGGGCACTACGGCGCGGGCGACGTCATCGTCTGGGACCGGGGCGTGTGGATTCCACAGGGTGACGTGCACGAAGCCTACGAAAAAGGCCGGCTCAAGTTCGAGCTGCGGGGGGAAAAGCTCGCGGGGCTGTGGAACCTGGTGCGCACCCATATGCCGGGCAAGCAGGAACAATGGTTTCTGATCAAGCATCAAGATGACGCCGCCCGGCCGGAAAGCGAGTACGACGTGGTGCAGGCCGAGCCCGACAGCGTGCTCAGTGACCGCACCATCGTGCCCAAGCGGCGGGGCAAGGCGGCCGCCGCCAAGGCTGTAAAGCAGCCGGAAAAACCCGCCAAGGCGAAGCCATCCAAAAAGAGCGGCAAGACCACCCTCAGCGGCGCCGTGGCCGGGCCCATCCCCGAGACCCTCAAGCCGGAACTGGCGACCCTGGTGGAAAGCGCACCCGATGGCGAATGGCTCTACGAAATCAAGTTCGACGGCTACCGCGTCATGGCGCGCATCGATAATGGCGACGTGCGCTTGATTACCCGCAACGGCCATGACTGGACCCACAAACTGCCGAAACAGGCCGAGGCTCTGGCGGGGCTGGGGTTGGAATCAGCCTGGCTGGACGGTGAAATGGTCGTCGCCGACGAGCAAGGCGTGCCGGACTTCCAGGCCCTGCAAAACGCCTTCGACGCTGGCAGCAGTGGCAAGATCGCTTATTACCTGTTCGACCTGCCGTACCTCAACGGCATGGACTTGCGCAAAGTGCCGGTGGAGGAGCGCCGGGCGGCGTTGGCTGCGGTGCTGGAACCCAACGAAGATCCCTTGCTGCGTTACTCCGACTCCTTCGAAGAAACCCCGCAAGCATTGCTCAACAGTGCCTGCCAGATGCGCATGGAAGGGCTGATCGGCAAGCGCCAGGGCAGCGCCTATGTGTCCCGGCGCAGCAGCGACTGGATCAAGCTCAAGTGCAAGAACCGCCAGGAATTCGTCGTGGTCGGCTTCAGCGAGCCGAAGGGCGCCCGCAGCGCGTTTGGCGCCTTGTTACTGGGCCTGCATGACGTCGACAGCGGCGAGCTGCGCTATGCCGGCAAGGTTGGCACCGGTTTCAACGAAACCACGCTCAAAAGCATCCATCAGCAGCTGTTGCCCCTGGAAACCAAAAAGGCCGCCGTGGTCAATCCGCCCACAGGGTATGACGCCAAGGGTGTGCACTGGCTAAAACCGGAGTTGCTGGCGGAAGTGGCGTTTGCCGAAATGACCAAGGAAGGCTCGGTACGCCATGCCGTGTTCCATGGCCTGCGCAATGACAAACCGGCAAAGGCGATTACCCAGGAATTGCCCAAAACCGTGAAAAAAGCGGCGGCCAAGGACAATGCTGAACCGGCGCCGGCCGAGCCGAAAGCCAAATCCAAATCCAAATCCAAGGCCACGGCCAAGGCCAAGACCACGCAGTCGCCAACCTTGGAAGGCAAGGTCCGCATTACCCATCCGGATCGGATTATCGACGCGAGCAGCGGCACCACGAAGATGCAACTCGCCGAGTACTACGCCAGCGTTGCTGATTTTATCCTGCCGGAGCTGGCCGATCGCCCGGTGGCGCTGGTACGGGCGCCGGATGGCATCGCCGGCGAGTTGTTCTTCCAGAAGAACCCCGAGCGCCTGGCAATTCCCGGCATCACCAGCCTGGACAAGGACCTGACCGGGCAACCAGTGATGATCATCAACAACGCCGAAGCGCTGATCGGCGCGGTACAGATGAGTACCGTGGAGCTGCACACCTGGAACGGGACTTCTGCCGATCTGGACAAGCCTGACCGCTTCGTCCTCGACCTTGACCCGGACCCGGCGCTGCCGTGGAAAAGCATGGTGGAAGCCACGCAATTGACTTTGTCAGTGCTGGATGAGCTGGGCCTGAAGGCGTTTCTAAAGACCAGCGGCGGCAAGGGCATCCACATTGTCGTGCCGATTACTCGCAAGTTGGGCTGGGATGAGGTGAAAGGCTTCAGCCATGCCATCGTCAGCCACATGGCCAAGCTGTTGCCCGATCGCTTCTCGGCAGTGTCGGGTCCCAAGAACCGGGTAGGGCGGATCTTCATCGATTACCTGCGCAACGGTTTGGGCGCAACCACCATTTGTGCCTACGCAGTGCGTACCAGGGAAGGGCTGCCGGTGTCGGTGCCCATCTACCGGGAAGAAGTGGCCGAGCTCAAGGGCGCCAACCTTTGGAACGTGAACAACGTCCACGAGCGGCTGGCGGAGGTGGGGCATGAGCCTTGGGCTGACTTGCCCAAGACCCGCCAGAGCATCACCGCCGACATGCGGCGGCGGATTGGGATGAAGAAGACTGCGAAGTAG	MTSKTLDDYNRMRDFGATPEPSAKRSRKSAKTTHGLQYCIQKHDATRLHYDFRLELDGALKSWAVPKGPSLDPKVKRLAVHVEDHPIDYATFEGSIPEGHYGAGDVIVWDRGVWIPQGDVHEAYEKGRLKFELRGEKLAGLWNLVRTHMPGKQEQWFLIKHQDDAARPESEYDVVQAEPDSVLSDRTIVPKRRGKAAAAKAVKQPEKPAKAKPSKKSGKTTLSGAVAGPIPETLKPELATLVESAPDGEWLYEIKFDGYRVMARIDNGDVRLITRNGHDWTHKLPKQAEALAGLGLESAWLDGEMVVADEQGVPDFQALQNAFDAGSSGKIAYYLFDLPYLNGMDLRKVPVEERRAALAAVLEPNEDPLLRYSDSFEETPQALLNSACQMRMEGLIGKRQGSAYVSRRSSDWIKLKCKNRQEFVVVGFSEPKGARSAFGALLLGLHDVDSGELRYAGKVGTGFNETTLKSIHQQLLPLETKKAAVVNPPTGYDAKGVHWLKPELLAEVAFAEMTKEGSVRHAVFHGLRNDKPAKAITQELPKTVKKAAAKDNAEPAPAEPKAKSKSKSKATAKAKTTQSPTLEGKVRITHPDRIIDASSGTTKMQLAEYYASVADFILPELADRPVALVRAPDGIAGELFFQKNPERLAIPGITSLDKDLTGQPVMIINNAEALIGAVQMSTVELHTWNGTSADLDKPDRFVLDLDPDPALPWKSMVEATQLTLSVLDELGLKAFLKTSGGKGIHIVVPITRKLGWDEVKGFSHAIVSHMAKLLPDRFSAVSGPKNRVGRIFIDYLRNGLGATTICAYAVRTREGLPVSVPIYREEVAELKGANLWNVNNVHERLAEVGHEPWADLPKTRQSITADMRRRIGMKKTAK	PGPT0014910_382	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971	NA	NA
D1-36_02623	1164		COG2170	Putative glutamate--cysteine ligase 2	ATGAACAGGCGTCTGAAGTTCGGCATTGAAGAGGAATATTTCATCACCGACCTGCAAACCCGCCGCATGCCCGATCAACCGTCGGCGGCGGCGGTGACGGCGTGCCGGGAAGAGCTGGGCAAGCACTTCGCCCATGAAATGTTCCAGAGCCAGGTGGAAATGGCTTCGCCCATCTTCCGCAGCCTGGCCGAGGCGGCCGATTACCTGGCCCAGGTGCGTAACGGCCTGACTCAGCGCTTGGCGCCCCATGGCCTGGGATTGCTGAGCGCAGGATCCCATCCAATGGCGACCGTTGGCTTGCAACCCACCGACGAGCTGCACTTCCAGCAGTTGTTCGACGACTACCAGCGCGTGGCGCGCCGCAGCGTCCTGTCGGGCCTGCACATACATGTGGAAGTGCCGGGCGATCATGACCGGGTCAAGGTGATGAATGAGGTGCTGCCCTGGCTGCCGATGCTGTTGGCGCTCAGCGCGTCATCGCCGTTCTGGAACGGCGCCTACAGTGGCTTCAGCAGTTATAGGCAAGTGGCCTGCGATGAATGGCCGCGCATGGGCGTGCCGGAATTCTTCGAGGACGAATCAGCCTTCAATGGCTACGTGGACATGCTCACCCGCACCAGCTCCATCCGCCAGCCCAGCGATTGCTGGTGGGTGATCAGGCCTTCCTCGCACTATCCGACCCTGGAGCTGCGTATCTGCGATGCCTGCCCGCGGACCGAAGATGTGCTGTGCCTCGTCTCGCTGTTTCGACTGATGATTGCCCACGCCGTCGCCCAGCCCAAGCCAGGCGCCCACTACAGCTTGATGTCCCACTGGATCCTCAAGGAAAACCGCTATCGGGCCAAGCGCCACGGCATCCTCGCGGAATTTATTGTCGAAGGCCAGGAGCAGCCGATGCTGATTGGCGAGTGGCTGAACCTGGCCGAGCAGACCTTCGGCGACACCGCGACGGCGCTGGGCGTGCAGGATGTGTTCAAGCAAGCGCGCCGGATCATCCAGGAGGGCACCAGCGCTGATCGACAAGTGGTCCTCTACGAGCAAGGCCTGCTGCTGGGCGATACGACCGAAGAGGCCCTGGGCCGGGTGGTCGATCAGCTGTTGTCGGAAACCGCCGGTTTGCCGGTGGCCGATCCCACCCTCGCGCAAGTTGCAGGTGGCCAATGA	MNRRLKFGIEEEYFITDLQTRRMPDQPSAAAVTACREELGKHFAHEMFQSQVEMASPIFRSLAEAADYLAQVRNGLTQRLAPHGLGLLSAGSHPMATVGLQPTDELHFQQLFDDYQRVARRSVLSGLHIHVEVPGDHDRVKVMNEVLPWLPMLLALSASSPFWNGAYSGFSSYRQVACDEWPRMGVPEFFEDESAFNGYVDMLTRTSSIRQPSDCWWVIRPSSHYPTLELRICDACPRTEDVLCLVSLFRLMIAHAVAQPKPGAHYSLMSHWILKENRYRAKRHGILAEFIVEGQEQPMLIGEWLNLAEQTFGDTATALGVQDVFKQARRIIQEGTSADRQVVLYEQGLLLGDTTEEALGRVVDQLLSETAGLPVADPTLAQVAGGQ	PGPT0026300_357	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048	NA	NA
D1-36_02624	1002	prmC_1		Release factor glutamine methyltransferase	ATGAATCAGGAAGACCGCCTGTCCGAACCCGACCTGGCCCTGCTGCAGCTAGGTCGCCGCCTGCACGCTGACGGCTACCGTTTCATCACCCCAACGCCGCTTACTCACGAGCGCGTCAACCAGCGGCCAGGCAACGAGCGCTCCAAGACCTTGCGGGATGTTTTCGGCTGGTCCAGGCCCTTCGCGCCGGGGCTTATTTCCGCCGACGAGCAGCGTCAATTGCAAGAAGCAGAAGTGTTGGAAGAACACGACGGCCTGCTGCGCAGCCGCGTGCGCTGGTCAAGCTTGGACGGCATGCTGTTCGCCCATTCGCAATTTCCGACCCAGGCCAACGACGCAGTGTTCTTCGGCCCCGACAGCTACCGTTTCGCGCACCTGATCCATACCCATCTGCAACAGAACTTCACGGCCGTGCATCGCGCGGTGGACATTGGCTGCGGCGCCGGTGTCGGGGCGATGGTGATTGCCCGCGCCCGACGCGAAGCCCAGGTACTGGCCATCGACATCAACCCGATGGCCTTGCGGCTGTGCGCCGTCAACGCGGCGCTGGCCGAGGTGGCAAATGTCGAGATCGCCCGCAGCGACGTGCTCAAGGACGTCGAGGGCGACTTCGACCTGATCGTCGCCAACCCCCCGTATATGGCCGACCCCGCCGAGCGTGCTTATCGCCATGGCGGCGGAACGCTGGGCGCGGGATTGTCGCTGCGTATCGTCGAACAGGCATTGCCACGGCTGACACCCGGCGGTTCGCTGGTGCTCTACACCGGCGTGGCGATGGTCGACGGTCGTGATCCGTTTCTGGAGGCTCTGGGCCCTTGGCGCGATTCACCGCAGTTCGCCTGGACCTACAGGGAATTGGACCCGGATGTGTTTGGCGAGGAACTGCTGACACCCGGTTATCAGGACGTGGAACGGATCGCCGTGGTGGCGTTGGTTGTCACCCGCACGGGTGCGGGTATCGGAGGGAATATCGATGAACAGGCGTCTGAAGTTCGGCATTGA	MNQEDRLSEPDLALLQLGRRLHADGYRFITPTPLTHERVNQRPGNERSKTLRDVFGWSRPFAPGLISADEQRQLQEAEVLEEHDGLLRSRVRWSSLDGMLFAHSQFPTQANDAVFFGPDSYRFAHLIHTHLQQNFTAVHRAVDIGCGAGVGAMVIARARREAQVLAIDINPMALRLCAVNAALAEVANVEIARSDVLKDVEGDFDLIVANPPYMADPAERAYRHGGGTLGAGLSLRIVEQALPRLTPGGSLVLYTGVAMVDGRDPFLEALGPWRDSPQFAWTYRELDPDVFGEELLTPGYQDVERIAVVALVVTRTGAGIGGNIDEQASEVRH				NA	NA	NA	NA	NA
D1-36_02625	1386			hypothetical protein	ATGACTGCGCTGACACCCCTCCAATCCAGGCCTGCCACCGCGCAGCCATTCACAAGTGCTGGTAACGTTCGCCAGTGTTACGAGCGGCTGTTGCAAGGCGCCGACGATGCTGACAAACAAGCGGTTGCCCAGGCCTTCCTGCAACCGTGTCTCGAACAAGCGAGCGCATTGCCTCAAGAAATGCCTGACGACCCTGGCGCGTTGCTTGCCTGGGTAGAACAGCACAGCGCCGGCGTGGCCCGGCAATATGCCGACTACCTGGAACGGCGCAAAAGCGGCGGCGGTCGGGAGTTTTTCCAGACCAAGGCCCATGCCCTGTATTTTATCCAGGCCGTGGCGCCGACTAAGCTCGTGGACGGCGCATGGCTGTACGGTGTGCTCAAACACTGGCATGACCATCGCTTCGAGGGGCTGCTGTGCACCTATCTGGAAGAGCTTGGGGATGGCGTTCCGGCCCAGAACCATGTCGTGCTCTACCGCAAGCTGTTGGCCGAACACGGCTTACAGGACATGCCCGACATCGATGACGAGCGCTACCTGCAAGGTGCTGTTCAATTGGCCCTGGGCTATGCCGGCGACGAATACCTGCCCGAGGTCATCGGTTACAACCTGGGTTATGAGCAACTGCCCCTGCATTTGCTGATCAGCGCCTATGAGCTGAGCGAGCTGGACATCGACCCGTATTACTTCACGCTTCACGTGACCATCGACAACGCCAGCACCGGGCACGCCCACAAAGCCGTGCAAGCGTTGCAACAACTGATGCCGATGGAAGCTGACCGCGAGTCGTTCTGGCGCCGGGTCACACTGGGCTATCGCCTCAACGACCTGGGGCAGGGCAGCCGGGCGGTCATCGAGTCGTTCGACCTTGAGCGCGAAGTCCTGGACATGCTTGAGCGCAAGCGCCCGTTCGGCCAGCACATGCATTCCGATTACTGCAAGTTCGAAGGCAAGACCGTCAACCAATGGCTGGCGGAACCGGGGCAGTTGGAGGGTTTCCTCAAGGCCATGCAAGGCAAAGGCTGGATCCGACGCCATGAAGATCCCCAGAACAGCCGTTTCTGGACCCTGATCGAAGGCCCGGGCGCGGCGATGTTCGGGGTTTTCAGCCCTTACGAAAAACAGCTGCTGCATGACTGGATTGCCGGCGACTGGCTGGACCAGCGCGGTCGTCCCGGCGCCCGCCGCAATCATGGCGCGGCCCATGAATCGCCGGCACCGGCCCAAGACCCGGATGTGCAGAACCTGCAGCAAACGCTGCGGGGCAAGGCCCCCGATGAGCAGATGCAAATTCTGATGCCCTGGCTCTCGGCCCGCTGCCACAGCCACCCGGCCGGGTTGTTGGCGACCCGCCGGTTCATCGAACTCAAATCCGCCCTTCGCTAG	MTALTPLQSRPATAQPFTSAGNVRQCYERLLQGADDADKQAVAQAFLQPCLEQASALPQEMPDDPGALLAWVEQHSAGVARQYADYLERRKSGGGREFFQTKAHALYFIQAVAPTKLVDGAWLYGVLKHWHDHRFEGLLCTYLEELGDGVPAQNHVVLYRKLLAEHGLQDMPDIDDERYLQGAVQLALGYAGDEYLPEVIGYNLGYEQLPLHLLISAYELSELDIDPYYFTLHVTIDNASTGHAHKAVQALQQLMPMEADRESFWRRVTLGYRLNDLGQGSRAVIESFDLEREVLDMLERKRPFGQHMHSDYCKFEGKTVNQWLAEPGQLEGFLKAMQGKGWIRRHEDPQNSRFWTLIEGPGAAMFGVFSPYEKQLLHDWIAGDWLDQRGRPGARRNHGAAHESPAPAQDPDVQNLQQTLRGKAPDEQMQILMPWLSARCHSHPAGLLATRRFIELKSALR				NA	NA	NA	NA	NA
D1-36_02626	1344			hypothetical protein	ATGATCTTTACCGTGTGGGTAGCCGTACTCGGCGCTGTCTTGCTGACCTTGGCCCTGACCTCCTCCTACCTGCGCTGGATGCCCGTCACCACTTCCGCCGTGTGCCTGGCGCTGGGCGTCGCCATCGGGCCGGCTGGGCTGGGGCTGCTAAAGCTTGATGTCAATGACTCGTCCGGGTGGATGGAGCACCTGACCGAAGTCGCCGTCGTGTTTTCGCTGTTCGTCAGCGGTCTCAAGCTGCGCCTGCCCCTCAAGAACCGCAGCTGGCGCGTGGCTTACGGGCTCGCCGGGCCGGTGATGATCTTGACGATCGTCGGGCTTTGCCTGGCGCTGCATTACCTGTTTGGCCTCGGTTGGGGCATGTCGATGCTGATCGGCGCGATACTGGCGCCGACCGACCCGGTGCTCGCGGCCCTGGTGCAGGTCAACGATGCCCGCGACGACGACCGGGTGCGGTTCGGGCTGTCCGGTGAAGCCGGGCTGAACGATGGCACGGCGTTTCCCTTCGTCATCCTTGGCTTGCTCATGCTGAGCGAGGAAGGCAGCGGATTCCTCGGCGAATGGGCGTTGCGGGACGTCCTGTGGGCGGTGCCGGCGGGTTTGTTGGTGGGCTACTGGCTGGGGCGCGGCATCGGCGGGCTGACGTTGTCGATGCGTATCAAGAATGCCGACAGCACCTTGTCACCCAATGACTATCTGGCCCTGGCCCTGATCGCCCTCGCCTACGTGGCGGCAGAAGCGATCCACGGCTACGGTTTCCTGTCGGTGTTCGCCGCTGGCCTGGGGCTGCGCCAGGCCGAGGTCGAGTCCACCGACGAACACTCGCCACCGGCAGAACACCTGGTACAGCCGGTGGTGGGCCACGAAACGGTCGAGCCTCAGCAGGCGGTGGTCGGCGACACCCAGGCCTTGGACGACGGCCAAGTGGCGGCTGGCGTGATGATGAGCGACATGCTGGCGTTCGGCAGCCTGGTGGAGCGTTCCATGGAGGTTTTCCTGGTGACACTGCTGGGCGTCGTCCTTGCCACTCATTGGGATTGGCGGGCCCTCGCCGTCGGCGCCCTGTTATTCGCGGTCATTCGCCCGTTGAGTGTGTGGGTGATGCCCTGGGGGCGGTTGCTGGACCATCCGCAACGGCTGTTGATCGGCTGGTTCGGTATCCGCGGGATCGGCAGCCTGTTTTATCTGTTCTACGCCTTGAATCACGACGTGCAATCGGAAGTGGCGCAGCAGTGCATCAACCTCACGCTGTCGGTGGTGGCGCTGAGCATCCTTGTCCACGGTGTCACCACCCAACCCGCCCTGGCGTGGTATGAGCGCCGCAAAGACGGTCGCACGGGCTAG	MIFTVWVAVLGAVLLTLALTSSYLRWMPVTTSAVCLALGVAIGPAGLGLLKLDVNDSSGWMEHLTEVAVVFSLFVSGLKLRLPLKNRSWRVAYGLAGPVMILTIVGLCLALHYLFGLGWGMSMLIGAILAPTDPVLAALVQVNDARDDDRVRFGLSGEAGLNDGTAFPFVILGLLMLSEEGSGFLGEWALRDVLWAVPAGLLVGYWLGRGIGGLTLSMRIKNADSTLSPNDYLALALIALAYVAAEAIHGYGFLSVFAAGLGLRQAEVESTDEHSPPAEHLVQPVVGHETVEPQQAVVGDTQALDDGQVAAGVMMSDMLAFGSLVERSMEVFLVTLLGVVLATHWDWRALAVGALLFAVIRPLSVWVMPWGRLLDHPQRLLIGWFGIRGIGSLFYLFYALNHDVQSEVAQQCINLTLSVVALSILVHGVTTQPALAWYERRKDGRTG	PGPT0013856_405	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013856-NHA1_like|SOD2_like-K24160	NA	NA
D1-36_02627	537			hypothetical protein	ATGCCCAGAATCCTCACCCGTCTGACCCCTGAAGAAGAACTGACCGAACACAACGCCAAAATGTTCGGCTCGCCCAAGGAGCGGCTGGACTTTTATCGTCGGGAAATCCAGTACGAAACCAGCATTCTGGCCAATCGCACCGACGCCTACCTGACCGCCCAGTCATTCCTGGTGATCGCGTTTGCATCCTGCATGGCCAATCTGAACCCGGAGTGGGGCAAGCTCTTCACACTGATCGTGCCGCCATTTTTGGCGTTGCTCGGCGTCTTGAGTTCCCTCAATGCATGGCCGGGCATTCGGGCCGCCTACGACATCATCGACCACTGGCATTTCAAACAAAGCGAATTGCTGCGCAGCGAGCCGCTGATGGGGCTGGCCTACGACGAATCGCCGCTGTTCAGCGAGCGAGAGTCGACCCATAAGGGCTACCGTAAGTCGCTGCTGTTTTCGGTGCGCACGCCGTGGATATTCGCAGCGTTCTGGGTGCTGTTGGGCATTTACTCGGTGTTTATCCAAGTGACCGATCCGGGCGGCTAG	MPRILTRLTPEEELTEHNAKMFGSPKERLDFYRREIQYETSILANRTDAYLTAQSFLVIAFASCMANLNPEWGKLFTLIVPPFLALLGVLSSLNAWPGIRAAYDIIDHWHFKQSELLRSEPLMGLAYDESPLFSERESTHKGYRKSLLFSVRTPWIFAAFWVLLGIYSVFIQVTDPGG				NA	NA	NA	NA	NA
D1-36_02628	231			hypothetical protein	GTGGATTATCTTGGATGGGTGCAATGGCCAGCAATGGCGATCACGGTATTGGCGGCATGGTTGATCGGATCGCGCCAGCCCCGTCGGCGAGTGGCGGGCTTCAGTTGTTTTATTCTCAGCAATATCCTGTGGGTCATTTGGGGCTTGCACACGGATGCCTACGCGCTGATCGTCTTGCAGTTCTGCCTGTGCGCGATGAACCTGCGGGGCTTCAAGAAAAATACCCAATGA	MDYLGWVQWPAMAITVLAAWLIGSRQPRRRVAGFSCFILSNILWVIWGLHTDAYALIVLQFCLCAMNLRGFKKNTQ				NA	NA	NA	NA	NA
D1-36_02629	1935	rcsC_14		Sensor histidine kinase RcsC	ATGCTTGAGAAGAACCCAAAGACCGCCCGTATCGATGAAGATCAGCGCTTTAGACTGTTGATCGATGCGGTGGTGGACTATGCCATCTACATGACCGATCCGTCGGGCATTATCATCAGTTGGAACTCCGGTGCCCGGCGCTTCAAAGGTTATGAAGAATCGGAAATCCTGGGCCAGCATTTTTCCCGTTTCTACACCGACCAGGACCGCGCCGCCGGCCTGCCGCAGCGGGCGCTGGACACCGCCGTGCGCGAAGGACGCTTCGAAGGCGAAGGCTGGCGAGTGCGAAAGGATGGCACGCTGTTCTGGTCTCACGTGGTGATCGACCCGATCATCGACGCCCAGAGCGGCGAGCTGCTCGGTTTCGCCAAGATCACCCGTGACCTGACCGATCGCAAGATGGCCGAGGAAACCCTCAAGCAAAGCGAACAGCAATTTCGCCTGCTGGTGCAAAGCGTCACCGACTATGCCATCTACATGCTCGATCCGGATGGACAAGTCACCAACTGGAACCAGGGTGCCCAGCGCATCAAGGGCTATCTGCCGGCTCAAGCCATCGGCCAGCATTTTTCCATGTTCTACACCCCTGAAGACCGCGAAGCCGGGGAGCCGCAGCGCGCTCTGAGCATCGCCGCCACGGAGGGGCGTTTCGAAAAGAAGGGCTGGCGCGTGCGCAGGGATGGCACGCGATTCATGGCCCACGTGGTTATCGATGCGATTCGCAGCGATACCGGTACGTTGCTGGGGTTTGCCAAGATCACCCGGGACATCACCGATGCCACCCAAGCGCAGCAGGCCCTTGAACAGGCTCGCGAGGCGTTGTTCCAATCCCAGAAATTGCAAGCCATCGGCCAGCTCACCGGCGGCATCGCCCATGATTTCAACAATCTGCTGACGGTGATCCTTGGCAACCTGGAGATCGTGCGCAAGCGTATGCCCAGCGAGCCGAAGCTGACCCAACTGCTGGACAACGCCACCCAGGGCGCGCTGCGCGGCGTATCGCTGACCCAGCGCATGCTCGCGTTTGCCCGGCGGCAGAAACTCAGCGCCGAACCGGTCGAATTGTCGGCGCTGGTGGACGGCATCAGCGGTTTGCTGCAAAGCTCCATGGGCCCTTCGATACACATCCAGACCCAGTTTGACGAGGCGTTGTCGCCGGTGCTGGCCGACGTCAACCAACTGGAACTGGCGATCCTCAACCTGGCGACGAATGCCCGGGACGCGATGCCCCAGGGCGGCCGGATCTTGATCCAGGCACAGGAGCGACAGGGGAGCGATGCTCCGACGGCAAGCAAGCCGCTGGCGACCGGACGCTACATCTGCCTGACCATCAGCGATGAAGGCGAGGGCATGGACGAGGAGACGCTGGCTTCGGCGGTGGATCCTTTTTTCACCACCAAGGGCGTCGGCAAAGGCACTGGCCTGGGTCTGTCCATGGTGCATGGCCTGGCCGAGCAGCTGGGCGGCCGGCTGATTCTCAAGAGCGAGAAAGGCGTCGGCACCAGTGCCGAGCTGTGGTTGCCAGTGGCCGACGATTCGGTCAGGGACAAGCCACCCGCCACCGAGATACCAACGCAACACGTCCAGAAACTGACGGTGCTGGTGGTGGACGATGACAGCCTGGTGCTGACCAGCACCCGTTTGCTGATCGAAGACTTGGGGCATCGGGTCCTCTGCGCGTTGTCTGGCGCCCAAGCGCTGGAGCTGTTCGAGCGCAATGAAGGTATCGACCTGGTGATCACTGACATGGCCATGCCCCAGATGGATGGCGCGCAGCTGGCCAGATTGCTGCGCGAGCGCCAACCGACCCTGCCGGTTATCCTCGCCACTGGTTACGCCGAGCGCCTGGAAGGGTTTGCAACGCAATTGCCGCGTTTGACCAAGCCATTCAAGCAGATCGACCTGGTGCAGATCATCGGGCAGACGATGGGTTAA	MLEKNPKTARIDEDQRFRLLIDAVVDYAIYMTDPSGIIISWNSGARRFKGYEESEILGQHFSRFYTDQDRAAGLPQRALDTAVREGRFEGEGWRVRKDGTLFWSHVVIDPIIDAQSGELLGFAKITRDLTDRKMAEETLKQSEQQFRLLVQSVTDYAIYMLDPDGQVTNWNQGAQRIKGYLPAQAIGQHFSMFYTPEDREAGEPQRALSIAATEGRFEKKGWRVRRDGTRFMAHVVIDAIRSDTGTLLGFAKITRDITDATQAQQALEQAREALFQSQKLQAIGQLTGGIAHDFNNLLTVILGNLEIVRKRMPSEPKLTQLLDNATQGALRGVSLTQRMLAFARRQKLSAEPVELSALVDGISGLLQSSMGPSIHIQTQFDEALSPVLADVNQLELAILNLATNARDAMPQGGRILIQAQERQGSDAPTASKPLATGRYICLTISDEGEGMDEETLASAVDPFFTTKGVGKGTGLGLSMVHGLAEQLGGRLILKSEKGVGTSAELWLPVADDSVRDKPPATEIPTQHVQKLTVLVVDDDSLVLTSTRLLIEDLGHRVLCALSGAQALELFERNEGIDLVITDMAMPQMDGAQLARLLRERQPTLPVILATGYAERLEGFATQLPRLTKPFKQIDLVQIIGQTMG				NA	NA	NA	NA	NA
D1-36_02630	2337	dinG_1		3'-5' exonuclease DinG	ATGACCGAGGCGCCGGGCTACAGCATCGCCGTGCGGGCATTGTGTGAATTCACCGCCAAGGTCGGCGACCTCGATTTGCGCTTTACTCCGTCACCCACCGCGCTGGAAGGGATTGTCGGCCACCGGACCGTGGCATCACGGCGCAGCGAGGGCTACCAGGCAGAGGTCAGCCTGGAAGGCACCTACCAGAGCCTGAAGGTCAAGGGGCGAGCCGATGGCTACGATCCTGCGACCAACCGCCTCGAAGAAGTGAAGACCTACCGCGGCGACCTCAGCAAGCAACCGGACAACCATCGGCAGCTGCACTGGGCCCAGGCGAAGATCTACGCCTGGCTGATGTGCCAGAAATTGGAGCTGCCGCGCATTGACGTTGCCTTGGTGTATTTCGACATCGTCAGCGAGAAGGAAACCTGCCTGGACCAGCGTTTCGAAGCGTCGCAACTCCAGACGTTTTTCGAGCAGCAATGCGCACGGTTCCTGGCCTGGGCAGAGCAGGAAATGCGCCATCGCCAGGCACGCAACCAGGGCGCACAGGCCCTGCTTTTTCCCCACGCGACCTTCAGGCCGGGGCAGCGCCACCTGGCCGAGTCGGTTTTCAAGGCCGTCAGCACCGGTCGTTGCCTGATGGCCCAGGCGCCCACTGGCATCGGCAAGACGGTTGGCACCTTGTTCCCCATGCTCAAGGCCTTGGCGCCGCAGCGCCTGGACAAGGTGTTTTTTCTCACGGCGAAAACCCCAGGACGCAAACTGGCATTGGACGCCGCCCGGCTGCTCACCAACAGCACGACCGCGATGCCGCTGCGGGTGCTGGAAATGATCGCCCGGGACAAGGCTTGTGAACATCCGGATAAAGCCTGCCATGGCGAATCCTGCCCGCTGGCCCGTGGATTCTATGACCGCCTGCCCCAGGCCCGGGCAGCGGCGAGCCAGGTAACGCTCCTCGATCAAGCCGCGTTGCGTGACATCGCCCTGCACCACGAGGTCTGCCCGTATTACCTGAGCCAGGAAATGGCCCGCTGGGCCGACGTGGTGGTGGCAGACTACAACTATTATTTCGATTTCAGCGCCTTGCTTTTCGGCCTTGCCCAGGCCAATGGCTGGGCGGTCGCGACCCTGGTGGACGAAGCCCACAACCTGGTGGAGCGAGGGCGGCAGATGTACAGCGCGACCCTGGATCAGGCCACCTTGTCGGCGGTGCTCAAAACCGCGCCCGAGCCCCTGAAGAAACCCCTGCAAAAGCTCAATCGCCAGTGGAATGCCTTGCACGCACCACAGGTAGCGGCTTACCAGGCTTATGGCCGCCCCCCGGAAAAGCTGCTCCTTGCGCTGGGGTCCTGCGCCACGGCTATGGGCGATTACCTCAACGACCACCCCCAAGGCCTGGACAGCGGCCTGCAGGCCTTCTATTTCGACATCTTGCAGTTCGGGCGCGTGGCGGAGTCGTTCGACGAGCACTTCCTGTTCGATATCCATAAGCGAGAAACCGGTCGCCAGCGCAGCCTGTCCACGCTGTGCCTGCGCAACGTGGTCCCGGCCGGTTTCCTGCGGCCCCGGTTCACGGCGTCACGCAGCAGCGTGCTGTTCTCCGCGACCCTGAGTCCACGGCGCTACTACGCTGACTTGCTGGGTACGCCGGCGGACACGGTATCGATCGACGTTGAGTCACCGTTCCAGGCCCAACAATTGGACGTACAGGTGGTCAGTCGCATTTCCACCCGGTTCGCCCGTCGCCAGGCTTCCCTTGAGCCGATCGTCGAGTTGATGGGCCGCCAGTTCGATGAGCGCCCTGGCAACTACCTGGCGTTCTTCAGCAGTTTCGATTATTTACAGCAGGTGGCCGGGCTGTTCGCCGAGCGATATCCGCACGTCGAGACCTGGGCGCAATCGCGCGGCATGGGCGAGGCCCCACGACAGGCGTTTATCGAGCGATTCACGGAGCAGGGCCAGGGCATCGGCTTCGCCGTGCTGGGCGGGGCGTTCGGGGAAGGCATCGACCTGCCGGGCTCGCGCCTGATCGGCGCCTTCGTCGCCACCTTGGGACTGGCGCAGTTCAACCCGGTCAATGAACAGATCAAGCAGCGAATGGCGGCGATCTTCGGCGATGGATACGACTACACTTATTTGTACCCCGGCCTGCAGAAGGTCGTGCAAGCGGCTGGGCGCGTCATCCGTACCCAGCTGGATCGCGGAGTGGTGATGCTGATCGACGATCGCTTCGGCGAGGCCAAGGTGCAGCAGTTGCTGCCACGGTGGTGGTCAATCAATCCTGAGCATCCCAAGGCACCTGCGGGAGCGAGCTTGATCGCGATGTCGCCTGCATATCCTGCCTCTTCTTAG	MTEAPGYSIAVRALCEFTAKVGDLDLRFTPSPTALEGIVGHRTVASRRSEGYQAEVSLEGTYQSLKVKGRADGYDPATNRLEEVKTYRGDLSKQPDNHRQLHWAQAKIYAWLMCQKLELPRIDVALVYFDIVSEKETCLDQRFEASQLQTFFEQQCARFLAWAEQEMRHRQARNQGAQALLFPHATFRPGQRHLAESVFKAVSTGRCLMAQAPTGIGKTVGTLFPMLKALAPQRLDKVFFLTAKTPGRKLALDAARLLTNSTTAMPLRVLEMIARDKACEHPDKACHGESCPLARGFYDRLPQARAAASQVTLLDQAALRDIALHHEVCPYYLSQEMARWADVVVADYNYYFDFSALLFGLAQANGWAVATLVDEAHNLVERGRQMYSATLDQATLSAVLKTAPEPLKKPLQKLNRQWNALHAPQVAAYQAYGRPPEKLLLALGSCATAMGDYLNDHPQGLDSGLQAFYFDILQFGRVAESFDEHFLFDIHKRETGRQRSLSTLCLRNVVPAGFLRPRFTASRSSVLFSATLSPRRYYADLLGTPADTVSIDVESPFQAQQLDVQVVSRISTRFARRQASLEPIVELMGRQFDERPGNYLAFFSSFDYLQQVAGLFAERYPHVETWAQSRGMGEAPRQAFIERFTEQGQGIGFAVLGGAFGEGIDLPGSRLIGAFVATLGLAQFNPVNEQIKQRMAAIFGDGYDYTYLYPGLQKVVQAAGRVIRTQLDRGVVMLIDDRFGEAKVQQLLPRWWSINPEHPKAPAGASLIAMSPAYPASS				NA	NA	NA	NA	NA
D1-36_02631	1668	fan1		Fanconi-associated nuclease 1	GTGGCGCTATTTTCCGTGACAGCCAACCCCCTCGACGATCCCTTTTACTACCTGAACAATTTCCAGCGGGTGCTCGCCTGGCTGGCGCAACGCTACGCCGATGTACTCAGCGTCGAAGAGCAACGTTTCATCGAGGATTTCGCCGCACTGCCGCGTGCCGCCCAAGGCCTGCTGGTGCGGATGGTGATGCGCAAGGGGCGGCACTTTCGCCACGGCAAATTGCATTACCCCGAGATCGGCGACATCGGCACGGCGGTGCAACCCCTGATCGCCTTGGGCTGGGTGGAGGAAGAGGCTGAGCTGAGCCTGGAAGAATTGTTCGAAGTGTTGCTCAAGCCTGAAATCCTGCTCTGCCTCGGCCATGGTATCGAGCAGCCCAAGGCAAAGAAGGCTGACTGGCTGTTGGCGTTGAGCGAGGGGTTCAGCCAACCCCAGCCATTTCGCGCCTGGTGCCCTCAGCTCCAGGATCGGTTGTTCAGTCTGACCGTCATGGCGCTGTGCGACCGCTTGCGTTTGATGTTCTTCGGCAATCTCTACCAGGATTGGTCGGAGTTCGTGCTGGCGGATCTGGGTATTTTTACCTACGAGGCCGTTGAGTTCAGTGTCGAGTCCCGGGGGCTGCGCAGCCGGCAGGACATCGATGCCTGTCTTTTCCTGCATGAATGCCAGCAGTGCTTCGAAGCCGGTGAAGCGCTTGAGGCGATCGTCGCCCGGATCAATACCCTGGAATTGGATAATCCTTGGCTGGAGCTGCGTCGGGGCAAGCTGTTGTTCCAGATCGGCCAGCACGCTGAACGTATCGGCGACTTTGCCACGGCCCTGTGCATCTATTGCGATTGCACCTATCCCGGCGCGCGGTTGCGCATGATCCGGGTGCTTGAACGCGTCGGTGAATATGCCTTGGCTCTTGACCTGGGCGAAGCCGCGGCGCAGTCGCCGCAAAGCGCCGCCGAACAACAAGCCCTGTTGCGGATCGTGCCGCGGCTGCGGCGCAAACTGGGCGGGCCACCCGTGCCGCGCCCGATAGCCCGGAGCGTCGAGCGGCTGGATTTGCACTTACCCCGGGTCGATCCGGCATTGTCGGTGGAATATTGCGTCCAGGCCCATTTGCATGACGACGCCGCGCCGGTGCACTACGTCGAGAACAGCTTGGTCAATTCCCTGTTCGGCCTGCTGTGCTGGCCGGCGATTTTCGCGCCGTTGCCAGGGTCGTTCTTCCACCCGTTCCAGCGCGGCCCGGTGGACCTGCTCAACGAGGACTTTCACGACCGTCGCGCCGAGCTGTTCGCGGCGTGCTTCGCCGAGCTGGATGACGGGCGCTACCGTGAAACCATCCGCCGTCGTTATTCAGAAAAATGTGGCGTGCAATCACCTTTCGTGTTCTGGGGGGCGCTGTCCGAAGCGCTGTTGGACCAGGCGCTCGACTGTCTGCCGTCAGAGCACCTCAAACACTGGTTCAGTCGTTTGCTATTGGACATCAAGGCCAACCGCGCGGGCATGCCGGACCTGATCCAGTTCTGGCCGCAGCACAAGACCTACCGCATGATCGAAGTCAAAGGCCCTGGCGATCGCCTGCAGGACAACCAGCTGCGATGGCTGGACTTCTGCCATGAGCACCGTATGCCAGTGGCTGTCTGTTACGTGCAATGGGCGGAGCAGGGCGCATGA	MALFSVTANPLDDPFYYLNNFQRVLAWLAQRYADVLSVEEQRFIEDFAALPRAAQGLLVRMVMRKGRHFRHGKLHYPEIGDIGTAVQPLIALGWVEEEAELSLEELFEVLLKPEILLCLGHGIEQPKAKKADWLLALSEGFSQPQPFRAWCPQLQDRLFSLTVMALCDRLRLMFFGNLYQDWSEFVLADLGIFTYEAVEFSVESRGLRSRQDIDACLFLHECQQCFEAGEALEAIVARINTLELDNPWLELRRGKLLFQIGQHAERIGDFATALCIYCDCTYPGARLRMIRVLERVGEYALALDLGEAAAQSPQSAAEQQALLRIVPRLRRKLGGPPVPRPIARSVERLDLHLPRVDPALSVEYCVQAHLHDDAAPVHYVENSLVNSLFGLLCWPAIFAPLPGSFFHPFQRGPVDLLNEDFHDRRAELFAACFAELDDGRYRETIRRRYSEKCGVQSPFVFWGALSEALLDQALDCLPSEHLKHWFSRLLLDIKANRAGMPDLIQFWPQHKTYRMIEVKGPGDRLQDNQLRWLDFCHEHRMPVAVCYVQWAEQGA				NA	NA	NA	NA	NA
D1-36_02632	225			hypothetical protein	ATGAACATCAGGTTTCTGGGCCTGCCCTGGGTCGCCGTGGCATTCCTGGCGCTGGCCGGCTGTGCATCACCAACCGTGGTGACGTTGCAGAACGGTACCCAATACTTGACCGAGGACACCCCCAATACCCGCACGGCGGATGGCTTCTACGAATTCGAAGACATTTCAGGCAAGAAAGTCCGGGTTCGTGCCGATGAAGTCGCCACGATTCGCAAGGAAGACTGA	MNIRFLGLPWVAVAFLALAGCASPTVVTLQNGTQYLTEDTPNTRTADGFYEFEDISGKKVRVRADEVATIRKED				NA	NA	NA	NA	NA
D1-36_02633	903	pcpR_2		PCP degradation transcriptional activation protein	ATGTCTGCAATCGACCTGAATCTACTCGTCACCCTGGATGCGTTGTTGTCCGAAGGCAGCGTGGCCGGTGCGGCCCGGCGGCTGGGGCTAAGTGCCTCGGCCATGAGCCGAGCGTTGGCGCGGTTGCGGCAGGCGACGGGGGACCCGTTGCTGGTCCGGGCGGGGCGCGGCCTGGTTCCAACGCCCCGGGCCATGGAACTACGCGAGCAAGTCAGCCAGTTGGTGCAGGGCGCCCAGGCCGCCTTGCGTCCGGTGCAGGCCCCGGACTTGCGCCGTATCAACCGGACATTTACGTTGCGCACCCGCCAAGGATTCGTGGAGAACTTCGCGATCGACCTGATCGCATACCTAAGCGAGCACGCCCCAGGAATACGGTTGCGTTTTGTCGAGAAGACCGACCGGGACGGCACGGCGCTGCGCGAGGGCAGCGTGGACCTGGAGACCGCCGTCGTCGATGAGGACACGCGCCCGGAACTGCGCACCCAGGCGTTGTTCGTCGACCGCATCATAGGCGTGGTGCGTGCGGGGCATCCGCTGAGTCGGGCCGAGGTGGATGTAACCGGTTACGCGGCCGGCAGGCATGTCGGCGTTTCCCTGCGCGGAATCGAGCATGGCCCGATCGATGAGGCCTTGGGGGCGTTGAATCTATCCCGCGACATCGTGACTTGCGTCCCGGGTTTTTCCACTGCCCTGGGGCTCGCGCGGTCCAGCGATTTGATTGCCAGCGTGCCGGAGCGCTACACCACGCGCCTGCGCCACGGCATGCACAGCTTCGCGCTGCCAGTCCCGATTCCTGAATTCACTGTCGCAATGCTCTGGCATCCGCGAATGGATGCTGACCCCGTGCACCGTTGGTTGAGGGGCTGTCTGCGGGAAATATGTTCGGGGAAAAAACCGATATAG	MSAIDLNLLVTLDALLSEGSVAGAARRLGLSASAMSRALARLRQATGDPLLVRAGRGLVPTPRAMELREQVSQLVQGAQAALRPVQAPDLRRINRTFTLRTRQGFVENFAIDLIAYLSEHAPGIRLRFVEKTDRDGTALREGSVDLETAVVDEDTRPELRTQALFVDRIIGVVRAGHPLSRAEVDVTGYAAGRHVGVSLRGIEHGPIDEALGALNLSRDIVTCVPGFSTALGLARSSDLIASVPERYTTRLRHGMHSFALPVPIPEFTVAMLWHPRMDADPVHRWLRGCLREICSGKKPI				NA	NA	NA	NA	NA
D1-36_02634	1464	ribZ		Riboflavin transporter RibZ	ATGAAGCCAGCCAATGCAGAACAAAGCTTGCCAACGACAGCGGCTCACTCGCCGAGTACCCCGGTGCGCTGGGCCCTGACCAGCCTCGCACTCTCGACACTGCTGGCGTCACTGGGTGCCAGCGTAGCCACCGTCGCCTTGCCGGTGCTCGCCGAGGCGTTCGAGGCCTCGTTCGCGCAAGTCCAATGGGTCGTGCTGGCCTACCTGCTCGCGATTACCACGCTGATCGTGAGCGTGGGCAGGCTCAGCGACTTGCTGGGCCGGCGCAAGCTGCTGCTGGCAGGCATTGCGCTGTTTACCCTTGCGTCGGCGCTGTGCGCCCTGGCGCCGTCGCTCTGGTGGTTGGTCGCGGCCCGGGCCCTGCAAGGCCTGGGGGCGGCGATCATGATGACCCTGACGCTGGCCCTGGTCGGCGAAACGGTGGAAAAGAGCAGGACTGGCAGCGCCATGGGGCTGCTTGCCACGCTGTCGGCGGTGGGCACCGCCTTGGGCCCGTCCCTGGGCGGCCTGCTGATCACAGGGTTTGGCTGGCACGCACTGTTCTTGATCAACCTGCCCCTGGGCCTGCTGACGCTGCTGTTGGCTTGGCGATTCCTGCCTGTCGTGCCCAGGCCGATTGCCATCGGGCGCTTGCGCTTCGACGGCCTGGGCACACTGTTGCTCGCCACCGGGCTGGGCGCCTATACCTTGGCGATGACCGTCGGACGCACAAGCTTCGGCTGGCTGAACAGCGGGCTGTTACTGGTAGCGGTTATCAGCGGCGGGCTGTTCGTCCAGGTGCAACGTAGGCTCGACTCGCCACTGATTCCCCTGGCGATGTTCCGCGACCGCCCCCTAGTGTCAGGCCTGGCGGCCAGTGCATTGGTCGCGGCGGTCATGATGGCGACTTTGCTGGTCGGCCCGTTCTACTTGTCCATCACCCTCGGTCTGCCTCCGGCAATCGTCGGCTTGGTACTGGCGGCGGGCCCCTGCGTGGCCGCGCTCGCCGGTGTGCCCGCCGGACGCCTGGCTGATCAGTTCGGGGTACGTCCAATGCGGCTAGCCGGGCTGGCGACGATGGTCCTCGGCACCCTGCTCTTGTCGCGGATTCCCCCCACGCAGGGCATTGCGGGCTATGTTCTTGCCATTGCGGTGACTACCCTTGGCTACGCGCTGTTTCAACCCGCGAACAACGCGGCGGTGATGGCGCCGGTCCCCGATGACAAGCGTGGCGTGGTTGCCGGCCTGCTCAATTTATCGCGCAATCTTGGCTTCCTTTCTGGCGCGTCAGTGCTCGGTGCGGTTTTTGCCGCGGTTTTGCCGACCAACGGTATCTCTGTCGCAAGTCCGGAAGACGTAACGAACGGCATGCATCTCACGTTTGCCGCCGGCCTGGCCCTGACCGCCCTGGCGTGGTTGATAAGCGCCGCAACCCGCGTGCCAGAGCGGTTGAAGCAAGGCGCGGAGCGCACCAGCAAACGGTGA	MKPANAEQSLPTTAAHSPSTPVRWALTSLALSTLLASLGASVATVALPVLAEAFEASFAQVQWVVLAYLLAITTLIVSVGRLSDLLGRRKLLLAGIALFTLASALCALAPSLWWLVAARALQGLGAAIMMTLTLALVGETVEKSRTGSAMGLLATLSAVGTALGPSLGGLLITGFGWHALFLINLPLGLLTLLLAWRFLPVVPRPIAIGRLRFDGLGTLLLATGLGAYTLAMTVGRTSFGWLNSGLLLVAVISGGLFVQVQRRLDSPLIPLAMFRDRPLVSGLAASALVAAVMMATLLVGPFYLSITLGLPPAIVGLVLAAGPCVAALAGVPAGRLADQFGVRPMRLAGLATMVLGTLLLSRIPPTQGIAGYVLAIAVTTLGYALFQPANNAAVMAPVPDDKRGVVAGLLNLSRNLGFLSGASVLGAVFAAVLPTNGISVASPEDVTNGMHLTFAAGLALTALAWLISAATRVPERLKQGAERTSKR				NA	NA	NA	NA	NA
D1-36_02635	279			hypothetical protein	ATGAATAAAGGATCTTTCAGCAAGGTAACGTTCCCCAACGCCTGCCAGTTGATGCGCTGGCACTTCCATCCCATGGGCTTCGAAGCCAGCATGGACGCTCCGGGCAGTATGGTTGCCCGGTTATTTGATCGCGCGAGCGGCGAAACCATGATCGCGATTGCAGGCATTCCCTGCGCGACCGTGATGAACGCCCCCGACGTCGAGCGAATTATCGAAGCGGTGGAAGCCGAGCTAGAAGCCTTCGTTCCTCCGGTTGGTTTGCGACGATTCGCCTCATGA	MNKGSFSKVTFPNACQLMRWHFHPMGFEASMDAPGSMVARLFDRASGETMIAIAGIPCATVMNAPDVERIIEAVEAELEAFVPPVGLRRFAS				NA	NA	NA	NA	NA
D1-36_02636	2469	rep_1		ATP-dependent DNA helicase Rep	GTGCCGCAACACCGTCCCGATCTTCCCTCCGACCTCTTGCCCCTGGCCCAGATGCCCTGGTTCAAGCGCCTGGCCGCGCGTTTATTCGGCCACGGCCTGACACGTTTGCGCGCCCAACACCGGGCGTCCTGGCTGCACGGTCAGGCCGATGGCTTTCGGAGCGGCCACACCGCCGGGTTTGACTATGGTTTCAGCGAAGGCAAGGCCGAGGGGTTGGAAGAGGGTCGCCAGGTCCTGTTGATCCGGGATTCGCGAAGCACTGAACATCCCGCTCCCCAAGTCGATGACCTGCTGTTCGATGACTGGCGCTTCCCCCTGACGGCCGAGCTGAAAAAACGCATGAAGGCTGACGTTGCCCGGCTGTTGCCGGCGCAGGCGCAACCCAGCAGCGCCCAATGGAAAATGATCTTCAGCGATACGCCGGCGACGTCGGTCGTTGCGGGCGCGGGCGCGGGCAAGTCCACCACCTTGGTGCTGCGCATCGTGCTGCTCTCACAGTACCTGGGCTTCGAGCTGGGCTCGATGACCGTGGTGACATTTACCCGGGAGTCGCGCAAGGATTTCATCGAGAAGCTCATCTCGGTCTTTGCGCTTTGGGGGCGGGCGATCGGGTTGAAGGAGGCGCGCGAACTGGTGCGCACCTTCCATTCTCGTATCCTGCCCATGGTCCGCAGTTTGCCGGGATTCGAGCGGCTCCAGGCGTTCGAGACCCTGAGCCATCGAACCGGGCCTGATGATGAGGACGGCCAAGGCAATCCGTTCGATCTGCGCATCAACGATGCCCAGCGCCAGCAGCTCAACGCCTGCTATCACGGGCTTTATCAGCGTGACGAGCGGTTCCGTGCGCTGATGACGTCACTTTCCCGTCACGCCTTGCAGCTCAAGGAACTGGAGCGCGACCACCCGGATGTGCAAAAGCGCATCGCTGTGACCGAGCTGGCGGCCCAGCGCGACGAAGCGTTGTGCGATGCGATCGAAGACCTCTGGTTTCGCGCGGGCGTCTGGCCGATCAAAGGGGTTGAGCCCAAGCGCGAAACGTTTGAGATCAATGGGTCGAGGTTTCATTGCCACGGCTACATACCGACCCTCGATGCCTGGGTGATGCTAGGGTTCGATCCGCGAGAAAATACTCAACTGAGTCGGCCCGGCGCCAAGCTCAGCCTGCGCGCCGAATGGGCAGTTAAGCGAACTCTGTTTCAAGCTTTCTGCCGTAAGCCGTTGATTTGGCTCGAAAGCTATGAAGAGGCCGGGCGGGTCCTCGCCTCGCTGGCGGGCAACGGCACGGCGGGTCCCGGCTTTGATTACAAGATAAAGGGCGAGTTGGCTTCGGCACCGTTGCTGGATTGTTTCGTTTCGGCGGCGGGCTTCATCGAAAACCTCGGCCTGGATGTCCCGGACGCCGTGGGCAGGCTGTGTTTCTCCAAGGACGACCCGGATCGGTATTTTTTCGAGGCGCTGAGCCGTTTCTGGCGGGCTTTCGAGGACCATTTGCTCGACCAGTCCCCTCCGGTCATGACCTACAACCGGATGTTCTCGCTGTTCAGCGAGCATTCGCCGGAGAACTTCAAGCTGCTCGATGACGCGCTGCTGAGGTCGATGTCACATTTGATGATCGATGAGTTCCAGGACGTTTCGCCACAGATCGTCTCCTGGCTGCGAGCGACCCTAAGTGAGGTGCGCAAGCGCGGGCCCGCCATGCATGTGGGGCGGGGCGCCCAGCGGTCGTCGTTGCTGTGCGTGGGTGACGACTGGCAGTCGATCTACGGGTGGCGTGGCAGTTCGCCGAGTTTTTTCGTGGGATTCAACAAGCAATTTCCATCACCGGCGAATACGCGGGTCATGCTCACCGAGAATTACCGCAGCCACCAATACATCATCGACGCGGCCGAACATATCGTTGGTACGACGCCTTCCATTCCCGGCAAAAAAGCCAAGGCCAGTGGAGAGCCTCGTTCGCCGAGCCCGGTCAATGTGCTGGAGCGGGACGACGAAGGCTTGGCGAGGCGGCTCGGCGAGCACTACCGCAACGGCGATTCGATCTTGATGTTGTATCGAAAAAGTAGCGATAAGCTATTGATACAAAAGTATATTGAGCCAACAGTTAAGGTGGATTCTAGCTTACCGTATTCTCAAAGGCGCCTCAGGCAGATGACCTACCATAGCGCCAAGGGTCTCCAGGCGGATGCGGTGTTCTTGATAGGCGACTGCCAACATTTGACCCGTTCGCCGTACAAGAACCAGGTGTATCGAATGGCTGGGTTGGGCCAGGAAGGCGACGCCGAACCTTACGACTCGGCGCAGCGCGATGAGATCCTGCGCTTGGCGTATGTGGGCATTACACGGACGGTGCAGCATTGCTACTGGTATGTCGATGGTCAAGACAGCCAGGCGGCTAACGCACCGAAGGCCTCGGACCGGGTCGGGGTAGGCAAACCGTTTTTCGCTGATCACCGCCGTGCGCGCGGCTGA	MPQHRPDLPSDLLPLAQMPWFKRLAARLFGHGLTRLRAQHRASWLHGQADGFRSGHTAGFDYGFSEGKAEGLEEGRQVLLIRDSRSTEHPAPQVDDLLFDDWRFPLTAELKKRMKADVARLLPAQAQPSSAQWKMIFSDTPATSVVAGAGAGKSTTLVLRIVLLSQYLGFELGSMTVVTFTRESRKDFIEKLISVFALWGRAIGLKEARELVRTFHSRILPMVRSLPGFERLQAFETLSHRTGPDDEDGQGNPFDLRINDAQRQQLNACYHGLYQRDERFRALMTSLSRHALQLKELERDHPDVQKRIAVTELAAQRDEALCDAIEDLWFRAGVWPIKGVEPKRETFEINGSRFHCHGYIPTLDAWVMLGFDPRENTQLSRPGAKLSLRAEWAVKRTLFQAFCRKPLIWLESYEEAGRVLASLAGNGTAGPGFDYKIKGELASAPLLDCFVSAAGFIENLGLDVPDAVGRLCFSKDDPDRYFFEALSRFWRAFEDHLLDQSPPVMTYNRMFSLFSEHSPENFKLLDDALLRSMSHLMIDEFQDVSPQIVSWLRATLSEVRKRGPAMHVGRGAQRSSLLCVGDDWQSIYGWRGSSPSFFVGFNKQFPSPANTRVMLTENYRSHQYIIDAAEHIVGTTPSIPGKKAKASGEPRSPSPVNVLERDDEGLARRLGEHYRNGDSILMLYRKSSDKLLIQKYIEPTVKVDSSLPYSQRRLRQMTYHSAKGLQADAVFLIGDCQHLTRSPYKNQVYRMAGLGQEGDAEPYDSAQRDEILRLAYVGITRTVQHCYWYVDGQDSQAANAPKASDRVGVGKPFFADHRRARG				NA	NA	NA	NA	NA
D1-36_02637	1647	pgm	COG0033	Phosphoglucomutase	ATGACAGTCAGTCCATTTGCGGGCAAGCCGGCACCGGCAGAGTTGTTGATCGATATCCCGCGACTGGTTACGGCCTATTACACGGGCCGACCCGATGCCTCGGTCGCGACCCAGCGCGTCGCTTTCGGCACCTCGGGGCACCGCGGCAGTTCTTTCGACCTGGGCTTCAATGAATGGCATGTGCTGGCCATCAGCCAGGCGATTTGCCTTTACCGCGAAGCCCAAGGTATCGATGGGCCGCTGTTCGTCGGCATCGACACCCATGCGTTGTCGACCCCCGCGGCAGCCAGCGCCCTGGAAGTGCTGGCCGCCAACGGTGTCACCGTGATGATTGCCGAAGGCGATGAATACACCCCTACGCCGGCCGTTTCCCACGCCATCCTCTGCTACAACCGAGGCCGCACCACTGGCCTGGCCGATGGCATCGTCATCACGCCGTCCCATAATCCGCCGCAAAGCGGTGGCTACAAGTACAACCCCACCAACGGTGGCCCGGCGGATACCCATATCACCAAATGGATCGAAGCCAAGGCCAATGAGCTGCTCGCCAACCAGCTGGCCGGCGTCAAGCGCATCAGCTACGAACAGGCGCTCAAGGCCGACACCACCCACCGCCATGATTTCCTCAATACCTACGTGGCAGATCTGGTCAACGTCATCGATTTTGATGCCATTCGCAATGCCGGGTTGCGCTTGGGCGTCGACCCGCTGGGTGGCGCGGGCGTGCGCTACTGGCCGGCCATCGCCGAGCACTATCGACTGGATCTGGACGTGGTCAATACTCACGTCGATTCGACCTTCCGCTTCATGACGGTCGACTGGGATGGGCAAATCCGCATGGACCCATCCTCCAGTCACGCCATGCAAGGCCTGATCGGCCTGAAAGAACGTTTTGACGTGGCGTTCGCCTGTGACCCGGATCATGACCGCCACGGTATCGTGACTCCGAGCGGCGGCCTGCTGGCGCCGAACAACTACCTGGCAGTGTCGATCGACTACCTGTTCCAGAACCGCCCGCAATGGCGTGCCGATGCCGCTGTCGGCAAGACTGTCGTCAGCAGTGGCCTGATCGATCGCGTGGCCAACCGTCTGGGACGACGCCTCTATGAAGTCCCGGTGGGCTTCAAGTGGTTTGCCGATGGGCTGTTCGACGGTTCCCTCGGTTTCGGCGGCGAAGAAAGCGCCGGCGCCTCGTTCCTGCGCAAGGACGGTGGCGTCTGGAGTACCGACAAGGACGGTCTGATTCCGGCGTTACTGGCTGCGGAAATGACCGCTCGCACGGGTCGCGATCCAAGCCAGGCCTATCGCGCCCTGACGGACGAGTTGGGTGAACCGTTCTCGGTGCGGGTCGACGCCAAGGCCAGCCCGCAGCAAAAAGCACTGCTGAGCAAGTTGTCGCCGGACCAGGTCCAGTCCACCGAACTGGCCGGGGAGGCGATCCAGAACATCCTCAGCCATGCGCCAGGCAACGACCAGGCCATCGGCGGCCTGAAAGTGATGACCGAGAACGGCTGGTTCGCAGCGCGTCCGTCGGGCACTGAAGACATCTACAAGATCTATGCGGAGAGCTTCGTGAGCGACGAGCACCTTAAACAACTGGTGGTCGAAGCCCAGGCGCTGGTGGACGGGGCCATTTCCGGGCAGTAA	MTVSPFAGKPAPAELLIDIPRLVTAYYTGRPDASVATQRVAFGTSGHRGSSFDLGFNEWHVLAISQAICLYREAQGIDGPLFVGIDTHALSTPAAASALEVLAANGVTVMIAEGDEYTPTPAVSHAILCYNRGRTTGLADGIVITPSHNPPQSGGYKYNPTNGGPADTHITKWIEAKANELLANQLAGVKRISYEQALKADTTHRHDFLNTYVADLVNVIDFDAIRNAGLRLGVDPLGGAGVRYWPAIAEHYRLDLDVVNTHVDSTFRFMTVDWDGQIRMDPSSSHAMQGLIGLKERFDVAFACDPDHDRHGIVTPSGGLLAPNNYLAVSIDYLFQNRPQWRADAAVGKTVVSSGLIDRVANRLGRRLYEVPVGFKWFADGLFDGSLGFGGEESAGASFLRKDGGVWSTDKDGLIPALLAAEMTARTGRDPSQAYRALTDELGEPFSVRVDAKASPQQKALLSKLSPDQVQSTELAGEAIQNILSHAPGNDQAIGGLKVMTENGWFAARPSGTEDIYKIYAESFVSDEHLKQLVVEAQALVDGAISGQ	PGPT0017710_2944	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0017710-pgm-K01835	NA	NA
D1-36_02638	1398	norG_3	COG1167	HTH-type transcriptional regulator NorG	ATGAAGGTAGGCCGGGAAACAGATTTCGCCTACCAGGCGGTCTACCGATACCTGACGAACCTCATCAATGAGCTTGGCGCAGACGCCAAGGTGCGATTGCCATCGTTGCGGCAGTTGTCCGAGCGCCTGAGCGTATCCATCTCGACGATCCAGTACGCCTACTCCCTACTGGAGAAGGAAGGGCGCGTGTATTCAATCGCCAAGTCCGGTTACTACGCGTCGCCGGTGCCCTGCGTTGCCGACCTGGGCGACGGTGAGGATTTGCTCGAAACCTTGTATGTCAACGCCCGCAGGCCTGGCATGCTGGTGCTCAGCGATGATGAGCCGGCTTCCCTGCAGCCGCTGGACAGCCCGCTGCTTTTGCTTGAGCGCGAGTTGCTCCGCCAATACCCGCGCGCTTCACAATTGACCTCACAACCCTGGGGCGAACAGGAGCTGCGAACGGCCCTTGCGGCTCGCTATACGTCTTCGCCGGCCCGATGCTGGAATGCCGACGACGTTTATATCGGTGCCGACCTGCGAGGTGTCCTGGAGATCCTCATCGCGGTATTGGCCCTCAAGGGGGCGACGGTGCTGATGGAGTCACCCGGCGACTGGACTGTCCTGCGCCTGCTGCAAGCGGCCGATGTGCAAGTGATCGAGCTGCCATCACCGGCGGGCGGGGACATGGACGTCGAGCAACTGGAGCGATTGCTTGCGAGCGAAACGGTGAGCCTGGTGGTGCTGTCCTCGGTCTTGAGCATGCCCAGGGGGACGCGCGCGAGCGAGGGTAATCGCCGCGCCGTGGCGCGGTTGCTCGAACGATACGGTACCTGGGTGCTGGAGAACGATAGCTACACCGACTTGGTATTCGAGCCAGGGAGCACGCCATTTCGGGATCTGCTGGACCCGGATCGTCTGATTGTCTACTCCACGTTCGAGAAAACCATCGGTGCCGAGGCGCCCTACGGTTACGTGCTGTCCAGGCAACTGACGTTGACCTTGCAACGGCACTTCCTGCTGCGCGCATTTCGCCTGTCGCCGATTCGCCAGAAGGCGATTGCACGCCTGTACAGCAATGGAAGGATCGACCAGCACCTCCTGGTCTTGCGCCGCTTGCTACGGGAAAGCGCCGCGTCGACCTCGCAATTGTTGCGCGAGCGGGTGAGTGATTGCCTGCAATGGGTGGAGCCCGAAGGAGGGGCGACGGTCTGGGCGCGAACTTCGCGCCCAGCTGACATGCGCCGGGTCTTTCAGCGCCTGCTGGCCCGTCGAATCGTCATCGCGCCGGGAGAATTGTTCAGCATCCAGGGGATGTACGGCCAGCATCTGCGCCTGACCCACGCATTCAGCTCAGTGGACGATCGGCAGGCCGCCCTATCTGCATTGGCCGACGCTTTGAAGCTCGAGCAATCTTGA	MKVGRETDFAYQAVYRYLTNLINELGADAKVRLPSLRQLSERLSVSISTIQYAYSLLEKEGRVYSIAKSGYYASPVPCVADLGDGEDLLETLYVNARRPGMLVLSDDEPASLQPLDSPLLLLERELLRQYPRASQLTSQPWGEQELRTALAARYTSSPARCWNADDVYIGADLRGVLEILIAVLALKGATVLMESPGDWTVLRLLQAADVQVIELPSPAGGDMDVEQLERLLASETVSLVVLSSVLSMPRGTRASEGNRRAVARLLERYGTWVLENDSYTDLVFEPGSTPFRDLLDPDRLIVYSTFEKTIGAEAPYGYVLSRQLTLTLQRHFLLRAFRLSPIRQKAIARLYSNGRIDQHLLVLRRLLRESAASTSQLLRERVSDCLQWVEPEGGATVWARTSRPADMRRVFQRLLARRIVIAPGELFSIQGMYGQHLRLTHAFSSVDDRQAALSALADALKLEQS				NA	NA	NA	NA	NA
D1-36_02639	1488			hypothetical protein	ATGAGTGCAATTCATGAACAGGCAATGACTTACGTTTACCAGCAAGTATTGCAACGCTTGCTGGATTTTTATTCCCGAGCGGAACGGACTGCACTGCAGCTCCTGATCCAACGCTTGATCGTCGCCGCTGGGGGCATCGAGCGAATCGGCGATTACCGGGTGCTGTCGGTGCAGAATGGGAGCCGGGAGGGGTTCTACGTCCTGACAGCCTTGCGAGCGGCGCAATTGAGCATCGCCGGTCGGCACCCGGCGACGTTCGATCTTCGCGTCGCCACGCCTCGCCTGGGGGAGACGACCCAGGCCAGCCTGGAGAATATTCATCGCTGCTACAGCGCGCTGTTCCTCTACGACGACCCCAGGGTGGAGCTGCTCATGGCCGACAACCGTGAGGTGGTGCCATTCGACCATCGCAAGGCACCTTCGGAGGCGTGGTATGAGTCCAATCGGACCCACATGCTGATGCTGGGCCACCTGCGTCCGTCCGACAGCCTCTTGGGCCTGGGGGATGAGGGCTACCTGGCAATGGCGGAATTCTACAGGCATGTGGCGCGCTGGGAGTCGGGCGTCGATTCATGGGTCAGCAGCGACACGCCACGCCAGCAGAAGCAATTCATGGCGGGCCTTCATCGTGCGACCCGCAAGGTCGGCCAGCCTGTCGATCCGAGTTGTGGCTTCGACGGCCTGTTCATGCAGCTCGACACGATAGGCGGCGATTTCTTCCAACAGTTCTATGGCCGGGCCCGCCTGGGGCCGTGGCGGCCCGAAGGTCAGTTCGAGGCCTGTCGGCGGATAGGGCATATCAGCATCGACGACCTGATCGTCGATCGCCTGGAGGAAAACAACTGGCCTCTGTTCAGTGAATTTCTGCGGGTACGTCCCGATGGGCTGGTTGCGCCAACGATCGAGCATGAGTTCCTCAGTCCGTTCCTGTCCGCTCACCTGTACGGCTTGCAGGCCTGCTATCTGCAAGGTCGCAGCTATGAAACCGGCTATGGCGACTATGTGCAGCGCACTGTCATGCTCATGCATCGCAAGCAATTACCCCTCCATGTCTGCCAACAGGTCCAGGAACTGTTCGGCTCGCCGGCGGCCATCCCCGAGCGTCGCGCCCAGGCAGCCAACGAGGTGCAAAACACCTTGAGGCTCAATGAAACCCAACTGGTGTGCATGCTGTTTGCGCCCTTCGTGGACAATGGCGCGGGGCTGGAGCATTTCCTGCGCTGTAGCCATCCGGGCATGCTGGTGGCGATGCCGGACCTGCACAAAGCCTTGCAGGGAGGGACCGTCGCCGATCAGGTTGCGCAATGGATGGTGGATGTCAGCGGCCTGTCTATCCCGATGCTTGGCAAGTTGTACCGCGTCCGACTCGTCCCCGCGGAACGGGGGGCGGTTTCGGTGGTCGGCCCGCAATCAGTCGAGCAAGGCTTCGATACGGATGAAGATGAGCAGGGTACCGATGGATTGCGCGAACGCTCGGCGCGACGCTGA	MSAIHEQAMTYVYQQVLQRLLDFYSRAERTALQLLIQRLIVAAGGIERIGDYRVLSVQNGSREGFYVLTALRAAQLSIAGRHPATFDLRVATPRLGETTQASLENIHRCYSALFLYDDPRVELLMADNREVVPFDHRKAPSEAWYESNRTHMLMLGHLRPSDSLLGLGDEGYLAMAEFYRHVARWESGVDSWVSSDTPRQQKQFMAGLHRATRKVGQPVDPSCGFDGLFMQLDTIGGDFFQQFYGRARLGPWRPEGQFEACRRIGHISIDDLIVDRLEENNWPLFSEFLRVRPDGLVAPTIEHEFLSPFLSAHLYGLQACYLQGRSYETGYGDYVQRTVMLMHRKQLPLHVCQQVQELFGSPAAIPERRAQAANEVQNTLRLNETQLVCMLFAPFVDNGAGLEHFLRCSHPGMLVAMPDLHKALQGGTVADQVAQWMVDVSGLSIPMLGKLYRVRLVPAERGAVSVVGPQSVEQGFDTDEDEQGTDGLRERSARR				NA	NA	NA	NA	NA
D1-36_02640	1026	tdh		L-threonine 3-dehydrogenase	ATGTCCCGCACGATCCGTTTTCACAAGTTTGGTGGTGCCGAGGTGCTCAAATGCGAAGAGCATGCGGCGGCTCTTCCTGCGCCGGGAGAAGTGCAGGTCCGCGTCGAAGCGATCGGCATCAGCTGGTATGACACCCTGTGGCGCCAGAACCTGGCGTCGTCCCAGGCGCGCCTGCCTTCGGGGCTTGGCCATGAAATGGCTGGCGTGGTCACCGCCATCGGCGACGGTGTCGACGATCTGGCCGTCGGCGACAAGGTCGCCAGCTTCCCCGCAGAGAGTCCGAACGATTATCCGGTGTATGGCGAGGTCATCGTGCTGCCACGCACCGCGCTGACTCGCTATCCCGACGTGCTCAGCCCAATCGAGGCCGCGGTGCATTACACGCCGCTGTTGATCGCCTACTTCGCCTACATGGACCTGGCACGGGTCAAGCCTGGGCAGTTTGCCCTGGTCACCGATGCCAGCCATTGCGCCGGTCCGTCGTTCGTGCAGCTGGGCAAGGCCTTGGGTGTGCGGGTGATCGCAGCGACCAAGACTGCCGACGAGCGCGAATATCTGCTGTCGCTGGGCGCCGAAAAGGTGATCGTTACCGAAGAGCAGGACTTGCTGATGCAAATCAACAAGCTGACGGACAATCGTGGCGTCGACGTCGTGTTCGACGGGCTTGGCGGTCCGCAGATGTCGCTCCTGGGTGACGTGCTGGCACCTCGTGGCAGCCTGGTGCTGTATGGCTTGCAGGGTGGCAACCAGACGCCATTTCCGGCTTGCGCGGCCTTCCAGAAGAACATCCAGTTCTTCGTGCACTGCATCGGCAATTTCACCGGCAAGCCGGAACTGGGGATTGTCCAGGACCAGGTGGCCTTGCAGCGCGCATTGCGTGATATCAACCAGCTCACCGCCGATCGTGTCGTGTTGCCACTCAAGACTCGGGTCTTTCCCTTCTCCGAGTTCGTCGAGGCCCACCGCTACATGGGCGAATGCCCTTGCCGCGAACGTGTTGCCCTTCAGGTGGTCGACCCCGCCTGA	MSRTIRFHKFGGAEVLKCEEHAAALPAPGEVQVRVEAIGISWYDTLWRQNLASSQARLPSGLGHEMAGVVTAIGDGVDDLAVGDKVASFPAESPNDYPVYGEVIVLPRTALTRYPDVLSPIEAAVHYTPLLIAYFAYMDLARVKPGQFALVTDASHCAGPSFVQLGKALGVRVIAATKTADEREYLLSLGAEKVIVTEEQDLLMQINKLTDNRGVDVVFDGLGGPQMSLLGDVLAPRGSLVLYGLQGGNQTPFPACAAFQKNIQFFVHCIGNFTGKPELGIVQDQVALQRALRDINQLTADRVVLPLKTRVFPFSEFVEAHRYMGECPCRERVALQVVDPA				NA	NA	NA	NA	NA
D1-36_02641	915	nodD2_2		Nodulation protein D 2	ATGAATCGTAATGACCTGCGTCGTGTCGACCTGAACCTGTTGATCGTGTTCGAAACATTGATGCATGAACGCAGTGTGACCCGCGCCGCCGAGAAGCTGTTTCTCGGCCAGCCGGCCATCAGCGCCGCGCTGTCGCGCCTGCGCAGCCTGTTCGATGACCCCTTGTTCGTGCGCACCGGGCGCAGCATGGAACCCACCGCCCGAGCGGTGGAAATCTTCGCCCTGCTCTCTCCGGCCCTGGATTCAATCTCCACCGCGGTCAGCCGGGCGGCGGAATTCGACCCGGCCACCAGCACTTCGGTGTTTCGCATCGGCCTGTCGGACGATGCCGAATTCGCCCTCCTGCCCATGCTGCTCAAGCGCCTGCGAGCCGAAGCACCGGGCATTGTGCTGGTGGTGCGCCGGGTCAATTACATCCTGATGCCGGGCTTGCTGGCCTCGGGGGAAATCTCCATCGGCGTCAGCTATACCGACGACTTGCCGGCCAATGCCAAACGCAAGGTATTGCGTCGCAGTTCGCCGAAAGTGCTACGGGCCGACACCGCGCCGGGACGGCTGACCCTGGACGAATTCTGCGCCCGGCCCCACGCCCTGGTGTCATTCGCCGGGGATTTGAGCGGCTTTATCGATGAAGAACTGGAAAAACTCGACCGCAAGCGCCATGTGGTACTGGCGGTTCCGCAATTCAACGGCCTGAGCACACTGTTATCGGGCACCGACATCATCGCCACCGTACCCGATTACACCGCCGACGCATTGACCGCCGCCGGCGGCGTGCGCGCCGAAGACCCACCCATCCCGGTGCGAAGCTTCGAACTGCACATGGCTTGGCGGGGATCACAGGATAATGACCCGGGAGAACGCTGGTTGCGGTCGCGGATCCAGATGTTTTTTGGGGACCCTGAGAGTCTTTAG	MNRNDLRRVDLNLLIVFETLMHERSVTRAAEKLFLGQPAISAALSRLRSLFDDPLFVRTGRSMEPTARAVEIFALLSPALDSISTAVSRAAEFDPATSTSVFRIGLSDDAEFALLPMLLKRLRAEAPGIVLVVRRVNYILMPGLLASGEISIGVSYTDDLPANAKRKVLRRSSPKVLRADTAPGRLTLDEFCARPHALVSFAGDLSGFIDEELEKLDRKRHVVLAVPQFNGLSTLLSGTDIIATVPDYTADALTAAGGVRAEDPPIPVRSFELHMAWRGSQDNDPGERWLRSRIQMFFGDPESL	PGPT0028130_494	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexEF-OprN,PGPT0028130-mexT-K18297	NA	NA
D1-36_02642	507			hypothetical protein	ATGAACATTGAAGAACTGAGCACCCGACTGGACGCCCTGGAAAGTCGCGCCGCAATCGAGTCGCTGATCAGCGCCTACGCCAATGCCTTCGATCGCGTTGACGTGTTGCTCCTGAGCGCAATCTGGCACGAAGAATCGACACTGGACTTACCGGGTTTCGGTAAGGCCGGAAACCGTGACGAAATCCTGGCGATGGCGCAAAACAGCTGGCACCAGATGCCTTATATGCACCACTGGATGGCCAACCCACTGATCGAAATCAAGGGTGACAGCGCGGCGGGTACGGTGGCCGCGGATTGCCTGTTCCATGACATTGAAAAAGGTCCGGTTCAAGCCAGTGGGCTGTACCACGACAGGTTTGAACGTCGCGACGGAAAATGGGCGTTCCTGTCACGTCGTTTTGAACTGCACTTTCTGACACCTTTAAAGGATTGGGTACCCGTAGCGGGCGATGAAAAGTACACAGCGGATCAACATCAGCGCCTGAACATGCTTTCACAGAAATGA	MNIEELSTRLDALESRAAIESLISAYANAFDRVDVLLLSAIWHEESTLDLPGFGKAGNRDEILAMAQNSWHQMPYMHHWMANPLIEIKGDSAAGTVAADCLFHDIEKGPVQASGLYHDRFERRDGKWAFLSRRFELHFLTPLKDWVPVAGDEKYTADQHQRLNMLSQK				NA	NA	NA	NA	NA
D1-36_02643	759	cpnA		Cyclopentanol dehydrogenase	ATGTCAGGTAAATTCGCCAATCAGATTGCAGTTGTCACCGGCGCATCCACCGGGATCGGATTTGCGATTGCGCAGGGTTTGATTGCAGAGGGAGCCAAGCGTGTTTACATCACGGGTCGCTCTGCAGCCACGCTGGAAGCTGCGGTGGCAAAGCTGGGCGACAGAGCCGTCGCGGTCATTTCGGATGTCGCGCGCCAGGCTGATCTCGATAAGCTCAAGGCGACCATTGTGGCCCGTGACGATCAATTGGACGCAGTGTTTGCCAACGCGGGCATTTGTGAAAAAAACCCGGTGGGCGAGACCACGGAGACGGCTTATTTCAATATGTTCGACATTAACGTAAAGGGCGTTTTTTTTACCGTTCAGACGTTAATGCCATTGTTGAAAGATGGCGCTTCGATCGTGTTGACGGCCTCTATCTGTTCCAGCAACGGGATGGAAGGGCTGAGCCTTTACAACGCATCCAAGGCCGCGGTGCGGTCCTTCGCAAGGACTTGGGCCAACGAACTCAAAGGTCGCAGGATTCGAGCGAATGTCCTGAGCCCTGGCTTCACCCGCACGCCTCTGATGGATAACGGCTTGAAGATGAGCGAACGCGACATCGCCGCGCTGCGACAACATGTCGAGCAGATCACTCCGCTGGGGTATATGGCCCAACCTGAAGAAATCGCCTCGTCGGCGCTGTTCCTTGCATCCGCCGATGCGAAATACGTCAACGGTGTGGAGCTGATGGTCGACGGCGGCCTGTCGCAGATCTGA	MSGKFANQIAVVTGASTGIGFAIAQGLIAEGAKRVYITGRSAATLEAAVAKLGDRAVAVISDVARQADLDKLKATIVARDDQLDAVFANAGICEKNPVGETTETAYFNMFDINVKGVFFTVQTLMPLLKDGASIVLTASICSSNGMEGLSLYNASKAAVRSFARTWANELKGRRIRANVLSPGFTRTPLMDNGLKMSERDIAALRQHVEQITPLGYMAQPEEIASSALFLASADAKYVNGVELMVDGGLSQI				NA	NA	NA	NA	NA
D1-36_02644	1458	stp		Multidrug resistance protein Stp	ATGCCTCAGACTAAAATCGCCCCCCCGGAACCGCGGCGCTGGTTGATGTTCGCCATCTTGTTGGTCGGTGCGTTTTTACCGCCGCTGGATTTTTTCATCGTCAACGTAGCACTGCCCTCGATTCAACAATCGCTGGGCACGGCCTCCTCCGCCGAACAGTTGATCATCTCGTCATATGCGGCTCTTTATGCCGTGACATTGATCACCGGGGGTCGGCTCGGCGATATCTACGGCCGCATGAGAATGTTCTTCGTTGGCCTGGTTGGCTTTGCAATCGCCTCATTGATCTGCGGTGTCGCCGAGTCACCTTGGATGTTGATCGCCGGACGTTCGCTGCAAGGCGTGACGGCAGCGGTCATGGCGCCCCAGGCACTCGCTTCAGTGCAGGCCATATTCCCTGAGTCCGAAAAACCTTTGGCGTTGAGCCTCTATGGCGCAGTCTTTGGCCTGGCGTCGGTAGTCGGCCAGGCCCTTGGCGGAATATTGATATCGCTCAACTTGATGGGCTTGGGGTGGCGGGCGATATTTCTTGTGAATTTACCGATTGCGTTACTGGTGATTCTGATCGCCATTGCGGTGGTCAAGGAAACCCGCGCACCACATACAAGCAAGCTTGATCTGGGCGGAACGGTACTGTCCATGGTGACGCTGGGAGCGCTGATCGTGCCGCTGATCGAGGGGCGTGAAGCGGGCTGGCCTTTGTGGGCCTGGCTGTCGCTTGCGGCGGTGCCGCTGCTGGCCTGGCTGTTCTGGCGCTACGAAGCCCGTTTGCACCAAGCGCAAGGCGCGCCGTTGCTGAATCCTGCCGTACTGCGCGCGCCTGGGTTGGGCCGGGCACTGTTCGTCGCTCTGACCTTTTACGCGATCGGCGTGTTTTTTCTGCTGTTTTCTATTTATCTACAGGGAGCGCTGCATACGAGCCCACTCAATGCAGGCCTCGTCTTCCTTCCTTTCGGCGCGGGCTTTTTGCTGGGACCGCTCTCCACTCCTCACTTCAGGCATTTGCTGGGGGCATACGTCAATCCGGTCGGGATGGGACTTGAAGTGTTGGGGCTCATGCTCCTGGCCTGGCTCGTGGCGCACACGCCGATGTCCGTCAGCCCCGCTGCGCTGCCCCTTGCCGTCATTCTGTTTCTGATCGGCTTCGGACAAGGACTGGCCCTTCCGACATTGATGCGCATGATCACAGGGCGCGTGGCGCCATCGTACTCCGGCATGATTGCGGGCATTACCAGCTCTACTCTGCAAATCAGCACATCACTGAGTGTCGCGATAATAGGCGGAGTTTTTTACACCCTTCTAGGCACGGACACAGACGCGGCTGCCATCACGCACGCCTTCACCGTCTCAATACTCTGTATCGCGGCATGCCTGGTCGTAGGCACGGGACTCAGCCTTACCCTGGCGCGCCAACCTGCTGCGCAACTGCAAACGACAGCCATGCACCCAGCGGAGTGA	MPQTKIAPPEPRRWLMFAILLVGAFLPPLDFFIVNVALPSIQQSLGTASSAEQLIISSYAALYAVTLITGGRLGDIYGRMRMFFVGLVGFAIASLICGVAESPWMLIAGRSLQGVTAAVMAPQALASVQAIFPESEKPLALSLYGAVFGLASVVGQALGGILISLNLMGLGWRAIFLVNLPIALLVILIAIAVVKETRAPHTSKLDLGGTVLSMVTLGALIVPLIEGREAGWPLWAWLSLAAVPLLAWLFWRYEARLHQAQGAPLLNPAVLRAPGLGRALFVALTFYAIGVFFLLFSIYLQGALHTSPLNAGLVFLPFGAGFLLGPLSTPHFRHLLGAYVNPVGMGLEVLGLMLLAWLVAHTPMSVSPAALPLAVILFLIGFGQGLALPTLMRMITGRVAPSYSGMIAGITSSTLQISTSLSVAIIGGVFYTLLGTDTDAAAITHAFTVSILCIAACLVVGTGLSLTLARQPAAQLQTTAMHPAE				NA	NA	NA	NA	NA
D1-36_02645	861			hypothetical protein	ATGGATTGGAGTGATGTGCGGGTCTTTCTCGCGATTGCCCGCAGTGGGTCATTGGGCGCTGCTGCCAAGCTGTTGGGTGTTAGCCATCCGACCGTGGGGCGGCGCTTGCAGGTGCTTGAACAGTCCAGCGGCCAGCCCATTTTCCTGCGTACCACCCAAGGTCTGATACTGACCGAGAGCGGAGAGAAGCTACTCAGCCTGGCGCTGCAAATGGAGCAAAGTGCGTTGGCCATCGAGCGGCGCCTTGCGGGCGACAGCGCGCAGCCAGAAGGTGTGTTGCGCATCTCCTGCGCTGACTGGTTTGCCTGTTATGTGCTGGCCCCGGTTCTGAGCGAACTGGGGCGACGTTATCCGCTGATCGTGCCCGAGGTCATCGCCGGGCATCGATTGTTCGACCTGGCCCGTCGCGACGCCGACATCGCGTTTCGGATCGTTCCTTTCACCGAACCCGATATTGTTCACCGCAAACTCACTTCCCTGAGCTATGGGCTGTACACCGCCGTCGGATCTCCTGACCTCGAGCCGCAGGGCGAGGGGGTTGGCTTGATTACCATGAGTGTCGCCCAATCACATTATCCCGATGTGCAGTGGCTGCGGCAGCGTTACCCTCTGGCCCGTACGGTGTTCACCAGTAGTAGTCGCACCGTCCAGGCGCAGATGTGCGCGCAAGGGCAGGGCATCGCTGTGCTGCCCCGCGCCCTGGGCGACCGGTTAACGGCGCTGCGCCTGATTGATCCGCATGAGGCGCCACCGGGCCGCGACATATGGATGGGCTACCACCAGGACATGCGGCAGATGGACAGCCTGCGTGCTCTTGCCGACCTTGCTTCCATCATGATCGGCAACCAGGCAGGCGGTTGA	MDWSDVRVFLAIARSGSLGAAAKLLGVSHPTVGRRLQVLEQSSGQPIFLRTTQGLILTESGEKLLSLALQMEQSALAIERRLAGDSAQPEGVLRISCADWFACYVLAPVLSELGRRYPLIVPEVIAGHRLFDLARRDADIAFRIVPFTEPDIVHRKLTSLSYGLYTAVGSPDLEPQGEGVGLITMSVAQSHYPDVQWLRQRYPLARTVFTSSSRTVQAQMCAQGQGIAVLPRALGDRLTALRLIDPHEAPPGRDIWMGYHQDMRQMDSLRALADLASIMIGNQAGG				NA	NA	NA	NA	NA
D1-36_02646	1011	cydB	COG1294	Cytochrome bd-I ubiquinol oxidase subunit 2	ATGTTCATCTCTGAAGCGCTGTTACCCAATCTGTCGGCCGCCGCAATTGCCTTTACGATCATCACCTACGTGATTCTGGACGGCACCGACCTGGGCGTCGGCATCCTCTTCGCGACCCGCCAACACCCCGACGATAAGCAGATCATGGTCAACTCCATCCTGCCGATCTGGGACGGGAACGAAACCTGGCTGGTGCTCGGTGGCGGCGGTTTGCTCGCGCTTTTTCCCGTGGCTTACAGCGTCTTGTTTTCCGCCCTGTATATCCCCGTGATCGCGATGCTGCTGGCATTGATTGTCCGGGCCGTCGCGTTGGAGTTCCGGGCCGACGCGCCTGCACGAATGAAGCGCTGGCTCGACGTCAGCCTCGTGACCGGCTCGTTGATCGCAACGCTTTGCCAGGGTGTCATCATGGGCAGCGTAGTACAGGGAATCGATCACCACGAGGGCCGGTTCGCCGGAAACGGTTGGGAGTGGTTGAGTGCATTTGCGCTGGCGTGTGGCCTGGTGCTGGTGATTGGCTACGCACTGCTTGGCAGTTGCTGGCTGTTCTGGCGAACCGAAGGCGCGCTGCAAGCGGCGGCCAGAAGGCAGGCGCGATGGCTGGGGTGGCTGACACTGGCAGGTATTGCAATCATTGTGGTGTGGACCAGCGAGTTGGCGCCGTCCTATCGAGACCATCTTCTTGAATCGAACCTGAGCCCGGCGCTTCTGCTTGTTCAGTGCGCGTTGCTGGTCGGGTTTTACCGGGCTTTTTCCAGCCGATACCATTTCCTTCCGTTGTTTGCGGTATTGGGATGGTTTGGCACGGCGTTCGCTGCCGCGATCATTACCCTCTATCCGTTAATCCTGCCGCCGTCGCTGGCGATCAGCCAAGCGTCTGCTCCCGCTTCGAGCCAAGGGTTCATGCTTGTGGGATTCGCGGTGCTGGTGCCGGTCACGCTGGCCTACAACACGTGGGGGTTCTGGGTGTTTCGCGGTAAGGTCAAAGCGCAGTACTTCCCAGATCGATAA	MFISEALLPNLSAAAIAFTIITYVILDGTDLGVGILFATRQHPDDKQIMVNSILPIWDGNETWLVLGGGGLLALFPVAYSVLFSALYIPVIAMLLALIVRAVALEFRADAPARMKRWLDVSLVTGSLIATLCQGVIMGSVVQGIDHHEGRFAGNGWEWLSAFALACGLVLVIGYALLGSCWLFWRTEGALQAAARRQARWLGWLTLAGIAIIVVWTSELAPSYRDHLLESNLSPALLLVQCALLVGFYRAFSSRYHFLPLFAVLGWFGTAFAAAIITLYPLILPPSLAISQASAPASSQGFMLVGFAVLVPVTLAYNTWGFWVFRGKVKAQYFPDR	PGPT0026705_3986	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
D1-36_02647	1374	cydA_1	COG1271	Cytochrome bd-I ubiquinol oxidase subunit 1	ATGGAATCGATGGATTCGGCGTTGATGCTGGCGCGCTACCAGTTTGCGTTCACCATTAGCTTCCACATCGTGGTTGCTGCATTTTCCATCGGCCTGGCCAATTACCTGATGGTGCTGGAAGCCCTCTGGCTGTGGCGAAAGCGTCAGGTCTATATGGACGTCTACCGATTCTGGCTGAAGATATTCGCCTTGACAGTCGCCGTGGGCACGGCATCGGGGCTGGTCATGGAGTTCGAGTTCGGGACCAACTGGAGCGCGCTGGCCAGCCGGGCGGGGGGCATCCTCGGGCCTCTGATGTTCTATGAAGTCATGGTCGCGTTTTTCCTGGAAGCAGGCTTCATCGGGGTCATGCTGTTTGGCATGAACAAAGTCGGGCCGCGCCTGCACTTCCTGTCTACATGCGCGGTCGCCGTGGGCTCGTTGTTCAGTGCATTCTGGATACTTTCAGCCAATTCCTGGATGCACACACCGGCGGGCTTCAGCATTGCCGGCGATGGCCGGTTCGTGCCCGAAGACTGGCTGCAGATCATATTCAACCCCTCGTTTCCCTACCGTATGGTGCACATGAGCATCGCCGCCTTTCTCGGCACGGCCACCCTCGTGGGCGGCGCGGGCGCGTGGCACTTGCTGCGCGACAATACCCACGCGCCTGCGCGAGTGATGTTCTCAATGGCACTGTGGATGGCGGCCGTGGTCGGGCCTATCCAGCTCGTCGCGGGGGACCTGCACGGCGAAAATACCCGAGATCACCAGCCGCAGAAGCTGGCCGCGATGGAAGGTTCCTGGCGACGCCCGGAAGCCGGCCAGGGCGAGCCGCTGAGGTTGTTTGCGATACCGGACCAGGCCAACCGCAAAAATGATTTCGAACTGGCGATACCCCATCTCGGCTCGCTTTATCTGCGCCACGACTGGACCGGCACCATACAGAGCCTTGATGAGTTCGCGCCCGAAGACATCCCGCCCGTGGCCGTGGTCTTTTTCGCGTTTCGTATCATGGTGGGCATCGGCTTGCTGATCGTGGCCATGGGTATCGCCAGTCTCTTCTTGCGTTGGCGCGGTGGCCTGTTCGAGTGTCGATGGCTGATGCGCTGTGCGGTGCTCATGGCCCCGGCCGGGTTCGTAGCGATGGTTTGCGGATGGGTGGTTACCGAGGTCGGGCGCCAGCCATTCACGGTCTATGGCTTGATGCGCACCGTTCACAGCAGCTCGCAGCAACCGCTCTCATTCGTCCTGGGCAGCACACTCGCCCTGGTGATCCTGTACCTGCTGGTTTTCGGCCTGGGGCTGTTTTACCTGATACGCGCCATCAACCGACTGCCGGCAACTTCAACGGATGCCGACGATCAAGCCAGCGCAACGCGGAGGAAATCGTGA	MESMDSALMLARYQFAFTISFHIVVAAFSIGLANYLMVLEALWLWRKRQVYMDVYRFWLKIFALTVAVGTASGLVMEFEFGTNWSALASRAGGILGPLMFYEVMVAFFLEAGFIGVMLFGMNKVGPRLHFLSTCAVAVGSLFSAFWILSANSWMHTPAGFSIAGDGRFVPEDWLQIIFNPSFPYRMVHMSIAAFLGTATLVGGAGAWHLLRDNTHAPARVMFSMALWMAAVVGPIQLVAGDLHGENTRDHQPQKLAAMEGSWRRPEAGQGEPLRLFAIPDQANRKNDFELAIPHLGSLYLRHDWTGTIQSLDEFAPEDIPPVAVVFFAFRIMVGIGLLIVAMGIASLFLRWRGGLFECRWLMRCAVLMAPAGFVAMVCGWVVTEVGRQPFTVYGLMRTVHSSSQQPLSFVLGSTLALVILYLLVFGLGLFYLIRAINRLPATSTDADDQASATRRKS	PGPT0026700_3876	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
D1-36_02648	483			hypothetical protein	ATGGCCGAACCTATTGATTACGACGTAAAACCAAGCAAGACCGAGCCTGACGCGCAGGATGAACTTGATCGTCTGGTCCAGAGCCTCCATGAACACGGCGTGCTGCGCATGGCCAATGACCTGGTCTGTGCCAACACGGCGATTGCCAAAGTACTGGTTGATGGCCTGAACAAGGAAGGCACGCTCAACGTCATTCAGAACCTGTCGATCCTGGCGATGGCACTGTCCCGCGTGCCGCCCGATGAATTCTATCGGCTGGTCTTCGCGCTGAAGGATGCCGGCGCTGCGGTCAGTCAATGGACCGCGCCCAACAACGACGATGTCGCGCCAGGCGTGCGGGGCTCATACCGTTTGCTGCATGACGAATCGCTTTGGCGCGCGATCTTGCCGCTCCTGGAGGGCTTGAAAGCGATGGGTGAGGGCATGAAGAGGCCGATCGATAAACCGATCAGTCAATTCTGCGGCAAACCCAGCGGCGCTTGA	MAEPIDYDVKPSKTEPDAQDELDRLVQSLHEHGVLRMANDLVCANTAIAKVLVDGLNKEGTLNVIQNLSILAMALSRVPPDEFYRLVFALKDAGAAVSQWTAPNNDDVAPGVRGSYRLLHDESLWRAILPLLEGLKAMGEGMKRPIDKPISQFCGKPSGA				NA	NA	NA	NA	NA
D1-36_02649	2976			Putative formate dehydrogenase	ATGAATGGCAGATACCAGTGCAGCGTCGAGTACAACGGTCGCACCCTCAGGGGTGACGCTGACCAGCCGCTGATCGATTTCTTGGCAGAGCAGGGCATCGACCTGCCTCACGTCTGCTATCACCGCGCCCTCGGGCCGATCCAGACCTGCGATGTCTGTTGGATCGAGCATGATGGCGAGTTGGTCCGCGGGTGCGCGCTGCGTTCCGCCGACGGCATGAAGCTGGTGAGCGAAACGCCTCGCGTGAAGGCGGCGCAGGAAGAAGGCATGGACCGGATCCTTGCCAAGCACGAGCTTTATTGCACGGTCTGCGAGCACAACACCGGTGACTGCACGCTGCACAATACCGTCGCCGACATGAACCCCGTGATCCAGCGCTACAAATACCAGCGCAAGCCCTACAGCAAGGACCACTCGAACCCGTTTTATACCTACGATCCCGATCAATGCATCCTGTGCGGGCGTTGCGTGGAAGCGTGCCAGAACGTCGAGGTCAATGAAACGCTGAGCATCGATTTCACCCAGGAGCATCCAAGGGTGTTGTGGGATGGCGAAACCAAGATAGAGGGTTCCAGTTGTGTGAGCTGCGGTCATTGCGTCACGGTTTGCCCCTGCAACGCGTTGCTCGAAAAAACCATGCAGCCGGATGCCGGACCGTTGACGTCGATGCCCGAGGACATCAAGCGACCGCTCATCGACGCGGTGAAGACGATCGAGAATACGATCGGTGCGCCGCCCATTACCGCTATTTCCGTCATGGACATGCACTGGCGCCAGCCTGAAATCAAACGCACCAAGACCGTGTGCACCTATTGTGGCGTGGGCTGCTCGTTCGAAATGTGGACTCGCGACCGCACGCTGCTCAAGGTGCAGCCAGTGGTGAACGCACCGGCGAACGGCATTTCCACGTGTATCAAGGGCAAGTTCGCCTGGGATTTCGTGAACAGCGAGAAACGCCTGACGACGCCGCTGATCCGGGAAAACGGCCGGTTTCGTGAAGCAAGCTGGGACGAGGCGCTGACCTTGGTCGCAGGCCGTCTTCTGGCCATAAAACGTGAGCACGGCGCCGATGCCATCGGCTTCATTGGCTCCAGCAAGGCCAGCAATGAAGAAGCTTACCTGACGCAGAAAATCGCTCGCCTGATCATCGGCACCAATAGCGTCGACAACTCCTCACGCTACTGCCAGAACCCCGCGACACAGGGGTTGTTCCGCACGGTCGGTTACGGCGGCGACGCCGGCACGATCGCCGATCTTGAGCAGGCGGACCTCATCGTCCTGGTGGGCAGCAACCTGGCGGAGAACCATCCGGTTATCGCTTCGAAAATCAAGGCCGCGCGCAAGCATCGAGGGCAAAAACTGCTGGTGGTCGATCCACGCAAGCATGAAATGGCGGAGCGCGCCGACCTGTTTCTGCAGATCAGGTCGAGCACCGACATAGTCTGGGCCAGCGCCATGTCGCGTTACCTGTTCGATCATGGCATGGCGGACGCGGCATTCCTGGAAGCGCGGGTGAATCAGGTGGACGAGTACCGACGCTCCCTGGAACCCTTTACCCTGCCATTCGCGTCGCAGGTCACCGGGTTGTCGGAGGCGGATCTGGTCAGCGCCGCGAACATGATCGGCAAGGCCAAACGGGTCTGCCTGCTCTGGGCAATGGGCATTACCCAGCATAGCCATGGGGCCGACACGAGCACCGCACTGTCCAATCTCTTGTTGGTTACCGGCAACTATGGCCGCCCGGGAACCGGCGGTTATCCGATGCGCGGCCATAACAACGTCCAGGGGGCCAGCGACTTCGGGTGTTTGAAGAACGTCTATCCCGGTTATGAAAAAGTCACTGACGAAGCGGTTCGAGCCAAGTGGGCGAAGGCCTGGGGTGTGGCGCCGGAACGACTGTCCAACAAGGTCGGTGAAGACAACTTCCTGATGGTTCAGCATGCCGCCGAGCAGAAGATAAAAGCCATGTATGTGATCGGTGAAGAGACGGCGTTTTCCGACGCCGACACTGAAAACGTGCATGAGGCTTTCAGAAAACTCGATTTCATGGTCGTGCAGGACATTTTCTTCAGCCGCACCGCGCAGTTCGCCGACGTCGTGCTGCCAGGTTGCCCAAGCGTTGAGAAGGAGGGCACCTTCGTCAACACCGAGCGGCGGATCCAACGTTTTCATGAGGTTTTTCCGCCGCTGGGCAACAGCCTTCCAGACTGGCGCATCCTGACCGATCTGGCCAAGCGAATGGGCCATGACTGGGGATACGAGCATCCCTCGCAGATCTTCGCGGAGGTGGCCGGTATCGCCACCCTGTTCGCCGGCGCCAGCTATGAGCGCCTGGACGGTTGGAAATCTCTCCTCTGGCCAGTAAAGCCGGATGGCACCGATACCCCGTTGCTCTATACCGACCGGTTCCACACCGACGACGGCAAAGCCGTGTTGTACCCGCTGGAGTGGAAACCTCCGGCGGAAGCGCCCGACAGCGAATTCGACCTGATGCTGGACAACGGACGCATGCTGGAGCATTTCCAGGGCAACAACCAGACGGGACGTGGCGACCGTGTCGATTCGTTGTCACCGCATTGGTACGTCGAAATCAGTCCCGAGCTTGCAGACGAGCGGGGTATCCAGGATGGGACCCAGGTGCGGATCACTTCTCGCCGTGGTTCGGTCACGGTACCGGTTCTGATCACCGATCGAGTGCGCGGCAAGGTGCTGTTCATGCCGATTCACCAGGGCAAGCCCGGCATTAATGAACTCACCGGGGAACATCATGATCCAGACGTCAACACGCCGGCCTACAAGGAAACCGCTGTGAAGATGACGATCCTGAGGGATCCCCCTCCGCAATCGGCATTGCCGCGCGGCAATTTCCGAAACGGCCACAGGACACCGAACAATGGCGTGGCTGTTGAGGTGAAGTGGGCCAGAGACGACTACGCGCCGATCGACGCACCGGCGCCCCATCCGGAGAGGTTTTGA	MNGRYQCSVEYNGRTLRGDADQPLIDFLAEQGIDLPHVCYHRALGPIQTCDVCWIEHDGELVRGCALRSADGMKLVSETPRVKAAQEEGMDRILAKHELYCTVCEHNTGDCTLHNTVADMNPVIQRYKYQRKPYSKDHSNPFYTYDPDQCILCGRCVEACQNVEVNETLSIDFTQEHPRVLWDGETKIEGSSCVSCGHCVTVCPCNALLEKTMQPDAGPLTSMPEDIKRPLIDAVKTIENTIGAPPITAISVMDMHWRQPEIKRTKTVCTYCGVGCSFEMWTRDRTLLKVQPVVNAPANGISTCIKGKFAWDFVNSEKRLTTPLIRENGRFREASWDEALTLVAGRLLAIKREHGADAIGFIGSSKASNEEAYLTQKIARLIIGTNSVDNSSRYCQNPATQGLFRTVGYGGDAGTIADLEQADLIVLVGSNLAENHPVIASKIKAARKHRGQKLLVVDPRKHEMAERADLFLQIRSSTDIVWASAMSRYLFDHGMADAAFLEARVNQVDEYRRSLEPFTLPFASQVTGLSEADLVSAANMIGKAKRVCLLWAMGITQHSHGADTSTALSNLLLVTGNYGRPGTGGYPMRGHNNVQGASDFGCLKNVYPGYEKVTDEAVRAKWAKAWGVAPERLSNKVGEDNFLMVQHAAEQKIKAMYVIGEETAFSDADTENVHEAFRKLDFMVVQDIFFSRTAQFADVVLPGCPSVEKEGTFVNTERRIQRFHEVFPPLGNSLPDWRILTDLAKRMGHDWGYEHPSQIFAEVAGIATLFAGASYERLDGWKSLLWPVKPDGTDTPLLYTDRFHTDDGKAVLYPLEWKPPAEAPDSEFDLMLDNGRMLEHFQGNNQTGRGDRVDSLSPHWYVEISPELADERGIQDGTQVRITSRRGSVTVPVLITDRVRGKVLFMPIHQGKPGINELTGEHHDPDVNTPAYKETAVKMTILRDPPPQSALPRGNFRNGHRTPNNGVAVEVKWARDDYAPIDAPAPHPERF	PGPT0019635_671	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_FORMATE_UTILIZATION,PGPT0019635-fdoG|fdhF|fdwA-K00123	NA	NA
D1-36_02650	987	acuI	COG0604	Acrylyl-CoA reductase AcuI	ATGACCTTCAAAGCGCTGCTTGCCACCAAAACCGATGAAGCCATGTCGACCGGCCTGGTCGACTTCACCGAAGAGGACCTGATGCCCGGTGATGTCACCGTCGCTATCGAATATTCCACGGTGAACTACAAAGATGCCATGGCCCTCAGTGGCCGCTCGCCGGTGATCCGCCAGTTCCCGTTGATTCCCGGCATCGACTTCGCCGGAATCGTTGAAAGCTCCAGCCACGCAGGTTTCCAGGCTGGCGACCGGGTACTGCTGAACGGTTGGGGGCTGAGCCAGACGCACCACGGCGGTTTCGCCCAGAAGGCCCGGGTGAGTGGTGACTGGCTCGTGAAGGTTCCGGACGTATTCTCGACCCGCCAAGCCATGGCCATTGGCACGGCGGGCTACACCGCGATGCTCAGCGTGCTGGCGCTGGAACACGGCGGCCTGGCGCCCGACGGGGGCGATATCCTGGTGACCGGCGCCAACGGCGGCGCGGGCTCGGTGGCGATAGCGCTGTTGTCGGGCCTGGGCTATCGGGTGATCGCGTCGACTGGACGCCTGGAAGAAGCCGACTATCTGCGTGACCTGGGCGCTGCAGAGGTGATTGATCGGCGCACCCTGTCGGAGCCGGGCGCACCGATTGCCAAGGAGCGTTGGGCGGGCGTCATCGACTCGGTCGGTAGCCATACCTTGGCCAATGCCCTGGCCCAGACCCGATACCGCGGGGTCGTCGCCGCCTTCGGCCTCGCCCAGGGCGCGGATCTGCCGGGGTCGGTGCTGCCTTTCATCCTGCGCAACGTGACCCTGGCCGGTATCGACTCCGTGAATGCGCCCCAGGCTGTCCGTTTGCAGGCATGGTCGCGTCTGGCCCGGGATCTGGATGTGGACAAGCTTGCTCGCACCACGCAGCTTGTCGGCCTGGCGCAAGTGCCGGAAGTCGCGGCTCGGGTGCTGCAAGGGCAGGTTCGCGGGCGCACGGTCGTGGATGTGAATGCTTGA	MTFKALLATKTDEAMSTGLVDFTEEDLMPGDVTVAIEYSTVNYKDAMALSGRSPVIRQFPLIPGIDFAGIVESSSHAGFQAGDRVLLNGWGLSQTHHGGFAQKARVSGDWLVKVPDVFSTRQAMAIGTAGYTAMLSVLALEHGGLAPDGGDILVTGANGGAGSVAIALLSGLGYRVIASTGRLEEADYLRDLGAAEVIDRRTLSEPGAPIAKERWAGVIDSVGSHTLANALAQTRYRGVVAAFGLAQGADLPGSVLPFILRNVTLAGIDSVNAPQAVRLQAWSRLARDLDVDKLARTTQLVGLAQVPEVAARVLQGQVRGRTVVDVNA	PGPT0002275_1216	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-PROPIONIC_ACID_BIOSYNTHESIS,PGPT0002275-acuI|yhdH-K19745	NA	NA
D1-36_02651	813	hcaB_3		3-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenase	ATGACGATCCACAAACCCGTAGCCTTGGTGACCGGCGCTTCTTCCGGTATCGGCGAAGCCATTGCCAACTCCCTCGTAGCGGCCGGCTATCAGGTATACGGCACCAGCCGGCGCGGAGCCCGGGCCGATCATCAGGCGTATGAGATGCTGGCACTCGACGTGACCGACGATGCCTGCGTCGAGGCCGCGGTTGCGCAGTTGATGCGGTTGGAAGGGCGTATCGACCTGCTGGTCAACAACGCCGGTTTCGGGCTCGCCCCGGCCGCGGCCGAAGAAAGCTCGATCGACCAGGCCAAGGCGATCTTCGATACCAATTTCCTCGGTGTTGTGCGAATGACGCGCGCCGTTGTGCCGCATATGCGTCGCCAGGGTGTCGGTCGCATCATCAACATCGGTTCCATACTCGGCGTGGTATCCGTGCCCTATGTGGCGCTGTACGTGGCAAGCAAGCACGCGGTGGATGGCTATTCCCAAGCCCTTGATCATGAATTACGGACCCATGGCATCCGGGTCGTCGTCATCGAGCCCGGTTATACCAAGACATCATTCGAGAGCAACAGCCTGCAGGCTGACGCTAAGCTGGACCTGTACGAGGATATCCGGGGTAAGGTAACCAAGGTCGTCAATCACGCAATGGCCACGGCCGAGGGGCCCGATGTGGTCGCTGACGTGGTGCTCAAGGCCGCTCGCGCCGAGCGTCCGAAGTTGCGTTACACCGCCGGCAAGGCGGCAGCCCAATTGCAGTTCATGCGCCGCTTCGCGCCGGCGGGCATGCTGGATACCGGTATCCGCAAGGCGATGCAACTGGCGTGA	MTIHKPVALVTGASSGIGEAIANSLVAAGYQVYGTSRRGARADHQAYEMLALDVTDDACVEAAVAQLMRLEGRIDLLVNNAGFGLAPAAAEESSIDQAKAIFDTNFLGVVRMTRAVVPHMRRQGVGRIINIGSILGVVSVPYVALYVASKHAVDGYSQALDHELRTHGIRVVVIEPGYTKTSFESNSLQADAKLDLYEDIRGKVTKVVNHAMATAEGPDVVADVVLKAARAERPKLRYTAGKAAAQLQFMRRFAPAGMLDTGIRKAMQLA				NA	NA	NA	NA	NA
D1-36_02652	1119	ompA_1		Outer membrane protein A	ATGAGCGCGTTGTTTGAAGTGCATGTTCGAATCGGTGGCGATCCGCGCGGCTATGCTGAGTTCGTCGCTTTGCGCGACGAGTTGGCCAGATTGGGCCATGGCGCCTGCCCAGACGTGGATTGGCAAAAAGTCGAGCAGTTATGCCTTGTGCTGCTGCAACTCAACGGTGCGGAGCTGCAAACCGTCAGCTTCTATGCGCTGGCTCGAAGCCAGCGTCACGGTTTGGACGGCATGGTCCAAGGCGTTCGATTGTTGAAGACGCTCAGCGGTCAATGGCCCAGCCTGTGGCCGCCGTCGGTGCGGGTGCGCCTGGATACGTTGGGGTGGTTGTTCGCACAGCTGCAAACGCTGCTGCGTGGCCTGGCGCTGACGACCAACGATCAGCGCGCGTTGCTTGAGCTCGATGGTGCGTTGGGCTGCCTGACTGAGCGGCTGGCAAGCTACGCATCCACGCCGCTGCCGGCTCTCCAGTCTCTGCGCCAGCAGGTCAACCAGCTGATCCAACGTTTGGAACGATGCGATCAACGTATCGAAGCGGCACTGCTTCCCATGGGAATGACAGAGCCGGCATTGGCGATACCCATTGTGGTCCTGCCCCCGCCGGACATGACCCATCGTAAGGGGCACTTTTCGCCATGGCTGTGCGGCGCGGCGTTCGTCTTCGCTCTCGTCGCAGGGGTTGTCGGATGGCGGATGAGCGCGAGGTCAGCGTTGGTCTTGCCCGCTCCGGTGCAGTTGGACAGCCTGTCGCTGTTCGATGTCGGCAGTTCGCAGCTCAAGCCTGGTTCGACCGATACCTTGGTCAAGGCCTTGGTGGATATCAAGGCCCAGCCAGACGGGTTGATCGTCATTTCAGGCCATACCGACGGGACAGGTTCATCGGAACAGAACCTGCAACTCTCAAACGCCCGTGCTGTTGCAGTGCGGGACTGGATGCAGCACGTGGGCAAAATCCCCGCCGGTTGCCTAGCCGTCCAGGGCGTCGCCGCCGGTCAGCCCATAGCTGGAGACGACACCGAAGCTGGGCGAAGGGCCAATCGGCGTGTCGGTATCCGCGTGGTGCCGCAAGTGGTGGCTTGTGAGCTTTCGGGGAAGGTTGGACAAGAGACGCCGCTTTGA	MSALFEVHVRIGGDPRGYAEFVALRDELARLGHGACPDVDWQKVEQLCLVLLQLNGAELQTVSFYALARSQRHGLDGMVQGVRLLKTLSGQWPSLWPPSVRVRLDTLGWLFAQLQTLLRGLALTTNDQRALLELDGALGCLTERLASYASTPLPALQSLRQQVNQLIQRLERCDQRIEAALLPMGMTEPALAIPIVVLPPPDMTHRKGHFSPWLCGAAFVFALVAGVVGWRMSARSALVLPAPVQLDSLSLFDVGSSQLKPGSTDTLVKALVDIKAQPDGLIVISGHTDGTGSSEQNLQLSNARAVAVRDWMQHVGKIPAGCLAVQGVAAGQPIAGDDTEAGRRANRRVGIRVVPQVVACELSGKVGQETPL	PGPT0030435_310	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0030435-vasL-K11911	NA	NA
D1-36_02653	468			hypothetical protein	ATGACCGAGCCCAACCCTTCGCTCTATGAAATGCTGCTGCAAAACTTCAATGGTGAACTGGATTTGCATCGCGTCAGCGAGCAGGACCAGCACACGCTGTCGGTCCTGGACAACCTGCAACGCATCCTCAATAGCCGGGCCGGCAGCGTCAGCCATTTACCAGATTATGGACTTCCCGACATGGGAACCATTTTGCAGGGGCTACCGGCTACCGCCCATACGTTGATAAAGGCCATGACCCATACCCTACTCAAATACGAACCGCGATTGACGGCGCTCGCCATCGAGCTACTGCCGCAATTACTGCCGGGGCATTTGGAGTGCGCCCTGGACGTGCAGTTGAAAGGAGGGCGCCGGGTTACTTTCGGTACCACGTTGGGAGCGGAGGGCAAAGTCCTGATGCGTCACCTGAAGCGACAGAACCATGTGGCGGCAACGGGAACGGATAACGCAAGGCAAGCGCGATGA	MTEPNPSLYEMLLQNFNGELDLHRVSEQDQHTLSVLDNLQRILNSRAGSVSHLPDYGLPDMGTILQGLPATAHTLIKAMTHTLLKYEPRLTALAIELLPQLLPGHLECALDVQLKGGRRVTFGTTLGAEGKVLMRHLKRQNHVAATGTDNARQAR	PGPT0030405_158	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_PROTEINS,PGPT0030405-tssE-K11905	NA	NA
D1-36_02654	537			hypothetical protein	ATGTCACATACCTTTATTAACCGGTTGGCACTCACGGTGCTGGTCGCTGCGCTTGGCGGGTGTGGAGCGGCGCAGACCGTCGAGCCGAGCACGGGGTTCACCACCGGGACGATGTTCCGTAAACAGGTCAAGACCTTGCACCTGGATTTCAACGCACGAACCGCGCTCAACACCGAAACCGCGGACATGAACGCCTTATCGCTGCCCACCTTGGTGCGGGTTTACCAGTTACGCGACAGTACCGCGTTGGAGCAGGCCACCTACGACGGGCTGGTGAACACAGACGACAACCTGTTCGAAGGTGCATTGCTGGACAAACGCGCCGTGGTGGTGAAACCCGGGGCAGGGGCCCTGTTGAGCGTGCCCATGGACCCCCGCACGCGGGTAGTGGCGCTGGTGGGCTTGTTTCGAAGTCCAGACGCCGCGTTAGGCTCCTGGCGCCTGGTGCTGAGGCGCGAAGACCTGGACCCGGATCGGGCACGGCTCATCGAGATGGGGGCCAACCAACTGACGTTGCGCCCGTTGGCGAAGGACTGA	MSHTFINRLALTVLVAALGGCGAAQTVEPSTGFTTGTMFRKQVKTLHLDFNARTALNTETADMNALSLPTLVRVYQLRDSTALEQATYDGLVNTDDNLFEGALLDKRAVVVKPGAGALLSVPMDPRTRVVALVGLFRSPDAALGSWRLVLRREDLDPDRARLIEMGANQLTLRPLAKD	PGPT0030425_452	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0030425-vasD|lip-K11906	NA	NA
D1-36_02655	1098			hypothetical protein	ATGGAACGAGAACCACAGCCAGCGCATTCCCGGTTGAACGCCGACGGTTTGCTGGACGCGTTGCGAGGGCGGGTGGCCGAGGCCAGCCTGTATCGTTTCTGCCAACTGTTGGAACAAGCGCTGCCCGGCCGTCCTCTGCTTGGCAGCACCGCGCATCCGGCAGACGATCCCGTGCGCTTTCGACCCGATCCCGGCATGGGGTTTCCCGCCGGTGAGCTGAAGGCGATCGAAATCGACACGAACAACCCGCAACGTCCGGCTACGGTGCGCACCCGTCTGATGGGTTTGTACGGCCTAGATTCGCCAATGCCGACGGGGTTTGTGGATGACATCGCTCAACGCCGGGAGGGGCATGAGGCCCTGGAAGCTTTCCTCGACATTTTCAATCACCGGATTTTCACTCAGTTCTATCGGATCTGGCGCAAGTACTCTTATCCAGCGACGTTTGCAGCGGGCGGCAGCGATGGGACATCGCAGTGCCTGTTCGGTTTGATCGGGCTGGGCATTCCCGGAACAGCGGAACGCGTCGCTACCCCAGTCTCCCGTTTCCTCGCGTTGCTCAGCGTCATGCGCCTGCCTACCCGCAACGCCGAAGGCATCGAGGCGCTCGTCAAGCTGCTGGCCGTCCATACCCAGGCACGGATAACCCCGCACCGGCCGCAGAAGATTCCCTTGCCGCAACCGGCCAGCCTGTGTCCGTCTTGCCCGGTACGCTTGTCCAAGGGCACGCCGCTGGGCAATGTCGGGCAAGACGTCAACAGCCAGCTGCACTTGGTGCTGTCCACCGACGACGCGCAGGAGGCCAATGACTGGTTGCCCGGCGGAGCGCTTCACCGCGACCTGCTTGTACTCCTGCGGGTGTACCTGGGATGGCGCTGCACCGCGACGCTGCAATTGACCATCGCGGTAAGCAGCCTGCCAACTCCGATACTGGGGCATCGGCAGATACGACTGGGAATGACCGGTGTGCTGGGCTTGGGTTCAGACACCTGGCAGCCGCGAGAACAGGACACCCTCACGATCAATATGGGCCGCTACCAGGGCCTTTCGACCAACCCACGGATCAGGGAAACACAACATGTCACATACCTTTATTAA	MEREPQPAHSRLNADGLLDALRGRVAEASLYRFCQLLEQALPGRPLLGSTAHPADDPVRFRPDPGMGFPAGELKAIEIDTNNPQRPATVRTRLMGLYGLDSPMPTGFVDDIAQRREGHEALEAFLDIFNHRIFTQFYRIWRKYSYPATFAAGGSDGTSQCLFGLIGLGIPGTAERVATPVSRFLALLSVMRLPTRNAEGIEALVKLLAVHTQARITPHRPQKIPLPQPASLCPSCPVRLSKGTPLGNVGQDVNSQLHLVLSTDDAQEANDWLPGGALHRDLLVLLRVYLGWRCTATLQLTIAVSSLPTPILGHRQIRLGMTGVLGLGSDTWQPREQDTLTINMGRYQGLSTNPRIRETQHVTYLY	PGPT0025940_239	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025940-impH|vasB-K11895	NA	NA
D1-36_02656	1770			hypothetical protein	ATGGACATGGAAAATCTGACATTGCGATATTTCGACGCCGAGATGCGTTATTTGCGCGAGGCCGGTAAGGAATTCGCTGAGGCGTTCCCGGACCGGGCGGCATATCTCAATCTCGACAAGCCGGGGGCGCAAGACCCTTACGTAGAACGTTTGTTCGAGGGCTTTGCATTCTTGATGGGGCGCTTGCGGGAGAAGCTCGACGATGATCTGCCGGAGCTCACCGAAGGCTTGGTCAGCCTGCTGTGGCCGCATTACTTGCGGACCATACCGTCCCTGTCGATTATCGAGCTGGCGCCGGATCTTGCCTTGATAAAGCGCAGCGAACGAATCCCCAGAGGGTTCGAGATCCTGTCGCGCCCCATCGGGCCGCAGCACACCTGCTGTCGCTACACCACCACGCAAGACGTGACGTTACAGCCGCTGGCGTTGACAGTCGTGGCGCGCGACCACGAACCGGATGGCCGCTCGCTGCTGCGTTTGCGTTTTGTCCGAAGCGCGTCCGTCCCTTGGTCACAAATCGACCTGAGCCGCTTGCCGCTGTACTTGAATGCCGATGCGCCACTGGCCAGCGCACTGCACCAAGCCCTGACCTTGAACAGGCAGGCAATGTATGTGCGCTTGCCAGGACAGTCGGATCGCAAGCCGGTGGACGGGTATTTCACCCCCAAGGGCTTTGGCGACGAGGATCGCCTGTGGCCCAAGGGCGACAGCGCTTTCAGCGGCTATCAACTGCTGCTTGAGTACTTCACGTTTCGTGAAAAATTCATGTTCGTCACCCTCTGTGGCCTTGAGCAACTGCCGCTTGAGTCCGGCGCGCCCTGGTTCGAGCTCGAAGTGGTGCTGTCCAAGCCCTGGCCGCAGAACTTCGACCTGAACCGTGAACATATTCGTCTGCACTCGGTGCCGGTGATCAACTTGTTCGTACTGGAGGCCGACCCGTTGGCGCTGGACCCCTTGCAAACCGATTACTTGCTGCGTCCGATGCGCTTGCAGGATGGCCATCTGGAAATCTATTCGGTGGACCAGGTGACCGCATCCAAAGGCGCCGAGCGCATGGACTACGTGCCGTTCACCAGTTTTCGCCATAAAGGCGGCATGCTGCGTGATGAGGCGCCGGAACGTTATTTCCATAGCCGCCTGAAGCGGGCCGCCAATGGGCTGTATGACACCTGGTTGATCCTGGGCGGAGAAGGCTTCGACGAGGATCGGCTGCATACCCACGCCAGCCTGTCGTTACACCTGATCGGCACCCACGGCCAGCTGCCACGCAAAGCGCTGCAGAGCACGGTGCTCGATACAGCGGTGCAAACCACCCAGTTCGGCCTGCGGGTGCGCAACCTGTGTGCGCCGACGTTGCCGTGCTATCCGCCAAACCGCGACCGTTTCCACTGGCGCATCCTGAGCCACCTGGGCTCCAATTTCTTGCCGATGCTCGACAGCGCAGAGGTGTTGCGCGGGACGTTGGCGTTGTATGACTGGACCGGCAGCGAGCAGAACCGGCGTCGCCTGGCGGCGATTGTCGAGGTGAACCATCACCTGGTCCAACGTTTTGAAAATGGCTTTTTGCTGCGCGGGGTGGATATTGAAATCACCTTGGATGCCCACGGCTTTTCGGGGGACGGCGATATCAGTCTGTTCGGTGAAATGCTCAACCGCTTTTTTGCGCTCTACGCCGACATTCATTTGTTCACCCAGCTCACGCTGATTCTTCAACCTACCGGAGCGTGCCTGCGATGGAACGAGAACCACAGCCAGCGCATTCCCGGTTGA	MDMENLTLRYFDAEMRYLREAGKEFAEAFPDRAAYLNLDKPGAQDPYVERLFEGFAFLMGRLREKLDDDLPELTEGLVSLLWPHYLRTIPSLSIIELAPDLALIKRSERIPRGFEILSRPIGPQHTCCRYTTTQDVTLQPLALTVVARDHEPDGRSLLRLRFVRSASVPWSQIDLSRLPLYLNADAPLASALHQALTLNRQAMYVRLPGQSDRKPVDGYFTPKGFGDEDRLWPKGDSAFSGYQLLLEYFTFREKFMFVTLCGLEQLPLESGAPWFELEVVLSKPWPQNFDLNREHIRLHSVPVINLFVLEADPLALDPLQTDYLLRPMRLQDGHLEIYSVDQVTASKGAERMDYVPFTSFRHKGGMLRDEAPERYFHSRLKRAANGLYDTWLILGGEGFDEDRLHTHASLSLHLIGTHGQLPRKALQSTVLDTAVQTTQFGLRVRNLCAPTLPCYPPNRDRFHWRILSHLGSNFLPMLDSAEVLRGTLALYDWTGSEQNRRRLAAIVEVNHHLVQRFENGFLLRGVDIEITLDAHGFSGDGDISLFGEMLNRFFALYADIHLFTQLTLILQPTGACLRWNENHSQRIPG	PGPT0025935_1280	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025935-impG|vasA-K11896	NA	NA
D1-36_02657	1587			hypothetical protein	ATGAGCCTGCAAAACCTGATCACCCATTGCCTGGGCAAGCGCGACGCCTTGGCCATCGCCCGTGAACAGGCCGAACGCTGGCAACCCTGGCTGCAGCCCATCAGCGAAGCGGCACCCGTTGGGCACGACCCTGGCTATGACGATGATTTTCAATGCATGCGCGAAGAGGTTGGCAAGCTGTCCGGCGCCGATGCTGAACGAGTGGCCCAACTGGGTGAAAAGCTACTGACCCGCAAATGTAAGGATTTACGCGTCGCCACCTACTACGTGTGGGCTCGCTTGTGCAGGGACGGCGAAGCCGGGCTGGCCGACGGCTTGAGCCTGTTGGCGGCGCTGGTGGAGCGGTTCACCGATACGGTACTGCCCGTGCGACCGAACAGCCGCAAGATGGCGTTGCAGTGGCTGGCCGGCGAAAAGCTGCTCGATACGCTGTGGCGGTATCCGGAGGTGGTGAAAACCGAAGCCGAGCGCACCGCCGCGGCATTGGCCTGGCTGGAGCAGGGCCTGACGGCATGGCCTGACGATCAGCGTCCTTGCCTGGGGGCCCTGTATGCCGCGCTATCCGCCCGATTGGCTCGGTCCGAAGGCATGGAGGCGCTGGTCCCGCAGAGTACCGCCAGCCAGGAATCGCAAGCCCAGGCCGGGGCTTCGGCTGCTATCGCGATCAAGTCCGGTCGGGATCTGTTGGACCACGGCCGGGCCTTGGCTGGTTATCTGCGTGATCAACCTCAGGGTTGGCTGGCGGCCCACCGCGTGATGAAGAGCCTGCGCTGGGACACGGTGCAAGAGGCGCCGCCCGAGGACGCCGATGGCAACACCCGGCTGACGCCGCCCAAGGCTGACTATCGGGCGCAGCTCAAGCGTTTGTACTTGCAGCAGGGCTGGACCCAGTTGCTCGATCACGCGGAACGAATCTATGCCGAAGGCGTGAACCATTTCTGGTTGGATTTGCAGTGGTATGTGTATCAGGCACTGAGTCAGCAACCGGCGCCGCAGGTGTGCTGGGCTGATGTCGTCCAACGTGACCTGGGCATGTTTTTGGATCGGTTGCCGGGGTTGGAGCTGCTGCGCTGGCGCGACGGCACGCCTTTCGCCGATGAGACCACACGTGAGTGGATTGCCCAGCAAGCCAGCGCAGACCGCCCGGAGCAAGGGTTGGTCGCGCCATCGTCGGCACCGGTCATCGGCGATGCCGACATCTTGTCGTGGGAAACCGAAGCCCTGGCGCAGGCCGACAAAGAAGGGGTCGAGCAAGCGCTGGCTTGGCTGGCGGCGCGCCCGGACATTGTTTGCGCACGCCAACGATGGCTGCTGCGCCTGCTGATGGCGAGGGTGGCCGAACAGTTCGGCAGAAGTGAGCTGGCCATCCATCTGCTGGGGGAACTGGACACCGCTTCACAGCACCATGACCTGTGCGTGTGGGAGCCCGAGTTGTATTTCGAGGTCAAGGCTCGCCTGCTCAGGTTGCTGCGGGTCAAGGCCCAACGCAACGACACGGACAAACCTGCCCTGGCCCGACGCATGGAACCTTTGTTGGCGGCGCTGGTGGCCATCGATCCGGTACGTGCCGCTGTGCTTTGCGGCTGA	MSLQNLITHCLGKRDALAIAREQAERWQPWLQPISEAAPVGHDPGYDDDFQCMREEVGKLSGADAERVAQLGEKLLTRKCKDLRVATYYVWARLCRDGEAGLADGLSLLAALVERFTDTVLPVRPNSRKMALQWLAGEKLLDTLWRYPEVVKTEAERTAAALAWLEQGLTAWPDDQRPCLGALYAALSARLARSEGMEALVPQSTASQESQAQAGASAAIAIKSGRDLLDHGRALAGYLRDQPQGWLAAHRVMKSLRWDTVQEAPPEDADGNTRLTPPKADYRAQLKRLYLQQGWTQLLDHAERIYAEGVNHFWLDLQWYVYQALSQQPAPQVCWADVVQRDLGMFLDRLPGLELLRWRDGTPFADETTREWIAQQASADRPEQGLVAPSSAPVIGDADILSWETEALAQADKEGVEQALAWLAARPDIVCARQRWLLRLLMARVAEQFGRSELAIHLLGELDTASQHHDLCVWEPELYFEVKARLLRLLRVKAQRNDTDKPALARRMEPLLAALVAIDPVRAAVLCG	PGPT0030430_215	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0030430-vasJ-K11910	NA	NA
D1-36_02658	3357			hypothetical protein	ATGACTCAAACAGATGAACCTCAAAAAATCTCTTCCTGGCTTACGGCGCTTCTGTTGGCGTTGATCTTGGCCGTGTTTGTTGCCTTGGCAGGCGGGGGGTGGTGGTTATGGACTGGGCAACCCGTCGACCGCGTTGTGCTGTCGGACCTGCTGCTCAAGGCATTTTTTTGCTGGGCATTGTTGTTCGCGATGGCGATATTGATGTGGCAAATCATGCAGAACGGGATCAGAGTTCTGGTGCGTAGCACCCAGGTGACCTCATCACGACCTCAGGCCAGGACGCCTGAATCGATACTGGGCGCAGAGCTACGCGAAAACCTCCACTTCCAATACGGCCCCCTCTGGCGCCACAAGGTCCGTCTGCTGCTCATCGTCGGCGAGCCCACCCAGATCGCCGCCATCGCCCCGGAGCTGGCGAAAAAGAAATGGCTCGAAGGCGAACGCACCGTGCTGCTATGGGGCGGCAGCGTCCAGGAAGAATTGCAAACCCCGCTGTTGAACCCATGGCTCACCCTACGCCGTTGGCGGGCGCTGGACGGGGTGGTCTGGGCGCTGGACAAACCGCAAAGCACCGATGCGGTGGCGCTGGCCAAGGGCATGCGGCAGTTGCAGGGGCTGGCTCGGCGGCTACGCCGACGGTTGCCGTTGCACTTGTGGCAGGTGTGCGAGAGCGGCTGGTCCCAGGACGGGCGCGAGAGCCAGCCGGTGGGTTGTCTGTTGCCGGCCAAGGTGACGCCGTCGCTGCTGGAGGCGTGCCTGGAGGATCTGGTCGAGCCGTTGCGTTGCCAGGGCTTTGCCCAGATGAAGATCAAGAAGCGGATGCACCACGATTTCCTGCTGCGCCTGTCCCGGGATTTGCAGGCCGAGGGCATTGCCCGTTGGCGGCAGGCGCTGGCGCCGTCGTTGAGTGGGTTCAACCCGGGGGTGATGCTGCGAGGGTTGTGGTTCAGCCTGCCACTGCGCGTGACGCAAAGCGCTGACGGCGAGCATTTCTGGTGGCCGGACCCGGCGTGGCACGGCGTGCAGCGCGACAAGGCCGTCGGCGCGCGGTTGGGGTGGGGCGCGCCGCGAGTCGTCTATGGGCTGTTCATGGGCCTGGCGCTGGTGTGGGGCGCGGGGATGGCGCTGTCCTTTGTGAGCAATCGGGCGCAGATCGTCGAGGCGCAGGCCTTGTCGACGGCGTTGCAACAGTCATCCACCCAAGAGGAGCAACTGTTGGCGCTCGAAGCGCTCGTCCACGTGCTGGCTCGCCTGGATCACCGTGTCGTGTCCGGTGCGCCGTGGTACCAGCGCTTTGGCTTGAACCGCAATGAAGCCTTGCTCGAACTGTTGTGGCCCCGGTATGTCGAGGCCAATAACCGCCTGGTGCGCGACCCGGCGGCGGCGAGGTTGCGCGGGCAACTGGAGGCGCTGGTCAAGCTGGCGCCGGGCAGCCCCGAGCGCGTTGAGCGCACGCGTATGGCCTACGATCAGCTCAAGGCTTACCTGATGATGGCGCGCCCGGACAAAGCCGAGGCGCCCCTGTTGGTCAAGACCCTGGGCCACGCCGAACCCACGCGTGACGGAATTTCGCCAGGGCTCTGGCAGACCCTCGCACCGAACCTGTGGCAGTTCTACGCCGAGCAACTGGCCGCGCACCCGGACTGGCGCATCGAGGCCGACCCGCGGTTGGTGGCGCAGGTGCGCCAGGTGCTGCTCGACCAATTGGGCCAACGCAACGCCGAGGCCAGCCTGTATCAACGGGTGCTGGACGACGCCACCCCGCACTATCCAGCCCTGGGCCTGCAACAGATGGTGGGCGACACCGAAGCCGCCGGGTTGTTTTCCAGCAAGGCCAGCGTGCCGGGAGTGTTCACGCGCCAGGCCTGGGAGGGCCAGGTGCGCCAGGCCATCGATGACATCACCCAGGCGCGCCGCGAAGAAATCGATTGGGTGCTCAGTGATCGCCCCGGTGACATCGATGTGCGCTTGACGCCCGGCGAGCTCAAGGCGCGCCTGACCGAACGTTATTTCAAGGACTACGCGGGCGCCTGGCTGGTGTTTCTCAACAGCCTGCGGGGCAATCAACCCAAAAGCCTGGATCAGGTCATCGACCAGTTGACGCTGATGAGCGACGTGCGCCAATCGCCGTTGCTCGCGTTGATCAATACCCTGGCCTATCAAGGGCAAGCGGGCACCCGCGTCCCGGCCCTGGGCGACTCGCTGATGAGGTCCGCGCACAAGCTCATCGGCCCGGACAAGGCCCCGCCCATAGACCCGCTGGCCGACCTGCCGAGCGGCCCGCTGGATCCGACGTTCGGCCCGTTGTTGGCCTTGCTGGGCAAGGGTGGCGCTGACCATTTGAGCCTCCAGGCCTACCTCACCCAAGTGACCCGCGTGCGCCTGAAACTGCAACAGATCAACACGGCCAGCGACCCCATGGAAATGACCCAGGCCCTGGCGCAGACGGTGTTCCAGGGCCGGGGCATCGACCTCACCGATACCCAGTCCTATGGCCGTCTGATGGCCGCCAGCCTCGGTGCGCAATGGGCCGGCGTGGGCGAAACGCTGTTCGTGCAACCGCTGGAACAGGCCTGGCAGCGAGTGCTGCAACCGTCAGCGGCGGGCCTCAACAGCCAATGGCGGCGTTCGATCGTCGAGCATTGGAACGCGGCCTTTACCGGGCGTTATCCCTTCGCCGCGACGGCCAGCGACGCTTCGTTGCCGATGCTGGGGCAAATGATCCGCGCCGACACGGGGCGCATCGAGCGTTTTCTCCACAGCCAGTTGAGCGGCGTGTTGCGCAAGGAAGGCAACCGCTGGGTGGCCGATCCCCGCCACGGTCGCGGTTTGCGCGTCAATCCCCAATTCCTGGAGGCGGTCAATCAACTGAGCGATCTGGCCGACGTGCTCTACACCGACGGCGGCCTGGGCTTGAGTTTTGAACTGAGCGGCAAAGGCGTGCGCGATGTGGTGCAAACCACCTTCATCCTCAACGGAGAGAAACACCACTACTTCAACCAGAAGGAGCGCTGGCAGCGCTTCGGCTGGCCAGGACGCAGCGACTACCCCGGCGTCAGCCTGACGTGGACCAGCGTCCACACCGGCGAACGGTTGTTCGCCGACTACGCCGGCGCCTGGGGGCTGATCCGCTTGCTGGAACAGGCCACGTTCACCGCGCTGGACGATGGCGACAGCCGCTACCGCATGGTGCTCAAGGCGCCCGATGGTCTGGGCCTGACGTGGCACCTGCGCACCGAACTGGATGCCGGGCCGATGGCGCTTCTGAAGTTGCGAGGGTTTACGTTGCCGGGGCGGATATTTTTGGCTGAGGGCGGGCCAGCGGTGCCTCTGGCGCGCAATGAGGTGCTCCGATGA	MTQTDEPQKISSWLTALLLALILAVFVALAGGGWWLWTGQPVDRVVLSDLLLKAFFCWALLFAMAILMWQIMQNGIRVLVRSTQVTSSRPQARTPESILGAELRENLHFQYGPLWRHKVRLLLIVGEPTQIAAIAPELAKKKWLEGERTVLLWGGSVQEELQTPLLNPWLTLRRWRALDGVVWALDKPQSTDAVALAKGMRQLQGLARRLRRRLPLHLWQVCESGWSQDGRESQPVGCLLPAKVTPSLLEACLEDLVEPLRCQGFAQMKIKKRMHHDFLLRLSRDLQAEGIARWRQALAPSLSGFNPGVMLRGLWFSLPLRVTQSADGEHFWWPDPAWHGVQRDKAVGARLGWGAPRVVYGLFMGLALVWGAGMALSFVSNRAQIVEAQALSTALQQSSTQEEQLLALEALVHVLARLDHRVVSGAPWYQRFGLNRNEALLELLWPRYVEANNRLVRDPAAARLRGQLEALVKLAPGSPERVERTRMAYDQLKAYLMMARPDKAEAPLLVKTLGHAEPTRDGISPGLWQTLAPNLWQFYAEQLAAHPDWRIEADPRLVAQVRQVLLDQLGQRNAEASLYQRVLDDATPHYPALGLQQMVGDTEAAGLFSSKASVPGVFTRQAWEGQVRQAIDDITQARREEIDWVLSDRPGDIDVRLTPGELKARLTERYFKDYAGAWLVFLNSLRGNQPKSLDQVIDQLTLMSDVRQSPLLALINTLAYQGQAGTRVPALGDSLMRSAHKLIGPDKAPPIDPLADLPSGPLDPTFGPLLALLGKGGADHLSLQAYLTQVTRVRLKLQQINTASDPMEMTQALAQTVFQGRGIDLTDTQSYGRLMAASLGAQWAGVGETLFVQPLEQAWQRVLQPSAAGLNSQWRRSIVEHWNAAFTGRYPFAATASDASLPMLGQMIRADTGRIERFLHSQLSGVLRKEGNRWVADPRHGRGLRVNPQFLEAVNQLSDLADVLYTDGGLGLSFELSGKGVRDVVQTTFILNGEKHHYFNQKERWQRFGWPGRSDYPGVSLTWTSVHTGERLFADYAGAWGLIRLLEQATFTALDDGDSRYRMVLKAPDGLGLTWHLRTELDAGPMALLKLRGFTLPGRIFLAEGGPAVPLARNEVLR	PGPT0025960_1622	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025960-impL|vasK|icmF-K11891	NA	NA
D1-36_02659	1131			hypothetical protein	ATGATCCCGGCGCCGGAGTTCGCGCCTTACCCTGCGTCACGGGCGCCCGGATACAGGCGCTGGATAGCCGGAGTCGCGGGGCTGCTGATTTTGTTGGGCGGCGCCAGCGCGCTCCTGGATGGGGTCGTAGAGCCGCGCTTGATGGTTGTCGGCGCGATCACGACGTTGCTGGCATGGTTGCTGGTGCTGCTGTTGCGTGTGTTGCGCTACCGATTCAACCGACACAACGCTCGTTGTTATGCCGAGGCGGCGCAACGGATCCAGCGAACCTGGTGGGCGCATCATCGGCAAAAAGCCGCGTTGGTGGACACTGTCTTGCTCGGGCCCGCCTGCCTGACCCAGGAACACAGGCAGAATCTGCTCAACCCGGATCAACCTGCGCCCATACCGCAAGAAACGCCCGAAGGCCTGGCGCTTCGTCTGCTTCAGGTATTCGGTGACGACCTTACCGAGCGCGAGCGGCAATTGGCCGTTTTGCTCGCCCTGCAATGGTGTGAGCAACAAACCGAGCCCATCGTCTTGCAGCCGGTGCGTTGCTATTGGCAGGGTTCCGTCGAGTCCTGGGCGGCGTTCGTCGAGCAAATGGCCGAATCCTGTCCCCAGGTTGAACTGCCGGAGCGACCTGAGCCCTGGCAGGGCATTCGCAGCCTGGACGCAATCATCGACCAGCTGCAGAGCGCCCCTTCGGATGCGCGCATTCTCTGCGGCGGTTGCCAATCCTCGTCACCACAAAAAGACAGCCGCTTACCGGCCGGCGAGGCGGCGCTGCTTTGGCTGCTGGGCCCTGAGCAAGGCATCGGTTTGTTGCGGGGAGAATGGTCCACCGATCAAGAGTCGGTGGTAAAGGTGGCCGAACGAGCCGTCCAACAAAGCGAACTGCAGGCGCCCGCCAAAGTGTGTGTGTCGTTCTTCCAGCCCGACATAGTCGACCTGTCTGCCATTGGCTGGAACACCAAGCAAAACGTGCAAGACCACAATTTCGGCACGCTGGCGAATCTGGAGGCCATGGTCGCGCAGACCCTTGCCGCCTGGCACGCCGAGCAACACGGTGAGCCCTGTGCCTGGCTGGCTTGCGATTCCCATTACACCTTGGCCCTCGGAATTGTGAAACCCCATGACTCAAACAGATGA	MIPAPEFAPYPASRAPGYRRWIAGVAGLLILLGGASALLDGVVEPRLMVVGAITTLLAWLLVLLLRVLRYRFNRHNARCYAEAAQRIQRTWWAHHRQKAALVDTVLLGPACLTQEHRQNLLNPDQPAPIPQETPEGLALRLLQVFGDDLTERERQLAVLLALQWCEQQTEPIVLQPVRCYWQGSVESWAAFVEQMAESCPQVELPERPEPWQGIRSLDAIIDQLQSAPSDARILCGGCQSSSPQKDSRLPAGEAALLWLLGPEQGIGLLRGEWSTDQESVVKVAERAVQQSELQAPAKVCVSFFQPDIVDLSAIGWNTKQNVQDHNFGTLANLEAMVAQTLAAWHAEQHGEPCAWLACDSHYTLALGIVKPHDSNR				NA	NA	NA	NA	NA
D1-36_02660	258			hypothetical protein	ATGAAAGCCATCATTCGCCAAGGCGACACCCTCAAGGAATACGGAGGCGAGGTATTGGGGGGCCACTACCTATGCGACGGCCTGTCCATTGCCTGTCAGGGGGATGCGGTGCGCTGCAACCTGCACGGCCGTACCGAGATTGCCGAGGGCAGTGACCTGATGGAAGTCGACGGGTGCCCCGTGGCGCTGGATGGTCACCGCTGCGGCTGCAATTGCACGTTGGTCAGCTCCGGGCCTGATACGCTGGTGGCCTCATGA	MKAIIRQGDTLKEYGGEVLGGHYLCDGLSIACQGDAVRCNLHGRTEIAEGSDLMEVDGCPVALDGHRCGCNCTLVSSGPDTLVAS				NA	NA	NA	NA	NA
D1-36_02661	525			hypothetical protein	ATGCTCAGGCCCAGCCCGTGGCATGCGCTATTGCTAGCCTGGTGTGGTTTGTTGGGCGCGGTGCTCGCGTTCAACGTCTCTGCCAGTACGCTCGAAGCCATCAATCACACTCACTGGGCGATCAACCGATTCAGTGTGGATGGGCGTTCGGGGATTGACGTTATCGGGCCTTACCAGGGTGGCGGGGGCGGATGTTGTTACGTCGCGCCGTCGCGTTGGCAGCAGGGTATTACGGTGCGGATCGATTGGGAGACGGGTGTCGCTTACTCCTATGACAATCCAGGTCTTGCTGATGAAGCCAAATACGACGCCTGGCTCGACAAGATCGTCGCGCAAAAGAGGCGGCACACCAAGCAAGTCCCCATCCCCGACTACACCAACCAAACAGTCTGCGGCCTGACCGTGCACTTCCTGCCCTGCGACGACATCCAGGTCACCACGTCCTGCTACGCCTATGGCAGTCCCGAATACCCGATCAAGATCCCGCTCAACCTGCCGGTGCCTACGTCGTGCCCGCAGTCCTGA	MLRPSPWHALLLAWCGLLGAVLAFNVSASTLEAINHTHWAINRFSVDGRSGIDVIGPYQGGGGGCCYVAPSRWQQGITVRIDWETGVAYSYDNPGLADEAKYDAWLDKIVAQKRRHTKQVPIPDYTNQTVCGLTVHFLPCDDIQVTTSCYAYGSPEYPIKIPLNLPVPTSCPQS				NA	NA	NA	NA	NA
D1-36_02662	2292			hypothetical protein	ATGTCCGAGCTGAAGCACACCCCGGTCTGGTATCCGCCGGCATTCCCGGTCCAGGGCCGCTTACCCAGAGATGTCGGGCTGGTTTACCAGAACCTCAATCGCCAATGCGCTCTGGAGCATGACTATCACGACTCCCTGTGCGTCGCCGCTGGGCGCAGAGTGATGCCTCCATGCTGCAAGACCGTGCACATCAGCCTGTTTTTCGACGGCACCGGCAATAACCTGAACAACGACCTGTACGAGTCCTCGACACCGCACCCGACCAATATCGCCCGGCTGTTTCGCGCCAGCATTGGCGCCGGCCATGCCGGCGGTACCGCCCACAGCGACAAGGCCGAGCGCCTGGTCGATGCGCCGGGTAATGGCAATGGCCAGTATTTCAAGTACTACATGCCCGGCGTGGGCACACCTTTCCCGGAAGTCGGAGACCTTGATTACAGCGAATCGGGCTTGGCCACCGCCTGGTACGGTGAAGAGCGGATCAACTGGGGGTTGATGATGCTCATCGATGCCCTGCGCCGCACCTTGAACCAACCACGCCTGGACAATGCCGCGCTGCAGGTGGCGGTCAAGGCCATGGGCACGGCGCTCGGCCTGGGTTGGGGGACCGGCCACGCCAATCGCAGCCGCGAGTTTCGCAAACAGTTGCAGGCGTTGGCCAAGCCCCTGCAACTGGCCCTGACGCAGCCGCAGCCCGGCCAGGTCAAGTTGCTGGGATTGAAGCTGTATGTCTACGGTTTTTCCCGCGGAGCGACGGCGGCCCGGGGTTTTGTAAGTTGGCTGGATCGATTGTTGTCCGACTTGGCGCTGACGCTGCCGATGGCGGATATACGGGTGCCCCTGAGCGTGGAATATCTGGGTCTGCTGGACACCGTGGCCTCTGTGGGTATCGCCGACATTATTCCAGGCGCCCAGGGGCACATGAGCTGGGCCGATGGTAACCAGCACCTGCCGGAGAGCGGATTGGTGAAGCGTTGCCTGCATTTGGTGGCAAGCCATGAGCAGCGGTTGTGTTTTCCATTGGAATCGATTCGCCGTGAAAACGGGGAGTACCCGGCTAATAGCCAGGAGGTGATCTATCCGGGGGTACATTCGGATCAGGGTGGGGGGTATCCGCCAGGGGATCAGGGGAAGGCGGTCGGTAGGGACGATCGTATGCTGCTTTCACAAATCGCACTGAATGATCTGTATGCCGATGCGTTTGCCCATGGCGCACCTTTGAAGGTTCCTCCTTTAGCGGTGCCGACAGTGTTGCGCCATGAACACTGGCGAACGATGGAAACAGAACTAGAGGTAGAGTTCGGTGTGTCTTTGATCCTGATCGAGCGTTTTAACGCCTGGCGCCAAGTCACCTTGGACCTGCCAGCGGTAACGCAACCGTTGCCCATCGAACAGATCGAAAGCTACCAACCCTTACCGACCACCCTCAGCCTGGAAGAAGCCCTACGCACGCAACTGGACTGGATCACCGCCTGGCGCATCGACCGCTACGCCTTTGCCAGCCTTAAACAGACAGGCTTCTACCAACAGGCAAGCGATACCGAAGCCGACAAGACTGTCCGTGAAGCTGCCGAACACAAGCGTGATGCAGAACAACAAGCGATCGAAAGGCATCGCAAACTGCAGATGGTCGCCGAACGTATAGGCCGTGTCCCGAAAAAAACACTGAAACCCGGCGTAAAGGATTTCGACGCGGACATGGCGAAAACCCAGCTGCGCGAAGCGGCCGAAGAGTTCGCTGAGGTTTACCGGAGCGAGGGTCGCCAGGATCCGTTGGCCCTGCTGGCGCTTGGTCTGGTTGCCGGCCCAGAGCCGTTCTGGGTTGCCACCCAGATCCGTGCCGAGCGTGAACGAATGAAAGCGGCCGGCCAGAAGTTGGTCAGCCAATTGTTTCCACCCCCTCGGTCCCAGATAAACCATCAGAACGAAACCTTTCGCGGCAACGTCGACGAAAGCCGCAATGCCGAACAACCCGAAGGGTTGTTGCGTGCGTTATTCGACGACCACGTGCACGACTCCCGCGCCTGGTTCCTCTACAAGCTTGGGCGCGAACCTTGGGGCAGCTTCTTGCGAGACCGCATGGTGTTCTTCGGCGAGAGCGACAGCCGGGCGCTGGCGCTCTACAGCGAAAACGCCCAAGGCCAGTGGGCCCAAAGACAGCCAAAGTCAACCAGCGACCCGGTGCCGCTACACATGGATGTTGAACGCCTGGCCCAGGTGCAGAAGGACATCGATGAGCTTTGGAAGGATTTTTATGCAAAGGCCAGGGAGACGAACGATGCGCCGAGCTGA	MSELKHTPVWYPPAFPVQGRLPRDVGLVYQNLNRQCALEHDYHDSLCVAAGRRVMPPCCKTVHISLFFDGTGNNLNNDLYESSTPHPTNIARLFRASIGAGHAGGTAHSDKAERLVDAPGNGNGQYFKYYMPGVGTPFPEVGDLDYSESGLATAWYGEERINWGLMMLIDALRRTLNQPRLDNAALQVAVKAMGTALGLGWGTGHANRSREFRKQLQALAKPLQLALTQPQPGQVKLLGLKLYVYGFSRGATAARGFVSWLDRLLSDLALTLPMADIRVPLSVEYLGLLDTVASVGIADIIPGAQGHMSWADGNQHLPESGLVKRCLHLVASHEQRLCFPLESIRRENGEYPANSQEVIYPGVHSDQGGGYPPGDQGKAVGRDDRMLLSQIALNDLYADAFAHGAPLKVPPLAVPTVLRHEHWRTMETELEVEFGVSLILIERFNAWRQVTLDLPAVTQPLPIEQIESYQPLPTTLSLEEALRTQLDWITAWRIDRYAFASLKQTGFYQQASDTEADKTVREAAEHKRDAEQQAIERHRKLQMVAERIGRVPKKTLKPGVKDFDADMAKTQLREAAEEFAEVYRSEGRQDPLALLALGLVAGPEPFWVATQIRAERERMKAAGQKLVSQLFPPPRSQINHQNETFRGNVDESRNAEQPEGLLRALFDDHVHDSRAWFLYKLGREPWGSFLRDRMVFFGESDSRALALYSENAQGQWAQRQPKSTSDPVPLHMDVERLAQVQKDIDELWKDFYAKARETNDAPS				NA	NA	NA	NA	NA
D1-36_02663	837			hypothetical protein	ATGTCCGAGCTGAAGCACGCCCCGATCTGGTATCCGCCGGCATTCCCGGTCCAGGGCCGCTTACCCAGAGATGTCGGGCTGGTTTACCAGAACCTCAATCGCCAATGCGCTCTGGAGCATGACTATCACGACTCCCTGTGCGTCGCCGCTGGGCGCAGAGTGATGCCTCCATGCTGCAAGACCGTGCACATCAGCCTGTTGCAGCCCGGCCAGGTCACGTTGCTGGGATTGAAGCTGTATGTCTACGGTTTTTCCCGCGGAGCGACGGCGGCCCGGGGTTTTGTAAGTTGGCTGTTAACAGAGGGAAGTGACTTTATGGCCACGTGTTTGATAGCCAGACGCGTCGTTGGGATTGCCGCAGGTTTGACCGCCATTTCAATCACTTCAAGTGGGGTGGCGAGCACCTTGGAAGCGATCAATCACACTCATTGGGCGATCAACCGATTCAGTGTGGATGGGCGTTCGGGGATTGACGTTATCGGGCCTTACCAGGGCGGCGGGGGCGGATGTTGTTACGTCGCGCCGTCGCGTTGGCAGCAGGGTATTACGGTGCGGATCGATTGGGAGACGGGTGTCGCTTACTCCTATGACAATCCTGGCTATGCGGACTGGCCTAAGTACCTAGCCTGGAAACAAAAGCTAAAAGCGCAAAAGCAGCAGCATAGCAAGATGGTAGAGGTCCCAGATTATACGAACCAAAGAGTCTGCGGCCTGACCGTGCACTTCCTGCCCTGCGACGACATCCAGGTCACCACGTCCTGCTACGCCTATGGCAGTCCCGAATACCCGATCAAGACCCCCCTCAACTTACCGGAGCCCACCTCATGTCCGAGCTGA	MSELKHAPIWYPPAFPVQGRLPRDVGLVYQNLNRQCALEHDYHDSLCVAAGRRVMPPCCKTVHISLLQPGQVTLLGLKLYVYGFSRGATAARGFVSWLLTEGSDFMATCLIARRVVGIAAGLTAISITSSGVASTLEAINHTHWAINRFSVDGRSGIDVIGPYQGGGGGCCYVAPSRWQQGITVRIDWETGVAYSYDNPGYADWPKYLAWKQKLKAQKQQHSKMVEVPDYTNQRVCGLTVHFLPCDDIQVTTSCYAYGSPEYPIKTPLNLPEPTSCPS				NA	NA	NA	NA	NA
D1-36_02664	522			hypothetical protein	ATGCCCACGTGTTTGATAGCCAGACGCGTCGTTGGGATTGCCGCAGGTTTGACCGCCATTTCAATCACTTCAAGTGGGGTGGCGAACACCTTGGAAGCGATCAATCACACTCATTGGGCGATCAACCGATTCAGTGTGGATGGGCGTTCGGGGATTGACGTTATCGGGCCTTACCAGGGTGGCGGGGGCGGATGTTGTTACGTCGCGCCGTCGCGTTGGCAGCAGGGAATGACGGTGCGGGTTGAATGGGAGGCAGGTGTGGCTTACCCCGATGGGTTTCCTGGGTATGCCGACTGGCCTAGATATTTGGCTTGGGAGAAGCAAATAAGCGCGCAAACGCGGCAGCACCGCAAACAGGTGCCCGTCCCAGACTACACCGGCCAAAAAGTCTGCGGCCTGACCGTGCACTTCCTGCCCTGCGACGACATCCAGGTCACCACGTCCTGCTACGCCTATGGCAGTCCCGAATACCCGATCAAGACCCCGCTCAACTTACCGGAGCCCACCTCATGTCCGAGCTGA	MPTCLIARRVVGIAAGLTAISITSSGVANTLEAINHTHWAINRFSVDGRSGIDVIGPYQGGGGGCCYVAPSRWQQGMTVRVEWEAGVAYPDGFPGYADWPRYLAWEKQISAQTRQHRKQVPVPDYTGQKVCGLTVHFLPCDDIQVTTSCYAYGSPEYPIKTPLNLPEPTSCPS				NA	NA	NA	NA	NA
D1-36_02665	735			hypothetical protein	TTGTACCATCTCGATGTAGTTGTGGATCAGGCTGGCAGCAACGCCCCGTTATTGCCCAGCGTATTGAGCGTCGAGCCGCCGTTGCAATGGCGTTCGCTGTTCACCGGTCTGCCCGAGGAAGGCGCTAGCGAACTGGCGCCGTTGTTGCTGCGTATCGACCTGACGCAGCCACTGCAACGGCAGTGGCTTGGCTGCCTGATGCACGAGGTACGCGATCGTTCGCAATTGATGGTGTTGGCCTCGCCTTGGCTGTTCCCAGCATTGGCCGAACACCTCGGTCGCTGCTTGGAAGTGTCCAACGGCGGCTGTACGGGGCTGCTGCGCTATTACGACCCGCGTCTGTTTCCGCTGCTGTTCAGCCACGTATTGGAGCCTGCACAACAGCAACTGCTACTTCGTCCCGCAGTGTTCTGGAGCTGGCTTGATCGTGACGGCGTTCCCGGCCACTTGCCTGGCGCTCCTGGCGAACCCTTGGGCTCGGAAGATTTTCGCCCCTTGGACCTTAGCGACAGCCAGTTGGAAGTTCTTGGTTGCGCAAGTGATGCGACGTTGGCAATGAGCAAGCTGCTTGCTGCACGCCCAGCGACATATGGGAATGAACAATTTTTTCACCAGTGTTACGCGGCGATGCTCGACGCCACCGAAGCGGGATTGCTTCTGGGGCCCGAGCGGGAAGCGTTCGTTCTCAAACGATTGCTCGCGCCCGAATCGACAGCATTTAACAGAGGGAAGTGA	MYHLDVVVDQAGSNAPLLPSVLSVEPPLQWRSLFTGLPEEGASELAPLLLRIDLTQPLQRQWLGCLMHEVRDRSQLMVLASPWLFPALAEHLGRCLEVSNGGCTGLLRYYDPRLFPLLFSHVLEPAQQQLLLRPAVFWSWLDRDGVPGHLPGAPGEPLGSEDFRPLDLSDSQLEVLGCASDATLAMSKLLAARPATYGNEQFFHQCYAAMLDATEAGLLLGPEREAFVLKRLLAPESTAFNRGK				NA	NA	NA	NA	NA
D1-36_02666	2391			hypothetical protein	ATGAACATGGCCACCTTCTTCGACCACAGCCGCCACACCCTGAGCGTCTGCGACCTCACAGCCCATCTCGACGTCCTGGCCTTCACCGGCGAGGAGCACCTGAGCCGGCCCTACCACTACCGCATCGAATTCACCTGCACCGAGCGCGACCTGGTGGCCACCGACCTGCTCAACCGGGATGCCTACTTCAGTCTTTACCCGCTGCCGCCACCGCCGACGCCCAAGGGCTTCGCGCCGCCGGAGATCAAGCCGCTGCGCACGTTCAATGGCGCGATCACGGCGTTCAAGCGCCTGTCCGGCTCCAACGACGAAGCCCGCTACGAGATCACGTTGCAACCGCGTTTCGCGCTACTGGCGCGGGGCAAGCAGTTTCGGATCTACCAGCACCAGTCGGTGCCGCAGATCGTCGAACACATCCTGCGCACGCGCCATGATTTCCGGGGCCAGCATTTCTATTTCAATGTGGTGCGCGACTACCCCCGGCGTGAACAGGTCATGCAATACGACGAAAGCGATCTGGCCTTCATCGAGCGCCTGCTGGCTGATGTCGGCATCTGGTACCGGGTCGTCAGCGATGACCGCCTGAGCATCGACGTGGTGGAGTTTCACGACGACCAGCGGCACTACCAGCGCGGCGTCAAGTTGCCGTGTCGCCCGCCGTCCGGCTTGTGCGCCAACGAGCAGGACGCGGTCTGGCACCTGCAAACCGCCCACCAGGTGGTGGAAAAAAACATCAACTTTCGCGCCTACCACCATCGCGAGGCCTACGCGTTCCTCGACGGCGAGGTCGACCATACCCGCCGCGCCAAGGGCACCTACGGCGAGGCCTATCACTACGGCGAACCCTACACGGTGCTGGGCGAGCGCTACGCCCTGGACGAGGACCTGCAAAGCGAAAGTGGTTTTTTCTACGCGCGCCTGCGCCATGAACTCTACCTCAATGACCAGACCCGCCTCAGCGGCACCACCAGCAGCGCCACCCTGGCCCCGGCCCAGATGCTCGAAATCACCGGCGGCGCGCCCCAGGCCTTCGAGTTCGGCGCGGTGATCGTCAGCCTGCGCACCGAAGCGGCTCGGGACCGCAGCTTCATCGCCACTTTCCAAGCGATTCCTTACTCAGAAACCGTGTGCTTTCGCCCACCGCTGCCGCCCAAGCCGCGCATCAGCGGCACCATTCCCGCCCGCGTCAGTCACCCGGAAGTCAACCCGCCGTACGCTGACCTCGACTTCGAGGGCCGCTACAAGGTGCGCTTCCTGTTCGACCGCGACACCTGGCAAGCCGGCCGCGAAAGCGCCTGGCTGCGCCTGGCCCGACCCTACGGCGGCGACACCCACGGCCTGCATTTCCCGCTGCAGGCCGGCACCGAAGTGGCGGTGGCCTTCGAGCACGGCGACCCCGACCGCCCCTACATCGCCCACGCCCTGCACGACGACCGGCACCCGGACCCCGTCACCGCCCGCAACGAGCGCCGCAACGTGCTGCGCACTCCGACCAACAACAAACTACGCATGGACGACACCCGCGGGCAGGAGCACATCAAGCTCAGCACCGAGCACAGCGGCAAGAGCCAGTTGAACCTGGGGCATCTGGTGGATGCCGAGCAGACGAAGCGGGGGGAAGGGTTTGAGTTGCGCACCGATGGACATGGCGCCCTTCGTGCGGGCAAGGGGGTGTTTATCAGTGCTGATGAGCAAACCCAGGCCAAGGGCGACGTCCTCACCATGGACCCGGCCACCGCCCAGGTCGAAGGTGCCAGACAGCAGATGGCCGAATGGCAGGACATCGCCCAGGCCCACCACAGCCGCAAACCCGACCTGCGCGGCTTGGAACAACTCCAGGCCGATGCAAAAGACCTTTCGGCCGCCGCCATCCTGCTCAGCGCCCCCCAGGGCATCGGCGCCGTCACCCCGGCCAGCCTGCTGCTCAAGAGCGGCGACGCGCTGTACCTGCAAAGCCACAACGAAATCAACCTCGCCGCCGCCAAGCGGCTGTCGGCCCACGCCAACCAGGGTATCTCGCTGCTGGCCCAACAGGAAGGCCTGCGCCTGGTCTCCGGCAAAGGTCCCCTGGACATCGAATCCCACGGCGATGGGCTGGGCATGAAAGCCCAGCAGGACATCACCGTGCAGTCGGTGCAGGGGCATGTGCAGGTGACGGCGAAGAATGGCCTCACCCTGGCGTGTGGGGGTGGGTTCATTCGGATTACAGCCGAAGGCGAAATCCAGATTCATAGTCCTGGCCTAGTCAGTATCAAAGGGAAGCACAGACTCGACCGCCCCGGTGGCGAGACGTTTCCGCTGCCTGAGTTACCCGGTTCGGTGTGCAAAGAATGTTTGAAAAGGGCTAGGGCAGCCGCCCAGGGCTTCATGCCCAGGGGGGCATCGATATGA	MNMATFFDHSRHTLSVCDLTAHLDVLAFTGEEHLSRPYHYRIEFTCTERDLVATDLLNRDAYFSLYPLPPPPTPKGFAPPEIKPLRTFNGAITAFKRLSGSNDEARYEITLQPRFALLARGKQFRIYQHQSVPQIVEHILRTRHDFRGQHFYFNVVRDYPRREQVMQYDESDLAFIERLLADVGIWYRVVSDDRLSIDVVEFHDDQRHYQRGVKLPCRPPSGLCANEQDAVWHLQTAHQVVEKNINFRAYHHREAYAFLDGEVDHTRRAKGTYGEAYHYGEPYTVLGERYALDEDLQSESGFFYARLRHELYLNDQTRLSGTTSSATLAPAQMLEITGGAPQAFEFGAVIVSLRTEAARDRSFIATFQAIPYSETVCFRPPLPPKPRISGTIPARVSHPEVNPPYADLDFEGRYKVRFLFDRDTWQAGRESAWLRLARPYGGDTHGLHFPLQAGTEVAVAFEHGDPDRPYIAHALHDDRHPDPVTARNERRNVLRTPTNNKLRMDDTRGQEHIKLSTEHSGKSQLNLGHLVDAEQTKRGEGFELRTDGHGALRAGKGVFISADEQTQAKGDVLTMDPATAQVEGARQQMAEWQDIAQAHHSRKPDLRGLEQLQADAKDLSAAAILLSAPQGIGAVTPASLLLKSGDALYLQSHNEINLAAAKRLSAHANQGISLLAQQEGLRLVSGKGPLDIESHGDGLGMKAQQDITVQSVQGHVQVTAKNGLTLACGGGFIRITAEGEIQIHSPGLVSIKGKHRLDRPGGETFPLPELPGSVCKECLKRARAAAQGFMPRGASI	PGPT0030410_1767	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_PROTEINS,PGPT0030410-vgrG-K11904	NA	NA
D1-36_02667	2658	clpV1_1	COG0542	Protein ClpV1	ATGGCACAAAGCCCCTCGCGTCTGCTTCGTCGTTTGAATCCCTACTGCGCCCAGGCCCTGAGCGACGCGGCCTCAATGTGTCAGAGCCGCGCCCATGCCCACATCACAATCGAGCACTGGTTGCTCAAGTTGCTGGGGCAGGGCGAGGGCGACCTGACCGTCATCGCCCGTCGTCACGAACTGGACCTGGAGGCGCTTTGGTGCGGCCTGCTCAACCACGTCGATAACCTGCCGCGCAGCGTACAGGCCAAGCCACAGCTGTCTGAACCGTTGCAAAAACTGATCAAGCATGCCTGGCTGCGGGCCTCGCTGGATGACGACAACGACCGGCTGCGCTCCGCCCATCTGCTGGGTGCGCTGATGGACGACCCCGGGCTGCTGGTTTGCGAAGCGGCCTGGCCGTTGCTCAGCCTCGGCGAGCTCCAACTGCAACGCCTGTTTGCTTTGCTGGATCAAGTCTCCGAAGAGCGTCCCCAAGGGCAGGAGCCTGTTGCGATAAGCGATCCCATCGCCGCCTTGAACGGAGACGCCAAGCCTGATGCACGCACGCTACTGCTGGACAGATTCACCCAGGACCTGACCGCCCGGGCTGGGGAAGGGCAAATTGATCCGGTGTTCGGTCGCGACGATGAGATACGTCAGGTCATTGACATACTCAGTCGCCGGCGCAAGAACAACCCGATCCTGGTCGGTGAGCCGGGCGTGGGCAAAACCGCGCTGGTCGAAGGCCTCGCCCTGCGCATCGCCCAAGGCGACGTGCCCGACAGCCTGAAGTCCGTCTGCGTGCGCGCGCTGGATTTGGGGTTGCTGCAAGCCGGTGCCGGGGTCAAGGGCGAGTTCGAACACCGCCTCAAAAGCGTCATCGACGCGGTGCAGCAGTCCGAAACGCCGATCCTGCTGTTCATCGACGAAGCCCATACGCTGATCGGCGCCGGCAACCAGGCGGGGGGCGCCGACGCGGCAAACCTGCTCAAACCCGCCCTGGCCCGTGGCGAATTGCGCACCATCGCCGCGACCACCTGGGGCGAATACAAGCAATACTTCGAGCGGGATGCGGCATTGGAGCGTCGCTTCCAGCAGGTCAAGGTCGACGAACCGGACGATGCCAATGCCTGCCTCATGTTGCGCGGCCTCAAGGCCCGCTACGCGAGCCACCACGGCGTCCACATCCAGGATGCGGCGGTGCAGGCGGCCGTCATCCTGTCGCGGCGCTACCTCACGGGCCGTCAATTGCCGGACAAGGCCGTCGACCTATTGGACACGGCCTGTGCAAGGGTGCGCATGAGTGTCGATTGCGAACCCCAGGCGTTGGTCCACGTCAAGGCGCGGCAGGCTGCCCTGGAACTGGAGCGACAGGCACTGGAAGCCGACCAGGGCCTGGGCAGTCGCGTCGACACCGAACGCCTCGGGCAGATCGCTGCGCAACATGCCGAATTGGAACGCGGCCGAATCGAGCTGCTGAGCCGATACAGGCAGGTGCTCGATCTCTCTCAACAATTACTCGATGCTCGCGAGGCAGAGCCGCCGCGCTGGGTGGACTGTGTCCAGTTGCAACAGGAACTGGATGCGATCCAAGGCAATCAGCCGATGTTATCCCTGGATGTCGACGCCCGCAGCGTAGCTGAGGTGATCGCCGATTGGACTGGGGTGCCCCTGGGCAGTTTGCTCAAAGATGAACAAGCGCACCTGCTGGAGCTTGAACAACAATTGGCGGAGCGCGTCGTCGGCCAGGCCCCAGCCCTCGAAGCGTTGGCTCAGCGCCTGCGTGCCGCCAAGACCGGGCTCGCCGATGACAAAGGCCCCCTGGGCGTTTTCCTGCTGGTGGGCACCAGCGGGGTAGGCAAGACCGAAACCGCCCGGGCCTTGGCCGACGCCCTGTTCGGCGGCGAAAAGGCGCTCGTCACCCTCAACCTTTCCGAGTATCAGGAAGCCCACACTGTCAGCCAGCTCAAAGGTTCGCCGCCCGGTTACGTCGGTTACGGACAAGGTGGTGTGCTGACCGAAGCCGTGCGTCAACGGCCCTACAGCGTCGTGCTGCTCGACGAGGTGGAAAAAGCCCATCGCGACGTCCTGAACCTGTTCTACCAAGTGTTCGATCGTGGCTTCATGCGTGATGGAGAAGGGCGAGAGGTCGATTTTCGCAACACCGTCATTCTGATGACCTCCAACCTGGGCAGCGACGCGTTGCAGGCCTGCCTTCACGTTCAACCCGACGCGCCGGACGGCACGTTGCATGAATGCCTGCGACCGATCCTGCGCGAACACTTTCAGCCGGCCTTGCTGGCGCGTTTCCAGACCCTCATCTATCGCCCGCTGCAAGTCGGTGCGCTGCAATCCATCGTTGCGATCAAGCTGGGCCAGGTTGCCCACCGTTTGCGGCGCCACTATGGCCTGGATTGCGAGTTCGACGATGCCCTCGGCGAAGCGATGGTTGCCGCTTGCCTGCTGCCCGATACCGGGGCGCGCAACATCGATAGCCTGCTCAACGAACAGATTTTGCCCGTGCTGAGCCAACAGTTGTTGCAACGCCGGGCCGCGCAGATAAGAACAAACGGGGTGCGCCTGGGTTATTGCCAGGAGGAGGGCATCACCCTGCGTTTCATCGATGTCGCGGACACGGCCGGGACCGGCACCGTCGCCATGGAGCCTGCGCGATGA	MAQSPSRLLRRLNPYCAQALSDAASMCQSRAHAHITIEHWLLKLLGQGEGDLTVIARRHELDLEALWCGLLNHVDNLPRSVQAKPQLSEPLQKLIKHAWLRASLDDDNDRLRSAHLLGALMDDPGLLVCEAAWPLLSLGELQLQRLFALLDQVSEERPQGQEPVAISDPIAALNGDAKPDARTLLLDRFTQDLTARAGEGQIDPVFGRDDEIRQVIDILSRRRKNNPILVGEPGVGKTALVEGLALRIAQGDVPDSLKSVCVRALDLGLLQAGAGVKGEFEHRLKSVIDAVQQSETPILLFIDEAHTLIGAGNQAGGADAANLLKPALARGELRTIAATTWGEYKQYFERDAALERRFQQVKVDEPDDANACLMLRGLKARYASHHGVHIQDAAVQAAVILSRRYLTGRQLPDKAVDLLDTACARVRMSVDCEPQALVHVKARQAALELERQALEADQGLGSRVDTERLGQIAAQHAELERGRIELLSRYRQVLDLSQQLLDAREAEPPRWVDCVQLQQELDAIQGNQPMLSLDVDARSVAEVIADWTGVPLGSLLKDEQAHLLELEQQLAERVVGQAPALEALAQRLRAAKTGLADDKGPLGVFLLVGTSGVGKTETARALADALFGGEKALVTLNLSEYQEAHTVSQLKGSPPGYVGYGQGGVLTEAVRQRPYSVVLLDEVEKAHRDVLNLFYQVFDRGFMRDGEGREVDFRNTVILMTSNLGSDALQACLHVQPDAPDGTLHECLRPILREHFQPALLARFQTLIYRPLQVGALQSIVAIKLGQVAHRLRRHYGLDCEFDDALGEAMVAACLLPDTGARNIDSLLNEQILPVLSQQLLQRRAAQIRTNGVRLGYCQEEGITLRFIDVADTAGTGTVAMEPAR	PGPT0025985_822	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025985-vasG|clpV-K11907	NA	NA
D1-36_02668	492	hcpA_2	COG3157	Major exported protein	ATGGCAATTCCCGTTTACCTCTGGCTGCAAGATGACGGCGGCGCGCAAATCAAAGGTTCCGTGGATGTACAAAAGCGCGAGGGCAGCATCGAAGTGGTTGCTCAGGATCACAGCCTGTACATCCCGACCGATAACAACACCGGCAAGCTGACCGGCGCGCGGGTTCATACGCCGTTCCTGTTTTCAAAGGAAATCGACGCCTCCAGTCCCTACCTCTACAAGGCCGTTACCACCGGGCAGACGCTCAAGAGCGCCGAATTCAAGTGGTACCGCATCGATGATGCCGGGCAGGAGGTCGAGTACTTCATCACCAAGCTGGAGAACGTCAAGGTGGTGAAGGTCGCGCCAAAAATGCACGACATCAAAGACCCGACCAAAGAGAAGCATAACCACCTGGAACAGATTGAGTTGCGCTACGAGAAGGTCACCTGGACCTACAAGGACGGCAACATCATTCATTCCGATTCCTGGAGCGAACGCCAAAGCGCCTGA	MAIPVYLWLQDDGGAQIKGSVDVQKREGSIEVVAQDHSLYIPTDNNTGKLTGARVHTPFLFSKEIDASSPYLYKAVTTGQTLKSAEFKWYRIDDAGQEVEYFITKLENVKVVKVAPKMHDIKDPTKEKHNHLEQIELRYEKVTWTYKDGNIIHSDSWSERQSA	PGPT0025980_742	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_PROTEINS,PGPT0025980-hcp-K11903	NA	NA
D1-36_02669	1728	pal_5		Peptidoglycan-associated lipoprotein	ATGACGATTCCATTGAAACGAGTCCTTTGGGCATGGGCCGGGATGCTTGGCGTGATATTGCTGTTCATCCTCCCGCTCGACACCCGGATACGCGTGATCGCGGTGTTGGTCATGATCGGCGTTGCGACGGTGGTTTGGGCGATGGCCAATCATCGTGCGGCTCGATTGCGCCAGTCGGTAGAGTTCGCCGCCGATGTGGCCATGCCACCCTCGTCGTTTCGTCAACCGGTGGTCCTGGTCTGCGGCGACGCCCTGGATGGCCTGTTCGGCACCGTCCCCGCCGAGCGATGGGCGCTACGCGTCACCCATCAAGGTTGCTATGTACGGGTGCCGAGTGTCGAGCAGTTGCCGAACGTGACCGAGAGCCTGCTGGCCTTGCGTCCGGGGTGGGGTGCTCAGCTCAGCGTGATGTTCGTCATCAACCCTGCGGCACACCGGAATGAAGCTGAACTGGCGGGGCGGATACGAGCGTTTCGTCACCAAGCCGCGCTGGCAGGCAGGCAGGGGGCGTCCATGCCAATGATGCTGGTGAGTTATGTCCGCGCACCTCAGCGCGTGGACCCATGGTTCTGCTGGGTGGATGGTCCTCCCAATAATCCTCGTGTTCATGATGCCGGAGCCTGTGTCGATCTGGCTGACTGGCTGCAACAGCCCACCCGTTCGGCGCTGCGGGCGACACGGTTGCATGCGGGTGTGCAGCTGAACAATGCGGTGGCGTGGCTGCACGAGGAGGTGCTGCCGCATTTCAATTCACGCGGTGACGGGCGAGGCTCGGCGGTGTGCTGGTCGATAAAGTTGGTGCCGGCAATACCGCAAACCGTGGAGGGGAATCTCTGGGAGCAGCGGCTACGTAGCAAAGTGGCGCTGGTCGACACCAGGACAGGGGAGATGCAAGCGGTGCTGCCGTTTCCGGATCCTCTGCTTAACCTGATTCCACTGCGGGCCCAACGTACCTCGATGCAGCGTGCCGCCATCATCGCCGTGTGGATGTATGCCCTGGCCGGCGGGATCGCCCTGGTCAGTTCCGCATGGCAGAACAACTTGTTGGTGCGCCAGGTCGCTGATGACCTGCGCCGCTATGCGCCGCTCCTTGAGATGGAACCTCAGGAACAACCAACATCTCGCTGGCGCCAGCAAGCCGAGGTCAACCTCCGTGAGACCGCGCATCGGCTGCAGACCTACCACCGACAGGGTGAACCCCTGGCGCTGGGCATGGGGCTATATCGCGGTGACCTTTTGCGCGAGCCATTGAGGGCGGCGCTTTCCAGTCGTCTGACGTCGTCCGGGCCAATGCCTGCGCAAGCGTCCGAACCCGTGAGGCTAGACAGCCTGTCCCTGTTCAGCCCGGGCAGCGCGCGGCTCAAGCCGGGTTCAACCAAGGTACTGGTCAAAGCGTTGGTCGGCATCAAGGCACGATCCGGCTGGCTGATCGTGATTGCCGGGCACACCGATGCCACCGGCGAAGCCGCGCACAACCTCAAGCTGTCCCGAGCCCGTGCCGCCGCCGTGCATGAATGGATGCTGCACGTGGGCGGCATGCCCGACACGTGTTTCGCCGTGCAAGGGTTTGGCGCAAGCCAGCCGATCGCCAGCAATGACACCGAGGCGGGGCGTGCGGCCAACCGCCGAGTCGATATCCGTCTGGTACCTGAAGTGGGCGCTTGTGCGTTCCCCACGACAGGGTCGGACAGTCAACCCCCAGTCGCATTCAGCGACATTCAATCTTGA	MTIPLKRVLWAWAGMLGVILLFILPLDTRIRVIAVLVMIGVATVVWAMANHRAARLRQSVEFAADVAMPPSSFRQPVVLVCGDALDGLFGTVPAERWALRVTHQGCYVRVPSVEQLPNVTESLLALRPGWGAQLSVMFVINPAAHRNEAELAGRIRAFRHQAALAGRQGASMPMMLVSYVRAPQRVDPWFCWVDGPPNNPRVHDAGACVDLADWLQQPTRSALRATRLHAGVQLNNAVAWLHEEVLPHFNSRGDGRGSAVCWSIKLVPAIPQTVEGNLWEQRLRSKVALVDTRTGEMQAVLPFPDPLLNLIPLRAQRTSMQRAAIIAVWMYALAGGIALVSSAWQNNLLVRQVADDLRRYAPLLEMEPQEQPTSRWRQQAEVNLRETAHRLQTYHRQGEPLALGMGLYRGDLLREPLRAALSSRLTSSGPMPAQASEPVRLDSLSLFSPGSARLKPGSTKVLVKALVGIKARSGWLIVIAGHTDATGEAAHNLKLSRARAAAVHEWMLHVGGMPDTCFAVQGFGASQPIASNDTEAGRAANRRVDIRLVPEVGACAFPTTGSDSQPPVAFSDIQS				NA	NA	NA	NA	NA
D1-36_02670	669			hypothetical protein	ATGACGCTGAACTTCACGAAACAAACCCACGCAATGGCGAAGCATATCGACGCCTTGCTGCAGGACAGTTATTTGCTGGTGGTCGAGTTACGCCATGGTACTTCGGTACATGACACCCAGGCGCTGCAGCAGCTTTGCCTGGAACAGGTCGAGCAGGTTCGACGGCAGCTCGAACAGCTCGCGGTGGAACCGCGCAGCATCGAACACATCAGTCATGCCCAATGTGCGCTGCTCGACGAAGCCATCCTCGTCTGCACGAAGGGCCCGATACGAGCCGAATGGAGCCGCGAACCGCTACAGGCCAAGCTGTTCAACCGGCATCAGGCCGGTGAGTTTCTCTACGAGGAAATGCGCCTGGTATTGCGCGAACCATCACCGGATCCACGGGTGCTTGTCGTGTTCCATCGGGTTCTGATGCTGGGTTTCGGAGGCCGCTACACGGACCCTGACGACCCTGAGCGCGAGCAAGTGCTTGCCGCCCTCGGCGCTCAGGTCCCGCCTTTGAATATCAGCCAGAACCTTGCTACGCGAAAGGGCGGTCGCTTGGGTCGGCATCAATCCCCATGGTTCCATGGAATAGCGGTGGCGCTGCTGCATGCCGGTGTCTGGTGGGCAATGGATCACTGGCTGGCCGGCGTGGTTGTTTCCCTCATGCCCGGCCAGGCATGA	MTLNFTKQTHAMAKHIDALLQDSYLLVVELRHGTSVHDTQALQQLCLEQVEQVRRQLEQLAVEPRSIEHISHAQCALLDEAILVCTKGPIRAEWSREPLQAKLFNRHQAGEFLYEEMRLVLREPSPDPRVLVVFHRVLMLGFGGRYTDPDDPEREQVLAALGAQVPPLNISQNLATRKGGRLGRHQSPWFHGIAVALLHAGVWWAMDHWLAGVVVSLMPGQA	PGPT0025955_1424	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025955-impK|ompA|vasF|dotU-K11892	NA	NA
D1-36_02671	1356			hypothetical protein	ATGAAAATCGATCGTCCCTTATGGACGTCCGGCACCCTGTTGTCTGCGCAACAGTTTCAACAACAGGCGCGCTGGGAAGCGTGGGCCAACGAGCAACGCGCCGGCTCGGCCTTGGCGCATCCCTGGGGCGTGACGGCCGTCGAGTTCGATACCGACGCATTGGGCCTTGGTAAGCTCAAGGCAACCCGGCTAAGCGTGTGCATGCCCGACGGTACCCTGCTCGACAGCGAACGGGTGGATCGTCTTCCGCCTGGGCTGGAGTTGTCGCGGTTATTGACCGACGACACCCGGGAGGCGCTCGTGCTGCTGGCCCTGCCCCTGGAACAGGCCAACGGAAACAATTGCCTGATGGAGGAGGGCCGCGCCGATCGGCCCACCCGTTACCGTCAAGACTGGCGCAGCGTGCAGGATCTCTATGCGCAGGAAGTGCAGTCGATCGCCGTGCTGGAGCACAACCTGTCGCTGCGCCTGGACAAGGACGACAACGGTGATTACCTGGTCTGTCCCATCGCGCGCCTGATCCGTGAAGGGCATGGCAAGTGGCGTCTCGATCCGGCCTACGTACCGCCATTGCTCAATTTCGCCGCGCACCCGGGTCTGTTGCTCCAGCTGGACAACCTATTGACGCAGCTGTCGGCCAAGCGGCAGCGCCTGATGGGCATGCGCCGGGAGAGCAATCAACGCATGGCTGACTTCGCTGTAGCCGATGTGTCGTTGTTCTGGTTGCTCAACGCCTTGAACACCTACGAGCCGGTGCTGGCTGATATCAAGTCCTATCCCCAGCGACATCCCGAGCAGGTCTATCTGGAGCTCGCCAAGCTGGCCGGGGGGCTGCTGACGTTTTCGCTGGAACACGATATCGACAGGATTCCAGCCTATCGGCATGAGCAACTGGAGACGGTGTTTGCACCGCTGATGCGTTGTATCGCAACGTTGCTTGAAGCCAGCCTGCCTTCGCGCGTCATAGCACTGGTTCTGGAGAACACGAGCGCCAATCGCTGGCAGGTAACGCTCAACGATGCCCGGCTACGTGAACCTGACGGCGCTGATTTCTACCTCTCGGTGCGCTGCCAGTTACCGGCGGCACAGTTGCAGGAGCAATTTCCTCGCTTGTGCAAGGTCGGCGCGCCGGCCGATGTCGACAACCTGATCAATGCGGCGCTCGACGGCGTCCCCCTGAAGCCCCTCAGCCATGTGCCCGCGGCCATCGCGCTGCGCCTGGAAAACCAGTACTTCGCCCTCGATCTCGGTCACGCCAAGGGCCAGGCCATGCTGGCCGCCGGGGCTTTTGCTTGCTACGTGCCCAGCACTTTGTCGCAAGTCCAACTTGAACTGTTTGCGGTGTTACGCACATGA	MKIDRPLWTSGTLLSAQQFQQQARWEAWANEQRAGSALAHPWGVTAVEFDTDALGLGKLKATRLSVCMPDGTLLDSERVDRLPPGLELSRLLTDDTREALVLLALPLEQANGNNCLMEEGRADRPTRYRQDWRSVQDLYAQEVQSIAVLEHNLSLRLDKDDNGDYLVCPIARLIREGHGKWRLDPAYVPPLLNFAAHPGLLLQLDNLLTQLSAKRQRLMGMRRESNQRMADFAVADVSLFWLLNALNTYEPVLADIKSYPQRHPEQVYLELAKLAGGLLTFSLEHDIDRIPAYRHEQLETVFAPLMRCIATLLEASLPSRVIALVLENTSANRWQVTLNDARLREPDGADFYLSVRCQLPAAQLQEQFPRLCKVGAPADVDNLINAALDGVPLKPLSHVPAAIALRLENQYFALDLGHAKGQAMLAAGAFACYVPSTLSQVQLELFAVLRT	PGPT0025950_304	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025950-impJ|vasE-K11893	NA	NA
D1-36_02672	1536			hypothetical protein	ATGTCTACTGAAAGTAATAACGTGCAATCGCGCGGCGCTACAGTATTGGCTGAAGATAAGGGAGTTTATGCAGCCCTGTTCAGTAAGATCAATTTGAATCCCATCGCAGAGTTGGGAAGCATCGAAACTTTCCAGCATGCCGAGGCGCTGTCCGAGGCCTCGGTTGACGAGCGCGTCACTGCCGCTGTCAGTGTGTTCTTGAAGTTGCTCAAGGAATCGCCGCACAGAGTGGAACGATTGGACAAAGTGCTGCTGGATGAGCATATAGCGTTGCTCGACATGCAAATCAGTCGTCAACTTGATGCGGTCATGCATCACGCCGAATTCCAAAGGATCGAATCAACCTGGCGCGGCGTAAAGTCCCTGGTCGACCAGACCGATTTTCGACAGAACGTGCGAATAGAACTGCTGGATATCAGCAAGGATGATCTGGTACGAGACTTCGAAGACGCCCCCGAAATCGCCCAGAGCGGGCTGTACCTGCATACCTATACCCGTGAATACGACACGCCGGGCGGAGAGCCGATCGCGGCAGCGATCTCCAGCTACGAGTTCGATCGTAGCCCGCAGGACATCGCCTTGCTGCGTAATATCTCGAAAGTCGCCGCGGCAGCCCATATGCCCTTCATCGGTTCGGTGGGGCCGGCATTTTTCGGCAAGCGATCCATGGAGGAAGTGGCTGCCATCAAGGACATCGGCAACTATTTCGATCGCGCCGAATACATCAAGTGGAAGGCGTTTCGCGACAGTGACGATGCGCGATACATCGGCCTGACCATGCCGAGGGTCCTGGGTCGCCTGCCCTATGGCCCGGATACCGTGCCAGTGCGCAGCTTCAATTACATCGAGAGCGTCAAGGGCCCCGATCACGACAGGTATTTGTGGACCAACGCATCCTTTGCCTTTGCCGCCAACATGGTCAAGAGCTTCATCGCCAATGGATGGTGCGTGCAGATCCGTGGGCCTCAATCGGGCGGCGCAGTCACCGACCTGCCGATCCACTTGTATGACCTGGGCACTGGCAACCAGGTGAAGATTCCTTCAGAGGTGATGATCCCGGAAACCCGCGAATTTGAATTCGCCAATCTCGGTTTCATTCCCTTGTCGTATTACAAGAACCGCGACTACGCCTGTTTCTTCTCCGCCAGCTCGGCTCAGAAACCTGCGTTGTACGACACCGCGGATGCTACCGCCAACAGCCGGATCAACGCACGGCTGCCCTATATCTTCCTGCTCTCGCGCATTGCCCATTACTTGAAGTTGATCCAACGCGAAAACATCGGCACCACCAAGGATCGTCGTTTGCTGGAGCTGGAACTCAACAAGTGGATCGGCGGACTTGTCACCGAAATGACCGATCCGGGCGATGACCTGCAGGCTTCGCACCCTCTTCGTGACGCAAAGGTGACGGTGGAGGACATCGAGGACAACCCCGGTTTCTTCCGGGTCAAGTTGTACGCAGTGCCGCACTTTCAGGTCGAGGGCATGGACGTCAACTTATCCCTGGTCTCGCAAATGCCCAAGGCGAAAGCCTGA	MSTESNNVQSRGATVLAEDKGVYAALFSKINLNPIAELGSIETFQHAEALSEASVDERVTAAVSVFLKLLKESPHRVERLDKVLLDEHIALLDMQISRQLDAVMHHAEFQRIESTWRGVKSLVDQTDFRQNVRIELLDISKDDLVRDFEDAPEIAQSGLYLHTYTREYDTPGGEPIAAAISSYEFDRSPQDIALLRNISKVAAAAHMPFIGSVGPAFFGKRSMEEVAAIKDIGNYFDRAEYIKWKAFRDSDDARYIGLTMPRVLGRLPYGPDTVPVRSFNYIESVKGPDHDRYLWTNASFAFAANMVKSFIANGWCVQIRGPQSGGAVTDLPIHLYDLGTGNQVKIPSEVMIPETREFEFANLGFIPLSYYKNRDYACFFSASSAQKPALYDTADATANSRINARLPYIFLLSRIAHYLKLIQRENIGTTKDRRLLELELNKWIGGLVTEMTDPGDDLQASHPLRDAKVTVEDIEDNPGFFRVKLYAVPHFQVEGMDVNLSLVSQMPKAKA	PGPT0025920_230	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025920-impC-K11900	NA	NA
D1-36_02673	504			hypothetical protein	ATGGCTTCATACAGTTTCCAGAATGAAGTACCCAAGAGCAGGATCAATATCAAACTTGATCTGCACACTGGCGGCGCGCAAAAGAAAGTTGAGTTGCCACTCAAATTGATGGTGATGGGAGATTACAGCAACGGCAGCGAACAGCGCCCTTTATCCGTCAGAGACAAGATCAATATCAACAAGCACAACGTCGATCATGTCCTGGCCGAGTTTTCGCCAACTTTGACGATCGCTGCGCATAATACATTGGCGGACAACGGGGAGGATATTTCAATCGAACTGCAGTTTCATCGCATGAAAGACTTTGAGCCGGAACAAGTAGCCAGGCAGATCCCTCAATTACGGGCGCTGCTGGCCATGCGCAATCTTCTACGCGACTTGAAGTCGAACCTGCTTGATAACATGGCCTTCCGTCTAGAATTGGAGCGCATCCTCCAGGATGATGCGCTCAGCAATGAACTGCGGGACGAATTGGCGGCCTTGGCGCCAAAAGACATTCGCTAA	MASYSFQNEVPKSRINIKLDLHTGGAQKKVELPLKLMVMGDYSNGSEQRPLSVRDKININKHNVDHVLAEFSPTLTIAAHNTLADNGEDISIELQFHRMKDFEPEQVARQIPQLRALLAMRNLLRDLKSNLLDNMAFRLELERILQDDALSNELRDELAALAPKDIR	PGPT0025915_940	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025915-impB-K11901	NA	NA
D1-36_02674	810			hypothetical protein	TTGCGCGCCGCCTCCCTCAATAGAATGGCGCGCCTTTCAATGCCTGAAGTAACGATCATGAGCCGGATCACCCGCGTATTGAATGACCGTACCAGCGTATTGTCGCTGCTCTGCCTGCTCCTGGCTGTCGATAGCGCGTGCGGCGAGCCCCGGGTCATTGAACTGCACATCCTCGACGCGCCCCCGTTGACACTGCTCAACGACCCCAGGGGCCACGGCATTGTCGGCGATGTCGCCGTGAAGGCGATCACCCGCGCCGGGTATGCGGTAAAGATCCATGTGCTTCCCTGGGCCAGGGCGCAAAAGCACGTCAGTGAGGAGCATGACTTCTTGATAGCGCCGCTGTCGCGCATTCCGGGGCGAGAAACCCGCTTCACCTGGATCTCGTCGATCATGCCCATGGAGCGCGCGTTCTTCAGCCTCGATCATAAGGTCGGCAGCTTTGCCCAAGCGAAAGAAACCTTTCGCAAGGTGGGCGTCGGCCTGGGTAGCGCGCAAGAGGAAATCCTGCGCACCGAGGGCTTCCGGGACGACCAGATCTACCCGTTGGCCATCGGCGACAACCCTGCCCAAATGCTCCTGATGGGGCGCATCGATGCCTGGTTCAACGGCGTGCCCGAAAGCCGATATATCTGGCCAAAAGTTTCCAAGCGCAAGCTGCTCATGAGTTCAGTGGGCAGCAGTGCCGACCTCTATCTCGCGTGCTCCAGGCAATGCTCGGCGAAACTCGTCGAGGATTTGCGCGGCGCGGTGGAAGCGTTGCGCAATGAAGGGGCGATCAAGCGTATCCATGATCTTTATGTCCCGTGA	MRAASLNRMARLSMPEVTIMSRITRVLNDRTSVLSLLCLLLAVDSACGEPRVIELHILDAPPLTLLNDPRGHGIVGDVAVKAITRAGYAVKIHVLPWARAQKHVSEEHDFLIAPLSRIPGRETRFTWISSIMPMERAFFSLDHKVGSFAQAKETFRKVGVGLGSAQEEILRTEGFRDDQIYPLAIGDNPAQMLLMGRIDAWFNGVPESRYIWPKVSKRKLLMSSVGSSADLYLACSRQCSAKLVEDLRGAVEALRNEGAIKRIHDLYVP	PGPT0020800_12067	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
D1-36_02675	1254	bepF		Efflux pump periplasmic linker BepF	ATGGAACATTCACTTTCTAAATTGCGCTTTCCCCTCGCACTGTTGGCGGTGCTGGTGATCAGCGCTTGCGGTAAGACTCCCGATACGGCAGCTTCGATGCCGGCGGCCAAAGTCAGCGTGGCCAAGGTGCTGGAGCAGCCCGTCAACGAATGGGATGAATTCACCGGGCGCCTCGAAGCACCGGAAACCGTCGAGATTCGCCCGCGGGTTTCGGGGCAGATCGATCAAGTTGCTTTCACCGAAGGCGCCCTGGTCAAGAAAGGCGACCTGTTGTTCCAGATCGACCCCCGCCCCTTCCAGGCGGAAGTGCGTCGTCTCGAAGCGCAACTGGCCCAGGCCCGCGCCACCGCGACCCGCAGCGAGAACGAGGCCCAACGTGGCGAACGCCTGCGTCTGAGCAATGCGATTTCCGCTGAACTGGCGGATTCGCGTACGACCGCTGCACAGGAAGCCCGCGCCGCCGTGGCAGGTATTCAAGCGCAGCTGGACCTGGCCAAGCTGAACCTCAGCTTCACCCGGGTTACCTCGCCCATCAACGGTCGTGTCAGCCGGGCGGAAATCACCGCCGGCAACCTGGTGACCGCCGACGTCACGCCGTTGACCAGTGTGGTGTCCACCGACAAGGTCTACGCCTACTTCGACGCCGACGAGCGTGTGTTCCTCAAGTACACCCAACTTGCCCGCCAAGGCCAGCGCGGCCAAGCCACGCCGGTCTACATGGGCCTGTCCAACGAAGACGGCAATCCACACCTGGGCCAGATGAACTTCGTCGACAACCAGGTCAACCCACAGACTGGCACGATCCGTGGTCGCGCGGTGTTCGACAATAAAGACGGCGCCTTCACGCCAGGCCTTTATGCCCGACTGAAGCTGGTGGGCAGCGGCACCTATTCCGCCGTGCTGATCAACGACGAAGCCGTAGGCACCGACCTGGGCAAGAAATTCGTCCTGGTGATGGATGGCGAGAACAAGCCGGCCTACCGCGCTGTCGAGCTGGGGCCAAAGATCGAAGGCCTGCGCATCGTGCGCAACGGCCTGAGCAAGGACGACACCATTATCGTCAAGGGGCTGCAACGGGCCCGTCCGGGTTCGCCGGTTACGCCTGAAACCGTGCCGATGGCCAGCGAGCAGACCCTCGCCGCCCTGGCACAACAACGCAAAGCGCTCGAAGCCAGCAATCTGCCCCAGGTCGCGCCCTCCAAGGCAGCGTCCGGAGCGGCAGGCAAACTGGCCTCTGCGTCCCCACGCGGTTAA	MEHSLSKLRFPLALLAVLVISACGKTPDTAASMPAAKVSVAKVLEQPVNEWDEFTGRLEAPETVEIRPRVSGQIDQVAFTEGALVKKGDLLFQIDPRPFQAEVRRLEAQLAQARATATRSENEAQRGERLRLSNAISAELADSRTTAAQEARAAVAGIQAQLDLAKLNLSFTRVTSPINGRVSRAEITAGNLVTADVTPLTSVVSTDKVYAYFDADERVFLKYTQLARQGQRGQATPVYMGLSNEDGNPHLGQMNFVDNQVNPQTGTIRGRAVFDNKDGAFTPGLYARLKLVGSGTYSAVLINDEAVGTDLGKKFVLVMDGENKPAYRAVELGPKIEGLRIVRNGLSKDDTIIVKGLQRARPGSPVTPETVPMASEQTLAALAQQRKALEASNLPQVAPSKAASGAAGKLASASPRG	PGPT0028870_43	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexEF-OprN,PGPT0028870-mexE-K18298	NA	NA
D1-36_02676	3180	oqxB7		multidrug efflux RND transporter permease subunit OqxB7	ATGAAATTTTCCCAGTTCTTCATTTCGCGGCCGATCTTCGCAGCGGTGCTCTCGCTGTTGATTCTGATCGCCGGCGCTATCTCGCTGTTCCAACTGCCGATCAGCGAATATCCGGAAGTCGTGCCGCCTACCGTAGTGGTGCGCGCCAACTTCCCGGGCGCCAACCCCAAGGTCATCGGCGAAACCGTCGCCGCGCCCCTGGAACAAGCCATCACCGGCGTCGAGAACATGCTGTACATGTCCTCGCAATCCACCGCCGACGGCAAGATCACCCTGACCATCACCTTCGCTCTGGGCACCGACCTGGATAACGCGCAGGTGCAGGTGCAGAACCGTGTCACCCGCACCGAGCCCAAGCTGCCGGAGGAAGTGACCCGCATCGGCATCACGGTGGACAAGGCGTCGCCCGACCTGACGATGGTCGTGCACTTGACCTCGCCGGACAAACGCTACGACATGCTCTACCTGTCCAACTACGCCTTGCTCAACATCAAGGACGAGTTGGCGCGCCTGGGTGGCGTGGGTGATGTGCAGCTGTTCGGCATGGGTGACTATTCCCTGCGGGTCTGGCTGGACCCGAACAAGACCGCTTCGCGCAACCTGACCGCCACCGACGTGGTGACCGCGATTCGTGAGCAGAACCGCCAGGTCGCTGCCGGTGCCCTGGGTGCGCCGCCGGCACCGAATGCCCAGGCCTTCCAGCTCTCGATCAATACCCAAGGCCGCCTGGTCAATGAGGAAGAGTTCGAGAACATCATCATTCGTTCCGGCGCCAACGGTGAAATCACTCGCCTGAAAGACATCGCTCGAGTGGAGCTGGGCTCCAGCCAATACGCCCTGCGCTCGCTGCTGGACAATCAGCCGGCGGTGGCAATCCCGATCTTCCAGCGTCCTGGCTCCAATGCCATCCAGATCTCCAACGATGTTCGGGAGAAAATGGACGAGCTGAAGAAAGGCTTCCCGGCCGGCATGGACTACAGCATTGTCTATGACCCGACGATCTTCGTCCGTGGCTCCATCGAAGCGGTGGTGCATACCCTGTTCGAAGCGCTGATCCTCGTGGTGCTGGTGGTCATCCTGTTCCTACAGACCTGGCGCGCCTCGATCATCCCATTGGTGGCCGTACCGGTTTCGCTGATCGGTACCTTCGCGGTCATGCACCTGTTCGGATTCTCCCTCAACGCCCTTTCGCTGTTCGGCCTGGTGTTGGCCATCGGTATCGTGGTGGACGACGCCATCGTGGTGGTGGAGAACGTCGAGCGGAACATCGAACTGGGCCTCACCCCCGTGGAGGCGACAAAGCGCGCCATGGGCGAAGTGACCGGCCCGATCATCGCCACCGCCCTGGTGCTCTGCGCGGTCTTCGTTCCTGCGGCGTTCATCAGCGGCCTGACCGGTCAGTTCTATAAGCAGTTCGCCCTGACCATTGCGATCTCCACGGTGATCTCGGCGATCAACTCGTTGACCCTGTCGCCGGCCCTGGCCGCAGTTTTGCTCAAGGGGCATGACGCACCCAAGGACCGTTTCTCCAGATTCCTGGACCGGGTCTTTGGTGGCTGGCTGTTCCGTCCGTTCAACCGCTTCTTCGAACGTGCCAGCCATGGCTACGTGGGTACTGTCGCTCGGGTGATCCGCAGCAGCGGGATTGCCCTGATCGTCTACGCAGGCTTGATGGTGTTGACCTTCTTCGGCTTCTCCAACACGCCGACCGGTTTCGTGCCTGGCCAGGACAAGCAATACCTGGTGGCCTTCGCCCAACTGCCGGACGCCGCGAGCCTGGACCGCACCGAAGATGTGATCAAGCGCATGTCCGACCTGGCCCTCAAGCAGCCTGGCGTGGAAAGCGCCGTGGCCTTCCCTGGCCTGTCGATCAACGGCTTCACCAACAGCCCGAACGCCGGCATCGTGTTCGTGACCCTCAAGCCTTTCGACGAGCGCAAGGACCCGAGCATGTCGGCCGGCGCCATCGCCGGTGCCTTGAACGGCCAGTACTCGGAAATCCAGGAAGCGTACATGGCGATCTTCCCGCCGCCGCCGGTGCAAGGCCTGGGCACGATCGGTGGTTTCCGCCTGCAAATCGAAGACCGGGGCAACCTGGGCTACGACGAGCTGTACAAAGAAACCATGAACATCATCGCCAAGAGCCACAACGTGCCGGAACTGGCCGGATTGTTCACCAGCTACACCGTGAACGTACCCCAGGTCGATGCCGCCATCGACCGTGAAAAGGCCAAGACCCACGGCGTGGCCGTCAGCGACATCTTCGACACCCTCCAGATCTACCTGGGTTCGCTGTATGCCAACGACTTCAACCGTTTCGGCCGCACCTACCAGGTCAATGTCCAGGCCGAGCAGCAGTTCCGTCTCGAATCGGACCAGATCGGCCAACTGAAGGTGCGCAACAACCGTGGCGAGATGATCCCGCTGGCGACCTTCATCAAGGTCAGCGACACCTCGGGGCCTGACCGCGTGATGCACTACAACGGCTTCATCACCGCTGAAATCAACGGCGCCGCCGCCCCTGGCTACAGCTCCGGCCAGGCCGAGAAAGCCATCGAGAAACTGCTCAATGACGAACTGCCCAATGGCATGACCTACGAGTGGACCGACCTGACGTACCAGCAGATCCTCTCGGGCAACACTGCGCTGTTCGTGTTCCCGCTCTGCGTATTGCTGGCGTTCCTGGTGCTCGCCGCGCAATACGAAAGTTGGAGCCTGCCATTGGCGGTAATCCTGATCGTACCGATGACGCTGCTATCGGCAATTACCGGGGTAATTCTGTCCGGTGGCGACAACAACATCTTCACCCAGATTGGCTTGATCGTATTGGTAGGACTTGCCTGTAAGAACGCGATTCTGATCGTCGAGTTCGCCAAGGATAAACAGCTCGAAGGCATGAGCCCGCTGGCGGCGGTCCTGGAAGCGTGCCGCCTGCGTCTGCGGCCGATCCTGATGACCTCCTTCGCCTTCATCATGGGCGTGGTTCCCCTGGTGTTCTCCAGCGGCGCCGGTGCGGAAATGCGTCACGCCATGGGTGTGGCGGTGTTCTCGGGCATGCTCGGCGTGACCTTCTTCGGCCTGCTGCTCACCCCGGTGTTCTACGTACTGATCCGTAATTTCGTCGAGCGCAGCGAGGCCCGCAAAGCGGCCCGGGCCTTGAAACTGGAGGCGCAACAATGA	MKFSQFFISRPIFAAVLSLLILIAGAISLFQLPISEYPEVVPPTVVVRANFPGANPKVIGETVAAPLEQAITGVENMLYMSSQSTADGKITLTITFALGTDLDNAQVQVQNRVTRTEPKLPEEVTRIGITVDKASPDLTMVVHLTSPDKRYDMLYLSNYALLNIKDELARLGGVGDVQLFGMGDYSLRVWLDPNKTASRNLTATDVVTAIREQNRQVAAGALGAPPAPNAQAFQLSINTQGRLVNEEEFENIIIRSGANGEITRLKDIARVELGSSQYALRSLLDNQPAVAIPIFQRPGSNAIQISNDVREKMDELKKGFPAGMDYSIVYDPTIFVRGSIEAVVHTLFEALILVVLVVILFLQTWRASIIPLVAVPVSLIGTFAVMHLFGFSLNALSLFGLVLAIGIVVDDAIVVVENVERNIELGLTPVEATKRAMGEVTGPIIATALVLCAVFVPAAFISGLTGQFYKQFALTIAISTVISAINSLTLSPALAAVLLKGHDAPKDRFSRFLDRVFGGWLFRPFNRFFERASHGYVGTVARVIRSSGIALIVYAGLMVLTFFGFSNTPTGFVPGQDKQYLVAFAQLPDAASLDRTEDVIKRMSDLALKQPGVESAVAFPGLSINGFTNSPNAGIVFVTLKPFDERKDPSMSAGAIAGALNGQYSEIQEAYMAIFPPPPVQGLGTIGGFRLQIEDRGNLGYDELYKETMNIIAKSHNVPELAGLFTSYTVNVPQVDAAIDREKAKTHGVAVSDIFDTLQIYLGSLYANDFNRFGRTYQVNVQAEQQFRLESDQIGQLKVRNNRGEMIPLATFIKVSDTSGPDRVMHYNGFITAEINGAAAPGYSSGQAEKAIEKLLNDELPNGMTYEWTDLTYQQILSGNTALFVFPLCVLLAFLVLAAQYESWSLPLAVILIVPMTLLSAITGVILSGGDNNIFTQIGLIVLVGLACKNAILIVEFAKDKQLEGMSPLAAVLEACRLRLRPILMTSFAFIMGVVPLVFSSGAGAEMRHAMGVAVFSGMLGVTFFGLLLTPVFYVLIRNFVERSEARKAARALKLEAQQ	PGPT0028875_193	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexEF-OprN,PGPT0028875-mexF-K18299	NA	NA
D1-36_02677	1425	ttgI		Toluene efflux pump outer membrane protein TtgI	ATGAGTTTGAAAGCGTTCCTGCCGAGCCTGCTGGTGCTTGCACTGAGTGCCTGCGCCGTAGGCCCGGACTACAAGGCACCGCAAACGGAGGCGGCGAATATCACCACCGCCACCGACGGCGCCGCCGGCCAGAAGAACTTCGACCGCGCCCGCTTCGAAGGCGTCTGGTGGCAGCAGTTCGACGATCCGACCCTCAACTCGCTGGTGACGCGTTCTCTGGAAGGCAACCGGGAATTGCGCGTGGCCTTCGCCCGCCTGCGGGCTGCCCGGGCGATTCGCGACGACGCCAGCAATGACGCCATGCCGACCATCACCAGCCGCGCCAGCAGCGAACTGGGCAAAGGCCAGAACCCGATGGGGCAGACGGACGATCGGGTCAACTCCGAGCGTTATGACCTGGGCCTGGACATGGCCTGGGAGCTGGACCTGTTCGGACGCATCCAGCGCAACCTGGAAGCGACCGATGCCGACCAGCAGGCCGTCGAAGCCGATCTCTACCAACTGCAGGTGACCATAATCGCCGAGCTGGTGGACGCCTACGGCCAACTGCGTGGCGCGCAGCTTCGGGAGAAAATCGCCCTGGCCAACCTGGAGAACCAGCAGGCGTCCCGCAAGATCACCGAAAGCCTGCGTGATGCCGGCGTCGGCGATCAGCTCGACGTGGTGCGTGCCGACGCTCGCTTGGCCGCGGTGGAAGCCAGCGTGCCGCAACTGCAGGCCGAACAGGCGCGTCAGCGCAACCGCATTGCGACATTGCTGGGCGAGCGCCCGGACAAGCTGAGCGTGGACTTGAGTCCTAAACAGCTGCCAGCCATTGCCAAGGCTCTGCCGATTGGCGATCCGGGCCAATTGTTGCAACGCCGTCCCGATATCCTCAGCGCCGAGCGTCAACTGGCAGCCGCCACGGCGCGCATCGGCGTGGCCAAGGCCGACCTGTTCCCCAGGGTCAGCCTGAGCGGTTTCCTCGGGTTTACCGCCGGACGTGGTTCGCAGATCGGCTCCTCGGCCGCCAACGCCTGGGCGCTGGGCCCGAGCATTACCTGGGCCGCTTTTGACCTGGGCAGCGTGCGGGCTCGCTTACGCGGCGCCAGCGCCGACGCCGACGGAGCACTGGCGAACTATGAGCAACAAGTGTTGCTGGCCTTGGAAGAGTCGGAAAACGCCTTCAGTGATTACGGCAAACGCCAACAGCGCCTCATCTCGCTGATCCGCCAGAGCGAATCGAGCCGCGCGGCCGCCGACCTGGCCGAGATCCGTTATCGCGAAGGCACCGAGGACTTCCTCGTGCTGCTCGACGCCCAACGTGAACGCCTGGCGGCCGAAGACAGTCAGGCCCAAGCCGAAGTGGACCTGTATCGCGGCATTGTCGCGATCTACAAGGCCCTGGGCGGCGGCTGGCAACCGGAAACCGTCGCCAGCAACTGA	MSLKAFLPSLLVLALSACAVGPDYKAPQTEAANITTATDGAAGQKNFDRARFEGVWWQQFDDPTLNSLVTRSLEGNRELRVAFARLRAARAIRDDASNDAMPTITSRASSELGKGQNPMGQTDDRVNSERYDLGLDMAWELDLFGRIQRNLEATDADQQAVEADLYQLQVTIIAELVDAYGQLRGAQLREKIALANLENQQASRKITESLRDAGVGDQLDVVRADARLAAVEASVPQLQAEQARQRNRIATLLGERPDKLSVDLSPKQLPAIAKALPIGDPGQLLQRRPDILSAERQLAAATARIGVAKADLFPRVSLSGFLGFTAGRGSQIGSSAANAWALGPSITWAAFDLGSVRARLRGASADADGALANYEQQVLLALEESENAFSDYGKRQQRLISLIRQSESSRAAADLAEIRYREGTEDFLVLLDAQRERLAAEDSQAQAEVDLYRGIVAIYKALGGGWQPETVASN	PGPT0028880_290	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexEF-OprN,PGPT0028880-oprN-K18300	NA	NA
D1-36_02678	1056	bepA_1		Beta-barrel assembly-enhancing protease	ATGTCTTCGTCTCGCCGCTACCTGCTGTTCACGCTTGCGGTTGTCTTGGCAATCGGTCTCGTCGCGATATGGCTGCGCAATGCCACACCGCAGATTCCCGAGGCCATCAAGCGTGGTTACAGCGAAGCGTTGGAAAGCGCCCGCAACGGACAGCCAGGAGCGGCGCGGATGCTGTACCAGCAACTGGGACGTCCGGACCTCTCTCCCAAGCGCCGGGTATGGCTGCACGGCGAACTGCCCAACTATCCAAGCCCCCAAGCGTTGAAACTGGCGCAGGCGGATTTGCACAGCGAATCGCCGCAGGTCCGCCGCGCGGCGATCGGCAGCATCGTCGGGCTGGTGCCGAATGCCCAGCGCAGCCTGCTGCTCGGCCCGCTCCTGGATGAAAACGACCCGGATGTCCGGTTCGCCGCCGTAAATGCATTGCTGGGGCTGTCACCCGATGAACTTGGGCTGTATTTCGGTGCGATGCAGATCGCCGTCGATACCTGGAAGCAGTCGTTGAACGACAGCCCACCCTCCCCCGAATCCCTCTTTCAGCTTGCCCGGCTGTACAGGCATGACGCCGAACTGGAAAAAGCCCAACAGGCATTGGAGCATCTTCTGCGCCTGCAACCCGACAACCTGCCGGCGCTGGTCATGCAGGTCGATGTGCTGGATAAACAAGGCCAGGGAGAAGCCGCCCGCCAGTTGCTCGCTCGGCAGTTGCAAGCGCAGCCGGCATCGGCTTATCTGCAACATGCGCTGGGCATGTGGCTGTTGCAGCACGGCCAGAGTGAATACGCGGTGCTAGGCTTGGCGAAAGCGGTGGAATTGGAGCCTGATAACCGGCAATACCGTTTTGATCTGGCGACTACGCTGCATGAAGAGCAGGAAGTGGAAGCGGCGCAGAAACAGTTGCAGGAAATCGTCCAGCGCTACCCCGCCGACCGCAACGCCCGGGTGTTGCTGATCAACTATTGGAAGGAGACCGGTCAGTTGCAGCATGTCCAGGTGCTGTTGGCCCAGTTGGAACAACTGAACCCCGACGACCCGGCGATACAACAAGGTTTATAG	MSSSRRYLLFTLAVVLAIGLVAIWLRNATPQIPEAIKRGYSEALESARNGQPGAARMLYQQLGRPDLSPKRRVWLHGELPNYPSPQALKLAQADLHSESPQVRRAAIGSIVGLVPNAQRSLLLGPLLDENDPDVRFAAVNALLGLSPDELGLYFGAMQIAVDTWKQSLNDSPPSPESLFQLARLYRHDAELEKAQQALEHLLRLQPDNLPALVMQVDVLDKQGQGEAARQLLARQLQAQPASAYLQHALGMWLLQHGQSEYAVLGLAKAVELEPDNRQYRFDLATTLHEEQEVEAAQKQLQEIVQRYPADRNARVLLINYWKETGQLQHVQVLLAQLEQLNPDDPAIQQGL				NA	NA	NA	NA	NA
D1-36_02679	1503	kaiC		Circadian clock protein kinase KaiC	TTGATTACATCTAACGAGTTGATCAGCGCAAAAGCCGCCACCGGTATCGAAGGGCTGGACGACGTCCTTTCCGGTGGTTTGTCCCGAGGCCATGTGTTCCTACTGGAGGGAGAACCGGGCACTGGCAAAACCACGGTCGCGTTGCACTTCCTGCTAGCCGGCGCAAAGGCCGGCGAGCGCTCGTTGTACATCACGCTATCGGAAACCGAGCGTGAACTGCGCCAGGGCGCAGCCTCCCATGGCTGGACCCTGGATGAAAACATCCATATCTTCGAATTGACCCCGCCCGAGAGCCTGCTCAATGCCGAGCACCAGCAAAGCCTGCTGTATTCCTCGGACCTGGAGCTGGGCGAAGCGACCCGGCAGATCTTCGAAGTGGTCGAGCGCGTCAAGCCGACCCGCGTCGTGCTGGACAGTCTCTCGGAGATCCGCCTCCTTGCGCAGAGTTCCCTGCGCTATCGCCGGCAGATCCTGGCGATCAAGCACTATTTCGTGCGCTACGACGCTACGGTAGTGCTCTTGGATGACCTGACCACCGAGTCCCTGGACAAGACCGTACACAGTGTCGCCCACGGCGTTATCCGCCTTGAAGAACTGACCCCCAGCTACGGTGCCGAGCGGCGTCGGCTGCGGGTGGTCAAGTACCGTGGGCAGAAATACCGTGGCGGCTACCACGACTTCACCATCATGGGCGATGGCGTGCATGTATTCCCTCGCCTGGTGGCCGCCGAACACCGTGGCCAGTACGTGCGCCAGCAACTGTCCAGTGGCATCAAGGAAATGGACGCCCTGCTGGGGGGCGGCATCGAGACCGGCTCTAGCACGCTGATTCTTGGCCCGGCGGGTACCGGCAAATCCTTGATTTCCTTGATTTTCGCGGCGGCAGCGGTGCATCGCGGCGAAAAAGCCGCACTGTTCATTTTCGATGAAGAGCTGGGGCTGCTGTTCGAGCGCATGAAGCACATCGGCATCGACCTGCTGGAACTGCAAAATACCGGCAATCTGCTGATCGAACAGGTCGATGCGGCCGAGCTTTCGCCCGGCGAGTTTTCCCACCGGGTACGCCGTTGCGTCAATGAAGGCGACATCAAGACCGTGGTCATCGACAGCATCAATGGCTATCAGGCCGCCATGCCGGAAGAAAACGCCTTGGTTCTGCACATGCACGAGCTGTTGCTCTACCTCAACCGCAAAGGCGCGGCGACGTTCATGACCGTCGCCCAACACGGCCTGGTGGGGGACATGCAAGCGCCGGTGGACATCACCTACCTGGCCGACACCGTCATCTTATTGCGTTATTTCGAGGCGCTGGGCAAGGTTCGCCGGGCCATTTCCATCATCAAGAAACGCACCGGCAGCCATGAATCCACCATCCGCGAATACCGCATCAACAAGCAGGGCATGACCATCGGTGAACCGCTGGAAGCGTTCCAAGGCGTATTGCGCGGAGTGCCAACCTATATGGGAGCGGGACACCCGTTGCTTGAGGATGATCCCCAGTGA	MITSNELISAKAATGIEGLDDVLSGGLSRGHVFLLEGEPGTGKTTVALHFLLAGAKAGERSLYITLSETERELRQGAASHGWTLDENIHIFELTPPESLLNAEHQQSLLYSSDLELGEATRQIFEVVERVKPTRVVLDSLSEIRLLAQSSLRYRRQILAIKHYFVRYDATVVLLDDLTTESLDKTVHSVAHGVIRLEELTPSYGAERRRLRVVKYRGQKYRGGYHDFTIMGDGVHVFPRLVAAEHRGQYVRQQLSSGIKEMDALLGGGIETGSSTLILGPAGTGKSLISLIFAAAAVHRGEKAALFIFDEELGLLFERMKHIGIDLLELQNTGNLLIEQVDAAELSPGEFSHRVRRCVNEGDIKTVVIDSINGYQAAMPEENALVLHMHELLLYLNRKGAATFMTVAQHGLVGDMQAPVDITYLADTVILLRYFEALGKVRRAISIIKKRTGSHESTIREYRINKQGMTIGEPLEAFQGVLRGVPTYMGAGHPLLEDDPQ	PGPT0030523_530	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-ENVIRONMENTAL_RYTHMICS_SIGNALLING	PUTATIVE-CLOCK-ASSOCIATED_HISTIDINE_KINASE,PGPT0030523-kaiC-K08482
D1-36_02680	1671	rcsC_15		Sensor histidine kinase RcsC	GTGACGTCGGGCGAGCCACTGTCCGAGCGGGCGCTGATTCTCGCGCCCCTGGGACGGGACAGCCAGATTGCCCTGATGATTCTCAACGAGGCCGGCTTTAATGGCCTTGTATGCAGTCATCTGGGTCATTTGTGTGAAGAGTTGGAACACGGGGCGGGCCTGCTGGTGATTTCCTCGGAAGCGCTGGTATGGCCCGACCTGGAGAACCTGTTCCAATACATCGAGCAGCAACCGGCATGGTCCGACCTGCCCATCGTCCTGCTGACGCACCACGGGGGGCCGGAGCACAACCCAGTCGCACGTATCGGCACACAACTGGGCAATGTGACCTTCCTGGAGCGGCCGTTCCACCCGGTGACGCTCGTCAGCCTGGTGACCACCGCCCTGCGCGGCCGCCGAAGGCAATACGAAGCCCGGGACCGCCTGATCGACCTGAGCACCAGCGAACAACGCCTACAGAACACTTTGGAAACGCTGGAACAGCAAGTCGAGGAGCGTACCGCCCAACTGCGTCACAACGAGGAAGCCCTGCGCCAATCGCAGAAAATGGAAGCGGTCGGCCAGCTCACCGGCGGCATCGCCCACGACTTCAACAACATGCTCACCGGCATCATCGGCAGCCTCGAGCTGCTGCGTCGACGCCTGGCGCGAGGCCGCACCGAAGATCTCGACAGCCTGATCGACCTGGGCGTGACCTCGGCTAATCGCGCCGCGGGCCTGACCCACCGGCTGCTGGCCTTCTCCCGCCGCCAGTCACTGGATTCCAAGGCCGTGCAGATGAATACCCTGGTGCTATCAATGGGCGAACTGCTTCAGCGCAGCCTCAACGAAAGCATCGCCCTGGAAATGCGCCTCGACGAACACCTATGGATCGCCGAAGCCGACCCCAACCAACTGGAGAGCGCCCTGCTCAACCTGGTCCTCAACGCCCGCGATGCCATGCCCGGCGGCGGCAAGCTGGTGGTGCAGACCTTCAATAAATACCTGGACACCGGTTTTACCGACGCCTACAGCAACCTCGAGCCCGGCGACTATGTGGTGTTGAGCGTTCAGGACACCGGTTGCGGCATGCCCGAAGCGGTGATGCATCGCGCGTTCGACCCCTTCTTCACCACCAAGCCCATCGGCCAGGGCACGGGCCTTGGGCTTTCGATGATCTATGGGTTCAGCAAGCAGTCACGCGGACACGTGACCATCGACAGCGAGGTTGGCAACGGCACCACCGTGAATCTCTACCTGCCGCGCTTCATCGGCGAAGAAATGCACGAACCGCAAGTCGTCGTCCCACAGGCGCCTTATGCGCAAGATGGCGAAACCGTATTGATCGTTGAAGACGACCCAGCGGTGCGGGTCCTGGTCAGCGCGGTGCTCAGCGAATTGGGCTACGCCTTCGTCGAGGCCGGCGACGCCAACGGCGCGGTGCCGATCCTGCAATCGAACCAGCGCATCGACCTGCTGATCAGCGACGTGGGGCTGCCCGGCATGAACGGAAGACAACTGGCCGAAATAGGCCGCCAGATCCGCCCTGACCTCAAGGTATTGTTCATCACTGGCTACGCTGAACACGCGGCGGTGCGCGGTGGTTTTCTTGACCCGGGCATGCAGATGATCACCAAGCCGTTTACCTTTGATTTGTTGACGGCGAAGGTGCGGGAGATGATCAAGGTTTGA	MTSGEPLSERALILAPLGRDSQIALMILNEAGFNGLVCSHLGHLCEELEHGAGLLVISSEALVWPDLENLFQYIEQQPAWSDLPIVLLTHHGGPEHNPVARIGTQLGNVTFLERPFHPVTLVSLVTTALRGRRRQYEARDRLIDLSTSEQRLQNTLETLEQQVEERTAQLRHNEEALRQSQKMEAVGQLTGGIAHDFNNMLTGIIGSLELLRRRLARGRTEDLDSLIDLGVTSANRAAGLTHRLLAFSRRQSLDSKAVQMNTLVLSMGELLQRSLNESIALEMRLDEHLWIAEADPNQLESALLNLVLNARDAMPGGGKLVVQTFNKYLDTGFTDAYSNLEPGDYVVLSVQDTGCGMPEAVMHRAFDPFFTTKPIGQGTGLGLSMIYGFSKQSRGHVTIDSEVGNGTTVNLYLPRFIGEEMHEPQVVVPQAPYAQDGETVLIVEDDPAVRVLVSAVLSELGYAFVEAGDANGAVPILQSNQRIDLLISDVGLPGMNGRQLAEIGRQIRPDLKVLFITGYAEHAAVRGGFLDPGMQMITKPFTFDLLTAKVREMIKV				NA	NA	NA	NA	NA
D1-36_02681	378	cpdR_1		Response regulator receiver protein CpdR	ATGAGTGAAGATGCGCAAGACGTTGTATTGATCGTCGAGGATGACCCTTCGATCCTGATGGTGCTGTCGGCCTATCTTTCCGGGGAGGGGTATCGGGTGCTGCAGGCTGAAAACGGCGAGCAGGCGTTCGAGATCCTGGCGAGCAAGCCTCATCTGGACATGATGATTACCGACTTCCGTCTGCCCGGGGGTATTTCCGGGGTGCAGATCGCTGAGCCGGCGGTGAGGTTGCGTCCGGACCTGAAGGTTATTTTCATCAGTGGCTACGCCCAGGAAGTGCGCGAGACGGATAGCCCCATTACCCGCAAGGCGCCGATTTTGGATAAGCCGTTTGATTTGGATGTGTTGCAGGGGATTATGCAGGGGATGTTGTCTTAG	MSEDAQDVVLIVEDDPSILMVLSAYLSGEGYRVLQAENGEQAFEILASKPHLDMMITDFRLPGGISGVQIAEPAVRLRPDLKVIFISGYAQEVRETDSPITRKAPILDKPFDLDVLQGIMQGMLS				NA	NA	NA	NA	NA
D1-36_02682	1266	rcsC_16		Sensor histidine kinase RcsC	ATGCCAAGAGATATTCAAGCCAAACTGCTGATCGTCGACGATCTGCCTGAGAATCTGTTGGCCCTGGAAGCGCTGATCCAGCGCGATGACCGCGAGGTGTTCAAGGCCTTGTCGGCGGACGAAGCGCTGTCGCTGCTTTTGCAACATGATTTTGCCTTGGCGATCATCGATGTGCAGATGCCGGGCATGAACGGTTTCGAACTGGCCGAGTTGATGCGCGGCACGGAAAAGACCCGCAGTATCCCGATCATCTTTGTCAGCGCGGCCGGCCGGGAGCGCAACTACGCGTTCACCGGCTACGAAAACGGCGCGGTGGACTTCCTGCACAAGCCGCTGGATACCCATGCGGTCAAAAGCAAGGTCAATGTGTTCGTCGAACTTTATCGCCAGCGAAAGGCGATGAAGGAGCAAGTGCTTGCCCTGGAGCAGAGCCGCCGGGAGCAAGAGCTGTTGCTTGAGCAATTGCAAGCCACTCGCGGCGAGCTGGAGCAGGCCGTGCGCATGCGCGATGACTTCATGTCGATCGTCGCCCACGAAGTCCGCACGCCACTCAACGGCCTGATCCTGGAAACGCAGTTGCGTAAAATGCACTTGGCGCGGGACAACGCCGCCGCCTTCACCCTGGATAAAGTGAAGGCGATGGTCGAGCGCGACGAACGCCAGATAAAGAGCTTGATCCGTTTGATCGAGGACATGCTGGACGTATCGCGGATCCGCACCGGCAAGTTGTCCATCCGTCCGACCCGTTTCAATCTGACGGCGCTGGTTCAAAACCTGCTGCACAACTTCCAACCACAGATCAGTGCCGCCGAATGCACCGTGACTTGTACCGCCGAACCTTCGGTGGAAGGACATTGGGATGAGTTTCGTATCGAGCAGGTGGTTTCGAACCTGCTGACGAACGCGTTGCGCTATGGCTGCAAGAGCCCGATCGAGGTGCGTGTCTACCAGACGTCGGAGTATGCCTGTATCGAAGTCCAGGACCACGGGATCGGGATCAGCGAAGAGAACCAGAAGCGTATTTTCCAGCAATTCGAACGGGTGTCGTCAAAGGCCGCCGCCGCCGGCCTGGGCCTTGGGCTGTTCATTTCCGAGCAGATCGTCACCGCCCACGGCGGCATCATCACGGTCAACAGCCGCCTCAACGAAGGGGCGTTGTTTCGCGTTTGTCTGCCTTTTCAGAAAACTGGCGAACGGACGCAACCTCTGAGCGACCCCAGGGTCGTATCAGCAGCTATTGATTCAACAAAGGCTTCTCATGAGTGA	MPRDIQAKLLIVDDLPENLLALEALIQRDDREVFKALSADEALSLLLQHDFALAIIDVQMPGMNGFELAELMRGTEKTRSIPIIFVSAAGRERNYAFTGYENGAVDFLHKPLDTHAVKSKVNVFVELYRQRKAMKEQVLALEQSRREQELLLEQLQATRGELEQAVRMRDDFMSIVAHEVRTPLNGLILETQLRKMHLARDNAAAFTLDKVKAMVERDERQIKSLIRLIEDMLDVSRIRTGKLSIRPTRFNLTALVQNLLHNFQPQISAAECTVTCTAEPSVEGHWDEFRIEQVVSNLLTNALRYGCKSPIEVRVYQTSEYACIEVQDHGIGISEENQKRIFQQFERVSSKAAAAGLGLGLFISEQIVTAHGGIITVNSRLNEGALFRVCLPFQKTGERTQPLSDPRVVSAAIDSTKASHE				NA	NA	NA	NA	NA
D1-36_02683	588	cheB_4	COG2201	Protein-glutamate methylesterase/protein-glutamine glutaminase	ATGAATCCACTGACGGACAGATCCAGCCACTTGATCGAAGCAGTCGTCGTCGGCGCATCCGCCGGCGGCGTCGAAGCGTTGCTCAAGATTTTCAGCCACTTGCGCAAAGGCTTCAGCCTGCCTGTGCTGGTGGTGTTGCATTTGCCCGATGAGCGGGACAGTCAGTTAGCCCAGGTATTGCGTCATCGCCTGGCGATACCCGTTGAAGAAGCCCGCGACAAGCAAGACATTCTTCCGGGCACCTTGTACGTTGCAACCCCTGGTTATCACCTCTCGATCGAGGCCGACCGTAGCCTGTCGCTGAGCCTCGAAGAGCCGGTTCACCATTCGCGGCCGTCGATCGACGTGCTGTTCGAGTCAGCCGCCGATGTCTATGGCCCTCGTCTGCTGGCGGTGGTATTGACCGGCGCCAACAGCGATGGCGCCCTAGGCTTGGCCAGGGTCAAGGCGCTGGGCGGCATCACGGTCGTCCAGGACCCGAAGGAGGCGCAGGTTTGCACCATGCCTGAAGCGGCCCTTAGCTTGCACGAGCCTGACCATATCCTAACTTTGCAGGGCATCGGCCAATTGCTGGCCGGGCTGGAATGA	MNPLTDRSSHLIEAVVVGASAGGVEALLKIFSHLRKGFSLPVLVVLHLPDERDSQLAQVLRHRLAIPVEEARDKQDILPGTLYVATPGYHLSIEADRSLSLSLEEPVHHSRPSIDVLFESAADVYGPRLLAVVLTGANSDGALGLARVKALGGITVVQDPKEAQVCTMPEAALSLHEPDHILTLQGIGQLLAGLE	PGPT0015650_4173	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015650-cheB|chpB|wspF-K03412	NA	NA
D1-36_02684	816	cheR_1		Chemotaxis protein methyltransferase	GTGGAACGAAACACAGACATTGAGCTTCGTTTGTTGATCGAAGCGATCTACTTGAAGTACAGCTACGACTTTCGCGACTACTCCGGCGCTTCCATCAAGCGCCGGGTGCTGCATGCGTTGAACCAATTCGAATGCAAGACCATATCGGCCTTGCAGGAACGTGTGTTGCACGACCCTGGCGCATTCATGCAACTGCTGCAGTTGCTGACGATCCCTGTCAGTGAGATGTTTCGCGATCCTGCGCATTTCCTTGCCATCCGCGAGGAAGTGGTGCCGCTGCTCAAGACCTACCCGTCGATCAAGATCTGGATCGCCGGTTGCAGCACAGGGGAGGAGGTCTATTCCATGGCCATCCTGCTAAGAGAAGAGGGGTTGCTGGATCGTACGTTCATTTACGCCACGGACATCAACCCGCGCTCCCTGGAAAAAGCCAAGCAGGGCATCTTTTCCCTGGAAAATGTCCGGGCCTACACCCAGAATTACCAGCTCGCCGGCGGTAAGCGTTCGTTTGCCGACTACTATACGGCCGCCTACGATTACGCGATGTTCGACAAGACCTTGTGCAAGCATGTGACCTTTGCCGACCACAGCCTGGCAACCGATAGCGTATTTTCAGAAACCCAATTAGTTTCATGTCGTAACGTATTGATCTATTTCAATAAAAAGCTGCAAGATCGCGCTTTCGGGTTGTTTCATGAGTCCCTTTGCCACCGTGGGTTCCTGGTGTTGGGGAGCAAGGAGACGCTGGATTTTTCGGCGTTCAGTGCGCAGTTCGAACCGCTGGTCAAACAGGAACGGATCTATCGCAAGTTATGA	MERNTDIELRLLIEAIYLKYSYDFRDYSGASIKRRVLHALNQFECKTISALQERVLHDPGAFMQLLQLLTIPVSEMFRDPAHFLAIREEVVPLLKTYPSIKIWIAGCSTGEEVYSMAILLREEGLLDRTFIYATDINPRSLEKAKQGIFSLENVRAYTQNYQLAGGKRSFADYYTAAYDYAMFDKTLCKHVTFADHSLATDSVFSETQLVSCRNVLIYFNKKLQDRAFGLFHESLCHRGFLVLGSKETLDFSAFSAQFEPLVKQERIYRKL	PGPT0015670_3511	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015670-cheR|pilK-K00575	NA	NA
D1-36_02685	3480	rcsC_17		Sensor histidine kinase RcsC	ATGACTCCTTCGTCTTCGGTCGACGAACAAAGTTTTCGCAAGCTTCTGAGCCGTAACATCAGCCTCCCCTTGGGTATCGGTGCGCTCAGCGCGGTGTTTTTCATCGTGCTGATCACCTACCTTCTCTCGGTGATCCAATGGGTCGGGCACACCGACCGGGTGATCAATAACGCCAACGAAGCGCTGAAGCTGAGCGTTGACCTGGAAACAGGCATGCGCGGGTTCCTGCTGAGTGGCGACGAGCACTTCCTCGACCCCTATGAAGTGGCCAAGCCCCGGATTGCGGTGGCACTGGACACATTGTTGGAACTGACAGCCGATAATCCGGTACAGACCGACCGCTTGCGCCGGATCGAGGCACTCCAGGTGGAATGGGCCAATTACGCCCAAGGCATGATCGATCTTCATCGCAGCGGCGGCGACTATCGCGGTGCGCTCAAGGCCGGGCGGGGCAAGCGGTTGACCGACGAAATACGCAAGACCTTCGAGGATGTCGTCGAGACCGAGCAACAACTGCGCGCCGAACGTAACGAACAGGTGCGCACCACCACGGTCTGGAGCATCGCTCTGTATCTGCTGTTCGTCGCCGCAGTCAGTGGGCTGCTGGCCTATGTTGGCCGTCGGGATCTGCTGACTCTGTCTGGCAACTACAGCGCCAGCCTGAAAGTCCAGCAGGAGAGTGCCTTGCACCTGGAGAAACAGGCCTGGTTGCGCAATGGCCAGACCCAGTTGGCGGAACAGGTCCTCGGTCAGTTGAGCTTGAATCTGCTGGGGCGCAACATCTTGCAGTTTTGTGCCCAGTACCTGGGCACCGTGGTCGCCGCCCTTTATGCACGGGAAGAAAACGGCACGCTACGGCGTATCGCCACCTATGGCATGTCCAAGGAGGATGACGAACTCCAGCAGGTCATCATCGATGGCGAGGGCATCGCCGGGCAGGCCGTGCGGCAGGGGCGTCTTATCCGGCTGGACGATGTGCCCCAGGATTATCTCAAGGTCAGCTCCGGGCTCGGCGAGGGACTGCCCAACTGCGTGCTGGTGGTGCCGACCCGTGACGATGACCGCATCAATGGTGTCGTTGAACTGGGCTTCCTGCGGCCGTTGCCCGCGCGCGACATCGAGCTGCTGGAGCTGGTGGCCGGGAACATCGGCACGTCCATCGAAGCGGCCCGCTATCGTCAACGCTTGCAAGAAGTGCTGGCCGAAACCCAGCAGTTGAACGAAGAGTTGCAAGTGCAGCAGGAAGAGCTCAAGACCGCCAACGAAGAGCTGGAAGAACAGTCGCGCATCCTGAAGGAATCCCAGGCCCACCTGGAAGCCCAGCAACAGGAACTGGAGCAGACCAACGAACAGCTGGCCGAGCAGCGCGACGCCATGGACCAGAAGAACAGCGAGCTGAACCTGGCCCAGATCCAATTGCAGGAACGCGCCGAAGAATTGCAGCGTTCGAGCAAGTACAAGTCCGAGTTCCTGGCCAACATGTCCCATGAGCTGCGCACACCGCTCAACAGTTCGCTGATCCTGTCCAAATTGCTGGCGGAGAACCCTCACAATAACCTCAGCGATGAACAGGTGAAGTTTGCCGAGTCGATCTACTCCGCCGGCAATGACTTGCTGAACCTGATCAATGACATCCTCGACATTTCCAAGGTCGAGGCCGGCAAGCTGGAAGTGCGGCCGGAAAACACCAGCGTGGCGCGTTTGGTGGAAGGGCTCCAGGATACGTTCAAGCCGTTGACGGCTGAAAAGGGACTGGACTTCGAGGTGCAGTTGCTGCCGGACGCGCCGTCGATGCTGTACACCGACCGCCAGCGCCTCGAACAGATACTCAAGAACCTGCTGTCCAACGCGGTGAAGTTCACCGAACGGGGTTCGGTCCAGGTGTCCGTAACCGGCCAGCCGGGCTCGGGCATTGCCTTCATGGTGCGTGATTCGGGCATCGGCATCGCCGCCGATCAGCAACAGAGTATCTTCGAGGCGTTCCGCCAGGCCGATGGCACCACCAACCGCCGCTACGGCGGCACCGGGCTGGGGCTGTCGATCTCCCGAGACCTGGCGACCTTGCTGGGCGGTTCGATCTCGGTGACCAGCGAGCCAGGGCAGGGCAGTGTCTTTACGCTGGTCTTGCCGGAGCGTTACGTCGAGCCCGGGGAAAATCCGGTGAATCCAGTGACCTTTACCCCGACCGCAACCGTGCCTGCAACGACCCGTGCGCCGGCACCCGTGCCGCTGATTGCCGAGGTGGACGCACCCCTCCCGCAATTCGCCGACGACCGGGACAAGGCGCCGTTCGATTCCCGTTGCATCCTGGTCATCGAGGACGAACCCAAGTTTGCCCGCATCCTGTTCGACCTCGCCCATGAGCTGGGCTACCAGTGCCTGGTGGCCCATGGCGCCGACGAAGGCTTTGATCTGGCCCTGCAACTGAGTCCCGATGCCATTCTGCTGGACATGCGCCTTCCGGATCACTCCGGGCTTACCGTTTTGCAACGCCTGAAGGAACAGGCCCAGACCCGCCACATCCCGGTGCACGTCATCTCCGTCGAAGACCGCGTCGAAGCGGCGATGCACATGGGCGCCATCGGTTACGCCGTCAAACCGACCACCCGGGAGGAGCTCAAGGACGTCTTCGCGCGACTGGAGGCCAAGCTGACCCAGAAGGTCAAACGCGTGCTGTTGGTCGAAGACGATGACTTGCAGCGCGACAGCATTACCCGTCTGATCGGCGACGACGACATCGAGATCACCGCCGTAGGCCTGGCGCAGCAAGCCCTGGACCTGCTGCGCAATAACGTCTACGACTGCATGATCATCGACCTCAAGCTGCCGGACATGCTGGGCAATGACTTGCTCAAGCGCATGTCCAGCGAAGAGATCTGTTCATTTCCGCCAGTGATCGTCTACACCGGGCGTAACCTGACGCGGGATGAAGAAGCCGAGCTGCGCAAATATTCACGCTCGATCATCATCAAGGGCGCCCGCTCGCCGGAACGCCTGTTGGACGAAGTCACTCTCTTTCTGCACAAAGTCGAATCCCGGTTGTCCCATGAACGACAGCGCATGCTCCAGACCGCCCGCAGCCGCGACAAGGTCTTCGAAGGCCGCAAGGTGCTGTTGGTGGACGACGATGTGCGCAATATCTTCGCTCTGACCAGCGCCCTGGAGGCCAAGGGGGCGATCGTGGTGATCGGGCGCAATGGGTATGAGGCGATTGATCGTTTGAATGAAGTGGAAGACATCGACCTGGTGCTGATGGATGTGATGATGCCCGAGATGGATGGCTTCGAAGCGACCACGCTGATCCGCAAGGACCCCCGCTGGCGCAAATTGCCGATTATCGCCGTGACCGCCAAGGCCATGAAGGATGATCAGGAGCGTTGCCTGGCGGCGGGCTCCAACGATTACCTGGCCAAGCCGATTGACCTGGATCGCCTGTTCTCACTGATTCGCGTGTGGTTGCCGAATATGGAAAGAATCTAG	MTPSSSVDEQSFRKLLSRNISLPLGIGALSAVFFIVLITYLLSVIQWVGHTDRVINNANEALKLSVDLETGMRGFLLSGDEHFLDPYEVAKPRIAVALDTLLELTADNPVQTDRLRRIEALQVEWANYAQGMIDLHRSGGDYRGALKAGRGKRLTDEIRKTFEDVVETEQQLRAERNEQVRTTTVWSIALYLLFVAAVSGLLAYVGRRDLLTLSGNYSASLKVQQESALHLEKQAWLRNGQTQLAEQVLGQLSLNLLGRNILQFCAQYLGTVVAALYAREENGTLRRIATYGMSKEDDELQQVIIDGEGIAGQAVRQGRLIRLDDVPQDYLKVSSGLGEGLPNCVLVVPTRDDDRINGVVELGFLRPLPARDIELLELVAGNIGTSIEAARYRQRLQEVLAETQQLNEELQVQQEELKTANEELEEQSRILKESQAHLEAQQQELEQTNEQLAEQRDAMDQKNSELNLAQIQLQERAEELQRSSKYKSEFLANMSHELRTPLNSSLILSKLLAENPHNNLSDEQVKFAESIYSAGNDLLNLINDILDISKVEAGKLEVRPENTSVARLVEGLQDTFKPLTAEKGLDFEVQLLPDAPSMLYTDRQRLEQILKNLLSNAVKFTERGSVQVSVTGQPGSGIAFMVRDSGIGIAADQQQSIFEAFRQADGTTNRRYGGTGLGLSISRDLATLLGGSISVTSEPGQGSVFTLVLPERYVEPGENPVNPVTFTPTATVPATTRAPAPVPLIAEVDAPLPQFADDRDKAPFDSRCILVIEDEPKFARILFDLAHELGYQCLVAHGADEGFDLALQLSPDAILLDMRLPDHSGLTVLQRLKEQAQTRHIPVHVISVEDRVEAAMHMGAIGYAVKPTTREELKDVFARLEAKLTQKVKRVLLVEDDDLQRDSITRLIGDDDIEITAVGLAQQALDLLRNNVYDCMIIDLKLPDMLGNDLLKRMSSEEICSFPPVIVYTGRNLTRDEEAELRKYSRSIIIKGARSPERLLDEVTLFLHKVESRLSHERQRMLQTARSRDKVFEGRKVLLVDDDVRNIFALTSALEAKGAIVVIGRNGYEAIDRLNEVEDIDLVLMDVMMPEMDGFEATTLIRKDPRWRKLPIIAVTAKAMKDDQERCLAAGSNDYLAKPIDLDRLFSLIRVWLPNMERI				NA	NA	NA	NA	NA
D1-36_02686	372	cpdR_2		Response regulator receiver protein CpdR	ATGTCCGTCCCTGCCCCTGTCACCCCTCCCACCATCCTGGTCGTCGAAGACGACAACATCGTGCGCATGTTGATTGTCGACGTGCTGGAGGAACTGGAATACGAGGTATTGGAGGCAGAAGGTGGCGAAGAGGCGCTTAAGCTCCTGGAGGAGAAGGACCGTTCCATCGACCTGATGATGACGGATGTCAGCATGCTGCCCATGGACGGTCGCGAGTTGGCAACAAAAGCACGCGAAGTGCGCCCCGGACTCCCCATCCTGTTCGCCAGCGGCTACGCCGAAAGCATCGACGTGCCAGAAGGCATGAGCGTCATCGGCAAACCGTTCTCCATCGATCAATTGCGCGACAAGGTCCAAAAGATTCTTTCTTGA	MSVPAPVTPPTILVVEDDNIVRMLIVDVLEELEYEVLEAEGGEEALKLLEEKDRSIDLMMTDVSMLPMDGRELATKAREVRPGLPILFASGYAESIDVPEGMSVIGKPFSIDQLRDKVQKILS	PGPT0003915_1827	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
D1-36_02687	1290			hypothetical protein	ATGCCTCACCCCACCACCAAAGTCCTGGTTATCGGCTACGTCTGGCCCGAGCCACGCTCATCGGCGGCCGGCGGGCATGTCATGCAACTGCTCGAAGCCTTTCTCGAACAAGGCTGGGACATCACCTTCAGCAGCCCCGCCAGACCCGGTGAGAACCGCGCCGACCTGATTGGCCTGGGCATCCGGGAAGTACCGATCGAGCTCAATAGCAGCAGTTTTGATGTGTTTATCAGTGAGCTGGCGCCGGATATCGTCCTGTTCGACCAATTCATGATGGAAGAGCAGTTTGGCTGGCGGGTCGAAAAGCACTGCTCCGACGCCCTGCGCGTGCTCGAAACCTCGGATTTGCAAAGCCTGCGTCATGCACGGCATCAGCGACTGAAAGACCGCTTGAAGTCCGATGAGTCCTCCCAGGACTTCAGCGACCTGTTCGCCCCGGCCTTGCGCGAGGAATTCGAGCTGATGGCGGACACTGACATGGCAAGGCGGGAAATTGCAGCCCTCTTGCGTTGCGACCTGAACCTGATGGTATCTGAGTTCGAGATCGAGCTGCTGGTGGAACACTTTAAGGTGCCCCGCGAGCTGTTGCTCTGGTGCCCGTTGATGCTGGACTTGCCGACCGAGCCGTTCGTGCCCTTCGAAGACCGAGCGCATTTTCTCAGCATCGGCAATTTCCGCCACGCACCGAACTGGGACGCCGTGCTCTGGATGAAAAACGCTATATGGCCACTGATTCGCCAACGATTGCCGGGTGCGCAGCTGCATCTCTACGGGGCCTACACCCCGCCCAAGGCAGCGGCACTGCATAATCCAGCCCAAGGGTTTCATATCATGAACTGGGCCGAGGACGCCTTGCAGGTCATGTCCGGGGCACGTATCTGCCTGGCGCCGCTGCGTTTCGGCGCCGGCATCAAGGGCAAGCTGATCGAAGCCATGCTATGCGGCACGCCCAGTATCACCACGCCCATAGGTGCCGAAGCCATGCACGGCGGCATGCCCTGGCCCGGAGTGATCGCGCAAAGCGCCGAGGCCATCGCCGAAGCCGGCGTACAGCTGTATACCGACCAGGCGCGCTGGACCCATGCCCAGGGGGCCGGGTTGGCCTTGCTCGCGGAACGTTTTCGTAGGCAGGTCCACGGCCCTGCCTTGATTGACAGTATCAATGCCTGCCGCGTCGACCTTGCGCGGCGCCGTCGGGACAATTTCACCGGCAGCATGCTGCGTCACCACCAGCACAAGAGCACCCAGTACATGTCCCAATGGATCGAGGAAAAGAACCGCAACAGCTGA	MPHPTTKVLVIGYVWPEPRSSAAGGHVMQLLEAFLEQGWDITFSSPARPGENRADLIGLGIREVPIELNSSSFDVFISELAPDIVLFDQFMMEEQFGWRVEKHCSDALRVLETSDLQSLRHARHQRLKDRLKSDESSQDFSDLFAPALREEFELMADTDMARREIAALLRCDLNLMVSEFEIELLVEHFKVPRELLLWCPLMLDLPTEPFVPFEDRAHFLSIGNFRHAPNWDAVLWMKNAIWPLIRQRLPGAQLHLYGAYTPPKAAALHNPAQGFHIMNWAEDALQVMSGARICLAPLRFGAGIKGKLIEAMLCGTPSITTPIGAEAMHGGMPWPGVIAQSAEAIAEAGVQLYTDQARWTHAQGAGLALLAERFRRQVHGPALIDSINACRVDLARRRRDNFTGSMLRHHQHKSTQYMSQWIEEKNRNS				NA	NA	NA	NA	NA
D1-36_02688	906	rhaS_9		HTH-type transcriptional activator RhaS	ATGACCCGCACAGCCAGAGTCACCGACCCTTCCTATGAGTTGATGGACGACCACAACGGGCTGTCCATCATCTACCGCCAGCACGGTTTTCCCTGTCCGCTGGTGCGCTGGCATTTCCATAAGGAATACGAGCTGCACCTGATCGTCGCCAGCTCGGGCAAGGTTTTCATTGGCGATTACATCGGCAATTTCTCCCCGCAATCGCTGTTCCTCACCGGCCCCAACCTGCCCCATAACTGGATCAGCCAGGTCGCCGAGGACGAAGTGGTGGCCAAGCGCGACATGCTGGTGAATTTCACCGATGAGCTGTTTGAAAGTGGGCACCAGGTATTTACCGAGCTCAAGACGCTCGCGCCGCTGCTCGAACGCGCTCAACACGGCATCGAGTTTCGCTGCAAGCGCACCGTCCGCCAGGCCATGACCTTGATGCAGCGCATCGCCGACGCGCAGGGCATGAGCCGGCTCGGCTACTTTTTCATCCTGATGGAGCTGTTGGCCAGCTGCGATGACTATCAATTGCTCTCTGGCGCCACCGCGCCACAAGCGGCTGATGAGCACAGCATCGACCGCACCAACCGCGCGGTGGACTATATTTTTGCCCACTACGCCCGGGAATTGCCCCTGGAAGAAGTGGCCGAGCACCTGGGGATGAAACCCACCTATTTCAGCCGGGTGTTCAAGCAAGCCACCGGGCGTTGCTTCATCGAGTTCGTCAATCGGCTGCGCATCAGCAAATCCTGCGAATTGCTCGCCGATGGCGACAAGCCGGTGACGGACGTGTGCTTTGAATCCGGCTTCAACAATATTTCCAACTTCAACCGGCGCTTCCAGCAACTCAAGGGCATGACCCCTTCTCACTATCGGCGGCTGGCGGTGCAGCGGTTGACCGAGCAGAACCAGGGCTGA	MTRTARVTDPSYELMDDHNGLSIIYRQHGFPCPLVRWHFHKEYELHLIVASSGKVFIGDYIGNFSPQSLFLTGPNLPHNWISQVAEDEVVAKRDMLVNFTDELFESGHQVFTELKTLAPLLERAQHGIEFRCKRTVRQAMTLMQRIADAQGMSRLGYFFILMELLASCDDYQLLSGATAPQAADEHSIDRTNRAVDYIFAHYARELPLEEVAEHLGMKPTYFSRVFKQATGRCFIEFVNRLRISKSCELLADGDKPVTDVCFESGFNNISNFNRRFQQLKGMTPSHYRRLAVQRLTEQNQG				NA	NA	NA	NA	NA
D1-36_02689	1311			hypothetical protein	ATGAAACCTTCGGTAAAAGCTCTGCTTGTCTCCACCTGCATGACCCTCAGCAGCGTCAGTTTCGGCGCACAAACCCTGACCATTGCCACCGTCAACAACAGCGACATGATCCGCATGCAAAAACTTTCGAAGACCTTCGAGGCCGAGCACCCGGACATCAAGCTGAACTGGGTGGTGCTTGAAGAAAACGTCCTGCGCCAGCGCCTGACCACCGACATCGCCACCCAGGGCGGTCAGTTCGACGTGCTGACCATTGGCATGTACGAAGCCGCACTCTGGGGCGCCAAAGGCTGGTTGGAACCGATGAAAGACCTGCCGGCCGCCTATGACCTGGACGACATTTTCCCGTCCGTGCGCGATGGCTTGTCGGTAAAGGGTTCGCTATACGCCCTGCCGTTCTATGCCGAAAGCTCGATCACTTACTACCGCACGGACCTGTTCAAGGACGCCGGGCTGACCATGCCCGAGCACCCGACCTGGACCCAGATCGGAGAGTTCGCGCAAAAACTCACCGACAAATCCAAGGAACAATATGGCCTGTGCCTGCGGGGCAAGGCCGGTTGGGGCGAGAACATGGCGCTGATCACGACCCTGGCCAACGGCTTTGGCGCGCGCTGGTTCGATGAGAAGTGGCAGCCGCAATTCAATGGACCCGAGTGGAAGGATGCCCTGAACTTCTACGTCGACAACATGAAGAAATCCGGCCCGCCGGGCGCTTCCAGCAACGGTTTCAACGAAAACCTGGCCCTGTTCAACAGCGGCAAGTGCGCGGTCTGGGTCGATGCCAGCGTCGCGGGCTCGTTCGTGACCGACAAGACCCAGAGCAAGGTGGCCGATCACGTAGGCTTCACCTTCGCGCCCCACGAGAAAACCGAAAAAGGCACCTCGTGGATGTACTCCTGGTCGCTGGCGATCCCGGCCAGTTCCAAAGCCAAGGAAGCCGCCAAAGTGTTTACGACTTGGGCAACGTCCAAGGAGTACGGCCAGTTGGTCGCCAAGACTGATGGCATTGCCAACGTACCACCGGGCACCCGCGCCTCCACTTACAGCGACGAGTACATGAAGGCCGCGCCGTTTGCCAAGGTAACGCTGGAATCGTTGAAAGTCGCCGACCCGAAAGCCCCCACCCTCAAGCCTGTGCCCTACATCGGCATCCAGTTGGTCACCATTCCCGAGTTCCAGGCCATCGGCACCCAGGTAGGCAAGTTCTTCTCGGGCGCACTGACCGGCCAGCAAACCGTGGACCAGGCGTTGACCGCCGCGCAATCCACCACCGAACGCGAGATGAAGCGCGCCGGGTATCCCAAGTAA	MKPSVKALLVSTCMTLSSVSFGAQTLTIATVNNSDMIRMQKLSKTFEAEHPDIKLNWVVLEENVLRQRLTTDIATQGGQFDVLTIGMYEAALWGAKGWLEPMKDLPAAYDLDDIFPSVRDGLSVKGSLYALPFYAESSITYYRTDLFKDAGLTMPEHPTWTQIGEFAQKLTDKSKEQYGLCLRGKAGWGENMALITTLANGFGARWFDEKWQPQFNGPEWKDALNFYVDNMKKSGPPGASSNGFNENLALFNSGKCAVWVDASVAGSFVTDKTQSKVADHVGFTFAPHEKTEKGTSWMYSWSLAIPASSKAKEAAKVFTTWATSKEYGQLVAKTDGIANVPPGTRASTYSDEYMKAAPFAKVTLESLKVADPKAPTLKPVPYIGIQLVTIPEFQAIGTQVGKFFSGALTGQQTVDQALTAAQSTTEREMKRAGYPK	PGPT0016380_590	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
D1-36_02690	933			hypothetical protein	ATGAATACCTCAACAACGACAGTCAAAGCCCCCATCGAAATAGCCCCGCCGGCCCGCAAGATCCGCCTGGCCAACCCCGGCTGGTTCCTGGTCAGCCCTTCGGTCGCCTTGTTGCTGCTGTGGATGATTGTGCCCCTGGGCATGACCGTCTACTTCTCGATGATCCGCTACAACCTGCTGTACCCCGGCGAAAACGAATTCGTCGGGCTGGAAAACTTCACCTATTTCCTGACCGACTCGGGCTTCATGCCCGGCGCCACCAATACCCTGTTGCTGGTGGGCAGCGTGCTGTTGATCAGTATCGTCCTCGGGGTGTTGATCAGCGCGTTGCTGGAGGCCAGCGAGTTTTTTGGGCGCGGCATCGTCCGCGTGCTGCTGATCTCGCCGTTCTTCATCATGCCCACGGTCGGTGCGCTGATTTGGAAAAATCTGATTTTCCATCCAGTCTCCGGGATCCTCGCTTCGGTGTGGAAGCTCTTCGGCGCCCAACCGGTGGATTGGCTGGCGCACTACCCGCTGCTGTCGATCATCATCATCGTCAGCTGGCAATGGCTGCCCTTCGCGATCCTGATCCTGATGACCGCCATGCAGTCCCTGGACCAGGAACAGAAAGAAGCTGCCCGCCTGGACGGCGCCGGCCCCATCGCGATTTTCTGGCACTTGACCCTGCCACACCTGGCCCGCCCGATTGCCGTGGTGGTGATGATCGAAACCATTTTCCTGCTGTCGGTGTTCGCCGAGATCTTCACCACCACCAACGGTGGCCCTGGTTATGCCTCGACCAACCTTGCGTACCTGATCTACAACCAGGCACTGGTGCAGTTCGACGTCGGCATGGCGTCGGCCGGTGGGCTGATTGCCGTGGTCATCGCCAACATCGCCGCCATCATCCTGGTCCGGATGATCGGCAAAAACCTCACCGACAAGCATTGA	MNTSTTTVKAPIEIAPPARKIRLANPGWFLVSPSVALLLLWMIVPLGMTVYFSMIRYNLLYPGENEFVGLENFTYFLTDSGFMPGATNTLLLVGSVLLISIVLGVLISALLEASEFFGRGIVRVLLISPFFIMPTVGALIWKNLIFHPVSGILASVWKLFGAQPVDWLAHYPLLSIIIIVSWQWLPFAILILMTAMQSLDQEQKEAARLDGAGPIAIFWHLTLPHLARPIAVVVMIETIFLLSVFAEIFTTTNGGPGYASTNLAYLIYNQALVQFDVGMASAGGLIAVVIANIAAIILVRMIGKNLTDKH	PGPT0016385_288	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
D1-36_02691	831			hypothetical protein	ATGACTCTTCAACAATCCCGTCGACTGCAAAGCCTGCTGTTGGGCACGTTGGCCTGGGCCATCGCGATCCTGATCTTTTTCCCGATCTTCTGGATGGTGTTGACCAGCTTCAAGACCGAAATCGACGCCTTCGCCACGCCGCCGCAGTTCATCTTCGCGCCGACGCTGGAGAACTACCTGCACATCAACGAGCGCAGCAACTACTTCAGCTTCGCCTGGAACTCGGTGGTGATCTCCTTCAGCGCCACTGCTCTTTGCCTGCTGATCGCGGTGCCGGCGGCCTACTCCATGGCGTTCTACGAAACCCAGCGCACCAAAGGCACGCTGCTGTGGATGCTTTCCACCAAGATGCTGCCGCCGGTAGGCGTACTGATGCCGATCTACCTGCTGGCCAAGCAATTTGGCCTGCTGGACACGCGCCTTGCGCTGATCATCATCTACACGCTGATCAACCTGCCGATCGTGGTCTGGATGATTTACACCTATTTCAAGGACATCCCTCGCGACATCCTCGAAGCCGCGCGGCTGGACGGCGCCACCTTGTGGCAGGAAATGGTTCGTGTGCTGCTGCCCATCGCCAAGGGCGGGTTGGCGTCTACCGTGCTGCTGTCGCTGATCCTGTGCTGGAACGAGGCGTTCTGGTCGCTGAACCTCACCTCGTCCAAAGCGGCGCCGCTGACTGCCTTGATCGCCTCTTACTCCAGCCCGGAAGGCCTGTTCTGGGCCAAATTGTCCGCCGTCTCGACCCTGGCCTGCGCGCCGATCCTGATCTTCGGCTGGATCAGCCAGAAACAATTGGTGCGCGGCTTGTCCTTCGGCGCGGTGAAATAA	MTLQQSRRLQSLLLGTLAWAIAILIFFPIFWMVLTSFKTEIDAFATPPQFIFAPTLENYLHINERSNYFSFAWNSVVISFSATALCLLIAVPAAYSMAFYETQRTKGTLLWMLSTKMLPPVGVLMPIYLLAKQFGLLDTRLALIIIYTLINLPIVVWMIYTYFKDIPRDILEAARLDGATLWQEMVRVLLPIAKGGLASTVLLSLILCWNEAFWSLNLTSSKAAPLTALIASYSSPEGLFWAKLSAVSTLACAPILIFGWISQKQLVRGLSFGAVK	PGPT0016390_515	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
D1-36_02692	1104	malK	COG3839	Maltose/maltodextrin import ATP-binding protein MalK	ATGGCCAACCTGAAAATCAAGAATCTGCAAAAAGGCTTCGAAGGTTTCTCCATCATCAAGGGCATCGACCTTGAAGTGAACGACCGCGAGTTCGTGGTGTTCGTCGGCCCGTCGGGCTGCGGCAAGTCCACGCTGCTGCGGTTGATCGCCGGCCTTGAAGAAGTCAGCGACGGCACCATCGAACTGGACGGCCGCGACATCACTGAAGTCAGCCCGGCCAAGCGCGACCTGGCGATGGTGTTCCAGACCTACGCCCTTTACCCGCACATGAGCGTGCGCAAGAACATGTCCTTCGCCCTGGACTTGGCCGGCGTGCCCAAGGCCGACGTCGAGAAGAAAGTCAACGAAGCGGCGCGCATCCTCGAACTGGGGCCGATGTTGGAGCGCAAGCCCAAGCAACTGTCCGGTGGACAGCGCCAGCGCGTGGCGATCGGCCGGGCCATCGTGCGCAATCCGAAGATTTTTCTGTTCGACGAACCTCTGTCCAACCTCGACGCCGCCCTGCGGGTGCAGATGCGTTTGGAATTGGCGCGTCTGCACAAGGAACTGCAAGCGACGATGATCTACGTGACCCACGACCAGGTCGAAGCCATGACTCTGGCCGACAAGGTCGTCGTGCTCAACAGCGGGCGCGTCGAGCAGGTGGGCTCGCCTCTGGAGCTGTACCATCAGCCGGCGAACCTGTTCGTCGCCGGCTTCCTCGGAACGCCGAAGATGGGCTTCCTCAAGGGCAAGGTCACCGGCCTGGACGACCAGGGTTGTGAAGTGCTGCTGGACGCCGGCACTCGCATCAGCCTGCCGCGAATTGGCTCGAACTTGAGCATCGGCGGCGCGGTAACCCTGGGGATTCGCCCGGAGCACCTTAACCTGGCCCAGCCGGGCGATTGCACGCTGCGGGTGACCGCCGATGTCAGCGAGCGCCTGGGCAGCGACACCTTCTGTCACGTCATCACCGCTTCCGGCGAAGCCCTGACCATGCGCGTGCGCGGTGACCTGGCGAGCCGATTCGGCGAGCAACTGGACCTGCACCTGGACGCCGAACACTGCCACTTATTCGATGCCGAGGGCGTAGCGGTTTCCCGCGCGCTGCGCGCTGCCGCCTGA	MANLKIKNLQKGFEGFSIIKGIDLEVNDREFVVFVGPSGCGKSTLLRLIAGLEEVSDGTIELDGRDITEVSPAKRDLAMVFQTYALYPHMSVRKNMSFALDLAGVPKADVEKKVNEAARILELGPMLERKPKQLSGGQRQRVAIGRAIVRNPKIFLFDEPLSNLDAALRVQMRLELARLHKELQATMIYVTHDQVEAMTLADKVVVLNSGRVEQVGSPLELYHQPANLFVAGFLGTPKMGFLKGKVTGLDDQGCEVLLDAGTRISLPRIGSNLSIGGAVTLGIRPEHLNLAQPGDCTLRVTADVSERLGSDTFCHVITASGEALTMRVRGDLASRFGEQLDLHLDAEHCHLFDAEGVAVSRALRAAA	PGPT0014160_1033	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0014160-malK|mtlK|thuK-K10111	NA	NA
D1-36_02693	1482	por	COG0246	Polyol:NADP oxidoreductase	ATGAAACTCAACCGACAGAACCTGCACAACCTCAACGCAGAGGTCGTCCTGCCCGCTTATAACCTGGACGACCGGCGCCAAGGCATCGCCCACATCGGTGTCGGTGGCTTCCACCGTGCGCACCAGGCGTATTACACCGATGCATTGATGAACACCGGCGAAGGCCTCGACTGGGCCATTTGCGGCGTAGGCCTGCGCCCCGAAGATCGCCGCGCCCGGGACGACCTGGCCGGCCAGGATTTCCTGTTCACCCTCTATGAACTGGGCGACACCGACGACACCGAAGTCCGGGTGATCGGTGCCATCACCGACATGCTGCTGGCCGAAGACAGCGCCCAGGCATTGATCGACAAGCTGGCCGACCCGCAGATCCGCATCGTCTCGCTGACCATCACCGAAGGTGGCTACTGCATCGACGACAGCAACGGCGAGTTCATGGCCCACCTGCCGCAGATCCAGCACGACCTGGCCCACCCCGACGCGCCGAAGACCGTGTTTGGATTTCTGTGCGCAGCCCTGGCCAAGCGCCGCGCCGAGGGGACGCCGGCGTTTACCTTGATGTCTTGCGATAACCTGCCCCACAACGGCGCGGTGACGCGCAATGCGCTGCTGGCCTTCGCCGCGCTGCGTGATCCGGCGCTGGGGCAATGGATTGACTGCAACGTGAGTTTCCCCAACGCCATGGTCGACCGCATCACCCCGATGACCAGTGGCGCCCACCGCTTGCAGCTGCATGACGAGCATGGCATCGATGACGCTTGGCCGGTGGTATGCGAGCCGTTCGTGCAGTGGGTATTGGAAGACAAGTTCGTCAACGGTCGCCCGGCCTGGGAGAATGTCGGCGTGCAATTTACCGACGACGTTTCGCCTTACGAAGAAATGAAGATCAAGCTGCTCAACGGCAGCCATCTCGCCCTGACCTACCTGGGTTTCCTCAAGGGTTATCGCTTCGTCCACGAAACCATGAACGACCCGTTGTTCGTGCGCTACATCCGCGCCTACATGGACTTTGACGTCACGCCCCAACTGGCGCCCGTACCCGGCATCGATCTGACGCTGTACAAGGACACCCTGGTGGAGCGCTTCTCCAACCAGGCCATCGCCGACCAACTGGAACGGGTGTGTTCGGATGGCTCGTCGAAATTTCCGAAGTTCACCGTACCGACCCTCAATCGCCTGATTGCCGACGGCGGCGAGACCCGCCGCGCGGCGTTGGTGGTGGCGGCCTGGGCGGTGTATCTAAAGGGTGTGGACGAGAATGGCGCGGTCTATTCAATTCCCGACCCTCGCGCGGCTTTCTGCCAGGCGCTGGTGGCTGACGATGCCCTGGTGACCCAGCGGATGTTGGAAGTAGAAGAAATCTTCGGCACGGCTATACCTCGCTCACCTGAATTCGTGGCAGCCTTCGAATGGTGTTGCAACAGCTTGCGCGAGCATGGGGTAACGCGGACGCTTGAGCGAGTGCTGGCGGATCAAGACTAG	MKLNRQNLHNLNAEVVLPAYNLDDRRQGIAHIGVGGFHRAHQAYYTDALMNTGEGLDWAICGVGLRPEDRRARDDLAGQDFLFTLYELGDTDDTEVRVIGAITDMLLAEDSAQALIDKLADPQIRIVSLTITEGGYCIDDSNGEFMAHLPQIQHDLAHPDAPKTVFGFLCAALAKRRAEGTPAFTLMSCDNLPHNGAVTRNALLAFAALRDPALGQWIDCNVSFPNAMVDRITPMTSGAHRLQLHDEHGIDDAWPVVCEPFVQWVLEDKFVNGRPAWENVGVQFTDDVSPYEEMKIKLLNGSHLALTYLGFLKGYRFVHETMNDPLFVRYIRAYMDFDVTPQLAPVPGIDLTLYKDTLVERFSNQAIADQLERVCSDGSSKFPKFTVPTLNRLIADGGETRRAALVVAAWAVYLKGVDENGAVYSIPDPRAAFCQALVADDALVTQRMLEVEEIFGTAIPRSPEFVAAFEWCCNSLREHGVTRTLERVLADQD	PGPT0018400_337	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATION	PLANT_DERIVED_MANNITOL_DEGRADATION,PGPT0018400-mtlK-K00045	NA	NA
D1-36_02694	1488	xylB	COG1070	Xylulose kinase	ATGGCAAACCAACAACTGTTCCTGGGCATCGACTGCGGCACCCAAGGCACCAAGGCGCTGATCCTCGACGCGGCCAGCGGCCAGGTACTCGGCCTGGGCGCCGCGGCCCACAGCATGATCAGCGGCGCCAACGGCCGCCGTGAACAAGAGCCCCAGCAGTGGCTCGACGCATTCACCCAGGCGACGCACCAGGCATTGGCCGCCGCCGGGGTCGATGGCCAGGCGATTCTCGGCATCGGCGTGTCCGGGCAGCAGCATGGCTTGGTGCTGCTGGATGACCAAGGCCAGGTCCTGCGCCCGGCCAAGCTTTGGTGCGACACCGAGACCACCCCGGAAAACGATCGGCTGCTGGCGCACCTGGGCGGTGAAAGCGGCAGCCTCGAACGCCTCGGCGTGGTGATCGCGCCGGGCTATACGGTATCCAAATTGCTCTGGACCCAAGAGCAGCACCCCCAGGTCTTCGAGCGCATCGCCAGCGTCCTGCTGCCCCACGACTTCCTCAACCACTGGCTCACCGGTCGCCATTGCAGCGAATATGGCGACGCCTCGGGTACGGGTTATTTCAACGTACGCACCCGTCAATGGGACGTGGCGCTGTTGCGGCATATCGACCCCAGCGGCCGGCTGCAATCGGCTTTGCCCGAACTGATCGAGGCTCACCACCCTGTCGGCAGGATCCTGCCGGAGATCGCCGCACACCTGGGGCTGAACCCCGAGGCGGTGGTGTCCAGCGGCGGCGGAGACAACATGATGGGCGCCATCGGCACCGGCAACATCCAGCCCGGCGTGATTACCATGAGCCTCGGGTCCTCCGGCACCGTGTACGCCTATGGAGCGGAGCCTACCGTCAGTCCGCAGCCATCGGTAGCGACCTTTTGTTCCTCCAGCGGCGGCTGGCTGCCGCTGATCTGCACCATGAACCTGACCAACGCCACCGGGGCCGTGCGCGAGCTGCTGGACCTGGACATCGACACCTTCAACACCCTGGTATCCCAGGCACCGATCGGCGCCGAGGGCGTCTGCATGCTGCCATTCCTCAACGGTGAACGTGTCCCCGCCCTACCCCACGCCACTGGCGCCCTGCTGGGCCTGACGACCACCAACCTGAGCCGGGCCAACCTGTGCCGCGCGGTGGTCGAAGGCACGACATTCGGCCTGCGCTACGGCCTGGACCTGTTGCGTGCCAATGGCCTCAAGGCCCAGAGCATCCGCCTGATCGGCGGCGGCTCGAAGAGCGCGGTCTGGCGGCAGATCGTCGCGGATATCATGGACACCACCGTCATCTGCACCGAGCAGAGCGAGGCGGCGGCCCTGGGCGGGGCAATCCAGGCTGCGTGGTGCCATGGCGGCGCGCAAGAATCCCTGGCCGATCTGTGCGAACGCTGCGTCACGCTCGACCCGGCCAGCGAAACCCGCCCCGTCATCGAGCATGTCGCGGCGTCGCAACACGCCTACGAACGTTACCGGCAACACGTCGCAACCCTTTGA	MANQQLFLGIDCGTQGTKALILDAASGQVLGLGAAAHSMISGANGRREQEPQQWLDAFTQATHQALAAAGVDGQAILGIGVSGQQHGLVLLDDQGQVLRPAKLWCDTETTPENDRLLAHLGGESGSLERLGVVIAPGYTVSKLLWTQEQHPQVFERIASVLLPHDFLNHWLTGRHCSEYGDASGTGYFNVRTRQWDVALLRHIDPSGRLQSALPELIEAHHPVGRILPEIAAHLGLNPEAVVSSGGGDNMMGAIGTGNIQPGVITMSLGSSGTVYAYGAEPTVSPQPSVATFCSSSGGWLPLICTMNLTNATGAVRELLDLDIDTFNTLVSQAPIGAEGVCMLPFLNGERVPALPHATGALLGLTTTNLSRANLCRAVVEGTTFGLRYGLDLLRANGLKAQSIRLIGGGSKSAVWRQIVADIMDTTVICTEQSEAAALGGAIQAAWCHGGAQESLADLCERCVTLDPASETRPVIEHVAASQHAYERYRQHVATL	PGPT0017535_738	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
D1-36_02695	939	scrK	COG0524	Fructokinase	ATGTATTTGGTGTGTGGTGAAGCGCTGTTTGATTTCTTCAGCGCAAATGAAGCACGAACCCCGGCTTCCCAAGTGAATTACAAAGCGATTGCCGGCGGCTCGCCCTTCAACGTGGCGGTGGGGCTGCGGCGGTTGGGGGTCGAATCAGCGCTGTTTACCGGGCTTTCCGCCGACTATCTGGGTCGTCGTCTGCACCAAGTGCTGGTCGACGAAGGCGTCAGCACCCGGTTCGCCCACGACTTCGATGTGCCAACGACCTTGGCGATGGTAGCTGTCGGGGCCAACGGCTCGCCGCATTACAGCTTCCGTGGCGAAGGCTGCGCGGACCGCCAACTGAGCCTCGACCATCTGCCGACCCTGGGCCCGGAGGTGCGCGGTTTGCACGTCGGCTCGTTTTCCCTCGTGGTGCAACCCGTTGGCGATACATTGCTTGCGCTCGTGCAACGCGAGAGCGGCAAACGCCTGATCAGCCTGGACCCGAACGTGCGGCTCAACCCGCAACCGGATATCGAGCTCTGGCGTTCGCGAATAGCGACACTGGTACCGTACGCCGACCTGATCAAAGTCAGTGACGAGGACTTGAGCCTTCTTTATCCCGACCGCGATCCACAGGATGTCATCGCAGGTTGGCTGGAACACCGCTGCCAACTGGCGTTCCTGACCCGTGGGGGCCAGGGCGCGACGGTGTTCAGCCGTCAGCATGGGGGGTGGTCGCTCCCCGCTTGCCCGGTGCAAATTGCCGATACCGTGGGCGCAGGCGACACGTTCCAGGCGGCGTTGATCGCTTGGCTGACCGAACAGCGATTGGATAATGTGGAGGGTTTGCATTCGCTGGACGCTGGGCAAATCGGCAAGATGCTCGACTTCGCGATGCGCGCTGCTGCGTTGACCTGCGCCAAAACCGGACCGGATTTGCCGTACCGCCAGCAGCTCGATTAG	MYLVCGEALFDFFSANEARTPASQVNYKAIAGGSPFNVAVGLRRLGVESALFTGLSADYLGRRLHQVLVDEGVSTRFAHDFDVPTTLAMVAVGANGSPHYSFRGEGCADRQLSLDHLPTLGPEVRGLHVGSFSLVVQPVGDTLLALVQRESGKRLISLDPNVRLNPQPDIELWRSRIATLVPYADLIKVSDEDLSLLYPDRDPQDVIAGWLEHRCQLAFLTRGGQGATVFSRQHGGWSLPACPVQIADTVGAGDTFQAALIAWLTEQRLDNVEGLHSLDAGQIGKMLDFAMRAAALTCAKTGPDLPYRQQLD	PGPT0017625_2226	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
D1-36_02696	279			hypothetical protein	ATGTTTTTATCTGCCCTCGAAATGCGAAACATCATCGAAAGCAGCCTGCTGCCCAAGCGGTCGCAATGTACCTTGTCACCGGACTTGTCCATGACCGTCAAGATCTACGACGATCATGAAACCGATCGCGTAGCACTGGTTAAGAGCGACATCGATGCCACCAAGCTCACGGGCTGCCGGGCGATCAATGATCTGATTGCCGAGCTGCGTACTGAACTGGATCACGGTCACGGTTCAGGCAATTATTTTCATCAGCAGCACCGAATGAACGGGCGCTAA	MFLSALEMRNIIESSLLPKRSQCTLSPDLSMTVKIYDDHETDRVALVKSDIDATKLTGCRAINDLIAELRTELDHGHGSGNYFHQQHRMNGR				NA	NA	NA	NA	NA
D1-36_02697	1008	ilvA_2	COG1171	L-threonine dehydratase biosynthetic IlvA	ATGACCCCGACCAGTGCCGAGCTGGATTTGCTGGAACAGTATGTAAAAAGGATCCTTGCCGCTCCGGTCTACGAGCTGGCGGTGGCCACACCGTTGCAGGCGGCACCCGCGCTATCCCAGGCCCTCGGCAATCAGATCCTGCTCAAGCGTGAAGATCTGCAGCCGACCTTTTCCTTCAAGATCCGCGGTGCTTACAACAAGTTGGTGCAACTGACCCCGGAGCAGCGCAGCCGTGGGGTCATCACCGCCTCGGCGGGCAATCATGCCCAGGGCGTGGCGCTGGCGGCGCGGGAGCTGGGCATTTCGGCCTGCATTGTGATGCCGCAGACCACGCCGCAATTGAAAGTGACAGGTGTACGCAGCCGAGGCGCCGAGGAGTTGTTGCACGGTGGAAGTTTCCCGTTTGCCTTGGCGTTCGCGTTGGAACTGGCTCGCCGCAGCGGGCGGGAGTTCGTTTCACCGTTCGACGATCCGGATGTTATCGCCGGGCAGGGAACCGTTGCGATGGAGATCCTGCGCCAGCATCCAGGCCGATTGGACGCGATTTTCGTTCCAGTGGGCGGCGCAGGGCTGATCGCCGGGGTGGCGGCATACGTCAAATATCTACGCCCCGAAGTCCGCATCATCGGCGTTGAATCAGAACACTCCGCCTGTCTTCAAGCCGCGCTGGCAGCGGGTGCGCGGGTGACGCTCCCCAGCGTGGGCACTTTTGCCGATGGTGTGGCGGTGGCGCAGATCGGCGCCCACGGTTTCGATATCTGTCGCTTCTGTGTCGATGATGTGATCACCGTGACCAATGACCAGCTCTGCTCGGCGATCAGAGATATTTATGACGATACACGTTCGATCACCGAGCCCTCCGGTGCACTGGCGGTAGCGGGAATCAAGCAACACGTGGCGCAAAGCGGAGCGCAAGGGCAAACGTTCGTTGCTATCGATTCTGGCGCCAACATCAACTTCGACAGCTTGCGCCACGTGGCGGAACGTGCTGCCGTGGAAATCGCTTGA	MTPTSAELDLLEQYVKRILAAPVYELAVATPLQAAPALSQALGNQILLKREDLQPTFSFKIRGAYNKLVQLTPEQRSRGVITASAGNHAQGVALAARELGISACIVMPQTTPQLKVTGVRSRGAEELLHGGSFPFALAFALELARRSGREFVSPFDDPDVIAGQGTVAMEILRQHPGRLDAIFVPVGGAGLIAGVAAYVKYLRPEVRIIGVESEHSACLQAALAAGARVTLPSVGTFADGVAVAQIGAHGFDICRFCVDDVITVTNDQLCSAIRDIYDDTRSITEPSGALAVAGIKQHVAQSGAQGQTFVAIDSGANINFDSLRHVAERAAVEIA	PGPT0001960_5302	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
D1-36_02699	1149	yliI	COG2133	Aldose sugar dehydrogenase YliI	ATGTTGCGTAAAACATTCCGGGCCACCCTGTTTGCCAGCGCGATGGTGGTCTTCGCTACACCGGTCTTCGCCGCGCAAGTCCAGGCATTGAAGAGCGAGGAGGGCACCCTCGAAGTCACGACGGTAGCCAGGGGGCTCGAGCACCCTTGGTCCGTGGCGTTCCTGCCTGACCAGCAAGGCATGCTGGTGACGGAGCGCGCCGGCAACCTGCGGTGGGTTAGCACCGATGGAAGATTGTCTGCACCGCTGAACGGTGTTCCGCGGGTCTGGGCCAAGGGACAGGGCGGTTTGCTGGATGTGGTGCTGTCTCCGGACTTCAAGCAGGACCGCACGATCTACCTGTCCTACGCCGAGGCCGGGGAGGACGGCAAGGCCGGCACTGCCGTGGGTCGGGGGCAATTGTCCAAGGACTTGAAAAGCCTTGACGGCTTCGACGTGATTTTCCGACAGCAGCCCAAGCTCTCCACTGGCAACCACTTCGGTTCCCGCCTGGTGTTCGACCGGGATGGCTATCTCTTCATTACGCTTGGGGAGAACAACGACCGTGCCACCGCCCAGGACCTGGACAAGCTGCAGGGCAAGATCGTGCGGGTCTACCCCGACGGCAAGGTGCCTGACGACAACCCCTTCATCGGCCAGAAAAACGTACGCCCGGAGATCTGGTCATACGGCCTTCGTAACCCCCAAGGCGCTGCGCTGAACCCCTGGAACGGCACGTTGTGGGAAAACGAGCACGGCCCCAAGGGTGGTGACGAGATGAACATCATCGAGCGAGGCAAGAACTATGGCTGGCCGTTGGCGACCCATGGCGACAACTATTCCGGCGCGCCGATTCCCGAGGCCCAGGGCAAGACTGTCGAAGGCACCGTAGGGCCGCACCACGTCTGGCAGGTATCGCCGGGGCTCAGCGGCATGGCGTTCTACGACAACGATCGTTTCAAGCCTTGGCAGCGCAACGCGTTTATCGGCGCGCTGGTGTCCAAGGACCTGATTCGCCTGGAGTTCGAAGGTGACAAGGTCGTTCATGAAGAGCGCTTGCTGGGTGAGCTCAAGGAGCGCATCCGCGATGTTCGCCAGGGCCCGGATGGTTTCCTCTACGTATTGACGGACGAAGATGACGGCGCGTTGTACAAGGTCGGACTGAAGTAA	MLRKTFRATLFASAMVVFATPVFAAQVQALKSEEGTLEVTTVARGLEHPWSVAFLPDQQGMLVTERAGNLRWVSTDGRLSAPLNGVPRVWAKGQGGLLDVVLSPDFKQDRTIYLSYAEAGEDGKAGTAVGRGQLSKDLKSLDGFDVIFRQQPKLSTGNHFGSRLVFDRDGYLFITLGENNDRATAQDLDKLQGKIVRVYPDGKVPDDNPFIGQKNVRPEIWSYGLRNPQGAALNPWNGTLWENEHGPKGGDEMNIIERGKNYGWPLATHGDNYSGAPIPEAQGKTVEGTVGPHHVWQVSPGLSGMAFYDNDRFKPWQRNAFIGALVSKDLIRLEFEGDKVVHEERLLGELKERIRDVRQGPDGFLYVLTDEDDGALYKVGLK	PGPT0017700_1229	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_ALDOSE_DEGRADATION,PGPT0017700-yliI-K21430	NA	NA
D1-36_02700	342			hypothetical protein	ATGAACAGGCGGGTGCTCGCCTTGATAGCGCTTTTCATGAGCGCCACGGCCCAGGCCGTTACCCCGGTCACCGGGCCCGTGTTGCTAGCGCAGAACGCGCCGGGCAACAACAATCCGTACAACAGCCCGATCCGCCGGGCCAACCCCAACAGCATGCAGGGCACCCAGCCCAACGTGCCAACCATTCGCAGCAACCCGACGGTGCCGGTGCCGCGGCCCCCGACCCTGGAAAATAGCGGTATCGGCAACGGCTATCCTCGGGCTGGCTCGCCAGCCGGTTCGCCACGGCCGACGATTGAATCTCCGACACCCCCCAGGAACACGAACAACGGCAATCGCTGA	MNRRVLALIALFMSATAQAVTPVTGPVLLAQNAPGNNNPYNSPIRRANPNSMQGTQPNVPTIRSNPTVPVPRPPTLENSGIGNGYPRAGSPAGSPRPTIESPTPPRNTNNGNR				NA	NA	NA	NA	NA
D1-36_02701	891	ku	COG1273	Non-homologous end joining protein Ku	ATGGCACGGGCAATCTGGAAAGGCGCAATCAGTTTCGGACTGGTCCACATTCCCGTGGCGCTGGTGTCGGCCACAGCGTCCCAAGGCGTGGATTTCGACTGGCTGGACAAACGCAGCATGGATCCGGTGGGGTACAAGCGTGTCAACAAGGTCACCGGCAAGGAAGTGACCAAGGATGACATCGTCAAAGGCGTGCAGTACCAGAAGGGTCAATACGTGCTGATCAGCGAGGAGGAAATTCGCGCAGCCCACCCCAAGTCGACCCAGACCATCGACATTTTCTCTTTTGTCGACACCGAGAAGATCCCGCTACAGAACATCGACAAGCCTTATTTTCTGGCGCCGGACAAGCGCGGCGGCAAGGTCTATGCGCTGCTGCGCGAGACCCTGCTCAAGACCAACAAAGTCGCCCTGGCGAATGTGGTGCTGCATACCCGCCAGCACCTGGCGGCGCTCATGCCGCTGGAATCGGCCCTGGTGCTGGTGATGCTGCGCTGGCCTGCCGAAGTCCGCGAACTCGATGTACTGGAACTGGGCGACGAAGTGACCAACCCCACGTTGGCGAAAGGCGAACTGGAGATGGCCAAACGCCTGGTGCAAGACATGAGTGGTGACTGGGAGCCCCAGGAGTACCGCGACAGTTTCCAGGAAAAAATCATGGAGCTGGTGGAGAAAAAGGCCACCGAAGGCCGGCTCGAAGCGGTGGAAACCGACCCTGGCGAAGAACAGCGCAAGACCGCCGACGTCATCGACCTTACCGAACTGCTCAAGCGCAGCCTTGGCGGCAAGGGCAAGGCCCCGGAAAAACCAGCCGAAAAGACTGCGGCAAAATCGACCAAGACGCGTAAATCCGCTCCAGCTAAAAAAGCCACCAAGGCCTCCCAGGGCTAA	MARAIWKGAISFGLVHIPVALVSATASQGVDFDWLDKRSMDPVGYKRVNKVTGKEVTKDDIVKGVQYQKGQYVLISEEEIRAAHPKSTQTIDIFSFVDTEKIPLQNIDKPYFLAPDKRGGKVYALLRETLLKTNKVALANVVLHTRQHLAALMPLESALVLVMLRWPAEVRELDVLELGDEVTNPTLAKGELEMAKRLVQDMSGDWEPQEYRDSFQEKIMELVEKKATEGRLEAVETDPGEEQRKTADVIDLTELLKRSLGGKGKAPEKPAEKTAAKSTKTRKSAPAKKATKASQG				NA	NA	NA	NA	NA
D1-36_02702	1989	ligD_2	COG1793	Multifunctional non-homologous end joining protein LigD	ATGGCCAAGGCCGAGAGTGAATCTGCCCGTCTGTCCGATGTGGAAGCGGACCCAATAACGACTCGTACCCGTGCCCGACGGGGCGAACAGGTGGACAACGGCCGGCTCCCGGAACGTCTGTCACCACCGCTGGCCACGCCGGTGGAGCACCCACCGGCGGGGGAATGGCGCTATGAAGTCCAATTCCACGGGTATCGACTCCTGGCGCGAATCGAGAACGGCGAAGTACGCCTGTTGAATCGCAGCCACACGGACTGGACCGAACGGCTCAGGCTGCACGCCGACGCCCTGGCGAAGTTGGACCTGGGTGACTGTTGGCTCGATGGGGAACTGGTGCTGCTCGACGACACCGGCCATTCCGACTTCCCTGCCCTGCGCCAGGCCTTCGAGATCGGTCGTAGCGTCGACATGGTCTACTTTCTTTTCGACGCGCCGTTTCTCAATGGCATCGACATGCGCCAACAACCTTTGGAAGAACGCCGCGCCGCACTCAAGAACGCCCTGAAGAACAACACCAGCAAGCGCCTGCGGTTTTCAGAGGCATTCTCCGCAAGCCAACACGACATCTTCGAAAGTGCCACCGCCCTTTCCTTGGACAGTGTGGTCGGCAAGCGCCTGGGCAGCCCCTATGTCTCCGGCCGCAATCCCGATTGGGTCAAGCTCAAGTGTCGGCTGCGCCAGTGCTTCGTTATCGTGGGCTTCACGCGCCCGCAAGGCAAACGCAGCGGTTTTGGCGCACTGTTGCTGGCGGTCAACGGGCCGTCGGGGCTGGTGTACGCCGGTCGGGTCGGCACGGGCTTCAGCCAGTCCCAACTCAAGCAACTGCATGAACAACTCTGCGCCCAGGAGCGCGAAACCTCACCGCTGGACAAAACGCTCAGCGGCGCACAGGCACGCGGCGTGCATTGGGTCGAGCCGACGCAAGTCTGCGAAGTTGAATTCGCTGAATGGACCGGCGACGGCCTGGTCCGCCAGGCGGTATTCCTTGAGCTACCGGGCGACGGGCAAGCCAGTCGCGTTGTGCGCGAACAGCCCATGCCGATAAAAGCGGCGGCCCCCAAGCCCAAGCGTCGGACCAAGGCCAACGCCGCCAAGGTCGACGGCGTGGTGATCACCCACCCCGACCGCGTCGTCGACAGCGTCAGCGGCGTGCAAAAAGCAGAGCTGGCGCAATACTACCTGGACATCGCCCCGTGGATCCTGCCCCACCTCAAGTTGCGCCCGGTCGCGCTTGTGCGGGCACCGGAGGGGATCGGCGAAGAACTGTTCTTCCAGAAACATGCCGACCGCCTGGAGATCCCTCATATCAAACAGCTGGACCCGGACCTGGACCCAGGCCACGCGGCGCTGATGGAGATCGACAGCGTCCATGCGCTGGTCGGCGCCGCGCAGATGGGTGCGGTGGAGTTGCACACCTGGACGGCGACCCATGACCGGATCGAGACACCCGACCTGTTCGTCCTGGACCTGGACCCCGACCCGTCGCTGCCCTGGAGCGCCATGCTGGAAGCGACACGCATGACCTTGTCGGTGCTTGACGAACTGGGCTTGCAAGGATTTCTCAAGACCAGCGGTGGCAAAGGCATGCACGTCATCGTGCCGATGGCGCGCAGCGAGGGGTGGGATGTCACCAAAGCCTTCGCCAAGGCCATCTCACAATTCCTGACCCGGCAGATGCCGCAACGAATCACCGCGACCATGGGGCCGAAGAACCGAGTGGGCAAGGTGTTTGTCGACTATCTGCGCAACGCCCGTGGCGCCAGCACCGTGGCCGCCTACTCGGTGCGCGCAAGACCAGGCCTGCCGGTTTCGGTCCCGATTGCACGGGACGAACTGGACGGCCTGCGCAACGCCCAGCAATGGGACATCCAGACGGCGCTGGAACGGGCCAAGGGCCTGGGCGTCGATCCGTGGGAAGGTTATAGCCATCGCCAGCGGATCACCACCAGGATGTGGACACAGCTGGAGGCTGAAAAGCCCGGTTCCTGA	MAKAESESARLSDVEADPITTRTRARRGEQVDNGRLPERLSPPLATPVEHPPAGEWRYEVQFHGYRLLARIENGEVRLLNRSHTDWTERLRLHADALAKLDLGDCWLDGELVLLDDTGHSDFPALRQAFEIGRSVDMVYFLFDAPFLNGIDMRQQPLEERRAALKNALKNNTSKRLRFSEAFSASQHDIFESATALSLDSVVGKRLGSPYVSGRNPDWVKLKCRLRQCFVIVGFTRPQGKRSGFGALLLAVNGPSGLVYAGRVGTGFSQSQLKQLHEQLCAQERETSPLDKTLSGAQARGVHWVEPTQVCEVEFAEWTGDGLVRQAVFLELPGDGQASRVVREQPMPIKAAAPKPKRRTKANAAKVDGVVITHPDRVVDSVSGVQKAELAQYYLDIAPWILPHLKLRPVALVRAPEGIGEELFFQKHADRLEIPHIKQLDPDLDPGHAALMEIDSVHALVGAAQMGAVELHTWTATHDRIETPDLFVLDLDPDPSLPWSAMLEATRMTLSVLDELGLQGFLKTSGGKGMHVIVPMARSEGWDVTKAFAKAISQFLTRQMPQRITATMGPKNRVGKVFVDYLRNARGASTVAAYSVRARPGLPVSVPIARDELDGLRNAQQWDIQTALERAKGLGVDPWEGYSHRQRITTRMWTQLEAEKPGS	PGPT0014910_1149	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971	NA	NA
D1-36_02703	900			hypothetical protein	GTGAAGCTCATCATCGTTGCGATCTATATCCTCTCCATCTGCTATGTGCATCTGCGTGGGCGCGTGCGGCATAAGCTCGGACGCCAGCTGAGCGACCACTCGTCCTTCCTCGCGCCGGTCAATTGCCTGCTGTACCTGTGCTCGAAATTCCCCAACAAGCCGTTCCTCAGCCCAGGCGAGTTCCCGGACCTGAGTCCGTTGCAGGCCCATTGGGAAGAAATTCGCGCCGAGGGTCAGAACCTGTTGCAAGCAGGCGAGATCAAGCGCTCGAACCAATATGACGACGTGGGCTTCAACTCCTTTTTCAAGACCGGCTGGAAGCGTTTCTATCTCAAGTGGTATGGCGACAGCCATCCGTCGGCCATGAAGCTGTGCCCACGCACCACCGAGCTGGTGCAGGGCATCGGCTCGATCAAGGCGGCCATGTTCGCTGAACTTCCGCCGGGCTCGAAACTGGTCCGACATCGTGATCCGTACGCCGGCTCCTATCGCTACCACCTGGGCCTGCAGACGCCCAATGATGCCGGTTGCTACATCGATGTCGACGGCCAGTCGTATCACTGGCGGGACGGCGAGGCGGTCATATTCGACGAGACGTTCATCCATTACGCCGAAAACACGACGCCAGATAACCGCATCATCTTGTTCTGCGACGTGGAACGGCCCATGAAGTACCGTTGGGCCACGGCGTTCAACCGTTGGTTCAGCCGTACCGTGATGTCCGCCGCTGGAGCGCCGAACGATGCCGGTGACAAGACTGGCGGCCTGAACCGGGCGTTTTCACGGTTGTACAAGATTCGTCTGCAAGGCAAAGCGCTGAAGAAACGCAACCGCAAGTTGTACTACTTGCAGAAATGGGCGTTCTTCGGCGCTCTGCTGGCTATTTTCGTCTGGATCTGA	MKLIIVAIYILSICYVHLRGRVRHKLGRQLSDHSSFLAPVNCLLYLCSKFPNKPFLSPGEFPDLSPLQAHWEEIRAEGQNLLQAGEIKRSNQYDDVGFNSFFKTGWKRFYLKWYGDSHPSAMKLCPRTTELVQGIGSIKAAMFAELPPGSKLVRHRDPYAGSYRYHLGLQTPNDAGCYIDVDGQSYHWRDGEAVIFDETFIHYAENTTPDNRIILFCDVERPMKYRWATAFNRWFSRTVMSAAGAPNDAGDKTGGLNRAFSRLYKIRLQGKALKKRNRKLYYLQKWAFFGALLAIFVWI	PGPT0022350_471	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LIPID_A_METABOLISM,PGPT0022350-lpxO-K12979	NA	NA
D1-36_02704	1563	ybiT	COG0488	putative ABC transporter ATP-binding protein YbiT	ATGCAGTTCGGCGCCAAGCCGCTGTTCGAAAACGTCTCTGTCAAATTTGGCGCGGGTAACCGCTACGGCCTGATCGGTGCCAACGGTTGCGGCAAGTCGACCTTCATGAAAATCCTCGGAGGCGACCTCGAGCCATCCGGCGGCCAGGTGATGCTGGAGCCGAACGTGCGCCTGGGTAAACTGCGCCAGGACCAGTTCGCCTACGAGCAATTCACCGTGATCGATACCGTGATCATGGGCCACGAAGAGCTGTGGAAGGTCAAGGCCGAGCGCGACCGCATTTATTCGCTGCCGGAGATGACCGAAGAAGACGGCATGGCCGTGGCCGAGCTCGAAACCGAGTTCGCCGAGATGGACGGCTACACCGCCGAATCCCGCGCCGGTGAACTGCTGCTGGGCCTGGGCATTCCCCTGGAACAGCATTTCGGCCCGATGACCGAAGTCGCCCCAGGCTGGAAGCTGCGTGTGTTGCTCGCCCAGGCATTGTTCTCCGATCCGGAAGTGCTGTTGCTCGACGAACCGACCAACCACCTGGACATCAACACCATCCGTTGGCTGGAAAACATCCTCACGGCGCGTAACAGCACCATGATCATCATTTCCCACGACCGGCACTTCCTCAACAGCGTCTGCACCCACATGGCCGACCTGGACTACGGTGAGCTGCGCCTGTTCCCAGGCAACTACGACGAATACATGATCGCGGCCACCCAGTCCCGCGAGCAGTTGCTGTCGGACAACGCCAAGAAGAAAGCCCAGATCGCCGAATTGCAGACGTTCGTCAGCCGGTTCTCGGCCAACGCCTCGAAAGCCAAGCAGGCCACTTCCCGCGCCAAGCAGATCGACAAGATCCAGCTGGCCGAGGTCAAGCCATCGAGTCGCGTCAGCCCGTTCATTCGCTTCGAACAGACCAAGAAGCTGCACCGCCAGGCCGTGACCATCGAGCGCATGTCCAAGGGCTTCGACGGCAAGACGCTGTTCAAGAACTTCAGCTTCACCGTCGAAGCCGGCGAGCGCGTGGCGATCATCGGCCCCAACGGCATCGGCAAGACCACCCTGCTCCGTACCTTGATGGGCGAGCTGACACCGGACGCCGGCTCGGTCAAATGGACCGAAAGCGCGGAACTGGGCTACTACGCCCAGGACCACGCCCACGACTTCGAGGACGACGTCAGTTTGTTCGACTGGATGGGCCAGTGGACTCAGGGCGAACAGATGATCCGTGGCACCCTGGGTCGCATGCTGTTTTCCAACGATGAGATCCTCAAGTCAGTCAAAGTCATCTCCGGTGGTGAACAGGGCCGCATGCTGTTTGGCAAGCTGATCCTGCAAAAGCCGAACGTACTGGTGATGGACGAACCGACCAACCACTTGGACATGGAATCCATCGAAGCGCTGAACCTGGCGCTGGAGAACTACCCGGGCACGTTGATCTTCGTCAGCCACGACCGCGAATTCGTATCGTCCCTGGCGACCCGCATCATCGAGCTGAGCGCCGATGGCGTGGTCGACTTCAGCGGCACCTACGATGACTACCTGCGCAGCCAGGGCGTGATGTTCTAA	MQFGAKPLFENVSVKFGAGNRYGLIGANGCGKSTFMKILGGDLEPSGGQVMLEPNVRLGKLRQDQFAYEQFTVIDTVIMGHEELWKVKAERDRIYSLPEMTEEDGMAVAELETEFAEMDGYTAESRAGELLLGLGIPLEQHFGPMTEVAPGWKLRVLLAQALFSDPEVLLLDEPTNHLDINTIRWLENILTARNSTMIIISHDRHFLNSVCTHMADLDYGELRLFPGNYDEYMIAATQSREQLLSDNAKKKAQIAELQTFVSRFSANASKAKQATSRAKQIDKIQLAEVKPSSRVSPFIRFEQTKKLHRQAVTIERMSKGFDGKTLFKNFSFTVEAGERVAIIGPNGIGKTTLLRTLMGELTPDAGSVKWTESAELGYYAQDHAHDFEDDVSLFDWMGQWTQGEQMIRGTLGRMLFSNDEILKSVKVISGGEQGRMLFGKLILQKPNVLVMDEPTNHLDMESIEALNLALENYPGTLIFVSHDREFVSSLATRIIELSADGVVDFSGTYDDYLRSQGVMF				NA	NA	NA	NA	NA
D1-36_02705	1194	yhhS_2		putative MFS-type transporter YhhS	ATGCCAACAGCCCAGCCCGCTCCCAGCTCCTTGTCGATCACCTTGCAGATCGTCTCCATCGTTTTCTACACCTTTATCGCCTTTCTTTGCATCGGACTGCCCATCGCCGTGTTGCCAGGCTATGTCCACGATCAATTGGGCTTCAGCGCCGTCATCGCGGGGCTGACCATCGGCTCGCAATACCTGGCGACCCTGCTCAGCCGCCCCATGGCCGGAAGGCTGTCGGACAGCGTCGGGACCAAGCGGGCCATCGTGTATGGTTTGCTGGGGATTCTGCTCAGCGGCGTGCTGACGCTGATCTCGACATTGCTGCAGGATTTCCCGCTACCAAGCCTGGTGATCCTGATCGCGGGACGTTTGCTCTTGGGGGTCGCCCAAGGGCTGATCGGTGTCGGGACGATCAGTTGGTGCATGGGCCAGGTCGGCGTGGAGCACACCGCCCGCTCGATTTCATGGAATGGGATTGCTTCCTACGGCGCCATCGCCATCGGTGCGCCGCTGGGGGTGGTGATGGTCGGCAGCCTCGGCTTCGACAGCCTGGGCATCGCCTTGTCCTTGTTGGCCGGCATGGCGCTGCTGCTGATTCGCAACAAGCCGTCGGTACCGGTCGTGCGTGGCGAGCGCCTACCCTTCTGGGCCGTGTTCGGGCGCATTTCGCCCTTTGGCGCGAGCCTGTGCCTGGCCTCGATCGGCTACGGCACGCTCACCACCTTCATTACGCTGTTCTATGTCAGCCGCGGGTGGACCGGCGCGGCGTGGTGCCTGACGGTCTTCGGCATCTGCTTCATCCTGTCGCGGCTATTGTTCATTTCCAGCATCGCCCGTTTCGGTGGCTTCAGCTCGGCCATTGTCTGCATGAGCATCGAGACCGTGGGGCTGGTGATGCTCTGGCTCGCCCCCTCCACCGCGTTTGCCCTGGTGGGCGCGGGCCTGGCCGGTTTCGGCTTGTCGCTGGTCTATCCGGCGTTGGGCGTGGAAGCCATCAAGCAGGTGCCCAACAGCAGCCGAGGTGCCGGGTTGAGCGCCTATGCGGTGTTCTTCGACCTGGCATTGGCGATTGCCGGCCCACTGATGGGCGCGGTGGCGTTGAACCTCGGCTACTCGTCGATCTTTTTCTTCGCGGCCTTGTTGTCGCTTATCGGCCTGGGCCTGGCGCTACTGCTGCGCCGGCGGGCCGAGCGTAGCGATCACTGA	MPTAQPAPSSLSITLQIVSIVFYTFIAFLCIGLPIAVLPGYVHDQLGFSAVIAGLTIGSQYLATLLSRPMAGRLSDSVGTKRAIVYGLLGILLSGVLTLISTLLQDFPLPSLVILIAGRLLLGVAQGLIGVGTISWCMGQVGVEHTARSISWNGIASYGAIAIGAPLGVVMVGSLGFDSLGIALSLLAGMALLLIRNKPSVPVVRGERLPFWAVFGRISPFGASLCLASIGYGTLTTFITLFYVSRGWTGAAWCLTVFGICFILSRLLFISSIARFGGFSSAIVCMSIETVGLVMLWLAPSTAFALVGAGLAGFGLSLVYPALGVEAIKQVPNSSRGAGLSAYAVFFDLALAIAGPLMGAVALNLGYSSIFFFAALLSLIGLGLALLLRRRAERSDH				NA	NA	NA	NA	NA
D1-36_02706	1128			hypothetical protein	ATGTCGGCGCTGGGCTGGATGGCGCAGGATATGCACGGCCAGAACGCTAACGACGGGGCCTTCCCCGTGCGTGCGAAGGTGGAAGATTCGATGACACGTGTTGGTGCAGCATTACTGCTTTGTCTGTTTGCCAGCCTCGGTCCGGTGCAGGCCGCGCCGGCGCCGCATCCGCATTGGAGCGCCGGTTTCCATGAGTTGGATTTTCTCGATCCGCTGGACCAGCAGCCGATGCATGCCATCGCGTTCTATCCGTCCACCGCCAAGGATCAGTCCAGCTCCCTGGGCGGCTATCAGATCGACGCGGCGCAGGATGCTCAGATCGCCATCGGCCGGTTTCCATTGCTCATGCTCTCCCACGGCAACACCGGCACGCCCTTGGCCCTGCATGACCTGGCCACGTCGCTGGCGCGCAAGGGGTTCGTGGTGGTTGCGGTGATACATCCGGGGGACAACGCCCAGGATCACAGCCGACTCGGTACTTTAAGCAATTTGTACGGGCGGCCGATCCAGATCTCCGAAGCCATCACCGCAACGTTGAACGACCCCATGCTCTCGCCATTCGTCAATGCCGGACAGGTGGGCGTGATCGGCTATTCGGCGGGCGGTGAAACCGCCTTGATTCTTTCCGGCGCCACGCCAGACCTCAATCGCCTGCGGCGCTATTGCCAGGAACGGCCCGATGACCGTGACGCCTGCAATACCCAGGGTGAGCTGATTGCCGATCGCGATGACCTGTCGCCGGTGGCTGATCCCAGGGTTCGCGCATTGTTGCTGATGGCGCCATTGAGCCTGAAATTCGGCCGTCACACGTTGGCCGACGTCCATGTGCCGGTGCTGCTCTACAGTGGCGACGGCGACAAACTGGTGGCGTTCGACAAGAACGCCGCGGCCCTGGCGCGCAAGCTGCCCACCGCGCCGGACTTCAAGACATTGGCCGGGGCCGGCCACTTCGTCTTCATGGCCCCATGCACCGACGAGCAGAGCGCGGCAATGCCGGCGCTGTGTACCGATGCCGATGGGGTCGATCGCAAGGACATCCACCGCACCATGATCTCCGAGGCCAGTCGCTTCTTCAGCCAGGCACTGGGCAAGCCGACCCGCGCGGGCATGAGGACGGCCGATCAGTGA	MSALGWMAQDMHGQNANDGAFPVRAKVEDSMTRVGAALLLCLFASLGPVQAAPAPHPHWSAGFHELDFLDPLDQQPMHAIAFYPSTAKDQSSSLGGYQIDAAQDAQIAIGRFPLLMLSHGNTGTPLALHDLATSLARKGFVVVAVIHPGDNAQDHSRLGTLSNLYGRPIQISEAITATLNDPMLSPFVNAGQVGVIGYSAGGETALILSGATPDLNRLRRYCQERPDDRDACNTQGELIADRDDLSPVADPRVRALLLMAPLSLKFGRHTLADVHVPVLLYSGDGDKLVAFDKNAAALARKLPTAPDFKTLAGAGHFVFMAPCTDEQSAAMPALCTDADGVDRKDIHRTMISEASRFFSQALGKPTRAGMRTADQ				NA	NA	NA	NA	NA
D1-36_02707	609	azoR1_2	COG1182	FMN-dependent NADH-azoreductase 1	ATGAAACTGTTGCACATCGATTCGAGCATCCTCGGCGACAACTCCGCTTCGCGCCAATTGAGCCGTGAACTGGTCCAGGCTTGGACAGCCGCCGAGCCGGGCATCACCGTCACTTACCGCGACCTGGCGACCGATGCCATCAGCCACTTTTCCGCCCAGACGCTGGTCGCCGCCGGCACCAGCGCTGAGCTGCGCGATGCTGCCCTCAAGCACGAAGCCGACCTCAGCGCATCGACCATGGCCGAATTCCTTGCGGCAGACGCCGTCGTGATCGCTGCTCCGATGTACAACTTCAGCATTCCGACCCAGCTCAAGGCCTGGATCGACCGCATCGCCGTGGCTGGTCAGACGTTCCGCTACACCGAAGCCGGCCCCGAAGGCCTGTGCGGCGGCAAGAAGCTGGTGATCGTCTCGACCTCCGGCGGCCTACATGCCGGGCAACCAAGTGGCGTAGGCCATGAGGACTACCTGAAGCAAATGTTCGGGTTCCTGGGCATCACCGACATCGAATTCGTCCGCGCCGAAGGCTTGGCCTACGGTGATGACATGCGAAGCAAAGCGATAAGCGAAGCCAAGCTGCAGATCGGCCAGCAATTCGCTGCCGCGTAA	MKLLHIDSSILGDNSASRQLSRELVQAWTAAEPGITVTYRDLATDAISHFSAQTLVAAGTSAELRDAALKHEADLSASTMAEFLAADAVVIAAPMYNFSIPTQLKAWIDRIAVAGQTFRYTEAGPEGLCGGKKLVIVSTSGGLHAGQPSGVGHEDYLKQMFGFLGITDIEFVRAEGLAYGDDMRSKAISEAKLQIGQQFAAA	PGPT0006790_2085	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_DEGRADATION_OF_OTHER_NITRO-COMPOUNDS	XENOBIOTIC_AZO_DYE_DEGRADATION,PGPT0006790-acpD|azoR-K01118	NA	NA
D1-36_02708	909	dmlR_18		HTH-type transcriptional regulator DmlR	ATGCAGGACCTCAACGATCTTTATTACTTCGCCAAGGTGGTCGAGGCCGGCGGCTTCGCGGCGGCCGGGCGCTTGCTCGGCATACCGAAGTCGCGGCTGTCACGGCGTATAGCCGAGCTGGAAGAGCGTCTCAATGCTCGCCTGTTGCAACGTACGACTCGCCAACTGAAGCTGACCGCCGTGGGCGAACGCTACCTTCGCCACTGCCAGGCGATGTTGCTGGAAGCGGAGATGGCCGACGAGGCCGTGGCGAGCATGTCCAGCGAGCCCCGTGGACGGCTGCGGGTGTCGAGCCCGGTGGGATTGGCGCACCAGTTTTTGCCATCGATCATCGAAACTTTCCTGGCGAAATACCCGCAGGTCCAACTGGAGATGATTCTGCTCAATCGGCGGGTGGACCTGGTCAGCGAAGGCATCGACGTGGCGCTGCGGGTGAGAGACCTGGGTGACGAGGACCCACTGTTGATGACCCGCCGCTTGCGCCAGGCCCGGTTGATCATGGTCGCCAGCCCCGCCTTTACCGAGGGGCGGCGAATCGAAACTCCGGAGGATCTACGGCAACTGCCGGTGCTGGGGGCGTTGGAAGCAGATCGACAGGTTCACCTGCGCCTGCTTGACCGCCGTGGCCAAAGCACCGAACTGGCCTTGGAAGCGCGCCTGGGCATCGATGATTTCATCGTGCGCCGCGCCTGCGCCCTCGCCGGCCTGGGCTTTACCCTGCTGCCGAGCATGTATTGCGAAGAGGAATTGCGCGACGGCAGGTTGGTGGAGTTGTTGCCTGGCTGGTCATCCCCCGATGGCTGGCTCTTGGCGGTTTATCCTCACCGGCGCGGTATGCTGCCGGCGGTGCGCGCCTGGATCGATCATTTGGTGGCGGCGTTTGAACAATGTGGAGAGAAAACGCTATGA	MQDLNDLYYFAKVVEAGGFAAAGRLLGIPKSRLSRRIAELEERLNARLLQRTTRQLKLTAVGERYLRHCQAMLLEAEMADEAVASMSSEPRGRLRVSSPVGLAHQFLPSIIETFLAKYPQVQLEMILLNRRVDLVSEGIDVALRVRDLGDEDPLLMTRRLRQARLIMVASPAFTEGRRIETPEDLRQLPVLGALEADRQVHLRLLDRRGQSTELALEARLGIDDFIVRRACALAGLGFTLLPSMYCEEELRDGRLVELLPGWSSPDGWLLAVYPHRRGMLPAVRAWIDHLVAAFEQCGEKTL				NA	NA	NA	NA	NA
D1-36_02709	351			hypothetical protein	ATGAGCTTGAGCGAAGAGGATGTCGCACGGTTTTGCCTGGGCCTGCCTGGGGTCAGGGAAGACTACAAGTGGGGCGGCGTGCGGGTATTTTCCATCGCTGGAAACAAGATGTTCGCCTTGCAGGGCCTGCGCAGTGATTCGTTGGCGTTCAAGGTCGACAAGGACCTGTTTCTAGGCCACTGCGACCGGCCCGGCATTCACCCCGCGCCTTATCTGGCCCGGGCGCAGTGGATCATCATGAACGTGCCCTACCCGCTGGGCGATGACGAATTGCGGGGGCTTCTGCAACGCTCCCATCAACTGGTGGTCAGCAAATTGCCGAAGCGGACGCAGGTTGGGTTGTTGCTGTAG	MSLSEEDVARFCLGLPGVREDYKWGGVRVFSIAGNKMFALQGLRSDSLAFKVDKDLFLGHCDRPGIHPAPYLARAQWIIMNVPYPLGDDELRGLLQRSHQLVVSKLPKRTQVGLLL				NA	NA	NA	NA	NA
D1-36_02710	423			hypothetical protein	ATGAACGATTCAGGCCGGCGCGGCGCGCGTCACACCAGCGGGGCCGTGCAGAACCTGCGGCTCAAGCTGGGCGTGTTCGCGCTGCTGTGCGCCTTGCCGCTCGCTGGGTCGCTTCTGCTGGGGCTGCAAGGCGAGTCCTGGGTGCCGATGACAGCTTACGGCCTCGTCAGTGTCGTGGCGTTTTTGCTCTACTGGAGCGATAAGCGCAAGGCGCGTTCGGACGCCTGGCGCACGCCGGAAAATGTGTTGCACGCCGTCGAGCTGGCCGGTGGCTGGCCCGGTGCGTTGCTGGCTCAACAGGTGTTTCGCCACAAGACCCGCAAGGTTTCGTTTCAGGTGGTGTTCTGGTTCGTCGTGTTATTGCACCAGGGGTTCTGGGTGGATCAGTTGTTCCTGGGTGGGCATCTGCTGGCGTTGTTCTAG	MNDSGRRGARHTSGAVQNLRLKLGVFALLCALPLAGSLLLGLQGESWVPMTAYGLVSVVAFLLYWSDKRKARSDAWRTPENVLHAVELAGGWPGALLAQQVFRHKTRKVSFQVVFWFVVLLHQGFWVDQLFLGGHLLALF				NA	NA	NA	NA	NA
D1-36_02711	831	uppP	COG1968	Undecaprenyl-diphosphatase	ATGGATTTGTGGACTGCCTTTTCGGCATTGATTCTTGGCGTGGTAGAGGGCCTGACGGAGTTTCTGCCGATTTCCAGCACGGGGCACCAGATCGTTGTTGCGGATTTGCTCGGGTTTGGTGGCGAACGTTCGATGGCGTTCAACATCATCATCCAGCTCGGCGCGATCCTGGCGGTGGTCTGGGAGTTTCGGCGCAAGATTTTTGATGTGGTGTTGGGCCTGCCGACCCAGCCCGGCGCCCGTCGATTCACCGCCAACCTACTGATTGCCTTCTTTCCCGCGGTGATATTGGGCGTGCTGCTCGCCGACTGGATCCATCATTACCTGTTCAACGCCATTACCGTTGCGACGGCGCTGGTAGTGGGTGGGTTGGTGATGCTGTGGGCCGAGAAGCGCCAGCACACGGTGCACGCCGAAACCGTCGATGACATGACATGGAAGGACGCCCTGAAAGTCGGCCTGGCCCAGTGCATCGCGATGATTCCCGGCACCTCCCGCTCCGGGGCAACCATCATCGGCGGGCTGCTGTTCGGCCTGTCGCGCAAGACCGCCACGGAATTCTCTTTTTTCCTGGCAATGCCGACCATGGTCGGCGCGGCGGTTTACTCCGGCTATAAATACCGCGAATTGTTCGTTCCGGCGGATTTCCCCGTGTTTGCCATCGGCTTCATCACCGCGTTCATCTTCGCCATGATCGCGGTCAAGGGCCTGCTGCGCTTCATCGCCAGCCACAGCTATGCAGTCTTCGCCTGGTATCGGATTGCGTTCGGCCTGTTGATCCTGGCGACCTGGCAGTTTGGCTGGGTGGACTGGACAGCGGCCAAGCCATGA	MDLWTAFSALILGVVEGLTEFLPISSTGHQIVVADLLGFGGERSMAFNIIIQLGAILAVVWEFRRKIFDVVLGLPTQPGARRFTANLLIAFFPAVILGVLLADWIHHYLFNAITVATALVVGGLVMLWAEKRQHTVHAETVDDMTWKDALKVGLAQCIAMIPGTSRSGATIIGGLLFGLSRKTATEFSFFLAMPTMVGAAVYSGYKYRELFVPADFPVFAIGFITAFIFAMIAVKGLLRFIASHSYAVFAWYRIAFGLLILATWQFGWVDWTAAKP	PGPT0024165_2189	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024165-bacA-K06153	NA	NA
D1-36_02712	1635	mcpP_2	COG0840	Methyl-accepting chemotaxis protein McpP	ATGAATAGCTTGCGCAGTGTATCGATCAGCCGACGCTTGTGGCTCATCCTGGTCGTGGCCATCGTGATGTTGTTCACGCTGGGCGCGTTTATGCTCAAGCAGATCCACACGGACCTGTATCAGGCCAAGGTGCAGAAGACCCAACACGTGGTCCAGACCGCCAGCGGTGTGTTGAGCTACTACCATGGCCTGGAAACCGCCGGCACGCTGACGCGCGATGCGGCGCAGAAGCAGGCCCTCAGCGCCGTCCGCGGGCTGCGCTATGACCAGAACGACTACTTCTGGATCAACGACCTGACGCCGGTCATGGTCATGCACCCCACCAATCCCAAACTCGAAGGCCAGAACCTCTCGGCGATCCGCGACCCCAACGGGTTTGCGCTGTTCAACGAGATGGTCACCATCGCCAAGGCCAAGGGCGCCGGGATGGTCGACTACCTCTGGCCCAAGCCGGGCGCCGACGCGCCGGTCGGCAAGACGTCATACGTCAAACTGTTCGAACCGTGGGGCTGGATCATTGGCTCCGGTGTGTATGTGGATGACGTCCAGGCAGAATTCCAGTCCCAGGTGATCAAGGCCGCGTTGATCGGTTTGGCGATTACCTTGGTCATGGGCCTGCTGCTGACGCTGATCGTGCGCAGCATCGTCCGTCCGCTTCAGGACACCGTCAACGCCATGGCCAACATCGCCAGCGGTGAAAGCGACCTGACCCGCACCCTCGACACCCACGGTCAGGACGAAGTCACCCAGTTGGCGCGACACTTCAACGCCTTTACCGCAAAACTGCGGCAAGTCGTGGGCCAGTTGCAGAGCTCTGCCAGCGCGCTGGGGCAATCATCCAGCGAACTGGGCAACGACGCCGCGCAGGCGCAGCAGCGCAGCCAGCAGCAATCCCAACAGATGGAACTGGTGGCGACCGCCATCAACGAAGTGACCTATGGCGTGCAGGACGTCGCCAAGAACGCTGAACATGCCGCCAGCGAAATGCGCGACGCCGAATCCCAGGCCCAGCAAGGCCAGGTCAACATCGACGGCAGCCTGCAACAGATCGACCGGCTTTCGCAGACCATCGACCAGGCCGTGGAAGTGATCCGCACCCTGGCGAGTGAAAGCACCCAGATCGGCAGCGTGCTGGAGGTGATTCGCTCCATCGCCGAACAAACCAACCTGCTGGCGCTCAACGCCGCGATCGAAGCCGCCCGCGCCGGCGAACAAGGCCGCGGCTTTGCCGTGGTGGCCGACGAAGTGCGTCTGCTGGCCCAGCGCACGCAGAAATCCACGGCGGAAATCCAGGCCATGATCGAACGCCTGCAAAACCACTCCGAAGCCGCGGTGAAAGTCATCAGCGACAGCAGCCGGGCCTCGCAGTTGACCATCGAACAAGCGGGCCTGGCCGGTGCCAGCCTCAACGCCATCGGCCAAGCCTTGCGCAACCTCAACAGCCTGAACGCTTCCATCGCCAGCGCCACTCTTCAACAGGCCCATGTGGTGGAAGACATCAACCAGAACGTCACCCAGGCCGCCGGCCTCTCCCACAGCACCGCCGTGGCCGCCGAGCAGTCGAGCCTGGCGAGCGCGCGCCTGAAAGACTTGAGCGAACAGCTGAACGGGTTGCTCAAGCAGTTCCGGGTCTGA	MNSLRSVSISRRLWLILVVAIVMLFTLGAFMLKQIHTDLYQAKVQKTQHVVQTASGVLSYYHGLETAGTLTRDAAQKQALSAVRGLRYDQNDYFWINDLTPVMVMHPTNPKLEGQNLSAIRDPNGFALFNEMVTIAKAKGAGMVDYLWPKPGADAPVGKTSYVKLFEPWGWIIGSGVYVDDVQAEFQSQVIKAALIGLAITLVMGLLLTLIVRSIVRPLQDTVNAMANIASGESDLTRTLDTHGQDEVTQLARHFNAFTAKLRQVVGQLQSSASALGQSSSELGNDAAQAQQRSQQQSQQMELVATAINEVTYGVQDVAKNAEHAASEMRDAESQAQQGQVNIDGSLQQIDRLSQTIDQAVEVIRTLASESTQIGSVLEVIRSIAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRLLAQRTQKSTAEIQAMIERLQNHSEAAVKVISDSSRASQLTIEQAGLAGASLNAIGQALRNLNSLNASIASATLQQAHVVEDINQNVTQAAGLSHSTAVAAEQSSLASARLKDLSEQLNGLLKQFRV	PGPT0015710_20210	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_02713	564	pnuC	COG3201	Nicotinamide riboside transporter PnuC	ATGTCCGGGCTTGAACTGTTTGCCGCAGCCCTCGGCGTGATCGCTGTCTGGTTGACCGTCAAGCAGAACCCCTGGTGCTGGCCGATCGGCCTGGTCATGGTGCTGCTGTACAGCTGGATTTTCTTCGAAGTGAAGCTTTATTCCGACATGTTGTTGCAGGTGGTCTACGCGGTTCTGCAGCTGTATGGCTGGTGGCAGTGGACCCGCGCCGGGCGCGATCACGAGGGACGCCAGGTCACTCGCCTGGGCGCGCCGTCGGTGTGGCTCGGCCTTGCCATCGGTGCGGCGGGTAGCTTGATGTTGGGCGGTGCGATGGCCCATTGGACCGACGCCGCGCAACCCTGGCTCGACGCGGCGCTCACCGGGTTCAGCTTGGTTGCCCAGTGGTGGATGGCACAGAAACGCGTGCAGTGCTGGCCGTTGTGGATTGTCCTCGACGTGACTTTCGTGGGTTTGTTCATCTACAAGGATCTGTACCTGACCGCCGCCCTTTACGCCCTGTTTACCCTGCTGGCGGTGCAAGGCTGGCGGGAATGGCGTGCCGACCCGGCGCTGCGCACATGA	MSGLELFAAALGVIAVWLTVKQNPWCWPIGLVMVLLYSWIFFEVKLYSDMLLQVVYAVLQLYGWWQWTRAGRDHEGRQVTRLGAPSVWLGLAIGAAGSLMLGGAMAHWTDAAQPWLDAALTGFSLVAQWWMAQKRVQCWPLWIVLDVTFVGLFIYKDLYLTAALYALFTLLAVQGWREWRADPALRT				NA	NA	NA	NA	NA
D1-36_02714	525			hypothetical protein	ATGAAGGTGGTGGTGCTGACCGGTCCGGAATCCAGCGGCAAGAGCTGGTTGGCGGCCCAGTTGCAGACTTATTTCGGCGGCGTGCGGGTGGATGAATACGTGCGCCACTTCATGGAACAGACCCAACGCGAGACGTCCCTGGACGACATTACCGCTATCGCCACGGGGCAACTGGCCTGGGAAGATGCGGCCCGGGCGCGACAACCGGCCTTGTTGATCCTCGACACGCACCTGTTGAGCAATATCCTCTGGAGCCAGACGCTGTTCGGCGACTGCCCGGCCTGGCTCGAACCGGCCCTGCTGGCACGCCATTACGACTTACACCTGCTCCTCAGCCCCGAACAGGTCGAATGGATCGGCGACGGTTTGCGCTGTCAGCCTGCCCTCGCCGAACGGGTGATTTTTTTTGATGCCATTGAAGACTGGCTGGTTCGCCACCGGCAACCCTTCCTGAAAATCGAAGGTGACTGGGCGCAGCGCCGCGAGCAAGTTCTGGCTGCCGTCTCCCGGTTGCTCCAAGCGTGA	MKVVVLTGPESSGKSWLAAQLQTYFGGVRVDEYVRHFMEQTQRETSLDDITAIATGQLAWEDAARARQPALLILDTHLLSNILWSQTLFGDCPAWLEPALLARHYDLHLLLSPEQVEWIGDGLRCQPALAERVIFFDAIEDWLVRHRQPFLKIEGDWAQRREQVLAAVSRLLQA				NA	NA	NA	NA	NA
D1-36_02715	447			hypothetical protein	ATGGGGACTATCAACACAAGCTTGACCTGTCTGTTGCTGTTCGGCTGCGCCACCGCGGCAACGCTCAGCCTGCCGGCACAAGCCGAGGGCAACGGCGTCATCGTACTCGACCGTGACGTGCAGCCCGTCCATATCGGTCGCAACGGCGGCAAAGACCCCTACCCGACCACCGTCAACGCCAACCCTTCCGATCGGATCAACCAGGCAACCGCGAGCACTGAGCTCAGCGACGGCGAATTCGCCGGCATTGCCAGCGGCTCGACGATCCGCAACACGGTCAATCCGAATACCGGCGTGCAAGGCCTCAACGTGGTGACCAATCCCAACGGCATGCCGGGCATGAGCGCTGGACACGGTGGCGGTAGCGGCGGCGCCATTTCCGGCACCATCAACCGCTCGCTGAGTTCCGGCCTGGCCCCATTGGGCCGCTTGGCGGGAGGCCAGTGA	MGTINTSLTCLLLFGCATAATLSLPAQAEGNGVIVLDRDVQPVHIGRNGGKDPYPTTVNANPSDRINQATASTELSDGEFAGIASGSTIRNTVNPNTGVQGLNVVTNPNGMPGMSAGHGGGSGGAISGTINRSLSSGLAPLGRLAGGQ				NA	NA	NA	NA	NA
D1-36_02716	576			hypothetical protein	ATGAATTCGACTTGGCTCCTGATCGCGCTGCTCGGCTCATCCGCCGTGCTCGCCGATCCAGGCGTGGCGGTGAGCCATGCCGATCTGCAGAACTCCGGCAGTCGCTATACCGGCAACCTCAATGTCAACCAGGCGGCCGGGGACCGGACCCAACAGACCAACACCCGGGCCATTGCCATTGGCACCGACGCCCAGGCGACCACCGTCGTGCGGCAACGCCTCGACACGCCGGCCAGTGCATCGATGAACGCAAGCGCGCGCATTGGTGGCAGCTCATTCACCAACGGCAACGGCGTGCTGGGCGTCAACCAGTCCGCCGGCGCCAACAACCAGATGGCCAATGTCATGCGGGTGAGCATCAGTGCCCGCCCGCAAAGCATGGACGACAGCGCCCTGTCTCAACAGAACGTGGCGCTGGTACCGAACTCCGGAGCAACTGACACCCCAACCGGCAGCCGCCAGGTCGCAACGAGCGACCAGGCTTTCACCGGCAGCCGAGGGGTTATCCAGGTGCATCAGAGTGCCGGGGTGGGGAACCGCATGGCTAACACCCTGAGCATCCGGGTCGCTGACTGA	MNSTWLLIALLGSSAVLADPGVAVSHADLQNSGSRYTGNLNVNQAAGDRTQQTNTRAIAIGTDAQATTVVRQRLDTPASASMNASARIGGSSFTNGNGVLGVNQSAGANNQMANVMRVSISARPQSMDDSALSQQNVALVPNSGATDTPTGSRQVATSDQAFTGSRGVIQVHQSAGVGNRMANTLSIRVAD				NA	NA	NA	NA	NA
D1-36_02717	978			hypothetical protein	ATGAAACCCACAATGGCGCTCAAACCATTGGTTTTCGCTCTCGCCGCTGTCATGGCAATGGCTGCACAGGCTGACGGAAACGGTCACGGCAATGGTCATGGCAACGGCCATGGCAACCACGGCCCTAAAGGGCCAACGCTGGAACAACTGCTCTCCATCAGCGCCGGCGCTGGGGCCACGGTGCTGGATGTGCAGAACAGTGACGGCAACGAAGTGACCAACCAGGCGACCCGAAACACCGCCGAGGCCACTGATTCCCTCAATGGCAGCAACGGCAACATGGGCGCCAACATCGCCGCCGGGGATGGCAACCAGCAGGACAATGCCGCCGCACTGGCCACCGCCGATGAAAGCTTCATCTTCGGCTCGGCTGTCGCCATGTCCAGCGCCACGCAAGTCAATAACAACAACTACGTCAAGAACAACTCCACGCTGAACAACGCGTCGCTCACCAACGCGGGCAACAACGGCTCCGGCAACATCGGCATCAACGTGACCGCCGGCAACTTCAACCAGCAGAAAAACAACCTGGCCATCGCTGTGTCGGGCGGCCGGGTGGCTCAAGCCGCTGCGTCGGCTGACCAGTCTTCCACCGGCCTGGTGGTCGACAACAAAGGCGTGAAGAAAAACGAGGTTGTCACCCTTACCAACAGCTACGAGGCTTCTGGCACCTTCAAGGCCAAAGGCAACGGTACCGTCGAAGATGACGGCGGCTGGGGCAACAGAGGCGGTTACGGTGGCGGTCACGACGACGACAAGTTCAAGTTCTCCGCCGTCGGCACCTTCGAACTGGCCGGCAGCAACACCCAACAAGTGTTGACCCGCGACGGCTGGAAAAACCCTGTGATCAACAACGCAACCATGACCAACTCCATGAACGGCTTCTCCGGCAACGGCGGCGCCAACGTGTCGGCGGGCGTGGGCAATCAGCAGAGCAACTCGCTGTCGATTGCTGCGGGTTGCAAGGCCTGCATGTAA	MKPTMALKPLVFALAAVMAMAAQADGNGHGNGHGNGHGNHGPKGPTLEQLLSISAGAGATVLDVQNSDGNEVTNQATRNTAEATDSLNGSNGNMGANIAAGDGNQQDNAAALATADESFIFGSAVAMSSATQVNNNNYVKNNSTLNNASLTNAGNNGSGNIGINVTAGNFNQQKNNLAIAVSGGRVAQAAASADQSSTGLVVDNKGVKKNEVVTLTNSYEASGTFKAKGNGTVEDDGGWGNRGGYGGGHDDDKFKFSAVGTFELAGSNTQQVLTRDGWKNPVINNATMTNSMNGFSGNGGANVSAGVGNQQSNSLSIAAGCKACM				NA	NA	NA	NA	NA
D1-36_02718	681			hypothetical protein	ATGCGTGCGAGAGCGCTTTGCCTGTGTCTATGCTTTGCCTGCGCGAGCGAAGCCGCGCAGATGCCCGTTGCCGCCCTGCCTGGCGGCATGCTCGTCTACAAACCGGTGCAGAGCGTGCGCGAACGCAAGTTCAGCGACATCGTCGAGCAGAAAACCGACTTCAGCTGCGGTGCCGCCGCACTGGCCACCGTGTTGCGCCAGGCCTATTGGCTCGACGTGGATGAAGAACAGGTTATCAAGGGCATGCTGGTCAATGCCGACCACGACCTGGTTCGTACCCAGGGCTTCTCCATGCTGGACATGAAACGCTACGTCGAAACCATCGGCATGCGCGCCCGGGGCTATCGGATACCGCCGGAGAAACTTTCCGCGGTGACGATTCCAGTCGTGGTCCTGATGGATATACGCGGCTACAAGCACTTCGTGGTACTGCAGCGATCCGACAAGCAATGGGTCTACATCGCTGACCCGGTGCTGGGGCACAAACGCTACGCCCATGACGAATTCGTCAAAGGCTGGAACGGCATCGTCTTCGCCATCGTCGGCCCCGGCTACGACAAGACCAACGCGTTGCGCAGCCCACCGCAACCCCTGACGGCACGCAACAAACTGGACGGCTTCAACCCGGTCAAGGACGCGGAACTAATGGATTTCGGCTTCATTCAGAGCGATTTTTTCTAA	MRARALCLCLCFACASEAAQMPVAALPGGMLVYKPVQSVRERKFSDIVEQKTDFSCGAAALATVLRQAYWLDVDEEQVIKGMLVNADHDLVRTQGFSMLDMKRYVETIGMRARGYRIPPEKLSAVTIPVVVLMDIRGYKHFVVLQRSDKQWVYIADPVLGHKRYAHDEFVKGWNGIVFAIVGPGYDKTNALRSPPQPLTARNKLDGFNPVKDAELMDFGFIQSDFF				NA	NA	NA	NA	NA
D1-36_02719	747			hypothetical protein	ATGAAAACCTCATACTGGCTCACGCTGGCCTGCCTGGCCGCAACGACGTCGGGTCTTGCCCACGCCGGTTTCAACCCCATCGAAGTCAAGGATCAGGAACTCGCCGAGCTTCGGGGTCGTTATGTCATGCCTGGGCGAGTCATCAGCTTTGGCATCGTCATGAGCAGCACCTGGCGGAACGCCAGTGGCGACGTGATCGGCGCGTCAAGCTCCATGCAGATCCAGGCCTCGACGGTCAAACCGCAGTTCTATGTGTCCACCATCAAGCAGACCGGCAACGGCAGCGTCCCGGAACAGGGCAACGGCACGGTCACCGGCGGCGCCGGCCTGGGCTCGGGCCAGGGCGTGACCCAAAGCGTGCGAGCCGCGGGTGACGGCAACACGGCCTATAACAACGTCAGCATCAACGTGAAGGAAAGCAGCCACGCCCCTGCCCTGGCCCCCTCGCAAGGCCAACTGTTGACCAAGGGCCAGACCATCAGCGGCAGCAACGCCGCCGGCAGCGTCGCTGTCACCGCGACCGGCAGCGGCGTGCAGATGGCGATCCAGGCCAACCATAACCAGGGCAATACCCTGCAGCAGGTGGCCCAAGGTGGCTTGTTGCAGAACACCCGCCTGCTGGGTAACAGCAACCTGGTCAACAACATGACCCAGCTCAATGTCGTGCTGAACAACAATGGCCCCAGCACCGGAGCCCTGGACTGCAACCTTACGCAGCTGCGCGGCCTTCGAAACCTCGGATATTGA	MKTSYWLTLACLAATTSGLAHAGFNPIEVKDQELAELRGRYVMPGRVISFGIVMSSTWRNASGDVIGASSSMQIQASTVKPQFYVSTIKQTGNGSVPEQGNGTVTGGAGLGSGQGVTQSVRAAGDGNTAYNNVSINVKESSHAPALAPSQGQLLTKGQTISGSNAAGSVAVTATGSGVQMAIQANHNQGNTLQQVAQGGLLQNTRLLGNSNLVNNMTQLNVVLNNNGPSTGALDCNLTQLRGLRNLGY				NA	NA	NA	NA	NA
D1-36_02720	1284			hypothetical protein	ATGTATCGATCCGTATCGTTGCGCGCTGTGATGTGTTTAAGCACGATGTTCCCGGCAACTCTGGTGCAAGCTGCACCGGACTCGGACATCGAGGCCCTGAAACAAGAACTTCTAGAGCTCAAGCAACGGTACGAGGTCCAGCAAAAAGCCCTGGCGGTCCTCGAACAACGCGTCCGCCAGGTGGAAGACCAACCCACCGCCCCGCCGCCCAAGCGCCTGGCTAAATCCCCGGCCGACATGAAAGGCAACCAGGGCGTGGCGGGCAGCGGCGCGGCCAGTTCAGGAGGCAGCGGTTACGGACAGTCCCTGGCCGACGATTCGCAGCCGGCCCAGAGCGTCTCCAACCTCTACGATGAGGCCAGCGGCTTCTTCGGCGGCGGAAAATTCAGCTTCGAAACCGGCGTGACTTATTCGCGCTACGACACGCGACAGCTGATCCTCAATGGTTTTCTGGCCCTGGATTCGATTTTCCTGGGCAATATCAACCTCGATCGGATCAAGGCCGACACCTGGACGCTGGACCTCACCGGTCGCTACAACTTCGACAACCGCTGGCAGTTCGACCTCAATGTGCCGGTGATCTATCGCGAATCAACCTACCAGTCCGGTGGCGCCAATCAAGGGGCCGCCGGGGTGACCAGCGAAGAAACCGTCACCCGCGACCCGACCATCGGCGACGTGAATTTCGGCATCGCCTACAAATTCATGGATGAATCGGTCAGCAGCCCGGATGCCGTGGTGACTCTTCGCGTCAAGGCACCCACCGGCAAGGATCCGTTTGGCATCAAGCTGCGCCAGTCCCAGGCCAACACCAACCTGTTCGTTCCCGAAGACTTGCCCACGGGCAACGGCGTCTGGTCGATCACCCCGGGCATCTCCCTGGTCAAGACGTTCGATCCGGCCGTGCTGTTCGGCAGCCTTTCCTACACCCACAATTTCGAAGAATCCTTCGACGACATCAGCTCGACCGTCAACCAGGAGGTGCCTGGCAAGGTGCGGATCGGCGACAGCTTCCAGATCGGCGCGGGTATCGCCTTTGCCCTGAACGAGAAAATGAGCATGTCGTTTTCGGTCTCCGACTTGATCCAGAAGAAAAGCAAGCTCAAGCAGGACGGCGGGGATTGGGAATCGGTGGTGTCCAGCGACGCCAACGCGGGCTACTTCAACATCGGCATGACCCTGGCCGCCAGCGACAACCTGACCATCGTGCCCAACCTGTCCATCGGGCTGACCGACGACGCACCGGATTTCACCTTCAGCCTGAAATTCCCGTATTACTTCTGA	MYRSVSLRAVMCLSTMFPATLVQAAPDSDIEALKQELLELKQRYEVQQKALAVLEQRVRQVEDQPTAPPPKRLAKSPADMKGNQGVAGSGAASSGGSGYGQSLADDSQPAQSVSNLYDEASGFFGGGKFSFETGVTYSRYDTRQLILNGFLALDSIFLGNINLDRIKADTWTLDLTGRYNFDNRWQFDLNVPVIYRESTYQSGGANQGAAGVTSEETVTRDPTIGDVNFGIAYKFMDESVSSPDAVVTLRVKAPTGKDPFGIKLRQSQANTNLFVPEDLPTGNGVWSITPGISLVKTFDPAVLFGSLSYTHNFEESFDDISSTVNQEVPGKVRIGDSFQIGAGIAFALNEKMSMSFSVSDLIQKKSKLKQDGGDWESVVSSDANAGYFNIGMTLAASDNLTIVPNLSIGLTDDAPDFTFSLKFPYYF				NA	NA	NA	NA	NA
D1-36_02721	1326	atoC_1	COG2204	Regulatory protein AtoC	ATGATCGAAGCCAGTGCGTTGCGTCGCCTTCTCGTGGTTGACCCTTGTGATGATTGCCATCGCCTGATGCCAGGCTTGCGCGCCATCGGCTGGGATGTCGACAGCTGTTCCCTTGAGCATGCCAGCGACCGGAGCTGTGACGTCGGCCTCTTGCGCTTGCAGCCCTTCCATCTGGAGCGGCCGGAAGCGGTCAAGGAACTGATCAGCCGCAGCGGGACTGAATGGATCGCCGTGCTCAGCCAGGAAGTGCTGCGCCTGCAGAACGTCGGGGATTTTGTCTGCGAATGGTTCTTTGACTTCCACACCCTGCCGTTCGATGTGTCCCGGGTCCAGGTGACGCTGGGGCGGGCGTTCGGCATGGCGCGGTTGCGGGGGCAGGGCTCTGTCCACATCGATCAGCCTGAACACGAGCTGCTGGGCGACAGCAAGCCAATTCGCGAGCTGCGCAAGTTACTAAGCAAACTGGCGCCGGCTGAATCGCCCGTACTGATTCGCGGCGAGAGCGGCACCGGCAAGGAGTTGGTGGCGCGCACCCTGCATTGCCAGTCTCATCGGCGTAACAAACCGTTCATTGCGATCAATTGTGGCGCGATCCCGGAGCATCTGATCCAGTCCGAGCTCTTTGGCCACGAGAAGGGCGCCTTCACCGGCGCCCATCAACGCAAGATCGGACGGATCGAAGCCGCCCACGGTGGCACGTTGTTCCTCGACGAAATTGGTGACTTGCCGCTGGAATTGCAGGCCAATCTGCTGCGATTCCTCCAGGAAAAACACATCGAGCGAGTCGGTGGCAGCCAGCCGATTGCCGTTGATGTCAGGGTGTTGGCGGCGACACATGTGGACTTGGAAGCGGCCATCGAGCTCCGGCGTTTCCGAGAGGATCTGTACTATCGCTTGAACGTTCTGCAAGTCGTGATGGCGCCGTTGCGGGAGCGTCATGGCGACTTGGCGATGCTGGCGAGCCATTTTTCCCATTTCTACAGTCACGAAACCGGTCGCCGACCTCGCAGTTTCAGCGAGGACGCATTAGTGGCGATGGGGATGCACGACTGGCCCGGCAACGTGCGCGAGCTGGCCAACCGCGTCCGTCGCGGCCTGGTACTGGCGGAAGGGCGACAGATCGAAGCCCGGGACCTGGGCCTGGCCAGCCATCAGGGCGTCGTCGCCCCGATGGGTACTCTGGAAGACTACAAGACCCGCGCCGAACGCCAGGCCTTGAGCGACGTGCTCAATCGCCACAGCGACAACCTGAGCGTGGCGGCCCGTGTGCTGGGCGTGTCGCGTCCGACGTTCTATCGGCTGCTGCACAAGCACCAGATTCGCTGA	MIEASALRRLLVVDPCDDCHRLMPGLRAIGWDVDSCSLEHASDRSCDVGLLRLQPFHLERPEAVKELISRSGTEWIAVLSQEVLRLQNVGDFVCEWFFDFHTLPFDVSRVQVTLGRAFGMARLRGQGSVHIDQPEHELLGDSKPIRELRKLLSKLAPAESPVLIRGESGTGKELVARTLHCQSHRRNKPFIAINCGAIPEHLIQSELFGHEKGAFTGAHQRKIGRIEAAHGGTLFLDEIGDLPLELQANLLRFLQEKHIERVGGSQPIAVDVRVLAATHVDLEAAIELRRFREDLYYRLNVLQVVMAPLRERHGDLAMLASHFSHFYSHETGRRPRSFSEDALVAMGMHDWPGNVRELANRVRRGLVLAEGRQIEARDLGLASHQGVVAPMGTLEDYKTRAERQALSDVLNRHSDNLSVAARVLGVSRPTFYRLLHKHQIR	PGPT0004315_972	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ZINK_RESISTANCE	ZINK_RESISTANCE-ZINK_HOMEOSTASIS,PGPT0004315-zraR|hydG-K07713	NA	NA
D1-36_02722	267			hypothetical protein	ATGAACGCCCCGCTCCGTATCAACGAAGCTCTTTTGATTGCCGACCGCGCATTCCGTCCTTTCCAATGCGTGGCCTGGGCCCCACAAGACGGTAACGGCGAACTGAGCCTGACCGTCATTGACCGCACCAATACCCATATCGGTCGTACCCAGATTCCAAGTAGCGCCTACACCGACCCGGCGCAACTTGCCGACCTGTTGAAACAGGCCCGTGCCGAACTGAGCCAGGAAGGCTACAAACTTCAATCCTGGTCGATGCCGGAATAA	MNAPLRINEALLIADRAFRPFQCVAWAPQDGNGELSLTVIDRTNTHIGRTQIPSSAYTDPAQLADLLKQARAELSQEGYKLQSWSMPE				NA	NA	NA	NA	NA
D1-36_02723	1182	nhaA_1	COG3004	Na(+)/H(+) antiporter NhaA	ATGGGGAATAGCTCAACTCAGGGCGGTGATACGCGCATGGCCACGCCACTGGAACGCTTCATGCAATCGGAGTCCTCGGGCGGCATCGTGCTCATGTTTTCGGCGCTCGCCGCGCTGATCGTGGCTAACAGCCCACTGTTCACCACTTATACCAGCGTACTGCATGCCTCTTTTCTGGGTATGTCTGTTGAACACTGGGTCAACGATGCGCTGATGGCGATATTTTTTCTATTGGTAGGCCTCGAGATCAAGCGTGAGATGCAGATTGGCGAACTCGCCAAATGGAGCCAGAGGGCACTGCCGGGTTTTGCCGCCCTGGGGGGCATGATTGTCCCCGCGCTTATCTACGCCTGGGTCAATAGGCATTCTTCTGAAACGTTGGCGGGTTGGGCCATCCCCGCAGCAACCGACATTGCATTTGCGCTGGGTGTGCTCTCGTTGCTGGGCAACCGAGTGCCGATGTCTCTCAAGGTCTTCCTCTCAGCCCTTGCCATTCTGGATGACCTGGGCGCGGTCGCTATCATTGCCATGTTCTATACCAGCGGCCTGGACGTGACCATGCTTGCGGCTTCCGCTGGGGTGATTGCAGTGTTGCTGGTCATGAACAAGGCCGGGGTAACCAGACTGTTGCCCTATCTGGCGCTGGGTTTGGTGTTGTGGGTGCTGGTTCTAAAATCCGGTGTACACGCAACGCTGGCGGGGGTCGCACTTGCCTTTTGCATCCCGCTGAACAAAGACGCCCCAGCAGAGGATTCCCCATCCCTCAAGCTTGAACGACGGTTATCGCCGTGGGTCGCTTTTCTCATCATGCCGATCTTCGGTTTTGCCAATGCCGGCGTCTCCCTGGCGGGTGTGTCATTGAGCAATCTGCTGGATCCCGTGCCGTTGGGGGTCGCCGCGGGACTGTTGCTGGGCAAACAGCTCGGCGTCTTCACCTTCGCGCTGGTGGCGATCAAGGCCGGGCTGGCGCAAATGCCGACCCACAGTTCGTGGCGGCAAGTATATGGCGTGGCGTTGTTGTGCGGGATCGGGTTCACGATGAGCTTGTTTATCGGCAACCTGGCGTTCCCCGGTGCGCAGTTGTTGATCGATGAAGTGAAGGTTGGCGTATTGGCTGGTTCTACATTGGCTGCACTTGCGGGCATTCTGGTGTTGCGGTTTTGCGCCACTTCCAAGGCTTGA	MGNSSTQGGDTRMATPLERFMQSESSGGIVLMFSALAALIVANSPLFTTYTSVLHASFLGMSVEHWVNDALMAIFFLLVGLEIKREMQIGELAKWSQRALPGFAALGGMIVPALIYAWVNRHSSETLAGWAIPAATDIAFALGVLSLLGNRVPMSLKVFLSALAILDDLGAVAIIAMFYTSGLDVTMLAASAGVIAVLLVMNKAGVTRLLPYLALGLVLWVLVLKSGVHATLAGVALAFCIPLNKDAPAEDSPSLKLERRLSPWVAFLIMPIFGFANAGVSLAGVSLSNLLDPVPLGVAAGLLLGKQLGVFTFALVAIKAGLAQMPTHSSWRQVYGVALLCGIGFTMSLFIGNLAFPGAQLLIDEVKVGVLAGSTLAALAGILVLRFCATSKA	PGPT0013935_2105	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013935-nhaA-K03313	NA	NA
D1-36_02724	822		COG0561	Putative phosphatase	ATGAGTAATCAGCTGAAACGCCCCATCCGCTTCCTGCTTAGTGATATGGACGGCACCTTACTGCTGCCTGATCACAGCCTCAGCCAGCGCACCATCGCCGCCGTCCGCTCGTTGCGCGAGGCCGGCGTGTTGTTCAGCCTCGCCACCGGACGGCCGCCACGGGCAATGTTGCAGCAGATCGAGGCGCTGGGCGTCGACCTGCCGACAGCAGCGTTCAACGGCGGTACGCTGGTGCATCCGGACGGCACCTTCCTGGCCGTGCATTACCTGCCGCCCGAGGCGGCGCTGGCCACCCTGGCCTTGTACGCCGATCAGCCCGGCATCGAGGTCTGGGTGTTTGCCGACGGCGATTGGCTGGTGCGCGACGCCAATGGGCCCATGGTGCCGGTGGAAACCCGTGGCCTGGGTTATCCGCCTGTCGAAGTGGACAGTTTCGAACCCTATCTGGAGCGCATTGACAAGATCGTTGCGACAAGCGCCAACACAGACTTGCTGGTGGAGCTGGAGGCGCGCTTGCACCCACTGCTCAATGGCCAGGCCCAGGTATCGCGTTCGCAACCGATCTATCTGGACGTGACCGCGATGAAGGCGAACAAGGGGGAGGCGCTGTCGACCCTGGCCGAGTTCCTCGGCGTGCCGCTGGAGCAGACCGCCGCGATGGGGGACGGTGGCAACGACCCGGCGATGTTCCACCGCGCGGGGCTTTCAATTGCGATGGGGCAGGCCGAAGAGGCGATCAAGCGCCAGGCTGACGTGGTCACCGCAGCCAACACCGAGGACGGTGCGGCGTTAGCGATCGAGCGGTACATCCTGCCGCGGTGA	MSNQLKRPIRFLLSDMDGTLLLPDHSLSQRTIAAVRSLREAGVLFSLATGRPPRAMLQQIEALGVDLPTAAFNGGTLVHPDGTFLAVHYLPPEAALATLALYADQPGIEVWVFADGDWLVRDANGPMVPVETRGLGYPPVEVDSFEPYLERIDKIVATSANTDLLVELEARLHPLLNGQAQVSRSQPIYLDVTAMKANKGEALSTLAEFLGVPLEQTAAMGDGGNDPAMFHRAGLSIAMGQAEEAIKRQADVVTAANTEDGAALAIERYILPR	PGPT0017727_232	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_GLUCOSE_DEGRADATION,PGPT0017727-yidA-NA	NA	NA
D1-36_02725	1521	zwf_1	COG0364	Glucose-6-phosphate 1-dehydrogenase	ATGACCTCGATCGGCAGGAAGTCCAAGGCTCAACCTGCGCCACCGACCACGCTGTTCCTGTTCGGTGCCCATGGAGACCTGGTCAAGCGCTTGCTCATGCCGGCGCTTTACCACCTCAGCCGTGACGGGCTGTTGGGGGATGGCCTGCAGATCGTTGGTGTTGACCACAATGCCATCAGCGATGTGGATTTTGCAAAAAAGCTCGAAGATTTCATTCGTAGCGAAGCGGCGAGCAAGGGCGGCGATCCCGACCGCGCGCTCGATCCGACGCTGTGGGCCAGGCTGGCCCAAGGCATCAGTTACGTCCAAGGTGACTTCCTCGATGACAGCACCTACGAAGCGCTGGCGGCGAAAATCGCCGCCAGCGGCACTGGCAATGCGGTTTTCTATCTGGCGACCGCGCCACGTTTTTTCAGTGAAGTGGTCCGCCGCCTTGGCGCGGCCGGGCTGCTTCAAGAGCAGGATGACGCCTTCCGGCGCGTGGTGATCGAGAAGCCGTTCGGCTCCGACCTGCACACCGCCGAGGCGCTCAATGCCTGCCTGCTAAAGGTCATGGGCGAAAAGCAGATCTATCGGATCGACCATTACCTGGGCAAGGAGACGGTACAGAACATTCTGGTCAGCCGTTTCTCCAACAGCTTGTTCGAGGCGTTCTGGAACAACCACTACATCGACCACGTGCAGATCACCGCCGCCGAAACCGTTGGCGTCGAAACCCGTGGCAGTTTTTATGAGCACACCGGCGCCCTGCGGGACATGGTGCCCAACCACTTGTTCCAATTGCTGGCGATGGTCGCCATGGAACCGCCGGCCGCTTTCGGTGCCGACGCGGTGCGCGGCGAGAAGGCCAAGGTGGTGGGGGCGATCCGCCCCTGGTCGGTGGAACAGGCGCGCGCCAATTCGGTACGTGGCCAATACACGGCCGGGGAAGTAGGCGGCAACGCAGTGAAGGGTTACCGCGAGGAAACCAACGTCGCGCCCGACAGCAGCACCGAAACCTACGTCGCCCTGAAAGTCATGATCGATAACTGGCGGTGGGTCGGCGTGCCGTTCTACCTGCGCACCGGCAAGCGCATGAGCGTGCGCGACACGGAAATCGTTATCTGCTTCAAACCGGCGCCTTACGCTCAGTTCCGTGACACTGAAGTCGACGAATTGCAACCTACCTACTTGAGAATCCAGATCCAGCCTAACGAAGGCATGTGGTTCGACCTGTTGGCCAAGCGGCCCGGGCCGGCCCTCGAAATGGCGAATATCGAACTGGGTTTTGCCTACAAGGATTTCTTCGAAATGCAGCCGTCCACGGGTTACGAAACCCTGATCTACGATTGCCTGACAGGCGACCAGACGTTGTTCCAGCGCGCCGACAACATCGAAAACGGCTGGCGCGCGGTGCAGCCGTTCCTCGACGCGTGGCGAGAAGACGCAACGGTGCAGCCGTACAAGGCCGGGGAGGACGGCCCGGCGGCCGCTGATGATCTGCTGACTCGCGACGGTCGCGTCTGGCATGGCCTCGGATGA	MTSIGRKSKAQPAPPTTLFLFGAHGDLVKRLLMPALYHLSRDGLLGDGLQIVGVDHNAISDVDFAKKLEDFIRSEAASKGGDPDRALDPTLWARLAQGISYVQGDFLDDSTYEALAAKIAASGTGNAVFYLATAPRFFSEVVRRLGAAGLLQEQDDAFRRVVIEKPFGSDLHTAEALNACLLKVMGEKQIYRIDHYLGKETVQNILVSRFSNSLFEAFWNNHYIDHVQITAAETVGVETRGSFYEHTGALRDMVPNHLFQLLAMVAMEPPAAFGADAVRGEKAKVVGAIRPWSVEQARANSVRGQYTAGEVGGNAVKGYREETNVAPDSSTETYVALKVMIDNWRWVGVPFYLRTGKRMSVRDTEIVICFKPAPYAQFRDTEVDELQPTYLRIQIQPNEGMWFDLLAKRPGPALEMANIELGFAYKDFFEMQPSTGYETLIYDCLTGDQTLFQRADNIENGWRAVQPFLDAWREDATVQPYKAGEDGPAAADDLLTRDGRVWHGLG	PGPT0017380_2165	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017380-zwf-K00036	NA	NA
D1-36_02726	981		COG1023	6-phosphogluconate dehydrogenase, NAD(+)-dependent, decarboxylating	ATGCAACTCGGGATCATCGGACTGGGCCGCATGGGCGGCAATATTGCACGGCGCCTGATGCTCAATGGGCACACCACCGTTGTTTATGACCGCAATGCCGCTTTCGTCGAAAACCTGAGCCAGGAAGGCGCGACGGGGGTCGCGGACCTGTCGGCGCTGGTCGCCGGGCTGCAAAAGCCTCGGGCGGTCTGGGTCATGCTGCCGGCCGGCGCACCCACCGAGGACACCATCAACGTGCTCAGCGAACTGCTGGAGCCGGGCGACGTGGTCATCGATGGCGGTAACACGTATTACAAGGACGACATCCGCCGCGCCCAGACGCTGTCGGAAAAAGGCTTGAACTACATTGATGTCGGCACCTCCGGTGGCGTCTGGGGGCTCGAGCGCGGTTACTGCATGATGATCGGTGGCGACGCCGACGTCGTTCGTCGCCTGGACCCGCTGTTTGAAAGCCTCGCGCCAGGCATGGGCGATATTCCACGCACCCGTGACCGCAAGTCCGACGACGATCGCGCCGAACGAGGCTATATCCATGCGGGCCCGGCCGGATCTGGGCACTTCGTCAAGATGATCCACAACGGCATCGAATACGGAATGATGCAAGCGTTCGCCGAGGGCTTCGACATCCTCAAGACAAAATCCAGCGAAAGCCTGCCGCCTGAACAGCGCTTCGACCTGAACCTGGCCGACATCGCCGAAGTCTGGCGTCGTGGCAGCGTGGTGTCGTCCTGGCTGTTGGACCTGACCGCCGATGCATTGGCCAGCGATCCGAAGCTGGATGGCTTTTCCGGCGAAGTGGCCGACAGTGGGGAAGGGCGCTGGACCATCGAGGCCGCCATCGAGCAAGCGGTGCCGGTGCCGGTACTGTCCAGTTCGCTGTTTGCCCGTTTCCGCTCCCGTCAGCAGGCGACCTATGGCGACAAGATGCTCTCGGCCATGCGCTTTGGCTTCGGCGGCCATGTGGAGACTACGAAAAAATGA	MQLGIIGLGRMGGNIARRLMLNGHTTVVYDRNAAFVENLSQEGATGVADLSALVAGLQKPRAVWVMLPAGAPTEDTINVLSELLEPGDVVIDGGNTYYKDDIRRAQTLSEKGLNYIDVGTSGGVWGLERGYCMMIGGDADVVRRLDPLFESLAPGMGDIPRTRDRKSDDDRAERGYIHAGPAGSGHFVKMIHNGIEYGMMQAFAEGFDILKTKSSESLPPEQRFDLNLADIAEVWRRGSVVSSWLLDLTADALASDPKLDGFSGEVADSGEGRWTIEAAIEQAVPVPVLSSSLFARFRSRQQATYGDKMLSAMRFGFGGHVETTKK	PGPT0017385_3934	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
D1-36_02727	174			hypothetical protein	ATGGGCCCTGTCGTTACCGCACGTCCTCCTCAGACCCTTTACGTGACCATTCGTCGCGACGAACTACGCCTGCTGAAAGAAGAGCGTGATTTGCTGCTTGATGAAGTGACGCAGTTGCGCTTGCAGTTGCAACACGCACAGCTTCCTTACCAGAGCCAGGCTTTGGCTCGCTGA	MGPVVTARPPQTLYVTIRRDELRLLKEERDLLLDEVTQLRLQLQHAQLPYQSQALAR				NA	NA	NA	NA	NA
D1-36_02728	1740	eptC	COG2194	Phosphoethanolamine transferase EptC	ATGAGTGTGTTCAAACGCAGCAAAACGACTGCGAAAAGTTTCGATTGGGCCGGGTTCGGCTGGCTTTTTCTGTTCTTCTGGTATTTTTCCGGCATTACCCAATTGCTTATCCTGGCAAGCGATACCTCAGGTTTCACCGGGTTTCGCCAAGCCTTCGTCATGAGTGCGTTCTGGCTGGCGCCGCTGCTGCTGTTTCCGGCTCGCACGCGCCTGCTCGCCGCGGCGATCGGCGTGGTGCTGTGGGCATGCTCGATGGCCAGCCTGGGCTATTTCTTTATTTACCAGCAGGAATTTTCCCAAAGCGTCATCTTCATCATGTTCGAGTCGAACGTGAACGAAGCCGGCGAATACATGACCCAGTATTTCGCTTGGTGGATGGTGCCGGCGTTCCTTGCACACACCCTGGTTGGCTATTTCCTCTGGACACGCCTGCGCCCGGTCTATTTGCCCCGGGGCCAGGCGATGATCGCCGCCGGCCTGATCGTCGTTGCCGTCGTCGGTTACCCGTTGGTCAAGCAGACCCTGCGTACTGGCACGCTTGCCGGCGGTCTGGAGAAATTCGAGGATCGCATCGAGCCGGCCGTGCCCTGGCAGATGCTGGTGGCTTATCGTCGCTACGGTGAACAGCTGGAAAACATGCAAGGCATGCTTCACAGCACCAGCAAGATCGCGCCCCTGCGCAACCTCAAAGACAGCGCGGCCAACCAGCCCGCGACCCTGGTGCTGGTGATCGGCGAATCCACCAATCGCCAGCGCATGAGCCTGTATGGCTATCCGAGGGAAACGACGCCGGAGCTGGACAAGCTCAAGGATCAACTCGCGGTATTTGACAATGTCATCACCCCGCGGCCCTACACCATCGAAGCCTTGCAGCAGGTGCTGACCTTCGCCGACGAGGAAAGTCCCGACCTCTACCTCAGCACACCGTCACTGGTGAGCATGATGAAACAGGCCGGCTACAAGACGTTCTGGATCACCAACCAGCAGACGATGACCAAGCGCAACACCATGCTCACAACCTTCTCCCAACAGGCCGATGAGCAGGTCTACCTGAACAACAACCGCAACCAGAATGCCGCGCAATACGATGGCGACGTGATCGAGCCGTTCAACAAAGCCCTGGCGGACACCGCGCCACGCAAGCTGATCGTGGTTCACCTGCTCGGCACACACATGAGTTATCAATACCGCTATCCGCCGACCTTCAATAAATTCACCGATCGCCAGGGCGTACCCGCCGGCGTACGTGACGACCAGGTGCCGACCTACAACAGCTACGACAACGCGGTGCTGTACAACGACTTCGTCGTCTCCAGCCTGATCAAGGACTACGCCCGCACCGACCCCAACGGTTTCCTGTTGTACCTGTCGGACCATGGCGAGGACGTCTTCGATTCGCCAGGGCATGACACCCTGGGCCGCAACGAAGGCAAGCCGACCGCGCCGATGTACACCATTCCGTTCATGGCCTGGGCCTCGCCCAAATGGCGCGAAACCCATGACTGGAACTTCACCGGCGACCTGTCACGTCCTTACAGCAGCTCACACCTGATCCACACCTGGGCGGACTTGGCGGGCTTGAACTTCGATGAGCTGGACCGGAGCAAAAGCCTGGTCAGCAATTCGTTCACGGCGCGCCCATTGCTGATCGGCAACCCCTATCAAAGCCAGCATAAGGCGCTGATCGATTTCAGCCTCATGAAACCCAAGGGGCCGGCGGGCCAGGTCGTTTTGAAGTAG	MSVFKRSKTTAKSFDWAGFGWLFLFFWYFSGITQLLILASDTSGFTGFRQAFVMSAFWLAPLLLFPARTRLLAAAIGVVLWACSMASLGYFFIYQQEFSQSVIFIMFESNVNEAGEYMTQYFAWWMVPAFLAHTLVGYFLWTRLRPVYLPRGQAMIAAGLIVVAVVGYPLVKQTLRTGTLAGGLEKFEDRIEPAVPWQMLVAYRRYGEQLENMQGMLHSTSKIAPLRNLKDSAANQPATLVLVIGESTNRQRMSLYGYPRETTPELDKLKDQLAVFDNVITPRPYTIEALQQVLTFADEESPDLYLSTPSLVSMMKQAGYKTFWITNQQTMTKRNTMLTTFSQQADEQVYLNNNRNQNAAQYDGDVIEPFNKALADTAPRKLIVVHLLGTHMSYQYRYPPTFNKFTDRQGVPAGVRDDQVPTYNSYDNAVLYNDFVVSSLIKDYARTDPNGFLLYLSDHGEDVFDSPGHDTLGRNEGKPTAPMYTIPFMAWASPKWRETHDWNFTGDLSRPYSSSHLIHTWADLAGLNFDELDRSKSLVSNSFTARPLLIGNPYQSQHKALIDFSLMKPKGPAGQVVLK	PGPT0022455_129	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022455-eptC-K19353	NA	NA
D1-36_02729	495			hypothetical protein	ATGGAAGAAGCCAAGGAAATCCTTGTATTGCAAGCCAGCTACAGCAATCCGATCCATGCCGAAGCGATTTGCCACGTGCTCAACGGCTATGCCGAGGATCCGATGGGTGGCGGCCATTCGCTACCGGCCGAAGTGCTTGCGCATTTGCCCCAGGAGCTGGCCAAGCGCGCGCATGCCTTCAGTGTGCTGGCGTTCGTAAATGGTGAACCGGCAGGGTTGATCAATTGCTTCGAGGGTTTCTCGACGTTTGCCTGCCGACCGTTGGTGAACGTCCACGACGTTGCGGTGATGCCAGCGTTTCGCGGGCTGGGCTTGAGCCAGAAGATGTTGCAGAAAGTCGAAGATATTGCCCGCCAGCGTGGGTGCTGCAAGATCACCCTGGAAGTGCTGGAAGGCAACGCCGTGGCCCAGGCCAGTTATGCCAAGTTCGGTTTTGCCGCCGGCATGTTCGACCCGGCCCATGGCCGTATGTTGTTCTGGATCAAACCCCTGTAG	MEEAKEILVLQASYSNPIHAEAICHVLNGYAEDPMGGGHSLPAEVLAHLPQELAKRAHAFSVLAFVNGEPAGLINCFEGFSTFACRPLVNVHDVAVMPAFRGLGLSQKMLQKVEDIARQRGCCKITLEVLEGNAVAQASYAKFGFAAGMFDPAHGRMLFWIKPL				NA	NA	NA	NA	NA
D1-36_02730	1035	zapE_2	COG1485	Cell division protein ZapE	ATGGCCCTTGAGCAATGCCACAAGGCATTGCATGAGGGCCGCAAGTCGATCAAGGGCGTCTATCTGTGGGGGCCGGTCGGGCGCGGCAAGACGTGGCTCATGGACCGCTTCTATGAAAGCCTCAAGGTTCCGGCCCGTCGGCAACACTTCCACCATTTCATGGCCTGGGTGCATCAGCGCTCGTTCCAGCTCACCGGCACACCGGACCCGTTGCAGGCGCTTGCGCGGGAGTTGAGCCGAGAAGTGCGCGTGCTGTGCTTCGACGAGCTGTTCGTCACGGACATCGGCGATGCGATCATTCTTGGCCGCCTGTTCCAGGTCATGTTCGAATTGGGCATGGTTGTGGTCAGCACCTCCAACCTGCCGCCGGATGAACTTTATGCCAGCGGCCATAACCGGGAGCGATTCCTGCCGACCATTGCGTCCATCAAACGCTACATGCAAGTAGTTCCGGTCAACGGCTGGCAAGACCACCGCCAGCACCCGGGGGCGCTGCAGCAGCGCTACTGGGTGCGTGACCCGGCCCAGGCGGACCCTTTGGCGGAGGTCTTCGACCGGTTGAGCAAGGGGCAGGCACCTGTCAGTCAGCCGATCGAAGTCGGCCATCGCCAGGTCATGGCGCTCAAGGCTTGTGACAAGGTGCTCTGGAGCCGCTATCCGGATATCTGCGAACAACCGTTCTCGGCCGTCGACTTCATGGCGCTGTGCGACCGTTTCAGCGCCATCCTTCTCAGCGATGTCCCGTGCCTGAGCGCCGAACAGCGTGAAGGGCGTATCGCCCGTGGCACCGAGGACGGGGTGGAGCGGGTCGAGGCCGGCGACCGCGAGTTGCCGCAGCTGTCGATACACGACGATGGCGTCCGTCGGTTCATCGCCCTGGTCGATGAGTGTTATGACCGAAAGGTGCCGTTGTATCTGTCGGCCCAGGTTCCGATGGACCAGTTGTACACGGAGGGCTATCTGCAATTCCCGTTTCGCCGTACTCTCAGTCGCCTCCAGGAAATGCAATTGCAACGTTTCGGTCAGCTCGCCTGA	MALEQCHKALHEGRKSIKGVYLWGPVGRGKTWLMDRFYESLKVPARRQHFHHFMAWVHQRSFQLTGTPDPLQALARELSREVRVLCFDELFVTDIGDAIILGRLFQVMFELGMVVVSTSNLPPDELYASGHNRERFLPTIASIKRYMQVVPVNGWQDHRQHPGALQQRYWVRDPAQADPLAEVFDRLSKGQAPVSQPIEVGHRQVMALKACDKVLWSRYPDICEQPFSAVDFMALCDRFSAILLSDVPCLSAEQREGRIARGTEDGVERVEAGDRELPQLSIHDDGVRRFIALVDECYDRKVPLYLSAQVPMDQLYTEGYLQFPFRRTLSRLQEMQLQRFGQLA				NA	NA	NA	NA	NA
D1-36_02731	342			hypothetical protein	ATGTCCAATCCCGTCTCTTCCCTGGCGCCGGCCATCGCCGGCTACATTGCCGCCGCCAACGCCCGCGACAGCTCGGCGGTGACGCGTTTCTTTGCCGAAGACGCCAATGTGTTCGATGAAGGCAACCATCGGGTCGGCACCCGGGCCATCGCTCAATGGATGGAAGACACCGCGCGGCGCTACCAGCCACGGGTGGAAGTGCTCAACGTGCAGCAGCGTACCGGAAAGGTGCTGGTCCACAACCTGATCTCCGGGACCTTCCCTGGCAGCCCGCTCGAGTTGCGCTATACCTTCCGACTCGATGAGCAGGGGAAGATCAGCCGGTTGGATATTTCTGTCTAG	MSNPVSSLAPAIAGYIAAANARDSSAVTRFFAEDANVFDEGNHRVGTRAIAQWMEDTARRYQPRVEVLNVQQRTGKVLVHNLISGTFPGSPLELRYTFRLDEQGKISRLDISV				NA	NA	NA	NA	NA
D1-36_02732	717			hypothetical protein	GTGTCGCGAACCACTCGGCTGCTTACTTTGTTGCAAGTCTTGCGGGGCAAGCGATGCCCAGTCACGGCTGCGACATTAGCGGGCGAGTTGAAGGTCTCCGAGCGCACGCTTTATCGCGATATCGCCGAACTCACGGCCCTCGGCGCACCGATCCAGGGCGAGGCAGGCATCGGCTATGTGCTGCGCAGCGGCCTGTTCTTGCCGCCCTTGATGTTCACCGCCGATGAAATCGAGGCCATCGTGCTGGGTTTGCGTTATGTCGACCAGCGCGGCGACGAGGTGCTGGGCAAGGCAGCCGCCGATGCCCTGGCCAAGGTCGAGGCGGTGCTGGCGCCCGGTCTGCGCGATGCGCTGCACAACCCCACCGTATTACCGGGCCCGGCGGGCTACGGCTATCCGCAAAACACTGTCGAGCTGAATGTCTATCGCCAGGCCATTCGCACGCAGGCCAAGCTGCATATCGACTACGCCGATGTGAACAAGACCCCGAGCCAGCGCTTGATCTGGCCGCTGGCCCTGGGTTTTTTCAATGAGGCTCGAGTGGTGGTGGCCTGGTGCGAATTGCGTGGCGCCTATCGTACTTTTCGCACGGACCGGATTGCCTCGGCCGTCGTCCAGGGCGAGCGTTATCCAGGCAGGCGCAGTGACTGGCTGCGCGCCTGGTTTGCGCTGATGAATCTCGACGAGGCGGGGCGTTTCACTCCTGACAAAAACTGA	MSRTTRLLTLLQVLRGKRCPVTAATLAGELKVSERTLYRDIAELTALGAPIQGEAGIGYVLRSGLFLPPLMFTADEIEAIVLGLRYVDQRGDEVLGKAAADALAKVEAVLAPGLRDALHNPTVLPGPAGYGYPQNTVELNVYRQAIRTQAKLHIDYADVNKTPSQRLIWPLALGFFNEARVVVAWCELRGAYRTFRTDRIASAVVQGERYPGRRSDWLRAWFALMNLDEAGRFTPDKN				NA	NA	NA	NA	NA
D1-36_02733	471			hypothetical protein	ATGCGCACAATCCGCGGCTTGTCCTTCATTTTGATAGTGCTCAGCCTGAGCGCCTGCGCCCTCTTCCAGCAACGGGATCCGCTGAACATCAATGTGGTCGGTATCGAGCCGTTACCCAGCCAGGGCATGGAACTGCGCTTTGCGGTGAAACTGCGCTTACAGAACCCCAACGAAACCACTATCGAGTACAACGGCGTCGCGCTGGACCTGGAAGTCAACGGCCACACCCTGGCGACGGGGGTCAGTGACCAGAGCGGCTCGATCCCGCGTTTCTCCGAAGGCGTATTGAGCGTGCCGGTGAGCATCTCGGCCTTTTCGGTGCTGCGCCAGACGCTGGGCCTGAGCCAGACCCAGCGCCTGGACAACCTGCCCTATGTACTCAAGGGCAAGCTCGCCGGCGGTGTATTCGGCACGATGCGCTTCGTCGACCGCGGGACCCTTGACTTGCCAGGCGCCTCGGCCACCTGGTGA	MRTIRGLSFILIVLSLSACALFQQRDPLNINVVGIEPLPSQGMELRFAVKLRLQNPNETTIEYNGVALDLEVNGHTLATGVSDQSGSIPRFSEGVLSVPVSISAFSVLRQTLGLSQTQRLDNLPYVLKGKLAGGVFGTMRFVDRGTLDLPGASATW				NA	NA	NA	NA	NA
D1-36_02734	924		COG0388	Nitrilase	ATGCCCAAATCCATCGTCGCTGCCCTGCAAATCGGCTCGCTACCGGGTGGCAAAGCCGAAACACTGACGCAGATCCTTTCCTATGAAGAGGCAATTCGCGACGCGGGCGCTCGTTTGGTCGTAATGCCGGAGGCGCTGCTGGGTGGTTATCCCAAGGGCGAGGCTTTTGGAACGCAACTGGGCTATCGGCTACCGGAAGGACGCGAGGCGTTCGCTCGCTACTTCGCCAACGCCATCGACGTACCTGGCGTCGAGACGGAGGCATTGGCCGGCCTGTCGGCGCGCACCGGGGCAAGCCTGGTGCTGGGTGTTATCGAGCGGGCCGGCAATACCTTGTATTGCACGGCCCTGTACTTCGAGCCCGACGCCGGCTTGGTTGCCAAGCACCGTAAGCTGATGCCCACCGGCACAGAACGGTTGATCTGGGGCAAGGGCGACGGGTCGACTCTGCCGGTGATCGACAGCCAGGTGGGTCGCGTGGGCGCGGCGGTGTGCTGGGAAAACATGATGCCGCTGCTGCGCACGGCGATGTATGCCAAAGGCGTCGACGTCTGGTGTGCCCCAACGGTGGATGAGCGGGAGATGTGGCAAGTGAGCATGCGGCATATCGCTCACGAAGGTCGTTGCTTCGTGGTCAGTGCCTGCCAGGTCCAGGCATCCCCCGAGGCGCTGGGAGTCGAAGTGGCTAACTGGCCGGCACAACGGCCATTGATCGCCGGCGGCAGCGTGATCGTGGGCCCCATGGGGGACGTGCTGGCTGGCCCGTTGAAGGGTACCGCCGGGTTGCTGACCGCTGAAATCGACACCGACGAATTGGTGCGTGCGCGCTATGACTATGATGTGGTCGGCCACTACGCCCGGCCCGACGTGTTCGAACTGGTGGTGGACGAGCGGGCCAAGCCGGGCGTGCGCTTCACTGCATGA	MPKSIVAALQIGSLPGGKAETLTQILSYEEAIRDAGARLVVMPEALLGGYPKGEAFGTQLGYRLPEGREAFARYFANAIDVPGVETEALAGLSARTGASLVLGVIERAGNTLYCTALYFEPDAGLVAKHRKLMPTGTERLIWGKGDGSTLPVIDSQVGRVGAAVCWENMMPLLRTAMYAKGVDVWCAPTVDEREMWQVSMRHIAHEGRCFVVSACQVQASPEALGVEVANWPAQRPLIAGGSVIVGPMGDVLAGPLKGTAGLLTAEIDTDELVRARYDYDVVGHYARPDVFELVVDERAKPGVRFTA	PGPT0000835_1099	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_3,PGPT0000835-nitA|nitB|nitR|nit1-K01501	NA	NA
D1-36_02735	909	nodD2_3		Nodulation protein D 2	ATGAGCCAAATGAATATCGTCGACGTCGACCTTAACCTGCTGAAAACCTTCGAAGCCTTGCACGACGAATCCAGCGCAAGCCGCGCCGCGTTGCGCCTGGGGGTCACCCAGTCCGCCATCAGTGCGGCGCTGCGCAGGCTTCGCGGCATTTATGACGACCAGCTGTTCGTGCGCACGGGTCGGGGCCTGGCCCCTACCTTGCGCGCCAACCAGTTGAAACCCGTCATCAGTGAAGCCTTGGACAAGTGCCGCCAGAGCCTGGCAATGGTCGATCCTGGCGCCAGCCACTACGAAGGTCGATCCGTCATCCTCGGCTTGTCCGATGATTTCGAAATCGCCTATGGACGCCGCCTGATAGAGGAAGTGGCACGACGGGCGCCGGGCCTGCGCTTGATCTTTCGCCAGACCCATAGCCAGATCGTCGGCAGGGCCTTGATGGAGCGCAGTCTGGACCTGGCGATTACGGCGGGGGGATTTACCGAACGGCTGCTGAGTCGCAGGGTCCTCGGCGAAGGTGGCTACGCTTGCCTCATGGATCCGGCCAGCCTGGCAGCGGGCCAGCAGGACCTTACCCTCGAAGCCTTCGTCGCGCGGGAGCATCTGTTGGTGTCGTCCGGCGGCTTCATCGGCATCACCGATGAGGGGCTGGCCGCGCTGGGCCTGCGACGAAGAGTATGTGCCTCGACCACGCATTTTGCGGCGCTGCCGTTCCTGCTCAAGGACAGCCAGGCCGTGGCGACCATCCCAGACCATGCCGCCCGCGCCATCGCCCAGCTCAGCGGCCTGGCATTGGTGCCCTGCCCGCTGGCCTTGCCGCGCTATCCCATCGAGCTGGGGTCGCGGACCCACGGGCAGAAGGACCTGGCGGTGGACAAGGTGCGCGAGGCTATCATCGCGACCTTTGCGTAA	MSQMNIVDVDLNLLKTFEALHDESSASRAALRLGVTQSAISAALRRLRGIYDDQLFVRTGRGLAPTLRANQLKPVISEALDKCRQSLAMVDPGASHYEGRSVILGLSDDFEIAYGRRLIEEVARRAPGLRLIFRQTHSQIVGRALMERSLDLAITAGGFTERLLSRRVLGEGGYACLMDPASLAAGQQDLTLEAFVAREHLLVSSGGFIGITDEGLAALGLRRRVCASTTHFAALPFLLKDSQAVATIPDHAARAIAQLSGLALVPCPLALPRYPIELGSRTHGQKDLAVDKVREAIIATFA	PGPT0028130_548	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexEF-OprN,PGPT0028130-mexT-K18297	NA	NA
D1-36_02736	255			hypothetical protein	ATGAGTTTCAATCTGGCTGACAGGCCCCTGGCCGAGCGCGCCGCGCTGGAAGACGAAAAATCCCGGCTCTTCGAGCTTTGGCAGAACAACCTGGGCAAGGCCAAGGGCGACGCCGCCCGGTTGTTCGGCGAGCGTTCCAAGCGCAAAGGCAAGTGGGCCGAATGGGTACGCGCCGAACTGGACGGCATGTCGCCTCCGGAATACGCCAACATGGTGCGCAGCGAGGTCAATCGACTGATGGCCGCCAATAAATAA	MSFNLADRPLAERAALEDEKSRLFELWQNNLGKAKGDAARLFGERSKRKGKWAEWVRAELDGMSPPEYANMVRSEVNRLMAANK				NA	NA	NA	NA	NA
D1-36_02737	318			hypothetical protein	ATGGCCCGTAAAAGCGCCGCGCAACCGAACGGAGAGCAAATCAAGGATCAAGCCTTCAGCGAACTGAAGGCATTGATCGAAGAGTCGGAAAAATTACTCAAGAGCAGTGCGTCCTTGGTCGGCGAGGATGCTGAAAACCTGCGCGGCCAGATCGCCCTGAAACTACAACAGGCTTTGGATGCGGTTGCCAGCGCCCGGGAGCGCACGCGGCCGATGGTCGATGCAACGCAAGTCTATATTGGCGGGCACCCTTGGCAGACTGTTGCTATTTCCGCGGGGTTTGGCCTCGTGGTGGGGTTATTGCTCGGGCGACGTTGA	MARKSAAQPNGEQIKDQAFSELKALIEESEKLLKSSASLVGEDAENLRGQIALKLQQALDAVASARERTRPMVDATQVYIGGHPWQTVAISAGFGLVVGLLLGRR				NA	NA	NA	NA	NA
D1-36_02738	1032	dpkA	COG2055	Delta(1)-pyrroline-2-carboxylate/Delta(1)-piperideine-2-carboxylate reductase	ATGTCCGCGCTTCCCGATCACACCGGTCCTTGCACGTTATCCCTTGACGCCTTGGTTGGGCTGTTGGAGCAGATCTTCCTGCGCCACGGCACATCGGCAGAGGTCGCCCGCACCCTCGCCGAAAACTGCGCCGCAGCCGAGCGCGACGGGGCCCATAGCCATGGAGTGTTCCGCATGCCGGGTTATGTCTCCACGCTCAAAAGCGGTTGGGTCGACGGCCGAGCCGTGCCGGTGGTCGAGGATGTCGCCTCAGGTTTCGTACGGGTGGACGCCGGCAATGGCTTTGCCCAGCCCGCTCTGGCGGCCGCGCGGCCCTTGCTGGTGGAAAAGGCCCGCAGCGCCGGTATCGCGGTGCTGGCGATCCGCAACTCCCATCATTTCGCGGCGCTTTGGCCGGACGTCGAGCCGTTTGCCTATGAAGGGTTGGTGGCACTGAGCGTTGTCAACAGCATGACCTGCGTAGTGCCTCATGGCGCGGACCGCCCCCTGTTCGGCACCAACCCCATCGCTTTCGCCGCGCCACGCGCCGGTGGCGAGCCGATCGTCTTCGACCTTGCCACCAGCGCCATCGCCCACGGCGATGTGCAGATTGCCGCGCGCAAAGGCGAGCTGCTGCCGCCGGGAATGGGGGTGGATAGCCTGGGCCAGCCGACCCGCGACCCGAAGGCAATTCTCGAAGGCGGGGCGCTCTTGCCATTTGGTGGGCACAAGGGGTCGGCGTTGTCGATGATGGTCGAATTGCTGGCGGCGGCGTTAACCGGGGGCAATTTTTCCTTCGAGTTCGACTGGCGCAATCACCCCGGCGCCAAAACGCCTTGGACTGGGCAATTGTTGATCGTGATCGACCCCAGCAAGGCCGCCGGGCAAGGATTTGCCGAGCGCAGCCAGGAACTCGTCAGGCAGATGCACGGAGTGGGGCTGCGCCGTTTGCCTGGTGATCGTCGGCACCGGGAGCGCGGCAAGTCCACAGAACAGGGCATCACGCTGGATGAGCAGGCGTACGCTCAGTTGCGGGAACTGGCGGGAGCGTAG	MSALPDHTGPCTLSLDALVGLLEQIFLRHGTSAEVARTLAENCAAAERDGAHSHGVFRMPGYVSTLKSGWVDGRAVPVVEDVASGFVRVDAGNGFAQPALAAARPLLVEKARSAGIAVLAIRNSHHFAALWPDVEPFAYEGLVALSVVNSMTCVVPHGADRPLFGTNPIAFAAPRAGGEPIVFDLATSAIAHGDVQIAARKGELLPPGMGVDSLGQPTRDPKAILEGGALLPFGGHKGSALSMMVELLAAALTGGNFSFEFDWRNHPGAKTPWTGQLLIVIDPSKAAGQGFAERSQELVRQMHGVGLRRLPGDRRHRERGKSTEQGITLDEQAYAQLRELAGA	PGPT0001796_159	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_AQUIRED_RESISTANCE|SAR	SAR-CONDITIONING_COMPOUNDS	SAR-PIPECOLATE_BIOSYNTHESIS,PGPT0001796-dpkA|lhpD-K13609	NA	NA
D1-36_02739	4812			hypothetical protein	ATGAGCACAGCAGCACTGCCGTTATTATTTCCCCAGCTGTTGGCCACCAAGGGCTTGGATGAGCTGGAGGCACACCATGGCCTGACGCAGGCCGACCTCGACTGGCTGCAAAACGTTTCGCTGCCCACCCATGCGCAACGCGCCGCACAGACGCCTCCGATGATCGCCGAGACCATCCAGTTCAGCGCCGAAGGCAAGCCGGCCATTGCGTTGGCTGGCTGCTTTTGCCTGCGAACCACGCCCAGACGCGGCGATACCGCCGTCGATCCAGCATTCCTGTACACGCCATGGGACGGCGTTCGCAAGTTCGACAGTCCCGCAGCGCTCCGGGCCTGGATTGACCAGACACTGCTGGACAACCGCGATCGCAACAATCTGTTTCGGCTCCTGTCGATTGCCCAGCGCAGCGAACTGAAGGGCACGACGGATATCGAACAATCCTGGCAGGCCATCGACGGGGACGTTTTCGAGACTCAACTCAACACCATCGAACATGCCCAACACCACAACGTGCTCTCCATGGTGGAGGAATTGGTCAAGTTGCCCCCGCTCGCGACGCTGCTGGACCAGATACTGGGCGACGCGCTACCCGGCCTCGATCCCAGGCAGGTACGCATTGCGCTGTCCAGGATCGACTACACCCAGGCGCCCGAGGCGATTCATGTCACCCAAAGCATTCCCCTGAGCGAGGCGGTGCTGGTCTATTTCCACCATCAAGGCTGGCCAGCCGGGCATCTTGCCGACCTGACCCACCCTGACACGCCTGCGTCGTCCTATTCCGGACAGGAGTGGGAAGCGATCATCAAGGGTGCGGCGATAAGGCTGATCCCGAAGCTGATCGATCGTGTCAACGCGTTCTGGGACACCAGCGGCCCCTTCCACACATCTCGGCGCCAATTCCTGGCCCAATTCATTCAGGACGCCCTGTGGGCGGCCATTCTGATCAAACGAGAAAAAAACCAGCTGACGGAGGCCCAGGGCCGCGAGTTGCTTCGGCTGTTCAGGCCGTCGCGCCGGGACGAGGCAGTGCTGTTCATCGAGACGGTGCGCCTCTGGGAATATGCACCTAACTTCGTGGAGCTCGCTGGATCGCTGATGGTCAGCGGGCAAGGTCATTACCTCTACACGCCCACCGACGGCCTTCAAGTCGTTGGCAATTATCTTGGATTCAAAGAAGCGCTGGTCAGCACGCCCGAGCAGAAGGAGGCGATCTACAACCTGCTGGACCTGGACGAGCGCAACCGGCTCCTGGGTTTCGAGCATCCGCATATTTGCGGCGAACCGATAGACATGCCTATCGCTGATTCATTGGCTGGCGCGATCATCGACAAACAGACGCACAACCTGCGGTATGCGCTGCAAATGTCCCGCCAGGGCCGGGTGAATGTCCATGCACTCGTCGACAAGGCCCTCGACATACGAGCCTTCATCAGCAACAAGCTACTCAATCAAAAGACCGCCGGACATTGGGGGACCCAACCCGCTTTCCATGGAAAATTGCGACTTTCCAACTTCCTGGCCGATCAGATGGAAAGAAAGGCCAAGAGCTACATTGATGTGGAAGGCGCCTTCGCTAGCGAATTTTGCAGGCTGCCATCGTTTCTCCGGTCTTCGCTTCAAAACGGACTCAGGCAATTGCTTGCACAGTTGACCAATGTGTTTTCAGTGGGGATTCGCGCAGAGGCTGATCTACGCTCGATCGACGCCACGCTGCCGACAATCGCCCATGAACTGATCACGACGGTGTTCGCCTTCGACCCCGACTACCCGGATCGCCGGCGGCGCATCGGTGTCAGGGGATTCCGGCCAGACGTTTATTCATTGAAACTGACGTGCGCATCGTCCGGCGTCGCCATCTCGCTGCCACTGGCGAACTGTTTTCTATTGACCGAGCGTGGTGGCCTCGATACGCCGTACTCGGGCATGGCGATCGTCTGGACACCTGCCGACGGGCTACAGGCATTCGCCTCGGTCGACCTGGCCACTCGACAATTGAATCGGCAGCTGCTTGATTCCCGCAGGCGATTTGGCTTGCTGTCCAACCTTCCCCCCGCCCAGCGCCAGCCCCACCGACGCTATCAACTGGACACCTACGAACTGATCGAAGACAACGTTCTGATGAATCGAATGACCTCGTTCATCCACCTTTTCGAGACTGAGTACGCCTACCTGAGTGCCCTGAAAAGCGGGGATTGGCAACTGACCCGCTCGGCACTGGCCAACGGTCTTGAAGCCCTGCTGGAAAAAGGAGCGCCCACCAACCTGAAACGCGCCACGGCTATCGCCCAGGCCAGCAAATACAGGCAGAAACTGCCCGCCTGGCTCGGCGCTGCCCCCCTCGAGGATCAACGTTTGCACGTCGAGATCCTGGAGCAATACAAAAGCAGCGTAGCCGATGGCAAGGATTACCTGGACGGCATCGAACCCCTGCGTACCTACGTGCAAAATCGTCTGCAAGCACTGCTGGACGCACGTTTCCCCGAGGACAGACTCAACCCCGAAACCATCCAGATCACGCCAAACCTGGCGGTGGTCGGCCCTGCCAGTTCATTGACCGACTTTGCCTTGCACCCCATCGATGTCACCAGCAAGGGCTTCAAGGTTTTCTCGACCTCCACGCAATCATTGCCAGACAGCCTGAACGAACTGGCGGTGCGGCAGATGTTGTCGTCGCTCGATATCCAGAGCACTTACAAACATCAGGTGAAACAAGCGCTTTGCGGCGCAATTTCCGATGTCCAGCCCAGGAAGCGACGCTTTCGCCAGCAGCTGCCATGGCAATTGTTGCAATACGCTCACTCACGTCTTCTGCAACAGCACATTTCCCCGAAGGCGTTCGACTTGATCCTCCAAGTCCTGGACATGCCGGACGCCATCGCCCGTCGAGCGGTCAGGGGTGCCGGTGCGTTCATACGTCCACTGGAACTGATCAAGACCGGCGGCGCCGCCGCGGTAAGGGCGCTCGGGCTCTATGTGATCAGCTCGAGCGCCGATCCGGCGGACCCTCACGTTTTATATGCTCCCTACCACGAGGGGCATTCGCTGGCCGAGTTCAAGGATGAACCAAGCATCGTCGCCGCCCTCAATGCCCCCGGCGCGCTTCAGGACCTGCTGGTCCGCCGGCTGCCCGAAGACCAGCGAGCCACCTTCCGGAATCTGTTTGCCGCCACCCTCGGGCAACTGTCGGAGATTACCCTCGCTTCGAATCCGATCGACACCGATGTATTCGAAACCCTGTACAACGACAACGCGACGTTGCTACTGGATATGCTGGGGACGAAGAACCAGGACCATCGCCCATTCGACTGGGCAACGGTGCTGCACCTGTTCAGTTCTGGGATCGGATTGGTGGGTAGGCAGCTACCGGCCAGGTTGACGTTCCTGGAAACGCTTTGGGAGAGCTATCAGGACTTCAAGGGTTCGGCCGAAGCCCTGCAGCAGCACGACTGGAAAACCGGCCTGCATGATTTCATCGCCGGCGCCGCGGAAATGGTGTCGCTGGGTTTGCTCAATCGCGACGATACATTCGGCCTCCTCGATCCCGCCGAACCGGCCTCGCCAAGCAGCTCCTCGACGCCCGGGTGGCAGGAAATCGCCTGCACCGCGCCACTGCGCACCGACTTACAGGCCTTCGAAGCCATAGGCATCAGCCTCTGGGCGCTCCAGCAGAACCGGGCCGACGGCACCTATGAATCAAAGGACGGCGGCAAGTTCTACGTGCCCCTGGCCGGCAAGGTCTATCAAGTGGCAAGGGCCGGCCGGGGCTGGCGCATTATCCACGGTGATGACGAAGGCCCGTTGCTGAGGTATAGCGCCGACGAAACGACATGGGCAATCGACCCACAGCGACAGACCATTCGTTTTGGCAAGGCGGGGTCGAAAATGGCGGTGACCTATAGCGATTTCAAGGCAAAGGGATCCTTGAACATCGAAGCGCGCGGCATGGCTGAGATACGCAAGAAGTCTCCTTATCGCGCCAACGTCATCGTACAGGCACTGGAAACCGCCAGATTCTATTCGCTGAACGCCTTGCTCAATCTAGAGCAGTTCAAAAAACAGCCTTTGCCAGGTTCTCGGCTGGATAGCTTCCTGATGTCGTTCTTTGGGGTCCGACAGGTCGACAGCGCCCTGATCGGCAAAGTGGAGACCGCCATTTTCCCGATATGCAGGGCGTTGGCCGACCCCACCTGGGAACAGCAGAACGCCAGCCGTATCGTCATTGGCAATTTGAAATACCTGGAAGACCGGGCAACCGCATTTGTGCTCGAACCTGCGGCCCGCGGGCGAATCTACCTGACGCAGTTTTTCTTCGAACCGGGGCTGGACTGGTACAAGACCGTGGTGCCGGCGTTCTTCAACGTCGACGCGCATGCCCAAGGCGCGACGCTTATCCACGAGATATCCCATCAGCTCATCGACACGATCGACATCATCTACCTGGACGCTGCGCTGCCGTTTCCCGACTTGATTTCAACCTCGACCCACCTGGGGCAAACACGCTATGACACGCAGAAGGAGCTGCAACTCAATGGGCTTTCCCTGGGCACGGCAAAATCCAAGCTGTTCAGACAGTGGGACAGTACCGACAACAGTTACAAGAGGCTGGAGTTGTTGCCAATGTATAAAGACATTGCCAAGGCCATTTTGAAAGTCACCGACACACGGAGCATGGACGAAGCACGAAACGCGTTCTTGAATCCGGTTTTGCCGGACAAGCGCATCGACGTCATACTCCGTAACGCCGATTCGGTCACGCTGCTGATTTGTGAATTGGGGCGCCAGCTCGATCCGAGTCCATCGCGTTCCACTTGA	MSTAALPLLFPQLLATKGLDELEAHHGLTQADLDWLQNVSLPTHAQRAAQTPPMIAETIQFSAEGKPAIALAGCFCLRTTPRRGDTAVDPAFLYTPWDGVRKFDSPAALRAWIDQTLLDNRDRNNLFRLLSIAQRSELKGTTDIEQSWQAIDGDVFETQLNTIEHAQHHNVLSMVEELVKLPPLATLLDQILGDALPGLDPRQVRIALSRIDYTQAPEAIHVTQSIPLSEAVLVYFHHQGWPAGHLADLTHPDTPASSYSGQEWEAIIKGAAIRLIPKLIDRVNAFWDTSGPFHTSRRQFLAQFIQDALWAAILIKREKNQLTEAQGRELLRLFRPSRRDEAVLFIETVRLWEYAPNFVELAGSLMVSGQGHYLYTPTDGLQVVGNYLGFKEALVSTPEQKEAIYNLLDLDERNRLLGFEHPHICGEPIDMPIADSLAGAIIDKQTHNLRYALQMSRQGRVNVHALVDKALDIRAFISNKLLNQKTAGHWGTQPAFHGKLRLSNFLADQMERKAKSYIDVEGAFASEFCRLPSFLRSSLQNGLRQLLAQLTNVFSVGIRAEADLRSIDATLPTIAHELITTVFAFDPDYPDRRRRIGVRGFRPDVYSLKLTCASSGVAISLPLANCFLLTERGGLDTPYSGMAIVWTPADGLQAFASVDLATRQLNRQLLDSRRRFGLLSNLPPAQRQPHRRYQLDTYELIEDNVLMNRMTSFIHLFETEYAYLSALKSGDWQLTRSALANGLEALLEKGAPTNLKRATAIAQASKYRQKLPAWLGAAPLEDQRLHVEILEQYKSSVADGKDYLDGIEPLRTYVQNRLQALLDARFPEDRLNPETIQITPNLAVVGPASSLTDFALHPIDVTSKGFKVFSTSTQSLPDSLNELAVRQMLSSLDIQSTYKHQVKQALCGAISDVQPRKRRFRQQLPWQLLQYAHSRLLQQHISPKAFDLILQVLDMPDAIARRAVRGAGAFIRPLELIKTGGAAAVRALGLYVISSSADPADPHVLYAPYHEGHSLAEFKDEPSIVAALNAPGALQDLLVRRLPEDQRATFRNLFAATLGQLSEITLASNPIDTDVFETLYNDNATLLLDMLGTKNQDHRPFDWATVLHLFSSGIGLVGRQLPARLTFLETLWESYQDFKGSAEALQQHDWKTGLHDFIAGAAEMVSLGLLNRDDTFGLLDPAEPASPSSSSTPGWQEIACTAPLRTDLQAFEAIGISLWALQQNRADGTYESKDGGKFYVPLAGKVYQVARAGRGWRIIHGDDEGPLLRYSADETTWAIDPQRQTIRFGKAGSKMAVTYSDFKAKGSLNIEARGMAEIRKKSPYRANVIVQALETARFYSLNALLNLEQFKKQPLPGSRLDSFLMSFFGVRQVDSALIGKVETAIFPICRALADPTWEQQNASRIVIGNLKYLEDRATAFVLEPAARGRIYLTQFFFEPGLDWYKTVVPAFFNVDAHAQGATLIHEISHQLIDTIDIIYLDAALPFPDLISTSTHLGQTRYDTQKELQLNGLSLGTAKSKLFRQWDSTDNSYKRLELLPMYKDIAKAILKVTDTRSMDEARNAFLNPVLPDKRIDVILRNADSVTLLICELGRQLDPSPSRST				NA	NA	NA	NA	NA
D1-36_02740	999			hypothetical protein	ATGACCGAACGTACACTCCCGCAAGCCGAATACGATGCCATCACCGATGCGGCCGCGCATTGGTGCATGCGTCTGCACGCGGACGACTGCACGGATGCCGAACGGCTGGCGTTCAAGCAATGGCACGACGCCGATCCGCTGCACGCCTTTGAATACGCAGCCATGCTGGAAATCTGGGGCGTTGCCGAGCATCTGCCGCGCGTCGAGCCAATGGCCATCCCTGCGACCCAGCGCCCGCGGTCTCGCGCAGGCTCCATGGCGATCGCGGCGACGGTGCTTGCCCTCGGCCTGCCCCTGGCTGCTTTTACCGGTTGGAACATGGGGTGGTTGCCCAACGCCTACCAGCGATTCGAGGCAGGTTCGAGCGTGCGTCACATCACTCTGGAGGACGGCAGTCACGTAGAGCTCAACCTCGCAAGCGAGCTGGTGTTTGCCAACTACAAGGACGAACGCCGGGTCACGATGAAAAAAGGCGAAGCGTTTTTCGATGTCCGCCACGATAGCCGCCACCCCTTCGTCGTTCGGGCAGGCCAGGGCCAGGTGCGCGTGACCGGGACCCGTTTCAACGTGTGGATGTACCAGGATCAAGTGCGGGTTACGCTGGTGGAAGGTTCCGTGTGGGTAACCAGCCATCGGGCATCCAAAGCGGGCGGCCAGCAACTGTCACCTGGGATGCAGGCGAGCTACAGGGCTGGCGATTTCCAGCCGAAGGTTCGTGACGTCGCCCTCGATGACAGCTCGCTGGCATGGCGAAGTGGCAAGCTGGTGCTGGATAACCTGGCCCTGTCCGACGCGCTGCCGCTGATCAACCGCTACCTCGACCGTCCCGTGATGCTGGCGGACAACGCAACGGGCACTCTGCGCATCGGTGGAAACTACAACCTGAACGAAGTGAAGAACCTGGTGCCTTCGCTGCCCAAGGTCTTGCCGGTGTACCTGACACAGAACAGCGACGGCAACCTGGTATTAAACGCCATCGCTCGTCCTACCCGAAACTGA	MTERTLPQAEYDAITDAAAHWCMRLHADDCTDAERLAFKQWHDADPLHAFEYAAMLEIWGVAEHLPRVEPMAIPATQRPRSRAGSMAIAATVLALGLPLAAFTGWNMGWLPNAYQRFEAGSSVRHITLEDGSHVELNLASELVFANYKDERRVTMKKGEAFFDVRHDSRHPFVVRAGQGQVRVTGTRFNVWMYQDQVRVTLVEGSVWVTSHRASKAGGQQLSPGMQASYRAGDFQPKVRDVALDDSSLAWRSGKLVLDNLALSDALPLINRYLDRPVMLADNATGTLRIGGNYNLNEVKNLVPSLPKVLPVYLTQNSDGNLVLNAIARPTRN	PGPT0003910_3179	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165	NA	NA
D1-36_02741	2355	pvdQ	COG2366	Acyl-homoserine lactone acylase PvdQ	GTGGGAATGTCCGGGCAGTTATCGAGGTTTTGCCTTGCCGGTGTCTTGCTGGGGATGTCCCTGGGCTTGAGTACCGTTGTCAGCGCACGAGGCGAGGCCGGGCAGGCCACTGCCGAAATTCGTCGCACCAGTTTTGGCGTGCCGCATATTCGCGCCCAGGATGAGCGGGGGTTGGGATACGGCATCGGCTATGCGTACGCCCAGGACAACCTATGCCTGTTGGCCAATGAGATCGTGACCGTCAACGGCCAACGCTCGCGCTATTTTGGTCCGGAACAGGGCACCGTCGAGCAACGCGAGAATCGTGCAAGCGACGTGTTTTTTGCGTGGCTCAACACGCCCCGGGCGGTTTCCGGTTTCTGGCAGGCGCAGACGCCCCAGGTACAGCAGTTGGTGGAAGGTTATGCCGCCGGCTACAACCGCGCGCTGGCTGAGCGCAAGGCCAAAGGCCTGCCGGAACAATGCGCAAGCGAGTGGGTGCGGCCAATCACCGCGCTGGATATTGTCAAGCTCACCCGGCGCCTGTTGGTGGAGGGTGGCGTCGGCCAGTTCACCGAGGCGTTGGCCGGGGCGCAGCCGCCCAAGGCTACGGCAGACGCGGGGGGCTCGGCGTCCGGTTTCGCCATCGCGGCGCAACGGCAACAGCGCTTCGCCCTGGAGCGCGGCAGTAACGCCCTGGCTATCGGCAGCGAACGCTCGTTCAATGGGCGCGGCATGCTGCTGGCTAATCCGCATTTCCCGTGGGTGGGAGGCATGCGTTTTTACCAGATGCATTTGACCATCCCCGGAAAGCTGGACGTGATGGGCGCGGCGTTGCCGGGCCTACCGATGATCAATATCGGCTTCAGCCGGCACTTGGCCTGGACCCATACCGTCGATACGTCCAAGCATTTCACCCTGTATCGGCTACAACTGGACCCCAAGGACCCGACTCGCTACCTGGTGGATGGCAAGTCCGTTGCCATGAGCCAGCAAACGGTCACGGTGGACATCAAGCAGGCCGATGGGCAGGTCAAGCCGCTCTCCCGTGTGGTCTACGGTTCGCAGTTCGGACCGATCGTGCAATGGCCCGGGAAACTGGATTGGGATAACCGGTTCGCCTATAGCCTGCGGGACGCCAACCTGGAAAACGACCGGGTGCTGGCGCAGTGGTACGCGATGAATCGAGCCGTCACGCTCAAGGATCTGCAAGAGGCCGTTCATGGCATTCAGGGGATTCCCTGGGTCAATACCCTGGCCGTTGATGACCAGGGACAAAGCCTCTATATGAACGTCTCGGTGGTGCCCAACGTCGATGCCGGCAAGCTTGCCCGATGCAGCGACCCCAAGGCCGGGCTGCGGCTGATCGTGCTGGACGGTTCACGCGGCGAATGCGCCTGGGATGTGGACCCCAAGGCGGTGCAGAAGGGTACCTATGCGGCGGACAAGCTCCCGCAACTGTTGCGCCGCGATTATGTGCAGAACTCCAACGATTCGGCGTGGATGGTCAATCCGTCGCAGCCGTTGTCCGGTTATTCCCCCGTGATCAGCCAGCAGGACCTGCCACTGGGCCTGCGGGCGCGTTTTGCCCTGGACCGACTGGGACAACTGGAAAAGGCGGGGCCGGTAACGGTGAGCGATTTGCAGGGCATGGTCATGGACGACCGGGTATACCTGGCCGATCAGGTCATGCCGGACCTGCTGGCTTTCTGTGCCGCGAAGCTGGGGCCCGACGCACCGGCCCTGACGCAGGCATGCAGCCAGCTCAAGGCCTGGGACCGTACCGCCAGCCTGGACAGCGGCGTGGGGTTCGTCCATTTCCAGCACATCATGCAGGCATTGCAGGCGGCGCCGGGCATCTGGCGGGTCGCGTTCGACCCGAACGATCCGCAACATACCCCGCGCGGCCTGGCGATCGAAGCATCGCCAGTGGCTGATGCGCTGCGCCAGGCCATGGTCGCATCGGTCCAAGCGGTGGACGCTGCGGGACTGCAAGCGGATAGCCAATGGCGGGACGTGCAGGTGACCCGCAGCGGCGACCGCCGGATACCCATTCACGGTGGACCGGGCGAGCTGGGCATCTATAACGCCATCCAGAGCATGCCGGGCGCGAACGGCCAGCGGGAAGTGGTCAGCGGCACCAGTTATCTGCAAGTGGTGACGTTTGACGGCAACGGACCCAACGCACAGGGACTCTTGGCGTTCTCACTGTCCAGCGATCCTTCATCGCCCTATTCGGCGGACCAGACCCAGGCATTCTCGAAGGGGCAATTAAGTGTGCTGCCTTTCTCTGAACAGCAGATCAAGGCCGACCCGCATTACCAGGCGCAGACCATCCATGAGGGCGCGCAGGCGGGCAGGGTGGCGACGCAATAG	MGMSGQLSRFCLAGVLLGMSLGLSTVVSARGEAGQATAEIRRTSFGVPHIRAQDERGLGYGIGYAYAQDNLCLLANEIVTVNGQRSRYFGPEQGTVEQRENRASDVFFAWLNTPRAVSGFWQAQTPQVQQLVEGYAAGYNRALAERKAKGLPEQCASEWVRPITALDIVKLTRRLLVEGGVGQFTEALAGAQPPKATADAGGSASGFAIAAQRQQRFALERGSNALAIGSERSFNGRGMLLANPHFPWVGGMRFYQMHLTIPGKLDVMGAALPGLPMINIGFSRHLAWTHTVDTSKHFTLYRLQLDPKDPTRYLVDGKSVAMSQQTVTVDIKQADGQVKPLSRVVYGSQFGPIVQWPGKLDWDNRFAYSLRDANLENDRVLAQWYAMNRAVTLKDLQEAVHGIQGIPWVNTLAVDDQGQSLYMNVSVVPNVDAGKLARCSDPKAGLRLIVLDGSRGECAWDVDPKAVQKGTYAADKLPQLLRRDYVQNSNDSAWMVNPSQPLSGYSPVISQQDLPLGLRARFALDRLGQLEKAGPVTVSDLQGMVMDDRVYLADQVMPDLLAFCAAKLGPDAPALTQACSQLKAWDRTASLDSGVGFVHFQHIMQALQAAPGIWRVAFDPNDPQHTPRGLAIEASPVADALRQAMVASVQAVDAAGLQADSQWRDVQVTRSGDRRIPIHGGPGELGIYNAIQSMPGANGQREVVSGTSYLQVVTFDGNGPNAQGLLAFSLSSDPSSPYSADQTQAFSKGQLSVLPFSEQQIKADPHYQAQTIHEGAQAGRVATQ	PGPT0003395_396	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QUORUM_QUENCHING	CE-QUORUM_QUENCHING-AHL-DEGRADATION,PGPT0003395-pvdQ-K07116	NA	NA
D1-36_02742	417			hypothetical protein	ATGATCTTTTCTGTCAGGCTGGTAAGGAGTCTTTACATGCATAACGCGCAAATGCCCATGGAGGGCAAGCCAGGATCGGCCCGTGTCACGATGACAGCCACAAACCGTACGTTCCCTGGGCCAGCGGAACGAGGCGGCAACGAGCAGATCAAGCGTCTGCTCAAGAGCTATGGGCTCAGGACGAGCCTGATTCGCTTGAAGGTCATCGACGCCTTGCTCAAGGCCGCCGATGAAAACCGCCGGCTGGGTGTACGCGGCGTCCATAGCCAATTGTTGGGGCTGGACATTCCCTTGTCCTTTCTGAGCGTGCGTGAGGTGCTAAAGCGCCTGTGCGGCGAAGGCGTGGTCACGCTCAATTCGGATAAAAGCTACAGCTTGCACCACCAGGCCGTGGCCCTGCTCAACACCGAAGAATGA	MIFSVRLVRSLYMHNAQMPMEGKPGSARVTMTATNRTFPGPAERGGNEQIKRLLKSYGLRTSLIRLKVIDALLKAADENRRLGVRGVHSQLLGLDIPLSFLSVREVLKRLCGEGVVTLNSDKSYSLHHQAVALLNTEE				NA	NA	NA	NA	NA
D1-36_02743	189			hypothetical protein	ATGACTCATTCGCAACGTTTGAAATACTCGATTCTGGTGGTTCTCGTCGTACTGGCGATCATGCTCGGACTGTCCTGGATGCAAGGCAAGGGCATGATCAGCGAGCAGCTGTTTCAATACATCGCCATTGCCGTGGCGGTCATCGTCGTGGTGATCAACGGCGTGATGCGACGCAAGGTCAAGCCTTGA	MTHSQRLKYSILVVLVVLAIMLGLSWMQGKGMISEQLFQYIAIAVAVIVVVINGVMRRKVKP				NA	NA	NA	NA	NA
D1-36_02744	1230	mdfA		Multidrug transporter MdfA	ATGCCAAATCCGCCCACTTTTCTTACTCCCGTTCGCCTGACGGGTTTCTGCCTGGCCATCGCCCTTTTCGAGTTCCTCACTTACATGGCCAGCGACCTGATCATGCCCGCCATGCTCACCGTGACCCAGGACCTCGATGCATCCCCCGATCAGATTCCCCACGCGTTCAACCTGTACCTGCTGGGCGGCGTCTTGCTGCCTTGGCTGATCGGCCCGTTGTCGGATCGTCATGGGCGGCGCCCCTTCATGCTCGTGGGGTGTGCCGGGTTCGTGCTGGCATGCGTGGCGATCACCCAGGTCACCGGCATGCAGGGTTTCAATGGGCTTCGCCTGGTCCAGGGGATGGGGCTGGGCTTCGTGATTGCAGTCAGCTACCCCGCCATACAGGAAATATTCTGCGAATCCGCCGCCGTGAAGGTCATGGCCATGCTGGGCAATCTCGCCCTTCTTTCGCCGCTTTTAGGCCCTTTGGCGGGCGGGCTGCTGCTGCAGTGGCTGTCGTGGCGCGAGCTGTTCATGTTGCTGGCCGGCCTCGGGGTGGTCAGCTGGTTGGCTTTGTGGGGGTTCATGCCGCGGACGCCCCGTGGCGCGCATGCTGGAACACCGGTCGTCGAACCGTTTGACCTGCGTTCGCTCGTAAGGCGATACGCAGCGCTGCTGGGCCACGGTGGCTTCATGTCGGCCAGCGTTGCGCTGGGGTTGATGAGCCTGCCGCTGATTGCCTGGATCGGCCTGTCGCCCCTGCTGTTGATCCAAGGACAAGGCCTGTCCCCCTTGGCGTATGGGGTTTGGCAGATTCCGGTTTTCGCGGCGGTCATCCTCGGCAATCTCGTCCTCAACGCCCTGGTGGAACGGGCTGGGGTGCATCGGGTGGTCCGCTACAGCTTGTGGCCGTTGTGTACAGGCCTGACCGCGCTGGTGGCCGGCAGTCAGTTCGCCCTGTCCGTTCCCGTCCTGGTCAGTGGGCTGTCGCTGTATGCCATCGGGCTCGGCATGGGCAATGCCGCGCTGTATCGACTGGCCCTGTTCGCCACCGACGATAGCAAGGGCTTGGTTTCGGCCATGGTCGGGATGATCTCCATCGCCGTGATGAGCGCGACAGGGTCGCTGTTGGCGCTGCTGGGTGCCGGGGCGAACCTTGAGTCCTTCGCGCTGATGGTCGGCATCGCCGGGCTCAGCTGTCCTGTCGTGCTGCGCCTGTTCACCTCGCGCCCCGCTGCTCTCCCTTGA	MPNPPTFLTPVRLTGFCLAIALFEFLTYMASDLIMPAMLTVTQDLDASPDQIPHAFNLYLLGGVLLPWLIGPLSDRHGRRPFMLVGCAGFVLACVAITQVTGMQGFNGLRLVQGMGLGFVIAVSYPAIQEIFCESAAVKVMAMLGNLALLSPLLGPLAGGLLLQWLSWRELFMLLAGLGVVSWLALWGFMPRTPRGAHAGTPVVEPFDLRSLVRRYAALLGHGGFMSASVALGLMSLPLIAWIGLSPLLLIQGQGLSPLAYGVWQIPVFAAVILGNLVLNALVERAGVHRVVRYSLWPLCTGLTALVAGSQFALSVPVLVSGLSLYAIGLGMGNAALYRLALFATDDSKGLVSAMVGMISIAVMSATGSLLALLGAGANLESFALMVGIAGLSCPVVLRLFTSRPAALP	PGPT0027975_355	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0027975-mdfA|cmr-K08160	NA	NA
D1-36_02745	1128			hypothetical protein	ATGATTCACTTTCCCCATGCCGATGCGCTGTGCGCATGGCCCCAGCCGTATGACGGCGATTCGCTGCCACCGGGGCTGTTCGACAGAGCCATGGCTGAAATCAGCCTGTTCCATAGCCACCACACGCCAGGCTACGAACATTGGCTCAACGCCAACGGGCTTCGGGCCGACGACCTGGACCGTTTGACTGACTGGTCGCGCCTGCCGCCCATTTACGCCAGCTACTTCAAGCAGCGATTGCTGCTCAGCCCCACCGCCGAAGGTGCATTGGAACTCACGTCCTCGGGCACCAGCGGGCAGAAAAGCCGCATGCGCTACGACGAGCGCAGCATGGCGGCGGCCCAAGGCATGGTGGCAGACATCTTTGAGTATTACGGCTGGTCGACACCCGACTCGCCGTGCAACTACTTGCTCTTCAGCCATGAGCCCGAAGCGGCCAATCGCCTGGGCACGGCCTACACCGACCAGTTCCTGTGCCGCTTCGCACCGGCCAATCGGATCGCCTACGCCTTGCGATGCACGGGAAAAGGCCACGAATTCGACGTCTTCGGCGCCATCGGCACTCTGCAATCTTTTGCCGAAGAGGGCCTGCCGGTGCGCATCTTCGGCTTTCCGGCGCTGCTCTGGCATGTGCTTGAGCGCATGCGTGAAACCGGCATACAAGACCTGAAGCTCGCCGCCGGTTCGCTGGTCTTCCTGGGCGGCGGCTGGAAGAAACAGGCGGCCGAGGAAATCCCCCGACGTCACGTTTACGAGCGCATCACACAGCAACTCGGCATCGAGGTCCAACGCTGCCGCGACGGCTACGGTGCGGTCGAGCACGCGGTGCCTTACATCGAGTGCGCCCATCATCGGTTCCACGTGCCGGTCTATTCCAAAGTCTACATACGCCACCCCTCGGACTTCAGTGTCCAGCCGTTCGGCGAGCCAGGGTTGTTGTCGTTCGTTTCGCCCTACATCTCGTCAAGCCCCGCGCACGCCGTGGTGATGAGTGATCTGGCGACCCTGCACCCGGCCAACTGCAAGTGCGGCCTTCAAACCCAGTGGTTCGAGCTGCATGGCCGGGCCGGCACCAGTGCCAGCCGAAGCTGCGCCATGGCCGCTGCCGAATTGATCAAGGAAAACTGA	MIHFPHADALCAWPQPYDGDSLPPGLFDRAMAEISLFHSHHTPGYEHWLNANGLRADDLDRLTDWSRLPPIYASYFKQRLLLSPTAEGALELTSSGTSGQKSRMRYDERSMAAAQGMVADIFEYYGWSTPDSPCNYLLFSHEPEAANRLGTAYTDQFLCRFAPANRIAYALRCTGKGHEFDVFGAIGTLQSFAEEGLPVRIFGFPALLWHVLERMRETGIQDLKLAAGSLVFLGGGWKKQAAEEIPRRHVYERITQQLGIEVQRCRDGYGAVEHAVPYIECAHHRFHVPVYSKVYIRHPSDFSVQPFGEPGLLSFVSPYISSSPAHAVVMSDLATLHPANCKCGLQTQWFELHGRAGTSASRSCAMAAAELIKEN				NA	NA	NA	NA	NA
D1-36_02746	2415			hypothetical protein	ATGTACCTCATCAACGGCCAACTGAACGCCGGGCTGCCGCTCGATGCAGCGCTTGAACGCCTCCAAGCGCAACTGCCCGTCTTGCTGGAAACGCCACCTCGCAGCGAGGAGGTTATCGACTGTGCCGAGGCGTTCGCGCAATGGCTGCGTGCGGCAGACCGAAGCCCGCTGCTGGACGAGGACCAGCGCCAGGCCCTGATTGCTTTCTGCGCCCGCAAGTCGTTGAGCTTCAAGCTGGAACGGGAGCTGGGCGTCGATGCACGTTCGCTACGGCGAATCGATTATTGCGGCGGGCCCTTCGAGAGTTGGCAGCCTTTGGGCCTGGTGGTCCATGTCACGCCGGGCAACTCGCCGTTGCTGGGGTTTTGCGCGGTGCTGGAGGGCCTACTTGCGGGCAACGTCAATTGGCTGCGCCCCAGCACCCGCGAGGGCGACCTGACAGCGCAACTCCTAGCGGCGTTCCTGGCGTGCGATCCAGGCGGCCGGTTACGTGGTTATCTGGCGGTATTGCCGGTGCCCTCTGAACAAACCGGGCGTCTTTTTGCCGTTGCCAATGGCGTCAGTGCCTGGGGCGGCGAAGCTGCCTTGAAGGCATTGCGCGAGCGCATTCCAACGGGTTGTCGCTGGATCGATTGGGGCCACCGGATCAGCTTCGCCTATATCACGCCTCTGGCCGCCAGCGAGCAGGCCTTGGATGCGCTGGTGGACGAAGTCTGCCGCCTCGACCAGCAGGCCTGCTCCAGCCCGCAATGGCTGCTGGTGGACAGCGATGATCCTGGGCAATTGCACGCAGTGGGAAGCGCCCTGGCCGCCGCGTTCGAACGCCGGACCGGGCGCTGGCCCACCCTGGAGACCACCGCCGCCGAAGCCTGTGAGATCACCACCCGTACGGCACTGGCCCGCCTGGACTTCAGCTTTGCCAACGAAACCGGCCAGGTCTGGACGGGCAATGGCTGGCGCATTCTCTGGGAGCACCACCGCGCACTGCAACCTTCGCCATTGTTTCGCACGCTGCTGCTACGGCCGATGCCGCAAGTGCTGCTCGCCGAAACCTTGCTGCCATGGCGCAATGTGCTGCAGAGCTGCGCCCTCATCTGCGAGCCGGAACGCGCTCCTGGGCTGGTTCGGCGCCTGATGACCGCTGGGGTTGGCCGGGTGACCTCCACGGGAGAAATCCAGCAAGGTTACGACGGCGAGCCCCACGATGGAGTCTATGGGCTGCAACGATTGAGTCGCCGGGTATCGGTCAGCCTTGATGCAGGCATTGCCAGCCATCGCGTCACGCTGGATGCCGCCGCGAGCCCATTGGCGCTGACCCCTTCGACGCCCATCATGGACAAAGCCGCGTTCGTGGCGCTGCCCCCGGCCCCTCAGGCACAGCTGTTCTTCCGTTCCGGCGGCAGCAGCGGCGCGCCGGTTTTGTCCCCCTACAGCCATCGTGATTTCGACCGCCACATGCGGGCCGCCGCCGATGGGCTGCGCGCCGCGGGACTCGACCCGATGTACGATCGAGTGATGAACCTGTTCTATGGTGGCAGCCTGTACGGCGGGTTCCTCAGTTTCACCAAGATCCTCGAACAGATGGATGTCGTGCATTACCCGATGAGTGCGCCGCCGGATGACAACTTTGCAGAGATCGCGCAGTTGATCGTCGAGCATCGAATCAACACGCTCATGGGCATGCCCAGCACGTTGCATCGTCTGTTCTCAAGCCAGCAATCAGTCCTTCAAGGCTACGGCGGTGTGCGCAAGATCATGCTTGGTGGCGAACACCTGGGGCAGGACTGTCGTCTCCTGTTCGAGCAATGCGGCGTCACCTGCGTTCGCTCGGCAATCTACGGCAGCGTCGATGCGGGCCCCCTCGGGCATGCCTGCATAGCCAGCGGCGACGGTGTGTTTCATCTGATGGAGGATATCCAATCCTTGGAAATCGTTGACCTGGAATGGGATACGCCGGTCGGCCCTGATGGTATCGGGCGCTTGCTGTTCACCTCCCGCGTACGCCAGGCGCGCCCGCTCCAGCGATACGAAGTCGGCGACCTAGGGCGCTGGCTACCCGGCCCATGCGCGTGTGGCCTGGAGTCGCCCAGATTCGAGCTGCGCGAGCGCCACGGCCAACTGGTGCGCATCGCCACGGAGTTCATCAATACCCGGGACCTGTCCGAGCACGCGCAGACGGCCATCCAGATCGTTCTGAGCCATGCGGGCTGTGGCGGTGAGCGTTTGCTGATTCGTACCGATGGCGACGCCGAAACGGTACGGCGCCAGGTGCTGGGCCTCGCAGCGCTGCGCACGTCGGTCAACGCCGGGTTGCTGGTTCTGGACGTCGAGCACTGCCCGGTTGAGCGGTTCGAACATAACAAGCACAGCGGCAAAGTCCCGCTGGTGATCGATTGCAGGTTAGCCGGCCGTTGA	MYLINGQLNAGLPLDAALERLQAQLPVLLETPPRSEEVIDCAEAFAQWLRAADRSPLLDEDQRQALIAFCARKSLSFKLERELGVDARSLRRIDYCGGPFESWQPLGLVVHVTPGNSPLLGFCAVLEGLLAGNVNWLRPSTREGDLTAQLLAAFLACDPGGRLRGYLAVLPVPSEQTGRLFAVANGVSAWGGEAALKALRERIPTGCRWIDWGHRISFAYITPLAASEQALDALVDEVCRLDQQACSSPQWLLVDSDDPGQLHAVGSALAAAFERRTGRWPTLETTAAEACEITTRTALARLDFSFANETGQVWTGNGWRILWEHHRALQPSPLFRTLLLRPMPQVLLAETLLPWRNVLQSCALICEPERAPGLVRRLMTAGVGRVTSTGEIQQGYDGEPHDGVYGLQRLSRRVSVSLDAGIASHRVTLDAAASPLALTPSTPIMDKAAFVALPPAPQAQLFFRSGGSSGAPVLSPYSHRDFDRHMRAAADGLRAAGLDPMYDRVMNLFYGGSLYGGFLSFTKILEQMDVVHYPMSAPPDDNFAEIAQLIVEHRINTLMGMPSTLHRLFSSQQSVLQGYGGVRKIMLGGEHLGQDCRLLFEQCGVTCVRSAIYGSVDAGPLGHACIASGDGVFHLMEDIQSLEIVDLEWDTPVGPDGIGRLLFTSRVRQARPLQRYEVGDLGRWLPGPCACGLESPRFELRERHGQLVRIATEFINTRDLSEHAQTAIQIVLSHAGCGGERLLIRTDGDAETVRRQVLGLAALRTSVNAGLLVLDVEHCPVERFEHNKHSGKVPLVIDCRLAGR	PGPT0026240_21	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR_VIRULENCE_REGULATORY_SYSTEM,PGPT0026240-paaK-K01912	NA	NA
D1-36_02747	1275			hypothetical protein	ATGAGCGCCCCATTAACCTACGACCAATGGCTCAACCATATCCGCACGCATTCGATGTTCTATCGCACGCAGCTGAGCCATCTACCCGTCCATGGCTGCGAGTTCCACCAGTTGCCGATCGTCAATCTCAGCGAGTATTGGAAAGACAGCCACGACCTGGACCATTGGCCGGTGTTGACCAGCCGCGTTAAGGACGCACTGGTCTTCAAGACCGGCGGTACGACCAGCGAAGGCAAGTTATCGGTGTATACCCACGCAGAATGGCAACTGATGCTCGATTGCTTCGGTCGCAGCTTGACAGCCCAATTGGCTGCGGGGGATCGCATTGCTAATCTGTTTTTCTCGGGGGATCTCTACGCCAGTTTCCTGTTCATCCACGGTGCCCTGTGCAGCGTCGATGTTGCGATTACCGAGTTTCCCTTCTCCGGCTCGGTGGAACTCGATGTGTTGGCCGACGCCATTGCTGGACACCGCATCAACGTACTCGTCGGCGTGCCTGCGCACTTGCTGGCCTTCGCCAGCCATGTCATTGGCAAAGGGCGCAGGCTGCCACAGATCACCACCGTGCTCTTTGGCGGGGAGAACCTGTTCGAAAGCCAGATGCCGACATTGAAGCGCGCCTTCCCGGGCGCGCGTTTCGCGTCCATCGGATACGCCAGCGTGGATGCCGGACTGGTAGGTGCGAGCACGCCTGATTGCGGCTTGGGCGAGCACCGGGTATTCGATCAGCACACGCGGGTGGAAATCGTCGACGACCTGAGCGGGGAAGCGATCGAGGCCATTGGCCAAGCCGGAAACCTGGTGGTGACGAATTTCAACCGGACCCTCATGCCCATTGTCCGATACCCGGTGGGAGACCGCGCCAGTTGGTGCGAGCCGGCAGGCACGCCGGGGCGCAAATTCGCCCTTCGAGGACGCAGCGCAGAGAGCCGGCGCGTACGCGTTGGCGTGTTGTCGCTGTTTCCCGAAGAAATAAGCGACATCGCGCGGCGCGTGGCCGGCGGTGTGCAGTGGCAACTGATCATCGAGCACAGCCAGGGCAATGACTGCGTGTTGCTCAAGTGGCTGCCGGAAAAAGCCGAGGATGCAGGCCCAACGCGATCCCATGCGCTTAAAGCGGCCTTGATCGAGCAATATCCAGGCCTCGATCGACTTCATGTGGATACCCAGGCCTGTACCGCACAGGACCTGGAGCGCCACCCCCGTTCCGGCAAGCACCTGTCGATCATCGATCGTCGGGTATACGGTTCGCGGGCACCGGAGGATGCCGGATGA	MSAPLTYDQWLNHIRTHSMFYRTQLSHLPVHGCEFHQLPIVNLSEYWKDSHDLDHWPVLTSRVKDALVFKTGGTTSEGKLSVYTHAEWQLMLDCFGRSLTAQLAAGDRIANLFFSGDLYASFLFIHGALCSVDVAITEFPFSGSVELDVLADAIAGHRINVLVGVPAHLLAFASHVIGKGRRLPQITTVLFGGENLFESQMPTLKRAFPGARFASIGYASVDAGLVGASTPDCGLGEHRVFDQHTRVEIVDDLSGEAIEAIGQAGNLVVTNFNRTLMPIVRYPVGDRASWCEPAGTPGRKFALRGRSAESRRVRVGVLSLFPEEISDIARRVAGGVQWQLIIEHSQGNDCVLLKWLPEKAEDAGPTRSHALKAALIEQYPGLDRLHVDTQACTAQDLERHPRSGKHLSIIDRRVYGSRAPEDAG	PGPT0026240_3361	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR_VIRULENCE_REGULATORY_SYSTEM,PGPT0026240-paaK-K01912	NA	NA
D1-36_02748	945			hypothetical protein	ATGAGCCTTCTGGTATTCAGGCCGTTCCAAGCCACCGACAGCGCCGGTACGTGCGAGCTGTTTCGTCGGGTGTACGGCGATCACTACGTCTCCCCTGACGTCTACATGCCGCAAATGATCTGCCAGCACAATCTCAAGGGGCGCTGGCATTCGCAGGTGGCGGTGGTCGACGGGCGCGTGGTCGGTCATGCCGCGTTGTGCCGCCAGGGACACGCCACTCAAGATGCCGAGCTGGCGCTGGTTGCGGTGGACCCCGAGTTGCAGGGCAGGCAGATCGCCTCGCGGCTGGGGCAACAATTACTGGACGGTTGCCGGCAGCTCGGGCTCGCCAGGCTATCGATCAAGCAGGTCACCAGCCATCCCTACAGCCAACGGCTGTCCCAACGACTGGGTTTTCATGACGTCGGCCTGCTACCCGACTTCGTGCCCTCTCCGTTCGCCACGGACCAGGCCGAAACCATCGTGATCGGCTGCCAAGTGATCGGCGACCACCCTCGACCGCTGCCACGTCTTCAATGGCCCGCGCCCCACCAATGGCTGATGGGCGCTTTGGAAACGCGTTTCGGGACCACCCTTGTGGATAGGCCGCAGGGCATTCATCCGTTGCGGCTTAGCCATTTACCCGGCCGGATCGAGATCGTGGCGGATCGGGTGGATACATGCCTCGTCGGGCAGCTTCGGCGCTTGCCCGCCCATTGGCCGCTTTCGGTCCGAATCGGCCTCGGTCGACACTTTTGCGCCGACCACCAGCTGCTGCTGGCTGCGGGTTTTTTCTTCACTGGGATGATGCCCACGGACGCCGGGCAAGGTTGGCAGGCGCTGTTCCACCGAGTTGCACATCCGCGCAGGCTCAGCCTGCACTCGGCCCCCATGCAACGCCTTCACGATGAATTGCAGGCTCACGCTCAAACCTGGAAAAACGCCCAGGCCCATTCCGCCGCCTGA	MSLLVFRPFQATDSAGTCELFRRVYGDHYVSPDVYMPQMICQHNLKGRWHSQVAVVDGRVVGHAALCRQGHATQDAELALVAVDPELQGRQIASRLGQQLLDGCRQLGLARLSIKQVTSHPYSQRLSQRLGFHDVGLLPDFVPSPFATDQAETIVIGCQVIGDHPRPLPRLQWPAPHQWLMGALETRFGTTLVDRPQGIHPLRLSHLPGRIEIVADRVDTCLVGQLRRLPAHWPLSVRIGLGRHFCADHQLLLAAGFFFTGMMPTDAGQGWQALFHRVAHPRRLSLHSAPMQRLHDELQAHAQTWKNAQAHSAA				NA	NA	NA	NA	NA
D1-36_02749	1992			hypothetical protein	ATGCCCTCATTGCGCACCATTCAGGCCCGCTACACGTTGTTTTTGGTTCTGTTCATTCTGGTGTTATCCATCCTGACGGTCGTCGGCATCAGTTACCTCGTCGCACCCAAGCTGCGCCACACCGAGGAACAAGTGGCGCTGAACCGCATTGCCGAGGTCGCCGAGCAGATCCAGGGCGAACTGAACAAGGTCCAGGCCCAGCAACGCAGCATTACCCAGACCATCCCCTTGCTCGACAGCGATGCCATCGACAAGGTACTGCCAGGCCTGGTGGACCAGTACGGTGAGCTGAAAGTGTTCGGCGGCGGGATCTGGCCTTTGCCCAACCAGCGCGCCGAAGGTCGCAGCAAATTCAGCACGTTCTGGCACCGCGACGCTTCCGGCAAGCTGATCGTCAACACCTTCTGGAACAGCGATGCTGCGCCGAACTACTACGAGCAACCCTGGCACAAGGGCGGCATGGCCACTCCCCCTGGCAAATGCGCCTGGGCGGCAGCCTACAAGGACGATGCGAGCGCCGAACCCCGGACCAACTGCGCCATGGCCATCCAGAAGAATGGCACGCCGTATGGCGTCTCCACCATCGACGTGACCCTCGGCTTTTTCAACGAGCTGATCGCACGCAAGGAAGCAGAACTGAACGCCGAGATGCTGATCGTGGAAAGCGACGGCAAGATCATCAGCAACAGCTCGCGGATCAGCGGCCCGATCGTGCTCAAGAACATCAGCGAACTGGCGGCTGGCTCGCCATTTGCCGCCCAGGTCAAGGCTGGCCTGGCCAACCGTGACCAACCGCAGCGCGTCGAATTCGACAACAACGGTGAAGCCAGCACGTTCTTCATGCGACCTATCGAAGGCTCGCCCTGGTTCCTCGCCACTGCCCTGCCGACCCGCCTGATCACAGCCCAACGTGATGACGTATTGAACACGCTGAGTCTGTTGCAGATACCCATGGTGATCCTGTTGGTGCTGATGCAGCTGTATGCGATCCGCCAATTGACCAACCGCATGAAAGTGCTCAAGGGCAACATCGATGCGTTGTCCACGGGCGACGCCGACCTGACCCGCCGCATCACCATCCGCGCCGAAGACGAACTGGGCGCCATCGGTCATTCGGTCAACCGCTTTATCGCGTACCTGCAAGACATGATCGGCGAAGTCACCCAGGCCACCGGCGCCATGGCATCTAGCCTGGACAAGCTGCAGCAGACTTCGGCCCACACCAGTGAAATCCTGATGCGCCATGCCTCGGAGACCGACCAGACGGTAACGGCCATCACCGAAATGAGTTCCACGGCCGAAAGCGTGGCGCAGAATGCCGCTGAGACGGCCGCCTTCACCCAGAGGGCCAATGAACATGCCGATCGCTCCCGCGTCGTTGTCGGCGAGGCATCGAACAGTGTCGTCGCGTTGATCGAGGAAGTGGCCAGCGCCACCCACAAGGTCGAGAGCATGCAGCAGGATGCGCAGCGCATCACCGAGATCCTCGGTGTGATCGGGGCCATCGCCGGGCAGACCAACCTGCTGGCGCTCAACGCCGCCATCGAAGCCGCCCGGGCTGGCGAGCAAGGCCGTGGCTTCGCGGTGGTCGCCGACGAAGTCCGCGCCCTCGCCGCCCGCACCCAGGCCAGCACTTCGGAGATCAACGAAATGCTGACGCGCCTGACCCAAGGCGTGAGCTCGTCGGTCGCGGCCATGGAAAACACCCAGACCAGTTGCCAATCGGCTGCCGACGCCACCTCCCGAGTGAACTCGGGCCTGGACGAAATGGCCGGCTCCGTCAGCCAGATCAACAGCCTCAGCACCCAGATCGCCACCGCCGCCGAGCAGCAAAGTGCAGTGACCGAGGAGATCAACCGGAGCATGGTGCAGATCCGGCACATGGTCGAAGAGCTGGTGGAAAGCGGCCTGGCCAGCGAGAACAACACCCGTCAGTTGCTGGAAGCCAACAGTCGGGTGAATGCGATCATGGGGCGGTTCAAGGTTCGCTGA	MPSLRTIQARYTLFLVLFILVLSILTVVGISYLVAPKLRHTEEQVALNRIAEVAEQIQGELNKVQAQQRSITQTIPLLDSDAIDKVLPGLVDQYGELKVFGGGIWPLPNQRAEGRSKFSTFWHRDASGKLIVNTFWNSDAAPNYYEQPWHKGGMATPPGKCAWAAAYKDDASAEPRTNCAMAIQKNGTPYGVSTIDVTLGFFNELIARKEAELNAEMLIVESDGKIISNSSRISGPIVLKNISELAAGSPFAAQVKAGLANRDQPQRVEFDNNGEASTFFMRPIEGSPWFLATALPTRLITAQRDDVLNTLSLLQIPMVILLVLMQLYAIRQLTNRMKVLKGNIDALSTGDADLTRRITIRAEDELGAIGHSVNRFIAYLQDMIGEVTQATGAMASSLDKLQQTSAHTSEILMRHASETDQTVTAITEMSSTAESVAQNAAETAAFTQRANEHADRSRVVVGEASNSVVALIEEVASATHKVESMQQDAQRITEILGVIGAIAGQTNLLALNAAIEAARAGEQGRGFAVVADEVRALAARTQASTSEINEMLTRLTQGVSSSVAAMENTQTSCQSAADATSRVNSGLDEMAGSVSQINSLSTQIATAAEQQSAVTEEINRSMVQIRHMVEELVESGLASENNTRQLLEANSRVNAIMGRFKVR	PGPT0015710_6988	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_02750	447			hypothetical protein	ATGGCCAATCCCCTGCACCTGCTCGCACTGAGCGCCGTTTTCACCTCTGCCCTGGCCCAGGCTGCCGAGCCGGTCACCATCGATGTACACCGCGACGCCAATTGCGGCTGTTGCAAGAAGTGGATCTCCCATCTGCAAGCCAACGGTCTTAAGGTCAATGACCATGTCGAAGCCGACATGAGTTCGGTCAAGCAGCGCCTGGGCGTCGCGCCCAACCTGCGTTCCTGTCACACCGCCGAGATCAACGGCAAATTCGTCGAGGGTCACGTCCCCGCCGAGCAGGTGCTGGCGTTAAGCAAACGCGGCGATCTGCTCGGCATTGCCGCGCCAGGCATGCCGATGGGCTCGCCGGGCATGGAAATGGACGGCATGAGTGATGCCTATCAGGTGATCGGGCAGAAAAAGGACGGCTCCCAAACCGTCGTGGCGGACTATCCAGCCCACTGA	MANPLHLLALSAVFTSALAQAAEPVTIDVHRDANCGCCKKWISHLQANGLKVNDHVEADMSSVKQRLGVAPNLRSCHTAEINGKFVEGHVPAEQVLALSKRGDLLGIAAPGMPMGSPGMEMDGMSDAYQVIGQKKDGSQTVVADYPAH				NA	NA	NA	NA	NA
D1-36_02751	435	yqaA	COG1238	Inner membrane protein YqaA	ATGCCCGAGGCATATGTCGGGCTGTTCCTGGCGGCATTTGGCGCGGCGACCCTGTTGCCGCTGCAATCGGAAGCGCTGCTGATCGGCCTGGTACTCAGCGAGCGCCACGCGGTCTGGCTGTTGCTGGGGGTCGCCACCTTCGGCAATGTGTTGGGCTCACTGGTGAACTGGTGGCTAGGGACCCGCGTTGAGCAGTTCAAGGACCGCCGTTGGTTCCCTGTCAGCCCGTCTCACCTGGACAAGGCCCGCCAGCATTACCAGCGCTATGGCTATTGGTCGCTGCTGCTGAGCTGGGTGCCCATCATTGGCGATCCCCTGACGCTGGTGGCGGGCGTAATGGGTGAACCGTGGCGACGCTTTCTGTTGATGGTCACCCTCGCCAAAGGCCTGCGTTATGGCGTACTCGTGCTCGCAACCCTGGGCTGGATGGGTTGA	MPEAYVGLFLAAFGAATLLPLQSEALLIGLVLSERHAVWLLLGVATFGNVLGSLVNWWLGTRVEQFKDRRWFPVSPSHLDKARQHYQRYGYWSLLLSWVPIIGDPLTLVAGVMGEPWRRFLLMVTLAKGLRYGVLVLATLGWMG				NA	NA	NA	NA	NA
D1-36_02752	1032	dhmA		Haloalkane dehalogenase	ATGCCGCGTTTGACTACCCGCTGGAAGTCCAGCCTGTTCTTGCTCGCTGCCCTGCCGCTGTTCGCCCAGGCCGAGAACCCGCCCGAAGGTCCGGCCTATGGCCCTCAGCTCGAAGGCTTCAAATACCCCTACACCCTCAAGCACTTTTCCTTGCAGTCTCAGGGCAAAACATTGCAGATGGGCTACATGGACGTGCCCGCCCAAGGCAAGGCCAACGGTCGCAGTGTCGTGCTGATGCACGGCAAGAATTTCTGCGCCGCGACCTGGGGCGACTCGATCAAGACCCTCAGCGAGGCTGGCTACCGGGTCATCGCGCCGGACCAGATCGGCTTCTGCACCTCGAGCAAGCCAGACCACTACCAGTACAGCTTTCACCAACTGGCGAACAACACCAACGCGCTGCTCAAGACCCTGGGTGTGCAGAAAGCCATCGTGCTGGGCCACTCCACCGGTGGCATGCTTGCCACCCGCTATGCGCTGCAATTTCCCGATCAGGTCGAACGCCTGGCGATGGTCAATCCCATCGGGCTCGAAGACTGGAAGGCCCTCGGCGTTCCCTACCGCAGCGTGGACCAATGGTATGAACGCGAGCTGAAACTCAGCGCCGACGGCATCCGTACCTACGAGCGCAATACATACTATGGCGGTCGCTGGAAGCCGGAGTACGAGCGTTGGGTGGACATGCTGGCCGGATTGAACAAAGGCCCGGGACATAAGCAGGTGGCATGGAATTCAGCACTGATCTACGACATGATCTTCACCCAGCCGGTCTACTACGAGTTCAAGGACCTGAAGGCGCCGACTCTGCTGCTGATCGGCACGTCCGACACCACCGCCATTGGCAGCGACATCGCTGCGCCGGCAGTGAAGGCCAGGTTGGGCAAATATGACGTGCTGGGCAAGCAGGTCGCCCAGCTGATTCCTCGATCGACACTGGTGGAATTCCCCAATCTGGGTCACGCGCCGCAGATGGAGGAACCAGACCGGTTCCACAAAGCCCTGCTGGGCTGGCTGGACAAACCCATTCTCTGA	MPRLTTRWKSSLFLLAALPLFAQAENPPEGPAYGPQLEGFKYPYTLKHFSLQSQGKTLQMGYMDVPAQGKANGRSVVLMHGKNFCAATWGDSIKTLSEAGYRVIAPDQIGFCTSSKPDHYQYSFHQLANNTNALLKTLGVQKAIVLGHSTGGMLATRYALQFPDQVERLAMVNPIGLEDWKALGVPYRSVDQWYERELKLSADGIRTYERNTYYGGRWKPEYERWVDMLAGLNKGPGHKQVAWNSALIYDMIFTQPVYYEFKDLKAPTLLLIGTSDTTAIGSDIAAPAVKARLGKYDVLGKQVAQLIPRSTLVEFPNLGHAPQMEEPDRFHKALLGWLDKPIL	PGPT0024360_3	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_LYSOPHOSPHOLIPASE_ACTIVITY,PGPT0024360-PLB-K13333	NA	NA
D1-36_02753	963	hprA_1	COG1052	Glycerate dehydrogenase	ATGGCGGTGCAGATTGCAGTCATCGATGATTGGCAGGACGTGGCAAGGGATGTGGTGGATTGGTCCGCACTGGAGAGCGTCGGCCAGGTGACGTTCCTGCATGACTATCCCGCCGACCACGACGCCCTGGCCGCGCGCCTGCAAGGCTTCGATGTCATCTGCGTGATGCGCGAACGGACACGTTTCGATGAAGCGCTGCTGCGCCGCTTGCCCAAGCTCAAGCTATTGCTGACCGGCGGCATGCGCAATGCCGCCCTCGACCTGAAGGCTGCCGCCGCGCTGGGTATCCAGGTGTGTGGCACCGACAGCTACAAGCACGCCGCGCCCGAACTGACCTGGGCACTGATCATGGCGCTTACGCGCAACCTCGTCCCAGAAGCCAACGCGTTGCGTGCCGGGCTTTGGCAACAGGGCCTGGGCGGCGACTTGCACGGCAAGACCCTGGCAATCCTCGGCCTGGGCAGCATCGGCACGCGCGTGGCGCAGTTCGGCCAAGTGTTCGGCATGCGAGTGATCGCCTGGAGCGAGAACTTGACGGCCGAACGGGCAACCGATGCCGGCGTCACCTATGTAAGCAAGCAAGCGCTGTTCGAGCAGGCCGATATTCTCTCGATCCACCTGGTCCTCGGTGACCGCACCCGGGGCCTGGTCGATGCCCAGGCGCTGGGCTGGATGAAGCCTGGTGCGCTGCTGATCAATACTGCCCGCGGGCCGATCGTGGACGAGGCTGCCTTGATCGATGCGCTGCAGCATAAACGCCTGGCTGGGGCGGGCCTGGATGTATTCGCCCAGGAACCGTTGCCGCCCGACCACCCGTTCCGGACGCTGGACAACGTACTGGCAACACCTCACGTGGGTTACGTGAGCCGCCAGAATTACCAGCAATTCTACGGCCAGATGATTGAAGACTTGCAGGCCTGGACGGCAGGCAAGCCGATTCGGGTGTTGAAGCCGATAGCCTGA	MAVQIAVIDDWQDVARDVVDWSALESVGQVTFLHDYPADHDALAARLQGFDVICVMRERTRFDEALLRRLPKLKLLLTGGMRNAALDLKAAAALGIQVCGTDSYKHAAPELTWALIMALTRNLVPEANALRAGLWQQGLGGDLHGKTLAILGLGSIGTRVAQFGQVFGMRVIAWSENLTAERATDAGVTYVSKQALFEQADILSIHLVLGDRTRGLVDAQALGWMKPGALLINTARGPIVDEAALIDALQHKRLAGAGLDVFAQEPLPPDHPFRTLDNVLATPHVGYVSRQNYQQFYGQMIEDLQAWTAGKPIRVLKPIA				NA	NA	NA	NA	NA
D1-36_02754	1572	glgA	COG0297	Glycogen synthase	ATGATCAGTGCTGCCTTGGAACCACAGCAAGTCCGCTCTCAACTACCGCCGGCGGCAGAATCGCCGACGGCACCGGTGCTGGCCACCGGAGGCAAGGCACTGCTCCCTGTCGTTCGACAGAATCCAAATCGCAAGAAAATTCTGTTCGTGACGTCCGAAATCGCCGACCTGGTGAAGACCGGCGGGCTGGGTGACGTTTCTTCCGCCCTGCCCCGGGCGATGGCCGGTCTGCACGATGTGCGGATACTGATCCCTGGGTACCCGCAAGTCATGAACAGCGGCAATCCTATCCATATCATCGGCGAACTGGGCGGCCATGCCGCACTTCCGCCCTGCAAGATCGGCCGCATGGACATGGCCGACGGTCTGGTGATCTACGTACTGATCTGTCCCGAACTCTATGCCCGTGAAGGTTCTCCCTACGGCGCCAACAATGGCCGCGACTGGCCCGACAACCACATCCGCTTTGCCCGCCTGGGCCTCGCCGCGGCAGACATCGCCGCCAACCTGGCGCAAATCCACTGGTGCCCCGACCTGGTCCACGCACACGACTGGCCAGCCGGGCTGGCGCCTGCCTATATGCACTGGCGCGGTCAACGCACCCCCACCCTGTTCACCATCCACAACCTGGCGTACCAGGGCGTGGTCAGCCTCGCGTCCTGCCCTGAGTTGGGTATTCCCGAGCACGCGCTGCAACAGGAAGGCATGGAGTTCTACGGCAAGCTGTCGTTCCTGAAGGCCGGCATGGCCTATTCCAGCCACATCACCACCGTGAGCGCCACCTACGCCCAGGAGATCACCACACCGGCGTTCGGCTGTGGACTCGATGGGTTCCTTGCCTCCAAGACTCAACAAGGCTTGCTCAGTGGCATCCCCAACGGCATCGATGAAAGCTGGGACTCGGCCACCGATACCCACCTGCAGCGCCAGTTTTCCATAGGCGACTGGGATGGCAAGGCAGCCAACGCCGCGCATGTACGCGACCTGTTCGGCCTGGATGATTCCACCGGCCCACTGTTCGCCGTGGTATCGCGTCTGGTGTATCAGAAAGGCCTGGACCTGACCGAAGCCGTTTCCGAATTCATCGTCGAGTCCGGCGGGCAGATCGCGATCATCGGCCGCGGCGAGCCGGAAGAAGAACAAGCCATGCGTGAACTGGCCCTGCGCTTCCCAGGCCGGATCGGCGTGCGCATCGGCTTCAACGAAACCGACGCTCGGCGGATGTTCGCCGGCAGCGACTTCCTGTTGATGCCGTCCCGCTACGAGCCCTGCGGCTTGAGCCAGATGTATGCGCAACGCTTTGGGTCGCTGCCCGTAGCCCGGAATACCGGCGGGCTTGCCGACACGATCGAGGACGGAGTCACCGGGTTCTTGTTCAACGAATCCACCGTCGACAGTTACAAAGAGGCGCTGACCCGTGCGTTCAAGGTGTACGAGTTCCCCGAACTGCTTAATGCGATGCGCTGCCGGGCGATGTCCGCGCCGTTCAACTGGAGCAAGGCTGTGGAACCCTACGCCGAACTTTACGAACAACTGGTCGCTAAATCATTAGGAAAATCTGCCAGACAATGA	MISAALEPQQVRSQLPPAAESPTAPVLATGGKALLPVVRQNPNRKKILFVTSEIADLVKTGGLGDVSSALPRAMAGLHDVRILIPGYPQVMNSGNPIHIIGELGGHAALPPCKIGRMDMADGLVIYVLICPELYAREGSPYGANNGRDWPDNHIRFARLGLAAADIAANLAQIHWCPDLVHAHDWPAGLAPAYMHWRGQRTPTLFTIHNLAYQGVVSLASCPELGIPEHALQQEGMEFYGKLSFLKAGMAYSSHITTVSATYAQEITTPAFGCGLDGFLASKTQQGLLSGIPNGIDESWDSATDTHLQRQFSIGDWDGKAANAAHVRDLFGLDDSTGPLFAVVSRLVYQKGLDLTEAVSEFIVESGGQIAIIGRGEPEEEQAMRELALRFPGRIGVRIGFNETDARRMFAGSDFLLMPSRYEPCGLSQMYAQRFGSLPVARNTGGLADTIEDGVTGFLFNESTVDSYKEALTRAFKVYEFPELLNAMRCRAMSAPFNWSKAVEPYAELYEQLVAKSLGKSARQ	PGPT0025880_950	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENVIROMENTAL_SURRIVAL	CE-BACTERIAL_FITNESS-ENVIRONMENTAL_SURRIVAL-GLYCOGEN_BIOSYNTHESIS,PGPT0025880-glgA-K00703	NA	NA
D1-36_02755	1803	glgB_1		1,4-alpha-glucan branching enzyme GlgB	ATGCCGTCAAGGACGCCTGAAACCTGGACCCACGGCGCGGTCCTGCTTGATCCAGAGCACACCCGTTTCGCCCTGTGGGCCCCTGATGCCCTTTATGTCAGTGTCGAACTCGACACTGGAGAATCCATACCGATGCTGCCCCAGGCCAACGGCTGGCACATGATCCAGGCCCGTTGCCCCTCCGGCACTCGCTACCGCTACAACATCGATGGTGAACTGCAAGTGCCTGACCCGGCTTCCAGGTCCCAGGATGGCGATATTGACCGCCACAGCGTGGTGGTCGACCCCCACGCTTATCAATGGCGGCACACCGGTTGGCGCGGACGCCCCTGGTACGATGCCGTCATCTATGAGCTACACGTCGGCGCCCTGGGCGGTTTCGAAGGTGTCGAGCAACAGCTGGCGCGCCTGGCCGGGCTTGGCGTCACGGCCATTGAACTGATGCCGCTCTCGCAGTTCCCCGGAGACCGCAACTGGGGCTACGACGGCGTGCTGCCGTACGCGCCCCAGGCTTCTTACGGTACGCCGGACCAGCTCAAGCACTTGATCGACAGCGCCCATGGCCATGGAATCGCAGTCATTCTGGACGTGGTCTACAACCACTTCGGCCCCGACGGCAACTACCTGCACCGCTACGCCAAGGGCTTCTTTCGCGAAGACAAGCACACACCATGGGGCGCGGCGATTGATTTCCGGCGCCGCGAGGTCCGTGACTTCTTCATCGACAACGCGCTGATGTGGCTGTCGGAGTACCGTTTCGACGGCCTGCGCCTGGACGCGGTTCACGCCATCGAAGACCCCGACTTCCTTCAGGAACTGGCCGCCAGGGTGCGTCAGCAGGTGGACCCGACACGGTATGTCTGGCTGACCGTCGAGAACGAACACAACCAGGCCAGCCTTCTGGAACAAGGCTACGACGCCCAGTGGAACGATGACGGACACAACGCGCTGCACGTGCTGCTGACGGGCGAGACCGACGCTTACTACGCCGACTATGCCGAGCAACCGACGGAAAAACTCGCCCGCTGCCTGAGCCAGGGCTTCGTGTTCCAGGGCCATACCAACCGCCATGGCGAATCCCGCGGGGAGCCCAGCGGTCACTTGCCGCCCAGCGCGTTCGTGCTGTTCCTGCAGAATCACGACCAGATCGGCAACCGCGCCCTCGGTGAACGTCTGCATCAACTGGCGCCGCCGCAAGCCCTGCAAGCCGCGACTGCCCTATTGCTTTTGTCGCCGATGATTCCGCTGATGTTCATGGGCGATGAGGTCGTCGCTGAACAACCGTTCCTGTTTTTCACCAGCCACCACGGCGAACTGGCCGAGCTGGTGCGTGAAGGCCGCCGCAACGAGTTCAAGGCCTTCAGCGCCTTTGCCGATCCGCAGAAGCGTGAACGGATCCCCGACCCGAACGCGGCCAGTACGTTCGACGCCTCAAGGCCCAACCTGGAGGCGCACCAGCCAGAGCAACTGGCCAGTGAAGCTCTTTATCGCCTACTGCTGAAAATCCGTCGGGAGGAAATCGTTCCGCGCCTGCCCGCCGCCCATCCCTTGGGCGCCGACGTATTGGGTCACGGCGCCGTCAGCGCACGCTGGCAAATGGGCGATGGCAGCGTGTTGCGCATCGACCTGAATCTTAGCGACAAGCCTGTCAACCACAGCGCCCCGCAAGATGCGCAGATTCTTTTCGAACATCCACCGCAGGCCATGGGTCTGTTGCAACAGGGGGTACTCACGCCCTACAGCGCGCTGGTCAGTCTGACGCAAGCGGCAACCTTGCCCACCCTTACTGGAGAGCGCCTATGA	MPSRTPETWTHGAVLLDPEHTRFALWAPDALYVSVELDTGESIPMLPQANGWHMIQARCPSGTRYRYNIDGELQVPDPASRSQDGDIDRHSVVVDPHAYQWRHTGWRGRPWYDAVIYELHVGALGGFEGVEQQLARLAGLGVTAIELMPLSQFPGDRNWGYDGVLPYAPQASYGTPDQLKHLIDSAHGHGIAVILDVVYNHFGPDGNYLHRYAKGFFREDKHTPWGAAIDFRRREVRDFFIDNALMWLSEYRFDGLRLDAVHAIEDPDFLQELAARVRQQVDPTRYVWLTVENEHNQASLLEQGYDAQWNDDGHNALHVLLTGETDAYYADYAEQPTEKLARCLSQGFVFQGHTNRHGESRGEPSGHLPPSAFVLFLQNHDQIGNRALGERLHQLAPPQALQAATALLLLSPMIPLMFMGDEVVAEQPFLFFTSHHGELAELVREGRRNEFKAFSAFADPQKRERIPDPNAASTFDASRPNLEAHQPEQLASEALYRLLLKIRREEIVPRLPAAHPLGADVLGHGAVSARWQMGDGSVLRIDLNLSDKPVNHSAPQDAQILFEHPPQAMGLLQQGVLTPYSALVSLTQAATLPTLTGERL	PGPT0014130_572	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
D1-36_02756	2079	malQ	COG1640	4-alpha-glucanotransferase	ATGAGTGATGCGCAATTGGAAATCCTCGCTGGCCGGGCAGGCCTGGCGGTGGACTGGATCGACGCCAACGGCCGGGCCCAGAAAGTATCGCCGGCGGTCCTGCGTTCGGTCCTCACCGGCCTGGGCCATCCCGCCGGTAGCGCGCAGGAAATCGACGCCAGCCTGTTGCAATTGCAAGAGGACCAACAGAACCACCGCCTGCCACCGCTGATCACGGCGGACGTCGGCGTCAATGTCGACCTGAGCCGTTATTTCGAGCCCGGCACGCCTTGCGAAATCCAACTCGAGGACGGCGCGACGATGAGCTCAAAGCTCGATGCCGACGCCGCTCTCCCCGGGATCGTCCCGGTGGGGTATCAGCACGTGAGCATCCAGGGCCAACATTTCACCCTGGCGGTGGCGCCGGCCCGTTGCTACAGCGTGGCCGATGCCGTGGATGATCCAACGCCTCGGGCCTGGGGTTTGAGCGCACAGCTTTATTCGCTACGACGCCCGGGTGATGGCGGCTTCGGCGACACCCAGGCCCTCGAAGAGCTGGCGCGGGTGGCGGGCGAACGCGGCGCCGATGCCCTGGCGATCAGCCCGATGCATGCGATGTTCAGCAGCGATACCGGCCGCTACAGCCCTTACTCGCCTTCCAGCCGGTTGTTTCTCAACAGCCTGTATGCCGCGCCGGGCACCATCCTGGGCGAGCGTGCGCTGCGCACGGCGATCGACGCCAGCGGCCTGACCAACCAATTGCGCAGCCTTGAAGAGCAGCCGCTCATCGACTGGCCGGTTGCTGCCCAAGCCAAGCAACGGGTGCTTCGCGCCCTGTATGACGGCTTCAGACAGGGCGAGCACCCCTTGCACGAAGACTTCAGCAGCTTCCGCCATAGCAGTGGAGAAGCCTTGGAGAATCACTGCCGCTTCGAAGCCCTCCAGGCCGAACGCGCGGCTCGCGGCGAAAGCCTCGACTGGCGCCAGTGGCCCGAAAAATGGCGGGACCCGCGCAGCCCGGCAATCGCTCGTTTCGCCGAAGAAAACGCTGACGAAATCGGCTTCTACGCTTTTTGCCAATGGTTGATCGCCCGCTGCCTGGAGCGTGCCCAGAGCGCCGCCAAATCCAGCGGCATGAGCATCGGCCTGATCGCCGACCTCGCGGTGGGTGCCGACGGCGCCGGCAGCCAGGCCTGGAGCCGGCAGGACGAATTGCTCGCGTCCCTTACGGTGGGCGCGCCCCCCGACATCCTCAATCGCTCGGGCCAGGGTTGGGGCATCTCCGCGTTCTCCCCCGAGGGCCTGGTTCGCAATGGTTTTCGCGCCTTCATCGAGATGCTGCGGGCCAATTTCGCCCACGCGGGTGGCTTGCGCATCGACCACATCATGGGATTGCAACGGCTATGGGTGATCCCCAACGATGCCCCGCCCACCGACGGTGCCTATCTCTACTACCCCATCGACGACCTGTTGCGGCTATTGGCCCTGGAGTCCCATCGTCACCAGGCCATCGTCCTGGGCGAGGACCTGGGTACGGTGCCCGACGGCCTGCGTGAAAAACTGGCGGCGCGCTCGATCCTCGGCATGCGCGTGTTGTTGTTCGAACAGGACAACACGCACTTCAAGCCCATTCTCGATTGGCCCGACGACGCCCTGGCGACCACCAGCACCCATGACCTGCCCACTCTCAACGGCTGGTGGCACGGCCACGACATCGACTGGAATGCCCGGCTGGAGCTGATCGATTCCCACACCGAAATGGATTGGCGCAAACATCGCCAGCGTGAACGCAAAGGGTTGCGCAACGCCCTGAACCAGGACCCGCAGAACTTCCGCGAGGAACACCGCGAAACCGACCAGGTGCTGGACGCCAGCGTGCGCTTTCTCGGGCATACCCGAGCGCCGTTGGTACTGCTGCCGTTGGAAGATGCCCTGGGCATCGACGAGCAGGCCAACCTCCCCGGCACCACCGACACCCACCCTAACTGGCGGCGGCGCCTGGCTCTGGAGAGCGGAGCGCTGCTGGACGACCCGGACGCCGCACGGCGTCTGGAAATACTCGCCTGCGCGAGGCTTCAGGCGAACGAGCGTGACCGATGA	MSDAQLEILAGRAGLAVDWIDANGRAQKVSPAVLRSVLTGLGHPAGSAQEIDASLLQLQEDQQNHRLPPLITADVGVNVDLSRYFEPGTPCEIQLEDGATMSSKLDADAALPGIVPVGYQHVSIQGQHFTLAVAPARCYSVADAVDDPTPRAWGLSAQLYSLRRPGDGGFGDTQALEELARVAGERGADALAISPMHAMFSSDTGRYSPYSPSSRLFLNSLYAAPGTILGERALRTAIDASGLTNQLRSLEEQPLIDWPVAAQAKQRVLRALYDGFRQGEHPLHEDFSSFRHSSGEALENHCRFEALQAERAARGESLDWRQWPEKWRDPRSPAIARFAEENADEIGFYAFCQWLIARCLERAQSAAKSSGMSIGLIADLAVGADGAGSQAWSRQDELLASLTVGAPPDILNRSGQGWGISAFSPEGLVRNGFRAFIEMLRANFAHAGGLRIDHIMGLQRLWVIPNDAPPTDGAYLYYPIDDLLRLLALESHRHQAIVLGEDLGTVPDGLREKLAARSILGMRVLLFEQDNTHFKPILDWPDDALATTSTHDLPTLNGWWHGHDIDWNARLELIDSHTEMDWRKHRQRERKGLRNALNQDPQNFREEHRETDQVLDASVRFLGHTRAPLVLLPLEDALGIDEQANLPGTTDTHPNWRRRLALESGALLDDPDAARRLEILACARLQANERDR	PGPT0018570_1485	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_COMPLEX_SUGAR_UTILIZATION	PLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018570-malQ-K00705	NA	NA
D1-36_02757	2787	treY		Maltooligosyl trehalose synthase	ATGAACGATAAAATGACTCCATCCCTGCGGGCCACCTTACGCCTGCAATTTCACAAGGGCTTCACCCTCGACGACGCCATACCGCAAGTGCCTTACTTCGCGTCGCTGGGTATAAGCCATATCTATGCCTCTCCGCTGCTCAAGGCGCGGGCCGGATCCATGCATGGCTACGATGTGGTCGACCCGACCCAGGTCAACCCCGAGCTGGGGGGTGAAGCCGCGCTCAAGCGCCTGGTCGCCACCCTGCGCGAACATCGGATGGGGCTGATCCTCGACATCGTGTCCAACCACATGGCCGTCGGCGGCAATGACAATCCGTGGTGGCTGGACCTGCTGGAATGGGGACGGCTGAGCCCCTATGGCGAATTTTTCGACATCCAATGGCATTCCCCCGACCCGTTGATGGAAGGCCAACTGCTCCTGCCCTTCCTGGGCAGCGACTACGGCGTGGCCCTGCAAGAAGGCACGCTGAAACTGCGCTTCGACGCCACGCAAGGCAGCTTTTATGTCGAGCATTATGAGCATCGCTTCCCTGTCTGCCCCATGCAGTACGGTGAGTTGCTAAAGCCTTCGGACGACCTGGCAGCCGAGCAGATCGAGTCGCTCAAGGGCCTGGCCGAGCGCTTTACCACGCTGAACTACCAGACCGATGCCCACTCCCTCGCCCGTCCCTTGCAACAGGAACTGCGAGACCTGGCAGCGGAGCCCGCGATACTCGACGCCATCCAGGTCACCCTGAGCGGCTACGACTCCACGCAGCCGGAAGGTTTCGAACGCCTGCATCGGCTGCTGGAACGTCAGAGCTACCGTCTCGCCAGTTGGCGTACGGCGGCGGACGATATCAATTGGCGGCGCTTTTTCGATGTCAACGAACTGGGCGGCCTACGGGTCGAGCGGCCGGCGGTATTCGAAGCGACCCACGCGAAAATCTTCGAGCTGATTGCCGAAGGATTGGTGGACGGGCTGCGGATCGATCACATTGACGGCCTGGCCGATCCTCGGGGCTACTGCCGCAAGCTGCGCCGGCGCGTCGACTCGCTGTCCCCGTCACGGCATCTGCCGATTTTCGTGGAGAAAATCCTTGGCGATGGCGAAACCCTGCGCCGGGATTGGAACGTTGACGGCAGCACCGGTTACGAATTCATGAACCAGATTTCGTTGCTGCAACACAACCCGGCCGGCGCCGAGCCCCTCGCTGAATTCTGGAGCCGCCACAGTGAACGGCCAGCGCATTTTATCGAAGAGGCGCGCCTGGCCCGCCAGCAGATTCTCAATGGATCCCTGGCCGGGGACTTCGAAAGCGTGGCCCAAGCCCTGTTGCAGGTGGCGCGGGATGACGTGATGACTCGCGACCTGACCCTGGGTGCCATTCGACGGGCATTGCAGGAACTGATCGTGCATTTCCCGGTGTACCGCACCTATATCACCCCGCTGGGTCGCTCCGCCGAAGATGAGGTGTTTTTCCAGAAGGCCCTGGAAGGCGCCCGGCAAACCCTCAGCGAAGCCGATTGGCCGGTGCTTGACTGCCTGGCCGACTGGCTCGGTGGCATGCCTTGGCGCGGGCGGCCTCGGGGCAGCGAGCGCAAACGGCTGCGCCACGCTTGCGTGCGCTTCCAGCAACTGACTTCGCCGGCCGCCGCCAAGGCTGTCGAAGACACTGCGCTGTATCGTTCGGCGGTGCTGCTGTCGCGCAATGACGTGGGCTACAACACCGAACGGTTCAGCGCCCCGGCTCAGGAGTTCCACGGGGCCTGCTTCGAGCGGTTGGAGCATTTCCCAGACAACCTGGTGACCACCGCCACCCACGACCACAAACGAGGGGAAGACACTCGAGCACGGCTGGCGGTGATCAGCGAACGCCCCGATTGGTACACCGCGTGCGTGGAGCAATGGCGCATCCTCGCCCCGTCGCTGCACAGCGACCCGGCCGCCCCTTCGGCCGGTGACGAGTTGATTCTTTACCAGGCCCTGCTCGGAAGTTGGCCGCTGGACCTTGACTTGCAGGACCCCAAGGCCTTGGCCAGCTATGCCGAACGCTTGTGGCAATGGCAGCGCAAGGCGTTGCGCGAAGCCAAGCTGCAAAGCAGTTGGGCCGCCGTCAACGACTCTTATGAGCAGGCAACGCAGATGTTCCTGGAGCGGTTGCTGCTGTGCGATGAGGGCTTGCCTCTGCGCTGCGCCATCGCCGAAGCCGTGCAGGCCATCGCTCCAGCGGGCGGCCTCAACAGCCTGGCGCAAACCTTGCTGCGCATGACCGTCCCCGGCGTACCGGATCTGTACCAGGGCAACGAGTTCTGGGACTTCAGCCTGGTGGATCCGGACAACCGTCGCCCAGTGGATTTCGAGGCCCGCCGTGAGGCGATGCAGGCCGACAGCGCCCCCGTGGCGCTTGTGCGTGATTGGCGCGACGGGCGTGTCAAGCAGGCACTGATCGCGCGGACGCTGGCCTTGCGGTCCGAGTATCCGCAACTGTTCCGCCAGGGCAGCTACGAGCCGTTGCCGGTACAGGGTGAGCATGCCGAGCACGTATTGGCCTTCGTGCGCCAACACCAGCAGCAACGGGCGATCGTCGTGGTGCCGATTCACACGGCGCGCCTGCTGGAAAACAGTGCCCTGCCCCAGGTCGCTGCATCGGACTGGGGCGACACGCGCATCTCGCTACCGTTTGCCACCGAGGGAGCAAAACTGAGGGGACTTTTTGCAAGCGCAGCAGTCACACCCCAAAGGGAGCTGATGGTCAGCGCCGCACTGGGGGATTTCCCGGTCAATGTCTTTATTGAATCTTGA	MNDKMTPSLRATLRLQFHKGFTLDDAIPQVPYFASLGISHIYASPLLKARAGSMHGYDVVDPTQVNPELGGEAALKRLVATLREHRMGLILDIVSNHMAVGGNDNPWWLDLLEWGRLSPYGEFFDIQWHSPDPLMEGQLLLPFLGSDYGVALQEGTLKLRFDATQGSFYVEHYEHRFPVCPMQYGELLKPSDDLAAEQIESLKGLAERFTTLNYQTDAHSLARPLQQELRDLAAEPAILDAIQVTLSGYDSTQPEGFERLHRLLERQSYRLASWRTAADDINWRRFFDVNELGGLRVERPAVFEATHAKIFELIAEGLVDGLRIDHIDGLADPRGYCRKLRRRVDSLSPSRHLPIFVEKILGDGETLRRDWNVDGSTGYEFMNQISLLQHNPAGAEPLAEFWSRHSERPAHFIEEARLARQQILNGSLAGDFESVAQALLQVARDDVMTRDLTLGAIRRALQELIVHFPVYRTYITPLGRSAEDEVFFQKALEGARQTLSEADWPVLDCLADWLGGMPWRGRPRGSERKRLRHACVRFQQLTSPAAAKAVEDTALYRSAVLLSRNDVGYNTERFSAPAQEFHGACFERLEHFPDNLVTTATHDHKRGEDTRARLAVISERPDWYTACVEQWRILAPSLHSDPAAPSAGDELILYQALLGSWPLDLDLQDPKALASYAERLWQWQRKALREAKLQSSWAAVNDSYEQATQMFLERLLLCDEGLPLRCAIAEAVQAIAPAGGLNSLAQTLLRMTVPGVPDLYQGNEFWDFSLVDPDNRRPVDFEARREAMQADSAPVALVRDWRDGRVKQALIARTLALRSEYPQLFRQGSYEPLPVQGEHAEHVLAFVRQHQQQRAIVVVPIHTARLLENSALPQVAASDWGDTRISLPFATEGAKLRGLFASAAVTPQRELMVSAALGDFPVNVFIES	PGPT0014125_414	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_TREHALOSE_METABOLISM,PGPT0014125-treY|glgY-K06044	NA	NA
D1-36_02758	357			hypothetical protein	ATGAGTACCGACGATAAACGCATTCGTGAATTCGCCTATCAGATCTGGGAGTCGGAAGGTAAGCCTGCCGGGCAAGAAGAGCGCCATTGGGAAATGGCACGCAAGCTGGCGGAGGCCGAAGCCCTGGCGCCAAGCAAACCACCGAAAGCACCGAGCAAATCCGCGGCCAGCAAGACTGACGGCACCAAGCCGGCTGCTGCCGCCAAGGCCACCGTCGCCAAGGCCGCCGCCAAGAGCACCGCGCCCAAGGCCAAGCCCGCGACCAAGCCTTCGGCAGCCACCGCGGCAATGGTCCCGCCCGCCGACAAGGCTAGCGCTAAAAAGCCACGCGCCACGCGCAAGCCCCCGGCGGTCTGA	MSTDDKRIREFAYQIWESEGKPAGQEERHWEMARKLAEAEALAPSKPPKAPSKSAASKTDGTKPAAAAKATVAKAAAKSTAPKAKPATKPSAATAAMVPPADKASAKKPRATRKPPAV				NA	NA	NA	NA	NA
D1-36_02759	2160	glgX	COG1523	Glycogen operon protein GlgX	ATGACCCGTCCGAAAAATACCACGCCGCCGCCCGTTATCGAGGCTTCGCGGATACGTGAAGGGCTGCCGTTTCCACTCGGCGCGACCTGGGATGGCCTGGGGGTCAATTTCGCGTTGTTCTCGGCCAACGCCACCAAGGTCGAACTGTGCATCTTCGACGACACAGGCGAGGTGGAACTCGAGCGTATCGAACTGCCGGAATACACCGATGAGATCTACCACGGCTATCTACCGGACGCACATCCGGGGCTGATTTATGGCTACCGCGTCTACGGTCCGTACGACCCCGAGAACGGCCACCGCTTCAACCCCAACAAGCTGCTCATCGACCCCTACGCCAAGCAACTGGTGGGCGAGCTGAAATGGTCGGAAGCCCTGTTCGGCTACACCATTGGCCATCCCGATGGCGATCTCAGTTTCGATGAGCGTGACAGCGCGCCATTCGTACCCAAGTCCAAGGTCATCGACCCGGCCCATACCTGGGGCCGCGATCATCGGGTCAGCGTGCCGTGGGACAAGACCATCTTGTATGAAACCCACGTGCGCGGCATCTCCATGCGCCATCCCTCGGTGCCGGAGAACCTGCGTGGTACGTTCGCTGGCCTGATGGTCGACGATGTCCTGGAACACATTCGCAAGCTGGGCGTGTCGTCTGTGGAATTGCTGCCCATCCACGCGTTCGTCAACGACCAGCACCTGCTGCAAAAGGGCATGACCAACTACTGGGGCTACAACAGCATCGCCTTCTTTGCCCCGGATCCGCGCTACCTCGCCAGCGGCAAGATTGCCGAGTTCAAGGAAATGGTCGCGCACATGCACGAGGCCAATCTGGAGGTCATCCTCGATGTGGTCTACAACCACACCGCCGAGGGCAATGAACAGGGGCCGACGTTGTCCATGCGAGGCATCGACAACGCGTCGTACTACCGGCTGATGCCCGACGACAAGCGCTACTACATCAACGATTCGGGCACCGGCAATACACTGGACCTGAGTCATCCCTGCGTGCTGCAAATGGTCACCGACTCGTTGCGCTACTGGGCCACGGAAATGCACGTGGACGGCTTCCGCTTCGACCTGGCGACCATTCTGGGCCGGTATCACGACGGCTTCGACGAACGCCACAGTTTCCTCGTCGCCTGTCGCCAGGACCCGGTGCTGCGCCAGGTAAAAATGATCGCCGAGCCCTGGGACTGCGGCCCCGGCGGCTATCAGGTCGGACGCTTCCCGCCAGGTTGGGTCGAGTGGAATGACAAATTCCGCGACACCGTGCGCGCCTTCTGGAAAGGCGACGATGGCCAACTGGCCGACTTCGCCAGCCGCATGACCGCCTCGGGCGAGATGTTCAACCAGCGTGGCCGACGGCCATACGCCTCGGTCAACTTCGTCACGGCCCACGACGGCTTCACGTTGCACGATCTGGTCTCCTACAACGACAAGCACAACGAAGCCAACGACGAGAACAACCAGGACGGCAGCAACAACAACCTGTCCTGGAACCATGGCGTCGAAGGCCCGACGGATGATCCCGAGATCAATGAGCTGCGTCATCGGCAGATGCGCAACTTCTTCGCCACCCTGCTCCTGGCCCAAGGCACACCAATGATTGTCGCTGGCGACGAGTTCGCCCGAACCCAGCACGGCAACAACAATGCCTACTGCCAGGACAGCGAAATCGGCTGGGTCAACTGGGACCTGAGCGCTGATGGCCAGGCGTTGCTGAAGTTCGTCAAGCGCTTGATCAAACTGCGCATGTCCTACCCGATCCTGCGACGCGGTCGATTCCTGGTCGGCAATTACAACGAGGACATCGGCGTAAAGGATGTGACCTGGCTGGCCCCCGACGCAAGCGAGATGACCGTCGAACAATGGCAGGATGGTCAAGGCCGTTGCCTCGGCATGTTGATGGACGGCCGCGCACAGGAGACCGGCATCCGCCGCAAGGGCGGCGACGCGACATTGTTGCTGGTGGTCAACGCGCACCACGACATCGTCAACTTCCGCCTGCCAGAGGTGCCCGAAGGGAGTTTCTGGACCTGCATGGTGGACACCAACCAACCCGCGGTGCGTGGCCAGGAGCGTTTCGATTTCGATTTCGAATATTCCGTGACCGGGCGCTCACTGCTGCTGTTCGAGCTTCAACGCGAAGAAGAGGAATAA	MTRPKNTTPPPVIEASRIREGLPFPLGATWDGLGVNFALFSANATKVELCIFDDTGEVELERIELPEYTDEIYHGYLPDAHPGLIYGYRVYGPYDPENGHRFNPNKLLIDPYAKQLVGELKWSEALFGYTIGHPDGDLSFDERDSAPFVPKSKVIDPAHTWGRDHRVSVPWDKTILYETHVRGISMRHPSVPENLRGTFAGLMVDDVLEHIRKLGVSSVELLPIHAFVNDQHLLQKGMTNYWGYNSIAFFAPDPRYLASGKIAEFKEMVAHMHEANLEVILDVVYNHTAEGNEQGPTLSMRGIDNASYYRLMPDDKRYYINDSGTGNTLDLSHPCVLQMVTDSLRYWATEMHVDGFRFDLATILGRYHDGFDERHSFLVACRQDPVLRQVKMIAEPWDCGPGGYQVGRFPPGWVEWNDKFRDTVRAFWKGDDGQLADFASRMTASGEMFNQRGRRPYASVNFVTAHDGFTLHDLVSYNDKHNEANDENNQDGSNNNLSWNHGVEGPTDDPEINELRHRQMRNFFATLLLAQGTPMIVAGDEFARTQHGNNNAYCQDSEIGWVNWDLSADGQALLKFVKRLIKLRMSYPILRRGRFLVGNYNEDIGVKDVTWLAPDASEMTVEQWQDGQGRCLGMLMDGRAQETGIRRKGGDATLLLVVNAHHDIVNFRLPEVPEGSFWTCMVDTNQPAVRGQERFDFDFEYSVTGRSLLLFELQREEEE	PGPT0019225_1349	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-ISOAMYLASE,PGPT0019225-ISA|treX-K01214	NA	NA
D1-36_02760	765			hypothetical protein	ATGAAACCTGCCTCTCGGTTGCAAGGCCGGCATCACTCGCAAATCTGGAACAGCGCGCCGCAACTGGCCGATATTCCGATCATCAGCACCCAGACACTCATACCTGCGGGCGCCCGCGCGGTCATCCTTGCCCCGCACCCTGGCGACGAAGTCGGCGCCTGCGGTGGGTTGCTCCAGTTGTTGAGCAACCTGGGCCAACCGATGTTGCTGATCTCGGTCACCGACGGCAGCCTGAGCCATCCGGGCTCGCCACTGTGGTCCGATGAGCGGCTGCGCACGTTTCGCCCGCATCCCCAGGAGAGCGTGGACGCCCTGCATCGCCTGGGCGTGCCTTCCAATGGCCTGCAGTGGGTGCGCGGAGGGTTCCCGGAAAAGGGCCTCGCCGAACATGAAGCCCAACTGACCGCGTTCATCGGCCATTACCTCAAACCTGGCGACGTGGTGTTCAGCACTTGGCGCCTGGACGGCGACAGCGACCACGACACGGTCGGCCGCGCTGGAGCCTTGGCCGCTGAAACCGTCGGAGCGGTGTTCAACGAACTGCCCGTATGGGCCTGGCACTGGCCGGTTCGTGAGCAGAACAGGATCCCCTGGCATCGGGCGCGCAAATTACGGCTGGACGTGTGGACCACCGCCCGCAAGCGTCACGCCATGCACGCCTATGCCAGCCAGCTCGGCAGCGAGCCCACCAACGGCATCGCACCGCTGGTGCCGAGGGTCATTCTCGATCGCATGGGCATGCCGTACGAAATTGTATTTATCTGA	MKPASRLQGRHHSQIWNSAPQLADIPIISTQTLIPAGARAVILAPHPGDEVGACGGLLQLLSNLGQPMLLISVTDGSLSHPGSPLWSDERLRTFRPHPQESVDALHRLGVPSNGLQWVRGGFPEKGLAEHEAQLTAFIGHYLKPGDVVFSTWRLDGDSDHDTVGRAGALAAETVGAVFNELPVWAWHWPVREQNRIPWHRARKLRLDVWTTARKRHAMHAYASQLGSEPTNGIAPLVPRVILDRMGMPYEIVFI				NA	NA	NA	NA	NA
D1-36_02761	801			hypothetical protein	GTGACTCGCGATCCCCACTGGCGGGTCGAAGAATCAGTGCCGCTGGACGCACCCGCGGCGATTCATCGACTGCGTGTTCTCACGGTGAATACCCATAAAGGCTTTACAGCCCTCAATCGTCGTTTCATTTTGCCGGAGCTGCGCGAAGCGGTGCGCGCCACAGGTGCCGACCTGGTTTTCCTTCAGGAGGTGCTTGGTGAACATGATCGACATGCCCTGCGCTACGACAACTGGCCCCAGACCTCGCAATACGAATTTCTCGCCGACAGCATGTGGAGCGACTTCGCCTACGGCCGGAACGCGGTGTACCCCGACGGACATCACGGCAACGCGCTGCTTTCCAAATACCCGATCCGCCAGTTCCGCAACCTCGACGTGTCAATCACCGGTCCCGAACGGCGCGGGTTGCTGCATTGTGTGCTGGACGTGCCGGGCCATGCCGAAGTCCACGGGATCTGCGTGCATCTGAGCCTGCTGGAAAGCCATCGCCAATTGCAGCTCAAGCTGCTCTGCAAATTGCTTGACTCTCTTCCCGAGGACGCTCCGGTGATCATCGCCGGGGATTTCAACGACTGGCAATTGCGCGGCAACACCACGCTTGCCCGTCGCCAGTACCTGCACGAGGCCTTTGAACACCATCACGGGCGTCCTGCCCGGACCTACCCCGCCCGCTTCCCCCTGCTACGCCTGGACCGCATTTACCTGCGCAACGCCACCAGCCACGCCCCGCAGATCCTCGGCAACAAGCCCTGGACGCACTTGAGCGATCACCTGCCGTTGGCGGTGGAAGTGCATCTGTAG	MTRDPHWRVEESVPLDAPAAIHRLRVLTVNTHKGFTALNRRFILPELREAVRATGADLVFLQEVLGEHDRHALRYDNWPQTSQYEFLADSMWSDFAYGRNAVYPDGHHGNALLSKYPIRQFRNLDVSITGPERRGLLHCVLDVPGHAEVHGICVHLSLLESHRQLQLKLLCKLLDSLPEDAPVIIAGDFNDWQLRGNTTLARRQYLHEAFEHHHGRPARTYPARFPLLRLDRIYLRNATSHAPQILGNKPWTHLSDHLPLAVEVHL				NA	NA	NA	NA	NA
D1-36_02762	2421			hypothetical protein	ATGATTCGGCGCGATCGGCATATCAATCGTCTGTTCAACGCCTTGTGGGTAGCGGCTCCGTTCCTGCTTCCTGCCTCATCAGCGATGGCGGCTTGCACATTGTCACCCACGGCAGGCGACGACACTTACGTGTGCGACAGTGGCACGAGTGCAACCGGGCTTACGGATCTGTCGGGCAACAACAACCTGACGGTCTCAGGCAGTGGCCTCGTTCAGGGTGACGTCGTGTTCGATGCCGGAACCGACCGCATCGAAATCAACGCCAACGGTGTCATCGATGGCGACGTCGAGCAAGGCTCGCAAGCCGACGCGTTTGAAATGAATGGCGGCCGGATTCTATCGATCTCCCAAGGCGATGGCCTCGATACGTTCCTGATGACTGGCGGCACCATCGTCGACGCGTTCGAAGATGGCGACATCGCCCAGATGACCGGCGGCACCATCGGCAGGGTCGACATGAAGCTCGATGACAACGTCTTCGACATGTCAGGTGGGGAAATCATCGGCAACCTCGTCACTGGCTTCGGCAGGGACACCATCATCCTGTCCGAAGGACGCATCGGCGGTAATGTCAGCGTCAGCGGTGGCAACGACAACGTGACCGTCAGTGGCGGGGAAATCGGCGGCGAGGTCCGGACCAGTGCCGGCGACGATCGATTCCAATGGAGCGGCGGCACCATCCGCTCAGCCATCCTGATGGGCGACGGCATCGACACCGCTCTGTTGCAGAACCTCACCGAGGCGGGACTCGCCCCCACGCCCAGCCTGGACGGAGGCTTGGGCCAGGACAACCTGACCTTCGAGGGCAGCACGTCCAGTACCGGAGCCCGCTATGACAACTGGGAAACCGTCAGCCTGACCCAAGACTCGCGCCTGGACTTGGGCGACACGCTGCTGCTGGGCGACAACGCCACCGGCACGGGTGTGTTCAACATCGACAGCAGCAGCGTATTGACCTCGACCCAAGGCGTCATCGCGCCGTTTACTTCAGGCCAGATGACCACGCTCAACAATGCCGGAGCAATTGATCTCGCCGACGGCAACACCCGCACCAATGACACCCTCACCGTGCAAGGCAATTACGCCGGCAATGGCGGCCAGCTACGCCTGCAAACGGTGCTTGGGGCCGATGATTCGCCCAGTGACAAACTGGTGGTCAACGGTGGCACCCTGACAGGCGGCACCGCCATCACCGTCACGAATCTGGGTGGCGCCGGCGGCCTGACTACCCAGGACGGCATCGAACTGGTCCAGGCCCAGAGCGGAGCCGTCAGTGATAGCAGCGCCTTTTCACTGGCGCAATCCGTCTCGGCCGGTGCATTCGACTATCGCCTGTTCAAGGGCGGCGTGGCCGGCAACGCCAACAACTGGTACCTGCGCTCCACGGTAGTGGCGGGCCCGGTCGCAGCGCCCAGCCCGACGCTGCCGCCGCTGCCGGCCGCCGTGCCGGGCGCTGCGCCGATTCCCTTGTACCGCCCCGAAGTCCCTACCTGGTCAGTACTGCCCCCAGCCGCCGCGCAATTGACGCTGATGGCCCTGGGTACGTTTCACGATCGGCAAGGCGACCAGCGCCTGCTGTCGGAAACCGGCGCGTTCGGCGCGGGTTGGGGCCGGGCCTACGGCAAAGACCTCGATCAAACCTGGGCCGGCACGGTAACGCCCCGGTTCGACGGTTCCATCAAGGGTTTCCAGGTCGGCCATGACTTGTACGCCGCCCCAACGTCCGACGATCGGACCCAGCGTATCGGTTTTTTTGTCGGCCACACCGAACTGAACGGCAACGTTGACGGCTTCAACCTCGGGTTCCAAGGCCGGCGCGCTGGCAAGATCGAGCTCGATGGCGACAGCTATGGCCTTTACTGGACCCTCATCGACCGCTCGGGTGGCTACGTCGATGCGGTGGTCATGGGCACCCGCCTGAATGGCGATAACCGCTCCGAACGTGGCGTCAAAATCGACAATCGCGGGCACGCCTTGACCCTATCGGCGGAGGCCGGCTATCCGTTTGCGGTAGCTCGCGACTGGGTCTTCGAACCCCAGGCCCAGATCATCCATCAGAAGATCAGCCTGGACAGCCAGGACGATGGGATTTCAAAGGTCGAATTCGACTCCGACAGCGCCTGGACTGGCCGCCTAGGCGCCCGGCTCAAGGGCAGCTATCAAGTCAGCGGCTTGCCGGTGGAGCCCTATCTGCGAGCCAATATCTGGCACACCTTTTCCGGCACCGACACGGTGACATTCGACGACACCCAACGGATCGAGACCGAACAACGCGCCTCCACGGCGGACCTGGGCGTTGGCTTGGTCGTGAGCCTGGCGTCTAGCGTCAGCGCCTATGCCGGCGTGGACTACAGCAATAACCTGGACAGCAACCAGCAACGCGGCGTGGCGGGCAATGTGGGCGTGAGAATCAGTTGGTGA	MIRRDRHINRLFNALWVAAPFLLPASSAMAACTLSPTAGDDTYVCDSGTSATGLTDLSGNNNLTVSGSGLVQGDVVFDAGTDRIEINANGVIDGDVEQGSQADAFEMNGGRILSISQGDGLDTFLMTGGTIVDAFEDGDIAQMTGGTIGRVDMKLDDNVFDMSGGEIIGNLVTGFGRDTIILSEGRIGGNVSVSGGNDNVTVSGGEIGGEVRTSAGDDRFQWSGGTIRSAILMGDGIDTALLQNLTEAGLAPTPSLDGGLGQDNLTFEGSTSSTGARYDNWETVSLTQDSRLDLGDTLLLGDNATGTGVFNIDSSSVLTSTQGVIAPFTSGQMTTLNNAGAIDLADGNTRTNDTLTVQGNYAGNGGQLRLQTVLGADDSPSDKLVVNGGTLTGGTAITVTNLGGAGGLTTQDGIELVQAQSGAVSDSSAFSLAQSVSAGAFDYRLFKGGVAGNANNWYLRSTVVAGPVAAPSPTLPPLPAAVPGAAPIPLYRPEVPTWSVLPPAAAQLTLMALGTFHDRQGDQRLLSETGAFGAGWGRAYGKDLDQTWAGTVTPRFDGSIKGFQVGHDLYAAPTSDDRTQRIGFFVGHTELNGNVDGFNLGFQGRRAGKIELDGDSYGLYWTLIDRSGGYVDAVVMGTRLNGDNRSERGVKIDNRGHALTLSAEAGYPFAVARDWVFEPQAQIIHQKISLDSQDDGISKVEFDSDSAWTGRLGARLKGSYQVSGLPVEPYLRANIWHTFSGTDTVTFDDTQRIETEQRASTADLGVGLVVSLASSVSAYAGVDYSNNLDSNQQRGVAGNVGVRISW	PGPT0030335_601	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_V_SECRETION_SYSTEMS	CE-T5a_AUTOTRANSPORTER_SECRETION,PGPT0030335-aidA_I|misL-K12678	NA	NA
D1-36_02763	903			hypothetical protein	ATGAAAACTTCCCCCCGCCCGCAGGAACTCAAAACCACCCTCTGCACCGTCTCGACCTCCCTGTTGCTGTGTTCGTCGATGCAAGTGCTGGCCGAACTGGAAGACCCTCTCACTGCCCCCTGGTACGACCGAACACCCGCCGACCACCCAACGGGCAACGACCCCGCGTCGGGCAAAAGTCCCGCGCTCTTCACGCTTCGCAACAACAATGGCCATACCCAGCGCGTCGGTTTGATCAGCGGCCAGAGCCGGATCACAGCCAATGGCAGCGCAATGCTGGTCGCGCCGGCTCTCGCCAAGCCGGGCCAGGAGACCCTGAGCCTGGAGGGGCAGAATCTTGGAGCCTACTGGAGCCTGACCGGCCCCGCGGGCTGGCACGTGGACCTGAGTGCCAGCGGGGGGCGGGTCAACGGTTTCAGCTTGAACGAACAGGGTCAGCGTCAAGCCACCGAGGGCAGCGCCGTCACGCTGTCGGTCGAAGGCGGCTTCCCCATCGGCATCAGCGAAAACTGGGTGGTCGAACCCCAGGCGCAGTTGATCAACCAGCGCATCAGCCTTGATACGCCGAACGGCGAAAATGGCGACAGCAGCGAACTGAGCACTTGGAGCGGTCGCGTCGGCGCCCGGCTCAAAGGGGCCTACCAAGTCAACGGCCTGGGCGTCGAGCCGTACGTGCGCACCAACCTGTGGCACACGGTCCAGAGCGCCGACACCGTCACCCTGGACAAAGTCGACAAGATCAGCAGCAGCCGCAAATCTTCGACCGTCGAAGTCGGCCTGGGCCTGGTTGCCCGGGTCACCCCAGTGGTGAGCCTGTATGTCAGCGCCGACTACAGCAGTGACGTCGACGACAACGACCTCAACGGCGTCATCGCCAGCCTGGGCGTGCGGATGCGTTGGTAA	MKTSPRPQELKTTLCTVSTSLLLCSSMQVLAELEDPLTAPWYDRTPADHPTGNDPASGKSPALFTLRNNNGHTQRVGLISGQSRITANGSAMLVAPALAKPGQETLSLEGQNLGAYWSLTGPAGWHVDLSASGGRVNGFSLNEQGQRQATEGSAVTLSVEGGFPIGISENWVVEPQAQLINQRISLDTPNGENGDSSELSTWSGRVGARLKGAYQVNGLGVEPYVRTNLWHTVQSADTVTLDKVDKISSSRKSSTVEVGLGLVARVTPVVSLYVSADYSSDVDDNDLNGVIASLGVRMRW				NA	NA	NA	NA	NA
D1-36_02764	1626	gapN	COG1012	NADP-dependent glyceraldehyde-3-phosphate dehydrogenase	ATGACCACCGCCACCCTGCTCTCCCATTTATTTCCCAGCGCCGCGGATATCCCAGAGGCCTACCGTCTCGGTGATCCCGTCGAACAACGGGAATACCTGGTCGATGGCGTCTTGAGAACCTGGCAAGGACCACTGGCCACCGTGCGCAGCCCGGTTTACCTGGCCGGCCCGAACGGCGATGAACAAGTGATCCTCGGCAGCACGCCGCTGCTGGACGCCGAGACGGCGCTCACCGCGCTTGACGCCGCCGTCCGGGCTTATGATCGCGGCCAAGGCACATGGCCGACGATGCGCGTCGCCGAACGCATCCGCCATGTCGAGAGTTTCCTGGCGCGCATGCGTGAACGACGTGAAGCAGTGGTCAAGCTGCTGATGTGGGAAATCGGCAAAAATCTGAAGGACTCCCAAAAGGAATTCGACCGGACCTGCGACTATATCGTCGACACTATCAACGCCCTCAAGGAGCTGGACCGTCGTTCCAGCCGCTTCGAGCTGGAACAGGACACGCTGGGGCAGATCCGCCGCGTGCCCCTCGGCGTCGCCCTCTGCATGGGCCCGTACAACTATCCGCTGAACGAAACCTTCACCACGCTGATTCCCGCGCTGATCATGGGCAACACCGTGGTCTTCAAGCCGGCCAAGCTCGGCGTGCTGCTGATACGTCCGCTGCTGGAAGCCTTTCGCGACAGCTTTCCTGCGGGCGTCATCAATGTGATCTACGGCAGCGGCCGAGAGACCGTCAGCGCACTGATGGCCAGCGGCAAGATCGACATATTTGCCTTCATCGGCACCAACAAGGCTGCCAGCGACCTCAAGAAACTCCACCCGCGCCCGCATCGCCTGCGCGCCGCCCTGGGGCTGGATGCAAAAAACCCCGGCCTGGTGTTACGCGATGTCGACCTGGACAATGCCGTCAGCGAAGCGCTCACCGGTTCGCTTTCTTTCAATGGGCAGCGGTGCACGGCTCTGAAGATCCTGTTCGTTCATGAAGACGTCGCCCCGGCGTTCATCGAGAAATTCAATGCCAAACTCGCCGCGCTGAAACCCGGCATGCCTTGGGAAGATGGCGTGGCGCTGACGCCACTGCCCGAAGCCGGCAAGGTCGATTATTTGCACGCCCTGGTGGCCGATGCCATCGCCAAGGGTGCGGGGGTGATGAACCAGCACGGTGGCGAATCCCGGGCTTCGTTCTTCTATCCGGCGGTTCTATACCCGGTGAACACAGCGATGCGTGTGTATCACGAAGAACAGTTCGGCCCCGTCGTGCCCATCGTGCCGTACCGTGACCTGAACACCGTGGTCGATTACGTGCTCGAATCCGACTTCGGCCAGCAACTGAGTATCTTCGGCACCCACCCAGCTGAAGTCGGCAAGCTGGTGGACACCTTCGCCAACCAGGTCGGGCGCATCAACATCAACGCCCAGTGCCAACGCGGCCCAGACACCTTCCCTTTCAACGGCCGGAAAAATTCCGCCGAAGGCACATTGTCGGTCCATGATGCGCTACGCACTTTTTCGATCCGTACGCTGGTGGCAACCAAATTCCAGGAGAGCAACAAGGCGCTTATCAGCGACATCATCCGTGAGCGGGATTCGAATTTCCTGACCACCGACTACATTTTCTGA	MTTATLLSHLFPSAADIPEAYRLGDPVEQREYLVDGVLRTWQGPLATVRSPVYLAGPNGDEQVILGSTPLLDAETALTALDAAVRAYDRGQGTWPTMRVAERIRHVESFLARMRERREAVVKLLMWEIGKNLKDSQKEFDRTCDYIVDTINALKELDRRSSRFELEQDTLGQIRRVPLGVALCMGPYNYPLNETFTTLIPALIMGNTVVFKPAKLGVLLIRPLLEAFRDSFPAGVINVIYGSGRETVSALMASGKIDIFAFIGTNKAASDLKKLHPRPHRLRAALGLDAKNPGLVLRDVDLDNAVSEALTGSLSFNGQRCTALKILFVHEDVAPAFIEKFNAKLAALKPGMPWEDGVALTPLPEAGKVDYLHALVADAIAKGAGVMNQHGGESRASFFYPAVLYPVNTAMRVYHEEQFGPVVPIVPYRDLNTVVDYVLESDFGQQLSIFGTHPAEVGKLVDTFANQVGRININAQCQRGPDTFPFNGRKNSAEGTLSVHDALRTFSIRTLVATKFQESNKALISDIIRERDSNFLTTDYIF	PGPT0018005_163	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018005-gapN-K00131	NA	NA
D1-36_02765	894			hypothetical protein	ATGGACAAGACCCTACGCCGCGGTTCGCTCGAAATGACCGCCGCCATGCTGATTTCCGGAACCATAGGTTGGTTTGTACTGGTGGCGGGCCTGCCCGTACTGGATGTGGTGTTCTGGCGTTGCGTATTTGGCACCGTCACGCTGCTGCTGATTTGCGCGGGATTTGGTTTCCTGCGTCGGGATGTGCTGACGCGCACAACGTTCCTGCTGGCGGTACTCAGCGGCGGGGCAATCGTGGGCAATTGGGTATTGCTGTTCGCTTCCTATTCCCGCGCTTCGATTGCGATCGGTACGGCGGTTTACAACGTCCAACCGTTCATGCTGGTCGGGCTGGCGGCGTTGTTCCTGGGCGAAAAGATCACCGCGCAAAAGCTCTTCTGGCTCGCGGTTTCGTTCCTTGGGATGCTGGCGATCGTCAGCGCCCATGGCGAACAAGGGCAGGGTGGCGAGGACTATCTGGCGGGCATCGCCCTGGCGTTGGGTGCGGCTTTGCTGTACGCCATTGCGGCGTTGATCATCAAGCGGCTCAGCGGCACGCCACCCCATTTGATCGCGCTGATCCAGGTCAGCACCGGGATACTGCTGTTGGCGCCATGGGCGAATCTCTCGACGTTGCCGCAGCAACCCGAGGCCTGGGCCAGCCTGCTGACCCTCGGCATGATTCACACCGGTATCATGTACGTGCTGCTATACAGCGCGATCCAGCGGTTGCCGACAGCCGTGACCGGCGCGCTGTCCTTTATCTATCCGATCGCGGCGATCTTCGTCGACTGGTTCGCCTTCGGTCATCGCCTCGAACCGCTTCAGTGGCTGGGGGTGGCGGCGATCCTGCTGGCTGCTGCCGGCATGCAACAGGGCTGGGGCGTCAAATGGCGGCGCCCGGCCCTGTCGTAA	MDKTLRRGSLEMTAAMLISGTIGWFVLVAGLPVLDVVFWRCVFGTVTLLLICAGFGFLRRDVLTRTTFLLAVLSGGAIVGNWVLLFASYSRASIAIGTAVYNVQPFMLVGLAALFLGEKITAQKLFWLAVSFLGMLAIVSAHGEQGQGGEDYLAGIALALGAALLYAIAALIIKRLSGTPPHLIALIQVSTGILLLAPWANLSTLPQQPEAWASLLTLGMIHTGIMYVLLYSAIQRLPTAVTGALSFIYPIAAIFVDWFAFGHRLEPLQWLGVAAILLAAAGMQQGWGVKWRRPALS				NA	NA	NA	NA	NA
D1-36_02766	438	lrpC	COG1522	HTH-type transcriptional regulator LrpC	ATGACTGACGACATCGACCAAATCCTCATCAAGGCGCTGATGGAAGATTCCCGACGCTCGCTCAAGGCTTTGGCGAACCTGAGCGGCCTGTCGTCCCCCAGCGTTGCCGAACGCCTGCGTAGACTCGAGGAGCGTGGCGTGCTCAGGGGCTATACCGTTGAAGTCGATCCGAAGTGTTTTGGTTATCAACTCCAGGCCATCGTGCGCATTCGCCCATTGCCAGGGCAGTTGCAAGAGGTGGAGCGGCAGATCCAGGCCATTGGCGAGTTCACTGAATGCGACAAGGTGACTGGCGAGGATTGTTTCATCGCGCGGCTGCATGTGCGGTCGATGGAACAGTTGGATGTTTTGTTGGATAAGTTGAATGTTCTTGCAGAAACCAATACGGCTATTGTCAAGAAGACGCCGGTGAAGCGGCGGTTGCCTCCGATGGGGTGA	MTDDIDQILIKALMEDSRRSLKALANLSGLSSPSVAERLRRLEERGVLRGYTVEVDPKCFGYQLQAIVRIRPLPGQLQEVERQIQAIGEFTECDKVTGEDCFIARLHVRSMEQLDVLLDKLNVLAETNTAIVKKTPVKRRLPPMG				NA	NA	NA	NA	NA
D1-36_02767	672	yccA	COG0670	Modulator of FtsH protease YccA	ATGCGCGAACAGGATTACGCAGTGAACAACAGCGTGCAGGCTGAGCAGCTAGAAGTTAGCCGCGTCCTGCGCAACACTTATGGCCTGCTGGCACTCACGCTCGCTTTCAGCGGTGTGATGGCCTTCGTCGCACAACAGATGCGCGTCGGTTACCCGAACATCTTTGTCGTGCTGATCGGTTTCTACGGCCTGTTTTTCCTTACCAACAAGCTCCGCGATTCGGCCTGGGGCCTGGTTTCGGCCTTCGCCCTGACCGGGTTCATGGGGTTCCTGCTCGGCCCTATCCTCAACCGTTACCTGGGCATGCAGGGCGGCGCAGAAGTGGTCAGTTCGGCCTTCGCAATGACCGCGTTGGTGTTCGGTGGCCTGTCGGCGTACGTACTGATCTCCCGCAAGGACATGAGCTTCCTGAGTGGTTTCATCACCGCCGGTTTCTTCGTGTTGCTGGGTGCGGTGGTGGCTAGCTTCTTCTTCCAGATCAGCGGCCTGCAACTGGCGATCAGCGCCGGCTTCGTGCTGTTCTCGTCGGTCTGCATCCTGTACCAGACCAGCGCCATCATCCATGGCGGCGAGCGTAACTACATCATGGCGACCATCAGCCTGTATGTGTCGATCTACAACCTGTTTGTCAGCTTGCTGCAGCTGTTTGGGTTGATGGGACGTGATGACTGA	MREQDYAVNNSVQAEQLEVSRVLRNTYGLLALTLAFSGVMAFVAQQMRVGYPNIFVVLIGFYGLFFLTNKLRDSAWGLVSAFALTGFMGFLLGPILNRYLGMQGGAEVVSSAFAMTALVFGGLSAYVLISRKDMSFLSGFITAGFFVLLGAVVASFFFQISGLQLAISAGFVLFSSVCILYQTSAIIHGGERNYIMATISLYVSIYNLFVSLLQLFGLMGRDD				NA	NA	NA	NA	NA
D1-36_02769	888			hypothetical protein	ATGCCATCCCCTAGCCTACTCAAGGAAAGTAAAGTGCCCCGTAAAACAATCGGTTCGATCGCTGCTGCAATTGTCGGCGTGGTCCTGTTATGCGTGTTCTTCGGAAGTTGGTACACGGTTGATGAAACCGAGCGCGGCGTGCTCCTGCGCAATGGCGCGCTGGTCGGGGTGGTTGAGCCGGGGCTGTCGTTCAAGACGCCATTTATCGAATCGGTACGCCTGATCAGCACGCAGAGCCAGGTTACCTCCTACGACGACTTGCAGGCCTACAGCAAAGACCAGCAATCGGCCGAGCTCAAAGTGTCGGTGTCGTGGCACATCGCGCCTTCCGACGTGGCGAAGGTCTATACCCAGTTCAAGGATCTGGAAGGCATCCGCGACCGGATGATCAGCCGGCAGGTGCCGACGCAGGTGGAGAATGTGTTCGGCAAGTTCAACGCCGTGGCCGCCGTGCAGAACCGCGTCCAACTGGTCAACGATATCTCCGCTGCGATCAAATCGACGATTACCGGGCCGGTGATCATCGACAGCGTCCAGGTTGAAAACATCGATTTCAGCGATGCCTACGAAAAGGCCATCGAAGCGCGCATGGCCGCCGAGGTCCAGGTCAAGACCCGTGAGCAGCAGCTCGCCACCGAACAGGTCCAGGCGCAGATTCGGGTGACCCAGGCCCAGGCGGAAGCCGATTCGCAAGTGGCCCAGGCCAAGGCCGATGCCCTGGCAACGGAACTGCGTGGCAAGGCTGAAGCCGAGGCGATCAAAGCCCGCGCCCAGGCGCTGGCCAGCAACCAGAACCTGGTGGAGCTGACCAAGGCCGAGCGCTGGAACGGTGAGCTGCCCACCACCATGCTGCCGAACAGCGCGCTGCCTTTTATCGATTTGAAGTAA	MPSPSLLKESKVPRKTIGSIAAAIVGVVLLCVFFGSWYTVDETERGVLLRNGALVGVVEPGLSFKTPFIESVRLISTQSQVTSYDDLQAYSKDQQSAELKVSVSWHIAPSDVAKVYTQFKDLEGIRDRMISRQVPTQVENVFGKFNAVAAVQNRVQLVNDISAAIKSTITGPVIIDSVQVENIDFSDAYEKAIEARMAAEVQVKTREQQLATEQVQAQIRVTQAQAEADSQVAQAKADALATELRGKAEAEAIKARAQALASNQNLVELTKAERWNGELPTTMLPNSALPFIDLK				NA	NA	NA	NA	NA
D1-36_02770	1794	sasA_13		Adaptive-response sensory-kinase SasA	GTGACCATTCTGATCAATAAATACAAGTGGCCCGTCCTGTTGGCCGCGGCGCTTGTTGTCTTTTCCGCATTGATCTTCTTTTTAATAAAATCCTACACATACGACTCAGCGACCTATTTCGAATCACGGGACTTCATTCGCCAACTCAAGCAAGCCGACGCCAACTGGAACGTAAAAATCCTCAGGAAGAAAATCGGCGTCAACAATAACCTGTCACTCACCCCACCACCCGAAGCGCAGACTCGCTGGGAGCAATTGGAGCGTTTGAACAGTTCCGGCCCGCTGGCGGCGCTCTGGGCGTCAAGGCGCCAGGGATACGTGGATGCGGTCAAGAACAAGAATCTGCTGGTGGAGCAGTTCGAGCAGCACAACGCCACCCTGCGGGCGTCCCTGGATGAGTTGCCGACGGTTGAAGACGAAATACAAAACCTGTTGCAGGAGATGAAGGCGAACGGCGAGATCGCGCGCCTGACCGCAGCCTCGAATGTCCTGGACCTGGCGTTGACCACCCTGGAGTTCGCCCTTTACGTCACGGCGGATAAAGAACGGGAAGTGCGGGACCAGTTAAGCGAACTCGAACATCAGATTGACCAACTGCCTGCCCTCTATCGGCCCGCGTTTGTGTCTCTGATACACCACGTCAAGACCATCATCCACGAACAGCCCCAGGTCAACGACCTGCTGGACCGCATCAGCGTCATCCCAGTGGCCCAGGAGCTGGACAGCATCAACGAGCTGTTGAACGAAACGCAGCGCAGGACCGCCGCCACGGACCGTAAGTACCATATATACCTGGCGGTGTGCGCCGGCCTGATGGCGCTTTTGATGATCTATCTGGCCGTACGGCTGGTGCGCAGTTATTCAGTCATCAACCAGATCAACCATGAGCTGCAAACTTCCAATGACAAACTGGAAGAACGCGTCCAGGAACGCACTCGCGAGTTGAAGGAGGCCGAACGGGAGTTGGTGGATGCCGCTCGCATGGCAGGCATGGCCGAGATTGCAACGAACGTGTTGCACAACGTCGGCAATGTCCTCAACAGCGTGAATATTTCCGCGGACCTGGTCACCCGCAAGTTGAAAAACAGCAAGACGCAAGGGTTGGGCAAAGCCGTGAAAATGATGAACGAACATGCCGACGACCTGGGTCATTTCATTACCGAGGACGAAAAAGGCAAGTTGTTGCCCCGCTACTTCAATGAACTGGTGGACTCTGTTGCAGGCGAACAAGCACTGCTCATCGAAGAACTGGCGCAGTTGACCAAAAGCATCGATCACATCAAGGACATCGTCACTACCCAACAAACCTACGCCGGGGCTGCGAGGCTGATCGAGCCGCTGAACGTCGCCGATCTGTTCGAGGATGCCCTGCGCATGAATGCAGGTGCGCTGAGCCGGCATCATGTCACCGTGATCAAGGATTACCAGGACGCTCCCGTGATTCTCGGCGACAAGCACCGGCTGCTGCTGATCCTGATCAACCTGATCAGCAATGCCAAGTTCGCCATGTCCAGCGTTGAGCACCCACGGGAGATGACCCTGGGAATCCGCATCGTCGACCAGACGACGTTATGCGTCAGCGTCAAGGACCGTGGCGAAGGGATTTCCAAGGAAAACCAGGCGAGGATCTTCAATCATGGCTTCACGACCCGCAAGGACGGCCATGGCTTTGGCCTGCACAGTTGCGCCCTGGCGGCAGTCGAAATGAACGGCCGTCTCTTGGCCTACAGTGACGGACCGGGGCACGGTGCCCTGTTTACCCTGGAACTGCCCCTGGAGCTGGCAGCCTCATGA	MTILINKYKWPVLLAAALVVFSALIFFLIKSYTYDSATYFESRDFIRQLKQADANWNVKILRKKIGVNNNLSLTPPPEAQTRWEQLERLNSSGPLAALWASRRQGYVDAVKNKNLLVEQFEQHNATLRASLDELPTVEDEIQNLLQEMKANGEIARLTAASNVLDLALTTLEFALYVTADKEREVRDQLSELEHQIDQLPALYRPAFVSLIHHVKTIIHEQPQVNDLLDRISVIPVAQELDSINELLNETQRRTAATDRKYHIYLAVCAGLMALLMIYLAVRLVRSYSVINQINHELQTSNDKLEERVQERTRELKEAERELVDAARMAGMAEIATNVLHNVGNVLNSVNISADLVTRKLKNSKTQGLGKAVKMMNEHADDLGHFITEDEKGKLLPRYFNELVDSVAGEQALLIEELAQLTKSIDHIKDIVTTQQTYAGAARLIEPLNVADLFEDALRMNAGALSRHHVTVIKDYQDAPVILGDKHRLLLILINLISNAKFAMSSVEHPREMTLGIRIVDQTTLCVSVKDRGEGISKENQARIFNHGFTTRKDGHGFGLHSCALAAVEMNGRLLAYSDGPGHGALFTLELPLELAAS				NA	NA	NA	NA	NA
D1-36_02771	192			hypothetical protein	ATGAGTACTGCGATGCTGACGAAAATGCACATCAATGGCTATGACGTACTGAGCGTCAACAGCGGCCCTTGGCGAGTCTGTACCCAGGCTGATCGGCTGGGTTCCTTCGCCTCACGGGAGGAAGCGCTGGCCTACGCCGCCGCATTACCCGCCAGGAGACGCCGTAACGCCCCGTCCGGGAACGTCAAGTAG	MSTAMLTKMHINGYDVLSVNSGPWRVCTQADRLGSFASREEALAYAAALPARRRRNAPSGNVK				NA	NA	NA	NA	NA
D1-36_02772	900			hypothetical protein	ATGAACAATTTCGCCAGGGCGCTGGTCGTGGCGCTGTTTGCCCTGCACTTGTCGGGCTGCATCGGCCCGCCCATCGAATTGACCCCGCAAACCGAGGAACGCCTGCGCGTTCAGGCCCCGATCCGTTTCCTGCTGACATTCGATGATGGGCCTAGCGCATCGTCTTTCTGGAATCCGAGCGCCGACGTGCTGGACGCATTGGACCGTAATCCGGTGCAGCCTGGGATCAAGGCGGTTTTTTTCGTCCAGACACGAGCGCCACGGGCCGGTGGCAGCGAAATCGGCCGCTCGCTCATGCATCGCGAGCATGCGAACGGACACCTATTGGGATTCCACACGGCTACCTATTGGCATACCAATCATCGATTCCTGGATCCGGATGAGTTGGAGCAGTCCCTGTTCAATGGCGCCAACGATATCGCTGTGATCACAGGCGCATCGCCAAACCTGGTACGACCGCCATTCTGGAGTTTCGACAAGCGCACGTTTGCCGCTTATCAACGACACGGTATGCACGTATTGCTGACTGACTTGAGCGCCAATGATGGCAAGGTTTGGGGCATTACCGTGAGCCCACGACGGCGGATGAGCCTCACGCGCCAGCTCTCCGAGGTCCGCGAGCGCATCGCGGATGGTCAATTGCCCACAGTGGACGGTGTGATACCGGTCGTCGTGACCTTCCACGACCTCAACCGATATACCGCCCGCCACGCCCGTGAATACCTACAGATCCTTTTGGACAGTGCCAGGGAGACCGGGCTCAGGACCGATGCGAAGCCGTTCTACGACGACAGCCGCGCCCTGGAACGAGCGGCGCTGGCTCGCACGGTTCGCGACACGTCCCAGCCCGTGCATCTGCCCGGTTTATGGGATTGGCTGTGGGATTCGGACTCCCATTGA	MNNFARALVVALFALHLSGCIGPPIELTPQTEERLRVQAPIRFLLTFDDGPSASSFWNPSADVLDALDRNPVQPGIKAVFFVQTRAPRAGGSEIGRSLMHREHANGHLLGFHTATYWHTNHRFLDPDELEQSLFNGANDIAVITGASPNLVRPPFWSFDKRTFAAYQRHGMHVLLTDLSANDGKVWGITVSPRRRMSLTRQLSEVRERIADGQLPTVDGVIPVVVTFHDLNRYTARHAREYLQILLDSARETGLRTDAKPFYDDSRALERAALARTVRDTSQPVHLPGLWDWLWDSDSH	PGPT0018645_3627	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_HYDROLASE_ACTIVITY,PGPT0018645-pda|pgdA-K22278	NA	NA
D1-36_02773	255			hypothetical protein	ATGGGCGGTCCATCGCTTTACATCATCGACTACATGCTCCATGGCGAGCCCAAGTCTTTCATCATTCGCGCCGAAGTGATGAATAACTCCGAAGCTTGGCATTGGGCCAGTTGCGACGCGGGTGTTGGGCGCATCCCCAAATTCGGCAGGGAGAAGGTCAAGCGGGTTTCAAAACCCATGGCAGAAAAATATGGCATTACCGATGTGCGCTGGCGAGCCTCCGTCGCGCCATCCTGGGTCAAGGAGTCTGGCTGA	MGGPSLYIIDYMLHGEPKSFIIRAEVMNNSEAWHWASCDAGVGRIPKFGREKVKRVSKPMAEKYGITDVRWRASVAPSWVKESG				NA	NA	NA	NA	NA
D1-36_02774	231			hypothetical protein	ATGTCCGAAAAAGAGTCCATCACCACCCTGCTCACTTTATTGGAATCGCGCCAGGCGGGGCTGACCGCGGCCTGCAAGGAAATTGCCGACTGGGTCGACCATCAGGGCGGCCATCCCGCTGCAGTGCGTATCCGCGATCGGCTCAACGATATCGAAAAGGATGCCCCGTCGATCCAGAGCGCCCTCTCTTCACTCAAACCTGTGGAACGTCCGTTGCCAAGATTTCGCTAA	MSEKESITTLLTLLESRQAGLTAACKEIADWVDHQGGHPAAVRIRDRLNDIEKDAPSIQSALSSLKPVERPLPRFR				NA	NA	NA	NA	NA
D1-36_02775	426			hypothetical protein	ATGAATGCCAGAGTCCTGCTGCTGATTGCCTGTGCCTGCCCCGCCACCGTCATGGCGCAGGGTTGCGAGGTCCTTACCCGATCCCAAAGCCAGGCGGTACAGGAAATCGAAACCCGCAGTTGCTATGAGTACAAGGGCGTCCCCTCGGAGGCCATCGGCTGGTCCTGCAGCAACGAAAGCAAAGGGACCCTGAGCACTCAAAAGAAACCCGTCGAGCGTTGCGCCGAGGGCTACGTGGCAACGTGTCAGGCAAGACTGACTCAGGAAGCCCTGGCCAATCCCCATTCCACCAGCAAGGATCGCAGCGGCGGCTCGGCGAATATCCCGGACAACGCCCAAGTCACCTGGTACTACTACGACGCGCAACAAGTGCAGCAAGCACAAAAGGATTGCGAAACCACCGGCGGCCAATGGAAGAACCGCTGA	MNARVLLLIACACPATVMAQGCEVLTRSQSQAVQEIETRSCYEYKGVPSEAIGWSCSNESKGTLSTQKKPVERCAEGYVATCQARLTQEALANPHSTSKDRSGGSANIPDNAQVTWYYYDAQQVQQAQKDCETTGGQWKNR				NA	NA	NA	NA	NA
D1-36_02776	228			hypothetical protein	ATGTCTGAACTAGCCAGTTATTTCTGGATCGCCGTAGCGGTGTTGCTGTTACTCGTGGACTTGTGGGCGATCGTCAGCGTCTTTCGCAGCGACAAGTCGGCCGGTACCAAGGCGGGCTGGGCGCTGTTGCTGATTATCTTGCCTGTCTTGGGCTTGATCATCTGGGGCGTGGCCGGGCCACGAGGCGTCAAGAACCCGCCTTCTTCCCCAGAACACAGCAAGGGCTGA	MSELASYFWIAVAVLLLLVDLWAIVSVFRSDKSAGTKAGWALLLIILPVLGLIIWGVAGPRGVKNPPSSPEHSKG				NA	NA	NA	NA	NA
D1-36_02777	189			hypothetical protein	ATGATGACCACCGTTGAAGACTTCAAAGTCAGATCCCACGAGCTTCTGGTTGAGCTTGATGCAGCAACGTCGGAGATGATGGCGCTTATCTGTGTCCATCAAATGTCGGGAACCGCCTGGGACGAGGCGGTCCGGCGTCAGCACGAGGCCTATGAGCAATGGGTCGCCTACCTCAACGAGCGCTTGTAG	MMTTVEDFKVRSHELLVELDAATSEMMALICVHQMSGTAWDEAVRRQHEAYEQWVAYLNERL				NA	NA	NA	NA	NA
D1-36_02778	363	rppH_2		RNA pyrophosphohydrolase	ATGAAGATTCGAGCGACCGTCATCTGCGAAGAAGACCGCCACATCCTGCTGGTACGTAAGCCCAAAAGCCGCTGGGGGTTGCCTGGCGGAACTGTCGAGCGCGGCGAAAGCCACGCCGACGCCGCCCTAAGGGAACTGGCGGAAGAAACGGGGCTGAGCGCCGAAAGCCTGCTTTACCTGATGCGGATCAATGACGGCGGTACCGAGCATCACGTGTTCGAGGCGGCGGTCAACGATTCGACGGCCGCCAGGCCACAAAATGAGATCAGCGACTGTGTATGGCACCCGTTGGACGCCATTGCGCAGTTGCAGATGAAAAAAGGGATGCGGGAAATATTGGAAGCGTTTCGGCGCAGGCTGTAG	MKIRATVICEEDRHILLVRKPKSRWGLPGGTVERGESHADAALRELAEETGLSAESLLYLMRINDGGTEHHVFEAAVNDSTAARPQNEISDCVWHPLDAIAQLQMKKGMREILEAFRRRL				NA	NA	NA	NA	NA
D1-36_02781	840			hypothetical protein	ATGACTGAACGCCCAAAACTGGTGGCGAGCCGGGCTCCGGTGCCCACCTCATCACGCCCCAATCTTGGCACGCCGGAGCGCCTGGTGTCGCTGGTGGCCGGCTCGTTATTGCTTGCCAATGGTTTGCGCCAGGGCGGTCTAAAGGGCTGGCCGCAGGTGCTGCTCGGCGCGTGCGCTGCCTGGCGAGCCTATTCAGGCACATGCCGGATCAAGCAAGCCCTGACCCACAGCCCTTTCGAACAAACATTCGAACAGGATCGCGATTGGGACGGCAGCAAGGTCATTTCCCGCAGCATCACGGTGGGCAAGCCGAGGGACGAGGTCTATGCGTTCTGCAGCGAACCGGCCAATCTGGGAGCGCTCATGCCATGGGTGGACGCCATCGAACAGACGGGCGAACGAACTTATCGCTGGGTCGCCCATGGCCCGATGGACAAGACGTTGCAGTGTGACCTCGAACACTGCGAACCCAAGGAAGGCCGCAAGCTGCACTGGATTGCCGGTCCGGACCGACGCTTCAAGCATGACATCCAGATGCATTTCAGCGATGCGCCCGCCGGTCGCGGTACGCAGATCAAAGTCATCGTGGCTTGCGAGACGCCTCTCGGCGCGGCCGGCTATGCGCTCGCCGCCGCTATTTCCCGGTTCTCCGACAAGGCCCTGCTCAATGTGCTGCGCAGCATCAAGCAGCAACTGGAAACGGGCGAAGTCAGCACCAACAAGATGCGCGATCCGCATACCAAGGACTTTCTGTTTGTCCACCCGGCTACCCACGCGACGCAAGCTCCAGCCAACGACTCATCCTCTGACAAACCCGAACTCAATGGAGGTACCGTCTGA	MTERPKLVASRAPVPTSSRPNLGTPERLVSLVAGSLLLANGLRQGGLKGWPQVLLGACAAWRAYSGTCRIKQALTHSPFEQTFEQDRDWDGSKVISRSITVGKPRDEVYAFCSEPANLGALMPWVDAIEQTGERTYRWVAHGPMDKTLQCDLEHCEPKEGRKLHWIAGPDRRFKHDIQMHFSDAPAGRGTQIKVIVACETPLGAAGYALAAAISRFSDKALLNVLRSIKQQLETGEVSTNKMRDPHTKDFLFVHPATHATQAPANDSSSDKPELNGGTV				NA	NA	NA	NA	NA
D1-36_02782	1173		COG1063	putative zinc-binding alcohol dehydrogenase	ATGCGCGCATTGACTTGGCAAGGCCCTAACAAACTGCAGGTCGAGACGGTGGACGATCCCTCCATCCTGAATCCCCGCGACGCCATCGTGCGGGTGATCCTGTCCTCGGTGTGCGGCTCGGACCTGCATCTGCTGGGCGGCTACGTGCCGACCATGCAGGCCGGCGACATCATTGGGCATGAGTTCATGGGCGAAGTGGTGGAAACCGGCTCGGCTGTCACGCAGATCAAGAAAGGCGACCGGGTCGTCACAGTGTCGATTGTCGGCTGCGGAGAATGCGAGCATTGCCAGCGTTCGGACTTTTCCTGCTGCGACAACTCCAATCCGAACCCCACCGCCACCGACATCGCCTACGGTCAACCCGCCTGCGGCATCATTGGCTACAGCCATGCGTTCGGTGGTTATGCCGGCAGCCACGCCACCTATATCCGCGTGCCGTTTGCCGACGTCAACCTGTTCACGATCCCCGATGGCGTCAGGGATGAGCAGGCCGTGTTCGTCTCCGATGCGGTGCCCACCGGTTATTTCGCCGCCGACAACGCCGATATCCAACCCGGCGATACGGTGGCGGTCTGGGGTTGCGGCGGGGTTGGGCTGATGGCGATGTCCAGCGCCTACTTGCTAGGCGCAGAACGGGTGATTGCCATCGACCGCTTTGCCGATCGTTTGCGCCTGGCCGAGGAAAAGGCCGGCGCCATCGCCCTCAACTACGAGACCACCGACGTGCATGCCGCCCTGCTGGAACTGACCGGCGGCCGTGGACCAGATCGCTGCATCGATTGCGTCGGCATGGAGGCCCACGGCACGGAAGTCGATTATTTCTACGACAAGACCAAACAGATGCTGCGCCTGCACACCGAACGCGGGACCGTGCTGCGCCAGTCGATTCGCGCGTGTCGTAAAGGCGGGACGGTGTCGGTGGTCGGCGTGTACGGCGGCTTGCTGGACAAATTCCCGATGGGCGCGATCGTGAACAAGTCACTGACTCTGCGTTCCGGCCAGCAACCGGGACAGCGTTATGTGAAGCGTCTGTTCGAACACATCCAGAACGGTGACCTGGACCCCTCCTATCTGCTGACGCATCCCATGGGCCTGGAGCAATCGGTTGAGGGCTACGCAATGTTCAAGGACAAACGCCAGGATTGCCTACGGGCGGTGTTCCGGCCGGAATAG	MRALTWQGPNKLQVETVDDPSILNPRDAIVRVILSSVCGSDLHLLGGYVPTMQAGDIIGHEFMGEVVETGSAVTQIKKGDRVVTVSIVGCGECEHCQRSDFSCCDNSNPNPTATDIAYGQPACGIIGYSHAFGGYAGSHATYIRVPFADVNLFTIPDGVRDEQAVFVSDAVPTGYFAADNADIQPGDTVAVWGCGGVGLMAMSSAYLLGAERVIAIDRFADRLRLAEEKAGAIALNYETTDVHAALLELTGGRGPDRCIDCVGMEAHGTEVDYFYDKTKQMLRLHTERGTVLRQSIRACRKGGTVSVVGVYGGLLDKFPMGAIVNKSLTLRSGQQPGQRYVKRLFEHIQNGDLDPSYLLTHPMGLEQSVEGYAMFKDKRQDCLRAVFRPE	PGPT0006355_394	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006355-frmA|ADH5|adhC-K00121	NA	NA
D1-36_02783	780	yfcA_2	COG0730	putative membrane transporter protein YfcA	ATGCCTTTCGAACTCAGCGTTGAACTTTCCACCCTCGCGATACTGGCCGTTGTGGCGTTCATCGCCGGCTTCATCGATGCCATTGCCGGCGGTGGCGGGCTGCTCACCACCCCGGCCCTGTTGACCGCCGGCCTGCCGCCACACTTGGTGCTGGGCACCAACAAGCTCAGCTCGACCTTTGGCTCGGCCACGGCCAGCTTTACCTTTTACAAGCGCAAGCTGTTTCACCCACGGCAGTGGACCCACGCCCTCGTCGGCACGCTGATCGGTGCCCTGGCCGGTGCCGTCGTTGCCCATTACCTGCCCGCCGAGTGGCTGAACAAGATGCTGCCGGTCATTGTCTTTGCCTGCGGCCTCTACTTGCTGTTCGGCGGCACGCCCAAGGCACCGCTGGACAGCAATGCGCCGATCAAGAAGACCTGGCAGTCGCCGCAAGGCTTCGCCCTCGGTTTCTATGACGGCGTGGCCGGCCCGGGCACGGGTGCGTTCTGGACCGTCAGCAGCCTGCTGCTCTACCCCATCGACCTGGTCAAGGCCAGCGGCGTGGCCCGCAGCATGAACTTCGTCAGTAACATCGCGGCGCTGACGGTGTTCATCGTCTCGGGCCAGGTGGACTGGATCATCGGCCTGAGCATGGGCCTGTCGGTGATGGTCGGTGCTTTCTTTGGCGCTCGCACCGCCATCAGCGGCGGCGCGAAGTTCATCCGGCCAGTGTTCATCACCGTGGTGCTGGCCCTGACCGTGCGCCTAGCCTGGCAACACTGGTTCAGCATGGCCTAA	MPFELSVELSTLAILAVVAFIAGFIDAIAGGGGLLTTPALLTAGLPPHLVLGTNKLSSTFGSATASFTFYKRKLFHPRQWTHALVGTLIGALAGAVVAHYLPAEWLNKMLPVIVFACGLYLLFGGTPKAPLDSNAPIKKTWQSPQGFALGFYDGVAGPGTGAFWTVSSLLLYPIDLVKASGVARSMNFVSNIAALTVFIVSGQVDWIIGLSMGLSVMVGAFFGARTAISGGAKFIRPVFITVVLALTVRLAWQHWFSMA				NA	NA	NA	NA	NA
D1-36_02784	831	nudC_2		NADH pyrophosphatase	ATGATTTCACGCTGGACCACCGCAGTACTCGACACCGACCTTCCCGGCGGCTGGGCCGTGGCCCGCAGCCCGGAAGGTTTTTTGTACGACGATAACGGCGCGCTGTTTCCTCGCGACTGGCTCAAGCGCCAAGACCTGTCGATCCTCGCCGAGCACGGCATCGGCCATTTCGATGGCGAGCCGGTCTACCTGCTGGAACTGCACAGCCCCCTGGATATTCCCGGTTGCAGCTGGAAAGGCTTGCGCGCGTTCATGCTCGAGGAAGATCACACGCTGTTCAAGGTGTTGGGTTATGCCGCTCAGGTCGGGACCTGGGCCCGGGAACACCGCTTTTGCGGCAGTTGCGGCCAGCCCATGAGCCAGGTGCCGCGCGAGCGGGCGATGCATTGCCAGGCGTGCGATCTGCGGCATTACCCGCGGATCTCACCAAGCATGATCGTACTGATCACCCGTGGCGATGAAGTCCTGCTCGCACGTTCGCCCCGTTTTGTCTCGGGTGTCTACAGCACCTTGGCAGGATTTGCCGAGCCGGGTGAGTCGGCCGAGGACTGCCTCGTCCGGGAAGTCCGCGAAGAAGTCAGTATCGAAGTGAAGAACATCCAGTACGTGGGCAGCCAGTGCTGGCCGTTTCCCCATTCGATGATGCTGGGCTTCCACGCCGAATACGCCAGCGGCGACATCGTGCCCCAAGAGGACGAGATCGAAGACGCGCAGTGGTTCAGCATCCACGATCTGCCACCGCTTCCCGCCTCGCGCTCGATTGCCCGGTATCTGATCGACCTCTACGTGGCGCGGCGCTTAGGCCATGCTGAACCAGTGTTGCCAGGCTAG	MISRWTTAVLDTDLPGGWAVARSPEGFLYDDNGALFPRDWLKRQDLSILAEHGIGHFDGEPVYLLELHSPLDIPGCSWKGLRAFMLEEDHTLFKVLGYAAQVGTWAREHRFCGSCGQPMSQVPRERAMHCQACDLRHYPRISPSMIVLITRGDEVLLARSPRFVSGVYSTLAGFAEPGESAEDCLVREVREEVSIEVKNIQYVGSQCWPFPHSMMLGFHAEYASGDIVPQEDEIEDAQWFSIHDLPPLPASRSIARYLIDLYVARRLGHAEPVLPG	PGPT0013440_1972	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013440-nudC-K03426	NA	NA
D1-36_02785	813	crt	COG1024	Short-chain-enoyl-CoA hydratase	ATGTCGCAATACCAAGCGTTCAACGTCGAACTTGCAGACAACATCGCCCATGTGCAGATCAACCGACCGGACAAGATCAACGCCATGAACGCGGCGTTCTGGAGCGAAATCGTCGAGATTTTCCAATGGATCGACGACACCGACGAAGTGCGGGTGGTGGTCCTGAGCGGTGCCGGCAAGCACTTTTCCTCAGGCATCGACCTGATGATGCTGGCTGGCGTGGCGAACGAACTGGGCAAGGATGTGGGCCGTAACGCCCGCGTGCTGCGACGCAAGATCCTGCAGCTGCAAGCCTCGTTCAATGCCGTGGACAACTGCCGCAAACCGGTACTCGCGGCGGTCCAGGGCTATTGTCTCGGTGGTGCCATCGACCTGATTTCCGCTTGCGACATGCGCTACGCCGCCGAAGACGCGCAGTTCTCCATCAAGGAAATCGACATCGGCATGGCGGCCGATGTTGGGACATTGCAACGCTTGCCCCGGATCATCGGGGACGGCATGCTGCGTGAACTCGCTTATACGGGGCGCACCTTTGGTGCCGACGAAGCGCGCAGCATTGGCTTGGTCAATCGTGTCTACAATGACACCGCCAGCCTGCTCGACGGCGTGATGGGCATTGCCCGGGAAATCGCCGCCAAGTCGCCGATTGCCATCACCGGCACCAAGGAAATGATCAGCTACATGCGCGACCACCGCATCGACGACGGCCTGGAATATGTCGCCACGTGGAATGCCGCCATGCTGCAATCCAATGACCTGCGCGTGGCCATGGCCGCCCATATGAGCAAACAGAAACCCGAATTTCTGGATTGA	MSQYQAFNVELADNIAHVQINRPDKINAMNAAFWSEIVEIFQWIDDTDEVRVVVLSGAGKHFSSGIDLMMLAGVANELGKDVGRNARVLRRKILQLQASFNAVDNCRKPVLAAVQGYCLGGAIDLISACDMRYAAEDAQFSIKEIDIGMAADVGTLQRLPRIIGDGMLRELAYTGRTFGADEARSIGLVNRVYNDTASLLDGVMGIAREIAAKSPIAITGTKEMISYMRDHRIDDGLEYVATWNAAMLQSNDLRVAMAAHMSKQKPEFLD	PGPT0001860_2901	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001860-paaF|echA-K01692	NA	NA
D1-36_02786	1491	cusC	COG1538	Cation efflux system protein CusC	ATGACCGATCGTTCGTTGTTCAACCTTGTCGCTGCGCTGGCGACTGCCCGTGGTTCGCGTGTCTTGAGCCTGGCGCTCTGCGTGGCACTGCTGAGTGCCTGCGCAATCGGTCCCGATTACCAGCGCCCGTCAGCCGCCGCGCCGTCGCAGTACAAGGAGGCCCAGGGCTGGCGCCAGGCCAACCCCAGCGACGCCCTGGCCCGTGGCGCCTGGTGGGAACTGTACGCTGACACCCGGCTCAACGACCTGGTGGAACAGCTCAACGCCTCCAACCAGACCGTGGCCCAGGCCGAAGCCCAGTACCGTCAGGCCCAGGCTTTGGCGCGCAGTGCTCGCGGGGCGTTCTTTCCGACGGTCGACCTTTCGGTCGGCAAGACCCGCTCCAGCCAAGGCACGGGCAGCAGCAGTTCGAGCCTGAGCAGTTCCTCCAGCGGCATCCGCGACACTTACAGCGCCCAGGCCGGCGTGAGCTGGGAAGCGGACGTGTGGGGCAGGTTGCGCCGTACCTTGGAGGCCGATGAAGCCAGCGCCCAGGCCAGCTTTGCCGACCTGGCGGCGATGCGTCTGAGCCAGCAATCGGAGCTGGTGCAGAACTACCTGCAGTTGCGGGTGATTGACCAGCAGAAGCGCTTGTTGCAGACCACCGTCGACAACTACCAGCGCTCCCTGAAAATGACCGAAAACCAGTACCGCGCCGGGGTGTCCGGCAAGGATGCCGTGGCCCAGGCGCAGAACCAGCTCAAGACCACCCAGGGCGACCTGATCGACCTGATCTGGCAGCGTGCGCAGTTCGAAAACGCCATTGCCGTGCTGATCGGTCTGCCGCCGGCCGAATTCAGCCTGGCCGAAACCCAGGATGTCCCAGCGCTGCCGCAAGTCCCGGTGGCCGTGCCGTCGCAACTGCTCGAACGCCGTCCAGACATCGCATCGGCGGAGCGCTCGGTCATGGCGGCGAACGCCAACATCGGCGTGGCGAAGGCCGCCTATTACCCGGACCTGACCCTGAGCCTGAGCGGTGGCTACAGCAGCAGTACCTACGATAACTGGGTGAGCGTGCCGAACCGCTTCTGGTCGGTCGGCCCGCAACTGGCGATGACCCTGTTCGATGGCGGTCAGCGCTCGGCGGAGGTCGACCGCAGCGTGGCGGCGTATGATCAGACGGTCGCCACCTATCGCCAGACCGTGCTCGACGGTTTCCGCGAAGTCGAGAACTACATGATTCAGCTCAAGGTGCTCGAAGACGAAGCCCGCGTGCGCCAGGAAGCCCTCGACGCCGCCCGCGAGTCCCTGCGCCTGACGCAGAATCAGTACAGGGCAGGGCTGATCGGCTATCTCGACGTGGTGTCTGTCCAGGCTACAGCTCTGAGCAACGAGCGCAGCGTGTTGAGCCTGCAACAGAGCCGGTTGATTGCGAGTGTGCAGTTGATTGCCGCGTTGGGCGGTGGTTGGGATGGGCGGTTGGAGGCGTCCGAGCAGCCGGCAACGGACTGA	MTDRSLFNLVAALATARGSRVLSLALCVALLSACAIGPDYQRPSAAAPSQYKEAQGWRQANPSDALARGAWWELYADTRLNDLVEQLNASNQTVAQAEAQYRQAQALARSARGAFFPTVDLSVGKTRSSQGTGSSSSSLSSSSSGIRDTYSAQAGVSWEADVWGRLRRTLEADEASAQASFADLAAMRLSQQSELVQNYLQLRVIDQQKRLLQTTVDNYQRSLKMTENQYRAGVSGKDAVAQAQNQLKTTQGDLIDLIWQRAQFENAIAVLIGLPPAEFSLAETQDVPALPQVPVAVPSQLLERRPDIASAERSVMAANANIGVAKAAYYPDLTLSLSGGYSSSTYDNWVSVPNRFWSVGPQLAMTLFDGGQRSAEVDRSVAAYDQTVATYRQTVLDGFREVENYMIQLKVLEDEARVRQEALDAARESLRLTQNQYRAGLIGYLDVVSVQATALSNERSVLSLQQSRLIASVQLIAALGGGWDGRLEASEQPATD				NA	NA	NA	NA	NA
D1-36_02787	3105	mdtC_2	COG0841	Multidrug resistance protein MdtC	ATGAACCTCTCCGGCCCCTTCATCCGCCGTCCAGTGGCGACCATGCTTCTGAGCTTCGCGATCATGCTGCTCGGCGGCGTGTGCTTTGGCTTGCTGCCGGTTTCGCCGTTGCCGCAAATGGATTTCCCGGTGATCGTGGTCCAGGCCAACCTGCCGGGGGCGAGCCCGGAGGTGATGGCTTCCACCGTGGCGACGCCGCTGGAGCGCTCGTTTGGCGCCATCGCCGGGGTCAATACCATGAGCAGCCGTTCGAGCCAGGGCTCGACCCGGGTGATCCTGCAATTCGACCTGGACCGCGACATCAATGGCGCGGCGCGGGAAGTACAGGCGGCAATCAACGCCTCGCGCAATCTGCTGCCCAGTGGCATGCGCAGCATGCCGACCTACAAGAAGGTCAACCCGTCCCAGGCGCCGATCATGGTGCTTTCGCTGACCTCCGACGTGCTGGAGAAAGGCCAGCTCTATGACCTGGCTTCCACCATCCTGTCCCAGAGCCTGTCCCAGGTGGCGGGGGTAGGGGAAGTGCAGATCGGCGGTAGTTCGCTGCCGGCGGTGCGTATCGAGCTGGAGCCACAATTACTCAACCAGTACGGCGTGGCGCTCGACGACGTCCGCACGGCGATCGCCGACAGCAATGTCCGCCGGCCAAAAGGGTCGGTCGAAGACGACAAGCGCATGTGGCAAGTCCAGGCCAATGACCAGTTGGAAAAGGCCAAGGACTACGAAACGCTGGTCATCCGCTACCAGGACGGCTCGGTGTTGCGGCTCAAGGACGTGGCGAAGGTCAGCGACAGCGTGGAGGACCGCTACAACAGTGGGTTCTTCAACGACGATGCCGCCGTGCTGCTGGTCATCAACCGCCAGGCCGGCGCCAACATCATCGAAACCGTCAACGAGATCAAGAACCAGCTGCCGGCCCTGCAAGCGGTGCTCCCGGCCAGCGTCAAGCTCAACCTGGCCATGGACCGCTCGCCGGTGATCAAGGCCACCCTGCACGAAGCGGAAATGACCCTGTTGATCGCCGTGGCGCTGGTGGTGCTGGTGGTGTTCCTGTTCCTCGGTAATTTCCGTGCGTCGCTGATCCCGACCCTGGCGGTACCGGTGTCGTTGGTGGGCACGTTCGCGGTGATGTACCTCTACGGTTTTTCCCTGAACAACCTGTCGCTGATGGCGCTGATCCTCGCCACCGGGCTGGTGGTGGACGATGCCATCGTGGTGTTGGAGAACATTTCCCGGCACATCGACGAGGGCGTGCCGCCGATGAAAGCGGCCTACCTGGGCGCTGAGGAAGTGGGCTTCACCTTGCTGTCGATGAACGCCTCGCTGGTGGCGGTGTTCCTGTCGATCCTGTTCATGGGCGGGATCGTCGAGAGTCTGTTTCGCGAATTTTCCATCACCCTGGCGGCCGCCATCGTGGTCTCGCTGGTGGTGTCCCTGACGCTTACCCCGATGCTCTGCGCCCGGTGGTTAAAGCCCCACGTGCCGGGGCAGGAAAACCGCTTGCAGCGTTGGAGCCACGGCCTCAACGAGCGCATGGTCCGGGGGTACGCCCGCAGCCTGGATTGGGTGCTGCGCCATCGGCGCCTGACCTTGCTCAGCCTGCTGGTGACCATCGGCGTGAATATCGCACTGTACGTGGTGGTGCCAAAGACGTTCATGCCCCAGCAGGACACCGGCCAATTGATCGGCTTCGTGCGCGGTGACGATGGGCTGTCGTTCAACGTGATGCAGCCGAAAATGGAAATCTTCCGTCGCGCGGTGCTCAAGGACGAAGCGGTGCAGAGCGTGGCGGGTTTCATCGGCGGCAACAACGGCACCAACAATGCTTTCATGCTGGTACGCCTCAAGCCGATCAAGGAACGCGGGATTTCCGCGCAAAAGGTCATCGAGCGCTTGCGCAAGGAAATGCCCAAGGTACCCGGTGCCCAATTGATGCTGATGGCCGACCAGGACCTGCAATTCGGTGGCGGTCGCGAGCAGACCACGTCGCAGTATTCCTACATCCTCCAGAGCGCCGACCTGGCGTCGCTGCGCACCTGGTATCCCAAGGTCGTCGCCGCTTTCCGCGCCTTGCCGGAACTGACCGCCATCGACGCCCGCGACGGTGGCGGGGCGCAGCAGGTGACGCTGATCGTGGACCGCGACCAGGCCAAACGCCTGGGCATCGACATGGACATGGTCACCTCGGTACTGAACAACGCCTACAGCCAGCGGCAGATCTCGACCATCTACGACAGCCTGAACCAGTATCAGGTGGTCATGGAGGTCAATCCCAAATATGCCCAGGACCCGAATACGCTCGAGCAGGTCCAGGTGATTACCGCCGATGGCGCGCGGGTCCCGCTGTCGGCGATTGCCCATTATGAAAACAGCCTGGAGGACGACCGGGTCAGCCATGAAGGCCAGTTCGCTTCAGAAGGTATTTCGTTCGACATGGCCGAAGGCGTCACGGTGGAGCAGGGCACCGCGGCGATCGAGCGGGCGATAGCCAAGCTCGGGATGCCCGAAGATGTCATCGCGAAAATGGCCGGCACCGCCGACGCGTTCGCCGCGACCCAGAAAAGCCAGCCGTTCATGATCCTCGGCGCGTTGCTGGCGGTGTACCTGGTGCTCGGCGTGCTGTACGAAAGCTATATCCACCCGCTGACCATCCTGTCCACCTTGCCCTCGGCCGGGGTGGGCGCGTTGTTGTCGATCTATGTCCTGGGCAGCGAGTTCAGCCTGATCTCGCTGCTGGGGTTGTTCCTGCTGATTGGCGTCGTGAAGAAAAACGCCATCCTCATGATCGACCTCGCATTGCAATTGGAGCGCGCCGGCCAAACGCCGTTGGAGTCGATCCGCAGCGCTTGCCTGTTGCGACTGCGGCCTATCCTCATGACCACGCTGGCCGCGATCCTCGGAGCCCTGCCGCTGTTGCTCGGTGGCGCCGAAGGCTCGGAAATGCGCCAACCGCTGGGCCTGACCATTATCGGCGGGTTGGTATTCAGCCAGGTCCTGACGCTCTACACCACCCCGGTGGTCTACCTCTATCTTGATAACCTGCGCCATCGTTTCAACCGCTGGCGTGGGGTGCGCACTGATGCTGCCCTGGAAACTCCGCTATGA	MNLSGPFIRRPVATMLLSFAIMLLGGVCFGLLPVSPLPQMDFPVIVVQANLPGASPEVMASTVATPLERSFGAIAGVNTMSSRSSQGSTRVILQFDLDRDINGAAREVQAAINASRNLLPSGMRSMPTYKKVNPSQAPIMVLSLTSDVLEKGQLYDLASTILSQSLSQVAGVGEVQIGGSSLPAVRIELEPQLLNQYGVALDDVRTAIADSNVRRPKGSVEDDKRMWQVQANDQLEKAKDYETLVIRYQDGSVLRLKDVAKVSDSVEDRYNSGFFNDDAAVLLVINRQAGANIIETVNEIKNQLPALQAVLPASVKLNLAMDRSPVIKATLHEAEMTLLIAVALVVLVVFLFLGNFRASLIPTLAVPVSLVGTFAVMYLYGFSLNNLSLMALILATGLVVDDAIVVLENISRHIDEGVPPMKAAYLGAEEVGFTLLSMNASLVAVFLSILFMGGIVESLFREFSITLAAAIVVSLVVSLTLTPMLCARWLKPHVPGQENRLQRWSHGLNERMVRGYARSLDWVLRHRRLTLLSLLVTIGVNIALYVVVPKTFMPQQDTGQLIGFVRGDDGLSFNVMQPKMEIFRRAVLKDEAVQSVAGFIGGNNGTNNAFMLVRLKPIKERGISAQKVIERLRKEMPKVPGAQLMLMADQDLQFGGGREQTTSQYSYILQSADLASLRTWYPKVVAAFRALPELTAIDARDGGGAQQVTLIVDRDQAKRLGIDMDMVTSVLNNAYSQRQISTIYDSLNQYQVVMEVNPKYAQDPNTLEQVQVITADGARVPLSAIAHYENSLEDDRVSHEGQFASEGISFDMAEGVTVEQGTAAIERAIAKLGMPEDVIAKMAGTADAFAATQKSQPFMILGALLAVYLVLGVLYESYIHPLTILSTLPSAGVGALLSIYVLGSEFSLISLLGLFLLIGVVKKNAILMIDLALQLERAGQTPLESIRSACLLRLRPILMTTLAAILGALPLLLGGAEGSEMRQPLGLTIIGGLVFSQVLTLYTTPVVYLYLDNLRHRFNRWRGVRTDAALETPL	PGPT0003595_629	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0003595-mdtC-K07789	NA	NA
D1-36_02788	3096	mdtB_2		Multidrug resistance protein MdtB	ATGAATCTCTCGCGGCTGTTCATCCTTCGCCCGGTCGCCACCACGCTGAGCATGCTGGCCATTGTCCTGGCCGGTCTGATTGCGTATCGGTTGCTGCCGGTGTCGGCACTGCCCCAGGTCGATTACCCGACCATCCGCGTGATGACGCTGTACCCGGGCGCCAGCCCTGACGTGATGACCAGCGCCGTGACCGCGCCGCTGGAGCGTCAGTTCGGGCAGATGCCGGGCCTGACGCAGATGGCCTCCACCAGTTCCGGCGGCGCATCGGTGATCACCCTGCGTTTCAATCTGGACATCAACATGGATGTCGCCGAGCAGCAGGTGCAGGCCGCGATCAACGCCGCTACCAACCTTTTGCCCACCGACCTGCCGGCGCCGCCGGTGTACAACAAGGTCAACCCGGCCGACACCCCGGTGCTGACCCTGGCGATTACCTCCAAGACCATGCTGCTGCCCAAGCTCAATGATCTGGTGGACACGCGCATGGCGCAGAAGATTGCGCAGATCAGCGGCGTTGGCATGGTGACCATCGCCGGTGGCCAGCGCCAGGCCGTGCGGATCAAAGTCAATCCGCAAGCCCTGGCGTCCGCGGGCTTGAACCTGGCGGATGTGCGCACCTTGATCGGCGCTTCCAACGTCAACCAGCCCAAGGGCAACTTCGACGGTCCGACCCGAGTCTCGATGCTCGATGCCAACGATCAGTTGACCTCGCCCGAGGACTACGCCGAACTGATCCTGGCCTACGCCAACGGCGCGCCGCTGCGGCTCAAGGACGTCGCAGAGATCGTCGATGGCGCTGAGAACGAACGCCTCGCCGCCTGGGCCAACGAAAACCAGGCCGTGCTGCTCAATATCCAGCGCCAGCCAGGGGCCAACGTCATCGAGGTGGTGGACCGGATCAAGGCGATGTTGCCGAGCATCACCGACAACCTGCCGGCCGGCCTGGACGTTGCCGTGCTAACGGACCGCACCCAGACCATCCGCGCCTCGGTCACCGACGTTCAGCATGAATTGCTCATCGCCATTGCCCTGGTGGTCATGGTGACGTTCCTGTTCCTGCGCCGGGTCAGTGCCACGATCATCCCGTCGGTGGCCGTGCCGCTGTCATTGATCGGTACGTTCGGCGTCATGTACCTGGCCGGTTTCTCCATCAACAACCTGACGCTGATGGCCCTCACCATCGCCACCGGTTTTGTGGTGGACGATGCCATCGTCATGCTGGAGAACATCGCCCGCTACATCGAGGAGGGCGACAGCCCGATGCAGGCGGCGCTCAAGGGTGCGAGGCAGATCGGCTTCACCTTGATTTCCCTGACACTGTCGCTGATCGCGGTGCTGATTCCGCTGCTGTTCATGGCGGACGTGGTCGGTCGCCTGTTCCGCGAGTTCGCCATCACCCTGGCGGTGGCGATCCTTATCTCGCTGGTGGTGTCCCTGACCCTGACGCCGATGATGTGCGCGCGGCTGCTCAAGCGTGAACCCAAGGAAGAGGAGCAGGGCCGCTTCTACCGCGCCAGCGGCGCCTGGATCGATTGGTTGATCGCCGCCTACGGGCGCAAGTTGCAATGGGTACTCAAGCACCAACCGCTGACGCTGTTGGTGGCGGTGGGTAGCCTGGTGTTGACCGTGGTGTTGTACCTGGCCGTGCCCAAGGGCTTTTTCCCGGTGCAGGATACGGGCGTGATCCAGGGCATTTCCGAGGCACCGCAATCGATCTCCTTCGCTGCCATGAGCGAGCGCCAGCAGCAATTGGCCAAGGTCATCCTCGCCGATCCCGCCGTGCAAAGCCTGTCTTCCTACATAGGCGTGGACGGTGACAACGCCACGCTCAACAGCGGCCGCCTGCTGATCAACCTCAAGCCCCACAGTGAACGGGACGACAGCGCCAGCGCGATCATCGCCCGCCTGCAACCGCAACTGGACCGACTGGTGGGCATCCGGCTGTTCATGCAACCGGTGCAGGACCTGACCATCGAAGACCGGGTCAGCCGTACCCAATACCAGTTCAGCCTGTCGTCGCCGGATGCCGAATTGCTCAGCCTCTGGAGCGGGCGGCTCGTCGAAGCCCTGGTGCAACAGCCGGAACTCACCGACGTCGCCAGTGACTTGCAGGACAAGGGCTTGCAGGTCTACCTGGTGATCGACCGCGACGCCGCATCGAGACTGGGCGTGTCGGTGTCGAACATCACCGATGCGCTTTACGACGCCTTCGGCCAGCGGCAGATTTCGACCATCTATACCCAGGCCAGCCAATACCGCGTGGTGCTGCAGGCTCAGGCGGGGGAAAAGATCGGCCCGCAGGCCCTTGAGCAGATCCATGTCAAGACCACCGACGGCGGGCAAGTCCGCCTGTCGAGCCTGGCCCGGGTCGAAGAACGTCAGGCGCAGTTGGCGATTGCTCACATTGGCCAGTTCCCGGCGGTGATGATGTCGTTCAACCTGGCACCGGGCGTGGCCCTTGGGCACGCTGTCGATATCATCGAGAAAGTGCAGAAGGACATCGGCATGCCGGTCGGCGTGCAGACCGAATTCCAGGGCGCGGCGCAGGCGTTCCAGGCGTCGCTGTCGAGCACCTTGTTGTTGATCCTGGCGGCGGTGGTGACCATGTACATCGTGCTGGGCGTGCTCTACGAGAGCTACATTCACCCGATCACGATTCTTTCCACCTTGCCCTCGGCGGCCATCGGCGCATTGCTGGCATTGATGCTGACCGGCAATGACCTGGGCATGATCGCGATCATCGGTATCATCTTGCTGATCGGTATCGTCAAGAAGAACGCGATCATGATGATCGACTTTGCCCTCGACGCCGAGCGCAACCAGGGCATGGACCCGCAGACCGCCATCTACCAGGCTGCGTTGCTGCGCTTCCGGCCGATCCTGATGACCACCCTCGCTGCGCTGTTCGGCGCCGTGCCGCTGATGCTCGCCACCGGCTCCGGCGCCGAGTTGCGCCAGCCCCTGGGCCTGGTGATGGTGGGCGGCCTGCTGGTGAGCCAGGTGCTCACGCTGTTCACCACGCCGGTGATCTACCTGTACTTCGATCGCCTGGGGCGGCGGTTCGTCAGGCCTGAGGCCGATGAGGTGCGGGTATGA	MNLSRLFILRPVATTLSMLAIVLAGLIAYRLLPVSALPQVDYPTIRVMTLYPGASPDVMTSAVTAPLERQFGQMPGLTQMASTSSGGASVITLRFNLDINMDVAEQQVQAAINAATNLLPTDLPAPPVYNKVNPADTPVLTLAITSKTMLLPKLNDLVDTRMAQKIAQISGVGMVTIAGGQRQAVRIKVNPQALASAGLNLADVRTLIGASNVNQPKGNFDGPTRVSMLDANDQLTSPEDYAELILAYANGAPLRLKDVAEIVDGAENERLAAWANENQAVLLNIQRQPGANVIEVVDRIKAMLPSITDNLPAGLDVAVLTDRTQTIRASVTDVQHELLIAIALVVMVTFLFLRRVSATIIPSVAVPLSLIGTFGVMYLAGFSINNLTLMALTIATGFVVDDAIVMLENIARYIEEGDSPMQAALKGARQIGFTLISLTLSLIAVLIPLLFMADVVGRLFREFAITLAVAILISLVVSLTLTPMMCARLLKREPKEEEQGRFYRASGAWIDWLIAAYGRKLQWVLKHQPLTLLVAVGSLVLTVVLYLAVPKGFFPVQDTGVIQGISEAPQSISFAAMSERQQQLAKVILADPAVQSLSSYIGVDGDNATLNSGRLLINLKPHSERDDSASAIIARLQPQLDRLVGIRLFMQPVQDLTIEDRVSRTQYQFSLSSPDAELLSLWSGRLVEALVQQPELTDVASDLQDKGLQVYLVIDRDAASRLGVSVSNITDALYDAFGQRQISTIYTQASQYRVVLQAQAGEKIGPQALEQIHVKTTDGGQVRLSSLARVEERQAQLAIAHIGQFPAVMMSFNLAPGVALGHAVDIIEKVQKDIGMPVGVQTEFQGAAQAFQASLSSTLLLILAAVVTMYIVLGVLYESYIHPITILSTLPSAAIGALLALMLTGNDLGMIAIIGIILLIGIVKKNAIMMIDFALDAERNQGMDPQTAIYQAALLRFRPILMTTLAALFGAVPLMLATGSGAELRQPLGLVMVGGLLVSQVLTLFTTPVIYLYFDRLGRRFVRPEADEVRV	PGPT0003590_994	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0003590-mdtB-K07788	NA	NA
D1-36_02789	1317	mdtA_6		Multidrug resistance protein MdtA	ATGGTTGACCATTCAATGCAATCCTCTGTTTCCCGTAAATCTCGTCGCTGGCTGTTCGGCCTGCTCATCCTCTTGGCCGTTGCGTTGCTGGCTTGGAAATTCTGGCCTGCCGGCACTGGCTCGAACAACGAAGCAGGGCAGAAAGGCGCGGCCGGGCATATGGGGCGTTCGGGCGGCATGCGGCCAGGCTTTGGCGGTGCGACGGGCCCGATCCCGGTTCGGGTGGCGCCGGCGGTGACCGGGGATTTTCCGCTGTATTACAAGGCGCTGGGCACGGTTACCGCGCTCAATACCATCAATGTTCGCAGCCGCGTGGGCGGCGAATTGGTAAAGATCGCCTTCGAGGAAGGGCAGATGGTCAGGGCCGGGGACCTGCTGGCCGAGATCGACCCGCGTCCGTACCAGAACGCCTTGCTCCAGGCCGAAGGCACGTTGCTGCAGAATCAGGCCCAATTGAAGAACGCCCAGGTCGACCTCGAGCGTTATCGCGGCTTGTATGCCGAGGACAGCATCGCCAAGCAGACCCTCGACACCGCCGCTGCGCTGGTGGGCCAGTACCAGGGCACGGTCAAGACCAACCAGGCGGCGGTCAACGACGCCAAGCTCAACCTGGAATTCACCAAGATCCGCGCGCCGATCAGCGGCCGCGTAGGGTTGCGTCAACTGGACATCGGCAACCTGGTAGCGGCCAATGACACCACGGCCCTGGCCGTCATCACCCAGACCCAACCCATCAGCGTTGTCTTCACGCTGCCTGAGAACAACCTCGAAACCGTGCTCGCCCGCTATCGCGGCGGGGCGAAACTGCCGGTCGAGGCTTGGGATCGTGGTGATGTGAAGCTGCAGGCCAGCGGCGTCTTGCAAAGCCTGGACAACCAGATCGACATCACCACCGGCACCTTGAAATTCAAGGCTCGCTACGAGAACCGCGACCAGTCGCTGTTTCCCAACCAGTTCGTCAACGTGCGCCTACTGGCCGACACGCTCAAAGGCGTGGTCCTTGCGCCGACCGCCGCCATCCAGTTCGGCACCAACGGCACATTCGTCTATGCCTTGGATGGCGACAAGAAAGTCACCATCAAGAAGCTCAAGATCGGCGCCAGCGATGGCGACAGGACGGTCGTCACCGAGGGGCTTGCCGCTGGCGACAGGGTGGTGCTCGAAGGCACCGACCGCCTGAAAGAGGGCAGCGAAGTGGAAGTGGTCAACGACAGCCAGGAGGTGCCGACCACGCCGACCGAGCATTTGCAGGGCAAGACCGCCGCGGCCCCGACTGAGCCGGCCATGGCCGACAAGGCGAAAAAGGGCGGCGCATGA	MVDHSMQSSVSRKSRRWLFGLLILLAVALLAWKFWPAGTGSNNEAGQKGAAGHMGRSGGMRPGFGGATGPIPVRVAPAVTGDFPLYYKALGTVTALNTINVRSRVGGELVKIAFEEGQMVRAGDLLAEIDPRPYQNALLQAEGTLLQNQAQLKNAQVDLERYRGLYAEDSIAKQTLDTAAALVGQYQGTVKTNQAAVNDAKLNLEFTKIRAPISGRVGLRQLDIGNLVAANDTTALAVITQTQPISVVFTLPENNLETVLARYRGGAKLPVEAWDRGDVKLQASGVLQSLDNQIDITTGTLKFKARYENRDQSLFPNQFVNVRLLADTLKGVVLAPTAAIQFGTNGTFVYALDGDKKVTIKKLKIGASDGDRTVVTEGLAAGDRVVLEGTDRLKEGSEVEVVNDSQEVPTTPTEHLQGKTAAAPTEPAMADKAKKGGA	PGPT0003585_397	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0003585-mdtA-K07799	NA	NA
D1-36_02790	501	tpx	COG2077	Thiol peroxidase	ATGGCTCAAGTCACCCTCAAAGGCAACCCAGTCCAAGTCAACGGCCAATTGCCACAAGCCGGTTCCAAGGCGCCAGCCTTTTCTCTGGTTGCCGGCAATCTGTCGGACGTGTCCCTGCAAGACTTCGCGGGCAAGCGCAAAGTGCTGAACATTTTCCCAAGCGTCGACACCCCGACCTGCGCCACTTCCGTGCGCAAGTTCAACGCCCAGGCCAACGACCTGGATAACACCGTGGTGCTGTGCATTTCCGCCGACCTGCCGTTCGCCCAGGCCCGCTTCTGTGGCGCCGAAGGCCTGGAAAACGTACAGAACCTGTCCACGCTGCGCGGTGCCGAGTTCATCGAGAACTACGGCGTCGCCATCGCGGACGGCCCGCTCAAAGGCCTGACTGCCCGCGCCGTGGTGGTGCTGGACGAAAACGACACCGTGCTGCACAGCGAGCTGGTCAAGGAAATCGCTGAAGAGCCGAACTACGAGGCGGCGCTCGCAGCCCTGAAATAA	MAQVTLKGNPVQVNGQLPQAGSKAPAFSLVAGNLSDVSLQDFAGKRKVLNIFPSVDTPTCATSVRKFNAQANDLDNTVVLCISADLPFAQARFCGAEGLENVQNLSTLRGAEFIENYGVAIADGPLKGLTARAVVVLDENDTVLHSELVKEIAEEPNYEAALAALK	PGPT0013105_1094	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013105-tpx-K11065	NA	NA
D1-36_02791	99			hypothetical protein	ATGAAATGGAGCTCCGACCTATGCCTGCACACAAAAAGTCACGAGTGGCGGGGCCCGCTATTTAGCCTTGAGCTGCAAATACGACTGGTGCAGATCTGA	MKWSSDLCLHTKSHEWRGPLFSLELQIRLVQI				NA	NA	NA	NA	NA
D1-36_02792	672			hypothetical protein	ATGAAACTCGCGTCCATGATCGGCACTGTCTGCATCGCTTCGCTCGCGCTGATGGGCTGCTCGAGCAAAGTCACCCAGCCGGACGAATACTCCGGCTTCCTGGGAGACTACAGCCGCCTCAAGGAAGAAAAGTCGCCTTCGGGGGCCGAAGTGATGCGTTGGGTCGATCCGCAGATCGATCTGGCTAAATACTCCAGTGTGTATATCGAGCCGACGCAGCTCTATCCCAAGCCGCAACCGACCGTGAAGATTCCCGCCGGCACGTTGGCCGGCATTACCAGCTACTACGACCAGGCGCTCAAGCGGGAGGCGGGCAGGTCGTTGCCTCTGGCGACCAGTCCCGGGCCGGGTGTGTTGGTAGTACGGGCGGCCATCACCGCGGTCAGCAGCAAGACCGAGGGGCTCAAACCTTATGAAGTGATTCCGATTGCCTTGGTGGCCGCCGCGGTCAGTACGGCGAGCGGCATTCGCGATCAGGAAACCACGCTGGGCACCGAAGCGGTGTTTCTGGACGGTGGCAATAATGCGGTGGTCGCACAGGTGGTGCGCAAGGGCACGGGTAAGCCGTTGTCAAACGAGTCCCAGGTCATGAAGCCCGATGATGTCAAAGGGGTGATCGACGGCTGGGCCTCAGATCTGCACCAGTCGTATTTGCAGCTCAAGGCTAAATAG	MKLASMIGTVCIASLALMGCSSKVTQPDEYSGFLGDYSRLKEEKSPSGAEVMRWVDPQIDLAKYSSVYIEPTQLYPKPQPTVKIPAGTLAGITSYYDQALKREAGRSLPLATSPGPGVLVVRAAITAVSSKTEGLKPYEVIPIALVAAAVSTASGIRDQETTLGTEAVFLDGGNNAVVAQVVRKGTGKPLSNESQVMKPDDVKGVIDGWASDLHQSYLQLKAK	PGPT0004500_2	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004500-dppA-K12368	NA	NA
D1-36_02793	798		COG1305	putative protein	ATGAAACTGTCCATCCGCCACGACACGACCTATAGCTATGCCGACGAGGTCTGCACCAGCATCCAGTTCCTGCGCCTGACGCCCAAGGACACCCGACGCCAGACCATCCTGCAATGGCATCTTGAATTGCCGCGCCTGGTGCGCAGCCAGCTCGACCCGTACGGCAATATCCTGCACGTCATGACCATGGACGAGCCTCACGGCGCCCTGATCCTGACCGCTTATGGTGAAGTGCAGATCGACCAGACAGTGGAAATGGAGCCCGATACCCAATCACCGCTGCCGTTCCTGCGCACCAGCCGCCTCACCCTGGCCGACGACACCCTCAGCGCTTTCGCCGTGGCGCAATGTGGCGCACGCCGTGACCGTGCTGCGTTGGCCGACTTGATGAATGGCCTTGCCGATCGCATGCCCTACAGCCCCGGCACTACTGCCGTCAGCAGTACGGCGGCAGAGGCGTTCGCCGGTGGCGCCGGGGTCTGTCAGGACCATGCCCATGCGTTCGTGGCCTGCGCCCGCAGCCTCGGCGTGCCGGCGCGTTATGTGTCCGGCTATCTGTGTACCGAGGACGAGAGCCATCTGGCAAGCCACGCCTGGGCCGAGGCTTGGCTGGATGACGGCTGGTACAGCTTTGACGTGACCAATCGCTTGCTTCGTCCCGACCGCCATTTGAAGTTGGCGATTGGCCTGGATTACCTTGACGCCTGTCCGGTTCGCGGCATGCGCCGTGGTGGCGGGGCGGAGCAGATGCACGCGCGGGTGCAGGTAAGCTCGATGGTTCAGGTGCAGCATCAGTAA	MKLSIRHDTTYSYADEVCTSIQFLRLTPKDTRRQTILQWHLELPRLVRSQLDPYGNILHVMTMDEPHGALILTAYGEVQIDQTVEMEPDTQSPLPFLRTSRLTLADDTLSAFAVAQCGARRDRAALADLMNGLADRMPYSPGTTAVSSTAAEAFAGGAGVCQDHAHAFVACARSLGVPARYVSGYLCTEDESHLASHAWAEAWLDDGWYSFDVTNRLLRPDRHLKLAIGLDYLDACPVRGMRRGGGAEQMHARVQVSSMVQVQHQ				NA	NA	NA	NA	NA
D1-36_02794	951			hypothetical protein	ATGCTTTCAAGAACCGCATCGGACCTCTACTGGATGTCCCGCTACCTGGAGCGCGCCGAGAACCTGGCACGCATGCTCGAAGTCAGTTATTCGCTGTCGCTGATGCCCCAGGCCGGACGCGGCGATGGTCAGGCCGAGCTGGCGATGTCGTTGCTGGCGGCCGGTACGCTGGATGACTACAACGCCCGTTATGACACCCTCAACACCGAGCGCATGCTGCATTTCTTTGCGTTGGACGAAACCAACCCCGGCAGCATCTACAGTTGCCTGCGGGCGGCGCGGACCAACGCCCATGCCGTGCGCGGACGCATCACCGCGGACATGTGGGAGAACATCAACGCCACCTGGCTGGAGATGCGCAGCATCGCCAGCAACGGCCTGGGCCGTTATGGCATCAGCCATTTCTGCGAATGGGTGAAGGAGCGTTCGCACCTGTTCCGTGGCGCGACGTCGGGCACGATCATGCGCAACGATGCCTACTGTTTCATTCGCCTGGGGACGTTCATCGAGCGCGCCGACAACACGTTGCGGCTGCTGGATGCGCGCTACGAGATGTTCGGCGAAGAATCGGAAGAGGTCAGCGACAACTCGGCGCGCGGTTACTACCAGTGGAGTGCGTTGCTGCGGGCGTTGTCTTCGTTCGAGGCGTTCAATGAGATCTACCGTAACGCGCCGAATGCCGAGCAGGTGTCCGAGATGTTGCTGCTGCGGGCCGACGTGCCACGCTCGCTGCACGCCTGCATTGAAGAACTGGACCATATTCTCGCCAGCCTGCCGGGCAATAACGGTCGGCCGGCGCAGCGGCTGGCCGCCGAGCTGAATGCGCGGCTGCGTTATTCGGGGATCGACGAGATCCTCGCGTCGGGCCTGCACCAATGGTTGACCGAGCTGATTGGCCAGATCCGCCACTTGGGCCAGACCATCCATGACGCCTATCTGGAGGTCGTATGA	MLSRTASDLYWMSRYLERAENLARMLEVSYSLSLMPQAGRGDGQAELAMSLLAAGTLDDYNARYDTLNTERMLHFFALDETNPGSIYSCLRAARTNAHAVRGRITADMWENINATWLEMRSIASNGLGRYGISHFCEWVKERSHLFRGATSGTIMRNDAYCFIRLGTFIERADNTLRLLDARYEMFGEESEEVSDNSARGYYQWSALLRALSSFEAFNEIYRNAPNAEQVSEMLLLRADVPRSLHACIEELDHILASLPGNNGRPAQRLAAELNARLRYSGIDEILASGLHQWLTELIGQIRHLGQTIHDAYLEVV				NA	NA	NA	NA	NA
D1-36_02795	1410		COG2308	putative protein	ATGCCCCACGCTTTTTTCAATGAAATGTACGACGCGAAGGGTGACTGCCGCCCGCACTACCAAGCATTCTCGCGCTGGCTGGCGGACACGCCGCTGGAACTGCTGGAACAACGCCGCCGTGAAGCCGACCTGCTGTTTCATCGGGCAGGCATCACCTTCACGCTTTATGGGGACGAGCAGGGCACCGAGCGCTTGATCCCGTTCGATATCATTCCGCGCAGCATCAAGGCCAGCGAATGGCAAATCGTCGAACGCGGCTGCATCCAGCGGGTCCAGGCCCTGAACATGTTCCTGGCCGACATCTACCATGGCCAGCGCATTCTCAAGGAAGGCATCATCCCCGCCGAGCAGGTGCTCGCCAACGAGGGTTATCAAATTGCGATGCAGGGCCTGGACCTGCACCGAGGCATCTATGCCCACATCGCAGGCGTCGACCTGGTCCGCGATGGCGATGGCAGCTATTACGTGCTGGAGGACAACCTGCGCACGCCCAGTGGCGTGAGCTACATGCTCGAAGACCGCAAGATGATGATGCGCCTGTTCCCCGAACTCTTCGCCGCCCAGCGCGTAGCGCCCATCGATCATTACCCGAACCTGTTGCTCGACACGCTCAAAAGCTCAAGCCCGTTGGACAACCCGACCACCGTGGTCCTGACGCCGGGGCGTTTCAACAGCGCCTATTTCGAGCACGCGTTCCTGGCCCGGGAAATGGGAGTGGAGCTGGTGGAAGGTGCGGACCTGTTCGTGCGTGACGACCATGTCTATATGCGCACCACGGCCGGGCCCCAGCAGGTGGATGTAATCTACCGTCGCCTGGACGATGCCTACCTCGATCCGCTGTCCTTCAACCCTGATTCCATGCTCGGCGTGCCGGGGCTGATCGCGGTCTACCGTGCAGGCAATGTGGTGCTGGCAAACGCCGTCGGCACGGGCGTGGCGGATGACAAGTCGATCTATCCCTATGTCGACGACATGATCCGTTTCTACCTGACCGAAGAACCGATCCTGAAGAACGTGCCGACCTGGCAGTGTCGCAAACCCCAGGACCTGTCCCACGTACTGGCGAACCTGCCCGACTTGGTCGTCAAGGAAACCCAGGGTTCCGGCGGCTACGGCATGTTGGTCGGGCCAGCTGCCACCGCAGCGGAGATCGAAGATTTTCGGGCCCGCCTCAAGGCCAGGCCCGAGGCCTATATCGCCCAGCCGACCTTGAGCCTTTCCACCTGTCCGACGTTCGTCGAAAGCGGCATCGCGCCACGCCACATCGACTTGCGTCCCTTCGTGCTGTCCGGCAAGGAAACCCGCCTGGTGCCCGGCGGCTTGACCCGCGTGGCGCTGCGCGAGGGCTCGCTGGTGGTGAACTCGTCCCAGGGCGGCGGTACCAAAGACACTTGGGTCGTGGAGGACTAA	MPHAFFNEMYDAKGDCRPHYQAFSRWLADTPLELLEQRRREADLLFHRAGITFTLYGDEQGTERLIPFDIIPRSIKASEWQIVERGCIQRVQALNMFLADIYHGQRILKEGIIPAEQVLANEGYQIAMQGLDLHRGIYAHIAGVDLVRDGDGSYYVLEDNLRTPSGVSYMLEDRKMMMRLFPELFAAQRVAPIDHYPNLLLDTLKSSSPLDNPTTVVLTPGRFNSAYFEHAFLAREMGVELVEGADLFVRDDHVYMRTTAGPQQVDVIYRRLDDAYLDPLSFNPDSMLGVPGLIAVYRAGNVVLANAVGTGVADDKSIYPYVDDMIRFYLTEEPILKNVPTWQCRKPQDLSHVLANLPDLVVKETQGSGGYGMLVGPAATAAEIEDFRARLKARPEAYIAQPTLSLSTCPTFVESGIAPRHIDLRPFVLSGKETRLVPGGLTRVALREGSLVVNSSQGGGTKDTWVVED	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
D1-36_02796	2121	cntO_4		Metal-pseudopaline receptor CntO	TTGAATCGTTTCACCCCTTTCGCCTACCGCAACGCCCTCGTCAAATGTGTTTTACCTGCGCTGTCCTGTTGTTTCATGGCCAGCCCCTTGAGGGCACAGGACACCCTCGAACTGCCCACTACGGATGTGCAAGGCAGTCGGATCATTCAGGACGAGGGCTACACGGCGACGCAAGCCAGCACGGCGAGCAAGAGCGATGTACCGATCAAGGAAGAGGCGCAATCGATCAACGTAGTCACTCAGCAGACGCTGGCGGACTATCAGGTGCGCTCGCTGGAGGACGCGATGAAGTTCGTCAGCGGCGTCAGCCAGGGCAACACCCTGGGCGGCTCGCGGGACTCATTGGTCAAGCGCGGCTTCGGCACCAACGACGACGGCTCGATCCTGCGCGACGGCGTGCGTTCCAACCTGGGCCATAACTTCAGCGCCACCACCGAGCGGGTCGAAGTACTCAAGGGGCCGGCCTCGATGTTGTACGGCGCGCTGGAACCTGGCGGCCTGATCAACGTCATCAGCAAGAAGCCGCAATACACCCAGAGCACCACGCTCAGCGGTTCCGCCTACAGCGAAGGCGGCGGCACCATGGCCCTGGACACCACCGGACCGCTGGGCGATACCGGATTGGCCTATCGCCTGATCGCCGAGCGCGGCCATGAGGATTACTGGCGCAACTACGGGGTTAACGAGAGCACGCTGGTGGCGCCGTCGTTGGCCTGGACCGGCGAGCGGGCTTCGTTGAATTTGAGTTATGAGTACAACGAATATTCCAACCCGTTTGACCGGGGGACGATGTTCACCAATGGACATCCGGCCGACATCGACTATGACAAGCGCCTGGATGAACCTTGGGCCAAAAGCGTTGGCATCCGCGAAACCGCCACCGCGCGGTTCGAGTATGAACTGAGCGAGGCGTGGAAGACGCGGGTGACCTACGGCTGGAACAATGACCGTTACAGCCTTTCGATTGCCCAGCCGCGCCTGTCGAATGGTGTCCTTCAGCGCGCCGCCAACGGTGCCCATTATGACGATGAAACCCGCTACGCCAGTTGGGACTTCATTGGCAATCAAGAATTGTTCGGCCAGCGTCATGATCTGTTGGTCGGGGTCGACAACCAGGTTTCAGACCAGTTTCGGGGCAAGACTTACCGTGGCGCTAACCAAGCAGGTTTCGACCCTACGACTCCGGTGTACGGTGGCCTGGATGAGCCAAGTCGTGTGAATGCTGCGCAGAGCAACCTGAGCAACAAGCTGACCTCCAGTTCGGTGTATCTGAAGGACAACTGGCACCTGGACGACCGCTGGATCCTTGTATTTGGCGGTCGTTATCAGCATTACGATCAATACACGACGCAGGGACTCGTCCCTGCCAAGCCAGTTCGCGACGATAATGGAGACGCCTTCGTCCCATTCCTCGGCCTGGTCTACAAAGCCACGGAAGAACTGTCGCTATATGGCAACTACAGTCGCTCGTTCAAGCCTAACGACGTGGTGGACGAGGGTAGTCATACCTTCAAGCCGGAGGAGGGCCGCAGCTACGAAGTCGGCGCGAAATACGATCCGCTGCCGGGCCTGAATATCAACCTCGCCCTGTTCGATATCGTGAAGAAAAACGTCGTGACGTCCTCTACGGTCAACGGCGTAACGTTGGCAGAAGCCGCTGGCAAAGTTGGCTCCCAAGGCCTCGAACTCGATATCACCGGTCGCCTCGCCGAACGTTGGGACTTGATCGGCACCTACGCCTATACCCACACGGAGATCCTTGATGATCCGGACGATGAAGGCCATCGTCTGGCCGACGCCCCCAAGCACACCGCCAGCCTGTACCTGAGCCACCACCTGAACGTCCCGGCCGAATTCGGTGCCTGGCACGCCGGTGCCGGCGCCCGTTATGTCGGCGAGCGCGCCGCCAACAACGCCAACGATTTCTGGCTCAGCAGCTACACCGTCGCCGACGCTTTCCTGCGCTGGGAGTCGCCGGTGTTCGGGCACAAGACGTCGTTGCAGTTGAACGTCGATAACCTGTTCGACAAGCAATACTACCCGTCATCCACCGGCAGCGAACTTCAGGTCGCCGTCGGCGAGCCGCGTACCGCCAGGTTGAGTGCCAGCGTGACGTTCTGA	MNRFTPFAYRNALVKCVLPALSCCFMASPLRAQDTLELPTTDVQGSRIIQDEGYTATQASTASKSDVPIKEEAQSINVVTQQTLADYQVRSLEDAMKFVSGVSQGNTLGGSRDSLVKRGFGTNDDGSILRDGVRSNLGHNFSATTERVEVLKGPASMLYGALEPGGLINVISKKPQYTQSTTLSGSAYSEGGGTMALDTTGPLGDTGLAYRLIAERGHEDYWRNYGVNESTLVAPSLAWTGERASLNLSYEYNEYSNPFDRGTMFTNGHPADIDYDKRLDEPWAKSVGIRETATARFEYELSEAWKTRVTYGWNNDRYSLSIAQPRLSNGVLQRAANGAHYDDETRYASWDFIGNQELFGQRHDLLVGVDNQVSDQFRGKTYRGANQAGFDPTTPVYGGLDEPSRVNAAQSNLSNKLTSSSVYLKDNWHLDDRWILVFGGRYQHYDQYTTQGLVPAKPVRDDNGDAFVPFLGLVYKATEELSLYGNYSRSFKPNDVVDEGSHTFKPEEGRSYEVGAKYDPLPGLNINLALFDIVKKNVVTSSTVNGVTLAEAAGKVGSQGLELDITGRLAERWDLIGTYAYTHTEILDDPDDEGHRLADAPKHTASLYLSHHLNVPAEFGAWHAGAGARYVGERAANNANDFWLSSYTVADAFLRWESPVFGHKTSLQLNVDNLFDKQYYPSSTGSELQVAVGEPRTARLSASVTF	PGPT0003790_22244	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014	NA	NA
D1-36_02797	1770	actP_2		Cation/acetate symporter ActP	ATGGACACAAAAACCCTGATCTACCTGGTCGTAGGCGCCACCTTTGCGTTGTACATCGCGATCGCGATCTGGACGCGGGCCGGCTCCACCAGTGAATACTACGTCGCCAGCAAGGGCGTGCACCCCGTGCTCAACGGCATGGCGACCGGTGCGGACTGGATGTCGGCGGCGTCGTTCATTTCCATGGCGGGGATCATCGCCTTCGCGGGGTACGACGGTTCCGTCTACCTGATGGGCTGGACCGGCGGCTACGTCCTCCTGGCGATGTGCCTGGCGCCGTACCTGCGCAAATTCGGCAAGTTCACCGTGCCCGAGTTCGTTGGGGCGCGTTATTACTCGCAGACGGCGCGGGTGGTGGCGGTAATCTGCGTGATCTTCATTTCCTTTACCTACGTGGCGGGGCAGATGCGCGGCGTAGGCATCGTGTTTTCCCGCTACCTGGAAGTGGACATCAACACCGGCGTCATGATCGGCATGGCCATCGTGTTCTTCTATTCGGTGCTGGGCGGCATGAAAGGCATCACCTACACCCAGGTGGCGCAGTACTGCGTGATGATCTTCGCCTACATGGTGCCGGCCATTTTCATCTCGATGATGATCACCGGCAATCCGATCCCGCAGCTGGGCTTCATCAGCGAAGCCGCCGGCTCGGGGCAGAGTGTGATCGAACGGCTCAATGGCCTGGGCGCCGAGTTGGGCTTCTCTGCCTATACCAATGGCACTAAGTCGACCATGGACGTGTTTTTCATCACCATGGCGCTGATGGTGGGGACCGCGGGCCTGCCCCATGTGATCGTGCGGTTCTTCACCACCCCCACCGTCCGGGACGCACGCAAGTCTGCCGGCTACGCGTTGCTGTTCATCGCGATTCTCTACACCACCGCACCGGCGGTGGCAGCGTTCGCTCGTACCAACCTGCTGACCTCCATCCCCAACGTCAGTTATGCCACCGCGCCGGACTGGTTCAAGGCCTGGGAAAATTCCGGACTGATTGCCTGGGCGGACAAGAACAACGACGGCATCATCCAGTACAGCCCTGGGGCGGCGCTGGTCGGGGCGCCGAGCTTTACCGGCGAACGTGGGGCGCATGAGCAGCGGTTGCTCAAGAACCAGCTTTCGCCGGTGCCCAACGAGCTGTATGTCGACAACGACATCATGGTGTTGGCCAACCCTGAAATCGCCGGGCTGCCCGGTTGGGTAATTGCCTTGATCGCTGCCGGTGGGCTGGCGGCGGCGCTATCGACGGCAGCGGGGCTGTTGCTGGTGATCTCCACCTCGATCTCCCATGACCTGCTCAAAAGCAACATCATGCCCAGGATCAACGAGAAGCAGGAGTTGCTCGCGGCGCGTATCGCGGCCGGTGTGGCGGTATTGATCGCCGGATTGTTCGGCATCTACCCACCCGCATTCGTCGCCCAGGTGGTGGCGTTCGCCTTCGGGTTGGCGGCGTCTTCGTTCTTCCCGGTCATCGTCATGGGGATCTTCTCCAAGCGCATGAACCGCGAAGGCGCGATTGCCGGGATGATCGTCGGGCTGACCTTCACGTTCACCTACATCGTCTATTTCAAATTCATCAACCCGACGATGAACACGGCTGAACATTGGTGGCTTGGTGTGTCCCCTGAAGGCATCGGCACATTGGGCATGGTATTCAACTTCCTGGCGGCCCTGGTGGTGTCACGCTTCACCGCGCCGCCACCGGAGCACATCCAGCACTTGGTGGAGGATATCCGCGTACCGAGGGGCGCCGGCGCCGCCATCGATCACTGA	MDTKTLIYLVVGATFALYIAIAIWTRAGSTSEYYVASKGVHPVLNGMATGADWMSAASFISMAGIIAFAGYDGSVYLMGWTGGYVLLAMCLAPYLRKFGKFTVPEFVGARYYSQTARVVAVICVIFISFTYVAGQMRGVGIVFSRYLEVDINTGVMIGMAIVFFYSVLGGMKGITYTQVAQYCVMIFAYMVPAIFISMMITGNPIPQLGFISEAAGSGQSVIERLNGLGAELGFSAYTNGTKSTMDVFFITMALMVGTAGLPHVIVRFFTTPTVRDARKSAGYALLFIAILYTTAPAVAAFARTNLLTSIPNVSYATAPDWFKAWENSGLIAWADKNNDGIIQYSPGAALVGAPSFTGERGAHEQRLLKNQLSPVPNELYVDNDIMVLANPEIAGLPGWVIALIAAGGLAAALSTAAGLLLVISTSISHDLLKSNIMPRINEKQELLAARIAAGVAVLIAGLFGIYPPAFVAQVVAFAFGLAASSFFPVIVMGIFSKRMNREGAIAGMIVGLTFTFTYIVYFKFINPTMNTAEHWWLGVSPEGIGTLGMVFNFLAALVVSRFTAPPPEHIQHLVEDIRVPRGAGAAIDH	PGPT0001400_709	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-CATION_TRANSPORT,PGPT0001400-actP-K14393	NA	NA
D1-36_02798	267			hypothetical protein	ATGTCCACTGAAAAACAACAGGCTGCGCGTGCCTACTGGACGGAAAATCTACGCTGGATGCTGGTGTTGCTGGTCATCTGGTTCGTGGTGTCGTTCGGTTTCGGCATCTTGCTGGTCGACTCACTCAATACCATCAGTTTCTTCGGCACGCCCCTGGGGTTCTGGTTTGCCCAGCAGGGGTCCATCTACGTCTTTGTGCTCGAGATCTTCTTCTATGTCTGGAAGATGAATCAGCTTGATCGCAAATATGACGTTCACGAAGACTGA	MSTEKQQAARAYWTENLRWMLVLLVIWFVVSFGFGILLVDSLNTISFFGTPLGFWFAQQGSIYVFVLEIFFYVWKMNQLDRKYDVHED				NA	NA	NA	NA	NA
D1-36_02799	1797			hypothetical protein	ATGCAGACGTTAAAGGCCTTGTATGAGTCTATCGAAATGCAATTTTTCGATACCCTCACCAAAAAGCTTTCAAGCCTTTTCCTCTTGGTCGCGGTCAGTGCCTTGCTTTATTGGGTGGCCCTCAGCGCCCGCGCCGATATCGTCCTGCAGTTGCGCACTGCCCAGCTTGACGCCGCGCTGCTGGGACAGATTCAAGACCGCCTCGACAGCCTCACCCATGCGCTGCTCTTCGGCGCGCTTTTGACGCTGGCCATGGTCAGTTTCATGGTCTGGTACTTCCGCCACCTCATCGTGCGCCCCGTTACCGCCATGACCAAAGCCCTGGAAGAGATCGCCAACGGCGAAGGCGACTTGTCCAAGGACCTGCCGCTGGTGACCCACGACGAGATCCGCACGCTGGCCGCCACCTGCAACCGTTTCCTGGCCAAGCAGCGCGAGATCATTAGCAACGTCCAGGCATTGACCGTCCATATCGCCGTCGAATCGGCCCGCTCGCTGAAGAACATCAGTGATTCCAGCGACAGCGCGACGCACCAGGCGCGCTTCGCCAAGGAAGTGATGGAGCAGAGCAATACCGCCGTGGGCCGTATCGAAGAGGTGTCGCGCCAGACCCAGGGCATATCCGGGACCACCGCGCAGAACCTGAGCATGGCCCGGGACTCCTACGCCGAATTGCTGGAAGTGACCGGCAACATCAGCGAGATTTCCAGCAGCCTCGGCGAGTTCGCCGGGCTGGTGGACGCCCTCAACCAGCGCTCTTCGAGCATCAAGTCGATTGTCGGCCTGATCCAGCAGATTTCCGCCCAGACCAACCTGTTGGCCCTCAACGCCGCCATCGAAGCCGCGCGTGCCGGGGAAAGTGGCCGTGGCTTTGCGGTGGTCGCCGATGAAGTGCGCACCTTGGCGCAGAACGTCAGCCGCGCCACCGACGATATCTCCCGTAACATCGACGCCATGTTGCAGGAAGTCAGCTCGACCCACGAACAGACCACCCAGATCAGCCACAGCGCCCGGGAAACCCAGAAAGTCGTTGAACGCGCGTCCGGTCATTTCGAAAGCATGATCGTCGACTTCGAATCCACCAACGGCAAGTTGGCCGACATCGCTGACCATATCCAGCAATTCGCCGATACCAACACTGGCATCAACGAACGAGTCACCCAGATCCACGCCGACAGCCAGTCGATCGACCAACGCATGCAGCAATCGGCGACCGCTACCCGCGACCTGTCTGGCGTGGCGGAGAAAGTCCAGACGCTACTGGGCCGCTTCGTGCTTGGCCACGGCAAGCTGGACGCCGCCATCACCCGTGCCAGCGAATGCCGCGACACGCTGCAGGTTCATTTGCAGGCGTTGCAGGATGAAGGTGTCAACCTGTTCGACCAGAATTACCAATTGATTCCCGGCACCGATCCCAAGCAATACATGACCAGTTATACCGAACGCTTTGCCCGGGTCTGCCAGGAAGAATGCGACAAGCTCACCCGCAGTACGCCGGGCGGCAAGGTCTCGTTCATTGTCGATACGAAGGGGTATTGCCCGGTCAATAACAGCTGGGTGTCCAAACAACCGACCGGAGACCGCGCGGTGGACCTACCGGTTTGCCGCAACAAGCGGATCTTCAACGACCCGATCGGCCTGCGCGCTGCGGGCAACGTCCAGCGCTTCCTGCTCCAGACCTACCTGCGCGACACCGGGGAAATCATGACCGAGATCGACGTGCCGTTCTTCTTCGGCGGCCGTCACTGGGGCAACTTGCGGGTGGGGTTTGATGCGGCGGTGTTGTTGGCGGACTAA	MQTLKALYESIEMQFFDTLTKKLSSLFLLVAVSALLYWVALSARADIVLQLRTAQLDAALLGQIQDRLDSLTHALLFGALLTLAMVSFMVWYFRHLIVRPVTAMTKALEEIANGEGDLSKDLPLVTHDEIRTLAATCNRFLAKQREIISNVQALTVHIAVESARSLKNISDSSDSATHQARFAKEVMEQSNTAVGRIEEVSRQTQGISGTTAQNLSMARDSYAELLEVTGNISEISSSLGEFAGLVDALNQRSSSIKSIVGLIQQISAQTNLLALNAAIEAARAGESGRGFAVVADEVRTLAQNVSRATDDISRNIDAMLQEVSSTHEQTTQISHSARETQKVVERASGHFESMIVDFESTNGKLADIADHIQQFADTNTGINERVTQIHADSQSIDQRMQQSATATRDLSGVAEKVQTLLGRFVLGHGKLDAAITRASECRDTLQVHLQALQDEGVNLFDQNYQLIPGTDPKQYMTSYTERFARVCQEECDKLTRSTPGGKVSFIVDTKGYCPVNNSWVSKQPTGDRAVDLPVCRNKRIFNDPIGLRAAGNVQRFLLQTYLRDTGEIMTEIDVPFFFGGRHWGNLRVGFDAAVLLAD	PGPT0015710_13404	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_02800	303			hypothetical protein	ATGCGTAAATCTTATTCGAGTGAGTTCAAGCTCAAGGCTGCCAGCATGGTGCTGGATGAAGGCCAGCCGGTTACCGAGGTCTGTGCCAGCCTAGATATCGGCCCCACTGCTCTGCGCCGCTGGGTCGATCAAGTGCAAAAAGAACGCCTGGGTTCGACCCCGGTAGGGGCCAAGGCGATTACCGCTGATCAGCGAGAAATCCAGAGGCTCAAAGCCCTACTCAGGGAGAAAGACCTGGACATTGAAATCCTAAAAAAGGCCAGTGCTCTCCTGCTTTTGGACGCCAAAGATCATTCACGCTGA	MRKSYSSEFKLKAASMVLDEGQPVTEVCASLDIGPTALRRWVDQVQKERLGSTPVGAKAITADQREIQRLKALLREKDLDIEILKKASALLLLDAKDHSR				NA	NA	NA	NA	NA
D1-36_02801	609			IS3 family transposase ISSlo2	ATGGCTCGCAGTTTGATGCGCGAAGCTGGCATCGCTAGTCGTCAGCGCAGGCGCCATAAGTACAAGTCGCCGGGCGTTGAGGCATTGGTGGCGCCGCACGTGCTCAAGCGAAAATTTGATGTAACGGCGGTTAACCAGGTGTGGTGTGGCGACGTGACTTACATCAAGGTCGGCAAGCGGTGGATGTACTTCGCCGCCGTTCTGGATCTGTACGCTCGGAGGATCGTGGGTTGGTCGTTCTCGATGATTTCTGATGCCAACCTGACCTGCGAAGCGCTACGCATGGCGGTTGAGCTACGCGGCCACCCCCAGGATGTGTTGTTTCATTCAGACCAAGGTTGTCAGTACACCAGTCATAAATTCCGAAACGAGCTTGTGAAACACGGGTTTAGGCAAAGTATGAGCCGTAAAGGCGAGTGCTGGGACAACGCCCCCATGGAGCGTTTCTTTGGTAGTTTGAAATCAGAGTGGGTTCCTGAAACGGGCTACAAACTGGAACATGAGGCCCGGGCAGACGTGCAGCGCTATGTCTCGCGCTACAACATCAGCAGGCCTCACAGCTACAACGACTACAGGTCGCCGGTCGCGAAGGAAAGGTTGGCGGCGTGA	MARSLMREAGIASRQRRRHKYKSPGVEALVAPHVLKRKFDVTAVNQVWCGDVTYIKVGKRWMYFAAVLDLYARRIVGWSFSMISDANLTCEALRMAVELRGHPQDVLFHSDQGCQYTSHKFRNELVKHGFRQSMSRKGECWDNAPMERFFGSLKSEWVPETGYKLEHEARADVQRYVSRYNISRPHSYNDYRSPVAKERLAA				NA	NA	NA	NA	NA
D1-36_02802	1020			hypothetical protein	TTGTTTTGGGCTGGTCTCAGGATTTTTGTACACCACCGGTTCGCTTGTGGGAGCGAGCCTGCTCGCGATAGCGGAGTGTCAGTTGGTGATGAAATGACTGACCTGACGCCATCGCGAGCAGGCTCGCTCCCACAGTTGTTTTGGGCTGGTCTCAGGATTTTTGTACACCACCGGTTCCCTTGTGGGAGCGAGCTTGCTCGCGATAGCGGTGGGTCAGTTGGTGATGAATTGACTGACCCGACGCCATCGCGAGCAGGCTCGCTCCCACAGTTGTTTCGGGCTGGTCTCAGGATTTTTGTACACCACCGGTTCCCTTGTGGGAGCGAGCCTGCTCGCGATAGCGGAGTGTCAGTTGGTGATGAATTGACTGACCTGACGCCATCGCGAGCAGGCTCGCTTCCACAGTTGTTTTGGGTTGGCCTCAGGATTTTTGTACACCACCGGTTCGCTTGTGGGAGCGAGCTTGCTCGCGATAGCGGTGGGTCAGTTGGTGATGAATTGACTGACCCGACGCCATCGCGAGCAGGCTCGCTCCCACAGTTGTTTTGGGCTGGTCTCAGGATTTTTGTACAGCACCGGTTCCCTTGTGGGAGCGAGCTTGCTCGCGATAGCGGAGTGTCAGTTGGTGATGAATTGACTGACCCGACACCATCGCGAGCAGGCTCGCTCCCACAGTTGTTTTGGGCTGGTCTCAGGATTTTTGTACACCACCGGTTCCCTTGTGGGAGCGAGCTTGCTCGCGATAGCGGTGGGTCAGTTGGTGATGAATTGACTGACCCGACGCCATCGCGAGCAGGCTCGCTCCCACAGTTGTTTCGGGCTGGTCTCAGGATTTTTGTACACCACCGGTTCCCTTGTGGGAGCGAGCCTGCTCGCGATAGCGGAGTGTCAGTTGGTGATGAATTGACTGACCTGACGCCATCGCGAGCAGGCTCGCTTCCACAGTTGTTTTGGGTTGGCCTCAGGATTTTTGTACACCACCGGTTCGCTTGTGGGAGCGAGCTTGAACTGGTCAAGTAA	MFWAGLRIFVHHRFACGSEPARDSGVSVGDEMTDLTPSRAGSLPQLFWAGLRIFVHHRFPCGSELARDSGGSVGDELTDPTPSRAGSLPQLFRAGLRIFVHHRFPCGSEPARDSGVSVGDELTDLTPSRAGSLPQLFWVGLRIFVHHRFACGSELARDSGGSVGDELTDPTPSRAGSLPQLFWAGLRIFVQHRFPCGSELARDSGVSVGDELTDPTPSRAGSLPQLFWAGLRIFVHHRFPCGSELARDSGGSVGDELTDPTPSRAGSLPQLFRAGLRIFVHHRFPCGSEPARDSGVSVGDELTDLTPSRAGSLPQLFWVGLRIFVHHRFACGSELELVK				NA	NA	NA	NA	NA
D1-36_02803	198			hypothetical protein	ATGTTCAATGACTTGAGTCGCCTCGGTAAATACCTCGGTCAGGCCGCCCGCCTGATGGTCGGCATGCCCGACTACGACAACTACGTCGAGCACATGCAAACCAAGCACCCGGACAAGCCGCTGATGGACTACGAGGCGTTCTTCCGAGAGCGCCAAGAGGCCCGTTACGGCGGCAAGGCCGGGCCCAAGTGCTGTTGA	MFNDLSRLGKYLGQAARLMVGMPDYDNYVEHMQTKHPDKPLMDYEAFFRERQEARYGGKAGPKCC				NA	NA	NA	NA	NA
D1-36_02804	2061	btsT_1	COG1966	Pyruvate/proton symporter BtsT	ATGACAACCCGTTTGGTTAAACACCTCGCCTGGTTTGCCGTGGCTGTTCTGGGAGCTTGTGCGCTGAGTGTCGTGGCCTTGCGCCGCGGAGAGCCGATCAACGCCCTCTGGATCGTCGTCGCAGCCGTGGCCATTTACCTGGTCGCCTATCGCTACTACAGCCTCTTCATCGCCAACAACGTGATGCAACTCGATGCGCGCCGGGCCACGCCTGCCGTGCTCAACAACGATGGCCTGGACTACGTCCCGACCAACAAGCACATCCTGTTCGGCCACCACTTCGCGGCCATTGCCGGCGCGGGGCCGCTGGTCGGGCCGGTGCTGGCCGCGCAGATGGGCTACCTGCCCGGCACGCTCTGGCTGATCGCCGGCGTGGTGCTGGCCGGTGCGGTGCAGGACTTCATGGTCCTGTTCCTGTCCACCCGCCGCAACGGTCGCTCCCTGGGCGACATGGTGCGCGAGGAAATGGGCCGTATTCCCGGCACCATCGCGCTGTTCGGCTGCTTCCTGATCATGATCATCATCCTCGCGGTGCTGGCGCTGATCGTGGTCAAGGCCCTGGCCGAGAGCCCGTGGGGCATCTTCACGGTGATGGCGACCATCCCGATCGCGATGTTCATGGGCATCTACATGCGCTACATCCGCCCGGGCCGCATCGGCGAGATCTCGATCATCGGCGTGCTGTTGCTGTTGGGTTCTATCTGGCTGGGCGGGCAGATCGCCGCCGATCCGGTCTGGGCCAAGGCCTTCACCTTCACCGGAATCCAGATCACCTGGATGCTGATCGGCTACGGTTTTGTCGCGGCGGTCCTGCCGGTGTGGCTGATCCTGGCGCCACGGGACTACCTGTCGACCTTCCTCAAGATCGGCACCATCGTCGCCCTGGCGATCGGCATCCTGGTCACCATGCCCGAACTGAAAATGCCCGCGCTGACTCAGTTCACCGACGGCACCGGGCCGGTGTGGAAGGGCGGCTTGTTCCCGTTCCTGTTCATCACCATCGCCTGCGGCGCGGTCTCGGGCTTCCATGCGCTGATCTCCTCGGGCACCACGCCCAAGCTGCTGGATAACGAAACCAACGCCCGCTACATCGGTTACGGCGGCATGCTGATGGAGTCCTTCGTGGCCATCATGGCGATGGTTGCCGCCTCGGTGATCGAGCCGGGCGTGTACTTCGCCATGAACAGCCCGGCGGCGATCGTCGGCACTGACGTGGTGGCCGTGGCCCAGACCGTCAGCAGTTGGGGCTTTGCAATCACCCCCGACGCGCTGCAAGCGGTGGCCAAGGACATCGGTGAAACCACCATCCTGGCCCGTGCCGGCGGTGCGCCGACCCTGGCGGTCGGTATCGCGCAGATCCTGCACTCGGTGCTGCCGGGTGAGAACACCATGGCCTTCTGGTATCACTTCGCGATCCTGTTCGAAGCGCTGTTCATCCTCACCGCGGTGGACGCCGGCACCCGTGCCGGGCGGTTCATGCTGCAGGATCTGCTCGGCTCGTTCGTGCCGGCCCTCAAGCGAACCGAATCCTGGACCGCCAACCTGATCGCCACCGCCGGCTGCGTCGCGCTGTGGGGTTACTTGCTGTATCAGGGCGTGATCGATCCGCTGGGCGGCATCAACACCTTGTGGCCGCTGTTCGGCATCTCCAACCAGATGCTGGCCGGTATCGCGCTGATGCTCGCCACCGTGGTGCTGATCAAAATGAAGCGCCAGCGCTACGTCTGGGTCACGCTGCTGCCGGCGAGCTGGCTGCTGATCTGCACCACCACCGCGGGCCTGATCAAGCTGTTCGACGCCAACCCGGCGATCGGCTTCCTCGCCCTGGCGCGCAAATACAACGATGCCCTGGCCGCCGGCCAGATCCTGGCCCCGGCCAAGAGCATCGAGCAGATGCAGCACGTGGTGTTCAATGCCTACACCAACGCAACGCTGACGGTATTGTTCCTGTTCGTGGTCTTCAGCATCCTGTTCTACGCGCTCAAGGTCGGCATCGCCGCCTGGGGCACGAAAGAGCGCACGGACAAAGAAGCGCCATTCCAGGCCCTGCCGGACGCTTGA	MTTRLVKHLAWFAVAVLGACALSVVALRRGEPINALWIVVAAVAIYLVAYRYYSLFIANNVMQLDARRATPAVLNNDGLDYVPTNKHILFGHHFAAIAGAGPLVGPVLAAQMGYLPGTLWLIAGVVLAGAVQDFMVLFLSTRRNGRSLGDMVREEMGRIPGTIALFGCFLIMIIILAVLALIVVKALAESPWGIFTVMATIPIAMFMGIYMRYIRPGRIGEISIIGVLLLLGSIWLGGQIAADPVWAKAFTFTGIQITWMLIGYGFVAAVLPVWLILAPRDYLSTFLKIGTIVALAIGILVTMPELKMPALTQFTDGTGPVWKGGLFPFLFITIACGAVSGFHALISSGTTPKLLDNETNARYIGYGGMLMESFVAIMAMVAASVIEPGVYFAMNSPAAIVGTDVVAVAQTVSSWGFAITPDALQAVAKDIGETTILARAGGAPTLAVGIAQILHSVLPGENTMAFWYHFAILFEALFILTAVDAGTRAGRFMLQDLLGSFVPALKRTESWTANLIATAGCVALWGYLLYQGVIDPLGGINTLWPLFGISNQMLAGIALMLATVVLIKMKRQRYVWVTLLPASWLLICTTTAGLIKLFDANPAIGFLALARKYNDALAAGQILAPAKSIEQMQHVVFNAYTNATLTVLFLFVVFSILFYALKVGIAAWGTKERTDKEAPFQALPDA	PGPT0015060_873	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CARBON_STARVATION_RESPONSE,PGPT0015060-cstA-K06200	NA	NA
D1-36_02805	1362			hypothetical protein	ATGCTGCTCAAACACAAAATCGTTGCTCTCGGGATCCTGCCGCTGGTCCTGGCGATTGCTGTCATCGGTGCCTTGGTCATCTCGCTCAACCGCCAGTTGGGTGATCAACAGGCGCAACTGATCGAAGACAGCATCCTGGCGAGCAAGCGCGCCGAATTGAAGAACTATGTCGAGATGGCGCAGAGCCTGATCGCGCCGCTGTATGACAACGGCCAGGGCGACGCGCGGGCACAGCAGCAGGTACTGGAAGAGCTGCGCAAGCTCAGCTTCGGTATCAACGGATATTTCTTCGTGTACGACCGCCAGGGTCGCAGCCTGATGCACGCCCGGCAGTCGGAACTGGTCGGGCAATACCTTTGGGACATGAAAGATCCCCAGGGCCTGCCCGTCATCCAGGCGTTGCTCAAGAGCGCCGAATCGGGTGAAGGCTTCCAGCGTTATGCCTGGAACAAGCCTTCCTCCGGCCAGGTGACCGACAAACTGGCCTATGTCGTGATGCTCGATCGCTGGGGCTGGATGCTCGGCACCGGGATTTACCTGGAGGACGTGGAGCGTGCCACCCAACAGGCCCGCGCCGAAGTGGCCCAAGGCATCCACACCACCATGCAGGCGATCGCCGCCATTGCTCTGATCGCGGTGCTGCTGGTGTTCGCCGGCGGCATTACCCTCAACGTCAGCGAGCATCGCCTGGCCGACAAGAAACTGCAGCGCTTGAACCAGCGCATTGTCAGCTTGCAAGAGGAAGAGCGCTCCCGGGTATCCCGTGAATTGCATGACGGCATCAGCCAACTGTTGGTGTCGATCAAGTTCCAGTTCGAGCTGGCCAGCCACGTCATCGAGAACGGCCAGGAAAATGGAGTGGGCATCTTGAAAAACGCCACGGACCGACTGGGTGAAGCCATCGGTGAAATCCGTAGCATCTCCCACGACCTGCGCTCGTCTTTGCTCGACACCCTGGGCCTGCCTGCCGCCATCGGCCAGCTTGCGGCCGAATTCGAGCAACGCAGCGGCCTGGAAGTGTCCTACCGAAGCAACGAATTCGACTGTCGCCTGGAAAACGGCGCACCGGTCTCGCTGTTTCGCATCGCCCAGGAAGCGCTGACCAACATCGAGCGTCACGCCGGGGCGAAGCGTGTCGCCATCACCCTGTTCGGCTCCGGCCAGTCCTTGCGCCTGACCGTTGTGGATGACGGGATGGGCTTCAACGTTCCACAGGTCGAGCGCGGCCATACGGGCATCGGCTTGCGTAATATCCGCGAACGGGTCGAGCATTTTGGCGGGCGGCTGGACATGACATCGGTGCCAGGACGAAGCGAACTGGATATCCTCTTGCCCATGACCATGCCCACCACGGAAAGCTGA	MLLKHKIVALGILPLVLAIAVIGALVISLNRQLGDQQAQLIEDSILASKRAELKNYVEMAQSLIAPLYDNGQGDARAQQQVLEELRKLSFGINGYFFVYDRQGRSLMHARQSELVGQYLWDMKDPQGLPVIQALLKSAESGEGFQRYAWNKPSSGQVTDKLAYVVMLDRWGWMLGTGIYLEDVERATQQARAEVAQGIHTTMQAIAAIALIAVLLVFAGGITLNVSEHRLADKKLQRLNQRIVSLQEEERSRVSRELHDGISQLLVSIKFQFELASHVIENGQENGVGILKNATDRLGEAIGEIRSISHDLRSSLLDTLGLPAAIGQLAAEFEQRSGLEVSYRSNEFDCRLENGAPVSLFRIAQEALTNIERHAGAKRVAITLFGSGQSLRLTVVDDGMGFNVPQVERGHTGIGLRNIRERVEHFGGRLDMTSVPGRSELDILLPMTMPTTES				NA	NA	NA	NA	NA
D1-36_02806	633	nreC	COG2197	Oxygen regulatory protein NreC	ATGACCCTGTCTCCAGCCATACGCGTCGCCCTGGTCGACGATCATTCCCTGGTCCGGGACGGCATCCGCGCCCTGCTGTCCGTCATGCCCCGGCTGGATGTGGTTGGCGAAGCGGAGAATGGTGTACAGGCCATCGAAATGGTCGAACGCTGCCAGCCGGATCTCCTGTTGATGGACATCGGCCTCAAGGACATGAACGGCCTTGAGCTGACCCGGCTGCTGGGCAGGCAGCACCCAGGCTTGAAGATCCTGGTCCTGAGCATGTATGACAATCATGAGTACGTCAGCGAATCCGTGCGCGCCGGCGCCAGCGGCTATGTCCTGAAGAACTCGCCGTCGAAGGAAATCATCGCCGCCATCGAGGCCATCATCAACGGCGGCACCTTCTACAGCGCCGAGATCGCCCAGCGCCTCGCCACCGACCCACACACCGACAGCGAGCTGACGCCGCGCGAGACCCAGGTGCTGAAGAAAATGGTCCAGGGCTTCAACAACAAGGAAATGGCCCGCGAGCTGGACATCAGCGTCCGCACCGTCGAAACCCACCGCCTGAGCATTCGCCGAAAGCTCAACATCGACAAGCCCGCGGCCCTGGTGAAATACGCGATCGACCACGGGATCATTCCGCGCTGA	MTLSPAIRVALVDDHSLVRDGIRALLSVMPRLDVVGEAENGVQAIEMVERCQPDLLLMDIGLKDMNGLELTRLLGRQHPGLKILVLSMYDNHEYVSESVRAGASGYVLKNSPSKEIIAAIEAIINGGTFYSAEIAQRLATDPHTDSELTPRETQVLKKMVQGFNNKEMARELDISVRTVETHRLSIRRKLNIDKPAALVKYAIDHGIIPR	PGPT0000550_1090	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-REGULATION	N-AQUISITION-NITRATE|NITRITE_SENSING,PGPT0000550-narL-K07684	NA	NA
D1-36_02807	873			hypothetical protein	ATGCACGTATTCGTTACCGGTGCCACGGGCTGGGTTGGGTCGGCCGTGGTGCAGGATTTGCTCGGCGCCGGGCATCAAGTTACCGGCCTGGCTCGTTGCGAAGAAAAGGTTGCCGCGCTCGCCGCCACCGGCGCGAGAGTAATTCAAGGGACGTTGGATGATCTGGATGTCCTGCATCATGCAGCGTCGGCGGCGGATGCGGTTATTCACACCGCTTTTAATCATGATTTTTCACGATTTGCCGAAAATGCCGAGCAAGACCGTCGTGCGATTATGGCACTGGGCGGCGCGTTGCAAGGCTCCGAGCGACCTCTATTGGTGACCTCGGGCTTGTTCGGATTGACCCGGGGCGCCAGTGAGCTGGAAGTGGTCAGCCCGGCCTCGCCTCGCAAGTCCGAAGCCACGGCTCGGGATCTGACCGAGCGTGGTGTGCGCGTGGCGACGGTTCGGTTGGCGCCATCGGTCCATGGCGTCGGCGACTATGGATTCGTACCGATCCTGATTCGCCTGGCCCGTGAGCAGGGCGTATCGGCTTATCTCGGCGACGGTAACCATTGCTGGTCGGGCGTGCATCGACTGGATGCGGCACGGGTCTATCGATTGGCGCTTGAGCAGGGCGTGACCCAGTCCGTCTACCACGCCGTCACCGACGAAGCTGTACCCTTCAAGGACATTGCCCAGGCGATAGGACGTGGCCTGGGAGTGCCGGTCGAGTCCCGAGAGCGCGAGCATTTTGGCTGGTTCGCTCACATGGCGGGCGCGAACATGGCGGTGTCCAGTGAGTACACCCGCGGTTTGTTGGGTTGGGTGCCGAGCGGGCCGGGGTTGTTGGATGATCTTGAACATCCTGGTTACTACATCAGCGCGGAATGA	MHVFVTGATGWVGSAVVQDLLGAGHQVTGLARCEEKVAALAATGARVIQGTLDDLDVLHHAASAADAVIHTAFNHDFSRFAENAEQDRRAIMALGGALQGSERPLLVTSGLFGLTRGASELEVVSPASPRKSEATARDLTERGVRVATVRLAPSVHGVGDYGFVPILIRLAREQGVSAYLGDGNHCWSGVHRLDAARVYRLALEQGVTQSVYHAVTDEAVPFKDIAQAIGRGLGVPVESREREHFGWFAHMAGANMAVSSEYTRGLLGWVPSGPGLLDDLEHPGYYISAE				NA	NA	NA	NA	NA
D1-36_02808	1230	yfcJ		putative MFS-type transporter YfcJ	ATGACTCAAGAAAATATTCATCCGGGTGCCTCTGTGGCGCCCCCGGCAGCCGTCGATACCAATCCGGTATTCAAGTTGTTGCCGCTCACGTTGACCGTGTTCATTGGCTTTCTCACCATCGGCATGCAACTGCCAGTTTTGCCGCTTCATTTGCACGACACGCTGGGGATGGGCACGTTGGTGATTGGCCTGGTAGTGGGTGCACAGTTCGCCGCGGCGCTGCTGTCGCGATCCTGGGCCGGCAATTTCGCCGACCTGCGCGGCGGCAAGCGCGCGGTCATGGTCGGGCTGGTGACTGCGGCGGTTTCCGCTTTGGTCTATCTGCTGTCCCTGGCGTTCGTCGCTACGCCGGTGTTGTCGGTCTGGCTGTTAGTAGGCGGTCGCGTGCTGCTGGCGATCGGTGAAAGCCTGATCGTCACTGGGGCGTTGGGGTGGGGCATCGGTCTTGTAGGGGGGCAGCATGCCGGCAAGGTCATGGCCTGGAATGGCATTGCCATGTATGGCGCGTTCGCCCTGGGCGCCCCGCTTGGCGTGGCGCTCGATTCGGGTTGGGGATTCATGGGCATCGTTGTGGCGTCGGCGTTTATTGCGCTGTTGGCCTTGGCGGTTGTCGCCGGCGTCCGCGGCGTAGCCCCTACGGCGACCCGGCGCACACCGTTCTACAAGATGTTCGGCGCGGTATGGGTTCCCGGCATGGGCCTGGCGTTTTGCAGCGTCGGCTTTGGTGTCGTGACAGCGTTCATTGCCTTGTTATTCGCGGCCAGGGATTGGGGCAACGCTTCGCTCGCGTTCACGGCGTTCGGTCTGGCCTTCATCGGCGCGCGGCTGTTGTTCGGGCATCTTCCGGACAAGATCGGTGGCGCGCGTGTCGCATTGGTCTGCGTCGTGATCGAGGCCGTTGGGCTGCTGCTCATCTGGGGCGCCGATACGGCATTCATCGCCTATCTCGGCGCCGCGTTTACCGGCTTCGGTTATTCCCTGGCGTTTCCCGGTTTTGGCGTGGAAGCAGTGCGGCGTGCTCCGCCGCAGTCACGTGGCCTCGCCATGGGCGCCTATGTTGCCTTCCTCGATATTTCCCTGGGCATGACCAGCCCGCTGGCTGGTGTGCTGGCCAGTGGTTGGGGCATCGAGGCGGTTTACCTGGGTGGTGCTGTTGCGGTTGCGTTGTCGTTCGGGGTGGCCTTGATGTTGCTCCGAAGTCGGGAAATACAAGTTCAATACAAATCCTGA	MTQENIHPGASVAPPAAVDTNPVFKLLPLTLTVFIGFLTIGMQLPVLPLHLHDTLGMGTLVIGLVVGAQFAAALLSRSWAGNFADLRGGKRAVMVGLVTAAVSALVYLLSLAFVATPVLSVWLLVGGRVLLAIGESLIVTGALGWGIGLVGGQHAGKVMAWNGIAMYGAFALGAPLGVALDSGWGFMGIVVASAFIALLALAVVAGVRGVAPTATRRTPFYKMFGAVWVPGMGLAFCSVGFGVVTAFIALLFAARDWGNASLAFTAFGLAFIGARLLFGHLPDKIGGARVALVCVVIEAVGLLLIWGADTAFIAYLGAAFTGFGYSLAFPGFGVEAVRRAPPQSRGLAMGAYVAFLDISLGMTSPLAGVLASGWGIEAVYLGGAVAVALSFGVALMLLRSREIQVQYKS				NA	NA	NA	NA	NA
D1-36_02809	648			hypothetical protein	ATGTCCGATCGCCCAAGCCCGCAGATTTCCTCACGCAAGCAGCCAAAACAGGCACGGTCCACCGAGCTTGTGGCGGCAGTCCTGGAAGCGGCTGTTCAGGTTTTGGCGAGTCAGGGCGCCCAACGCTTCACCGTTGCCCGCGTTGCCGAGCGAGCGGGTGTGAGCGTCGGATCGGTGTATCAGTACTTTCCGAACAAGGCAGCGATCCTGTTTCGGCTGCAAAGTGATGAATGGCGGCAGACCAGCGATATGTTGCGAGACATTCTGGAAGATCCCTCCACACCGCCCCTCTCGCGGTTACGAACCCTTGTGCAGGCGTTCATCCAGTCCGAGTGCGACGAAGCGCAGATTCGCGTCGCGCTCAACGACGCTGCGCCACTTTATCGGGATGCGCCTGAGCACCAGGCGGCACGTACTTCAGTGCAGGCATCGGTGGATGCGTTCATGCAGCAAGTGCTGCCGGACGCGAGTATGCAAACCCGCGCCCTGGCCGGTGAGCTGATCATCGCCACCCTCAGCTCCGTGGGGAAACGGTTTTCGGCAACGCCTCGCGTTCGGCAAGAAGTCCAGAGCTATGCCGATGCCATGGCAGATATGTTCTGCGCCTACCTGAAAAACCTCCAGGCGTGCGAGAGCACGGCAGGCTGA	MSDRPSPQISSRKQPKQARSTELVAAVLEAAVQVLASQGAQRFTVARVAERAGVSVGSVYQYFPNKAAILFRLQSDEWRQTSDMLRDILEDPSTPPLSRLRTLVQAFIQSECDEAQIRVALNDAAPLYRDAPEHQAARTSVQASVDAFMQQVLPDASMQTRALAGELIIATLSSVGKRFSATPRVRQEVQSYADAMADMFCAYLKNLQACESTAG				NA	NA	NA	NA	NA
D1-36_02810	792	pheC		Cyclohexadienyl dehydratase	ATGAAAATCATAACAAGCACGATGACGCTCTTTGGCCTGTTGGCATTCTGCGGCAGCGCCCTGGCCGAACCAACGGCTTCGCATCTGGACAAAGTGATCCAGCAAGGTGAACTGCGCGTGTGCACCACCGGCGACTACAAGCCCTACACCTACAAGGCCGAATCGGGGGAATACGAAGGCATCGACATCGACATGGCCCGCTCGCTGGCCGCCAGCCTGGGCGTCAAGGCGCAATGGGTCCAGACCACTTGGAAAACGTTGATGCCCGACATGCTGGCGGGCAAGTGCGACATCGGGATGGGCGGGATTTCGGTGACCCTGGAACGACAGAAGAAAGCCTATTTCAGCAACACCCTGGACGTGGATGGCAAGATCCCGCTGGTGCGTTGCGAAGACCAGTCGCGCTACCAGACCATCGAGCAGATGAACCAGCCTTCGGTGCGCCTCGTCGAGCCGGCCGGTGGCACCAACGAAGCCTTCGTGCGGGCATTCCTGCCCAAGGGCCAGCTCGCCTTCCATGACAACGTGACGATCTTCCAGGAGCTGTTGGACAAACGCGCCGACGTCATGATCACCGATGCCTCGGAAGCGCTCTACCAGCAGAAACTCAAGCCGGGCCTGTGCGCCGTCAACCCTACCCGCTACCTGCAATATGGCGAGAAAGCCTATCTGCTGCCCCGTGACGACAACACCTGGAAGATGTACGTCGACCAGTGGTTGCACCTGAGCAAGGCCAACGGCAGCTATCAGAAAGTCATCGGGCAGTGGCTGGCCGTGCCTCAAGCTCAATAA	MKIITSTMTLFGLLAFCGSALAEPTASHLDKVIQQGELRVCTTGDYKPYTYKAESGEYEGIDIDMARSLAASLGVKAQWVQTTWKTLMPDMLAGKCDIGMGGISVTLERQKKAYFSNTLDVDGKIPLVRCEDQSRYQTIEQMNQPSVRLVEPAGGTNEAFVRAFLPKGQLAFHDNVTIFQELLDKRADVMITDASEALYQQKLKPGLCAVNPTRYLQYGEKAYLLPRDDNTWKMYVDQWLHLSKANGSYQKVIGQWLAVPQAQ				NA	NA	NA	NA	NA
D1-36_02811	1878	IMPDH_3		Inosine-5'-monophosphate dehydrogenase	ATGCAGATCGAATTACTGGAAATCAGTGAGCACCTTCATCGTTTTCCGCCATTCGATGCCCTTCCTCAGGAGACCCTGGAGGAAATTGCCCGGCGCGTCGAAGTCGCGTATTTCAAGGCCTCAAGCCCGATCCTCGAAGCAGGTGCGGCCATTCATGACCTGCACTACGTACGCAGCGGCGCGGTCGAGATCTATCGGCGAAGCGGCGAACTGTACAACCGGCTGGTCGAGGGCGATATCTTTGGCCAGGCGGGCTTGCTGCGCAGCAACCGGGTGCGCTTCCCGGCCAAGGCCTTGGAAGACAGCCTGATCTATTTCATTCCGGCGGATGTATTCGCCCAGTTATGCGAGCGGCACGACAGTTTCGCCGACTTTGTCGAAGCCGAGGGGCATTCCAGGCTCAAGTCAGCCGTCGAGGCCCAAGGCCGTGCGAGCGAGCTGATCCAGCTCAAGTCCCGTGCATTGATTTCCCGGGATCTGGTCTGGGTTACGCCGCAAACCAGCGTCCGGGAAGCCGCACAGTTGATGACCGAACGAAGCGTTTCCTGTGTCGTGGTCCTTGAGCCAGCCGGGAAACATCCCGAGCAGATGCTCGGCATCGTGACCGACCGGGACTTGCGCACCCGCGTTGTGGCCGCCAACCGCAGCGGCGAAACCACCATCGGCGAAGTGATGTCGATCAACCCGGTGGCCATCCAGGCCGATGACTCGTTGTTCGAGGCGATGCTGTGCATGCTCAGGAGCAACATCCATCACCTTCCGGTGATGCACAAGGGCCGCACGCTGGGCTTGATCAATCTGTCGGACATCATCCGACACGAGTCTCAGAGCAGCCTGTACCTGGTAAACAGTATTTCCAACCAGACCAGTGTCGAGGGTCTTCGCTCATTGCTGCGCGACCTACGCGGGACCTACATACGCATGGTCCGCGACGGCGCGACCGCCCACATGATCGGCAGCGCCATCTCGGGCATTGGTCGTGCCTTCACCCAGCGCCTGCTTGAACTGGCCGAACGCGAACTGGGACCACCACCGGTTCCGTATTGCTTCATGGTGCTGGGCTCGATGGCCCGTGACGAACAATTGCTTGTCACCGACCAGGACAACGCCCTGGTGCTGGACGATCGTTTCGACCCAGCGCTGCATGACGATTACTTTCGCAAGCTGGCTGCGTTCGTCAGCGACGGGCTCGCCCAATGCGGCTACAGCTACTGCAAGGGCGGGATCATGGCGACCAACGTCCAGTGGCGCCAGCCATTGCGAGTGTGGCGTGGCTATTTCAGCCAGTGGATCGAGAAACCGAACGCCGCCACCCTGCTCAACAGCTGCATCTTTTTTGACTTGGACGGGGTCTATGGCGCGCTGGACATGGTCGAATCGCTCAAGACGCTTTGCGCGCAGAAGTCCAGGGATACTCCGGCTTTCCTGGCGGCGATGGCGCGCAACGCATTGAATCGCACGCCGCCCCTGGGTTTCTTTCGCACATTTGTCATGGAAACGGATGGGGAACAAAAACAGATCATCAACCTCAAGGGCCGTGGCACGGCACCCCTCACCGACCTGATCCGCATCCACGCGCTGGCGTGTGGCACCACGGCGCAAAATTCATTCGATCGGCTCGATGCCATCGGCCAAACGCAATGGGTACCACCCGAGGCCATCGAGCATCTGCGCTACGCATTGGAGTTCCTGTCGATGGTGCGCATACGGCACCAGGTCGATGCCATCGAACAGGGTCGCAAACCGGATAATTACATCGAGCCCGAGCGCTTCTCAACCGCTGAGCGGCACAACCTCAAGGAAGCCTTCCAGGTGTTGAGCAATGCCCAGAAATTCCTGCGTTTCCGCTATCCCGGTCACGCCCGGCCATCCCGATGA	MQIELLEISEHLHRFPPFDALPQETLEEIARRVEVAYFKASSPILEAGAAIHDLHYVRSGAVEIYRRSGELYNRLVEGDIFGQAGLLRSNRVRFPAKALEDSLIYFIPADVFAQLCERHDSFADFVEAEGHSRLKSAVEAQGRASELIQLKSRALISRDLVWVTPQTSVREAAQLMTERSVSCVVVLEPAGKHPEQMLGIVTDRDLRTRVVAANRSGETTIGEVMSINPVAIQADDSLFEAMLCMLRSNIHHLPVMHKGRTLGLINLSDIIRHESQSSLYLVNSISNQTSVEGLRSLLRDLRGTYIRMVRDGATAHMIGSAISGIGRAFTQRLLELAERELGPPPVPYCFMVLGSMARDEQLLVTDQDNALVLDDRFDPALHDDYFRKLAAFVSDGLAQCGYSYCKGGIMATNVQWRQPLRVWRGYFSQWIEKPNAATLLNSCIFFDLDGVYGALDMVESLKTLCAQKSRDTPAFLAAMARNALNRTPPLGFFRTFVMETDGEQKQIINLKGRGTAPLTDLIRIHALACGTTAQNSFDRLDAIGQTQWVPPEAIEHLRYALEFLSMVRIRHQVDAIEQGRKPDNYIEPERFSTAERHNLKEAFQVLSNAQKFLRFRYPGHARPSR				NA	NA	NA	NA	NA
D1-36_02812	720	dinG_2		3'-5' exonuclease DinG	ATGAACGCCCCACGAGTAGCGACCGAACGGACGATGCCGGACTGGGCGGCGCGCTTCGAACAACTGGCGCGACAAGCACGCCATCCCCTGCTGCAGCGTTTCTACCAGACAGGGGTGATCGACGGCCAGACCGCGCTGGAACAAGTGGAATTGCTGGCCATGGATTTGGAAACCACTGGTTTGAACGCCCGCAGCGACAGCATCGTCAGCATCGGCCTGATGCCTTTTACCCTCAAGCGAATACGTTGCGGCGAAGCCCTGTACTGGGTCATCAAACCTTCCACGCTGACCCATGAGTCGGTGACATTCCATCGCATTACCCATGCCGACATCCGTCATGCCCCTCGATTCCCCGACATCATGGACAACCTGCTGGAAGCATTGGCGGGGCGAATCATGGTGGTGCATTACCGGGCCATCGAGCGCGACTTTCTGGACGAGGCGTTTCGGCGTCACCTTGGAGAGGGCCTGCAGTTTCCGGTCATTGACACGATGCAGCTGGAGGCATGGCGGGTCAGGGGTCGGCGCCGTTGGCTGGACCGGCTGTTGCGGCGGCCACCGGCCTCCATCCGGCTGGCCGATACGCGTCTGCGTTATCGACTGCCCACCTATCACGCCCACCATGCATTGACCGATGCACTGGCCACGGCCGAGCTGTTGCAAGCGCAGGTAGCCACCCATTACAGCCCGTCCGTGGCGGTCGGGCAGCTCTGGGATTGA	MNAPRVATERTMPDWAARFEQLARQARHPLLQRFYQTGVIDGQTALEQVELLAMDLETTGLNARSDSIVSIGLMPFTLKRIRCGEALYWVIKPSTLTHESVTFHRITHADIRHAPRFPDIMDNLLEALAGRIMVVHYRAIERDFLDEAFRRHLGEGLQFPVIDTMQLEAWRVRGRRRWLDRLLRRPPASIRLADTRLRYRLPTYHAHHALTDALATAELLQAQVATHYSPSVAVGQLWD				NA	NA	NA	NA	NA
D1-36_02813	1671		COG1292	Glycine betaine/proline/choline transporter	GTGGGTAAAGATCCTGTAGACGATCTATCAGGAAAATCCCAGACGCCCGGTACGGAGGGGATACCTGCCCCTAGCGGCGAGGCAAATCTCATCGAAACAGACTACGTCATCGGACAGGACAATTTCCGCGGTGAGTTTTCTTTCTCCCTGGACATCCATGGCAAGGTTTTCCTCATCTCTGCCGCCACCGTTTTGTTGTTCGTCATCGTGACGCTGGCGCTGCAAAATGAAGTCGAGCCGCTTTTCAGCGCCATGCGCGGATGGCTGACCCGGCACCTGGCCTGGTTCTTCATGAGCGCAGGCAATATTTTCGTTCTGTTGTGCCTGGCGTTGATCGTTTCGCCACTGGGCAAGGTGCGATTGGGCGGTCGCGATGCCACGCCCGATCATACCTATGTGGGTTGGTTCTCCATGTTGTTCGCCGCCGGGATGGGCATCGGGCTCATGTTCTACGGCGTAGCGGAGCCCATGTCGCATTATGCCGCCGCGATGGGGGGCGTGACGCTCGATCCCAGCGGGGTACGCACGGACTGGGCCCCCCTCGATGGCGCAGCGGGCGATATGAAAGGCGCTGCGGACCTGGCGATGGCTGCGACGATTTTTCACTGGGGTCTGCATCCCTGGGCCATCTACGCCATCGTGGCGTTGTCCTTGGCCCTGTTCTCGTTCAACAAAGGCTTGCCGCTGTCGATTCGCTCGATTTTCTATCCGTTGCTGGGGGAGCGCGTCTGGGGCTGGCCAGGGCATATCATCGATATCCTGGCGGTGTTCGCGACGCTGTTCGGGCTGGCGACCTCGCTGGGCATCGGTGCCGAGCAGGCCGCGGCGGGGATTGAACATCTGTTCGGCATTCCATCGTCCAACGTCAGCAAAGTGGTACTGATCATCGGTATCACGCTGATTGCCCTGTGGTCGGTTCTGGCCGGGCTGGAGAAGGGCGTCAAGCTGCTCTCGGAAATTAATATGGGCCTGGCGCTCCTGTTGCTGCTCTTCATCATCGTCGTCGGTCCCACCTTGGCCATTCTTACCGGCTTCTTCAAGAACGTGGTGACCTACGCTGAATACCTGCCCGCATTGTCCAATCCTTTCGGCCGTACGGACGCCGAGTTCACCCAGGGCTGGACAGCGTTCTACTGGGCCTGGTGGATCAGCTGGTCGCCCTTTGTAGGCATGTTCATTGCGCGGGTCAGCCGGGGCCGGACCGTCCGGGAATTTCTGATTTCTGTCTTGCTGGTGCCTTCGCTGGTGTCGGTGCTATGGATGACCACTTTTGGCGGGACGGCCATCGACCAGGCCACCTTGCAGGGATTGAGTGGGGTAAAGGATGCAGTGTTGGAACTCAAGCTGTTCGCGATGCTGGAGGCGCTGCCCCTCAAGGAAATTTCCTCGTTGCTGGGCATCGTGCTGGTGATCGTGTTCTTCATCACTTCGTCGGACTCCGGCTCGCTGGTAATCGACACCATCACGGCCGGCGGCAAGGTCGATGCGCCTGTGCCCCAACGGGTTTTCTGGGCGGTCATCGAGGGCGTGATCGCGATTGCGCTGCTGTTGGGTGGGGGGCTGGTCGCCTTGCAGGCCATGGCGGTTTCGACCGGGCTTCCCTTTGCCATCGTTCTGCTGCTGGGCTGTATTTCCCTGGTGAAGGGATTGATGTCAGAACCGCGATCCTGA	MGKDPVDDLSGKSQTPGTEGIPAPSGEANLIETDYVIGQDNFRGEFSFSLDIHGKVFLISAATVLLFVIVTLALQNEVEPLFSAMRGWLTRHLAWFFMSAGNIFVLLCLALIVSPLGKVRLGGRDATPDHTYVGWFSMLFAAGMGIGLMFYGVAEPMSHYAAAMGGVTLDPSGVRTDWAPLDGAAGDMKGAADLAMAATIFHWGLHPWAIYAIVALSLALFSFNKGLPLSIRSIFYPLLGERVWGWPGHIIDILAVFATLFGLATSLGIGAEQAAAGIEHLFGIPSSNVSKVVLIIGITLIALWSVLAGLEKGVKLLSEINMGLALLLLLFIIVVGPTLAILTGFFKNVVTYAEYLPALSNPFGRTDAEFTQGWTAFYWAWWISWSPFVGMFIARVSRGRTVREFLISVLLVPSLVSVLWMTTFGGTAIDQATLQGLSGVKDAVLELKLFAMLEALPLKEISSLLGIVLVIVFFITSSDSGSLVIDTITAGGKVDAPVPQRVFWAVIEGVIAIALLLGGGLVALQAMAVSTGLPFAIVLLLGCISLVKGLMSEPRS	PGPT0021960_113	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARNITHINE_USAGE	PLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021960-TC_BCT-K03451	NA	NA
D1-36_02814	1020	yiaO	COG1638	2,3-diketo-L-gulonate-binding periplasmic protein YiaO	ATGGGAAAACTGATGAAAACCTTGCTGGCCGGGGCGTGCGCGACGGGCTTGCTGCTGACCGGCGTGGCCAGCCACGCGGACGAGATCCGTGAGCGGACCTTGCGATTCGCGTTCCAGAACGTCAAGGAACATCCCCAGGGCCAGGGCGCGCAGAAGTTCGCCGACCTGCTCAGTGAAAAGAGCGGCGGCAAGATAAAGGTCCGCCTGTTCCCTGGCGGAACCCTGGGCGGCGACGTACAAACGGTGTCGGCATTGCAGGGCGGCACCTTGGACATCACCGTGCTCAACTCCGGCATCCTGGCCGCCCAGGCACCGGATTACGCCATGCTCGATTTCCCCTTCCTGTTCAACGACGTCAAGGAGGCCCATGCCGTCATCGATGGGCCGGTCGGGCAGAAACTGGCGGCACAGCTGGACAGCAAGGGGCTGGTAGGGCTGGGTTATTGGGACCTGGGGTTCCGTAACCTGACCAACAGCAAGCACCCGGTGACCAAGCTCGAAGACCTGCAGGGCTTGAAGCTGCGCGTCATCCAGTCACCGATCTACCTGGAAACCTTCTCAGCCCTGGGCGCCAACCCGGTGCCGATGGCGTTCCCCGAGGTGTACACGGGCCTTGAGCAGCACACCATCGACGGCCAGGAAAACCCGTTCACGGTGATCGAGGGCAACAAGTTCTACGAGGTGCAGAAATATCTTTCCGTCACCGGCCACATCTTCAACCCGCAGTCGTTGATCATCAGCCAGAAAACCTGGAACCGCCTCAACGACGACGAAAAGGCAATGATTCGCGCAGCCGCAGCCGAGGCGCAGACCTTCCAGCGTGAAGTCACCGAGACGAGCATGGAAAAGGCCAAGGCGACGCTGGCCGGTGCGATGACCGTCAATGAAATCACCCCGGCCGAGAAAGACCGCTTTCGCGAGCGCGTGAAGCCAGTCGTCGACAAGTTCGCCAAGTCGTTGGACGGGGATCTGGTGAAAATGATGTACGACGAAATCAACAAGGTGCGTGCCGCGCAGTGA	MGKLMKTLLAGACATGLLLTGVASHADEIRERTLRFAFQNVKEHPQGQGAQKFADLLSEKSGGKIKVRLFPGGTLGGDVQTVSALQGGTLDITVLNSGILAAQAPDYAMLDFPFLFNDVKEAHAVIDGPVGQKLAAQLDSKGLVGLGYWDLGFRNLTNSKHPVTKLEDLQGLKLRVIQSPIYLETFSALGANPVPMAFPEVYTGLEQHTIDGQENPFTVIEGNKFYEVQKYLSVTGHIFNPQSLIISQKTWNRLNDDEKAMIRAAAAEAQTFQREVTETSMEKAKATLAGAMTVNEITPAEKDRFRERVKPVVDKFAKSLDGDLVKMMYDEINKVRAAQ				NA	NA	NA	NA	NA
D1-36_02815	1281	siaM	COG1593	Sialic acid TRAP transporter large permease protein SiaM	ATGACGTTGGCTATTTTCCTCGGGTCGCTGCTGGGCAGCATGGCGTTGGGTATCCCGATTGCCTTTGCCTTGCTGGTGGTCAGCGTCGCGTTGATGTTTTACCTGGACTTGTTCGACGCGCAGATCATTGCGCAGAATTTGCTCAATGGCGCCGACAGCTTTCCGCTGATGGCCGTGCCGTTCTTCATGCTGGCCGGCGAAGTCATGAATGTCGGCGGGTTATCCAAGCGCATCGTCAACATTGCCATGGCGCTGGTTGGGCATAAGCGCGGCGGCCTGGGTTACGTCGCGATCATTGCCTCCTGCCTGCTGGCCTCGCTTTCCGGTTCGGCGGTGGCCGATGCGGCGGCGTTGGCGGCGTTGCTGGTGCCGATGATGGTGTTGGCGGGGCACAACCGGGGACGTTCGGCCGGGCTGATCGCCGCCGGCAGCACCATTGCGCCAGTGATTCCGCCCAGCATCGGCTTCATCGTTTTTGGCGTGGCGTCCGGCGTGTCGATTTCCAAGCTGTTCCTGGCCGGTATCGTGCCGGGGCTGATGCTCGGCGTCGGGCTGGCCATCGCCTGGTGGTTGATCTCCCGGCGCGAGAACGTCGAGACGGCGCCCAAGCGTTCCCGAGCCGAGGTACTACGCACGTTGCTCGATGGCAGTTGGGCGATGGGCTTGCCGTTGATCATCATCCTGGGCCTCAAGTTCGGCATCTTCACGCCAACGGAGGCAGCAGTGGTCGCGGCAGTCTATTCGCTGTTCGTGTCCCTGGTGATCTACCGGGAGATGAAGATCAGCCAGCTGTACGAAGTGATCCTGTCTTCGGCCAGGACCACCTCGGTGGTGATGCTGCTGGTGGCAGCGGCCATGGTTTCATCGTGGCTGGTGACCATCGCCGACCTGCCGGGCCAGCTGGCGGAACTGCTCGCGCCGTTCATGGACAACCAGACGCTCCTGCTGCTGGTGATGATGGCGTTGATCATCCTGGTCGGTACGGTGATGGACATGACCCCGACCATCCTCATCCTGACGCCGGTATTGATGCCAGCGGTGATCCAGGCGGGGATCGACCCGGTGTATTTCGGCGTGCTGTTTCTGATCAACACTGCGATTGGGTTGATCACGCCGCCCGTGGGCACGGTGCTGAACGTGGTCTGCAGCGTGGCGAAGCTGGAGTTCGAGGAAATAGTCCGGGGGGTCTGGCCGTTCATGATTGCGCAATTTGTGGTGCTGTTGCTGTTGGTGCTGTTTCCGCAACTGGTACTGGGACCGTTGAAATTCTTCACCGGCTGA	MTLAIFLGSLLGSMALGIPIAFALLVVSVALMFYLDLFDAQIIAQNLLNGADSFPLMAVPFFMLAGEVMNVGGLSKRIVNIAMALVGHKRGGLGYVAIIASCLLASLSGSAVADAAALAALLVPMMVLAGHNRGRSAGLIAAGSTIAPVIPPSIGFIVFGVASGVSISKLFLAGIVPGLMLGVGLAIAWWLISRRENVETAPKRSRAEVLRTLLDGSWAMGLPLIIILGLKFGIFTPTEAAVVAAVYSLFVSLVIYREMKISQLYEVILSSARTTSVVMLLVAAAMVSSWLVTIADLPGQLAELLAPFMDNQTLLLLVMMALIILVGTVMDMTPTILILTPVLMPAVIQAGIDPVYFGVLFLINTAIGLITPPVGTVLNVVCSVAKLEFEEIVRGVWPFMIAQFVVLLLLVLFPQLVLGPLKFFTG	PGPT0017335_2575	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017335-dctM-K11690	NA	NA
D1-36_02816	546			hypothetical protein	ATGACAAAAGTCGTCGATCTGTATTTCAAGCTGCTCAAGTTGCTGATCGTGCTGTGCATGGTCGCGATGATCGTGCTGGTGTTCGGCAATGTAGTGCTGCGCTATGCCTTCAACTCCGGCATCAGTGTGTCGGAGGAACTGTCGCGCTGGTTCTTCGTCTGGATGATTTTTCTAGGTGCCCTCGTGGCGCTCAAGGACCGCGCGCACCTGGGCATGAACAGCCTGGTCAAGCGCTTGCCGCCAGCAGGCAAGCGTGCCTGCCTGGTCATCGGGCATCTGCTGATGCTCTACATTTGCGGACTGATCGTCAGCGGCAGTTGGCAGCAGGCGGTGATCAACCTCAACGTGGTCGCGCCGGCTTCGGGCCTTTCGATGGCGCTGTTCTACGCCGCCGGGCTGGTGTTCGGGGTCAGCGCCACGGCGATCCTGCTGTACGAACTGTACCTGACACTGTTCGGCAAACTGCGGGATGACGATCCTTTGTCAGTCGAGGAAAGCGAAGCCGCCGGCCTCAACCCTGACACCCTCAAGAGTACCCGCCCATGA	MTKVVDLYFKLLKLLIVLCMVAMIVLVFGNVVLRYAFNSGISVSEELSRWFFVWMIFLGALVALKDRAHLGMNSLVKRLPPAGKRACLVIGHLLMLYICGLIVSGSWQQAVINLNVVAPASGLSMALFYAAGLVFGVSATAILLYELYLTLFGKLRDDDPLSVEESEAAGLNPDTLKSTRP				NA	NA	NA	NA	NA
D1-36_02817	297			hypothetical protein	ATGATCAACTTCTCGAAACTCTCGTCCCTGGCAATCGCCCTGACCCTGGTTGGCGGCGTCGGCCTATCGAACATCGCCGCGGCCGAAAGCGCACCGTCGTCTTACGAACAGGCTGCACATCAGTTGGCCGAAGGTGGATCGGATCGCCTGATCGAGAATCGCGTAGCCGAAGGCGGCTCCGATCGCCTGATCGAGAATCGCGTAGCCGAAGGCGGCTCCGATCGCTTGATCGAGAATCGCGTAGCCGAAGGCGGGGCTGATCGGTTGCAGGAGCTGCGTGAACGCAGCCCTGTCTGA	MINFSKLSSLAIALTLVGGVGLSNIAAAESAPSSYEQAAHQLAEGGSDRLIENRVAEGGSDRLIENRVAEGGSDRLIENRVAEGGADRLQELRERSPV				NA	NA	NA	NA	NA
D1-36_02818	4869	gdhB	COG2902	NAD-specific glutamate dehydrogenase	ATGGCGTTCTTCACCGCAGCCAGCAAAGCCGACTTCCAGCATCAACTGCAAGCGGCACTGGCGCAGCACATCAGTGAACAGGCACTGCCACAAGTGGCGCTGTTCGCTGAACAATTTTTCGGCATCATTTCCCTCGATGAACTCACCCAGCGCCGGTTGTCCGACCTCGCCGGCTGCACCCTGTCCGCTTGGCGCCTGCTTGAGCGCTTCGACCACGCGCAACCGCAGGTGCGCGTCTATAACCCCGATTACGAACGCCACGGCTGGCAATCGACCCACACCGCCGTCGAAGTGCTGCACCATGACCTGCCGTTCCTGGTGGATTCGGTCCGCACCGAGCTGAACCGTCGCGGCTACAGCATCCATACCCTGCAAACCACCGTCCTGAGCGTGCGTCGCGGCAGCAAGGGCGAGTTGCTGGAGATCCTGCCGAAGGGCACCCAGGGCGACGACGTGCTGCAAGAGTCGCTGATGTACCTGGAAATCGACCGCTGCGCCAACGCCGCCGAACTCAACGTCCTGAGCAAGGAGCTTGAGCAGGTGCTGGGCGAAGTGCGCGTCGCCGTGGCTGATTTCGAGCCGATGAAAGCCAAGGTGCAGGAAATCCTCGCGAGCCTGGACAACAGCGCCTACGCCACCGACGCCGACGAAAAGGCCGAGATCAAGAGCTTCCTGGAATGGTTGGTGGGTAACCACTTCACGTTCCTGGGCTATGAAGAGTTCGTGGTTCGCGACGAAGCCGATGGCGGTCACATCGAGTACGACCCCGAGTCCTTCCTCGGCCTGACCAAATTGCTGCGCGCCGGCCTGACCGCCGAAGACCTGCGCATCGAAGACTACGCCGTCAACTACCTGCGCGAACCGACCCTGCTGTCGTTCGCCAAGGCCGCGCACCCGAGCCGCGTACACCGTCCGGCCTACCCGGACTACGTATCGATCCGCGAGATCGACGCCAACGGCAAGGTCGTCAAGGAATGCCGCTTCATGGGCCTTTACACCTCCTCGGTGTATGGCGAGAGCGTGCGGGTCATTCCGTACATCCGCCGCAAGGTCGAAGAAATCGAACGTCGCTCGGGCTTCCAGGCCAAGGCGCACCTGGGCAAGGAACTGGCCCAGGTGGTTGAAGTGCTGCCCCGCGACGACCTGTTCCAGACCCCGGTGGACGAGCTGTTCAGCACCGTCATGTCGATCGTGCAGATCCAGGAACGCAACAAGATTCGCGTGTTCCTGCGCAAGGACCCGTACGGCCGTTTCTGCTACTGCCTGGCCTACGTGCCCCGTGACATCTACTCCACCGAAGTTCGCCAGAAGATCCAGCAAGTGCTGATGGATCGCCTGAAAGCCTCGGACTGCGAGTTCTGGACCTTCTTCTCCGAATCCGTGTTGGCCCGTGTGCAGTTAATCCTGCGCGTCGATCCGAAGAACCGCATCGACATCGACCCGCTGCTGCTGGAAAAAGAAGTCGTGCAGGCCTGCCGCAGTTGGAAGGACGACTACGCCAGCCTGGTCATCGAGAGCTTCGGCGAAGCCCAGGGCACCAACGTGCTGTCGGATTTCCCGAAAGGCTTCCCGGCCGGCTACCGCGAGCGCTTTGCCGCGCACTCCGCCGTGGTGGACATGCAACACCTGCTGAGCCTGAGTGAAACCAACCCGCTGGTGATGAGCTTCTACCAACCGTTGGGCCAGGTCTCCGGCCAGCGTGAGCTGCATTGCAAGCTGTATCACGCCGACACGCCGTTGGCGTTGTCCGACGTGCTGCCGATCCTGGAAAACCTCGGCCTGCGCGTGCTGGGCGAGTTCCCGTACCGCCTGCGCCACACCAATGGCCGCGAGTTCTGGATCCATGATTTCGCCTTCACCGCCGCCGAAGGCCTGGACCTCGACATCCAGCAACTCAACGACACCTTGCAGGACGCGTTCGTCCACATCGTGCGTGGTGATGCCGAGAACGATGCGTTCAACCGCCTGGTGCTGACCGCCGGCCTGCCATGGCGCGACGTGGCGTTGCTACGTGCCTACGCCCGCTACCTGAAACAGATCCGCCTGGGCTTCGACCTCGGCTACATCGCCAGTACCCTGAATAACCACACCGACATCGCTCGCGAATTGACCCGGTTGTTCAAGACCCGTTTCTACCTGGCGCGCAAGCTCAGCGGCGACGACCTGGAAGACAAGCAACTGCGTCTGGAGCAAGCGATCCTCTCGGCCCTGGACGAGGTGCAGGTACTCAACGAAGACCGCATCCTGCGTCGCTATCTGGACCTGATCAAGGCCACCTTGCGGACCAACTTCTACCAGACCGACGCCAACGGCCAGAACAAGTCGTACTTCAGCTTCAAGTTCAACCCGCACCTGATTCCGGAACTGCCGAAGCCGGTGCCGAAGTTCGAAATCTTCGTCTACTCGCCACGGGTCGAAGGCGTGCACCTGCGCTTCGGCAACGTTGCCCGTGGCGGTCTGCGCTGGTCGGATCGTGAAGAAGACTACCGCACCGAAGTGCTGGGCCTGGTAAAAGCCCAGCAAGTGAAGAACTCGGTGATCGTGCCGGTGGGCGCCAAGGGCGGTTTCCTGCCGCGTCGCCTGCCATTGGGCGGCAGCCGGGACGAGATCGCGGCCGAGGGCATCGCCTGCTACCGCATCTTCATTTCGGGTCTGTTGGACATCACCGACAACCTGAAGGACGGCGCGCTGGTACCGCCGGCCAACGTTGTGCGGCATGACGACGATGACCCGTACCTGGTGGTCGCGGCGGACAAGGGCACCGCGACCTTCTCCGACATCGCCAACGGCATCGCCATCGACTACGGCTTCTGGTTGGGCGATGCGTTCGCCTCCGGCGGTTCGGCCGGCTACGACCACAAGAAAATGGGCATCACCGCCAAGGGCGCGTGGGTCGGCGTGCAGCGCCACTTCCGCGAGCGCGGCATCAACGTCCAGCAAGACAGCATCACCGTGGTGGGCGTCGGCGACATGGCCGGCGACGTGTTCGGCAACGGCTTGTTGATGTCCGACAAGCTGCAACTGGTCGCGGCCTTCAACCACCTGCACATCTTCATCGACCCGAACCCAGAGCCTGCCAGCAGCTTTGCCGAACGCAAGCGTCTGTTCGAGCTGCCGCGTTCGGCCTGGACCGACTACGACACCAGCATCATGTCCGAGGGCGGCGGCATCTTCTCGCGCAGCGCGAAGAGCATCGCGATCTCGCCGCAGATGAAAGAGCGCTTCGACATCAAGGCCGACAAACTGACCCCGACCGAACTGCTGAACGCCTTACTCAAGGCGCCGGTGGACCTGTTGTGGAACGGCGGTATCGGCACTTACGTCAAGGCCAGCACCGAAAGCCACGCCGATGTCGGCGACAAGGCCAACGATGCACTGCGCGTGAACGGCAACGAATTGCGCTGCAAGGTGGTGGGAGAGGGCGGTAACCTGGGCATGACCCAACTGGGTCGCGTCGAGTTCGGCCTCAATGGCGGCGCCACCAACACCGACTTCATCGACAACGCCGGTGGCGTGGACTGCTCCGACCACGAAGTGAACATCAAGATCCTGCTCAACGAAGTGGTGCAGGCCGGCGACATGACCGACAAGCAGCGCAACCAGTTGCTGGCGAGCATGACCGACGAAGTCGGTGGCCTGGTGTTGGGCAACAACTACAAGCAGACCCAGGCCTTGTCCCTGGCGGCACGCCGCGCCTTCGTGCGGATCGCCGAGTACAAGCGCTTGATGAACGACCTGGAAGCCCGTGGCAAGCTGGACCGCGCCATCGAGTTCCTGCCGACCGAAGAACAACTGGCCGAACGTGTCGCGGCGGGCCACGGCCTGACCCGTGCCGAACTGTCGGTGCTGATCTCCTACAGCAAGATCGACCTCAAGGAAGCGCTGCTCAACTCCCTGGTGCCGGACGACGATTACCTGACCCGTGACATGGAGACGGCTTTCCCGCCAACGCTGGTGAGCAAGTTCTCCGAGGCCATGCGTCGCCATCGCCTGAAGCGCGAGATTGTCAGCACCCAGATCGCCAACGACCTGGTCAACCACATGGGCATCACCTTCGTCCAGCGGTTGAAAGAGTCGACGGGCATGAGCCCGGCGAACGTGGCGGGTGCTTATGTGATCGTGCGGGATATCTTCCATCTCCCACACTGGTTCCGCCAGATCGAAGCCCTGGACCACCAGGTTTCCGCCGACGTGCAGCTGGAGCTGATGGATGAGCTGATGCGCCTGGGTCGTCGCGCCACGCGTTGGTTCCTGCGCAGCCGCCGCAACGAGCAGAACGCTGCCCGTGACGTCGCTCACTTCGGTCCGCACCTGGCGGCGTTGGGCCTCAAGCTCGACGAACTGTTGGAAGGCCCGACCCGCGAAGGTTGGCAGACTCGCTACCAGGCCTACGTGGCGGCCGGCGTGCCGGAACTGCTGGCGCGCATGGTTGCCGGTACTACGCACCTGTACACCTTGTTGCCGATCATCGAGGCGTCCGACGTCACCGGCCAGAACGCCGCCGACGTGGCCAAGGCTTACTTCGCCGTGGGCAGCGCGCTTGACATCACCTGGTACCTGCAGCAAATCAGTGCCTTGCCGGTTGAAAACAACTGGCAGGCCCTGGCCCGTGAAGCGTTCCGCGATGACATCGACTGGCAGCAACGGGCGATCACCATCTCGGTCCTGCAGGAAGGTGACGGTAGCCAGGACGTGGAAACCCGCCTGGCGCTGTGGCTCGAGCAGCATCGTGAAATGGTCGAGCGCTGGCGCGCCATGCTGGTGGACATCCGTGCCGCCAGCGGCACCGACTACGCCATGTATGCGGTGGCCAACCGCGAGCTGCTGGACCTGGCGCTGAGTGGTCAGGCGGTCGTGACGGCCAACTGA	MAFFTAASKADFQHQLQAALAQHISEQALPQVALFAEQFFGIISLDELTQRRLSDLAGCTLSAWRLLERFDHAQPQVRVYNPDYERHGWQSTHTAVEVLHHDLPFLVDSVRTELNRRGYSIHTLQTTVLSVRRGSKGELLEILPKGTQGDDVLQESLMYLEIDRCANAAELNVLSKELEQVLGEVRVAVADFEPMKAKVQEILASLDNSAYATDADEKAEIKSFLEWLVGNHFTFLGYEEFVVRDEADGGHIEYDPESFLGLTKLLRAGLTAEDLRIEDYAVNYLREPTLLSFAKAAHPSRVHRPAYPDYVSIREIDANGKVVKECRFMGLYTSSVYGESVRVIPYIRRKVEEIERRSGFQAKAHLGKELAQVVEVLPRDDLFQTPVDELFSTVMSIVQIQERNKIRVFLRKDPYGRFCYCLAYVPRDIYSTEVRQKIQQVLMDRLKASDCEFWTFFSESVLARVQLILRVDPKNRIDIDPLLLEKEVVQACRSWKDDYASLVIESFGEAQGTNVLSDFPKGFPAGYRERFAAHSAVVDMQHLLSLSETNPLVMSFYQPLGQVSGQRELHCKLYHADTPLALSDVLPILENLGLRVLGEFPYRLRHTNGREFWIHDFAFTAAEGLDLDIQQLNDTLQDAFVHIVRGDAENDAFNRLVLTAGLPWRDVALLRAYARYLKQIRLGFDLGYIASTLNNHTDIARELTRLFKTRFYLARKLSGDDLEDKQLRLEQAILSALDEVQVLNEDRILRRYLDLIKATLRTNFYQTDANGQNKSYFSFKFNPHLIPELPKPVPKFEIFVYSPRVEGVHLRFGNVARGGLRWSDREEDYRTEVLGLVKAQQVKNSVIVPVGAKGGFLPRRLPLGGSRDEIAAEGIACYRIFISGLLDITDNLKDGALVPPANVVRHDDDDPYLVVAADKGTATFSDIANGIAIDYGFWLGDAFASGGSAGYDHKKMGITAKGAWVGVQRHFRERGINVQQDSITVVGVGDMAGDVFGNGLLMSDKLQLVAAFNHLHIFIDPNPEPASSFAERKRLFELPRSAWTDYDTSIMSEGGGIFSRSAKSIAISPQMKERFDIKADKLTPTELLNALLKAPVDLLWNGGIGTYVKASTESHADVGDKANDALRVNGNELRCKVVGEGGNLGMTQLGRVEFGLNGGATNTDFIDNAGGVDCSDHEVNIKILLNEVVQAGDMTDKQRNQLLASMTDEVGGLVLGNNYKQTQALSLAARRAFVRIAEYKRLMNDLEARGKLDRAIEFLPTEEQLAERVAAGHGLTRAELSVLISYSKIDLKEALLNSLVPDDDYLTRDMETAFPPTLVSKFSEAMRRHRLKREIVSTQIANDLVNHMGITFVQRLKESTGMSPANVAGAYVIVRDIFHLPHWFRQIEALDHQVSADVQLELMDELMRLGRRATRWFLRSRRNEQNAARDVAHFGPHLAALGLKLDELLEGPTREGWQTRYQAYVAAGVPELLARMVAGTTHLYTLLPIIEASDVTGQNAADVAKAYFAVGSALDITWYLQQISALPVENNWQALAREAFRDDIDWQQRAITISVLQEGDGSQDVETRLALWLEQHREMVERWRAMLVDIRAASGTDYAMYAVANRELLDLALSGQAVVTAN	PGPT0014290_524	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014290-gdhB-K15371	NA	NA
D1-36_02819	354			hypothetical protein	ATGCAAATGACCACCGCCCTGCTGATCGCCAACCCATGCGATGACGAAGAAGACAACATGGCCATGCTCTGCTGCCACAGCGCCCAGGGCGAAATGTTCCTGATGACGCGCTATCCGGACGAAGACGAACTGGAGATAACCCTGGACGGCGAGCCCTCGACGCTGGACGGCGTCAAGGTCATCCTCAGCCCGACCCTGCTGAAAATCGAAATCGCCGCGACGGACGCCGATGCGCTCAATGGCGATGATGTGCTGGAAATAACCTTCGATCCCAAGGTGACGGACGTGGCGGAAGTGGAGCTGACCTTGCAGAACATCCTCAGGGGCACGGGGACCTATATAAGCCAGCTCTGA	MQMTTALLIANPCDDEEDNMAMLCCHSAQGEMFLMTRYPDEDELEITLDGEPSTLDGVKVILSPTLLKIEIAATDADALNGDDVLEITFDPKVTDVAEVELTLQNILRGTGTYISQL				NA	NA	NA	NA	NA
D1-36_02820	1026	kdgR_2	COG1609	HTH-type transcriptional regulator KdgR	GTGAATTCTTTCTCCGCCGCCCAGCGCAGCCGCGTGACCATGCTCGACGTCGCCGAACGCGCTGGGGTCTCCAAGGCCAGTGTCTCGCGTTTCATTGGCGAGGACCGCGCCCTGCTCTCGGAAGCCATCGCCCGGCGCATCGAGCAGGCGATCAGCGAGCTGGGCTACCGGCCGAACCAGATGGCCCGCGGCCTCAAGCGCGGGCGCACGCGCCTGATCGGCATGCTCGTGGCCGATATCCGCAACCCCTATTCGATTGCCGTGATGCATGGCGTGGAAACCGCCTGCCGGCGCCACGGCTACAGCCTGGTGGTGTGCAACACCGACCGCGACGATGAGCAGGAGCGCCAACACCTGGCGCTGCTGCGCGCCTATAACGTCGAAGGGCTGATTGTGAACACGCTGGGTCATCACCGCGATGAGCTGGTCGAACTGCGCAGCGAGATGCCCATGGTGCTGGTGGATCGCAAGGTCGATCGACTCGAAGCCGACCTCGTCGGGCTGGACAACCCGGCCGCCGTCGAGATGGCCCTCGATCACCTCGAACAGCGCGGCTACCGCGACCTGCTGTTGGTCACCGAGCCGTACGATGGCACCAGTTCGCGGATCGAGCGGGTCGACAGTTTCAAGGCCAGCATCGAGCGACGCCCTGCCCTGGCCGGCGCCGTGGTGGAAACCTGCGATCAACTGCTCCCGCGCATCAAGACCTTTCTCGCCCAGCCGGACCGTGGCCCCAAGGCGTTGTTTTGCGCTAACGGTATCGCCGCGCTGGCTGCGACCCAGGCATTACGCGATTTGGGTTGCCACTTGTTCGACGATATCGGTTTGATCGCCCTCGATGACCTGGACTGGTATCCGTTGGTGGGCAGCGGCATTACCGCCCTCGCCCAACCCACCGCTGAAATCGGCGCCCGCGCGTTCGAATGCCTGCTCAAGCGCCTGCGCGGCGATAACGGGCCGGTGCAGACCCTGGATTTCTCGGCGCGGTTGATTGAGCGTGGGTCGACGCTTGGAGTTTTTCGGTGA	MNSFSAAQRSRVTMLDVAERAGVSKASVSRFIGEDRALLSEAIARRIEQAISELGYRPNQMARGLKRGRTRLIGMLVADIRNPYSIAVMHGVETACRRHGYSLVVCNTDRDDEQERQHLALLRAYNVEGLIVNTLGHHRDELVELRSEMPMVLVDRKVDRLEADLVGLDNPAAVEMALDHLEQRGYRDLLLVTEPYDGTSSRIERVDSFKASIERRPALAGAVVETCDQLLPRIKTFLAQPDRGPKALFCANGIAALAATQALRDLGCHLFDDIGLIALDDLDWYPLVGSGITALAQPTAEIGARAFECLLKRLRGDNGPVQTLDFSARLIERGSTLGVFR				NA	NA	NA	NA	NA
D1-36_02821	783			hypothetical protein	ATGACCAAACCAGCCGTTTCCATCAGCCTCTCCAGTTACGGCGCCGACCTCGTGCGCCAGCATGGTCAAGGCAGCTTCATCGCCCTGCTGGCCGCCGCCGGCGCGTCGCGCATCGAATGGCGCGAAGAGCTGCTCACTACCGAACAACCCGCCGAACTGGCCGCTGGGGCGCGGGCCCAGGGGTTGGAAAGTATCTTTTCATCGCCGATCGAACTCTGGCTCCCCGGCCAGCCCAGGCCCAATCCCGCCCTGGCGTCCACCCTGCAACGTTGCGAAGCGTTCGGCTCGGCTTGGCTGAAGGTTTCCCTCGGCCACTTCACTGACTCCCACGACGTATCAGCCCTGGCGGATGCCCTATCGGCAAGCCCGGTGCAACTGCTGGTGGAAAACGACCAGACCTTGCAAGGCGGGCGGATCGAGCCCTTGCAACGCTTCTTCGCGGCGGTGGAAGAACGCGGGGTACCCATCGGCATGACCTTCGACATCGGCAACTGGCAATGGCAGGACCAATCAGCCACCGTGGCCGCCCTGCAACTCGGACGGCACGTGGCATATGTGCATTGCAAGGCCGTGGCCCGACGCGCCGATGGCAAGCTGGTCGCGGTGCCGCCAGCCGCGACCGACCTGCACCTGTGGGAGCAATTGCTCAAGCACATGCCGGTCGGCGTGATGCGCGCCGCCGAGTACCCGCTAGAAGGCGATGACCTGCTGCAACTGACCGCTGAACATGTCGCCACCCTGTCCCGCCTGGGGCAATCGCGCCGGGAGGCCGCTCATGTCTGA	MTKPAVSISLSSYGADLVRQHGQGSFIALLAAAGASRIEWREELLTTEQPAELAAGARAQGLESIFSSPIELWLPGQPRPNPALASTLQRCEAFGSAWLKVSLGHFTDSHDVSALADALSASPVQLLVENDQTLQGGRIEPLQRFFAAVEERGVPIGMTFDIGNWQWQDQSATVAALQLGRHVAYVHCKAVARRADGKLVAVPPAATDLHLWEQLLKHMPVGVMRAAEYPLEGDDLLQLTAEHVATLSRLGQSRREAAHV	PGPT0018060_3	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
D1-36_02822	1011	kdgK_2	COG0524	2-dehydro-3-deoxygluconokinase	ATGTCTGAGATCGATGTGCTGTCGTTCGGTGAAACCATGGCCATGCTGGTGGCCGACGAGACCGGCGACCTGGCGGCCGTCAACCAGTTCCACAAACGCATCGCCGGGGCCGACAGCAATGTGGCCATCGGCTTGGCGCGGCTGGGTTTTCAAGTCGCGTGGCTCAGTCGGGTCGGCGCCGACTCCCTGGGCCGTTTCGTGGTGCAGACGCTGGAAAAGGAAGGCCTGGATTGCCGTCACGTGGCGGTTGATCCGGCGCACCCCACCGGGTTCCAGCTCAAGTCCCGTACCGACGATGGCAGCGACCCGCAAGTCGAATACTTCCGGCGTGGTTCGGCGGCCAGTCACTTGTCCGTGGACTCCATCGCACCGCCATTGCTCGCCGCCCGTCATTTGCATGCCACCGGTATCGTGCCAGCGCTGTCTGTGACTGCACGGGCAATGTCCTTCGAATTGATGACCCGCATGCGCGAGGCCGGCCGCAGCCTGTCGTTCGACCCCAACCTGCGCCCGAGCCTGTGGTCCAGCGAAGCGACGATGATCAGCGAGATCAATCGCCACGCCGCCCTCGCCCACTGGGTCTTGCCCGGCCTCGGTGAAGGTCGGTTGCTGACCGGTTTTGACGACCCGGCCGACATCGCCGCGTTCTACCTGGACCAGGGCGCCGAAGCCGTGGTGATCAAGCTCGGCCCGGACGGCGCTTATTACCGCACCTCGCGTGACCAGGGATTCATCGCCGGCGTGCCGGTGGCCCGGGTGGTGGACACCGTGGGCGCCGGGGATGGCTTCGCCGTCGGCCTGATCAGCGCATTGCTCGAAGGCCGCGACATCACCGAGGCGGTACGGCGGGCGAACTGGATTGGCAGCCGCGCGGTGCAGAACCGTGGAGACATGGAAGGGCTGCCGACGCGCCTGGAATTGTCGGCTGAATTTGAAACCGCCCATCGCGAGCAAGCTCGCTCCCACAAAGATTCGAGTTACCCCTGTGGAAGCGAGCTCGCTCGCGATTGA	MSEIDVLSFGETMAMLVADETGDLAAVNQFHKRIAGADSNVAIGLARLGFQVAWLSRVGADSLGRFVVQTLEKEGLDCRHVAVDPAHPTGFQLKSRTDDGSDPQVEYFRRGSAASHLSVDSIAPPLLAARHLHATGIVPALSVTARAMSFELMTRMREAGRSLSFDPNLRPSLWSSEATMISEINRHAALAHWVLPGLGEGRLLTGFDDPADIAAFYLDQGAEAVVIKLGPDGAYYRTSRDQGFIAGVPVARVVDTVGAGDGFAVGLISALLEGRDITEAVRRANWIGSRAVQNRGDMEGLPTRLELSAEFETAHREQARSHKDSSYPCGSELARD	PGPT0018060_1473	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
D1-36_02823	1296	ttuB_1		Putative tartrate transporter	ATGCAAACGCTCAACCTCGCCACCCGCCGCTGGTGGTACATCATGCCCATCGTCTTCATCACCTACAGTCTGGCCTACCTGGACCGGGCCAACTATGGTTTCGCCGCGGCTTCGGGCATGGCCGAAGACTTGATGATCACGCCAGGGCTGTCCTCGTTGCTCGGCGCGCTGTTTTTCCTCGGCTATTTTTTCTTCCAGGTCCCTGGGGCGATCTACGCGCAGAAGCACAGCGTGAAGAAGTTGATCTTCGTCAGCCTGATCCTCTGGGGCTCGCTGGCGACCCTCACGGGCGTGGTCTCCAATGCGTATTGGCTGATCGTGATCCGCTTCATGCTCGGCGTGGTGGAAGCCGCCGTGATGCCGGCGATGCTGGTCTATCTCTGCCATTGGTTCACCCGGGCCGAACGCTCGCGGGCCAACACCTTCCTGATCCTTGGCAACCCGGTCACCATGCTGTGGATGTCGGTGGTCTCGGGGTACCTCGTCGAGCAATTCGACTGGCGCTGGATGTTCATCATCGAGGGCCTGCCGGCGGTGCTCTGGGCTTTTGTCTGGTGGCGCCTGGCCGATGATCGTCCAGCCCAGGCCAAGTGGCTCAGCGAGCAGGAGAAGAAGAACCTGGAAAGCGTGCTGGCCGCCGAGCAGGTCGGTATCAAGGCCGTGAAGAACTATGCCGAGGCCTTCCGCTCGCCGAAAGTGATCATCCTGGCGTTGCAGTTTTTTTTCTGGAGCATTGGCGTCTACGGGTTCGTGCTGTGGTTGCCGTCGATCCTCAAGGCAGGCCTGAAGATGAACATGGTCGAGGCGGGATGGCTGTCATCGCTGCCTTATCTGGCGGCAGTGATCGCCATGCTGATCGTGTCCTGGGCGTCGGACAAGGTCCAGAAACGCAAGCGTTTCGTCTGGCCGCCGCTGCTGATCGCCTCCATCGCGTTTTACGCCTCCTATCTGCTCGGAGCTGAACACTTCTGGTGGTCCTATGCCTTGCTGGTGATTGCCGGCGCCTGCATGTACGCGCCCTACGGGCCGTTTTTCGCCATCGTTCCGGAGATTCTCCCGGCCAATGTCGCGGGTGGCGCCATGGCGCTGATCAACAGCATGGGCGCGCTGGGTTCGTTCGGCGGCTCCTATCTGGTGGGCTACCTCAACGGTTCCACCGGCTCCACCGGCATGTCCTTTCTGTTGATGAGCGGCGCGCTGCTGCTGTCGGTGTTGCTGACCCTTGCCCTCAAACCCGGCGCCAGCGACCGGGTCGTGACCAAAACCGCGACGCCCCATCCGGCGCCTGTCCGTTAA	MQTLNLATRRWWYIMPIVFITYSLAYLDRANYGFAAASGMAEDLMITPGLSSLLGALFFLGYFFFQVPGAIYAQKHSVKKLIFVSLILWGSLATLTGVVSNAYWLIVIRFMLGVVEAAVMPAMLVYLCHWFTRAERSRANTFLILGNPVTMLWMSVVSGYLVEQFDWRWMFIIEGLPAVLWAFVWWRLADDRPAQAKWLSEQEKKNLESVLAAEQVGIKAVKNYAEAFRSPKVIILALQFFFWSIGVYGFVLWLPSILKAGLKMNMVEAGWLSSLPYLAAVIAMLIVSWASDKVQKRKRFVWPPLLIASIAFYASYLLGAEHFWWSYALLVIAGACMYAPYGPFFAIVPEILPANVAGGAMALINSMGALGSFGGSYLVGYLNGSTGSTGMSFLLMSGALLLSVLLTLALKPGASDRVVTKTATPHPAPVR				NA	NA	NA	NA	NA
D1-36_02824	978	ghrB_3	COG1052	Glyoxylate/hydroxypyruvate reductase B	ATGAAAAAGCACGTGGTGTTGTACAAGAAACTTTCAGCGCAACTGATGGATCGCTTGCAGGCGCATGCCCAGGTCACCCTCATCGAAAACCTCGATGCCCAGGGCCTGGCGCAACTGCGCGACGCCCTGCCCAGCGCCCATGCCCTGCTGGGCGCGAGCCTCAGGCTCGATCCGTCGCTGCTGGACCTGGCCCCCAACCTTGAGGCGATCGCCAGCGTTTCGGTGGGCGTCGACAATTACGATATCGATTACCTGACCGAACGCCGGATCCTGCTCACCAACACGCCGGATGTGTTGACCGAAACCACCGCCGACACCGGCTTCGCCTTGATTCTGGCAACCGCCCGACGCGTGGTGGAGCTGGCCAACCTCGTCCGCGCAGGCGGTTGGCAACAGAGCATCGGGCCCCGACATTTCGGCAGCGACGTCCATGGCAAGACCCTGGGCATCGTCGGCATGGGCCGCATCGGCGAAGCCCTGGCCCAGCGCGGGCACTTTGGCTTCGGCATGCCGGTGCTCTATCACAGTCACTCGCCCAAGCCTGCGGTGGAGCAGCGTTTCAATGCGCGCTATTGCGATCTGGATACGCTGCTGCAACAGGCCGACTTCATATGCCTGACCTTGCCGTTGACCGCTGAAACCGAAGACCTGATCGATGCACGGGCGTTTGCGCAGATGCGCCCTGACAGCATCTTCATCAACATCTCCCGAGGCAAAGTCGTCGACGAAGCGGCAATGATCGACGCCTTGCGCAACGGGCAGATCCGTGGCGCCGGGCTGGACGTTTTCGAGCGCGAGCCCCTGGACCCGGAATCGCCGCTGTTGCAGATGGACAACGTAGTGGCGACGCCGCACATGGGCTCCGCCACCCACGAGACCCGGGAAGCGATGGCGCGTTGTGCCGTGGAGAACCTGCTGGCGGCGCTGGCGGGTGAAAGGCCAGCGAACCTGGTCAATCCGGGGGCGTGGAAGCGCTGA	MKKHVVLYKKLSAQLMDRLQAHAQVTLIENLDAQGLAQLRDALPSAHALLGASLRLDPSLLDLAPNLEAIASVSVGVDNYDIDYLTERRILLTNTPDVLTETTADTGFALILATARRVVELANLVRAGGWQQSIGPRHFGSDVHGKTLGIVGMGRIGEALAQRGHFGFGMPVLYHSHSPKPAVEQRFNARYCDLDTLLQQADFICLTLPLTAETEDLIDARAFAQMRPDSIFINISRGKVVDEAAMIDALRNGQIRGAGLDVFEREPLDPESPLLQMDNVVATPHMGSATHETREAMARCAVENLLAALAGERPANLVNPGAWKR	PGPT0001310_692	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0001310-ghrB-K00090	NA	NA
D1-36_02825	1716	btuD_5		Vitamin B12 import ATP-binding protein BtuD	ATGCACAGCATCCGAGCAATGATAAAAACCGCCTATAAAAAACACGCCAAACTTCTAGCAATAACCGTAATTACAATTATCGCACTCAAGCTCATCACACTTGCCCCCCCGCTGTTACTCGGGACCATTATCGATACCCTGCAAGACAACAGCAATCCAGCATCGAGCACTCTACGTGCAATGACGACAGGCCTGATTGTCGCGGGATGTATTCATGCCATCATCACGCCTCTGCAGCTCCATGCGCTGTCCAAGCTGGTGCAGGGCATTATCATGAACGCTTCCATTGCATGGATCACCGAACTCATAGGTAAAGAATTTTCGTTATTCAACTCTTGGAGAATCGGTCATTTCATCAAATCGGTCGAGCGCGGAATTACTGCGCACGAACAACTACTCACTTTCATTGTAACCATTGCGCTCCCCGTACTCCTGGAGTTTATAGTTGTTGGGGGAGCTTTTGTTTTCATAGGGGGTGGTGATATTTTTTTGAGCATGACGGCATCCGGAGTTATCTATCTGGCTACCACCCACCAAATTATCAAATGGCGAAGAAAGCACATCGATGCAGTCGATGAACAGGAAGATGAGTTAAGTGCACACCTCTACAACACCCTCAACGCGGGGAAAAACATAAAGCTGGAAGGTGCCATACCTACTGCCCTGCACCCGTTGAACGCGGCGTTCAGACGTTATGCCAGCGCTGCTGTGACTACCGCATCCTCTGGCGGCCTGCTGAGCACCGCCAAGATATTGTTCGTAAGCCTCTCCACTGGGGGATTGCTCTACTGGGGCGTCTTGGACCAGCTTTCGGGTCAGCCCAGTATCAGTGTCGGGCAGTTGGTTGCCATTTTTTCAATCGCGGGGAGTTATCTGCTCAGTATTTCAACCTTGACTGACGGGTATCGTGTTCTTGATCAGTTCCTTGCAGACCAGGGTCAATTTCAGGGTCTGCTATCACTCCCGGACTTCGATCGCAGCAATCGGCTGGCCTTGGTTGATTCCCAGCGCTCCTCAGTTCTGGAACTCGGCCCCTGCGAAGTGACGGGAACGGGACCGCTTCGCCTGTCGATCAAGCGCTCCCTGGCATTTGCTCAAGGGCAGTCAGTGGCCGTTACGGGCCCTAGCGGCGCAGGCAAAACCACTTTTCTGGAAGTCCTCGCCGGGCTTGATGCATCAAAGCGAGACCTACTGAGCATCGACTTGGTACCGGTCTCACTTTTGACCGGCCAAGCCCACTTGGACGCCTTGAGATACTGCCCCCAACAACCGCGATTTCTGGAGGGTTCTTTTGAACAATCGGTTCTGTTCGGAGGCAGCGCATCGCCGATGTTGTCTAGAGCCATACGGCAATTGGAACTGGATGAGATTGTGACAACACGGCAGGTCAGCGAAAGTGCATCGAATATCTCCGGAGGCGAAGCTAAACGCCTATCACTGCTGCGCCTTATCAACAAACCCGGAAAATTCAATATGTTCGACGAGCCAAGCGCATCCATCGAACCCAGGCTGACCACGCCTCTATGGGACCTGTTATTCGACGTTTTTGCCGGGCAAGGGTTGATATGTGTCACCCATGACATTGACCACCTGCATCGATTTGACCGGGTCATTGTGATGCATGACGGGGCAATCGTGGAGGATGGTCGCTGGCTGGATCTTATCGACAGGCCAGCAATCAAGCTGCTGGTGGATGAGATTCGGATGCAGAACTAG	MHSIRAMIKTAYKKHAKLLAITVITIIALKLITLAPPLLLGTIIDTLQDNSNPASSTLRAMTTGLIVAGCIHAIITPLQLHALSKLVQGIIMNASIAWITELIGKEFSLFNSWRIGHFIKSVERGITAHEQLLTFIVTIALPVLLEFIVVGGAFVFIGGGDIFLSMTASGVIYLATTHQIIKWRRKHIDAVDEQEDELSAHLYNTLNAGKNIKLEGAIPTALHPLNAAFRRYASAAVTTASSGGLLSTAKILFVSLSTGGLLYWGVLDQLSGQPSISVGQLVAIFSIAGSYLLSISTLTDGYRVLDQFLADQGQFQGLLSLPDFDRSNRLALVDSQRSSVLELGPCEVTGTGPLRLSIKRSLAFAQGQSVAVTGPSGAGKTTFLEVLAGLDASKRDLLSIDLVPVSLLTGQAHLDALRYCPQQPRFLEGSFEQSVLFGGSASPMLSRAIRQLELDEIVTTRQVSESASNISGGEAKRLSLLRLINKPGKFNMFDEPSASIEPRLTTPLWDLLFDVFAGQGLICVTHDIDHLHRFDRVIVMHDGAIVEDGRWLDLIDRPAIKLLVDEIRMQN				NA	NA	NA	NA	NA
D1-36_02826	369			hypothetical protein	ATGTTCAAAGTAACGCCCAACCCACCGAACACCGATTCGTCCTCACCGCGCCCAAAAACCAAGTCCCAAAAACACGACGAAGTCACCGACCGAGTCCTCGACCATTACCTAAAACGCAAACCGGCCAAACCCGGAGCAGAACCTGCCCCCGGCCAACTCTTTACCGTCAACAAGGACATCGACACCGAAAGCTTGCTTGCCTACCTCAGCGAAACCCTGGCTTCGGCCAATGCCATGGCCAATGACTTGGCTTTCGACCTGGACGGTTCACGCCGGCATTTCCTCCTGGGCATTCAGCAACTGATCGAACTGGGCAGCCTGCTGGCGAACCGTGCACTGGACAACATCGAAACCCGTCAGCCGACATAA	MFKVTPNPPNTDSSSPRPKTKSQKHDEVTDRVLDHYLKRKPAKPGAEPAPGQLFTVNKDIDTESLLAYLSETLASANAMANDLAFDLDGSRRHFLLGIQQLIELGSLLANRALDNIETRQPT				NA	NA	NA	NA	NA
D1-36_02828	960			hypothetical protein	ATGGAACATCGTGAAGCGCTGCTGGCGCTGCGAACCTTTCTTTCTACGCAGATTCTCGGCCAGGACAAACTCATCGAGCGCCTGCTCATCGCCTTGCTCGCCGATGGGCATATGCTGGTGGAAGGCGCGCCAGGGCTGGCGAAGACCAAGGCGATCAAGGAGCTGGCCGAGGGGATCGAAGCGCAGTTCCATCGCATACAGTTCACCCCCGACCTGTTGCCGGCCGACATCACGGGCACTGAGATCTATCGTCCCGAAACCGGCAGTTTCGTGTTCCAGCAAGGGCCGATCTTTCACAACCTGGTGCTGGCGGATGAAATTAACCGGGCCCCAGCCAAGGTCCAGTCCGCCTTGCTCGAAGCGATGGCCGAGCGGCAAGTCAGCGTCGGGCGCAGCACCTATGAACTGTCGCCGCTGTTCCTGGTAATGGCGACACAGAACCCGATCGAGCAGGAAGGCACCTACCCCCTGCCCGAAGCCCAACTCGACCGATTCCTGATGCACGTCAAGATGGGTTTCCCCGACGCTGCGGTGGAACGCCGCATCCTGCAACAGGCCCGAGGCGAGGCACTGAACGGCGAGACCAAGCCGGAGCGGCGCGTCAGCCAGCAGGCGATCTTTTCGGCGCGCAAGGAAATCCTCGGGTTGTACATGGCCGATGCCGTGGAGGAATACCTGGTGCAACTGATCATGGCCACCCGCAACCCGGCCAAGTTCGATCCGGAAATGGCCGAGTGGATCGCCTACGGCGCCAGCCCACGGGGCTCGATTGCCCTGGATCGCTGCGCCCGCGCCCACGCCTGGCTGGCCGGGCGCGACTTCGTCAGCCCGGAGGACATCCAGGCCGTGCTGTTCGACGTGCTGCGCCATCGCATCATCCTGTCGTTCGAGGCCGAAGCCGCCGGCATCGATCAGGACCGGGTCGTGCAGCGGATTCTCGACGTCGTCGCCGTCGCTTGA	MEHREALLALRTFLSTQILGQDKLIERLLIALLADGHMLVEGAPGLAKTKAIKELAEGIEAQFHRIQFTPDLLPADITGTEIYRPETGSFVFQQGPIFHNLVLADEINRAPAKVQSALLEAMAERQVSVGRSTYELSPLFLVMATQNPIEQEGTYPLPEAQLDRFLMHVKMGFPDAAVERRILQQARGEALNGETKPERRVSQQAIFSARKEILGLYMADAVEEYLVQLIMATRNPAKFDPEMAEWIAYGASPRGSIALDRCARAHAWLAGRDFVSPEDIQAVLFDVLRHRIILSFEAEAAGIDQDRVVQRILDVVAVA				NA	NA	NA	NA	NA
D1-36_02829	945			hypothetical protein	ATGAATAACCCACTGGCGCCCGTCCCGGGCATCCGCGTCAGCCTTTCGGAGCTGATCGAGATGCGCCATCGCGTGCGCGAAGTGCAGTTGTTCTCCACGCCTGGCCAGCGCAGCCCACTGATTGGCCTGCACCATTCCAAGCTGCGAGGGCGCGGGGTGGATTTCGATCAGGTGCGGGTCTACCAGGCCGGCGATGACGTGCGCACCATCGACTGGCGGGTCACCGCGCGGACCCAGGAACCCCACACCAAACTGTTCCACGAAGAACGCGAGCGGCCGATCTTCATCATGATCGAGCAGAGCCACCGCCTGTTCTTTGGCTCCGGGCTGATTTTCAAGTCGGTGCTGGCCGCTCGGGCCGCAAGCCTGATCGGCTGGGCCGCGCTGGGGCACAACGACCGGGTTGGCGGACTGGTGTTCGGCAACAACGCCCATTACGAAGTCAAACCACGGCGCAGCAAGCAGAGCCTGTTGCAATTGCTCAACCGTCTGGTCCGGGTCAATCAGTCCCTCCAGCCCGACGGCGAGTCGGACCGCGACTCTTTCGGCGTTGCCTTGCGCCGGGCCCGGGAGGTGCTGCGCCCCGGCAGCCTGGCGATCATTATTTGCGACGAGCGCGCCTTGTCCGACAGCGCCGAGCAGCAACTGACCCTTCTCTCGCGCCATTGCGACCTGCTGCTGTTGCCATTGTCCGACCCGCTGGATCACGCCCTCCCCGCTGCCGGATTGCTGCGTTTTGCCCAGGGCGGCGAGCAACTGGAACTCGACACGCTGAACCTGGAGTTACGCCAGACCTATCGCGCCAAGGCCGAAGCACGGCTGGAGCGCTGGGAGATGTTGGCCCAGAAGCTGCGGATCCTGATGCTCCCCTTGAGCACTCAAGGCGACATGGTCGAACAACTGCGTGAATACCTGAATCCCAAGCGCCCGGGGAAAGCCCGATGA	MNNPLAPVPGIRVSLSELIEMRHRVREVQLFSTPGQRSPLIGLHHSKLRGRGVDFDQVRVYQAGDDVRTIDWRVTARTQEPHTKLFHEERERPIFIMIEQSHRLFFGSGLIFKSVLAARAASLIGWAALGHNDRVGGLVFGNNAHYEVKPRRSKQSLLQLLNRLVRVNQSLQPDGESDRDSFGVALRRAREVLRPGSLAIIICDERALSDSAEQQLTLLSRHCDLLLLPLSDPLDHALPAAGLLRFAQGGEQLELDTLNLELRQTYRAKAEARLERWEMLAQKLRILMLPLSTQGDMVEQLREYLNPKRPGKAR				NA	NA	NA	NA	NA
D1-36_02830	495			hypothetical protein	ATGAGCAGCCTGGATCAGTTGCAGCCACTGATGGCCCCGCCTCCCATCGGATTCTGGCCGCCCGCGCCGGGCTGGTGGCTATTGCTGTTGTTACTGCCGATGCTGGGCCTGGGCTTGTGGCAGTTACGCCGATTCATCCCCATCAAACGCAGCAGCGCCCGGGCCGAACAACCGCTGGACCCGGTGCGTCTGGCCGCACTGGCCGAGCTCGCGCTGCTGCCCAAGCCCTACGACGGCGCACCGGCCGGCGCCTGGTTGCAACAACTCAACGGGCTGCTCAAGCGCTTGTGCCGCAATCACTATCCGTACAGCCAGAGCCACACACTCAATGGGCGCAAATGGCTGGCCTTCCTCGATAACCGCTGCCCGGCCGCCGGGCTGACCCGATGGATGATCCTGGTGGAGGGCGCCTACAAACCCGAATGCAAGCTCGATGACAAAGCCATCGCCGGCCTGACCCAAGCCGTCGAAATCTGGATTCGCAAACATGTTTGA	MSSLDQLQPLMAPPPIGFWPPAPGWWLLLLLLPMLGLGLWQLRRFIPIKRSSARAEQPLDPVRLAALAELALLPKPYDGAPAGAWLQQLNGLLKRLCRNHYPYSQSHTLNGRKWLAFLDNRCPAAGLTRWMILVEGAYKPECKLDDKAIAGLTQAVEIWIRKHV				NA	NA	NA	NA	NA
D1-36_02831	1080			hypothetical protein	ATGTTTGAATTCGCCTGGCCGTGGATCTTCGTCCTGTTGCCGCTGCCCTGGCTGATGCGCCTGGTGCTGCCGGCTGCAGACAGTGGCGAGCCGGCGCTCAAGGTCAGCTTCCTCGATGAACTCGAAGGGTTGGTGGGCCGCCGGGCCCGGGCCAATCTACCGACGTGGCGCCAGCAGGCCCCCTTCATCCTGCTTTGGCTTCTGTTGTTGATCGCGGCCGCCCGCCCGCAGTGGCTGGGCGAGCCGTTGCCGATCGCCGCGAGCGGTCGCGACCTGCTGGTGGCGGTGGATGTGTCGGGGTCGATGGACTTTCCCGACATGCAATGGAAGGACGAAGACGTCAGCCGTCTGGCGTTGGTCCAGCGCACGCTCGGCGATTTCCTCGAAAGCCGCGAAGGTGACCGGGTCGGCCTGATTCTGTTTGGCACCCAGGCGTATCTGCAAGCGCCCCTGACGTTCGATCGCCGCACCGTGCGGCGCTGGCTCGACGAAGCGCGCGTAGGCATCGCCGGCAAAAACACCGCCATTGGCGACGCCATCGGGCTGGCCCTCAAGCGCCTGCGTCAACGCCCGGCGCAGAGCCGAGTATTGATTATGGTGACCGATGGCGCCAACAACGGCGGCGAGATCGACCCGCTGACCGCCGCGCGGTTGGCTGCCGATGAAAACGTGAAAATCTATCCGATCGGCGTGGGCGCCGATCCGGAACAAAGTGGCACCGCCGGGTTCCTGGGCGTCAACCCGAGCCTGGACCTCGACGAAGCGACACTCCGAGAAATCGCCCAGGTGACCGGAGGCCAGTATTTCCGGGCCGAGGACGGCGAGCAACTGCAGGCGATCAAGACAACACTTGACCAGCTCGAACCGGTGTCCCAGCAACCGACCCAGGCCCGCCCGGCCCACGCGCTGTATCAGTGGCCGCTAGCCGTCGCACTGGTGTTGAGTATGTTGCTGGTGGCACGGGAGCGCTGGCCGGACAATCCATTGCAGCGCCTGTTCACCCAGCCGCTGTTTCAACCCGCGCACCCTTCCGAATGGCGCCAGCGGCTCAAGCGCCTGCGACTGCGGAGGCGCCGATGA	MFEFAWPWIFVLLPLPWLMRLVLPAADSGEPALKVSFLDELEGLVGRRARANLPTWRQQAPFILLWLLLLIAAARPQWLGEPLPIAASGRDLLVAVDVSGSMDFPDMQWKDEDVSRLALVQRTLGDFLESREGDRVGLILFGTQAYLQAPLTFDRRTVRRWLDEARVGIAGKNTAIGDAIGLALKRLRQRPAQSRVLIMVTDGANNGGEIDPLTAARLAADENVKIYPIGVGADPEQSGTAGFLGVNPSLDLDEATLREIAQVTGGQYFRAEDGEQLQAIKTTLDQLEPVSQQPTQARPAHALYQWPLAVALVLSMLLVARERWPDNPLQRLFTQPLFQPAHPSEWRQRLKRLRLRRRR	PGPT0014015_4034	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-CHLORIDE_TRANSPORT,PGPT0014015-yfbK-K07114	NA	NA
D1-36_02832	1734			hypothetical protein	ATGATCGCGCTCTGGCCGCACTGGCTGCGCCCCGGTTTCATCCTGCTGCTGCCCTTGCTGGGCTGGCTGCTCTGGCAACTGTGGCATCGGCAAAAACGCGTGGGCCGTTGGCAGATGATCCTGCCCCCGGCATTCCACGGGGTGCTGCTCAGCGGCGGCAGCGGAAGTGAAAGCAAACTGCCCTGGATTGCCCTGGGCCTGGGCTGGCTGCTGATGGTGCTGGCCTTGCTTGGCCCCAGCTGGACACGGGTCGAGCAGACCAGCCAGAAACCCGCCGATCCGCTGGTGATCATCCTCGAACTGACACCGGAAATGCTTGCCACCGACGTCCCGCCCACGCGTTTGGAACAAGCCCGTCGCAAAATACTGGACGTGCTGCACAACCGCAGCGACGCCCAGACCGCGATCATCGTCTACGCCGGCAGTGCCCACACCCTGGTGCCGCTGTCCGATGACCTGGCCACCAGCGCCAACCTGCTCGAAGCCCTGGCGCCACCAATCATGCCCCAAGGCGGCCACCGCGCCGACCTTGCCGTCAACAAGGCCATGGCCCTGCTGGACCAGGCCGGGCTCGGCCACGGGCGTATCCTGCTGATCGCTTCGTCGCTGAACGAGCAGGAACGCATGGGCATTCGCCAGGTCCTGGACGGTTCCGCCACCCGCTTGCTGATGCTGGGCATTGGCACCCGCGAAGGCGCGCCGGTGGCCCAGGACGACGGCAGTTACCTCAAGGACGCCCAGGGCGCTATCCTCGTGCCGCGCCTGGACAGTCCGAGCCTCAAGTCCTTCGTCAATGAGCTGGACGGCCGTTACCGCGCCACGCATGTGGACGACAGCGACCTGCGCGGCCTGGGCCTGATGGACGCACCGCGCCAACTGCGCAGCGATGGCCAGACATTGCGCCTGGACACTTGGGCTGACCAGGGTTATTGGCTGCTTCTGCCGCTGTTGCTACTGGCGGCGTGCGCGGGGCGGCGCGGCTGGCTTTTCTGCCTGCCGCTGCTGTTCGTCCTGCCGCAAACAGGCCATGCCTTCGAATTCCAGGATTTGTGGTTGCGTCCCGACCAGCAAGGCCAGCACCTGCTCAAGCAAAAACGCCCGGCCGAGGCCGCCGCCCGTTTCGAGGACAGGCAATGGCAAGGCGTCGCCCTCTACGAAGCCGGCGAGTACAGCGAAGCGGCTCGGCGATTCGCCGAAGGCAACGACGCCCGCTCCCACTACAATCGCGGCAATGCACTGGCCCGCAGCGGTGAGCTGGAGGCGGCGATCGATGCCTATGAGCAGGCTTTGGAGTTGCAACCGGACCTGCGTCCGGCGCAGACCAACAAAGCCCTGGTGGAAAGCCTGCTCAAAGAACAGACTGCGCCACCGGACGAGCCCGAATCTGCCGAAAACCAGGAACCGCCTCCCACGGAGCAACCGCAGGAGACCGACAGGCCCAGCCAGTCGTCCGAGCAGGGCCACCCCTCCTCCGAAGCGACAGCCACGCCGGACGACTCCGAGGCGTCCGAGGCCCCACCGCCCGGCGCCCAGGATGTGCCGGGCAGCGAGTTGCCCGACGAGCAGACCACCACCGCGCCGCTCCGCCCGGCCGCGGGTCAACGCAACGAAGAAGAACAACGCCAGGCGCTGGAACAATGGCTGCGCCAGATCCCGGACAACCCGGGTGAGCTGCTCAGGCGTAAATTCTGGTATGAACAGCAAAGCCACCAGGCCCAGGAAAAAGATCAATGA	MIALWPHWLRPGFILLLPLLGWLLWQLWHRQKRVGRWQMILPPAFHGVLLSGGSGSESKLPWIALGLGWLLMVLALLGPSWTRVEQTSQKPADPLVIILELTPEMLATDVPPTRLEQARRKILDVLHNRSDAQTAIIVYAGSAHTLVPLSDDLATSANLLEALAPPIMPQGGHRADLAVNKAMALLDQAGLGHGRILLIASSLNEQERMGIRQVLDGSATRLLMLGIGTREGAPVAQDDGSYLKDAQGAILVPRLDSPSLKSFVNELDGRYRATHVDDSDLRGLGLMDAPRQLRSDGQTLRLDTWADQGYWLLLPLLLLAACAGRRGWLFCLPLLFVLPQTGHAFEFQDLWLRPDQQGQHLLKQKRPAEAAARFEDRQWQGVALYEAGEYSEAARRFAEGNDARSHYNRGNALARSGELEAAIDAYEQALELQPDLRPAQTNKALVESLLKEQTAPPDEPESAENQEPPPTEQPQETDRPSQSSEQGHPSSEATATPDDSEASEAPPPGAQDVPGSELPDEQTTTAPLRPAAGQRNEEEQRQALEQWLRQIPDNPGELLRRKFWYEQQSHQAQEKDQ	PGPT0014015_1835	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-CHLORIDE_TRANSPORT,PGPT0014015-yfbK-K07114	NA	NA
D1-36_02833	1638			hypothetical protein	ATGACCCGCTTCACCGTCTACCTCCTCGCCTTGCTGCTCTGGACTGCCGGGATCCAGGCTGCGCAGTTGACTGCCAGCGTGGATCGCAGCCGCCTGAATTCGGGGGAGACCGTGGAACTGACGCTGGAATCCAACGACGCCACGCTGTTCGGCAAACCCGATCTGAGCCCGCTCCAGGAATTGTTCGACGTACGAGGCACCCGCCAGGTCAACCAACTGACCACCCTCGACGGCGAGAATCGCGCCACGACCCGTTGGATCGTCACACTGCTTCCCCGCCAGAGCGGCACCGTGGTGATACCGGCCCTGAAATTGGGGGAAGTGACCAGCCAGCCGATCACGTTGCAGGTGATCGAAAGCGAAACCCGCAACGCTTCCGGCACCCTCGCACCGGTGTTCATCGAAGCCAGCCTCGACCAGGCCGAAGTGTACGTGCAGGCCCAGGCGATCCTGACCTTGCGCATCTACCATTCGGTGTCGCTCTACGACGACAGCAGCCTGACACCCTTGCACATCCCCGATGCGCGCACCGAGCAACTGGGCGAATCGCGCACCTACGAGAAAGTCATCAATGACGTGCGCCACGGCGTGATCGAACTGCGTTATGGCATTTATCCGCAGCGCAGCGGCGAGCTGGCGGTCCCGGCACAGACCTTCAGCGCCACGCTGGTCGAACCCACCGCCCAGGGCGGCGCATCGCCCGTCGCCAAGCCCGGCCAACTGATGCGCGTAAGCTCCACGCAGTTGCTGCTGACCGTCAAGCCAAAACCCGCCAGCTACCCGGCCGACCTTCCCTGGCTGCCGGCCCGCAGTTTGTCCTTGAGCGAAAGCTGGAGCCCGGAACCGACCCACAGCCAGGTCGGCGACTCATTGACCCGCAGCTTGACCCTGGAAGCGGAGGGTCTGACCAGCGCCCAATTGCCGCCACTGCCTGCTACCGAAATCAACGGCCTGCGCCGTTACCCCGACCAGCCGGTGCTGAGCAGCCGCAGCAGCGAACGTGGCCTGGTGGGCAGCCGCGAAGACCGCGAGGCACTGGTGCCCAACCGCAGCGGCACTATCGAGCTGCCGCCGGTTGAAGTGGTCTGGTGGAACACGCTGGAAGATCACCTGGACCGCACCAGCCTGCCCGCGCGCACGCTGCAAGTGGCGAATAATCCAAGCTTGATGGTCGACACGCCGGCGGGCACTGCGCAGATCGTCACGACCGTCGACAGCGAGACACTTTGGTATTGGCAGTTGAGCACGCTCATTCTGGCGTGTACGACGCTGCTCGGTTTCGGCCTGTGGTGGCGCGCCCGCTGGCAACCCGCCGTCCTGCGCTCGACCCAGGCCGGGCCAAGCCCGCGCACCCTGCTCGATGACCTCAAGCGTGCCTGCCTGGCCAACGACTCGCACGCTACTCGCCAGGCATTGGACGCCTGGGCTCGGCAGCAACCGGAAACCCTGGCCGACATGGCGGCGCGCTTCGTGCCGCTGTCCGATGCCCTCGACGGCTTGAACGGCGCCCTCTACAGCGAAACCGGCCAATATTGGCAAGGCGAAGACCTGTGGCGCGCCATCCGCGCCATTCCGCCGCTCGAGGGAACGCCGGACGCGGCGGGTGATTCCAGCTTGCCACCGCTTTATCCCAAATAG	MTRFTVYLLALLLWTAGIQAAQLTASVDRSRLNSGETVELTLESNDATLFGKPDLSPLQELFDVRGTRQVNQLTTLDGENRATTRWIVTLLPRQSGTVVIPALKLGEVTSQPITLQVIESETRNASGTLAPVFIEASLDQAEVYVQAQAILTLRIYHSVSLYDDSSLTPLHIPDARTEQLGESRTYEKVINDVRHGVIELRYGIYPQRSGELAVPAQTFSATLVEPTAQGGASPVAKPGQLMRVSSTQLLLTVKPKPASYPADLPWLPARSLSLSESWSPEPTHSQVGDSLTRSLTLEAEGLTSAQLPPLPATEINGLRRYPDQPVLSSRSSERGLVGSREDREALVPNRSGTIELPPVEVVWWNTLEDHLDRTSLPARTLQVANNPSLMVDTPAGTAQIVTTVDSETLWYWQLSTLILACTTLLGFGLWWRARWQPAVLRSTQAGPSPRTLLDDLKRACLANDSHATRQALDAWARQQPETLADMAARFVPLSDALDGLNGALYSETGQYWQGEDLWRAIRAIPPLEGTPDAAGDSSLPPLYPK				NA	NA	NA	NA	NA
D1-36_02834	1245	sbcD	COG0420	Nuclease SbcCD subunit D	TTGCGTCTGTTTCACACCTCCGACTGGCACCTGGGGCAAAACCTCCACGGCCAGGATCGCGACTTCGAACACGCCTGTTTCCTTGATTGGCTGCTGCGTCAGCTGGCCAGCGAAAAACCCGACGTTCTATTGATCGCCGGCGACATTTTCGACACGGTCAACCCGCCCGTCAAAGCCCAGGAGCGTCTGTACGACTTCATCGTCAGCGCTCATGAACAAAACGCCAACCTGACCATCGTCATGATCGCGGGCAACCACGATTCCGGTTCGCGCATCGAATTGCCGGCGCCGCTGATGCGCCGCCTGCGCACCCATGCCCTGGGCCGCGTCCTGTGGCTGGACGATGGGCAGCTGGACGTCGAGCGCCTGCTGCTGCCGCTGCCCGACGCCAAGGGCAAGGTCCGGGCCTGGTGCCTGGCCCTGCCGTTCCTGCGGCCGGCCGAGGTCACGGGCGCGCAACTGGGGGACGATTATTTGCGCGGCATCGGCCAGGTCCACGAATGGCTGATTGCCGCCGCCAACGCCAAGCGCAAGAAGGGCCAGGCGCTGATTGCCGTCAGCCATGCACACATGGCCGGCGGCTCGGTATCGGAGGATTCCGAGCGCAGCCTGATTATCGGCAACGCCGAAGCCCTGCCAGCCAGCCTGTTCGGCCCAAGCATCACTTATGTCGCCCTCGGCCACTTGCACAAGCCACAAAAGGTCAACGGTGAAGAACGCATCCGCTACAGCGGATCGCCGATTCCGTTGTCGTTTTCCGAAATCGGCTACCGGCACCAGATTCTCGACATCGCCCTAAACGGCGAAACCCTGGTCAGCGTCGAACCACGGCTGATTCCCCGCGCCGTCAACTTGCAACGCCTGGGCCCGGCGCCCCTGGCCGACATCCTGGTGCAACTGAAGGACTTGCCGGACATCGACTTGCTGGCCGACATCCATCGCCAGCCCTGGCTGGAAGTCCGGGTGCGCCTCGATGAACCGCAGCCGGACCTGCGCAATCAGGTCGAAACCGCCCTGCAAGGCAAAGCCGTGCGACTGGTGCGGATCGCAGCCGAGTATGCCGGCAGCGGTGGCTCCGGCGATGCCGATGGAGGCGCGGCGCTGATTGAACTCGACCAGCTCAGCCCACAGGAACTGTTCAGCCGCGCCTGGCAGGACACCTACGGCAACCCAGTCGATGACCAGACCCTCAAGGACTTTGCCGTGCTGTTGCAGGATGTACAGATGGAGAGCGAACAGCCATGA	MRLFHTSDWHLGQNLHGQDRDFEHACFLDWLLRQLASEKPDVLLIAGDIFDTVNPPVKAQERLYDFIVSAHEQNANLTIVMIAGNHDSGSRIELPAPLMRRLRTHALGRVLWLDDGQLDVERLLLPLPDAKGKVRAWCLALPFLRPAEVTGAQLGDDYLRGIGQVHEWLIAAANAKRKKGQALIAVSHAHMAGGSVSEDSERSLIIGNAEALPASLFGPSITYVALGHLHKPQKVNGEERIRYSGSPIPLSFSEIGYRHQILDIALNGETLVSVEPRLIPRAVNLQRLGPAPLADILVQLKDLPDIDLLADIHRQPWLEVRVRLDEPQPDLRNQVETALQGKAVRLVRIAAEYAGSGGSGDADGGAALIELDQLSPQELFSRAWQDTYGNPVDDQTLKDFAVLLQDVQMESEQP				NA	NA	NA	NA	NA
D1-36_02835	3642			hypothetical protein	ATGAAAATCCTCGCGATCCGTCTCAAGAACCTCGCCTCCCTGGCGGGGCCGTTCGAAATCGATTTCACCGCCGAACCCTTGGCCAGCGCCGGTCTGTTCGCCATCACCGGCCCCACGGGCGCCGGCAAGAGCACCTTGCTCGATGCCCTGTGCCTGGCGCTGTTCGGCGCGGTGCCACGGCTGAACAACACCGGTCGTGACGCCAAGGTGCCCGACGCCGACGGCGAAATCGGCACGGGCGATCCACGCACGCTGCTGCGTCGTGGGACCGGCGAGGGTTATGCCGAAGTGGATTTTCGCGGCATCGATGGTCGCCGCTACCGGGCTCGCTGGGAGGCCAATCGTGCCCGGGAAAAAGCCTCCGGCAAGCTGCAAGCCAGCCGCCAGAGCCTGCGTGACCTGGACAATGACCAACTGCTGGCCAGCCAGAAAGGCGAATACAAAGCGCAACTGGAAGCCGTCCTCGGTTTGAATTTCGAGCAGTTCACCCGTGCCGTGCTACTGGCCCAGAGCGAGTTCAGCGCCTTCCTCAAGGCTGACGACAACGACCGCAGCGAATTGCTGGAAAAGCTTACCGACACCGCGCTGTATACACGCCTCGGTCGTCGTGCCTTCGACAAAGCCAAGCAGGCCAAGGAAACCCACAAGCAATTGCAGGACCAGGCCACGGGCGTCACACCGCTATCGCCCGAAGCCCGCGCCGAGCTGGATCAGCACTTCAACGAAGCCCAGCAGCAACTCAAAACCCAACAGGCGCAGCTCAAGCAACTGGAGCAGCAACAAGCCTGGCTCAAGGACCTGCGCCATCTGCAGGACGAACAGGCCAGCGCCGCCGAGCAGTTGCAACGGGCCCAGGCCGATTGGGAGGCGCTGGCAGACGAACGCCTGAAACTGACGCGCCTGGAACAGCTGGCACCCCAGCGGCATCAGTTCATCCGTCAGGCGGAACTGGCCCGGCAGCTGGACCCGCTCGCGGCCAGGATCCAACAGCTGACGCAGCAACACGTCGAGTTGCATGAACGGCAGGCCGAACTGGAAAAAGGCCTCGGCATCGCGCAGCTGGCCGTGGCCGCCGCCCGCCAGCAGAGCACCGACAGCACGCCACTGCTGCGTCAGGCCTTCGACGAACAAAGCAGCCTTGCCCGCCTGGCCAGGGAGGCCGAGCAAGGCGCTGAACAGTTGCAGCAGGCCCAGCAGGCAAGCACCGACGGCCAGCGCACGATCGACACCTTGCTGGAACAACAGCAGCAGGTTGGCGAACGGCTTGAACGGATTGCCGGCGAACTGGAACAAAGCACAGACCTCGCAACACTGAGTGATGCATGGGGCGCCTACCGCGATCGCCTCCAGCAACTGATGCTGATCGGCAATCGACTGAACCAGGGCCAGGAAGAACTTGCGCTGCTGGAACAAACCGCCGCTCGTGCCGCCGAAGACCTCGCAACCCGCCGACAAAGTCTTGAGGTGCTCTACAAGGAGGCCGATGCCGAACCGCAAGCCGTGGCCGAACAGATCCAACTGCTTGGCAACCTGCTGCAAGACAACCGCAAGCAGTTACGTGCATTCGAAGACCTTGCTCGGTTGTGGGCCAGCCAGCAGGATTTGGACAAGCGTGTCGCCGAACTGGAACAGCGCCAGCAGCAAGCCTTGCAGCAACGCGACCGACTGGTGCGTGAAGGCAGCGAAGCCAAGGCCGAGCTGGCGGTCGCCGAACAGACGCTGACCGTGACTCGCGAGCTGCTGGAACGCCAGCGCCTGGCCCGTAGCGAAAGCGTCGAGCAACTGCGCGAACAATTGCAGGACAACCAGCCCTGCCCGGTGTGTGGCAGTGTCGAACATCCCTACCACCAACCCGAAGCGCTGCTGCAAAGCCTCGGGCGCTTCGATGAAAGCGAACAGGCCAACGCTCGCAAGGCCGTCGACCTGCTCAATGAAAAAGTCATCGAACTGCGGGCCCAGTACAGCGGGGTCATTGCTCAGCTCAAGGAATTCAAGCAGCAGCAAGAACAACTCACCGACCAACAACGGAGCGTGGCGCCAAGCCTTGAAGCTCACCCGCTGTCGGCGCAGCTGCTGGCCCAGGATTCATCCAAGCGCGCCGCCTGGCTGGCCCAGCAAACCGCACAGCTGAATCAACTCATCAGCCAGGACGAACATCGCCAGGCCGCCCTGCTTACGCTGCAACAGGACGCCGCCAAGCTGGCGCAGCAACTGCGCGATGCAGAGACAGCCAGCCAACAAGCCTCGCAGCATCTGAACAACCAGCTACAGGCACTGGCCCGGGATCGCCAGCGCCTGGACGAGGAGCTTGAGCACTTCAGCGCACTGTTGCCGGCCGACACGTTGCAGGCCCTGCGCAGCGAACCTGCCGCCTCGTTCATGCAACTCGACCAGCGGATCAGCCAGCGCCTCGCGCAACTGGAACAGCAGCGCGAAGAGCTCGCCGACCAAGTCCAGCGCCAGCAAGCCCTGGAGAAAGAACAGGATCGGCAGCAGATACGCACACAGCAACTGGAATCGGCGCAGCGCCAGTTCAGCGCGTTGAACGCGCAACGACAGGCGTGCGAGGAAAAGCTTCACCAACTGCTCGGTGAACACGCCAGCGCCGAGCAATGGCAACACCAAATCGACCTGGCCCTGGAACAGGCTCGCCATGCCGAGACGACGGCCAATCAACAATTGCAGGATCTGCGCAACAGCCTCGTGCAACTGGCTGCCGAACTCCAGGCACGCCATGAGCAGGCCCAATCCCTGGAGGCCGAACAGCAGGCGTTGGCCGCGGGTATCGCCCAGTGGCGCGCAGCTCATCCGGAACTGGACGACGCCGCGCTGGGCGCGTTGCTTGGTCTCGACGACCAACAGGTCGCTCACCTGCGGCAACGCTTGCTCAACAGCGAAAAAGCCATCGAGCAGGCCCGCGTATTGCTCACCGAACGGGAGCAGCGGCTGCAAAACCACCAGTCGCAACACAACGGCAACCTGCCGGCGGAACAATTGGCCGAAGCCCTCGCCACGCTTCACGGGCAGTTCGCGGCCAGCGAACAACGCTGCGCAGAGCTGCGTGCCGAACAGGCCGAGGACCAGCGCAGGCAGACTGCCAACCAGGCCCTGGCCCAACAAATCGAACGAGCCTACGCCGAGTACCAGCGCTGGGCACGCCTGGACGCATTGATCGGGTCGGCCACTGGCGATCGCTTCCGCAAACTGGCCCAGGCGTACAACCTCGACTTGTTGGTCCACCACGCCAACGCCCAGTTGCGACAATTGGTTCGCCGCTACCGCCTCAAGCGCGGCGGCAGCATGCTCGGCCTGCTGGTGATGGATACCGAGATGGGCGATGAATTGCGCTCGGTGCATTCGTTGTCCGGCGGCGAAACCTTCCTTGTTTCCCTTGCCCTGGCACTGGGCCTGGCCTCGATGGCGTCCAACACGTTGAGAATCGAGTCGCTGTTCATCGACGAAGGCTTCGGCAGCCTCGACCCCGAGTCGCTGCAACTGGCGATGGACGCCTTGGATGGGTTGCAGGCCCAGGGGCGCAAGGTCGCGGTCATTTCCCACGTGCAGGAAATGCACGAGCGCATCCCGGTGCAAATCCAGGTCCGGCGCCAAGGCAACGGATTGAGCACGGTGGAGGTGAAATGA	MKILAIRLKNLASLAGPFEIDFTAEPLASAGLFAITGPTGAGKSTLLDALCLALFGAVPRLNNTGRDAKVPDADGEIGTGDPRTLLRRGTGEGYAEVDFRGIDGRRYRARWEANRAREKASGKLQASRQSLRDLDNDQLLASQKGEYKAQLEAVLGLNFEQFTRAVLLAQSEFSAFLKADDNDRSELLEKLTDTALYTRLGRRAFDKAKQAKETHKQLQDQATGVTPLSPEARAELDQHFNEAQQQLKTQQAQLKQLEQQQAWLKDLRHLQDEQASAAEQLQRAQADWEALADERLKLTRLEQLAPQRHQFIRQAELARQLDPLAARIQQLTQQHVELHERQAELEKGLGIAQLAVAAARQQSTDSTPLLRQAFDEQSSLARLAREAEQGAEQLQQAQQASTDGQRTIDTLLEQQQQVGERLERIAGELEQSTDLATLSDAWGAYRDRLQQLMLIGNRLNQGQEELALLEQTAARAAEDLATRRQSLEVLYKEADAEPQAVAEQIQLLGNLLQDNRKQLRAFEDLARLWASQQDLDKRVAELEQRQQQALQQRDRLVREGSEAKAELAVAEQTLTVTRELLERQRLARSESVEQLREQLQDNQPCPVCGSVEHPYHQPEALLQSLGRFDESEQANARKAVDLLNEKVIELRAQYSGVIAQLKEFKQQQEQLTDQQRSVAPSLEAHPLSAQLLAQDSSKRAAWLAQQTAQLNQLISQDEHRQAALLTLQQDAAKLAQQLRDAETASQQASQHLNNQLQALARDRQRLDEELEHFSALLPADTLQALRSEPAASFMQLDQRISQRLAQLEQQREELADQVQRQQALEKEQDRQQIRTQQLESAQRQFSALNAQRQACEEKLHQLLGEHASAEQWQHQIDLALEQARHAETTANQQLQDLRNSLVQLAAELQARHEQAQSLEAEQQALAAGIAQWRAAHPELDDAALGALLGLDDQQVAHLRQRLLNSEKAIEQARVLLTEREQRLQNHQSQHNGNLPAEQLAEALATLHGQFAASEQRCAELRAEQAEDQRRQTANQALAQQIERAYAEYQRWARLDALIGSATGDRFRKLAQAYNLDLLVHHANAQLRQLVRRYRLKRGGSMLGLLVMDTEMGDELRSVHSLSGGETFLVSLALALGLASMASNTLRIESLFIDEGFGSLDPESLQLAMDALDGLQAQGRKVAVISHVQEMHERIPVQIQVRRQGNGLSTVEVK				NA	NA	NA	NA	NA
D1-36_02836	603			hypothetical protein	ATGAGCCGCGCCACGCTGTATTCGTTCCGCCGTTGCCCCTACGCCATGCGCGCCCGCATGGCGTTGCGCTACAGCGGTATCGCGCTGGACATCGTCGAAGTGAGCCTCAAGGCCAAACCACCGGAAATGCTCGCGCTGTCGAGCAAAGGCACGGTGCCGGTCTTGCATGCCGATGGACGGGTCATCGATGAAAGCCTCGAGATCATGCACTGGGCCTTGGGCCTGCATGATCCGCAGGATTGGACATTGCTGAATGATCCCGACGGTCGTGCTCTGACGGCGACCTTGATCGAAGAAAACGACCAGGTTTTCAAGCTTCACCTCAACCGTTACAAATATCCGGAGCGCCATCCGGACCACTCGGCGCTGCATTACCGGAGCGAGGGTGAAGCGTTCCTGCGCAAGCTGGACGGATTGCTTGAAAACCGCCAGTTCCTGGCCACGGATCACCTGAGCCTGGCGGACGTGGCGCTGATGCCGTTCTTGCGCCAGTTCGCCCATGTAGATCGCGAGTGGTTTGCCCAGTCGCCCTACCCTCGGCTTCGGGAATGGTTGGAGGGTTTACTGGATTCAGAGCTGTTTGTGGCGATCATGGCCAAATAG	MSRATLYSFRRCPYAMRARMALRYSGIALDIVEVSLKAKPPEMLALSSKGTVPVLHADGRVIDESLEIMHWALGLHDPQDWTLLNDPDGRALTATLIEENDQVFKLHLNRYKYPERHPDHSALHYRSEGEAFLRKLDGLLENRQFLATDHLSLADVALMPFLRQFAHVDREWFAQSPYPRLREWLEGLLDSELFVAIMAK	PGPT0013170_21123	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799	NA	NA
D1-36_02837	255			hypothetical protein	ATGAGCAGGTGCAAATTCTGGGTGATCGCCTTCCTGGCATTCATCACCAATGGCTTTTCATTGCTTGGATTGGGTCAGGCGTCGGCGGGGTCGTTGGCGCGGACCATCGAATGCAACCACAACATCGCCCACAACATCCTCACCGCCAGGGCGCTGGGTGTGTTGGTGGGGAACCCGCCGGTCAAGCCGAGGGCGGCGGTGTTCGGGCCGTTTCAAATTGATTGCGCCCAAGCGCGCATGTGCAGCGCTGGATAA	MSRCKFWVIAFLAFITNGFSLLGLGQASAGSLARTIECNHNIAHNILTARALGVLVGNPPVKPRAAVFGPFQIDCAQARMCSAG				NA	NA	NA	NA	NA
D1-36_02838	180			hypothetical protein	ATGGCCAGTGCAATCCTCATCTGCGCCAAGCGCGGCGCCTACCTGGCCATCGGCCTCTACGTAACGCTGGTGCTGGTAGTCAGTCTCGGCACCCAATACCAAAACGTTGCGGAACCCTCCCTCCAGGCTTCAGCCGTGAGCGTCACGCATGCCGTCGCGAAAGGAGCGTCCGGAGCATGA	MASAILICAKRGAYLAIGLYVTLVLVVSLGTQYQNVAEPSLQASAVSVTHAVAKGASGA				NA	NA	NA	NA	NA
D1-36_02839	126			hypothetical protein	ATGGCGATGCGTCTGGCAGTGATGTTGCTGTTCCTTTATTCCACCCCGATTGTTTCGGCGGCCCAGCCGATTCCCGGTGAATTGGAAGTGGCTCGCGAGCGATTGTTGAGCTTGTTGAGCGACTGA	MAMRLAVMLLFLYSTPIVSAAQPIPGELEVARERLLSLLSD				NA	NA	NA	NA	NA
D1-36_02840	180			hypothetical protein	ATGAACATGAATCTTTTTTCCGTGATCGCCGCTTCCGCCATCTCCGCCACCGTGGCATTGCCCGCCAGTGCCAGCATCGAGATCAGCGACAAGAAAAACCGCACCCAGAGCTACACCGAAAAATACCTGCAACAGAGCGCCAACTTCTACGCGGCGCTGGATCACAAGACTCAACACTGA	MNMNLFSVIAASAISATVALPASASIEISDKKNRTQSYTEKYLQQSANFYAALDHKTQH				NA	NA	NA	NA	NA
D1-36_02841	1176	pgl_1		6-phosphogluconolactonase	ATGAAGATGCGTAGTTTCTGGCCCTTGTTGATGGCCGGCAGCGTCGGCGCCATGGGCGTCCAGGCGGACACTGGCGAGCGCCATCAGTTATTGGTGGGTTCCTACACGGCGGACCAGAGCCAGGGCATCTACCGCCTGCGATTCGACAGCCGCACCGGCCAGATCGATGCCAACCCATTGCAAGTGATCAAGACGCACAACCCTTCCTGGCTGACCCTTTCCAAGGACATGACCCGGTTGTTCGTGGTCAACGAAAACGGGCCGGGCCAGAAAGACCCGGTGGGCAAGGTCAGCAGCTACGCCATCGACCCGAAGACCTTTGAACTGAGCCTGATCAACCAAGTGCAATCTTTGGGCAACGAGCCGACCCACTCCAGCCTGAGCCATGATGGCCAGCATTTGCTGGTGAGTAATTATTCCGTCCTGGAAAACCCGGGCGGCACCTTGGTGGTGTTGCCGGTGGGCGCGGATGGCAGGTTGGCGCCGGTGGTGCAGATGGGCAGCCATCAGCCGAGTCGGGTCAATTCCGAGCGGCAGAAGTCGGGTCATGTGCATTCCTCGGTGTCGTCACCCGATGGCAAATATGTGTTCGCCAACGACCTGGGGGCAGACAAGGTGTTTGTCTACCGTTACGACCCCAAGGCCAACCACGAAATGCCGCTGACGCCTGCCGATCCGCCGTTCGTGCAGTTGCCACCGGGCAGCGGACCGCGCCATCTATTGTTCAGTGGGGATGGCAAGCACGCCTGGCTGACGATGGAAATGACGGCCCAGGTGGCCGTGTTCGATTACCAGGACGGTCGCCTGACCCAGCGCCAGCTTGTCGCGCTGGCCGATGGAAAGCCGCAGCCAGGTAAAGCCGCAGCAGCGCTCCATGCTTCCAAAGACGGCAAGTTCCTGTACGTCAGCAATCGTGGCACCACAAACGAGATGCTGGTGTTCGCCGTCGACCCGGCTTCCGGCACCTTGAAAGAGCTGCAGCGACGCTCCGTCGAGGGTGATCATCCTCGAGAGTTCAGCCTGGACCCGAGCGAAAAATTCGTTCTGGTCGCCAATCAGAAAAGCAATCAGATCGTGGTCATCGAGCGCGATCCGAAGACCGGCCTGCTGGGCAAGACCGTCCAGAAGCTGCCCATGGACGCACCGAGCGATGTGAAATTCCTCGTTCGTCAATAA	MKMRSFWPLLMAGSVGAMGVQADTGERHQLLVGSYTADQSQGIYRLRFDSRTGQIDANPLQVIKTHNPSWLTLSKDMTRLFVVNENGPGQKDPVGKVSSYAIDPKTFELSLINQVQSLGNEPTHSSLSHDGQHLLVSNYSVLENPGGTLVVLPVGADGRLAPVVQMGSHQPSRVNSERQKSGHVHSSVSSPDGKYVFANDLGADKVFVYRYDPKANHEMPLTPADPPFVQLPPGSGPRHLLFSGDGKHAWLTMEMTAQVAVFDYQDGRLTQRQLVALADGKPQPGKAAAALHASKDGKFLYVSNRGTTNEMLVFAVDPASGTLKELQRRSVEGDHPREFSLDPSEKFVLVANQKSNQIVVIERDPKTGLLGKTVQKLPMDAPSDVKFLVRQ	PGPT0014975_425	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
D1-36_02842	297			hypothetical protein	ATGACTGCCGTAACCGACACCCTGCTGCATGCCCTCGAACACTGCGACATGCTGATCATCGACGGGCTGCACGCGTTCGATTTCTCCCTCGATGAGCAAGATCAATTGCACGTCGAGTGCATGAACGGTCGCACCCGCGAGCATTGGCGTTTCACTGAGGCGCAGATGCAGGCCGCGACCTTCGACGAAGCCCAGAAGCATTGGATCATCACCAGCGATTCGGGCGATCACCACTTGGAATGCGTGGAAGCGACCAGCGGCCACGACGATGAGGACTCCGATCATGAAGATGCGTAG	MTAVTDTLLHALEHCDMLIIDGLHAFDFSLDEQDQLHVECMNGRTREHWRFTEAQMQAATFDEAQKHWIITSDSGDHHLECVEATSGHDDEDSDHEDA				NA	NA	NA	NA	NA
D1-36_02843	1581			Alpha-ketoglutaric semialdehyde dehydrogenase	ATGAACCAGATCCTTGGTCACAACTACATCGGCGGTGCGCGCAGCGCGGCCGGCCAGACTCGCCTGCAGAGCGTCGACGCCAGCACCGGCGAGGCCTTGCCCCATGAATTCGTCCAGGCCACGGAGCAAGAAGTCGACGCGGCCGCCAAGGCCGCTGCGGCGGCGCATCCGATCTACCGCAGCTTGAGCGCGGCGCGCCGGGCCGAGTTCCTCGACGCCATCGCCGATGAGCTGGACGCCCTGGGCGATGATTTCGTCGCCGTGGTCTGCCGCGAAACCGCCTTGCCAGCGGCCCGCATCCAGGGCGAGCGCGGTCGCACCAGCGGCCAGATGCGCCTGTTCGCCAAGGTCCTGCGCCGTGGCGATTTCTACGGTGCGCGTATCGATCGCGCCTTGCCGGAGCGCACGCCGCTGCCGCGTCCGGACCTGCGTCAGTACCGCATCGGCCTGGGTCCGGTGGCCGTGTTCGGCGCCAGCAACTTCCCGCTGGCATTTTCCACCGCCGGTGGTGACACCGCCGCCGCCCTGGCCGCCGGTTGCCCGGTCGTGTTCAAGGCCCACAGCGGCCACATGGCGACCGCCGAGCACGTGGCCGATGCGATCGTTCGCGCAGCGGAAAAAACCGCGATGCCGGCCGGGGTGTTCAACATGATCTACGGCGGTGGTGTTGGCGAATGGCTGGTCAAGCATCCGGCGATCCAGGCCGTCGGTTTCACCGGCTCCCTCAAGGGCGGGCGCGCCCTGTGCGACATGGCGGCCGCTCGGCCCCAGCCGATTCCGGTGTTTGCCGAGATGTCGAGCATCAACCCGGTAATCGTATTGCCGCAGGCCTTGAAAAACCGCGCCGACAGCGTTGCCCGCGACTTGACCGCCTCGGTGGTGCAGGGCTGTGGTCAGTTCTGCACCAACCCTGGCCTAGTGATCGGCATCCGCTCGCCGGAATTCACCGCGTTCACCCAGCAGGTAGCTTCGCTGATCGGCGACCAGGCGCCGCAGACCATGCTCAACGCCGGCACGCTGCAAAGCTACGGCAAGGGCTTGCAGAAGCTCCTGTCTCACCCGGGCATCGAACACCTGGCCGGTCGCGATCAACAGGGCAACCAGGCCCAGCCGCAATTGTTCAAGGCCGATGCCAGCCTGCTGATCAACAGCGACGAAGCGTTGCAGGAAGAAGTCTTCGGCCCGACCACGGTGTTCGTCGAAGTCGCGGACCAGGCGCAACTGACCGCAGCCCTGAACGGTCTTCATGGCCAGCTCACCGCCACGATGATTGGCGAGCCGGAGGACTTCGAACAGTTTGGCGAGCTGACGCCGTTGCTGGAGCAGAAAGTCGGGCGCATCTTGCTCAATGGCTATCCAACCGGCGTGGAGGTGTGTGATTCGATGGTCCATGGCGGGCCTTACCCGGCGACATCCGATGCCCGTGGCACGTCGGTGGGTACGCTGGCGATCGACCGGTTCCTGCGTCCGGTATGCTTCCAGAACTACCCGGACAGCCTGCTGCCGGAACCGCTGAAAAACGCCAATCCGCTGGGTATCCTGCGGTTGGTGGATGGGGTGCCGGGGCGCGAGGCGCTTTGA	MNQILGHNYIGGARSAAGQTRLQSVDASTGEALPHEFVQATEQEVDAAAKAAAAAHPIYRSLSAARRAEFLDAIADELDALGDDFVAVVCRETALPAARIQGERGRTSGQMRLFAKVLRRGDFYGARIDRALPERTPLPRPDLRQYRIGLGPVAVFGASNFPLAFSTAGGDTAAALAAGCPVVFKAHSGHMATAEHVADAIVRAAEKTAMPAGVFNMIYGGGVGEWLVKHPAIQAVGFTGSLKGGRALCDMAAARPQPIPVFAEMSSINPVIVLPQALKNRADSVARDLTASVVQGCGQFCTNPGLVIGIRSPEFTAFTQQVASLIGDQAPQTMLNAGTLQSYGKGLQKLLSHPGIEHLAGRDQQGNQAQPQLFKADASLLINSDEALQEEVFGPTTVFVEVADQAQLTAALNGLHGQLTATMIGEPEDFEQFGELTPLLEQKVGRILLNGYPTGVEVCDSMVHGGPYPATSDARGTSVGTLAIDRFLRPVCFQNYPDSLLPEPLKNANPLGILRLVDGVPGREAL	PGPT0018165_511	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GLACTURONATE|GLUCURONATE_DEGRADATION,PGPT0018165-aldH-K13877	NA	NA
D1-36_02844	993			hypothetical protein	ATGCGTTTAGTTCAGTTCGAATTGAGTAACGGCGAGCGCCGCGTCGGTGTGGTCGAGGGCGATCAGGTACGTGAAGTGCAGGGCGCCGCCACTGTGCGGGAGCTGGCGCTGGCCGCGATCGAGGCGGGCGTGAAGCTTGAGCAGCAGGTCAACGGCTTGGGCCTGGGGGCGAGCCATGACTACGCGCAACTGCTCGGCGAACTGCGTATCCTGCCGCCGCTGGACCACCCGGACCCGGCGCACTTGCTGGTCAGCGGCACCGGCCTGACCCACCTGGGCAGCGCTTCGGCCCGGGACAAGATGCACCAACAGGCCGGCGACGAAGCAGCGATGACCGACACCATGCGCATCTTCAAATGGGGCGTCGAGCGCGGCAAACCACAGGCCGGGCAGGCCGGCGTGCAGCCGGAATGGTTCTACAAGGGCGACGGCAGCATCGTGGTCCGCCCGGGCCATCCGTTCCCGTTGCCACCGTTTGCCGAAGACGCCGGCGAAGAGCCGGAGATCAGCGGCCTGTACGTCATTGGGCACGATGGCAAGCCGTATCGACTGGGCTTCGCGGTGGGCAACGAATTTTCCGATCACGTCATGGAGCGCAAGAATTATCTATACCTGGCCCATTCGAAACTGCGCAGTTGCAGCTTTGGCCCGGAACTTCGCGTGGGTGAATTGCCTCAACATCTGTCCGGGACCAGTCGTATCCTGCGCAACGGCGAAGTGTTGTGGCAGAACGAATTCCTCAGCGGCGAGGCGAACATGTGCCATAGCCTCGAAAACCTGGAATTCCACCACTTCAAGTACAGTCAGTTCCTGCGCCCGGGGGACGTTCACGTTCACTTCTTCGGCACCGCGACGCTGTCGTTCGCCGACGGCATCCGCACCCAGCCGGGGGACGTGTTCGAAATCAGCCAGGCCGAGTTCGGCGCGCCGCTGGTCAACGGCATTGCCCCGGTAGACGCGGTATTCAATCCGGGTACTATCGGCACACTTTAA	MRLVQFELSNGERRVGVVEGDQVREVQGAATVRELALAAIEAGVKLEQQVNGLGLGASHDYAQLLGELRILPPLDHPDPAHLLVSGTGLTHLGSASARDKMHQQAGDEAAMTDTMRIFKWGVERGKPQAGQAGVQPEWFYKGDGSIVVRPGHPFPLPPFAEDAGEEPEISGLYVIGHDGKPYRLGFAVGNEFSDHVMERKNYLYLAHSKLRSCSFGPELRVGELPQHLSGTSRILRNGEVLWQNEFLSGEANMCHSLENLEFHHFKYSQFLRPGDVHVHFFGTATLSFADGIRTQPGDVFEISQAEFGAPLVNGIAPVDAVFNPGTIGTL	PGPT0017806_1	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_LYXONATE_DEGRADATION,PGPT0017806-2_keto3_deoxy_L_lyxonate_dehydratase-NA	NA	NA
D1-36_02845	1323	abaQ		Quinolone resistance transporter	ATGAGCCAGGAATTGCGGCTTATTCGTCGCATCACTCTCAAACTGATTCCCTTCCTGATCCTGCTGTACTTGATCGCCTACGTGGACCGCTCTGCGGTGGGCTTCGCCAAGTTGCACATGGGTGCCGACATCGGCATCGGCGACGCCGCCTATGGCCTGGGCGCAGGACTTTTCTTCATCGGTTATTTCCTGCTGGAAATCCCCAGCAACCTGATGCTCGAACGCTTCGGTGCCCGGCGCTGGTTCGCCCGGATCATGATCACCTGGGGCGCCATCACCATTGGCATGGCGTTTGTACAAGGGCCTCACAGTTTCTACGTGATGCGCTTTTTACTGGGTGCGGCCGAAGCCGGGTTCTTCCCGGGCGTGCTGTACTACATCACCCAATGGTTCCCGGTGCGCCATCGTGGCAAGATCCTCGGGCTGTTCATTCTTTCCCAACCCATCGCGATGATGATCACCGGCCCTGTGTCCGGTGGCTTGCTGGGCATGGATGGCATCCTTGGCCTGCATGGCTGGCAGTGGCTGTTCATCGTCATCGGCCTGCCGGCGGTGCTGTTGACCTGGCCCGTGCTGCGCTATCTGCCAGATGGCCCGCAACAAGTGAAGTGGATGGACCAGGCCGAGAAGGACTGGCTGACCGGCGAGCTGCAAAAAGACCTCGAGCAATACGGCCAGACGCGCCACGGCAATCCATTGCATGCGCTGAAAGACAAGCGAGTCTTGCTGCTGGCGCTGTTCTACCTGCCAGTGACCTTGAGCATCTACGGCCTGGGCTTGTGGTTGCCGACACTGATCAAGCAGTTTGGCGGCAGTGACCTGGTGACCGGTTTTGTGTCTTCCGTACCGTATATCTTCGGCATCATCGGCCTGTTGATCATTCCCCGCAGTTCCGATCGCTTGAATGATCGCTACGGTCACCTCGCCGTGTTGTATGTACTGGGCGCCATCGGCCTGTTCCTCAGTGCCTGGCTGTCGGTACCGGTGTTGCAACTGGCCGCGCTGTGCCTGGTGGCATTCGCGCTGTTCTCCTGCACAGCGGTGTTCTGGACCTTGCCAGGACGTTTCTTCGCTGGCGCCAGCGCGGCGGCGGGCATTGCGTTGATCAACTCGGTGGGCAACCTGGGTGGCTACATCGGGCCGTTCGTGATCGGTGCGCTGAAGGAGTACACCGGCAACCTGGCTTCGGGGCTTTATTTCCTGTCGTGCGTGATGGTGTTCGGCCTGGTGCTGACCGGCGTGGTCTATCGCCTGCTGGAGCGCAAGCATGTGCTGCCGGCGGATCAGTTCGCGGCGAGCGCCCGGGGGGCGACGCGTAGCTGA	MSQELRLIRRITLKLIPFLILLYLIAYVDRSAVGFAKLHMGADIGIGDAAYGLGAGLFFIGYFLLEIPSNLMLERFGARRWFARIMITWGAITIGMAFVQGPHSFYVMRFLLGAAEAGFFPGVLYYITQWFPVRHRGKILGLFILSQPIAMMITGPVSGGLLGMDGILGLHGWQWLFIVIGLPAVLLTWPVLRYLPDGPQQVKWMDQAEKDWLTGELQKDLEQYGQTRHGNPLHALKDKRVLLLALFYLPVTLSIYGLGLWLPTLIKQFGGSDLVTGFVSSVPYIFGIIGLLIIPRSSDRLNDRYGHLAVLYVLGAIGLFLSAWLSVPVLQLAALCLVAFALFSCTAVFWTLPGRFFAGASAAAGIALINSVGNLGGYIGPFVIGALKEYTGNLASGLYFLSCVMVFGLVLTGVVYRLLERKHVLPADQFAASARGATRS	PGPT0002325_611	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-ORGANIC_ACID_METABOLISM	P-SOLUBILISATION-TARTARIC_ACID_TRANSPORT,PGPT0002325-ttuB-K13021	NA	NA
D1-36_02846	1713	araC_2		L-arabonate dehydratase	ATGTCTGATAAGAAACCCTCCCTGCGCTCGGCCCAATGGTTTGGCACTGCCGACAAGAACGGCTTCATGTACCGCAGCTGGATGAAAAATCAGGGCATCGCCGACCATCAGTTCCACGGCAAGCCGATCATCGGCATCTGCAACACCTGGTCGGAGCTGACGCCGTGCAATGCGCACTTCCGCCAGATCGCCGAGCACGTCAAACGCGGCGTGATCGAGGCTGGGGGTTTCCCGGTGGAATTCCCGGTGTTCTCCAACGGCGAATCGAACCTGCGCCCGACCGCCATGCTGACCCGCAACCTGGCGAGCATGGACGTGGAAGAGGCGATTCGCGGCAACCCGATCGATGGCGTGGTGCTGCTCACCGGTTGCGACAAGACCACCCCGGCCTTGCTGATGGGCGCCGCCAGTTGCGACGTGCCGGCCATCGTCGTCACCGGTGGCCCGATGCTCAACGGCAAGCACAAGGGCCAGGACATCGGATCAGGCACGGTGGTTTGGCAGTTGAGCGAGCAGGTCAAGGCCGGCACCATCACCATTGACGACTTCCTCGCCGCCGAGGGCGGCATGTCCCGCTCGGCCGGCACCTGCAACACCATGGGCACGGCCTCGACCATGGCGTGCATGGCTGAAGCCCTCGGCACTTCCCTGCCCCACAACGCGGCGATTCCGGCCGTGGACGCCCGTCGTTATGTGCTGGCCCACATGTCCGGCATGCGCGCGGTGGAAATGGTCCGTGAAGACCTGAGATTGTCGAAGATCCTGACCAAGGAAGCCTTCGAAAACGCCATCCGCGTCAACGCCGCCATCGGCGGGTCGACCAACGCGGTGATTCACCTCAAGGCCATCGCCGGACGCATCGGCGTGCAACTGGACCTGGACGACTGGACCCGCATCGGTCGTGGCATGCCGACGATCGTCGACCTGCAGCCATCCGGGCGCTTCCTGATGGAAGAGTTCTACTATGCCGGCGGCCTGCCCGCCGTGCTGCGTCGCCTGGGTGAAGCCAACCTGATCCCTCACCCGAACGCGCTGACAGTCAACGGCAAGAGCCTCGGTGAAAACACCAAGGACGCGCCGATCTACGGCCAGGACGAAGTCATCCGCACCCTCGACAACCCGATCCGCGCCGACGGCGGTATCTGCGTGCTGCGCGGCAATCTGGCGCCATTGGGCGCAGTGCTCAAGCCATCCGCCGCCACGGCGCAACTGATGCAACATCGTGGTCGCGCGGTGGTGTTCGAGAACTTCGACGAGTACAAGGCCAGGATCAACGACCCGGAACTGGACGTCGATGCCGACTCGATCCTGGTCATGAAAAACTGCGGGCCGAAGGGTTATCCGGGCATGGCTGAAGTGGGCAACATGGGCTTGCCGGCCAAGCTGCTGCGCATTTCCGATGCGCGCATGAGCGGCACCGCCTACGGCACCGTGGTGTTGCACGTGGCGCCGGAGGCCGCGGCTGGCGGACCTTTGGCCGCCGTGAAAGAAGGCGACTGGATCGAACTCGATTGCGCCAGTGGCCGCTTGCACCTGGACATCCCGGACGCCGAACTCGCCGCGCGCCTGGCCGACCTCGCACCACCGCAACAATTGCTGGTGGGCGGCTATCGCCAGTTGTACATCGACCATGTGCTGCAAGCGGACCAGGGCTGCGACTTCGACTTCCTGGTGGGCTGCCGCGGCGCCGAGGTGCCGCGTCACTCCCACTGA	MSDKKPSLRSAQWFGTADKNGFMYRSWMKNQGIADHQFHGKPIIGICNTWSELTPCNAHFRQIAEHVKRGVIEAGGFPVEFPVFSNGESNLRPTAMLTRNLASMDVEEAIRGNPIDGVVLLTGCDKTTPALLMGAASCDVPAIVVTGGPMLNGKHKGQDIGSGTVVWQLSEQVKAGTITIDDFLAAEGGMSRSAGTCNTMGTASTMACMAEALGTSLPHNAAIPAVDARRYVLAHMSGMRAVEMVREDLRLSKILTKEAFENAIRVNAAIGGSTNAVIHLKAIAGRIGVQLDLDDWTRIGRGMPTIVDLQPSGRFLMEEFYYAGGLPAVLRRLGEANLIPHPNALTVNGKSLGENTKDAPIYGQDEVIRTLDNPIRADGGICVLRGNLAPLGAVLKPSAATAQLMQHRGRAVVFENFDEYKARINDPELDVDADSILVMKNCGPKGYPGMAEVGNMGLPAKLLRISDARMSGTAYGTVVLHVAPEAAAGGPLAAVKEGDWIELDCASGRLHLDIPDAELAARLADLAPPQQLLVGGYRQLYIDHVLQADQGCDFDFLVGCRGAEVPRHSH	PGPT0017465_291	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017465-araC-K13875	NA	NA
D1-36_02847	726	nanR_1		HTH-type transcriptional repressor NanR	ATGGATTACCGTAAACCCTCCGACCGCAAAAGCATGCATGCGCGCATCGTCCAGGAACTGGGCAGACAGATCGTTTCCGGCCGCTTCAAGCCCGACGACAAACTGCCCGCCGAAGCGTTGCTGTGCGAAGAGTACGCCGTCAGCCGCCCCGTGCTGCGCGAAGCCACGCGGGTGTTGGTCGCCAAGGGGTTGGTGTATTCACGGCCGCGAGTGGGCACGGTGGTCAAGGCCCGTCGGGAATGGCACATGCTCGACCCGGACGTACTGCACTGGCTGATGCAAAGCAGCCCGCAGAATGAATTCTTCGGCCTGCTTACCAGCGTGCGCAGCATCATCGAACCAGCCGCCGCCGCGCTCGCCGCGCAGTTCGCCACCGACGAAGACATTGCCGCCATCAGCGAAGCCTACCAACGCATGGAAGCGGCACCGACTCCCGAAGCGCTGCTGCAACCGGACCTGGATTTCCACAGCCGCATCGCCGACGCCACCCACAACGACCTGCTCGCCAACCTCTGCAACATGTTGTCCGTGGCCATTGCCGAAGCGCTCAAGCACTCCAACCAGCGGCCCAACCTGCATGAACTGGCGATGCCGCGACACAAGGCGATCCTCACCGCCATCGAGAACCGCGACGCCCTCGGCGCACGCCACGCCACCCTGGTGCAATTGGATGATGCCCGCAGCGCCTTGAACGTGGTGTTGGGCAGCGATCCCGCCCCGGCCTGA	MDYRKPSDRKSMHARIVQELGRQIVSGRFKPDDKLPAEALLCEEYAVSRPVLREATRVLVAKGLVYSRPRVGTVVKARREWHMLDPDVLHWLMQSSPQNEFFGLLTSVRSIIEPAAAALAAQFATDEDIAAISEAYQRMEAAPTPEALLQPDLDFHSRIADATHNDLLANLCNMLSVAIAEALKHSNQRPNLHELAMPRHKAILTAIENRDALGARHATLVQLDDARSALNVVLGSDPAPA	PGPT0018085_149	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0018085-dgoR-K19776	NA	NA
D1-36_02848	4686			hypothetical protein	ATGAACACGCTCTCCTCGGCCGGCAGCCCGCCGGCCGCCGCGCACACCATCAACCCGATGTCCGCCCGCCCGACCTTCAAGCAGGTTGTCCAGCAGGTGCTCGGGCAAGCCCTCAGGGAAAAATACCCCGCGCTGGCCATCGACCTCGACAAGACCCGACTGGCGACACCGAACGAGGCCGCCCAAGGCTGGAACTACCAACCCTTCATGCCCTTGGTGCTCGATTACCTGGCCCTCGGCACGCCAGTGGATTTCAGTTCACGGGGTAATTTGGACTGTTATCTGTCCGACTCGGTCCCCAGCCGTCTCTGGTCGGGCAACGACAGGCTCGACATGGAGGTTGTCGAGAAACTGCTGCATGAACTGCCCTGGACCGTGCCGATCGGGCTCGAAGAAGCATTGACCCGCTATTGGAACGGCGATGCCGAAACCATCTCCCACACCCGGGTGGCTGCCCGCACCAGCCGCTGGCATTGGCTGGGCGATACGCTGAGGATCACGTTGCATATCCGCAGGCTTCAGCAACCGGGCCTGACGGTGCCCGCCTGCGAGGCGCTGGACCAGATCGTCCGGTGGCCGGACCGCGAGCAGCGTTTCCAGCGCAATGCCTCTGCGGTATACGTGTATGGCCTGAACAGCGTGCTGACCAAAGGCGCCGTGTCCTCGGTGCTGCCGAGCATCGATCTTCTGCTCATGCATTACACCGAGTACGGGCTTACGCTCTTGCTATGCAGCCCGGGCGCCGCCATCCGACCTTTCGAATCGCTGGACGCCTTCAATCGCCATTGGCGCGAACAGATCGCCAATCGCTATGTGGTCGACACGATCACTTGCCAACGCTACGAGCTCGACGGCGACGTTTTCGACACCCAGGCCGCGCTGATCCTGGAGCAACAACTCACCGAGCTGAAGGCCGTGCAACTGCCGTCAAAAATCGGCCTGGCGAACCTCAGTGCGCTGTACAGCGACTTGAGCGACCCGACGCGATGCCTGCGCGATGCACCAAGGCTGACGCCTGAGACATCGGCTCGACTCGCGCCGCTACTCCCCGATTGGTTGAAAAATGCATCCCTGGCCGATTGCGGCCGATTCCAGCGGTACAGCCTGGCGCTGGCCAGTCTCAGGAGTCGGATTCAAGGCCCAAGCCACCCCAGCGACATCAAGGCCTTTGCCGCCGAGGCGCTGCTCACGCAAATGAACAAAACCAATGACATCAGCCCGGACAAGGCCGACCCCAGCCAGTACCAACCCGATGATATCGAGCTGATCTTCACAGTGTCCGCGGGATATCCCGGAACGGCCGGTATCAGCGAGCGCAGGACGATGAGCCTTACCCGCCTGGCCATCGACAATCTTGTCGCCCGTCCCAGCGGCCATCTGCAACTCGCCCACCGGCAGGGCCTGTCATTGCCGGCCTGGCTGACAACAGATTTCATCACCCGCAAGAACGGGCTGATCGAGCAAGTCGACATCGGCACGACCTATCCTCGCTACCTGCAACAAGAGCTGTTGGGCGACTCGTCCCAAGCCCGTGAGCAGCAAAAGATATTTGCCGAACAGGTCCCGGCGCAGTTACCGCTCGAAGCGCTGCGGCAGGTGCTCACCGAAAAAAACGGCATGACCCGCCAAGGGCTGCGCCTCATCGAAGCGGTTTTCCAACCCGACACCGAGGGTCGACAAGTCGACGGGCAGCCCGTTGTCATGCGTCACCTGGCCTTTCTGCGCAAACCCCAGGCCCAGCCCGACATCGCGAGCAACATGTTTATCGTCGAAGCACAGGACGCCAGCACCGGCCCGCATCTGTTGTACCGTCCGCTGTACGTGCCCTCGCTGATGGAGTTTCCCACCCGCCTGGCGCTGCAACAGGCCATCGCCACTACGGGTGACCTGCAAACCAGCGTCCTGACCTGGATGTCCGACGCGGCGCGCTCGGTGTATGCCAACGGTGGCTTTACGGAGCCGCACATCGTGCGTTTTTTCCAGGGCGACGAATTCAGCGCCCCCGAAAAACCCGTCCCGGCCACGCTTGCCACCGATGGCATGAATGACGAGTTGCTGCAGTACCTGCACCGAGGCGAACTGCTCCAGTACCTGTATGGCTGCAACGCCCAGGCCTTGATCACACAGGCCGACCGAAACTCCGTCTCGAACAGCGAAAGCCGCTGGGCGGCATTGCTGGAAGGCGGCAGCCTGTTGTTCAACACGTTGCTGTTCCCGTTGTTGCGCGGCCCGGCCATGTCCGCGGTCTGGTTATGGAGCTTGATGGCCAGCGCCAGTCGCGACATTCCCGCCCTGATCAGCGAAGACCCTGTGACACGAGAGTTGGCTGCCGTCGATTTTCTGGTCAACCTCGCCATGCTGACCAGCCAGTTGCACGCCAGCCCGCTGCCACCACGCGTGCCCATCGCCGAAACGGTCAAGGAGCAGGCCATGCAGCCCCCTGCTCCACGTGCCATGGCCGAACAATGGCCGGCGCCGCCGGTGCCGGCCATCCTGGAAGGATCCGTTTCCCTGCCCGACGCGCATTCCGGCGCCCTCAACCGCATTCTCGATTTCAGTTTCACCGGCGCCCGTCATCGCCTAACGTCGCAGCAACGCACCCAACTGGCACGCATGCAAGTACCCCGCCCCGAGTCTCTCCCCGAACCGATCCACTACGGTCCCTTCAAAGGTCTCTATGTGATCGGTAACAAATGGCACGCGCTGGTGAACGAAAACTTGTATCGAATCAGCCCGGAAGCGGACGGCAGCACCAGGATCGTCGACCCGCTCGACCGGCTCAGGATGGGCCCGGCGCTGCAAACGGATGGCCAAGGCAACTGGTCCATTGACCTGGGCCTGCGCCTCAGGGGGGGCATGCCGCCTAAACGCATTGCCGAGCAACGGCAACTGAACGTTAAGAGAACCATCACCTTGATCGAAGAGACAAATGCGATGAGGAAGCGCATTGATAGGTTGCAAACGGAGCTGGACGTCGCTCAACAGATACTCAACAGAGTAGAAAATGACAGCACCAAAACCGAAAACCAGCGGGGCCCCAGGCGCAAAGTGTTCTATGACCTGAACAAAGAACAGGTCGACATTTACCTGACAATGCTCGACAGGGCGCCGGAACATGCCAGGTTGGGTATCGATATTCCCGCCAAGGAAATCCGTGCGCTGATGGAAAATGTGGTCATCAATGCGCGCAGGGCGGTATTGGTCACTGATATGGAGCAACGCGCCCTCAATGCAGCCAACCCGAACTATGGGGAAGAATTGGTGTTGACGGCCGTCACTTCCAACATGAGGGACTATCTGAAGTTCCTCGACCAAACAGCCGAGATCAATGAGCAGGCCATCCACTGGCTGGAGCTCAAGGATGAATACCTCGACAGGCTATTGAACCTGGACAGCGCAGGCGCCCAGGCCTACGAGCGCCTGGTCAAAGACCGTCCCCTGGACGAGAGAAATGCCTTGGGCTCCAAGGCCCTGCAACTGGCGACATTGCCGTTGCTGTCGATCAAGCACCCGGAGAGCGACCTGCCCGACAGCTTGTTTCGTATCGTCCAGCCTTTGGGAGAGCAGGTGCGCTCGCACTCGGAACTGGGCATGTACGACCTGCCTGAGCTTGAGCATCTGGAAGTGTTGGAAAGCCTGACCGAGCGATACGCCAAGACGCTGGATGCCTTGCTCGGCATGAAGACGCTCTATATCGACGACATCAACGAAGCGTCCTTCGACAAGCTGATCTCACTGGTCGACAGCCTGTACCAAGACGCCTCCAGCAAGCTTGCCGCCGAAGTCAAACCCGAGCCAAAACCTCGCAAGCGCCCGTCAAAACGGCCTAAGTCGCCCTCCGGCCGTCCTCAGAAGAAGGTGATCAAGACGCGAAAGAACGGCGTGCTGATTGGCGACCTGAAGCCTGCGGGTACCAGCTTGCCGATCGAAGTCGTGGAGCTGCGCTCGCAAGCCAATGACGAGGTGCTTTCCACGTATTCGCAACACGACGATGTCTGGGATGTCGTCGAAGTGCGTCGACCACGCCCCGCTCCCCGAACGCGCTCCATCAAAGCAATCAAGGCCGATGCACAGGGCCTGCTGGGGCAGTTGGCGGAACGCCTGCGCCGCGCCGATGCCTACAAAAAGCGCTGCCGACATCCCCAGGAGATCGAAGAAATCATGAGCAACGAAGCCAGTCGCTTCCGTGTGCTCGCCGATGAACTGGACCGCGCCTTCACAGCCTCGAAAACATCTCGCACAGCGGCGGACCAGGCGCTGGGCAAGCAATTGTCGGATGCGATTTCAAGCCTGGGCAGCAAAGGCAGTGCCTTGCGCACCGAACTGAGCCTGCACCTGCCGCCCACCGACGGCAACCTTCGCTACTTGTTCGATAAAAACCTGATTCAAGTCGCGCTGCTCGGCAAGCGCCAGCCCTTGAAGGGCACCCGCAAGGACTTCCTCCAGGAATACGCGGTCAACGACCGCAAGGGTTTCCCGCTCTGGTATGGGCATTTTCACTATGAAACGGTGGATTCGCCGAAAGCTGACTACACCGTCGCCCACCTCAAGACCAAGGAACAACGCCACGAACACTATCATTCGCTGCTTGCCAAGGCCGATAGCCCTTATGCGGTTGTAAACGTGCACCGTGGACAGATCGGCCGATCATTGGCCCAAAGCAGGTTTCTACCGTTGGCGCCGTGA	MNTLSSAGSPPAAAHTINPMSARPTFKQVVQQVLGQALREKYPALAIDLDKTRLATPNEAAQGWNYQPFMPLVLDYLALGTPVDFSSRGNLDCYLSDSVPSRLWSGNDRLDMEVVEKLLHELPWTVPIGLEEALTRYWNGDAETISHTRVAARTSRWHWLGDTLRITLHIRRLQQPGLTVPACEALDQIVRWPDREQRFQRNASAVYVYGLNSVLTKGAVSSVLPSIDLLLMHYTEYGLTLLLCSPGAAIRPFESLDAFNRHWREQIANRYVVDTITCQRYELDGDVFDTQAALILEQQLTELKAVQLPSKIGLANLSALYSDLSDPTRCLRDAPRLTPETSARLAPLLPDWLKNASLADCGRFQRYSLALASLRSRIQGPSHPSDIKAFAAEALLTQMNKTNDISPDKADPSQYQPDDIELIFTVSAGYPGTAGISERRTMSLTRLAIDNLVARPSGHLQLAHRQGLSLPAWLTTDFITRKNGLIEQVDIGTTYPRYLQQELLGDSSQAREQQKIFAEQVPAQLPLEALRQVLTEKNGMTRQGLRLIEAVFQPDTEGRQVDGQPVVMRHLAFLRKPQAQPDIASNMFIVEAQDASTGPHLLYRPLYVPSLMEFPTRLALQQAIATTGDLQTSVLTWMSDAARSVYANGGFTEPHIVRFFQGDEFSAPEKPVPATLATDGMNDELLQYLHRGELLQYLYGCNAQALITQADRNSVSNSESRWAALLEGGSLLFNTLLFPLLRGPAMSAVWLWSLMASASRDIPALISEDPVTRELAAVDFLVNLAMLTSQLHASPLPPRVPIAETVKEQAMQPPAPRAMAEQWPAPPVPAILEGSVSLPDAHSGALNRILDFSFTGARHRLTSQQRTQLARMQVPRPESLPEPIHYGPFKGLYVIGNKWHALVNENLYRISPEADGSTRIVDPLDRLRMGPALQTDGQGNWSIDLGLRLRGGMPPKRIAEQRQLNVKRTITLIEETNAMRKRIDRLQTELDVAQQILNRVENDSTKTENQRGPRRKVFYDLNKEQVDIYLTMLDRAPEHARLGIDIPAKEIRALMENVVINARRAVLVTDMEQRALNAANPNYGEELVLTAVTSNMRDYLKFLDQTAEINEQAIHWLELKDEYLDRLLNLDSAGAQAYERLVKDRPLDERNALGSKALQLATLPLLSIKHPESDLPDSLFRIVQPLGEQVRSHSELGMYDLPELEHLEVLESLTERYAKTLDALLGMKTLYIDDINEASFDKLISLVDSLYQDASSKLAAEVKPEPKPRKRPSKRPKSPSGRPQKKVIKTRKNGVLIGDLKPAGTSLPIEVVELRSQANDEVLSTYSQHDDVWDVVEVRRPRPAPRTRSIKAIKADAQGLLGQLAERLRRADAYKKRCRHPQEIEEIMSNEASRFRVLADELDRAFTASKTSRTAADQALGKQLSDAISSLGSKGSALRTELSLHLPPTDGNLRYLFDKNLIQVALLGKRQPLKGTRKDFLQEYAVNDRKGFPLWYGHFHYETVDSPKADYTVAHLKTKEQRHEHYHSLLAKADSPYAVVNVHRGQIGRSLAQSRFLPLAP				NA	NA	NA	NA	NA
D1-36_02849	2376			hypothetical protein	ATGAGCAGTCATCATCAAGACAAGGCGACGTTTCTCGAACGCCTGATTTTCAACAACCGCCCGGCAGTGATCGTCATTTGCCTGCTGGTCAGCATCTTCCTTTTCTGGCAAGCGACGCTGATCCGGCCCTCCACCAGTTTCGAAAAAATGATCCCCCTCGAGCATCCTTTCATCGAAAAGATGCTCGAACACCGCAACGATCTGGCGAACCTCGGCAACACGGTGCGGATCTCCGTTGAAGCCACTGACGGCGACATTTTCTCCAAGGAATACATGGAGACCCTGCGCCAGATCCACGATGAAGTGTTCTATATCTTCGGCGTTGACCGCTCCGGGCTCAAGTCGCTGTGGAGCCCGAGCGTGCGCTGGACCGAGGTGACGGAGGAGGGCTTCGCCGGCGGTGAGGTGATTCCCCAGAGCTACGATGGCTCGGCGGACAGCCTCGACTTGTTGCGCAACAACGTGCTCAAGTCCGGCCAGGTCGGGCGCCTGGTGGCGAACGACTTCAAATCGAGCATCATCGATATCCCGCTGCTGGAGTCCTACCCGGACCCGCAAGACCAAGGCAAGTTGCTCGCCCTGGATTACCGCAAGTTTTCCCATGAGCTTGAAGACAAGATCCGCAACAAGTTCGAAGCCCAGAACCCCAATGTGCAGATCCATATCGTCGGTTTCGCCAAGAAGGTCGGCGACCTGATCGACGGCCTGGTCATGGTGGTGATGTTCTTTGGCGTGGCCTTCGTGATTACGTTGATCCTCCTGTACTGGTTCACCAACTGCATGCGCAGCACCGTGGCGGTGTTGAGCACCACATTGGTGGCGGTGGTCTGGCAGTTGGGGCTGATGCACGCGGCGGGCTTTGGCCTTGACCCCTATTCGATGCTGGTGCCGTTCCTGATCTTTGCCATCGGCATTTCCCATGGCGTGCAGAAAATCAACGGCATCGCCTTGCAGTCCAGCGAAGCGGACAACGCGCTGACGGCTGCCCGGCGTACCTTCCGCCAGTTGTTCCTGCCGGGGATGATCGCGATCCTGGCCGATGCCGTCGGCTTCATTACCTTGTTGATCATCGACATCGGCGTGATTCGCGAACTGGCCATCGGCGCCTCCATCGGTGTGGCGGTGATCGTGTTCACCAACCTGATCCTGTTGCCGGTGGCGATTTCCTATGTAGGCATCAGCAAGCGGGCCGTCGAGCGCAGCAAGAAAGACGCGACCCGCGAGCATCCGTTCTGGCGCCTGCTGTCGAAGTTCGCCAGTGCCAAGGTCGCGCCGGTGTCGATTGCCTTGGCGGTACTCGCTTTCGGCGGCGGCCTCTGGTACAGCCAGAACCTGAAGATCGGCGACCTGGACCAGGGCGCACCCGAGCTGCGACCGGATTCGCGCTACAACCAAGACAACAATTTCATCATCAGCAACTATTCCACCAGTTCCGATGTGCTGGTGGTGATGGTCAAGACCAAGGCCGAAGGCTGCTCGCGCTATGAAGCCATGGCGCCGATCGACGAGCTGATGTGGAAGATGCAGAACACCGAGGGCGTGCAATCGGCGATTTCCCTGGTGACCGTGTCCAAGCAAATGATCAAGGGCATGAACGAGGGCAACCTGAAATGGGAAACCCTTTCCCGTAACCCCGATGTGCTCAACAGCTCCATTGCCCGGGCCGATGGCCTGTACAACAACAGCTGTTCCCTGGCGCCGGTGCTGGTGTTCCTCAACGACCACAAGGCCGAGACCCTGGACCGCGCGGTGAAGGCGGTGCAGGACTTCGCCAAGGAGAACAACCGCGATGGCCTGGAATTCATCCTGGCCGCCGGTAACGCCGGCATCGAGGCCGCCACCAACGAAGTGATCAAGGAATCGGAGCTGATCATCCTCATCCTGGTTTATATCTGCGTCGCGACGATGTGCATGATCACCTTCCGCTCCTGGCCGGCGACGCTGTGCATCGTCCTGCCGCTGGTGCTGACGTCGGTGTTGGGCAACGCGTTGATGGCCTTCATGGGGATTGGCGTGAAGGTCGCGACCCTGCCGGTGGTGGCCTTGGGTGTAGGGATCGGCGTGGACTACGGCATTTACATCTACAGTCGCCTGGAGAGTTTCCTGCGGGCCGGCCTGCCGTTGCAGGAAGCGTATTACCAGACGCTGAAGTCCACCGGCAAAGCGGTGCTGTTCACCGGGCTGTGCCTGGCGATCGGGGTGTGCACGTGGATCTTCTCGGCCATCAAGTTCCAGGCTGACATGGGCTTGATGCTGACGTTCATGCTGCTGTGGAACATGTTCGGCGCGTTGTGGCTGCTGCCGGCCTTGGCGCGCTTTCTGATCAAGCCGGAAAAACTGGCGGGGCAGAAGGGCAATTCGCTGTTCGCCCATTGA	MSSHHQDKATFLERLIFNNRPAVIVICLLVSIFLFWQATLIRPSTSFEKMIPLEHPFIEKMLEHRNDLANLGNTVRISVEATDGDIFSKEYMETLRQIHDEVFYIFGVDRSGLKSLWSPSVRWTEVTEEGFAGGEVIPQSYDGSADSLDLLRNNVLKSGQVGRLVANDFKSSIIDIPLLESYPDPQDQGKLLALDYRKFSHELEDKIRNKFEAQNPNVQIHIVGFAKKVGDLIDGLVMVVMFFGVAFVITLILLYWFTNCMRSTVAVLSTTLVAVVWQLGLMHAAGFGLDPYSMLVPFLIFAIGISHGVQKINGIALQSSEADNALTAARRTFRQLFLPGMIAILADAVGFITLLIIDIGVIRELAIGASIGVAVIVFTNLILLPVAISYVGISKRAVERSKKDATREHPFWRLLSKFASAKVAPVSIALAVLAFGGGLWYSQNLKIGDLDQGAPELRPDSRYNQDNNFIISNYSTSSDVLVVMVKTKAEGCSRYEAMAPIDELMWKMQNTEGVQSAISLVTVSKQMIKGMNEGNLKWETLSRNPDVLNSSIARADGLYNNSCSLAPVLVFLNDHKAETLDRAVKAVQDFAKENNRDGLEFILAAGNAGIEAATNEVIKESELIILILVYICVATMCMITFRSWPATLCIVLPLVLTSVLGNALMAFMGIGVKVATLPVVALGVGIGVDYGIYIYSRLESFLRAGLPLQEAYYQTLKSTGKAVLFTGLCLAIGVCTWIFSAIKFQADMGLMLTFMLLWNMFGALWLLPALARFLIKPEKLAGQKGNSLFAH				NA	NA	NA	NA	NA
D1-36_02850	1053	hcf136_2		Ycf48-like protein	ATGAATGAGCCTGTCATGGCTGTGGGCCGCTGCCGGCCGCCGATGCTGCGCCGTGTGGCGTTGCTGGCCTCGGCGCTCTCACTGCTGGGCTCCGCCGTCTTGTCGGCACCCGTGCTGGCGGTGGCCGCATCGACATCCGATGTCATCTATTCCGTCGAGTCGGCAAAGGCCAGCAAGACCCTGATGCTTGATGTGGTCCAGGCCGGCCAGCGACTGGTGGCGGTCGGTGACCGTGGCCACATCGTCTATTCCGATGACCAGGGTAAATCCTGGACCCAGGCCAAGGTTCCGACCCGCCAGCTGCTCACTGCGGTGTTCTTCGTGGATGACAAGCATGGCTGGGCCGTAGGACACGACGCGCAGATCCTCGCCAGCGTCGACGGCGGCACCACCTGGACCAAGCAATTCGAAGACCTGCCTCGCGAGGCGCCCTTGCTGGACGTCTGGTTCCAGGACCCCAGCCATGGGTTCGCCGTGGGTGCCTACGGTGCGCTGTACGAGACCAACGATGGCGGCAAGCACTGGGAAGACGCCAGCGACCGCCTCGACAATGAAGATCAATACCACCTCAATGCTGTTACCGCCGTGAAAGATACAGGGCTGTTCATCGTCGGCGAGGCCGGCAGCATGTTCCGTTCCTCCGATTGGGGGCAGACCTGGGAAAAAATCCAAGGCCCTTATGAAGGCTCGCTGTTTGGCGTCGTTGGCACAGCCCAGCCTTCGACCCTGTTGGCCTACGGCCTTCGCGGCAATCTTTATCGTTCCACCGATTTTGGCACGACCTGGGAGCAGGTCGAGCTCAAGGCCGCCCGTGGCGCGCTGGAGTTCGGCTTGTCGGGTGCAACGCTGTTGCCGGACGGCTCGATCGTCATCGTCGGCAACGGTGGCAGCGTGATCCGCAGCACCGACGATGGCGTGACGTTCAGCGTGTTCAACCGTCCGGATCGAATTTCCGTGGCGGCCGTCACGTCGGCGGGCAACGGTAACCTGATCTTGGCGGGACAGGGCGGTGTTCGCGCCACCACGTCCACTGGCGCCGAATTGAGCAAATGA	MNEPVMAVGRCRPPMLRRVALLASALSLLGSAVLSAPVLAVAASTSDVIYSVESAKASKTLMLDVVQAGQRLVAVGDRGHIVYSDDQGKSWTQAKVPTRQLLTAVFFVDDKHGWAVGHDAQILASVDGGTTWTKQFEDLPREAPLLDVWFQDPSHGFAVGAYGALYETNDGGKHWEDASDRLDNEDQYHLNAVTAVKDTGLFIVGEAGSMFRSSDWGQTWEKIQGPYEGSLFGVVGTAQPSTLLAYGLRGNLYRSTDFGTTWEQVELKAARGALEFGLSGATLLPDGSIVIVGNGGSVIRSTDDGVTFSVFNRPDRISVAAVTSAGNGNLILAGQGGVRATTSTGAELSK				NA	NA	NA	NA	NA
D1-36_02851	2658	pepN	COG0308	Aminopeptidase N	ATGCGCACCGAACAACCGAAGATGATCTACCTCAAGGACTATCAGGCCCCCGAGTACCTGATCGACGAAACACACCTGACCTTCGAGTTGTTCGAGGACCACAGCCTGGTCCATGCGCAACTGGTGATGCGCCGCAACCCCGAGCGCGGTGCCGGACTGCCGCCGCTGGTGCTCGATGGCCAGCAGTTGGAATTGCTGTCGATCAAGCTCGACGACGCCGACCTGGGGCAGGGCGACTACCAGCTCGATGACAGCCACCTGACCTTGCAGCCCAAGGCCCAGGCGTTCACGGTCGATACCACTGTGCGGATCCATCCGCAAACCAATGCAGCGCTGGAAGGCCTCTATAAATCCGGCAGTATGTTTTGCACCCAGTGCGAGGCCGAGGGGTTCCGCAAGATCACTTACTACCTCGACCGCCCTGATGTGATGAGCAAGTTCACCACCACGGTAGTGGCCGAGCAGCACAGCTATCCGGTGCTGCTGTCCAACGGCAACCCGATTGCCAGCGGCCCCGGCGAAGACGGTCGGCACTGGGCGACCTGGGAAGATCCGTTCAAGAAGCCCGCCTACCTGTTTGCACTGGTGGCCGGTGACCTGTGGTGCGTCGAAGACACGTTCACCACCATGACCGACCGCACCGTGGCGCTGCGCATCTACGTCGAGCCAGAAAACATCGACAAATGCCAGCACGCCATGACCAGCTTGAAGAAGTCGATGCGCTGGGACGAAGAGGTGTACGGTCGCGAATACGACCTCGACATTTTCATGATTGTCGCGGTCAACGACTTCAACATGGGCGCCATGGAAAACAAGGGCCTCAATATCTTCAACTCCAGCGCCGTGCTGGCCCGTGCCGAAACCGCCACCGACGCCGCGCACCAGCGGGTCGAGGCGATCGTTGCCCACGAATATTTCCATAACTGGTCGGGCAACCGCGTGACCTGCCGCGACTGGTTCCAGTTGTCGCTCAAGGAAGGCTTCACGGTGTTCCGCGACGCCGGCTTCTCGGCGGACATGAACTCGGCCACCGTCAAGCGTATCCAGGACGTGGCGTACCTGCGTACCCACCAGTTTGCCGAGGACGCGGGGCCAATGGCCCACCCGGTGCGCCCGGACAGCTTCATCGAGATCTCCAACTTCTATACCTTGACCGTGTACGAAAAGGGCTCGGAAGTGGTCGGCATGATCCACACCCTGCTGGGGGCCGAAGGCTTCCGCAAGGGCAGCGACCTGTATTTCGAGCGTCACGACGGCCAGGCCGTAACCTGCGACGATTTCATCAAGGCCATGGAAGATGCCAACGGTGTCGACCTGAGCCAGTTCAAGCGCTGGTATAGCCAGGCAGGTACCCCACGGCTGGTGGTGAGCGAGTCCTACGACGCAGCGGCCAAGACCTACAGCCTGACCTTCCGCCAGAGCTGCCCGCCAACCCCGGACAAAGCGGAAAAACTGCCGTTCGTGATTCCCGTCGAGTTGGGCCTGTTGGACAGCCAGGGCGGTGAAATGCCCCTACGCCTGAACGGCGAAGCGGCGGCCATCGGCACCACTCGGGTGATCTCGGTGACCGAAGCCGAGCAGACCTTCACCTTCGTCGATATCGCCGAGAAGCCTCTGCCTTCGTTGCTGCGCGGTTTCTCCGCACCGGTGAAACTGAGCTTCCCATACGACCGCGACCAACTGATGTTCCTGATGCAGCACGACAGCGATGGCTTCAACCGCTGGGATGCCGGCCAGCAGTTGTCGGTGCAGGTGTTGCAGGAACTGATCGGCCAGCACCAGCGGGGCGAGAGCCTGGTGCTGGATCCACGGCTGGTCAGCGCATTGCGCACCGTGCTGTCGGATGAATCGCTGGATCAGGCGATGGTCGCGGAAATGCTCTCGCTGCCAAGCGAAGCCTACCTGACCGAAATCAGCGAAATCGCCGACGTCGAGGCGATCCACGTCGCCCGCGAGTTTGCCCGCCGGCAATTGGCGCAGGACCTGTTCGAAGCCTTATGGCTGCGCTATGAGGCCAATCGCGACCTGTCCCGGCGCACGCCTTACGTGGCCGAGGCTGAACACTTCGCCCGTCGCGCGTTGCAGAACATTGCGCTGTCGTACCTGATGCTGACCGACAAACCGCAAGTGTTGAGCGCGACGCTCGATCAGTTCGACACTGCCGACAACATGACCGAGCGCCTCACGGCGCTGGCGGTGCTGGTCAACTCTCCGTTCGAAACCGAGAAGGCTCGCGCCCTGGAAGTGTTCGCGGAAAACTTCAAGGGCAACCCACTGGTCATGGACCAATGGTTCAGCGTACAGGCGGGCAGCCCGTTGCCGGGTGGCCTGGCGCGGGTCAAGGCGCTGATGGAGCACCCTGCGTTCAACATCAAGAATCCGAACAAGGTGCGGGCGTTGATCGGCGCGTTCGCCGGGCAGAACCTGATCAACTTCCACGCCGCCGACGGTTCGGGCTACCGCTTCCTGGCGGATCTGGTCATCCAGCTCAACGGTTTCAACCCGCAGATCGCCTCGCGGCAACTGGCGCCGCTGACCCGGTGGCGCAAATACGACAGTGCCCGCCAGGCACTGATGAAGGCCGAGCTGGAGCGCATCCTGGCGTCTGGCGGGTTGTCGGCCGATGTGTTTGAAGTGGTGAGCAAGAGCCTGGCTTGA	MRTEQPKMIYLKDYQAPEYLIDETHLTFELFEDHSLVHAQLVMRRNPERGAGLPPLVLDGQQLELLSIKLDDADLGQGDYQLDDSHLTLQPKAQAFTVDTTVRIHPQTNAALEGLYKSGSMFCTQCEAEGFRKITYYLDRPDVMSKFTTTVVAEQHSYPVLLSNGNPIASGPGEDGRHWATWEDPFKKPAYLFALVAGDLWCVEDTFTTMTDRTVALRIYVEPENIDKCQHAMTSLKKSMRWDEEVYGREYDLDIFMIVAVNDFNMGAMENKGLNIFNSSAVLARAETATDAAHQRVEAIVAHEYFHNWSGNRVTCRDWFQLSLKEGFTVFRDAGFSADMNSATVKRIQDVAYLRTHQFAEDAGPMAHPVRPDSFIEISNFYTLTVYEKGSEVVGMIHTLLGAEGFRKGSDLYFERHDGQAVTCDDFIKAMEDANGVDLSQFKRWYSQAGTPRLVVSESYDAAAKTYSLTFRQSCPPTPDKAEKLPFVIPVELGLLDSQGGEMPLRLNGEAAAIGTTRVISVTEAEQTFTFVDIAEKPLPSLLRGFSAPVKLSFPYDRDQLMFLMQHDSDGFNRWDAGQQLSVQVLQELIGQHQRGESLVLDPRLVSALRTVLSDESLDQAMVAEMLSLPSEAYLTEISEIADVEAIHVAREFARRQLAQDLFEALWLRYEANRDLSRRTPYVAEAEHFARRALQNIALSYLMLTDKPQVLSATLDQFDTADNMTERLTALAVLVNSPFETEKARALEVFAENFKGNPLVMDQWFSVQAGSPLPGGLARVKALMEHPAFNIKNPNKVRALIGAFAGQNLINFHAADGSGYRFLADLVIQLNGFNPQIASRQLAPLTRWRKYDSARQALMKAELERILASGGLSADVFEVVSKSLA				NA	NA	NA	NA	NA
D1-36_02852	831			hypothetical protein	TTGATCGAGATTGGCCGCGGTGCAATCAGCAAGATGTCGGCGCGCCTTGACGGGCCGACTGTTCAATATGCCTTTCGCCTGGGTGACGTCGAGGTGCCGGTCAATCCGTTGATCGGCAGCACGATTCGCCTGCAATACCTTGGTGCGATCCACTGCACCCATTGCGGACGCCGGACCAAGACCAGTTTCAGCCAGGGTTATTGCTACCCTTGCATGACCAAGCTGGCCCAGTGCGACCTGTGCATCATGAGCCCCGAGCGCTGCCATTTCGACGCGGGCACCTGCCGCGACCCAGCGTGGGGCGAGCAGTTCTGCATGACCGATCACGTGGTCTACCTCGCCAATTCGTCGGGCGTGAAAGTCGGCATCACCCGCGCCACGCAGTTGCCGACCCGCTGGCTCGACCAGGGTGCGAGCCAGGCGCTGCCGATCCTGCGGGTCGCCACCCGCCAGCAGTCGGGGTTCGTCGAGGACCTGTTCCGCAGCCAGGTGGCGGACAAGACCAACTGGCGCGCCTTGCTCAAGGGCGACGCGGCGGCGGTGGACTTGCCCGCCATCCGCGATTCCCTCTTCGAAAGCTGCGCCCCGGGCTTGCAGGGCCTTCAGGAACGATTCGGCTTGCAGGCGATCCAGACCATAGCGGACGTCGAACCCATCGAGATCCGTTACCCGGTGGAGCAATACCCGGCCAAGATCGTCAGCTTCAACCTGGACAAGGACCCGATCGCCGAGGGCACGCTGTTGGGAATCAAGGGCCAATACCTGATTTTCGACACCGGCGTGATCAATATTCGTAAATACACGGCTTACCAGCTCGCCGTGCATCAGTAG	MIEIGRGAISKMSARLDGPTVQYAFRLGDVEVPVNPLIGSTIRLQYLGAIHCTHCGRRTKTSFSQGYCYPCMTKLAQCDLCIMSPERCHFDAGTCRDPAWGEQFCMTDHVVYLANSSGVKVGITRATQLPTRWLDQGASQALPILRVATRQQSGFVEDLFRSQVADKTNWRALLKGDAAAVDLPAIRDSLFESCAPGLQGLQERFGLQAIQTIADVEPIEIRYPVEQYPAKIVSFNLDKDPIAEGTLLGIKGQYLIFDTGVINIRKYTAYQLAVHQ				NA	NA	NA	NA	NA
D1-36_02853	261			hypothetical protein	ATGTCTTCCTTCAACGAAATGATCCAGAACATCACCCCCGACATCTACCGCAGCCTGAAGTTGGCCGTGGAGATCGGTAAATGGGCCGATGGCAACAAGCTCACCGCCGAGCAGCGCGAGCTGTCGCTGCAGGCGATGATCGCCTGGGAAATCCAGAACCTGCCCGAGGAAGAGCGCACCGGCTACATGGGCCCGCAGGAATGCCAGTCCAAAGCCATCGAAGTGCCCAATATCCTGTTCAAGTCGGATGCCATCCATTGA	MSSFNEMIQNITPDIYRSLKLAVEIGKWADGNKLTAEQRELSLQAMIAWEIQNLPEEERTGYMGPQECQSKAIEVPNILFKSDAIH				NA	NA	NA	NA	NA
D1-36_02854	873	glpG	COG0705	Rhomboid protease GlpG	ATGAGCGTCGTCGCGGTCCTGCGCCTGCCCCTGGCGGTAGACCTCAGCGGTTTCGTCAAACTGCTGCAACGCATGCAGGTCCCCCATCGCGTCAGTGAAGAGGCGGGTGAGCAGGTGCTCTGGGTGCCGAACGAGATCAGTGAAGACGTGCGCTCGTTGTATGCGCGATTCCCTGCTGGCGATCCCGAGCAGCAGCTGGAACTGCCGGACAAGGGCAGCACTTCCCGGCGAACCGGGTTCGTGCAACAGCTGACCCGCAGTCCGGTGACGGCCCTGGTATTGCTGCTGAGCCTGATCGTCAGCGCCGTGACGCTGCTGGGGGACAATCTTGAAACCTTGCGCTGGCTGACCTTCCTCCAGTTTCGCATCGTCGGCGAGTACATCCAGTTCACACCGCTGGCCGATAGCCTGGCGGCGGGGCAGTGGTGGCGCCTGGTGACGCCGATGCTGATTCACTTCGGCTTCCTGCACATCGCCATGAATGGCATGTGGTATTGGGAGCTGGGGCGGCGGATCGAAGCGCGCCAGGGCGGCATCAACCTGTTGGGGCTGACGCTGCTGTTCAGCCTTGTCTCCAATTTCGCCCAGTACTTTTTCAGTGGCCCGACGCTGTTCGGCGGGTTGTCGGGAGTGTTGTACGGCCTGCTGGGGCATTGCTGGATCTACCAACTGCTCGCACCGAACCCGGCCTATCATTTGCCCCGAGGGGTGCTGGTGATGATGCTGGTGTGGTTGCTGCTGTGCCTGTCCGGGCTGGTTTCGCTGATCGGTTTCGGCGAGATCGCCAACGCGGCCCATGTCGGTGGGCTACTCGTCGGCTGCTTCACCGGGCTGTTGGGCGGGCTGTTCGCTCGCCGTAAAATGTCTCTTTGA	MSVVAVLRLPLAVDLSGFVKLLQRMQVPHRVSEEAGEQVLWVPNEISEDVRSLYARFPAGDPEQQLELPDKGSTSRRTGFVQQLTRSPVTALVLLLSLIVSAVTLLGDNLETLRWLTFLQFRIVGEYIQFTPLADSLAAGQWWRLVTPMLIHFGFLHIAMNGMWYWELGRRIEARQGGINLLGLTLLFSLVSNFAQYFFSGPTLFGGLSGVLYGLLGHCWIYQLLAPNPAYHLPRGVLVMMLVWLLLCLSGLVSLIGFGEIANAAHVGGLLVGCFTGLLGGLFARRKMSL				NA	NA	NA	NA	NA
D1-36_02855	972	apaH_1		Bis(5'-nucleosyl)-tetraphosphatase, symmetrical	ATGCTCGATCCCGCGCGCAGTTACGACCTGATCGGCGACGTGCACGGATGCGCCTTGACCCTGGAACACCTGCTTGACCGGCTCGGTTACCACAAGCAGGGCGGGGTCTGGCGGCATCCGTCGCGCATGGCTGTGTTCCTTGGAGATATCATCGACCGTGGCCCGCGTATTCGCGAGGCGCTGCACATCGTCCACGACATGGTGCAGGCCGGCCAGGCGCTGTGCATCATGGGCAACCACGAATTCAATGCGCTGGGTTGGAGCACGCCGGCACTGCCGGGCAGCGGCCAGCGCTACGTGCGTGAACACACGCCGCGCCATGCCCGCCTGCTCAACGAGACGCTGAGCCAGTTCGAGCAGCACCCTGGCGAGTGGCGCGATTTCCTCAAATGGTTCTATGAGCTGCCGTTGTTTGTCGATGCCGGCCGTTTCCGGGTCGTGCACGCTTGCTGGGATGCCGGCCTCATCGAACCCTTGCGTGGCCTGTTTCCGAATGGCTGCGTCGACGAGCATTTTCTCCAGGCGTCGGCCGAATCCGGCAGTTTCGCCTGTACGGTCTTCGACCGCCTGCTGCGGGGCACCGACATGCGCCTGCCCCATGGCATGACCCTGACGGGTGGCGATGGCCTGACGCGGGCATTCTTCCGCACCAAGTTCTGGGAAGACAACCCGCAGACCTACGGCGACATCGTGTTCCAGCCTGATGCATTGCCAGAACCTGTGGCCCGCACGCCATTGTCCCCGGATGAAAAAAACAACCTGCTGCGTTATGGCGTCGATCAGCCGATGTTGTTCGTCGGCCATTATTGGCGCAGCGGCAAGCCTGCGCCGATCCGCTCGAACCTGGCGTGCCTGGACTACAGCGCGGTGCTCTATGGCAAGCTCGTTGCGTATCGCCTCGACCAGGAAACCCGCCTGGATCCGCACAAGTTCGTCTGGGTCGATGTCGAGCGACCGGAGGTGGTGCAATGA	MLDPARSYDLIGDVHGCALTLEHLLDRLGYHKQGGVWRHPSRMAVFLGDIIDRGPRIREALHIVHDMVQAGQALCIMGNHEFNALGWSTPALPGSGQRYVREHTPRHARLLNETLSQFEQHPGEWRDFLKWFYELPLFVDAGRFRVVHACWDAGLIEPLRGLFPNGCVDEHFLQASAESGSFACTVFDRLLRGTDMRLPHGMTLTGGDGLTRAFFRTKFWEDNPQTYGDIVFQPDALPEPVARTPLSPDEKNNLLRYGVDQPMLFVGHYWRSGKPAPIRSNLACLDYSAVLYGKLVAYRLDQETRLDPHKFVWVDVERPEVVQ				NA	NA	NA	NA	NA
D1-36_02856	891	nadK	COG0061	NAD kinase	ATGGAGCAATTTCGCAATATCGGCATCATCGGTCGCCTGGGCAGTTCACAGGTGCTGGACACCGTTCGCCGTCTCAAACGCTTCCTCCTGGAGCGGCACCTGCATGTGATCCTCGAAGACACCATCGCCGAAGTGCTGCCGGGCCACGGTCTGCAGACATCGTCGCGCAAGATGCTCGGCGAAGTCTGCGACATGGTCATCGTCGTCGGCGGCGACGGCAGCCTGCTGGGCGCCGCCCGGGCCTTGGCGCGGCACAACATTCCGGTACTGGGCATCAACCGTGGCAGCCTTGGCTTCCTCACCGATATCCGCCCGGACGAGCTGGAAATCAAGGTTGCCGAGGTACTGGACGGCCATTATCTGGTGGAGAACCGCTTCCTGCTGCAAGCCGAGGTCCGTCGTCACGCCGAGGCCATCGGCCAAGGCGATGCCCTCAACGACGTGGTGCTGCACCCCGGCAAGTCCACCCGCATGATCGAATTCGAGCTGTACATCGATGGCCAGTTCGTCTGCAGCCAGAAGGCCGACGGCCTGATCGTCGCGACGCCCACCGGTTCCACCGCCTATGCGCTGTCGGCGGGCGGGCCGATCATGCATCCCAAGCTCGACGCTATTGTGATTGTGCCCATGTACCCCCATACCTTGTCTGGGCGACCCATCGTGGTCGATGGCAACAGTGAACTGAAAATCGTCGTGTCCAAGGATATGCAGATCTACCCGCAAGTATCATGCGACGGCCAGAACCATTTCACCTGCGCGCCAGGTGACACCATCACCGTCAGCAAAAAGGCCCAGAAGCTGCGCCTGATCCACCCGTTGGATCACAACTACTACGAAGTCTGCCGGACCAAGCTCGGCTGGGGCAGTCGTCTGGGGGGTGGAGGCGACTGA	MEQFRNIGIIGRLGSSQVLDTVRRLKRFLLERHLHVILEDTIAEVLPGHGLQTSSRKMLGEVCDMVIVVGGDGSLLGAARALARHNIPVLGINRGSLGFLTDIRPDELEIKVAEVLDGHYLVENRFLLQAEVRRHAEAIGQGDALNDVVLHPGKSTRMIEFELYIDGQFVCSQKADGLIVATPTGSTAYALSAGGPIMHPKLDAIVIVPMYPHTLSGRPIVVDGNSELKIVVSKDMQIYPQVSCDGQNHFTCAPGDTITVSKKAQKLRLIHPLDHNYYEVCRTKLGWGSRLGGGGD	PGPT0013490_2833	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013490-ppnK-K00858	NA	NA
D1-36_02857	951			hypothetical protein	ATGATCCTGTTCCCTGAGTTGCTGGACCTGCCCCGCCGCCTGCGCCATCCCGAAGTGCGGGATCTGGCGTGGGTGATCGTCGCCCCACCGATGCTCATCGACACCCCTTGGCCCCAGCGTCACCCGCTGGCGGGCAGCGACTGGGTGCAGCAACCCCATCGATTGGAGCATTGGCTTCGCCAACTGGACCGCGACAGCTACCCGCTGCTGCAATGCCTGTCCCAAGGTCGGACGCGGCGCCTGGGCCTGTATTACGAAAGGCTGTGGCAGTTTGCCGTGCAACACGCGCCGGGCATCGAACTGATCGCGGCGAACCTGCCGATCCGTCGCGAAGGCCATACGCTGGGGGAACTGGACCTGCTGCTGCGCGATGGCGAAGGTGTGCACCACTTGGAACTGGCGATCAAGCTGTACCTGGGCCCGCAACAGGGCAACGGCCACGATACTGCGCAATGGCTCGGCCCCGGCTGCCATGACCGTCTCGACCGCAAGCTGGCGCACCTGCGCGAGCACCAACTGCCGATTTCAGCCCGCCCGGAAAGTCGTCAAGCCCTGGCTGCGCTGGGCATCGAATCGTTTCGCCCACACCTATGGCTCGGCGGTTATCTGCTCTACCCCTGGCCCGGCGAGGCCGAACCACCGAGCGGCGCGCACCCCAGGCATTTGCGCGGCCGTTGGCTGCATCAACGCGATTGGCCTGGGTTCATCGGCCAACGGCCTCCGGGCCGCTGGCAGCCCCTGCCCCGCGCCGCCTGGCTGGCCCCGGCCCATTATCCGCCAGACCAGGTCTGGACTGCCGCGCAACTGGACGCCTGGCGAACCGCACTCGACCCCATGGCGCCGGCACAACTGATGGTGCGCCTGACGGAAAATGCCGAGGGCGAATGGGAAGAAGCCGAGCGGGCGTTCCTTGTGGCGGATCTTTGGCCGGATGTGCCGGGCAACGGCTAA	MILFPELLDLPRRLRHPEVRDLAWVIVAPPMLIDTPWPQRHPLAGSDWVQQPHRLEHWLRQLDRDSYPLLQCLSQGRTRRLGLYYERLWQFAVQHAPGIELIAANLPIRREGHTLGELDLLLRDGEGVHHLELAIKLYLGPQQGNGHDTAQWLGPGCHDRLDRKLAHLREHQLPISARPESRQALAALGIESFRPHLWLGGYLLYPWPGEAEPPSGAHPRHLRGRWLHQRDWPGFIGQRPPGRWQPLPRAAWLAPAHYPPDQVWTAAQLDAWRTALDPMAPAQLMVRLTENAEGEWEEAERAFLVADLWPDVPGNG				NA	NA	NA	NA	NA
D1-36_02858	558	chrR	COG0431	Quinone reductase	ATGAGTAATGTCTACAACGTTGCCGTTTTGGTGGGCAGCCTGCGCAAGGCGTCGATCAACCGCAAGATTGCGCTGGCGTTGGCGGAGCTGGCGCCAACCAACCTCAAGCTGAATATCGTCGAGATAGGCGAACTGCCGCTGTACAACGAAGACATTGACGTGACACCGCCCCAAGCCTACGCCAGGTTTCGCGAGCAAGTAGGCGCCGCCGACGCGCTGCTGTTCGTAACCCCGGAATACAACCGCTCGGTGCCGGCCCCTCTGAAAAACGCCATCGACGTTGGCTCGCGCCCTTACGGCCAGAGTTGCCTGAGTGGCAAGCCAGGCGCGGTGATCAGCGCTTCACCCGGTGCGATGGGTGGTTTCGGCGCCAACCATCATCTGCGCCAATCCCTGGTGTTTCTCGATGTGCCCTGCATGCAACAACCGGAAGCCTACCTGAGTGGCGCGGGGACCGCGTTCGACGAAGCGGGCAACCTCTCGGATTCGGTCAGGCCGTTTTTGCAGAAGTTTATCGATAGCTATAGCAAGTGGGTCGAGCAGCACAAGAAGCTTTGA	MSNVYNVAVLVGSLRKASINRKIALALAELAPTNLKLNIVEIGELPLYNEDIDVTPPQAYARFREQVGAADALLFVTPEYNRSVPAPLKNAIDVGSRPYGQSCLSGKPGAVISASPGAMGGFGANHHLRQSLVFLDVPCMQQPEAYLSGAGTAFDEAGNLSDSVRPFLQKFIDSYSKWVEQHKKL	PGPT0004195_1321	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_SUPEROXIDE_ANION_RADICALS,PGPT0004195-chrR-K19784	NA	NA
D1-36_02859	231			hypothetical protein	ATGGCAACAGTACTTGTCGGACAGTTTCATGCGCGGGACGCTGAAGGACGCGTCTATTCTGTGCATGAATTCCAAGAATCAGACCCGTCCCAGGACGGCATTGGCAAGGATGTCATCACCTATAAGCTGGCCATTGGCGATCGAGTCAGCAAGTTGGATGAGGAGAAATTTCTCCTGGTGCAGTCCGGCATCGAACTGATCCGCGAACCCGAACCGCAAATAGCGCTGTAA	MATVLVGQFHARDAEGRVYSVHEFQESDPSQDGIGKDVITYKLAIGDRVSKLDEEKFLLVQSGIELIREPEPQIAL				NA	NA	NA	NA	NA
D1-36_02860	894			hypothetical protein	ATGCGTTTACGCCACATCGAAGTGATCCAGGCGCTGCTGCAGACCGGCCACCTCGCAACCGCGGCCGAATGGCTGCAATTGCCGGTGGCCGAAGTCGAGTCGATCCTGCGCGATGCGGAAGCCCAGCTCGGTTTCATGCTGTTTGCCAGCGTTCGCGGACGATTGCAGGCCACCCGCGAAACCCTGGAGTTGCGCGAAGGCATTACGCAGCTTTACGACACCCTCGAGCCAATACAGCGGCTGGCCAGCAGCTTGAAACATCATCAGGCCCCGCCCCTGCGCATCATCTGCACCCCGCCGCTGGCGCAACAGTTGCTGCCCCTGGGCATCGCCGCCCTGCGTCGGCGCCATCCGGATGCGCCTTGCACCCTGCTCAGCGAACCAACCCGCGAAATCGTCAAGAGCCTGTTGCTGCGTGAAAGCGACTTGGGCCTGAGCCTGCACGATCCGGAACACCCGGACATCCACTGCCAGACAATCGCCCAAGGCAAACTGCAATTGCTGGCGCCCCATGGCTGGCTGCAACCTCGGCAGAAATACATTTCAATACAGGACTTGGCGGGCCAGTCGCTGGTGGGGCTTGATGGTCATGACCCGCTGAGCCTGGCATTCGACCACAAGCTCGCGGCGCTGCGCCCCGCACCGGTGATCCAGATTCGTGTGCAGACGCACCAGATGATGCGCGCGATGGTCGAAGCCGGCGAAGGCCTCGCCATCGTCGATCCATTCACCGCCTCGGGCGCCAAGGGCAGCGAGCTGGATATCTGCCCGGTGTCACCAGCCGTTCCGATCTGCCTTTACGCACTCAGCCTGAACGGTGTGCAGCCCTCGCCGACGGTCCAAGCGCTGCTGGAACGAATTACGGAACAAGCCGAGGCGTTGCTGAACCACTGA	MRLRHIEVIQALLQTGHLATAAEWLQLPVAEVESILRDAEAQLGFMLFASVRGRLQATRETLELREGITQLYDTLEPIQRLASSLKHHQAPPLRIICTPPLAQQLLPLGIAALRRRHPDAPCTLLSEPTREIVKSLLLRESDLGLSLHDPEHPDIHCQTIAQGKLQLLAPHGWLQPRQKYISIQDLAGQSLVGLDGHDPLSLAFDHKLAALRPAPVIQIRVQTHQMMRAMVEAGEGLAIVDPFTASGAKGSELDICPVSPAVPICLYALSLNGVQPSPTVQALLERITEQAEALLNH				NA	NA	NA	NA	NA
D1-36_02861	615			hypothetical protein	ATGCAACCGGTCAAGAATCCCAAGCATCCCGGCCTCTCGGTACGCGTCGTCGACGACGGCTTTGCCGTGTATGTCTGGGGCAGTGATTTCAGTTTTGACGTCAGCGCCTACGGTACGCCGCAGATCGGCCGGCCGGTGAGCCAATGGCCGGTGACGCCGATCGTTCCCTACCGCAAGTGCTACGGTATCGATCCTGAAGAATTCGCCAGTTTCCGGGATGCCCCCGACAGCGAAATCTTCATGGCCTACCTGGACGACCAGCCAGTGGGTCACCTGGTGATCAGCACCAACTGGAATGGCTATGCCCATATCGATGAGTTGGCGGTGCATGCCCCGGCTCGCCGGCATGGGGTGGCCAAGGCACTGTTGGACGTGGCCCAGTTCTGGAGCCGCAAGAAAAAACTGCCGGGCATCATGTTGGAAACCCAGAACAATAACCTGGGTGCCTGCCGTCTCTACGAACGTTGCGGCTACGTGCTCGGCGGGATCGATCATTTGCGCTATCGCGGCATCGATCGGCATACCGCCGAGGTGGCGCTGTTCTGGTACCGGTTGTTCGACGATCCGCTGGGCATGACGATCAGTGGTTCAGCAACGCCTCGGCTTGTTCCGTAA	MQPVKNPKHPGLSVRVVDDGFAVYVWGSDFSFDVSAYGTPQIGRPVSQWPVTPIVPYRKCYGIDPEEFASFRDAPDSEIFMAYLDDQPVGHLVISTNWNGYAHIDELAVHAPARRHGVAKALLDVAQFWSRKKKLPGIMLETQNNNLGACRLYERCGYVLGGIDHLRYRGIDRHTAEVALFWYRLFDDPLGMTISGSATPRLVP				NA	NA	NA	NA	NA
D1-36_02862	762	dnaQ	COG0847	DNA polymerase III subunit epsilon	ATGGCCAACAGATCTGTAGTACTGGATACCGAAACCACCGGCATGCCGGTGACCGACGGTCACCGGATTATTGAAATCGGCTGTGTCGAGCTGATGGGTCGGCGCCTGACCGGCCGTCATTTCCACGTTTACCTGCAACCGGACCGCGAAAGTGACGAGGGTGCCATTGGCGTGCACGGCATCACCAATGAATTTTTGGTGGGCAAGCCGCGTTTCGCCGAGGTGGCCGATGAATTCTTCGAGTTCATCCAGGGCGCCCAGCTGATCATTCATAACGCGGCGTTCGACGTCGGGTTCATCAACAATGAATTCGCCCTGTTGGGCCAGCACGACCGCGCCGATATCACCCAGCACTGCACCATTCTCGACACGTTGATGATGGCCCGGGAACGGCATCCGGGGCAGCGCAACAGTCTCGACGCCTTGTGCAAGCGCTACGGCGTCGACAACTCCGGCCGTGAGCTGCACGGCGCCTTGCTCGACTCCGAAATCCTTGCCGACGTCTACCTGACCATGACCGGCGGGCAGACCAGCCTGTCCCTGGCCGGTAACGCCTCGGACGGCAACGGCACCGGCGAAGGTTCGGGCAACCAGGCGACCGAAATCCGTCGCTTGCCTGCGGACCGCAAGCCGGCCCGGATCATCCGCGCCAGCGAAAGCGACCTGGCCGAACATGCCGCGCGTCTGGAAGCGATCGCCAAGTCCGCGGGCGCCCCGGCATTGTGGACGCAACTGGCTGAGGCGCAGGCCGCCGCGAATTGA	MANRSVVLDTETTGMPVTDGHRIIEIGCVELMGRRLTGRHFHVYLQPDRESDEGAIGVHGITNEFLVGKPRFAEVADEFFEFIQGAQLIIHNAAFDVGFINNEFALLGQHDRADITQHCTILDTLMMARERHPGQRNSLDALCKRYGVDNSGRELHGALLDSEILADVYLTMTGGQTSLSLAGNASDGNGTGEGSGNQATEIRRLPADRKPARIIRASESDLAEHAARLEAIAKSAGAPALWTQLAEAQAAAN				NA	NA	NA	NA	NA
D1-36_02863	453	rnhA	COG0328	Ribonuclease HI	ATGAGCGATAGCGTGGAACTCTTCACTGATGGCGCCTGCAAGGGCAACCCTGGCCCGGGTGGCTGGGGTGCATTGCTGGTGTGCAAGGGCGTGGAAAAGGAGCTCTGGGGCGGCGAAGCCAATACCACCAACAACCGCATGGAGCTGATGGGCGCCATTCGGGGGTTGGAAGAGCTCAAGCGTCCTTGCGACGTGCTGCTGGTGACCGACTCGCAGTATGTAATGAAAGGCATCAACGAGTGGATGGCGAACTGGAAGAAGCGCGGCTGGAAGACGGCGGCGAAAGAACCGGTCAAGAACGCCGACCTCTGGAAATTGCTGGACGAGCAGGTCAACCGCCACAACGTCACCTGGAAATGGGTACGTGGCCACATTGGTCACCACGGAAACGAACGGGCCGACCAGTTGGCCAATCGAGGAGTGGATGAGGTGCGCGGCTACAAGCAGTCCTGA	MSDSVELFTDGACKGNPGPGGWGALLVCKGVEKELWGGEANTTNNRMELMGAIRGLEELKRPCDVLLVTDSQYVMKGINEWMANWKKRGWKTAAKEPVKNADLWKLLDEQVNRHNVTWKWVRGHIGHHGNERADQLANRGVDEVRGYKQS	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
D1-36_02864	759			hypothetical protein	ATGACCGATGAAGCGTTCGCTCAGGCCGATCCTGACTGGCTGGCATTGATCAGCTCTGCCCGTGAGTGGCTGTCCGGCCCTGTCGGGCAATTTCTGCTGGAAGAAGAACGGCGCATGCTCGAAGACGAGTTGGGCCGGTTCTTTGGCGGCTATCTGGTGCATTACGGTCCTTCGGCGCAAACGCCACCGTCGGCGCCTCAGGTCCAGCGCAACGTGCGCTTGGGGGCGCCGTTGCCGGGCGTCGAGATCGTTTGCGAGGAGCAGGCCTGGCCCTTGAGCGAGCATGCCGCCGATGTGGTGGTGATGCAGCACGGCCTGGATTTCTGCCTGTCGCCCCATGGGCTGTTGCGCGAAGCCGCCAGCAGCGTGCGGCCCGGTGGGCATCTGTTGATCATCGGCATCAACCCCTGGAGCAGTTGGGGATTGCGCCATGTATTTGCCAGCGATGCGCTGCGCCAGGCCCGTTGCATTTCGGCCTCGCGGGTCGGCGACTGGCTCAACCTGCTGGGTTTCGCGCTGGAGAAACGCCGCTTCGGGTGCTATCGTCCGCCGCTTGCGTCGCCCAAGTGGCAGGCCCGATTGGCTGGCTGGGAGCGCAAGGCGGGTGACTGGCAATTGTCCGGTGGCGGCTTCTATTTATTGGTGGCGCGCAAGATCGCGGTCGGGCTGCGCCCGGTGCGTCAGGCGCGACGCGAGCCGATGGGCAAGCTGATTCCCTTGCCGATGGCCAAGGTCAACCGTCGCCACATCGAGCCGTAA	MTDEAFAQADPDWLALISSAREWLSGPVGQFLLEEERRMLEDELGRFFGGYLVHYGPSAQTPPSAPQVQRNVRLGAPLPGVEIVCEEQAWPLSEHAADVVVMQHGLDFCLSPHGLLREAASSVRPGGHLLIIGINPWSSWGLRHVFASDALRQARCISASRVGDWLNLLGFALEKRRFGCYRPPLASPKWQARLAGWERKAGDWQLSGGGFYLLVARKIAVGLRPVRQARREPMGKLIPLPMAKVNRRHIEP				NA	NA	NA	NA	NA
D1-36_02865	768	gloB_2	COG0491	Hydroxyacylglutathione hydrolase GloB	ATGATACAGATCACTGCCCTGCCCGCGTTTAACGATAACTACATTTGGTTGTTACAAGACCACTCGACGCAGACTTGCGCCGTGGTCGATCCAGGCGACGCCGCGCCAGTGCAGGGGTGGCTTGAGGCTCATCCCGACTGGGTCTTGAGCGACATCCTGGTCACCCACCATCATCACGATCATGTCGGCGGTGTCGCCGCGCTGAAAAGCGCGACCGGCGCCACCGTCTACGGCCCGGCCAGCGAAAACATCCCGGCGCGAGACATCGCCCTTAACGACCACGCGAAAGTCAATGTGCTGGGCCTGGACTTCGATGTTTATGCGGTTCCCGGGCACACATTGGGGCATATCGCCTACTACCACCGTGGCCTGCTGTTCTGTGGCGACACGCTGTTCGCCGCCGGTTGCGGACGGCTTTTCGAGGGCACGCCCGAACAGATGCACCACTCCCTGGGCCGCCTCGCCGCGCTCCCTGAAGATACGCTTGTCTACTGCACCCATGAATACACCTTGAGCAATCTGAAATTCGCCGCCGCGGTCGAGCCGTCCAACCCAGACGTTGCCGCCCGCCTGGAGAAAGTCACCCAGCAGCGCAACCAGGGCATCATCACCCTGCCCTCGACCCTGGCTCTGGAAAAACTCACCAATCCGTTTTTGCGCACCGCTGAAACATCCGTTAAACAAAAAGCAGACGAACGGAACGGTCAACCCAACCAGACGGCGAGTGAGGTTTTTGCGGCCTTGAGGGCCTGGAAAGATAAGTTCTAA	MIQITALPAFNDNYIWLLQDHSTQTCAVVDPGDAAPVQGWLEAHPDWVLSDILVTHHHHDHVGGVAALKSATGATVYGPASENIPARDIALNDHAKVNVLGLDFDVYAVPGHTLGHIAYYHRGLLFCGDTLFAAGCGRLFEGTPEQMHHSLGRLAALPEDTLVYCTHEYTLSNLKFAAAVEPSNPDVAARLEKVTQQRNQGIITLPSTLALEKLTNPFLRTAETSVKQKADERNGQPNQTASEVFAALRAWKDKF	PGPT0001770_3495	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001770-gloB|gloC-K01069	NA	NA
D1-36_02866	1449	mltD	COG0741	Membrane-bound lytic murein transglycosylase D	ATGTCGTCATCTATTCGCAGGTCCGTCCAGTCAGACACACTGACCCGCTTGGCCCAGGCCATCGCGGTGGCAGTGTCCGCCACGCTGGCGGGCTGTCAGAGCACCGGCCAGGTGCCACAGAGCGATGCTGCGCATAAGCCGAATGTCGCCGCGCGGGCCAAGCAAAAACCTGTGTGGCTCACGGAAAAGCCTACCCCCCAGGTGCCCCAGGATGTGTGGGAACGCATGCGCCAGGGCTTCCAGCTCCAGGAAACCGCCGGCGTCAACCCGCGCATCGAGCAGCAGCGTTTGTGGTTCGCCAGCAACCCTTCATTCCTGGAAAATGCCGGCGAGCGCGGCAGCTTATATATCCACTACATCGTCGAGCGTCTTGAAGAACGCAACATGCCGCTGGAGCTGGCGCTGTTGCCGGTGATCGAAAGCGCTTACAACCCCATGGCCTATTCCCGGGCCAATGCAGTGGGACTGTGGCAATTCATCCCTTCCACCGGGCGTTATTTCAACCTGCGCCAGACCCGCTTCTACGACGGCCGTCGTGACATTACCGCGTCCACCACCGCCGCGATGGACTACCTGACGCGCCTGCACGACATGTTCAACGGTGACTGGTTGCTGGCACTGGCGGCCTATAACGCTGGTGAAGGCACGGTCAGCCGCGCCATCGAGCGCAACGAGAAGCTTGGCCTGCCCACCGACTACTGGAACCTGCCGCTGCCCAGCGAAACACAGGCCTACGTGCCCAAGCTGCTCGCGCTGTCCCAGGTCGTGTTGGCTCCGGACGCCTATGGCGTGAACCTCAACCCGATCGCCAACGAGCCGTACTTCCAGGTCGTCGAGATCAACCAGCGCATGGACCTGTCGAAGGTCGCGGCGGTGGCGAACATCGACGAGGACGAGCTGTTCCAGCTCAACCCGGCCTTCAAGCAGCGCACCACCATCGACGGCCCGCAGCACCTGCTGGTGCCGACCTCCAAGGCGCAACTGCTGACCGCCAGCCTGTCGACCATGCGCCCGGAAGAACTGATCAGCCCTCGCTCGCTCAAGCCAGTCTTCGAGACCGCCGATGACAGCGAAGTGGAAGGCGCAAGGCGCACCTACCGCGTCAAGCGCGGCGACAACCTGGCCCAGATCGCCAAGGCCAACAAGGTCCAGACCAAGGACTTGCAGCGCTGGAACAAGCTCAGCGGCAACAAGCTCAAGGTCGGTCAAACGTTGGTGATGCAGGACGTCAAGGCCACCAAGGCCCGCGGCAAGCGCATCAACACCGTCGTGGCCGCCAAGGGCAAGGAACAAAAGAAGCAGACCCAATACAAGGTCAAGCAGGGTGACTCGCTGTACGTCGTCGCCAAGCGCTTCAATGTCGAAATGCAGCACCTCAAGCGCTGGAACCCGCGCATGGGCAAGGCGCTCAAGCCTGGGCAGATGTTGACGGTCTATTCCCCACACTAA	MSSSIRRSVQSDTLTRLAQAIAVAVSATLAGCQSTGQVPQSDAAHKPNVAARAKQKPVWLTEKPTPQVPQDVWERMRQGFQLQETAGVNPRIEQQRLWFASNPSFLENAGERGSLYIHYIVERLEERNMPLELALLPVIESAYNPMAYSRANAVGLWQFIPSTGRYFNLRQTRFYDGRRDITASTTAAMDYLTRLHDMFNGDWLLALAAYNAGEGTVSRAIERNEKLGLPTDYWNLPLPSETQAYVPKLLALSQVVLAPDAYGVNLNPIANEPYFQVVEINQRMDLSKVAAVANIDEDELFQLNPAFKQRTTIDGPQHLLVPTSKAQLLTASLSTMRPEELISPRSLKPVFETADDSEVEGARRTYRVKRGDNLAQIAKANKVQTKDLQRWNKLSGNKLKVGQTLVMQDVKATKARGKRINTVVAAKGKEQKKQTQYKVKQGDSLYVVAKRFNVEMQHLKRWNPRMGKALKPGQMLTVYSPH	PGPT0023795_1221	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-MUREIN_TRANSGLYCOSYLASE_ACTIVITY,PGPT0023795-mltD|dniR-K08307	NA	NA
D1-36_02867	1833			hypothetical protein	TTGATACGCCCCCTCCTCCTGCTCCTGATCAGCCTGGCATCGAGCCCTGCCGCCGACGCTACCATCAGCGAAAGCCATGGCTATGCGCAATTCGGCACGCTGAAATACCCGGCCCGGTTCACCCACTTCGACTGGGTCAACCCGCAAGCGCCCAAGGGCGGCACCTTGCGGATCATGGCGTTTGGCACCTTCGATACCCTCAATCCCTATACATTCAAGGGCAGCAGCCCGGTTTCCACGCCGAACTTCCTGCAATACGGCATCAATGAGCTGAACGAACCGCTCATGGTAGGCACTGGCCAATATGCGCCCTCAGGGGATGAGCCAACGTCGAGTTACGGCTTGATCGCCCAGTCGGTGGAGTACAGCGAGGACCGCAGCTGGGTGGTGTTCAACCTGCGGCCCGAAGCGCGCTTTCATGATGGCGTGCCGATCACTGCCTATGACGTAGCGTTTTCCTACCGAACGCTGCTCAAAGATGGCCATCCGCAATACCGGACCAATTTGCAGGAAGTGCTGCGGGTGGATGTCCTCAACCCGCTGAAAATCCGCTTCGTGTTCAAGCGCTCGGGCAATCCGCTGCTGATCCTGCGCCTGGGTGAGCTGCCGGTGTTGCCGCAGCATTATTGGAAAGACCGCGATTTCAAGGCGACCACCTTCGAGCCGCCGTTGGGCAGCGGGCCTTATCGCATCACCAAAGTGCAGCCAGGTCGCCAATTGGTGTTCGAGCGAGTCAAGGACTACTGGGGCAAGGATCTGCCGGTCAATCGTGGCAAGTACAACGTCGATCGAATGGAAGTGGATTTCTACCGAGACAGCGGCGTCGCCTTCGAAGCCTTCAAGGCCGGTGAGTTTGACATCTACATCGAGCACCAAGCCAAGAACTGGGCCAACGGGTACAACTTTCCGGCGGTGAACCGTGGCGATGTGATCAAGGCGCAGATTCCCCACCAGATTCCGACCCAGACCCAGGGCCTGTTCATGAACACCCGGCGCGCCACCTTCGGCGAGGTCAAGGTCCGAGAAGCCCTGGGGTTGATGTTCGATTTCGAATGGACCAACCGCACCCTGTTCAGCGGCGCGTACAAACGAACCCTCAGCTATTACCCCAACAGCGAATTCTCCGCCACTGGCCTGCCCGTCGGCCACGAGTGGCTTTTGCTCAAACCTTACCGTGAACAACTGCCCCCTCGATTACTGACCGAGCCCTTCAGCCTGCCCCAAACCGACGGGCGCGGCATTCCCCGGGAAACCCTGCGCAGGGCCCTTGGCCTGCTGAAGGAAGCCGGCTGGACCCTCAACGGCCAGCACCTGCTCAACGCCGACGGCCAACCCCTGCGCTTCGAGATCCTGCTGGTCAACCCGAACCTGGAGCGCATCCTGCAGCCCTACGTCGAAAACCTGGCCAGCATTGGCATCCAGGCCCGAGTGCGCACAGTGGATCGTGCCCAGTACAAGCAGCGATTGGACCAGTTCGACTTCGACATGATTTTGCTGACCCTGGGCCAGACCCTCAGCCCGGGCCTTGAACAATGGCAGTATTTCCACTCCAGCCAGGTCGGGATCAAGGGCAGCAAGAACTACGCAGGGATCGCCAATCCGGTGGTTGACCATCTGCTGGAAAAACTGCTCTCCGCCCAGACCCGCGACGAACAAGTCGCCGCCGGCAAGGCCCTGGACCGGGTCCTGCTGTGGCAGCATTACTGCATTCCCAACTGGTATATCAATTACCATCGCCTGGCGTATCGCAACCGGTTCGCCTTTGTCACCACGCCGCCCTACACCCTGGGCCTGAGCGCGTGGTGGCTGAAATCTTCGGAGAAAGATCAATGA	MIRPLLLLLISLASSPAADATISESHGYAQFGTLKYPARFTHFDWVNPQAPKGGTLRIMAFGTFDTLNPYTFKGSSPVSTPNFLQYGINELNEPLMVGTGQYAPSGDEPTSSYGLIAQSVEYSEDRSWVVFNLRPEARFHDGVPITAYDVAFSYRTLLKDGHPQYRTNLQEVLRVDVLNPLKIRFVFKRSGNPLLILRLGELPVLPQHYWKDRDFKATTFEPPLGSGPYRITKVQPGRQLVFERVKDYWGKDLPVNRGKYNVDRMEVDFYRDSGVAFEAFKAGEFDIYIEHQAKNWANGYNFPAVNRGDVIKAQIPHQIPTQTQGLFMNTRRATFGEVKVREALGLMFDFEWTNRTLFSGAYKRTLSYYPNSEFSATGLPVGHEWLLLKPYREQLPPRLLTEPFSLPQTDGRGIPRETLRRALGLLKEAGWTLNGQHLLNADGQPLRFEILLVNPNLERILQPYVENLASIGIQARVRTVDRAQYKQRLDQFDFDMILLTLGQTLSPGLEQWQYFHSSQVGIKGSKNYAGIANPVVDHLLEKLLSAQTRDEQVAAGKALDRVLLWQHYCIPNWYINYHRLAYRNRFAFVTTPPYTLGLSAWWLKSSEKDQ	PGPT0011625_1035	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011625-yejA-K13893	NA	NA
D1-36_02868	1854	appA		Oligopeptide-binding protein AppA	ATGAAGCCTCTACGCGCCCTGCTTCTGCAGGCCGGCAGTTTGTTATTCGCCGGGCTGGCCTGCGCCGCGCCGCAGCACGCCGTGACCTTGTACAACGAGCCACCAAAGTACCCGGCCAATTTCAAGCATTTCGACTACGTGAACCCCGATGCCCCCAAGGGCGGAATATTCCGTCAGGGTGGCTTTGGCAGCTTCGACAGCCTCAATCCATTCATCAGCAAAGGCGTACCTGCCGATGATATCGGCCTGATCTACGACACCTTGGCCAAGCAAGGCCTGGATGAGCCCTTCACCGAATACGGCCTGGTCGCGGAAAAAATCGAGAAAGCGCCGGACAACGGCTGGGTGCGCTTTTACCTGCGCCCCGAAGCGCGCTTCAACGACGGCCACCCCATGCGCGCCGAAGATGTCGTGTTCAGCTTCGAGACCCTGACCAAGGATGGCGCGCCGATGTTCCGCGGCTATTACAACGATGTGGCCGAGGTCATCGCCGAAGACCCACTCAAGGTTCTGTTCAAGTTCAAGCACACCCATAACCGTGAACTGCCGCTGATCCTCGGCCAACTGCCGGTATTGCCCAAGCATTGGTGGGCCAGCCGCGATTTCAGCAAGGGCAACCTGGAAATTCCCCTGGGCAGCGGGCCCTACAAGGTCACCGAAGTAAAGGCCGGACGTTCGATCCGCTATGAGCGGGTGAAGGATTATTGGGGCAAGGACCTGCCGGTGAACCGCGGTTTCTATAACTTCGACGTATTGACCACCGACTATTACCGCGACAACACCGTGGCGGTGGAAGCCCTCAAGGCCGGACAGTTCGATTACTGGCTGGAAATGACCGCGAAGAACTGGGCCAACGCCTACAACATCCCCGCCGTGACCGAAGGCCGCCTGATCAAGGAACAGATTCCCAACGGCAACCCTACGGGCATGCAAGGCTTCATCTTCAACCTGCGCCGCCCGGTGTTCCAGGATGTACGGGTGCGCCAGGCCCTGAGCCTGCTGTTGGACTTCGAATGGACCAACAAGCAGTTGTTCAACGGTGCCTACGCCCGCACCCGCAGCTATTTCGAGAATTCGGAAATGGCCGCCACCGGGTTGCCCGGCGAAGACGAGCTGAAGATTCTCGAACCCTTGCGCGGCAAGATTCCCGAGCAAGTCTTCACCGAAGCCTTCCAACCTTCGGTCTGCGACGGCAGCGGCATGATCCGCGACCAGCAACGCAAGGCCTATCAGCTGTTGCAGGAAGCCGGCTGGCGCATCGTCGATGACAAGATGGTCGATGCCCAAGGTAAGCCGGTGGTGCTGGAGTTCCTGCTGGCCCAGACCGAATTCGAACGGATCCTGCTGCCGTTCAAACGCAACCTGAGTGACCTGGGCATTGAACTTGTGATCCGCCGCGTCGACGTGTCGCAATACATCACCCGCGTGCGTTCGCGGGACTTCGATATGGTGGTGGGCAGCTTTCCGCAATCCAGCTCGCCAGGAAACGAGCAGCGCGAATTCTGGATGTCGGCCGCTGCGGACAAACCCGGCAGCCGCAACACCATGGGCCTCAAGGACCCTGCCGTGGACCAACTGGTGGAACAGTTGATCAACGCTGACTCGCGCAAGAGCCTGGTGGCCCATGCCCGGGCGTTGGACCGGGTCCTGCAATGGGGCTATTACGTAATTCCCAACTGGCACATCAAGACCTGGCGCGTGGCCTACTGGAACCACATCGGCCACCCGAAAGTCACGCCGACCTATGACATCGGCACCACTACATGGTGGGTCAAGCCGGAGGTCAAGCCAGCCGATGAGGTAGAAAAGCAGGTCATCGAGCAGCAAATCGCCGCTCCCGAGAGTGTGGAGTAA	MKPLRALLLQAGSLLFAGLACAAPQHAVTLYNEPPKYPANFKHFDYVNPDAPKGGIFRQGGFGSFDSLNPFISKGVPADDIGLIYDTLAKQGLDEPFTEYGLVAEKIEKAPDNGWVRFYLRPEARFNDGHPMRAEDVVFSFETLTKDGAPMFRGYYNDVAEVIAEDPLKVLFKFKHTHNRELPLILGQLPVLPKHWWASRDFSKGNLEIPLGSGPYKVTEVKAGRSIRYERVKDYWGKDLPVNRGFYNFDVLTTDYYRDNTVAVEALKAGQFDYWLEMTAKNWANAYNIPAVTEGRLIKEQIPNGNPTGMQGFIFNLRRPVFQDVRVRQALSLLLDFEWTNKQLFNGAYARTRSYFENSEMAATGLPGEDELKILEPLRGKIPEQVFTEAFQPSVCDGSGMIRDQQRKAYQLLQEAGWRIVDDKMVDAQGKPVVLEFLLAQTEFERILLPFKRNLSDLGIELVIRRVDVSQYITRVRSRDFDMVVGSFPQSSSPGNEQREFWMSAAADKPGSRNTMGLKDPAVDQLVEQLINADSRKSLVAHARALDRVLQWGYYVIPNWHIKTWRVAYWNHIGHPKVTPTYDIGTTTWWVKPEVKPADEVEKQVIEQQIAAPESVE	PGPT0011625_726	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011625-yejA-K13893	NA	NA
D1-36_02869	1077	yejB_2	COG4174	Inner membrane ABC transporter permease protein YejB	ATGCTGGCTTATATTTTTCGGCGGCTGTTGCTCATCATCCCGACGCTGTTCGGCATCCTGCTGATCAACTTCGTCATCATCCAGGCCGCGCCCGGCGGCCCGGTGGAGCAAATGATCGCCAAGCTCGAAGGGTTCGAAGGCGCCACCAGCCGCATCGCTGGCGGCGGTGCCGAGGTATCGGTGGCAGGTTCCTCCTCTTACCGCGGCGCCCAGGGCCTGGACCCGGCGCTGGTCAAGGAAATCGAGCGCATGTACGGCTTCGACAAGTCCGCCCCGGAGCGCCTGTGGATCATGATCAAGAACTACGCCCGCCTGGACTTCGGTGACAGTTTCTTCCGCGACGCCAAGGTCATTGACCTGATCAAGGAAAAGATGCCCGTGTCCATCTCCCTCGGGCTATGGAGCACACTGATCATGTACCTGGTGTCCATCCCCCTGGGGATCGCCAAGGCGACGCGGCACGGCAGTCATTTCGATGTGTGGACCAGTTCGGCGATCATCGTCGGCTATGCGATCCCGTCGTTCCTGTTTGCCATCCTGTTGATCGTGGTGTTTGCCGGCGGCAGCTATTTCGACTGGTTCCCGCTGCGTGGGCTGACATCCAACAACTTTGATGAACTGACCCTGGGCGGCAAGATCCTCGACTATTTCTGGCACCTGGCCTTGCCAGTGACCGCGCTGGTGATCGGCAACTTCGCCACCATGACGCTGCTGACGAAGAACAGCTTCCTCGATGAAATCAACAAGCAGTATGTGGTCACCGCCAAGGCCAAGGGCCTGACCCGCAACCGCGTGCTGTATGGCCATGTGTTTCGCAACGCAATGTTGTTGGTGATCGCCGGCTTTCCTTCGGCCTTCATTGGCATTTTCTTCACCGGCTCGCTGCTGGTGGAAGTGATCTTCTCCCTCGACGGCCTGGGCCTGATGAGTTTCGAAGCCGCGATCAACCGCGACTACCCCGTGGTATTCGGCACACTGTTCATCTTCACCTTGCTGGGGCTGGTGGTGAAATTGATTGGCGACCTGACCTACACCTTCGTCGATCCGCGCATCGATTTCGAAAGCCGGGAGCATTGA	MLAYIFRRLLLIIPTLFGILLINFVIIQAAPGGPVEQMIAKLEGFEGATSRIAGGGAEVSVAGSSSYRGAQGLDPALVKEIERMYGFDKSAPERLWIMIKNYARLDFGDSFFRDAKVIDLIKEKMPVSISLGLWSTLIMYLVSIPLGIAKATRHGSHFDVWTSSAIIVGYAIPSFLFAILLIVVFAGGSYFDWFPLRGLTSNNFDELTLGGKILDYFWHLALPVTALVIGNFATMTLLTKNSFLDEINKQYVVTAKAKGLTRNRVLYGHVFRNAMLLVIAGFPSAFIGIFFTGSLLVEVIFSLDGLGLMSFEAAINRDYPVVFGTLFIFTLLGLVVKLIGDLTYTFVDPRIDFESREH	PGPT0011630_782	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011630-yejB-K13894	NA	NA
D1-36_02870	1020	yejE_2	COG4239	Inner membrane ABC transporter permease protein YejE	ATGAACCTGTCCCCTCTCAATCGCCGCCGTTTCGAACTGTTCAAGGCCAACAAGCGCGGCTGGTGGTCGCTGTGGCTGTTCCTGGTGCTGTTCGTGCTGAGCCTGGGCGCCGAGCTGATCGCCAACGACAAACCGCTGGTGGTGCATTACGACGGCGGCTGGTATTTCCCGGCCCTAAAGCGCTACCCCGAGACCACCTTTGGCGGCGAATTCCCGCTGGAGGCCAACTACAAGAGCCCGTACATCCGTGAGCTGCTGGCCGCCAAGGACGCCTGGGTGGTGTGGGCACCGATTCCGTTCAGCTACCAGAGCATCAACTACGACCTGAAAGTCCCGGCACCGGCGCCGCCCTCCTCGGTGAACTGGCTCGGTACCGATGACCAGGGGCGCGATGTGCTGGCGCGGGTGATCTACGGTTTTCGTATCTCGGTGCTGTTTGCCCTGACGCTGACGGTGCTCAGCTCGATCATCGGGGTGATCGCCGGTGCCCTGCAGGGTTTCTACGGTGGCTGGGTGGACCTGGCCGGCCAGCGCTTCCTGGAGATCTGGTCCGGGTTGCCGGTGCTGTACCTGCTGATCATCCTCGCCAGTTTCGTCCAGCCCAACTTCTGGTGGCTACTGGGCATCATGCTGCTGTTTTCCTGGATGAGCCTGGTGGACGTCGTGCGCGCCGAGTTCCTGCGCGGCCGCAATCTGGAATACGTGCGCGCCGCTCGCGCATTGGGCATGCAGAACGGCGCGATCATGTTCCGCCACATCCTGCCCAACGCCATGGTCTCGACCATGACGTTCATGCCGTTCATCCTCACCGGCGCCATCGGCACCCTCACCGCCCTGGATTTTCTCGGCTTCGGCCTGCCGGCGGGCGCGCCTTCCCTGGGCGAGCTGGTAGCCCAGGGCAAGTCCAACCTCCAGGCGCCGTGGCTGGGCATCAGCGCGTTCGCCGTACTGGCGATCATGCTGAGCCTGCTGGTGTTCATCGGCGAATCCGCTCGCGATGCCTTCGATCCGAGGAAGTGA	MNLSPLNRRRFELFKANKRGWWSLWLFLVLFVLSLGAELIANDKPLVVHYDGGWYFPALKRYPETTFGGEFPLEANYKSPYIRELLAAKDAWVVWAPIPFSYQSINYDLKVPAPAPPSSVNWLGTDDQGRDVLARVIYGFRISVLFALTLTVLSSIIGVIAGALQGFYGGWVDLAGQRFLEIWSGLPVLYLLIILASFVQPNFWWLLGIMLLFSWMSLVDVVRAEFLRGRNLEYVRAARALGMQNGAIMFRHILPNAMVSTMTFMPFILTGAIGTLTALDFLGFGLPAGAPSLGELVAQGKSNLQAPWLGISAFAVLAIMLSLLVFIGESARDAFDPRK	PGPT0011635_1275	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011635-yejE-K13895	NA	NA
D1-36_02871	1611	yejF_2	COG4172	putative ABC transporter ATP-binding protein YejF	ATGAACCAGGACAATCTGATCGAAGTACGCGACCTGGCGGTGGAGTTCGTCCTCGGCGAACGCCGCCAGCGGGTGGTCGAAGGCGTCAGCTTCGACATCAAGCGAGGCGAAACCCTGGCCCTGGTGGGCGAAAGCGGTTCGGGCAAGTCCGTGACGGCCCACTCCATCCTGCGCTTGCTGCCCTATCCGCTGGCCCATCATCCCACCGGAACCATCCAGTACGCGGGCCAGGACCTATTGGGCCTGAAGGAAAAAACCATCCGCCATATTCGCGGCAACCGGATCGCGATGATTTTCCAAGAGCCGATGACGTCGCTGAATCCCTTGCACTGCATCGAAAAACAGCTCAACGAAGTGCTCGGCATCCACAAGGGCCTGACTGGCAAGGTCGCTACCCGCCGCTCCCTTGAACTGTTGGAGCTGGTCGGCATTCCTGATCCGCACAAGCGCCTCAAGGCCCTGCCCCATGAACTGTCCGGTGGCCAGCGGCAACGGGTGATGATCGCCATGGCCTTGGCCAATGAGCCGGAACTGCTGATCGCCGACGAACCGACCACCGCGCTGGACGTCACCGTGCAGCTGAAAATCCTCGAACTGCTCAAGGATTTGCAAGCACGCCTGGGCATGTCGCTGCTGCTTATCAGCCACGATTTGAACCTGGTGCGAAGAATTGCGCATCGCGTATGTGTCATGCAGCGCGGTTGCATCGTCGAACAGGCATCGTGCGCAGAGTTGTTCCGCGCGCCGCAACATCCGTACACTCGGGAATTACTGGCCGCCGAGCCCAGCGGCAACCCGGCAAACAACGTCGTCGGCCCGCCGCTGTTGCAGGTCGAGGACCTGAAAGTCTGGTTCCCGATCAAGAAAGGCGTGTTCAAGCGTACGGTGGATTACATCAAGGCGGTGGACGGAATCCGCTTCAGCCTGCCCCAGGGCCAGACCTTGGGCATCGTCGGCGAAAGTGGTTCCGGAAAGTCGACCCTGGGGCTGGCGATCTTGCGGTTGATCGGCAGCCAGGGCGCGATCCGCTTCGAGGGCCAGCAGCTCGACTGCCTGTCACAGCAGCAGGTCCGGCCGCTGCGCCGGGAGATGCAAGTGGTGTTTCAGGACCCGTTCGGCAGCCTGAGCCCACGGATGTGTGTGAGCCAGATCGTCGGCGAGGGGTTGCGGATCCACAAGATCGGCACCCCGGCAGAACAGGAACAAGCGATAATCGCGGCATTGAAGGAGGTAGGCCTGGACCCGGAAACCCGGAACCGCTACCCCCATGAATTTTCCGGAGGGCAACGGCAGCGCATCGCCATTGCCCGGGCCCTGGTGCTCAAGCCGGCGTTGATTCTGCTGGATGAGCCGACGTCGGCCCTGGACCGTACCGTGCAACGCCAGGTGGTGGAGCTGTTGCGGTCGCTGCAAACCAAGTACAACCTGACGTACCTGTTTATCAGCCATGACCTGGCTGTCGTCAAAGCGCTGAGCCACCAGCTGATGGTGGTCAAGCATGGCCAAGTGGTCGAACAAGGTGATGCCCGCAGCATATTCGCCGCGCCGCAACACCCCTATACACAGCAGTTGCTGGAGGCCGCCTTCCTGGCCCCAACAACTGCCGAATAA	MNQDNLIEVRDLAVEFVLGERRQRVVEGVSFDIKRGETLALVGESGSGKSVTAHSILRLLPYPLAHHPTGTIQYAGQDLLGLKEKTIRHIRGNRIAMIFQEPMTSLNPLHCIEKQLNEVLGIHKGLTGKVATRRSLELLELVGIPDPHKRLKALPHELSGGQRQRVMIAMALANEPELLIADEPTTALDVTVQLKILELLKDLQARLGMSLLLISHDLNLVRRIAHRVCVMQRGCIVEQASCAELFRAPQHPYTRELLAAEPSGNPANNVVGPPLLQVEDLKVWFPIKKGVFKRTVDYIKAVDGIRFSLPQGQTLGIVGESGSGKSTLGLAILRLIGSQGAIRFEGQQLDCLSQQQVRPLRREMQVVFQDPFGSLSPRMCVSQIVGEGLRIHKIGTPAEQEQAIIAALKEVGLDPETRNRYPHEFSGGQRQRIAIARALVLKPALILLDEPTSALDRTVQRQVVELLRSLQTKYNLTYLFISHDLAVVKALSHQLMVVKHGQVVEQGDARSIFAAPQHPYTQQLLEAAFLAPTTAE	PGPT0011640_686	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011640-yejF-K13896	NA	NA
D1-36_02872	795	fabI	COG0623	Enoyl-[acyl-carrier-protein] reductase [NADH] FabI	ATGGGTTTTCTCGCCGGTAAGCGCGTACTGATCGTCGGTGTCGCCAGCAAGCTGTCCATCGCATCCGGCATCGCTGCCGCCATGCATCGCGAGGGCGCTGAGCTTGCCTTCACTTATCAGAACGACAAACTCAAGGGTCGTGTCGAAGAGTTCGCGCAAGGCTGGGGTTCGAGCCCGGAGCTGTGCTTCCCATGCGACGTGGCCAGCGATGAAGAAATCGCCAAGGTCTTCGAAGAACTAAGCAAGAAGTGGGATGGCCTGGACTGCATCGTGCACTCCGTGGGCTTCGCCCCGGGCGACCAGTTGGACGGCGACTTCACCGAAGCCACCACCCGCGAAGGCTTCCGCATCGCCCACGACATCAGCGCCTACAGCTTCGTGGCCCTGGCCAAAGCCGGCCGTGAAATGATGAAAGGCCGCAACGGCAGCCTGCTGACCCTGTCGTACCTGGGCGCCGAGCGCACCATGCCGAACTACAACGTCATGGGGATGGCCAAGGCCTCCCTGGAAGCGGGCGTTCGCTACCTGGCCGGCTCCCTGGGCCCGGACGGCACCCGCGTGAACTGCGTATCGGCCGGCCCGATCCGCACCCTCGCCGCTTCCGGCATCAAGAATTTCCGCAAGATGCTGGCCGCCAACGAAGCGCAAACCCCGCTGCGTCGCAACGTCACCATCGAAGAAGTCGGCAACGCCGGCGCCTTCCTGTGCTCTGACCTGGCGTCGGGCATCAGCGGTGAAATCATGTACGTGGACGGCGGCTTCAACACCACCGCCATGGGCAACATCGAAGAATAA	MGFLAGKRVLIVGVASKLSIASGIAAAMHREGAELAFTYQNDKLKGRVEEFAQGWGSSPELCFPCDVASDEEIAKVFEELSKKWDGLDCIVHSVGFAPGDQLDGDFTEATTREGFRIAHDISAYSFVALAKAGREMMKGRNGSLLTLSYLGAERTMPNYNVMGMAKASLEAGVRYLAGSLGPDGTRVNCVSAGPIRTLAASGIKNFRKMLAANEAQTPLRRNVTIEEVGNAGAFLCSDLASGISGEIMYVDGGFNTTAMGNIEE	PGPT0008370_1809	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008370-fabI-K00208	NA	NA
D1-36_02873	414			hypothetical protein	ATGATGCGCGAAGAGAAGAGACTGGCGGGAGCTATCTTTTGCATGGTGGCAGCGTGTGCGGCGCTGTTTTTATTCCCGGCGGACACTGTGATGGAGAACCCTGGGAATCCCAACGATACCCTAGGTGTTCCGGCAGTTGCGATGTACCTGGTTGTGTTGATCGTGCTGACCGCGACGTCTGCCGCCCTGACGGGGCTAGGCAGTTTTGCCCAACAGTTTTTAACGCGACGGTCTTTCACGCTGCGTATTGGGGTGTATGCGTTTGCCAATGCTCCCCTTTTTGTAACGTCACTCTTGGGGGCGTTGGTCTCCTTGGCCTACTTGTATGACGCGGTATCCGGGGTGTTGGCGGCATTGTTGTTTCTGCTTTCCTTCGCCTTGCTGCTGCTGGCCAGTCCACGAAGATTGAATTGA	MMREEKRLAGAIFCMVAACAALFLFPADTVMENPGNPNDTLGVPAVAMYLVVLIVLTATSAALTGLGSFAQQFLTRRSFTLRIGVYAFANAPLFVTSLLGALVSLAYLYDAVSGVLAALLFLLSFALLLLASPRRLN				NA	NA	NA	NA	NA
D1-36_02874	906			hypothetical protein	ATGCGCAAGATGGGTTTTGCATTCCGTAATGCTGAGTCAAAACCGCAGCATTACAACTATTTGACTTGGTTAGGTGCCTCCATGAACAACGAACTCCCCCTGACATATGTTTATCCCGAAACATACGGCACGTCACGCGGAAGCGGGAGAGGCCTTCCTTCCCCTGCTCCAATGGCGATGATTGGGAAAATGATCCAAGAGCGCAACGTGGCGTACGAACGGGGTCATTGGCCTCAGATGCTGGGCCGCCATCTTGTAGCGATGCGTAATAATTCACCTGTCCGGTATGGACTGGACGGGATAATCATTGGTGAATTGAAGGTCGCACATGGCGCTGATTTATTGGTGCTGAGAAACCCCAAGCTCGACACCGCCAGCGCCTGGAAGCTCGGGATAAAGGAGGGGGCGAAAATCAAAAATACGGAACAGCTGGCGACCGAACAGGAGTTTTCTGGAGGCGTTTTCACTCCTTTCAAAGCTATAAGCCACTGGCTACTCGGAAAAGGCAAACCTGTCAGCGTTCGACTCGACAGAACTGGTATCAGCCCTGCGCCGAAAAAAATTCCTGATTTAATGGCGATTATCAACACGGCAGGAATTGGAGTAACCACCGTTAATCTAAGGGTTCCTTACTCCACGGCTCAGGACTCGAATATCGCGAGGATCTATCTCGGAAACATCACGCTTCAAATTACCGGTAAGGTAATCCGTAACACATCGGGTAGCCTTAAATTCACCGGTACTGCCAAGGCTTTTTCGGATCGCTACGACGCGAACGCCAGCAATCATCGTGGGGTATTTGATGAAAAAGCGACGACTGCGCTGCGCCAGGTGGGGCGAGTTGCCCGAGCGCAGGATTATGAAATACGAATGACTGGCGAGCTTCCCATTGATTTCTCAAGGTAA	MRKMGFAFRNAESKPQHYNYLTWLGASMNNELPLTYVYPETYGTSRGSGRGLPSPAPMAMIGKMIQERNVAYERGHWPQMLGRHLVAMRNNSPVRYGLDGIIIGELKVAHGADLLVLRNPKLDTASAWKLGIKEGAKIKNTEQLATEQEFSGGVFTPFKAISHWLLGKGKPVSVRLDRTGISPAPKKIPDLMAIINTAGIGVTTVNLRVPYSTAQDSNIARIYLGNITLQITGKVIRNTSGSLKFTGTAKAFSDRYDANASNHRGVFDEKATTALRQVGRVARAQDYEIRMTGELPIDFSR				NA	NA	NA	NA	NA
D1-36_02875	825	rhaS_10		HTH-type transcriptional activator RhaS	ATGAAGCCCGCCAACCATGACGCTGCCCCACGTTTCTGGCACGACGCGGCGCTGCCTTTCATCGAAGCCCGGGCCATCGCCGATGGGCGCAAGGTCTGTTATTCGCGTCACTCCCACGACCATTTCTCGATCGGTGCGATCACCGCCGGGCGCAGCACGTATCTGCATGAGCAGTCGAGCTTCCAGGTCGAGGGTGGCACGGTGGTGCTGATGAATCCTGGCGACGTCCACGCCTGCAATCCCATCGACAATCAACCCTGGTCCTACGTGATGCTGTATGTCGATACCCAATGGCTAAGGGACCTGCAACGGCGGATCGGCTTTGATCCGTCCATGGAGTTCCAGGCGTTCGACACCACCCACAGCCGCGATGCCGCGCTTTTCTCCGGCCTGTGTGCGCTCTACGAAATACTGGTGGATGAACAGGTCGATACCCGCGCCAAAAAAGATGCCGTCGAGGCGTTTTTCACCGACCTCCAGCATCGGCTCAATCCGGCCGGGCGCCCGGACCGGGGCAGTCACCCTGCTTTGATGCGGGCCGCGCAGTTCATCCATGACCATTGCACCGAAGCCCTCAAGCTCGAGGATATCTGCGCGTTTGCACAGCTCTCGCCGTCCTACTTGAGCCGGGCCTTCAAGCGTCACTACGGTATGACGCCCCACGCTTTCCTGATCAATCGCCGGATCCAATTCGCCCGTCGCCAATTGCGCGAGGGCAAGTTGATTGCCGATGTCGCGCTGCAAAGCGGTTTTGCCGACCAGGCGCATTTCCAACGGGCATTCAAGCAACACCTGGCCGCCACGCCCGGGCAATACCGAGGCTGA	MKPANHDAAPRFWHDAALPFIEARAIADGRKVCYSRHSHDHFSIGAITAGRSTYLHEQSSFQVEGGTVVLMNPGDVHACNPIDNQPWSYVMLYVDTQWLRDLQRRIGFDPSMEFQAFDTTHSRDAALFSGLCALYEILVDEQVDTRAKKDAVEAFFTDLQHRLNPAGRPDRGSHPALMRAAQFIHDHCTEALKLEDICAFAQLSPSYLSRAFKRHYGMTPHAFLINRRIQFARRQLREGKLIADVALQSGFADQAHFQRAFKQHLAATPGQYRG				NA	NA	NA	NA	NA
D1-36_02876	588	eamB_2	COG1280	Cysteine/O-acetylserine efflux protein	ATGAGCTTGATATTATCCATGGCGACCTTTGCGCTGGTCGCGTCCATTACGCCGGGCCCGGTCAATATCGTGGCCCTCAGTTCCGGCGCTCGGTACGGTTTGCGCGCCACCTTGCGCCACGTCGCCGGCGCCACCCTGGGGTTTGTCCTGCTGCTGGTCTTGATGGGGTTGGGGTTGCACGAAGTCTTGCAGCGCTGGCCGGGGCTCACCCGCGTGGTGCAACTGGCGGGGGTGGCGTTCCTGTTGTTCATGGCCTGGAAGCTGGCGATGGACAACGGCGAGCTGGGTGAGCGGGACGAAGGGCGCGCGCCGTCGATGATCTACGGCGCACTGATGCAGTGGCTCAACCCCAAGGCCTGGCTGGCCTGCGTGGCGGGGATGGGCGCTTTCGTCGCCGATGGCGAGGCATCGCTGGTGTGGCAGTTCGCGGCGATCTATTTGGTGATCTGCTACCTGTCCGTGGGCTGCTGGGCATACGCCGGCAGCTTCCTGCGTACCTGGCTGGGGAATCCGGTGACCATGCGCCTGTTCAATCGGGCGATGGCGGCGTTGCTGGTGGCGAGCGCGGTGTATCTGTTGTTGCCGTGA	MSLILSMATFALVASITPGPVNIVALSSGARYGLRATLRHVAGATLGFVLLLVLMGLGLHEVLQRWPGLTRVVQLAGVAFLLFMAWKLAMDNGELGERDEGRAPSMIYGALMQWLNPKAWLACVAGMGAFVADGEASLVWQFAAIYLVICYLSVGCWAYAGSFLRTWLGNPVTMRLFNRAMAALLVASAVYLLLP				NA	NA	NA	NA	NA
D1-36_02877	1455	trkI_1	COG0168	Trk system potassium uptake protein TrkI	ATGTCCATAGCGGTTCTGCGTCTCATCGGTTTCATCCTTGGGATTTTCCTGATCACCCTCGCGGTCAGCATGGCGATTCCGCTGTTCGCGCTGATGTTCTACGAGCGCAACGATGACTTGTCGGCGTTTCTCTGGTCGAGCCTGATCACTTTTGTCTGCGGTGTGGCACTGGTCGCCCGTGGAAGACCGGAACAGGCCCAGATGCGGCCCCGGGAAATGTACCTGCTGACCACCGCCAGTTGGGTATTCGTCTGTGCGTTCGCCGCCCTGCCAATGGTGCTCATTCAGCACATCAGCTACACCGATGCGTTTTTCGAGACCATGTCCGGCATCACCACCACCGGCTCGACCATCCTGACCGGTTTGGACACGGCATCGCCCGGCCTGTTGATATGGCGCTCGATGCTGCACTGGCTCGGTGGAATCGGCTTTATCGGCATGGCCGTGGCGGTCCTGCCGTTATTGCGGGTCGGTGGCATGCGGCTGTTCCAGACCGAATCTTCGGATTGGTCGGAGAAAGTCACGCCGCGCTCGCATGTCGCGGCCAACTACATCCTGTGGATCTACGTAGGCTTGACCGCGCTCTCGACGTTGGCGCTGTGGCTTGCCGGCATGACGCCTTTCGAGGCGATCAACCATGCGATGTCGCTGATTTCCACCGGAGGATTCTCCACCTCCGATGCGTCCCTCGCCCATTGGCCGCAACCGGCGGTCCATTGGGTGTCGGTGGTGGTCATGATGGCGGGGTCGCTGCCCTTCACGCTGTATGTGGCGACATTGCGAGGCCACCGGCGCGCCTTGCTCAAGGACCAGCAAGTCAGGGGATTCATAGGCTTTCTGGTGGTCACCTGGCTCGCGGTCGGCACCTGGCTGAGCCTGAACAGCGACCATGCATGGTGGGACGCGGTCCGTATCGTCGCGGTCAACGTCACCTCCGTGGTCACAACCACTGGCGTGGCCCTGGGGGACTACACGTTGTGGGGCAGCTTCGCCCTGCTGCTGTTCTTTTACCTGACGTTCGTCGGCGGCTGTTCGGGGTCCACCGCCGGGGGCCTGAAGATCTTTCGGTTTCAGGTCGCCAAGGTCCTGTTGATGGGCAGCTTGAAGCAATTGATCCACCCCCGGGCGGTGATCCAGAAGAAGTACAACAATCACCCCATCGACGAGGAAATCGTTCGCTCGCTGCTGACGTTTTCGTTCTTCTTCGCGATCACCATCGGCGCCATCGCCCTGGGCCTCGCGCTGATCGGCCTGGATTGGACGACCGCCTTGACCGGCGCCGCCACCGCCGTGTGCAACGTCGGCCCGGGCCTGGGCAATATCATAGGCCCGGCCGGCAACTTCTCGACCCTGCCGGACGCGGCGAAATGGCTGCTGACCCTCGGCATGCTGCTGGGACGCCTGGAGATCCTGACGGTGCTGGTGTTGTTCACGCCAGTGTTCTGGAAATATTGA	MSIAVLRLIGFILGIFLITLAVSMAIPLFALMFYERNDDLSAFLWSSLITFVCGVALVARGRPEQAQMRPREMYLLTTASWVFVCAFAALPMVLIQHISYTDAFFETMSGITTTGSTILTGLDTASPGLLIWRSMLHWLGGIGFIGMAVAVLPLLRVGGMRLFQTESSDWSEKVTPRSHVAANYILWIYVGLTALSTLALWLAGMTPFEAINHAMSLISTGGFSTSDASLAHWPQPAVHWVSVVVMMAGSLPFTLYVATLRGHRRALLKDQQVRGFIGFLVVTWLAVGTWLSLNSDHAWWDAVRIVAVNVTSVVTTTGVALGDYTLWGSFALLLFFYLTFVGGCSGSTAGGLKIFRFQVAKVLLMGSLKQLIHPRAVIQKKYNNHPIDEEIVRSLLTFSFFFAITIGAIALGLALIGLDWTTALTGAATAVCNVGPGLGNIIGPAGNFSTLPDAAKWLLTLGMLLGRLEILTVLVLFTPVFWKY	PGPT0002735_1708	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002735-trkG|trkH|ktrB-K03498	NA	NA
D1-36_02878	1083	ada_1	COG0350	Bifunctional transcriptional activator/DNA repair enzyme Ada	ATGAACCTACAAGACTCGCTGCTCCCGCCCCACGCCGAAATGGTCCGCGCCATGCTCGAACGAGACACCGCCTACGAGGGGGTGTTTTTCACCGCGGTCAAGACCACCGGCATTTTCTGTCGTCCCAGCTGCACGGCACGCAAGCCGAAGCCGGAGAACGTGGAGTTCTTCGCTCACGCCGACGAGGCCATGTCGGCCGGCTATCGAGCCTGCCTGCGCTGCAAGCCATTGGATGCCGCGGCCATCGCACCGGCCTGGATCCAGGCGCTGCTCAAAGCCGTGGATGCCGGGCCCGACGTGCGCTGGACCGATGCGCTGCTGCACGAACAGGGCATCGAACCGCTGAAGCTGCGCCGCTGGTTCAAACAGCATTTCGGCATGACTTTTCACGCCTACCTGCGCACCCGGCGCCTGGGCATCGCCTTGGGCGGAATCAAGGAAGGCGCCTCGATCGACAACGCCGCGTTCGATTCCGGCTATGAATCCCTGAGCGGTTTTCGTGATGCGTTCGTGAAGTCTTTTCATATCACCCCCGGCCGCGCCGGCCTCAGCGAACCGTTGCTGTTCACCCGACTGACAACCCCTCTGGGGCCGATGCTGGCCATGGCCGAACGTCGCGGACTGGTGCTGCTGGAATTTCTCGACCGCCCGGCCTTGACCAAAGAATTGGAAGAACTGCAGCAACGCTACGGCTACACGGTCGCCCCGGGGCATAACGCTCATTTGCAACAGATCGAAACCGAACTGGCGGATTATTTCGCCGGCAAACAAACGACTTTCCACGTGCCGCTGCACATGCCTGGCAGCGCCTTTGCAGTCCGGGTCTGGGCCGAACTGCAAAAGATCCCCTATGGCGAAACCCGCAGCTACGGCGCCGTCGCCTGTGCCCTGGGCAGCCCTGGCGCCAGCCGCGCCGTGGGCTTGGCCAACGGGCAGAATCGCCTGGCTATCGTCATTCCCTGCCATCGGGTGATCGGCGCGGACGGCGCGCTGACCGGTTACGGTGGCGGCCAGCCGCGCAAGGCGTTTTTGTTGCGGCTGGAAAAAGCCGCGGTGCAGGTTTCGTTGCCCTTGGCGTTTTGA	MNLQDSLLPPHAEMVRAMLERDTAYEGVFFTAVKTTGIFCRPSCTARKPKPENVEFFAHADEAMSAGYRACLRCKPLDAAAIAPAWIQALLKAVDAGPDVRWTDALLHEQGIEPLKLRRWFKQHFGMTFHAYLRTRRLGIALGGIKEGASIDNAAFDSGYESLSGFRDAFVKSFHITPGRAGLSEPLLFTRLTTPLGPMLAMAERRGLVLLEFLDRPALTKELEELQQRYGYTVAPGHNAHLQQIETELADYFAGKQTTFHVPLHMPGSAFAVRVWAELQKIPYGETRSYGAVACALGSPGASRAVGLANGQNRLAIVIPCHRVIGADGALTGYGGGQPRKAFLLRLEKAAVQVSLPLAF				NA	NA	NA	NA	NA
D1-36_02879	627			hypothetical protein	ATGAGCACGCCTTACGACGAAGCGAGTACTTTCCTGGCCAATCTTGACGAAGACTGGCGGCGTCACATCGCGTCCGTCGGCCCGTGCCTGCTGCAACCCAAGCCGGCCCGCGATCCCTATGAGGCACTGGTGCGGGCGATTGCCTACCAACAACTGCACGCCAAGGCCGGGGACGCCATTCTCGGGCGGCTTGTCGCGCTGTTTGCCCCCGCCGCGTTTCCCGCCCCCGAACAACTGTTGGCAACAGACAGCACGCTACTGCGCAGTTGCGGATTCTCCGCGAGCAAGCTCGCGACCCTCCAGGGCATCGCCCAGGCGACACTGGATGGGATCGTGCCGGATTACGCCACGGCCCGGGCCATGGACGATGAAGCACTGATCGAGCGCCTGGTCAGCCTGCGCGGCGTCGGGCGCTGGACCGTGGAGATGCTGTTGATCTACAGCCTGGAACGAGTGGATGTCTTGCCGGCGGATGACTTTGGGGTTCGCGAAGGATATCGACGGCTAAAAGGTCTGGAGACTCAGCCGAATCGCCGGCAGATCATCGCTATCGGCCAGGCCTGGAGTCCTTATCGGACGGTGGCGGCTTGGTATTTGTGGCGGGTGCCCAAAATCAAGTCCGCATGA	MSTPYDEASTFLANLDEDWRRHIASVGPCLLQPKPARDPYEALVRAIAYQQLHAKAGDAILGRLVALFAPAAFPAPEQLLATDSTLLRSCGFSASKLATLQGIAQATLDGIVPDYATARAMDDEALIERLVSLRGVGRWTVEMLLIYSLERVDVLPADDFGVREGYRRLKGLETQPNRRQIIAIGQAWSPYRTVAAWYLWRVPKIKSA				NA	NA	NA	NA	NA
D1-36_02880	489			hypothetical protein	ATGCACCTCGAAGGATCCTGCCATTGCGGCGCCGTTTCGTTCAGCCTGGACAGCACCCATCCCTACCCTTACCAGCGGTGCTATTGTTCGATCTGTCACAAGACCCAGGGCGGCGGCGGTTTTGCGGTCAACCTGGGGGGCGATGCGAAGAGTCTCAAGGTGCAAGGCCGCAAGCACATCACGGTCTACCATGCGCGACTCAAGGATGAAGGCGATAAACGCGCCCATCGCAGCAGCGCCGAACGGCATTTCTGTTCGCTTTGCGGTTCGGGGTTGTGGTTGTTCAGCCCCGAGTGGCCGGAGCTGATCCATCCGTTTGCCTCAGCCATCGACACGCCGTTGCCGGTACCGCCGGAGCACACCCACCTGATGCTGGGTTCCAAGGCGCCGTGGGTGGAAGTCGAGGCGCATCCGGGCGACCAGCAGTTCGAGGTATATCCCGAGGAATCGATTGCCCAGTGGCATGAACGGTTGGGTTTGACCCGTTAG	MHLEGSCHCGAVSFSLDSTHPYPYQRCYCSICHKTQGGGGFAVNLGGDAKSLKVQGRKHITVYHARLKDEGDKRAHRSSAERHFCSLCGSGLWLFSPEWPELIHPFASAIDTPLPVPPEHTHLMLGSKAPWVEVEAHPGDQQFEVYPEESIAQWHERLGLTR				NA	NA	NA	NA	NA
D1-36_02881	603			hypothetical protein	ATGATCCTTCCCGAAATTCACGAGTTCCTCGGCTGCCGCACCCCCGATGCCTGGGTCCAGGCTGCGCTGGCCGATCAGGAAACGCTGCTGATCGACCACAAGAACTGCGAGTTCAAGGCCGCCAGCACCGCCCTGAGCCTGATCGCCAAGTACCATTCCCATGTAGATTTGATCAACATGATGTCGCGCCTGGCCCGGGAAGAGTTGGTGCATCATGAGCAGGTCATGCGTCTGATGAAAAAACGCAAGGTAGGTCTTCGCCAGCTCTCTGCCGGGCGCTATGCCTCGGGCTTGCGCAAAGTGGTGCGCAGCCACGAGCCGGTGAAAGTGGTGGACACCCTGGTGGTCGGCGCCTTCATCGAAGCCCGCAGCTGCGAGCGATTCGAGGCGCTGGTGCCGCATCTGGACGAGGAACTCGGCAAATTCTATTTCGGCTTGCTGAAAAGTGAGGCCCGGCACTTCCAGGGTTATCTGAAGCTGGCTTATCAGTATGGAGACGCCAAGGACATCGCCCAGGTGATCGACAAGGTTCGCGAGGCCGAGCGCGAGCTGATCGAGTCGCCGGATGGGGAGTTCCGGTTTCACAGCGGCGTGCCGGCCTAA	MILPEIHEFLGCRTPDAWVQAALADQETLLIDHKNCEFKAASTALSLIAKYHSHVDLINMMSRLAREELVHHEQVMRLMKKRKVGLRQLSAGRYASGLRKVVRSHEPVKVVDTLVVGAFIEARSCERFEALVPHLDEELGKFYFGLLKSEARHFQGYLKLAYQYGDAKDIAQVIDKVREAERELIESPDGEFRFHSGVPA	PGPT0007220_740	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-CYTOKININ_METABOLISM	PHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007220-miaE-K06169	NA	NA
D1-36_02882	864			hypothetical protein	ATGCAAGCCATTCGCAGCATCCTGGTGGTCATCGAACCCGAACATTCGGAAAGCCTTGCGCTCAAGCGCGCCAAATTGATCGCCGGAGTAACCCAGGCTCATCTGCATCTGCTGGCATGCGACAAACACCACGATCATACCGGCCTGCTCAGCGTGCTGAAAAGCGCATTGCTGGCCGACGGCTATAGCGTCACCACCGAACAGGCCTGGAACGAAAGCCTTTACGAAACCATCATCGACGTGCAGCAGGCCGAAGGCTGTGGCCTGGTCATCAAGCAACACTTCCCGGACAGCCCATTGAAAAAAGCCCTGCTGACCCCGGCGGACTGGAAGTTGCTGCGCCATTGCCCGACCCCGGTGCTGCTGGTCAAGACGTGCGGTTCCTGGAAAGACCGGGTCATCCTGGCGGCAGTCGATGTCGGCAATGCCGATGGCGAGCATCGTCACCTGCACTCGACCATCATCGATCACGGCTATGACATTGCCCTCCTGGCCAAGGCGCACCTGCATGTAATTAGCGCCCACCCGTCACCGATGCTCTCGTCGGCCGACCCGACCTTCCAGCTCAAGGAAACCATCGAAGCGCGTTATCGCGAACAATGCCGGGCGTTCCAGGCCGAGTTCGACATCGATGACCAGCATCTGCACATCCAGGAAGGCCCGGCGGACGTATTGATTCCCTACATGGCCCACAAGCTTCAGGCCGCGGTCACCGTGATTGGCACCGTGGCGCGCTCCGGCTTGTCAGGCGTGTTGATCGGCAATACCGCCGAAGCCGTGCTCGATGCGCTGGAAAGCGATGTGCTGGTGCTCAAGCCACAGGAAGTCGAAGACCACTTGGTGGAGTTGGCGTACAAGGGTTGA	MQAIRSILVVIEPEHSESLALKRAKLIAGVTQAHLHLLACDKHHDHTGLLSVLKSALLADGYSVTTEQAWNESLYETIIDVQQAEGCGLVIKQHFPDSPLKKALLTPADWKLLRHCPTPVLLVKTCGSWKDRVILAAVDVGNADGEHRHLHSTIIDHGYDIALLAKAHLHVISAHPSPMLSSADPTFQLKETIEARYREQCRAFQAEFDIDDQHLHIQEGPADVLIPYMAHKLQAAVTVIGTVARSGLSGVLIGNTAEAVLDALESDVLVLKPQEVEDHLVELAYKG	PGPT0014995_873	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0014995-uspE-K14055	NA	NA
D1-36_02883	471			hypothetical protein	ATGCCCAACCAGCTCATCAAGACCCCCTGCGTCGGCCTCTGTTCCACTGTCTACGGTGACCTGGTCTGCCGTGGCTGCAAGCGGTTCCACCATGAAGTGATCCACTGGAACGGCTACAACGAGGAAGAAAAACGCGCGGTGTGGATGCGGCTCGAGCAACTGCTGGTGCAGGTAATGGTGGCGAAGCTGGAGGTTTTCGACCCGGCGTTGCTGCGTCAGCAACTGGAGGCGCGCAAGATCCGCTTCGTGCCGCACCAATCGGAATATTGCTGGGCCTATCAACTGATCGCCCGGGGCGCGCGGGTGATCAATAACCTGGAAGCGTACGGCATGGTCCTGTTGCCGGAGTTTCGCGATTGGGACCTGCCGGACCTGCGAGATGCCATTGATCGGGAATTCTTCCTCCTGTCCGAAGCGCATTACCAACGTTATATCGCGCCGGGGTTCCTCAAGGATGCGATGGACGGCTGA	MPNQLIKTPCVGLCSTVYGDLVCRGCKRFHHEVIHWNGYNEEEKRAVWMRLEQLLVQVMVAKLEVFDPALLRQQLEARKIRFVPHQSEYCWAYQLIARGARVINNLEAYGMVLLPEFRDWDLPDLRDAIDREFFLLSEAHYQRYIAPGFLKDAMDG	PGPT0013210_131	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013210-ydhL-K06938	NA	NA
D1-36_02884	2679	acnB	COG1049	Aconitate hydratase B	ATGAGTGCCGTGAGTTTCTGGATGAGCGTCCCGGACACCCATTTGGGACCACTGATGAGGGTAATAACTGTGCTTGAAGCCTACCGCAAACATATCGAAGAGCGTGCAGCCCTGGGTATCGTTCCCCAGCCGCTTAACGCCGAACAAACCGCAGGCCTGATCGAGCTGCTGAAGAATCCTCCGGCTGGCGAAGAAGCCTTCCTCGTTGACCTGATCACCAATCGTGTTCCGCCAGGCGTCGACGAAGCCGCCTACGTCAAGGCCGGCTTCCTGTCCGCCCTGGCCAAGGGCCAGGCCCAATCCCCTCTGCTGGACAAGAAGCGCGCTGTAGAACTGCTCGGCACCATGCAGGGTGGCTACAACATCGTGACCCTGGTCGAGCTGCTGGACGACGCCGAGCTGGCGCCAGTCGCCGCCGAAGAACTCAAGCACACCCTGCTGATGTTCGACGCCTTCCACGACGTGGCTGAAAAAGCCAAGAACGGCAACGTTCACGCCAAGGCCGTGCTGCAATCCTGGGCTGACGGCGAGTGGTTCAAGAAGCGCCCGGTGCTGGCCGACAAGATCAGCCTGCGCGTGTTCAAGGTCACCGGCGAAACCAACACCGACGACCTGTCCCCTGCCCCGGACGCCTGGTCGCGTCCTGACATCCCGCTGCACGCCCTCGCCATGCTGAAAATGGCCCGTGACGGCATCGTTCCGGACGAGCAAGGCAAGACCGGCCCGATGAAGCAGATCGAAGAAATGCGCGGCCAGGGCTTCCCGATCGCCTACGTCGGCGACGTGGTGGGTACCGGCTCCTCGCGTAAATCGGCCACCAACTCGGTGCTGTGGTTCTTCGGCGACGACATTCCCTACGTGCCGAACAAGCGCGCAGGCGGTTTCTGCTTCGGCAGCAAGATCGCACCGATCTTCTACAACACCATGGAAGATGCCGGCGCACTGCCGATCGAGTTCGACGTGTCGAACATGAACATGGGCGACGTGATCGACCTGTACCCGCACGCCGGCAAAGTCTGCAAGCACGGCACCGACGAAGTCATCACCACCTTCGAAATGAAGACCCCGGTGCTGTTGGACGAAGTCCGCGCTGGTGGCCGCATTCCGCTGATCATCGGCCGTGGCCTGACCGAGAAGGCTCGCGCCGAACTGGGCCTGCCACCATTCGACCTGTTCAAGAAGCCTGAAGCGCCTGCTGAAAGCACCAAGGGTTTCACCCTGGCGCAGAAGATGGTCGGCAAGGCTTGCGGCCTGGCAGAAGGCCAAGGCGTTCGTCCTGGCACCTACTGCGAACCGAAAATGACCACCGTGGGTTCCCAGGACACCACAGGTCCCATGACCCGTGACGAACTGAAAGACCTGGCGTGCCTGGGCTTCTCGGCTGACCTGGTGATGCAGTCCTTCTGCCACACCGCGGCCTATCCAAAGCCGATCGACGTCACCACCCACCACACCCTGCCTGATTTCATCATGACCCGCGGCGGCGTTTCCCTGCGTCCGGGCGACGGCATCATCCACTCGTGGCTCAACCGCATGCTGCTGCCAGACACCGTGGGCACCGGTGGCGACTCGCACACCCGTTTCCCGATGGGCATCTCGTTCCCGGCCGGTTCCGGCCTGGTCGCGTTCGCCGCTGCCACCGGCGTCATGCCGCTGGACATGCCGGAATCGATCCTGGTGCGCTTCAAAGGCAAGATGAAACCTGGCATCACCCTGCGTGACCTGGTTCATGCCATTCCTTACTTCGCTATCCAGAACGGTCTGCTGACCGTCGAGAAGAAAGGCAAGAAAAACGCCTTCTCCGGCCGCATCCTGGAAATCGAAGGCCTGGAAGGCTTGACCCTGGAGCAGGCGTTCGAGTTGTCCGACGCCTCGGCCGAACGTTCGGCTGCCGGTTGCACCATCAAGCTGTCGAAAGAGTCGATCACCGAGTACCTGCAGTCCAACATCACCCTGCTGCGCTGGATGATCGGCGAAGGCTACGGCGATGCGCGTACCCTGGAACGTCGCGCCCAAGCAATGGAAGCCTGGATCGCCAACCCGCAACTGATGGAAGCCGATGCCGACGCCGAATACGCCGAAGTCATCGAAATCGATCTGGCCGACATCAGCGAGCCTGTGCTCTGCGCGCCGAACGACCCGGACGACGCCCGTCTGTTGTCCAGCGTTGCTGGCGAGAAGATCGACGAAGTGTTCATCGGTTCGTGCATGACCAACATCGGTCACTTCCGCGCTGCCGGCAAACTGCTGGATCAGGTCAAGGGTCAGCTGCCAACCCGTCTGTGGCTGTCGCCACCGACCAAGATGGACGCTCACCAACTGACCGAAGAAGGCTACTACGGCATCTACGGCAAGGCCGGTGCTCGGATGGAAATGCCAGGCTGCTCGCTGTGCATGGGTAACCAGGCACGCGTCGAGCCGAACTCCACCGTGGTGTCGACTTCGACCCGTAACTTCCCGAACCGTCTGGGTGACGGCGCGAATGTCTATCTGGCCTCGGCCGAACTGGCATCCGTAGCGTCCATCCTGGGTCGCCTGCCGACCGTCGAGGAGTACATGGAATACGCCGGCAAGATCGACAGCATGGCAGCGGACGTGTACCGCTACCTGAGCTTCGACCAGATCGCCGAGTTCCGTGAAGCGGCTGCAAACGCCAACATCCCGGTCGTCCAAGCGTAA	MSAVSFWMSVPDTHLGPLMRVITVLEAYRKHIEERAALGIVPQPLNAEQTAGLIELLKNPPAGEEAFLVDLITNRVPPGVDEAAYVKAGFLSALAKGQAQSPLLDKKRAVELLGTMQGGYNIVTLVELLDDAELAPVAAEELKHTLLMFDAFHDVAEKAKNGNVHAKAVLQSWADGEWFKKRPVLADKISLRVFKVTGETNTDDLSPAPDAWSRPDIPLHALAMLKMARDGIVPDEQGKTGPMKQIEEMRGQGFPIAYVGDVVGTGSSRKSATNSVLWFFGDDIPYVPNKRAGGFCFGSKIAPIFYNTMEDAGALPIEFDVSNMNMGDVIDLYPHAGKVCKHGTDEVITTFEMKTPVLLDEVRAGGRIPLIIGRGLTEKARAELGLPPFDLFKKPEAPAESTKGFTLAQKMVGKACGLAEGQGVRPGTYCEPKMTTVGSQDTTGPMTRDELKDLACLGFSADLVMQSFCHTAAYPKPIDVTTHHTLPDFIMTRGGVSLRPGDGIIHSWLNRMLLPDTVGTGGDSHTRFPMGISFPAGSGLVAFAAATGVMPLDMPESILVRFKGKMKPGITLRDLVHAIPYFAIQNGLLTVEKKGKKNAFSGRILEIEGLEGLTLEQAFELSDASAERSAAGCTIKLSKESITEYLQSNITLLRWMIGEGYGDARTLERRAQAMEAWIANPQLMEADADAEYAEVIEIDLADISEPVLCAPNDPDDARLLSSVAGEKIDEVFIGSCMTNIGHFRAAGKLLDQVKGQLPTRLWLSPPTKMDAHQLTEEGYYGIYGKAGARMEMPGCSLCMGNQARVEPNSTVVSTSTRNFPNRLGDGANVYLASAELASVASILGRLPTVEEYMEYAGKIDSMAADVYRYLSFDQIAEFREAAANANIPVVQA	PGPT0001470_448	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001470-acnB-K01682	NA	NA
D1-36_02885	1281	sdaC	COG0814	Serine transporter	ATGAATGATCAGGCCAACAGCGTCGAAGAGCGCTTTGAAACGACAGCCCCAGCCACCCTCAGCCAATGGAGTCGCCAAGACACGACCTGGATGCTGGGCCTGTTTGGCACCGCCATTGGTGCCGGCACGCTGTTCTTACCGATCAATGCCGGCCTTGGCGGTTTCTGGCCGCTGCTGGTGCTGGCGGTGCTGGCGTTCCCCATTACGTTCTATGCGCATCGGGGCTTGACCCGTTTTGTATTGTCCGGCCGCGACGGCGCGGACATCACCGAGGTGGTGGAGGAGCATTTCGGTATCAAGGCCGGTGCGCTGATCACGCTGTTGTACTTCCTCGCCATCTTCCCGATCTTGCTGATCTACAGCGTGGCGCTGACCAACACGGTCGGCAGTTTCCTGGAACACCAGCTGCACGTGCAGCCGCCGCCCCGGGCCTTGTTGTCGCTGATGCTCATCCTCGGCCTGCTGGCCGTGGTCCGCTGCGGCGAGCAGGTCATCGTCAAGGCCATGAGCCTGATGGTCTATCCCTTTATCGTGGCGCTGTTGTTTCTGGCGGTGTTCCTGGTGCCCCATTGGAACGGCGGGATCCTGAGCACGGCGTCGACGGTGCCGCAGCCTTCGGCGTTGCTGCATACCTTGTGGCTGGCGATTCCGGTGATGGTGTTCTCATTCAACCATTCGCCGATCATCTCGGCATTCGCAGTGGACCAGAAACGCCGCTACGGCAATGACGCTGAAAAGCGCAGTGCGCAGATCCTGTCGCGCGCCCATGTGCTGATGGTCGTAATGGTGCTGTTCTTCGTGTTCAGCTGCGTGCTGACCCTGTCCCCGGCACAACTGGCCGAGGCCAAGGCGCAGAACCTGTCGATCCTGTCGTACCTGGCCAACCACTTCAGCAACCCGACCATCGCCTTCGCGGCGCCGTTGATTGCTTTCGTGGCGATCGCCAAATCCTTCCTCGGGCATTACATCGGCGCCAGCGAAGGCCTCAAGGGCTTGATCGTCAAGAGCGGCCGCCGCCCAGCCCCCAAGACCCTGGACCGCCTCACGGCAGCGTTCATGCTGGTGGTGTGTTGGGTTGTCGCCACTCTCAACCCAAGCATCCTGGGCATGATCGAAACCCTGGGCGGCCCGGTGATCGCGGCGATTCTGTTCCTGATGCCGATGTACGCCATCCGCAAGGTCCCGGCCATGGCTCGTTATCGCGGACAAGCGTCGAATGTCTTTGTGGTGGCGGTGGGTTTGGTGGCGATTACTGCGTTGGTCTATTCCCTCTTGGCCTGA	MNDQANSVEERFETTAPATLSQWSRQDTTWMLGLFGTAIGAGTLFLPINAGLGGFWPLLVLAVLAFPITFYAHRGLTRFVLSGRDGADITEVVEEHFGIKAGALITLLYFLAIFPILLIYSVALTNTVGSFLEHQLHVQPPPRALLSLMLILGLLAVVRCGEQVIVKAMSLMVYPFIVALLFLAVFLVPHWNGGILSTASTVPQPSALLHTLWLAIPVMVFSFNHSPIISAFAVDQKRRYGNDAEKRSAQILSRAHVLMVVMVLFFVFSCVLTLSPAQLAEAKAQNLSILSYLANHFSNPTIAFAAPLIAFVAIAKSFLGHYIGASEGLKGLIVKSGRRPAPKTLDRLTAAFMLVVCWVVATLNPSILGMIETLGGPVIAAILFLMPMYAIRKVPAMARYRGQASNVFVVAVGLVAITALVYSLLA	PGPT0011650_602	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-BACTERIOCINS|COLICINS,PGPT0011650-sadC|dcrA-K03837	NA	NA
D1-36_02886	966		COG1052	2-ketogluconate reductase	ATGACCGCAACCGTTCTGGTACTGGTTGAAACCGTCAACGAATACCTGCCAATCCTGGAGCGCCAGGGTTATCACTTGGAATTGGCGCCCACGCCCGCCGAACGCAAGACAGCGATTTTCGAACACGGCGACCGGTTCAGCGCGGTGTTGACCCGTGGCCCCCTCGGTTTGACGGCTGAAGAAATGACGGCTTTGCCCAACCTCAGGATCATCTGTGTAATCGGCGCCGGTTATGAGCAAGTGGACCTGCAAGCCGCCAGCGAGCGAGGCATCGTCGTCACCAACGGTGCCGGGGTCAATGCCTCCTCGGTGGCCGACCATGCCATGGCGTTGTTGCTGGCGTTGGTGCGCGATGTGCCTCGATCCGACGCGGCCCTGCGCCGTGGCGAGTGGCCGCGAACCATGCGCCCTTCCCTCGCGGGCAAGCACCTGGGCATCCTGGGGCTCGGCGCCGTGGGCATGGCCATTGCCAAGCGGGCCGCCCTAGGTTTCGACATGAAGGTCAGCTACCACAACCGTCGCGTGCGCAGCGATGTGCCCTACGCCTTCTGCGCCACCCCCACCGAGCTCGCCAGGGTGTCGGACTTCTTGATTGTCGCCACGCCCGGAGGCCTGGACACCCGCCAATTGATCAACAAGCAAGCCCTCGATGCCCTCGGGCCCCACGGTTTCTTGGTGAATATCGCCCGGGCCAGCGTGGTCGCCACGACCGAACTCATCAGCGCCCTTGAACACCGGCGAATTGCCGGGGCTGCGCTGGATGTGTTCGATCACGAGCCCGAAGTGCCTGACGCCCTGAAACACTTGCCCAATGTCGTGCTCACGCCTCACGTGGCCGGCCTGTCGCCGGAAGCGACACGCGCCACGGTGGAGTTGGTGGGTGAGAACCTGAACGCGTTCTTTTCCGGCAAGCCGGTGCTGACGCCAGTGCAGCTACCCGATGCGCAGGCTTGCGTTGACCGGTAG	MTATVLVLVETVNEYLPILERQGYHLELAPTPAERKTAIFEHGDRFSAVLTRGPLGLTAEEMTALPNLRIICVIGAGYEQVDLQAASERGIVVTNGAGVNASSVADHAMALLLALVRDVPRSDAALRRGEWPRTMRPSLAGKHLGILGLGAVGMAIAKRAALGFDMKVSYHNRRVRSDVPYAFCATPTELARVSDFLIVATPGGLDTRQLINKQALDALGPHGFLVNIARASVVATTELISALEHRRIAGAALDVFDHEPEVPDALKHLPNVVLTPHVAGLSPEATRATVELVGENLNAFFSGKPVLTPVQLPDAQACVDR	PGPT0009155_7457	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009155-serA-K00058	NA	NA
D1-36_02887	1068			hypothetical protein	ATGGCAGTTACTGATCAGTCCACCCGCGTGCGCGACGGTGAAGAACTCGATGCCAACCTGATCGACCCGTACCTCAAGGCCCACATTCCTGGCTTGACCGGCACGCCGGTGATCAGCCAGTTTCCCGGTGGCGCGTCAAACCTGACGTACCTGCTCGAATACCCCGAACAGGAGTTCGTCCTGCGCCGGCCCCCGTTCGGTCACAAGGCCAAATCGGCCCACGACATGGGCCGTGAGTTCCGCATCCTCAATCAATTGCGTGAAGGTTTTCCGTACTGCCCGAAAGCCTACGTCCATTGCACCGACGAGTCGGTGATGGGCGCCGAGTTTTACGTGATGGAGCGGGTCAAGGGCATCATTTTGCGCTCCGAGCTGCCACCGGAACTGGGCTTCGACGCCGCCCGCACCGAAGCATTGTGCAAGAGCTTCATCGACCGGCTTGTCGAGCTGCACCGCGTCGACTACACCGCTTGCGGCCTGGCCGACCTGGGCAAGCCCGAGGGCTACGTGGCCCGGCAGATCCGTGGTTGGAGCGACCGCTACGACAAGGCCTTGACGCCCGATGCGCCGAAATGGGAGACGGTCAAGGCCTGGCTCAACGACAAGATGCCCGCCGATCATCCAACATCGAGCATCGTCCACAACGACTACCGCTTCGACAATGTCATCCTGGACCCGGACAACCCGATGCAGATCATCGGCGTGCTGGATTGGGAACTGACCACCCTCGGCGATCCGTTGATGGACCTGGGCAACAGCCTCGCGTACTGGATCGAAGCCGGTGATCCGGCGCCCGTGCAACTGATGCGGCGTCAGCCAAGCCACGCGCCGGGCATGCTGACCCGCCGTGAGTTCGTCGATTACTACGCCGAACGGTCCGGGATTCGCATCGACAACTTCGACTTCTACTACACCTATGGACTGTTCCGCCTGGCCGGTATCGTCCAGCAGATCTACTACCGCTTTTTCCATGGCCAGACCCAGGACAAACGCTTCGCGCAGTTCGTTCAGATGAACAAGCTGCTGGAGCAGATGAGCCTGCAAGTCATCAGCAAATCCACGCTCTGA	MAVTDQSTRVRDGEELDANLIDPYLKAHIPGLTGTPVISQFPGGASNLTYLLEYPEQEFVLRRPPFGHKAKSAHDMGREFRILNQLREGFPYCPKAYVHCTDESVMGAEFYVMERVKGIILRSELPPELGFDAARTEALCKSFIDRLVELHRVDYTACGLADLGKPEGYVARQIRGWSDRYDKALTPDAPKWETVKAWLNDKMPADHPTSSIVHNDYRFDNVILDPDNPMQIIGVLDWELTTLGDPLMDLGNSLAYWIEAGDPAPVQLMRRQPSHAPGMLTRREFVDYYAERSGIRIDNFDFYYTYGLFRLAGIVQQIYYRFFHGQTQDKRFAQFVQMNKLLEQMSLQVISKSTL				NA	NA	NA	NA	NA
D1-36_02888	768	fabG_7		3-oxoacyl-[acyl-carrier-protein] reductase FabG	ATGTCCAAGACCCAGTTGTTCGACCTCGACGGTAAGATCGCTTTCGTTTCCGGCGCCAGCCGCGGCATCGGCGAAGCCATCGCCAAACTGCTGGCCCAGCAAGGCGCCCACGTGATCGTCTCCAGCCGCAAGCTCGATGGTTGCCAGCATGTCGCTGACGCCATCATCGCTGCCGGCGGCAAGGCCACCGCCATTGCCTGTCACATTGGTGAAATGGAGCAGATCAGCCAGGTGTTCGCCGGCATCCGCGAACAGTTCGGGCGTCTGGATATCCTGGTGAATAACGCCGCCACCAACCCGCAATTCTGCAACGTGCTGGACACCGACCTGGGCGCGTTCCAGAAAACCGTGGACGTGAACATTCGCGGCTATTTCTTCATGTCGGTGGAGGCCGGCAAGCTGATGCGCGAAAACGGTGGCGGCAGCATCATCAACGTGGCGTCGATCAACGGCATTTCCCCGGGAATCTTTCAGGGCATCTACTCGGTCACCAAGGCCGCGGTGATCAACATGACCAAGGTCTTCGCCAAGGAATGCGCGCAGTTCGGCATCCGCTGCAACGCCCTCCTGCCGGGCCTGACCGATACCAAGTTTGCCTCAGCGCTGGTCAAGAACGATGCCATCCTCAAAACCGCCCTGGCGCAGATTCCCCTCAAGCGCGTGGCCGACCCGAGCGAAATGGCCGGCGCGGTGTTGTACCTGGCCAGCGATGCGTCCAGCTACACCACGGGGGTGGCGTTGAATGTGGACGGTGGGTTCCTTTCCTGA	MSKTQLFDLDGKIAFVSGASRGIGEAIAKLLAQQGAHVIVSSRKLDGCQHVADAIIAAGGKATAIACHIGEMEQISQVFAGIREQFGRLDILVNNAATNPQFCNVLDTDLGAFQKTVDVNIRGYFFMSVEAGKLMRENGGGSIINVASINGISPGIFQGIYSVTKAAVINMTKVFAKECAQFGIRCNALLPGLTDTKFASALVKNDAILKTALAQIPLKRVADPSEMAGAVLYLASDASSYTTGVALNVDGGFLS	PGPT0030550_180	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-LIPID_METABOLISM|OXIDOREDUCTASE	PUTATIVE-BILE_ACID_BIOSYNTHESIS,PGPT0030550-hdhA-K00076
D1-36_02889	1110	iolG_3		Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenase	ATGCGTGAACTCGGCATCGGTCTGATTGGCACCGGCTTCATGGGCCGTGCCCATGCCTTGGCGTTCCACAATGCCAAGGCGGTGTTCGACCTCCCCTTGAACCTGAAACTGGCGGCCCTGGCCGACGCCGATCCGCAACGTGCCCGGCAATGCGCCCAGAGCTGGGGGTTCGAGACGGCTCACAGTGACTGGCAACGGCTGATCGACGACCCGAAGGTTCATTTGATCGCCATCACCACGCCCAATCATTTGCACTTTCCGATGGCCATGGCCGCGTTGGCGGCGGGCAAGCCGGTCTATTGTGAAAAGCCGTTGGCGGTATCCCTGGAACAGGCCGAGCAGATGCGCCAGGCAGCCAAGGCGGCTGGCGTGGTGACGCGGGTCGGCTACAACTACCAGCACAACCCGATCATCCAACTGGCGGGGGGGATGATCCAGCGCGGAGAGCTTGGACAGATCATCAGTTTCCAGGGCGAATTCAGCGAAGATTTCATGGCCGACCCGGCCTCACCCTGGTCGTGGCGCTGCGAGGCCGCGCACGCCGGTGGCGCGCTGGCGGACCTGGGCAGCCATCTCCTGGCGATGGCGCGGCATTTGTTGGGCGAGGTAGAGGCTGTGTGTGCCGACAGCCAAACCGTGCACAAACAGCGTCCTGCCAACGTTGGCAGCACCGAACAACGCGCGATCGCGGTGGATGATCAGGTCAATGCACTGCTGCGCTTTGCCAGCGGCGCCCGGGGCACGGTGAGCAGCAGTTGGCTCAAGCACGGCTGCAAGAATCACCTGAGCTTCGAAATCAGCGGCACACTCGGCACGCTGGCGTTCGACCAGGAAAGGCTGAACGAGCTGCGGGTGTGCCGCGCCGGCCAGGCGGGTTTCCAGCGTCTGCTGGCCGGCCCGGATCTACCCGGCTATGCCGCGTTCAGCCCTGCCGCCGGGCACCAGTTGGGCTACAACGAACTGAAGACGTTGGAGGTGCAGGAGTTGATCATGGCCTTAGCCGGCGAAGGCGCCAACGGAACGAATTTCGAGGAAGCCTGGGAAGTGGAGCGGCTGGCGGCGGCGATTCGCGTGGCGGCGAGTGAGGAGCGTTGGGTGCAAGTGCGGTAG	MRELGIGLIGTGFMGRAHALAFHNAKAVFDLPLNLKLAALADADPQRARQCAQSWGFETAHSDWQRLIDDPKVHLIAITTPNHLHFPMAMAALAAGKPVYCEKPLAVSLEQAEQMRQAAKAAGVVTRVGYNYQHNPIIQLAGGMIQRGELGQIISFQGEFSEDFMADPASPWSWRCEAAHAGGALADLGSHLLAMARHLLGEVEAVCADSQTVHKQRPANVGSTEQRAIAVDDQVNALLRFASGARGTVSSSWLKHGCKNHLSFEISGTLGTLAFDQERLNELRVCRAGQAGFQRLLAGPDLPGYAAFSPAAGHQLGYNELKTLEVQELIMALAGEGANGTNFEEAWEVERLAAAIRVAASEERWVQVR				NA	NA	NA	NA	NA
D1-36_02890	1443			hypothetical protein	ATGGACACAGCGCTGGAGCAATCTGTGATCGGCACCGCCCGCCAGGCCGATATCCTGATTATCGGCGGCGGCCTGAGCGGAACCCTGTTGGCGGCGCAACTGCTGCGGCTGCCGGGCCGGCGCGAGGTATTGATTGTCGAGCCGCGCAGCGAGTTGGGCCGGGGCGAGGCCTACAGCGCCGTGGAACTGGGCCACACCCTCAATGGCAATGCGGCACGCATGAGCGTCGACCCGGACAATGCCGATGATCTCACGCAATGGCTCGCTGCGTTCATCGTGGCCGGTGGTTGGCCTGAGTCCGATCAGCAACATGTGCCGGTCAGCGAGTTGTTTCCTCCGCGGGGGATGTTCGGCCTGTATGTGCAACAGCGTCTGGCCGAGGCTCGTGCGTTGGGCGCGCGCCATGGATCGGTGGCGGAGCATGTGCGCGGGGAGGCCGTCGATTTGCGGGTCATCGATGATGCCGTGCAAGTGACGCTCGGCGATGGCCAAGTATTGCAAGGACGCTTTGCCGTGCTCGCCACCGGCATGTTCCCCGCGGCACGAACCCTGCAGACCGAGTCGAGCGGCTTGAACGCCGCGGCGCTTGATCCGTGGGACGTGGCTGCGATGCGCCAGCTTGATCCGCTAGCGACGGTCATGATCATCGGTTCGGGATTGACCATGGTCGATGCCGTGGTATCGCTGGAACAGGCCGGGCATCGCGGACCTATCGAAGTATTTTCCCGTCACGGTTTGTTGCCCCATGTACGTCGGCAGCCACCGGCCTGGGTGGACTTTCTCGCCGATGATCACAGCCTGCGTTCGCCACGCCAGTTGATGCGCGCCTCGCGTGGGCAATGCCGCTTGGCCCAAGCCCAGGGCATCGATTGGCAGGCCCCGCTGGACACGGTCCGTGCCCATATCGGGCGTTTGTGGAGTCAGGCCAGCGATGTGCAGCGCCGACAGTTCGTGCGGCATGTGCGACCTTGGTGGGAAAGCCATCACCATCGCTCGCCTCCGTTGAGCGCGGAACTGGTGGCGCGTCTGCACGGGGAGGGACGGTTGCGGATCCAGGCGGCGTCGTACAAGGGGCTTGTGTCGTCTGGCGAAGGATCGGTGGCGATCAATATTCGCCGAAGGGGCGAGGCTGGACTGGAAGTGGTGGAGGGCGCCGCGTTGATCAACTCCAGCGGCATTGAATATGACTGGCGCCGTGTTGCCCGGCCGTTGCCGCAGCAGTTGTTGGCCCGAGAGTTGGTCCAGCCCGGTCCGTTGGCGCTGGGTATTGCAGCGCGTGCCGACGGCGCAGTGCTGGACGCCCAAGGCGAGCCGGCCAGCCGCCTGTTCGCGATGGGCCCTCCATTGCGAGGGATGTGGTGGGAAAGCACGGCCGTCACCGACGTGGCGAGCCAGGCCAAGGCACTGGCGGGGCGGTTAGCTGAACTCCAAGCCCAGCGTTGA	MDTALEQSVIGTARQADILIIGGGLSGTLLAAQLLRLPGRREVLIVEPRSELGRGEAYSAVELGHTLNGNAARMSVDPDNADDLTQWLAAFIVAGGWPESDQQHVPVSELFPPRGMFGLYVQQRLAEARALGARHGSVAEHVRGEAVDLRVIDDAVQVTLGDGQVLQGRFAVLATGMFPAARTLQTESSGLNAAALDPWDVAAMRQLDPLATVMIIGSGLTMVDAVVSLEQAGHRGPIEVFSRHGLLPHVRRQPPAWVDFLADDHSLRSPRQLMRASRGQCRLAQAQGIDWQAPLDTVRAHIGRLWSQASDVQRRQFVRHVRPWWESHHHRSPPLSAELVARLHGEGRLRIQAASYKGLVSSGEGSVAINIRRRGEAGLEVVEGAALINSSGIEYDWRRVARPLPQQLLARELVQPGPLALGIAARADGAVLDAQGEPASRLFAMGPPLRGMWWESTAVTDVASQAKALAGRLAELQAQR				NA	NA	NA	NA	NA
D1-36_02891	438	sutR	COG1396	HTH-type transcriptional regulator SutR	ATGCTGGTTGCCATCGAAGCGGGCGAAAAGAATGTCAGCCTGACCACCCTGGACCGCGTTGCCGAAGCCTTGGACGTGGCTTTCAGCGACCTCATCCAGGCGCCTGACGCCCGCGATCCGAGCCGGATCAATGAGCTGGCCTGGGCCGGTGTGATTCCCGGCAGCAAAGCCATCTTATTGGCCAAGGCCACCGCCAACCGAGAGGTGGAGCTTTGGGAATGGCGCCTGGAACCAGGCGAGCATTACCATTCAGAACCCGACGCGGACGGTTGGAGCGAACAGCTCTACGTATTCGAGGGCTGCCTGACATTGTTGTTGGGCAGCGAAGAACGTCGAGTCGGGGCCGGCGAGTTTTTCATGTTTGCCAGCAACCAGCCCCATGCTTATCGCAACGATGGTCCGGTGGCGGTGAGATTCGTCCGCAACGTGGTGATTTGA	MLVAIEAGEKNVSLTTLDRVAEALDVAFSDLIQAPDARDPSRINELAWAGVIPGSKAILLAKATANREVELWEWRLEPGEHYHSEPDADGWSEQLYVFEGCLTLLLGSEERRVGAGEFFMFASNQPHAYRNDGPVAVRFVRNVVI				NA	NA	NA	NA	NA
D1-36_02892	1089			hypothetical protein	ATGCCGCAGGCGGCGGACGTTCTGGCTGACGTGTTGCAGGACGGACGCCCGCTGGCCATTTTCTTTGTGCACTATATTGCTCATCTGCCGGGGTTGCGCATTATACTGCCCAACTTCGGGCGCATTGTGCGTCCGCCTCAAGTAGTGCGCAAGGTCATGGCATCGGTGAACTCCCCGCAAACTTCCTCCCATCTGCCCAGGTTCAGCAAGGCCGAATGCGTGCTCGTACTGATCACCATGATCTGGGGCGGCACGTTCCTGCTGGTGCAACACGCCATGACGGTCAGCGGACCGATGTTCTTCGTGGGCCTGCGCTTTGCCGCCGCGGCGGCTTTTGTCGCGCTGTTCTCGTGGCGCCACTTGCGTGACCTGACCCTGTTCGAGCTCAAGGCCGGGGCCTTCATCGGCGTGGCGATCATGCTCGGCTACGGCCTGCAAACCGTAGGCCTGCAAACCATTCCCAGCAGCCAATCGGCCTTTATCACCGCCCTGTATGTGCCTTTCGTGCCGCTGTTGCAATGGCTCGTGCTGGGCCGGCGGCCGGGGTTGATGCCAAGCATAGGCATCATGTTGGCGTTCACTGGGCTCATGCTGGTGTCCGGGCCGGCTGGGGCCTCGCTGAACTTCAGCCCCGGTGAAATCGCCACGCTGATCAGCGCCATCGCGATTGCGGCGGAGATCATTCTAATCAGTGCCTATGCGGGCCAGGTCGATGTACGGCGGGTAACCGTGGTGCAACTGGCAAGCACGGCGGTGCTGGCATTCCTCATGGTGGTGCCGACGCAAGAGGTCATCCCAGGCTTTTCCTGGCTGTTGCTGATCAGCGCGGTGGGCCTGGGCGCCGCCAGCGCAGCGATCCAGGTGGCGATGAACTGGGCCCAGAAAAGCGTCTCGCCGACCCGCGCCACGCTTATCTATGCCGGCGAACCGGTATGGGCCGGCATCGCCGGGCGCCTGGCGGGTGAGCGGTTGCCGGCGATTGCGTTGCTCGGGGCGGGCTTGATCGTGGCGGCGGTGATCGTCAGCGAGTTGAAAACGCGGAACAAAGGTGTCGTAGGGGCGGATGAAGCGCTTGAGCGCGAGGGCTGA	MPQAADVLADVLQDGRPLAIFFVHYIAHLPGLRIILPNFGRIVRPPQVVRKVMASVNSPQTSSHLPRFSKAECVLVLITMIWGGTFLLVQHAMTVSGPMFFVGLRFAAAAAFVALFSWRHLRDLTLFELKAGAFIGVAIMLGYGLQTVGLQTIPSSQSAFITALYVPFVPLLQWLVLGRRPGLMPSIGIMLAFTGLMLVSGPAGASLNFSPGEIATLISAIAIAAEIILISAYAGQVDVRRVTVVQLASTAVLAFLMVVPTQEVIPGFSWLLLISAVGLGAASAAIQVAMNWAQKSVSPTRATLIYAGEPVWAGIAGRLAGERLPAIALLGAGLIVAAVIVSELKTRNKGVVGADEALEREG				NA	NA	NA	NA	NA
D1-36_02893	1845			hypothetical protein	ATGGAACTTAAACCCAAACTCCAGGATTACACCGAGTCCGAATTTCAAACTCTTGTCGACAAGATCTGGAATGTGGAGGCCTGCAGGGACAAGAAAGAGCATGACAGACTGATCAAACACTTCGATCTGATAGTTGGTCATCCTGATGGTGCGGATCTGTTGTTTTACCCGGAGGATACCTCCAACTTTCATTCCCCAGGCGCAGTCACCTTCCAGCTCAAGCATTGGTATCACCAGAGGAGACTCATTCCTTTCAGGGACGGTGTGCTTCCAGCACCGTTCACGCCGGTCGACGGGTCGAGCCTTATTGGACACAACACGGCGAGAGCCAGGCACGAACTTGCGAACGCTCAGCGAGTGGCTGGGGACATCGCCTCTGCGGAGCAAACGGTCGATGCAGCATTCTCTCTGCTTGAAAGCGCTATCCAGCATCTGCCAATCCAACAGCATTCGAACGCGACGCTGGAGGCACTGGAAAAAGGTATCCGTCGGGTTGAACATGCACAGCACGAGGTGCTGATGGCGGTTCGTGCATTCGAAGGTAAAAAAATGCGTGTCGAGTTCGACAAAGCCGCGGCACAGCGAAATCTTACCTACAGCCAGGCGGAGAGGCCCCTCTGGCAAGCCGTTTTGCAGCAGGCCACTGCCAATCAGGCTGGTTATCTGGCGCGTCTGCCCTCCAACACCCAGCGTCATGCCGAACTCCACACCAACGCCGAAGCCTTAGTTGATCATGCCTGGCAGCAACTGGTGCGCCTACGGACTCCCGACCGATACCCAAGCGAGTTTCGCCTGTCTGTCGTCGCTAACCTGGAACGACCGGATCTTTTGATCAGCGACGCACAGCCGTTGATGTCGGTACAACGAGTGGGCTTGCATAAGACCCTGCGTTCCGCAGTCGCCGAATTCAATTGGTCATTGACCGACGGTGCGCAGGAACATCTTGGACAGTACGCCGGCGTGCTGCACTTCAGGTTCGCCAGCCGCGCCAAGGCCGTGCGTTTTGGCCTCTGCGTTGCGCTGAATGAGCTTTCTCTGATCGATCCTGATTGGCAACTATTGGCCGCCCAGCAAGGCGAAGTAGAACTGCCGCTGCGAATGAGCACCTCGACAGTTCCCGTGAAGGCCGGCAGCCTGTCGTATGGATTAAAAGAAATACGCGAACTCTTCGAAGTCTTTATCACTCCCTGCGCCGGGGTTTTGCCAGCGAAGGTTCGTGTCAGGCTCGCCGTCTGGCAGGAAGGCGAGAGGGCCTATCGGTTCACGAGCGATGGCCCGCAGCCCTCCGTTATGGAGTGGGCAGTACCCCATGGCCTGGAAGCGCCGGTGGCGCCAAAACCGGATCGGCTCGATTCCGTTGGTTTCGTCCGGTCATCGCCAGTGCCCGAATTGGCCACGTTCGAATCTATCGAAGAGGTGCGATTCGATGATTATGTGGTGGTGTTTCCGCGGGAGTCAGGGCTTGAGCCGGTCTATGTGCTATTCAATGACCGTCGGGATTGTCCAGGTGTCGTCAGTGGAGAAGGGCACGCGGAGGCTGACGATTGGCGAACGCAAGCCTTGAGCAGCCAGGGAGCGTCGGTCCCTGCGTCAGTCGCCGATTCATTGCGCGGGCAAGTTTTCGAGCGTTTCGATCTGTTCAAACGTGCATTCTGGAGGGCCGTTGCGGCCGTACCGACCTTGAATGCACAATTCAATCTCGAAAATAGGGTGTTACTGCTCAACGGTTCAGCGCCCCGCAGCGAGCAGCCCGACGATCATCGTTCGCTGCGCATTCTGCACCGCGTCGACATCACGCAGGGCGGTGGGGTCTACGATCTCGATAATCTGATTATTCGCTACTGA	MELKPKLQDYTESEFQTLVDKIWNVEACRDKKEHDRLIKHFDLIVGHPDGADLLFYPEDTSNFHSPGAVTFQLKHWYHQRRLIPFRDGVLPAPFTPVDGSSLIGHNTARARHELANAQRVAGDIASAEQTVDAAFSLLESAIQHLPIQQHSNATLEALEKGIRRVEHAQHEVLMAVRAFEGKKMRVEFDKAAAQRNLTYSQAERPLWQAVLQQATANQAGYLARLPSNTQRHAELHTNAEALVDHAWQQLVRLRTPDRYPSEFRLSVVANLERPDLLISDAQPLMSVQRVGLHKTLRSAVAEFNWSLTDGAQEHLGQYAGVLHFRFASRAKAVRFGLCVALNELSLIDPDWQLLAAQQGEVELPLRMSTSTVPVKAGSLSYGLKEIRELFEVFITPCAGVLPAKVRVRLAVWQEGERAYRFTSDGPQPSVMEWAVPHGLEAPVAPKPDRLDSVGFVRSSPVPELATFESIEEVRFDDYVVVFPRESGLEPVYVLFNDRRDCPGVVSGEGHAEADDWRTQALSSQGASVPASVADSLRGQVFERFDLFKRAFWRAVAAVPTLNAQFNLENRVLLLNGSAPRSEQPDDHRSLRILHRVDITQGGGVYDLDNLIIRY				NA	NA	NA	NA	NA
D1-36_02894	279	imm_1		Colicin-E7 immunity protein	ATGAGCGTGCTCAAAGAACGGCTGGAAGATTATACGGAGGCTGAATTTCTGACATTTCTTCGAAAATTTTTTGATTACTCCGTTGCTTTGGAGGGGGATGCGTTGAGCCAATATACCGATAGGTTGGTGGACCATTTTGAACTGATTACTGAGCACCCTGATGGCTCAGATGTTCTCTTCTACCCAAAGGAAGGCCAAGAAGACAGCCCCGCTGGAATCCTGAAAGAAGTCAAGGAATGGCGAGCCCGCAATAACAGACCAGGTTTCAAACCCGAATAA	MSVLKERLEDYTEAEFLTFLRKFFDYSVALEGDALSQYTDRLVDHFELITEHPDGSDVLFYPKEGQEDSPAGILKEVKEWRARNNRPGFKPE				NA	NA	NA	NA	NA
D1-36_02895	924			hypothetical protein	ATGTCGTTCGGCGCCTTCGACCAGGCGCTATGGCGGACCCTCTCTGAACATCCGGCTCTGTGGGCAAACACAGACGAACTCAACCGCAAACGCATCGAACGCGGCTTTGCGCCCTATGCGCCAAAAAGCACATGGGTGGGAGAGCGTCGAGAATTCGAGCTGCGTTATCGGGAGCGTGCGGAGCTGGGTGAGAATCCATTCAACCTCGACCGGATCAGCATCACCACACCAAACAGCCTGCTCGGCAGGCCGGGCATCGTCCCGGCGGTCATCCCCTGGCCGGCGCCTCCCATCGGCCACGGTACCCGAACGCCTTTGGTTCCGCCGGGCATCGAACAACTTGGCCCGACCACGCTGCCCGTCACGCCACCGTTTTCGCAGATTTATCCGGGCAAGCCTGTCATCCCCGTCCTACCGGAAAACGAGACGCTTCCGGCTGTTGATCCAGTGCAGACCGGTGCGAGTATTCCTGGGTATCCGGGGGATATGGATCTGCCCTCGCCGGATGCGCTGTTTTATGACCGGCGAGATGATCCCGGGATGGCCCTCGGCTTTGGGCAGTCAGTTTCAGGCATTTGGTTGGGGGAGGCGGCGAGAACGACTGGGGCGGCGATTCCTGATCGGATTGCGGATCAGTTGAGGGGCAGAGAGTTTGCGAACTTTCATCGGTTCAGGGAGGCGTTTTGGAGGGCGGTGGCGGCGGATCGTGATTTAAGTAAGCAGTTTAATGGCTCAAATCTGCGAGAGATGACCAAGGGAGCGCCGCCGTTCGCTAGTCGATTGGATCAGGTTGGCGGGAGAAGGAAGTATGAAATCCATCATAAGCACGAAGTTGCGAAAGGCGGCGCAGTTTATGACTTGGAAAATCTGCTAGTTATGACTGCAAGGCGGCATATTGATTTTCACAAAGGAGAGAAGCCATGA	MSFGAFDQALWRTLSEHPALWANTDELNRKRIERGFAPYAPKSTWVGERREFELRYRERAELGENPFNLDRISITTPNSLLGRPGIVPAVIPWPAPPIGHGTRTPLVPPGIEQLGPTTLPVTPPFSQIYPGKPVIPVLPENETLPAVDPVQTGASIPGYPGDMDLPSPDALFYDRRDDPGMALGFGQSVSGIWLGEAARTTGAAIPDRIADQLRGREFANFHRFREAFWRAVAADRDLSKQFNGSNLREMTKGAPPFASRLDQVGGRRKYEIHHKHEVAKGGAVYDLENLLVMTARRHIDFHKGEKP				NA	NA	NA	NA	NA
D1-36_02896	2925	ndhB		NAD(P)H-quinone oxidoreductase subunit 2, chloroplastic	ATGTCGCTGATAGTTCTATTGCTTTTGCCCTTCGTCGGCAGCTGTGTCGCGGCGTTGCTGCCGCATAACGCGCGCAATGCCGAATCATTGCTGGCAGGTCTTGTGGCCTTGGTGGGCACCGTTCAGGTGGCTTTGTGGTACCCGCAGATCGCCGACGGCGGGGTTATCCAAGAGCAATATGCCTGGCTGCCCAGCCTGGGCCTGAATTTCGTCCTGCGCCTGGACGGCTTCGCCTGGCTGTTTTCGTTGCTGGTGCTGGGCATCGGCACGCTGGTGTCGTTGTATGCCCGCTACTACATGTCGCCGGACGATCCGGTGCCGCGGTTCTTTGCGTTTTTCCTGGCTTTCATGGGCGCGATGCTCGGGCTGGTGATTTCCGGCAACCTGATCCAGATGGTGTTCTTCTGGGAATTGACCAGCCTGTTCTCATTCCTGCTGATCGGTTACTGGCATCACCGCGCCGACGCGCGGCGCGGCGCCTATATGGCGTTGATGGTGACCGGCGCCGGCGGGCTGTGCCTGTTGGCCGGGGTGATGCTGCTTGGCCATGTGGTGGGCAGTTATGATTTGGACAAGGTCCTGGCCGCCGGCGACATGATTCGCCAGCACGCCCTCTATCCAGTCCTGTTGCCGCTGATCCTGATCGGCGCCTTGAGCAAGAGCGCCCAGTTTCCTTTCCATTTCTGGCTGCCCCACGCCATGGCCGCGCCCACGCCGGTGTCGGCGTACCTGCACTCGGCGACCATGGTCAAAGCCGGTGTTTTCCTGCTGGCACGGTTGTGGCCCTCGCTGTCGGGCAGTGAACAGTGGTTCTATATCGTCGGCGGCGCCGGGGCGTTCACATTGATGCTGGGCGCTTATTGCGCGATGTTCCAGAACGACCTCAAGGGTCTCCTTGCCTATTCGACCATCAGCCATCTGGGGCTGATTACGCTTCTGCTTGGCCTCAACAGCCCGCTGGCGGCGGTCGCGGCCGTGTTTCATATCCTCAACCACGCCACGTTCAAGGCCTCGCTGTTCATGGCCGCCGGCATCATCGACCACGAAAGTGGCACCCGGGACATCCGCAAGCTCAGCGGCCTGGTGCGGCTGATTCCGTACACCGCCACCCTGGCGATGGTTGCCAGCGCGGCGATGGCCGGGGTGCCGTTGCTCAACGGCTTCCTGTCCAAGGAAATGTTCTTCGCCGAGACCGTGTTCATTTCCGCCACGGCCTGGGTCGAGCTGGCGCTGCCGATCGTCGCCACCATCGCCGGCACGTTCAGCGTCGCCTATTCCCTGCGTTTTACCGTCGACGTGTTCTTCGGCCCCACTGCCACCGACCTGCCCCACACGCCCCATGAACCGCCGCGCTGGATGCGCGCGCCGGTTGAGCTTCTGGTGTTTACCTGCCTGTTGGTGGGCATCTTTCCGGCACAGGTGGTTGGTTCGTTGCTGGCGGCGGCGGCGCTGCCGGTGGTGGGCGGTCCGCTGCCCCAGTACAGCCTGGCGATCTGGCATGGCCTGAACGCGCCCATGATCATGAGCCTGGTGGCGATGTCGGGTGGGATCGTCCTGTACCTGCTGCTGCGCAAGCAATTCAAGCAGGGCCATATCAAGCAGCCACCGCTGATGGGGCGTCTCAGCGGCAAGCGTTTGTTCGAGCGCAGCCTGGTGCTGATGATGCGCCAGGGCCGGCGGTTGGAGCGCAAGATCAGTACCCGGCGCTTGCAGGCTCAGTTGTTCCTGCTGGTACTGGCGGCCGTAATGGCCGGGCTGATTCCGATGCTCAGCAGCACGCTGGCCTGGGGCGACCGCCCCAGGATTCCCGGCTCCGTGGTGTTCGTCACGCTGTGGGTGCTGGCCATCGCTTGCGCGTTGGGCGCTGCCTGGCAGGCCAAATATCACCGCCTCGCGGCGCTGACGATGGTCAGTGTCTGCGGCCTGATGACGTGCGTGACTTTTGTCTGGTTCTCGGCCCCGGACCTGGCCTTGACTCAACTGGTCGTGGAGGTGGTCACCACGGTGCTGATCCTGCTGGGCCTGCGCTGGTTGCCACGGCGGATCGAAGAGGTGTCGCCGCTGCCCAACAGCGAACGCCGCGCGCGCATCCGTCGTCTGCGGGACTTGCTGCTGTCCATCGCAGTGGGCGGCGGCATGGCGTTGCTGTCCTATGCGATGCTCACGCGCCAGACACCCAACGACATTTCGTCGTTTTACCTGAGCCGGGCCTTGCCCGAAGGTGGCGGCAGCAATGTGGTAAACGTGATGCTGGTGGACTTCCGCGGCTTCGACACCCTGGGCGAAATCACCGTGCTGGTGGCGGTAGCGCTGGCGGTATTCGCCCTGCTGCGGCGCTTCCGGCCACCCAAGGAAAGCATGCAGCTCCCGGCGCAACAGCGCCTGCTGGCGCCGGACGTGGTGACCGACCTGGTCAACCCGCGTCACGCCAGCGACACCGCGCTGGGCTTCATGATGGTGCCGTCGGTGCTGGTGCGCCTGCTGTTGCCGATTGCCCTGGTGGTGTCGTTCTACCTGTTCATGCGCGGCCACAACCAACCGGGTGGCGGTTTCGTCGCCGGCCTGGTGATGTCGGTGGCGTTCATCCTGCAGTACATGGTCGCCGGCACCCAGTGGGTCGAAGCACAAATGAGCCTGCGACCGCTGCGCTGGATGGGCACGGGGCTGTTGTTCGCCACCGCGACGGGGTTGGGGGCGATGGCGGTGGGTTATCCGTTCCTGACCACTCACACCTGGCATTTCGAGTTGCCGCTGCTGGGTGACCTCCATCTGGCGAGTGCGCTGTTCTTCGACATCGGCGTCTACGCCGTGGTGGTCGGCTCCACGCTATTGATCCTTACCGCCCTGGCTCACCAGTCGGTGCGGGCCCATAAACCGGGGCTGCACGCCAAACCCGTCGCCCCCCTCAAAGGAGCCAACGCCTGA	MSLIVLLLLPFVGSCVAALLPHNARNAESLLAGLVALVGTVQVALWYPQIADGGVIQEQYAWLPSLGLNFVLRLDGFAWLFSLLVLGIGTLVSLYARYYMSPDDPVPRFFAFFLAFMGAMLGLVISGNLIQMVFFWELTSLFSFLLIGYWHHRADARRGAYMALMVTGAGGLCLLAGVMLLGHVVGSYDLDKVLAAGDMIRQHALYPVLLPLILIGALSKSAQFPFHFWLPHAMAAPTPVSAYLHSATMVKAGVFLLARLWPSLSGSEQWFYIVGGAGAFTLMLGAYCAMFQNDLKGLLAYSTISHLGLITLLLGLNSPLAAVAAVFHILNHATFKASLFMAAGIIDHESGTRDIRKLSGLVRLIPYTATLAMVASAAMAGVPLLNGFLSKEMFFAETVFISATAWVELALPIVATIAGTFSVAYSLRFTVDVFFGPTATDLPHTPHEPPRWMRAPVELLVFTCLLVGIFPAQVVGSLLAAAALPVVGGPLPQYSLAIWHGLNAPMIMSLVAMSGGIVLYLLLRKQFKQGHIKQPPLMGRLSGKRLFERSLVLMMRQGRRLERKISTRRLQAQLFLLVLAAVMAGLIPMLSSTLAWGDRPRIPGSVVFVTLWVLAIACALGAAWQAKYHRLAALTMVSVCGLMTCVTFVWFSAPDLALTQLVVEVVTTVLILLGLRWLPRRIEEVSPLPNSERRARIRRLRDLLLSIAVGGGMALLSYAMLTRQTPNDISSFYLSRALPEGGGSNVVNVMLVDFRGFDTLGEITVLVAVALAVFALLRRFRPPKESMQLPAQQRLLAPDVVTDLVNPRHASDTALGFMMVPSVLVRLLLPIALVVSFYLFMRGHNQPGGGFVAGLVMSVAFILQYMVAGTQWVEAQMSLRPLRWMGTGLLFATATGLGAMAVGYPFLTTHTWHFELPLLGDLHLASALFFDIGVYAVVVGSTLLILTALAHQSVRAHKPGLHAKPVAPLKGANA	PGPT0013830_135	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013830-phaA-K05559	NA	NA
D1-36_02897	345	mnhC1	COG1006	Na(+)/H(+) antiporter subunit C1	ATGGAAGAAGTCATCGCAATCGCAATCGGCGTATTGGCCGCCTCCGGCGTCTGGCTGGTGCTGCGGCCCCGGACCTTTCAGGTGGTCATGGGGCTTTGCCTGCTGTCCTATGGCGTCAACCTGTTCATCTTCAGCATGGGCAGCCTGTTCATCGGCAAGGAACCGATCATCAAGGACGGCGTGCCCCAGGACCTGCTGAACTACACCGATCCGCTGCCCCAGGCCCTGGTGTTGACCGCCATTGTGATCAGCTTCGCCATGACCGCGCTGTTTCTCGTCGTCTTGCTCGCGTCCCGCGGGCTGACCGGCACCGACCATGTGGACGGCCGGGAGCCCAAGGAATGA	MEEVIAIAIGVLAASGVWLVLRPRTFQVVMGLCLLSYGVNLFIFSMGSLFIGKEPIIKDGVPQDLLNYTDPLPQALVLTAIVISFAMTALFLVVLLASRGLTGTDHVDGREPKE	PGPT0013835_360	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013835-phaC-K05560	NA	NA
D1-36_02898	1686	mrpD	COG0651	Na(+)/H(+) antiporter subunit D	ATGATGCTGACGCCTCACTTGATCGCCGCGCCCATCCTGCTACCGCTGCTGACCGCCGCGTTGATGCTGATGCTGGGCGAGAAACATCGCCCGCTCAAAGCGCGGATCAATCTGTTTTCCAGCCTGCTGGGCCTGGGCATCGCCGTGCTGCTGTTGGACTGGACCCAGGACCAGGCATTGCCCGCGTCCTTTGGCGTGTACCTGCCGGGCAACTGGCAAGCGCCGTTCGGAATCGTGTTGGTGGTCGATCGCCTGTCGGCGCTGATGCTCGTGCTGACGGGCATCATCGGCGTCTGCGCCCTGCTGTTCGCGATGGCGCGGTGGGATCGGGCCGGCGCCAGTTTCCATGCGCTGTTCCAGATTCAGCTGATGGGCCTTTACGGCGCTTTCCTGACGGCGGACCTGTTCAATCTGTTTGTGTTTTTCGAAGTATTGCTGGCCGCGTCCTACGGCTTGATGCTCCACGGATCAGGGCGGGCCCGCGTCTCGTCGGGGCTGCATTACATCGCCATCAACTTGCTGGCGTCGTCGTTGTTCCTGATTGGCGCGGCGTTGATCTATGGCGTCACCGGCACCTTGAACATGGCCGACCTGGCCTTGAAAGTGCCCTTGGTGCCAGAAGCGGACCGCGGCCTGCTGCACGCCGGTGCCGCGATCCTGGCAGTGGCGTTCCTGGCGAAGGCTGGCATGTGGCCGCTGAATTTCTGGCTGGTGCCGGCCTACAGCGCGGCCAGCGCCCCGGTGGCGGCCTTGTTCGCGATCATGACCAAGGTGGGCGTCTACACCGTGTTGCGGTTGTGGACCCTGCTGTTCTCGGGGCAAGCCGGCGCGTCGGCGTATTTTGGCGGCGACTGGCTGGTCTACGGCGGCATGGCGACCATCGCCTGCGCGGCCATCGCCATCCTCGCGGCCCAGCGCCTGGAACGCATGGCCAGCCTGAGTATCCTGGTCTCGGCCGGCATCCTGTTGTCAGCCATCGGCTTCGCACAGCCCAACCTGATAGGCGCCGCGCTGTTTTACCTGGTGAGCTCGACCCTGGCGCTGTGCGCGCTGTTCTTGCTGGCCGAACTGATCGAGCGCTCACGCTCCGCCAATGACCTGCCGCTGGAAGATGACCTCGACACCCTGCCGCGCCCCCTGGAATCGCTGCAGCCGCCCAAGGGCATCAACCTCGATGACGAACAGAAAGCCGTGGTCGGGCAAGTGATCCCCTGGACCATGGCCTTTCTCGGTCTGAGTTTCATCGCCTGTGCACTGTTGATTGTCGGCATGCCTCCCTTGTCGGGGTTTATCGGCAAGCTGGGGCTGCTCAGCGCGCTGCTCAACCCCGAGGGCCTGGGGGCGAGTGCCGACGTGCCCGTATCGGCCGCCGCCTGGGGCCTGCTGGCGCTGTTGATCCTGTCCGGGCTCGCCTCGTTGATCGCCTTTTCGCGCTTGGGCATCCAGCGCTTCTGGACACCGCAGGAACGGCCCTCCCCGCTGTTGCGTCCGTTCGAATGCCTGCCGATCCTCGCGTTACTGGGGCTGGGGATCGTCTTGACGTTCAAGGCCGAGCCATTGCTGCGCTACACCCAATCCGCCGCCGATGGGTTGAATACGCCTGAACATTATGTGATGGCGGTTTTTTCCACCCGCGCCGTCCCCAACCCTGAAGGCAACACTCGATTGCAGGCGGTGCAGCCATGA	MMLTPHLIAAPILLPLLTAALMLMLGEKHRPLKARINLFSSLLGLGIAVLLLDWTQDQALPASFGVYLPGNWQAPFGIVLVVDRLSALMLVLTGIIGVCALLFAMARWDRAGASFHALFQIQLMGLYGAFLTADLFNLFVFFEVLLAASYGLMLHGSGRARVSSGLHYIAINLLASSLFLIGAALIYGVTGTLNMADLALKVPLVPEADRGLLHAGAAILAVAFLAKAGMWPLNFWLVPAYSAASAPVAALFAIMTKVGVYTVLRLWTLLFSGQAGASAYFGGDWLVYGGMATIACAAIAILAAQRLERMASLSILVSAGILLSAIGFAQPNLIGAALFYLVSSTLALCALFLLAELIERSRSANDLPLEDDLDTLPRPLESLQPPKGINLDDEQKAVVGQVIPWTMAFLGLSFIACALLIVGMPPLSGFIGKLGLLSALLNPEGLGASADVPVSAAAWGLLALLILSGLASLIAFSRLGIQRFWTPQERPSPLLRPFECLPILALLGLGIVLTFKAEPLLRYTQSAADGLNTPEHYVMAVFSTRAVPNPEGNTRLQAVQP	PGPT0013840_106	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013840-phaD-K05561	NA	NA
D1-36_02899	492			hypothetical protein	ATGATCAAGCATTTGTTTCCCGCACCGTGGCTGTCCCTGGCATTGGGGTTGCTCTGGCTGTTGTTGAACCTGTCCCTGAGTGCCGGCCACCTGCTGCTGGGCGCCGCGCTGGGTTTCCTCGCGCCACTGATGATGCGTCCGCTGCGGCCACGACCCATCCGCATCCGGCGTCCCGGGGTCATGCTGCGACTGCTCTTGCTGGTGGGATGGGACGTGCTGGTGTCCAACCTGGCCGTCGCCTGGCGCGTACTCAACGCCGGGCGCCGCCCGCCTCGCTCGCGGTTTATCAAGGTGCCGCTGGACCTGCACGACGCCAATGGGCTGGCGGTGCTTTCGATGATCACCACGGTGATTCCAGGGACGGTCTGGTCGGAGTTGGCGCTGGATCGCAGCATCCTGTTGATACACATTTTCGATCTGGAGGACGAAGGGGCGTTTATCGACCATTTCAAGGCCACCTACGAGCGTCCGCTGATGGAGATTTTCGAATGA	MIKHLFPAPWLSLALGLLWLLLNLSLSAGHLLLGAALGFLAPLMMRPLRPRPIRIRRPGVMLRLLLLVGWDVLVSNLAVAWRVLNAGRRPPRSRFIKVPLDLHDANGLAVLSMITTVIPGTVWSELALDRSILLIHIFDLEDEGAFIDHFKATYERPLMEIFE	PGPT0013845_572	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013845-phaE-K05562	NA	NA
D1-36_02900	279			hypothetical protein	ATGAGCGCGCTGCTGTCCAATGCGATCCTGCTGAGCCTGTTCCTGTTCTCGCTGACCATGGTGCTGACCCTGGTGCGCCTGTTCAAAGGCCCCTCGGCACAGGACCGGGTCTTGGCCCTCGACTACTTGTACATCGTGGCGATGCTGATGATGCTGGTGCTGGGCATTCGGTATGCCAGCGACACGTATTTCGAGGCGGCGCTGTTGATCGCCCTGTTCGGCTTTGTCGGCTCGTTTGCCCTGGCCAAGTTCCTGTTGCGTGGCGAGGTGATCGAATGA	MSALLSNAILLSLFLFSLTMVLTLVRLFKGPSAQDRVLALDYLYIVAMLMMLVLGIRYASDTYFEAALLIALFGFVGSFALAKFLLRGEVIE	PGPT0013850_252	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013850-phaF-K05563	NA	NA
D1-36_02901	363	mrpG	COG1320	Na(+)/H(+) antiporter subunit G	ATGACGGGAGAACTGTCGATGTGGGTCGAGATCCCAGTGGCGATCCTGCTGGTGCTCGGCAGTCTTTTCGCCCTGACCGGGGCGATCGGCCTGGTGCGGCTCAAGGATTATTTTCAGCGCATGCACCCGCCTGCCCTGGCTTCGACGCTGGGGGCCTGGTGCGTTGCGCTGGCCTCGATCATTTATTTCTCGGCGCTCAAGTCGGGCCCGGTGCTGCATGCCTGGCTGATACCGATCCTGCTGTCCATCACGGTGCCGGTAACGACCCTGCTGCTGGCCCGGGCGGCTTTGTTTCGCAAGCGCATGGCGGGGGACGATGTACCGGCGGAAATAAGCAGCCCCAGGACCGGGAGCGATGGCTAA	MTGELSMWVEIPVAILLVLGSLFALTGAIGLVRLKDYFQRMHPPALASTLGAWCVALASIIYFSALKSGPVLHAWLIPILLSITVPVTTLLLARAALFRKRMAGDDVPAEISSPRTGSDG	PGPT0013855_418	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013855-phaG-K05564	NA	NA
D1-36_02902	438			hypothetical protein	ATGACGCTTGTATTGGCTCGGTCGCTGGTCGCGGTGTTTGCGACCATCAGCTTGATTCATTTGTATTGGGCCCTGGGCGGGCAGTGGGCGGCGCTGGCGGTAGTGCCGCAGGTGCCGGTGAAGCAGGGCGGCACACTGCAACCGGCGTTCAACCCGTCGGGATGGCTGACGCTGTTGGTGGCGCTGGCGCTGCTGATGATTGCGGTGCTGGTGTGTCTGCGGGTCGGCCTGATCGCGCCTCCCGTGACCCATCGTGCCTTGCAATGGCTGATCAGTGCGATTGCCCTGTTGATGTTTGCCCGGGCCATTGGCGAGTCGAACCTGGTGGGCTTCTTCAAGGAGGTCAAGGGGTCGACGTTCGCCCGGCTCGATACCTGGGTCTACTCACCGTTGTGTGTCGTGCTGGGGGCAGGGTTGCTGACGGTGGCGTGGGCTTGA	MTLVLARSLVAVFATISLIHLYWALGGQWAALAVVPQVPVKQGGTLQPAFNPSGWLTLLVALALLMIAVLVCLRVGLIAPPVTHRALQWLISAIALLMFARAIGESNLVGFFKEVKGSTFARLDTWVYSPLCVVLGAGLLTVAWA				NA	NA	NA	NA	NA
D1-36_02903	1011			hypothetical protein	ATGAAACGAGTTCGACAGTGGCTGGCTGCCTGGGCCACCCTCGCTGTGTTGGTTTCACCCCTTCCGGCATCCGCTGCATCGACGCCGATCCACTTTGCCGACCTGAACTGGGAAAGCGGCAGCCTGATCACCGACATCCTGAGGGTCATTGTCGAAAAGGGCTACGGGTTGCCGACGGACACGTTGCCGGGCACCACCATTACCCTGGAAACCGCCCTGGCCAATAACGATATCCAAGTGATCGGCGAGGAGTGGGCAGGTCGCAGCCCGGTGTGGGTCAAGGCCGAGGCCGAGGGCAAGGTGGTCGCCCTGGGCGATACGGTCAAGGGCGCGACCGAAGGCTGGTGGGTGCCGGAATACGTCATCAAGGGCGACCCTGCCAAGGGCATCAAGCCCCTGGCGCCGGACTTGCGCAGCGTCGAGGACCTTGCGCGCTACAAGCACGTGTTCAAGGACCCGGAAAGCCCCAGCAAGGGACGCTTCCTCAACAGTCCCATCGGTTGGACTTCCGAGGTGGTCAACAAGCAAAAGCTCAAGGCCTACGGTCTTTCCGACAGCTATGTGAACTTTCGCAGCGGCTCAGGGGCCGCGCTCGATGCCGAGATCACTTCGTCGATTCGCCGTGGCAAGCCGATCCTGTTCTACTACTGGTCGCCCACGCCGCTGCTCGGGCGTTTCAAGCTGGTGCAGTTGCAAGAGCCGCCATTCGATGCCGAGGCCTGGAAAACCCTGACCGATGCCGACAACCCCAACCCCAGGCCGACGCGGTCCCTGGCTTCGAAGTTGTCCATTGGCGTGTCCGTACCGTTCCAGAAACAACACCCGGACATTGCCGAGTTCTTCAGCAAGGTCGACCTGCCGATCGACCCGCTGAACAAGGCCCTGGCCGATATGAGTGAGAAACGCACGCCCTCCCGCGAGGCCGCCGAAGCCTTCCTCAAGGCTCACCCCGAGGTTTGGCAAGCCTGGTTACCCAAGGAGGTCGCCGACAAGGTGACCGCGGGGCTGTAG	MKRVRQWLAAWATLAVLVSPLPASAASTPIHFADLNWESGSLITDILRVIVEKGYGLPTDTLPGTTITLETALANNDIQVIGEEWAGRSPVWVKAEAEGKVVALGDTVKGATEGWWVPEYVIKGDPAKGIKPLAPDLRSVEDLARYKHVFKDPESPSKGRFLNSPIGWTSEVVNKQKLKAYGLSDSYVNFRSGSGAALDAEITSSIRRGKPILFYYWSPTPLLGRFKLVQLQEPPFDAEAWKTLTDADNPNPRPTRSLASKLSIGVSVPFQKQHPDIAEFFSKVDLPIDPLNKALADMSEKRTPSREAAEAFLKAHPEVWQAWLPKEVADKVTAGL	PGPT0013640_757	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
D1-36_02904	471			hypothetical protein	TTGGCAGTAAGTAATCTCGACATGCATGCGTTATTTGTACTGGGCGACCTGCGGGCAAAACTGGTCAAGCAATTCCAGTCACGGTTTGTCTATATCACCGAGCAGACCGCCGAAGGTATCTATATTGCCGAAATCGACACCGAGTCGGCATTGGTCGTCGATGACAAACCCCGGCTGGAACTCAAGGTTGGCGACCATTTTCGCGCGGCGGTACTTCCCAGTCGCGAGGGAGGCAAGTTTGAAATCCGGTTTCGTGAAATCAAATTGACGGTCTATGGCCTGGGTGACTACGCGTTCGTCACGACCGCCGAGGGCCATGCCATCCTGTTCAAGGAAGGGCACAGCGTAGTGACCGTATTGGCCGCCAACGAACAGTTGCAGGAAGGTTTGACCAAGACGTTGAAAGCAGTCACCGCCAAGGCTGCCAAATGGCGCAAGGGTGAACTTGTGACATTCAAGGCCAGCGAGTAG	MAVSNLDMHALFVLGDLRAKLVKQFQSRFVYITEQTAEGIYIAEIDTESALVVDDKPRLELKVGDHFRAAVLPSREGGKFEIRFREIKLTVYGLGDYAFVTTAEGHAILFKEGHSVVTVLAANEQLQEGLTKTLKAVTAKAAKWRKGELVTFKASE				NA	NA	NA	NA	NA
D1-36_02905	258			hypothetical protein	ATGGCTACGTTTCCAACCCTGATCCGCCCCGCCATCTCGTGTGTCGCCCTGGCGCAAGACGCCACTCATGACGACGGTTACGCACCGATTGCATTGATCCAGCCCAGATACCGGGTCGTTCTTGCCGGCAAGTGTTTTTTTCATATCGAAGAAACCTCTACCGGGCGCGTAAGAGGTTTCCGCGCCGACCATAACGAAGCCTGCTATCTCGCCCGCACCCTCGAACAGAACCCTTCAACGGCAGGCGCCATGACTTAA	MATFPTLIRPAISCVALAQDATHDDGYAPIALIQPRYRVVLAGKCFFHIEETSTGRVRGFRADHNEACYLARTLEQNPSTAGAMT				NA	NA	NA	NA	NA
D1-36_02906	231			hypothetical protein	GTGACGGAACTAGACATCGGCGATTTTTTCATCCGCGGCGAAGCCAGAGAGGTAGAAGGCGAATTCCAAGCGGTCATCGTCATGCGCGCCAAAACCGCCGCCACTGCGGTCACCTATCACCAGGTAGAAAGGGATCGCTGGTTCAAGACGCCGGAACTTGCGGCCGAGGCCGCCAAGGAGTCAGCCCGGGCCCTGAAGCTCGCGGTGGACGAAGGTGCGCTGAAAGCCTGA	MTELDIGDFFIRGEAREVEGEFQAVIVMRAKTAATAVTYHQVERDRWFKTPELAAEAAKESARALKLAVDEGALKA				NA	NA	NA	NA	NA
D1-36_02907	237			hypothetical protein	ATGGAACAACCATCCCACGAACTCAGCACCCTGTTTGACCAACTTGGCCTGCCTTCGGACGGCAACGCCATCGATGATTTCATCATGGCGCACCCGCTGGATCCGAACACCAAGTTGGTCGATGCGCCTTTCTGGTCGAATCAGCAACAAGATCTGCTTCGCGAATGGCTGCTTGCCGACGGCGAAGAGGCGGTATTGGTGGATCAACTGAACGTACGCCTGCACGACGGTAAATAA	MEQPSHELSTLFDQLGLPSDGNAIDDFIMAHPLDPNTKLVDAPFWSNQQQDLLREWLLADGEEAVLVDQLNVRLHDGK				NA	NA	NA	NA	NA
D1-36_02908	1608			hypothetical protein	ATGGCGACAGAAGGATCTCTGGCGGCGACAGCGTCGGCCTCGGTGCCAGTAGCGCGCGTTACAGCGCGCTGGCTTGCGCCGACTCTGCAAAGCCTGGCGCTGGTTTCGCTGCTGTGTGGCATGACCTTGGGCGGTTGGTCGTTGTACCTGGCGTTGCCGCTGGCGCTGCTCATCGTCTGGTTGCCACGCCTGCGCTCGCGGCTGAACAGCACACCGGTGCCGACGGCAAGCGACAGCCTGGCCGAGCTCACCCGCGATCTTTCCTACACCACCAGCCATAATGCACTGTCCGCCGCTGGCGTTGCCTATTCGGTCAAGCAGCTGGCGGGCAAGGTCCAGTCACAGCTCGGGGCCGCGGCGCAGATCGTTGGCAACGCCGAAGCGATGATCGCGACCGAGCAGGCCACCTCGCAGCTCAGTCAAGAGGCCCTGGGCGCGGCCAGCGAGGCCCATCGCAGCAGTGTCGCCGGGCGCAGCGAGTTGGTCGAATCCATCAGCCGAATGCATCAGCTCAGTCAGCGCGCCAATGAAAGCCGCGAACTCATCGAGGCGCTGAGCGTGCGCAGCGACGAAATCCAGCGGGTGACCCTGGTGATTCAATCGATCGCCAGCCAGACCAACCTGTTGGCCCTTAACGCTGCGATCGAGGCGGCCCGTGCCGGGGAACATGGTCGCGGTTTTGCGGTGGTGGCCGACGAGGTGCGTGGGTTGGCCGGGCGCACTGCCGCGGCGACCGGCGAGGTCGGCGTGATGGTCGCGGATATCCAGCAGCGCACCGCGCAGGTCGTCGAGCAGATCCGCCAATTGGCCGGTGACCTGGACAGCGGTGTGCAGCAAGTCGAGCACACCGGCCAGCACCTGGAAAACATCGCGCGGCTTGCGGCCGGTGTCGAAACCCAGGTCAGCGCCATCGCCCAGGGTACCGACACTAACCGTGGACAACTCGATAGCCTGTTTCATGCGATCGAGCAAATGCGTGGTGACCTGGCGATCAGCGACCAGCAGACCCAGCGCCTGGCCGAGGCCGCTGTGCAGATGGAAGGCCAGGCCGAGACCATCAGCGAGCGCCTGGCCGAGGTGGGCCTGGACGATTATCACCAGCGGGTCTATGACTTGGCGCGGGAAGGGGCAAGCCGGATTGCCGCACAGTTCGAGGCGGATATCGACCAGGGGCGCGTCAGCCTGGAGGATCTGTTCGATCGCAGCTACCAACCGATCCCCAATACCCATCCGGCGAAGTTCCAGACCCGTTTCGACCGCTACACCGACCAGGTGCTGCCAGCGATCCAGGAACCGTTGCTGGCGCGGCATGAGGGGCTGGTCTTCGCGATTGCCTGCACTCAGCAGGGCTACGTGCCGACTCACAACAATGCGTTCTGTCAGCCGTTGACCGGCGATCCGCAAGTGGACACGCTGAACAATCGCACAAAGCGCAAGTTCTCCGATCGCACCGGGATCCGCTGCGGCAGTCATCAACAGCCGGTGTTGCTGCAAACCTATACGCGGGACACGGGCGAGCTGATGCATGACCTGTCGGTGCCAATCATGCTCAAGGGACGTCATTGGGGTGGGTTGCGGCTGGGCTATAAGCCCGAGAAACCGCGCTGA	MATEGSLAATASASVPVARVTARWLAPTLQSLALVSLLCGMTLGGWSLYLALPLALLIVWLPRLRSRLNSTPVPTASDSLAELTRDLSYTTSHNALSAAGVAYSVKQLAGKVQSQLGAAAQIVGNAEAMIATEQATSQLSQEALGAASEAHRSSVAGRSELVESISRMHQLSQRANESRELIEALSVRSDEIQRVTLVIQSIASQTNLLALNAAIEAARAGEHGRGFAVVADEVRGLAGRTAAATGEVGVMVADIQQRTAQVVEQIRQLAGDLDSGVQQVEHTGQHLENIARLAAGVETQVSAIAQGTDTNRGQLDSLFHAIEQMRGDLAISDQQTQRLAEAAVQMEGQAETISERLAEVGLDDYHQRVYDLAREGASRIAAQFEADIDQGRVSLEDLFDRSYQPIPNTHPAKFQTRFDRYTDQVLPAIQEPLLARHEGLVFAIACTQQGYVPTHNNAFCQPLTGDPQVDTLNNRTKRKFSDRTGIRCGSHQQPVLLQTYTRDTGELMHDLSVPIMLKGRHWGGLRLGYKPEKPR	PGPT0015710_22050	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_02909	405	dksA_1	COG1734	RNA polymerase-binding transcription factor DksA	ATGACAAAGGAAAAGTTGCTGGCCATGCCGGCGGATGACTACATGAATGCCGAGCAACTGGCTTACTTCACCAAGCTGTTGCAGAACATGAAAGTCGAAACCCACGAGCGCATCGAACAGAACCGAATCGCCATTGAGAGCCTGGACAGCCCGGCCGACCCGGCGGACGCAGCTTCCGTAGAAGAAGAGCGCACCTGGCTGGTCAACGCCATCGATCGCGACCAGCGCATGCTGCCGCAACTGGAGCAGGCCCTGGACCGTATCAACGACGAAAGCTTCGGCTGGTGCGACGACAGCGGCGAGCCGATCGGCCTCAAGCGCCTGTTGATCAGTCCGACCACCAAATACTGCATCGAAGCCCAGGAACGTCACGAGCAGATCGACAAGCACCAGCGCCAGGCCTGA	MTKEKLLAMPADDYMNAEQLAYFTKLLQNMKVETHERIEQNRIAIESLDSPADPADAASVEEERTWLVNAIDRDQRMLPQLEQALDRINDESFGWCDDSGEPIGLKRLLISPTTKYCIEAQERHEQIDKHQRQA	PGPT0014560_2065	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
D1-36_02910	1023	rbsC_2	COG1172	Ribose import permease protein RbsC	ATGAACGCGATATTGGAAAACAAACCCGCCGCCGCACCGGCCAGGACGCGTCGGCGGCTGCCCACGGAACTGAGCATTTTCCTGGTGCTGATCGGCATCGGCCTGGTGTTCGAGCTGTTCGGCTGGATCATGCGCGACCAGAGTTTCCTGATGAACTCCCAGCGCCTGGTGCTGATGATCCTGCAAGTGTCGATCATCGGCCTGCTGGCCATCGGCGTGACCCAGGTGATCATCACCACCGGCATCGACTTGTCGTCAGGTTCGGTGCTGGCGTTGTCGGCGATGATTGCCGCGAGCCTGGCCCAGACTTCGGATTTTTCCCGGGCGGTGTTTCCTTCCCTGACGGACCTGCCCGTGTGGATACCGGTGGTGGCGGGCCTCGGCGTGGGGCTGCTGGCGGGGGCGATCAACGGCAGCATCATCGCCGTTACCGGCATCCCGCCTTTTATCGCCACCCTCGGCATGATGGTCTCGGCCCGTGGCTTGGCGCGTTATTACACCGAAGGCCAGCCGGTGAGCATGTTGTCCGATTCGTACACCGCCATCGGTCATGGCGCTATGCCGGTGATCATCTTCCTGGTGGTGGCGGTGATCTTCCACGTCGCCTTGCGCTACACCAAGTACGGTAAATACACCTACGCCATCGGCGGCAACATGCAGGCGGCGCGGACCTCGGGCATCAACGTCAAGCGCCACCTGGTGATCGTCTACAGCATCGCGGGGCTGCTGGCGGGCTTGGCCGGCGTCGTGGCCTCGGCGCGGGCGGCGACCGGGCAGGCCGGCATGGGCATGTCTTACGAGCTCGACGCGATCGCCGCGGCGGTCATTGGCGGCACCAGCCTGGCCGGTGGAGTGGGGCGCATCACCGGGACGGTGATCGGTGCGCTGATCCTCGGGGTAATGGCCAGTGGTTTTACCTTTGTCGGTGTCGATGCCTATATCCAGGACATCATCAAGGGTCTGATCATTGTCGTCGCGGTGGTGATCGATCAGTACCGCAACAAGCGCAAACTCAAACGCTGA	MNAILENKPAAAPARTRRRLPTELSIFLVLIGIGLVFELFGWIMRDQSFLMNSQRLVLMILQVSIIGLLAIGVTQVIITTGIDLSSGSVLALSAMIAASLAQTSDFSRAVFPSLTDLPVWIPVVAGLGVGLLAGAINGSIIAVTGIPPFIATLGMMVSARGLARYYTEGQPVSMLSDSYTAIGHGAMPVIIFLVVAVIFHVALRYTKYGKYTYAIGGNMQAARTSGINVKRHLVIVYSIAGLLAGLAGVVASARAATGQAGMGMSYELDAIAAAVIGGTSLAGGVGRITGTVIGALILGVMASGFTFVGVDAYIQDIIKGLIIVVAVVIDQYRNKRKLKR	PGPT0016800_211	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_lNOSITOL_TRANSPORT_1,PGPT0016800-rbsC|mglC-K17214	NA	NA
D1-36_02911	1554	rbsA	COG1129	Ribose import ATP-binding protein RbsA	ATGTTCGCATCAGCGACTGCTTCGAGCGCCCCGGCGGCAACGTTCCGGCCGGACGCATTACCTGACGAACCGTACCTGTTGGAGGTCGTCAACGTCAGCAAAGGCTTCCCTGGCGTCGTGGCCCTGTCAGACGTGCAATTGCGGGTACGCCCCGGCTCGGTGCTGGCCTTGATGGGGGAAAACGGTGCGGGCAAATCCACGCTGATGAAGATCATCGCCGGCATCTACCAGCCCGACGCCGGCGAGCTGCGCCTGCGGGGCAAGCCGGTGACCTTCGACACCCCCCTGGCGGCCTTGCAGGCCGGGATCGCCATGATCCACCAGGAACTGAACCTGATGCCCCACATGAGCATCGCCGAAAACATCTGGATCGGCCGCGAACAGCTCAACGGCCTGCACATGATCGATCATGGTGAAATGCACCGCTGCACCGCCCGGTTGCTGGAGCGCTTGCGCATCAAGCTTGACCCGGAGGAGCAGGTGGGCAACCTGAGCATTGCCGAACGGCAGATGGTGGAGATCGCCAAGGCCGTCTCGTATGACTCCGACATCCTGATCATGGACGAACCGACTTCGGCCATCACCGAGACCGAAGTCGCCCATTTGTTCTCGATCATCGCCGACCTCAAGGCCCAGGGTAAGGGCATCATCTACATCACCCATAAAATGAACGAAGTCTTCGCCATCGCCGATGAAGTGGCGGTGTTTCGCGACGGCGCCTACATCGGCCTGCAACGGGCCGACAGCATGGATGGCGACAGCCTGATTTCGATGATGGTCGGGCGTGAATTGAGCCAATTGTTCCCCGAGCGGGACAAGCCAATCGGCGATCGGGTCCTGTCGGTACGGGACTTGAGCCTGGCGGGTATTTTCAAAGGGGTGTCGTTCGACCTGCACGCCGGGGAAATCCTCGGCATCGCGGGGTTGATGGGCTCGGGCCGGACCAACGTCGCCGAGGCGATTTTCGGCGTCACCCCTGCCACTGGCGGCGAAATCTTGCTGGACGGCCAGCCGGTCCACATCAGTGATCCGCACATGGCGATCGAGAAGGGCTTCGCGTTGTTGACCGAGGATCGCAAGCTCAGCGGCTTGTTTCCCTGCTTGTCGGTGCTGGAAAACATGGAAATGGCCGTGCTGCCTCATTACGTCGGCAACGGTTTCATCCAGCAAAAAGCCCTGCGCGCCTTGTGCGAGGACATGTGCAAGAAGCTGCGGGTCAAGACACCGTCCCTGGAGCAGTGCATCGACACTCTATCCGGCGGTAACCAGCAGAAGGCCTTGCTGGCCCGCTGGCTGATGACCAACCCGCGCATCCTGATCCTCGACGAACCGACCCGCGGCATCGATGTCGGCGCCAAGGCCGAGATCTACCGACTCATTGCCTACCTCGCCAGCGAAGGCATGGCGGTCATCATGATTTCTTCGGAGCTGCCTGAGGTGCTGGGCATGAGCGACCGCGTCATGGTGATGCACGAAGGCGACCTGATGGGCACCCTCGACCGCAGCGAAGCCACCCAGGAACGAGTCATGCAACTGGCGTCGGGCCTGTCCTGA	MFASATASSAPAATFRPDALPDEPYLLEVVNVSKGFPGVVALSDVQLRVRPGSVLALMGENGAGKSTLMKIIAGIYQPDAGELRLRGKPVTFDTPLAALQAGIAMIHQELNLMPHMSIAENIWIGREQLNGLHMIDHGEMHRCTARLLERLRIKLDPEEQVGNLSIAERQMVEIAKAVSYDSDILIMDEPTSAITETEVAHLFSIIADLKAQGKGIIYITHKMNEVFAIADEVAVFRDGAYIGLQRADSMDGDSLISMMVGRELSQLFPERDKPIGDRVLSVRDLSLAGIFKGVSFDLHAGEILGIAGLMGSGRTNVAEAIFGVTPATGGEILLDGQPVHISDPHMAIEKGFALLTEDRKLSGLFPCLSVLENMEMAVLPHYVGNGFIQQKALRALCEDMCKKLRVKTPSLEQCIDTLSGGNQQKALLARWLMTNPRILILDEPTRGIDVGAKAEIYRLIAYLASEGMAVIMISSELPEVLGMSDRVMVMHEGDLMGTLDRSEATQERVMQLASGLS	PGPT0016795_83	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_lNOSITOL_TRANSPORT_1,PGPT0016795-rbsA|mglA-K17215	NA	NA
D1-36_02912	927	xypA	COG1879	Xylitol-binding protein	ATGAACACCAAGACCCGTATTGCCTCGCTGGCCCTGTCATTGATGTTTGCCAGCGGCGCTGCCCTGGCGGACCTGAAGATCGGCGTCAGCATGTCCCAGTTCGATGACACCTGGTTGACCTACCTGCGCGAGTCCATGGACAAGAAAGCCAAGGCCCTGCCGGACGGCGTCACGTTGCAGTTCGAAGATGCGCGCAGCGACGTGGTCAAGCAACTGAGTCAGGTAGAAAGCTTCATCAGCCAGAAGGTCGACGCGCTCATCGTCAACCCGGTGGACACCGCCGCGACCCAACGCATCACCAAGGCCGCCGTGGCCGCCGGCATTCCGCTGGTCTACGTCAACCGCCGTCCGGACGACCCGAAACTGCCGGAAGGCGTGGTCACCGTGGCCTCGGATGACCTTGAGGCCGGGCGCATGCAGATGCAGTACCTGGCCGACAAGATGGGCGGCAAGGGTGAGATCGTGATCCTGCTGGGCGATTTGGCGAACAACTCCACCACCAACCGCACCAAGGGCGTCAAGGAAGTCCTCGCCAAGTACCCGGACATCAAGATCGAGCAGGAGCAGACGGGCATGTGGTCCCGGGACAAGGGCATGACCCTGGTCAATGACTGGCTGACCCAAGGCCGCGAGTTCAACGCCGTGGTGTCCAACAACGATGAAATGGCCATTGGCGCCGCCATGGCCCTCAGGCAAACGGGCGCCAAGAAGGGCAGCGTATTGATCGCAGGGGTCGACGGCACGCCGGACGGCTTGAACGCCATCAAGAAAGGCGACATGGCGGTCTCGGTGTTCCAGGACGCCAAGGGTCAAGCCGACGGCTCGATCGATACCGCGGTGAAAATGGTCAAGAAGCAGCCGGTCGAGCAATCCGTCTGGGTGCCATATCGCTTGATCACGCCGGAGAACGTCGATCAGTTCAAGTAA	MNTKTRIASLALSLMFASGAALADLKIGVSMSQFDDTWLTYLRESMDKKAKALPDGVTLQFEDARSDVVKQLSQVESFISQKVDALIVNPVDTAATQRITKAAVAAGIPLVYVNRRPDDPKLPEGVVTVASDDLEAGRMQMQYLADKMGGKGEIVILLGDLANNSTTNRTKGVKEVLAKYPDIKIEQEQTGMWSRDKGMTLVNDWLTQGREFNAVVSNNDEMAIGAAMALRQTGAKKGSVLIAGVDGTPDGLNAIKKGDMAVSVFQDAKGQADGSIDTAVKMVKKQPVEQSVWVPYRLITPENVDQFK	PGPT0016780_497	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISM	CE-BACTERIAL_FITNESS-RHIZOPINE_TRANSPORT,PGPT0016780-rbsB|mocB|mglB-K17213	NA	NA
D1-36_02913	201			hypothetical protein	ATGGACGAAGGACGAAACAAAAACAAGAAACACAGCCAGGTACCGTCGATGAAAACCTTCAACCGCTCTGCGTTTCACCTGCCATTGTCCTTGCGCCTGTCCGCAATCCTTCCCTTGTTCGAAGCCCTGTGCATCCAGCGCAGGGGCGCCGTGGTGTGCTGCATGCCCGGCGCACCGATCGTGCGTTTACCACGTTCCTGA	MDEGRNKNKKHSQVPSMKTFNRSAFHLPLSLRLSAILPLFEALCIQRRGAVVCCMPGAPIVRLPRS				NA	NA	NA	NA	NA
D1-36_02914	1053	iolW	COG0673	scyllo-inositol 2-dehydrogenase (NADP(+)) IolW	ATGCGAATCGGACTAGTGGGCTATGGCAAGGGCGGGCGGTTTTTTCATGCGCCGCTCATCAGCAGCCTGCCGGGCGCTACGTTTGTCGGGGTGGTGACCCGTTCCGCCGAGCGACGCCAGCAATTGGCAACCGAGCATCCGCGGGTCCAGGCCTTCGATAGCCTTGAGCAACTGGTGGCGGCCGGCGTTGATGCGGTGGTGGTGTCCACGCCGCTGCAAGCGCGCCCTGCCATTGTGATGGAGGCCATCGAGCACGGCGTGGCGGTGGTCAGCGACAAGCCATTCGCCCTTGATGCCGGGCAGGCCGAAGCGATGGTGTTGGCTGCCGAACGACGCAACGTACCGTTGAGCGTGTACCAGAACCGCCGCTGGGATTCGGATTTCCTGACGGTGCGCAAATTGCTTTCATCCGGTGCCCTGGGGCAGGTCATTCGTTTTGAGTCCAGCGTCGAACGTTACTCGCCGACCTCGGTGGGCAAAGCCAGTGGCGGGGGCTTCCTGCGGGATTTGGGCAGCCATCTGGTGGACCAAGCGCTGCAATTGTTCGGGCCGGTGGCCCGGGTGTATGCCGAGCTGGATTATCGACAGCCAGGCCAGGCCTACGACAACGGTTTTTTCATGTCGTTGGTCCACGCAAGCGGTGTGGTCTCGCACTTGAGCGGCAATTGCCTGCAAAGCGCTCCGCGCCCAAGGTTTCGGGTCAGTGGCAGCGAAGGCTGCTATACCGTCGAAGGCCTCGATGGTCAGGAGGCCCTGGCGTTGGCGGGACTGAGCCCCGCCACCGAGGGCGAACGTTGGGGCACGGAAGAACATCGGCGCTGGGGCTGGTTCGAACACGGTGCCGAGCGCGAGCGGGTAGCCTCGGAACGGGGCTGCTGGCTCGCGTTCTATCAGCGTCTACAGACAGCGTTGCAGGGCGACGGCCCTTTGCCAGTGGCTGCACGCGATGCCTTGGCCACGACACGCCTCCTGGACGCGGCAAGACAGAGCGCGGAGCAGGGTCAGGTGGTGTGTTTATCTGAGCCTGTAGGACATGGAATAAAAAACGAATAA	MRIGLVGYGKGGRFFHAPLISSLPGATFVGVVTRSAERRQQLATEHPRVQAFDSLEQLVAAGVDAVVVSTPLQARPAIVMEAIEHGVAVVSDKPFALDAGQAEAMVLAAERRNVPLSVYQNRRWDSDFLTVRKLLSSGALGQVIRFESSVERYSPTSVGKASGGGFLRDLGSHLVDQALQLFGPVARVYAELDYRQPGQAYDNGFFMSLVHASGVVSHLSGNCLQSAPRPRFRVSGSEGCYTVEGLDGQEALALAGLSPATEGERWGTEEHRRWGWFEHGAERERVASERGCWLAFYQRLQTALQGDGPLPVAARDALATTRLLDAARQSAEQGQVVCLSEPVGHGIKNE	PGPT0018530_311	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
D1-36_02915	1011	iolG_4	COG0673	Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenase	ATGTCTTTGAAGCTGGGCGTCATCGGCACCGGGGCCATCGGCCAGGACCACATCCGTCGTTGCAGCCAGACCTTGCTCAACAGCCAGGTGGTGGCAGTGACTGACATCAACCTTGCCCAGGCGGCGAAAGTGGTGGCCGACCTCAAACTGACCGCCGAGGTCTATCCGGACGGCCACGCGTTGATCGCGGCGCCGGACGTCGAGGCGATCCTCGTCACCTCCTGGGGGCCGAGCCATGAAGAGTTCGTGCTGGCGGCCATCGCGGCAGGCAAACCGGTGTTCTGCGAAAAGCCCCTGGCGGTCACGGCCGAAGGCTGCCGCAAAATCGTCGACGCCGAAGTGGCCCACGGCAAGCGCCTGGTGCAGGTGGGCTTCATGCGCCCTTACGATGAAGGTTATCGCGCGCTCAAATCGGTGATCGACAGCGGCCAGATCGGCGAGCCGTTGATGCTGCATTGCGCCCACCGCAACCCGAGCGTGGGGGAGAACTACAAGACCGACATGGCGATCACCGATACCCTGATCCACGAGCTGGACGTGCTGCGTTGGCTGCTGGCCGACGACTATGTGTCGGTACAGGTGGTGTTCCCGCGCAAGAGCAGCAAGGCTTTGGCCCACCTGCGGGATCCGCAGATCGTTCTGCTGGAAACCGCCAAGGGCACGCGGATCGACGTCGAGGTGTTCGTCAACTGCCAGTACGGTTACGACATCCAATGCGAAGTGGTGGGGGAGACCGGCATCGCCAAGCTGCCGGAACCGTCCCAGGTGCAACTGCGCAGCGGCGCCAAGCTGTCCAATGCCATCCTGATGGATTGGAAGGATCGCTTCATCGCCGCTTATGACGTCGAATTGCAGGCGTTCATCGACGGCGTGCGTGCCGGGCAAGTAGGCGGGCCGTCGGCCTGGGATGGTTTCGCCGCGGCGATGGCGGCGGATGCCTGTGTCCAAGCGCAGCAGAGTGGGCAGATCATCAAGGTCGAGCTGCCGGAGCGGCCACGCTTTTACGGCTGA	MSLKLGVIGTGAIGQDHIRRCSQTLLNSQVVAVTDINLAQAAKVVADLKLTAEVYPDGHALIAAPDVEAILVTSWGPSHEEFVLAAIAAGKPVFCEKPLAVTAEGCRKIVDAEVAHGKRLVQVGFMRPYDEGYRALKSVIDSGQIGEPLMLHCAHRNPSVGENYKTDMAITDTLIHELDVLRWLLADDYVSVQVVFPRKSSKALAHLRDPQIVLLETAKGTRIDVEVFVNCQYGYDIQCEVVGETGIAKLPEPSQVQLRSGAKLSNAILMDWKDRFIAAYDVELQAFIDGVRAGQVGGPSAWDGFAAAMAADACVQAQQSGQIIKVELPERPRFYG				NA	NA	NA	NA	NA
D1-36_02916	1932	iolD	COG3962	3D-(3,5/4)-trihydroxycyclohexane-1,2-dione hydrolase	ATGACCACAACAAGACTGACCATGGCCCAGGCCCTGGTGAAATTTCTCGATAACCAGTACGTCGAGGTCGATGGCGTCCAGAGCAAGTTCGTCGCCGGGGTGTTTACCATTTTCGGCCACGGCAATGTGCTGGGCCTCGGCCAGGCGCTGGAGCAGGACAGCGGCGACCTGGTGGTTCATCAGGGCCGCAACGAACAAGGCATGGCTCATGCCGCCATCGGGTTTGCCAAGCAGCATCTGCGGCGCAGAATCTACGCCTGTACCTCGTCGGTTGGTCCCGGCGCGGCGAACATGCTGACCGCCGCCGCCACCGCGACGGCCAATCGCATCCCGCTGCTGCTGTTACCTGGCGATGTCTATGCCAGTCGTCAGCCGGACCCGGTGCTGCAACAGATCGAGCAATTCCATGACCTGAGCATCAGCACCAACGATGCCTTCAAGGCCGTGAGCAAATACTGGGATCGCATCAACCGCCCCGAGCAATTGATGACTGCCGCGATCCAGGCCATGCGTGTGCTCACCGACCCGGCCGAGACCGGCGCGGTGACCCTGGCGCTGCCCCAGGATGTGCAGGCCGAAGCCTACGATTACCCGGATTATTTTTTGCAGAAACGCGTGCACCGCATCGACCGCCGGCCGGCCACCGAAGCGATGCTCGGCGATGCCCTGGCGTTGTTCAAGGGCAAGCGCAAGCCATTGATCATCTGCGGTGGCGGGGTGAAGTACTCCGGGGCCAATGCTGCATTGCAAGCCGTTGCCGAGCGCTTCGAGATTCCCTTTGCCGAGACTCAGGCGGGGAAAAGCGCCATCGTCTCCAGCCACCCGCTGAATGTCGGTGGCGTTGGCGAGACCGGCTGCCTGGCGGCGAACCTGCTGGCCAAGGAAGCGGACCTGATCATCGGCATCGGCACCCGCTACAGCGATTTCACCACGGCGTCGAAATGGCTGTTTCAGCATTGCGACGTGCAATTTCTCAACCTCAACATCAGCCCGTGCGATGCGCTGAAACTCGATGGCGTGCAACTGTTGGCCGACGCCCGTTCGGGCCTGGAGGCGCTGGCCGACAAGCTGGGGGACTACCGTGCCGAATGGGGCGCGCAGATCGCCGACGCCAAGGCCCAGCTCGACGCCGAAGTGGACCGGATCTACCAGGCAGATTTCCAGACCCAGGACTTCGTCCCGGAAATCAACGATCACATGGACCCCGCAGTGTTTCGTGAATTCATCGAGCTCACGGGGTCCTGCCTGACCCAAAGTCGCGTGCTTGGCACCCTCAACGAAACCCTGGCGGACGACGCCATCATCGTCGCCGCCGCCGGCAGCCTGCCCGGCGACCTGCAGCGCAGTTGGCGCAGCAAGGGCGTGAACACTTACCACGTCGAATACGCTTATTCATGCATGGGCTATGAGGTGAATGCCGCCCTGGGGGTGAAACTCGCCGAGCCCGATAAAGAGGTCTACGCGCTGGTGGGCGACGGCTCCTACATGATGTTGCACTCGGAACTCGCAACCTCCATCCAGGAGCGGCGCAAGATCAACATCGTGCTGCTGGACAACATGACCTTCGGTTGCATCAACAACCTGCAAATGGAACACGGCATGGACAGCTTCGGCACCGAGTTCCGCTTCCGCAACCCCGAGACGGGCAAGCTCGATGGCGGCTTTGTGCCGGTGGATTTCGCCATGAGCGCGGCGGCCTATGGCTGCAAGACCTACACGGTCAAGACGTTGGACGAGTTGTACGCGGCATTGGCCGACGCCCGGCGCCAGACGGTCTCGACCCTGATCGACATCAAGGTCCTGCCCAAGACCATGATCCACAAATACCTATCCTGGTGGCGGGTCGGCGTGGCGCAGGTCTCCACCAGCGCCCGCACCGATGCCGTCGCCAAGACCCTCAACGAACGACTGGCCAAGGCCCGTCAATACTGA	MTTTRLTMAQALVKFLDNQYVEVDGVQSKFVAGVFTIFGHGNVLGLGQALEQDSGDLVVHQGRNEQGMAHAAIGFAKQHLRRRIYACTSSVGPGAANMLTAAATATANRIPLLLLPGDVYASRQPDPVLQQIEQFHDLSISTNDAFKAVSKYWDRINRPEQLMTAAIQAMRVLTDPAETGAVTLALPQDVQAEAYDYPDYFLQKRVHRIDRRPATEAMLGDALALFKGKRKPLIICGGGVKYSGANAALQAVAERFEIPFAETQAGKSAIVSSHPLNVGGVGETGCLAANLLAKEADLIIGIGTRYSDFTTASKWLFQHCDVQFLNLNISPCDALKLDGVQLLADARSGLEALADKLGDYRAEWGAQIADAKAQLDAEVDRIYQADFQTQDFVPEINDHMDPAVFREFIELTGSCLTQSRVLGTLNETLADDAIIVAAAGSLPGDLQRSWRSKGVNTYHVEYAYSCMGYEVNAALGVKLAEPDKEVYALVGDGSYMMLHSELATSIQERRKINIVLLDNMTFGCINNLQMEHGMDSFGTEFRFRNPETGKLDGGFVPVDFAMSAAAYGCKTYTVKTLDELYAALADARRQTVSTLIDIKVLPKTMIHKYLSWWRVGVAQVSTSARTDAVAKTLNERLAKARQY	PGPT0018485_395	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0018485-iolD-K03336	NA	NA
D1-36_02917	822			hypothetical protein	ATGAACAAGCCCCTGCGTTTCGCCTTGAATCGAATGGTTGCCCCGCGCCTGTCGCTGCCTGCTTTCATCGACCTGGCGCTGGCGTTGAAGACCGATGCCATCGAGATTCGCAATGACCTCAAAGGTGTCGAGATCGAAGACGGCATGCCGCCGGCCCATGTCCGCGAGTTGTGCGAGGCGCGCGGCATCAAAGTGCTGTCGATCAACGCCCTGTACCCGTTCGATGTGTGGAACGAAGAGCGCCGTGCCCAGGCCGTGCGCCTGGCCGATTACGCCCGCGAGTGTGGCGCCGAGGGATTGGTGATGTGCCCGCTCAACGATCGCGCCGATCCGCGCAGCGAGGTCGAGCGAGCGGCGGGTTTGCGTACTGCCTTAAGTGAACTGGCGCCGATCCTGCGCGCCTTCGGCATCTACGGTTTCATCGAACCCTTGGGTTTTGCAGAATGCTCGCTACGCCGCAAGCGCACGGCGGTGGAAGCGATCAAGGCCACCGACGGGCTGGATGTGTTTCGCCTGGTGCACGACACCTTTCATCACCATCTGGCCGGCGAGCAGGAGTTCTTCCCTGAATTGACCGGGCTGGTTCACATCTCAGGGGTCGAGGATGCCCAAGCGCCACTGGCGACCATTCGCGACGGCCACCGAGTGCTGGTGGGCGAGGGGGATATTCTCGGCAATGCCGGGCAGATCGAGGCGCTGCTCCGCGGCGGCTATGACGGTTACCTGTCCTTCGAGCCGTTTGCCGAAAGTGTTCATGGGTTGGCCGATATTCGCCAGGCGTTGGGGGCGAGTATGAGCCACTTGCAAAAGTCCCAGGCCTGA	MNKPLRFALNRMVAPRLSLPAFIDLALALKTDAIEIRNDLKGVEIEDGMPPAHVRELCEARGIKVLSINALYPFDVWNEERRAQAVRLADYARECGAEGLVMCPLNDRADPRSEVERAAGLRTALSELAPILRAFGIYGFIEPLGFAECSLRRKRTAVEAIKATDGLDVFRLVHDTFHHHLAGEQEFFPELTGLVHISGVEDAQAPLATIRDGHRVLVGEGDILGNAGQIEALLRGGYDGYLSFEPFAESVHGLADIRQALGASMSHLQKSQA	PGPT0018495_316	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0018495-iolI-K06606	NA	NA
D1-36_02918	1503	bauC_2	COG1012	Putative 3-oxopropanoate dehydrogenase	ATGAGCGACACCCCGGTAATAGGCCATTACATCAACGGCCAAGTGCAGGATGGCGACACCGCTCGCTCCAGCAATGTCTTCAACCCGGCCACCGGCGCGGTGCAGGCCCGGGTGGCCCTGGCCGAGCCGAGTACCGTCGAGGCAGCGGTGGCCTCGGCGCTGGCGGCGTTCCCGGCCTGGTCCGAGCAATCGTCGTTGCGACGGTCGCGGGTGATGTTCAAGTTCAAGGAATTGCTCGACCGCCACCATGATGAGTTGGCGCAGATCATCAGCCGTGAACACGGCAAGGTGCTGTCCGACGCCCACGGCGAAGTCACCCGCGGTATCGAAATCGTCGAGTACGCCTGCGGTGCGCCGAGCCTGCTCAAGACCGATTTCAGCGACAACATTGGCGGCGGTATCGATAACTGGAATTTGCGCCAACCGCTGGGCGTTTGCGCTGGCGTCACGCCGTTCAACTTCCCGGTCATGGTGCCGTTGTGGATGATTCCCCTGGCGCTGGTTGCCGGCAACTGCTTCATCCTCAAGCCTTCGGAACGCGACCCGTCCGCCAGTTTGCTGATGGCCCGCTTGCTGACCGAAGCCGGCCTGCCGGACGGCGTATTCAATGTCGTCCAGGGCGACAAGGCGGCCGTGGATGCGCTATTGCAGCACCCGGACATCGAGGCGATCTCTTTTGTCGGCTCCACGCCCATCGCCGAATACATCCACCAGCAGGGTACGGCGCACGGTAAGCGCGTGCAGGCCTTGGGTGGGGCGAAGAACCACATGATCGTCATGCCCGATGCCGACCTCGACCAGGCGGCGGACGCGCTGATCGGCGCGGCCTACGGTTCTGCCGGCGAGCGCTGCATGGCGATTTCCATCGCGGTGGCGGTGGGCGACGTGGGCGATGAGCTGATCGCCCGACTGTTGCCACGTATCGACCAACTGAAAGTCGGCAATGGCCAGCAACCCGGCACCGACATGGGGCCGTTGGTCACCGCCGAACACAAGGCCAAGGTAGAAGGCTTCATCGATGCTGGCGTGGCCGAGGGTGCGCGACTGATCGTCGACGGCCGGGGCTTCAAGGTGCCGGGGGCCGAGCAGGGATTTTTTGTCGGCGCGACGCTGTTCGACCAGGTCACCGCCGAGATGAGCATCTACCAACAGGAGATTTTCGGCCCGGTGCTGGGCATCGTTCGTGTGCCGGATTTCGCCACGGCGGTGGCGCTGATCAATGCCCATGAGTTTGGCAACGGCGTGTCGTGCTTCACCCGTGATGGCGGCATCGCCCGGGCGTTCGCCCGCAGCATCAAGGTCGGCATGGTGGGCATCAACGTGCCGATCCCGGTGCCCATGGCCTGGCACTCCTTTGGCGGCTGGAAGCGTTCGCTGTTCGGGGATCACCATGCCTATGGCGAGGAAGGCCTGCGTTTCTACAGTCGCTACAAGAGCGTGATGCAGCGCTGGCCCGACAGCATCGCCAAGGGCCCCGAGTTCAGCATGCCCACTGCCCAATAA	MSDTPVIGHYINGQVQDGDTARSSNVFNPATGAVQARVALAEPSTVEAAVASALAAFPAWSEQSSLRRSRVMFKFKELLDRHHDELAQIISREHGKVLSDAHGEVTRGIEIVEYACGAPSLLKTDFSDNIGGGIDNWNLRQPLGVCAGVTPFNFPVMVPLWMIPLALVAGNCFILKPSERDPSASLLMARLLTEAGLPDGVFNVVQGDKAAVDALLQHPDIEAISFVGSTPIAEYIHQQGTAHGKRVQALGGAKNHMIVMPDADLDQAADALIGAAYGSAGERCMAISIAVAVGDVGDELIARLLPRIDQLKVGNGQQPGTDMGPLVTAEHKAKVEGFIDAGVAEGARLIVDGRGFKVPGAEQGFFVGATLFDQVTAEMSIYQQEIFGPVLGIVRVPDFATAVALINAHEFGNGVSCFTRDGGIARAFARSIKVGMVGINVPIPVPMAWHSFGGWKRSLFGDHHAYGEEGLRFYSRYKSVMQRWPDSIAKGPEFSMPTAQ	PGPT0002295_2096	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATION	PLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0002295-mmsA|iolA-K00140	NA	NA
D1-36_02919	810	iolB	COG3718	5-deoxy-glucuronate isomerase	ATGAGCCTGTTGATCAAGAGCAATCCCGGCGGCCAGAAACTGGTCGAACTGCCCCATGGTGCGTTGGATTACGTGGGCTTCGCGGCCTACCGCCTGAGCCTCGGAGAAACCCTTCCGGTGATGGCCGGTGACAAGGAGTTGTGTGTGGTCTTGCTCAGCGGGCGTATCGACCTCAAGGGCGAAGCGCCGGGGCAGGGAACGTTCAACTGGGACAACCTCGGTGACCGCCACTCGGTGTTCGAGGATAAATCCCCCTACGCCGCATACCTGCCACCCGGCAGCCAGGCCCAGGTGACGGCCTTGAGCGACGTGCAAGTAGCGGTGTGCGCCGCGCCGGGCGCGGCCAGCAATGAATACGGACCACGGCTGATCCGCCCGCAAAGCATGAAACGCAGCGTTCGCGGCAAGGGCGCCAATACTCGTTATGTCTGCGACATCCTGCCCGACAGCGAACCGGCCCACTCGCTGCTGGTAGTGGAAGTGCGCACGCCGTCCGGTCATTCGTCCAGCTATCCGCCCCACAAGCACGACACCGACGACCTGCCGCACCAGAGCTTTCTCGAAGAGACCTACTACCACCAGGTCAACCCGTCCCAGGGCTTCGTGTTCCAGCGGGTCTACACCGACGACCGCAGCATCGACCAGGCCATGGCCGTGGAAAACAGTGACCTGGTGGTGGTGCCCAAGGGTTACCACCCGGTCAGCGTGCCCTACGGGTACGAGTCGTATTACCTGAATGTCATGGCCGGTCCGAAGCGGGTCTGGCAGTTCCATAACGACCCGCAGCACAGCTGGCTGCTCGACTTCTGA	MSLLIKSNPGGQKLVELPHGALDYVGFAAYRLSLGETLPVMAGDKELCVVLLSGRIDLKGEAPGQGTFNWDNLGDRHSVFEDKSPYAAYLPPGSQAQVTALSDVQVAVCAAPGAASNEYGPRLIRPQSMKRSVRGKGANTRYVCDILPDSEPAHSLLVVEVRTPSGHSSSYPPHKHDTDDLPHQSFLEETYYHQVNPSQGFVFQRVYTDDRSIDQAMAVENSDLVVVPKGYHPVSVPYGYESYYLNVMAGPKRVWQFHNDPQHSWLLDF	PGPT0018475_876	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATION	PLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0018475-iolB-K03337	NA	NA
D1-36_02920	894	iolE_3	COG1082	Inosose dehydratase	ATGCCCGCTATTCGAATTGGCATCAACCCGATTTCCTGGAGCAACGACGACCTGCCGTCCCTTGGCGGCGAGACGCCCTTGAGCACGGCGCTGAGCGAAGGCAAGGAAATCGGCTACGAAGGGTTTGAGCTCAACGGCAAGTTCCCCAAGGACGCCAAGGGCGTCGGCGACGTGTTGCGCCCGTACGACCTGGCGCTGGTTTCCGGCTGGTATTCCAGTCGATTGGCGCGGCGTTCGGCGGCCGAGGAAATCGACGCCATCGCCAGCCATGTCGAACTGCTGGCGCAGAACGGCGCGACGGTATTGGTCTATGGCGAAGTGGCTGACTCCATCCAGGGCCAGCGCATCCCCTTGATCGAACGCCCGCGCTTTCACACCGACGAAGCCTGGCAAGCCTACGCCGACAAGCTCACCGAACTGGCGCGCTTCACCCTGTCCCAGGGCGTGCGACTGGCCTATCACCACCACATGGGCGCCTACGTAGAATCGCCTTCGGACATCGACAAGCTGATGGCCCTGACCGGCAGCGAAGTGGGCCTGCTGTTCGACTCTGGGCATTGCTACATGGGCGGTGGCGAACCGCTGCAAGTCTTGCGCAAGCACATCGAGCGCATCTGTCACGTGCATTTCAAGGACGTGCGCAAACCCGTGGTGCAGCTGGCGCGCAACAACCTCTGGAGTTTCCCCGACTGCATCATCAATGGCACCTTCACCGTGCCGGGGGATGGCGACATCGATTTCGCTGCGTTGCTCGACGTCCTACTGGCTGCCGACTACCAAGGGTGGCTGGTGGTGGAAGCCGAGCAGGACCCCGCCGTGGCGCCGAGTTATGTCTACGCCAAGAAGGGCTACGACACCTTGCGTGCCCTGCTGCAAGAGAGGATGCCGGCATGA	MPAIRIGINPISWSNDDLPSLGGETPLSTALSEGKEIGYEGFELNGKFPKDAKGVGDVLRPYDLALVSGWYSSRLARRSAAEEIDAIASHVELLAQNGATVLVYGEVADSIQGQRIPLIERPRFHTDEAWQAYADKLTELARFTLSQGVRLAYHHHMGAYVESPSDIDKLMALTGSEVGLLFDSGHCYMGGGEPLQVLRKHIERICHVHFKDVRKPVVQLARNNLWSFPDCIINGTFTVPGDGDIDFAALLDVLLAADYQGWLVVEAEQDPAVAPSYVYAKKGYDTLRALLQERMPA	PGPT0016785_1414	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISM	CE-BACTERIAL_FITNESS-RHIZOPINE_CATABOLISM,PGPT0016785-mocC-K03335	NA	NA
D1-36_02921	1938	iolC		5-dehydro-2-deoxygluconokinase	ATGGGTCAGACTCGTTTTGCCAGTGGGCGTCAATTGGATGTCATCTGCCTGGGACGCCTGGGCGTCGATCTCTATGCGCAGCAGGTCGGCGCGCGGCTGGAAGATGTCAGCAGTTTTGCCAAGTACCTGGGTGGATCGTCGGCCAACATCGCCTTCGGTACGGCCCGCCTGGGGCTGAAATCGGCGATGTTGAGCCGTGTAGGCGACGATCACATGGGGCGTTTCCTGGTGCAGTCCCTCGCCCGGGAAGGCTGTGACGTCAGCGGCGTCAAGGTCGATGCCGAGCGCCTGACCGCCATGGTCTTGCTGGGTATCAAGGACCGCGAGACCTTTCCCCTGGTGTTCTACCGGGAAAACTGCGCGGACATGGCGCTGCGGGCCGAAGACATCGACGAAACCTTTATCGCTTCCAGCAAGGCGCTGCTGATCACCGGCACTCATTTCTCTACCGAAGGCGTCTACAACGCGAGCATCCAGGCGCTGGACCATGCCCGAAAACACAACGTCAAATGCGTTCTCGACATCGATTACCGCCCGGTCCTCTGGGGCCTGGCGAGCAAGGCCGACGGTGAAACCCGTTTCGTTGCCGACCGCAAGGTCAGCCAGCACGTGCAAGGCATCCTGGCGCGTTTCGACCTGATCGTCGGCACCGAGGAAGAATTCCTCATCGCTGGCGGCAGCGAGGACCTGCTGGCCGCGCTGCGTACGGTGCGCGCGCTGACGGCGGCAACCCTGGTGGTCAAGCTCGGCCCACAAGGATGTACGGTGATCCACGGTGACATCCCGAACCGATTGGAAGACGGCGCCATTTACCCGGGCGTTAGGGTCGAAGTCTTGAATGTGCTGGGTGCCGGTGATGCGTTCATGTCCGGGTTCCTCGCCGGTTGGCTGGAGGACGCCGACGATGAGCGCTGCTGCCAGTTGGCCAATGCCTGCGGTGGCCTGGTGGTTTCGCGCCATGCCTGCGCTCCGGCGATGCCGACCCGGGCCGAACTCGACTATTTGTTCAACAGCCCGGTGCCCATCACCCGACCGGACCAGGATGCCGCGCTGCAACGGCTGCATCAGGTGAGCGTGCCGCGCAGGGCCTGGAAGCAGTTGTTCATCTTCGCCTTCGACCATCGCTGGCAACTGGTGGAACTGGCTCAGCGCGGCGGGCGTGGCCTCGACAGTATCAGCGAGCTCAAGCAACTGTTCATCCAGGCTGTGCAGCGGGTCGAGGTCGACCTGCAACGCCAGGGTATCGCCGCCGATGTCGGTTTGCTGGCCGATCAGCGCTTTGGCCAGGACTCCCTCAACGCGGCCACCGGGCGTGGCTGGTGGGTGGCGCGGCCGGTGGAAGTGCAGGGCTCGCGGCCGCTGGCGTTCGAGCACGGGCGCTCCATCGGCAGCAACCTGATTGCCTGGCCGCAGGAACAGATCATCAAATGCCTGGTTCAATTTCACCCCGACGACGAACCGCTGCTGCGCCTGGAACAAGAGGCCCAGTTGATGGGCTTGTACAAGGCGTCCCAGGTCAGCGGTCATGAGTTGCTGCTGGAAGTCATCCCGCCGAAGGATCATCCATCAGCCCATCCGGACGTGCTCTATCGCGCCCTCAAGCGCCTCTACAACCTGGGTATTTTCCCGGCGTGGTGGAAGATCGAAGCGCAGACTGCCCAAGAGTGGAAGCAACTCGACGAGTTGATCCAGCAGCGCGACCCGTACTGCCGTGGCGTGGTGCTGCTGGGCCTCAACGCCCCGGCCGCCGCATTGGCCGAGGGCTTCCGCCAGGCCAGCCAGAGCACCACCTGCCGGGGCTTTGCCGTGGGCCGGACGATTTTCCAGGAGCCGAGCCGGGCCTGGATGGCCGGGGAGATCGATGACGAAACGTTGATCCGGGACGTGCAGGGGCGGTTTGTGGAATTGATCGAGGCGTGGCGCAGTGCCCGGGCTTGA	MGQTRFASGRQLDVICLGRLGVDLYAQQVGARLEDVSSFAKYLGGSSANIAFGTARLGLKSAMLSRVGDDHMGRFLVQSLAREGCDVSGVKVDAERLTAMVLLGIKDRETFPLVFYRENCADMALRAEDIDETFIASSKALLITGTHFSTEGVYNASIQALDHARKHNVKCVLDIDYRPVLWGLASKADGETRFVADRKVSQHVQGILARFDLIVGTEEEFLIAGGSEDLLAALRTVRALTAATLVVKLGPQGCTVIHGDIPNRLEDGAIYPGVRVEVLNVLGAGDAFMSGFLAGWLEDADDERCCQLANACGGLVVSRHACAPAMPTRAELDYLFNSPVPITRPDQDAALQRLHQVSVPRRAWKQLFIFAFDHRWQLVELAQRGGRGLDSISELKQLFIQAVQRVEVDLQRQGIAADVGLLADQRFGQDSLNAATGRGWWVARPVEVQGSRPLAFEHGRSIGSNLIAWPQEQIIKCLVQFHPDDEPLLRLEQEAQLMGLYKASQVSGHELLLEVIPPKDHPSAHPDVLYRALKRLYNLGIFPAWWKIEAQTAQEWKQLDELIQQRDPYCRGVVLLGLNAPAAALAEGFRQASQSTTCRGFAVGRTIFQEPSRAWMAGEIDDETLIRDVQGRFVELIEAWRSARA	PGPT0018480_237	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATION	PLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0018480-iolC-K03338	NA	NA
D1-36_02922	921	murR		HTH-type transcriptional regulator MurR	ATGACCCGCCCCGATCTGCAGGCGTCGTCCGAGAGCGCGTCCGAAGCCGCCCTCCCCAGCCCACCGATCAACGCCGAGCGGCTGTTGCAACTGATCACCGAGGAATACGAAGGCCTGCCGCGCCAGCTCAAGCGCATCGCCAGCTATATGAGCCAGCAAAGCGACCGGATCATGGTTGATCGCATCAGCGACATCGCCCGGGAATGTGAAGTGCATCCCTCGGCCATCGTGCGCTTCTCCCAGCGCTTCGGCTTCAGCGGGTTCAGCGAAATGCAGGCTTTGTTCCGCGAGGCGTACACCCACAAAACCACGCCGGTACAGAACTACCAGCAACGCATTCGCAGCATGATCGCCAACAAATCCCAGAAGGCCAGTGCCGGCGACCTGGCCCGGGAATGCGTCAACGCGACCCTATCGGGTATCGAACGCCTGGGGCTGGAGCTCGAAGACGAGGCGTTCGAAAAAGCCGTGGACCTGGTGGTGAATGCCGACAACATCTATGTGGTCGGTGTGCGGCGTTCATTCGCGGTGGCCGATTACCTGGTCTACAACCTGCAGCACACCAACAAGCGCATTCACCTGGTCTCCGGCCTGGGCGGCAGTTATCGCGAGCAGATGCGCAGCGTGCGGGCCAACGACCTGGTGATTGCCATCAGCTTTACGCCTTACGGCAAGGAAACCCAGCACTGCCTGCGCATTGCCCAGCATCACCAGGCGAAGACACTGATCATCACCGACAGCAACTTATCGCCGCTGGCCAAGCGGGCCAACGCGGTGTTGCTGGTCAACGAAGGCAGCTCGTTCGCGTTCCGCTCGTTGAGCGCCACGTTGTGCCTGTGCCAAGCATTGTTCATCGCCGTGGCCTACCGACTCGAACTCAAAGTCGATGAAATCCATGAACAGGTCGGCTTCGAGGATTGA	MTRPDLQASSESASEAALPSPPINAERLLQLITEEYEGLPRQLKRIASYMSQQSDRIMVDRISDIARECEVHPSAIVRFSQRFGFSGFSEMQALFREAYTHKTTPVQNYQQRIRSMIANKSQKASAGDLARECVNATLSGIERLGLELEDEAFEKAVDLVVNADNIYVVGVRRSFAVADYLVYNLQHTNKRIHLVSGLGGSYREQMRSVRANDLVIAISFTPYGKETQHCLRIAQHHQAKTLIITDSNLSPLAKRANAVLLVNEGSSFAFRSLSATLCLCQALFIAVAYRLELKVDEIHEQVGFED				NA	NA	NA	NA	NA
D1-36_02923	612	yibF_1	COG0625	putative GST-like protein YibF	ATGAAACTGATCGGCATGTTGGACTCGCCCTACGTGCGACGCGTCGCCATTTCCGCCAAATGCCTAGGGATTGCCCTGGAACACGAATCGGTGTCGGTGTTCCGGCAATTCGAGCATTTCCAGAGCATCAACCCGGTGGTCAAGGCCCCCACGCTGGTGATGGATGATGCCTCGGTGTTGATGGATTCCACCTTGATCATCGATTACCTGGAGGCACTGGCCGGCCCGGCGAACAGCCTGATGCCGTCCGATCCAGCCCAACGATTGCGCTCCTTGCAATTGGTCGGGCTGGCGCTGGCGGCGTGCGAAAAGTCGGTGCAGATCTATTACGAACGCACCCTGCGACCGGCGGATATCCAACATGCTCCGTGGCTGTCACGAATTTCGGGCCAGTTGCTGGCCGCCTACGGTGAGCTGGAGCAAGCCCTGGCAAAACAACCGCTGCCCACCGATGGTTCCATCGATCAGGCCGGCATCACCGTCGCCGTGGCGTGGACCTTCACCAACCTGTTGGTGGCGGATCAAGTACAGGGCAAGTCCTTCCCGCAGATCAGCGCATTCACCGCCTATGCCGAAGGGTTGGAAGCCTTTGTCAGCACGCCGGTGGAATGA	MKLIGMLDSPYVRRVAISAKCLGIALEHESVSVFRQFEHFQSINPVVKAPTLVMDDASVLMDSTLIIDYLEALAGPANSLMPSDPAQRLRSLQLVGLALAACEKSVQIYYERTLRPADIQHAPWLSRISGQLLAAYGELEQALAKQPLPTDGSIDQAGITVAVAWTFTNLLVADQVQGKSFPQISAFTAYAEGLEAFVSTPVE	PGPT0013170_20299	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799	NA	NA
D1-36_02924	1260	hcnC_3		Hydrogen cyanide synthase subunit HcnC	ATGATTAGGCATTACGATGTTGTGATTGCCGGTGGCGGCGTGATCGGCGCCTCCTGCGCTTACCAGCTGTCCAAGCGCAACCATCTGAAGATCGCCCTGATCGACGCCAAGCGTCCAGGCAACGCCACCCGCGCCTCGGCGGGTGGCCTCTGGGCCATTGGCGAATCGGTGGGCCTGGGTTGCGGGGTGATTTTCTTCAGGATGATGTCAGCCAATCGCAAGCGCCAGGCCCAGGGCGCCGCCGTGGCGGTGGATGCCAGCACGCCGCACATCCTGCCCGACTCGTTTTTCGAATTCGCCTTGCAGTCCAACGCGATGTACCCGCAATTGCACCGGGAACTGTTCGATCGTCATGGCATGGATTTCAAGTTCGAACGGACCGGGCTCAAGTTCGTGATCTACGACGATGAAGATCGGTTGTATGCCGAGCATATCGTCGCCTGCATTCCTCATCTGGCCGATCAGGTGCGCTGGCTCGACCAGGCGGCATTGCGCGAGGCCGAGCCGAACGTCAGCCACGAGGCCCGGGGTGCCCTGGAATTCCTGTGCGACCATCAGGTCAGCCCATTCCGCCTGGCAGACGCCTACACCGAGGGCGCGCGGCAGAACGGTGTCGACCTGTTCTTCAACACCAACGTGACTGACGTGTTGCGAAGCGGGACGCGGGTCACCGGCGTGAAGACCGCCGAGGCCGGGACATTCACTTGCCAGACCTTGATCAACGCTGCCGGCGCCTGGGCGGCGGACCTGAGCGAGCAGGCAACGGGCGTGCGGATCCCGGTCAAGCCAGTCAAGGGCCAGATCCTCTTGACCGAGCGCATGCCCAAAATCCTCAATGGCTGCCTGACCACCAGCGACTGCTACGTGGCGCAGAAAGACAACGGCGAAATCCTCATCGGCAGCACCACGGAGGACAAAGGGTTCGACGTGACCACCACCTACCCGGAGATCGAAGGGCTGGTACAGGGTGCCGTGCGCTGTATCCCGCAACTGGCCGACATCAACCTGAAGCGCACCTGGGCCGGCCTGCGTCCAGGCTCACCCGATGAGCTACCGATCTTGGGGCCGATGCGCGGTGTCGAGGGCTACCTCACCGCCTGCGGGCACTTTCGCACCGGTATCCTGACCTCGGCCATCACCGGCGTGCTGCTGGACAAACTGGTGAACCAGGAGCCGCTGCCACTGGACATCACGCCATTCCTGGCCGACCGCTTCGAGGTAGCGCCGACTCCAGAGCCTAGAAAAATGGAACCGGCCTGA	MIRHYDVVIAGGGVIGASCAYQLSKRNHLKIALIDAKRPGNATRASAGGLWAIGESVGLGCGVIFFRMMSANRKRQAQGAAVAVDASTPHILPDSFFEFALQSNAMYPQLHRELFDRHGMDFKFERTGLKFVIYDDEDRLYAEHIVACIPHLADQVRWLDQAALREAEPNVSHEARGALEFLCDHQVSPFRLADAYTEGARQNGVDLFFNTNVTDVLRSGTRVTGVKTAEAGTFTCQTLINAAGAWAADLSEQATGVRIPVKPVKGQILLTERMPKILNGCLTTSDCYVAQKDNGEILIGSTTEDKGFDVTTTYPEIEGLVQGAVRCIPQLADINLKRTWAGLRPGSPDELPILGPMRGVEGYLTACGHFRTGILTSAITGVLLDKLVNQEPLPLDITPFLADRFEVAPTPEPRKMEPA	PGPT0008403_5	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_HYDROGEN_CYANIDE_METABOLISM,PGPT0008403-hcnC-K10816	NA	NA
D1-36_02925	1410	hcnB_3		Hydrogen cyanide synthase subunit HcnB	ATGAACCTCGATCCGGTCATCGTCGGCGGCGGGCCGGCGGGCATGGCGGCGGCTACCGAGCTGGCCTCCCACGGGGTGCGCTGCACCTTGCTCGAAGAGGCGCCGCGCCTCGGTGGCGTGGTGTATCGCGGCCCCTTGCGCGATGGCGTATGCCTGGATTACCTGGGGGCCCGCTACAGCGAAGCGTTGGAGAAGCTCCACGGGGACTTCCAGCGCCACGCCGACCTGATCGACGTGCAATTGGGCTGCCGTGTCATCGGGGCGGAGGGATTCCGGGCGCTGACGCTGCTCGATGCGCACGAGCGCTTGCGGTCGGTTGCCTATTCGCAGTTGATCCTGGCAGCGGGGTGCCATGAACGCAGCGTACCGTTCCCTGGCTGGACCCTCCCGGGCGTGATGATGCTTGGCGGCTTGCAGCTGCAGATCAAGAGCGGCGTGGTCAAGCCGCCGAGCCCGGTGGTGATCGCCGGGACGGGCCCGTTATTGCCATTGGTGGCCTGTCAGCTTCACGCCTCGGGCGTCACCGTGGCGGGTGTCTATGAGGCGTGTGCGTTCGGCAGGATCGCCAAGGAAAGCCTAGCGCTGCTGAACAAGCCGCAACTGTTCCTCGACGGCCTGGGCATGCTCGCGTACCTCAAGCGCCATCGCATTCCCGTGCGCTATGGCTGGGGCGTGGTGCGTGCCGAAGGCGAGGGCGAGTTGAGCGCCGTGACCGTAGCGCCGTACTCCGTAAATTGGGAACCGGACCTTGCGCGCGCCGAACAGGTGCCGGCCCAGACGTTGGCCGTCGGCTACGGGTTTATCCCGCGCACCCAGCTGAGCCAGCAGATGGGCCTGGAACATGGTTTCAGCGACGACGGCTATCTGCGTGCCGTGTCCGATGCCTGGCAACGGGGCAGCGAGGCGCATGTCCATCTGGCGGGCGACATGGGCGGGATTCGCGGGGGAGAGGCAGCCATGCTGAGCGGGCGCATCGCGGCGCTGTCGGTGCTGGTGCAACGCAACGTCCTGGATGAGGCGGCAGCCCTCGGGCGTCGCGAGCGGTACCAGGCACAACTGGACCGCATCATTCGTTTTCGCGCCGCGGTCGATCGCTACACCCAGCGTGGGGCGGGCCAAACGGCGCTGCCTGCCGCCGACACGGTGATCTGCCGCTGCGAACATGCCACCCGCGCCGACATCGACCGGGCCCTGGCGCAGGGCGTGCAAGACATGGCCAGCCTGAAGATGCGCACCCGCGTGAGCATGGGCGACTGCCAGGGGCGCATGTGCGTCGGTTATTGCAGCGACCGGTTGCGCGAGGCCACCGGGCGCGCTGATGTAGGGTGGCTGCGGCCACGTTTCCCCATAGATCCTGTTCCTTTTTCAGCGTTCCAGTACCTCGGCACGGAGGCCGTTTCCCATGATTAG	MNLDPVIVGGGPAGMAAATELASHGVRCTLLEEAPRLGGVVYRGPLRDGVCLDYLGARYSEALEKLHGDFQRHADLIDVQLGCRVIGAEGFRALTLLDAHERLRSVAYSQLILAAGCHERSVPFPGWTLPGVMMLGGLQLQIKSGVVKPPSPVVIAGTGPLLPLVACQLHASGVTVAGVYEACAFGRIAKESLALLNKPQLFLDGLGMLAYLKRHRIPVRYGWGVVRAEGEGELSAVTVAPYSVNWEPDLARAEQVPAQTLAVGYGFIPRTQLSQQMGLEHGFSDDGYLRAVSDAWQRGSEAHVHLAGDMGGIRGGEAAMLSGRIAALSVLVQRNVLDEAAALGRRERYQAQLDRIIRFRAAVDRYTQRGAGQTALPAADTVICRCEHATRADIDRALAQGVQDMASLKMRTRVSMGDCQGRMCVGYCSDRLREATGRADVGWLRPRFPIDPVPFSAFQYLGTEAVSHD	PGPT0008402_5	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_HYDROGEN_CYANIDE_METABOLISM,PGPT0008402-hcnB-K10815	NA	NA
D1-36_02926	264	hcnA_2		Hydrogen cyanide synthase subunit HcnA	ATGACCGTGCTCCTGGACGGACAGGCTGTCAATGCCGCCCAGGGCGAAACCGTGCTTACCGTGATCCAGGCCCTGGGTCGCCGGCAGGTGGCCCGCAACGACCACGACCAGATCAGTGGCGCCTATTGCGGCATGGGGGTTTGCCATTGCTGCCTGGTCAAGATCGATGGTCGCCATAAGCGCCGCGCCTGCCAGACTCTCGTGCGCCCCGGCATGCAGATCGAGACCCGGGCCAACCGCATTGCTGAAACGGAGGCGCCATGA	MTVLLDGQAVNAAQGETVLTVIQALGRRQVARNDHDQISGAYCGMGVCHCCLVKIDGRHKRRACQTLVRPGMQIETRANRIAETEAP	PGPT0008401_10	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_HYDROGEN_CYANIDE_METABOLISM,PGPT0008401-hcnA-K10814	NA	NA
D1-36_02927	201			hypothetical protein	ATGCAGCTCTTCCTTGAAGGTTCAGTCGGTCTTGGCTCCTTGCGGCACGCCACCACCCGCCTTGCGGCGATGCCCATCGGCGACTGCGCGCCAAAACAGGGCAACAGACGCAGCATGCTGGTGCGCGGCGCAATGATGTTAGGGATTATTTGTGACGAAGTGTTGATCCAGGCCAATCAATGCGCACGTCCGCGCCCATGA	MQLFLEGSVGLGSLRHATTRLAAMPIGDCAPKQGNRRSMLVRGAMMLGIICDEVLIQANQCARPRP				NA	NA	NA	NA	NA
D1-36_02928	684	cusR	COG0745	Transcriptional regulatory protein CusR	ATGAACCGCATCCTGACCATCGAAGACGACGCCGTGACCGCTCGGGAAATTGTCGCCGAACTGACCCGCAACGGCCTGGACGTCGACTGGGTCGACAATGGCCGCGAAGGCTTGGAGCGCGCGGTCAGCGGTGACTACGACCTGATCACCCTCGACCGCATGCTCCCCGAACTGGACGGCCTGGTGATTGTCACCACGCTACGGACCATGGGCGTGGCCACGCCGATTCTGATGATCAGCGCCCTGTCCGATGTCGACGAACGCGTCCGCGGCCTGCGCGCCGGTGGCGACGATTACCTGACCAAGCCGTTCGCCACCGATGAAATGGCCGCCCGGGTCGAGGTGTTGCTGCGCCGCAACAACGGTGCCCGTGAACCCGAGACCGCGCTGCGGGTGGCGGACCTGGAGCTGAACCTGATCAGCCGCGAAGCCAGCCGCAACGGGCAACTGCTCAGCCTCTTGCCCACCGAATACAAATTGCTGGAATTCCTGATGCGCAACAGCGGCCAGATCCTGTCGCGCATGATGATTTTCGAAGAGGTCTGGGGGTATCACTTCGACCCCGGCACCAACCTGATCGACGTCCACATCGGTCGCCTGCGCAAAAAAATCGACCCGCCGGGCCTGGAGCCGCTGATTCGCACGGTACGAGGGTCCGGCTATGTCATTGCTGAACCCCGCTAA	MNRILTIEDDAVTAREIVAELTRNGLDVDWVDNGREGLERAVSGDYDLITLDRMLPELDGLVIVTTLRTMGVATPILMISALSDVDERVRGLRAGGDDYLTKPFATDEMAARVEVLLRRNNGAREPETALRVADLELNLISREASRNGQLLSLLPTEYKLLEFLMRNSGQILSRMMIFEEVWGYHFDPGTNLIDVHIGRLRKKIDPPGLEPLIRTVRGSGYVIAEPR	PGPT0004105_1002	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
D1-36_02929	1386	sasA_14		Adaptive-response sensory-kinase SasA	ATGTCATTGCTGAACCCCGCTAAGGGCTGGCGATCCTCAAGCAGCCGCCTGCTGGCGCTCTACAGCGCGCTGTTCGTGATCTGGAGCGCCATCCTGATGGGGGTGATGTATTACGAAGTGTTTGGCTACCTCGACAGCCTCGCCAAACATTCCCTGATGCAACGCCAGCACCTGTTCGCGCGCATCCACGGCGACCAGCTGGAGGACGCGCTGATGGCCAGCCTGACGTTGGACGAACGCGGCGTCGACGCCTACGGCCTGTTCGATCCGCAGTTGCGCCATCTGAGCGGACCGATCCAACGCATCCCCGCCGATCTGCCGCTCGATGGCAAGATCCATATGCTCGGCGGTTGCGTCGATTCCGACGACCCGGGCGTGCCGTCCGACAGTTGCGACGCGATAGCGACCCGGACCCAGGATGGTCGCTGGCTGGTGCTGGCGCGGGACAACGGCTCGTTGTTCGCCGTGACACGCATCATTTCACACGCACTGTTCTGGGGCGTATCGCTGACGATCCTGCCGGGCATCTTCGGCTGGCACCTGCTGCGGCGCCGGCCGTTGCGGCGGATTCGCAAGCTGCAAGCCAGCGCCGAGGCCATCGTCGCCGGTGACCTGACCCATCGCCTGCCGCTGTCGAGCCGCCGCGATGAGCTGGACATGCTGGCGGCCATCGTCAACGCCATGCTCGACCGCATCGAACGGCTGATGAACGAGGTCAAGGGCGTTTGCGACAACATCGCCCATGACTTGCGCACGCCACTGACCCGCCTGCGGGCCCAGCTCTATCGCATCCAGCAGGAAGCGGCGGACGGCTCGCCCGAAGCCTTGCAGATGGATCAGGTGATCGCCGAGACGGATACGCTGATGGCGCGGTTTCGCGGGCTGTTGCGGATATCAGAGTTGGAGGACCAGCAGCGTCGCTCCGGCTTCATGCGCCTCGATCCCTTGCAGTTATTGCAAGAACTGCACGATTTCTACCTGCCCCTCGCCGAAGAGCGCGAGCTGGTTTTCAAGCTGGAGGTGCCCGCCAGCCTGCCCCTGCTCAACGGCGACCGGGCGTTGCTGTTCGAGGCCGTGTCGAACCTTCTGAGCAATTCCATCAAATTCACCCCACCGGGCGGTGAGGTGATCCTGCGCGGCGTCGACCAGGGCGACAGCACCCGCATCGAAGTGCTCGACTCCGGCCCTGGCATCCCGGAGGCAGAGCGCAAGGCGGTGTTTCGCCGTTTCTACCGCGCCGAGGGCAGCAGCCAGCACGGCGGATTCGGCCTTGGCCTGTCCATTGTCGCGGCGATTGTCAATTTGCACGGATTTACCCTGGAAGTGGATCGCAGCGAGTCGGGCGGCGCCCGGCTGGTGCTCGATTGCCGGGCGACATTGCTCTGA	MSLLNPAKGWRSSSSRLLALYSALFVIWSAILMGVMYYEVFGYLDSLAKHSLMQRQHLFARIHGDQLEDALMASLTLDERGVDAYGLFDPQLRHLSGPIQRIPADLPLDGKIHMLGGCVDSDDPGVPSDSCDAIATRTQDGRWLVLARDNGSLFAVTRIISHALFWGVSLTILPGIFGWHLLRRRPLRRIRKLQASAEAIVAGDLTHRLPLSSRRDELDMLAAIVNAMLDRIERLMNEVKGVCDNIAHDLRTPLTRLRAQLYRIQQEAADGSPEALQMDQVIAETDTLMARFRGLLRISELEDQQRRSGFMRLDPLQLLQELHDFYLPLAEERELVFKLEVPASLPLLNGDRALLFEAVSNLLSNSIKFTPPGGEVILRGVDQGDSTRIEVLDSGPGIPEAERKAVFRRFYRAEGSSQHGGFGLGLSIVAAIVNLHGFTLEVDRSESGGARLVLDCRATLL				NA	NA	NA	NA	NA
D1-36_02930	249			hypothetical protein	ATGACCCATCTTGCTCCGCTTCGCGCCCGCCTCGAAAAAAGTTTTGCTCCGCTGTCCTGCGCATGCAACCTCAATGGCGATGGCACGCTGACTATTCGTCTGTATCACCAGGAAAGCGGCGAGGTCGACCTGGTGGTGAGCGGCATGAGCGTCGAGAGCATCCGCTCTGAAGAGGGCCTGGAGAAGCTGATTGACGAGCTGCGCTACGAACTGCAGAACACGCCGTTGCACCGCAGTGATCCTGCCTGA	MTHLAPLRARLEKSFAPLSCACNLNGDGTLTIRLYHQESGEVDLVVSGMSVESIRSEEGLEKLIDELRYELQNTPLHRSDPA				NA	NA	NA	NA	NA
D1-36_02931	1485	malT_3		HTH-type transcriptional regulator MalT	ATGAATCAGGACGTCCCGAACACCGATACCAATCGCCGCCAATTGCTGCAAATCATCGCCGGATTGTCTGACGGCGTGATACTGGTCGAGGTCGACCAGACCATTGCCTGGGCCAATGAAGCCGCCCTGACCATGCACGGCGTCACGGAGCTCGGCGAGTTGGGCGCCAATGCCAAGCAATACGCCAAGCGTTTCCACCTGCGCTATCGCAATAACCATTCGTTGCCCGAAGACAATTACCCCATCGCCCGCGTCGCTCGTGGCGATGAATTCAGCGATGTGCTGGTGGAAGTCACGCCAGACGCCGACCCGGATCGGACCTGGGTTCACCGCATCCGCAGCATGGTCCTGAGTGACCGTGCCGGCGAGCCGGAATACCTGGTGCTGATTCTCAGCGATGCCACTGAATGGGCCAGCGCTGAGCAACGGTTCGAGAGAACCTTTGGTGCCAATCCGGCGCCTGCGGTGATCTGCCGCCTCAGCGACCTGCGCTATATCAAGGTCAACGCGGGCTTCCTGGAAATGACCGGCTACAGCCGCGAGCAGGTGATCGGCCGTTCGGTGTATGAGTTGGATGTGCTCGAAGCGGCCGAGAAGCGTGACCTGGCCATCGAGCGCCTGGGCCAGGGTGCGACCATTCCGCAGATGCAGGCCGAAATGCGTTTGCCGGACGGTAGCAGCAAGCAAGTGATCGTCGCCGGCCAGCCCCTGGACCTGCACGATGAAGACTGCATGCTGTTCTCCTTCATGGACATGGAGCCCCGGCGCAAGGCCGAGACGGCGCTGCGTCAAAGCGAGGAGCGCTTTGCCAAGTCATTCCGCCTGTCGCCGGTGCCAACGCTGATCTGTAGCGCTGAGCAGCAATTGCTGGAAATCAACGAAGCCTTCCTCCAGGCGACCGGTTATGCCAGCGAAGAGTTGTTGGGCAAGACCGTCGAGGAAATCGGTTTTCTCGAAAAGGACGCAGGCGCGACGCTTTTTGCGCGGTTGGAAAAGACCGCCACTGTGTCCGGCGTCGACATCAAGGTTCACAGAAAAGGGGGCGAACAGATCGACTGCGAAGTGGCGGCCGACACTGTGGCCATCCAGGACAAACCCTGCTATTTGCTGGTGCTGATGAACATCACCGAACGCAAGCGTTCGGAGTTGGAACTGGTGGCGGCCATCGAGGAAGTGATGAAGGACGCCTCGTGGTTCAGTCGGACCTTGATCGAAAAACTCGCCAATGTGAAAAGTATCAACGCGCAAAGCCCCACGACATCGTTCACCGAGCTGACGGCCCGGGAACGCGATGTGCTTGGCCTGATCTGCGAAGGCCTGGCGGACAAGGAAATCGCCGCGCGGCTCAAGCTCGCGCCAAACACCGTGCGCAATCACGTGGCTACGCTGTATTCCAAACTGGACGTGCATAGCCGCAGCGAAGCGATTGTCTGGGCGCGAGAGCGGGGGTTGTACGCAAATGAATGGCGGATGAAGGCACCATAG	MNQDVPNTDTNRRQLLQIIAGLSDGVILVEVDQTIAWANEAALTMHGVTELGELGANAKQYAKRFHLRYRNNHSLPEDNYPIARVARGDEFSDVLVEVTPDADPDRTWVHRIRSMVLSDRAGEPEYLVLILSDATEWASAEQRFERTFGANPAPAVICRLSDLRYIKVNAGFLEMTGYSREQVIGRSVYELDVLEAAEKRDLAIERLGQGATIPQMQAEMRLPDGSSKQVIVAGQPLDLHDEDCMLFSFMDMEPRRKAETALRQSEERFAKSFRLSPVPTLICSAEQQLLEINEAFLQATGYASEELLGKTVEEIGFLEKDAGATLFARLEKTATVSGVDIKVHRKGGEQIDCEVAADTVAIQDKPCYLLVLMNITERKRSELELVAAIEEVMKDASWFSRTLIEKLANVKSINAQSPTTSFTELTARERDVLGLICEGLADKEIAARLKLAPNTVRNHVATLYSKLDVHSRSEAIVWARERGLYANEWRMKAP				NA	NA	NA	NA	NA
D1-36_02932	1080	dmlA	COG0473	D-malate dehydrogenase [decarboxylating]	ATGAGCAAACCCTTTAGAATCGCCGCGATTGCCGGCGATGGCATTGGCAAGGAAGTATTGCCCGAAGGCCTGCGAGTATTGGAGCAGGCCGCCAGGCAATGGCAGTTGGACCTGGACATCCAAGTGTTCGATTGGGCTCACTGCGATTATTACCTGGAGCACGGGCAGATGATGCCCGTCGACTGGTTCGAGCAACTCAAGGGCTTCGACGCGATCTACTTCGGCGCCGTGGGATGGCCTGACAAGGTCCCGGACCACATTTCTCTGTGGGGCTCGTTGCTCAAGTTCCGCCGCGATTTCGACCAGTACGTGAACATCCGCCCGGTGCGGCTGTTTCCGGGCGTGCCCTGTCCGCTGGCCGGACGGGAGGCGGGGGATATCGATTTCGTGGTAATCCGCGAAAACACCGAGGGTGAATATTCCTCGGTCGGCGGCAAGATGTTCGAAGGCACCGAGCATGAATTCGTCCTGCAGGAATCGGTGTTCACTCGCCGAGGCGTCGACCGGATTCTCAAGTTCGCCTTCGACCTGGCCCAATCCCGACCGCGCAAGCGCCTGACGGCCGCGACCAAGTCCAACGGGATTTCCATCAGCATGCCGTACTGGGACGAACGCACGGCCTTGATGGCCGAGCAATACCCCGAGGTGACATGGGACAAACAGCACATCGACATCCTGTGCGCCCGTTTCGTCCTGCAACCAGACCGCTTCGATGTGGTGGTCGCCTCGAACCTGTTCGGCGACATCCTTTCCGACCTCGGCCCCGCCTGCGCCGGCACTATCGGCATCGCGCCGTCGGCGAACCTGGATCCGCAGCGGCGCTTTCCCTCGCTGTTCGAACCGGTGCACGGCACGGCGCCGGATATCTATGGGCAAAACAATGCCAACCCGATCGCGATGATCTGGTCGGCAGCGTTGATGCTGGATTTCCTTGGCAACGGCGATGAGCGTTATCGCGCGGCCCATGACGGGATCCTGCGGGCCATCGAGCAGGTGATCGCACATGGGCCGATAACCCCGGACCTGGGCGGACAAGCCTCGACCCAGGACGTCGGCAAGGCTATCGCCGCGGGGCTTTGA	MSKPFRIAAIAGDGIGKEVLPEGLRVLEQAARQWQLDLDIQVFDWAHCDYYLEHGQMMPVDWFEQLKGFDAIYFGAVGWPDKVPDHISLWGSLLKFRRDFDQYVNIRPVRLFPGVPCPLAGREAGDIDFVVIRENTEGEYSSVGGKMFEGTEHEFVLQESVFTRRGVDRILKFAFDLAQSRPRKRLTAATKSNGISISMPYWDERTALMAEQYPEVTWDKQHIDILCARFVLQPDRFDVVVASNLFGDILSDLGPACAGTIGIAPSANLDPQRRFPSLFEPVHGTAPDIYGQNNANPIAMIWSAALMLDFLGNGDERYRAAHDGILRAIEQVIAHGPITPDLGGQASTQDVGKAIAAGL	PGPT0001905_694	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_TARTRATE_UTILIZATION,PGPT0001905-ttuC|dmlA-K07246	NA	NA
D1-36_02933	1458	gabD_2	COG1012	Succinate-semialdehyde dehydrogenase [NADP(+)] GabD	ATGCTCACTCAACTTCTGAAAGACCCCAGCCTGCTGGCGGAACTGGCTTATATCGACGGGCAGTGGGTGGGGGCCGACGATGGCGCCACCCTCGACGTCATCAACCCGGCCACCGGCCAAACGCTCGCCCGCGTCCCCGCGATGCAAGGCAGCGAAACCCGACGCGCCATCGAGGCAGCGGACGGGGCCTGGGCGGCATGGCGCGCGCGTCCGGCGGCGGAGCGGGCGGCGATGTTGGAGCGCTGGTATCAAGCCATGATGGACAACCTCGAAGACCTCGCGCTGATCATGACCCATGAACAGGGCAAGCCACTGAATGAAGCCAGGGGCGAGATTCGCTACGGCGCCGGCTTCGTCAAATGGTTCGCCGAAGAGGCCCGTCGGGTCTATGGCGAGACCATTCCGGCCCCCAGCGGCGACCGTCGCCTGCTCACCCTGAAGCAACCGGTCGGCGTCTGCGCCGCCATCACACCGTGGAACTTCCCCAACGCGATGATCACCCGCAAGTGCGCTCCGGCGCTGGCGGCGGGGTGCCCGGTGATCGTCAAGCCGTCGGACCTGACACCGTTGTCCGCCCTGGCGCTCGCCGTGCTGGCCGAGCGGGTCGGGATTCCGGCCGGGGTCTTCAATGTGGTCACGGGCATGCCCGCTGGCATCGGCGAAGAGCTGACCGGCAACCCGACGGTGCGCAAGATTTCCTTCACCGGCTCGACGGCGGTCGGCCGCCTGTTGATGCGCCAGAGCGCCGAGCACATCAAGCGCCTGAGCCTGGAACTCGGTGGCAATGCGCCGTTCATCGTGTTCGACGATGCTGATTTGGAACAGGCCGTGGCCGGCATCATGCAAAGCAAGTTTCGCAACGCCGGCCAGACCTGCGTCTGCGCCAACCGCATCCTGGTGCAGGAAGGCATCTACGAACGTTTTGCCGAGCGGCTGGTGCAGGAAGTGCGCAAGCTGAAGATCGGCGATGGGCTCGAAGCCGACGTGATGATCGGCCCATTGATCAATCCTGCTGCGGTGAGCAAGGTCGCCCGGCATATCGACGATGCGCTGAGCCAGGGCGCGCGCCTCCTGTGTGGCGGCATTCCTCAAGGCGACAGCCAGTTCGTCGAGCCGACGGTGCTGGGCGACGCCCACGCCGGGATGTTGCTTGCCAATGAAGAAACCTTCGGCCCGGTTGCACCGCTGATGCGCTTTTCGACGGAGGACGAGGCACTGGCCTTGGCCAATGCCACGCCTTATGGCCTGGGTGCCTATTTCTTTACCCAGGACCTGCGGCGCTCGTGGCATTTCGGCGAGGCGTTGGAGTTCGGGATGATCGGGCTCAACACCGGGATCATCTCCATGGAGGTGGCGCCTTTCGGTGGCATCAAGCAGTCCGGCCTGGGGCGCGAAGGCAGCAAGTACGGCCTGGATGAATACCTGGAAGTGAAAGCTCTCCATATCGGTGGGCTGTGA	MLTQLLKDPSLLAELAYIDGQWVGADDGATLDVINPATGQTLARVPAMQGSETRRAIEAADGAWAAWRARPAAERAAMLERWYQAMMDNLEDLALIMTHEQGKPLNEARGEIRYGAGFVKWFAEEARRVYGETIPAPSGDRRLLTLKQPVGVCAAITPWNFPNAMITRKCAPALAAGCPVIVKPSDLTPLSALALAVLAERVGIPAGVFNVVTGMPAGIGEELTGNPTVRKISFTGSTAVGRLLMRQSAEHIKRLSLELGGNAPFIVFDDADLEQAVAGIMQSKFRNAGQTCVCANRILVQEGIYERFAERLVQEVRKLKIGDGLEADVMIGPLINPAAVSKVARHIDDALSQGARLLCGGIPQGDSQFVEPTVLGDAHAGMLLANEETFGPVAPLMRFSTEDEALALANATPYGLGAYFFTQDLRRSWHFGEALEFGMIGLNTGIISMEVAPFGGIKQSGLGREGSKYGLDEYLEVKALHIGGL	PGPT0001580_2687	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_TRIGONELLINE_USAGE	PLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135	NA	NA
D1-36_02934	1158	argE_2	COG0624	Acetylornithine deacetylase	ATGAAACCTCGCGTCCTGGCTATTTTCGAGCGCCTGTTGGCGTTCGAAACGGTTTCCTCGGAATCGAACATGGCGCTGATCGAATACGTCCGCGATGTGTTGGCGGGCAAAGGCATCGAATCGTTGATCGTCAAGGACGAGAGCGGCAAGAAAGCCAACCTGTTCGCCAGCACCGGCCCCCGTGAGGTGCCAGGGGTCCTGCTATCCGGCCATACCGACGTCGTGCCGGCGGCGGGGCAGGCCTGGACCGTTCCGGCATTCCAGGCGACGGTGCGCGATGGCCGGGTCTACGGGCGCGGTAGCTGTGACATGAAAGGCTTCATCGCCCTGGCGATCGACGCCATGCTCGACGCGGCCGACCAGCCGTTGAGCCGGCCGCTGCAACTGGCGCTTTCCCATGATGAAGAAATCGGCTGCGTGGGCGTTCGCCGCCTGCTCGACGTGCTGCACCTGGCCCCGGTGCGACCGTTCCTGTGCGTGATCGGTGAGCCGACCAACATGCAATTCGTGTTGGGCCACAAGGGCAAGGGCTCCTACCGCACCTACTGCCGAGGCCTGGAAGCGCACTCATCCCTGGCCCCGCGCTCGGTCAACGCCATCCACGTGGCGTGCGACTTCATCGCGGCGTTGCGCCAGAGTCAACGGCAGTTGCAGGAGCAGGGCGCCCAGGACAGCGACTATGACGTGCCCTACAGCACGGTGCATGTCGGGCAGATCGTCGGCGGCAAGGCACTCAATATCGTGCCGAACCTGTGTACGCTGGACTTCGAAGTGCGCAACCTGCCGGCCGACGATCTGGATCGGTTTCTGGAGCAACTGCACGAGCACGCCGAAGTGATCGTCCGCGAGGCGAAAAAGCTCTCGAACGTAGCGGACATCCAGATCGAGACGCTGAATGTCTATCCGGGGCTTGATACGCATCCGAGCGTCGAAGCGGTGCGGTTTCTCAAGCATTTCGCTGAGCCGGGTACCGGGACTGCGAAGGTCTCTTTCGGCACCGAGGGTGGGTTGTTCAAGCAGCGGCTGGACGTGCCGGTGGTGGTGTGTGGGCCGGGCTCCATCGAACAGGCGCATAAGCCGGATGAGTTTATCGAAGTGGCTCAGATGGAGGCGGGGGAGCGGTTCCTGGCTGGGTTGCTTGGGGCTTTGAAGGTTTAA	MKPRVLAIFERLLAFETVSSESNMALIEYVRDVLAGKGIESLIVKDESGKKANLFASTGPREVPGVLLSGHTDVVPAAGQAWTVPAFQATVRDGRVYGRGSCDMKGFIALAIDAMLDAADQPLSRPLQLALSHDEEIGCVGVRRLLDVLHLAPVRPFLCVIGEPTNMQFVLGHKGKGSYRTYCRGLEAHSSLAPRSVNAIHVACDFIAALRQSQRQLQEQGAQDSDYDVPYSTVHVGQIVGGKALNIVPNLCTLDFEVRNLPADDLDRFLEQLHEHAEVIVREAKKLSNVADIQIETLNVYPGLDTHPSVEAVRFLKHFAEPGTGTAKVSFGTEGGLFKQRLDVPVVVCGPGSIEQAHKPDEFIEVAQMEAGERFLAGLLGALKV	PGPT0014254_1854	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014254-argE-K01438	NA	NA
D1-36_02935	1152	abo_1		4-methylaminobutanoate oxidase (formaldehyde-forming)	ATGACCGTTGAAAAGGCCGATGTATTGATCGTCGGTGGTGGTTTCATGGGCGCGGCGTCGGCGTTTTTCCTGCGCCAGCGGGGCCGGTCGGTGATCCTGCTGGAGCGCGACCAGATCGGCCAATATGCCAGCGGCGTCAACTTTGGCAACGTGCGACGCCAGGGCCGTTTTCTCGGGCAGCTGGAATTGGCGAACCGTTCCTGGGCGCTGTGGAAACGCCTGCCGGAACTGATCGGCGAGGACCTGGAATTCATTCCCAGCGGACACATGCGCGTGTGTTACCGGGAAGAGGAAATCGAGGAGCTGCAAGCCTACGCCGATGCCCCCGAAGCCCGGCAACTGGAACTGCAGATTTATCGGGGCAGTGAACTGCACGGGCGCTTTCCGTTCCTGGGCAAGGACGTCAAGGGCGGCTCGTACGCCCCCCATGACGGTCACGCCAACCCGCGTCTCGCAGCACCGGCATTTGCCCGGGCGGCGCGGCGCCTCGGTGCCCGCATCGAAGAACGCACGGAAGTCGCCGAGGTGTACAAGGCCAATGGCGAATTCAGCGTCACCACGACCGATGGCCGCCAGTTCCGCGCCTCCCAATTGCTGATCACAGCCGGTGCCTGGGGGCAAAAACTTTCCGGGCAGTTCGGTGAGCCGGTGCCGCTGGCACCCAACGGTCCGCAAATGGCCGTCACCGAGCCGGTGCCCTATGCCTTGCCGACGGTGATCGGGGTGTACACGAAGATTCCCGAAGAAGTGATCTACTTCCGGCAGATTCCACGGGGCAACATCATCATCGGCGGTGGCTACCGTTGCGAGCCGGACATGCTCAACCGCCGCGCCCATGTCGAACCGCGCAGCCTGCTCAACCAACTGGACCAGATGCGGCGCCTGGTGCCGGGCATTGGCAACCTCAACATCATCCGCGTGTGGAGCGGTATCGAAGGCTACCTGCCCGATAACCTGCCGGTGATGGGCGCCAGCGGCAACGTCGACGGCCTGTACTACGCCTTCGGCTTCAGCGGCCATGGTTTCCAACTCGGTCCGGGCGTCGGCGACGTCATGGCCGAACTGATCAGCACCGGCACCACCAGCACGTCGATCGAACCGTTCTCCATCCGCCGGTTCACCCCGTCCGAACAACGGAGCAAAGCCTCATGA	MTVEKADVLIVGGGFMGAASAFFLRQRGRSVILLERDQIGQYASGVNFGNVRRQGRFLGQLELANRSWALWKRLPELIGEDLEFIPSGHMRVCYREEEIEELQAYADAPEARQLELQIYRGSELHGRFPFLGKDVKGGSYAPHDGHANPRLAAPAFARAARRLGARIEERTEVAEVYKANGEFSVTTTDGRQFRASQLLITAGAWGQKLSGQFGEPVPLAPNGPQMAVTEPVPYALPTVIGVYTKIPEEVIYFRQIPRGNIIIGGGYRCEPDMLNRRAHVEPRSLLNQLDQMRRLVPGIGNLNIIRVWSGIEGYLPDNLPVMGASGNVDGLYYAFGFSGHGFQLGPGVGDVMAELISTGTTSTSIEPFSIRRFTPSEQRSKAS	PGPT0013510_1405	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013510-soxB_-K00303	NA	NA
D1-36_02936	1377	hcnB_4		Hydrogen cyanide synthase subunit HcnB	ATGGCCACTGCGCGGATAGTCATCGTCGGCGCCGGACCAGCCGGCGTACGCTGTGCCCAGACGTTGGTCGCGGCGGGGTTCAGGCCGATCCTGATCGACGAAAACCGTCGCGACGGCGGGCAGATCTACCGGCGCCAGCCCGAAGGGTTCATCCGGGACTACGGGACGCTGTACGGCACCGAAGCGGCCAAGGCCCGTGATTTGCACGAAAGCTTCGATCGCCTGCGCCCCAACCTCGACTATCGTCCGGATACGCTGGCGTGGAACCTGACGCCGGGTCAATTGAGCTGCGTCAGCCAGGGTCGCCATACGACAGTGGATTTTGACGCACTGATCCTCTGTACCGGTGCCACCGACCGCTTGATGCCGGTCGAGGGCTGGCAGTTGGGCGGCACCTATAGCCTCGGTGGGGCGCAGATTGCCTTGAAGGCTCAGGCGGTGTCCATTGGGCACCGGGTGGTGTTCATGGGCAGCGGGCCGTTGCTGTACCTGGTGGCCAGCCAATACGTGAAGGCTGGCGCCCAGGTCGCGGCGGTGCTGGACACCTCGCCATTGGTCAAGCGCATCCTGGCCTTGCCCAAGCTCATGGCGCGTCCTGGCCTGCTGTTCACGGGCATGAAACTGCTGGCGCAGCTGTACCGGGCGAAGGTTGCGGTACACCTGGGTATTTCGCCGCTGCAAGTGCTCGGCGAAGCGACCGCCGGAGTGAGCGGCGTTCGGGTACGTCGCGCAGACGGCCAGGAACTGACGGTGGATTGCGACGCGGTGGCGTTGGGGTATCACCTGCGTCCCGAAACCCAGCTGGCCGACCTGGCGGGCTGCCGCCTGCGCTTCGACGAGGCTTCCGGGCAATGGCTGCTGGACACCGACGAAGAAGGCCGGACGTCGGTCAGTGGCATCTATGCGGCGGGGGACGGCTCGCGAATCCGGGGTGCCGACGGCGCCGAGCATGCCGGGCGGCTGGTGGCCATGGCGCTACTGAATGACTTGCAGCAACCGGTGGATGCGGCCCGATTGGCCGAACAGCGCGGGGCGTTGAAGGTGATGGACGAGTTCCGCCTCGGCCTCGCCCAGGCGTTTCCCTGGCCGGCCGCGCAAGCCAAGGCCTTGCCGGACGAAGCCATCGTCTGCCGCTGCGAAATGATCAGCGCCGGTGAGCTGCGGCGTACCGTCAGCGAGAAGGGGGCCTGTGAAGTCAATCGGGCCAAGGCTTTCAGCCGGGTCGGCATGGGTCGCTGCCAGGGTCGCTATTGCTCCCAGGCCGGGGCCGAGGTGATTGCCGCGGCGGCGGGCGTGCCGGTGCAAGAAGTCGGACGCCAGCGCGGACAGGCACCGGTCAAACCGCTTTCCATGCTGACTCAGGAGGTCACGCCATGA	MATARIVIVGAGPAGVRCAQTLVAAGFRPILIDENRRDGGQIYRRQPEGFIRDYGTLYGTEAAKARDLHESFDRLRPNLDYRPDTLAWNLTPGQLSCVSQGRHTTVDFDALILCTGATDRLMPVEGWQLGGTYSLGGAQIALKAQAVSIGHRVVFMGSGPLLYLVASQYVKAGAQVAAVLDTSPLVKRILALPKLMARPGLLFTGMKLLAQLYRAKVAVHLGISPLQVLGEATAGVSGVRVRRADGQELTVDCDAVALGYHLRPETQLADLAGCRLRFDEASGQWLLDTDEEGRTSVSGIYAAGDGSRIRGADGAEHAGRLVAMALLNDLQQPVDAARLAEQRGALKVMDEFRLGLAQAFPWPAAQAKALPDEAIVCRCEMISAGELRRTVSEKGACEVNRAKAFSRVGMGRCQGRYCSQAGAEVIAAAAGVPVQEVGRQRGQAPVKPLSMLTQEVTP				NA	NA	NA	NA	NA
D1-36_02937	309			hypothetical protein	ATGAACGCGCGTTTCGTGAGGTTGGCCGAACAGGGTCGACCCGTCGTCAACCTGAGGGTCGATGGCGTGCCCATCACGGCGTTGCAGGGCGATACGTTGATGGTCGCCTTGCTGACCCACGGCCCAGCGTTGCGCCAGTCGGAATTCGATCCCGGCAGCCGCGCCGGCTTTTGCCTGATGGGCGCCTGCCAGGATTGCTGGGTCTGGACCCGCAGCGGCGAACGCTTGCGCGCCTGCTCCAACGAAGTCCGCGAAGGGCTGGATATCATCACCACGCAACCGGAGGCGATATGGCCACTGCGCGGATAG	MNARFVRLAEQGRPVVNLRVDGVPITALQGDTLMVALLTHGPALRQSEFDPGSRAGFCLMGACQDCWVWTRSGERLRACSNEVREGLDIITTQPEAIWPLRG	PGPT0020400_84	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0020400-lhpD-K22550	NA	NA
D1-36_02938	1845	gsiA	COG1123	Glutathione import ATP-binding protein GsiA	ATGAGCGAATTGATTCGAGTCGAAAACCTGCGGGTAGTCGCCTGTGGCGAACGCGGCGAGGTGGAGATCGTCAAGGGCGTCAGTTTTTCTCTGGCAAAAGGCGAAGTGCTCGCATTGATCGGCGAGTCCGGCTCCGGCAAGACCACCATTGCCCTGGCGCTTCTGGGTTATGCCCGACGCGGCTGTCGCCTGGCCGGTGGCGTGGTGCGCATCGGCGAGCACGACATGCTGGCCTTGAGCGAAGGCGAGCTGCAAGGCTTGCGCGGCAATCGCGTCTCGTACATTGCCCAAAGCGCCGCGGCGGCATTCAACCCAGCGAAAAAGCTCATCGACCAGGTGGTCGAGGGCGCGCTGATCCATGGCCTGGGCAGCCGGGCGGTGCTCGAAGCCAAGGCCATCGAACTTTTCCGTGACCTGGCGTTGCCGAACCCCGAGCGCATCGGTCAGCGGTATCCCCATCAAGTCTCCGGCGGGCAATTGCAACGGGTCATGGCGGCAATGGCGCTGATCAGCGATCCGCTGCTGGTGGTGCTCGATGAGCCCACCACCGCCCTGGATGTGACGACCCAGATCGATGTGCTGCGCGCTTTCAAACGCGTGGTGCGCGAGCGGGGCGCGACGGCGGTGTACGTGTCCCATGACTTGGCTGTCGTCGCGCAGATGGCCGACCAGATCGTAGTACTCAACGGCGGCGAGATATTCGAGCAGAGCGCGACCGCGCCGTTGCTCAAGGGGCCCGCCCATGCCTATACCCGAAGCCTGCTGACGGCGGCGCGTCCGGACACAACGATCCGTCCGCCCTGCGGCCTCGCGGAGGACGCTCCGCTGTTGACCATCCGGGGGCTGACCGCCGGCTACGGCAACAAGAACCCGCAAGGCATGCCGGCGATTCGCGTGCTGGAGGACATCGACCTCACCGTGCGCCGGGGCCAGGCCATCGGGGTGATCGGTGAGTCCGGTTCAGGTAAATCGACCTTGGCCCGGGTGGTGGCGGGGTTGCTGCCTCCGGCCCTTGGCGGGTTGACCTTCGACGGCCAGCCATTGGGCGGTAGCTTGCAGGAACGCACTGCTGACCAGTTCCGCCGCATCCAGATGGTTTTCCAGAACGCCGACACCGCCCTTAACCCCATGCACAGCATCAGCGCCATCCTGAGCCGGCCGTTGAAGATGTATTTCGGCCTCAAGGGCGCGGCCCTGCGCGAGCGCATCGGCGAGTTGCTCGACCTGGTCCGTTTGCCCCGGGACTTGGCCGAGCGACGTCCGAGCGAGCTGTCCGGCGGTCAGAAACAGCGGGTCAACCTGGCCCGGGCGCTGGCGGCCAAGCCGGACCTGATCCTCTGCGATGAAGTGACGTCGGCCCTCGATACCGTGGTCGGCGCGGCGATCCTTGAACTGCTGCGCGACCTGCGCCAACAACTGGGCGTGTCGTACCTGTTCATCAGCCACGACATCTCCACCGTGCGAGCGCTGTGCGACGACATCGTGGTGATGTACAGCGGCCACAAGGTCCAGTCGGGGTCTCGGCAATCGTTCGCCCAGGCACCGTTTCATCCCTACACGGACCTGCTGATCCATTCGGTGCCAGAGCTGCGCCAGGGCTGGCTGGAAACCTGCGGCGCGACGACTTGCGGTACGTTGCCGGCGTTGGGGCCAACGGCCAATGAACCGGATCTGTGCACATTCCTCGGTCGCTGCCCGGTACGGGTCGATGGGGTGTGCAACCATATCGCGCCACCCCGGCGCATCATCGATGGCGGCAGCGAGGTGCTCTGTCACCACGACAGCGGCGAACTGCTGAAAAGCCAGCGGGATTCAAACAGCATGATCGTGGGAGCCTACGCATGA	MSELIRVENLRVVACGERGEVEIVKGVSFSLAKGEVLALIGESGSGKTTIALALLGYARRGCRLAGGVVRIGEHDMLALSEGELQGLRGNRVSYIAQSAAAAFNPAKKLIDQVVEGALIHGLGSRAVLEAKAIELFRDLALPNPERIGQRYPHQVSGGQLQRVMAAMALISDPLLVVLDEPTTALDVTTQIDVLRAFKRVVRERGATAVYVSHDLAVVAQMADQIVVLNGGEIFEQSATAPLLKGPAHAYTRSLLTAARPDTTIRPPCGLAEDAPLLTIRGLTAGYGNKNPQGMPAIRVLEDIDLTVRRGQAIGVIGESGSGKSTLARVVAGLLPPALGGLTFDGQPLGGSLQERTADQFRRIQMVFQNADTALNPMHSISAILSRPLKMYFGLKGAALRERIGELLDLVRLPRDLAERRPSELSGGQKQRVNLARALAAKPDLILCDEVTSALDTVVGAAILELLRDLRQQLGVSYLFISHDISTVRALCDDIVVMYSGHKVQSGSRQSFAQAPFHPYTDLLIHSVPELRQGWLETCGATTCGTLPALGPTANEPDLCTFLGRCPVRVDGVCNHIAPPRRIIDGGSEVLCHHDSGELLKSQRDSNSMIVGAYA	PGPT0004435_1543	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
D1-36_02939	876	ddpC_1	COG1173	putative D,D-dipeptide transport system permease protein DdpC	ATGAACAATCTCATTGCGAAGTCCCCGCCTGCTGCGCCCGAACTGGCCTATGGCAAGGTTTCCAACGGCGCCTCCTGGCTCGGCCTGCTCGGCGCCGCCATGTGCGTCATCTGGTTGCTGGTGGCCATTTTCGGACCCTGGCTGGCGCCGCACCCGGTGGGCGAAGTGGTGTCCGACAACGTCTTCGACAGCTTCAGCGCGGCGTACCCGCTGGGCACCGACTACCTGGGCCGCGACATGCTCAGCCGGATCATGGTGGGCGCAAGGTTCACCGTCGGCCTGGCCTTGGTCGCGGCGGTCCTGGCGAGCGGCTTGGGAACCACTTGCGCGCTGTTGTCAGTGGTCTCGCCGAAGTGGCTGGACGAGCTGATCAGCCGCCTGATGGACGCCTTCATTTCGATCCCGAGCAAGATGCTTGCGTTGATCATGGTTTCGGCCTTCGGCTCCTCGGTGACCTTGTTGATCTGCACGGCGGTGCTGAGCTTCACGCCGGGCGCATTCCGGATCGCCCGCAGCATGGCCGTGAATATCGAGGCTTTGGAGTACGTGCAGGTGGCCCGTACCCGTGGCGAGCGCAGGTTGTACATCGCTTGTGTGGAGATCCTGCCGAACATGCTCAACCCGGTGCTGGCCGACTTGGGGTTGCGCTTTGGCTTTATCGTGCTGCTGCTCAGTGGCATGAGCTTTCTCGGCCTGGGCGTGCAGCCGCCGGACGCAGACCTGGGCTCCCTGGTGCGCGAGAACATCGGCGGTCTCAACCAGGGCGCGCCAGCCATCGTGATTCCGGCCCTGGCCATTGGCACCCTGACGATCGGCGTGAATCTGTTTATCGATCGCCTGTCTTCGCGGCGCAATCGACGCACGGGAGGTCATTGA	MNNLIAKSPPAAPELAYGKVSNGASWLGLLGAAMCVIWLLVAIFGPWLAPHPVGEVVSDNVFDSFSAAYPLGTDYLGRDMLSRIMVGARFTVGLALVAAVLASGLGTTCALLSVVSPKWLDELISRLMDAFISIPSKMLALIMVSAFGSSVTLLICTAVLSFTPGAFRIARSMAVNIEALEYVQVARTRGERRLYIACVEILPNMLNPVLADLGLRFGFIVLLLSGMSFLGLGVQPPDADLGSLVRENIGGLNQGAPAIVIPALAIGTLTIGVNLFIDRLSSRRNRRTGGH	PGPT0004450_9820	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
D1-36_02940	957	gsiC	COG0601	Glutathione transport system permease protein GsiC	ATGAATAGCAACACATTGTGGTTGATCGGCCGGCGCCTCGGCGCCGCGATCGTGACCCTGCTGATCGTCTCGATGGTGGTGTTCGCCATCACGGCGGTATTGCCGGGAGACGCGGCGCAACAGTCCCTTGGACAGTTCGCGACGCCTGAACAAGTGGCGGCCCTGCGGGTGAAGATGGGCCTCGACCAGCCAGGCGCATTGCGCTACCTGCACTGGCTGACCAGCCTGCTCAGCGGCGACCTCGGCGTATCGATTTCCAATGCCGTGCCGGTCAGCGAGCTGATGGCCGGACGAGTGCCCAACACCTTGATGCTCGCGGCCGCCACGGCGCTGGTATCGGTGCCGGTGGCGCTGATCCTCGGAATCGGCTCGGCGATGGGCCGAGGGGGGCGCATCGACAGCGTCCTGAGTTTCTTCACGCTGACGATGGTGGCGGTGCCGGAGTTCCTGGTGGCGACGCTGGCCGTGTTGATCTTCGCGGTCAACCTGGGCTGGCTGTCGGCGCTGTCCTACTCCAGCGAAATCACCTCGCCGCTGCAATTCATGCGCACCTATGCCTTGCCGGTCATGACGCTGTGCTGCGTGATCGTTGCGCAGATGGCGCGCATGACCCGGGCGGCGGTGATCGATCAGCTCGACAGCCCCTACGTTGAGATGGCTCGCCTCAAAGGCGTGAGTCCGGTGCGGGTGGTCTTGCGCCACGCCTTGCCCAATGCCATCGGGCCGATCGCCAATGCCATCGCCTTGAGCTTGTCCTACCTGCTGGGTGGCGTGGTGATCGTCGAGACGATCTTCAACTATCCCGGCATCGCCAGCCTCATGGTCGATGCCGTGACGAACCGCGACATGGCATTGGTCCAGGCCTGCACGATGCTGTTTTGCACGGCGTACCTGATGCTGGTGTTGATTGCCGACCTGTGCGCAATCCTGTCCAACCCGAGGCTGAGAAACCAATGA	MNSNTLWLIGRRLGAAIVTLLIVSMVVFAITAVLPGDAAQQSLGQFATPEQVAALRVKMGLDQPGALRYLHWLTSLLSGDLGVSISNAVPVSELMAGRVPNTLMLAAATALVSVPVALILGIGSAMGRGGRIDSVLSFFTLTMVAVPEFLVATLAVLIFAVNLGWLSALSYSSEITSPLQFMRTYALPVMTLCCVIVAQMARMTRAAVIDQLDSPYVEMARLKGVSPVRVVLRHALPNAIGPIANAIALSLSYLLGGVVIVETIFNYPGIASLMVDAVTNRDMALVQACTMLFCTAYLMLVLIADLCAILSNPRLRNQ	PGPT0004445_9224	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
D1-36_02941	1644	sgrR		HTH-type transcriptional regulator SgrR	ATGACTGACAATAAGAACAGCATCGACGGCCAGTTGATTACGGGCGAAGAAAGTCTGCGGGTTTTCGAAGGGCTCAATCGCGGCATGTCGCGCCGCCACGCCTTGCAAATGCTCGGGCTGGCCGGGGTCGCCGCGGCCGGGGCCGGCAGCCTGTTCGGCGCCGCCGGCAAGTTGTGGGCCGATGACACCACGAGCCCAGGCAAGGGCAAGCCCGGCGGACGTATCCGAGTGGCGGGCATCACCAGTTCCACCGCCGATACCCTGGATCCGGCCAAGGGCTCATCGTCCACCGACTACGTGCGCCACTACATGTTCTACAACGGCCTGACCCGTTTCGACAGCCACATGGTGCCGCAACTGGAGCTGGCCGAACGCATCGACACCACCGATGCGACGCTGTGGGTGATCACCCTGCGCAAGGAAGTCACCTTCCACAACGGTAAAGGGCTGACAGCGGCGGACGTGGTGTTTTCCCTGCTGCGGCACAAGGATCCGGTCACCGGTTCGAAGGTCCTGCCGCTGGCCTCGCAATTCGAGGAGGTCAAGGCCAATGGTACCCACGAGGTGCAGATCCGCTTGAGCGGCCCGAATGCCGAACTGCCGTCGATTCTGGCCGTGTCCCACATGCTGATCGTGCCCGAGGGCACCACGGATTTCAGCCAGGGGGTCGGCACCGGTCCGTTCAAGGTCAAGGAGTTCAAGCCGGGAGTACGCTCGATCGGCGCCCGCAACACCAATTATTGGAAGCCCGGCTTGCCCTACCTGGACGAGATCGAGTTCATTGGCATCGGCGACGAGCCGTCGCGGGTCAACGCGCTGCTGTCGGGCGATGTGCAGATCATCAACGAGGTCAACCCGCGCTCGACGACCCGCATCAAGGACAGCGCAGGCCACCGTGTCGTCGATTCGCCCTCGGGCAACTACACGGACCTGATCATTCGTCAGGACCAGATGCCAGGCCAGAGCCCCGAATTCACCCAGGCGATGAAACTGTTGCTGGACCGCGAGCAGGTCAAGTCGGCGATTTTCCGTGGCTTTGCCAGGGTCGGCAACGATCATCCGATTGCGCCGGGCGCGCGCTTCTTCAACGCCGACCTGCCGCAACGCACCTATGACCCGGAAAAGGCGCGTTTCCTGCTGAAGAAAGCCGGCATGGAAAACATCAGCATGCCGGTGATGTGCTCGCCGGCCGCCACCGGTTCGGTGGACGTCGCCGTGCTCTTGCAGCAGTCGGCGAAGGAGGCCGGGCTCAAACTCAACGTCAATCGGCTGCCGAGCGACGGCTACTGGTCCAACCACTGGGCCAAGCACCCGCTGAGCTTCGGCAACGTCAACCCACGGCCGAACGCCGACATGCTGTTCTCGCAGTTTTTCCAGTCCTCGGCGCCGTGGAACGAGTCCGGCTGGAAAAACCCGCAATTCGACCAACTGCTGGTGCAGGCCCGTGGCGAAACCGACGAGGCCAAGCGCGGCAAGATGTACGCCGACATGCAGACGCTGGTGCATGAGCACAGTGGCATCGGCATCCCGGTGTTCATCAGCAACATCGATGGCGTCGACCAACGCGTCAAGGGCTACGGCACCAATCCGCTGGGTGGCTTCATGGGCTACATGTTCTCCGAGCAAGTCTGGCTGGACGCTTGA	MTDNKNSIDGQLITGEESLRVFEGLNRGMSRRHALQMLGLAGVAAAGAGSLFGAAGKLWADDTTSPGKGKPGGRIRVAGITSSTADTLDPAKGSSSTDYVRHYMFYNGLTRFDSHMVPQLELAERIDTTDATLWVITLRKEVTFHNGKGLTAADVVFSLLRHKDPVTGSKVLPLASQFEEVKANGTHEVQIRLSGPNAELPSILAVSHMLIVPEGTTDFSQGVGTGPFKVKEFKPGVRSIGARNTNYWKPGLPYLDEIEFIGIGDEPSRVNALLSGDVQIINEVNPRSTTRIKDSAGHRVVDSPSGNYTDLIIRQDQMPGQSPEFTQAMKLLLDREQVKSAIFRGFARVGNDHPIAPGARFFNADLPQRTYDPEKARFLLKKAGMENISMPVMCSPAATGSVDVAVLLQQSAKEAGLKLNVNRLPSDGYWSNHWAKHPLSFGNVNPRPNADMLFSQFFQSSAPWNESGWKNPQFDQLLVQARGETDEAKRGKMYADMQTLVHEHSGIGIPVFISNIDGVDQRVKGYGTNPLGGFMGYMFSEQVWLDA	PGPT0004430_6568	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
D1-36_02942	1275	puuB_3		Gamma-glutamylputrescine oxidoreductase	ATGGGCAGTGAGTCTTATTGGCTCGATACCGCACCGGCCTTCACCGGTGCCCAGGTCGGCGGGTTGCCCGACCAGGTCGACGTCGCCATCGTCGGTGGCGGTTTCACCGGTCTGGCGGCGGCCCGGGCCCTGGCCTTGAAGGGCGCCCGGGTGGCGGTGCTGGAGGCGGGAAGGGTGAACGGGCAGGCGTCCGGGCGCAATGGCGGGCAGTGCAACACCGGCGTCGCCCAGGACTATGCGGCATTGTCAGCAAGCCTGGGTGCCGATAAGGCCCGCGCTTATTACCTGGCCTACGAAAGCGCCGTGCAGAGCGTCGTTTCGTTGGTCGAGCAGGAAGGGATTGCCTGCGACCTGACGCGTCACGGCAAGCTCAAGCTGGCCGCCAAGCCGATGCACTACGAAGGGTTGGCGCGCACCTGTGAACTGATCCGCAAGGAGGTCGATGCCGAGGTTCAATTGTTGTCTGCGCAGCAGGTTCGCGCCGAGGTCAATTCGGACCAGTTCCACGGCGGCCTGCTGCAGCGCAATGGCGTACAGATGCATGTCGGGCGCTTTGGTGTCGGCCTGGCCGAGGCGGCCGCCCGTCATGGCGCGTTGATTTTCCAGGGCGTCGAGGTGAAGGACTGGAAGACCCGCGGCAGCGGCTATCAGGTCAACACGAACAAAGGCGTGCTGCATGCCTCGCAAATTCTGCTGGCCACCGGTGCGTGCCAGCAAGGCGGGCTGGGTTGGTATCGGCGACGCATCGTCCCGGTGGGCAGTTTCGTGGTCGCCACCGAGGTACTGCCACAGGCGCTGATCGACAGTTTGCTGCCGGCCCGTCGCTCCTACGTCACCAGTCGCATGATCGGCAATTACTTTCGCCTGACCCCGGACAACCGCTTGCTGTTTGGCGGCCGTGCGCGGTTTGCCATGTCCGACAGTGTGTCCGATGCCAAGAGCGGCAAGGTGCTGCAAGCGGCGATGGTGCAGATGTTCCCGCAGTTGGCCGACGTGAAAATCGACTATTGCTGGGGCGGACTGGTGGACATGACCTCTGACCGCTTGCCCCGCGCCGGCCAGCATGGCGGCATCTACCACTCCATGGGCTACAGCGGCCACGGCGTGCAGATGTCGGTGCACATGGGCCAGGTCATGGCCGACGTCATGGCCGGCAAGGTCGAGGCCAACCCTTGGCGCGAGCTCGACTGGCCGGCGATTCCCGGGCACTTCGGCAAGCCCTGGTTCCTGCCGTTTGTAGGCGCGTATTACCGCCTGCAGGACTACCTACACTGA	MGSESYWLDTAPAFTGAQVGGLPDQVDVAIVGGGFTGLAAARALALKGARVAVLEAGRVNGQASGRNGGQCNTGVAQDYAALSASLGADKARAYYLAYESAVQSVVSLVEQEGIACDLTRHGKLKLAAKPMHYEGLARTCELIRKEVDAEVQLLSAQQVRAEVNSDQFHGGLLQRNGVQMHVGRFGVGLAEAAARHGALIFQGVEVKDWKTRGSGYQVNTNKGVLHASQILLATGACQQGGLGWYRRRIVPVGSFVVATEVLPQALIDSLLPARRSYVTSRMIGNYFRLTPDNRLLFGGRARFAMSDSVSDAKSGKVLQAAMVQMFPQLADVKIDYCWGGLVDMTSDRLPRAGQHGGIYHSMGYSGHGVQMSVHMGQVMADVMAGKVEANPWRELDWPAIPGHFGKPWFLPFVGAYYRLQDYLH				NA	NA	NA	NA	NA
D1-36_02943	669			hypothetical protein	ATGAGCTTTCTTCGACCCAAGTACATCACCTTCGACTGCTACGGCACGTTGACCAACTTCCAGATGGGCAACATGACGCGCGAGCTGTTCGCCGACCGTGTCGATGCCGGGCAGATGGACCAATTCGTCAAGGACTTCGCCGCTTATCGCCTGGACCAGGTGATGGGTGACTGGCGGCCTTATGATGAGATCATCAAGACCTCCCTGATGCGGGTCTGCAAGCGTTGGAACGTCGAATACCGCGGCGAAGGCCAGCTCTATTACGACGCCGTGCCAACCTGGGGCCCCCACGCCGATGTGCCGGCGGGCCTGTCGAAGATCGCCGACAAGATCCCCCTGGTGATTTTTTCCAACGCGATGGACGAGCAGATCATGTCCAACGTCGACAAGCTCGGCGCGCCTTTCCATAAAGTGTTCACTGCCCAGCAGGCCCAGGCCTACAAGCCGCGGCTGGCCGCGTTCGAATACATGCTCGATAACCTCGGCTGCGGGCCGGAGGATGTGCTGCATGTGTCGTCGAGCTTCCGTTACGACCTGATGCCGGCCAATGACATGAAGATCAAGCACAAGGCCTTCGTTGCTCGTGGTCATGAGCAACCGGGCAACTCGATCTACAACTACCACCAGATCCCCGATATCGGCGGGCTGCCTGGACTGGTCGGGCTCTGA	MSFLRPKYITFDCYGTLTNFQMGNMTRELFADRVDAGQMDQFVKDFAAYRLDQVMGDWRPYDEIIKTSLMRVCKRWNVEYRGEGQLYYDAVPTWGPHADVPAGLSKIADKIPLVIFSNAMDEQIMSNVDKLGAPFHKVFTAQQAQAYKPRLAAFEYMLDNLGCGPEDVLHVSSSFRYDLMPANDMKIKHKAFVARGHEQPGNSIYNYHQIPDIGGLPGLVGL	PGPT0006885_2152	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_HYDROCARBONS|OIL_DEGRADATION	XENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006885-dehI-K01560	NA	NA
D1-36_02944	1647			hypothetical protein	ATGCGCGTACTCGTCACCAACCCCCAGGACGATTTCAGGGTCAAGGCCTACGCAGGCACCAACGGTGTGCTGCTCGCCATGGACCTCGCCGAGCCACGGCGCAAGGGGCTGTTGGGCTTCGCCATCGAGAAGCAGCACGGTGACAAGCCGTGGCTGTTCCTGTTCAACAGTCTGACCTTCCCCGACAAGGCCCACACCTTCCCGCAGTTCCATGCCACGCCCAGCGACAAGGCGCCGTTGCAGAAATTTCGCTGGGCCGATTACGCGGTCAACCCTGGCACGACGATCCATTACCGCGTGCACCTGGCCTACGGCAGTCCCGATGCGCCGCAGTTGGGCGAGGCCCTTGAGTTGACCGTCACCAGCGATGACGGCCAGCCTGCCAACCAGAGCGTCATCTTCAATCGCGCGGTGGCCGCCAGCCAGGCGTTCCAGCGCAAGTTTCCGGAACTGGACAGCCTGATCAGCGCCAATCGGAGCCTGTCCATCGAAGACTGGCCGGATGCGCCGCGTCGCTGGCTGGAAAACGGTTTGCTGGGGCGCCTGGTCGGCTTCATCGACCGGGCCCTGGATGCAAGCTGGGCGTTGGACGTGGCCATTTATGAATACGAACTGCCGGTGATTGTCGAGGCGGTCAACGCGGCCCATGCGCGCGGCGCTCGGGTGAGGGTGCTTTACCATGCCCAGCCGGAGGACGACGCGACGATCAGCAATGAAGCCAGCCTGCAAAAACTGCCGGCGGCGAACAAGCGTGGTCGAGTCACCCATGGCATTTTCCACGACAAGTTCATCGTCCTGAGCAGAATCGACCGGCATGGAGTGCCGACCCCCGAGGCCGTATTGTGTGGCAGCACCAACTTCACCGCCAACGGCGTCTATCGCCAGGCCAACGTCATCCATGTGCTGGACGATCCACGCATCAGTGACAGTTATCGCCAGGTGTTCGAGCAGATCTGGGCCAACCCCGGGGACGTCGACGCCACCCGCGATTGGCTGACGCTCAGCAATCCCATGGACGGCGACGAAAAACTCTTCGCCGGTTTTTCGCCCCGCAACGGCAAGGGCGATCTCGATCGCTTTGTCGAGATCATCGCGGCCGCGCGCAAGGACCTGCTGTTCGTCACCGCATTCGTCTTACCCGAGCGGATTCTCGATGCCTTGCTCGGCCAGCCGAACGACGACGTGTTGCGCTACGGCCTGCAAAACACCACCAGCCGCATCACCGGTTTCCATGCCGACCGCACCGCCGAATTCGCCGCCACCGCGCTGCTCAATACCGGCCTGGAGGGTTGGCTGCGGGAAAACATGAAAGGCCAGAAGGGCAACCTGCTGGTCCACACCAAGGCCGTGGTCACCGACTTCACCAGTGACTCGCCGACCATCATCAGCGGCAGCCACAACCTGAGCGCCGCCGCCAGCGCCAGCAACGACGAGAACTATCTGATCATCCAGGGCGACACCGACCTGGCCGACCGCTACGGGCTGGAACTGCTGCGCTTCTATGAGCACTACCGGTTTCGCTATTTCGCAAAAAAGCTCGCCCTCAAGCAGGTCCAGCCCCTGGCGCCGGACGACAGCTGGAGCGATGACTATTACCGCGAGGGCGATCTGCGGATGTTGTCCAGGATCAGGTTTTGCGGCCGTTGA	MRVLVTNPQDDFRVKAYAGTNGVLLAMDLAEPRRKGLLGFAIEKQHGDKPWLFLFNSLTFPDKAHTFPQFHATPSDKAPLQKFRWADYAVNPGTTIHYRVHLAYGSPDAPQLGEALELTVTSDDGQPANQSVIFNRAVAASQAFQRKFPELDSLISANRSLSIEDWPDAPRRWLENGLLGRLVGFIDRALDASWALDVAIYEYELPVIVEAVNAAHARGARVRVLYHAQPEDDATISNEASLQKLPAANKRGRVTHGIFHDKFIVLSRIDRHGVPTPEAVLCGSTNFTANGVYRQANVIHVLDDPRISDSYRQVFEQIWANPGDVDATRDWLTLSNPMDGDEKLFAGFSPRNGKGDLDRFVEIIAAARKDLLFVTAFVLPERILDALLGQPNDDVLRYGLQNTTSRITGFHADRTAEFAATALLNTGLEGWLRENMKGQKGNLLVHTKAVVTDFTSDSPTIISGSHNLSAAASASNDENYLIIQGDTDLADRYGLELLRFYEHYRFRYFAKKLALKQVQPLAPDDSWSDDYYREGDLRMLSRIRFCGR				NA	NA	NA	NA	NA
D1-36_02945	570			hypothetical protein	GTGGTGGACTGGCCGGGCACGCTGCTAAAGGGGCGTCCGCGCCTGGCTGCGGACCTGCGTTTCAAATCGCGGCAGCGTTCAGCCCATGAACTTTGGTTGGTGATTGTCGACGCATCGGCCTCGACCCGTCGCCATCGGGCCTTGAGCGACGGCAAGGGCCTGCTGGCGCAACTGTTCGACGAGGCCTACCGACAACGCGCACGGTTGGCGCTGTTGACGGCCAGCGGCGCCACGCCGACCTGGCAAGTGCAAGGGCTCAAGGCCTCCCACGGCCTGGTGCAGTGGCTCGACGCGCTGGGGGCCGGTGGTGGTACGCCGTTGCTGGCGGCGATCGGCGAGGCGCAGCGCTGGCTGGCCTCCCGTCGCAAGCGCTTCCCGGCGGAGCGACAGCGGGTGTTGCTGATGACCGACGGCCGGGTGAGAGACGGGCAACCCATGCCGCCCCTCGATTGCCCCAGCCTGCTCATCGACATCGAGCGCGGGCCGATCCGCCTGGGTCGGGCGCGGCAATTGGCGGGGCAGTTGGGGGCTGAGTATCGGCATATTGATGCTGATGATCGGTTTGTCTGA	MVDWPGTLLKGRPRLAADLRFKSRQRSAHELWLVIVDASASTRRHRALSDGKGLLAQLFDEAYRQRARLALLTASGATPTWQVQGLKASHGLVQWLDALGAGGGTPLLAAIGEAQRWLASRRKRFPAERQRVLLMTDGRVRDGQPMPPLDCPSLLIDIERGPIRLGRARQLAGQLGAEYRHIDADDRFV				NA	NA	NA	NA	NA
D1-36_02946	1008	bchI	COG1239	Magnesium-chelatase 38 kDa subunit	ATGACCGACACCCCACATTTCCCCCTCGCCGCCGTGGTCGGCGCCGATGCGCTGAAACTGGCCCTGTGCCTGGCGGCCATCGATCCGAAGATCGGCGGCGTGCTGATCGAAGGCCCGCGCGGGATGGCCAAGTCCACCCTGGCCCGGGGCCTTGCGGATATGTTGGCCAGCGGTCAGTTCGTGACCTTGCCCCTTGGCGCCACCGAGGAGCGGCTGGTGGGCACCCTCGACCTGGACGCGGCATTGGGGCAAGGGCGCGCGCAGTTTTCCCCGGGGGTGCTGGCCAAGGCCGACGGCGGCGTGTTGTACGTCGATGAGGTGAACCTGTTGCCTGATCACCTGGTGGACCTGCTATTGGATGTCGCCGCCAGCGGCACCAACCTGATCGAGCGCGACGGTATTTCCCACCGGCATCCGGCGCGTTTCGTGTTGATCGGTACGATGAACCCGGAAGAAGGCGAACTGCGTCCGCAACTGCTCGACCGCTTCGGCCTCAACGTGGCCCTCGATGGCCACACCGCACCGGCCGAGCGCGGGCAGATCATCCGTCGCCGCCTGGATTTCGACAACGACCCGGCGGCGTTTTGCGCCGAGTGGGAGCCGGCCCAGCAGCGGTTGCGTGAACGCTGCGAACAGGCCCGCGCAGGCTTGGCCCAAATCCCCCTGGATGACGCGGCGCTGGGGCAGATCACCGAGCGTTGCTTTGCCTGCGGAGTCGATGGGTTGCGCGCCGACCTGGTCTGGCTGCGGGCTGCCCGCGCGCATGCCGCCTGGCGTGGCGCGCACGCCATCGCTGCTGAAGACATCGATGCCGTTGCCGAATTTGCCCTGCGTCATCGCCGCCGCGAGCACGCCGCTCCGCCCCCCGCGCCAAACCAGGCCCCACCTTCGAACCCGAATGAAACCAGCCAACCCAGCGAAGGCCAAGGCCAATGGGGCGACCTGCCGCCCCGGGCGTTGCCGACCGGCGCCCGACGAGACGTGCCGAGCTGGCCAAAAAAGCCCTAG	MTDTPHFPLAAVVGADALKLALCLAAIDPKIGGVLIEGPRGMAKSTLARGLADMLASGQFVTLPLGATEERLVGTLDLDAALGQGRAQFSPGVLAKADGGVLYVDEVNLLPDHLVDLLLDVAASGTNLIERDGISHRHPARFVLIGTMNPEEGELRPQLLDRFGLNVALDGHTAPAERGQIIRRRLDFDNDPAAFCAEWEPAQQRLRERCEQARAGLAQIPLDDAALGQITERCFACGVDGLRADLVWLRAARAHAAWRGAHAIAAEDIDAVAEFALRHRRREHAAPPPAPNQAPPSNPNETSQPSEGQGQWGDLPPRALPTGARRDVPSWPKKP				NA	NA	NA	NA	NA
D1-36_02947	3774	cobN		Aerobic cobaltochelatase subunit CobN	ATGCACCTGCTCAGGACCCAGCCCGGTGGTTTCGTGTCGGATGACAACATCGCCGACCTCGGGCAAACCCCCGCCGAGCTGGTGATCCTGTGCAGCGGCGATTCCAGCCTGGCGCTGCTGGCAGAAGCGGCGCGGCAGTTGCCGGACGATTTTCCGCAGTTTCGCCTCGCCAACCCGATGCAAGTGCAGAACCACGCCTCGGTGGATCTGTACGTTGAAGATGTATTGCGCCACGCCAAGGTCGTCCTGCTGTCGTTGCACGGTGGCATCGGCTATTGGCGCTACGGCATCGAGCGCCTGGTGGAACTGGCCGGGCGCGGGGTGAAATTGATCCTGGTGCCGGGGGACGACCGTCCGGACCCGGAGCTCAGCGATCTGAGCAACGTGTCCGCCGAGCACCGCGATCGGCTCTGGCAGTTTCTTCGTCAAGGCGGATTGGAAAACGCCCTTAACCTGTTCCGTCACCTGGGCAGCCAATGGTTTGGCCGCGATTATCCGTGGGGCGAGCCCCAGCCCCTGGCGCGCACGGCGATCTATCACCCGGAAAAAACCAACGCGACCCTGAATGATTGGCAAGCGGACTGGCGGGCAGGCGATCCCGTAGCGGCGCTGTTGTTTTATCGCTCCCACCTGCAAGCCGCGAACACCGCGTTCATCGACGTGTTCTGCCAGCGGCTGCAAGCGGCGGGGCTCAACCCTTTGCCGATCGCCGTGGCGAGCCTCAAGGAACCCGGTTGTCTGGCACAGGTGGAAGACTGGCTGGACGAAGTGGCAACGGGGGTTATTCTCAACACCACCGGTTTTGCACAATCGAGTCCGGAAGCGCCGCACCTGCGGCCGTTTCGCCGCGATATCCCGGTGATCCAGGCGATCTGCGCCCAGGACAACGAACCCGGCTGGCGCGCCAGCGAACAAGGCCTGGGCCCACGGGACCTGGCGATGCACATCGCCTTGCCGGAACTGGACGGGCGAATCATCAGCCGGCCCATCAGTTTCAAGGACCTGGCCTGGCGCAGCGAGCGCAGCCAGAGCGATGTAGTCTGCTACCGGGCGATACCCGAACGCATGGATTTTGTCGCTGGACTGGCCCGCCGCTGGACCACCCTGGCGCGCCTGCCCAACGGCGAAAAGCGCGTGGCGCTGATCCTGGCCAACTACCCGACCCGGGACGGACGCATCGGCAACGGCGTCGGCCTGGACACGCCAGCGGCGGCGCTGAATATTCTGCGGGCGATGCAGGCCGAGGGTTATCCGCTGACCACCGAGCTGCCGGCCAGCGGCACCGCGCTGATCCGGCAGTTGCTCGGCGGCGTCACCAACGACCTGGACAGCCTCGACCTGAGGCCTTGTCATCAGAGCCTGGCCGTCGACGCGTACCGGGCCCTGTTCGACGCGCTGCCCGAGGCCAATCGCCAAGCGGTGCTGGAACGTTGGGGCGCACCCGAGCAGGACCCGATGTTCCGTGACGGCCGCTTGATGATCGCCGGCCTGCGCCTGGGCCTGACGTTCGTCGGCATTCAGCCGGCGCGGGGGTATCAGGTCGATCCGAGCGCGGTGTACCACGACCCGGACCTGGTGCCGCCCCATGGCTACCTCGCGTTCTATTTCTGGTTGCGCCACACCTACGGCGCTCACGCCGTGATCCACGTCGGCAAGCACGGTAACCTCGAATGGCTGCCGGGCAAGGGCGTCGGGCTGTCGGAAAACTGCTGGCCGGACGCGCTGCTTGGGCCGCTGCCAAACATCTATCCGTTCATCGTCAACGACCCGGGCGAGGGCGCTCAGGCCAAGCGGCGTACCCAGGCGGTGATCATCGACCACCTGATGCCACCGCTGACCCGCGCCGAAACCTACGGGCCGCTGCGCAACCTGGAGCTGCTGGCTGACGAATACTACGAGGCGCAATTGCTCGATCCGCGCCGCGCCAGGGAATTGCAACGGGACATCCTGGCCCTGGTGCGCGAGACGCATATCGACCGCGAGCTGCAACTCGACGCCGGCCTCGACAGCGACGCCGACGCGGCGATCTGGCTGCCGCGCCTGGACACCTACCTGTGCGACCTGAAGGAATCGCAGATTCGCGATGGCCTGCATATTTTTGGCGAGTCGCCGAGCGGACGGCTGCGCATCGACACCTTGCTGGCATTGCTGCGCATTCCCCGTGGCGACGGCAAGGGCGCCCAGTCGAGCCTGCTGCGGGCCCTGGCCAAGGCGTTCGGGTTGGGCTTCGATCCGCTCGATTGCACCTTGGCCGAGCCTTGGGCCGGCGAGCGTCCCGAGGCGTTGCGCGACGTCAGCGATGAGCCCTGGCGCACCGTCGGCGACAGCCGTGAGCGTCTGGAGCTGTTCGCGGCGCGACTGATCGAGCAAGCCTTGGCCGGCGATATCGCGCAGCTCGACGCGCCGGGTTGGGAGACGGTGCACCGCATCATCGACCACCTGCGTGCCGTCGTCGCGCCGCGCCTGGATGCCTGTGGCTCGGCGGAGATGCGCGGCTTGCTCGACGCATTGGGCGGGCGTTTCGTACCGGCCGGCCCCAGTGGCGCGCCGAGTCGCGGACGCTTGGATGTGCTGCCCACCGGGCGCAACTTCTTCTCCGTCGACGTGCGCAACTTGCCCACCACCACGGCGTGGCGCATCGGTTTTCAGTCGGCGAGCCTGATTCTGGAGCGGCACCTGCAAGACCACGGCGATCACCTGCGCCAGCTCGGCCTGTCGGTGTGGGGCACCGCCACCATGCGCACCGGCGGCGACGACATTGCCCAGGCCATGGCGCTGATGGGCGTGCGTCCGGTGTGGGCCACGGGCAGCCAGCGGGTCGACGATTTCGAGATACTGCCGTTGAGCCTGCTGGACCGGCCTCGGGTGGATGTGACGTTGCGGGTGTCCGGGTTCTTCCGGGACGCCTTCGCCAATCTGATCCGCTTGTTCGATGCGGCGGTGCAAGCCGTAGCGGCCCTGAATGAACCCGATGACATGAACCCGCTGGCGGCCAAAGTGCGTGCCGAGCGCGAAGCCTTGCTGCAATCGGGCTTGCCCATGGAAGACGCGGCGCGCCAGGCCGGCTGGCGGATTTTCGGCGCCAAGCCCGGCGCCTATGGGGCGGGCGTGCAGGGGGCCATCGACGGTCGGCTCTGGCAGAGTCGCGAAGACCTCGCCGAGGTGTACCTCAACTGGGGCGGTTATGCGTATGGTGCGGGCGACGAAGGCACCGCCGCGCGGGCGCAATTTTCCCGGCGCCTGAGCCAGGTGCAAGCGGTGTTGCAGAACCAGGACAACCGTGAGCACGACCTGCTCGATTCCAACGATTACTACCAATTCCAGGGCGGCATGCTCGCAGCCGTGGAAACCCTCAGCGGCGAAACCGCCGCCAGTTATCACGGCGATCACAGCCAACCGGGTCTGCCGAAGATCCGTACCTTGAAAGAAGAACTCAACCGAGTCATCCGTTCCCGCGCGGCCAATCCGAAGTGGATCGACGGGGTCAAGCGTCATGGCTACAAAGGCGCGTTCGAACTGGCGGCGACGGTGGACAACCTGTTCGCCTTCGACGCCACCACCCAGTTGATCGAAGACCACCAGTACGCCTTGCTGGCCGATGCCTATCTGCTCGATCCGCATACCCGTGACTTCGTCCGGCAGCACAACCCCGACGCTCTGCGGGACATGACCGAGCGCATGCTCGAAGCGCAGCAGCGGGGGATGTGGCAGGCGCCGGGGGATTATCGCGAGGCGCTGGAAAACCTGCTGCTGGACATCGAAGAAGATGGCTGA	MHLLRTQPGGFVSDDNIADLGQTPAELVILCSGDSSLALLAEAARQLPDDFPQFRLANPMQVQNHASVDLYVEDVLRHAKVVLLSLHGGIGYWRYGIERLVELAGRGVKLILVPGDDRPDPELSDLSNVSAEHRDRLWQFLRQGGLENALNLFRHLGSQWFGRDYPWGEPQPLARTAIYHPEKTNATLNDWQADWRAGDPVAALLFYRSHLQAANTAFIDVFCQRLQAAGLNPLPIAVASLKEPGCLAQVEDWLDEVATGVILNTTGFAQSSPEAPHLRPFRRDIPVIQAICAQDNEPGWRASEQGLGPRDLAMHIALPELDGRIISRPISFKDLAWRSERSQSDVVCYRAIPERMDFVAGLARRWTTLARLPNGEKRVALILANYPTRDGRIGNGVGLDTPAAALNILRAMQAEGYPLTTELPASGTALIRQLLGGVTNDLDSLDLRPCHQSLAVDAYRALFDALPEANRQAVLERWGAPEQDPMFRDGRLMIAGLRLGLTFVGIQPARGYQVDPSAVYHDPDLVPPHGYLAFYFWLRHTYGAHAVIHVGKHGNLEWLPGKGVGLSENCWPDALLGPLPNIYPFIVNDPGEGAQAKRRTQAVIIDHLMPPLTRAETYGPLRNLELLADEYYEAQLLDPRRARELQRDILALVRETHIDRELQLDAGLDSDADAAIWLPRLDTYLCDLKESQIRDGLHIFGESPSGRLRIDTLLALLRIPRGDGKGAQSSLLRALAKAFGLGFDPLDCTLAEPWAGERPEALRDVSDEPWRTVGDSRERLELFAARLIEQALAGDIAQLDAPGWETVHRIIDHLRAVVAPRLDACGSAEMRGLLDALGGRFVPAGPSGAPSRGRLDVLPTGRNFFSVDVRNLPTTTAWRIGFQSASLILERHLQDHGDHLRQLGLSVWGTATMRTGGDDIAQAMALMGVRPVWATGSQRVDDFEILPLSLLDRPRVDVTLRVSGFFRDAFANLIRLFDAAVQAVAALNEPDDMNPLAAKVRAEREALLQSGLPMEDAARQAGWRIFGAKPGAYGAGVQGAIDGRLWQSREDLAEVYLNWGGYAYGAGDEGTAARAQFSRRLSQVQAVLQNQDNREHDLLDSNDYYQFQGGMLAAVETLSGETAASYHGDHSQPGLPKIRTLKEELNRVIRSRAANPKWIDGVKRHGYKGAFELAATVDNLFAFDATTQLIEDHQYALLADAYLLDPHTRDFVRQHNPDALRDMTERMLEAQQRGMWQAPGDYREALENLLLDIEEDG	PGPT0009280_874	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0009280-cobN-K02230	NA	NA
D1-36_02948	1065			hypothetical protein	ATGAAAACACTGGCCAAACTCCCCGTCACCATCGTCACCGGTTTCCTCGGGTCGGGTAAGACCACCTTGCTGCGGCACATGCTCGACAACGCCCAAGGCCGACGTATCGCGGTCATTGTCAATGAGTTCGGCGAACTGGGCATTGACGGGGAGATCCTCAAGCAGTGCTCCATCGGTTGTACCGAAGAAGAAGCCAACGGCCGCGTCTATGAACTGGCCAACGGCTGCTTGTGCTGCACCGTGCAGGAAGAGTTCTTCCCGGTGATGCGTGAGTTGGTGGCGCGTCGCGGCGACCTCGACCACATCCTCATCGAAACCTCCGGCCTGGCCTTGCCCAAGCCGCTGGTCCAGGCCTTCCAATGGCCGGAAATCCGCAGCGCCTGCACCGTCGATGCGGTCATCACCGTGGTCGATAGCCCGGCCGTGGCCGCGGGCACCTTCGCCGCGTTCCCGGACAAGGTCGATGCCCAGCGCAAGCTGGACCCGAACCTGGACCATGAATCACCGCTGCACGAGCTGTTCGCCGATCAACTGGCAAGCGCCGACCTGGTGATCCTCAACAAAGCCGACCTGATCAACCCCGAGGACCTGGCCAAAGTCCGCCTGGAAGTCGCCGAAGAGCTGCCGCCAGCGGTCAAGGTCATCGAAGCCAGCAACGGTCGCCTGCCGCTGGACGTGTTGATCGGCCTGGGCGCGGGCTCTGAGGAACACATCGACAGCCGCCACAGCCATCACGACCACCACCATGACGGCGATGACGACGACCACGATCACGATGCCTTCGATTCGATTTCCATCGAACTGCCCCAAGCTGACGAAAGCCTGCTGCTGGACGCGCTGACGCAACTGGTAATTCAGCATGACGTATTGCGGGTCAAGGGCTTCGCGGCCATCCCGAACAAGCCGATGCGCCTGTTGATCCAAGGTGTGGGCACGCGCTTCGACAAGCACTTCGACCGCCAGTGGGGCGCCGATGAAGCGCGCGTCACACGTCTGGTACTGATCGGCCAGGCCCTGGACGCCGGGCTGCTTGAAGCGCAGTTGCGCGCCGCCCTCAGCGTCTAA	MKTLAKLPVTIVTGFLGSGKTTLLRHMLDNAQGRRIAVIVNEFGELGIDGEILKQCSIGCTEEEANGRVYELANGCLCCTVQEEFFPVMRELVARRGDLDHILIETSGLALPKPLVQAFQWPEIRSACTVDAVITVVDSPAVAAGTFAAFPDKVDAQRKLDPNLDHESPLHELFADQLASADLVILNKADLINPEDLAKVRLEVAEELPPAVKVIEASNGRLPLDVLIGLGAGSEEHIDSRHSHHDHHHDGDDDDHDHDAFDSISIELPQADESLLLDALTQLVIQHDVLRVKGFAAIPNKPMRLLIQGVGTRFDKHFDRQWGADEARVTRLVLIGQALDAGLLEAQLRAALSV				NA	NA	NA	NA	NA
D1-36_02950	1137	garK	COG1929	Glycerate 2-kinase	ATGAAAATAGTCATCGCCCCCGACTCGTTCAAGGACAGCCTCAGCGCCCAGGCCGTGGCGGACGCCATCGCAGGAGGGCTGGCCGAGGTCTGGCCGGACGCGCAGCTGATCAAGTGCCCAATGGCCGATGGCGGCGAGGGAACGGTGGAGGCGGTGCTCGCGGCCTGCGATGGCCAATGGCGCGAGGCGCGGGTCCGTGGCCCGCTGGGTGCCGCTGTCCAAGCCCGCTGGGGCTGGTTGCCCGACAGCCGCACGGCGATCATCGAGATGGCCGAGGCCAGCGGCCTGCAACTGGTGCCGCCGGGACAGCGCGACGCTTGTTCCAGCAGCACCTATGGCACTGGCGAACTGATCCGCGCCGCTTTGGATGAAGGGGCGAGCCGAGTCATCCTGGCGATCGGTGGCAGCGCCACCAACGACGGCGGCGCCGGGGCGATGCAGGCACTGGGCGCGGCATTGCTGGACGACCAGGGCCAAGCCCTGCCGCCCGGCGGCCTGGCCTTGGGCAAACTGGCGCGTATCGACCTGGGCGACCTGGACCCGCGCCTGGCCGGCGTGTGCTTCGAGATTGCCGCCGATGTCGACAACCCCCTTTGCGGTGCCCATGGCGCTTCAGCCGTGTTCGGCCCGCAGAAAGGCGCCTCCGCCGAGCAGGTGCAACAACTGGACCGGTCGCTGGGGCACTTTGCTGAACATTGTGCCCAGGTGTTGAACCGCGACGTTCGCGACGAACCCGGCAGCGGTGCCGCTGGCGGCCTGGGGTTTGCCGCCAAGGCGTTCCTCCAGGCGCAGTTTCGTACCGGCGTGGAAGTCGTCGCGCAATTGACCGGCCTGGCCGCTGCGATCGACGGCGCCGACCTGGTGATCACCGGCGAAGGCCGTTTCGACGCCCAGACCCTGCGTGGCAAGACGCCGTTTGGCGTGGCCCGCATCGCCCAGCGGCGCGGCGTACCGGTGGTGGTCATCGCCGGCACGCTGGGGGAGGGCTACGAAGCGCTTTATGAGCACGGCATCGATGCCGCGTTTGCCCTGGCGAATGGGCCGATGACGCTACAAGAAGCTTGCACCGATGCGCCACGCCTGCTGGCCGAGCGGGCCCGGGACATCGCCCGGCTCTGGCGAGTGGCGGCGCGCTGA	MKIVIAPDSFKDSLSAQAVADAIAGGLAEVWPDAQLIKCPMADGGEGTVEAVLAACDGQWREARVRGPLGAAVQARWGWLPDSRTAIIEMAEASGLQLVPPGQRDACSSSTYGTGELIRAALDEGASRVILAIGGSATNDGGAGAMQALGAALLDDQGQALPPGGLALGKLARIDLGDLDPRLAGVCFEIAADVDNPLCGAHGASAVFGPQKGASAEQVQQLDRSLGHFAEHCAQVLNRDVRDEPGSGAAGGLGFAAKAFLQAQFRTGVEVVAQLTGLAAAIDGADLVITGEGRFDAQTLRGKTPFGVARIAQRRGVPVVVIAGTLGEGYEALYEHGIDAAFALANGPMTLQEACTDAPRLLAERARDIARLWRVAAR	PGPT0018175_2134	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0018175-garK|glxK-K00865	NA	NA
D1-36_02951	1125	cdaR	COG3835	Carbohydrate diacid regulator	ATGTTCGAACTCGATCACGACCTGGCGCAGGACATCGTCGACCGGGCGATGGCGATTCTGCCCTATAACGTCAACGTCATGGACAACCAGGGCTTGATCCTCGGCAGCGGCGAGCGCGAGCGCATCAATACCCGACACGAGGGCGCGCAACTGGTCCTCGCCAACGGACGGGTGGTGGAAATCGACGAGCACACCGCCGTCCACCTCAAGGGCGTACAGCCGGGAATCAACCTGCCATTGATGCTCGATCAGCGCTTGATCGGCGTGCTGGGCATTACCGGCGAACCCGCGCAATTGCGCACTTACGCCGAACTGGTGCGCATGACCGCCGAAATGTTGCTCGGCCAGCGCAACCAGCAGGCCGAGCAGCAATGGCGCCGCCAGCGTTGCGATGACTTGCTGGCATTGCTGCTGGGCGATGCCGGGGATTCGCCAAGGTTGCTCGATGAAGCGCAGCAGATGGGCCTCAAGCCGCAGCTGTCGCGCGTACCGTATCTGTTCGAATTGGGCTTGGAGCATGGCCCTGGTCAAACCGTCGAATCGCTGAGCGCCTGGCTGATGTCGCGCTACCCGGACAGCTGGTGCCTGACGTCGTCCAAATCCTCCTTGCTCTGGTGCCGGCCGGTCACGGCCTCGGTGGAGAACGAGCGGCTGCTGGGCAAGCTCGATGGCCTGGGCTGGAGCATCCTGCGAGTGGCTGTGGGCGGCCAGGCCGAGGGGCTGGCGGGGCTGCGCCGTTGCTACCGGCGGGTGGCGGATCTGCTGGCGTATGGGCGCGATGTCCTGCCGCAGTCGCGCTTGCTGCTTCTCAATCGCTATCGGCTGCCGGTGATGCTCTGGCGGCATCGCAGCGATGATGCCCTCGACGAACTGCTCAGCCCGTTGCGCAAAGTGATCGCCAAGGACAGCAACGGCCAATTGCTCGCTACCTTGCGAAGCTGGTGCGAACACGACGGCCAGAGCCAGGCCTGCGCCGACGCCCTGGGCATCCACCGCAACAGCCTGCGCTATCGCATGGAACGCATCGCCGAACTCAGCGGCGTCGACCCGCTCAGGCTGGATGGGATGCTGGCGTTGTACCTGGGGGTTCAACTGTTGCCCCATGATCAAAATTATCCGGCGTGA	MFELDHDLAQDIVDRAMAILPYNVNVMDNQGLILGSGERERINTRHEGAQLVLANGRVVEIDEHTAVHLKGVQPGINLPLMLDQRLIGVLGITGEPAQLRTYAELVRMTAEMLLGQRNQQAEQQWRRQRCDDLLALLLGDAGDSPRLLDEAQQMGLKPQLSRVPYLFELGLEHGPGQTVESLSAWLMSRYPDSWCLTSSKSSLLWCRPVTASVENERLLGKLDGLGWSILRVAVGGQAEGLAGLRRCYRRVADLLAYGRDVLPQSRLLLLNRYRLPVMLWRHRSDDALDELLSPLRKVIAKDSNGQLLATLRSWCEHDGQSQACADALGIHRNSLRYRMERIAELSGVDPLRLDGMLALYLGVQLLPHDQNYPA				NA	NA	NA	NA	NA
D1-36_02952	1311	nicT_3		Putative metabolite transport protein NicT	ATGTCCCAGAGCGCAGCAGCCCTCCTGGCTACCCCCGACGAAAAGAATACCGTCTACAAGCGCATCACCCTGCGTTTGATCCCGTTCATCTTCATCTGCTACCTGTTCAACTACCTCGACCGGGTGAACGTTGGCTTCGCCAAGTTGCAGATGCTCGACGCGTTGAAGTTCAGCGAAACCGTGTACGGCCTCGGCGCCGGGATTTTCTTCATCGGCTACGTGCTGTGCGGCGTGCCGAGCAATCTGGCCTTGACCAAATTCGGCCCTCGGCGCTGGATCGCCCTGATGATGATCACCTGGGGCACGCTGTCGACCTGCCTGCTGTTCGTCACCACCCCAACCCAGTTCTACACCTTGCGGCTGTTCACCGGGGCGGCTGAAGCCGGGTTCTTCCCTGGCGTCGTGCTGTACCTTTCGCAATGGTTCCCGACGTTCCGCCGTGGCCGGATCATGGCGCTGTTCATGTCGGCCATCCCAGTGTCGGGGCTGCTGGGCAGCCCGTTTTCCGGCTGGATTCTCAACCACTTCGCCGCCGGCCAGGGCGGCCTGGCGGGTTGGCAGTGGATGTTCCTGCTGCAAGGCATCCCGACAGTGATTCTCGGCGCCCTGGCGTTCTTCCTGCTCAGCGACACCTTCGCCAAGGCCACCTGGCTGACCGACCATGAACGCGCCGTGCTCACCGCCGACCACGCCGAAGACCTGGCCAACAAACCGAAAACCACCACAGACTCCCTGGCCGCCGTGTTCAAGAACCCAGCGATCTGGGCCTTCGGCCTGGTGTACTTCTGCATCCAGAGCGGCGTGTATGCGATCAATTTCTGGCTGCCGTCGATCATCAAGAACCTCGGTTTCAGCGATAACCTGGTGATCGGCTGGCTGAGTGCGATTCCCTATCTGCTGGCGGCGGTGTTCATGTTGCTGGTGGGGCGCTCGGCGGATCTGCACAAGGAGCGTCGCTGGCACTTGGTCGTGCCGATGCTGATGGGCGCGGTGGGGCTGCTGATCGCGGTGAACTTCGCCACCACGCCGGCCATCGCCATCCTCGGCCTGTCCATCGCCACCATGGGCGCCCTCACCGGCCTGCCGATGTTCTGGCCGGTGCCCACCGCCCTGCTCAGCGCGGGCGCGGCGGCCGGCGGGCTGGCGTTGATCAACTCCATGGGGCAGATGGCCGGTTTCCTCAGCCCATACCTGGTGGGCTGGGTCAAGGACACCACTGGCTCGACCGATGCGGCGCTGTACCTGCTGGCCGGCGTGATCGTCTGCGGCAGCCTGTTGGCGCTGCGCATGACCCGCACCTTGCGGGCCTGA	MSQSAAALLATPDEKNTVYKRITLRLIPFIFICYLFNYLDRVNVGFAKLQMLDALKFSETVYGLGAGIFFIGYVLCGVPSNLALTKFGPRRWIALMMITWGTLSTCLLFVTTPTQFYTLRLFTGAAEAGFFPGVVLYLSQWFPTFRRGRIMALFMSAIPVSGLLGSPFSGWILNHFAAGQGGLAGWQWMFLLQGIPTVILGALAFFLLSDTFAKATWLTDHERAVLTADHAEDLANKPKTTTDSLAAVFKNPAIWAFGLVYFCIQSGVYAINFWLPSIIKNLGFSDNLVIGWLSAIPYLLAAVFMLLVGRSADLHKERRWHLVVPMLMGAVGLLIAVNFATTPAIAILGLSIATMGALTGLPMFWPVPTALLSAGAAAGGLALINSMGQMAGFLSPYLVGWVKDTTGSTDAALYLLAGVIVCGSLLALRMTRTLRA	PGPT0002325_665	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-ORGANIC_ACID_METABOLISM	P-SOLUBILISATION-TARTARIC_ACID_TRANSPORT,PGPT0002325-ttuB-K13021	NA	NA
D1-36_02953	1014	yajO	COG0667	1-deoxyxylulose-5-phosphate synthase YajO	ATGAGCTACCGCACGCTAGGCCATTCAGGGTTGCAAGTCTCGACGTTGACCCTGGGCACCATGATGTTCGGCGAACAGACCAGCACCGAAGATTCGCTGCGGATCATCGACAAGGCCTGGGACCAGGGCATCAACTTCATCGACACCGCGGACGTCTACACCGGAGGTCGCTCCGAAGAAATCGTCGGCGAGGCGATTGCCCATCGTCGCCATGAATGGGTGCTCGCCACCAAGGTCGGCTTCGGCCCGCCGGACGGTATGCCTAACCGCAGCGGCCTGAGCCGCAAGCATCTGTTCAATGGGATCGAGGCCAGCCTGACGCGCCTGGGCACCGATTACCTGGATATCTATTACCTGCACCGCGAAGACCACAACACCCCGCTGCACGTCACCGTGTCGGCCATCGGCGACCTGATTTGCCAGGGCAAGATCCGCTACTGGGGCCTGTCGAACTACCGCGGCTGGCGCATCGCCGAGGTGATCCGCATTGCCGACAGCCTGGGCATCGACCGCCCGGTCATCAGCCAACCGCTGTACAACATCGTCAACCGCCAGGCGGAAACCGAGCAGATCACAGCGGCGCAGAATTATGGCCTTGGCGTGGTGCCGTTCAGCCCCCTGGCTCGCGGCGTGCTCAGCGGCAAGTACGCGCCAGACGTCGCACCGGACGCCAACAGCCGTGCCGGACGCCAGGACAAGCGCATCCTGGAAACCGAATGGCGGGTCGAGTCCCTGCGCATCGCCCAGCAGATCCTGGAATACACCCAGGGCCGGGACGTGGGCATCGTCGAGTTCGCCATCGCCTGGGTGCTGAACAACAATGCCGTCACCTCGGCCATCGTCGGGCCGCGCACCGAGGAGCAGTGGGATTCGTACACCAAGGCGCAGGCGGTGAAAATCACGGCAGAGGATGAAGCATTCATCGATTCGCTGGTGACACCGGGCCATGCCTCGACGCCGGGGTTCAATGATGTCGGCCATTTCGTGCCGGGGCGCGTGCCGCGTACGTCGTAA	MSYRTLGHSGLQVSTLTLGTMMFGEQTSTEDSLRIIDKAWDQGINFIDTADVYTGGRSEEIVGEAIAHRRHEWVLATKVGFGPPDGMPNRSGLSRKHLFNGIEASLTRLGTDYLDIYYLHREDHNTPLHVTVSAIGDLICQGKIRYWGLSNYRGWRIAEVIRIADSLGIDRPVISQPLYNIVNRQAETEQITAAQNYGLGVVPFSPLARGVLSGKYAPDVAPDANSRAGRQDKRILETEWRVESLRIAQQILEYTQGRDVGIVEFAIAWVLNNNAVTSAIVGPRTEEQWDSYTKAQAVKITAEDEAFIDSLVTPGHASTPGFNDVGHFVPGRVPRTS	PGPT0017540_528	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
D1-36_02954	885	rarD_1	COG2962	Protein RarD	GTGTCCAAAGGCATCGCTCTATCGGTCTCGGCATCCGCCCTGTTCGCCGTCATGTACTACTACACCTCGCTGCTCGCGCCGCTGACGGGCCTGGAGATTTTCGGTTGGCGCATGTTGCTGACGATGCCGTGCATGACTGCGTTCATGCTGATCTCCCGTGAATGGAAACTCGTCTCGGATCTTGTCGCACGCCTGATCGCCACGCCGCGCTTGCTGCTGGGTGCAATGGCGTCATCGGCACTGATGGGGGCGCAGTTGTGGCTGTTCATGTGGGCGCCGCTCAACGGCTACAGCCTGGACGTGTCGCTGGGCTATTTCCTGCTGCCGCTATCGATGGTCCTGACGGGGCGCATCGCCTATGGCGAGCGCCTTTCGCGTCTGCAGAAAGCCGCGGTGTTTTTCGCCTCTCTCGGCGTGCTCAACGAGCTGTACCGGGTGGGTGGGTTTTCCTGGGCGACGTTACTGGTGGTGCTGGGCTATCCGATCTATTTCATCCTGCGCAAACGCCTGCGCACCGACAACCTGGGTGGGCTCTGGCTGGACATGACGTTGATGCTGCCGTTGGCGCTCTGGTTCGTGCAGAGCGGCGAACAAGGTTTCAAGGTTTTCAATCAACACCCGTGGCTGTCGCTGCTGATCCCGCTGCTCGGGGTCATCAGTGCCTCGGCCCTGGTGGCCTACATCGTTGCCAGCCGGTTGCTGCCCTTCAGCCTGTTCGGGCTGTTGAGCTACGTCGAGCCGGTGTTGTTGCTGGGGGTCGCGCTGCTGCTGGGTGAAAGCATCCAGGCTGAAGAATGGCTGACCTATATCCCCATCTGGATGGCCGTGGCGGTTCTGGTATTCGAAGGGTCCAAGCATATGGTGCGGCAACGGCGCCGGGCCTGA	MSKGIALSVSASALFAVMYYYTSLLAPLTGLEIFGWRMLLTMPCMTAFMLISREWKLVSDLVARLIATPRLLLGAMASSALMGAQLWLFMWAPLNGYSLDVSLGYFLLPLSMVLTGRIAYGERLSRLQKAAVFFASLGVLNELYRVGGFSWATLLVVLGYPIYFILRKRLRTDNLGGLWLDMTLMLPLALWFVQSGEQGFKVFNQHPWLSLLIPLLGVISASALVAYIVASRLLPFSLFGLLSYVEPVLLLGVALLLGESIQAEEWLTYIPIWMAVAVLVFEGSKHMVRQRRRA	PGPT0003906_2613	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTUDRUG_RELATED_REGULATION,PGPT0003906-rarD-K05786	NA	NA
D1-36_02955	3453			hypothetical protein	ATGTCAGAACCTTCCCAAGGGCGATCCGCCCAACCAGGGGTGGAACGGATTCCACCTGTGGTGATCACCGATATCACGTCCCATCCGCTGCAACGTCTGCCCGAACATAACGACACGCAACCGGATAAAAAACCAACGCCCCGGGAACGGCTCACGCGTTTGGATGAACGCCTGGGGCCGGTGAAGATTGGCGAGTTGAGCATAAGCCGCGTCGACCTTTATCGCATGGGCGCACGCCTGGGCGACGACGGGACCGCAACAGACTCGGCACTTCTTTCGCAACCGGACGGAGCGCTGATCGATGCCGTCCGGTTCGATCCACTGATGATCGAGACTTACATCAAGGCGCACCCTTCGGGCAACGCCCCCGATGCGACCTCTCTGTTGTTCGAGCTCGCGTCCGTCCGATCCTCCAGCTCCCCCGCGATTCTTGAGCCAACACCAGGCCACGTCCCCAGCGGGTCGATGGACACGTTCGGCAAATTGCTCGATGCGTTGCAGGCGATGCAAGCGTTGCAGGGCCAACCCTTCGCACCGGGCATGCCAACCTGGGTCAACAACCTGAAGAGCCACGGTATGCTCACCGCTGCGCTGGGCATGCAGATCTACGGAATCTACGGTGGTCTGGTGGGGATCCGTGATGGCCTGAGAAACAGCGATCTGGCCGAGATAGCGGTCAGCTCCGGGGAAATCGGCGGTGAGCTCACTTCGGTCATGGTGGAGCACGGGCTGTTGAAGACCGGAAAACAAATGCTGCGCCAGGCTGACCGGGTGCTCATGGGCTTCAAGGCCACCGCCGTGGGCAAATGGCTGATCCGCAGCGCGGGCCTGATGGCCGGCATCCTCACGCTCCCTTTCGATATCTACCACGCCATCAATGCCTTCGACGCCGCCGCCAGATCCACGGGCAAGGAAGCCATGGACCATTACGTCTCGGCCGGCATGAGCGTGGCGAGCGCAGGCCTCTCGGTCGCGCTCGGGGCGGCGGCAATGGCGGGGTTCGGTCTGACCGGCGCGGTTGGGTTGGTGGCGTGCGCCGTCCTGATGATGGGCGCAAGGGTCTACGGCGCAGCACGCCAGGTCGATGACATTGACGATTACATTGAGCTGAGCATCAACGAACGCTGGCGCTCGGGTTGGTTCGCGTTCACTGGGCAAGCGCTCGATACGCAAGTGATGGGACGCTACGAGGTTGCGCGCACCCGTGTCGGGTACACCCAGGCGCTGGTGGACCAGGCGCGCAAGCTGCTGGACGGCGAGCTGAAACCCAGCGTGGAAGCCCTCGTCAGCGGCCGCTTCGAAGTCAACATGCAACCGCTCAAGCACTGGAGACTGCACTGGGATGACGGCGAGCAGCCTTACCGGGAAGTGAGCACACCAGAGGTAGTGGAAAGCGACGATGTAATCGACGCATCTCGGGGGCTGGACAAGGCTCCCAGGGTGACCGTCGGTGAACCGGGCAAGGGCAAGGGCATCTATTGGCAGTTGGGTGGCGGCAACGACCAGGTCTTCGGCGTATACGACAAACCCAACTACTTCAGCTTCTCAACGGGTAAAAAGAGCCTGACGGGAGGTTCGGAGGATGATGCGTTCATGTTCCATGTGAACGAGACACTCAAGACGCCGGTCGTGGATGCCAGGAACGCGCTGCATGGCGGCGCGGGCAACGACACGCTGTCGTTGCAGGGTCGACTCCCGGACGTCAACGGCTCTTACGCCTATCTCGGCCTTGAAATCGATCTGCCCGGCGGACTCTCCCTGTTGAAGTCCCACGACGACACCCACCCTGCCCACTACGCAACGATCACCTCGATTGAAAACGTCGAGACACTGCCCCGTGGCTACAGCCGAGTCATCGGTGACCGGCACCCCAACCACATCACGCTCAATGGTATGGATGACCGAGCCACCGGTGGACGCGGCGATGATGTGTTCCGGCTGATGGGCAACTCCAGTCGGGTCGACGGTGGCCCCGGCACGGACCGTTACTACGTCGCCATCAACACTGGCGACATCCATATCACCGAGGATGGGACGGAGCCGAGCATCATTGAACTCGGCTATCCAGCGGAAGGGATCAAGGGTTGGGAAATCCAGGGCACGTCATTGAAGGTGACGTTATCCCATGATGCGCAGACAACGGATTTATTTCGCGAGCTGTGCATTGTCGATACATATTGCCAGGTTGGGACTCAACGGGTCCTGCGTAATGACGCTCTGCTGTTCGTGACGCAAGATGGCTTCACTTTCAAGCCGGATCTGCCACACGCTTTGCTCGCCCCGGAAGATCACCCCGTCAGCGCGATCATGGTGCATCAAGGCAAATCGCCGCCCGCGCCGGTCATTTTCAATGGTGAAAAAGTCGCCTCACGGGATCTCGTCTCCGAAAACTATTTCGTTGCCAGGGAATGCCCCGACCCTATCTTCGATATCCCGCAGCAACCGGCCAACGCAACCACCACGTTGTTCCTGGACCATGACGACAGCGAATTGGAAGCCGTCCACGCTCATTATCGCGTGGAGGTTTGCACCATCGGTTATTGGAACTGGCTGACCTACAGCGACATGAAGCTGGTGCTGCAATTCACCAACGGCACGCGGCTGACGCTCGATCATTGGATGAAGCATAACCAGGGTGTTGCGTCGAATGTCACGGGCACGTTGATGTCCACTGGCGTATCGCTCACGCGCGCCATCACTCTGGTCTTTCGTGACGGCACCTCCTACCGGGTGGGTACGGTACGGCCGTCATTCCACGATGATTACCAGAACCCGGGAACACGCGTGGTCGAGGGGCGCCATGTACTGCGCCGACGCCCTGGTCGTGCTGTCTTCCGGTCCCCGTCCCGTGAAGTCATACGCCTGCCTTCCAGACCGCAAAAAATCAGGTTACCTGAACGCCAGCACACCAGCATTTACGAGCTGGAGGGCAACGCCTCCACTTACGAAGTCCACCCCAGCCCTGGCGCCACCCTGCGCCTGTATACGACCAGCGCAACCGATTCGTCGGTGTGGAATATTCACGCCGACAGCTTTGACATGGATCTGGCCCGCAGCGATATCCGTGTCGGTAGGACCTGGGTCCTGCTCGGTGACGTGCGGTTGTTGCTCACGCCAGCGCCCGATGACCGGAAACCACCGGAAATTGCGCATGTGGAACTCGTGTCCGGCACCCGTTACCAGATCGACACCGATCTGGCGAAAGCGCGACTGTTGAGCATCAATGCCAGGTTCCATGCCGACATTGCCACGCTCCTGCGAGAAATCCAGGCCCATGAAGCTGATGGCAGCCTGGCGACGACATTTCTCAGCGTCGCTGGCGTTCGCCTCGCTGACGGCACGCCAGGCGCGATCTTCTATGACGTACTGGACCAGCGCTGGATTCTCGATAGCGACGACACGCAAGAAGTGAACAGCTCGGACCTGATGATCGGGACCGTTGCCCAGCACTGA	MSEPSQGRSAQPGVERIPPVVITDITSHPLQRLPEHNDTQPDKKPTPRERLTRLDERLGPVKIGELSISRVDLYRMGARLGDDGTATDSALLSQPDGALIDAVRFDPLMIETYIKAHPSGNAPDATSLLFELASVRSSSSPAILEPTPGHVPSGSMDTFGKLLDALQAMQALQGQPFAPGMPTWVNNLKSHGMLTAALGMQIYGIYGGLVGIRDGLRNSDLAEIAVSSGEIGGELTSVMVEHGLLKTGKQMLRQADRVLMGFKATAVGKWLIRSAGLMAGILTLPFDIYHAINAFDAAARSTGKEAMDHYVSAGMSVASAGLSVALGAAAMAGFGLTGAVGLVACAVLMMGARVYGAARQVDDIDDYIELSINERWRSGWFAFTGQALDTQVMGRYEVARTRVGYTQALVDQARKLLDGELKPSVEALVSGRFEVNMQPLKHWRLHWDDGEQPYREVSTPEVVESDDVIDASRGLDKAPRVTVGEPGKGKGIYWQLGGGNDQVFGVYDKPNYFSFSTGKKSLTGGSEDDAFMFHVNETLKTPVVDARNALHGGAGNDTLSLQGRLPDVNGSYAYLGLEIDLPGGLSLLKSHDDTHPAHYATITSIENVETLPRGYSRVIGDRHPNHITLNGMDDRATGGRGDDVFRLMGNSSRVDGGPGTDRYYVAINTGDIHITEDGTEPSIIELGYPAEGIKGWEIQGTSLKVTLSHDAQTTDLFRELCIVDTYCQVGTQRVLRNDALLFVTQDGFTFKPDLPHALLAPEDHPVSAIMVHQGKSPPAPVIFNGEKVASRDLVSENYFVARECPDPIFDIPQQPANATTTLFLDHDDSELEAVHAHYRVEVCTIGYWNWLTYSDMKLVLQFTNGTRLTLDHWMKHNQGVASNVTGTLMSTGVSLTRAITLVFRDGTSYRVGTVRPSFHDDYQNPGTRVVEGRHVLRRRPGRAVFRSPSREVIRLPSRPQKIRLPERQHTSIYELEGNASTYEVHPSPGATLRLYTTSATDSSVWNIHADSFDMDLARSDIRVGRTWVLLGDVRLLLTPAPDDRKPPEIAHVELVSGTRYQIDTDLAKARLLSINARFHADIATLLREIQAHEADGSLATTFLSVAGVRLADGTPGAIFYDVLDQRWILDSDDTQEVNSSDLMIGTVAQH				NA	NA	NA	NA	NA
D1-36_02956	2910			hypothetical protein	ATGTCTCCAAAAAAACCTGTGCGCCCGAAGGGCACAGACACGCCAGGCACCGATCCGGGCACGATTACCCTACCCGACGTCAGGCTGCCGCCTCATCTTGCATTGCCTGGGACCGGCATCCCGCCACGCCCCCACACGTCGACGTCCGAGCCCAGTGGCTCTGCCGGGGCTTCATCCCAGAAGAGCCCGCCGCCACCCGTCGAGCTGACGGACCCGACCAGTGGCGCCCCAACGGCTGCGCAGCCTTCGCCAAGGTCCTTGGATCGGTACGCGCTCAATCCACCCGAAGGGTTGCCACCGGCCCGCGCCGATGGTCTTCGGGTCAACGGCAACGGCAGCTACGTCGATCTGGACGACGGAAAAGTCGCCCGGGTCGTCCATGACCCTGCCTTGAACGCTTATTACGCGTGGGGCCTGAATGAACTGTCACCTTCGGGCCCGGCACTCTATCGGCCAACAGGCGCGGTGTCCTGGCGCGAAAACGCCTTCGCCACGAAGCTGCGGGCCTACCAACTGGGCAAGGACCAGCGAGCAGTATTCGATCGCAGGAACGAGGGGCTATCGAGCCAGTCCATCAAAGAGCGCGACGCTGCTTTAGGTCCTATTTACCGGACCCAACAGAACCAACTGAAAGAGGACACCCGGTTATTCCTTCAAAACGCCCAACGGATCCCTCGTTCCGCCGCTCCTTCGTTGCTTGGCGTGGAGACATTTTCCAAGCTCATCGAGAAAATCTTCGAACACTTCCAAGGCCTGGTCATGACGGAGCGGTTTTCGGGCACCGGCAGCAAGATGCAACTGATCGACGCGATGCCGGCACTGGTCGCAAGCGGTGTAACGACGCTGTACCTGGATCGCTTGCGAATCGACATCGACCAGGTCGTCCTGGACGGGTTCGCCAGGACCGGTGTCCTCGACGCCAGACTGAAGCGTCGCCTGCACGCTCTCGACGTGAACGATGACGCGGTCCCGCCAACGCCCTACACCTATCAGAACCTGATCATCGCGGCGCGGGAAAATGGCATAAGGGTTCAGGCCCTGGACTGCGCCGCCAGGGCCCAGGCGGAACTGTCCGGAGACGACGGTTTCCGAGGCCTGTTCACGTATCACGCCAGCCAAGTGATCAACGCCGACCGCCTTAATCGTCCGCAAGGCAAGTGGGTCGCCCTGGTGGGAGCGTCCCAGTATCGTAAAAGGAACATCGCTCTTGAACAGGAGCAGCACGCCACGGTGACTTTCAGCTACCCCAACACGCCTGGCCTGGCCCAAGTGCAAGGTGTGATGAGCTTGCATGTCGAGGACCTTGCCCATGGCCCGAACCTGCAGATCATCCAGGACCCGTCGCTCGGGGCCGCTGATTTGAACCTGAACGTAGGGGGCCAGGGCATGAAGCCATTCGAGCTGCCCGTTCGTTACCGACGCGTTCTGGAACAAGACATTCGAAGTGCCAACCTTACGCAGGACCCCCATAGCCTTTTTGCGACAATACCGGTGCAGCGTGGTCTCGATGTCGAAACCGCCCAGCGGGAACGTTTCCAGCGCGCCAGGGATACCATCAGCGCCAGCCAGTACTTCTTCGAAGGCCAACCGGTCACCCGCCCCAGGCCGCCCACGCCGGCACTGCAACCTTACAGCCCACCCCCCGCTGTGCTTGAAAGCATTTACCGTGTATCCAATGGCCTGGTCTTGGGAGCGGCCTACAACGCCATCGGCGCCAGGAAGTTCTTGATCGACAACATGCCCGCCCTGAAGGAGCAGCAGGTCAAGACGCTCTACATGGAAAACCTGATCATTGAATACGATCAACCCCGGCTGGATGCATTTGCCTCCAGCGGTGCGATGTCCGATCCTCTGCGGGCGAATCTCCGGCGCCAGGACGAACTCCAGCAGATGAATTCCTCCAGCGCCCATTCGTTGGTCAACCTCATCACTGTTGCTCACCGGCACGGCATCAAGGTGCAGGCGCTCGACACGTCGATCACCTTCAGGGACGAAATGAGGCGGCACGCCCCCGAGCGCTCCAGGAACTTCAAGTACGTGGCCCATACCCTCATCGAGACCGACCAGGCCCACCGGGGCCCGCACAAATGGGTGGCGCTGGTGGAGAGCGGCCACGCCAATACCGCTCGAAACACCCCCGGATTGGCTGAACTGCAAGGTGCCGTCGGGGTACGCGTGGTCGATGCCGGCAGTCAACCCACGCGAGTGCTGCCCGATGAAGGAGAGATCGTTTCCAGTCTCTTGCCCATCGCACGACCAGCCGCTCACCGTACGCCCTCCGGCGCCGGGTACCTTTTTGTGAAGTCAGATCTGCTGCTGGAGATAAGTACCGGCACCCAGCTGATACGGCGGGCGCCCGTCAGCCCTGGCAAGTTGTTGAACAAGCCGAACGAATTCCTGATCGAACGCTCGGAAGATGGGTTTCAGCTGTACCTGGCGAAACATCAGCTGGGGGACTTCAGCGTATACCCTCTGCTTATGGCCGCTGACCAGCTATCGGTCGACATTCCCGACCTGTCCCAGCATTACCACCGGGTGTGGCAAGTCAACAGAGTGAAGTTCAAGGAAATCGACGCACTGGTGTGGGCGCTCAAGACTGCCGGTCTGAAACAGGTCAGCGGCACGACGGTGATTCCCGTCTCGCCGCTGCGCCTGATGGATAGGCACCCACGGCTGACCGATCCTGGCATGTACCTTGTCGAAACCAGACCGGAAGGCACCATGATCTTCCACCGTTCCAAGGACAGCTCGATCAAAAGAACGCTGGTCAGCAAGGATCAGTTGTCGGGCAAGCTTTATATCAATCGACCGGAATGGGGGCTTACCGAGCTTCGTCTGTTTGACAACCTGGACGCCCTCACGGCCCACCTGGATGAAGCGATTGGGTTGAAACGCGTGCAAAGCGCCTGA	MSPKKPVRPKGTDTPGTDPGTITLPDVRLPPHLALPGTGIPPRPHTSTSEPSGSAGASSQKSPPPPVELTDPTSGAPTAAQPSPRSLDRYALNPPEGLPPARADGLRVNGNGSYVDLDDGKVARVVHDPALNAYYAWGLNELSPSGPALYRPTGAVSWRENAFATKLRAYQLGKDQRAVFDRRNEGLSSQSIKERDAALGPIYRTQQNQLKEDTRLFLQNAQRIPRSAAPSLLGVETFSKLIEKIFEHFQGLVMTERFSGTGSKMQLIDAMPALVASGVTTLYLDRLRIDIDQVVLDGFARTGVLDARLKRRLHALDVNDDAVPPTPYTYQNLIIAARENGIRVQALDCAARAQAELSGDDGFRGLFTYHASQVINADRLNRPQGKWVALVGASQYRKRNIALEQEQHATVTFSYPNTPGLAQVQGVMSLHVEDLAHGPNLQIIQDPSLGAADLNLNVGGQGMKPFELPVRYRRVLEQDIRSANLTQDPHSLFATIPVQRGLDVETAQRERFQRARDTISASQYFFEGQPVTRPRPPTPALQPYSPPPAVLESIYRVSNGLVLGAAYNAIGARKFLIDNMPALKEQQVKTLYMENLIIEYDQPRLDAFASSGAMSDPLRANLRRQDELQQMNSSSAHSLVNLITVAHRHGIKVQALDTSITFRDEMRRHAPERSRNFKYVAHTLIETDQAHRGPHKWVALVESGHANTARNTPGLAELQGAVGVRVVDAGSQPTRVLPDEGEIVSSLLPIARPAAHRTPSGAGYLFVKSDLLLEISTGTQLIRRAPVSPGKLLNKPNEFLIERSEDGFQLYLAKHQLGDFSVYPLLMAADQLSVDIPDLSQHYHRVWQVNRVKFKEIDALVWALKTAGLKQVSGTTVIPVSPLRLMDRHPRLTDPGMYLVETRPEGTMIFHRSKDSSIKRTLVSKDQLSGKLYINRPEWGLTELRLFDNLDALTAHLDEAIGLKRVQSA				NA	NA	NA	NA	NA
D1-36_02957	1077	hpd		4-hydroxyphenylpyruvate dioxygenase	ATGGCAGATCTATACGAAAACCCGATGGGCCTGATGGGCTTTGAATTCATCGAATTTGCATCCCCTACGCCCAACACCCTGGAGCCGATCTTCGAGATCATGGGTTTCACCAAGGTAGCGACCCACCGCTCCAAGGACGTACACCTGTATCGCCAGGGCGCGATCAACCTGATCCTCAACAACGAGCCCAATAGCGTGGCGTCCTACTTCGCCGCCGAACACGGTCCGTCGGTTTGCGGCATGGCGTTCCGCGTCAAGGACTCGCAAAAAGCCTACAAGCGCGCCCTGGAACTCGGTGCCCAGCCGATCCATATCGAGACCGGCCCAATGGAGCTGAACCTGCCTGCGATCAAAGGCATCGGCGGCGCGCCGCTGTACCTGATCGACCGTTTTGGCGAAGGCAGCTCGATCTATGACATCGACTTCGTGTTTCTCGAAGGTGTCGACCGCAATCCGGTGGGTGCGGGGCTCAAGATCATCGATCACCTGACCCACAACGTGTATCGCGGGCGCATGGCGTACTGGGCGAACTTCTATGAGAAGTTGTTCAACTTCCGCGAGATCCGCTACTTCGACATCAAGGGCGAATACACCGGTTTGACCTCCAAGGCCATGACCGCGCCGGACGGCATGATCCGCATTCCGCTGAACGAAGAATCCTCGAAGGGCGCCGGCCAGATCGAAGAGTTCCTGATGCAGTTCAATGGCGAGGGCATCCAGCATGTGGCGTTCCTCACCGACGACCTGATCAAGACCTGGGATGGGCTGAAGAAAATCGGCATGCGCTTCATGACCGCGCCGCCGGACACCTACTACGAAATGCTCGAGGGCCGTCTGCCGAATCATGGCGAGCCAGTGGCGGAGCTGCAATCGCGTGGCATCCTGCTCGATGGTGCTTCCGAGCAGGGCGACAAACGCTTGCTGCTGCAGATTTTCTCGGAAACCCTGATGGGCCCGGTGTTCTTCGAATTCATCCAGCGCAAGGGCGACGATGGCTTCGGCGAGGGCAATTTCAAGGCGCTGTTCGAGTCGATCGAGCGTGACCAGGTGCGCCGTGGTGTGCTGACTACTGACTAA	MADLYENPMGLMGFEFIEFASPTPNTLEPIFEIMGFTKVATHRSKDVHLYRQGAINLILNNEPNSVASYFAAEHGPSVCGMAFRVKDSQKAYKRALELGAQPIHIETGPMELNLPAIKGIGGAPLYLIDRFGEGSSIYDIDFVFLEGVDRNPVGAGLKIIDHLTHNVYRGRMAYWANFYEKLFNFREIRYFDIKGEYTGLTSKAMTAPDGMIRIPLNEESSKGAGQIEEFLMQFNGEGIQHVAFLTDDLIKTWDGLKKIGMRFMTAPPDTYYEMLEGRLPNHGEPVAELQSRGILLDGASEQGDKRLLLQIFSETLMGPVFFEFIQRKGDDGFGEGNFKALFESIERDQVRRGVLTTD	PGPT0009480_1459	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0009480-hppD-K00457	NA	NA
D1-36_02958	945	eamA	COG0697	putative amino-acid metabolite efflux pump	ATGAAACCCATGGAACATTCCATGCCGATCGCTTCCGACCTGCAGGTCTACCTGAAGCTCGCCATGGTCACAATGATCTGGGGAGGGACCTTCGTGGCCGGGCGGATCCTCTCCGATGCATTGGCGCCCATGCTGGCCGCCAGCCTGCGCTTTTTGCTGGCGAGTCTCGCGCTGCTGGTGTTTCTCGGGGTGGCCGGCATTCCTCTGGCCAGGCCCAGCCTGAAGCAGGGCTTGCAGCTGGCGATGCTGGGTTTCTTCGGTATTTTCTTCTACAACCTGTGTTTCTTTTATGGTTTGCAATACATCAGTGCGTCGCGGGCCTCGTTGATCGTGGCGTTGAACCCGGCGGTGATCGGGCTGGCCTCCTGGTGGTTATTCAAGGAGCGCCTGAGCCGCTTGAAAGTCGCCGGCATCGTCTTGTGTCTCGGCGGGGCGGGTCTGGTGATCGTGGGTCGTGACCCGGCCTTGCTACAAACAACGGAGCAAGGGTGGGTAGGCGACGTGCTGATTTTCGGCTGCGTGCTCGGCTGGGGTATCTACTCGCTATTTTCCAAAAGCCTGAATGAAAGCCTTGGCCCCTTGCAAACGGTGACCTGGTCGATCCTGCTGGGCACGCTGATGCTCTGGGGAGCGTGCGCGGCCGGGGGAGAGATTCGCTTCGCGGCGCTGACCGCACTGGATGCCGGGCAATGGCTGAGCCTGTTGTACCTTGGCGTACTGGGCTCGGCGCTGGCCTATATCGCCTGGTATGACGGCATCCGCCGGATTGGCGCGACCCGGTCCGGCGTGTTCATCGCGCTCAATCCACTGACGGCGGTCCTGCTGGGCGCCTTGCTATTGGACGAACGGCTTACGGCCTTGATGTGCGGGGGCGGGGGACTGATCCTGATGGGTATTTTCCTGTGCAACAAACCCCTTGCACGCTCGGCCAAAAAGGCGATTTGA	MKPMEHSMPIASDLQVYLKLAMVTMIWGGTFVAGRILSDALAPMLAASLRFLLASLALLVFLGVAGIPLARPSLKQGLQLAMLGFFGIFFYNLCFFYGLQYISASRASLIVALNPAVIGLASWWLFKERLSRLKVAGIVLCLGGAGLVIVGRDPALLQTTEQGWVGDVLIFGCVLGWGIYSLFSKSLNESLGPLQTVTWSILLGTLMLWGACAAGGEIRFAALTALDAGQWLSLLYLGVLGSALAYIAWYDGIRRIGATRSGVFIALNPLTAVLLGALLLDERLTALMCGGGGLILMGIFLCNKPLARSAKKAI				NA	NA	NA	NA	NA
D1-36_02959	873	gltC_2		HTH-type transcriptional regulator GltC	ATGACCCTGACCCAACTCGAAATCTTTTCGCTGGTCGCCGAGCTGCGCGGCTTCACGGCAGCCGCGACACGGTTGGGCATCGGACAATCAGCGGTGTCGCACGCAATCAGATCCTTGGAAAACGAACTGGGCGTCGAGCTGTTCAGGCGTCATCAGACCCTGGTGGAGCCCAGCGACATCGGCCAGCAATTGCTGCTGCGGGCCCGAGCCATGCTCGGCTTGGCCAACACGCTGCGCCAGGAAGCCGCCGATGCCCGAGGCATGCGCCGCGGAACCTTGCGCATCGGCTCGTTCGGCCCGACAGCTTCGATGAAGCTGTTGCCCGCTATCCTGGAACGCTTCAGGACCTTGCACCCGGGGATCGAAGTGCATGTCGACGAGGGGCCGGACCGGCAGGTTCTGCAATGGTTGGACGAACGCCGGATCGACGTCGGTTTCGTGGTCTTGCCGGAGGAACGCTTCGATACGTTCGCGTTGATGACCGACCAGATGGTCGCCCTGCTCCCTGCTGCTCACGCCCTAGGGGATCGAACCCACGTGCAACTCAAGGATTTGTGCGACGACCCTTTCATTCTCACCGAGGCCGGCTCGTCGGAACTGGTCTGGCGACTGTTCAATGCCGCGCGCTTGACACCCAATCTCCGTTATCGCTGCTCGCAACTGCTCAGTACGCTCGACCTCGTCACTCGTGGCAACGCGGTGAGCGTAGTGTCCGAAGGCTCGTTGCCCCTGTTCGATAATCCTGGCTTCGTTGTTCGTCCTCTGTCGCCTCCCATCCCACGACAGATCGGCCTGGCCGTACTCGATAGCCGCCAGGCCTCGCCGGCAACCCTGGCATTTATCGAGCTGGCACAGGCCGTTCAGCCGACTTGA	MTLTQLEIFSLVAELRGFTAAATRLGIGQSAVSHAIRSLENELGVELFRRHQTLVEPSDIGQQLLLRARAMLGLANTLRQEAADARGMRRGTLRIGSFGPTASMKLLPAILERFRTLHPGIEVHVDEGPDRQVLQWLDERRIDVGFVVLPEERFDTFALMTDQMVALLPAAHALGDRTHVQLKDLCDDPFILTEAGSSELVWRLFNAARLTPNLRYRCSQLLSTLDLVTRGNAVSVVSEGSLPLFDNPGFVVRPLSPPIPRQIGLAVLDSRQASPATLAFIELAQAVQPT				NA	NA	NA	NA	NA
D1-36_02960	366			hypothetical protein	TTGTCCAGACTCGCTGAATTTCGCAAAGCCGAAAAGGCCCTTCAAGAGCAGCTCGCGCAGCTGGAAGCTTTGAAGAATGACGCCGGGCTCAAGAAAGAAATCGAATTCGAAGAAAAGCTCCAAGGGCTGATGAAAACCTACGGCAAGGGCCTGCGCGACATCGTTGCGATCCTCGACCCGAGCCCGTCCAAATCAGGCCTGTCGTCGGGCAAGACGCCAAAGACTCGCCGTGCCCGCGTCGTCAAGGTCTATCAGAACCCGCACACGGGCGAACTGATCGAAACCAAGGGCGGCAACCATCGCGGTTTGAAAGCCTGGAAGGAAAAATACGGTGCGAGCACCGTCGATTCCTGGCTGCGCGGTTGA	MSRLAEFRKAEKALQEQLAQLEALKNDAGLKKEIEFEEKLQGLMKTYGKGLRDIVAILDPSPSKSGLSSGKTPKTRRARVVKVYQNPHTGELIETKGGNHRGLKAWKEKYGASTVDSWLRG				NA	NA	NA	NA	NA
D1-36_02961	531			hypothetical protein	ATGTTTCGACCGCTTTCTTCGCTGTTCGTCCTGTTGTTTGCCGTCGCGTCGAGCGTCGATGTGGGGGCGGCCGAACCACAGGTAACCTGGCCCTCGGGATGGATCATCGAATCGCTGCCCGCCGACGCACCGGCCCCGGCCAAAGGTACCAGTCGGCAGCGCGCCACCAAAAGCGACCCTTCGGGCAATGCCGTGATGGTGATGGAGTTGACCGCGTCGGCTGTCGAGCCCGACCATCAAGTAAACTTGCAAGGCGTGCTGTTGGAAATGAGAAAGTCCATTCAGAAGGATTTTTTCCAAGGTGGCTATCAAAGTGTCTGCAATAAGATTCACGCGTCCGTATTGGGCGGCGTAAGCGCTTTGGAAACCACTTGCACGATCACGCAAAACGGGCGTCATGTATTGTCGCAGACCCTCGTCGCGGCACTTAATGAGGGTAATGCCTACGTGTTGTCCTATGCGGGGCAGGCGCAGGTATTTGTAGAAAGCCAGGATGAAATACAGTCGGTACGAAATAGCCTGAAATTATAA	MFRPLSSLFVLLFAVASSVDVGAAEPQVTWPSGWIIESLPADAPAPAKGTSRQRATKSDPSGNAVMVMELTASAVEPDHQVNLQGVLLEMRKSIQKDFFQGGYQSVCNKIHASVLGGVSALETTCTITQNGRHVLSQTLVAALNEGNAYVLSYAGQAQVFVESQDEIQSVRNSLKL				NA	NA	NA	NA	NA
D1-36_02962	522	gloA		Lactoylglutathione lyase	ATGAGCCTGCAAGAACTCAATACTTTCCCTGGCGTCACCGCTCAACCCGATGCCGCAACGGCCAAGTTCGTCTTCAACCACACCATGCTGCGGGTCAAGGACATCACCAAGTCCCTTGATTTCTACACCCGTGTGCTGGGTTTTTCCCTGGTGGAAAAGCGCGACTTTCCAGAGGCCGAATTCAGCCTGTATTTCCTTGCCCTGGTCGACAAGAACCAGATCCCGGCGGACGCGGCGGCGCGTACCGAGTGGATGAAATCGATCCCCGGCATCCTCGAACTGACGCATAACCACGGCACCGAAAACGATCCGGCGTTCACCTACCACAACGGCAACACCGACCCGCGCGGTTTCGGCCACATCTGCATCTCCGTGCCAGACGTGGTCGCCGCCTGCGAGCGCTTCGAAGCGTTGGGCTGTGACTTCCAGAAACGCTTGAGTGATGGCCGCATGAAAAGCCTGGCCTTCATCAAAGACCCGGACGGTTATTGGGTCGAGATCATCCAGCCTGCACCGTTGTAA	MSLQELNTFPGVTAQPDAATAKFVFNHTMLRVKDITKSLDFYTRVLGFSLVEKRDFPEAEFSLYFLALVDKNQIPADAAARTEWMKSIPGILELTHNHGTENDPAFTYHNGNTDPRGFGHICISVPDVVAACERFEALGCDFQKRLSDGRMKSLAFIKDPDGYWVEIIQPAPL	PGPT0013300_1206	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
D1-36_02963	1563	ahpF	COG3634	Alkyl hydroperoxide reductase subunit F	ATGTTGGACGCCAATCTTAAAGCTCAGTTGAAGTCATACCTGGAACGGGTCACCCAGCCGATCGAGATCGTTGCATCCCTCGACGACGGTGCGAAATCCCAGGAAATGCTTGCGTTACTCAAAGACGTTGCCAGTCTTTCCAACCAGATTACCTTGCTCGACAACGGCACCGATGCGCGTAAGCCATCGTTTTCGTTGAACCGTCCGGGAGCCGATATCAGCCTGCGTTTCGCCGGCATTCCCATGGGGCATGAATTCACTTCGCTGGTGCTGGCCCTGCTGCAAGTCGGTGGCCACCCTTCGAAGGCCAGTGTCGAAGTGATCGAACAGATCCGCTCGCTCAAGGGCGATTTCAACTTCGAGACGTATTTTTCGCTGTCGTGCCAGAACTGCCCGGACGTGGTCCAGGCGCTGAACCTGATGGCGGTGCTGAACCCGAACATCAAGCACGTCGCCATCGACGGCGCGCTGTTCCAGGCTGAAGTCGATGAACGCCAGATCATGGCCGTGCCAAGCGTGTATTTGAACGGTGTGAACTTCGGCCAGGGTCGCATGGGCCTGGAAGAGATCCTCGCCAAGATCGACACCAGTGGCATCGAGCGCCAGGCTGAGAAGATCAGCGCCAAGGATGCCTTTGACGTGTTGGTGGTGGGCGGTGGCCCGGCCGGTGCCTCGGCGGCCATCTATGCGGCACGAAAAGGCATCCGTACCGGTGTGGCGGCCGAGCGTTTCGGCGGCCAGGTGCTCGACACCATGGCCATCGAGAACTTCATCTCGGTCCAGGAAACCGAAGGGCCGAAACTGGCTGTCGCCCTGGAAGAACACGTCAAGCAATACGACGTCGACATCATGAACCTGCAACGCGCCGACGCACTGGTGCCAGGCACGGCCGGTGGGCTGCATGAAGTCAAGTTCGCCAGCGGCGCGAGCCTCAAGGCCAAGACCGTGATCCTGGCGACCGGTGCCCGCTGGCGCGAAATGAACGTGCCGGGCGAGCAGCAATACCGCAACAAAGGCGTGGCGTACTGCCCGCATTGTGACGGTCCGCTGTTCAAGGGCAAGCGGGTCGCGGTAATCGGCGGCGGTAACTCCGGCGTCGAAGCGGCCATCGACCTGGCGGGTATCGTGTCCCACGTCACGTTGCTGGAGTTCGATGTGCAATTGCGTGCCGACGCGGTGTTGCAGCGCAAACTGCACAGCCTGCCGAACGTGACGGTGATCACCAACGCCCAGACCACCGAAGTGACGGGTGACGGGCAGAAGGTCAACGGCCTGCGCTACAAGGACCGTCCGAGCGGTGAAGTGCGCGACGTGGCGCTGGAAGGGATCTTCGTGCAGATCGGCCTGTTGCCCAACACCGATTGGCTCAAGGGCACCGTCGAGCTGTCGCCGCGTGGCGAGATCATTGTCGATGCTCGTGGCGAAACGTCGATCCCGGGTGTGTTCGCTGCCGGTGACGTGACCACCGTGCCGTACAAGCAAATCGTGATCGCCGTGGGCGAGGGCGCCAAGGCTTCGCTGAGCGCCTTCGATCACCTGATCCGCACCTCCGCACCGGCCTGA	MLDANLKAQLKSYLERVTQPIEIVASLDDGAKSQEMLALLKDVASLSNQITLLDNGTDARKPSFSLNRPGADISLRFAGIPMGHEFTSLVLALLQVGGHPSKASVEVIEQIRSLKGDFNFETYFSLSCQNCPDVVQALNLMAVLNPNIKHVAIDGALFQAEVDERQIMAVPSVYLNGVNFGQGRMGLEEILAKIDTSGIERQAEKISAKDAFDVLVVGGGPAGASAAIYAARKGIRTGVAAERFGGQVLDTMAIENFISVQETEGPKLAVALEEHVKQYDVDIMNLQRADALVPGTAGGLHEVKFASGASLKAKTVILATGARWREMNVPGEQQYRNKGVAYCPHCDGPLFKGKRVAVIGGGNSGVEAAIDLAGIVSHVTLLEFDVQLRADAVLQRKLHSLPNVTVITNAQTTEVTGDGQKVNGLRYKDRPSGEVRDVALEGIFVQIGLLPNTDWLKGTVELSPRGEIIVDARGETSIPGVFAAGDVTTVPYKQIVIAVGEGAKASLSAFDHLIRTSAPA	PGPT0013150_966	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013150-ahpF-K03387	NA	NA
D1-36_02964	564	ahpC_2	COG0450	Alkyl hydroperoxide reductase C	ATGCCTATCATCAACAGCCAAGTTAAACCGTTCAAAGCCACCGCTTTCAAAAACGGCGCTTTCGTCGAAGTATCGGACGCCGACCTGAAAGGCAAGTGGTCTGTCGTGTTCTTCTACCCAGCTGACTTCACCTTCGTTTGCCCAACCGAGCTGGAAGACCTGGCCGACAACTACGCCGAGTTCCAGAAGCTGGGCGTCGAAATCTACAGCGTGTCCACCGACACTCATTTTGCCCACGCCGCCTGGCACAACACTTCGCCAGCCATCGGCAAGATCCAGTACACCATGATCGGCGACCCGACCCTGGCCATCTCCCGCAACTTCGACGTGCTGATCGAAGAAGCTGGCCTGGCTGACCGCGGTACTTTCGTGATCAACCCTGAAGGTCAGATCAAGATCGTTGAAATCAACGACGGTGGTGTAGGCCGTGACGCTTCCGAGCTGCTGCGCAAGATCAAGGCAGCCCAGTACGTTGCCGCTCACCCAGGTGAAGTCTGCCCAGCCAAGTGGAAAGAAGGCGAGGCCACCCTGGCTCCGTCCCTGGACCTGGTCGGCAAGATCTAA	MPIINSQVKPFKATAFKNGAFVEVSDADLKGKWSVVFFYPADFTFVCPTELEDLADNYAEFQKLGVEIYSVSTDTHFAHAAWHNTSPAIGKIQYTMIGDPTLAISRNFDVLIEEAGLADRGTFVINPEGQIKIVEINDGGVGRDASELLRKIKAAQYVAAHPGEVCPAKWKEGEATLAPSLDLVGKI	PGPT0003260_474	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0003260-ahpC-K24119	NA	NA
D1-36_02965	1356	gor	COG1249	Glutathione reductase	ATGGCCTACGATTTTGATCTGTATGTGATTGGCGCCGGTTCCGGCGGTGTGCGGGCGGCGAGGTTTGCCGCGGGTTTCGGCGCGAAAGTGGGCGTGGCGGAAAGCCGCTACCTGGGGGGGACCTGCGTCAACGTCGGCTGTGTGCCGAAAAAACTGCTGGTCTACGGCGCGCATTACGCCGAGGATTTCGAACAAGCGTCGGCCTACGGCTGGACGGCGGGCGAGGCGAGTTTCGACTGGGCCACGCTGATCGCCAACAAGGATCGTGAGATCAATCGCCTCAACGGCATCTACCGCAACCTGCTGGTCAACAGCGGTGTGACCTTGCATGAAGGCCACGCCAGGATTACCAGCCCTCATGAAGTCGAGATCAACGGCGAGCGCTACACCGCCAGGCACATCATGATCGCCACCGGCGGCTGGCCGGTGATTCCGGATATTCCCGGGAGCGAGCACGCCATCGGTTCCAACGAAGCGTTTTTTCTCAAGACGCTGCCCAAGCGCATGCTGGTGGTGGGAGGCGGCTACATCGCCGTGGAATTCGCCGGGATCTTCCACGGCATGGGCGCGCAGACATCCTTGCTCTATCGCGGCGACCTGTTCTTGCGCGGTTTTGATGGCGCGGTGCGCAAGCATCTGGCCGAAGAGCTGCAGCGTCGTGGCTTGGACCTGCAATTCAACGCAGACATCCAACGCATCGACAAAGAAGCCGACGGCAGCCTGAAAGTGACGCTCAAGGACGGTCGCACGTTGTCGACCGATTGTGTGTTCTACGCCACCGGCCGCCGGCCGATGCTGGACAATCTTGGGCTGGAGAACACGGGCGTCAAGCTGGACGAGAAAGGCTTCGTGCAGGTCAACGAAAAATACGAGACGGCTGAACCGTCGATCCTGGCCATTGGCGATGTGATCGGCCGTGTGCAGCTCACGCCTGTCGCCCTGGCCGAAGGCATGGCGGTGGCGCGGCGCCTGTTCAAGCCTGAGCAATACCGCCTGGTCGATTATCGAATGATCCCCACGGCGGTGTTCAGCCTGCCGAACATCGGCACGGTAGGTTTGACTGAAGAACAGGCTCGGGAAGCCGGCCATGAGGTGCAGATTTTCGAAAGCCGTTTCCGGCCGATGAAGCTGACCCTCACTGACTGCCAGGAACGCACCCTGATGAAATTGGTGGTCGATGCCAAGACCGATAAGGTCCTGGGCTGCCACATGGTCGGGCCGGACGCCGGTGAAATTATCCAAGGGCTGGCGATTGCCCTCAAGGCCGGTGCTACCAAGCGCGATTTCGATGAAACCATCGGCGTGCATCCAACCGCAGCCGAAGAATTCGTCACCATGCGTACGCCTACCGCCTGA	MAYDFDLYVIGAGSGGVRAARFAAGFGAKVGVAESRYLGGTCVNVGCVPKKLLVYGAHYAEDFEQASAYGWTAGEASFDWATLIANKDREINRLNGIYRNLLVNSGVTLHEGHARITSPHEVEINGERYTARHIMIATGGWPVIPDIPGSEHAIGSNEAFFLKTLPKRMLVVGGGYIAVEFAGIFHGMGAQTSLLYRGDLFLRGFDGAVRKHLAEELQRRGLDLQFNADIQRIDKEADGSLKVTLKDGRTLSTDCVFYATGRRPMLDNLGLENTGVKLDEKGFVQVNEKYETAEPSILAIGDVIGRVQLTPVALAEGMAVARRLFKPEQYRLVDYRMIPTAVFSLPNIGTVGLTEEQAREAGHEVQIFESRFRPMKLTLTDCQERTLMKLVVDAKTDKVLGCHMVGPDAGEIIQGLAIALKAGATKRDFDETIGVHPTAAEEFVTMRTPTA	PGPT0013175_1850	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013175-gor-K00383	NA	NA
D1-36_02966	840	gtaB	COG1210	UTP--glucose-1-phosphate uridylyltransferase	ATGATCAAGAAATGCTTGTTCCCAGCAGCCGGTTACGGTACTCGCTTCCTGCCAGCGACTAAAGCCATGCCCAAAGAAATGCTGCCGGTGGTGAACAAGCCACTGATCCAGTACGGCGTCGAAGAAGCCCTGGATGCGGGCCTGACGGAAATCTCCATCGTCACCGGCCGTGGCAAGCGCGCCCTGGAAGACCATTTCGACATCAGTTACGAGTTGGAAAACCAGATCAAGGGCACCGACAAGGAAAAATACCTGGTCGGCATTCGCAAGTTGCTGGACGAGTGCTCGTTCTCCTACACCCGCCAGACCGAAATGAAAGGTTTGGGCCATGCGATCCTGACCGGCCGCCCGCTGATCGGTGACGAACCGTTCGCCGTGGTTCTGGCGGACGACTTGTGCGTGAACCTGGAAGGCGACGGCGTTTTGACCCAGATGGTCAAGCTGTACAAGCAATTCCGTTGCTCCATCGTGGCGATCCAGGAAGTGGATCCGCAGGAAACCAACAAGTACGGTGTCATCGCCGGTGAAATGATCCGCGAAGACATCTACCGCGTTCACAGCATGGTTGAAAAACCAAAACCTGAAGATGCGCCGTCGAACCTGGCGATCATCGGCCGCTACATCCTGACTCCGGACATCTTCGACCTGATCGAACAGACCGAGCCAGGCAAGGGCGGTGAGATCCAGATCACCGACGCCCTGATGAAACAGGCCCAGAACGGCTGCGTCATGGCCTACAAGTTCAAGGGCAAGCGCTTCGACTGCGGTGGCGCCGAAGGTTACATCGACGCAACCAACTTCTGCTTCGAGAACTTCTACAAGACCGGCAAGGCTTACTGA	MIKKCLFPAAGYGTRFLPATKAMPKEMLPVVNKPLIQYGVEEALDAGLTEISIVTGRGKRALEDHFDISYELENQIKGTDKEKYLVGIRKLLDECSFSYTRQTEMKGLGHAILTGRPLIGDEPFAVVLADDLCVNLEGDGVLTQMVKLYKQFRCSIVAIQEVDPQETNKYGVIAGEMIREDIYRVHSMVEKPKPEDAPSNLAIIGRYILTPDIFDLIEQTEPGKGGEIQITDALMKQAQNGCVMAYKFKGKRFDCGGAEGYIDATNFCFENFYKTGKAY	PGPT0014875_5421	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
D1-36_02967	216			hypothetical protein	ATGTCGGCAACACAGAACGCAAACGGTTATTCGGTCAGCCAGGACAAGGACGGCCAGTGGTGGATTATCAACTACCACGGCGAGCAGGTCGCCGGTCCCTTGCCCACCAAGACAATGGCGGTGGAAGTCGCCGCGGTCTTTCAGGACGAACGTTCCGCCCCGGCGCCCCGGGAACGTGAACAGGCGCCAGCGCGCAATACTCGCCGCAAGAAATAA	MSATQNANGYSVSQDKDGQWWIINYHGEQVAGPLPTKTMAVEVAAVFQDERSAPAPREREQAPARNTRRKK				NA	NA	NA	NA	NA
D1-36_02968	336			hypothetical protein	ATGGCCATTCGCTATAATCTCGCGCCATTCCTCCCCATCCTGATGACAACCCCCATGAAGACAATCCTGGCGCTGTTTGCAGTTCTGGCCCTGGCAGGCTGTGCCTCAGCAGAAAAAACCTATCTGGATACCGGTGAACAAGGCTTGGCCATCGACTGTTCAGGCGAAGCCAATTCCTGGGCGACGTGTTACGAGAAAGCGGAAGCTTCCTGCGCCGGTACGGGCTACCGCATCGTCGGCACGGATGGCACGCCACAGGCCAACGACAGCGAAAAGACCCTCGGTGTGGACGTGGGCAACTTCACCAGCCGCAGCGTGGTGGTCGTCTGTAAATAA	MAIRYNLAPFLPILMTTPMKTILALFAVLALAGCASAEKTYLDTGEQGLAIDCSGEANSWATCYEKAEASCAGTGYRIVGTDGTPQANDSEKTLGVDVGNFTSRSVVVVCK				NA	NA	NA	NA	NA
D1-36_02969	351			hypothetical protein	ATGAAGCGCAGCGTGTGGGTATTGGCCTTGGCCTTGGGTGGATGTGCATCGGTATCGGACATCAACCAGACGCCGCCCACCATGAGCGTCATCTCCGGCAAGAAACCTCATGAATACGCCAAGTGCGTTGCCGACAAGCTTCTGGAGAGCCGTGGCCCGCTGCAAATGGAGCCACATAAGAATGGCGTGCGGGTGATCGTCCCCGGCAAGCTGTCGGCGCTACCGGCCGCGGTGTTCGACATCGACGAACGCTCCAGCGGCTCCAGCATCAAGCTGCACGAAAGCCTCTCCAACGTACCGGTGCGCCCGGGCGACGTTCAGGATGCGGCCAACGCTTGTATTTCCGGTTAA	MKRSVWVLALALGGCASVSDINQTPPTMSVISGKKPHEYAKCVADKLLESRGPLQMEPHKNGVRVIVPGKLSALPAAVFDIDERSSGSSIKLHESLSNVPVRPGDVQDAANACISG				NA	NA	NA	NA	NA
D1-36_02970	303			hypothetical protein	ATGAAATTCATCCACCAGCGCGAGCACCTCAACGAAGACGATATCGTCGTGATCGAATGCTCCCAAATGTGCAACATCCGTTTGATGAACGACGCCAATTTCCGTAGCTTCAAGAATGGTGGCCGCCACACCTATCACGGCGGCGCGTTCGACACGTTCCCGGCCAGGATCACGGCCCCCAGCACGGGCTTCTGGAATATCACCATCGACACCGTCAACCGTCGCGCCATCAGCGTTACCCGCAAGCCGACCCTGACCCACAAGATCAAGATCATCCGGCGCTCCAGTTCGAAGCTGAGTTGA	MKFIHQREHLNEDDIVVIECSQMCNIRLMNDANFRSFKNGGRHTYHGGAFDTFPARITAPSTGFWNITIDTVNRRAISVTRKPTLTHKIKIIRRSSSKLS				NA	NA	NA	NA	NA
D1-36_02971	171			hypothetical protein	GTGGCCCAGACAACCAAATACGTTATCAAGTACAAACTCAACGGCGAGCGCCGCTTCGAGTTCGCGCAACTGCAGACCGGCACCGAGGAAGAAGCGCTGGTCGCGCTGCAAAAGTTGCATGGCGAGACCGATGATCAGATCACCGATCTCAAGGTCAGCAAGGCACTCTGA	MAQTTKYVIKYKLNGERRFEFAQLQTGTEEEALVALQKLHGETDDQITDLKVSKAL				NA	NA	NA	NA	NA
D1-36_02972	720			hypothetical protein	ATGTCCTCAACGCCTCTATTGACCCAACACCTCCCCCACCTCGATTGGCCCACCATGGTGGATAGCCTCGATGAGGACGGCTGCGCGATCATTCGCAACCTGCTGCCGACCGTACAATGCCGGCAGTTGAGCGGTTTGTATGAGGACGCCGGGGTTTTTCGTTCGCGGGTAATAATGGGGCGCCACGGATTCGGGCGCGGTGAGTACCAGTATTTCGCTTATCCGCTGCCTGAGATCGTCCAGCAATTGCGCCAGTCGCTCTATCCGATGCTGGTCCCAGTGGCTAATCGCTGGAACGATTGCATGGGCCTGGAAACGCGATACCCCGATAAGCACACGGATTTCATCCGCCGTTGCCATGCCGCCGGGCAGCAGCGTCCCACACCGTTGCTCCTCCAATACGGCCCGCAGGATTACAACTGCCTGCACCAGGACCTTTATGGCGAACAGGTGTTCCCGTTACAGGTAGCCATCCTGCTGTCGGAACCGGGAGACGACTTTACCGGGGGCGAGTTCGTCCTCACCGAGCAACGCCCGCGCATGCAGTCACGCCCCCAAGTCATCGACTTGAAACAAGGCGACGCCGTGGTGTTCGCCGTACACCAGCGGCCGGTCAAAGGCGTTCGCGGGTATTATCGGGTTAACTTGCGCCATGGCGTCAGCCGTGTACACAGCGGTCGCCGGCATACACTCGGGATCATTTTTCATGATGCGCAATGA	MSSTPLLTQHLPHLDWPTMVDSLDEDGCAIIRNLLPTVQCRQLSGLYEDAGVFRSRVIMGRHGFGRGEYQYFAYPLPEIVQQLRQSLYPMLVPVANRWNDCMGLETRYPDKHTDFIRRCHAAGQQRPTPLLLQYGPQDYNCLHQDLYGEQVFPLQVAILLSEPGDDFTGGEFVLTEQRPRMQSRPQVIDLKQGDAVVFAVHQRPVKGVRGYYRVNLRHGVSRVHSGRRHTLGIIFHDAQ				NA	NA	NA	NA	NA
D1-36_02973	681	alkB	COG3145	Alpha-ketoglutarate-dependent dioxygenase AlkB	ATGATGCGCAATGACGACACCCCCGTCACTCTCGACCTGTTCGCCGACCAGGCGCCCACCACGCCTGGCCAGGTCGAACAGATCGGCCAGCAATCCTTCGTGCTACGCGGGTTTGCCCTGCCCTGGCTCGACCGTTTGTTGCCAGCGCTGGCAACAGTCTTGCAGGCCGCACCGTTCCGGCAGATGGTCACGCCCGGTGGCTTTACCATGTCGGTGGCCCTGACCAGTTGCGGCGCACTCGGCTGGACCACCGACCGCAGCGGCTATCGCTACACCGCCCATGATCCACAGACAGGCGATCCCTGGCCCGCCATGCCGTCAGTGTTTCGCGAGCTGGCCCAGGCCGCCGCCCGGCAAGCGGGCTTCGAGCACTTCGAGCCCGATGCCTGCCTGATCAACCGCTACGTGCCCGGCGCGCGGATGTCGCTGCACCAGGACAAGAACGAGCGCTCCCTGACGGCCCCCGTCGTCTCGCTTTCCCTTGGCCTGCCGGCGACATTCCAGTTTGGTGGATTCGAGCGCAGCGACAAAAGCCAGCGCATTCCGTTGTTTCATGGCGACATCGCAATCTGGGGCGGCGTGGATCGGTTGCGCTACCACGGCGTGCTGCCGCTCAAGCCGGGACAACATACACGTCTGGGCGCCCAACGCATCAACATGACGTTCCGCATGGCCGGATAA	MMRNDDTPVTLDLFADQAPTTPGQVEQIGQQSFVLRGFALPWLDRLLPALATVLQAAPFRQMVTPGGFTMSVALTSCGALGWTTDRSGYRYTAHDPQTGDPWPAMPSVFRELAQAAARQAGFEHFEPDACLINRYVPGARMSLHQDKNERSLTAPVVSLSLGLPATFQFGGFERSDKSQRIPLFHGDIAIWGGVDRLRYHGVLPLKPGQHTRLGAQRINMTFRMAG				NA	NA	NA	NA	NA
D1-36_02974	1074	ada_2	COG0350	Bifunctional transcriptional activator/DNA repair enzyme Ada	ATGAACAGCACTTCAAGTACGCTCGCCCCTGATCAGGACCCTCGCTGGGCCGCCGTACTCGCCCGGGATCCGCGCGCCGATGGCACCTTTGTCTACGGCGTGAAGACCACCGGCATCTATTGCCACCCCAGCAGCCTGTCGCGCCTGCCCAACCCGCGCAATGTCGAATTCTTCGACACGCCGGAACAGGCCCAGGCAGCCGGTTATCGTCCCAGCAAACGGATGGCCAGGGACCAGACCCAGATCGCCGCGCAACAAGCGGCGCGGGTGGCGGCGGCCTGCCGGCAGATCGAGGCGGCCGAGCAACTGCCAGGCTTGACTGAACTGGCACAAAGCGCCGGCCTGAGTCCCTTCCATTTTCATCGCGTCTTCAAGTCGATCACCGGCCTGACCCCCAAGGCCTACGGCGCCGCCCATCGCTCGCGCAAAGTGCGCGAACGCCTGGCCGACGCCGGAACGGTGACCGAAGCGCTTTACGACGCAGGCTTCGGTTCCAACAGCCGCTTCTATGAAGCCGCCGACAAAGTCCTGGGTATGAAACCTGGCGAGTATCGCGCCGCCGGGCTGAACACCGATATTCGCTTCGCCCTCGGCCAGTGTTCCCTGGGAGCGATCCTGGTGGCGCAAAGCGAGCGTGGCGTGTGCGCGATCCTGCTGGGGGACGACCCGGATGCGCTGCTGCGTGACCTGCAAGACAAGTTCCGCCGCGCCAACCTCATCGGTGCCGACCGGGAATTCGAGCAACTGATTGCCCAAGTGGTGGGCTTCATCGAGGCACCGGCGCTGGGCCTGGACCTGCCACTGGACTTGCGTGGCACGGCGTTCCAGGAACGGGTCTGGCAAGCCCTGCGAGAGATCGCGCCCGGCAGCACCGCCAGCTATGCCGAAATCGCCCAGCGCATCGGCATGCCCAAAGCGGTGCGCGCGGTGGCCCAGGCCTGCGGCGCCAATAGCCTCGCCGTGGCGATCCCCTGCCATCGAGTGGTGCGCAGCGACGGCAACCTGTCGGGCTACCGCTGGGGCGTTGAGCGCAAGCGTCAGCTGTTGGCGCTGGAACGCTCGCCCGAGGATTGA	MNSTSSTLAPDQDPRWAAVLARDPRADGTFVYGVKTTGIYCHPSSLSRLPNPRNVEFFDTPEQAQAAGYRPSKRMARDQTQIAAQQAARVAAACRQIEAAEQLPGLTELAQSAGLSPFHFHRVFKSITGLTPKAYGAAHRSRKVRERLADAGTVTEALYDAGFGSNSRFYEAADKVLGMKPGEYRAAGLNTDIRFALGQCSLGAILVAQSERGVCAILLGDDPDALLRDLQDKFRRANLIGADREFEQLIAQVVGFIEAPALGLDLPLDLRGTAFQERVWQALREIAPGSTASYAEIAQRIGMPKAVRAVAQACGANSLAVAIPCHRVVRSDGNLSGYRWGVERKRQLLALERSPED	PGPT0002325_1	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-ORGANIC_ACID_METABOLISM	P-SOLUBILISATION-TARTARIC_ACID_TRANSPORT,PGPT0002325-ttuB-K13021	NA	NA
D1-36_02975	489			hypothetical protein	ATGGACGTGAAACTCAAGACCGTCGAACCTTTCACGGTCGCCGGTTTGCAGGTACGCACCCGCAACGCCGAGGAGCAACAGGGCGATACGGCGAAAATCGGCCCGATGTGGCAGCAATTCTTCACCGAAGGGTTGTTCGAGCGAGTTCCGGCGCGGCAGTCGGAGTCGTTCGTCTACGGTGTGTACTCCGGCTACGAGTCCGATGCCACCGGCTACTTCAATGTGACGGCGGGCGTACAGGTCGACGCCACGAGCGCAGGCTACCCCGCCGTGGAAGTCGAAGGCGGGGATTACCTGATGTTCTCGGCCAAGGGCGTAATGCCCGATTGCGTGATCCAGACCTGGGGGCTGATCTGGGCGTACTTCGCCGACAACCCGCAGGCCGTGCGCCGGTTCAGCACCGATTTCGAGGTCTATACCGCACCCGACTCGGTGGCGATCTATATCGGTGTTCAATCCTCGGGCGAGCGTTCCAGCGCCAACAGCTGA	MDVKLKTVEPFTVAGLQVRTRNAEEQQGDTAKIGPMWQQFFTEGLFERVPARQSESFVYGVYSGYESDATGYFNVTAGVQVDATSAGYPAVEVEGGDYLMFSAKGVMPDCVIQTWGLIWAYFADNPQAVRRFSTDFEVYTAPDSVAIYIGVQSSGERSSANS				NA	NA	NA	NA	NA
D1-36_02976	1062	pnoA		Nitronate monooxygenase	ATGAGTCAGTGGCCAGACACCCGCATTCTTGACCTGCTCGGCATCGAGCATCCCATCATCCAGGGGCCGCTGGCCGGGGTGACCGGTCCGGCGATGGTGGTCGCCACTTGCAATGCCGGCGGACTGGGCTCGATGCCCGCGGCGATGCTCGACGTGGAGCAACTGCGCCAGGCACTGACGACCATCGCCGAGCAGACCGACAAGCCGTTCAACGTCAATTTTTTCAGTCATCAGCCGCCCGCTTTCGACGAACAACGGGCCGAGGCCTGGAAACAGCGCCTCAAGCCTTATTACGAAGAACTGGGGGTGGATTTCGACGCGCCGACGCCCGTATCCAATCGCACGCCGTTCGACGATACGGCCTGCCGGGTGTTGGAGAAGATGCGACCCAAGGTGGTCAGCTTCCACTTCGGCCTGCCGGAAAAATCGTTGCTCGATCGGGTCAAGGCCACCGGGGCGAAAGTCCTCTCTTCGGCCACCACCGTGGAAGAAGCGATCTGGCTCGAGCGACACGGCTGCGACGCGATCATTGCCATGGGTTATGAAGCCGGCGGTCATCGAGGGATGTTCCTCAGCGACGACCTCGATACTCAGGTGGGCCTGTTCGCCTTGCTGCCGCAAGTCGTGGACGCGGTGACCGTGCCGGTGATCGCCGCCGGCGGTATCGGCGATGCGCGGGGCATCGTCGCCGCATTTGCCCTGGGTGCGTCGGCGGTGCAGCTGGGCAGCGCCTACCTGTTTACCCCGGAAGCGAAGATCACGCCTTCCCATCACCGGGCGTTGCGCACGGCCAAGGAAAGCCAGACTGCAATCACCAACCTGTTCACCGGTCGGCCGGCCCGAGGGATCGTCAACCGGGTGATGCGCGAGGTCGGCCCGATGAGCCCACTGGCGCCAGCATTTCCGCTGGCGGGCGGCGCGTTGATGCCCCTTCGCGCGAAGGATGAAGCCGACTTCGCCAACCTTTGGGCCGGCCAGGCGTTTCCCCTGGGGCGGGAGCTGCCCAGTGGCGAGCTGACGCGGCGCCTGGCTGAGGAGGCTCTGGCTCGGTTCAAGGGCTGA	MSQWPDTRILDLLGIEHPIIQGPLAGVTGPAMVVATCNAGGLGSMPAAMLDVEQLRQALTTIAEQTDKPFNVNFFSHQPPAFDEQRAEAWKQRLKPYYEELGVDFDAPTPVSNRTPFDDTACRVLEKMRPKVVSFHFGLPEKSLLDRVKATGAKVLSSATTVEEAIWLERHGCDAIIAMGYEAGGHRGMFLSDDLDTQVGLFALLPQVVDAVTVPVIAAGGIGDARGIVAAFALGASAVQLGSAYLFTPEAKITPSHHRALRTAKESQTAITNLFTGRPARGIVNRVMREVGPMSPLAPAFPLAGGALMPLRAKDEADFANLWAGQAFPLGRELPSGELTRRLAEEALARFKG	PGPT0006800_1742	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
D1-36_02977	750	modA	COG0725	Molybdate-binding protein ModA	ATGCGCCTGACCCCGCTCGTCCTGCTGCTTGCTACTTGCTTTTGTATCAACGCCGCCCAAGCCGATGAAGTGCAAGTCGCCGTCGCGTCCAACTTCACCGCCCCGATCCAGGCCATCGCCGCCAGCTTCGAGAAGGACACCGGGCATAAACTGATTGCCGCCTACGGCGCGACCGGGCAGTTCTATACCCAGATCAAGAACGGCGCGCCATTCGAGGTGTTCCTGGCTGCCGACGACACCACGCCGGCGAGGCTGGACAGCGAAGGCGACACCGTGCAGGGCTCGCGCTTTACCTACGCCATCGGTACGTTGGCGTTGTGGTCGGCCAAGACCGATTACGTCGACGCCAAGGGGCAAGTCCTGCGGGACAATGCCTTCCAACACCTGTCCATTGCCAATCCGAAAACCGCGCCGTATGGCCTGGCCGCCACACAGGTGCTGGAAAAGCTGGGGCTCACCCATCAGGCCAAGGGCAAGATCGTCGAGGGCCAGAACATCACCCAGGCCTATCAGTTCGTTTCCACTGGCAATGCCGAACTGGGTTTCGTGGCCCTGTCCCAGGTGTTCAAGGACGGCAAGCTGACAAGCGGTTCCGCGTGGGTTGTCCCGGGCGAACTGCATGATCCGATCAAGCAGGACGCGGTGATCCTGGCAAAGGGACGGGGCAACCCCGCCGCCCAGGCATTGATGAGCTATCTGAAGGGCCCGAAAGCCGCCGCCATCATCCAGGCCTACGGTTACCAACGCTGA	MRLTPLVLLLATCFCINAAQADEVQVAVASNFTAPIQAIAASFEKDTGHKLIAAYGATGQFYTQIKNGAPFEVFLAADDTTPARLDSEGDTVQGSRFTYAIGTLALWSAKTDYVDAKGQVLRDNAFQHLSIANPKTAPYGLAATQVLEKLGLTHQAKGKIVEGQNITQAYQFVSTGNAELGFVALSQVFKDGKLTSGSAWVVPGELHDPIKQDAVILAKGRGNPAAQALMSYLKGPKAAAIIQAYGYQR	PGPT0008435_3649	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008435-modA-K02020	NA	NA
D1-36_02978	681	modB	COG4149	Molybdenum transport system permease protein ModB	ATGCCACTGACCGACGCCGATTACGCCGCCATCTGGCTGACCCTGAAACTGGCGTCGCTGACCACGGTGATCCTGCTTTTCATCGGCACGCCCATCGCCCTGTGGCTGTCGCGCACCCAATCGCGGCTTCGCGGTCCGGTGGGTGCGGTGGTCGCCCTGCCGCTGGTACTGCCGCCTACCGTGATTGGCTTCTATCTGCTGCTGGCGCTGGGACCCAACGGCTGGATCGGCCAATTCACCCAAGCCCTCGGGCTGGGCACCCTCACCTTCAGCTTTACCGGACTGGTGATTGGCTCGGTGATCTACTCAATGCCCTTCGTGGTGCAGCCGCTACAAAACGCCTTTTCCGCTATCGGCAGTCGTCCTTTGGAAGTCGCCGCCACCCTGCGGGCCGGGCCGTGGGATACCTTTTTCAGCGTCATCCTGCCTTTGGCCCGACCGGGTTTCATCACCGCCGCAATCCTCGGCTTCGCCCACACGGTGGGTGAGTTTGGCGTGGTGTTGATGATCGGCGGCAACATCCCCGAGAAGACCCGGGTGGTGTCGGTGCAAATCTACGACCACGTCGAAGCCCTTGAGTACAGCCAGGCCCATTGGCTGGCGGCGGCGATGCTGGTGTTCTCTTTCCTGGTGCTGCTGGCGCTGTACTCTAGCCGCCGAACTCGCGCCGGTTGGAGCTGA	MPLTDADYAAIWLTLKLASLTTVILLFIGTPIALWLSRTQSRLRGPVGAVVALPLVLPPTVIGFYLLLALGPNGWIGQFTQALGLGTLTFSFTGLVIGSVIYSMPFVVQPLQNAFSAIGSRPLEVAATLRAGPWDTFFSVILPLARPGFITAAILGFAHTVGEFGVVLMIGGNIPEKTRVVSVQIYDHVEALEYSQAHWLAAAMLVFSFLVLLALYSSRRTRAGWS	PGPT0008440_2403	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008440-modB-K02018	NA	NA
D1-36_02979	1080	btuD_6		Vitamin B12 import ATP-binding protein BtuD	ATGATCGAGGCAAGGTTTCAACTCGACCGTGGCGATTTTTCCCTGGACCTGGACCTGCAATTGCCCGGCCGTGGGGTGACGGCGTTGTACGGCGAGTCCGGATCCGGCAAGACCACCTGCCTGCGCTGCATGGCCGGGCTGGACCGACCGACGCGGGGTTTCGTCGAGGTCAATGGCGAGGTCTGGCAAGACAGTGAGCATGAGGTGTTCGTCCCGCCTCACAAGCGAGCGCTGGGGTATGTTTTCCAGGAGGCGAGCCTGTTCGATCACTTGTCGGTGCGCGACAATCTTCTGTTCGGCCTCAAGCGCGTTGCCGCGGCGCAACGGCGCGTGGACATCAACCACGCGACGGAACTGCTCGGCATCGGCCATCTCCTCGACAGGCAACCTCACAACCTTTCCGGTGGCGAACGCCAGCGCGTCGGCATCGCCCGCGCCTTGCTGACCAGCCCGCGCCTGCTGCTGATGGACGAGCCTCTGGCCGCCCTCGATACACGCCGCAAAAACGAGATCCTGCCTTACCTGCAACGGCTCCACGATGAGCTGGATATCCCGGTGCTGTACGTCAGCCATTCCCAGGACGAAGTGGCGCGGCTGGCCGATCATATCGTGGTGCTGGACGCTGGGCGGGCCTTGGCCAGCGGGCCAATCGGCGAGACCCTCGCCCGGCTCGACCTGCCATTGGCGTTGGGGGATGACGCAGGCGTGGTGATCAACGGAAAAGTCGCCGGCTACGACCCGGGCTATCAGTTGCTCACCCTGACCCTGCCCGACAGCCAGTTGAACGTGCGGGTTGCCCACACGGCGCTGGCGGTCGGGCAGCCGCTGCGCTTCAAGGTCCAGGCCCGGGACGTCAGCCTGAGCCTGGCGAACGACGGGCAGACCAGCATCCTCAATCGCCTGCCAGTGGCGGTCGTCAGCGAACTGGCCGGCGACAATGCCGCCCATGTGCTGATCCGCGTGGAGGCCGCCGGCACACCGCTGCTGGCGCGGATCACTCGGTATTCGCGCGATCAGTTGAAGCTGCATCCCGGACAGATCGTGTGGGCGCAGATCAAGGCGGTGGCGGTGTTGGCGTAG	MIEARFQLDRGDFSLDLDLQLPGRGVTALYGESGSGKTTCLRCMAGLDRPTRGFVEVNGEVWQDSEHEVFVPPHKRALGYVFQEASLFDHLSVRDNLLFGLKRVAAAQRRVDINHATELLGIGHLLDRQPHNLSGGERQRVGIARALLTSPRLLLMDEPLAALDTRRKNEILPYLQRLHDELDIPVLYVSHSQDEVARLADHIVVLDAGRALASGPIGETLARLDLPLALGDDAGVVINGKVAGYDPGYQLLTLTLPDSQLNVRVAHTALAVGQPLRFKVQARDVSLSLANDGQTSILNRLPVAVVSELAGDNAAHVLIRVEAAGTPLLARITRYSRDQLKLHPGQIVWAQIKAVAVLA	PGPT0008445_1267	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008445-modC-K02017	NA	NA
D1-36_02980	1038			hypothetical protein	ATGCCCGACACCCCGCTGCCCGATGCACTCCCGGCCGACTTGCACTATGTCGATGACACTGCGCCGGGCATTACCCGCAGGAAACTGCGAGGCAAATTCTGCTATTTCGACCCTTCGGGCCAGCGCATCACTGACGCGGCCGAAATCCAACGCATCAATTCCCTGGCCGTTCCGCCGGCCTACACCGACGTCTGGATCTGCTGCGACCCGCGCGGCCACCTCCAAGCCACCGGGCGCGATGCCCGTGGGCGCAAGCAGTACCGTTATCACACGCGCTGGCGCGAAGTGCGCGATGCCGACAAGTATTCACGCATGCTGGAATTCGGCCGCACACTGCCCCGGCTGCGCAAACGCCTGGAAGAGATCCTCGCCACCCCCGGCTTCAGCCGCGACAAAGTCATGGCGACGGTCATCACCTTGCTCGACGTCACCCTTATTCGCGTCGGCAATACGCAATACGCCCGGGACAACCGCTCCTACGGCCTGACCACCCTGCGCAACAAGCATGTCGCGGTCAATGGCAGCGCCATCGCTTTCCAGTTCCGGGGCAAGAGCGGCATCGAACACCAGATCACCGTGAAGGACCGGCGCCTGGCGCGGATCGTCAAGCGCTGCCAGGAAATGCCCGGGCAGAACCTGTTCCAGTACCTGGATGAAAACGGCGAGCGCCACGCCATCACTTCTTCGGATATCAACGCCTACCTCAAGACCCTCACCGGCGCCGATTTCACCGCCAAGGACTACCGCACCTGGGCAGGCAGCGCGGCGGCGCTGGACGGCCTGCGCACACTGCAGTGGGAAACCGAAACCGAGGCCAAGCGGCACGTGGCCGAGATGGTCAGGCAGGTCGCCCGACAGTTGGGCAACACGCCCGCCGTCTGTCGTAAATGCTATATCCACCCCGCCGTTGTGGAGGGTTTCATGCGCGGCGTCCTGCACGAACTGCCCAAGCCCCGGGTTCGCAAAGGCCTGAGTGCCCAAGAAGCTGCGCTGACGATGTTCCTGCAGCGCATGGCCCAAGCCGTCGAAGCCTGTTGA	MPDTPLPDALPADLHYVDDTAPGITRRKLRGKFCYFDPSGQRITDAAEIQRINSLAVPPAYTDVWICCDPRGHLQATGRDARGRKQYRYHTRWREVRDADKYSRMLEFGRTLPRLRKRLEEILATPGFSRDKVMATVITLLDVTLIRVGNTQYARDNRSYGLTTLRNKHVAVNGSAIAFQFRGKSGIEHQITVKDRRLARIVKRCQEMPGQNLFQYLDENGERHAITSSDINAYLKTLTGADFTAKDYRTWAGSAAALDGLRTLQWETETEAKRHVAEMVRQVARQLGNTPAVCRKCYIHPAVVEGFMRGVLHELPKPRVRKGLSAQEAALTMFLQRMAQAVEAC				NA	NA	NA	NA	NA
D1-36_02981	564			hypothetical protein	ATGTCCGAACACATCGTCCATTTCCATTGCCAGATCGATCAAGGAACCACCGAGCGCTTTCGGGACAATTGCCTGGAAGCCATTGAAAAAGGCGCCGACTCGCTGATGCTCAACCTCTCTACGGTCGGCGGTAGCACGAACTTCGGTTTCACCCTTTACACCTTCATCAAGTCTCTTCCCGTGCCGGTGCGCGCCGTGAACGCCGGCAACATCGAGTCGATGGGCATCGTCATGTACCTGGCCGCCAGCGACCGCACCACCACGCCCCACTCGCGCTTCCTGATCCACCCGATGAATTGGTATTTCGGCCAGAAGTCGGTGGATCACTCGCGCTTGCGCGAATACCTGTCCAGCCTGGACAACGACGTGGCGCGGTATGTGGAAATCTACGTCAAGGAAACCGCCGGTGCCGCCACGCAACTGGATATCTTCAAGTGCCTGTGCGCCGAGGAGCGTGTGATCCCGGCGGAAAACTCACTGGCCTTTGGCATTGCCCACAGGGTTGAACAAGTGGTGTTTCCACCCGAAGCCAAGCATTGGAAAGTGAGCGGCGGTGAGGACTGA	MSEHIVHFHCQIDQGTTERFRDNCLEAIEKGADSLMLNLSTVGGSTNFGFTLYTFIKSLPVPVRAVNAGNIESMGIVMYLAASDRTTTPHSRFLIHPMNWYFGQKSVDHSRLREYLSSLDNDVARYVEIYVKETAGAATQLDIFKCLCAEERVIPAENSLAFGIAHRVEQVVFPPEAKHWKVSGGED	PGPT0014595_8549	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014595-clpP-K01358	NA	NA
D1-36_02982	180			hypothetical protein	ATGGCTAATAGCGGAAACAAAAATCCAGGTAACTTCGCAAACGACCGTGAGAAAGCATCCGAAGCCGGCAAGAAAGGCGGACACGCTTCCGGCGGCAATTTCGCAAATGATCGGGAAAAAGCCTCTGAAGCAGGCCGCAAAGGTGGCGAACGCAGCCACGGCGGCGGCAGGAAGTCGTAA	MANSGNKNPGNFANDREKASEAGKKGGHASGGNFANDREKASEAGRKGGERSHGGGRKS	PGPT0002680_752	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_INDUCIBLE_PROTEINS,PGPT0002680-yciG|ymdF|gsiB-K06884	NA	NA
D1-36_02983	225			hypothetical protein	ATGAGCCAGGATCGATTCATCGTCAGTTTCATCGCCGACGGCCAACCCGATAGCCGGGTATTGGCAGGCGACACCGAGACGCTTACCACCGAAGAAGCCGAGGCACTCTTGCGAGTGTCCTTTACTGAATTAAAGAGCGTCAAGATCAGCGATGTTCAAGTTCAGAAAAGAACCAAGCCAAACGAAACGGAACATGATGTTCCGGGGCATTTCAAACAGCCGTAG	MSQDRFIVSFIADGQPDSRVLAGDTETLTTEEAEALLRVSFTELKSVKISDVQVQKRTKPNETEHDVPGHFKQP				NA	NA	NA	NA	NA
D1-36_02984	753			hypothetical protein	ATGACTGGAAAGATGGTTCATGGAACCTGGGCCCTGTTGTGTGTGGCTACAGTGGGATTGGCGGGCTGCGCGGGCGGTAACAGCCACTCACCGGTAGACGCGCCAGGCGCCGCGAAAAGCCCAACCACCGCGACGCTGGAAGCGGGGGCCGGGATCATGCAGAACAAACCCCCTTTGCAAGCGTTGGATACCTACCTGGACGGCTTTCATTTTTATAACGGCCGGATGTCCGGGCAAATGGAAGCGCACCATTACTGCACGGCACTGAACGAAGAAGTGTTCCAGTGCGCCATCTTCGATGCCAACAGCGCCAAGGCCAAATTGATGGGCGTGGAATACATCATCAGTAAGCGCCTGTTCGAAAGCTTGCCCGCCGCCGAAAAGCAGCTGTGGCACAGCCATGTGCATGAGGTGAAGTCTGGACAACTGGTCGCGCCGGGCATACCGGAGGTGGCGGAAACCCGCTTGATGAAGAACCTGGTCAGCACTTACGGCAAGACCTGGCACACCTGGCACACCGAGCAGGGCAACGCTCTGCCTTACGGCGTTCCGCAGTTGATGATGGGGTTCACCGCCGATGGGCAGATCGATCCGCAATTGGTGCGCGAGCGCGACCGCCGGATGGGCATCGACAGCGAAGCGAAGAAACACGCCCGCGAATCGATCAGCGCACCGGACATCGATCCTGGCGCGGATGCGTGGCGCAAAGGGCAGGTGTGGCAGATAAAGGATCCGACGGGGCATACCCATTAA	MTGKMVHGTWALLCVATVGLAGCAGGNSHSPVDAPGAAKSPTTATLEAGAGIMQNKPPLQALDTYLDGFHFYNGRMSGQMEAHHYCTALNEEVFQCAIFDANSAKAKLMGVEYIISKRLFESLPAAEKQLWHSHVHEVKSGQLVAPGIPEVAETRLMKNLVSTYGKTWHTWHTEQGNALPYGVPQLMMGFTADGQIDPQLVRERDRRMGIDSEAKKHARESISAPDIDPGADAWRKGQVWQIKDPTGHTH				NA	NA	NA	NA	NA
D1-36_02985	537			hypothetical protein	ATGTTCGAGATCAAACCGTGGGACGCCGCCGACTACCGGCAACAGACCCGTCGCAGCACCCTCATCGTGGCCGTGGTGTTTCTGGCGCTGGCAATGCTGTTGTCCAGCCTGGCGGTGATGCTGTTCGGTACACCCGGGGGCGATAATTTTCGCTTCAATGTCGGCGGCGTTTTCGCTGCCGTGCTGGTGATGGTCGGGCTGATGCGCGGCTATTTCTGGTCGCAGCCGTGGATGGCCGCTGCGGTGTATGGCTGGCAGCTCAAGCGCAGCCTGATGAGCGTCACCAATGTGATGCACCAGGTAAAGGCCGGTGTGCAGGCCCGGGATCCGGCAGCGATGAAGCTACTGCGTTTCTATCACCTGGGCCTGGCCCAGATGCACCGGCTGGATGCCAATTCCAGCGACCACGCCTCGTTGGTCCGTGAGGCCGACGAGCATCTGGAAAACATGCAGGCGCTGGGCCTGGATTCAGAGCAATCACGCCTGGACCCGGCCTGGATAGACTCGGTCAAACAGGCCTACGGCGAGCGCCGCTAA	MFEIKPWDAADYRQQTRRSTLIVAVVFLALAMLLSSLAVMLFGTPGGDNFRFNVGGVFAAVLVMVGLMRGYFWSQPWMAAAVYGWQLKRSLMSVTNVMHQVKAGVQARDPAAMKLLRFYHLGLAQMHRLDANSSDHASLVREADEHLENMQALGLDSEQSRLDPAWIDSVKQAYGERR				NA	NA	NA	NA	NA
D1-36_02986	1374	ppnN	COG1611	Pyrimidine/purine nucleotide 5'-monophosphate nucleosidase	ATGACTCAAAGACATGTAATCAACGCTTCGGTAAGCCCCAAGGGCAGCCTGGAGACTTTGTCCCAGCGCGAAGTGCAGCAACTGAGCGAAGCCGGTTCCGGCAGCATCTACGATCTTTTCCGCCAGTGCGCCCTGGCGATTCTCAACACCGGCGCCCATGTCGATAACGCCAAGACCATCCTGGAAGCCTACAAGGACTTCGAGATCCGCATCCACCAACAGGACCGTGGTGTACGCCTGGAGCTGCTGAACGCGCCGGCCGATGCGTTCGTCGACGGCGAGATGATCGCCAGCACCCGGGAAATGCTCTTCAGCGCCCTGCGCGACATCGTCTACACCGAGAACGAGCTGGACAGCCAGCGCATCGACCTGAGCTCGTCCCAGGGCATCAGCGACTACGTGTTCCACCTGCTGCGCAACGCCCGCACCTTGCGCCCTGGCGTGGAACCGAAAATCGTCGTGTGCTGGGGCGGCCACTCGATCAACACCGAAGAATACAAGTACACCAAGAAAGTCGGCCACGAACTGGGCCTGCGCAGCCTGGACATCTGCACCGGCTGCGGTCCCGGCGTGATGAAAGGCCCGATGAAAGGCGCCACCATCGCCCACGCCAAGCAGCGCATCCAGGGTGGCCGCTACCTGGGCCTGACGGAGCCGGGCATCATTGCCGCGGAGGCACCGAACCCGATCGTCAATGAACTGGTGATCCTGCCGGATATCGAAAAGCGTCTGGAAGCCTTCGTGCGCGTCGGCCACGGCATCATCATCTTCCCGGGCGGCGCCGGTACGGCGGAAGAATTTCTCTACCTGCTGGGCATTCTCATGCACCCGGCCAACCAGGACCTGCCGTTCCCGGTGATCCTCACCGGGCCTAAAAGCGCCACGCCGTATTTCGAGCAGTTGCACGCGTTCGTCGGCGCGACCTTGGGCGAAGCCGCGCAGAAGCACTACCAGATCATCATCGACGACCCGGCCGAAGTGGCGCGGCAGATGACCCAGGGGCTCAAAGAAGTGAAGCAGTTCCGCCGCGAGCGCAACGACGCCTTTCATTTCAACTGGCTGCTGAAAATCGACGAAGGTTTCCAACGCCCGTTCGACCCTACCCACGCCAACATGGCCAGCCTGGGCTTGAGCCGCGACCTGCCCTCCCACGAACTGGCCGCCAACCTGCGCCGGGCATTTTCGGGGATCGTGGCCGGGAACGTGAAGGACAAGGGCATCCGCCTGATCGAAGAACACGGCCCGTACGAAATCCATGGTGATCCCGCGATCATGGAACCGCTGGATCGCCTGCTCCAGGCCTTTGTCGCGCAACACCGGATGAAACTGCCGGGCGGCGCGGCGTATGTGCCGTGCTATCGGGTAGTGACCTGA	MTQRHVINASVSPKGSLETLSQREVQQLSEAGSGSIYDLFRQCALAILNTGAHVDNAKTILEAYKDFEIRIHQQDRGVRLELLNAPADAFVDGEMIASTREMLFSALRDIVYTENELDSQRIDLSSSQGISDYVFHLLRNARTLRPGVEPKIVVCWGGHSINTEEYKYTKKVGHELGLRSLDICTGCGPGVMKGPMKGATIAHAKQRIQGGRYLGLTEPGIIAAEAPNPIVNELVILPDIEKRLEAFVRVGHGIIIFPGGAGTAEEFLYLLGILMHPANQDLPFPVILTGPKSATPYFEQLHAFVGATLGEAAQKHYQIIIDDPAEVARQMTQGLKEVKQFRRERNDAFHFNWLLKIDEGFQRPFDPTHANMASLGLSRDLPSHELAANLRRAFSGIVAGNVKDKGIRLIEEHGPYEIHGDPAIMEPLDRLLQAFVAQHRMKLPGGAAYVPCYRVVT	PGPT0021310_262	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021310-ppnN|ygdH-K06966	NA	NA
D1-36_02987	663	hxpA	COG0637	Hexitol phosphatase A	ATGTCCGCAGAACTCCCCACCGTCGCCTACCGCGCCTTCCTCTTCGACATGGACGGCACGCTGCTCAATTCCGTCGCCGCCACCGAGCGGATCTGGACCCGCTGGGCCATGCGCCATGGCCTGGACGTGGCTAAATTCCTGCCGACTATCCATGGCGTGCGCGCCGTCGACACCGTTGCCCGCCAGAACCTGCCAGGAGTGGATGCCCAGGCCGAGGCCGCGCAGCTCACCATCGAAGAAATCGAGGACGTGGAAGGGGTGGTCGAGGTGCCCGGTGCGCTGGCCTTTCTCAAGAGCCTGCCGCCGACGCAATGGGCGATTGTCACCTCGGCGCCGATGGCCTTGGCTTTGCGTCGCATGGAAGCGGCCGGGATTCCGCGCCCCGACGTGATGGTGACCGCCGAGGACGTGAGCGCCGGCAAGCCGAATCCAGCGTGCTACCTATTGGCCGCACAACGCTTGCAAGTTGCTCCGCAGGAATGCCTGGTGTTCGAGGACGCAGAAGCCGGAATCAAGGCTGGCGAGGCGGCGAACATGGACGTAATGGTAGTGACGGCCACGCATACGCACCCGGTGGTGACGGTGCATTCGCAGATCGCGGATTACCGTGGGCTGAGTGTCGCGGTGGATGATGGATTGCTACGCTTCTCAAACCAACGCTAG	MSAELPTVAYRAFLFDMDGTLLNSVAATERIWTRWAMRHGLDVAKFLPTIHGVRAVDTVARQNLPGVDAQAEAAQLTIEEIEDVEGVVEVPGALAFLKSLPPTQWAIVTSAPMALALRRMEAAGIPRPDVMVTAEDVSAGKPNPACYLLAAQRLQVAPQECLVFEDAEAGIKAGEAANMDVMVVTATHTHPVVTVHSQIADYRGLSVAVDDGLLRFSNQR	PGPT0018405_509	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATION	PLANT_DERIVED_SORBITOL_DEGRADATION,PGPT0018405-hxpB-K19270	NA	NA
D1-36_02988	1347	mepA	COG0534	Multidrug export protein MepA	ATGCCCACCCAGCCTCTCTGGAAAACCTACCTGCTGTTCTTGGCCCCCATGGTCTTGTCCAATTTCCTGCAATCGATGTCCGGTACGCTCAATAGCATCTACATCGGCCAAATGCTCGGCACCCAGGCCCTGGCGGCGGTATCGGGGATGTTTCCCATCGTGTTTTTCTTCATCGCGTTGGTGATTGGCCTGGGCGCGGGGGCAGGGGTCTTGATCGGGCAGGCCTACGGCGCCGGCGAGACGGGAACCGTGAAGGCGATTGCCGGCTCGACGCTGCTGCTGGGGGCAATCATCGGACTGACGGCGGCGATCCTCGGCAGTGTTTTTGCCCGCGAGGGGCTGCAAGGCCTCGGAACGCCCGCCGACGTGCTGGAGGATGCGGTGTCGTATGCGCGGGTGATGATGTGGATCCTCCCGATGCTGCTGGTGTTTGTGCTTTTCACCCAGCTATTGCGTGGTGTCAGCGATACCGTTTCGCCGTTGCTGGCGTTGCTGGTGTCCACCAGCGTCGGGATGGCGCTGACGCCGGCGTTGATCCGTGGCTGGCTGGGGTTGCCGCAGATGGGCATCCAGAGCGCGGCGCTGGCGGGGCTGGTGGGCACCGCGTCGGCGATGGCGATGCTGGCGTGGCGCCTGAATCGACGGGCCCATGCCTTGGCGCCGGATCGGGCGCTGTTCGCGGCGATGCGCCTGGACAGGGATATCCTCGGCAAAGTGCTGCGCATTGGCCTGCCCACCGGATTGCAGATGGTGGTGATCTCGCTGTCGGAGTTGGTCATCCTGGCCCTGGTCAATCGCCACGGCTCCCAAGCCACGGCCGCCTATGGCGCGGTGACGCAGATTGTCAATTACGTGCAGTTCCCGGCGCTGTCGATTGCCATCACCGCGTCGATCCTCGGCGCCCAGGCCATCGGCGCCGGACGCCTGGAACGCCTGGGGCCGATCCTGCGCACCGGGATGCTGATCAACGTCTGGTTGACCGGTGGGCTGGTGCTGCTGGGGTACTTGTTGTCCCACTGGTTGCTGGGCCTGTTCATCACCGACCCGGCGGCGCGGGTCCAGGCCGAGCACTTGTTGCACATCATGCTATGGAGCCTTTTGGTGTTCGGCTTCCAGGCCATCATCGGTGGCATCATGCGCGCCAGCGGCACGGTGCTGATGCCGGTGGCGATCTCGATTTTCTGCATCATCGGCGTGCAAGTTCCGGTCGCCTACCTGCTGGACGCACACTTCGGCCTGCAAGGGGTGTGGATGGCGTTTCCGGTGGCTTACCTGAGCATGCTGTTGCTGCAGACGCTGTATTACAAACGGGTCTGGCAGCACCAGCGGATCGAGCGGTTGGTGTAA	MPTQPLWKTYLLFLAPMVLSNFLQSMSGTLNSIYIGQMLGTQALAAVSGMFPIVFFFIALVIGLGAGAGVLIGQAYGAGETGTVKAIAGSTLLLGAIIGLTAAILGSVFAREGLQGLGTPADVLEDAVSYARVMMWILPMLLVFVLFTQLLRGVSDTVSPLLALLVSTSVGMALTPALIRGWLGLPQMGIQSAALAGLVGTASAMAMLAWRLNRRAHALAPDRALFAAMRLDRDILGKVLRIGLPTGLQMVVISLSELVILALVNRHGSQATAAYGAVTQIVNYVQFPALSIAITASILGAQAIGAGRLERLGPILRTGMLINVWLTGGLVLLGYLLSHWLLGLFITDPAARVQAEHLLHIMLWSLLVFGFQAIIGGIMRASGTVLMPVAISIFCIIGVQVPVAYLLDAHFGLQGVWMAFPVAYLSMLLLQTLYYKRVWQHQRIERLV				NA	NA	NA	NA	NA
D1-36_02989	1218			hypothetical protein	ATGATGTCGTATTCCCACGACCATTCCCTTGCCACATCCCAGACGCACACCTCCTGGCACGCCTTGATCGTTGCCATCATCGCCGGCGCAGGGCTGCTGGTACTCAATGGCACGAGCGCTCAAAACATCGGTTTCAGTGCTGTGCTTCTGGTCCTTGGCGTGGGTGCCGGTATCTGGGGCGCGCGTTCGCAGCGCCTGCAATTGGACAAGGTGGCCGCAGCGGCCATCGCCCATCATGAACTGCAAGCAGCCGACCATGGCGCTCACAAAAGCAGCGCGCAACTCAACGAAGTGATCCTCGGCGCGATGCCGATCTGGGCCAAGCAAGTCGAAAGCTCACGGCAGCAGACAGAAACCGCGATCGTCTCGTTGACCAGCCGCTTCACCGGCATTTCCTCGCGTCTCGAAGAAACCGTACAAGCCTCGCAACTGGCCGCTGGCGAGTTGGCGGGCAGTGGTGGTGGCGGTGCCGTCCAGGTGCTGGCGCAGAGCGAAGGCGAACTGGTGAAGGTGATCGATTCGCTGAAGAGCACCCAGGCCAGCCGTGATGAAACCTTGGCCCAAGTGCGCAACCTGACGGCCTACACTGGCGAGTTGCGGACCATGGCCGCGGATGTCGCTGCGATTGCCGCCCAGACCAACCTGCTGGCCCTCAACGCCGCCATCGAAGCCGCCCGCGCAGGCGAAGCCGGACGCGGTTTTGCGGTAGTGGCAGATGCCGTGCGGGCCCTGTCGAGCAAGTCCAGCGAGACCGGCCAACAGATGTCGGCCAAGGTCGATGTCATCAACACCGCCATCACCCAATTGGTGCAGGCGGCTTCCAGCGGCGCCGACCAGGACAGCCAGTCCGTGGCCGTGTCCGAAGGCAGCATCCAACGCGTGCTCGAACGCTTCCAGAGCGTCACCGGCCGCCTCGCCGATTCGGCCGACATGTTGCAACGGGAGAGTTTCGGTATTCGAGACGAACTCACCCAAGTGCTGGTCAGCCTGCAATTCCAGGATCGGGTCAGCCAGATCCTCAGCCACGTGCGCGACAACATCGAGGACCTGCATGTGCACATGCAGCAAGCCAGCCAGTCGCCCGAACAGGCCATCTCCATCGACGCCCGCCAATGGCTGGCGCGCATGGAAACCACCTACGCCACCGACGAGCAACGCCGCAACCATCACGGCGACTCGGCCGCGCAACAGACTTCACAGGAAATAACCTTCTTTTAG	MMSYSHDHSLATSQTHTSWHALIVAIIAGAGLLVLNGTSAQNIGFSAVLLVLGVGAGIWGARSQRLQLDKVAAAAIAHHELQAADHGAHKSSAQLNEVILGAMPIWAKQVESSRQQTETAIVSLTSRFTGISSRLEETVQASQLAAGELAGSGGGGAVQVLAQSEGELVKVIDSLKSTQASRDETLAQVRNLTAYTGELRTMAADVAAIAAQTNLLALNAAIEAARAGEAGRGFAVVADAVRALSSKSSETGQQMSAKVDVINTAITQLVQAASSGADQDSQSVAVSEGSIQRVLERFQSVTGRLADSADMLQRESFGIRDELTQVLVSLQFQDRVSQILSHVRDNIEDLHVHMQQASQSPEQAISIDARQWLARMETTYATDEQRRNHHGDSAAQQTSQEITFF	PGPT0015710_27871	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_02990	369	cheY_1	COG0784	Chemotaxis protein CheY	ATGGCGAAAAATGTATTGGTTGTCGACGACTCCGCGAGCGTTCGGCAGGTCGTCGGCATCGCGTTGAAAAGTGCCGGCTACGACGTGATCGAGGCCAGCGATGGCAAGGATGCACTGGGCAAGCTCAACGGCCAGAAAGTGCACCTGATCATCAGCGACGTGAACATGCCGAACATGGACGGCATCACCTTCGTCAAGGAGGTCAAGAAACTGGCCAGCTACAAGTTCACGCCGATCATCATGCTCACCACCGAATCCCAGGAATCGAAGAAGCAAGAGGGCCAGGCCGCAGGCGCCAAGGCCTGGGTGGTCAAGCCGTTCCAGCCAGCGCAGATGCTGGCGGCGGTGTCCAAGCTGATTCTTCCCTGA	MAKNVLVVDDSASVRQVVGIALKSAGYDVIEASDGKDALGKLNGQKVHLIISDVNMPNMDGITFVKEVKKLASYKFTPIIMLTTESQESKKQEGQAAGAKAWVVKPFQPAQMLAAVSKLILP	PGPT0015690_3216	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015690-cheY|yneI-K03413	NA	NA
D1-36_02991	285			hypothetical protein	ATGCCGCTGCTGTACGAAGTAGAAAATGACACCGCGCAGGTGCAGATCGACGGCGAGCTGACGATCTACACCGCCGCCGACCTGGCCGCGCAATTGCTGCCACGGTTGGGGGCCACGCCCGCCATGGTGCTGGACCTGTCGCAGATCACCGAGATGGATGGCGCCGGCCTGCAATTGCTGCTGATGGTACAGCGCGAGGCGCCCAAGGCCGGGACCCAACTGACGGTGGCCGACCCAAGCAAAGCCGTCACCGAAACACTGGCGCTGTGCAACCTGGTTGCATAG	MPLLYEVENDTAQVQIDGELTIYTAADLAAQLLPRLGATPAMVLDLSQITEMDGAGLQLLLMVQREAPKAGTQLTVADPSKAVTETLALCNLVA	PGPT0014350_3164	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749	NA	NA
D1-36_02992	2097	cheA	COG0643	Chemotaxis protein CheA	GTGAGCATCAATCTCGATCAGGCACAACAAACCTTCATCGTCGAGGCCCGTGAACAACTGCAGGCGATGGAAGAATCGTTGCTGCAATTGGAAAACGACCCCGGCGACGATGACGCCATCGGCGCGATCTTCCGAGCGGCCCATACGATCAAAGGGTCGGCTGGACTGTTCGGCCTGGAGCCGATCGTCAGCTTTACCCACATCGTCGAGGATGTGCTCGATCGCCTGCGCGAGGGCAGCGTCGCGGTGGACCCTGGCTTGATCGCGGTGCTGCTCAAGTCCGGCGACCACATGCTCGAATTGATCGACGTGGTCGCCAACCAGGGCTCGACGTTGCAGCCCCCTGCCCTGGCGCGGGAAATGGAACTGTGCCAGCTCCTGCAGGAGTACCAGGCGCCCCCGACCGCGACCGAACCGGATCGTGAAACCCAAGCCGAGCCAACCGGCTCAGCCGAAGCGTGCCTCTGGCACATCTCCCTGCGCTTCGGCCAGGACGTGTTCCGCAACGGCATGGACCCCTTGTCGTTCCTGCGCTACTTGCAGACCCTGGGTGAAATCGTCGACATCACCACGCTCACCGAGGCGATGCCGGCCATCGACACCTGGGATGCCGAATCCTGCTACCTGGGCTTCGACATCGCGTTCCGCTCCGCCGCCGGTTATACCGCGATCAATGAAGTGTTCGATTTCGTCCGGGAAGACTGTGCGATCGAAATCGTCGCCCAAGACGTCGAGGCCCAGGCAAGCATCGGCGAGGTCGCGACATCCCAGGCACAGAGCGACGAAAGCACCGCCATGGTCACCACGGGCGAGCTGATGCAGGACCAACGCAAGACCCCGCGCATGCCTGCCCAGGTCGCGCCTGACAAGCAGGCCGTGGTCAGTGACAGTAAAACCAAGGACGGCGCGTACGTGCGCGTCAATGCTGACAAGCTCGACGAACTGATCAACCTCGTCGGTGAATTGGTGATCGCCAGCGCCGGCGCCAGCCTGTTGGCCCGTAACTGCCAGAACGACCCATTGCAGGAAGCCACCTCGTCGGTATCCGGGCTGGTGGAGGAGATTCTCGACGGCGCCTTGCGCCTGCGCATGATCCCCATCGGCGAGACCTTCAACCGCTTTCGTCGGGTGGTGCGCGATGTCAGCCAGGAGCTCGACAAGGACATCGACCTGATCATCAGCGGCGCGGAAACCGAGCTGGACAAGACCGTGGTGGAAAAGATCGGCGACCCGCTCATGCACCTGTTGCGCAACGCCATGGACCATGGCATCGAAACCGCTGAGGCGCGGCTGGCGGCAGGCAAACCGGCCAAGGGGCATTTGCACCTCAACGCTTACCACGACTCGGGCAGCATCGTGCTGGAAATCGCCGACGACGGCGCCGGCCTGAACCGCGACCGCATCCTGGAAAAAGCCCACGAACGTGGGCTGATCGCAGCGGGCGCGAACCTGACCGACCAGGAAATCTACAACCTTATTTTCGAACCGGGCTTTTCCACCGCCCAGGCCGTCACCAACCTGTCCGGGCGCGGCGTGGGCATGGACGTGGTCAAGCGCAACATCACGCTGCTGCGCGGCACGGTCGACCTGGACAGCCAGCCGGGCAAGGGCACCGTGGTGCGCATCCGACTGCCGCTGACCCTGGCGATCATCAACGGATTCCTGGTCGGCATCGGCCAGTCCACCTATGTCATTCCGCTGGACATGGTCCAGGAATGCATCGAGCTGAGCGAAGACGATGGCATCGCCAGCCGCGAACAAGGCTACCTCGACCTGCGGGGCGAGGTGCTGCCATTGGTGTACTTGCGCGATCACTTTCATCACGAAGGTCCGGCCTCGCGCCGGCAGAACGTGGTGGTGGTGCGCTACGCCGAACTCAAGGCCGGGCTGGTGGTGGATGACCTGTTGGGTGAATTCCAGACCGTGATCAAGCCCCTGGGCAAGCTGTTCGGCGCACTGCGCGGCATCAGCGGCTCGACCATTCTGGGCAGCGGTGCCGTGGCGTTGATCCTCGACGTACCGGCCCTGCTCACCCAGATCGCACAAATAGAAAACCGCTACAACTCGACCCCATTACAACAAGCCAACGCTCGCTGA	MSINLDQAQQTFIVEAREQLQAMEESLLQLENDPGDDDAIGAIFRAAHTIKGSAGLFGLEPIVSFTHIVEDVLDRLREGSVAVDPGLIAVLLKSGDHMLELIDVVANQGSTLQPPALAREMELCQLLQEYQAPPTATEPDRETQAEPTGSAEACLWHISLRFGQDVFRNGMDPLSFLRYLQTLGEIVDITTLTEAMPAIDTWDAESCYLGFDIAFRSAAGYTAINEVFDFVREDCAIEIVAQDVEAQASIGEVATSQAQSDESTAMVTTGELMQDQRKTPRMPAQVAPDKQAVVSDSKTKDGAYVRVNADKLDELINLVGELVIASAGASLLARNCQNDPLQEATSSVSGLVEEILDGALRLRMIPIGETFNRFRRVVRDVSQELDKDIDLIISGAETELDKTVVEKIGDPLMHLLRNAMDHGIETAEARLAAGKPAKGHLHLNAYHDSGSIVLEIADDGAGLNRDRILEKAHERGLIAAGANLTDQEIYNLIFEPGFSTAQAVTNLSGRGVGMDVVKRNITLLRGTVDLDSQPGKGTVVRIRLPLTLAIINGFLVGIGQSTYVIPLDMVQECIELSEDDGIASREQGYLDLRGEVLPLVYLRDHFHHEGPASRRQNVVVVRYAELKAGLVVDDLLGEFQTVIKPLGKLFGALRGISGSTILGSGAVALILDVPALLTQIAQIENRYNSTPLQQANAR	PGPT0015645_2700	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015645-cheA|wspE-K03407	NA	NA
D1-36_02993	1659			hypothetical protein	ATGAAATGGTTCTACGACCTTAGAATCGCCACCAAACTGATCGCTTCATTTCTCGTGGTGTTGGCGCTGACCGCCGTCATGGGCGTGTTCTCGATCATCCAACTGGGCCAGGTGAACGGCACCGCCCTTGATATCCGTGAGAACTGGATGCCGTCCATGCGCGCCGCTTCAGGCATGCGCTTTTTTGCGGCGAGTTTTCGCCTCAAGGAGAATCGCCATATCGCCGCCGACTCCGAACAGGAGCGCGTCACCCTCGAGCAAGAAGCCGAGGAGGCCAAAAAGGCCTTCGAAACGCGCCTGGGCACTTACGAGAAACTGCTCTCCAGCGCTGAGGATCGTCAGGCATTCGAAACCACCCGCGATGACTGGGCTTCTTACCTTGCAATCAGCAAAGACCTGCTCGCATTGTCCCGGCAGAACCTGACCGAGCAAGCCCAGGCGATGCTCAAGGGCGAATCCAAGAATCGCTTCGACCTGGTGACCAACGACTTGCAAAAACTTGTCGAGCTCAACGCGGCCGGCGCTGACGTCGCCAGTGCGCACGGCACCCGCTTGTATGAAAACGCACGCCTGTCGATCATCGCCGTGCTGGTCGCGGCCCTGCTGGTGGGCCTGGGATTGGCGCTGTTCGTCTCACGCATCATTTCCCGTCCGTTGAAACAGGCGGCGGTGGTGGCCGAGCAACTGGCCGAGGGCAACCTGAACGCGAAGATCGAAAGTGGTTCGAAAGACGAAACCGGCATGGTGCTCAACGCTATGCAGAACATGGTCGGCAAGCTGTCGCATATCATCGGTGAAGTGCGCAACGCGGCGGACAATCTCGCCAGCGCTTCCGAAGAAGTCAGCGCCACCGCGCAGTCGATGAGCCAGGCCACCAGCGAACAGGCGGCCAGCGTCGAGGAAACCAGCGCATCCATCGAGCAGATGAGCGCCAGCATCAACCAGAACACCGAGAACGCCAAGGTGACCGACGGCATGGCCAGCAAGGCTGCCAAGGAAGCCACCGACGGCGGCGAATCGGTGCAGCAGACCGTGGTGGCGATGAAGAAAATCGCCCAACGCATCAGCATCATCGACGACATCGCCTACCAGACCAACCTGCTGGCGCTCAACGCCGCCATCGAAGCGGCCCGCGCCGGCGAGCACGGCAAAGGCTTCGCAGTGGTCGCTGCCGAAGTCCGCAAACTGGCCGAGCGCAGCCAAGTCGCGGCACAGGAGATCGGCGAGCTGTCGTCCAGCAGCGTCGACATGGCCGAGAAGGCCGGCAACCTGCTGAACGAGATGGTCCCGTCCATCAACAAGACCTCGGATCTGGTGCAGGAAATCAGCGCCGCGTCCGAAGAACAGGCCGCCGGTGTGGCGCAGATCAACACCGCCATGACCCAACTCAACCAGGTGACCCAGCAGAACGCCTCCAGCAGCGAAGAGCTGGCCGCCACCGCCGAAGAGATGAGCAGCCAGGCCGAACAACTGCAACAGGCGATGAGCTTCTTCACCCTGGACACGCCCTCCAAGTCCGCGGCCCAGGTCGCCCGGATCGACAACACGCCTGGCCCCTCCAGCCGCAAACCGGCCCGGGCGCCGGCACCGGTGATGCCCAAGGCGTTTGCCTACAACATGGCCAGCGCGCCGGACGAATCGGAATTCACCCGGTTCTGA	MKWFYDLRIATKLIASFLVVLALTAVMGVFSIIQLGQVNGTALDIRENWMPSMRAASGMRFFAASFRLKENRHIAADSEQERVTLEQEAEEAKKAFETRLGTYEKLLSSAEDRQAFETTRDDWASYLAISKDLLALSRQNLTEQAQAMLKGESKNRFDLVTNDLQKLVELNAAGADVASAHGTRLYENARLSIIAVLVAALLVGLGLALFVSRIISRPLKQAAVVAEQLAEGNLNAKIESGSKDETGMVLNAMQNMVGKLSHIIGEVRNAADNLASASEEVSATAQSMSQATSEQAASVEETSASIEQMSASINQNTENAKVTDGMASKAAKEATDGGESVQQTVVAMKKIAQRISIIDDIAYQTNLLALNAAIEAARAGEHGKGFAVVAAEVRKLAERSQVAAQEIGELSSSSVDMAEKAGNLLNEMVPSINKTSDLVQEISAASEEQAAGVAQINTAMTQLNQVTQQNASSSEELAATAEEMSSQAEQLQQAMSFFTLDTPSKSAAQVARIDNTPGPSSRKPARAPAPVMPKAFAYNMASAPDESEFTRF	PGPT0015710_18934	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_02994	537	cheW_1	COG0835	Chemotaxis protein CheW	ATGGGCGCCATCGCGACCACACGTCAGACCGCCAGCGCGGTCGAGGAAGAAGCGCAGTACCTGACGTTCATGCTCGGCACAGAGATGTTCGCCATCGGCATCTTGTGCATCAAGGAAATCATCGAATACGGAAACCTGACCGTCGTGCCGATGATGCCGGCCTTCGTTCGCGGGGTGATCAACCTGCGCGGCGCGGTCGTGCCGGTGGTGGATCTGTCGGCCCGTTTTGGCCGGCCGAACTCCACCATCAGCCGCCGTAGTTGCGTAGTGATCATCGAGGCCGCCAGCGCTGACGGCCTGGCCCAGGACATCGGGCTGCTGGTCGACACTGTATCGGCGGTGCTGGAAATCCCGGCCTCGCAGATCGAACCGCCACCGAGTTTCGGCGCGAAAATTCGCGCCGACTTCATCAGCGGCATGGCGAAGGTCGAGGGCAAGTTCGTCATCGTCCTGGAGGTGGATCGGGTGCTGTCCATCGACGAAATGTCCGAACTCGCCCAAGCCAGCCCCGCCGCACTGGAAGCGCCAGACTCATGA	MGAIATTRQTASAVEEEAQYLTFMLGTEMFAIGILCIKEIIEYGNLTVVPMMPAFVRGVINLRGAVVPVVDLSARFGRPNSTISRRSCVVIIEAASADGLAQDIGLLVDTVSAVLEIPASQIEPPPSFGAKIRADFISGMAKVEGKFVIVLEVDRVLSIDEMSELAQASPAALEAPDS	PGPT0015680_1334	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015680-cheW-K03408	NA	NA
D1-36_02995	837	cheR_2		Chemotaxis protein methyltransferase	ATGAGCACGGACACTTGCAAGGAACGCACAGTGAATTCAATGGCGCTCACTGACCGGGAGTTCGGCCAGTTTCAATCCTGGTTGTACCAGACCGCCGGCATCAACCTGTCGCCGGCCAAGAAAGCCCTGGTGGCCGGGCGCCTGTTCAAGCGCCTCAAGCACTATGAGCTGGACAGCTACGGCGAGTATTTCAAGCTGATCATGAGCGGCCAGCGCAGCGACGAATTACAAGTGGCGCTGGACCTGCTCACGACCAACGAAACCTACTTTTTCCGTGAGCCCAAGCACTTCGATTTTCTACGCGATCACGTGCTGCCCCATGCGACACCCGGCAAGACCTTTCGCCTGTGGAGCGCGGCCAGCTCGTCCGGCGAGGAGCCCTACAGCCTCGCCATGACCCTGGCCGAAAGCCTGGGCACCACGCCCTGGGAAGTCATCGGCTCGGACATCAGCATGCAAGTGTTGGCGAAGGCCCGTTCCGGGCACTATCCGATGGAGCGCGCCCGCAACCTGCCCCATTCGTTACTCGTGAAATATTGCCTCAAGGGCACCGGCAATCAGCAAGGCACCTTCCTCATCGATCGGGCGTTGCGCAACCGGGTCAACTTCATCCAGGTCAATCTCAACGACACGCTTCCGGAGTTGGGGGAGTTCGATGTGATTTTCCTGCGCAACGTGATGATCTATTTCGACCAGCCCACCAAAAGCAAAGTGGTTGCTCGACTGATCCCCCGGCTCAAGCCCGGTGGGTATTTCATCGTCAGCCATTCGGAGAGCCTCAACGGCGTTTGCGATGCGTTAAAGCTGGTCGCCCCTTCGATTTATCGCAAGCCATGA	MSTDTCKERTVNSMALTDREFGQFQSWLYQTAGINLSPAKKALVAGRLFKRLKHYELDSYGEYFKLIMSGQRSDELQVALDLLTTNETYFFREPKHFDFLRDHVLPHATPGKTFRLWSAASSSGEEPYSLAMTLAESLGTTPWEVIGSDISMQVLAKARSGHYPMERARNLPHSLLVKYCLKGTGNQQGTFLIDRALRNRVNFIQVNLNDTLPELGEFDVIFLRNVMIYFDQPTKSKVVARLIPRLKPGGYFIVSHSESLNGVCDALKLVAPSIYRKP	PGPT0015670_2554	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015670-cheR|pilK-K00575	NA	NA
D1-36_02996	498	cheD	COG1871	Chemoreceptor glutamine deamidase CheD	ATGAACGCCGCGATAAAGCCAGTCGCCGAAGTCTATCTGGGGCCTGGGGAGTTTCGCTTTGCGACCTGCCCGACCCGGCTGCGCACGATCCTTGGCTCATGCGTTGCCATCACCCTCTGGCATCCACGGCGCAAGATCGGCGGCATGTGCCACTTCATGTTGCCCAACCGGGTACGCTGCTCCACGGCGCTAAATGGGATGTACGCCGATGAAGCCTTGGAGTTGTTCGTCCGCCAGGCGCGAGCCCATCGCACCGAACCCGAGGAATACCAGCTCAAGCTGTTCGGCGGCGGCGAAATGTTTCCCGAGCTGCAACGCCACGTGGCGTTCGGCGACGTGGCGCGGTTGAACGTCAACGCCGCGCTGGAAATGGCCGCCCTCTATCGCCTGGACCTGATTGCCCAGGACATGGGTAGCACTGGCTACCGAAGTATTGTTTTCGACCTGTGCAATGGCGATGTCTGGGTCAGGCACCAACCGATAAGGACCTTGAACTAA	MNAAIKPVAEVYLGPGEFRFATCPTRLRTILGSCVAITLWHPRRKIGGMCHFMLPNRVRCSTALNGMYADEALELFVRQARAHRTEPEEYQLKLFGGGEMFPELQRHVAFGDVARLNVNAALEMAALYRLDLIAQDMGSTGYRSIVFDLCNGDVWVRHQPIRTLN	PGPT0015665_1168	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015665-cheD-K03411	NA	NA
D1-36_02997	1080	cheB_5	COG2201	Protein-glutamate methylesterase/protein-glutamine glutaminase	ATGCCAGGCAGAAAAATCAATGTATTGCTGGTGGACGATTCCGCCGTGGTCCGTCAGGTATTACTGGCGATCCTGAGTGACACGCCGGACATCAACGTTATCGGCGCGGCGTCCGATCCGATCTTCGCCATGGATAAACTGGCGAAGGAATGGCCCGACGTGATCGTGCTGGACGTGGAAATGCCGCGCATGGACGGCATTACCTTTTTGAAAAAGATCATGAGCGAACGGCCCACGCCCGTGGTGATCTGTTCTTCCCTGACGCCCAAGGGCGCGGAAACCACGCTGCAAGCCATGGCCGCCGGCGCGGTGGAAATCATCACCAAGCCCACTAGTGGCCTGAAGAACTTCTTGCTGGACTCGGCGTCGGAACTGGTCTCGGCCATCCGCGCCGCCGCCCAGGTCAACGTCCGCAACCTGGGCAAACGCCCGGCCCCGACCGCCCCGCTGACCCCGGCGGCCAAACTCAGCGCTGACGCGATGCTGCCCGCCGCCAACGGCCACGCCATGGCCCAGACCACCGAACGCATCGTCGCCATGGGCACCTCCACCGGCGGCACCCAGGCCCTGGAGGCGGTGCTGACGGCCCTGCCGCGCGTGTGCCCGGGCATCGTCATCGTCCAGCACATGCCGGAAAAATTCACCGCCTCATTCGCCGCCCGGCTCAACAGCCTGTGCCAGATCGAAGTGCGCGAAGCGAAGAACAACGACCGCATCCACCCGGGCCTGGCGCTCATCGCCCCCGGCGGCAAGCACATGATGGTGACCCGCAGCGGCGCGTTCTATCACGTGCAAGTGGTGGACGGCCCGTTGGTCAATCGCCATCGCCCTTCGGTGGATGTGCTGTTTCGCTCGGTGGCCAAGTTCGCCGGCCGTAACGCCACGGGCATCATCATGACCGGCATGGGCGACGACGGCGCCCGCGGCCTCAAGGAAATGCTCGATGCCGGCAGCGCCACCGTTGCCCAGGACGAGGCCAGTTGCGTGGTTTTTGGCATGCCCAAGGAAGCGATCAAACTCAACGCCGCCCAACGGGTGATGCCGTTGCTGGACATTGCGCAGGTGATCTTGCACCGCTGA	MPGRKINVLLVDDSAVVRQVLLAILSDTPDINVIGAASDPIFAMDKLAKEWPDVIVLDVEMPRMDGITFLKKIMSERPTPVVICSSLTPKGAETTLQAMAAGAVEIITKPTSGLKNFLLDSASELVSAIRAAAQVNVRNLGKRPAPTAPLTPAAKLSADAMLPAANGHAMAQTTERIVAMGTSTGGTQALEAVLTALPRVCPGIVIVQHMPEKFTASFAARLNSLCQIEVREAKNNDRIHPGLALIAPGGKHMMVTRSGAFYHVQVVDGPLVNRHRPSVDVLFRSVAKFAGRNATGIIMTGMGDDGARGLKEMLDAGSATVAQDEASCVVFGMPKEAIKLNAAQRVMPLLDIAQVILHR	PGPT0015650_1839	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015650-cheB|chpB|wspF-K03412	NA	NA
D1-36_02998	528			hypothetical protein	ATGACGCGTACAAAAAATTCGAACTCCGCTCGCCTCGCCCTCGCCGCCCTGGCTTTGTCCGGCGGTTTGGGCCTGGCCCAGTCCGCTTTCGCCGTTGACGCCCTGGCCCAGGGTTATCAATTGGCTTCGGCTGAAAAGACCTCCGAAGGCAAATGCGGTGAAGGCAAATGTGGCGCTGCCGAATCGGCCAAAAAGGCCACACAGGCTGAAGGCAAGTGTGGTGAAGGCAAATGTGGCGCTGCCGAATCGGGCAAAAAAGTCACCGCGGCAGAAGGCAAGTGCGGTGAAGGCAAATGTGGCGACGCGTCCTTCGCTCGTACCGACACTGACGACGATGCTCGTGTGTCGCTGAAGGAATTCCTCACCGTCGCGCCGACCCAGCAAGCCGAGTTCGAAAAGATTGACAGTAACCACGACGGCTACCTCTCCGAGGCGGAAACCTACAAGTACCGCACCGGCCAATACACAGCCAATGGCAAGAAAGTACCGACCGAACTGTTCATCCATATGAGCCAGGCCAAGGAGTAA	MTRTKNSNSARLALAALALSGGLGLAQSAFAVDALAQGYQLASAEKTSEGKCGEGKCGAAESAKKATQAEGKCGEGKCGAAESGKKVTAAEGKCGEGKCGDASFARTDTDDDARVSLKEFLTVAPTQQAEFEKIDSNHDGYLSEAETYKYRTGQYTANGKKVPTELFIHMSQAKE				NA	NA	NA	NA	NA
D1-36_02999	852			hypothetical protein	ATGAGCACGTTCACTTCACCCTCCGGCGCCGGACTCGGCCTTCGCCGTGCCCTGCTAAGCGACCTACTGGAAATGGCCCCCAGCGCCGTGGATTTCCTTGAGTGCGCCCCGGACAACTGGATCGGTGTCGGCGGCGTCTACGCCGAACAACTCGACCAACTCGCCGCACGGCACCCCATCACCTGCCACGGCCTGTCCCTGTCCCTCGGCGGTCCGCAGCCCCTCGACATTGAACTGCTGCGTGGTACTCGCCGCTTCCTCGATCGCTACGCCGTGGCGCTCTACAGCGAACACCTGAGTTACTGCTCCGACAGCGGTCACCTCTACGACCTCTTGCCGATCCCCTTTACCGAAGAAGCCGTCCATCACGTCGCCGCCCGCATTCGTCAGGCTCAGGACGTATTGGGCCAGCGCATCGCGGTGGAAAACATCTCCTACTACGCCGCGCCCTTCCAGGCCATGAGCGAGATCGACTTCATCACCGCCGTGCTACAGGAAGCCGACTGCGACCTGCTGCTGGACGTCAACAACCTCTACGTCAATGCGATCAATCACCGTTACGACGCCGAGAAGTTCCTCGCCGCCATCCCGGCCCAACGCGTCACCTACTTGCACGTCGCCGGCCATTTTGACGAAGCCGAGGATTTGAAAATCGACACCCACGGCGCGACCGTCAAGCAAGACGTCTGGACGCTGCTACACCAGGCGTATCAACGATTCGGCTCGGTGCCAACCCTGCTGGAACGCGACTTCAACTTCCCGCCCTTGTCGGAACTGCTCGCTGAAGTCGGGCAGATCAAACACCTTCAACAACTCGCTTGCCCGGCAACACCGGAGGCCCGCCATGCCTGA	MSTFTSPSGAGLGLRRALLSDLLEMAPSAVDFLECAPDNWIGVGGVYAEQLDQLAARHPITCHGLSLSLGGPQPLDIELLRGTRRFLDRYAVALYSEHLSYCSDSGHLYDLLPIPFTEEAVHHVAARIRQAQDVLGQRIAVENISYYAAPFQAMSEIDFITAVLQEADCDLLLDVNNLYVNAINHRYDAEKFLAAIPAQRVTYLHVAGHFDEAEDLKIDTHGATVKQDVWTLLHQAYQRFGSVPTLLERDFNFPPLSELLAEVGQIKHLQQLACPATPEARHA				NA	NA	NA	NA	NA
D1-36_03000	741			hypothetical protein	ATGCCTGAACAACTGCTCGACCAACTCAACTGCATGGCCAATTACGTCCGCAATCCTCAAAACCCACCACCGCCGGGAATTGAAACCCGACGCCTGGCCGTCTACCGGCAACTGTTCATCGGCAGCATCGAATCACTGCTGGCCGCCAGCTTCCCGGTCATCCACCAAACCCTGCCAGACGCTGACTGGCGATGGCTGGTCCACGATTTCTACGCGAACTACCGTTGCCAGACGCCACTGTTCACGCAGCTGGGCGGGGAGTTTGTCAGCTATCTGGAACAACGTGCGTGCTCGCAGAATCACCCCGCCTGGCTGCCCGAGCTGGCGCAACACGAATGGAGCGAAAGCGCCCTGTTGCTGAATGATGCGGTGGAGCCCGCACACAATCCCCACGGCAATCTGGTTGAAGGCACGCCCGTGGTGTCGGAACTCGCGTGGGCACACGCCTATGAATGGCCGGTGTGCGACATCGGGCCGGATCATCGGCCCATCGACAAACCAACGGCCCCGACGTTGGTCCTGCTTCAGCGCCGTGGTGGGCACGTGACGTTTTCACGCCTTGCGCCAATGGCTTATGCGCTGCTGGTTTCGCTGACGGAGCATAGGCGCAGCGGGCGGGAGCATTTGGTTGCGTTGGCCGAGGCGGCAGGAGTGACGGTGCGTGAGTTGACGCCGGTGGGGGTCGCGGCCCTTGAGGGGTTCAAGGCGCAGGGGATTGTGTTGGGAACGCGTTGGGGGTGA	MPEQLLDQLNCMANYVRNPQNPPPPGIETRRLAVYRQLFIGSIESLLAASFPVIHQTLPDADWRWLVHDFYANYRCQTPLFTQLGGEFVSYLEQRACSQNHPAWLPELAQHEWSESALLLNDAVEPAHNPHGNLVEGTPVVSELAWAHAYEWPVCDIGPDHRPIDKPTAPTLVLLQRRGGHVTFSRLAPMAYALLVSLTEHRRSGREHLVALAEAAGVTVRELTPVGVAALEGFKAQGIVLGTRWG				NA	NA	NA	NA	NA
D1-36_03001	972	cdhR_7	COG4977	HTH-type transcriptional regulator CdhR	ATGCTCTCCGTACGCGTTGCTGTTTTAGCTTTCGAAGGCGTCAGCCTTTTCCACCTTTCGGTGCCGGGAATGGTATTGGGAACCGCCCAGCCTGCGCCCGATGGGCCTCGGTATGAAATCAATTACTGCGCAGAAGTGCCCGGAATGGTCGGTACCGACCAAGACATTGGGTTGTCGGTAAGCCTCGGCCTGGAGCTGATGGAAACCTGCGACGTCATCATCATCCCGGCGTGGGGCGATCAATCCCTGATTGCATCGCCCCAGCTCGTGGAAGCGCTGCAGCTGGCCAACACGCAAGGCAAGCTCATTGTGGGATTGTGTTTGGGGGCATTCGTCCTCGGCGATGCCGGGCTGCTCGATGGAAAGGAAGCCACTACCCACTGGGCTGCCCGTGACCAGTTTGCGCAACGTTTTCCCAAGGTTCGATTCAAACCCGAGGTGCTTTACGTCCGTGCCGATAACATCGTGACGTCCGCGGGCACCGTAGCGGCAATCGATTGTTGCTTGCACCTGGTGCGCGAGCGCCTCGGTGCGGACGTGGCGAATCGCACCGCGAAAATGCTGGTGACGCCACCTCACAGGCCGGGAGGCCAGGCGCAGTATGTTGAACACCCAGTGCCAGCATTCGCTGGCGAGACTCATTTATCCGACGTCCTGACATGGGCCCGAATGAATCTGTCCAGTGACCTGTCTCTCGACGCTCTGGCAGACACGGCGAAGATGAGCAGGCGAACGTTTACCCGTCGGTTCAAGGAGGCGACGGGCACAACCGTGTCCAAATGGTTAACTGCTGAACGAGTGGCCAGAGCGCAGGCATTGCTGGAAACGACTGAGTTGCCCATCGAATGCATCGCAGGGGAGGTGGGGTTTGGGACGTCATTGTCGTTGAGGCAGCACTTTGGCGCGCATCTGGGAACGTCGCCTTCTGATTATCGGAAGATGTTTTGTCTTGGGGTGGGGCGCAAGCGTTGA	MLSVRVAVLAFEGVSLFHLSVPGMVLGTAQPAPDGPRYEINYCAEVPGMVGTDQDIGLSVSLGLELMETCDVIIIPAWGDQSLIASPQLVEALQLANTQGKLIVGLCLGAFVLGDAGLLDGKEATTHWAARDQFAQRFPKVRFKPEVLYVRADNIVTSAGTVAAIDCCLHLVRERLGADVANRTAKMLVTPPHRPGGQAQYVEHPVPAFAGETHLSDVLTWARMNLSSDLSLDALADTAKMSRRTFTRRFKEATGTTVSKWLTAERVARAQALLETTELPIECIAGEVGFGTSLSLRQHFGAHLGTSPSDYRKMFCLGVGRKR	PGPT0014658_5	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014658-ypdC-NA	NA	NA
D1-36_03002	891			hypothetical protein	ATGAAACTCAGAACGTTACAGCTTGCCCTCAGCATTGCTTGCGCCGTGGCCGCTACCCCTTCGTACGCCGGTTCAACTACTCCCAAGGCGCCTGGCGCCCCTCATAAACTGGATTTGCAGCAGGTCCGCAACGCGACGGTAAAAATCACCTTCGGTGACACCACCTTCCTGATCGATCCGATGCTGGCAAAAAAAGGCGCCTATCCGGGTTTTGAAAACACCTATCGAAGCAACCTTCGCAACCCCTTGGTTGATCTCACCCAATCGCCGGAGAAGGTTATCGCCGGGGTCGACGCCGTCATCGTCACCCATACACACCTGGACCATTGGGACGATGCCGCACAAAAAGCGCTGCCTAAAGACATTCCGTTGTTCGCTCAACATGAAGCAGATGCGCAACTGATTCGTTCCCAAGGTTTCAAGAACGTACGCGTACTAACTGACGAAGCGGAATTCGGCGGCGTCAAAATCACCAAGACCGGCGGTCAGCATGGCACTGACGAAATGTATGCCGTGCCAGCGCTCGCAAAACCTCTGGGCGAAGCCATGGGCGTGGTTTTCCAGGCGCCAGGCTATAAGACTCTCTACCTTGCCGGTGACACGATTTGGCGTAACGAGGTAGACCAGGCCATCAACCAGTACCGTCCGGAAGTAATCGTGCTCAACGCCGGCAAAGCAAAAATGGCGGGATTCGAAGGTTCGATCATCATGGGTGAAGATGATGTGCTTCGCGCCTCAAAAGCCGCGAAAAACGCACACATTGTCGCGGTGCACATGGACGCGATCAACCATATGTCCCTCACTCGTGAAGAACTGCGCGCCTATGTTAAGAAGCAAGGGATTGAGGGGCGTGTAGACATTCCGGAGGACGGTGCTTCGCTGGAATTCTAA	MKLRTLQLALSIACAVAATPSYAGSTTPKAPGAPHKLDLQQVRNATVKITFGDTTFLIDPMLAKKGAYPGFENTYRSNLRNPLVDLTQSPEKVIAGVDAVIVTHTHLDHWDDAAQKALPKDIPLFAQHEADAQLIRSQGFKNVRVLTDEAEFGGVKITKTGGQHGTDEMYAVPALAKPLGEAMGVVFQAPGYKTLYLAGDTIWRNEVDQAINQYRPEVIVLNAGKAKMAGFEGSIIMGEDDVLRASKAAKNAHIVAVHMDAINHMSLTREELRAYVKKQGIEGRVDIPEDGASLEF				NA	NA	NA	NA	NA
D1-36_03003	303			hypothetical protein	ATGGAATTGATCGAAGTATTTAAAGCCCTATCGAACCCTACACGCCTTCAAATCTTGAAAGGCCTGAAGGACCCGACAAAGAACTTCCCTCCGCAGGATGAAGGTGACGTTCTCACGGTGGGCGTTTGCGTCAGCAGTATCCAGGAAGGCATTGGATTGTCCCAATCCACGGTGTCTGGTTATCTTGCGACGCTGCAACGAGTGGGCCTGGTGGAAGTCAGGCGCATCGGTCAGTGGACTTACTACAAGCGTAATGAAGCGGCCATCAGCACCCTTGCTGAAATCATAGGGAAAGAGCTCTAA	MELIEVFKALSNPTRLQILKGLKDPTKNFPPQDEGDVLTVGVCVSSIQEGIGLSQSTVSGYLATLQRVGLVEVRRIGQWTYYKRNEAAISTLAEIIGKEL				NA	NA	NA	NA	NA
D1-36_03004	975			Zinc-type alcohol dehydrogenase-like protein	ATGAAAGCGATGGTATTGAAATCATTTGGCGGTGCGGAATCGTTTGAACTTCGCGATGTGCCCAAACCCGTGCCGCATGCAGGGCAAGTCCTGGTCCGGGTGCATGCCACCTCCATCAATCCCTTGGATTACCAGGTCCGACGCGGCGACTATCCGGATCTGGTGCCACTCCCGGCCATCACCGGACACGACATTTCGGGCGTTGTCGAAGCAGTTGGGCCGGGCGTGACAGCCTTCGCTCCCGGAGACGAAGTCTGGTACACCCCGCAAATATTCGATGGCCCAGGAAGTTACGCCGAGTACCACGTAGCTGCTGAGAGCATCATCGGCAAAAAGCCTCCCTTGCTAAGCCACCTTGAGGCGGCGAGCCTGACATTGGTTGGCGGGACGGCGTGGGAAGCACTGGTCGTGCGTGCGTCGCTCAGAGTGGGAGAAAGCATTCTGATACACGGCGGCGCGGGAGGTGTCGGTCACGTGGCGATCCAGTTGGCGAAAGCCATCGGAGCACGGGTATACACGACCGTGCGCGAGGCGAACTTCGAATTCGCGCGCAGTATGGGGGCCGATGTCGTCATTGATTACGAGAAGGAGGACTACGTCGAGGCCATCACGCGGGAAACAGAAGGCCGTGGGGTTGACGTCGTGTTTGACACCATCGGCGGCAATGCACTGTCACGCAGCCCCGACACACTTGCACAGCTTGGTCGCGTAGTCAGCATCGTGGACATTGCACAACCGCAAAACCTGGTTCAGGCCTGGGGCAAGAACGCGAGTTATCACTTCGTTTTCACAAGGCAGAACCGAGGCAAACTCGATGAGTTGAGTGCATTGATAGCACGAGGTCAGTTGCGGCCACACGTTGGCGCGGTCTATTCCCTTGCCGACATCCCGCTCGCCCATGCACGGCTGGAAAGTCCCAACAACGGCGTTCTAGGAAAAATCGCGATCGCCGTTGAGCCATCGCTCATCTCATAA	MKAMVLKSFGGAESFELRDVPKPVPHAGQVLVRVHATSINPLDYQVRRGDYPDLVPLPAITGHDISGVVEAVGPGVTAFAPGDEVWYTPQIFDGPGSYAEYHVAAESIIGKKPPLLSHLEAASLTLVGGTAWEALVVRASLRVGESILIHGGAGGVGHVAIQLAKAIGARVYTTVREANFEFARSMGADVVIDYEKEDYVEAITRETEGRGVDVVFDTIGGNALSRSPDTLAQLGRVVSIVDIAQPQNLVQAWGKNASYHFVFTRQNRGKLDELSALIARGQLRPHVGAVYSLADIPLAHARLESPNNGVLGKIAIAVEPSLIS	PGPT0013255_7536	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344	NA	NA
D1-36_03005	294			hypothetical protein	ATGATTTACGAGATCGCCCTGCTCCCCGTTCACAAGGACCGCATTGAAATGTTCCGACGTGCGTTTGCCGAGGTCGCTCCTCTGCTCACCCGTGCAAAGGGATACGGCGGTCACTTGCTGGCGCCCGGGATTGAAACCCCTGAACAATTCAACCTGATCGTGAGATGGCAGTCACTTGAAGATCACACGCCGGGTTTCGAAGAGAGTGAAGACCATCGGATATTCATGATGGGATTGGAGGAATATTTTTCGGATGAACCGAAGGTCTACCACATCGAGGGAGGCAGTTTTTAG	MIYEIALLPVHKDRIEMFRRAFAEVAPLLTRAKGYGGHLLAPGIETPEQFNLIVRWQSLEDHTPGFEESEDHRIFMMGLEEYFSDEPKVYHIEGGSF				NA	NA	NA	NA	NA
D1-36_03006	933			hypothetical protein	ATGTTGATTGGATATCGATTCGAGCGTACCGCGCGGGATGACCTGCATATCCACTCGATCAATTGGGTGCAGGGCGGATTCGTGCTGCTGACAAGCGCGATGACTTTCATTTTTCCAGTGGCGGCCGTGCTCGCAATCACAGATGCCGACTTGTCGCCGACAGGCATGGATCCATTGGCCTCACTCCTGCTCGTGCTCGGGCTGCTGCTGATTGCTGCCCTAGGCTTGGCGCTGATGCTTTACACCGGCACCCGCGAAACCTTGCTGTTGTCGCGTATCGACGGTGAAGGCAAGCGCCGTACCTGGAACTTCTTTGCACGCCGCGAACGGGTGCATTCGGTGTTTAGGTTCGACGCCGTCAAGCACCTCGAGCTCCGCCGCCATCAACAGGCCAAACCAGCCAACACCCAACTGTGGCTGGTGATGCGCGATGGCGCCACCCACCGCCTGACAAGTGACAACGTTGCGGTGGTGCCGGGCAGTGAACGCACCGAGCGGTGGCTGCGTGAGCTGAGCGACTACCTGCAGGTACCGATGCCCACGGAGGTTGCTGTCGGTTCGACGGCCGTTTCGAAAGTGCCCTACAGGCCTACTCCAACGCCGGCGAAGATCGCCAGGCAACACAAAGCGAAGGCACTCACGCCTTCGGCTGAGTCGACCGAACAACTAGGCATCCCCGCACGCGCCCTGCTCGCCTTGATTGGCGCTTTCCTGGTTGTGCTGGAGCTGACCCGTCTGATCGCATGGACGCCGTCGCTGTTTACCGGACGGATACGCATCGGCAGCACTCGCCCGACGATTTTCTACTGGACCGAACAGCCCGTGGCCTTTTCATTCCACTTGATTATCGGCCTGGCAGAGTTGCTGATCATCGGCGTCATCGCCTGGGGCTGCGTGCGAGTGGCGATCGAGGGGCGGTTGAAGTCAAAATAG	MLIGYRFERTARDDLHIHSINWVQGGFVLLTSAMTFIFPVAAVLAITDADLSPTGMDPLASLLLVLGLLLIAALGLALMLYTGTRETLLLSRIDGEGKRRTWNFFARRERVHSVFRFDAVKHLELRRHQQAKPANTQLWLVMRDGATHRLTSDNVAVVPGSERTERWLRELSDYLQVPMPTEVAVGSTAVSKVPYRPTPTPAKIARQHKAKALTPSAESTEQLGIPARALLALIGAFLVVLELTRLIAWTPSLFTGRIRIGSTRPTIFYWTEQPVAFSFHLIIGLAELLIIGVIAWGCVRVAIEGRLKSK				NA	NA	NA	NA	NA
D1-36_03007	255	imm_2		Colicin-E3 immunity protein	ATGGGACTCAAATTGCGACTTGAGTGGTATAGCAAGCAAACGGAATCCTTCGAAGGAGAAGAATATACAGAGGATCTGGGTGATGATGGCTCGGTCGTGGAGGCTTTAGGCATCCCGTTCGATAACAACATAAATAACGGGGGGTTTGATCTCCTGTTGGACTGGGTAGGAATTATCCAGCCGTACTTTCAGCATTCAATCGATTGGGCGAACTACGACTATCAAATAGCTTTTGATTATCTAGATAGCTGGTAA	MGLKLRLEWYSKQTESFEGEEYTEDLGDDGSVVEALGIPFDNNINNGGFDLLLDWVGIIQPYFQHSIDWANYDYQIAFDYLDSW				NA	NA	NA	NA	NA
D1-36_03008	744			hypothetical protein	TTGCTTTGGCCTTCCAGCCTGGGCGACAGCGCGCTCTACAGCGAAGACCAGCTACGCCAGCTAAAAAAGGCCCGCAGCCGCATGCGCTTGAGCATCGAGCAACAGGCCGACGGCAGTATCAAGGGTTACGGTTTCTACACCGGTCAGAACCGCGGCTGGGAAATGGTCGACGTCGTCCACCTGACGCCGCGCGCCGACCAATACATCGCCGACCTGGGCGATGGCATCGAACTGATCTGGACCCCAGCCACCGACCCCTCCGAAACCCTCGGCATCCCCGCCCTGGAAGCCGCCCCCCAAACCCCGCATATCTGGATCTACCCGTCGACGCCGATGGCGGACAGCATCATCGTCAATCCGATCTATCCGCCGGAGTACAAGGATTTCATTCTGGTGTTCCCGGTGGACTCGGGGGTTCGGCCGGTTTATGTGGTTTTGAGCATCCGCCGAAAGGGTCTGGCCGAGGCGGGCCACGACTATCATCCTGCTCCGAAGACACATGAAATTACGGGCTTCTCTGGTCTGAAGAAAGGCAAGAAGAAAACTCCGGTGCAAGGAGGCGGAGGCTTAAGAGATCGCTGGCTCGACGCCAAAGGCCGGACCATTTACGAGTGGGATGCCTCGCACGGTGAACTGGAAGCTTACCGAGCAAGCGACGGAAGTCATTTAGGTGCATTCGATCCAATTACTGGCGAGCAGACAGATGGCCCTAAGAAAAATCGCAGCATAAGAAAGTATTTGTGA	MLWPSSLGDSALYSEDQLRQLKKARSRMRLSIEQQADGSIKGYGFYTGQNRGWEMVDVVHLTPRADQYIADLGDGIELIWTPATDPSETLGIPALEAAPQTPHIWIYPSTPMADSIIVNPIYPPEYKDFILVFPVDSGVRPVYVVLSIRRKGLAEAGHDYHPAPKTHEITGFSGLKKGKKKTPVQGGGGLRDRWLDAKGRTIYEWDASHGELEAYRASDGSHLGAFDPITGEQTDGPKKNRSIRKYL				NA	NA	NA	NA	NA
D1-36_03009	741	puuD_1	COG2071	Gamma-glutamyl-gamma-aminobutyrate hydrolase PuuD	ATGTCTCGTCCACCCATGATCGGAATCATCGCCTGTTCAGGCAAGGTCGGCCCACACACCGTCCAGCTCAGCAACGACAAATACGCACAAGCCGTCGCGACCGCCGCCGAGGCACTGCCGGTGATCCTTCCGGTGGTTGCGTCACTGATCGATCCGGCTGACGTCATCGCTGGCCTGGACGGGCTGCTTTTCACCGGCTCGCCTTCCAATATCGAACCCCATCACTACGGCGGCCCACCCAGCCCGCCTGGCACCGAGCACGACCCGGCCCGGGATAACCTGGCGCTGCCGCTCTGGCGCGCCGCTGTCGAGGCCGGTCTTCCGGTGCTTGGCATCTGTCGCGGCTTCCAGGAAATGAATGTCGCTTTTGGCGGCACGCTCCATCAACAACTCAACGGCCCCGGCGCCGAGCACGAGCCGCCGAGCAACGAGCCGGTCCAGGACCAATACGCCCGCAACCATGCACTGACCGTGCGACCGGGCGGGGTGTTGGCGCGGTTGGGGCTCAAGGAACAGATCGAAGTCAACTCCGTCCACGGCCAGGGCATCGCACGGGTGGGGCAGGGTTTGCGCATCGAAGCCGTGGCGGAGGATGGCCTGGTGGAGGGGCTTTCGGTGGAGGGCAGCCGGGCGTTTGCGTTGGGGGTGCAATGGCACCCGGAATGGGAAGTGACGGAGCATCCGGATTATCGGGCGATCTTTCGCGCGTTCGGAGAGGCGTGCAGGCAGCGGGCGAGCTAA	MSRPPMIGIIACSGKVGPHTVQLSNDKYAQAVATAAEALPVILPVVASLIDPADVIAGLDGLLFTGSPSNIEPHHYGGPPSPPGTEHDPARDNLALPLWRAAVEAGLPVLGICRGFQEMNVAFGGTLHQQLNGPGAEHEPPSNEPVQDQYARNHALTVRPGGVLARLGLKEQIEVNSVHGQGIARVGQGLRIEAVAEDGLVEGLSVEGSRAFALGVQWHPEWEVTEHPDYRAIFRAFGEACRQRAS	PGPT0007640_56	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINE_USAGE	PLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007640-puuD-K09473	NA	NA
D1-36_03010	1707			hypothetical protein	ATGGCGCAAGAGCCGTTGCGCCTGGAAAGCCTGAAGCGCTGCGGCGACTTGCTCGAAATCGAGCGCCAGGAGTGGTGCTTGACCGCGCGAGGGCTGGGTGAAGCAACGCCGCAACTGAAACTCGGTGAAAAAGCGATTCCCGCTGACAGGGTCCAGCGTGACGGCCAACGCCTGCGTCTGCATTTGGACAAGGCCGACTACCAAAGCGGGCCGCTCTGGCTGGAAGACGGTCCGCGCGCCAGCAATGCCGTCTGGTTGACCCTGCGCAGCAGTCATGTCGTCGCGGCCGGGCCGGATGAGGTGACCAAGAACATGGACGGCCTGACCACCTATGTGGATCTGGTCAGCGTGTTGATCGAGGAAAGCCACGATGGCCGCCAGGAGGCGGAACGTCTCGCCAACAAGTACGGGGCCAGGGTGGTCGGCAGCATCGCGCCGCTCAACGTGTATCAATTGCGCCTGCCGGCCAGGGACCTGATGCAGCGCGACGCGTTGGTGCTGCGCCTGGGCGGCGAAACCAGCGTCGATGCCGTAGTGATCGAAGAGTCCGGGGCCGAAGAAACCGAGCAAGCGCCCACCCAGCCCGAAGAGCCCAAGAAACCGGCCCAGGGCTCCGATGAATGGGCCGCGAATCGCTTTCTCGACGCGGTGCATTACTACCAGCGGCGCATCCCCGGGCAGCAGGCGCCAATCCAACCGCAGCCGGTGCGCATCGGCTTGATCGAGCGTGACGTGGATTTCGACACGGCGGATTTTGCCGACTATCTTGGCCCCTGCTCAATGCCGCGCACCTGCGTCTACGCCCGTGATGCGAACAAACCCGACAACCATGGCACGACCGTCGCCGGCATTCTCGCCGCGCGCTGGAACGATGGTGGCAACACCGGTTTGCTGCGGGGCCTGGACAAGGCGAGCGGCGGCTTCGAAGTGATCGTCGAGCGAAATTCGGACGCAGGGATCACAGCCAACATCGCCGCCTCGGTGAACCTCGTCGAGGATGGCGTCCGTGTGCTGAACTGGAGCTGGGGCATCCACCGCGTGGGAGCGAAAGACGTCAAGGGCGATGACGTCGATTCGCTGCTGCGTTCGGGTATTGCCATGAGCGGCTACGAAGAACTGCTGGAAGAGTTTTTCCTGTGGCTGCGCAAGGAACATCCCGACGTGGTGGTGGTGAACTCCGCTGGCAATGGGTCGTCATTTTCCGGCACCGATGAATACCGCCTGCCCTCCTCGTTCATTACCGAACAGTTATTGGTGGTCGGCGGACACCAGCGCAGCGAACGGGCCGGCGTCGCCGTCGATGACCCAGGCTACGCGGTCAAGCGCAACTCCTCGAATATCGACATGCGCGTCGACATCACCGCCGCCGCGTGCACCCACGCCTCGACGCCCAATGCCGGCGAGGATGGCGCGGTGCATTGCGGCACATCGTACGCCACACCCATGGTCACCGGCCTGCTGGCAGCGATGCTGTCGATCAACCCGCAACTTCACCCCGAACAGCTGCGCATGCTCCTGCGCCGCAGCGCCATGACCATTGGCGACAATCACGACTTCGAACAAATGGACGGCGAAGACCTCACCGCACCCATCCTGCCGTCGGAGCGCAATTACCAGCTCAACGACAAGGACGTAGGGCGTTCGGCACGGCTGGACATGCAAAAGGCGCTGGATCTTTCGGTGCAGAGTCGCAGCCGGGTGCGTTGA	MAQEPLRLESLKRCGDLLEIERQEWCLTARGLGEATPQLKLGEKAIPADRVQRDGQRLRLHLDKADYQSGPLWLEDGPRASNAVWLTLRSSHVVAAGPDEVTKNMDGLTTYVDLVSVLIEESHDGRQEAERLANKYGARVVGSIAPLNVYQLRLPARDLMQRDALVLRLGGETSVDAVVIEESGAEETEQAPTQPEEPKKPAQGSDEWAANRFLDAVHYYQRRIPGQQAPIQPQPVRIGLIERDVDFDTADFADYLGPCSMPRTCVYARDANKPDNHGTTVAGILAARWNDGGNTGLLRGLDKASGGFEVIVERNSDAGITANIAASVNLVEDGVRVLNWSWGIHRVGAKDVKGDDVDSLLRSGIAMSGYEELLEEFFLWLRKEHPDVVVVNSAGNGSSFSGTDEYRLPSSFITEQLLVVGGHQRSERAGVAVDDPGYAVKRNSSNIDMRVDITAAACTHASTPNAGEDGAVHCGTSYATPMVTGLLAAMLSINPQLHPEQLRMLLRRSAMTIGDNHDFEQMDGEDLTAPILPSERNYQLNDKDVGRSARLDMQKALDLSVQSRSRVR				NA	NA	NA	NA	NA
D1-36_03011	162			hypothetical protein	ATGAATCGTCGCAAGAAAATAAACCAGTTGCTCAAGGCCAACGCCAAAAAAGCCAGTGCCAAGCTGGCACCGAAAAGCAAAGACCGATACATCAGCAAAGCCGACCGACTGAAAATGGCGGCTGAAGCCGGACCGGACTCGACCGTTTCCCCTGAGAGCTGA	MNRRKKINQLLKANAKKASAKLAPKSKDRYISKADRLKMAAEAGPDSTVSPES				NA	NA	NA	NA	NA
D1-36_03012	801			hypothetical protein	TTGAACCCCATCGACCTCCTGTCGCTTCAACGCGTCATCACCGCCCACGGCACACTCGAAGGCGCGGCCTATTTCGACGCAGAGGAAAGCCTCGTCCACGACATATTCGTGGATCGCATCGTTCTCCAGACCAACTACCTGGACCACAGCAGCTATAAGGTCGACCTGGCCGCGGGCGCGGTACGTGTGCGCAAGACGCGGCTGGATAACCACCACCGAGGCCACAAGGCCCAGGTGATCGACGATGCCATGGACGAGGACGATTGGCTGGAATTGGGCAGTCTGTGGCGGCGTCTGAGTCGTGACCTGGACACTCAGGGGCAAACGCCACCACCGGATCCGGCCGATACGCTGGCGGACCTGTTCGACTGCCTGTTCGACGAGACACACGCGCAAGCGCTGATCGAAAACATGCCGGCGGCTACCGGCCGATGGGACTGGGCGTGGACTCAGCTGCAATCGGCCCTTGTCAGCACGCATCGGATGGCTGAGTTCGAGTGGAAGGAATGGTCGTTGTCTGGCGTCTACGCCATCAACGCCCTCGCCCCCCTGCGCGAACGGGGCATTGAAATCCCCACGCCCGACGGCACAGTCGTCGATGCAGTCAATCACGCCGACGATTGGGAGCGGGCGCTGCTCCAGTATTTCAATGCACGACTGGAAATCCACGATCTGAAGCTGTTGGCCATCGGCACGCATTTCGACGAGTACCAAGCGTTTGCATGCCTGCCGATGAACGGTCTGGGCCTGGCCAATGCGTTGGAAATCATGGGCAGGCTGGGCATCGTCTACAAATGCTGA	MNPIDLLSLQRVITAHGTLEGAAYFDAEESLVHDIFVDRIVLQTNYLDHSSYKVDLAAGAVRVRKTRLDNHHRGHKAQVIDDAMDEDDWLELGSLWRRLSRDLDTQGQTPPPDPADTLADLFDCLFDETHAQALIENMPAATGRWDWAWTQLQSALVSTHRMAEFEWKEWSLSGVYAINALAPLRERGIEIPTPDGTVVDAVNHADDWERALLQYFNARLEIHDLKLLAIGTHFDEYQAFACLPMNGLGLANALEIMGRLGIVYKC				NA	NA	NA	NA	NA
D1-36_03013	954	cpo_2		Non-heme chloroperoxidase	ATGAACACAATCAACCGCACCCTGGCTGTCGCAACCCTGGCCCTGGCCACCCTCGGCGCCGAAGCGGCGACACCTGTCCAGGCCGGCGCCAGCGCCTCGGCAATCGGCAGCGTGGTGCAGTCCGCCAGCTACATCACCACCAAAGATGGCGTCCAGCTGTATTACAAGGATTGGGGCCCGCGCAATGGCCAGGTCGTCACCTTCAGCCACGGCTGGCCGCTGGATTCCGACAGCTGGGAAGGACAGATGATGTTCCTCGCGTCCAAGGGCTACCGCGTGATCGCCCATGACCGCCGCGGTCATGGGCGGTCCAGCCAACCTTGGGAAGGCAACGACATGGATCACTACGCCGACGACCTCGCGGCGGTCATCGAAGCGCTGGACCTGAAGAATGTCACCCTGGTCGGCTTCTCGACGGGGGGCGGTGAAGTGGCTCGGTACATCGGTCGCCATGGCACAGCCCGGGTGAAAAAAGCCGTGCTGGTGTCCTCGGTTCCACCGCTGATGCTCAAGACGGATACCAACCCCGGCGGCTTGCCGCTCGAAGTCTTCGACGGCCTGCGCAAGGCCTCCCTGGAGAACCGCTCGCAACTGTACCTGGACATCGCGTCCGGTCCGTTCTACGGCTACAACCGCAAAGGCGCCAAGCCATCCCAAGGCCTGATCCAATCGTTCTGGGTTCAAGGCATGCAGGGCGGCAGCAAGAACACCTATGACTCGATCGCGGCATTCTCGGCGACCGACTTCCGTGGCGACTTGAAGAAATTCGACGTGCCGACGCTGGTGATCCACGGCGACGATGACCAGATCGTGCCCATCGACGCTGCAGGCCGCGCCTCGGCAGCGCTGATCAAGGGTGCCCGGTTGCTCGTCTATCCCGGTGCGCCGCACGGGCTGACCGAGACACACAAGGACCGTCTCAATCAGGACCTGCTGACTTTCCTCAAGGAATGA	MNTINRTLAVATLALATLGAEAATPVQAGASASAIGSVVQSASYITTKDGVQLYYKDWGPRNGQVVTFSHGWPLDSDSWEGQMMFLASKGYRVIAHDRRGHGRSSQPWEGNDMDHYADDLAAVIEALDLKNVTLVGFSTGGGEVARYIGRHGTARVKKAVLVSSVPPLMLKTDTNPGGLPLEVFDGLRKASLENRSQLYLDIASGPFYGYNRKGAKPSQGLIQSFWVQGMQGGSKNTYDSIAAFSATDFRGDLKKFDVPTLVIHGDDDQIVPIDAAGRASAALIKGARLLVYPGAPHGLTETHKDRLNQDLLTFLKE	PGPT0013125_294	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013125-cpo-K00433	NA	NA
D1-36_03014	408			hypothetical protein	ATGGACCTGGCCGAGCAATACCGCAACTACATCGCCTGCCTCAATGCCCGTCGCTGGCAAGACCTGGGCAGCTTCGTCGACGACAGCGTGCACTACAACGGAGACCCGGTGGGCCTGGCGGGTTATCGGGCGATGCTGGAAAACGATGTGGGCACGATCGCGGACTTGCGTTTCAATATCGACCTGCTGGTGGTCGAACCGCCGAATGTCGCGAGTCGTTTGCTTTTTGATTGCTCGCCGCGCGGACGTTTCCTCGGATTGGACACCCACGGTCGGCGGATTCGATTTTCCGAGAACGTGTTTTATACCTTCGAGCAGGGCAAGATCGTTCGGGTGTGGTCGGTGATCGATAAGGCGGCGGTGGAGGCGGCGCTGCAACGCCAAAGCCCTTTCGAAGAAGGGCCTTGA	MDLAEQYRNYIACLNARRWQDLGSFVDDSVHYNGDPVGLAGYRAMLENDVGTIADLRFNIDLLVVEPPNVASRLLFDCSPRGRFLGLDTHGRRIRFSENVFYTFEQGKIVRVWSVIDKAAVEAALQRQSPFEEGP				NA	NA	NA	NA	NA
D1-36_03015	489	lrp_2	COG1522	Leucine-responsive regulatory protein	ATGGAAGGTTTAGCGAAACTGGACCGGATCGACATCAGCATTTTGGTCGAGCTTCAAAAAGACGGTCGCATGACCAACGTCAGCCTGGCCGACGCTGTGGGGCTGTCAGCCAGCCCATGTCTGCAACGGGTCAAGCGCCTGGAGTCGGCGGGGTATATCTCCAGCTACAAGGCCCATCTCAATCTTGCCAAGATCACCGATTCGGTGACGGTGTTCACCGAAGTCACCCTGAGCGACCACAAGCGTGAGGACTTCGCCAAGTTCGAGTCCAATATTCGCCTCGTCGACGAAGTGCTCGAATGCCACTTGATCAGTGGCGGCTACGATTACCTGGTCCGTTTCATGACCCGCAGCATCCAGGATTACCAGGACGTGATGGAAAGCCTGCTGGACAAGAACATCGGCATCTCCAAGTACTTCAGCTACATCGTCATCAAGTCGCCGGTTCGCAAGGATGAGATTCCGTTGCGCAAACTGTTGCGGCATTGA	MEGLAKLDRIDISILVELQKDGRMTNVSLADAVGLSASPCLQRVKRLESAGYISSYKAHLNLAKITDSVTVFTEVTLSDHKREDFAKFESNIRLVDEVLECHLISGGYDYLVRFMTRSIQDYQDVMESLLDKNIGISKYFSYIVIKSPVRKDEIPLRKLLRH	PGPT0014049_14	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014049-doeX-K15782	NA	NA
D1-36_03016	657			hypothetical protein	ATGAAGCTGACTGAATACCAGGCGTTGCTGATCGACTGCGATGAGGTCCTGGTGGATCGTGATTCAGGTGTCTGGGCGGCCTTGCAGCCGTTGTTGGAAAACCATGCCGGACCATTGGACAAAGCCGCGTTGCTCGCCGATTTCAACGAGGTGCTGCAATCCCTGTATCCGCGCTTCGGCGAGTTGGGCTTCAGTGGCCTGCTGTGTTTCGCCCACCGTCAACTGGCCGAGCGCTGGAAGCTCAAGGCCAGTTGGGAGGAGGGCATGAGCTTCGCCCGCTCGGCCGCGGGCTGGACGCTGTTCGAGGACGCACCGGGAGCGATGCTTTACTTGCGCAAGTTCTATCGGTTGTTGGTATTGGGCGACCGCGACGCCGAGGACCGTGGCGTGTTGTGCGGGCGCCTGGGCATCGAGCCGGAGGATTTCATTTCGCTGGCGAGCGCGCCGCTGCAGGATCGTGACTGGCTGGACGCCAATGGGCTGGACGCGGCGGCGATCCTTCACGTGACCCGCCCTGGCACAGGGTCGCGGGCGGTTGGGGCGGTGTGCCTGATCTGTCGCGACCTCGACACCTCCCCGGCACCCTGCGCGGCGGACTACTGCATCAACAGTATGGCGGACCTGGTGGCTCAGCATCAGCTGTCTTTACGGCGCTGA	MKLTEYQALLIDCDEVLVDRDSGVWAALQPLLENHAGPLDKAALLADFNEVLQSLYPRFGELGFSGLLCFAHRQLAERWKLKASWEEGMSFARSAAGWTLFEDAPGAMLYLRKFYRLLVLGDRDAEDRGVLCGRLGIEPEDFISLASAPLQDRDWLDANGLDAAAILHVTRPGTGSRAVGAVCLICRDLDTSPAPCAADYCINSMADLVAQHQLSLRR	PGPT0006885_2615	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_HYDROCARBONS|OIL_DEGRADATION	XENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006885-dehI-K01560	NA	NA
D1-36_03017	1296	gabT	COG0160	4-aminobutyrate aminotransferase GabT	ATGAACAGTAAAGTCGAAGAAACCCCGAGTCTGCTCCGTCAGCGTGATCAATTCGTGCCCCGTGGGCTGGTGACCGCGCACCCGTTGGTGATCGATCGGGCCCAGGGTTCGGAGTTATGGGACGTGGACGGTAAGCGCTACCTGGACTTCGTCGGTGGCATCGGTGTGCTCAACATCGGCCACAACCACCCGAAAGTCGTCGCGGCGGTGCAGGCTCAATTGCAGAAAGTCTCCCATGCCTGTTTCCAGGTCGTGGCCTATAAGCCGTATCTGGATCTGGCTCAGCGCCTGTGTGAAATGATCGGCGACCAGCACGACTATAAGGCAGCGTTTTTTAGCTCCGGCGCCGAAGCCGTGGAAAACGCCGTGAAAATCGCCCGTGCCCACACTAACCGCTCGGCAGTTATTGCCTTTCGTGGCGGCTTCCATGGCCGCACGTTGCTTGGCACCACCCTGACCGGCATGAGCCAGCCCTATAAACAGAACTTCGGGCCGTTCGCGCCGGAAGTCTTCCACACGCCTTATCCAAACGCGTATCGAGGCGTCACCGGCGAAATGGCGCTCCAAGCGCTGGACGAGCTGCTAGCAACCCAAGTGGCGCCCGAGCGAGTGGCGGCGATCATCATCGAGCCGGTGCAAGGTGACGGCGGTTTCCTCTCGGCGCCCACCGAGTTTCTCCAGGGCCTGCGCGCGCTGACGGACAAACACGGGATTGTACTGATCCTCGATGAAATCCAGACCGGCTTCGGACGTACCGGCAAATGGTTCGGTTTCCAGCATGCCGGCATCCAGCCAGACGTGGTCACCGTCGCCAAGAGCCTGGCCGGTGGCTTGCCACTGTCGGGCGTTGTCGGCAAGGCCGCGATCATGGATGCGCCGCTGCCCGGTGGCTTGGGCGGCACCTATGGCGGCAACGCGTTGTCGTGCGCGGCGGCGCTGGCGGTGATCGACGCCTACGAGCAAGAACAGCTTTTGGCCCGCGGCGAGGCGTTGGGTGAACGGTTGCGCCAGGGCCTGTTGGCGTTGCAAACGCGCTATCCGCGCATTGGCGATGTGCGGGGCAAGGGTTTCATGCTGGCGATCGAGCTGATCAAGCAGGACGATGCGCGTACGCCGGATGCGGAGCTCAACCAGCGGCTGATCGACGAAGCCCGTGCCGGTGGGCTGCTGGTGATCAAGTGTGGGGTGTACCGCAACGTCCTGCGTTTCCTCGCGCCGCTGGTGACCACCGAAGCGCAGATCGACGAAGCGTTGCAGATTCTCGAAGGCGCCTTGGCACGGGTCTGTGCCGTTTAG	MNSKVEETPSLLRQRDQFVPRGLVTAHPLVIDRAQGSELWDVDGKRYLDFVGGIGVLNIGHNHPKVVAAVQAQLQKVSHACFQVVAYKPYLDLAQRLCEMIGDQHDYKAAFFSSGAEAVENAVKIARAHTNRSAVIAFRGGFHGRTLLGTTLTGMSQPYKQNFGPFAPEVFHTPYPNAYRGVTGEMALQALDELLATQVAPERVAAIIIEPVQGDGGFLSAPTEFLQGLRALTDKHGIVLILDEIQTGFGRTGKWFGFQHAGIQPDVVTVAKSLAGGLPLSGVVGKAAIMDAPLPGGLGGTYGGNALSCAAALAVIDAYEQEQLLARGEALGERLRQGLLALQTRYPRIGDVRGKGFMLAIELIKQDDARTPDAELNQRLIDEARAGGLLVIKCGVYRNVLRFLAPLVTTEAQIDEALQILEGALARVCAV	PGPT0007660_1112	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	INSECTICIDAL_COMPOUNDS	INSECTICIDAL-GAMMA-AMINOBUTYRIC_ACID_BIOSYNTHESIS,PGPT0007660-gabT-K07250	NA	NA
D1-36_03018	927	ghrA_1	COG0111	Glyoxylate/hydroxypyruvate reductase A	ATGGCCCTGCTCTATAAAGCTGACCCGATACGCGGCGAACAGTGGCGACGCCTGTTCGCCGAACAGGCACCCGACATCCAATGGCGGGCCTGGCCAGACATCGGCGATCCTCGGGATATCCGCTACCTCGCCGCCTGGCAGGCACCGGATGACCTCGAGACGCTGCTGCCCAACCTTGAGGTGCTGTTCGCCCTCTCGGCCGGCGTCGACCAACTCGACCTCGCACGTTTGCCACCCACGCTGCCCGTGGTGCGGCTGCTGGATCCAGGCATCAGCCAGGGCATGTGCGAATACGCCAGTTTCGCCGTGCTCAGCCTTCATCGAGACATGATGCGCTACCGCCAGCAACAGGCCGAACGTCGCTGGCAGGCGCATCGCCTGGTGCCGGCCCGGCAACGTCGGGTGGGTGTCATGGGTCTTGGTCTGCAGGCGCGACAGATACTCGCCACCTTGAAGCCATTCGGCTTTGCCTTGTCGGGGTGGGCCCGTAGCGAACATCACATCGATGGCGTGACCTGTCACGCCGGCGCCGAGCAATTGCCCGCTTTCCTCGGCCAGTGCGACATCCTCCTGTGCGTGCTGCCGCTCACCGAACAGACCCAAGGCATCCTCAACCGCCAGCTATTGGAGCATCTGCCCAAGGGGGCAGCCTTGATCAACATGGGCCGGGGGGGTCACCTCGTCGAGGCGGACTTGCTCGACGCACTCGCCAGCGGGCAACTGAGCGCGGCAGTGCTCGACGTGCTGACGCAGGAACCGGCCGATCCCGGGCATCCTTTCTGGAACCACCCGCAGATCCTGCTGACGCCTCATATCGCGGCGATGACCCAGCCGGAGACAGCCTTTGACGGACTGCTGGAGAACATTCGACGGCACCAGCGGGGCGAATCGATGCTGGGCCTGGTGGATCGCGAGCGCAATTATTGA	MALLYKADPIRGEQWRRLFAEQAPDIQWRAWPDIGDPRDIRYLAAWQAPDDLETLLPNLEVLFALSAGVDQLDLARLPPTLPVVRLLDPGISQGMCEYASFAVLSLHRDMMRYRQQQAERRWQAHRLVPARQRRVGVMGLGLQARQILATLKPFGFALSGWARSEHHIDGVTCHAGAEQLPAFLGQCDILLCVLPLTEQTQGILNRQLLEHLPKGAALINMGRGGHLVEADLLDALASGQLSAAVLDVLTQEPADPGHPFWNHPQILLTPHIAAMTQPETAFDGLLENIRRHQRGESMLGLVDRERNY	PGPT0019465_1337	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0019465-ghrA-K12972	NA	NA
D1-36_03019	858			hypothetical protein	ATGTCCATTTCGCAACGCCCTGCTTACGTTTATCGCGCCATGACCGACGCTGATGTTCCCTCGGCGCATGCCTTGTCCGTGCAGCTGAAATGGCCCCATCGCCTGGAGGATTGGGCCATGTTGCAGCGGCTCGCCCAAGGTTTCGTCGCACTGGATGGGGATCGCTTGATCGGCACTGCGTTCTCCTGCGCCCAGGGCAACTACGCCACCATCGGCCTGGTTATTGTCGACGATGAATACCAGGGCCGGGGCATCGGTCGCAAGTTGATGGAGTTGGCGATCGAGGCTTGCGGTTCGCGGACCGCCGTTCTCAATGCCACGTTGGCCGGCACGCCTCTATACGCCAGCCAGGGCTTCGTTGAGTTCGGGCAGATCCAGCAACATCAAGGGCACACATCGTCACCTGTCCCGCCGGCCCTGGCCAAAGGCCAACGCTGCCGTGCGCTGGCACCGGCCGATCGGGCCGAGTTGATCAGGCTGGCCAACCTTGGCAGCGGCCTGGATCGCGAGGCCGTGCTGAACGATCTGTTCGATGTCGTTGAACAGGGCGTGGGCATCGAGCAGGACGGCCAGTTGCGCGCCTTCGCCCTGCTTCGCCCTTACGGACGCGGACGCTGCATCGGCCCGGTCATCGCCCAGGACGCCACGCAGGCCCGGCACCTGGTCGCGGCATTGCTGGCCCACGTGCCGGAGGCGTTCGTGCGCATCGATATTCCCGCCGACTGCGGCTTGGGGCCCTGGCTCGAAGAGATTGGCCTCAAGCACGTCGACACCGTTGCCCAGATGGCACAAGGCACCGCGCCCCAGGCCAGTGGCGGCGTGCGCCAATTCGCACCGGTGACCCAGGCCATCGGCTGA	MSISQRPAYVYRAMTDADVPSAHALSVQLKWPHRLEDWAMLQRLAQGFVALDGDRLIGTAFSCAQGNYATIGLVIVDDEYQGRGIGRKLMELAIEACGSRTAVLNATLAGTPLYASQGFVEFGQIQQHQGHTSSPVPPALAKGQRCRALAPADRAELIRLANLGSGLDREAVLNDLFDVVEQGVGIEQDGQLRAFALLRPYGRGRCIGPVIAQDATQARHLVAALLAHVPEAFVRIDIPADCGLGPWLEEIGLKHVDTVAQMAQGTAPQASGGVRQFAPVTQAIG				NA	NA	NA	NA	NA
D1-36_03020	708			hypothetical protein	ATGCTTGAACCCACTGCAATGCTGTTGGCGCGCGCCGATGGCAGCCCCGCCTCCACCTCATTCAAGCCAGGTTCATTGGGTGCCAACGACCCCTTCGACCGGCTCATTGCCTACGCTGGGGTTGATGGCATGGCCGCCGGCGTGGTCCGGGCCGGCGGACGAATCAGCGTCGAGGAGTATCCGTTCAGCGAAACGATCGTCGTCCATGCCGGGGCGGTCACGCTGCGCAGCCAGGCGCAAACGCTGCGGCTCAATCCGGGCGAAAGCGCTGTGATAGCCCGTGGCACCGCCCTCGAAATTGATGCGCAACCGGCTTCGCTGTGGGCCTTTTGTGCCGATACCCAATCCGTCGAGGCCAATCAACCGGGACTCACCGCCCTGCCCGCGCCGACCTTGCTTGCACCCTCCGCGGCGCCCGACGAAGAGATCCTGCTCAGCCCGGCGCCGCAATGCCGCTCGCACAACCTGTTCGTCGAGCAAGCGACGAACCTGCGCATCGGCATCTGGGATTCAACCCCCTACACACGCAAGTCACGGCCGCACAAGCTGCATGAACTGATGCACCTGCTCGAAGGCAGCGTCACCTTGCAACTGGCCGACGGCACCGAGCTGATCGTCGGCACCGGCGATACAGTGTTCGTTCCCTTGGATGCCCCTTGCGCCTGGAAAAGCAGCGTCTACGTGCGCAAGGTCTATGTCGTGAGATGA	MLEPTAMLLARADGSPASTSFKPGSLGANDPFDRLIAYAGVDGMAAGVVRAGGRISVEEYPFSETIVVHAGAVTLRSQAQTLRLNPGESAVIARGTALEIDAQPASLWAFCADTQSVEANQPGLTALPAPTLLAPSAAPDEEILLSPAPQCRSHNLFVEQATNLRIGIWDSTPYTRKSRPHKLHELMHLLEGSVTLQLADGTELIVGTGDTVFVPLDAPCAWKSSVYVRKVYVVR				NA	NA	NA	NA	NA
D1-36_03021	1143	emrA_3		Colistin resistance protein EmrA	ATGACCGAGCCGACCTCCACGACCACCAACGCCATCGCCGATACGCCTGAGGACCAGGCGCCACCCGCCGTTCCAGCGACAAAACCGCGTTCCCTGCGGATAAGAGTTCTTTCATCCCTGGGGTTCGCGGCAGTGGCGATCGTCGGTGTGCTGGTGGTGCTTTATGCCTGGCAATTGCCGCCGTTCGGTAGCGCCGTGGAAACCACAGAAAATGCCTTGGTGCGCGGGCAAGTGACGATCATCGGGCCGCAGTTGAGCGGCTACGTGCATGAAGTGCCGGTGCAGGATTTTCAGTTCGTGAAGGCTGGCGATCTGTTGGTGCGCCTCGACGACCGCATCTATCGACAACGTCTCGACCAGGCACTGGCGGAACTGGCCGTGCAGCAAGCGGCCCTCGCGAACGTCGTGCAACAACGCAACAGCGCCGAAGCCACCATCAAGCTGCGTCAGGCCGCGCTGGCGGACAGCCAGGCCCAGGCACGAAAAAACGCCGCCGACCTGCGCCGCAACGAGGAACTGATCAAAGACGGTTCGGTGTCCCAGCGTGAGCTGGACCTGAGCCGCGCGGCCAGCGCACAAACCCAAGCCGCCGTGGCGCAAGCCCAGGCCAGCCTGGAAATCGCCCGCCAGGATTTGCAAACGGTGGTCGTCAACCGTGGCTCCCTCGAAGCCGCCGTCGCCAGTGCCGAGGCGACGGTGCAACTGGCGCGCATCGATCTGTCCAACACCCGAGTCGTGGCGCCCCGGGACGGTCAGTTGGGGCAGATCGGCGTACGCCTCGGGGCCTACGTCAACTCCGGTGCACAGCTGATGGCCCTGGTCCCGAACCAGAAATGGGTGATCGCCAACCTCAAGGAAACCCAGATGGATAAGGTGCGTGTTGGCCAGCCGGCAAGTTTCACCGTGGATGCCCTCGGCCATCGCCGATTCCATGGGCATGTCGAACGGATCTCCCCGGCCACCGGTTCTGAGTTCAGCCTGTTGCAGGCCGACAACGCCACGGGCAACTTCGTCAAGATCGCCCAGCGCGTGCCGGTTCGCATCACAGTCGATCCAGGCCAGCCGGAAAGCGAACGCCTGCGGCCGGGAATGTCGGTGGTGGTGAGTATCGATACGGCGGGTAATGCAGAAAAAACAGAATAA	MTEPTSTTTNAIADTPEDQAPPAVPATKPRSLRIRVLSSLGFAAVAIVGVLVVLYAWQLPPFGSAVETTENALVRGQVTIIGPQLSGYVHEVPVQDFQFVKAGDLLVRLDDRIYRQRLDQALAELAVQQAALANVVQQRNSAEATIKLRQAALADSQAQARKNAADLRRNEELIKDGSVSQRELDLSRAASAQTQAAVAQAQASLEIARQDLQTVVVNRGSLEAAVASAEATVQLARIDLSNTRVVAPRDGQLGQIGVRLGAYVNSGAQLMALVPNQKWVIANLKETQMDKVRVGQPASFTVDALGHRRFHGHVERISPATGSEFSLLQADNATGNFVKIAQRVPVRITVDPGQPESERLRPGMSVVVSIDTAGNAEKTE				NA	NA	NA	NA	NA
D1-36_03022	1662			hypothetical protein	ATGGATCAATACACCCCACGCGCCTGGGAGCCCCACGAAAGGCCGACGCTGCCAGGCTCCCCGTCGACGCCACTGCATCCCACGCCCAAACGGCTCGCCTTTGCGCTGGTGGGCGTGCTGGTGGCGTTGACCGGGGGGTTGGGCAATTCGCTGGTGATCGCCAACTTGCCTTACTTGCAAGGGGCCCTCGGCGCCACCACCGCCGAGATGGCCTGGTTGCCCGCCGCCTACGTCATGACCAACGTCTCCATGAACCTGCTGCTGGTAAAGTTTCGCCAGCAGTTCGGCTTGCGCGCGTTCACTGAGGTGTTCCTGGCGCTGTACGCCCTGGTGACGTTCGGTCATCTGTTCGTCAACGACCTGAACTCGGCGATTGCCGTGCGGGCGGCCCATGGCATGGTCGGCGCTGCCCTCAGCTCCTTGGGCCTGTATTACATGGTCCAGGCTTTCCCGGCGAAGTGGCGGCTCAAGGCGCTAGTGCTGGGCCTGGGGACTTCGCAGCTGGCCTTGCCGATGGCCCGGTTGTTCTCCGAAGACCTGTTGCAAATTGCCGAGTGGCGGGGCCTCTACCTGTTCGAACTGGGGATGGCGCTGCTCTCGTTGGGTTGCGTGCTGCTGCTCAAGTTGCCACCGGGCGACCGCTTCAAGACGTTTGAAAAACTCGATTTCCTGACCTTCACGGTGCTTGCCAGCGGCGTCGCCTTGTTGTGCGCGGTGCTGTCGTTGGGGCGCATCGATTGGTGGCTGGAGGCGCCATGGATCGGCGTGGCCTCGGCGCTGTCCATCGTGTTGATCCTGGCGGGCCTGGCGATCGAGCATAACCGCAGCAACCCGATGCTGATGACGCGCTGGCTGGGCAGTGGGGTGATGATCCGCCTGGCCCTGGCGGTGATCCTGATTCGCATGGTGACTTCGGAACAATCCACTGGAGCGGTGGGGTTTCTGCAAGCGCTAAACATGAGCAGCCAACAGATGCACAGCCTTTATGTGGTGATGCTGGTCGGCAGCATCGCCGGGCTGGTGACCAGTGCCTTGACGATCAACCCGGCGCACCTGTTCATGCCCCTGATCATCTCCCTCGCGTTGATGGCGACAGGTTCGGTCATGGACAGCTACTCGAACAACCTGAGCCGCCCGCAGAACATGTATTTCAGTCAGTTTCTGCTGGCGTTTGGCAGTACGTTTTTCCTGGGGCCGACGATGATTCTCGGCGTGCGCAATGTACTGACCAACCCGCGCAATCTGGTGAGTTTTTCCGTGTTGTTCGGGATTTGCCAGAACCTCGGTGGCCTGGTGGGGGCCGCGGTGCTCGGTACCTTCCAAGTGGTGCGCGAGAAATTTCATTCCAGCCACCTCGTGGAAAACATCAACCTGTTCGACCCTCGCGTGGCCGCGCGGGTGGACAGCGGTGGCTCGGCGGTGGGTTCGCTGATCGCCGATCCGGGCCTGCGGCACCTGCAAGGCATTCGCAGCCTTGCCGCGGCCGCCACCCGCGAAGCCAACGTGCTGGCCTACAACGATGTGTTCATGCTGATCGCGGTGATCGCCGTGCTGACCATGATCTGGATCTCCCTCCGCGCCCTGTGGCTGATGACTACCACCCAGCACGTCGCCACAGCGCCTGCCCCTTCGACACAACCAAGCGGTGCCACTTCTTCATGA	MDQYTPRAWEPHERPTLPGSPSTPLHPTPKRLAFALVGVLVALTGGLGNSLVIANLPYLQGALGATTAEMAWLPAAYVMTNVSMNLLLVKFRQQFGLRAFTEVFLALYALVTFGHLFVNDLNSAIAVRAAHGMVGAALSSLGLYYMVQAFPAKWRLKALVLGLGTSQLALPMARLFSEDLLQIAEWRGLYLFELGMALLSLGCVLLLKLPPGDRFKTFEKLDFLTFTVLASGVALLCAVLSLGRIDWWLEAPWIGVASALSIVLILAGLAIEHNRSNPMLMTRWLGSGVMIRLALAVILIRMVTSEQSTGAVGFLQALNMSSQQMHSLYVVMLVGSIAGLVTSALTINPAHLFMPLIISLALMATGSVMDSYSNNLSRPQNMYFSQFLLAFGSTFFLGPTMILGVRNVLTNPRNLVSFSVLFGICQNLGGLVGAAVLGTFQVVREKFHSSHLVENINLFDPRVAARVDSGGSAVGSLIADPGLRHLQGIRSLAAAATREANVLAYNDVFMLIAVIAVLTMIWISLRALWLMTTTQHVATAPAPSTQPSGATSS				NA	NA	NA	NA	NA
D1-36_03023	1302	nicP_4		Porin-like protein NicP	GTGAGCACTCGTGCCCGTTTTTCGTCCAGTAACCGCCCCAGCCGCCGTACCCTTCTCAAATCCACGCCCGCGCTGTCACTGCTCGGCTGTACCGGTCTGGCGCTGTTCATGCCCATGACCGCTGGTGCCGAAGGCTTTGTCGATGATGCCAAAGCCACGCTGAACCTGCGTAACGCCTATTTCAACCGCAACTTCGTCAACGACAACGCCACCCAGGGCAAAGCCGAGGAATGGACCCAGAGCTTCATCCTCGACGCCAAGTCCGGCTTCACCCAGGGCACCGTCGGTTTCGGCGTAGACGTGCTGGGCCTGTACTCGGTCAAGCTCGACGGCGGTCGTGGCACGGCCGGCACCCAGCTGCTGCCGGTGCACGACGACGGCCGCCCGGCCGATGACTTCGGTCGCCTGGGCGTGGCCCTGAAGGCCAAGGTCTCGAAGACCGAATTGAAAGTCGGCGAGTGGATGCCCGTGTTGCCGATCCTGCGTTCCGACGATGGCCGTTCCCTGCCGCAAACCTTCCGTGGCGGCCAGGTGACCTCCACCGAGATCAACGGCCTGAGCCTCTACGGCGGCCAGTTCCGCGCCAACAGCCCGCGTAACGACGCGAGCATGGAAGACATGTCGATGAACGGCCGCGGTGCATTCACCTCCGACCGTTTCAACTTCGGTGGCGGCGAATACGCCTTCAACGAAAAACGCACCCAGGTCGGCGTCTGGTACGCGGAACTGTCCGACATCTACCAACAGCAATATTTCAACCTGACCCACAGCCAGCCGATCGGCGACTGGACCCTGGGCGCCAACCTCGGTTACTTCACCGGCAAGGAAGACGGCAGCGCACTGGCCGGCGACCTCGACAACAAAACCGCCTTCGCCATGCTTTCCGCCAAATACGGCGGCAACACCTTCTACGTCGGCCTGCAGAAAGTCGGCGGCGACGATGCCTGGATGCGCGTCAACGGCACCAGCGGCGGCACCCTGGCGAACGACAGCTACAACTCCAGCTACGACAACGCCAAGGAAAAATCCTGGCAACTGCGCCACGACTTCAACTTCGCCGCCGTCGGCGTGCCGGGCCTGACCCTGATGAACCGCTACATCAGCGGTGACAACGTTCACACCGCCACGGTCGACGACGGCAAGGAATGGGGCCGTGAAACTGAACTGGCCTACACCGTGCAGAGCGGCGCACTCAAGAGTCTCAACGTGAAATGGCGTAACGCATCGATTCGTCGCGACTTCAGCACCAACGAATTCGACGAGAACCGTATCTTCATCAGCTATCCGATTTCGCTCCTGTAA	MSTRARFSSSNRPSRRTLLKSTPALSLLGCTGLALFMPMTAGAEGFVDDAKATLNLRNAYFNRNFVNDNATQGKAEEWTQSFILDAKSGFTQGTVGFGVDVLGLYSVKLDGGRGTAGTQLLPVHDDGRPADDFGRLGVALKAKVSKTELKVGEWMPVLPILRSDDGRSLPQTFRGGQVTSTEINGLSLYGGQFRANSPRNDASMEDMSMNGRGAFTSDRFNFGGGEYAFNEKRTQVGVWYAELSDIYQQQYFNLTHSQPIGDWTLGANLGYFTGKEDGSALAGDLDNKTAFAMLSAKYGGNTFYVGLQKVGGDDAWMRVNGTSGGTLANDSYNSSYDNAKEKSWQLRHDFNFAAVGVPGLTLMNRYISGDNVHTATVDDGKEWGRETELAYTVQSGALKSLNVKWRNASIRRDFSTNEFDENRIFISYPISLL	PGPT0023610_3	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0023610-galP-K16517	NA	NA
D1-36_03024	819	udh	COG0451	Uronate dehydrogenase	ATGACCACCACACAGATTCGCCATCCCTTCAATCGCCTGCTGTTGACCGGCGCCGCCGGCGGCCTTGGTAAAGTCTTGCGCGAACGCCTCAAGCCTTATGCCCGCCACATTCGCCTGTCTGACATTGCCAACATGGCCCCGGCCATCGATGAAAGCGAGGAAGTGGTGCCGTGCGACCTGTCGGATAAGCAGGCCGTGCATCAACTGGTTGAAGGTGTCGATGCCATCCTGCATTTCGGTGGTGTATCGGTTGAGCGTCCATTCGAGGAGATCCTCGGCGCCAACATCAGCGGCGTGTTCCACATCTACGAAGCCGCGCGTAAGCACGGTGTCAAACGCGTGATTTTCGCCAGTTCCAACCACGTCATCGGTTTCTACAAACAAGACGAAACCCTCGACGCCCACTGCGCTCGCCGTCCGGATGGCTACTACGGCCTGTCCAAGTCCTACGGCGAAGACGTCGCCAATTTCTACTTCGATCGCTACGGCATCGAAACCGTCAGCATCCGCATCGGCTCGTCGTTCCCGGAACCGCAGAACCGTCGGATGATGAGCACCTGGCTGAGCTTCGACGACCTCACCCAACTGATCGAATGCTCGCTCTACACACCCAAAGTCGACCACACCATCGTCTATGGCGTCTCCGCCAACCGTGACGTCTGGTGGGACAACAGCCACGCCGCGCACCTGGGCTACAAGCCCAACGACACCTCGGAAATCTTCCGCGCCAAGGTCGAAGCGCAACCGATGCCGGCCGCCGATGATCCGGCCATGGTCTACCAAGGTGGCGCCTTTGTGGCCGCCGGCCCGTTCGACTGA	MTTTQIRHPFNRLLLTGAAGGLGKVLRERLKPYARHIRLSDIANMAPAIDESEEVVPCDLSDKQAVHQLVEGVDAILHFGGVSVERPFEEILGANISGVFHIYEAARKHGVKRVIFASSNHVIGFYKQDETLDAHCARRPDGYYGLSKSYGEDVANFYFDRYGIETVSIRIGSSFPEPQNRRMMSTWLSFDDLTQLIECSLYTPKVDHTIVYGVSANRDVWWDNSHAAHLGYKPNDTSEIFRAKVEAQPMPAADDPAMVYQGGAFVAAGPFD	PGPT0018290_357	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GLACTURONATE|GLUCURONATE_DEGRADATION,PGPT0018290-udh-K18981	NA	NA
D1-36_03025	906			6-deoxy-6-sulfogluconolactonase	ATGCAAGCCGAATTGATTGTCGACGCACGCAACGCCGTCGGGGAAAGCCCTGTGTGGGTGCCCGAGGAAAACGCCTTGTATTGGGTGAACATCCCCAGCGGCGGCCTGCAGCGCTGGAGCGCCAGCAGCGCAAAGATCCAGAGCTGGGAAGCCCCCGAAATGCTCGCCTGCATTGCCCGTCACCAGGACGGTGGCTGGATCGCGGGGATGGAAAGCGGTTTCTTCCGCCTGCATCCACATGACGACGGCAGCCTGGACAGCGAGCTCTGTGCAAACGTCGAGCACAGCCGCGCCGACATGCGCCTCAACGATGGCCGTTGCGACCGCCAGGGCCGTTTCTGGGCCGGCAGCATGGTGCTGAACATGGGCGCCAATGCGGATGAAGGCAAGATGTACCGTTATGAAGCCGGACAACGCAGCCCGGTCGAGGCGCAACTGAGTGGTTTCATCGTGCCCAATGGTCTGGGCTTCAGCCCCGACGGCCGGACGATGTACCTGTCTGATTCACACCCGCTGATCCAGCAGATCTGGGCCTTCGACTACGACATCGACAGCGGCACCCCATCCAACCGCCGCCTGTTCGTCGACATGATGCCCCTGGCCGGTCGCCCGGACGGCGCGGCAGTCGACGCCGATGGTTGCTATTGGATCTGCGCCAACGACGCCGGCTTGATCCATCGCTTTACGCCGGATGGACGTCTCGACCGCTCCCTGGAAGTGCCGGTGAAAAAACCGACCATGTGTGCCTTTGGCGGCAGCCAGCTGGACACCCTTTTCGTGACCTCGATCCGTCCTGGAGACGACAACGATCCGCAATCCCTGGCCGGTGGCGTGTTCGCGCTGAACCCCGGCGTCAAGGGTCTCGCTGAACCTGCTTTCGGAGGATGGAAACACTCCGCGAACTGA	MQAELIVDARNAVGESPVWVPEENALYWVNIPSGGLQRWSASSAKIQSWEAPEMLACIARHQDGGWIAGMESGFFRLHPHDDGSLDSELCANVEHSRADMRLNDGRCDRQGRFWAGSMVLNMGANADEGKMYRYEAGQRSPVEAQLSGFIVPNGLGFSPDGRTMYLSDSHPLIQQIWAFDYDIDSGTPSNRRLFVDMMPLAGRPDGAAVDADGCYWICANDAGLIHRFTPDGRLDRSLEVPVKKPTMCAFGGSQLDTLFVTSIRPGDDNDPQSLAGGVFALNPGVKGLAEPAFGGWKHSAN	PGPT0017460_198	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATION	PLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017460-araB|L_arabinonolactonase-K13874	NA	NA
D1-36_03026	969		COG1638	Solute-binding protein	ATGAATTTCAAACGTACACTTCTGATCGCGGCCTTGCCCCTGGCCTTCCTGGCACAGGCGGCGCAGGCTCTGGACATCAAGATCGCCGACATCCACCCCAAGGGCTACCCAACCGTGGTCGCCGAGGAATCCATGGGTAAAACCCTGGAAAAGGAGAGCAAAGGCGAACTGAAGTTCAAGTACTTCCCGGGGGGCGTACTGGGCTCTGAAAAAGAAGTGATCGAGCAGATGCAAGCCGGCGCAATCCAGATGTCCCGCGTCAGCCTGGGCATCGTCGGCCCCGTGGTGCCGGACGTGAACGTCTTCAACATGCCATTCATCTTCCGCGACCAGGCGCACATGCGCGCCGTGATCGACGGTGAGGTCGGCGATGCGATCCTGGACCGGATCACCAACTCCGAATTCGGCCTGGTGGCCCTGGCCTGGATGGACGGCGGCACGCGCAACCTCTACACCAAGAAGCCCGTGCGCACGCCGGAAGACCTCAAGGGCATGAAAATCCGCGTCCAAGGCAACCCTATGTTCATTGAAATGATGAACGCCATGGGCGGCAACGGTATCGCGATGGACACTGGCGAGATCTTCAGCGCGTTGCAGACTGGCGTGATCGACGGCGCGGAAAACAACCCGCCGACCATGCTCGAGCACAACCACTACCAGAACGCCAAGTTCTACAGCTTGACCGGGCACCTGATCCTGCCTGAGCCGATCGTGATGTCGAAAATCACCTGGAACAAGCTCACCCCAGAGCAGCAGGACATGGTGAAAAAAGCGGCCAAGGCTGCCCAGGCTGAAGAGCGCAAGTTGTGGGACGAGAAATCGGCCGCCAGTGAAGAAAAACTCAAGAAAGCCGGCGTCGAGTTCATCACCGTCGACAAGAAACCCTTCTACGACGCCACCGCGCCGGTCCGAGCCAAATACGGTGCACCGTACGCCGACCTGATCAAGCGCATCGAAGCTGTCCAGTAA	MNFKRTLLIAALPLAFLAQAAQALDIKIADIHPKGYPTVVAEESMGKTLEKESKGELKFKYFPGGVLGSEKEVIEQMQAGAIQMSRVSLGIVGPVVPDVNVFNMPFIFRDQAHMRAVIDGEVGDAILDRITNSEFGLVALAWMDGGTRNLYTKKPVRTPEDLKGMKIRVQGNPMFIEMMNAMGGNGIAMDTGEIFSALQTGVIDGAENNPPTMLEHNHYQNAKFYSLTGHLILPEPIVMSKITWNKLTPEQQDMVKKAAKAAQAEERKLWDEKSAASEEKLKKAGVEFITVDKKPFYDATAPVRAKYGAPYADLIKRIEAVQ				NA	NA	NA	NA	NA
D1-36_03027	528			hypothetical protein	ATGAAGAATTTGCTGCTGCGTATCAACGACAAGATTTACATGACTTGCATCTGGGTGGCCGGCCTCTCTGTCCTTGCCGTTGCGCTGATGATCCCTTGGGGCGTGTTCGCCCGCTACGTCCTTGGCACCGGCTCAAGCTGGCCGGAGCCCACCGCGATCTTGCTGATGATCGTCTTCACCTTCATCGGCGCCGCCGCCAGCTACCGCTCCGGGTCGCACATGGCTGTGGACATGGTCACCAGCCGCCTGCCCCAGCACTGGCAAAACGTGGCTTCGGTGTTCACCCAGTTGATGATGGCAGCGGTGTGCATTTTCATGACCATCTGGGGTGCCAAGCTGTGCATGACCACTTGGAACCAGTTCATGAGCGCCATCCCTACCCTGCGAGTCGGCATCACTTACATGCCGATCCCGATCGGTGGGTTCCTGACCCTGATTTTTGTCTTGGAAAAACTCTTGCTGGGTGATCAAAGCCAGCGTCGGGTCGTGCAGTTCGACCTGGTAGAAGAAAACGAAGGTGCCGCTTAA	MKNLLLRINDKIYMTCIWVAGLSVLAVALMIPWGVFARYVLGTGSSWPEPTAILLMIVFTFIGAAASYRSGSHMAVDMVTSRLPQHWQNVASVFTQLMMAAVCIFMTIWGAKLCMTTWNQFMSAIPTLRVGITYMPIPIGGFLTLIFVLEKLLLGDQSQRRVVQFDLVEENEGAA				NA	NA	NA	NA	NA
D1-36_03028	1281	dctM_1	COG1593	C4-dicarboxylate TRAP transporter large permease protein DctM	ATGGACGCTCTGATTCTGCTGGGCAGTTTTTTGGTATTGATCCTGATCGGCATGCCGGTCGCCTACGCGCTGGGCGCCGCCGCCCTGATTGGGGCATGGTGGATCGACATTCCGTTCCAGGCCATGATGATTCAGATAACGGGCGGCGTGAACAAATTCTCGCTGCTGGCCATTCCGTTCTTCGTCCTGGCCGGCGCGATCATGGCCGAGGGCGGCATGTCTCGCCGGCTAGTGGCCTTCGCCAGCGTGCTCGTAGGTTTCGTCCGTGGTGGCCTGTCCCTGGTCAACCTCGTGGCCTCGAGTTTCTTTGGCGCGATCTCGGGTTCCTCGGTGGCTGACACCGCCTCGGTCGGTTCGGTACTGATCCCGGAAATGACACGCAGGGGCTATCCACGTGATTACGCCACCGCCGTCACCGTCAGTGGTTCGGTACAAGCGCTGCTGACACCGCCAAGCCACAACGCAGTGCTGTACTCTCTCGCCGCTGGCGGCACCGTCTCCATTGGTTCGCTGTTCATGGCCGGCATCGTCCCCGGCATCATGATGAACCTCTGCCTGATGGCGCTGTGCCTGGTCTTCGCGAAAAAGCGCAATTACCCCAAGGGCGAGGTTATTCCGCTCAAAGAAGCGCTGAAGATTTGCAAGGAAGCCATGTGGGGCATGATGACGTTGTTCATCATCCTGGGCGGCATTCTCTCGGGTGTGTTCACTGCCACTGAATCGGCCGCCATCGCCGTGGTGTGGGCGTTCTTCGTGACCATGTGCATCTATCGCGACTACAAGTGGAGCGAGTTACCGAAACTGATGCACCGTACGGTGCGCACCATTTCCATTGTGATGATCCTGATCGGCTTCGCCGCCAGCTTCGGCTACATCATGACGCTGATGGAAATCCCGGCGAAGATCACCACCGCGTTCCTGACGCTGTCGGATAACCGCTACGTGATCCTGATGTGCATCAACGTGATGTTGCTGCTGTTGGGCACCGTGATGGACATGGCACCGCTGATCCTGATCCTCACGCCAATCCTGATGCCAGTCATCGTCGGCATCGGCGTGGACCCGGTGCAGTTCGGCATGATCATGCTGGTGAACCTGGGTATCGGCCTGATCACGCCGCCGGTGGGCGCGGTGCTGTTCGTCGGCTCCGCCATCGGCAAGGTCAGCATCGAAAGCACCGTCAAGGCCCTGCTGCCATTCTACGGCATGCTGTTCCTGGTTCTGCTGCTGGTGACGTACGTGCCCGCCATTTCGCTGTGGTTGCCACATTTGGTGTTGTAA	MDALILLGSFLVLILIGMPVAYALGAAALIGAWWIDIPFQAMMIQITGGVNKFSLLAIPFFVLAGAIMAEGGMSRRLVAFASVLVGFVRGGLSLVNLVASSFFGAISGSSVADTASVGSVLIPEMTRRGYPRDYATAVTVSGSVQALLTPPSHNAVLYSLAAGGTVSIGSLFMAGIVPGIMMNLCLMALCLVFAKKRNYPKGEVIPLKEALKICKEAMWGMMTLFIILGGILSGVFTATESAAIAVVWAFFVTMCIYRDYKWSELPKLMHRTVRTISIVMILIGFAASFGYIMTLMEIPAKITTAFLTLSDNRYVILMCINVMLLLLGTVMDMAPLILILTPILMPVIVGIGVDPVQFGMIMLVNLGIGLITPPVGAVLFVGSAIGKVSIESTVKALLPFYGMLFLVLLLVTYVPAISLWLPHLVL	PGPT0017335_1576	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017335-dctM-K11690	NA	NA
D1-36_03029	870	yphB	COG2017	putative protein YphB	ATGACACCACCACTCCTCCACCTCGAAGACGAACTGACCCGCCTCACCCTGGCCCCACACCTGGGCGCCAGCCTCGTTGAATGGACCTTGCGCAGCACCGGCGCTCCCCTCCTACGCCCACCCGCGCCACAAGCGCTGGAAAATGGCCTGCCAGGCAAGCTCGGCTGCTTCCCGTTGATCCCGTGGTCGAACCGAATCGCCCATGGCGGTTTCGATTGCCCCGGCGGCTGGCTCGCCCTGGAAGCCAACAGCCCCAACGATCCATTTCCGATCCATGGCAGTGCCTGGCAGCAGCCTTGGCAAGTCGCCGAACAGAGTGCCGGGGAAGTTTTGTTGCAACTCGACTGCCAAACCCCGTTTGCCTATTGCGCCAGCTTGCGGATCCGCCTCAGTGGCGGCCAATTGCAGATGGCGCTGCACGTCACCCACATGGCCGAACAGGCCGCCTGGCACGGGTTGGGTTTGCATCCGTATTTCCCGCGCACAGCCGATACACGCCTGCAAACCCGCGCCAGCGAAGTCTGGATGTGCGACGCCACGAAACTGCCAACGGAACTGAAGGATGTTCCCTCGGAGTGGGATTTCCAACACGCACGGTTACTGCCGGATACCCTCGTCGACAACGGCTTCGGTGGTTGGGATGGCCAGTGCCTGATCCAGCAACCAGACCTGGGTTATGAACTGGAATGCCGCGCCAGCGGCAGCGATTACTTCCTGCTGTACTGCCCCGTGGGGCTGGATTTTTTCTGCATCGAACCGGTAAGTCACCCGGTCAATGCCCATCACCTGCCAGGACGGCCGGGGCTGCGTTTGCTGGAGCAAGGGCAATCGGTGGCGTTGGGGTTTTCGATGCAGTGCCGAGAGTTGTAA	MTPPLLHLEDELTRLTLAPHLGASLVEWTLRSTGAPLLRPPAPQALENGLPGKLGCFPLIPWSNRIAHGGFDCPGGWLALEANSPNDPFPIHGSAWQQPWQVAEQSAGEVLLQLDCQTPFAYCASLRIRLSGGQLQMALHVTHMAEQAAWHGLGLHPYFPRTADTRLQTRASEVWMCDATKLPTELKDVPSEWDFQHARLLPDTLVDNGFGGWDGQCLIQQPDLGYELECRASGSDYFLLYCPVGLDFFCIEPVSHPVNAHHLPGRPGLRLLEQGQSVALGFSMQCREL	PGPT0017825_5366	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
D1-36_03030	801			hypothetical protein	ATGTTACTGGCAAGTTTTTTCGGTGTGGTGATGGGCCTGGTTCTTGGCCTGACGGGGGCGGGCGGAGGTATCCTGGCCGTCCCGGCCCTGGTGTTGGGCCTGGGCTGGAGCATGACCCAGGCCGCGCCGGTGGCACTGTTCGCGGTGGGCAGCGCGGCGGCGGTGGGCGCCATCGATGGCTTGCGCCATGGCCTGGTGCGTTACCGCGCGGCGCTGTTAATCGCCTTGCTGGGCGCTGTGTTCTCGCCAGTGGGCATTTACTTCGCCCACCAGCTTTCGGAAAAAATCCTGATGGTCCTGTTCAGCCTACTGATGGTGCTGGTGGCGGCGCGCATGCTGCGCCGGGAAACCTCGCAGCCGGGCCCCAGCGATCACGGCGCGGCCAGCTGGGGCCAAAAGAATTGCATGCTCGATCGCCAGACCGGGCGGCTGGCCTGGACACCGCGCTGCACCGCCACGCTGTCGGCATTGGGCGCGGTCACGGGAATGGTCTCAGGTTTGCTGGGCGTGGGCGGCGGTTTCTTGATCGTGCCGGCATTCAAGCAACTTACCGACGTGCAGATGCGCGGTATCGTCGCCACATCCTTGATGGTCATCAGCCTGGTTTCGTTGATTGGCGTGGTCGGCGCGTTTCATGCCGGTGTGAGCATCGACCGGGTTGGGGCGGCGTTCATTGGGGCGAGTATCGTCGGGATGATCCTGGGGCGACGGTTCTGCGCGAAGGTGCCGGCGCGGGCGTTGCAGGTGGGGTTTGCCGGGGTTTGCCTGGGGGTGGCGGTGTTCATGCTGGTGCGGGCGTAG	MLLASFFGVVMGLVLGLTGAGGGILAVPALVLGLGWSMTQAAPVALFAVGSAAAVGAIDGLRHGLVRYRAALLIALLGAVFSPVGIYFAHQLSEKILMVLFSLLMVLVAARMLRRETSQPGPSDHGAASWGQKNCMLDRQTGRLAWTPRCTATLSALGAVTGMVSGLLGVGGGFLIVPAFKQLTDVQMRGIVATSLMVISLVSLIGVVGAFHAGVSIDRVGAAFIGASIVGMILGRRFCAKVPARALQVGFAGVCLGVAVFMLVRA				NA	NA	NA	NA	NA
D1-36_03031	864			putative metallo-hydrolase	ATGCCCGCGCAGATCCAAAGCTTCCTCGATCCCGCTTCAAAGACCTACACCTATGTGGTTTACGAACACGACGGCGGGCAATGCGCGGTGGTCGACCCGGTGCTCGACTACGATCCGGCATCGGGCCGCAGCGGTACCGCACAGGCTGATCGAGTGATCGCTTATGTGCGCGAACATCAATTGACGGTGCAATGGCTGTTGGAAACCCATGCCCATGCTGATCACCTGTCCGCCGCGCCTTATCTGCGCCGGGAACTGGGCGGCAAGATTGCCATCGGCGAATCCATCGGCCAGGTGCAGGACGTGTTCAAGGCCCTGTTCAACTTGGAACCACACTTCGCCGTCGACGGTTCGCAGTTCGACCACCTGTTCGCGGCCGACGAGTCCTTCCTGATCGGCAATCTCAAGGCCACCGCCCTGCACGTGCCTGGCCACACCCCGGCGGACATGGCCTACCTGATCGATGGCGACGTGATCCTGGTGGGCGACACGCTGTTCATGCCCGACGTGGGCACCGCCCGTTGCGACTTCCCGGGCGGCAATGCCCGTCAGCTTTACGCCTCGATCCGCAAGCTGTTGGCCTTCCCGGCGGGCGTGCGGCTGTATGTGTGTCATGACTATCCACCGGAGGAACGCGAGCCCCAGTGGGTAAGTACCGTGGGTGAACAACGCCAGCACAATATTCATGTCCGCGATGGGATTGATGAAGCCGCGTTCGTGGCCATGCGTACCCAGCGCGACAAGACATTAGGCATGCCGACGTTGCTGTTGCCGGCGATCCAGGTGAATGTGCGAGCCGGCCACCTGCCGCCGGCCGAGGGCAATGGCGTGACCTACCTGAAGATTCCGATCAACCAGCTCTAA	MPAQIQSFLDPASKTYTYVVYEHDGGQCAVVDPVLDYDPASGRSGTAQADRVIAYVREHQLTVQWLLETHAHADHLSAAPYLRRELGGKIAIGESIGQVQDVFKALFNLEPHFAVDGSQFDHLFAADESFLIGNLKATALHVPGHTPADMAYLIDGDVILVGDTLFMPDVGTARCDFPGGNARQLYASIRKLLAFPAGVRLYVCHDYPPEEREPQWVSTVGEQRQHNIHVRDGIDEAAFVAMRTQRDKTLGMPTLLLPAIQVNVRAGHLPPAEGNGVTYLKIPINQL				NA	NA	NA	NA	NA
D1-36_03032	489	lrp_3	COG1522	Leucine-responsive regulatory protein	ATGCGCAAATTGGATCGCACCGATATCGGCATTCTGAACAGCCTTCAGGACAACGCCCGGATCACCAACGCCGATCTCGCTCGCTCGGTCAATCTGTCACCGACGCCATGCTTCAACCGCGTCCGAGCCATGGAAGAGCTGGGGGTGATCCGCGAGCAGGTCACGCTGCTGGACGCCGACTTGCTGGGGTTGCACGTCAACGTGTTTATCCATGTCAGCCTGGAGAAGCAGGTGGAAGAGGCGTTGCAGCACTTCGAGGAAGCGATCTCCGACCGGCCGGAGGTCATGGAGTGCTACCTGATGGCCGGCGATCCTGATTACCTGATCCGTGTGTTGGTGCCGACCATTCAGTCGCTGGAGCGGTTCATGATGGACTTTTTGACCAAGGTCCCGGGCGTGGCGAACATCCGCTCGAGCTTTGCGCTCAAGCAGGTGCGCTACAAGACTGCGTTGCCGTTGCCGGCCAATGGGTTGACCTTGGGTACCTGA	MRKLDRTDIGILNSLQDNARITNADLARSVNLSPTPCFNRVRAMEELGVIREQVTLLDADLLGLHVNVFIHVSLEKQVEEALQHFEEAISDRPEVMECYLMAGDPDYLIRVLVPTIQSLERFMMDFLTKVPGVANIRSSFALKQVRYKTALPLPANGLTLGT				NA	NA	NA	NA	NA
D1-36_03033	1236	bkdA1	COG1071	2-oxoisovalerate dehydrogenase subunit alpha	ATGAACCCAGCGTACGAACCGCTACGCCTGCACGTCCCAGAACCCTCGGGCCGTCCCGGCTGCAAGACCGACTTTTCCTATCTGCATCTGTCCGATGCCGGCACGGTGCGCAAACCTCCCATCGACGTCGAACCCGCCGACACCGCTGACCTGGCCCGCAGCCTGATCCGCGTGCTCGATGACCAGGGCAATGCCTTGGGCGAGTGGGCCGCGGACATCCCCGTCGAGATCCTGCGCAAGGGCATGCGGGCCATGCTCAAGACGCGCATCTACGACAACCGCATGGTCGTCGCCCAGCGTCAGAAAAAAATGTCGTTCTACATGCAAAGCCTTGGCGAAGAAGCCATCGGCAGCGCCCAGGCCTTGGCATTGAACATTGACGACATGTGCTTCCCCACCTACCGCCAGCAAAGCATCCTGATGGCCCGGGAAGTGCCGCTGGTGGACCTGATCTGCCAACTGCTGTCCAACGAGCGCGACCCGCTCAAAGGCCGGCAATTGCCGATCATGTATTCGGTCAAGGACGCCGGCTTCTTCACCATTTCCGGTAACCTCGCCACGCAATTCATCCAGGGCGTGGGCTGGGGCATGGCTTCGGCGATCAAGGGCGATACCAAGATCGCCTCGGCCTGGATCGGTGACGGCGCCACCGCCGAATCGGACTTCCACACCGCCCTGACCTTCGCCCACGTCTACCGCGCCCCGGTGATTCTCAACGTGGTCAACAACCAGTGGGCGATTTCCACCTTCCAGGCCATTGCCGGCGGTGAAGCCACCACCTTCGCCGGGCGCGGCGTCGGCTGCGGCATCGCCTCCCTTCGCGTCGATGGCAACGATTTCATGGCGGTCTACGCCGCTTCGCGCTGGGCCGCCGAACGCGCCCGCCGCAACCTCGGCCCGGCGCTGATCGAATGGGTCACCTACCGCGCCGGCCCGCACTCCACTTCCGACGATCCTTCCAAATACCGCCCCGCCGATGACTGGAGCCATTTCCCGCTGGGCGATCCGATCGCCCGCCTCAAGCAGCACATGGTGAAGATCGGCCAGTGGTCCGAAGAAGAGCACGCGGCGGTCACCGCCGAACTCGAAGCCGAGGTGATCGCCGCGCAGAAAGAAGCCGAGCAGTACGGCACCCTCGCCGGCGGGCAGATTCCAAGCGCCGCGACCATGTTCGAAGACGTCTACAAAGAGATGCCGGAGCACTTGAAGCGCCAGCGTCAGCAGTTGGGGATCTGA	MNPAYEPLRLHVPEPSGRPGCKTDFSYLHLSDAGTVRKPPIDVEPADTADLARSLIRVLDDQGNALGEWAADIPVEILRKGMRAMLKTRIYDNRMVVAQRQKKMSFYMQSLGEEAIGSAQALALNIDDMCFPTYRQQSILMAREVPLVDLICQLLSNERDPLKGRQLPIMYSVKDAGFFTISGNLATQFIQGVGWGMASAIKGDTKIASAWIGDGATAESDFHTALTFAHVYRAPVILNVVNNQWAISTFQAIAGGEATTFAGRGVGCGIASLRVDGNDFMAVYAASRWAAERARRNLGPALIEWVTYRAGPHSTSDDPSKYRPADDWSHFPLGDPIARLKQHMVKIGQWSEEEHAAVTAELEAEVIAAQKEAEQYGTLAGGQIPSAATMFEDVYKEMPEHLKRQRQQLGI	PGPT0008861_808	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008861-bkdA1-K00166	NA	NA
D1-36_03034	1059	bkdA2	COG0022	2-oxoisovalerate dehydrogenase subunit beta	ATGAACGATCACAACAACAATATTGCGTTGGACACCGCCATGACCACTACCACCATGACCATGATCCAGGCTCTGCGCTCGGCCATGGACGTGATGCTTGAGCGCGACGATAACGTCGTGGTGTTCGGCCAGGACGTGGGCTATTTCGGTGGCGTGTTCCGCTGCACCGAAGGCCTGCAGAACAAGTACGGCACTTCACGGGTGTTCGACGCACCGATTTCCGAAAGCGGCATCGTCGGCGTGGCGGTGGGCATGGGCGCCTACGGGCTGCGGCCGGTGGCCGAGATCCAGTTCGCCGACTACGTCTACCCGGCGTCGGACCAGATCATTTCCGAAGCGGCGCGCCTGCGCTATCGCTCGGCCGGCGAGTTCACCGCGCCGATGACCCTGCGCATGCCCTGCGGCGGCGGGATCTATGGCGGCCAGACCCACAGCCAGAGCATCGAGGCGATGTTCACCCAGGTCTGTGGCCTGCGCACCGTCATGCCGTCCAACCCCTACGACGCCAAGGGTCTGCTGATCGCCTCCATCGAGAACGATGACCCGGTGATCTTCCTCGAACCCAAGCGCCTGTATAACGGCCCGTTCGACGGCCACCATGACCGCCCTGTAACGCCATGGTCCAAGCATCCGCAGGCGCAAGTGCCGGACGGTTACTACACCGTGCCACTGGACGTCGCCGCCATCACCCGTCCGGGCAAGGACGTCACGGTGCTCACCTACGGCACCACGGTCTATGTCTCCCAAGTGGCGGCCGAAGAGACCGGCATCGACGCGGAAGTCATCGACCTGCGCAGCCTCTGGCCGCTGGACCTGGACACCATTGTCAAATCGGTGAAGAAAACCGGCCGTTGCGTGGTTGTCCACGAAGCCACCCGCACCTGCGGTTTCGGCGCCGAGCTGGTCTCGCTGGTGCAGGAACACTGCTTCCACCACCTGGAAGCGCCCATCGAGCGTGTCACCGGTTGGGACACCCCCTACCCGCATGCGCAGGAGTGGGCGTATTTCCCTGGGCCGTCCCGTGTGGGCGCGGCGTTGAAACGGGTCATGGAGGTCTGA	MNDHNNNIALDTAMTTTTMTMIQALRSAMDVMLERDDNVVVFGQDVGYFGGVFRCTEGLQNKYGTSRVFDAPISESGIVGVAVGMGAYGLRPVAEIQFADYVYPASDQIISEAARLRYRSAGEFTAPMTLRMPCGGGIYGGQTHSQSIEAMFTQVCGLRTVMPSNPYDAKGLLIASIENDDPVIFLEPKRLYNGPFDGHHDRPVTPWSKHPQAQVPDGYYTVPLDVAAITRPGKDVTVLTYGTTVYVSQVAAEETGIDAEVIDLRSLWPLDLDTIVKSVKKTGRCVVVHEATRTCGFGAELVSLVQEHCFHHLEAPIERVTGWDTPYPHAQEWAYFPGPSRVGAALKRVMEV	PGPT0008862_587	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
D1-36_03035	1278	bkdB	COG0508	Lipoamide acyltransferase component of branched-chain alpha-keto acid dehydrogenase complex	ATGGGCACGCACGTTATCAAGATGCCGGACATCGGCGAAGGCATCGCGGAAGTTGAGTTGTCGGTGTGGCACGTCAAGGTGGGCGACATGGTCGTCGAGGACCAGGTACTGGCCGACGTCATGACCGACAAAGCGATGGTGGATATCCCCTCGCCAGTGCATGGCCGGGTCATCGCCCTGGGTGGCGAGCCGGGTGAAGTCATGGCGGTGGGCAGCGAGCTGATCCGCATTGAAGTGGAAGGTGCGGGCAACCTGAAGGAGTCCTCGCAACCGGCTCCGGCTCCGGTTGCGGCTGCTGCTGCGCAAGCACCGAAGCCAGCGCCAGTGGCAACGCCTGAACCGGTGATGGCAAAAACCGCCGCACCCCGCTGCATCCCGCAAGCCCCCGTGGCACGTGACCCCGACGAGCGTCCACTGGCCTCGCCGGCCGTGCGCAAGCACGCATTGGACCTCGGTATCCAGCTGCGCCTGGTCCAGGGCAGCGGCCCTGCCGGGCGTATTTTGCATGAAGACCTGGAAGCCTATCTGGCCCAGGGGCCGTCGACCCAGGCCAAGGGCGGTTCGGGTTACGCCGAACGCCATGACGAGCAGCAGATCCCGGTGATCGGCATGCGCCGCAAGATTGCCCAGCGCATGCAGGAAGCAACTCAACGCGCCGCCCATTTCAGCTACGTCGAGGAAATCGACGTCACCGCGCTGGAAGAGCTGCGGGTTCACCTGAACGAAAAACACGGCGCCAGTCGCGGCAAGCTGACCTTGCTCCCCTTCCTCGTTCGCGCGTTGGTCGTGGCCCTGCGAGACTTCCCGCAGATGAACGCCCGTTATGACGACGAAGCCCAGGTCATCCATCGCTGCGGCGCAGTGCATGTCGGCGTTGCGACCCAGAGCGATGTCGGCCTGATGGTGCCCGTGGTGCGTCACGCCGAAGCCCGCAGCCTGTGGGACAGCGCGGCGGAGATCTCGCGCCTGGCCACGGCCGCCCGCAATGGCAAGGCCGGTCGCGATGAGCTGTCCGGCTCGACCATCACCCTGACCAGCCTCGGCGCGCTCGGCGGCATCGTCAGCACACCGGTGCTGAACCTGCCGGAAGTGGCGATCGTCGGCGTGAACAAGATCGTCGAGCGGCCTGTGGTGATCAAGGGGCAGATCGTGGTCCGCAAGATGATGAACCTCTCCAGTTCCTTCGATCACCGGGTGGTCGACGGCATGGACGCGGCGCAATTCATCCAGGCCCTGCGCGGCTTGCTCGAACAACCTGCCACCCTGTTTGTGGAGTAG	MGTHVIKMPDIGEGIAEVELSVWHVKVGDMVVEDQVLADVMTDKAMVDIPSPVHGRVIALGGEPGEVMAVGSELIRIEVEGAGNLKESSQPAPAPVAAAAAQAPKPAPVATPEPVMAKTAAPRCIPQAPVARDPDERPLASPAVRKHALDLGIQLRLVQGSGPAGRILHEDLEAYLAQGPSTQAKGGSGYAERHDEQQIPVIGMRRKIAQRMQEATQRAAHFSYVEEIDVTALEELRVHLNEKHGASRGKLTLLPFLVRALVVALRDFPQMNARYDDEAQVIHRCGAVHVGVATQSDVGLMVPVVRHAEARSLWDSAAEISRLATAARNGKAGRDELSGSTITLTSLGALGGIVSTPVLNLPEVAIVGVNKIVERPVVIKGQIVVRKMMNLSSSFDHRVVDGMDAAQFIQALRGLLEQPATLFVE				NA	NA	NA	NA	NA
D1-36_03036	1383	lpdV	COG1249	Dihydrolipoyl dehydrogenase	ATGCAGACTTTGAACACCAAGCTATTGATCATCGGCGGCGGTCCCGGCGGCTACGTGGCGGCGATTCGCGCCGGCCAGCTGGGCATTGAAACGATCCTGGTGGAAGGCCAGGCGTTGGGCGGTACCTGCCTGAACATCGGCTGTATCCCGTCCAAGGCATTGATCCATGTGGCCGAGCAGTTTCACCAGACTCACCACCACAGCCAGGGCTCGGCCTTGGGTATCACAGTGTCGGCGCCAACCCTTGACATCGGCAAGAGCGTGGAATGGAAGGACGGCATTGTCGACCGCCTGACCACTGGTGTCGCCGCGTTGCTGAAGAAGAACAAGGTCCAGGTCATCCACGGCTGGGCCAGGGTCATCGACGGCAAGACCGTTGAGGTCGGCGACACGCGCATCCAGTGCGAGCACCTGCTGCTGGCTACCGGCTCGAAAAGCGTAGAACTGCCCATGCTGCCGATTGGAGGGCCGATCATCTCGTCCACTGAAGCCCTCGCCCCCACCTCGGTGCCCAAGCACCTGGTAGTGGTCGGCGGTGGTTATATCGGCCTGGAGCTGGGCATCGCCTATCGCAAGCTCGGCGCGCAAGTCAGCGTGGTCGAGGCCCAGGAGCGGATCCTGCCGGCCTACGACGGCGAACTGACCCAACCGGTACACGAGGCGCTCAAGCAGCTGGGCGTGAAGCTGTACCTCAAGCACAGCGTCGAAGGTTTCGATGCCCAGGGCAGCACTTTGCAGGTGCGTGATCCCAACGGCGACACGTTAAACCTGGACACTGACCGGGTGCTGGTGGCGGTTGGACGCAAACCCAACACCCAAGGCTGGAACCTTGAAGCCCTGGACCTGGCGATGAACGGCTCGGCGGTGAAGATCGACAACCATTGCCAGACCAGCATGCGCAACGTCTGGGCCATCGGCGACCTGAGCGGCGAACCGATGCTCGCCCACCGGGCCATGGCTCAGGGCGAGATGGTCGCCGAGCTGATCGCCGGTGAGCATCGCGAGTTCAACCCGACCGCCATCGCGGCGGTGTGCTTCACCGATCCGGAAGTGGTCGTAGTAGGCAAGACGCCGGACGAGGCCAAGGCTGCCGGGCTCGATTGCATCGTGTCGAGCTTCCCCTTTGCCGCCAACGGCCGGGCGATGACCTTGGAATCGAAAAGCGGTTTCGTGCGCGTCGTGGCGCGCCGGGACAATCACTTGATCGTCGGCTGGCAAGCGGTTGGCGTGGGGGTGTCGGAGCTGTCCACCGCGTTCGGCCAGTCCCTGGAAATGGGCGCGCGCCTGGAAGATATCGCCGGCACTATCCACGCCCATCCGACGCTGGGCGAAGCGGTGCAGGAAGCGGCGTTGCGGGCGTTGGGGCATGCGTTGCATTGTTAA	MQTLNTKLLIIGGGPGGYVAAIRAGQLGIETILVEGQALGGTCLNIGCIPSKALIHVAEQFHQTHHHSQGSALGITVSAPTLDIGKSVEWKDGIVDRLTTGVAALLKKNKVQVIHGWARVIDGKTVEVGDTRIQCEHLLLATGSKSVELPMLPIGGPIISSTEALAPTSVPKHLVVVGGGYIGLELGIAYRKLGAQVSVVEAQERILPAYDGELTQPVHEALKQLGVKLYLKHSVEGFDAQGSTLQVRDPNGDTLNLDTDRVLVAVGRKPNTQGWNLEALDLAMNGSAVKIDNHCQTSMRNVWAIGDLSGEPMLAHRAMAQGEMVAELIAGEHREFNPTAIAAVCFTDPEVVVVGKTPDEAKAAGLDCIVSSFPFAANGRAMTLESKSGFVRVVARRDNHLIVGWQAVGVGVSELSTAFGQSLEMGARLEDIAGTIHAHPTLGEAVQEAALRALGHALHC	PGPT0001380_7027	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
D1-36_03037	1020	ilvE		putative branched-chain-amino-acid aminotransferase	ATGGGTAACGAGAGCATCAATTGGGACAAACTGGGCTTTGACTACATCAAGACCGACAAGCGCTACCTGTCGCATTGGCGCGATGGCGCCTGGGACGCGGGCACCCTGACCGACGACAACGTGCTGCACATCAGCGAGGGCTCCACCGCCCTGCACTACGGTCAGCAATGCTTCGAAGGCTTGAAGGCCTATCGCTGCAAGGACGGTTCGATCAACCTGTTCCGTCCGGACCAGAACGCCGCCCGCATGCAGCGCAGCTGCGCCCGCCTGCTGATGCCGCATGTCGACACCGAGCAGTTCGTAGAAGCCTGCAAGCAAGTGGTCCGCGCCAACGAGCGCTTCATCCCGCCGTACGGCACTGGCGGCGCGCTGTACCTGCGCCCGTTCGTGATCGGCGTGGGTGACAACATCGGCGTGCGCACCGCGCCCGAGTTCATCTTCTCGATCTTCTGCATCCCGGTCGGCGCCTACTTCAAGGGCGGCCTGACCCCGCACAACTTCCTGATCTCCAGCTTCGACCGTGCCGCCCCACAGGGCACCGGCGCGGCCAAGGTCGGTGGCAACTACGCCGCGAGCCTGATGCCCGGTTCCCAGGCCAAGAAGGCCAGCTTCGCCGACTGCATCTATCTGGATCCGCTGACCCATTCGAAAATCGAAGAAGTCGGCTCGGCCAACTTTTTTGGCATTACCCACGACAACAAATTCATCACCCCCAACTCCCCTTCGGTCCTGCCGGGCATCACCCGCCTGTCGCTGATCGAACTGGCGAAATCGCGCCTGGGCCTGGAAGTGATCGAAGGCGACGTGTTCATCGACAAGCTGTCGGATTTCAAGGAAGCCGGCGCCTGCGGTACCGCTGCGGTGATCACGCCGATTGGCGGCATCAGCTACAAGGACAAGCTGCACGTGTTCCACAGCGAAACCGAAGTCGGCCCGATCACTCAGAAGCTCTACAAAGAGCTGACCGGCGTGCAGACCGGCGACGTGGAAGCGCCCGCGGGTTGGATCATCAAGGTTTGA	MGNESINWDKLGFDYIKTDKRYLSHWRDGAWDAGTLTDDNVLHISEGSTALHYGQQCFEGLKAYRCKDGSINLFRPDQNAARMQRSCARLLMPHVDTEQFVEACKQVVRANERFIPPYGTGGALYLRPFVIGVGDNIGVRTAPEFIFSIFCIPVGAYFKGGLTPHNFLISSFDRAAPQGTGAAKVGGNYAASLMPGSQAKKASFADCIYLDPLTHSKIEEVGSANFFGITHDNKFITPNSPSVLPGITRLSLIELAKSRLGLEVIEGDVFIDKLSDFKEAGACGTAAVITPIGGISYKDKLHVFHSETEVGPITQKLYKELTGVQTGDVEAPAGWIIKV	PGPT0008860_3724	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_VALINE_DEGRADATION,PGPT0008860-ilvE-K00826	NA	NA
D1-36_03038	930			hypothetical protein	ATGAACACCCGCCGTGCCCTGGATGGCCAGGTCATCGCCCTGATGACCGGCCTCTGTGCCATCTGGGGTTTCCAGCAAGTCGCGATCAAGGCCGGCGCCGCCGACATGGCGCCGATGTTGCAACTGGGGGTGCGCTCGGCCATCGCCGCGGTACTGGTCTGGCTGTTGGTGCTGGCGCGCGGTGAACGCCTGTCCCTGACCGACGGCAGTTGGCGCCCGGGCCTGCTGGTGGGGTTGTTGTTCGCCCTGGAGTTCGTGATGGTGGGTGAGGGCCTGCGCCACACGACGGCTTCGCACATGGTGATTTTCCTCTACACCGCACCGATGTTCGCCGCCCTCGGTTTGCACTGGAAGTTGCCAAGCGAGCGTCTCAAACCGGCGCAGTGGCTAGGTATCGCCGTTGCCTTCGGCGGCATTGTGGTGGCCTTCAGCGGCGGTTCGGGCGCGGCGAACGGCAGTTCATTGCTCGGCGATGGCATGGGCTTGCTGGCCGGCGCGCTGTGGGGCGCGACCACCGTGACGGTACGCTGTTCGCGGCTGACGGACCTGCCGGCCAGCCAGACGCTGCTGTACCAGTTGGTGGGCGCCGGGGTGCTGCTGATCGGCATGTCGGCAGCGCTGGGGCAAACGACAATCAACCCCACGCCATCTCTTATTGCGAGCATGGCGTTCCAGGTGTTGCTGGTGTCCTTCGCCAGCTTCCTGATCTGGTTTTCCCTGCTACGCCGGTATCTGGCGTCGCAATTGGGGGTGCTGTCGTTCATGACGCCTCTGTTCGGCATCGGGTTTGGCGTCTGGTTGCTGGATGAGCCGCTGGAGCCGAATTTTATCGTTGGCGCTGCGCTGGTTTTGAGTGGGATCTTGCTGGTAAGCGGTTACGGTTGGTTTCGCCAGCGTTGGGGGCGATCGCCGGTATTGCGGCAAGAGTAA	MNTRRALDGQVIALMTGLCAIWGFQQVAIKAGAADMAPMLQLGVRSAIAAVLVWLLVLARGERLSLTDGSWRPGLLVGLLFALEFVMVGEGLRHTTASHMVIFLYTAPMFAALGLHWKLPSERLKPAQWLGIAVAFGGIVVAFSGGSGAANGSSLLGDGMGLLAGALWGATTVTVRCSRLTDLPASQTLLYQLVGAGVLLIGMSAALGQTTINPTPSLIASMAFQVLLVSFASFLIWFSLLRRYLASQLGVLSFMTPLFGIGFGVWLLDEPLEPNFIVGAALVLSGILLVSGYGWFRQRWGRSPVLRQE				NA	NA	NA	NA	NA
D1-36_03039	795	nimR_2		HTH-type transcriptional regulator NimR	ATGCAGCCACCAGCCCAACACCTGAAGATTCCTCCGTTCGACGCGGCGCTACCCTCGGCGATTTTCTTCCGCAGCGCCTGCATGCCGGCCCACGCCACGTATCCCCGGCACCGGCATGCCTGGGGAGAGTTCGTCTATTCCTACAGTGGCGTGATGGAAATCGAAATCGCCCAGCACCATTACCTGGCGCCCCCGCAATACGGCATCTGGCTGCCGCCGGACATGGAACATGTGGGATTCAATCGGCATGAAGCCTGCCATTGCTCGTTGTACCTGGCGGCCGAGCTGTGCGGTGCGCTGCCAGCCGTCCCCTGCGCGCTGACCCTGAGCCCGCTGATCCGCGCGTTGCTGGAAGAACTGCGCAGCGACCCGCCGAGCCAGCCACAGACGCCCGAACAGCAGCGCTTGTTGCAAGTGCTGGTGGACAAGCTGACGCAGGCGCCCCACGTCGGCAGTTACCTGCCCTCCTCGGATGATCCGCTGCTGGGTCCGGTGTTGCGGGCCTTGGAAGCCAATCCCAGTGACCCGCGCTCCTTGCCGCAACTGGCTCGCGCCGCCAACACCACCGAGCGCACACTGATGCGCCGGGCCCAGCGGGACCTGGGCATGTCCTTGGTGGAATGGCGCCAGCGCCTGAAAGTCATCGAGGCCCTGGCCCTGCTCGAACGTGGTCAGAGCGTGGAAACCATTGGCCTGGACCTGGGCTACAGCAGCGCCTCGGCGTTCATCAGCATGTTCCGCAAAATGACGGGCACCACGCCGGATGAATATCGGCGCCGCCATATGACTGCATGA	MQPPAQHLKIPPFDAALPSAIFFRSACMPAHATYPRHRHAWGEFVYSYSGVMEIEIAQHHYLAPPQYGIWLPPDMEHVGFNRHEACHCSLYLAAELCGALPAVPCALTLSPLIRALLEELRSDPPSQPQTPEQQRLLQVLVDKLTQAPHVGSYLPSSDDPLLGPVLRALEANPSDPRSLPQLARAANTTERTLMRRAQRDLGMSLVEWRQRLKVIEALALLERGQSVETIGLDLGYSSASAFISMFRKMTGTTPDEYRRRHMTA				NA	NA	NA	NA	NA
D1-36_03040	756			hypothetical protein	ATGAACGCAGAGCAACACGATGTGGGCGTGTCCCAGGTGGCCTCGGCCATTGCCGAACCGGCCCGCACCCGAATGCTCTGCGCCTTGATGGACGGCCACGCTCGGACCAGCACGGAGCTGGCAAGCATCGCTGACGTCAGTGCGTCCACCGCCAGCGCCCACCTGGCGAAGCTCAAGGAATCGGCGCTGGTGCGCTTGCATGTGCAGGGCCGTCATCGTTATTACAGCCTCGCCGACAAACGCGTGGCCACTGCCCTCGAGGCGTTGATGGTGATTGGCCGGGACGCCGCGCCGACCTTCACCCCACGTACGCCGGATCGCCTGCAGTATGCTCGCACCTGCTACGACCATATGGCGGGCACCCTAGCGGTGCGGCTGCATGACCGCTTGCTCGAAGCCGGATGGCTGGTCGAGGTGGACGGCCAAGGGTATCGGCTGAGTGAAACGGGTGAGGCGCTGTTCGAAGGTTTGGGTATCGATGTGCAGGCATTGACGGCCCAACGGCGCCGCTTCGCCTGCCCATGCCTGGACTGGAGCATGCGCCGGCCGCACCTGGGCGGCGCCTTGGGGGCGGCGTTGCTGCAACTGGCGATCAAGCGCAAATGGCTGGTCCAGGACCTGGACAGCCGGGCGCTGGGGTTGACGGCCAGCGGTCGCAAGGAAATGGCAGGGCGGTTTGGGATCGATGCGGAATTCGATGCCATATCGACTGGCGCCATCGCGAGCAGGCTCGCTCCCACAGTGGACTTGCGTTGA	MNAEQHDVGVSQVASAIAEPARTRMLCALMDGHARTSTELASIADVSASTASAHLAKLKESALVRLHVQGRHRYYSLADKRVATALEALMVIGRDAAPTFTPRTPDRLQYARTCYDHMAGTLAVRLHDRLLEAGWLVEVDGQGYRLSETGEALFEGLGIDVQALTAQRRRFACPCLDWSMRRPHLGGALGAALLQLAIKRKWLVQDLDSRALGLTASGRKEMAGRFGIDAEFDAISTGAIASRLAPTVDLR				NA	NA	NA	NA	NA
D1-36_03041	1122	bioI	COG2124	Biotin biosynthesis cytochrome P450	ATGGACCCGATCACCGCCGCGACACACGCCGATCCCTACCCATATTATTCGACCCTTCGCGCCAACGGCGGGCTGGACTTCGACCCACACTTGAATATCTGGGTCGCTAGCAGCGCCGAAGCGGTGTGCGCGGTCTTGCATCATCCCGACTGCCACGTGCGCCCCGCCCACGAGCCGGTGCCGAAGGCGATTGCCGAGGGGCCTGCCGGCCGAGTGTTCGGGCGCCTGATGCGGATGAACGAAGGTGAACGACAACGCTGCCCGAGGGCGGCCATCGCGCCGAGGTTGCAGGACATCGATCCCCGCCAGGTCGAGGCGCTGGTGAAGGCGCGCTTGCTCAGGCATGGCGCCGAAGGCGTGCGCCAGGCGCAGTTCAGCGGCCCGGTCAGCGTGGTGGCGCAATTGCTGGGTTTCAATCCGACGGACAGTCACCTGATCAGCGAGCTGACGGGTGATTTCGTCGCCTGCCTGTCGCCCCTGAGCCAAGCTCCACAACTGGAGGCCGCCCACCGGGCCAGCGAGCAACTGGCAAGGCTTTTCCAGGAGCGGATCATCGCGCGAGACAGTCAGTTATTGAACGGCATCTGCCAGGGCTTCGAAGACGCCGACCCAGACAGCCGGACCGCCAACCTGATCGGCTTGCTTTCGCAAACCCATGAGGCCACCGCAGGCCTGATCGGTAACGCATTGTTGGCGTTGATCCGTGATCCCGCGCTACATCAAGTGCTCCGGGACGACTCTACGCTGATCAACTCATTGTTGGCCGAAGTCCAACGTTTCGACCCAGCCGTGCAGAACACCCGACGCTTCATCGCCGCGCCCTGCGAAATCCTTGGCGCTGCGCTGTCCCAGGGAGACGCAGTCCTGGTGCTGCTAGCCGCGGCCAACCGCGACCCGCAGCTCAACCCGGAGCCGGATACCCTGCTGTTGGATCGCCCGAATCGGCGCAGTTTCAGCTTCGGCAGCGGCCGCCACGAATGTCCAGGCCAGGCCCTGGCGATGGACATCGCCCGCGCATCCCTGGAGGCAATCCTGGAACGCACGCCGTGCCTGGATCAACTGGCCTGGCACTACCGCCCCTCGACCAACGGACGGATCCCGCTGTTCAGCGACCGGTCATGA	MDPITAATHADPYPYYSTLRANGGLDFDPHLNIWVASSAEAVCAVLHHPDCHVRPAHEPVPKAIAEGPAGRVFGRLMRMNEGERQRCPRAAIAPRLQDIDPRQVEALVKARLLRHGAEGVRQAQFSGPVSVVAQLLGFNPTDSHLISELTGDFVACLSPLSQAPQLEAAHRASEQLARLFQERIIARDSQLLNGICQGFEDADPDSRTANLIGLLSQTHEATAGLIGNALLALIRDPALHQVLRDDSTLINSLLAEVQRFDPAVQNTRRFIAAPCEILGAALSQGDAVLVLLAAANRDPQLNPEPDTLLLDRPNRRSFSFGSGRHECPGQALAMDIARASLEAILERTPCLDQLAWHYRPSTNGRIPLFSDRS				NA	NA	NA	NA	NA
D1-36_03042	342	fbp_2	COG0545	FK506-binding protein	ATGAATGACGAGTTGCAAATCATCGACTTAAAAGAGGGCGACGGCAAAAGCGTAGTCAAAGGCGCGCTGATTACCACCCAATATCGCGGCACCCTCGAAGACGGTACAGAGTTCGATTCATCCCACAGTCGCGGCAAACCCTTCCAATGCGTGATCGGCACTGGCCGGGTCATCAAGGGCTGGGATATCGGATTGATGGGCATGAAGGTCGGCGGCAAGCGCAAACTCTGGGTACCGGCGCACCTGGCCTACGGTGAACGGTCCGTGGGCGCCCACATCAAGCCCAACGCCAATCTCAGCTTTGAAATCGAGTTGCTGGAAGTCCTGACGCGGGACGATTGA	MNDELQIIDLKEGDGKSVVKGALITTQYRGTLEDGTEFDSSHSRGKPFQCVIGTGRVIKGWDIGLMGMKVGGKRKLWVPAHLAYGERSVGAHIKPNANLSFEIELLEVLTRDD	PGPT0015110_223	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
D1-36_03043	1065	prtS		Protease PrtS	ATGATCGACTCACGCCCGCTCCACGGCTTCATTCCGCCTTACATCCTCAACCGCATTATCGCCCATGGCTCCGAGCAGCAGCGTTCCAGCGCCCTCGGCACCCTGACTCATGTCAAGAACCTGCGCCACAACCCAGGCCCTCCCAGCAACCCACCCGCGTCCGCCAAGCTGCCCAAGCCCGGCAAGGCCGGCCAACCAACGCGCAGCATCCACGATGCCCAGAACGGTATGGAGCTGCCGGGCCAACCGATGCGCCTGGAGGGGCAATCGCCCAGTGGCGACCCTGCGGTTGACGAAGCGTACGACGCCCTCGGCGCGACCTATGACTTTTTCTGGAGGGTGCTGGAGCGTGACTCCATCGATAACAAGGGGTTTGCCCTGGTCGGCAGCGTGCATTACGGCCAGGACTACGAAAACGCCTTTTGGAACGGCGCGCAGATGGTGTTCGGCGACGGCGATGGCGAGATCTTCCAGCGCTTCACCCGCTCCCTCGACGTCGTGGCGCACGAGTTGGCCCACGGCGTCACCGAAAGCGAAGCGGGCTTGATCTATGCCAACCAGTCCGGCGCATTGAACGAATCGATTTCCGATGTGTTCGGGGTACTGGTCAAGCAATTCGTATTGGGCCAGACCGCCGAGCAGGCCGACTGGTTGATCGGCGCGGACCTGCTCACCGACAGGATCAACGGTGATGGTTTGCGCAGCATGTCCAACCCCGGCACCGCTTACGATGACCCGCTGCTGGGCAAGGATCCCCAGCCGGCGCACATGCGCGAGTTCGTCATCACCCGCGAGGACAACGGCGGCGTGCACATCAACTCCGGCATTCCCAACCGGGCCTTTTATCTGGTGGCGACCGCGCTGGGCGGATTCGCCTGGGAAAAGGCCGGGAAAATCTGGTATGACACCTTGTGCGACAGGCAACTGGCCAACGACGCGTCCTTTAGCGCGTTTGCTCGCCTGACCATTGAGCACGCCCGCCAGCGTTTCGGCGAACGGGAAGTCAAAGCCGTCCAGGACGGCTGGGCACAGGTGGGTGTCGACCTGAACGAGGAGAACGGATGA	MIDSRPLHGFIPPYILNRIIAHGSEQQRSSALGTLTHVKNLRHNPGPPSNPPASAKLPKPGKAGQPTRSIHDAQNGMELPGQPMRLEGQSPSGDPAVDEAYDALGATYDFFWRVLERDSIDNKGFALVGSVHYGQDYENAFWNGAQMVFGDGDGEIFQRFTRSLDVVAHELAHGVTESEAGLIYANQSGALNESISDVFGVLVKQFVLGQTAEQADWLIGADLLTDRINGDGLRSMSNPGTAYDDPLLGKDPQPAHMREFVITREDNGGVHINSGIPNRAFYLVATALGGFAWEKAGKIWYDTLCDRQLANDASFSAFARLTIEHARQRFGEREVKAVQDGWAQVGVDLNEENG	PGPT0020995_117	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020995-nprM-K01400	NA	NA
D1-36_03044	324			hypothetical protein	ATGAAAACCCTGCCAGACCTTGATGACAAAGCGGTCGTAAAGCTGTCGCGCCAGGGCGGCGTGGCAGCCATCCATGCCCTGACCCGGCCCCGGGAAATCGAGTTCGCCCAATGCGACATCGACCAACGCACGCGCATCTGCTCGGTGCTGGAGGGGTGCCTGCCGCTCACCTCTTCCACCCCTGGCCGGGGCGACCAGCGTTATTTCCAGATCGAGGTGCGTTACCGGGCCAACGACCAGGACGACGAAATGGTGCTGCAAGTGCCCGAGGACCGGGCACCTGGCGAGTTGGTTCATCTGTGGGATAAAGGCGAAGTGCTTTAG	MKTLPDLDDKAVVKLSRQGGVAAIHALTRPREIEFAQCDIDQRTRICSVLEGCLPLTSSTPGRGDQRYFQIEVRYRANDQDDEMVLQVPEDRAPGELVHLWDKGEVL				NA	NA	NA	NA	NA
D1-36_03045	309			hypothetical protein	ATGCGCAAACCCACCCTCATCGCCAGCCTCGTCTTGATCGCCGGCCTCGGAGCCTTTGGGCCTGTCGCGCAAGCCGTCGAGAAAACCGGAGACGCCCTGGAGCATTCGCCAAGCAATGGCCGCCGGCTGGTGGAAAACGACCGGGTCCCGGCGGACTACCAGCGCTCGGACAGGGCCATGAAAGACTGGAAGCAGAAAAAGCTCGAGCAGCCGACAGAAGAGCAGCAATGGGTGCATATCGACGACAAGTACCTGCTGATCGAAACCGTGTCCGGCGCAATCGTCAAGATCGTCCCGGCGACACGCTAA	MRKPTLIASLVLIAGLGAFGPVAQAVEKTGDALEHSPSNGRRLVENDRVPADYQRSDRAMKDWKQKKLEQPTEEQQWVHIDDKYLLIETVSGAIVKIVPATR	PGPT0004560_184	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_COBALT_RESISTANCE	COBALT_RESISTANCE-COBALT_HOMEOSTASIS,PGPT0004560-rcnB-K23243	NA	NA
D1-36_03046	1101	yhaZ	COG4335	putative protein YhaZ	ATGAGCACCACCACCTCTTCCCCAGCCCTCAAGGAAATCTTCAACAACGCCCGCCTGGAACACATCGCCACCGAAATGCGCGCGGTGTACCCGGCGTTCGATGCCAAGGCGTTCCTGGACATGACCAACGATGGGCTGGCGCAGTTGTCGGTGATGCAGCGCATGGCGCGGGTCAGCGAGTGTCTGCATACGGTCTTGCCGCTGGATTACGAATCATCGCTGGAAGTACTGCGTGCCCTGGCGCCGCGGTTGAACAGCATGTTCGTGAGCATGTTCCTGCCGCACTACGTGGCGTCGTACGGTCGGCATGCCTTCGAGGCGTCCATGGACGCGCTCAAGTATTTCACCCGGTTCGGCTCCGCGGAATTCGCCGTGCGGCATTTCCTGCGCGATGACCTGGCGGGTACTTTAGAAGTGATGCATGAATGGGCACTGGACGCCAACGAGCACGTGCGCCGCCTCGCCAGCGAAGGCAGCCGCCCGCGCCTGCCCTGGTCATTCCATCTGGAGCCGATCCAGGCCAACCCGGAACTCGCCGCCGCCATCCTCGATGCGCTCAAGGCCGACGACAGCCTGTACGTGCGCAAATCCGTCGCCAACCACCTGAACGATGTGACCAAGCAGCATCCCGACTGGGTCCTTGACCGCATCGAAGGCTGGCCGCTCCAGGAGCGCCACACCGCCTGGATCGCCCGGCATGCCCTGCGCAGCTTGATCAAGCAAGGTAACCCCCGGGCGCTGGCGGTCATCGGAGCGGGAGGTAAGGCGCAGGTCGAGGTCTCGGATCTGCAAGTGCTGCCGGCGGTGATTCGCCTGGGCGAGCAGGTCACGTTGTCGTTCAAGGTGCAATCGACTTGTCCCGAGAACCAACGCTTGGTGATCGATTATGCGATCGATTACGTAAAAGCCTCGGGCGGTACGTCGGCCAAGGTGTTTAAACTCAGGACCTTCGACCTGCCCGCCCTGGCGTGCGCCAACCTCAGCCGCTCCCAGCACATCCGCGAGCTGACCACGCGCCGACACTATGAGGGCCGGCATGCGGTACATGTGCTGATCAATGGCGAGCGGCTGGGCAGCACCGCGTTCGACATCGTCCCCTGA	MSTTTSSPALKEIFNNARLEHIATEMRAVYPAFDAKAFLDMTNDGLAQLSVMQRMARVSECLHTVLPLDYESSLEVLRALAPRLNSMFVSMFLPHYVASYGRHAFEASMDALKYFTRFGSAEFAVRHFLRDDLAGTLEVMHEWALDANEHVRRLASEGSRPRLPWSFHLEPIQANPELAAAILDALKADDSLYVRKSVANHLNDVTKQHPDWVLDRIEGWPLQERHTAWIARHALRSLIKQGNPRALAVIGAGGKAQVEVSDLQVLPAVIRLGEQVTLSFKVQSTCPENQRLVIDYAIDYVKASGGTSAKVFKLRTFDLPALACANLSRSQHIRELTTRRHYEGRHAVHVLINGERLGSTAFDIVP				NA	NA	NA	NA	NA
D1-36_03047	2079		COG2200	putative signaling protein	ATGCTCATCGGCAGCTATTCACCCGCTCTCGTTTCGTTTTCCCTGTTTGTTGCAATCCTGGCGTCCTACACCGCGCTGGATCTGGCCGGGCGTATCGCCACCGCTCAGGGGCGCGCCGTTCACTTCTGGATGGCCGGTGGTGCGTTGGCGATGGGGGTGGGCATCTGGTCCATGCATTTCATCGGCATGCTCGCTTTCACCTTGCCGGTAGAGCTCGGCTACGATTTGGCGATCACTGCGCTGTCTTTGCTGATTGCCGTCCTTTCCAGCGGCTTTGCGCTGTGGTTGGTCAGCCAGCCACAACTGCGCGCCTGGCATTTGGCGTTCGGCGCGTTGGTGATGGGTACCGGCATCAGTGCCATGCATTACACCGGCATGGCCGCGTTGCGGATGCAACCGGGCATCGATTACGACCCGACGCTGTTCGGGGCTTCGTTGTTGATTGCCGTCGTAGCGTGTGCGGCGGCGTTATGGATCGCCTTTCATCTTCGCCAGAATACGCCTCACGTACGCCTGGCTCGTGCCGGCGCCGCCGTGGTGATGGGCGTCGCCATTGTCGGCATGCACTACACCGGCATGGCCGCGGCGCAGTTCCGCGAAGGCAGTTTCTGCGGGGCCCTGGATGGCTTGAGCGGCAAGGGGCTGGACAATGTGGTGCTGATTACCACCCTGGCAATCCTGGCGATTACCTTGCTGACTTCCATCCTCGACGCGCGCCTTGAAGCGCGTACGGCGGAGTTGGCCAGGTCGCTGACCCAGGCCAACCGGGAGCTGACTCAACTGGCCTTGCACGACCCCCTGACCGGACTGCCCAACCGTGTTTTGCTGGCCGATCGCATTGGCCAAGCCATGCACCGCGTGCAGGAACAGGGCGGGTGTTTCGCCTTGATGTTCATTGACCTGGATGGCTTCAAACCGGTGAACGACGCGTTTGGCCATCACATGGGCGACCTGTTGCTGCGGGACGTGGCCCTGCGCCTGCGCGAGGATCTGCGCAACCAGGACACCCTCGCACGGATCGGTGGCGACGAGTTCGTCCTGCTGGTGCAACTGGCCGAGCCGGACGACGCCCTGCGCCTGGCCGCTCGGCAGGTTGCATTGATCGGCGGCACGTTCCGGGTCGCCGACCATGACCTGCAGATCTCCGCCAGTGTCGGCATCTCGCTTTATCCGGGCAACGGCCAGAGCGCCGATGAACTGTTGATGAACGCGGACGCGGCGATGTATCACGCCAAGGGCGCCGGCAAGAACGGCTACAGCTTCTTCGACGCCTCGATGAACAGCAACGCCCGCAAGCAATTGCAACTGCTGCAAGACTTGCGCATCGCCGTCGAGCAGCGGCAGTTCAGCCTGCATTACCAGCCCAAGTTCGACGCCGCGAAGGGCCGTCCGGTAGGTGCCGAAGCGCTGCTGCGCTGGACTCATCCAACCCAGGGCCTGCTGATGCCCGACACCTTCATCGACCTGGCGGAGAAGACCGGGTTGATCATTCCGATCGGCGAATGGGTGCTCAACGAAGCCTGCCGGCAGATGCGCGAATGGTACGTGCTGGGCTACACCGACTGGCGCATCGCGGTGAATCTCTCGGCCTTGCAGTTCTGCCATGCGGGCCTGGTGCAGAGCGTGGCCAAGGCGCTGGAAACTCATCATTTGCCGGCCAACAGCCTGACGCTGGAAATCACCGAGACCACTGCCATGAGCGACGCGGACGCGAGCATGACGGTGCTGCAACAGCTGTCGGACATGGGCGTGGACCTGTCCATCGACGACTTCGGCACCGGCTATTCGAGCCTGATGTACCTCAAGCGCCTGCCGGCCAACGAGTTGAAGATCGATCGCGGTTTCGTGCGCGACCTGGAGCACGACAGCGATGACGCGGCCATCGTCTCGGCCATCGTCGCCCTCGGCCAGGCCCTGGGGCTGCGGATCGTCGCCGAAGGGGTGGAGACCGATGTACAACAGGACTTCCTGACGCAGTTGGGCTGCGATTCACTGCAAGGTTATCTGCTGGGGCATCCGCAACCGGCCGAGCATTTCCTCAAGAACATCCGCCAATTCCCGCGCGTGGCGATCGCCTGA	MLIGSYSPALVSFSLFVAILASYTALDLAGRIATAQGRAVHFWMAGGALAMGVGIWSMHFIGMLAFTLPVELGYDLAITALSLLIAVLSSGFALWLVSQPQLRAWHLAFGALVMGTGISAMHYTGMAALRMQPGIDYDPTLFGASLLIAVVACAAALWIAFHLRQNTPHVRLARAGAAVVMGVAIVGMHYTGMAAAQFREGSFCGALDGLSGKGLDNVVLITTLAILAITLLTSILDARLEARTAELARSLTQANRELTQLALHDPLTGLPNRVLLADRIGQAMHRVQEQGGCFALMFIDLDGFKPVNDAFGHHMGDLLLRDVALRLREDLRNQDTLARIGGDEFVLLVQLAEPDDALRLAARQVALIGGTFRVADHDLQISASVGISLYPGNGQSADELLMNADAAMYHAKGAGKNGYSFFDASMNSNARKQLQLLQDLRIAVEQRQFSLHYQPKFDAAKGRPVGAEALLRWTHPTQGLLMPDTFIDLAEKTGLIIPIGEWVLNEACRQMREWYVLGYTDWRIAVNLSALQFCHAGLVQSVAKALETHHLPANSLTLEITETTAMSDADASMTVLQQLSDMGVDLSIDDFGTGYSSLMYLKRLPANELKIDRGFVRDLEHDSDDAAIVSAIVALGQALGLRIVAEGVETDVQQDFLTQLGCDSLQGYLLGHPQPAEHFLKNIRQFPRVAIA	PGPT0026010_1487	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0026010-mucR-K21023	NA	NA
D1-36_03048	657	pncA_1	COG1335	Nicotinamidase	ATGACCCTAGCGGATACCAAAGCCACAACCACCGCTTTACTCGTGATTGACATCCAGAACGACTTCATCCCTGGCGGCCAACTGGCCGTGCCGGGTGGCGACGAAATCGTGCCGCTGGTCAACCGACTCGGCCGTTCGTTCCTGAACGTCGTCTGCGCCCAGGACTGGCACCCCGCCGGGCACGCCTCGTTCGCCTCCAGCCATGAAGACAAGCAACCCTTCGACCTCATCCAGCTCCCCTACGGCGAACAAAAGCTCTGGCCCGATCACTGTGTCCAGGATACCCCGGGCGCCGCGCTGCACCCTGACCTCGACTTGCCTCATGCCCAATTGGTCATTCGCAAGGGGTGCAACCCGGCCATCGACAGTTACTCGGCCTTCATGGAAGCCGACCGCCAGACCCCGACCGGCCTGACCGGCTACTTCAAGGAACGCGGCATCGACACGGTGTACATGGTCGGATTGGCCCTGGACTTCTGCGTGATGTACTCGGCGCTGGACGCACGAATGGCTGGCTTCAACGCGATCGTCGTTCTGGACGCTTGCCGGGGCATCGATATCGACGGTTCGATGGACGCGGCCATGCGGCGCATGCAGGAGGCCGGCGTGCGGCTGATTCAATCCAGCGACATCGCCAGCCCGGCGTTTGCCGGATGA	MTLADTKATTTALLVIDIQNDFIPGGQLAVPGGDEIVPLVNRLGRSFLNVVCAQDWHPAGHASFASSHEDKQPFDLIQLPYGEQKLWPDHCVQDTPGAALHPDLDLPHAQLVIRKGCNPAIDSYSAFMEADRQTPTGLTGYFKERGIDTVYMVGLALDFCVMYSALDARMAGFNAIVVLDACRGIDIDGSMDAAMRRMQEAGVRLIQSSDIASPAFAG	PGPT0013470_266	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013470-pncA-K08281	NA	NA
D1-36_03049	642			hypothetical protein	ATGCCCCGCCTCACCCGCACTCACCCGCGCCTTTCCTGGGCCACGATCATTGGCCTGGCCGCGGGTTTGTCGATTCCCGCTGACTCGGTCATCGGCAAGATCCTGATCGGCTGGAACGTCGGGGTCTGGACTTATCTGCTGTTGATGTTCTGGCTCACGGTGCGAGCCAAGGCACCGGACGTGAAGCGCATCGCCGAAATGGAAGACGAAAACGCCGGGCTCGTGTTGTTGATGGTTTGCATCGCAGCCTTGGCCAGCCTGGCGACCATCACCTTTGAACTGGCCGGCAGCCGCGACCTGCAAACGGCCGGCAAGTGGCTGCACTATGGCGCGACCGCGTTGACCGTGATCGGCTCATGGTTGCTGATCGGAGTGATCTTCAGCGTTCACTACGCCCGGCTGTATTACACCTGGAACGGCAAGGAACCGGCGCTGCGTTTTGCCGAAGGCCTGGCCACACCCAATTACTGGGATTTCCTGTACTTCTCGTTCACCATCGGCGTGGCGGTGCAGACCTCGGACGTGGGGGTTGCCACGCGGCAGTTGCGCAAGATCGTGTTGGCGCAGTCGTTGATCGGTTTTGTGTTCAATACGGCGATATTGGGGTTTTCGATCAATATTGCGGCGGGGTTGTTTGGATGA	MPRLTRTHPRLSWATIIGLAAGLSIPADSVIGKILIGWNVGVWTYLLLMFWLTVRAKAPDVKRIAEMEDENAGLVLLMVCIAALASLATITFELAGSRDLQTAGKWLHYGATALTVIGSWLLIGVIFSVHYARLYYTWNGKEPALRFAEGLATPNYWDFLYFSFTIGVAVQTSDVGVATRQLRKIVLAQSLIGFVFNTAILGFSINIAAGLFG				NA	NA	NA	NA	NA
D1-36_03050	1302	rstB		Sensor protein RstB	ATGTGGAAGCTGCTGATTCGCCTTTATCTGGTCACCATCGTTTCCTACAGCGCGGCAATCTATTTGATGCCGGAACTGGTGATCCGCCTGTTCCACGAGCGTTTCCAGGCCTACAACCTCGACTATTCCCGTGGCCTGCAAACGTTGATGGTCAAGCAGTTCCGCGCCGTGCCCAGCGAGCAATGGCCGGCGCTGGCGGCGCAGATGGACAAGGAGTTCGAGCCGTTGCGCATCGAGTTGGCGACCACCGAGGACGCCGGTTTCACCGCAACCGAACAGGCGCGTCTCAAACGTGGCGAGAACGTGGTGCGCGTCGGTGACTGGGGCTGGCGAACCCTGGCGGCAGCGCCGCTGGACGAGCGCACGGCGGTGAAGATGATCGTGCCGCCCGACCCGGCGGATGTCAGTTGGCTGTATTGGAGCATCAACGTGCTGATCGGCGCGACGATGCTGGGCTGCCTGCTGCTCTGGTTGCGGCCGCACTGGCGCGATCTGGAGCGTCTGAAGCGCACCGCCGAGCGTTTCGGCAAGGGGCATTTGAGCGAGCGCACGCACATTGCGCCGCGCTCGAACATCGGCAGCCTGGCCCACGTATTCGACACCATGGCCGGTGACATCGAGAATCTGCTCAACCAGCAGAGGGACCTGCTAAACGCCGTGTCCCATGAACTGCGCACGCCCTTGACCCGGCTCGATTTTGGCCTCGCTCTGGCGTTGTCGGAGGAGATGCCGACGGCCAGTCGCGAGCGTCTGCAAGGGTTGGTGGCGCACATTCGCGAACTGGACGAGTTGGTGCTGGAACTGCTGTCCTACAGCCGCTTGCAAAATCCGGAGCGGTTGCCGGAGCGGGTCGAAGTGCCGCTGGACGAGTTCATCGACAGTATCCTGGGCAGCCTCGACGAAGACCTGGCCGCGCCGGAGGTGGTGATCGACGTGTTGCTGCACGGGGCGCTGGAGCGTTTTGTACTGGACCCGCGCCTGACCGCCCGCGCTTTGCAGAACCTGCTCCGCAATGCCATGCGCTATTGCGAGAAACGCATCCAGGTCGGCGTGCTGGTCAGCGAGCAAGGCTGTGAAATCTGGGTCGACGACGACGGCATCGGCATTCCCGACAGCGAGCGCGAGCGCGTCTTCGAGCCGTTCTACCGCCTGGACCGCAGTCGCGACCGGGCCACGGGCGGCTTCGGCCTCGGCCTGGCGATCAGCCGCCGTGCCCTGCAAGCCCAGGGCGGCACCCTGACCGTCGAGGCCTCGCCGCTAGGCGGGGCACGGTTCAAGTTATTGCTCCCCACACCTTCCTGA	MWKLLIRLYLVTIVSYSAAIYLMPELVIRLFHERFQAYNLDYSRGLQTLMVKQFRAVPSEQWPALAAQMDKEFEPLRIELATTEDAGFTATEQARLKRGENVVRVGDWGWRTLAAAPLDERTAVKMIVPPDPADVSWLYWSINVLIGATMLGCLLLWLRPHWRDLERLKRTAERFGKGHLSERTHIAPRSNIGSLAHVFDTMAGDIENLLNQQRDLLNAVSHELRTPLTRLDFGLALALSEEMPTASRERLQGLVAHIRELDELVLELLSYSRLQNPERLPERVEVPLDEFIDSILGSLDEDLAAPEVVIDVLLHGALERFVLDPRLTARALQNLLRNAMRYCEKRIQVGVLVSEQGCEIWVDDDGIGIPDSERERVFEPFYRLDRSRDRATGGFGLGLAISRRALQAQGGTLTVEASPLGGARFKLLLPTPS	PGPT0004100_3878	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
D1-36_03051	702	phoP_2	COG0745	Alkaline phosphatase synthesis transcriptional regulatory protein PhoP	ATGCCCAACATCCTCCTCGTCGAAGACGACGCCGCCCTCTGCGAACTCATCGCCAGCTACCTGGAACGCAACGGCTATCACGTCAGCGTGCTCAACCGTGGCGACCATGTGCGTGAGCGGGCGCGGGTCAATCCGCCGGACCTGGTGATCCTCGATCTGATGCTGCCGGGGCTGGACGGCTTGCAAGTCTGCCGCTTGCTGCGGGCCGATTCGGCGACTCTACCAATCCTGATGCTCACCGCCCGGGACGACAGCCACGACCAGGTGTTGGGCCTGGAGATGGGCGCCGACGACTATGTCACCAAACCCTGCGAGCCACGGGTGTTGCTCGCCCGAGTGCGGACGTTGTTGCGGCGCAGTAGCCTGACCGAGCCGCAGACGGTCAATGATCGCATCGTCATGGGCAACCTGTGCATCGACCTGTCCGAACGCACCGTGACCTGGCGCGGCCAAGCGGTCGAGCTGTCCAGCGGCGAATACAACCTGCTGGTGGTGCTGGCCCGGCATTCCGGCGAAGTACTGAGCCGCGACCAGATCCTGCAACGGCTGCGCGGCATTGAGTTCAACGGCACCGATCGTTCGGTGGATGTGGCCATTTCCAAGCTGCGGCGCAAGTTCGACGACAACGCCGGCGAGGCGCGCAAGATCAAGACCGTGTGGGGCAAGGGTTATCTGTTCAGCCGTTCCGAGTGGGAATGCTGA	MPNILLVEDDAALCELIASYLERNGYHVSVLNRGDHVRERARVNPPDLVILDLMLPGLDGLQVCRLLRADSATLPILMLTARDDSHDQVLGLEMGADDYVTKPCEPRVLLARVRTLLRRSSLTEPQTVNDRIVMGNLCIDLSERTVTWRGQAVELSSGEYNLLVVLARHSGEVLSRDQILQRLRGIEFNGTDRSVDVAISKLRRKFDDNAGEARKIKTVWGKGYLFSRSEWEC	PGPT0022435_52	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0022435-parR-K18073	NA	NA
D1-36_03052	441			hypothetical protein	ATGAACAGCGCAGCCAGTAAATCTGCCTTACGTGCAACGGACGTTGACTTCACCGCCACTCTTGAGGACGGCTCCCCCTTTCGTGCCTCCGTAACCGAACTTAAAAGCTCCGTTACGCCAGGCCGCGGCGATATATGGATGGTGGTTGCCACCGAATGGGCAAACGGTCGTCCCAGAACGTTCACCATTACGTTCTCCAAAGATAGGAAAGACGCAACCAATGAACCGGTGACGGACCACGACCAACATGCAACTGTGCATTTCAATAATTATGAGGATCCGCAAAACCCGACGCTACAAAAAGCCAGGTCAGGAACGATCACTTACCATTTAAATCGCACAAGTTTAAATTTCTCAGGGTCTTTTCAAGTGAACATGGACAAAGCTGACGGCACGGGCCGCTTTCTATGCTCGGGGACATATGACACAGAGCTTAGTTAA	MNSAASKSALRATDVDFTATLEDGSPFRASVTELKSSVTPGRGDIWMVVATEWANGRPRTFTITFSKDRKDATNEPVTDHDQHATVHFNNYEDPQNPTLQKARSGTITYHLNRTSLNFSGSFQVNMDKADGTGRFLCSGTYDTELS				NA	NA	NA	NA	NA
D1-36_03053	2298			hypothetical protein	ATGTCAGGCCAGGTGGGTAGTTCGTTATTATTATGTTTATTGTTCCTGGCTGAGCCGTCGCTTGCCGGGACGTTAGTCGGCCAGGAGCAGACACTCACAAACGGTTCTCCGGTGGAAGCCTGGACGCTTGCGCAGACGTCAACGTTGAACGTCAATGGCGCAGACACGCTCGATATTTCGGCCTCTGAATCTACGTTGAATGCCAGCGGAGCTACCACTGGAAGGATTACAGGAAGTAATGGTTCTACCATCAACTTATCTGACACTACCGTCGCTGGTGGGAATGCGCCCTCTGCGTTGCGACTTGACAACAGTACCGCGACGATCAATGGCAGTACCATCACCGGGGATAGATTGGGATTATCAGCCGCGCGTGCCGTCACTTCGACAACCGGTTCAACGGTAACGGCAACCGACAGTACCATTACCGGCACCACAGGTGGCGCTCGTGCGTCGGCCTATAGCACCCTGACTTTTTCGAAATCGACCATTGAGGGCACAGGAGCAACGAGTTTTGGTCTTTCGCTGCTGGGCGCCTCGGCGTTTGCAAGCAACGGAACACGCATTATCGGCGGTCAGAATGGCGTCACGTTGGGGCTCGAAAGCGGTGTATCGGTTGGCAATCGCCTAGAGCTTGATCGTTCGAGCATCGAGGGGAAGAACGGTTCTGCCATTGTTGTGGATTACGCGGGTAGCTCGGCACCGGTCACACGGATTGACGTGCTCAACGGTTCGACGCTGACCGGGAGCAACGGAACGATCCTGGAAGTAAAGGGCGCCGCTGACGCAGCCATGAATGTAGGACTGAGCGACCTGACGGGTAATGTTCAAGTTGCCGACAACAGTGTCGCGGCGCTGACTTTTATTCAAGGCTCGTTGGTCGGTGATATAACAGCCGACACGGGCAGCACGGCGACAGTAGCGTTGCAGCAAGGCTCGCAATTGACCGGCGTCATGACTAATGTTGCGACGGTCGGTATTGATGCTCAATCGAGTTGGACCATGACGGGCAACAGTCAGGTCGGCGATTTGTCTTTAAACGGCGGTACGGTGAGATTCGGTGCCGATAATGCTTTTTATCAACTGAATGTAGAAAACCTGTCCGGTAACGGTCTGTTCATGATCGGCACCGATTTTGCGACAAACCAGACCGATGTACTCAATGTCACCGGGTCCGCCACCGGCAACCATCAGCTTATGATCGCCAGTAGCGGCATCGACCCCGCCAGTGGCCAACCGGTCCAGGTCGTAAATACTGCCAGTGGGGACGCGACCTTTACCCTGGCGAATGCCGGTGGTGAAGTCGATCTGGGCGCATTTACTTATGGATTGAAGCAAAGTGCCTCCGGTAACGATTGGTTCCTGGATCCTACGGCTCGTGGGGTCAGCCCTTCCACTCGGGCAGTCATGGCACTGTTCAATACCGCACCGACGGTGTGGTATGGCGAGCTGACCTCGTTGCGCAGTCGCATGGGGGAATTGCGCTTCAATCCACAGAAGTCCGGTGCCTGGATGCGGGCGTATGGCAATAAATACAACGTGTCGGATAGCTATGGGGCTGGATACCGGCAGGCCCAGCAAGGTTTCTCGCTCGGCGCCGATGCGCCTTTGCCAATGGGAGATGGGCAGTGGCTGGTGGGGGTAATGGCGGGTCACAGTACTTCAGACCTTGATTTGCATCGTGGAACTTCCGGTACGATCAAAAGCTACTACTTAGGTACTTACCTGACGTGGATGGATGAGGCCAGTGGTTATTACGTGGACAGCGTTCTCAAGCTCAACCGCTTCCAGAACGATGCCAAGGTTGGTATGAGCGATGGCAAGCGGGTCAAGGGTGATTACGACAACACCGGCTTGGGCGGTTCGGTAGAGATTGGACGCAATATCAAGCTTGACGATGGCTATTTTATCGAGCCCTTTACCCACTGGTCTGCGGTGGCGATAGGTGGCAAGGATTATCGACTGAACAACGGCCTGCGTGCTGAGGGCGACACTACTTACTCATTGCTCGGCAAGGCAGGTATGACAGCTGGGCGCGATATCCAGCTACGCAACGGAGCGATGGTGCAACCCTACGTTCGTGCGGCGTTGGTGCACGAATTTGCCAAGAATAACGAAGTCAAGGTCAACAACAACGTATTCAATAATGATCTTTCTGGATCCCGTGCCGAGTTAGGGGCCGGCGTGGCCATCAATTTGTCGCAACGCTGGCAAGTTCACGCGGAGGTGGAGTACATGAATGGTAAAGGTATTGAAATGCCAGTGGGGGGAACGGTAGGCCTGCAATTTAAATGGTAA	MSGQVGSSLLLCLLFLAEPSLAGTLVGQEQTLTNGSPVEAWTLAQTSTLNVNGADTLDISASESTLNASGATTGRITGSNGSTINLSDTTVAGGNAPSALRLDNSTATINGSTITGDRLGLSAARAVTSTTGSTVTATDSTITGTTGGARASAYSTLTFSKSTIEGTGATSFGLSLLGASAFASNGTRIIGGQNGVTLGLESGVSVGNRLELDRSSIEGKNGSAIVVDYAGSSAPVTRIDVLNGSTLTGSNGTILEVKGAADAAMNVGLSDLTGNVQVADNSVAALTFIQGSLVGDITADTGSTATVALQQGSQLTGVMTNVATVGIDAQSSWTMTGNSQVGDLSLNGGTVRFGADNAFYQLNVENLSGNGLFMIGTDFATNQTDVLNVTGSATGNHQLMIASSGIDPASGQPVQVVNTASGDATFTLANAGGEVDLGAFTYGLKQSASGNDWFLDPTARGVSPSTRAVMALFNTAPTVWYGELTSLRSRMGELRFNPQKSGAWMRAYGNKYNVSDSYGAGYRQAQQGFSLGADAPLPMGDGQWLVGVMAGHSTSDLDLHRGTSGTIKSYYLGTYLTWMDEASGYYVDSVLKLNRFQNDAKVGMSDGKRVKGDYDNTGLGGSVEIGRNIKLDDGYFIEPFTHWSAVAIGGKDYRLNNGLRAEGDTTYSLLGKAGMTAGRDIQLRNGAMVQPYVRAALVHEFAKNNEVKVNNNVFNNDLSGSRAELGAGVAINLSQRWQVHAEVEYMNGKGIEMPVGGTVGLQFKW				NA	NA	NA	NA	NA
D1-36_03054	2034			hypothetical protein	ATGACCAGTACAAGTACAAGTCCCAACGGTGAAGTATTAACGCTGAAGCAGATTGCTGAGCGCTCGCGGACAGCCTTACGCACGAAAAATTCTGACTCCGGCGTTCTGCTGAATCCCCCCGAAATTGTCGGACAGATCATAGACGACCTGATCCCCAAATCGGTGCTGGACACCCGGACGATGACGGTTCGATTCCATACCGGTGATATTGCAAGCCCGCATGACAGTGACGAATGGGAGTTGTATGAGCGGAAGGCGCCAGATACGGGGGACGGTACCATGGTCGCTGACGGCCAGTTTGGCCCTGTAACAGGTCGCCCGACGGAACTCAATATTCCGGTATCCACTATTGCGCTCGCGGATGATGACGCATCGAAAGCGTCAACGACTTACGAATATCAATTTGTCCACTACAAAGGCGCGGACGGCAACGCGGACATGTCGCCATGGTTCCCAGCAGAAATTGACCGGTATGCACCTGAGCATGACAAACCGTCGAATATGAGGCTGAAGCCGGAGGCCGCCATATTTGTAAATTTGGCTCCGGGTCAAGAAATTGATGATGATTGGCTCGCCAATAACAGCACGCTGGAGCTGGCCATCAATGTTAGCTATGACTTTCATCGTGATGACGATGTCATTCACGTCTATGCGGGGGACAGTTACGGTGTCGGGACGCCTGTACATACCCAAGATCTAACGTCATCTGGGGAGGTGTCGGTACCAACGGCAGCTATTCCGCAATTGGACGGGCAATATTACGTCTGGTACGTATTAGAAGATGTGGTTGGAAATATCAGCGAGGACGCGTTGGCGAGTGGCTACTATGTCCGTCGCCGGCCACGGCCTCAACTGCATGACTCTTATATTCCGAAAGGCATCTTGCCGGACGTTGTCGACTTGGAGGACCTGACCAGCCCAGTGTATGTAGAAGTACCCTATACCACTAATGGCCAAGACACGGACCGGATCATTCCGAAGATTATTAACGGTAACGGTAGTACAGAGTTTGCTTTAGGCAGTCAGCAGTTAGGCCAGGAGGCACCTAATAAAGTACTCCAATTTCCGGTGGCCACGAACAAGCTGCTTGCGCTTTGGGGAAGCTCTACCGCGCAAGCGGCTGTATTTACTGAATATCAATTTTCCCGAACAACAGAAAACCCAGTTCCATCCGTTCCAGCAGAGTCCGCTCTTGATTTTAGCTATCGTGGCCCCGAGAATCCGATTTTTCCCTCGTTGGAAAATCCGGATATGGTGAAGGTCACGGTGGTGGCCGTTGGTGGCTCTGGCACTCCAAACCATATAACGCCAGAGGATCGTGGAAAGGAGGCGACTATCAGCACGCCCCTCGTCGATGCAGCAAGCGCGTGGGTGCCGATTGGCGATGAGGTCGCCCGGTTGTGGTTCAACGGCGTGGAAGTGTATAGCGAAAACCTAACGGCCGGGACCTTGACACCATTGACCTTTAACATGTCAGCCGCTGACATCGATGGCGCCGGGGTTGGAAAGAAAATTGCCTATTGGACGATTGAGGAAGATGGCGGTCGGAATGTAATGCGATCGTACCCCACCGAGGTTCAGGTCGATGCGGTTCGGGTTGTACTGCCAGCTCCAACGGTTCGGTTGTTTAACGGTCTTGTTTCATGCCGATATTTGGACAGGAGCACATACGCGTTGCCCGTTACGGTCGACATAGATGCAACGCATATGCCTCCCGGCACGGTTGTTACGCTTAAATCCGTTGGAACCACCGATGCGTTGGGACTTGATGAAATCCCTGGCACGGACTATCTCGGAACTTACCAAATTACCGGAGCGGAGACGGGTGGGCAGTTTGTCAAGAATATCGAGCCCTACTTGACAAAGCTCAAACCTATCCAGCCGACACACGCTTCCGGCTTGCCTAATGGTTATATAAAAATTTGGTATGAGGTGGATATCGGTGGGGTGCTTACATCGTCGCTTGAGTTTCTAAACGAGGTTTCACTGCTGAATAACAGCTTTAATTATTGTGAAGGAACACCGACTCAATAG	MTSTSTSPNGEVLTLKQIAERSRTALRTKNSDSGVLLNPPEIVGQIIDDLIPKSVLDTRTMTVRFHTGDIASPHDSDEWELYERKAPDTGDGTMVADGQFGPVTGRPTELNIPVSTIALADDDASKASTTYEYQFVHYKGADGNADMSPWFPAEIDRYAPEHDKPSNMRLKPEAAIFVNLAPGQEIDDDWLANNSTLELAINVSYDFHRDDDVIHVYAGDSYGVGTPVHTQDLTSSGEVSVPTAAIPQLDGQYYVWYVLEDVVGNISEDALASGYYVRRRPRPQLHDSYIPKGILPDVVDLEDLTSPVYVEVPYTTNGQDTDRIIPKIINGNGSTEFALGSQQLGQEAPNKVLQFPVATNKLLALWGSSTAQAAVFTEYQFSRTTENPVPSVPAESALDFSYRGPENPIFPSLENPDMVKVTVVAVGGSGTPNHITPEDRGKEATISTPLVDAASAWVPIGDEVARLWFNGVEVYSENLTAGTLTPLTFNMSAADIDGAGVGKKIAYWTIEEDGGRNVMRSYPTEVQVDAVRVVLPAPTVRLFNGLVSCRYLDRSTYALPVTVDIDATHMPPGTVVTLKSVGTTDALGLDEIPGTDYLGTYQITGAETGGQFVKNIEPYLTKLKPIQPTHASGLPNGYIKIWYEVDIGGVLTSSLEFLNEVSLLNNSFNYCEGTPTQ				NA	NA	NA	NA	NA
D1-36_03055	813			hypothetical protein	ATGGCACAGCCGAACGGTCAAATCACAGCTGTACCTTTGCGCATAGATGGCGTGAGTGAACTGGACCCGGAAGGCCGTATTCCGTTAGAACAACTGACTAACGGAACGACCGGAAGAATAACGCGCTGGACCGATTTTCCGGGGCAGCCCGGAATATATACGGAGCTTACGGTTTATTGGAAGCAGCCAATAAATCCACCAACAGAAACGGTAATTTTTAACAACAGATACTATCAGGTAGATGATCGACCGGAGTTTACATTTCCAATAACGCCTCAAATGATGAGCGTCGACGGTACTGCCGAAATTCGCTATCTGTTAGAGCATAGTGTTAACGGAAATTTCGATCCTTCACCGATTCGCAAACTGACGATCGATCATACACCGGTGCTTGTACCAACCTTGGCGGAGCCGACCTTTCCGGACAGCAACTTATGGGGTTATCTCAATTGCACTTCGCCCGTGCCAATCTGGGAAAAGGTCAGGGTGGCGATAGCGCCTGAATCGATTTTCAATGGGCAGGACGAATGTGTTCTTGAGTGGCAGGGATTTAGCACTTTGAATGGCAGCCCTCCGGCACTGACGCCCATCTACGAGTTTCGCAAAACGATAAGTGACAGCGAAGCGGCCTATGGATTTGTCATGGAAATCCCTTTCGTACCCTATGTAAAGCCTATGGTGGATAGCGATTCCGGCATTGCTCAGTACACGATTTATCGAAATGGAATTCCTAAAGGTCGGTCGAAGAAAGGTTTGGTCAAGATCGATCGAGTCATTCCGGGCGAGACGGAGCCTTGTGGCGGATTTGTCTAA	MAQPNGQITAVPLRIDGVSELDPEGRIPLEQLTNGTTGRITRWTDFPGQPGIYTELTVYWKQPINPPTETVIFNNRYYQVDDRPEFTFPITPQMMSVDGTAEIRYLLEHSVNGNFDPSPIRKLTIDHTPVLVPTLAEPTFPDSNLWGYLNCTSPVPIWEKVRVAIAPESIFNGQDECVLEWQGFSTLNGSPPALTPIYEFRKTISDSEAAYGFVMEIPFVPYVKPMVDSDSGIAQYTIYRNGIPKGRSKKGLVKIDRVIPGETEPCGGFV				NA	NA	NA	NA	NA
D1-36_03056	1212	aruH	COG0436	Arginine--pyruvate transaminase AruH	ATGCGCTTTTCAGCCCTGACCCAACGCATCACTGGCGACGGCGCTGCCGCCTGGGCCATTCATGACCGGGCACTGGCCATGCGCGAGGAGGGCAGGGACGTGCTGTTGCTCTCGGTGGGCGATCCGGATTTCGACACACCGCCCGCCATTGTCGAGGCCGCCGTCGCCAGCCTGCGTGCCGGCGATACCCACTATTCGGACACCAGCGGCTTGTACAGCCTGCGCGCCAGCATCGCCCGGCGGCACCAACAACGCTGCGGCCAACCAGTGGGCGCGGGCCACGTTACGGTGCTGCCCGGCGCGCAATGCGGCGTCTATGCCGTCGCGCAATGCCTGCTCGACCCTGGCGATGAAGTGATCGTCGCCGAACCGATGTACGTCACCTACGAAGCGGTATTCGGTGCCTGCGCAGCGAAAGTGGTGCCGGTGGCGGTGACGCCGGAGAACGGCTTCCGAGTCCAGCCGGCCGACGTCGCCCGGCTGATCACCCCGCGCACCCGTGCGATGCTGATCAACAGCCCCAACAACCCCTCCGGCGCCAGCCTGCCGCTGTGCACCTGGCAAGCCCTGGCGCAACTGTGCATCGAACACGATCTGTGGCTGATCAGCGATGAGGTCTACAGCGACCTGCTCTACGAAGGCGAGCACATCAGCCCGGCCGGCCTGCCGGGCATGGCCGAGCGCACCGTCACCATCAACAGCCTGTCCAAATCCCATGCCATGACCGGTTGGCGCATCGGCTGGGCCATTGGCCCCGAACCTCTCGCTGAACACCTTTCCAATCTGTCGCTGTGCATGCTGTTTGGTTTGCCGGATTTCGTCCAGTGCGGTGCCCTGGTTGCCCTTGAACGGGATCTGCCGGAAGTGGCGCAGATGCGCGCGGAGTATCGCCAACGTCGGGACTTGGTATGCGCGGCGCTTGAGGGCTGTCCAGGGCTCAAACCTGTACGACCCGATGGCGGCATGTTCGTAATGGTCGATGTGCGTGAGACGGGGCTGGATGCCCAAACGTTTGCCGAGCGGCTGCTGGACGGGTATGGCGTGTCGGTGTTGGCGGGGGAGGCGTTTGGGCCGAGTGCGGCGGGGCATATTCGGATTGGGTTAGTGATAGGTCGGATGGAACTGGCGAAGGCGTGCCAGCGAATTGCCCACTGTGCTGTGGAACAACTTAGAGAAGCCCAAGGCGTACCCGCCGAGACGCCGGCCCGATGA	MRFSALTQRITGDGAAAWAIHDRALAMREEGRDVLLLSVGDPDFDTPPAIVEAAVASLRAGDTHYSDTSGLYSLRASIARRHQQRCGQPVGAGHVTVLPGAQCGVYAVAQCLLDPGDEVIVAEPMYVTYEAVFGACAAKVVPVAVTPENGFRVQPADVARLITPRTRAMLINSPNNPSGASLPLCTWQALAQLCIEHDLWLISDEVYSDLLYEGEHISPAGLPGMAERTVTINSLSKSHAMTGWRIGWAIGPEPLAEHLSNLSLCMLFGLPDFVQCGALVALERDLPEVAQMRAEYRQRRDLVCAALEGCPGLKPVRPDGGMFVMVDVRETGLDAQTFAERLLDGYGVSVLAGEAFGPSAAGHIRIGLVIGRMELAKACQRIAHCAVEQLREAQGVPAETPAR	PGPT0020890_2	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0020890-occP|nocP-K10021	NA	NA
D1-36_03058	189			hypothetical protein	ATGTCGACCATCAGCAGCACCGCCCGCACGAACAGTAGCACCGTCACCCTGAGCCAGCGCTTGAGCGCCGCGGTCCTTGCCTCGATTCTCGGCGCGGGCCTGGTGTATTTCGCCGGTTTCTCCCACATCGAAGCGGTGCACAACGCAGCCCACGACACACGGCACAGCGCCGCGTTCCCGTGCCATTGA	MSTISSTARTNSSTVTLSQRLSAAVLASILGAGLVYFAGFSHIEAVHNAAHDTRHSAAFPCH				NA	NA	NA	NA	NA
D1-36_03059	696			hypothetical protein	ATGATCAAGCGTATCGCGCAAACCGCCGGTTTCAGTGGATTGTTGGCCGCCCTGCTGCTGACTCTTCTACAAAGTTTTTGGGTATCGCCGCTGATCCAGCAAGCCGAGACCTACGAAAAGGCCCCGGCCGCCGAGGTCCATGAACACGCCGCTGGGGTTGCACACAGCCATGACGCGCAAGCCTGGGAGCCGGAGGACGGCTGGCAACGCGTGCTCTCCACCACCGGCGGCAACCTGGTGGTCGCGGTGGGTTTTGCGCTGATGCTCGCGGGCCTGTACACCTTGCGTGAACCGACGCGCACATCCCAGGGTTTGCTCTGGGGCCTGGCCGGCCATGCCACCTTCGTCCTGGCGCCGACGCTGGGCTTGCCCCCGGAACTGCCGGGCACTGCTGCGGCGGATCTGGCCCAACGGCAGATGTGGTGGATCGGCACCGCTGCGTGCACGGCGGTGGGCATCGCCCTGATTGCGTTCGGTCGGCATTGGCTGTTGAAAGTGTTGGGCCTTGCGACCTTGCTGATTCCTCACGTCATTGGCGCCCCGCAGCCGGACGTGCATTCCATGCTCGCGCCCGAGGCGCTGGAAAGTGAGTTCAAGCTCGCTTCGCAATTGACCAATGTTGCGTTTTGGCTGGCCTTGGGCCTGATCAGCGCCTGGCTGTTCCGCCGTGGTGCACAGGCTCACGACCAAGCATGA	MIKRIAQTAGFSGLLAALLLTLLQSFWVSPLIQQAETYEKAPAAEVHEHAAGVAHSHDAQAWEPEDGWQRVLSTTGGNLVVAVGFALMLAGLYTLREPTRTSQGLLWGLAGHATFVLAPTLGLPPELPGTAAADLAQRQMWWIGTAACTAVGIALIAFGRHWLLKVLGLATLLIPHVIGAPQPDVHSMLAPEALESEFKLASQLTNVAFWLALGLISAWLFRRGAQAHDQA				NA	NA	NA	NA	NA
D1-36_03060	405	cbiG	COG2073	Cobalt-precorrin-5A hydrolase	ATGAGTGGCGGGCCGATCCTGGTGGTCGGCCTCGGCTGCCAGCGCGGTTGCCCGGCCAGCACGTTGCGGGCATTGCTTGAGCAGGCGCTGCTGGCCCACGGTATCGCGCTCGACGAAATAAGGGCATTGGCGAGCATTGACCGCAAGCGTGACGAGCCGGGGCTGCTGGAGTTGGCAGCGCAATTATCGCTGCCGCTGACGTGTTTCAGCGCTGAACAACTGGCGGGTTATCAAGCACAGCTCAGCCATCGCTCAGCCATCGCTTTCGAGCATATGGGTTGCCATGGCGTCGCCGAAAGCGCCGCCCTCGCCCTGGCCGATCAACTGGGTGTTTCGCCCGCAAGATTGCGAGTTACCCGCCAGAAAGGCCCGCAGGCGACATTGGCATTGGCGATGGCTTTGTAA	MSGGPILVVGLGCQRGCPASTLRALLEQALLAHGIALDEIRALASIDRKRDEPGLLELAAQLSLPLTCFSAEQLAGYQAQLSHRSAIAFEHMGCHGVAESAALALADQLGVSPARLRVTRQKGPQATLALAMAL	PGPT0004630_1169	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004630-cbiG-K02189	NA	NA
D1-36_03061	747	cobM	COG2875	Precorrin-4 C(11)-methyltransferase	ATGACCGTTTACTTCATCGGCGCCGGCCCTGGCGATCCGGAGCTGATCACCGTCAAGGGCCAGCGGCTGATTCGCAACTGCGCCGTGATCATCTACGCCGGCTCCCTGGTGCCAACGGCCGTGCTGGAAGGCCACCGCGCCGAACAAGTGGTCAACAGCGCCGAGCTGCACCTGGAACAGATCATCGATCTGATAAAGTCGGCACACCTCAACGGTCAGGATGTAGCGCGAGTGCACTCCGGCGACCCAAGCCTTTACGGCGCGATCGGCGAGCAGATCCGCTACCTGCGGGAGCTGGACATTCCTTTCGAAATCATCCCGGGCGTGACCGCCACTTCAGCCTGCGCCGCTCTGCTCGGTGCCGAGCTGACGCTGCCAGACATATCCCAAAGCGTGATCCTGACCCGCTACGCGGACAAAACCGCCATGCCCACGGGAGAAGAGCTGGTCAGCCTGGCGCAACACGGCGCCACCATGGCGATTCACTTGGGCGTCAACCATCTGGAAAAAATCATCGATGAGCTGCTGCCCCACTACGGCGGCGATTGTCCGATTGCGGTAATTCACCGGGCGACGTGGCCCGATCAGGATTGGGTGGTGGGGACGCTGGAGGATGTTGCCGAAAAGGTACGGGCCAAGGGCTATCGGCGTACGGCGTTGATTCTGGTGGGACGGGTGTTGGGCAATGATGTATTCAGCGAATCATCGCTGTACCGCGCTGGACATGCGCATCTCTACCGACCCTGA	MTVYFIGAGPGDPELITVKGQRLIRNCAVIIYAGSLVPTAVLEGHRAEQVVNSAELHLEQIIDLIKSAHLNGQDVARVHSGDPSLYGAIGEQIRYLRELDIPFEIIPGVTATSACAALLGAELTLPDISQSVILTRYADKTAMPTGEELVSLAQHGATMAIHLGVNHLEKIIDELLPHYGGDCPIAVIHRATWPDQDWVVGTLEDVAEKVRAKGYRRTALILVGRVLGNDVFSESSLYRAGHAHLYRP	PGPT0004625_1794	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004625-cbiF-K05936	NA	NA
D1-36_03062	609			IS3 family transposase ISSlo2	ATGGCTCGCAGTTTGATGCGCGAAGCTGGCATCGCTAGTCGTCAGCGCAGGCACCATAAGTACAAGTCGCCGGGCGTTGAGGCATTGGTGGCGCCGCACGTGCTCAAGCGAAAATTTGATGTAACGGCGGTTAACCAGGTGTGGTGTGGCGACGTGACTTACATCAAGGTCGGCAAGCGGTGGATGTACTTCGCCGCCGTTCTGGATCTGTACGCTCGGAGGATCGTGGGTTGGTCGTTCTCGATGATTTCTGATGCCAACCTGACCTGCGAAGCGCTACGCATGGCGGTTGAGCTACGCGGCCACCCCCAGGATGTGTTGTTTCATTCAGACCAAGGTTGTCAGTACACCAGTCATAAATTCCGAAACGAGCTTGTGAAACACGGGTTTAGGCAAAGTATGAGCCGTAAAGGCGAGTGCTGGGACAACGCCCCCATGGAGCGTTTCTTTGGTAGTTTGAAATCAGAGTGGGTTCCTGAAACGGGCTACAAACTGGAACATGAGGCCCGGGCAGACGTGCAGCGCTATGTCTCGCGCTACAACATCAGCAGGCCTCACAGCTACAACGACTACCGGTCGCCGGTCGCGAAGGAAAGGTTGGCGGCGTGA	MARSLMREAGIASRQRRHHKYKSPGVEALVAPHVLKRKFDVTAVNQVWCGDVTYIKVGKRWMYFAAVLDLYARRIVGWSFSMISDANLTCEALRMAVELRGHPQDVLFHSDQGCQYTSHKFRNELVKHGFRQSMSRKGECWDNAPMERFFGSLKSEWVPETGYKLEHEARADVQRYVSRYNISRPHSYNDYRSPVAKERLAA				NA	NA	NA	NA	NA
D1-36_03063	303			hypothetical protein	ATGCGTAAATCTTATTCGAGTGAGTTCAAGCTCAAGGCTGCCAGCATGGTGCTGGATGAAGGCCAGCCGGTTACCGAGGTCTGTGCCAGCCTAGATATCGGCCCCACTGCTCTGCGCCGCTGGGTCGATCAAGTGCAAAAAGAACGCCTGGGTTCGACCCCGGTAGGGGCCAAGGCGATTACCGCTGATCAGCGAGAAATCCAGAGGCTCAAAGCCCTACTCAGGGAGAAAGACCTGGACATTGAAATCCTAAAAAAGGCCAGTGCTCTCCTGCTTTTGGACGCCAAAGATCATTCACGCTGA	MRKSYSSEFKLKAASMVLDEGQPVTEVCASLDIGPTALRRWVDQVQKERLGSTPVGAKAITADQREIQRLKALLREKDLDIEILKKASALLLLDAKDHSR				NA	NA	NA	NA	NA
D1-36_03064	585	nfuA	COG0316	Fe/S biogenesis protein NfuA	ATGACCGCCATTACCATTACCGATGCCGCCCACGATTACCTGGCCGACCTGCTGTCCAAGCAGAACACCCCGGGTATCGGGATCCGCATCTTCATCACCCAGCCCGGCACCCAGTACGCAGAGACGTGCATTGCCTACTGCAAGCCGGGAGAAGAAAAACCTGAAGACACCGCGCTGGGGCTCAAAAGCTTCACCGCGTACATCGATTCGTTCAGCGAAGCTTTCCTGGACGATGCGGTGGTCGACTACGCCACTGACCGAATGGGCGGCCAGCTGACCATCAAGGCACCGAACGCGAAAGTGCCGATGGTCAACGCCGACAGCCCGGTCAACGAGCGCATCAATTACTACCTGCAAACCGAAATCAACCCGGGGCTGGCCAGCCACGGCGGCCAGGTATCGTTGATCGACGTGGTGGAAGACGGCATCGCCGTGCTCCAGTTCGGCGGCGGCTGCCAGGGCTGCGGCCAGGCCGACGTCACCTTGAAGGAAGGCATCGAGCGCACGTTGCTCGAGCGCATCCCGGAACTCAAGGGCGTACGCGACGTGACCGACCACACGCAGAAAGAAAACGCCTACTACTGA	MTAITITDAAHDYLADLLSKQNTPGIGIRIFITQPGTQYAETCIAYCKPGEEKPEDTALGLKSFTAYIDSFSEAFLDDAVVDYATDRMGGQLTIKAPNAKVPMVNADSPVNERINYYLQTEINPGLASHGGQVSLIDVVEDGIAVLQFGGGCQGCGQADVTLKEGIERTLLERIPELKGVRDVTDHTQKENAYY				NA	NA	NA	NA	NA
D1-36_03065	291			hypothetical protein	ATGCCGTACCGCTTGTTATCCGGCAGTCTGTTGCTGCTGTTGTCCTTTACCGCAGCCGCCGGAAGTCCCGCTCCCGCGATTTCCTATACCCGCGACATCCAGCCGATCTTCACCGAAAAATGCGTGGCCTGCCACGCCTGCCATGACTCTGCCTGCCAGTTGAACCTGGGCAGCGATCCGGGCGTGCTCAGCAGCTATCCGAATTTCATCTTCAACATCCCCGCCGGGCAGGTGCCGGCATTTGTCGACGCCATGGAAACCGACCCCATGGAAGCAGGGTGCTGGACATGA	MPYRLLSGSLLLLLSFTAAAGSPAPAISYTRDIQPIFTEKCVACHACHDSACQLNLGSDPGVLSSYPNFIFNIPAGQVPAFVDAMETDPMEAGCWT				NA	NA	NA	NA	NA
D1-36_03066	3711	metH	COG0646	Methionine synthase	ATGTCCGATCGCAGCGCTCGCCTCCATCTTCTCCAGCAAGCCCTCAAGGAACGTATCCTGATCCTCGATGGCGGCATGGGCACGATGATCCAGAGCTACAAACTGGAAGAACAGGACTACCGGGGCAAGCGTTTCGCCGACTGGCCAAGCGACGTCAAGGGCAACAACGACTTGCTCGTACTGACCCGCCCCGACGTGATCGGCTCGATTGAAAAAGCCTACCTGGATGCCGGCGCCGACATCCTCGAGACCAACACCTTCAACGCCACCCAGGTGTCCCAGGCGGACTATGGCATGCAGGGCCTGGCCTATGAATTGAACCTGGAAGGCGCGCGCCTGGCCCGCCAGGTCGCCGACGCCAAGACCCTGGAAACCCCGGACAAGCCGCGCTTCGTCGCCGGCGTGCTCGGCCCGACCAGCCGTACCTGCTCGCTGTCGCCGGACGTGAACAACCCCGGCTACCGCAACGTGACCTTCGACGAACTGGTGGAGAACTACACCGAAGCCACCAAGGGCCTGATCGAAGGCGGCGCCGACCTGATCCTGATCGAAACCATTTTTGACACGCTGAACGCCAAGGCCGCGATTTTTGCCGTGCAAGGTGTCTACGAAGAACTGGGCGTCGAACTGCCGATCATGATCTCCGGCACCATCACCGACGCCTCCGGCCGCACCCTCTCCGGCCAGACCACCGAAGCCTTCTGGAACTCGGTAGCCCACGCCAAGCCGATCTCGGTCGGCCTGAACTGCGCCCTCGGCGCCAGCGAATTGCGTCCCTACCTGGAAGAGCTGTCGAACAAGGCCAGCACCCACGTATCGGCCCACCCGAACGCCGGCCTGCCCAACGAATTCGGCGAATACGATGAACTGCCGGTGGACACCGCCAAAGTCATCGAAGAGTTTGCCCAGAGTGGCTTCCTTAACATCGTCGGCGGCTGCTGCGGCACTACTCCGGCGCACATCGAAGCGATCGCCAAGGCCGTGGCCGGTTATGCGCCGCGGCAGATTCCGGAGATTCCCCGGGCGTGCCGCCTGTCGGGGCTGGAACCGTTCACCATCGATCGCAGCTCCTTGTTCGTCAACGTCGGCGAGCGGACCAACATCACCGGTTCCGCCAAGTTCGCCCGGCTGATCCGCGAGGACAACTACACCGAAGCCTTGGAAGTGGCCTTGCAACAAGTCGAGGCCGGCGCCCAGGTGATCGACATCAACATGGACGAGGGCATGCTCGATTCGAAGAAGGCCATGGTGACCTTCCTCAATCTGATCGCTGGCGAACCGGACATTTCCCGGGTGCCGATCATGATCGACTCCTCCAAGTGGGAAGTGATCGAAGCGGGCCTCAAGTGCATCCAGGGCAAGGGCATCGTCAACTCCATCAGCATGAAGGAAGGCGTCGAGCAGTTCATCCACCACGCCAAGCTGTGCAAGCGCTACGGCGCCGCCGTGGTGGTGATGGCCTTCGACGAAGCCGGCCAGGCCGACACCGAGGCGCGCAAGAAGGAAATCTGCAAGCGCTCCTACGACATCCTGGTCAATGAAGTCGGCTTTCCCCCAGAAGACATCATCTTCGACCCGAACATCTTCGCCGTCGCCACCGGCATCGAAGAGCACAACAACTATGCCGTGGACTTCATCAACGCCTGTGCCTACATCCGCGACGAACTGCCTTACGCGCTGACCTCCGGCGGCGTGTCCAACGTGTCGTTCTCCTTCCGCGGCAACAACCCGGTGCGCGAGGCGATCCACTCGGTGTTCCTGTTGCATGCGATCCGTGCGGGCCTGACCATGGGCATCGTCAACGCCGGCCAATTGGAGATCTACGACCAGATCCCGGTGGAACTGCGCGACGCCGTGGAAGACGTGATACTCAACCGCACCCCCGAGGGCACCGATGCCCTGCTCGCCATCGCCGACAAGTACAAGGGCGACGGCAGCGTCAAGGAAGCGGAAACCGAGGAATGGCGCGGCTGGGAAGTGAACAAGCGCCTGGAGCATGCGCTGGTCAAAGGCATCACCACCCATATCGTTGAAGACACCGAGGAGTCGCGGCTGTCGTTCGCCCGGCCGATCGAAGTGATCGAAGGCCCGCTGATGGCCGGCATGAACATCGTTGGCGACCTGTTTGGCGCCGGCAAGATGTTCCTGCCCCAGGTGGTCAAATCCGCCCGCGTGATGAAGCAGGCGGTGGCGCACCTGATCCCGTTCATCGAGGCGGAAAAAGGCGACAAGCCGGAAGCCAAGGGCAAGATCCTCATGGCGACGGTCAAGGGCGACGTGCATGACATCGGCAAGAACATCGTCGGCGTCGTGCTCGGGTGCAACGGCTACGACATCGTCGACTTGGGGGTGATGGTGCCGGCGGAGAAGATCCTTCAGGTGGCCAAGGACGAGAAGTGCGACATCATCGGCCTGTCCGGCCTGATCACCCCGTCCCTGGACGAGATGGTGCACGTGGCTCGCGAGATGCAGCGCCAGGATTTCCACCTGCCGCTGATGATCGGCGGCGCCACCACCTCCAAGGCCCACACGGCGGTGAAGATCGAGCCCAAGTACAGCAACGACGCGGTGATCTACGTCACCGACGCCTCCCGCGCCGTGGGCGTGGCGACCCAGTTACTGTCCAAGGAGCTGAAGCCGGCGTTCGTCGAGAAAACCCGCCAGGACTACATCGACGTGCGCGAGCGTACCTCCAATCGCAGCGCCCGTACTGAGCGCCTGAGCTACCCGGCGGCCGTGGCGAAGAAGCCGCAGTTCGACTGGAGCAGTTACCAGCCGGTCAAGCCCACCTTCACTGGCGCACGGGTGCTGGACGACATCGACTTGAACGTCCTGGCCGAATACATCGACTGGACGCCGTTCTTCATTTCCTGGGACCTGGCCGGCAAATACCCACGCATCCTCACCGACGAAGTGGTCGGCGAAGCGGCCACGGCGCTGTACGCCGATGCCCGGGCGATGCTATGCAAGCTGATCGACGAAAAACTCATCAGCGCCCGCGCCGTGTTCGGCTTCTGGCCGGCCAACCAGGTGCATGACGATGACCTGGAAGTCTATGGCGACGACGGCAAGCCACTGGCGCGCCTGCATCACCTGCGCCAGCAGATCATCAAGACCGACGGCAAGCCGAACTTTTCCCTGGCCGACTTCGTCGCGCCGAAGGACAGCGGCGTCACCGATTACGTCGGCGGTTTCATCACCACCGCCGGCATCGGCGCCGAAGAAGTCGCCAAGGCGTATCAGGAAGCCGGCGACGACTACAACTCGATCATGGTCAAGGCCCTGGCCGACCGTTTGGCCGAAGCCTGCGCCGAGTGGCTGCACCAACAGGTGCGCAAGGAACACTGGGGTTACGCCAAGGACGAAAGCCTGGACAACGAGGCGCTGATCAAGGAGCAATACACCGGCATCCGCCCTGCCCCCGGCTACCCGGCCTGCCCGGATCACACCGAGAAGGCCACTCTGTTCCGCCTGCTCGACCCAGAAGCCAGCGAACTGAAAGCCGGACGCAGCGGCGTGTTCCTCACCGAACACTACGCCATGTTCCCGGCGGCGGCGGTCAGCGGCTGGTACTTCGCCCACCCTCAGGCGCAATACTTCGCCGTAGGCAAGATCGACAAGGATCAGGTCCAGAGCTACACCGCGCGCAAGGGGCAGGACTTGAGCGTGACTGAACGCTGGCTGGCGCCTAACCTGGGTTACGACAACTAA	MSDRSARLHLLQQALKERILILDGGMGTMIQSYKLEEQDYRGKRFADWPSDVKGNNDLLVLTRPDVIGSIEKAYLDAGADILETNTFNATQVSQADYGMQGLAYELNLEGARLARQVADAKTLETPDKPRFVAGVLGPTSRTCSLSPDVNNPGYRNVTFDELVENYTEATKGLIEGGADLILIETIFDTLNAKAAIFAVQGVYEELGVELPIMISGTITDASGRTLSGQTTEAFWNSVAHAKPISVGLNCALGASELRPYLEELSNKASTHVSAHPNAGLPNEFGEYDELPVDTAKVIEEFAQSGFLNIVGGCCGTTPAHIEAIAKAVAGYAPRQIPEIPRACRLSGLEPFTIDRSSLFVNVGERTNITGSAKFARLIREDNYTEALEVALQQVEAGAQVIDINMDEGMLDSKKAMVTFLNLIAGEPDISRVPIMIDSSKWEVIEAGLKCIQGKGIVNSISMKEGVEQFIHHAKLCKRYGAAVVVMAFDEAGQADTEARKKEICKRSYDILVNEVGFPPEDIIFDPNIFAVATGIEEHNNYAVDFINACAYIRDELPYALTSGGVSNVSFSFRGNNPVREAIHSVFLLHAIRAGLTMGIVNAGQLEIYDQIPVELRDAVEDVILNRTPEGTDALLAIADKYKGDGSVKEAETEEWRGWEVNKRLEHALVKGITTHIVEDTEESRLSFARPIEVIEGPLMAGMNIVGDLFGAGKMFLPQVVKSARVMKQAVAHLIPFIEAEKGDKPEAKGKILMATVKGDVHDIGKNIVGVVLGCNGYDIVDLGVMVPAEKILQVAKDEKCDIIGLSGLITPSLDEMVHVAREMQRQDFHLPLMIGGATTSKAHTAVKIEPKYSNDAVIYVTDASRAVGVATQLLSKELKPAFVEKTRQDYIDVRERTSNRSARTERLSYPAAVAKKPQFDWSSYQPVKPTFTGARVLDDIDLNVLAEYIDWTPFFISWDLAGKYPRILTDEVVGEAATALYADARAMLCKLIDEKLISARAVFGFWPANQVHDDDLEVYGDDGKPLARLHHLRQQIIKTDGKPNFSLADFVAPKDSGVTDYVGGFITTAGIGAEEVAKAYQEAGDDYNSIMVKALADRLAEACAEWLHQQVRKEHWGYAKDESLDNEALIKEQYTGIRPAPGYPACPDHTEKATLFRLLDPEASELKAGRSGVFLTEHYAMFPAAAVSGWYFAHPQAQYFAVGKIDKDQVQSYTARKGQDLSVTERWLAPNLGYDN	PGPT0008135_938	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008135-metH-K00548	NA	NA
D1-36_03067	6879			hypothetical protein	ATGCCACCGAATTCCACACGCAACCCGAAGAAAAAACCACAGCCAGGGTCACGGGCCACGGAGAGTGTGCACGCAGACTTTCTGGAGACTGCCATGCCTGCATGGCTTATCGAAGCATCGACACAACGCCGGCAGGCGCTGAAACAAGCCGGAACGCAAAAGCCCGCCTGGTATACGAATGCTTCGCCAGACCAGCGTAAGGTCGTGGACGCCTGCTTCAAGGAAAGTGCTGCCGCACGGATTCATCTGGATAAGACGATGTCGTCGTTCCAGGACATCGACACGTTCGCCAAGCCGTTGTTGGTCCAGGCATTAAAAGATCAGTTCGGAGTCGAGGCGGATGTCGACAAGACCTGGCTATGCCTCAGAAGAGCAATGGAAATGGGGTTGTTCAAGACGGAACTGAGCACGTTCGAAGTGTTGGCGTTGCCCATGCTACAGGCCGCGCTGCACAACTTCGAAAGCTGGGAGTGTGACCCCCATGCCTACCATCACAGTTCTGGATTCGTCATGAAAGCAGGCACACACGGCACAGGCTCTTCCGTGGTACTGAACGTGTCGGTCGGTCAGTTCCTCAAGCTGTGCCGCAGCCTGGATATCGGTACGAAGTACCAGACCTATCTCAAGTCTTTTTTCTATCCGGCTGACGCCGCGACCGAAACGACGCTTCGCGAGCATTTCATTGCCAACCAGAAAGCCGCGATGAGGGCCGCCGCCGAGCAAGCGTTGTTGGCGAAGGATATCGAGCCCAAGGATCACGCGATGATCCTCTCGGTCATCAATCGCGAGAACAATCCTCGGATAGGCAATACGCCGGTCTGGTTCGAGGACATGACGTTGATGAAGCAGAGGATGGTGGGCTGCGTCGCGTTTACTCCTTGCGAAATAGATCGCTACAGCGACGAAGTCATTCTCTACGTTCCCCATGACCCCAAGCATCCGCTAAAGCGATACAACGGCGATCAACTGAAAACCCGTTTCAAGCAATTGCTCACCACCCCGGATACGGCGCGACCAGACACCGGTCCCACGCCTTACCAGCGTTTTTTCAGTCAGTTCGTTCCCTACGACAAGCGACCTTATTTCTTCAGCCAGTTTGTCCGGGAGGCTGCCGGATCCCCACGAGATAAATTGCGCTGGATCGCTGAGCCCATGAATGACTGGGCGGTTATCCTGGGGCCTGTCAGGCATTTGGTGAGCGTGAATGAGTTCCCTCCTAAGCATCCCAAAATGGAGCGCGAACCCAACCCCTACATCGCGCCCTCGTCGGTGGGCCAGAAAGGCCGCGTAGCGTGGGCCGACAACCTCGACCCATGGCAATACCTCTATGACCGGTACCGTGATCAGGTACTGGCCGATGCGCGCAGCCATGCGGTCCCCACGAATGATGTCGACGCCAAGGCGAGGGCAGCGAAACTGGCCAGCCTCCTGCAGCTAGGGCTGTTTGCCGTGAACATCGCGTCCATGTTCGTTCCGGTGCTGGGCGAGGTGATGATGGTTTTCATGGCCGAACAGCTGCTGTACGAAACCCTTGAAGGTGCGGTGGAGTGGGGCGAGGGTGACAAACGGGCAGCCAAGGCCCACTTGGTCGATATCGCCGAGAACCTGGCAATGATGGCCGTGATGGCCGGTGCGGGCGCAGGAATCGGCAAGCTGGCCGCGATCAAGGCGGAGCCGGTGATCGAGCGTCTTGAGCCCGTGACATTGCCCAATGGCGAAACACGCCTGTGGAAACCCGACCTGAGTCGCTATGAGCGTGAGGTCACACTCGACAGCACGAATGTTCCGAACGCGTTGGGCCAATACCAAATCGATGGGAAGACCTATATCCGTCAGGGTGACAAGGTCTACGAGCAGTTTTTTGATGCATCGGTGCACAAATGGCGCATCAGACATCCGACCGACGATGCGGCCTATCAACCCATCCTCTTGCATAACGGCGCTGGCGCCTGGCGCCATTCCCTGGAGCGCCCGATGACCTGGGATCGCCTGACGCTGCTCAGGCGCATCGGTCATGAGACTGCGGTATTTTCCGATGACGTGCTGCTCAGGCTCGCGGACATCAGCGGTGTCAGCGACAACACACTACGCAAAATGCACATGGACCTAGCGCCGCCGCCTCCCGAACTGAAGGATGCGATGCGCCTGTTCAAGACGGATGCCGAGGCAGGCCGCGTGATCGGCCAGCCGCAAGACGCAACGGAATCTGTCACCCGTTCGCAGGTATTCGACAGGCTGTACAAGGGCACGGAAGCTGCGGACGCTCGAATTCGCACGTTGCAGCTTGAGTGCCCGGGCCTTAGCGAGGCCGCCGCCCAAGAGGTGATCGCCCATGGCCGGGCTGCGGATCTCGCCCGTCTGGACGCGACGCGACGCGCGCCGCTGAACCTGTTGGAAGAGGCGCGTTGGTATGCGCGACAAGGACGCCAGGTGCGGGCGTACGCAGGGTTGCGCAGCGAAAATATCCCTTCGGCCGACAGTCGGCGACTGGCATTGCGAGCCCTGGAAAAACTGCCGGGATGGCCGGATACGCTGCGTCTGGAAGTGCGTGAGGGAGGCGTCGAAGGGGCTTTGCTTGACAGCATCGGCGCTGAAGATGCACCGCAGAAAAAATACCTGATCAAAAACGGACCTCGTTATCAGGCGCTCAACGAATTGGGGCAGCTCCCTGACACGGGCGGCAACTTCTACCGTTCGATTCTCCGGGCGCTGCCTGAGGAGGCGTCTTCTGCACTGGGGCTGTCGGATGTCGAGCAAGGCGCCGTACTGCAACGCAAGGTCATCGAATACGCAGACGTGCACCACAAGGCAATGACATCGTTCCTTGAACCTCATGCCAAACGTTTCAAGCCGCCGATCCGCGTAAGCGCGACGCTCAAGGGTTACTACGCGAGTGGACGAGGGCAGGGGCTGGATCCGTCCCTTAGGGCACGGGTGGAAGAGCTTTATCCAGGCGCGGAGCAAGCCGATGCCTTTTTCAGGCAACAGCAGGGCAAAACAGATCGACAGATCTATTCGCTATTGCAAATTCGCCAGCGTGAGTGGCTGTCGCTCAATGACACGCTCGACCTTTGGCGGGGGCCTTCTACAGGCAGCCCTGCCGATTTCCATAGGCGTCAATTTGTGCAGGCGCTCAGGGAGAGCTGGCGCAATGGACCGCTGGCGCAAGACTCGGCCGAAGCGGCGCGACTGTCGCTTTCCACCGAGGTGCCGCCGCCTGAAATGCCCCTCGATTTTCCCCACGTGCGTGAATTGTCGTTGGTCGGCAATGGCCTGACAGAGGCTAACGCGGATGCGTTCCTGGCGCGCTTCCCTGGCGTCACGAGATTGTCGATTGGCGGGCGGGAACGCCAATACATCGGTTCTCTTTTCGCCCAAGCGCAGCACTTGACTACCTTGCCGCAGGCGGTGAACCAGATGCCAGGGCTCACCAGCCTGCGATTCTCTACGGCTGCTTCCTCACTGGCAGAGGATTTCCCGGCGACGCTCACCAGGCTGACCTCACTGGAGACGTTACATCTCGATTATTCAGGTTTCGATGCAGCGGTCATCGGTGATCTGGACCTGACACCGTTGAATCGTTTGCGGAGTTTGACCATCGAGGCGCCCCAGGCCCTGACGCAATGGCCCGAATATGTGCAGCGTCTTCCTCTGCTCGAACGGTTGGACCTGGTGCGCACATCGATCCATACGTTGCCTGATTGGATATACGAAGGTCGTGAAGCGCTGTGGCCAGGCATGTCGCTCAATTGGTCGGCGCTGACCCCGGCGTCGTTCGCGCGTGCCTACCGGTACGTCCGCGATTATGCCGGTGAGCTCGGCCATCTGACCGATGTGGACCAGATGGTCGACGGGTACTGTCGCGGGCAATTGCGATTGCTCATTGGTGAGGCGGAATTCTATGGACGCCTGCCGGAGCGGTTCGACAGCACTCTGCATACTCACCAGGCACGCTTTGACGCGGTAGAGGCCATCAGGGCGGAACACGATGAAATTTTTGCGCAGTATGAGGTGACAGGGCCGCAAACATCGACGCCTTCGATGCCTTCGACACTGTGGTGGCGGGGCGGTGGACCCCTGTTCCGAGCCTTGCGAGACAGCTGGCGTCGTGCGGTTCGCCAACGTCTCGATTTACCGACGACTGAAATCGCAACGTTCGAATTGCCGCCATCCGAATCGAGTCTTCCCGCTAAAAAGCTGACAACGCTCCCGGTGCTGCCGGCCGGTAGCTTTTCCCATGTGGAAACGTTGCGCCTGGGATCGTTGGATGTTCCTGCCGCGCAGGCACGCAGCTTCTTTAGAGCGTTCACCGGTACGCGGACATTGGATATCAGCGGCAACGGCTTCAGCGAATTGCCTTTTGCCGCCGAAGACTTGCCAGTCTTGAAACAACTCGACCTGCGCGATAACAACCTGCTCGCCACGCCTGCGGTCCAGGCGCAGTTCAACGGCTTGCAGACACTTGAACAACTGAACCTGGAGAACAATCCCCTCAATGTCTTTGATGTCAGTGCCTTGACCCAACTCAGGGCCTTGAACCTCCGGTCAACCCGGCTGCAAGCTTGGCCAACCGGTGCCGAGAGCTTGCCGAACCTGTCCTGGCTCGACTTGCGGGACAACCAGATCCAATCGCTCCCACCCGCGGCGCTGGCCAGTGACGACGTCCTGCTGAAGGTCGATGTGACCGGTAACCCCTTCAATCCCGAAGGCGAGGCGGCGCTGGGCGCGGCACAACGACGGCTCGAGGATGCGAGAGGGCTTCCCCATGGCGCTTTGGCTCGATTCTCCGGGGGGACTGTACCGTCCGAGTTCCCGCCGACAGAAACGAGTTGGTCCACGGCTCGACATCTATTGGCGCTCCCCGAGGCGTCGGCAGTGGTCGAGGGCGATGCTGGGCGGCAGCTTCGCCTGAGGCGGCTGGATCCGCTCCTGACACAGCGACAGTCGGTCCTGGTGCTGGAGCGATGGCGTGAACAGGGCATGACCGACGGGCAAATCGACAGTCAGATCAACCAGTGGCACCAGGCGTATATTTCGCTGACGCGTCGATTGAATGGCTGGCTTTTTATCCGGGAAATACGCGTAGCCAGGGGCTCCGTGTCCGCGCAAAGCCGCGCCCTTGCGGCGGGGAGCATTCGCGAGGCGTGGCAAAGAGAATTGATGCGTTACGGTGGCCCAGGGCAGACACTCAGCCTGCATGGCCTGCAGCTAGGCGACTTGCCTGAGCTGGTCGATTCGATTCCTGGGGTGACGATGCTGGATCTTTCAGGCGTCCTGATAACCGAACAAGGTTCAAACGGTTTCCTCGGGGCTTTTCCTCAGCTGAGACACCTGGACCTGGGCAGCAATGAACTGAGCGCCGTACCGGATGCCGTCCTGCAAATGCCGCAATTGGAGCACTTGGGGTTTGGGTACAACAATTTGCCGTCGGGGGCGGCTTACCCATTATTGACCCATGGGCGCCTGCGTTCGCTGAACCTCAGCACCAACGGATTGAGAGCATTCGATCCACCGGACTTTGGTCGGATCGAATCGCTGGATCTCAGTTATAACGAGTTATCAGACTGGCCCAGCCATCTGCTCGATGCGCAAGACCTGAGGGAGCTGAACGTGAGCGGCAACGAGTTCACGGACCTTGCGCCGGACTTGCTCGATGGCAGTCATGAAACACTCGTGGCCGGAATGGACCTGAGTGATAACGAAGACCTGTCGCTTCCCACCCTTCAAGCACTGAGGGGTTACCTGGAAGAAAATAATCACGAAGAAGTCATGGGCCTTTCCCGAGAAGAACTCGATGAATGGATCGCCGGATTGGAAGCGCCGCGAGGGAATGTTTCTGATTTTGATGACGACTCGGATGGCGGTGGAGGCGGCAACTTCCATCAGGATCCTCATGCCGTCTTCCCTGAGGCCGAGCCTGTTTTCGATCCGGCAGGCGATACGTCGGCGCAGGCGCTGGAGCAATGGTTGGTCGGCTCCAGCGATGATCAGATGACGGCTCGGAAGAAAATCTGGACGCAACTGGCCGAGGAAAGCGACCACGAACGGTTCTTCCAGTTGCTCGCCCATTTGCGTAACACCATCGATTTCAGGCGTAGCCGCGCGGCACTGACGCAACGGGTGTGGAACGTCCTGGAAGCGGCCAGCGAAAACGGCGAACTGCGCCAGTTGCTGTTTCAGAGCGCCGAAACCCACGGCACCTGCATCGACGGACGCATCTTGACGTTCAGCGAGCTGGAGGTTCGTGTGTTTGTCTATCAAGCGTTGCGCGACATTCCTCTCGGCAGCCTGGAGCGCAGGGGGCGGGCGCTGCTGCGCTTGTCCCGTCAGCTGTTTCGGCTGGACCGGGTCGATACGTTGGCCGAAGCGAACGGGCAAGGCATGGACCGGGCAGAGGTCCGCCTGCGTTATCGCATTGGCCTGACGAGAGATTGGGGCGATGGAATCGATTTGCCAGGACAGCCTGAACACATGGCCTATGGTGTGCCGGTCACCGAAGCGCAACTGGAGCAGGTGCGCGACTCGGTACTTGAGGCGGAGCAGGGCGATGAACTGCTCAAGGACATGTTGTCGCGTGAATACTGGACGAGCTACCTCCGGGAGCGTTACCCAGAACAAATGCGCGAAATAGATGATGCGACCTACCAGCGGCGCGAGGATCTTCTGAACGAACTGGAGGACCGTCGCGACGAAGGTGATATCGATGCGCACGAGTATGGCCGGCAATTGAATGCCAAGAGCAAGGAAATCGACGATCTTGAAAGGCAAACGTTGGTCGAGCTGACCCGAAAAGAGATGGGCGTATTGGAGGGCGTCGCCGAAGAGTCGGAGCCACCGCGCAGCGGCTCGCCTCAGCCCGGACCCTCACGCCGTAACTGA	MPPNSTRNPKKKPQPGSRATESVHADFLETAMPAWLIEASTQRRQALKQAGTQKPAWYTNASPDQRKVVDACFKESAAARIHLDKTMSSFQDIDTFAKPLLVQALKDQFGVEADVDKTWLCLRRAMEMGLFKTELSTFEVLALPMLQAALHNFESWECDPHAYHHSSGFVMKAGTHGTGSSVVLNVSVGQFLKLCRSLDIGTKYQTYLKSFFYPADAATETTLREHFIANQKAAMRAAAEQALLAKDIEPKDHAMILSVINRENNPRIGNTPVWFEDMTLMKQRMVGCVAFTPCEIDRYSDEVILYVPHDPKHPLKRYNGDQLKTRFKQLLTTPDTARPDTGPTPYQRFFSQFVPYDKRPYFFSQFVREAAGSPRDKLRWIAEPMNDWAVILGPVRHLVSVNEFPPKHPKMEREPNPYIAPSSVGQKGRVAWADNLDPWQYLYDRYRDQVLADARSHAVPTNDVDAKARAAKLASLLQLGLFAVNIASMFVPVLGEVMMVFMAEQLLYETLEGAVEWGEGDKRAAKAHLVDIAENLAMMAVMAGAGAGIGKLAAIKAEPVIERLEPVTLPNGETRLWKPDLSRYEREVTLDSTNVPNALGQYQIDGKTYIRQGDKVYEQFFDASVHKWRIRHPTDDAAYQPILLHNGAGAWRHSLERPMTWDRLTLLRRIGHETAVFSDDVLLRLADISGVSDNTLRKMHMDLAPPPPELKDAMRLFKTDAEAGRVIGQPQDATESVTRSQVFDRLYKGTEAADARIRTLQLECPGLSEAAAQEVIAHGRAADLARLDATRRAPLNLLEEARWYARQGRQVRAYAGLRSENIPSADSRRLALRALEKLPGWPDTLRLEVREGGVEGALLDSIGAEDAPQKKYLIKNGPRYQALNELGQLPDTGGNFYRSILRALPEEASSALGLSDVEQGAVLQRKVIEYADVHHKAMTSFLEPHAKRFKPPIRVSATLKGYYASGRGQGLDPSLRARVEELYPGAEQADAFFRQQQGKTDRQIYSLLQIRQREWLSLNDTLDLWRGPSTGSPADFHRRQFVQALRESWRNGPLAQDSAEAARLSLSTEVPPPEMPLDFPHVRELSLVGNGLTEANADAFLARFPGVTRLSIGGRERQYIGSLFAQAQHLTTLPQAVNQMPGLTSLRFSTAASSLAEDFPATLTRLTSLETLHLDYSGFDAAVIGDLDLTPLNRLRSLTIEAPQALTQWPEYVQRLPLLERLDLVRTSIHTLPDWIYEGREALWPGMSLNWSALTPASFARAYRYVRDYAGELGHLTDVDQMVDGYCRGQLRLLIGEAEFYGRLPERFDSTLHTHQARFDAVEAIRAEHDEIFAQYEVTGPQTSTPSMPSTLWWRGGGPLFRALRDSWRRAVRQRLDLPTTEIATFELPPSESSLPAKKLTTLPVLPAGSFSHVETLRLGSLDVPAAQARSFFRAFTGTRTLDISGNGFSELPFAAEDLPVLKQLDLRDNNLLATPAVQAQFNGLQTLEQLNLENNPLNVFDVSALTQLRALNLRSTRLQAWPTGAESLPNLSWLDLRDNQIQSLPPAALASDDVLLKVDVTGNPFNPEGEAALGAAQRRLEDARGLPHGALARFSGGTVPSEFPPTETSWSTARHLLALPEASAVVEGDAGRQLRLRRLDPLLTQRQSVLVLERWREQGMTDGQIDSQINQWHQAYISLTRRLNGWLFIREIRVARGSVSAQSRALAAGSIREAWQRELMRYGGPGQTLSLHGLQLGDLPELVDSIPGVTMLDLSGVLITEQGSNGFLGAFPQLRHLDLGSNELSAVPDAVLQMPQLEHLGFGYNNLPSGAAYPLLTHGRLRSLNLSTNGLRAFDPPDFGRIESLDLSYNELSDWPSHLLDAQDLRELNVSGNEFTDLAPDLLDGSHETLVAGMDLSDNEDLSLPTLQALRGYLEENNHEEVMGLSREELDEWIAGLEAPRGNVSDFDDDSDGGGGGNFHQDPHAVFPEAEPVFDPAGDTSAQALEQWLVGSSDDQMTARKKIWTQLAEESDHERFFQLLAHLRNTIDFRRSRAALTQRVWNVLEAASENGELRQLLFQSAETHGTCIDGRILTFSELEVRVFVYQALRDIPLGSLERRGRALLRLSRQLFRLDRVDTLAEANGQGMDRAEVRLRYRIGLTRDWGDGIDLPGQPEHMAYGVPVTEAQLEQVRDSVLEAEQGDELLKDMLSREYWTSYLRERYPEQMREIDDATYQRREDLLNELEDRRDEGDIDAHEYGRQLNAKSKEIDDLERQTLVELTRKEMGVLEGVAEESEPPRSGSPQPGPSRRN				NA	NA	NA	NA	NA
D1-36_03068	219			hypothetical protein	ATGGACGATCCAGTCGACAACAAGCCGCCCACCCTGTTGCAGATGATGCACAGCGTGCTCGCCGCGGCTTTTGGTGTGCAGAGCGGCAAGAATCGCGCCCGGGATTTCACCCACGGAAAACCAAGCCACTTCGTGATACTGGGGATCGCTTTCACGGTGATCTTCGCCTTGACATTGTTTGGCATCGTCAAGCTGGTGGTGCATCTGGCGGGGTTGTAG	MDDPVDNKPPTLLQMMHSVLAAAFGVQSGKNRARDFTHGKPSHFVILGIAFTVIFALTLFGIVKLVVHLAGL				NA	NA	NA	NA	NA
D1-36_03069	114			hypothetical protein	ATGAGCAATTCGACCAAAGCAAGGAAAAGCGACAGTACCGTTGATGCCTGGGCCATTCTGTTCCTGATTATCCTGGTGGTGGGCACGGCGGTGTTCTGGGTCAGTCATCAATAA	MSNSTKARKSDSTVDAWAILFLIILVVGTAVFWVSHQ				NA	NA	NA	NA	NA
D1-36_03070	1749	sir_2	COG0155	Sulfite reductase [ferredoxin]	GTGCGCGCAGAATTGCCGAGGCAGAACCCGATTCCAGCGAGCCAAGACGCAGCTGTTTCTGATCGGCCCAAGCCTGAGACCGAGACTTATATGTACGTATATGACGAGTACGATCAGCGGATCATCGAGGACCGCGTCAAGCAGTTCCGTGATCAGACCCGACGCTATCTGGCAGGCGAGCTGAGCGAAGAAGAATTCCGCCCTCTGCGCTTGCAGAATGGCCTGTATATCCAGCGCTTCGCCCCGATGCTGCGCGTGGCCGTGCCTTATGGCCAACTGACCTCGCGCCAGGTGCGCAAGCTGGCGCAGATTGCCCGCGACTACGACAAGGGCTACGCCCACATCAGTACCCGGCAGAACGTCCAGTACAACTGGCCGGCGCTGGAAGACGTGCCTGAGATCCTCGCCGAACTGGCCACCGTGCAGATGCACGCGATCCAGACGAGCGGCAACTGCCTGCGCAACGTCACCACCGACCAGTTTGCCGGCGTCGCGGCCGATGAGCTGATCGACCCACGTCCATGGTGCGAAATCGTCCGTCAATGGACCACGTTCCACCCGGAATTCGCCTACCTGCCGCGTAAGTTCAAGATCGCCATTAACGGCTCGAGCTCGGACCGCGCGGCCATCGAAGTCCATGACATCGGCCTGGAAACGGTCTACAACGCCGCCGGCGAGCTGGGCTTCCGTGTACTGGTGGGTGGTGGCCTGGGCCGTACGCCGGTGGTCGGTGCGTTCATCAACGAGTTCCTGCCATGGCAGGACCTGCTGAGCTACCTCGACGCCATCCTGCGGGTATACAACCGCTACGGCCGTCGCGACAACAAGTACAAGGCGCGGATCAAGATCCTGGTCAAGGCCCTGACGCCTGAAGTGTTCGCCGAAAAGGTCGAGGCCGAAATGGTCCACCTGCGCGGCGGCCAGACCACCCTGACCGAAGCCGAAGTCCACCGTGTCGCCAAGCACTTCGTCGACCCGGACTACAAGGCCCTGGGCAACCAGGATGCGGAACTCGCCGCCCTCGACAAGGAGCATCCAGGTTTCGCCCGCTGGCGTACCCGCAACACGCTGGCTCACAAGAAGCCCGGCTATGTCGCGGTGACCCTGTCGCTGAAACCGACCGGCGTGGCGCCAGGCGATATCACCGACAAGCAACTGGACGCCGTCGCCGACCTGGCCGATCGCTACAGTTTCGGCCAACTGCGTACCTCCCACGAGCAGAACATCATCCTGGCCGATGTTGAACAGAGCCAGTTGTTCACCCTGTGGGGCGAGCTGCGCGAACAAGGTTTCGCCACCCCGAACATCGGCCTGCTGACCGACATGATCTGCTGCCCGGGCGGTGATTTCTGCTCCCTGGCAAACGCCAAGTCGATCCCGATCGCCGAATCGATCCAGCGCCGCTTCGACGACCTGGACTACCTGTTCGATATCGGTGAGCTGGACCTGAACATTTCCGGTTGCATGAACGCCTGTGGTCACCACCACGTTGGCCACATCGGCATCCTGGGCGTGGACAAGAAAGGCGAAGAGTTCTACCAGGTCTCCCTCGGTGGCAGCGGCAGCCGCGATGCCAGCCTGGGCAAGATCCTCGGGCCATCGTTTGCCCAGGACGACATGCCGGATGTGATCGAGAAACTGATCGACGTGTACATTGAACAACGTACCGAAGACGAGCGTTTCATCGACACTTATCAACGTATCGGCATCGACCTCTTCAAGGAACGCGTCTATGCAGCGAATCATTAA	MRAELPRQNPIPASQDAAVSDRPKPETETYMYVYDEYDQRIIEDRVKQFRDQTRRYLAGELSEEEFRPLRLQNGLYIQRFAPMLRVAVPYGQLTSRQVRKLAQIARDYDKGYAHISTRQNVQYNWPALEDVPEILAELATVQMHAIQTSGNCLRNVTTDQFAGVAADELIDPRPWCEIVRQWTTFHPEFAYLPRKFKIAINGSSSDRAAIEVHDIGLETVYNAAGELGFRVLVGGGLGRTPVVGAFINEFLPWQDLLSYLDAILRVYNRYGRRDNKYKARIKILVKALTPEVFAEKVEAEMVHLRGGQTTLTEAEVHRVAKHFVDPDYKALGNQDAELAALDKEHPGFARWRTRNTLAHKKPGYVAVTLSLKPTGVAPGDITDKQLDAVADLADRYSFGQLRTSHEQNIILADVEQSQLFTLWGELREQGFATPNIGLLTDMICCPGGDFCSLANAKSIPIAESIQRRFDDLDYLFDIGELDLNISGCMNACGHHHVGHIGILGVDKKGEEFYQVSLGGSGSRDASLGKILGPSFAQDDMPDVIEKLIDVYIEQRTEDERFIDTYQRIGIDLFKERVYAANH	PGPT0002790_1882	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002790-cysI-K00381	NA	NA
D1-36_03071	495			hypothetical protein	ATGCAGCGAATCATTAAGAACAACGAAGTCATCGACGAGACCTGGCACCTGCTGCCCAAGGACGCGACCCTCGATGGCATTTCCAATTGCGACGACCTGATCGTGCCCCTGGCCCTGTGGCGCGATCACGCCCACGCCCTCAAGGCCCGCGATGGCGGCCTGGGTGTGTGGCTGGACGCCGACGAGGAAGCCGAGGAAATCGGAGATGACGCCAATCAGCTCCAGGTCATCGCCCTGAACTTCCCGGCCTTCACCGACGGGCGCAGCTACTCCAACGCCCGTCTGTTGCGTGAACGCTACGGCTTCAAGGGTGAACTGCGGGCCATTGGCGACGTGTTGCGCGACCAGTTGTTCTACATGCGCCGCTGCGGTTTCGACGCCTTTGCCCTTCGCGCCGATAAAGATCCGTACGAAGCCCTCGAAAGCCTCAAGGACTTCTCGGTGACTTATCAGGCGGCCAGTGACGAACCGCTGCCGCTGTTTCGTCGTCGCTGA	MQRIIKNNEVIDETWHLLPKDATLDGISNCDDLIVPLALWRDHAHALKARDGGLGVWLDADEEAEEIGDDANQLQVIALNFPAFTDGRSYSNARLLRERYGFKGELRAIGDVLRDQLFYMRRCGFDAFALRADKDPYEALESLKDFSVTYQAASDEPLPLFRRR	PGPT0002785_226	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002785-cysH-K00390	NA	NA
D1-36_03072	1032	sohB	COG0616	putative protease SohB	GTGGAGTTTTTCGTCGAATACGCCGGTTTCCTGGCCAAGACGGTCACACTGGTCATCGCCATCCTGGTGGTCATGGCCAGTTTCGCTGCGCTGCGCAGCAAGGGGCGGCGCAAGTCGGTGGGGCAGCTGCAGGTCAGCAAGCTCAACGATTTCTACAAAGCGTTGCGCGAGCGCCTGGAGCAGACGCTGCTGGACAAGGAGCAGCTCAAGGCCCTGCGCAAGAGCGAAGGCAAGGCTGAAAAGGCCGAAAAAAAGCAGAAGGACAAACCGGCTGCCAAGCCTCGGGTCTTCGTGCTGGATTTCGACGGTGACATCAAGGCCTCCGCCACCGAAAGCCTGCGCCATGAAATCACCGCCCTCCTGACCCTGGCGACGCCCAAGGACGAGGTCGTGCTGCGCCTGGAAAGCGGCGGCGGCATGGTCCACAGCTACGGCCTGGCCTCGTCGCAGCTGGCGCGGATCCGCCAAGCCGGCGTACCGTTGACGGTGTGCATCGACAAGGTGGCGGCCAGCGGCGGTTACATGATGGCGTGCATCGGCGAGAAGATCATCAGCGCCCCGTTTGCGATTCTCGGTTCCATCGGCGTCGTGGCGCAGTTGCCCAACGTCAATCGCCTGCTGAAGAAACACGACATCGATTTCGAAGTGCTGACCGCCGGCGAATACAAGCGAACGTTGACGGTGTTTGGCGAGAACACGGAGAAGGGCCGGGAAAAATTCCAGGAAGACCTGGACATTACCCATGCGCTGTTCAAGAACTTTGTCGCCACGTACCGCCCGCAACTGGCGATCGATGACGTTGCCACAGGTGAAGTGTGGTTGGGTGTCGCGGCGCTGGAAAAGCGCTTGGTGGACGAGCTGAAAACCAGCGACGAGTACCTGGCCGAAAGGGCCAAGGGTGCCGAGCTGTACCATCTGCACTATGCCGAACGCAAAAGCCTGCAGGAACGCATCGGCATGGCGGCAAGCGGTTCGGTGGATCGTGTGCTGCTCAGTTGGTGGAGCCGCCTGACCCAGCAGCGGTTTTGGTAA	MEFFVEYAGFLAKTVTLVIAILVVMASFAALRSKGRRKSVGQLQVSKLNDFYKALRERLEQTLLDKEQLKALRKSEGKAEKAEKKQKDKPAAKPRVFVLDFDGDIKASATESLRHEITALLTLATPKDEVVLRLESGGGMVHSYGLASSQLARIRQAGVPLTVCIDKVAASGGYMMACIGEKIISAPFAILGSIGVVAQLPNVNRLLKKHDIDFEVLTAGEYKRTLTVFGENTEKGREKFQEDLDITHALFKNFVATYRPQLAIDDVATGEVWLGVAALEKRLVDELKTSDEYLAERAKGAELYHLHYAERKSLQERIGMAASGSVDRVLLSWWSRLTQQRFW				NA	NA	NA	NA	NA
D1-36_03073	711			hypothetical protein	GTGGGCAGCATTTATCTGATTCGACATGGCCAGGCCTCCTTTGGTGCGGACGACTACGATGTCCTCTCGCCCAACGGCATACGCCAGGCGCAAGTGCTGGGCAGCCACCTGGCGCAGCTCGGTGTCGTGTTCGATCGCTGCCTCTCGGGCGACCTGCGTCGCCAACAGGACACCGCCACTGGCGCGCTGGGCCAGATGAGCGCAGCCGGCCTGCCGGTTCCGGAACTGGAAATCGACGCCGCCTTCAACGAATTCGATGCCGACGCGGTCATTCGCGCCCTGCTCCCGGACATGCTCTCCCAGGAGCCCGAGGCCCTCGACATTTTGCGCAACGCCGCGCAGAACCGCGCCGAGTTCCAGCGCATCTTCGCCTTGATCGTCGAGCGCTGGCTCAGCGGCCGCTACGACCCGCCGGGACTGGAGAGCTGGCTGGGTTTCGTCGAACGGGTCCAGGCTGGCCTGCACCGCATCCTCGACAATGCCGACAAGACGCACAAGATCGCCGTGTTCACCTCCGGCGGGACCATCACCGCCCTGCTCCACCTGATTACCCAGATGCCCGCCAGGCAGGCCTTCGAGTTGAACTGGCAGATCGTCAACACCTCGCTCAACCAACTGAAATTCAGGGGCCGCGAGGTGGCCCTGGCTTCCTTCAACAGTCATGCGCACCTGCAACTGCTGAAGATCCCGGACCTCATCACCTTCCGCTGA	MGSIYLIRHGQASFGADDYDVLSPNGIRQAQVLGSHLAQLGVVFDRCLSGDLRRQQDTATGALGQMSAAGLPVPELEIDAAFNEFDADAVIRALLPDMLSQEPEALDILRNAAQNRAEFQRIFALIVERWLSGRYDPPGLESWLGFVERVQAGLHRILDNADKTHKIAVFTSGGTITALLHLITQMPARQAFELNWQIVNTSLNQLKFRGREVALASFNSHAHLQLLKIPDLITFR				NA	NA	NA	NA	NA
D1-36_03074	318			hypothetical protein	ATGACCTCCGTAGCCGACGCCGTAAAAGCCATGCAAGCCAAGTTCAACCCAGCCGCCGCTGCCGGCCTGGACCTGGTATTCGGTTTCAACATCACCGACGAAGACAAGCAGTACGCCCTGATCGTGAAGGACGGCACCTGCGACATCCAGGAAGGCGAGAATCCAGACGCCAACTGCACGCTGGTCCTGGATAGTCAGACCCTCAAGGACATCGTCAGCGGCGAAACCGACGGCATGCAAGCATTCATGGGCGGCAAGCTGCGCGTTGAAGGCGACATGATGCTGTCGATGAAACTGTCCGAGCTGTTCCCGTCCTGA	MTSVADAVKAMQAKFNPAAAAGLDLVFGFNITDEDKQYALIVKDGTCDIQEGENPDANCTLVLDSQTLKDIVSGETDGMQAFMGGKLRVEGDMMLSMKLSELFPS				NA	NA	NA	NA	NA
D1-36_03075	864	hdfR_5		HTH-type transcriptional regulator HdfR	ATGGACATCGACCTCGCTCGCACTTTCCTGGAAATCGTCCGCCACGGCAGCCTCGCCGCCGCGGCAGAGAAACTGCACGTCACCCAGACGGCGATCACCGCCCGGGTCCAGAAGCTCGAAAGCCAACTTGGCTGCGGGTTGTTCGTGCGCAATCGGGCCGGCGCGCGACTGACCAGTGATGGCGAAGCCTTCGTGGTCTATGCCAACCAGCTCGTCCAGACGTGGGAGGCCGCCCGCCGTGACCTGCCGCTGCCAGAGGGCTATCGCAACGTCTTGCACCTGGGCGGCGAAGTCAGCCTGTGCAACCCCTTGATGCTCGCCTGGGCCGGCGAGCTGCGACAGAAGATTTCCGGCCATGCCCTGCGCATGGACATCCGCGACGGCGAAAACCTGCTGCAGCAACTGGAGCTGGGCCTGCTGGACGCGGCGGTGGTGTATCAGCCCGAGTACTGGCCGCGGCTCCAGGTTGAGCAGTTGCTGGAAGAAAAACTGATCCTGGTGCGCCTGGCCGCTCGCCCCGAACCTTACGTGTACATCGACTGGAGTGCCGATTTCCGTCGCCAGCACGACACGGCGCTGCCGGACAAGGCCAAGGCCGCGGTGACCTTCAATCTCGGGCCCCTGGCGTTGCAGTACATCTTGGAAAACGGCGGCAGCGGTTATTTCCGCACTCGGGTCGTGCAGAGCTACCTGGACAGCGGCATTCTGGAGCGAGTGCCCAAGGCGCCGGAATTCAATTACCCGACCTACCTGGTATATTCAAGGGACCGGGATTCGGCCGCGTTGCAGCAGGCGTTCGACGTGCTGCGGGACATCGTCAAGACTGGCAGCGACTGGTCCCAGCGCTGGGATCCGCTGGGATAA	MDIDLARTFLEIVRHGSLAAAAEKLHVTQTAITARVQKLESQLGCGLFVRNRAGARLTSDGEAFVVYANQLVQTWEAARRDLPLPEGYRNVLHLGGEVSLCNPLMLAWAGELRQKISGHALRMDIRDGENLLQQLELGLLDAAVVYQPEYWPRLQVEQLLEEKLILVRLAARPEPYVYIDWSADFRRQHDTALPDKAKAAVTFNLGPLALQYILENGGSGYFRTRVVQSYLDSGILERVPKAPEFNYPTYLVYSRDRDSAALQQAFDVLRDIVKTGSDWSQRWDPLG	PGPT0015580_268	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLUM_CONTROL	MOTILITY-FLAGELLUM_REGULATION,PGPT0015580-hdfR-K23773	NA	NA
D1-36_03076	234			hypothetical protein	ATGCCGGTGTCCCATGATCTCTGCCAGGATCTGAAGTGCACAGAGGACGACATTCAGAAAAAACGCGAAAAGGACAAGGATCTCGACGCGCTGATCACTCGATATGCGAAAATCGATACAAAAGTCGTGAAGGCTGAAAAACCCACCGCCGTAGTGACCGACGACGACCTGGATAAGCTCAAGAAAGAACGGTTGCGGATCAAGGACGACATCGCCGCGCTGATGCAAAAGTAG	MPVSHDLCQDLKCTEDDIQKKREKDKDLDALITRYAKIDTKVVKAEKPTAVVTDDDLDKLKKERLRIKDDIAALMQK				NA	NA	NA	NA	NA
D1-36_03077	522			hypothetical protein	ATGGACAGATTTACCCTGCGTCAACTCGGCCTGGCTGTTGCCCTGAGTAGCAGCATGGGCATGGCATGGGCCGCGACTTCCAGCGACTTTGTCGACAACGCGGCGGCCGGCGGCATTGCGGAGATCGAAACCGGCAAACTGGCGCTGCAGAAAAGCCAATCGGCGGACATCAAGGAGTTCGCCAACAAAATGATTGCCGACCACACCAAAGCCAACGAAGAGCTGAAGGCGCTGGCGAAAAAACATGACATCGAAGTACCAGACGACACCACGTTGATGAAAAAGGCCAAGGCCAAGATTCTTGACGTGCGCGATGAGTCCTTCGATCCGGCCTATGCAAATAACCAAGTGATGGCTCACGAAGAGACCGTCGCCCTGTTCAAGAAGGAGGCTGAGACCGTCACTGACGATAAGAAGCCTGGCAGTACCGAACTGAAGGCATTTGCCCAGAAAATGCTGCCGGACCTGCAGCATCACCTGGAAATGGCGAAGAAGCTTCAAGCGGCCCACCCTAGTAAATAA	MDRFTLRQLGLAVALSSSMGMAWAATSSDFVDNAAAGGIAEIETGKLALQKSQSADIKEFANKMIADHTKANEELKALAKKHDIEVPDDTTLMKKAKAKILDVRDESFDPAYANNQVMAHEETVALFKKEAETVTDDKKPGSTELKAFAQKMLPDLQHHLEMAKKLQAAHPSK				NA	NA	NA	NA	NA
D1-36_03078	267			hypothetical protein	ATGAGCGACTCTGCAAATACTCAGCAACAAGGCCAGACGCAAACCCCGGCCTCGCGTAACGATCCGGCAATCGATCCTCAAGTGACGGATAACCAGCCTGCCAATCCGGCTGAAACACACGAGGCTCACAGTGCTGCCCGTGAGGTCGATCAGAAGAAAAATCATCAGGACAACGACAACACCTACAGCCCCGGTTTCAAGCCGGAACCGGATCGGCCTGGACCCGGTGACAAGACTGACGCTGATATCGACACAGCCGACAGCTGA	MSDSANTQQQGQTQTPASRNDPAIDPQVTDNQPANPAETHEAHSAAREVDQKKNHQDNDNTYSPGFKPEPDRPGPGDKTDADIDTADS				NA	NA	NA	NA	NA
D1-36_03079	2112	rcsC_18		Sensor histidine kinase RcsC	ATGAAGTTCTTATCCCAAAGTAACGGGTGTCCCGGTTGGGACGGAGAAATGGCCCGGCGCATCCGGGCCTACGATTGGCGTCGCACGGAGCTGGGTGCGATCGAGCACTGGTCCGCCAGCCTGCGCAGCGCGGTCCAACTGATGCTCGCTTCACCATTGCCGATGGTCATGCTGTGGGGCCGCCAGGGCTACATGATCTATAACGACGCCTATGCCGAATTCGCCGGCGGCCGCCATCCCTACCTGCTGGGGAGCGCGGTGGAGCTGGGATGGCCGGAGGTGGCCGAATTCAACCGCCACGTATTGGACGTGTGCCTGGGCGGCGGCACCTTGTCCTACCGCAACAAGGAGCTGGTGCTGCTGCGCGACGGCAAGCCCGAAGACGTCTGGTTGGATCTCTACTACAGCCCGGTCCCCGACGATGACCATTCGCCTGCCGGCGTGTTGGCGATTGTCGTGGAAACCACCGAGCTGGTGCTGAGCGAGCGGGCCCGGCAAGAGGCCGAGCGCAGCTACCGTGCGGTCAATGAGCGTATCCAATTGGCGCTTTCGGCCGGGCCGTTGCTGGGGTCGTTCGTCTGGGATATCGCCACCGACACGCTGTCTGGCGATGAACGTTTCGCCCGTACTTTCGGTTATCCGCCCGAGTGCCCGCTGGATGCACTGCCCATCCAGATCGCTCGCCAGCGCATCCATCCCGACGACATCGACGACGTCGAACAACGGGTCGACCTGACCGTGCGCACGGGCGCTCCCTACACCGCCGAATATCGCTTGCGCCGTGGCGAGGGCGATTACCTTTGGGTGCTGGCCAGCGGGCGATGCGAGTTCGATGCGTTGGGCAAGCCCCTGCGGTTTCCCGGCGTACTGATCGATATCAACGAGCGCAAGACCGCCGAAGCGTCGCTGCTCAAGTTCACCCGCGACCTGGAACAACGCGTCGCCAGTGAAGTGCAGGCGCGGTTGGCGGCCGAGGAGCAATTGCGTCAATCGCAGAAACTCGAGGCCATCGGCGGACTCACGGGAGGCGTGGCCCATGACTTCAACAACCTGCTCCAGGTGATCGCCGGCAACCTGCACTTGCTGGCTCGCCACGAGCCTGACAATCCCAACGTCCAGCGGCGGGTCGGTGCATCCATCGAAGCCGTGGAGCGGGGCGCCAAGCTGTCGTCGCAGTTGCTGGCTTTCGCCCGTCGCCAGCCGTTGTCACCGGCGGTCTACAACCCTCGGCGCATCTATGAAGGCCTGGGTGAATTGTTGCAGCGGGCCCTGGGCGAAACCATCCGCATCGAGGTGGCGTTGCCTCCTGAGCCTTGGTGTATCCACGTCGATTGCAATCAGCTGGAAAACGCCCTGTTGAACCTGGCGATCAATGCCCGCGACGCCATGGGGGGCGAAGGTGTCATCAGAATGCTCGGGGAAAATATCGTCCTGGACGAATCGTCCTGTGCCGGCAAAGGAGTTGCGGCAGGGGATTACGTGCGACTGTCGGTGATCGATCATGGCGCGGGTATGGCGCCCGAAGTCCTGAACCAGGTCTTCGAGCCGTTTTTCACCACCAAGACCGACGGCCAAGGCACGGGGCTTGGATTGAGCATGGTGTTCGGGTTCGTCAAGCAGAGCGGCGGGCACATCGAAATTGCCAGCCACCCGGGCGAAGGCACTCAGGTGCATATGTATTTTCCCCGCAGCCACAAGCCCGAGTCCCCGGAACAGGCACCTCCCCGCGAGCTTCGATCCGGCCTGGAGGAAACCATCCTGGTGGTCGAGGACAACGACGACGTACGCGGCGCCTCGGTGGAGTTGTTGGAGCAGCTCGGCTATCGGACCCTGACCGCCGCCAACGGCGACGAGGCCATGAAATTGTTGCTCGATGGCGTCTCGGTGGACCTGATCTTCACCGATGTGGTCATGCCCGGCCTGATCAAGAGCTCCGACCTGGCGGCCTGGGCGAAGGTACAGACCCCGCCGGTGCCGGTCCTGTTCACGTCGGGACACACCCGGGACATCATCTCGCGCAATCACCAACTGAGCCCCGATACCCACCTGCTGAGCAAACCCTACAACCCGGATGCATTGGCGCGGATGGTCAGTTCGGCACTGGACGAGTGA	MKFLSQSNGCPGWDGEMARRIRAYDWRRTELGAIEHWSASLRSAVQLMLASPLPMVMLWGRQGYMIYNDAYAEFAGGRHPYLLGSAVELGWPEVAEFNRHVLDVCLGGGTLSYRNKELVLLRDGKPEDVWLDLYYSPVPDDDHSPAGVLAIVVETTELVLSERARQEAERSYRAVNERIQLALSAGPLLGSFVWDIATDTLSGDERFARTFGYPPECPLDALPIQIARQRIHPDDIDDVEQRVDLTVRTGAPYTAEYRLRRGEGDYLWVLASGRCEFDALGKPLRFPGVLIDINERKTAEASLLKFTRDLEQRVASEVQARLAAEEQLRQSQKLEAIGGLTGGVAHDFNNLLQVIAGNLHLLARHEPDNPNVQRRVGASIEAVERGAKLSSQLLAFARRQPLSPAVYNPRRIYEGLGELLQRALGETIRIEVALPPEPWCIHVDCNQLENALLNLAINARDAMGGEGVIRMLGENIVLDESSCAGKGVAAGDYVRLSVIDHGAGMAPEVLNQVFEPFFTTKTDGQGTGLGLSMVFGFVKQSGGHIEIASHPGEGTQVHMYFPRSHKPESPEQAPPRELRSGLEETILVVEDNDDVRGASVELLEQLGYRTLTAANGDEAMKLLLDGVSVDLIFTDVVMPGLIKSSDLAAWAKVQTPPVPVLFTSGHTRDIISRNHQLSPDTHLLSKPYNPDALARMVSSALDE				NA	NA	NA	NA	NA
D1-36_03080	3078	dnaE2		Error-prone DNA polymerase	ATGAGCGTCGAATATGCCGAGCTGCATTGCCTGTCGAACTTCAGCTTCCAGCGCGGCGCCTCCAGCGCCCTGGAATTGTGCCGTCGCGCCAAACAGCAGGGCTATCGGGCCCTGGCGGTGACGGATGAATGTACCTTGGCCGGCATCGTCCGGGCCTGGCAGGCAGCCAAGGAACTGGACTTGCAATTGATCGTCGGCAGCGAAATCCAGGTCGAGAACGGTCCGAAGCTGGTGCTGTTGGTGGAAAACCTCGAGGGCTACCAAACCTTGTGCCGGCTGATCACCCGCGCACGGCGGCGCAGCGAAAAGGGCCGTTATCGCATCGTCCGAGAAGACTTCGACGAGCCGCTGCCAGGGCTGCTCGCCCTGTGGGTCCCCGATGGCAAGACGCCCGAGGCGCAAGGGCGCTGGCTCCGACAGGTGTTCAACGAAAGACTCTGGCTGTCCGTGCAGTTGCATTGCGGTCAAGACGACCAGCGACGGCTCGCGGACTTGCTCGCATTGGCCGAACGCCTGGGTCTTCCTGCCGTCGCCACGGGCGACGTGCATATGCATGTGCGGGGTCGCCGCGCCTTGCAAGACACCATGACCGCCATTCGCCACCACGTCACCGTTGCCGAGGCCGGTCAGCGTCTGCACCCCAACGGCGAACGCCACTTGCGCAGCCTCCAGGCCCTGGCCGATCTCTACCCCCGCGCCTTGCTCGATGAAACCCTGGACATCGCCCGGCGCTGCACGTTCGACCTCGGTCAGTTGCGCTATGAATACCCCCGCGAGCTCGTGCCCGAGGGCCATGATCCGGCGTCCTGGCTGCGGGAACTGACCGCGCGCGGCATGCGCGAGCGCTGGAAGAACGGCGTCACAGAAAAGGTGCGCGTGCAGATCGACAAGGAATTGGAGTTGATTGCCGAACTGGGCTACGACAGCTACTTCCTCACCGTGCAGGACATCGTCAGTTTCGCCCGTAGCCGTCACATTCTCTGCCAGGGCCGGGGCTCGGCGGCCAACTCGGCGGTGTGCTACGCCCTGGGCATCACCGAAATCGACCCGGCACAGACGGACATGTTGTTCGAACGCTTCCTGTCCCGCGAGCGCAATGAGCCACCGGACATCGACGTCGATTTCGAACACGAACGTCGCGAGGAAGTCCTGCAGTACGTGTTCCAGCGCTACGGCCGGCATCGCGCGGCGTTGACGGCCGTGGTCAGCAGCTATCACGGCGCCGGGGCGGTACGCGACGTGGCCAAGGCCCTGGGCCTGCCGCCGGACCAGGTCAATGCACTGGCCGACTGCTGCGGGCGCTGGAGCGATGAGGCACCGCCGCTGGAACGTTTGCGCGAGGGTGGTTTCGACCCGGAGAGCCCGGTGCTGCGTCGGGTGTTGAGCCTGACCCAGCAACTGATCGGCTTCCCCCGGCACCTGTCCCAACACCCCGGCGGCTTCGTGATTTCCCAGCAACCCTTGGACACCCTGGTGCCGGTCGAGAACGCCGCGATGGCCGAGCGCACCATCATCCAGTGGGACAAGGACGACCTCGATGCGGTCGGGCTGCTCAAGGTGGACATCCTGGCCCTGGGCATGCTCAGCGCGATTCGTCGCTGTTTCGACTTGATCGCGCATTACCGGGGCGTGCGTCATACCCTCGCGTCGTTGCCCAAGGATGATCGGGCCACGTTCGAGATGATCAGCCGCGCCGACACCATCGGCGTGTTCCAGATCGAATCCCGGGCGCAGATGGCGATGTTGCCCAGGCTCAAGCCCAAGGAATACTACGATCTGGTGATCGAGGTGGCGATCGTGCGACCGGGACCCATCCAGGGCGGGATGGTGCATCCCTACCTGCGGCGGCGCAATGGAGAAGAGAAGATCACTTATCCATCGTCGGAATTGAAAGAGGTGCTGGGCCGCACCCTGGGCATTCCGCTGTTCCAGGAACAGGTCATGCAGATCGCCATTGTCGCCGCTGGCTACAGCCCGGGCGAAGCGGACCAGTTACGTCGTTCCATGGCCGCCTGGAAGCGCCACGGCGGGCTCGAACCGCACAAGAAAAGATTGGCCGACGGGATGGCGGCCAAAGGGTACAAACCTGAATACGCCGCGCAGCTCTTCGAACAGATCAAGGGCTTCGGCAATTACGGCTTTCCTGAATCCCATGCCGCCAGTTTCGCCTTGCTGACCTACGCCAGCAGTTGGCTCAAATGCCACGAGCCGGCGGCGTTCGCCTGTGCCCTGATCAACAGCTGGCCCATGGGTTTCTACAGCCCGGACCAGATCCTCCAGCATGCTCGCCGGCATCAGTTGCAGATCCGTCCGGTGGACGTGCGGGCCAGCGACTGGGAATGCAGCCTGGAACCGATGGAAGGCCGCCAGCCGGCGATTCGCATGGGCTTGCGTCTGATCAAGGGGTTTAGAGAGGACGATGCCCGGCGTATCGAGGTGGCACGCGGGCAGCGGGCTTTCAGCGATGTGGCCGACCTGGGCGAACGGGCTCGACTCGACGCCCGGGCCCTGGAGCAACTGGCGGACGCCAACGCTTTGCGCGGCCTGGCCGGCGACCGCCATCGCGCCCGTTGGGAAATTGCCGGAGTGGAAAAACAACTGGGCTTGTTCGCGGGTCTGCCCAGCCCGGAAGAGCCCACCGTGGCCTTGCCGACACCCACGGTGGGGGAAAACCTGTTCGCCGACTACGCCACCCTGGGCACGACGCTGGGGCCTCATCCGCTGGCCTTGCTGCGTTCCGAATTGCGCGCCCGACGCTGCCGCAGCTCCCGGGAATTGCAGGCTGTCGAGCATGGCCGCCACGTCAGCGTCGCGGGGCTGGTCACTGGTCGCCAACGTCCAGGCACGGCCAGCGGGGTGACCTTTGTCACTCTGGAAGATGAGTTCGGCAATCTCAACGTAGTGGTCTGGCGCGACTTGGCCGAACGCCAGCGCAAGGTCCTGGTAGGGTCGCAATTGCTCAGGGTGGACGGGCGCTGGGAAAGTGTCGGCGAGGTCCGTCATCTGATTGCCGGGCGCCTGAGCGATTTGAGCGGTTTGCTGGCGGGCATCAATGTGCGCAGCCGGGATTTTCGCTGA	MSVEYAELHCLSNFSFQRGASSALELCRRAKQQGYRALAVTDECTLAGIVRAWQAAKELDLQLIVGSEIQVENGPKLVLLVENLEGYQTLCRLITRARRRSEKGRYRIVREDFDEPLPGLLALWVPDGKTPEAQGRWLRQVFNERLWLSVQLHCGQDDQRRLADLLALAERLGLPAVATGDVHMHVRGRRALQDTMTAIRHHVTVAEAGQRLHPNGERHLRSLQALADLYPRALLDETLDIARRCTFDLGQLRYEYPRELVPEGHDPASWLRELTARGMRERWKNGVTEKVRVQIDKELELIAELGYDSYFLTVQDIVSFARSRHILCQGRGSAANSAVCYALGITEIDPAQTDMLFERFLSRERNEPPDIDVDFEHERREEVLQYVFQRYGRHRAALTAVVSSYHGAGAVRDVAKALGLPPDQVNALADCCGRWSDEAPPLERLREGGFDPESPVLRRVLSLTQQLIGFPRHLSQHPGGFVISQQPLDTLVPVENAAMAERTIIQWDKDDLDAVGLLKVDILALGMLSAIRRCFDLIAHYRGVRHTLASLPKDDRATFEMISRADTIGVFQIESRAQMAMLPRLKPKEYYDLVIEVAIVRPGPIQGGMVHPYLRRRNGEEKITYPSSELKEVLGRTLGIPLFQEQVMQIAIVAAGYSPGEADQLRRSMAAWKRHGGLEPHKKRLADGMAAKGYKPEYAAQLFEQIKGFGNYGFPESHAASFALLTYASSWLKCHEPAAFACALINSWPMGFYSPDQILQHARRHQLQIRPVDVRASDWECSLEPMEGRQPAIRMGLRLIKGFREDDARRIEVARGQRAFSDVADLGERARLDARALEQLADANALRGLAGDRHRARWEIAGVEKQLGLFAGLPSPEEPTVALPTPTVGENLFADYATLGTTLGPHPLALLRSELRARRCRSSRELQAVEHGRHVSVAGLVTGRQRPGTASGVTFVTLEDEFGNLNVVVWRDLAERQRKVLVGSQLLRVDGRWESVGEVRHLIAGRLSDLSGLLAGINVRSRDFR				NA	NA	NA	NA	NA
D1-36_03081	1422	imuB		Protein ImuB	ATGCGCTGGGTCTGTATTCTCTTCCCGCAATTGGCGCTGGATGCCGCGCTGCGCCAGCGCCCCGACCCCAGCGAGCCCCTGGCGCTGCTGACCGGCCCGGCCCAGCGCCGGGTGCTGCAAGCGGTCAATGAACCGGCGCGCGCCCTGGGCCTGCGCCCCGGCCAGACCATGACCGCGGCCCAGGCCTTGAGCAAAGGGTTCGCCACCGCCGAGTACGACGCGGCGCAGATCGAAAACTGGCAACGATTCCTGGCGGCCTGGGCCTATCGTTTCAGCTCCCAGGTGAGCGTGCATTATCCACGCACGGTGCTGTTCGAAATCGAGTCGAGCCTGGGGCTGTTCGGGCCATGGCCGGTGTTCGAGGCGCGGTTGCGGGCCGAATTGACTGAGCTGGGTTTTCGGCATCGCATCGTCGCCGCCCCCAATCCCGTGGCGGCGCGGATGCTGGCCAATGCTTACGACGCCCTGGTCGTGCCCGATAACGAGACCTTGCAAGCGTACCTGGGACAGATGCCAGTGGACCGAGTCGGCCTGGCGCCCGAAGCTGCCACGGCCTTGTCGCGCATGGGCCTGCGCCGGCTCAGCCAAGTCCAGGCCTTGCCCCGGCACACCCTGGCGCGGCGCTTCGAAGCCGACATGCTCAAGCACCTCGATGCGCTGGTGGGCAGCCGCACCCTGGCGCTGTCGTTCTACCTGCCCCCGGACCGTTTCGATGTGCGCATCGAACTCAACTACGACGTGCAGTCCCACCAGGCATTGCTGTTTCCTCTGCGACGTTTGACCGGTGACCTGTCGGCCTACCTGTGCGGCCGCGACAGCGGCGTGCAGCGTTTTGATTTGCACCTGGAACACGCCGGTTTGCCGGACACGGTGATCAAGGTCGGCCTGCTCAGCGCCGAGCGGGATGCTTCGATGCTGTTCGAGCTGGCCCGTGGCCGTCTCGAGCAGGTGCAGGTCGAGGCGCCCGTGCGCGGTTTTCGCTTGTGTGCCGAAGACCTGCCGAGCTTCGTGCCCCAGCGCCTGGAATTGTTCGACGAGCGTCCCCAGCAGTCCTTGCCGTGGGAACAACTGCGCGAACGGCTGCGGGCGCGCCTCGGTGATGAAGCCGTGCAAGGGTTGGGATTTGGCGACGACCACCGCCCCGAGTGCGCCTGGCAGATGAAACCCCAGCCGCAACAACAGATGTGTCCGCTGCGCGATGATGTCCAGCGTCCCGGCTGGCTGCTTGGCGAGCCCCAGGTCTTGCCTGAAGGCCAGGCGCGAATCCTCATGGGCCCGGAGCGCATCGAGTCCGGCTGGTGGGACGGCGCCGATGTGCGCCGTGATTACTACCTGATCGAGACCCGCGCCGGCCAACGCGGCTGGGCCTATCGACCGGTGGGCGAGGGCGGACCGTTGTGGCTGCAAGGTTGGTTCGCATGA	MRWVCILFPQLALDAALRQRPDPSEPLALLTGPAQRRVLQAVNEPARALGLRPGQTMTAAQALSKGFATAEYDAAQIENWQRFLAAWAYRFSSQVSVHYPRTVLFEIESSLGLFGPWPVFEARLRAELTELGFRHRIVAAPNPVAARMLANAYDALVVPDNETLQAYLGQMPVDRVGLAPEAATALSRMGLRRLSQVQALPRHTLARRFEADMLKHLDALVGSRTLALSFYLPPDRFDVRIELNYDVQSHQALLFPLRRLTGDLSAYLCGRDSGVQRFDLHLEHAGLPDTVIKVGLLSAERDASMLFELARGRLEQVQVEAPVRGFRLCAEDLPSFVPQRLELFDERPQQSLPWEQLRERLRARLGDEAVQGLGFGDDHRPECAWQMKPQPQQQMCPLRDDVQRPGWLLGEPQVLPEGQARILMGPERIESGWWDGADVRRDYYLIETRAGQRGWAYRPVGEGGPLWLQGWFA				NA	NA	NA	NA	NA
D1-36_03082	624			hypothetical protein	ATGGGCGCCGTCGTTGCGCTGGACACGCTGTTCAATGGCGGCCAGGTCTGGAAGGGCCGGCCTGCGCCGCCGGCCGCCAGTCCACAGCCCACCGGCCACGCCGTACTGGATGCGGCACTGCCCAGTGGTGGCTGGCCGGAAGCGGCGTTGACGGAAATTCTCATCGGCGCGCCGGGCGTGGGCGAATTGCAACTGGTGTGGCCGACCCTGGCGCGGCTATCGGCGGCGGGGGAGCGGATCGTGTTGGTGGCGCCGCCGTTCGTGCCCTATCCCCAGGCCTGGCGAAACGCCGGGGTGGACTTGCGCCAGTTGTCGATCATCCAGGCCGATCCACGGGAGGCCTTATGGGCCACCGAACAATGTCTGCGCTCGGGCAGTTGCGGCGCGGTGTTGTGCTGGCCGCGCCAGGCGGATGACCGGGCCTTGCGCCGTTTGCAGGTCGCGGCGGAAACCGGCCAGACGCTGGCGTTCGCCTGGCGCTCGATCCAGGAAGCCATCAACCCGTCCCCGGCGGCCCTGCGCATCGCCATCGATTCCCGGCCCGCACAATTGCGGGTGCTCAAGTCCCGGGGCGGGCTGGCGCGTTCGGCGCCGATTGCGTTCCCCCCACAGACAGGGCATTGA	MGAVVALDTLFNGGQVWKGRPAPPAASPQPTGHAVLDAALPSGGWPEAALTEILIGAPGVGELQLVWPTLARLSAAGERIVLVAPPFVPYPQAWRNAGVDLRQLSIIQADPREALWATEQCLRSGSCGAVLCWPRQADDRALRRLQVAAETGQTLAFAWRSIQEAINPSPAALRIAIDSRPAQLRVLKSRGGLARSAPIAFPPQTGH				NA	NA	NA	NA	NA
D1-36_03083	618	lexA_1		LexA repressor	ATGTACTCCATGACGACTCTCACTCCCCGCCGTACCGCCATCCTGACCTTTATCCGCGAACGCATCGCCGAACAGGGCCAGCCTCCCAGCCTCGCTGAAATCAGCGAGGCGTTTGGTTTCGCCTCTCGCAGCGTGGCGCGCAAGCATGTGTTGGCGCTCACCGAAGCCGGTTTCATCGAAGTCAATCCGCACCAGGCCCGGGGCATCCGGCTGTTGAATCAGCCGCCGCGTCCCGAACTGTTGGATGTGCCGGTGTTGGGACGGGTGGCCGCCGGCCTGCCGATCGGTGCCGATGCCGAGGTCCACAGCCGTCTGTTGCTGGACCCGGCGATCTTCACCAAAGCGCCGGACTACCTGCTGCGGGTCCAGGGCGATTCGATGATCGAGGACGGTATCCTCGACGGCGATCTGGTGGGTGTGCAACGCACGCCCCAGGCTTCCAACGGGCAGATTGTCGTGGCGCGCCTGGACGGTGAAGTGACCATCAAGCGTTTTGAGCGAGTCGGCGAGCGCGTACGCCTGTTGCCACGCAACCCAGCCTATCAGCCGATCATCGTCGAAGCCGACCAGGACCTGGCGATAGAAGGCGTGTTCTGTGGCCTGGTGAGACAAGGCTGA	MYSMTTLTPRRTAILTFIRERIAEQGQPPSLAEISEAFGFASRSVARKHVLALTEAGFIEVNPHQARGIRLLNQPPRPELLDVPVLGRVAAGLPIGADAEVHSRLLLDPAIFTKAPDYLLRVQGDSMIEDGILDGDLVGVQRTPQASNGQIVVARLDGEVTIKRFERVGERVRLLPRNPAYQPIIVEADQDLAIEGVFCGLVRQG	PGPT0014895_3090	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014895-lexA-K01356	NA	NA
D1-36_03084	273			hypothetical protein	ATGAGCCCGCTGGCGATTGGCAATTCACGGGAGAAGGGGCTGTTGCGCCTGAGTTGGCCTGATGGGCGCGAACAACAGTTGGACCATGCCGAGCTGCGCCGGCAATGCCCATGCTCGCGGTGTCGAGCGTTTCGCCTGCAAGGCGTGGCGGTGCAGGTTGATTCGCGGGTCCGGGTGGTTGGGGTCAATAGCCAGGGTTATGGGGTGCAGTTGGTCTTTAGCGATGGCCACGAGCGGGGGATTTTTCCCTGGGCTTATCTGGCGGGTCTGTAG	MSPLAIGNSREKGLLRLSWPDGREQQLDHAELRRQCPCSRCRAFRLQGVAVQVDSRVRVVGVNSQGYGVQLVFSDGHERGIFPWAYLAGL				NA	NA	NA	NA	NA
D1-36_03085	963			hypothetical protein	ATGACCTCTCTATTTGAAAATACCGACAACCAAGACATTCTCGCCCTGCAACCGCGTCTTACCGACGAGGACGCCGGTGTGCGCCGCATCGCCCTTATCGAACTGGCCGACCTTGAAGAGCCCGAAGGCCTGTTGTGGCTTGTGGATCGCCTGGCCAGTGACCCCAGCGCCGAGGTGCGCGCCGAAGCCGCGCGATTGCTCGAAGCCTGGGAGGACGAGCCGGTGGTCGCAGGCTTGTGCGAAGCCCTGACCGATCGATCACCGACGGTGCAGGCCGCTGCTGCCCAAAGCTTGAGCCTGCTCAAGAGCGAGGCGGCAGGAAGAGTGATCCTGCCTTGGACGACACATGCCGACGCCGGTGTCCGCGTCGCGGCCTTCCGGGCCTTGCGCGAGTTGCGCCTGGGCGATGCCGCGCCAGCATCCATCGCCGCCCTGGCCGATGACGATGCTGGCGTGCGCCGCGAAGCGGTTGGCGTGCTGGGCTGGCTCAAGCACCTCGGCGCCTTGCCAGCCTTGGCCCGGCTCGCCAGTGATGACCCGGACAGCGAAGTACGCCGCGCGGCCACCGGTGCCCTTGGCCTGGCTTCGGATGAGCAAGTGTTGCCAGCCCTGCGCCAGGCCTTGCGGGACCCGGCGTGGGCGGTTCGCGAAGAAGCCGCTACAACGCTGGGCAAGGTCGGTCACGCCGATGCCGGCCCGGCCCTGATCGATGCCTTGGCGGACGACTACTGGCAAGTGCGCTTGCGGGCGACCCGCAGCCTGGGTCGTTTGCGCTACGCCCCGGCCCTGGCGGCATTGATCGAAACCCTGGGCCACCGCATCAGCAATCTGCGCAAGGAGGCAGCACTGGCCTTGGGCGAGTTGAACGATCCTGCTGCCATTGCGGCGTTGCAGGCCGCCCAGGAGGATGGCGATCCGGAGGTACGCAAGGCTGTGCGCATTGCCTTGGGCCAACTGCAATGA	MTSLFENTDNQDILALQPRLTDEDAGVRRIALIELADLEEPEGLLWLVDRLASDPSAEVRAEAARLLEAWEDEPVVAGLCEALTDRSPTVQAAAAQSLSLLKSEAAGRVILPWTTHADAGVRVAAFRALRELRLGDAAPASIAALADDDAGVRREAVGVLGWLKHLGALPALARLASDDPDSEVRRAATGALGLASDEQVLPALRQALRDPAWAVREEAATTLGKVGHADAGPALIDALADDYWQVRLRATRSLGRLRYAPALAALIETLGHRISNLRKEAALALGELNDPAAIAALQAAQEDGDPEVRKAVRIALGQLQ				NA	NA	NA	NA	NA
D1-36_03086	849	nrtD_2	COG1116	Nitrate import ATP-binding protein NrtD	ATGAGTGCAATGCAAACGCCTGAAGGGCGGATCGACATCCGCCAGTTGTCCATTGTCCTGGGCCAGGGTGCCCAGGCCTTCGAAGCGGTGCAGGGGCTCGATTGCCAGATCGAGGCGGGCCAGTTCGTCTGCATCCTGGGGCCGTCCGGTTGCGGCAAATCGACCTTGCTCGGTGCCCTTGCCGGGCATCTGCAACCGAGCACCGGTACGCTGAACGTCGACGCGGTGCCGGTGGCCGGTCCCTCGCCTCAGCGCGGCATGGTGTTCCAGCAGCACACTTTGTTTCCATGGCGCAGCGTGCGCGACAACGTTGCTTTTGGCCTGAAGATGCGTGGCCTGGGCAAAGTCGAACGACAACGAGCCGCCGATGAGATGCTCGCCTCGGTGGGCCTGGAGGGTTTTGCCGGGCACTGGCCGGACCAGCTCTCCGGTGGCATGCAGCAGCGAGTGGAGATCGCACGGGTGCTGGTGAACCGCCCGCGCTTGTTGCTGATGGATGAACCCTTCGGCGCGCTGGATGCACTGACGCGCTTGAACATGCAGGAGTTGTTGCTGGACATCTGGACGCGCATCCGCACCACCGTTGTGTTCGTCACCCACGACATCGACGAGGCGCTATTCCTGGCCGATCGCTTGCTGGTGATGAGCCCACGGCCGGGTCGCATCATCGAGGATCTGCGCCTGGATTTTCCTCGGCCACGCACGACTGAGCTGGTGACGAGCCCTGAATTCTCCCGATTGAAGCGCCACTGCCTTGAGCTGCTGCGTCATGAAGATGGCCAGCAATTGCCGCGCCTCAATCCCCTCGGGTTGCCCCCTGAAACCTCCTTGCCGCGATTTGCCCTATGA	MSAMQTPEGRIDIRQLSIVLGQGAQAFEAVQGLDCQIEAGQFVCILGPSGCGKSTLLGALAGHLQPSTGTLNVDAVPVAGPSPQRGMVFQQHTLFPWRSVRDNVAFGLKMRGLGKVERQRAADEMLASVGLEGFAGHWPDQLSGGMQQRVEIARVLVNRPRLLLMDEPFGALDALTRLNMQELLLDIWTRIRTTVVFVTHDIDEALFLADRLLVMSPRPGRIIEDLRLDFPRPRTTELVTSPEFSRLKRHCLELLRHEDGQQLPRLNPLGLPPETSLPRFAL	PGPT0001140_1506	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-RELATED_FUNCTIONS	N-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049	NA	NA
D1-36_03087	783	ssuC_2	COG0600	Putative aliphatic sulfonates transport permease protein SsuC	GTGTACCCATCACCCAAACGCTGGCTCCTGCGAGCCGCTTCACTGCTGCTCTGCCTGCTGTTCTGGCAGCTCGCCGCCGACGGTCATTGGGACCTCGGCCTGGTGACCTTCGCCAACGTCCCGGCCCCATTGGCGGTACTCCAGGCCGCGCTTGGCCAGGGGGAATCGGGCAATCTTGCGCGGCACCTGGGCAGCAGCCTGGGGCGGGTCTTTGCCGGGTACGGTGCGGCGCTGCTGATTGGCGTGGCGCTGGGCGTGGCCATCGGTCGTTCGAAATGGGCCGAAGACTTGCTGTTGCCGCCACTGGAAGTCCTGCGGCCGATCCCGGCGGTGGCCTGGATTCCGTTGGCGATTCTGATGTTCCCGTCGTCGGAATTGTCGATGGTGTTCATCACCTTCACCGGCGCGCTGTTCCCGATCCTGCTCAACACCGTGCACGGCGTCGAAGGGGTGGACCGGCGGCTGGTCGCGTCAGCGAAAAGCCTCGGGGCGGGACGCCGGGCCATCCTGCTGGAAGTGATTCTGCCGGGCGCCGCGCCGAGCATCATCACTGGCCTCGCCATCGGCATGGGCACGTCCTGGTTCTGCCTGGTGACGGCGGAAATGATCGCCGGCCAGTACGGCATCGGCTACTACACCTGGGCGTCCTACACCGTGCAGAACTACCCCGACATCGTGGTCGGCATGTTGCTGATCGGCGTGCTGGGGATGGGCAGTAGTTTGTTGATCAAGCGCCTGGGCGGGTTGTTCACGCCTTGGCACCGGCCCCGAGGAAAAGCCTGA	MYPSPKRWLLRAASLLLCLLFWQLAADGHWDLGLVTFANVPAPLAVLQAALGQGESGNLARHLGSSLGRVFAGYGAALLIGVALGVAIGRSKWAEDLLLPPLEVLRPIPAVAWIPLAILMFPSSELSMVFITFTGALFPILLNTVHGVEGVDRRLVASAKSLGAGRRAILLEVILPGAAPSIITGLAIGMGTSWFCLVTAEMIAGQYGIGYYTWASYTVQNYPDIVVGMLLIGVLGMGSSLLIKRLGGLFTPWHRPRGKA	PGPT0001145_6448	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-RELATED_FUNCTIONS	N-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050	NA	NA
D1-36_03088	1407			hypothetical protein	ATGTTATTGCGTGCAGCATTGGCCGGTCTGGTACTGGCTTCATTGACCCTGCCTGCCCAGGCAGAAACCATCCGCATCGCCATCGGCACCCAGGACACCACCATCAACTGCGCCGCCGGTGGGTTGTTGATTCGGGAGTTGGGCCTGTTGGACAAATACCTGCCCCACGACGGCGCGTACAAGGATGCCCAATACGACATCCAGTGGAAAAACTTCACCAGCGGCGCGCCACTGACCAACGAGATGGTGGCGGGCAAGCTCGACTTCGGCGCCATGGCCGATTTTCCCGGCGCCTTCAATGGCGTGGCGTTCGAAACCGCTGGCAAGCACAGCCTGTTCATCAGCGTGTTGTCGGGCAGCACCCAGGGCAGCGGCAATGGCATCGTCGTGCCGAGCGCCTCGGGCGTTCAATCCCTGGCCGAGCTCAAGGGCAAGACCATTTCCGTGCCCTTTGCCTCCACCGCCCACGGCATGCTACTGCGCGCCGTCGCGGCCCAAGGCTGGGATCCACTCAAGGATGTGAACATCATCGCCCAGCCACCGGAGGTCGCCGGCTCGGCGTTGCAGGCCGGTAAGATCGACGCCCACGCTGATTTCGTGCCGTTCGCCGAACTGTTCCCCAGCCGTGGTTTTGCCCGCAAGATCTACGATGGCGCCCAGGCCAAGACGCCAACATTCCATGGCGCCCTGGTGGACCAGGCCTATGCCAGGAAGTACCCGGAAATCGTCGTCGCCTACCTGCGTGCATCCATCGAAGCCAACCAGCTGCTGGCCGCCGAGCCTGAGAAGTACAGCGAGCTGATCGCCAAGGTCACCGGCGTGGATGCCGAGGTCAATTATCTGTTCCACGGGCCGCTGGGCGTGCAGACCCGCGACCTGACCTGGAAACCGGAATACCGCCAGGCCGTGGGCACCGCCATCGACACCCTTAAGCTGCTGAAGAAAGCCGATCGCGGGCTGGACCTCAACACCTTCATCGATGACCAGTACATCCGCGCCGCCTTCAAGGCTTCGTACCTGGATTACACCGCGCAACTGGCCAACTACGCCCAGACCCCGCTGGGCAGCGCCGATACTGCGACCGGCCAGGCCATCACCGATGCCCGCCACGTGGCCGAAATCTGGGTACGCGGCGAGCCGAAAGTGCGCCATTACGCCTCCGCGCAGTCAGCCTTCACCGCGCTGGCGAGCCTCAAGCAGGAAGGCAAGGGTATCCGAGCCGTCTACGCACAGGCCAGCGACAGCGGGATCAAGCTGCTGGCCGAGCAGGCGTGGTTCGCCAGCGATGCCAAGGGCCAGCTCAGCGCGTTCCTGTTGAAAGGGCAGGCCGAGCAGTTTGCCGCGCAGCAGGGCGGCAAGGTCCTGGATTTCACCGAGGCGACGACCCAGGCGGTCGCCGCCCGTTGA	MLLRAALAGLVLASLTLPAQAETIRIAIGTQDTTINCAAGGLLIRELGLLDKYLPHDGAYKDAQYDIQWKNFTSGAPLTNEMVAGKLDFGAMADFPGAFNGVAFETAGKHSLFISVLSGSTQGSGNGIVVPSASGVQSLAELKGKTISVPFASTAHGMLLRAVAAQGWDPLKDVNIIAQPPEVAGSALQAGKIDAHADFVPFAELFPSRGFARKIYDGAQAKTPTFHGALVDQAYARKYPEIVVAYLRASIEANQLLAAEPEKYSELIAKVTGVDAEVNYLFHGPLGVQTRDLTWKPEYRQAVGTAIDTLKLLKKADRGLDLNTFIDDQYIRAAFKASYLDYTAQLANYAQTPLGSADTATGQAITDARHVAEIWVRGEPKVRHYASAQSAFTALASLKQEGKGIRAVYAQASDSGIKLLAEQAWFASDAKGQLSAFLLKGQAEQFAAQQGGKVLDFTEATTQAVAAR	PGPT0001135_216	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-RELATED_FUNCTIONS	N-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051	NA	NA
D1-36_03089	246			hypothetical protein	ATGGTCTACCAACCCCAGGAAATCTTCTTCCGCTCCAACGCCCCCGTCACCGTGGACGAGGACAAATGCATCGCCCACAAAGGCTGCACGGTCTGCGTCGATGTCTGCCCCATGGACTTGCTGGCGATCAACCCTGCAACGCAGAAGGCCTACATGGCGTTCGATGAGTGCTGGTATTGCATGCCCTGTGAAAAAGACTGCCCGACGGGGGCGGTGAAAGTCGAGATTCCGTATCTGTTGCGCTGA	MVYQPQEIFFRSNAPVTVDEDKCIAHKGCTVCVDVCPMDLLAINPATQKAYMAFDECWYCMPCEKDCPTGAVKVEIPYLLR	PGPT0002775_151	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002775-aprB-K00395	NA	NA
D1-36_03090	1740	aprA		Adenylylsulfate reductase subunit alpha	ATGACCCAACGCTCAACGAATACCCTCGAACAGGAATACGACATCGTCGTCATCGGTGGTGGTACCGCCGGCCCCATGGCGGCGATCAAGGCCAAGGAACGCAACCGGGACCTGCGCGTCCTGCTGGTGGACAAGGCCAACGTCAAGCGCAGCGGCGCCATCAGCATGGGCATGGACGGCTTGAACAACGCAATTATCCCGGGCCATTCGACGCCTGAGCAGTACACCAAGGAAATCACCATCGCCAACGACGGCATCGTCAACCAGGCGGCGGTGTACGCCTACGCGACGCACAGTTTCGAAACGATCGAGCAACTGGATCGATGGGGCGTGAAGTTCGAGAAGGACGAAACCGGCGACTACGCGGTGAAAAAAGTCCACCACATGGGCGCCTATGTGCTGCCGATGCCGGAAGGGCACGACATCAAGAAAGTCCTGTACCGGCAGTTGAAGCGGGCGCGGGTGAGCATCACCAATCGTCTGGTCTGCACGCGCTTGCTGACTGACCAAGCGGGGGCGGTCAACGGTGTGATGGGCTTCGATTGCCGCACCGCCGACTTCCATGTGATCAAGGCCAAAGCGGTCATCCTCTGCTGCGGCGCCGCGGGACGCCTGGGGTTGCCGGCCTCGGGCTACCTGATGGGCACCTATGAAAACCCGACCAATGCCGGCGACGGCTACGCCATGGCCTATCACGCCGGTGCCGAGCTGGCGAACCTGGAATGCTTCCAGATCAACCCGTTGATAAAGGATTACAACGGCCCGGCGTGCGCCTACGTCACCGGTCCCCTGGGCGGCTACACCGCCAACAACAAGGGCGAGCGCTTTATCGAATGCGACTACTGGAGCGGGCAGATGATGTGGGAGTTCCACCAGGAACTCGAAGGCGGCAATGGCCCGGTGTTCCTCAAGCTCGATCACTTGGCCGAGGAGACCATCCAGAACATCGAAGAGATCCTGCACAGCAACGAACGCCCCAGTCGCGGCCAGTTCCACGCCAACCGTGGCACCGACTACCGCACGCAGATGGTAGAGATGCACATTTCCGAAATCGGTTTTTGCAGCGGTCACTCAGCCTCGGGCGTGTGGGTCAACGAGCGGGCGCAAACCTCGGTCAAGGGGTTGTACTCGGCGGGTGACATGGCGGCGGTGCCGCACAACTACATGCTCGGTGCGTTCACCTACGGCTGGTTTGCCGGCAACAACGCCGCGGATTTTGTGGCGGGGAAGGATTTCTCGGTGCTGGACGTCGGGCAGATCGAACGGGAGAGGACGCGCGTTTACGCGCCACTGGAGCGCGAGCACGGCCTGCCGCCGGCCCAGGTGGAATACAAGCTGCGACGTTTCGTCAACGATTACCTGCAGCCGCCGAAGGTCACGAAAAAAATGCAGATCGGCTTGCAACGCTTCAGCGATATCCAGCGCGACCTGGATCAGATCAAGGCTCACAACGCCCATGAGCTGATGCGTGCCATGGAGGTCAGCGTCATCCGCGACTGCGCCGAAATGGCCGCCCGCGCCTCGCTGTTTCGCGCGGAAAGCCGTTGGGGGCTGTACCACTATCGGGTCGACCACCCGCAGCGCAACGACAGCGACTGGTTCTGCCATTGCCACCTGAAGAAAGGCGAGGAAGGCCAGATGACTTCCTTCAAGAAAGCGGTCGAGCCCTACATCATCGCCCTCGATGCCGACGAGCTGCAGGCCTATGACCGGCTGCGGGTCGGTGCCGACGCGGCTTGA	MTQRSTNTLEQEYDIVVIGGGTAGPMAAIKAKERNRDLRVLLVDKANVKRSGAISMGMDGLNNAIIPGHSTPEQYTKEITIANDGIVNQAAVYAYATHSFETIEQLDRWGVKFEKDETGDYAVKKVHHMGAYVLPMPEGHDIKKVLYRQLKRARVSITNRLVCTRLLTDQAGAVNGVMGFDCRTADFHVIKAKAVILCCGAAGRLGLPASGYLMGTYENPTNAGDGYAMAYHAGAELANLECFQINPLIKDYNGPACAYVTGPLGGYTANNKGERFIECDYWSGQMMWEFHQELEGGNGPVFLKLDHLAEETIQNIEEILHSNERPSRGQFHANRGTDYRTQMVEMHISEIGFCSGHSASGVWVNERAQTSVKGLYSAGDMAAVPHNYMLGAFTYGWFAGNNAADFVAGKDFSVLDVGQIERERTRVYAPLEREHGLPPAQVEYKLRRFVNDYLQPPKVTKKMQIGLQRFSDIQRDLDQIKAHNAHELMRAMEVSVIRDCAEMAARASLFRAESRWGLYHYRVDHPQRNDSDWFCHCHLKKGEEGQMTSFKKAVEPYIIALDADELQAYDRLRVGADAA				NA	NA	NA	NA	NA
D1-36_03091	753	nagR_3	COG2188	HTH-type transcriptional repressor NagR	ATGCCTGACAACGTTCTTTCCCTCAGCAGCGTGCCGCTGCACCTGCAACTGCGCGACCTGTTGCGCACGCGCATTCTCGACGGTGAATACCCCCAAGGCAGCCAGATGCCTTCGGAAAGCGAGCTGGGTGCGTTGTTTCGCGTCAGCCGAATCACCGTGCGCCAGGCCTTGGGGGACCTGCAAAAGGAAGGTCTGATTTTCAAGATCCATGGCAAAGGCACCTTTGTCGCGAAACCCAAGACCTTCCAGAACGTCAGCACCCTCCAGGGCTTGGCCGAGTCCATGACCGGCCGCGGCTTCGAGGTGATCAATCGTCTTCGCAGTTTCAAATTCATTCCCGCCGACAAGCCGGTGGCCGAGCGGTTGAAGGTTGCGGAGGGGGATGTGGTGGCGCAGATCAAACGGGTGCGGCTGATCAACCGCGAACCGGTGTCGTTGGAGATTACCTACCTGCCCAAGGACCTCGGCGAGCGCCTGGAAAAAGCCGATCTGGTTACACGGGACATTTTCCTGATTCTGGAAAACGATTGCGGCCTGGCCCTCGGCCACGCGGACCTTGCCATCGATGCGGTGCTGGCCGACAGCGAGCTGTGCCAAGCCCTGGAGGTCGAGCCAGGGTCGCCCGTGATGCGCATCGAACGCCTGACCCATGGCGCCGATGGGCGACCGCTGGATTTCGAATACCTCTACTACCGCGGCGATGCTTTCCAGTATCGCTTGCGGATCGACCGGCAAAAAGGGACGCAGGCATGA	MPDNVLSLSSVPLHLQLRDLLRTRILDGEYPQGSQMPSESELGALFRVSRITVRQALGDLQKEGLIFKIHGKGTFVAKPKTFQNVSTLQGLAESMTGRGFEVINRLRSFKFIPADKPVAERLKVAEGDVVAQIKRVRLINREPVSLEITYLPKDLGERLEKADLVTRDIFLILENDCGLALGHADLAIDAVLADSELCQALEVEPGSPVMRIERLTHGADGRPLDFEYLYYRGDAFQYRLRIDRQKGTQA				NA	NA	NA	NA	NA
D1-36_03092	885	hdfR_6		HTH-type transcriptional regulator HdfR	ATGTTCGACTGGAATGACTTGCGCTACTTCCTGGAACTGCAACGCAGCGGCCGCTTGCTGACGGCCGCGCGACGGCTCAACACCACCCATGCCACCGTGGCCCGACACATCGAGGCCATCGAAAAAAGCCTGGGCACGGCTTTGTTTGTCCAGCACGCCCAGGGTTATGAACTGACCCCGGCGGGCGAGGCGCTGCTCAAGCATGCCGAGGCCATGGAAAACGTCGCGTTGCTGGCCCAAGAGGACATCACCCAATCCAGCGCACCCTTGGGCAAGATCCGGTTGGGCGTGACGGAAGGGCTGGGCATCATGTTCCTGGCCAGTCGCATGGAGGGGTTGTTCCAGCGCTATCCGGGACTTGAGGTGGAACTGGTGGCGGTGCCGCGCTTCGTCAGCATTCTCAACCGCGAGGCGGAAATCAGTATCCACCTCGAACGACCGGCGGCCGACCTGCTGGTGACACGCAAGCTCACCGACTACAGCCTGGCGCTGTATGCGAGCCAGGCCTACCTGGATCGCTCGCCGCCCTTGCGCAGCCGCGAAGATCTAGGCCGTCACGCCTGGATCGGCTACGTCGACGATCTGTTGTTCAGCCAGGAGCTCATGTTCCTCAACAGTTTTTGCCGCAAGCCCCGGGTGGTGTTCCACAGCACCAGCGTCATCGCCCAGCAGCAAGCCGCGCGATCGGGCCTGGGCATCGCCGTGTTGCCGTGTTACATGGCCGGCAGCGACCCGACGCTGGTGCCCTTGCTCCCGGACGAAACCATCTGTCGCAGCTACTGGATCAGCACCCGCCGCGAACTGCATAAATCCGTGCGGCTGCGGGTGCTGTGGGATTACGTGGTGCAGCTGTGCGAGCAGGAGCAGGGGCTGCTGTTGCCCTGA	MFDWNDLRYFLELQRSGRLLTAARRLNTTHATVARHIEAIEKSLGTALFVQHAQGYELTPAGEALLKHAEAMENVALLAQEDITQSSAPLGKIRLGVTEGLGIMFLASRMEGLFQRYPGLEVELVAVPRFVSILNREAEISIHLERPAADLLVTRKLTDYSLALYASQAYLDRSPPLRSREDLGRHAWIGYVDDLLFSQELMFLNSFCRKPRVVFHSTSVIAQQQAARSGLGIAVLPCYMAGSDPTLVPLLPDETICRSYWISTRRELHKSVRLRVLWDYVVQLCEQEQGLLLP				NA	NA	NA	NA	NA
D1-36_03093	1644	alkJ		Alcohol dehydrogenase [acceptor]	ATGCAACCTGTCGTCGATGAATACGATTACGTGATCGTGGGCGCCGGCCCTGCCGGGTGCTTGCTGGCCAATCGGCTGTCGGCCAACCCGCAACACCGGGTGCTGCTGCTCGAAGCCGGCGGGCGCGACAACTATCCGTGGATTCACATCCCGGTCGGCTACCTGTTCTGCATCGGTAATCCGCGCACCGACTGGTGCTTCAAGACCGAAGCGCAACCGGGCCTGCAGGGCCGCGCCCTGAGCTATCCGCGCGGCAAGGTGTTGGGCGGCTGCTCGTCCATCAACGGCATGATCTACATGCGTGGCCAGGCCGCGGACTACGATGGCTGGGCCGCCGAAGGCAACGCTGGCTGGTCCTGGAAGGACGTCCTGCCGTTGTTCAGGCAAAGCGAAAACCACTTCGCCGGAGACTCCGAACTTCACGGCGCGGCCGGCGAATGGCGCGTCGAGCGCCAGCGCCTGTCATGGCTGATCCTCGACGCCTTTCGCACCGCCGCCGAGCAGAGCGGCATCCCCAACGTCGAGGATTTCAATGGCGGCGACAACGAAGGCTGTGGCTATTTCCAGGTCAACCAGAAAGCCGGGATACGCTGGAACGCGGCCAAGGCTTTCCTCAAGCCGATACGCACTCGCCCCAACCTGACGGTCTTGACCGAAGTCGAAGTCGACCGCGTTTTATTGCGCGATGACCGCGCCCACGCTGTCAGCGCTCGCTGGCAAGGCAAGGCCATGAGCTTCAAGGCTCGCAAGGAAATCGTCCTGTGCGCCGGGGCCGTCGGTTCGCCGGGCATCCTGCAGCGCTCCGGGATCGGCCCGCGCAGCTTGCTGCAACGCTTGGGCATTGGCGTGGCGCACGAGTTGCCGGGCGTGGGCGGCAACTTGCAGGACCATCTGCAACTGCGGCTGATCTATCAACTGGAAAACGCCCGCACCCTGAACCAGATCGCCGGTACGTTGTGGGGCAAGATGGGCATGGGCCTGCGCTACCTGTATGACCGCAGCGGCCCGCTGTCCATGGCGCCCAGCCAACTCGGCGCCTTCGCCCGCTCGGGGCCGGAACAGACTTCGGCCAATCTCGAATACCATGTGCAGCCATTGTCTCTGGAACGCTTCGGCGAACCCTTGCACAGCTTCCCGGCATTCACCGCATCGGTGTGTGACTTGCGCCCGATGAGCCGCGGCCGCGTGGACATCCGCTCAGCCGATCCGAGTGAAGCGCCGTTGATCCAACCCAACTACCTGAGCCACCCCGAAGACCTGCGGGTCGCGGCCGACGCGATCCGCCTGACCCGAAGAATCGTCGCCTCCCCAGCCCTCGGCGCCTTCAAACCAGTGGAATACCTGCCGGGACCCAGCCTGCAGACCGAAGAGGAACTGCACCAGGCCGCCGCCCGCATCGGCACGACGATCTTCCACCCGGTGGGCACCTGTCGCATGGGCCAGGACGGCGACGCCGTGGTGGATGCGCAACTGCGCGTGCACGGCATCAAGGGCCTGCGCATCGCCGACGCCTCGATCATGCCGCGCATCATTTCGGGAAACACTTGCTCGCCGACGTTGATGATCGCCGAGAAGGCAGCGCGGATGATCCTCGAACCCATCACCGTCAGCATCACAAGCCAAAAGGAGCCGGCCACAGTCTGA	MQPVVDEYDYVIVGAGPAGCLLANRLSANPQHRVLLLEAGGRDNYPWIHIPVGYLFCIGNPRTDWCFKTEAQPGLQGRALSYPRGKVLGGCSSINGMIYMRGQAADYDGWAAEGNAGWSWKDVLPLFRQSENHFAGDSELHGAAGEWRVERQRLSWLILDAFRTAAEQSGIPNVEDFNGGDNEGCGYFQVNQKAGIRWNAAKAFLKPIRTRPNLTVLTEVEVDRVLLRDDRAHAVSARWQGKAMSFKARKEIVLCAGAVGSPGILQRSGIGPRSLLQRLGIGVAHELPGVGGNLQDHLQLRLIYQLENARTLNQIAGTLWGKMGMGLRYLYDRSGPLSMAPSQLGAFARSGPEQTSANLEYHVQPLSLERFGEPLHSFPAFTASVCDLRPMSRGRVDIRSADPSEAPLIQPNYLSHPEDLRVAADAIRLTRRIVASPALGAFKPVEYLPGPSLQTEEELHQAAARIGTTIFHPVGTCRMGQDGDAVVDAQLRVHGIKGLRIADASIMPRIISGNTCSPTLMIAEKAARMILEPITVSITSQKEPATV	PGPT0013615_2910	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013615-betA|CHDH-K00108	NA	NA
D1-36_03094	1623	nanT_2		Sialic acid transporter NanT	ATGTCTGAACATGTTCAGCCCCTGGAAGCCACGCGCAGCGCCGGCGCCAGCCAGGAAACCCAGAAAGTCATCTTTGCCTCGTCCCTCGGGACGGTGTTCGAGTGGTACGACTTTTTCCTCTACGGCGCCCTTGCGGCGGTCATCAGCAAACAGTTCTTCGCCGGAGTGAATGACACCACGGCGTTCATTTTCGCGCTGATGGCCTTCGCCGCCGGGTTCATCGTGCGGCCGTTCGGTGCGCTGGTGTTCGGGCGGCTGGGGGACATGATCGGGCGCAAATACACCTTCCTCGCGACCATCGTCCTCATGGGCCTGGCCACGTTCTGCGTCGGCCTGCTCCCCAACTACGCCAGCATCGGCATCGCCGCGCCGGTCATCCTGGTGGTGCTGCGCATGCTCCAGGGCCTGGCCCTGGGTGGTGAATACGGCGGCGCGGCGACCTATGTCGCCGAGCATGCGCCGATGGGCAAGCGTGGGTTCCACACCAGCTGGATTCAGTCCACCGCAACATTGGGGCTGTTGCTGTCGCTGCTGGTGGTACTGGGTTGCCGCTACTTCACCGGCGATCAGTTCGAAGTCTGGGGCTGGCGCATTCCGTTCCTGCTGTCGATCCTGCTGCTGGGCATTTCCACCTGGATCCGCCTGAGCCTGCACGAGTCGCCGGCCTTCCTGAAAATGAAAGAAGAAGGCAAGTGCTGCAAGGCGCCGATTCGCGAATCGTTCGGCAAATGGGAAAACCTGAAAGTGGTGCTGATCGCCCTGTTCAGTATCAACGCCGGGCAAGCGGTCACCTTCTATGCAGCGCAATTCTACGTGCTGTTTTTCCTTACCCAGTTCCTCAAGATGGACCCGGCCCTCGCCAACAGCCTGCTGATCGTCAGCGTGGTGATCGGCGCGCCGTTCTTCATCTTCTTTGGCTGGCTGTCGGACAAGGTCGGGCGCAAACCGGTGCTGATGATCGGCCTGCTGTTGGCGACGGCGCTGTACTTCCCGATCTTCAAGACGCTCGCCCATTACGCCAACCCCGCCATCGACCTGGCGAGCCGTCAGGCGCCGATCACGGTAGTCGCCGACCCGGCCACGTGTACCTTCCAGTTCGACCCGGTGGGCAAGGCCCGTTTCGACAGCCCTTGCGACAAGGTCAAAACCTTCCTGGTCAAGCAAGGCCTGCCCTACAGCAGCGTCGCGGCACCGGCCGGCAGCACCGTGCAGGTCAGCGTCGGAGACGTGAAGCTCGAAGGTTACGACGAAGCCGCCCTGCGTGGCGCGGTGACCCTGGCCGGCTACCCGCAACAAGCCGACGCCCAGCAGATCAATCGGCCGATGATCGTGGCCCTGATCGTCGCGCTGATCATCATTTCGGCGATGTGCTACGGCCCGTTGGCGGCCCTGATGGTCGAACTGTTCCCAACCCGGATCCGCTATACGTCCATGTCCTTGCCCTACCACATCGGCAATGGCTGGTTCGGCGGTTTCCTGCCCACGGTGTCGTTCGCCCTGGTGGTCTATACCGGGGACATTTTCTACGGGCTGTGGTACCCGGTCGTGATTACGGGGGTGAGCCTGGTGGTGGGGATGATCTGCCTGCGGGAAACGCGCAACGTGGACCTGGACACCAACTGA	MSEHVQPLEATRSAGASQETQKVIFASSLGTVFEWYDFFLYGALAAVISKQFFAGVNDTTAFIFALMAFAAGFIVRPFGALVFGRLGDMIGRKYTFLATIVLMGLATFCVGLLPNYASIGIAAPVILVVLRMLQGLALGGEYGGAATYVAEHAPMGKRGFHTSWIQSTATLGLLLSLLVVLGCRYFTGDQFEVWGWRIPFLLSILLLGISTWIRLSLHESPAFLKMKEEGKCCKAPIRESFGKWENLKVVLIALFSINAGQAVTFYAAQFYVLFFLTQFLKMDPALANSLLIVSVVIGAPFFIFFGWLSDKVGRKPVLMIGLLLATALYFPIFKTLAHYANPAIDLASRQAPITVVADPATCTFQFDPVGKARFDSPCDKVKTFLVKQGLPYSSVAAPAGSTVQVSVGDVKLEGYDEAALRGAVTLAGYPQQADAQQINRPMIVALIVALIIISAMCYGPLAALMVELFPTRIRYTSMSLPYHIGNGWFGGFLPTVSFALVVYTGDIFYGLWYPVVITGVSLVVGMICLRETRNVDLDTN				NA	NA	NA	NA	NA
D1-36_03095	408			hypothetical protein	ATGAATTCGATGCCGAAGGGCAACGGACAGGCGAGCACACGTTTGATTCTCGTCGTCGAGGATGATCCGACCATCCTGGAATTCCTCTGCGAGATCCTGGAGGACGAAGGATTTGTCGTCGAGCCCAGGGAAAGCGCCGATTCGGCGCTGACATTTCTGGAGGAAAGCGCCGATTACGTGGACCTGTTACTCACCGACATCACCATGCCCGGCGAAATGGACGGGGCCGACCTGGCCAACCTGACCGGGGATCGTTGGCCGCAGATACCGCTGCTGATCATGTCGGGCTTCGAAACCCCGGAAAGCGCCGGGATCAAGCACCAGGCCTCGTTCATCGCCAAGCCATGGGCGCTGGGGCAGATGCTGGATCTGGTGGAGAGCACGGTCAAGAGCCACTCGGTACACTGA	MNSMPKGNGQASTRLILVVEDDPTILEFLCEILEDEGFVVEPRESADSALTFLEESADYVDLLLTDITMPGEMDGADLANLTGDRWPQIPLLIMSGFETPESAGIKHQASFIAKPWALGQMLDLVESTVKSHSVH				NA	NA	NA	NA	NA
D1-36_03096	1950	topB_2	COG0550	DNA topoisomerase 3	ATGCGGCTGTACCTGTGTGAAAAACCGTCCCAGGCCAAGGACATCGCCGCGGTACTGGGCGCCACCCGGCGCGGCGATGGCTGCTGGCTGGGCGCGAACGTCACGGTGACCTGGTGCATCGGCCATCTATTGGAGACCGCGCCGCCCGACGCCTACGATGCCCGCTACAAGCGCTGGGTGCTGGCCGACCTGCCCATCGTGCCGGCGCAATGGAAGATGACCGTCAAGCCGAAAACCGCCAGCCAGTACAAAGCGGTCAAGCGCCTGTTGGGTGAAGCAAAGGAACTGGTCATCGCCACCGATGCCGACCGCGAGGGCGAAATGATCGCTCGGGAGCTGGTGGAGCATTGCCGCTATCGCGGACCTATCCAGCGCCTCTGGCTATCGGCCCTGGACGAAGCCTCGATCCGCAAGGCCCTCGCCGCCCTCAGGCCGGGAGCGGAAACCTTCAACCTGTATCACTCGGCACTGGGTCGCTCCCGGGCCGACTGGCTGATCGGCATGAACATGAGCCGCCTGTTCACGCTGCTGGGGCGCCAGTCCGGTTATCAAGGCGTCCTGCCGGTGGGCCGCGTGCAGACACCGACCCTGCGACTGGTGGTGGATCGCGACCGCAGCATCGCCAACTTCGTACCGGTCGCCTACTGGGCCATCGACGTGCAACTGAGCCATGCCGGTACGGCGTTTGCCGCCCAGTGGCGCGCCGACCCGGATGCCTGCGACGATCAGGAGCGCTGCCTGAACCAGGCCCTGGCGCGCAATGCTGCCCAGGCCATGGGCAACGCCGCGACCGCGCGGGTGACCAAGGTTCGCACCGAACGCCTGCGCGAGGCCCCGCCGCTGCCGTTCGACCTCGGCACCTTGCAGGAAGTCTGCTCGAAGAAACTTGGACTCGGCGCCCAGGAAACCCTGGACATCGCCCAATCGCTCTACGAGACCTACAAGCTCATCACCTATCCCCGCAGCGATTGCGGTTTCCTGCCCTTGAGCCAGCACAGCGAAGCACCCGCGATCCTGGCCGCCCTCGCCCAGGCCGACCCGGCCCTTGCCCCGCTGCACGATCACCTGCAGCCGCAGCGCAAGTCCCGGGCCTGGAACGACGCCAAGGTCAGCGCACACCACGGAATCATTCCCACGGCAGCGGCGAAGAACCTCGACAAGCTTGCCGCAAAGCAACGGGCCGTCTATACGCTCATTCGCGCACGTTACCTGGCGCAATTCCTGCCCAATCATGAATACGACCGGACCCAGGCCGACTTCGATTGCGCTGGGCAAGACCTGCGCGCGGTGGGCAAGCAGATCGTCGAACTCGGCTGGAAACGCGCCCTGCCCGAAGCATTGGCGCCCGCACGAGGTCGCGAAGCCCCCACGCCGCAAACCTTGCCGCCACTGGCCGAGGGCCGCGATTGCAACGTCGACGCGGTGACACCAAAGGATTTGTGGACCCAACCGCCCAAGCCCTTCACCGAAGGCGACCTGATCAAGGCGATGAAAAACGTCGCCAAGCTGGTGGAGGATCCGCTGCTCAAACAGAAGCTCAAGGACACCACCGGCATCGGCACCGAGGCGACCCGTGCATCGATCATCCAGGGCCTGCTCGACCGTGGTTACCTGGTGAAAAACGGCAAGGCCTTGTCGGCTACCCCAGCCGCCTTCAGCCTGATCGACGCCGTGCCTCGGGCGATCGCCGACCCCGGCACCACCGCCATCTGGGAACAGGCGCTGGACATGGTGCAAAGCGGCGAGATGAGCCTGGAGGAATTCGTCACCCGGCAGGCCGCCTGGATGAGCAAGCACGTCGCCCGCTGCCAGGGGATGAGCTTGAGCATCAGCGGCCCGGCCAGCCCCGCCGGGCGAGGCGCCACGCCGTGGAAGAACAAGCGCAAGCCGGCCAAGCGCAAGGCTGGGGGCGCGCCGCGCAAAACCAAGGCCAAGGCCAAGGCCACCTGA	MRLYLCEKPSQAKDIAAVLGATRRGDGCWLGANVTVTWCIGHLLETAPPDAYDARYKRWVLADLPIVPAQWKMTVKPKTASQYKAVKRLLGEAKELVIATDADREGEMIARELVEHCRYRGPIQRLWLSALDEASIRKALAALRPGAETFNLYHSALGRSRADWLIGMNMSRLFTLLGRQSGYQGVLPVGRVQTPTLRLVVDRDRSIANFVPVAYWAIDVQLSHAGTAFAAQWRADPDACDDQERCLNQALARNAAQAMGNAATARVTKVRTERLREAPPLPFDLGTLQEVCSKKLGLGAQETLDIAQSLYETYKLITYPRSDCGFLPLSQHSEAPAILAALAQADPALAPLHDHLQPQRKSRAWNDAKVSAHHGIIPTAAAKNLDKLAAKQRAVYTLIRARYLAQFLPNHEYDRTQADFDCAGQDLRAVGKQIVELGWKRALPEALAPARGREAPTPQTLPPLAEGRDCNVDAVTPKDLWTQPPKPFTEGDLIKAMKNVAKLVEDPLLKQKLKDTTGIGTEATRASIIQGLLDRGYLVKNGKALSATPAAFSLIDAVPRAIADPGTTAIWEQALDMVQSGEMSLEEFVTRQAAWMSKHVARCQGMSLSISGPASPAGRGATPWKNKRKPAKRKAGGAPRKTKAKAKAT				NA	NA	NA	NA	NA
D1-36_03097	330			hypothetical protein	ATGAATCTGAATAATCAACCATCTATTGATGAACTGGCTCGCATGTTCGCAGCACACAAGGACAGCCTGGACAGCCATATCCTGTGGATCAGCAGGACCGGCCAGGTCCATATGGACTGCCTCTCGCCTTTCACCCAGGAAGACGAATTCGAGAAGAGCCAGGCAGACTTGTGTGCGCGGCTGAAGATGTACCGCCGTGGCCAAGGCTACGTGGGCAAGAAGGCCGCAGCCGACAAGGACTTCATGGGCCGCGTGCTGCAAACGCTGACCCAAACCTGGCAATCGGTGCAGGACACTGCCGAGGTCCGGGTCGTCGACCGCCTCTGCTGA	MNLNNQPSIDELARMFAAHKDSLDSHILWISRTGQVHMDCLSPFTQEDEFEKSQADLCARLKMYRRGQGYVGKKAAADKDFMGRVLQTLTQTWQSVQDTAEVRVVDRLC				NA	NA	NA	NA	NA
D1-36_03098	909	glsA2	COG2066	Glutaminase 2	ATGCAAGCACTGTTGAACGAGATCCTCGATACGGTTCGTCCCCTGATCGGCCAGGGCAAGGTGGCCGACTACATCCCCGCCCTCGGCACCGTGGCGGCCAACCAGTTGGGCATTGCCGTGTACAGCAATGATGGCGAGATATATTGCGCGGGCGACGCCGAGACAGCGTTCTCGGTGCAGAGTATCTCCAAGGTATTCAGCCTGGTTCAGGCCATCGAGCATTCCGGGGAGGCCATCTGGGAACGCTTGGGCCATGAGCCCTCCGGCCAGCCCTTCAACTCCTTGGTGCAACTGGAGTTCGAACGCGGCCGTCCGCGCAACCCGTTCATCAACGCCGGCGCGTTGGTAATCTGTGACATCAACCAGTCACGCTTCGCCGCTCCGGCGCTGTCGATGCGTGATTTTGTACGGAGGCTGTCGGGTAACCCCCAGATATTGGTCGACGGCAAGGTCGCCGAGTCGGAGTACCAGCACCGTGCCCGCAACGCGGCGATGGCCTACCTGATGCAATCGTTCGGCAACTTCCATAACGACGTGGAAGCGGTGCTGCGCAGTTATTTCAGCCACTGCGCGCTGCGAATGAACTGCATCGACCTGGCCCGGGCGTTCTGCTTCCTGGCCAACGACGGTTTCTGCAAGCACAGCGGCGAGCAGATTCTCAGCGCTCGCCAGACCCAGCAAGTCAATTCCATCATGGCCACCAGCGGCCTGTACGACGAGGCGGGCAATTTCGCCTACCGTGTCGGCCTGCCGGGCAAGAGCGGCGTCGGCGGCGGGATCGTCGCGGTGGTGCCAGGACAGTTCACCGTGTGCGTCTGGTCGCCGGAGCTCAACGCGGCCGGCAACTCGCTGGCCGGCATGGCGGCGCTGGAATTGCTTAGCCAAAGGATTGGCTGGTCGGTGTTCTAA	MQALLNEILDTVRPLIGQGKVADYIPALGTVAANQLGIAVYSNDGEIYCAGDAETAFSVQSISKVFSLVQAIEHSGEAIWERLGHEPSGQPFNSLVQLEFERGRPRNPFINAGALVICDINQSRFAAPALSMRDFVRRLSGNPQILVDGKVAESEYQHRARNAAMAYLMQSFGNFHNDVEAVLRSYFSHCALRMNCIDLARAFCFLANDGFCKHSGEQILSARQTQQVNSIMATSGLYDEAGNFAYRVGLPGKSGVGGGIVAVVPGQFTVCVWSPELNAAGNSLAGMAALELLSQRIGWSVF	PGPT0020215_2666	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0020215-glsA-K01425	NA	NA
D1-36_03099	195			hypothetical protein	ATGCGCCAGATCATGCAAAAAGAACCCTGGTGGGCCGCGCCGCCCCAGCCTGGGCAGGATGAAAACGAACTGGAATGGGGCTGGCTGGTGATCTACAGCGAAGGCGAGCCGCGCTTCGAATTTATCAAGGAGCGTCCCACGGACGAACAGATCCGCCATCGCAAGGGCTGTCGCGTCACGCTGGGGTCTGACTAG	MRQIMQKEPWWAAPPQPGQDENELEWGWLVIYSEGEPRFEFIKERPTDEQIRHRKGCRVTLGSD				NA	NA	NA	NA	NA
D1-36_03100	1023			hypothetical protein	ATGGTGCTGCGTTCGCTGATGCTGGTCGTGATGCTCGTTCTGGCGGGGTGCGCCACGTCTCAGCGCGGCCAGCCGGTGGCCACGGTCGCGATTGCCCAGGACACGTGGCGACAGGTTGACCGACAAATCATCGTCGCGTCGAAAAGCGCCCTTGAACAGGCTCAGCTGTATGCGCGTGGCTCAATGGAGCATTGGCGGGTGCTGGTCTACGAGCGCACGGAGGCCGAGTTCATCCCCTGGTTCAGCAGTTACTGGACCCAGGAATGGCTGGCCCTGAAAGTCAGCTGGTATTCGGCCAGCGCCGAGGGCGAGGCGGATTCGGCGGCCAAGCGGCTGTCGGTGTACTTGCAGGCACAATATCGCGAGCAGGTGTTGGAACCCGTGGCGGTGGAAATCGATCCCGAGGCAATCAGGGCCAATGCGACGGGTTATTACTTGCGCCTGCTCAATCAGCAGATCCAGGTGATCGCCCAGCGACATCGCATCCCACCCGAAGTGATGAACCGGCGTCTGCACAGCATCACGGCCATCAACCTGGGCCCGCCAGCGGCACGCAATGCGTCGTTGTACGAAATGGTCCACACCGAACCGCTCAATACACTGCCGGCCTACGCGGCGTTGATCGATCATGTCGACAAGGCGGCAGACACCGGTTCAGGTCCGTCGGACGCGGTGATCGCCACGGTGGCGCAACGCACCAGCGAAAAGATCGAAGCCCAATTCGCCACCCGAGGGGCGGCCGGTGCGGCGGCGGCCGTGGCCGGAAAGGCAGCCGGGGCGCTGATTTCAGTGGGCGTGGCGGGCATCCGAGCGATGATCCACGAGGGCGAACGGGAAGAAATGGAAGGGCACATCCGCAAGAGCCTGAGCGCCGCGTTCGACGAAGCCTGGTTCAAATCTCTCAAGCATCCCCTCAGTGGGGTGATGGCTGCGGTGTATTACCTGGCCGGGGAAATCGATGGCAACCTGGTGGAAGCGGACCTTGCCGATCGGCCGGTGCAACTGCGCGCCATTGCTCCATGA	MVLRSLMLVVMLVLAGCATSQRGQPVATVAIAQDTWRQVDRQIIVASKSALEQAQLYARGSMEHWRVLVYERTEAEFIPWFSSYWTQEWLALKVSWYSASAEGEADSAAKRLSVYLQAQYREQVLEPVAVEIDPEAIRANATGYYLRLLNQQIQVIAQRHRIPPEVMNRRLHSITAINLGPPAARNASLYEMVHTEPLNTLPAYAALIDHVDKAADTGSGPSDAVIATVAQRTSEKIEAQFATRGAAGAAAAVAGKAAGALISVGVAGIRAMIHEGEREEMEGHIRKSLSAAFDEAWFKSLKHPLSGVMAAVYYLAGEIDGNLVEADLADRPVQLRAIAP				NA	NA	NA	NA	NA
D1-36_03101	1407	hss		Homospermidine synthase	ATGAAACATCAGGTTCCGTTCACCGGCCATCTGGTCTTCATCGGCTTCGGCTCCATCGCCCGGGCCACCTTGCCCTTGCTGCTGGGGCAGGAGCACATCGAGGTCCGGCAGATCACTGTTATCGCACCGGTCATCGAGCAGAACATCTGGTTCAAGGAGCGGGGCATCCATTTCGTCCGCGAAGCACTGACCGAGCCGGATTTCGCGCAAATCCTGGATCGCTTCGTCGAGCCGGGTGACTTCATCGTCAACCTGTCGGTAGAAGTCAGCTCCCTGGCAGTCATTGCGTATGCCTTCGACAAAGGTGCTTTTTACCTGGACACCTGCGTCGAGCCATGGGCGGGGGGCTACACCGATCCGCAGTTGGACCACGCGTTGCGCACCAATTACGCGTTGCGCTATCAAGCCCTGAATTTGCGCAAAAAACTGGGCAGGGGCCCGACGGCGATCATTGCCCACGGGGCCAACCCAGGCTTGATTACCCACCTGCTCAAGGCCGGCCTGGTGGAATTGGCCATGCAGCTGAACCATCCGCTGCCCGAGGATCGCCATGGCGTCGATTGGGCCCGGTTATGCATGGAAATGGGCATCAAGGTCATTCATTTCGCCGAACGCGATACGCAACGGTCCCAGCGTCTCAAGGAAGACGATGAGTTCGTCAACACCTGGTCGGTCCACGGCTTTATCAGTGAGGGCACCCAGCCAGCGGAGCTGGGTTGGGGCAGCCATGAGCGTGTCTGGCCGCCATCCGCGCGGCGGCACCGTTTCGGCAGTCGGAACGCGATCTATCTGGAGCGACCGAGCGCCAGCGTGCTGGTAAAGACCTGGACGCCCCTGGGCGGCCCATGCCTGGGGATGCTGATCACCCACCATGAGACCGCTTCGACAGCCGACCTGCTGACCTTGAAGGATCAGCGCAAGTTGCTTTATCGACCCACCCTTCATTACGCCTACCATCCTTGCAACGATGCCTTGCTGTCGGTCCACGAACTGATCGGCCGAGGCTGGCAGGCACAAACCCGGCAGCGCATCCTCAACGGTGAAATCGACAGCGGCGGCATAGACGCCTTGGGCGTTTTGTTCATGGGACATGAGCTTAACGCCTACTGGTTCGGCTCGCTGTTGAGTATCGACGAAGCCCGCGCGCTGGTGCCGTTCAACAACGCCACCAGCCTGCAAGTAGCGGCGGGTGTGCTGTCGGGGGTTGTCTGGGCGGTCGAGCATCCGGACCGAGGCATCGTCGAGCCCGAACAGATGGATCACGAGCGCGTGCTGGAAATCGCCAGGCCTTACCTAGGCACACTGGCCGGGCAGCGCACTGACTGGACACCGAGTGGCGCCAGCCCCAATCCATCAACGGACGACCCGGCGCAGGACTGGCAGTTCGCGTATTTCACTCGGTTCTAA	MKHQVPFTGHLVFIGFGSIARATLPLLLGQEHIEVRQITVIAPVIEQNIWFKERGIHFVREALTEPDFAQILDRFVEPGDFIVNLSVEVSSLAVIAYAFDKGAFYLDTCVEPWAGGYTDPQLDHALRTNYALRYQALNLRKKLGRGPTAIIAHGANPGLITHLLKAGLVELAMQLNHPLPEDRHGVDWARLCMEMGIKVIHFAERDTQRSQRLKEDDEFVNTWSVHGFISEGTQPAELGWGSHERVWPPSARRHRFGSRNAIYLERPSASVLVKTWTPLGGPCLGMLITHHETASTADLLTLKDQRKLLYRPTLHYAYHPCNDALLSVHELIGRGWQAQTRQRILNGEIDSGGIDALGVLFMGHELNAYWFGSLLSIDEARALVPFNNATSLQVAAGVLSGVVWAVEHPDRGIVEPEQMDHERVLEIARPYLGTLAGQRTDWTPSGASPNPSTDDPAQDWQFAYFTRF				NA	NA	NA	NA	NA
D1-36_03102	810			hypothetical protein	ATGAAGGATGAATTCAAAACAGAATCGGAAAAGAGCCCGGAGGCCATCGAGCGCGAGATCGACGAGCAGCGTGCCCATATCAGCCATATCGTCGATGCCCTGGGCAGCAAATTAACCCCGGGCCAGATGCTCGACCAAGCCTTGGGCCTGGTGAAGGGCAACGGCGCGGAGTTCTTCGGCAACCTGGGCACCACAGTACGCAACAACCCCGTGCCGACGGTACTGACCACGGTTGGATTGTGCTGGCTGATGCTCGGCCAGAACCACCCGCCTCGGGTTGGCTATCGCGTCGGACCCGACCAGGACACCGGCGGCTGGACCGAGGGGCTCGCCAGTGGCGTGGGCAGTGCCCGGAACCATCTGCACGACACCACCGACTCCTTGCGTGAGGGTTTCCACCATCTCAAGGACAAGGCCTCGCATCTGGCCGAAGGTTTGGGCTCCGGTGCCCGTCAAGCCCGGCGCAGCGCCCATGAAACGGGTGAGCGCATGACCCAGGGCTCCCACGACCTGGGCGATCAGTTCAGCCGCTTGCTCAAGGAGCAGCCGTTGATGATGGCGGCGGCGGGTATAGCCTTGGGCGCGATGTTGGGAGCGGCCTTGCCCAGTACCACCACCGAACAGCGAGTGATGGGCAAGACCAGTGCCGACCTGGCCGACAAAGCCAAGCAAAAGGCGCGCGAGGGGTATGAAACGGTGCGTGACACGGTAAGCAAGACCACCGAGCATCGTGATGAACCCGGCGTCGAGCCGGCCAACGGACGGGTGCATTCAGGCGCGGACCTGTCCGGTGGACTGGGGACTTCATAG	MKDEFKTESEKSPEAIEREIDEQRAHISHIVDALGSKLTPGQMLDQALGLVKGNGAEFFGNLGTTVRNNPVPTVLTTVGLCWLMLGQNHPPRVGYRVGPDQDTGGWTEGLASGVGSARNHLHDTTDSLREGFHHLKDKASHLAEGLGSGARQARRSAHETGERMTQGSHDLGDQFSRLLKEQPLMMAAAGIALGAMLGAALPSTTTEQRVMGKTSADLADKAKQKAREGYETVRDTVSKTTEHRDEPGVEPANGRVHSGADLSGGLGTS				NA	NA	NA	NA	NA
D1-36_03103	432			hypothetical protein	ATGAATCGACCAGACCCGGATATCCAGCGTCCCGCAGGTGCCCCGGCGCCCGAAAGCGATGCCTCGGTCATGGGCCTGCTCCGGCAGTTGACCCACGAGGTGCCCTCACTGTTCACCAAGGAACTGGCCCTGGCCAAGGCGGAATTCCAGGCCAGCCTCAACACCTTGAAAGCCGGTATCGCCGGTGTGGCGGGCGGCGCAATGGTGCTGATGGCCGGCTTCATCATCTTGCTGATGGCCGTGGTGTATGGCCTGAGCACGATGATGGCGCCCTGGTTGGCCGCGCTGATCGTTGGCGTCGTGGTGATGATCATCGGTTTCGTCATGGTGCAGTCCGGCAAGAAGCAATTCGAACCGTCCCATTTCAAGCCTGACCGAACGCTCGACGCCTTGAACAAAGACCAGGAAGCCCTGCGGAGGAAAGCCTCATGA	MNRPDPDIQRPAGAPAPESDASVMGLLRQLTHEVPSLFTKELALAKAEFQASLNTLKAGIAGVAGGAMVLMAGFIILLMAVVYGLSTMMAPWLAALIVGVVVMIIGFVMVQSGKKQFEPSHFKPDRTLDALNKDQEALRRKAS				NA	NA	NA	NA	NA
D1-36_03104	654			hypothetical protein	ATGACTATCCCGGACAACAACCCCGAGCGACAAAGCGGCACCGCAAGCCAGGGGCGAGCTGAAGAGCCCCTGAACCACATCAAGGATGACGTGAACGAAGCCATCGGCAGCGCCCGAGAGCAGGCCGATGCGCATTTTGGCCAGTACCGCGATACCGCGGCGGACCAGATCGATGCATTGGCGCGTAGCGCCAAGTCGGCCATGTCGGAACTCGAAGCCAACGACACGCTGGGCTTGTCGCATTACCTGGCGGACATGGCCGATAACATGAGCGGCCTGGCCAGCAAACTGCGCAACAAGAGCGCCGAGCAGCTGCTGCACGATGGCTCGCGGCTGGCGCGAGAGAACCCCGGCCTGTTCCTCGCTGGCAGTATTGCCGTGGGTTTCGGACTGTCGCGGTTCCTCAAGGCCGGCACCTCGCCGGTCGCCACCGAAGTCGACAACCCTGCCGCCGAACAGGCGGAGCCACCGACCGGAGGGTCCGGCACTCAGCCTTTCGACCCGATACCTGATCCTATCGGTCCGGGTGCCGCGACAAGCAGCAGCGGCCTTGCCACCGGCGTTACCCCGACTTCACCCAGCGTGCAGGACCATCCCAGTGATTCAGCCACCGGCTCGCTGCCGGGCTCGGCCAATACCAGAGGAGAATTGTGA	MTIPDNNPERQSGTASQGRAEEPLNHIKDDVNEAIGSAREQADAHFGQYRDTAADQIDALARSAKSAMSELEANDTLGLSHYLADMADNMSGLASKLRNKSAEQLLHDGSRLARENPGLFLAGSIAVGFGLSRFLKAGTSPVATEVDNPAAEQAEPPTGGSGTQPFDPIPDPIGPGAATSSSGLATGVTPTSPSVQDHPSDSATGSLPGSANTRGEL				NA	NA	NA	NA	NA
D1-36_03105	930	zupT		Zinc transporter ZupT	ATGGACCAGCCCACCTCCCGGATTCGATCGCCCTGGCGTACCTGGCTTGATCCTGTGCAAAACAATCTGCTGCTGGGGGTGACCTTCTGGCTTGGATTGGCGCTGGTCGCGGTGCTGTTGCTGTATAGCGGCTATAACGCGCTGGTGGGGGCCGACCGCCAGAACCTGGGCTATGCGGCGCTGGGCGGAACCTCCGGCTTCGCCGCCACCGCCCTGGGGGCGCTGATGGCGGTGGTGCTGCGCGATATTTCATCGCGCACCCAGGACATCATGTTGGGTTTCGCGGCCGGCATGATGCTCGCGGCGAGCTCCTTTTCGTTGATCCTGCCCGGCATTGAAGCGGCGCAAATCATATGTGGCAACCAATTGCTTGCCGCCCTTGTGGTCGTGATCGGCCTTGGGCTGGGGGTTTTGCTGATGGTCGGCCTTGACCGTTTCGTCCCCCATGAGCATGAGTTGAGTGGCCGGCGTGGCCCCGAGGCCAAGCGCATCAACCGGGTCTGGTTGTTTGTCCTGGCGATCACCTTGCACAACTTGCCTGAGGGCATGGCCATAGGCGTGAGCTTCGCCAACGGCGACCTCAAGGTCGGCTTGCCCTTGACCACCGCCATTGCGATCCAGGACATTCCCGAAGGCCTCGCCATCGCCATGGCGCTGCGGGTGACCGGGATCAGCACGTTGCGCGCCGCACTGATTGCGGTCGGCTCAGGGTTGATGGAGCCGCTGGGCGCGGTGATCGGCCTGGGCATGTCTTCTGGCGTGGCCGTGGCTTACCCCATAAGCCTGGGGCTAGCGGCGGGTGCGATGATCTTTGTGGTGTCCCATGAAGTGATTCCCGAAACCCACCGCAACGGCCACGAAACGCCAGCGACCCTCGGGCTGATGATGGGGTTCGCGGTCATGATGTTTCTGGATACCGCGCTGGGTTGA	MDQPTSRIRSPWRTWLDPVQNNLLLGVTFWLGLALVAVLLLYSGYNALVGADRQNLGYAALGGTSGFAATALGALMAVVLRDISSRTQDIMLGFAAGMMLAASSFSLILPGIEAAQIICGNQLLAALVVVIGLGLGVLLMVGLDRFVPHEHELSGRRGPEAKRINRVWLFVLAITLHNLPEGMAIGVSFANGDLKVGLPLTTAIAIQDIPEGLAIAMALRVTGISTLRAALIAVGSGLMEPLGAVIGLGMSSGVAVAYPISLGLAAGAMIFVVSHEVIPETHRNGHETPATLGLMMGFAVMMFLDTALG	PGPT0004250_354	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ZINK_RESISTANCE	ZINK_RESISTANCE-ZINK-NICKEL_TRANSPORT,PGPT0004250-TC_ZIP|zupT|ZRT3|ZIP2-K07238	NA	NA
D1-36_03106	882	ydbD	COG3546	putative manganese catalase	ATGTTCATTCATAACAAACGATTGCAATATACCGTGCGCGTCGCCGAGCCCAATCCAGGACTCGCTAACCTGTTGCTCGAACAGTTTGGTGGCGCCCAAGGCGAACTGGCCGCAGCGTCCCGTTATTTCACCCAGGCCCTGTCCGAAGATGATCCAGGCCGCAAGGACCTGCTGATGGACATCGCCACCGAGGAGCTCAGCCACCTGGAGGTGATCGGCTCGATCATCGTGATGTTGAACAAGGGCGCCAAGGGCAAGATGGCCGAAGGTGTCGAACAAGAGGGCCAGCTGTATCGCGAGATCAACGGCGCCGGCAACGATTCCCACATCACCAGCGTGCTGTATGGCGCAGGCTCGCCGCTGACCAACTCGGCCGGTGTGCCTTGGACCGCGGCCTACATCGACACCATCGGTGAGCCCACGGCGGACATGCGTTCGAACATCGCCGCCGAAGCCCGGGCGAAAATCGTTTATGAGCGGCTGATGAATGTCACTGATGACCCGGGTGTAAAAGAAGCCCTGGGCTTCTTGATGACCCGTGAAATCGCCCACCAGCTGTCCTTCGAAAAAGCCCTCCATTCCATCCAGCCCAACTTCCCACAAGGGAAATTGCCTGGCATGCCGGAGTTCACCAATGTGTACTTCAATATGTCCCAGGGCGAACCCTCGGTGCGCGGTCCTTGGAATCAGGGCGACGATTGGGAATTCGTCGAGAACCCAACTCCAGCGGTCGATGGCGGAGATGGCATGGCCACTGTGCAGTTGAGTGAGAAAGACGAAGCTCTGCTGATGGACATGAAGGCGCGGACGATGTCCAACCCTGAAAGCGATCCTACGACAGGCGCCGACTTGGGTTCGGGGATGCAAGGTGACAAACTGTAA	MFIHNKRLQYTVRVAEPNPGLANLLLEQFGGAQGELAAASRYFTQALSEDDPGRKDLLMDIATEELSHLEVIGSIIVMLNKGAKGKMAEGVEQEGQLYREINGAGNDSHITSVLYGAGSPLTNSAGVPWTAAYIDTIGEPTADMRSNIAAEARAKIVYERLMNVTDDPGVKEALGFLMTREIAHQLSFEKALHSIQPNFPQGKLPGMPEFTNVYFNMSQGEPSVRGPWNQGDDWEFVENPTPAVDGGDGMATVQLSEKDEALLMDMKARTMSNPESDPTTGADLGSGMQGDKL	PGPT0013240_553	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013240-katN|ctjC|ydbD|yjqC-K07217	NA	NA
D1-36_03107	378	gsiB	COG3729	Glucose starvation-inducible protein B	ATGGCAAATACAGGTAATAACAACCCTGGCAATTTCGCTAACGATCATGAAAAGGCATCGGAAGCCGGCAAGAAAGGCGGCCAAGCATCGGGTGGCAACTTCGCCAACGATCCGGAACGCGCAGCCGAGGCCGGTCGTAAGGGTGGCCACATGTCGGGTGGCAATTTTGCCAACGATCCGGAACGTGCCGCAGAGGCGGGCCGCAAAGGTGGACAAGCCTCGGGTGGCAATTTTGCCAATGACCCTGAACGGGCATCGGAAGCCGGCAAGAAAGGTGGCCAGGCGTCTGGTGGCAACTTTGCAAATGATCGGGAAAAAGCCTCCGAAGCTGGCAAGAAAGGCGGTGAAAACAGCCACGGTGGCGGTCGTAAATCGTAA	MANTGNNNPGNFANDHEKASEAGKKGGQASGGNFANDPERAAEAGRKGGHMSGGNFANDPERAAEAGRKGGQASGGNFANDPERASEAGKKGGQASGGNFANDREKASEAGKKGGENSHGGGRKS				NA	NA	NA	NA	NA
D1-36_03109	249			hypothetical protein	ATGAGTGAATTGAAATGTGGCTGCCCCGGCTGTCACTGCGACGTCGATCCCGAGCGGGTGTTCAATCACGACGGCGAGGCTTATTGCAGCCAGGCCTGCGCGGAACAACACCCCAACGGCGAGCCGTGCCCGGCGCAGGATTGCCATTGCGAACGCAGTGGCAAAGTTGGCGAACGGGACATTACCAACGATCAACTGGATGAAGCGCTGGAAGAGACGTTCCCGGCCAGCGACCCGATCTCGCCCTGA	MSELKCGCPGCHCDVDPERVFNHDGEAYCSQACAEQHPNGEPCPAQDCHCERSGKVGERDITNDQLDEALEETFPASDPISP	PGPT0004285_4	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_BISMUTH_RESISTANCE	BISMUTH_RESISTANCE-BISMUTH_HOMEOSTASIS,PGPT0004285-smtA-K21904	NA	NA
D1-36_03110	270			hypothetical protein	ATGAAGCAGACCACCGGAGAGGTAAGAGCCATCAATCGACAAAGCGCCAGGGTCGGCGTCTACGTGGCGCAAGAGGATGGCCACACGGTGCTCGAACTGGGCCCCGCCAACGACGTTGACATCGGCGACATCATTGAATGGGACAGCGGCACGGCCGTGGGCACCCAGACTTATCGCAACCTGACCAAAGGTTGGGTTGATGAAGTGTATGTCGCCAAGCATGGCGTTGCGGCAGCGAACCTTGAGGTGCAGTTGCTGGTGGGATCCTGA	MKQTTGEVRAINRQSARVGVYVAQEDGHTVLELGPANDVDIGDIIEWDSGTAVGTQTYRNLTKGWVDEVYVAKHGVAAANLEVQLLVGS				NA	NA	NA	NA	NA
D1-36_03111	510	yciE	COG3685	Protein YciE	ATGGCAACCCCTAAAGAGAACCTGCTGGATTGGCTCAACGATGCTCACGCCATGGAACAGCAAGCGGAGAAAATGCTCAAGGCCCAGGCCGAGCGCCTGGAACATTATCCGGTGCTCAAGGCCCGAATCGAACAGCACATCGAAGAGACGCTCGGGCAGCAGAAGTTAGTCGAAGGGTGCATCCAACGCCTGGGCGGCAGCCCCTCGATGCTCAAGGACATGGCCGGCAAGCTGATGGCGTTCGGTCAGGCCATGGGCGGCATGGCGATGAGTGACGAAGTGGTCAAGGGTGCCATGAGTGGCTACGTTTTCGAAAACCTCGAGATTGCTTCCTACACGGTGCTGATCGAAGCGGCGAAAGTGGCCGGCGACGTGGAAACCCAAAGGGCTTGCGAGCAGATCCTGCCCCAGGAAATCGCGATGGCCGATTGGCTGCGCGACCATTTGCCGGAAATCACCCAGGCATTCCTGGAGCGTTCGGCCAACCCGCATACCGAAGCCAAGCGCTGA	MATPKENLLDWLNDAHAMEQQAEKMLKAQAERLEHYPVLKARIEQHIEETLGQQKLVEGCIQRLGGSPSMLKDMAGKLMAFGQAMGGMAMSDEVVKGAMSGYVFENLEIASYTVLIEAAKVAGDVETQRACEQILPQEIAMADWLRDHLPEITQAFLERSANPHTEAKR				NA	NA	NA	NA	NA
D1-36_03112	828	cobB	COG0846	NAD-dependent protein deacetylase	ATGCCCGACGATCTTCACCGTGAACCCATCGAACAACTACAGGAATACCTGTCCGGGCGCCGTTTCCTGGTGCTGACGGGCGCGGGAATCAGCACCCCTTCCGGCATCCCCGACTACCGTGACAGCGACGGCGTTCGTCGGGGCCGGCAACCGATGATGTACCAGGAGTTTCTCGCCAAACCCGAGGCGCGAAGACGCTACTGGGCGCGGGCCATGCTGGGCTGGCCACGCCTGCGCCAAGCGCGCCCGAACCTGGCCCACGAGGCCCTTGCAGCGTTGCAGGCGGCGGAGCGCATCAGCGCGCTGATCACACAGAATGTCGACGCCCTGCACGACCGGGCCGGAAGCCGCCAGGTCATCGAGCTGCACGGCAGCTTGCATCGAGTGCTGTGCCTCGATTGCGGCCAGCGCAGCGAGCGGCAGCACATCCAGGCCTTGATGGAAACCGAGAATCCCTACCTGACCGGTGTCGACGCAGTGCAGGCGCCCGATGGCGACACGCTGCTGGACCCGGCGTTCGAGGCACGCTTCCAGGTTCCGCGTTGCCCCCATTGCGCGGGTGAACGCCTGAAACCGGATGTGGTTTTTTTCGGTGAAAACGTCGCCGCGCCCACCGCCGCTCGCGCCATGGAAGCCGTTGAACAAGCGGATGGATTGTTGGTGGTGGGGTCGTCATTGATGGCCTATTCGGCGTTTCGCCTGTGCCGGGCAATCAAGGACCAGGGCAAGCCGCTGCTGGCGATCAACCGGGGCAAGACCCGGGCCGATGAGTTGCTGGATTTGAAGGTTGAAATGCCGTGTGAGCAGCTATTGCCGCTGCTGACCTGA	MPDDLHREPIEQLQEYLSGRRFLVLTGAGISTPSGIPDYRDSDGVRRGRQPMMYQEFLAKPEARRRYWARAMLGWPRLRQARPNLAHEALAALQAAERISALITQNVDALHDRAGSRQVIELHGSLHRVLCLDCGQRSERQHIQALMETENPYLTGVDAVQAPDGDTLLDPAFEARFQVPRCPHCAGERLKPDVVFFGENVAAPTAARAMEAVEQADGLLVVGSSLMAYSAFRLCRAIKDQGKPLLAINRGKTRADELLDLKVEMPCEQLLPLLT				NA	NA	NA	NA	NA
D1-36_03113	912	cynR_4		HTH-type transcriptional regulator CynR	ATGACCCTCAAGCAAATCCGCGCTTTCCTTGCCGTCGCCCAAAGCCTGAGCTTCGCCGTGGCTTGCGAGCGGTTGCACCTCTCTCAATCGGCCCTGAGCCTGACGATCAAGGCGCTGGAAGAGGGCCTCGGTGGCCGTCTGTTCAGTCGCAATACGCGTAACGTCGCGTTGACCCCCGAAGGCGAATCACTGCTGCCACTGGCCCGCCGGCTGGTGGCCGATTGGGATAACGCCGAAGACGAAATGCGCCAGCGTTTCACCTTGCAGCGTGGCCGTGTGACCTTGGCCGCGATGCCATCCTTCGCCGGCAACCTGCTGCCGCCGATCCTCAAGACCTTCCGCGCGCGGTTCCCAAATGTCAACGTCACGGTCAACGACGTGATCAATGAACAGGTGCTGGAAATGGTCCGCGATCGCCACGTGGAGCTGGGGGTGGCGTTCGAGCCGATGCAGGGTTCGTCGCTGGTGTTCACGCCGTTGTACCTGGACCGTTTCGTCGCGGTGGTGCCGCTGGATTCGCCATTGGCCCAGCGCGACGAACTCCAGTGGGAGACTTTATTGGAACAGCCGTTCATCACCTTGCAACGGCCCTCTACCGTGCGGGTGATGCTGGAGGAGCATCTGCAATCCCGAGGCATGAAACTGCCCGTGGAATTCGAGAGCCACCAACTGGCGACGGTCGGGCGGATGGTTGCCAGCGGCCTGGGCGTGAGCGCCGTGCCGGCCCTGTGCGTCGGCCAGATGCACGAGCTGGGCGCCCGCTGCATCACCCTTGGCGAGCCGGTCATAGAACGAGCAATCGGCGTCCTGACCAAGCCGGGCTACGAGCTGTCGGCGGCGGCCCAGGCATTGTTCGATACGTTCAAGGATCAGGACCTGTGGGAGCGAGCTTCAGGTCAGCAGCGGCAATAG	MTLKQIRAFLAVAQSLSFAVACERLHLSQSALSLTIKALEEGLGGRLFSRNTRNVALTPEGESLLPLARRLVADWDNAEDEMRQRFTLQRGRVTLAAMPSFAGNLLPPILKTFRARFPNVNVTVNDVINEQVLEMVRDRHVELGVAFEPMQGSSLVFTPLYLDRFVAVVPLDSPLAQRDELQWETLLEQPFITLQRPSTVRVMLEEHLQSRGMKLPVEFESHQLATVGRMVASGLGVSAVPALCVGQMHELGARCITLGEPVIERAIGVLTKPGYELSAAAQALFDTFKDQDLWERASGQQRQ	PGPT0021950_362	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARNITHINE_USAGE	PLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021950-dhcR-K17737	NA	NA
D1-36_03114	699	scoA	COG1788	putative succinyl-CoA:3-ketoacid coenzyme A transferase subunit A	ATGGCAGGTTTCGACAAACGCGTGAGCTCTTACGAAGAGGCGCTGGACGGCTTGAAGGACGGCATGACCGTCATCGCCGGCGGCTTCGGTCTATGCGGCATTCCAGAGAACCTGATCGCCGAGATCAAGCGCAAGGGCACCCGCGACCTTACCGTGGTTTCCAACAACTGCGGCGTTGACGGTTTCGGCCTCGGCGTCCTGCTGGTGGACCGACAGATTCGCAAGGTGGTGGCTTCCTACGTGGGCGAAAACGCCCTGTTCGAACAGCAATTGCTGAGCGGCGAAATCGAAGTCGTGCTCACCCCCCAAGGCACCCTCGCCGAAAAAATGCGTGCGGGCGGCGCAGGCATCCCGGCGTTCTTCACCGCCACCGGCGTCGGCACCCCCGTGGCCGAAGGTAAGGAAGTACGCGAGTTCCACGGTCGCCAGTACCTGATGGAAGAATCCATCACTGGCGACTTCGCCATCGTCAAAGGTTGGAAAGCCGACCATTTCGGCAATGTGATCTATCGCCACACCGCCCAGAACTTCAATCCCCTGGCCGCCACGGCGGGCAAGATCACCGTGGTGGAAGTCGAAGAAATCGTCGAGCCCGGCGAGCTGGACCCGGCACAGATCCATACCCCCGGCATCTACGTCGACCGGGTCATCTGCGGCACGTTTGAAAAGCGCATCGAACAGCGCACCGTGCGTAAGTGA	MAGFDKRVSSYEEALDGLKDGMTVIAGGFGLCGIPENLIAEIKRKGTRDLTVVSNNCGVDGFGLGVLLVDRQIRKVVASYVGENALFEQQLLSGEIEVVLTPQGTLAEKMRAGGAGIPAFFTATGVGTPVAEGKEVREFHGRQYLMEESITGDFAIVKGWKADHFGNVIYRHTAQNFNPLAATAGKITVVEVEEIVEPGELDPAQIHTPGIYVDRVICGTFEKRIEQRTVRK	PGPT0008325_1753	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008325-scoA-K01028	NA	NA
D1-36_03115	666	scoB	COG2057	putative succinyl-CoA:3-ketoacid coenzyme A transferase subunit B	ATGGCACTTTCCCGCGAACAAATGGCTCAGCGCGTCGCCCGCGAAATGCAAGACGGCTATTACGTAAACCTCGGTATCGGCATCCCGACCTTGGTCGCCAACTACATCCCCGAAGGCATGGAAGTCATGTTGCAATCGGAAAATGGCCTGCTCGGCATGGGCGCGTTTCCCACCGAAGCAGAAGTCGACGCTGACATGATCAACGCCGGCAAACAAACCGTCACCGCGCGCATCGGCGCGTCGATCTTTTCGTCCGCCGAATCGTTCGCGATGATTCGCGGCGGCCACATCGACCTGACCGTGCTCGGCGCGTTCGAGGTGGACGTCGAAGGCAATATCGCCTCATGGATGATCCCCGGCAAGCTGGTCAAGGGCATGGGCGGCGCAATGGACCTGGTGGCCGGCGCCGAGAACATCATCGTCACCATGACCCACGCGTCCAAGGACGGTGAGTCGAAATTGCTGCCTCGCTGCAGCCTGCCGCTGACCGGCGCCGGGTGCATCAAGCGCGTGCTCACCGACCTGGCCTACCTGGAAATCCAGGACGGCGCCTTTATTCTCAAGGAACGCGCCCCGGGCGTCAGCGTCGAGGAAATCGTCGCCAAGACCGCCGGCAAGCTGATCGTGCCGGACCACGTCCCTGAAATGCAGTTCGCTGCCCAGTGA	MALSREQMAQRVAREMQDGYYVNLGIGIPTLVANYIPEGMEVMLQSENGLLGMGAFPTEAEVDADMINAGKQTVTARIGASIFSSAESFAMIRGGHIDLTVLGAFEVDVEGNIASWMIPGKLVKGMGGAMDLVAGAENIIVTMTHASKDGESKLLPRCSLPLTGAGCIKRVLTDLAYLEIQDGAFILKERAPGVSVEEIVAKTAGKLIVPDHVPEMQFAAQ	PGPT0008330_217	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008330-scoB-K01029	NA	NA
D1-36_03116	1182	thlA_2	COG0183	Acetyl-CoA acetyltransferase	ATGCAAGAAGTCGTGATTGTCGCCGCTACCCGTACCGCCATCGGCAGTTTCCAGGGTTCGCTCGCTTCCATTCCCGCGCCGGAACTCGGTGCCGCAGTGATTCGTCGGCTGCTGGAACAGACCGGTCTGGCTGGCGAACAGGTCGATGAAGTGATCCTCGGCCAAGTGCTGACCGCAGGCGCCGGACAGAACCCGGCGCGCCAGGCGTCGATCCTCGCCGGCCTGCCCCACGCCGTGCCGGCGCTGACCTTGAACAAGGTTTGCGGCTCAGGCCTCAAAGCGCTGCACCTGGGCGCCCAGGCGATTCGCTGCGGCGATGCCGACGTGATCATCGCTGGCGGCATGGAAAACATGAGCCTGGCCCCCTATGTGTTACCAGCCGCCCGCACCGGCTTGCGCATGGGCCACGCGAAAATGATCGACAGCATGATCACCGACGGTTTGTGGGACGCGTTCAACGATTACCACATGGGCATCACCGCCGAGAACCTGGTGGACAAGTACAGCATCAGCCGCGAGGCGCAAGATGCCTTCGCCGCCGCGTCCCAGCAGAAAGCCGTCGCCGCCATCGAAGGCGGCCGCTTCGCCGATGAGATCACGCCGATTCTGATTCCCCAGCGCAAGGGCGATCCGGTGGCCTTTGCCGTCGACGAACAACCGCGCGCCGGCACCACCGCCGAATCCCTGGGCAAGCTCAAGCCGGCGTTCAAGAAAGACGGCAGCGTCACGGCGGGCAATGCCTCATCGCTGAACGATGGCGCCGCCGCCGTGATCCTGATGAGCGCAGAAAAAGCCAAGGCGCTGGGTTTGCCGGTGCTGGCAAAGATCAGTGCCTACGCCAACGCCGGCGTCGACCCGGCGATCATGGGCATCGGCCCGGTCTCGGCCACTCGCCGTTGCCTGGACAAGGCCGGCTGGTCGCTTGACCAACTGGACCTGATCGAGGCCAACGAAGCCTTCGCCGCCCAGTCCTTGGCCGTCGCAAAGGAGCTGGAATGGGATATGGACAAGGTCAACGTCAACGGCGGCGCCATCGCATTGGGCCATCCAATCGGGGCTTCGGGCTGCCGAGTGCTGGTGACGCTGCTGCATGAAATGATCAAGCGCGACGCCAAGAAAGGCCTCGCGACACTCTGCATCGGCGGCGGCCAAGGCGTTGCCCTCGCGCTGGAACGGGCGTAA	MQEVVIVAATRTAIGSFQGSLASIPAPELGAAVIRRLLEQTGLAGEQVDEVILGQVLTAGAGQNPARQASILAGLPHAVPALTLNKVCGSGLKALHLGAQAIRCGDADVIIAGGMENMSLAPYVLPAARTGLRMGHAKMIDSMITDGLWDAFNDYHMGITAENLVDKYSISREAQDAFAAASQQKAVAAIEGGRFADEITPILIPQRKGDPVAFAVDEQPRAGTTAESLGKLKPAFKKDGSVTAGNASSLNDGAAAVILMSAEKAKALGLPVLAKISAYANAGVDPAIMGIGPVSATRRCLDKAGWSLDQLDLIEANEAFAAQSLAVAKELEWDMDKVNVNGGAIALGHPIGASGCRVLVTLLHEMIKRDAKKGLATLCIGGGQGVALALERA	PGPT0008320_8386	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626	NA	NA
D1-36_03117	714	lutR_3	COG2186	HTH-type transcriptional regulator LutR	ATGCAGCAAGACATTGAAGCGCCCCTGCGCAAGCGCGCCCACAACCTGGCCCATGACTTGGTGGCGAAGTTGAGCCAGAGCATTTTGCTTGGGCAGTTGAAGCCGGGGCAGAAGTTGCCGTCCGAGGGCGCCATCGTGCAAGAGCATGGCGTCAGCCGCACGGTGGTGCGCGAGGCGATTTCCAAGTTGCAGGCCTCGGGGCTGGTGGAGACACGCCACGGCATAGGCACTTTCGTGCTGGAACAAACGGGGGAGCAAGGGCTGAGGCTCAACGTCGATACCGCGGCGGGCGTTCGGGGAATCCTGGAATTGCGCTTGGGGCTTGAGACCCAGGCCGCGGCTTTGGCTGCCCAGCGTCGCAGCGAACGGCAATTGCAGCAGATGCGCGAGGCCTTGGATGACTATCAGCGATTGCTCAGCAGCAATGACAGCTGCGTCGAGGCTGACCGGCGTTTCCACCTGTTGATCGCCGAAGCCACGGACAACACCTGTTTTGTCGAAATCATGCAGCACTTGGGCAGTGCGATGATTCCCCGTACGCGGGTGAACATGGCCGAACGTGGTCAGGCGGACCTGGGCAGGCTTGCGCAATTTGCCAACCTGGAGCACGAAGCGATTTACAACGCCATCAAGCGCCAGGACCCCGACGCCGCCCGCGCGGCCATGTGGCTGCACCTGACCAACAGTCGTGACCGGTTGGGTGCGGGGGGCTGA	MQQDIEAPLRKRAHNLAHDLVAKLSQSILLGQLKPGQKLPSEGAIVQEHGVSRTVVREAISKLQASGLVETRHGIGTFVLEQTGEQGLRLNVDTAAGVRGILELRLGLETQAAALAAQRRSERQLQQMREALDDYQRLLSSNDSCVEADRRFHLLIAEATDNTCFVEIMQHLGSAMIPRTRVNMAERGQADLGRLAQFANLEHEAIYNAIKRQDPDAARAAMWLHLTNSRDRLGAGG				NA	NA	NA	NA	NA
D1-36_03118	1347	ttuB_2		Putative tartrate transporter	GTGAATACCTCCAGCCTCAGGGCGAATGCCGGCGCGGATCCGGTGCTGCAATCGGCTATATCCAAGGTCAAGCGCCACATCTTGCCGCTGTTCGTCATCATGTTCATCGTCAACTACATCGACCGGGTGAATATCGGCTTCGTCCGCTCTCATATGGAGCACGACCTGGGCATCGGTGCAGCCGCCTACGGTTTTGGCGCCGGCCTGTTTTTCATCGGCTACGCGCTGTTCGAAGTCCCTTCCAACATCTTGTTGCAACGCATCGGCGCCCGAATCTGGCTGACGCGCATCATGCTTACCTGGGGCCTGGTGGCGGCAGGCATGGCCTTCATTCAGAACGAAACCCACTTCTACATCCTTCGTTTCCTGCTGGGCGTGGCCGAGGCTGGCTTCTTCCCTGGCGTGATTTATTACTTCACCCGTTGGCTGCCCGGGGTCGAACGCGGCAAAGCCATCGCCATCTTCCTCAGCGGCTCGGCGATCGCTTCGCTGATTTCCGGCCCGTTGTCAGGATTGCTCCTGCAGATCAACGGCCTGGGCATGCACGGTTGGCAGTGGATGTACTTTATCGAAGGGATGTTTTCCGTCGGCCTGTGCTTCTTCGTCTGGTTCTGGCTCGACTCCAAGCCCCACGACGCCAAGTGGCTGGACCGTGCTGAACAGGACGCGCTGGTCAAGGCCATCGATGATGAACAGGCAGCCCGTGAAGCCGCGACGCCGATCAAGCTGTCCATCGGGCAACTGCTCAAGGATCGCCAGATCATTCTGTTCTGCGTGATTTATTTCTTCATTCAATTGACGATCTATGCCGCCACCTTCTGGCTGCCGAGCATCATCAAGAAGATGGGCGAGCTCAGCGACGTTCAGGTCGGGCTGTTCAATTCGATTCCCTGGTTGCTGTCGATTGTCGGCATGTACGCCTTCGCCTCGCTGTCGGCCAAATGGAAGTTCCAACAGGCCTGGGTCGCTGCGGCCCTGCTGATCGCCGCGGCGGGGATGTTCATGTCCACCACCGGCGGGCCCATCTTCGCCTTCGTCGCGATCTGCTTCGCGGCCCTGGGTTTCAAATCGGCGTCTTCGCTGTTCTGGCCGATTCCCCAGGCCTACCTGGACGCACGCATTGCCGCCGGCGTGATCGCGTTGATCAATTCGGTGGGCAACCTCGGCGGCTTCGTCGCGCCGACCACCTTCGGCCTGCTGGAACAGCACACCGGCTCGATCCAGGGCGGTCTGTATGGCCTCGCCGCCACGTCGATCATTGCCGCGATCATCGTATTCGCCGCACGCAACACACCCAAGCAGAAATCCGCCACGACCTCCACCGACCCGGTTACCAGCCACGCCTGA	MNTSSLRANAGADPVLQSAISKVKRHILPLFVIMFIVNYIDRVNIGFVRSHMEHDLGIGAAAYGFGAGLFFIGYALFEVPSNILLQRIGARIWLTRIMLTWGLVAAGMAFIQNETHFYILRFLLGVAEAGFFPGVIYYFTRWLPGVERGKAIAIFLSGSAIASLISGPLSGLLLQINGLGMHGWQWMYFIEGMFSVGLCFFVWFWLDSKPHDAKWLDRAEQDALVKAIDDEQAAREAATPIKLSIGQLLKDRQIILFCVIYFFIQLTIYAATFWLPSIIKKMGELSDVQVGLFNSIPWLLSIVGMYAFASLSAKWKFQQAWVAAALLIAAAGMFMSTTGGPIFAFVAICFAALGFKSASSLFWPIPQAYLDARIAAGVIALINSVGNLGGFVAPTTFGLLEQHTGSIQGGLYGLAATSIIAAIIVFAARNTPKQKSATTSTDPVTSHA	PGPT0002325_530	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-ORGANIC_ACID_METABOLISM	P-SOLUBILISATION-TARTARIC_ACID_TRANSPORT,PGPT0002325-ttuB-K13021	NA	NA
D1-36_03119	1344	gudD_2		Glucarate dehydratase	ATGACTACGCCAGACACCAGCAAAGCCCCGATCATCACCAGCATGCAGGTCGTGCCCGTGGCCGGCCACGACGGCATGCTGCTGAACCTCAGCGGCGCCCATGGCCCGTTCTTCACTCGCAACATCGTCATCCTCAAGGACAATGCCGGGCACACCGGCGTGGGCGAGGTGCCCGGCGGCGAACGCATTCGCCAGACGTTGGAAGATGCGCGCTCGCTGGTAGTCGGCAGCCCCATCGGCAACTACCAGAAAATCCTCAACAGCGTGCGCCAGGCCTTTGCCGACCGCGACGCCGGTGGCCGTGGCCTGCAAACGTTCGACTTGCGCATCACCATCCACGCCGTCACCGGCCTGGAAGCCGCACTGCTGGATCTGCTCGGCCAGCATCTGGATGTCCCGGTCGCGGCCCTCCTCGGCGAAGGCCAGCAGCGCGACGAAGTGAAGATGCTTGGCTATCTGTTCTATGTCGGTGATCGGCAACAGACCGACCTGCCCTACCGCAGCGAACCGGACGCCGATAACGACTGGTTCCGCGTGCGCCACGAGAAAGCCCTCGATGCCGAAGCGGTGGTGCGCCTGGCCGAAGCGGCCCATGCGCACTATGGTTTCCAGGACTTCAAACTCAAGGGCGGCGTGCTCAGGGGCGACGAGGAAATCGAAGCCGTGACCGCATTGGCCGAGCGTTTTCCCCAGGCGCGCATCACCTTGGACCCGAACGGCGCCTGGTCACTCAAGGAAGCGATCCGCTTGTGCCGTGATCAGCACAAGGTGCTGGCGTACGCCGAGGACCCTTGCGGAGCGGAGAATGGCTATTCGGGCCGCGAGGTGATGGCCGAGTTCCGTCGGGCGACCGGCCTCAAGACCGCCACCAACATGATTGCCACCGACTGGCGCGAGATGGGCCACGCCATTACCTTGCAATCGGTGGACATCCCCCTCGCTGACCCGCACTTCTGGACCATGCAGGGTTCTGTACGGGTCGCGCAGATGTGCAATGAGTGGGGCCTGACCTGGGGCTCCCATTCCAATAACCACTTCGATATTTCCCTGGCGATGTTCACCCACGTGGCAGCCGCCGCACCGGGCGACATCACTGCCATCGACACCCACTGGATCTGGCAGGACGGCCAACGCCTGACCAAGGCGCCTTTGCAGATCAAGGGGGGTTGCGTGCAGGTGCCGAAAAAACCTGGGCTGGGGATCGAACTGGACATGGACCAGCTGGCCAAGGCTCACGAGCTGTACAAAGGCATGGGGCTTGGGGCGCGGGACGATTCGGTGGCGATGCAGTACCTGATCCCGGGCTGGACGTTCAACAACAAGCAGCCGTGCCTGGTTCGCTAA	MTTPDTSKAPIITSMQVVPVAGHDGMLLNLSGAHGPFFTRNIVILKDNAGHTGVGEVPGGERIRQTLEDARSLVVGSPIGNYQKILNSVRQAFADRDAGGRGLQTFDLRITIHAVTGLEAALLDLLGQHLDVPVAALLGEGQQRDEVKMLGYLFYVGDRQQTDLPYRSEPDADNDWFRVRHEKALDAEAVVRLAEAAHAHYGFQDFKLKGGVLRGDEEIEAVTALAERFPQARITLDPNGAWSLKEAIRLCRDQHKVLAYAEDPCGAENGYSGREVMAEFRRATGLKTATNMIATDWREMGHAITLQSVDIPLADPHFWTMQGSVRVAQMCNEWGLTWGSHSNNHFDISLAMFTHVAAAAPGDITAIDTHWIWQDGQRLTKAPLQIKGGCVQVPKKPGLGIELDMDQLAKAHELYKGMGLGARDDSVAMQYLIPGWTFNNKQPCLVR	PGPT0018180_332	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018180-gudD-K01706	NA	NA
D1-36_03120	2235	glgB_2	COG0296	1,4-alpha-glucan branching enzyme GlgB	ATGAGCGTCTCGAACAAGGAATCACAGGGGCAGGCCAAAGAGTCTTTGCTGCCGGCCCCCCACGACATCGACGCGCTGGTGCGCGCCGAACACCACGACCCGTTTTCGATCCTGGGCCCTCATGGCGATGGCGCCGGAGGGCAATTCATCCGGGCCTATCTGCCCGGCGCGTTGAGTGTGCATGTGCTCGCCCGTGACGGCGGCGAAGAGCTGGGCGAGTTGCAGATCACCGAAACCCCGGGCCTGTTCGTCGGCCATTTCGACCGAGCCCAACCGTACCTGCTGCGCACCCGTTGGGCCGGTGGCGAGCAGGTTGCCGAGGACCCGTACAGCTTCGGACCGCTGCTGGGGGAAATGGATCTCTACCTGTTTGCCGAGGGCAATCACCGCGACCTCAGTGCCTGCCTCGGTGCTCAACTGAAAACGGTGGATGGCGTCGATGGCGTGCGCTTCGCCGTCTGGGCGCCGAATGCGCGCCGGGTCTCGGTGGTGGGGGATTTCAACGTCTGGGACGGGCGCCGGCACCCGATGCGCATTCGTTACCCGTCTGGCGTGTGGGAAATCTTCATCCCGAGGCTGGGTCCCGGCGAAGGCTACAAATATGAAATCCTCGGTGCCCACGGCATCCTGCCGCTCAAGGCCGACCCGGTGGCCCTGGCCACGCAGATGCCGCCTGATACGGCGTCCAAGGTCGCCCCGCCCCTGAAGATCGAATGGCACGACGACGAGTGGATGCAGAGCCGTCGTGAACGCCAACTACCGGGCGCGCCGCTTTCGATCTATGAGTTGCACGCCGGTTCCTGGCAGTGCGAGATCGACGAGGCGGGGGAGGTGTCCCGACAGTACAACTGGCATGAGCTGGCTGAGCGGTTGATCCCTTACGTCAAGGACCTGGGCTTCACCCATATCGAGCTGATGCCCATCATGGAGCACCCGTTCGGTGGTTCGTGGGGCTATCAACCCCTTTCGCAGTTTGCCCCCACGGCGCGTTTTGGTTCGCCCGATGATTTCGCCGCGTTCGTCAACGCCTGCCACAAGGCTGACATTGGCGTAATCCTGGACTGGGTCCCGGCGCACTTTCCCACCGATACCCATGGCCTGGCCCAGTTCGACGGCACGGCGCTGTACGAGTACGGCAACCCGCTGGAAGGCTTCCATCAGGATTGGGACACGCTCATCTACAACCTGGGCCGCACCGAAGTCCACGGCTTCATGCTGGCGTCGGCGTTGCATTGGCTCAAGCATTTCCACGTCGACGGCCTGCGGGTGGACGCCGTGGCCTCGATGTTGTATCGCGACTATTCGCGCAAGGCCGGCGAATGGGTGCCTAACCGCCATGGCGGACGGGAGAACCTGGAAGCCATCGATTTCCTGCGGCATCTCAACGACGTGATCGCCCTGGAAACGCCTGGTGCGCTGGTCATCGCCGAAGAGTCCACCGCCTGGCCTGGCGTCAGCCAGAGCACGCAGCAGGGCGGTTTGGGTTTCGCCTACAAGTGGAACATGGGTTGGATGCACGATTCGCTGCATTACATCCAGCAGGATCCGGTGTACCGCGCCCATCATCACAACGAGTTGAGTTTTGGCCTGGTGTACGCCTGGTCCGAGCGTTTCGTTCTGCCGATTTCCCACGACGAAGTGGTCCATGGCAAGCGTTCGCTGATCGACAAGATGCCCGGTGACCGCTGGCAGAAATTCGCCAACCTGCGGGCTTATCTGAGTTTCATGTGGGGCCATCCCGGCAAGAAGCTGCTGTTCATGGGTTGCGAGTTCGGCCAATGGCGCGAATGGAATCATGACCAGCAACTGGATTGGTACCTGTTGCAGTACCCGGAGCACCGCGGCGTGCAAAGGCTGGTCAGCGATCTGAATCGACTCTATCGCGAAGAGCCGGCGCTGCACGATCAGGACGACGCACCCCAGGGCTTCCAGTGGCTGATCGGCGACGATGCGCTCAACAGCGTCTATGCTTGGTTGCGCTGGAGCAAGGACGGTCGGCCAGTGCTGGTGGTCGCCAACTTCACACCGGTGCCGCGCGAGGCGTATCGGGTGGGCGTGCCGTTTGGTGGTCGTTGGGTGGAGTTGCTCAATAGCGATGCCGACACCTACGCCGGTTCCAACTATGGCAACGGCGGCGGTGCCTCGACCGAGGCAATCCCCAGCCATGGCCAGGCGCTTTCGCTGGAACTGAACCTGCCGCCGCTGGCGGTGCTGATCCTGCGGCCGGAGGGTTAG	MSVSNKESQGQAKESLLPAPHDIDALVRAEHHDPFSILGPHGDGAGGQFIRAYLPGALSVHVLARDGGEELGELQITETPGLFVGHFDRAQPYLLRTRWAGGEQVAEDPYSFGPLLGEMDLYLFAEGNHRDLSACLGAQLKTVDGVDGVRFAVWAPNARRVSVVGDFNVWDGRRHPMRIRYPSGVWEIFIPRLGPGEGYKYEILGAHGILPLKADPVALATQMPPDTASKVAPPLKIEWHDDEWMQSRRERQLPGAPLSIYELHAGSWQCEIDEAGEVSRQYNWHELAERLIPYVKDLGFTHIELMPIMEHPFGGSWGYQPLSQFAPTARFGSPDDFAAFVNACHKADIGVILDWVPAHFPTDTHGLAQFDGTALYEYGNPLEGFHQDWDTLIYNLGRTEVHGFMLASALHWLKHFHVDGLRVDAVASMLYRDYSRKAGEWVPNRHGGRENLEAIDFLRHLNDVIALETPGALVIAEESTAWPGVSQSTQQGGLGFAYKWNMGWMHDSLHYIQQDPVYRAHHHNELSFGLVYAWSERFVLPISHDEVVHGKRSLIDKMPGDRWQKFANLRAYLSFMWGHPGKKLLFMGCEFGQWREWNHDQQLDWYLLQYPEHRGVQRLVSDLNRLYREEPALHDQDDAPQGFQWLIGDDALNSVYAWLRWSKDGRPVLVVANFTPVPREAYRVGVPFGGRWVELLNSDADTYAGSNYGNGGGASTEAIPSHGQALSLELNLPPLAVLILRPEG				NA	NA	NA	NA	NA
D1-36_03121	3345			Glucosamine kinase	ATGGCCAAGAAACCCCGGTCTGCCACCTTCATCAACGACCCGCTCTGGTACAAGGACGCGGTCATTTATCAGGTTCACGTCAAATCCTATTTCGACTCCAACAATGACGGAATCGGTGATTTTCCCGGTCTGATCGAGAAGCTCGATTACATCGCCGACCTGGGCGTCAACACCATCTGGCTGCTGCCGTTCTATCCTTCGCCCAGGCGTGACGACGGCTACGACATCGCCGAGTACCGGGGGGTCAGCCCCGACTATGGCACCATGGCCGACGCGCGGCGCTTCATTGCCGAAGCCCACAAGCGCAACTTGCGGGTGATCACCGAGCTGGTCATCAACCACACCTCCGATCAGCACCCCTGGTTCCAGCGCGCACGCAAGGCCAAGAAAGGCTCCAAGGCACGGGATTTCTACGTCTGGTCCGATGACGATCACAAATATGACGGCACCCGGATCATCTTTCTCGACACCGAGAAGTCCAACTGGACCTGGGACCCGGTCGCCGGCCAGTACTTCTGGCACCGTTTCTACTCGCACCAGCCGGACCTCAACTTCGACAACCCGCAAGTCATCAAGGCCGTGCTCTCGGTGATGCGCTACTGGCTCGACATGGGCATCGATGGCCTGCGTCTGGACGCGATCCCCTACCTGATCGAGCGCGACGGCACCAACAACGAGAACCTGCCCGAGACCCACGACGTCCTCAAGCTGATTCGTGCCGAGATCGACGCCAATTACCCCGACCGCATGTTGCTCGCCGAGGCCAACCAATGGCCGGAAGACACCCAGCTCTATTTTGGCGACGTCGATGCCCAAGGCCTCAATGGCGACGAGTGCCACATGGCGTTCCACTTCCCTTTGATGCCGCGCATGTACATGGCGTTGGCCCAGGAAGATCGCTTTCCCATCACCGACATCCTGCGCCAGACGCCGGAGATTCCGGCCAACTGCCAGTGGGCGATTTTCCTGCGCAACCATGATGAGCTGACCCTGGAGATGGTCACCGACAAGGAGCGCGACTACCTATGGAATTACTACGCCGCCGACCGTCGCGCGCGGATCAACCTCGGCATTCGTCGACGTCTGGCACCGCTGATGGAGCGCGACCGCCGCCGCGTGGAGTTGCTCAACAGCCTGTTGCTGTCGATGCCTGGCACGCCGACCTTGTATTACGGCGATGAGATCGGCATGGGCGACAACATCTACCTGGGCGACCGCGATGGCGTGCGCACGCCGATGCAGTGGTCCATCGACCGCAATGGCGGCTTTTCCCGTGCCGACCCGGCGAGCCTGGTGTTGCCGCCGATCATGGACCCGCAATACGGCTATCTGTCGGTGAACGTCGAGACCCAATCCGGCGACCCTCATTCGCTGCTCAACTGGACCCGTCGCATGCTCGCAGTGCGCAAGCAATCCAAGGCCTTTGGCCGGGGCACGTTGAAAATGCTGTCGCCGAGCAACCGGCGGATCCTGGCATATACCCGTGAGTACACCGGCCCGGACGGCAAGCACGAAATCATCCTTTGCGTGGCCAACGTATCGCGCAGTGCCCAGGCTGCCGAGCTGGATCTGTCGGCCTATGCGGGCATGGTCCCGGTGGAAATGCTTGGTGGCAACGCATTCCCGCCCATTGGCCAGTTGAATTTCCTGCTGACCCTGGCGCCGTACGGTTTTTATTGGTTCGCCCTGGCGGCGGAAAACCAGATGCCGAGCTGGCATGTGGAGCCGGTCCAGAGCCTGCCGGATTTCACCACGCTGGTGCTGAAAAAACGCCTGGAAGAATTGCTCGAGGCGCCATCGCGCGCCACGTTGGAGCAGAGCATCCTGCCAAGCTGGCTGCAAAAGCGCCGCTGGTTCGCCGGCAAGGACAGCGCCATCGAGAACGTCGACATCGTTTATGGCGTGCGCTTCGGCGATCCGCAACACCCTGTGCTGTTGAGCGAAATCGACGTCACCAGCGCCGGCCAGACCTTGCGTTATCAACTCCCATTTGGCCTGCTCGCCGAAGAGCACGTCGGCCCGGCGCTGCCCCAGCAACTGGCCTTGTCGCGGGTTCGTCGGGGTCGCCAGGTCGGCTTGATCACCGATGCGTTCACACTGGAAAACTTCATTCGCGCGGTGCTCCAGGGCATTCAGGCCGGTTCGGTGCTGCCGTGCGCTGACGGTGAATTGCGCTTCGAACCCACCGAAGGTCTGGCGGCGCTGAACCTGGGCGCCGAGCCGGAGGTGCGCTACCTGTCCGCCGAGCAGTCCAACAGTTCGGTGGTGGTGGGTGGCAGCCTGGTGCTCAAATTGATTCGCAAGGTCGCGTCCGGCGTTCACCCGGAACTGGAGATGAGCGCTTACCTGACCGCGGCAGGCTTCAGCAATATTTCGCCGCTGCTGGGTTCGGTGATTCGCCGCGATGCCCAGGGTGAAGATGCCTTGCTGATGATCGCCCAGGGTTACCTGAGCAACCAGGGCGATGCATGGGAATGGACCCAGAACAATCTCGAACGCGCGTTGCGCGACGAATTGGCCGACGCCGTGTCGGAGCAGGAACAGCATTACAACGCCTTGGGCGAACTGAAGGATTTCGCCGGCATGCTCGGCCAGCGCCTCGGGGAGATGCACCAGGTGCTCGCCCAGCCCACCGACAATCCGGACTTCGCGCCCCAGCCTACCAGCGCCAAGGAGGCCCAGGCCATCGGCAAGGACGTGGCCGCTCAGGTGGAAAATGCCTTGCGTCTGCTCAAACAGAACCAGGACCAATTGAACCCAGCGGACCAGGCGATGGTCGCACGCTTGCTGGAACACAGCAAAACCGTGCTGGCCCACGTCCAGGAGCTGGCCGGCAAGGCCGCTGGCGGCTTGCGCATCCGCGTGCATGGCGACCTGCACTTGGGGCAGGTGCTGGTGATCAAGGGCGATGCCTACCTGATCGACTTCGAAGGGGAGCCGGCGCGGCCGTTGCATGAACGACGTGGCAAGCACAGCCCGTACAAGGACGTCAGCGGTGTGTTGCGCTCGTTCGATTACGCGGCGGCGATGGCGGTCCAGTTGCACACCGTCGACAGCACGGCCGATGCCGATGCGGCGCGCAAGCGAGTCGCCGACCGTTATCTGACCGAGGCTCGCCAGGCATTTGTCCAGGCATATCGGCTGGCGGCAGCTAGTCTTGCCCATGAGTGGAAGGATGCTGAAGGCGAGGACGCCGCATTGGCGTTGTTCGGCCTGGAGAAGGCGGCCTATGAAGTGGCTTATGAAGCCGAGAATCGCCCTGCCTGGCTGCCCGTGCCGCTGCACGGCCTGTACGGGTTATTGAGTGGGCTTGAACCCTTTTCCGATTTAGCCGGACCGATTTAG	MAKKPRSATFINDPLWYKDAVIYQVHVKSYFDSNNDGIGDFPGLIEKLDYIADLGVNTIWLLPFYPSPRRDDGYDIAEYRGVSPDYGTMADARRFIAEAHKRNLRVITELVINHTSDQHPWFQRARKAKKGSKARDFYVWSDDDHKYDGTRIIFLDTEKSNWTWDPVAGQYFWHRFYSHQPDLNFDNPQVIKAVLSVMRYWLDMGIDGLRLDAIPYLIERDGTNNENLPETHDVLKLIRAEIDANYPDRMLLAEANQWPEDTQLYFGDVDAQGLNGDECHMAFHFPLMPRMYMALAQEDRFPITDILRQTPEIPANCQWAIFLRNHDELTLEMVTDKERDYLWNYYAADRRARINLGIRRRLAPLMERDRRRVELLNSLLLSMPGTPTLYYGDEIGMGDNIYLGDRDGVRTPMQWSIDRNGGFSRADPASLVLPPIMDPQYGYLSVNVETQSGDPHSLLNWTRRMLAVRKQSKAFGRGTLKMLSPSNRRILAYTREYTGPDGKHEIILCVANVSRSAQAAELDLSAYAGMVPVEMLGGNAFPPIGQLNFLLTLAPYGFYWFALAAENQMPSWHVEPVQSLPDFTTLVLKKRLEELLEAPSRATLEQSILPSWLQKRRWFAGKDSAIENVDIVYGVRFGDPQHPVLLSEIDVTSAGQTLRYQLPFGLLAEEHVGPALPQQLALSRVRRGRQVGLITDAFTLENFIRAVLQGIQAGSVLPCADGELRFEPTEGLAALNLGAEPEVRYLSAEQSNSSVVVGGSLVLKLIRKVASGVHPELEMSAYLTAAGFSNISPLLGSVIRRDAQGEDALLMIAQGYLSNQGDAWEWTQNNLERALRDELADAVSEQEQHYNALGELKDFAGMLGQRLGEMHQVLAQPTDNPDFAPQPTSAKEAQAIGKDVAAQVENALRLLKQNQDQLNPADQAMVARLLEHSKTVLAHVQELAGKAAGGLRIRVHGDLHLGQVLVIKGDAYLIDFEGEPARPLHERRGKHSPYKDVSGVLRSFDYAAAMAVQLHTVDSTADADAARKRVADRYLTEARQAFVQAYRLAAASLAHEWKDAEGEDAALALFGLEKAAYEVAYEAENRPAWLPVPLHGLYGLLSGLEPFSDLAGPI	PGPT0014120_253	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-AMYLASE,PGPT0014120-treS-K05343	NA	NA
D1-36_03122	1998	glgE2	COG0366	Alpha-1,4-glucan:maltose-1-phosphate maltosyltransferase 2	ATGACTGCCGAACAGCCGACCGACCTGGAATACAACCCGCATCTGCCGTTGTCCCAGGCCTTGTTGTTGCCGCGTATTGCGATTGAAGACACCACGCCAGTGATTGACGGCGGGCAATTTGCCGCCAAGGCCCTCGCCGGACAGGACGTGACGGTGACCAGCAAGGTGTTCGCCGATGGCCACGATAAATTGGCCGTGCGAATCCGTTGGCGTGCCTTGGAAGATGACATCTGGAACAGCGAGGTCATGGCCGAGCTGGGTAATAATGGCTGGCGTGGCCAGTTCACAGTACCGGCCGTCGGACGCTACGTGTTCTGTATCGAAGCCTGGCTCGACCAGTTCGCCAGCTTCCGCTATGAATTGGAAAAAAAATACGCCGCCGGTGTGCCCATCAGCCTGGAGCTGCAAGAGGGGCGCAACCACGTGCAACAAGCCGCCGAGCGTAGCGACGGCGAATTGAGCGAACAGCTGGCCGCGTTGCACCACGAGCTTTCGGGCCTGCTGCCTGAAGAGCAAGTGGCGTTGTTTCTCGCGCCACGCAGTGCCGACTTGATGTCCCTGGCCGATCACCGGCCTTACCTGAGCATCAGTCCCGAATATCCACTGGACGTGGAGCGCCAACTGGCCGAATTCGCCAGTTGGTACGAACTCTTCCCCCGTTCGATCACCGATGATCCCAAGCGTCACGGCACGTTCAACGACGTGCATTCGCGCCTGGCGGTGATCCAGGACATGGGCTTCGACGTGCTGTACTTTCCGCCGATCCATCCGATCGGCCGCAGTTTCCGCAAAGGGCCGAACAATTCCCTGACCGCCGGTCCGGACGATCCAGGCAGCCCATATGCCATCGGCAGCGAGGAGGGCGGCCATGAGGCGATCCATCCTCAGCTGGGCACCCGCGAAGATTTCCGGCGCCTGGTGGCCGCGGCCGCCGACCATGGCCTGGAGATCGCCCTCGATTTCGCCATCCAGTGTTCCCAGGACCACCCCTGGCTGCAGCAGCATCCGGGCTGGTTCAGCTGGCGGCCGGACGGCACGATCAAATACGCGGAGAACCCGCCGAAGAAATACCAGGACATCGTCAACGTCGATTTCTACGCCGCCGATGCAATCCCCAGCCTGTGGCTGGAACTGCGGGATATCGTCGTCGGCTGGGTCAACGAAGGCGTGAAGATATTCCGTGTCGACAATCCTCACACCAAGCCGTTGCCGTTCTGGCAATGGCTGATCGCCGACGTTCGTGCGCAGCACCCAGAGGTGATTTTCCTCGCGGAAGCGTTCACCACCCCAGCGATGATGGCGCGACTGGGCAAGGTCGGTTATTCCCAGAGCTACACCTACTTCACCTGGCGTAACACCAAGGCCGAGCTGGCGGCGTATCTCACCGAGCTCAATGAGTCGCCTTGGCGCGAATGCTACCGGCCGAATTTCTTCGTCAACACACCGGACATCAACCCAGCGTTCCTCCACCACTCGGGACGCGCGGGTTTCCTGATTCGTGCGGCGCTGGCGACCATGGGGTCGGGCCTGTGGGGCATGTATTCGGGCTTTGAACTGTGCGAATCGGCGCCGGTGCCAGGCAAGGAGGAGTACCTCGATTCGGAGAAATACGAAATCCGCCCGAGGGATTTCACCGTGCCGGGCAACATCATCGCCGAAATCGCCCAGCTCAACCGTATCCGTCGCCAGAACCCGGCGTTGCACACGCACCTTGGCCTGAAAATCTACAACGCCTGGAATGACAACATTCTGTACTTCGGCAAGCGCACACCGGACGGCAGCAATTTCATCCTGGTGGCGGTGAGCCTCGATCCGCATAACGTCCAGGAAGCGAATTTCGAATTGCCGTTATGGGAGATGGGCCTGCCGGACGACGCCCAGACCCAGGGCGAGGACTTGATGAACGGCCACCGCTGGACTTGGTATGGCAAGTACCAGTTCATGCGCATCGACCCGGCTTACCAGCCGTTCGGGATCTGGCGGATCAGCGTGGCATAA	MTAEQPTDLEYNPHLPLSQALLLPRIAIEDTTPVIDGGQFAAKALAGQDVTVTSKVFADGHDKLAVRIRWRALEDDIWNSEVMAELGNNGWRGQFTVPAVGRYVFCIEAWLDQFASFRYELEKKYAAGVPISLELQEGRNHVQQAAERSDGELSEQLAALHHELSGLLPEEQVALFLAPRSADLMSLADHRPYLSISPEYPLDVERQLAEFASWYELFPRSITDDPKRHGTFNDVHSRLAVIQDMGFDVLYFPPIHPIGRSFRKGPNNSLTAGPDDPGSPYAIGSEEGGHEAIHPQLGTREDFRRLVAAAADHGLEIALDFAIQCSQDHPWLQQHPGWFSWRPDGTIKYAENPPKKYQDIVNVDFYAADAIPSLWLELRDIVVGWVNEGVKIFRVDNPHTKPLPFWQWLIADVRAQHPEVIFLAEAFTTPAMMARLGKVGYSQSYTYFTWRNTKAELAAYLTELNESPWRECYRPNFFVNTPDINPAFLHHSGRAGFLIRAALATMGSGLWGMYSGFELCESAPVPGKEEYLDSEKYEIRPRDFTVPGNIIAEIAQLNRIRRQNPALHTHLGLKIYNAWNDNILYFGKRTPDGSNFILVAVSLDPHNVQEANFELPLWEMGLPDDAQTQGEDLMNGHRWTWYGKYQFMRIDPAYQPFGIWRISVA	PGPT0018610_961	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_COMPLEX_SUGAR_UTILIZATION	PLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018610-glgE-K16147	NA	NA
D1-36_03123	165			hypothetical protein	ATGACCATTCCCATCCCGGCCGAAACACCCGATCCGAACATCGACGACCCCAACCTGCCGCCACCGGGTCCCGATCCCGAGCCGATTCCGGAAAAAGACCCGCCGCTGGACCCGCAGCCGCCCCAGGGCGATCCGCCAAGCGAGGCGCCGCCGGAGCGGTTTTAA	MTIPIPAETPDPNIDDPNLPPPGPDPEPIPEKDPPLDPQPPQGDPPSEAPPERF				NA	NA	NA	NA	NA
D1-36_03124	501			hypothetical protein	ATGGATTCGTGGTGGGATGAAGTCTGGATGACCCTGCAAGCGGAGTTCGCCGACATCGCCGATGCCCAGCAAATGACGCGGGTGACGGTGCGCCTGGTAATGGCTGCACTGTTGGGAGGCATTTTGGGGTTCGAGCGTGAGCACAAGGGCAAGGCCGCCGGGGTGCGCACCCACATGCTGGTGGCGCTGGGCGCCGCGCTGTTCGTGCTGGTGCCGCAAATGTCGGGGTCAGAGGCCGATGCGATGAGCCGGGTGATACAGGGCGTTGTCGCCGGGATCGGTTTCCTCGGCGCCGGTACCATCTTGAAAAACACGGATGCAGATGAAAGCCACGTCAAAGGCCTGACCACCGCCGCGGGCCTGTGGATGACCGCCGCCATCGGCGTCGCCGCCGGGCTCGGCCGGGAAGCGACGGCGGTGCTCAGCACCGTTCTGGCGCTGGCAATCTTCAGTGTGATGCCAGTGATTGTTCGGGCACTGGAGAGGGATGAGAAGCTGTAA	MDSWWDEVWMTLQAEFADIADAQQMTRVTVRLVMAALLGGILGFEREHKGKAAGVRTHMLVALGAALFVLVPQMSGSEADAMSRVIQGVVAGIGFLGAGTILKNTDADESHVKGLTTAAGLWMTAAIGVAAGLGREATAVLSTVLALAIFSVMPVIVRALERDEKL	PGPT0014005_2667	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0014005-mgtC-K07507	NA	NA
D1-36_03125	237			hypothetical protein	ATGACTGTACGTATCGATGACCACCAGACCTGCCATTTCGACACCGCCAACGGGCCGGAACTTCGCCCGGCCAGCGAGCTGACCATCATCACCGACCCGGACAAGGCCATGTCGGCGGTGGAGCTCAATGGCGGGCGGGTCTACCTGACCGAAGCGCAGGTCGATGCCCTGATCGTGGCTGGGGCGGCTGACGGGCGGCAGAATCTGAAGGCGACGGACGGGGATTCGGTCATCTGA	MTVRIDDHQTCHFDTANGPELRPASELTIITDPDKAMSAVELNGGRVYLTEAQVDALIVAGAADGRQNLKATDGDSVI				NA	NA	NA	NA	NA
D1-36_03126	1413			hypothetical protein	ATGAGCGAAAGAATCCCCGCCCAACTGATACAGACCTTCGACCCCACGCCCACAAAAACAAAGTCCAGAACCACCGACAACCTGATCCACACCCGCAGCTTTACCGGCTTGTTCCGCACCTTGCGCATCAGCGGTGCCGGCATTCTGTTCCTGTTGTTCTTCGGCACGGTATGGCTGAACTGGGGCGGCCGCCAAGCGGTGCTCTGGGACCTTTCCGAGAGCAAGTTCCACATCTTCGGCGCGACCTTCTGGCCCCAGGATTTCATCCTGCTGTCCGCCCTGCTGATCATCGCCGCGTTCGGCCTGTTCGCCATCACCGTGTTCGCCGGGCGCGTGTGGTGTGGCTACACCTGCCCCCAAAGCTCATGGACCTGGATCTTCATGTGGGTCGAGAAAATCACCGAAGGTGAACGCAACCAGCGCATCAAACTCCAAGCCGCGCCGTGGGACTTGAACAAACTCCTGCGGCGCTCGGCCAAGCACACCTTGTGGCTCGTCATCAGCCTGCTCACCGGCCTGACATTCGTCGGTTATTTCACCCCGATCCGCCCCCTGGCCGAGGAACTGCTGACCTTGCAGATCGGCGGCGTCAGCCTGTTCTGGGTGCTGTTTTTCACTGCGGCCACTTACCTCAACGCCGGCTGGCTGCGCGAAGCGGTGTGCATGCACATGTGCCCTTACGCACGGTTCCAGAGCGTGATGTTCGACAAGGACACCTTGACCATTTCCTATGACGTGGCCCGTGGTGACATTCGCGGGCCACGCAAACGCGAGGTCAATCCCGCCGATGTCGGACTGGGTGACTGCATCGACTGCCAGATGTGCGTGCAGGTCTGCCCCACCGGCATCGATATCCGCGATGGCTTGCAAATGGAATGCATTGGTTGCGCGGCGTGCATCGACGCCTGCGACTCGATCATGGACAAGATGGGCTACGCCCGTGGCCTCATCAAGTACACCTCCGAGCATCAACTGCAAGGAGGCAAGACACATCTGCTGCGGCCACGGCTGGTGGGCTACACGGCGGTGCTGCTGTTCATGATCGGTGCCCTGGCGGTGGCGCTGGCGGAGCGCCCCATGGTGTCGCTGGATGTCAGCAAGGACCGTGGGCTGTTCCGTGAAAACAGCCAGGGCCAGATCGAAAACATCTATAGCCTGAAAATCATCAACAAGACCCAGCAACACCAGGCGTATGAATTGTCCCTGGTGGACGGCGACGGCTTTGTCCTGCAAGGCAAGACACGCCTGAGCCTGGCGCCGGGGGAAATCGTCGACGTGCCAGTCTCGGTGGCGATGCTCAGCGAACGGCCACGCAGCGGTTCCCAGGAAATGACCTTCAAGGTTGCCGACAGTGACGAGCAGCAAGTCTACAGCGTGGCCAAGAGCCGTTTTGTCGCGCCGATGAATCGGTGA	MSERIPAQLIQTFDPTPTKTKSRTTDNLIHTRSFTGLFRTLRISGAGILFLLFFGTVWLNWGGRQAVLWDLSESKFHIFGATFWPQDFILLSALLIIAAFGLFAITVFAGRVWCGYTCPQSSWTWIFMWVEKITEGERNQRIKLQAAPWDLNKLLRRSAKHTLWLVISLLTGLTFVGYFTPIRPLAEELLTLQIGGVSLFWVLFFTAATYLNAGWLREAVCMHMCPYARFQSVMFDKDTLTISYDVARGDIRGPRKREVNPADVGLGDCIDCQMCVQVCPTGIDIRDGLQMECIGCAACIDACDSIMDKMGYARGLIKYTSEHQLQGGKTHLLRPRLVGYTAVLLFMIGALAVALAERPMVSLDVSKDRGLFRENSQGQIENIYSLKIINKTQQHQAYELSLVDGDGFVLQGKTRLSLAPGEIVDVPVSVAMLSERPRSGSQEMTFKVADSDEQQVYSVAKSRFVAPMNR				NA	NA	NA	NA	NA
D1-36_03127	1425	norG_4	COG1167	HTH-type transcriptional regulator NorG	ATGACCGGGCCCGCCATGAAACGCTACGAAAAATTCGCCGACGACATCGCTGAACTGATCCGCTCCGGCATGCTGGGGCCCGGCCAGCGCGTGCCGTCGGTGCGCTACGCCAGCCAAACGTACGGCGTCAGCCCGTCCACTGTTTTCCAGGCCTATTACCTGCTGGAGCGACGCGGCCTGATCCGGGCCCGGCCGCGTTCCGGTTATTTCGTCAATAATCTTGCACCGCGCCCGTTCTGCGAGCCGGTCATCAGCAGCCAGGTGCAAGAGTCCACTGAAGTCGATGTCAGCGAACTGGTGTTTTCGGTGCTCGACTCGATCAAGGATCCCGCCACCGTACCGTTCGGCTCTGCATTCCCCAGCCCCATGCTGTTTCCGTTGCAGCGGCTGTCCCGCTCGTTGTCCAGCGCGACCCGGGACATGGACCCACGCGTGGTGGTGACCGACATGTCACCGGGCAATCCTCAACTGCGCCGCCAGATCGCCTTGCGCTATATGGTCGGTGGGCTGATGTTGCCCATGGAGCAATTGCTGGTCACCAACGGCGCCCTGGAAGCCTTGAACCTATGCCTGCAAGCGGTGACCGAGCCCGGCGACCTCGTGGCGATCGAAGCCCCTGCGTTCTATGCCAGCCTGCAAGTGCTGGAAAGGCTGAAGCTCAAGGCCGTGGAAATCCCCGTGCATCCGCGTGACGGGATCGACCTGGACGTGCTGGAACAGACGCTGGCGCGCCATCCGATCAAGGCGTGCTGGTGCATGACCAGCTTCCAGAACCCCATGGGCGCCACCATGCCCGAGGCGCGCAAGCAAGCGTTGGTGGAGCTGTTGCGCCAACACCAGGTGCCGTTGATCGAGGACGACGTCTATGCCGAACTCTATTACGGCCAGCAGGCTCCCAAACCAGCCAAGGCGTTCGACACCGAAGGGTTGGTGATGCATTGCGGTTCGTTCGCCAAGAGCCTGGCCCCGGGTTATCGCGTCGGCTGGGTCGCCGCCGGGCGCTATGCGCAGAAGATCGAACGGCTCAAGCTCATGACATCCCTGTGCGCCTCGATGCCGGCCCAGGCCGCGATCGCCGACTACCTGCAACACGGCGGCTACGACCGGCACCTGCGCAAGCTGCGCTACGCCCTGGAAGAACAGCAAAGCGCCATGCTCGCCGCCATCGGCCGCTATTTCCCGCCCCAGACCCGCGTCAGCCAGCCGGCGGGCGGCTATTTCCTCTGGCTGGAACTGCCGGAGCAGATCGACTCGCTGAAGCTGTTCCAGATGGCATTGGCGCAAGGCATCAGCATCGCCCCCGGGCCGATCTTTTCACCGACCCAACGTTTCAGGAATTGCATCCGGCTGAACTATGGCGGGCCTTGGACTGAGGCGTCGGAAAAGGCGATGGAGACATTGGGGCGGATTATCCGGTCGTTCTAA	MTGPAMKRYEKFADDIAELIRSGMLGPGQRVPSVRYASQTYGVSPSTVFQAYYLLERRGLIRARPRSGYFVNNLAPRPFCEPVISSQVQESTEVDVSELVFSVLDSIKDPATVPFGSAFPSPMLFPLQRLSRSLSSATRDMDPRVVVTDMSPGNPQLRRQIALRYMVGGLMLPMEQLLVTNGALEALNLCLQAVTEPGDLVAIEAPAFYASLQVLERLKLKAVEIPVHPRDGIDLDVLEQTLARHPIKACWCMTSFQNPMGATMPEARKQALVELLRQHQVPLIEDDVYAELYYGQQAPKPAKAFDTEGLVMHCGSFAKSLAPGYRVGWVAAGRYAQKIERLKLMTSLCASMPAQAAIADYLQHGGYDRHLRKLRYALEEQQSAMLAAIGRYFPPQTRVSQPAGGYFLWLELPEQIDSLKLFQMALAQGISIAPGPIFSPTQRFRNCIRLNYGGPWTEASEKAMETLGRIIRSF	PGPT0026010_15	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0026010-mucR-K21023	NA	NA
D1-36_03128	747	ygfF_2		putative oxidoreductase YgfF	GTGGATAAAGTCATCGTCATCACTGGTGGCGGGCGCGGGATCGGAGCGGCCACGGCGCTGCTGGCGGCGGATCAGGGCTATCACATCTGCATCAACTACCAGTCCGATGAAAACGCCGCTCAGGACATCCTCGAACAGGTCCGGGCCAAGGGCGCGCAGGCCATTGCGGTGCGGGCCGACGTGAGCATCGAAGATGAGGTGGTCGGCCTGTTCAACCGCGTCGACGCCGAATTGGGCCGTGTCACCGCCCTGGTGAACAACGCCGGTACGGTCGCCCACAAATCCCGGCTCGATGAAATGTCCGAGTTCCGCATTCTCAAAATCTTGAAGACCAATGTGCTGGGGCCGATCCTGTGTGCCAAGCATGCGGTGCTGCGCATGTCGCCCCGCCATGGCGGGCAGGGCGGTAGCATCGTCAACGTCTCGTCGGTTGCCGCCCGCTTGGGCGCGCCGGGGGAATACGTCGACTACGCGGCCTCCAAGGGCGCACTGGATACCTTCACCGTAGGCCTGTCCAAGGAAGTGGCCGGCGAAGGCATTCGCGTCAACGCCGTTCGCCCGGGTTATATCTACACCGATTTCCACGCCCTCAGTGGTGATCCTGAGCGGGTCAGCAAGCTGGAATCGGCGATTCCCATGGCGCGAGGCGGGCGTCCGGATGAGGTGGCGGAGGCGATTATCTGGTTGCTGTCGGACAAGGCTTCGTATGCGACGGGGACGTTTGTTGACCTTGGTGGTGGGCGCTGA	MDKVIVITGGGRGIGAATALLAADQGYHICINYQSDENAAQDILEQVRAKGAQAIAVRADVSIEDEVVGLFNRVDAELGRVTALVNNAGTVAHKSRLDEMSEFRILKILKTNVLGPILCAKHAVLRMSPRHGGQGGSIVNVSSVAARLGAPGEYVDYAASKGALDTFTVGLSKEVAGEGIRVNAVRPGYIYTDFHALSGDPERVSKLESAIPMARGGRPDEVAEAIIWLLSDKASYATGTFVDLGGGR				NA	NA	NA	NA	NA
D1-36_03129	900			hypothetical protein	ATGAGTTACTACCAGCCCGGCATTCTCGCCACCCCTGTTCCGCCTCAGGCCCGTCATCTGTTTTTTGCCCTGGAATCGGTCGAGGCACTGCCGGCTGCGATCGATAAATTGTTGCTGCAATTGGATGGCCGCGCGGTTGTCGGGTTTGGCGAGTCGTTGGTGCAAGCGTTGGGCGCCGAGGTCAAGGGGCTGCGGGCATTTCCTGCCCTGGCCGGTGTCGGCGTCGATAATCCCTCGACCCAGCACGCGCTGTGGTGCTGGTTGCATGGCGAGGATCGCGGCGAGCTGCTGCACCGCAGCCGCGCCATCGAAGCGGCCCTGGCGCCGGCCCTGCGCCTGGTGCAAATGAACGAAACCTTCCGCCATATGACCGGCCACGACCTGACCGGCTACGAAGACGGCACCGAGAACCCCCACGATGACGCGGCCGTCGCCGCTGCCCTGGCCCAGGGCGCCGACGGACTGCGCGGTGGCAGCTTCGCCGCGATCCAGCAGTGGCAGCACGATCTGGACGGGTTCGCGGCGATGCAGCCCCACGAACGCGACAACATCATGGGCCGTCGCTTGAGCGACAACGAGGAAATCGAAGAGGCGCCGGAGTCGGCCCACGTCAAGCGCACGGCCCAGGAAAGCTTTGCACCGGAGGCTTTCGTCGTGCGCCGTTCCATGCCGTGGATCGAAGGCGATCGCGCTGGGCTGATGTTCCTGGCGTTCGGTTTCTCCCTGGATGCCTTCGAAGCGCAACTGCGCCGCATGAGCGGCCTCGAAGACGGCATTACCGATGGTTTGTACCGCATGAGCCGGCCGATCACTGGCGGGTATTACTGGTGCCCGCCGCTGCTGGACGGGCGCCTGGACCTGCGCGCACTGGCTCGCCAGTCGGTGTCATCGCCCCGGTAA	MSYYQPGILATPVPPQARHLFFALESVEALPAAIDKLLLQLDGRAVVGFGESLVQALGAEVKGLRAFPALAGVGVDNPSTQHALWCWLHGEDRGELLHRSRAIEAALAPALRLVQMNETFRHMTGHDLTGYEDGTENPHDDAAVAAALAQGADGLRGGSFAAIQQWQHDLDGFAAMQPHERDNIMGRRLSDNEEIEEAPESAHVKRTAQESFAPEAFVVRRSMPWIEGDRAGLMFLAFGFSLDAFEAQLRRMSGLEDGITDGLYRMSRPITGGYYWCPPLLDGRLDLRALARQSVSSPR	PGPT0013090_1363	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013090-yfeX-K07223	NA	NA
D1-36_03130	1146	ampC		Beta-lactamase	ATGCACATTGCCAAATCGATACTCGCCGGGAGCTTTTTCCTGATCCTTTCTTTTACCGGCGTCGCCCAGGAACGCCTTGAAGAAACTGTCGATGCCGTTATCCAGCCCCTGATGAAACAGCAGGACATCGCGGGGATGGCGGTGGCGATCACCCACAACGGCCAGCGCCAGTTCTTCAATTATGGCGTTGCCTCCAAGGACACGAGAAAGCCCGTCACCGACCAGACCCTGTTCGAAGTCGGCTCGATCAGCAAGACCTTCACCGCCACGCTCGGCGCCTATGCCCAGGCCCAAGGCAAGTTGCAATTGTCGGATCCCGCCGGTCGCTATGCCCCGCAGCTGAACGGAGCAGCGCTGGCAAACACCCGCCTGCTTGATCTCGCTACCTACACGGCGGGCGGGCTGCCTTTGCAGTTTCCCGACGATGCAGACCATGCCGACAGGATGTTCAGCTATTACAAGTCCTGGAAACCGCTCTACCCGACCGGCACCCAACGGCTCTACTCGAACCCGAGCATCGGCCTGTTTGGCCATCTGGCGGCCCGCGCCCTGGGTCGGTCATTCGATGACGTGATGGAACAAACGCTGATGCCGGGGCTGGGCCTCAAACACAGTTATGTACGGGTGCCGCAAGACCAATCGGGCCGATACGCCCAGGGCTATGCAAAGGATGGCAAGCCCGTGCGGGTCGGACCTGGCGCCTTGGATTCCGAGGCGTATGGGGTGAAGACCAGCTCAGCGGACCTCATTCGTTTCGTCGAGGCCAACCTGCGACCGCAAAAGCTGGACGAAGCCTTGAAGCAAGCCATCGCCACGACCCACATGGGTTTCTATCGGGTCGGCGGGATGACCCAGGGCTTGGGCTGGGAGTTCTACCCTGCCCCGTTCACCGTGGATGACCTGCTCGCCGGCAATACCCCGCAGATGGCCCTGACCCCACAGAAAGTCGAACCGCTCAACCCGCCCCGCCTGGCGCCGGACGGCAGCTGGATCAATAAGACAGGCTCTACCAACGGCTTTGGCGCATACGCGGCGCTCGTGTCTGGAAAGGATTTGGGGATCGTGATGTTGGCGAACAAGAACTACCCGATCGAAGAACGGATAAAGGCCGCGCACAAAATCCTGGCGGCATTGGAACGACAATGA	MHIAKSILAGSFFLILSFTGVAQERLEETVDAVIQPLMKQQDIAGMAVAITHNGQRQFFNYGVASKDTRKPVTDQTLFEVGSISKTFTATLGAYAQAQGKLQLSDPAGRYAPQLNGAALANTRLLDLATYTAGGLPLQFPDDADHADRMFSYYKSWKPLYPTGTQRLYSNPSIGLFGHLAARALGRSFDDVMEQTLMPGLGLKHSYVRVPQDQSGRYAQGYAKDGKPVRVGPGALDSEAYGVKTSSADLIRFVEANLRPQKLDEALKQAIATTHMGFYRVGGMTQGLGWEFYPAPFTVDDLLAGNTPQMALTPQKVEPLNPPRLAPDGSWINKTGSTNGFGAYAALVSGKDLGIVMLANKNYPIEERIKAAHKILAALERQ	PGPT0028115_670	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028115-ampC-K01467	NA	NA
D1-36_03131	558			hypothetical protein	ATGCTTATTCGGTCGTTGACCTTCGCTACCTTGCTGGCCTTTGCTGGCCCCTTGTTCGCCGCTGATGGCGACTCGCCCCTGGTGGCGGAGGTGGGCAAGACCCGCCCCTTGATCATTATCGCGCCCAGCTCCGTCGACCCTGCATGGTCCACGTTGAAAGCAGAGCTCGAAAAGCCAGAGGGCAAGCAGGGATTCTCCGAACGCAACATGATGCTCTACACCGTTTTCAACACCATCGGGAAACGTGATGGCAAGGATTTGGACCCGCAAAGCACCATGGCACTGATCCGTTCTCTCAAGCTGGGAGCCGGTGCGCTGCCCAAGATCATCCTGGTGGGCAAGGATGGGGAAAAGAAGCTTGAGCATTCCGGCGCGATCACATTGAGCGAGCTGTTCGATGCTGTCGACAAATTGCCTGCGGCTGAAAAGGAAGCCGTGGCGCCAACCCCGCTACCCGAGCCAGAACCCGCGCCGGCCAAGGACGCGAAAGGCGCCAAGCCGGGCAAGGCGGCCAAGCCCACCAAGCCCGCGGCCGCGCCGAAGGCGCTGGAGGATTGA	MLIRSLTFATLLAFAGPLFAADGDSPLVAEVGKTRPLIIIAPSSVDPAWSTLKAELEKPEGKQGFSERNMMLYTVFNTIGKRDGKDLDPQSTMALIRSLKLGAGALPKIILVGKDGEKKLEHSGAITLSELFDAVDKLPAAEKEAVAPTPLPEPEPAPAKDAKGAKPGKAAKPTKPAAAPKALED				NA	NA	NA	NA	NA
D1-36_03132	1359		COG1926	putative protein	ATGAACAGCCCAGCCAGAGATCTGCTGCAACGCCTGCGCCGTCGTCGCGTCGAACCTCGCTCCGACATCGCCGACATTCTGCGTCATCACGCCGAACCGCTGCCCGCCGAGGACAGCCCGGCGTTTGGCGAGATGTTCGATCGCTTTGCCGACGCGAAGGTCTTGCTGATCGGCGAAGCCAGCCACGGCACCCATGACTTCTACCGCACCCGCGCGGCCATCACCCGGCACATGATCGAGCATCACGGCTTCGGGATCGTCGCCGTCGAAGCCGACTGGCCCGACGCCGGGCAAATCGACCGCTGCGTGCGTGACCTCGGACCCTCGGCCTGGAAACAGCAGGCTTTCGCCCGGTTTCCAAGCTGGATGTGGCGCAACACCGACGTACAGTCCTTCGTCCGCTGGTTGCGCGATTACAACCTGGAGCAGCCGGGCGATCGGCGCGTGGAGTTTCGCGGCCTCGACGTCTACAGCTTGCGGCACTCGATCGACGAAGTGCTCAACTACCTCGATAAGGCACACCCCCACCTGGCCCGCGGCGCCCGGCATCGTTATGGTTGCCTGACGCCTTGGCACGACGACCCGGCGCTTTACGGTCATTTCACCGAACGCGGCAACCTGGCGACCTGCGAGGACGCGGTGGTCGAGCAGCTCAATACGCTGCTCGCCGAGCGCCTCGATCCCCTGATCGAGGATGACGAGAGTTTCTTCAGCGCCATCCAGAACGCCCGGGTCGTGCGCGCCGCCGAACAGTACTACCGGGCCATGTATCGCGGCGGAAAATCGTCCTGGAACCTGCGGGACCGGCACATGTTCGACACCCTGCAGAGCCTGATGGAACATCGTGGCCCCGATGCGAAAGCGGTGGTCTGGGCGCACAACTCCCACATCGGCAATGCCGCCGCGACTCGCATGGGTTGGGAAGGTGAATTCAATATCGGCCAGTTATGCCGCATGGCTTACGGCCGCGACGCGGTGCTGCTGGGCATGGGCACCAATCGTGGCAGCGTGGCGGCGGCCGACGATTGGGACTCACCGATGAAAATCAAGCAGGTGCTGCCCGCGCTGGCCGGCAGTTGGGAGCGGGAATTCCTGAATACGGGTGTTCGCGCATCGCTCACGGACTGGCGGACTAATCCTGACGAGGCACTGCTGGACGCATTGTCCGAGCCCCTGCTCGAACGCGCTATCGGCGTGATCTACCGCCCTGAAACCGAACGCCAGAGCCATTACTTCGAAGCCGTATTGGCCGAGCAGTTCGATGCCTGGCTCTGGTTCGAGCAGACCGAAGCGGTCACGCCATTGCCAACACCTCACACGCTTGAGCACGAGGAAGACACCTTCCCATTCGGCCTTTGA	MNSPARDLLQRLRRRRVEPRSDIADILRHHAEPLPAEDSPAFGEMFDRFADAKVLLIGEASHGTHDFYRTRAAITRHMIEHHGFGIVAVEADWPDAGQIDRCVRDLGPSAWKQQAFARFPSWMWRNTDVQSFVRWLRDYNLEQPGDRRVEFRGLDVYSLRHSIDEVLNYLDKAHPHLARGARHRYGCLTPWHDDPALYGHFTERGNLATCEDAVVEQLNTLLAERLDPLIEDDESFFSAIQNARVVRAAEQYYRAMYRGGKSSWNLRDRHMFDTLQSLMEHRGPDAKAVVWAHNSHIGNAAATRMGWEGEFNIGQLCRMAYGRDAVLLGMGTNRGSVAAADDWDSPMKIKQVLPALAGSWEREFLNTGVRASLTDWRTNPDEALLDALSEPLLERAIGVIYRPETERQSHYFEAVLAEQFDAWLWFEQTEAVTPLPTPHTLEHEEDTFPFGL	PGPT0027980_349	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0027980-ereA_B-K06880	NA	NA
D1-36_03133	786			hypothetical protein	ATGGATTTCGGTAATTTCGGTTTAGTCGTAGCGGGCCTGGTGGTCGGTTTCATCGTCGGGATGACCGGCGTGGGTGGCGGATCGCTGATGACCCCCATTCTGCTGTGGTTCGGCATCAACCCCGCGACGGCGGTGGGTACGGACCTGCTGTACGCGGCCATTACCAAATCCGGCGGCGTGCTGGTTCACGCCAAGAACCGCAATATCGACTGGTCCATCACCGGTTGGCTGACCTTGGGCAGCGTGCCGGCGGTCGGGCTGACCCTGTGGTTCCTCAGCAGCCTGAACAGCTCGCCAGACGCGATGAACGCAGTCATCAAGCAAGCACTGGGTTTTGTGTTGTTCGCCACTGCCCTGGCGATCCTGTTCAAGAAACGCCTGCTCCAATTCGCCCACGATCGCGCCGGCGGCCACTACAACCCCAGCGGCTCACGGCTCAACGTACTCACTGTGATTACCGGCTTGGTGCTGGGCACGATGGTCGCGTTGACCTCCATCGGCGCCGGCGCCCTGGGCACTGTCGCGCTGTTCATCCTCTATCCGTTCCTGGTCACCAGGCGCCTGGTGGGGACCGAGATCGCCCACGCCGTGCCGCTGACCCTGGTGGCCGGCCTGGGCCACGCAAGCATGGGCAACATGGACTGGCACATCCTCGGCTTCTTGCTGATCGGTTCACTGCCGGGCATTTACCTGGGCAGCCATTTGTCGGGACGTATTTCCGATGAACTCCTGCGCCCTTGCCTGGCGGTGATGTTGGCGATGATCGGCTTCAAACTGGCGTTCTGA	MDFGNFGLVVAGLVVGFIVGMTGVGGGSLMTPILLWFGINPATAVGTDLLYAAITKSGGVLVHAKNRNIDWSITGWLTLGSVPAVGLTLWFLSSLNSSPDAMNAVIKQALGFVLFATALAILFKKRLLQFAHDRAGGHYNPSGSRLNVLTVITGLVLGTMVALTSIGAGALGTVALFILYPFLVTRRLVGTEIAHAVPLTLVAGLGHASMGNMDWHILGFLLIGSLPGIYLGSHLSGRISDELLRPCLAVMLAMIGFKLAF				NA	NA	NA	NA	NA
D1-36_03134	750			hypothetical protein	ATGGCCGGTGTTTTACTTTCCGTGATGGTGTCGCCACGCCGCAGCAACCTGCTGTTGGTGGGCCTGTTGCTGTTGCTCAGCGGCGGCTGCACCCACCAGCAAGGCCAGGACATGGTTACGCAGTTCAGCAACGCCAAGCCCCAGGAATTCTTGCAGACCAGCGTGGACCGGATGGCCACGCTCTCGATGCACGACAACTTGCAGAGCCTTTACCTGCTGATGCACAAACTTTACCTGCGCAACCCGGAAGAATTGCGCAAGTCGGGCTTCCTCGACGTCCGCGTCGCCGTCAAGCAAGTGCGCCAAGCCATCGAGCAACAGCAGCCCTTGCCGACCTTGGGCAATAAAAAGGACCTGGCGGCCCTGAGCTATGCCATGAGCCCCGAGTTCCTTGGTGATAGGGTCGGTGCGTTCATCTACGCCATTGGCAGCATGCTGGTCACGGCCCACGGCAATCGCCTGGAGTTCTACATGACCGACACCATCGATCCGCGCTTCGTCAGCAACGCTGCGCGCAACATCGAAAAGGCAACCTGGTTGCTGGGCCAGCGGCAGAACAAGGACGGCTCGCCGATGCTGTTTTCCAACGAAATCTCGGAGGAGGGCAGCAACCTGAGCTTTGCCGTCGAGTTCGGGAAAATCGTTGCACGCCTGGACCTGCTGACGCAGATGCTCGACGAGCGCTACCGGCGGATAGGGCTCAACTATGCACAGAGCCTGCTGTTCCTCAATTTCCTGCCCGTCCAGTGA	MAGVLLSVMVSPRRSNLLLVGLLLLLSGGCTHQQGQDMVTQFSNAKPQEFLQTSVDRMATLSMHDNLQSLYLLMHKLYLRNPEELRKSGFLDVRVAVKQVRQAIEQQQPLPTLGNKKDLAALSYAMSPEFLGDRVGAFIYAIGSMLVTAHGNRLEFYMTDTIDPRFVSNAARNIEKATWLLGQRQNKDGSPMLFSNEISEEGSNLSFAVEFGKIVARLDLLTQMLDERYRRIGLNYAQSLLFLNFLPVQ				NA	NA	NA	NA	NA
D1-36_03135	1104	mro	COG2017	Aldose 1-epimerase	ATGATTGCCACCTCTTCACAGGCCGCCGGCCTGACCAACGAACGCGTTGCTTTCGGTAAGACCGACGACGGCACGGCGGTTGAAAAATATGTGTTGCGCAACAGCAACGGCATGGAGGCTACCGTCATCACCTATGGCGGGATTCTCCAGTCGCTGATCGTGCCGGACAAAAACGGCATGACCGACGACATCGTGCTCGGCTTCGACGATGTCCAGGGCTACCAGAAGAATGGCAATGTATATTTCGGCGCGACCATCGGCCGCTTCGGCAATCGCCTGGCTGGCGGCGCGTTCGAGTTGGATGGCAAGCGCTACCAGGTGCCGCAGAACGACAAGGACAATTCGCTGCACGGCGGGCCGCAAGGGTTCGACAAGCGTGTCTGGAAAGCCGAGCCGAGCAACGACAAGGACTCGGTCGGCGTGACCCTGACTTACCTGTCGAAGGACGGCGAGATGGGGTTTCCCGGCAATCTGAAGACTGACGTCACCTACAGCCTCAACGACAAGAACGAACTGCGCATCGACTACAAGGCCACCACTGACAAACCGACCGTACTGAACCTGACCAACCACAGTTATTTCAACCTGGCGGGTGCAGGCAATGGCGACATCCTCAAGCAAGTCGCGACCTTGCACGCGTCCCGCTACACACCGGTGACCGCCAAGCTGATTCCCACCGGCGAGCTGGCGCCAGTGGCCGGCACGCCGATGGACTTTACCAAGCCAACCGCCATCGGCACCCATATCAAAGCCGATCATCCGCAGTTGAAGTTCGCCGAGCCAAAACAGGGTGGGTTTGACTTCAACTGGGTGCTCGACGCCAAGGGTGACGTAAACAAACTCGCCGCCGACGTCCAGGATCCGAAGTCCGGGCGACGGCTGCAGCTCTTTACCACCGAACCCGGTGTGCAGTTCTACACCAGCAACTTCCTCGATGGCACGGTCAAGGGCAAGCAAGGCAAGGTCTATCCGCACTGGGGCGCGTTTACCCTGGAGACCCAGCACTTCCCCGACTCGCCGAACCAGCCGGACTTCCCGACCACGCGGCTGGATCCGGGCCAGACCTACACCCAGGCCATGGTGCTGAAGTTCTCGGCGGAATAA	MIATSSQAAGLTNERVAFGKTDDGTAVEKYVLRNSNGMEATVITYGGILQSLIVPDKNGMTDDIVLGFDDVQGYQKNGNVYFGATIGRFGNRLAGGAFELDGKRYQVPQNDKDNSLHGGPQGFDKRVWKAEPSNDKDSVGVTLTYLSKDGEMGFPGNLKTDVTYSLNDKNELRIDYKATTDKPTVLNLTNHSYFNLAGAGNGDILKQVATLHASRYTPVTAKLIPTGELAPVAGTPMDFTKPTAIGTHIKADHPQLKFAEPKQGGFDFNWVLDAKGDVNKLAADVQDPKSGRRLQLFTTEPGVQFYTSNFLDGTVKGKQGKVYPHWGAFTLETQHFPDSPNQPDFPTTRLDPGQTYTQAMVLKFSAE	PGPT0017825_664	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
D1-36_03136	822	dkgB	COG0656	2,5-diketo-D-gluconic acid reductase B	ATGAGAACTCTGGAGTTGGCCGGCGTGTCCGTGCCGGTAATCGGCCAGGGCACTTGGCGCCTGGGTGAAGAACCGTCCCATCACAAAAAAGAAGTGGCTGCCCTGCGCTTGGGCATTGAAATGGGCATGACCCTGATCGACACCGCCGAAATGTATGCCGAGGGCGGCGCCGAAAAAGTCGTTGGCGAAGCGATCACCGGGCTGCGTGACCAAGTGTTTCTGGTGAGCAAAGTCTACCCCCACAACGCCAGCCGCAAAGGCATTCCGCTGGCCTGCGAGCGCAGCCTGCGGCGGCTCGACACCGATTACATCGACCTTTATCTGCTGCACTGGCGTGGCCAATACCCGCTGGAAGAAACCGTCGAAGCGTTTGAACGACTTCGCGAAGAAGGCAAGATCGGGCGCTGGGGCGTGTCGAATTTCGACGTGGACGACATGGAAGAACTGAACGCGCCCGACTGCGCCACCAACCAGGTGCTGTACAACCTGCAGGAGCGCGGCATCGAATACGACCTGCTGCCCTGGAGCCAGCAACGGCGCATGTCGATCATGGCCTACTGCCCGGTCGGCCAGGGTGGGCAGCTGCTCAGGGATCACACCATGCAACAAATCGCCGAGCGCCACCGCGCGACACCGGCGCAGATTGCCCTGGCCTGGCTGTTGCGCCAGGACAATGTGATCGCCATTCCCAAGGCCGTGCAGCCTGAACATGTGCGCCTGAATGCCGAAGCGGCGAATCTGCAACTTGAGTCCCAGGATCTGGCGGCACTGGACCTGGTGTTTCCCAAGCCCCAGGGCAAGCAGCGGTTGGCGATGGTTTAG	MRTLELAGVSVPVIGQGTWRLGEEPSHHKKEVAALRLGIEMGMTLIDTAEMYAEGGAEKVVGEAITGLRDQVFLVSKVYPHNASRKGIPLACERSLRRLDTDYIDLYLLHWRGQYPLEETVEAFERLREEGKIGRWGVSNFDVDDMEELNAPDCATNQVLYNLQERGIEYDLLPWSQQRRMSIMAYCPVGQGGQLLRDHTMQQIAERHRATPAQIALAWLLRQDNVIAIPKAVQPEHVRLNAEAANLQLESQDLAALDLVFPKPQGKQRLAMV				NA	NA	NA	NA	NA
D1-36_03137	2364	polB	COG0417	DNA polymerase II	GTGGATCTACAGCAGGGCTTCGTCCTGACCCGGCATTGGCGCGATACCCCGGCGGGCACCGAAGTCGAGTTCTGGCTGGCGACCGATGCCGGCCCCCGGCGCGTGCGCCTGCCGGTGCAGCCTTCGGTGGCGTTCGTGCCGCAAGTGCAGCGCGGCCAGGCCGAAGCGCTGTTGCAAGGGGAGAAGGACATCGAGCTGCGTCCCCTGGACCTGCTGGATTTCGAGCATCGCCCGGTGCTGGGCCTGTATTGTCGACAGCATGGACAACTGATGCGCCTGGACACCACGCTGCGGCGCGCCGGCGTGGACGTGTTCGAAGCTGATATCCGGCCACCGGAGCGCTACCTGATGGAGCGCTTCATCACCGCCCCGGTGTGGTTCGGTGGCACGCCATCGGCCGACGGCGTGCTGCTCGACGCCCAGATGAAACCGGCTCCCGAGTACCGCCCACCGCTGCGGCTGGTGTCCCTGGACATCGAAACCACCGCCCAGGGCGATTTGTACTCCATCGCCCTGGAAGGCTGCGGCGAGCGACAGGTCTATATGCTCGGTCCACCGAACGGCGATGATCGCGACGTTGATTTCCAACTCGAATATTGCGAATCCCGAACGCTGCTGCTCAAGAAGCTCAATGAGTGGTTTGCCCGCTTCGACCCCGACGCGATCATCGGCTGGAACCTGGTGCAGTTCGATTTGCGCGTGCTGCATGAGCATGCTCGTCGGTTGGCCGTACCGCTGCGCCTGGGGCGTGGCGGTGAGGAAATGCAGTGGCGCGAGCATGGCGCGCGCAACAATCATTTCTTCGCCTCGGCGGTGGGCCGGTTGATCATCGACGGGATCGAGTCCTTGCGTTCGGCGACCTGGAGTTTCCCGTCGTTCAGCCTGGAGAACGTCGCGCAGACCCTGCTGGGCGAAGGCAAGTCCATCGACAACCCGTACCAGCGCATGGACGAGATCAACCGCATGTTCGCCGAGGACAAGCCGGCCCTGGCCCGCTACAACCTCAAGGACTGCGAGCTGGTGACGCGCATTTTCGCCAAGACCGATCTGCTCGAGTTCCTGCTGGAGCGCGCCAGCGTCACCGGCCTGCCGGCCGATCGCAGCGGTGGTTCGGTGGCGGCGTTCACGCACCTTTACATGCCGCTGATGCACCGCCAGGGCTTCGTTGCGCCGAACCTCGGCCAGCGTCCGCCCGAGGCCAGCCCTGGCGGGTTCGTCATGGATTCCCAGCCGGGGCTCTACGAATCGGTGCTGGTGCTCGACTACAAGAGCCTGTACCCGTCGATCATCCGCACCTTTCTGATAGACCCGGTGGGCCTGATCGAGGGGCTGCGCCATCCGGGCGAGCACGAGTCTGTCCCAGGCTTTCGCGGGGCGCGGTTCTCCCGTACCCGACACTGCCTGCCGTCCATCGTGGCGCGGGTCGCTGAAGGCAGGGAGACCGCCAAGCGCGAACATAACGCGCCCTTGTCCCAGGCGCTGAAGATCATCATGAACGCGTTTTATGGAGTGCTCGGCTCCAGTGGCTGTCGCTTCTTCGACCCGCGCCTGGCGTCGTCCATCACCCTGCGCGGTCATCAGATCATGCAACGCACCCGGCAGTTGATCGAAGCCCGGGGGCATGTGGTGATCTATGGGGACACCGATTCAACCTTCGTCTGGCTGCGCCGGTCCCATGGCCAGGAAGAAGCCGCGGCGATTGGCCGGGAACTGGTGGCTTACGTCAACGGGTGGTGGCGCGGACACGTGCGTGACGAGTTCGGCCTGGAGAGCGCGCTGGAGCTGCAATTCGAAACCCATTTCAAGCGTTTCCTCATGCCGACCATCCGCGGCGCGGAGGAGGGCAGCAAGAAGCGCTACGCCGGCTTGGTGACCCGCGCCGACGGCAGCGATGAAATCATCTACAAGGGCCTGGAAACCGTGCGCACCGATTGGTCGCCCCTGGCCCGGCAGTTCCAGCAGGAGCTTTACGGGCGGATCTTCCATCGCCAGCCGTATCAGGATTATGTGCGCGACTACGTGCGCCAGACGCTGGCCGGTACATTCGATGAGCGTCTGGTCTACCGCAAGCGCCTGCGCCGCCCCCTGGATGACTACGAACGCAACGTGCCGCCCCACGTACGGGCCGCTCGGCTCGCCGACGAGTTCAACGAACGCCAGGGTCGGCCTCGGCAGTATCAGAACGGCGGTTGGATCAGCTACGTTATCACCGTGGCCGGCCCCGAGCCGCTGGAAACCCGCAGCGCGCCGATAGATTACGACCATTACGTGACTAAGCAACTACAGCCGGTGGCGGATGCAATCCTGCCGTTTGTGGACGATGATTTTTCGACTTTGGTCGGGGGGCAGATGGGGTTGTTCTGA	MDLQQGFVLTRHWRDTPAGTEVEFWLATDAGPRRVRLPVQPSVAFVPQVQRGQAEALLQGEKDIELRPLDLLDFEHRPVLGLYCRQHGQLMRLDTTLRRAGVDVFEADIRPPERYLMERFITAPVWFGGTPSADGVLLDAQMKPAPEYRPPLRLVSLDIETTAQGDLYSIALEGCGERQVYMLGPPNGDDRDVDFQLEYCESRTLLLKKLNEWFARFDPDAIIGWNLVQFDLRVLHEHARRLAVPLRLGRGGEEMQWREHGARNNHFFASAVGRLIIDGIESLRSATWSFPSFSLENVAQTLLGEGKSIDNPYQRMDEINRMFAEDKPALARYNLKDCELVTRIFAKTDLLEFLLERASVTGLPADRSGGSVAAFTHLYMPLMHRQGFVAPNLGQRPPEASPGGFVMDSQPGLYESVLVLDYKSLYPSIIRTFLIDPVGLIEGLRHPGEHESVPGFRGARFSRTRHCLPSIVARVAEGRETAKREHNAPLSQALKIIMNAFYGVLGSSGCRFFDPRLASSITLRGHQIMQRTRQLIEARGHVVIYGDTDSTFVWLRRSHGQEEAAAIGRELVAYVNGWWRGHVRDEFGLESALELQFETHFKRFLMPTIRGAEEGSKKRYAGLVTRADGSDEIIYKGLETVRTDWSPLARQFQQELYGRIFHRQPYQDYVRDYVRQTLAGTFDERLVYRKRLRRPLDDYERNVPPHVRAARLADEFNERQGRPRQYQNGGWISYVITVAGPEPLETRSAPIDYDHYVTKQLQPVADAILPFVDDDFSTLVGGQMGLF				NA	NA	NA	NA	NA
D1-36_03138	441	IMPDH_4		Inosine-5'-monophosphate dehydrogenase	ATGAAAACCGTCGCGCAGTTGCTCCGGATAAAAGACGAGAAGAACCAGCAAGTGCACACCATTTCACCGGACGACATGGTTTTGCAGGCCCTGATGCGCATGGCCGAGAAAAACGTCGGTGCCTTGCTGGTGGTGAAGAACGACGAGGTGCTGGGCATCATCAGTGAGCGTGACTATGCGCGCAAAATGGTCTTGCACGGGCGCTCATCGGTGGGCACGAAAGTCAGCGACATCATGGTTTCGCCCGTGATCACCATCGATCCCCATCAGAACGTCGAGACGTGCCTGAGCATCATGACTGAAAAGCACTTGCGGCATTTGCCCGTCGTGGAGGACGGCAAGCTCGTCGGCCTGTTGTCCATCGGCGACCTGGTGAAAGAGGCCATTGCCGAACAAGCAGACCTGATCCGACAACTGGAGCAATACATTCGCGGCGAATGA	MKTVAQLLRIKDEKNQQVHTISPDDMVLQALMRMAEKNVGALLVVKNDEVLGIISERDYARKMVLHGRSSVGTKVSDIMVSPVITIDPHQNVETCLSIMTEKHLRHLPVVEDGKLVGLLSIGDLVKEAIAEQADLIRQLEQYIRGE				NA	NA	NA	NA	NA
D1-36_03139	597	yebS	COG2995	Intermembrane transport protein YebS	ATGGCCGTTACCGAACGACTGATCATCTGTGAACATTGCGATGCGGTGTACGAGCCGGTTGAGCTCGCCCCGCATCAAAAAGCTGCGTGCGTGCAATGTCACGCCGTGATCCAGCGCTACAACGGCCTGACCATCGAACAGCGCTTGGCCTTGACCATCACTGCGGCGGTGGTTTGGGTCTTCGCCAACGTTTATCCGGTGATGAGCATCCGCCTCCAGGGCTTGAGCAACAGCGCGACGCTGTGGGACTCCGTCGTTGCCCTGAGCCAGGGCCCCATTACCTTCATCGCCCTGGTCGCCGCCGTCGCGATCATCATCGCCCCGGCCTTCCAATTGGCGCTCCTGCTCTGGGTGCTGGGCTACGCCTATTCCAAACGGCGGGCACCGGCTTTCAGCCTGTGCATGCGCAGCCTGGAAACCCTGCGGCCGTGGAGCATGCTGGAGGTGTGCCTGCTGGGTGCGTTGGTCGCGGTGATCAAGCTTGCCGGCCTGCTGGATGTACTGCCCGGCATCGGCCTGTTCGCCCTGGCGGCCTTGAGCCTCTTGATGATCCGTATTGCCGGCCGTGATGTCCGCGACCTTTGGGCCACCCTGTGA	MAVTERLIICEHCDAVYEPVELAPHQKAACVQCHAVIQRYNGLTIEQRLALTITAAVVWVFANVYPVMSIRLQGLSNSATLWDSVVALSQGPITFIALVAAVAIIIAPAFQLALLLWVLGYAYSKRRAPAFSLCMRSLETLRPWSMLEVCLLGALVAVIKLAGLLDVLPGIGLFALAALSLLMIRIAGRDVRDLWATL				NA	NA	NA	NA	NA
D1-36_03140	660	pqiA_1	COG2995	Intermembrane transport protein PqiA	GTGAACGGGCCATTGCCAGGCAACCCGCCCCGGGCCGGCGACCTGAACCTGTGCCTGTGCCACAGCTGCGGCCTGGCGTGCGACATGAGCAACGAGCCCGAGACGTGTCCGCGCTGCGATGCCGCCCTGCACCGGCGCAAACCCGATACCCTGACCCGCACCTGGGCCTACATGCTGGCGGCGCTGGTGTTCTATATCCCGGCGAACCTGCTGCCGGTCATGAACACCCAGATGCTCGGCGATGGCGCGGACAGTACGATCATCAGCGGCGTTCTCGAGTTCTGGAACAGTGGCGCCTGGGACATCGCCCTGATCATCTTCATCGCCAGCATCGCCGTACCGGGCATCAAGTTCGTCGTGCTGACGCTGCTGCTGGTGACCGTGCAGCGGCGCAGCACTTGGGCCCAGGTCCAGCGAGCGAAGCTGTACCGGCTGGTGGAGGTCATCGGCTACTGGTCGATGCTTGATGTGCTGGTCGTAGCGTTGGTGGCGGCGCTGGTGAAATTCCAGGCCCTGAGCGACATCGAACCGCGACCGGGAATACTGTTCTTCGGTCTCGTGGTGCTGTTTACCATGCTGTCGGCCATGAGTTTCGATCCACGGCTGATCTGGGATACCCAACCATCCGAGGAGGTCATGGATGAAGTCGCAAGCCACTGA	MNGPLPGNPPRAGDLNLCLCHSCGLACDMSNEPETCPRCDAALHRRKPDTLTRTWAYMLAALVFYIPANLLPVMNTQMLGDGADSTIISGVLEFWNSGAWDIALIIFIASIAVPGIKFVVLTLLLVTVQRRSTWAQVQRAKLYRLVEVIGYWSMLDVLVVALVAALVKFQALSDIEPRPGILFFGLVVLFTMLSAMSFDPRLIWDTQPSEEVMDEVASH				NA	NA	NA	NA	NA
D1-36_03141	1656	pqiB	COG3008	Intermembrane transport protein PqiB	ATGAAGTCGCAAGCCACTGATGGACAGCCCGCACCGGGCCGGGCCCATGTCACCAGCCGTCGCTGGACGGTGTCACTGGTATGGATCGTGCCCATCATCGCCGTGCTGGTGGGGGTGTCCCTGGTGGTCCATAACTGGCTGCAGGAAGGGCCGACCATCACCATCACCTTCAAGACGGGCGAGGGCCTCACCGCGAACAAGACCCCGGTCAAATACCGCAACGTGGTCATCGGCCAGGTCACCGACGTGCAACTGAGCGCCGACCAGAAGAATGTGACCGCCACCGTCAAGCTCGCCAAGACCGCGGACACGTTCACCCATGAAGACTCGGTGTTCTGGGTGGTCCGGCCGCGTATCGGCGCCGGCGGTATCTCCGGGATCGATACCTTGCTGTCCGGGGATTTCATCGGTGCCGACGCCGGCCACTCCACCGTGCGCGCCAAGTCCTTCACCGGCCTGGAGGCCCCGCCCCCCATCACTTACGGAGAGCCGGGCAAGCGCTTTACCCTGCACTCCCAGGACCTCGGTTCGCTGGACATCGGCTCGCCGGTGTACTTGCGCAAGATCCCGGTGGGCCAAGTGGTGTCCTATGCCCTGGACGCCGAAGGCAAGGGGGTCAATATCGAAGTGTTCATCAATGCGCCTAACGATGCCTACGTCACCGAGAACACCCGCTTCTGGAACGTCAGCGGTGTCGATGTGAACGTCGGCGCCAACGGTTTCGCGGTCAAGACCGAATCCCTCTCCGCCCTGCTGGTCGGCGGCATCGCCTTCAGGGCCCCGGAGTACAGCCCCAACGACACGCCCGCGCCCGAAGACAAGAATTTCGAGCTGTTCGCCGACCAACAGAGCGCCCTCGCCCCGCCCAGTGGCAAGGCGCAATTCCTGGCCTTACGCTTCGACCAGGCCTTGCGCGGCTTGCGCGTTGGGGCCCCGGTGGAGTTTCTAGGCATCGAGATCGGCCGTGTCGTCGCCATGAACCTGGATTTCGACGAAAAGCAGCGCACGTTCCCTATCAATGTCGGCATCGTGATCTACCCCCAACTGCTGGGAAAGGCCCACGAAAAACTGCTCAAATCGCTGGATTACGATCCGGAAGACGAAGCCGCCGCTGCCCGGCTGGTGGGCAGTTTCGTCGAACGGGGCCTGCGCGCCCAGGCTCGCAGCGGCAACCTGCTGACCGGGCAGTTGTATATCTCCCTGGATTTCTACCCCAAAGCGGAAAAGGTCGCCTTCGACCTCGCCGCCCGTCCCCTGCGGATCCCGACGATCCCGGGCAGCCTGCAGCAATTGCAGGAACAGCTGCAAACGGTGGTGGAGCGCATCAACAAGCTGCCGCTGGAGAGCATCGCCAGCAATCTGGACGGCAATCTGGTGGAGCTGCGCAAAGGACTCTCGCAATTCAACAACAAGACCCTGCCGGGCGTGCAAAGCACCTTGCAGGACGTGAGCAAGACCCTGCAATCGGCGAATTCTACGTTGGCGGAAGACTCGCCGCAGCGTGAACAGCTGACCCAGACCCTGGATGACCTGGGCCGCATGTCCCGTTCGCTGCGCGAGCTGTCGGACTACCTGAGCCGACATCCTGAATCGCTGCTTCGCGGCCGTCCGAAGGACGCCCCGGCGCAAAACCTGACTTTTCCGGTGAAAGAATGA	MKSQATDGQPAPGRAHVTSRRWTVSLVWIVPIIAVLVGVSLVVHNWLQEGPTITITFKTGEGLTANKTPVKYRNVVIGQVTDVQLSADQKNVTATVKLAKTADTFTHEDSVFWVVRPRIGAGGISGIDTLLSGDFIGADAGHSTVRAKSFTGLEAPPPITYGEPGKRFTLHSQDLGSLDIGSPVYLRKIPVGQVVSYALDAEGKGVNIEVFINAPNDAYVTENTRFWNVSGVDVNVGANGFAVKTESLSALLVGGIAFRAPEYSPNDTPAPEDKNFELFADQQSALAPPSGKAQFLALRFDQALRGLRVGAPVEFLGIEIGRVVAMNLDFDEKQRTFPINVGIVIYPQLLGKAHEKLLKSLDYDPEDEAAAARLVGSFVERGLRAQARSGNLLTGQLYISLDFYPKAEKVAFDLAARPLRIPTIPGSLQQLQEQLQTVVERINKLPLESIASNLDGNLVELRKGLSQFNNKTLPGVQSTLQDVSKTLQSANSTLAEDSPQREQLTQTLDDLGRMSRSLRELSDYLSRHPESLLRGRPKDAPAQNLTFPVKE	PGPT0014520_463	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_HERBICIDIAL_STRESS	HERBICIDIAL_STRESS-PARAQUAT_STRESS_REDUCTION,PGPT0014520-pqiB-K06192	NA	NA
D1-36_03142	537			hypothetical protein	ATGCCGCTGACGCTGAGATGTTCGTTGATTGCCCTGGCGCTGCTCCTCGGCGCCTGCCGCAGCGACCCTATCCACTATCACACCCTGAGCCCGGTCCAACCGGCGGGCCAGGTGCATGCGGGCGTGGATATCCAGATCGAGCAACTCAGCGTTCCACCGCAAGTGGATCGCACCCAGATGGTGATTCGCCAGGGCGACAGCGGGTTGGCCATCCTCGAAACCGAATGGTGGGGCTCAAGCCTGGCGGACGAACTACGCAGCAGCCTTGACGAGCAATTGAGCAACCCCGGTGCGCCAAAGCGGTTGCTGCGGGTCGACGTGCAGCGCTTCGACTCGATTCCCGGTCGGTATGCGCGCATGGACGTGCAATGGCGACTGCGCACGCTGGGCAGCGACGCCCACGCCCTCACCTGTCGCAGCAGCCTGCAAACACCGGCCACGGGCAATATCGACGACTTGGTGAAGGGGCATCAAAACAACGTCCGGCAGTTGGTCGACCTCGTGGGGCAAGCGGCATCGCGCAACGCCTGCCCCTGA	MPLTLRCSLIALALLLGACRSDPIHYHTLSPVQPAGQVHAGVDIQIEQLSVPPQVDRTQMVIRQGDSGLAILETEWWGSSLADELRSSLDEQLSNPGAPKRLLRVDVQRFDSIPGRYARMDVQWRLRTLGSDAHALTCRSSLQTPATGNIDDLVKGHQNNVRQLVDLVGQAASRNACP				NA	NA	NA	NA	NA
D1-36_03143	630	gstB_4	COG0625	Glutathione S-transferase GST-6.0	ATGTACCAGTTATTCGGTCACAGCCAGTCCGGCTCGGCAGCTGTCGAGGTCGCCTTGAACCTATGCGGGGTGCCTTATCGACGCGTCGATACCTATTCGACCGAGGACAACGAGGCCGCGAAAGAACTCGAGGCGTTGAATCCTCAGAAGCAGGTCCCGACCCTGCAACTGCCGGACGGCTCGGTGTTGACCGAGGCGGCGGCGATCCTGATTCACTTGGGGTTGTCTTTCCGAGAATCAAAACTGTTGCCCGAGGATCCGGCCCAACGCGCGCAGGTCATACGTGGCCTGGTCTATATCGCCGCCAACTGCTACACACCCATTGGCATTATCGATTTCCCCCAGCGCTGGCTGCCTGATGCGGACGAAGTCACCCAGGAACGTCTGGTGTCGGGCACGAAACAGCGCCTGTATCGCAACTGGGCTCTGTTTGCCGACCAGTTTGCAGCGTCACCCTTTCTCGGCGGCGCCGAGCCTGGCGCGCTGGATATCCTGGCGGCGGTGATCACGAAATGGGTCGAAACCCGGGAAGCGATGCTCAATGCCCGCCCTGAGTTCCATGCCTTGCTGGCGCGTATCGACCACCACCCGCGAGTCGCTCCAGTGCTTTCACTGCATTGGCCCGATTGA	MYQLFGHSQSGSAAVEVALNLCGVPYRRVDTYSTEDNEAAKELEALNPQKQVPTLQLPDGSVLTEAAAILIHLGLSFRESKLLPEDPAQRAQVIRGLVYIAANCYTPIGIIDFPQRWLPDADEVTQERLVSGTKQRLYRNWALFADQFAASPFLGGAEPGALDILAAVITKWVETREAMLNARPEFHALLARIDHHPRVAPVLSLHWPD				NA	NA	NA	NA	NA
D1-36_03144	240			hypothetical protein	ATGAAACGCCAAATCATCCTCAGCTTCGCTTTCTCGGTACTGGCCGCCAACGCATTCGCCGCCACTTCCCAACCCGTCGTTGCCGAAGGTGGCTCCGACCGCCTGATCGAAAGCCGCGTCGCCGAAGGTGGCTCCGATCGTCTGCTGGAACGCCGCGTCGCCGAAGGTGGCTCCGATCGTCTGCTGGAACGCCGCGTCGCCGAAGGTGGCTCCGATCGTCTGGCTCAGAACCGTGCATGA	MKRQIILSFAFSVLAANAFAATSQPVVAEGGSDRLIESRVAEGGSDRLLERRVAEGGSDRLLERRVAEGGSDRLAQNRA				NA	NA	NA	NA	NA
D1-36_03145	1095			hypothetical protein	ATGCATTTCACTCGATTGACGATCAGCCTCGCCGCTTCGCTGGCCCTGGCCGGTTGCGGCACTCGCCAGGCCCAGGAGCCTGAACGCCAGCCTGCCGAAGTCAAGGCGCAGATCGTTCGTTTGTTGCCGGCCAAGACCGCTGATCGGGCAGGCTGGGCAACGGATATCTACGTAGCCTTTTCGGCGCAGCAGATCCCGCCCACGACGCAGAACATCTGTTCGGTGCTGGCGGTGACCGAACAGGAATCCACGTTCCAGGCCGATCCGGCCGTGCCCGGGCTGGGCAAGATCGCCCGGCAGGAGATCGACCGTCGCGCGGCCAAGGTGCACATTCCGGGGTTCCTGGTCAGCGGCGCGCTCCAGGTGCGTTCGCCGAACGGTAAAAGCTACAGCGACCGTCTGGACGCGGCGCGAAGCGAGAAAGAACTCAGCGCGATTTTCGATGACTTCATCAGCATGGTGCCGTTGGGCAAGACGTTGTTCGACGGCTTCAATCCCGTGCACACGGGTGGCCCGATGCAGGTCAGCATCGCATTTGCCCAGGCCAATGCCCGGGATTATCCGTACACGGTGGATGGCTCCATTCGGCGGGAAGTGTTCAGTCGTCGTGGCGGCATGTATTTCGGCATCGCCCATTTGTTGGGCTATCCGGTGAGCTACACAGAGCCGCTGTACCGGTTCGCCGATTTCAATGCCGGGTGGTATGCCAGTCGCAACGCGGCGTTTCAACATGCGGTGAGTCGCGCTTCGGGTATTTCTTTGGCCCTGGACGGCGACTTGATCTTGCATGGCTCGATCATGCCGGGCAGCACGGAATTGGCGGTGCGCACCTTGGGCAAGTCCCTGGGGATGCGCAACCCGACCATCCGCGATCAGTTGGAGATGGGCGACAGCCTCGCCTTCGAAGACAGCAAACTCTACAAGCGTGTATTCGAACTGGCTGAGAAGGCCGAGGGCAAGCCGCTGCCTCGGGCACTGTTGCCGGGCATTGTGCTCAAGAGTCCGAAAATCACACGCAAACTGACCACCGCATGGTTTGCCAAGCGCGTGGACGAACGTTATCAGCGCTGCATGGCTCGGGCTTCGGGACGCTAA	MHFTRLTISLAASLALAGCGTRQAQEPERQPAEVKAQIVRLLPAKTADRAGWATDIYVAFSAQQIPPTTQNICSVLAVTEQESTFQADPAVPGLGKIARQEIDRRAAKVHIPGFLVSGALQVRSPNGKSYSDRLDAARSEKELSAIFDDFISMVPLGKTLFDGFNPVHTGGPMQVSIAFAQANARDYPYTVDGSIRREVFSRRGGMYFGIAHLLGYPVSYTEPLYRFADFNAGWYASRNAAFQHAVSRASGISLALDGDLILHGSIMPGSTELAVRTLGKSLGMRNPTIRDQLEMGDSLAFEDSKLYKRVFELAEKAEGKPLPRALLPGIVLKSPKITRKLTTAWFAKRVDERYQRCMARASGR				NA	NA	NA	NA	NA
D1-36_03146	975	hemB_1	COG0113	Delta-aminolevulinic acid dehydratase	ATGTCCAGCCAGTTCCCCGAAGCACGTCCACGCCGTCTGCGCCGCAACGCGAGCTTGCGCAGCCTGTTCCAGGAAACCGAGTTCACATTGAACGATCTGGTGCTGCCAATCTTCGTCGAGGAAGAGATCGACGATTTTGTGCCGATCAAGAGCATGCCAGGTGTGAGGCGTATCCCCGAATCGAAACTGGCCGGCGAAATCGAGCGCTATGCCCGCGCAGGTATCAAGTCGGTGATGACCTTTGGCGTGTCTCATCACCTGGACAACGATGGCAGCGACACGTGGAGCGAGCGTGGCCTGGTATCGCGCATGGCCGGGATCTGCAAGGACGCCGTGCCGGAAATGGTGGTGATGTCCGACACTTGTTTCTGTGAATACACCGATCATGGCCATTGCGGCGTGCTGCATGGCGATGAAGTGGATAACGACCGCACCTTGGTCAACCTGGGCAAGCAAGCCGTGGCGGCGGCGCGCGCCGGTGCCGATGTCATTGCGCCGTCGGCGGCCATGGACGGGCAAGTCCAGGCTATCCGCAAGGCTTTGGACAACGCGGGCTTCAGCCAGACCGCCATCATGGCCTACTCCACCAAGTTCGCCTCGGCGCTCTACGGGCCGTTTCGCGAGGCTGGCGGCAGTGCCTTGAAGGGCGACCGCAAGAGCTATCAGATGAACCCGATGAACCGTCGCGAAGCCTTGCGCGAGTCGTTGCTGGACGAGCAGGAGGGCGCCGATGCGTTGATGGTCAAGCCGGCAGGGGCCTATCTCGATATCATCCGCGACATTCGCCAGGCGTCGAACTTGCCCTTGTCGGCTTACCAGGTCAGCGGTGAATACGCGATGATCAAGTTTGCCGCCCAGGCCGGTGCCATCGACGAGGCCCGCGTGGTACGTGAAAGCCTGGGCGCGATCAAGCGGGCCGGGGCAGACCTGATCTTCACCTACTTCGCCCTGGACCTGGCCTTGAGCGGAATCTAA	MSSQFPEARPRRLRRNASLRSLFQETEFTLNDLVLPIFVEEEIDDFVPIKSMPGVRRIPESKLAGEIERYARAGIKSVMTFGVSHHLDNDGSDTWSERGLVSRMAGICKDAVPEMVVMSDTCFCEYTDHGHCGVLHGDEVDNDRTLVNLGKQAVAAARAGADVIAPSAAMDGQVQAIRKALDNAGFSQTAIMAYSTKFASALYGPFREAGGSALKGDRKSYQMNPMNRREALRESLLDEQEGADALMVKPAGAYLDIIRDIRQASNLPLSAYQVSGEYAMIKFAAQAGAIDEARVVRESLGAIKRAGADLIFTYFALDLALSGI	PGPT0003655_4352	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003655-hemB-K01698	NA	NA
D1-36_03147	699	yfcG	COG0625	Disulfide-bond oxidoreductase YfcG	ATGCCCAACCTGACCCCTTTTCCCATCACCCAAAAATGGCCCGCCCAGTACCCGGAGTGGATCCAGCTCTACTCCCTGCCGACCCCCAACGGCGTAAAAGTCTCGATCATGCTCGAAGAGATTGGCCTGCCGTACGAGCCCCATAAAGTCGATTTCGGCAGTAATGACCAATTGTCGCCCGAGTTTCTGTCGCTGAACCCCAACAACAAGATTCCAGCCATTCTCGATCCCCACGGTCCCGGGGACCAACCGCTGGCGTTGTTCGAATCGGGGGCGATCCTGATTTACCTGGCGGACAAGAGCGGCCAATTGCTCGCACAGGAATCGGCGGCGCGCTACGAGACGATCCAGTGGCTGATGTTCCAGATGGGCGGGATCGGGCCGATGTTCGGGCAACTGGGGTTCTTCAACAAGTTCGCCGGCAAGGACTACGAGGACAAGCGACCGCGCGACCGTTATGTCGAGGAGAGCAGGCGCCTGCTCAAGGTGCTCGATGGCCGTTTGCAGGGGCGGGACTGGATCATGGGCGAGCGCTACACCATTGCCGACATCGCGACGTTTGCGTGGGTGCGCAATCTGCTGGGATTCTACGAGGCGGGTGACCTGGTGGGCATCCAGAACTTCCCCAACGTGACTCGGGTGTTGGAGCGTTTCCTGGCGCGGCCGGCGGTGACTCGCGGGTTGAAGATCCCGGAATGA	MPNLTPFPITQKWPAQYPEWIQLYSLPTPNGVKVSIMLEEIGLPYEPHKVDFGSNDQLSPEFLSLNPNNKIPAILDPHGPGDQPLALFESGAILIYLADKSGQLLAQESAARYETIQWLMFQMGGIGPMFGQLGFFNKFAGKDYEDKRPRDRYVEESRRLLKVLDGRLQGRDWIMGERYTIADIATFAWVRNLLGFYEAGDLVGIQNFPNVTRVLERFLARPAVTRGLKIPE	PGPT0013045_1962	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013045-yghU|yfcG-K11209	NA	NA
D1-36_03148	675			hypothetical protein	ATGATGAACCCACAGAGATTCACCCGTTACCTCAAACGCCGTTCGTGGCTGGTGCTGCCGACGCTGCTTGTGGCCTGTGGACTGGTGCTGTCGCTGGAATCCAGCGTCAGCCGCGCGCAGCCAGCCGACGGTGTCCAGACCCTGGTGTTCTTGCGCCACGCCGAGAAACCCGCCGGGGGCCTCGGCCAGCTCAACTGCCAAGGCCTCAACCGCGCCATCGACCTGGCTACCCTGCTGCCGGAAAAATTCGGCAAAGCTGACTATGTATTCGCCGCCAACCCTACCCGAAACGTCGAAGAGGGTGAGTTGGACAATTCCTATAGTTACATCCGCCCATTGATGACCATCAGCCCCAGTGCCATCAAGCTGGGCTTGCCGGTCAATATCGAATACTCAGCCAACGACACCAGCGACCTGGCAAACGAACTGCTGGACGACAAATACCACAACTCCACCATCTACACCGCCTGGTCCCATGGTTACCTGCCGGAGCTGATCAATAAGGTCGCCGGTGAAGCGGTGGGCAAACGGCAAGAGATTACCGACGATTGGGCGTCGAGCGATTTCGATTCGCTGTATGTACTGACCCTGACGTGGCACAACGGCAAGGCCAGCCTCACCAGCCAGAATTACAAGCAAGGGCTGGATAACGGGCAGGAGACGTGCCCGACGTAA	MMNPQRFTRYLKRRSWLVLPTLLVACGLVLSLESSVSRAQPADGVQTLVFLRHAEKPAGGLGQLNCQGLNRAIDLATLLPEKFGKADYVFAANPTRNVEEGELDNSYSYIRPLMTISPSAIKLGLPVNIEYSANDTSDLANELLDDKYHNSTIYTAWSHGYLPELINKVAGEAVGKRQEITDDWASSDFDSLYVLTLTWHNGKASLTSQNYKQGLDNGQETCPT				NA	NA	NA	NA	NA
D1-36_03149	1104	selU	COG2603	tRNA 2-selenouridine synthase	ATGCCCCGCGACATCACCGATTACCGCGATATCTTCCTCAACGACCGTCCGATGATGGACACCCGAGCGCCCGTCGAATTCCTCAAGGGCGCGTTTCCCGGCGTGGTCAACCTGCCCCTGATGACCGACATCGAACGGCAACGCGTTGGCACTTGCTATAAACAACAGGGCCAGCAAGCTGCCATCGTCCTCGGGCATCAATTGGTTAGCGGTGACACCAAGGCCCAGCGCATCCAGGCCTGGTCCGACTTCGCCCGTTCCCATCCCGACGGAGTGCTTTATTGCTTTCGTGGTGGCTTGCGCTCGCAGATTGTCCAGCAGTGGCTCAAGGAAGAAGCCGGCATCGACTACCCCCGTGTCGGCGGTGGCTACAAGGCCATGCGTACCTTTCTGCTCGAAACCGTCGATCAAGCGGCTGCCCAGTGCGACCTGGTCTTGTTGGGCGGCATGACCGGCACGGGCAAGACCGAAGTGCTGACGCAACTGCCCAACGCACTGGACCTGGAAGGCTACGCGAATCATCGCGGTTCCAGCTTTGGCAAGCGCGCCACCGGGCAGCCGTCCAACATCGATTTCGAAAACCTGCTGGCGGTGGATGTGCTGAAGAAGCGCGCCGCCGGGCTCGAGCAATTCGTGCTGGAAGACGAAAGTCGCATGGTGGGCAGCTGCGCCGTGCCGCTGCCGTTGTACCAGCGTATGCAGCAGGTGCCGATGGTCTGGCTAGAAGACAGCCTGGAGCGACGGGTCGAGCGCATCCTGAGTGATTATGTGATCAACCTCTGCGCCGAATTCATCGACGTGCATGGCGACGAAGGCTTCTCGCTGTTTTCCGAACGGCTATTGGCGAGCCTCGACAACATCCATAGGCGGCTGGGGGGCGACCGTCATCGCCGGTTGATGGACATCATGGAGGCGGCCCTGGCCGAGCAGGCCAGTACGGGAGCCGTCGATTTGCATCGCGGCTGGATCGAAGGCTTGCTGCGCGAATATTACGACCCGATGTACGTATTCCAGCGAGAAAAGAAGGGCGGGCGCATCGAGTTCGCCGGGGAGCAGGCGGCGGTATTGCAATACCTGCGTGAGCGCGCGGCTCGGGGCGGGTAG	MPRDITDYRDIFLNDRPMMDTRAPVEFLKGAFPGVVNLPLMTDIERQRVGTCYKQQGQQAAIVLGHQLVSGDTKAQRIQAWSDFARSHPDGVLYCFRGGLRSQIVQQWLKEEAGIDYPRVGGGYKAMRTFLLETVDQAAAQCDLVLLGGMTGTGKTEVLTQLPNALDLEGYANHRGSSFGKRATGQPSNIDFENLLAVDVLKKRAAGLEQFVLEDESRMVGSCAVPLPLYQRMQQVPMVWLEDSLERRVERILSDYVINLCAEFIDVHGDEGFSLFSERLLASLDNIHRRLGGDRHRRLMDIMEAALAEQASTGAVDLHRGWIEGLLREYYDPMYVFQREKKGGRIEFAGEQAAVLQYLRERAARGG	PGPT0004830_260	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_SELENIUM_RESISTANCE	SELENIUM_RESISTANCE-SELENIUM_HOMEOSTASIS,PGPT0004830-selU|mnmH-K06917	NA	NA
D1-36_03150	1035	selD	COG0709	Selenide, water dikinase	ATGAGCGAGCCGATTCGCCTGACCCAGTACAGCCACGGTGCCGGTTGCGGCTGCAAGATTTCGCCCCAGGTGCTGGAAGTGATCCTGGCCGGCAGCGGTGCGCAGAACCTTGACCCCAAGCTTTGGGTCGGCAATGCCTCCCGGGACGATGCAGCGGTGTATGCCATCGACGAGGAGCGCGGGGTGGTCTCGACCACCGATTTCTTCATGCCGATCGTCGACGATCCTTTCGATTTCGGACGCATCGCCGCGACCAATGCCATCAGTGATATCTACGCCATGGGCGGCGATCCGCTGATGGCGATTGCAATCCTCGGCTGGCCCGTCAACGTACTGGCCCCGGAGATTGCCCGGGAGGTCATTCGTGGTGGCCGCTCGGTGTGCGACGAGGCGGGCATTCCCTTGGCGGGCGGCCATTCGATCGATGCGCCGGAGCCAATGTTTGGCCTCGCGGTGACGGGGCTCCTGCACAAGCGCCACATGAAGCGCAACGACACCGCCGTCGCGGGTTGCCGCTTGTACCTGACCAAACCCCTGGGGATCGGCATCCTCACGACCGCGGAAAAGAAAGGCAAGCTGCGCGCCGCCGACGTGGGCCTGGCCCGGGATTGGATGTGCACCCTCAACAAGCCCGGCAGCCATTTCGGCAAGCTCGACGGCGTGGCCGCAATGACCGATGTCACCGGTTTCGGCTTGCTCGGACACTTGGTGGAGATGGCCGATGGCAGCCAGCTCACCGCACGCATCCGCTACGACGCCGTGCCGCGCTTGCCGGGCGTCGAGTACTACCTGGACCTGGGCTGCGTGCCGGGCGGCACACTGCGCAACTATGACAGCTACGCCAGCAGGGTCGGTCGGGTCCAGGAGTTGCACAAGCGCGTGCTGTGCGACCCGCAGACCAGCGGCGGCTTGCTGGTTGCCGTCACGCCCGAAGGCGAAAGCGAATTCCTGCAGGTTGCCGTCGAGCTGGGCCTTTCGCTGGAGCCGATCGGTGAATTGGTCGAGCGACAGAGCCACGCGGTCGAGGTGTTCTGA	MSEPIRLTQYSHGAGCGCKISPQVLEVILAGSGAQNLDPKLWVGNASRDDAAVYAIDEERGVVSTTDFFMPIVDDPFDFGRIAATNAISDIYAMGGDPLMAIAILGWPVNVLAPEIAREVIRGGRSVCDEAGIPLAGGHSIDAPEPMFGLAVTGLLHKRHMKRNDTAVAGCRLYLTKPLGIGILTTAEKKGKLRAADVGLARDWMCTLNKPGSHFGKLDGVAAMTDVTGFGLLGHLVEMADGSQLTARIRYDAVPRLPGVEYYLDLGCVPGGTLRNYDSYASRVGRVQELHKRVLCDPQTSGGLLVAVTPEGESEFLQVAVELGLSLEPIGELVERQSHAVEVF	PGPT0004820_1631	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_SELENIUM_RESISTANCE	SELENIUM_RESISTANCE-SELENIUM_HOMEOSTASIS,PGPT0004820-selD-K01008	NA	NA
D1-36_03151	279			hypothetical protein	ATGGACCCAACCCCACCCGCGACGACTCATCTTGATTACGGTCTCGACACGCTGTTCGGCCGCGAGACCAAAAGCGTCGACTGCCAGTTCGACGTCAAGCGTCTGGACGACGGCGAGCCGCCGTGGTTTGCCTTGCATGTACGTCCGCCGCTGCCCGAAGATCTGGCAAAGGCCCAGATCGTGGTGTTCAGCGCCGAAGGCCGACGCATCAGCGGTATCGTCCGGCGTTCCGAGCGCCTGGCCGACGACAGCTTGCAGCTGGACGTCGAACCGGACTGA	MDPTPPATTHLDYGLDTLFGRETKSVDCQFDVKRLDDGEPPWFALHVRPPLPEDLAKAQIVVFSAEGRRISGIVRRSERLADDSLQLDVEPD				NA	NA	NA	NA	NA
D1-36_03152	453			hypothetical protein	ATGAGCATCATTGTGTTATTGCTGGTGGTCGTCGCCGCCGGCGCGGTACTGAGCGTTCAGGCCGCGATCAACGGACGCCTGGGCGAGACGGTTGGCGTGCTGCGCAGCAGCCTGCTGACCTTTGTGGTGGGCACGGTGGTCACGGGGCTGTTGATCGTGTTTTTCGAGCCGGCCCACGCCATGAGCCTGCTGGAGGTGCCCAAGTGGCAGCTCAGCGGTGCGTTGTTTGGCGTGGTGTACATGATAGTGATGGTCGGCGCGGTGCCACGAGTCGGCACGGCCGTTGCCACCGTGGCGGTCATTGTCGGGCAACTGGGCATGGGCATGCTGATCGATAACTTCGGCTGGCTGGGCAATCCGGCGATCGAACTGTCCAGCAGCCGCTTGCTGGCCATGGCCTGCCTGGCTTTGGCGCTGGTGTTCATGTACCGCAGCAGTACACCGCGCGCCTGA	MSIIVLLLVVVAAGAVLSVQAAINGRLGETVGVLRSSLLTFVVGTVVTGLLIVFFEPAHAMSLLEVPKWQLSGALFGVVYMIVMVGAVPRVGTAVATVAVIVGQLGMGMLIDNFGWLGNPAIELSSSRLLAMACLALALVFMYRSSTPRA	PGPT0009795_1326	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_HERBICIDIAL_STRESS	HERBICIDIAL_STRESS-TOXOFLAVIN_METABOLISM,PGPT0009795-toxF-K09936	NA	NA
D1-36_03153	498			hypothetical protein	ATGCAACCGACATCACAAGACGCGGCCGCGCCGATAGCGGCGGCGGCGCCACCCCGGCCATTTTTGCGCTGGCTATTGTTGCCCCTGGTCATCCTGGCGGGCATGGGATTGTCGGTGGAGGCCGGTCTGCTGGGACCGTTGGGCATCCAGGTCGGCCATCTATGGGCGACATTGAGCATCTTTGGCGTGGGCGCCGCGCTGTTGTTCCTGCTGCTGTTGCTCAGCGGCCCCCAGCGAGGCCCATCACTGGACACGCTGCCGCGCTGGCAATTGATCGGCGGCTTCCTGGGACCCATCTATGTGGTGGTCCTGACCCTCGCCACCCCTCACATCGGTATTGCGATGACCATGATCGCGATCCTCTCCGGCCAAGTGGGCAAAAGCGTGCTGATCGACCATTTCGGTTGGTTCGGCGCGAGTCGCAAGCGGGTCAATCGCGAGCGTTGGCTGGCGTTGGCGTTGATTGTGGTGGCCCTTGTCCTGATAGCCCGAGGTTGA	MQPTSQDAAAPIAAAAPPRPFLRWLLLPLVILAGMGLSVEAGLLGPLGIQVGHLWATLSIFGVGAALLFLLLLLSGPQRGPSLDTLPRWQLIGGFLGPIYVVVLTLATPHIGIAMTMIAILSGQVGKSVLIDHFGWFGASRKRVNRERWLALALIVVALVLIARG	PGPT0009795_652	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_HERBICIDIAL_STRESS	HERBICIDIAL_STRESS-TOXOFLAVIN_METABOLISM,PGPT0009795-toxF-K09936	NA	NA
D1-36_03154	936	dmlR_19		HTH-type transcriptional regulator DmlR	ATGCAAGGTCTCGATGAACTGGGTTTCAAGGCACTCCGACTGTTTGTCGCGGTGCTCGATCACGGCAGCTTTTCGGAAGTGGCGCGGCGTGAGGGGTTGGCGCCCTCTTCGATTTCCCGCCAGATCCGATTGATGGAGCAAGCGCTGAACCAGCAACTGCTCTATCGCCACACGCGCGCCGTTTCGCCCACCGAAGCCGGCCGCCTGCTCGGTCACCACGCACGGTTGCTGCTGGTGCAACTGGAGGAAGCCGAACAAGCCTTGCAGGAGCAGTACAGCGAGCCGGCCGGGCTGATACGGATCAACGCTCCCGTGGTGTTCGGCCAGCGACACCTGACGCCGTGGCTGGGCCAGTTGTGCGAGCGCTACCCCAAGCTGCAGTTGGACATCCAGCAGACCGACAATTATGTGGACCCGCTGCAGCAAGGTGCCGACCTGCTCTTTCGCATCGGGCCGCTGCACGATTCCAGCATGCAGGCGCGGATCGTCGCGCCGCACCGCTTCCAGATTGCCGCAAGCCCCGACTACCTCGCCCGTCATGGCACGCCACGCAAGCCCCAGGACCTGGCTGCCCATGAGTGCCTGGCCTATAAAGGCGTGGCGGGCCAGCAGCGCTGGTTCTTCCGACGTCCCGGTCAAACCTGGACGCCATACAGTGTCAGGGGCCCGATCACCGGCAACCACGCCGACACCCTGACCCAGGCCGCCGTGCAAGGGCTGGGCCTGGTGATGTTCCCGTCGTGGCTCATCGGCGAAGCCGTGCGCAGCGGAACGCTGGTGCCGGTGCTGAGCGACTACGAAGCGTCCAACAGCCTCGAACCCCAGCAAATCGCTATCCTCTGGCCCGGCAGCCGACGCCTGTCGGTGAAGGTGCGTACGGTGATCGACTTTTTCCTTGAATGTTTCGGCGAGGTGCCCTACTGGGATCGTCCTTGA	MQGLDELGFKALRLFVAVLDHGSFSEVARREGLAPSSISRQIRLMEQALNQQLLYRHTRAVSPTEAGRLLGHHARLLLVQLEEAEQALQEQYSEPAGLIRINAPVVFGQRHLTPWLGQLCERYPKLQLDIQQTDNYVDPLQQGADLLFRIGPLHDSSMQARIVAPHRFQIAASPDYLARHGTPRKPQDLAAHECLAYKGVAGQQRWFFRRPGQTWTPYSVRGPITGNHADTLTQAAVQGLGLVMFPSWLIGEAVRSGTLVPVLSDYEASNSLEPQQIAILWPGSRRLSVKVRTVIDFFLECFGEVPYWDRP				NA	NA	NA	NA	NA
D1-36_03155	588			hypothetical protein	ATGTCATTGCTGAGTAAACGAGCCGCCGCCGTGCTGCTGACGGCGATCGCCAGCCTGGCCGCATGGCCTGCCATGGCGGCCCAGCCCAAGACCGTGGCCCAGGCACCGGTCCAGAAGATTTCGATGCTGGGCGGCAAGTTCAGCTTCACCCTGCCCAAGGGCTACACGGCAACGCCGTTATCCGCGGGCGAAGTGGCCCAGGGGACAGCCGGGGCGACCGGTATGATGTACAGCAATGCCACGAGCAAGACAGTGGTGATCACGGCTGAAAACACCTTGGTCGACGGGGCGAATGTGAAGGACAACGACGCGGCCTTCCTGGACAGCACCTTTGCCGATTTTGCCGTCCAGAAAACCAAGGCTCTGCCGGATGCCAAAATTCTTGGCGAACAAAGCCTGATCCAGAAAACCACCGGTCTGGGCCTGCGTCAGCTCGACACCAAGGCCACGCAGGGTGGCGGGCCGACGTTGGACACCACGCTGATCGGCGCCTCCGGCACCCGTATGGCCGTGGTGCAGATCATTTCCAGGGCCAGCGACCAGGCCGGCCATGAGGCCCTGGTCAAGCAGATCGCCAGCGGGAAGTGA	MSLLSKRAAAVLLTAIASLAAWPAMAAQPKTVAQAPVQKISMLGGKFSFTLPKGYTATPLSAGEVAQGTAGATGMMYSNATSKTVVITAENTLVDGANVKDNDAAFLDSTFADFAVQKTKALPDAKILGEQSLIQKTTGLGLRQLDTKATQGGGPTLDTTLIGASGTRMAVVQIISRASDQAGHEALVKQIASGK				NA	NA	NA	NA	NA
D1-36_03156	717	mhqD	COG0400	Putative hydrolase MhqD	ATGCTCAAAGCGTTCGCCCTGTTTCTGCTGCTGGTATCGGCCGGCGTGCAGGCCCAACCGTCGCTGCAAACGGATTTGCCCCTCAATTACCTGGCCCGCGCCGACGAGCAGGCCCGAAACCGGCCGCTCGTGATTTTCCTGCACGGTTCGGGCAGCAACGAAACGGATCTGCTCAGGCTCGCCGATGAACTGCCCAGGCACTACAACTACCTCTCGGTGCGCGCGCCCAAGTCCATGGAACCGGGCCACTACCAATGGTTCGCCAAAAAGGGCGAGGGCGCGTATGACGGTGACACTTCAGACTTGAAGGCCAGTGGCCAGATGCTTATGGAATTCATCGAAAAGGCGCGGGCCAAGTACCCGACCGATGCGGGCAACGTCTACCTGGTGGGCTTCAGCCAGGGCGCGATGATGAGCTACGAAATCGCCTTGCGACACCCGGAAGCCGTCGGGGGCATCGCTGCGATGGGTGGGCGAATCCTGCCGGTGCTGCGGGCCGAACTGACGCCCGACGAGGCACGAAGGGCGCTAGCCGTGTTCATCGGCCACGGCACCGCGGATCCGATCATTCCCTTCCATGACGGCACCGACGCCGACACCTTCCTAAAGACCCTGGCCCTGGAGCCGGAATTCCATGCCTATCCGGGCCTTGGCCATGAGATCAATGCGCAGGAAGTGAAGGATCTGCGGGCCTGGCTTGAGCGACTCAACCCCTGA	MLKAFALFLLLVSAGVQAQPSLQTDLPLNYLARADEQARNRPLVIFLHGSGSNETDLLRLADELPRHYNYLSVRAPKSMEPGHYQWFAKKGEGAYDGDTSDLKASGQMLMEFIEKARAKYPTDAGNVYLVGFSQGAMMSYEIALRHPEAVGGIAAMGGRILPVLRAELTPDEARRALAVFIGHGTADPIIPFHDGTDADTFLKTLALEPEFHAYPGLGHEINAQEVKDLRAWLERLNP	PGPT0028515_506	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028515-mhqD-K06999	NA	NA
D1-36_03157	1113			hypothetical protein	ATGCAACGCATCGACCATATCCTGCCATGGAGTCACCTGGGCACGGAGCGTTCGCTCAGCGTGTTTCGTTACGGCCACGGGCCGCGCAAGGCGTACATCCAGGCGAGCCTGCATGCCGACGAGTTGCCGGGCATGCGCACGGCATGGGAGCTGAAACAGCGACTGAACGATCTTGAAGCCCGTGGTTTGCTCAAAGGCGTGATCGAGCTCGTGCCGGTGGCCAATCCCATCGGCCTGGATCAGCATCTGCAAAGCGCCCATATGGGGCGTTTCGAGCTGGGCAGCGGCAAGAATTTCAACCGTTCCTTCGTCGAACTCAGCGCCCCGGTGGCGCAACGCATCGGTGACCGTCTCGGGGATGACCCGGCCGCCAACATCACCCTGATTCGCCAGACAATGGTCGAGGTGCTGGAAGATCTGCCGCCGCCACCTTCCCAGCTTGAAGCCCTGCACCGGCTATTGCTTCGCCACGCCTGCGACGCCGATGTCACTCTGGATCTGCACTGTGATTTCGAGGCCGCGATCCACTTGTATGCCTTGCCCCAGCAATGGCCGCAGTGGCGCTCATTGGCCGCGCGCTTGAAGGCCGGGGTGGCGTTGCTGTGTGAAGATTCGGGCGGCAGTTCGTTCGATGAGTCCTGCTCGACACCCTGGTTGCGCCTGGCTAGGATTTTTCCGCAAGCGGCGATTCCGCCGGCCAACCTGGCGACGACGCTCGAACTGGGCAGCATGGGCGACACCCGGGTGGAGCAGGCCCAGGCCAATTGCGAAGCCATCCTGGGATTTCTCGCGGAACAGGGCCTCATCGCCGGTGACTGGCCGGCCGCGCCGCAAGAATGCTGCGAGGGCTTGCCGTTCGAAGGCACGCAATACCTGTTCGCGCCGCACCATGGCGTGGTGAGTTTCCTGCGGGAGGCCGGGGAGTGGGTGGAGCGCGGCGATCCGCTGTTCGAGGTGGTCGATCCGTTGAATGACCGGGTCAGCGTTGTGCCAGCGGGCACCAGCGGCGTACTGTTCGCCCTGGATCGTGGGCGCTACACCCAGCCAGGTATCTGGCAGGCGAAAGTCGCCGGGCGCGAGCCTATTCGGGCGGGGAAATTGATCAACGACTGA	MQRIDHILPWSHLGTERSLSVFRYGHGPRKAYIQASLHADELPGMRTAWELKQRLNDLEARGLLKGVIELVPVANPIGLDQHLQSAHMGRFELGSGKNFNRSFVELSAPVAQRIGDRLGDDPAANITLIRQTMVEVLEDLPPPPSQLEALHRLLLRHACDADVTLDLHCDFEAAIHLYALPQQWPQWRSLAARLKAGVALLCEDSGGSSFDESCSTPWLRLARIFPQAAIPPANLATTLELGSMGDTRVEQAQANCEAILGFLAEQGLIAGDWPAAPQECCEGLPFEGTQYLFAPHHGVVSFLREAGEWVERGDPLFEVVDPLNDRVSVVPAGTSGVLFALDRGRYTQPGIWQAKVAGREPIRAGKLIND				NA	NA	NA	NA	NA
D1-36_03158	780	argT_4	COG0834	Lysine/arginine/ornithine-binding periplasmic protein	ATGAAGAAGCTTGTCATGTTCGGTGCCCTGGCACTGTCCGTATTATCCTTCTCAGCCGTGGCCGAAGACGCCAAGCCGATCCGTCTCGGGATCGAGGCCGGGTATCCACCCTTTTCGATGAAAACCCCTGACGGCAAGCTGGCCGGCTTCGATGTGGATATCGGCGACGCGCTGTGCGAGCAGATGAAGGTCAAGTGTGTCTGGGTCGAGCAGGAGTTCGACGGCCTGATCCCGGCGCTGAAGGTCAAGAAAATCGACGCGGTCCTGTCGTCCATGACGATCACGGACGACCGCAAGAAAAACGTCGACTTCACCATCAAGTACTACCACACCCCGGCGCGTTTCGTGATGAAGCAAGGCACCGACGTCAAGGACCCGCTGACCGAGCTCAAGGGCAAGAAAGTCGGTGTACTGCGCGCCAGTACCCATGACCGCTTCGCGACCGAAGTGCTGGTGCCGGCGGGGATCAACCTGGTGCGCTACACCTCTCAGCAGGAGGCCAACCTGGACATGGTTGCCGGTCGCCTCGACGCGATGCTGGCTGACTCGGTCAACCTCGACGAAGGTTTCCTGAAAACCGACGCCGGCAAAGGTTTTGCCTTCGTCGGGCCTACCTATGAAGACGCCAAGTACTTCGGCGGCGGCGCCGGCATTGCGGTGCGCAAGGGTGACAAAGAGCTTGCCGAGAAATTCAACGCTGCCATCGCTGAAATCCGCGCCAATGGCACCTACAAGAAAGTGCAGGACAAATACTTCGCCTTTGACGTCTACGGGCATTAA	MKKLVMFGALALSVLSFSAVAEDAKPIRLGIEAGYPPFSMKTPDGKLAGFDVDIGDALCEQMKVKCVWVEQEFDGLIPALKVKKIDAVLSSMTITDDRKKNVDFTIKYYHTPARFVMKQGTDVKDPLTELKGKKVGVLRASTHDRFATEVLVPAGINLVRYTSQQEANLDMVAGRLDAMLADSVNLDEGFLKTDAGKGFAFVGPTYEDAKYFGGGAGIAVRKGDKELAEKFNAAIAEIRANGTYKKVQDKYFAFDVYGH	PGPT0020680_155	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020680-aotJ-K10022	NA	NA
D1-36_03159	435			hypothetical protein	ATGACCAGCCCCGTTAGCGAAGTGCCTGCCGCCTCATCCGACCTGGCCTTGCAACACTTCAGCCGGCGCCTGATGTTCGAAACCGACTGTTCCGATGTCCATGCCAGCCAGGAAACGGGCGATGTCGATTTTGTACTGGTGGATGTACGCGGTCCGCTGGCCTACGAGCGCGGGCATGTGCCGGGGGCGATCAATCTTCCAACCCGCACGCTCACGGCGCACGCACTGGCGGCCTATCCCGAGACGACTCTGTTCGTGGTCTATTGCGCCGGGCCACACTGCAACGGCGCCAACAAGGCTGCGGTCCGCCTGGCGACCCTCGGGTATCCGGTCAAGGAAATGATTGGCGGCGTCATGGGCTGGCTCGACGAGGGCTTTCGCCTGACCGGTTCCGTAGAGCGCGTGGCGGAGAAGATCGTCAGCTGCGATTGCTGA	MTSPVSEVPAASSDLALQHFSRRLMFETDCSDVHASQETGDVDFVLVDVRGPLAYERGHVPGAINLPTRTLTAHALAAYPETTLFVVYCAGPHCNGANKAAVRLATLGYPVKEMIGGVMGWLDEGFRLTGSVERVAEKIVSCDC				NA	NA	NA	NA	NA
D1-36_03160	960	cdhR_8	COG4977	HTH-type transcriptional regulator CdhR	ATGCATCCTACACCCGGCCTCGTCGCGATCCTTGCCTACGACGGCCTGTGCACGTTCGAGTTCGGCGTCGCCGTCGAGATATTCGGACTGGCACGGCCCGAGTTCGATTTCCCGTGGTATGAGCACCGCATCGTCGCCGTCGACGAAGGCCCGATGCGCGCCATGGGCGGCTTCCAGGTGCTGGCCGATGGCGGCATGGAACTGCTCGACAGCGCTCGTACGATTGTCGTGCCGGGCTGGCGCATTCGCAGCGGTCCGCCCTCCGATGCCCTGCTCCAGGCCCTGCGGCGAGCCCATGAACGCGGCGCCCGTTTGTTGTCGATCTGTTCAGGAGCGTTCGTGCTTGCCGCCACGGGATTGCTCGACGGCCTGGGCGCCACGACTCATTGGCGCTACACCGACGAGCTCGCCGAGCGCTACCCCGCCATCGATGTGGATCCCGACGTGCTTTATGTCGATTCAGGCCAAGTGATCACGTCGGCTGGCAGCGCGGCAGGCATCGATGCGTGCCTGCACCTGGTTGCGCGGGATTTCGGAGCCCAGGTCGCCAACACCGTGGCACGCCGGCTGGTCATGCCGACGCAACGCACCGGCGGCCAGGCGCAATTCATTCCGTCGCCGGTCAGTCGCACACCGCGCAGCGACTTGTCCGGCGTCATGCAATGGGCCCGGGAGCGTCTCCACGAGCCGCTGGGTGTGCGCGAGCTGGCAAGCCACGCCGCCATGAGCGAACGAACCTTCCTGCGCCGCTTCACCCAGGCCTCTGGCCTTTCACCCAAGGCCTGGCTGCAACATGAACGCCTGGCTCGGGCGCGGGAACTGCTGGAGAGCACGAGCGACAACACCGACATCATTGCCCAACTCTGCGGCTACCGCTCGGTGGAAAGTTTCCGCGTGGCATTTCGTAGCGTGGTGGGGGTTGCGCCGTCGGTCTACCGAGAGCGGTTTGGGCGGGGATGA	MHPTPGLVAILAYDGLCTFEFGVAVEIFGLARPEFDFPWYEHRIVAVDEGPMRAMGGFQVLADGGMELLDSARTIVVPGWRIRSGPPSDALLQALRRAHERGARLLSICSGAFVLAATGLLDGLGATTHWRYTDELAERYPAIDVDPDVLYVDSGQVITSAGSAAGIDACLHLVARDFGAQVANTVARRLVMPTQRTGGQAQFIPSPVSRTPRSDLSGVMQWARERLHEPLGVRELASHAAMSERTFLRRFTQASGLSPKAWLQHERLARARELLESTSDNTDIIAQLCGYRSVESFRVAFRSVVGVAPSVYRERFGRG	PGPT0014658_5	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014658-ypdC-NA	NA	NA
D1-36_03161	756			hypothetical protein	ATGAAAAAACTCTTGGTGATCGGCATCGGTGCAGGTGATCCGGACCACTTGACGATGCAGGCGGTGAAGGCCTTGAACCAGGTGGATGTATTTTTCCTGATGGACAAGGGGCCTGCCAAGGACGGGTTGCTGGACTTGCGCCGCGAGATCTGTCGACGCTATATCGCCGACCATTCCTACCGTTTCGTCGAAGCCAGCAGTCCTGAGCGCGAGCGCGGCGATTCGGACTACGCGGGCACTGTCACGGAGCTGAATCGGGCGAAGCAGGCCATTTTCGAAGGGCTGATCGATGAGCAGTTATCGGACGGACAATGCGGCGGTTTCCTGGTGTGGGGCGACCCGTCGTTATACGACAGCACCTTGCGTATCCTCCAGGCGATCCTTGATTCGGGACGCTGCGCTTTCGAGTTCGAAGTGATCCCTGGCATCACCAGCGTCCAGGCCCTCGCGGCGCGACATAAAGTGTCATTGAATACCATTGGCGGTTCGCTGGAGATAACCACTGGCCGGCGGTTGGCGGCGGGGCAGGTCGGCGACGCGGAGAGCGTGGTGGTGATGCTCGATGCGCAGGACGCGTATCGTCAGGTACGCGATCCGGACCTGCACATCTACTGGGGCGCCTATGTAGGGACGGCGGACGAAATCCTGGTCGCCGGCCGGCTGGGGGACGTGGCCGATGACATCGAACGCACTCGCCAGGCGGCGCGGCAGGCCAATGGCTGGATCATGGACACGTACTTGTTGCGCAGACGCTGA	MKKLLVIGIGAGDPDHLTMQAVKALNQVDVFFLMDKGPAKDGLLDLRREICRRYIADHSYRFVEASSPERERGDSDYAGTVTELNRAKQAIFEGLIDEQLSDGQCGGFLVWGDPSLYDSTLRILQAILDSGRCAFEFEVIPGITSVQALAARHKVSLNTIGGSLEITTGRRLAAGQVGDAESVVVMLDAQDAYRQVRDPDLHIYWGAYVGTADEILVAGRLGDVADDIERTRQAARQANGWIMDTYLLRRR	PGPT0009265_461	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0009265-cobF-K02228	NA	NA
D1-36_03162	567			hypothetical protein	GTGCAAGCGACCCGCCTGACCTTGATGTGCCACGCCCGCACCGCCGCTCAGAAAAGCGCTCGCTTGGGCCTGGACGAACCGCTGGATGCCGGTTGGCTGGCGAAGCGCCCCGACATCGGTCGCCAATACCACCATGTCCGGCATCTGCTCTGCGGGCCGGAACTGAGGACGCGCCAGACGGCGGCCTTGTTGGGTGACTCACCCGTGGTGACCCCGGCATTGGCCGATTGTGATTTCGGACGGTGGCGGGGGGCGTCGGTCGACGAGTTGCTCGCGACCGAACCGCAGCACCTCCAGGCGTGGCGCGATGATCCGGACGCCGCGCCCCACGGCGGTGAATCCGTCAGCCAATTGTGTCGGCGCGTCGGTGACTGGCTGGCGTCCCTGGAAAAGACCCCGGGTCGTTGGTTGGCCGTTACCCATCCGTTCGTGATCCGCGCCGCCATGATGAACGTGCTGGGCTGCCAACCGGCCATGTTCAACCGGATCGATATCGAACCCCTTGGCGTCGTTGACCTGCGATTCAACGGGGTTTGGCGCTTGCGAGCCTTGGAGTCACGACCATGA	MQATRLTLMCHARTAAQKSARLGLDEPLDAGWLAKRPDIGRQYHHVRHLLCGPELRTRQTAALLGDSPVVTPALADCDFGRWRGASVDELLATEPQHLQAWRDDPDAAPHGGESVSQLCRRVGDWLASLEKTPGRWLAVTHPFVIRAAMMNVLGCQPAMFNRIDIEPLGVVDLRFNGVWRLRALESRP				NA	NA	NA	NA	NA
D1-36_03163	213			hypothetical protein	ATGCCTCTCTCCAGAGACCAGACCAGCGATCCATGCCTGGTTTTGCCGCCATCGGAAAGCCAGGCCATAGATGCCCTGCGCAGTCGGGCATTGTTCGAAGCGGCGTCCAGCCCGCTGGTTGAAGCCTGTCCAGCCTTGAAGGCCCGGGAGCCGGCCTTGACCCAGGCGTCGCCATCTGCCGAGCCTTGTGAGCACTATGCGCGAACCCATTGA	MPLSRDQTSDPCLVLPPSESQAIDALRSRALFEAASSPLVEACPALKAREPALTQASPSAEPCEHYARTH				NA	NA	NA	NA	NA
D1-36_03164	753			hypothetical protein	ATGCGCGAACCCATTGAATGCGCCGAATCAGGTCTGTACACCAAGCCTGCTTTCAGATTGCTGCGGGAAGAGTCGGACCATCCGCTGCTGCTGGTCTGTGAACATGCCAGCCGATTCATCCCAGGCGCGCTCAATGACCTGGGTCTGGATGAGACGGCGGCCCAGGAACATATCGCCTGGGACATCGGTGCCCTGGCCTTGGCCGAGCGGCTGTCCGAAACCCTTGGCGCGACCCTGCTGTCGGCCAACTACTCGCGACTGTTGATCGACCTGAACCGCCCATTGCACGTCCCCGACAGCATCCCGGCGCAAAGCGAGATCTACCAGATCCCCGGCAACCACTCGCTGGACGACGCCACGCGCGAATACCGCCAGCAGTGCCTGTTCCACCCTTTTCATGACCAACTGCGAACCCTGATCGACCGCCGCCTGGCTGACAACCGGGTCGTGCGGGTAGTGGGCATCCATAGTTTCACCCCGGTGTTCTACGGCCAGCCGCGCGCACTCGAGGCCGGCGTCCTGTTTGGCGAAGCCAGGGAATATGCCCAGCACATCGTCGAAGGGCTGGCCCGGCACTCGCTGCGGGTCGCCGGCAACCAGCCCTACAAGGTCAGCCCCTTGAGCGACATGACGGTTCCGGTACATGGCGACGGCCGCGGCCTGGATTCGGTGCTGATCGAAGTGCGCAACGACCAACTGCGCAGCCTCGAGTCGTTAAGGACCTGGAGCGCATACCTCGCTCCCCTGCTATAA	MREPIECAESGLYTKPAFRLLREESDHPLLLVCEHASRFIPGALNDLGLDETAAQEHIAWDIGALALAERLSETLGATLLSANYSRLLIDLNRPLHVPDSIPAQSEIYQIPGNHSLDDATREYRQQCLFHPFHDQLRTLIDRRLADNRVVRVVGIHSFTPVFYGQPRALEAGVLFGEAREYAQHIVEGLARHSLRVAGNQPYKVSPLSDMTVPVHGDGRGLDSVLIEVRNDQLRSLESLRTWSAYLAPLL				NA	NA	NA	NA	NA
D1-36_03165	1017	astA_2	COG3138	Arginine N-succinyltransferase subunit alpha	ATGCTGGCTTTACGTCCAGTTCAATTGACCGATTTGCCGCAACTGCAACAGCTGGCCCGCGATAGCCTGGTAGGCGTCACTTCGCTTCCCGACGACGTCGATCACCTGCGGGAAAAAATTCTCGCCTCGTGCGCCTCATTCGAGGCCGAAGTGCACACCCCGGGCGGGGAGAATTATTTTTTTGTTTTGCAGGAGCTGGAATCAGGTCGCCTCGTGGGCTGTTCGGAAATTGTCGCCACCACGGGTTGCGGCGAACCATTCTACAGCCTGCGCAACCGGCCGTTTTCCAGCGAATCCCGCGAGCTGAACATCCAGCACGGCGTACCCGCGCTGTCGCTCTGCCAGGACCTCAACGGTCAGACGCTGCTGCGCGGTTTCCACATCGACGCTGCACGGGTACGTACGCCGGAATCGGAGTTGCTTTCCCGGGCGCGGCTGATGTTCATCGGCGCCCACCCGCGGCGCTTTGCCGACTCGGTGATCACTGAGATCGTCGGTTTCAGCAGCGAGGATGGCCAGTCGCCCTTCTGGGACGCCGTCGGACAGCATTTTTTCGACCTGCCCTACAGCGAGGCCGAACGTCTGTGCGGCTTGCGCAGCCGAACCTTCCTCGCAGAGCTGATGCCTCAATACCCGATCTATGTCCCGATGCTGCCCCCGGCGGCCCAGGCCTGCATAGGCCGGGTCCACCCGGACGGCCAGGAAGCCTTCGACATCCTCGAGCGCGAGGGTTTCGAAACCAACAACTACGTGGATATCTTCGACGGTGGCCCCACGCTGCACGCCCGGGTCGCGAACATCCGCTCGATCACCCAGAGTCACTTGGCTATCGCGCGCCAGAGCCGACACATCGACGCCACGGGTCGCTACCTGGTCAGCAACGATCGCCTGGGCCATTACCGAGCCATTGTCGCCGACCTGGAAGTCAACGGCGAAGGCCCTGTCCCATTGCAGCCCGATATGTTGCAAGCGTTGGGCATTGCAGAGGGTGACCGGATCCGGGTGGCCCGCCTATGA	MLALRPVQLTDLPQLQQLARDSLVGVTSLPDDVDHLREKILASCASFEAEVHTPGGENYFFVLQELESGRLVGCSEIVATTGCGEPFYSLRNRPFSSESRELNIQHGVPALSLCQDLNGQTLLRGFHIDAARVRTPESELLSRARLMFIGAHPRRFADSVITEIVGFSSEDGQSPFWDAVGQHFFDLPYSEAERLCGLRSRTFLAELMPQYPIYVPMLPPAAQACIGRVHPDGQEAFDILEREGFETNNYVDIFDGGPTLHARVANIRSITQSHLAIARQSRHIDATGRYLVSNDRLGHYRAIVADLEVNGEGPVPLQPDMLQALGIAEGDRIRVARL	PGPT0020090_1077	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020090-astA-K00673	NA	NA
D1-36_03166	1035	aruG_2	COG3138	Arginine N-succinyltransferase subunit beta	ATGATTGTCCGCCCGGTCGCCCTGACCGACCTGCCTGCGTTGATGGACCTGGCGCGCTGCGCCGGCCCGGGGTTTACCAGCCTGCCGGCCAATGAAGAACGCCTGGCGCACCGAGTGCGCTGGGCCCAACGGACCTTCGCCGGGCAGGTGGAACGTGCCGATGCCGACTACCTGTTCGTGCTGGAGGACGACGACCGGCACGTGGTGGGTATCAGCGCGCTGACCGGTGCGGTGGGGGTGCGCGAGCCCTGGTACAACTACCGCGTGGGTGTGACCGTCAGCTCGGCGCCTGAATTGGGCATCCAGCGACAGATCCCGACGCTGTTCCTCAACAACGAAATGACCGGTCAATCGGAAATCTGCTCGCTGTTCCTTCATCCCCATCAGCGCCGTGGCCATAACGGGCGTTTGCTGTCCCTGGCGCGCCTGCTGTTCGTGGCCGAGTTTTCCCAGCTGTTTGGCGAAAAGCTGATTGCAGAATTGCGCGGTCGCGCGGACGACCAGGGCTGCTCGCCTTTCTGGGATAGCCTGGGACGACACTTCTTCAACAAGGACTTCAGCTACGCCGACCAGTTGGCTGGCATGGGCAACAAGGCCTTCATCGCCGAGCTGATGCCACGCCAACCGTTGTACACCTGCCTACTCACCGAGCAGGCCCAGGCAGCGATAGGCAAAGCGCATCCGGACACCGAACCCGCCTTGAAAATCCTCGGTGCCGAAGGCTTCGCCCACAAGGGATACGTGGACATCTTTGACGGCGGGCCGGTCATCGAGGCACCTGTCTCGAAGATCCGCAGCGTACGCGACAGCCAGCCACTGACCTTGACGATCGGCACGCCGGACGGGCAGGCGCCGGTGTGGCTGATCCACAACCGGCGCCTGGAAAGCTGCCGCGTCACCAGCGCCCGGGCCCACCTGCATGGTCAAAGCCTGCTCGTTGACCGCGCCACAGCCCAACGTCTGCAAGTGCAACCGGGCGACACGGTACGCGCCGTGACGTTGCTCAGGCCGCGGGAACAGGCCGAGGCGGCATAA	MIVRPVALTDLPALMDLARCAGPGFTSLPANEERLAHRVRWAQRTFAGQVERADADYLFVLEDDDRHVVGISALTGAVGVREPWYNYRVGVTVSSAPELGIQRQIPTLFLNNEMTGQSEICSLFLHPHQRRGHNGRLLSLARLLFVAEFSQLFGEKLIAELRGRADDQGCSPFWDSLGRHFFNKDFSYADQLAGMGNKAFIAELMPRQPLYTCLLTEQAQAAIGKAHPDTEPALKILGAEGFAHKGYVDIFDGGPVIEAPVSKIRSVRDSQPLTLTIGTPDGQAPVWLIHNRRLESCRVTSARAHLHGQSLLVDRATAQRLQVQPGDTVRAVTLLRPREQAEAA	PGPT0020090_417	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020090-astA-K00673	NA	NA
D1-36_03167	621			hypothetical protein	ATGAACGCCACCAACCCGCATACGGGAACCGTGATACTGCACCAGACGAATATAGGCAATATAAGTGTTAAATCACCTACATTCGACTCAACTTCATCGCCACTGTACTCAGTGCCCGGCCACAGCATTTTATTCGCGCTTGACCGCCCCTTCCAGGTCCAGCGATACACTTTGATGGAACAGTGTATCGAAAAGGCCGACAGCGTTATTGTTGACGAAAGAAACCCGCTGATCATCGACGGCCGTCATACATTATTCGACTACATCCAAACCGACCCCAAGCCAGCCAGACTTACGGGGCGAATCAATCTGCCAAACAGAGCGGCCGATATCAGCGTATTCGATCGTGTCACATTGAAAAAGATAGCGTGGTTGCCCCACGATGAAAGTGCCTCTCGTTATCTGGTCAGCCTGGAGCTGCTCGACACAATCCAAGACCTCGATGGCGTCAAGGTCGCGGAGGAGTTGGTCTACCACTATCATCCCGCTGTGGTGTGGAAAGCCTTCCAGATACTCTACCGAGCGGACCGGCCCAAGGCGCTGGCATACGCTCCATTGCTGAAAAAACACAAAAGTGCGCGCCTGGACAGCTTGCTTCGTCCACTGGAGAAGGCCGCATGA	MNATNPHTGTVILHQTNIGNISVKSPTFDSTSSPLYSVPGHSILFALDRPFQVQRYTLMEQCIEKADSVIVDERNPLIIDGRHTLFDYIQTDPKPARLTGRINLPNRAADISVFDRVTLKKIAWLPHDESASRYLVSLELLDTIQDLDGVKVAEELVYHYHPAVVWKAFQILYRADRPKALAYAPLLKKHKSARLDSLLRPLEKAA				NA	NA	NA	NA	NA
D1-36_03168	660			hypothetical protein	ATGAAACTCGACACTTTCCTGGAGCGCATAAACACTTACGATCTGCAGCGTGACAAAGCCGATGTCATTGAAGACATGCGCCAGCTGGCGACGAATCGTTCTTTATTGAGTCACCATCTGCATGACGTAATACAGAGAGATGGTTTCGCCATCCGCAACAATATCTACAATGCCTATGCCTTTGTACTGCACAGCAACGATGAGTTTACCCTGCGCCTGGGATTCTGGGCACCCGTGGAAACACATGACGAGAGCAAGACTTTCATCTACAACCTGAACCATAATCATGACTTCGACATGTATGCGGTGGGCTATAGCGGAGATGGTTATACAACGGTTGTCCGCGAAATACTTGATGAACTGCCCTTACAAATGGGCAAGGTGCCCAGATTAGGTAAGGAACGAAGCGTAAAACTGGCGCCAGGCGAAGTTTTATACATGCCTGCATTTCGAGAGTTCCACAAACAGATCGCGCCTCGGTCAATGTCTGCATCGTTGAGTCTGCTCATTCATCCTGAACACTCGATCAGACCGGACGAAGCCTGGTGTTTCGATGACAACTATAAGCCGTTTTACCCCGGCGTAGCTGCGCAAGAGACAGCGTTATTCAAAGACACGCTGTCGTTGCTCAACCCCGGGCAGTCATTGGCTGCCCTATAA	MKLDTFLERINTYDLQRDKADVIEDMRQLATNRSLLSHHLHDVIQRDGFAIRNNIYNAYAFVLHSNDEFTLRLGFWAPVETHDESKTFIYNLNHNHDFDMYAVGYSGDGYTTVVREILDELPLQMGKVPRLGKERSVKLAPGEVLYMPAFREFHKQIAPRSMSASLSLLIHPEHSIRPDEAWCFDDNYKPFYPGVAAQETALFKDTLSLLNPGQSLAAL				NA	NA	NA	NA	NA
D1-36_03169	186			hypothetical protein	ATGGATAACCTGATGAACAACTGGGACCAAGCGCCTTTGCTGCGAGCCGGTACGGATGCGGTGGATACCGCTGTCCAATTGACGAACGAGAACGAAGTCTTCTGCACTATTCCCTTCTCGACCCGCTTCAACGTTGGAAACATTCACGAGATCAAGAAGATGTGGGGGGAAACGACCCTGTCCTGA	MDNLMNNWDQAPLLRAGTDAVDTAVQLTNENEVFCTIPFSTRFNVGNIHEIKKMWGETTLS				NA	NA	NA	NA	NA
D1-36_03170	870		COG2513	Oxaloacetate decarboxylase	ATGTCCAGGCTTTCCCATCAAGATTTGCGTCGCAACTTCCGCCAATTGCTGGCTTCCGACACGTGCTACCACACTGCGTCCGTGTTCGACCCGATGTCAGCGCGCATAGCCGCAGACCTGGGATTCGAAGTGGGGATCCTCGGCGGCTCGGTCGCTTCATTGCAAGTGTTGGCCGCGCCGGATTTCGCCTTGATCACTCTCAGTGAATTTGCCGAACAGGCTACCCGCATCGGTCGCGTGGCCCAGCTGCCGGTGATCGCCGACGCTGACCACGGCTACGGCAACGCGCTGAACGTGATGCGCACGATCATCGAGCTCGAACGCGCCGGCATTGCCGCGCTGACGATCGAAGACACCCTGCTGCCCGCCCAGTTCGGCCGCAAGTCCACGGACCTCATCAGCGTGGCCGAAGGCGTCGGCAAGATCCGCGCCGCCCTGGAGGCCCGCGTCGATTCGGAGATGGCCATCATCGCCCGGACCAACGCGGGAATACTGCCGGTTCAGGAAATCATCAGCCGCACCCAACAATACGAACGTGCCGGCGCCGATGGGATCTGCATGGTCGGGGTACAGGACTTCGAGCATCTGGAAAAGATCAGCGAGAACCTGAACGTGCCGCTGATGCTGGTCACTTACGGCAACCCGCTGCTGCGTGACGACAAACGCCTGGCCGAGCTGGGTGTACGGATCACCATCGATGGCCACGGCGCCTATTTCGCCGCGATCAAGGCCACTTATGACAGCCTGCGGGAACAGCGCCAGATTTTTACCCAGGCGTCGGACCTGAGCGCCACCGAACTGACCCACACCTACACCCAGCCCGAGGAGTACATCCGTTGGGCCGAGGAATACATGAGCGTCAAGGAATAA	MSRLSHQDLRRNFRQLLASDTCYHTASVFDPMSARIAADLGFEVGILGGSVASLQVLAAPDFALITLSEFAEQATRIGRVAQLPVIADADHGYGNALNVMRTIIELERAGIAALTIEDTLLPAQFGRKSTDLISVAEGVGKIRAALEARVDSEMAIIARTNAGILPVQEIISRTQQYERAGADGICMVGVQDFEHLEKISENLNVPLMLVTYGNPLLRDDKRLAELGVRITIDGHGAYFAAIKATYDSLREQRQIFTQASDLSATELTHTYTQPEEYIRWAEEYMSVKE	PGPT0001930_44	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001930-bcpA-K01003	NA	NA
D1-36_03171	1230	bbsG		(R)-benzylsuccinyl-CoA dehydrogenase	ATGGATTTTGCCTATTCCCCCAAGGTTCAGGAGCTGCGTGAACGCGTTACGGCGTTCATGGATGCGCATGTCTACCCGGCCGAAGCGGTATTCGAACGACAAGTGGCCGAAGGTGACCGTTGGCAACCCACCGCGATCATGGAGGAGCTGAAGGCCAAGGCCCGGGCCGAAGGGCTGTGGAATCTGTTCCTGCCGGAATCCGAACTGGGCGCAGGCTTGACCAACCTTGAATATGCGCCGCTGGCGGAGATCATGGGGCGCTCGCTGCTGGGGCCGGAGCCGTTCAACTGCTCGGCGCCGGACACCGGCAACATGGAAGTGCTGGTGCGTTACGCCAATGAAGAACAAAAGCAGCGCTGGCTGGAACCGTTGCTGCGGGGAGAGATTCGCTCGGCCTTCGCCATGACTGAACCGGACGTCGCTTCGTCGGATGCCACCAACATGGCCGCCCGTGCCGAGCGCGATGGCGACCAGTGGGTCATCAACGGTAAAAAGTGGTGGACCTCAGGCGCCTGCGACCCGCGCTGCAAGATCCTGATCTTCATGGGCCTGAGCAATCCCGATGCACCTCGTCACGCCCAGCATTCGATGATCCTGGTGCCGGTGGACACGCCCGGGGTCAAGATCGTCCGGCCACTACCGGTGTTCGGTTACGACGACGCGCCCCATGGCCACGCCGAAGTGCTGTTCGACAACGTGCGGGTGCCGTACGAAAACGTCCTGCTAGGCGAGGGCCGCGGTTTCGAAATTGCCCAGGGCCGCCTCGGCCCGGGCCGGATTCATCACTGCATGCGCTCCATCGGCATGGCGGAGCGCGCATTGGAATTGATGTGTCAGCGGGCCATCAGTCGCACCGCCTTCGGCAAGCCACTGGCGCGCCTGGGTGGCAACATCGACAAGATCGCCGATTCGCGGATGGAGATCGACATGGCTCGCCTGCTGACGTTGAAGGCGGCCTATATGATGGACACGGTCGGCAACAAAGTGGCCAAGAGCGAAATCGCCCAGATCAAGGTCGTTGCGCCGAACGTGGCGCTGAAGGTCATCGACCGGGCGATCCAGATTCATGGCGGGGCTGGGGTTTCCAACGACTTTCCGCTGGCCTACATGTATGCCATGCAGCGAACGTTGCGCCTGGCCGACGGCCCAGATGAAGTCCACCGCGCCGCCATCGGCAAGTTCGAGATCGGCAAGTATGTGCCCAAGGAGATGTTGCGCAGCGGGCATTGA	MDFAYSPKVQELRERVTAFMDAHVYPAEAVFERQVAEGDRWQPTAIMEELKAKARAEGLWNLFLPESELGAGLTNLEYAPLAEIMGRSLLGPEPFNCSAPDTGNMEVLVRYANEEQKQRWLEPLLRGEIRSAFAMTEPDVASSDATNMAARAERDGDQWVINGKKWWTSGACDPRCKILIFMGLSNPDAPRHAQHSMILVPVDTPGVKIVRPLPVFGYDDAPHGHAEVLFDNVRVPYENVLLGEGRGFEIAQGRLGPGRIHHCMRSIGMAERALELMCQRAISRTAFGKPLARLGGNIDKIADSRMEIDMARLLTLKAAYMMDTVGNKVAKSEIAQIKVVAPNVALKVIDRAIQIHGGAGVSNDFPLAYMYAMQRTLRLADGPDEVHRAAIGKFEIGKYVPKEMLRSGH	PGPT0008385_3077	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249	NA	NA
D1-36_03172	930	pcpR_3		PCP degradation transcriptional activation protein	ATGAATCTGAGCAAGGTCGACCTCAACCTTTTCATTGTCTTCGATGCGATCTACACCGAAGCCAACCTGACCCGTGCCGGGCAGATCGTCGGCATCACTCAGCCGGCCGTGTCCAATGCCCTGGCGCGTTTGCGCGAGACCTTCAATGATCCGCTGTTCGTGCGCACCGCCCAGGGCATGGTGCCTACACCGATGGCCCAGAATATTATCGGGCCGGTGCGCAACGCCCTGTCGCTGCTGCGGGTATCGGTACAGGAAAGTCGGATCTTCAACCCACTGCAAGCCGTCAAGACCTACCGCATCAGCATGACCGACCTCACCGAGGGCGTGATCCTGCCGCCACTGTTCCAGCGCCTGCGTCGCCTGGCGCCGACCGTGGCTATCGAGAGTTTTCTGTCCAAGCGCCGGGAGACCACCAAGGAGCTGGCCGCCGGACGCCTGGACTTCGCGGTGGACGCCCCGCTCAACACCGACCCACAAGTACGCCACGTCAAGCTGATGGAGGACCGTTACGTCTGCGCCATGCGCAAGGGCCATCCGCTGGCGAACAAGGAAAAACTCAGCCTCGACGATTACCTGGCCCAGACCCACGTGCATATTTCCAGTCGCCGCAACGGCCTGGGTTACGTGGACCTGGCACTCGGCAAAATGGGCATACAGCGCAAGATTGCCCTGCGTTCGCAGCATTATCTGATGGCGTCCCAGGTGCTCCAGCAGACCGATATGGTCATGACTGTTCCGGAGCGCTTCACGCGCCGCCATGACCTGCATGCGGTCCACGTGCCCGTCAACGATGTGCCGCCAGTGGAAACCCATCTCTACTGGCACGAAAGCACCGACCAGGACCCGGCCAATCGTTGGATGCGCGAGCAGATCATCGAACTGTGCCAACAGGTGACGGCCCATGAGAAGAAGCTCGATAAGGTTTAG	MNLSKVDLNLFIVFDAIYTEANLTRAGQIVGITQPAVSNALARLRETFNDPLFVRTAQGMVPTPMAQNIIGPVRNALSLLRVSVQESRIFNPLQAVKTYRISMTDLTEGVILPPLFQRLRRLAPTVAIESFLSKRRETTKELAAGRLDFAVDAPLNTDPQVRHVKLMEDRYVCAMRKGHPLANKEKLSLDDYLAQTHVHISSRRNGLGYVDLALGKMGIQRKIALRSQHYLMASQVLQQTDMVMTVPERFTRRHDLHAVHVPVNDVPPVETHLYWHESTDQDPANRWMREQIIELCQQVTAHEKKLDKV				NA	NA	NA	NA	NA
D1-36_03173	402	cueR	COG0789	HTH-type transcriptional regulator CueR	ATGAGCAGCCTGACCTACAGCATCTCCGATCTCGCCCGCGAGCTGGATATCACCACTCGAGCCATCCGCTTCTATGAAGAACAGGGTCTCTTGCGTCCGGAGCGTCGAGGCCAGGAACGTGTTTACTCGCCACGGGACAAAGTCAGCCTGAAACTGATCCTGCGGGGCAAACGCATTGGGTTTTCCCTCGCTGAATGCCGTGAGCTGATCGAGCTGTACGACCCCACCAGCGGCAATCAGAAACAGTTGCACAGCATGCTGGCGAAAATTGCCGAGCGTCGTGAGCAACTCGAACAGCAGCTGTTGGACATCGAACAGATGAAACTGGAACTCGACACCGCCGAGGAACGTTGCATCCAGGCGCTGGAACAGACGCTCAAGGGCGAGGAAACCGTCCAGTAA	MSSLTYSISDLARELDITTRAIRFYEEQGLLRPERRGQERVYSPRDKVSLKLILRGKRIGFSLAECRELIELYDPTSGNQKQLHSMLAKIAERREQLEQQLLDIEQMKLELDTAEERCIQALEQTLKGEETVQ	PGPT0004135_1043	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
D1-36_03174	900	liuE	COG0119	3-hydroxy-3-isohexenylglutaryl-CoA/hydroxy-methylglutaryl-CoA lyase	ATGTCCCTGCCCTCTTTTGTACGCCTGATCGAAGTCGGCCCCCGCGACGGGCTGCAGAATGAATCGCAACCCATCAGCGTCACCGACAAGGTGCGCCTGGTGGATGCCTTGAGCGCCGCGGGCCTCGGTTACATCGAGGTTGGCAGTTTTGTCTCGCCCAAATGGGTGCCGCAAATGGCCGGCTCGGCCGAGGTGTTCGCGCAGATTCAGCGCAAGCCCGGTGTGACCTACGGCGCGTTGGCGCCGAACCTGCGGGGGTTCGAGGACGCGCTGGCGGCAGGCGTCAAGGAGGTTGCGGTGTTCGCGGCGGCATCCGAAGCATTTTCCCAACGCAACATCAATTGCTCCATCAAGGAAAGCCTGGAACGTTTCGCCCCGATCATGGAGGCCGCACAGCGCAACGGTGTCAACGTACGCGGGTACGTGTCGTGTGTGCTGGGCTGTCCTTATGAAGGCGCGGTCGAACCCGAGCAAGTGGCCTGGGTCGCCCGGGAGCTGTACGACATGGGCTGCTACGAGGTTTCCCTCGGCGACACCATCGGGACGGGCACCGCCGGCGCCACACGCAGGATGTTTGAAGTGGTTTCGGGTGACGTTCCCCGGGAAAAACTCGCGGGACACTTCCATGACACCTATGGCCAGGCAATGGCCAACGTCTACGCCAGCCTTCTGGAAGGTATCGCCGTGTTCGACAGTTCCATTTCCGGCTTGGGCGGCTGTCCCTATGCCAAGGGCGCCAGCGGTAACGTCGCCACCGAGGACGTGCTTTACCTGCTCAAGGGGCTGGGTATCGAAACCGGTATCGACCTGGACGCACTGATTGCCGCGGGCCAGCAGATTTGTGACGTGCTGGGCCGCCCCACCGGTTCGCGTGTTGCAAAGGCGCGGCTGGCGCAGTGA	MSLPSFVRLIEVGPRDGLQNESQPISVTDKVRLVDALSAAGLGYIEVGSFVSPKWVPQMAGSAEVFAQIQRKPGVTYGALAPNLRGFEDALAAGVKEVAVFAAASEAFSQRNINCSIKESLERFAPIMEAAQRNGVNVRGYVSCVLGCPYEGAVEPEQVAWVARELYDMGCYEVSLGDTIGTGTAGATRRMFEVVSGDVPREKLAGHFHDTYGQAMANVYASLLEGIAVFDSSISGLGGCPYAKGASGNVATEDVLYLLKGLGIETGIDLDALIAAGQQICDVLGRPTGSRVAKARLAQ	PGPT0008315_2971	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_TERPENE_UTILIZATION	PLANT_DERIVED_CITRONELLOL-CITRONELLAL-CITRONELLATE_DEGRADATION,PGPT0008315-hmgL-K01640	NA	NA
D1-36_03176	1698	fadD3_2	COG0318	3-[(3aS,4S,7aS)-7a-methyl-1,5-dioxo-octahydro-1H-inden-4-yl]propanoyl:CoA ligase	ATGGATCAACCCGGTTCGCAAGCGCAATCGAGCTACACCCGAGGCAGCCAAGCCAAGTCCTTGCTGGAGCAGACCATTGGCCAAGCATTCGACCAGACCGTGGCTCGATGCCCTGATGGCGAAGCACTGGTGGTTCGTCACCAGTCGCTGCGCTACAAGTGGCACGAACTGGCCGAAGTGGTCGACTTACACGCACGGGCTTTTTTGGCGTTGGGGTTGAAGACAGGCGATCGCCTGGGCATATGGGCGCCCAACTGTGCGCAGTGGTGCGTGAGTCAGTTCGCCAGTGCGAAGATCGGCGTGATTCTCGTCAATATCAACCCGGCGTATCGTGCCTCCGAACTGGAGTACGTACTCAAGCAGTCCGGCTGCCAGTGGCTGGTGTGCGCGGGGTCATTCAAGACCTCGGATTACCATGCCATGTTGCAAGCATTGGCGCCGGAACTGGCAGAGCAACCTATCGGGCATTTGCACAGCGAGCGCCTTGCGGATCTGCGCGGTGTGATCAGCCTCGATCCGCAGCCACCCTCAGGCTTCCTGCCTTGGTCGCAGTTGACGGCCCTGGGTGCCTCGGTGTCGCCAGGGCAACTGGCCGAGCGCCAGGCCAGCCTGCGTTTCGATCAGCCCGTGAATATCCAGTACACCTCCGGGACCACCGGGTTTCCCAAGGGGGCGACCCTTAGTCATCACAATATTCTCAACAACGGCTACATGGTGGGTGAAAGCCTCGGCCTGAGCGCTGGCGATCGCTTGGTGATCCCAGTGCCGCTGTATCACTGTTTTGGCATGGTCATGGGCAACCTGGGTTGCGTGACGCACGCCAGCACCATGATCTACCCCAACGACGCGTTCGATCCGTTGCTGACCCTGCGCACCGTGGCCGAGGAAAAAGCCACCGCGTTGTATGGTGTGCCCACCATGTTCATTGCCATGCTGGACCAGCCGCAACGGGGGGATTTCGACCTGTCCAGCCTGCGTACCGGGATCATGGCCGGCGCTACGTGCCCCATCGAGGTGATGCGGCGAGTCATCAACGAGATGCACATGGCTGAGGTGCAAATTGCCTACGGCATGACGGAAACCAGTCCGGTGTCGTTGCAGACTGGTCCTACAGATGAATTGGAATTACGCGTCACTACCGTCGGCCGCACTCAGCCGCAACTGGAAAGCAAAATCATCGACCAGGCGGGGGAAATCGTCCCTCGCGGCACCATCGGTGAGTTGTGTACGCGAGGCTACAGCGTGATGCTCGGCTATTGGAATAATCCCAAGGGCAGTGCCGAAGCCATCGACTCGCAAGGCTGGATGCACACCGGCGACCTGGCGATCATGGATGGGCAGGGTTACGTGCGTATCGTCGGGCGCAACAAGGACATGATCATCCGTGGTGGAGAGAATGTTTATCCTCGGGAGTTGGAAGAATTCTTTTTCACTCATCCCGCAGTGGCCGACGTACAAGTGATTGGCATACCTTGCTCGCGTTATGGCGAAGAGATCGTAGCCTGGATCAAGTTCCACCCCGGGCACAGCGCCTCCGAGCAAGAGCTGCAAGCGTGGTGCAAGGAGCGAATTGCTCACTTCAAGACGCCGCGGCATTTCAAGTTCGTCGAAGAATTCCCCATGACGGTCACGGGCAAGATCCAGAAATTTCGCATGCGGGAAATCAGCATCGAAGAACTGAGCGATAGCAATGGCTGA	MDQPGSQAQSSYTRGSQAKSLLEQTIGQAFDQTVARCPDGEALVVRHQSLRYKWHELAEVVDLHARAFLALGLKTGDRLGIWAPNCAQWCVSQFASAKIGVILVNINPAYRASELEYVLKQSGCQWLVCAGSFKTSDYHAMLQALAPELAEQPIGHLHSERLADLRGVISLDPQPPSGFLPWSQLTALGASVSPGQLAERQASLRFDQPVNIQYTSGTTGFPKGATLSHHNILNNGYMVGESLGLSAGDRLVIPVPLYHCFGMVMGNLGCVTHASTMIYPNDAFDPLLTLRTVAEEKATALYGVPTMFIAMLDQPQRGDFDLSSLRTGIMAGATCPIEVMRRVINEMHMAEVQIAYGMTETSPVSLQTGPTDELELRVTTVGRTQPQLESKIIDQAGEIVPRGTIGELCTRGYSVMLGYWNNPKGSAEAIDSQGWMHTGDLAIMDGQGYVRIVGRNKDMIIRGGENVYPRELEEFFFTHPAVADVQVIGIPCSRYGEEIVAWIKFHPGHSASEQELQAWCKERIAHFKTPRHFKFVEEFPMTVTGKIQKFRMREISIEELSDSNG	PGPT0008380_8037	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897	NA	NA
D1-36_03177	1164	acdA	COG1960	Acyl-CoA dehydrogenase	ATGAGCTACCCATCCCTGAATTTTGCCCTTGGCGAAACCATCGATATGTTGCGCGACCAGGTCCAGTCCTTCGTCAAGGCCGAGCTGGCGCCTAGGGCAGCCCAGATCGACATCGACAATCTGTTCCCTGCCGACATGTGGCGCAAATTCGGCGACATGGGCTTGCTGGGCATCACTGTGCCGGAAGAATACGGCGGTGCCGGCCTGGGCTATCTGGCCCACGTGGTCGCCATGGAGGAAATCAGCCGCGGCTCGGCCTCGGTCGCCCTTTCCTACGGCGCCCACTCCAACCTGTGCGTCAATCAAATCAACCGCAACGGCACCCATGAGCAAAAGAGCAAGTACCTGCCCAAGCTCATCAGTGGCGAAGATGTCGGCGCCCTCGCCATGAGCGAACCGAATGCCGGCTCCGACGTGGTTTCCATGAAACTGCGCGCCGAAAAACGTGGCGACCGCTTTGTGCTCAACGGCAGCAAGACCTGGATCACCAACGGGCCCGATGCCAACACCTACGTCATTTACGCCAAGACTGACCTGGAAAAAGGCCCTCATGGCATCACTGCGTTCATCGTCGAACGCGACTGGAAAGGCTTCAGCCGCAGCAACAAATTCGACAAGCTCGGCATGCGCGGCTCCAACACATGCGAGTTGTTTTTCGATGACGTCGAAGTGCCCGAGGAAAATATCCTCGGCGTGCTCAATGGTGGCGTGAAAGTGTTGATGAGCGGCCTCGACTATGAGCGCGTGGTCTTGTCCGGTGGCCCGACCGGCATCATGCAGGCGTGCATGGACCTGATCGTTCCGTACATCCACGACCGCAAGCAGTTCGGCCAGAGCATCGGCGAATTTCAGTTGATCCAAGGCAAGGTCGCCGACATGTACACCCAGCTCAACGCCAGCCGCGCCTATCTGTACGCAGTGGCCCAGGCGTGCGAGCGCGGCGAAACCACCCGCAAGGACGCCGCCGGGGTGATCCTCTACAGCGCCGAGCGCGCCACGCAAATGGCCCTCGATGCCATCCAGATATTGGGCGGCAACGGCTACATCAATGAATTCCCGGCTGGTCGTCTTCTGCGTGACGCCAAGCTGTACGAAATCGGCGCGGGCACCAGTGAGATTCGTCGGATGTTGATTGGCCGCGAACTGTTCAACGAAACCCGCTAA	MSYPSLNFALGETIDMLRDQVQSFVKAELAPRAAQIDIDNLFPADMWRKFGDMGLLGITVPEEYGGAGLGYLAHVVAMEEISRGSASVALSYGAHSNLCVNQINRNGTHEQKSKYLPKLISGEDVGALAMSEPNAGSDVVSMKLRAEKRGDRFVLNGSKTWITNGPDANTYVIYAKTDLEKGPHGITAFIVERDWKGFSRSNKFDKLGMRGSNTCELFFDDVEVPEENILGVLNGGVKVLMSGLDYERVVLSGGPTGIMQACMDLIVPYIHDRKQFGQSIGEFQLIQGKVADMYTQLNASRAYLYAVAQACERGETTRKDAAGVILYSAERATQMALDAIQILGGNGYINEFPAGRLLRDAKLYEIGAGTSEIRRMLIGRELFNETR	PGPT0002285_734	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002285-bcd-K00248	NA	NA
D1-36_03178	1608		COG4799	Methylmalonyl-CoA carboxyltransferase 12S subunit	ATGGCCACGCTGCACACCCAGCTCCACACCCGCTCGCCCGAGTTCATCGCCAACCGCGACGCGATGCTTGGACAGGTCGAGGCTTTGCGCACCTTGCTCACACACATCCAGCAAGGCGGCGGGCCCAAGGCCCAGGAGCGGCACACGTCCCGGGGCAAATTGCTCCCGCGCGAACGCATCAATCGCTTGCTGGATCCAGGCTCGCCCTTTTTGGAAATCAGCCCGCTGGCGGCTTACGAAGTCTACGGGGAAGACGTGCCGGCGGCCGGCGTGATCGCCGGCATCGGTCGCGTGGAAGGCGTCGAGTGCATGATCGTCGCTAACGACGCGACGGTCAAAGGCGGTTCGTATTATCCGCTGACGGTGAAAAAACACCTGCGGGCCCAGACCATCGCCCAACAGAACCGCCTGCCCTGCATTTACCTGGTGGATTCCGGCGGCGCGAACCTGCCACGCCAGGATGAAGTGTTCCCCGACCGCGAGCATTTCGGCCGCATTTTCTTCAACCAGGCCAACATGAGTGCCCAGGGCATCCCGCAGATTGCCGTGGTCATGGGCTCCTGCACCGCCGGCGGCGCCTATGTGCCGGCGATGGCGGACGAGGCGATCATGGTCCGCCAGCAGGCGACGATCTTCCTCGCCGGCCCGCCCCTGGTAAAAGCCGCTACCGGCGAAGTGGTCAGCGCCGAAGACCTGGGTGGTGCCGATGTGCACTGCAAGATTTCCGGGGTGGCCGACCATTACGCCGACAGCGACGAGCACGCCCTCGCATTGGCACGTCGCAGCGTGGCCAACCTCAATTGGCGCAAGCTTGGCGATGTGCAGCAACGCGCACCCATCGCCCCGCTGTATTCGAGTGACGAGCTTTATGGTGTGGTCTCGGCCGATGCCAAGCAGCCGTTCGATGTGCGGGAGGTCATTGCGCGGCTTGTCGATGGTTCGGTGTTCGACGAATTCAAGGCGCTGTTCGGAACGACCCTGGTGTGCGGCTTCGCGCATTTGCACGGTTATCCAATCGCCATCCTCGCCAATAACGGCATCCTGTTCGCCGAGGCCGCGCAGAAAGGCGCGCATTTCATCGAACTGGCCTGCCAGCGCGGGATTCCCCTGTTGTTCCTGCAAAACATCACGGGCTTTATGGTCGGCCAGAAATACGAAGCCGGCGGCATCGCCAAGCACGGCGCGAAACTGGTGACCGCCGTGGCCTGCGCCCGGGTACCGAAGTTCACCGTAATCATCGGTGGCAGTTTCGGCGCGGGGAACTATGGCATGTGCGGCCGCGCCTATGACCCGCGGTTCCTGTGGATGTGGCCCAATGCCCGGATCGGCGTGATGGGTGCCGAGCAAGCCGCCGGCGTGCTCGTGCAAGTCAAGCGCGAACAGGCCGAACGCAGCGGCCAGCCCTTCAGCGCCAGCCAGGAAGCCGAGATCAAGCAACCGATTCTCGATCAATACGAAGAACAGGGGCACCCCTATTATTCCAGCGCGCGGCTGTGGGACGACGGCGTCATCGACCCGGCGCAGACCCGCGATGTGCTGGGGCTGGCCCTGTCCGCGTCGCTGAACGCGCCCATCGAACCGAGCCGCTTCGGCGTGTTCAGGATGTAA	MATLHTQLHTRSPEFIANRDAMLGQVEALRTLLTHIQQGGGPKAQERHTSRGKLLPRERINRLLDPGSPFLEISPLAAYEVYGEDVPAAGVIAGIGRVEGVECMIVANDATVKGGSYYPLTVKKHLRAQTIAQQNRLPCIYLVDSGGANLPRQDEVFPDREHFGRIFFNQANMSAQGIPQIAVVMGSCTAGGAYVPAMADEAIMVRQQATIFLAGPPLVKAATGEVVSAEDLGGADVHCKISGVADHYADSDEHALALARRSVANLNWRKLGDVQQRAPIAPLYSSDELYGVVSADAKQPFDVREVIARLVDGSVFDEFKALFGTTLVCGFAHLHGYPIAILANNGILFAEAAQKGAHFIELACQRGIPLLFLQNITGFMVGQKYEAGGIAKHGAKLVTAVACARVPKFTVIIGGSFGAGNYGMCGRAYDPRFLWMWPNARIGVMGAEQAAGVLVQVKREQAERSGQPFSASQEAEIKQPILDQYEEQGHPYYSSARLWDDGVIDPAQTRDVLGLALSASLNAPIEPSRFGVFRM	PGPT0008345_330	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
D1-36_03179	819	menB_2		1,4-dihydroxy-2-naphthoyl-CoA synthase	ATGACTCAGTACAGCACGCTCGAATTGCAAACCGACCCGCGCGGCTTCGCCATCCTGTGGCTCAGCCGCGAATCAAAAAACAACGCGTTCAACGCCGAGATGATCCGAGAGCTGATTCTCGCTCTGGACCAGGTCGGCAGCGACCCGAACCTGCGCTTCCTGTTGCTCCGTGGCCGGGGCAAACACTTCAGCGCCGGCGCCGACCTGGCCTGGATGCAACAGTCCGCCGAACTCGATTACCACACCAACCTGGACGACGCCCGGGAACTGGCGGAGCTGATGTACAACCTCGCCAAGTTGAAGATTCCAACGTTGGCGGTGGTTCAGGGAGCCGCGTTTGGCGGCGCGCTGGGGCTGATCAGCGCCTGCGACATGGCCATCGGCGCCGACGAAGCGCAATTTTGTCTGTCAGAGGTGCGCATCGGCCTGGCACCGGCAGTGATCAGTCCATTCGTGGTGCAAGCCATCGGCGAACGGGCGGCGCGGCGTTACGCCCTGACCGCCGAACGCTTCGGCGGACAACGTGCGAAAGAGATCGGCTTGCTGTCGGAAAGTTACCCCGCCGAGACGTTGGACGATCAGCTCGGGCAATGGATCAACAACCTGTTGCTCAACAGTCCAGCGGCCATGCGCGCCAGCAAGGAACTGCTGCGTGAAGTCGGCAACGGTGCGCTCACGCCGGCGCTGCGCCGCTACACCGAAAACGCCATCGCCCGGATACGTGTCAGCCCTGAAGGTCAGGAGGGCTTGCGAGCTTTCCTGCAAAAACGCCCGCCCAGTTGGCAAGCCGAGTCGAACAACAAGGAGCCGCGTCAATGA	MTQYSTLELQTDPRGFAILWLSRESKNNAFNAEMIRELILALDQVGSDPNLRFLLLRGRGKHFSAGADLAWMQQSAELDYHTNLDDARELAELMYNLAKLKIPTLAVVQGAAFGGALGLISACDMAIGADEAQFCLSEVRIGLAPAVISPFVVQAIGERAARRYALTAERFGGQRAKEIGLLSESYPAETLDDQLGQWINNLLLNSPAAMRASKELLREVGNGALTPALRRYTENAIARIRVSPEGQEGLRAFLQKRPPSWQAESNNKEPRQ	PGPT0026240_49	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR_VIRULENCE_REGULATORY_SYSTEM,PGPT0026240-paaK-K01912	NA	NA
D1-36_03180	1950	accA1	COG4770	Acetyl-/propionyl-coenzyme A carboxylase alpha chain	ATGAGCGCCCCTATCCTCAATACGCTACTGGTCGCCAATCGAGGTGAAATCGCCTGCCGGGTCATGCGCACAGCCAAGGCCATGGGCCTGGCTACCGTCGCGGTGCACAGCGCCACCGACCGTGACGCGCGCCATTGCCGTGAAGCCGATATCCGCGTCGACCTGGGCGGTAGCAAGGCCGCCGACAGCTACCTGCAAATCGACAAACTGATCGCCGCAGCCCTTGCCAGCGGCGCCCAGGCCATCCATCCCGGCTACGGTTTTCTTTCTGAGAATGCCGGCTTCGCCAGGGCCATTGAAAAAGCCGGGCTGATCTTCCTGGGCCCACCCGCCTCGGCCATCGACGCCATGGGCAGCAAGTCCGCCGCCAAGGCCTTGATGGAAACCGCCGGCGTGCCGCTGGTGCCTGGCTATCACGGTGAAGCCCAGGATCTGGAAACCTTCCGCGCCGCCGCCGAGCGAATCGGCTACCCGGTTCTGCTCAAAGCAACGGCGGGTGGCGGCGGTAAGGGCATGAAGGTCGTGGAAGACGTCAGCCAACTGGCCGAAGCACTGGCATCGGCGCAGCGCGAGGCGCAATCATCGTTCGGCGACGCGCGCATGCTGGTGGAAAAATACCTGCTCAAGCCGCGCCACGTGGAAATTCAGGTATTCGCCGACCAACACGGTCACTGCCTGTACCTCAACGAGCGCGATTGCTCGATCCAGCGCCGGCACCAAAAAGTTGTCGAAGAGGCTCCCGCTCCGGGTCTGAGTCCGGAGCTGCGCCGGGCAATGGGCGAGGCCGCGGTGCGCGCCGCCCAGGCCATCGGTTATGTCGGCGCGGGCACGGTGGAGTTCCTGCTGGATTCGCGGGGCGAGTTCTTCTTCATGGAGATGAACACCCGGCTGCAGGTCGAGCATCCGGTCACCGAAGCGATTACCGGCCTCGATCTGGTGGCCTGGCAGATCCGCGTGGCCCAAGGCGAACCGCTGCCGATTACCCAGGAACAAGTTCCGTTGCGGGGCCATGCCATCGAAGTACGGCTTTATGCCGAAGACCCCGCCAATGATTTCCTCCCCGCCACCGGACGCCTGGCGTTATACCGTGAATCCGCGGGGGGCGAAGGTCGACGGGTCGACAGCGGCGTAGAAGAAGGTGACGAGATTTCTTCGTTCTACGACCCGATGCTCGGCAAGCTGATCGCCTGGGGCGAAAACCGTGAGCAGGCCCGTCTACGGTTGCTCGCGATGCTGGATGAGTTCGCCATCGGTGGCCTGAGAACCAACATCGGTTTTCTGCGGCGCATCGTCGGCCACCCGGCCTTTGCAGCGGCGCAACTCGATACCGGATTTATCCCACGCTACCAAGCGCAACTACTGCCCGAACCTGGCGAATTGGACGACGAGTTCTGGTACGCGGCGGCCCTTGCCTTTGCCTTGGGCATGACGCCTCGCGTCCGCGTGGATGACCTCAATTCCCCCTGGGCCGAGAGCACTGGGTTGCGCCTGGGGCTGCCAGGGGAAACCACCCTGCATCTGGTCTGTGGTGGCCAGGATCGGGCGATAACGGTGGACGTTACCGCCCGCAGCGCCGAGCTCAAGGGGGAGCACCTGGTCATCGAGCGTAACGGCCTGCGTCGCAGCCATCGGGCTGTTCGCCAGGGCGACAGCCTTTATCTGCAATGGGCGGGCGATTTGCATCGCGTCGATGTCTACGACCCGTTAGCCGCCGCCGAGGCCAGCCACGGCCATCAGGGCGGCTTGGTCGCACCTATGAATGGCAGCATCGTGCGGGTGCTGGTGAGTGTCGGGCAACCAGTGGAAGCCGGCGCGCAGTTGGTGGTGCTGGAAGCCATGAAGATGGAGCACAGCATCCGTGCACCCAAGGCGGGCGTGATCAAGGCGTTGTATTGCCAGGAAGGTGAGATGGTCAGCGAGGGCAGCGCGCTGGTGGCATTGGAAGAATAG	MSAPILNTLLVANRGEIACRVMRTAKAMGLATVAVHSATDRDARHCREADIRVDLGGSKAADSYLQIDKLIAAALASGAQAIHPGYGFLSENAGFARAIEKAGLIFLGPPASAIDAMGSKSAAKALMETAGVPLVPGYHGEAQDLETFRAAAERIGYPVLLKATAGGGGKGMKVVEDVSQLAEALASAQREAQSSFGDARMLVEKYLLKPRHVEIQVFADQHGHCLYLNERDCSIQRRHQKVVEEAPAPGLSPELRRAMGEAAVRAAQAIGYVGAGTVEFLLDSRGEFFFMEMNTRLQVEHPVTEAITGLDLVAWQIRVAQGEPLPITQEQVPLRGHAIEVRLYAEDPANDFLPATGRLALYRESAGGEGRRVDSGVEEGDEISSFYDPMLGKLIAWGENREQARLRLLAMLDEFAIGGLRTNIGFLRRIVGHPAFAAAQLDTGFIPRYQAQLLPEPGELDDEFWYAAALAFALGMTPRVRVDDLNSPWAESTGLRLGLPGETTLHLVCGGQDRAITVDVTARSAELKGEHLVIERNGLRRSHRAVRQGDSLYLQWAGDLHRVDVYDPLAAAEASHGHQGGLVAPMNGSIVRVLVSVGQPVEAGAQLVVLEAMKMEHSIRAPKAGVIKALYCQEGEMVSEGSALVALEE	PGPT0019850_169	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_TERPENE_UTILIZATION	vCITRONELLOL-CITRONELLAL-CITRONELLATE_DEGRADATION,PGPT0019850-atuC|atuF-K13777	NA	NA
D1-36_03181	648		COG1974	putative HTH-type transcriptional regulator	ATGGATAAATGGATAGAGTTGGTCAAGGCCAAGATGAAGGAGCTGCACATCACGCAAGTGGTGCTCGCAGAGCGTTTGGGGATGTCCCAGGGTGGTGTCGGCCATTGGCTGACCAAGCGCCGGCAGCCCAGTCTTGAAGACATGAACCGGGTGCTTCAGGAGCTCGGACTCGAGTTCCTGGAAGTGGCAATGGTGATCCGCGAACCGGACACCTCCACTGACGAGGGCATGGCGCTGGCGCAGAAGTACAACCCGTACTTCCGCTACCCGGTCAATGACTGGCACGACATCGGCGCGGTTCACGAGGGTGATCTGGTCGGGTACGGGCAGCCGCGCTACGAGCTGACGGACTACCATGCCCAGGGAGACGCTTTCTGGCTGGTGGTGGTAGGCGACGCGATGACTGCGCCAAGCGGGCTGAGCATCCCTGAGGGCATGTCGATCCTGGTTGATCCGGCGATCGAGGCCGTGCCCGGCAAACTGGTGGTGGCGAAACTGCCCGGCAGCAGCGATGCGACCTTCCGCAAACTGATCGAAGAGAGCGGCCAGCGTTACCTGGTCCCGCTCAATCCCACTTACCCGAAAAATCTATACACAGAGCATTGCCGCATCATCGGCGTGGTCGTACAGGCAACCATCAGGTTCTGA	MDKWIELVKAKMKELHITQVVLAERLGMSQGGVGHWLTKRRQPSLEDMNRVLQELGLEFLEVAMVIREPDTSTDEGMALAQKYNPYFRYPVNDWHDIGAVHEGDLVGYGQPRYELTDYHAQGDAFWLVVVGDAMTAPSGLSIPEGMSILVDPAIEAVPGKLVVAKLPGSSDATFRKLIEESGQRYLVPLNPTYPKNLYTEHCRIIGVVVQATIRF				NA	NA	NA	NA	NA
D1-36_03182	342			hypothetical protein	ATGGACAAGCCCAACAAAGACGAGCCCGCAACCCTTTCAGAAAGCCCATTTCCCTCGCTTCAGGATTGCCCTGCGGCGAAGCGCGCCTTGGACTATTACTTGAAACCAGGTATTGCGCACGCCCAAGCAGAACATCGCTTCTTCGACGTGAACCGCAACATCAGCGGTGAGGAAGCCCTGGTTCACGCCTGCGAACTGCTGCGCTGCGCGGCCGCTACCGCCCAGGAGTCTGCCACTCGACTCAGCGGCACGAGCCGCGACCTGGCATTTTCGGTGGTGCATATGATCGACTTGGTCAAGGTCATGATCGACCGGTCGCTGGACGGTTACCCTACTCGCTAG	MDKPNKDEPATLSESPFPSLQDCPAAKRALDYYLKPGIAHAQAEHRFFDVNRNISGEEALVHACELLRCAAATAQESATRLSGTSRDLAFSVVHMIDLVKVMIDRSLDGYPTR				NA	NA	NA	NA	NA
D1-36_03184	1146			hypothetical protein	GTGGCTAAATCGTCCTTTGATATCAACGCCAATTTCGACAGCGGCAACATCGAAGTGGTGGACATCGGCAACCCGTTGCAATCATTGCTGAAAATCAGACCTGATACCCGTAGCGCCCATTTCCAGTGGTTTCACTTCAAGGCCAGCGGGTTGCACGTCGGCCAGGAATATTCCTTTCGCCTGCTCAATGCCAGCCAATCCTCCTACAACAAAGCGTGGACCGGTTATCAAGCCGTTGCTTCCTATGACCACGTCAACTGGTTCCGTATTCCTACGCAATTTGAAGGCGATGCGCTGCGCTTCCACCTGGAGGCCGAGCAACCTCACGCCTGGTTCGCCTATTTCGAACCTTACAGCCGCGGCCGCCACGATTGGCTGATCGAACAAGCGCAGCACAAGGCTGGCACCGAACTGCTGGCGACCGGCAAGAGCGTCGAGGGTCGCGATATTCAATTGCTGCGCAAGGGCAGCGGTGCCGAAGGACGGCGCAAAATCTGGATCATTGCGCAGCAACATCCCGGTGAGCACATGGCCGAGTGGTTCATGGAAGGCATCATCGAACGCCTCCAGCACCATGACGATGCCCAACTGAACCGGCTGCTTGCCAAGGCCGACCTGTACCTGGTGCCCAACATGAACCCCGATGGCGCCTTTCATGGCCATCTGCGCACCAACGCGATGGGCCAGGACTTGAATCGGGCTTGGCAGAACGCCAGCCCGGAAATCAGCCCCGAGGTATTTTTCGTACAACAGCAAATGGAAAAGTATGGCGTTGATCTGTTTCTGGACGCCCATGGCGACGAAGAAATCCCTCACGTCTTCACCGCTGGCTGCGAAGGTAACCCCGGCTACACACCGCGCATCGCCGGGCTCGAAGAACGTTTCCGCAGCCATCTCAAACGCCAGACCAAGGATTTCCAAACCGCCCACGGTTACACCCGCGACGAACCCGGCCAGGCCAACATGACGCTGGCTTGCAACGCGGTCGGCCAGAAATACGACTGCCTGTCGCTGACCCTGGAGATGCCTTTCAAGGACCACGACGACCATCCGAACCCGCACACCGGCTGGTCCGGCAAACGCTCCATGCAACTGGGCAAGGACGTGCTGAGCACCCTCGAGTCCATGGTCGACGAGTTGCGCTGA	MAKSSFDINANFDSGNIEVVDIGNPLQSLLKIRPDTRSAHFQWFHFKASGLHVGQEYSFRLLNASQSSYNKAWTGYQAVASYDHVNWFRIPTQFEGDALRFHLEAEQPHAWFAYFEPYSRGRHDWLIEQAQHKAGTELLATGKSVEGRDIQLLRKGSGAEGRRKIWIIAQQHPGEHMAEWFMEGIIERLQHHDDAQLNRLLAKADLYLVPNMNPDGAFHGHLRTNAMGQDLNRAWQNASPEISPEVFFVQQQMEKYGVDLFLDAHGDEEIPHVFTAGCEGNPGYTPRIAGLEERFRSHLKRQTKDFQTAHGYTRDEPGQANMTLACNAVGQKYDCLSLTLEMPFKDHDDHPNPHTGWSGKRSMQLGKDVLSTLESMVDELR				NA	NA	NA	NA	NA
D1-36_03185	537	yceJ_1	COG3038	Cytochrome b561	ATGAACGCCCCCCGACATTTCGCGCCGCTGGCTCGGCTGCTGCACTGGATGATGGCCTTGATGATCATCGCCATGTTGTTTATCGGCGCGGGCATGGTCGCCTCCGTGTCCGAGCGCCATGAGTGGCTGCTTCAACTGCACAAACCCCTGGGTATCGCTATTTTGTTGTTGGTGATTGTCCGCCTGGTGGTGCGCTTCACCACGCAGATACCGCCGTTGCCGGCCGACCTGCCGAGCTGGCAGGCCTTGTCGGCCAAGGCTTCGCATGTCTTGTTGTATGCCTTGATGCTGGCGTTGCCACTGTTGGGCTGGGGGATGATATCGGCGGCGGGGGACCCGGTGATGCTCAGCGAGTCGCTTCGGTTGCCTTCCATCCTACCCGCGGATGCCCAGACCTTCGCATGGCTGCGCAAGGCTCATGGTTACCTGGCCTATTTGTTATTCCTGACGGTGCTGGTGCATCTGGCGGCGGCGTTGTTTCACGGCTGGGTGCGCCGGGACGAGGTGTTGCACAGCATGTTGCGCGGCCGGGACTGA	MNAPRHFAPLARLLHWMMALMIIAMLFIGAGMVASVSERHEWLLQLHKPLGIAILLLVIVRLVVRFTTQIPPLPADLPSWQALSAKASHVLLYALMLALPLLGWGMISAAGDPVMLSESLRLPSILPADAQTFAWLRKAHGYLAYLLFLTVLVHLAAALFHGWVRRDEVLHSMLRGRD	PGPT0013195_333	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_SUPEROXIDE_ANION_RADICALS,PGPT0013195-cybB-K12262	NA	NA
D1-36_03186	1080	srpA	COG0753	Catalase-related peroxidase	ATGGTTGACCCTTCTTCTGAACGTCGGCCGCCGTTGAGCGCCGCCAGCCTGACATTGCGCCTGACGGCCATTGCCGTGGTCGTTGCTGCGCTGGCCGGGGCGTTTGCCTACGTCAATGGCACACTCGACCCACAACGCCTGACGCCCAAGGCCTTGGTCAATGTGCTGGAAACGAACAACGGGGTCCATGCGGGTTTCCGGCGCAATCACTCCAAGGGTGTCTGCGTTGCCGGTTATTTTGAAAGCAGTGGCGAAGCCCGCGCCTACTCCAGCGCCCAGGTATTCAATGAGCCACGCACGCCTGTGGTCGGTCGTTTTGCGCTGCCCAGCGGCAACCCCTACGCACCGGATGGCAGTGTGCCGATCCGAAGCCTGGCGCTGCGTTTTACCCAGGCCGACGGCCAGCAATGGCGCACCGGTATGAACAGTATGCCGGTGTTCCCGGTGGGTACACCGCAGGCTTTCTTTGAACTGCAACAGGCCCAGTCGCCGGACCCGGCCACGGGCAAACCAAACCCTGGCGCCGTGCCGGCGTTTTTTGCAGCGCATCCCGAGGCAGTGCCGTTCCTGCAATGGATCAAGACGGCCAAGCCATCGGCCAGCTATGCCACTGAAACCTACAACGGCATCAATGCGTTCTACCTGGTGGGCCCTGCCGGACAACGCCAGGCCGTGCGTTGGGGGGTGGTGCCGATAAGCAAGGACGCGGTGGATGCGAGCCCACCCCAAGGCGCCGACTTCCTGGAACAGGACCTGACCAAACGCCTGGCTGGCGGACCACTGCGCTGGCAGTTGAACATCACCTTGGCCAACCCGGGCGATCCGGTCAACGACGCCAGCAAGGCCTGGCCCGCCGATCGCAAGGTGCTCAACGCCGGCACCCTGGTGCTGGAGCGCGCCCAGGCGCAGGACAACGGAGATTGCCGCGATATCAACTATGACCCGCTGATCCTGCCCAGTGGGATCGAAGGTTCTGATGATCCGCTGTTGGCCGCTCGTTCGGCGGCCTATGCCAGTTCGTACCTGCGCCGTACCAGCGAAGTCAGCCAGTTGCCCGCCACCCAGGAGTCTCGTCCATGA	MVDPSSERRPPLSAASLTLRLTAIAVVVAALAGAFAYVNGTLDPQRLTPKALVNVLETNNGVHAGFRRNHSKGVCVAGYFESSGEARAYSSAQVFNEPRTPVVGRFALPSGNPYAPDGSVPIRSLALRFTQADGQQWRTGMNSMPVFPVGTPQAFFELQQAQSPDPATGKPNPGAVPAFFAAHPEAVPFLQWIKTAKPSASYATETYNGINAFYLVGPAGQRQAVRWGVVPISKDAVDASPPQGADFLEQDLTKRLAGGPLRWQLNITLANPGDPVNDASKAWPADRKVLNAGTLVLERAQAQDNGDCRDINYDPLILPSGIEGSDDPLLAARSAAYASSYLRRTSEVSQLPATQESRP	PGPT0014380_5657	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0014380-katE|CAT|catB|srpA-K03781	NA	NA
D1-36_03187	507	ecfG		ECF RNA polymerase sigma factor EcfG	ATGAACGAACTCGACGACCAGTTGCGCCTGCTCATTCCACGGCTGAGACGTTTTGCCGTGTCGCTGACACGCAACCCCAGCAACGCCGACGACCTGGTCCAGGCGTGCCTGGAAAGGGCCCTGTCGAAATGGAACGACAAGCGCCCGGACGGTGATTTGCGGGCCTGGCTGTTCTCCATCCTTTACCGGCAGTTCCTCGATGCCCATCGTCGTTCCCGACGGTACGCACGCATGCTGGAATTCTTCACCGGGCGCGACGATGCACACCCGTCCGCCGAGCGCAGCGTCATCGCCCAATCGTCGCTCCAGGCTTTTGACCAGTTGCCCACCGAACAGCGCGCGTTATTGTTGTGGGTGTCAGTAGAAGGCTTGAGTTACCAGCAAGTCGCCGACATCCTGGGCGTGCCGACCGGCACCGTGATGTCGCGCCTGTCACGGGCCCGCCAGGCCTTGCGCCAACTCAGCGACGGCGAAATCGCCCGCCCTGCCCTGCGAATACTCAAATGA	MNELDDQLRLLIPRLRRFAVSLTRNPSNADDLVQACLERALSKWNDKRPDGDLRAWLFSILYRQFLDAHRRSRRYARMLEFFTGRDDAHPSAERSVIAQSSLQAFDQLPTEQRALLLWVSVEGLSYQQVADILGVPTGTVMSRLSRARQALRQLSDGEIARPALRILK	PGPT0014960_11085	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
D1-36_03188	753			hypothetical protein	ATGATCACCCTGCCCCCCAGCGACAAAGACCTGCACGCCTACGTCGATCATCAACTGAGCGAAGCCGACCGACGACAGGTTGAAACCTACCTGGCCAGCCACCCCGCCGTCGCCAAACGCGTACGGGCCTGGCAACAGGACGCGCAGCATCTGCGCGCAACCCTGAGCGCAACCTTGCAACTCCCACCCAATCCCAGCCTCGACCCGACTGTCATCCGTCAACACATGAAACACCGTACTCGCCGCCTTCTCGCCAGCGCAGCGGTCTTGACGCTGGCCGTCGGTATCGGTGGGGTGGGCGGCTGGCAGGCCCGACAGATAACCCTGCTCAGCGCAGCAGCGCCCATGGCTGACGCATTGCAGGCGTACCGGTTGATTGCCCAGCAGGGCGTGCTCCCGGCCGATTACCAGACTGGCGACGAGCACAGCATGCAAGGCTGGCTCGACCGTTACTTCAGCCAAGCCGACCGCTTGCCGGATCTCTCGGCGGCGGGCTTCACGCCGGTCAGCGGGCGATTGCTCAGCACTGACCAAGGCGCGGCGGCGATGGTGGTTTACCAGGATTCGAGCGGCCTGAAGATCAGCTTCTATATCCGCCCACCAGGTCCGAAAAATTTCCTGCTGCCCCGTGGCAGCCGGCGCGATGGCGAACTGCAGGCCGAGTATTGGTCCGGGCCTGGGTACAATTATGCGATGGTCATCCCGAGCGATACGCCGACGGCGCAGAAGCTCAAGCAGACCTTGAATTTCTGA	MITLPPSDKDLHAYVDHQLSEADRRQVETYLASHPAVAKRVRAWQQDAQHLRATLSATLQLPPNPSLDPTVIRQHMKHRTRRLLASAAVLTLAVGIGGVGGWQARQITLLSAAAPMADALQAYRLIAQQGVLPADYQTGDEHSMQGWLDRYFSQADRLPDLSAAGFTPVSGRLLSTDQGAAAMVVYQDSSGLKISFYIRPPGPKNFLLPRGSRRDGELQAEYWSGPGYNYAMVIPSDTPTAQKLKQTLNF				NA	NA	NA	NA	NA
D1-36_03189	837	kdgR_3	COG1414	Transcriptional regulator KdgR	ATGTCTGATTCCATTGAGCGGAATACCAAAAAGATTGAAGTAGGGGTTGGCTCGGTTTCTCGGTTGTTTGCCGTTTTGCGCAGCCTGGGCGAGACCGCAGAGGGCGGCGAGCGAGTCACGCAACTGGCCCAGCGCATTGGCCTGTCCCAGCCCACAACGCACCGCTTGCTGCGCAACCTGATGGATGAAGGCATGGTCGAGCAGGATGCGCGCAGCAAACGCTACCGCTTGAGCCTGGACTTTTTTGCCCTGGCGGCCCGCGCAGGTAACACCGGCAACCTGCGGGAACTGGCCAGGCCCGCGATGTTGCGGTTGTCGGCGTCGTTGGGGGATTCGCTATTTCTGCTGGCACGCTGTGGCTTCGATGCGATCTGCCTGGACCGCAGCGAAGGGCCGTTTCCGATCCGCACATTCACCGGCGACATCGGTGGCCGCGTGGCCTTGGGCGTGGGACAGGGCAGCCTGGCGATCCTGGCGTTCCTCCCGGAGGAAGAGCGCGACACGGTGATCCATTACAACCTGCCACGGCTCAAGGATTTTCATTTGTACGATGAGGTTTTCCTGCGCACGGAAGTGGAGAACGTCCGCACGCTGGGTTATGCCGGGCGCAACACCGGGGTCTTGCAGGGCATGGCCGGCGTGGCGGTGCCGATTCTCGATCGTGAGGGACGGGCCGTGGCGGCCTTGAGCGTGGCAACCATCAGCGACCGGCTCGGGCCGGATAGGCTGCCAACGGTGGTGGAAATGCTCAAGCGCGAAGCCGCGATGATCGGCCCGCGAATCAACCCGTTCGATCCGCTGCTGCGCAGGCCTTCGCAGGTGTTCAGGCAGGGATGA	MSDSIERNTKKIEVGVGSVSRLFAVLRSLGETAEGGERVTQLAQRIGLSQPTTHRLLRNLMDEGMVEQDARSKRYRLSLDFFALAARAGNTGNLRELARPAMLRLSASLGDSLFLLARCGFDAICLDRSEGPFPIRTFTGDIGGRVALGVGQGSLAILAFLPEEERDTVIHYNLPRLKDFHLYDEVFLRTEVENVRTLGYAGRNTGVLQGMAGVAVPILDREGRAVAALSVATISDRLGPDRLPTVVEMLKREAAMIGPRINPFDPLLRRPSQVFRQG				NA	NA	NA	NA	NA
D1-36_03190	1026	btuD_7		Vitamin B12 import ATP-binding protein BtuD	ATGGCTTTCGTGCAACTTCAAGACTTGAGCAAACGGTATGGCGACCTGGACGCCGTGGTCGCCACCAACCTCTGTGTGGAGAAAGGCGAATTCGTCTCTCTGCTAGGGCCGTCCGGTTGCGGCAAGACCACCACCCTGCAAATGATCGCCGGCTTCGTTGAGGCCAGCAGCGGCCGGATCCTGCTGGACGGGCGCGACATCACTCATGCCAAGCCCGCCAGCCGCGGCCTGGGCGTGGTGTTCCAGAGCTACGCGCTGTTTCCCCACATGACCGTCAAAGACAACGTCGCCTTCGGCTTGCGCATGCGCAAGGTGCCCAGCGCAGAATTGCAGTCCCGGGTCGATCGCGTACTCAAGCTGGTGCGCCTGGACCGGCATGCCGAGCGTTACCCGCGAGAACTCTCGGGCGGCCAGCGTCAGCGCGTGGCATTGGCCCGGGCGCTGGTGATCGAACCGCCGGTGCTGCTGCTCGACGAACCCTTGTCCAACCTCGACGCCAACCTGCGTGAGGAAATGCAGTTCGAAATCCGCCGCATCCAGCGCGAAGTCGGCATCACCACATTGATGGTCACGCACGACCAATCCGAGGCGCTTTCGATAAGCGATCGAGTGGTGGTCATGCAGGCCGGCCGCATCACCCAGATCGACGCGCCCTACACCCTTTACGAGCACCCGCGCACCGAGTTCATTTCCGGCTTCGTCGGCAAGGCCAATCTGCTGCCCGGCGAACGTGACAGCGCCGGCGTCGTGCAAGCCAGCAGCACCGGTAAAGGTGAGCTGACCCTGAGCCTGCGTCCCGAAAAGATCGACCTGTGCGCCCCCGGCTCGGGACGACTGCAAGGCACCGTCACCCAGCGTTTTTTCCTCGGTAGCCAATGGCTGTATGGCGTCTGCACCCCTCTGGGCGAACTCAGCGTGGTACGGCGCAACGACGGCTCGGCGCCCCTGGCCGAAGGCACCGCGGTGGGTCTGGACTGGGATCCGGCGCTGCTGCGTGTGTTGAGCGTGGATGAGGTGTTGGCATGA	MAFVQLQDLSKRYGDLDAVVATNLCVEKGEFVSLLGPSGCGKTTTLQMIAGFVEASSGRILLDGRDITHAKPASRGLGVVFQSYALFPHMTVKDNVAFGLRMRKVPSAELQSRVDRVLKLVRLDRHAERYPRELSGGQRQRVALARALVIEPPVLLLDEPLSNLDANLREEMQFEIRRIQREVGITTLMVTHDQSEALSISDRVVVMQAGRITQIDAPYTLYEHPRTEFISGFVGKANLLPGERDSAGVVQASSTGKGELTLSLRPEKIDLCAPGSGRLQGTVTQRFFLGSQWLYGVCTPLGELSVVRRNDGSAPLAEGTAVGLDWDPALLRVLSVDEVLA	PGPT0007860_3450	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007860-ABC_SP_A|ydcT-K02052	NA	NA
D1-36_03191	870	potB	COG1176	Spermidine/putrescine transport system permease protein PotB	ATGAAGCTGATCGATGCCATGAAGCGCGGCCGCCAAGGCTATTGGATGTCAGCCCCGGCCCTGGCCTTGTACCTGGGCCTGCTGGTGATTCCCCTTGGTCTGACGCTCGTGCTGTCGTTCAATGTTTTCGACTACGGCTCGGGTATCGACAGCGACGCCTACACCTTCGGGCACTACACCAGCCTTCTGGGCGACCCGTACTTCTACGAAATCTTCCTGCGCACGTTCTGGATCAGCGCCCTGACCACGTTGCTGTGCGTGGTGATCGGCGTACCCGAGGCGTACATCCTCAGCCGCATGGGCGCGCCGTGGCGTTCGATCTTTCTGATCCTGATCCTTACGCCGCTACTGATTTCGGTGGTGGTGCGAGCGTTCGGCTGGAGCCTGCTGCTCGGCGCCGATGGCCTGATCAACCAGACGCTGCAAGCCCTCGGCGGTTCACCCATGAAGCTGCTCTACACACCGTTCGCGGTGGTCGTCGCCCTGGTGCACGTGATGCTGCCGTTCATGATCATTCCGGTATGGACCTCGCTGCAAAAACTTGATCCCGCCGCCGAACAGGCCGCCCTATCCCTGGGCGCGAGCCAATTCACGGTGATCCGCAAGGTGGTGCTGCCACAGATCATGCCGGGCGTGTTGTCCGGCACGCTGATCGTGTTCGGCCTCGCCGCCAGTTCGTTCGCCATCCCCGGCCTGCTCGGCGGGCGCCGCCTGAAAATGGTCGCCACGCTGATCTACGACCAATACCTGTCGGAACTGAACTGGCCGATGGGCGCGGCCATTGCCGTCGCGCTGTTGTTGCTCAATCTTCTGATCATGCTGTCGTGGAACCGCATGATCGAAGGCCGCTACAAGAAATCACTGGGGTAA	MKLIDAMKRGRQGYWMSAPALALYLGLLVIPLGLTLVLSFNVFDYGSGIDSDAYTFGHYTSLLGDPYFYEIFLRTFWISALTTLLCVVIGVPEAYILSRMGAPWRSIFLILILTPLLISVVVRAFGWSLLLGADGLINQTLQALGGSPMKLLYTPFAVVVALVHVMLPFMIIPVWTSLQKLDPAAEQAALSLGASQFTVIRKVVLPQIMPGVLSGTLIVFGLAASSFAIPGLLGGRRLKMVATLIYDQYLSELNWPMGAAIAVALLLLNLLIMLSWNRMIEGRYKKSLG	PGPT0007850_2563	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007850-ABC_SP_P1|ydcU-K02054	NA	NA
D1-36_03192	795	ydcV_1		Inner membrane ABC transporter permease protein YdcV	ATGTCCAGGAACGGTCCTTTCGCCCTGTTGTTTCATGCCTTGGTAGTGGTGTTCATGCTGGCGCCGCTGGTGGTGGTCTGCCTGGTCGCCTTCACGCCGGAAAACACCCTGAGCTTGCCCACCACGGAATTTTCCCTGCGCTGGTTTCGTGCCGTGTTCGAGCGCGCGGATTTTGTCGATGCGTTCTACAACAGCCTCATCCTGGCGTTCAGCGCGGCCTCGCTGGCGACACTGATCGCGGTGCCGGCGGCCTTGGCGATCACCCGGTTGGAGTTTCCTGGCAGGGATTTTTTCAACGGCCTGTTCCTGTCGCCGATCATCATTCCGCACTTGGTGCTGGGCGTCGCGTTGCTGCGCCTGTTTGCACTGATGGGCGTGAACGGCAACTTCAGCTGGCTGATCTTCGCCCATGTGCTGGTGATCACGCCATATGTGCTGCGCCTGGTATTGGCCTCGGCCATCGGCCTGGATCGCAGCGCCGAGCAAGCCGCGCAGTCATTGGGCGCCGGTCGTTTCACCCTGTTCCGCCAGATCACCTTGCCGATGATTTTGCCCGGCGTCGCCGGAGGCTGGTTGCTGGCGTTCATCAACAGTTTCGATGAAGTCACGCTGTCGATTTTCGTCACCTCGCCGGCCACGCAAACCTTGCCGGTGCGCATGTACGTCTACGCCACTGAATCCATCGATCCGATGATGGCGGCGGTGTCGGCGCTGGTGATCGCGCTGACGGCGCTGACCATGATTCTGCTCGACCGGGTGTATGGCCTGGATCGAGTCCTGGTAGGCAAACAATGA	MSRNGPFALLFHALVVVFMLAPLVVVCLVAFTPENTLSLPTTEFSLRWFRAVFERADFVDAFYNSLILAFSAASLATLIAVPAALAITRLEFPGRDFFNGLFLSPIIIPHLVLGVALLRLFALMGVNGNFSWLIFAHVLVITPYVLRLVLASAIGLDRSAEQAAQSLGAGRFTLFRQITLPMILPGVAGGWLLAFINSFDEVTLSIFVTSPATQTLPVRMYVYATESIDPMMAAVSALVIALTALTMILLDRVYGLDRVLVGKQ	PGPT0007845_3663	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007845-ABC_SP_P|ydcV-K02053	NA	NA
D1-36_03193	291			hypothetical protein	ATGGCTCTGCTGAAACGACTGGCCGAAAACGACCGCCCGGCCCTGGATTTCCTGCTCGACGGCGAACCCGCCAGCGGCTTGCTCGGCGATACCGTGCTAACCGCGGTACTGACCTGCGGCGAACACCTGCGCGGCAGCGATTTCAGCGCCGAGCCCCGTGCCGGCTTCTGCCTGATGGGCGCCTGCCAGGATTGCTGGGTGAGACTGGGCGACGGCCGCCGCGTGCGCGCCTGTTCGACGATGCTCGAAGCTGGCCAGCAGATCAATCGCGAACCGGGGCGGCAGGTATGA	MALLKRLAENDRPALDFLLDGEPASGLLGDTVLTAVLTCGEHLRGSDFSAEPRAGFCLMGACQDCWVRLGDGRRVRACSTMLEAGQQINREPGRQV	PGPT0020400_158	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0020400-lhpD-K22550	NA	NA
D1-36_03194	1356	hcnB_5		Hydrogen cyanide synthase subunit HcnB	ATGAAACCCATCGTCATCATCGGCGCCGGCCCCGCCGGTATCCGCGCCGCGCAAACCTTGGTCGCCCATGGCATCTACCCGATCCTGCTGGACGAAGCCGCCCGCGGTGGCGGGCAGATCTACCGACGCCAGCCCGTCAATTTCAGCCGGTCTGCGCGCAAGCTTTATGGTTTCGAAGCAACAAAGGCCAACGCCATCCACCAGACCCTCGATACGTTGCGCGAGCAGCTCGACTACCGCCCCGACACGCTGGTCTGGAACGCTGAAGCCGGTCAGTTGGATACGTTGCATGAGGGCCGCGCCGATCGCCTGGATTACGCCAACCTGATCGTCGCAACGGGGGCCACCGACAGGATTCTGCCGGTGCCCGGCTGGACTCTGCCGGGCGTCTACAGCCTGGGCGCGGCGCAGATCGCCCTTAAATTCCAAGGCTGCGCCATTGGTGAACGGGTGGTATTCGCGGGCAGCGGGCCATTGCTGTATCTGGTGGCGTACCAATACGCCAAGGCCGGCGCGAACGTCGCCGCGGTACTCGACAGTTCGCCCTTGAGCGCGCAGACCCGCGCTCTGCCCGGCCTGCTCGCACAACCGGCCACGCTCGCCAAGGGCCTCTATTACCGCGCCTGGCTGACGACACATGGTATCCCGGTGCATCAAGGCGCCACCCTTGCGCACATCAACGGGAAACGCCGGGTACAGTCGTTGAAGTGGCGAAACAAAAAGGGCGAGCACACGCTCGATTGTGATGCGGTCGCCTTCGCCCACGGCTTGCGCAGTGAAACCCAACTGGCCGATCTGCTGGGCTGCGAGTTTGCCTGGAACCCGCTCAATCGCGCCTGGCTACCGCAACGCGACAGCGCCGGTCGCAGCAGTTCGGCCGGGGTCTACCTGGCCGGTGACGGCGCTGGGATCATGGGCGCCGACGCCGCCGAAATGGCCGGCGAGCGCGCCGCCCTGGCACTGCTCGAAGACCTCGGCTACCGAGTCGACCCGCAACGTTGCGCCCAGTTGGAACAGTCTCTCGAACGCATCGGTAATTTCCGCCAAGGCCTGGAGCAGGCCTTTGCCTTCCCTGATGAGTGGGCGAGCCTCGCTCAAGACAACTTGATGATTTGCCGCTGCGAAGAAGTCAGCGTCGGCGATATCCGCCAGGTCGTGGGCGAAGGTCACTGGGAAATCAACCGGGTCAAGGCCCACTGCCGGGTCGGCATGGGCCGTTGCCAGGGGCGGATGTGCGGTGCCGCCGCCGCGGAAATCATCGCTTGCGCAAGTGGCCGCGACATCCGGGACATCGGGCGCCTGCGGGCACAGGCCCCAGTCAAGCCCGTGCCGTTTGGCCTGGAGGTCGAGCCATGA	MKPIVIIGAGPAGIRAAQTLVAHGIYPILLDEAARGGGQIYRRQPVNFSRSARKLYGFEATKANAIHQTLDTLREQLDYRPDTLVWNAEAGQLDTLHEGRADRLDYANLIVATGATDRILPVPGWTLPGVYSLGAAQIALKFQGCAIGERVVFAGSGPLLYLVAYQYAKAGANVAAVLDSSPLSAQTRALPGLLAQPATLAKGLYYRAWLTTHGIPVHQGATLAHINGKRRVQSLKWRNKKGEHTLDCDAVAFAHGLRSETQLADLLGCEFAWNPLNRAWLPQRDSAGRSSSAGVYLAGDGAGIMGADAAEMAGERAALALLEDLGYRVDPQRCAQLEQSLERIGNFRQGLEQAFAFPDEWASLAQDNLMICRCEEVSVGDIRQVVGEGHWEINRVKAHCRVGMGRCQGRMCGAAAAEIIACASGRDIRDIGRLRAQAPVKPVPFGLEVEP				NA	NA	NA	NA	NA
D1-36_03195	1116	abo_2		4-methylaminobutanoate oxidase (formaldehyde-forming)	ATGATCGAGGTCGATGCAGTAATCATTGGTGGCGGCATCGTCGGCGCCTCGGCCGCACTGTTTTTGAGTAAGGCCGGACGCCGCGTGGCGCTGTTGGAACGAGACTTCTGCGGCTCGCATTCCAGCGGCGTGAACTACGGCGGCGTGCGGCGCCAGGGCCGGCCCTTGTCTCAGTTGCCGCTGTCGCAACGTGCCCATGAAATCTGGGGTCAATTGCCGCAGTTGATTGGCATCGACGGCGAGTATCAGCGCAGCGGCCATCTGAAGTTGGCACGCAGCCTCGATGACCTGCGTTCATTGCAGAACTACGCCGCCAGCAGTCAGGGCTTTGGCCTCGATTTGCAACTGCTGGATCGCGACGAATTACGCAGACGGTTTCCCTGGGTCGGCATCGTCGCGGTCGGCGCCTCGCTGTGCCCGGACGATGGTCACGCCAACCCGCGGCTGGTCTCGCCGGCATTTGCCCAGGCGGCCCGCAGGCATGGCGCACAGATTCACGAACAATGCCCGGTCAGCCACGTCACTCACGACGGCCAACGCTTTGCCGTGCACACCGAAACCGGCCTCGAATGTCGCGCGCCGTGGCTACTGAATTGCGCTGGCGCCTGGGCGAGCCGCTTCGCCGCGCAGTTCGGCGAAGCAGTGCCGATGTACGCCGGGCACCCAGCGATGCTGGTGACCGAGCCGCTGCCCGTGGTGATGGACGCCAGCACGGGCTTCGAAGGCGGCGGCATTTATGCGCGCCAGGTCGCCCGGGGCAATTGCGTGCTGGGAGGGGGCCAGGGCTTCGCACTGGACGACGCCCGCGCCAGGCCCGGCCAGCACGCGGTCATCGAGATCCTGCGCCAGGCCGTCGAACTCTACCCTTTTCTGGAGGGCGCCCAGGCGATCCGCACCTGGAGCGGCACCGAAGGCTACCTGCCCGATCGCCAACCGGTAATCGGCCCCAGCAGCACCCAACCCGGTCTCTTGCATGCGTTCGGCTTCGCCGGCGCGGGCTTCCAGATCGGCCCGGCGGTGGGCCAGGCGCTCACCGAAATCATCTGCAGCGGGGCTTCGTCCACGCCGCTGGATGCGTTTTCCATCACCCGGTTCCACTCCATCTCCGTTGCTTGA	MIEVDAVIIGGGIVGASAALFLSKAGRRVALLERDFCGSHSSGVNYGGVRRQGRPLSQLPLSQRAHEIWGQLPQLIGIDGEYQRSGHLKLARSLDDLRSLQNYAASSQGFGLDLQLLDRDELRRRFPWVGIVAVGASLCPDDGHANPRLVSPAFAQAARRHGAQIHEQCPVSHVTHDGQRFAVHTETGLECRAPWLLNCAGAWASRFAAQFGEAVPMYAGHPAMLVTEPLPVVMDASTGFEGGGIYARQVARGNCVLGGGQGFALDDARARPGQHAVIEILRQAVELYPFLEGAQAIRTWSGTEGYLPDRQPVIGPSSTQPGLLHAFGFAGAGFQIGPAVGQALTEIICSGASSTPLDAFSITRFHSISVA	PGPT0013510_1805	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013510-soxB_-K00303	NA	NA
D1-36_03196	1062			hypothetical protein	ATGAATAACGTCAAACGCAGTGCACTGTTCGGCTTCTGCTCGCTGGGTTCCGCTTGCCTGGGCGCCCTGCTCCCCGTCACCCAGGCGTTGGCCGAGCCGACGCTTTACCTGGGCATGAACGGCGGCACCATGGAGCGGCTTTATGCCGACAAGGTCTTGCCGGCCTTCGAGAAGGCCAACAATGTCAAGGTGGTGATCGTGCCGGGCACTTCGGCCGACATCCTGGCCAAGGTCCAGGCCAGCAAGGGCAACCCGCAGATGCACGTGATGTTCCTGGACGATGGCATCATGTACCGCGCCATCGCCATGGGGCTGTGCGACAAGCTGCAGGACAGCGCCCCCCTGGCACAGATTCCGGCCAAGGGCCGCATCAAGGACCAGGCCGTCGCCGTCAGCCTCGGCGTCACCGGACTGGCCTACAACACGCGGCTGTTCAAGGAAAAAGGCTGGAACACGCCGACGTCCTGGATGGATCTGGCGGACCCTCGATTCAAGGACAAGGTGGTGTTTCAATCGATGGCCTCCTCAACCTTCGGCCTGCACGGTTTTCTGATGTTCAACCGGATCCAGGGCGGCAGCGAAACTGACGTCGAGCCAGGCTTCAAGGCGTGGCCGAACACCGTCGGGCGCAACGTGCTGGAGTACATTCCAAGCTCGGCGAAAATCTCCGAGATGTTGCAGACGGACGAAGCGGCGCTGTTCCCGTTGACGCCGACCCAGGTCACCGCGTTAAAACTCAAGGGCATGCCGGTCGAGTATGCACAACCGAAGGAAGGCGCAGTGGTGCTGAACGTCGCCGAATGTGCCGTCGCCCAGAACAGCGAACCCGAACTCGCGCAAAAACTCGCTGCCTTCCTGCTGACGCCCGAAGCCCAGGCCATCGCCCTTGAAGAAGGCGACCAGATCCCGTCCAACCCCAACACGCCGACCACCGACAAGACGCGAGGCCAAGTGGACGCGATGAAGCAGTACCTGGAAACCGCGATCGCGGTGGATTGGGATCAGGTCAATGAACAACGTCCGGCGTGGAATGCGCGGTGGAACCGCAGCATCGAGCGCTAG	MNNVKRSALFGFCSLGSACLGALLPVTQALAEPTLYLGMNGGTMERLYADKVLPAFEKANNVKVVIVPGTSADILAKVQASKGNPQMHVMFLDDGIMYRAIAMGLCDKLQDSAPLAQIPAKGRIKDQAVAVSLGVTGLAYNTRLFKEKGWNTPTSWMDLADPRFKDKVVFQSMASSTFGLHGFLMFNRIQGGSETDVEPGFKAWPNTVGRNVLEYIPSSAKISEMLQTDEAALFPLTPTQVTALKLKGMPVEYAQPKEGAVVLNVAECAVAQNSEPELAQKLAAFLLTPEAQAIALEEGDQIPSNPNTPTTDKTRGQVDAMKQYLETAIAVDWDQVNEQRPAWNARWNRSIER	PGPT0007855_3151	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007855-ABC_SP_S|ydcS-K02055	NA	NA
D1-36_03197	1341			hypothetical protein	ATGCAGACCCTCACCCAACTCCAAACCGGCCAGCTATCGGGCATTGCCCGACTGAAGCTGTCGTGCGGCCTGACGGAGTTTCCTCAGGAAATTTACGACCTGGCGGACTCGCTCGAAATCCTCGACCTGAGCGGCAATCAACTCGAAACGCTGCCAGCGGATCTCCATCGGCTTACTCGCTTGCGGATACTGTTCTGTTCGGACAACCGCTTCACCGAACTGCCTGAATGCCTGGGCCTTTGCAGCGCATTGACCATGGTCGGCTTCAAGGCCAACCGCATCGAGCGCGTCACGGGCGCAGCCTTGCCGCCGCTGCTGCGCTGGTTGATCTTGACCGACAATTGCGTCAGCCAGCTGCCGGATGAGCTGGGCCGGCGTCCCCATCTGCAGAAATTGATGCTGGCCGGTAATCGCCTGCGGCAATTGCCGCCGAGCCTGGCCCGGTGTCATCGCCTCGAATTGCTGCGTGTTTGCGCCAATCAACTGACCGAACTGCCCTCCTGGCTGCTGGAAATGCCGAGCCTCAGTTGGCTGGCCTACGCCGGCAATCCATTGCAAGCGCAAGGCGATACCCAGGCGCTGCATGCCGCCACGCCGATCGATTGGTCGCAGTTGAGCTTGCAGCGTTCATTGGGCGAAGGGGCTTCGGGCGTGATCCACCATGCACTTTGGCAACCGCCCGGCAAGGCCAGGCGCGACGTCGCGGTCAAGCTCTACAAAGGCCAGATGACCAGCGATGGCTCGCCATTGCATGAAATGCACGCGTGCATCACCGCCGGCAAGCATCCGAACCTGATCGAGGTACTGGGTCAGGTCAACGGCCACCCAGAGCAACAGGCCGGGCTGGTGATGGCCCTGATCGGGCCCGATTACCGCAACCTGGCCGGGCTGCCGAGCCTGGAATCCTGTACCCGCGACGTGTATGCCGATGAACTGCGCCTGAGCGCCGATGTGGCCTTGCGCATCGCCCGGGGTATTGCCGGCGTGGCGTGCCACTTGCACCGACAAGGCCTTACCCATGGAGACCTGTACGGCCACAACATCCTCTTCAATGACCAAGGCGATTGCCTGCTGGGAGATTTTGGCGCGGCGTCTTTCCACGCCACGGTCGAAAAAGACAGGCAAACACGGGCGTTGCAGCGCATCGAGGTGCGGGCCTTCGGGATTCTGTTGGGGGAATTGCTGGCGCGGATCGAACCGGCGCTCGGTAACGAGGATCTTTCACGACTGAAAGACCTCGAGGGGCGGTGCTGCCAGCCGGATGTACTGGCGCGGCCGGGGTTTGACGAGATTGAAGAATTGCTGCGAGTGGTGAAGGAGCTCGCTCCCTCACCACAGTGA	MQTLTQLQTGQLSGIARLKLSCGLTEFPQEIYDLADSLEILDLSGNQLETLPADLHRLTRLRILFCSDNRFTELPECLGLCSALTMVGFKANRIERVTGAALPPLLRWLILTDNCVSQLPDELGRRPHLQKLMLAGNRLRQLPPSLARCHRLELLRVCANQLTELPSWLLEMPSLSWLAYAGNPLQAQGDTQALHAATPIDWSQLSLQRSLGEGASGVIHHALWQPPGKARRDVAVKLYKGQMTSDGSPLHEMHACITAGKHPNLIEVLGQVNGHPEQQAGLVMALIGPDYRNLAGLPSLESCTRDVYADELRLSADVALRIARGIAGVACHLHRQGLTHGDLYGHNILFNDQGDCLLGDFGAASFHATVEKDRQTRALQRIEVRAFGILLGELLARIEPALGNEDLSRLKDLEGRCCQPDVLARPGFDEIEELLRVVKELAPSPQ				NA	NA	NA	NA	NA
D1-36_03198	705		COG0217	putative transcriptional regulatory protein	ATGGGCGCACAGTGGAAGGTTAAACACAAAGAAGCGGCTGCCAACGCCAAGGGCAAGATCTTCGGCAAATTGGTGAAGGAAATCACCATTGCCGCGCGCAACGGTGCTGATGTCGCCACCAACGCGCACCTGCGGCTGGTGGTCGAGCAGGCAAAAAAAGCTTCGATGCCCCGCGAGACCCTGGAGCGCGCGATCAAGAAGGGCTCCGGCCAGCTCGGCGAAACCGTGCAATACCATCGTGTCACCTACGAAGGGTTCGCACCCCATCAGGTGCCGCTGATCGTTGAGTGCGTGACCGACAACATCAACCGTACCGTCGCGGAGATTCGCGTTGCGTTCCGCAAGGGCCAACTGGGTGCCTCGGGTTCGGTGGCCTGGGATTTCAACCACGTGGGCATGATCGAAGCCGCCCCGGACAGCCCCGACGCTGATCCGGAAATGGCCGCCATCGAGGCCGGGGCCCAGGATTTCGAACCGGGCGAGGACGGTGCGACGCTGTTCATCACCGAGCCTGGCGACCTGGACGCCGTGCAAAAGGCGTTGCCGGAGCAAGGCTTCACGGTGTTGTCCGCCAAATTGGGCTATCAGCCAAAAAACCCGGTCAGCGGCCTGACCGATGAGCAAATGGCGGAAGTCGAGGCGTTCCTCGAAGGCCTCGACAACCACGACGACGTGCAGGATATGTTTGTCGGTCTGGCGGGCTAA	MGAQWKVKHKEAAANAKGKIFGKLVKEITIAARNGADVATNAHLRLVVEQAKKASMPRETLERAIKKGSGQLGETVQYHRVTYEGFAPHQVPLIVECVTDNINRTVAEIRVAFRKGQLGASGSVAWDFNHVGMIEAAPDSPDADPEMAAIEAGAQDFEPGEDGATLFITEPGDLDAVQKALPEQGFTVLSAKLGYQPKNPVSGLTDEQMAEVEAFLEGLDNHDDVQDMFVGLAG				NA	NA	NA	NA	NA
D1-36_03199	1389	vgrG1_3		Actin cross-linking toxin VgrG1	ATGCGCAACGATTCGGAACACCCTTTCAGCCTGACGATCCTTCAAAGCGATCTGCGCCTGCAAGTGCTGCGGCTCAATGGCCGTGAGGCCCTGAACCAGCCTTACCGCTTCGATCTTGACCTGATCGGCCTGGCGCCGCCGGTCAGCCCCGACAGTCTGCTGGGGCAGGCAGCTTTCCTACGCCTTGATGGCGAGTCGGGCGTACATGGGGTTGTGCATTATGTCAGCCTGACCGCCGACACCATGCGCCGCGTGGGCTATCGCTTGACGCTGGTCCCTCATCTGCAGCAATTGGAACAAGGGCCACGACGGCGGGTTTTTCATCGGCTCAACGTTGTCCAGATCCTGCAGTGCCTGCTGGAAGGTAACGCCGTGCCTTCCGACAGCTATCGTTTCGAGCTGCCGCACGGGCAGTATCCGACTCGCCCGTTCTGCATTCAATATGAAGAAAGCGACCTGGATCTGTTGCAGCGGTTATGCGAAGAGGAAGGCATTCACTATCACTTCGAACACGCGCCCCAGGGCCACGTCGCCGTATTCGCGGAAGACCCAAAGAGCTTCCCGGCACAGCCGGTCGAACTGGTCATGCGCCAGGATGCGGACAGACACCCGACTATCAGGCGGCTATACCAGCGCCATCATTCGATCATCGCCAGACCACCCGTGGGCCACAACGACCGAGGGGCGACACTCCCGCCTGGAAGCGCGGCCTCAGAAAAAATGCGTGAAGATCCGGCACAGGCTTACCGCTACCAGGCGGGTCGCCGCAGCCTTGAACGGTTGCGCTATCGGCATCGGGAAATCCATGGCCACGCCACAGAACCAGCCCTGCGCAGCGGTCACATCGCGCAGATCTGCAATCACCCGGTGTCGTCCTTCAATGATCAATGGCTGATCACCGAGGTCCAGCACCGAGGAAGGCAATTTTCCATACTAGAAGCGAACCCGCCGGCCACGCCGCAACCGCGGCATTATCGCAACCGGTTTTGCGCCATCCCTTGGTCCACGGTGTTCCGCCCGGCGCTCAAGCATCCCAAGCCATGTATCGCCGGTTACCACGTCGCCTACGTGTTCGGCCCGCCCGGCCAGCAAGCCAGGCCTAACGAGCAGGGTAAAGTCGAGGTCAGCCTCTGGAGCCCGGAGGAAGAACCGATCACGTTGCCCCTGTCTTGGCCGATGCCCGATGACCGTCCCCCATTGATTGCCGGCAGCGAAGTGCTGGTCAGCTTCATCGAGGGCGACCCAGACCGTCCAGTATTGTGTGCAGGATTGGTGGGCCCGGCCGTGGACAGCGATGGCCCTCCGTCTGCCCCCCCGCCTGAGCCAGGCGACAAAGATGTCGGGCTGCTGTTCAACTGGCTCTTGAACCCGCCGGACATCTCACCATGA	MRNDSEHPFSLTILQSDLRLQVLRLNGREALNQPYRFDLDLIGLAPPVSPDSLLGQAAFLRLDGESGVHGVVHYVSLTADTMRRVGYRLTLVPHLQQLEQGPRRRVFHRLNVVQILQCLLEGNAVPSDSYRFELPHGQYPTRPFCIQYEESDLDLLQRLCEEEGIHYHFEHAPQGHVAVFAEDPKSFPAQPVELVMRQDADRHPTIRRLYQRHHSIIARPPVGHNDRGATLPPGSAASEKMREDPAQAYRYQAGRRSLERLRYRHREIHGHATEPALRSGHIAQICNHPVSSFNDQWLITEVQHRGRQFSILEANPPATPQPRHYRNRFCAIPWSTVFRPALKHPKPCIAGYHVAYVFGPPGQQARPNEQGKVEVSLWSPEEEPITLPLSWPMPDDRPPLIAGSEVLVSFIEGDPDRPVLCAGLVGPAVDSDGPPSAPPPEPGDKDVGLLFNWLLNPPDISP	PGPT0030410_4421	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_PROTEINS,PGPT0030410-vgrG-K11904	NA	NA
D1-36_03200	579			hypothetical protein	ATGGATACGTTCAATGGCAACAACGCACAACACGCTGTCATTAACCGGCAGATGGCGAAACCGCCGCGCCCGAGGCCGACGGCCAAGCCTGGCCTTGTTTCAAAACCGGCGGCCAAGCCTGGCCCGGCGCTCAAACCCGCACCCAAGCCAATACCAAAGCCCACCCCAAAGCCGGCACCCAAACCAGCGCCCAAGCCAACACCTAAACCAACGCCAAAACCCAATCCGACACCAGCGACGACACCCGGTCCGTCCACTAAACCCACCCCGGCGTGGGCATCCATTCCGTGGCCCACCTTGAACGTGGGTATCGATCCCCTGGCGTTCTTAAACCTGGCAAAATCACCCGGGAGTACCACGAATAACGATGGGACAGTCTCGCTGGCCGATGGCAGTGTGGTGGATGTCGAAGGTGAATCGGTCACGCGTCCCGATGGAACTATTCAATATGGCGACGGCACGTTGGTATACCTTGATGGGCGTGTAGTATTTGCCGATGGACAGACTCAATTTCCGGATGGGAGTGTGCTATTTCCCGATGGCGAATGGTTTGACATGGACGGGAACAAAAAGAACTGA	MDTFNGNNAQHAVINRQMAKPPRPRPTAKPGLVSKPAAKPGPALKPAPKPIPKPTPKPAPKPAPKPTPKPTPKPNPTPATTPGPSTKPTPAWASIPWPTLNVGIDPLAFLNLAKSPGSTTNNDGTVSLADGSVVDVEGESVTRPDGTIQYGDGTLVYLDGRVVFADGQTQFPDGSVLFPDGEWFDMDGNKKN				NA	NA	NA	NA	NA
D1-36_03201	909			hypothetical protein	ATGCTACTTCCCGCTCTCGACTGGCACCCTCAACCTCGCCTCGAACCCCTTCATCTGGACTGGCTCGCCCGGTCCGGCGTCGAGGTGGCAGTGCTGCGCCTGGATCGGATCGATCCGCTGATCAGCGGGAACAAATGGTTCAAGTTGCTTCACCACCTGCGCGCAGCTCATCGGGGCGGTGCTGCAGGTGTGATGAGCCTGGGCGGCGCTCATTCCAACCATCTGCACGCACTGGCCGCAGCGGGCCGGCGCTTTGGGTTCGCGACGGTCGGGCTGCTGCGCGGTCATTCCCTGGATACGCCCACGGTGCTCGACTTGAAAGCGTTCGGCATGACGCTGCACTGGTTGGGTTACGAGGGATACCGCAGGCGTCATGACGAAGGTTTCTGGACACCCTGGCGGTCGCAATACCCTGAACTCTGGGCGGTGCCGGAAGGGGGTGCAGGCCTGCCCGGCGCGCAAGGTTGCATGAGCTGGGTCGCCTGTGCCCGTGATCAACTGGCGGCGTTGGGCTGGGCGGACTATCACGGCTGGTGGCTGGCCTGCGGCACCGGAACGTCGCTGGCGGGCCTGGTGCTGGCTGAAGCCGGCCAGCGCAAGGTGCATGGCGTCCTGGCGGTGCCCCAAGGCCATGGCGTCAGCCAGAACGTGGAAAACATCGTGAGGGCGGCAGGGCTTGCCGACCCGCTCTACGAGCTGCTCGACGGCAGCCGTGGTGGTTTCGGCCAGGTTGATGCTGATCTCTCCACGTTCATAGAAACCACCCAGGCCATCGAGCTGGAACCGCTCTACACCGGCAAGGCGTTGATGTTGCTAAAGGCTCAGGTCGAGGCCGGCGCCTTTGAGCCGGGTACTCGGTTGATCTTCGTTCATACGGGTGGCTTGCAGGGGCGTCGGGGGTTTCAGTGA	MLLPALDWHPQPRLEPLHLDWLARSGVEVAVLRLDRIDPLISGNKWFKLLHHLRAAHRGGAAGVMSLGGAHSNHLHALAAAGRRFGFATVGLLRGHSLDTPTVLDLKAFGMTLHWLGYEGYRRRHDEGFWTPWRSQYPELWAVPEGGAGLPGAQGCMSWVACARDQLAALGWADYHGWWLACGTGTSLAGLVLAEAGQRKVHGVLAVPQGHGVSQNVENIVRAAGLADPLYELLDGSRGGFGQVDADLSTFIETTQAIELEPLYTGKALMLLKAQVEAGAFEPGTRLIFVHTGGLQGRRGFQ				NA	NA	NA	NA	NA
D1-36_03202	2040	fadH	COG0446	2,4-dienoyl-CoA reductase	ATGACCGCCCCTCATTACCCGCATTTGCTGGCCCCGCTGGACCTTGGCTTTACCACGCTGCGCAACCGTACCCTGATGGGGTCGATGCACACCGGTCTTGAAGAAAAGCCCGGTGGCTTCGAGCGCATGGCGGCCTATTTTGCCGAGCGCGCCCGTGGCGGCGTGGGCCTGATGGTCACCGGGGGAATCGGTCCTAACGATGAGGGTGGCGTTTACTCCGGTGCGGCCAAGCTGACCACCGAGGAGGAAGCCCTCAAGCACCAGATCGTCACCCGGGCGGTGCATGAAGCCGGTGGCAAGATCTGCATGCAGATCCTCCATGCCGGACGCTATGCCTATAGCCCCAAGCAGGTGGCACCGACCGCGATCCAAGCGCCGATCAACCCGTTCAAGCCCAAGGAACTGGACGAAGAGGGCATCGAGAAACAGATCAGCGATTTTGTGACTTGTTCGTTGCTGGCCCAGAAGGCCGAGTACGACGGTGTCGAAATCATGGGATCGGAAGGCTATTTCATTAACCAGTTCCTGGCGGCCCACACCAACCACCGTACCGACCGTTGGGGGGGCAGTTACGAAAACCGCATGCGCCTACCGGTGGATATCGTGCGTCGGGTGCGCGAGGCGGTCGGCCCGAATTTCATCATCATCTTCCGTCTGTCGATGCTCGACCTGGTGGAAGGGGGCAGCACCTGGGAAGAGATCGTCCAATTGGCCAAGGCCATCGAGCAGGCCGGTGCGACGATCATCAACACGGGTATCGGTTGGCATGAAGCGCGTATTCCCACCATCGCCACCAAGGTTCCAAGGGCAGCGTTCAGTAAAGTCACCGCCAAGCTGCGCGGTTCGGTGAGCATTCCGTTGATCACCACCAACCGCATCAATACGCCTGAGGTCGCTGAGCAGATCCTGGCCGAGGGCGACGCCGACATGGTGTCCATGGCTCGGCCTTTCCTCGCTGACCCGGAGTTCGTCAACAAGGCAGCCGCTGGCCGGGCGGATGAAATCAATACCTGTATCGGCTGCAACCAGGCCTGCCTGGACCATACGTTCGGTGGCAAGCTCACCAGTTGCCTGGTGAATCCGCGAGCGTGCCATGAGACCGAGCTCAACTACCTGCCAGTGACCCAGGTGAAAAAAATCGCCGTGGTGGGCGCCGGTCCTGCCGGGTTGTCCGCCGCCACCGTGGCGGCCGAGCGCGGCCATCAGGTGACGCTGTTCGATTCGGCCAGTGAAATCGGCGGGCAGTTCAACATCGCCAAGCGTGTGCCCGGCAAGGAAGAGTTTTTCGAAACATTGCGTTATTTCAAGCGCAAGTTGCAGACGAGCCACGTCGAGCTGTGCCTCGATACCCGGGTGGACGTCGCGCAGTTGGTGGCCGGCGGTTTCGATGAAATTATCCTAGCGACCGGCATCGCACCGCGAGTGCCGGCCATCCCGGGCGTGGATCATCCCAAGGTGCTGAGTTACCTGGACGTGATCCTCGAGCGTAAGCCGGTAGGGCGTAGCGTCGCGGTGATCGGTGCAGGTGGGATCGGCTTTGACGTGTCGGAATTCCTCGTACACCAGGGGGTTGCCACCAGCCAGGACCGCGAAGCGTTCTGGAAGGAGTGGGGGATCGATACCCACCTCGAGGCGCGCGGCGGCGTGGCCGGGGTCAAGGCGCAACCTCATGCGCCGGCCCGGCAGGTGTTCCTGTTGCAGCGCAAGAAGTCCAAGGTCGGCGACGGTCTGGGCAAGACCACCGGCTGGATTCATCGCACAGGCTTGAAAAACAAGCAGGTGCAGATGCTCAACAGCGTCGAGTACCTGAAGATCGACGATCAGGGCCTGCACATTCGCATCGGCGAAACGGGCGAGCCGCAAGTGCTGGCGGTGGACAACGTGGTTATCTGCGCCGGCCAGGATCCGCTGCGTGAGTTGCAGGAGGGCTTGGAAGCGGCCGGCCAGACCGTCCACCTTATCGGCGGCGCCGACGTGGCGGCGGAGTTGGATGCCAAGCGCGCGATCAACCAAGGCTCGCGACTGGCGGCGCAGTTGTAA	MTAPHYPHLLAPLDLGFTTLRNRTLMGSMHTGLEEKPGGFERMAAYFAERARGGVGLMVTGGIGPNDEGGVYSGAAKLTTEEEALKHQIVTRAVHEAGGKICMQILHAGRYAYSPKQVAPTAIQAPINPFKPKELDEEGIEKQISDFVTCSLLAQKAEYDGVEIMGSEGYFINQFLAAHTNHRTDRWGGSYENRMRLPVDIVRRVREAVGPNFIIIFRLSMLDLVEGGSTWEEIVQLAKAIEQAGATIINTGIGWHEARIPTIATKVPRAAFSKVTAKLRGSVSIPLITTNRINTPEVAEQILAEGDADMVSMARPFLADPEFVNKAAAGRADEINTCIGCNQACLDHTFGGKLTSCLVNPRACHETELNYLPVTQVKKIAVVGAGPAGLSAATVAAERGHQVTLFDSASEIGGQFNIAKRVPGKEEFFETLRYFKRKLQTSHVELCLDTRVDVAQLVAGGFDEIILATGIAPRVPAIPGVDHPKVLSYLDVILERKPVGRSVAVIGAGGIGFDVSEFLVHQGVATSQDREAFWKEWGIDTHLEARGGVAGVKAQPHAPARQVFLLQRKKSKVGDGLGKTTGWIHRTGLKNKQVQMLNSVEYLKIDDQGLHIRIGETGEPQVLAVDNVVICAGQDPLRELQEGLEAAGQTVHLIGGADVAAELDAKRAINQGSRLAAQL				NA	NA	NA	NA	NA
D1-36_03203	1131			hypothetical protein	ATGCGCAAATTTCTGTACCTGCTGTTCTCACTGGCCTTGATGGCCGCCGTTATCACTTACGCACTGTGGACAGCGGACCGTCCAGTCGGCCATTACCTTTCAGACCTGCGCATCAACCTGGCGGTCGACCAGGGCACGCCCTCTGATCGCGGCAACTTGCTCGGCATCCAGCCCGAGCTTTTCCCCACCGACTACCAGAGCCCCCAGCGCCTGCGTCGCAAGCTGGCCGCCTATCTGCAAGCGGCGCGCGACCAAGGGTTTCTCAACGACAAAACCATCGTGGTCCTGCCCGAGCACATCGGCACTTGGCTGATGGTCAGCGGCGAAAAGGACGAGGTGTATCAAGCCAGTACATTGAAGCAAGCCATGCATTGGCTCGCCGCCAGCAATCCGCTGGCTTTTATTCGCGCCCTGGCAAGCGCCAAGGGCAGCAGCCGCCTGGACGATGCCTACCTGCGGATGAAAGCGGACACCATGGCCCGGGATTACCAGACGCTGTTTGGGGGCCTGGCCAAGGAATTCGGCGTGACCCTGGTGGCCGGCTCCATCGTGCTGCCCGAACCCAGTGTCAGCGAAGGCGAGCTGAAGATCAGTGGCGGCGCGCTGTACAACACCAGCCTGGTTTTCGGGCCCGATGGTCGTCCCATCGGCCAACCCCTGCGTCAACGTCATCCGATATTCGACCAACAAGACGTGCTCGGGGCAGAAGAAAGCCAGGCTACCCCGGTCATCGACACGCCGGCCGGTCGCCTCGGCGTACTGATCGGCAGTGACAGTTGGTATCCGCTCCATTATCGGCAACTCGACGAGCAGGACGTGCAATTGATTGCCGTACCCGCCTTTGTGGTTGGCCGCGATTCGTGGAATAAACCCTGGGCAGGCTACAAAGGCCTGTCCACGCCAAGCGAAGTGAGCCTCAAGCCCGGCGAGATAACCGAAGGCCAGGCATGGCGTCGCCTGACATTGACCAGCCAGTTGCCGGTCAGCCAGGCCCTGGGGGGCGTCAGCGTGTTTCTGCGCGGCCAGTTCTGGGACACCGGCAGTGCCGGCCAGAGTTTCATCAGCCATGGCGGCCAGCAGTTCCCCGATGGCGAAGCCCGTGGCGCTCGCCTGTTGAACCTCTGGTTGTGA	MRKFLYLLFSLALMAAVITYALWTADRPVGHYLSDLRINLAVDQGTPSDRGNLLGIQPELFPTDYQSPQRLRRKLAAYLQAARDQGFLNDKTIVVLPEHIGTWLMVSGEKDEVYQASTLKQAMHWLAASNPLAFIRALASAKGSSRLDDAYLRMKADTMARDYQTLFGGLAKEFGVTLVAGSIVLPEPSVSEGELKISGGALYNTSLVFGPDGRPIGQPLRQRHPIFDQQDVLGAEESQATPVIDTPAGRLGVLIGSDSWYPLHYRQLDEQDVQLIAVPAFVVGRDSWNKPWAGYKGLSTPSEVSLKPGEITEGQAWRRLTLTSQLPVSQALGGVSVFLRGQFWDTGSAGQSFISHGGQQFPDGEARGARLLNLWL				NA	NA	NA	NA	NA
D1-36_03204	1038			putative HTH-type transcriptional regulator	ATGAAGCCACAGCCGATGCGCCTGGGCGACTTGTCCGTGGGTTTCGTCCATAGCCTTGCCGACGCAATTGCCAGCCACGGGAGGGATCCGCTGCCGTTGCTCGAACAATACGGCCTTGATCCTGCACGCCTGGCCGAACCCAGGGCGCGGCTGTCGATTCCGCGCTACATGCGCCTGGGCCACGCCGCGATCCAATTGACAGAGGATCCGGCACTGGGCTTGCGCATGGGTCAGCTCAGCCGCTTGAGCCAGGCCGGGCTCGCCGGCGTGACTGCCGCCCAGGCGCCCACCGTACGGGAAGCTGCCCGCTGCATGATCCGCTTCGAGCCGCTGTACGGTTCCAATTATCGCGGACAATCAAGCTTCTACGAGGACGCCCGAGGCGCCTGGCTGCGGTTCTATTCCATCAGCCCCTATAACGCCTATAACCGCTTCGTCGTGGATTCGATCATTGCCGGCTGGCTCAAGCAGTTGTCCAGTGTGAGCGAAATCGGGCTGCAAGCCGAACGCATCGACATCGAATTCGAGGAGCCGGAGTATGGGCAGGCCTATCAGATACTTGGCGACTGCCCGATGCAGTTCGGCGCCGAACAGAACCAGCTGCGCCTGGGCCTGGATAGCCTCGCACAGCGCAATCCTCAACACTGTCCCAGCACCTGGCGGCACCTGGTCCAATTATGCGAACGGGAACTGGAGCAACTGACCCGCACGCGAACCTTGCGTGAACGTATCATCCAGCTGCTGGGTCCGCTGCTCAGTGGTGGGCGGGAGCCGGATCTAGAAGAAGTGGCGATGCGCCTGAAACTGCCGACCTGGACGTTGCGCCGCAAACTGGCGGAGGAAGGCACGCAGTTCAGGGCGATCCTCAACGAGACCCGTCGAGACCTGGCCATGACCTACATTCGCGACACGGAGCTGGCGTTCGGCGAGATCGCCTACTTGCTGGGGTTCGCCTCGGCGGAAGCCTTTCAACGTGCCTTCAAGCGCTGGAACAACCAAACGCCCGGAGACTTTCGTCGCAGCCGCAAGGGGACATGA	MKPQPMRLGDLSVGFVHSLADAIASHGRDPLPLLEQYGLDPARLAEPRARLSIPRYMRLGHAAIQLTEDPALGLRMGQLSRLSQAGLAGVTAAQAPTVREAARCMIRFEPLYGSNYRGQSSFYEDARGAWLRFYSISPYNAYNRFVVDSIIAGWLKQLSSVSEIGLQAERIDIEFEEPEYGQAYQILGDCPMQFGAEQNQLRLGLDSLAQRNPQHCPSTWRHLVQLCERELEQLTRTRTLRERIIQLLGPLLSGGREPDLEEVAMRLKLPTWTLRRKLAEEGTQFRAILNETRRDLAMTYIRDTELAFGEIAYLLGFASAEAFQRAFKRWNNQTPGDFRRSRKGT				NA	NA	NA	NA	NA
D1-36_03205	870			hypothetical protein	ATGTTCAAATCATTTCACATGCGCACCGTTGGGCTGGCATTGCTGCTGGCTGTCGCGGCCGGCTGCTCCTCCAAGAAGGCCGCCATCTACGAGCACGAGAACTTTGATGATTCGGGTACGTTCTCGCGTACCTATCCGGTGACTGATGTGGCGACCTGCGAAGCAGGGCGCCGGGCGTTGCTCAGCCAGGGCTACATCATCACCAGCAGCGATCCGAAGCTGATCAGCGGCCACAAGAGTTTCCAGCAGACTGGCGATACCCACATGGAGATCAGCTTCAACCTGGTCTGCGCCGAGGATGGCGGTCCCGGCCATCGCGCCACCATGTTCGCCAACGCCTTGCAGGACCGCTACGCCCTGAAGAAAATCAACAACTCCGCCAGCCTGGGCGTGGGCGTGTTGGGATCGGTCTCGATGCCGATCGGTTCTTCGGATGATTCGATGGTCAAGGTCGCCAGTGAAACCGTATCGGCGGCCAAGTTCTATGAGCGCTTCTTCGCGCTGGTGGAGGTGTTCCTGCCACCGGAAGCCAAGAAAGCCGTGGAGAATGCCGATAAGCCAAAAGCGGAGCTTGGCGTTCCGGAACCCAAGGCCGAACCGGCAGCCTTGGCTCCCGCGTCGGCTCCCGCACCCGCCCCTGGGGCCTCGCAAGCGCCTGCAGCGGAACCAGCGCCGGCCCCGGCACCCATCATGCCGGTCGAGCCGGCCCCCGCCGCATCGGAGCCGGTCGCGCCGCCAGTCGAGCCCGCGCCGATCGCACCCAGCGAGCCGGAGTCCTACGCGCCTTCTTCGTCGGACACCATCACACCGCCGCCGGCCAGCTCCTTGCCTGCACCGACCGAGCCAATCCAACCCCTGCCGGCCTCCTGA	MFKSFHMRTVGLALLLAVAAGCSSKKAAIYEHENFDDSGTFSRTYPVTDVATCEAGRRALLSQGYIITSSDPKLISGHKSFQQTGDTHMEISFNLVCAEDGGPGHRATMFANALQDRYALKKINNSASLGVGVLGSVSMPIGSSDDSMVKVASETVSAAKFYERFFALVEVFLPPEAKKAVENADKPKAELGVPEPKAEPAALAPASAPAPAPGASQAPAAEPAPAPAPIMPVEPAPAASEPVAPPVEPAPIAPSEPESYAPSSSDTITPPPASSLPAPTEPIQPLPAS				NA	NA	NA	NA	NA
D1-36_03206	1872	ppiD	COG0760	Peptidyl-prolyl cis-trans isomerase D	ATGCTGCAGAATATCAGGGACAATTCACAAGGCTGGATTGCCAAGACCATCATCGGGATCATCGTCGCATTGATGGCGTTGACCGGTTTCGAAGCCATTTTTCAGGCCACCTCGAACACTAATGAAGCGGCCAAGGTCAACGGCGAGGAGATCAGCCAGAACGAGCTGAGCCAAGCGGTCGACATGCAACGCCGTCAGCTGATGCAACAGTTGGGCAAGGATTTCGATGCTTCCTTGCTGGACGAAAAGATGTTGCGCGACTCGGCTCTCAAGGGCCTGATCGATCGCAAGTTGTTGCTACAAGGCGCCCATGATGCGGATTTCGCTTTTTCCGAAGCCGCGCTGGATCAAGTGATCCTGCAAACGCCTGAGTTCCAGGTCGATGGCAAGTTCAGCCCCGAGCGTTTCGACCAGGTCATACGCCAGTTGGGTTACGGTCGCCTGCAGTTCCGCCAGATGCTGGCGCAGGAAATGCTGATCGGCCAGCTACGCGCCGGCCTGGCTGGCAGCGGATTTGTCACCGATGCCCAGGTGCTGGCGTTTGCCCGTCTGGAAAAGCAGACCCGTGACTTCGCTACCCTTACCATCAAGGCAGATCCATCGACCGTGAAGCTGACCGATGACGAGGTCAAGGCCTACTATGATCAGCACGCCAAGGAATTCATGACACCCGACCAGGTGGTCATTGACTACGTTGAGCTGAAGAAAGCCTCTTTCTTCGACCAGGTCAGCGTCAAGGATGAGGACCTGCAAGCGGCGTATCAGAAAGAAATCGCCAACTTGTCCGAACAGCGTCGCGCGGCGCACATCCTTATTGAAGTCAACGATAAGGTCACCGAAGCCCAGGCCAAGGCGAAGATCGAGGAAGTCCAGGCGCGCCTGGCCAAAGGCGAGTCGTTTGAAGCCTTGGCGAAGGAATATTCCCAGGATCCAGGCTCGGCGAACAATGGCGGCGATCTGGGCTTTGCTGGGCCAGGGGTCTACGATCCTGAGTTCGAAAAGGCGCTGTACGCCCTGAACAAGGACCAGGTTTCGGCACCGGTGCGAACCGACTTTGGCCTGCATCTGATCAAGCTGCTGGGTGTTGAAGCCCCTGAGGTGCCGACCTTTGCGAGCCTGAAGGACAAGCTGACTCGCGAACTGAAGGCTCAGCAGGTCGAGCAGCGTTTCGTCGAGGCGACCAAGCAATTGGAAGACGCTTCGTTCGAAGCCTCGGACTTGGCGCAGCCTGCCCAGGACCTCAAACTGACCGTGCACACCTCGGCACCGTTTGGTCGCGAAGGCGGTGAAGGAATTGCGGCCAACCGCGCCGTGATCACTGCTGCGTTCAGCCCGGAAGTGCTGGAAGAGGGTGCCAACAGCACGGCCATCGAGCTGGACCCGGAAACGGTCGTGGTGCTGCGTGCCAAGGAACACCGCAAGCCTGCGCAAATGCCGCTGGAAAGCGTGGCCGGTCCGATACGCGCTCAATTGTCCAAGGAACATGCCAGCGCAGGTGCCAAGACCCAGGCCGATGAGCTGATCGCCAGCCTGCGCGATGGCAAGGTTGCCCTGGACAAGCCGGTCAATGGCCAGGCGTGGAAAGCTGTAGAAGCGGCGACTCGCAGCCAGGAAGGCATCGATCCTGCCGTGCTGCAGGCGCTGTTCCGCATGTCCAAGCCGCAGACCAAGGACAAGCCGACGTTCGCCAGCGTGACCCTGCCTGACGGCAGCGTGACGGTCTTGCGCCTGAACGGCGTCAACGAAGGTGCGGCACCGACCGAGGAAGAAAAGGCCGAGTACCGTCGCTACCTGGCGTCCCGTGTCGGCCAGCAGGATTTTGCGGCTTACCGCAAACAGTTGGAAAGCGAGGCGGACATCAAGCGCTTCTGA	MLQNIRDNSQGWIAKTIIGIIVALMALTGFEAIFQATSNTNEAAKVNGEEISQNELSQAVDMQRRQLMQQLGKDFDASLLDEKMLRDSALKGLIDRKLLLQGAHDADFAFSEAALDQVILQTPEFQVDGKFSPERFDQVIRQLGYGRLQFRQMLAQEMLIGQLRAGLAGSGFVTDAQVLAFARLEKQTRDFATLTIKADPSTVKLTDDEVKAYYDQHAKEFMTPDQVVIDYVELKKASFFDQVSVKDEDLQAAYQKEIANLSEQRRAAHILIEVNDKVTEAQAKAKIEEVQARLAKGESFEALAKEYSQDPGSANNGGDLGFAGPGVYDPEFEKALYALNKDQVSAPVRTDFGLHLIKLLGVEAPEVPTFASLKDKLTRELKAQQVEQRFVEATKQLEDASFEASDLAQPAQDLKLTVHTSAPFGREGGEGIAANRAVITAAFSPEVLEEGANSTAIELDPETVVVLRAKEHRKPAQMPLESVAGPIRAQLSKEHASAGAKTQADELIASLRDGKVALDKPVNGQAWKAVEAATRSQEGIDPAVLQALFRMSKPQTKDKPTFASVTLPDGSVTVLRLNGVNEGAAPTEEEKAEYRRYLASRVGQQDFAAYRKQLESEADIKRF				NA	NA	NA	NA	NA
D1-36_03207	273	hupB_3	COG0776	DNA-binding protein HU-beta	GTGAACAAGTCGGAACTGATTGATGCTATCGCTGCATCCGCTGATATCCCGAAAGCTGCTGCTGGCCGTGCGCTGGACGCTGTAATCGAATCCGTCACTGGCGCTCTCAAGGCCGGCGACTCCGTTGTTCTGGTTGGTTTCGGTACCTTCTCCGTGACTGATCGTCCAGCTCGCACCGGTCGCAACCCGCAGACCGGCAAGACCCTGGAGATCCCGGCTGCCAAAAAGCCTGGCTTCAAGGCTGGTAAAGCGCTGAAAGAAGCCGTTAACTAA	MNKSELIDAIAASADIPKAAAGRALDAVIESVTGALKAGDSVVLVGFGTFSVTDRPARTGRNPQTGKTLEIPAAKKPGFKAGKALKEAVN				NA	NA	NA	NA	NA
D1-36_03208	2397	lon_1	COG0466	Lon protease	ATGAAGACAACCATCGAATTGCCTCTCCTGCCATTGCGCGATGTCGTGGTATATCCGCACATGGTTATCCCGCTGTTCGTGGGGCGCGAGAAGTCCATCGAAGCCCTCGAGGCCGCGATGACGGGTGATAAGCAGATTCTTCTGATCGCTCAGAGAAATCCTGCCGACGATGATCCCGGCGAAGACGCACTTTATCGCGTAGGTACGATTGCAACGGTCCTGCAGTTGCTCAAGCTTCCCGATGGCACGGTAAAAGTGCTGGTTGAAGGCGAGCAGCGAGGGGCGGTCGAGCGTTTCAGCGAGGTGGATGGTCACTGCCGTGCCGAAGTCTCGCTCATCGATGAAGTCGATGCACCAGAGCGTGAGTCCGAAGTGTTTGTCCGCAGCCTGCTGTCGCAGTTCGAACAGTACGTTCAGCTGGGCAAGAAGGTGCCTGCCGAGGTGCTATCGTCGCTTAACAGCATCGACGAGCCAGGACGCCTGGTCGACACGATGGCGGCTCACATGGCCCTCAAGATCGAGCAGAAGCAGGAAATCCTCGAGATCATCGATCTCTCAGCCCGTGTCGAGCATGTATTGGCATTGCTCGATGGCGAGATCGACCTGCTGCAGGTTGAGAAGCGCATTCGTGGTCGCGTCAAGAAACAGATGGAGCGCAGCCAGCGCGAGTACTACCTGAACGAGCAGATGAAGGCCATTCAGAAAGAGCTCGGCGATGGTGACGAAGGTCACAACGAAATCGAAGAGCTGAAGAAGCGCATCGATGCCGCCGGCCTGCCGAAGGATGCCCTTGCCAAGGCCCAGGCCGAACTGAACAAGCTCAAGCAGATGTCGCCGATGTCGGCGGAAGCCACCGTGGTGCGCTCCTACATTGATTGGCTGGTCCAGGTGCCATGGAAAGCCCAGAGCAAGGTACGTCTGGACCTGGCGCGTGCCGAGGATATCCTCGATGCCGACCACTACGGTCTGGAAGAGGTCAAGGAACGCATCCTCGAATACCTCGCTGTGCAAAAGCGCGTGAAGAAAATTCGTGGTCCGGTGTTGTGCCTGGTCGGTCCTCCAGGGGTGGGTAAAACCTCTCTGGCAGAGTCGATTGCCCACGCCACTAACCGTAAGTTCGTACGCATGGCCCTTGGCGGCGTGCGCGACGAGGCGGAAATCCGTGGTCATCGCCGTACCTACATCGGTTCGATGCCAGGAAGATTGATTCAAAAAATGACAAAGGTCGGCGTGCGCAACCCGCTGTTCCTCTTGGACGAAATCGACAAGATGGGCAGCGACATGCGCGGCGATCCAGCTTCTGCGTTGCTGGAGGTCCTCGATCCCGAACAGAATCACAACTTCAACGATCACTACCTTGAAGTCGACTACGACTTGTCGGACGTCATGTTCCTCTGCACCTCCAACTCCATGAACATCCCGCCAGCGTTGCTGGACCGGATGGAGGTGATCCGTCTGCCGGGCTACACCGAGGACGAGAAGATCAACATCGCCGTCAAATACCTTTCGCCCAAGCAGATCCAGGCCAACGGCCTGAAGAAGGGCGAGCTGGAATTCGACGAGGAAGCAATCCGCGACATCATCCGCTACTACACTCGCGAAGCGGGTGTGCGGGGCCTTGAGCGGCAGATTGCCAAGGTTTGCCGCAAGGCCGTGAAGGAACACGCCCTGGAAAAACGCTTCGCGGTCAAGGTCACTTCGGACCTGCTGGAGCACTTCCTGGGCGTGCGTAAATTCCGCTACGGCCTAGCCGAACAGCAGGACCAGATTGGCCAGGTGACCGGCCTTGCGTGGACGCAGGTGGGTGGCGAATTGCTGACGATCGAAGCCGCCGTGGTGCCCGGAAAAGGCCAGTTGATCAAGACCGGTTCCCTGGGCGATGTGATGGTGGAATCGATCACGGCTGCGCTGACGGTTGTCCGCAGCCGTGCGCGGAGCCTGGGCATCCCGCTGGATTTCCATGAGAAACGCGACACCCACATCCACATGCCGGAGGGGGCAACGCCCAAGGACGGACCGAGTGCCGGCGTGGGCATGTGCACCGCCTTGGTTTCCGCGCTGACCGGCATTCCGGTGCGTGCCGATGTTGCGATGACGGGTGAAATCACCCTGCGCGGTCAGGTCCTGGCAATTGGCGGCTTGAAGGAAAAACTGCTGGCGGCTCACCGGGGTGGGATCAAGATTGTGATCATTCCCGAAGAGAACGTGCGCGATCTGAAGGAAATTCCTGACAACATTAAGCAGGATCTTCAGATCAAACCGGTTAAATGGATTGACGAAGTCCTGCAAATTGCGCTGCAATACGCGCCGGAGCCCTTGCCGGATGTGGCTCCGGAGATTGTCGCGAAGGAAGAAAAGCGAGAGTCTGACTCTAAGGAAAGAATTAGCACGCATTAA	MKTTIELPLLPLRDVVVYPHMVIPLFVGREKSIEALEAAMTGDKQILLIAQRNPADDDPGEDALYRVGTIATVLQLLKLPDGTVKVLVEGEQRGAVERFSEVDGHCRAEVSLIDEVDAPERESEVFVRSLLSQFEQYVQLGKKVPAEVLSSLNSIDEPGRLVDTMAAHMALKIEQKQEILEIIDLSARVEHVLALLDGEIDLLQVEKRIRGRVKKQMERSQREYYLNEQMKAIQKELGDGDEGHNEIEELKKRIDAAGLPKDALAKAQAELNKLKQMSPMSAEATVVRSYIDWLVQVPWKAQSKVRLDLARAEDILDADHYGLEEVKERILEYLAVQKRVKKIRGPVLCLVGPPGVGKTSLAESIAHATNRKFVRMALGGVRDEAEIRGHRRTYIGSMPGRLIQKMTKVGVRNPLFLLDEIDKMGSDMRGDPASALLEVLDPEQNHNFNDHYLEVDYDLSDVMFLCTSNSMNIPPALLDRMEVIRLPGYTEDEKINIAVKYLSPKQIQANGLKKGELEFDEEAIRDIIRYYTREAGVRGLERQIAKVCRKAVKEHALEKRFAVKVTSDLLEHFLGVRKFRYGLAEQQDQIGQVTGLAWTQVGGELLTIEAAVVPGKGQLIKTGSLGDVMVESITAALTVVRSRARSLGIPLDFHEKRDTHIHMPEGATPKDGPSAGVGMCTALVSALTGIPVRADVAMTGEITLRGQVLAIGGLKEKLLAAHRGGIKIVIIPEENVRDLKEIPDNIKQDLQIKPVKWIDEVLQIALQYAPEPLPDVAPEIVAKEEKRESDSKERISTH	PGPT0014315_3338	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014315-lon-K01338	NA	NA
D1-36_03209	1284	clpX	COG1219	ATP-dependent Clp protease ATP-binding subunit ClpX	ATGACTGACACCCGCAACGGCGAGGACAACGGCAAACTGCTTTATTGCTCCTTCTGTGGCAAAAGCCAGCATGAAGTACGCAAATTGATTGCCGGTCCCTCGGTCTTCATTTGCGACGAGTGCGTCGACCTGTGCAATGACATCATCCGCGAGGAGGTGCAGGAAGCCCAGGCCGAAAGCAGCGCGCATAAGTTGCCTTCGCCTAAAGAAATCAGCGGCATCCTTGACCAGTATGTTATCGGTCAGGAGCGCGCGAAAAAGGTACTGGCCGTAGCGGTGTACAACCACTACAAGCGCCTGAACCAGCGTGACAAAAAGAATGACGAGGTCGAACTCGGCAAGAGCAACATCCTGCTGATCGGCCCTACGGGCTCGGGTAAGACCCTGCTTGCAGAAACCCTGGCCCGCTTGCTGAACGTTCCGTTCACCATCGCCGACGCAACCACCCTCACTGAGGCGGGTTATGTGGGTGAGGACGTCGAGAACATCATTCAGAAGTTGTTGCAGAAGTGCGACTACGACGTGGAAAAGGCCCAGATGGGCATTGTCTACATCGATGAAATCGACAAGATTTCCCGCAAGTCAGATAACCCGTCCATTACCCGGGATGTTTCCGGCGAGGGCGTGCAACAGGCCTTGCTCAAGTTGATCGAAGGCACGGTCGCTTCCGTACCGCCCCAGGGTGGTCGCAAGCATCCGCAGCAGGAGTTCCTGCAGGTCGACACCCGTAACATCCTGTTCATCTGCGGTGGTGCGTTCTCTGGCCTCGAAAAGGTCATCCAGAACCGTTCGACCCGTGGTGGCATCGGTTTCAACGCCGAAGTCCGCAGCAAGGAAGAGGGCAAGAAGGTCGGTGAATCCCTGCGTGAAGTCGAGCCTGACGATCTGGTCAAGTTCGGCCTGATCCCTGAATTCGTCGGTCGTCTGCCGGTCCTGGCGACCTTGGACGAGTTGGATGAAGCAGCATTGATGCAGATTCTGACCGAGCCGAAAAACGCCCTGACCAAGCAATACGCCAAGCTGTTCGAAATGGAAGGCGTAGACCTTGAGTTCCGTTCGGACGCGCTGAAGTCGGTTGCCAAACGAGCCCTGGAACGCAAGACCGGTGCCCGTGGGTTGCGCTCGATTCTTGAAGGTGTGCTGCTCGATACGATGTATGAAATCCCCTCGCAATCCGAGGTGAGCAAAGTCGTGATCGACGAAAGCGTCATCGAAGGCAAGTCCAAGCCACTGTATATCTACGAAAACAGTGAGCCGGCTGCCAAGGCTGCGCCGGACGCGTGA	MTDTRNGEDNGKLLYCSFCGKSQHEVRKLIAGPSVFICDECVDLCNDIIREEVQEAQAESSAHKLPSPKEISGILDQYVIGQERAKKVLAVAVYNHYKRLNQRDKKNDEVELGKSNILLIGPTGSGKTLLAETLARLLNVPFTIADATTLTEAGYVGEDVENIIQKLLQKCDYDVEKAQMGIVYIDEIDKISRKSDNPSITRDVSGEGVQQALLKLIEGTVASVPPQGGRKHPQQEFLQVDTRNILFICGGAFSGLEKVIQNRSTRGGIGFNAEVRSKEEGKKVGESLREVEPDDLVKFGLIPEFVGRLPVLATLDELDEAALMQILTEPKNALTKQYAKLFEMEGVDLEFRSDALKSVAKRALERKTGARGLRSILEGVLLDTMYEIPSQSEVSKVVIDESVIEGKSKPLYIYENSEPAAKAAPDA	PGPT0014600_1862	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0014600-clpX-K03544	NA	NA
D1-36_03210	642	clpP	COG0740	ATP-dependent Clp protease proteolytic subunit	ATGTCCCGCAATTCTTTTTATCAGCAGAGCTCTGACATCCAGGCCGCAGGCGGCCTGGTCCCTATGGTTATCGAGCAGTCCGCCCGTGGCGAACGTGCCTATGACATCTATTCGCGCCTGCTCAAGGAGCGCGTCATCTTCCTGATCGGCCCCGTCGAAGACTACATGGCCAACCTGGTTGCGGCGCAGTTGCTGTTCCTTGAGGCGGAAAACCCGGACAAGGATATCCATCTGTACATCAACTCTCCCGGCGGTTCGGTGACTGCGGGCATGTCGATCTACGACACCATGCAGTTCATCAAGCCTGACGTGTCCACCATCTGCATCGGCCAAGCCTGCAGCATGGGTGCGTTCCTGCTCGCCGGCGGCGCAGCGGGCAAGCGCCACTGCCTGCCTAACTCGCGCATGATGATCCACCAGCCATTGGGCGGCTTCCAGGGCCAGGCGTCGGACATCGATATCCATGCCAAGGAAATTCTGCATATTCGCTCGCGCCTGAATTCGTTGCTGGCCCATCACACCGGCCAAAGCCTCGAAACCATTGAGCGTGACACCGAGCGTGACAACTTCATGAGCGCTGAGCGTGCGGCCGAATACGGTCTGATCGACTCTGTGATCAACAAGCGTCAAATGCCTGCCTAA	MSRNSFYQQSSDIQAAGGLVPMVIEQSARGERAYDIYSRLLKERVIFLIGPVEDYMANLVAAQLLFLEAENPDKDIHLYINSPGGSVTAGMSIYDTMQFIKPDVSTICIGQACSMGAFLLAGGAAGKRHCLPNSRMMIHQPLGGFQGQASDIDIHAKEILHIRSRLNSLLAHHTGQSLETIERDTERDNFMSAERAAEYGLIDSVINKRQMPA	PGPT0014595_3683	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014595-clpP-K01358	NA	NA
D1-36_03211	1269	tig	COG0544	Trigger factor	ATGAGCATCACCGTGCCAGCTGAGCGTATCGAGACTCAGGTCAACAAGCGTCTGCAGCAGACTGCCCAAAAGGCCAAAATCCCAGGTTTCCGCCCAGGCAAAGTGCCAATGAGCGTGATCCGTCAGCGTTACGAAGCTGATGCGCGCCAGGAAGCCGTGGGCGACGTGATCCAGTCTTCTTTCTACGAAGCAGTGGTCGAGCAGAAGCTGAACCCGGCTGGCGCTCCTTCCGTCGAGCCTAAAGTGCTGGAAAAAGGCAAGGACCTCGAGTTCGTCGCCACGTTCGAAGTGTTCCCTGAGTTCACCGTTGCCGGTTTCGAATCCATTGCCGTTGAGCGCCTGAGCGCCGACGTTTCGGACGCCGACCTGGACAAGATGCTGGATATCCTGCGCAAGCAGAACACCCGCTTCGAAGCGACCGACCGTGCCGCCCAGAACGAAGACCAGCTGAACATCGATTTCGTCGGCAAGGTCGACGGCGAAGTATTCGCTGGCGGTTCCGCCAAGGCTACCCAGCTGGTGCTGGGCTCGGGTCGCATGATCCCAGGCTTCGAAGACGGCCTGGTTGGCGCCAAGGCCGGTGAAGAGCGCGTCCTGAACGTGACCTTCCCCGAGGACTACCAGAACCTGGACCTGGCTGGCAAAGCCGCCGAGTTCACCGTGACCGTCAACAGTGTTTCCGAGCCGAAGCTGCCTGAGCTGAACGAAGAATTCTTCGCTCAGTTCGGCATCAAGGAAACCGGCCTGGAAGGTTTCCGCGCCGAAGTTCGCAAGAACATGGAGCGTGAGCTGCGCCAGGCCATCAAGTCCAAGGTCAAGAACCAGGTCATGGACGGTCTGCTGGCTTCCAACCCGATCGAAGTGCCAAAGGCCCTGCTGGACAACGAAGTGAACCGTCTGCGCGTACAGGCCGTTCAACAGTTCGGCGGCAACATCAAGCCAGACCAACTGCCGGCCGAGCTGTTCGAAGAGCAGGCCAAGCGCCGCGTGGTACTGGGCCTGATCGTCGCCGAAGTGGTCAAGCAATTCGAACTCAAGCCTGACGAAGCCCGCGTGCGCGAGCTGATCCAGGAAATGGCCTCGGCCTACCAAGAGCCTGAGCAAGTGGTGTCCTGGTACTACAAGAACGAGCAGCAGCTGAACGAAGTCCGTTCGGTTGTGCTGGAAGAACAAGTTGTGGATACTGTTCTGCAGAAAGCTAGCGTGACCGACAAAGCGGTCTCTTACGAAGAAGCGGTCAAGCCGGTGGAAGCTCCACAAGCCGATTGA	MSITVPAERIETQVNKRLQQTAQKAKIPGFRPGKVPMSVIRQRYEADARQEAVGDVIQSSFYEAVVEQKLNPAGAPSVEPKVLEKGKDLEFVATFEVFPEFTVAGFESIAVERLSADVSDADLDKMLDILRKQNTRFEATDRAAQNEDQLNIDFVGKVDGEVFAGGSAKATQLVLGSGRMIPGFEDGLVGAKAGEERVLNVTFPEDYQNLDLAGKAAEFTVTVNSVSEPKLPELNEEFFAQFGIKETGLEGFRAEVRKNMERELRQAIKSKVKNQVMDGLLASNPIEVPKALLDNEVNRLRVQAVQQFGGNIKPDQLPAELFEEQAKRRVVLGLIVAEVVKQFELKPDEARVRELIQEMASAYQEPEQVVSWYYKNEQQLNEVRSVVLEEQVVDTVLQKASVTDKAVSYEEAVKPVEAPQAD				NA	NA	NA	NA	NA
D1-36_03215	855	folD	COG0190	Bifunctional protein FolD protein	ATGACTGCACAACTTATCGACGGCAAATCGATCGCCGCCAGCCTGCGCCAGCAGATCGCCCAACGAGTCACCGAGCGCCGCCAGCAAGGCCTGCGCACGCCCGGCCTTGCGGTGATCCTGGTCGGCAGCGATCCTGCCTCTCAGGTTTATGTCTCGCACAAGCGTAAAGACTGTGAAGAGGTCGGCTTCCTTTCCCAGGCCTACGACCTGCCTTCCGAAACCACTCAGCAAGCGCTGGCCGATCTGATCGACCGCCTGAACGACGATCCGAACATCGACGGTGTTCTGCTCCAGTTGCCGCTGCCTGAACACCTGGACGCCTCCAAGCTTTTGGAACGTATCCGTCCGGACAAAGACGTCGACGGTTTCCACCCTTATAACGTCGGCCGCCTCGCCCAACGCATTCCATTGCTGCGCCCCTGCACGCCCAAGGGCATCATGACCTTGCTGGAAAGCACCGGGGTGGATCTTTACGGGCTCGATGCCGTGGTCGTGGGCGCCTCCAACATCGTCGGTCGCCCAATGGCGATGGAATTACTGTTGGCTGGCTGCACCGTCACCGTGACCCACCGCTTCACCAAGGACCTGGCCGGCCACGTCGGCCGTGCCGATCTGGTGGTGGTTGCCGCCGGCAAGCCTGGCCTGGTCAAAGGCGAATGGATCAAGGAAGGCGCCATCGTGATCGACGTGGGCATCAACCGCCAGGACGACGGCAAACTGGTAGGCGATGTGACCTACGAGACCGCCCTGCCCCGCGCCGGTTGGATCACACCGGTTCCCGGTGGCGTCGGCCCGATGACCCGTGCCTGCCTGTTGGAAAACACGCTGTACGCGGCCGAGACGCTTCATAGCTGA	MTAQLIDGKSIAASLRQQIAQRVTERRQQGLRTPGLAVILVGSDPASQVYVSHKRKDCEEVGFLSQAYDLPSETTQQALADLIDRLNDDPNIDGVLLQLPLPEHLDASKLLERIRPDKDVDGFHPYNVGRLAQRIPLLRPCTPKGIMTLLESTGVDLYGLDAVVVGASNIVGRPMAMELLLAGCTVTVTHRFTKDLAGHVGRADLVVVAAGKPGLVKGEWIKEGAIVIDVGINRQDDGKLVGDVTYETALPRAGWITPVPGGVGPMTRACLLENTLYAAETLHS	PGPT0008075_4205	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008075-folD-K01491	NA	NA
D1-36_03216	939	pbpG	COG1686	D-alanyl-D-alanine endopeptidase	GTGAAAATCCGTCTTTCGATCATCAGTCTGTTTTTCGTTTTTACAGGGACTTTCATCGCGCACAACGTCAGTGCCCAGGAAACCATCGCTGCTCCACGGGACACTTCCAAACTGCAAGTCGCATCCGGCAGCGCCATCCTGTTGGACTTGCAGACCGACAAAGTGGTGTATTCCAGCAGTCCGGATGTCGTGGTGCCGATTGCATCGGTAACCAAGTTGATGACCGGCCTGATCGTGCTGGACGCCAAGCAGAACCTGGATGAATACATTTCCATGACCATCGCGAACACACCGGAAATGAAAGGCGTGTTTTCCAGGGTCAAGCTCAACAGCGAACTGTCCCGCCGGGATACGTTGCTGATCGCATTGATGTCGTCGGAGAATCGAGCCGCCGCCAGCCTTGCCCATCATTACCCAGGCGGTTATGCGGCGTTCATCGCGGCGATGAACGCCAAAGCCAAGGCCCTGGGCATGACCAGCACCCATTACGTCGAACCCACCGGCCTGTCAATCCACAACGTGTCGACGGCCCGGGACCTGACGAAGCTGCTGATCGCCGCGCGCAAATACCCCTTGCTGAGTGAGCTGAGCACCACCAAGGAAAAGACTGTAACGTTCCGCAAACCGGTCTACAGCTTGGGCTTTCGCAACACCGATCACCTGGTGCACAAGGCCAATTGGGATATTCAACTGACCAAGACCGGCTTCACCAATCAGGCGGGTCACTGCCTCGTATTGGTGACCAAGATGGGCAATCGTCCGATGGCACTGGTCATCCTCGATGCGTTTGGCAAATACACCCACTTCGCCGACGCAAGCCGCATCCGTAGCTGGGTCGAGACCGGAAAAAGCGCCAGCGTCCCGGCTGTGGCCTTGCAATACAAAGCCGCTAAGAACCTCAAGAGTCGCCAGAGCGGTGTGGTGGAAGCGTCTAAATAA	MKIRLSIISLFFVFTGTFIAHNVSAQETIAAPRDTSKLQVASGSAILLDLQTDKVVYSSSPDVVVPIASVTKLMTGLIVLDAKQNLDEYISMTIANTPEMKGVFSRVKLNSELSRRDTLLIALMSSENRAAASLAHHYPGGYAAFIAAMNAKAKALGMTSTHYVEPTGLSIHNVSTARDLTKLLIAARKYPLLSELSTTKEKTVTFRKPVYSLGFRNTDHLVHKANWDIQLTKTGFTNQAGHCLVLVTKMGNRPMALVILDAFGKYTHFADASRIRSWVETGKSASVPAVALQYKAAKNLKSRQSGVVEASK	PGPT0024065_475	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-CARBOXYPEPTIDASE_ACTIVITY,PGPT0024065-pbpG-K07262	NA	NA
D1-36_03217	204			hypothetical protein	ATGGCACAATCGAAAACACCTTCGGGACCGCATTCTTCCGAACATTCGTCCGGTGACGATGACTTGGGATTCGATCCCGACTCTCCGGACCTCGACGATCCCCAAGTCGATCCGATAGGGCCGGCCAAGGCACCCCAGGATGAGGACGACGAGGAACCGCCTTCTTCCCGGCCTTATGATCCGCTGGGTGATTTGAAGCCCTGA	MAQSKTPSGPHSSEHSSGDDDLGFDPDSPDLDDPQVDPIGPAKAPQDEDDEEPPSSRPYDPLGDLKP				NA	NA	NA	NA	NA
D1-36_03218	678			hypothetical protein	ATGTTGCCAGTAATTTCATCTTTTCGATCACTGGTATTCGCGACGGCGTGTCTCGCCGCCCTGGCGGGATGCGCGGGAAGTGTGTCGCCGCAAGTAAAGCGACTGCCTGAACGGGTAGAACTCAACAGCGTGCCGTTCTTTCGTGGCGAAATGTTCCAGGGCGCGCCGCAATCCCTGGCGGCCCTATTGACGTTGCAAGGCACAGTGACTACCCCAGGGTTGTTGGAGAAGCCGCTGCACCTGCCCGGCAGCGAGGCCCGTTTACAGCAGAACCTGCAAACCCTGGCACGTGAACATGGGCTGGTGGTGTATCCCCTGGAGGCTGAGCTTGGCGCGTTGCTCGAACAGGTGGCTGCCGGTTATCCGGTGTTGCTGCGCTATACCGACGGCTCGGCGTTCTGGGCTGAGCCGCGCTACGCAATCCTCGTGGGTTATAACCGGCACAAGCGCACCGTACTGCTGCGTTCAGGGATGAATCGCCGCTCCTCGATGAGTTTCGGTGCGTTCGAATCGGCTTTCAAAGGCGCTGGCGGTTGGGCAGTCTTGGTCCAGCAACCGGGGCAGTTGCCGGCCAATGTCGATTCGAAGCGCTGGTTGAAGGCCGCCGATGAGTTGGCCGGAGCAGGGCAGGAACAGGCAGCCGCGCGCGCCACCAAGGCTTTGGGCACCGCCCGCTGA	MLPVISSFRSLVFATACLAALAGCAGSVSPQVKRLPERVELNSVPFFRGEMFQGAPQSLAALLTLQGTVTTPGLLEKPLHLPGSEARLQQNLQTLAREHGLVVYPLEAELGALLEQVAAGYPVLLRYTDGSAFWAEPRYAILVGYNRHKRTVLLRSGMNRRSSMSFGAFESAFKGAGGWAVLVQQPGQLPANVDSKRWLKAADELAGAGQEQAAARATKALGTAR				NA	NA	NA	NA	NA
D1-36_03219	165			hypothetical protein	ATGAGCCTGATGACGACTATTCTGATGCTGGTTTTCGGCTGGTTGAGCGTAGCGGCAGCCATGTTGTGGGGGGTGTTGCGAATCGCCCGTCGCCACCATCCCGCACCAAGACGAGAAATGCAGCAGACCACTAAATCTTCCAGGCGCCACGCCACCGCGCACTAG	MSLMTTILMLVFGWLSVAAAMLWGVLRIARRHHPAPRREMQQTTKSSRRHATAH				NA	NA	NA	NA	NA
D1-36_03220	750			hypothetical protein	ATGGATTATCTGTTACAGCTCGCCGCCAGCCCCACCGCCTGGATTGCTCTGGCAACCCTCGTCGTCATGGAAATCGTGCTCGGCATCGATAACCTGATCTTCATTTCGATCCTGACCAACAAGTTGCCCGAGCAACACCGTGCCAAGGCGCGGCGGATTGGCATCGGCATGGCGTTGATCCTGCGCCTGGGTCTGCTGAGCACCATCGCCTTCATCGTGCAATTGACGGAGCCTGTCATCGAGATTCTCGGCCAGGCGTTTTCCTGGAAGGACATGATCCTGATCGCCGGCGGCCTGTTCCTGTTGTGGAAGGCGACCACCGAGATCCATCACAGCATGGACCCGGCGCCCAATGATCCGAAGTCGGCCACTTCCGGCGTGACCCTGGGGTTTGCCGCTGCGATCGGTCAGATCCTGATGCTTGACCTGGTGTTCTCCATTGACAGCATCATCACGGCGGTGGGCATGACCGAGCACTTGCCGATCATGATTATTGCCGTCGTGGTCTCGGTATTGGTGATGCTGCTGGCCGCCGAGCCGCTGGCGAAATTCATCAACGACAACCCCACCGTGGTCATGTTGGCCCTGGGCTTCTTGATCATGATCGGCATGACGCTGATCGCGGAAGGCTTCGGTGCCCACGTGCCCAAGGGCTATATCTACGCGGCCATGGCCTTCTCGGCGGCTATCGAGGTGTTGAACATGATGTCCCGTCGCGCCAAGCAGAAGGTCTTGGTCGACGAAGCCTGA	MDYLLQLAASPTAWIALATLVVMEIVLGIDNLIFISILTNKLPEQHRAKARRIGIGMALILRLGLLSTIAFIVQLTEPVIEILGQAFSWKDMILIAGGLFLLWKATTEIHHSMDPAPNDPKSATSGVTLGFAAAIGQILMLDLVFSIDSIITAVGMTEHLPIMIIAVVVSVLVMLLAAEPLAKFINDNPTVVMLALGFLIMIGMTLIAEGFGAHVPKGYIYAAMAFSAAIEVLNMMSRRAKQKVLVDEA				NA	NA	NA	NA	NA
D1-36_03221	264			hypothetical protein	ATGACGTATAGAACCCTGGGGCTTGCAGCCTTGCTGGCATTTTCCTCGATGGCCCTGGTGGGCTGCGAACAAGCGGAAAAAAGCGCCCAACAATTGGCCGAGCAGTTGAAGGAGCAAGCTGTCGAAACGGCAAAGCAGGCCATCGACGATACGCACAAGGCCGCCGAGCAAGCCCTCAGTGACGCCACCGGCGGGCTGATCAGCCCCAAGAAAGCGCCGGAGAAGGACGCTGAAGAATCCGAACCCGCTACCCATACCCTCTAA	MTYRTLGLAALLAFSSMALVGCEQAEKSAQQLAEQLKEQAVETAKQAIDDTHKAAEQALSDATGGLISPKKAPEKDAEESEPATHTL				NA	NA	NA	NA	NA
D1-36_03222	996	nhaR	COG0583	Transcriptional activator protein NhaR	ATGGCTCACCGATGGCCCGGAATTCTAGAGAGGGAAATACTTCAGGAAAATTCGTATTTTCAGCGGCTATACTTCGGTTTTTACGAAGCGGCGAGAATCATGCTCAATTATCGACAGCTGCATTATTTCTGGGTCGTGGCGAAAACCGGCAGCATCGTGCGGGCCTGCGAGCAACTGAACCTGACGCCGCAAACCATCAGCGGGCAAATCTCATTGTTTGAACAGACCTACAACATCAAGCTGTTCCGCCGAGTCGGACGCCAGTTGGAACTGACCGAGGCCGGCCGCCAGACGCTGCCTTACGCCGAGCACATGTTCCAACTGGGCGGCGAACTGGAGCTGATGCTGCGGGCTCAACCCAACGAGCAGCAAACGCTGTTCCGGGTCGGGGTGGCGGACGTCGTGCCCAAATCCATCGTTTATCGGCTGTTGGCACCTACCATGGAATTGAGCGAGCCGCTGCGCATTACCTGCCGGGAAGACAAGCTCGAACGGCTATTGGCCGACCTGGCGATCCAGCGCCTGGATCTGGTGATTTCCGACAGTCCGATGCCAAGTCATCTGGATATCAAGGGCTACAGCCAGAAACTGGGGGAATGCGGAATCAGCTTTTTCGCCACCCCGGCGTTGGCCGAACATCATGGGCAGGACTTCCCCCACGGCCTGCATGACGCACCGCTGCTGATCCCCGGGCCGGAGACAGTCGTGCGCAGCCGGCTGCAACGCTGGTTCGCTGAACAGCAGATCCAACCGCGCATCGTCGGTGAATTCGATGACAGCGCATTGATGCAGGCGTTTGGGCAATCCGGCAGCGGGATCTTCATCGGTCCCAGCGTGATCGCTGAAGAAGTCCAACAGCAATACGGGGTACAGGTGATCGGCCAGACCGATGCGGTGAGCGAGTCTTTCTACGCCATCTCCGTGGAGCGCAAGGTCAGCCACCCGGGCATCGTCGCGATCGCCGAGGGGGCGCGGCGCGAGCTGTTCAGCGCTTAG	MAHRWPGILEREILQENSYFQRLYFGFYEAARIMLNYRQLHYFWVVAKTGSIVRACEQLNLTPQTISGQISLFEQTYNIKLFRRVGRQLELTEAGRQTLPYAEHMFQLGGELELMLRAQPNEQQTLFRVGVADVVPKSIVYRLLAPTMELSEPLRITCREDKLERLLADLAIQRLDLVISDSPMPSHLDIKGYSQKLGECGISFFATPALAEHHGQDFPHGLHDAPLLIPGPETVVRSRLQRWFAEQQIQPRIVGEFDDSALMQAFGQSGSGIFIGPSVIAEEVQQQYGVQVIGQTDAVSESFYAISVERKVSHPGIVAIAEGARRELFSA	PGPT0013946_626	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013946-nhaR-K03717	NA	NA
D1-36_03223	1161	pbuE	COG2814	Purine efflux pump PbuE	ATGCTGTTACCCATTTTCCTGTTGTCCGCCGCCGGTTTTACGGTGTTGACCACGGAATTCATCATCGTCGGCCTGCTGCCTTCCATTGCCCGCGACCTGCACGTCACCATTCCCCAGGCGGGGCTGTTAGTGACGCTGTTTGCGTTTACTGTCGCGGCGTTCGGGCCGTTCCTCACCGCCTGGTTCGCCCGGGTTGAACGGCGCAAATTGTTTATCAGCGTGCTGGTGATGTTCGCGTTGGCCAACACCCTGGCGGCGCTGGCGCCCAACATCTGGGTCATGGCAGTTGCCCGATTGATCCCGGCCCTAGGCTTGCCTGTGTTCTGGGCATTGGCCAGCGAAACGGCAGTGGACATAGTCGGGCCGCAGTTCGCCGGGAGGGCCATCGCCCGGATCGGCTTCGGTATCGTCTGCGCCACGGTGTTTGGTATCCCGGTGGGTACGCTGATCAGCGATGCATTCGGCTGGCGAAGCGCCTTTGCGATCCTGGCCGTCATTGCGTTCGCCAAGGCGCTGCTGCTGTTCATCTACTTGCCTAGGACAAACCTGCATCAACACCAGGTGAGCTTTCGCTCGCAATTCAAGATCCTGCACAGCCCGTTGATGCAAGGGCATGTGTTGTTGTCGATCCTGGTGTTCAGCGGCATGTTCACCGCCTACACCTACCTCGCGGATATCCTTGAACGCCTGGCCGGCTTCGATGGCACGCTGGTGGGCTGGTGCCTGATGGGTTTTGGCGCGGTAGGCCTGCTCGGCAATTCCCTGGGCGGTCGCGCGGTGGACCGGCATCCCTTGATCGCCTCGATGGTGTTCTGCCTGTTCATGATCGGCGGCATGGTCGCGCTGGTGCCGAGTATCCATTCGACTCTTGGGCTAGCCGCCGCCCTTGGCATATGGGGCGTGACCCAGGCGGCGCTGTTTTTGGTCAGCCATGTCCGGCTGATGAAGGCCGCACCAGAAGCTCCGGCCTTTGCCGCGTCGCTGAATATCGCGGGGGCGAACCTGGGTATAGGCCTGGGCGCGATGGTTGGCGGTCGGGTCATCGATACCCTTGGGCTGGGTAAGGTCGGTTTCGCCGCGGCCGGGTTCATTCTGGTGTCGATCCTGCTGGCGTTATTGCTGATGACGTTCAAGCCCCGCGCCGCCTGTGTGCAGCGCTAA	MLLPIFLLSAAGFTVLTTEFIIVGLLPSIARDLHVTIPQAGLLVTLFAFTVAAFGPFLTAWFARVERRKLFISVLVMFALANTLAALAPNIWVMAVARLIPALGLPVFWALASETAVDIVGPQFAGRAIARIGFGIVCATVFGIPVGTLISDAFGWRSAFAILAVIAFAKALLLFIYLPRTNLHQHQVSFRSQFKILHSPLMQGHVLLSILVFSGMFTAYTYLADILERLAGFDGTLVGWCLMGFGAVGLLGNSLGGRAVDRHPLIASMVFCLFMIGGMVALVPSIHSTLGLAAALGIWGVTQAALFLVSHVRLMKAAPEAPAFAASLNIAGANLGIGLGAMVGGRVIDTLGLGKVGFAAAGFILVSILLALLLMTFKPRAACVQR	PGPT0028991_4191	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
D1-36_03224	1233	sstT	COG3633	Serine/threonine transporter SstT	ATGACAGCTGTCTCCCCTTCTCCATTGCACCGCCTCAAAAGCACTGGCCTGGTCACGCAGATCATTATTGGCCTGATCGCCGGTATTGTCCTGGCATGGCTGGCGCCGGACCTGGCGAAATCCACTGAATTCATCGGCAAGGTTTTTGTGTCCGCGCTCAAGGCGGTGGCACCGATCCTGGTGTTCGTGCTGGTCATGGCCTCTATCGCCAACCATAAGCACGGCCAGGAGACCCATATCCGGCCGATCCTGTTCCTTTATCTGTTGGGTACTTTCGCGGCCGCGGTGGTCGCGGTCATCGCCAGCACGCTGTTTCCCTCCAGCCTTGTGCTGAGCACCCAGGACGTTGCGGTCACCGCACCGGGTGGCATCAGCGAAGTGCTGCAAAGCCTGGCGTTGAGCGTCGTTGACAACCCGGTCCGTGCATTGATGACCGGCAACTTCATCGGCATCCTGGCCTGGGCCATCGGCATGGGCATCGCCATTCGCCATGCCGGCCAAACCACGCGCACTGTGCTCGAAGACCTGTCCAACGGCGTGACCGTGATCGTGCGCCTGGTCATCCGCTTCGCCCCGCTGGGGATTTTCGGGCTGGTGGCCTCGACGCTCGCCACTTCTGGCTTCAGCGCCCTGCTCGGCTACCTGCATCTGCTGATCGTACTGATCGGTTGCATGCTGTTCGTGGCGCTGGTGGTCAACCCACTCATCGTGTTCTGGAAACTGCGTCGCAACCCTTACCCGCTGGTGTTTACCTGCCTGCGTGAAAGCGGCATCACCGCGTTCTTCACCCGCAGCTCCGCGGCGAACATCCCCGTGAACCTGGAGCTCAGCAGACGCCTCGGCCTGCATGAGGATACGTACTCGGTTTCGATCCCGCTGGGTGCGACCATCAACATGGCGGGCGCCGCCATTACCATCACGGTCCTGACACTGGCCGCCGTGCATACCCTGGGTATCGTGGTGGATATCCCCACCGCCGTGCTGCTCAGTGTCGTTGCCGCCGTCTGCGCTTGCGGTGCTTCCGGGGTCGCGGGCGGGTCGCTGTTGTTGATTCCCCTGGCGTGCAGCCTGTTTGGCATTCCCAGCGAAATCGCCATGCAGGTGGTCGCCGTAGGGTTCATCATCGGCGTGCTGCAGGATTCGGCTGAAACGGCGTTGAATTCGTCCACCGATGTCTTGTTCACGGCGGCGGCCTGCCTGGGTGAAGAAGAGCGGGCGCGGGGCGCGGCGTAA	MTAVSPSPLHRLKSTGLVTQIIIGLIAGIVLAWLAPDLAKSTEFIGKVFVSALKAVAPILVFVLVMASIANHKHGQETHIRPILFLYLLGTFAAAVVAVIASTLFPSSLVLSTQDVAVTAPGGISEVLQSLALSVVDNPVRALMTGNFIGILAWAIGMGIAIRHAGQTTRTVLEDLSNGVTVIVRLVIRFAPLGIFGLVASTLATSGFSALLGYLHLLIVLIGCMLFVALVVNPLIVFWKLRRNPYPLVFTCLRESGITAFFTRSSAANIPVNLELSRRLGLHEDTYSVSIPLGATINMAGAAITITVLTLAAVHTLGIVVDIPTAVLLSVVAAVCACGASGVAGGSLLLIPLACSLFGIPSEIAMQVVAVGFIIGVLQDSAETALNSSTDVLFTAAACLGEEERARGAA				NA	NA	NA	NA	NA
D1-36_03225	510			hypothetical protein	ATGACTATTTCCCTGTACGCTGCCTCCGTCCCGGTTTTCAAGCAAATGCTCAATGCCCTGAGCGATGTTTTGAACAAGGCCGAGGCCCACGCCACCTCCAAGAACATCGATCCGAACGCGCTCTTGCAAGCGCGCCTGTTCCCGGACATGTTCCCGTTGGTACGCCAGGTGCAGATTGCCGTGGACTTCGCCAAGGGCGTGTCCGCGCGCCTGGCGGAGATCGAAGTGCCGAAGTATGACGACAGCGAGACCACCTTCGCTGATCTGCAGGCATTGATCGCCAAGGTGCTGGCTTTCATCGATGGCATCAATGCCCAGCAGATCGACGGCAAGGAAGGCATCGAAATCGTGACCCGTCCGGGCACGCCGAAGGAAAAACGCTTCACTGGCCAGAATTATCTGCTGACCTACGGCTTGCCGCAGTTCTTCTTCCACGTGACCACCGCATATGCATTGTTGCGTCACAATGGCGTGGAAGTAGGCAAGCGCGATTACATGGGCGCGTTCTAA	MTISLYAASVPVFKQMLNALSDVLNKAEAHATSKNIDPNALLQARLFPDMFPLVRQVQIAVDFAKGVSARLAEIEVPKYDDSETTFADLQALIAKVLAFIDGINAQQIDGKEGIEIVTRPGTPKEKRFTGQNYLLTYGLPQFFFHVTTAYALLRHNGVEVGKRDYMGAF				NA	NA	NA	NA	NA
D1-36_03226	648			hypothetical protein	ATGAGCATCGAAGAACAAAGCCCGGCCGAAGAACCGCGGCTCAACAGCACGGAAATCCGCATTCTTGGCGCCCTGATCGAAAAGCAGGCCACCAATCCCGAGACTTACCCCCTCACCCTCAACGCGCTGGTGTTGGCTTGCAACCAGAAAACCAGCCGCGAACCGGTGATGAACCTCAACCCAGGGCCAGTCGGCCAAAGCCTGCGAGCCCTGGAAGGACGTGGTTTCACCCGGTTGGTGATGGGCAGTCGCGCCGACCGCTGGGAGCACCGGGTCGACAAGGCGCTGGAACTGGTGCCGGCCCAGGTGATCCTGATGGGATTGCTGTTCCTGCGCGGCCCGCAAACCGTCAATGAGCTGCTGACCCGCAGCGGCCGCATGCATGATTTCGAGGACACCGAGCAGGTGGTGCATCAGCTGGAGCGCCTGATCGCTCGTGGCCTGGCGTTGCTGGTGCCGCGCCAGGCCGGCCAACGGGAAGACCGTTACATGCATGCCATGGGCGACCCGGCAGACATCGAGGCGATCCTCGCCGCGCGTCACCAGCCGACCGAACGCAGCGCGGCCGGCGGCGTATCGCTGGAGCGTATCGAAGAGCTAGAAGCGCGAATCGCGGCGCTGGAAGAACGGCTGGCACGATTGGAATGA	MSIEEQSPAEEPRLNSTEIRILGALIEKQATNPETYPLTLNALVLACNQKTSREPVMNLNPGPVGQSLRALEGRGFTRLVMGSRADRWEHRVDKALELVPAQVILMGLLFLRGPQTVNELLTRSGRMHDFEDTEQVVHQLERLIARGLALLVPRQAGQREDRYMHAMGDPADIEAILAARHQPTERSAAGGVSLERIEELEARIAALEERLARLE				NA	NA	NA	NA	NA
D1-36_03227	822	sdhL	COG0169	Shikimate dehydrogenase-like protein	ATGCAGATGAACCCCAACAAAGACACCCAGCTATGCATGTCGCTATCGGGGCGCCCGGGCAATTTCGGCCTGCGTTTTCACAATCACCTGTATGAGCAGTTGGGGCTCAACTTCTACTACAAGGCGTTCACCAGCCAGGACCTGGCCGGGGCAGTGGGCGGGATCCGTGCTCTGGGTATCCGCGGGTGCGGTGTGTCGATGCCATTCAAGGAGGCCTGCATTGCCTTGGTCGATGAGCTGGATCCTTCCGCCGCTGCCATCCAGTCGATCAACACCATCGTCAATACCAATGGTCATTTGAAGGCCTACAACACGGACTACATCGCCATCGCGCAACTGTTGCAAAGCCATGCCGTGCCCAAGGAGTCAACGTTTGCCTTGCGCGGCAGCGGTGGCATGGCCAAGGCAGTCGCCAGCGCCTTGCGCGACGGCGGCTATACAAACGGCTTGATCGTTGCCCGCAACGAAACCACCGGCCGAGCGCTGGCCGACACGCTGGGTTACGAATGGCAAGCCGAGTTGGGTGACCGACGGCCGCGGATGCTCATCAACGTCACGCCGATCGGCATGACCGGCGGGGCGGAAGCGGACCTGTTGGCATTCGAGCCCGCCGCCATCGCTGCCGCCGACACTGTGTTCGATGTCGTGGCGATTCCTTCGGAAACGCCGTTGATCGTGCATGCCAGAGCGGAAGGCAAACGGGTGATCACTGGCCTTGAGGTCATTGCGATCCAGGCGTTGGAGCAGTTTGTCCTGTACACCGGCGTTCGGCCCAACCTGGAACAATTCGACAAGGCCGTGGCGTTTGCCCGAGCGGTGTAG	MQMNPNKDTQLCMSLSGRPGNFGLRFHNHLYEQLGLNFYYKAFTSQDLAGAVGGIRALGIRGCGVSMPFKEACIALVDELDPSAAAIQSINTIVNTNGHLKAYNTDYIAIAQLLQSHAVPKESTFALRGSGGMAKAVASALRDGGYTNGLIVARNETTGRALADTLGYEWQAELGDRRPRMLINVTPIGMTGGAEADLLAFEPAAIAAADTVFDVVAIPSETPLIVHARAEGKRVITGLEVIAIQALEQFVLYTGVRPNLEQFDKAVAFARAV	PGPT0012890_4195	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
D1-36_03228	351			hypothetical protein	ATGAAACGCAAACTCCCTATCATCGCCCTGCTCGTGGGGGCACTCGCGGTCACCGGCCAGGCATCCGCCCATGGTCGCGGTGGTTGGGAGGGGCCCGCAGTGTTCGGCGCCATCGTCGGCTCTGCCATTGTCGGCTCCGCGCTCATCAACCGAGACCGGCCGGTTTACGTACAACAGCCCGTCTACGTTCAGCCACAGCCGGTCTACGTGCAGCAACCTCCACCGGTCTACTACCAGCCACAGCCGGTGTATATCGAGCAGCCGATCTATTATCGCCCGGCCCCGGTGTATTACGGGCCACCGAGGGGCTATTACTACGGTCCGCCACGTGGGCACTACGGGCGCTGGTAA	MKRKLPIIALLVGALAVTGQASAHGRGGWEGPAVFGAIVGSAIVGSALINRDRPVYVQQPVYVQPQPVYVQQPPPVYYQPQPVYIEQPIYYRPAPVYYGPPRGYYYGPPRGHYGRW				NA	NA	NA	NA	NA
D1-36_03229	1521	uacT	COG2233	Uric acid transporter UacT	ATGAAAACGCCCCATGTTTCACTCCCACGGCCCGAGGACGAAAACCTCGGGGTCGGCGCGAATATGGCTTACGGCCTGCAACATGTCCTGACCATGTACGGTGGCATCGTCGCGGTGCCGTTGATCATCGGCCAGGCGGCCGGGTTGTCCCCGGCCGACATCGGTCTGCTGATCGCGGCTTCGTTGTTTGCAGGGGGGCTGGCGACGTTGTTGCAGACCCTGGGCCTGCCGTTTTTTGGTTGCCAGCTGCCGCTGGTCCAAGGCGTTTCGTTCTCCGGCGTCGCAACCATGGTTGCAATTGTCGGCACCGGTGGGGAGGGCGGCTTCCAGGCCATCCTCGGCGCGGTGATTGCCGCCTCCTTGATCGGCCTGCTTATCACGCCGGTGTTTTCCCGCATCACGCGTTTTTTCCCACCTCTGGTGACCGGCATCGTCATCACCACCATTGGCCTGACGTTGATGCCGGTGGCGGCACGCTGGGCAATGGGCGGCAACAGCCATGCGCCGGATTTTGGCAGCATGGCCAACATTGGCCTGGCCGCGGTGACCCTGGTGTTGGTACTGGTGCTGAGCAAGATGGGCAGCGCGACGATTTCGCGGTTATCGATCCTGCTGGCGATGGTCATCGGTACGGTCATCGCGGTGTTCCTCGGCATGGCCGATTTTTCGTCAGTGGGTGAGGGGCCAATGTTCGGCTTCCCGACACCTTTTCACTTCGGCATGCCAACCTTTCATATCGCCGCGATTCTGTCGATGTGCATCGTGATCATGGTGACGCTGGTGGAAACCTCGGCCGATATCCTGGCAGTGGGCGAGATTATCGACACCAAGGTCGATTCCCGGCGTTTGGGCAACGGCCTGCGAGCAGATATGTTGTCGAGCATGATCGCGCCGATCTTCGGATCGTTCACCCAGAGCGCCTTTGCCCAGAACGTCGGCCTGGTGGCAGTGACTGGAATCAAGAGTCGTTTCGTGGTGGCGACAGGGGGTGTGTTCCTGGTGGTGCTTGGGCTGTTGCCCTTCATGGGCCGGGTAATCGCCGCCGTGCCGACCTCCGTGCTCGGAGGCGCTGGTATCGTGTTGTTCGGTACCGTTGCCGCCAGCGGAATCCGGACGCTGTCGAAGGTCGATTACCGCAACAACGTCAACCTGATCATTGTCGCCACGTCCATTGGCTTCGGCATGATTCCCATCGCCGCACCGAACTTCTACGATCATTTCCCGAGCTGGTTCGCGACGATCTTTCACTCCGGCATCAGCTCATCGGCCATCATGGCCATCATGTTGAACCTGGCCTTCAACCACTTCACCACCGGCAACTCCGATCAACAATCGGTATTCGCCGCCGGCACCGAGCGGGTGCTGCGTTATCAGGACCTGGCGGCGCTACGGGAAGGTGACTATTTCAGCGACGGCAAGTTGCACGACTGCGACGGTAACGAAATCCCCGTCGTAGCCGCACCTGAGCATCCCACTGGGGATCATGGCCCGGTGCGATTGAAAAGCGGTGAGCACGTCTAG	MKTPHVSLPRPEDENLGVGANMAYGLQHVLTMYGGIVAVPLIIGQAAGLSPADIGLLIAASLFAGGLATLLQTLGLPFFGCQLPLVQGVSFSGVATMVAIVGTGGEGGFQAILGAVIAASLIGLLITPVFSRITRFFPPLVTGIVITTIGLTLMPVAARWAMGGNSHAPDFGSMANIGLAAVTLVLVLVLSKMGSATISRLSILLAMVIGTVIAVFLGMADFSSVGEGPMFGFPTPFHFGMPTFHIAAILSMCIVIMVTLVETSADILAVGEIIDTKVDSRRLGNGLRADMLSSMIAPIFGSFTQSAFAQNVGLVAVTGIKSRFVVATGGVFLVVLGLLPFMGRVIAAVPTSVLGGAGIVLFGTVAASGIRTLSKVDYRNNVNLIIVATSIGFGMIPIAAPNFYDHFPSWFATIFHSGISSSAIMAIMLNLAFNHFTTGNSDQQSVFAAGTERVLRYQDLAALREGDYFSDGKLHDCDGNEIPVVAAPEHPTGDHGPVRLKSGEHV	PGPT0007330_81	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-XANTHINE_METABOLISM	PHYTOHORMONE-XANTHINE_TRANSPORT,PGPT0007330-pubX-K16169	NA	NA
D1-36_03230	822	nat	COG2162	Arylamine N-acetyltransferase	ATGAGCCAACCTCGACTGAGCGACACCGGTCGCTATCTACGACGCCTGGGCTTTGACACGGCGCCGCCTCCAACGCTGGAAACGCTGCGTCAGCTTCAAAAGCGCCATACGGCCGAGTTTCCCTTCGAAACCCTCTCGACACTGTTGCGCCAGCCGGTCGCCATCGACCTCGAATCCGTCGAGCGGAAAGTTTTCGAACAGGGCCGTGGCGGTTATTGCTATGAACTCAACCAGTTGTTCCTGGCGCTGTTGCAAACCCTGGGCTTTGATGCCCAGGGCATCACTGGACGCGTTGTGATGAACGCCGCCGAGGGCGCCTGGACAGCGCGCACCCATCGCTTGAGCGTGGTGACGCTCAGTGGCGTGCGCTATATCACCGACGTCGGTTTCGGCGGTATGGTGCCCACCGCGCCGCTTTTGCTGGATAGCCGCGATATCCAGCACACGCCCCATGAGCCGTATCGCATCGACGTCAACCCGGATGGCTACCTGCTGCGCGCCCAGGTCGGCGATGAATGGCGCCCGATGTACCTTTTCGACCTGCAACGCCAGGAGGAAATCGACTATACCGTGGGCAATTGTTACGTCTGCTCCCATCCCGAATCACCGTTCATGGGAAGGCTGATGGTCGCCCGTACCGGTGAGGGACTCCGTAGGACGCTCAACGGCAACAGCTATGCCGTGCACCGGATCGGGCACGAAAGTGAACGACGCACCATCAACGACGCGGATGAGCTGATCACGTTGCTGGAAAATGAATTCAGCCTCACGGTGCCGCCCCGGGAACTGCTGCGACCCGCAATCGAAGGGCTGTTGGTGTGA	MSQPRLSDTGRYLRRLGFDTAPPPTLETLRQLQKRHTAEFPFETLSTLLRQPVAIDLESVERKVFEQGRGGYCYELNQLFLALLQTLGFDAQGITGRVVMNAAEGAWTARTHRLSVVTLSGVRYITDVGFGGMVPTAPLLLDSRDIQHTPHEPYRIDVNPDGYLLRAQVGDEWRPMYLFDLQRQEEIDYTVGNCYVCSHPESPFMGRLMVARTGEGLRRTLNGNSYAVHRIGHESERRTINDADELITLLENEFSLTVPPRELLRPAIEGLLV	PGPT0019890_711	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATION	PLANT_DERIVED_NITRO-|AMINOBENZOATE_DEGRADATION,PGPT0019890-nhoA|yddI-K00675	NA	NA
D1-36_03231	795	xthA_2	COG0708	Exodeoxyribonuclease III	ATGAAGAACCTGCGGATCGCGACGTTCAACATCAACGGCATTCGGGCGCGGTTGCCTAACCTACTGGAATGGCTGGAGCGGGAAAAACCCGATATTGCCTGCCTGCAAGAGCTCAAGGCTGCGGACAAGGACTTTCCTGCCGCCGAGTTGGAGTCGGTGGGATATGGATCGATCTGGCATGGCCAGGCTTCATGGAACGGTGTGGCGATCCTGGCCCGTGATGCGCAACCCCTGGAGAGTAGACGCGGGCTGCCAGGAGGAGAGGAAGACAGTCACAGTCGTTATCTGGAGGCGGCGGTGCATGGCGTGCTGGTGGGCTGCCTCTATTTGCCCAATGGCAATCCCCAGCCCGGTCCGAAGTTCGACTACAAGCTGGCATGGTTCGAGCGCCTGATCGACTATGCGCAGGCACTCCAGGCGAGTGATCATCCGGTGGTGTTGGCTGGGGACTACAACGTGGTGCCAACCGACATGGATATCTACAACCCACGCTCCTGGCTCAAGGACGCGTTGTTGCAGCCCGAAAGCCGGGAGTGCTACCAACGACTGCTGGACCAGGGGTGGACGGACTCCCTGCGTCACCTCTACCCAGAAGAGCGGATCTATACGTTCTGGGACTATTTTCGCCAGCATTGGCAAAAGAACTCCGGGCTGCGCATCGATCACCTGCTGCTCAACCCCGTGGCCAGTGCATACCTGAGCGACGCGGGCGTGGATGCCTGGGTCAGGAACCAGGAGCATCCCAGTGACCATGCGCCTACCTGGATTCGCTTGTCTTCGCGCAAGCGACGCTGA	MKNLRIATFNINGIRARLPNLLEWLEREKPDIACLQELKAADKDFPAAELESVGYGSIWHGQASWNGVAILARDAQPLESRRGLPGGEEDSHSRYLEAAVHGVLVGCLYLPNGNPQPGPKFDYKLAWFERLIDYAQALQASDHPVVLAGDYNVVPTDMDIYNPRSWLKDALLQPESRECYQRLLDQGWTDSLRHLYPEERIYTFWDYFRQHWQKNSGLRIDHLLLNPVASAYLSDAGVDAWVRNQEHPSDHAPTWIRLSSRKRR	PGPT0014910_15	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971	NA	NA
D1-36_03232	2577			hypothetical protein	ATGGATACCACTGCCGATACCCCCTCTGATGTCTCGCGTCATACGCCGATCACCCGTCGCCTGGTGGCGGCCCTTGGCGTGTTGTTTGTCCTGGGGGTTCTGGTGGCCGTCGCCGCGCTGTTCAACATCGCGCAAAAGCTGGATGCACAGGATGTGGATGAGACCCGCTTCTATATCCAGCGTGCCCTCGATAATCGCATCACAGCCACGAAAAACTACATCACCAGCTACGCCTACTGGACCACTGCCTACGAGCACCTAAGCGGCGAGGTCGATGTGCAGTGGGCCTATGCCGACCAGAACATGGGCAAGACCCTGTTCACCAACGATGAACTAGAAGGTGTGTTTGTCATTGACCATGAGCGCACCAAATATGCCGTGGTGCGGGGCCAGCAGGTCCAGGCAGACGCGGCGTCGTTCATGAATATGCCGCTGAAGGACCTCGTGGATGAGCTCCAGGCACAACCTGACCTGACCAGGCCGATGATCCGCTACACCTTGTTCGAAGGCTGGCCGGCCGTCGTCACGGCTTCGGTGATTGTGCCCAACGACGAACGTCCCCAGGTCAACGCCAGGGAGACGTCGATCCTCCTGTTCGTCGACCAACTGACGCCGGTGAAACTGCGCAAGGTGGGCATGGGTTACGGCCTGACCGACCTGACCCTGGTGAAAGACACCACATTGGAGCCCGGCCAGCCCGCGGTGCCGTTGGACAGTACCGGCTACAGCTTGATATCGCAGCTGCAGCGGCCGGGCCAGCATTTGCTGTGGTCACTGGCTCCGCCGTTGGGAGGCGCATTGCTGATCCTGGCGTTGCTCACTGCCTATTTTTTCCGGTATGCCATGCGCACGGCTCGACAGGTGGACGCCAGCTACGACAGCCTTGAAAAATCGAAACAAGCGCTCGAGGCCAGCGAAGAACGTTTTCGCGCCGTGGCCGAGGCGGCGTCCGACTGGATATGGGAGATCGACAGCCAGCAACGCATCACCTATCTATCGGCTCGCTTTAACGCCGTCACGGGTTTTTCCGACCAGCAGTGGCTAGGCCAGGAGATCGAGCAGTTGCTGTTCTGCGACACCCTGCCCATTGCTTCCTGGCTGGGCAACCTGGTCGAAGAACAGAACGCCAGCAACCTGCGCTGCTCTTACCGCGATCATTCCGGGCAATTGCGATTCTGTCGGGTCTCGGCGCGACCGATCCAGGACAAGGCAACCGTGACGGGCTATCGCGGCACGGCCAGCGACATCACCGATGAGGTGGCCGCCCACGCTCAAGTCCAGCATCTGTCGCTGCATGATGCGCTGACCGGACTGCCGAATCGCAACAAGTTGGCGCGACACCTGGACGACGCGTTGATCGCCAAGGAGCATTCCGCGCCGTTGGCCCTGCTGATGGTGGACCTGGACAACTTCAAGCCGATCAACGATTCCCTGGGCCATGCGGCGGGCGATGCTGTGTTGCTGGAAGTCGCCCAGCGCCTGCGCGACAGCACGCGTGAACAGGACCTGGTGGCGCGCCTGGGAGGGGATGAGTTCGTGATAGTGCTCAGTGGCGTGGAGCACTCCACTGAAATCGACCGATTCTGTACGCGGCTCATCGACAGCCTGCAGCAACCGATCCACTACGAGTCCCATTCCCTGCACATTGGTGCGAGCATCGGCGTTGCCGTGAGCCGACGACAAGGCTACGTACCAGGCGAGTTGATCCGCTGCGCCGACATAGCCCTGTACCAGGCCAAGTCCGAGGGTAAAAAGACCTGGTGCTATTTCGCCTCGCACATGAACGATCAGATCCAGCATCGTCGTCAGTTGGAAAACGACCTGCGCCAAGCGGTGAAGAACAACGAATTCATCCTGCATTTCCAGCCTCGCTACACGGTCGACGGCCAAGAGATCGTCGCGGTGGAATCGCTGGTGCGCTGGCAACATCCAACCCAGGGTCTGTTGAGCCCCGATGCCTTCATTCCGCTGGCCGAGCAAACCGACCTGATCGTCCCGCTGTCGCGCTGGGTACTGCGCGAGGCGTGCGAAACCGCGCTCACCTGGCCGGGATCGCTGATGGTTTCGGTCAACCTGTCACCGGCGCAATTCGAACGCAGCGATGTGGTCGAGGATGTCCGCCAGGTATTGATCGAAACCCACTTCCCGGCGAGTCGCCTGGAGCTGGAGATCACCGAAAACGTCATGCTGAACGACGTGGATGGCGCGCTCCAGGTGATGAATGCGCTCAAGGAATTGGGGGTGCGCTTGAACATGGACGATTTTGGTACCGGTTACTCATCCCTCGGCTACCTGCGCACATACCCGTTCGACGGCATCAAGATCGACAAGCGCTTCATTGCCTCGATGAGCAATAGCAGCAACGACCGCGCCGTGGTCCAGGCGATTATCAACCTGGGCAAGGCGATGGGCTTGACCGTCACGGCGGAGGGCGTGGAGACCCTGGCACAATTGGGTTCATTGGGCACCGATGAATGCCACGAAGTGCAGGGCTATTTCCTTAGCCGGCCAATCGACAAGCAGGCATTTGCTGCCTTGCTTGAAAGCAGCCAGTCCATGTCAAGAACCGGTTCCTGA	MDTTADTPSDVSRHTPITRRLVAALGVLFVLGVLVAVAALFNIAQKLDAQDVDETRFYIQRALDNRITATKNYITSYAYWTTAYEHLSGEVDVQWAYADQNMGKTLFTNDELEGVFVIDHERTKYAVVRGQQVQADAASFMNMPLKDLVDELQAQPDLTRPMIRYTLFEGWPAVVTASVIVPNDERPQVNARETSILLFVDQLTPVKLRKVGMGYGLTDLTLVKDTTLEPGQPAVPLDSTGYSLISQLQRPGQHLLWSLAPPLGGALLILALLTAYFFRYAMRTARQVDASYDSLEKSKQALEASEERFRAVAEAASDWIWEIDSQQRITYLSARFNAVTGFSDQQWLGQEIEQLLFCDTLPIASWLGNLVEEQNASNLRCSYRDHSGQLRFCRVSARPIQDKATVTGYRGTASDITDEVAAHAQVQHLSLHDALTGLPNRNKLARHLDDALIAKEHSAPLALLMVDLDNFKPINDSLGHAAGDAVLLEVAQRLRDSTREQDLVARLGGDEFVIVLSGVEHSTEIDRFCTRLIDSLQQPIHYESHSLHIGASIGVAVSRRQGYVPGELIRCADIALYQAKSEGKKTWCYFASHMNDQIQHRRQLENDLRQAVKNNEFILHFQPRYTVDGQEIVAVESLVRWQHPTQGLLSPDAFIPLAEQTDLIVPLSRWVLREACETALTWPGSLMVSVNLSPAQFERSDVVEDVRQVLIETHFPASRLELEITENVMLNDVDGALQVMNALKELGVRLNMDDFGTGYSSLGYLRTYPFDGIKIDKRFIASMSNSSNDRAVVQAIINLGKAMGLTVTAEGVETLAQLGSLGTDECHEVQGYFLSRPIDKQAFAALLESSQSMSRTGS	PGPT0023624_1186	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-GGDEF|EAL|PAC|PAS-DOMAIN-CONTAINING_PROTEIN,PGPT0023624-GGDEF|EAL|PAC|PAS_domain_containing_protein-NA	NA	NA
D1-36_03233	1572			hypothetical protein	TTGCCTATCCCCATCCACGATCCGAACCATGCGCCTGGCGGTGCCTTGAAACGCCTGCCTTTGCTCAAGGCCGCAGTGATGTTCATCGCAGCCGTGTGCCTGTGCCTCTGCGGTTTGCTCTTCTTGCAACTGGAGCAGTCCCGTCGGCATGACCTGGAGTCGGCGCGCCTCGCTTCGGCCAACCTCACCCGGGCCATGGCCCAACAGGCCCAGGACACATTCCTGCAAGCCGACCTGGCGCTTGCCAGCCTGGCCGACTGGATTCAAAACGACGGGTTCGGTCCGTCGACACGTCCACGCCTGCACCAGACATTTGCCCGGCGGGTGCAGTCCCTGGAGCAGTTGCATGGTCTGTTCCTGTTCGACAAGAACGGCCAGTGGATCATTACTTCTTTCGAACACCTGCACAGGGGGGCGGGGGTGGCCGATCGGGACTATTTCAAGTTCCACCAGCAGAACGCCTCGCTGATCGCCCACGTCGGCCCAGCGGTTCGAAGCCGACAGAACGGTGAATGGATCATTCCGGTTTCCCGTCGATTGAATGACCAGAAGGGCAACTTCCAGGGCGTGCTGCTGGCCGGCATCAAGATGTCCTATTTCGATCAATTCTTTAAAAGCTTCAGTCTCGACGCCAAAGGCGAAATGTCTTTGGCGCTGTCCGACGGTACGTTGCTGGCGCGTCGTCCTTTCGATGAGGGACAGATCGGTCGTCCGCTTGCCGATGAGTACGTTTACGAACACCAGCACGCAAGCATGGGCGCCGGCGATACGGTGCTCCGCCCGGCGCCCGACGGCATCGTCCGGTTATATGGGCACCGGCATCTGCAGGCTTATCCGCTGATGGTGACCGCCGCGATGTCCGAACAAGCGATCCTGGCGGGCTGGTACGACAGGGCGTTCCAGTCCAGCCTTATCGTGGCCTTGGTGGTGTTGGGCGTTTGCCTGTTTGGTTGGGTCTTCGTGCGCCAGGTGCGCAACAGCGAGCGGATCGAGGCAGACTTGCGCAAGGCCCAGGAAGCGCTGGAGCTGATCGCCACCCACGACAGCCTGACCGGCCTGGCGAATCGGCGTTTATTCGAACGTGCCCTGGACATCGAATTCGGGCGAGGCGCTCGCCAGCGCAGCCCCCTGAGCCTGATCATGCTCGACATCGATTTTTTCAAACGCTACAACGACACCTATGGGCATGTTGCGGGGGACCACTGCCTGGCCGAGGTGGCGAAGGTGCTCAAGAGTTGCTGTCATCGCAAGGCCGACCTGGCGGTGCGCTACGGCGGCGAGGAGTTCGCCGTCCTGCTGCCCGACACCAACCTGCACGGTGCCATGGCATTGGCCGAGCAGATCCGCAGCTGTGTCATCGACAAGCACATCAGCCACTCCGCTTCCCCCTCTGGCTACCTGACGGTCAGCCTCGGCTGCTATGCCTTCGTGCCGAGCAGCCTGGACAGTACCGAAGTGTTTATCCAACGGGCGGACGCTGCGCTCTATCAGGCCAAGCACAGCGGTCGCAACTGTGTCGCGGTCCTATCCAGGGAAGGCGCGCTGGATGCGCTGGAGCGTTCCGACCGTTGA	MPIPIHDPNHAPGGALKRLPLLKAAVMFIAAVCLCLCGLLFLQLEQSRRHDLESARLASANLTRAMAQQAQDTFLQADLALASLADWIQNDGFGPSTRPRLHQTFARRVQSLEQLHGLFLFDKNGQWIITSFEHLHRGAGVADRDYFKFHQQNASLIAHVGPAVRSRQNGEWIIPVSRRLNDQKGNFQGVLLAGIKMSYFDQFFKSFSLDAKGEMSLALSDGTLLARRPFDEGQIGRPLADEYVYEHQHASMGAGDTVLRPAPDGIVRLYGHRHLQAYPLMVTAAMSEQAILAGWYDRAFQSSLIVALVVLGVCLFGWVFVRQVRNSERIEADLRKAQEALELIATHDSLTGLANRRLFERALDIEFGRGARQRSPLSLIMLDIDFFKRYNDTYGHVAGDHCLAEVAKVLKSCCHRKADLAVRYGGEEFAVLLPDTNLHGAMALAEQIRSCVIDKHISHSASPSGYLTVSLGCYAFVPSSLDSTEVFIQRADAALYQAKHSGRNCVAVLSREGALDALERSDR				NA	NA	NA	NA	NA
D1-36_03234	1149			hypothetical protein	ATGGATTCAAGCTCTCTCGACATTTTTACCGACACCCAACTGCTCGGCATTTCCATCGCCAATTGGTTACTGGCACTCAGCGTGATGACGGTGAGTTTCATCGTTGCCAGAGCCGGCATCGGCTTCCTGTTGAAAAACGTACGGGCACGGGCGCAAAGGCCCGATGCCTACGTCAGCCATATTGCTGTCGAGGTCTTGTCCAGCACCAGCAACACCCTGCTATTGCTGGCCTCGATTCTGATCGGCATCGGTGTTCTGGACCTGCCGGAACGCTGGCTGGGTCGGGTCAGCAGCCTTTGGTTCGTCGTCGCCGCCTTGCAGGTGGGGTTATGGGCAAACCGGGCGATCGCCCTGGCCTTGCTGCACTATTTCGCGCGTCACAGCCACAGCGACATCCATCAGAAAAGCGCCTTGGCCACCTTGAGCCTCTGGGGCGCAAAAGTGTTCCTGTGGGCAGTGGTGCTGCTGGCGATGCTTTCCAACCTGGGCGTGAACATCACAGCATTCGTTGCCAGCCTCGGCGTTGGCGGCATTGCCGTAGCGCTCGCCGTGCAGAACATTCTCGGCGACCTGTTCGCCTCGCTGTCCATTGCCGTGGACAAACCCTTCGAAGTCGGCGACTTCATCGTGGTCGGTTCCCTGGCGGGCACCGTGGAACATGTCGGCCTGAAGACCACCCGGATCCGCAGCCTGGGCGGCGAGCAGATCGTCATGGCCAACGCGGGGATGATCAGCACCACCATCCAGAACTACAAACGCCTGCAGGAGCGCCGCATCGTCTTCGAATTCGCCCTGCCTCAGGAATGCTCGACCGAACAACTTCGGCAAGTGCCCGTCATCGTCGAAAACATCATCAAGGCCCAGGAGAAAACCCGCTTCGACCGCGCGCACTTTCGCGGTTTCGGCGAAAGCACGTTGGAATTCGAAACGGTCTACATCGTGCTGGACCCCAGCTACAACGTCTATATGGACATCCAGCAAGCCATCAACCTGGGGATGATGGACGAGTTCGCCAAGATCGGCGTGCGCTTCGCCATGCCGTCCCGCGCCGTGCACGTGGCTTCGTTGCCGGAGATGCCTGAGCAATTCGCCAGGGGGAACAGTGAAAGGATGCCGCTACGAACCGATGGGGCAGGCGCCAAGCATTAA	MDSSSLDIFTDTQLLGISIANWLLALSVMTVSFIVARAGIGFLLKNVRARAQRPDAYVSHIAVEVLSSTSNTLLLLASILIGIGVLDLPERWLGRVSSLWFVVAALQVGLWANRAIALALLHYFARHSHSDIHQKSALATLSLWGAKVFLWAVVLLAMLSNLGVNITAFVASLGVGGIAVALAVQNILGDLFASLSIAVDKPFEVGDFIVVGSLAGTVEHVGLKTTRIRSLGGEQIVMANAGMISTTIQNYKRLQERRIVFEFALPQECSTEQLRQVPVIVENIIKAQEKTRFDRAHFRGFGESTLEFETVYIVLDPSYNVYMDIQQAINLGMMDEFAKIGVRFAMPSRAVHVASLPEMPEQFARGNSERMPLRTDGAGAKH				NA	NA	NA	NA	NA
D1-36_03235	480			hypothetical protein	ATGAGCAAGGCAGACGAACTCGCAGCAAAGCTGAGGCAGGCCCAACGCGCGCCGGCCGACACTGACCATTGCGCCGACCTGGCGATTGAACACTGGCCTGGCCAGGTGTACGAGCTGTACCGCCAGATTGAAAGCTGGCTGGCGCCGGTCTGTGAGGCGGGCCTGGTTATCCGGCGTAACCCCACCCATGTGTTTGAAAGCCATTCCAGCGGGTCGACTTACAACTATGCCATCGACCAATTGGTGATCGAGGGCAATCACCGCCGTATCTTGCTCGACCCGATCGCTCGCTTTTCCCCCGATGCCGAGGGATGCATCGAAATCCATACGAAGGGATTGGAGCGCTGCATCCTGCGCACGGTGGGGATGCATGGCGAATCCCATTGGCATCTGCGGCCAACCGGCCAGCAGAAGCCCGAACCCGTGACCCTCGATGAAGACACTTTCCTGTCGTTCATCGAGGAAGGCTTGGGCCTTTAA	MSKADELAAKLRQAQRAPADTDHCADLAIEHWPGQVYELYRQIESWLAPVCEAGLVIRRNPTHVFESHSSGSTYNYAIDQLVIEGNHRRILLDPIARFSPDAEGCIEIHTKGLERCILRTVGMHGESHWHLRPTGQQKPEPVTLDEDTFLSFIEEGLGL				NA	NA	NA	NA	NA
D1-36_03236	1224	nepI	COG2814	Purine ribonucleoside efflux pump NepI	ATGACCGATACCTCATTGCCAAAACCACAGGGCAAACCTGCATGGGGCGCTGTGCTCGCCATGTCGTTGGCGGCCTTTGCACTCGTTGCGTCGGAATTCATGCCGGTCAGCCTGCTCACACCGGTGGCCGCAGACCTGCACATCAGCGAAGGGCAGGCTGGTCAGGGCATCGCCGTTTCCGGTGCCTTTGCGTTAGTCACCAGCCTGTTCATCGCGTCGATCGCGGCGCGCATCGAACGCAAGTGGCTGCTCTCGGCGCTGACGCTGTTGATGATCATCTCCGGAACGGTGGCGGCACTGGCGCCCAGTTATCTGGTTTTCATGGTCGGGCGGGCACTGATCGGCGTTGCGATTGGCGGCTTCTGGTCGTTGTCGGCGGCGACGGCCATGCGCCTGGTGCCGCAGGATAAAGTCCCCCGGGCCCTTGCCATCGTCAACGGCGGCAATGCCTTGGCCACGGTCGTGGCCGCGCCGTTGGGCAGTTTCCTGGGAGCGATCATCGGCTGGCGTGGTGCGTTTTTCTGCATCGTGCCCGTCGCTGCGCTCGCCCTGGCATGGCTGCTGATGAGCCTGCCGTCGATGCCCATCCAGGCGAAACGGGGCGCCGCCAATCCTTTCAGGCTGATGGCCCGGGCGCCGGTTGCGTTGGGCATGCTGGCGGTCAGCACGTTCTTCATGGGCCAGTTCATGTTGTTTACCTACCTGCGGCCGTTCCTGGAGAGCGTGACGCGGGTGGACGTCTCGTTGCTTTCGCTGATGTTGCTGGCGATTGGTCTGGCGGGATTGCTCGGCACCTTCCTGATCGGTGCGCTCCTCAAAAAAGGCCTGTATCGCACGCTGATCATCATCCCGCTGCTCATGGCCGCGATCGCCCTGGCCTTGGTGGGGTTCGGCGATTCCGCGTCCATCACAGCCTTACTGCTCGGCCTCTGGGGCCTGGTGGCCACGGCCGCGCCTGTGGGCTGGTGGACCTGGCTGGCAAGGACGTTGCCGGACGATGCCGAGGCAGGGGGTGGATTGATGGTCGCGATCGTTCAACTCGCCATTGCCTCGGGGGCCACGGTGGGCGGCGTGCTGTTTGACTTGAGCGGTTATCGCGCGACCTTCGAAACCAGTGCCGCGGTCTTGGTCGTAGCCGCAATCCTCACCATTCTGGCAGCTCGGGCGGCGGCTCGACCATCGACACAAGCGTCGCCCACCGTGACATACAGCACGGGGCGTTGA	MTDTSLPKPQGKPAWGAVLAMSLAAFALVASEFMPVSLLTPVAADLHISEGQAGQGIAVSGAFALVTSLFIASIAARIERKWLLSALTLLMIISGTVAALAPSYLVFMVGRALIGVAIGGFWSLSAATAMRLVPQDKVPRALAIVNGGNALATVVAAPLGSFLGAIIGWRGAFFCIVPVAALALAWLLMSLPSMPIQAKRGAANPFRLMARAPVALGMLAVSTFFMGQFMLFTYLRPFLESVTRVDVSLLSLMLLAIGLAGLLGTFLIGALLKKGLYRTLIIIPLLMAAIALALVGFGDSASITALLLGLWGLVATAAPVGWWTWLARTLPDDAEAGGGLMVAIVQLAIASGATVGGVLFDLSGYRATFETSAAVLVVAAILTILAARAAARPSTQASPTVTYSTGR	PGPT0021090_142	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021090-nepI-K03445	NA	NA
D1-36_03237	786	rhaS_11		HTH-type transcriptional activator RhaS	ATGACCTGCATGATCGAACCGAGCATCGTCCTCGTCGCCCAAGGGATGAAACAGGTGTGGATTGGGGGGCAGGCGTATGGGTACGACACCGCACGTTTCCTTATGACTTCGCTGGATATGCCTGCGAACTCGGAAGTGTTGGCCGCCAGCCCGCAACAGCCCTGCCTGGGGCTGGTCATGCGACTCGATTTGCGCATGGTGGCGGATCTGATCGCCCAGGGCAGCGTGATACCACGGGTCGAGCGCGCCGTCGGGATAGGTGCGGGGATCGGCACGGCCACCCAGGATTTTCTCGAGCCGTTCGTGCGCCTGCTGGCCCTGCTCGATGAACCCGACGCCATCCCGGTGCTGGCGCCCTTGATCCAGCGAGAAATTCACTATCGGTTGTTGATGGGCGACCAGGCCGCGCGGCTAAGGCAGATTGCCTCCGTCGACAGCCAAGGCTACCGGATCGCCAAGGCCATCGACTGGTTGAAGCTCAACTACACCGGGCCTGTCCGTGTGGAGGACCTCGCGTCGCGCGTGCAGATGAGCGCCCCGACGTTCCATCACCATTTCCGCCAGCTCACGGCTATGAGCCCACTGCAATACCAGAAATGGCTGCGGTTGAACGAAGCAAAGCGCCTGATGCTCAACGAGCACTTGGACGTGGCGAGCGCGGCCTACCAGGTGGGCTATGAAAGCCCCTCGCAGTTCAGCCGAGAATACAGCCGTCTCTTCGGCGCGTCCCCGAAGCGGGATATCGCGGCGTTGCGCAGGCCGGCAAATGCCATTAAAGCTGATTGA	MTCMIEPSIVLVAQGMKQVWIGGQAYGYDTARFLMTSLDMPANSEVLAASPQQPCLGLVMRLDLRMVADLIAQGSVIPRVERAVGIGAGIGTATQDFLEPFVRLLALLDEPDAIPVLAPLIQREIHYRLLMGDQAARLRQIASVDSQGYRIAKAIDWLKLNYTGPVRVEDLASRVQMSAPTFHHHFRQLTAMSPLQYQKWLRLNEAKRLMLNEHLDVASAAYQVGYESPSQFSREYSRLFGASPKRDIAALRRPANAIKAD				NA	NA	NA	NA	NA
D1-36_03238	894	dmlR_20		HTH-type transcriptional regulator DmlR	ATGAATCAGATGCTCGCCATGCGTGTGTTCCGCTGCATCGCTGAGGCCCAGGGATTCTCAGCCGCCGCTGAGCGGCTGAACACCACGCACTCGTCGGTTTCCCGGCATTTGCATCAGTTGGAATCCACGTTGGGCGTGCGTCTGGTCAATCGCAATACCCGCCGCATGAGCCTTACGGCAGCAGGGGAAAGGTACTACGCAGCCTGCGTGGATATCCTTGACCGAGTCGATGCCGCGTCCCAAGCCGTCGCGCTGGAACACGAGCGTCCCTTCGGGCTGCTTCGGATCAGCGCGCCGCTGGTGGTAGGCACCTTGGAGTTGGCGCATTGGTTGCCGGCCTTCCAGGCGCGGTATCCGGAGATCCAGATCGATTTGTCTTGCTCTGATCCGTTGGTCGATCTGGTGGCCGATGGCTTCGACGTCGCGTTGCGGATTTGCGGGCCCTTGGCCGACAGCAGCCTGGTCGCCCGTTTGCTCAGCGTTTCACCGCTGGTGCTGGTAGCGGCGCCGGCTTACGTGTTCAAGTGCGGTTTGCCTCGCAGTGCTGCCGAACTCAACGAGCATCGGTTGCTGACGTATGGGGCGACTCCTCAGTGGACGCTCACCAGCGCCTGGGAAGGCCCCGTCAGTCTGGATTGCCAGGGCATTTTTCATACAGACACCATCACTGCCTTGCACGCTTATGCCTTGGCAGGCGGCGGCATAGCCGCGTTTACCCTGGCGACGGTGCAAGATGACCTGTTGGCCGGCAGGCTGGTGCGAATCCTGCCTGAGCACACCCTTGGGGAACGGCACTACTACGCGCTTTACCCTCATGCCCGGCATCTGCCGGCCAAGGTGCGCGTGTTCGTGGAGTACATGACGCAGTATTACCGCGCAGTGTCAGGCGGATGA	MNQMLAMRVFRCIAEAQGFSAAAERLNTTHSSVSRHLHQLESTLGVRLVNRNTRRMSLTAAGERYYAACVDILDRVDAASQAVALEHERPFGLLRISAPLVVGTLELAHWLPAFQARYPEIQIDLSCSDPLVDLVADGFDVALRICGPLADSSLVARLLSVSPLVLVAAPAYVFKCGLPRSAAELNEHRLLTYGATPQWTLTSAWEGPVSLDCQGIFHTDTITALHAYALAGGGIAAFTLATVQDDLLAGRLVRILPEHTLGERHYYALYPHARHLPAKVRVFVEYMTQYYRAVSGG				NA	NA	NA	NA	NA
D1-36_03239	687	rutB		Peroxyureidoacrylate/ureidoacrylate amidohydrolase RutB	ATGCAAAGCTTTACCCGTCGATTGCTCACCGCCTGTGTATTCTCAGGCGTTCTCGCCAGTGCCGGCGCCTCGGCCGAGAGTCATCCAACCATTCGTGCAATGTCTGGCGCAGTGCCCGTGAGCCAGTTGCCTGCCGGTAAAACCGCGTTACTGGTGATCGATTTTCAGAATGAATACTTCACCGGTAAGATGCCGATCCCTGACGGCCCGGCAGCGCTGGCCAACGCCCGGAAGCTGATCGAATTCGCCGATGAACACCAAATGCCGGTCTACCACGTTCAGCACATCGCACCCGCCGGCTCCCCTGTGTTTGCCATCGACGGTGAAACCGTGAAATTCCATCCTGATATGCAGCCCAGGCCCAATGACCCGGTCTTGCAAAAAAACACCGTCAGCGTGTTCGGCAGTACCGATCTGGACAAGCGTCTGAAAGCCGGGGGTATCGAGAACGTGATCGTCTCCGGCCTCATGACCCATGCGTGCGTGGCGGGCGCTGCTCGGGATGCGGCACCGCTGAGCTATAACGTGTTGGTGGCGGCCGATGCATCGGCTACGCGTGCGATTACCCGGGTCAATGGGGAATCGATCGACAAGGACGCCTTGCACAAGGCTGCCCTCGCCGAGATTGAGGATACGTTCGGCGATGTGATGAACACCGCCGAAATCGTCAAGCTACCGGTGCGCTAA	MQSFTRRLLTACVFSGVLASAGASAESHPTIRAMSGAVPVSQLPAGKTALLVIDFQNEYFTGKMPIPDGPAALANARKLIEFADEHQMPVYHVQHIAPAGSPVFAIDGETVKFHPDMQPRPNDPVLQKNTVSVFGSTDLDKRLKAGGIENVIVSGLMTHACVAGAARDAAPLSYNVLVAADASATRAITRVNGESIDKDALHKAALAEIEDTFGDVMNTAEIVKLPVR				NA	NA	NA	NA	NA
D1-36_03240	864			hypothetical protein	ATGATCGCCCTCGATTGTGACGACGTTTTCAGCACCTGGCGTGACCAGGCCCGAACGCTGCTGGGCCACGGAATCGACCCCAGCGACGTGACATGGGCCCAGGGCCCGATCGCCGACCTGCTGGCTGTGCCGACGCCGCTGCCACAGGGCCCGGGGCCGTTCCAGACGCGCGTGCCGGCGGGGTTGTTGGGGCAATTGGAACAGGCCAGCCGCTACCAGGGCGAACAACGCTGGAATCTGCTGTACGAAGTGCTCTGGCGCGTCGCCCATGGCGACCGCACCGCAATGCTCGCTGGCGATCGATTGGGCAGCGAATTGCAACGGCGTATCAAACAGGTCAGCCGCGAAGCCCATCACCTTCATGCGTTCGTGCGTTTCGTACCGCTGCCGCCGGCGGTCGCCGAACAACTGCAGTTGGATCTTGTGGCTTTCCACCAGCCCGCCCACGACATCCTTGAAAGCGCGAGCGGGCATTTTGCCGAGCGATTGGGCCGGCAACGCTGGCTGATCGCAACGCCCCGCGATGGCATTCGTTTCGATGGGCATTCGCTGGACTATCAACGCCGTTGCCCTGAGCAATGGCAACAATGGGCCCGCCACGCCGAAGATCCCGGCGCGGAACTGTGGCGCACCTATTATCGACACATCTTCAATCCGGCGAGGCTCAACCCCACCGCGTTGCGCCAGCACATGCCGGGGCGATTCTGGAAGCACTTACCGGAAGGGGGTTTGATTCCTCAGCTGGTGGGGCAGGCGCGGCAGGGCAAGCAGAGGGATGGGCAGGCATTGGAAGTGGGGGAGAAAGTGGGGAAGCGGATAATCGCGGGCAGTGGGGCAGAGGTACGGGGCTGTAGACAGTCCTGA	MIALDCDDVFSTWRDQARTLLGHGIDPSDVTWAQGPIADLLAVPTPLPQGPGPFQTRVPAGLLGQLEQASRYQGEQRWNLLYEVLWRVAHGDRTAMLAGDRLGSELQRRIKQVSREAHHLHAFVRFVPLPPAVAEQLQLDLVAFHQPAHDILESASGHFAERLGRQRWLIATPRDGIRFDGHSLDYQRRCPEQWQQWARHAEDPGAELWRTYYRHIFNPARLNPTALRQHMPGRFWKHLPEGGLIPQLVGQARQGKQRDGQALEVGEKVGKRIIAGSGAEVRGCRQS				NA	NA	NA	NA	NA
D1-36_03241	1221			hypothetical protein	ATGCAACTCATTGCCAAGCTGGGCATTCTTGCCGATGCCGCCAAATATGACGCATCCTGCGCCAGCAGTGGCGCCCCCAAGCGCAGTTCGCGGGGGCGGGACGGGCTTGGGGCCACGGATGGCATGGGTATCTGCCATAGCTACACGCCGGATGGTCGCTGTGTATCGCTGCTCAAGGTGTTGTTGACCAATTTCTGCTTGTACGACTGCCAGTACTGCGTGAACCGCCGCTCCAGCAATGTGCCGAGGGCGCGATTCTCACCCGAAGAAGTGGTCCGGCTGACCCTGGATTTCTATCGACGTAATTGCATCAGCGGCCTTTTCCTGAGCTCTGGCATCATTCGCTCGGCCGATTACACCATGGAGCAGTTGGTTCGAGTCGCGCGGTTGCTGCGCGAAGAGCACCAGTTCCGTGGATATATCCATCTCAAGACCATTCCCGACGCCGACCCGCTATTGATCGAAGAGGCCGGGCGGCTGGCGGATCGCCTGAGCGTGAATATCGAATTGTCCTCGGAGATCAGCCTCAAGCGCCTGGCGCCGGAGAAGCAACTGGCTACCATCCGTCAGGCGATGGGCACCATCCACGACGGCCAACAGGCGGTGGCGGGCGAGCCGCGGGCGCCTCGTTTTGCCCCGGCCGGGCAGAGCACGCAAGTGATCGTCGGGGCCGATGCCACCGATGACCACGCCATCCTCAGCAACGCCGAGTCGCTTTACCAGGGCTACGGCCTGCGGCGAGTCTATTACTCCGCCTTCAGCCCGATCCCCGAGAGCCCCGCCAGCGTGCCACTGGCCGCGCCACCTTTGCTGCGGGAGCATCGGTTGTATCAGGCCGACTTCCTCATGCGAGGCTACGGCTATAAGGCAGGCGAACTATTGAGCACATCCACCAACCTGGACCTGGACATCGACCCCAAGCTGGCCTGGGCATTGGCCAATCGTGATGTGTTTCCACTCGACCTCAACCGCGCCGAGCCGGCTTTGCTCGCGCGCATTCCCGGCATCGGCCTGCGCAGTGTCCAGCGGCTGGTGACACTGCGCAGGGAGCGGCGGATTCGCTACGACGACTTGGTGCAGTTGCGTTGCGTGTTGGAAAAGGCGCGTCCGTTTATCGTGACCAGCGATTACCGCCCCGCTGACGGCCAAGTGCGCAGCGGGCTGCTCCGAGCGCGCTTGCGCGACCCACAGCGGCCGGTGCAAATGGGGCTGTGGGCATGA	MQLIAKLGILADAAKYDASCASSGAPKRSSRGRDGLGATDGMGICHSYTPDGRCVSLLKVLLTNFCLYDCQYCVNRRSSNVPRARFSPEEVVRLTLDFYRRNCISGLFLSSGIIRSADYTMEQLVRVARLLREEHQFRGYIHLKTIPDADPLLIEEAGRLADRLSVNIELSSEISLKRLAPEKQLATIRQAMGTIHDGQQAVAGEPRAPRFAPAGQSTQVIVGADATDDHAILSNAESLYQGYGLRRVYYSAFSPIPESPASVPLAAPPLLREHRLYQADFLMRGYGYKAGELLSTSTNLDLDIDPKLAWALANRDVFPLDLNRAEPALLARIPGIGLRSVQRLVTLRRERRIRYDDLVQLRCVLEKARPFIVTSDYRPADGQVRSGLLRARLRDPQRPVQMGLWA				NA	NA	NA	NA	NA
D1-36_03242	171			hypothetical protein	ATGGGCACTGTCAGCCTTGAAACAAAGAAGGCCTACGCAGCCAGGACTCGTAGGTCCAACTACGCAGCGAGCCTGCGCCTGGAGGGCTTCAAGGTGTCTTTCGAGGACGGCGAACGCAAGCTGCCATCCCGTGAAGACGTGTTGAAGACCTTCACCAAGACCCGAGCCTGA	MGTVSLETKKAYAARTRRSNYAASLRLEGFKVSFEDGERKLPSREDVLKTFTKTRA				NA	NA	NA	NA	NA
D1-36_03243	606	fic	COG2184	putative protein adenylyltransferase Fic	ATGCCCGACAAATATGGCGTCGGCGAGGACGCCTACTGCTATCCCGGCTCCACGGTCCTGCGCAACAAACTCGATATCCACGACGAACCCACCCTGGGCGAAGCCGAACAACAGCTTTCGGCGATCGCGGCGAGCAGTGTTGAATTCAACCCGCCCCCTTACAGCCTGGCTTACCTTCAGAACATCCATCACGCATTGTTCGCAGACCTGTTCGAATGGGCCGGACAGCTGCGGACCGTTGGCATGGCCAAGCAGGACACTCGCTTCTGCCAACCGGAATACATGGAGAAGGAAGCCGAAAAGATTTTCGCCCGCATAGCGGCAGCGAATTGGTTCGAAGCAATGGGCCGGGATGAACTCATAGTCGCCGTGGCGGACGCCTACTCCGATATCAACGTCATCCATCCCTTTCGTGAAGGCAACGGCCGCGCCCAACGCATCCTGTTTGAGCACCTCATCATGAATGTCGGGTTCGAAATAAGTTGGTGGGGAATCGAAAAAGACGAATGGATCAATGCCAATATCGCGGCTTATAACTGCGTGCTCGATCCCATGGAAACCGTTTTCAAGAAGTGTATTGGACAGCCGATACAATCTCGACCATAA	MPDKYGVGEDAYCYPGSTVLRNKLDIHDEPTLGEAEQQLSAIAASSVEFNPPPYSLAYLQNIHHALFADLFEWAGQLRTVGMAKQDTRFCQPEYMEKEAEKIFARIAAANWFEAMGRDELIVAVADAYSDINVIHPFREGNGRAQRILFEHLIMNVGFEISWWGIEKDEWINANIAAYNCVLDPMETVFKKCIGQPIQSRP				NA	NA	NA	NA	NA
D1-36_03244	723	pphB	COG0639	Serine/threonine-protein phosphatase 2	ATGAACCAGACCGCCTCGTTCCCCCCGAATGAACGAGGCCGAGACTTTGTCGTGGGCGACGTCCACGGGCATTTCAAGCTTCTGGAAAGGGCCTTGGTGAAACTCGAGTTCAATACCGAAGTAGACCGGGTTTTTTCCGTGGGGGACCTCATCGATCGCGGTCCCGACTCAGAGGACGTATTGAATTGGCTTGGGCAACCCTGGTTTCATGCGGTACGCGGCAACCATGAGCAAATGGTTATCGATGGTATCTGCGGCCACGGAGACAGACACAGGCACATCCGCAACGGCGGCGCCTGGCTCTATGAGTTGAGCCCGACCACCCAGGAGCAACTTCTAGCAGCGTTTCAGCAACTTCCGATCATTATCGAAGTTAAGTTATCCGACGATAAAACAGTTGGGATAGTACATGCCCAAGCGCCAGCTGTCGGGCTTGAAAATGAATGGCAGAATGCGAAGGAAGCCATTACCGGAACGCGAGGAAAGCAGTCCGAACAACAAGCCTTGGCGCAAGCCCTTTATGCCCGGGACAAAATCGAACAGCAGGACCCGACTCCAATCAAAGGCATCCACGAAGTTTATGTCGGACATTCATCAGTCCCGCGCGTCACCCGCCTCGGCAATGTTGTCTACATGGATACTGGCTGCTCCTTTTCCGACGGAGCACTGAGCCTCATGGAAATCGGCAGCCAATCGGTTTTCAGCATAGGGATGACGCAGTGA	MNQTASFPPNERGRDFVVGDVHGHFKLLERALVKLEFNTEVDRVFSVGDLIDRGPDSEDVLNWLGQPWFHAVRGNHEQMVIDGICGHGDRHRHIRNGGAWLYELSPTTQEQLLAAFQQLPIIIEVKLSDDKTVGIVHAQAPAVGLENEWQNAKEAITGTRGKQSEQQALAQALYARDKIEQQDPTPIKGIHEVYVGHSSVPRVTRLGNVVYMDTGCSFSDGALSLMEIGSQSVFSIGMTQ				NA	NA	NA	NA	NA
D1-36_03245	465			hypothetical protein	ATGGAACCGGTTCTCCATTTAGAGACGGGGGCGGCCGCCAAGACCGGAAGCAACATACGAGGGGCTCTGGAGATGCTAGGGGAAATGCAGGTTTCATCAAACGAAGTTGGGCTCGACCTAGGGCTCAAGAGTTCGAGTATTTTTTACGAGTCCGCCCGAGGGCCAGCCCGGCAACCGAGCCATTCCCGCTTTCGGTCGGTGGCGCCAAGCAGCGTTCTCATCGTTCACGTAAAATACCCATCCCGCCTGCTGCACAGCTCCAATCCGATTTCGCATGTGTTCTACATCGAATGCCTTCCCGAGGTGATCCTTAAGCCAGCTGCGATTTATGAGGTAGCGACCACATCCCTCGCAGTAAATCTCTTCCACATCACCGTATTTGCCTTTCTTTACTGCTCCCCCCAGCAGATCCTACACGCGCCAAGTCGAATCATTGCCCTTTGCCTTTGCCCTTTGCCCTTGTGA	MEPVLHLETGAAAKTGSNIRGALEMLGEMQVSSNEVGLDLGLKSSSIFYESARGPARQPSHSRFRSVAPSSVLIVHVKYPSRLLHSSNPISHVFYIECLPEVILKPAAIYEVATTSLAVNLFHITVFAFLYCSPQQILHAPSRIIALCLCPLPL				NA	NA	NA	NA	NA
D1-36_03246	396			hypothetical protein	ATGATCGTAAATCGTAAAGAGATGGGGATCATCGGCGGAGAAGTACTGATCGTCGAGGATGATCAAACGCTGCGCGTTCTGATGGTCGAAATTTTGGAAGACATCGGAGCCAAAACCAAAGCGTTCGAAACGGCTGATGAAGCCTTGATATATCTGCTTCAGTCTCCATTCCACTGCTGTCTGGTAATCGTGGATTATGGTGTTCCGGGGCAAATCAATGGTATGGACTTCATCAGTATGGTGAAAAAAAAATGGCCGTCGACTGGTTCGATACTGACATCCGGATATTCGTTTCTTCCTGAAACGGTACCTGGCGCAACGTTTTATTTGCAAAAGCCTTGGTCCATAAGCGACTTAATAGCCTCCATCAGGGCTGTCCTCAGCGATGATTCGTAA	MIVNRKEMGIIGGEVLIVEDDQTLRVLMVEILEDIGAKTKAFETADEALIYLLQSPFHCCLVIVDYGVPGQINGMDFISMVKKKWPSTGSILTSGYSFLPETVPGATFYLQKPWSISDLIASIRAVLSDDS				NA	NA	NA	NA	NA
D1-36_03247	1683			hypothetical protein	ATGCCCCACCGCACCCCAAAACTTCTCATAGCAGCCGCTACGGCCACACTGGTCATGTCCATCACTGCTGCAGTGGGTCCGATTACGCTGTTTTGGACAAACCAAACGCGTAACGAACGTAACCAAGTTGAACAGCAGCTGGACAGCATTCGTACGGTGCAAGGCTTGCTCGTGGACGCGGAAACAGGCGAGCGCGGCTATGTGTTGACTGGGATAGAGACATTTCTTCAGCCTTATTACTTAGCCACATCGCAGCTTCCGGGCGCTCTCAAGAACCTTCGGAAAAACTATCTGAATGATCCTCCCGACGAAATAAGTCAAGTGGAAGACTTCATAGAGCAGACCGAGTCAAAAATCGACCACCTGAACATGGTGATAAAGTTGCGCAGTACCCAAGGTGCCGCAGCGGCGATCGCAGAAATCGCTACCGGGAACGGAAAGAGACTTATGGATCAGGTACGCAATCTAGCAGGCGAGCTGATTCAAGCGGAAGGTGAGGAAGTGGCCATTCTGGACAACCAGCTCAATGCGAACCTGCGTTGGGCCGTTGCCATCTCTATCGCAAGCTTCTTGCTTACGCTGGTGCTGAGCCGTTTTATTTACGTGTCCATGCGTCAGACCATAAAACGCCAGGCCGAATCGACTACTACCGCGCTTTCTTCGACCACCCAACTTGGCAAAAGCCTGAGAAATCTTGAACAACGGAACGCGCAAATAGGCTTGCTCGCAGAAATGGCCCGCCTCCTGCAAACCGAGATGAGCCAGGAGGAAACGCTTCAGTTGGCAAGTTCCTATTGCCAAGAACTACTGGAGGGCACCAGTGGAACGCTGTACCTGTACCGCAATTCAGCTGATGCTCTGCAATCTTCGGCAAGTTGGGGCCAGGTCAGGACTCAACCAGACGATCTAATGACCCCAGAAGACTGCTGGGCCATACGTCGAGGTCATTCGCATGTGGTTGAGAAGCCGCATGAGCTGCGATGCGCTCATTACTCGAATACCAAAGCGTTTAGCGATGACCAAATTCACTGGTGCCTGCCACTTATAGCTTACGGAGAAACACTAGGGCTTTTGTATATCCAGCATGCTGACTCAAAAGCTGATAAAGACGTCAGCCGTCAGTTTGCGGAAGCAGCTGCGGAGCAGACCGCGCTAGCACTGGCGAACGGTAAAATGCGTCAGGTTCTGCAGATCCAGTCTATCAAAGATCCACTGACTGGGCTGTATAACCGCCGCTTCATGGAAGAGACTCTCAAGCGCGAGCTATCCAAGGTCGCCCGAGACGCAGTCGACCTGAGCGTCATCATGCTTGACCTGGACAACTTCAAAAAACTGAATGACTTGCATGGCCACTCCGCAGGTGACGCGGTGCTGCGAAACACCGCATCATTGATCATCAGCGCTATAAGAGCAACCGACGTTGCCTGCCGCTTTGGTGGAGAAGAGCTGATGGTCATCCTGCCGGACTGTTCTCTTGATGATGCCCTCTTGCGAGCCGAATCCATCCGCGCTTCGCTGGAAAGCATGAGCCCTACGGACGGAACACAGACGTACAGCGTTACTGCATCATTTGGCGTGGCCTCAGCAACGCGTAACGGGATTAATCAAGCCGAGTTAATCAAAGCGGCGGATGCCGCACTGTATAGAGCCAAGCGAGGGGGCAAAAACCGGGTTGCGTCCTAG	MPHRTPKLLIAAATATLVMSITAAVGPITLFWTNQTRNERNQVEQQLDSIRTVQGLLVDAETGERGYVLTGIETFLQPYYLATSQLPGALKNLRKNYLNDPPDEISQVEDFIEQTESKIDHLNMVIKLRSTQGAAAAIAEIATGNGKRLMDQVRNLAGELIQAEGEEVAILDNQLNANLRWAVAISIASFLLTLVLSRFIYVSMRQTIKRQAESTTTALSSTTQLGKSLRNLEQRNAQIGLLAEMARLLQTEMSQEETLQLASSYCQELLEGTSGTLYLYRNSADALQSSASWGQVRTQPDDLMTPEDCWAIRRGHSHVVEKPHELRCAHYSNTKAFSDDQIHWCLPLIAYGETLGLLYIQHADSKADKDVSRQFAEAAAEQTALALANGKMRQVLQIQSIKDPLTGLYNRRFMEETLKRELSKVARDAVDLSVIMLDLDNFKKLNDLHGHSAGDAVLRNTASLIISAIRATDVACRFGGEELMVILPDCSLDDALLRAESIRASLESMSPTDGTQTYSVTASFGVASATRNGINQAELIKAADAALYRAKRGGKNRVAS				NA	NA	NA	NA	NA
D1-36_03248	285			hypothetical protein	ATGCCTTATTACCGTGGCTTCGAGGACGTCATATGGGGGCGCGTTTGTGAGCGCTTTGGCTTGGAGATTGACCTCCCCCCAAGCGTACATCAAGCCGACCTGATCGCCCTGGCCACCGAACGCCGCGACCTGATGCCACCCGACCCGGCCACCTGGGATCGCCTTGTCGGCATCGAACCCGCGCCCGAACGCATCCGGCCGTGGTCACCCACCGAAGCCCGGCTCACCTACCACCAACGACTGATGGACCAACTCGCTATCGAACACCGGAGGAAAGCGGCATGA	MPYYRGFEDVIWGRVCERFGLEIDLPPSVHQADLIALATERRDLMPPDPATWDRLVGIEPAPERIRPWSPTEARLTYHQRLMDQLAIEHRRKAA				NA	NA	NA	NA	NA
D1-36_03249	264			hypothetical protein	ATGAAGCAGGAACAGAACAACACCCAACCCCAGGCCGCTTTGCTCCGCAGCGCTAGCAGGGTCGACGCGCCTGTAAAAAACAGTCTCTGCTGCGTAGCAGCAGGCATTACTGCTTCATTCCAAACCGCCGCAGAAGCACCTATACCCCACGAAAGGCTGCGCCGGGCAGCGCCAAATGATTTAACGCTAAACGCACTGGGAATACTGCCGGCGCAGCCTGTGGAGGCGTACGCTCCAAGCTTGGAAATTCGGGAGGGGATATGA	MKQEQNNTQPQAALLRSASRVDAPVKNSLCCVAAGITASFQTAAEAPIPHERLRRAAPNDLTLNALGILPAQPVEAYAPSLEIREGI				NA	NA	NA	NA	NA
D1-36_03250	270			hypothetical protein	ATGAACACGCTTTTTTTGTTGATGGCCCAGTATGAAGGCCGTGCGGTGATTCCTCTCGATCGCGTGTGTGCTGACTATATGAATTTGACTGTGGAAAAATTTAAACACAAGAGACTGGCAGGCGAGATTGACATACCTATCGTGCGCCTTGGACCCGAAAGTCAAAAAGCAGGGCTCGGGATCCATTTGAGAGATTTAGCTGAGTACATTGATCGACAACACGCAAGGGCCACTATCGAGCAAAATCGACTAATGGGAAGGAGATCATGA	MNTLFLLMAQYEGRAVIPLDRVCADYMNLTVEKFKHKRLAGEIDIPIVRLGPESQKAGLGIHLRDLAEYIDRQHARATIEQNRLMGRRS				NA	NA	NA	NA	NA
D1-36_03251	1275	haeIIIM		Modification methylase HaeIII	ATGACCTGTATCAAAGCTCCGCTGTCCTCAGCCAAAGGTGCTAACATGCGCGGTCGAAAATCTGTTGACCTCAGCTGTGAGCCCGCCAGCCCCATGATCGATGGTTTGCTAAAAAAGCAATGCCTGTATACCTGTGAGTTAAAATTGGAATCAAACATGAACGAACCTGTTGTCATCGATCTTTTCTCCGGTGTCGGTGGCCTTAGCCTTGGAGCATCTAGAGCAGGTTTTCATGTTGCAGGTGCATTCGAAATCGATAAGTATGCAATAGAAACTCACGCCATTAACTTCCCGTTCGCAAACCACATTCAAGCCGATATCGGATCGATGACCGGTAAGGAAGTTCTTGAACGCTCAGGTTTAAAGGAGGGGATGCTCGACGGGCTTATTGGAGGCCCTCCTTGCCAAGGTTTCAGTACCATGGGCAAGCGCGACGACGCCGACCCTAGAAATCAACTATTTTATCATTTCTTTAGGTTGATCAAAGAAACCAAGCCAAAATTCTTCATTGCGGAGAACGTGCCAGGTATCTTAACAGAGAAATATAAGGCGCACGTTGAAAACGCTCTAAGCCTTGTAAGAAACGATTATACTTTACTTCCACCAATCAAGGTCAAGGCTGATCGATATGGAGCCCCTACAACTAGAACACGTATATTTTTCATTGGCTTCAGGCCCAATGAATTTACGCGTGAGCTTAGCCCAGAACTATTCGCCCCCAATCCCACCGCCTCATTAGTTAATGTGAAAACCGCGCTAGAGGGACTTCCGACGCTTATCCGTTCTGACTGGCAAGCCGAAGAGCAATCTTGGCGCAGAGCAACATCTCTCGCTGAAAATACTTTTCTCAAAGCGCTTAATGGAAAAATCCCAACGGGAATAGGTTCTATAAGAGCTGTTGAGCTGTTAATGGAAAAACAACTTGTCTCTGGATGCTTTGGTACTCGACATATCCCTGAGGTAGTTAGACGCTTCGCTCGCCTGAAGGCGGGAGAAGTTGATTCTGTATCAAAAGCAAAGAGACTTGACCCGGAAGGATTTTGCCCTACTCTGAGAGCTGGCACAGGTAGCGACAAAGGCAGCTTTCAAGCCGTCCGCCCTATCCACATGACATCTCCCAGAGTGATAACTCCCCGCGAAGCAGCTCGCTTGCAGGGCTTTCCCGACTGGTTTCAGTTCCATCCAACCAAATGGCATAGCTTCCGACAAATTGGAAACAGCGTAAGCCCAATAGTTGGCGAACATATTCTTAGCTCAGTATATAGTTGCTTATAG	MTCIKAPLSSAKGANMRGRKSVDLSCEPASPMIDGLLKKQCLYTCELKLESNMNEPVVIDLFSGVGGLSLGASRAGFHVAGAFEIDKYAIETHAINFPFANHIQADIGSMTGKEVLERSGLKEGMLDGLIGGPPCQGFSTMGKRDDADPRNQLFYHFFRLIKETKPKFFIAENVPGILTEKYKAHVENALSLVRNDYTLLPPIKVKADRYGAPTTRTRIFFIGFRPNEFTRELSPELFAPNPTASLVNVKTALEGLPTLIRSDWQAEEQSWRRATSLAENTFLKALNGKIPTGIGSIRAVELLMEKQLVSGCFGTRHIPEVVRRFARLKAGEVDSVSKAKRLDPEGFCPTLRAGTGSDKGSFQAVRPIHMTSPRVITPREAARLQGFPDWFQFHPTKWHSFRQIGNSVSPIVGEHILSSVYSCL	PGPT0020015_3779	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEM	CE-BACTERIAL_FITNESS-TYPE_II_R-M_SYSTEM,PGPT0020015-dcm-K00558	NA	NA
D1-36_03252	981			hypothetical protein	ATGAGTCAGGGCGGAAGTATTGCTTACCATTTGCGTCAGAATAAAGCTATCGAGCGCAATCTATTTGTAGACTTGTTGTCTAGAGTAGGTCGTTACGTAAATATATCAAACTACAGTTATATTGGTTTTGGTGGCCCGTTCTTGGAGGATTTTAAGCACCTGCATTCTGCGCTTAGGATATCCAAAATGATTTCGTTGGAAATGGATCCGAATGTTTACAAGCGACAGATGTTCAATCGGCCGATTTCTTGCATATCGTTGAGAAATGAATCAAGTGGTGATTTTTTAAATAATTACGAGTTTGATAATGAGGCTGGCAATATAGTCTGGTTTGATTATGCCACTACGGACATTACCAGTCAGCTTACAGAGACCCAAAGGCTCGTTGAGAAGCTTGGGCACGGTGATATTTTCAAAATAACGGTGAACGCGAGTCCAACGGCACTAGGTGAACCGCAAGATCGTTCCAAAATGTTGGAGTATCGAGCTGAAGTTCTTGCAAATAGACTGTCGTCCTATGGACCTGCAGAAGTCACAGCCGATTCAGTCGCTACAAAAAACTATCCTAAAACTTTGCTCGCGGCGATTATGTCGGCTGTTAAGCATGGTTTGGCTGGTGACCCCAGTATTGTTTTGCAGCCTCTCGCAGCGTTTGTTTACAGCGATGGACAACAAATGCTTACGGTGACAGGGGTGTTGCTGCATAGGGATGAAATCGAACGGTTTCTTGAGCAGTCACGACTCCCTTTCTGGAGTTTTTTTAATGCGGATTGTTTAGCTCCGAAAAGTATAAGTGTGCCGGTTCTGTCAGCTAAGGAACGTGTGCATATAGAGTCGATGTTGCCAGAAGCAGGTGTAGAAGATATTCAGAATGCTCTAGACTTCTACACTGCTTCAACTGAGCGGGTCGCTCAGGAGGAAATGAGTAACTTTGTGAATTTTTATAGGATGTTTCCCTGGTATTCAAGAGTCGTTCTATAA	MSQGGSIAYHLRQNKAIERNLFVDLLSRVGRYVNISNYSYIGFGGPFLEDFKHLHSALRISKMISLEMDPNVYKRQMFNRPISCISLRNESSGDFLNNYEFDNEAGNIVWFDYATTDITSQLTETQRLVEKLGHGDIFKITVNASPTALGEPQDRSKMLEYRAEVLANRLSSYGPAEVTADSVATKNYPKTLLAAIMSAVKHGLAGDPSIVLQPLAAFVYSDGQQMLTVTGVLLHRDEIERFLEQSRLPFWSFFNADCLAPKSISVPVLSAKERVHIESMLPEAGVEDIQNALDFYTASTERVAQEEMSNFVNFYRMFPWYSRVVL				NA	NA	NA	NA	NA
D1-36_03253	1386			hypothetical protein	ATGACTGATCATGTTAACGCTCATCCTGCAAAACGTTTTTTCGTAGAAATGTTGACGCGAGATATCGAGTTGAAGGATTCAATCCTTGATCTCCTTGATAACTGTGTCGACGGTGCTATGCGAGAGAAGCGCACCGAACTGAACCATCCAGTTCCTTATAAAGGATTTGAAGCTAAAATCACTTTCGATGAAAATCATTTCTCGATATTTGATAATTGCGGCGGCATCCCTCGAGAGGTTGCGCTTGAGCGTGCGTTCCGTCTAGGTAGACCTGATCGCGATACTGACAAAGACGTCCCAACAGTTGGCGTCTATGGTATCGGCATGAAACGGGCAATATTCAAGCTGGGCCGGCAGTCTACCGTCGAGACAAGCGCTAGAGATGCTGCATATAAAGTTACAATTGATGCCGCATGGTTGGCAGATGACTTCAACTGGAATCTTCCCATAGAGGAAGTTCAACCGGATGAAGCTAAAGGCACAAAGATTACGGTAACAGAACTGAACGATGGTATTCCCCGATTATTTTCCAATCAGACGGGTTTTGAGGTTGATCTAAAAAAAGCAATCTCTGCATATTATGGTCACATAATAACTAAGGGTTTCAATGTTTATGTGAATGGTGAGAGAGTTGCTCCGACAACCTCAAGCTTTATTTTGGGTGAAAATGCTTTAGCGTCGGGTTCTGGTATTGCCCCCTTTGTTTACCAAGGTAATTACAATGGCGTTGCAATCGAGCTGGCAGTCGGTTTTTATAGAGATCTCCCTTCAGATCAGGAGGAGGAAGACTCATTGGCAGGAAAGCCTTCCACGGAAAAAGCAGGTTGGACAATCATTTGCAACGACCGTGTCGTACTGCATGCAGACAAAACCAGAGTTACAGGCTGGGGTGAGGCAGGCGTACCCGCATATCACACCCAGTTTGTATCGATTGCAGGTGTTGTGAACTTCAAATGTAACGACGCGTCTCTTCTGCCTGTCACAACCACAAAACGTGGTATAGATGGAAACTCAGACTTATACCTTGCAGTAAAAGAATTTATGCGTGAGGGTGTGAAGATTTTCACGGATTATACCAATAAGTGGAAGCGTCCATCTAAGGAGCGTTCCGATCTAAGTGTCTCGGCTGTGACGACCACACCGTCGGAGATCATGAAAAGCATCCCTTCTAATCGCTGGTCAGCGGACCGGAAAAGCATGATCAAGGGCCAAAAATTCAAGCCTGAATTGCCGATGCCTACTATTGAGAAAGAATACCGGTTCTTAAGATTTTCCAAGCCTTTATCGGATATTAAAACATTGGGCGAGCATTTTTTTGGAGATGAAAATGCTCAGCCAGGTGAGATTGGTGCTAAATGCTTTGATGAAGTTCTGAAGGGGATCTAA	MTDHVNAHPAKRFFVEMLTRDIELKDSILDLLDNCVDGAMREKRTELNHPVPYKGFEAKITFDENHFSIFDNCGGIPREVALERAFRLGRPDRDTDKDVPTVGVYGIGMKRAIFKLGRQSTVETSARDAAYKVTIDAAWLADDFNWNLPIEEVQPDEAKGTKITVTELNDGIPRLFSNQTGFEVDLKKAISAYYGHIITKGFNVYVNGERVAPTTSSFILGENALASGSGIAPFVYQGNYNGVAIELAVGFYRDLPSDQEEEDSLAGKPSTEKAGWTIICNDRVVLHADKTRVTGWGEAGVPAYHTQFVSIAGVVNFKCNDASLLPVTTTKRGIDGNSDLYLAVKEFMREGVKIFTDYTNKWKRPSKERSDLSVSAVTTTPSEIMKSIPSNRWSADRKSMIKGQKFKPELPMPTIEKEYRFLRFSKPLSDIKTLGEHFFGDENAQPGEIGAKCFDEVLKGI				NA	NA	NA	NA	NA
D1-36_03254	1008			hypothetical protein	ATGGGCACGATCACATCACGCAAGCGCAAGGACAATTCAACGGCCTACACGGCGCAGATACGGATCAATCGGGACGGGAAGACAGTTTATCAGGAAAGCCAAACCTTCGACCGGAAGCAGGCGGCTCAGGCATGGATCAAGCGGCGGGAGACGGAGCTGGCCGCGCCTGGTGCTATCGAACGTGCGAACCGGAAAGGGGTGACGATCAAGAAGATGATCGATCAGTACCTGGACGAGTACGAGAAGATCCGGCCGCTGGGGAAAACCAAGCGAGCAACCCTGACGGCGATCAAGGAGACGTGGCTGGGTGAGGTCGATGATTCTGCGTTGAACAGTCAAAAGCTTGTGGAGTTTGCTCAATGGCGGATGAGCGAGGAGGGGGGCGGTGTCCAGGCGCAGACGGTCGGTAATGATCTATCGCACCTAGGAGCGGTCCTCTCGGTCGCTCGGCCGGCCTGGGGGTATGAGATAGATCCGCTTGCCATGACTGACGCTAGAAAGGTGTTGCGTAAGCTCGGAATGGTCACCAAGAGCAAAGAGCGTAATCGCCGGCCTACTCTCGATGAGCTGGACAAGCTGATGGAGCATTACTTTGACATGCAAACACGGGGTAATAACTCTATTCCCATGCCAAAAATAATTGCTTTCGCGCTCTTTTCTACACGCCGGCAGGAGGAAATCACACGGATACGCTGGGAGGATCTTGACGAATCCCGGCAGGCGGTGCTCGTTCGAGACATGAAGAATCCTGGCCAGAAGCTAGGTAATGATGTTTGGTGCCACTTGCCCGATGAGGCATGGGCGATCCTGAAGTCGATGCCCAAAGTCAAGCGAGAGATCTTCCCCTTTAACGGTAAGTCAGTGTCAGCTTCCTTCACGAGGGCTTGCCCGATGCTGGGTATCGAAGACCTTCATTTCCATGATCTCCGGCATGAAGGGGTGAGTCGGTTGTTTGAGATGGACTGGGATATTCCAAGGGTGTCGAGCGTCTCTGGACACCGGGACTGA	MGTITSRKRKDNSTAYTAQIRINRDGKTVYQESQTFDRKQAAQAWIKRRETELAAPGAIERANRKGVTIKKMIDQYLDEYEKIRPLGKTKRATLTAIKETWLGEVDDSALNSQKLVEFAQWRMSEEGGGVQAQTVGNDLSHLGAVLSVARPAWGYEIDPLAMTDARKVLRKLGMVTKSKERNRRPTLDELDKLMEHYFDMQTRGNNSIPMPKIIAFALFSTRRQEEITRIRWEDLDESRQAVLVRDMKNPGQKLGNDVWCHLPDEAWAILKSMPKVKREIFPFNGKSVSASFTRACPMLGIEDLHFHDLRHEGVSRLFEMDWDIPRVSSVSGHRD				NA	NA	NA	NA	NA
D1-36_03255	1020	dusA	COG0042	tRNA-dihydrouridine(20/20a) synthase	ATGAATTTAGAAAAACCCGAAGCGCCTGTAAACACTGGATTACCCCGCCAAGAGCCGTCCCGCCGCTTCAGCGTGGCCCCGATGATGGATTGGACCGACGCCCACTGTCGCTTCTTCCTACGCATCCTCTCCAAGCACGCCCTGCTTTACACCGAAATGGTCACCACCGGTGCCTTGCTCAACGGCGACCACGAACGCTTCCTGCGCCACCATGAAACCGAGCATCCCCTGGCCCTGCAACTGGGCGGCAGCGTCCCCGGCGACTTGGCGGCCTGCGCCCGAATGGCCCAGGAACATGGCTACGACGAGGTGAATCTCAACGTCGGCTGCCCGAGCGATCGGGTGCAGAACAACATGATCGGCGCCTGCTTGATGGGGCATCCGGAATTGGTGGCCGATTGCGTGAAAGCGATGCGCGACGCCGTGTCGATTCCGGTGACGGTCAAGCATCGGATCGGGATCAATGGTCGCGACAGTTATGAGCAATTGTGCGAGTTCGTCGGGACCGTGCGTGACGCCGGTTGCAACAGTTTTACCGTGCATGCGCGGATTGCGATCCTGGAGGGGTTGTCGCCGAAGGAGAATCGCGACATTCCGCCATTGCGCTATGACGTGGTGGCCCGATTGAAAGCGGACTTCCCTGAGCTGGAGATCGTACTCAACGGTGGAATCAAGACACTGGAGGCCTGCCACGAACATCTGCAAACGTTCGATGGTGTCATGCTGGGCCGCGAGGCGTACCACAACCCGTATCTGCTGGCCGAAGTGGACCAACAGTTGTTCGGCAGCACTGCGCCGCTCATTACTCGTGCCGAGGCCTTGGCACAGCTGCGGCCTTATATTGCCGATCACTTGGCACAAGGCGGTGCCATGCACCACATCACCCGTCACGTGCTGGGGCTGGGCACTGGGTTCCCGGGCGCGCGGCGGTTCCGGCAGTTGTTGTCGGTGGATATCCACAAGACCAAGGATCCGTTGGCCTTGCTCGATCAGGCGGGCCAGTTGCTGGAAGGGCGTTAA	MNLEKPEAPVNTGLPRQEPSRRFSVAPMMDWTDAHCRFFLRILSKHALLYTEMVTTGALLNGDHERFLRHHETEHPLALQLGGSVPGDLAACARMAQEHGYDEVNLNVGCPSDRVQNNMIGACLMGHPELVADCVKAMRDAVSIPVTVKHRIGINGRDSYEQLCEFVGTVRDAGCNSFTVHARIAILEGLSPKENRDIPPLRYDVVARLKADFPELEIVLNGGIKTLEACHEHLQTFDGVMLGREAYHNPYLLAEVDQQLFGSTAPLITRAEALAQLRPYIADHLAQGGAMHHITRHVLGLGTGFPGARRFRQLLSVDIHKTKDPLALLDQAGQLLEGR				NA	NA	NA	NA	NA
D1-36_03256	927	tal		Transaldolase	ATGACTTCCAAGCTGGAACAACTCAAGCAGTTCACCACCGTCGTGGCCGATACGGGCGACTTCGAAGCCATCGCCCGCATCAAACCCGTCGACGCCACCACCAACCCATCCCTGCTGCTCAAGGCTTCGGCCATCCACGGTTATGCCGAGCTGCTGAACGCTTGCGTGGCGGACTGCAAGGGCGACGTGGGCCTGGCCAGCGACCGCTTTGGTGTTGCGGTGGGCCAGGAAATCCTGAAAGTGATTCCGGGGCGCATTTCCACCGAAGTGGATGCACGCCTTTCGTTCGATACCGAAGCCATGCTCAAGCGCGCGCATCGGCTGGTCGATCTGTACGAAAAGGCCGGCGTTGGCCGTGACCGCGTGCTGATCAAGATCGCTTCGACCTGGGAAGGCATCCGCGCTGCCGAGAAACTGGAGCGCGAAGGCATCCAGTGCAACCTGACCCTGCTGTTCTCCTTCGCCCAGGCCGCTGCCTGTGCAGATGCCGGGGTTTTCCTGATCTCGCCGTTCGTGGGCCGTATCTACGATTGGTACAAGAAGGCCAACGGCAACGACTACACCGGCGCCGATGATCCGGGCGTGCAGTCCGTGACGCGCATCTATAACTATTACAAGGCCAATGACTACAAGACCGTGGTTATGGGCGCGAGCTTCCGCAACCTCAACCAGATCGAGCAATTGGCCGGTTGCGATCGCTTGACTGTCAGCCCTGAGCTGCTGGAGAAACTGGCCGCCGACGAAGGCAAGCTGGAGCGCAAACTGGCACCTGGGCAAGCTGGAGAAGCTCGCCTGAGCCTCAATGAGCCCCAGTTCCGCTGGTTGTCCAACGAAGACGCCATGGCGACCGAGAAACTGGCTGAAGGCATCCGTCAGTTCGCTCGTGACCAGGAGAAGCTGGAAGCGTTGCTGCAAGCCAAGCTTTGA	MTSKLEQLKQFTTVVADTGDFEAIARIKPVDATTNPSLLLKASAIHGYAELLNACVADCKGDVGLASDRFGVAVGQEILKVIPGRISTEVDARLSFDTEAMLKRAHRLVDLYEKAGVGRDRVLIKIASTWEGIRAAEKLEREGIQCNLTLLFSFAQAAACADAGVFLISPFVGRIYDWYKKANGNDYTGADDPGVQSVTRIYNYYKANDYKTVVMGASFRNLNQIEQLAGCDRLTVSPELLEKLAADEGKLERKLAPGQAGEARLSLNEPQFRWLSNEDAMATEKLAEGIRQFARDQEKLEALLQAKL	PGPT0017375_3685	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
D1-36_03257	483			hypothetical protein	ATGAGTACCGGTAGAATCCAGTTCGCCGAGCAGGACGGCACTTTTGTCCTGAAGTTTGTCGGTGAGGTGCGCCTGACCTTGTGTTCGGCGCTGGATGCGACAATAGAAAAGATCTTCACCGCGCTGAATTTCAGCGCCATCGTGATCGACCTGACCGAAACCCGCAGCATCGACAGCACTACGCTGGGCCTACTGGCCAAGCTGTCGATACTGTCGCGGCAGAAAGTCGGCCTGCTGCCGACTGTCGTCACTACCCACAACGACATCACCCGTCTTCTGCAATCGATGGGTTTCGACCAGGTGTTCAACATCGTCGGCGATCCGGTGCCATGCCCCGATTGCCTGGACGACCTGCCTGACCAGGACCAATCCGAGGACGAAGTGCGGATCAAGGTACTCGAAGCCCACAAGATCCTCATGGGGCTGAACGACTCCAATCGCGAAGCGTTCCATGACTTGGTGAATGCGCTGGAGCGGCCTTGA	MSTGRIQFAEQDGTFVLKFVGEVRLTLCSALDATIEKIFTALNFSAIVIDLTETRSIDSTTLGLLAKLSILSRQKVGLLPTVVTTHNDITRLLQSMGFDQVFNIVGDPVPCPDCLDDLPDQDQSEDEVRIKVLEAHKILMGLNDSNREAFHDLVNALERP				NA	NA	NA	NA	NA
D1-36_03258	1182	rssB_3		Regulator of RpoS	ATGCCAAAAACCAGTGCCACGCTGCTGATAATCGATGATGACGAAGTGGTGCGAGCCAGTCTCGCGGCCTACTTGGAAGACAGTAGTTTCAGCGTCTTGCAGGCCAGTAACGGCCAACAGGGTCTTCAGGTATTCGAGCAGGAGAAGCCCGACCTGGTCATCTGCGACTTGCGCATGCCGCAGATGGGCGGACTCGAACTCATTCGCCAGGTCACCGAGCTGTCGTCGCAGACCCCGGTCATCGTCGTTTCGGGCGCGGGTGTGATGAACGACGCGGTCGAGGCGTTGCGCCTGGGCGCGGCGGACTACCTGATCAAGCCCCTCGAAGACCTCGCGGTGCTTGAGCACTCGGTGCGCCGAGCCCTGGATCGCTCGCGACTGCTGGTGGAGAACCAGCGCTACAGGGAAAAGCTGGAGACCGCCAATCGCGAGCTCGAAGCCAGCCTGAACCTGTTGCAAGAGGACCAGAACGCCGGGCGCCAGGTGCAAATGAACATGCTGCCGGTGAGCCCCTGGACGGTCGATGGTTTCCGTTTTGCCCATCAGATCATCCCGTCGTTGTACCTGTCGGGGGACTTCGTCGATTATTTTCGTGTAGATGAGCGTCGCGTGGCGTTCTACCTAGCGGACGTTTCCGGGCACGGTGCTTCGTCGGCGTTCGTCACGGTGTTGCTGAAGTTCATGACCACGCGCCTGCTGTTCGAATCCAAGCGCAACGGTACATTGCCGGAATTCAAGCCTTCGGAGGTCCTTGGGCATATCAACCGGGGCCTGATCAGTTGTAAGCTGGGCAAGCACGTCACGATGGTCGGTGGAGTCATCGACGAGGAGACTGGTTTGTTGACCTATAGCATCGGCGGTCACCTGCCGTTGCCTGTGTTATATACACCAGACAGTGTTCGTTACCTGGAAGGGCGTGGTTTGCCGGTAGGCCTGTTCAACGAGGCGACCTATGAGGACCACGTATTGGAGCTGCCACCGACATTCAGCCTGACGCTGATGTCTGATGGCATTCTGGACCTTTTGTCAGAGCCTACACTCAAAGAGAAAGAAGCGGCCTTGCCCGAGCGGGTGAGTGCAGCGGGCGGCAGCCTGGAAGGCCTGCGGCAAGTGTTTGGATTAGCCACGCTAGGGGAGATGCCGGATGATATCGCCCTGTTAGTGTTGAGCAGGAACCTTTGA	MPKTSATLLIIDDDEVVRASLAAYLEDSSFSVLQASNGQQGLQVFEQEKPDLVICDLRMPQMGGLELIRQVTELSSQTPVIVVSGAGVMNDAVEALRLGAADYLIKPLEDLAVLEHSVRRALDRSRLLVENQRYREKLETANRELEASLNLLQEDQNAGRQVQMNMLPVSPWTVDGFRFAHQIIPSLYLSGDFVDYFRVDERRVAFYLADVSGHGASSAFVTVLLKFMTTRLLFESKRNGTLPEFKPSEVLGHINRGLISCKLGKHVTMVGGVIDEETGLLTYSIGGHLPLPVLYTPDSVRYLEGRGLPVGLFNEATYEDHVLELPPTFSLTLMSDGILDLLSEPTLKEKEAALPERVSAAGGSLEGLRQVFGLATLGEMPDDIALLVLSRNL				NA	NA	NA	NA	NA
D1-36_03259	102			hypothetical protein	ATGGCCGCCTTCTTTGCTTTGGTAGGGTTCAAGCGCAGATTTGTCCTTCCATTGAGTTACGCTTCGCTCGGTTCTTATAACTCTCCGTGCTTTGACAAATAA	MAAFFALVGFKRRFVLPLSYASLGSYNSPCFDK				NA	NA	NA	NA	NA
D1-36_03260	690	mlaA_2	COG2853	Intermembrane phospholipid transport system lipoprotein MlaA	ATGCGCTGGAGCCATCGTCTAGCTCAGCTGTGTCTATCTGCCAGTATCCTGCTGGTACCGTTTGCCGCCCAGGCCGCCACGGAAGAAGATCCATGGGAAAGCATCAACCGTCCAATCTTCACCTTCAACGACACCATTGATACCTATGCGCTCAAACCGCTGGCCCAGGGTTATCAGTACGTGACGCCGCGATTCCTCGAAGACGGCATCCACAACATGTTTCGCAACATCGGTGACGTGGGCAACCTGGCCAACGACCTGTTGCAAGCCAAACCGGCCGCTGCGGGAGTCGACACAGCCCGTTTGATTTTCAATACCACGTTCGGTCTCCTGGGGTTTTTCGACGTGGGCACCAAGATGGGCCTGCAACGTAACGACGAAGATTTCGGCCAGACCCTCGGGTATTGGGGGCTGGGCAGCGGACCGTACCTGATGCTGCCACTGCTGGGGCCGAGTACCCTGCGTGACGCGCCGGCCAAGTGGGTCGACAGCTACGCCACCCCTTACCCTTATATCGATAATGTCTCGGTCCGCAATTCGATCTGGGGCCTGAACATCGTCGACACCCGTGCCAGCCTGCTCTCGGCGGAAAAGCTCGTCAGCGGCGACAAGTATGTGTTCATCCGCAATGCCTTCCTGCAAAACCGCGAATTCAAGGTCAAGGATGGTCAAGTCGAAGATGATTTTTAA	MRWSHRLAQLCLSASILLVPFAAQAATEEDPWESINRPIFTFNDTIDTYALKPLAQGYQYVTPRFLEDGIHNMFRNIGDVGNLANDLLQAKPAAAGVDTARLIFNTTFGLLGFFDVGTKMGLQRNDEDFGQTLGYWGLGSGPYLMLPLLGPSTLRDAPAKWVDSYATPYPYIDNVSVRNSIWGLNIVDTRASLLSAEKLVSGDKYVFIRNAFLQNREFKVKDGQVEDDF	PGPT0024485_2068	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024485-mlaA|vacJ-K04754	NA	NA
D1-36_03261	621	phnX_2	COG0637	Phosphonoacetaldehyde hydrolase	ATGCCGCGCGCCGAAGCACTGCCCCTCCCTGCCCCCAGCCTTACCGCCGTACTGTTTGGCCTGAGTGGATGCCTGGTGGATTTCGGGGCGCGCGTACGCCAGCCAGGCACCCAGCCATCGGATCATGCCCATCCGACCCCAGGCGCGCTGGAAAGCCTGCAACGCTTGCAGCATCTGGATATCCCCTGCGCCTGGCTCGACGACCTGCCCCCCGCCGTCAGCCATGGCCTGGCGACTTCGTTGCCTGCGTCCATCAAGGCGCCGCAACTTCCCGCAACAAATCAACCTTGGCCGGCGCCGCATGCCTGCTGGCAAGCCCTCATGGCGCTGAACGTCCAACAGTTGGACGGCTGCGTGTTGGTCAGTGGCGAACCCAAGTTGTTGCAGTCCGGGCTCAACGCCGGGTTGTGGACCATTGGACTGGCGTCCTGCGGCTCATTGTGCGGGCTGTCCCCTTCCGAATGGCAAGCCCTGAGCCAGCAGGAACGGGAAATCAAACGGGCCAAGGCCACGGTGCAGCTCTTCAGCCTCGGCGTGCATTCGGTGATCGACCACCTGGGCGAACTGGACACTTGCCTGGCCGACATCAGCCTGCGCAGACAAAAAGGCGAGAAGCCCTGA	MPRAEALPLPAPSLTAVLFGLSGCLVDFGARVRQPGTQPSDHAHPTPGALESLQRLQHLDIPCAWLDDLPPAVSHGLATSLPASIKAPQLPATNQPWPAPHACWQALMALNVQQLDGCVLVSGEPKLLQSGLNAGLWTIGLASCGSLCGLSPSEWQALSQQEREIKRAKATVQLFSLGVHSVIDHLGELDTCLADISLRRQKGEKP				NA	NA	NA	NA	NA
D1-36_03262	267			hypothetical protein	ATGCCTGCCAGCCGGGAATTGCAAGAACAACTCGATACCTTGCGCGAGCAATTGGAACAGGACCCGCCGCTGTCTGAGCCAGATCGCGAACATCTGCACAAGTTGATGGTAGAGATCGAATCTCAGATCGAACTGGAAAACCAGCTTCAGGACAACAACCTGGTCGACGGCGTAAACCTGGCCGTAGAGCGTTTTGAAGTGGAGCACCCAACGATCGCCGGAACACTGCGCAATATCGTCATTACCTTGGGCGGCATGGGGATCTAA	MPASRELQEQLDTLREQLEQDPPLSEPDREHLHKLMVEIESQIELENQLQDNNLVDGVNLAVERFEVEHPTIAGTLRNIVITLGGMGI				NA	NA	NA	NA	NA
D1-36_03263	831	queF	COG0780	NADPH-dependent 7-cyano-7-deazaguanine reductase	ATGCATCCCGCAGCCGAACATTCGCCGCTGGGCAAATCCAGCGAATACATTGCCACGTACACGCCGTCACTGCTGTTCCCGATTCCGCGCGCCGCGAAGTGGGCGGAGCTGGGCCTGACGGCCGAGACCCTGCCGTACAAAGGCGTGGACTTCTGGAACTGCTTCGAATTGTCCTGGCTGTTGCCTTCCGGCAAGCCGGTGGTGGCCATCGGCGAGTTCGCCATCGCGGCGGATTCGCCGAACATTATCGAGTCCAAATCCTTCAAGCTTTACTTGAACTCGTTGAATCAGACCCCATTCACCGACACCGCGAGCCTGGAAGCGACCTTGCGCCAGGACCTTTCGGCGGCTGCCGGCAAGCCAGTGGGTGTGCGGATCCGCAGTCTCAAGGATGTGGAAAACGAAGGCATCGTGGCGCTGCCCGGTGCGTGCATCGACGAATTGGACATCAGCGTCGATTCCTATGAGCACCCGCGCCCGGAACTGTTGCGTTGCGATGACTCGCGCATCGTCGAGGAAAGCCTGCACAGCCATTTGCTCAAGTCCAACTGCCCGGTGACGAGCCAGCCGGATTGGGGCAGCGTAGCGGTGGAGTATCGCGGCGCTGCGTTGGCTCATGCGAGCTTGTTGGCCTACATCGTCAGCTTTCGCCAGCACTCGGATTTCCATGAGCAGTGCGTGGAGCGGATCTTCCTAGACCTGCAGCGCTTGCTCAAGCCGGAGAAACTGACGGTGTATGCGCGGTATGTGCGGCGTGGTGGGCTGGACATCAATCCGTATCGCAGCACCGACGAGGTGCAATTGCCGAACCATCGGCTGGTCCGCCAATGA	MHPAAEHSPLGKSSEYIATYTPSLLFPIPRAAKWAELGLTAETLPYKGVDFWNCFELSWLLPSGKPVVAIGEFAIAADSPNIIESKSFKLYLNSLNQTPFTDTASLEATLRQDLSAAAGKPVGVRIRSLKDVENEGIVALPGACIDELDISVDSYEHPRPELLRCDDSRIVEESLHSHLLKSNCPVTSQPDWGSVAVEYRGAALAHASLLAYIVSFRQHSDFHEQCVERIFLDLQRLLKPEKLTVYARYVRRGGLDINPYRSTDEVQLPNHRLVRQ				NA	NA	NA	NA	NA
D1-36_03264	522			hypothetical protein	ATGTTGATGGGAGTACGCTTGATCCTGGCTGTTTGCGCATTGACCCTCAGTGCGCTGTCGTGGGCATCGCCGGGCCATTTTGATTTCGGTCAGCCTGCGCCAGCGGCCAAGGCCGGTCGCAGCATCGATGTGGTGATGGGCGACATGACGTTCGATCCCGGTGCGCTGGGCGTCAAGGCCGGCGAGACGGTTCGATTCGTACTCATCAACAAAGGCCAGCTGCTTCATGAGTTCAACCTCGGCAACGCTGCAACGCACGTGGAGCACCAAAAGCAAATGCTCAAGATGCAGCAGAGCGGCCAGTTGATGCCGACCACGATGAAGCCGGGGTTGGATCATGCCGCCATGGGCCACGGCGAGGCGAAGATGCGCCACGATGATCCCAACAGCGTGCTGGTGGAGCCGGGCAAGACCGCCGAGCTGACCTGGACCTTCAGCAAGGCCACGCGCCTGGAATTCGCCTGTAATGTTCCCGGCCATTACCAGGCTGGCATGAGGGGCGAGCTGACAGTCAGTAAGTAA	MLMGVRLILAVCALTLSALSWASPGHFDFGQPAPAAKAGRSIDVVMGDMTFDPGALGVKAGETVRFVLINKGQLLHEFNLGNAATHVEHQKQMLKMQQSGQLMPTTMKPGLDHAAMGHGEAKMRHDDPNSVLVEPGKTAELTWTFSKATRLEFACNVPGHYQAGMRGELTVSK				NA	NA	NA	NA	NA
D1-36_03265	1245	lolE_1	COG4591	Lipoprotein-releasing system transmembrane protein LolE	ATGTTCAGACCGTTATCGATTTTCATCGGCACGCGCTATACCCGCGCCAAGCGCCGCAATCGTTTTGTCTCGTTCATTTCCATGACATCGATGATCGGCCTCGCCCTTGGCGTACTGGCGATGATCGTCGTGTTGTCGGTGATGAATGGCTTCCAGCGCGAAATGAGTTCGCGCATCCTCGGCATGGTTCCGCACGCCACCATCGTTGGCGTTAACCCGATCGATGACTGGCAGCCAGTGGCAGCCGCCGCATTGAAAAATCTTGAAGTCCTCGCGGCCGTTCCGTTCACCGAGATGGAAGGCATGCTGAGCCATAAAGGTTCGATGCAGCCGATCCAGATCAGCGGCGTGGACCCGGCCCAGGAAGGCAAGGTTTCCATCGTCGCCCAGCACATCGTCCAGGGCCGTCTCGACGCCCTGAAACCGGGGGAGTTTGGCGTGGTGATCGGCGAGATCACTGCCCGGCGCTTCCGCCTGAACGTGGGCGATAAACTGACCCTGATCGTGCCGGAAGTCAGCACAGCGCCTGGCGGCATCACGCCACGGATGCAGCGGCTGAATGTGGTCGGCGTGTTCAAGGTCGGCGCCGAGCTGGACGGCTCCATGGCGCTGATCCACCTGGCTGACGCCGCGCAGATGCAGCACTGGCAGCCGAACCAGGTGCAAAGCGTGCGCCTGGCGGTGAAGGACTTGTACGCGGCGCCGAAAGTCTCGGGTGATATCGCCACCGGTCTTGGCGCCAGCTACAAGGCCGACGACTGGACTCACACCCAGGGCAGCCTGTTCAGCGCCATGAAAATGGAAAAGACCATGATTGGCTTGCTGTTGCTGATGATCGTCGCGGTGGCGGCGTTCAACATCATCGCCACGTTGATCATGGTGGTGAACGATAAAGGCGCCGACATCGCCATCCTGCGCACCATCGGCGCCACGCCGCGGCAGATCATGGCGATCTTCATGGTCCAGGGAACGGTGATCGGCATCGTTGGCACGCTCATTGGCGGCGTGCTGGGCGTGATCGCCGCGTTGAACGTCAGTGAGTTGGTGGGTTGGCTGGAGCGGGTCAGCGGTCAGCACATCTTCAGTTCCGATGTGTATTTCGTCAGCAACCTGCCGTCTGAGCTTCAGCGTGGCGACGTGGTGCTGATCTGTTCTGCCGGGTTCATCCTCAGCTTCCTCGCCACCGTGTACCCGGCGTGGCGCGCGGCGAAGATCGAACCGGCGCAGGCGTTGCGGTATTCTTGA	MFRPLSIFIGTRYTRAKRRNRFVSFISMTSMIGLALGVLAMIVVLSVMNGFQREMSSRILGMVPHATIVGVNPIDDWQPVAAAALKNLEVLAAVPFTEMEGMLSHKGSMQPIQISGVDPAQEGKVSIVAQHIVQGRLDALKPGEFGVVIGEITARRFRLNVGDKLTLIVPEVSTAPGGITPRMQRLNVVGVFKVGAELDGSMALIHLADAAQMQHWQPNQVQSVRLAVKDLYAAPKVSGDIATGLGASYKADDWTHTQGSLFSAMKMEKTMIGLLLLMIVAVAAFNIIATLIMVVNDKGADIAILRTIGATPRQIMAIFMVQGTVIGIVGTLIGGVLGVIAALNVSELVGWLERVSGQHIFSSDVYFVSNLPSELQRGDVVLICSAGFILSFLATVYPAWRAAKIEPAQALRYS	PGPT0024510_2201	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_TRANSPORT,PGPT0024510-lolC_E-K09808	NA	NA
D1-36_03266	699	lolD_1	COG1136	Lipoprotein-releasing system ATP-binding protein LolD	ATGAGTGAGTCGGGCATGAGTGAAAAAGCAATCTTGAGTTGCCGCGACCTGGGCAAATCCTACGAGGAAGGCCCGGAGTCGGTGGTGGTGTTGTCGGGCCTGCAGCTGGAGCTGCATCCCGGCGAGCGCGTGGCGATCGTCGGAACTTCCGGCTCGGGCAAAAGCACCTTGCTGAACCTGCTCGGTGGCCTCGATACGCCCACCGCCGGCAGTGTCTGGCTGGCGGGCGAAGAACTCTCGGCATTGAATGAGAAAGCCCGCGGCCTGTTGCGTAACCGTTCCCTGGGTTTCGTCTATCAGTTCCACCATCTGCTGCCCGAGTTCACGGCCCTGGAAAACGTCTGCATGCCGCTGTTGATCGGTCGCACGGCGATTCCCGAGGCCCGTCAGCGCGCCACTGCACTGTTGGAGCGGGTAGGGCTGGGGCATCGCCTGGAGCACAAGCCGGCCGAACTGTCCGGTGGCGAGCGCCAGCGCGTGGCGATTGCCCGCGCCCTGGTCAACAAGCCCGGCCTGGTGATGCTCGACGAGCCGACCGGCAACCTCGATTCCCACACCGCCCAGGGCATCCAGGACTTGATGCTGGAGCTCAGCACCTCGATGCGCACAGCGTTCCTGGTGGTGACCCATGATATGAACCTGGCCCGCCAGATGGACCGCGTCCTGCATTTGCAGGAAGGTTGCCTGACGCCCATCTGA	MSESGMSEKAILSCRDLGKSYEEGPESVVVLSGLQLELHPGERVAIVGTSGSGKSTLLNLLGGLDTPTAGSVWLAGEELSALNEKARGLLRNRSLGFVYQFHHLLPEFTALENVCMPLLIGRTAIPEARQRATALLERVGLGHRLEHKPAELSGGERQRVAIARALVNKPGLVMLDEPTGNLDSHTAQGIQDLMLELSTSMRTAFLVVTHDMNLARQMDRVLHLQEGCLTPI	PGPT0024515_1171	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_TRANSPORT,PGPT0024515-lolD-K09810	NA	NA
D1-36_03267	1251	lolE_2	COG4591	Lipoprotein-releasing system transmembrane protein LolE	ATGTTCAGACCTCTCTTCGTATTCATCGGCACGCGTTATACCCGTGCAAAGCGTCGCAATCATTTCGTATCGTTCATTTCCCTGACGTCCATCATCGGACTGGCCCTTGGCGTGGTCGTGATGATCGTCGTGTTGTCGGTGATGAACGGCTTCGATCATGAAATGCGCACCCGCGTACTGGGCATGGTGCCTCACGCGACCCTCGAAACCGGCGAAGCCATCAGCGATTGGCCGAGCCTGGCCGCCAACGTCAAGCGGAGCCCGCAGGTGCTGGCCGTGGCGCCTTTCACCCAGATGCAGGGGCTGCTGACCAACGACGGCAAGGTTTCCAAGGTCTTGCTCAACGGCATCGACCCCGGGCTGGAGCGGCAGGTGTCGATCATCGACAACTTCATGAAGCAGGGCAAACTCGACGACCTGGCGCCAGGCAGCTTCGGCATCGTGATCGGCGACAAAGCCGCGGCCAAGCTCGGCGTGGCCATCGGCGACAAGCTGACCTTCGTCGCGCCGGAAGTCACCGTCACCCCGGGCGGCATGTTCCCGCGCATGAAACGCTTTACCGTGGTAGGCATCTTCCACGTCGGCGCCGGCGAGCTGGACGGCTACCTGGGCGTGACCAATCTTCAGGATCTCGCCCGCCTGCATCGCTGGAAACCGGACCAGGTCCAAGGCCTGCGATTGAAGTTCGATGACCTGTTCCAGGCGCCACGTGTTGCCTGGAACATTGCCCAGCAACTCGGCGAAGACCGTTACTACGCCCGCGATTGGACCCGCACACACGGCAACCTGTACCAGGCGATCCGCATGGAAAAAGCCATGATCGGCCTGCTGCTGTTGCTGATTGTCGCCGTGGCGGCGTTCAACATCATCTCGACGCTGGTGATGGTGGTGAACGACAAGAAAGGCGATATCGCCATCCTACGTACCCTCGGCGCCACGCCGGGGCAGATCATGCGCATCTTCATGGTCCAGGGCACCGTCATCGGCGTTATCGGTACGTTCGTCGGGGCCCTGGTCGGAATGTTCGCCGCGCTGAATGTCAGCGCCGCGATTGCCGGTCTCGAAACCCTGATCGGGCACAAGTTTCTCAACGCCGACGTGTACTTCATCGATTACTTGCCTTCGCAATTGCAGGCCGATGACGTGTTGATGGTCTGCGGCGCCGCGTTGATCCTGAGTTTCTTCGCCACCCTGTATCCAGCCTGGCGTGCCGCGCGCACCCAGCCTGCGGAGGCGTTACGTTATGAGTGA	MFRPLFVFIGTRYTRAKRRNHFVSFISLTSIIGLALGVVVMIVVLSVMNGFDHEMRTRVLGMVPHATLETGEAISDWPSLAANVKRSPQVLAVAPFTQMQGLLTNDGKVSKVLLNGIDPGLERQVSIIDNFMKQGKLDDLAPGSFGIVIGDKAAAKLGVAIGDKLTFVAPEVTVTPGGMFPRMKRFTVVGIFHVGAGELDGYLGVTNLQDLARLHRWKPDQVQGLRLKFDDLFQAPRVAWNIAQQLGEDRYYARDWTRTHGNLYQAIRMEKAMIGLLLLLIVAVAAFNIISTLVMVVNDKKGDIAILRTLGATPGQIMRIFMVQGTVIGVIGTFVGALVGMFAALNVSAAIAGLETLIGHKFLNADVYFIDYLPSQLQADDVLMVCGAALILSFFATLYPAWRAARTQPAEALRYE	PGPT0024510_1438	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_TRANSPORT,PGPT0024510-lolC_E-K09808	NA	NA
D1-36_03268	597			hypothetical protein	ATGTCGACATTAGATGAAGAAGATCGCCGCGAATACTACCGTATCGAGGACACGATCGCACTGGAAATTCGGCCCCTGTCCGTTCCTGAAGCCGCCAGCCAGGAAGTGTTGCAGGATGAGTCCCCATTGTTCAATCTGCTCAGCGAATTGCACCTGAGCGAATTCGAGTCACAGCACCTGTTGCGCCAGATCAGCGAGCGCGAACGCAGCATCGCCGCCTACCTGAAGGCCATGAACAAACGCATCGACTTGCTCAGCCAGGTCATCGCGGTGACCGTGCTTGGCGAAATCGGCGAACCACAGCCTGTGATCATCTCCGAAGGCGGCATTGATTTCCAATACCCCTCCCCCGTTGCGGTCGGCGCGCACCTGTCGATCAAGCTGGTGCTGATGCCCCAGGCCCTGGGCCTGTTGCTCCGAGCCCGCGTCACGCATTGCGATCCCAAGGGCGATGGCTACGACGTGGGAACAGAGTTTGAACACCCGACCGACGCCCAGCGCCAATTGCTGGCCCGCTACATCCTGCAAAAACAGGCGCAAGAACGGCGCCTGGCGCGGGAACTGAACGAATCTGGCATCAATAAGGAAGAACCGTGA	MSTLDEEDRREYYRIEDTIALEIRPLSVPEAASQEVLQDESPLFNLLSELHLSEFESQHLLRQISERERSIAAYLKAMNKRIDLLSQVIAVTVLGEIGEPQPVIISEGGIDFQYPSPVAVGAHLSIKLVLMPQALGLLLRARVTHCDPKGDGYDVGTEFEHPTDAQRQLLARYILQKQAQERRLARELNESGINKEEP				NA	NA	NA	NA	NA
D1-36_03269	723	ugpQ	COG0584	Glycerophosphodiester phosphodiesterase, cytoplasmic	GTGACCCTCATCTATGGCCACCGCGGCGCCAAGGGCGAAGCACCGGAAAATACCCTCACCGGGTTCCAGGAATGCCTCAAGCACGGCGTGCGCCGTTGCGAGCTGGACTTGCACCTGTCCATGGACGGCGAGTTGATGGTGATCCACGACCCGACCCTCAAGCGCACCACCGATCGCAGGGGCAAGGTCGTCGAACACACCGCCGCCGAACTGGTGACCTACGATGCGCGCAAAGGTGGCCCAGGCTGGATCAAGCCGTGCCCGATTCCACGGCTGGAAGAGCTGTTCGAGCAATGCGATTTCGAGCACTGGCAACTTGAAGTGAAAAGCGCGTCACGCACCCGCGCCGCCGCGACCGTGCTGGGCATTCGCGAGATGGCCCAACGCTTCGGGCTGCTGGATAAGATCACCATCACCTCCAGTTCCCGGGAAGTGCTCAAGGCGGCCCTGGACCTGACCCCGGACATTTCCCGCGGACTGGTGGCCGAATACGCCTGGCTCGACCCGTTGAAGGTCGCCCAGAGTTATGGCTGCGAGATTCTGGCGCTGAACTGGACCCTGTGCACGCCGGAACGCCTTATCAAGGCGCAGCGCCAGGGGCTGCATGTGTCGGTGTGGACGGTCAACGAGCCCGCGCTCATGCGCAGGCTCGCCGACTTTGGCGCTGACAGCCTGATTACAGACTTTCCCGGTTTGGCCACTGCCACCCTCGAGAATTGCTGA	MTLIYGHRGAKGEAPENTLTGFQECLKHGVRRCELDLHLSMDGELMVIHDPTLKRTTDRRGKVVEHTAAELVTYDARKGGPGWIKPCPIPRLEELFEQCDFEHWQLEVKSASRTRAAATVLGIREMAQRFGLLDKITITSSSREVLKAALDLTPDISRGLVAEYAWLDPLKVAQSYGCEILALNWTLCTPERLIKAQRQGLHVSVWTVNEPALMRRLADFGADSLITDFPGLATATLENC	PGPT0018470_7944	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_PHOSPHODIESTERASE_ACTIVITY,PGPT0018470-glpQ|ugpQ-K01126	NA	NA
D1-36_03270	1395	sthA	COG1249	Soluble pyridine nucleotide transhydrogenase	ATGGCTGTCTACAACTACGACGTGGTAGTACTGGGTTCCGGCCCTGCTGGGGAAGGCGCGGCAATGAACGCTGCCAAGGCAGGGCGCAAAGTGGCGATGGTCGACAGCCGTCGGCAGGTCGGCGGCAACTGCACCCACTTGGGCACCATCCCGTCCAAGGCCTTGCGTCACTCGGTCCGGCAGATCATGCAGTTCAACACCAACCCGATGTTCCGGGCCATCGGCGAGCCGCGCTGGTTCTCCTTTCCGGACGTGCTCAAGAGCGCCGAGAAGGTGATCTCCAAGCAAGTGGCCTCGCGTACCGGCTACTACGCTCGCAACCGTGTCGATGTGTTCTTCGGCACTGGCAGCTTCGCCGACGAGCAGACTGTCGAAGTAGTCTGTGGCAATGGCGTGGTCGAGAAGCTGGTGGCCAAGCACATCATCATCGCTACCGGTTCGCGCCCATATCGTCCGGCTGATATCGATTTCAACCACGCACGTATCTACGATAGCGACACTATCCTGAGCCTGGGTCACACCCCACGTAAGCTCATCGTCTACGGCGCCGGGGTGATCGGTTGCGAATACGCCTCGATCTTCAGCGGCCTGGGCGTGCTGGTGGAGCTGGTGGACAACCGCGGCCAGTTGCTGAGCTTCCTTGACTCGGAAATCTCCCAGGCCTTGAGCTACCACTTCAGCAACAACAACATTACCGTGCGCCACAACGAGGAATACGACCGCGTGGAAGGCGTCGACAACGGTGTGATCCTGCACCTCAAGTCTGGCAAGAAGATCAAGGCCGACGCCTTGCTCTGGTGCAACGGCCGTACCGGCAACACGGACACCCTGGGCCTGGAGAACATTGGCGTAAAGGTCAACAGCCGTGGCCAGATCGAGGTCGACGAGAACTACCGCACTTGCGTACCGAATATCTACGGTGCCGGTGATGTGATCGGATGGCCGAGCCTGGCCAGTGCCGCCCACGACCAGGGCCGTTCGGCCGCCGGCAGTATTGTCGACAACGGCAGCTGGCGCTTCGTCAACGATGTACCGACTGGCATCTACACCATTCCGGAGATCAGCTCGATCGGCAAGAACGAGCAGGAACTGACCCAGGCCAAGGTGCCTTATGAAGTGGGCAAGGCCTTTTTCAAGAGCATGGCGCGGGCACAGATCGCCGGCGAGCCGCAAGGCATGCTGAAGATCCTCTTCCATCGCGAGACGCTGGAAGTGCTCGGTGTGCACTGCTTCGGCTATCAGGCGTCGGAGATCGTTCACATCGGCCAGGCGATCATGAACCAGCCGGGCGAACTGAACACGTTGAAATACTTCGTGAACACCACGTTCAACTACCCGACCATGGCTGAAGCCTATCGGGTAGCCGCCTATGACGGGCTCAACCGGCTTTTTTGA	MAVYNYDVVVLGSGPAGEGAAMNAAKAGRKVAMVDSRRQVGGNCTHLGTIPSKALRHSVRQIMQFNTNPMFRAIGEPRWFSFPDVLKSAEKVISKQVASRTGYYARNRVDVFFGTGSFADEQTVEVVCGNGVVEKLVAKHIIIATGSRPYRPADIDFNHARIYDSDTILSLGHTPRKLIVYGAGVIGCEYASIFSGLGVLVELVDNRGQLLSFLDSEISQALSYHFSNNNITVRHNEEYDRVEGVDNGVILHLKSGKKIKADALLWCNGRTGNTDTLGLENIGVKVNSRGQIEVDENYRTCVPNIYGAGDVIGWPSLASAAHDQGRSAAGSIVDNGSWRFVNDVPTGIYTIPEISSIGKNEQELTQAKVPYEVGKAFFKSMARAQIAGEPQGMLKILFHRETLEVLGVHCFGYQASEIVHIGQAIMNQPGELNTLKYFVNTTFNYPTMAEAYRVAAYDGLNRLF	PGPT0013495_807	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013495-sthA-K00322	NA	NA
D1-36_03271	987	apbE	COG1477	FAD:protein FMN transferase	ATGCTTGCTGGCGTGTTATCCGCTTGCGGCAACGGCGACACCTTGGAGCGCTTCGACGGCCCGACCATGGGCAGCCGCTATTCCATCCAGTACGTCAGGCATGTCGCTACCCCCGGTCCGAAAGTGGTGCAGGGCGAGGTGGAAAAGATCCTGGCCGAAGTAGATAGACAGTTGTCCACCTATCGCAGTGACTCGGACATCGAGCGTTTCAATACGATGCCTGCTGATAGTTGCCGAGTGATGCCGGAGCCAGTGCTCGAGCTGATCCGAGCGGGCGAGCAACTCTCCTCGCAAAGCGCAGGCGCCTTCGATTTGACGGTTGAGCCTTTATTGAACCTGTGGGGGTTCGGTCCGCAGTCCCGGGAAGAACAGGTGCCGAGCGCCGAGGCCCTGGCCGAAACTCGTCAGCGCGTAGGTCATAGACATCTGCGCATTGAGCGCGACCAACTGTGCAAGGACGCCGCGGTGGAAGTCGATTTCAACAGCATCGCGGCCGGTTACGCCGTCGACCGCATCGCCGCCAGGCTTCAGGCCCTGGGCATCGACAGCTACCTGGCCGAAGCTACCGGTGAACTCAAGGCTATCGGGCGCAAGCCGGATGGTTCGCCCTGGCGCATCGCTCTGGAAGAACCACGGGACGACCGGCAAGTGGCGGAGCGGGTCATCGAGGTCAACGGCTACGGGATTTCAACGTCAGGTGATTACCGAAAATACTTCGAGCAGGGCGGCAAGCGTTATTCCCACACCTTTGATGCGCGTACTGGTGCGCCGGTCCTACACAACCTGGCGTCCGTCACGGTGATTCATCCTTCGGCGATGATGGCCGATGGACTATCGACGCTGTTGCTGATTCTCGGTCCTGAACGAGGTTGGGACTATGCCCAGGAACATGGCGTCGGGGTATTTTTCGTATTGCGGGATGGGGAGCGTTTCGTCAGCCGCACCAACGACATCTTTGAACGGATGACCCGTGGAAAAAACCAATGA	MLAGVLSACGNGDTLERFDGPTMGSRYSIQYVRHVATPGPKVVQGEVEKILAEVDRQLSTYRSDSDIERFNTMPADSCRVMPEPVLELIRAGEQLSSQSAGAFDLTVEPLLNLWGFGPQSREEQVPSAEALAETRQRVGHRHLRIERDQLCKDAAVEVDFNSIAAGYAVDRIAARLQALGIDSYLAEATGELKAIGRKPDGSPWRIALEEPRDDRQVAERVIEVNGYGISTSGDYRKYFEQGGKRYSHTFDARTGAPVLHNLASVTVIHPSAMMADGLSTLLLILGPERGWDYAQEHGVGVFFVLRDGERFVSRTNDIFERMTRGKNQ	PGPT0000430_2450	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-Fmn|Dmk|Ppl|Ndh|Eet_SYSTEM,PGPT0000430-nosX|apbE|yojL|fmnB-K03734	NA	NA
D1-36_03272	1299	proP_2		Proline/betaine transporter	ATGTCTTCCAACACGAGCAACGGCAAGGCGATTTTCCGCGTCGTCAGCGGCAACTTCCTCGAGATGTTCGACTTCATGGTCTACGGCTTCTACGCCACGGCCATCGCCAAGACATTTTTCCCAACAGACAGCGCCTTTGCCTCGCTGATGCTGTCCCTGGCCACGTTCGGCGCGGGATTCCTGATGCGTCCGCTGGGCGCGATTTTCCTCGGCGCCTACATCGACCGCCACGGCCGCCGCAAAGGCCTGATCATCACGCTGGCGATGATGGCCGCCGGCACGGTGCTGATCGCCTGCGTTCCGGGCTACGCCACACTGGGCGTGGCGGCACCGTTGCTGGTGTTGCTGGGTCGATTGCTGCAAGGCTTTTCCGCTGGCGTGGAGCTGGGTGGGGTGTCGGTGTACCTGGCGGAAATTTCCACGCCAGGGCGCAAGGGCTTTTTCGTCAGTTGGCAGTCCGCCAGCCAACAGGCCGCGGTGGTGTTCGCCGGTCTGCTGGGGGTCGGTCTCAATCATTGGTTGAGCCCCCAGGAGATGGGCGAATGGGGCTGGCGCGTGCCGTTCCTGGTCGGCTGTCTGATCGTACCGGTCATCTTCGTGATTCGCCGCTCCCTGGAGGAGACGGCTGAATTCCAGGCCAGAAAACACCGCCCTACCTTGTCAGAAATTGTCCGCTCCATCGGTCAGAACTTCGGCATCGTATTGGCAGGCATGGCGTTGGTAGTGATGACCACAGTGTCGTTCTACCTGATCACGGCTTACACACCGACCTTCGGCAAGGCCGAATTGAACCTTTCGGACCTGGACGCGCTATTAGTCACCGTGTGCATCGGCTTGTCGAACTTCTTCTGGCTGCCCGTGATGGGCGCGTTTTCCGACAGGATCGGGCGTAAACCCCTACTGCTCGGTGCGACGATGCTGGCGATCCTGACCGCGTACCCAGCACTGTCCTGGCTGGTGGCGAACCCCAGTTTCAGCCATCTGCTGATCGTCGAGTTGTGGCTATCGTTCCTGTATGGATCCTACAACGGCGCAATGGTCGTGGCCTTGACGGAAATCATGCCAGTCGAGGTGCGTACCACTGGTTTTTCCCTGGCCTATAGCCTCGCCACCGCGACCTTCGGCGGATTTACCCCAGCGGCCTGCACCTACCTGATCCACGTGCTCGGCAACAAGGCCGCACCGGGAATCTGGCTCAGCGGCGCGGCGGTGTTGGGGTTGATTGCGACCTTGGTGCTGTTCAAGGGTAACCGGCATGAGCTGCGGACCGCCCAAGCTTCTGCCGTTAGTGGCGCCTGA	MSSNTSNGKAIFRVVSGNFLEMFDFMVYGFYATAIAKTFFPTDSAFASLMLSLATFGAGFLMRPLGAIFLGAYIDRHGRRKGLIITLAMMAAGTVLIACVPGYATLGVAAPLLVLLGRLLQGFSAGVELGGVSVYLAEISTPGRKGFFVSWQSASQQAAVVFAGLLGVGLNHWLSPQEMGEWGWRVPFLVGCLIVPVIFVIRRSLEETAEFQARKHRPTLSEIVRSIGQNFGIVLAGMALVVMTTVSFYLITAYTPTFGKAELNLSDLDALLVTVCIGLSNFFWLPVMGAFSDRIGRKPLLLGATMLAILTAYPALSWLVANPSFSHLLIVELWLSFLYGSYNGAMVVALTEIMPVEVRTTGFSLAYSLATATFGGFTPAACTYLIHVLGNKAAPGIWLSGAAVLGLIATLVLFKGNRHELRTAQASAVSGA	PGPT0001505_212	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_CITRATE_TRANSPORT,PGPT0001505-citA|tcuC-K03288	NA	NA
D1-36_03273	1464	gap2		Glyceraldehyde-3-phosphate dehydrogenase-like protein	ATGTGGAAGGTTACCGTGACTCAGAAGCCCGACCAGTGTCTTGGTGAATGGATTGATCGTGAAGCACTCGCAGAAGCGATGATCCCTCTCATCGGTCAGCTCTACCGCAATAACAATGTGGTGAGCTCGATCTATGGCCGCAGCCTGATCAACCAGTCTGTCATCGCGATCCTCAAGGCCCACCGCTTTGCTCGCCACCGTTCTTCCGACGACAGCGAACTCTCCGTCCACGAAACATTCCCCCTGCTCAAGGCCATGAGCGAGCTCAAGCTCGGCGCGGCTTCGGTGGACCTGGGCAAGTTGGCGTTCAAATTCCGTAACGAAGGCAATGGCCGTAACGCCGAGCAGTTCGTTCGCGAAGAAATGGCCGATGTGGTTGGTCAACAGAACGCTACGCCGCGCAAAGGCACTGACGTCGTGCTCTACGGCTTTGGCCGTATCGGTCGTCTGCTGGCGCGCATCCTGATCGAGAAAACCGGTGGTGGAGACGGCCTGCGCCTGCGTGCCATCGTCGTGCGCAAAGGCGCCGAGAACGACCTGACCAAGCGCGCCAGCCTGCTGCGTCGCGATTCGGTCCACGGTTCGTTCAATGGCACCATTACCATCGACGAAGAAAACAACACCATCACCGCCAACGGCAACCTCATCCAGGTGATCTACGCGAAGAACCCGACCGAGGTGGATTACACCCAGTACGGCATCAAGGACGCGCTGCTGGTGGACAACACCGGCGTATGGCGTGACGCCGATGGCCTGGGCCAGCACCTGGCGTGCCCGGGTATCGACCGCGTTGTCCTGACCGCGCCTGGCAAGGGCAAGCTGAAGAACATCGTTCACGGTATCAACCACAACGAAATCACCGCTGACGACAAGATCGTCTCCGCCGCGTCCTGCACCACCAACGCCATCGTGCCGGTGCTCAAGGCCGTGAACGACAAGTTCGGCATCATCAACGGTCACGTCGAAACCGTTCACTCGTACACCAACGACCAGAACTTGATCGACAACTTCCACAAGGGCGATCGCCGTGGTCGTAGCGCCGCGCTGAACATGGTCATCACCGAGACCGGTGCCGCCACTGCTGCAGCCAAGGCCCTGCCTGAGCTGGCCGGCAAGCTGACCGGTAACGCGATCCGCGTGCCGACGCCGAACGTGTCGATGGCCATTCTCAACCTGAACCTTGAGAAAGCCGCGACTCGCGAAGAGATGAACGACTACCTGCGCTACATGGCGCTGCACTCCGATCTGCATAAGCAAATCGACTTCGTCAACTCGCAGGAAGTGGTGTCCACCGACTTCGTTGGCTCCCGCCACGCCGGTGTCGTCGACGCAGAAGCGACCATCGTCCAGGATAATCGTGTTGTCCTTTACGTCTGGTACGACAACGAGTTCGGTTACAGCTGCCAGGTGGTTCGCGTGATGGAAGACATGGCTGATGTGAATCCGCCTGCATTCCCGCGCTAA	MWKVTVTQKPDQCLGEWIDREALAEAMIPLIGQLYRNNNVVSSIYGRSLINQSVIAILKAHRFARHRSSDDSELSVHETFPLLKAMSELKLGAASVDLGKLAFKFRNEGNGRNAEQFVREEMADVVGQQNATPRKGTDVVLYGFGRIGRLLARILIEKTGGGDGLRLRAIVVRKGAENDLTKRASLLRRDSVHGSFNGTITIDEENNTITANGNLIQVIYAKNPTEVDYTQYGIKDALLVDNTGVWRDADGLGQHLACPGIDRVVLTAPGKGKLKNIVHGINHNEITADDKIVSAASCTTNAIVPVLKAVNDKFGIINGHVETVHSYTNDQNLIDNFHKGDRRGRSAALNMVITETGAATAAAKALPELAGKLTGNAIRVPTPNVSMAILNLNLEKAATREEMNDYLRYMALHSDLHKQIDFVNSQEVVSTDFVGSRHAGVVDAEATIVQDNRVVLYVWYDNEFGYSCQVVRVMEDMADVNPPAFPR	PGPT0018000_129	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
D1-36_03274	3450	mfd	COG1197	Transcription-repair-coupling factor	GTGCCCGTTCTGCGTCTTCCGCTTCTCCCTGCCGCGGCAGGTAAACAGCACTGGGGCAACCTGCCCGGTGCCGCCCTGAGCCTGGCTATCGCCGAGGCCGCCAGCGCTGCAAAGCGCTTCACCCTGTTGTTGACCGCCGACAGCCAGAGCGCCGAGCGGCTGGAACAGGAGCTGGGTTTCTTCGCCCCGGATTTGCCAGTGCTGCATTTCCCGGACTGGGAAACCCTGCCCTACGACCTTTTTTCGCCGCACCAGGACATCATTTCCCAGCGTATCGCCAGCCTCTACCGGCTGCCGGAGCTCAGTCATGGCGTTTTGGTAGTGCCGATCACCACAGCCCTACATCGCCTCGCACCGACTCAGTTCCTGCTGGGCAGCAGCCTGGTGCTGGACATCGGCCAGAAGCTTGACGTCGAGCAGATGCGCAGCCGGCTCGAGGCCAGTGGCTATCGCTACGTCGATACCGTTTACGAGCACGGTGAGTTCGCGGTCCGTGGCGCCCTGATCGACCTCTTCCCGATGGGCAGCAAATTGCCGTATCGCATCGACCTGTTCGATGACGAAATCGAGACCCTGCGCACTTTCGATCCGGAAAACCAGCGCTCCATCGACAAGGTCCAATCGATCCGCCTGTTGCCCGCCAAGGAATTCCCGCTGCAAAAAGACGCGGTCACCCGGTTCAAGGCGCGTTTTCGCGAGCGTTTCGACGTGGATTTCCGCCGTTGCCCGATCTTCCAGGACCTGAGCAGCGGAATCACGCCGGCCGGCATCGAGTATTACTTGCCGCTGTTCTTCGAAGAAACGTCCACGCTGTTCGATTATCTGCCCCAGGATACCCAGGTGTTTTCCCTTCCGGGCATCGAGCAGGCGGCGGAAAACTTCTGGAACGATGTACGTAATCGCTACGAAGAACGTCGTGTCGATCCGTCTCGCCCTTTGTTGCCGCCTGCCGAGCTGTTCTTGCCGGTGGAAGACTGCTTCGCCCGCCTCAAGAGTTGGCCCCGTGTGGTGGCGAGCCAGCAGGACGTGGAAACCGGCGCCGGGCGTGAACGCTTCCCTGCCAAGCCTTTGCCGGACCTGGCAATCGAAGCCAAGGCCACGCAACCGCTGGCGGCCCTGGCCGGTTTCCTCGACGGTTTCCCTGGCCGTGTGCTGTTTACCGCCGAGTCCGCGGGCCGCCGCGAAGTGTTGCTGGAGCTGCTCGAACGCCTGAAGTTGCGTCCGAAGACCGTCGACAGCTGGCCTGACTTTGTCGCGGGCAAGGATCGCCTGGCGATCACCATCGCACCGCTCAACGACGGCTTGATCCTTGACGATCCGGCCTTGGCCCTGGTGGCTGAAAGCCCATTGTTCGGCCAGCGTGTCATGCAGCGTCGTCGCCGGGAAAAACGCGCCGACGCAGCCAACGACGCAGTCATCAAGAACCTCACGGAACTGCGTGAAGGCGCGCCGGTGGTGCACATCGACCACGGCGTGGGCCGCTACCTGGGCTTGGCGACCCTGGAGATCGAAAACCAGGCCGCCGAATTCCTGACCCTCGAATACGCCGAGGGCGCGAAACTGTACGTGCCGGTGGCCAACCTGCACCTCATCGCCCGCTACACCGGCAGCGACGACGCCTTGGCCCCGCTCCATCGCCTGGGCTCGGAAACCTGGCAGAAAGCCAAGCGCAAGGCCGCCGAACAGGTGCGCGACGTGGCAGCGGAATTGCTGGATATCTATGCTCGCCGGGCCGCACGCGAGGGTTATGCATTCGCGGACCCGAAAGCCGACTACGAAACCTTCAGCGCTGGCTTCCCCTTCGAAGAAACCGTCGACCAGCAGGCCACCATCGAAGCCGTGCGCGCCGACATGCTCGCGCCCAAGCCCATGGACCGGCTGGTGTGTGGCGACGTGGGTTTCGGCAAGACCGAAGTGGCGATGCGTGCTGCGTTCATTGCCGTGCATGGCGGCAAGCAGGTGGCGATCCTGGTGCCGACTACCCTGCTCGCCCAACAGCATTACAACAGTTTCCGCGACCGCTTCGCCGATTGGCCGGTGACCGTGGAAGTGATGAGCCGCTTCAAATCCGCCAAGGAAGTAAACGCCGCCGTGGCCGACCTGGCCGAAGGCAAGATCGACATCGTCATCGGCACGCACAAGCTGCTGCAGGACGATGTGAAGATCAAGAACCTCGGGCTGGTGATCATCGATGAAGAGCACCGTTTTGGCGTACGCCAGAAAGAACAGCTCAAGGCCCTGCGCAGCGAAGTCGACATCCTGACCCTGACCGCCACGCCGATCCCGCGCACATTGAACATGGCCGTTTCAGGCATGCGCGACCTGTCGATCATCGCCACGCCGCCGGCCCGGCGCCTGTCGGTGCGCACATTCGTCATGGAGCAGAACAAGAGCACGGTCAAGGAGGCCTTGCTACGCGAGCTGCTGCGCGGCGGCCAGGTCTATTACCTGCACAACGACGTGAAGACCATCGAGAAATGCGCCGCCGACCTGGCCGAGTTGGTGCCGGAAGCACGCATCGGCATCGGCCACGGACAAATGCGTGAGCGCGAGCTCGAACAGGTGATGAGCGACTTCTACCACAAGCGCTTCAACGTGCTGATCGCCTCGACCATCATCGAGACCGGCATCGACGTGCCAAGCGCCAACACGATTATCATCGAGCGCGCCGACAAATTCGGCCTGGCCCAGTTGCACCAATTGCGTGGCCGGGTCGGACGCAGTCACCACCAGGCCTACGCCTACCTGCTGACACCGCCGCGCCAGCAGATCACCCCGGACGCGGAAAAACGCCTGGAAGCCATTGCCAACACCCAGGACCTGGGCGCCGGCTTCGTACTGGCCACCAATGACCTTGAAATCCGTGGCGCTGGCGAGTTGCTTGGCGATGGCCAGAGCGGGCAGATCCAGGCAGTGGGTTTCACCCTGTACATGGAAATGCTTGAACGGGCGGTCAAGTCGATCCGCAAGGGCGAGCAACCGAACCTCGACCAGCCCCTCGGCGGCGGCCCGGAAATCAACCTGCGGGTGCCAGCGCTGATCCCCGAGGATTACCTGCCGGATGTTCATGCACGCCTGATCCTCTACAAACGCATCGCCTCGGCCACCGACGAGGAAGGCCTGAAGGACCTGCAAGTGGAGATGATCGACCGCTTCGGCCTGCTTCCGGAGCCGACCAAGAACCTGATACGCACAACGCTGCTCAAGCTCAAGGCCGAGCAATTGGGCATCAAGAAAGTCGACGGCGGCCCCAACGGCGGCCGGATCGAGTTCGAGGCGCAGACCCCGGTTGATCCGCTGGTCCTGATCAAGCTGATCCAGGGCCAGCCCAAACGCTACAAATTCGAAGGCGCCACGATGTTCAAGTTCATGGTGCCCATGGAACGCCCGGAAGAGCGCTTCAATACCGTAGAGGCGCTGTTCGAGCGCCTCAATCCGACCACTGCTTGA	MPVLRLPLLPAAAGKQHWGNLPGAALSLAIAEAASAAKRFTLLLTADSQSAERLEQELGFFAPDLPVLHFPDWETLPYDLFSPHQDIISQRIASLYRLPELSHGVLVVPITTALHRLAPTQFLLGSSLVLDIGQKLDVEQMRSRLEASGYRYVDTVYEHGEFAVRGALIDLFPMGSKLPYRIDLFDDEIETLRTFDPENQRSIDKVQSIRLLPAKEFPLQKDAVTRFKARFRERFDVDFRRCPIFQDLSSGITPAGIEYYLPLFFEETSTLFDYLPQDTQVFSLPGIEQAAENFWNDVRNRYEERRVDPSRPLLPPAELFLPVEDCFARLKSWPRVVASQQDVETGAGRERFPAKPLPDLAIEAKATQPLAALAGFLDGFPGRVLFTAESAGRREVLLELLERLKLRPKTVDSWPDFVAGKDRLAITIAPLNDGLILDDPALALVAESPLFGQRVMQRRRREKRADAANDAVIKNLTELREGAPVVHIDHGVGRYLGLATLEIENQAAEFLTLEYAEGAKLYVPVANLHLIARYTGSDDALAPLHRLGSETWQKAKRKAAEQVRDVAAELLDIYARRAAREGYAFADPKADYETFSAGFPFEETVDQQATIEAVRADMLAPKPMDRLVCGDVGFGKTEVAMRAAFIAVHGGKQVAILVPTTLLAQQHYNSFRDRFADWPVTVEVMSRFKSAKEVNAAVADLAEGKIDIVIGTHKLLQDDVKIKNLGLVIIDEEHRFGVRQKEQLKALRSEVDILTLTATPIPRTLNMAVSGMRDLSIIATPPARRLSVRTFVMEQNKSTVKEALLRELLRGGQVYYLHNDVKTIEKCAADLAELVPEARIGIGHGQMRERELEQVMSDFYHKRFNVLIASTIIETGIDVPSANTIIIERADKFGLAQLHQLRGRVGRSHHQAYAYLLTPPRQQITPDAEKRLEAIANTQDLGAGFVLATNDLEIRGAGELLGDGQSGQIQAVGFTLYMEMLERAVKSIRKGEQPNLDQPLGGGPEINLRVPALIPEDYLPDVHARLILYKRIASATDEEGLKDLQVEMIDRFGLLPEPTKNLIRTTLLKLKAEQLGIKKVDGGPNGGRIEFEAQTPVDPLVLIKLIQGQPKRYKFEGATMFKFMVPMERPEERFNTVEALFERLNPTTA				NA	NA	NA	NA	NA
D1-36_03275	567			hypothetical protein	ATGCGCCTGTTTCGCTCCTTGACGTTGTTGATGACGCTGATCGCTCCCCTGGCGGTTGCCGACGACTTGTACCAGGTTGAAATGATTCTAGTCCGCCAGAATGCCGAGCCGGCCATTATCAGCCGCGCCGCGCCGGAGGACTGGGACGCCGGCGCACAACGCCTGGGCGCGGACAGCCAGCGCACGCCGGCGATGGGCAACATCGTCGAGAAACTCAACGCCAGCGGTCAATACACCGTGCTGATGCACAAGGCCTGGCAACAGAACCTGGGCGAACAGGGCAGCAAGATTGCCGTCAGTGATGGCGCCGAGCAGTTCGGCCAGTTTCCCATCGAGGGCACCCTGGAACTGAAACTGGGCCGTTTCACTGACGTAGACGCCGACTTCTGGATCAACCAGATCGACGCCAATGGGCTGGTCACGGCCAGCGAGCGCTTGAAACAACAGAGCCATACCAAGAACGGCCAGCTGAACTTCCTCGATAACGGCCACCTTGGCTTGTTGATCAAGATCACCTCGTTGACTGCGCCTGCGCCTCGGCAGGCACCTGACGTCATTCCAGACTGA	MRLFRSLTLLMTLIAPLAVADDLYQVEMILVRQNAEPAIISRAAPEDWDAGAQRLGADSQRTPAMGNIVEKLNASGQYTVLMHKAWQQNLGEQGSKIAVSDGAEQFGQFPIEGTLELKLGRFTDVDADFWINQIDANGLVTASERLKQQSHTKNGQLNFLDNGHLGLLIKITSLTAPAPRQAPDVIPD				NA	NA	NA	NA	NA
D1-36_03276	2694			hypothetical protein	ATGCCCTCGCCCCTGAGCAAACCGCTGGCACCTTCCTGGGTCAATCGATTCAAGGAACAAAGCCTGGAGCGTGGGCGCCGATACGCGCTGGAAAACCGCGTGAGGGTCGTCGAGGCCGGCGACAGCACCATCATCGCCAGCTGCGAAGGCTCGGGCGGCAGCGTCTACCGTCAGACCATTCGCCTCAAGGAGTCAGCCAAAGGCACATTGATCCTGCTAGACGCCGCGTGCTCCTGCCCGGTGCGCATCAATTGCAAGCATTGCGCAGCGGTGCTGCTGCAAGTTCAGGAAACCCTGGCCTACCCGGCCGCCGAAAAAGACGCGCAATTGCTGGAAAAGCTCCAGGCAGTGCTGGACAACCGCAGCCCCAAGGCCCCGCCGCAAGTCCTGGTGGAAAACGTGCAGCCGGTGCCACGGCTTTGGCTGGCAAGTGTCGAGTTCAGCGCCTTCGAGCCGCGCAACGGCAAGATGCAGCGTTATATCCAGCACCGCGCCGCCTTGTCCTTCAGTTATCTGGACGAGTACGTCAGCGGCCAGCGCAACACCGACGTACTGATTCGCCAGGAAACCCAGACGCTGCGGATAAAACGCCAGATCGAAGTGGAACAGTCCTACCGTGAGCAGTTGCGAATTCTTGGATTCAAGGTTGCGACCCGACAAAGCAAGGCTCTACCGGAGAGCGCTGGCGAACTGTACGAAATGGTCAACGACAGCGCCTGGCTGACCTTTACCCTCAATGACCTGCCAAAGCTGCGCACCCAGGGTTGGGAATTGCAGATTGATGAAGACTTCGGCTTCGACCTGACGGCGGTGGATGAGTGGTACGCCACGGTCGATGAGACTCCGGAGCGTGACTGGTTCGACCTGGAGCTGGGCATCATCGTCAACGGCGAGCGACTGAGCCTGCTGCCTATCCTGTTGAACCTGATGCGCTCGCATATCGAGCTATTCAACCCGGAACGACTGGCCAGGCGCCGCGATGACGAACTTATCCTGGTTAACTTGCCGCACCGGCCCAACTCGGAATTCGGCCCTCAGCAAGTTGCCCTGCCGTACGGGCGGTTGAAGCCCGTGCTGGCGACCCTCGGCGAGTTCTACCTGCAAGAGCCCGGCACCACCAAACTGCGCCTCAACAGCGCCGATGCCCTGCGCCTGAACCCATTGCAGGACATGCCGCTGCGCTGGGAAGGTGGCGAGCACATACGCAGCCTGGCCCAACGCCTGCGGGACATCAAGGACTACACCGCCACCGCCCCGCAGGGCTTGAACGCCACGCTGCGACCCTACCAGCTCGAAGGTTTGAGCTGGATGCAATCGCTACGACAGCTGGAAGTAGGCGGGATTCTCGCGGACGACATGGGACTGGGCAAAACCCTACAGACCCTGGCACACATTCTCAGCGAAAAAAACGCTGGGCGCCTGGACCGACCGTGCATGGTGGTGATGCCGACGAGCCTGATTCCCAACTGGCTCGACGAAGCCTCGCATTTCACTCCGCAGCTTAAGGTACTGGCGCTGTACGGTGCCGGGCGCAAGAAACACTTCGAGCGCCTGGCCGATTACGACTTGATCCTGACCACCTATGCGCTGCTTCCCAAGGATGTCGAACGCCTCAAGGCGCAGCCGCTGCATGTACTGATCCTGGATGAAGCCCAGTACATCAAGAACCCCACCAGCAAAGCCGCCCAAGCCGCCCGGGAACTCGATGCCAGGCAACGGTTGTGCCTGTCCGGTACACCACTGGAAAACCACCTTGGTGAACTCTGGTCGCTGTTTCACTTCCTGCTGCCGGGCTGGCTTGGCGACGTCAAGAGCTTCAATCGCGACTACCGCGTACCGATCGAAAAGCGCGGCAGCGACGTACGATTGCAACACCTGAACGGTCGGATAAAACCCTTCTTGCTGCGCCGTACCAAAGAGCAAGTGGCGACGGAGCTGCCACCCAAGACCGAAATCATCCATTGGGTGGAACTCAGCGACGCCCAGCGGGATGTCTACGAGACGATGCGCCTGGCGATGGACAAGAAGGTGCGCGACGAGATCACCCGCAAAGGCGTGGCGCGCAGCCAGATCATCATCCTGGAAGCGCTGCTCAAGCTGCGCCAGGTGTGCTGCGATTTGCGCCTGATCAGTGATGCCACCCTGCCCACCCGCGGCAGCACCTCGGGCAAGCTCGACAGCCTGATGGAAATGCTTGAGGAATTGTTCGAAGAAGGTCGGCGGGTGCTGCTGTTTTCACAGTTCACCTCCATGTTGGCGCTGATTGAAGATGAACTGAAAAAACGCGGCGTGGATTACGCCATCCTCACCGGCCAGACCCGAGACCGACGCACGCCAGTGAAGGAATTCCAAAGCGGCAAGCGTCAAATCTTTCTGATCAGCCTGAAGGCCGGCGGCGTGGGCCTGAACCTGACAGAAGCGGACACGGTGATTCACTACGATCCTTGGTGGAACCCCGCCACCGAAAACCAGGCAACCGACCGCGCCTATCGCATTGGCCAGGAAAAACCGGTGTTCGTGTACAAACTGATTGCCCGCGGCACGGTGGAAGAAAAGATCCAGCTGCTGCAAAAAGAAAAGTCCGACCTGGCGGCCGGCGTGCTGGATGGGCGTGTGGCTGGGGATTGGAAACTGCAGAATGAAGACATCGAGGCGCTATTTGCGCCGCTGCCGGACAAGCTGGAGAAGCGCTGA	MPSPLSKPLAPSWVNRFKEQSLERGRRYALENRVRVVEAGDSTIIASCEGSGGSVYRQTIRLKESAKGTLILLDAACSCPVRINCKHCAAVLLQVQETLAYPAAEKDAQLLEKLQAVLDNRSPKAPPQVLVENVQPVPRLWLASVEFSAFEPRNGKMQRYIQHRAALSFSYLDEYVSGQRNTDVLIRQETQTLRIKRQIEVEQSYREQLRILGFKVATRQSKALPESAGELYEMVNDSAWLTFTLNDLPKLRTQGWELQIDEDFGFDLTAVDEWYATVDETPERDWFDLELGIIVNGERLSLLPILLNLMRSHIELFNPERLARRRDDELILVNLPHRPNSEFGPQQVALPYGRLKPVLATLGEFYLQEPGTTKLRLNSADALRLNPLQDMPLRWEGGEHIRSLAQRLRDIKDYTATAPQGLNATLRPYQLEGLSWMQSLRQLEVGGILADDMGLGKTLQTLAHILSEKNAGRLDRPCMVVMPTSLIPNWLDEASHFTPQLKVLALYGAGRKKHFERLADYDLILTTYALLPKDVERLKAQPLHVLILDEAQYIKNPTSKAAQAARELDARQRLCLSGTPLENHLGELWSLFHFLLPGWLGDVKSFNRDYRVPIEKRGSDVRLQHLNGRIKPFLLRRTKEQVATELPPKTEIIHWVELSDAQRDVYETMRLAMDKKVRDEITRKGVARSQIIILEALLKLRQVCCDLRLISDATLPTRGSTSGKLDSLMEMLEELFEEGRRVLLFSQFTSMLALIEDELKKRGVDYAILTGQTRDRRTPVKEFQSGKRQIFLISLKAGGVGLNLTEADTVIHYDPWWNPATENQATDRAYRIGQEKPVFVYKLIARGTVEEKIQLLQKEKSDLAAGVLDGRVAGDWKLQNEDIEALFAPLPDKLEKR				NA	NA	NA	NA	NA
D1-36_03277	741		COG0005	S-methyl-5'-thioinosine phosphorylase	ATGACTGTTTACGCAATTATCGGCGGCACCGGCCTGACCCAGCTGGAAGGCCTGACCATTCGCCAATCCCTGGCGGTGGAGACGCCCTACGGCGCGCCATCAGCCGAGGTGCAGATTGGCGAATACGCCGGGCGTGAGGTGTTGTTTCTGGCACGCCATGGCCATCCCCACCGTTTCCCGCCGCATCAGGTCAACTATCGCGCCAATCTCTGGGCGCTGAAGCAGGCGGGCGCCGAGGCGGTCCTGGCGGTCAACGCCGTCGGCGGGATCCACGCCGCGATGGGCACCGGTCATTTTTGCGTGCCCCACCAGTTGATCGATTACACCAGCGGTCGCCAGCATACGTATTTCGCCGATGACCTGGAGGCGGTGACCCACATTGATTTCAGCTACCCCTACACGGAATCGCTGCGCCAGCAATTGATTGCGGCCCTGGCTGCCGAAGGCTGCGGCTATAGCAGTCACGGTGTCTATGCCTGCACGCAGGGGCCGCGCCTGGAAACCGTGGCCGAAATCGCACGCCTGGAGCGCGATGGCTGCGATATCGTCGGTATGACGGGCATGCCGGAGGCGGCGCTGGCCCGTGAGCTGGAACTGGACTACGCCTGCCTGGCGCTGGTGGTGAACCCGGCGGCGGGCAAATCCACTGCGGTGATTACCATGGCGGAGATCGAGCAGGCCCTGCATGACGGAATGGGTAAAGTGAAGTCGACCCTGGCGCGGGTGTTGATGGCGGGCTAG	MTVYAIIGGTGLTQLEGLTIRQSLAVETPYGAPSAEVQIGEYAGREVLFLARHGHPHRFPPHQVNYRANLWALKQAGAEAVLAVNAVGGIHAAMGTGHFCVPHQLIDYTSGRQHTYFADDLEAVTHIDFSYPYTESLRQQLIAALAAEGCGYSSHGVYACTQGPRLETVAEIARLERDGCDIVGMTGMPEAALARELELDYACLALVVNPAAGKSTAVITMAEIEQALHDGMGKVKSTLARVLMAG				NA	NA	NA	NA	NA
D1-36_03278	1011	nagZ	COG1472	Beta-hexosaminidase	ATGACTGGTGCCCTTCAAGGCTCGTTGATGGTGGACGTCGCCGGAACCTGGCTGACGGCTGAAGATCGCCATCTGTTGCGTCAGCCCGAAGTGGGTGGATTGATCATTTTTGCCCGCAATATCGAGCATCCCCGCCAGGTGCGCGAGCTGAGCGCCTCGATCCGGGCCATTCGCCCCGATCTGTTGTTGGCTGTCGACCAGGAGGGCGGCCGGGTGCAACGCCTGCGCCAAGGCTTCGTGCGTCTGCCGGCGATGCGGGCCATAGCCGATAACCCGAACGCCGAGTACTTGGCCGAGCAGTGCGGCTGGATCATGGCCACCGAAGTGCTGGCGGTCGGCCTCGATTTGAGCTTCGCCCCCGTGCTGGACCTCGATTACCAACGCAGCGCGGTGGTAGGAAGTCGTGCCTTCGAAGGCGACCCCGAGCGCGCCACACTGCTGGCAGGTGCGTTTATCCGTGGCATGAACGCCGCGGGAATGGCGGCCACAGGCAAGCATTTTCCGGGGCATGGCTGGGCCGAGGCAGACTCCCATGTCGCCATTCCTACTGACGAACGCAGTCTCGAACAGATCCGAGCCTGCGACCTGGTACCGTTTACCAAGCTGAGTAAGAAGCTGGCGGCCGTCATGCCCGCCCATGTCATTTATCCCCAGGTGGATGCCAGCCCGGCAGGGTTCTCCCGTCGTTGGCTGCAAGACGTCCTACGCGGCGAGTTGCAGTTTGATGGCGTGATCTTCAGCGATGATCTTTCGATGGCCGGCGCCCACGTGGTCGGCGATGCCGCCAGTCGGATTGAGGCTGCCTTGGCCGCGGGCTGCGACATGGGGCTGGTCTGCAACGACCGCGCGGCCGCCGAGCTCGCCTTGAGCGCTGCCCAGCGCCTGAAGGTCACGCCGTCGGCGCGGATTGCCCGTATGCGTGGCCAGGCCTTCGCCAGTACCGAGTACCGTCAGGATCCGCGCTGGTTGACAGCGATCGGCGCGTTGAAAGCCGCTCAACTGATTGATTAA	MTGALQGSLMVDVAGTWLTAEDRHLLRQPEVGGLIIFARNIEHPRQVRELSASIRAIRPDLLLAVDQEGGRVQRLRQGFVRLPAMRAIADNPNAEYLAEQCGWIMATEVLAVGLDLSFAPVLDLDYQRSAVVGSRAFEGDPERATLLAGAFIRGMNAAGMAATGKHFPGHGWAEADSHVAIPTDERSLEQIRACDLVPFTKLSKKLAAVMPAHVIYPQVDASPAGFSRRWLQDVLRGELQFDGVIFSDDLSMAGAHVVGDAASRIEAALAAGCDMGLVCNDRAAAELALSAAQRLKVTPSARIARMRGQAFASTEYRQDPRWLTAIGALKAAQLID	PGPT0012175_4383	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GALACTOSAMINIDASE,PGPT0012175-nagZ-K01207	NA	NA
D1-36_03279	708			hypothetical protein	ATGGCCCAGTCGGAAACCGTTGAACGCATTCTCGATGCTGCCGAGCAATTGTTCGCGGAAAAAGGTTTCGCCGAAACCTCTTTGCGTCTGATTACCAGCAAGGCCGGGGTGAACCTGGCGGCGGTGAACTACCACTTCGGCTCGAAAAAAGCCCTGATCCAAGCGGTATTTTCGCGCTTCCTAGGGCCGTTCTGTATCAGCCTCGATCGCGAGCTGGAGCGTCGCCAGGCCAAGCCTGACGTCAAGCCCACTCTGGAAGAGCTGCTCGAGATCCTGGTCGAACAAGCCCTCGTGGTCCAGCCACGCAGCGGTAACGACCTCTCCATATTCATGCGTCTGCTGGGCCTGGCATTCAGCCAGAGCCAAGGGCACTTGCGGCGCTATCTAGAAGACATGTACGGCAAGGTGTTCCGTCGCTACATGCTGCTGGTCAACGAAGCCGCGCCGCGCATACCACCTATCGAATTGTTCTGGCGCGTGCATTTCATGCTCGGTGCCGCGGCATTCAGCATGTCGGGCATCAAGGCGCTGCGGGCTATCGCCGAGACCGACTTCGGCGTGAATTCGTCGATCGAGCAGGTGATGCGCCTGATGGTGCCGTTCCTGGCAGCGGGCATGCGCGCCGAAAGCGGCGTCACCGATGAAGCAATGGCGGCCGCGCAGCTGCGTCCGCGCAGCAAATCGACGCCGGCGCTCGCCAAGGCATAG	MAQSETVERILDAAEQLFAEKGFAETSLRLITSKAGVNLAAVNYHFGSKKALIQAVFSRFLGPFCISLDRELERRQAKPDVKPTLEELLEILVEQALVVQPRSGNDLSIFMRLLGLAFSQSQGHLRRYLEDMYGKVFRRYMLLVNEAAPRIPPIELFWRVHFMLGAAAFSMSGIKALRAIAETDFGVNSSIEQVMRLMVPFLAAGMRAESGVTDEAMAAAQLRPRSKSTPALAKA				NA	NA	NA	NA	NA
D1-36_03280	609	lexA_2	COG1974	LexA repressor	ATGCTAAAGCTGACGCCACGCCAAGCAGAGATTCTGGCCTTCATCAAACGCTGCCTAGAAGACAACGGCTATCCGCCGACCCGTGCGGAAATCGCTCAGGAACTGGGTTTCAAATCCCCCAACGCGGCTGAAGAGCACCTCAAGGCGCTGGCCCGCAAGGGTGCAATAGAAATGACGCCCGGAGCATCCCGGGGGATTCGCATCCCCGGCTTCGAAGCCAAGGCCGACGACACCACCCTGCCTATCATCGGGCGCGTGGCCGCCGGCGCGCCTATCCTCGCCCAGCAGCACGTCGAGGAGTCTTGCAACATCAATCCTTCATTCTTTCACCCGAGGGCCGATTATCTTCTGCGCGTGCACGGTATGAGTATGAAGGACATCGGTATCTTCGATGGCGATCTCCTGGCTGTCCACACCACCCGTGAAGCCCGTAACGGCCAGGTCGTGGTGGCGCGGATCGGCGATGAAGTCACCGTCAAGCGCTTCAAGCGCGAGGGCAGCAAGGTCTGGTTGATCGCCGAGAACCCGGAATTCGCCCCCATCGAAGTGGACCTGAAAGACCAGGACCTGGTTATCGAAGGCTTGAGCGTTGGCGTCATTCGCCGCTAA	MLKLTPRQAEILAFIKRCLEDNGYPPTRAEIAQELGFKSPNAAEEHLKALARKGAIEMTPGASRGIRIPGFEAKADDTTLPIIGRVAAGAPILAQQHVEESCNINPSFFHPRADYLLRVHGMSMKDIGIFDGDLLAVHTTREARNGQVVVARIGDEVTVKRFKREGSKVWLIAENPEFAPIEVDLKDQDLVIEGLSVGVIRR	PGPT0014895_3620	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014895-lexA-K01356	NA	NA
D1-36_03281	474	sulA	COG5404	Cell division inhibitor SulA	ATGCAATTTCCTCTTACACCACAGCACACACAACTTCCGCTGTTCGAGGCATTCATGGCCCAACCGCTGGTTCCAGTCCTGAACGAGGTCATCGAGTCGCCCTGGAGCGTCGAACCCGAAGCCTTCAGCGAGCTGTCGTTGCGTGGTGCGGCGGGAAATTGCCTGAACCTGCTAGCGCCGATCCTGAGAGAACTGAGCCAGGACCAGGACGCTCGCTGGCTAACGCTGATCGCACCACCGGCCAGCGTAACGCAGGCCTGGTTGCGAGACGCTGGTCTCAATCGCGAGCGAATCCTGCTATTGCAGCCGCGCGGCAGCCAGAGCGCCCAGCAGTTGACCTGCGAAGCGTTGCGCCTGGGGCGCAGTCATACGGTGGTCAGCTGGCTCAATCCCTTGACCGCGACCGCGCGTCAGCAATTGATCAGCGCCGCGCGCACCGGCGATGCACAAAGCCTGAATATTCGATTGGGATAA	MQFPLTPQHTQLPLFEAFMAQPLVPVLNEVIESPWSVEPEAFSELSLRGAAGNCLNLLAPILRELSQDQDARWLTLIAPPASVTQAWLRDAGLNRERILLLQPRGSQSAQQLTCEALRLGRSHTVVSWLNPLTATARQQLISAARTGDAQSLNIRLG				NA	NA	NA	NA	NA
D1-36_03282	234			hypothetical protein	ATGCCTACGTCCTTTCTAGAAATTGTCGAACTTCCTGATGGTCGCATTGAGCTGCGCCGGGCTGAAGACGAGGGTTCGCTGGTTACCCTGAACTTCTCCGAGGATGCCAAGGTGTTTCTTCAGGGCCAACATGTCGAGGTCGCCAAGGCGATGCTCAGCGTGGGTGTCCAGATGGCAGGTCGCCTGGTTGAAGGCGAATTCAACAAGGAAGAGGGGCCGCGGGTTCTACATTGA	MPTSFLEIVELPDGRIELRRAEDEGSLVTLNFSEDAKVFLQGQHVEVAKAMLSVGVQMAGRLVEGEFNKEEGPRVLH				NA	NA	NA	NA	NA
D1-36_03283	525			hypothetical protein	ATGGCCCACGAACTCTACACCCGTACCAATCAGAAGATTTATTTTGCCGGCCTGTCGCTCGAAGCGCTTGCCAGGGCAGAGGATGGGCGCGCCATGAATGCTCCCGCGCTGGTCCAGGCTGGGCGTGAATCCGTGCTGTTTCATTTGTACGGCGCCTTGCTGGGTCTTTGCCACGAAATTGCCGGGTTCTATCGCTTGCCCCAGGCGAATGCGTCACGGGCCGAACTGATGCTGATGCCAGAAGTACTGGACAGCCTTGCGATTCCCGAGCTGGCGGAAATGGTCGAGTTGGCGCAGAACCGCGAGACCTGGCTGGCCAAGTTGCTGGAGGCTCATGCCGCGTTATTCCAGCCGCCACGGGCCCCGCGTAAACCGAAGGGTGATGTTACCCAGCCGTTGATTGTCGCGGTCAATCTTGACGAGCAGGAACCAGAGCCAGAGCTGAGTCGGGAAGAGTTGGAGAGCTGGCGTCAGAATCTCAAAAGCCTGGCGATTCGGTTCCGTGACGGCTTGAACGAATGCTGA	MAHELYTRTNQKIYFAGLSLEALARAEDGRAMNAPALVQAGRESVLFHLYGALLGLCHEIAGFYRLPQANASRAELMLMPEVLDSLAIPELAEMVELAQNRETWLAKLLEAHAALFQPPRAPRKPKGDVTQPLIVAVNLDEQEPEPELSREELESWRQNLKSLAIRFRDGLNEC				NA	NA	NA	NA	NA
D1-36_03284	2613	topA	COG0550	DNA topoisomerase 1	ATGGGCAAATCGCTGGTCATTGTGGAATCCCCGGCTAAGGCCAAGACCATCAACAAGTATCTGGGCAACCAATACGTGGTGAAGTCGAGTATCGGCCATATCCGAGACCTGCCCACCAGCGGTTCGGCTAGCGCCAGCAAGGAGCCAGCCGCCAAGCGCGGCAAGGCGGCCGCTGGTGAAGCGCCGGCGCTGTCGCCGAAAGACAAGGCGCGCAAGCAGCTGGTCTCACGCATGGGAGTCGATCCGGAGCACGGCTGGAAAGCCAAGTACGAGATCCTTCCGGGCAAGGAAAAGGTCATCGAAGAACTGCGTCGGCTCGCCAAGGACGCCGACACCATTTATCTCGCGACGGACTTGGACCGCGAAGGGGAAGCCATCGCCTGGCACCTGCGCGAAGCCATCGGTGGGGATGACAGCCGCTACAAGCGCGTGGTGTTCAACGAGATCACCAAGAAGGCTATCCAGGAAGCCTTCTCCCAGCCGGGCGAGCTGGACATCGACCGGGTCAATGCCCAACAGGCGCGTCGCTTCCTTGACCGCGTCGTGGGCTACATGGTCTCGCCATTGTTGTGGGCCAAGATCGCCCGTGGCCTGTCGGCCGGTCGTGTGCAGTCGGTGGCGGTAAAGCTGGTGGTGGAGCGCGAGCGGGAAATCCGTGCGTTCAATCCCGAAGAATATTGGGAAGTCCATGCTGATCTCGGTACCGCCAAGGGCGCTACCGTGCGTTTCGAAGTGGCTCGCGAGAAAGGCGAAGCCTTCAAGCCGCTCAATGAAGCCCAGGCCATGGCAGCGCTGGAGAAGCTCAAGGCTTCCAGCTACAGCATCGTCAAGCGCGAAGACAAGCCCACCAGCAGCAAGCCGTCGGCGCCCTTCATTACGTCCACCTTGCAGCAGGCGGCGAGCAACCGCCTGGGCTTCGGTGTGAAGAAGACCATGATGATGGCCCAGCGTCTGTACGAAGCGGGCTACATCACGTACATGCGTACCGACTCGACCAATCTCTCGGCCGATGCCGTGGCGATGGCGCGTACTTATATAGAAAGCGAGTTTGGCAAGAAGTACCTGCCGGATACGCCGAACGTGTACAGCAGCAAGGAAGGCGCCCAGGAGGCTCACGAAGCGATTCGTCCTTCCGACGCCAATACCGAGCCAAGCAAGCTGTCGGGCATGGAACGCGACGCCGAGCGTCTCTACGAGCTGATCTGGCGCCAGTTCCTGGCATGCCAGATGCTACCTGCGCAATACCTGTCGACCACGGTCAGCGTCGGTGCTGGCGATTTCGAGCTGCGCGCCAAGGGCCGTATCCTGAAGTTCGACGGCTATACCCGCGTCATGCCGCAGATCACCAAGCCGGGGGACGATGACGTCCTGCCGGACATGGCCCAGGGCGACGTGATGAAGCTGATCAAGCTGGATCCGACCCAGCACTTCACCAAGCCGCCGGCACGGTATTCCGAGGCCAGCCTGGTCAAGGAGATGGAAAAGCGTGGCATCGGTCGTCCTTCGACCTATGCGGCGATCATTTCCACCATCCAGGATCGCGGCTACGTGACGCTGCACAACCGTCGCTTCTATTCGGAAAAGATGGGGGACATCGTCACCGAGCGCTTGTCCGAGAGTTTCTCGAACCTGATGGACTACGGCTTCACCGCTGGCATGGAAGAGAACCTGGACGACGTGGCCCAGGGTGAGCGGGACTGGAAAAACGTACTCGACGAGTTCTACGGCGACTTCAAGAAAAAACTGGAAGTGGCCGAAAGTCCGGAAAGCGGCATGCGGGCGAACCAGCCGGTCATGACCGATATTCCATGCCAGACCTGCGGGCGTCCGATGCAGATCCGTACCGCGTCGACCGGTGTATTCCTGGGTTGCTCGGGCTACAGCCTGCCGCCGAAGGAGCGCTGCAAGGCGACGGTCAACCTGGTGCCAGGCGACGAAATCGCCGCGGACGACGAAGGTGAGTCGGAGTCCCTGGTGCTGCGCGGCAAACACCGTTGCCCTATCTGCAGCACAGCGATGGATGCTTACCTGCTGGATGAAAAGCGCAAGCTGCACATCTGCGGTAACAATCCTGATTGTGCCGGCTACGAGATCGAAGAGGGCACCTATCGCATCAAGGGCTACGAAGGTCCGAGCCTGGAATGCGACAAGTGTGGCAGCGAAATGCAGCTGAAAACCGGCCGTTTCGGCAAGTTCTTCGGTTGCACCAATCCGACCTGCAAGAACACCCGCAAGCTGCTCAAGAGCGGTGACGCGGCGCCGCCGAAGATGGATCCGGTGAAGATGCCCGAGCTCAAGTGCGAGAAGGTAAACGACACCTACATCCTTCGTGATGGTGCATCCGGCCTGTTCCTGGCAGCCAGCCAGTTTCCGAAAAATCGCGAGACTCGGGCGCCGCTGGTGATCGAGATCTTGCCGCACAAGGATGAGATCGATCCGAAGTACCATTTCCTCTGCGACGCGCCGCAGAAGGATCCGGATGGCCGCCCAGCGGTGATCCGCTACAGCCGCAAGACCAAGGAGCAATACGTGCAGACCGAGGTTGACGGCAAGCCTACCGGTTGGAAAGCGTTCTACGACGGTGGCAAGTGGACCGTTGAAGACAAGCGCTGA	MGKSLVIVESPAKAKTINKYLGNQYVVKSSIGHIRDLPTSGSASASKEPAAKRGKAAAGEAPALSPKDKARKQLVSRMGVDPEHGWKAKYEILPGKEKVIEELRRLAKDADTIYLATDLDREGEAIAWHLREAIGGDDSRYKRVVFNEITKKAIQEAFSQPGELDIDRVNAQQARRFLDRVVGYMVSPLLWAKIARGLSAGRVQSVAVKLVVEREREIRAFNPEEYWEVHADLGTAKGATVRFEVAREKGEAFKPLNEAQAMAALEKLKASSYSIVKREDKPTSSKPSAPFITSTLQQAASNRLGFGVKKTMMMAQRLYEAGYITYMRTDSTNLSADAVAMARTYIESEFGKKYLPDTPNVYSSKEGAQEAHEAIRPSDANTEPSKLSGMERDAERLYELIWRQFLACQMLPAQYLSTTVSVGAGDFELRAKGRILKFDGYTRVMPQITKPGDDDVLPDMAQGDVMKLIKLDPTQHFTKPPARYSEASLVKEMEKRGIGRPSTYAAIISTIQDRGYVTLHNRRFYSEKMGDIVTERLSESFSNLMDYGFTAGMEENLDDVAQGERDWKNVLDEFYGDFKKKLEVAESPESGMRANQPVMTDIPCQTCGRPMQIRTASTGVFLGCSGYSLPPKERCKATVNLVPGDEIAADDEGESESLVLRGKHRCPICSTAMDAYLLDEKRKLHICGNNPDCAGYEIEEGTYRIKGYEGPSLECDKCGSEMQLKTGRFGKFFGCTNPTCKNTRKLLKSGDAAPPKMDPVKMPELKCEKVNDTYILRDGASGLFLAASQFPKNRETRAPLVIEILPHKDEIDPKYHFLCDAPQKDPDGRPAVIRYSRKTKEQYVQTEVDGKPTGWKAFYDGGKWTVEDKR				NA	NA	NA	NA	NA
D1-36_03285	237			hypothetical protein	ATGCCGATACAACCTGGGCTCTACCAACATTACAAAGGTCCGCAGTACCGCGTATTCAGCGTTGCGCGGCATTCCGAGACCGAGGAAGAAGTGGTCTTCTATCAAGCCCTGTATGGCGATTACGGCTTTTGGGTGCGTCCGTTGAGCATGTTCCAGGAGTCTGTCGAAGTTGACGGCGAACAAGTGCCGCGCTTTGCTTTGGTGCAGGTCGAGGAGAGCATCTTTTCCAAGTCTTGA	MPIQPGLYQHYKGPQYRVFSVARHSETEEEVVFYQALYGDYGFWVRPLSMFQESVEVDGEQVPRFALVQVEESIFSKS	PGPT0012200_854	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-HYDROLASE,PGPT0012200-cd|ma|nplT-K01208	NA	NA
D1-36_03286	1176	fadA_2		3-ketoacyl-CoA thiolase	ATGAGCTTGAATCCTAGAGACGTCGTGATTGTCGACTTCGGTCGTACGCCGATGGGCCGCTCCAAGGGCGGCATGCACCGCAACACTCGCGCCGAAGACATGTCGGCGCACCTGATCAGCAAACTGCTGGAACGCAACGTCAAGGTCGACCCCAACGAAGTCGAGGACGTGATCTGGGGCTGCGTGAACCAGACCCTGGAGCAGGGCTGGAACATCGCCCGCATGGCTTCGCTGATGACCCAGATCCCTCACACCGCTGCCGGCCAGACGGTCAGCCGCCTGTGCGGTTCGTCCATGAGCGCGCTGCACACCGCCGCCCAGGCGATCATGACCGGTAACGGTGATGTGTTCGTGGTCGGCGGTGTCGAGCACATGGGCCACGTGAGCATGATGCACGGTGTCGATCCGAACCCGCACATGTCGCTGTACGCGGCAAAAGCCTCGGGCATGATGGGCCTGACCGCGGAAATGCTCGGCAAGATGCATGGCATCACCCGCGAACAGCAGGACGCCTTTGGCGTGCGCTCCCACCAGCTCGCCCACAAGGCGACGGTGGAAGGCAAGTTCAAGGATGAAATCATCCCGATGCAGGGCTACGACGAGAACGGCTTCTTGAAACTGTTCGACTACGACGAAACCATTCGTCCGGAAACCACCCTGGAAAGCCTGGCGACCTTGAAGCCGGCCTTCAATCCTAAGGGCGGCACCGTGACGGCGGGTACTTCGTCGCAGATCACCGACGGTGCCTCGTGCATGATCGTGATGTCGGCCCAGCGTGCCCAGGACCTGGGCATCCAGCCGATGGCCGTGATTCGTTCGATGGCTGTCGCGGGTGTGGACCCGGCGATCATGGGCTATGGTCCAGTACCGGCTACGCAGAAAGCCTTGAAGCGCGCGGGCCTGAGCATTTCCGATATCGACTTCTTCGAGCTCAACGAAGCTTTCGCCGCACAGGCCCTGCCCGTGCTGAAAGATTTGAAAGTACTCGACAAGATGAACGAGAAGGTTAACCTGCACGGCGGCGCGATCGCCCTGGGTCACCCGTTCGGTTGCTCTGGTGCGCGTATCTCTGGCACGCTGCTCAACGTCATGAAGCAGAACGGCGGCACTTTAGGGGTGTCCACCATGTGCATTGGCCTCGGCCAGGGCATCGCCACTGTCTTCGAACGCGTCTAA	MSLNPRDVVIVDFGRTPMGRSKGGMHRNTRAEDMSAHLISKLLERNVKVDPNEVEDVIWGCVNQTLEQGWNIARMASLMTQIPHTAAGQTVSRLCGSSMSALHTAAQAIMTGNGDVFVVGGVEHMGHVSMMHGVDPNPHMSLYAAKASGMMGLTAEMLGKMHGITREQQDAFGVRSHQLAHKATVEGKFKDEIIPMQGYDENGFLKLFDYDETIRPETTLESLATLKPAFNPKGGTVTAGTSSQITDGASCMIVMSAQRAQDLGIQPMAVIRSMAVAGVDPAIMGYGPVPATQKALKRAGLSISDIDFFELNEAFAAQALPVLKDLKVLDKMNEKVNLHGGAIALGHPFGCSGARISGTLLNVMKQNGGTLGVSTMCIGLGQGIATVFERV	PGPT0001565_3612	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
D1-36_03287	2148	fadB_3		Fatty acid oxidation complex subunit alpha	ATGATTTACGAAGGTAAAGCCATCACGGTTAAGGCTCTTGAAAGTGGCATCGTCGAACTGAAATTCGACCTCAAGGGTGAGTCCGTCAACAAGTTCAACCGTCTAACCCTGAATGAATTGCGTCAGGCCGTGGACACTATCAAGGCAGATGCGTCGATCAAGGGTGTGATCGTCAGCAGTGGCAAGGACGTGTTCATCGTCGGCGCCGACATCACCGAATTCGTCGACAACTTCAAGCTGCCCGATGCCGAACTGATCGCTGGCAACCTCGAAGCCAACCGTATCTTCAGCGACTTTGAAGACCTCAACGTACCGACCGTCGCGGCCATCAACGGCATCGCACTGGGTGGCGGCCTGGAAATGTGCCTGGCGGCGGACTACCGCGTCATGTCCACCGCGGCCAAGATCGGCCTGCCGGAAGTCAAGCTGGGCATCTACCCGGGTTTCGGCGGCACCGTGCGCCTGCCGCGCCTGATCGGTGCTGACAACGCTATCGAGTGGATTGCCGCTGGCAAGGAAAACCGTGCCGAAGACGCGCTGAAAGTCGGCGCCGTGGATGCGGTGGTCGAACCCGGCAAGCTTCTGGAGGCGGCCCTTGAAACCGTCAAGCGCGCCATCAGCGGCGAGTTTGACTACAAGGCCAAGCGCCAGCCGAAGCTGGAAAAACTCAAGCTCAACGCCATCGAACAGATGATGGCCTTCGAGACCGCCAAAGGTTTCGTCGCCGGCCAGGCGGGCCCGAACTACCCGGCACCGGTCGAGGCGATCAAGACCATCCAGAAAGCCGCGAATTTCGGTCGCGACAAAGCCTTGGAAGTCGAAGCCGCCGGTTTCGTGAAACTGGCCAAGACGTCTGCCGCCCAGAGCCTGATCGGTCTGTTCCTCAATGATCAGGAGCTGAAGAAAAAGGCCAAGGCCTACGACGAAATTGCCCGTGACGTGAAACAGGCCGCCGTGCTCGGCGCCGGCATCATGGGTGGCGGCATCGCCTATCAGTCGGCGTCCAAGGGCACGCCGATCCTGATGAAGGACATCAATGAACACGGCATCGAGCAGGGGTTGGCCGAAGCCGCCAAGCTGCTGGTCGGTCGCGTCGACAAAGGTCGCATGACCGCCGCGAAGATGGCCGAAGTGCTCAATGGCATTCGTCCGACGTTGTCCTACGGCGATTTCGGCCACGTCGACCTGGTGGTCGAAGCGGTTGTCGAGAACCCGAAGGTCAAGCAGGCGGTTCTGGCTGAAGTCGAAGACAAGGTCAAAGAGGACACCATCCTCGCGTCGAACACCTCGACCATTTCCATTTCGCTGCTGGCCAAAGCCCTCAAGCGTCCGGAAAACTTCGTCGGCATGCATTTCTTCAACCCGGTGCACATGATGCCCCTGGTGGAAGTGATCCGTGGCGAGAAATCCAGCGAGGAGGCGATTGCCACCACCGTGGCCTACGCCAAAAAAATGGGCAAGAACCCGATCGTCGTCAACGATTGCCCGGGCTTTTTGGTCAACCGCGTGCTGTTCCCGTACTTCGGCGGTTTCGCCAAGCTGGTCAGTGCTGGTGTGGACTTCGTGCGCATCGACAAGATCATGGAAAAATTCGGCTGGCCGATGGGCCCGGCGTACCTGATGGACGTGGTCGGCATCGACACCGGCCACCACGGTCGCGACGTCATGGCTGAAGGCTTCCCGGACCGCATGAAAGACGACCGTCGTTCCGCCGTCGACGTGCTCTACGAAGCCAAGCGCCTGGGACAGAAGAACGGCAAGGGCTTCTACGCCTATGAAACCGACAAGCGCGGCAAGCAGAAGAAAGTCGCCGATTCGTCGGTGCTGGAAGTGCTCAAGCCGATCGTCTACGAGCAGCGCGAAGTCACCGACGAGGACATCATCAACTGGATGATGATCCCGCTGTGCCTGGAAACCGTGCGTTGCCTGGAAGACGGCATTGTCGAAACCGCCGCCGAAGCCGACATGGGTCTGGTCTACGGCATCGGTTTCCCTCCATTCCGTGGCGGTGCGCTGCGCTACATCGATTCGATCGGTGTGGCCGAGTTCGTTGCCCTGGCTGACCAGTACGCTGATCTGGGCGCGTTGTACCACCCGACCGCGAAGCTGCGTGAAATGGCCAAGAACGGCCAGCGTTTCTTCGGTTAA	MIYEGKAITVKALESGIVELKFDLKGESVNKFNRLTLNELRQAVDTIKADASIKGVIVSSGKDVFIVGADITEFVDNFKLPDAELIAGNLEANRIFSDFEDLNVPTVAAINGIALGGGLEMCLAADYRVMSTAAKIGLPEVKLGIYPGFGGTVRLPRLIGADNAIEWIAAGKENRAEDALKVGAVDAVVEPGKLLEAALETVKRAISGEFDYKAKRQPKLEKLKLNAIEQMMAFETAKGFVAGQAGPNYPAPVEAIKTIQKAANFGRDKALEVEAAGFVKLAKTSAAQSLIGLFLNDQELKKKAKAYDEIARDVKQAAVLGAGIMGGGIAYQSASKGTPILMKDINEHGIEQGLAEAAKLLVGRVDKGRMTAAKMAEVLNGIRPTLSYGDFGHVDLVVEAVVENPKVKQAVLAEVEDKVKEDTILASNTSTISISLLAKALKRPENFVGMHFFNPVHMMPLVEVIRGEKSSEEAIATTVAYAKKMGKNPIVVNDCPGFLVNRVLFPYFGGFAKLVSAGVDFVRIDKIMEKFGWPMGPAYLMDVVGIDTGHHGRDVMAEGFPDRMKDDRRSAVDVLYEAKRLGQKNGKGFYAYETDKRGKQKKVADSSVLEVLKPIVYEQREVTDEDIINWMMIPLCLETVRCLEDGIVETAAEADMGLVYGIGFPPFRGGALRYIDSIGVAEFVALADQYADLGALYHPTAKLREMAKNGQRFFG	PGPT0001865_610	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001865-fadB-K01825	NA	NA
D1-36_03288	438			hypothetical protein	ATGACGGTCTGGATAGTGGTGTCAATCCTGTTGGTGGTATTAAGCCCCCTGGCATGGTTGCGACCGTCCCGCGCACAGAGCGGGCGTATAGCCCTTCGCATGGAGGCGCGACGCCTCGGGCTGGCCATGCGATTGACCCCGCAAGACTGGCCCCATTGGCTTGGCCAGCAGCCACCAAACCCCTGTGCGCAGTACCACCGAGCCCGGCGGGGCAGCCAGCCGGCCAGCTGGAGTTATTGGCAAAAGGCTCCAGGGGTGTGGGTCAACCAATGGCAGGAGGTGTGCCAGGATGAAGCGTTGCTCGGCCACTTCCGAGCATTGCCAGCCAATGTCTATAAGGTCGAGGCCGACCGGCAAATGATCGCCCTGTATTGGGGAGAGAAAGGCGAAGCCAGTGTTTTGCAGGACATTTCTGCCGTATTAAAGGCGTTGGCCTGA	MTVWIVVSILLVVLSPLAWLRPSRAQSGRIALRMEARRLGLAMRLTPQDWPHWLGQQPPNPCAQYHRARRGSQPASWSYWQKAPGVWVNQWQEVCQDEALLGHFRALPANVYKVEADRQMIALYWGEKGEASVLQDISAVLKALA				NA	NA	NA	NA	NA
D1-36_03289	441	uspA2	COG0589	Universal stress protein A	ATGTACTACGAACACATCCTGGTCGCCGTCGACCTCACTGAAGAATGCGATCCCGTCGTCAAGCGAGCCCTCGCCCTTTGCGAAGGGCGGGACAACAAACTGTCGCTGGTGCATATCGTCGAGCCGATGGCGATGGCCTTCGGCGGTGACGTTCCGATGGATCTTTCCCAGTTGCAACAGCAGCAGTTCGACCAGGCCAAGGAACGCCTTGACCGATTGATCGTGAAATACCCTGCCTTGAAAAAGGAAAATAGCCACCTGACCTATGGCCAGCCGCGCCAGGAGATCCATCACCTGGCCAAGGAGCAAGGCTGCGACCTGATCGTGGTCGGCAGCCATGGCCGCCATGGCCTGGCGTTGCTGCTGGGCTCTACCGCCAACGACGTGCTGCATGGCGCGCCTTGCGATGTGCTGGCGGTGCACCTGGTCAAGCGCACCTGA	MYYEHILVAVDLTEECDPVVKRALALCEGRDNKLSLVHIVEPMAMAFGGDVPMDLSQLQQQQFDQAKERLDRLIVKYPALKKENSHLTYGQPRQEIHHLAKEQGCDLIVVGSHGRHGLALLLGSTANDVLHGAPCDVLAVHLVKRT	PGPT0014970_241	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0014970-uspA-K06149	NA	NA
D1-36_03290	1920	uup	COG0488	ABC transporter ATP-binding protein uup	ATGACCCTGCTCAAATTCAGCGATGTGTCCCTTGCTTTCGGCGCGATGCCGTTGTTGGACAAGGTGTCCTGGCAGATCGCCCGTGGAGAGCGGGTGTGCATCATCGGCCGCAACGGCACTGGCAAGTCCAGCATGATGAAGCTGGTCAAGGGGGATCAGAAGCCCGATGACGGCTCCGTCTGGCGTGCGCCCGGGCTGAAAATCGGCGAGCTGCCCCAAGAGCTGCCGGTAGCCGACGAGCGGACCGTGTTCGACGTGGTTGCCGAAGGCCTGGACGGTGTCGGCGCGCTGCTGGCCGAATATCACCACCTGAGCCAGAACATCGTCACCGATGCCGACCTGGACAAGCTGATGCATGTGCAGCACGACCTCGAGGCCCGTGATGGCTGGCGCCTGCAGCAATTGGTCGACAGCACCTTGAGCCGCCTGCAACTCCCGGCTGACAAGACCTTGGCCGAGCTGTCCGGCGGCTGGCGTCGTCGGGTCCTGCTGGCCCAGGCCCTCGTGTCCGAGCCAGACCTTTTGCTGCTCGACGAACCGACCAACCACCTGGACATCGGTGCCATCGCCTGGCTTGAAGAAGCGCTGAAGGATTTCCAAGGGGCGGTTCTGTTCATCACGCACGACCGTTCCTTCCTGCAGAACCTGGCGACCCGCATCCTCGAACTGGATCGTGGCGGCCTGATCGATTGGAACGGCGACTACGCCAGTTTCCTGGTGCACAAGGAAGCGGTGCTGGCGGCGGAAGAAACCGCCAACGCCTTGTTCGACAAGCGCCTGGCCCAGGAAGAAGTGTGGATCCGCCAGGGCATCAAGGCCCGGCGGACTCGTAACGAAGGCCGTGTGCGCGCCCTCAAGGCATTGCGCGTGGAGCGTAGCGAACGTCGCGAGCGCACCGGCAAGGCCAATATCCAGCTTGAGACGGCCGACAAGTCGGGCAAGCAGGTCATGGTGCTGGAAGATGTCAGTTTCGCCCATCCGGGCGGCCCGTTCCTGATCAAGGATTTCTCCATGGTCCTGCAGCGCGGTGACCGGATCGGCCTGCTTGGCGCCAACGGTACCGGCAAGACGACCCTGCTCAAGCTGATGCTTGGCGGCCTGGTGCCGACCAGCGGCAAAGTGGAGGAGGGGACAAAGATCGACGTCGCCTATTTCGACCAGTTGCGCCATCAGTTGGACTTGGAAAAAACCGTGATCGACAACGTCGCCGAAGGCCGCGACTTCATCGAAATCGATGGCCAGAGCCGCCACGTATTGAGTTACCTCGGCGACTTCCTGTTCAGCCCACAGCGCGCCCGTACGCCGGTGAAAGCGCTGTCTGGTGGTGAGCGGGCACGGCTGCTGCTGGCCAAGTTGTTCAGTAAGCCGGCGAACCTGCTGGTGCTCGACGAACCAACCAACGACTTGGACGTGGAAACCCTCGAGCTGCTGGAAGAAGTGTTGTTGACGTTCAACGGCACTGTGCTGATGGTCAGCCACGATCGGGCCTTCCTCGATAACGTGGTCACTAGCACGTTGGTGTTCGAAGGCGAGGGGCTGGTTCGCGAATATGTCGGTGGTTATCAGGATTGGCTACGCCAAGGCGGCTCGCCGCGCCTGCTGGGTGTGACAGAGAGCAAATCAGGCAAGGCCGACTTGAACTCCGCGGTCGTCAAGGCCGAGCCGGCGCCGGTTGCCGCCGCTGCCGCACCGGCTCCGACCAAGAAAAAGCTCAGCTACAAGCTGCAGCGTGAACTGGAAGCCTTGCCAGGTGATATCGACGCGAAGGAGCAGCAGATCGCCGCGGTGGAGGCCGAGATGGCTGATGCCGGCTTCTACCAGCGTCCCGCGGCCGAAACCGCCAAGGTAATCGCGCATCTGGAACAGTTGCAGGCTGAGCTGGATGCGCTGGTCGAGCGTTGGGCTGAGCTGGACGCTTGA	MTLLKFSDVSLAFGAMPLLDKVSWQIARGERVCIIGRNGTGKSSMMKLVKGDQKPDDGSVWRAPGLKIGELPQELPVADERTVFDVVAEGLDGVGALLAEYHHLSQNIVTDADLDKLMHVQHDLEARDGWRLQQLVDSTLSRLQLPADKTLAELSGGWRRRVLLAQALVSEPDLLLLDEPTNHLDIGAIAWLEEALKDFQGAVLFITHDRSFLQNLATRILELDRGGLIDWNGDYASFLVHKEAVLAAEETANALFDKRLAQEEVWIRQGIKARRTRNEGRVRALKALRVERSERRERTGKANIQLETADKSGKQVMVLEDVSFAHPGGPFLIKDFSMVLQRGDRIGLLGANGTGKTTLLKLMLGGLVPTSGKVEEGTKIDVAYFDQLRHQLDLEKTVIDNVAEGRDFIEIDGQSRHVLSYLGDFLFSPQRARTPVKALSGGERARLLLAKLFSKPANLLVLDEPTNDLDVETLELLEEVLLTFNGTVLMVSHDRAFLDNVVTSTLVFEGEGLVREYVGGYQDWLRQGGSPRLLGVTESKSGKADLNSAVVKAEPAPVAAAAAPAPTKKKLSYKLQRELEALPGDIDAKEQQIAAVEAEMADAGFYQRPAAETAKVIAHLEQLQAELDALVERWAELDA				NA	NA	NA	NA	NA
D1-36_03291	1929	slt	COG0741	Soluble lytic murein transglycosylase	ATGCGCAGTCGCCTTTTCAGTGTTTTATCTTGTTTGTTTGTATGTGCCACTGCCGTTCAAACCGCCCATGCGGTGGATATTTCCACCCAGCGCCAGTACTACGACGAGGCCAAGCGCGCTCTGGCCAAAGGCGATTCCGCTCCCTACTTTCGCTACAGCCAGGCCCTGCGCGATTATCCGCTGGAACCGTACCTGGCCTATGACGAACTGACTGCGCGACTCAAGAGCGCGAGCAACGCCGAAATCGAAAAATTCCTCGCCGAACATGGCGACCTGCCCCAGGCCAACTGGATGAAGTTGCGCTGGTTGCGCTGGTTGGCCGAACGTGGCGACTGGGCAACCTTCGTCAAGTATTACGATCCCAAGCTCAACTTCACCGAGCTGGATTGCCTCAACGCTCAATATCAACTGAGCCATGGCCTTAAGGCCGAAGGTTATGCCAACGCCGAGAAACTATGGCTTACCGGTAAATCCCAGCCGACGGCTTGCGACGCGCTGTTCGGCATGTGGGCCGCGCAAGGCCAGTTGACCGAGCAGAAACGCTGGGAGCGCGCGAAACTGGCGGCCCAGGCACGCAACTATCCGCTGGCCAATAGCCTGGTCAGCGGCCTGACCACCCTTGCCCCCCGAGGCAAGCTGTTGGTTGACGTCGCGCAAAAGCCCGAACTGCTCAACCAGCCTTCGCGCTTCATGCCCGCCGATGAGCCCATGTCCGATGTCGTCAGTCTTGGGCTGCGCCGCCTGGCCCGCCAGGACCCGGAAAAAGCCATGTCATTGCTGGAGGGCTATGCCAGCACCATGCGTTTCTCTCGGGACGAGAAGGTCGCCATCGCCCGGGAAATCGGCCTGACCCTGGCCAAGCGCTTCGATAGCCGCGCCCTGGATGTCATGACCAAATATGACCCGGAGCTTCGGGACGACACCGTATCGGAGTGGCGCTTGCGCCTGCTCCTGCGCCTCGCCCGCTGGGACGACGCCTACCAACTGACCCGCCGCCTGCCCGAATCGCTGGCGAGCACCAATCGCTGGCGCTACTGGCAGGCCCGTAGCCTGGAACTGGCGCAGCCACAGAACCCCGAAGCGCTGACGCTCTACAAGCACCTGGCTCGCGAGCGTGATTTCTACGGTTTCCTGGCCGCCGACCGGTCCCAGTCACCGTATTCGCTGGTGAACAAGCCGCTGCCCATGAGCCAGGCGCTGATCAACAAAGTCCGCAATACACCGGGCATACGCCGGGCGCTGGAATTCCACGCGCGTGGTCAAATCGTGGACGGACGCCGCGAGTGGTATCACGTCAGCCGCCATTTCAGCCGGGACGAAATGGTCGCCCAGGCGAAACTGGCCTACGACCTCAAGTGGTATTTCCCAGCCATCCGCACCATCAGCCAGGCCAAATACTGGGATGACTTGGATATCCGCTTCCCGATGGCCTACCGCGACACGCTGGTGCGAGAAGCCAAGATCCGCGGTTTGCACCCTAGCTGGGCGTTCGCCATCACCCGGCAGGAAAGTGCGTTCATGGACGACGCCCGCTCCGGTGTCGGCGCCAGCGGCCTCATGCAATTGATGCCGGCCACGGCCAAGGAAACCGCGCGCAAATTCAATATTCCCCTGGCATCACCGCAGCAAGTCTTCAACCCGGACAAGAATATCCAGCTGGGCGCGGCGTACCTGAGCCAGGTCCACAGCCAGTTCAACGGCAACCGCGTCCTCGCCTCCGCCGCCTACAACGCCGGCCCCGGTCGCGTGCGCCAATGGTTGCGCGGTGCAGACCACCTGAGCTTCGACGTCTGGGTCGAAAGCATCCCCTTCGACGAAACCCGCCAATACGTGCAGAACGTGTTGTCGTACTCGGTCATCTACGGCCAGAAGCTCAACTTGCCGCAACCGCTGGTGGACTGGCATGAGCGGTATTTTGATGATCAGTGA	MRSRLFSVLSCLFVCATAVQTAHAVDISTQRQYYDEAKRALAKGDSAPYFRYSQALRDYPLEPYLAYDELTARLKSASNAEIEKFLAEHGDLPQANWMKLRWLRWLAERGDWATFVKYYDPKLNFTELDCLNAQYQLSHGLKAEGYANAEKLWLTGKSQPTACDALFGMWAAQGQLTEQKRWERAKLAAQARNYPLANSLVSGLTTLAPRGKLLVDVAQKPELLNQPSRFMPADEPMSDVVSLGLRRLARQDPEKAMSLLEGYASTMRFSRDEKVAIAREIGLTLAKRFDSRALDVMTKYDPELRDDTVSEWRLRLLLRLARWDDAYQLTRRLPESLASTNRWRYWQARSLELAQPQNPEALTLYKHLARERDFYGFLAADRSQSPYSLVNKPLPMSQALINKVRNTPGIRRALEFHARGQIVDGRREWYHVSRHFSRDEMVAQAKLAYDLKWYFPAIRTISQAKYWDDLDIRFPMAYRDTLVREAKIRGLHPSWAFAITRQESAFMDDARSGVGASGLMQLMPATAKETARKFNIPLASPQQVFNPDKNIQLGAAYLSQVHSQFNGNRVLASAAYNAGPGRVRQWLRGADHLSFDVWVESIPFDETRQYVQNVLSYSVIYGQKLNLPQPLVDWHERYFDDQ	PGPT0024070_1959	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-SOLUBLE_LYTIC_MUREIN_TRANSGLYCOSYLASE_ACTIVITY,PGPT0024070-slt-K08309	NA	NA
D1-36_03292	1773	msbA_2	COG1132	Lipid A export ATP-binding/permease protein MsbA	ATGCTTTCCTCACGACATCGCCGCGCAATACGCCTGGCCAGCGGCTTCATCGCCCCTTACCGCAAACAGGTCGCCGGTGCTTTGCTGGCCCTGATTGTCACGGCCGGTATCACGTTGTCCATGGGCCAAGGGATCCGCCTGCTGGTGGACCAAGGCTTCATGACCCGTTCGCCGCATCTGCTCAATCAGTCCATTGGCCTGTTCATGGTGCTGGTGGTGGGCCTGGCTATCGGTACGTTTGCACGCTTTTATCTCGTGTCATGGATCGGTGAGCGGGTGGTGGCCGATATCCGGCGGCAGGTCTTCAATCACCTGGTGTATCTGCACCCGGGCTTCTACGAGAACAATCGCAGTTCGGAAATCCAGTCACGCCTGACCGCCGATACGACTCTGCTGCAATCGGTGATTGGTTCGTCGCTGTCGTTGTTCCTGCGCAACGCCTTGATGGTGATTGGTGGCATTGTGCTGCTGTTTTTCACCAACCCCAAGTTGACCAGTATCGTGGTCATTGCCCTGCCATTGGTCCTGGCGCCGATCCTGGTGTTCGGGCGACGGGTGCGCAGCTTGTCGCGCCAGAGCCAGGACCGCATCGCCGACGTCGGCAGCTACGTCTCCGAAACCCTCGGCCAGATCAAGACCGTGCAGGCCTACAACCACCAGGTCCAAGATGAACAACGTTTTTCCGTGACGGTGGAGCAAGCCTTCGACACCGCCCGCAAGCGCATCGCCCAGCGGGCCTGGTTGATCACCCTGGTGATCGTGCTGGTGCTGGGTGCGGTAGGGGTGATGCTCTGGGTCGGCGGCATGGATGTGATCGCCGGGCGGATTTCCGGCGGCGAACTCGCGGCGTTCGTGTTCTACAGCCTGATCGTTGGCAGCGCCTTTGGCACCCTCAGCGAAGTGATCGGCGAGCTGCAACGGGCAGCGGGCGCCGCGGAACGCATTGCCGAGTTGCTGCGTTCGCAGAACATTATCCAGCCACCGGTCACAGGGCTGGTGACGTTGCCGGAGCGGGTGCGGGGTGACCTGCGCCTTGAAGGCGTGCGTTTTTCCTACCCCTCCCGACCGGACAGCTATGCGGTCGATGGCCTCGACCTGAGCATCAAGGCCGGCGAAACCCTGGCCCTCGTCGGGCCATCCGGCGCGGGCAAGTCAACGGTGTATGACCTGCTGCTGCGCTTCTACGATCCGGTGCAAGGGCGGATCCTGATCGACGACGTGCCGTTGACCTCGGTCGACCCTTTGGACCTGCGTCGTCATTTCGCCCTGGTTTCTCAAAACCCGGCACTGTTTTTCGGCACGGTCGAAGAAAATCTTCGCTACGGCAATCCCCAAGCAACATTCGAGCAGGTACGCGAGGCTGCGCAGATTGCCCACGCCCATGATTTCATAGAAAAAATGCCTGACGGCTACCAGACCCACCTGGGCGATGGCGGCCTTGGGCTGTCCGGCGGCCAGCGCCAACGCCTGGCGATCGCCCGGGCCCTGCTGGTGGACGCGCCAATCCTGCTACTGGACGAAGCCACCAGCGCCCTCGACGCGCAAAGTGAACACCTGATCCAGCAAGCCTTGCCCAGCCTGATGAAGAACCGTACCACCCTGGTCATCGCCCATCGCCTGGCCACGGTGAAAAACGCCGACCGGATTGCGGTGATGGACCAAGGCAAGGTGGTTGCGGTGGGTAGCCATCAGGAACTGGTTGCAAGCAATGCGCTGTTTGCGCGGTTGGCAGCGTTGCAGTTCAACGTTGGCTTGGACTCGGCAGCCGACTGA	MLSSRHRRAIRLASGFIAPYRKQVAGALLALIVTAGITLSMGQGIRLLVDQGFMTRSPHLLNQSIGLFMVLVVGLAIGTFARFYLVSWIGERVVADIRRQVFNHLVYLHPGFYENNRSSEIQSRLTADTTLLQSVIGSSLSLFLRNALMVIGGIVLLFFTNPKLTSIVVIALPLVLAPILVFGRRVRSLSRQSQDRIADVGSYVSETLGQIKTVQAYNHQVQDEQRFSVTVEQAFDTARKRIAQRAWLITLVIVLVLGAVGVMLWVGGMDVIAGRISGGELAAFVFYSLIVGSAFGTLSEVIGELQRAAGAAERIAELLRSQNIIQPPVTGLVTLPERVRGDLRLEGVRFSYPSRPDSYAVDGLDLSIKAGETLALVGPSGAGKSTVYDLLLRFYDPVQGRILIDDVPLTSVDPLDLRRHFALVSQNPALFFGTVEENLRYGNPQATFEQVREAAQIAHAHDFIEKMPDGYQTHLGDGGLGLSGGQRQRLAIARALLVDAPILLLDEATSALDAQSEHLIQQALPSLMKNRTTLVIAHRLATVKNADRIAVMDQGKVVAVGSHQELVASNALFARLAALQFNVGLDSAAD				NA	NA	NA	NA	NA
D1-36_03293	180			hypothetical protein	ATGTCCTTGCAACACAGCAGCGACGACAAGATTCAAGTAATCCGCACGCAACCGGACCAGTCCCTGGGCTGCTCGTTCATCGATGCCCAAGGGCGCGAAGTACCGATCACCGAAGACATGATCCAGAAAGCCTGCAGCGAGCTGGAGAAACGACTGGTCAAACCTGCCGAACAAAAGTGA	MSLQHSSDDKIQVIRTQPDQSLGCSFIDAQGREVPITEDMIQKACSELEKRLVKPAEQK				NA	NA	NA	NA	NA
D1-36_03294	1143	pdxB	COG0111	Erythronate-4-phosphate dehydrogenase	ATGCTGATCGTCGCCGACGAAAACATTCCCCTGCTCGATGCATTTTTCCAAGGTTTCGGTGAGATCCGCCGGGTGCCGGGGCGGGGCATTGACCGGGCATTGGTAGAGCAGGCCGATGTGCTGTTGGTACGGTCGGTCAGCCAGGTCAATCGAGCCCTGCTGGAAGGCAGCAAGGTGCGCTTCGTCGGCACTTGCACCATTGGCACTGATCACCTGGACCTGGATTATTTTGCCGAGGCCGGCATCCGCTGGGCCAGCGCGCCTGGCTGCAATGCCCGTGGCGTGGTGGATTACGTACTGGGCAGCCTTATGGCCCTGGCTGAGATCGAAGGCGCGGATCTTGCGCAGCGCACGTTTGGCGTGGTCGGCGCGGGGCAGGTAGGTGGGCGGTTGGTCGAGGTGCTCAAGGGCCTGGGCTGGGCTGTGAAAGTCTGCGACCCGCCTCGCCACGCTGCCGAAGGCGGCGACTACGTGAGCCTGGAGCAGATCATCGAGGAATGCGACGTCATCAGCCTGCACACGCCATTGGCTCGCACGGGTGAGCACGTGACTTGGCACCTTTTTGATGAGCATCGCTTGAACAGCCTGAAGCCTGGCACCTGGCTGATCAACGCCGCGCGCGGCCCGGTCATCGATAACTCGGCGTTGCGCGAGGTGCTGTTGGAGCGCGAAGACCTCCAGGCGGTGCTTGATGTCTGGGAGCAGGAGCCGACGGTGGACGTGGACCTGGCCGACCTCTGCGTGATCGCCACCCCGCACATTGCCGGCTACAGCCTTGACGGTCGCCAGCGCGGCACGGCGCAGATCTACCAGGCCCTGTGCGACTTTCTTGGGCGGCCCGCCGAAGTCGATCTGGCCGACTTGTTACCCCGGCCCTGGCTCGGGGGCATCACGCTGGATGCCGATACCGACCCGGCCTGGGCGCTGGCGGTGTTGTGCCGGAGCGTGTACGACCCGCGCCGCGACGATGCGGATTTTCGCCGCAGCTTGATCGGTACGGTGGGTGAGCAGCGCAGTGCGTTTGATGCGTTGCGCAAGCATTACCCGCCACGCCGGGAGATCGACAGCTTGAAGGTGCGTATCGAAGGGCAGTCGACGGCCTTGCAGCAGATCGTGACGGCCTTGGGAGCTACTATCGTTTAA	MLIVADENIPLLDAFFQGFGEIRRVPGRGIDRALVEQADVLLVRSVSQVNRALLEGSKVRFVGTCTIGTDHLDLDYFAEAGIRWASAPGCNARGVVDYVLGSLMALAEIEGADLAQRTFGVVGAGQVGGRLVEVLKGLGWAVKVCDPPRHAAEGGDYVSLEQIIEECDVISLHTPLARTGEHVTWHLFDEHRLNSLKPGTWLINAARGPVIDNSALREVLLEREDLQAVLDVWEQEPTVDVDLADLCVIATPHIAGYSLDGRQRGTAQIYQALCDFLGRPAEVDLADLLPRPWLGGITLDADTDPAWALAVLCRSVYDPRRDDADFRRSLIGTVGEQRSAFDALRKHYPPRREIDSLKVRIEGQSTALQQIVTALGATIV	PGPT0009150_251	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ERYTHRONATE_UTILIZATION,PGPT0009150-pdxB-K03473	NA	NA
D1-36_03295	1404	norM	COG0534	Multidrug resistance protein NorM	GTGAATCCTGCAATCGACACTCCTTGCGTCCTCTCTCGCCCCGCCCGGGTTCGCCTGGAGCTCAAGACGCTGCTCGCCCTCGCCTTGCCGATCATGGTGGCGCAATTGGCGACCACTGCCATGGGTTTTGTCGATGCGGTGATGGCCGGACGGGTCGGCCCGCGGGACCTCGCCGCGGTGGCGCTGGGTAATTCGATCTGGGTGCCGGTATTCCTGTTGATGACCGGCACGCTGCTGGCCACTACGCCAAAAGTTGCCCAGCGTTTCGGGGCCGGCACGTTCGAACAGATTGGCCCCTTGGTGCGCCAGGCATTGTGGTTGGCCCTCGCGGTGGGGCTGGCCGCGACATTGGCACTGTTCAGCGCCGAGCCGATCCTGCATGTGATGCAGGTCGATCCCGAATTGATCGGCCCTTGCATGGAATACCTGCGGGGTATAGGCACCGGGCTCCCGGCAGTGGCGCTCTATTACGTGCTGCGCTGTTTCAGCGACGGCCTGGGGCGCACGCGACCGGCCATGGTGCTGGGGCTGTGCGGACTGGCGCTGAACATTCCGCTCAATTACATCTTCATCTACGGGCACCTGGGCGTCCCAGCCATGGGCGGGGTTGGCTGCGGCTGGGCAACCGCCATCGTGATGTGGTTCATGGCAGCGGGCATGGCGATCTGGACGTATCGGGCCCCAATCTATCAATCGAGCCGTCTGTTCGCCCGTTTCGACTGGCCGCAATGGTCGATGATCAAGCGCCTGCTGGGCATCGGCCTGCCGATTGGCATCGCGGTGTTTGCCGAGTCGAGCATCTTTGCGGTGATCGCCCTGCTGATCGGCAGCCTCGGCGCCACGGTGGTGGCCGGGCACCAGATCGCGCTGAACTTCAGCTCGCTGGTGTTCATGATCCCCTACTCCCTGGGCATGGCCGTGACGGTACGGGTAGGCCAGGCGCTGGGGCGTGGCCAGCCTCGAGAGGCGCGCTTCGCTGCGGGCGTCGGCATGGGCACGGCCCTGGCGTACGCGTGCCTGTCAGCGAGCGTGATGTTCGCGCTGCGCGGCCCCATCGCAGCGATCTACACAGCCGATCCGCGGGTGATCGAGGTCGCATCGATGCTGATCGTCTACGCGGCGCTGTTCCAGTTTTCCGATGCGATCCAGGTCACGGCGGCCGGCGCATTGCGCGGCTACCAGGACACCCGGGTGACGATGATCCTGACGCTCTTCGCTTACTGGGGCATCGGCTTGCCGGTGGGTTACGCCCTGGGCCTGACCGACAGGCTCGGCACCGCCAGTGGCCCAAGCGGATTATGGCAAGGCTTGATCGTGGGGTTGAGCTGCGCGGCGCTGATGCTGTCGATTCGCCTGGCACGCAGCGCGCGAGGGCAGATCCGCATCAGCCGTGCGACGGGTTAG	MNPAIDTPCVLSRPARVRLELKTLLALALPIMVAQLATTAMGFVDAVMAGRVGPRDLAAVALGNSIWVPVFLLMTGTLLATTPKVAQRFGAGTFEQIGPLVRQALWLALAVGLAATLALFSAEPILHVMQVDPELIGPCMEYLRGIGTGLPAVALYYVLRCFSDGLGRTRPAMVLGLCGLALNIPLNYIFIYGHLGVPAMGGVGCGWATAIVMWFMAAGMAIWTYRAPIYQSSRLFARFDWPQWSMIKRLLGIGLPIGIAVFAESSIFAVIALLIGSLGATVVAGHQIALNFSSLVFMIPYSLGMAVTVRVGQALGRGQPREARFAAGVGMGTALAYACLSASVMFALRGPIAAIYTADPRVIEVASMLIVYAALFQFSDAIQVTAAGALRGYQDTRVTMILTLFAYWGIGLPVGYALGLTDRLGTASGPSGLWQGLIVGLSCAALMLSIRLARSARGQIRISRATG	PGPT0029115_5941	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029115-TC_MATE|norM|mdtK|dinF-K03327	NA	NA
D1-36_03296	252	tusA_1	COG0425	Sulfur carrier protein TusA	ATGAGTGAAATGAACGATGCGCCAATCGACGGCACGCTGGATGCCACTGGTCTGAATTGCCCGGAACCGGTAATGATGTTGCACCAGCATATCCGCGACCTGGCCCCAGGTGGCCTGCTCAAAGTCATCGCCACCGACCCCTCGACTCGCCGCGACATCCCTAAGTTCTGCGTGTTTCTGGACCACGAGCTGGTGGCCCAGCAAGAGGACGCCGGCACCTACCTCTACTGGATCCGCAAGAAACTCGCCTAA	MSEMNDAPIDGTLDATGLNCPEPVMMLHQHIRDLAPGGLLKVIATDPSTRRDIPKFCVFLDHELVAQQEDAGTYLYWIRKKLA				NA	NA	NA	NA	NA
D1-36_03297	1074	rlmM	COG2933	Ribosomal RNA large subunit methyltransferase M	ATGAACACGCTTTTCATGCACTGCCGGCCGGGCTTCGAAGGCGAGGTCTGTTCCGAGATCGCCGAACACGCGGCCCGGCTCAACGTCGCCGGGTACGCCAAGGCCAAGCCGGCCAGCGCCTGCGCCGAATTTGTCTGTACCGAAGAGGACGGCGCCGAGCGGTTGATGCGCGGGCAACGTTTCGCCGATCTGATTTTTCCTCGGCAGTGGGCGCGTGGCACGTTCATCGAATTGCCTGAGACCGACCGAATCAGCGTCATTCTGTCCCACATGACGGCCTTCCCAACGTGTGGCAGCCTGTGGCTGGAGGTAGTTGACACGAACGACGGCAAGGAACTGTCGAACTTCTGCAAGAAGTTCGAAGGCCCGCTGCGCAAGGCCTTGGGCGGGGCAGGGAAACTGGTGGACGACCCGCGCAAGCCGCGCCTGCTGTTGACCTTCAAGAGCGGTCGTGAAGTCTTCCTTGGCCTGGCTGAGGCGGATAACTCAGCGATGTGGCCGATGGGTATCCCGCGCCTGAAGTTCCCCCGGGACGCGCCGAGCCGCTCCACACTCAAGCTCGAGGAGGCCTGGCACCATTTCATTCCTCGGGACCAGTGGGACGAACGCCTGCACAGCGACATGACCGGTGTGGACCTCGGTGCGGCGCCGGGTGGCTGGACGTGGCAATTGGTCAACCGTGGCATGCTGGTGACGGCCATCGACAATGGCCCAATGGCCGAAAGCCTGATGGACACCGGCCTGGTGCGGCACTTGATGGCAGACGGATTCACGTTCAAGCCCAGGCAGCCGGTGGACTGGATGGTCTGCGACATCGTCGAGAAACCGGCGCGCAACGCGGCGATGCTGGAAGAGTGGATCGGCGAGGGCCATTGCCGCGAGGCCGTGGTCAACCTCAAGTTGCCGATGAAACAGCGTTACGCCGAGGTGAAACGCCTGCTCGAACGCATCGCCGAGGGTTTCAAGGCCCGGGGCATTCAGGTCGAGATCGGCTGCAAGCAGCTGTACCACGACCGAGAGGAGGTGACGTGTCATCTGCGGCGGTTGGACACCAAAAAAACGAAGGCCCGTTAG	MNTLFMHCRPGFEGEVCSEIAEHAARLNVAGYAKAKPASACAEFVCTEEDGAERLMRGQRFADLIFPRQWARGTFIELPETDRISVILSHMTAFPTCGSLWLEVVDTNDGKELSNFCKKFEGPLRKALGGAGKLVDDPRKPRLLLTFKSGREVFLGLAEADNSAMWPMGIPRLKFPRDAPSRSTLKLEEAWHHFIPRDQWDERLHSDMTGVDLGAAPGGWTWQLVNRGMLVTAIDNGPMAESLMDTGLVRHLMADGFTFKPRQPVDWMVCDIVEKPARNAAMLEEWIGEGHCREAVVNLKLPMKQRYAEVKRLLERIAEGFKARGIQVEIGCKQLYHDREEVTCHLRRLDTKKTKAR				NA	NA	NA	NA	NA
D1-36_03298	2742	acnA	COG1048	Aconitate hydratase A	ATGCCGTCCATCGATAGCCTGAAAACCCTTAAAACATTGCAAGTCGACGCCAGGACCTACCATTATTTCAGCCTGCCGGACGCAGCGCGAAGCCTGGGCGACCTGGACAAGTTGCCGATGTCCCTCAAGGTTCTGCTGGAAAACCTGTTGCGCTGGGAAGATGACAAAACCGTCACCGGCACCGACCTCAAGGCGCTGGCCGGCTGGCTCAAAGAGCGCCGTTCCGACCGCGAGATTCAATACCGCCCGGCCCGGGTGCTGATGCAGGACTTCACCGGCGTCCCCGCCGTGGTCGACCTGGCGGCCATGCGCGCAGCGGTGGAAAAGGCCGGCGGCGATCCGCAGAGGATCAATCCGCTGTCACCGGTCGACCTGGTCATCGACCACTCGGTGATGGTGGACAAGTTCGCCAGCCAACAGGCCTTCGAGCAGAACGTCGACATCGAGATGCAGCGCAACGGCGAACGCTACGCCTTCCTGCGTTGGGGCCAGAGCGCGTTCGACAATTTCAGCGTGGTGCCACCGGGCACCGGCATCTGCCACCAGGTCAACCTCGAATACCTGGGCCGTACCGTATGGACCAAAGAGGAAGACGGTCGTCTCTACGCCTTCCCCGACACCCTGGTCGGCACCGACTCCCACACCACCATGATCAATGGCCTGGGCGTGCTCGGCTGGGGCGTCGGCGGTATCGAAGCGGAAGCGGCGATGCTCGGCCAACCGGTATCGATGCTGATTCCGGAAGTCATCGGCTTCAAACTCGTCGGCAAACTGCGCGAAGGCATCACCGCCACCGACCTGGTGCTGACTGTCACGCAGATGCTGCGCAAGAAAGGCGTGGTGGGCAAATTCGTCGAGTTCTATGGCGACGGTCTAGCCGACCTGCCATTGGCCGATCGCGCCACCATCGCCAACATGGCCCCGGAGTACGGCGCCACCTGCGGCTTCTTCCCCGTGGACGATGTGACGTTGGACTACCTGCGCCTGTCCGGCCGTCCGACGGAAACCGTGAAACTGGTGGAAGCCTACTGCAAGGCCCAGGGACTGTGGCGGTTGCCAGGGCAGGAACCGGTTTTCACTGACACGCTGGAACTGGACATGGGCAGTGTCGAAGCCAGCCTCGCCGGCCCCAAGCGTCCCCAGGACCGGGTGTCGCTGCCGAATGTCGGCCAGGCCTTCAGCGACTTCCTGGGCCTTCAGATAAAGCCCACCAGCAAAGAAGAAGGTCGCCTCGAAAGCGAAGGCGGCGGCGGTGTCGCGGTGGGCAACGCCGACCAGGTGGGCGAAGCGGAATATGAATTCGAAGGCCAGACCCACCGCCTGAAGAACGGCGCCGTGGTCATCGCGGCGATTACGTCCTGTACCAACACCTCCAACCCCAGCGTGATGATGGCCGCCGGATTGCTTGCGAAAAAAGCCGTGGAAAAAGGCCTGGCCCGCAAGCCTTGGGTGAAGAGTTCACTGGCACCGGGCTCGAAGGTGGTGACCGACTACTACAAGGCCGCCGGCCTGACCGAATACCTCGACAAACTCGGTTTCGACCTGGTGGGCTATGGTTGCACGACGTGTATCGGCAATTCAGGCCCGCTGCCCGATCCGATTGAAAAAGCCATCCAGAAAGCCGACCTGTCCGTGGCGTCCGTGCTGTCGGGTAACCGCAACTTCGAGGGACGGGTGCATCCTTTGGTGAAAACCAACTGGCTGGCCTCACCGCCACTGGTGGTCGCCTATGCCCTGGCCGGCACCGTGCGCATCGACATCAGCAGCGAACCGCTGGGCAACGACCGCGAAGGCAATCCGGTGTACCTGCGGGACATCTGGCCGAGCAGCAAGGAAGTGGCCGACGCGGTGGCTCAAGTGGACACAAGCATGTTCCACAAGGAATATGCCGCCGTGTTTGCCGGCGACGAGCAATGGCAAGCGATCGAGGTTCCACAAGCCGCGACCTACGTCTGGCAATCGGACTCCACGTACATCCAGCATCCACCGTTCTTCGACGATATTGGCGGGCCTCCACCCGTGGTCAAAAACGTGGAGGGTGCGCGGGTCCTCGCTCTGCTGGGAGACTCGGTGACCACGGACCACATCTCCCCCGCCGGCAACATCAAGGCGGACAGCCCGGCCGGTCGCTACCTGCGCGAACAGGGCGTCGAGCCACGGGACTTCAACTCCTACGGTTCGCGACGGGGCAATCACCAGGTCATGATGCGAGGCACCTTCGCCAACATCCGCATCCGCAACGAAATGCTCGGCGGCGAGGAAGGCGGCAATACGATCTATATCCCCAACGGCGAACGCATGTCTATCTACGATGCCGCGATGTTGTACCAGGCCACCGGCACGCCATTGGTGGTGATCGCGGGTCAGGAATACGGCACGGGGTCAAGTCGAGACTGGGCGGCCAAGGGTACGAACCTGCTGGGAGTCAAGGCCGTTATCGCCGAAAGCTTCGAGCGTATCCACCGCTCCAACCTGGTGGGCATGGGCGTGCTGCCGTTGCAATTCAAGCTCGATCAGAATCGCAAGAGCCTGAACCTCACCGGCAGGGAAACTTTGGACATCCTCGGTTTGAGCGACACCGAGCTGACGCCACGCATGAACCTGCCCGTGGTCATTACCCGCGAAGACGGTAGCCAGGAACGGATTGAAGTGTTGTGCCGGATCGACACCTTGAATGAAGTGGAATATTTCAAGGCCGGTGGCATCCTGCACTTTGTCCTACGGCAATTGATTGCAGGATAA	MPSIDSLKTLKTLQVDARTYHYFSLPDAARSLGDLDKLPMSLKVLLENLLRWEDDKTVTGTDLKALAGWLKERRSDREIQYRPARVLMQDFTGVPAVVDLAAMRAAVEKAGGDPQRINPLSPVDLVIDHSVMVDKFASQQAFEQNVDIEMQRNGERYAFLRWGQSAFDNFSVVPPGTGICHQVNLEYLGRTVWTKEEDGRLYAFPDTLVGTDSHTTMINGLGVLGWGVGGIEAEAAMLGQPVSMLIPEVIGFKLVGKLREGITATDLVLTVTQMLRKKGVVGKFVEFYGDGLADLPLADRATIANMAPEYGATCGFFPVDDVTLDYLRLSGRPTETVKLVEAYCKAQGLWRLPGQEPVFTDTLELDMGSVEASLAGPKRPQDRVSLPNVGQAFSDFLGLQIKPTSKEEGRLESEGGGGVAVGNADQVGEAEYEFEGQTHRLKNGAVVIAAITSCTNTSNPSVMMAAGLLAKKAVEKGLARKPWVKSSLAPGSKVVTDYYKAAGLTEYLDKLGFDLVGYGCTTCIGNSGPLPDPIEKAIQKADLSVASVLSGNRNFEGRVHPLVKTNWLASPPLVVAYALAGTVRIDISSEPLGNDREGNPVYLRDIWPSSKEVADAVAQVDTSMFHKEYAAVFAGDEQWQAIEVPQAATYVWQSDSTYIQHPPFFDDIGGPPPVVKNVEGARVLALLGDSVTTDHISPAGNIKADSPAGRYLREQGVEPRDFNSYGSRRGNHQVMMRGTFANIRIRNEMLGGEEGGNTIYIPNGERMSIYDAAMLYQATGTPLVVIAGQEYGTGSSRDWAAKGTNLLGVKAVIAESFERIHRSNLVGMGVLPLQFKLDQNRKSLNLTGRETLDILGLSDTELTPRMNLPVVITREDGSQERIEVLCRIDTLNEVEYFKAGGILHFVLRQLIAG	PGPT0001465_1395	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
D1-36_03299	789			hypothetical protein	ATGCCCGCCCTACCCTGGCCCTACCTGGCCCTTCTCTCGATCGGCTATGGCTTCGCCCTGGTCTATGGCCACCTGGCCTGGACAGCGGCTATTTCGGTCGCGCTGCTGCTGTTCGCCGGGTATGCCGTTCGCCAGCGGCAGACGCCGGTCGGGCAGTTCCTCGGGCATTGCCTGTTCGCGGTGCTCGCGGTCGCGCTGGCCCTGCACTGGATGCCAGGCTTCTTCAACGGCAGGGCCATCGCGGCACAACGTTTTACCGATGATGCCGTGCGATTCGCCATGTACCTGAACCAGGACAAGCCACTGATCGGCTTCTGGTTGCTGCTGTTCTGCCCATGGATCATCGGGCGGCGCCCGTTTCGCTTGTCTGTCTATGCCACGGCCCTGGGCATGTGCATCAGTACGATCCTGGCCCTGGGCGGGGCCATGCTGCTGGGCATGATCAACTGGGCGCCTAAATGGCCAGACTCGGCCTGGCTGTGGGTCCTGAATAATCTTCTTCTGGTGACGTTGGTGGAGGAAGCGTTGTTTCGTGGCTATATCCAGGGAGGCCTGAGCCGGCGCTTTCAACACTTGCGCCATGGCGACAACCTCGCGTTACTGCTGGCCTCGCTGGTGTTCGGCCTGGTGCATGCCGGCGCCGGTTGGGAATGGGTGCTGCTGTCGGGGCTGGCCGGGATCGGTTACGGCCTGGCCTATCGATTGGGTGGCCTGGGTGCAGCGATAGCCACGCATTTTGGCCTCAACCTGCTTCACTTCACCCTGTTTACCTACCCGATGCTGGCGTGA	MPALPWPYLALLSIGYGFALVYGHLAWTAAISVALLLFAGYAVRQRQTPVGQFLGHCLFAVLAVALALHWMPGFFNGRAIAAQRFTDDAVRFAMYLNQDKPLIGFWLLLFCPWIIGRRPFRLSVYATALGMCISTILALGGAMLLGMINWAPKWPDSAWLWVLNNLLLVTLVEEALFRGYIQGGLSRRFQHLRHGDNLALLLASLVFGLVHAGAGWEWVLLSGLAGIGYGLAYRLGGLGAAIATHFGLNLLHFTLFTYPMLA				NA	NA	NA	NA	NA
D1-36_03300	1566	aer	COG0840	Aerotaxis receptor	ATGCGTAACAACCAGCCTATTACACAACGCGAAAGGACCTTCCCGGCCCAGCAACGACTTATTTCCACCACCAACGCCAAGGGTGTGATTACCTACTGCAACGATGCTTTCATCGACATCAGTGGTTTTACAAAGGAACAATTGATCCATTCGCCGCACAACCTGGTGCGCCATCCCGACGTTCCGTCAGCCGTGTTCACCCACATGTGGAACACGTTGAAACAAGGCTTGCCATGGATGGGCATCGTCAAGAATCGCTGCCAGAACGGCGATCACTACTGGGTCAACGCCTACGTCACGCCCGTGTTCGAAGGCAATCAGGTCGTAGGCTATGAATCGGTACGGGTCAAACCCACCGCTGAGCAGATTACCCGAGCCGAAGCCCTTTATAAGCGCCTCAACCAAGGCAAATCCGCAGTGCCGGGCAGCGATAAATGGCTGCCGATGCTGCAGGACTGGCTGCCGTTCATCCTGGTCAGCCAGTTGAGTTTCGTTGTCGGCGCTTTTTTCACCTCTTCTTGGGGGTTTGCCCTCGCCGGCCTGCTGTCGGTGCCGTTGGGACTGCTGGGCCTGCAGTGGCAGCAACGCGGTATCAAGCGCCTGCTGCGCCTGGCCGAACAAACCACCTCGGACCCGTTGATCGCACGGATGTTCACCGATAGCCGCGGCGTCCAGGCACGCCTGGAGATGTCGATCCTGAGCCAGGAAGCCCGCCTCAAAACCTGCCTGACCCGCCTGCAGGACACTGCCGAGCACCTGAACGGCCAGGCGCGCCAATCCAGCGCGTTGGCCCACGACAGCTCCAGCGGCCTGGAGCGCCAGCGGGTGGAAACCGAACAAGTGGCCACCGCCATCAACCAGATGGCCGCGACCACCCAGGAAGTCGCCAGCCACGTGCAGCGCACCGCCGATGCCACCCAAGAGGCCAATCGCCTGACGGGACGCGGTCGCGACATTGCAGGCGAAACCCGCGAGGCCATCGAGCGACTGTCGGTCGTCGTGGGCGAGACCGGGCAGACCGTGACCCAGTTGGCCAAGGACAGCGATGAAATCGGTGGCGTGGTTGACGTGATCAAGGGCATCGCCGACCAGACCAACCTGCTGGCCCTCAACGCCGCCATCGAAGCGGCCCGCGCCGGCGAGATGGGACGCGGGTTTGCCGTCGTCGCCGATGAAGTGCGGCAATTGGCCCAACGCACCAGCGAGTCCACTGGGCAGATCCATGCATTGATCGCCAAACTGCAACAGACCGCCACCAACGCCGTGCAGACCATGGACGCCGGTCATCGCCAGGCTGAAGAAGGCGTTGCGCGGGTCATGGAAGCCGACCAGGCACTGGCGGGGATCAGCGAAGCGGTGGCACACATCACCGACATGACCACTCAGATCGCCGCCGCGACCGAGGAACAAAGTTCGGTGGCCGAGGAAATCAGCCGCAACATCAGTAACATCTCGGAACTGGCTGACCAGACCTCCGGGCAGGCCCACAGCTCGGCGCTGCTGAGCGAAGAACTGACCCGCACGGCCAACACGCAGTATTCGTTGGTGGAGCGGTTTAACCGCTGA	MRNNQPITQRERTFPAQQRLISTTNAKGVITYCNDAFIDISGFTKEQLIHSPHNLVRHPDVPSAVFTHMWNTLKQGLPWMGIVKNRCQNGDHYWVNAYVTPVFEGNQVVGYESVRVKPTAEQITRAEALYKRLNQGKSAVPGSDKWLPMLQDWLPFILVSQLSFVVGAFFTSSWGFALAGLLSVPLGLLGLQWQQRGIKRLLRLAEQTTSDPLIARMFTDSRGVQARLEMSILSQEARLKTCLTRLQDTAEHLNGQARQSSALAHDSSSGLERQRVETEQVATAINQMAATTQEVASHVQRTADATQEANRLTGRGRDIAGETREAIERLSVVVGETGQTVTQLAKDSDEIGGVVDVIKGIADQTNLLALNAAIEAARAGEMGRGFAVVADEVRQLAQRTSESTGQIHALIAKLQQTATNAVQTMDAGHRQAEEGVARVMEADQALAGISEAVAHITDMTTQIAAATEEQSSVAEEISRNISNISELADQTSGQAHSSALLSEELTRTANTQYSLVERFNR	PGPT0015700_781	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	METHYL-ACCEPTING_CHEMOTAXIS_PROTEINS,PGPT0015700-aer-K03776	NA	NA
D1-36_03301	693			hypothetical protein	ATGGACAAACAGCACAAGGCCAGTATTGACGGGGATCAATGGGCGCGATGCGTGGCGGAACATGGTTGGCTGTGGACGGCCGCCAAGCCAGGTGCTGGCGCCGAGTCGCCGACCCTGATCCTGGCCCATGGCGCCGGCGCACCGATGGACAGCGGTTTCATGGCGCAAATGGCCACCCGCCTAGGTGCACAGGGCGTCAATGTGTTGCGCTTCGAGTTTCCCTACATGGCCCAGCGGCGCGTGGACGGCGGCAAGCGTCCACCGAACCCTGCGCCAAAGCTGCTGGAATGCTGGCGAGAGGTGTACGCCACCGTGCGGCCTTATGTCGCTGGGCGGCTGGCCATTGGCGGCAAGTCCATGGGCGGGCGCATGGCTAGTTTGGTGGCTGATGAGCTGGGCGCCGATGCGCTGGTGTGCCTGGGCTATCCCTTCTACGCGGTAGGCAAACCGGAGAAACCGCGGGTCGAGCACTTGGCAACGTTGAAGACCCGAACCTTGATCGTCCAGGGTGAGCGGGATGCGTTGGGCAATCGGGAGGCGGTGCAGGGCTACACGTTGTCACCGGGCATCGAGGTCATGTGGCTGGTGGCGGCGGATCATGATCTGAAGCCGTTGAAGGCGTCGGGGTTTAGTCATGAGCAGCATTTGGAGGCGGCGGCGCAGGCGGTGGCCGGGTTTGTGTCTCAAGACTGA	MDKQHKASIDGDQWARCVAEHGWLWTAAKPGAGAESPTLILAHGAGAPMDSGFMAQMATRLGAQGVNVLRFEFPYMAQRRVDGGKRPPNPAPKLLECWREVYATVRPYVAGRLAIGGKSMGGRMASLVADELGADALVCLGYPFYAVGKPEKPRVEHLATLKTRTLIVQGERDALGNREAVQGYTLSPGIEVMWLVAADHDLKPLKASGFSHEQHLEAAAQAVAGFVSQD				NA	NA	NA	NA	NA
D1-36_03302	1425	ccoN1_1	COG3278	Cbb3-type cytochrome c oxidase subunit CcoN1	ATGAACACTTCTATCAGTACCGCCTACAACTACAAGGTGGTCCGCCAATTCGCCATTATGACGGTGGTGTGGGGCATCGTCGGCATGGGACTCGGGGTTTTTCTCGCGGCCCAGTTGGTCTGGCCGCAGCTCAACTTCGATTTGCCTTGGACCAGCTTCGGCCGCCTGCGCCCGTTGCACACCAATGCGGTGATCTTTGCCTTCGGCGGTTGCGCGTTGTTTGCGAGTTCGTTTTATTCAGTGCAGCGCACCTGCCAGACAACGTTGTTCGCGCCGAAAATCGCCGCATTCTGCTTTTGGGGCTGGCAGCTTGTGATCCTGCTGGCGGCCATCAGCCTGCCGCTGGGCTACACCAGTTCCAAGGAATACGCCGAATTGGAATGGCCGATCGACATTCTGATCACCATCGTCTGGGTCGCCTACGCCATCGTGTTCTTCGGCACCGTGGCCAAGCGTAGGACCAAGCACATCTACGTCGGTAACTGGTTCTTCGGCGGGTTCATCCTGACCGTGGCGATCCTGCACATCGTCAACAACCTGGAATTGCCGGTGAGCCTGACCAAATCCTACTCGGTGTATGCCGGGGCCACCGATGCGATGGTGCAATGGTGGTACGGCCACAACGCCGTAGGCTTTTTCCTCACCGCAGGCTTCCTGGGGATGATGTATTACTTCGTGCCGAAACAGGCCGAGCGCCCGGTGTATTCGTATCGTCTGTCCATTGTCCACTTCTGGGCGCTGATTACGCTGTATATCTGGGCCGGCCCGCACCACCTGCACTACACCGCGCTGCCGGATTGGGCGCAATCGCTGGGGATGGTGATGTCGCTGATCCTGCTGGCGCCAAGCTGGGGCGGCATGATCAACGGCATGATGACCCTCTCGGGCGCCTGGCATAAATTGCGCAGCGACCCGATCCTGCGCTTTCTGGTGGTGTCCCTGGCGTTCTACGGTATGTCGACCTTCGAAGGGCCGATGATGGCGATCAAGACCGTCAACGCCCTCTCCCACTACACCGACTGGACCATCGGCCACGTACACGCCGGCGCACTGGGCTGGGTGGCGATGATTTCCATCGGCGCGCTGTACCACATGATCCCCAAAGTCTTCGGCCGCACGCAGATGCACAGTATCGGCCTGATCAACGCGCACTTCTGGCTCGCAACCATCGGCACCGTTTTGTACATCGCCTCGATGTGGGTCAACGGCATTGCCCAGGGCCTGATGTGGCGTGCGGTGAACGAAGACGGCACGCTCACCTACTCCTTCGTCGAAACCCTGGTGGCCAGCCACCCAGGCTTCATCGTGCGGCTGGTAGGCGGGGCGATCTTCCTCAGCGGCATGTTGCTGATGGCCTACAACACCTGGCGCACCGTGCGGGCCTCTCAGCCTGCCGAAGCCACCGTTGCCGCGCAGATGGCTTGA	MNTSISTAYNYKVVRQFAIMTVVWGIVGMGLGVFLAAQLVWPQLNFDLPWTSFGRLRPLHTNAVIFAFGGCALFASSFYSVQRTCQTTLFAPKIAAFCFWGWQLVILLAAISLPLGYTSSKEYAELEWPIDILITIVWVAYAIVFFGTVAKRRTKHIYVGNWFFGGFILTVAILHIVNNLELPVSLTKSYSVYAGATDAMVQWWYGHNAVGFFLTAGFLGMMYYFVPKQAERPVYSYRLSIVHFWALITLYIWAGPHHLHYTALPDWAQSLGMVMSLILLAPSWGGMINGMMTLSGAWHKLRSDPILRFLVVSLAFYGMSTFEGPMMAIKTVNALSHYTDWTIGHVHAGALGWVAMISIGALYHMIPKVFGRTQMHSIGLINAHFWLATIGTVLYIASMWVNGIAQGLMWRAVNEDGTLTYSFVETLVASHPGFIVRLVGGAIFLSGMLLMAYNTWRTVRASQPAEATVAAQMA	PGPT0001055_1523	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0001055-fixN|ccoN-K00404	NA	NA
D1-36_03303	609			hypothetical protein	ATGAAACACGAAACAATCGAAAAAAACGTCGGCCTGCTGATGCTGCTGATGGTCCTGGCCGTGAGTATCGGGGGCTTGACCCAGATCGTGCCGCTGTTCTTCCAGGACGTGACCAATAAACCGGTGGACGGCATGAAACCCTACACCGCCCTGCAGTTGGAAGGCCGCGACATTTACATCCGCGAAGGCTGCGTCGGCTGCCACTCGCAGATGATTCGTCCGTTTCGCGCCGAGACCGAGCGCTACGGCCACTACTCGGTGGCCGGCGAAAGCGTCTGGGATCACCCGTTCCTTTGGGGCTCCAAGCGCACTGGCCCGGACCTGGCCCGGGTCGGCGCGCGTTACTCCGATGATTGGCATCGCGCGCACTTGTACAACCCGCGCAACGTCGTGCCCGAATCGAAAATGCCGGCCTACCCGTGGCTCGTCACCCAAGCCGTCGACAGCAGCCACACCGAAGGCAAGCTGCGCGCCATGCGCACCCTCGGCGTGCCGTACACCGACGATGACATCGCAGGCGCGACGGCCACGCTCAAGGGCAAGACCGAAATGGATGCGCTGGTGGCCTACCTGCAAGTGCTTGGCACTGCCATCAAGAGCAAGAGGTGA	MKHETIEKNVGLLMLLMVLAVSIGGLTQIVPLFFQDVTNKPVDGMKPYTALQLEGRDIYIREGCVGCHSQMIRPFRAETERYGHYSVAGESVWDHPFLWGSKRTGPDLARVGARYSDDWHRAHLYNPRNVVPESKMPAYPWLVTQAVDSSHTEGKLRAMRTLGVPYTDDDIAGATATLKGKTEMDALVAYLQVLGTAIKSKR	PGPT0000152_1386	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000152-fixO|ccoO-K00405	NA	NA
D1-36_03304	201			hypothetical protein	ATGGTGCTTGAAATGAGTACCGGAATGATCCGCGGTCTGGGCACCGTCGTGGTGTTCATCGCTTTCATCGGCCTGGTCCTGTGGGTGTTCAGCAGCAAGCGCGGCCCGGAATTCGCCCAGGCACGCCTGCTGCCGTTTGCCGATGAGCCGCCCGCCGACCTCATCCCCCAAGACCCTGAACCAAGGAGTACCCGGTCATGA	MVLEMSTGMIRGLGTVVVFIAFIGLVLWVFSSKRGPEFAQARLLPFADEPPADLIPQDPEPRSTRS	PGPT0000154_233	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000154-fixQ|ccoQ-K00407	NA	NA
D1-36_03305	954	ccoP1		Cbb3-type cytochrome c oxidase subunit CcoP1	ATGACCACTTTCTGGAGTACGTGGATCTGCGTACTGACCCTCGGCAGCCTCATCGGCCTGACCTGGCTGCTGATCGGCACCCGCAAGGGCGAGACCAAGGGCAGCGTCGACCAGACCATGGGCCACAGCTTCGACGGTATCGAGGAATACGACAACCCGCTGCCGCAATGGTGGTTCCTGTTGTTCGCCGGCACCTTGGTGTTTTCCGTTGGCTACCTGATTCTCTATCCGGGCCTGGGCAACTGGAAAGGCATCCTGCCCGGCTACGACAACGGCTGGACCGGCGCCCATGAATGGGAAAAGGAAATGGCCAAGGCTGACGCCAGGTTCGGGCCAATCTTCGCCAGGTTCTCCGCGATGCCGGTGGAAGAAGTCGCCAAGGATCCGCAAGCCTTGAAAATGGGCAGCCGCTTGTTCGCTTCCAACTGCTCGGTCTGCCATGGCTCGGACGCCAAGGGCGCCTTCGGCTTCCCGAACCTTGCCGACAGTAACTGGCGCTGGGGCGGCAATGCCGAAACCATCAAGGCGACCATCATGGGCGGCCGCATGGCAGCGATGCCCGCCTGGGGCGACGTGTTCGGAGATGCCGGGGTCAGGAACGTCGCCGCGTATGTGCGACACGATCTGGCAGGCCTGCCGCTACCGGCGGACAGCGGTGCCGACCTGCAAGCCGGCCAGCAAGCGTTCAGCACCACCTGCGTCGCCTGCCACGGCGCCAACGGCCAGGGCACCGAAGCCATGGGCGCGCCGAACCTGACGCAACCGGCCGGCTTCATCTACGGCACCAGCCTGGCCCAATTGCAGCAGACCATTCGCCATGGTCGCCAAGGCCATATGCCTGCGCAGAATGAACTGCTTGGCAATGATAAGGTGCAACTGCTCGCGGCTTACGTCTACAGCCTGTCCCAGGGTGCCGGCACCGAGCGCCTGCAAGCGGAACACAAAAGCGAATAA	MTTFWSTWICVLTLGSLIGLTWLLIGTRKGETKGSVDQTMGHSFDGIEEYDNPLPQWWFLLFAGTLVFSVGYLILYPGLGNWKGILPGYDNGWTGAHEWEKEMAKADARFGPIFARFSAMPVEEVAKDPQALKMGSRLFASNCSVCHGSDAKGAFGFPNLADSNWRWGGNAETIKATIMGGRMAAMPAWGDVFGDAGVRNVAAYVRHDLAGLPLPADSGADLQAGQQAFSTTCVACHGANGQGTEAMGAPNLTQPAGFIYGTSLAQLQQTIRHGRQGHMPAQNELLGNDKVQLLAAYVYSLSQGAGTERLQAEHKSE	PGPT0000153_416	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000153-fixP|ccoP-K00406	NA	NA
D1-36_03306	1443	ccoN1_2	COG3278	Cbb3-type cytochrome c oxidase subunit CcoN1	ATGAGCACAGCAATCAGTCCGACTGCTTATAACTATAAGGTAGTCCGCCAGTTCGCCATCATGACGGTGGTCTGGGGGATCCTTGGCATGGGGCTCGGTGTCTTCATCGCCTCGCAACTGGTCTGGCCGGAGTTGAACTTCGATCTGCCATGGACGACATTTGGACGCCTGCGCCCGCTGCACACCAACCTGGTGATCTTCGCCTTCGGTGGTTGTGCGTTGTTTGCCACTTCTTATTACGTCGTGCAGCGAACCTGCCAAACGCGACTGATTTCCGACAGCCTCGCCGCCTTCACCTTCTGGGGTTGGCAAGCGGTGATCGTTGGCGCGATCGTGACCTTGCCAATGGGTTTCACCACCACCAAGGAATACGCGGAACTGGAATGGCCCCTGGCTATCCTGCTGGCCATCGTCTGGGTGACCTACGGTTTGGTGTTCTTCGGCACCATCGTCAAGCGCAAGACCAAGCACATCTATGTCGGCAACTGGTTCTACGGCGCGTTCATCGTCGTGACCGCCATGTTGCACATCGTCAACCACGCGTCCCTGCCGGTCAGCTTCTTCAAGTCTTACTCGGCCTATTCGGGCGCCACCGACGCGATGATCCAATGGTGGTACGGCCACAACGCCGTGGGCTTCTTCCTGACCACCGGCTTTCTGGGGATGATGTACTACTTCGTGCCGAAACAGGCCGAGCGTCCGATCTACTCCTATCGTCTGTCCATCGTGCACTTCTGGGCGCTGATCACCCTGTACATCTGGGCCGGCCCTCACCACCTGCACTACACCGCGCTGCCGGACTGGGCGCAGTCCCTGGGCATGGCGATGTCGATCATCCTGCTGGCGCCAAGCTGGGGCGGCATGATCAACGGCATGATGACCCTCTCGGGCGCCTGGCATAAGCTGCGCACCGACCCGATCCTGCGGTTCCTGGTGGTGTCTTTGGCGTTCTACGGCATGTCGACCTTCGAAGGCCCGATGATGGCCATCAAGACCGTCAACTCCTTGAGCCACTACACCGACTGGACCATCGGCCACGTACACGCCGGCGCCCTCGGCTGGGTAGCGATGATTTCCATCGGCGCCATCTACCACATGATCCCGAAACTGTTCGGTCGCGCGCAGATGCACAGCACTGGCCTGATCAACGCGCACTTCTGGCTCGCGACCATCGGCACCGTGCTGTACATCGCCTCGATGTGGGTCAACGGCATTACCCAAGGCCTGATGTGGCGTGCGATCAACGATGACGGCACCCTGACCTACTCGTTCGTCGAAGCGCTGCAAGCCAGCCACCCGGGCTTTATTGTCCGTGCCCTGGGCGGCGCGTTCTTCGCCAGCGGCATGCTGCTGATGGCTTACAACGTATTGCGCACCGTTCGTGCCTCTGACCCGGCTGAAGCTGAAGCCGCTGCCAAGATCGCCGTTGTTGGAGCTCACTGA	MSTAISPTAYNYKVVRQFAIMTVVWGILGMGLGVFIASQLVWPELNFDLPWTTFGRLRPLHTNLVIFAFGGCALFATSYYVVQRTCQTRLISDSLAAFTFWGWQAVIVGAIVTLPMGFTTTKEYAELEWPLAILLAIVWVTYGLVFFGTIVKRKTKHIYVGNWFYGAFIVVTAMLHIVNHASLPVSFFKSYSAYSGATDAMIQWWYGHNAVGFFLTTGFLGMMYYFVPKQAERPIYSYRLSIVHFWALITLYIWAGPHHLHYTALPDWAQSLGMAMSIILLAPSWGGMINGMMTLSGAWHKLRTDPILRFLVVSLAFYGMSTFEGPMMAIKTVNSLSHYTDWTIGHVHAGALGWVAMISIGAIYHMIPKLFGRAQMHSTGLINAHFWLATIGTVLYIASMWVNGITQGLMWRAINDDGTLTYSFVEALQASHPGFIVRALGGAFFASGMLLMAYNVLRTVRASDPAEAEAAAKIAVVGAH	PGPT0001055_1017	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0001055-fixN|ccoN-K00404	NA	NA
D1-36_03307	609			hypothetical protein	ATGAAGCACGAAGCAGTAGAGAAGAATATCGGCCTGCTGGCCTTCTTCATGGTTATCGCCGTCAGCATCGGCGGCCTGACCCAGATCGTTCCGCTGTTCTTCCAGGACGTGACCAACAAGCCGGTCGAAGGCATGAAGCCGCGCACCGCCCTTGAACTCGAAGGCCGCGACGTCTACATCGCCAACGGTTGTGTCGGCTGCCATTCGCAGATGATCCGTCCGTTCCGCGCCGAGACCGAACGCTACGGCCACTACTCGGTCGCCGGTGAAAGCGTCTGGGACCACCCGTTCCTGTGGGGTTCCAAGCGTACCGGTCCGGACCTGGCCCGCGTGGGCGGCCGCTACTCCGACGACTGGCAGCGTGCGCACTTGTACAACCCGCGCAACGTCGTGCCTGAGTCGAAAATGCCGGCTTACCCGTTCCTCGTAGAAAACAAGCTCGACGGCAAAGACACCGCCAAGAAAATGGAAGTCCTGCGCTCCCTGGGCGTTCCCTACACCGACGAAGACATCGCCGGCGCCAGGGATGCCGTGAAGGGCAAGACTGAAATGGACGCGCTGGTGGCCTATCTGCAAGGCCTGGGCACCATCATCAAAAGCAAACGGTGA	MKHEAVEKNIGLLAFFMVIAVSIGGLTQIVPLFFQDVTNKPVEGMKPRTALELEGRDVYIANGCVGCHSQMIRPFRAETERYGHYSVAGESVWDHPFLWGSKRTGPDLARVGGRYSDDWQRAHLYNPRNVVPESKMPAYPFLVENKLDGKDTAKKMEVLRSLGVPYTDEDIAGARDAVKGKTEMDALVAYLQGLGTIIKSKR	PGPT0000152_1314	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000152-fixO|ccoO-K00405	NA	NA
D1-36_03308	174			hypothetical protein	ATGATTCGTGGCCTGGGCACCGTCGTCGTGATGGTGGCCTTCATCGGCCTGGCTCTGTGGGTGTTCAGCCCCAAGCGCAAGTCGGAGTTTGACGACGCGACCTTGCTGCCGTTCGCGGACGATCCCGAAGCCATCAAGCACGTCGAGCAAGCTTCTAGGAGTAACAAAGAATGA	MIRGLGTVVVMVAFIGLALWVFSPKRKSEFDDATLLPFADDPEAIKHVEQASRSNKE	PGPT0000154_553	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000154-fixQ|ccoQ-K00407	NA	NA
D1-36_03309	984	ccoP2	COG2010	Cbb3-type cytochrome c oxidase subunit CcoP2	ATGACTACGTTCTGGAGTCTGTACGTCACAGTCCTCAGCCTGGGAACGATCTTCGCCCTGACCTGGCTGCTGCTGTCGACCCGTAAGGGCCAGCGCAGCGAAGCCACCGAGGAGACGGTCGGCCACTCCTTCGACGGGATCGAGGAGTACGATAACCCGCTGCCGAAGTGGTGGTTCATGCTGTTCGTGGGCACCATCATCTTCGCCCTCGGCTACCTGGTGCTCTACCCCGGCCTGGGTAACTGGAAGGGCCTGCTGCCAGGCTATAACTACCTGGACACCGAAAAGCAGACCCCTTTTGCCAACGGCCAGACCGGCTGGACTGGCGTGCATGAATGGGAAAAGGAAATGGCCCGCTCGGATGCCAAGTTCGGTCCGATCTTCGCCAAGTTCGCTTCCATGCCGATCGAAGAAGTCGCCAAGGACCCGCAAGCCTTGAAGATGGGTGGCCGCCTGTTCGCTTCCAACTGCTCGGTCTGCCACGGCTCCGACGCCAAGGGTGCCTATGGCTTCCCCAACCTGACCGACGCCGACTGGCGCTGGGGCGGCGAGCCGGAAACCATCAAGACCACCATCATGGGCGGCCGTCACGCCGTCATGCCGGGCTGGGCTGCCGTGGTTGGCGAACAAGGCGTTGCCGACGTGGCTTCCTACGTCGTGACCGGCCTGCACGGTCGCAAACTGCCGGAAGGCGCCAAGGCGGATCCGGCCAATGGCCAGAAACTGTTCGCAGCCAACTGCGTGGCTTGCCACGGTCCGGCCGGCAAAGGCACGCCCGCCATGGGCGCACCTGACCTGACGCACCCGGCCGGCTTCATCTACGGTTCGAGCTTCGCCCAGCTGCAGCAGACCATCCGCTACGGTCGTCAAGGCCAGATGCCGGCCCAGGCCGACATGCAAGGCAATGACAAGGTCCACCTGTTGGCCGCCTACGTCTATAGCCTGTCACATGGCGAAAAGGCTCCGGCCGCTGACGCTCAGTAA	MTTFWSLYVTVLSLGTIFALTWLLLSTRKGQRSEATEETVGHSFDGIEEYDNPLPKWWFMLFVGTIIFALGYLVLYPGLGNWKGLLPGYNYLDTEKQTPFANGQTGWTGVHEWEKEMARSDAKFGPIFAKFASMPIEEVAKDPQALKMGGRLFASNCSVCHGSDAKGAYGFPNLTDADWRWGGEPETIKTTIMGGRHAVMPGWAAVVGEQGVADVASYVVTGLHGRKLPEGAKADPANGQKLFAANCVACHGPAGKGTPAMGAPDLTHPAGFIYGSSFAQLQQTIRYGRQGQMPAQADMQGNDKVHLLAAYVYSLSHGEKAPAADAQ	PGPT0000153_166	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000153-fixP|ccoP-K00406	NA	NA
D1-36_03310	270			hypothetical protein	ATGGGGTACGCCACCATGTCCGTCACTACCATTTCCAGCCGCGAATTCAACCACGACACAAGTGGTGCCAAAAAAGCCGCCCGTGAAGGGCCGGTGATCATCACCGATCGTGGCAAGCCGGCCCATGTGCTGCTAAGCATTGAGGAGTACCAGAAACTGACCGGCATTGGCGCCAGTATTGTCGAGTTGCTGGTCATGCCCGACGCGTCGGATATCGACTTCGATCCCGAACGTGCCGTCATCACTCCCCGATCGGTCGACCTGTCCTGA	MGYATMSVTTISSREFNHDTSGAKKAAREGPVIITDRGKPAHVLLSIEEYQKLTGIGASIVELLVMPDASDIDFDPERAVITPRSVDLS				NA	NA	NA	NA	NA
D1-36_03311	411	fitB_2		Toxin FitB	ATGTTTCTACTCGATACCAATGTCATCTCGGAGCTGCGCAAAACCCAAGCCGACAAGAACGTGCAGGCTTGGGCACGCAGCGTCCCCGCCCCCAGCCTCTACGTCTCGGCCATTACCGTGTTGGAGCTGGAAACCGGCGTCTTGCGCATCGAACGCAAGGACCCGGTGCAAGGCAGTCGCCTGCGCGCATGGCTGGACAACCACGTCATGCCCACGTTTGCCGGCAGGATTCTCGCCGTCGACCGCGCCGTTGCGCTTCGCTGCGCACGTCTTCACGCTCTCGACCGCAGCAATGAATGCGATGCTTTGATTGCCGCCACCGCGTTGGTTCACGGGCTGACCGTGGTGACCCGCAACGTGACGGATTTCCAGAGCAGCGGCGTGGCGTTGCTCAACCCTTGGTCAAGCTGA	MFLLDTNVISELRKTQADKNVQAWARSVPAPSLYVSAITVLELETGVLRIERKDPVQGSRLRAWLDNHVMPTFAGRILAVDRAVALRCARLHALDRSNECDALIAATALVHGLTVVTRNVTDFQSSGVALLNPWSS	PGPT0027670_412	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-FitB-FitA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027670-toxin_fitB|vapC-K07062	NA	NA
D1-36_03312	4419			hypothetical protein	ATGTCTGACGCGCTCTGGGCTGCCCGCCTGGGCGACGCGCTGAACCACACTTCAATGATGGCCGACATTCTCGGCGGCGTGCTGGAGGTGGCGGCGAACATCGCGATCACTGCCGTGGCGACCGCCGCGGTGGTCGCCGCCACGGGCATTACCGTGGTCACTGGCGGCCTGGGCTGCTTCGTGCTCGGCCTGGTGGTGGGAACGGTGGTCGGCCTGGCCATGAGCAAGACCGGGGCCGATAAAGGCTTGAGCAATATATGCGAAGGCATCGGCAACGCCCTCTTTCCGCCCACGGTGCAGGCCAACATCCTCACCGGGTCCACCGACACCCTCACCAACAACATACCCGCCGCCCGCGCCGCCGGAGCGATTCAATCCCATGTCGCCCCGGCCGGCACCGAGCTCGAAGCCTCCGAGCCAGAAGAAGAACCCAGCTACCTGGACATGGCCGGGTCATTCTTCTCGCAGATGTGGCGTCCTACCGTCGCCACGCCCGCGCCGGGCGCCGTACCCAAGCCCGAAGACTTGGTCATCTGCACGAAGCACCCGCCGATGCCCCCGCAATTCATGGCCGAGGGCTCGGACAAGGTCACCATCAACGGCCAGCCCGCCGTGCGCAGCGGCGACCGCAGCACGTGCGACGCGACGGTGGTGTCGTCCGGGCTGATCTCACCGGACGTGACCATCGGCGGCGGTTCGGTGGTAGTGCGCGAGATCCGCAGCGGCAAGACCCCGGGCGTGGGGTTGGCGGTCACGGCGCTTTTGATGCTCAAGGGCGGCAAAGGCAAGTTCTTCAGCAAATTGCCCTGCATGTTGGTGGGCGGCGCGGTGTCCATGGCCGCCAGCAGTGCGGCGAACGCGGCTGCCAACGCCGCCCTGGGCTCGCCGAACCCGGTGCATGCCGCCACCGGCGCCAAGGTGCTGGGTGGTGATGAAGAGCTGGACTTCGTCTTGCCCGGCATCCTGCCGATAAACTGGCAGCGTTTCTACAACAGCCGCGACGAACGTCACGGCAGCCTGTTCGGTGCCGGGTGGAGCGTGAGCTATGAGGTAAAGGTCGAAATCCTCCCTCACCCCGACGGCGGCGAAACCCTGGTCTACACCGATGAACAGGCGCGCCCCATCGACATGGGCTCGATCCCATTGGGCGGCGCAGTGTTCAGCGCCGGCGAGGGTCTGGCCGTGCGCCGTCACGCGAACGGGCAATTGCTGATCGAAAGCGACGACGGCCTGTACCGTTTGTTCGAACCCACGCCGGTCAACCCGGCACACCTGCGCCTGAGCCAACTGGGTGACCGCAACGACAACCGTATCCACCTCGACTATGACGACGCCGGACGCCTGGTGCGGCTGCGCGACACCTTCGATCTGGTGCAGGTCGAGTTGATACGCGAAGGCGAACGCGTCAGCCGGATCGAACGTCTTTATCCTGATCAATCGCGGGAAGTGCTGGTCAGCTACGCCTACGACGCCGCATGCAACCTCGCCGAAGTACGCGACGCTGGCAACCAGATGCAACGGCGTTTCAGCTATGACGCCGGGCAGCGGATGGTCGAGCACCAATTGCCCACCGGCCTGCGCTGCTTCTATGAGTGGGCCTTGATCCAAAGCCAGGAATGGCGCGTGGTCCGGCACTGGACCGACGAGGGCGACGCCTACCAGTTCGACTATGACCTGCACGCCGGTATCACTCGCATCAGCGACAGCCTGCAACGCGTCAGCATTCGGCACTGGAACAGCCAGCACCAGATCATCCGGTTCAGCGACAACCTCGGCCAGACGTGGCTGTTCGAATGGAATGATGAACGTCAGTTGCTCAGCGCCACCGATCCACAAGGTGGCCTGTATCAGTTCAGCTATGACGATGCCGGCAATCTGATCAGCGAAACCGACCCGATGGGCCGCAGCGAATCCACCCTCTGGCTCGAACATTGGGCACTGCCGCTGGTGGACACCAACGCCGCCGGCCACAGCTGGAAATACCGCTACGATCAACGCGGCAATTGCACCGCGCAAACCGACCCGCGGGGCCACATCACCCACTATCGCTACGACGCCCACGGCCAGGTCGTGGAAATCATCGACGCCACCGGCAAAAACAAAAAGCTGCGCTGGAACCCGTTTGGGCAATTGGTTGAACACGTCGATTGCTCGGGTTATCCGACGCGTTTCAGTTATGACCAGCGAGGCTACCTGCAAACCATCACCGATGCCCTCGGCGAGCGCACCCAATTCAGCTACGACGCCCAAGGGCGCTTGCTCAGCAGCCAATTGCCGGACGGCCGCACCGAGCACTATCAGCGCGACACCGCAGGCCAACTCACCGGCTACACCGACCCGGCCGGGCACACCACGCTTTACCAGCACAACCGCCGCGGTCAGGTCCGCCAACGCACCGACGCCCAGGGCCGGCAAGTGCAGTTCGCCTACGACAGCTTCGGCCGGCTGCAAGCGCTGACCAATGAGAATGGCGAGAGCTACCGGTTTGCCTGGGATATCGCCAATCGGTTGAGCGAACAACAAGACCTGGATGGCAGCGCCAAGCGCTACGACTATGACCGCCTCGACAACGTCGCGGCAGTGACGGCGATGCCTGCACCGTACGGCACGGGCCTGGCGCTCATTCCCGAAATACCGCCGGCGCCCATCGTCCATCGCCTGGAACGCGATGCCGTGGGTCGGCTGATCGCCAAAGTCACCGACGATGGCCGCACTGAATACAGCTACGATCCGCTGGACCAACTCACCGCCGTCACCTTCACCGACCTGCAAGGCAACGCGCAAACCCTGAGCTTCGCCTACGACGCCCTCGGCCAGTTGCTCGCCGAAAACAGCGCCGCCGGCAGCCTGCAACACCACTACGACGAACTCGGCAACCTGATCCAGACCCAACTGCCCGATGGCCGCTGGGTCAACCGCCTGTACTACGGCAGTGGTCATCTGCACCAGATCAACCTCGACGGCCAGGTCATCAGCGACTTCGAACGCGACCGCCTGCACCGCGAAGTGCTGCGTACCCAAGGGCAGATCAGCACCCGCAGCGAATACGACCGCAGCGGTCGCCTGCGCACGCGACAACGCCGCCACAGCGGCCAACCCTCGCTGTTGCCGGCGGCGGTGCAAAAACACTTCGAGTACGACCCCGCCGACAACCTCATCGGCAAACTCGACCAGCAACCCGCCGCGCAACAGCGCCAGCTCCTGCACTACGACGCCACCGGTCGCATCATCGCCAGCCAGGACAGCCTGCACGGCCAGCGCGAAACCTTCACCTACGACGCCGCCGCCAACCTGCTGGACGGCCCGGCCCCCGGCGCCGGATTGGTGGTGCACAACAAACTGCTGACCTACCAGGACAAGCGCTACCGCTACGACGCCTTCGGCCGGATGATCGAAAAACGCAGCGCCAAACGTGGCGTGCAGCACTTTGCCTACGACGCCGAAAGCCGCTTGATCGAGGTGCGCAATGACAACGGCAGCGTGGTCAAAATGGCCTACGACCCGCTGGGCCGGCGCATCGAAAAAACCGAACACGACAGCCACGGCTACCCGCTGGGGGAAACCCGCTTCACCTGGGATGGCATGCGCTTATTGCAGGAAAGTCGATACAACCAGACTAGCCTTTATCTTTATACGGATAACACCTACGAACCCCTTGCGCGGATAGATGGATACGGTGCGCATCAGAAAGTCCGTTATTACCACAACGACCTGAACGGCCTGCCCGAACAACTCACAGAAGTCGACGGACGAAGCGTCTGGCAAGCTCGCTTTGAGGTCTGGGGTAACCCTCTTCAGGAAATTCGTGAACCCTACTTCATTGAAGAGCAAAACCTGAGGTACCAAGGACAGTATCTCGATCGAGAAATTGGGCTGCACTACAACGTTCTCAGGTTTTACGATCCTGACGTGGGTCGCTTCACTACGCCCGATCCAATAGGCTTGGCTGGAGGCCTAAATTTCTATGCCTATGCGCCCAACCCTATCGGCTATGCAGACCCTCTAGGCCTTGCAGTCGACCCGCTGATAAAACTGAAAGACCGTGGGTACACCGGCGTCACGAAGACACCTGGTGGAGGTCTCGACTATTCTGAAAGTAACGCGCTTTACAACAAAAAATCCGGCGTGAACCCAATCGTTAGAATTGAATACACTGGCGACTACGGGAAGGACTTCGAGGCCGCAAACAAGGCGGCCAAGTTGAGTCAAAAAACTACGCCATCCGGCCACGTATGGCACCACTTGGATGATTACGACCCGAAGACCAACACAGGCACGATGCAGCTCATCAAGCAAAACGCCCACAGCGGCATAAGCCATAACGGCGGTGTAGCTCAATACAAAGCAGCTACGGGCAAGGCCTACACCCACCCAGCTCGTTTCAAGAGCAGAACAAAAGGAGCATCCAAATGCGGCTGA	MSDALWAARLGDALNHTSMMADILGGVLEVAANIAITAVATAAVVAATGITVVTGGLGCFVLGLVVGTVVGLAMSKTGADKGLSNICEGIGNALFPPTVQANILTGSTDTLTNNIPAARAAGAIQSHVAPAGTELEASEPEEEPSYLDMAGSFFSQMWRPTVATPAPGAVPKPEDLVICTKHPPMPPQFMAEGSDKVTINGQPAVRSGDRSTCDATVVSSGLISPDVTIGGGSVVVREIRSGKTPGVGLAVTALLMLKGGKGKFFSKLPCMLVGGAVSMAASSAANAAANAALGSPNPVHAATGAKVLGGDEELDFVLPGILPINWQRFYNSRDERHGSLFGAGWSVSYEVKVEILPHPDGGETLVYTDEQARPIDMGSIPLGGAVFSAGEGLAVRRHANGQLLIESDDGLYRLFEPTPVNPAHLRLSQLGDRNDNRIHLDYDDAGRLVRLRDTFDLVQVELIREGERVSRIERLYPDQSREVLVSYAYDAACNLAEVRDAGNQMQRRFSYDAGQRMVEHQLPTGLRCFYEWALIQSQEWRVVRHWTDEGDAYQFDYDLHAGITRISDSLQRVSIRHWNSQHQIIRFSDNLGQTWLFEWNDERQLLSATDPQGGLYQFSYDDAGNLISETDPMGRSESTLWLEHWALPLVDTNAAGHSWKYRYDQRGNCTAQTDPRGHITHYRYDAHGQVVEIIDATGKNKKLRWNPFGQLVEHVDCSGYPTRFSYDQRGYLQTITDALGERTQFSYDAQGRLLSSQLPDGRTEHYQRDTAGQLTGYTDPAGHTTLYQHNRRGQVRQRTDAQGRQVQFAYDSFGRLQALTNENGESYRFAWDIANRLSEQQDLDGSAKRYDYDRLDNVAAVTAMPAPYGTGLALIPEIPPAPIVHRLERDAVGRLIAKVTDDGRTEYSYDPLDQLTAVTFTDLQGNAQTLSFAYDALGQLLAENSAAGSLQHHYDELGNLIQTQLPDGRWVNRLYYGSGHLHQINLDGQVISDFERDRLHREVLRTQGQISTRSEYDRSGRLRTRQRRHSGQPSLLPAAVQKHFEYDPADNLIGKLDQQPAAQQRQLLHYDATGRIIASQDSLHGQRETFTYDAAANLLDGPAPGAGLVVHNKLLTYQDKRYRYDAFGRMIEKRSAKRGVQHFAYDAESRLIEVRNDNGSVVKMAYDPLGRRIEKTEHDSHGYPLGETRFTWDGMRLLQESRYNQTSLYLYTDNTYEPLARIDGYGAHQKVRYYHNDLNGLPEQLTEVDGRSVWQARFEVWGNPLQEIREPYFIEEQNLRYQGQYLDREIGLHYNVLRFYDPDVGRFTTPDPIGLAGGLNFYAYAPNPIGYADPLGLAVDPLIKLKDRGYTGVTKTPGGGLDYSESNALYNKKSGVNPIVRIEYTGDYGKDFEAANKAAKLSQKTTPSGHVWHHLDDYDPKTNTGTMQLIKQNAHSGISHNGGVAQYKAATGKAYTHPARFKSRTKGASKCG				NA	NA	NA	NA	NA
D1-36_03313	411			hypothetical protein	ATGCGGCTGACCCTCGAAGAATCCGAACACGCCCTCTCTGTGCAAGAGTTGAATGAGTTCCAAGAAAAATTCAATGTGGAATTACCGACAGCCTTTAGGCAATTTTATCTAAAGCACAACGGCGGCGATTTGGCTGAGAGCAATAGCGAGAATGATTTTTTGCTGGGTGGATTCACTCCGATCAAATACGGACAAGCCCCTATCGAAACGGTCTATCGAGACTTGACGGACGACGTTCCGTCGTTAAAGCAAATGATCCCCTTTGCGTACGATCACGGTGGCAATTCCTTCCTGTTATCCGTTAAGGAGGCTGACTTCGGAAATATTTACCTGTACTTGATGGATGAAGAAGATCTGGCGTTCGTATGCGAATCATTTGAAGAATTCCTCGCTGAACTCACGGGTCAATAG	MRLTLEESEHALSVQELNEFQEKFNVELPTAFRQFYLKHNGGDLAESNSENDFLLGGFTPIKYGQAPIETVYRDLTDDVPSLKQMIPFAYDHGGNSFLLSVKEADFGNIYLYLMDEEDLAFVCESFEEFLAELTGQ				NA	NA	NA	NA	NA
D1-36_03314	612			hypothetical protein	ATGAGTATGGAAATTCGCAAGCATCTGGAAGTGAAACTACTGGCGGCGCTGCAGCAAACAACGTCAGCCCACTTGGACCTGAAGGCCAGCAAAAACAAACTTGGCCTGCTCGCTGCCAAGGAAAAATTTGGGGAAATCTACGTTCAACACCTAACCAAGGCCGACGGCTATTACGCGGGGTTGGAGCTCTATACCTGCGAGGCCTTCAGCTTCTGCAAAGAGCAATCCCCGCCCTACGAGAGACGCCTGCTGAATGCATCGTTTTTATCGAAGAGCTCCTTGTCGGAGCAAGCAAAACAATTCGGTGACGAGCCGGGCGGCATCATCAGGACCCCGTCCCCTCAAGCCATCAGCGCAACCGTCAAGAAAATAAGCGAACGGCTCGAGAAATTTTACCTGCCCAAGGCAGAGCACAGCGTTCTTGGCTCCCCCACATTAATCGATGACGTGTTGGCCGAGCCGGATAACTATGCGTTCCCATTCCTGACGATTGTCTTTGCAGCGCACAAAAATAATCTGAGCCTGGATTCGGATTTGCTCAAGAACGCTCTGGCCACTAAATCAATATTCGGAAACAAGCAGTTCGACTTGCCGCTTGCGAAAAACTACTAG	MSMEIRKHLEVKLLAALQQTTSAHLDLKASKNKLGLLAAKEKFGEIYVQHLTKADGYYAGLELYTCEAFSFCKEQSPPYERRLLNASFLSKSSLSEQAKQFGDEPGGIIRTPSPQAISATVKKISERLEKFYLPKAEHSVLGSPTLIDDVLAEPDNYAFPFLTIVFAAHKNNLSLDSDLLKNALATKSIFGNKQFDLPLAKNY				NA	NA	NA	NA	NA
D1-36_03316	360			hypothetical protein	ATGTTCAAAATTACACCGAACCCCCCCGAAACAGAGCGCATCTCTGCGTCCACTCAATCCAAAACGAAGAAACAAGACGAAGCAGAAAAGCGCGCCTTGGATTACTACCTGCTACCGAAACCGGAAAAGTCCGAAGATGCATCCAAACCGGACCTGCTCTTCATCGTGGCAAAAAACGCCGACAACGAATGCCTGCTCGCTAACCTCAGCGAAAACCTGGCATCCGCTGACGCGATGATCAGCAACCTAGCCTTCGACCTCGAAGGCCCCCGCCGCCACATCGCCCTCGGCATCCAGCAATTGATCGAACTGAGTTCAATGCTGGCCAGCCGTGTACTGGATAACGTCGACCCACGCTAG	MFKITPNPPETERISASTQSKTKKQDEAEKRALDYYLLPKPEKSEDASKPDLLFIVAKNADNECLLANLSENLASADAMISNLAFDLEGPRRHIALGIQQLIELSSMLASRVLDNVDPR				NA	NA	NA	NA	NA
D1-36_03317	471			hypothetical protein	ATGATTGATTTTGCAGCCGACATAAAATCCAAGCATTCAATTGCGAACATTTTATTGCAAGACAATATCTCGACCTACATGAATGAGCTCTATGAGCATCATAAAGTCGAGATAAAGAGCTACACGCTACCTGACGGTGAAACTAGAACAGCGTACGTAATCGATAGTACGCTCACCCTCTCAACCCTTCCTGACGGAACAATTTTTTCAATCGGCTGCAACGCGCGATACAAAGGGCTTTACCAAAATACGCTTTCCACAGGAATGCCTTTTGACCAGATAAAGAAGCTGACCGAACGCCAGCGCATATTTAATGGCATCATAATCCTCAACGAGGATTTTGGCTTCTGCTACGTCTTGCCAACACCTTATGACGAGATAGCTGACAGCATCGAAAACATACCGCCTACGCTAACGCTGGATGAAATTTACATATCCGACTTTTCTTCCTGGCTTCATAAACCGCAATAA	MIDFAADIKSKHSIANILLQDNISTYMNELYEHHKVEIKSYTLPDGETRTAYVIDSTLTLSTLPDGTIFSIGCNARYKGLYQNTLSTGMPFDQIKKLTERQRIFNGIIILNEDFGFCYVLPTPYDEIADSIENIPPTLTLDEIYISDFSSWLHKPQ				NA	NA	NA	NA	NA
D1-36_03318	1416			hypothetical protein	ATGAGCAACCAGATTCCGGTACATGACGTTACCCCGCCTGCCAAAGACGCCAACAAAAGCGTCGCCCTGTACGCCTCTCGGGAGAAAATCTACACCCGCGCCTTCACGGGCCTGTTCCGCAACCTGCGAATGGTTGGCGGGGGGTTTCTGTTCCTGCTGTATTTCGGCACGGTCTGGCTGAATTGGGGCGGTCACCAAGCCGTCTGGTGGAACCTGCCTGAACGCAAATTCTTTATTTATGGTGCAACCTTCTGGCCCCAGGACTTCATCCTCCTCTCCGGCATGCTGATCATCGCCGCCTTCGGCCTGTTTTTCATCACGGTATATGCCGGGCGCGTCTGGTGCGGCTACACCTGCCCGCAAAGCGTCTGGACCTGGATCTTCATGTGGTGCGAAAAGGTCACCGAAGGCGACCGCAACCAGCGCATCAAGCTCGACAAGACGTCCATGAGCACCAATAAATTCCTGCGCAAATTCGCCAAGCACAGCCTGTGGCTACTGATCGGTTTCGTCACCGGCATGACCTTCGTCGGTTACTTCACCCCGATCCGCGAACTGGTGTTCGAGTTCTTCACCGGCCAGGCCGATGGCTGGTCGTATTTCTGGGTCGGATTCTTCACCTTGGCCACTTACGGCAATGCCGGCTGGCTGCGTGAACAAGTGTGCATCTACATGTGCCCTTACGCCCGCTTCCAGAGCGTGATGTTCGACAAAGACACCTTGATCGTTTCCTATGACCCGCGTCGCGGTGAAAGCCGTGGCCCGCGCAAGAAAGGCATCGATTACAAGGCCCTGGGCCTCGGCGATTGCATCGACTGCACCATGTGCGTCCAGGTCTGCCCCACCGGCATCGACATCCGCGACGGCTTGCAGATCGAGTGTATCGGCTGCGCAGCCTGCATAGATGCCTGCGACAACATCATGGACAAGATGGATTATCCGCGCGGGCTGATCAGCTACACCACCGAACACAACCTCTCGGGGCAAAAAACCCATAAACTGCGCCCGCGCCTGATCGGCTACGCCTTGGTGCTGCTGGCCATGATCAGCTTGCTGGTAACGGCGTTTTTCATGCGTTCGCTGGTGGGTTTCGACGTCAGCAAGGACCGCGTGCTGTACCGCGAGAACGCCGAAGGTCGGATCGAGAACGTCTACAGCCTGAAGATCATGAACAAGGACCAACGCGACCATACGTACGTCCTGGAAGCCGCCGGCCTGCCTGATCTCAAGCTCGAAGGCCGACGGGAAATCAAGGTCGCCGCCGGCGAGATCTACAGCCAGCCGGTCGAGTTGTCCAGCGCACCTGAACAATTGCCATCGAGCACCAACGAGGTGACCTTCATCCTCAAGGATGCCGATGACGAAAGCGTCCATGTTGAAGCCAAGAGCCGGTTCATCGGCCCACAGACTCGTTGA	MSNQIPVHDVTPPAKDANKSVALYASREKIYTRAFTGLFRNLRMVGGGFLFLLYFGTVWLNWGGHQAVWWNLPERKFFIYGATFWPQDFILLSGMLIIAAFGLFFITVYAGRVWCGYTCPQSVWTWIFMWCEKVTEGDRNQRIKLDKTSMSTNKFLRKFAKHSLWLLIGFVTGMTFVGYFTPIRELVFEFFTGQADGWSYFWVGFFTLATYGNAGWLREQVCIYMCPYARFQSVMFDKDTLIVSYDPRRGESRGPRKKGIDYKALGLGDCIDCTMCVQVCPTGIDIRDGLQIECIGCAACIDACDNIMDKMDYPRGLISYTTEHNLSGQKTHKLRPRLIGYALVLLAMISLLVTAFFMRSLVGFDVSKDRVLYRENAEGRIENVYSLKIMNKDQRDHTYVLEAAGLPDLKLEGRREIKVAAGEIYSQPVELSSAPEQLPSSTNEVTFILKDADDESVHVEAKSRFIGPQTR				NA	NA	NA	NA	NA
D1-36_03319	540			hypothetical protein	ATGCCTGCAGCAACTGCCACCAGCCCTTGGTACAAGCACCTCTGGCCGTGGATCATCATCGGTATCCTTGCCTGCTCGGTAACGCTGAGCCTGACCATGGTGACCATCGCGGTGAACAACCCGGATAACCTGGTCAACGACAACTACTACGAAGCCGGTAAAGGCATCAACCGCTCCCTGGAGCGCGAACTGCTGGCCCAGACCCTGCAATTGCATGCCAATGTGCAGCTGGACGACCTCACCGGGGAAGTCAACCTGCGCCTGGACGGCAACAGCCGTCCCCAGACCCTCGAACTGAGCCTGATCTCACCCACCCAGCCGGAGAAGGACCGCAAGATCGTCCTGACCCGCAACGACAGCGAACCTGGGCGCTACGTTGGCCAATTGGCAGACAAGGTCGAAGGCCGGCGCTTTGTCGAACTGCTGGGGGCACAGAACGAGAAGACCTGGCGCTTGTTCGAAGAAGAGCAGATCAACCACGAACAGGCCATCTTGCTCGGTGATGAACCGCTGCAAGGCGCTGAAGACCTGAAGAAATAA	MPAATATSPWYKHLWPWIIIGILACSVTLSLTMVTIAVNNPDNLVNDNYYEAGKGINRSLERELLAQTLQLHANVQLDDLTGEVNLRLDGNSRPQTLELSLISPTQPEKDRKIVLTRNDSEPGRYVGQLADKVEGRRFVELLGAQNEKTWRLFEEEQINHEQAILLGDEPLQGAEDLKK				NA	NA	NA	NA	NA
D1-36_03320	2451	copA_2		putative copper-importing P-type ATPase A	ATGACCACCCCACGGCCCTGCTACCACTGCGCCCTGCCCGTCCCGCCCGGCAGTCGCTTCACCGCCGTTGTCCTCGGTGAAACCCGCGAGCTGTGCTGCCCGGGTTGCCAGGCGGTGGCCGAAGCGATTGTGGCCGGCGGTTTGGAAAGCTATTACCAGCATCGCAGTGAAGCATCGGCCAACCCCCAGTCCCTGCCGGTGCAACTGACCGAAGAACTGGCGCTGTACGATCGCCCTGACGTGCAGCAATCGTTCGTTCGCCATGAAGGCGAGCTTTGCGAAACCACCCTGCTGATGGAAGGCATCAGTTGCGCCGCCTGTGGCTGGCTGATCGAAAAGCACCTGCGCGCTTTGCCGGCGGTGGCCGAGGCGCGACTGAACCTGTCCAACCATCGCCTGCACGTCCGCTGGGCCGACGCCCAATTGCCGCTGAGCACCCTGCTCGCGCAATTGCGCCAGATCGGCTACGCCGCGCACCCGTACCAGGCCGACCAGGCTTGCGAACAGCTCGCCGCGCAAAACCGTCTGGCCCTGCGCCAGCTGGGCGTGGCTGGCTTGCTTTGGTTCCAGGCGATGATGGCGACCATGGCCACCTGGCCGGAATTCAACATCGACCTGAGCCCGGAGATGCACACCATCCTGCGCTGGGTCGCGCTATTCCTGACAACGCCCATTGTGTTCTACAGCTGCGCACCTTTTTTCAAGGGTGCCATGCGTGACCTGCGCACTCGCCACCTGACGATGGACGTTTCAGTCTCCCTGGCCATCGGTGGCGCGTACATTGCCGGCATCTGGACCTCCATTACCGGTGTCGGCGAGTTGTATTTCGATGCCGTCGGCATGTTCGCCCTGTTCCTGCTGGCCGGCCGCTACCTGGAACGCCGGGCTCGGGAACGCACCGCTGCGGCCACCGCCCAATTGGTGAACCTGTTGCCGGCCTCGTGCCTGCGCCTGGCGGATGACGGCCAGAGCGAGCGCATCCTGCTCAGCGAACTTCATACGGGCGACCGGGTGCTGGTGCAGCCCGGGGCTATCCTGCCCGCCGACGGCAGGATTCTCGAAGGGCAGTCCAGCGTCGACGAATCGCTGCTGACCGGTGAATACCTGCCGCAACCCCGCCAGGCCGGCGATGCAGTCACGGCGGGCACGCTGAACGTCGAGGGCGCGCTGACCGTTCAGGTATTGGCCTTGGGGCAGGACACTCGTTTGTCCGCCATCGTGCGCCTGCTGGAACGCGCCCAAGGCGAGAAGCCGCGCCTGGCGGAAATCGCCGACCGCGCCGCCCAATGGTTCCTGCTGTTCTCTCTGGTTGCCGCCTCCGCCATCGGCCTGTTGTGGTGGCATCTCGATGCTTCGCGCGCTTTCTGGATCGTCCTGGCGATGCTCGTCGCGACCTGCCCTTGCGCGCTGTCCCTGGCGACGCCAACCGCACTCACCGCTGCCACCGGCACCCTGCACAAACTCGGTTTGTTGCTGACCCGCGGCCATGTGTTGGAAGGCCTGAACCAGATCGACACGGTGATTTTCGACAAGACCGGCACCCTTACCGAAGGCCGCTTGGCGTTGCGCGCCATCCGCCCCCTGGCGGCGCTCGACAGCGATCAGTGCCTGGCCTTGGCCGCCGCCTTGGAGAATCGCTCCGAACACCCGATTGCCCGCGCCTTCGGCCGGGCGCCACTGGCCGCTGAGAATGTGCAGAGTTTTCCGGGACTTGGGCTTGAGGGCTTGGTGGGGGAACAGCGATTGCGCATCGGCCATCCCGGCTTTGTCTGCGACCCGAGTGGCGCCACCGTACCGGTGATGCCGGACGAACCTGGGCAATGGCTGTTGCTGGGGGATGATGCCGGGCCGCTGGCCTGGTTTGTCCTCGACGACCGTCTGCGTACGGATGCCCCGGCCCTTGTCGCGGCCTGCAAGGCGCGGGGCTGGCGCACGCTCTTGCTGTCGGGCGACAGCTCGCCGATGGTCGCCAGCGTTGCCACCGGACTGGGCATCGATGAGGCTCGCGGCGGTCTGCGCCCGGACGACAAGCTGGCCGTGCTGCAGCAGTTGCGTCAACAGGGCCGCAAGGTGCTGGTGCTCGGCGACGGCGTGAACGATGTGCCGGTACTGGCAGCGGCGGATATCAGCGTCGCCATGGGCTCGGCCACCGACCTGGCCAAGACCAGCGCCGACGCGGTACTGCTGTCCAACCGCCTCGAGGCCCTGGTTCACGCCTTCAGCCTCGCCCGGCGCACCCGTCGGGTCATCATCGAGAACCTGGTCTGGGCGGGGCTGTACAATGGCCTCATGTTGCCGTTCGCCGCCCTTGGCTGGATCACTCCCGTGTGGGCTGCGGCCGGCATGTCCATCAGTTCGCTGACAGTGGTCTTGAACGCGCTGAGGCTGACCCGCCAACCCAAGGTGCAGGTTCTTGATGCCACGCCCGATACCCGTCCGCAGCCGGCCTGA	MTTPRPCYHCALPVPPGSRFTAVVLGETRELCCPGCQAVAEAIVAGGLESYYQHRSEASANPQSLPVQLTEELALYDRPDVQQSFVRHEGELCETTLLMEGISCAACGWLIEKHLRALPAVAEARLNLSNHRLHVRWADAQLPLSTLLAQLRQIGYAAHPYQADQACEQLAAQNRLALRQLGVAGLLWFQAMMATMATWPEFNIDLSPEMHTILRWVALFLTTPIVFYSCAPFFKGAMRDLRTRHLTMDVSVSLAIGGAYIAGIWTSITGVGELYFDAVGMFALFLLAGRYLERRARERTAAATAQLVNLLPASCLRLADDGQSERILLSELHTGDRVLVQPGAILPADGRILEGQSSVDESLLTGEYLPQPRQAGDAVTAGTLNVEGALTVQVLALGQDTRLSAIVRLLERAQGEKPRLAEIADRAAQWFLLFSLVAASAIGLLWWHLDASRAFWIVLAMLVATCPCALSLATPTALTAATGTLHKLGLLLTRGHVLEGLNQIDTVIFDKTGTLTEGRLALRAIRPLAALDSDQCLALAAALENRSEHPIARAFGRAPLAAENVQSFPGLGLEGLVGEQRLRIGHPGFVCDPSGATVPVMPDEPGQWLLLGDDAGPLAWFVLDDRLRTDAPALVAACKARGWRTLLLSGDSSPMVASVATGLGIDEARGGLRPDDKLAVLQQLRQQGRKVLVLGDGVNDVPVLAAADISVAMGSATDLAKTSADAVLLSNRLEALVHAFSLARRTRRVIIENLVWAGLYNGLMLPFAALGWITPVWAAAGMSISSLTVVLNALRLTRQPKVQVLDATPDTRPQPA				NA	NA	NA	NA	NA
D1-36_03321	219			hypothetical protein	ATGCCAGCTCTTTACGTAATGATTCCGGCCGCGCTGCTGATCGTAGCGATCGCCGTCTACATATTCTTCTGGGCCGTGGACAGCGGCCAATACGACGACCTCGACGGCCCGGCCCACAGCATCCTGTTCGACGAACAAGACCCGAATCATAAGGCCGCGGTGGAAGAAGCAAGCGGCGAGGCCCAGAAACCGGACGACAAGGCGCCGCCCCATGCTTGA	MPALYVMIPAALLIVAIAVYIFFWAVDSGQYDDLDGPAHSILFDEQDPNHKAAVEEASGEAQKPDDKAPPHA				NA	NA	NA	NA	NA
D1-36_03322	684			hypothetical protein	ATGCTTGATCTGGCGCCGCTGTTGATATCGGCCGTCATCCTCGGCCTGCTCGGCGGCGGCCACTGCCTGGGCATGTGCGGCGGTCTGATGGGCGCCCTCACCCTGGCGATTCCCAAGGAACAGCGCAGCCGGCGTTTTCGATTATTGCTGGCGTACAACCTGGGGCGGATCCTGAGTTACGCCACGGCGGGCTTGCTGATCGGACTGGCCGGCTGGGCCGTCGCCAACAGCCCGGCGGCGATGATCATGCGGGTGCTGGCCGGTCTGCTGCTGATCGCCATGGGCCTGTATCTCGCCGGATGGTGGAGCGGCCTGACCCGTATCGAGGGGATCGGCCGGGGCTTGTGGCGACACATCCAACCCGTCGCCAACCGCCTGCTGCCGGTATCAAGCCTGCCACGGGCCTTGCTGCTCGGCGCGCTGTGGGGGTGGCTGCCATGCGGGTTGGTCTACAGCACCCTTCTCTGGTCCGCCAGCCAGGGCAATGCGCTGGACAGCGCGCTATTGATGCTCGCCTTCGGCCTGGGTACCTGGCCGGTGCTCCTCGCCACTGGCCTGGCGGCCGAGCGTGTCACCGCCCTGTTGCGTAAACGCAGCGTGCGCATGACCGGTGGGTTGTTGGTGATCGTCTTCGGCATCTGGACACTGCCGGGGCCGCATCAGCATTGGCTCATGGGCCATTGA	MLDLAPLLISAVILGLLGGGHCLGMCGGLMGALTLAIPKEQRSRRFRLLLAYNLGRILSYATAGLLIGLAGWAVANSPAAMIMRVLAGLLLIAMGLYLAGWWSGLTRIEGIGRGLWRHIQPVANRLLPVSSLPRALLLGALWGWLPCGLVYSTLLWSASQGNALDSALLMLAFGLGTWPVLLATGLAAERVTALLRKRSVRMTGGLLVIVFGIWTLPGPHQHWLMGH				NA	NA	NA	NA	NA
D1-36_03323	1383	hemN	COG0635	Oxygen-independent coproporphyrinogen III oxidase	ATGCTCGACGCCATCCGTTGGGACTCAGACCTCATCCGCCGCTACGACCTGGCGGGACCACGCTACACCTCTTATCCTACTGCGGCACAGTTCGCCGGCCAGGTGGGCACCTTCGACCTGCTCCACGCCCTGCGCGACAGCCGCAAGGCACACAGGCCACTGTCGCTGTACGTGCACGTGCCGTTTTGCGCGAACATCTGCTACTACTGCGCCTGCAATAAAGTCATTACCAAGGATCGCGGTCGTGCCCACACCTACCTGCGACGCCTGGAGCAGGAAATCCAACTGATCGGCTGCCATCTGGCCCCTTCCCAACGCGTGGAACAACTGCACCTGGGCGGTGGCACGCCGACGTTCCTGAGCCACGACGAGCTGCGCCAACTCATGGCCAGCCTGCGCAAGCATATGAATCTGGTGGACGACGATTCCGGCGACTACGGCATCGAAATCGATCCACGGGAAGCCGACTGGTCAACCATGGGCCTGCTGCGGGAGCTGGGCTTCAACCGGGTCAGCATCGGCCTGCAAGACCTCGACCCTGCCGTGCAGCGAGCCGTCAATCGCCTGCAGAGCCTGGAAGAAACCCGGGCGGTGATCGAAGCCGCCCGGACCTTGCAGTTCCGCTCGATCAACATCGACCTGATCTATGGCTTGCCCAAACAAACGCCGGAAAACTTCGCTCGCACGGTCGAAGAAGTCATCAGCCTGCAACCGGACCGTCTCTCGGTTTTCAATTACGCCCACCTGCCGGAGCGCTTCATGCCGCAGCGGCGGATCGATGGCCAGGACCTGCCTACCCCGGTGCAGAAACTGGCCATGCTGCAAGGCACCATCGAACAGCTGACCGCCGCCGGTTATCGCTACATCGGCATGGACCACTTCGCCCTCCCCGACGACGAACTGGCGATCGCCCAAGAAGAAGCGACCCTGCAGCGCAACTTCCAAGGCTACACCACCCATGGGCATTGCGACCTGATCGGCCTCGGCGTGTCAGCCATCAGCCAGGTCGGCGATTTGTACTGCCAGAACAGCAGCGACCTGACCCACTACCAGAACACCCTTGCCGACGGGCAACTGGCAACCAGCCGCGGGCTGGTGTGCAACGCCGACGACCGTTTGCGACGCGCCGTGATCCAGCAGTTGATCTGCCATTTCTCGCTGGCGTTCGCCGAGATAGAGCGAGACTTCAATGTCGACTTGCGCGGTTATTTTGGCTCTTTATGGCCGCAACTACAGACGATGGCAGCCGATGGGCTGCTCGAATTGACGCAGACCCATATCAACGTACTGCCTGCGGGGCGCCTGCTGGTGCGTTCTGTCTGCATGGTCTTCGACGGCTATCTGCAGCAACAAAACCGCCAACGTTTTTCCCGGGTCATCTGA	MLDAIRWDSDLIRRYDLAGPRYTSYPTAAQFAGQVGTFDLLHALRDSRKAHRPLSLYVHVPFCANICYYCACNKVITKDRGRAHTYLRRLEQEIQLIGCHLAPSQRVEQLHLGGGTPTFLSHDELRQLMASLRKHMNLVDDDSGDYGIEIDPREADWSTMGLLRELGFNRVSIGLQDLDPAVQRAVNRLQSLEETRAVIEAARTLQFRSINIDLIYGLPKQTPENFARTVEEVISLQPDRLSVFNYAHLPERFMPQRRIDGQDLPTPVQKLAMLQGTIEQLTAAGYRYIGMDHFALPDDELAIAQEEATLQRNFQGYTTHGHCDLIGLGVSAISQVGDLYCQNSSDLTHYQNTLADGQLATSRGLVCNADDRLRRAVIQQLICHFSLAFAEIERDFNVDLRGYFGSLWPQLQTMAADGLLELTQTHINVLPAGRLLVRSVCMVFDGYLQQQNRQRFSRVI	PGPT0003200_1160	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
D1-36_03324	735	anr		Transcriptional activator protein Anr	ATGTCCGAGCCAGTCAAATCCCGCGCTCACAGCCAGGCCCATTGCAAGGATTGCAGCCTGGCCCCTCTATGCCTGCCACTTTCGTTGAATCTGGAGGACATGGACGCGCTGGATGACATCGTCAAACGGGGACGGCCGCTGAAAAAAGGTGAGTTCCTGTTTCGCCAGGGCGATGGCTTCGACTCGGTTTACGCAGTGCGCTCGGGCGCCCTGAAGACGTTCAACCTGAGCGACGGTGGCGAAGAGCAGCTCACCGGTTTCCATCTGCCCAGCGAGCTTGTGGGCCTGTCGGGCATGGACACCGAGACCCACCCGGTCTCGGCCCAGGCACTGGAGACGACTTCGGTGTGCGAAATTCCTTTTGATCGTCTCGATGAGCTGGCGGTGCAGCTGCCGCAACTGCGTCGACAATTGATGCGGGTGATGAGCCGGGAAATTCGTGACGACCAGCAAATGATGCTGTTGCTTTCGAAGAAAACCGCGGACGAACGCATCGCCACGTTCCTGGTCAATCTCTCGGCGCGTTTTCGTGCCCGCGGGTTTTCGGCCAATCAGTTTCGCTTGAGCATGTCACGCAATGAAATGGGCAACTACCTGGGCCTGGCCGTGGAAACCGTGTCCAGGGTGTTCACCCGCTTCCAACAGAACGCGTTGATCGCAGCCGAAGGCAAGGAAATTCATATTCTCGACCCGATCCAGCTCTGCGCCCTGGCCGGCGGCTCGGTCGAAGGCTGA	MSEPVKSRAHSQAHCKDCSLAPLCLPLSLNLEDMDALDDIVKRGRPLKKGEFLFRQGDGFDSVYAVRSGALKTFNLSDGGEEQLTGFHLPSELVGLSGMDTETHPVSAQALETTSVCEIPFDRLDELAVQLPQLRRQLMRVMSREIRDDQQMMLLLSKKTADERIATFLVNLSARFRARGFSANQFRLSMSRNEMGNYLGLAVETVSRVFTRFQQNALIAAEGKEIHILDPIQLCALAGGSVEG	PGPT0000515_1440	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-ANAEROBIC_SIGNALLING,PGPT0000515-fnr-K01420	NA	NA
D1-36_03325	549	apt	COG0503	Adenine phosphoribosyltransferase	ATGGTCTTCGACTCCTTCGACATCAAATCCCTGATCCGCCCCGTGATCGACTTCCCCAAACCAGGCGTGATCTTTCGCGATATCACTCCGCTGTTCCAGTCGCCCACTGCCCTGCGGCTGGTCATGGACAGCTTCGCCCATCGCTATGTCGAGGCCGAGTTCACGCACATCGGCGCGATGGATGCCCGGGGGTTCCTGATCGGCTCGATCCTGGCCTATCAGTTGAACAAGCCGCTGGTGTTGTTTCGCAAACAGGGCAAGCTGCCAGCCGACGTACTGGCCGAGGGTTACCAGACCGAGTACGGCGAAGCCTTTCTTGAAGTGCACGCCGACAGCCTGTGCGCAGGGGATTCGGTGGTGATGTTCGATGACCTGATCGCCACTGGCGGAACGTTGATCGCCGCCGCCAACCTGATCCGCCGCATGGGCGCCAGGGTCCATGAAGCCGCGGCGATCATCGACTTGCCGGAACTGCTCGGCTCCCAGCGCCTGGAAGACATGGGCATCCCGACGTTCTGCCTGACGCAGTTCTCCCTCAGCGAAAAATAA	MVFDSFDIKSLIRPVIDFPKPGVIFRDITPLFQSPTALRLVMDSFAHRYVEAEFTHIGAMDARGFLIGSILAYQLNKPLVLFRKQGKLPADVLAEGYQTEYGEAFLEVHADSLCAGDSVVMFDDLIATGGTLIAAANLIRRMGARVHEAAAIIDLPELLGSQRLEDMGIPTFCLTQFSLSEK	PGPT0021455_2008	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021455-apt-K00759	NA	NA
D1-36_03326	603	recR	COG0353	Recombination protein RecR	ATGAGCTTCAGCCCTTTGATCCGCCAACTGATCGATGCCCTGCGAACCTTGCCAGGCGTGGGTCAGAAAACCGCCCAGCGCATGGCGTTGCAACTGCTCGAGCGTGATCGCAGCGGCGGCTCTCGCCTGGCCCAGGCGTTGAGCCAGGCCATGGAAGGTGTCGGGCATTGTCGCCAGTGCCGCACCCTGACCGAGGACGATCTTTGCCCGCAATGCGCCGACCCGCGACGGGACGACAGCCTGCTCTGCGTGGTCGAGGGGCCTATGGATGTCTATGCGGTGGAGCAGACCGGCTTTCGCGGCCGTTACTTTGTGCTCAAGGGGCACTTGTCACCGCTCGACGGCCTGGGGCCTGAAGCCATCGGCATCCCGCAGTTGATGGCGCGGATCGAGGAGGCGGGCACGTTTACCGAAGTCATCCTCGCCACCAACCCGACGGTCGAAGGCGAAGCCACTGCGCATTACATCGCCCAACTGCTCAGCAATAAAGGCCTGGTCGCCTCCCGCATCGCCCATGGCGTGCCGTTGGGTGGGGAGCTTGAGTTGGTGGACGGCGGGACGCTGGCGCATTCGTTTGCCGGGCGCAAGCCAATCGCGTTGTAG	MSFSPLIRQLIDALRTLPGVGQKTAQRMALQLLERDRSGGSRLAQALSQAMEGVGHCRQCRTLTEDDLCPQCADPRRDDSLLCVVEGPMDVYAVEQTGFRGRYFVLKGHLSPLDGLGPEAIGIPQLMARIEEAGTFTEVILATNPTVEGEATAHYIAQLLSNKGLVASRIAHGVPLGGELELVDGGTLAHSFAGRKPIAL				NA	NA	NA	NA	NA
D1-36_03327	1029	curA	COG2130	NADPH-dependent curcumin reductase	ATGTCATCGATTTCCAATCAGCGCATCGTGCTGGCCTCGCGCCCCCAAGGTGCGCCAACCCCTGAAAACTTTCGACTTGAACACGTGACGTTGCCCGATCTGGCCGAAGGACAAATCCTGCTCAAGACGCTCTTCCTGTCACTGGACCCTTACATGCGCGGGCGCATGAGTGACGCGCCTTCCTACGCTGCGCCGGTGCAGATCGATGAGGTGATGACCGGTGGTGCCGTCAGCCGCGTAGAGCGCTCGATGCATCCGAAATTCCAAGAGGGTGATCTGGTGGTGGGGGCCACGGGTTGGCAGAGCCACTGCATCAGCGATGGCCGCGATGTCATTCCGATCCCTTCCGGCTTGCCCAGCCCCTCGATGGCGCTGGGGGTGTTGGGGATGCCGGGCATGACGGCCTACATGGGGTTGATGGACATTGGCCAGCCCAAGGCCGGGGAAACCCTGGTCGTGGCGGCGGCGTCGGGCGCCGTGGGCTCCGTGGTTGGCCAGGTGGCGAAGATCAAGGGCTTGCGGGTGGTGGGGGTGGCCGGCGGTGGCGAAAAATGCAAGTACGTGGTCGATGAACTGGGTTTCGACGCCTGTATTGATCATAAAAGCGCGAATTTCGCCGAAGAGCTTGCCAGGGCTTGCGATCAAGGTATCGATATCTATTACGAAAACGTCGGCGGCAAGGTCTTCGATGCGGTCGTGCCGCTGCTCAACGCCAAGGCGCGCGTCCCGCTTTGCGGCTTGATCGCATCCTACAATGATCATCAGCCGCCAATTGGCCCGGATCGCCTGCCGCAACTACAACGCACGCTGTTGACCAAGCGCGTGCGCATCCAGGGTTTCATCGTGTTCGATGACTACGGTGACCGCCAGCCGGAATTCATCAGCGCCATGGCGCCTTGGGTGCGCGATGGCAAGGTCAAGTTCCGCGAGGACGTGGTCGACGGTCTTGAAAATGCGCCCCAGGCTTTCATCGGCATGTTGGAGGGGCGAAATTTCGGCAAGTTGGTGGTGCGAGTAGCGCGCGATTGA	MSSISNQRIVLASRPQGAPTPENFRLEHVTLPDLAEGQILLKTLFLSLDPYMRGRMSDAPSYAAPVQIDEVMTGGAVSRVERSMHPKFQEGDLVVGATGWQSHCISDGRDVIPIPSGLPSPSMALGVLGMPGMTAYMGLMDIGQPKAGETLVVAAASGAVGSVVGQVAKIKGLRVVGVAGGGEKCKYVVDELGFDACIDHKSANFAEELARACDQGIDIYYENVGGKVFDAVVPLLNAKARVPLCGLIASYNDHQPPIGPDRLPQLQRTLLTKRVRIQGFIVFDDYGDRQPEFISAMAPWVRDGKVKFREDVVDGLENAPQAFIGMLEGRNFGKLVVRVARD	PGPT0023605_384	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEM	ADAPTION_TO_PIS-PLANT_CURCUMIN_RESISTANCE	ADAPTION_TO_PIS-CURCUMIN_DEGRADATION,PGPT0023605-curA|yncB-K23256	NA	NA
D1-36_03328	339	ybaB	COG0718	Nucleoid-associated protein YbaB	ATGATGAAAGGTGGCATGGCCGGCCTGATGAAGCAGGCGCAGCAGATGCAGGAAAAAATGGCCAAGATGCAGGAAGAGCTGGCCAACGCTGAAGTCACCGGCAAATCCGGTGGCGACATGGTGACGGTGGTCATGACCGGTCGCCACGATATCAAGCGCGTCAGCATCGACCCGAGCGTGGTCGAAGGCCTGAGCGAAGACGACAAGGAAATGCTCGAAGCCCTGTTCGCCGCCGCCGTCAACGACGCAGTGCGCAAGATCGAAGCGAACAGCCAGGACAAGATGTCCGGCATGACCGCTGGCATGCAGCTGCCGCCGGGCATGAAACTGCCGTTCTGA	MMKGGMAGLMKQAQQMQEKMAKMQEELANAEVTGKSGGDMVTVVMTGRHDIKRVSIDPSVVEGLSEDDKEMLEALFAAAVNDAVRKIEANSQDKMSGMTAGMQLPPGMKLPF				NA	NA	NA	NA	NA
D1-36_03329	2082	ruvB_2		Holliday junction ATP-dependent DNA helicase RuvB	ATGAGTTATCAGGTTCTTGCACGTAAATGGCGTCCGCGCTCGTTCCGCGAAATGGTCGGCCAGACCCATGTGCTCAAGGCTCTGATCAATGCCTTGGACAGCCAGCGGCTGCACCATGCCTATCTGTTCACCGGTACCCGCGGCGTGGGCAAGACCACCATTGCGCGGATCATCGCCAAGTGCGTGAACTGTGAAACCGGTATTACGTCGACGCCTTGCGGCGAATGTTCGGTCTGCCGGGAAATCGACGAAGGTCGTTTCGTCGACCTGATCGAAATCGACGCCGCCAGCCGCACCAAAGTCGAGGATACCCGCGAGCTGCTCGACAACGTGCAGTACGCCCCGAGCCGTGGGCGCTTCAAGGTCTACCTGATCGACGAAGTGCACATGCTCTCCAGCCATTCCTTCAATGCGCTGCTCAAGACCCTCGAAGAACCGCCGCCCTACGTCAAATTCATCCTGGCGACCACCGATCCGCAGAAACTTCCCGCAACGATTTTGTCGCGCTGCTTGCAGTTCTCCCTGAAGAACATGACGCCGGAACGGGTCGTCGAGCACCTGACCCATGTGCTGGGCGTGGAGAACGTGCCGTTCGAGGACGATGCGCTGTGGCTGCTCGGACGAGCCGCCGATGGTTCGATGCGTGACGCCATGAGCCTGACCGACCAGGCCATTGCCTTCGGCGAAGGCAAGGTCATGGCCGCCGAGGTGCGCGCCATGCTGGGCACCCTCGATCACGGCCAGGTCTACGACGTTTTGACTGCGCTGATCGAAGGGGACGCAAAGGCATTGCTCGAAGCGGTGCGTCACCTGGCCGAGCAGGGGCCGGACTGGAATGGCGTGCTCTCGGAGATTCTCAACGTGCTGCACCGTGTCGCCATCGCCCAGGCCTTGCCCGAGGGGGTCGACAACGGCCATGGCGACCGGGACCGCGTGTTGGCTTTGGCCCAGGCGCTGCCGGCCGAAGACGTACAGTTTTATTACCAGATGGGCCTGATCGGCCGTCGCGACCTGCCACTGGCACCGGATCCGCGCGGCGGCTTCGAGATGGTGCTGCTGCGAATGCTTGCGTTCCGGCCGGCCGATACCGCGGACGCGCCGAGACAAGCGCTAAAGCCAGTGGGGATCAGCCAGGCCACAGCTGATTCCGCCAAGCCAGTGGCTGCCACGCCCGTTGTTGCGTCGGCAGCGGCTCCTGCTCCTACGGCGGTGGCGCCCGCAGCCCAGCCGATTCCGGCCCCGGCGCCTGTTGTCGTCACGCCTGAGCCAGAGCCCGAACCGGTCGTCGAGGCGCTCCCCGAGCCCGTCGCCGAAGAAGTCATCGACCTGCCTTGGAACGACCCGGTCGAGCCGCAAGTTGTCCAGCAACCCGCCGTCGAGCCCGTTTTGGAAACCATCGCCGAGCAGCCCGAGTTGCCGCCGATGCCCCTGCCGACACCCGACAGCGTGGTGCCCGATGCACCCGAGTGGGTGGCTGCGCCAATGCCGGAGCCGACGGTGGCCGACGTCGAGGTCGCGACGCCGGGCATCGATCTGGACGATGAGCCGCCGCTGGACGAGGACTACATCGAGCCGGACATCGATTCGGCCTACAGCTACCTGGACGACCTGGCCAGCGAACATGCCGCCGAACCGGCACCGGAGCCAGAACCTGAACCGGCGGCAATGCCCGCCACTGGGCTGGCCCTGCAATGGCTGGAGCTGTTCCCCAAGCTGCAAATCAGCGGCATGACCGGTAGCATCGCCGCCAACTGCACCTTGATCTCGGTCGAGGGCGACCATTGGCTGCTGCACCTGGATCCGGCCCACAGCGCGCTGTTCAACGCAACCCAACAGCGTCGCCTCAACGATGCGCTGAACCAGTACCACCAGCGCACTCTCACGTTGACCATCGAGCTGATCAAGCCCGAGCAGGAAACCCCGGCCCAGGCCGCGTCCCGGCGCCGCGCCGACCGTCAGCGCGAAGCCGAGGAATCGATCCAGAACGATCCGTTCATCCAACAGATGATGCAACAGTTCGGCGCCGTGGTCCGTCACGATACTATCGAACCTGTCGAGGCCCCGGTCACCCAGGGCTCATAA	MSYQVLARKWRPRSFREMVGQTHVLKALINALDSQRLHHAYLFTGTRGVGKTTIARIIAKCVNCETGITSTPCGECSVCREIDEGRFVDLIEIDAASRTKVEDTRELLDNVQYAPSRGRFKVYLIDEVHMLSSHSFNALLKTLEEPPPYVKFILATTDPQKLPATILSRCLQFSLKNMTPERVVEHLTHVLGVENVPFEDDALWLLGRAADGSMRDAMSLTDQAIAFGEGKVMAAEVRAMLGTLDHGQVYDVLTALIEGDAKALLEAVRHLAEQGPDWNGVLSEILNVLHRVAIAQALPEGVDNGHGDRDRVLALAQALPAEDVQFYYQMGLIGRRDLPLAPDPRGGFEMVLLRMLAFRPADTADAPRQALKPVGISQATADSAKPVAATPVVASAAAPAPTAVAPAAQPIPAPAPVVVTPEPEPEPVVEALPEPVAEEVIDLPWNDPVEPQVVQQPAVEPVLETIAEQPELPPMPLPTPDSVVPDAPEWVAAPMPEPTVADVEVATPGIDLDDEPPLDEDYIEPDIDSAYSYLDDLASEHAAEPAPEPEPEPAAMPATGLALQWLELFPKLQISGMTGSIAANCTLISVEGDHWLLHLDPAHSALFNATQQRRLNDALNQYHQRTLTLTIELIKPEQETPAQAASRRRADRQREAEESIQNDPFIQQMMQQFGAVVRHDTIEPVEAPVTQGS				NA	NA	NA	NA	NA
D1-36_03330	768			hypothetical protein	ATGCGTTCGGCCATGGGGGCTTTGCTGTTGTTGGGGACGGGGTGTTTCGCTGATGAGGTTCCCTTGCGTTTTGCCGTCACCGATGGCTGGGCCATGCCCATGGTGCAGATCGACAGAGGCCGCCCGACCCAGGGCATTCTGACGGACGTCATGACCAGCCTGGCGACCCAGGTGGGCATGCCTGCGCAATTCCATGTCCTAGCCCGCGCGCGGCTGGACAGCGCCATGGAGCAGGGCGAAATAGACATGCGCTGTTATGTCTCGCCTGATTGGGTGAAGGATATAGAAGGCGACTATCTCTGGAGCGGCCCGCTGTTCTTCCAACGCGATGTGCTTGTCGGTTCGCCCGGCGCTCCCGCTGCCATCACGCCGTCGGCACTCACACAACAGTCCATCGGCACCGTGCTGAGCTACAGCTACCCCACCCTGCAGCCATTGTTCGACAGTGGCCACCTGCGGCGCGACGACGCCCGCAGCCAGGATCAGGTGCTGGCGAAACTGCTGGCCCGGCGATACCGCTATGCGGTCAGCAACCAATGGGCGCTGGACTGGTTCAACCAGCGTCACAGCGCTGACCGACAGCTGCGCCAAGTCGCTGTCCTGCAGGAACAACAGTTGAGCTGCTATGTGCGCAATGATCCGAAGATTCCCGCACAGCGCATCCTGCGTACCTTGTCGAACATGAAGAGATCCGGGGAAATCGACGCGATCATCCAGCTTTATACTGGCCGCAACGAAGGGTTGCGGGACGGCGATGCGTCTCCATGA	MRSAMGALLLLGTGCFADEVPLRFAVTDGWAMPMVQIDRGRPTQGILTDVMTSLATQVGMPAQFHVLARARLDSAMEQGEIDMRCYVSPDWVKDIEGDYLWSGPLFFQRDVLVGSPGAPAAITPSALTQQSIGTVLSYSYPTLQPLFDSGHLRRDDARSQDQVLAKLLARRYRYAVSNQWALDWFNQRHSADRQLRQVAVLQEQQLSCYVRNDPKIPAQRILRTLSNMKRSGEIDAIIQLYTGRNEGLRDGDASP	PGPT0020800_13073	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
D1-36_03332	1161		COG4307	putative protein	ATGTACCGCTTTTTCGAACAACTGAGCTCACGCATCGCCGCGCCGTTCCTGGGTGATCGGTCACGCAACAGCAAAGTCTGGCCGTGCCGCTGCGGCCAGTCATTGTTCTTTCGCAACAGCCAATGCCTGGCGTGCCTGGCGGCGTTGGGGTATCAGCCGGAGCAGAGTCGCCTTTCGTCCCTTCAGCCCGGCGAGCAACCTGATACCTGGCTCCTGGACGTCGACCCGCAGGCCGGACTGTTTCGCCGCTGCGCCAATCTCGACACCCCGGCGGCGTGCAATTGGCTGTTACCAGCCAACGGGCACGACACACTGTGCATCGCCTGCAGCCTGAATCGCACGATTCCTGACCTCTCGATCCCGGAAAACCCCGAGCGCTGGCGCAAGGTCGAAACCGCCAAGCGCCGCCTCGTGGCGCAACTGATTACCCTCGGCTTGCCGGTCATCCCCAAGAGCGCCGACGAAAACATCGGCCTGGCCTTTGATTTCATCGGCGTCGACCCCGACGGGAAACCGCCGACGACCGGGCACGCCAGCGGCCTTATCACCCTCGACATCAAGGAAGCCGACGATGCTCACCGCGAGCACGTGCGGCAGCAGATGCACGAGCCGTATCGGACCTTGCTCGGGCATTTTCGCCACGAGGTCGGCCATTATTTCTGGGACCGGCTGGTTGCCGACAGTCACTGGCTGGAGCCGTTTCGCGCCTTGTTCGGCGATGAGCGCGCAAGCTACTCCGAGGCGTTGGAGCGGCATTATCAACAAGGCGCGCCACTGGATTGGCAGGCCCGTTACGTCAGCGCCTACGCCACCATGCACCCGTGGGAGGACTGGGCTGAAACCTGGGCCCATTACCTGCACATGATGGACGCCGTCGACACGGCGCTCGGCTTCGGCATGAGTGCGCGGGAAATGGATTTCGACTACCAGCCATTTCCTCCCGAAACCCTGTTCGACCCCGAGCACGCGGGCGGCAAGGCGTTCCTTTCATTCGTCAACGCCTGGATCGAACTGGCCGGAATGCTCAACGAACTCTCGCGCAGCATGGGCCAGCCGGATTTCTACCCGTTCGTCGTACCGGCGGCAGTAATCACCAAACTGCATTTCATCCATCTGGTGATCCAGGAGGAGGGTGGCCGGGCGGATGAGGTGCTGTTGTAG	MYRFFEQLSSRIAAPFLGDRSRNSKVWPCRCGQSLFFRNSQCLACLAALGYQPEQSRLSSLQPGEQPDTWLLDVDPQAGLFRRCANLDTPAACNWLLPANGHDTLCIACSLNRTIPDLSIPENPERWRKVETAKRRLVAQLITLGLPVIPKSADENIGLAFDFIGVDPDGKPPTTGHASGLITLDIKEADDAHREHVRQQMHEPYRTLLGHFRHEVGHYFWDRLVADSHWLEPFRALFGDERASYSEALERHYQQGAPLDWQARYVSAYATMHPWEDWAETWAHYLHMMDAVDTALGFGMSAREMDFDYQPFPPETLFDPEHAGGKAFLSFVNAWIELAGMLNELSRSMGQPDFYPFVVPAAVITKLHFIHLVIQEEGGRADEVLL				NA	NA	NA	NA	NA
D1-36_03333	2358	ligA_2	COG0272	DNA ligase	ATGAGCGCCGTCGAAACCCGCATCCTAGAGCTGCGCACCGAGCTGGACCAGCATAATTACCGCTATCACGTCCTCGATGAACCTTCCATTCCGGACGCTGAGTACGATCGTCTTTTCCATGAGCTCAAAGCCTTGGAAGAACAACACCCGGAGCTGGTGACGAGCGATTCCCCGACCCAGCGAGTCGGCAGCGTGGCGCTGTCGGCCTTCAGCCAGGTGCGTCACGAAATCCCGATGCTCAGCCTGGGCAACGTGTTCGACGAAACCACTTTGCGCGAGTTCGACCGGCGAGTGACCGAAGGCCTCGACCTGCCCATGGGCGATTTGCTCGGCGGCGGCGCGGCGGTGGAATACAGTTGCGAGCCGAAGCTCGATGGCCTGGCGGTCAGCCTGTTGTATCAAGACGGCATGCTGGTGCGCGGCGCGACGCGCGGTGACGGCACCACGGGCGAAGACATCAGCGTCAACGTGCGCACCGTGCGCAACATTCCTCTCAAGTTGCAAGGCAGCGGCTGGCCACCGGTGCTGGAGGTGCGCGGCGAGGTGTACATGTCCAAGGCCGGTTTCGAGCGCTTGAACGCCACCCAGCTGGAGGCGGGCGGCAAGACGTTCGCCAACCCCCGCAACGCTGCCGCAGGCAGCCTGCGCCAGTTGGACTCCCGGATAACCGCCAATCGTCCCCTTGAGTTTTGCTGCTATGGCATCGGCCAGGTGACGTCGGACATCGCCGATACCCACATTGGCAATCTCAAACAACTCAAGGCTTGGGGCATGCCCATCAGCCGCGAGCTGAAGCTGGCCCACGGCATCGACGAATGCCTGGATTACTACCGTGACATTGGTGAGCGGCGCAGTTCGCTGCCCTACGAAATCGACGGCGTGGTGTTCAAGGTCAACAGCATCGCGTCACAGCGCGAACTGGGTTTTCGCGCGCGGGAGCCTCGCTGGGCTATCGCTCACAAATTCCCTGCCAGCGAAGAGCTTACCGAACTGCTGGACGTCGAGTTCCAGGTCGGCCGCACCGGCGCCGTCACGCCCGTGGCGCGGCTCAAGCCGGTCAAGGTGGCTGGCGTGACGGTGGCCAACGCCACGTTGCACAACATGGACGAGGTGGCGCGCCTGGGCCTGATGATCGGCGACACGGTGATCATTCGCCGAGCCGGTGATGTCATCCCGCAAGTGGTGCAAGTCGTCACCGAGCGTCGTCCAGTCAATGCCCGTCCGGTGGCAGTGCCGCAGCAATGTCCGGTTTGCGGTTCCCACGTCGAACGCACGCAACTGATCAAGCGCAGCAAGGGCCGTGAAACCGTCAGCGAAGGCGCGGTGTACCGCTGCGTCGGTCGCCTGGCCTGTGGCGCGCAGCTCAAGCAGGCAATCATTCATTTTGTCTCGCGCCGGGCCATGGATATCGAAGGGCTGGGCGAGAAGAGCGTTGAACAATTGGTGGACGAAGGCCTGGTGGGGTCGCCGGCTGACCTGTATGCGCTGACGTTCGAGCAGATCGTCGACCTGGAAGGCTTCGCCGAGCTGTCGAGCAGGAATCTGCTGTCAGCGATCGTCGACAGCAAGAAGCCGAGTCTGGCGCGTTTTATCTACGCCCTCGGCATTCCCGACGTGGGCGAGGAGACCGCCAAGGTCCTGGCCCGCTCCCTCGGTTCACTGGAGCGCGTGCAGGCGGCGCTGCCGCAGGTGCTGACGTACCTGCCGGATGTCGGCCTGGAAGTTGCCCACGAGATCCACAGCTTCTTCGAAGACCCGCACAATCGCCAGGTCATCAAGGATCTGCTGCGCCATGGCCTGGAGATCCAGGACCAGGGCGAACTGAGCGCGGAATTTTCCGCCAGTACTACCCTGGGAGGCTTCCTCGACAAGCTGCACATTCCTTCGGTCGGGCCGGGCGGCGCGCAGAAACTGGCGGACAAGTTCGGTTCCCTCGAAGCCGTCATGGATGCCGACTGGCTGGACATGCGCCAGGCGTTGCCGGAAAAGCAGGCAAACGCCGTGCGCGAATTCTTCGCCATCGCCGCCAATCGTGAACAGGCCTTGGCTGCCGAGCAGCAACTGCGGGATTTCGGCATGCACTGGCGGAGCGAGAAGAAGGTTGTCGAGGGCTTGCCTGAAGCGGGGCACACCTGGGTCCTGACCGGTTCGCTGGAGCTGATGAGTCGCGATGTCGCCAAGGACAAGCTGGAAAGCCTGGGGGCGAAGGTGGCCGGTTCCGTGTCGGCGAAAACCCACTGCGTGGTGGCCGGGCCGGGCGCTGGATCGAAATTGACCAAAGCCAATGAACTGGGGCTCAAGGTGCTCGACGAACAAGCGTTTGTCGAGTTCTTGACAGGGCATGGCGTCGCGCTCTGA	MSAVETRILELRTELDQHNYRYHVLDEPSIPDAEYDRLFHELKALEEQHPELVTSDSPTQRVGSVALSAFSQVRHEIPMLSLGNVFDETTLREFDRRVTEGLDLPMGDLLGGGAAVEYSCEPKLDGLAVSLLYQDGMLVRGATRGDGTTGEDISVNVRTVRNIPLKLQGSGWPPVLEVRGEVYMSKAGFERLNATQLEAGGKTFANPRNAAAGSLRQLDSRITANRPLEFCCYGIGQVTSDIADTHIGNLKQLKAWGMPISRELKLAHGIDECLDYYRDIGERRSSLPYEIDGVVFKVNSIASQRELGFRAREPRWAIAHKFPASEELTELLDVEFQVGRTGAVTPVARLKPVKVAGVTVANATLHNMDEVARLGLMIGDTVIIRRAGDVIPQVVQVVTERRPVNARPVAVPQQCPVCGSHVERTQLIKRSKGRETVSEGAVYRCVGRLACGAQLKQAIIHFVSRRAMDIEGLGEKSVEQLVDEGLVGSPADLYALTFEQIVDLEGFAELSSRNLLSAIVDSKKPSLARFIYALGIPDVGEETAKVLARSLGSLERVQAALPQVLTYLPDVGLEVAHEIHSFFEDPHNRQVIKDLLRHGLEIQDQGELSAEFSASTTLGGFLDKLHIPSVGPGGAQKLADKFGSLEAVMDADWLDMRQALPEKQANAVREFFAIAANREQALAAEQQLRDFGMHWRSEKKVVEGLPEAGHTWVLTGSLELMSRDVAKDKLESLGAKVAGSVSAKTHCVVAGPGAGSKLTKANELGLKVLDEQAFVEFLTGHGVAL				NA	NA	NA	NA	NA
D1-36_03334	846	zipA		Cell division protein ZipA	ATGGAAATCGGTCTGCGCGAGTGGCTGATCGTCATCGGCATCATTGTCATTGCCGGTATTCTTTTCGACGGCTGGCGTCGCATGCGCGGCGGCAAGGGCAAACTCAAGTTTCGCCTGGATCGCAGCCTGTCGAACCTCCCCGATGAGGATGACAGCGCCGAGCTGTTGGGCCCGCCCCGGGTGCTGGACACCCACAAGGAGCCGCAGCTGGACGAACACGATTTGCCGTCCATGAGCGCGCCTGCCCGTGAGCCACGGGAGTCGGGTTCCAAGCGCGGCAAGCGCAACAGCGAACCGTCCCAGGGTGATTTGAACCTGAACCTCGACCTCGATGGCGGGCCGAGCTTCAACAGCCGTGACGGTGATTTCCCGGACGAGAGCAAGTCATCCAGCGGCGACAGGGAACAGGCCCAGGCCGAAGAAGTGCTGGTGATCAGCGTGATCTGCCGCGACCCGGCCGGCTTCAAGGGCCCTGCGCTGTTGCAGAACATCCTGGAAAGCGGCCTGCGTTTTGGCGAGATGGACATCTTCCATCGCCACGAAAGCATGGCAGGCAATGGCGAGGTGTTGTTCTCCATGGCCAACGCCGTCAAGCCTGGCGTGTTCGACCTGGACGACATCGATCATTTCAGCACGCCGGCGGTGAGCTTCTTTCTGGGCCTGCCAGGCCCGCGTCATCCCAAGCAGGCTTTCGACGTGATGGTGGCCGCTGCGCGCAAGCTGGCCCAGGAGCTCAACGGCGAATTGAAGGACGACCAACGCAGCGTGCTGACGGCTCAGACCATCGAGCACTACCGCCAGCGCATTGTCGAATTCGAACGCCGTGCGCTGACCCAGAAGCGTTGA	MEIGLREWLIVIGIIVIAGILFDGWRRMRGGKGKLKFRLDRSLSNLPDEDDSAELLGPPRVLDTHKEPQLDEHDLPSMSAPAREPRESGSKRGKRNSEPSQGDLNLNLDLDGGPSFNSRDGDFPDESKSSSGDREQAQAEEVLVISVICRDPAGFKGPALLQNILESGLRFGEMDIFHRHESMAGNGEVLFSMANAVKPGVFDLDDIDHFSTPAVSFFLGLPGPRHPKQAFDVMVAAARKLAQELNGELKDDQRSVLTAQTIEHYRQRIVEFERRALTQKR				NA	NA	NA	NA	NA
D1-36_03335	3489	smc	COG1196	Chromosome partition protein Smc	GTGCGACTCAAGTGCATCAAGCTGGCGGGGTTCAAATCCTTCGTCGACCCGACGACGGTGAACTTCCCCAGCAACATGGCGGCGGTGGTCGGGCCCAATGGTTGCGGCAAGTCGAACATCATCGACGCCGTGCGCTGGGTGATGGGCGAAAGCTCGGCCAAGAACCTGCGCGGCGAGTCGATGACCGACGTCATCTTCAACGGCTCCACCAGCCGCAAGCCAGTGAGCCAGGCCAGCATCGAACTGGTGTTCGATAATTCCGATGGCACCCTCATCGGCGAATACGCGGCCTACGCGGAAATCTCCATCCGCCGCAAAGTGACCCGTGACAGCCAGAACAGCTATTTCCTCAACGGCGCCAAATGCCGTCGCCGGGACATCACCGACATCTTCCTTGGCACCGGCCTGGGACCGCGCAGCTATTCGATCATCGAGCAGGGCATGATCTCCAAGCTGATCGAGGCCAAGCCCGAAGACCTGCGCAACTTCATCGAAGAAGCCGCCGGCATCTCCAAATACAAGGAACGGCGTCGCGAGACCGAGAACCGCATCCGCCGTACCCACGAAAACCTCGCGCGTCTGACTGACCTGCGTGAAGAACTCGAGCGCCAGCTCGAACGCCTGCATCGCCAGGCCGAGGCGGCAAAGAAATACCAGGAATACAAAGCCGAAGAGCGCCAGCTCAAGGCCCAACTGTCGGCCCTGCGCTGGCAGGCGTTGAACGAACAGGTGGGCCAGCGCGAGGCGATCATCGGCAACCAGGAAGTCAGCTTCGAAGCGTTGGTCGCCGAGCAGCGCAACGCCGATGCCGCCATCGAGCGCCTGCGCGACGGGCACCATGAACTTTCCGAGCGCTTCAACCTGGTGCAAGGGCGCTTCTATTCCGTGGGAGGCGACATTGCCAGGGTCGAGCAAAGCATCCAGCACGGCCAGCAGCGCCTGCGCCAGTTGCAGGAAGATTTGAAGGAGGCTGAGCGCGCACGCCTGGAAACCGAATCCCACCTGGGCCACGATCGCACCTTGTTGCTGACCCTCGGCGAGGAGCTGGAGCGGCTCACGCCGGAGCAGGAACTCACCAGCGCCGCCGCCGAAGAGGCAGCCGCAGCCCTGGAAGAAGCCGAGTTGACCATGCATGGTTGGCAAGAGCAGTGGGACAGTTTCAACCTGACCTCGGCCGAGCCGCGGCGCCAGGCAGAAGTCCAGCAGTCGCGCATCCAGCAGTTGGAAACCAGCATGGAGCGCCTGGCCGAACGTCAGCGTCGCCTGTCTGAAGAGCGCGCCTTGCTCGCCGCGGATCCGGAAGACGCCGCGATTCTGGAGCTGAGCGAGCAACTGGCGACCAGCGAAGCCACCCTCGAAGACCTGCAGGCCAGCGAAGATGCCCAGGTCGAACGCCTTGAACAACTGCGCCAAGCCTTGCAGCTGGCCTTGCAGAACCAGCAACAGGCCCAGGGCGAATTGCAGCGACTCAACGGTCGGCTGGCCTCGCTGGAGGCCTTGCAGCAAGCCGCGTTGGACCCAGGCACCGGCACCGCCGAATGGCTGCGCGACCAGCACCTGGCCGAGCGCCCGCGCCTGGCCGAAGGTTTGAAGGTCGATGCCGGCTGGGAACTGGCGGTGGAAACCGTGCTGGGCGCCGATCTGCAAGCAGTGCTGGTGGATGATTTCGCTGGGTTCGATCTTTCCGGTTTCAGCCAGGGCGATCTGCGCCTGCTCAGCCCGGCCGGCGACGGCGTGCGGGTGCCAGGGAGTCTGTTGGACAAGGTCGAAGCCCAGGTCGACCTGTCGCCTTGGCTGGGGCAGGTCAAGCCGGTGGACAGCCTCGAGCACGCCTTGGCCTTGCGTGGGCAATTGGCAGCCGGCGAAAGCCTGATCAGCCGCGACGGGTATTGGGTCGGGCGGCATTTCCTGCGGGTTCGCCGGGCCTCTGAAGCCGAGAGCGGCATGCTCGCCCGAGGCCAGGAAATCCAGCGCCTGGCCGCCGAGCGCGAAGAGCGCGAGGCCAGCGTCGAAGCCCTGGAAACCGAACTACAGAACCTGCGGGCGCAACAGCGCCAACAGGAAAACGGCCGCGAACACCTGCGTCGGCTGTTGCAAGATGAAGCGCGCCAGCAGGGCGAACTCAAGGCGCAGCTGTCTGCCGGCAAGGCCAAGGTCGAACAATTGGCCCTGCGTCGTACCCGTCTTGACGAAGAAATCGCCGAGTTGGGCGAGCAGCGGGCGTTGGAACACGAACAGATCGGCGAGGCGCGCCTGCAATTGCAAGAAGCCCTTGATGCGATGGCGGTGGATACCGAACAGCGTGAATTGCTGCTGGCCCAGCGCGACAGCCTGCGTGAACGCCTGGACCGCGTGCGCCAGGAAGCGCGCCAGCACAAAGACCATGCCCATCAGTTGGCGGTACGCCTGGGCTCGCTCAGGGCCCAGCACGATTCCACACGCCAGGCCCTGGAACGTCTGGAAATGCAGTCCGAGCGCCTGACCGAAAAGCGTGAGCAGTTGAGCCTCAACCTGGAAGAGGGCGAGGCGCCACTGGAAGAACTGCGCCTCAAGCTCGAAGAGTTGCTCGACAAACGCATGAGCGTCGACGAAGAACTCAAGACTGCACAGATTGCCCTGGAGGATGCCGACCGCGAACTGCGCGACGCTGAGAAGCGCCGCAGCCAGGCCGAGCAGCAATCGCAGCTGATCCGTGGCCAGATGGAGCAGCAGCGCATGGAGTGGCAGGCCTTGACGGTGCGGCGCAAAGCCTTGCAGGACCAATTGCTGGAAGACGGCTACGACCTCGACGGCGTGCTCGCCACCCTGGTGGCCGGGGCGAACGAAAAGGACGCCGAGGAAGAACTTGAACGCATCGCCCAGCGCATCCAGCGCCTGGGGGCAATCAACCTGGCGGCCATCGACGAGTACCAGCAGCAGTCAGAGCGCAAGCGTTACCTGGACGCTCAGAACGACGATCTGGCGGAGGCGCTGGAGACCCTGGAAAACGTCATCCGCAAAATCGACAAGGAAACCCGCAACCGCTTCAAGGATACCTTTGATCAGATCAACGGCGGTTTGCAGGCGCTTTTCCCAAAAGTTTTCGGTGGCGGTAGCGCCTACTTGGAACTGACGGGCGAAGATCTACTCGATACAGGGGTGACAATCATGGCGCGTCCTCCCGGCAAGAAGAACAGCACCATCCATTTGCTCTCCGGCGGCGAAAAAGCGCTGACGGCGCTGGCTCTGGTCTTTGCCATTTTCAAACTGAACCCGGCGCCGTTCTGCATGCTCGATGAGGTCGACGCACCACTGGACGACGCCAACGTCGGCCGTTACGCACGGCTGGTGAAGGAAATGTCCGAAACGGTGCAGTTCATCTACATCACCCACAACAAGATCGCCATGGAAATGGCCGACCAGTTGATGGGCGTGACCATGCATGAGCCGGGGTGTTCGCGGCTGGTGGCGGTGGATGTGGAGGAGGCCATGGCCATGGTGGACGCCTGA	MRLKCIKLAGFKSFVDPTTVNFPSNMAAVVGPNGCGKSNIIDAVRWVMGESSAKNLRGESMTDVIFNGSTSRKPVSQASIELVFDNSDGTLIGEYAAYAEISIRRKVTRDSQNSYFLNGAKCRRRDITDIFLGTGLGPRSYSIIEQGMISKLIEAKPEDLRNFIEEAAGISKYKERRRETENRIRRTHENLARLTDLREELERQLERLHRQAEAAKKYQEYKAEERQLKAQLSALRWQALNEQVGQREAIIGNQEVSFEALVAEQRNADAAIERLRDGHHELSERFNLVQGRFYSVGGDIARVEQSIQHGQQRLRQLQEDLKEAERARLETESHLGHDRTLLLTLGEELERLTPEQELTSAAAEEAAAALEEAELTMHGWQEQWDSFNLTSAEPRRQAEVQQSRIQQLETSMERLAERQRRLSEERALLAADPEDAAILELSEQLATSEATLEDLQASEDAQVERLEQLRQALQLALQNQQQAQGELQRLNGRLASLEALQQAALDPGTGTAEWLRDQHLAERPRLAEGLKVDAGWELAVETVLGADLQAVLVDDFAGFDLSGFSQGDLRLLSPAGDGVRVPGSLLDKVEAQVDLSPWLGQVKPVDSLEHALALRGQLAAGESLISRDGYWVGRHFLRVRRASEAESGMLARGQEIQRLAAEREEREASVEALETELQNLRAQQRQQENGREHLRRLLQDEARQQGELKAQLSAGKAKVEQLALRRTRLDEEIAELGEQRALEHEQIGEARLQLQEALDAMAVDTEQRELLLAQRDSLRERLDRVRQEARQHKDHAHQLAVRLGSLRAQHDSTRQALERLEMQSERLTEKREQLSLNLEEGEAPLEELRLKLEELLDKRMSVDEELKTAQIALEDADRELRDAEKRRSQAEQQSQLIRGQMEQQRMEWQALTVRRKALQDQLLEDGYDLDGVLATLVAGANEKDAEEELERIAQRIQRLGAINLAAIDEYQQQSERKRYLDAQNDDLAEALETLENVIRKIDKETRNRFKDTFDQINGGLQALFPKVFGGGSAYLELTGEDLLDTGVTIMARPPGKKNSTIHLLSGGEKALTALALVFAIFKLNPAPFCMLDEVDAPLDDANVGRYARLVKEMSETVQFIYITHNKIAMEMADQLMGVTMHEPGCSRLVAVDVEEAMAMVDA				NA	NA	NA	NA	NA
D1-36_03336	660	mcbR	COG1802	HTH-type transcriptional regulator McbR	ATGACGTTCAAGGCCCCGGACAGCCTCGCCGAGCAAATCGCCCATCATCTCGCCGAGCGCATCATTCGCGGCGAAATGAAGCCGGGAGAGCGCATCCAGGAGCAGAAGGTTACGCTGGCGCTCAATGTCAGCCGCGGTTCGGTCCGCGAGGCCTTGCTGATCCTGGAGCGGCGTCACCTGATCGCCATCTTGCCGCGCCGTGGCGCCCACGTCACCGAGCTCACCGAACACAAGGTGCGCAGCCTTTGCGCATTGATGAGCGAGCTCTATATCCTGCTGGGCAATGCAGTGGCGCATGGTTGGAAAGAGCAGGCCGACATGGCGCCGTTCGTGGCGATCCAGCAGCGCCTCAAGGAAGCCTACGAGCGCCAGGACATCCGTACGTTCGTCGACGATAGCTTCAGCGTGATGCGAGCAGCCTATCCCTTTGCCAACAACCCTTATCTGCAGGAAACCGTTGAAAACCTGCAACCGGCCATGAGCCGCGCCTATTTCCTGGCTCTTGAGCAGCGCAAGGCGGAAATGAGCGAATTCCTCGACCTGTTCCAGCGCCTGCTCGCGGCCGTGCTGGCCCGTGATCTGCCGCAGATCCGCACTGTGCTGACGGCTTACGCCCAGCGCAGTTGCGATCTGGTGGTTTCGGCCCTGACGGCGGCCTGA	MTFKAPDSLAEQIAHHLAERIIRGEMKPGERIQEQKVTLALNVSRGSVREALLILERRHLIAILPRRGAHVTELTEHKVRSLCALMSELYILLGNAVAHGWKEQADMAPFVAIQQRLKEAYERQDIRTFVDDSFSVMRAAYPFANNPYLQETVENLQPAMSRAYFLALEQRKAEMSEFLDLFQRLLAAVLARDLPQIRTVLTAYAQRSCDLVVSALTAA				NA	NA	NA	NA	NA
D1-36_03337	1455			hypothetical protein	GTGATCCAGTTTTTACTCAACCAGGAACTCCGTAGCGAGCATGCCCTGGACCCGAACCTGACCGTGCTCAATTACCTGCGCGAACACGTTGGTAAACCCGGCACCAAGGAAGGCTGCGCCAGCGGCGACTGCGGCGCATGCACCGTGGTGGTGGGCGAATTGGAGACGGACGCAGAAGGTGGCGAGCGTATTCGCTACCGCAGCCTCAATTCGTGCCTGACCTTCGTCTCGTCGCTGCACGGCAAGCAATTGATCAGCGTCGAAGACCTCAAGCACGATGGCCAGCTGCACAGCGTCCAGCAGGCGATGGTCGATTGCCACGGTTCGCAATGTGGTTTCTGTACCCCGGGCTTCGTCATGTCGTTGTTCGCCCTGCAAAAGAACAGCGAGCAGCCCGACGCCCATAAGGCCCACGAAGCGTTGGCCGGTAACTTGTGCCGCTGCACCGGTTACCGGCCGATCCTGGCCGCCGCCGACCAGGCCTGTTGCGCCAAGCAGCCCGACCAGTTCGACGCCCGTGAGGCCCAGACCATTGCCCGCCTCAAAGCCATCGCACCGACCGAGACCGGTGAACTCAACTGCGGCGACAAACGCTGCCTGGTGCCGCTGACCGTGGCTGACCTGGCCGACCTCTACGACGCCTACCCACAAGCACGGCTGCTGGCCGGCGGCACTGACCTGGCGCTGGAAGTCACCCAGTTCCACCGCACCCTGCCGGTGATGATCTACGTGGGCAACGTCGCCGAACTCAAGCGCGTCGAGCGTTTCGATGATCGCCTGGAAATCGGCGCGGCCACCGCGCTTTCCGATTGTTACGAGGCCCTGCAAGCCGAATATCCGGACTTCGGCGAACTGCTGCAGCGCTTCGCCTCGTTGCAGATCCGCAACCAGGGCACCCTGGGCGGGAACATCGGCAACGCCTCGCCCATTGGCGACTCGCCGCCCCTACTGATCGCCCTCGGCGCGCAGATTGTGCTGTGCAAAGGCCAGACTCGCCGCACCCTGGCCCTGGAAGATTATTTCATCGATTACCGGGTCACCGCCCGCCAGGAAAGCGAATTCATCGAAAAGATCATCGTGCCCCGGGCCAGCGCCGAGCAAGCGTTTCGCGCCTACAAAGTCTCCAAGCGCCTGGACGACGACATTTCCGCCGTGTGCGCGGCGTTCAACCTGCGCATCGACAACGGCATGGTCCGCGAGGCCCGTGTGGCCTTCGGTGGCATGGCCGCGACCCCCAAGCGCGCCAAGCACTGTGAGGCCGCCCTGATCGGCGCGCCCTGGACCGACAGCACCCTCGAACGCGCCTGCGCGGCCCTGGCGGAGGATTTCACGCCTCTGTCGGACTTCCGCGCCAGCAAGGAATACCGCCTGCTCAGTGCCCGCAACCTGCTGCGCAAATATTTCATCGAACTGCAAACGCCCCACATCGAGACTCGGGTGACCGCTTATGTCTAA	MIQFLLNQELRSEHALDPNLTVLNYLREHVGKPGTKEGCASGDCGACTVVVGELETDAEGGERIRYRSLNSCLTFVSSLHGKQLISVEDLKHDGQLHSVQQAMVDCHGSQCGFCTPGFVMSLFALQKNSEQPDAHKAHEALAGNLCRCTGYRPILAAADQACCAKQPDQFDAREAQTIARLKAIAPTETGELNCGDKRCLVPLTVADLADLYDAYPQARLLAGGTDLALEVTQFHRTLPVMIYVGNVAELKRVERFDDRLEIGAATALSDCYEALQAEYPDFGELLQRFASLQIRNQGTLGGNIGNASPIGDSPPLLIALGAQIVLCKGQTRRTLALEDYFIDYRVTARQESEFIEKIIVPRASAEQAFRAYKVSKRLDDDISAVCAAFNLRIDNGMVREARVAFGGMAATPKRAKHCEAALIGAPWTDSTLERACAALAEDFTPLSDFRASKEYRLLSARNLLRKYFIELQTPHIETRVTAYV	PGPT0007250_729	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_DEGRADATION,PGPT0007250-xdhA-K13481	NA	NA
D1-36_03338	2400	pucD	COG1529	putative xanthine dehydrogenase subunit D	ATGTCTAATCATCACGCCGTAGAAAAGACCCAAGCCGAACTGGCGCAACTGTTCGCCCGCGACCTCACCACCGGCGTGGGCCGCAGCGTCAAGCATGACAGCGCCGCGAAGCACGTTTCAGGCGAGGCACAGTACATCGACGACCGCCTGGAATTCCCGAACCAATTGCACGTCTATGCACGGCTCTCGGACCGCGCCCACGCGCGGATCCTGCGCATCGACACCGCGCCTTGCTACGCCTTCGAAGGCGTGCGCATCGCCATTACCCACCAGGACATCCCGGGCCTGAAGGACATCGGCCCGTTGCTGCCCGGTGACCCGCTGCTGGCGATCGACGATGTGCAGTTCGTTGGTCAACCCGTTCTGGCCGTTGCCGCCAGGGATCTCGAAACGGCGCGCAAGGCAGCCATGGCGGCCATAGTCGAATACGAGGACCTGGAACCGGTGCTGGATGTGGTCGAGGCGCTGCGCAAGCGGCATTTCGTGCTCGACAGCCATACCCACCAGCGCGGCGATTCAGCCACGGCGCTGGCAAGCGCCGAACATCGCATCCAGGGTTCACTGCACATCGGCGGCCAGGAACATTTCTACCTGGAAACCCAGATTTCCTCGGTGATGCCCACCGAAGACGGCGGCATGATCGTCTACTGCTCGACCCAGAACCCCACCGAAGTGCAAAAGCTGGTGGCCGAAGTGCTCGGCGTGTCGATGAACAAAGTGGTGGTGGACATGCGTCGCATGGGCGGTGGGTTCGGCGGCAAGGAAACCCAGGCCGCCAGCCCGGCGTGCCTGTGCGCCGTCATCGCGCACCTCACCGGCCAGCCGACCAAGATGCGCCTGCCCCGGGTCGAAGACATGCTGATGACCGGCAAGCGCCATCCCTTCTACATCGAATACGACGTCGGCTTCGACAGCACCGGTCGTCTGCACGGCATTGCCTTGGAACTGGCTGGCAATTGCGGCTGCTCGCCGGACCTGTCCGCCTCGATCGTCGACCGAGCGATGTTCCATGCCGACAACGCCTACTACCTGGGCGATGCAACGATCAACGGCCACCGCTGCAAGACCAACACCGCCTCGAACACCGCTTACCGTGGTTTCGGCGGCCCCCAAGGCATGGTCGCCATCGAAGAGGTGATGGACGCTATCGCCCGTCACCTGGGGCTCGACCCCCTGGCGGTGCGCAAGGCCAACTACTACGGCAAGACCGAGCGCAACGTCACGCATTACTACCAGACCGTCGAGCACAACATGCTCGAAGAGATGACCGCCGAGCTTGAACAAAGCAGCCAATACGCCGAGCGCCGCGAAGCGATCCGCCGCTACAACGCAGGCAGCCCGATCCTGAAAAAGGGCCTGGCGCTAACGCCGGTGAAGTTCGGCATTTCGTTCTCCGCCAGCTTCCTCAACCAGGCCGGCGCGTTGATTCACGTCTACACCGACGGCAGCATCCACCTCAATCACGGCGGCACAGAGATGGGCCAAGGCTTGAACACCAAGGTCGCCCAAGTGGTGGCCGAGGTATTCCAGGTGGAAATGGACCGCGTGCAGATCACCGCGACCAACACCGACAAGGTGCCGAACACCTCGCCCACCGCCGCGTCCAGTGGCGCCGACCTGAACGGCAAGGCGGCGCAGAATGCCGCCGAAACCATCAAGCGGCGCCTGGTGGAGTTCGCCGCGCGGCAATACAAGGTCAGCGAGGAAGACGTGGAATTCCACAACGGCCACGTGCGGGTGCGCGATCACATCCTGACCTTCGAGGCACTGGTTCAACAGGCGTATTTCGCGCAGGTCTCGCTGTCGAGCACCGGTTTCTACAAGACCCCCAAAATCTACTACGACCGCAGCCAGGCCCGTGGCAGGCCGTTCTACTACTACGCCTACGGCGCGGCGTGCGCCGAGGTGATCGTCGATACCCTCACCGGCGAGTACAAGATGCTGCGCACCGACATCCTTCACGACGTCGGCGCCTCGCTGAACCCGGCCATCGACATCGGCCAGGTCGAGGGCGGATTCATCCAGGGCATGGGCTGGCTGACCATGGAAGAACTGGTGTGGAACGACAAGGGCAAGCTGATGACCAATGGCCCGGCCAGCTACAAGATCCCCGCCGTGGCTGACATGCCATTGGATTTGCGGGTCAAGCTGGTGGAAAACCGCAAGAACCCCGAAGACACGGTGTTCCACTCCAAGGCCGTGGGCGAGCCGCCGTTCATGCTCGGCATCGCCGCTTGGTGCGCCATCAAGGACGCCGTGGCGAGCCTGGGGGATTACCGGCATCAACCGAAGATCGACGCGCCGGCGACGCCGGAGCGGGTGTTGTGGGGGTGTGAGCAGATGCGGCAGTTGAAGGCTGTGAAGCCTGCGCAAGCCGAGGTCGAGTTGGCTTCACTTTAA	MSNHHAVEKTQAELAQLFARDLTTGVGRSVKHDSAAKHVSGEAQYIDDRLEFPNQLHVYARLSDRAHARILRIDTAPCYAFEGVRIAITHQDIPGLKDIGPLLPGDPLLAIDDVQFVGQPVLAVAARDLETARKAAMAAIVEYEDLEPVLDVVEALRKRHFVLDSHTHQRGDSATALASAEHRIQGSLHIGGQEHFYLETQISSVMPTEDGGMIVYCSTQNPTEVQKLVAEVLGVSMNKVVVDMRRMGGGFGGKETQAASPACLCAVIAHLTGQPTKMRLPRVEDMLMTGKRHPFYIEYDVGFDSTGRLHGIALELAGNCGCSPDLSASIVDRAMFHADNAYYLGDATINGHRCKTNTASNTAYRGFGGPQGMVAIEEVMDAIARHLGLDPLAVRKANYYGKTERNVTHYYQTVEHNMLEEMTAELEQSSQYAERREAIRRYNAGSPILKKGLALTPVKFGISFSASFLNQAGALIHVYTDGSIHLNHGGTEMGQGLNTKVAQVVAEVFQVEMDRVQITATNTDKVPNTSPTAASSGADLNGKAAQNAAETIKRRLVEFAARQYKVSEEDVEFHNGHVRVRDHILTFEALVQQAYFAQVSLSSTGFYKTPKIYYDRSQARGRPFYYYAYGAACAEVIVDTLTGEYKMLRTDILHDVGASLNPAIDIGQVEGGFIQGMGWLTMEELVWNDKGKLMTNGPASYKIPAVADMPLDLRVKLVENRKNPEDTVFHSKAVGEPPFMLGIAAWCAIKDAVASLGDYRHQPKIDAPATPERVLWGCEQMRQLKAVKPAQAEVELASL	PGPT0007265_244	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_DEGRADATION,PGPT0007265-xdhB|pucD-K13482	NA	NA
D1-36_03339	837			hypothetical protein	ATGTACAACTGGATCAGCGCCCTCGCCGACCTGCAAACCCGCGGAGAACCCTGCGTGCTGGTGACGATCATCGAAGAGCTTGGCTCCACGCCGCGCAACGCCGGTTCGAAGATGGTCATCAGCGCCAGCCAGACGTTCGACACCATCGGTGGCGGTCACCTGGAATACAAGGCCATGGAAATCGCTCGGCAGATGCTCGCCAGCGGCCAGCAGAACACGCATCTGGAGCGTTTCAGCCTCGGCGCCAGCCTTGGCCAGTGCTGCGGCGGCGTCACCGTGTTGCTGTTCGAACCCATGGGGCAGGTCCAGGCGCAGATCGCCGTGTTCGGCGCCGGCCATGTCGGCCGGGCCTTGGTGCCGTTGCTGGCAAGCCTGCCCTGCCGGGTCCGCTGGATCGACTCGCGGGAGGCGGAGTTTCCTGAACAGTTACCCCATGGTGTGCGCAAGATCGTCACTGAAGAGCCATTGGATGAAGTCGACGACTTGCCCGCCGGCAGCTACTGCATCGTCATGACCCACAACCATCAGCTCGACCTGGAACTGAGCGCCGCGATTCTCAAGCGCAACGACTTCGCCTATTTCGGCCTGATCGGCTCGAAGACCAAACGGGTCAAGTTCGAACACCGCTTGCGGGATCGCGGCTTCGACAGCGGCACCCTGCAACGTATGCGTTGCCCGATGGGCATTGGCGAAGTCAAAGGCAAATTGCCTGTGGAAATCGCCATCTCCATCGCCGGCGAAATCATCGCCACCTATAACGCGGATTTCGGCCAGCACACCTCGCGCGCCGAACCCATTGCCAAGTTGCTGCCGGTTTCGCGCCGCAGCCAGCGTTAA	MYNWISALADLQTRGEPCVLVTIIEELGSTPRNAGSKMVISASQTFDTIGGGHLEYKAMEIARQMLASGQQNTHLERFSLGASLGQCCGGVTVLLFEPMGQVQAQIAVFGAGHVGRALVPLLASLPCRVRWIDSREAEFPEQLPHGVRKIVTEEPLDEVDDLPAGSYCIVMTHNHQLDLELSAAILKRNDFAYFGLIGSKTKRVKFEHRLRDRGFDSGTLQRMRCPMGIGEVKGKLPVEIAISIAGEIIATYNADFGQHTSRAEPIAKLLPVSRRSQR	PGPT0007280_3243	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-XANTHINE_METABOLISM	PHYTOHORMONE-XANTHINE_BIOSYNTHESIS,PGPT0007280-xdhC|paod|ygeB|pucA-K07402	NA	NA
D1-36_03340	1305	guaD	COG0402	Guanine deaminase	ATGCCCCTGACACGCAAAGCCTACCGCGCCGCCCTGCTCCACAGCCTCGCCGACCCGGTCGAAGTTGGCATCGAGGCGTCCTATGAATATTTCGAGGATGGCCTGCTGGTGGTGGAAAATGGCCAGATCAGCGCCATCGGCCACGCCCATGAGCTGCTGCCGACCCTGGCGGCGGATATCGAAATCGCCCATTACCCGGATGCGCTGATCACTCCAGGCCTCATCGATACCCATATCCACCTGCCTCAGACCGGTATGGTCGGCGCCTATGGCGAGCAACTGCTGGACTGGCTCAACACCTACACCTTCCCCTGCGAAAGCCAATTCGCCGACCCGGCCCACGCCGAGGCAGTGGCGGATATTTTCGTCAAGGAACTGCTGCGCAACGGCACTACCACGGCCCTGGTGTTTGGCAGCGTGCATCCCCAATCGGTAAATGCATTTTTCGAGGTGGCCGAGAAGCTCGACCTGCGCATGATTGCCGGCAAGGTGATGATGGACCGCAACGCCCCGGACTATCTGGTCGACACTGCCGAATCCAGCTACACCCAAAGCAAGGCACTGATCGAGCGTTGGCATGGCAAGGGTCGCCTGCACTACGCCGTGACGCCGCGCTTCGCGCCGACCAGCACCCCGGAGCAACTGACCCTGGCCGGCCAGTTGCTCAGTGAATACCCGGACCTGTACATGCAGACCCACATCAGTGAGAACCTGCAGGAAGTGCAATGGGTCAAGGAATTGTTCCCGGAGCGCAAGGGATACCTGGACGTCTACGACCACTACCAGTTGCTCGGCGAACGTTCGGTGTTCGCCCATGGCGTGCACCTGTGTGACGACGAATGCGCGCGCCTGGCCGAGACCGGATCGGCCATCGCCTTTTGCCCGACGTCGAACTTCTTCCTCGGCAGTGGCCTGTTCAACTTGCCGATGACGGAGAAGCACAAAGTGAACGTGGGCCTGGGCACGGACGTGGGCGGCGGCACCAGTTTTTCGCTGCTGCAAACCCTGAACGAAGCCTACAAGGTCATGCAACTGCAAGGGGTGCGGCTGAGCCCGTTCAAATCGCTGTACCTGGCCACCCTCGGCGGGGCCCGGGCCTTGCGCCTGGACGACAAGATCGGGACGTTGCAACCGGGAACGGACGCGGATTTCCTGGTGCTGGACTACAACGCCACGCCATTGCTGAGCTATCGCCTGAAGCAGGCCAAGGACATTGCCGAGCGGTTGTTCGTGCTGATGACGCTGGGGGATGATCGGGCGGTGGCGCAGACTTATGCGGCGGGTCGGTTGGTGCACCAGCGGTAG	MPLTRKAYRAALLHSLADPVEVGIEASYEYFEDGLLVVENGQISAIGHAHELLPTLAADIEIAHYPDALITPGLIDTHIHLPQTGMVGAYGEQLLDWLNTYTFPCESQFADPAHAEAVADIFVKELLRNGTTTALVFGSVHPQSVNAFFEVAEKLDLRMIAGKVMMDRNAPDYLVDTAESSYTQSKALIERWHGKGRLHYAVTPRFAPTSTPEQLTLAGQLLSEYPDLYMQTHISENLQEVQWVKELFPERKGYLDVYDHYQLLGERSVFAHGVHLCDDECARLAETGSAIAFCPTSNFFLGSGLFNLPMTEKHKVNVGLGTDVGGGTSFSLLQTLNEAYKVMQLQGVRLSPFKSLYLATLGGARALRLDDKIGTLQPGTDADFLVLDYNATPLLSYRLKQAKDIAERLFVLMTLGDDRAVAQTYAAGRLVHQR	PGPT0021515_1503	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021515-guaD-K01487	NA	NA
D1-36_03341	765	nanR_2		HTH-type transcriptional repressor NanR	ATGAACGAACAGTTGCAGCCCCTCAAGAAACAACCGCGAGCTGGCAAAGCCGGCCGCAGCGGAACCCAGGACGATATTGTCTATGCGCACATTTTCGAGGCCATCCTCGAACAGCGCCTGGCGCCCGGTACGAAATTGAGCGAAGAGGCGCTGGGGGAGATTTTCGGGGTCAGCCGCACGATCATTCGCCGCGCGCTGTCGCGCCTGGCCCATGAAGGCGTGGTGTTGCTGAGGCCCAATCGTGGCGCGGTGGTTGCCAGCCCAAGTGTCGAAGAGGCCCGCCAGGTGTTCTTCGCCCGGCGCATGGTGGAGAAGGCGATCACGGAGCTGGCGGTCCAGCACGCCACGGCCGAGCAGCTTGCCGAGCTGCGGCAGATGGTCAGCGACGAGCGCGACAGTTTTTCCCGTGGCGACCGTGGCGCCGGCATCCGGCTGTCGGGCGAGTTCCACCTGAAACTGGCCGAGGCGGCAAAAAACGCACCGCTGATCAGTTTCCAGCGCAGCCTGGTGTCGCAGACTTCGTTGATCATTGCCCAGTACGAAAGCGGCAACCGCTCGCACTGTTCCTATGACGAACACACCCAATTGATCGACGCCATCGAGGCCCGTGACGCGGCCTTGGCGGTGAACCTGATGATGCATCACATGGACCACATCGACAGCAAGCTCAACCTCGACGAAGAAAGCGCGTCGGATGACTTGCACGCGGTGTTCTCGCACCTGTTGCAGAGCAAGAAGCCGGGGCGTTCGCCTGCCAAGCTCTGA	MNEQLQPLKKQPRAGKAGRSGTQDDIVYAHIFEAILEQRLAPGTKLSEEALGEIFGVSRTIIRRALSRLAHEGVVLLRPNRGAVVASPSVEEARQVFFARRMVEKAITELAVQHATAEQLAELRQMVSDERDSFSRGDRGAGIRLSGEFHLKLAEAAKNAPLISFQRSLVSQTSLIIAQYESGNRSHCSYDEHTQLIDAIEARDAALAVNLMMHHMDHIDSKLNLDEESASDDLHAVFSHLLQSKKPGRSPAKL				NA	NA	NA	NA	NA
D1-36_03342	1191	ydcO	COG3135	Inner membrane protein YdcO	ATGACCGAAGTCACGACCGCGCCACTTCGTCCATTGGCCGATACATCGCCCTCGGCCATCGTTGCCGGTTTCATCGCCATGATGACCGGTTACACCAGTTCCCTGGTGCTGATGTTCCAGGCCGGACAAGCGGCGGGCCTGACCACCGGGCAGATTTCCTCGTGGATCTGGGCCATCTCCATCGGCATGGCGGTGTGCTCCATCGGTTTGTCGCTGCGCTACCGCACGCCCATCACCATCGCCTGGTCGACACCCGGCGCGGCGCTGCTGATTACCAGCCTCGGCGGCGTAAGTTATGGCGAGGCCATCGGCGCGTACATCACCTGCGCGGTACTGGTCACGATCTGCGGCCTGACCGGCAGCTTCGAGCGCCTGGTCAAGCGTATTCCTGCCTCCCTGGCGGCGGCGTTGCTGGCAGGCATTTTGTTCAAGATCGGCAGCGAGATTTTCGTCGCGGCCCAGCACCGCACCGGTCTGGTGCTGGGGATGTTTTTCACCTACCTGATCGTCAAGCGCCTGTCGCCACGTTATGCGGTGCTGGCGGCACTGCTGGTCGGCACGGCGCTGTCGGGCGTGCTGGGGCTCCTGGATTTCAGCGGTTTTGCCTTGGAAGTCGCGACGCCGGTCTGGACCACGCCGCACTTTTCCCTGGCCGCCACCATCAGCATCGGCATCCCATTGTTCGTGGTGGCAATGACCTCGCAGAACATGCCCGGCATCGCGGTGCTGCGCGCCGATGGCTACAACGTACCGGCCTCGCCGTTGATCACCAGCACCGGCATCGCCTCGCTGCTGTTGGCGCCGTTTGGCTCCCATGGCATCAACCTCGCTGCGATCAGCGCAGCGATCTGCACCGGGCCGCACGCCCACGAAGATCGCAACAAGCGCTACACGGCGGCCGTGTGGTGTGGAGTTTTCTACGGAATTGCCGGGGTTTTCGGCGCGACACTGGCGGCGTTGTTCGCGGCGCTGCCCAAGGAACTGGTGCTGTCCATCGCGGCGCTGGCCCTGTTCGGGTCGATCATCAACGGCCTGAGCATCGCCATGAGCGAAGCGAAGGAACGGGAAGCGGCGCTGATCACCTTCATGGTCACGGCGTCGGGGCTGACGCTGTTTTCCATCGGCTCGGCGTTCTGGGGAATTGTGGCGGGGGTGTTGACGTTGCTTATCCTCAACTGGCGCAACGCTTAA	MTEVTTAPLRPLADTSPSAIVAGFIAMMTGYTSSLVLMFQAGQAAGLTTGQISSWIWAISIGMAVCSIGLSLRYRTPITIAWSTPGAALLITSLGGVSYGEAIGAYITCAVLVTICGLTGSFERLVKRIPASLAAALLAGILFKIGSEIFVAAQHRTGLVLGMFFTYLIVKRLSPRYAVLAALLVGTALSGVLGLLDFSGFALEVATPVWTTPHFSLAATISIGIPLFVVAMTSQNMPGIAVLRADGYNVPASPLITSTGIASLLLAPFGSHGINLAAISAAICTGPHAHEDRNKRYTAAVWCGVFYGIAGVFGATLAALFAALPKELVLSIAALALFGSIINGLSIAMSEAKEREAALITFMVTASGLTLFSIGSAFWGIVAGVLTLLILNWRNA	PGPT0005385_867	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_SYMPORTER,PGPT0005385-benE-K05782	NA	NA
D1-36_03343	345		COG3171	putative protein	ATGGCGACTAACCGTTCCCAGCGTCTGCGCAAAAAGCTGTGCGTGGATGAATTTCAAGAGCTGGGTTTCGAACTGAACCTGGATTTCAAAGAAGATCTGGCCGATGAGGCTATTGACGCTTTCCTCGACGCTTTCCTGAAAGAAGCCATGGAAGCCAACGGCCTGGGTTATGTCGGCGGTGACGACTACGGCCTGGTTTGCCTGCAGAAGCGTGGCTCGGTTACCGAAGAGCAGCGCGCTGCCGTCGAAGCCTGGCTCAAGGCCCGTCCTGAGCTGACCAGCGTTGAAGTCAGCCCGTTGCTGGACGTGTGGTATCCGGAAAAGCCGATCAATTCGAAGGCTTGA	MATNRSQRLRKKLCVDEFQELGFELNLDFKEDLADEAIDAFLDAFLKEAMEANGLGYVGGDDYGLVCLQKRGSVTEEQRAAVEAWLKARPELTSVEVSPLLDVWYPEKPINSKA				NA	NA	NA	NA	NA
D1-36_03344	1467	dacC_1	COG2027	D-alanyl-D-alanine carboxypeptidase DacC	ATGATCAAATCTTTGCGTCCACTGCTTCTGGCCAGCCTTCTTCTTCCCCTGGCCTTTCCGGTCTCCACCAGCGCCGCCACCATCAACACCGCCCTGTCGCCCAATGTGCAAAAGGCCCTCAAGAACAGCAAGCTGCAAGACAACGCCCTCTCCCTGGTGATGGTGCCGCTCAACGGCCCCGGCACCCCGACGCTTTACAACGCCGACGTCTCGGTGAACCCGGCGTCCACCATGAAGCTGGTGACGACCTACGCGGCCCTGGAAATGCTCGGGCCGAACCACCAGTGGAAAACCGAGTTCTACACCGACGGGACCCTCAGCGGCGGGATCCTCAACGGTAACCTGTACCTCAAGGGCGGCGGCGACCCCAAGCTGAACATGGAGAAGCTCTGGCTGTTGATGCGCGATTTGCGAGCCAACGGCGTGCAACAAGTCACCGGCGACCTGGTGCTCGACCGCAGCTTTTTCATCCAGCCGCAATTGCCCGAGTTCAACGACGACGGCAACGATGTGAACAAGCCCTTCCTGGTCAAGCCCGACTCGCTGCTGGTCAACCTGAAGGCCCTGCGCTTCGTGGCCCGCAATGACGGGGGCCGGGTGCTGGTGTCGGTGGAGCCTCCCATTGCCAACATCCGCATCGAAAACGTGGTCAAGGCCGCCAACTCCAAGCAATGCACCGGCGGCGTGCGCTACAACCCGGTGGCCCAGGCGGACGGCAGCATGACGGTGACCGTCAGCGGCCAGCTCGGCGAGGGTTGCAGTTCCCAGACCTACCTGTCGCTGCTCGATCATGCCACCTACACCGCTGGCGCCGTACGGGCAATCTGGAAAGAACTGGGCGGCAGCATCCAGGGCAACGACCGCCTGGCCGCGACCCCGAAGAGCGCCAAACTGTTGGCCCGGGCGTTCTCCCCGGACCTGGCGGAGATCATCCGCGACATCAACAAATACAGTAACAACACCATGGCCCAACAACTGTTCCTGAGCCTGGGCGCGGAGTTTCGCAACGAGGCCGACGGTGACGACGCCAAGGCGGCGCAACGAGTGGTACGCCAATGGCTGGCCAAGAAAGGCATCACGGCGCCGCACCTGGTGATGGAAAACGGCTCGGGCCTGTCCCGCGCGGAACGGGTCAGCGCCCGGGAAATGGCGGCGATGCTGCAAGCGGCATGGCGCAGCCCGTACGCGGCGGAATTCGTCAGCTCGATGCCCATCGCCGGCACCGACGGCACCATGCGCAAACGCTTGAAGACCACTGCCATGGCGGGCGAAGCCCACATCAAGACCGGCACGCTGAACACCGTCCGCGCCATTGCCGGCTACAGCCGTGACATCAATGGCAATACCTGGGCGGTGGTGGCCATCCTCAACGATCCGAAGCCATGGGGCGCTTCCTCCGTGCTGGACCAGGTGCTGCTGGACCTGTATCGCCAGCCGAAACTGCCCCAGGCAGCGTCGCTGCTCTGA	MIKSLRPLLLASLLLPLAFPVSTSAATINTALSPNVQKALKNSKLQDNALSLVMVPLNGPGTPTLYNADVSVNPASTMKLVTTYAALEMLGPNHQWKTEFYTDGTLSGGILNGNLYLKGGGDPKLNMEKLWLLMRDLRANGVQQVTGDLVLDRSFFIQPQLPEFNDDGNDVNKPFLVKPDSLLVNLKALRFVARNDGGRVLVSVEPPIANIRIENVVKAANSKQCTGGVRYNPVAQADGSMTVTVSGQLGEGCSSQTYLSLLDHATYTAGAVRAIWKELGGSIQGNDRLAATPKSAKLLARAFSPDLAEIIRDINKYSNNTMAQQLFLSLGAEFRNEADGDDAKAAQRVVRQWLAKKGITAPHLVMENGSGLSRAERVSAREMAAMLQAAWRSPYAAEFVSSMPIAGTDGTMRKRLKTTAMAGEAHIKTGTLNTVRAIAGYSRDINGNTWAVVAILNDPKPWGASSVLDQVLLDLYRQPKLPQAASLL	PGPT0024035_1075	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-CARBOXYPEPTIDASE_ACTIVITY,PGPT0024035-dacB-K07259	NA	NA
D1-36_03345	2385			hypothetical protein	ATGGCATTACATCAGGTGCGTCCCAGAATCCTGGGCTTTATCAGTGAAGATGTTTCGGCATGGCTAGTGGCGTCCCTGGTCCTGATGACGGGCTTGCTGCTGACCGGTTTGCTGGCCTGGGGCACGCTGAACCTGTTCAACCAGCAATTGCGCCAGCGCTTCGAACTGCAAGCCGAAGAGCGTTATAGCCGCCTCCAGGAACGTTTCCAGGATCAGGAGCAACGCCTCGACAGCCTGAGACGTTTCTTCGCCAACTCCTCCGGGGTTTCCAACAGCGAGTTCCATGGCTACACCGAAGCCCTGCTGCGGCGCACCCGGGCCTTTGCCTGGGCGCCCCGGGTCTTTCGGGACGATCGGCAGCCGTTTGAACAACAGGCGCGGGCCGAGGTGTCTGGCACCTATGCCATTCGCGAACAGGATGAAGCCGGTATGTTGCACCCGGCCATAGAACGGGACGAATACGTACCGGTGCTGTACGTCCAGAGCCAACCGTCCTATGGCTCGCCGCTGGGCCTGGATCTTCTTTCGCAGCCGTTACGCCGTGTGACGCTGGAGCGGGCCCGCCAGCGTAACGCCCTGGTGGTTTCCCAACCGGTTAACCTGATAGGGGTCGACCCGGCCTTTTCCCGCGGGGTCGTGCTCGCAGCCCCCGTGAGTCGGCATCTGGCCGGTGAGCCGTTCGGATACGTGGTGGCCGCCGTCAGCATGCGCCAGCTGGTCGCCGATGACCTGCCTGCGCCGGGCCGCGACAATCTGTCGATGCGTGTGATCGACCTGTCCGATGGCGATCATGGGGAGGTGCTGTACGAGACGTCGGACCAGCCGGGCAAAAGCGATTTGGCAGCGACCCGGTTACTGCGCCTCGCGGACCGGGACTTCCGGGTCGAATTGCGTCCCAGCCGCCTGTTCCTGTCGAGCAACCATTCCAGCGTGACAAGCCTGACAGTGCTGGGCGCATTGCTCAGCCTGTTACTGAGCGCGTTGTTTTATACGCTGGTCAGCCAACGGCAGCGGGCCCTGGCACTGGTGGAGCAGCGCACCCGGGAATTGCGGGCCCGGGAGTCGGAACTGCGCGGCACCCACGGCCAACTGCGGGGCGTGCTCGATGCCGCGACCCAGGTTGCGATCATCGCCACCGACCTGCGCGGTGTCATCACTACGTTCAATGCCGGCGCCGAACAGATGCTCGGCTACCGCAGCTGTGACGTCCTGCAAAGCATGACCCTGGAGAGCCTCCACGTTCCCCGCGAGTTGCAACACCGGGCCGCACAACTGGCGGCCCGCTTTGGAAAACCGATCCCGACATGTCACGCGATGCTGCTTGAGGGCGGCGAACAAAGTGGACAACAGGCTCGTGAGTGGACCCTGGTGCGCCGCGACGGCAGTCACCTGACGGTCAACATGTTGGCTACGCCGGTGCTCGATGAGCAGGGATTATGGGTCGGGCACCTGGCGATCTGCATCGACGTCACCGAGCGCAAGCGCGTCCACGAAGCGCTGGCGGCGAGGGATCTGCTGTTGAAGAAACTCAGCGCCCATGTGCCTGGCGGCATCTATCAATTCAAGATGGATTTCAACGGCGGGTTCAGTGTGATCTACGCCAGCGATGGCATCCGCGACATTTATGAGTTGGAGCCTGATGTGCTGGTGCGGCACGCTGATGCGATTTTCTCGCGTATCCATCCATCCGACAGCGCACGGGTACGCGCGTCGATTCGCACCTCGGCCGATACCTTGAGCCCCTGGCGGGAGGAGTACCGGGTGCAACTGCCGCATCGCGGGCTGCGTTGGGTGCGTGGCGAGGCGACTCCCGAACAGTTGCCCGGCGGCGGCGTGTTATGGCACGGCTACATTTCCGACATCTCGGACCTCAAGCGCGTCGAGGAAGAGCTGCGGGCGCTGTCGGTCACCGACGCCTTGACCGGGATTCGCAACCGGCGCTATTTCCAGGAGCGCCTGACGGCGGAAATGACCCGGGTCGAACGTGGCTCCGGGGAGCTGACGGTGGTCATGCTCGATATCGATCATTTCAAGCGTATCAACGACCAGCACGGCCATGCGGTGGGGGACCGGGTGTTGCAGGCGGTCTGCCAGCGGATCACCCAGCGACTGCGCCGCACCGATGTGTTTTGCCGGCTGGGCGGGGAGGAGTTCGTGGTGCTATGCCCGGATACCGACAGCGAAAGCGCCTACACGCTGGCGTTGGGGTTGTGGGATGGTCTTCGCAGCGCGCCGATTGACGACGTGGGCATCATCACCGCCAGTTTTGGCGTGGCCAGTTGGCGCGCCGGCGAAGGCGCCGATGCGTTGCTGCTGCGGGCTGACGCTGGGGTTTACGCGGCCAAGCAGGCAGGACGGGATCGGGTCGAGGTGCAGTTGGCATAA	MALHQVRPRILGFISEDVSAWLVASLVLMTGLLLTGLLAWGTLNLFNQQLRQRFELQAEERYSRLQERFQDQEQRLDSLRRFFANSSGVSNSEFHGYTEALLRRTRAFAWAPRVFRDDRQPFEQQARAEVSGTYAIREQDEAGMLHPAIERDEYVPVLYVQSQPSYGSPLGLDLLSQPLRRVTLERARQRNALVVSQPVNLIGVDPAFSRGVVLAAPVSRHLAGEPFGYVVAAVSMRQLVADDLPAPGRDNLSMRVIDLSDGDHGEVLYETSDQPGKSDLAATRLLRLADRDFRVELRPSRLFLSSNHSSVTSLTVLGALLSLLLSALFYTLVSQRQRALALVEQRTRELRARESELRGTHGQLRGVLDAATQVAIIATDLRGVITTFNAGAEQMLGYRSCDVLQSMTLESLHVPRELQHRAAQLAARFGKPIPTCHAMLLEGGEQSGQQAREWTLVRRDGSHLTVNMLATPVLDEQGLWVGHLAICIDVTERKRVHEALAARDLLLKKLSAHVPGGIYQFKMDFNGGFSVIYASDGIRDIYELEPDVLVRHADAIFSRIHPSDSARVRASIRTSADTLSPWREEYRVQLPHRGLRWVRGEATPEQLPGGGVLWHGYISDISDLKRVEEELRALSVTDALTGIRNRRYFQERLTAEMTRVERGSGELTVVMLDIDHFKRINDQHGHAVGDRVLQAVCQRITQRLRRTDVFCRLGGEEFVVLCPDTDSESAYTLALGLWDGLRSAPIDDVGIITASFGVASWRAGEGADALLLRADAGVYAAKQAGRDRVEVQLA				NA	NA	NA	NA	NA
D1-36_03346	2271	rlmL_2	COG0116	Ribosomal RNA large subunit methyltransferase K/L	ATGTCCGACCGTTTCGAACTCTTCCTCACCTGTCCCAAGGGCCTCGAAGGCCTGCTCCTTGAGGAAGCCGTCGGGCTTGGCCTTGAAGAGGCGCGCGAGCACACCTCGGCCGTTCGCGGCAGCGCTGACATGGAGACAGCCTATCGGCTCTGCCTATGGTCGCGCCTGGCGAACCGCGTGTTGCTGGTGCTCAAGCGCTTCCCGATGAAGGACGCTGAAGACCTTTACCACGGCGTACTGGATGTCGATTGGCAAGACCACATGCTGCCCGATGGCACCCTGGCGGTGGAATTCAGCGGTCACGGCTCGGGCATCGACAACACCCATTTCGGCGCCTTGAAGGTCAAGGACGCTATCGTCGACAAATTGCGCACCCCTTCGGGCGACCGTCCTTCCATCGATAAGCTCAACCCGGACCTGCGCATCCACCTGCGCCTGGACCGTGGCGAAGCGATCCTTTCCCTGGATCTCTCGGGCCACAGCCTGCACCAGCGCGGCTATCGCTTGCAGCAAGGCGCCGCACCATTGAAGGAAAACCTCGCCGCCGCGATCCTGATCCGCGCCGGATGGCCGCGCATTGCCGCCGAAGGCGGGGCGCTGGCCGACCCGATGTGCGGCGTCGGCACGTTCCTGGTGGAAGCCGGCATGATCGCCGCCGACATGGCGCCCAACCTGCGTCGTCAGCAATGGGGCTTTACCGCCTGGCTCGGCCATGTGCCGGCGCTGTGGCGCAAGCTCCATGAGGAGGCCACCGAGCGCGCCGCCGCCGGACTGGCCAAGCCGCCGTTGTGGATTCGTGGCTACGAGGCCGACCCACGGCTGATCCAGCCGGGCCGCAACAACGTCGAACGCGCGGGCCTGAGCGAGTGGATCAAGATCTACCAGGGCGAAGTCGCCACTTTCGAACCACGCCCGGACCAGAACCAGAAGGGCCTGGTGATCTGCAACCCACCGTATGGCGAGCGTCTGGGCGACGAAGCCAGCCTGCTGTATCTCTACCAGAACCTCGGCGAACGCCTGCGCCAGGCCTGCCTCAACTGGGAAGCGGCGGTGTTCACCGGCGCGCCGGACCTGGGCAAGCGCATGGGCATTCGCAGCCACAAGCAGTATTCGTTCTGGAACGGCGCCTTGCCCTGCAAGCTGCTGTTGATCAAGGTGCTGCCGGATCAGTTCGTCACGGGCGAGCGTCGCACCCCGGAACAACGCCAGGCCGAGCGTGAACAATCCGCCTACGACCAGGCCCCGGATGTCCCCCAGGAGCGCCAGTACAACAAGAACGGCAACCCCATCAAGCCAGCCCCGGCACCCGCCCCGGTGATCGAGCAGGCGCGCCTGAGCGAAGGCGGGCAGATGTTTGCCAACCGGCTGCAAAAAAACCTGAAGTTGCTGAGCAAGTGGGCCAAGCGTGAGGGCGTGGAGTGCTATCGTGTCTACGATGCCGACATGCCCGAATACTCGATGGCCATCGACCTGTACCACGATTGGGTGCACGTCCAGGAATACGTCGCGCCCAAATCCATCGATCCGGAAAAGGCCTCGGCCCGGTTGTTCGATGCGCTGGCGGCGATTCCCCAGGCCTTGAATGTCGACAAGAGCCGCGTGGTCATCAAGCGCCGCGAGCGCCAGAGCGGCACCAAACAGTACGAGCGCCAGAGCGCCCAAGGCAAATTCACCGAGGTCAGCGAAGGCGGCGTGAAGCTGTTGGTCAACCTCACGGATTACCTGGACACGGGGTTGTTCCTCGACCACCGGCCGATGCGCCTGCGGATCCAGAAGGAGGCAGCCGGCAAGCGTTTCCTGAACCTGTTCTGCTACACCGCGACCGCCAGCGTCCACGCCGCCAAGGGCGGTGCGCGCAGCACCACCAGCGTGGATTTGTCGAAAACCTACCTGGACTGGGCGCGGCGCAACCTGTCCCTCAATGGCTTTTCGGACAAGAACCGCCTGGAGCAGGGCGACGTCATGGCCTGGCTTGAAGCCAGTCGCGAGGAGTACGACTTGATCTTCATCGACCCGCCGACCTTCTCCAACTCCAAGCGCATGGAAGGCGTGTTCGACGTGCAGCGCGACCACGTGCAACTGCTCGACCTGGCCATGGCGCGCCTGGCGCCGGGCGGCGTGCTGTATTTTTCCAACAACTTCCGCAAGTTCCAGCTCGAAGAAAACCTGGCCGAGCGTTATGCGGTGGAGGAAATCACCGCCAAGACCATCGACCCGGATTTCGCCCGCAACGGCAAAATCCACCGCGCCTGGAAAATCATGGCGCGCTGA	MSDRFELFLTCPKGLEGLLLEEAVGLGLEEAREHTSAVRGSADMETAYRLCLWSRLANRVLLVLKRFPMKDAEDLYHGVLDVDWQDHMLPDGTLAVEFSGHGSGIDNTHFGALKVKDAIVDKLRTPSGDRPSIDKLNPDLRIHLRLDRGEAILSLDLSGHSLHQRGYRLQQGAAPLKENLAAAILIRAGWPRIAAEGGALADPMCGVGTFLVEAGMIAADMAPNLRRQQWGFTAWLGHVPALWRKLHEEATERAAAGLAKPPLWIRGYEADPRLIQPGRNNVERAGLSEWIKIYQGEVATFEPRPDQNQKGLVICNPPYGERLGDEASLLYLYQNLGERLRQACLNWEAAVFTGAPDLGKRMGIRSHKQYSFWNGALPCKLLLIKVLPDQFVTGERRTPEQRQAEREQSAYDQAPDVPQERQYNKNGNPIKPAPAPAPVIEQARLSEGGQMFANRLQKNLKLLSKWAKREGVECYRVYDADMPEYSMAIDLYHDWVHVQEYVAPKSIDPEKASARLFDALAAIPQALNVDKSRVVIKRRERQSGTKQYERQSAQGKFTEVSEGGVKLLVNLTDYLDTGLFLDHRPMRLRIQKEAAGKRFLNLFCYTATASVHAAKGGARSTTSVDLSKTYLDWARRNLSLNGFSDKNRLEQGDVMAWLEASREEYDLIFIDPPTFSNSKRMEGVFDVQRDHVQLLDLAMARLAPGGVLYFSNNFRKFQLEENLAERYAVEEITAKTIDPDFARNGKIHRAWKIMAR				NA	NA	NA	NA	NA
D1-36_03348	216	rmf		Ribosome modulation factor	ATGAGAAGACTTAAGCGTGATCCGTTGGAAAGAGCATTTTTACGCGGTTACCAATATGGCGTTGGTGGTAAATCCCGTGAGCTTTGCCCCTTTACTCTACCGTCGGTACGTCAAGCCTGGATCAATGGCTGGCGGGAAGGACGCGGCGACAACTGGGACGGTATGACCGGCACTGCGGGTATCCATAGACTCAACGAACTTCACGCCGTCGGCTGA	MRRLKRDPLERAFLRGYQYGVGGKSRELCPFTLPSVRQAWINGWREGRGDNWDGMTGTAGIHRLNELHAVG				NA	NA	NA	NA	NA
D1-36_03349	1116	pyrD	COG0167	Dihydroorotate dehydrogenase (quinone)	ATGCCAGCGCTGCGGTTTTGTGCGAGCGCCTCGCTTGCGACGCCGTTGCGCGGCTATAATCGCGGCCTCATTTCGTCGCCCGAGTCAAAGCCGCCCATGTACACCCTGGCCCGTGAACTGCTGTTCAAACTCTCCCCGGAAACCTCCCACGACCTGTCCCTGGACCTGATCGGCGCGGGCGGGCGCTTGGGCCTCAACGGTCTGCTGTGCAAGGCTGCGGCGAAACTGCCGGTGACGGTCATGGGCCTGGAATTTCCCAACCCGGTCGGATTGGCGGCGGGCCTGGACAAGAATGGCGCCGCCATCGACGGCTTTGCGCAACTGGGTTTCGGCTTCGTCGAGATCGGCACCGTGACGCCGCGGCCACAGCCGGGCAACCCGAAGCCACGATTGTTCCGTCTGCCTCAGGCCGAGGCGATCATCAATCGCATGGGCTTCAACAACCTGGGCGTCGATCATCTGCTGGCCCGTGTCGCGGCGGCCAAGTACAAGGGCGTGCTGGGCATCAACATCGGCAAGAATTTCGACACCCCGGTGGAGCGCGCCGTCGACGACTATCTGATCTGCCTGGACAAGGTCTACGCCCATGCCAGCTATGTCACCGTAAACGTCAGCTCCCCGAACACCCCAGGGCTGCGTAGCCTGCAATTTGGTGACTCCCTCAAGCAATTGCTCGCCGATCTGGCCCGGCGCCGCGCAGAGCTGGCGGTTATCCATGGCCGGCATGTTCCGTTGGCCATCAAGATCGCCCCGGACATGAGCGACGAGGAAACCGTCCAAGTGGCCCAGGCCCTGATCGAGACCGGCATGGACGCGGTGATTGCCACCAATACCACCCTGGGACGCGAAGGCGTCGAAGGGCTGGAACACGGTGACGAGGCGGGCGGTTTGTCTGGTGCGCCGGTGCGTGACAAGAGCACCCATACCGTGAAAATCCTGGCGGGTGAACTGGCGGGACGCTTGCCGATCATTGCGGCGGGCGGGATCACCGAAGGCCGGCATGCCGCCGAGAAAATCACCGCTGGGGCAAGCCTGGTGCAGGTTTATTCGGGTTTCATCTACAAGGGGCCGGCGCTGATTCGAGAGGCGGTGGATGCGATTGCGGCGTTGGGGTGA	MPALRFCASASLATPLRGYNRGLISSPESKPPMYTLARELLFKLSPETSHDLSLDLIGAGGRLGLNGLLCKAAAKLPVTVMGLEFPNPVGLAAGLDKNGAAIDGFAQLGFGFVEIGTVTPRPQPGNPKPRLFRLPQAEAIINRMGFNNLGVDHLLARVAAAKYKGVLGINIGKNFDTPVERAVDDYLICLDKVYAHASYVTVNVSSPNTPGLRSLQFGDSLKQLLADLARRRAELAVIHGRHVPLAIKIAPDMSDEETVQVAQALIETGMDAVIATNTTLGREGVEGLEHGDEAGGLSGAPVRDKSTHTVKILAGELAGRLPIIAAGGITEGRHAAEKITAGASLVQVYSGFIYKGPALIREAVDAIAALG	PGPT0021190_3248	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021190-pyrD-K00254	NA	NA
D1-36_03350	1212	nrtA		Nitrate/nitrite binding protein NrtA	ATGAATGAAGTTCCAGCCACGCCCCTGGCCTGGGTCAATGGCAGCGATGCCCCGGAAAAAAGCGCGATCAATCTTGGCTTCATGGCCCTGAGCGACTGCGCCCCGGTGGTGGTGGCCGCCACCCAAGGCTTCGCCCAACCCTACGGCCTGACCTTGAACCTCAAGCGCCAGGCGTCCTGGGCCAACCTGCGGGACAAACTGGTCAGTGGCGAAATCGACGCAGCCCACAGCCTGTACGGCCTGATCTATGCCGTGCACCTGGGCATCGGCGGCGTCGCGCCCACCGACATGGCCGTGCTGATGGGGCTGAACCAGAACGGCCAGAGCATCAACCTGTCCCACGGCCTCCAGGCCCAAGGCGTGACCAGTCCTGAGGCACTGGAACAGCACGTGCACCAAACTCGCCCGAAACTGACGTTCGCCCAGACGTTCCCCACCGGCACCCACGCCATGTGGCTCTACTACTGGCTCGCGGCCCAGGGCATTCATCCTTTATCAGATGTCGACAGCGTCGTGGTGCCGCCGCCGCAAATGGTCGCGCACCTGCAAGCTGGTCGTATCGACGGCTTTTGCGTGGGCGAACCCTGGTGCGCCAGCGCGGTGAAGCAGAACCTTGGTTTTACCCTGGCGACCACCCAGACGATCTGGCCCGATCACCCGGAGAAAGTCCTCGCTTGCACCCGCGCTTTCGTCGAGCAATACCCCAATACCGCCCGGGCATTGGTCATGGCGATCCTCGAAGCCAGCCGTTTCATCGAGCAAAGCGTCGAGAACCGTCGCAGTACCGCGCAATTGCTCAGCGCGCCCGAATACCTCGATGCGCCGCTGGAATGCATCGAGCCGCGCCTGCTGGGCATCTACGCCGACGGCCTGGGCAACAGCTGGCAGGATCCCCATGCCATGCGCTTCCACGGAGGCGGCGAGGTGAACCTGCCATACTTGTCCGACGGCATGTGGTTCATGACACAGTTCCGCCGCTGGGGCCTGCTGCGCGAAGACCCGGACTACCTGGCCGTCGCGCGCCAGGTCCAGCAACTCGAGCTGTACCGTGAAGCCGCTGCGACACTGGGCATGACGCCCCCAGGCCAGGACATGCGCAGCAGCCAACTGATCGACGGCACCACCTGGGACGGCACGGACCCGGCCGGGTACGCCCGCAGCTTCAAACTGCACGCCTTGAGCGATGCGGCTCCCCTTCTCGCCAGCCGCTGA	MNEVPATPLAWVNGSDAPEKSAINLGFMALSDCAPVVVAATQGFAQPYGLTLNLKRQASWANLRDKLVSGEIDAAHSLYGLIYAVHLGIGGVAPTDMAVLMGLNQNGQSINLSHGLQAQGVTSPEALEQHVHQTRPKLTFAQTFPTGTHAMWLYYWLAAQGIHPLSDVDSVVVPPPQMVAHLQAGRIDGFCVGEPWCASAVKQNLGFTLATTQTIWPDHPEKVLACTRAFVEQYPNTARALVMAILEASRFIEQSVENRRSTAQLLSAPEYLDAPLECIEPRLLGIYADGLGNSWQDPHAMRFHGGGEVNLPYLSDGMWFMTQFRRWGLLREDPDYLAVARQVQQLELYREAAATLGMTPPGQDMRSSQLIDGTTWDGTDPAGYARSFKLHALSDAAPLLASR	PGPT0000405_206	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-DENITRIFICATION|NITRATE_USAGE	DENITRIFICATION-NITRATE_REDUCTION,PGPT0000405-nasS-K22067	NA	NA
D1-36_03351	576	pdtaR	COG3707	putative transcriptional regulatory protein pdtaR	ATGCTGCGTATCCTGCTGATCAACGACACCGCGAAAAAAGTCGGCCGCCTTAGAGCGGCCTTGATTGAGGCCGGCTTTGAAGTGATCGACGAATCCGGCCTGACCATCGACCTGCCAGCGCGCGTCGAAACGGTGCGTCCGGACGTGATCCTGATCGATACCGAGTCACCCGGACGCGATGTGATGGAGCAAGTAGTGCTTGTCAGTCGCGACCAGCCGCGACCGATCGTCATGTTTACCGACGAGCACGATCCGGATGTGATGCGTCAGGCCATCAAGTCGGGTGTGAGTGCCTACATCGTCGAAGGCATCCACGCCGCGCGCCTGCAACCGATCCTTGATGTCGCCATGGCGCGCTTCGAAAGCGACCAGGCCCTGCGCGCCCAACTGCTGGCCCGCGACCAGCAACTGGCTGAACGCAAGCGCATCGAACTGGCCAAGGGCATGCTGATGAAGATGAAAGAGTGCAACGAGGAACAGGCCTACACGCTGATGCGCCGCCAGGCCATGAGCCGCCAGCAGAAGCTGATCCAGGTGGCGGAGCAGATCATTGCGATGAATGAATTGCTTGGCTGA	MLRILLINDTAKKVGRLRAALIEAGFEVIDESGLTIDLPARVETVRPDVILIDTESPGRDVMEQVVLVSRDQPRPIVMFTDEHDPDVMRQAIKSGVSAYIVEGIHAARLQPILDVAMARFESDQALRAQLLARDQQLAERKRIELAKGMLMKMKECNEEQAYTLMRRQAMSRQQKLIQVAEQIIAMNELLG	PGPT0000400_722	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-DENITRIFICATION|NITRATE_USAGE	DENITRIFICATION-NITRATE_REDUCTION,PGPT0000400-nasR|nasT-K07183	NA	NA
D1-36_03353	1212	nasA_1		Nitrate transporter	ATGAATTCAAGCTTCTGGAAATCCGGCCACACCCCGACATTGTTCGCGGCCTTCCTCTATTTCGACCTGAGCTTCATGGTCTGGTACCTGCTTGGCCCGTTGGCGGTGCAGATCTCTGCCGACCTGCACCTGACCACGCAACAGCGCGGCCTGATGGTCGCCACCCCGATCCTCGCCGGTGCCGTACTGCGCCTGTTCATGGGCCTGCTGGCCGACCGGATTTCGCCGAAGACCGCCGGCATGGTCGGTCAGGTGATCGTCATTGGTGCGCTGTTCTGCGCCTGGAAACTGGGCATCCACAGCTACGAGCAAGCGCTGCTGCTAGGCCTGTTCCTCGGTGTGGCCGGCGCTTCGTTCGCCGTGGCCCTGCCGCTGGCCTCCCAGTGGTATCCGCCGCAGCACCAGGGCAAGGCCATGGGCATCGCCGGGGCTGGCAACTCGGGCACCGTGCTCGCCGCATTGATCGCACCGGTCATGGCCGTGGCCTTCGGCTGGACCAACGTGTTCGGCTTCGCGCTGATCCCGCTGGTGCTGACCCTGGTCCTCTTCGCCTGGCTGGCCAAGAACGCCCCTGAGCGCCCCAAGGCCAAATCCATGGCCGACTACCTCAAGGCCCTGGGCGACCGGGACAGCTGGTGGTTCATGTTTTTCTATAGCGTGACCTTCGGCGGCTTCATCGGCCTGGCCAGCGCCCTGCCCGGCTACTTCAATGACCAATATGGCCTGAGCCCGGTCACGGCCGGCTACTACACCGCCGCCTGCGTCTTTGGTGGCAGCCTCATGCGCCCATTGGGCGGCGCCCTGGCGGACCGTTTCGGCGGCATCCGCACCTTGCTCGGCATGTACACCGTCGCGGCCGTCTGCATCGCTGCGGTGGGGTTCAACCTGCCAAGTTCCTACGCGGCATTGGCTTTGTTCGTCTGCACCATGCTTGGCCTGGGTGCGGGCAACGGCGCGGTGTTCCAACTGGTGCCACAACGTTTCCGTCGGGAAATCGGCGTGATGACCGGGCTGATCGGCATGGCCGGCGGCATCGGCGGCTTCGCCCTCGCGGCGGGCATGGGCGCGATCAAGCAGAGCACCGGCAGCTACCAGTTGGCGTTGTGGTTGTTCGCCAGCCTTGGTGTCCTGGCCTGGTTCGGCCTGCACGGCGTCAAGCGTCGCTGGAGAACTACTTGGGGTTCGGCCGCCGTCACCGCTGCTCGGGTCTGA	MNSSFWKSGHTPTLFAAFLYFDLSFMVWYLLGPLAVQISADLHLTTQQRGLMVATPILAGAVLRLFMGLLADRISPKTAGMVGQVIVIGALFCAWKLGIHSYEQALLLGLFLGVAGASFAVALPLASQWYPPQHQGKAMGIAGAGNSGTVLAALIAPVMAVAFGWTNVFGFALIPLVLTLVLFAWLAKNAPERPKAKSMADYLKALGDRDSWWFMFFYSVTFGGFIGLASALPGYFNDQYGLSPVTAGYYTAACVFGGSLMRPLGGALADRFGGIRTLLGMYTVAAVCIAAVGFNLPSSYAALALFVCTMLGLGAGNGAVFQLVPQRFRREIGVMTGLIGMAGGIGGFALAAGMGAIKQSTGSYQLALWLFASLGVLAWFGLHGVKRRWRTTWGSAAVTAARV	PGPT0000300_3751	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-DENITRIFICATION|NITRATE_USAGE	DENITRIFICATION-NITRATE_REDUCTION,PGPT0000300-narK|nrtP|nrt|narU-K02575	NA	NA
D1-36_03354	1671	pknD_2		Serine/threonine-protein kinase PknD	ATGAGCCTGCAATTGAGTTTTGCCGAAGCCAGTGCCATCGGCCCACGGGAGGAGAACCAGGACGCCCTGCGCCTGGTGACCCCTGCCCCGGCCTTGGCCGCCAGCAAGGGTTACCTGTTCGCCATCGCCGACGGTGTGAGCCAATGCGCCGATGGCGGGTTGGCGGCGCGCTCTACTTTGCAGGCACTGGCGCTGGACTACTACGCCACGCCGCAAACCTGGGGCGTGGCCCAGGCACTGGACCGGCTGCTGTCGGCGCAGAACCGCTGGCTGCAGGCCAACGGTGGCGGGCAGCCGCTGCTCACCACCGTCAGTGCCCTGGTGCTGCGGGGCCGGCGCTTCACCCTCGCCCATGTCGGCGATTGCCGGGTCTACCGCTGGCACGCCGACAACCTGCAACGGGTCAGCGAAGACCATGTCTGGGAACAACAGGGCATGCAGCATGTGCTCAAGCGCGCCCTGGGGTTGGATCAGCACCTGATCCTCGATTTCCTGGACGGGGAGCTACACGAAGACGAAACCTTCGTGCTGCTCAGCGACGGTGTCTGGGCGGTACTCGGGGACACGGCCATCGCCGGCATCCTGCGCGACCAGCCGGACCTCAATCTCGCCGCGCAGACGCTGGTCAACGCCGCGCATCTGGCCGGTAGCCAGGACAACGCCAGCGCGCTGCTGGTGCGGGTCGATGCGGTGGGCGAAGCGAGCATCGGCGACGCGTTGATCCAATTGCAGCAGTGGCCCCTGCCACCTGCGCTGAAGTCGGGCCAAGTGTTCGAGGGCTGGCAGATCGAAGGCGCGCTCGGCCAGAGCCAGCAGTCGTTGCTCTACCGGGTACGCGATGGCCAGGGCCAACCCTGGCTGCTGAAAACCTTGCCCGGGCAGTTACGGGACGACACCCGGGCCGGCCAGGCGCTGCTATCGGAAGAATGGTTTCTCAAGCGGGTCGCGGGCAGGCAATTTCCGGAGGTGCATGGCGTGCCTCAGCGCCAGCATCTGTACTACGTGATGCGCGAATACCCGGGCGCGACCCTGGCCGAGCTGTTCAACCAGGGCGGTCCGCTGTCGCTGGCCCAATGGCAAGACCTGGCGCAGCGGTTGGTGCGAGCGGTGGGTCTGCTGCATCGAAGGCAGATCTACCACCGCGACATCAAGCCGGAAAACCTGCACCTGGGAGACGATGGCGAATTGCGCCTGCTGGATTTTGGCCTCGCGTACTGCCCCGGCCTGTCCGAGGACCAGGCCAACGTGCTGCCCGGAACGCCCAGCTACATTGCCCCGGAAGCCTTCGGCGGCAACGCCCCTACGGCGCAACAGGATTTGTATGCGGTCGGCGTGACCTTGTATTTCCTGTTGACGGGGCACTATCCCTACGGCGAAATCGAAGCCTTCCAGCGCCCGCGTTTTGGCGTGCCGATCAACGCCAGCCGCTATCGACCGGACCTTGCCGAATGGCTTGGACAAAGCCTGGAACGGGCCGTGGCGGCAGACCCCGCGCAGCGCTTTGAAACAGCCGAGGAATGGCTGTTGGTTCTGGAACAGGGCGAGCGGCGCAGCATGAGCGTAAGGCCCAGACCTTTGCTCGAGAGGGAGCCGCTGAAGGTCTGGCGGACGTTGGCGCTGGTGTCGTTGGTGGTGAATGTGGTGCTGCTGTTCCTGGTGTTTAACAGCTGA	MSLQLSFAEASAIGPREENQDALRLVTPAPALAASKGYLFAIADGVSQCADGGLAARSTLQALALDYYATPQTWGVAQALDRLLSAQNRWLQANGGGQPLLTTVSALVLRGRRFTLAHVGDCRVYRWHADNLQRVSEDHVWEQQGMQHVLKRALGLDQHLILDFLDGELHEDETFVLLSDGVWAVLGDTAIAGILRDQPDLNLAAQTLVNAAHLAGSQDNASALLVRVDAVGEASIGDALIQLQQWPLPPALKSGQVFEGWQIEGALGQSQQSLLYRVRDGQGQPWLLKTLPGQLRDDTRAGQALLSEEWFLKRVAGRQFPEVHGVPQRQHLYYVMREYPGATLAELFNQGGPLSLAQWQDLAQRLVRAVGLLHRRQIYHRDIKPENLHLGDDGELRLLDFGLAYCPGLSEDQANVLPGTPSYIAPEAFGGNAPTAQQDLYAVGVTLYFLLTGHYPYGEIEAFQRPRFGVPINASRYRPDLAEWLGQSLERAVAADPAQRFETAEEWLLVLEQGERRSMSVRPRPLLEREPLKVWRTLALVSLVVNVVLLFLVFNS	PGPT0030420_380	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
D1-36_03356	2454	nasD_2	COG1251	Nitrite reductase [NAD(P)H]	ATGAAAAAACTCAAACTGGTAATGATCGGCAACGGCATGGCCGGGGTTCGAACCCTCGAGGAACTGCTCAAGTTGAGCAATGAGCTCTACGACATCACTGTGTTCGGCGCCGAGCCCCACGCCAACTACAACCGCATCCTGCTCTCACCCGTGCTCGCCGGGGAACAGACGTTCGAAGAAATCGTGCTCAACGACCTGAACTGGTATCAGGAAAACAACATCAAGCTGTTGCTCAACCGCAAGGTAGTAGAGATCGACCGGGTCAAGCGCCGGGTTATCGCCGAAGACGGCAGCGAAGCCGAATACGACCGCTTGCTCATCGCCACCGGTTCCACGCCGTTCATCCTGCCGATCCCCGGCAATACCCTCAATGGCGTGATCGGCTACCGCGACATCGCCGACACCCAGGCGATGATCGACACCGCCAGGACCCATAAACACGCTGTGGTGATCGGTGGCGGCCTGCTGGGCCTGGAAGCCGCCAACGGCCTGAAGCTGCGCGGCATGGACGTGACCGTCGTGCACATCGGCGAATGGCTGCTGGAACGGCAATTGGACAAGACCAGCGGCCAACTGCTGCAAACCGCCCTGGAAAGCCGTGGCCTGAAATTCCGTCTCAGCGAACAGACCCAGGCCCTGCATGACGCCGGCAATGGCCGTGTCGGCTCGGTACAGTTCAAGAACGGCGACGTCATTCCCGCCGACCTGGTGGTGATGGCCGCTGGCATCCGTCCCAACACCGAGCTGGCGGAAAAATGCGGCATCCCGTGCAACCGCGGGATCCTGGTCAACGACACGATGCAGACCTACGACCCACGCGTTTACGCCATCGGCGAATGCGCCAGCCACCGTGGCACCGCTTATGGCCTGGTGGCGCCGTTGTTCGAACAGGCAAAAGTCTGCGCCAACCACCTCGCGCAACTGGGTTTCGCCACTTACAAGGGGTCAGTCACGTCGACCAAGCTGAAAGTCACCGGCATCGACCTGTTCTCCGCCGGCGACTTCATGGGCGGCGAAGGCACCGAGACCATCACCCTTTCCGACCCGATCGGCGGCGTCTACAAAAAGCTGGTGATCAAGGATGACGTGCTGGTCGGTGCCTGTCTGTACGGCGATACGGCGGATGGCGGCTGGTATTTCCGCCAGATCCGTGAGAATCACGCCATCAGCGAGATCCGCGACCACCTCATGTTCGGCGAAAACGCACTTGGCGATGTAGGCCATCAGGGCCAGGACAAAGCCATGAGCATGGCCGACACTGCCGAAGTCTGCGGCTGCAACGGCGTGTGCAAGGGCACCATCGTCAAGGCGATCCAGGAACACGGGCTGTTCAGCGTCGATGACGTGAAGAAACACACCAAGGCCGCCAGTTCCTGCGGCTCCTGCGCCGGCCTGGTGGAGCAGATCCTGATCAACACCGTGGGCGGCGCGGCGGACGTCAAGCCGAAAAGCGAGAAAGCCATCTGCGGCTGCAGCGACCTCAACCACGGCCAGATTCGCCAGGCGATCCGCGACCAGCATCTGCTGACCATCGCCGGAACCATGAGCTACCTGAACTGGCGCACCCCGAACGGCTGCGCCACCTGCCGACCTGCGCTGAACTATTACCTGATTTCCACCTGGCCCGGCGAAGCCCAGGACGATCCGCAGTCGCGCCTGATCAACGAACGCGCCCACGCCAATATCCAGAAAGACGGTACCTACTCCGTAGTGCCGCGGATGTGGGGCGGCGTGACCAACCCGTCCGAGCTGCGGCGCATTGCCGATGTCGCCGACAAGTACAACGTGCCCATGGTCAAGGTCACTGGCGGTCAGCGCATCGACTTGCTGGGCATCAAGAAGCAAGACCTGCCCGGCGTGTGGAAAGACCTCGATATGCCGTCCGGCCATGCCTACGGCAAATCCATCCGCACGGTGAAGACCTGCGTGGGCAGTGAGTTCTGCCGCTTCGGCACGCAGAACTCCACCCAGCTTGGCATCGAGCTGGAACATGACTTGTTCAATATGTGGTCGCCGCACAAAGTGAAGCTGGCTGTCTCCGGTTGCCCTCGCAACTGCTCGGAAGCAGGCATCAAGGACGTAGGCATTATCGGCGTCGATTCCGGCTGGGAGATGTACATCGGCGGCAACGGCGGGATCAAGACCGAGGTCGCCGAGTTTTTCGTCAAGCTCAAGACCGCCGAAGAAGTACGCGAATACAACGGTGCTTTTCTTCAGCTGTACCGCGAGGAAGCCTTCTACCTCGAACGCACCGTGCACTACATGCAGCGGGTCGGCATGGAGCACATCAAGAAAGCGGTATTGGAAGACCCGGAGCGGCGCAAGGCCCTCAACGAACGTCTGAAGTTTTCCCTGTCCCTGGAACAGGACCCTTGGAAACAGCGGCTGGAACAGCCTCAACTGAAAAAAGAGTTCGAGGCCATCCCCGTGAAAAACCTGGAGGTGCCGGCATGA	MKKLKLVMIGNGMAGVRTLEELLKLSNELYDITVFGAEPHANYNRILLSPVLAGEQTFEEIVLNDLNWYQENNIKLLLNRKVVEIDRVKRRVIAEDGSEAEYDRLLIATGSTPFILPIPGNTLNGVIGYRDIADTQAMIDTARTHKHAVVIGGGLLGLEAANGLKLRGMDVTVVHIGEWLLERQLDKTSGQLLQTALESRGLKFRLSEQTQALHDAGNGRVGSVQFKNGDVIPADLVVMAAGIRPNTELAEKCGIPCNRGILVNDTMQTYDPRVYAIGECASHRGTAYGLVAPLFEQAKVCANHLAQLGFATYKGSVTSTKLKVTGIDLFSAGDFMGGEGTETITLSDPIGGVYKKLVIKDDVLVGACLYGDTADGGWYFRQIRENHAISEIRDHLMFGENALGDVGHQGQDKAMSMADTAEVCGCNGVCKGTIVKAIQEHGLFSVDDVKKHTKAASSCGSCAGLVEQILINTVGGAADVKPKSEKAICGCSDLNHGQIRQAIRDQHLLTIAGTMSYLNWRTPNGCATCRPALNYYLISTWPGEAQDDPQSRLINERAHANIQKDGTYSVVPRMWGGVTNPSELRRIADVADKYNVPMVKVTGGQRIDLLGIKKQDLPGVWKDLDMPSGHAYGKSIRTVKTCVGSEFCRFGTQNSTQLGIELEHDLFNMWSPHKVKLAVSGCPRNCSEAGIKDVGIIGVDSGWEMYIGGNGGIKTEVAEFFVKLKTAEEVREYNGAFLQLYREEAFYLERTVHYMQRVGMEHIKKAVLEDPERRKALNERLKFSLSLEQDPWKQRLEQPQLKKEFEAIPVKNLEVPA	PGPT0000450_1843	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-DENITRIFICATION|NITRATE_USAGE	DENITRIFICATION-NITRATE_REDUCTION,PGPT0000450-nirB-K00362	NA	NA
D1-36_03357	321	hcaC		3-phenylpropionate/cinnamic acid dioxygenase ferredoxin subunit	ATGAACTGGCTGGATATCTGCGCGTTGGACGAAATCAACGCCCTGGGCTCACGCATCATCCAGGGGCCGAAGGGCGATATCGCGATTTTTCGTACCAGCGACGATGAAGTTTTCGCACTCGACGACCGCTGCCCGCACAAGGGCGGCCCATTGTCCCAAGGCCTGATCTACGGCAAGCGCGTGGCCTGCCCGCTGCACAACTGGCAGATCGACCTGGAAACCGGCCTGGCCCAAGCCCCGGACGTGGGTTGCGCCCACCACCATGCGGCCCGGGTAGAGAACGGCCGGGTCATGCTGGCCCTGCGGGAAGCAAGCTCATGA	MNWLDICALDEINALGSRIIQGPKGDIAIFRTSDDEVFALDDRCPHKGGPLSQGLIYGKRVACPLHNWQIDLETGLAQAPDVGCAHHHAARVENGRVMLALREASS	PGPT0000455_1937	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-DENITRIFICATION|NITRATE_USAGE	DENITRIFICATION-NITRATE_REDUCTION,PGPT0000455-nirD-K00363	NA	NA
D1-36_03358	2718	nasA_2		Nitrate reductase	ATGAGCCGCCAGACCACAGCCTCGACCTGCTGTTATTGCGGGGTCGGTTGCGGCGTGTTGATCGAGCATGACGGCGAGCGGATCCTCGGCGTCAGTGGCGATCCTGCCCATCCGGCCAACTTCGGCAAACTGTGCAGCAAGGGCTCGACGCTGCACCTGACCGGCGACCTCGCCGCCCGCGCGCTCTACCCCGAGCTGCGCCTGGGCAAAGGCCTGGCCCGGGCCCGCACCGACTGGGACAGTGCGCTGGATCATGCTGCCAGTATTTTCGCCGAGACCATCGCCGAGCACGGCCCGGACAGCGTGGCCTTCTACATCTCCGGTCAATTGCTCACCGAGGATTACTACGCCTTCAACAAACTCGCCCGGGCTCTGGTGGGCACCAACAATATCGACAGCAACTCGCGGCTGTGCATGTCCTCCGCCGTGGTGGGCTACAAGCGAAGCCTCGGCGCCGACGCCCCACCTTGCAGCTACGAGGACCTGGAACTGAGCGACTGCGTGATGATCGTCGGCAGTAACATGGCCTACGCCCACCCGATCCTGTTTCGTCGCCTCGAAGAAGCCAAATCCCGCCGGCCAGAGATGAAAATCATCGTCATCGACCCCCGGCGCACCGACACCTGCGACCTGGCGGACCTGCACCTGGCGATCCTGCCGGGCACCGACGTCGCATTGTTCCATGGGATTTTGCACCTGCTGTTGTGGGAAGACTGGATTGATCGCAGTTTCATCAAGGCACACACCGAAGGCCTCGCGGACCTGAAGAACCTGGTACGCGACTACACGCCCGCCATGGTCGCCCAGCTGTGCGGTATCAGTGTCGAGCAACTGCACCAATGCGCCGAATGGGTCGGCACCTCTCCCAGTTTCCTGTCGTTGTGGTGCATGGGCCTGAACCAGTCCACCGCCGGCAGCGCCAAAAACAGCGCACTGATCAACCTGCACCTGGCCACCGGACAGATCGGCCGTCCGGGCGCGGGCCCGTTTTCCTTGACCGGCCAGCCCAACGCCATGGGCGGCCGCGAAACGGGCAGTCTGTCCAACCTGCTGCCCGGTCATCGCGAAGTAGCCAACCCGGAACATCGCGCTGAAGTAGCCGATTACTGGGGCGTCGAACAATTGCCGGCAACCCCCGGCCTCAGCGCCATCGAGTTGTTCGAGCAGGTGCGCAACGGCAAGATCAAGGCGCTGTGGATCGCCTGCACCAACCCGGCCCAATCAATGCCTGACCAGGCCGCCATACGCGAAGCCCTGCAAGCCTGCCCATTCGTGGTATTGCAGGAGGCTTTCCGCACCACCGAGACCGCCACCTTCGCCGACCTGCTGCTGCCAGCGGCCAGTTGGGGTGAGAAAGAAGGCTCGGTCACCAACTCCGAGCGGCGCATTTCACACGTTCGCCGGGCAATAAACGCACCGGGTGAAGCACGTCCGGACTGGGCCATTACTGTGGATTTCGCACAACGCCTGGAAAAACGTCTGCGCCCTACCTCCTCAAGCCTGTTCGGCTTCGAAACACCGGCGCAACTGTTCGATGAATACAAGCAGCTGACCCGTGGTCGCGACCTGGACCTGTCCGGTATCAGCCACGCGCTGATCGATCAGCTTGGCCCCCAGCAATGGCCTTTCCGCGAAGGCGCTACGGTCGGCACCGCCCGTTTATACGTAGACGGCGTGTTTCCTACGGAAAGCGGCCGGGCTCGGTTTGTAGCCGACCCCTATCGCGCCGCCAAGGAATTGCGTGACGCGCGCTATCCGTTGACCCTGAACACCGGCCGCTTGCGTGACCAGTGGCACGGCATGAGCCGCACCGGCACCGCCGCGCAATTGTTTGGCCATGTCAACGAAGCGGTGCTCAGCCTGCATCCCGACGAGCTGCTTCGCCATCGCCTGCAAGCGGGCGACCTGGTCAGCCTCAAAAGCCGTCGCGGCAGCCTGATCGTGGCGGTGGACAGCGACGAAAGCGTGCGCCCCGGACAGGCATTCCTGCCCATGCACTGGGGCGACCGGTTTCTCAAGGGCGGGGTCAACGTCCTGACTCAACCGGCGTTCGACCCTTTGTCGAAGCAGCCGGAGCTCAAGCACAGCGGCGTGCGCCTGGAACCGGTGAACCTGCCATGGCAGCTTTTCGCCTTGGTCGAAGGCGATGTTCAACAGCATCTGGAGACTTTGCGTCCTCTGTGTGAGGCGTTTGCCTACGTCAGCCTTAGCCTTACCGGACGTGAACGTCCCGCATTGCTGATTCGCGCCGCCAGCGCTGCTGCGCCCGCACCGCAACTGCTCCAGGCGATCGACGAGCAACTCGGCCTTATCGACGGGCCCGTCTTGGCCTATGACGATCCGCGCCGCTCCATTGGCAAGCGGGTGCGGATCGAAAACGGCCGCATCACGGCCATTCGGCTGGCCGGAGAAACCCTGGCTCGCCATTGGCTGCAGAACCTGTGGCTCGAAGGTCGCGCCGACGAGCAACTGCGGCGCTGGCTGCTGGCCCCCTTGAGCGCGCCACCGGGCAACACCGGTGCCGCCATGGGCGGCGGGAAAACCCTGTGCAATTGCATGAATGTCAGCCAGCGCGCGGTTTGCGCGGGTATCGAGCGCGGCCTGGATCTGCAGGGCCTGAAAAACGAACTGGGTTGCGGCACACAGTGCGGTTCCTGCGTACCGGAAATCAAACGCCTGCTGGTTGCCAACGCGCAACCGCTGGCGGCTATCTCGTGA	MSRQTTASTCCYCGVGCGVLIEHDGERILGVSGDPAHPANFGKLCSKGSTLHLTGDLAARALYPELRLGKGLARARTDWDSALDHAASIFAETIAEHGPDSVAFYISGQLLTEDYYAFNKLARALVGTNNIDSNSRLCMSSAVVGYKRSLGADAPPCSYEDLELSDCVMIVGSNMAYAHPILFRRLEEAKSRRPEMKIIVIDPRRTDTCDLADLHLAILPGTDVALFHGILHLLLWEDWIDRSFIKAHTEGLADLKNLVRDYTPAMVAQLCGISVEQLHQCAEWVGTSPSFLSLWCMGLNQSTAGSAKNSALINLHLATGQIGRPGAGPFSLTGQPNAMGGRETGSLSNLLPGHREVANPEHRAEVADYWGVEQLPATPGLSAIELFEQVRNGKIKALWIACTNPAQSMPDQAAIREALQACPFVVLQEAFRTTETATFADLLLPAASWGEKEGSVTNSERRISHVRRAINAPGEARPDWAITVDFAQRLEKRLRPTSSSLFGFETPAQLFDEYKQLTRGRDLDLSGISHALIDQLGPQQWPFREGATVGTARLYVDGVFPTESGRARFVADPYRAAKELRDARYPLTLNTGRLRDQWHGMSRTGTAAQLFGHVNEAVLSLHPDELLRHRLQAGDLVSLKSRRGSLIVAVDSDESVRPGQAFLPMHWGDRFLKGGVNVLTQPAFDPLSKQPELKHSGVRLEPVNLPWQLFALVEGDVQQHLETLRPLCEAFAYVSLSLTGRERPALLIRAASAAAPAPQLLQAIDEQLGLIDGPVLAYDDPRRSIGKRVRIENGRITAIRLAGETLARHWLQNLWLEGRADEQLRRWLLAPLSAPPGNTGAAMGGGKTLCNCMNVSQRAVCAGIERGLDLQGLKNELGCGTQCGSCVPEIKRLLVANAQPLAAIS	PGPT0000390_395	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILISATION-OTHER_ACID_METABOLISMS	K-SOLUBILISATION-NITRIC_ACID_BIOSYNTHESIS,PGPT0000390-nasA|nasC|narB-K00372	NA	NA
D1-36_03359	756	sumT	COG0007	Uroporphyrinogen-III C-methyltransferase	ATGAACGCAAAAGTCTGGCTGGTAGGTGCGGGTCCTGGCGACCCTGAATTGCTGACCCTCAAAGCCGTGCGCGCCATGGGCGAAGCCGACGTCGTGTTGATCGATGACCTGGTCAACGAGGCAGTGCTGGAACATTGTCCGGGCGCACGCATCATCGCCGTGGGCAAGCGCGGCGGTTGCCGCTCCACGCCACAAGCGTTCATTCATCGACTGATGCTGCGTTATGCCCGCCAAGGCAAATGCGTGGTACGCCTCAAGGGCGGCGACCCGTGCGTTTTCGGCCGGGGCGGCGAAGAAGCGCAGTGGCTGCGCGAACACGGGGTCGAGGTGGAACTGGTCAATGGCATCACGGCGGGTCTTGCCGGAGCCACCCAATGCGATATTCCACTGACCTTACGCGGCGTTGCCCGTGGCGTGACGCTGGTCACTGCCCATACCCAGGACGGCAGCAGCCTGAACTGGCAAGCCCTGGCCCAGGGCGGGACGACCCTTGTGGTGTATATGGGGGTGGCGAAACTGAGCGAGATCCGTGAGCAATTGCTGGCGGGCGGTATGGCGGCGAATACACCGGTCGCCATGATTGAAAACGCCTCCCTGCCCCACCAGCGCGACTGCCGCAGCGACCTGGCATCGATGGAAACCGACGCCAGCGCGTTTCAACTCAAGAGTCCGGCGATCCTGGTGATTGGTGCGGTGGCGGGTGTTGCCGAATTGCCCGTTTCTGCGCAGACCATGGCCCAGGCTCTAGCGGTCTAA	MNAKVWLVGAGPGDPELLTLKAVRAMGEADVVLIDDLVNEAVLEHCPGARIIAVGKRGGCRSTPQAFIHRLMLRYARQGKCVVRLKGGDPCVFGRGGEEAQWLREHGVEVELVNGITAGLAGATQCDIPLTLRGVARGVTLVTAHTQDGSSLNWQALAQGGTTLVVYMGVAKLSEIREQLLAGGMAANTPVAMIENASLPHQRDCRSDLASMETDASAFQLKSPAILVIGAVAGVAELPVSAQTMAQALAV	PGPT0003685_2430	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
D1-36_03360	1035	oprF	COG2885	Outer membrane porin F	ATGAAACTGAAAAACACCTTGGGCTTTGCCATTGGTTCTTTGATTGCTGCCACTTCGTTCGGCGCTCTGGCACAAGGCCAAGGCGCAGTTGAAATCGAAGGCTTCGCCAAGAAAGAAATGTTCGACAGCGCTCGTGATTTCAAGAACAACGGCAACCTGTTCGGCGGTTCGGTTGGTTACTTCCTGACCGACGACGTTGAACTGCGTCTGGCCTACGACGAAGTGCACAACGCACGTACCGACGATGGCACCAACGTCAAGGGCGCGAACACCGCTCTGGACGCTCTGTACCACTTCAACAACCCAGGCGACATGCTGCGTCCTTACGTTTCGGCCGGTTTCTCCGACCAGAGCATCGACCAGAATGGCAGCAACGGTCGTAACCGTTCTACCTTCGCCAACGTTGGTGGCGGCGCCAAGCTGTATTTCACCGACAACTTCTACGCCCGTGCTGGCGTTGAAGCTCAGTACAACATCGACCAGGGCGACACCGAGTGGGCTCCTAGCGTCGGTATCGGTGTGAACTTCGGTGGCGGCTCCAAGCCAGCTGCTGCTCCAGTTCCAGCACCTGCTGAAGTCTGCTCCGACAGCGACAACGATGGCGTGTGCGACAACGTCGACAAGTGCCCTGACACCCCAGCCAACGTAACCGTTGACGCTGATGGCTGCCCAGCTGTTGCTGAAGTCGTACGTGTTGAGCTGGACGTCAAGTTCGACTTCGACAAGTCGGTCGTTAAAGAAAACAGCTATGGCGACATCAAGAACCTGGCTGATTTCATGAAGCAGTACCCATCCACCAGCACCACTGTTGAAGGTCACACTGACTCCGTCGGTCCTGACGCTTACAACCAGAAACTGTCTGAGCGTCGTGCAAACGCCGTTAAGCAAGTTCTGACCAACCAGTACGGTGTTGAATCGTCCCGCGTTCAGTCTGTTGGCTACGGCGAATCCCGCCCAGTTGCCGACAACGCCACTGAAGCTGGTCGTGCAGTCAACCGTCGCGTAGAAGCGCAGGTTGAAGCTCAAGCTAAGTAA	MKLKNTLGFAIGSLIAATSFGALAQGQGAVEIEGFAKKEMFDSARDFKNNGNLFGGSVGYFLTDDVELRLAYDEVHNARTDDGTNVKGANTALDALYHFNNPGDMLRPYVSAGFSDQSIDQNGSNGRNRSTFANVGGGAKLYFTDNFYARAGVEAQYNIDQGDTEWAPSVGIGVNFGGGSKPAAAPVPAPAEVCSDSDNDGVCDNVDKCPDTPANVTVDADGCPAVAEVVRVELDVKFDFDKSVVKENSYGDIKNLADFMKQYPSTSTTVEGHTDSVGPDAYNQKLSERRANAVKQVLTNQYGVESSRVQSVGYGESRPVADNATEAGRAVNRRVEAQVEAQAK	PGPT0022215_2982	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-SURFACE_ATTACHMENT	SURFACE_ADHESION	OTHER_SURFACE_ADHESION_PROTEINS,PGPT0022215-ompA_ompF_porin|oprF-K03286	NA	NA
D1-36_03361	387			hypothetical protein	ATGTTGAAGGTGCTGTACGGCTTGAAGAACTTCGAGGGGAAATCGAAGTTCAAGACGTGGCTATATAGCATCACCTACAACGAATGCATCACACAGTATCGCAAGGAGCGGCGAAAGCGTCGGTTGATGGACGCGTTGAGCCTTGACCCTCTCGAGGAAGCGTCCGAGGAAAAGGCGCCCAAGCCCGAGGAAAAGGGTGGACTCGATCGCTGGCTGGTTTATGTGAACCCGATCGACAGGGAAATTCTGGTGCTACGATTTGTCGCAGAACTGGAATTCCAGGAGATCGCAGACATAATGCACATGGGTCTGAGCGCGACAAAAATGCGTTATAAGCGCGCGCTCGATAAGCTGCGTGAGAAATTTGCGGGCATAGCTGAAACTTAG	MLKVLYGLKNFEGKSKFKTWLYSITYNECITQYRKERRKRRLMDALSLDPLEEASEEKAPKPEEKGGLDRWLVYVNPIDREILVLRFVAELEFQEIADIMHMGLSATKMRYKRALDKLREKFAGIAET	PGPT0014960_7826	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
D1-36_03362	825			hypothetical protein	ATGGAACTTGATCTCTGGACCCAGAGCCTCGTCACGGCAATGACTGCGTTGTGGACCAAGATAGCTAACTTTATTCCCAATCTATTCGGCGCCTTGGTGGTGCTGTTGTTGGGTTTTGTCGTGGCCAAGCTGCTGGACACGTTGCTGTCCAAGCTGCTCGCCAAATTGGGCCTCGATCGCCTGATGGGCGGCACCGGCCTGACCAAGCTTTTGTCCCGTGGCGGCATCCAGGTTCCGATCTCGACCTTGGTGGGCAAGATCGTCTATTGGTTCGTGCTGCTTATATTCCTGGTTTCCGCGGCTGAGTCCCTGGGCCTGGAGCGCGTTTCAGCGACCCTGGACATGCTGGCGCTGTATTTGCCGAAGGTGTTCGGCGCTGCCTTGGTGTTGCTGGTGGGCGTGTTGCTGGCGCAATTGGCCAACGGCCTGGTGCGCGGCGCCGCCGAAGGTGTCGGGCTCGATTATGCTTCGGGACTTGGACGGATTGCCCAGGGCCTGGTGATCATCATCAGTATTTCGGTCGCGATCAGCCAGTTGGAGGTCAAGACTGACCTGCTCAACCATGTGATTGTGATTGTCTTGATTACCGTTGGTCTGGCGGTTGCGCTGGCCATGGGGTTGGGAAGCCGGGAAATCGCCGGTCAGATTCTTGCGGGAATCTATGTGCGTGAGCTCTACGAGGTTGGGCAACAAGTGCGTGTTGGAGAGGTCGAAGGCCAGATCGAAGAGATCGGCACGGTGAAGACTACATTGCTGACCGAGGAAGGCGAGCTGGTGTCGCTGTCCAATCGGATTCTGCTGGAACAGCATGTGAGTAGCCGCTAA	MELDLWTQSLVTAMTALWTKIANFIPNLFGALVVLLLGFVVAKLLDTLLSKLLAKLGLDRLMGGTGLTKLLSRGGIQVPISTLVGKIVYWFVLLIFLVSAAESLGLERVSATLDMLALYLPKVFGAALVLLVGVLLAQLANGLVRGAAEGVGLDYASGLGRIAQGLVIIISISVAISQLEVKTDLLNHVIVIVLITVGLAVALAMGLGSREIAGQILAGIYVRELYEVGQQVRVGEVEGQIEEIGTVKTTLLTEEGELVSLSNRILLEQHVSSR				NA	NA	NA	NA	NA
D1-36_03363	246			hypothetical protein	ATGCACGATCCGTTTGAACAGTCTCTGCGCGACATGCTCAAGGCCTCGCCGTCCAGCCGGGACGACGATGCATGCCTGGGCCGTGTACTCAAAACCGCCAACCGCCAGGTGGGCGCCGGCGATCTGTTCAGCCTGCTGGGCCGTTGGGTGCCAGCGCTGATGATCGCCCTGAACAACGGGTCGGCCCACGTCTCGCCGGTTTCCCGTCGCAAACCTGTTACTCGCACCGCTGATAAGGCTGACTGA	MHDPFEQSLRDMLKASPSSRDDDACLGRVLKTANRQVGAGDLFSLLGRWVPALMIALNNGSAHVSPVSRRKPVTRTADKAD				NA	NA	NA	NA	NA
D1-36_03364	996	zntB_2	COG0598	Zinc transport protein ZntB	ATGTTCGAGGAAGAAAACGCGCAATGGGGGCTGGTGCATGCCCTGGTGCTGGATGGTAAAGGTGGCGCGCGTTCGATAGCCCGGACCGAACTTGACGATCTGCAGCTGCAGGCCCATGAAAGCCTGTGGCTGCATTGGGACCGCAGTCATCCGCAAACCCATACGTGGCTGCGCAAATCCAGTGGTTTGAGTGAATTCAACTGCGATCTGCTGCTTGAAGAGAACACCCGTCCACGACTGCTGCCGTTGCCCAACGCCGAACTGCTGCTGTTTTTGCGTGGGATCAACCTCAATCCGGGGGCCGAGCCGGAAGACATGGTGTCGGTGCGCATCTTTGCGGCGGCGCAGCGAGTGATTTCCCTGCGGCTGCGCCCTTTGCGCGCCACCGATGAGCTGCTGGCCGAGCTGTCCGAGGGCAAGGGGCCCCGGACAGCTTCGGAACTCATCCTTTATATGGCGCAGTACCTGACCAATAAGGTGCAGGACCTGGTGACGTGCCTGTCGGAAATTGTCGACACCGAGGAAGAAAAGCTCGATACCGACGAACGGTATACGCCTGAGCACGATGCCATTTTGCACATCCGTCGCCGGGCTGCCGGGCTGAAGCGATTCCTGGCGCCGCAACGGGATATTTTCGGCCAGATGTCGCGAATCAAGTTGCCCTGGTTCGTCGAGGACGACGGTGACTACTGGAATGAATTGAACAACAGCCTGACCCGCTACCTCGAAGAGCTGGAACTGACTCGCGAGCGCGTGGGGCTGGTACTGGAGGCCGAGGACCGGCGCCTTTCAGTGCGCATGAACCGCACCATGTACCGCTTCGGCATCATCACTGGGATCTTCCTGCCGATGAGTTTCCTCACGGGGCTGCTGGGCATCAATGTCGGCGGCATTCCGTTTTCCGAGAGCCCCTATGGTTTCCTCGTCGCTTGCCTGCTGATGGTCTGCGTTGCGCTGGGGCAATGGTGGCTGTTTCGCCGTTTGCGTTGGGTGTGA	MFEEENAQWGLVHALVLDGKGGARSIARTELDDLQLQAHESLWLHWDRSHPQTHTWLRKSSGLSEFNCDLLLEENTRPRLLPLPNAELLLFLRGINLNPGAEPEDMVSVRIFAAAQRVISLRLRPLRATDELLAELSEGKGPRTASELILYMAQYLTNKVQDLVTCLSEIVDTEEEKLDTDERYTPEHDAILHIRRRAAGLKRFLAPQRDIFGQMSRIKLPWFVEDDGDYWNELNNSLTRYLEELELTRERVGLVLEAEDRRLSVRMNRTMYRFGIITGIFLPMSFLTGLLGINVGGIPFSESPYGFLVACLLMVCVALGQWWLFRRLRWV	PGPT0004205_450	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ZINK_RESISTANCE	ZINK_RESISTANCE-ZNT_TRANSPORT_SYSTEM,PGPT0004205-zntB-K16074	NA	NA
D1-36_03365	492		COG0684	Putative 4-hydroxy-4-methyl-2-oxoglutarate aldolase	ATGAACCATTACCTCACGCCTGACCTGTGCGATGCCTATCCAGACCTCGTGCAAGTGGTGGAACCGATGTTCAGCAATTTCGGCGGCCGCGATTCCTTTGGTGGCGAGATAGTGACCATCAAGTGTTTCGAAGACAATTCCCTGGTCAAGGAACAGGTCGAGCTCAAGGGGGACGGCAAGGTGCTGGTGGTCGACGGCGGCGGTTCCCTGCGTCGGGCGCTGCTGGGAGACATGCTGGCGGAAAAGGCCGCGAAAAATGGTTGGGAAGGGTTGGTGATCTACGGTTGCATCCGCGACGTCGACGTCATTGCCCAGACCGACCTCGGCGTCCAGGCCCTGGCCAGCCATCCGATGAAGACCGACAAGCGTGGCATCGGCGATCTCAATGTGGCGGTCACCTTTGCTGGCGTGACGTTCCGTCCGGGTGAATATGTCTATGCGGACAATAACGGCGTGATTGTCTCGCCGAGCCCGTTGAAGATGCCTGAATAA	MNHYLTPDLCDAYPDLVQVVEPMFSNFGGRDSFGGEIVTIKCFEDNSLVKEQVELKGDGKVLVVDGGGSLRRALLGDMLAEKAAKNGWEGLVIYGCIRDVDVIAQTDLGVQALASHPMKTDKRGIGDLNVAVTFAGVTFRPGEYVYADNNGVIVSPSPLKMPE				NA	NA	NA	NA	NA
D1-36_03366	990			hypothetical protein	ATGCAAAGCAGCAGCAACCTATTTCCTGTCGCCCTGATCAGCGCCGAGCGGCGTGGCGATCTGAGCGAAGATGTCTATCGTTTGAAACCCGGTAACAGCCCCGACTACAGCGTCGAGCTGGCCGTCACCCGGCTGGGCATGGCCGATGTCGGCGAAACCCGGGGTGTCCCGGTGATCCTGTTGCACGGCAATTTTTCCAACCGTCGCTTCTGGTATTCGCCCAAGGGGCTGGGGCTGGGGGCGCACCTGGCGCGGTTGGGGTTCGATGTCTGGATTCCCGAAATGCGCGGGCATGGCTTATCCCAACGAAACCAGGGCTACCGCAACAACCGCGTGGCCGACTACGCCCGGTATGACTTGCCGGCCATCGGCGCCTTCGTGCGCGAGCAGAGCGGGCAGGTGCCCCATTGGATCGGTCACTCGCTGGGCGGCATCACCCTGGCAGCGGCCTTGGGCGGCCATTACCTGGGCGCGCCTGCCGTTGCATCGGCGGCATTTTTTGGTACACAGGTCAGCCGTACCTATTGGCCACTGAAAATTCCCCCGGTTGAATGGAGCGGGCGCTTCATCCTCAAGCGTTTCGCCCATTTGTCCGGTTCAAGGCTCAAGCGCGGCCCAGAAGATGAGCCCATCGGCCTGGCCCTGGAGAGCCTGCGCTGGTATGGCCTGTTCGGGCGTTTCGGCGATGCCGAGAAAAACTGGTGGGCGGGCCTGGCCGACGTGCAGGTGCCGGTGCTGGCGGTGAGCGCCGCCGGCGATCAGCAGGATCCTACCTGGGCATGCCGCAAACTGTTCGAGCAGATCGGTTCCGAGCACAAGCAATTTGTCTGCCTTGGGCGCGAACAAGGCTTCGGCGATGATTTCGGCCACGTCGAAATGCTCGTCAGTAAAGCCGCCCAGGCCGAGGTCTGGCCATTGGTGGCTCGGTGGCTGGAGGATCAGCGCGGACCGTTGCCGGCGGATCAACCCCACCTGGCGGAGGCGGTTTGA	MQSSSNLFPVALISAERRGDLSEDVYRLKPGNSPDYSVELAVTRLGMADVGETRGVPVILLHGNFSNRRFWYSPKGLGLGAHLARLGFDVWIPEMRGHGLSQRNQGYRNNRVADYARYDLPAIGAFVREQSGQVPHWIGHSLGGITLAAALGGHYLGAPAVASAAFFGTQVSRTYWPLKIPPVEWSGRFILKRFAHLSGSRLKRGPEDEPIGLALESLRWYGLFGRFGDAEKNWWAGLADVQVPVLAVSAAGDQQDPTWACRKLFEQIGSEHKQFVCLGREQGFGDDFGHVEMLVSKAAQAEVWPLVARWLEDQRGPLPADQPHLAEAV				NA	NA	NA	NA	NA
D1-36_03367	2376	ppsA		Phosphoenolpyruvate synthase	TTGGTAGAGTACGTAGTTTCCCTCGATAAGCTCGGCGTCCATGATGTAGAGCATGTGGGGGGCAAGAACGCATCCCTGGGCGAGATGATCAGTAAGCTCGCGGGCGCCGGAGTATCGGTGCCGGGTGGCTTCGCCACGACCGCCCAGGCTTATCGTGACTTCCTGGAACTGAGCGGCCTGAACCAGCAGATCCACGATGCGCTCGACGCCCTGGACGTCGATGACGTCAATGCCCTGGCCAAGACCGGTGCCCAGATCCGCCAATGGATCATGGAAGCCGAGTTTCCCGAGAAGCTGAACAGCGAAATCCGCACGGCTTTTGCCAAGCTCTCCGAAGGCAACCCCGACATCGCTGTCGCCGTACGCTCCTCGGCCACCGCCGAAGACTTGCCGGACGCCTCGTTCGCCGGCCAGCAGGAGACTTTCCTGAATATCCGTGGCGTGGAAAACGTCATCCGAGCCGCCAAGGAAGTCTTCGCCTCCCTTTTCAACGACCGTGCCATTTCCTACCGCGTGCATCAGGGCTTCGACCACAAACTGGTCGCCCTGTCCGCCGGTGTGCAGCGCATGGTCCGCTCCGAAACCGGCACCGCCGGCGTGATGTTCACCCTCGACACCGAGTCGGGCTTTCGTGACGTCGTGTTCATCACCGGCGCCTATGGCCTGGGTGAAACCGTCGTGCAAGGCGCGGTGAACCCCGATGAATTCTATGTCCACAAGGGCACCCTGGAAGCCGGTCGTCCGGCCATCCTGCGCCGCAACCTGGGCAGCAAGGCCATCAAGATGGTCTATGGCGACGAAGCCAAGGCGGGTCGTTCGGTCAAGACCGTCGATGTCGACAAGGCTGATCGCGCGCGCTTCTGCCTGACCGACGCCGAAGTCAGCGAGCTGGCCAAGCAGGCGATGATCATCGAGAAGCACTACAAGTGCCCGATGGACATCGAGTGGGCCAAGGACGGCGACGACGGCAAGCTGTACATCGTGCAGGCCCGTCCGGAAACCGTGAAGAGCCGCACCCAGGCCAACGTCATGGAGCGCTACCTGCTCAAGGAAACCGGCACCGTGCTGGTGGAAGGCCGCGCAATCGGCCAGCGCATCGGCGCCGGCAAGGTGCGGATCATCAAGGACGTCTCGGAGATGGACAAGGTCCAGGCCGGCGACGTGCTGGTCTCCGACATGACCGACCCGGACTGGGAACCGGTGATGAAGCGCGCCAGCGCCATTGTCACCAACCGCGGTGGACGCACTTGCCACGCGGCGATCATCGCCCGTGAGCTGGGCATTCCGGCCGTGGTCGGTTGCGGCAATGCCACCGAACTGCTCAAGGACGGCCAGGGCGTGACCGTTTCCTGCGCCGAAGGCGACACCGGCTACATCTTCGAAGGCGAGTTGGGCTTCGACATCAAGAAGAACTCCGTGGACGCCATGCCGGAGCTGCCGTTCAAGATCATGATGAACGTCGGCAACCCGGACCGTGCCTTCGACTTCGCGCAGCTGCCGAACGCCGGCGTGGGCCTGGCCCGCCTGGAGTTCATCATCAACCGCATGATCGGCGTGCACCCCAAGGCACTGCTGAACTATGACGGCCTGCCACAGGACATCAAGGACAGCGTCGACAAGCGCATTGCCGGCTACGACGACCCGGTCGGTTTCTACGTCGAGAAGCTCGTGGAAGGCATCAGCACCCTGGCGGCGGCGTTCTGGCCGAAGAAAGTCATCGTGCGGCTGTCGGACTTCAAGTCCAACGAATACGCCAACCTGATCGGTGGCAAACTCTACGAGCCCGAAGAAGAGAACCCGATGCTGGGCTTCCGTGGTGCGTCGCGCTACATCAGCGAATCGTTCCGCGATTGCTTCGAACTCGAATGCCGTGCCCTCAAGCGCGTGCGTAACGAGATGGGCCTGACCAACGTCGAGATCATGGTGCCGTTCGTGCGCACCCTCGGCGAGGCGAGCCAAGTGGTCGACCTGTTGGCGAAAAACGGCCTGGCCCGTGGCCAGAATGGCCTGCGCGTCATCATGATGTGCGAACTGCCGTCCAACGCGATCCTGGCCGAAGAATTCCTCGAGTTCTTCGACGGCTTCTCCATCGGCTCCAACGACCTGACCCAACTGACCTTGGGTCTGGACCGCGATTCGGGGATCATCGCCCACCTGTTTGACGAACGTAACCCGGCGGTCAAGAAGCTGTTGGCCAATGCTATCGCCGCCTGCAACAAGGCCGGCAAGTACATCGGCATCTGCGGCCAGGGCCCTTCGGACCACCCGGACCTGGCCAAGTGGCTGATGGAGCAGGGTATCGAAAGCGTTTCGTTGAACCCGGACTCGGTACTGGAAACCTGGTTCTTCCTGGCTGAGGGGCAGGCTGCGGTCTGA	MVEYVVSLDKLGVHDVEHVGGKNASLGEMISKLAGAGVSVPGGFATTAQAYRDFLELSGLNQQIHDALDALDVDDVNALAKTGAQIRQWIMEAEFPEKLNSEIRTAFAKLSEGNPDIAVAVRSSATAEDLPDASFAGQQETFLNIRGVENVIRAAKEVFASLFNDRAISYRVHQGFDHKLVALSAGVQRMVRSETGTAGVMFTLDTESGFRDVVFITGAYGLGETVVQGAVNPDEFYVHKGTLEAGRPAILRRNLGSKAIKMVYGDEAKAGRSVKTVDVDKADRARFCLTDAEVSELAKQAMIIEKHYKCPMDIEWAKDGDDGKLYIVQARPETVKSRTQANVMERYLLKETGTVLVEGRAIGQRIGAGKVRIIKDVSEMDKVQAGDVLVSDMTDPDWEPVMKRASAIVTNRGGRTCHAAIIARELGIPAVVGCGNATELLKDGQGVTVSCAEGDTGYIFEGELGFDIKKNSVDAMPELPFKIMMNVGNPDRAFDFAQLPNAGVGLARLEFIINRMIGVHPKALLNYDGLPQDIKDSVDKRIAGYDDPVGFYVEKLVEGISTLAAAFWPKKVIVRLSDFKSNEYANLIGGKLYEPEEENPMLGFRGASRYISESFRDCFELECRALKRVRNEMGLTNVEIMVPFVRTLGEASQVVDLLAKNGLARGQNGLRVIMMCELPSNAILAEEFLEFFDGFSIGSNDLTQLTLGLDRDSGIIAHLFDERNPAVKKLLANAIAACNKAGKYIGICGQGPSDHPDLAKWLMEQGIESVSLNPDSVLETWFFLAEGQAAV	PGPT0002035_1755	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0002035-pps|ppsA-K01007	NA	NA
D1-36_03368	819	ppsR	COG1806	Phosphoenolpyruvate synthase regulatory protein	ATGAAACGATCTGCTTTCTTTATCTCCGACGGCACCGGCATCACGGCCGAAACGCTGGGCCAGAGCCTGTTGGCGCAGTTCGAGAACATTACCTTCACCAAGCTGACACGCCCCTACATAGACAGCGTCGACAAGGCGCGGGCCATGGTACAGCAAATCAATAAAGCCGCCGAAAACGACGGTTTTCGCCCGATTATCTTCGACACCATCGTCAATCAGGACATCCGTGAGATTCTCGCAACGTCCAATGGTTTCATGATCGACATTTTTTCCACGTTCCTGGCGCCCCTGGAACAGGAACTGAGCGAACATTCTTCCTATTCGGTCGGCAAGTCCCATTCCATTGGTCACAACTCCAACTACATGGAGCGGATCGAGGCGGTCAACTTTGCGCTGGACAACGATGACGGCGCCCGCACGCATTATTACGACAAGGCCGACCTGATCCTAGTGGGTGTGTCGCGGTGTGGTAAGACGCCGACGTGTCTGTACATGGCGATGCAGTTCGGCATCCGCGCGGCCAACTATCCGTTGACCGAAGACGACATGGAGCGCCTGCAACTGCCCAATGCGTTGCGCGCCCACCAGCACAAACTGTTCGGCCTGACCATCGACCCGGACCGCCTCACCGCGATCCGCAACGAACGCAAGCCCAACAGCCGCTATTCGAGCTACGCCCAGTGTGAGTTCGAAGTGCGCGAAGTGGAAAACCTGTTCCGGCGGGAGAACATTCCCCATATCAACTCCACGCATTTTTCCGTGGAAGAGATATCGGCGAAGATCCTGGTGGAGAAAGGCGTGGAGCGGCGGTTCAAATAA	MKRSAFFISDGTGITAETLGQSLLAQFENITFTKLTRPYIDSVDKARAMVQQINKAAENDGFRPIIFDTIVNQDIREILATSNGFMIDIFSTFLAPLEQELSEHSSYSVGKSHSIGHNSNYMERIEAVNFALDNDDGARTHYYDKADLILVGVSRCGKTPTCLYMAMQFGIRAANYPLTEDDMERLQLPNALRAHQHKLFGLTIDPDRLTAIRNERKPNSRYSSYAQCEFEVREVENLFRRENIPHINSTHFSVEEISAKILVEKGVERRFK				NA	NA	NA	NA	NA
D1-36_03369	228	mbtH_2	COG3251	Protein MbtH	ATGACTTCAGTATTCGATCGCGAGGACATCCTCTTCCAGGTCGTGGTCAACCACGAAGAACAATATTCGATCTGGCCGGACTACAAAGCCATCCCGGAAGGCTGGCGTACGGTCGGCAAAAGCGGCTTCAAGAAGGAATGCCTGGCGTATATCGAAGAGGTCTGGACCGACATGCGCCCGTTGAGTTTGCGCAAGAAGATGGAAGAGCAGGCGGCCTTAGCGCAGTAG	MTSVFDREDILFQVVVNHEEQYSIWPDYKAIPEGWRTVGKSGFKKECLAYIEEVWTDMRPLSLRKKMEEQAALAQ	PGPT0003370_333	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-NOCARDICIN_A-D_METABOLISM,PGPT0003370-mbtH|nocI-K05375	NA	NA
D1-36_03370	1461	dat_2	COG0160	Diaminobutyrate--2-oxoglutarate aminotransferase	ATGCGCACCTGCCCGGTGCGCCGTTTGGTCACTCATTGCGGGGTCGAGAACATGTCAGTCACAAGTCCTATCGAAGCGTCGACAGTACGAGGCGGCTCCACGCCGGTCGAGACGCTTTACCAATTCGACGAATCACCGTTGCTGGCGCGCCAGAACCGCCAGGAATCCAATGCACGCAGTTATCCCCGACGCATACCCCTGGCGCTCAAACGCGCCAAGGGGCTGTACGTCGAAGACGTCGAGGGCCGTACTTTCATCGATTGCCTGGCTGGCGCCGGCACGCTGGCGCTCGGGCACAACCACCCGGTAGTGATCGAGGCGATCCGGCAAGTGCTTGCCGATGAACTGCCCCTGCATACCCTGGACCTGACCACGCCGGTGAAGGACCGCTTTGTCCAGGATCTGTTCGGCCTGTTGCCGGCAGCCCTGGTCGCCGAGGCGAAGATCCAGTTCTGCGGCCCCACCGGCACCGACGCCGTAGAAGCGGCGCTCAAGCTGGTACGTACCGCGACGGGGCGTAGCACGGTGCTGTCGTTCCAGGGTGGCTATCACGGAATGAGCCAGGGTGCGTTGAGCCTGATGGGCAGCCTGGGGCCGAAGAAGCCCTTGGGCGCCTTGCTCAGCAACGGCGTGCAGTTCATGCCGTATCCCTACGATTACCGCTGCCCGTTCGGTTTGGGTGGCGCGGAAGGCGTCAAGGCCAACCTGCATTATCTGCAAAACCTGCTGAACGATCCGGAGGCCGGCGTGCAATTGCCAGCGGCCGTCATCGTCGAAGTGGTGCAGGGCGAGGGCGGCGTCGTACCGGCCGACCTCGACTGGCTGCGTGGCTTGCGGCGGATCACCGAGCAGGCCGGGGTGGCGTTGATTGTCGATGAAATCCAGAGTGGCTTCGGCCGGACCGGCAAGATGTTCGCCTTCGAGCATGCCGGAATCGTCCCGGACGTGGTCGTGCTGTCCAAGGCCATCGGCGGCAGCCTGCCGCTGGCGGTCGTGGTGTATCGCGACTGGCTCGACACCTGGGCGCCGGGCGCCCATGCCGGCACGTTCCGGGGCAACCAGATGGCCATGGCAGCCGGTTGCGCTGTGATGCGTTATCTGGTGGAACACGACCTGCCGGCCCACGCCACCGCCATGGGCGAGCGCTTGAGCGAGCATTTGCTAATCCTGCAACGGGATTTCCCGCAGATGGGCGATATTCGCGGTCGCGGCCTGATGCTCGGCGTCGAGTTGGTCGACCCTGCGGGCGTGCCGGACACCCAGGGTCACCCACCGGTGCATGCGCGTCTGGCGCCACGCTTGCAGCGCGAGTGCCTCAAGCGTGGGCTGATCCTGGAATTGGGCGGCCGACAGGGCGGCGTGGTGCGGTTCCTGCCGCCATTGATTATCACGGCGACGGAAATCGATCGGGTCGCCGACATTTTCCGGCGCGCCCTGGAAGCCGCCGTGGCCGATGCCTAA	MRTCPVRRLVTHCGVENMSVTSPIEASTVRGGSTPVETLYQFDESPLLARQNRQESNARSYPRRIPLALKRAKGLYVEDVEGRTFIDCLAGAGTLALGHNHPVVIEAIRQVLADELPLHTLDLTTPVKDRFVQDLFGLLPAALVAEAKIQFCGPTGTDAVEAALKLVRTATGRSTVLSFQGGYHGMSQGALSLMGSLGPKKPLGALLSNGVQFMPYPYDYRCPFGLGGAEGVKANLHYLQNLLNDPEAGVQLPAAVIVEVVQGEGGVVPADLDWLRGLRRITEQAGVALIVDEIQSGFGRTGKMFAFEHAGIVPDVVVLSKAIGGSLPLAVVVYRDWLDTWAPGAHAGTFRGNQMAMAAGCAVMRYLVEHDLPAHATAMGERLSEHLLILQRDFPQMGDIRGRGLMLGVELVDPAGVPDTQGHPPVHARLAPRLQRECLKRGLILELGGRQGGVVRFLPPLIITATEIDRVADIFRRALEAAVADA	PGPT0014050_174	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014050-ectB|dat-K00836	NA	NA
D1-36_03371	1332	qseC_1		Sensor protein QseC	ATGAGCCTGCGATTGCGCTTGAGCCTGACCCTGGGCGCGGCATTTGCCCTGATCTGGGCCTTGGCGGCGGCGTGGATGCTCAGCGACCTGCGCAATCAGATGATGTTTTCTCTCGATCAGCGCCTGGTCGCCTCGGCACAGATGGTCGCCGGGCTGCTGGAGCAATTGCCGCCGGTGCCCAGCAAGGGTGAGGGTACGCATTTCAGCGCCGAACAACTGAGCGTCCCGGGGGGCATGGCTTGTCAGGTTACCTCGTTGCGGGGCGAAATCCTGGCACGCAGCCACGACACCCCGGGACAACCGCTGGAAGCCGAGAAGATGGGCTTTCATGACCAGATGATCGATGGCGCGCCGTGGCGCAGCTTCACCCTGGCCCGTGGCGACTTGCGTATCACCACCGCCGACCGCCAGATTGAACGCGAAGCCTTGAACATGTCGGTGCTGTTGGCGGCGTCGGTGCCGGTCGGCGTGGCGTTGCTCGGTTGCCTGTGCCTGTTGTGGCTAGGCGTCGGCCAGGGCTTGGCGCCGCTCAATCGCATGCGCGATGCGTTGACGCGGCGTAACGCGGACTCCCTGGAGCCGTTGCAGATCCAGCCGTTGCCCAGCGAGTTGCAACCCTTGCTGGAAACCCAGAACCAGCTGCTGCTGCGCATCGGCAAGGCCATCGAACGTGAGCGCCGCCTGACCGGTGACGCGGCCCATGAATTGCGCAGCCCCTTGACCGCCATCAAGACGCACCTGCAGGTGGCGCGCATGACCGACGGCGCCGCTCGCGACCAGTCCCTGGCGCGGGCGGAGGAGGGCGCCGATCGGTTGCACCGTACCCTGGAACAATTGTTGTTGCTGGCCCGGGTCGAGGGCAGCCTGTCGTTCGACGACGGTGTGCAATGCAATGCCGCGCAAGTCGCGCGGCTGGCTATCCAGGACGCGGCCAATGGCGCTCCCCAGCGAATCAGGCTGCATGTCTCGCCGCAATTGTCCGATGCGCCGGTCCAGATGCCGGCGGTCTTGTCCATAGCCGCGCTGCGCAATCTGTTGGACAACGCCTTGCGCCATACCCCGGACGATACTGACGTCGAGCTGAACCTGGAAATGGTGGGCCAGCGCGTGCGTTTCCAGGTACGCGACCACGGGCCCGGCATTGCCGCCGACGATGTCCAGCACCTGACGCAGCGCTTCTGGCGCACTGGGCAGAGCGAAGGTTGCGGGTTGGGGCTGGCGATCGTCCAGGCCATCGTTCAGCGATGCGGCTGCGGCTTGCAGTTCGATAGCCGCCCGGACGGGCTGCGGGTCGAGCTGACCGTGCCGCTGCAAGCCTCTTTGACTCAGTAG	MSLRLRLSLTLGAAFALIWALAAAWMLSDLRNQMMFSLDQRLVASAQMVAGLLEQLPPVPSKGEGTHFSAEQLSVPGGMACQVTSLRGEILARSHDTPGQPLEAEKMGFHDQMIDGAPWRSFTLARGDLRITTADRQIEREALNMSVLLAASVPVGVALLGCLCLLWLGVGQGLAPLNRMRDALTRRNADSLEPLQIQPLPSELQPLLETQNQLLLRIGKAIERERRLTGDAAHELRSPLTAIKTHLQVARMTDGAARDQSLARAEEGADRLHRTLEQLLLLARVEGSLSFDDGVQCNAAQVARLAIQDAANGAPQRIRLHVSPQLSDAPVQMPAVLSIAALRNLLDNALRHTPDDTDVELNLEMVGQRVRFQVRDHGPGIAADDVQHLTQRFWRTGQSEGCGLGLAIVQAIVQRCGCGLQFDSRPDGLRVELTVPLQASLTQ	PGPT0003920_1191	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-POLYMYXIN_RESISTANCE,PGPT0003920-pmrB-K07645	NA	NA
D1-36_03372	681	qseB_3		Transcriptional regulatory protein QseB	ATGCACGTATTGGTATGCGAAGATGATGCGCTGATTGCCAGCGGCATCGTGGCCGGGCTCACGGCTCAAGGCCTGACGGTCGAGCACGTCGCCACGGCATCGGCGGCGCGGGCCATGGTCGGCGTGGCGACGTTCGATGTCATGGTGCTGGACCTCGGCTTGCCCGATGAAGATGGCCTCAAGCTGCTCAAGCAATTGCGCCAGCAGGGCCTGGAAATCCCGGTGCTGATCCTGACCGCGAGGGACTCGGTGACCGACCGTGTCGACGGCTTGCAGGCCGGCGCCGATGACTATCTGCTCAAGCCCTTCGACCTGCGCGAGCTGGCGGCGCGCCTGCATACGTTGTTGCGGCGCGTTGCCGGGCGCAGCGTCAACCTGATCGAACATGGTCGCCTGACGTATGACCCCAGCAGCCGGGAAACCACCCTGGACGGCCAGCCGGTTGACCTCTCCCGGCGCGAGCAGGCGCTATTGCAGGCGTTGTTGCACAGCCGTGGCCGGGTGCTCTCCACCGAGCAACTCAAGGACAGCGTCTACGGCTTCAATGACGAGCTGGAAAGCAATGCGCTCAACGTCCATATCCACCACCTGCGACGCAAACTGGGCAATGGCGTTGTCGAGACGGTGCGCGGGCTGGGCTATCGCCTGGGGCCGGCCGACGGCGGGGAATCTTCCAAGTGA	MHVLVCEDDALIASGIVAGLTAQGLTVEHVATASAARAMVGVATFDVMVLDLGLPDEDGLKLLKQLRQQGLEIPVLILTARDSVTDRVDGLQAGADDYLLKPFDLRELAARLHTLLRRVAGRSVNLIEHGRLTYDPSSRETTLDGQPVDLSRREQALLQALLHSRGRVLSTEQLKDSVYGFNDELESNALNVHIHHLRRKLGNGVVETVRGLGYRLGPADGGESSK	PGPT0003915_341	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
D1-36_03373	939			hypothetical protein	ATGTATACGCATACGAACGCGCTGCTCAGTTACGCCGACTTTGTCACCGCGATCCAAAACCTGGTCGACCATGTAAAAAAGCAACGAACAATGGCGACAAACGAGGGCCTGGAGTTATACAACCTGGGAGAATTCAACAGGGCGAAACTCCATCTATTGATAGCTGCCACGGATGGCAACAAAGAAGCGCAATATGCCTTGGCGGAGGTGCTGAGGCGTGACGCCGGAAACATGACCGAAGAGGCGCGAAACTGGTACCAAAAGGCTGCTGGTCAAGATCATTTCTACGCCCTGCTGCGACTGGCGGACGGAACGTCGTTGGCCAAGGCCAAGGCATTGGCTGAAGCCAACGCAGACCCGGCTGAGCGCCTGCTACAGCTTTACGAATTGACGGGGGACATCGAGTCGTTGAGAAAATCCGAGCGAGCCGGTTCCTCCGAGGCCAAATGTATCCTGGCTTACTCGTATGGAAGGGATGAAAAACTCGTCCCCTCCGGCCTCACCCCAACGGCTGAACAGACGAGACTCCTGCTGGAGGCCGCGATTGCGGGCTTGCCCAAAGCCATGGCGTGGTACCCCAGACTGTTAACAGTACGCGATAAGACAACCAGACGTGCCTGGCTGGAAAAGAGGCTTCAGCTCAATGATGTCAATGCCTTGCTGGACTACGCCTTTGCGATCTCGACGGAATACGACATGGACGAGGATGAACAGGAATACGGCTACGAAAAAGACCTTGTCAAAGCCTACGCTCTGCTCTGGCTGGTCAGTGATACAACGCGCCAATTCAAGCGCCACGCTGATACTGTCAAAAATCTCGCCCACCTCGAAGCGCAATTGACCGCGCAAGAAATCACCGACGCCAAGCAACAGGCCCAAGCGTGGAAACTGAGCCATCCCCCGATGTCCGAATACCGGTTAACCTATCAGGAATTCTGA	MYTHTNALLSYADFVTAIQNLVDHVKKQRTMATNEGLELYNLGEFNRAKLHLLIAATDGNKEAQYALAEVLRRDAGNMTEEARNWYQKAAGQDHFYALLRLADGTSLAKAKALAEANADPAERLLQLYELTGDIESLRKSERAGSSEAKCILAYSYGRDEKLVPSGLTPTAEQTRLLLEAAIAGLPKAMAWYPRLLTVRDKTTRRAWLEKRLQLNDVNALLDYAFAISTEYDMDEDEQEYGYEKDLVKAYALLWLVSDTTRQFKRHADTVKNLAHLEAQLTAQEITDAKQQAQAWKLSHPPMSEYRLTYQEF				NA	NA	NA	NA	NA
D1-36_03374	1728	dsbD	COG4232	Thiol:disulfide interchange protein DsbD	ATGCGTCGATTGTTTTTGCTGTGGCTGTTTCTGATCTCGGGCCTGGCCCAGGCCGCCAATCCCTTCGAAACCAAGCCCGACTTCCTGCCGGTGGAAAAGGCATTCGTCTTTACTTCCGAACGCCTGGACTCCGGTGAAACCCAGTTGTTCTGGCAGATCGCCGACGGGTATTACCTGTATCAGCAGCGGCTCAAGTTCGATGGCCTGGCCGAAGCGCAGAAACCGAAGCTGCCCGAGGGCGAAGCCCACAGCGACGAGTTCTTCGGCGACCAGCAAGTCTACCGCCAGGCATTGGAGCTGAAGATTCCCGCCGGGGCTACCGGCAAGGTCAAGGTCGGTTTCCAGGGCTGCGCCGATGCGGGCCTGTGCTATCCGCCCCAGACCCAAATCGTAGACCTGGGCGGCGCCGCACCGGTGGCAAGCACTGGCGAGGCGCAAGACCAGGCGCTGGCCAACGGCTTGCAGCAGCGCACGCTGGGCTGGAGCCTGCTGGTGTTCTTCGGCCTTGGGCTGTTGCTGGCGTTTACCCCTTGTTCGCTGCCGATGCTGCCAATCCTGGCGGGATTGGTGGTGGGTAGCGGCGCCGGCCCCCGGCGCGGCCTGGCGTTGGCCGGCAGCTACGTGATCAGCATGGCGATGGTGTACGCCGCCATGGGCGTGCTTGCTGCGCTGTTGGGAGCCAATCTGCAGGCATTGCTGCAACAGCCGTGGTTGCTGGGCACCTTCGCGGCCATCTTCGTTGTATTGGCACTGCCGATGTTTGGCTTTTTCGAACTGCAACTCCCAGCCGCCCTGCGTGATCGCTTGGAAAACGCCGGCCGCCAGCGCCGCGGTGGCAGCCTGGTGGGTGCCGGCGTTCTGGGAGCCCTGTCCGGTCTGTTGGTAGGGCCGTGCATGACTGCGCCGCTGGCCGGCGCGCTGTTGTACATCGCCCAGAGCGGCAACGCGCTGCATGGCGGCCTGATCCTGTTCACCATGGGTGTCGGCATGGGCCTGCCGCTGTTGTTGCTGGTGACCGTCGGCAATCGTTTCCTGCCCAAGCCAGGCGCCTGGATGAACCTGCTCAAGGGCGTATTCGGCTTCCTGTTCCTGGGTACCGCGTTGCTGATGATCCGCCCAGTCATCGACGGCTCGCTGTGGATCGGCCTTTGGGGCGCTCTGCTGCTGATTGCCGCTTACTGCGCCTGGCGCCAGACCCAGGGGTTCGGTCGCGCGCCCTATCTGTGGGGCAGCGTATCGCTGCTGTTCGGGTTGTGGGGAAGCCTGCTGGTGGTCGGGGCGGCGGGAGGCAGCGACGATCTGTTCAAGCCGCTGGAGGTCTACAGCGGTGCCCAGGGCAATGCGACTGCCCAGGCCCACGACGCCTTCATCACCGTCAGCGAGCCCGCCGCCCTGCAACGGGAATTGGACAGCGCCAAGGCCCAGGGCCAATGGGTCCTGCTGGACTACTACGCCGATTGGTGCGTGTCGTGCAAAATCATCGAGAAACAGGTGTTTGGCCGCGCCGAAGTCATGGCCGCGCTTAGCGACGTGCGCCTGCTGCGCCTGGACGTCACTGCCGACAACGCCGCCAGCCGAGCGCTGCTCCAGCGCTACCAGGTGCCGGGCCCGCCCAGCCTGCTGTGGATCGGGCCCGACGCAGAAGAACGCCGTGGCCAGCGCATCACGGGCGAGATCGATGCCAAAGGCTTCCTGGAGCGTTGGAACCTGACCCGGGATGCAGGCTGA	MRRLFLLWLFLISGLAQAANPFETKPDFLPVEKAFVFTSERLDSGETQLFWQIADGYYLYQQRLKFDGLAEAQKPKLPEGEAHSDEFFGDQQVYRQALELKIPAGATGKVKVGFQGCADAGLCYPPQTQIVDLGGAAPVASTGEAQDQALANGLQQRTLGWSLLVFFGLGLLLAFTPCSLPMLPILAGLVVGSGAGPRRGLALAGSYVISMAMVYAAMGVLAALLGANLQALLQQPWLLGTFAAIFVVLALPMFGFFELQLPAALRDRLENAGRQRRGGSLVGAGVLGALSGLLVGPCMTAPLAGALLYIAQSGNALHGGLILFTMGVGMGLPLLLLVTVGNRFLPKPGAWMNLLKGVFGFLFLGTALLMIRPVIDGSLWIGLWGALLLIAAYCAWRQTQGFGRAPYLWGSVSLLFGLWGSLLVVGAAGGSDDLFKPLEVYSGAQGNATAQAHDAFITVSEPAALQRELDSAKAQGQWVLLDYYADWCVSCKIIEKQVFGRAEVMAALSDVRLLRLDVTADNAASRALLQRYQVPGPPSLLWIGPDAEERRGQRITGEIDAKGFLERWNLTRDAG				NA	NA	NA	NA	NA
D1-36_03375	870	resA_2		Thiol-disulfide oxidoreductase ResA	ATGCTGACCTTTACCCTGGGCACCTTTGCCATCGCTATCCATCACCTCCTGTTGATCAGCGCGCTGGCATTGGCGACGTTCGTCGGCTGGCGAGTGGCCAAGCGCGGGGGCGAGAACCCCGAGTCGGTGCTGTTCGTGCTGTTTTTGCTCGGGCTGCTCGCCGCGCGAACAGGTTTTGTCGTGGCGTACTGGAACCATTATCGGGACGACCTCTGGCAGATCGTCGATCTGCGCGATGGCGGTTTCCTTGCATGGCCGGGGATATTGGTGCTGTTGGCCGCGGCGCTGCTGTGGGCGCGGCGCCGACCGACCCTGCGCCGGCCATTGGGCTTTGGTGTGGGCAGCGGCCTGCTGTTCTGGCTGGTGGCGACAATGTCATTGACCATCTATGACCAAGGCACGCGGTTGCCGGAGATCGAGCTGCGCAACGCCGACGGCCAAACGGTGAAACTTACCGACTATCAGGGCGGGCCTCTGGTGGTCAATCTGTGGGCCACCTGGTGCCCGCCCTGCCGTCGCGAAATGCCGGTGCTGGAAGCCGCTCAACTGGAACGCCCGGACTTGACTTTCCTGTTCGTCAATCAGGCCGAAAGCATGCATAGCGTCAGCACTTACCTCGCCACCCAGGGCCTGAGCCTGCACAACGTGCTGTTCGACGGCAGTGGCCGTCTCGCCCAGGCCGTCGGGTCAATGGCCTTGCCGACGACCCTGTTCTACGGCGCCGATGGCCGCCTGCTCGGCAGTCACCTGGGTGAACTGTCGGAAGCCAGCCTGGCCCGCGCCCTGGAAAATTTCGAAACGCCGGGTCCAACCTCGGCGATCCCACCTTCTACAAGGAAACTGCCATGCCCCGCCTCCACCACCTGCTGA	MLTFTLGTFAIAIHHLLLISALALATFVGWRVAKRGGENPESVLFVLFLLGLLAARTGFVVAYWNHYRDDLWQIVDLRDGGFLAWPGILVLLAAALLWARRRPTLRRPLGFGVGSGLLFWLVATMSLTIYDQGTRLPEIELRNADGQTVKLTDYQGGPLVVNLWATWCPPCRREMPVLEAAQLERPDLTFLFVNQAESMHSVSTYLATQGLSLHNVLFDGSGRLAQAVGSMALPTTLFYGADGRLLGSHLGELSEASLARALENFETPGPTSAIPPSTRKLPCPASTTC				NA	NA	NA	NA	NA
D1-36_03376	768	dsbG	COG1651	Thiol:disulfide interchange protein DsbG	ATGCCCCGCCTCCACCACCTGCTGACCCTGGCTTTCGCCGGCGCGTTGCTGCAGGCACCGCTGCTTCACGCCGAAGAATTGCCAGCGGCCATCAAGAAGATCGAAGCCAAGGGCGCGAAAATCGTCGGCACCTTCCAAGCACCGGACGGCCTGCGCGGCTACGCGGCGCAATACCAGAACCGTGGGATGGCGCTGTACCTGACGCCGGACGGCAAACACGTCCTGCTGGGCAACCTGTACGACGCCGACGGCAAGGACTTGAGCGCCGAACCGCTGCAAAAACTGGTCTATGCCCCGATGGCCAAGGAAATCTGGGCGAAAATGGAGGCCAGCAACTGGATCGCCGACGGCAGCAAGGACGCACCGCGCACCGTGTACCTGTTCAGTGACCCCAATTGCCCGTATTGCAACATGTTCTGGGAACAGGCCCGGCCGTGGGTCAAGGCCGGCAAGGTGCAGTTGCGCCACATCATGGTGGGCATCATCCGCGAAGACAGCCCCGGCAAATCGGCCGCCCTGCTCGCGGCCAAGGCGCCAGAAAAGGCGCTGGCCGACCATGAGAAAGCCGGCAAGGGCAGCTCCCTCAAGCCGCTCAAGGAAATACCACCGGCCATCCAGGCGAAACTGGACGCCAATCAGCAATTGATGGACGAGTTGGAGCTGTCCTCCACGCCAGCTATTTTCTACCTCGATGACCAGGGCGAACTGCAACAGCAGAAAGGCGCGCCGTCGTCGGACAAACTGGTGGAGATTCTCGGGCCTAAGTGA	MPRLHHLLTLAFAGALLQAPLLHAEELPAAIKKIEAKGAKIVGTFQAPDGLRGYAAQYQNRGMALYLTPDGKHVLLGNLYDADGKDLSAEPLQKLVYAPMAKEIWAKMEASNWIADGSKDAPRTVYLFSDPNCPYCNMFWEQARPWVKAGKVQLRHIMVGIIREDSPGKSAALLAAKAPEKALADHEKAGKGSSLKPLKEIPPAIQAKLDANQQLMDELELSSTPAIFYLDDQGELQQQKGAPSSDKLVEILGPK	PGPT0013200_210	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-CHAPERONES,PGPT0013200-dsbG-K03805	NA	NA
D1-36_03377	813	catD_2	COG0596	3-oxoadipate enol-lactonase 2	ATGCCCTTTGCAACGATTGACGGACAACCGCTCCATTACCTGGACCAGGGCCAAGGCCCGGTAGTGGTGCTGGGTAGCAGCTATTTGTGGGACCAGAGCATGTGGGCGCCACAGGTCGATGCCCTGTCGAAACACTATCGGGTCATCGTCCCGGAGCTATGGGGCCACGGGCAATCCGGACGACTTCCCGAGGGCATGACCTCACTGGACGACCTGTCCCGCCAGACACTGGCGTTGATGGATCACCTGGATATCGACTGCTTCAACCTGGTCGGCCTGTCGGTGGGCGGAATGTGGGGAGCGCGGTTGGCGCTGGCAGCGCCTAAGCGAGTGAGTTCGCTGGTGTTGATGGACACCTACGTCGGGGTAGAGCCGGAACCGACCCGCCAGTATTATTTTTCACTGTTCGACAAGATCGAGGCCAGTGGCAGCGTGCCCGAGCCGCTGCTGGATATCATCGTGCCGATTTTCTTCCGGCCGGGCATCGATCCGCGGTCGGCGCTCTACCAGCAGTTCCGTGCCACCTTGGCCGCGCTGCCAACGGATCGCCTGAGGGACAGTATCGTGCCGTTGGGGCGGATCATTTTTGGTCGGGACGACATCCTGTCGCGCCTGCCTGAACTGGATGCCAGGCGCACGCTGGTGATGTGTGGCGACCAGGACAAGCCGCGGCCACCGTCCGAGGCCCGGGAAATGGCCGAGCTGATCGGCTGCGAACACATGCTGATTGCGCAGGCGGGGCATATATCCAACCTGGAGAATCCGGAATGTGTGACTGAAGCGTTGTTGGGATTTCTGAAACGGATGCACTGA	MPFATIDGQPLHYLDQGQGPVVVLGSSYLWDQSMWAPQVDALSKHYRVIVPELWGHGQSGRLPEGMTSLDDLSRQTLALMDHLDIDCFNLVGLSVGGMWGARLALAAPKRVSSLVLMDTYVGVEPEPTRQYYFSLFDKIEASGSVPEPLLDIIVPIFFRPGIDPRSALYQQFRATLAALPTDRLRDSIVPLGRIIFGRDDILSRLPELDARRTLVMCGDQDKPRPPSEAREMAELIGCEHMLIAQAGHISNLENPECVTEALLGFLKRMH	PGPT0004995_465	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
D1-36_03378	12987	lgrD_4		Linear gramicidin synthase subunit D	ATGACCGACGCGTTCGAACTTCCCCGCACCCTGGCTCACGCACTCCAGCGCCGCGCCGCGTTGACCCCGGATCAGGTGGCCTTGCGCTTCCTGGCCGATACCCCGGAGCAGGGCGTGGTGTTGAGTTATCGCGACCTGGATCAACGCGCCCGGACCATCGCCGCCGCCTTGCAGGCCGAGGCCCGATTCGCTGATCGAGCGGTGCTGTTGTTCCCCAGCGGCCCGGATTATGTCGCGGCATTCTTCGGTTGCCTGTATGCCGGCGTGATCGCCGTACCGGCCTATCCGCCGGAATCCTCCCGTCGGCATCATCAGGAGCGCTTGCTGTCGATCATCGCCGATGCCGAGCCGCGGCTGTTGCTGACCACCGCTGACCTGCGCGACACCTTGCAAGCCATCGAATCGGCACCGCCGGTGCTGTGCGTCGATACGCTCGATCCGACCCGCGCCGAGCAATGGCAAGCGCCGCAGCTGCAACGCGATGACATTGCTTTCCTGCAATACACCTCCGGTTCCACCGCCTTGCCAAAGGGCGTGCAGGTCAGCCACGGCAACCTGGTCGCCAATGAACTGTTGATCCGCCGTGGCTTCGGCATCGATGTGAACCCCGACGATGTCATCGTCAGCTGGCTGCCGCTTTACCACGACATGGGCCTGATTGGCGGCTTGCTACAGCCGATCTTCAGCGGCGTGCCTTGCGTGCTGATGTCGCCGGCCTATTTCCTCGCCCGGCCGTTGCGTTGGCTCGAAGCGATCAGCGAGTACGGCGGCACCATCAGCGGCGGCCCGGACTTCGCCTATCGCTTGTGCAGCGAACGGGTCAGTGAGTCCGCCCTGAGCCGCCTCGACCTGAGTGGCTGGCGCGTGGCCTATTCCGGCTCCGAGCCGATCCGCCTCGACAGCCTGGAGCGCTTTGCCGGGAAATTTGCTGCGTGCGGCTTCACGGCCGACCGTTTCATGGCCTCCTACGGGCTCGCCGAGGCGACGTTGTTCGTGGCCGGCACGCCACGTGGCCGAGGCATCCCATCGATGCGCATGGACGATGCAGCCTTGACGCAAAACCGTGCCGAGCCGGGGCAGGGCTGCGCGGTGATGAGTTGTGGCGTGAGCCAGCCGGATCATGCGGTGCTGATCGTCGAACCCAACACCCTGCAACCGCTGGCCGACAGCCAGGTGGGCGAGGTCTGGGCCGCCGGCCCGAGCATCGCCCACGGTTACTGGCGCAACCCCGAGGCCAGCGCCAAGACCTTCGTCCAGCATGACGGCCGCACTTGGCTGCGCACCGGCGACCTGGGTTTTATGCGCGAAGGCGAGCTGTACATCACCGGCCGCCTGAAGGACATGCTGATCGTGCGCGGGCACAACCTCTACCCCCAGGACATCGAGCAAACCATCGAACGGGAAGTGGAAGTGGTGCGCAAAGGACGGGTTGCCGCCTTCGCCGTCGATGAGGCGGGCGAGGAAGGCATCGGCATCGCTGCTGAAATCAGCCGTAGCGTACAGAAGATCCTGCCCCCCGACGCCTTGATCAACGCGATTCGCCAGGCCGTGGCCGACGCCTGCCAGCAAGCGCCGAGCGTGGTGGTGCTGCTCAACCCGGGGGCGCTGCCCAAGACGTCCAGCGGCAAACTGCAACGTTCGGCGTGCCGCGCCCGGTTGGCGGACGCCAGCCTCGACAGCTATGCACGGTTCCCCTCGGCCAAGGCTGAAACCGGCGATGAAACCGCGCCATCATCCGAGCTGCAAGAATTGATCGGCCGCCTCTGGTGCGAGCAGCTACACGTTGAGCGGGTTCGTGGCGACGATCATTTTTTCCTGTTGGGCGGCAATTCCATCGCAGCCACCCAAGTCATTGCGCGGCTGCGTGAAGTGCTTGGTCTGGAACTCAACCTGCGCCTGCTCTTCGAAGCGCCAACCCTGGACGCGTTCGCGACGGCAGTGGCAAATCTGCAACAGGACGGCGGCCAGGCCCAAGGCGCCATCAAAGCGTTGGCGCGCGATGAAGCCCTGCCGCAGTCCCTGGCCCAGAACCGTTTGTGGCTGACCTGGCAGCTGGACCCTGCCAGCCGCGCCTACAACATCCCCGGCGCTCTGCGCCTGCGCGGTGAGTTGGACGAACAAGCGCTGCGCGCCAGCCTCCAACAATTGACCGAGCGCCATGAATCCTTGCGCACACGGTTCCTGGAGCGCGACGGCGTGGCCCTGCAGCGGATCGATCCGGCCGGCGAGTTCAATCTCCAGGTGATCGACCTCAGCGACGTGGCCACCGATCAACGCGAAGCCCAGGCCCAGCGTATCCGCGAAGACGAAGCAGCCACTCAATTCGACTTGGAAAAAGGCCCGCTGCTGCGGGTCGCCTTGCTGCGCCTGGCGGAAGACGATCACCTGCTGTTGGTGACGATGCACCACATCATTGCCGATGGCTGGTCGATGAATGTCTTGATCGAAGAATTCTCGCGACTGTACGCCGCAGCGTCCCAAGGACAAATCGCCGCGCTGGCGCCGTTGCCGCTGCAATACGCCGACTACGGCAGTTGGCAACGGCAATGGCTTGCCCAGGGCGAAGCCGATCGCCAACTGGCGTATTGGAAACAGCAGTTGGGCGACGAGCACCCGACCCTGGCGCTGGGCACCGACCACCCGCGCAGTGCCCAACTGCGTCGCAGCGCCTCGCGCCATAGCCTGCGCGTGGACAAGTCACTCAGTGATGCTCTGCGCCAGATCGCCCAGGCCCATGACGCGACGGTGTTCATGCTGTTGCTGGCGGCGTTCCAGGCCTTGTTGCAGCGCTACACCGGTCAGTCCGACATTCGCGTCGGCGTACCCAACGCCAACCGCCCGCGCCTGGAAACCCAAGGCTTGATCGGTTTTTTCATCAACACTCAGGTGCTGCGTGCGCAAACCGATTCGCGTCAACCCTTCGCCGCGCTGCTGGCCCAGGCCCGGGAGGCGACGCTCGCCGCCCAGGCCCATCAGGACCTGCCCTTCGAACAGCTGTTGGAAGCCTTTCCCCAGGCTCGCGATCAAGGTCTGTTCCAGGTGATGTTCAACCACCAGCAGCGGGACCTCGGCGCGTTGCGGCGTCTGCCGGGACTGTTGGCGGATGAGTTGCCATGGCACAGCCGCGAGGCCAAGTTCGACCTGCAGTTGCACAGCGAAGAAGACCGCAACGGTCGGCTGACACTGTCGTTCGACTACGCAGACGAGTTGTTCGAGGCGGCAACCATCGCGCGCCTGGCCGAGCACTTTTGCAGTTTGCTGCGGGCGGTCTGCGCTGATCCGCAGCAGGCCCTGGGCGATTTGCCGTTGTTGAGCGCCGATGAACTCGCCCAGCAGCAGCGTTGGGCGGCGGCACCCTGCGCGCCCGCCACGCAATGGCTCCCGGAACTGCTTAATGACCAGGCCCGGCTCACACCGCAACGCAGGGCATTGCAGTGGGATGGCGGCTCGCTGGACTACGCTGAATTGCACGCCCAGGCCAATCGGCTGGCCCATTATCTTCGGGACAAAGGCGTGGGCCCGGACGTGTGCGTGGCGATTGCCGCCGAGCGCTCGCCGCAATTGCTTGTTGGCGTGCTGGCGATCATCAAGGCAGGTGGCGCCTACGTGCCGCTGGATGTCGATTACCCGAGCGAACGCCTGGCCTACATGCTCCACGACAGCGGCGTCGATCTGCTGCTGACCCAAACCGCGCTGCTCGAACGCTTGCCGGCCTGCGAGGGCGTCAGCGTCATCGCCATGGATGCGCTGCACCTGGAGCAATGGCCGAGCAACCCGCCGCGGTTGCACCTGCACGGCGATCATCTGGCCTACGTGATCTACACCTCCGGCTCGACCGGCCAACCCAAGGGTGTCGGCAATACCCACGCGGCCCTGGCTGAACGCTTGCAGTGGATGCAGGCCGCCTATGAGCTGGATGAAACCGACGTGTTGATGCAAAAGGCGCCGATCAGTTTCGACGTGTCGGTGTGGGAGTGCTTCTGGCCGCTGATCGCTGGCAGCCGATTGGTCCTGGCCGGCCCGGGGGAACACCGCGACCCGCACCGCATCGCTCAATTGGTCGAGCAGTTTGGCGTAACCACGCTGCACTTCGTCCCGCCGTTGCTCAGCCTGTTTATCGACGAGCCGTTGAGTGCCCGTTGCACCGGCCTGCGGCGGATTTTCTCCGGGGGCGAAGCCTTGCCAGCCGAATTGCGTAACCGGGTGCTGGCGCAGTTGCCGGCGGCGCAATTGCACAACCGTTATGGCCCGACCGAAACCGCGATCAACGTCACTCATTGGCACTGCACCGCAGAAGATGGCGAGCGCTCGCCCATCGGCCGTCCCTTGACTAACGTGCTGTGCCGCATCCTCGACAGTGAACTCAATCCCGTGCCCGCCGGCGTGCCGGGTGAGCTGTGCATCGGTGGCCTGGGCCTGGCCCGGGGTTACCTCGGGCGCCCCGGGTTGACCGCGGAGCGCTTCGTCGCCGACCCCCAAGGGCTGGCGGGCGCGCGGCTCTACCGGACCGGGGACCGGGCGCGCTGGGGTGCCGACGGCGTCATCGAATACCTCGGCCGCCTCGATCAGCAGGTGAAGCTGCGCGGTTTCCGCGTCGAACCTCAGGAAATCGAGGCGCGGTTGCTGGCCCAGGACGGCGTCGCCCAGGCGGCGGTGCTGGTGCGCGATACGGCGGCCGGTCCGCAGTTGATCGGCTATTACACCGCAGCAGTCCTTGATGAAGACGATATCGTCCAGGCCGCGCGCTTGAAAAACGCCCTTGCCAGTGAGCTGCCTGACTACATGGTGCCCGCCCAACTGCTGCGCCTGGACGCCATGCCCCTGAGCCCGAGCGGCAAGCTCGACCGTCGTGCCTTGCCCGAGCCGCAATGGCAGGTGCGCGAACACGTCGAACCGGCCAGCGCTCTCGAACAGCAGATCGCCGCGATCTGGCGCGACGTGCTGGGCCTTGCCCGCGTCGGCTTGAGGGACGATTTTTTCGCCCTGGGCGGCCATTCGTTGCTGGCGACCCAGATCATTTCCCGTACGCGCCAGGCCTGCGATGTCGAGCTGCCGTTGCGTGCGTTGTTCGAAGCCAGTGAGCTGGGAGCGTTCGCCGAGCAAGTGCGGTTGATCCAGGCCAGCGGCCGGACCAACCGTCAGCCGCCGATCGAGAAAGTCGACCGCAGCCAACCGGTGCCGTTGTCCTATTCCCAGCAACGCATGTGGTTCCTCTGGCAGATGGAACCGCATAGCCCGGCCTACAACGTCGGTGGCATGGCGCGGCTGCGCGGGGTGCTGGATGTCGGGCGCTTCGAAGCGGCGTTGCAGGCGTTGATCCTGCGCCATGAAACCTTGCGCACCACGTTCCCGAGCGTCGACGGCGTGCCTCGCCAGCACGTACACGACGAGACGGGCCTGCGCATGGACTGGAAGGACTTCTCCATGCTCGACGCCGACATTCGCCAGCAACGGGTGCAGCAACTGGCCGACAGCGAAGCTCACGAGCCCTTTGACCTGGAAACCGGGCCGCTGCTGCGGGCATGCCTGGTCAAGACCGCCGAGCACGAACATTACCTGGTGCTGACGCTGCATCACATCGTCACCGAGGGCTGGGCGATGGACATCTTCGCCCGGGAGCTAAGCGCGCTGTACGAAGCCTTTATCGATGATCGCGAGTCGCCGCTGGAACCGTTGCCGGTGCAGTACCTGGACTACAGCGCCTGGCAGCGCCAGTGGTTGGAATCCGGCGAGCGCCAACGCCAACTCGATTACTGGACCGCGCAGCTGGGCCGCGAACATCCCTTGCTGGAATTGCCGGGGGACCGCCCGCGTCCGCCGGTACAAAGCCATCGCGGCGAACTGTTCCGTTTCGACCTCAGCGATGACTTGGCCGCACGGGTTCGTGCCTTCAACGCCGAGCATGGCTTGACCCTTTTCATGACGGTGACCGCTGCCCTGGCCGTGCTGCTTTATCGCTACAGCGGCCAGACCGACCTGCGCATCGGCGCGCCGGTGGCCAACCGCATCCGTCCGGAAAGTGAAGGGTTGATCGGCGCGTTCCTCAACACCCAAGTGCTGCGTTGCCAACTCGACGGGCAGATGTCCGTTGGCGAGCTATTGGAGCAGGTGCGCCACACCGTGATCGAGGGCCAGTCCCACCAGGACCTGCCGTTCGATCATCTGGTGGAAGCGTTGCAGCCACCGCGCAGCGCGGCGTACAACCCGCTGTTCCAGGTGATGTGCAACGTGCAGCGGTGGGAATTCCAACAAAGCCGCACGCTGGCCGGCATGAGCGTCGACTATCTGGTCAACGATGCGCGGGCCACCAAGTTCGACCTCAACCTGGAAGTCACCGATCTGGACCGGCGCCTGGGTTGCTGCCTGACCTACAGCACCGATTTGTTCGACGAGCCACGCATTGCCCGCATGGCCGGGCACTGGCGCAACCTGTTGGAAGCGCTGCTGGTGGATCCGGCCCGGCGGCTGAGCGAGCTGTCGTTGCTGGAGGCCGGCGAACAGCGGCAGTTGCTCGAGAGTCTGGGCGAAGAACCGGGCGAGCATCGCCTGGATCGATGCATCCATTCATTGTTCGAAGAACAGGCCAGGGTGCGCCCGGACGCGCCGGCGCTGACGTTCGCCGAGCAGACCCTGACCTATGGCGAACTCGAACGCCGGGCCAATCGCCTGGCCTGGATGTTGCGCGAACGTGGTGTCGGGCCTCAGGTTCGCGTGGGCCTGGCCCTGGAGCGCTCGCTGGAAATGGTCGTCGGCTTGCTGGCGATCCTCAAGGCGGGTGGCGCCTACGTGCCGCTGGATCCGGAATACCCGCTGGACCGCTTGCTCTACATGATCGAGGACAGCGGCGTCGGTCTGTTGCTCAGCGATCGGGCCATGTTCCAGGCCCTAGGCCCACTGCCGGAAGGCGTGCAGCGCTGGTGCCTGGAAGACGACAGCGCGGCCGTGGCGGATTACCCCGACCAGTCACCAGGGCTGATCAATCTGCCGCAACACCAGGCTTACTTGATCTACACCTCCGGCTCCACCGGCAAACCCAAGGGTGTGGTGGTGTCCCACGGCGAAATCGCCATGCATTGCCAGGCGGTGATCCAGCGCTTCGGCATGCGCCCCGAAGACTGCGAGCTGCATTTCTATTCGATCAATTTCGACGCCGCCACCGAGCGCTTGCTGGTGCCCTTGCTCAGCGGGGCCCACGTGGTGCTGCGCGCTCAGGGCCAGTGGGATGCCGAGGAAATCTGCGGCCTGATTCGCCAACACCGCATCAATATCCTCGGTTTCACCCCCAGCTATGGCAGCCAATTGTCGCAATGGCTGGCGACCCAGGGCCAGACGCTGCCGGTGCGCATGTGCATCACCGGTGGTGAGGCCCTGACCGGCGAGCATTTGCAGCGTATCCGCGCCGCATTCAGCCCGGATCTATTCTTCAACGCCTACGGGCCGACCGAAACCGTGGTCATGCCGCTGGCGAGCCTCGCCCCGGAGCGACTGGAGGAGGGCGCCGGCAGCGTGCCGATCGGCAGCGTGATCGGTGCTCGGGTCGCCTACATTCTCGACGCCGACCTGGCATTGGTGCCGCAGGGCGCGACCGGTGAGTTGTACGTTGGCGGCGCCGGGCTGGCCCAGGGTTATCACCAGCGCCCGGGCATGACCGCCGAGCGTTTCGTCGCCGACCCGTTTGCCGCCAATGGCGGACGGTTGTATCGCACTGGCGATTTGGTGCGCCAGCGCGCCGACGGCCAGGTGGAGTACCTTGGACGCATCGACCATCAGGTGAAGATTCGCGGTTTCCGCATCGAGCTGGGGGAAATCGAAAACCGTTTGTTGGAGCACGATGCCGTGCGCGAGGCCGTGGTACTGGCCCTGGACATGCCCGGCGGCAAGCAACTGGCCGGTTATCTGGCCACCGACATCGCCGCTCAGGACGCCGCCGGGCAAGCGTCGCTGCGCGAAGCGTTGAAGAACCACCTCAGGGCGCAGCTACCGGACTACATGGTGCCCGCGCACTTGATCCTGCTGGCGAGCATGCCGCTGACCGCCAACGGCAAGCTCGACCGCCGCGCCTTGCCGATGCCGGATCCGGAGCTCAATCGCCAACAATACGTGGCGCCGAGCAATGCCTTGGAGCAAGCGCTGGCGGCAATCTGGTGCGACGTGCTGAACCTGAAGCAGGTCGGCCTCAACGACAACTTCTTCGAGCTGGGCGGCGATTCGATCCTGTCGATCCAGGTCGTCAGCCGGGCCCGGCAACAGGGCCTCCACTTCACGCCACGCGACCTGTTCCAGCACCAGACCGTGCAGGCCCTGGCGGCGGTCGCAACTCGCAGCGAACAGGTGAGCGCCGAGCAAGGGTTGTTGAGCGGTGAGTCGGGGTTGACGCCGATCCAGCACTGGTTCTTGGCCAACGAAATACCCAACCGTGAACATTGGAACCAGGCGTTGTTGCTGGAGCCGACCACGCCCTTGGAAGCGGATGGTCTGGAGCAAGCGTTGCGCGCCGTTTTCGAGCAGCACGACGCCTTGCGCCTGGGCTTTGGCAACAGCGCCGGTCAGTGGCGCGCCGAGCATCAGCCAGTGTTCGAGGGAGCGCTGCTGGAAACGGTATCGGTGGGCTCGCCGCACGCCTGCGAAACCGTGTTTGCCCAGGCTCAGCGTGGCTTCGAACTGGCGACTGGGCCGCTGCTGCGGGCCGTGCTGGCGCAGCTACCGGACGGTCGGCAGCGCCTGCTGATCGCGATTCACCACCTGGTGGTGGACGGTGTGTCATGGCGGGTGCTGATGGACGATCTGCAAACGGCTTACCGCCAATGCGTCGCCGGACAAACGCTGCAAATGCCAGCCAAGACCAGCCCCTTGCGTGATTGGGCCGCGCGTTTGCGGGCCTACGCCGGTAGCGAATCCCTGCGCGAGGAAATGAGCTGGTGGCAAGGTCAGTTAAGTGGTCCGCAGGTGACACTGCCTTGCGCGCGTCCCGACGGCGGGCGGCAGGAACGGCATGCCGACATCGTCAGCCTGCGCCTGGACGCCGAGCGCACCCGGCAATTGCTGCAACAGGCGCCCAGTGCCTACCGCACCCAGGTCAATGACCTGTTGCTCACGGCGCTGGCCCGGGTGCTGTGCCGTTGGAGCAATCACGATTCGGCGTTGGTCCAGCTCGAAGGTCATGGTCGCGAGGCGCTGTTCGATGACATCGATCTGACCCGCACCGTGGGATGGTTTACCAGTGTCTATCCGCTGCGCCTGAGCCCATCGGCCGATGATATCGGCACCTCGATCAAAGCCATCAAGGAGCAACTGCGCGCCGTGCCCCATAAGGGCCTCGGCTATGGCGTGCTGCGTTACCTGACAGACAGCGGCACCCGCGAGGCGATGGCCGGCCTGCCGCAAGCGATGGTCACTTTCAACTACCTCGGCCAGCTCGACCATGCCCTCGGCCAGGACGCGCTGTTCCGACCGCTGGACGAGCCGCTTGGCGCGATTCACGACCCCGACGCTCCGCTGCCCAACGAGCTGAGCCTCGACTGCCAGGTCAGCGGCGGCGAACTGGCGCTGCGCTGGACCTTCAGTGCCGAGCGCCATGACCGCCAGAGCATCGCCGTGCTGGCCAACGCTTACCTCGACGAACTGCAGCACTTGATCGAACACTGCCTGACGGACGAGGCGGGCGGCCTGACGCCGTCGGACTTCCCGCTGGCGAAACTGACCCAGGCGCAACTGGACAACCTGCCGGTGCCGGCCGCGGAGATCGAAGACGTCTACCCACTGACGCCGATGCAGGAAGGCATGCTGCTGCACACCTTGCTGGAACCGGGCACGGGCCTGTACTACATGCAGGACCGCTACCGCATCAACAGTGAACTCGACCCTCAGCGTTTCGCCCAAGCCTGGCAGGCGGTGATCGCCCGTCACGAAGCCTTGCGCGCCTCGTTCTGCTGGAATGTCGGTGAAGACATGCTGCAGGTCATCCACAAACCCGGCCGCACGCCGGTGCAATACCTCGACTGGACGCAAGTACCCGACGACGCCCAGGAGCCCAAACTCCAGGCGCTGCTCAAGAGCGAACGGGAGGCCGGTTTCGATCTGTTGAACGAGGCGCCGTTCCACTTGCGCTTGATCCGGGTTGGCGCGGCGCGTTACTGGTTCATGATGAGCAACCACCACATCCTCATCGATGCGTGGTGCCGTTCGCTGCTGATGGACGATTTCTTCGAAATCTACACGGCCCTTGGCGAACAGCGCGAGCCCCACCTGGCCGTGCCGCCGCGCTATCGCGACTACATCGGTTGGCTGCAACACCAGAGCCTGGCCGAAGCCCGGCAGTGGTGGCAGAAGAACCTGCAAGGCTTCGAGCGGACCACGCCGATCCCCGCGGATCGACCGTTCCTGCGCGAGCACGCCGGTGACAGCGGCGGCATGGTCGTCGGCGATTGCTACACCCGGCTCGACGTTCGAGACGGTGCGCGTTTGCGCGAGCTGGCCCAGGCCCATCAGCTGACCGTCAATACCTTCGCCCAGGCCGCGTGGGCCTTGGTGCTGCGTAGGGTCAGCGGCGATCGCGACGTGCTGTTCGGCGTCACCGTGGCCGGCCGTCCGGTGGAGCTGCCGCACATGCAGCGCACGGTGGGGCTGTTCATCAACAGCGTCGCCTTGCGAGTGCAGATTCCGTCGGATGACCAGCGTTGCAGCGTGCGCCAATGGCTCAACGGTTTGCTGGACAGCAACATGCAACTGCGCGAGTACGAATACCTGCCGCTGGTGAGCATCCAGGAGGTCAGCGAACTGCCCAAGGGCCAGCCGTTGTTCGACAGCCTGTTCGTGTTCGAGAACGCGCCGGTGGAAGTCTCGGTGCTGGACCGCGCCCAGAGCCTCAACGCCACCTCGGATTCAGGGCGCACCCACACCAACTTCCCGCTGACGGCGGTGTGTTACCCGGGCGACGATCTCGGACTGCACCTGTCCTACGACCAGCGTTACTTCAATGAGTCGACGGTCCAGGGGCTGCTGGGTGAGTTCAAGCGATTGCTGCTGGCGCTGATCGAAGGTTTCCACGGTGACATGGCCGAGCTGGCGCTGATCGGGTCTGAAGAAAAGACTTTCCTCATCGAGGGCTGCAACCAGAGCGAACGTGCCTATCCGCTGGAGCAGAGTTACGTGGAGCTGTTCGAGGCCCGGGTGGCGGCTCATCCGCAACGCATTGCCGCCAGTTGCCAGGACGACAGCTGGACTTACGCCGCGTTGAACGAACGCAGCAACCGCCTCGGTCATGGGCTGATCGAGGCGGGCGTCGGTCTCGACCAGCCGGTGGCGCTGCTGGCCGAGCGCGGCCTGGACTTGCTGGGCATGATCATCGGCAGCTTCAAGGCCGGCGGCGGTTATCTGCCGCTGGACCCAGGCCTGCCGAGCCAACGCCTGAGCCGCATCATCGAGCTGAGCCGCACGCCGTTGCTGGTGTGCACGAGAGCTTGTCGCGAACAGGCGTTGGCCTTGCTGGAAGAGTTCGCCTGTGCCGGGAGGCCGAAGCTGCTGGTCTGGGAAGACGTCCAGGGCAGTGATACGGCGGTGGACAATCCTGGCGTTTACAGCGGGCCGGACAACCTCGCCTATGTGATCTACACCTCTGGCTCCACCGGCTTGCCCAAAGGCGTGATGGTGCAGCAGCGCGGCATGCTCAACAACCAGCTCAGCAAAGTGCCGTACCTGGCGCTGGATGAAACGGACGTGATCGCCCAGACCGCGTCCCAGAGCTTCGACATTTCGGTGTGGCAGTTCCTGGCCGCCCCGTTGTTCGGCGCCCGGGTGGACATCGTGCCCAATGCCATCGCTCACGATCCCCAAGGACTGTTGGACCATGTGGGTCGTCAGGGCATTACCGTGCTGGAAAGCGTGCCTTCGTTGATCCAGGGCATGCTCGCCCAGGAGCACACCGGTCTGGATGGCTTGCGCTGGATGCTGCCCACCGGCGAAGCGATGCCACCGGAACTGGCCCATCAATGGCTGGTACGTTACCCCGACATCGCCCTAGTGAATGCCTACGGACCGGCGGAATGTTCCGATGATGTGGCGTTCTTCCGGGTCGACATGGCCTCGACCCGTGGCACCTACCTGCCCATCGGCACGCCGACCGACAACAACCGTTTGTACGTGCTCGACGGCGCGCTGGAACTGGTGCCGTTGGGCGCGGTGGGCGAGTTGTGCGTCGCCGGCACCGGAGTGGGGCGTGGTTATGTCGGCGATCCGTTGCGTACGGCGCCGGTCTTCGTGCCCAACCCGTTCGGCGCGCCGGGCGAGCGGCTGTACCGCACTGGCGACCTGGCGCGCCGCCGCAGCGATGGCGTGCTGGAATACGTCGGGCGCATCGATCATCAAGTGAAGATCCGCGGTTACCGCATCGAACTGGGGGAAATCGAAGCACGGCTGCATGAGCAGCCCGAAGTCCGCGACGCGGCGGTCGGGGTGCAGGAGGGCGTCAATGGCAAGCATCTGGTGGGCTATCTGGTTGCTGCCGACTCGACGCTCAGCCCGAGCGAACGCCTGGATCGGATCAAACAGCGCCTGCGCAGCGAGCTGCCCGAATACATGGTGCCGCTGCACTGGCTGTGGCTCGACCGCTTGCCCCTCAATGCCAACGGCAAGCTCGATCGCAAGGGGCTGCCGGCGTTGGAAATCGGCCAGTTGCACGGCCACGACTACCAGGCGCCCGCCAATGCGCTGGAGCAGACCCTGGCGGATATCTGGGCCGAAGTGTTGAAGGTCGAGCGGGTGGGGGCGCGGGACAATTTCCTTGAGCTGGGCGGGCACTCCTTGCTGGCGACACAAATTGCCTCCCGCGTGCAGAAGGCCTTGCAACGCAACGTGCCGCTCAGGGCGATGTTCGAGTGCAGCACCGTGGAGCAATTGGCTGAATACATTGCGGGGTTGCAAGCCAGCGAAATGACCGAGGAGAAAGTGGACCGGTTGAATGATCTGATGGCGGAGTTGGAGGGATTGTAG	MTDAFELPRTLAHALQRRAALTPDQVALRFLADTPEQGVVLSYRDLDQRARTIAAALQAEARFADRAVLLFPSGPDYVAAFFGCLYAGVIAVPAYPPESSRRHHQERLLSIIADAEPRLLLTTADLRDTLQAIESAPPVLCVDTLDPTRAEQWQAPQLQRDDIAFLQYTSGSTALPKGVQVSHGNLVANELLIRRGFGIDVNPDDVIVSWLPLYHDMGLIGGLLQPIFSGVPCVLMSPAYFLARPLRWLEAISEYGGTISGGPDFAYRLCSERVSESALSRLDLSGWRVAYSGSEPIRLDSLERFAGKFAACGFTADRFMASYGLAEATLFVAGTPRGRGIPSMRMDDAALTQNRAEPGQGCAVMSCGVSQPDHAVLIVEPNTLQPLADSQVGEVWAAGPSIAHGYWRNPEASAKTFVQHDGRTWLRTGDLGFMREGELYITGRLKDMLIVRGHNLYPQDIEQTIEREVEVVRKGRVAAFAVDEAGEEGIGIAAEISRSVQKILPPDALINAIRQAVADACQQAPSVVVLLNPGALPKTSSGKLQRSACRARLADASLDSYARFPSAKAETGDETAPSSELQELIGRLWCEQLHVERVRGDDHFFLLGGNSIAATQVIARLREVLGLELNLRLLFEAPTLDAFATAVANLQQDGGQAQGAIKALARDEALPQSLAQNRLWLTWQLDPASRAYNIPGALRLRGELDEQALRASLQQLTERHESLRTRFLERDGVALQRIDPAGEFNLQVIDLSDVATDQREAQAQRIREDEAATQFDLEKGPLLRVALLRLAEDDHLLLVTMHHIIADGWSMNVLIEEFSRLYAAASQGQIAALAPLPLQYADYGSWQRQWLAQGEADRQLAYWKQQLGDEHPTLALGTDHPRSAQLRRSASRHSLRVDKSLSDALRQIAQAHDATVFMLLLAAFQALLQRYTGQSDIRVGVPNANRPRLETQGLIGFFINTQVLRAQTDSRQPFAALLAQAREATLAAQAHQDLPFEQLLEAFPQARDQGLFQVMFNHQQRDLGALRRLPGLLADELPWHSREAKFDLQLHSEEDRNGRLTLSFDYADELFEAATIARLAEHFCSLLRAVCADPQQALGDLPLLSADELAQQQRWAAAPCAPATQWLPELLNDQARLTPQRRALQWDGGSLDYAELHAQANRLAHYLRDKGVGPDVCVAIAAERSPQLLVGVLAIIKAGGAYVPLDVDYPSERLAYMLHDSGVDLLLTQTALLERLPACEGVSVIAMDALHLEQWPSNPPRLHLHGDHLAYVIYTSGSTGQPKGVGNTHAALAERLQWMQAAYELDETDVLMQKAPISFDVSVWECFWPLIAGSRLVLAGPGEHRDPHRIAQLVEQFGVTTLHFVPPLLSLFIDEPLSARCTGLRRIFSGGEALPAELRNRVLAQLPAAQLHNRYGPTETAINVTHWHCTAEDGERSPIGRPLTNVLCRILDSELNPVPAGVPGELCIGGLGLARGYLGRPGLTAERFVADPQGLAGARLYRTGDRARWGADGVIEYLGRLDQQVKLRGFRVEPQEIEARLLAQDGVAQAAVLVRDTAAGPQLIGYYTAAVLDEDDIVQAARLKNALASELPDYMVPAQLLRLDAMPLSPSGKLDRRALPEPQWQVREHVEPASALEQQIAAIWRDVLGLARVGLRDDFFALGGHSLLATQIISRTRQACDVELPLRALFEASELGAFAEQVRLIQASGRTNRQPPIEKVDRSQPVPLSYSQQRMWFLWQMEPHSPAYNVGGMARLRGVLDVGRFEAALQALILRHETLRTTFPSVDGVPRQHVHDETGLRMDWKDFSMLDADIRQQRVQQLADSEAHEPFDLETGPLLRACLVKTAEHEHYLVLTLHHIVTEGWAMDIFARELSALYEAFIDDRESPLEPLPVQYLDYSAWQRQWLESGERQRQLDYWTAQLGREHPLLELPGDRPRPPVQSHRGELFRFDLSDDLAARVRAFNAEHGLTLFMTVTAALAVLLYRYSGQTDLRIGAPVANRIRPESEGLIGAFLNTQVLRCQLDGQMSVGELLEQVRHTVIEGQSHQDLPFDHLVEALQPPRSAAYNPLFQVMCNVQRWEFQQSRTLAGMSVDYLVNDARATKFDLNLEVTDLDRRLGCCLTYSTDLFDEPRIARMAGHWRNLLEALLVDPARRLSELSLLEAGEQRQLLESLGEEPGEHRLDRCIHSLFEEQARVRPDAPALTFAEQTLTYGELERRANRLAWMLRERGVGPQVRVGLALERSLEMVVGLLAILKAGGAYVPLDPEYPLDRLLYMIEDSGVGLLLSDRAMFQALGPLPEGVQRWCLEDDSAAVADYPDQSPGLINLPQHQAYLIYTSGSTGKPKGVVVSHGEIAMHCQAVIQRFGMRPEDCELHFYSINFDAATERLLVPLLSGAHVVLRAQGQWDAEEICGLIRQHRINILGFTPSYGSQLSQWLATQGQTLPVRMCITGGEALTGEHLQRIRAAFSPDLFFNAYGPTETVVMPLASLAPERLEEGAGSVPIGSVIGARVAYILDADLALVPQGATGELYVGGAGLAQGYHQRPGMTAERFVADPFAANGGRLYRTGDLVRQRADGQVEYLGRIDHQVKIRGFRIELGEIENRLLEHDAVREAVVLALDMPGGKQLAGYLATDIAAQDAAGQASLREALKNHLRAQLPDYMVPAHLILLASMPLTANGKLDRRALPMPDPELNRQQYVAPSNALEQALAAIWCDVLNLKQVGLNDNFFELGGDSILSIQVVSRARQQGLHFTPRDLFQHQTVQALAAVATRSEQVSAEQGLLSGESGLTPIQHWFLANEIPNREHWNQALLLEPTTPLEADGLEQALRAVFEQHDALRLGFGNSAGQWRAEHQPVFEGALLETVSVGSPHACETVFAQAQRGFELATGPLLRAVLAQLPDGRQRLLIAIHHLVVDGVSWRVLMDDLQTAYRQCVAGQTLQMPAKTSPLRDWAARLRAYAGSESLREEMSWWQGQLSGPQVTLPCARPDGGRQERHADIVSLRLDAERTRQLLQQAPSAYRTQVNDLLLTALARVLCRWSNHDSALVQLEGHGREALFDDIDLTRTVGWFTSVYPLRLSPSADDIGTSIKAIKEQLRAVPHKGLGYGVLRYLTDSGTREAMAGLPQAMVTFNYLGQLDHALGQDALFRPLDEPLGAIHDPDAPLPNELSLDCQVSGGELALRWTFSAERHDRQSIAVLANAYLDELQHLIEHCLTDEAGGLTPSDFPLAKLTQAQLDNLPVPAAEIEDVYPLTPMQEGMLLHTLLEPGTGLYYMQDRYRINSELDPQRFAQAWQAVIARHEALRASFCWNVGEDMLQVIHKPGRTPVQYLDWTQVPDDAQEPKLQALLKSEREAGFDLLNEAPFHLRLIRVGAARYWFMMSNHHILIDAWCRSLLMDDFFEIYTALGEQREPHLAVPPRYRDYIGWLQHQSLAEARQWWQKNLQGFERTTPIPADRPFLREHAGDSGGMVVGDCYTRLDVRDGARLRELAQAHQLTVNTFAQAAWALVLRRVSGDRDVLFGVTVAGRPVELPHMQRTVGLFINSVALRVQIPSDDQRCSVRQWLNGLLDSNMQLREYEYLPLVSIQEVSELPKGQPLFDSLFVFENAPVEVSVLDRAQSLNATSDSGRTHTNFPLTAVCYPGDDLGLHLSYDQRYFNESTVQGLLGEFKRLLLALIEGFHGDMAELALIGSEEKTFLIEGCNQSERAYPLEQSYVELFEARVAAHPQRIAASCQDDSWTYAALNERSNRLGHGLIEAGVGLDQPVALLAERGLDLLGMIIGSFKAGGGYLPLDPGLPSQRLSRIIELSRTPLLVCTRACREQALALLEEFACAGRPKLLVWEDVQGSDTAVDNPGVYSGPDNLAYVIYTSGSTGLPKGVMVQQRGMLNNQLSKVPYLALDETDVIAQTASQSFDISVWQFLAAPLFGARVDIVPNAIAHDPQGLLDHVGRQGITVLESVPSLIQGMLAQEHTGLDGLRWMLPTGEAMPPELAHQWLVRYPDIALVNAYGPAECSDDVAFFRVDMASTRGTYLPIGTPTDNNRLYVLDGALELVPLGAVGELCVAGTGVGRGYVGDPLRTAPVFVPNPFGAPGERLYRTGDLARRRSDGVLEYVGRIDHQVKIRGYRIELGEIEARLHEQPEVRDAAVGVQEGVNGKHLVGYLVAADSTLSPSERLDRIKQRLRSELPEYMVPLHWLWLDRLPLNANGKLDRKGLPALEIGQLHGHDYQAPANALEQTLADIWAEVLKVERVGARDNFLELGGHSLLATQIASRVQKALQRNVPLRAMFECSTVEQLAEYIAGLQASEMTEEKVDRLNDLMAELEGL				NA	NA	NA	NA	NA
D1-36_03379	549			hypothetical protein	ATGACGGAACAAGTATCCACAAGCAGGTGCGACTCACCGCTACTCCAGGCATTCGTCGATAACCGAACCATCCTGGTCAAGATCGCAGCGCGTATCACGGGCTGCCGGTCCCGGGCCGAAGATGTGGTCCAGGATGCGTTTTTCCGGTTGCAGTCGGCGCCCCAGATCACCTCGTCCTTCAAGGCCCAGCTCAGTTATCTGTTCCAGATCGTGCGCAACCTGGCCATCGATCATTACCGCAAGCAAGCGCTGGAACAGAAATACTCGGGGCCGGAAGAGGAAGGGCTGAACGTGGTGATCCAGGGTGCTTCGCCGGAAACGTCTCACATCAACTTCTCCACGCTCGAGCACATTGCCGAGGCCCTGACCGAGTTGCCGAGCCGCACCCGCTATGCCTTCGAGATGTATCGCCTGCACGGCGTGCCGCAGAAAGACATCGCCAAGGAGCTGGGGGTCTCGCCGACGTTGGTGAACTTCATGATCCGCGATGCCCTGGTGCATTGCCGCAAGGTGTCCGGGGTGCGTGGAGATACCTTCGCTCGGCGGTGA	MTEQVSTSRCDSPLLQAFVDNRTILVKIAARITGCRSRAEDVVQDAFFRLQSAPQITSSFKAQLSYLFQIVRNLAIDHYRKQALEQKYSGPEEEGLNVVIQGASPETSHINFSTLEHIAEALTELPSRTRYAFEMYRLHGVPQKDIAKELGVSPTLVNFMIRDALVHCRKVSGVRGDTFARR	PGPT0031080_1	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-AMPHIBACTIN_METABOLISM,PGPT0031080-pvdS_like-NA	NA	NA
D1-36_03380	1014			hypothetical protein	ATGCCTGACCTCAATCCTGCAGCGACGCTGCCCTTGCCCGGCGGTCGCTGCCTGGGCGCCGATGAAACCGAACGTCACCTGAGCCTGATGCTCGAAGGCGCGCCGCTGATCCGGCTGCGCCTGGAACGGGGCGCGCCCTTGCACGTGCATTTGCAGGAAACCAACGGGCGCCCGGTGGGGCCGGCGCTTTGGGCGGCCTGCTATTGGCTGTTTACCCGGGATCCGGGCTGCCAGTGCCTGGTCTGGCATCTTGACGAGCGTCCTGGTGAAGCGTTGCTCAGCGGCCTGCTGGTGGGCACCGCGCAACCCAACGAATACGCATGCGAACGTACGCTGTTCTGGCAACTGCCGCAGCCCTGGCTGGGGGAGTCGTTCAGTGGCAGTTATCCGCAACAGATGATCATCACCGATGGCAAGCGTCATCCTCGCCGGCCCATCAAGCCTCGGGGCGAGGTGTATCGGCGTTTCGACGCGCGGCTGGGCGCCTGGGTGTCCTTGCGAACCCTTGAAATCGAGCAGGACCTGACGCGTTTCAATCGTTGGCAGAACAGCCCTCGGGTCGCCAGCTTCTGGCAGGAGGAGGGTAGCCTGGAGCAGCACCGGGAGTACCTGGGCAACTTGCAGCACGACCCTCGGGTCTTGACGCTGATCGGCTGTTTCAGCGACGAGCCATTCGCCTATTTCGAGGCCTACTGGGCCAAGGAGGATCGAATCGCGCCGTTCTACCAGGCCAACGATTATGACCGTGGCATTCACATGTTGGTGGGCGAGGAACAACACCGTGGCCCGCATAAGGTCGCCAGCTGGCTGTCGGCATTGGTGCACTATCTGTTTCTGGACGATCCGCGCACCCAGCGCGTGGTGGCCGAGCCCCGGGCCGACAACGCCCGCATGATCGGGCATCTGCACAACCAGTGTTTCCACTGCGAAAAGGAATTCGACTTTCCGCACAAGCGAGCGGCGCTGATGATCCTGGGGCGCGAGCGGTTTTTTGACCGGTGTTCGTTGATGTAA	MPDLNPAATLPLPGGRCLGADETERHLSLMLEGAPLIRLRLERGAPLHVHLQETNGRPVGPALWAACYWLFTRDPGCQCLVWHLDERPGEALLSGLLVGTAQPNEYACERTLFWQLPQPWLGESFSGSYPQQMIITDGKRHPRRPIKPRGEVYRRFDARLGAWVSLRTLEIEQDLTRFNRWQNSPRVASFWQEEGSLEQHREYLGNLQHDPRVLTLIGCFSDEPFAYFEAYWAKEDRIAPFYQANDYDRGIHMLVGEEQHRGPHKVASWLSALVHYLFLDDPRTQRVVAEPRADNARMIGHLHNQCFHCEKEFDFPHKRAALMILGRERFFDRCSLM	PGPT0031100_1	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-AMPHIBACTIN_METABOLISM,PGPT0031100-iucB_like-NA	NA	NA
D1-36_03381	795			hypothetical protein	TTGACGTTTTCGCCGATGGGGGTGACCTCGCGCGTTCTGGCTGCTCTGGCCTTGTTATGGATGTTGCCCGTCGAGGCGGCGCAGCTGGTCCGGATCGGTGCGGCACATTTTCCGCCCTATACCGTTCGACCCGAAAAAGGTGCGGACACCGGCCTGCTACCGGAACTGGTCGAGGCGTTGAATCGCGCCCAGGCCGATTACCAGTTTGTGCTCGTCCCTACCTCGATCCCGCGGCGCTTCAATGATTTCAAGCAAGGCCGGATCGACATGGCCATCTTCGAAAACCCTGACTGGGGTTGGCAGGATGTGCCGCATACCACGGTGGACATGGGCCTGGAGGATGCGGAGATCTTCGTGACCCAGCGTTTGCCTGACCGCCAGCAGAGCTATTTCGCGGACCTGCGGGCCAAGCGGCTGGCTCTGTTCAGCGGTTATCACTACGCTTTTGCCGAGTTCAATGCCGATCCCAAGTTCCTGATCGGCCAGTTCAACGCCACGCTGACGTATTCCCATGACAGCAATCTGCAAATGGTCTTGCGTGGGCGCGCGGACGTTGCGCTGGTGACCCGTTCGTACCTCAGCGACTATCTGCTGCGCAATCCTCAAGTCGCTCCGCAACTGCTCGTGTCCGAGCGTATCGACCAGATTTATCACCATTTCGCGCTGCTGCGACCCCAGGCGCCGATCTCCGGGGAGGCGTTTGGGCAATTGCTGGGCAAGTTGAGAGACAGCGGGCAGCTGTTGGAGATTTTCATGCCCTACCAGATCGAGCTCGTGTCGACCCCTCGCCACTGA	MTFSPMGVTSRVLAALALLWMLPVEAAQLVRIGAAHFPPYTVRPEKGADTGLLPELVEALNRAQADYQFVLVPTSIPRRFNDFKQGRIDMAIFENPDWGWQDVPHTTVDMGLEDAEIFVTQRLPDRQQSYFADLRAKRLALFSGYHYAFAEFNADPKFLIGQFNATLTYSHDSNLQMVLRGRADVALVTRSYLSDYLLRNPQVAPQLLVSERIDQIYHHFALLRPQAPISGEAFGQLLGKLRDSGQLLEIFMPYQIELVSTPRH	PGPT0020800_11344	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
D1-36_03382	660	kstR2_2		HTH-type transcriptional repressor KstR2	GTGAACGAGCAAAAAGCCTTGGACGTGATGCGTGAGCTGGTCGACGCCGGGCAACTGACCGATCCGGACAGCGCTCGCGGCAAACTGCTCCAGACCGCCGCCCACCTGTTCCGCAACAAAGGCTTCGAGCGCACCACGGTGCGGGATCTGGCCAGCGCCGTGGGCATTCAGTCGGGCAGTATTTTTCATCATTTCAAAAGCAAGGACGAAATTCTGTGGGCGGTGATGGAAGAGACCGTCCGCTACAACACCGCGATGATGCGGGCAGCCCTGGCAGAGGGCGGCAGCATTCGCGAGCGGGTGCTGGCGTTGATCCGCTGTGAATTGCAATCGATCACGGGGGAAAACGGCGAGGCGATGGCGGTGCTGGTCTACGAATGGCGCTCTTTGTCCGAGGAAGGGCAGCGGCAAGTGCTGGCCTTGCGTGATATCTACGAACGTGTGTGGCTTGAAGTCCTGGGAGAGGCCAAGGAGGCCGGGTATATTCGCGGGGACGTATTCGTTACCCGACGTTTCCTGACAGGTGCATTGTCCTGGACCTCCACCTGGTTTCGCGCCGGAGGTAGCCTGAGCCTTGATCAATTGGCTGACCAGGCGCTGATTCTGGTATTGCAAGAAAACGATAAACCAGCGGCTGGCCAAGCGCCTGAAACCGCCTAG	MNEQKALDVMRELVDAGQLTDPDSARGKLLQTAAHLFRNKGFERTTVRDLASAVGIQSGSIFHHFKSKDEILWAVMEETVRYNTAMMRAALAEGGSIRERVLALIRCELQSITGENGEAMAVLVYEWRSLSEEGQRQVLALRDIYERVWLEVLGEAKEAGYIRGDVFVTRRFLTGALSWTSTWFRAGGSLSLDQLADQALILVLQENDKPAAGQAPETA				NA	NA	NA	NA	NA
D1-36_03383	543	dinG_3		3'-5' exonuclease DinG	ATGCCTCACTGGCTGGTGATTGATCTGGAGGCCACCACCGATGAAGGTGGCTGGCCGGTAACCGAAATGGAAATTATCGAAATCGGCGCGACCCTGGTGAATCGAGACGGCCGGGAAATCGATCATTTCCAGCGGTTCGTACGGCCGCTGAGGCGACCGCTGCTCACCCCTTTCTGTCGCTCGCTGACCCACATCAGCCAGGCCAACATCGACAGTGCCGGGCCTCTGACCGAGGTCTGGCCGGCGTTCGAACATTGGCTGGCGCCCTACCACCCCAACCTGGAAGGCTGGGTCAGTTGGGGCGACTACGATCGCAAGCAGCTGCTTCAGGAATGGCAGCAACAGCGATTGCACAGCCTCCTCGGCCAAGTGCCGCACATGAACCTCAAGCAACGTTTTGCCAAGGCCCGCCGGTTGGAACGACCGTTGGGGCTCAATAGCGCGCTGCAACTGGCCGGGCTGCAATTTTGCGGACAACAGCACCGCGCGCTCGAGGACGCCCGCAATACAGCGCGACTATTGCCTCTGGTGCTGACGGGCTGA	MPHWLVIDLEATTDEGGWPVTEMEIIEIGATLVNRDGREIDHFQRFVRPLRRPLLTPFCRSLTHISQANIDSAGPLTEVWPAFEHWLAPYHPNLEGWVSWGDYDRKQLLQEWQQQRLHSLLGQVPHMNLKQRFAKARRLERPLGLNSALQLAGLQFCGQQHRALEDARNTARLLPLVLTG				NA	NA	NA	NA	NA
D1-36_03384	285	ppnP	COG3123	Pyrimidine/purine nucleoside phosphorylase	ATGTTCAAAGTCAACGAGTACTTCGACGGCACCGTCAAGTCGATCGCGTTCGGCACTGCCGAAGGCCCCGCGACCATCGGCGTCATGGCACCGGGCGAATACGAATTCGGCACCGCCCAGCGGGAAATCATGCACGTCGTTTCCGGCGCCCTGACCGTGAAACTGCCTGACAGCACCGACTGGGAAACCTTCGCGGCCGGCAGCCAGTTCAACGTCCCGGCCAACAGCAAGTTCCAGCTCAAGGTCGCCGTCGACACGGCTTACCTGTGCGAATATCGCGGCTGA	MFKVNEYFDGTVKSIAFGTAEGPATIGVMAPGEYEFGTAQREIMHVVSGALTVKLPDSTDWETFAAGSQFNVPANSKFQLKVAVDTAYLCEYRG	PGPT0021300_682	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021300-ppnP|yaiE-K09913	NA	NA
D1-36_03385	810	ycbX	COG0633	putative protein YcbX	ATGTTGCGGCTGAGTGCGCTTTACCGTTATCCGTTGAAGTCCGGCAAGGGGCAGCAGGTCCAAGGGATTGGCCTGGACAAGCTCGGGCTCGACGGTGATCGTCGCTGGATGCTGGTGGATGAGGCCAGCGGACGGTTCCTGACCCAGCGAGCCGTGGCGAAAATGAGCCAGCTTTCGGCGCTGTGGAACGAGGCGGGTGGCCTTACGCTCAGTGCGCCGGGCCATGGCGTCATCGAAGTGCCGTTGCCGCCTGCCCACGAAGAACAGCGGCGCGGCGTGATCATCTGGCGCGACACGTTGCGCGTGCCGGATGCGGGCGACGAGGCGGCTGCCTGGGTCAGCGCGTTCATCGGCAATCCTACCCGGCTCGTGCATGTGCCAGTGGAGTTGGCCCGCACCACAGCCGCCGGGTATGGCAAGGACGATGACAAGGTGGCCTTCGCCGACGGTTTTCCCTTGCTGTTGATCGGCCAGGCCTCATTGCAGGACCTGTCTGGCAGGGTAGGTCGCCCGCTGGAAATGCTGCGTTTCCGTCCGAACCTGGTGGTCGAGGGCAGCGAGGCGTTCGCCGAAGATGGTTGGAAGCGTATCCGTATCGGCGATATTGAGTTGCGCGTGGTCAAGCCGTGCTCGCGCTGCATCATGACCACGATCGATCCGCAGACCGGTGAGCGCGATCCGCAGCGCGAGCCTTTCGCGACGTTGCTGCAGTACCGTTCGACCCCGGACGGTGCGATGTTCGGGCAGAACCTGGTCAATGACGGTAACGGCAGCCTGGAAGTGGGCATGCCGGTCGAAGTGCTGGAATAA	MLRLSALYRYPLKSGKGQQVQGIGLDKLGLDGDRRWMLVDEASGRFLTQRAVAKMSQLSALWNEAGGLTLSAPGHGVIEVPLPPAHEEQRRGVIIWRDTLRVPDAGDEAAAWVSAFIGNPTRLVHVPVELARTTAAGYGKDDDKVAFADGFPLLLIGQASLQDLSGRVGRPLEMLRFRPNLVVEGSEAFAEDGWKRIRIGDIELRVVKPCSRCIMTTIDPQTGERDPQREPFATLLQYRSTPDGAMFGQNLVNDGNGSLEVGMPVEVLE				NA	NA	NA	NA	NA
D1-36_03386	924	cheV_3	COG0784	Chemotaxis protein CheV	ATGGCCGGCATTCTCGACACAGTAGATCAGCGAACCCAACTGGTGGGTGAGAATCGCCTGGAAATTCTCATGTTTCGCCTGGCAGGGCGGCAATTGTTTGCCATTAACGTGTTCAAGGTCCAGGAAGTGTTGCAACTGCCGAAGCTGACCTTGATGCCCCAGCGCCATCCTTTCGTCTGCGGCGTGGTCAACCTGCGGGGCCAGACGTTGCCAGTCATTGATCTGTCCCAGGCCATCGGCATGCGTCCGCTCGTGCCCGGGCCGAACAGCACCATCATCGTCACCGAGTACAACCGCTCGGTCCAGGCGTTCCTGGTGGGGGGCGTGGACCGCATCGTCAACATGAACTGGGAAGCCATCCTGCCACCGCCGACCAGCGCCGGCCGCGAGCATTACCTGACGGCCATCAGCAAGGTGGACGATCAGTTGGTGGAAATCATCGACGTGGAGAAGGTCCTGGCGGAGATCGTCCCCTACAACGCCAAGGTTTCCCGAGACAAACTCGAAGACCCGGTGCTGGAGCGCGCCCGTGGTCGCGAAGTCTTGCTGGTGGACGATTCCAACGTAGCGCTCTCCCAGTTGCGCGATACCCTGGGCCAGTTGGGCGTGAAGATGCACATCGCCAGCGACGGCTTGAAGGCGTTGAACATGCTCAAGGCCTGGGCTGATTCCGGCGAGGTGATGACTGACAAGTTGCTGATGATCTTCACCGACGCGGAAATGCCAGAGATGGACGGCTATCGCCTGACCACCGAAATCCGTAACGACCCGCGGCTGCGTGGGCTCTATGTGGTGCTGCACACCTCGCTGTCCGGTAGCTTCAACGACTCGATGGTCAAGAAGGTCGGCTGTGACAATTTCCTCTCCAAATTCCAGCCGGACAAGCTCGTTGATGTAGTACGCCAACGGTTGATGCTCGACTGA	MAGILDTVDQRTQLVGENRLEILMFRLAGRQLFAINVFKVQEVLQLPKLTLMPQRHPFVCGVVNLRGQTLPVIDLSQAIGMRPLVPGPNSTIIVTEYNRSVQAFLVGGVDRIVNMNWEAILPPPTSAGREHYLTAISKVDDQLVEIIDVEKVLAEIVPYNAKVSRDKLEDPVLERARGREVLLVDDSNVALSQLRDTLGQLGVKMHIASDGLKALNMLKAWADSGEVMTDKLLMIFTDAEMPEMDGYRLTTEIRNDPRLRGLYVVLHTSLSGSFNDSMVKKVGCDNFLSKFQPDKLVDVVRQRLMLD	PGPT0015675_1387	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015675-cheV-K03415	NA	NA
D1-36_03387	468			hypothetical protein	ATGCCGAACGATCGCAAGAATTGGAGCCAGCGCCTTCCTGAGTTCCTGGTCGAAGCCGAGACCCTCTTGGCCAAGTCAGAGGAATGCCTGAGCCACCTGCAATTGATCAGCAACGATAAAGACGCCATTGATTGCATGCTCAGCACGCTGCTGAAGCTGGCAAACAAGGCCGATGCGCTGGCGCTGGAGGCCGTTTCGGAGTTTTCACTGCATATCCACGGCTTGCTCAGCCATGCGCAGGACATGGAACTGCATGAGCAGGCGCTGGTCGCGCTCAAGGATTGTTTCACGCTCATGGCCTGGCAGCTGGAGCTGGTCGACCACACCACCGGCAAACTGGGCCTGGACAACAGCGAACAGACGTCGCTGATCGAAGCCTTCGCCTTCCAGGTGGGTCAGAGCCCTTGTCAGGCGTTACAACCACCGCGCCCGCTGGCATTGGTGCCCTACGCCCAGAAACAAGCATGA	MPNDRKNWSQRLPEFLVEAETLLAKSEECLSHLQLISNDKDAIDCMLSTLLKLANKADALALEAVSEFSLHIHGLLSHAQDMELHEQALVALKDCFTLMAWQLELVDHTTGKLGLDNSEQTSLIEAFAFQVGQSPCQALQPPRPLALVPYAQKQA				NA	NA	NA	NA	NA
D1-36_03388	894			hypothetical protein	ATGTACGCCAGCTTCAAGTCATTCATTTCCTGGCCACCTTCCCGAGAAAACGCCCGCCGGTTCACGCTGTTGCTGTGCATCTGCTCGACCCTCGGTTGTCTGTTGGCTTACCTGTCGGCCCTCACGGTGCCGTTGAGCTTGCTGGTGCTGAATGTCGCAGCCCTTGCCTGTGTCTGGATCCAGTATCGGTTGTCACGAAAATCCATCAAATTCCAGCCGCAGGAACTCGCTGACCGGCTGCTTGAGGTCCAGGAAAACGAGCGCCATCGCCTCAGTCGCGAACTGCACGACGACATTGGCCAATTGCTGACAGCGGCAAAACTGCAGAGCGAATGGCTCAAGCGTCGCATGCCGCAAGAGCTGCAAGGCCAATGCTCCGTGCTCAGCGAGACGCTGGAAGAAACGTTGAACAAGGTGCGCGACGTGTCGGCGATCCTCAATCCAAGGCAACTGACCAGCCTGGGGCTCGAAGCCAGCCTGCGCGCGCATCTGCTCAAGACCCTGGCTAATACCCCCGTAAACTGGAGCCTGGATTGCCAGCAACGCATGACGGGTATCCCGGAAGAAATGACAGTGGCGGCTTTTCGGATCACACAGGAAGCGGTCACCAACATCCTGCGCCACGCCCAGGCAAAAAACCTGCTGGTACGCCTGCAACGACTGCCCGAAGGGCTGACGCTGCTCATCAGCGACGACGGCCGGGGCTTTGTCCCCGCCATCCATCCCGCCCGCGAAGGGCAACGCGGCATGGCCGGCATGTCGGAACGGGTCGAACAACTGGGCGGCGCCCTGAAGGTAACCAGCGAGGCCGGCAAAGGCACGCATATCGAAGCTCGCTTTCCCTGGGCGCCTCGCACCCTGGAACGGGCCAGCAAGAATAAGGTTCTCCATTGA	MYASFKSFISWPPSRENARRFTLLLCICSTLGCLLAYLSALTVPLSLLVLNVAALACVWIQYRLSRKSIKFQPQELADRLLEVQENERHRLSRELHDDIGQLLTAAKLQSEWLKRRMPQELQGQCSVLSETLEETLNKVRDVSAILNPRQLTSLGLEASLRAHLLKTLANTPVNWSLDCQQRMTGIPEEMTVAAFRITQEAVTNILRHAQAKNLLVRLQRLPEGLTLLISDDGRGFVPAIHPAREGQRGMAGMSERVEQLGGALKVTSEAGKGTHIEARFPWAPRTLERASKNKVLH	PGPT0017175_1081	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_HEXOSE_PHOSPHATE_UPTAKE_SENSING,PGPT0017175-uhpB-K07675	NA	NA
D1-36_03389	609	degU_2	COG2197	Transcriptional regulatory protein DegU	GTGCGCGCCCTGGTCCTCGACCTGCCTGGCTACGCCGTGGTCGGCGAAGCCAATGACGGCGCCCAACTGTTGGAGCTGGTAGAACGACTGAACCCCGATATCGTGCTGCTGGATATTTCCATGAAAGACACCAGCGGCCTGCAAGCCTTGCAACAGCTCAAGCAGGTCCGCCCCCAGAGCAAGGTGTTGATCCTGTCAATGCACACAGACCCAGAGGTGATCATGCAGGCGCTGGAGTCCGGAGCCCATGGCTATCTGCTCAAGGACGCCACTCCCACCGAGCTGGAGCACGCCCTGGAAGCGCTGCGCAACAACGAACGCTACCTGAGCCCGGCCATCGCCCATACCGTGATCAACCAGGCACTGACCCGGGTGCAGAAACAGCCGCCCCATCCTGCCCCGACCCATAACCTGACGGCGCGTCAGCTGGAGATCCTGCGGTTGATCGTGCGTGGCAAGTCCACCCGGGAAATCGCCAACGGCTTGAGCCTGAGCATCAAGACCGTGGAAACCCACCGCGCCCAGATCATGAAACGCCTGCAAATCCATGACGTGGCGGGCCTGGTGCTGTTTGCGGTGCGCGAGCAGATCATCAGCCTGGACGATTGA	MRALVLDLPGYAVVGEANDGAQLLELVERLNPDIVLLDISMKDTSGLQALQQLKQVRPQSKVLILSMHTDPEVIMQALESGAHGYLLKDATPTELEHALEALRNNERYLSPAIAHTVINQALTRVQKQPPHPAPTHNLTARQLEILRLIVRGKSTREIANGLSLSIKTVETHRAQIMKRLQIHDVAGLVLFAVREQIISLDD	PGPT0014870_111	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
D1-36_03390	918	yegS	COG1597	Lipid kinase YegS	ATGAGCAAAGGCAAGGCGCTATTGATCCTGCATGGCAAGCAAGCGCTCAACGAAGAGGTTCGCGCCGCAGTGATGCTCAAGCGCAAACAGGGTTGGGACCTCGCGGTCCGGTTGACTTGGGAAGCTGGTGATGCCCGGCGATGTGTGGAGGAAGCACTGGCGGCCGGTTATACCCAGTTGATTGCCGGTGGCGGCGACGGGACCTTGCGCGATATTGCCGAGGCCATTGCCCAGCACTCTGGCGATGCCAGCCTGGTATTGCTGCCGCTGGGCACGGCCAACGATTTTTCCCGGGCCGCCGGTGTCCCGCTGGAGCCGGAGCGGGCCCTGGACTTGCTGGAGGTTGAGCCTCGGGCGGTCGATCTGGGTGAGGTCGGCGGGCGGATTTTCCTTAACATGGCCACGGGCGGCTTCGGTAGCCAGGTAACAGCGAACACCTCGGAAGACTTGAAGAAAATTCTCGGCGGGGCCGCCTATCTGTTCACCGGCCTTTCAAGGTTCGGTGAGCTGAGTGCAGCCTATGGCGAACTGCAAGGGCCTGGTTTCCAATGGCGCGGCGATCTGCTGGCGCTGGGGATAGGCAATGGCCGGCAGGCCGGCGGGGGGCACATGTTGTGTCCGGAGGCGTTGGCCGATGACGGGCTGCTTGATATCAGTATCCTGCCGGCGCCGCAGGAGGTGGTGAGCACGCTGAAGGACCTGCTGGCCGGTGGCCTGGGTATCGACAACATGTTCGTGCGGGCACGCTTGCCCTGGGTGGAAATCAAGGTAGCCCAGGGACTGGATATCAATCTGGATGGCGAACCACTACAGGTCGATGATCTGCGTTTTACCTTGCGTCCCAAGGCACTGCGGGTGCATCTGCCGGTGGACTCGCCGCTATTGGGATCCCCCGGATTGCTCAATCGTCCAGGCTGA	MSKGKALLILHGKQALNEEVRAAVMLKRKQGWDLAVRLTWEAGDARRCVEEALAAGYTQLIAGGGDGTLRDIAEAIAQHSGDASLVLLPLGTANDFSRAAGVPLEPERALDLLEVEPRAVDLGEVGGRIFLNMATGGFGSQVTANTSEDLKKILGGAAYLFTGLSRFGELSAAYGELQGPGFQWRGDLLALGIGNGRQAGGGHMLCPEALADDGLLDISILPAPQEVVSTLKDLLAGGLGIDNMFVRARLPWVEIKVAQGLDINLDGEPLQVDDLRFTLRPKALRVHLPVDSPLLGSPGLLNRPG				NA	NA	NA	NA	NA
D1-36_03391	309			hypothetical protein	ATGCGCAGCCATGAATGCAAGGTGTCGCCCCGCCACTTCGTATCCTTCGGGAGCGAGCGGGCCGACGCCAAAAACGAAGGCAAAAGTTGCAGTAATCCCGCTGGAGGAATTGATTTGGAACCGCGCGTCGTTGAACTGGAAACCCACCTCAAGTACATCCGCAGGGACATGGATGAAATTCGTACCGACGTCAAGGCGGTTCGCCACCGACTTGCCTATCTGGCAGGCGCGGCGGCGGTGGTGGTCGGCCTGCTGGGGTGGGTCGCGAACAGCCGTTTCGATCAACTGGTGATGCTACTGTCGCGATGA	MRSHECKVSPRHFVSFGSERADAKNEGKSCSNPAGGIDLEPRVVELETHLKYIRRDMDEIRTDVKAVRHRLAYLAGAAAVVVGLLGWVANSRFDQLVMLLSR				NA	NA	NA	NA	NA
D1-36_03392	1227	moeA	COG0303	Molybdopterin molybdenumtransferase	GTGAATCCCGTGGGTAAACCGGGCAAGACCGGTGCCTTGATGGCCGTCGAAGTCGCGCTGGAGCGCTTGCTCCAAAGCGCGGCGGCTTCGCCAATCGTCGAGCGTGAGCGGGTTTCACTGGCGCAAGCGCAGGGGCGGATCCTCGCCGAAGATCTGGTGGCGACGCTCGACCTGCCGCCTTGGCCCAACAGTGCCATGGACGGCTACGCGTTACGCCTGGCCGATTGGCGCGGCGAGCCACTGGTGGTCAGCCAGCGGATTTTCGCCGGGCAGGCTCCGGAGCCCCTGGTCGCGGGAACCTGCGCGCGGATCTTCACTGGTGCGCCGATTCCGGTCGGCGCCGATTGCGTCGAGATGCAGGAAAACGTCGAGCTTGAGGATGACCAGCGGGTGCGGTTCATCCAGCCCCTGGCGATCGGGCAGAATATCCGCCCTCAAGGGCAGGAAACGACCGTTGGCGAACGGGTGCTTTGTGCCGGCACCCGCCTGGGCCCGATTGAGCTTGGGCTGGCGGCCTCCCTGGGATGTGCATCGTTGGAAGTCGTGCGCAGGGTGCGCGTTGCGGTCCTGTCCACGGGCGATGAATTGGTGGAGCCTGGCCAGCCCCTTGGGCCGGGCCAGATCTACAACAGCAATCGCGTGTTGCTCTGTGGTTGGCTGCAACGCCTGGGATGCGAGGTTATCGATGCAGGTATCCTGCCCGATGACCTGCCCACTACCCGCAAATGCCTGGCCCAACTGTCGGATGTCGACCTGATCCTGTCGACTGGCGGTGTATCGGTGGGGGAGGCTGACTTCCTGGGCATCGCCCTTCGTGAGGAAGGCGAGCTGACGCTGTGGAAACTTGCCATCAAGCCGGGAAAACCCCTGACATTTGGGCATTTTCGCGACGTGCCGGTCATAGGCCTGCCCGGGAACCCTGCTTCGACGCTGGTGACCTTCGCGTTGTTGGCTCGGCCTTATCTGTTGCGACGCCAGGGCGTTCAGTCAGTGGCGCCCCTCAAGTTCAAGGTGCCGGCCGGTTTCGCCTGGCCGAAGGCTGGCAGCCGGCGCGAATACTTGCGAGGCCGCATCGAAAATGGTCGAGCAATCATCTATCGCAACCAGAGTTCGGGAGTCCTGCGCAGCGCAGCTTGGGCCGACGGACTGGTCGAGGTCCTCGAAGAGCGGACGTTGGTCGAAGGCGATGAAGTGGGCTTCATTCCTTTGAGCGAGGTGCTGGGTTAG	MNPVGKPGKTGALMAVEVALERLLQSAAASPIVERERVSLAQAQGRILAEDLVATLDLPPWPNSAMDGYALRLADWRGEPLVVSQRIFAGQAPEPLVAGTCARIFTGAPIPVGADCVEMQENVELEDDQRVRFIQPLAIGQNIRPQGQETTVGERVLCAGTRLGPIELGLAASLGCASLEVVRRVRVAVLSTGDELVEPGQPLGPGQIYNSNRVLLCGWLQRLGCEVIDAGILPDDLPTTRKCLAQLSDVDLILSTGGVSVGEADFLGIALREEGELTLWKLAIKPGKPLTFGHFRDVPVIGLPGNPASTLVTFALLARPYLLRRQGVQSVAPLKFKVPAGFAWPKAGSRREYLRGRIENGRAIIYRNQSSGVLRSAAWADGLVEVLEERTLVEGDEVGFIPLSEVLG	PGPT0008430_3941	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008430-moeA-K03750	NA	NA
D1-36_03393	540	moaB	COG0521	Molybdenum cofactor biosynthesis protein B	ATGAAACCCAAGGCTGATGTACCTTTCGTACCGCTCAATATCGCGGTGCTGACTGTCAGCGATACCCGTACCCTGGAAACCGACACGTCGGGCCAGGTCTTCGTCGACCGGCTCTCGGAAGCCGGGCACAATCTTGCGGCCCGGGTGCTGCTCAAAGATGATCTGTACAAGATCCGCGCGCAAGTCGCCGCCTGGATTGCCGACGAGGTGGTGCAGGTGGTGCTGATCACCGGGGGGACCGGCTTTACCGGCCGTGACAGTACTCCAGAAGCCGTTGTGTGTCTGTTGGACAAGCAGGTCGACGGTTTCGGTGAGTTGTTCCGGCAGATATCCGTGGCGGACATTGGCACCTCCACCGTTCAATCCCGGGCACTGGCCGGGCTGGCCAACGGGACGCTGGTGTGCTGCTTGCCGGGCTCCACCAATGCGGTGCGCACCGGATGGGACGGCATACTGGCCGAGCAACTGGATGCGCGGCACCGGCCGTGTAACTTCGTAGCCCATTTGAAACAGGCGGCCCCTTGTGAATCCCGTGGGTAA	MKPKADVPFVPLNIAVLTVSDTRTLETDTSGQVFVDRLSEAGHNLAARVLLKDDLYKIRAQVAAWIADEVVQVVLITGGTGFTGRDSTPEAVVCLLDKQVDGFGELFRQISVADIGTSTVQSRALAGLANGTLVCCLPGSTNAVRTGWDGILAEQLDARHRPCNFVAHLKQAAPCESRG	PGPT0008420_664	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008420-moaB-K03638	NA	NA
D1-36_03394	603	mobA	COG0746	Molybdenum cofactor guanylyltransferase	ATGACCTTGAACAATCCTCTGCCGCCCTGCTCCATCCTGCTCCTGGCGGGCGGACGCGGGCAACGGATGGGTGGACAGGATAAAGGGCTGCTGGAGTGGCAAGGCAGCCCATTGATTGCTCATCTGCATCGGCAGACCCGGGCCATGAGCGATGACTTGATCATTTCCTGCAACCGCAACCGGGAGCGTTACGCCGCGTACGCCGATCAGTTGGTGCATGATGACGAGGGTGATTTCCCCGGCCCGCTGGCAGGCATACGGGCGGGCCTGAGGGCGGCACGCCATCCGTATCTGTTGGTGTTGCCATGCGACGTGCCGCGAATCGACACCAGCCTGCTCGAAGGCATGCGGGAAACGGCAAGCCGACACCCGGACAAGCCATTGATGGTTCGTCATGGCGAACATTGGGAGCCGCTGTTGTGCGTCATCCCGCGAGCCTTGGCCAATGACTTCGAACAGGCATGGAAAGAAGGCGAACGCAGCCCCGGCCGGATCATGCGCACGTTGCACGCGGTCCCATTGCAATGCCCGGCCGACGATCCCCGGCTGGCCAATCTCAATACGCCGGAACTCCTAGCCCAGCACAAAGGCGTGTCAGATTGA	MTLNNPLPPCSILLLAGGRGQRMGGQDKGLLEWQGSPLIAHLHRQTRAMSDDLIISCNRNRERYAAYADQLVHDDEGDFPGPLAGIRAGLRAARHPYLLVLPCDVPRIDTSLLEGMRETASRHPDKPLMVRHGEHWEPLLCVIPRALANDFEQAWKEGERSPGRIMRTLHAVPLQCPADDPRLANLNTPELLAQHKGVSD				NA	NA	NA	NA	NA
D1-36_03395	222			hypothetical protein	ATGACTCAACGGACCCTCGCTACTTTCATGCTCGCGCTGGGCCTCGCCACTCTCGCCGGGTGCGCATCGCCAACAGTGATTACCTTGAATGACGGTCGCGAAATCCAGGCCGTCGACACGCCACATTATGATGAAGACAGCGGCTTCTACGAATTCGAACAATTGGACGGCAAGCAGACTCGCGTGAACAAGGATCAGGTTCGTACCGTTAAAGACCTGTGA	MTQRTLATFMLALGLATLAGCASPTVITLNDGREIQAVDTPHYDEDSGFYEFEQLDGKQTRVNKDQVRTVKDL				NA	NA	NA	NA	NA
D1-36_03396	891			hypothetical protein	ATGTCCGGTCCATCGTTTTCCGCAGCTCAGCATCAGGCCAGCACGCTTTACCTGCCGCCCGGCCCCTGGCAGACGGTATTGGATTGCCTGTGCGATCACTTCAGCGCGATCAGCCGCGAGCAGTGGCTCGATCGCATCGCTCGAGGCCGGGTGCTGGACGCCGAGGGCAAGGCAATCCGCGCCGACCTGCCATACCGGGAAGGCTTGCGCGTCCATTACTTTCGGGAAGTACCGGACGAAAAGCCGATCCCGGTGATGGAGTCGATTCTGTATGTCGATGAACATCTGGTCGTGGCGGACAAACCACATTTCCTGCCGGTCACCCCAGCGGGCGAGTACGTTGAGCAGACCTTGTTGCGACGGCTGATTCATCGCCTGGACAATCCCCAACTGGTGCCTTTGCACCGCATCGATCGGCACACCGCCGGGCTGGTGTTGTTTTCAGCCAATCCGGACACCCGCTCGCGTTATCAAGCCTTGTTTCCAACGCGACGGATTGAAAAATTCTACCAAGCCATCGCTCCCGCATTGCCCGGATTGACGTTTCCCCGCATACACAAAAGCCGGATGGTCGATGGCGAACCCTTTTTTCGCATGCAGGAGGGGGCGGGCGAGCCCAACACCGAAACGGCCATGGAAGTGCTTGAAAAAAACGGGGACCTATGGCGCTACGGCCTGTATCCGGTCACCGGGAAAAAACACCAGCTACGGGTCCATATGAACGCCTTGGGCGCGCCTATCTGTAACGATCCGTTCTATCCGGACGTGGTGCGAGACGCCGTGGATGACTTTGCCAATCCGCTCAAGCTGCTGGCTCGAGGTGTGCGTTTCATCGATCCGCTTACGGGGCAGGAACGGGACTTTGAAAGTCGGATTTCGTTGGGGTGGTAG	MSGPSFSAAQHQASTLYLPPGPWQTVLDCLCDHFSAISREQWLDRIARGRVLDAEGKAIRADLPYREGLRVHYFREVPDEKPIPVMESILYVDEHLVVADKPHFLPVTPAGEYVEQTLLRRLIHRLDNPQLVPLHRIDRHTAGLVLFSANPDTRSRYQALFPTRRIEKFYQAIAPALPGLTFPRIHKSRMVDGEPFFRMQEGAGEPNTETAMEVLEKNGDLWRYGLYPVTGKKHQLRVHMNALGAPICNDPFYPDVVRDAVDDFANPLKLLARGVRFIDPLTGQERDFESRISLGW				NA	NA	NA	NA	NA
D1-36_03397	321			hypothetical protein	TTGGTCAATGTCGAACAACTGAAAAACAGCGTGAACCGGATGTCCGTGGACGTTGTGCGCGAGGCGGTCCTGGAATTGCGTCTGGACGGGCTGGTGACCGAAGGCAAGACGCCCTTCAATAAACTTCACTTCAACACATGTTTTGCCGAGATCGAGGCGCTGTTCCAGCGTGCCGGCTACCACAAGCAGCTGGATGTGGTGGGTTATCAGGGGCTGTTGTATGCGCTGTACGATCCGGGGCGCTGGGAGGCGGTCGAGGTGCTGCGCTGGCTGAAGGAGTTCACCGAGGCCGCGACGAGGCCGGCGCCAATCCTTGCATGA	MVNVEQLKNSVNRMSVDVVREAVLELRLDGLVTEGKTPFNKLHFNTCFAEIEALFQRAGYHKQLDVVGYQGLLYALYDPGRWEAVEVLRWLKEFTEAATRPAPILA				NA	NA	NA	NA	NA
D1-36_03398	240			hypothetical protein	ATGCTTCCTGAATGCCAGCTGTTCGGCACCCTGGGTTGCCATCTGTGTGAAGTCGCCGAGAGCGTGCTGATGCCTTTCGTCGAATATGGATTATTGGTGGAGTTGGTGGATATCGCCGAAAGCGAGGCCTTATCCGAAGCCTACGGGCTGCGCATTCCAGTGCTGCGCAGGGTTGATACAGGCGCCGAACTGGACTGGCCCTTCGACGATCCAGACCGGGTTGCTGCATTTTTACGTTGA	MLPECQLFGTLGCHLCEVAESVLMPFVEYGLLVELVDIAESEALSEAYGLRIPVLRRVDTGAELDWPFDDPDRVAAFLR				NA	NA	NA	NA	NA
D1-36_03399	1713	kefC_2	COG0475	Glutathione-regulated potassium-efflux system protein KefC	TTGTACGCCAACCTGCTGATCATCCTTGCCTCGTCCCTGGTGGTCATCGCCCTGTTCAGGCGACTGCGCCTGCCGCCGGTACTCGGTTACCTGTGCGTGGGCCTGGCCGTCGGGCCCACTGCGCTGGACTGGGTCAACGACAGCGAAGAGCTGCCGGACCTGGCTGAGCTTGGGGTGGTTTTCCTGTTGTTTTCCTTGGGGCTGGAATTCTCGTTATCGAAAATGCTCGAGCTGCGTCGGGTGGTGTTTGGACTTGGCAGCCTTCAGGTCCTGGCTTCTGGGTTGCTATTGGGCGTGCTGCTGGCAAGCAGTGGTGTGCCGATGACGGCGGCCGTGTTGCTTGGTGCCGGGCTGGCCTTGTCGTCTACCGCCATTGTCAGCAAGGAACTGACCAGCCTGGGGGAAATCTTCACCAGCCACGGCCAGAACGCCATAGGCGTGTTGCTGTTCCAGGACGTCGTCGCCGTGTTGCTCCTGACCCTGGTGCCGGTATTTGCCGGCAGCAGCGAACACCCGTGGTATTGGGCGTTGCCGTTGACTCTGGGCAAGACCCTGGTGCTGTTTGGCGGCCTGTTGTTGGCCAGCCGACTATTGCTGCCACGGCTGTTCCATGAGGTGGCAGCCTCCCGGTCCGCCGAACTGTTCGTGCTGCTGGCCCTGGTGATCGTGTTGTTGACGGCATGGCTTACGCACCTGCTGGGTCTCTCCCCCGCCCTGGGAGCGTTCCTGGCCGGCATGCTGCTCGGAGAGAGCCACTACCGGCACCAGATCGAGGCCGATATCCGACCGTTCCGCGACATCTTGCTGGGGCTGTTCTTCGTCAGCATTGGCATGCTGATCGACCTGCAATTGTTTGTCGACGATGGCCTGTTGATCCTCGGGCTCACCCTCGCTCTGATGCTCATCAAGGGCAGCGTCGTGGCCGCCCTGGTGAAGTGGCGCGGCAGCGACGGCGAAACCGCCTGGCGCAGCGGCCTCGCCCTGGCCCAGGGCGGTGAATTCTGTTTCGCGCTGATGGCGCTGATGCAACAGAACCGACTCATGCCAGGGGATATCGGCGGCCTGCTATTGGCCGCCACCTTCTGCTCGATGCTGTTGACGCCGCTGTTGCTGCGCGCCGCACCCGGCCTGGCCGCGCGGCTGCACCGAAAACCCAACGAAGAGGCGCAACTGGACCAGATCAGCGCTCTCAATGCCGACTTGTCGAGTCACGTAATCATCTGCGGGTATGGCCGGGTAGGACAATCGATCGGGCGCTTTCTGCGCCGGGAGGGCTTGGCGTTCGTGGCCCTGGATGATGACCCGGTCATCATTCGTGAAGCGTCCGTCGGCGAACGATGCGTGCATTACGGAGACTCACGCAGAGCCGACCTGCTGGCCGCCGTAGGGCTGGGTCGCGCAAGGCTGCTGGTCATTGCAGTCGACAAGACGGACATTGCGATGACCGTGCTGAGGGAGGCCCGGCGGGTCAACCCGCAAGTGCCCATCCTCGTGCGCACCCGGGACGACAGCCAACTGGCCGAGTTGCAGGCAGCCGGAGCCACCGAGGTGGTTCCAGAACTGCTGGAATCGAGCCTGATGCTGGCCTCCCATGCGCTGATCATGCTCGGGCTGCCCGAACAGCGGGTGCGGCACCATGTGGATCAAGTCCGTCACGAGCGCTATGGCTTGCTCCATGGCTTCTATCCCGGCAATCAGGACAAGGAGCCCTAG	MYANLLIILASSLVVIALFRRLRLPPVLGYLCVGLAVGPTALDWVNDSEELPDLAELGVVFLLFSLGLEFSLSKMLELRRVVFGLGSLQVLASGLLLGVLLASSGVPMTAAVLLGAGLALSSTAIVSKELTSLGEIFTSHGQNAIGVLLFQDVVAVLLLTLVPVFAGSSEHPWYWALPLTLGKTLVLFGGLLLASRLLLPRLFHEVAASRSAELFVLLALVIVLLTAWLTHLLGLSPALGAFLAGMLLGESHYRHQIEADIRPFRDILLGLFFVSIGMLIDLQLFVDDGLLILGLTLALMLIKGSVVAALVKWRGSDGETAWRSGLALAQGGEFCFALMALMQQNRLMPGDIGGLLLAATFCSMLLTPLLLRAAPGLAARLHRKPNEEAQLDQISALNADLSSHVIICGYGRVGQSIGRFLRREGLAFVALDDDPVIIREASVGERCVHYGDSRRADLLAAVGLGRARLLVIAVDKTDIAMTVLREARRVNPQVPILVRTRDDSQLAELQAAGATEVVPELLESSLMLASHALIMLGLPEQRVRHHVDQVRHERYGLLHGFYPGNQDKEP	PGPT0014395_2510	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0014395-ybaL|TC_KEF-K03455	NA	NA
D1-36_03400	1209	amtB_1		Ammonia channel	ATGGAAAATCTGCAAAGTGCTGTGGACGGTCTGGTCCATAGCTCCAACACGCTGTTCATCCTGCTCGGCGCGGTCATGGTCCTGGCCATGCATGCCGGGTTCGCGTTTCTGGAAGTAGGAACGGTCCGGCAGAAGAATCAGGTGAACGCGCTGTCGAAAATCCTCAGCGATTTCGCGGTATCGACGCTGGCCTATTTCTTCATTGGTTATTGGATTTCCTACGGCGTGACTTTCCTGCAACCGGCGGCAGTTCTCAGTGCCGACCACGGCTACAGTTTGGTGAAGTTTTTCTTCTTGTTGACGTTCGCCGCCGCGATCCCGGCGATTATCTCTGGCGGGATAGCCGAGCGTGCCCGGTTCGTCCCGCAGTTATGCGCCACGGTGCTGATCGTGGCGTTCGTCTATCCGTTTTTCGAAGGTCTGGTCTGGAATGGCAATTTCGGTTTCCAGGCTTGGCTGCAAGCGCACTTTGGTGCCAGCTTCCATGACTTTGCCGGCTCCGTGGTGGTGCACGCCATGGGCGGCTGGCTGGCACTGGCCGCGGTGCTCCTGCTCGGACCGCGAAACGGGCGTTACCGGGACGGTCGTCTGGTGGCCTTCGCGCCTTCGAGCATTCCGTTCCTGGCGCTGGGGTCGTGGATTCTCATCGTCGGCTGGTTCGGCTTCAACGTGATGAGCGCCCAGACCTTGCCCGGCGTGAGTGGGTTGGTGGCGGTCAACTCGTTGATGGCGATGGTCGGCGGGACCGTGACGGCACTGGTCGTTGGGCGCAACGACCCCGGTTTCCTGCACAACGGCCCGCTGGCCGGATTGGTGGCGGTCTGCGCCGGCTCCGACCTGATGCATCCGATGGGTGCCCTGGTGACCGGCGCAATTGCTGGCGGTCTGTTCGTCTGGTGTTTTACCGCGGCCCAGGGCAAGTGGAAAATCGACGATGTGCTGGGCGTCTGGCCCCTGCATGGGCTGTGCGGCGTCTGGGGCGGTATCGCCTGCGGGATTTTCGGCCAGGACGCCTTGGGTGGCTTGGGCGGGGTAAGCCTCGCCAGCCAGTTCGTCGGCACCGCCCTCGGCGTGTTGATCGCCCTGGTCGGTGGTTTCGCGGTCTACGGTGTGATCAAGGCGGTGCTGGGCTTGCGGCTGACTCAGGAAGAAGAGTACTACGGGGCCGACTTGTCCATTCACAAGATCGGAGCGGTCAGTCAGGACTGA	MENLQSAVDGLVHSSNTLFILLGAVMVLAMHAGFAFLEVGTVRQKNQVNALSKILSDFAVSTLAYFFIGYWISYGVTFLQPAAVLSADHGYSLVKFFFLLTFAAAIPAIISGGIAERARFVPQLCATVLIVAFVYPFFEGLVWNGNFGFQAWLQAHFGASFHDFAGSVVVHAMGGWLALAAVLLLGPRNGRYRDGRLVAFAPSSIPFLALGSWILIVGWFGFNVMSAQTLPGVSGLVAVNSLMAMVGGTVTALVVGRNDPGFLHNGPLAGLVAVCAGSDLMHPMGALVTGAIAGGLFVWCFTAAQGKWKIDDVLGVWPLHGLCGVWGGIACGIFGQDALGGLGGVSLASQFVGTALGVLIALVGGFAVYGVIKAVLGLRLTQEEEYYGADLSIHKIGAVSQD	PGPT0000840_6286	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-AMMONIUM_ASSIMILATION|USAGE	N-AQUISITION-AMMONIUM_TRANSPORT,PGPT0000840-amtB|ybaG|amt-K03320	NA	NA
D1-36_03401	315	yqjD_2	COG4575	putative protein YqjD	ATGGCCAGAACCCAGGCAAAGACTGCTCAAGAAACATTGATGGAAGATTTTCAGACGCTGGTCAAAGACACCGAACGATTGCTGGATCACACCGCCACGCTGGCAGGCGACCAGGCGGACGAACTGCGTGGCCAGATCCACGAAACACTGCTGCGCGCCCGCGAAACCCTTAAGTTGACCGAAGATTCAGTGCGTGAGCGCGGCCAGGCAGCCATGATCGCTACCGAAGAATACGTACAGGCCAATCCCTGGCAATCGGTCGGCATCGCGGCGGGCGTAGGCTTTTTGATCGGATTGTTGGCGACACGGCGCTGA	MARTQAKTAQETLMEDFQTLVKDTERLLDHTATLAGDQADELRGQIHETLLRARETLKLTEDSVRERGQAAMIATEEYVQANPWQSVGIAAGVGFLIGLLATRR				NA	NA	NA	NA	NA
D1-36_03402	390			hypothetical protein	ATGGGCATCGACGAATCCGGATCGCCCGAAACGGGCACTAAACCAACAGCGCGTCGCCTGGGCGCGGCATTCCTTGGATTGCTGCACAGCCACGTCGAGTTGTTCGGTATCGAACTGCAGGAACAAAAGGCTCGCACCGTCAGCCTGTTGTTATTCGCGGGGCTGGCATTGGTTTTCGGCCTGCTGTTACTGGTGGGGCTGTCGGCTCTGGTATTGATCCTGGTGTGGGATACCTATCGGTTAGCGGGCATCATCGGCCTGTGCCTGTTCTACCTGCTGGCGGCGCTGTTCTGCGGGCTTCGGCTCAAGGCAGCGATTTTTGATGAGTCCTCGCCTTTCCACGCCACTCTCGAAGAACTCGCCAACGACCGGGAGCGCCTGTTGCCATGA	MGIDESGSPETGTKPTARRLGAAFLGLLHSHVELFGIELQEQKARTVSLLLFAGLALVFGLLLLVGLSALVLILVWDTYRLAGIIGLCLFYLLAALFCGLRLKAAIFDESSPFHATLEELANDRERLLP				NA	NA	NA	NA	NA
D1-36_03403	336			hypothetical protein	ATGAGTCGCCCAAATGCTCCTCAAGCCCGTACGCGGCAGGAAATGCGCAAGGCACTGGTGCGCCTGCGCATGGAGATGCATCGCCAGGAAATTCGTCAGGAAACGCGACAATTGCTGCACCCGTTGCAACGGGTACGCGGATTCACCCAGAGCTGGCACGAAGGGTTCGGCCTCAAGCACGCATCGCTTTGGGGCGTCGCCGCGGTGAGCCTGCTCGGCTTTCTCGGTGGCAAGCGAACCCGCAGTGGCCGCTCCGGTGGTTTGTCACGCCTGATCCGGCTGGCGACCGCCGTGCTTCCCCTGATCAAACTGGCCAAGAGTGCGCGCAAGCCTTGA	MSRPNAPQARTRQEMRKALVRLRMEMHRQEIRQETRQLLHPLQRVRGFTQSWHEGFGLKHASLWGVAAVSLLGFLGGKRTRSGRSGGLSRLIRLATAVLPLIKLAKSARKP				NA	NA	NA	NA	NA
D1-36_03404	1329	dgt	COG0232	Deoxyguanosinetriphosphate triphosphohydrolase	TTGGATTGGCACACCCTGCTGACGCGCGAACGCCTGGGAAAACCGCTGCACAGCCCGGAAGAGCTGGGCCGCAGTCCATTCCACAAAGACCACGATCGCATTATCTTTTCCGGTGCCTTCCGCCGCCTCGGGCGCAAGACGCAGGTGCATCCGGTTTCCAGCAACGACCATATCCACACGCGCCTGACCCATTCGCTGGAAGTCAGTTGCGTCGGCCGCTCCCTGGGTATGCGCGTAGGGGAAACCATCCGCGGCGCCCTGCCCGACTGGTGTGAGCCCAGTGATCTGGGCATGGTGGTGCAGTCGGCCTGCCTGGCCCATGACATCGGCAATCCACCGTTCGGCCATTCGGGCGAGGACGCCATCCGCTACTGGTTCCAACAGGCGGCGGGACGGGGCTGGCTTGACGCAATGAGCGAGGCCGAGCGCAACGATTTTCTCAACTTCGAAGGCAATGCCCAGGGCTTCCGCGTCCTTACGCAGCTCGAATACCACCAGTTCGACGGCGGCACCCGCCTGACCTATGCGACCCTCGGCACGTACCTGAAGTATCCCTGGACGGCTCGCCACGCCGATTCCCTGGGCTACAAGAAGCACAAGTTTGGCTGCTACCAGAGCGAACTGCCGTTGCTGGAGCAAATCGCCCATAAACTCGGCCTCCCGCAAATCGAGGATGAGCGCTGGGCAAGGCATCCGCTGGTCTACCTGATGGAAGCCGCGGATGACATCTGCTATGCGCTCATCGACCTGGAGGACGGCGTCGAAATGGACCTGCTGGAGTATCCGCAGGTGGAATCGCTGCTCCTGGACCTGGTGGGTGATGATCTGCCAGAGACGTACCGTCAACTCGGGCCGCTGGATTCGCGACGGCGAAAGCTGGCGATCCTGCGAGGCAAGGCCATCGAGCACCTGACCAACGCGGCGGCACGGGCATTCGTCGAGCAGCAGGAGGCGTTGCTCGCTGGCACGCTGCAAGGCGATTTGGTGGAACACATGCACGGCCCTGCCAAGCGTTGCGTATTAAACGCCAAGGACATGGCCCGCAAGAAAATTTTCCAGGACAAACGAAAGACCCTGAACGAAATCGGCGCCTACACCACGCTGGAGATCCTGCTCAACGGTTTCTGCGGCGCAGCCCTCGAACAACACGGTGGCCGTACGCCGTCGTTCAAGAATCGCCGGATTCTCGACTTGCTGGGCAATAACGCGCCCGATCCTCAAGGTTCACTTCACAGCGCCTTCCTGCGGATGATCGACTTCATCGCCGGCATGACTGACAGCTATGCAAGCGACATGGCACAGGAGATGACCGGCCGCACGCGCCAATAG	MDWHTLLTRERLGKPLHSPEELGRSPFHKDHDRIIFSGAFRRLGRKTQVHPVSSNDHIHTRLTHSLEVSCVGRSLGMRVGETIRGALPDWCEPSDLGMVVQSACLAHDIGNPPFGHSGEDAIRYWFQQAAGRGWLDAMSEAERNDFLNFEGNAQGFRVLTQLEYHQFDGGTRLTYATLGTYLKYPWTARHADSLGYKKHKFGCYQSELPLLEQIAHKLGLPQIEDERWARHPLVYLMEAADDICYALIDLEDGVEMDLLEYPQVESLLLDLVGDDLPETYRQLGPLDSRRRKLAILRGKAIEHLTNAAARAFVEQQEALLAGTLQGDLVEHMHGPAKRCVLNAKDMARKKIFQDKRKTLNEIGAYTTLEILLNGFCGAALEQHGGRTPSFKNRRILDLLGNNAPDPQGSLHSAFLRMIDFIAGMTDSYASDMAQEMTGRTRQ	PGPT0021495_1525	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021495-dgt-K01129	NA	NA
D1-36_03405	627	bvgA_3		Virulence factors putative positive transcription regulator BvgA	ATGAACTCCGTTTTCATTGTCGACGATCATCCGGTCATCCGCCTCGCTGTCCGAATGCTGCTGGAGCATGAAGGCTATAAAGTCGTCGGAGAAACTGACAATGGCGTCGACGCGATGCAAATGGTGCGTGAATGCATGCCGGACCTGGTCATCCTCGACATCAGCATTCCGAAACTTGACGGGCTGGAAATTCTCTCGCGCTTCAACGCCATGACCACGCCCCTCAAGACGCTGGTCCTGACGGCGCAATCGCCAACGCTGTTTGGCATTCGCTGCATGCAATCCGGGGCTTCCGGCTATGTCTGTAAACAGGAAGATCTCAGTGAACTGGTCAGCGCGATCAAAGCCGTATTATCCGGCTACAACTATTTCCCCAGCCAGGCACTTAACCCTGTTCGTCCAGATGATCCACGCAGTTTCGAGTTGGACCTGTTCAAAAGTGTCAACGACCGGGAGTTGATGGTATTGCAACTTTTTGCCCAAGGTCGGACCAACAAGGAAATAGCCAAAGGCATGTTCCTTAGCAATAAAACTGTCAGCACTTATAAAAAACGACTCATGCAAAAACTCAAGGTGAAGTCCCTCGTCGACCTTATCGAAATGGCAAAACGCAACGCACTGGTGTGA	MNSVFIVDDHPVIRLAVRMLLEHEGYKVVGETDNGVDAMQMVRECMPDLVILDISIPKLDGLEILSRFNAMTTPLKTLVLTAQSPTLFGIRCMQSGASGYVCKQEDLSELVSAIKAVLSGYNYFPSQALNPVRPDDPRSFELDLFKSVNDRELMVLQLFAQGRTNKEIAKGMFLSNKTVSTYKKRLMQKLKVKSLVDLIEMAKRNALV	PGPT0014490_189	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MdtEF-TolC,PGPT0014490-evgA|bvgA-K07690	NA	NA
D1-36_03406	3621	bvgS_1		Virulence sensor protein BvgS	ATGCTCAAATGCATAAGCCGCTACTTTTTGTTGTTAGCCGCAGGACTCAATGCAGGGCTCCTCCTGGCGACAACGAATGTGCCTCAGGCCTACTCGCTGCTGAGTCGCGCGGCCGCGGATCATATCGAGATCAGGCTCGACGATACCCAGCGCGCCTGGCTCAAGGAACGTCGCGAACTGATCCTGGGAACCTCCGCCCCGGATTATCCGCCTTTCGACCTTTCCAGCAGTGGCCGCGACTACGAAGGCATGACCGCCGATTATGCCGGAGTCATCGCCAAGGCGACCGGCCTGCCAATGAACGTACTGCGGTTCGATTCGCGGGAAGCCGCCATCGCCGCGCTCAAGGCCGGAGAAATCGACCTGCTCGGCACTGCCAACGGGTTCGAAGCGCAGAATTCAGGCGTCGCTCTTTCGGCACACTACGCTGTCGATCAACCGGTGCTGGTCACCCGGACGAATGAAAGCCGCCCGCTGAACGAAGACCTCAAAGGGCTGCGGCTCAGCATGGTCTATCACTACCTGCCGTTGGAGGACGTCAAACAGCTATACCCCACGGCCCGCATCAACACGTATCCCTCCTACCAGAACGCGATCAATGCCGTTGCCTTCGGCCAGGCCGATGTCTTTCTTGGCGACGCCATCTCCACCCACTACATGATCAGCAAGGGGTACTTGAACAACATCCGCATGGCCAGCTTTGCCAAACACGAGGCACACGGGTTCGGCTTCGCGCTCCGGGAGGACGACACCCGCCTGTTGGACATCGTCAATACCACGCTCAACCAGATTCCCATTGCCGAACAAGCGGCAATCTCCAAGCGCTGGAGGGCAGGCAGCGACCTGTACCTCGCCGAGCATAAAATCCAGCTGACCGACCGCGAACAGGACTGGCTGGCTAGGCACCCGGTGGTCCGGGTGGCGGTGAACGAAAGATTCGCGCCCTTTACTTTTTTCGACCCAGACGGGGATTTCCACGGCATCGGCGCCGACCTGCTGGAATTGATCCGCCTGCGCAGCGGCTTGCGCCTGGATATCCAGCGTTATCAGGACGATGACGAAATGATCGCCGCGGTCCTCGGCGGCAAAGCCGACGTGATCGCCGCGTTGCTGCCTGGCAGCGAACGACAGAAATCGCTGAAATTCAGCCGTCCCTACATGGACAGCTCGTTTGTATTGCTTACGCGCAAGCAATCCGACACACCGGCGACGCTGGACCAGTTCGGCGCGCGGAGCCTGGCCGTTACCAAAGGCAACCCCATCATCGAATGGCTACGCAGCCAGTATCCAGACCTGCGAATTATCGAAACCATCGATTCGCAGCATGCCGCCCAGTCGCTCGCCGAGGGGCAAGTCGACGGCAGCGTGAACGCGCTGGTCATGGCCAACTATTTCCTGGCGTCCCATACGCTGCAGGGCAAGCTGCAGATCAGCAGCACCGTCGGCACCCGCGACGCCATGTTCTCCCTGGCCACGGCCAGGAACGCGACGGAGCTGAGCGCCATCCTCGATAAAGCCCTGACCAGCATCGACCCCGATGAACTGGGCGTGATCGATAACCGTTGGCGCGGCTATATCCCGGCCGCGGAAAGCACATGGCGCACCTACAACCGCCTGTTTCTCCAGGTCGTAGCGGGGGCCGGCCTTTTGCTGCTGCTCTCACTGGCCTGGAATGCCTATATGCAACGGCAGATCCGCCAACGCCAGCGGGCGGAACTGGCCCTCAATGACCAGCTCGAGTTCATGCACGCCCTGCTCAACGGCACGCCCCATCCCATTTATGTAAGAGACCGGGACGGGGTCCTGCAAAGCTGCAACGACAGCTACCTGGAGACGTTCGACGCAAGACGCGAAGACGTGATCGGCAAGGACATCATGCCCGGGGCCATGAGCAACGCCTTCGAAGCGCTGGAGTACCAGGCCGATTATCGACGCGTCATGGCCCAGGGCACCGCACAGATCATCGATCGGCCCCTGCACATCGGTGACCGCAAGCTGACGATCTATCACTGGATACTGCCTTACCGTAACTCCGCGGCCCAGGTGCAAGGGATCATCGGCGGTTGGATCGATATCAGCGAACGGCGACAGCTTGTCGAGGATCTGCGAGCCGCCAAGGAACAGGCCGACGACGCCAACCGGGCCAAGAGCACGTTCCTGGCCACCATGAGCCATGAGATCCGCACCCCCATGAATGCCGTGATCGGCATGCTCGAATTGGCGCTCAAGCATGCCGACAAGGGCCAGATGGACCGCGCGGCGATTGAAGTCGCATACGAGTCGGCTTCCGGCATGCTCGACCTGATCGGCGATATCCTCGACATTGCCCGTATCGAATCCGGCCACTTGGGCCTTGCACCCGAACGGGTCGACCTCAAGGCGCTGGTGCAATCGGTCATGCGGGTTTTCGAAGGACTGGCCCGGCAGAAAAACCTGGCGTTGTCGTTGCGATTCGAGCCAACCGAGGGTAACCCGGACGTGCTGATGGACCCGTTGCGATTCAAGCAGGTGATTTCGAACCTCATCAGCAACGCCCTGAAGTTCACCGAGCAAGGTGAAGTGAATGTCAGCGTGAGGCTGTCACGCACGATCGGGGAAGACACCCTTCGAATGCAACTGGACGTGCGCGACAGTGGCATCGGCATCAGCCCCGCCGACCTGCAACGCCTGTTCGAGCCGTTTGCCCAGGTCGACAATGGCAACCGGATGGCCCGCAAGGGCGCTGGGCTGGGCCTGGTGATCAGCCGCCACCTGTGCCAGGTCATGGGCGGTGAACTGCACATGAACAGCCAACCGGGCGCAGGAACCCAGGTCCGGGTTTGCCTGCCCTTGGCCATCCTGCCCGACGCAAAGGCTCGCGCCCCCGTCGCGCCTGTCGTTGAAACAGCCGCCTGCGCGCTGAACGTCCTGGTCGTGGACGATCATCCGGCCAATCGCCTGTTGATGTCGCAACAACTGGACTACCTGGGTCATCACCACCATGTCAGCCATGACGGCGAACAGGGATTCAAGGCCTGGCAGGAGGGGAATTTCGACCTGGTCATCGCCGACTGCAACATGCCGGTCATGAGCGGCTACGAGCTCGCCGGAGCAATCCGTCGACACGAGGCCGAGCAACGGCGGCCGCCCTGCACCATCCTCGGGTTCACCGCCAATGCACAACCCGAGGAAAAACAACGCTGCAAGGAGGCGGGCATGGACGACTGTCTCTTCAAGCCCATCAGCCTGAGCGCCCTGCATCAGTGGATGAGCACGATCAAACCCGGCGGCCGCGCCCACGCTTTCAACGTTCAAAGCCTGCAGATGCTGACTGGCGGCGACCCTGTCTCCATCCAGCGTCTGCTGGCGGAACTGCTCAGCAGCAATCGCGCAGACCGCCAGGAGCTACTCGACGTCGCCCGAGGGGCAAACCCACAGGCGATCACCGAGACAGCACACAAGATAAAGGGTGTCGCCCGTATCGTGCAGGCGACTTCATTGATCCAGCTGTGCGAGACACTGGAGCAGGCCTGCCAACAAGGGCTCGCGCCGGAACGCATCGATGAATGCACGCATGCCCTGGGCCGGGCGATGAGCGAACTGGAGCAGGCCCTGGAAACAGAGATCGCCAAGGCAAAATAA	MLKCISRYFLLLAAGLNAGLLLATTNVPQAYSLLSRAAADHIEIRLDDTQRAWLKERRELILGTSAPDYPPFDLSSSGRDYEGMTADYAGVIAKATGLPMNVLRFDSREAAIAALKAGEIDLLGTANGFEAQNSGVALSAHYAVDQPVLVTRTNESRPLNEDLKGLRLSMVYHYLPLEDVKQLYPTARINTYPSYQNAINAVAFGQADVFLGDAISTHYMISKGYLNNIRMASFAKHEAHGFGFALREDDTRLLDIVNTTLNQIPIAEQAAISKRWRAGSDLYLAEHKIQLTDREQDWLARHPVVRVAVNERFAPFTFFDPDGDFHGIGADLLELIRLRSGLRLDIQRYQDDDEMIAAVLGGKADVIAALLPGSERQKSLKFSRPYMDSSFVLLTRKQSDTPATLDQFGARSLAVTKGNPIIEWLRSQYPDLRIIETIDSQHAAQSLAEGQVDGSVNALVMANYFLASHTLQGKLQISSTVGTRDAMFSLATARNATELSAILDKALTSIDPDELGVIDNRWRGYIPAAESTWRTYNRLFLQVVAGAGLLLLLSLAWNAYMQRQIRQRQRAELALNDQLEFMHALLNGTPHPIYVRDRDGVLQSCNDSYLETFDARREDVIGKDIMPGAMSNAFEALEYQADYRRVMAQGTAQIIDRPLHIGDRKLTIYHWILPYRNSAAQVQGIIGGWIDISERRQLVEDLRAAKEQADDANRAKSTFLATMSHEIRTPMNAVIGMLELALKHADKGQMDRAAIEVAYESASGMLDLIGDILDIARIESGHLGLAPERVDLKALVQSVMRVFEGLARQKNLALSLRFEPTEGNPDVLMDPLRFKQVISNLISNALKFTEQGEVNVSVRLSRTIGEDTLRMQLDVRDSGIGISPADLQRLFEPFAQVDNGNRMARKGAGLGLVISRHLCQVMGGELHMNSQPGAGTQVRVCLPLAILPDAKARAPVAPVVETAACALNVLVVDDHPANRLLMSQQLDYLGHHHHVSHDGEQGFKAWQEGNFDLVIADCNMPVMSGYELAGAIRRHEAEQRRPPCTILGFTANAQPEEKQRCKEAGMDDCLFKPISLSALHQWMSTIKPGGRAHAFNVQSLQMLTGGDPVSIQRLLAELLSSNRADRQELLDVARGANPQAITETAHKIKGVARIVQATSLIQLCETLEQACQQGLAPERIDECTHALGRAMSELEQALETEIAKAK	PGPT0014485_207	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE_EVG-EMR_SYSTEM,PGPT0014485-evgS|bvgS-K07679	NA	NA
D1-36_03407	2949			hypothetical protein	ATGCCCAGCGCACCGCGTCCGCAAAAACGCCGGTTTCCCCTGCACGTTCATATCAGTGTGATGTTCACGCTGCTCTTGCTGCTGACCGGTGTGGTGCTGGGCGTCTTCAACTATCGGCAAACCACCCAGATCATCCTGTCTGGCAGCGAACAGCTGTTCAATCGAATCGAACAGGACGTGCGCCTGGACCTGTACGACACTTATGAACCGATCCGCCATCTGCTGGGCCTGCTGGCCCACTACCCGGCGACGCGCGAACCGGGGATGGCCCAGCGACTGACGCTCCTCGCCCCCTTCACCCAGGCACTGCGGGACAACCCGAACCTGGCATCGCTGTACCTGGGCGATCGCGACGGCAATTTCCTGATGGTCCGGCCTTTGGGCTCCGAGGCCTCGAAGACGGCGATCAAGGCACCGGCTGCCGCGCGCTACGAGGTCTGGACCATCGAGCGCACGGCTGACGAAGGCCAGGTGCTCTCCCAATCATTGTTCTACGATCAGGCCCTGGCGCTCATCGGTCGCCGCGACAACTCAGGCGGGACCTTCGATCCGCGCAGCCGCGGCTGGTTTCGCAGCGCAATGGACACCTCCGAACAAATCACCACCGAACCCTACGTGTTTTTTTCCAGCCGCAACATCGGCACGACCCTCGCCCGCCGCAGTGGCGATCAGGCCGTCATCGGCGCAGACCTCACCCTGGCCGCCCTCTCCCAGACGCTGGCCAAGCACAAAGTAACCGCCAGTACCGAGATTGTCCTGGCTGATCTGCAAGGCAACGCCGTGGGTTATCCCGACAGCGGCCGGCTGGTGACCGACAGTCAGTCGGCACGCTTGATCAAGGCGCGCGACTTGCACCCAGCCATTGCCGCCGCGCTCGACAACGACACTGATACGCCGCGCCTGGAGGCGGCGGGACGCGAGTGGATCGTTTCTCGCAGCCACATGCAGGAAGGCGGGCCGAAGGGCCTGGAACTGGCGTTGCTGGTTCCGGAAGACGAGTTGCTCGCCGGCGCCTATCGCATGCGCTGGCAAGGCGCGCTGATCACCCTCGCCACCTTGCTGCTGTGCCTGCCCTTGGGCTGGCTGACCTCCAGGATTTTGGTCAAGCCATTGCGGGCCCTGGTGCAAGAAGCCGATGCCATCCGCAGTTTCAATTTCCACTACCCGGTGTCCCGTCGCTCCCCCGTGTTGGAGATTGACCAACTGGGCGTTTCAATGGCCCGCATGAAGGAAACCCTGGCGAGCTTTTTCGAAATCACCGCCAGCCTGCGCGCCGAAACCCGCTTCGCCCCGCTACTGGAGCGAGTGTTGTTCGAGACCGTGAAAATTGGCCAGGCCCAGGCTGGCCTGATCTACCTGCGCGAAAACGATGGCGAGCACATCAAGCCCTGCGGACTGGTCATCGACGGTTCCCCTCGGGACCCGCAAACCTTCGCCCTGCGAGGTTACTCACTGGACGCTGCGGACAATCCCCAATGGCTTCGCGAGCTGGCCGTCGCGCAAACCCTTGTATCGTCCCTGGGTTTCGAACAGGCGGGCGATTTGCGCAGTGTCCTGCTTGCGCTGGACGCGCCACGGGTACACCTGATCGGCATCCGCCTGTGCAATCGTCACCAGGAAACCGTTGGCGCGCTGGTTCTGCTGATCACCGACACCGGCACCGAAGCGGACCTGGAAAAGCTCCAGCCGGATCGCATCGCCTTCCTGCAGGCCGTGTCCGGCACCGCGACGGTGAGCATCGAAAGCCAGCGCCTGCAAGCCAGGCAAAAACAATTGCTGGACTCGTTCATCCAATTGCTGGCCGGCGCGATCGATGCAAAGAGCCCCTACACCGGCGGCCATTGCCAGCGAGTACCGGCCCTGACGCTGATGCTCGCCCAGGCCGCCGCCGCCAGCCCGGCGCCGGCGTTCGAAAGCTACCGCCCGACCGAAGACGAATGGGAGGCGCTGCACATCGCGGCCTGGCTACACGACTGTGGCAAGGTGACCACGCCCGAATACGTGGTGGACAAAGCCACCAAGCTGGAAACCCTGAACGACCGTATCCACGAGATCCGTACCCGCTTCGAAGTCCTCAAGCGTGACGCCTGGGTCGACTACTGGCAGGCGCTGGCAACCGGAGGCGAACCCTCATCCCTGGCAGAGCAACGCGACGCGACACTGGCCGCCCTCGACGATGACTTCACCTTTGTCGCACGCTGCAACCTGGGCTCCGAAGCCATGGCCGATGCCGACCTGCAACGCTTGCAAACCATCGCCCGCCGCACATGGACCCGGACCCTGGACGATCGCCTGGGGGTTTCCTGGGAAGAAAACCGCCGCCAGGCGCGCACGCCCAAGCCGACATTGCCCGTGAATGAACCGTTGTTGATGGACAAACCCGAGCATCTGTTCGAGCGGCACGAGGCCGAGTTGATTCCAGAGGACAATCCCTGGGGCTTCCAGCTCGATGTGCCGACCTGGAAATACAACCGCGGCGAACTCTACAACCTCAGCATCACGCGTGGCACGCTGACCCGCGAAGAGCGCTACGTGATCAACCACCACATGGTCCAGACCATCCTGATGCTCAGCCAGTTGCCCTTCCCCAGCCACCTGGAAAATGTTGCGGAAATTGCCGGCGGCCACCACGAGAAAATGGACGGCACCGGCTACCCCAAGCGATTGAAGCGTGAGCAGATGAGCCTGCCGGCTCGAATGATGGCGATTGCCGATATCTTCGAAGCCCTGACCGCGGCCGATCGCCCCTATAAAAAAGCCAAGAAGCTGAGCGAAGCCCTGGGCATCATGGCCACCATGTGCCGTGACGCCCATATCGATCCCGAGCTGTTCGGGCTGTTCATCGAAGAAAGAATCTACCTGCGCTACGCCGAGGCGTTTCTCGACCCGCTCCAGATCGATGAAGTCGACCCGGGCGACCTATTGCTCAGGGCTGGATTGAAAGCATGA	MPSAPRPQKRRFPLHVHISVMFTLLLLLTGVVLGVFNYRQTTQIILSGSEQLFNRIEQDVRLDLYDTYEPIRHLLGLLAHYPATREPGMAQRLTLLAPFTQALRDNPNLASLYLGDRDGNFLMVRPLGSEASKTAIKAPAAARYEVWTIERTADEGQVLSQSLFYDQALALIGRRDNSGGTFDPRSRGWFRSAMDTSEQITTEPYVFFSSRNIGTTLARRSGDQAVIGADLTLAALSQTLAKHKVTASTEIVLADLQGNAVGYPDSGRLVTDSQSARLIKARDLHPAIAAALDNDTDTPRLEAAGREWIVSRSHMQEGGPKGLELALLVPEDELLAGAYRMRWQGALITLATLLLCLPLGWLTSRILVKPLRALVQEADAIRSFNFHYPVSRRSPVLEIDQLGVSMARMKETLASFFEITASLRAETRFAPLLERVLFETVKIGQAQAGLIYLRENDGEHIKPCGLVIDGSPRDPQTFALRGYSLDAADNPQWLRELAVAQTLVSSLGFEQAGDLRSVLLALDAPRVHLIGIRLCNRHQETVGALVLLITDTGTEADLEKLQPDRIAFLQAVSGTATVSIESQRLQARQKQLLDSFIQLLAGAIDAKSPYTGGHCQRVPALTLMLAQAAAASPAPAFESYRPTEDEWEALHIAAWLHDCGKVTTPEYVVDKATKLETLNDRIHEIRTRFEVLKRDAWVDYWQALATGGEPSSLAEQRDATLAALDDDFTFVARCNLGSEAMADADLQRLQTIARRTWTRTLDDRLGVSWEENRRQARTPKPTLPVNEPLLMDKPEHLFERHEAELIPEDNPWGFQLDVPTWKYNRGELYNLSITRGTLTREERYVINHHMVQTILMLSQLPFPSHLENVAEIAGGHHEKMDGTGYPKRLKREQMSLPARMMAIADIFEALTAADRPYKKAKKLSEALGIMATMCRDAHIDPELFGLFIEERIYLRYAEAFLDPLQIDEVDPGDLLLRAGLKA				NA	NA	NA	NA	NA
D1-36_03408	483	msrC	COG1956	Free methionine-R-sulfoxide reductase	ATGATCGATTTGAAAAGCACTGGCGAAGGCCTCGAAGGCTATGGCTTGTTATCGGCACAGTTGCAATCGCTGCTGGCGGATGAGCGCGATTTCATCGCCAACGCCGCACAGTTCTCGGCGTTCCTGTTCAGTCAGCTGGACGACCTCAACTGGGCCGGTTTTTACCTCAATCGCAACGATGAGCTGGTGCTGGGGCCGTTCCAGGGGCAGATCGCTTGTGTAAGGATTCCCTTCGGTCGCGGCGTGTGTGGCGCCGCTGCGGCGACCCGCCAGACCCAGCGCGTCGAGGACGTGCATGCGTTCCCCGGGCATATCGCCTGCGACAGCGCCTCGAACAGCGAGTTGGTGGTGCCGCTGGTCAAGGACGGGCGCCTGGTCGGCGTGCTGGACCTGGACAGTCCCAAACTGGCGCGCTTCAGCGAGCATGACCAGGCCGGTATCGAACAGTTGGCGGCGATATTCCTGCGCCTGACCGATTGCTGA	MIDLKSTGEGLEGYGLLSAQLQSLLADERDFIANAAQFSAFLFSQLDDLNWAGFYLNRNDELVLGPFQGQIACVRIPFGRGVCGAAAATRQTQRVEDVHAFPGHIACDSASNSELVVPLVKDGRLVGVLDLDSPKLARFSEHDQAGIEQLAAIFLRLTDC				NA	NA	NA	NA	NA
D1-36_03409	891			hypothetical protein	GTGGACGCCCGATTGATTGCTTTTCTTGAACGCGCCGATGCGGTGCTGACCCGTATCGAGCCCTTTTTGCCTGCGCCACGGCCCGCCATCGACTGGAACCAGACCCTGGCCGCCCGTTGGCAGCGCGACGGGCGCGGCGGTTTTCTCCTGCCGCTCCAGGTCAGCCTCGATATGCGCTTGTCGGACCTGATTGGCGTTGATCGCCAGGTCGAACAGTTGGGGCGCAACACCCGGCAGTTCATCGATGGCATGCCTGCCAACCACGCCTTGCTGTGGGGCTCGCGCGGCACGGGCAAGTCTTCGTTGGTACGTGCGTTGCTGGCCGAACATGCTGGCCAGGGCCTGCGCTTGATCGAGATCGAACGCGATCATCTGGCCGATCTGCCTCGGGTGGTCGAGCAAGTGGCGAAATTGCCCCAGCGCTTCGTGGTGTTCTGCGATGACTTGTCGTTCGAGTCCGGCGAAGGTGACTACCGCGTACTCAAGAGCGTGCTCGACGGATCCCTCGAACAGGCCCCGGACAACGTGCTGCTGTATGCCACCTCGAACCGTCGTCATCTGGTGCCGGAAAAGGAAAGCGACAACGAGAACTGGAAGCGGGTCGACGGCGAGCTTCATCCGAGCGAAGCCGTGGAGGACAAGATTGCCTTGTCTGACCGTTTCGGGCTTTGGCTGTCGTTTTATCCGTTCACCCAAGAGCATTTTCTCGACGTGGTGGAGCATTGGATCGGCGAGCTCGCGGCGAAGGCCGGGCTGGCCTGGCAGCGTGACGAGGCGCTGGAAATACAAGCGGTTCGCTGGGCGACCGGACGCGGCAATCGCAACGGACGTTGCGCCTATCAATTTGCCCGTTATTGGGTGGGCCTGAAATTGCTGGAGCAAGATGCATGA	MDARLIAFLERADAVLTRIEPFLPAPRPAIDWNQTLAARWQRDGRGGFLLPLQVSLDMRLSDLIGVDRQVEQLGRNTRQFIDGMPANHALLWGSRGTGKSSLVRALLAEHAGQGLRLIEIERDHLADLPRVVEQVAKLPQRFVVFCDDLSFESGEGDYRVLKSVLDGSLEQAPDNVLLYATSNRRHLVPEKESDNENWKRVDGELHPSEAVEDKIALSDRFGLWLSFYPFTQEHFLDVVEHWIGELAAKAGLAWQRDEALEIQAVRWATGRGNRNGRCAYQFARYWVGLKLLEQDA				NA	NA	NA	NA	NA
D1-36_03410	2322	rcsC_19		Sensor histidine kinase RcsC	ATGGACATCAGGTTCACCCAACGGTTGTCGTACAAACAGGCCCGACTGACCGTCCTGGTGGGTTTCGTGCTGGGTACTTTATTAAGCCTGGGACAGATCGGCATCGATTATGCCAGCGAAGACGCATCGATCAACCGTGAAATCCTCTCGCTGTTGGAAATCAGCCACAACCCGGCCTCGCGCATCGCCTACAACATCGACGCCGAACTCGCTCAGGAACTGGCCCTGGGCCTGTTGCGCTCGCCGGCCATCATCGGTGCCGAACTCATCGACAACAACAATACGGTCCTGGCCAGCGTCAAACGTCCCGAGCTGCAGAGCAACAATCGGTTCATCAGCGACTTTCTCTTTGGCGCCCAGCGCCAGTTCGAAGACCGGCTCTACCTGACCCATCTGCCCGGCGAGTCCCTGGGAGTGTTGCGGCTGGATGTCGACACCTATTCGTTCGGCAGTCGCTTCCTGCGCCGGGCCGAGATCACCCTGCTCAACGGTTTCGCTCGTAGCCTGATCCTGACCGGCCTGTTGCTGGCGCTTTTCTACGTCATGCTGACCAAGCCCTTGGTGCGGGTCATCCGCGAGCTGAGCAGCCGCGACCCCAGTAGCAGCGAACAGAGCCCACTGGAATGCCCCTCCGGCCACCAATACGACGAAATCGGCGTGCTGGTTTCAGTCGCCAACCAGCAGTTCGAAAATATCTCCACCGAGATCCAGCAGCGACGCACGGCTGAAAACCGCCTCACCGATTACCTGGCGCAATTGGAAAATATCGTTTCGGCGCGCACCGCCGAACTCAAGGCCATCAATGCCCGCCTCAGCCAGTCCAACGAAGAACTGGAGGTCGCCCGGCGTACCGCCTTGGACATGGCCGACACCCGTTCTGCATTCCTCGCCAACATGAGCCATGAGATCCGCACGCCACTCAATGGCCTGCTCGGTATGATCGCCCTGTCCCTGGATGGCCCACTGACCGCTGAACAGCAGCAACAGCTGTCGATCGCCCACGACTCGGGCAAAGTGCTGGTCGAGTTGCTGAACGATATCCTCGACTTGTCCAAGTTCGATGCCGGCCAGCTGGAGCTCGAACGCATCCCGTTCGACCTGGGTTCCCTGGTCGAAGACACCGCCAACCTGCTTTCACAAAATGCCGCCCCGAGCGTCGAACTGGCGTGCCTGATCGAGCCGCAGTTTCCCGCGCAGGTACTGGGCGACCCGACCCGCGTCCGCCAGATCGTCAGCAACCTGCTGTCCAACGCATTGAAGTTCACCCGCTTCGGCCGGGTCGATGTGCGCTTGAGCCAGTATGAGGGCGGCGTGCGGATCGAGGTCTGCGACACGGGCATCGGCATCCCCCAGGAGGCCCAGGCGCGGATCCTCCAGCCGTTCACCCAGGCCGGCGCAGGCATTACCCGCCAGTTCGGCGGCACCGGGCTGGGGCTGGCATTGACCTACAACCTCTGCGAAGCCATGCAGGGCCGGCTCACGATCAGTTCCGAGGCCGGCTTCGGCAGCCAGTTCTGTGCCGACCTGCCGTTGCCTTGCCACACCCCTGCCGTCCCCGTCGTACGCTTGCATGGCAACGTCGTCGCCATCACCACCGCGAACAGCGGGCTGGCCGAACTGCTGGGCATGTTGCTACCCGCCTGGGGATTGGATTATGTCCAACGTTCCGTGGATGACGGGCTGCTGGGGCTCAAGCCCGACATCCTGATCACCGATTGCCCGGAATGCCTGTTCAACCTGCGGCCGACCTTCGACGCCACCATTCTGCTGGTTACCGCCTATGGCAGTTTCATGCCCAGCGAAGAAGCGAGCGCCCTCGCCCCATTGCTGCAACAGGCCCGGCCGCTGGCGCGCCATGCGCTTTATCAGGTCCTGCGTCGCGCCTTGCAAAGCGAGGCGACCACGATCAATGAGGCGCAGATCGACGCATTGCCGCCCACCCTGCGTGCTCGTGTCTTGTTGGTGGAAGACAACCCCGTCAACCAGCTGGTGGCCAAGGGCATGCTGGTCAAACTGGGTTGTGAAGTGGTTGTCGCGGCCCACGGCGCCGAGGGCCTGGATCAGCTCGAACAGCGGGAATTCGACCTGGTCCTGATGGACTGCAACATGCCGGTCATGGACGGCTACGAAGCCAGCCGGCAGATCCGCCGCAGCGGGCGCTGGCCCGACCTGCCGATTGTCGCGCTGACCGCCAACGCCATGCCCGAGGAACGTGAGCGCTGTCGGGCCGCCGGCATGAGCGACTATTTATCCAAGCCGTTCCGTCGCGAAGAACTGGCCGCATTGCTGGATCAATGGGTGTCCACTACGTCAGCGCTTTGA	MDIRFTQRLSYKQARLTVLVGFVLGTLLSLGQIGIDYASEDASINREILSLLEISHNPASRIAYNIDAELAQELALGLLRSPAIIGAELIDNNNTVLASVKRPELQSNNRFISDFLFGAQRQFEDRLYLTHLPGESLGVLRLDVDTYSFGSRFLRRAEITLLNGFARSLILTGLLLALFYVMLTKPLVRVIRELSSRDPSSSEQSPLECPSGHQYDEIGVLVSVANQQFENISTEIQQRRTAENRLTDYLAQLENIVSARTAELKAINARLSQSNEELEVARRTALDMADTRSAFLANMSHEIRTPLNGLLGMIALSLDGPLTAEQQQQLSIAHDSGKVLVELLNDILDLSKFDAGQLELERIPFDLGSLVEDTANLLSQNAAPSVELACLIEPQFPAQVLGDPTRVRQIVSNLLSNALKFTRFGRVDVRLSQYEGGVRIEVCDTGIGIPQEAQARILQPFTQAGAGITRQFGGTGLGLALTYNLCEAMQGRLTISSEAGFGSQFCADLPLPCHTPAVPVVRLHGNVVAITTANSGLAELLGMLLPAWGLDYVQRSVDDGLLGLKPDILITDCPECLFNLRPTFDATILLVTAYGSFMPSEEASALAPLLQQARPLARHALYQVLRRALQSEATTINEAQIDALPPTLRARVLLVEDNPVNQLVAKGMLVKLGCEVVVAAHGAEGLDQLEQREFDLVLMDCNMPVMDGYEASRQIRRSGRWPDLPIVALTANAMPEERERCRAAGMSDYLSKPFRREELAALLDQWVSTTSAL	PGPT0025845_98	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QUORUM_SENSING_REGULATORS	CE-QSR-QUORUM_SENSING_REGULATED_FLS,PGPT0025845-sagS-K20973	NA	NA
D1-36_03411	462	ohrR_1		Organic hydroperoxide resistance transcriptional regulator	ATGAATGATCTGTCAGTCGATTCGCTGAAGCTCGACAGCCAGTTGTGCTTCAAGTTGTACGCCGCGTCGCGGGCGGTGATTCGGGGTTACAAACCGATGTTGGATCAGCTTGGCCTGACCTATCCGCAATACCTGGCGATGCTCGTACTGTGGGAATGGCAGGTGAGCCCGCCGGAGCAACCGACCGTCAAAGCCCTGGGCGAACGCTTGCTGCTTGATTCCGGCACGCTGACGCCGTTGCTCAAGCGCCTGGAACAACTGGAGCTGGTCCAGCGGCAACGATCGGCACGTGATGAACGCGAAGTGCATTTGAGCCTGTCGGAGCGCGGGCGGACCTTGCGTGAGCAGGTCGGCCCGCTCAAGGCTCGCTTGCTGTGTGACAGCGGTATTGATCTGGATCGCGTGGGAGAGCTGCGTGACGGCCTCGATCATTTGTTGGCCCAGATCAAAGCGCTGACGTAG	MNDLSVDSLKLDSQLCFKLYAASRAVIRGYKPMLDQLGLTYPQYLAMLVLWEWQVSPPEQPTVKALGERLLLDSGTLTPLLKRLEQLELVQRQRSARDEREVHLSLSERGRTLREQVGPLKARLLCDSGIDLDRVGELRDGLDHLLAQIKALT	PGPT0013155_2468	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775	NA	NA
D1-36_03412	486	gpx1		Hydroperoxy fatty acid reductase gpx1	ATGACCGACAATCTGCTAAGCATCCCGTGCACGACCATCAAGGGCGAGCAAAAGACCCTGGCCGATTTTTCCGGCAAGGCCGTGTTGGTGGTCAATACCGCCAGCCAATGTGGTTTCACACCGCAGTACAAGGGGCTCGAGGCGTTGTGGCAGTCCTACAAGGACCGGGGGCTGGTGGTGCTGGGTTTTCCCTGCAATCAGTTCGGCAAGCAGGAGCCAGGCAACGAGGGGGCGATTTCTGAGTTTTGCGAGCTCAGTTTCGGCGTGAGCTTTCCATTGTTCAAGAAGGTCGAGGTCAACGGTGCCAATGCCCATCCGTTGTTCGTGCAGCTCAAGCAGCGGGCACCGGGGGTGCTGGGGTCCAAGGGCATCAAATGGAATTTCACCAAGTTCCTGATCGGCAAGGACGGCCAAGTGGTAAAGCGCTTTGCCCCGACCACCAAGCCCCAAGACCTCACCGCCGAGATCGAAGCCCTGCTCAAATGA	MTDNLLSIPCTTIKGEQKTLADFSGKAVLVVNTASQCGFTPQYKGLEALWQSYKDRGLVVLGFPCNQFGKQEPGNEGAISEFCELSFGVSFPLFKKVEVNGANAHPLFVQLKQRAPGVLGSKGIKWNFTKFLIGKDGQVVKRFAPTTKPQDLTAEIEALLK	PGPT0013115_4245	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013115-bsaA|gpx|btuE-K00432	NA	NA
D1-36_03413	396	msrB	COG0229	Peptide methionine sulfoxide reductase MsrB	ATGGAAAAGTTGCAGAAAACCCTTGAAGAGTGGCGTGAAATGCTCGACCCGGAGCAATACAACGTCTGTCGGCTCAAAGGCACCGAGCGACCGTTCTCCGGCAAATACAACGGGACCAAGACCGACGGTGTTTACCACTGCATCTGCTGCAACGAGCCGTTGTTCGATTCGATGACCAAGTTCGATTCCGGCTGTGGCTGGCCGAGTTTCTATGCGCCCATCGAAGGCAGCGCGGTGGTGGAAGTGCGGGATGTCAGCCATGGCATGATCCGCACCGAGGTGGTCTGCGCCAAATGCGACGCGCACCTGGGGCACGTCTTCCCCGACGGCCCGCCGCCCACCGGCCTGCGTTATTGCATCAACTCGGTGTGCCTGGATCTCGTGCCTCGGGAGTAA	MEKLQKTLEEWREMLDPEQYNVCRLKGTERPFSGKYNGTKTDGVYHCICCNEPLFDSMTKFDSGCGWPSFYAPIEGSAVVEVRDVSHGMIRTEVVCAKCDAHLGHVFPDGPPPTGLRYCINSVCLDLVPRE	PGPT0013070_5040	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-SULFOXIDE_REDUCTASES,PGPT0013070-msrB-K07305	NA	NA
D1-36_03414	1212	alaA	COG0436	Glutamate-pyruvate aminotransferase AlaA	ATGCAGGTCAGCAAATCGAACAAGCTCGCCAACGTCTGCTACGACATTCGCGGCCCGGTGCTCAAGCACGCCAAACGCCTGGAAGAGGAAGGCCACCGCATCCTCAAGCTGAACATCGGCAACCCGGCGCCCTTTGGTTTCGAAGCCCCCGATGAAATCCTCCAGGACGTCATCCGCAACCTGCCGACCGCACAGGGCTACAGCGACTCCAAAGGTCTGTTCAGTGCGCGCAAGGCCGTGATGCAGTACTACCAGCAGAAGCAGGTCGAAGGCATCGGCATCGAGGACATCTACCTGGGCAACGGCGTGTCCGAGCTGATCGTCATGTCCATGCAAGCCTTGCTCAACAACGGCGACGAAGTCCTGGTGCCGGCGCCGGACTATCCGTTGTGGACCGCTGCCGTGAGCCTGTCCGGCGGCAACCCGGTGCATTACCTGTGCGACGAGCAGGCGAACTGGTTCCCTGACCTGGCGGACATCAAGGCCAAGATCACCCCGAACACCAAGGCCCTGGTGATCATCAACCCGAACAACCCCACCGGCGCCGTCTATTCCAGAGAAGTGCTGCTGGGCATGCTGGAACTGGCCCGTCAGCACAACCTGGTAGTGTTTTCCGACGAGATCTACGACAAGATCCTGTACGACGATGCCGTGCACGTCTGCACCGCGTCCCTGGCGCCGGATCTCCTCTGCCTGACCTTCAACGGCTTGTCGAAGTCCTATCGCGTCGCCGGCTTCCGCTCCGGCTGGATCGCCATCTCCGGGCCCAAGCATCACGCCCAGAGCTACATCGAAGGCATCGACATGCTGGCCAACATGCGCCTGTGCGCCAACGTGCCGAGCCAACACGCCATCCAGACGGCATTGGGCGGCTACCAGAGCATCAACGACCTGGTCTTGCCCCAGGGCCGGTTGTTGGAACAACGCAACCGCACCTGGGAACTGCTCAACAACATCCCAGGCGTCAGCTGCGTCAAGCCGATGGGCGCCTTGTATGCGTTCCCGCGCATCGACCCGAAAATCTGCCCGATCCACAACGACGAGAAATTCGTCCTCGACCTGCTGCTTTCCGAAAAGCTGCTGGTCGTCCAGGGCACGGCGTTCAACTGGCCATGGCCGGATCATTTCCGTGTCGTGACCCTGCCGCGAGTCGATGACCTGGACCAGGCCATCGGACGCATCGGCAATTTCCTAAAGTCCTACCGCCAGTAG	MQVSKSNKLANVCYDIRGPVLKHAKRLEEEGHRILKLNIGNPAPFGFEAPDEILQDVIRNLPTAQGYSDSKGLFSARKAVMQYYQQKQVEGIGIEDIYLGNGVSELIVMSMQALLNNGDEVLVPAPDYPLWTAAVSLSGGNPVHYLCDEQANWFPDLADIKAKITPNTKALVIINPNNPTGAVYSREVLLGMLELARQHNLVVFSDEIYDKILYDDAVHVCTASLAPDLLCLTFNGLSKSYRVAGFRSGWIAISGPKHHAQSYIEGIDMLANMRLCANVPSQHAIQTALGGYQSINDLVLPQGRLLEQRNRTWELLNNIPGVSCVKPMGALYAFPRIDPKICPIHNDEKFVLDLLLSEKLLVVQGTAFNWPWPDHFRVVTLPRVDDLDQAIGRIGNFLKSYRQ	PGPT0001880_1708	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ALANINE_DEGRADATION,PGPT0001880-alaA-K14260	NA	NA
D1-36_03415	888	htpX	COG0501	Protease HtpX	ATGATGCGCATCCTGCTGTTTTTGGCCACTAACCTGGCGGTCGTGCTGATTGCCAGCATCACCCTGAGCCTTTTCGGCTTCAACGGGTTCATGGCGGCCAACGGGGTTGACCTCAACCTCAATCAGCTGCTGATCTTCTGTGCGGTGTTCGGTTTCGCCGGTTCCCTGTTCTCGCTGTTCATTTCCAAATGGATGGCGAAGATGAGCACCGGTACCCAGATCATCAGCCAGCCGCGCACTCGCCACGAACAATGGCTGCTGCAGACCGTCGAGCAACTGTCTCGCGAAGCCGGTATCAAGATGCCCGAAGTCGGGATATTCCCGGCCTACGAGGCCAACGCCTTCGCGACCGGTTGGAACAAGAATGATGCACTGGTGGCGGTAAGCCAGGGCTTGCTCGAGCGGTTCTCACCGGATGAAGTCAAGGCGGTGCTGGCTCACGAGATCGGCCACGTGGCAAACGGTGACATGGTGACCTTGGCGCTGATCCAGGGCGTGGTGAACACCTTCGTGATGTTCTTTGCCCGCATCATCGGCAACTTTGTCGACAAGGTGATCTTCAAGAACGAAGAAGGCCAAGGCATCGCCTACTACGTGGCGACCATTTTCGCCGAGCTGGTGCTGGGTATCCTCGCCAGTGCGATCGTCATGTGGTTTTCGCGCAAACGCGAGTTCCGCGCCGATGACGCCGGCGCCCGCCTGGCCGGCACCAGCGCCATGATCGGCGCCCTGCAGCGCCTGCGCGCCGAGCAAGGTTTGCCAGTGCACATGCCCGACACCCTGAATGCCTTTGGCATCAACGGTGGCATCAAGCAGGGCCTGGCCCGCATGTTCATGAGCCACCCGCCGCTGGAAGAGCGGATTGACGCACTGCGTCGCCGTGGTTGA	MMRILLFLATNLAVVLIASITLSLFGFNGFMAANGVDLNLNQLLIFCAVFGFAGSLFSLFISKWMAKMSTGTQIISQPRTRHEQWLLQTVEQLSREAGIKMPEVGIFPAYEANAFATGWNKNDALVAVSQGLLERFSPDEVKAVLAHEIGHVANGDMVTLALIQGVVNTFVMFFARIIGNFVDKVIFKNEEGQGIAYYVATIFAELVLGILASAIVMWFSRKREFRADDAGARLAGTSAMIGALQRLRAEQGLPVHMPDTLNAFGINGGIKQGLARMFMSHPPLEERIDALRRRG	PGPT0014605_1969	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014605-htpX|ykrL-K03799	NA	NA
D1-36_03416	705	tpm		Thiopurine S-methyltransferase	ATGGACCCCGAGTTTTGGCACAAGCGTTGGTCAACCAACCAGATCGGCTTTCATCTGCCTGAAGTGAACCCTTACCTGCGGCGTTTCTGGCCTCAGTTGGGGTTGCCTGAAGAGACGCGAGTGTTGGTGCCCTTGTGCGGCAAGACGCTGGATCTGCTGTGGTTGGCGCAACAAGGTTTTTCCGTACGGGGGATTGAGCTGTCGGAAAAAGCCGTCACTGATTTTTTCCAGGAACATCAGCTCCAGCCGAACGTGAGTGAGGAGGGCGCCTTCAAGATATTTCGTGCCGGCGCCATTGAAATCCGTTGCGGTGATTTCTTTGCGTTAACGCCTTTGGACGTAGCCGATTGCGCGACGTTGTATGACCGCGCTGCATTGATCGCCTTGCCCGAGCCGATGCGTGAGCGGTATGCGGCCCATCTGCAGAGCATAATGCCGGACTGTGTCGGGCTGGTGATCACGCTGGATTACAACCAGGACGAGATGCCTGGACCTCCGTTTTCGGTAGGGCATGACGAGGTGCAGCGGTTGCTGGGTGGGGCTTGGGAGTTGCAGGTCTTGCACGAACAGGATGTGCTGGGCGAGAGTTGGAAGTTCTTGCAGGCGGGCGTGAAGCGGCTGGATGAGCGGGTATATCTGGTATCCAGTCGTGGGGTGCAATCAATGACCCCATCGTTGAAAAGTCCGCCCCCGCGCTTGGAATAG	MDPEFWHKRWSTNQIGFHLPEVNPYLRRFWPQLGLPEETRVLVPLCGKTLDLLWLAQQGFSVRGIELSEKAVTDFFQEHQLQPNVSEEGAFKIFRAGAIEIRCGDFFALTPLDVADCATLYDRAALIALPEPMRERYAAHLQSIMPDCVGLVITLDYNQDEMPGPPFSVGHDEVQRLLGGAWELQVLHEQDVLGESWKFLQAGVKRLDERVYLVSSRGVQSMTPSLKSPPPRLE				NA	NA	NA	NA	NA
D1-36_03417	768	ygiD	COG3384	4,5-DOPA dioxygenase extradiol	ATGCTGCCCAGCCTGTTTATCTCCCATGGCTCCCCCATGCTTGCCCTGGAGCCCGGCGAAAGCGGTCCGGCCCTGACTCGCCTTGCCGCGCAGTTGCCCAGGCCCAAGGCCATCGTCGTTGTCTCAGCTCATTGGGAGAGTGATGAGCTGCTGGTCAGCGCCAACCCACGGCCACGCACCTGGCATGATTTCGGTGGTTTTCCACCCGACCTGTACAAGGTGCAATATCCCGCCCCAGGCGATCCTCGGTTGGCAACACAGGTCGCCGACCTGCTCAACGCCACGCAGCTGCCGGCACGCCTCGACACGGGACGGCCCGCCGACCATGGCGTCTGGGTGCCGCTGTCACTGATGTATCCCGAGGCGGATATTGCGGTGGTACAGGTCTCTTTGCCTAGCCGTCAGGGGCCAACGCTGCAAACGCGGGTGGGCCGCGCATTGGCAAGCCTGCGGGAACAAGGCGTGCTGGTGATCGGCTCCGGGAGCATCACCCACAACCTGCGGGACCTGGATTGGAACGCCGGCCCCGACAGCATCGAGCCGTGGGCCAAGGCGTTTCGCGATTGGATGGTTGCCAGGCTGGCGTCGAACGACGAGACGGCACTGCATGACTACCGCCGCCAGGCTCCCCATGCCGTGCGCAGCCACCCCAGCGACGAGCATTTGTTGCCGCTGTATTTCGCCCGCGGAGCCGGTGGTACGTTCAGCGTTGCCCATGCTGGATTTACCATGGGGACGCTGGGGATGGACATTTATCGGTTCGACTGA	MLPSLFISHGSPMLALEPGESGPALTRLAAQLPRPKAIVVVSAHWESDELLVSANPRPRTWHDFGGFPPDLYKVQYPAPGDPRLATQVADLLNATQLPARLDTGRPADHGVWVPLSLMYPEADIAVVQVSLPSRQGPTLQTRVGRALASLREQGVLVIGSGSITHNLRDLDWNAGPDSIEPWAKAFRDWMVARLASNDETALHDYRRQAPHAVRSHPSDEHLLPLYFARGAGGTFSVAHAGFTMGTLGMDIYRFD				NA	NA	NA	NA	NA
D1-36_03418	1674	deaD	COG0513	ATP-dependent RNA helicase DeaD	ATGACCCAGGAAATCGGCGGCTTCGCCGCTCTTGAACTTCATCCCAATATTGTCGCTGCAGTAGTCGCTACCGGCTATGAAGAGCCTTCGGCCATTCAGCAGCAGTCGATCCCGATCATTCTCGCCGGTCACGATATGATTGGTCAGGCGCAAACCGGTACGGGTAAAACCGCCGCGTTCGCACTGCCGATCCTGCACCGCATTGATCCGTCCAAGCGCGAGCCGCAAGCTCTGATCCTGGCCCCAACTCGTGAGTTGGCGCTACAAGTTGCAACCGCTTTCGAAACCTACGCCAAGCAAATGCCAGGCGTGACTGTTGTGGCTGTCTACGGCGGCGCGCCGATGGGCCCACAACTGAAAGCAATCCGTAATGGCGCACAGATCGTTGTCGCCACCCCGGGCCGTCTGTGCGACCACCTGCGTCGCGACGAAAAAGTCCTCGCCACCGTGAACCACCTGGTTCTCGACGAAGCGGACGAAATGCTCAAGCTGGGCTTCATGGACGACCTGGAAGTCATCTTCAAGGCCATGCCTGAGACTCGCCAGACCGTCCTGTTCTCGGCCACCTTGCCACAATCGATCCGTGCCATCGCCGAACGCCATCTGCGCGATCCGAAGCACGTGAAGATCCAGAGCAAGACCCAGACCGTCACCGCGATCGAGCAGGCTCACCTGCTGGTTCACGCAGACCAGAAGACTTCCGCCGTTCTCAGCCTGCTGGAAGTCGAAGACTTCGACGCCCTGATCATGTTCGTGCGCACCAAGCAAGCGACCCTGGACCTGGCCAGCGCCCTTGAAGCCAAAGGCTACAAAGCCGCCGCGCTGAACGGTGACATTGCCCAGAACCAGCGTGAGCGCGTGATCGACTCCCTCAAGGATGGCCGCCTGGACATCGTTGTGGCGACCGACGTCGCGGCCCGTGGCCTGGACGTTCCGCGTATCACCCACGTGTTCAACGTCGACATGCCGTACGATCCGGAGTCCTACGTACACCGTATCGGTCGTACCGGCCGTGCCGGTCGCGAAGGCCGTGCGTTGTTGTTGGTCACCCCGCGTGAGCGCCGCATGCTGCAAGTGATCGAGCGTGTGACGGGTCAGAAGGTCGCTGAAGTCCGCCTGCCGGACGCCCAGGCCGTTCTCGATGCCCGCATCAAGAAACTGACCAACAGCCTGTCGCCGCTGGTGGCTGACGCCGAATCGACCCACGGTGATCTGCTCGATCGCCTGACCGCCGACATCGGTTGCACCCCACGTGCCCTGGCCGCTGCCCTGTTGCGCAAGGCCACCAACGGCCAAGCGCTGAACCTGGCTGCAATCGAGAAGGAACGCCCACTGGTGCCGAACAACGCACCGCGTGGCGACCGTCCTGAGCGCAGTGGCGATCGTCCGGACCGTGGTGATCGCGAGCGTCGTGCACCGATCCCGTTGGCCGAAGGCCGTGCTCGCTGCCGTACCGCGCTGGGTGCTCGTGACGGCATTGCCGCCAAGAACCTGCTGGGCGCGATCCTCAACGAGGGTGGCCTGGCTCGTGAAGCCATCGGTCGTATCCAGGTGCGTGACAGCTTCAGCCTGGTGGAACTGCCGGAAGATGGCCTGGAGAAGTTGCTGACCAAGCTCAAGGACACCCGCGTGGCCGGCAAGCAGCTCAAGCTGCGTCGCTACCGCGAGGATTGA	MTQEIGGFAALELHPNIVAAVVATGYEEPSAIQQQSIPIILAGHDMIGQAQTGTGKTAAFALPILHRIDPSKREPQALILAPTRELALQVATAFETYAKQMPGVTVVAVYGGAPMGPQLKAIRNGAQIVVATPGRLCDHLRRDEKVLATVNHLVLDEADEMLKLGFMDDLEVIFKAMPETRQTVLFSATLPQSIRAIAERHLRDPKHVKIQSKTQTVTAIEQAHLLVHADQKTSAVLSLLEVEDFDALIMFVRTKQATLDLASALEAKGYKAAALNGDIAQNQRERVIDSLKDGRLDIVVATDVAARGLDVPRITHVFNVDMPYDPESYVHRIGRTGRAGREGRALLLVTPRERRMLQVIERVTGQKVAEVRLPDAQAVLDARIKKLTNSLSPLVADAESTHGDLLDRLTADIGCTPRALAAALLRKATNGQALNLAAIEKERPLVPNNAPRGDRPERSGDRPDRGDRERRAPIPLAEGRARCRTALGARDGIAAKNLLGAILNEGGLAREAIGRIQVRDSFSLVELPEDGLEKLLTKLKDTRVAGKQLKLRRYRED				NA	NA	NA	NA	NA
D1-36_03419	756	speE_1		Polyamine aminopropyltransferase	ATGACAGAGGAGCGCGTCGAGCATTTGCTCGCCGAGGTGCACGACGAGTTCGGCATGATTCGCGTGTTCGAAGTGGCCGACTACCGGTTTCTCGAGTTCGGCGATGCCATCGAGCAGAGCTGCGTGTTCACGGCCGATCCCAGCTGGCTCGAATACGACTACACTCGCGCCATGCTCATCGGTGCGTTGTGTCACGAGCAGCCGGAAAGCGCGCTCTTCCTGGGATTGGGCGCAGGAACCTTGACCCAGGCCTGCCTCAAGTTTCTGCCGCTGGAAGATGTCGAGGCGATCGAGCTGCGCCCCGAGGTGCCGCGCCTGGCCATCGAATACCTGGGGCTGGATGACGATCCGCGCTTGTACATCCGCGTCGGCGATGCCCTGGAACTGCTTGAAACGGCGGAGCCGGCCGATCTGATTTTTGTCGACCTCTATACCGATGTCGGCCCCGGCGTAGGCCATCTGGCGTGGGGTTTTCTGGAAAACTGCCAGAAGCGCCTCAACCCGGGCGGCTGGCTAGTGATCAATCAATGGGCAACCGATGACGGCAAGCCCCTGGGCGCGGCATTGTTGCGTGGCCTGTACCACCGACACTATTGGGAATTGCCGGTGAAGGAGGGCAACGTGATCCTGATCGTGCCGGCGGACCTGGACCAGGCGCTGGACATGCAAGGCTTGGTTGCCCGGGCCGAAGGGCTGGCGCCACGATTGGGGTATTCGTTGCAATCGCTGATCAAGGCCATCCGCCCGGCGACGTGA	MTEERVEHLLAEVHDEFGMIRVFEVADYRFLEFGDAIEQSCVFTADPSWLEYDYTRAMLIGALCHEQPESALFLGLGAGTLTQACLKFLPLEDVEAIELRPEVPRLAIEYLGLDDDPRLYIRVGDALELLETAEPADLIFVDLYTDVGPGVGHLAWGFLENCQKRLNPGGWLVINQWATDDGKPLGAALLRGLYHRHYWELPVKEGNVILIVPADLDQALDMQGLVARAEGLAPRLGYSLQSLIKAIRPAT				NA	NA	NA	NA	NA
D1-36_03420	1347	aroH	COG3200	Phospho-2-dehydro-3-deoxyheptonate aldolase	ATGAGCCAACCCTGGAGCCCTGACAGCTGGCGCGCCCTGCCGATCCAGCAGCAACCCCGATACCCTGACGCGGCGCATCTGCAACGGGTCGAGCAGACCCTGGCCAGCTATCCGCCACTGGTGTTTGCCGGTGAAGCCCGGGAGTTGCGCCGTCAGTTCGCCGAAGTTACCCAGGGCCGGGCCTTTCTGTTGCAGGGCGGCGACTGTGCGGAAAGCTTCGTCGAATTCTCCGCCGCCAAGATCCGCGACACCTTCAAGGTGCTGCTGCAGATGGCGATCGTGATGACGTTCGCCGCCGGTTGCCCGGTGGTGAAGGTCGGGCGCATGGCCGGCCAGTTCGCCAAGCCACGCTCCGCCAATGATGAAACCATCGACGGCGTAACGCTGCCGGCCTACCGGGGTGACATCGTCAATGGCATCGGCTTCGACGAGCAAAGTCGTGTACCGGATCCGGAGCGGTTGCTGCAGTCCTACCACCAGTCCACCGCCACGCTGAACCTGCTGCGTGCGTTCGCCCAGGGCGGCTTTGCCGATCTGCACCAGGTGCACAAATGGAATCTGGACTTCATCGCCAACTCGGCCCTGGCGGAAAAATACAGCCACCTGGCCGACCGCATCGACGAAACCCTGGCCTTCATGCGCGCCTGCGGCATGGACAGCTCGCCACAACTGCGTGAAACCAGTTTTTTCACCGCCCACGAGGCGTTGCTGCTCAACTACGAAGAAGCCTTCGTGCGCCGCGACAGCCTGACCAATGACTATTACGACTGCTCGGCCCATATGCTGTGGATCGGCGACCGAACCCGTCAGCTGGACGGTGCCCACGTCGAGTTTCTGCGCGGGGTGAACAACCCGATCGGCGTCAAGGTCGGCCCCAGCATGAACCCTGACGACCTGATTCGCCTGATCGACGTCCTCAACCCGGACAATGACCCGGGCCGACTGAACCTGATCGCGCGCATGGGCGCCAACAAGGTTGGCGATCACCTGCCGCAACTGCTGCGCGCCGTACAGCGTGAAGGCAAGCAGGTGCTGTGGAGCTCCGATCCGATGCACGGCAACACCATCAAGGCCAGCAGCGGCTACAAGACCCGGGACTTTGCGCAGATCCTTGGCGAAGTAAAGCAGTTCTTCCAGGTCCATGAAGCCGAAGGGACTTACGCCGGCGGTATCCACATCGAGATGACCGGGCAGAACGTCACCGAATGCATCGGCGGCGCGCGCCCGATCACCGAGGACGGCCTGTCGGACCGCTACCACACCCACTGCGACCCGCGGATGAATGCTGATCAGTCGCTGGAGTTGGCGTTCTTGATTGCCGAGACCTTGAAGCAGGTTCGGCGGTGA	MSQPWSPDSWRALPIQQQPRYPDAAHLQRVEQTLASYPPLVFAGEARELRRQFAEVTQGRAFLLQGGDCAESFVEFSAAKIRDTFKVLLQMAIVMTFAAGCPVVKVGRMAGQFAKPRSANDETIDGVTLPAYRGDIVNGIGFDEQSRVPDPERLLQSYHQSTATLNLLRAFAQGGFADLHQVHKWNLDFIANSALAEKYSHLADRIDETLAFMRACGMDSSPQLRETSFFTAHEALLLNYEEAFVRRDSLTNDYYDCSAHMLWIGDRTRQLDGAHVEFLRGVNNPIGVKVGPSMNPDDLIRLIDVLNPDNDPGRLNLIARMGANKVGDHLPQLLRAVQREGKQVLWSSDPMHGNTIKASSGYKTRDFAQILGEVKQFFQVHEAEGTYAGGIHIEMTGQNVTECIGGARPITEDGLSDRYHTHCDPRMNADQSLELAFLIAETLKQVRR	PGPT0012920_1972	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
D1-36_03421	1230			hypothetical protein	ATGCCCGCGACTCTGTCCTTTACCCTCAAACAGGCCCGGCGTCTGGCGTTGGCCGCCCAAGGATTCGATGGGCGGCTACCGTCGGCGCCGGTCCAACCCTCCCGCCTCAACCGCCTGATCGAACGCCTTGGCGTCCTGCAGATCGATTCAGTCAACGCGTTGGTGCGCTCGCATTACCTCCCGCTGTTCTCCCGCCTCGGTCATTACAATCGCGATTTGCTCGATCAAGCTGCCTGGAGCCAGGGGCGTCGTCGCACGTTATTCGAATATTGGGGGCATGAGGCTTCGCTGCTGCCGATGACGATGTATCCGTCGATGCGCTGGCGCATGGCTCGGGCGGCGCGCGGCGAAGGTATCTACCAACAATTGGCGCGTTTCGGCCGCGAGCAGCAAGACGTGATCGGTCGAGTCCTGCAATCTGTTCGGGACCAGGGCGCGATTGGCGCGGGCAGCTTGTCCACGCGTCAGGAAAAGGCCGGGCCGTGGTGGGACTGGAGCGCGGAGAAGCATGCGCTGGAGTGGCTGTTCGCGGCGGGCGAGGTGACGGTGGCGGGGCGCCGTGGCTTCGAGCGCCTCTATGATTTGCCGGAGCGGGTCTTGCCGGCCTCGATCCTGCAGCAACCGCTGCCGGACGAAGCCCAGGCCCAGCGCACACTGCTGATTCATGCCGCCGAAGCCTTGGGGGTTGGCACCGAGAAGGATCTGCGTGACTACTTTCGCTTGAGCCCGGCGGACGCCCGCGAGCGGCTGGCTGAACTGGAAGAGGCCGGAGCACTGCTGCGCTGTCAGGTCCAGGGTTGGAAACAGCCGGCCTGGTGTCGCCCCCTCGTGAAAATTCCACGCAAGGTTGCCGCCAGTGCGCTGCTGTCACCGTTCGATTCGCTGGTCTGGGAGCGCAGTCGCACCGAGCGGCTGTTTGATTTTCGCTATCGCCTGGAGATCTACACGCCGGTACACAAGCGGGTGTATGGCTATTACGTCCTGCCGTTTCTACACAACGAGCGAATTGCCGCCCGGGTTGATTTGCGGGCGGAGCGGGCTTTGGGGCAATTGGCCGTGCATGCCGTGCACGAAGAGGTGCCCGGGATGGACGAGGAGGGCATGCTGGCGCTGGCGGCGAATCTGTGGAGCATGGCCCGGTGGTTGGGGTTGGAGCGGGTTCAACTCAATTGCCAGCGGGAGGGTGGGGTTCGGTTGGCGGTGGCATTGGCTGAAATTACCAGTGACTGA	MPATLSFTLKQARRLALAAQGFDGRLPSAPVQPSRLNRLIERLGVLQIDSVNALVRSHYLPLFSRLGHYNRDLLDQAAWSQGRRRTLFEYWGHEASLLPMTMYPSMRWRMARAARGEGIYQQLARFGREQQDVIGRVLQSVRDQGAIGAGSLSTRQEKAGPWWDWSAEKHALEWLFAAGEVTVAGRRGFERLYDLPERVLPASILQQPLPDEAQAQRTLLIHAAEALGVGTEKDLRDYFRLSPADARERLAELEEAGALLRCQVQGWKQPAWCRPLVKIPRKVAASALLSPFDSLVWERSRTERLFDFRYRLEIYTPVHKRVYGYYVLPFLHNERIAARVDLRAERALGQLAVHAVHEEVPGMDEEGMLALAANLWSMARWLGLERVQLNCQREGGVRLAVALAEITSD				NA	NA	NA	NA	NA
D1-36_03422	222			hypothetical protein	ATGAAAGGTCAGAAAGGGTATGTATCGATAGACAAGCACTCATTCCACCGGTTTTCCCTCAGCGATCTGCTGCACAAGTTTAGCCGCTGGTATGAATTGCACCATGAACGTGAATTGCTTGCCGGCCTGAGCGACGAGGCGCTCAAGGACATCGGCGTCAGCCGTGCCGACGTGGAAAAAGAAGTGGTCCGGCCATTCTGGGATGACCCAATGCACAAATGA	MKGQKGYVSIDKHSFHRFSLSDLLHKFSRWYELHHERELLAGLSDEALKDIGVSRADVEKEVVRPFWDDPMHK				NA	NA	NA	NA	NA
D1-36_03423	882	hdfR_7		HTH-type transcriptional regulator HdfR	ATGCAATACATCTCGGAGATTGATCCATTGTCGAGTTACCCGAGCATCGATACGGAAGTGCTGCGGACCTTTGTCGCGATCGCCGATCAGGGTGGTTTCACCCGTGCCGGGGAATTGGTCAACCGTACGCAATCCGCGGTCAGCATGCAGATGAAGCGCCTGGAGGAAGACGTGTTGCAGCGTCGGCTGTTCGAGCGCGACGGGCGACAAGTCAAGCTCACCGCCGAGGGCCAGGTGTTGCTGGGTTATGCCCGGCGCATCCTCAAGTTGCACAGCGAAGTGTTCAATACCCTGCGCGAACCCCATATGGTCGGCACGGTCCGCATCGGCACACCGGATGATTATGTGATGCGCTTTCTGCCAGGCATCCTGCAGCGCTTCGCCCAGTTCTATCCGCTGATCGAAATCGAGGTGCATTGCGAATCATCCAAGCAATTGCTGCTGCGCCAGGACCTGGACCTGTCCATCGTCACTCGCAAGCCTGGGGATGAAATAGGCCAGTTGCTGCGCAAGGAACGTTTTGTCTGGGCCGAAGCGGCGTGCTTCAACACCCATGAGCAAACGCCCCTGCCGCTGGCTATGTTCAACAGCGATTGCTTCTGCCGGCAGTGGGCCTGCAATGCGCTGGACGCCATGGGACGCGATTACCGCGTGGCCTATAACAGCTCGAGCTTGTCGGCGATCATGGCGGTGGTAGGCGCGGGCCTGGCAATCACTGCGCAACTGGAAAGCCTGCTGACCCCTGACATGCGCGTCCTCGGCGAGGCCGAGAACCTGCCGGAGCTGCCCGAGGCCAGCATCATGCTGATCCGCAACCTGCACAATCCGTCGCCGATCACCGAATGCCTGGCCGAACACATCGTGGAAGGCTTCAAACTTTAA	MQYISEIDPLSSYPSIDTEVLRTFVAIADQGGFTRAGELVNRTQSAVSMQMKRLEEDVLQRRLFERDGRQVKLTAEGQVLLGYARRILKLHSEVFNTLREPHMVGTVRIGTPDDYVMRFLPGILQRFAQFYPLIEIEVHCESSKQLLLRQDLDLSIVTRKPGDEIGQLLRKERFVWAEAACFNTHEQTPLPLAMFNSDCFCRQWACNALDAMGRDYRVAYNSSSLSAIMAVVGAGLAITAQLESLLTPDMRVLGEAENLPELPEASIMLIRNLHNPSPITECLAEHIVEGFKL				NA	NA	NA	NA	NA
D1-36_03424	750			hypothetical protein	GTGATCGAGGTCGTGCTGTATTTGCTGTTGGGCGCCGCGTTGGGCACCTTGGGGGGATTGTTCGGCATCGGTGGCGGGCTGATTGCGATACCGGTGCTGGGCGTATGGTTCGGCCTGGACCAGCAGATTGCCCAGGGCACGGCATTGGTGATGGTGGTGCCTAACGTCATGCTGGCGCTGTGGCGTTATCACCAGCGCAATCGCATCGAGTTGCGTCATGTCCTGCCGTTGGCGTCCATGGGATTCTGCTTCGCCTGGCTCGGCTCTATCTGGGCCGTGGGCGTTGACGCCGAAAGCATGCGCATCGGCTTCGTGGTGTTCTTGGTTGTTTTGGCTGCATATAACCTCATCCGAATGTTCACCACCACGGCGCCCGCTTCGGCGCAGATGCGCCACGGTTGGCCATGGCTCGGCGTGTTGGGTGCGGCTTCAGGAACGATGGGTGGCCTGTTTGGTGTGGGTGGGGCCGTTGTCGCAACGCCGTTCCTCACCAGTGTGTTCGGCACGACTCAGGTAGTTGCCCAGGGCCTGTCGCTGTCGTTGGCCTTGCCCAGTACCGGCGTGACCCTTGTCACTTATGCGTTTCATCATGAAGTGGACTGGTGGATCGGCGTGCCGCTGGCAGTCGGTGGGCTGATGAGCATCAGCTGGGGCGTGAAGGTCGCCCACGCCTTGCCGGAGCGACTGTTGCGTGGGCTGTTCTGCGGTTTCCTGGTGCTGTGCGCCGTACTGCTCATCTTTAAAGTTTGA	MIEVVLYLLLGAALGTLGGLFGIGGGLIAIPVLGVWFGLDQQIAQGTALVMVVPNVMLALWRYHQRNRIELRHVLPLASMGFCFAWLGSIWAVGVDAESMRIGFVVFLVVLAAYNLIRMFTTTAPASAQMRHGWPWLGVLGAASGTMGGLFGVGGAVVATPFLTSVFGTTQVVAQGLSLSLALPSTGVTLVTYAFHHEVDWWIGVPLAVGGLMSISWGVKVAHALPERLLRGLFCGFLVLCAVLLIFKV				NA	NA	NA	NA	NA
D1-36_03425	462	ohrR_2		Organic hydroperoxide resistance transcriptional regulator	ATGAGCACCCAACGCGACACCCCCGACCCTTGCGAAGCCCTTTTGCTGGACAACCAGGTCTGTTTCGCCCTGCACTCGACATCGCTGTTGATGACCAAGGTGTACAAGCCACTGCTCCAAGCCCTGGGCCTGACCTATCCGCAGTATCTGGCGATGATGGTGCTGTGGGAAAAAGACGGTTTGACCGTCGGTGAAATCAGCACCCGCCTGCTCACTGACCCGGGCTCCCTGACACCATTGCTCAAGCGCCTGGAGGCCGAGGGCCTATTGAGCCGCACCCGCAGCCGTGAGGACGAGCGCGTGGTGATCGTCGAGCTCACCGAGCAAGGCCGCGCCTTGCAGAAAAAGGCCCTCGACATCCCCCAATGCATCCTCGCCGCCAGCGGCCAGACGTTGGAGCAACTGAAGAAACTGCAGCATGATCTCCAGCAGTTGCGTGGGCACTTGCAAGACAGCCTGTAA	MSTQRDTPDPCEALLLDNQVCFALHSTSLLMTKVYKPLLQALGLTYPQYLAMMVLWEKDGLTVGEISTRLLTDPGSLTPLLKRLEAEGLLSRTRSREDERVVIVELTEQGRALQKKALDIPQCILAASGQTLEQLKKLQHDLQQLRGHLQDSL	PGPT0013155_2357	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775	NA	NA
D1-36_03426	420	ohrB_2	COG1764	Organic hydroperoxide resistance protein OhrB	ATGAAAACGCTCTACACCGCAATCGCAACTTCCACCGGCGGCCGTGACGGTCGTGCTATCTCCAGCGACAACATTCTCGACGTCAAACTCGCCACGCCAAAAGAACTCGGCGGCGCAGGCGGTGCGGCGACCAACCCTGAACAACTGTTCGCCGCCGGTTACTCGGCCTGCTTCATCGGCGCGTTGAAATTCGTCGCCAGCCAGACCAAACGCAAGATCCCAGACGACGCCTCTATCTCTGCCCATGTCGGCATCGGCCAGATTCCTGGTGGTTTCGGTCTCGACATCGACCTGCACATCAGCCTGCCGGGCCTCGACCAGGCCGACGCCCAGAGCCTCGTCGATGCCGCGCACCAGGTGTGCCCTTACTCCAACGCCACCCGCGGCAACGTTGATGTGCGCCTGCACGTGACCGTTTGA	MKTLYTAIATSTGGRDGRAISSDNILDVKLATPKELGGAGGAATNPEQLFAAGYSACFIGALKFVASQTKRKIPDDASISAHVGIGQIPGGFGLDIDLHISLPGLDQADAQSLVDAAHQVCPYSNATRGNVDVRLHVTV	PGPT0013160_3505	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
D1-36_03427	1014	nlhH	COG0657	Carboxylesterase NlhH	ATGAGCACTTTCAGCAAAACCCTGACCGGCGCCCTTCTCGCCCTGAGCGTTAGCAACGCTTTCGCCGACGGCATCGTCGAACACAACACCCAGGCCTTCCTCGACGCGCTGAACGCCGGCACCGGCAAGCCGCTGGAGCAGTTGTCGCCCAAAGACGCCCGCGCAGTACTGGTCGGCGCCCAGGCCGGTGTGAAGTTGACGCTGCCCAAGGCCGATGTCAGCGAGAAAACCATCAAGGTCGATGGACAATCGATCAGCCTGACCATCGTTCGTCCGGCCGGTATCAAGGGTGAGCTGCCCGTGTTCATGTTCTTCCACGGCGGAGGCTGGGTGCTGGGGGACTTCCCAACCCATGAACGCCTGGTTCGCGACCTGGTGGCGGGTTCGGGCGCCGTCGCGGTGTTTGTCAACTACACGCCTTCACCCGAAGCGCGTTACCCGGTGGCGATCAACCAGGCTTATGCCGCAACCAAGTGGGTGGCCGAGCACGGTAAGGAAATCAATGTCGATGGCAAGCGCCTGGCGGTAGCGGGCAACAGCGTTGGCGGTAACATGGCTGCGGTCGTGGCGCTGATGGCCAAGGACAAGGGCACCCCGGCGATCCGCTTCCAAGCGCTGTTATGGCCGGTGACCGATGCCAATTTCGAGACGGCGTCCTACAACCAGTTCGCCGAAGGGCATTTCCTCAGCAAGAACATGATGAAGTGGTTCTGGGACAACTACACCACCGATGCCGGGCAGCGCAACGAGATCTATGCGTCGCCATTGCGGGCAACCACCGCGCAGCTCAAGGGCCTGCCGCCCGCGCTGGTGCAGACTGCCGAGGCTGACGTACTGCGCGACGAAGGCGAAGCCTACGCCCGCAAACTGGACGCGGCCGGCGTGCCAGTCACGGCTGTCCGTTACAACGGCATGATCCACGACTATGGCTTGCTCAACGTCGTGAGCCAGGTGCCAGCGGTGCGCTCGGCGATGTTGCAAGCGTCCCAAGAACTCAAGGAACACCTGAAGTAA	MSTFSKTLTGALLALSVSNAFADGIVEHNTQAFLDALNAGTGKPLEQLSPKDARAVLVGAQAGVKLTLPKADVSEKTIKVDGQSISLTIVRPAGIKGELPVFMFFHGGGWVLGDFPTHERLVRDLVAGSGAVAVFVNYTPSPEARYPVAINQAYAATKWVAEHGKEINVDGKRLAVAGNSVGGNMAAVVALMAKDKGTPAIRFQALLWPVTDANFETASYNQFAEGHFLSKNMMKWFWDNYTTDAGQRNEIYASPLRATTAQLKGLPPALVQTAEADVLRDEGEAYARKLDAAGVPVTAVRYNGMIHDYGLLNVVSQVPAVRSAMLQASQELKEHLK				NA	NA	NA	NA	NA
D1-36_03428	570	efp	COG0231	Elongation factor P	ATGAAAACTGGTAAAGAACTCAAACCCGGTACCGTGATTCGTATCGACAACGATCCTTGGCTGGTTCAGAAAGCTGAATTCACCAAGTCGGGTCGTAACAGCGCGATCATGAAGACCAAGCTGAAAAACCTGCTGACCGGCTACAAGACCGAAACCGTCTACGGTGCGGACGACAAGCTGGACGACGTGATCCTGGACCGTAAAGAAGCGACCCTGTCCTTCATCAGCGGCGACTCCTACACGTTCATGGACACCACTGACTACACCATGTACGAACTGAACGCCGAAGACATCGAAAGCGTTCTGCCATTCGTTGAAGAAGGCATGACCGACGTCTGCGAAGCCGTATTCTTCGAAGGCCGCCTGGTTTCCGTAGAACTGCCGACCACCATCGTGCGTCAGGTTGACTACACCGAAGGCTCCGCTCGCGGTGATACTTCCGGCAAGGTGATGAAGCCTGCCAAACTGAAGAACGGTACCGAGCTGTCGGTTGCTGACTTCATCGAAATCGGCGACATGATCGAGATCGATACCCGCGAAGGCGGTTCCTACAAAGGCCGCGCTAAATAA	MKTGKELKPGTVIRIDNDPWLVQKAEFTKSGRNSAIMKTKLKNLLTGYKTETVYGADDKLDDVILDRKEATLSFISGDSYTFMDTTDYTMYELNAEDIESVLPFVEEGMTDVCEAVFFEGRLVSVELPTTIVRQVDYTEGSARGDTSGKVMKPAKLKNGTELSVADFIEIGDMIEIDTREGGSYKGRAK	PGPT0016205_966	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	OTHER_MOTILITY_REGULATING_FUNCTIONS	MOTILITY-SWARMING_REGULATOR,PGPT0016205-efp-K02356	NA	NA
D1-36_03429	1134			hypothetical protein	ATGACCGTGCGCTGGGATATTTTTTGCACCGTCGTGGATAACTTTGGCGACATCGGCGTCACGTGGCGCCTGGCCCGGCAATTGGTGGCCGAGCATCGATGCGCGGTGCGGCTTTGGGTCGATGACTTGCGTGCTTTCGAGCGGCTGTGCCCCGAGATCGACGTCGGCCTTTGTGAACAATGGCAGGAGGGTGTACAGGTCCGACACTGGCCCACGCAATGGTGCGACACCGACGCGGCGGACGTTGTGATAGCAGCCTTCGCCTGCCAATTGCCCAGTGCCTATATGGACGCGATGGCCGAACGCGAGGTGACGCCGTTATGGATGAACCTCGACTACTTGAGCGCCGAAGACTGGGTCATCGGTTGCCATGGCCTGCCGTCGGTCAAGTACAAGCATGTACAGAAATATTTCTTTTTTCCTGGTTTCCAAGAGGGAACGGGGGGCTTGCTGCGTGAGGCCGGCCTGCTGGAGCATCGTCGGCTGTTTCAACAGGATGACGTGGCGCAGCGAAATTTCCTGCATGGATTGGGCGTCGTGCGGGAACCCGGAGCGCGCCTGATCTCGCTGTTCGCCTATGAGAACGCCGGACTGGCGAGCTGGTTCGAGGCGATGGCGACCGATGCGCGCGCATCCCATGTATTGGTTCCCGAAGGTCGGGTCCTGGGCGATGTGGAGCGCTGGCTGGGCGTGGATGGCTTGGAGTCCGGCGCGCTGCATCGCCGCGGCGCCCTGACGGTGCAGGTGCTGCCCTTTATTAGGCAGGATGATTACGACCGGCTCCTGTGGTGCTGCGATTTCAACGCTGTGCGTGGCGAAGACTCGTTCGTACGTGCGCAATGGGCCGGGCGGCCGTTGCTCTGGCACATCTACCAGCAGGAAGAAGACGTCCATCTGGAAAAACTCGAAGCGTTTCTCGCGTTGTACACCCAAGGTCTTTCGGCTTCGGCGGAAAAAGCGATCAGCGGTCTTTGGCGGGCCTGGAATGCCGGCCAGGACATGGCCGAGCACTGGAAAGCCACTGGCGAAGCGCGGCGTGAACTGGCCGAACACGCCCAGGCATGGTGCCTGGAACAGGCCTCGCGAGCCGATCTCGCCACGGCGCTGGTGAAGTTTTACCGAAATTGGATATGA	MTVRWDIFCTVVDNFGDIGVTWRLARQLVAEHRCAVRLWVDDLRAFERLCPEIDVGLCEQWQEGVQVRHWPTQWCDTDAADVVIAAFACQLPSAYMDAMAEREVTPLWMNLDYLSAEDWVIGCHGLPSVKYKHVQKYFFFPGFQEGTGGLLREAGLLEHRRLFQQDDVAQRNFLHGLGVVREPGARLISLFAYENAGLASWFEAMATDARASHVLVPEGRVLGDVERWLGVDGLESGALHRRGALTVQVLPFIRQDDYDRLLWCCDFNAVRGEDSFVRAQWAGRPLLWHIYQQEEDVHLEKLEAFLALYTQGLSASAEKAISGLWRAWNAGQDMAEHWKATGEARRELAEHAQAWCLEQASRADLATALVKFYRNWI				NA	NA	NA	NA	NA
D1-36_03430	387			hypothetical protein	ATGCCTGATCATCCCCCCGCCCCGCGCCTCACAGCCCTGCGATTGACCGTCAGTATTGCCCTGGGCCTGTGGCTGGGGTTTGTCGCCATCGTTCTGACGGGCTGGTTGCTGTCCAGGTTCCTGTTCGATGAACAACTGGCCCCGGTGGCCGCCGCGGTCCATCAACTGGCGCAACCGCCAGCGGTGCAACCGGCGCCCGAGCCGCCCACGCCGATGTTCGAGCAGTACCAGCAGAATCTGCAGAAGAACGAGCAGCGCCAGGCGTTGGAACAGGTGCGCAACAATACTCGCAACCTGTCCAACCCCAAATGCCAGTTCTGGCTGCAACAGGACCAGAACGCGCCCAGCGAGAAAAGCCGCGCCAATGTCCTGCAATTTTGCGAGTGA	MPDHPPAPRLTALRLTVSIALGLWLGFVAIVLTGWLLSRFLFDEQLAPVAAAVHQLAQPPAVQPAPEPPTPMFEQYQQNLQKNEQRQALEQVRNNTRNLSNPKCQFWLQQDQNAPSEKSRANVLQFCE				NA	NA	NA	NA	NA
D1-36_03431	483			hypothetical protein	ATGAACAAGCAGACCGTTCACCAATTGATCCTCGACAAGCTCAAGGTTGACCTCGACGTCGCCGAGCGCGCCGCGCAAACCGCTTATGAAACCGCGACCCACGAGGAAAACATCGCCGAAAACAAGTACGACACCCTTGGTCTCGAAGCGTCCTACCTTGCCGCGGGGCAAGCCAGGCGCGTAGAGGAAATCCGCCAGGCCCTCGCCCTCTGCCAGAACCTGGCGCTAAGGCCTTACGATGCGCAACGCGGCATCCAGGTCGGCACCTTGATCGGACTGGAAGATGAAGATGGCCGCCAACAGTGGCTGTTCCTGGGGCCGGATGCGGCGGGGCTGAAGGTGTCGCTGGTGGGTCAGCCGATCACCGTCATCACCCCTCGCTCGCCGCTGGGCCGAGGCCTGCTGGGCAAATTCGAAGGGGATGAAGTGGAGATCGTCGTGGCGGGCGCCCGGCAACAGTTCGCTGTCACCGAGGCGATTTAA	MNKQTVHQLILDKLKVDLDVAERAAQTAYETATHEENIAENKYDTLGLEASYLAAGQARRVEEIRQALALCQNLALRPYDAQRGIQVGTLIGLEDEDGRQQWLFLGPDAAGLKVSLVGQPITVITPRSPLGRGLLGKFEGDEVEIVVAGARQQFAVTEAI				NA	NA	NA	NA	NA
D1-36_03432	975	cysB_2		HTH-type transcriptional regulator CysB	ATGAAGCTTCAACAATTGCGCTACATCTGGGAAGTGGCGCACCACGACCTCAACGTTTCCGCTACCGCCCAAAGCCTCTACACGTCGCAACCTGGCATCAGCAAGCAGATCCGCCTGTTGGAAGACGAACTGGGCGTCGAAGTCTTCGCCCGCAGCGGCAAGCACCTGACCCGTGTCACCCCGGCCGGTGAGCGCATCATCACCACGGCTGGCGAGATCCTGCGCAAGGTCGAAAGCATCAAGCAGATCGCCCAGGAATTTTCCAACGAGAAGAAAGGCACCCTGTCCATCGCGACCACGCACACCCAGGCCCGTTATGCGCTGCCGCCGGTGATCAGCAATTTCATCAAGCAATATCCGGACGTGGCGCTGCACATGCACCAGGGTTCGCCGATGCAGATCGCCGAAATGGCCGCCGATGGCACCGTGGACTTCGCCATTGCCACCGAAGCCCTGGAGTTGTTCGGCGACCTGGTGATGATGCCGTGCTATCGCTGGAACCGCTGCGTGGTGGTGCCCCAGGGCCATCCGTTGACCAAGCTGCCGAAGCTGACCCTCGAGGCCTTGGCCGAATACCCGATCGTGACCTACGTGTTCGGCTTCACCGGCCGTTCGAAACTCGACGAAGCCTTCAGCCATCGTGGCCTGACGCCGAAGGTGGTGTTCACCGCCGCCGACGCCGACGTGATCAAGACTTATGTACGCCTCGGCCTGGGTGTGGGGATCGTGGCGAAGATGGCCGTCGATACCAAGCTCGACAATGACCTGGTGGTGTTGGATGCCAGCGAGCTGTTCGAATCCAGCGTGACCAAGATCGGCTTCCGTCGTGGCACCTTCCTGCGTGGCTTCATGTGCGATTTCATCGAGAAATTCGCGCCGCACCTCACTCGGGAGGTGATGGCCAAGGCCATCCAGTGCCACAACAAGCAGGAACTCGAAGAGCTGTTCGACGGCGTCGAATTGCCGGTGCACTAA	MKLQQLRYIWEVAHHDLNVSATAQSLYTSQPGISKQIRLLEDELGVEVFARSGKHLTRVTPAGERIITTAGEILRKVESIKQIAQEFSNEKKGTLSIATTHTQARYALPPVISNFIKQYPDVALHMHQGSPMQIAEMAADGTVDFAIATEALELFGDLVMMPCYRWNRCVVVPQGHPLTKLPKLTLEALAEYPIVTYVFGFTGRSKLDEAFSHRGLTPKVVFTAADADVIKTYVRLGLGVGIVAKMAVDTKLDNDLVVLDASELFESSVTKIGFRRGTFLRGFMCDFIEKFAPHLTREVMAKAIQCHNKQELEELFDGVELPVH	PGPT0002965_328	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002965-cysB-K13634	NA	NA
D1-36_03433	501			hypothetical protein	ATGATTCGTTCGATGCTGTACGCCACAGACCTGGGCCTTTATGCCCCTTATGTGATGCAGCATGCCTTGGCGTTGGCACGGACGTTTGAAGCCGAGTTGTATGTAGTGCATGCGGTGGAACCGATGGGGCTGTTCGCCGAGTCGGTGTTGCAAAGCTACCTCGACGAGCACGCGCTGAACGAATTTCATCGCCAGGGTCTGAATACGGTGATGGCCAATATCGAGCAGCGGGTACTCGACAATTTTCGCGAGGAATTGGGGGAGGGGCAGCAGGACTTGAAGCTGATCAAGTCGGTGAGGGTATTCCAGGGTGATCCTTCCCAGGTCATTCTCGAGCAGGCCGCGAAACTCTCCGTCGATTTGTTGATCGTAGGCAGTCATTGCCAGGGGGCGAATGGCGAGACCCCTTTGGGGAGGACCGCCGCACGGGTATTGCAGTTATCCCGGGTGCCGGTCTACCTGGTGCCGCTGGTGCAGCGCCGGCGCCACGGGGAGACCTAA	MIRSMLYATDLGLYAPYVMQHALALARTFEAELYVVHAVEPMGLFAESVLQSYLDEHALNEFHRQGLNTVMANIEQRVLDNFREELGEGQQDLKLIKSVRVFQGDPSQVILEQAAKLSVDLLIVGSHCQGANGETPLGRTAARVLQLSRVPVYLVPLVQRRRHGET				NA	NA	NA	NA	NA
D1-36_03434	906			hypothetical protein	ATGGCAAATAACATCGATGACAAGCTGGTGCTGGCGATTTCATCGCGGGCCTTGTTCGATTTGCGCGAAAGCCACAAGGTCTATCTGTCGAGTGGCGTCGAGGCCTATCGGCAATACCAGATCGAGCATGAAGACGAGGTCCTGGAGCCGGGGGACGCCTTCGCCCTGGTGCAGAAACTGCTCAACCTCAACGAGCACCTTGGGCGCGCCCGTGTCGAAGTCATCCTGGTGTCGCGAAACAGCGCCGATACTGGCCTGCGGGTATTCAACTCGATCCACCATTATGGCTTGGCGATTTCCCGCGCCGCATTCGTTGGGGGCCGCAGTCCATACCCTTATCTGAAGGCCTTCGGCTGCGACCTGTTTTTGTCCACCCATGCCGAAGACGTGCGCAGCGCCCTGGACGCGGGATTTGCGGCCGCGACAATTCTGTCGGGGGGCGCCAGCCGTGCCGCCAGCGAGGAATTGCGCATTGCTTTCGACGGTGATGCGGTGCTGTTTTCCGACGAGTCGGAACGCGTCTATCAGAGCGGTGGCCTGGAAGCCTTCCAGGCCAGTGAACGCCAGGCCGCGCGCGAGCCGCTGCGAGGGGGGCCATTCAAGGGCTTCCTGGCGGCGCTCAATGCGCTGCAACGCGAGTTTCCCGAGGATGCTTGCCCGATCCGCACGGCATTGGTGACGGCCCGTTCGGCGCCGGCCCACGAACGGGTCATTCGCACGTTGCGCGAATGGGATATCCGACTCGACGAGTCGCTGTTCCTGGGCGGCTTGACCAAGTCGGCCTTTCTCGAGGCTTTTGCCGCCGACGTGTTTTTCGACGACCAGACCGGACATTGCGAGCTTGCCCGGGAAGTGGTCGCCACCGGGCACGTGCCCCATGGCATCAGTAACGAAGTGAAGCTCTGA	MANNIDDKLVLAISSRALFDLRESHKVYLSSGVEAYRQYQIEHEDEVLEPGDAFALVQKLLNLNEHLGRARVEVILVSRNSADTGLRVFNSIHHYGLAISRAAFVGGRSPYPYLKAFGCDLFLSTHAEDVRSALDAGFAAATILSGGASRAASEELRIAFDGDAVLFSDESERVYQSGGLEAFQASERQAAREPLRGGPFKGFLAALNALQREFPEDACPIRTALVTARSAPAHERVIRTLREWDIRLDESLFLGGLTKSAFLEAFAADVFFDDQTGHCELAREVVATGHVPHGISNEVKL	PGPT0013395_3088	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
D1-36_03435	966			hypothetical protein	ATGACGCAGGCAGGCGCTAGGCCCGGGAGCGGCAGGATCGGCATGATCGGCACCGGGGCGATCGGTGGGTTTTACGGTGTGATGCTGGCCCGGGCCGGTCACGACGTTCACTTCTTGTTGCGCAGCGAATTTGCCGCCGTCGCCGAGGGCGGCCTGCGGATCGACAGCGATGTCCATGGCACGCTGAGCCTCGACCCGGTCCAGGCGTACCGCTCGGCTGAGCAGATGCCGCCTTGCGAGTGGCTGCTGGTGGGCGCCAAGACCACCAGCAATGCCGACCTGGCACCGGCGATCATCCAGGCGGCGGCCGATGGGGCGAAAATCCTGTTGCTGCAGAACGGCCTCGATGTCGAAGACGATCTGCGGCCGTTGTTGCCCGATTCGCTGCACCTGTTGGGTGGCCTGTGCCTGATCTGCGTGAATCGTGTCGGCCCGGGCGTCATCGCTCACCAGGCGCTCGGTGCGGTCAACATCGGCTATCACAGTGGTCCCTGCCAGGACCAGGCTGAGCGCATGGCGATCGTCGAAGAGGCGGCGGGTCTGTTCCGTGGCGCCGGCATCGACTCCCAGGCGATGCCCGACCTGCAACAGGCTCGTTGGCAGAAGCTGGTGTGGAACGTACCGTATAACGGTCTGTCGGTGCTGCTGGGCGCCAGCACCTCGCCGTTGATGGCGAATGATCACAGTCGCGGGCTGATCCAGGCGCTCATGGGCGAGGTGGTACGCGGTGCGCAGGCCTGCGGCCATCAGATCGCGCCTGGGTATGCGGATTATCTGTTCACGATGACCGAAAAAATGCCCGACTATTGGCCGAGCATGTATCACGATTACGCCCATAAACGGCCGCTGGAGCTGGAGGCAATCTACGCCCGGCCATTGGCGGCGGCCAAGGCGGCAGGCTGCGAGCTGCCGAAGATCGAAGCGTTGCATCAGGCGCTGGCGTTCCTGGATCGCCGCAACCGTTGA	MTQAGARPGSGRIGMIGTGAIGGFYGVMLARAGHDVHFLLRSEFAAVAEGGLRIDSDVHGTLSLDPVQAYRSAEQMPPCEWLLVGAKTTSNADLAPAIIQAAADGAKILLLQNGLDVEDDLRPLLPDSLHLLGGLCLICVNRVGPGVIAHQALGAVNIGYHSGPCQDQAERMAIVEEAAGLFRGAGIDSQAMPDLQQARWQKLVWNVPYNGLSVLLGASTSPLMANDHSRGLIQALMGEVVRGAQACGHQIAPGYADYLFTMTEKMPDYWPSMYHDYAHKRPLELEAIYARPLAAAKAAGCELPKIEALHQALAFLDRRNR	PGPT0008745_2057	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,PGPT0008745-panE|apbA-K00077	NA	NA
D1-36_03436	1077	aroF_2	COG0722	Phospho-2-dehydro-3-deoxyheptonate aldolase, Tyr-sensitive	ATGGCTGATTTACCGATCAATGACCTAAACGTCGCCTCCAACGAGACCCTCATCACGCCTGACCAACTCAAGCGCGATATCCCCCTGAGCGACGCTGCCCTGCGCACCGTGACCAAGGGCCGGGAAGTCATCCGCAACATTCTCGACGGCACCGACCATCGCCTGTTCGTGGTCATCGGGCCTTGCTCGATCCATGACATCAAGGCTGCCCACGAATACGCCGAGCGCCTGAAGGTACTCGCCGCGGAAGTTTCCGACACGTTGTACTTGGTAATGCGGGTGTATTTCGAGAAGCCTCGGACGACCGTTGGCTGGAAGGGCCTGATCAACGACCCGTACCTGGACGACTCCTTCAAGATCCAGGACGGCCTGCATATCGGTCGCCAATTGCTGCTGGACCTGGCCGAAATGGGCCTGCCCACCGCCACCGAAGCCCTGGACCCGATCTCTCCGCAATATTTGCAGGACCTGATCAGCTGGTCGGCCATCGGCGCACGCACCACCGAATCCCAGACCCACCGGGAAATGGCCTCCGGCCTGTCCTCGGCGGTGGGCTTCAAGAACGGCACCGACGGCGGCCTGACTGTGGCGATCAACGCCTTGCAGTCGGTTTCCAGCCCGCACCGTTTCCTGGGCATCAACCAGGAAGGTGGCGTCTCGATCGTCACCACCAAGGGCAACGCCTACGGCCACGTGGTATTGCGCGGCGGCAACGGCAAGCCGAACTATGATTCGGTCAGTGTCGCCCTGTGTGAGCAGGCGCTGGACAAGGCCAAGGTCAAGCCGAACATCATGGTCGATTGCAGCCACGCCAACTCCAACAAGGACCCGGCGCTGCAGCCGCTGGTGATGGAAAACGTTGCCAACCAGATCCTGGAAGGCAACCAATCAATCATCGGCCTGATGGTGGAAAGTCATTTGAACTGGGGCTGCCAGGCGATCCCGAAAGACCTCGCCGATTTGCAGTACGGCGTCTCCATCACCGACGCCTGCATCGACTGGGGCACCACCGAGAAAACCTTGCGCAGCATGCACGCCAAGCTCAAGGACGTGCTGCCAAAGCGTCAGCGCAGCTGA	MADLPINDLNVASNETLITPDQLKRDIPLSDAALRTVTKGREVIRNILDGTDHRLFVVIGPCSIHDIKAAHEYAERLKVLAAEVSDTLYLVMRVYFEKPRTTVGWKGLINDPYLDDSFKIQDGLHIGRQLLLDLAEMGLPTATEALDPISPQYLQDLISWSAIGARTTESQTHREMASGLSSAVGFKNGTDGGLTVAINALQSVSSPHRFLGINQEGGVSIVTTKGNAYGHVVLRGGNGKPNYDSVSVALCEQALDKAKVKPNIMVDCSHANSNKDPALQPLVMENVANQILEGNQSIIGLMVESHLNWGCQAIPKDLADLQYGVSITDACIDWGTTEKTLRSMHAKLKDVLPKRQRS	PGPT0012920_3899	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
D1-36_03437	282			hypothetical protein	ATGAGCGAGGCGGTTACCATCCACCATGACCAGGCTGGTCATCAGTTCGAGACCATTGTGGACGGTCATCGTGCCTATCTGACCTACATGGACCTGGGCAAGCAGACCCTGGATATCTATCGCACGTTCGTGCCCAACGCGTTGCGTGGCAGGGGAATCGCGGCGAAGCTGACTGAAGCGGCCCTGCAGTACGCCGAGGAAATGGGCTACACGGTGATCCCGTCCTGCTCCTATGTGGAGCGATACATGGAGCGTCACCAGCGGCACGCGGCGAAGCTCTGA	MSEAVTIHHDQAGHQFETIVDGHRAYLTYMDLGKQTLDIYRTFVPNALRGRGIAAKLTEAALQYAEEMGYTVIPSCSYVERYMERHQRHAAKL				NA	NA	NA	NA	NA
D1-36_03439	252			hypothetical protein	ATGAACAACGTTCTGAAATTCTCTGCTCTGGCCCTGGCCGCAGTTCTGGCTACCGGTTGCAGCAGCGCATCGAAAGAAACCGAAGCCCGTCTGACTGCTACCGAAGACGCAGCAGCTCGCGCCCAAGCTCGTGCAGACGAAGCCTACCGTAAAGCTGATGAAGCTCTGGCTGCTGCTCAAAAAGCACAACAGACTGCTGACGAAGCTAACGAGCGTGCTCTGCGCATGCTGGAAAAAGCTAGCCGCAAGTAA	MNNVLKFSALALAAVLATGCSSASKETEARLTATEDAAARAQARADEAYRKADEALAAAQKAQQTADEANERALRMLEKASRK				NA	NA	NA	NA	NA
D1-36_03440	972	ybiS	COG1376	putative L,D-transpeptidase YbiS	ATGTTGCCGCGCTTGCCTGCCGTCGCCCGCTGCCTGTCTCTTGCCGCCCTGTGTATGGCTGGTCCCGTTGCTGCGTTGGAGTTGCCCCTGCCCCCACCGGGCGAAGACATCGTCGGCCAGGTGCAGGTCATCAAGGCCAAATACGAAGATACCTTCGCTGACCTGGGTACCACCTATGACTTGGGCTATACCGAGATGGTGGCGGCCAACCCCGGGGTCGATCCGTGGTTGCCGGGTGCTGGCACCGAGATTGTCCTGCCGACCCGTTTCATTCTTCCTCCGGGCCCGCGCGAAGGCATCGTGATCAACCTCGCCGAATATCGCCTCTACTATTTCCCCAAGGGCCGGAACGTGGTCTATACGTTCCCACTGGGGATTGGCCGCGAAGGTTGGGGTTCGCCCATTGCGCGCACCAGCATCATCGCCAAGACGCCTAACCCGACCTGGACGCCTCCGGCCTCGATCAAGGCCGAACACGCCGCTGATGGCGACCCGCTGCCGAATGTCGTGCCGGCCGGTCCTGACAATCCATTGGGCCCGTTCAAGTTCACCCTGGGTACGCCGGGCTACCTGATCCATGGATCGAACAAGAAGTTTGGCATTGGCATGCGTACCAGCCACGGCTGTTTCCGTATGTTCAACAACAACGTCCTGGAGATGGCCGGCATGGTGCCGGTGGGCACTTCGGTACGAATCATCAACGATCCGTACAAGTTGGGCCTCAGTGGCGGCAAGGTTTACCTGGAAGCCCATACGCCCCTGGACGACAAGGGCAACCCGTCCGTGGTGGACAAGCACACCGCGGTCATCAATGCGATGCTCAAGCGTGAGGACATCACCAGCAACTTGCGCATGAACTGGGACGTGGTGCGTGACGTGGTAGCTGCCGAAGATGGCCTGCCGGTGGAAATCGCAGTGCCAAGTGCATCGGCCCCGATGGTCTCGAGCGCCCCGGTCGACATGCCCCAGTAA	MLPRLPAVARCLSLAALCMAGPVAALELPLPPPGEDIVGQVQVIKAKYEDTFADLGTTYDLGYTEMVAANPGVDPWLPGAGTEIVLPTRFILPPGPREGIVINLAEYRLYYFPKGRNVVYTFPLGIGREGWGSPIARTSIIAKTPNPTWTPPASIKAEHAADGDPLPNVVPAGPDNPLGPFKFTLGTPGYLIHGSNKKFGIGMRTSHGCFRMFNNNVLEMAGMVPVGTSVRIINDPYKLGLSGGKVYLEAHTPLDDKGNPSVVDKHTAVINAMLKREDITSNLRMNWDVVRDVVAAEDGLPVEIAVPSASAPMVSSAPVDMPQ	PGPT0023745_237	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-L|D_TRANSPEPTIDASE_ACTIVITY,PGPT0023745-erfK-K16291	NA	NA
D1-36_03441	240			hypothetical protein	ATGCGCAGCATGCCGGGGGATCAACTGAAACCCTGTGGGAGCGAGCTTGCTCGCGATTGGCGGTGGGCCTGCCTGCACTGTATGGGACTGTGCCGGCCCTATCGCGAGCAAGCTCGCTCCCACAAAAGCGATACTCTGGGCCAGAAGGATCACAACTCGAACCGCAACTCCGGCCAGATTGGCGAGGTGCCGCGTTTCTGCGACTCCAGGATCGCCCGGCACAAGGAACACAGGCGGTGA	MRSMPGDQLKPCGSELARDWRWACLHCMGLCRPYREQARSHKSDTLGQKDHNSNRNSGQIGEVPRFCDSRIARHKEHRR				NA	NA	NA	NA	NA
D1-36_03442	294			hypothetical protein	ATGCCGCGTCCCGCCTGGTCCCTGTTTGCCTACCAACTGATCGAGCCTGACGAGCAGCTGGATCTGTTCGCCTGCCAGGAAGTACGGGTGCACCTGGTGACCCGGCAGTTGGAACTGGGCGGATCGGCCGACCGGACCCTGTGCGGCAGCCTGTTGCCGGCCCAGCCACGTTGGTCCGGGGTCGATCGCAGGATTTTCCAGGATCACCGCCTGTGTTCCTTGTGCCGGGCGATCCTGGAGTCGCAGAAACGCGGCACCTCGCCAATCTGGCCGGAGTTGCGGTTCGAGTTGTGA	MPRPAWSLFAYQLIEPDEQLDLFACQEVRVHLVTRQLELGGSADRTLCGSLLPAQPRWSGVDRRIFQDHRLCSLCRAILESQKRGTSPIWPELRFEL				NA	NA	NA	NA	NA
D1-36_03443	606	tesA	COG2755	Esterase TesA	ATGCGTGTGTGGTTTTTGAGTGCCGGCCTGGCCTTGATGTGCATGGTCCAGAACGCAGCGGCGGGTACAGTCCTGATCGTTGGCGATAGTATCAGCGCGGCTTTCGGCCTGGATACCCGGCAAGGCTGGGTGTCGTTGCTAGAACAACGGCTCAAGGCCGAGGGTTTCGACGATAAAGTGGTCAATGCCTCGATCAGTGGCGACACCAGTGCAGGTGGCCTGGCGCGCCTGCCGACGCTGCTTGCGGCCCATAAGCCGGAGGTGGTGGTTCTGGAGTTGGGAGGCAACGATGGGCTGCGCGGACAGCCGCCAACACAATTGCAACAAAACCTTGCAGCGATGATCGAGAGCTCTCGCGCCAGCGGTGCGAAGGTGATCTTGCTGGGCATGCAGTTGCCGCCCAACTATGGGCGGCGCTACACCGAGGCTTTCGCGAAGGTCTACACCACCTTGGCCGAGGAGAAGAAGGTGCCGCTGGTGCCGTTTTTTCTCAAGGATGTGGGAGGTGTCCCAGGGATGATGCAAGGCGACGGGTTGCACCCGTCCGTCGCGGCTCAGGGCAAGTTGCTGGAAAATGTCTGGCCGACGCTGAAACCGCTGCTTTGA	MRVWFLSAGLALMCMVQNAAAGTVLIVGDSISAAFGLDTRQGWVSLLEQRLKAEGFDDKVVNASISGDTSAGGLARLPTLLAAHKPEVVVLELGGNDGLRGQPPTQLQQNLAAMIESSRASGAKVILLGMQLPPNYGRRYTEAFAKVYTTLAEEKKVPLVPFFLKDVGGVPGMMQGDGLHPSVAAQGKLLENVWPTLKPLL	PGPT0001840_2426	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001840-tesA-K10804	NA	NA
D1-36_03444	684	lolD_2	COG1136	Lipoprotein-releasing system ATP-binding protein LolD	ATGGGCTCAAGCATTCTCACCGCGACGGACCTTAGCAAAGTGGTTCCCAGCGCGGAAGGTGAACTGACCATCCTGCACGAACTCAGCCTGGAACTGAACAAGGGCGACAGCCTGGCCATCGTCGGCGCGTCCGGTTCCGGCAAGTCGACGCTGCTCGGCCTGCTGGCCGGGCTCGACCTGCCCAGCAAGGGCGAAGTGACCCTCGCCGGCCAAGCCCTCAGCGCATTGGACGAGGATCAGCGGGCACGGGTTCGCGCCGAACATGTCGGCTTCGTCTTCCAGTCTTTCCAGCTGCTCGACAGCCTCAACGCGCTGGAGAACGTCATGCTGCCGCTGGAACTGGACGGCCGCAAGGACGCCCGGGAGCGCGCCACGCAACTGCTGCAACGGGTCGGGCTCGGCCAGCGGTTGACTCACTCGCCACGCCAGCTCTCCGGCGGCGAACAACAGCGCGTTGCGATCGCCCGCGCCTTTGCCGCCGAACCCGACGTTCTGTTTGCCGACGAGCCTACCGGCAACCTAGACAGCCACACTGGCGAACGCATCAGCGATCTGCTGTTCGAGCTGAACAAGGAACGCGGTACGACCCTGGTGCTGGTCACCCACGACGAACGCCTGGCCCATCGCTGCCGGCGCCTGATCCGACTTGAAGCCGGCCAGATGGTCGCGCCCCTGGAGCCTTGA	MGSSILTATDLSKVVPSAEGELTILHELSLELNKGDSLAIVGASGSGKSTLLGLLAGLDLPSKGEVTLAGQALSALDEDQRARVRAEHVGFVFQSFQLLDSLNALENVMLPLELDGRKDARERATQLLQRVGLGQRLTHSPRQLSGGEQQRVAIARAFAAEPDVLFADEPTGNLDSHTGERISDLLFELNKERGTTLVLVTHDERLAHRCRRLIRLEAGQMVAPLEP	PGPT0013345_13373	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003	NA	NA
D1-36_03445	2505			hypothetical protein	ATGGCACGCTTGCCCCTGCTGCGCCTGTTCAGTCTTGCCATTCGCCAGTTGCTGCGCGACGCCCGCGCCGGCGAGCTGCGCGTGCTGTTCTTCGCCTTGCTGGTGGCCGTGGCGGCAAGCACCGCCATCGGCTACTTCGGCGCCCGGCTCAACGGCGCGATGATGATGCGCGCCACCGAGTTCCTCGGCGCCGACCTGCTGCTCGAAGGCAGCTCCCCCGCCCGCCCGGAACAGATTCGCAGCGGCTCCGAACTGGGCCTGGAACATGCCCGCGTGGTGGAGTTTTCCAGTGTCGTTGCCACCGACAACGGTATCCAGCTGTCCAGCGTCAAGGCAGCCGATGACATCTACCCCTTGCGCGGCGAACTGAAGAGCGCCCCCGCGCCCCTTGCACAGGAGGAAACGGGCGGACGTCCAGCCCCGGGTGAGGCCTGGGTGGAGGCGCGGCTGCTGACCGCCCTGGACCTGAAGATCGGTGACAGCATCGATGTCGGCAACAAGACCCTTCGCCTGAGCCGGGTGCTGACCTACGAACCGGATCGCGCCGGCAACTTCTACAGCCTTACACCGCGAGTCATGATCAACCTCAAGGATCTGGACGCCACGGGCGTGGTGCAACCGGGCAGCCGCGTCAGCTATCGCGACCTGTGGCGAGGCCCGGCCCCGGCACTGCAAACCTACCGCGACCTGGTCAAGCCAGGCCTGGAACCCAACCAGCGTCTGCAGGATGCCCGCGATGGCAACCGGCAGATCGGAGGCGCCCTGGGCAAGGCCGAGCGCTACCTGAACATGGCCAGCCTGGTGGCGGTGCTGTTGTCCGGCGTGGCCGTCGCCCTCTCCGCCAACCGCTTCGCCACCCGGCGCTTCGACGCCAGCGCGCTGTTGCGTTGTCTCGGCCTGTCGCGCCGGGAAGCCATGGTGCTGTTCAGCCTGCAATTGACAGTGCTGGGCCTGCTGGCCAGTATCAGCGGCGCCCTCCTTGGCTGGATCGCCCAACTGGGGCTGTTCGCCTTGCTGCATGACCTGTTGCCGACCACCGTGCCGCCAGGCGGCCTGTTGCCGGCGATCGCGGGGATCGGCACCGGGCTGGTGGCGCTGGCGGGGTTCGCCTTGCCGCCGTTGGCCGCACTGGGCCGGGTCCCGCCGCTGCGCGTACTGCGCCGGGACATGCTGCCGATCCCCTCCAGTACCTGGGTGGTCTACGGCGCCGCATTGGGTGCCCTTGGGCTGATCATGTGGCGCCTGAGCCTGGACCTGGTGCTCACGTTTGCCCTGCTCGGTGGCGGCGTGATTGCCGCGCTGGTCCTTGGTGGCCTGCTGCTGCTGGCATTGCAGAGCCTGCGTCGGATGCTGGCCCGCGCCTCGCTGCCCTGGCGCCTGGGGCTCGGCCAGTTGCTGCGCCACCCGCTGGCCGCGGCGGGCCAGGCCCTGGCATTCGGCCTGATCCTGTTGTCCATGGCATTGATTGCGTTGCTGCGCGGCGAGTTGTTGGATACCTGGCAAAACCAGCTGCCCAAGAACGCTCCGAACTATTTCGCCCTGAACATCCTGCCCAACGACAAACAGGCGTTCGCCGACAAGCTGATGGAACTGTCCGCGCAGTCGGCCCCGCTGTATCCCGTGGTACCGGGGCGGCTCATCAGCATCAACGGCGAGCCGGCCAAGGAATTCGTGACCAAAGACTCGGCGGGCGACCGCGCGCTGCAGCGCGACCTGAGCCTGACCTGGGCCGCGGATCTGCCTGCGGGCAATGTGGTGACCGCCGGAAACTGGTGGCCTCAACAGCCACCGGACGATATTCCAGGAGTGTCGGTGGAAGGCAAGGTGGCCGAAAACCTCAAGATCAAGCTGGGCGACCGCCTGGTGTTCAATGTCGGGGGTCTCAACCGGGAGGCGAAGGTCACCAGCCTGCGGGAAATCAATTGGGACAATTTCCAGCCAAACTTCTTCATGATTTTCCAGCCCGGCACCTTGAAGGATCTTCCGGCCACCTACCTCACCAGCTTCTATCTGGCAGCCGGTCACGACCAGCAGATTGTCGACCTGTCACGGGCGTTCCCCGCCGTGACGATCCTGCAGGTGGAAGCCCTGCTCGAACAACTGCGCAGCATCCTCGCCCAGGTGACGCTGGCCGTGGAATATGTGCTGCTGTTCGTGCTCGCGGCGGGGATGGCCGTGCTGTTCTCAGGCTTGCAAGCCACGCTCGATGAAAGGATTCGCCAAGGCGCATTGCTACGCGCCCTCGGTGCCGAGCGGCCACTGCTGACCAAGGCCCGGCGCATCGAATTCGGTTTGCTGGGCGCGGTCAGCGGCTTGCTGGCCGCCCTGGGCTCGGAGTTGGTGAGCCTGGTGCTTTACCGGTACGCATTCGACCTGCCATGGCATCCGCATCCATGGCTGCTGGTGCTGCCATTGGTGGGTGCTTTGCTGATCGGTGCAGCGGGCGTATTTGGTACCCGCCGAGCGCTCAACGCCAGCCCGCTGACAGTGTTGCGCGAGGGTTGA	MARLPLLRLFSLAIRQLLRDARAGELRVLFFALLVAVAASTAIGYFGARLNGAMMMRATEFLGADLLLEGSSPARPEQIRSGSELGLEHARVVEFSSVVATDNGIQLSSVKAADDIYPLRGELKSAPAPLAQEETGGRPAPGEAWVEARLLTALDLKIGDSIDVGNKTLRLSRVLTYEPDRAGNFYSLTPRVMINLKDLDATGVVQPGSRVSYRDLWRGPAPALQTYRDLVKPGLEPNQRLQDARDGNRQIGGALGKAERYLNMASLVAVLLSGVAVALSANRFATRRFDASALLRCLGLSRREAMVLFSLQLTVLGLLASISGALLGWIAQLGLFALLHDLLPTTVPPGGLLPAIAGIGTGLVALAGFALPPLAALGRVPPLRVLRRDMLPIPSSTWVVYGAALGALGLIMWRLSLDLVLTFALLGGGVIAALVLGGLLLLALQSLRRMLARASLPWRLGLGQLLRHPLAAAGQALAFGLILLSMALIALLRGELLDTWQNQLPKNAPNYFALNILPNDKQAFADKLMELSAQSAPLYPVVPGRLISINGEPAKEFVTKDSAGDRALQRDLSLTWAADLPAGNVVTAGNWWPQQPPDDIPGVSVEGKVAENLKIKLGDRLVFNVGGLNREAKVTSLREINWDNFQPNFFMIFQPGTLKDLPATYLTSFYLAAGHDQQIVDLSRAFPAVTILQVEALLEQLRSILAQVTLAVEYVLLFVLAAGMAVLFSGLQATLDERIRQGALLRALGAERPLLTKARRIEFGLLGAVSGLLAALGSELVSLVLYRYAFDLPWHPHPWLLVLPLVGALLIGAAGVFGTRRALNASPLTVLREG	PGPT0013350_4404	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004	NA	NA
D1-36_03446	498	greB_1	COG0782	Transcription elongation factor GreB	ATGAGTCGCTATCGCCCTCCCCGCACCGCCGGCACCGCGCTGATCACCCCCGAAGGTGAGGCGCGGATGCGCGCTGAACTCCACGAACTCTGGCACGTGCGCCGCCCCCAGGTGACCCAATCGGTCAGCGAGGCGGCGGCCCAGGGCGATCGTTCGGAAAACGCCGAATACACTTACGGCAAGAAGATGCTGCGGGAAATCGACAGTCGCGTGCGCTTCCTCACCAAGCGCCTCGAAGCGCTCAAGGTCGTCAGTGAAAAGCCCAGCGACCCAAACAAGGTTTATTTCGGCGCCTGGGTCACCGTGGAAGATGAAGAAGGCAACGAGTCCCGCTATCGCATCGTCGGGCCCGATGAGCTGGATTTGAAACAGAACCTGATCAGCATCGACTCGCCGCTGGCCCGCGCATTGATCGGCAAGGCCCTTGATGCCGAAGCCCGAGTCCAAACGCCTGCCGGCGAGCAACTTATATATATAACCCACATCGAATACCTGTAA	MSRYRPPRTAGTALITPEGEARMRAELHELWHVRRPQVTQSVSEAAAQGDRSENAEYTYGKKMLREIDSRVRFLTKRLEALKVVSEKPSDPNKVYFGAWVTVEDEEGNESRYRIVGPDELDLKQNLISIDSPLARALIGKALDAEARVQTPAGEQLIYITHIEYL	PGPT0030495_3559	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-TRANSCRIPTIONAL_CONTROL	PUTATIVE-TRANSCRIPTIONAL_CONTROL-1,PGPT0030495-greA-K03624
D1-36_03447	864			hypothetical protein	ATGGACCCGAACTTCAGTGACCGATGGATGAACCACACACCGCAAATTTATAAACTTCGCATTGATGAACTAATTCTCCCCGGCACCCATGATTCAGGCTCTGACAGAGAAGCGCCGAAGATGCAGTTTCCGTTTGAAATCACCCAAGACGTTCCAATCCGCGATCAGATCAACCGAGGGTTTCGCGTGCTTGACCTGCGCGTTGAGCTGTTCGCCGACCAGCCTGCCGGGCACCCGCGTCGCTTCCAGCTTTATCACCTGGCCTCGTCGGGCCGTACCGTGGCCGGTGATGTCCTTGACGTGCTCAACGCGTTTTATGCGAACCCAGCCCGAGGGAAGGAAATCATCATTTTGAACTTTCATCAGCTCAAGAATTTTACCGATGCGGCACATAACGAACTTCACGACCTGATTGACCAGACGATCGGACATCGACTGATCCACTACGCTCAGAGCTATATGACGCTTCAGGAACTATGGCAACGCATGCCAGGAAAGAATATCGTCATTTCCTATAACAGGCGTGGCGGGGATGGTTACTGGCCCGGGGTCGAGCACCAATGGTCCGGCGAGGACTATATAAGCACTTCAACGCTGAAAAAATTCATGGACGATGCCAGTTCACAGCCTAAAAGGCCCTACGCGCTTCGCTCCATCCAATGCGCGAAATATACAGGCTTCTTCGTCCCGGATGATTTCAGCGACAAAGTTGACGAATGGTTCGCGTCCCAAGACATCAATAGCTATATCCAACGCTTTCACATCATCAATACCGACTGGTCGACGCGAAGCAGCATTGTGCTCAACTGCATGCACGCCAACCAGTTCCGGGGCCTGGCCAAAGGGGACCTTAACGGCGGGTGA	MDPNFSDRWMNHTPQIYKLRIDELILPGTHDSGSDREAPKMQFPFEITQDVPIRDQINRGFRVLDLRVELFADQPAGHPRRFQLYHLASSGRTVAGDVLDVLNAFYANPARGKEIIILNFHQLKNFTDAAHNELHDLIDQTIGHRLIHYAQSYMTLQELWQRMPGKNIVISYNRRGGDGYWPGVEHQWSGEDYISTSTLKKFMDDASSQPKRPYALRSIQCAKYTGFFVPDDFSDKVDEWFASQDINSYIQRFHIINTDWSTRSSIVLNCMHANQFRGLAKGDLNGG				NA	NA	NA	NA	NA
D1-36_03448	309			hypothetical protein	ATGAACGCATCCAGCCCCCTCGTACGTCTTGCGCCAATCACGGCGAACCTTCTCCAACGCAATCCGAAAATTCTCCTGGGCGGTACCCACCAGCCAACGCTGCTGCGTTATCTGGACGGCTGGCCGCGACGCAACCATGGGCCTGCTGCCTTCCTGATCCAATTTGTCGAAGACGGCGAGTCCCTGGCGCGTTTTGCCAATGACAGCTTCGACCTCGCCGTGATCCAGTCCCCCACCCGGGCGGACGCTGCCGAAACGATCCGGCAGCTGACCCGTGTGGCCAGGCAGGGACTGATCACCCGCCGTTAA	MNASSPLVRLAPITANLLQRNPKILLGGTHQPTLLRYLDGWPRRNHGPAAFLIQFVEDGESLARFANDSFDLAVIQSPTRADAAETIRQLTRVARQGLITRR				NA	NA	NA	NA	NA
D1-36_03449	435	mhqP	COG2259	Putative oxidoreductase MhqP	ATGAGCACTCTCATCAACAAAGTACTGTTCTCCCGTGCAGGCTACGGCCTGACTGTCCTGCGCATCGTCGTGGGTATCATCTTCACTGCCCACGGTGGGCAAAAGCTGTTCGGTCTGTTTGGCGGTTATGGTTTGGCGGGGACGGCGCAGTGGATGGAAAGCATCGGCCTGGCTCCCGGTTACTTGATGGCGACGTTGGCGGGCGGTACCGAGTTCTTTGCCGGCCTGGCGCTGATCATCGGCCTTCTGGCGCGCCCTGCGGCGCTGGGTCTGGCGATTCTGTCGCTGGTGGCGATTTTCTCGGTGCATATCGGCAATGGTCTGTTCATGGCCAACAATGGCTACGAGTTTGGCCTGGCCCTGCTGGCGGGTAGCATCGCCGTGCTGATTGAAGGTGCTGGCAAGCTTTCCGCCGACAACGCCATCGCCCGCTGA	MSTLINKVLFSRAGYGLTVLRIVVGIIFTAHGGQKLFGLFGGYGLAGTAQWMESIGLAPGYLMATLAGGTEFFAGLALIIGLLARPAALGLAILSLVAIFSVHIGNGLFMANNGYEFGLALLAGSIAVLIEGAGKLSADNAIAR	PGPT0028505_3484	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028505-catD-K15977	NA	NA
D1-36_03450	1422	mltF_3	COG4623	Membrane-bound lytic murein transglycosylase F	ATGGCACGTCCCCAGGTATTGCTTGTGCTGTGTTGTTCGCTGTTTTTGCCGATGCCGGCCGAAGCGCGGCTGCCCGGACCGCTGCAAGCCGTGGCGCCGGGAACCGTCCGGGACCTGGCGCAGATCCGGGACAGCCGGGTGCTGAAAGTCCTGGTCAATCAGAGCCGCAACAGTTCCGGCGAAGTCCAGGGACAGCCCATTGGCGTCGAATATCACCGGTTGCGGGCGTTCGAGCAATACCTCAACGGACATGCCCGGGACGGCCAGGAAATTACCCTCAAGATCATTCCCAAGGCCAAGGATCAACTGCTTGGCGCGTTGCAACGTGGCGAGGGCGACCTGGTCGCTCCCGGCGAACTGCTTGAGCCGCAACCGGGCCAGGCGGTCAGCGCCAGTGATCCGATCCGCAGCGACGTGCCGTGGCTGCTGGTGGGCATCAAGGGGGAGAAGCGATATACCCGCGTCGAACAATTGTCTGGCAAGACCCTGGCCCTGCCCACTGGCAGCGCGGCGGGGGATGCCGTCAGCCAGATCAATCAGAAGCTTGCGTTGCTCAAGTTGCCGGCGGTGAAAATCGAATGGGTCGATCCCACCCTGGCGGTGGAGGATGTGCTGGAAATGGTCCAGGGCGGGATCTTCCACCTGACCATTGTCGAACAGCCGATTGCCGAACGTTGGGGCAAGATCTTGCCCAAGCTGCGCTTCGACCGCCAATTGCTCATCGGCGAGCCGAGCGATGAGTTCTGGTTCGTGCGTCGTGACGCCGCGATGCTGCGGGCGAGCATCGATCGATTCCTCGTCACCTACAAGGCACCGTCAAACGAAGACGCTGCGTTCCTGCGGATCTACCGTCGCTTGTACCAGGTTCATTATCCGTTGGCCCGGGCCAATCGCCAGCGCCTGGAGAAACTGCGGCCGGTGCTGCAAAAGCACGCCCAGGCTCAAGGCATGGACTGGCTCAACCTGGCGGCCCTGGCCTTCAAGGAGTCGGCCCTGCAACCCAACGCGCGCAGCGGCAGCGGCCCGACGGGCCTGATGCAGATCACTCCGTCCGCGGCCCAGCGGGTCGGGGTCAATGACATCCGCAACCTCGATGGCAATGTGCAGGCTGGCGCCAAGTACCTTGCCATGATCCGCCGCAAGTTTTTCGCCAGCCCCAAACTCAACGAGCGAGAGCGCATGGCGTTCGTCCTGGCGGCCTACAACATGGGACCCGAGCGGGTGCAAGGGATGCGCGCCGAGGCCCGGCGACGGGGATTGAACCCGAACCAGTGGTTTTTCCAGGTGGAGCGCATCGCCATGGAGCAGGTGGGGATGGGCGCAGTCAGCTACGTTAATAGTGTGAACAAATACTATCTGGCGTTTGACCGGGAGCGAGAGTCGCTGGAGTCCCAGGAACGAAAGGTGGTCCTGCGAAAATAA	MARPQVLLVLCCSLFLPMPAEARLPGPLQAVAPGTVRDLAQIRDSRVLKVLVNQSRNSSGEVQGQPIGVEYHRLRAFEQYLNGHARDGQEITLKIIPKAKDQLLGALQRGEGDLVAPGELLEPQPGQAVSASDPIRSDVPWLLVGIKGEKRYTRVEQLSGKTLALPTGSAAGDAVSQINQKLALLKLPAVKIEWVDPTLAVEDVLEMVQGGIFHLTIVEQPIAERWGKILPKLRFDRQLLIGEPSDEFWFVRRDAAMLRASIDRFLVTYKAPSNEDAAFLRIYRRLYQVHYPLARANRQRLEKLRPVLQKHAQAQGMDWLNLAALAFKESALQPNARSGSGPTGLMQITPSAAQRVGVNDIRNLDGNVQAGAKYLAMIRRKFFASPKLNERERMAFVLAAYNMGPERVQGMRAEARRRGLNPNQWFFQVERIAMEQVGMGAVSYVNSVNKYYLAFDRERESLESQERKVVLRK				NA	NA	NA	NA	NA
D1-36_03451	810	tatD	COG0084	3'-5' ssDNA/RNA exonuclease TatD	ATGCAACTCATCGATATCGGCGTCAACCTGACCAACCCCAGTTTTGCCGACAAACACCAGGCCGTGCTCGAGCGCGCTTATGAAGCGGGCGTCTGCCAACTGGTCTTGACCGGTACCAGCATCGAAGGCAGCGAGCAGGCCCTTGAACTCTGCCAGCACCTCGACGAAGAGGGGCAACGGCTGTTTTCCACTGCCGGCATCCATCCCCACAGCGCCAGCGACTGGACGACCGACAGCGCACGACACCTGAAGGATCTGCTCAAGCAAGACCGCGTCCGCGCGGTGGGGGAATGCGGATTGGATTTCAACCGGGACTTCTCGCCCCGCCCACAGCAGGAAAAGGTCCTGGAAGAACACCTGGCCCTTGCGATGGAGTTGCAATTGCCGGTGTTTCTCCACGAGCGCGACGCCGACCAGCGTCTGCTGGAAATTCTACAAGGCTTTCGTGACCGATTGCCCGCCGCGGTGGTGCATTGTTTTACGGGCGAGCAAAAAGCGCTGTTCCGCTACCTCGATCTGGACCTGCACATCGGAATCACCGGGTGGATCTGCGATGAGCGCCGGGGCACCCACCTGCATCCATTGATGCGGGAAATCCCACGCGGTCGGCTCATGCTCGAAAGCGACGCCCCGTATTTACTGCCGCGTACCCTGCGGCCCAAGCCCAAGAACGGTCGCAACGAGCCGGCGTATCTGACGGACGTCCTTCGCGAAGTTGCCCTGCACCGCGGTGAAACCCAGGAAGACCTGGCAGCCCACACCACCGCCTGCGCCCGGGCGTTTTTTGGGTTGCCGAACCTTTCCGAATGA	MQLIDIGVNLTNPSFADKHQAVLERAYEAGVCQLVLTGTSIEGSEQALELCQHLDEEGQRLFSTAGIHPHSASDWTTDSARHLKDLLKQDRVRAVGECGLDFNRDFSPRPQQEKVLEEHLALAMELQLPVFLHERDADQRLLEILQGFRDRLPAAVVHCFTGEQKALFRYLDLDLHIGITGWICDERRGTHLHPLMREIPRGRLMLESDAPYLLPRTLRPKPKNGRNEPAYLTDVLREVALHRGETQEDLAAHTTACARAFFGLPNLSE				NA	NA	NA	NA	NA
D1-36_03452	1218			hypothetical protein	ATGGGTGCCTGGCTTAGCAATATCTCGCTTAAATACAAATTCTGGGCGGTCAATGCGGTCGCATTCGCCACAACCTTGCTGTTGGTGCTCTATGCCATGCACCTGGAACAGCAGGTCCGAGGGGTGAGCCTGGGTCTGGTCTTTGCCGAACGCTTCAGCCAATACGCCGTGGCGGTGATGGTATTGATGCTGGCAATGCTGGGTGCCTCGCAACTGTTGATCCGCTTCCTGCTCAGTCAGCTCGACACGTTGAAAGACGTGATGCTGCACGTGGAAAAAACCGGTGACCTTTCTGCCCGCGTGCCCCTGGCCTGCCGCGACGAGGTGGGCCAGATGGCCGCCGCGTTCAACGCGATGCAGGCGGGTTACCAACGGGTGGTCGACACCGTCGCCAGCACCGCGCGGCAGCTGGACAACGGGGCCGCTCGGCTGGCGTCGAGCATGAACGAGGTGCGCCACGGCATGCTCGGCCAGCAGAGCGAGACCGACCAGGCCGCCACGGCGATCAACGAGATGTCCGCGACGGTTTATCACATCGCCCAGCATGCTGGCGCCACCCGTGATCTGTCGAAAACCACCGACACCCTCGCCGGCAACGGCCGCGAGGTGGTCAGCCGTGTCCAGCAATCGATTACCGGGCTGTCCACCGGCGTGCAGCAAACCGCCGAGATGATCCAGCGCCTGGCCGAAGACAGCCAGAAAATCAACGGCGTGGTCGGTGTGATCCACAGCATCGCCGAGCAAACCAACCTACTGGCCCTGAACGCCGCCATCGAAGCGGCGCGGGCCGGTGACATGGGTCGAGGCTTTGCGGTGGTGGCCGATGAGGTCCGCAACCTCGCCAGGCGGGTCCAAACCTCTACGGACGAGATCACCACGATGGTGTCGGCGCTGCAGGCGGTCACCCGGGATGCGGTGGAGTTCATGCAGGAAAGTTCGCACAAGGCCGATGACTGCGTACAGCAGGCTTGCGCAGCCGGCGAGGCGTTGGCGCAGATCACCGAGGCGGTGGCGCAGATGCGCGAGAGCAATACCCAGATCGCCGTCGCGGCCGAGCAGCAAAGCCATGTCGCCGAAGAGATGAACAGAGCGGTGCTGGGTATTCGCGACGTAACCGAAGACACCGTGCGCCAGACGGTGGACTCCGCCGCCACCAGTGCTGAACTGGCGACGCTGGCGGGGCAACTGAACAAGGCGATTGGGCAGTTGAAGCTTTGA	MGAWLSNISLKYKFWAVNAVAFATTLLLVLYAMHLEQQVRGVSLGLVFAERFSQYAVAVMVLMLAMLGASQLLIRFLLSQLDTLKDVMLHVEKTGDLSARVPLACRDEVGQMAAAFNAMQAGYQRVVDTVASTARQLDNGAARLASSMNEVRHGMLGQQSETDQAATAINEMSATVYHIAQHAGATRDLSKTTDTLAGNGREVVSRVQQSITGLSTGVQQTAEMIQRLAEDSQKINGVVGVIHSIAEQTNLLALNAAIEAARAGDMGRGFAVVADEVRNLARRVQTSTDEITTMVSALQAVTRDAVEFMQESSHKADDCVQQACAAGEALAQITEAVAQMRESNTQIAVAAEQQSHVAEEMNRAVLGIRDVTEDTVRQTVDSAATSAELATLAGQLNKAIGQLKL	PGPT0015710_18134	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_03453	363			hypothetical protein	ATGGGCAAACGTCACCCCAACCTTCCGGCCTGGCAATGGCGCGCCTACCCTGACAATCATCGCCACCCGACCAACCTGGTCCTGCACCTGATCGCGGTGCCGTTGTTCATCGTCGCGTTTTTGCTGATTGTCTGCGGTGTGTTCAGCCTGAGCCTGGGGGATGTCGCCATCGGTGTGATCGGCTTGCTTGCCGCACTCGGGCTGCAACGCCATGGCCATAGCCTGGAGACACAAGCGTCGGAGCCTTTCAGTGATCGCAAGGACGCGATGTCGCGCCTGCTGGTGGAACAATTCCTGACCTTCCCACGATTTTTTCTAAGCGGTGGATGGTGGCGCGCCTGGCGGGAGCGCCACCGCCGCTGA	MGKRHPNLPAWQWRAYPDNHRHPTNLVLHLIAVPLFIVAFLLIVCGVFSLSLGDVAIGVIGLLAALGLQRHGHSLETQASEPFSDRKDAMSRLLVEQFLTFPRFFLSGGWWRAWRERHRR				NA	NA	NA	NA	NA
D1-36_03454	798	tesB_1	COG1946	Acyl-CoA thioesterase 2	ATGCGCTTCTCCGATTTGATCGATGCCGTGCGCCATCAGCCAGGCGCCGTTGTGATCCCTCCTGAATGGGGCCAGGGACGGGCCAGTTTTGGCGGGCTGGTGGCGGCGCTGCAATACGAGGCGATGAGGGCCCAGGTCCCGGCGGATCGCCCGGTGCGTTCGTTGGCGATCACCTTTGTCGGCCCCGTCGCGCCCGACGTCCCCGTCAGTTTTCAAGTGCAGGTGTTGCGTGAAGGCAAGGCGGTCAGCCAGGTCTTGGGGCGTGCGGTACAGAACGGTGAAGTGGTGACCGTGGTGCAAGGCAGCTTTGGCGCGTCGCGATCTTCAACCGTGTCGGTGCAGGCTGACCCCGCGCCTGAATTCAAGGATGTCGAGCAATGCCAGGAGTTGCCCTACATCAAGGGCGCTACGCCTGAGTTCATGCGCCACTTGGCGATGCGCTGGAGCGTGGGCGGGCTGCCATTCACCGGCAATAAATCCCGCAGCATGGGCGGTTGGGTACGTTTGCGCGGCGATGTGAAGGAACAGCCGCTGGACGAAGGGCATATCCTGGCGCTGGTGGATGCCTGGCCTCCGGCGCTGTTACCGCACCTCACCCAGATGGCCCCGGGCAGTACGCTGACCTGGACGATCGAGTTCGTCCAGCCGTTGCTGGAACTCACGACGTTGGATTGGTGCCAGTATTTGGCTGAGATCGAACACGCCCAGGATGGCTATGGCCATGTCGCGGCGAAATTCTGGAGTGCCGATGGGCGGCTGATCGCCATGAGCCGGCAGACAGTGACCATTTTCGGCTGA	MRFSDLIDAVRHQPGAVVIPPEWGQGRASFGGLVAALQYEAMRAQVPADRPVRSLAITFVGPVAPDVPVSFQVQVLREGKAVSQVLGRAVQNGEVVTVVQGSFGASRSSTVSVQADPAPEFKDVEQCQELPYIKGATPEFMRHLAMRWSVGGLPFTGNKSRSMGGWVRLRGDVKEQPLDEGHILALVDAWPPALLPHLTQMAPGSTLTWTIEFVQPLLELTTLDWCQYLAEIEHAQDGYGHVAAKFWSADGRLIAMSRQTVTIFG				NA	NA	NA	NA	NA
D1-36_03455	762			hypothetical protein	ATGATTGATCGGCTGGTGGCCCGGATACTGGGCCTGGAAGTCCGCCTGTTGGCCTGCCAGGCCCGCTTGAATGCCCAAACCGACAGCGAAGCACTGCATGACCTGCGAACCACGGTCCGTCGGTTGCGCAGCCTGCTTCGTCCGTTGCGTGGATTGCCCGGTGTCGAACAGCTGGAAACGGCCGCGTCGGCAGTAGGAACCCTGACTACGCCCTTGCGCGACCGCGAGGTGCTGGCGGCGTATCTGCAAAAGCACGGCAAGACCGACGCGGCGCAGCGGCGCCAGGTGCAAATGGCCGAAGCCTATCCCGCCGTGGCCAGCAGCCCGGAATTGGCGCAGCTGCTGATGATTCTCGACGCGTTCCCACGCTTCATCCGCGCTGCCCAGCGCCAGGGCCTGCTTGCCGGGCTGCGCAAGCGCATCGAAAAACGCCTCGACAAGCAATGGAAAAAACTCGGCGAAGCCTTGCGCGACCCCGCCCATGACCGTCACCGGTTGCGCCTGTTGATCAAGCGCGTGCGCTACGCCATCGAGGCCTATCCTGAACTCGATCGCTTGCCGGAAACGGCCATGCCACGGCTGAAGGCTGCCCAAGGCGCCCTGGGGGATTGGCATGATTGCTGGCAATGGCTGGCGCGGGCCGAGCATGAAGCCGATTTGCAAGCCTGTGTGCCGGTCTGGCGAATCACCATGGAAAAGGCCGAGGCCAAGTCCGACCGCGTGCTGGATAAACTCATCGCCAGTTGTTTCGATAAATCCTGA	MIDRLVARILGLEVRLLACQARLNAQTDSEALHDLRTTVRRLRSLLRPLRGLPGVEQLETAASAVGTLTTPLRDREVLAAYLQKHGKTDAAQRRQVQMAEAYPAVASSPELAQLLMILDAFPRFIRAAQRQGLLAGLRKRIEKRLDKQWKKLGEALRDPAHDRHRLRLLIKRVRYAIEAYPELDRLPETAMPRLKAAQGALGDWHDCWQWLARAEHEADLQACVPVWRITMEKAEAKSDRVLDKLIASCFDKS				NA	NA	NA	NA	NA
D1-36_03456	291			hypothetical protein	ATGAAAGCCCGGATCTGCCTGCCCCTGGTGGCATCCCTGATGGTTCTGGCCCTGGCCGGTTGTGCCGGCAAGACCGCGTACCGCGACAGTTGTGGCAGCCAACTCGACAGCGCCTGGCGCGAACTGGACCTGGCCAAGGCCGAAGGTTTTGCCGGTACGGTCAGCTACTCCAAGGCCCTGTCGCTGCTGACCGGCGCCAAGACCCAGCAGCAATTCGAAGCCTTCGAAGGCTGCACTCAAAAAGCCGAGAAGGCCCGCTTCTACATTCGCGAATCCCGCGCAGGACGATAA	MKARICLPLVASLMVLALAGCAGKTAYRDSCGSQLDSAWRELDLAKAEGFAGTVSYSKALSLLTGAKTQQQFEAFEGCTQKAEKARFYIRESRAGR				NA	NA	NA	NA	NA
D1-36_03457	1038		COG1752	putative NTE family protein	ATGACAAAACGTGTCGCATTGGTATTGGGCTCGGGCGGCGCCCGGGGCTATGCCCATATCGGAGTGATCGAGGAAATCGAACGGCGCGGCTACGACATTGCCTGCATCGCCGGCTGCTCCATGGGCGCCGTCGTGGGCGGAATCTACGCCGCCGGCAAGCTCGAGGATTACCGCAACTGGATCGAAAGCCTCGACTACCTGGATGTGCTGAGGCTGGTGGACGTCAGCTTTCGTCTCGGGGCGATTCGCGGAGAAAAAGTCTTCGGGCAAATCCGCAAAATTGTCGGCGAACTCAACATCGAAGACCTGCGCATTCCTTATACGGCTGTCGCCACCGACCTGACCAACCAGCAGGAAATCTGGTTCCAGGAAGGTTGCCTGCACCAGGCGATGCGCGCCTCGGCGGCCATTCCCAGCCTGTTCACCCCGGTGATGCAAGGCAACCGCATGCTGGTGGACGGCGGGCTGCTCAACCCGCTGCCGATCGTGCCAGTGGTGTCGAGCCATTGCGACCTGATCATTGCGGTCAACCTCAACGCCACCAACCAGAAGCAATATCGGCTGCCAGTGATCCAGCGCCCCGCCGCGTTCCGGCGTCGCTTCGATACCCTGGTCAGCTCCCTGGGCTCACGGCTGCCATTTCGCCGCAAACAGGCCGAGCAGCTGTTGCTGCTGGAGCAGGAAGCGCTGAAGGCCGAGGCCGCCGATATCAACCCGTGGATCGAATCCGCCGAGCCGGAAGGCCAGCAACCGGCCGCCGCGCCAGAGAGCGACGGTGCGCCAAGATCCGCCACCGGCTCGTTCATCATCGATAACGTCGGGCCCGCGTCCTTGCTGGATTTGATCAACCAGAGTTTCGAAGTAATGCAGACCTCGCTGGCCCAGTACAAAATCGCCGGTTACCCGCCGGACGTGCTGATCAACGTGCCGAAACGGGTGTGCCGGTTCTTCGAATTCTACAAGGCGCCGGAACTGATCGCGTTGGGGCGGGAGATCGCCCGGGATACGTTGGATCGGTATGAGAGTGAGCAGAATTAG	MTKRVALVLGSGGARGYAHIGVIEEIERRGYDIACIAGCSMGAVVGGIYAAGKLEDYRNWIESLDYLDVLRLVDVSFRLGAIRGEKVFGQIRKIVGELNIEDLRIPYTAVATDLTNQQEIWFQEGCLHQAMRASAAIPSLFTPVMQGNRMLVDGGLLNPLPIVPVVSSHCDLIIAVNLNATNQKQYRLPVIQRPAAFRRRFDTLVSSLGSRLPFRRKQAEQLLLLEQEALKAEAADINPWIESAEPEGQQPAAAPESDGAPRSATGSFIIDNVGPASLLDLINQSFEVMQTSLAQYKIAGYPPDVLINVPKRVCRFFEFYKAPELIALGREIARDTLDRYESEQN				NA	NA	NA	NA	NA
D1-36_03458	699	kdpE	COG0745	KDP operon transcriptional regulatory protein KdpE	ATGAGCCAGAGCGCGACCCTTTTGGTCATCGATGACGAACCGCAGATCCGCAAATTCCTGCGCATCAGCCTGGCCTCGCAAGGCTACAAGGTGCTCGAAGCCGAGACGGGAGCCGAGGGCCTGGCCCAGGCGGCGTTGAACAAACCCGACCTGTTGGTGCTCGATCTGGGCCTGCCGGACATGGACGGCCAGCAAGTGTTGCGAGAGTTCCGCCAGTGGTCGGCGGTGCCGGTGCTGGTCCTCTCGGTGCGGGCCAGCGAGGCGCAGAAAGTCGAGGCGCTGGACAACGGCGCCAATGACTACGTGACCAAGCCTTTTGGCATCCAGGAATTCCTTGCCCGCGTGCGTGCGTTGCTGCGCCAGGCGCCGCCAGGCGAGGCACCGCCGGCGGCGCTGACGTTCGGCCCGCTGACGGTGGACCTGGCGTATCGCCGGGTCCTGCTGAACGGCGCCGAAGTGGCCCTGACCCGCAAGGAGTACGCGGTGCTGGCGCAACTGGCGCGACATCCGGGGCGGGTCATCACCCAGCAACAACTGCTCAAGGACATCTGGGGCCCGACCCACGTTGAGGACAGCCACTACCTGCGCATCGTGGTCGGTCACCTGCGCCAGAAACTGGCCGACGACCCGACCCGGCCTCGGTTTATCGTGACTGAAGCGGGGGTGGGGTATCGGTTGTTGGAGGAGGGGAGGCTTTAA	MSQSATLLVIDDEPQIRKFLRISLASQGYKVLEAETGAEGLAQAALNKPDLLVLDLGLPDMDGQQVLREFRQWSAVPVLVLSVRASEAQKVEALDNGANDYVTKPFGIQEFLARVRALLRQAPPGEAPPAALTFGPLTVDLAYRRVLLNGAEVALTRKEYAVLAQLARHPGRVITQQQLLKDIWGPTHVEDSHYLRIVVGHLRQKLADDPTRPRFIVTEAGVGYRLLEEGRL	PGPT0002760_711	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-CAPSULE_METABOLISM	CE-EPS-CAPSULAR_POLYSACCHARIDE_REGULATION,PGPT0002760-kdpE-K07667	NA	NA
D1-36_03459	2652	kdpD	COG2205	Sensor protein KdpD	ATGAGCGACTCCGGCCGCGCCGATGCACTGCTAGCCAATCTGCCCCGCCACGACCGTGGCCGCCTCAAGGTTTTCCTCGGCGCCGCGCCGGGCGTGGGCAAGACCTACGCCATGCTGCAAGCGGCCCACGCCCGGCTGCGCCAAGGCACGAACGTCGTCGCCGGCGTGGTCGAGACCCACGGGCGCGCCGAGACCGAAGCGCTGTTGAATGGCCTGCTGCAGCAGCCGCTGGTGCGTTCGGAATATCGCGGCGTGGTGCTCGAGGAAATGGACCTCGACGGCCTTTTGTCGTCTCGCCCGAGCCTGGTGTTGGTGGATGAACTGGCCCACAGCAACGCGCCCGGCAGCCGGCATGCCAAGCGCTGGCAAGACATCCAGGAGTTGTTGGCGGCAGGCATCGATGTCTACACCACGGTGAATGTCCAGCATTTGGAAAGTCTCAACGATCAGGTGCGCGGCATCACCGGCGTGCAGGTGCGCGAGACGTTGCCGGACTGGGTGTTGCAGGAAGCCGACGAGTTGCTGCTGATCGACCTGCCGCCGCGCGAGCTGCTGGAGCGCCTGCGCGACGGCAAGGTTTATGTGCCGGAGCAGGCGCGGGCAGCCATTGATGCGTTTTTTACCCAGACCAATCTTACCGCGCTGCGCGAGCTGGCCATGCAGACCGCGGCGGCGCAAGTGGACGACGACCTGGCGCAAGGCTATCGGCAACTGGGCCAGGCGGCGCCGGCGGTGCGCGGTCGGTTGCTGGTGGGCGTGGACGGCGACTTGCAGGCCGAACGGTTGGTGCGCCACGCCAGCCGCGTCGCCCAGCGCCGGCATCTGCCCTGGAGCGTGGTGCATGTGGATAACGGCGGGGCGCGGGACGAGTCGTCCCGCCAACGTCTGCAGAACGCCCAGCAATTGGCCGAGCGCCTGGGAGGGGAAGTGGTGTCGCTGCGCGCCGGGGAGGTCGCGCGGACGTTGATCCAGCACGCCATGCAACGCCGCGCCACGTTGCTGTTGGTGGGGCAGTCCCGCCGGCGTCTGCGGCGGCGATGGTTTGGCGGTGGCCTGGCCTCACGCCTTTTGCGCAACGCCCGTGGCCTGGAAATCAACGTGTTGGACAGCGATGAATCGCCACCGCCCACGCGCCTGGCCCCGAGCACCCTCGCCACCGGTTTCGACTATGCCCTGGCGCTCGCGGCGACAGGGGCGGCCAGTTCCTTGGCCTGGGGAATCTCAGGATTGCTGGCGCTGCCGAATATTTCCTTGGTGTTTCTGATGGCGGTGTTGCTGGTGGCGGTGCGCAGCAGCCTCGGCCCGGCCCTGGCCTGTGCGGCGCTGTCATTCCTGGCCTACGATTTTCTGTTTATCCCGCCCAATTTTTCCCTGACGATCCAGCGCGAAGAGGACGTGCTGACGCTGGCATTTTTCCTACTGATGGCCGCCCTGACGGGCAATCTCGCGGCCCGCCAGCGCCGTCAACTGCAAGCGCTGCGCGACACCCAGCAGGAAACCGGTGAACAGCTCGACCTGTCACGCAAGCTGACTGCCGCCACGGATCGCCAGGCCGTGATCAGCGCCGCCGTGCAACACCTCGACAGCGAGGACGATTTGCAGCTGTGCCTGCTCAACCGCGACGGCGGGCATGGTTGGAAAGTCGAGACCGCCGAGCCGTTGACCTTCACCGAGGCCGAGCGCGCTGCCGCCGACTGGTCCTGGCAGCACGACCAACCGGCCGGTGCCGGCACCGCGACGTTGCCGTCCGGGCGCTGGTGGTGGTGGCCCTTGTCCAGCGAGGGCGCTCCGCTGGGCCTGCTGGGCGTCTGCCCGAAAGACGGCAAGCCGTTGAGCGGCCATCGTCGACGCTTGTTGGCGGCCCTCAGCCAGCCGCTGGCCCAGGCGCTGGCCCGGGCACAACTGGCACAGGATCTGGAAGCAGCGCGCCTGCACGGCGAAACCGAACAGTTGCGCAGTGCCTTGCTCGCGTCTGTCTCCCATGATCTGCGCACACCGCTGACGTCCATGCGCGGCAGCATCGACAGCCTGTTGGCGCTGGGCGAGGCGATCCCGCTGCAGGACCGTCGCGAGCTGCTGGAAGGCACCCGCGACGAGGCCGAGCGCCTGGACCGTTATATCCAGAATCTGCTCGACATGACCCGGCTCGGCCATGGCGCGCTGAAGCTGGCGCGCGATTGGGTGTCACCCGCCGACATCGTCGCCAGTGCGTTGAACCGTCTGCGGGCCGTGCTGGCGCCGTTGGCGGTCGATGTCCAGGTGCCGGTCGGCTTGCCGTTGCTGTATGTCCACGCCGCGCTGATTGAACAGGCCCTGGTCAATGTGTTGGAGAACGCCGCGCGGTTTTCCCCGGCCTATGGACGGCTGCTGCTCAACGCCGAGGCGACGGCCGACGAAATCCTGTTCGCCGTGGCGGATGAAGGGCCGGGCATTCCCGAGCAAGAGCGGGAAAAGATCTTCGACATGTTCTACACCGCTGCGCGCGGTGATCGAGGCGGGCAGGGCACCGGGCTCGGATTGGCGATCTGCCAGGGCATGGTCGGTGCCCACGGTGGGCGGATCAGCGTCGGCGACGGCCTCGACGGTCGTGGCACCTGCATCACTTTGCATCTGCCCTTGCAGGCACAACCAGGCATGGACGATGAAGCCTGA	MSDSGRADALLANLPRHDRGRLKVFLGAAPGVGKTYAMLQAAHARLRQGTNVVAGVVETHGRAETEALLNGLLQQPLVRSEYRGVVLEEMDLDGLLSSRPSLVLVDELAHSNAPGSRHAKRWQDIQELLAAGIDVYTTVNVQHLESLNDQVRGITGVQVRETLPDWVLQEADELLLIDLPPRELLERLRDGKVYVPEQARAAIDAFFTQTNLTALRELAMQTAAAQVDDDLAQGYRQLGQAAPAVRGRLLVGVDGDLQAERLVRHASRVAQRRHLPWSVVHVDNGGARDESSRQRLQNAQQLAERLGGEVVSLRAGEVARTLIQHAMQRRATLLLVGQSRRRLRRRWFGGGLASRLLRNARGLEINVLDSDESPPPTRLAPSTLATGFDYALALAATGAASSLAWGISGLLALPNISLVFLMAVLLVAVRSSLGPALACAALSFLAYDFLFIPPNFSLTIQREEDVLTLAFFLLMAALTGNLAARQRRQLQALRDTQQETGEQLDLSRKLTAATDRQAVISAAVQHLDSEDDLQLCLLNRDGGHGWKVETAEPLTFTEAERAAADWSWQHDQPAGAGTATLPSGRWWWWPLSSEGAPLGLLGVCPKDGKPLSGHRRRLLAALSQPLAQALARAQLAQDLEAARLHGETEQLRSALLASVSHDLRTPLTSMRGSIDSLLALGEAIPLQDRRELLEGTRDEAERLDRYIQNLLDMTRLGHGALKLARDWVSPADIVASALNRLRAVLAPLAVDVQVPVGLPLLYVHAALIEQALVNVLENAARFSPAYGRLLLNAEATADEILFAVADEGPGIPEQEREKIFDMFYTAARGDRGGQGTGLGLAICQGMVGAHGGRISVGDGLDGRGTCITLHLPLQAQPGMDDEA	PGPT0002755_1276	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-CAPSULE_METABOLISM	CE-EPS-CAPSULAR_POLYSACCHARIDE_REGULATION,PGPT0002755-kdpD-K07646	NA	NA
D1-36_03460	546	kdpC	COG2156	Potassium-transporting ATPase KdpC subunit	ATGTTCACCTTGATTCGCCCGGCCTTGAGCCTGTTGCTGCTGATGACCTTGATCACTGGCATCGCTTACCCACTCATCGTCACCGGCGTGGCGCAAATCGCTTTCCCGGACCAGGCCAACGGCAGCCTGGTCCATGATGCCGACGGCAAGGTCCGTGGCTCCCGGCTGATCGCCCAGGATTTCGTCGGCGATGGGTGGTTTCACCCACGGCCCTCGGCTGGCGCGTTTGCGACGGTGGCCAGTGGCGCGAGCAACTTTTCGCCGAGCAACCCGGCACTGGCCACGCGGGTGATCGATGGCGCCCAGAAGCTGCAAGTGCCCGGCCAGGGACCGGTGCCCCTGGCGCTGCTGACCACTTCCGGCAGCGGGTTGGACCCGCACTTGCCTCCGGCCGCGATTGCCTATCAACTGACGCGTGTCGCGGCGGCCAGGAATGTGCCAGTGTCGAGGTTGCAGCAGTTGCTCAATGACAACATCGAGCAGCCGTTGGTGGGACCGCCGGTGGTAAACGTGCTGGCGCTGAACATGGCCCTGGAAAAACTCTGA	MFTLIRPALSLLLLMTLITGIAYPLIVTGVAQIAFPDQANGSLVHDADGKVRGSRLIAQDFVGDGWFHPRPSAGAFATVASGASNFSPSNPALATRVIDGAQKLQVPGQGPVPLALLTTSGSGLDPHLPPAAIAYQLTRVAAARNVPVSRLQQLLNDNIEQPLVGPPVVNVLALNMALEKL	PGPT0002750_2139	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002750-kdpC-K01548	NA	NA
D1-36_03461	2055	kdpB	COG2216	Potassium-transporting ATPase ATP-binding subunit	ATGAACATGCCGATGAGCAAGACCGTCGTCGCCAAGGCGCCGGAGCAACCGAAAACCAATCTGTCGGCGCTGTGGCGGCCTGCGTTGGTGCAAGCTTTCGTCAAGCTTGATCCACGCCAGTTGCACCGTGCGCCGGTGATGCTGGTGGTGGAACTCACCGCGGTCCTCACCACCGTGCTGTGCCTGGTTCCCGACAGCACCGTGCCGACTTTCGTAGCCGCGCAGATTGCCCTGTGGCTGTGGTTCACCGTGTTGTTCGCCAACTTCGCTGAAGCCTTGGCCGAAGGGCGCGGCAAGGCTCGCGCCGACAGCCTCAAGGCTGGCAGTGAAGGCTTGAGTGCCCGCCGCCAGACGGCGGACGGTTTCGAGGTGATCCCCGCCACACGCCTGCGCAAAGGGGATGTCGTTCGCGTTGCTGCGGGGGAGATGATCCCCGGCGACGGCGAAGTGATCGAAGGCATCGCGGCGGTCAATGAAGCGGCGATCACCGGGGAGTCGGCGCCGGTCATTCGCGAATCGGGCGGGGATCGCTCGGCGGTTACCGGCAATACGCGGCTGGTGTCCGATTGGTTGTTGGTGCGCATCACCAGCAATCCCGGCGAATCCACCCTGGATCGCATGATCGCCCTGGTGGAAGGCGCCAAACGCCAGAAAACCCCGAACGAAGTGGCGCTGGATATCTTGCTGATTGGTCTGACGCTGATCTTCCTGCTGGTGGTAGTGACGTTGCAGCCGTTCGCCCATTTCGCCAACGGCAGCCTGCCGCTGGTGTTCCTGGTGGCGCTGTTGGTGACGTTGATCCCCACCACTATCGGCGGCTTGCTGTCGGCCATCGGCATCGCCGGGATGGACCGCCTGGTACGCCTGAACGTCATCGCCAAGTCCGGCCGCGCCGTGGAGGCAGCGGGGGATGTGCACGTGTTGATGCTGGACAAGACCGGCACCATCACGTTTGGTAACCGTCGTTGCGCAGCGGTCTATGCCGCCCCGGGCGTAAGCGCCAAGGAGCTGGCCGAAGGCGCGTTGTTCGCCTCGTTGGCCGACGATACGGCCGAGGGCAAGTCCATCGTCGAATACCTGCGTGGGTTGCATCCTCAGGCTGAACCCGCCGCGCAGTTGCTGACAGCCGTGCCATTCAGTGCCGAAACACGCTTGTCCGGCGTGGATTATCAGGGGCGCGTGTATCGCAAGGGCGCGGTGGATTCGCTGCTGACTTTCATTGGCTTGCCCCGTGATGGACTGCCCACCGCATTGGGCCGGGAAGTCGACAAGATCGCCCAGAGCGGCGGCACGCCGTTGCTGGTCTGCGTGGACGGAAAATTGCTCGGCGCCATTCACCTCAAGGACGTGGTCAAGCCCGGCATCCGCGAGCGCTTTGCCGAGCTGCGCAAACTGGGGATCCGCACCGTGATGGTCACGGGCGACAACCCGCTGACCGCTGCCGCGATTGCCGCCGAAGCCGGCGTGGATGATGTGCTGGCCGAGGCCACGCCGGAGAAAAAACTGGCGCGCATTCGCCATGAGCAGAACGATGGTCGACTCGTCGCCATGTGTGGCGACGGTGCCAACGACGCTCCGGCCCTGGCCCAGGCCGATGTAGGCATGGCGATGAACGACGGCACCCAGGCCGCGCGCGAGGCGGCCAACATGGTCGACCTCGACAGCGATCCGACCAAGTTGCTGGACGTGGTGCAGATCGGCAAGGAACTGCTGGTGACCCGGGGCGCGCTCACCACGTTTTCCATCGCCAATGATATCGCCAAGTACTTCGCCATCCTGCCGGCGCTGTTCGCCTCCATCTATCCGCAGCTCGGCGTATTGAACGTCATGCATTTGCAGAGCCCGCAAAGCGCGATCCTGTCGGCCATCGTCTTCAACGCCCTGATCATCGTCGTGTTGATCCCCCTGGCCCTGCGCGGCGTGCGAGTGCAAGCCGCGAGCGCGGCGGCCTTGCTGCGCCGCAACCTGCTGATCTACGGCCTGGGCGGGATCGCGGTGCCGTTCGTGGGGATCAAGGCGATCGATCTGTTGCTGACGGGATTGGGGTTGGTTTGA	MNMPMSKTVVAKAPEQPKTNLSALWRPALVQAFVKLDPRQLHRAPVMLVVELTAVLTTVLCLVPDSTVPTFVAAQIALWLWFTVLFANFAEALAEGRGKARADSLKAGSEGLSARRQTADGFEVIPATRLRKGDVVRVAAGEMIPGDGEVIEGIAAVNEAAITGESAPVIRESGGDRSAVTGNTRLVSDWLLVRITSNPGESTLDRMIALVEGAKRQKTPNEVALDILLIGLTLIFLLVVVTLQPFAHFANGSLPLVFLVALLVTLIPTTIGGLLSAIGIAGMDRLVRLNVIAKSGRAVEAAGDVHVLMLDKTGTITFGNRRCAAVYAAPGVSAKELAEGALFASLADDTAEGKSIVEYLRGLHPQAEPAAQLLTAVPFSAETRLSGVDYQGRVYRKGAVDSLLTFIGLPRDGLPTALGREVDKIAQSGGTPLLVCVDGKLLGAIHLKDVVKPGIRERFAELRKLGIRTVMVTGDNPLTAAAIAAEAGVDDVLAEATPEKKLARIRHEQNDGRLVAMCGDGANDAPALAQADVGMAMNDGTQAAREAANMVDLDSDPTKLLDVVQIGKELLVTRGALTTFSIANDIAKYFAILPALFASIYPQLGVLNVMHLQSPQSAILSAIVFNALIIVVLIPLALRGVRVQAASAAALLRRNLLIYGLGGIAVPFVGIKAIDLLLTGLGLV	PGPT0002745_1469	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002745-kdpB-K01547	NA	NA
D1-36_03462	1695	kdpA	COG2060	Potassium-transporting ATPase potassium-binding subunit	ATGCACGGCTATGACTACGGGCTGATCCTAGGCTTTTTCGCGCTGGTGCTGATTCCGGCACCGTTCCTGGGGCGGTTCTACTATCGGGTGATGGAAGGCCAGCGCACCTGGCTTTCACCGGTGTTTGGGCCGGTGGAGAGGTGTTGTTACAAGGTGGCCGGTGTCGATCCGACCACCGAGCAGAGTTGGCAGAAGTACACCTTGGCCTTGCTCGCCTTCAACCTGGCGGGTTTCGCTTTGCTGTTCGCGGTTCTGTTGTTGCAAGGGCATTTGCCACTCAACACCGAAAACCTGCCCGGCATGGAATGGACCCAGGCCTTCAACACGGCGGTCAGTTTCATGACCAACACCAACTGGCAGTCCTACAGCGGTGAGGCGTCCCTCAGTTACTTGAGCCAGATGATCGGCCTGACGGTGCAGAACTTCGTCAGCGCCGCCACTGGCCTGGCTGTGCTGGTGGCGTTGTGTCGTGGGATCGGGCGCAAGTCCGCCACGACGCTCGGCAATTTCTGGGTCGACCTGACCCGCGCCACGCTCTACGGATTGTTGCCGCTGTGCCTGGTACTGGCGCTGTTTCTGGTGTGGCAGGGCGTGCCGCAGACCTTCGCGCATTACATACATGGCGTGACGATGCAGGGCGTGGATCAAGTGATCCCGCTCGGGCCGGCGGCCAGCCAGATTGCAATCAAGCAATTGGGCACCAATGGCGGCGGTTTCTTCGGCGTCAACTCGGCGCACCCGTTCGAGAACCCGACGGCCTGGACCAATCTGTTCGAAGTCGCGTCGATCATCCTGATTCCGGCGGCGCTGGTGTTCACCTTCGGCCACTACGTCAAGGACCTGCGCCAGAGCCGGGCGATCATCGCCTGCATGCTTGCGCTGTTCCTGATCGGCGGCGCGACGTCGCTGTGGGCCGAGTACCAACCCAATCCAGCCCTCGACAACGCCGCGGTTGAGCAAGCCGCGCCGCTGGAAGGCAAGGAGGCGCGCTTCGGCACCACTGCCACGGTGCTTTGGTCAGTGACGACCACGGCGGCGTCCAACGGCTCGGTCAACGCCATGCACGACAGCCTCAACCCCCTCAGCGGCATGGTGGCGCTGATGAACATGATGGTCGGCGAGGTGGTCTTCGGCGGCGTCGGGGCCGGGCTCTACGGGATGTTGCTGAATGTGCTGATTGCGGTGTTCCTCGCCGGGTTGATGATTGGTCGCACGCCCGAATACCTGGGCAAGAAGCTCGGTGCCCGGGAAGTGCAATTGCTGGTGGTAACGCTGCTGGTGATGCCCGTGAGCGTGCTGGTGCTCGGCGCTATTGCCGCAAGCCTGCCCGGCCCTGCGGCGGCGGTGAGCAACCCTGGCGCCCACGGTTTCAGCCAATTGCTCTATGCCTACACCTCGGCGGGGGCCAACAACGGTTCTGCTTTCGCCGGTTTTGGCGCCAACACGCCGTTTCACAATCTGATGCTGGGCCTGGGCATGTTGATTGGCCGTTTCGGCTACATCCTGCCGGTGCTGGCGTTGGCCGGTAGCCTGGCGATGAAAAAGCCCGCCCCTGTCGGCCAGAACAGCTTTCCCACCCACGGCCCGCTGTTCGTAACGTTGCTGACCGTGACCATCCTGTTGGTCGGCGGCCTGACCTTCCTGCCAACCCTGGCCCTGGGCCCGATCGCCGAACACCTGAGCCTGGGTTTCTGA	MHGYDYGLILGFFALVLIPAPFLGRFYYRVMEGQRTWLSPVFGPVERCCYKVAGVDPTTEQSWQKYTLALLAFNLAGFALLFAVLLLQGHLPLNTENLPGMEWTQAFNTAVSFMTNTNWQSYSGEASLSYLSQMIGLTVQNFVSAATGLAVLVALCRGIGRKSATTLGNFWVDLTRATLYGLLPLCLVLALFLVWQGVPQTFAHYIHGVTMQGVDQVIPLGPAASQIAIKQLGTNGGGFFGVNSAHPFENPTAWTNLFEVASIILIPAALVFTFGHYVKDLRQSRAIIACMLALFLIGGATSLWAEYQPNPALDNAAVEQAAPLEGKEARFGTTATVLWSVTTTAASNGSVNAMHDSLNPLSGMVALMNMMVGEVVFGGVGAGLYGMLLNVLIAVFLAGLMIGRTPEYLGKKLGAREVQLLVVTLLVMPVSVLVLGAIAASLPGPAAAVSNPGAHGFSQLLYAYTSAGANNGSAFAGFGANTPFHNLMLGLGMLIGRFGYILPVLALAGSLAMKKPAPVGQNSFPTHGPLFVTLLTVTILLVGGLTFLPTLALGPIAEHLSLGF	PGPT0002740_1196	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002740-kdpA-K01546	NA	NA
D1-36_03463	90			hypothetical protein	ATGAGTGTTCTGGACGGGGTGTCGCTGCTGTTGGCAGTGGCGCTGTTCATTTATCTGTTGGTTGCGCTGTTGCGCGCGGACCGGGGTTAG	MSVLDGVSLLLAVALFIYLLVALLRADRG	PGPT0002765_59	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002765-kdpF-K01545	NA	NA
D1-36_03464	1365	yhdG_3	COG0531	putative amino acid permease YhdG	ATGAACACACAACTCAAACCCACGCTTGGCACCCTGCATTTGTGGGGCATCGCCGTCGGCCTGGTGATTTCCGGCGAGTACTTCGGCTGGAGCTACGGCTGGGGCGTGGCCGGCACGCTGGGCTTTCTGGTGACATCGTTCATGGTTGCGGCCATGTACACCTGCTTCATTTTCAGTTTCACCGAACTGACCACCGCCATCCCCCATGCCGGCGGACCGTTCGCCTACAGCCGTCGGGCCTTTGGCGAGAAAGGCGGCTTGATCGCTGGACTGGCAACCTTGATCGAATTCGTCTTCGCTCCACCCGCCATCGCGCTCGCCATCGGCGCCTACCTGAACGTGCAATTCCCGGCGCTCGATCCGAAACACGCCGCCGTAGGTGCCTATATCGTATTCATGGGCCTGAACATCCTCGGGGTGAAATTGGCCGCGACCTTCGAACTGGTCGTCTGCGTACTCGCGGTCGCCGAGCTGCTGGTGTTCATGGGCGTGGTCGCGCCAGCGTTCAGCTTCAGCAGTTTCGCCCTGAACGGCTGGGCCGGTTCCGACGTGTTCGGCGCACCGGCCATCGCCGGGATGTTCGCGGCGATCCCTTTCGCGATCTGGTTCTTCCTCGCCATCGAAGGCGCGGCCATGGCCGCCGAAGAAGCCAAGGGCCCAAAACGCACGATTCCCAAGGCCTACATCAGCGGCATCCTGACCCTGGTAGTGCTGGCCATGGGCGTGATGTTCTTCGCCGGTGGCGTCGGTGATTGGCGCACCCTCTCCAACATCAACGACCCGCTGCCCCAAGCCATGAAAACCGTGGTCGGCGAAAGCTCCGGCTGGTTGCACATGCTCGTCTGGATCGGCCTGTTCGGCCTGGTGGCGAGCTTCCACGGCATCATCCTCGGCTACTCCCGCCAATTCTTCGCCCTGGCCCGCGCCGGCTACCTGCCCGCCTCCCTCGCCAAACTGTCGCGTTTCCAGACCCCGCACCGCGCCATCATCGCCGGCGGCGTGATCGGCATCGCCGCCATCTACAGCGACGGCCTGATCAACCTCGGCGGCATGACCCTCACCGCCGCGATGATCACCATGGCCGTGTTCGGCGCCATCGTCATGTACATCATGAGCATGCTCAGCCTATTCAAACTGCGCAAAACCGAGCCCAACCTGGAACGCACCTTCCGCGCGCCGGGCTACCCGATCGTGCCGGGCATCGCCTTGGCCCTGGCGGTGGTGTGCCTGGTGGCAATGGCCTGGTTCAACGCCCTGATCGGGTTGATCTTCCTCGGCTTCATGGCGGTGGGCTTCGTGTATTTCGTGCTGACCGCACAGTTGCGTGCCGATGCCCCGGCCGATGCGATGTTGACCGGGCTATGA	MNTQLKPTLGTLHLWGIAVGLVISGEYFGWSYGWGVAGTLGFLVTSFMVAAMYTCFIFSFTELTTAIPHAGGPFAYSRRAFGEKGGLIAGLATLIEFVFAPPAIALAIGAYLNVQFPALDPKHAAVGAYIVFMGLNILGVKLAATFELVVCVLAVAELLVFMGVVAPAFSFSSFALNGWAGSDVFGAPAIAGMFAAIPFAIWFFLAIEGAAMAAEEAKGPKRTIPKAYISGILTLVVLAMGVMFFAGGVGDWRTLSNINDPLPQAMKTVVGESSGWLHMLVWIGLFGLVASFHGIILGYSRQFFALARAGYLPASLAKLSRFQTPHRAIIAGGVIGIAAIYSDGLINLGGMTLTAAMITMAVFGAIVMYIMSMLSLFKLRKTEPNLERTFRAPGYPIVPGIALALAVVCLVAMAWFNALIGLIFLGFMAVGFVYFVLTAQLRADAPADAMLTGL				NA	NA	NA	NA	NA
D1-36_03465	168			hypothetical protein	ATGCCCTGGTATGCCTGGTTAATCCTGATCGTCGCCATCGGCTCGATCGTGGGTGGTCTGATGATGCTGCGCGACACCGCCAGCAAGGTCGAGCTGACGGACGAACAGCGCAAACGTGTTGCCGAGCGCAATGCCGAGATGGATGCGAAAGAAGCGAAGGATCGCTGA	MPWYAWLILIVAIGSIVGGLMMLRDTASKVELTDEQRKRVAERNAEMDAKEAKDR				NA	NA	NA	NA	NA
D1-36_03466	852			hypothetical protein	ATGTACAAAGACTACCCAGCCGCCTACCAGGTCAGCAAAGGCTCTGCCCTCCAAGTGGACAAACCCTTTTACGACCGCATCCGCACCCAGCAGAACAAACGCACCCTGATCGAGCAGTTCGAAGTCCCAATCCGCACCGGCCGCGCCTGGCATGTGCCGGCCGGTCATGTCTTTCGCGTGACAACCCCGGTCGGTCCGCAAGTCGGGGATTTCAACGTCTGGAACGCCCACGATCCACGTGAACGGTTGTGGGCGGCGCGGACGCGGCAGCTGCAGGGCGCTCATGTCAGCACCTATGATCGGTTGTGGTCGAACCTGCCATTTCTGCGGCCTTTGGTAACAATCACCGATGACAGCTTGGCCAACTACGGTATCGACGAACACGGCGGGCGTTTGCATGATTTGCTGGGGACGCGATGTGACCCGTACGTGAACAAGATGCTGACCGGCGAAGATTTCCATCATCACTGCCACTCGAACCTGACGCGTGCGGTGTTGCCCCATGGTTTGACCGAGTTTGATGTCCACGATGTGCTGAACATTTTCCAGTGCACCGGGCTGAATCATGACGACATGTATTTCATGAAGGCGTGTCCGGCACAGAAGGGCGATTACCTGGAGTTTTTTGCGGAGATCGATTTGTTGTGTGCATTGTCGACGTGCCCTGGTGGGGATCTGTCGCTGGCGATGTGGGGGCCGGAGGCGCAGGATCCTTTAAGCGTTTGTCGTCCGCTGGGAGTGGAGATTTATCGGTTGGAGGATTCGTTGCTGCAGGGCTGGAGTCAGCCGGAGCGGGCGGCTTACAAAGGGCTGCATGGGTTGCATATTGCCAAGGCGGATTGGGAGAACTAA	MYKDYPAAYQVSKGSALQVDKPFYDRIRTQQNKRTLIEQFEVPIRTGRAWHVPAGHVFRVTTPVGPQVGDFNVWNAHDPRERLWAARTRQLQGAHVSTYDRLWSNLPFLRPLVTITDDSLANYGIDEHGGRLHDLLGTRCDPYVNKMLTGEDFHHHCHSNLTRAVLPHGLTEFDVHDVLNIFQCTGLNHDDMYFMKACPAQKGDYLEFFAEIDLLCALSTCPGGDLSLAMWGPEAQDPLSVCRPLGVEIYRLEDSLLQGWSQPERAAYKGLHGLHIAKADWEN	PGPT0001000_196	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-UREA_USAGE	N-AQUISITION-UREA_METABOLISM,PGPT0001000-ycgI-K09967	NA	NA
D1-36_03467	654			hypothetical protein	ATGACCAGCCCCCTTTCCCTAGCCGACCAAATCACCCTGGAACTTCGCTCCGACATCATCGGCGGTCGCCTCATCCCAGGCACGGCGCTGGTGGAAAACAACCTGGTCTGCGCCTACAACGCATCTCGCAACACTATCCGCGAAGCGTTACACCGCCTCGGCCAGGAAGGCCTTGCCCGTTACGTGCGTAACAAAGGGGTAACGGTTCGCAGGTTGGGTGTCGATGATGTGCGGGATTTGTTCAAGGTCCGCCGTACCCTGGAGCTGCGGGCCATTCTGAGCAGCAATCCACTGAGCGAGTATCAATCCGACCACATGCTCGAAGCCCTGGAGGCCGCTGAGCTGGCTCGGGATCGCGAAGATTGGCGAGCGGTGGGCACCCACAGTCTGGCCTTTCATCAGCACATCGTGGGACTGATGCGCAGTCCGTTGCTCGATGAGTTTTTTACCAACGTGGTCGCGCAACTACGCTTGGTGTTTTGTTCCGCTCCCGACGAAGCGCGCTTTCAGGCGCCGTGGCTTGCCCGTGACCGGCAGATCCATGACTGGCTCGCGGAAGGTGACAAGCCTGCTGCTCACGACGAGCTGAGCGTTTATCTCGACGATTCCGAGCAGTTGCTTGTGCACCTGCTGACTCCCGCCAACCCTCACTGA	MTSPLSLADQITLELRSDIIGGRLIPGTALVENNLVCAYNASRNTIREALHRLGQEGLARYVRNKGVTVRRLGVDDVRDLFKVRRTLELRAILSSNPLSEYQSDHMLEALEAAELARDREDWRAVGTHSLAFHQHIVGLMRSPLLDEFFTNVVAQLRLVFCSAPDEARFQAPWLARDRQIHDWLAEGDKPAAHDELSVYLDDSEQLLVHLLTPANPH				NA	NA	NA	NA	NA
D1-36_03468	336		COG1555	putative protein	ATGCGTACAGGCTATTTCTACTCGCTGATTTTTGCCTTCCTCACCAGCGCCTCGATTGCTGTTATTGCGGCTCCAACGGTCAAGCCGGAGTCGGTTGCTTCGCCGCAGGCGGTGGAGCAGCCAGCGAGAACGCAAGGTGCCAAGGTGGATTTGAACGGGGCGGATGCCGCAACTTTGCAGCGCGAGCTCTCAGGGATAGGCAAGGGCAAGGCTGAGGCGATTGTTGCCTATCGGGAGAGCAATGGGCCTTTTTCGTCGGTGGACGAACTGCTTGAAGTCAAGGGCATCGGCAAGGCGATTCTCGATAGGAATCGTGACAAGCTGGAGGTGAATTGA	MRTGYFYSLIFAFLTSASIAVIAAPTVKPESVASPQAVEQPARTQGAKVDLNGADAATLQRELSGIGKGKAEAIVAYRESNGPFSSVDELLEVKGIGKAILDRNRDKLEVN	PGPT0029410_2999	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
D1-36_03469	1995	pglF	COG1086	UDP-N-acetyl-alpha-D-glucosamine C6 dehydratase	ATGGATAAATTAAGAACAGTCTTGTTGGGGCTCCCGAGGCGCCATAAGCGAGCAATTCAAGTAGCCATGGATATTGTGCTGGTCTGGATTGCACTGTGGCTTGCATTTGTCGTGCGACTGGGTGTTGACGCGTTGATAGCACCGATCGAAACGCATCTGTGGCTTTTCGCATCGGCTCCACTGGTCGCCATTCCAATCTTCATCCGCTTCGGCATGTACCGCGCAGTCATGCGTTATTTCGGCAACGACGCACTGATCACCATCTGCAAAGCGGTCAGCCTTTCCGCCTTACTGCTGGCCTTGGTGGTGTATTGGTACAGCAACCACAAAACGGTAGTTCCGCGCTCCATCATCTTCAATTACTGGTGGTTGAGCCTCATCATGATTGGCGGTTTACGCCTGATGATGCGCCAATACTTCCTGGGCGACTGGTTCACCGCGGCCCAGCATGTGCCCTTTACCAATCGAGACGACGGCCTACCTAAGGTCGCTATCTACGGCGCCGGCGCGGCAGGCAACCAACTTGTCGCCGCGCTGCGTATGGGGCGGGTGATGCGGCCCGTTGCGTTCATTGACGATGATAGCAGCATCGCCGATCGCGTCATCGCAGGGCTCCAGGTCTATCAACCCAGCCACATTCAAAAAATGATCGATGCGACTGGCGCTCAGGAAATACTGCTTGCCATCCCTTCTTCATCACGCGGCCGCCGTCGAGAAATCCTGACCCTGCTCGAAGGCTTCCCACTGCACGTGCGCAGCGTTCCGGGTTTTATGGATCTGGCCAGTGGTCGGGTCAAAGTGGATGACATCCAGGAAGTGGATATCGCTGACCTTCTGGGTCGTGATCCCGTGCCGGCACAGCCTGATCTGCTAGCGCATTGCATTACAGGCCAGTCGGTCCTGGTGACCGGTGCCGGCGGTTCGATCGGTTCTGAGCTCTGTCGACAGATCCTGGCGCTAAAACCCACCACATTGCTGCTTTTCGAGCACAGCGAATTTAATCTCTACAGCATTCTTTCCGAGCTTGAGCCACGAATCGCTCGGGAATCTCTGTCTGTTCGCCTGTTGCCGATCTTGGGGTCGGTTCGCAACCAAGAGAAACTGCTTGATGTGATGAAGACCTGGAATGTTGACACGGTCTACCATGCAGCGGCCTATAAGCATGTGCCCATGGTTGAGCACAACATCGCCGAAGGTGTCTTGAACAATGTAATCGGGACACTGAATACCGCGCAGGCTGCATTGCAGGCGGGTGTATCGAACTTTGTCCTGATCTCGACCGACAAGGCCGTACGCCCGACCAATGTAATGGGCAGCACGAAGCGGCTCGCTGAGCTGACGCTGCAGGCGTTGAGTCGCGAGTTGGCCCCGGTGCTGTTCGGTGATCAGGCCAATGTGTCCCGGGTTAACAAGACACGCTTTACCATGGTCCGCTTCGGTAACGTATTGGGCTCATCCGGATCGGTTATTCCGCTGTTCCATAAACAGATCAAATCCGGCGGGCCGTTGACCGTTACCCACCCAAAGATCACGCGTTACTTCATGACCATTCCAGAGGCCGCGCAACTTGTGATCCAAGCAGGATCCATGGGCTTGGGAGGGGATGTGTTCGTGCTGGACATGGGCGAGCCGGTGAAGATTGTCGAGCTGGCTGAGAAGATGATTCACTTGTCCGGACTGAGCGTTCGCTCTGAAAAGAATCCTCACGGTGATATCGCGATCAAGTTCACCGGCCTGCGCCCCGGCGAGAAGCTTTATGAGGAACTGCTGATTGGCGACAACGTGGTCGCGACCCAGCATCCAATGATCATGAGCGCCAATGAAGACTTCCTGCCTTGGGATGTCCTCAAGCTAAGGCTGGCAGACTTGCTGACGGCCATCGAAGCAGATGATTACGCCCGAGTTCGCCAGTTGCTTCGCGACACCGTCAGCGGCTACGCCCCGGACGGCGAAATTGTCGACTGGATCTACCAGCAGCGTCACCTTGAGCCTTGA	MDKLRTVLLGLPRRHKRAIQVAMDIVLVWIALWLAFVVRLGVDALIAPIETHLWLFASAPLVAIPIFIRFGMYRAVMRYFGNDALITICKAVSLSALLLALVVYWYSNHKTVVPRSIIFNYWWLSLIMIGGLRLMMRQYFLGDWFTAAQHVPFTNRDDGLPKVAIYGAGAAGNQLVAALRMGRVMRPVAFIDDDSSIADRVIAGLQVYQPSHIQKMIDATGAQEILLAIPSSSRGRRREILTLLEGFPLHVRSVPGFMDLASGRVKVDDIQEVDIADLLGRDPVPAQPDLLAHCITGQSVLVTGAGGSIGSELCRQILALKPTTLLLFEHSEFNLYSILSELEPRIARESLSVRLLPILGSVRNQEKLLDVMKTWNVDTVYHAAAYKHVPMVEHNIAEGVLNNVIGTLNTAQAALQAGVSNFVLISTDKAVRPTNVMGSTKRLAELTLQALSRELAPVLFGDQANVSRVNKTRFTMVRFGNVLGSSGSVIPLFHKQIKSGGPLTVTHPKITRYFMTIPEAAQLVIQAGSMGLGGDVFVLDMGEPVKIVELAEKMIHLSGLSVRSEKNPHGDIAIKFTGLRPGEKLYEELLIGDNVVATQHPMIMSANEDFLPWDVLKLRLADLLTAIEADDYARVRQLLRDTVSGYAPDGEIVDWIYQQRHLEP	PGPT0022960_60	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_D_QuiNAc_MODIFICATION,PGPT0022960-wbpM-K24300	NA	NA
D1-36_03470	1014	wecA		Undecaprenyl-phosphate alpha-N-acetylglucosaminyl 1-phosphate transferase	ATGAATGTTATGTTGTCCCTGTTGTTTGTCGGTTTATCCTGCGCGCTCACTTGGTTGCTACGTCGTTACGCCTTGTCGCGCAGTATGATTGATGTGCCCAACGCCCGTAGTTCACATACCGTTCCGACCCCTAGAGGCGGTGGTGTGGCCATTGTCCTTAGCTTTCTGTTGGCTCTGCCTGTTTTGGCTGTTGCCGGGTTTCTGACCTGGCCAACCATGTACGCGATGCTTGGGTCTGGCATGGGCGTCGCTGTTCTGGGTTTTCTGGACGATCATGGCCACATCGCTGCTCGCTGGCGGTTACTGGGGCATTTCGCGGCTTCGGTATGGGCGTTGTACTGGCTAGGTGGGTTGCCGCCAATCACATTGTTTGGTCTGGATTTGGAGTTGGCTTGGTTTGGACACATCCTCGCGCTGTTCTACCTTGTCTGGGTGCTTAATCTCTACAATTTCATGGATGGTATTGACGGCATTGCCAGCGTGGAGGCAATTTGCGGTTGTCTAGGGGCGTGCCTGCTTTATTGGTTGGGCGGTTTTGACTCCTTGATTGTCGCTCCTCTCGCACTAGCGTTGGCTGTGGCTGGTTTCCTTTTTTGGAATTTCCCTCCCGCACGCATTTTCATGGGGGATGCGGGTAGCGGCTTTCTCGGGATTATCCTGGGAATGCTGTCGCTACAGGCTGCCTGGGTTTCATCCAAATTATTATGGGTTTGGCTGATCCTTCTCGGTGTTTTTATAGTCGACGCAACCGTCACATTGCTAAGACGGCTGCTTCGTGGCGACAAGGTCTACGAGGCTCATCGCAGCCACGCCTACCAGTTCGCTTCGCGTCAGTTCGGTCGGCATCTACCTGTGACCTTGGCGGTGATGGCAATCAATTTGTTATGGCTGCTGCCGTTGGCTGCATGCGTCGTATTGTTGGACATCGACGGAGCGTTGGCTTTGATAGTGGCTTATGTGCCATTGGTGATGCTTGCGGTCAGGTTTCATGCGGGCGAGCTTGAAGAAGCATGA	MNVMLSLLFVGLSCALTWLLRRYALSRSMIDVPNARSSHTVPTPRGGGVAIVLSFLLALPVLAVAGFLTWPTMYAMLGSGMGVAVLGFLDDHGHIAARWRLLGHFAASVWALYWLGGLPPITLFGLDLELAWFGHILALFYLVWVLNLYNFMDGIDGIASVEAICGCLGACLLYWLGGFDSLIVAPLALALAVAGFLFWNFPPARIFMGDAGSGFLGIILGMLSLQAAWVSSKLLWVWLILLGVFIVDATVTLLRRLLRGDKVYEAHRSHAYQFASRQFGRHLPVTLAVMAINLLWLLPLAACVVLLDIDGALALIVAYVPLVMLAVRFHAGELEEA	PGPT0023190_107	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0023190-wbpL-K13007	NA	NA
D1-36_03471	978	gnu	COG0451	N-acetyl-alpha-D-glucosaminyl-diphospho-ditrans,octacis-undecaprenol 4-epimerase	GTGACTGCCAATAATCACAAGGAAGTTCAAAACGTTTTAGTTACCGGGGCTAACGGCTTCATCGGTAGGGCTCTTTGTCATAGGCTTTTGTCGGAGGGCTATAACGTATCTGCAGTGGTTCGCCAGTTGTCTAAGCCGATCGACAGGGTCAATTATTTGGTGGCCGATCTTGAGCGTTCCGATGACCTTAGTCTAGAGGGGTTGGGCATCGACTGCATTGTTCATTTGGCGGGACGTGCTCACGTGCTGGGAGAAAGAAATGCTGGCGCCCTTGAGTTGTATCGTCTTGCGAACCGAGATGCGACGGTACGGCTGGCTCAGCTGGCTATTGCTGCGGGTGTGAGGCGCTTTGTTTATATCAGCTCGATAGGCGTCAACGGATCAGAAACCTGCACAGGTGCGTTTGATGAGCGAACCACAGCTCACCCTCACGCTGACTATGCCGTTTCGAAATATGAAGCGGAATTGCAACTCAATGCAATGATGAAAAGCTTAGCTATTGAGTCTGTTATCGTTCGTCCCCCCTTGGTTTATGATGTTCAGGCCCCAGGAAATTTCGCCAGGCTCTTACGGTTGGTTTCGAGCGGGTTACCACTGCCTTTCGCCGCTCTGGACAATAAGAGAAGTATGATTTCCCTTAAGAATCTGGTGGGGTTTGTTGAGTTGTGTGTCCGGCACCCCGATGCCGCTCAAGAGCTCTTTCTTGTATCTGACGGGTGTGATCTATCTACGACCGATATAGTAAAGTTGCTCGCTGAAGGGATGGGCAAGCGGCCATGTATGTTTCCTATTCCGGATAGCTTGGCTTTATTCGGAGCCAAACTGATTGGTCGCCAGAATTTGCATGTGCAGCTCTTCCGTTCGCTGCAAGTTGATTCATCCAAGGCCAGGCGTTTGTTGGGCTGGCATCCAGAAGAGGATGCACGGGCCGCGTTGATTGAAGTGGGAAGCAGTTGGAATCGGCGGTACTCCCGTTGA	MTANNHKEVQNVLVTGANGFIGRALCHRLLSEGYNVSAVVRQLSKPIDRVNYLVADLERSDDLSLEGLGIDCIVHLAGRAHVLGERNAGALELYRLANRDATVRLAQLAIAAGVRRFVYISSIGVNGSETCTGAFDERTTAHPHADYAVSKYEAELQLNAMMKSLAIESVIVRPPLVYDVQAPGNFARLLRLVSSGLPLPFAALDNKRSMISLKNLVGFVELCVRHPDAAQELFLVSDGCDLSTTDIVKLLAEGMGKRPCMFPIPDSLALFGAKLIGRQNLHVQLFRSLQVDSSKARRLLGWHPEEDARAALIEVGSSWNRRYSR	PGPT0023010_2	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_D_FucNAc_MODIFICATION,PGPT0023010-wbpK-K24312	NA	NA
D1-36_03472	1344	rkpK_3	COG1004	UDP-glucose 6-dehydrogenase	ATGAAAATTACAGTATTCGGTAGTGGATATGTTGGGCTCGTCACGGGAGCTTGTCTGGCTGATGTCGGTCATACCGTGATGTGCATTGATATCAACAAGGAAAAAATTGACGCCTTAAACTGTGGTGTCATACCAATATACGAGCCAGGGCTTGACGAGCTGATATTGAATAATGTCCAGGCCGGACGTCTGAGATTCTCGACCGACGCTGCAAAAGGTGTCGAGCATGGCTATCTCCAATTCATCGCCGTCGGAACACCGCCGGACGAAGATGGTAAAGCTGATCTGCAATACGTGTTGGCCGTTGCTAAAACTATCGGTCTTTACATGGATAATGAAAAGTTGATCATCGATAAATCGACGGTTCCGGTAGGGACCGCTGATCAGGTGAAAGCCGTTATAAGGCAACAACTTGAAGCCAGAAATAAAAAAATAGACTTCAATGTTTGCTCTAATCCTGAGTTTCTCAAGGAAGGAGCAGCTATTGATGATTTCACGAAAGGACCTCGAATCATCGTTGGCACTGATTCGGAAAAAGTCGCCAATGACATGCGCCAATGCTATGCGCCATACAATCGTAATCACGATAAGATCATGTTTATGGATGTTCGTTCAGCGGAGCTTACCAAGTACGCAGCGAATTCTATGCTCGCCACTAAAATTAGTTTTATGAATGAATTGGCTAATTTGGCCGAATGTCTCGATGCAGACATTGAAAGTGTACGCCTTGGTATCGGTTCCGACCCCCGGATCGGTTACCACTTCATTTATCCAGGCTGTGGGTATGGCGGGTCCTGTTTTCCCAAGGATGTCCAAGCACTGGCTCGTACTGCTCAGGAAGCGGGCTATCAGCCTGATTTGCTGCTGGCTGTCGAGGCGGTCAATAATCGCCAAAAGGATATCTTGTTTAAAAAATTGACACAGGCTTTTGATGGCCAGCTCAAGGGCAAATGCGTCGCCCTGTGGGGATTGGCCTTCAAGCCAAATACCGATGACATGCGGGACGCTCCAAGCCGTACCCTTATGGAAGCTTTGTGGGCCGCTGGTGCTTCTGTTAGGGCACACGATCCCGAAGCAATGGAAGAATGTAAGCGAATCTACGGTGCTCGTGATGACCTTATGTTATGCGCTACCAGAGAGGATGCGGTCGAGGGCGCCGATGCATTGGTAATTTGTACTGAATGGAAAGCCTATAGGACGTTAGAGGCTGATTGGCTGAAGAGTACTTTGCGTTACCCTGTAGTTGTAGACGGGCGAAATATCTTCAACCCTACCGAGATGACCGAGGCCGGGCTGCTGTACTTTGCGATTGGCCGAGGAATTTCTAACCGTGACTGCCAATAA	MKITVFGSGYVGLVTGACLADVGHTVMCIDINKEKIDALNCGVIPIYEPGLDELILNNVQAGRLRFSTDAAKGVEHGYLQFIAVGTPPDEDGKADLQYVLAVAKTIGLYMDNEKLIIDKSTVPVGTADQVKAVIRQQLEARNKKIDFNVCSNPEFLKEGAAIDDFTKGPRIIVGTDSEKVANDMRQCYAPYNRNHDKIMFMDVRSAELTKYAANSMLATKISFMNELANLAECLDADIESVRLGIGSDPRIGYHFIYPGCGYGGSCFPKDVQALARTAQEAGYQPDLLLAVEAVNNRQKDILFKKLTQAFDGQLKGKCVALWGLAFKPNTDDMRDAPSRTLMEALWAAGASVRAHDPEAMEECKRIYGARDDLMLCATREDAVEGADALVICTEWKAYRTLEADWLKSTLRYPVVVDGRNIFNPTEMTEAGLLYFAIGRGISNRDCQ	PGPT0017855_2339	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
D1-36_03473	945	galE1_2	COG1088	UDP-glucose 4-epimerase	ATGAAACGTGTAATGGTTACTGGCGGGGCAGGCTTCGTTGGCTCTCATTTGTGTGAGCGGCTGTTGGAACGGGGCTGTGAAGTTCTTTGTGTGGACAATTTTTATACCGGTGCTAAGCGCAATATCGCTCACCTGTTACAGAATCCGTACTTTGAACTCCTTCGTCACGATGTAACCTTCCCATTACATGTAGAGGTTGATGAAATTTATAATCTGGCCTGCCCAGCATCTCCTGTACATTATCAATTCGATCCGGTGCAAACGTTGAAAACCAGCGTTCACGGCGCGATTAATATGTTGGGGCTCGCTAAACGAACTAAAGCCAAAATTTTTCAAGCTTCTACCAGTGAGGTGTACGGCGATCCAGAAGTGCATCCCCAGCCTGAGTCCTATTGGGGGAAGGTAAACCCTATTGGCATCCGGTCGTGCTACGACGAAGGGAAACGCTGTGCAGAAACACTTTTTTCTGACTATCACCGGCAGCATAATGTTCGGATAAAAATTGCTCGTATTTTTAATACCTATGGCCCACGTATGCATCCGAATGATGGCAGGGTCGTAAGCAACTTCATTGTTCAAGCGCTTCGTGGAGAGGACATCACTATCTACGGTGAGGGACAGCAGACCCGTAGCTTCTGTTACGTCGACGATCTAGTAGAAGGGTTTCTGCGCTTAATGGATACACCCGATAGCGTCACGGGCCCAGTCAATCTCGGTAACCCGGGTGAATTCACTATTCGGCAGCTGGCTGAGCGAGTGCTGGAACTGGTGGGTTCGAATTCGAAACTTGTGTTCCAGCCGTTACCTCAGGATGATCCCCAGCAGCGCCAGCCGGATATTAGCTTAGCTAAGGAGCTGTTGAATTGGCAGCCGACAATTATGCTTGATCAAGGTTTGGAAAAAACGATCAAGTATTTTGACAATCTGTTGTCGGAAAAAAGTTAA	MKRVMVTGGAGFVGSHLCERLLERGCEVLCVDNFYTGAKRNIAHLLQNPYFELLRHDVTFPLHVEVDEIYNLACPASPVHYQFDPVQTLKTSVHGAINMLGLAKRTKAKIFQASTSEVYGDPEVHPQPESYWGKVNPIGIRSCYDEGKRCAETLFSDYHRQHNVRIKIARIFNTYGPRMHPNDGRVVSNFIVQALRGEDITIYGEGQQTRSFCYVDDLVEGFLRLMDTPDSVTGPVNLGNPGEFTIRQLAERVLELVGSNSKLVFQPLPQDDPQQRQPDISLAKELLNWQPTIMLDQGLEKTIKYFDNLLSEKS	PGPT0019015_1893	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_UDP-GALACTOSE-XYLOSE_POOL,PGPT0019015-uxs-K08678	NA	NA
D1-36_03474	795	wfgD		UDP-Glc:alpha-D-GlcNAc-diphosphoundecaprenol beta-1,3-glucosyltransferase WfgD	TTGAGCGAGTTTGCGCGGAAATTAGTTTCAGTCATCATGCCTTCTTATAATGCGGAGGGCTTGATCGCGCGGTCGATACAGTCTGTGATTGATCAATCTTATACCAATTGGGAGCTGATTGTTATAGATGACTGCTCGAAGGACGCAACCCGTCAAGTTGTCCAATCGTTCGTAGAGAAAGACTCGAGAATCAAGCTTATATCTCTTGAAAAAAATAATGGAGCTCCGGCGGCTCCTAGAAATATTGGAGTACGTAATTCATCTGGCGGTTGGATTGCTTTTCTAGATGCGGATGATATATGGCATCCTCAGAAGCTGAAGCTGCAAATTGACGCGCTTCAGACGAGTAATGTCGATTTTTGTTGCACCCAAATGAAAGATTTTACTGATGATACGCTTCTCACTTTTGATCCGGTAATGGAAGTTGCCGTGGAGCAAATCAGTTTCGCTAAGCAGCAGATAAAAGGCCGGATTCCTACCTCTAGCGTGGTGGTTAAGAAGGATCTCATGTTGCGCTTTCCTTTCAATGAGGATATCCGCTACAAGGCAGTTGAGGATTATCATTGCTGGTTGAGAATGCATGAGGAAATCGGGGCTACAATAAAGCTTTGTTATCCTTTGCTGAGCTATAGACGAATAGTAGGCCAAATATCAGGTTCGAAAAAATACATGCTTGAGCGTATGTATATGGTTCATAAAGAATATCCTGGAACTTCTGCTGCTCAAGCAGCGCTTTACACAATTACCCATGCGCTGGGTGGGTTTTACTATCGAATTTTGAGGAAGGGATTATGA	MSEFARKLVSVIMPSYNAEGLIARSIQSVIDQSYTNWELIVIDDCSKDATRQVVQSFVEKDSRIKLISLEKNNGAPAAPRNIGVRNSSGGWIAFLDADDIWHPQKLKLQIDALQTSNVDFCCTQMKDFTDDTLLTFDPVMEVAVEQISFAKQQIKGRIPTSSVVVKKDLMLRFPFNEDIRYKAVEDYHCWLRMHEEIGATIKLCYPLLSYRRIVGQISGSKKYMLERMYMVHKEYPGTSAAQAALYTITHALGGFYYRILRKGL	PGPT0015205_213	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-LIPO-|TEICHURONIC_ACID_METABOLISM	CE-EPS-TEICHURONIC_ACID_METABOLIC_PATHWAY,PGPT0015205-tuaG|ggaB-K16698	NA	NA
D1-36_03475	1554			hypothetical protein	ATGAGGATCGGACTTGTCAATATGTTCTCTTTTAGGCCTCACGTCGAGCATTTGTATTATTTGGCTAGAATGCTTGAAGATGGCGGGCATGAGATTTTCTATCTGACCTGTGACGGTGCAGTGAGTAATTGCTACTCCCGAGCAATCAAAGGCAAGCGGAAGCTACAAGAGTGTCCCAAATGTATCTTGGGAGGCGTCAGGAGCTTTCCGGTAAAAAATGTCACTTCCGTAAGCTCTGGCTCTGAGAGTCTAGACTCAGATGTGTTAGACCGTCTCGCACTGTCCAGTTCATGTACGTTAAACCGGACCGAATCTGAGATTGAGTGGAATGAGCCTCAAGTCGTTACGGTCAGGGAAAGTTTGTATGTACCTATTAACACAGTGTACCAAAGCGCCGTCCGGTGGATAGAAGATAACCGTATAGAAGCGGTAATTTGTTTCAATGGTAGAATGGATTTGCCCCGGGCTATTACGTATGCGTGTGAGCAGAAAAATATTCCCTATATCACTCATGAGCGAACTTGGTTCGGTGACGGGCTCCAGTTGATCCCCAACGCGAACTGTCTGTCGCTTAAGGCACTGGGCGATATGGTTAAAGAATACGATGATAGACCTTTGACTGCAGAACAGGCGAGGTTGGCGGGACGTCTGGCAGGTGAACGCTTCCTGCAAAAAAATTCTCTCGAATGGCGTCTATATAATAGAAATCCCGAACCTGCACCTTGGCCGTTAACCAGCGACGGGCCCCGAGTACTGGTTATTCCAAGTAGCAAAAACGAATTTGCCGGTCACGATGAGTGGCGTACGGAGTGGAAGGACAACACCAAGGCACTTGATGATCTATTCGAAGCGTTTTCAATAAAGCCAGAGCAAGTAGTGGTTCGCTGTCATCCCAATTGGGCTGAAAACATCGGGAAAGTAGTCGGTGACAGATCGCTTTCTTTATATAAAGAGTGGGCGTTCAAGAATAATATCTATTGTATATCCAGCGAGCAAAAGGCAAGTACCTATGATCTTATTCAGCAGGCGGATATAGTAGTCCTTAATGGCGGAAGCTCTGCAGTCGAAGCCGGGGTATGTGGCAAGCAAGTTATCTGCATGGGGCCCTCAACGTATCAGGAGGCGGGTTTTTTAAGGGCGTTTCGAGATAAGCAGTCTTTATATGCAAGTGATGCTCGGGTTTCGCTTGATCCAGATATCGTTATTCGCAAAACATTACGCTTTTTATATTTAAGGTCTCACCGCTTCTCACAATACGTAAAATATGTCAAAGCTGTGGAGACTACGCGTTACAGGTATTTCGAGGGAGCTGACCCTGAGAGAATTATCTCCATGCTAAAAACAGGTAAGCTGACAGCTGACGACGCGACGTTCGCTGACGATGGCTATGGCGAAGACGTCGTAGTCGACGCCCTGAAGAAGAAGGAATGGGCGCAGCTTGCAGAATACGAGGCCCAGCCGATCATGTTGGAGCCACTTTTGATACGCAGGCGTTTCGGGTTGCGCTGGGTAGATAATGTTAGGGCAAAAATGCCAAGAGGAGATCGAGGTTGA	MRIGLVNMFSFRPHVEHLYYLARMLEDGGHEIFYLTCDGAVSNCYSRAIKGKRKLQECPKCILGGVRSFPVKNVTSVSSGSESLDSDVLDRLALSSSCTLNRTESEIEWNEPQVVTVRESLYVPINTVYQSAVRWIEDNRIEAVICFNGRMDLPRAITYACEQKNIPYITHERTWFGDGLQLIPNANCLSLKALGDMVKEYDDRPLTAEQARLAGRLAGERFLQKNSLEWRLYNRNPEPAPWPLTSDGPRVLVIPSSKNEFAGHDEWRTEWKDNTKALDDLFEAFSIKPEQVVVRCHPNWAENIGKVVGDRSLSLYKEWAFKNNIYCISSEQKASTYDLIQQADIVVLNGGSSAVEAGVCGKQVICMGPSTYQEAGFLRAFRDKQSLYASDARVSLDPDIVIRKTLRFLYLRSHRFSQYVKYVKAVETTRYRYFEGADPERIISMLKTGKLTADDATFADDGYGEDVVVDALKKKEWAQLAEYEAQPIMLEPLLIRRRFGLRWVDNVRAKMPRGDRG				NA	NA	NA	NA	NA
D1-36_03476	1353			hypothetical protein	ATGAGTGGCAATATAAGTGGGAAAGGGCGGGCTGAATTGATAATTGCCAAGAAAAATTTATTGCATATTATTTTGCCTGTTGCAATAGTGTTGGCTGTTGCGTTGCTGTTCTTGGTGCTTGAATTGTCTATTCCCTATACATCCGCAGTTGCGGATGTATACCCTGCCTATGGGGTGTATGCTCTATTTTATGTGGTCATGGTTGTCTCGTACTTTCTGGTGTCGCTAAGTCTATATTTTATTGATGCGCGTACGACTTCAGCCTCTGTATATTCGCCGTCTCGTGAGTTGTATACAGTTATGAGGCTGTCGTGCTGGCTGTCGATATTAGGGCTTGGTTTCTTAATTATAGACCGATCTTTATATCAGGGTGTGGATTACTTAAGTAGTAATTTTGTGGAGATCAGGTCACGGTTGAATTCTGAAAGAGCCGGCGCGGAGGGTGTCTCTTCTATTTTTAGCGTGGTGGGGAATCTGTTGCAGTTCTGGTACTATTTTGCTTTTGTATTTCTAGTTTATTACTATGAATTTTTTTCCCGCAAACAGCGGTGGGTCTTAGCGTCGTTAATTTTTGTCGCACTTTTGACAGGATCTTATATTCTCGGCGGACGCTCACTCATCGGTGTGTTGGTCGTTAGTTTTATTGCGGTAATTATCGCCCGAGGAAGCTCCGGTCGAGGTGCGTATACAGAACTGTTTAAGATAAGATCTTTGGTTTGGATTTTCTTTGCGGGTATGCTTTGTTTGGCTGCAATCATGTTTGTTTTTTATGCACGTGCCTCTGTGGGTGGAAATGACTCGGAGGCTTACCTAAATAGCTTTGTAGATCACCTCCATGGCATGAAAACCCAATCTTACAACGCCTGTGACTCTGGAGCTGTTTGCGATATAAAAAATTACCTTCTTCTGACCGCCTTATATGTAACCCATACGTTCTGGGTGCTGTCCGAAAATATCCAATATTTACCTTCTGATGCGGGCGGGTCTGCGTTATGGGGGGGCATACTCGCCTTGAGTTCGAAAGTTATCGGCTCGGCAGGTGGCGAATATCAGTATGCGGGGTTATTTAACTCCTTGCCAGGATCGATTTATTACGAGTATGGTTTACTTGGGGTTGTCGCAGGAGCGCTTTTGTTGGCTAGCCTCTTGGCTTGGATGAATTTCTCCCTTCTGCGCTCTAGCGGTATATTTAAGGTAATATTTTATGTTGCTTTACTGGATACGCTGTTAGTAGCCCCTGTCCTTTCTTCTATGAATGTAATTATGTTTATTTTTGTCTTGGTTTCGCTGTGTTCGGCGGCAGGTATATATATGTTTTTGTGCTCGATAAAAAAGGAGGTTAGGTCTTTATGA	MSGNISGKGRAELIIAKKNLLHIILPVAIVLAVALLFLVLELSIPYTSAVADVYPAYGVYALFYVVMVVSYFLVSLSLYFIDARTTSASVYSPSRELYTVMRLSCWLSILGLGFLIIDRSLYQGVDYLSSNFVEIRSRLNSERAGAEGVSSIFSVVGNLLQFWYYFAFVFLVYYYEFFSRKQRWVLASLIFVALLTGSYILGGRSLIGVLVVSFIAVIIARGSSGRGAYTELFKIRSLVWIFFAGMLCLAAIMFVFYARASVGGNDSEAYLNSFVDHLHGMKTQSYNACDSGAVCDIKNYLLLTALYVTHTFWVLSENIQYLPSDAGGSALWGGILALSSKVIGSAGGEYQYAGLFNSLPGSIYYEYGLLGVVAGALLLASLLAWMNFSLLRSSGIFKVIFYVALLDTLLVAPVLSSMNVIMFIFVLVSLCSAAGIYMFLCSIKKEVRSL				NA	NA	NA	NA	NA
D1-36_03477	1050	pseI	COG2089	Pseudaminic acid synthase	ATGAATCCGTTTATCTCTATCGCGGGGCGTAAAATAGGGCCTGATTACGCTCCTTATGTGATTGCGGAGCTTTCTGCGAATCATAACGGCAAACTGGAAACCGCCTTGAAAATTATCGACGCTGCAAAGAAGGCTGGCGCCGACGCTGTAAAACTACAGACTTATACTGCGGACACGATAACGCTTAACTCCGATGCTCCAGAGTTCCAAATAAAGGGAGGGCTGTGGGACGGTCGATCTCTATATGAATTATATGTCGAGGCGCAGATGCCTTGGGAGTGGCACGCACCGTTGTTTGAGTACGCAAGGAAGCTAGACATCACAATTTTTAGCTCGCCCTTTGATAATACTGCTGTCGATCTTCTGGAAGACCTGAATGCACCCGCCTACAAGATCGCGTCGTTTGAAGCGGTAGATCTGCCATTAATAAAATATGTTGCTGCTACCGGAAAACCGATGATCATCTCTACCGGTATGGCAGATGCGGATGAGATAGCAGAGGCTATAGAAGCCGCTCGGCAGGGCGGTTGTAAAGAATTAGCGGTCCTTCACTGCGTTAGTGGTTATCCAGCTCCGGCAGAAGACTATAACCTGCGTACGATACCAGACATGGTTCAACGCCATGGTTTAGTGACGGGGCTTTCGGACCATACTTTGGATAATACAACCGCGATTACTAGTGTTGCACTAGGTGCATCAATTATTGAGAAACACTTCACGCTCGATCGCAGCGGCGGTGGCCCAGATGACAGTTTTTCGCTGCAACCCCAAGAGCTTATGGCGCTGTGCCGGGATAGTAAAACGGCATGGGCGGCGCTGGGCAAGGTTGATTATGGGTGTAAGTCTAGTGAGCAAGGAAATGTGCAATTCAGGCGCTCCCTCTATGCAGTGGAAAATATCGCCAAGGGTGAGATGATTAGTCTGAAAAATGTACGAAGTGTGCGCCCGGGCTATGGGTTGCCGCCGAAATACCTCGACATTATCTTAGGAAAAAGCGCTGCTGTTGATATCAAGAAAAACACGCCGTTGAGTTTTGACGTCTTAATATGA	MNPFISIAGRKIGPDYAPYVIAELSANHNGKLETALKIIDAAKKAGADAVKLQTYTADTITLNSDAPEFQIKGGLWDGRSLYELYVEAQMPWEWHAPLFEYARKLDITIFSSPFDNTAVDLLEDLNAPAYKIASFEAVDLPLIKYVAATGKPMIISTGMADADEIAEAIEAARQGGCKELAVLHCVSGYPAPAEDYNLRTIPDMVQRHGLVTGLSDHTLDNTTAITSVALGASIIEKHFTLDRSGGGPDDSFSLQPQELMALCRDSKTAWAALGKVDYGCKSSEQGNVQFRRSLYAVENIAKGEMISLKNVRSVRPGYGLPPKYLDIILGKSAAVDIKKNTPLSFDVLI	PGPT0022740_17	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-PSEUDAMINIC_ACID_MODIFICATION,PGPT0022740-pseI|neuB3-K15898	NA	NA
D1-36_03478	564			hypothetical protein	ATGGGTGTTGAGATGGAATTATTCGGTCAACTTCGTGATATTCATGCCGACGAGCTAAAGTTAATGCTTTCTTGGCGTAACGCCCCTGCCGTTCGGGCAAATATGTATACGAGGCATGAAATCAGCCTTAAAGAGCACTTGGCTTGGTGGGAGCGGGTCGCAAATCGCGCTGATCAGAAGTATTTTATGTACGAACTAGAAGGAAGGCCTGCGGGGGTTGTGGCTTTTAACGAAATTAGTATTTCAGACGCTATATCCTCATGGGCATTTTATGCGGCTCCCGATGCACCAAAAGGGACAGGCAGCAAAATGGAATTTCTGGCTCTGGACTACGCTTTTGATAAAATGTGCTTGCATAAATTGTCGTGCGAGGTATTGGCCTTCAATAGCACTGTAATAAAGCTGCACCAGAAGTTTAATTTTCAAGTGGAAGGTATTTTGCGGGAGCATCACAGGGTAGAAGGTAAATTTGTTGACGTGTATAGGCTTGGAATCTTGGATCGTGAGTGGGAAGCTCACAGGTCGTTTATGCGCGAAAAATTAACTAAGCTATCTGGAAGGTAA	MGVEMELFGQLRDIHADELKLMLSWRNAPAVRANMYTRHEISLKEHLAWWERVANRADQKYFMYELEGRPAGVVAFNEISISDAISSWAFYAAPDAPKGTGSKMEFLALDYAFDKMCLHKLSCEVLAFNSTVIKLHQKFNFQVEGILREHHRVEGKFVDVYRLGILDREWEAHRSFMREKLTKLSGR	PGPT0022730_48	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-PSEUDAMINIC_ACID_MODIFICATION,PGPT0022730-pseH-K15896	NA	NA
D1-36_03479	1134	pseG	COG3980	UDP-2,4-diacetamido-2,4,6-trideoxy-beta-L-altropyranose hydrolase	ATGAAAGGTATGAAGGTGGTGTTTCGGGCCGATGCGTCACTGCAGATAGGCATTGGGCATGTCATGCGTTGCTTGACCTTGGCTGAAGCGCTGAGGGATGCCGGCGCCGACTGCCATTTTATTTGTAGGGAACACCCGGGGCATTTGTTAGATTTAATTTGCGGCAAGGGGTTCGGCGCTCATAGCTTAACGGATGGCGAAGATGCTGAGCCCGGTGAGTTAACGACAGATGATCTGGATGAGCTAGCTCATGCTTCTTGGTTGGGTGTAAGTCAACAACAGGATGCAAAAGCCTGTGAGCAAATAATTACAGACCTAAAACCAAGTTGGTTAGTCGTTGATCACTACGGGTTAGACGCGAGATGGGAGCTATCGCTTAAAAAGAATGGTCTTAAACTTTTAGTTATCGATGATTTGGCCGATAGAATTCACGCTTCGGATATCTTATTAGATCAAACATTTGGACGTGCTCCCAAGGATTATAGTGCATTAGTTCCCTCTGGTTGCGTCGTTTTGTGCGGTGCTAAGTATGCGTTGCTTCGTCACGAATTTAAAAGACTCAGGCACTACAGTTTAAAGCGGCGGGTAAATTATAAGCTCGAGTCAATTTTAGTTTCTTTGGGTGGCGTGGATAAAGACAATATAACTCTTCAAGTATTGGAGGGGTTGAAGGAGGCGAGGCTGCCTAGCACTTGCCGTATCACGGTGGTGATGGGGTCAACTGCGCCTTGGTTAAAGGAAGTCCAAAATATAGCGAGTACTATGCCGTGGAAGACCGAAGTTCTCGTAGGTGTTAGCAATATGGCACAGTTGATGGCTGAATGCGATTTGTCAATTGGTGCAGCCGGAGCGACCTCCTGGGAGCGATGCTGCCTTGGCGTTCCAACTGCCTTGCTGGTTCTTGCCGAGAATCAGAAGTTCGCAGCCAACTTATTGAGCGATGCTAAAGCAGTCGTGATGGTGTCTCATGAAGAGGGCCTGCTGCCGCAGCTAAAGCTGATCATAGAACATGCTGTTAATTCCCCAAATTACCTAAAGGTTCTTAGCGAATCCGCGCAGTTAATAACCGATGGGACAGGCAGCGAGTATATAGAATCGTTGATCACTAAATTTGATCGTATCGATGGGTGTTGA	MKGMKVVFRADASLQIGIGHVMRCLTLAEALRDAGADCHFICREHPGHLLDLICGKGFGAHSLTDGEDAEPGELTTDDLDELAHASWLGVSQQQDAKACEQIITDLKPSWLVVDHYGLDARWELSLKKNGLKLLVIDDLADRIHASDILLDQTFGRAPKDYSALVPSGCVVLCGAKYALLRHEFKRLRHYSLKRRVNYKLESILVSLGGVDKDNITLQVLEGLKEARLPSTCRITVVMGSTAPWLKEVQNIASTMPWKTEVLVGVSNMAQLMAECDLSIGAAGATSWERCCLGVPTALLVLAENQKFAANLLSDAKAVVMVSHEEGLLPQLKLIIEHAVNSPNYLKVLSESAQLITDGTGSEYIESLITKFDRIDGC	PGPT0022735_101	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-PSEUDAMINIC_ACID_MODIFICATION,PGPT0022735-pseG-K15897	NA	NA
D1-36_03480	702	neuA	COG1083	CMP-N,N'-diacetyllegionaminic acid synthase	ATGAAACTGGCCGTCATTCCTGCCCGGGGCGGCAGCAAGCGCATCCCACGAAAAAACATCAAGATTTTTTGTGGCAAGCCGATGATCGCTTGGTCAATCGAGGCGGCATTCCAAAGTGGTTGTTTCGATAAGGTTATCGTCTCCACGGATGACGAAGAGATCGCCGAGGTTGCGCGTAATTGCGGAGCCAGCGTTCCATTCATGCGTCCAGCTGAGTTGGCTGACGATTACTGTGGGACAATACCGGTTATTCAGCAAGCAATTGAGCGTCTTAGGACTGATGGGTTTGAAGCCCAGCAGGTTTGCTGCCTTTATGCTACAGCCCCGTTTGTCAGCCCTGAAGATTTGCAGCGAGGTCTGGCGACTCTTGAACGAACCGGCAGCCAATACGCGTTTTCAGTCACCAGCTATGCATTCCCCATTCAGCGAGCGATTCGCCTGACAGAAAACGGAGGCGTGGAAATGTTTCACGCCGAGCACTTCAACACTCGCTCACAAGATCTGGAAGAAAGCTATCACGACGCCGGACAGTTTTATTGGGGGCTGACAACTGCATGGCTGGCTGGGCATATGATTTTCAGCCCACAGTCGAGCGCTGTTGTACTACCGCGCCATCGTGTGCAAGACATCGATACCCCAGAAGATTGGCTGCGCGCAGAGTGGATGCATAAGGCGCTTCAAGCGGAAAAATCTTTAGCATGA	MKLAVIPARGGSKRIPRKNIKIFCGKPMIAWSIEAAFQSGCFDKVIVSTDDEEIAEVARNCGASVPFMRPAELADDYCGTIPVIQQAIERLRTDGFEAQQVCCLYATAPFVSPEDLQRGLATLERTGSQYAFSVTSYAFPIQRAIRLTENGGVEMFHAEHFNTRSQDLEESYHDAGQFYWGLTTAWLAGHMIFSPQSSAVVLPRHRVQDIDTPEDWLRAEWMHKALQAEKSLA	PGPT0022745_145	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-PSEUDAMINIC_ACID_MODIFICATION,PGPT0022745-pseF-K15899	NA	NA
D1-36_03481	1161	per	COG0399	GDP-perosamine synthase	ATGATTCCATACGGCCGCCAGGATATAACCCAAGCTGACATCGACGCGGTGATTGGTGTGTTGCAATCCGACTTTCTCACCCAGGGCCCTATGGTGCCTCGATTTGAGCAGCAGGTTGCTGCCCACGTGGGAGCCAGCCATGCGCTTGCAGTGAATAGCGCTACGTCGGCGTTGCATATCGCATGTCTTGCCTTGGGTCTGGGTCCTGGTGATCGTTTATGGACGAGTCCCGTTACGTTTGTCGCTTCTGCGAACTGTGGTTTGTATTGCGGTGCTCAAGTTGATTTCGTTGATATCGATCCTCGTACCTACAATCTTTGCCCTCAGGCGCTGGAGCGCAAGCTGGTAAAGGCTGAGCGAGAGGGTACGCTGCCTAAGGTGGTCGTGCCGGTACACCTTTGTGGCCAGCCCTGCGATATGCAGGCAATACAAAAACTCGCCAAGCGCTACGGCTTCAAGGTGATAGAGGATGCCTCTCACGCCATCGGTGGAAAATACCAAGGCGATTTCATTGGGAGCGGCAAATATAGCGACATTACGGTATTCAGCTTTCATCCGGTGAAGATAATCACTACCGCAGAAGGTGGGATGGCGCTGACCAATAATGCAGAACTTGCGAACAAGATGGCGCTTTTACGCAGCCACGGCATTACTCGTGAGCCGCAACAAATGACTCACGACTCAGACGGTCCCTGGTACTACCAGCAGATAGACCTGGGTTTCAATTATCGAATGACCGAACTGCAGGCAGCCTTGGGCGTAAGTCAGATGGAGCGTCTGGATCAGTTCATTGCTCGGCGACACCAGTTGGCAACGCGTTATAACGATCTGCTCGCGGCGCTGCCTGTAACTGTTCCATGGCAACATCCCGACAGTTATTCAGGCCTGCACCTCTACGTGATTCGGCTACAGCTGGCAAAAATCAGCAAGAGCCACCGTCAAGTGTTCGAATCGCTGAGGGACCAGGGGATCGGGGTGAACCTGCATTACATTCCTGTCCATACGCAGCCGTACTATGCGCAGATGGGGTTCAAGCCGGAAGATTTCCCGGTAGCCCAGGATTACTATCGCGAAGCTATTAGCATTCCGATGTTCCAGACCATGAGTGATGAACAGCAAGACCAGGTGGTAGCTGCCATCAAGCAGGCAGTGAACGCATGA	MIPYGRQDITQADIDAVIGVLQSDFLTQGPMVPRFEQQVAAHVGASHALAVNSATSALHIACLALGLGPGDRLWTSPVTFVASANCGLYCGAQVDFVDIDPRTYNLCPQALERKLVKAEREGTLPKVVVPVHLCGQPCDMQAIQKLAKRYGFKVIEDASHAIGGKYQGDFIGSGKYSDITVFSFHPVKIITTAEGGMALTNNAELANKMALLRSHGITREPQQMTHDSDGPWYYQQIDLGFNYRMTELQAALGVSQMERLDQFIARRHQLATRYNDLLAALPVTVPWQHPDSYSGLHLYVIRLQLAKISKSHRQVFESLRDQGIGVNLHYIPVHTQPYYAQMGFKPEDFPVAQDYYREAISIPMFQTMSDEQQDQVVAAIKQAVNA	PGPT0022785_1061	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-PEROSAMINE_MODIFICATION,PGPT0022785-per|rfbE-K13010	NA	NA
D1-36_03482	999	pseB	COG1086	UDP-N-acetylglucosamine 4,6-dehydratase (inverting)	ATGTTAAGCAACAAGACGATTTTGGTGACCGGCGGTACCGGCTCCTTTGGTAATACATTCGTGCCGATGACCTTGGCTAAGTACAACCCGAAGAAGATCATCATCTTCTCCCGGGATGAAATGAAGCAATGGGACATGGCGAAGAAGTTCGAAGGCGATTCACGCGTTCGCTTCTTCATCGGCGACGTTCGCGACAAAGAGCGCCTCTATCGCGCCCTGGATGGCGTTGACTACGTGGTCCACGCGGCCGCTACCAAGATCGTACCGACCGCGGAATACAACCCTTTCGAGTGCATCAAAACCAACATCAACGGGGCGATGAACCTGATCGATGCCTGTATCGATAAGGGCATCAAGCGCGTTGTAGCGTTGTCCACCGACAAGGCCAGCAGCCCGATCAACCTGTACGGTGCCACCAAATTGGCATCCGACAAATTATTCGTTGCAGGTAACTCATATGCGGGCGGCCACGAAACTCGCATGGCCGTCGTGCGCTATGGCAACGTCATGGGTTCGCGCGGCTCGGTCATCCCGTTCTTCATGTCCATCAAGGACAAGGGCGAGCTACCGATCACCGACGAGCGCATGACGCGCTTCATGATTTCGTTGGAAGAAGGCGTGGAGTTGGTTTGGCACGCTTTCGAAGACATGGAAGGCGGCGAAATCTACGTGAAAAAAATCCCTTCGATGAAGGTGACTGATCTTGCGCGCGTGGTTGCGCCAGACGCCAAGCAAAAGATCGTCGGTATCCGTCCAGGCGAAAAGCTGCACGAGCAGATGATCAGCGCTGAGGACTCCTATTACACCTACGAATACCCCCAACATTTCAAGATCTTGCCGGTTATCAACGAATGGGCGACCTGTCCAAAGCGCATCAAGGACGGCAAGAAAGTTGCGGAAGGTTTCGTATACGCCAGCGATAACAACACCGAATGGATGAGCGACGAAGATCTGCGCAACTGGATCACTGTCAACGAAGCGAAGATCGGGAGTATCTGA	MLSNKTILVTGGTGSFGNTFVPMTLAKYNPKKIIIFSRDEMKQWDMAKKFEGDSRVRFFIGDVRDKERLYRALDGVDYVVHAAATKIVPTAEYNPFECIKTNINGAMNLIDACIDKGIKRVVALSTDKASSPINLYGATKLASDKLFVAGNSYAGGHETRMAVVRYGNVMGSRGSVIPFFMSIKDKGELPITDERMTRFMISLEEGVELVWHAFEDMEGGEIYVKKIPSMKVTDLARVVAPDAKQKIVGIRPGEKLHEQMISAEDSYYTYEYPQHFKILPVINEWATCPKRIKDGKKVAEGFVYASDNNTEWMSDEDLRNWITVNEAKIGSI	PGPT0018935_926	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-PSEUDAMINIC_ACID_MODIFICATION,PGPT0018935-pseB|wbjB-K15894	NA	NA
D1-36_03483	624	dapH_1		2,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-acetyltransferase	TTGCTGAAAAAACTATCTGATGGTGTGTTTGCTCGACTTAGAGTCTTCGAGCTGTTTTTTTTGATGCTTGCCCGTAGATCATTGATTTCGCCCTTTTCTAGTGTCTCCCGGCGAGGGCGTATATTGATCGGGAGGCGAGTGACTGTAAAAAGTGCATTGTTGAATGCCGGTACTGGCGAGATCAAGCTCGATGATGGGGTATGGCTAAATAGTGGCGTTGAGCTCTCCGCACTGATGAGAATCTGTATAGGCGAGGGAACAACAATCCAACGGAACGTGACCATAAATGGTGACGTTTCAATCGGCAAGGAATGTCTTCTAGCACCAAATATTTTCATGTCTTCAGCTTCGCATGTGCATGATCGCTACGCGGGGGTCAGTATCCGTGAGCAGGAGCGACGAATTGCGCGTGAAGATTTTTTAGCGCATTACAACAAGCCAATCGAGATCGGCGATGATGTTTGGATCGGGGCGAATGCGGTTATAATGCCCGGTATTGAAATCGGTTCGCATTCGGTCATTGGTGCGAATTCTGTGGTGACCAAGGATGTTCCGATAGGGGCAATAGTCGTAGGTGGTCCCGCAAAAATAATTAAGTTTCGCTTTGGGTTTGAGGGACTGTAG	MLKKLSDGVFARLRVFELFFLMLARRSLISPFSSVSRRGRILIGRRVTVKSALLNAGTGEIKLDDGVWLNSGVELSALMRICIGEGTTIQRNVTINGDVSIGKECLLAPNIFMSSASHVHDRYAGVSIREQERRIAREDFLAHYNKPIEIGDDVWIGANAVIMPGIEIGSHSVIGANSVVTKDVPIGAIVVGGPAKIIKFRFGFEGL				NA	NA	NA	NA	NA
D1-36_03484	1227			hypothetical protein	ATGGAGAGGCTCAAAAAATATTCGTCTAGGTTGAGTGCCTGGTCGTATTTACTGTTCGCCGGCGCAGCCTCTATGGTTGCTGCGCTAAAGGGGGTCGCTTACGCCCATTTTCTTTCTTTTGACCAATACGCTCAAATAAATTATTACTTACTGATCGTTGGTTTGGGAACTCTACTAGTTGGCTCTGGCGTAATAGTTAGATGTCATTCTGAAATGCCGCTATTGGCTAATGATGAGGAAAAACTATCTGAATTTGTGTTGAATGTAAAATGGTTTGGTGGTGCCTTCTGGCTGGTTGGGCTTGTAGGATTAATCGGCTATGGGGTCCTCTCGGATGCGCCGATGCTTATACTTTTATTCTCGCTAATTCAAGTGCTGGTTTTTTTTGTCTTTACTATTGATCTGATGGTTGTAAAAAGCAAAAAGAAATTCGTGGAGTATGCGAAGCGGCTACTTTATCGAAACTTGTTGATCGCTTTAGCCGGTTTGTGTGTTGCGTTCGTTACAATTAATGCTACGTACGCGATTTTGGCTGAGGTTTTAGTAGGGGGGGCTCTTTGCTTTAGATCACTGGCATTATGGCTCGTAAAGGCGGCCATTCCAAGTCGGACTTTTCTTCTGGATTGCTTAAAATTTGTGCCCGTAACTTGTGTTGGGGCGTTTATGCAGTATGTAGATAGAGTATTTGCTGCTTACTATTTGAGTCCTAAAGATTTTTCACGATTTTCTTATCTTTCACTTATTGTAGTGGTGGCACTCTCGATTCAGCAGTTGATCAACACTCGAGTGATTACCCTGCTGCCGGAAATTTGCCTGTATGATCCTAGGGCGGGCCTCAGGTACGTTGTCAGGGTTTCTTTCTTGGTTTGCTTGTTTTTGTCGGTGGCGCTGCTATGTTTGCTTTCGCTTTTGCAAAGTCGCTGGTTTGCTGCCGAATGGCTCGATGCGAGTATTGAAGTTGGAGCAGTTTTCTTGGCTTGCGCAATACTGCGGGCGGCTGATTTCTATACATCTTATTTGCTTGTAATGTCGCAGAAAAATAAGCTTCTTGCTGTTCAGCTCTGTATGCTTGGGTTGTTTTTTATTCTTTCTATTTTTTATAATTTGATATTTAAAGAAGGTGGGGTTTTTGCTTTTGTTTCTTTGATGTGTGCGGGTTTCTTTGTGCAATTGTTATTTTTGATTTTCTTTTCTTGGAGGGCCAGTTTTGCTGAAAAAACTATCTGA	MERLKKYSSRLSAWSYLLFAGAASMVAALKGVAYAHFLSFDQYAQINYYLLIVGLGTLLVGSGVIVRCHSEMPLLANDEEKLSEFVLNVKWFGGAFWLVGLVGLIGYGVLSDAPMLILLFSLIQVLVFFVFTIDLMVVKSKKKFVEYAKRLLYRNLLIALAGLCVAFVTINATYAILAEVLVGGALCFRSLALWLVKAAIPSRTFLLDCLKFVPVTCVGAFMQYVDRVFAAYYLSPKDFSRFSYLSLIVVVALSIQQLINTRVITLLPEICLYDPRAGLRYVVRVSFLVCLFLSVALLCLLSLLQSRWFAAEWLDASIEVGAVFLACAILRAADFYTSYLLVMSQKNKLLAVQLCMLGLFFILSIFYNLIFKEGGVFAFVSLMCAGFFVQLLFLIFFSWRASFAEKTI				NA	NA	NA	NA	NA
D1-36_03485	897			hypothetical protein	ATGTTGACAAAATATAAAATTATGCGGGGCTTGTTTAAGCGGAGGTCCATAAGAACTCTGATTTGGAATGTCGTCGCTTTCTTTAATAAGAAGCGCTTGGCTATTTTTGTAAAGACTCAGGTAGGTAGAAAAAGCGAGTCATTTGTAAAGTTTGATGTTGAGTCTATAGATTCTGTTGTTGCGGGGTTGGAGGCTAATGGCGCTCTGGTTGGGCCGTCGTTGCCAAAGGAGGTTGTTGAGTATCTGTTGGATTATGCGGAAGCCAATCCTTGTTTCGCGGATAGAGACCAAACAAAAGGTTTTTATTTAAAAGATAGGGAAAGAGCGCAAGAGACCCTAGGAAAGAAGCTTTTGTTGGCTCAGTACTTTAATGCAGAGCAGGATGCGAAAATTTCTAAGTTGGCCAACGATCCATATCTGCTATTAGTTGCCGCCAAGTATCTGAAGGTTCCTCCAAAATTAATGAGTGTTAATATGTGGTGGACTTTTCCTGTGGATGCCAGTGCTGAGGATAAGGCACGTCATGCACATGTCTTCCATTTTGATTTAGACGACTTGAAGTTTGTTAAGTTTTTCTTTTACTTGACCGATGTAGATGATGATGCAGGTCCTCATGTTTTTGTAAAAACATCGAATAGATTGATAAAATATGAGTCCCCGATGTTTAGGTCTCGTCGTTTTACCGACGACGAGATTGTCTCGGGGTATGGTGTCGAGAATGTTGTCAAGGTTTTAGGGCCGGCTGGGACGTGTTTGATAGAAGATACGGTCACTGTGCACAAAGGTGTTACGCCAGTTTCTCGGGCAAGGCTTATGCTGCAGTTCGAGTATTCGATTAATACTTATCCGGAAGTTAGTTGTGTTAGCGATGGAGAGGCTCAAAAAATATTCGTCTAG	MLTKYKIMRGLFKRRSIRTLIWNVVAFFNKKRLAIFVKTQVGRKSESFVKFDVESIDSVVAGLEANGALVGPSLPKEVVEYLLDYAEANPCFADRDQTKGFYLKDRERAQETLGKKLLLAQYFNAEQDAKISKLANDPYLLLVAAKYLKVPPKLMSVNMWWTFPVDASAEDKARHAHVFHFDLDDLKFVKFFFYLTDVDDDAGPHVFVKTSNRLIKYESPMFRSRRFTDDEIVSGYGVENVVKVLGPAGTCLIEDTVTVHKGVTPVSRARLMLQFEYSINTYPEVSCVSDGEAQKIFV				NA	NA	NA	NA	NA
D1-36_03486	1044	wzzE	COG3765	ECA polysaccharide chain length modulation protein	ATGCAAGATAATCGTATTGCAACGCGCGACGACGATGAAATCGACCTGATCGCCCTCGCTCGCGGGCTTTGGGCTCAAAAATGGCTGATCCTCGCCATTACTCTTCTGGTCACTGCTGGCGCCGCTGCTTACGCGTTCCTCAGCAAACCTGTCTATGAAGCAAAGCTTTTTATCATGCCGCCGACTCAGAATGAGATCGCTGAGTTGAACTATGGGCGTGGGAAAAGTACGGAGCTGGAAACTTATACCATCAAGCATGTTTACGATGTTTTTGCTCGTAACTTGCAGGGTGAGTCGCTTCGTCAGACTTTTTTTAATGAGGTTTATCTTCCTTCGCTTGATGAGTCGCAACGAGAGGGGGCTCTTGATCGTTTGTATGAGCGGTTCTCTCGACAGCTGGTCGTCAAAGGGCCTGGGAAGGATACGCCAGATCGTTTCTCCGTCACTGTGCAAATCGGCGACCCGGTGAAGGCTACCGAGTGGGCCAAGGCTTACGTAGCCCGCGCCAGTGAGGCTGCCGAGGCAGAGCTCGTCAAGAACGTGACGACTGAAGCTTCGGTGAGAGCGCGCAATCTGGAGCAGCGTATTGTCAGCTTGCGCGAGACTGCTCAGCGGATACGTGAGGACAGGATTCAGCAATTGCGGGAAGCGTTGAAAATTGCCGAGGCGATTGGATTGACTACGCCGACTGTTAACTCTTCTGCTGCGGTGGATATTACCGTTGATACCGGTAGCAAGATGGATTATCAGCGTGGTAGTAAGGCATTGGCGGCTGAAATTCAAACGTTGGAATCTAGGGCTTCGGACGATGCGTTTATATCAGATCTTCGGACGTTGCAGATGCGGTATAACTTCTATCGTAAGTTGAATGTTGATCCTAAGCTTGTTTCGGTTTATCGACAGGATGGTAGTGTTGAGGTTCCGGAGAGTCCGGTTAAGCCGCGAAAGGGATTGATATTGGTTTTAGGTGTAATTATTGGCTTGATTCTGGGTGGGTTTGTAGCTTTGATTCGTTTTGCTTTCATTCGAAATCAAAGCAGATGA	MQDNRIATRDDDEIDLIALARGLWAQKWLILAITLLVTAGAAAYAFLSKPVYEAKLFIMPPTQNEIAELNYGRGKSTELETYTIKHVYDVFARNLQGESLRQTFFNEVYLPSLDESQREGALDRLYERFSRQLVVKGPGKDTPDRFSVTVQIGDPVKATEWAKAYVARASEAAEAELVKNVTTEASVRARNLEQRIVSLRETAQRIREDRIQQLREALKIAEAIGLTTPTVNSSAAVDITVDTGSKMDYQRGSKALAAEIQTLESRASDDAFISDLRTLQMRYNFYRKLNVDPKLVSVYRQDGSVEVPESPVKPRKGLILVLGVIIGLILGGFVALIRFAFIRNQSR	PGPT0023265_95	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0023265-wzz|wzzB-K05789	NA	NA
D1-36_03487	225			hypothetical protein	ATGCGGAACTTTAAGCGCCTTGCGCTTGTCGTACTTGCGGTGCTCGTGGCTTCGGCTATCGTACTGTTCGTGCTTGAAAACAATCAGCCTGTCGCGCTGTTGTTCCTGGGATGGTCGGCACCGCAACTTCCTGTTTCGGTTTTTGTGTTGCTCGCGCTCCTCTCTGGAATGATGATTGGCCCCCTATTGGCGTGGATCGCCGGGAGAGGTCGGCGGCTGAAATAA	MRNFKRLALVVLAVLVASAIVLFVLENNQPVALLFLGWSAPQLPVSVFVLLALLSGMMIGPLLAWIAGRGRRLK	PGPT0014665_1677	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_AFFECTED_LIPOPOLYSACCHARIDE_ASSEMBLY,PGPT0014665-lapA-K08992	NA	NA
D1-36_03488	297	ihfB	COG0776	Integration host factor subunit beta	ATGACGAAGTCGGAGTTGATCGAACGAATTGTCACCCATCAAGGGCTGCTCTCATCCAAGGATGTAGAGCTGGCCATCAAGACTATGCTTGAACAAATGTCCCAATGCCTGGCGACCGGAGATCGTATCGAAATCCGCGGGTTCGGCAGTTTCTCCCTGCACTACCGCGCCCCTCGTGTGGGTCGCAACCCAAAAACAGGTCAATCTGTCAGCCTCGATGGAAAATTCGTACCTCATTTCAAGCCGGGCAAGGAGCTCCGAGACCGGGTGAACGAGGAAGAGGGTGACGAGGTCTGA	MTKSELIERIVTHQGLLSSKDVELAIKTMLEQMSQCLATGDRIEIRGFGSFSLHYRAPRVGRNPKTGQSVSLDGKFVPHFKPGKELRDRVNEEEGDEV				NA	NA	NA	NA	NA
D1-36_03489	279			hypothetical protein	ATGAATAAGCTCTTTCTGATGTTGGTTGTTCTGCTGCTGGCAGGCTGCGCCACGAGCGCCAAGACCCACGCCGTGCGAGGTGTCAGCGGTATCGAGATCGATTGCTCAGGGCTGGGCTCCGGCTGGGAGAAGTGCCATAAGCGCGCAGCCAAGGAGTGCAAGGGGGCAGGCTACAAGGTGATCACTCGATCCGATGATGCAAAAGACCAGGATCAATACCCCTTTGGCTTCAATCCGGCGGGTTACCTGACTCGCACCATGCTGGTCATGTGCCGCTAA	MNKLFLMLVVLLLAGCATSAKTHAVRGVSGIEIDCSGLGSGWEKCHKRAAKECKGAGYKVITRSDDAKDQDQYPFGFNPAGYLTRTMLVMCR				NA	NA	NA	NA	NA
D1-36_03490	1692	rpsA	COG0539	30S ribosomal protein S1	ATGAGCGAAAGCTTTGCGGAACTCTTTGAAGAAAGCTTGAAAACCCTGAACCTTCAGGCAGGCTCCATCATCACCGGCGTTATCGTTGATATCGATTACCAGGCTCGCTGGGTAACCGTTCACGCTGGTCTGAAGTCTGAAGCGCTGATCCCGCTTGAGCAGTTCTACAACGACGCTGGCGAACTGAATATCAACGTTGGTGACGAAGTTCACGTAGCGTTGGATTCGGTTGAAGATGGCTTCGGTGAAACCAAGCTGTCCCGTGAAAAAGCCAAGCGTGCTGAATGCTGGATCGTTCTGGAAGCGGCCTTCGCAGCTGAGGAAGTGGTCAAGGGCGTTATCAACGGTAAGGTTAAAGGCGGCTTCACTGTCGACGTTAACGGCATCCGTGCGTTCCTGCCAGGTTCCCTGGTTGACGTTCGTCCAGTGCGCGACACCACGCACCTGGAAGGCAAAGAGCTGGAATTCAAGGTCATCAAGCTGGACCAGAAGCGCAACAACGTTGTCGTTTCCCGTCGCAGTGTCCTGGAAGCCGAGAACTCCGCCGAGCGTGAAGCTCTGCTGGAATCGCTGCAGGAAGGCCAGCAGGTCAAGGGTATCGTCAAAAACCTCACCGATTACGGCGCATTCGTCGATCTGGGTGGCGTCGATGGCCTGCTGCACATCACCGACATGGCCTGGAAGCGTATCAAGCATCCTTCGGAAATCGTCAACGTTGGCGACGAGATCGATGTCAAGGTTCTGAAGTACGATCGCGAGCGCAATCGTGTTTCCCTGGGCCTCAAGCAACTGGGTGAAGATCCATGGGTCGCTATCAAAGCCCGTTACCCAGAAGGTACCCGCGTCACCGCCCGTGTTACCAACCTCACCGACTACGGCTGCTTCGCTGAGCTGGAAGAAGGCGTTGAAGGCCTGGTACACGTTTCCGAAATGGACTGGACCAACAAGAACATCCACCCTTCGAAAGTCGTACAAGTCGGCGACGAAGTGGAAGTCATGGTTCTGGACATCGACGAAGAGCGTCGTCGTATCTCCCTCGGCATCAAGCAGTGCAAGTCCAACCCATGGGAAGACTTCTCTGGCCAGTTCAACAAGGGCGATAAAATCTCCGGCACCATCAAGTCGATCACCGATTTCGGTATCTTCATTGGTCTGGACGGCGGCATCGACGGCCTGGTTCACCTGTCCGACATCTCCTGGAACGAAGTGGGCGAAGAAGCCGTACGCCGTTTCAAGAAGGGCGACGAGCTGGACACCGTTATCCTGTCGGTTGACCCAGAGCGCGAGCGCATCTCCCTGGGTATCAAGCAACTGGAAAGCGATCCGTTCTCCGAGTACGTTCAAGAGAACGACAAAGGCGCAATCGTTAAGGGCATCGTGAAAGAAGTTGACGCCAAAGGCGCTATCATCACCCTGGCCGACGATATCGAAGCGACTCTGAAAGCCTCCGAAATCAGCCGTGACCGCGTTGAAGACGCGCGCAACGTCCTGAAGGAAGGCGAAGAAGTAGAAGCCAAGATCATCAGCGTTGACCGCAAGAGCCGCGTAATCCAGCTCTCCATCAAGTCGAAAGACGACGCTGAAGAGAAAGAAGCAATCCAGAGCCTGCGCGACAAGCCAGCTACTGACATTGCTGCTGGTCCTACCACTCTGGGCGACCTGCTGCGTGCACAGATGGAAAAACAGAACTGA	MSESFAELFEESLKTLNLQAGSIITGVIVDIDYQARWVTVHAGLKSEALIPLEQFYNDAGELNINVGDEVHVALDSVEDGFGETKLSREKAKRAECWIVLEAAFAAEEVVKGVINGKVKGGFTVDVNGIRAFLPGSLVDVRPVRDTTHLEGKELEFKVIKLDQKRNNVVVSRRSVLEAENSAEREALLESLQEGQQVKGIVKNLTDYGAFVDLGGVDGLLHITDMAWKRIKHPSEIVNVGDEIDVKVLKYDRERNRVSLGLKQLGEDPWVAIKARYPEGTRVTARVTNLTDYGCFAELEEGVEGLVHVSEMDWTNKNIHPSKVVQVGDEVEVMVLDIDEERRRISLGIKQCKSNPWEDFSGQFNKGDKISGTIKSITDFGIFIGLDGGIDGLVHLSDISWNEVGEEAVRRFKKGDELDTVILSVDPERERISLGIKQLESDPFSEYVQENDKGAIVKGIVKEVDAKGAIITLADDIEATLKASEISRDRVEDARNVLKEGEEVEAKIISVDRKSRVIQLSIKSKDDAEEKEAIQSLRDKPATDIAAGPTTLGDLLRAQMEKQN				NA	NA	NA	NA	NA
D1-36_03491	690	cmk		Cytidylate kinase	GTGAACATCAAGGCACCGGTCATCACCATCGATGGCCCAAGCGGATCGGGCAAGGGCACCATCGCCGGCATGCTGGCCAAGCAACTGGGCTGGAATCTGCTCGATTCCGGTGCCCTGTATCGCTTGCTGGCCTTCGCCGCGGCCAACCATGGCGTCGATCTGACCAACGAAGAGCTGCTCAAGGCCCTTGCCGCCCATCTGGACGTGCAGTTCATCGCGGCCACCGATGGCCAGTTGCAGCGGATCATCCTCGAAGGTGATGAAGTCAGTGATGTCATCCGCACCGAAAGCGTTGGCGCCGGGGCTTCCCAGGTCGCCGCGCTGCCGGCGGTGCGCGAAGCGTTGCTGCAACGCCAGCGGGCTTTCCAGGAGCCGCCGGGGCTGGTGGCGGACGGCCGGGACATGGGCACGGTGGTGTTCACCGATGCGCCGCTGAAGATTTTCCTGACCGCCAGCGCGGAGGAGCGGGCTCGCCGCCGATATTTGCAGTTGAAGGGCAAAGGCGAGGATGTTAGTCTGTCGAGTCTGCTAGATGAGATCCGTGCACGCGACGAGCGTGATACCCAGCGCGCAGTGGCCCCGCTAAAGCCGGCGGCCGATGCGATACAGCTGGATTCCACGGAGTTGTCCATCGATCAGGTGTTGCAACGCATCATGAGTGAAATCGCGCTTCGCGATATCGCCGGGTGA	MNIKAPVITIDGPSGSGKGTIAGMLAKQLGWNLLDSGALYRLLAFAAANHGVDLTNEELLKALAAHLDVQFIAATDGQLQRIILEGDEVSDVIRTESVGAGASQVAALPAVREALLQRQRAFQEPPGLVADGRDMGTVVFTDAPLKIFLTASAEERARRRYLQLKGKGEDVSLSSLLDEIRARDERDTQRAVAPLKPAADAIQLDSTELSIDQVLQRIMSEIALRDIAG	PGPT0021220_1259	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021220-cmk-K00945	NA	NA
D1-36_03492	2208	aroA		3-phosphoshikimate 1-carboxyvinyltransferase	ATGATCGGTCGCCTGGTGGTGGTCGGCCTGGGGTTGATTGGCGGTTCGTTCGCCAAGGGCCTGCGTGAAAGCGGGCTGTGCCAGGAAGTCGTGGGCGTCGATCTTGACCCGCATTCACGCAAGCTGGCGGTAGAGCTGGGCGTGGTGGACCGCTGTGAAGACGATTTGCAGGTCGCTTGCCAGGGCGCGGATGTGATCCAGCTGGCGGTGCCGATCCTGGCCATGGAGAAACTGCTGGCCCGATTGGCCGGCATGGAGCTCGGGCAAGCGATTCTCACCGACGTCGGCAGTGCCAAGGGCAATGTTGTGCGGGCGGCGACCGAGGCGTTTGGCGGCGTGCCGGCGCGTTTCGTGCCCGGTCACCCGATCGCCGGCTCCGAACAGAGCGGGGTGGAGGCTTCCAATGCCGAGCTGTTCCGTCGTCATAAAGTCATCCTGACGCCGTTGGATCAGACGGACCCGGCGGCGCTGGCGGTGGTGGATCGCCTGTGGCGCGAGTTGGGTGCCGATGTCGAGCACATGCAGGTCGAGCGACACGACGAAGTATTGGCCGCCACCAGCCATTTGCCGCATCTGCTGGCGTTCGGTCTGGTGGATTCATTGGCCAAACGCAATGAAAATCTTGAGATCTTCCGTTACGCTGCCGGCGGTTTCCGCGATTTCACGAGAATCGCGGGTAGCGACCCGGTCATGTGGCATGACATCTTCCTCGCCAACCGTGAAGCTGTCCTACGCACACTCGATACATTTCGCAGCGACCTCGACGCCTTGCGCGACGCGGTCGATGCAGGGGACGGGCACCAATTGCTGGGCGTTTTCACACGTGCCAGGGTGGCCCGCGAGCATTTCAGTAAAATCCTGGCCCGTCGGGCCTATGTGGACGCTATGAACTCCAACGATCTGATTTTCCTGGCACAACCTGGTGGCTCCCTCAGTGGGCGGATTCGTGTACCGGGCGATAAATCGATTTCCCACCGTTCGATCATGCTCGGCTCGCTGGCCGAGGGCGTGACCGAGGTGGAAGGTTTCCTTGAGGGTGAGGACGCTCTGGCGACGCTGCAAGCGTTTCGCGACATGGGCGTGGTCATCGAAGGTCCGCACCACGGCCGCGTGACGATTCATGGTGTCGGCCTGCACGGCCTCAAGCCTGCGCCGGGCCCGATCTACCTGGGCAACTCCGGCACCTCGATGCGCCTGTTGTCCGGCCTGCTGGCCGCCCAGGACTTCGACAGCACCCTGACCGGCGATGCCTCGCTGTCCAAGCGCCCGATGAACCGTGTTGCCAACCCGTTGCGGGAAATGGGTGCGGTGATCGAGACCGCTGCCGAGGGCCGTCCACCCATGACCATTCGTGGTGGCAACAAGCTCAAGGGCCTGACCTACACCATGCCGATGGCCAGTGCCCAGGTGAAATCCTGCCTGCTGCTGGCGGGCCTCTACGCCGAAGGCAAGACGACGGTCACCGAGCCGGCTCCGACCCGCGACCACACCGAACGCATGCTGCGTGGCTTCGGCTACCCGGTCACGGTCGACGGCGCCACGGCGTCTGTTGAATCCGGCAACAAACTGACCGCGACCCACATCGAAGTGCCTGGCGATATCTCTTCGTCGGCGTTCTTCCTGGTGGCGGCCTCGATCGCCGAAGGCTCCGACCTGGTGCTGGAGCATGTCGGCATCAACCCGACCCGTACCGGCGTGATCGACATCCTGCGCCTCATGGGCGCCGACATCACCCTGGAGAACCAGCGTGAAGTGGGCGGCGAACCGGTTGCGGACTTGCGCGTACGAGCGGCTAAACTCAAGGGCATCGAGATTCCGGAAGCGCTGGTTCCCCTGGCGATTGACGAGTTCCCGGTGCTGTTCGTGGCGGCTGCCTGCGCGGAAGGCCGCACTGTGCTGACTGGCGCCGAAGAGCTGCGGGTCAAGGAATCGGACCGCATCCAGGTGATGGCGGACGGCCTGCTCGCGCTCGGCGTCAAATGTGAGCCGACGCCGGATGGCATCATCATCGACGGCGGCCAGATTGGTGGCGGCGAGGTCCATGGGCACGGTGATCACCGTATCGCCATGGCCTTCAGTGTTGCGTCCCTGCGCGCCAGCGCGCCGATCCGCATCCATGATTGCGCCAACGTCGCCACGTCGTTCCCGAACTTCCTGGCGTTGTGCGCGCAGGTCGGTATTCGAGTAGCACAAGAGGCACAGTCGTGA	MIGRLVVVGLGLIGGSFAKGLRESGLCQEVVGVDLDPHSRKLAVELGVVDRCEDDLQVACQGADVIQLAVPILAMEKLLARLAGMELGQAILTDVGSAKGNVVRAATEAFGGVPARFVPGHPIAGSEQSGVEASNAELFRRHKVILTPLDQTDPAALAVVDRLWRELGADVEHMQVERHDEVLAATSHLPHLLAFGLVDSLAKRNENLEIFRYAAGGFRDFTRIAGSDPVMWHDIFLANREAVLRTLDTFRSDLDALRDAVDAGDGHQLLGVFTRARVAREHFSKILARRAYVDAMNSNDLIFLAQPGGSLSGRIRVPGDKSISHRSIMLGSLAEGVTEVEGFLEGEDALATLQAFRDMGVVIEGPHHGRVTIHGVGLHGLKPAPGPIYLGNSGTSMRLLSGLLAAQDFDSTLTGDASLSKRPMNRVANPLREMGAVIETAAEGRPPMTIRGGNKLKGLTYTMPMASAQVKSCLLLAGLYAEGKTTVTEPAPTRDHTERMLRGFGYPVTVDGATASVESGNKLTATHIEVPGDISSSAFFLVAASIAEGSDLVLEHVGINPTRTGVIDILRLMGADITLENQREVGGEPVADLRVRAAKLKGIEIPEALVPLAIDEFPVLFVAAACAEGRTVLTGAEELRVKESDRIQVMADGLLALGVKCEPTPDGIIIDGGQIGGGEVHGHGDHRIAMAFSVASLRASAPIRIHDCANVATSFPNFLALCAQVGIRVAQEAQS	PGPT0012870_104	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012870-cyclohexadieny|prephenate_dehydrogenase|3_phosphoshikimate_1_carboxyvinyltransferase-K24018	NA	NA
D1-36_03493	1113	hisC_5	COG0079	Histidinol-phosphate aminotransferase	ATGAGTGGCAACTTCCTCGCCCTGGCCCAGCCAGGCGTTCAACAACTTTCGCCCTACGTTCCAGGCAAGCCTGTGGACGAACTGGCCCGCGAGCTGGATCTTGACCCGGCCAGCATCGTCAAGTTGGCGAGCAACGAAAATCCGCTGGGCGCGAGCCCCAAGGCACTCGCGGCAATTCGCGACGAACTGGCCGAGCTGACGCGCTACCCCGATGGCAACGGCTTCGCCTTGAAAAGCCTGCTGGCCGAGCGCTGCGGCGTCGAGCTGAACCAGGTGACCCTGGGTAACGGCTCCAACGACATTCTCGAGCTGGTCGCCCGTGCGTACCTGGCGCCGGGCCTCAATGCCGTGTTCAGTGAACATGCGTTCGCGGTCTACCCGATTGCCACTCAGGCCGTCGGTGCCGATGCCCGTGTCGTTCCAGCCAAGGCTTGGGGGCACGACCTGCCCGCCATGCTCGCCGCCATCGACGCCAATACCCGCGTAGTCTTCATCGCCAACCCGAACAACCCGACCGGCACCTGGTTCGACGCCCAGGCCTTGGACGATTTCCTGCAAGACGTGCCCGAGCATGTGCTGGTGGTGCTGGACGAGGCCTACATCGAATACGCCGAAGGCAGCGACTTGCCCGATGGGTTGGATTTCCTCGCCGCCTACCCGAACCTGCTGGTGTCGCGCACCTTCTCCAAGGCTTATGGCCTGGCGTCGCTTCGGGTTGGCTACGGCTTGTCCACTGCGGTGGTGGCCGATGTGCTGAACCGCGTGCGCCAACCATTCAACGTCAACAGCTTCGCCCTGGCTGCCGCTTGCGCCGCATTGCAGGACGAAGCCTACCTGGCGCAAAGCCGTCGCTTGAACGAAGCCGGCATGCAGCAATTGGAAGTGGGCTTGCGTGAGTTGGGTCTGGGCTGGATTCCTTCCAAGGGCAACTTCATTTGTGTGGACGTGGGACGCGTCGCGGCGCCGGTCTATCAAGGCTTGCTGCGCGAAGGCGTGATCGTGCGTCCGGTGGCCAACTACGGCATGCCGAATCACCTGCGAGTCACCGTTGGCCTGCCGGCGGAAAACAGCCGTTTCCTGGAGGCGCTGAGCAAGGTCCTGGCTCGTGGTTGA	MSGNFLALAQPGVQQLSPYVPGKPVDELARELDLDPASIVKLASNENPLGASPKALAAIRDELAELTRYPDGNGFALKSLLAERCGVELNQVTLGNGSNDILELVARAYLAPGLNAVFSEHAFAVYPIATQAVGADARVVPAKAWGHDLPAMLAAIDANTRVVFIANPNNPTGTWFDAQALDDFLQDVPEHVLVVLDEAYIEYAEGSDLPDGLDFLAAYPNLLVSRTFSKAYGLASLRVGYGLSTAVVADVLNRVRQPFNVNSFALAAACAALQDEAYLAQSRRLNEAGMQQLEVGLRELGLGWIPSKGNFICVDVGRVAAPVYQGLLREGVIVRPVANYGMPNHLRVTVGLPAENSRFLEALSKVLARG	PGPT0020305_2300	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817	NA	NA
D1-36_03494	1095	pheA		Bifunctional chorismate mutase/prephenate dehydratase	ATGTCTGAGCAAGAACTCAAGGCGCTGCGCCTGCGCATCGATGCCCTGGATGAGAAAGTCCTGGAGTTGATCAGCGAGCGCGCACGCTGTGCCCAGGAAGTTGCCCGGGTAAAAATGGCGTCCCTGGCCGAAGGCGAAGTGCCGGTGTTCTACCGGCCGGAGCGCGAAGCCCAAGTGCTCAAGCGTGTCATGGAGCGCAACAAGGGGCCGTTGGGCAACGAAGAGATGGCGCGCTTGTTCCGCGAAATCATGTCCTCGTGCCTGGCTCTCGAACAGCCGCTGAAAGTCGCTTACCTGGGCCCGGAGGGCACCTTCACCCAGGCAGCGGCCATGAAGCATTTCGGTCACGCCGTGATCAGCAAGCCGATGGCGGCCATCGACGAAGTCTTCCGCGAAGTGGCGGCCGGTGCCGTGAATTTCGGCGTGGTGCCGGTGGAGAACTCCACCGAAGGTGCGGTCAACCACACGCTGGACAGCTTCCTCGAGCACGACATGGTGATCTGCGGCGAAGTCGAGCTGCGCATTCACCATCACCTGCTGGTGGGTGAGAACACCAAGACCGACAGCATCAGCCGGATCTACTCCCACGCACAGTCCCTGGCCCAGTGCCGCAAGTGGCTGGACGCCCATTACCCGAACGTCGAGCGCGTGGCGGTATCGAGCAATGCCGAGGCGGCCAAGCGGGTCAAGGGTGAGTGGAACTCGGCGGCGATCGCCGGCGACATGGCGGCAGGCCTTTACGAGCTGACGCGCCTGGCCGAGAAAATCGAGGACCGTCCGGACAACTCCACCCGGTTCCTGATGATCGGTAACCAGGAAGTTCCGCCGACCGGCGACGACAAGACCTCGATCATTGTCTCCATGAGCAACAAGCCGGGGGCACTTCATGAGCTGTTGGTGCCGTTCCATGACAACGGCATCGATCTGACGCGGATCGAGACTCGCCCTTCGCGCAGTGGTAAATGGACCTACGTGTTCTTCATCGATTTCGTCGGCCACCACCGCGATCCGCTGGTGAAAGGTGTGCTTGAGAAAATCAGTCAGGAAGCAGTGGCACTCAAGGTGCTGGGTTCCTACCCCAAGGCAGTTCTTTAA	MSEQELKALRLRIDALDEKVLELISERARCAQEVARVKMASLAEGEVPVFYRPEREAQVLKRVMERNKGPLGNEEMARLFREIMSSCLALEQPLKVAYLGPEGTFTQAAAMKHFGHAVISKPMAAIDEVFREVAAGAVNFGVVPVENSTEGAVNHTLDSFLEHDMVICGEVELRIHHHLLVGENTKTDSISRIYSHAQSLAQCRKWLDAHYPNVERVAVSSNAEAAKRVKGEWNSAAIAGDMAAGLYELTRLAEKIEDRPDNSTRFLMIGNQEVPPTGDDKTSIIVSMSNKPGALHELLVPFHDNGIDLTRIETRPSRSGKWTYVFFIDFVGHHRDPLVKGVLEKISQEAVALKVLGSYPKAVL				NA	NA	NA	NA	NA
D1-36_03495	1086	serC	COG1932	Phosphoserine aminotransferase	GTGAGCAAGAGAGCCTATAACTTCTGTGCCGGCCCGGCGGCGCTTCCCGAAGCGGTCCTGAAGCGTGCCCAGGGCGAACTTCTCGACTGGCATGGCAAGGGCCTGTCGGTCATGGAGATGAGCCATCGCAGCGATGAATTCGTGTCCATCGCCACCAAGGCCGAGCAGGACCTGCGTGATCTGCTGAACATCCCGTCCAACTATAAAGTGCTGTTTCTGCAGGGCGGCGCCAGCCAGCAGTTCGCCCAGATTGCGCTGAACCTGCTGCCGGAAAACGGCTCGGCTGACTACATCGACACCGGTATTTGGTCGCAGAAGGCCATCGAAGAAGCGTCGCGCTACGGTCACGTCAACGTGGCGGCCACCGCCAAGCCCTACGACTATTTCGCGATACCCGGCCAGAACGAGTGGAAGCTGTCCAAGGACGCGGCGTACGTCCACTACGCGCCGAACGAAACCATTGGTGGCCTGGAATTCAACTGGGTCCCGGAAACCGGTGACGTGCCGCTGGTGGCCGACATGTCCTCGGACATCCTTTCGCGTCCAGTGGACATCTCCCGTTTCGGCATGATTTACGCCGGCGCCCAGAAGAACATCGGCCCGAGCGGCATTCTGGTCGCGATCATCCGCGAAGACCTGCTCGGTCGCGCCCGCTCTCTGTGCCCGACCATGCTCAACTACAAGGTCGCGGCGGACAACGGCTCGATGTACAACACCCCGCCGACCCTGGCCTGGTACCTGTCAGGCCTGGTGTTCGAGTGGCTGAAAGAGCAGGGCGGTGTCGAGGCTATCGGCAAGCTCAACGAAGTGAAGCAGCGCACGCTGTATGATTTCATCGATGCCAGCGGCCTCTACAGCAACCCGATCAACAAGTCTGATCGCTCCTGGATGAACGTGCCGTTCCGCCTGGCGGATGATTGTCTCGACAAGCCGTTCCTGGCCGGCGCCGACGAGCGCGGCCTGCTGAACCTCAAGGGCCACCGCTCGGTCGGCGGCATGCGCGCCTCCATCTACAACGCCGTGGACATCAACGCAGTCAACGCGCTGATTGCCTACATGGCGGAGTTCGAGAAGGAACACGGCTGA	MSKRAYNFCAGPAALPEAVLKRAQGELLDWHGKGLSVMEMSHRSDEFVSIATKAEQDLRDLLNIPSNYKVLFLQGGASQQFAQIALNLLPENGSADYIDTGIWSQKAIEEASRYGHVNVAATAKPYDYFAIPGQNEWKLSKDAAYVHYAPNETIGGLEFNWVPETGDVPLVADMSSDILSRPVDISRFGMIYAGAQKNIGPSGILVAIIREDLLGRARSLCPTMLNYKVAADNGSMYNTPPTLAWYLSGLVFEWLKEQGGVEAIGKLNEVKQRTLYDFIDASGLYSNPINKSDRSWMNVPFRLADDCLDKPFLAGADERGLLNLKGHRSVGGMRASIYNAVDINAVNALIAYMAEFEKEHG	PGPT0009160_3024	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
D1-36_03496	2664	gyrA	COG0188	DNA gyrase subunit A	ATGGGCGAACTGGCCAAAGAAATCCTCCCGGTCAATATCGAAGACGAGCTGAAACAGTCCTACCTCGACTACGCAATGAGCGTGATCGTCGGGCGGGCGCTGCCGGATGCGCGCGATGGCTTGAAGCCCGTGCACCGGCGCGTGCTGTTCGCGATGAGCGAGCTGGGCAACGACTTCAACAAGCCGTACAAGAAATCCGCCCGTGTCGTCGGCGACGTGATCGGTAAGTATCACCCCCACGGCGACACTGCCGTGTACGATACCATCGTGCGGATGGCGCAACCGTTCTCCCTGCGCTACCTGCTGGTGGATGGCCAGGGCAACTTCGGTTCGGTGGACGGCGACAACGCCGCGGCCATGCGATACACCGAAGTGCGCATGACCAAGCTGGCCCACGAGCTGCTGGCCGACCTGCACAAGGAAACCGTGGACTGGGTGCCGAACTACGACGGCACCGAGATGATCCCGGCGGTCATGCCGACCCGTATCCCGAACCTGCTCGTCAACGGCTCCAGCGGTATCGCCGTGGGCATGGCGACCAACATCCCGCCGCACAACCTCGGCGAAGTCATCGACGGTTGCCTGGCCCTCATCGACAACCCGGAACTGTCCGTCGATGAGCTGATGCAGTACATCCCCGGCCCGGATTTCCCGACCGCCGCGATCATCAACGGTCGCGCCGGCATCATCGAGGCCTATCGCACCGGTCGTGGCCGCATCTACATGCGCGCCCGCTCCACCGTCGAGGACATCGACAAGGTCGGCGGTCGCCAGCAGATCGTCATCACCGAGCTGCCGTACCAACTGAACAAGGCTCGCCTGATCGAGAAGATCGCCGAGCTGGTGAAAGAGAAGAAACTCGAAGGCATCACCGAACTGCGTGACGAGTCCGACAAGGACGGCATGCGCGTCGTGATCGAGCTGCGTCGTGGCGAAGTGCCCGAGGTGATCCTCAACAACCTCTACGCCCAGACCCAGCTGCAAAGCGTGTTCGGCATCAACATCGTCGCGTTGATCGACGGCCGTCCGCGGATCCTGAACCTCAAGGACCTGCTGGAAGCCTTCGTCCGTCACCGTCGCGAAGTGGTTACCCGCCGTACCGTGTTCGAGCTGCGCAAGGCGCGCGAGCGCGGCCATATCCTCGAAGGCCAGGCCGTTGCCCTGTCGAACATCGACCCGGTGATCGCCTTGATCAAGGCCTCGCCGACGCCGTCGGAAGCCAAGGAAGCGTTGGTCAGCACCCCTTGGGAATCCAGTGCGGTAGTGGCGATGGTCGAACGCGCCGGTGCCGATTCGTGCCGTCCGGAAAACCTAGATCCGCAATACGGCCTGCGCGAAGGCAAGTACTTCCTGTCCCCGGAGCAGGCGCAAGCCATCCTGGAACTGCGCCTGCACCGCCTGACCGGTCTGGAGCACGAGAAGCTGCTGGCCGAATACCAGGAAATCCTCAACCAGATCGGCGAGCTGATCCGCATCCTCAACAGCGCCACGCGCCTGATGGAAGTGATCCGCGAAGAACTGGAAGTGATCCGCGCCGAATACGGCGACGTGCGCCGCACCGAAATCCTCGATGCGCGCCTGGACCTGACCCTGGGGGACATGATCCCGGAAGAAGAGCGCGTGGTGACCATTTCCCACGGAGGCTATGCCAAGACCCAACCGTTGGCCGCCTACCAGGCCCAACGTCGTGGCGGCAAAGGCAAATCTGCTACCGGCGTCAAGGACGAGGACTACATCGCACACCTGCTGGTCGCCAACAGCCACACCACGTTGCTGCTGTTCTCCAGCAAGGGCAAGGTGTACTGGCTCAAGACCTACGAAATTCCCGAAGCATCCCGCGCTGCCCGTGGTCGTCCGCTGGTCAACCTGTTGCCGCTGGACGACGGTGAATACATCACCACCATGCTGCCGGTGGAGGAATACACCGAAGGTCACTACATCTTCATGGCAACCGCCAACGGCACCGTGAAGAAGACCCCGCTGGAATCCTTCAGCCGCCAGCGCAGCGTCGGCCTGATCGCCCTGGAGCTGGACGAGGGCGACGTGCTGATTTCCGCCGCCATCACCGACGGCGAACGCGAAGTCATGCTGTTCTCCGACGGCGGCAAGGTCACGCGCTTCAAGGAATCCGATGTCCGCGCCATGGGCCGTACCGCCCGTGGTGTGCGCGGCATGCGTCTGCCGGAAGGGCAAAAGCTGATTTCCATGCTGATCCCCGAAGAAGGCAGCCAGATCCTCACCGCATCCGAGCGTGGCTACGGCAAGCGTACCGCCATCAGCGAGTTCCCCGAGTACAAGCGTGGCGGCCAGGGCGTGATCGCCATGGTCAGCAACGAGCGTAACGGTCGCCTGGTTGGCGCGGTCCAGGTGCTCGACGGCGAGGAGATCATGCTGATTTCCGACCAAGGCACGTTGGTGCGTACGCGGGTCGACGAAGTCTCCAGCCTGGGTCGTAACACCCAGGGCGTGACGCTGATCAAGCTGGCCAAAGACGAAAAACTGGTCGGCCTTGAGCGCGTCCAGGAGCCTTCGGAAGTCGAAGGCGAAGAGCTGGAAGGCGAGGACGGCGTGGGGTTCGATGGCGCCCTCGGTGCCGATGTCGACGACACCGTCGGCGACCAACCGCTCGATGCTGCCGCAGACGAAGAAGAGCCGCAGGACTAA	MGELAKEILPVNIEDELKQSYLDYAMSVIVGRALPDARDGLKPVHRRVLFAMSELGNDFNKPYKKSARVVGDVIGKYHPHGDTAVYDTIVRMAQPFSLRYLLVDGQGNFGSVDGDNAAAMRYTEVRMTKLAHELLADLHKETVDWVPNYDGTEMIPAVMPTRIPNLLVNGSSGIAVGMATNIPPHNLGEVIDGCLALIDNPELSVDELMQYIPGPDFPTAAIINGRAGIIEAYRTGRGRIYMRARSTVEDIDKVGGRQQIVITELPYQLNKARLIEKIAELVKEKKLEGITELRDESDKDGMRVVIELRRGEVPEVILNNLYAQTQLQSVFGINIVALIDGRPRILNLKDLLEAFVRHRREVVTRRTVFELRKARERGHILEGQAVALSNIDPVIALIKASPTPSEAKEALVSTPWESSAVVAMVERAGADSCRPENLDPQYGLREGKYFLSPEQAQAILELRLHRLTGLEHEKLLAEYQEILNQIGELIRILNSATRLMEVIREELEVIRAEYGDVRRTEILDARLDLTLGDMIPEEERVVTISHGGYAKTQPLAAYQAQRRGGKGKSATGVKDEDYIAHLLVANSHTTLLLFSSKGKVYWLKTYEIPEASRAARGRPLVNLLPLDDGEYITTMLPVEEYTEGHYIFMATANGTVKKTPLESFSRQRSVGLIALELDEGDVLISAAITDGEREVMLFSDGGKVTRFKESDVRAMGRTARGVRGMRLPEGQKLISMLIPEEGSQILTASERGYGKRTAISEFPEYKRGGQGVIAMVSNERNGRLVGAVQVLDGEEIMLISDQGTLVRTRVDEVSSLGRNTQGVTLIKLAKDEKLVGLERVQEPSEVEGEELEGEDGVGFDGALGADVDDTVGDQPLDAAADEEEPQD				NA	NA	NA	NA	NA
D1-36_03498	1077	mtnA	COG0182	Methylthioribose-1-phosphate isomerase	ATGCGCAATCGACTGTTGGCTGCGGAGAAGGTGAAGGCCATCGATTGGCGTGATGGCGCTCTTTATCTGCTCGATCAGCGTGTTTTACCGTTCGAGGAGAACTGGATCGGCTACACCAGTGCGGCCGGCGTGGCCGAGGCCATCCGTTCGATGGTAGTGCGCGGCGCGCCGGCCATCGGCATCAGTGCCGCCTATGGCGTGGTGCTGGCGGCGCGGGCGCGGTTGGCCGAGGGCGGTGACTGGCAAGATGCGCTGGAAGCGGATTTCGCCTTGCTGGCCGATTCCCGGCCGACGGCGGTCAATCTGTTCTGGGCGCTTGACCGCATGCGCGACCGCTTGGCGCGCCTCAAAGAGCATGCCGATCCACTGGCGGCCCTGGAGGCCGAAGCCATGGCGATCCACGAAAGCGATCGGGAGGCCAACCTGACCATGGCCCAGCTCGGCGTCGACCTGATTCGCAAGCATCAGGGCAACGCCCAGGCCATCCTGACCCACTGCAACACCGGCGCCCTTGCCACCGGCGGCTTCGGTACCGCGCTCGGGGTGATTCGCGGTGCATTCCTTGAAGGCATGGTCGAGCGGGTCTACGCCGACGAAACCCGCCCATGGCTTCAGGGTTCGCGGTTGACCGCGTGGGAACTGGCGAACGAAGGCATTCCGGTGACCCTCAACGCCGACTCCGCTGCCGCCCACATCATGAAGACCAAAGGTGTGACCTGGGTGATCGTCGGCGCCGACCGCATCACCGCCAATGGCGACGTGGCGAACAAGATCGGCACCTATCAGTTGGCAGTCTGCGCCATGCACCACGGTGTGCGCTTCATGGTGGTGGCGCCGAGCTCGACCATCGACATGAACCTGGCCAGCGGTGAAGACATTCCCATCGAAGAGCGTGACGGCCGCGAATTGCTGGAAGTTGGCGGCAAGCGGGTCGGGGCCGATGCCGACGCCTTCAATCCGGTTTTCGACGTGACCCCGGCAGACCTGATCGACGCTATCGTGACGGAGAAAGGCATTGTTGAGCGGCCAGATGCGGCGAAGATGGCCCAACTGATGTGTCGCAAGCGGTTGCACTAA	MRNRLLAAEKVKAIDWRDGALYLLDQRVLPFEENWIGYTSAAGVAEAIRSMVVRGAPAIGISAAYGVVLAARARLAEGGDWQDALEADFALLADSRPTAVNLFWALDRMRDRLARLKEHADPLAALEAEAMAIHESDREANLTMAQLGVDLIRKHQGNAQAILTHCNTGALATGGFGTALGVIRGAFLEGMVERVYADETRPWLQGSRLTAWELANEGIPVTLNADSAAAHIMKTKGVTWVIVGADRITANGDVANKIGTYQLAVCAMHHGVRFMVVAPSSTIDMNLASGEDIPIEERDGRELLEVGGKRVGADADAFNPVFDVTPADLIDAIVTEKGIVERPDAAKMAQLMCRKRLH				NA	NA	NA	NA	NA
D1-36_03499	1332	mtaD	COG0402	5-methylthioadenosine/S-adenosylhomocysteine deaminase	ATGCCCAAGCCTGCCGTTGCGCTCGACTTATTATTGCTGCCGACCTGGTTGGTGCCTGTCGAACCCGCCGGTGTCGTGCTCAAGGATCATGGCCTGGGCATTCGCGACGGTTGCATCGTGTTCATCGGGCCACGGGCCGAAGCCATGAGGTGCGACGCCGCTGAAGTCCGCGAATTGCCCGGCATGCTGCTCAGCCCAGGCCTGGTCAACGCCCACGGTCACGCGGCGATGACGCTGTTCCGCGGCCTGGCCGATGACCTGCCGCTGATGACCTGGCTCGAACAGCACATCTGGCCCGCCGAGGGCAAATGGGTCGATGAGGATTTCGTCCGCGACGGCACCGACCTGGCGATCGCCGAGCAGATCCAGGGCGGCATCACCTGCTTTTCGGACATGTACTTCTACCCCAAGGTCGCCAGCGACCGCGTCCATAACAGCGGCATCCGCGCGCAAATAGCCATTCCCATTCTCGACTTTCCGATCCCCGGCGCCGCCAACGCCGACGACGCCATTCGTCAGGGCATCGAATTATTCGGCGACCTCAAGCACCACCCGAGGATCAAAGTCGCATTCGGCCCGCATGCGCCATACACCGTGGGCGACGACAACCTGGAGAAGATCCGGGTGATCGCCGAAGAACTGGACGCGGCCATCCACATGCATGTTCACGAAACCGCCTTCGAAGTGCAGCAGGCTGTGGATAATACCGGCGAGCGGCCGATGGCCCGACTGGCGCGGCTTGGCCTGTTGGGGCCACGCTTCCAGGCGGTGCACATGACCCAGGTCAGCGACGAGGACCAGGCCCTGCTGGTAGAACACAACTGCAGCGTGATCCATTGTCCGGAGTCCAATCTGAAGCTGGCCAGCGGCTTCTGCCCGGTGGAGCGCCTGTGGCAGGCTGGCGTCAACGTCGCGGTCGGCACCGACGGTGCGGCGAGCAACAATGACCTGGACCTGCTGGGCGAAACCCGCACCGCCGCCCTGCTGGCGAAGGCCGTTGCGGGCTCGGCCACCGCCCTGGACGCCCACCGTGCGCTGCGCATGGCCACGCTCAACGGCGCCCGGGCTTTGGGCATCGAAGCGACGGTCGGTTCACTGGAAGTCGGCAAGGCCGCCGACCTGGTGGCCTTCGACCTGTCCGGGCTGGCGCAACAACCGGTCTACGACCCGGTTTCGCAGTTGATCTACGCCACGGGCCGGCATTGCGTCAAACACCTGTGGGTGGCCGGAAAACAATTGCTGGAGGAAGGTCGCCTGACTCGCATGGACGAGTCGCAACTGACTGCCACGGCCCAGGCCTGGGGCCGGCGGGTGAGCGGCCAGGACGAATAG	MPKPAVALDLLLLPTWLVPVEPAGVVLKDHGLGIRDGCIVFIGPRAEAMRCDAAEVRELPGMLLSPGLVNAHGHAAMTLFRGLADDLPLMTWLEQHIWPAEGKWVDEDFVRDGTDLAIAEQIQGGITCFSDMYFYPKVASDRVHNSGIRAQIAIPILDFPIPGAANADDAIRQGIELFGDLKHHPRIKVAFGPHAPYTVGDDNLEKIRVIAEELDAAIHMHVHETAFEVQQAVDNTGERPMARLARLGLLGPRFQAVHMTQVSDEDQALLVEHNCSVIHCPESNLKLASGFCPVERLWQAGVNVAVGTDGAASNNDLDLLGETRTAALLAKAVAGSATALDAHRALRMATLNGARALGIEATVGSLEVGKAADLVAFDLSGLAQQPVYDPVSQLIYATGRHCVKHLWVAGKQLLEEGRLTRMDESQLTATAQAWGRRVSGQDE	PGPT0023665_1322	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-SAM|QUEUOSINE|LIPID_METABOLISM,PGPT0023665-mtaD-K12960	NA	NA
D1-36_03500	699	ubiG	COG2227	Ubiquinone biosynthesis O-methyltransferase	ATGAGCAACGTCGACCACGCCGAAATCGCCAAGTTCGAAGCCCTGGCCCATCGCTGGTGGGACCGCGAGAGCGAATTCAAACCGCTGCACGACATCAACCCGCTGCGGGTCAACTGGATCGACGAGCGCGTCAGCCTCGCGGGCAAGAAAGTCCTCGACGTCGGTTGTGGCGGCGGCATCCTCAGCGAAGCCATGGCCCTGCGTGGCGCCACTGTCATGGGCATCGACATGGGCGAGGCGCCGCTGGCGGTTGCGCAATTGCATCAGCTTGAATCCGGCGTCAGCGTGGAATATCGGCAGATCACCGCCGAAGCCCTGGCCGAGGAAATGCCCGGCCAGTTCGACGTGGTCACCTGCCTGGAGATGCTCGAGCACGTGCCGGACCCTTCGTCGGTCATCCGCGCCTGCTTCCAGATGGTCAAGCCCGGCGGCCAGGTGTTCTTCTCCACGATCAACCGCAACCCGAAGGCCTACCTGTTCGCCATCATCGGCGCCGAATACATCATGAAGCTGCTGCCGCGTGGCACCCACGACTTCAAGAAATTCATCCGTCCTTCCGAGCTCGGCGCCTGGAGCCGCATGGCCGGGTTGACCGTCAAGGACATCATCGGCCTGACCTACAACCCGCTGACCAAGCACTACAAGCTGGCCGCCGACGTTGACGTCAACTACATGATCCAGACCCTGCGCGAGGAATAA	MSNVDHAEIAKFEALAHRWWDRESEFKPLHDINPLRVNWIDERVSLAGKKVLDVGCGGGILSEAMALRGATVMGIDMGEAPLAVAQLHQLESGVSVEYRQITAEALAEEMPGQFDVVTCLEMLEHVPDPSSVIRACFQMVKPGGQVFFSTINRNPKAYLFAIIGAEYIMKLLPRGTHDFKKFIRPSELGAWSRMAGLTVKDIIGLTYNPLTKHYKLAADVDVNYMIQTLREE	PGPT0009545_1982	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009545-ubiG-K00568	NA	NA
D1-36_03501	672	mupP_1	COG0546	N-acetylmuramic acid 6-phosphate phosphatase	ATGCGTCTCAAAGCGGTTCTCTTCGACATGGACGGCACGCTGCTCGACACCGCGCCCGACTTCATCGCCATCTGCCAGGCCATGCGCGCCGACCGTGGCTTGCCGCCGATGAACACCCAGCACATCCGCGACGAAATTTCCGGCGGTGCCCGGGCGATGGTCGCGGCGACGTTCTCGATGGACCCCGAATCGCCGGGCTTCGAAGAACTGCGCCAGGAATTCCTCGACCGTTACCTCAAAGGGTGCGCGGTTCACAGTCACCTGTTCGACGGCATGGCCGAAGTGCTGGCCGACATCGAGGCGGCCAACCTTATCTGGGGCGTGGTCACCAACAAACCGGTACGTTTTGCCGAGCCGATCATGCAGCAGCTGGGCCTGGCCGAGCGCTCGAAAGTGTTGATCTGCCCCGACCATGTGAAAAACAGCAAGCCGGATCCCGAACCGTTGACCCTGGCCTGCAAGATGCTCGACCTGGACCCGGCCAGCGTGCTGTTCGTGGGGGATGACCTACGCGATATCGAGTCGGGCCGCGGCGCTGGCACCAAGACCTGTGCGGTCACTTATGGCTATATCCATCCAGACGACAATCCCAAGCACTGGGGCGCGGATGTGGTGATCGACCATCCCCTGGCCCTGCGTGAAGTGCTGGATAACGCGTTGTGCAGTTGCTGA	MRLKAVLFDMDGTLLDTAPDFIAICQAMRADRGLPPMNTQHIRDEISGGARAMVAATFSMDPESPGFEELRQEFLDRYLKGCAVHSHLFDGMAEVLADIEAANLIWGVVTNKPVRFAEPIMQQLGLAERSKVLICPDHVKNSKPDPEPLTLACKMLDLDPASVLFVGDDLRDIESGRGAGTKTCAVTYGYIHPDDNPKHWGADVVIDHPLALREVLDNALCSC	PGPT0019045_599	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_MURAMATE_DEGRADATION,PGPT0019045-mupP-K22292	NA	NA
D1-36_03502	741	yciK	COG1028	putative oxidoreductase YciK	ATGTTTGATTACTCCGCCCGCCCCGACCTGCTCGAAGGCCGCATCATTCTCGTCACCGGCGCCGGCCGCGGGATCGGCGCCGCTGCCGCCAAGGCTTATGCCGCCCATGGCGCCACCGTGCTGTTGCTGGGCAAGACCGAGGCCAACCTGACCCAGGTCTATGACGAAATCGAAGCGGCCGGCCATCCGCAACCAGCGGTGATTCCCTTCAACCTCGAAACTGCCCTGCCCCATCAATACGATGAGCTGGCCGCCATGATCGAGGCCGAGTTCGGTCACCTCGACGGGCTGCTGCACAACGCCTCGATCATTGGTCCGCGCACGCCGCTGGAGCAGCTTTCCGGCGAGAATTTCATGCGCGTGATGCAAGTGAACGTCAACGCCATGTTCATGCTCACCAGCACGTTGTTGCCGCTGCTCAAATTGTCCAGGGATGCCTCCGTGGTGTTCACTTCCAGCAGCGTCGGACGCAAAGGCCGGGCGTATTGGGGCGCTTATGGCGTGTCCAAGTTCGCCACCGAGGGGCTGATGCAAACTCTCGCTGACGAAGTCGACACCGTAGCGCCAGTGCGTTCCAACAGCATCAATCCCGGCGCCACCCGCACCAGCATGCGGGCCCAGGCCTACCCGGGAGAAAATCCGCTCAACAATCCGACACCCGAAGAAATCATGCCGGTCTACCTGTACCTCATGGGACCTGACAGCCAGGGCGTCAATGGCCAGGCGCTCAACGCGCAGTGA	MFDYSARPDLLEGRIILVTGAGRGIGAAAAKAYAAHGATVLLLGKTEANLTQVYDEIEAAGHPQPAVIPFNLETALPHQYDELAAMIEAEFGHLDGLLHNASIIGPRTPLEQLSGENFMRVMQVNVNAMFMLTSTLLPLLKLSRDASVVFTSSSVGRKGRAYWGAYGVSKFATEGLMQTLADEVDTVAPVRSNSINPGATRTSMRAQAYPGENPLNNPTPEEIMPVYLYLMGPDSQGVNGQALNAQ				NA	NA	NA	NA	NA
D1-36_03503	927			hypothetical protein	ATGAAAACGCCCACACAGACCAACGCGATCGACTTTGATAGCGCCAAGTTGCAGCGCCTGGGCCTGGCCCAGCCGTCTCCACTCGTGGCGCGGCCCGTCAGCCTGTCCCAGCTGCGCCAACAACTTGGTCAACAGTTGCAGACCAGCCTGGAACCGCAACGGATCCTTGGCTTGTTCTTCCGCGAAGTGCAACGGCTGGTGCCCTTGGACGCGCTGGCGTATCAGCACAAGCCCAGCGACCTGCGTATGGAATTCGGCCAACGCGGACACCACAACCTCAGCTACAACCTCAGCCATGAGGGCGAACATCTGGGTGAGCTGGTGTTCCGCCGCAATCAGCGCTTTACCGAGTCGGAACAGAGCGATCTGGAATCGACACTGTCTTCGCTGTTTTTTCCGCTGCGCAACGCCTTGCTCTACCGCGCCGCCACCCAAAGCGCCCTACGCGATCCGCTGACCGGCACCGGCAACCGCATCGCGATGGACCAGACGCTGGAACGTGAGATCGACATGGCCCGGCGCCACATGCAGCCACTGTCGCTGTTGATGCTGGACATCGATCATTTCAAGCGGATCAACGACACCCATGGGCATGGTGTCGGCGATGAAGTGCTCAGGGCCGTCGCTGACTCGATCAAAAGCCATCTGCGCAATGTCGACATGGTGTTCCGGTTTGGCGGGGAAGAGTTCCTGATCCTGCTGGCCAACACCAGCCGGGATGCCGCGGCCATGGTCGGCGAACGGCTGCGTTATGCCGCCCAGACCCAGGATTATTTCGCCGGCGGGACAAGGATTGAACTGACCGTCAGCCTCGGCTGCGCGACATTGCTGCCGGGCGAGTCGGCCGAAAGCCTCTTGCGCCGAGCCGACAGTGCGCTGTATGTAGCAAAGCGCGAGGGCAGAAACCGGTTGACGATGGCGGGCTGA	MKTPTQTNAIDFDSAKLQRLGLAQPSPLVARPVSLSQLRQQLGQQLQTSLEPQRILGLFFREVQRLVPLDALAYQHKPSDLRMEFGQRGHHNLSYNLSHEGEHLGELVFRRNQRFTESEQSDLESTLSSLFFPLRNALLYRAATQSALRDPLTGTGNRIAMDQTLEREIDMARRHMQPLSLLMLDIDHFKRINDTHGHGVGDEVLRAVADSIKSHLRNVDMVFRFGGEEFLILLANTSRDAAAMVGERLRYAAQTQDYFAGGTRIELTVSLGCATLLPGESAESLLRRADSALYVAKREGRNRLTMAG				NA	NA	NA	NA	NA
D1-36_03504	333			hypothetical protein	TTGCTCGCGATGGCGGTCTGGCAGTTAACCTTGCGTTGGCAGACCCGGCCCCTTCGCGAGCAGGCTCGCTCCCACAGTGGCTTTGTGGTGAGTGAGGATCTTATGTACACCGCCAATCCCCTGTGGGAGCGAGCCTGCTCGCGATGGCGGTGTGTCGGCGTCAAGCAGTTGGGGCTTCAGCCCGCCATCGTCAACCGGTTTCTGCCCTCGCGCTTTGCTACATACAGCGCACTGTCGGCTCGGCGCAAGAGGCTTTCGGCCGACTCGCCCGGCAGCAATGTCGCGCAGCCGAGGCTGACGGTCAGTTCAATCCTTGTCCCGCCGGCGAAATAA	MLAMAVWQLTLRWQTRPLREQARSHSGFVVSEDLMYTANPLWERACSRWRCVGVKQLGLQPAIVNRFLPSRFATYSALSARRKRLSADSPGSNVAQPRLTVSSILVPPAK				NA	NA	NA	NA	NA
D1-36_03505	138			hypothetical protein	ATGGCGGTCTGGCAGTTAACCTTGCGTTGGCAGGCCCGGCCCCTTCGCGAGCAAGCTCGCTCCCACAGTGGTTTTGTGGGGATCGAAAATCTGATGTACACCGCCAATCCCCTGTGGGAGCGAGCCTGCTCGCGATGA	MAVWQLTLRWQARPLREQARSHSGFVGIENLMYTANPLWERACSR				NA	NA	NA	NA	NA
D1-36_03506	804			hypothetical protein	GTGATCGACACATTCAACCGAACAGGCCCGCTCATGGACGCTAGTAGCTATCCGAAATGGGCACAGCAGCTCATTACAGATTGCAGCGAGAGCAAGCGCCGGGTTGTCGAACACGAGCTGTATCAACGCATGCGTGACAACAAGCTCAGCGCCAAGACCATGCGCCACTACCTCATTGGTGGTTGGCCGGTCGTTGAACAGTTCGCTTTATACATGGCACAGAATCTCACCAAGACCCGCTTTGCCCGCCACCCTGGCGAGGACATGGCGCGTCGCTGGCTGATGCGCAACATTCGTGTCGAACTCAATCACGCCGACTACTGGGTGAACTGGAGCGCCGCCCATGGTGTGACGCTCGAGGATCTCCAGGCACAGCAGGTGCCGCCCGAGCTGCACGCACTGAGCCATTGGTGCTGGCACACCAGCTCGGCGGACTCGCTGATCGTGGCGATCGCGGCGACCAACTACGCCATCGAGGGCGCGACCGGGGAATGGTCGGCGCTGGTCTGCTCCAATGGCGTCTACGCATCGGCCTTCGCCGAGGAAGACCGCAAGCGGGCCATGAAATGGCTGAAGATGCATGCCCAGTATGACGATGCCCACCCTTGGGAAGCGCTGGAAATCATCTGCACACTGGCGGGCATGAACCCGAGCAAGGCGCTGCAGGTGGAGCTGCGGCAGGCCGTTTGCAAGAGCTACGACTACATGTATCTGTTCCTGGAACGATGCATGCAGCTGGAGCAATCGGGCGTAGCCGAGAAGACCCCGCCCAGCCGCGAGCGCCTGGCGTTGGCGGGTAGCTGA	MIDTFNRTGPLMDASSYPKWAQQLITDCSESKRRVVEHELYQRMRDNKLSAKTMRHYLIGGWPVVEQFALYMAQNLTKTRFARHPGEDMARRWLMRNIRVELNHADYWVNWSAAHGVTLEDLQAQQVPPELHALSHWCWHTSSADSLIVAIAATNYAIEGATGEWSALVCSNGVYASAFAEEDRKRAMKWLKMHAQYDDAHPWEALEIICTLAGMNPSKALQVELRQAVCKSYDYMYLFLERCMQLEQSGVAEKTPPSRERLALAGS				NA	NA	NA	NA	NA
D1-36_03507	2460			hypothetical protein	ATGAAGCAAAAGCGGACTCTCGGAACGCCACGATTGTTGGGCATTGTCTGGCCCTTTATTGCCGTTGTGCTATTTCAAGCATTGCTTGGCGGCGTCAGCCTGTATGTCTTGTCTGCGGTACGCGGATATGTGGCGGGGGAAAGTCTTTGGTCCAAGGGCCAGAAAGACGCCATTTATTACCTCAATTTGTATGCCGACAGCCGTGACGAATCGATTTTCCGCAAATACCAACAGGCCATCGCCGTGCCTGAGGGCGGCCATGACCTTCGCGTGGCCCTCGACCGCCAACCGCCGGACCTGGAAGCGGCGCGGGCCGGGATCCTCCAGGGCGGGAATCATCCGGACGACGTTTCCAGCCTGATCTGGCTGTACCTCAACTTTCGCCACTTCAGTTACCTGGAAGAAGCCATCGACCTCTGGACAGTGGGCGATGGCTACCTCACCGAGCTGGATAATGTCGCGCGACAAATGCACCGCAGCATCACGGCGGGGGAGGTGACGGAAAACGACGTGCGAGGCTGGAAAGCGCAGATTTTCGCGATCAACGATTCGGTGACGCCGGCCGCCAAGGCTTTCAGCGATGCGCTGGGCGAGGGGTCGCGGTTCATCCTGCGCCTGTTGCTCGTGACCAACTTCGCCACGGCCCTGGGGCTGATCGTGCTGGCGCTGTTGCGCACGCATAAATTGCTGGCCCAGCGACAAGTCTTCGCCAACGCGCTGCAGTTAGAGAAGGAGCGGGCGCAGATCACCCTGCAATCGATCGGCGACGGGGTGATCACCACCGACGTTGAAGGCGCCATTGCCTACATGAACCCCGCGGCCGAAGCGATGACGCACTGGAAAGCCGAGCATGCGGCGGGGCTGCCCCTGGCGGCGCTGTTCAATCTGCTCGACGACAATGCCCAGACCGAGGGGCTGACATTGATCGAGCATATCCTCAGCGGGCGGCTTGGCGGCGGCAGCGAACATTCCAAGCTGATCCAGAGGCTGGACGGCAGTACCGTGTCGGTCACGCTGGTCGGTGCGCCGATCCGCCACGCGGGCAAGGTCAGCGGCGCGGTGCTGGTGTTGCACGACATGACCCAGGAGCGGCAGTACATCGCCAACCTGTCCTGGCAGGCCACGCACGATGCATTGACCGGCCTGGCGAACCGTCGCGAATTCGAATACCGCCTCGAACAGGCCCTGCATAACCTCACTCGGCAAGTGGGCCGCCACGCCTTGATGTTTCTCGACCTGGATCAGTTCAAGCTGGTCAACGACACGTGCGGTCATGCCGCGGGTGACGAGTTGCTGCGCCATATTTGCGCGCTGCTGCAATCGGGGTTGCGGGAAAACGATACATTGGCCCGGCTGGGCGGGGATGAGTTCGGCATCTTGTTGGAAAACTGTTCGCCGGACGCGGCGGAAAAAATTGCCGAAGGTCTGCGCCAGACCGTACAGAACCTGCATTTTGTATGGAAAGGTCGGCCATTCGTGACCACCGTGAGCATTGGCCTCGTGCACATCGCCCAGAGTCCGACCACGCTGGAGGCGTCCCTGCGGGCCGCGGACATGGCGTGCTACATGGCCAAGGAAAAAGGGCGCAACCGGGTCCAGGTCTACCATGCCGACGATTCGGAACTGTCCCTGCGTTTCGGCGAGATGGCCTGGGTCCAGCGCCTGCATATGGCCCTGGAAGAAAATCGCTTCTGTCTCTACGCCCAGGAAATTGCCGCATTGGGTCCCGGTGACCATGGCGGCGGTCACATTGAAATCCTGTTGCGCCTGCATGACGAGGCGGGCCGGATGATCCTGCCGGACAGTTTCATCCCGGCGGCGGAACGTTATGGCCTGATGACTTCGCTGGACCGTTGGGTAGTGGAGAATGTTTTCAGGATCATTCGCCAGTGCCTGAACGAATCAAGGCGGGGTCCGTTGGCAATGTGTGCGATTAATCTGTCAGGCACGACTATAGGAGATCAGGCATTCCTGGACTTCCTGCGTAAACAGTTTGAGACGTACGCCATCCCACCAGAAATGATTTGTTTTGAAATTACCGAGACCAGTGCAATTTCCAATCTGGGCAGTGCGATCCGCTTTATCAATGAACTCAAAGGCTTGGGTTGTTACTTTTCCCTGGATGACTTTTGTGCCGGAATGTCTTCATTCGCTTACTTGAAACATTTACCTGTAGACTTCCTGAAGATCGATGGGAGTTTCGTAAAGGATATGCTGGACGACCCGATTAACCGGGCAATGGTCGAAGTGATCAATCATATCGGCCACGTCATGGGTAAGCGTACGATTGCCGAGTTCGTAGAAACGGTACAGATCGAACAGGCATTGCTTGAGATTGGCGTGGATTACGCTCAGGGGTATGTTATCGAGCGTCCACAAATGTTTACCTGTGACACATTGCAGTGCAGGCCGGCCAGGCCCCAGCCGTTGTTATTCAAGGCCCCCGGCACGTTCCGCTGA	MKQKRTLGTPRLLGIVWPFIAVVLFQALLGGVSLYVLSAVRGYVAGESLWSKGQKDAIYYLNLYADSRDESIFRKYQQAIAVPEGGHDLRVALDRQPPDLEAARAGILQGGNHPDDVSSLIWLYLNFRHFSYLEEAIDLWTVGDGYLTELDNVARQMHRSITAGEVTENDVRGWKAQIFAINDSVTPAAKAFSDALGEGSRFILRLLLVTNFATALGLIVLALLRTHKLLAQRQVFANALQLEKERAQITLQSIGDGVITTDVEGAIAYMNPAAEAMTHWKAEHAAGLPLAALFNLLDDNAQTEGLTLIEHILSGRLGGGSEHSKLIQRLDGSTVSVTLVGAPIRHAGKVSGAVLVLHDMTQERQYIANLSWQATHDALTGLANRREFEYRLEQALHNLTRQVGRHALMFLDLDQFKLVNDTCGHAAGDELLRHICALLQSGLRENDTLARLGGDEFGILLENCSPDAAEKIAEGLRQTVQNLHFVWKGRPFVTTVSIGLVHIAQSPTTLEASLRAADMACYMAKEKGRNRVQVYHADDSELSLRFGEMAWVQRLHMALEENRFCLYAQEIAALGPGDHGGGHIEILLRLHDEAGRMILPDSFIPAAERYGLMTSLDRWVVENVFRIIRQCLNESRRGPLAMCAINLSGTTIGDQAFLDFLRKQFETYAIPPEMICFEITETSAISNLGSAIRFINELKGLGCYFSLDDFCAGMSSFAYLKHLPVDFLKIDGSFVKDMLDDPINRAMVEVINHIGHVMGKRTIAEFVETVQIEQALLEIGVDYAQGYVIERPQMFTCDTLQCRPARPQPLLFKAPGTFR	PGPT0023624_1603	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-GGDEF|EAL|PAC|PAS-DOMAIN-CONTAINING_PROTEIN,PGPT0023624-GGDEF|EAL|PAC|PAS_domain_containing_protein-NA	NA	NA
D1-36_03508	1830	bmrA	COG1132	Multidrug resistance ABC transporter ATP-binding/permease protein BmrA	GTGCCTGACCTGCCCGGTGATGGCGTATCCGCCACGCGGCGCATCGATCGGTTGAGCTGGGCGGAAATCCGTCGCCTGGCCCTCAAGCACAAAAAAGCCCTGTGGATCGCCAACGGCGTTGCCGTGCTGGCGACGCTGTGCAGCGTACCCATCCCGTTGTTGCTGCCGTTGCTCGTGGACGAAGTCTTGCTGGGTCATGGCGACGCGGCATTGAAGGTCATGAATCATGCGCTGCCGGCGGCCTGGCAGAGTGCGGCCGGCTACATTGGGTTGATGCTGCTCGTGACGTTGGCACTGCGTTGCGGCGCATTGCTGTTCAACGTCTTGCAGGCCCGTTTATTCGCCAGCCTGGCCAAGGACATCGTCTATCGCATCCGTATCCGGCTGATTGAACGCCTCAAACGCATTTCCCTCGGCGAATACGAAAGCCTGGGCAGCGGCACCGTGACCACCCATCTGGTCACCGACCTGGACACCCTGGACAAGTTCGTCGGCGAAACCCTTAGCCGGTTCCTGGTGGCCATGCTGACCCTGGTGGGCACCGCCGGGATCCTGATGTGCATGCACTGGAAGCTGGCGCTGCTGATCCTGTTGTTCAATCCGTTGGTGATCTACGCCACGGTGCAACTGGGCAAGCGGGTCAAGCACCTGAAGAAGCTGGAAAACGACAGCACCTCGCGTTTCACCCAGGCGCTGACTGAAACCCTGGATGCCATCCAGGAAGTACGCGCCGGTAACCGCCAGGGATTTTTCCTCGGACGATTGGGGATGCGTGCCCGGGATGTCCGGGACTACGCGGTGAATTCACAATGGAAAACCGACGCCTCGAACCGTGCCAGTGGCCTGCTGTTCCAGTTCGGCATCGACATTTTCCGCGCCGCGGCCATGCTCACCGTGTTGTTTTCGGACCTGTCCGTGGGCCAGATGCTCGCGGTGTTCAGCTACTTGTGGTTCATGATTGGCCCAGTCGAGCAACTGCTGAACCTGCAATACGCCTATTACGCGGCGTCCGGCGCCTTGAATCGCATCAACGAATTGCTGGCCCGCGCCGATGAGCCTCAGTACGACGGTGGCGTCGACCCATTCAAAGGGCGGGACACGGTAGGCATCGACATTCAGGGGCTCAGTTTTGGCTACGGCGAGGAGCGGGTGCTCGATCAGATGAACCTGTCCATCTCGCCGGGGGAAAAGGTCGCAATCGTCGGGGCCAGCGGTGGCGGAAAAAGCACCCTGGTGCAACTGCTGTTGGGGCTCTATACGCCACAGGCCGGCAGTATTCGGTTCGGGGGCGCGAGCCAACAGGAAATCGGCCTGGAAACCATCCGGGAAAATGTCGCGGTGGTGCTTCAGCACCCCGCGCTGTTCAACGACACGGTGCGGGCCAATTTGTCCATGGGTCGCGACTGCAGCGATGAGGATTGCTGGCGAGCACTGGCGATCGCCCAGCTCGAATCGACAGTGCGGGCGCTGCCCATGGGGCTGGAGAGTGTTGTGGGTCGATCCGGGGTGAGGTTGTCGGGCGGGCAGCGTCAGCGACTGGCGATTGCGCGCATGGTCCTGGCCGATCCCCGGGTGGTGATTCTCGATGAAGCCACATCGGCGCTGGACGCCGCCACCGAATATAACCTGCACCAGGCATTGGCGAAGTTCCTGCACGGGCGCACCACCTTGATCATCGCCCACCGATTATCGGCGGTGAAACAGGCCGACCGGGTATTGGTATTCGACGGCGGGCAAATCGCCGAAGACGGCGACCATCTGCAACTGATTGCCGAGGGTGGTTTGTACGCTCGACTCTATGGTCACTTGCAACAAATACAGCGACCTTGA	MPDLPGDGVSATRRIDRLSWAEIRRLALKHKKALWIANGVAVLATLCSVPIPLLLPLLVDEVLLGHGDAALKVMNHALPAAWQSAAGYIGLMLLVTLALRCGALLFNVLQARLFASLAKDIVYRIRIRLIERLKRISLGEYESLGSGTVTTHLVTDLDTLDKFVGETLSRFLVAMLTLVGTAGILMCMHWKLALLILLFNPLVIYATVQLGKRVKHLKKLENDSTSRFTQALTETLDAIQEVRAGNRQGFFLGRLGMRARDVRDYAVNSQWKTDASNRASGLLFQFGIDIFRAAAMLTVLFSDLSVGQMLAVFSYLWFMIGPVEQLLNLQYAYYAASGALNRINELLARADEPQYDGGVDPFKGRDTVGIDIQGLSFGYGEERVLDQMNLSISPGEKVAIVGASGGGKSTLVQLLLGLYTPQAGSIRFGGASQQEIGLETIRENVAVVLQHPALFNDTVRANLSMGRDCSDEDCWRALAIAQLESTVRALPMGLESVVGRSGVRLSGGQRQRLAIARMVLADPRVVILDEATSALDAATEYNLHQALAKFLHGRTTLIIAHRLSAVKQADRVLVFDGGQIAEDGDHLQLIAEGGLYARLYGHLQQIQRP				NA	NA	NA	NA	NA
D1-36_03509	636			hypothetical protein	ATGGCGTCGCGCCTGCTGTATGTGATGGACCCGATGTGTTCCTGGTGCTGGGGCTTCGCGCCGGTGGCCGAGGCGTTGGCCGAGCAGGCGCAGGCCGCGGGCGTGGAATTGCACCTGGTGGTGGGCGGCTTGCGCACTGGCAGCGGTTCGGCCTTGGAGCCGACGACTCGGCGCTACATCTTGGAACACTGGCAGGCGGTCACCCAGGCCACCGGCCAGCCGTTCAAGCTCGAGGGTGCGCTACCGGACGGTTTTGTCTACGACACCGAGCCCGCTTGCCGCGCGCTGGTGACGGCCCGCAGCCTGGCGCCGGACATGGCCTGGACGCTGATGAAGCTGATCCAGCGGGCTTTTTATGCACAGGGTCGCGACGTGACCCACGCCAGCGTCCTGGTGGAACTGGCGGAGCAGGCCGGGCTGCCTCGCATCGAGTTTGCCGCCGCCTTCGATCGCGCCGATCAACATGCCGCCACGGCCGCTGACTTCACTTGGGTACAAGACCTGGGCATCGCCGGATTCCCCACGCTGCTGGCCGAACGGGACGGCCAATTGGCCTTGCTGACCAACGGCTACCAACCTTTGGATCAGTTGGCCCCGCTGCTGGGCCGCTGGTTGGAGCGCGCGGCCTGTGCCTGA	MASRLLYVMDPMCSWCWGFAPVAEALAEQAQAAGVELHLVVGGLRTGSGSALEPTTRRYILEHWQAVTQATGQPFKLEGALPDGFVYDTEPACRALVTARSLAPDMAWTLMKLIQRAFYAQGRDVTHASVLVELAEQAGLPRIEFAAAFDRADQHAATAADFTWVQDLGIAGFPTLLAERDGQLALLTNGYQPLDQLAPLLGRWLERAACA				NA	NA	NA	NA	NA
D1-36_03510	942	glpE_1		Thiosulfate sulfurtransferase GlpE	ATGACACCACCCATTGTCGTGGCGGCACTGTATAAGTTCGTCACCCTGGAAGATTACGTCGAGCTGCGCGAGCCCCTGCTCAAGGCGATGCTCGACAACGGCATCAAAGGCACGTTGTTGATCGCCGAAGAAGGCATCAACGGCACCGTTTCCGGCACCCGCGAAGGGATTGACGGATTGATGGCCTGGCTCAAGAACGACCCGCGCATGGATGATATCGACCACAAGGAGTCGTACTGCGACGAGCAGCCGTTCTACCGCACCAAGGTCAAGCTCAAGAAAGAAATCGTCACCCTCGGCGTCGACGGCGTGGACCCGAACAAGCAGGTTGGCACCTATGTCGAGCCGCAAGACTGGAACGCCTTGATCAGCGATCCGGAAGTCCTGCTGATCGACACGCGCAATGACTACGAAGTGGCCATCGGCACCTTCGAAGGCGCCATCGATCCCAAGACCACCAGCTTCCGAGAGTTCCCCGACTACATCAAAGCCCACTTCGACCCAACCCGGCACAAGAAAGTGGCGATGTTCTGCACCGGTGGCATTCGTTGTGAAAAAGCGTCGAGCTATATGCTTGGCCAAGGTTTCGACGAGGTCTATCACCTCAAGGGCGGCATCCTGAAATACCTTGAAGAGGTGCCCCAGGAAGAAACCAAATGGCGCGGCGACTGCTTTGTATTCGATAACCGCGTGACCGTGCGCCACGATCTCAGCGAAGGCGACTACGATCAATGTCATGCATGCCGTACGCCGGTGAGCGTTGAAGATCGCGCCTCCGAGCACTACGTGCCCGGGATCAGTTGCCCGCACTGCTGGGACAAGCTGAGCGAGAAGACCCGCCGCAGCGCCATCGACCGGCAAAAGCAGATCGAACTGGCCAAGGCCCGCAACATGCCGCACCCGATCGGCTACAACTACAAGCAAACACCTTCCGAGGCTTGA	MTPPIVVAALYKFVTLEDYVELREPLLKAMLDNGIKGTLLIAEEGINGTVSGTREGIDGLMAWLKNDPRMDDIDHKESYCDEQPFYRTKVKLKKEIVTLGVDGVDPNKQVGTYVEPQDWNALISDPEVLLIDTRNDYEVAIGTFEGAIDPKTTSFREFPDYIKAHFDPTRHKKVAMFCTGGIRCEKASSYMLGQGFDEVYHLKGGILKYLEEVPQEETKWRGDCFVFDNRVTVRHDLSEGDYDQCHACRTPVSVEDRASEHYVPGISCPHCWDKLSEKTRRSAIDRQKQIELAKARNMPHPIGYNYKQTPSEA	PGPT0013330_1441	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013330-UPF0176_protein-K07146	NA	NA
D1-36_03511	300	bolA	COG0271	DNA-binding transcriptional regulator BolA	ATGAGCATGCAACAACGCATTGAATCGACCCTTGGGCTTCTGCAGCCCGAGCACTTGCAAGTGCTGGACGAAAGCCACATGCACAGCCGTGGGTTGCAGACCCACTTCAAGGCGGTCGTGGTCAGCCGACAGTTCGAGGGGCTCAATCGGGTCAAGCGTCACCAGATGGTCTACGGCACGCTGGGCGAATTGATGGGCGAATTCCATGCACTGGCGCTGCACACCTACACGCCGCAAGAATGGGCCCAGATCGACGCGGCCCCGGCTTCGCCGACCTGTGCCGGAGGCAGCAAGCACTGA	MSMQQRIESTLGLLQPEHLQVLDESHMHSRGLQTHFKAVVVSRQFEGLNRVKRHQMVYGTLGELMGEFHALALHTYTPQEWAQIDAAPASPTCAGGSKH	PGPT0014930_837	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014930-bolA-K05527	NA	NA
D1-36_03512	522			hypothetical protein	ATGACCCGTCTTCGTGCCATCTGTACCGCCGTTGCTCTGGTGTGTGCCAGCGGCCCTGTCTTCGCCGATACCGCCAGCCACAACGCCAGTGCCGAAGCGTTCCTGACCCTGGCGCATGCCGACAAGCTGGGTACCCCCGTCTACATGCAAGTACAGCAGATGTTTGCCCAGCGCTTCGAGCAGACCAAAGCTCCCGAGTCGAAAAAGGCCACGCTGGAGACCTACCAGGCCAAGGCCAATGCCGCGCTGGACCAGGCCATCGGCTGGAACAAGCTCAAGCCGGACATGGTCAAGCTCTACACCAGCAACTTCAGCGAATCGGAGCTCAAGGAACTGGTGTCCTTCTATCAGTCTCCCCTGGGCAAGAAAGTCCTGGAAAAAATGCCCCAGCTGACCCAGCAATCGGCGCAACTGACCCAGGCCAAGCTGGAAAGCGCGGTGCCGGTGGTCAACAAGCTGCTGGCGGACATGACCGCCGAGCTCGAGCCGAAAGCCGCTGCCCCGGCCAAGAAAAAGCCATAA	MTRLRAICTAVALVCASGPVFADTASHNASAEAFLTLAHADKLGTPVYMQVQQMFAQRFEQTKAPESKKATLETYQAKANAALDQAIGWNKLKPDMVKLYTSNFSESELKELVSFYQSPLGKKVLEKMPQLTQQSAQLTQAKLESAVPVVNKLLADMTAELEPKAAAPAKKKP				NA	NA	NA	NA	NA
D1-36_03513	1395	fumC	COG0114	Fumarate hydratase class II	ATGAGCCGTATTGAAACCGACAGCCTTGGCCAGGTTGAAGTCCCGGATGAAGCCTATTGGGGCGCACAGACACAGCGCTCCATGATCAACTTTGCCATCGGCAACGAACGCATGCCGCTGTCGGTGTTGCACGCTTTGGCGCTGGTCAAAAAAGCCGCCGCGCGGGTCAACGACCGCAACGGTGACCTGCCCGCCGACATCGCCCGCCTGATAGAGCAGGCCGCCGACGAGGTGCTGGCCGGCCAGCATGACGACCAGTTTCCTCTGGTGGTCTGGCAGACCGGCAGCGGGACCCAGAGCAACATGAACGTCAACGAGGTCATCGCCGGGCGCGCCAATGAGCTGGCGGGCAACCCGCGAGGCGGCAAGAGCCCGGTTCACCCCAACGACCACGTCAACCGTTCCCAGAGTTCCAACGACTGCTTCCCCACCGCGATGCACATCGCCGCCGCCCAAGCCGTCTACCAGCAATTGCTGCCGGCCATCAGCGAGTTGTCGGGTGGTCTCGCGGAACTGGCGGCGCGCCATATGAAGCTGGTCAAGACCGGCCGTACCCACATGATGGACGCCACGCCGATCACGTTCGGCCAGGAACTGTCCGCGTTCATCGCCCAACTCGATTATGCCGAACGAGCGATCCGCGCCGCCTTGCCGGCCGTCTGCGAGCTGGCCCAGGGCGGCACGGCGGTGGGCACAGGGCTCAATTCCCCCCATGGTTTTGGCGAAGCGATTGCCGCTGAGTTGGCGGCGCTGTCCGGCTTGCCCTTCGTTACCGCGCCGAACAAGTTCGCTGCGCTGGCGGGCCATGAGCCGCTGACCACATTGTCCGGCGCGCTGAAGACCCTGGCCGTGACCCTGATGAAAATCGCCAACGACCTTCGCCTGCTGGGTTCCGGGCCGCGAGCGGGGTTTGCCGAGGTGAAATTGCCGGCCAACGAGCCGGGCAGTTCCATCATGCCTGGCAAGGTCAACCCGACCCAGTGCGAAGCCTTGTCGATGCTCGCCTGCCAAGTCCTGGGCAACGACGTGGCCATCGGTTTCGCCGCCAGCCAGGGTCACTTGCAGCTGAACGTGTTCAAGCCGGTGATCATCCACAACCTGCTGCAATCGATCCGCCTGCTGGCCGATGGCTGCAGCAACTTCCAACAGCATTGCATCGCCGGCCTCGAACCGGATGCCGAGCAGATGGCGGCGCACCTGGAACGCGGATTGATGCTAGTGACGGCGCTGAACCCGCACATCGGCTACGACAAGTCGGCGGAAATCGCCAAGAAAGCCTACAGCGAGGGGCTGACCCTGCGGGAGGCCGCGTTGCAGCTGGGGTACCTGACCGATGAGGAGTTCGAGGCCTGGGTCCGGCCGGAGAACATGCTGGAGGCCGGTGGGCAGGGTTGA	MSRIETDSLGQVEVPDEAYWGAQTQRSMINFAIGNERMPLSVLHALALVKKAAARVNDRNGDLPADIARLIEQAADEVLAGQHDDQFPLVVWQTGSGTQSNMNVNEVIAGRANELAGNPRGGKSPVHPNDHVNRSQSSNDCFPTAMHIAAAQAVYQQLLPAISELSGGLAELAARHMKLVKTGRTHMMDATPITFGQELSAFIAQLDYAERAIRAALPAVCELAQGGTAVGTGLNSPHGFGEAIAAELAALSGLPFVTAPNKFAALAGHEPLTTLSGALKTLAVTLMKIANDLRLLGSGPRAGFAEVKLPANEPGSSIMPGKVNPTQCEALSMLACQVLGNDVAIGFAASQGHLQLNVFKPVIIHNLLQSIRLLADGCSNFQQHCIAGLEPDAEQMAAHLERGLMLVTALNPHIGYDKSAEIAKKAYSEGLTLREAALQLGYLTDEEFEAWVRPENMLEAGGQG	PGPT0001650_2600	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
D1-36_03514	963	yhbE	COG0697	putative inner membrane transporter YhbE	ATGCACATATCGTCCGGTCGCTGGGTCTACGGGCTTCTTCTGGCTTTGTTGACCGCCCTGTTGTGGGGAATCCTGCCGATCAAGCTCAAGCAAGTGCTGCAAGTGATGGATCCGGTGACGGTGACCTGGTTTCGGCTGACGGTGTCCGGCGGGTTGCTCTTCGTGTACCTGGCGGCGACACGGCGCCTGCCCAGCCGCAAGGTGCTCGGCCCGCGTGGCGGCTGGCTGGTGGTGATGGCGGTGTTGGGGCTGGTGGGTAACTACGTCCTGTACCTGATGGGCCTGAACCGCTTGAGTCCCGGTACGGCGCAACTGGTGGTGCAGATGGGGCCGATCATGCTGCTGGTCGCCAGTCTGTTTGTATTCAAGGAGCGTTTCAGCGTGGGGCAGGGCATTGGCCTGCTGGTGTTGCTGATTGGTTTTGCGCTGTTCTTCAACCAGCGTCTCACCGAGTTGCTGACGTCGTTGAGCGACTACACCGCCGGGGTCTTGCTGGTGCTGTCTGCGTCGACGGTCTGGACGTTTTATGCCCTGGGCCAGAAGCAACTGCTGACGGTCTGGAATTCATTGCAAGTGATGATGGTGATCTACCTGTTCTGCGCGTTGTTGCTCACGCCTTGGGTTCATCCGCTGGAGGCGTTGCAACTGACCCCATTGCAGGGCTGGCTGTTGCTCGCCTGTTGCCTCAACACGTTGATCGCTTATGGTGCGTTTGCCGAGGCGCTGGCCCATTGGGAAGCCTCGCGGGTCAGCGCGACCCTGGCGATCACGCCGCTGGTGACGTTCGCCGCCGTGGCGATGGCCGCCTGGTGGTGGCCCGAGTATGTCCATGCCGAACAGATCAATGTTTTGGGGTATGGCGGGGCGGTGTTGGTCGTGCTGGGGTCCGCGCTGGTGGCGTTGGGACCATCGCTCATCGCCGGGCTCAGGGCCCGGCGCGAGCGTTTGGCGGTGGGTCGCTAG	MHISSGRWVYGLLLALLTALLWGILPIKLKQVLQVMDPVTVTWFRLTVSGGLLFVYLAATRRLPSRKVLGPRGGWLVVMAVLGLVGNYVLYLMGLNRLSPGTAQLVVQMGPIMLLVASLFVFKERFSVGQGIGLLVLLIGFALFFNQRLTELLTSLSDYTAGVLLVLSASTVWTFYALGQKQLLTVWNSLQVMMVIYLFCALLLTPWVHPLEALQLTPLQGWLLLACCLNTLIAYGAFAEALAHWEASRVSATLAITPLVTFAAVAMAAWWWPEYVHAEQINVLGYGGAVLVVLGSALVALGPSLIAGLRARRERLAVGR				NA	NA	NA	NA	NA
D1-36_03515	276			hypothetical protein	ATGCCAGGAACGCGCGCAAACGATACAGACGCCCCCAAGACAGTATTCCGCAGTGACCGGATCTGCCGGGTGAATGGCGAATTTTATTTCAATACGCGCGAAGGCACCCAGGAAGGTCCGTTCGAAACTCGTGAGGCGGCGGAGCAGGAGATTGCGGCATACATCCAACGGATGCAGAAGTTGCCCAAGGTGGCTGAACAGTTTGCAGCTCCCGTGGCGAGGGAGCTTGCTCCCGCTGGGCCGCAAAGCGGCCCTTCTATGGTTCATACCCAGTAA	MPGTRANDTDAPKTVFRSDRICRVNGEFYFNTREGTQEGPFETREAAEQEIAAYIQRMQKLPKVAEQFAAPVARELAPAGPQSGPSMVHTQ				NA	NA	NA	NA	NA
D1-36_03516	1185	fadA_3	COG0183	3-ketoacyl-CoA thiolase	ATGCGTGAAGTGGTGATCGTCGACAGCGTACGGACCGGATTGGCCAAGTCCTTTCGCGGCAAGTTCAACATGACCCGTCCGGACGACATGGCGGCGCATTGCGTCAATGCGTTGCTGGCGCGTAACGACATCGACCCGGCCAGTGTCGAGGATTGCATCGTCGGCGCCGGTTCCAACGAAGGCGCCCAAGGCTTCAACATCGGGCGTAACGTGGCGGTGCTCTCGCAACTGGGCATCGGCACCGCCGGGATGACCCTCAACCGTTTCTGCTCCTCGGGCCTGCAAGCCATCGCGATTGCCGCCAACCAGATCGCCTCGGGTTGCAGCGAGATCATCGTCGCCGGCGGCGTCGAATCCATCAGCCTGACGATGAAGAGCGTCAACACCGACAACCTGATCAATCCATTGCTCAAGGAACAGGTGCCGGGAATCTACTTCCCCATGGGTCAGACTGCCGAGGTCGTCGCGCGCCGTTATCAGGTGAGCCGCGAGGAGCAGGACCGCTACGCCTTGCAGAGCCAGCAGCGCACGGCCCGGGCCCAGGCCGAAGGGCTGTTCAACGATGAAATCGTGCCGATGACGGTCAAGTACCGGGTCGAGGACAAGAACACCGGCGCGGTTCAGATTCTGGACGGTGTGGTTGACCGCGATGACTGCAACCGCCCCGATACCACCTACGAAAGCCTGGCCGGCTTGAAGCCGGTGTTTGCCGAGGACGGTTCGGTAACGGCGGGCAACTCTTCCCAACTGTCCGATGGCGCCTCGATGACGCTGGTGATGAGCCTGGAAAAAGCCCTGGCCCTGGGACTCAAACCCAAGGCGTTTTTTCGCGGCTTTACCGTCGCCGGTTGCGAGCCGGACGAGATGGGCATCGGCCCGGTGTTCTCGGTGCCCAGGTTGCTCAAGGCCAAGGGACTACAGATTGGCGACATCGATCTGTGGGAGCTCAACGAAGCGTTTGCCTCCCAATGCCTCTACAGTCGCAACCGGTTGGAAATCGATAACGAGAAATACAACGTCAACGGCGGCTCGATTTCCATCGGTCACCCGTTCGGCATGACCGGCTCGCGGCAAGTGGGGCATCTGGTGCGGGAGTTGCAACGGCGCAACCTGCGCTATGGCGTCGTGACCATGTGCGTGGGCGGCGGGATGGGGGCGACGGGGTTGTTCGAGGCGGTGCGATAA	MREVVIVDSVRTGLAKSFRGKFNMTRPDDMAAHCVNALLARNDIDPASVEDCIVGAGSNEGAQGFNIGRNVAVLSQLGIGTAGMTLNRFCSSGLQAIAIAANQIASGCSEIIVAGGVESISLTMKSVNTDNLINPLLKEQVPGIYFPMGQTAEVVARRYQVSREEQDRYALQSQQRTARAQAEGLFNDEIVPMTVKYRVEDKNTGAVQILDGVVDRDDCNRPDTTYESLAGLKPVFAEDGSVTAGNSSQLSDGASMTLVMSLEKALALGLKPKAFFRGFTVAGCEPDEMGIGPVFSVPRLLKAKGLQIGDIDLWELNEAFASQCLYSRNRLEIDNEKYNVNGGSISIGHPFGMTGSRQVGHLVRELQRRNLRYGVVTMCVGGGMGATGLFEAVR	PGPT0001565_3027	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
D1-36_03517	1512		COG2326	Polyphosphate:AMP phosphotransferase	ATGTTCGAGTCCGCCGAAATCGGTCACGTCGTTGATAAAGAAACCTATGAGGCTGAAGTCCCGGCACTGCGCGAAGCGTTGCTCGAAGCGCAATACGAGCTGCACCAGCAGGGGCGTTTCCCGGTCATCGTACTGATCAACGGCATCGAAGGCGCGGGTAAGGGCGAGACGGTGAAGTTGCTCAACGAGTGGATGGATCCGCGATTGATCGAGGTCCGCACCTTCGACCAGCAGACTGACGAGGAGCTGGCGCGGCCGCCGGCCTGGCGCTATTGGCGGATGCTGCCGGCCAAGGGGCGCATGGGGATTTTTTTCGGTAACTGGTACAGCCAGATGCTGCAAGGGCGGGTCCACGGCGAGTTCAAGGACCCGCGGCTCGACCAGGGGATCAACGGTGCCGAACGCCTGGAGAAAATGCTCTGCGATGAGGGCGCGCTGATCTTCAAGTTCTGGTTTCACCTGTCCAAGAAACAGATGAAGGCCCGCCTCAAAAGCCTCAAGGACGATCCGCTGCACAGCTGGCGCATCAGCCCGCTGGACTGGCAGCAGTCGAAGACCTACGACAAGTTCGTCAAGTACGGCGAGCGCGTGCTGCGCCGCACCAGTCGCGATTACGCGCCGTGGCATGTGATCGAAGGGGTGGATGCTTGTTATCGCAGCCTTGCGGTCGGACGCATCTTGCTCGAAGGCTTGCGCCAGGCCTTGGATCGGCCGAAGGTCAAGGCGGCCAAGGTCAACGTGGCGCCGTTGCCAGCGCTGGATGACCAGGTGACCTTGATCGATAGCCTGGACATGACGCTACGTCTGGACAAGGCCGACTACGAAGAACAGTTGATCACCGAGCAGGCCCGCTTCGCCGGCCTGCTGCGCGACAAGCGCATGCGCCGGCATGCCCTGGTGGCCGTGTTCGAAGGCAACGACGCGGCGGGCAAGGGCGGTGCCATCCGCCGGGTCGCGGCGGCGCTCGATCCGCGCCAGTACAGCATCGTGCCGATTGCCGCGCCCACCGAGGAAGAACGTGCCCACCCCTACATGTGGCGGTTCTGGCGACATATTCCGGCCCGGGGCAAGTTCACCATGTTCGATCGCTCCTGGTACGGCCGGGTGCTGGTGGAGCGGGTCGAAGGCTTTTGCAGCCGCGCCGACTGGCTGCGGGCCTACGGCGAAATCAATGATTTCGAGGAACAGCTGGCCGATGCCGGCGTGGTGGTGGTGAAGTTCTGGCTGGCGATCGACAAGGAAACGCAGCTGGAGCGCTTCCAGGAGCGGGAGGAAATCCCCTTCAAACGCTTCAAGATCACCGAGGACGACTGGCGCAACCGGGACAAGTGGGACGCCTATCGCTCGGCGGTCTGTGACATGGTCGATCGCACCAGCACCGAGATCGCGCCCTGGACGCTGGTGGAGGCCAATGACAAGCGCTGGGCCCGGGTCAAGGTGTTGCGCACGCTCAATGACGCGCTGGAGGCCGCGTTCGAGCGTTCCGCCAGGCAAGCGCGGAAAAAGAGCTAG	MFESAEIGHVVDKETYEAEVPALREALLEAQYELHQQGRFPVIVLINGIEGAGKGETVKLLNEWMDPRLIEVRTFDQQTDEELARPPAWRYWRMLPAKGRMGIFFGNWYSQMLQGRVHGEFKDPRLDQGINGAERLEKMLCDEGALIFKFWFHLSKKQMKARLKSLKDDPLHSWRISPLDWQQSKTYDKFVKYGERVLRRTSRDYAPWHVIEGVDACYRSLAVGRILLEGLRQALDRPKVKAAKVNVAPLPALDDQVTLIDSLDMTLRLDKADYEEQLITEQARFAGLLRDKRMRRHALVAVFEGNDAAGKGGAIRRVAAALDPRQYSIVPIAAPTEEERAHPYMWRFWRHIPARGKFTMFDRSWYGRVLVERVEGFCSRADWLRAYGEINDFEEQLADAGVVVVKFWLAIDKETQLERFQEREEIPFKRFKITEDDWRNRDKWDAYRSAVCDMVDRTSTEIAPWTLVEANDKRWARVKVLRTLNDALEAAFERSARQARKKS	PGPT0002695_74	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATE_METABOLISM	P-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002695-ppk2-K23753	NA	NA
D1-36_03518	1983	mnmC_1	COG0665	tRNA 5-methylaminomethyl-2-thiouridine biosynthesis bifunctional protein MnmC	ATGACGCCCATTCAACACCACGCCCAACTCGACTGGGACGACCAGGGTCGCCCCCGCTCCCGGGTGTTCAACGATGTCTATTTCTCCGACCAGTCGGGCCTGGAAGAAACCCGCTACGTGTTCTTGCAACAGAACAACCTCGCCGAGCGTTTCGCCGGGCTGGCGGAGGGCGGGCGGCTGGTGATCGGTGAAACCGGGTTTGGTACCGGGTTGAATTTCCTCTGCGCCTGGCAGTTGTTCGAGCAATGCGCACCGGCCGGGGCACGGCTGCATTTTGTCAGCGTCGAGAAGTCTCCCCTGAGCCCCGAGGACCTGCGCCGGGCCCTGGCCTTATGGCCCGAGCTCAAAGTCCAGGCCGATCAATTGCTCGGGCAGTACGTGGCGATCCACCCAGGTTTCCAGCGCCTGACCCTGGCGAGCGGCCGGGTCACCCTGACGTTGTTGATTGGCGATGCCCTGGAGCAATTGCCGCAACTGGATGGGCGGATCGACGCCTGGTTCCTCGACGGTTTCGCCCCGGCGAAAAACCCCGAGATGTGGAGCGCCGAGCTGTTCGCCGAGCTGGCGCGACTGGCCGCGCCGGGGGCTACCCTCAGCACCTTCACCAGCACCGGCTGGGTGCGGCGCCGGTTGAACGCGGCGGGTTTCAAGATGAAGCGCACGCCAGGCATCGGCCATAAATGGGAGATTCTTCGCGGCGTGTTCCTCGGTTGGCCGGAGCAGACGCCGTCACCCGCGCCGATCAAGCCCTGGTACGCCCGGCCCGCGCCGCATACCGGCGAGCGGCGGGCCTTGGTCATCGGCGGCGGACTGGCCGGTTGCGCCAGCGCGGCCAGCCTCGCGGCCCGTGGCTGGCACGTGACCTTGCTGGAGCGTCACGCTGGGTTGGCCGAGGAAGCGTCCGGTAATCCCCAGGGCGTGCTGTACCTCAAGCTGTCGGCCCACGGCACGGCGCTGTCGCAGATGATCCTCAGCGGTTTCGGCTACACGCGGCGCGTGCTCGAACACCTGCAGCGCAGCCTCGACTGGGACGGCTGCGGTGTCCTGCAATTGGCCTTCGATGCCAAGGAAGCCGAGCGCCAGGCGCGCTTGGCCGAGGCCTTTGCGGGCAGTCTGTTGAAGGTGCTTGATCGCGATGAGGCCGAGGCGCAAGCCGGCATTGGTTTGCCCAGCGGGGGCCTGTTTTATCCCGAGGGCGGCTGGGTGCATCCGCCAGCGCTGTGTCGCTGGCAGGCTTCGAACCCGGCGATTACCTTGCAGCCACACCATGAAGTGTTGGAACTGCGGCGTGTCGACGGCCAATGGCAGGCCTGGGACGGCGAACGTTGCGTGGCCAGCGCACCGGTGGCGATCCTCGCCAGCGCGGCCGAGATCAAACGTTTCGAGCCTGCCGCCGAGCTGCCCCTCAAGCGCATTCGCGGGCAGATCACTCGCCTGCCGCAAACCACCCGCAGCCAGCGCCTGGCAACGGTGGTCTGTGCCGAAGGCTACGTGGCGCCGCCGCGAATGGGCGAGCACACGTTGGGCGCCAGTTTCGATTTTCACAGCGACGACCTGACCCCCACCGCCGCCGAGCATGCCGGCAACCTTAAGATGCTCGAAGATATTTCCGTGGACCTGGTAGACCGGCTCAACGCCAAAGCGCTGGACCCAGCGCAACTGGAAGGCCGCGCGGCGTTTCGCTGTACCAGCCCGGACTACCTGCCAATCGTCGGGCCACTGGCCGATCACTCCGCCTTCATCGAGGCGTATTCGGTTCTGGCCAAGGACGCCCGTCAAGTGCCCGACGCCCCCTGCCCCTGGCTCGACGGCCTGTACGTCAACAGCGGCCACGGCTCCCGAGGCCTGATCACCGCGCCGCTGTCGGGCGAGCTGATCGCCGCGTGGCTGGAGAACGAACCGCTGCCCCTGCCGCGAAGCGTGGCCGAGGCCTGTCATCCCAACCGATTTGCGTTACGGGCGTTGATTCGGGGCAAGGCCTGA	MTPIQHHAQLDWDDQGRPRSRVFNDVYFSDQSGLEETRYVFLQQNNLAERFAGLAEGGRLVIGETGFGTGLNFLCAWQLFEQCAPAGARLHFVSVEKSPLSPEDLRRALALWPELKVQADQLLGQYVAIHPGFQRLTLASGRVTLTLLIGDALEQLPQLDGRIDAWFLDGFAPAKNPEMWSAELFAELARLAAPGATLSTFTSTGWVRRRLNAAGFKMKRTPGIGHKWEILRGVFLGWPEQTPSPAPIKPWYARPAPHTGERRALVIGGGLAGCASAASLAARGWHVTLLERHAGLAEEASGNPQGVLYLKLSAHGTALSQMILSGFGYTRRVLEHLQRSLDWDGCGVLQLAFDAKEAERQARLAEAFAGSLLKVLDRDEAEAQAGIGLPSGGLFYPEGGWVHPPALCRWQASNPAITLQPHHEVLELRRVDGQWQAWDGERCVASAPVAILASAAEIKRFEPAAELPLKRIRGQITRLPQTTRSQRLATVVCAEGYVAPPRMGEHTLGASFDFHSDDLTPTAAEHAGNLKMLEDISVDLVDRLNAKALDPAQLEGRAAFRCTSPDYLPIVGPLADHSAFIEAYSVLAKDARQVPDAPCPWLDGLYVNSGHGSRGLITAPLSGELIAAWLENEPLPLPRSVAEACHPNRFALRALIRGKA				NA	NA	NA	NA	NA
D1-36_03519	120			hypothetical protein	ATGGCCAAGGGCAATTGGGCCCTGGCTATGAAAGCCCCACGCGTCGGGGCCGCGAGGGGCCAAGTGATGGGTGATGCGCTCTACGGCCGCAAGGTCCGCAGGGTGTTGATCGAAACGTAA	MAKGNWALAMKAPRVGAARGQVMGDALYGRKVRRVLIET				NA	NA	NA	NA	NA
D1-36_03520	1617	asnB	COG0367	Asparagine synthetase [glutamine-hydrolyzing] 1	ATGGACCTGTCCGACGGCTCGGCCCAGCCGATGATCGACAATCAACTGGGCCTGTCACTGGCGTTCAACGGCGCGATCTACAACTACCCGGAATTGCGGGCCGAACTCGAAGGCCTGGGCTACGCCTTTCATTCGGGCGGCGACACCGAAGTGCTGCTCAAGGGCTATCACGCCTGGGGCGAAGCTCTGCTGCCCAAGCTCAACGGCATGTTCGCCTTCGCCATCTGGGAGCGCGACGCCAAGCGGCTGTTCATCGCCCGTGACCGTCTCGGCGTGAAGCCGCTGTACCTGTCTCGCACCGGCCAGCGCCTGCGCTTCGCCTCGGCATTGCCGGCATTGCTCAAGGGCGGCGACATCAACCCGGTGCTCGACCCGGTCGCGCTGAATCACTACCTCAATTTCCACGCGGTCGTCCCGGCGCCTCGCACCTTGCTGGCTGGTATCGAGAAGTTGCCCCCGGCCACTTGGATGCGTGTCGAGGCGGATGGCAGCACTGAGCAGAAAACCTGGTGGACGCTGCCCTACGGTCCCCGGCCCGACGAGCAGAACCTCAACCTGGAAGACTGGATCGAGCGTGTATTGGACAGCACCCGCGAAGCGGTCGCCATCCGCCAGCGCGCCGCCGTCGATGTCGGCGTGCTGCTGTCGGGCGGCGTGGACTCGAGCATGCTCGTGGGCCTGCTGCGCGAAGTCGGCGTTGACGACCTGTCCACCTTCTCCATCGGCTTCCAGGACGCCGGCGGTGAGCGCGGCGACGAGTTTCAATATTCAGACCTGATCGCCAAGCACTACGGCACCCGCCACCATCAGTTGCGCATCGACGAAAAAGAAATCATTGAACAGTTGCCCGCCGCGTTCCGCGCCATGAGTGAACCGATGGTGAGCCACGACTGCATCGCCTTCTACCTGCTCTCGCGGGAAGTGGCCAAGCACTGCAAAGTGGTTCAGAGCGGCCAGGGCGCCGATGAGTTGTTCGCCGGTTACCATTGGTATCCGCAAGTGGATGGCGCCAGCGACCCGTATGCGGCCTATCGCGCGGCGTTCTTCGACCGCACTTACGAGGAGTATGCCGCCACCGTTCAACCCAAATGGCTGACGGCCAACGATGCCGCCGGAGACTTCGTCAAGGAGCACTTCGACCAGCCGGGCGCCGATGCCGCCGTCGACAAGGCCTTGCGCCTGGACAGCACGGTGATGCTGGTGGACGACCCGGTCAAGCGCGTCGACAACATGACCATGGCCTGGGGCCTGGAAGCACGCACACCGTTCCTCGACTACCGTCTGGTGGAGCTTTCCGCTCGGGTGCCGGCCAAATTCAAGCTCCCCGAGGGCGGCAAGCACGTGCTCAAGGAAGCGGCACGCCGGGTGATCCCGAGCGAGGTCATCGACCGCAAGAAAGGCTATTTCCCGGTGCCGGGCCTCAAGCACCTTGAAGGCAACACCCTGGCCTGGGTCCGTGAACTGCTGCTGGATCCGAGCCAGGATCGCGGCCTGTTCAACCCGACCATGCTTGATCGCCTGCTGACCGACCCCAACGGCCAGCTGACGCCGTTGCGCGGTTCGCGGCTGTGGCAATTGGCAGCGCTGAACCTGTGGCTCAGCGAGCAAGGAATCTGA	MDLSDGSAQPMIDNQLGLSLAFNGAIYNYPELRAELEGLGYAFHSGGDTEVLLKGYHAWGEALLPKLNGMFAFAIWERDAKRLFIARDRLGVKPLYLSRTGQRLRFASALPALLKGGDINPVLDPVALNHYLNFHAVVPAPRTLLAGIEKLPPATWMRVEADGSTEQKTWWTLPYGPRPDEQNLNLEDWIERVLDSTREAVAIRQRAAVDVGVLLSGGVDSSMLVGLLREVGVDDLSTFSIGFQDAGGERGDEFQYSDLIAKHYGTRHHQLRIDEKEIIEQLPAAFRAMSEPMVSHDCIAFYLLSREVAKHCKVVQSGQGADELFAGYHWYPQVDGASDPYAAYRAAFFDRTYEEYAATVQPKWLTANDAAGDFVKEHFDQPGADAAVDKALRLDSTVMLVDDPVKRVDNMTMAWGLEARTPFLDYRLVELSARVPAKFKLPEGGKHVLKEAARRVIPSEVIDRKKGYFPVPGLKHLEGNTLAWVRELLLDPSQDRGLFNPTMLDRLLTDPNGQLTPLRGSRLWQLAALNLWLSEQGI	PGPT0020150_4427	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ASPARAGINE_DEGRADATION,PGPT0020150-asnB-K01953	NA	NA
D1-36_03521	1746	gshAB		Glutathione biosynthesis bifunctional protein GshAB	ATGAAACCCCATTCCACCCTCCACAACCAACGACTCTTGCGCGGCCAACCGCCGTCCTACGAACGCTTGCAGGCACGCCTGGCCGAAGACGGCAGCGAACTCAATGCCGCCCCCATCGCCGTGCATTGCGGCTGGGGCCGGCTGCTGATCGGCCATACGTTCCCGGACCCGGCGACCCTGGCCCAGGAACTGCTCAACGAACAACCCGGCGAACGGGACATCGCCCTGTACGTCGCCGCGCCCCAGCAAGTGCTGGGGCTGGAGCCGGCGCACCTGTTTCTCGATCCGTCCGACACCCTGCGCCTGTGGTTCAGCGATTACCGACAAGCCACGCGAGTATTCCGCGGTTTCCGGATCCGCCGCGCCCAGAACGACAGCGACTGGCAGGCCATCAACCAGCTGTACCAGGCTCGCGGCATGCTGCCCATCGACCCGGAGCGATTGACACCGCGCCATCAAGGTGGCCCGGTCTACTGGCTGGCCGAGGACGACGACACCGGCGCGGTGATTGGCAGCGTGATGGGCCTCAATCACCAGAAAGCCTTCAACGATCCAGAAAACGGCAGCAGTCTCTGGTGCCTGGCGGTGGACCCACAGTGTTCACGCCCCGGCGTTGGCGAGGTGCTGGTGCGCCACCTCATCGAGCATTTCATGAGCCGGGGCTTGAGCTACCTCGACCTGTCGGTACTGCACGATAATCGGATGGCGAAAAACCTCTATGCCAAACTCGGTTTCCGCAGCCTCCAGACCTTCGCCATCAAGCGCAAGAATGGCATCAACCAGCCGTTGTTCCTTGGGCCCGGCCCCGAGGCGCAATTCAACCCCTATGCGCGGATCATCGTCGAGGAAGCGCATCGTCGCGGCATCGAAGTGCAAGTGGACGACGCCGAGGCCGGCCTGTTCACCCTGATGCACGGCAGCCGCCGGATTCGCTGCCGGGAATCGCTGAGCGACCTGACCAGCGCAATCAGCATGACGCTGTGCCAGAACAAGAGCCTGACCCACAAAGTGCTGAAAAACGCTGGCCTGAACCTGCCGGCCCAACAGCTGGCGGGCAATGCCGACGACAACCTGGCGTTTCTCGATGAGCATGAACGGGTGGTCGTGAAGCCGTTGGACGGCGAACAGGGCCAAGGCGTGGCGGTGGACCTGCGCACGATCGAAGAAGTACAGGCCGCCATCGAAGCTGCCCGGCGGTTTGACAGCCGGGTATTGCTAGAAAGCTTCCACGAAGGGTTGGACTTGCGAATCCTCGTGATCGGTTTTGAAGTGGTGGCCGCGGCAATCCGTCGCCCGGCCGAGGTAATCGGCGACGGGCAGCACACCATCGGCGCGCTCATCGAAGCCCAGAGCCGACGGCGCCAGGCCGCTACCGGCGGTGAGAGCAAGATCCCGATGGATGCCGAAACCGAGCGCACCTTGAGCGCGGCCGGTTATGCCTACGATAGCGTGCTGCCCAAGGGTGAGCATCTGTTCGTACGGCGCACGGCGAACCTGCATACCGGTGGCGTCCTGGAGGACGTGACCGCCATCCTCCATCCGACCCTGGCCGATGCGGCGGTTCGTGCAGCACGGGCCCTGGACATCCCGATGGTCGGCCTGGACCTGCTCGTCCCGGCGGCTGATCAACCGGAATACGTGTTCATCGAAGCCAACGAACGCGCCGGGCTGGCCAATCACGAACCGCAACCCACCGCAGAGCGTTTTGTGGACTTGTTGTTTCCCCATAGCCAAGCGGTGGTCTGA	MKPHSTLHNQRLLRGQPPSYERLQARLAEDGSELNAAPIAVHCGWGRLLIGHTFPDPATLAQELLNEQPGERDIALYVAAPQQVLGLEPAHLFLDPSDTLRLWFSDYRQATRVFRGFRIRRAQNDSDWQAINQLYQARGMLPIDPERLTPRHQGGPVYWLAEDDDTGAVIGSVMGLNHQKAFNDPENGSSLWCLAVDPQCSRPGVGEVLVRHLIEHFMSRGLSYLDLSVLHDNRMAKNLYAKLGFRSLQTFAIKRKNGINQPLFLGPGPEAQFNPYARIIVEEAHRRGIEVQVDDAEAGLFTLMHGSRRIRCRESLSDLTSAISMTLCQNKSLTHKVLKNAGLNLPAQQLAGNADDNLAFLDEHERVVVKPLDGEQGQGVAVDLRTIEEVQAAIEAARRFDSRVLLESFHEGLDLRILVIGFEVVAAAIRRPAEVIGDGQHTIGALIEAQSRRRQAATGGESKIPMDAETERTLSAAGYAYDSVLPKGEHLFVRRTANLHTGGVLEDVTAILHPTLADAAVRAARALDIPMVGLDLLVPAADQPEYVFIEANERAGLANHEPQPTAERFVDLLFPHSQAVV				NA	NA	NA	NA	NA
D1-36_03522	1191			hypothetical protein	ATGATCAGTAAGATTCCCGAACCGAATCTCGAATACCTGCAGAAAGTCTTGCTGGAAATGCTCGCCATTCCCAGCCCTACCGGTTTCACCGACACCATTGTCCGTTACGTCGCCGAGCGCCTCGAAGAGCTGGGCATTCCTTTCGAAATGACCCGGCGCGGTACCATTCGCGCCACCCTCAAGGGCCGCAAAAGCAGCCCCGACCGCGCGGTCTCGGCGCACCTGGACACCATTGGCGCCTCGGTCCGGGCCATCAAGGACAACGGTCGCCTGACACTGGCGCCCGTGGGTTGCTGGTCGAGCCGGTTTGCCGAGGGCAGCCGGGTCAGCCTGTTTACCGATACGGGCGTGATTCGCGGCAGCGTCCTGCCGTTGATGGCGTCCGGTCACGCGTTCAATACCGCCGTGGATGAAATGCCCATCAGTTGGGACCACATCGAACTGCGCCTGGATGCCTACTGCGCCACCCGCGCCGATTGCGAGACCCTGGGCGTGGGCATCGGCGACTACGTGGCCTTCGATCCCTTGCCCGAATTCACCGAAAGCGGCCATATCAGCGCCCGTCACCTGGATGACAAGGCCGGGGTCGCCGCGTTGTTGGCGGCGCTGAAGGCCATCGTCGACAGCGGCGAAGAGCTGCTGATCGATTGCCATCCGCTGTTCACCATCACCGAGGAGACCGGCAGCGGCGCGGCCGCCGCGCTGCCCTGGGACGTCAGTGAGTTCGTCGGGATCGACATCGCACCGGTCGCGCCGGGCCAGCACTCCAGCGAACACGCCGTAAGCGTGGCGATGCAGGATTCCGGCGGCCCTTACGACTACCATCTGTCGCGGCACTTATTGAAACTGGCCAAGGAAAACGAACTGCCGGCGCGCCGTGACCTGTTTCGCTACTACTTCAGTGACGCCCATTCCGCGATCACCGCCGGCCACGACATCCGCACCGCCCTGCTCGCTTTCGGCTGCGACGCCACCCATGGCTACGAACGCACCCACATCGACAGTCTGGCGGCTCTCAGCCGTCTGCTCGGCGCCTACATCCTCAGCCCGCCGGTGTTTGCCAGCGATGCGCAACCGGCCCAGGGTTCACTGGACCGCTTCAGCCATCAGATCGAACACGATGCACAAATGGAAAGCGACACCCGGGTGCCTTCTGTGGACAGCCTGATTGGGCAGCGTTCCGATAGCTGA	MISKIPEPNLEYLQKVLLEMLAIPSPTGFTDTIVRYVAERLEELGIPFEMTRRGTIRATLKGRKSSPDRAVSAHLDTIGASVRAIKDNGRLTLAPVGCWSSRFAEGSRVSLFTDTGVIRGSVLPLMASGHAFNTAVDEMPISWDHIELRLDAYCATRADCETLGVGIGDYVAFDPLPEFTESGHISARHLDDKAGVAALLAALKAIVDSGEELLIDCHPLFTITEETGSGAAAALPWDVSEFVGIDIAPVAPGQHSSEHAVSVAMQDSGGPYDYHLSRHLLKLAKENELPARRDLFRYYFSDAHSAITAGHDIRTALLAFGCDATHGYERTHIDSLAALSRLLGAYILSPPVFASDAQPAQGSLDRFSHQIEHDAQMESDTRVPSVDSLIGQRSDS				NA	NA	NA	NA	NA
D1-36_03523	228			hypothetical protein	ATGCTGATCCCCCACGACCAACTCGAAGTCGACACCCTCACCCGCCTGATCGAGGATTTCGTCACCCGTGACGGGACCGACAATGGCGACGACACGCCTTTGGAAACCCGCGTCCTGCGGGTCCGCCAGGCCCTGACCAAAGGCCAGGCAATGATTGTCTTCGATCCGGAAAGCGAACAATGCCAATTGATGCTCAAGCACGACGTGCCCAAGCATCTATTCGATTGA	MLIPHDQLEVDTLTRLIEDFVTRDGTDNGDDTPLETRVLRVRQALTKGQAMIVFDPESEQCQLMLKHDVPKHLFD				NA	NA	NA	NA	NA
D1-36_03524	201	csrA	COG1551	Translational regulator CsrA	ATGCTCGTATTAAGCCGCGCAGTGGGCGAGTTGATTTCCATCGGTGACAATATTTCCGTGCGCGTGCTGTCGGTCAGCGGCAGCACCGTGCGTTTCGGCGTGGAGGCGCCTCGACACGTCGAAGTGCATCGTTCCGAAATCTACGACAAGATTCAGAGAAAAAAGGCCCAGGCGGCACGCAAGGCCTGTTCAATCGAATAG	MLVLSRAVGELISIGDNISVRVLSVSGSTVRFGVEAPRHVEVHRSEIYDKIQRKKAQAARKACSIE	PGPT0015065_1253	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ENVELOPE_STRESS_SIGNALLING,PGPT0015065-csrA|zfiA-K03563	NA	NA
D1-36_03525	333			hypothetical protein	ATGCTCAATTACCTATGGTTTTTCCTTGCCGCGCTCTTTGAAATCGCCGGGTGCTATGCCTTCTGGATGTGGTTGCGCCAGGGCAAGAGCGCCTGGTGGATCGCGCCGGCGTTACTCAGCCTGACATTGTTCGCCCTGTTGCTGACTCGTATCGAAGCCACGTATGCCGGTCGCGCCTATGCCGCCTATGGTGGGATCTATATCGTCGCGTCCATCGGCTGGCTGGCGGTCATCGAGCGCGCGCGGCCGCTGGCTTCCGACTGGATCGGCGTGGCGCTCTGTGTAATGGGGGCGGGAATAATTCTCTTCGGGCCGCGATTCACGGGACCTTGA	MLNYLWFFLAALFEIAGCYAFWMWLRQGKSAWWIAPALLSLTLFALLLTRIEATYAGRAYAAYGGIYIVASIGWLAVIERARPLASDWIGVALCVMGAGIILFGPRFTGP	PGPT0029120_657	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
D1-36_03526	816	hcaB_4		3-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenase	ATGCAAAATCGCATGATGATCACCGGTGCTGGCTCTGGCCTGGGTCGCGAAATCGCGCTGCGCTGGGCCCGCGAAGGCTGGCGCCTGGCCTTGTCTGACGTCAGTGAACCGGGCCTGCAGGAAACCCTCAGGCTGGTTCGCGAAGCGGGCGGCGACGGCTTTGTGCAACGTTGCGACGTGCGTGACTACAGCCAGCTCACCGCGTTTGCCCAGGCTTGCGAAGAAAAACTTGGCGGCATCGACATCATCGTCAACAACGCTGGCGTGGCGTCGGGTGGATTCTTCAGCGAACTGTCCCTCGAGGATTGGGACTGGCAGATCGCGATCAACCTGATGGGGGTGGTCAAGGGCTGCAAGGCGTTCCTGCCACTGCTGGAAAAAAGCCGTGGCAAAATCATCAACATCGCCTCCATGGCGGCCCTGATGCAAGGCCCGGCCATGAGCAACTACAACGTGGCCAAGGCCGGCGTGGTGGCGTTGTCGGAAAGCCTGCTGATCGAACTGGCGCAGCAGGAAATCGGTGTGCACGTGGTCTGCCCGTCGTTCTTCCAGACCAACCTGCTGGACTCGTTCCGCGGGCCGACTCCCGCCATGAAAGCCCAGGTCGGTAAATTGCTGGAGAGCTCGCCGATCAGTGCCGCTGACATCGCCGACTACATCTACCAGCACGTTGCCGAGGGCCAGTTCATGATCCTGCCCCACGAACAGGGGCGCGCGGCCTGGACGTTGAAGCAGAAAAACCCACAGCTGCTCTACGACGAAATGACCGCCATGGCAGACAAAATGCGCGCCAAGGCGCGACACTCCCCAAGTTGA	MQNRMMITGAGSGLGREIALRWAREGWRLALSDVSEPGLQETLRLVREAGGDGFVQRCDVRDYSQLTAFAQACEEKLGGIDIIVNNAGVASGGFFSELSLEDWDWQIAINLMGVVKGCKAFLPLLEKSRGKIINIASMAALMQGPAMSNYNVAKAGVVALSESLLIELAQQEIGVHVVCPSFFQTNLLDSFRGPTPAMKAQVGKLLESSPISAADIADYIYQHVAEGQFMILPHEQGRAAWTLKQKNPQLLYDEMTAMADKMRAKARHSPS				NA	NA	NA	NA	NA
D1-36_03527	153			hypothetical protein	ATGGGCACTATACTTATCATCATCCTGATCCTCCTGCTGATCGGTGGCCTTCCGGTCTTCCCGCACTCCAGAAGTTGGGGTTACGGCCCGTCCGGTATCATCGGCGTAGTATTGGTGGTGCTGTTGATCCTGCTGTTACTTGGCAAGATATAG	MGTILIIILILLLIGGLPVFPHSRSWGYGPSGIIGVVLVVLLILLLLGKI				NA	NA	NA	NA	NA
D1-36_03528	2094	mdoB_1		Phosphoglycerol transferase I	ATGGCAATCCCGGACGCCCTGAGTCAGCAGCGCACCACGCATCGCCTGCTGCAACCGACCGTCAAATCGCACCTGGCCTACACGCTGCTCTGTGCCCTGGTGATGATGATCATGCTCAGCCTGCTACGCGTGGCGCTGCTGGTCTACAACCGCCAGATGATCCTCGATACCCCAGCCTCGACCTTCGTGGAAGCTTTTATCAATGGGCTGCGTTTCGACTTGCGCCTGGTCGTCTATCTCTGCATTCCGCTGCTGCTGGCATTGTTCAGCGCGCGGGCCATGGCGGCACGTGGGTTCTTTCGTTTCTGGCTGACGGTCACCTCCAGCATCGCGCTGTTCCTGGGCTTGATGGAGATGGACTTCTACCGTGAGTTTCACCAGCGCCTCAACGGCCTGGTCTTCCAGTACGTGAAGGAAGACCCCAAAACCGTGGCGAGCATGCTCTGGTATGGTTTTCCCGTGGTTCGTTACCTGCTGGCCTGGGTGGGCGGCACCATCATCCTGAGCCTGGCGTTCAAGGGCGCCGATCGTGCCACACGGCCGCGTGGGCCTTTCAGTGGCGGCAGCATCGGCACGCGCCAGATCGCGCCGTGGTATGGCCGTGTCGCCGTGTTCCTGGTTTGCCTGCTGGTGGCCGTGGCCGCTGCGCGTGGCACCCTGCGCCAAGGGCCACCGCTGCGTTGGGGTGACGTCTACACCACTGATTCCAACTTCGCCAACCAGTTGGGTCTCAACGGCACGCTGTCGCTGGTGGCAGCGGCGAAGAGCCGGATGTCCGAAGACCGTGACAACATCTGGAAAGCCACTCTTGAGCAGCCGCTGGCGCAGCAGACCGTGCGCGACATGCTGGTGATGGCCGACGACAAGCTGGTGGACGCCGAGACGGCCGCCGTGCGTCGCGACTACACGCCGCCTGCCGACAAGACGCTGCCGATCAAGAACGTCGTCGTGATCCTGATGGAAAGCATGGCCGGTCATTCCGTGGGCGCCCTTGGCGCGCCGGGCAACATCACGCCTTACCTGGACAAGCTGTCCAAGGAGGGCCTGCTGTTCGACCGCTTCTTCTCCAATGGCACGCACACCCACCAAGGTATGTTCGCCACCATGGCCTGCTTCCCGAACCTGCCAGGTTTCGAATACCTGATGCAGACGCCGGAAGGCAGTCACAAGCTGTCGGGCTTGCCGCAGCTGCTCAGCGCCCGTGAATATGACGACGTGTATGTCTATAACGGCGACTTCGCCTGGGACAACCAGTCGGGCTTCTTCAGCAGCCAGGGCATGACCACGTTCATCGGCCGTAACGACTTCGTGAACCCAGTGTTCTCCGATCCAACCTGGGGCGTGTCGGACCAGGACATGTTCGACCGTGGCCTGATCGAGCTCAAGGCACGGGAGAATGGCAAGCCGTTCTATGCGTTGTTGCAAACCCTGTCCAACCACACGCCCTACGCACTGCCAACGCCGTTGCCGGTGGAGCGCGTGACTGACCGTGGCAGCCTGAACGAACACCTGACCGCCATGCGTTACTCCGATTGGGCGCTGGGCCAGTTCTTCGAGAAGGCCCGCAAAGAGCCTTACTTCAAGGAAACCCTGTTCGTGGTGGTCGGCGACCATGGTTTTGGCAACGAGCGCCAGATCACCGAAATGGACCTGGGCCGCTTCAACGTGCCGATGCTGCTGATCGGACCGGGCGTGCAGGAGAAGTTTGGCCAGCGCAATCACACCGTGGGCACCCAGGTCGATATCGTCCCGACCATCATGGGCCGCCTCGGCGGGGAAGTGCGCAATCAATGTTGGGGCCGTGACCTGCTGAACCTGCCGCAAGGCGATACCGGTTTCGGCGTGATCAAGCCGTCCGGTAGCGAGCAGACCACGGCGATCATTCGCGACGACAAGATCCTGGTGCTGCCAAAAGAGAAAGAAATGGCGCCCAAGATGTATCGCTATGAACTCGGTGCGAACCCGCGGGCAGAAGTCATTCCGGATGCACCGGAAACTGCCGAGATGAAACTCAAGCTTGAATCGTTCCTGCAAACCGCGACAAAGAGTTTGTTGGATAACACCGCCGGCGTTATCGACGGCAAGCCGGACTGA	MAIPDALSQQRTTHRLLQPTVKSHLAYTLLCALVMMIMLSLLRVALLVYNRQMILDTPASTFVEAFINGLRFDLRLVVYLCIPLLLALFSARAMAARGFFRFWLTVTSSIALFLGLMEMDFYREFHQRLNGLVFQYVKEDPKTVASMLWYGFPVVRYLLAWVGGTIILSLAFKGADRATRPRGPFSGGSIGTRQIAPWYGRVAVFLVCLLVAVAAARGTLRQGPPLRWGDVYTTDSNFANQLGLNGTLSLVAAAKSRMSEDRDNIWKATLEQPLAQQTVRDMLVMADDKLVDAETAAVRRDYTPPADKTLPIKNVVVILMESMAGHSVGALGAPGNITPYLDKLSKEGLLFDRFFSNGTHTHQGMFATMACFPNLPGFEYLMQTPEGSHKLSGLPQLLSAREYDDVYVYNGDFAWDNQSGFFSSQGMTTFIGRNDFVNPVFSDPTWGVSDQDMFDRGLIELKARENGKPFYALLQTLSNHTPYALPTPLPVERVTDRGSLNEHLTAMRYSDWALGQFFEKARKEPYFKETLFVVVGDHGFGNERQITEMDLGRFNVPMLLIGPGVQEKFGQRNHTVGTQVDIVPTIMGRLGGEVRNQCWGRDLLNLPQGDTGFGVIKPSGSEQTTAIIRDDKILVLPKEKEMAPKMYRYELGANPRAEVIPDAPETAEMKLKLESFLQTATKSLLDNTAGVIDGKPD				NA	NA	NA	NA	NA
D1-36_03529	876	speE_2	COG0421	Polyamine aminopropyltransferase	ATGACGACCACCCCGACCGGCGATTACCTTGAAACCCTCTACGAAGGCTATGGCCAGCGTTTTCGCATGGACAAGCTGCTGCATGAAGTGCGCACCGAGCACCAGCACCTGGTGATTTTCGAAAACCCGCGCATGGGCCGGGTCATGGCCCTGGACGGCGTGATCCAGACCACCGAAGCCGATGAATATATCTACCACGAGATGTTGACCCACGTGCCGATCCTGGCCCATGGCGCGGTCAAGCGCGTGCTGATCATTGGCGGTGGTGACGGCGGCATGCTGCGGGAAGTGACCAAGCATGTGGGCATCGAGCACATCACCATGGTGGAGATCGACGGCACGGTGGTGGACATGTGCAAGGAGTTTTTGCCGAACCATTCCAAGGGCGCCTATGACGATCCGCGCCTGAACCTGGTGATTGACGATGGCATGCGTTTCGTTGCCACGACCCAGGAAAAATTCGACGTCATCATTTCCGACTCCACCGACCCGATCGGTCCGGGCGAAGTACTGTTCTCGGAGAATTTCTACCAGGCATGCCACCGCTGCCTCAATGAAGGCGGGATCCTGGTCACTCAGAACGGCACGCCGTTCATGCAGTTGGGCGAAGTCCAGACCACCGCCGGGCGCTTGCACGGCCTGTTCGCCGACTGGCATTTCTACCAGGCCGCCGTGCCGACCTATATCGGCGGCGCCATGACCTTTGCCTGGGGTTCGACCAACGCCGCTTACCGCAAGCTCTCCCGCGAAACCCTGCGCGAGCGCTTTACCGGCAGCGGTATCGTGACGCGCTACTACAACCCCGAGATTCATATCGGTGCGTTCGCCATGCCGCAATACGTGCTGCAGGCGATCAACAAGCCGAGCAACGACTGA	MTTTPTGDYLETLYEGYGQRFRMDKLLHEVRTEHQHLVIFENPRMGRVMALDGVIQTTEADEYIYHEMLTHVPILAHGAVKRVLIIGGGDGGMLREVTKHVGIEHITMVEIDGTVVDMCKEFLPNHSKGAYDDPRLNLVIDDGMRFVATTQEKFDVIISDSTDPIGPGEVLFSENFYQACHRCLNEGGILVTQNGTPFMQLGEVQTTAGRLHGLFADWHFYQAAVPTYIGGAMTFAWGSTNAAYRKLSRETLRERFTGSGIVTRYYNPEIHIGAFAMPQYVLQAINKPSND	PGPT0007750_1997	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007750-speE|SRM|SPEC_3|SPSD-K00797	NA	NA
D1-36_03530	408			hypothetical protein	ATGACCGCCATCGCTCGTATCACACTGCTCACGCTCGTCCTGGGCCTGAGCGCTTGTGCGGTCCAGCGTCCGCCCGAACCTTCGGCGCCGCTGCCGCCCATACCGCCGTCGACACCGACCACCAAGCCAGCACCGTCGACCGCCCCCGGCAAACCGGTGACCCCGAACAAACCGGCCAAGCCAGTGCCTCGTACCTCCGCCAGTTTCGCGCCCCCACCCGGCGGCAACAGCCATTGGGATGCCAAGCTCGGGGTCTATGTGCTGGATGATCAGACCAATACCTTCTACCGCCAGCGCACCTACTATCGCTGGAACAATGGCTGGAGCCGTTCCGTCAGCCCGAACGGGCCGTGGGAAGACACCACCATCGAAGGCGTGCCGGCTGGGCTCGGACGCAAATTCAACTAA	MTAIARITLLTLVLGLSACAVQRPPEPSAPLPPIPPSTPTTKPAPSTAPGKPVTPNKPAKPVPRTSASFAPPPGGNSHWDAKLGVYVLDDQTNTFYRQRTYYRWNNGWSRSVSPNGPWEDTTIEGVPAGLGRKFN				NA	NA	NA	NA	NA
D1-36_03531	1203			hypothetical protein	ATGATTGATTTCTGGCTCGCCGCAGGTCTGCTTCTCCTGGTCGCCCTGAGTTTTCTGTTGATCCCCGTGTTACGTGGCCGTCGCGCCCAATTGGAAGAAGATCGCACCGCGCTGAACGTGGCGCTGTATCAGGAACGGGTTGCCGAACTGCAGGCCGAGCGGGAAGAGGGCGTGCTCAACGCGTCCCAACTGGACACCGGGCGCGCCGAGGCCGCCCGAGAATTGCTGGCTGATACCGAAGGCGCCGATGCGCCGCGTGAATCACGCCTGGGCAAGCCGTTGCCGCTTCTCGCCGCTGTGCTGGTGCCGGTGTTGGGCCTGGCGTTGTACCTGCATTTCGGTGCCATCGACAAAGTCGAACTGACCCGCGAATTCGCCCAGGCGCCGCAGTCCATGGAGGAGATGACCCTGCGCCTGGAGCGTGCGGTGGCGGCACAACCGGATTCCGCCGAGGGCTTGTATTTCCTCGGTCGGACCTACATGGCGCAGGATAGGCCGGCGGACGCGGCGAAGATTTTCGAACGCACCGTGGCGGTCGCGGGTCGCCAACCGGAGCTGTTGGGCCAATGGGCGCAGGCGCAGTACTTTGCCGATGGCAAGAAATGGTCGGATAAAGTCCAGGCCCTGACCGACGAAGCGCTGAAGCTCGACCCCAAGGAAGTGACCAGCCTTGGCCTGTTGGGCATCGCCGCGTTTGAAGGCGAGCGTTATCAGGAAGCGATCGATTATTGGGAACGCTTGCTGGCGCAATTGCCTGAAGGCGATAGATCCCGCGAAGCGTTGCAGGGCGGCATCACCCGGGCCACCGAGAAGCTCCAGGCCAGTGGGGGCAAGCTCGCCCAGGCGCCGACGGCCAAGGCCGTGGCACTGCTCAAGGTTCGCGTCGACCTGGCTCCGGCGCTCAAGGCGAAGGTGCAGCCGGGCGACAGCGTGTTCATTTTCGCCCGCGCCGTTTCCGGCCCGCCGGCGCCGCTGGCGGCCAAGCGCCTGACCGTCGCCGACCTGCCCGCCAGCGTCGAGTTGGGCGACGCGGACGCAATGATGCCGCAGCTGAAACTGTCGAACTTCCCCGAAGTCCAACTGGTGGCGCGTATATCCCGGGCCGGTCAACCGACCGCCGGCGAGTGGATCGGTCGCAGCCAGCCCTTGGCGAGCAGTACCACCGCACCGCAGCAATTGACCATCGACAGTCCGGACCAATGA	MIDFWLAAGLLLLVALSFLLIPVLRGRRAQLEEDRTALNVALYQERVAELQAEREEGVLNASQLDTGRAEAARELLADTEGADAPRESRLGKPLPLLAAVLVPVLGLALYLHFGAIDKVELTREFAQAPQSMEEMTLRLERAVAAQPDSAEGLYFLGRTYMAQDRPADAAKIFERTVAVAGRQPELLGQWAQAQYFADGKKWSDKVQALTDEALKLDPKEVTSLGLLGIAAFEGERYQEAIDYWERLLAQLPEGDRSREALQGGITRATEKLQASGGKLAQAPTAKAVALLKVRVDLAPALKAKVQPGDSVFIFARAVSGPPAPLAAKRLTVADLPASVELGDADAMMPQLKLSNFPEVQLVARISRAGQPTAGEWIGRSQPLASSTTAPQQLTIDSPDQ				NA	NA	NA	NA	NA
D1-36_03532	474	ccmH	COG3088	Cytochrome c-type biogenesis protein CcmH	ATGAAGCGCTGGTTAGCCGCCGCGGTCCTCGGCTTGAGTCTGTCGGGTGTGACCCATGCCGCCATCGATACCTATGAATTCGCCAATGACGCCGAGCGCGAGCGGTTTCGCGAGCTGACCAAGGAGTTGCGCTGCCCCAAATGTCAGAATCAGGACATCGCCGATTCCAACGCGCCGATCGCGACCGATTTGCGCAAGGAAATCTTCCGGATGCTCGGCGAGGGCAAGGACAACCAGCAAATCATCGATTTCATGGTGGATCGCTACGGTGAGTTCGTGCGCTACAACCCGGCCCTGTCTTCCAAGACCGCGCTGCTCTGGTTCGGCCCCGCCGGGCTGCTGCTGGGTGGTTTCGTGGTGATCGCGGTGATCGTGCGCCGCCGTCGGGTGCAGCGCAGCGCCGCCCCGGATACGCTTTCTGTCGAAGAGCGCCAGCGCCTCGACCAACTGTTGGATAAAACCAAGCATGATTGA	MKRWLAAAVLGLSLSGVTHAAIDTYEFANDAERERFRELTKELRCPKCQNQDIADSNAPIATDLRKEIFRMLGEGKDNQQIIDFMVDRYGEFVRYNPALSSKTALLWFGPAGLLLGGFVVIAVIVRRRRVQRSAAPDTLSVEERQRLDQLLDKTKHD	PGPT0000486_24	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-DENITRIFICATION|NITRATE_USAGE	DENITRIFICATION-NITRATE_REDUCTION,PGPT0000486-nrfF-K04017	NA	NA
D1-36_03533	537	dsbE	COG0526	Thiol:disulfide interchange protein DsbE	ATGAAACGTTGGTTGATGGTATTGCCGCTGGCGCTGTTCCTGATGGTTGCGGTGTTCCTCTACCGGGGGCTGTTCTTGAATCCGTCGGAGTTGCCCTCGGCGCTGATCGGCAAGCCGTTCCCGGAATTTTCCCTGCCCTCGGTACAAGGCGACAGGACCCTGACCCACGCCGACCTGCAGGGCAAGCCGGCGTTGGTCAACGTGTGGGGTACCTGGTGCATTTCCTGCCGGGTCGAGCATCCGGTGTTGAACAAGCTGGCCCAGAATGGCGTGGTGATCTACGGCGTCAACTACAAGGACGTCAACGCCGACGCCTTGAAATGGCTGGCTGAATTCCACAACCCATATCAGCTCGATATACGCGACGAGGAGGGCACCCTCGGCCTGAACCTGGGTGTGTACGGCGCGCCGGAAACCTTCTTCATCGACGCCAAGGGCATCATCCGCGACAAGTTCGTCGGTGTGATCGACGAACAGGTCTGGCGCGAAAAACTGGCTGGCAAATACCAGGCCCTGGTGGATGAGGCCAAGCCATGA	MKRWLMVLPLALFLMVAVFLYRGLFLNPSELPSALIGKPFPEFSLPSVQGDRTLTHADLQGKPALVNVWGTWCISCRVEHPVLNKLAQNGVVIYGVNYKDVNADALKWLAEFHNPYQLDIRDEEGTLGLNLGVYGAPETFFIDAKGIIRDKFVGVIDEQVWREKLAGKYQALVDEAKP				NA	NA	NA	NA	NA
D1-36_03534	1989	ccmF	COG1138	Cytochrome c-type biogenesis protein CcmF	ATGACCACCGGTATCTTCATCCCCGAGCTGGGCCATCTGGCGATGATCCTGGCCCTGTGTTTCTCCCTGGTGCAGGCCGTGGTTCCATTGCTCGGCGCCTGGCGTGGTGACCGTCTGTGGATGAGCCTCGCCCAGCCAGCGGCATGGGGACAGTTCGCGTTCATGCTGTTTGCCTTCGCCTGCCTGACCTACGCGTTCATGGCCGACGACTTTTCCGTTGAGTACGTCGCCAGCAACTCCAACAGCGCCTTGCCCTGGTACTACAAGTTCAGCGCGGTGTGGGGCGCCCACGAAGGTTCGTTGTTGCTCTGGGCCTTGATCCTCGCCGGCTGGACCTTTGCCGTGTCGGTGTTCTCTCGGCAATTGCCCCAGGTGATGCTGGCCCGGGTATTGGCGGTGATGGGCATCATCAGCACCGGTTTCCTGCTGTTTTTGATCGTCACGTCCAACCCGTTCGAGCGCATCCTGCCCCAGGTGCCGACCGACGGTCGCGACCTGAACCCGTTGCTCCAGGACATAGGCCTGATTGTCCATCCGCCGATGCTGTACATGGGGTACGTCGGTTTTTCCGTGGCCTTCGCGTTTGCCATCGCCGCGTTGCTCGGTGGTCGCCTCGATGCCGCTTGGGCTCGCTGGTCGCGCCCATGGACCATTGTTGCCTGGGCCTTTCTCGGCATCGGCATCACCCTCGGCTCGTGGTGGGCCTACTATGAACTCGGCTGGGGCGGCTGGTGGTTCTGGGACCCGGTGGAAAACGCCTCGTTCATGCCATGGCTCGTCGGCACGGCCCTGATCCATTCCCTGGCGGTCACGGAAAAGCGCGGGGTATTCAAGAGCTGGACGGTCCTGCTGGCCATCGCGGCATTCTCCTTGAGCCTGCTGGGAACCTTCCTCGTGCGTTCCGGCGTGCTGACGTCGGTGCATGCCTTCGCCTCGGACCCGGAGCGTGGCGTGTTCATCCTGATGTTCCTGATGGTCGTGGTCGGCGGTTCGCTGACGCTGTTCGCCCTGCGCGCGCCGGTGGTCAAGAGCCAGGTCGGCTTCAACCTCTGGTCCCGGGAAACCCTGCTGTTGGGCAACAACCTGGTGCTGGTGGTGGCGGCGTCGATGATCCTGCTGGGCACGCTGTACCCGCTGGTGCTCGATGCGTTGTCCGGCGCCAAGCTGTCGGTTGGCCCGCCGTATTTCAACGCATTGTTCATACCGCTGATGGCGATCCTCATGTTGGTGATGGCCGTCGGCGTGCTGGTGCGCTGGAAAGACACGCCGGTCAAATGGCTGATGGGCATGCTGACACCGGTGCTGTTGGGCACGGCTGCCCTGGCCGTGGTGGCCGGGATCGCCTACGGCGACTTCAACTGGGCCGTGTTGGCGACCTTCGTCCTGGCCGCCTGGGTGTTGCTGGCCGGCGTTCGGGACGTCTTCGACAAGACCCGTCACAAAGGCCTGATCAAGGGCCTGCCAACTCTGACCCGCAGTTATTGGGGCATGCAACTCGCCCACCTGGGCATCGCCGTTTGCGCCCTGGGCGTGGTGCTGTCCAGCCAGAACAGTGCCGAACGTGACCTGCGACTGTCGCCAGGCGAATCCATGGACCTGGGTGGCTACCAGTTCGTCTTCGAGGGCGCCAAGCATTTCGAAGGGCCTAACTTCACCTCCGACAAGGGCACCGTGCGGGTCCTTCGCAACGGCCAGGAAATTACCGTGCTGCACCCGGAGAAACGCCTCTACACCGTGCAGAACTCGGTGATGACCGAAGCCGGGATCGATGCTGGTTTCACCCGTGATCTCTATGTCGCGCTGGGCGAATCCCTGGGCGATGGCGCCTGGGCGGTGCGCGTCCACGTCAAGCCGTTCGTGCGCTGGATCTGGTTCGGTGGCTTGCTGACCGGCCTGGGCGGAGTCCTGGCGGCGCTGGATCGTCGTTATCGCGTCAAAGTGAAGACCCGGGTGCGTGAAGCGCTGGGCGTGACAGGAGCCACTGCATGA	MTTGIFIPELGHLAMILALCFSLVQAVVPLLGAWRGDRLWMSLAQPAAWGQFAFMLFAFACLTYAFMADDFSVEYVASNSNSALPWYYKFSAVWGAHEGSLLLWALILAGWTFAVSVFSRQLPQVMLARVLAVMGIISTGFLLFLIVTSNPFERILPQVPTDGRDLNPLLQDIGLIVHPPMLYMGYVGFSVAFAFAIAALLGGRLDAAWARWSRPWTIVAWAFLGIGITLGSWWAYYELGWGGWWFWDPVENASFMPWLVGTALIHSLAVTEKRGVFKSWTVLLAIAAFSLSLLGTFLVRSGVLTSVHAFASDPERGVFILMFLMVVVGGSLTLFALRAPVVKSQVGFNLWSRETLLLGNNLVLVVAASMILLGTLYPLVLDALSGAKLSVGPPYFNALFIPLMAILMLVMAVGVLVRWKDTPVKWLMGMLTPVLLGTAALAVVAGIAYGDFNWAVLATFVLAAWVLLAGVRDVFDKTRHKGLIKGLPTLTRSYWGMQLAHLGIAVCALGVVLSSQNSAERDLRLSPGESMDLGGYQFVFEGAKHFEGPNFTSDKGTVRVLRNGQEITVLHPEKRLYTVQNSVMTEAGIDAGFTRDLYVALGESLGDGAWAVRVHVKPFVRWIWFGGLLTGLGGVLAALDRRYRVKVKTRVREALGVTGATA	PGPT0000484_36	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-DENITRIFICATION|NITRATE_USAGE	DENITRIFICATION-NITRATE_REDUCTION,PGPT0000484-nrfE-K04016	NA	NA
D1-36_03535	456	ccmE	COG2332	Cytochrome c-type biogenesis protein CcmE	GTGAATCCGCTGCGCAAAAAACGTCTTGTCATCATTCTGGCGATCCTGGTCGGCGTCGGCGCGGCGGTCGGCCTGGCCCTGAGCGCCCTGCAGCAGAACATCAACCTGTTCTATACCCCGACGCAGATTGCCAGCGGAGAGGCGCCCAAGGACACTCGCATCCGCGCCGGCGGCATGGTGGAGCAGGGGTCGCTGGTGCGTTCCGGCGATTCGCTGGACGTGAGGTTCAACGTCACCGACTTCAACAAGACCGTGACCATCACCTACCGCGGCATTCTCCCTGACCTGTTCCGCGAAGGGCAGGGCATCGTCGCCCTGGGCAAGCTCAATGCAGACGGCGTGGTGGTGGCCGACGAAGTGCTGGCCAAGCACGACGAGAAGTACATGCCGCCGGAAGTGACCAAGGCCCTGAAAGACAGCGGCCAATCGGCGCCCGCGCCCGCGAAGGAGGGTTGA	MNPLRKKRLVIILAILVGVGAAVGLALSALQQNINLFYTPTQIASGEAPKDTRIRAGGMVEQGSLVRSGDSLDVRFNVTDFNKTVTITYRGILPDLFREGQGIVALGKLNADGVVVADEVLAKHDEKYMPPEVTKALKDSGQSAPAPAKEG				NA	NA	NA	NA	NA
D1-36_03536	177			hypothetical protein	ATGAGTTTCGCGTCATTCGGCGATTTCCTCGCCATGGGCCATCACGGCTTGTATGTCTGGTCAGCCTACGGCATCTGCCTGGCGGTGCTGGCTCTCAACGTGGCGGCGCCGATCCTGGCCCGCAAGCGGTATCTGCAACAAGAGGCGCGTCGTCTGCGCCGGGAGAATGGTCAGTGA	MSFASFGDFLAMGHHGLYVWSAYGICLAVLALNVAAPILARKRYLQQEARRLRRENGQ				NA	NA	NA	NA	NA
D1-36_03537	756	ccmC	COG0755	Heme exporter protein C	ATGAACTGGACCTGGTTTCACAAGCTCGGCTCACCCAAGTGGTTCTACGGCATCAGTGGCAAAATGCTGCCCTGGTTGAGCATCGCCGCCCTGTTGCTGATCGGCATCGGCGTGGTCTGGGGCCTGGCCTTCGCGCCGCCGGACTATCAGCAAGGCAACAGCTTCCGCATTATCTATATCCATGTCCCGACGGCGATGCTGGCCCAGTCGATCTACGTGATGCTGGCGGTATGCGGCGTGGTCGGGCTGGTGTGGAAAATGAAACTGGCCGACGTAGCCCTGCAATGCGCCGCGCCCATCGGCGCCTGGATGACCGCCGTGGCGCTGGTCACCGGGGCCATCTGGGGCAAGCCGACCTGGGGTTCGTGGTGGGTCTGGGATGCACGACTGACGTCGATGCTGATCCTGCTGTTCCTGTACTTCGGTCTTATTGCGCTGGGCAACGCCATCAGCAATCGTGACAGCGCCGCCAAGGCCTGCGCGGTGCTGGCGATCGTCGGGGTGATCAACATTCCGATCATCAAGTACTCGGTGGAGTGGTGGAACACCCTGCACCAGGGCGCGACCTTCACCCTCACTGAAAAACCGGCGATGCCGGTGGAGATGTGGCTGCCGCTGTTGCTGACCGCGCTGGGGTTCTATTGCTTCTTCGGCGCGGTGCTGCTGCTGCGCATGCGCCTGGAAGTGCTCAAGCGTGAGTCCCGGGCCAGCTGGGTGAAAGCCGAAGTACAGAACAGCCTGGAGGCCGCTCGATGA	MNWTWFHKLGSPKWFYGISGKMLPWLSIAALLLIGIGVVWGLAFAPPDYQQGNSFRIIYIHVPTAMLAQSIYVMLAVCGVVGLVWKMKLADVALQCAAPIGAWMTAVALVTGAIWGKPTWGSWWVWDARLTSMLILLFLYFGLIALGNAISNRDSAAKACAVLAIVGVINIPIIKYSVEWWNTLHQGATFTLTEKPAMPVEMWLPLLLTALGFYCFFGAVLLLRMRLEVLKRESRASWVKAEVQNSLEAAR				NA	NA	NA	NA	NA
D1-36_03538	669	ccmB	COG2386	Heme exporter protein B	ATGAGTGTCTTTGGCTTGTTGCTCGCCCGTGAGGCGCGCCTGTTGTTCCGTCGTCCGGCCGAACTGGCCAACCCGTTGGTATTCTTCGCAATCGTCATCGCCTTGTTCCCGCTTGCGGTCGGCCCGGAGACTCAATTGTTGCAAACGTTGTCGCCTGGACTGGTCTGGGTGGCAGCGCTTTTATCGGTCCTGCTCTCGCTGGACGGGCTTTTCCGCAGTGATTTCGAGGACGGATCCCTGGAACAGTGGGTCCTTTCGTCGCACCCCCTGGCCCTTCTGGTTTTGGCCAAGGTACTGGCACACTGGGTTTTTTCCGGCCTGGCGCTGGTGCTGCTCTCGCCGTTGATGGCGATGATGCTGGGCTTGCCCGCGGCCTGCATGCCGGTGCTGCTGTTGTCGCTGTTGCTGGGCACGCCGGTGCTGAGCCTGCTCGGCGCGGTAGGCGCGGCGCTGACTGTGGGGCTCAAGCGCGGAGGCTTGTTGCTGGCCCTGCTGATTCTGCCGCTGTACATACCGGTATTGATCCTTGGAAGTGGCGCCTTGCAAGCGGCACTGCAAGGCATGCCGGCAACCGGTTATCTGCTGTGGCTTGGGAGCCTGACCGCCCTGGCGATAACCCTGACACCCTTTGCAATAGCCGCTGGCCTGAAGATCAGCGTCGGCGAATAA	MSVFGLLLAREARLLFRRPAELANPLVFFAIVIALFPLAVGPETQLLQTLSPGLVWVAALLSVLLSLDGLFRSDFEDGSLEQWVLSSHPLALLVLAKVLAHWVFSGLALVLLSPLMAMMLGLPAACMPVLLLSLLLGTPVLSLLGAVGAALTVGLKRGGLLLALLILPLYIPVLILGSGALQAALQGMPATGYLLWLGSLTALAITLTPFAIAAGLKISVGE				NA	NA	NA	NA	NA
D1-36_03539	636	ccmA	COG4133	Cytochrome c biogenesis ATP-binding export protein CcmA	TTGACCAGTCCTCTCCTGCAAACCGTCGGCCTCGCCTGTGAGCGAGATCTGCGACTGCTTTTCGAAAATCTCGAATTGAGACTCTCGCCTGGCGATATGGTACAGATCAGTGGCCCCAACGGCAGTGGCAAGACCAGCCTGTTGCGCCTGCTGGCCGGGTTGATGCAGCCCACCGCCGGCGAGATCCTGCTCAACGGCCAGCCGCTGCACAGCCAGCGTAGCGAACTGGCACGCAACCTGCTCTGGATCGGCCATGCCGCCGGCATCAAGGACCTGCTGACCCCCGAAGAGAACCTGAGTTGGCTCTGCGCGTTGCATCGTCCTGCTGGGCTCGAGGCGATCTGGCGGGCATTGGCGGCGGTGGGATTGAAAGGTTTCGAGGACGTTCCGAGCCATACCCTGTCGGCCGGCCAGCAGCGCCGCGTGGCCCTGGCCCGGCTGTACCTGGACAGCCCGCCACTGTGGATCCTCGACGAGCCGTTCACCGCTCTGGACAAGCAGGGCGTGGCGCAACTTGAAGAACACCTGGCCGGCCATTGCGAAAACGGCGGCATGGTGTTGCTCACCACGCACCACACCTTGGCCCGAATACCCTTCGGTTATCGCAGCATCGACCTGGGGAACTGGGCGGTATGA	MTSPLLQTVGLACERDLRLLFENLELRLSPGDMVQISGPNGSGKTSLLRLLAGLMQPTAGEILLNGQPLHSQRSELARNLLWIGHAAGIKDLLTPEENLSWLCALHRPAGLEAIWRALAAVGLKGFEDVPSHTLSAGQQRRVALARLYLDSPPLWILDEPFTALDKQGVAQLEEHLAGHCENGGMVLLTTHHTLARIPFGYRSIDLGNWAV				NA	NA	NA	NA	NA
D1-36_03540	1572			hypothetical protein	ATGACAGGCGACATGAACATCCCGCCGCTGCCCCAGCCCACGGCAACGACACGTATGCCGGCGGTCACGGGCGAGTTGCTCAAGCTGCTGGCACCGGCCGAGGGATTGATCGGTCCGGGCCAGACCGCCAAGGCCGAGGTGCTGTCGCTCAAGCAGGCGGACCAGGCTTTCCAACTGCTGCTCAAGGTCACGCTGGAGAGCGGCCGGCAGGCCACCGTACAAGCCACCAGCACCCAGCCGCTGCCCCAGGGCACCAGCCTGGCCGTGACTCAGCCTTCGGCCAGCAACCTGGCGATTACCGTGCAGCAGGCCCTCGCCTCCAGCGTCGCCGCCCTGACCCGGATCGACACCGCGCAATTGCCCGTGGGCACTTTGTTGCAGGGCAAAGTGCTGACCAGCCAGGCCTTGCCGCAACAGCCCGGGCAACCGGCGGTGTATCGCTCGCTGGTAAGCCTGCTCAACACCGCCCAGGCCGGCAGCACCCTGGACATTGACAGCCCGCAGCCGCTGCGCATCGGCATGCTGTTGAGCGCCCAGGTACAGGATGCTCAGACATTGAAATTCTTGCCCTTGAGCAATCGCCAGGAGCAATTGGCGGTGAGCCAGCAATTGGTGACGCAAGTGAGCCGCCAGGGCTCGCTGGACAGCCTGCTCACCGCCCTGCAAAACCTTCCCACCAGCGATGACGCCGGCCCCGAACTGCGCGCGGCGGTGACACGCCTGCTGGCTGGCCTGCCGGACGTACAACAACTGAGCACTCCCAAGGGCCTGGCCCAAGCCATGGTCGCCAGCGGCGTGTTCCTGGAAAGCAAGCTGCTGGCCGGCCAACCGCCAAGCCTGGCCCCGGACATGAAAGGCGACCTGCTGAAACTGATCGCCCAACTGACACCCGCCCTGCCCGCTTCCACCAACCTCTCCGCGGTCATCGCCGCCAACACCCTGGCCCAGGCATTGCCCAGCTTCGTGCGCAGCGCCCTGGGGATGCTCGGCCAGGTCAGCGCCAAGCCACAACCCACCGGCTTTCCGCTGCCCGCCAGATTATTGAAAGGTCAGGATGAAGAAGGTGACCTGGAGCATCTGCTGCGCCTGGCAGCCGCCGCCGTGTCACGCCTGCAAAGCCATCAGCTGTCCAGCCTGGAGCAAACCGGGCTGACCGATGACGGCCGGTTGATGAGCACTTGGCAACTGGAGATTCCGATGCGCAACCTGCAGGACATCGTGCCGTTGCAGGTCAAGTTCCAGCGCGAGGAAACCGCCGCCCGGGAACAACCGGACGAACGCCGCGAACAAACCGAACCGAAACAGCAGCTCTGGCGGGTCGAGCTGGCCTTCGACATGGAACCGCTGGGGCCGCTGCAGATCCAGGCCCAGTTGCTCAGTGGCAGCCTGTCCAGTCAGCTGTGGGCAGAACGAGCGTACACCGCGGGCCTGATCGAAATGAACCTGACCGCATTGCGCGAGCGCCTTGTGACGTGCGGGTTGAATGTCGGCGACCTCGACTGCCACCTCGGCACCCCGCCCCAAGGACCCAAGACCCGGCTGGAACAACGCTGGGTGGACGAAACCGCATGA	MTGDMNIPPLPQPTATTRMPAVTGELLKLLAPAEGLIGPGQTAKAEVLSLKQADQAFQLLLKVTLESGRQATVQATSTQPLPQGTSLAVTQPSASNLAITVQQALASSVAALTRIDTAQLPVGTLLQGKVLTSQALPQQPGQPAVYRSLVSLLNTAQAGSTLDIDSPQPLRIGMLLSAQVQDAQTLKFLPLSNRQEQLAVSQQLVTQVSRQGSLDSLLTALQNLPTSDDAGPELRAAVTRLLAGLPDVQQLSTPKGLAQAMVASGVFLESKLLAGQPPSLAPDMKGDLLKLIAQLTPALPASTNLSAVIAANTLAQALPSFVRSALGMLGQVSAKPQPTGFPLPARLLKGQDEEGDLEHLLRLAAAAVSRLQSHQLSSLEQTGLTDDGRLMSTWQLEIPMRNLQDIVPLQVKFQREETAAREQPDERREQTEPKQQLWRVELAFDMEPLGPLQIQAQLLSGSLSSQLWAERAYTAGLIEMNLTALRERLVTCGLNVGDLDCHLGTPPQGPKTRLEQRWVDETA				NA	NA	NA	NA	NA
D1-36_03541	330			hypothetical protein	ATGACAACCCACACCGAACCCCGCCAGGCCATCGCCCTCAAGTACGACGGCCACCACGCCCCCACCCTCACCGCCAAGGGCGACGAAGCCCTGGCCGAGGAAATCCTGCGCATCGCCCGCGAGAGCGAAGTACCGATCTACGAAAATGCTGAACTGGTGAAGTTGCTGGCACGGCTGGAGCTGGGCGACAGCATTCCGGAAGAGTTGTACCGCACGATTGCCGAGATCATTGCGTTTGCCTGGAACCTGAAGGGCAAATTTCCCCAGGGCTTCGACCCGCATGCGCAAAACATCGAGAAAGACGTGACGGAGCGTGGGGATGATTACTAA	MTTHTEPRQAIALKYDGHHAPTLTAKGDEALAEEILRIARESEVPIYENAELVKLLARLELGDSIPEELYRTIAEIIAFAWNLKGKFPQGFDPHAQNIEKDVTERGDDY	PGPT0029865_251	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_III_SECRETION_SYSTEMS	CE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0029865-flhB2-K04061	NA	NA
D1-36_03542	339			hypothetical protein	ATGTTTTTGTCCTACATACGTGGCCAGCGGGAAATCGCCGCTCAACAGGCCCAGGGCGATGCGCTGCGCGATCAGCGCATCCGGGACCTGGCCAAGCGTGTCGACGACTATCAGAACGGCACCGTGCGCATGGGCGAAGCGCTCCATGAGCTGCGTGCCGTCGTCGCGCCATTGCCGGACAAACTGGCGCAACTGGAACAGCGCGACCCCTCCAGCCTGTCCTTTGCCCAAGCCGCCCGGCTGGTCGGCATGGGCGCCAGCATCGACGAACTGACCCAGGCGTGCGGCCTGACCCAGGCCGAGGCCGAATTGATGAGCAAGTTGCACAAGGGCGGCTGA	MFLSYIRGQREIAAQQAQGDALRDQRIRDLAKRVDDYQNGTVRMGEALHELRAVVAPLPDKLAQLEQRDPSSLSFAQAARLVGMGASIDELTQACGLTQAEAELMSKLHKGG				NA	NA	NA	NA	NA
D1-36_03543	486	cheW_2	COG0835	Chemotaxis protein CheW	ATGAATGATAAGGCGTCGTCTCTCAAGGGTTCCGAAGATCCGATCTTGCAATGGGTGACTTTCAAGCTCGATAACGAAACCTACGGCATCAACGTGATGCGCGTGCAGGAAGTGCTGCGCTACACCGAGATCGCCCCGGTCCCGGGTGCGCCAAGCTACGTGCTGGGCATCATCAACCTGCGTGGTAACGTCGTGACCGTGATCGACACCCGTCAGCGTTTCGGCTTGAACTCCACCGAGGTCAACGACAACACCCGTATCGTGATCATCGAGGCGGACAAGCAAGTGGTCGGTATCCTGGTCGACAGCGTTGCTGAAGTGGTTTACTTGCGTCAGTCGGAAATCGAAACCGCGCCTAACGTCGGTAACGAGGAATCGGCCAAGTTCATCCAGGGCGTCTGCAACAAGAACAACGAGTTGCTGATCCTGGTCGAACTGGAAAAAATGATGAGCGAAGAAGAGTGGTCGGAACTGGAGAGTATCTGA	MNDKASSLKGSEDPILQWVTFKLDNETYGINVMRVQEVLRYTEIAPVPGAPSYVLGIINLRGNVVTVIDTRQRFGLNSTEVNDNTRIVIIEADKQVVGILVDSVAEVVYLRQSEIETAPNVGNEESAKFIQGVCNKNNELLILVELEKMMSEEEWSELESI	PGPT0015680_3285	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015680-cheW-K03408	NA	NA
D1-36_03544	873			hypothetical protein	ATGAACCGCCCCATCAAGACAACTTCGCGTCCCCAATTGGCCCTGCAGTCCTATCTGGATGGGCTGTTGCAGGAAGCGACCGATGAATTGCCAGCGCAGCCGAGCGCGTTCCAGGCGTTGCCCGAGCCTGTCGAAGCCGAACCCGCGCTCGACGAGTTCCAGGCCGCCGTGCTCGAGGAGCAGGCCCGTGATGCACAGGCTTCAGCGGTTGTGACAGCGGTGGAAGCGCCGTTCGTCAAGCCGCAGTTGGCGGTGATGGAAGCACCCGCACCGATCCTGGCGCCGGTCTCCACCGTCGCGCCATTGTTGCAGGGGTTGGTGACGCCGGTAGTGGAAATCCACATGCCGCCGAGCAACACGCCGCCGCCGGCGCCGGGCGATGATCGTCCGGCGTGGGCCGCCGAGCCGTTCGAGTGCTTGTTGTTCGATGTGGCCGGTTTGACGCTGGCGGTGCCGCTGGTGTGCCTGGGATCGATCTACTCCCTGGCCGGGCAGGAATTGACGCCGTTGTTTGGCCAACCGGAGTGGTTCCTCGGAATCCTGCCGAGCCAGGCTGGCAACCTGAAAGTGCTGGACACCGCGCGCTGGGTCATGCCGGATCGTTATCGCGATGATTTTCGCCAGGGCCTGCAGTACGTGATTTCTGTGCAGGGCTACGAATGGGGATTGGCGGTGCATCAGGTCAGCCGTTCGCTGCGCCTGGACCCGAACGAGATCAAGTGGCGCAGCCATCGAGGGCAACGGCCATGGCTGGCCGGTACGGTGATCGAACACATGTGCGCCTTGCTGGACGTTTCCGAACTGGCGGAGCTGATCGCCAGCGGCGGGGCAAAACACCTGGACGGCGCCAAGCCGGTCCGGAAACCGAAATAA	MNRPIKTTSRPQLALQSYLDGLLQEATDELPAQPSAFQALPEPVEAEPALDEFQAAVLEEQARDAQASAVVTAVEAPFVKPQLAVMEAPAPILAPVSTVAPLLQGLVTPVVEIHMPPSNTPPPAPGDDRPAWAAEPFECLLFDVAGLTLAVPLVCLGSIYSLAGQELTPLFGQPEWFLGILPSQAGNLKVLDTARWVMPDRYRDDFRQGLQYVISVQGYEWGLAVHQVSRSLRLDPNEIKWRSHRGQRPWLAGTVIEHMCALLDVSELAELIASGGAKHLDGAKPVRKPK	PGPT0015680_489	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015680-cheW-K03408	NA	NA
D1-36_03545	792	soj_3	COG1192	Sporulation initiation inhibitor protein Soj	ATGAGAGTCTGGGCAGTCGCCAATCAAAAAGGTGGTGTGGGCAAAACCACATCCTCCATCGCTTTAGCCGGTTTGCTGGCCGAGGCCGGCAAGCGCGTGGTCATCGTCGATCTGGACCCCCATGGCTCGATGACCAGTTACTTCGGCTACGATCCCGATAGCCTGGAACACAGCAACTATGATTTGTTCCTGCACAAGGGCAGCGTGCCCGAAGGCTTGCCGGGGCAGTTGCTGCTGTCCACCAGCGACGAGCGGATCTCCTTGCTGCCGTCGAGCACCGCCCTGGCCACCTTGGAGCGCCAATCGCCCGGCCAGAGCGGCCTGGGCCTGGTGATCGCCAAGAGTCTGGCGCAGCTGTGGCAGGATTTCGATTACGCGATCATCGACAGCCCGCCGTTGCTGGGCCTGCTGATGGTCAATGCCTTGGCCGCCAGCCAGCAATTGGTCATTCCTGTGCAGACCGAACACCTCGCGGTGAAGGGCCTGGAGCGCATGGTCAACACCCTGGCGATGGTCAACCGTTCACGCAAGCAGTCGCTGGCATTCAATATCGTGCCGACCCTGTTCGACCGTCGTACCCAGGCGTCCCTCAGCACCTTGCGAGTGCTGCGCGACATGTACCCGGACGACATCTGGCAAGGCTACATCCCGGTGGACACCCGTTTGCGCGACGCCAGCCGCGCCGGCGTGACACCGTCGCAATTCGATGGCAAAAGCCGTGGCGTACTGGCCTATCGCGCGCTTCTCAAGCACCTGCTGGCCCAGCAGCTCGTTGCGCAGCAGGTGGCTTGA	MRVWAVANQKGGVGKTTSSIALAGLLAEAGKRVVIVDLDPHGSMTSYFGYDPDSLEHSNYDLFLHKGSVPEGLPGQLLLSTSDERISLLPSSTALATLERQSPGQSGLGLVIAKSLAQLWQDFDYAIIDSPPLLGLLMVNALAASQQLVIPVQTEHLAVKGLERMVNTLAMVNRSRKQSLAFNIVPTLFDRRTQASLSTLRVLRDMYPDDIWQGYIPVDTRLRDASRAGVTPSQFDGKSRGVLAYRALLKHLLAQQLVAQQVA				NA	NA	NA	NA	NA
D1-36_03546	885	motB	COG1360	Motility protein B	ATGGCGCGTCGCAGACATCGTGAAGAACACGTCAACCATGAACGCTGGCTGGTTTCCTATGCCGACTTCATCACGCTGCTGTTCGCCTTTTTTGTGGTCATGTATTCGATCTCTTCGGTGAACGAAGGCAAGTACAAGGTCATTTCCGAAGCGTTGATCGGCGTCTTTACCGATTCGGACCGCGCCCTCAAGCCGATTCCCATCGGCGAAGAGCGTCCGAAGACGACGACCCCGGCCAAGCCGCTGGTCAAGGACAGCGAACAGGTCGACGCCGGCATTGCCGGTGGCAGCGATCCGTTGAAGAGCATTGCCGATGACATCAGTTCGGCGTTCGGCGACCTGATCAGTTCCAACCAGATGACCGTGCGTGGCAACGAGTTGTGGGTCGAGATCGAACTCAACTCCAGCCTGCTGTTCGGCAGCGGCGATGCCATGCCCAGCGACATGGCGTTCAACATCATCGATAAAGTGGCGGCGATCCTGAGACCGTTCGACAACCCTATCCACGTCGAAGGTTTCACCGACGACCAGCCGATCCGCACCGCGCAGTACCCCACCAACTGGGAATTGTCGTCGGCCCGTTCGGCAAGCATCGTGCGCATGCTCGCCATGCAGGGTGTCAACCCGGGCCGCCTGGCGTCGGTGGGGTATGGCGAATTCCAGCCGGTGGCCAATAACGCCACGGCCGAGGGGCGCGCACGCAATCGACGGGTGGTGCTGGTGGTTTCGCGCAACCTCGATGTGCGTCGCAGCCTGACCGGTACCGGCACCGCCAACGCAAAGCCCGATGCGGCATTGAAGCGGGCTGGCACACAAACTGCACCGACCCCGGTCAAGTCGCCGGATAGACAGAACGCCGTCAATTCTCCGTCACCGGCTTTATAA	MARRRHREEHVNHERWLVSYADFITLLFAFFVVMYSISSVNEGKYKVISEALIGVFTDSDRALKPIPIGEERPKTTTPAKPLVKDSEQVDAGIAGGSDPLKSIADDISSAFGDLISSNQMTVRGNELWVEIELNSSLLFGSGDAMPSDMAFNIIDKVAAILRPFDNPIHVEGFTDDQPIRTAQYPTNWELSSARSASIVRMLAMQGVNPGRLASVGYGEFQPVANNATAEGRARNRRVVLVVSRNLDVRRSLTGTGTANAKPDAALKRAGTQTAPTPVKSPDRQNAVNSPSPAL	PGPT0015375_2530	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_MOTOR|SWITCH,PGPT0015375-motB-K02557	NA	NA
D1-36_03547	741	pomA	COG1291	Chemotaxis protein PomA	ATGGATGTGCTCAGTCTGATCGGCATCATCATGGCGTTCGTCGCCATCATTGGTGGCAATTACCTGGAAGGCGGTCATCTCGGTGCGCTGGCCAACGGCCCGGCCGCGTTGATCGTGATCGGTGGCACTGTAGGCGCTGCGCTGTTGCAGTCGCCGATGAGCGCCTTCAAGCGCGCCATGCAGGTCCTGGTGTGGATTCTGTTTCCACCTCGGGTCGACCTGGCCGGCGGCATCGACCGCGTAGTCAACTGGAGCCTGACCGCCCGCAAGGAAGGCCTGCTTGGGCTGGAAGGGGTGGCCGATGCCGAACCCGACAGCTACTCGCGCAAGGGCCTTCAATTGCTCGTGGACGGCGCCGAACCCGAAGCGATTCGCAGCATCCTGGAGGTGGATTTCTACACCCAGGAAAGCCGCGACATCGAAGCGGCCAAGGTGTTCGAGAGCATGGGAGGCTACGCGCCGACCATCGGTATCATCGGTGCTGTCATGGGTTTGATCCATGTGATGGGCAACCTGGCCGATCCGTCGCAACTGGGCAGCGGCATTGCCGTGGCATTCGTTGCCACCATCTACGGCGTGGCGAGCGCCAACCTGGTGCTGCTGCCGATCGCGGCCAAGCTCAAATCCATTGCGTTGCGCCAGTCGCGCTACCGCGAAATGCTGCTGGAAGGGATCCTGTCGATTGCCGAAGGCGAGAACCCGCGTTCCATCGAGTTGAAGCTCCAGGGCTTCATGGACTGA	MDVLSLIGIIMAFVAIIGGNYLEGGHLGALANGPAALIVIGGTVGAALLQSPMSAFKRAMQVLVWILFPPRVDLAGGIDRVVNWSLTARKEGLLGLEGVADAEPDSYSRKGLQLLVDGAEPEAIRSILEVDFYTQESRDIEAAKVFESMGGYAPTIGIIGAVMGLIHVMGNLADPSQLGSGIAVAFVATIYGVASANLVLLPIAAKLKSIALRQSRYREMLLEGILSIAEGENPRSIELKLQGFMD	PGPT0015370_3278	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_MOTOR|SWITCH,PGPT0015370-motA-K02556	NA	NA
D1-36_03548	1134	cheB1	COG2201	Protein-glutamate methylesterase/protein-glutamine glutaminase 1	ATGGTAGTTAAAGTCCTGGTGGTGGACGATTCGGGGTTTTTCCGCCGCCGCGTCTCGGAAATTCTTTCAGCGGACACGAGCATTCAGGTCGTCGGTACGGCGACCAATGGCAAAGAGGCGATCGATCAGGCCCTGGCGCTCAAGCCGGACGTGATCACCATGGACTACGAGATGCCGATGATGGACGGCATCACGGCAGTGCGGCATATCATGCAACGCTGTCCGACCCCGGTTTTGATGTTCTCGTCCCTGACCCATGAAGGCGCCCGAGTCACCCTCGATGCGCTGGATGCCGGGGCGGTGGACTTCCTGCCAAAGAACTTTGAAGACATCTCGCGCAACCCGGACAAGGTCCGCCAGTTGCTATGTGAGAAGGTCCACAGTATTTCCCGCAGTAACCGCCGCGTCAGTGCCTACAGCGCACCGGCGTCAGTGCCGGCTGCTGCGCCAGCACCAACGCCTGCGCCTTCTGCGTCGAACAGCTTCAGTTCGGCGCCGGTTCGCAGTGCTCCTGCGCCGGCGCCCGCTCGCCCGGCGCCCGCCAGCCCGTCGTCGCCAGCGCCCAAGCGCAAGGCCTACAAACTGGTCGCCATCGGCACGTCCACGGGCGGCCCGGTTGCGCTGCAACGGGTCTTGACCCAGCTGCCAGCGAACTTCCCGGCCCCGATCGTGCTGATCCAGCACATGCCCGCCGCATTCACCAAGGCGTTCGCCGAACGTTTGGACAAACTGTGCCGCATCAGCGTCAAGGAAGCCGAGGATGGCGACATCCTCCGTCCAGGCCTGGCGCTGCTGGCACCGGGTGGCAAGCAGATGATGATCGACGGCCGTGGCGCGGTGAAAATCCTGCCGGGCGATGAGCGCTTGAACTACAAGCCTTGCGTAGACATCACCTTCGGTTCCGCGGCGAAATCCTACGGCGACAAAGTTCTGGCGGTGGTGCTCACCGGCATGGGTGCCGATGGCCGCGAGGGTGCGCGCCTGCTCAAGCAGGGCGGCAGTGCGATCTGGGCCCAGGACGAGGCCAGTTGCGTGATCTACGGCATGCCCATGGCGATCGTCAAGGCCGACCTGGCTGACGCGGTCTACAGCCTGGACGACATGGGTAAACATCTGATCGAGGCGTGCCTGTAA	MVVKVLVVDDSGFFRRRVSEILSADTSIQVVGTATNGKEAIDQALALKPDVITMDYEMPMMDGITAVRHIMQRCPTPVLMFSSLTHEGARVTLDALDAGAVDFLPKNFEDISRNPDKVRQLLCEKVHSISRSNRRVSAYSAPASVPAAAPAPTPAPSASNSFSSAPVRSAPAPAPARPAPASPSSPAPKRKAYKLVAIGTSTGGPVALQRVLTQLPANFPAPIVLIQHMPAAFTKAFAERLDKLCRISVKEAEDGDILRPGLALLAPGGKQMMIDGRGAVKILPGDERLNYKPCVDITFGSAAKSYGDKVLAVVLTGMGADGREGARLLKQGGSAIWAQDEASCVIYGMPMAIVKADLADAVYSLDDMGKHLIEACL	PGPT0015650_562	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015650-cheB|chpB|wspF-K03412	NA	NA
D1-36_03549	2250			hypothetical protein	ATGAGCTTCGGCGCCGATGAAGAGATCCTTCAGGATTTCCTGGTTGAGGCCGGCGAGATTCTAGAGCAACTATCCGAACAGCTGGTCGAGCTGGAAAGCCGACCTGATGATGCGGATCTGCTCAATGCAATTTTTCGCGGTTTCCACACTGTAAAAGGAGGCGCCGGCTTCCTCCAGCTCAATGAGCTGGTGGAGTGCTGCCACATTGCCGAGAACGTGTTCGACATCCTGCGCAAGGGTGAGCGTCGCGTCGACTCGGAACTGATGGACGTGGTGCTCGAGGCCCTGGATGCGGTCAACAGCATGTTCAGCGAAGTGCGCGAGCGCTCGCCGATCACCCCGGCCACCCCCGAGCTGCTCGCCGCGCTGTCGCGCCTGGCCGAGCCGCAGTCGGCTGACGAAGCCATGCCCGTTGCCGAGCCTGTGGTCGAAGAACCGGTTGCGCAAGAATCGGGCGACATCACCGATCATGAATTCGAATCGCTGCTGGACTCGCTGAACGCCGTCAAGGCCGAAGCCGAGGCTCCGGCCGCGCCCGCTGCGCCCGCCGCCGATGCCGCTGCCAGCGATGAAATTACCGACGATGAGTTCGAATCGCTGCTCGACCAACTGCACGGCAAGGGCCAGTTCGCCCCCGATGCGGTCGTAGCGCCGGCGGCCCCGGCTGCGCCAAAGGCAGCGGGGGATGACTCCGACATTACCGACGACGAATTCGAAGCCTTGCTCGACCAGTTGCATGGCAAGGGCAACTTTGCCGTCGACGCGTTGGATTCGGCCACCGCTTCGGCGCCGACCCCGGCCAAACCAGTGGCAGCGGCAGCCGGAAGCGACTTGATCAGCGACCACGAATTCGAATCGCTGCTCGACGAGCTGCATGGCAAGGGCAAGTTCAGCGAAGTCGGCACGGCCGCCGCCGCGCCTGCCGCTGCCGCCACGGCTGCACCCGCCGCCAAGGCCGCGCCGAAGCCGGCCGCCAAGGCGCCGGAACCGAAAGCCGAAACCCCGAAGCCTGCCGCCGCAGTGGCGCCAGCCCCGGCTCGCGCGCCTTCCGCCGCGCCCGCCGAAAAACCGGCGAGCGAAGCCGAGACCACCGTTCGCGTCGACACCGCGCGGCTGGATGAGATCATGAACATGGTCGGCGAACTGGTGCTGGTGCGTAACCGGCTGGTGCGCCTGGGCCTCAACAGCCAGGACGAAGCCATGTCCAAGGCCGTGTCGAACCTCGACGTGGTCACGGCTGACCTGCAAACCGCGGTCATGAAGACCCGGATGCAGCCGATCAAGAAAGTTTTCGGGCGCTTCCCGCGCCTGGTTCGCGACCTGGCTCGCCAGCTCAAGAAAGAAATCAACCTGGAACTGGTGGGTGAAGAGACCGACCTCGACAAGAACCTTGTCGAGGCCCTGGCCGACCCGCTGGTCCACTTGGTGCGCAACGCGGTCGACCACGGCATCGAGTCGCCGGAAGAGCGCGAAGCGTCGGGCAAGGTCCGCAGCGGCAAGGTGATCCTGGCCGCCGAGCAGGAAGGCGACCATATCCTGCTGTCGATCTCCGACGACGGCAAGGGCATGGACCCGAACGTGCTCCGTTCCATTGCCGTGAAACGCGGTGTGATGGACAAGGACGCGGCCGATCGCCTGAGCGACACCGAGTGCTACAACCTGATCTTCGCCCCGGGCTTCTCGACCAAGACCGAGATTTCCGATGTGTCGGGTCGTGGCGTGGGCATGGACGTGGTGAAAACCAAGATTTCCCAGCTCAACGGTTCGATCAACATTTACTCGACCAAGGGCCAGGGCTCGAAGATCGTCATCAAGGTCCCGTTGACCTTAGCGATCATGCCGACCCTGATGGTGATGCTGGGCAACCAGGCGTTCGCCTTCCCGCTGGTCAACGTCAACGAGATTTTCCACCTCGACCTGTCGCGCACCAACGTCGTCGATGGCCAGGAAGTGGTCATCGTACGGGACAAGGCACTGCCGCTGTTCTACCTCAAGCGCTGGCTGGTCAGCTCTGCCGCTCATGTGGAGCAGGGCGAAGGCCATGTGGTGATCCTTTCGGTGGGCACCCAGCGGATCGGCTTCGTCGTCGACCAGTTGGTGGGCCAGGAAGAAGTGGTCATCAAGCCGTTGGGCAAGATGCTCCAGGGCACCCCGGGCATGTCCGGCGCCACCATCACCGGCGACGGCCGCATCGCGTTGATCCTCGATGTGCCTAGCATGCTCAAGCGCTACGCCGCTCGGCGTATTTGA	MSFGADEEILQDFLVEAGEILEQLSEQLVELESRPDDADLLNAIFRGFHTVKGGAGFLQLNELVECCHIAENVFDILRKGERRVDSELMDVVLEALDAVNSMFSEVRERSPITPATPELLAALSRLAEPQSADEAMPVAEPVVEEPVAQESGDITDHEFESLLDSLNAVKAEAEAPAAPAAPAADAAASDEITDDEFESLLDQLHGKGQFAPDAVVAPAAPAAPKAAGDDSDITDDEFEALLDQLHGKGNFAVDALDSATASAPTPAKPVAAAAGSDLISDHEFESLLDELHGKGKFSEVGTAAAAPAAAATAAPAAKAAPKPAAKAPEPKAETPKPAAAVAPAPARAPSAAPAEKPASEAETTVRVDTARLDEIMNMVGELVLVRNRLVRLGLNSQDEAMSKAVSNLDVVTADLQTAVMKTRMQPIKKVFGRFPRLVRDLARQLKKEINLELVGEETDLDKNLVEALADPLVHLVRNAVDHGIESPEEREASGKVRSGKVILAAEQEGDHILLSISDDGKGMDPNVLRSIAVKRGVMDKDAADRLSDTECYNLIFAPGFSTKTEISDVSGRGVGMDVVKTKISQLNGSINIYSTKGQGSKIVIKVPLTLAIMPTLMVMLGNQAFAFPLVNVNEIFHLDLSRTNVVDGQEVVIVRDKALPLFYLKRWLVSSAAHVEQGEGHVVILSVGTQRIGFVVDQLVGQEEVVIKPLGKMLQGTPGMSGATITGDGRIALILDVPSMLKRYAARRI	PGPT0015645_1447	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015645-cheA|wspE-K03407	NA	NA
D1-36_03550	786	cheZ	COG3143	Protein phosphatase CheZ	ATGGACAACGAATCTTCAATGGGCGATTTCGAATCGACCCTGAAAAAACATGCCCGCGAACTGGTAGACAGCCTTGAAAAGGGCCGCTTCGGCGATGCGGTTCAAATGATTCATGAGCTCAACCAGACCCGTGATCGCGGTCTGTACCAGGAAGTCGGCAAGCTCACCCGTGAACTGCACAGCGCGATCGTCAATTTCCAGATCGATCCGAACATGCCGCAGGCCGAGGAAGTCTCGCAGATCACCGACGCCACCGAGCGCCTGGGTTATGTGGTCAAGCTGACCGAAGCCGCAGCGAACCGCACCATGGACCTGGTGGAAAGCGCAACGCCCCTGGTCAACGGCCTGAGCGAGGAAGCCCAGGCGTTGAGCACCGATTGGGGACGGTTCATGCGTCGCGAAGTCGGCGCCGAGGAGTTCCGGGAGCTGGCCCGTCGGGTTGACGGTTTCCTGGCGCGCAGCAGCGCCGAGAATCGCGCCGTGGCCAGCAACCTCAACGACATTCTGCTGGCCCAGGACTATCAAGACCTGACCGGCCAGGTGATCAAGCGTGTGACCCAACTGGTCACCGAAGTGGAAAGCAACCTGCTCAAACTGGTGCTGATGGCTAGCCAGGTCGACCGCTTTGCAGGTATCGAACACGACCGTGAAGCGATGCTTGCCGAAAAAGATCCACAAAAACATCTCTCTCAGGGTGAAGGTCCGCAGATTCATGCCGATAAAAGAGAAGACGTTGTGTCCGGTCAGGACGATGTGGACGATTTGCTGTCCAGCCTTGGATTCTAA	MDNESSMGDFESTLKKHARELVDSLEKGRFGDAVQMIHELNQTRDRGLYQEVGKLTRELHSAIVNFQIDPNMPQAEEVSQITDATERLGYVVKLTEAAANRTMDLVESATPLVNGLSEEAQALSTDWGRFMRREVGAEEFRELARRVDGFLARSSAENRAVASNLNDILLAQDYQDLTGQVIKRVTQLVTEVESNLLKLVLMASQVDRFAGIEHDREAMLAEKDPQKHLSQGEGPQIHADKREDVVSGQDDVDDLLSSLGF	PGPT0015695_200	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015695-cheZ-K03414	NA	NA
D1-36_03551	372	cheY_2	COG0784	Chemotaxis protein CheY	ATGAAAATCCTCATCGTTGATGACTTCTCAACGATGCGGCGGATCATAAAAAACCTGTTGCGTGACCTCGGGTTCACCAACACGGTCGAGGCCGACGATGGCACAACCGCCATTCCGGTCCTCAACAGCGGGAGCATCGACTTTCTGGTGACTGACTGGAACATGCCTGGCATGACCGGTATCGACTTGCTGCGCCACGTGCGCGCCGACGAAAAACTCAAGCACCTCCCGGTGCTGATGGTCACTGCCGAAGCCAAGCGCGAGCAGATCATCGAAGCGGCCCAGGCCGGTGTGAACGGCTATGTGGTCAAACCCTTCACGGCCCAGGCGTTGAAAGAGAAGATCGAAAAAATCTTCGAACGCATCGGTTAA	MKILIVDDFSTMRRIIKNLLRDLGFTNTVEADDGTTAIPVLNSGSIDFLVTDWNMPGMTGIDLLRHVRADEKLKHLPVLMVTAEAKREQIIEAAQAGVNGYVVKPFTAQALKEKIEKIFERIG	PGPT0015690_2098	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015690-cheY|yneI-K03413	NA	NA
D1-36_03552	744	fliA	COG1191	RNA polymerase sigma factor FliA	ATGACAGCCAGCGGTTACAACCATCTCTACAAAAAATCGGCACGGGACGCCCAGTACGAATTGATCGAGCGTTACGCGCCACTGGTCAAGCGCATCGCCTACCACTTGCTGGCGCGTTTGCCGGCCAGTGTCCAGGTCGAGGACTTGATCCAGGCGGGCATGATCGGCCTGCTCGAAGTGTCGAATAAATACGACGCGAGCAAGGGCGCCAGTTTCGAGACATACGCCGGTATCCGTATCCGCGGGGCGATGCTCGATGAGGTCCGCAAGGGCGACTGGGCGCCGCGTTCGGTGCATCGCAACACCCGCATGGTCAGCGACGCGATTCGTGCGATTGAAGCGAAAACCGGGCGAGACGCTAAAGATCACGAAGTTGCGGCCGAACTCCAGTTGAGTCTCGATGATTATTACGGGATTTTGAACGATACCTTGGGCAGTCGCCTGTTCAGTTTCGACGACCTGTTGCAGGACGGCGAACACGAAGGGCTGCACGAGGACGGCGCGAGTGCTCACATGGAGCCGTCGCGCGACCTGGAAGATGAACGTTTCCAGAGCGCCCTGGCGGATGCGATTGCCAATTTGCCGGAGCGTGAGCGACTGGTCTTGGCGCTGTACTACGACGAAGAGCTGAACCTCAAGGAAATCGGTGAGGTCCTGGGGGTCAGCGAATCGCGGGTCAGCCAGTTACATAGCCAGTGCGCGGCCCGCTTGCGGGGGCGTTTGGGGGAGTGGCGAGCGCGCTGA	MTASGYNHLYKKSARDAQYELIERYAPLVKRIAYHLLARLPASVQVEDLIQAGMIGLLEVSNKYDASKGASFETYAGIRIRGAMLDEVRKGDWAPRSVHRNTRMVSDAIRAIEAKTGRDAKDHEVAAELQLSLDDYYGILNDTLGSRLFSFDDLLQDGEHEGLHEDGASAHMEPSRDLEDERFQSALADAIANLPERERLVLALYYDEELNLKEIGEVLGVSESRVSQLHSQCAARLRGRLGEWRAR	PGPT0015610_1074	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0015610-fliA|sigD|whiG-K02405	NA	NA
D1-36_03553	831	ylxH	COG0455	Flagellum site-determining protein YlxH	ATGGGCAGCATGCATCCCGTACAGGTGATCGCGGTGACCGGCGGCAAAGGTGGCGTCGGGAAGACTAACGTGTCAGTGAACTTGTCCCTGGCTCTGGCAGAGCTTGGCCGACGGGTCATGCTGCTGGACGCCGACCTGGGCCTGGCGAACGTCGACGTGCTGCTGGGGCTCACACCCAAGCGCACGCTGGCGGACGTGATCGAAGGGCGCTGTGAATTGCGCGACGTGCTGTTGCAAGGCCCCGGCGGGATTCGCATCGTGCCGGCCGCCTCCGGCACCCAGAGCATGGTTCACCTGACCCCGGCGCAGCACGCCGGCCTGATCCAGGCCTTCAGCGACATCGGTGACAACCTCGATGTGCTGGTGATTGACACGGCTGCCGGTATTGGTGACTCGGTGGTCAGTTTCGTGCGCGCCGCCCAGGAAGTGTTGCTGGTGGTCTGCGACGAACCGACGTCGATCACCGACGCCTACGCGCTGATCAAACTGCTTAACCGCGACTATGGCATGAACCGCTTTCGCGTCCTGGCCAACATGGCCCAAAGCCCACAGGAAGGACGCAACCTGTTCGCCAAGTTGACCAAGGTCACGGATCGCTTCCTGGACGTCGCCCTGCAATACGTCGGCGCAGTGCCTTACGACGAAAGCGTACGCAAGGCTGTCCAGAAGCAACGTGCCGTTTATGAAGCTTTTCCTCGTTCCAAATGCGCCCTGGCGTTCAAGGCGATCGCCCAGAAGGTCGACACCTGGCCGCTGCCGGCCAACCCACGTGGGCATCTGGAATTTTTCGTCGAGCGTCTCGTGCAACAAACAGCAGGGCCCGTGTTATGA	MGSMHPVQVIAVTGGKGGVGKTNVSVNLSLALAELGRRVMLLDADLGLANVDVLLGLTPKRTLADVIEGRCELRDVLLQGPGGIRIVPAASGTQSMVHLTPAQHAGLIQAFSDIGDNLDVLVIDTAAGIGDSVVSFVRAAQEVLLVVCDEPTSITDAYALIKLLNRDYGMNRFRVLANMAQSPQEGRNLFAKLTKVTDRFLDVALQYVGAVPYDESVRKAVQKQRAVYEAFPRSKCALAFKAIAQKVDTWPLPANPRGHLEFFVERLVQQTAGPVL	PGPT0015555_1274	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLUM_CONTROL	MOTILITY-FLAGELLUM_REGULATION,PGPT0015555-flhG-K04562	NA	NA
D1-36_03554	1350	srp54		Signal recognition particle 54 kDa protein	ATGCAAGTGAAGCGTTTTTTCGCCGCCGATATGCGTCAGGCCATGAAACTGGTTCGTGACGAGCTGGGCGCTGAAGCAGCCATCATCGGCAACCGTCGTATCGCCGGCGGTGTCGAGCTGACGGCAGCCCTGGACTACAAATTGTCGGCGCTGGCCCCTCGCGTTCCGAACATGGAGCTCGAGGACGAGCTGCGCAAGACTCAGTCGCGCATCGCCAGCGCCCAGGCCGAGTTGAGCCTGCGCAGCAGCGAAGGCTCGGCCAGCGCGGGCACCAATCGTCAATTGTTCGCCGGCCAGCCACTGACCGCAGGCCTGCCGCTGACCGCTGCCGAACCGCTGATCGAGCCGACGCCGGCCGAACCGCGTCGTCCGGCACCGGCACCCGTTGCCGCAGCCGCGGGCGTTGATCCCCGTGCCCTGGACTCGATGCGCTTCGAACTCAACAGCCTGCGCGAGCTGATGGAAGTCCAGCTCGGCTCGCTGGCCTGGAACCAACTGCAAGGCAGCCGTCCGGCCCAGGCCAACCTGTGGCGTCGCCTGCAACGCATTGGCCTGTCCGGCCCGCTGGCGCGCGACCTGCTGGCATTGATCAGCGACATCGACGAGCCTCGCCAGGCCTGGCGCATGCTACTTGCGCACCTGGCGCGGATGATCGCCACGCCGGAAGTCGAGCCACTGGAAGAGGGCGGAGTAATCGCCATGGTCGGCCCGGCCGGCATGGGCAAGACCACCACTCTGGCCAAGCTCGCGGCCCGTTATGTACTCAAGTACGGCGCCCAGAGTATCGCCCTGGTGAGCATGGACAGTTTCCGCATCGGTGCCCAGGAGCAACTCAAGACCTTGGGCCGGATCCTCAATGTGTCGGTGACCCATGTGGATCCGGGCCAGTCCCTGGCCCAGGCGCTGGAACCGCTGATGCGCAAGCGCGTCGTACTGATCGACACCGCCGGCCTGCAAGCCAGCGATCCGGCCCTGCGCATGCAGCTGGAAAGCCTGGCCGGGCGTGGCATCAAGTCAAAAAATTATCTCGTGTTGGCAACCACCAGCCAGAAACAGGTTCTAACCGCCGCATACCACAGTTACAAACGCTGCGGGCTGGCCGGCTGCATCCTGACTAAGCTGGACGAAACGGCAAGCCTGGGCGAGGTGTTGAGCCTGGCGATCGGTCATGAACTACCGGTGGCCTACCTGACCGACGGGCCGCGGATCCCGGATGATTTGCATCTGCCGCGCCGTCATCAACTGGTCAGTCGTGCCGTGAGTGTGCAAATGCAGGAAGAACCCAGCGAAGAAGCCATGGCTGACATGTTCGCTGATATCTACCACAGCCCGACCAAGCAGGTTGGCTGA	MQVKRFFAADMRQAMKLVRDELGAEAAIIGNRRIAGGVELTAALDYKLSALAPRVPNMELEDELRKTQSRIASAQAELSLRSSEGSASAGTNRQLFAGQPLTAGLPLTAAEPLIEPTPAEPRRPAPAPVAAAAGVDPRALDSMRFELNSLRELMEVQLGSLAWNQLQGSRPAQANLWRRLQRIGLSGPLARDLLALISDIDEPRQAWRMLLAHLARMIATPEVEPLEEGGVIAMVGPAGMGKTTTLAKLAARYVLKYGAQSIALVSMDSFRIGAQEQLKTLGRILNVSVTHVDPGQSLAQALEPLMRKRVVLIDTAGLQASDPALRMQLESLAGRGIKSKNYLVLATTSQKQVLTAAYHSYKRCGLAGCILTKLDETASLGEVLSLAIGHELPVAYLTDGPRIPDDLHLPRRHQLVSRAVSVQMQEEPSEEAMADMFADIYHSPTKQVG	PGPT0015550_766	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLUM_CONTROL	MOTILITY-FLAGELLUM_REGULATION,PGPT0015550-flhF-K02404	NA	NA
D1-36_03555	2133	flhA	COG1298	Flagellar biosynthesis protein FlhA	TTGGTGGATCGCTCTCAGTTACTCAGCACCGCGCGCAGCAACGTCGTAGACCTCAGCAGGGGCAATCTGGGCGTGCCGCTGTTGCTGCTGGTCCTGCTCGCCATGATGATGCTGCCGGTACCGCCGTTCCTGCTGGACGTGTTCTTCACGTTCAACCTCGCCTTGTCGATCGTGGTGCTGCTGGTGTGCGTATACGCCCTGCGCCCATTGGACTTCGCCGTCTTCCCGACCATCCTGCTGGTGGCGACGCTGTTGCGCCTGGCGCTGAACGTGGCGTCCACCCGGGTGGTGATGATTCACGGTCACGAGGGGCACCAGGCCGCCGGTAAGGTGATCCAGGCCTTCGGCGAAGTGGTGATCGGCGGCAACTACGTGGTCGGTATCGTGGTCTTTGCCATCTTGATGATCATTAACTTCGTCGTGGTGACCAAGGGCGCCGGGCGGATTTCCGAGGTGAGCGCGCGTTTCACCCTCGACGCGATGCCTGGCAAGCAGATGGCGATCGACGCCGACCTCAATGCCGGCTTGATCGACCAGAGCCAGGCCAAGCTGCGCCGTCTCGAAGTAGCCCAGGAAGCCGAGTTCTACGGGTCCATGGACGGTGCCAGTAAGTTTGTCCGCGGTGACGCCATCGCCGGCCTGCTGATCCTGTTCATCAACCTGATTGGCGGCATGGCCGTCGGTATCTTCCAGCACGGCATGGCTTTCGGCGACGCCGGCAAGGTCTACGCGTTGCTGACCATCGGTGACGGTTTGGTGGCGCAATTGCCATCACTGTTGTTATCCACAGCGGCGGCGATCATGGTGACCCGTGCTTCGGGCTCCGAAGACATGGGCAAGCAGATCAATCGCCAGATGTTCGCGTCGCCCAAGGCCCTGGCCGTGGCGGCCGGCCTGATGGCGGTGATGGGCCTCGTGCCGGGAATGCCGCACTTTTCTTTCCTGAGCATGGCGGCCTTGGCCGCGGGTGGCGCGTACCTGTTCTGGAAGAAGCAGAACGTGCAGAAGGTCCAGGCGCTGGAAGAGGTCAAGCGCCAGCAGGAACTGCTGCCGTCGCCAGCGCGTGCCATGGAAACCAAGGAATTGGGTTGGGATGACGTGACGCCGATCGACATGATCGGCCTGGAAGTCGGCTACCGCTTGATTCCATTGGTCGATCGCAACCAGGGCGGCCAATTGCTGGCGCGGATCAAGGGCGTGCGCAAGAAGCTGTCCCAGGATCTGGGCTTCCTCATGCCCACCGTCCACATTCGCGACAACCTCGACCTGGCGCCGAGCGCCTATCGCCTGACGCTCATGGGCGTGATCCTGGCGGAAGCCGAGATCTACCCGGACCGCGAGCTGGCGATCAACCCAGGGCAGGTCTACGGTTCGCTCAACGGCATTACCGCCAAGGATCCGGCTTTCGGCCTGGAAGCGGTGTGGATCGAAATCAGCCAGCGGGCCCAGGCCCAGTCCCTCGGTTATACCGTGGTGGACGCGAGCACGGTCGTGGCGACCCACTTGAACCAGATTCTCTACAAGCATTCCAGCGAGCTGATCGGTCACGAAGAAGTCCAGCAACTGCTGCAAGTACTGGCCAAAGGCTCGCCGAAACTGGCTGAAGAATTGGTGCCGGGCGTGGTTTCGTTGTCCCAATTGCTCAAGGTGTTGCAGGCGCTGCTAGCCGAACAGGTTCCGGTGCGCGACATACGCAGCATTGCCGAAGCGATCGCCAACAACGCTTCGAAGAGTCAAGATACCGCCGCTCTGGTGGCTGCGGTGCGGGTCGGCGTATCCCGCGCAATCGTCCAAAGCATTGTAGGCACTGAGTCTGAGCTGCCTGTGATCACTCTGGAACCAAGGTTGGAACAGATATTGCTCAATAGTCTGCAGAAGGCAGGACAAGGCTCGGAAGAGGGTGTTCTGCTGGAGCCAAGCATGGCCGAGAAGCTGCAGCGTTCGCTGATCGAAGCAGCCCAGCGGCAAGAGATGCAAGGCCAACCGGTGATCCTGCTGGTGGCCGGTCCGATTCGCGCGATGCTTTCGCGGTTCGGGCGCCTCGCGGTCCCGGGGCTGCATGTGCTGGCGTACCAGGAAATACCGGACAACAAGCAAGTGACCATCGTTGCGACAGTAGGGCCCAACGGCTGA	MVDRSQLLSTARSNVVDLSRGNLGVPLLLLVLLAMMMLPVPPFLLDVFFTFNLALSIVVLLVCVYALRPLDFAVFPTILLVATLLRLALNVASTRVVMIHGHEGHQAAGKVIQAFGEVVIGGNYVVGIVVFAILMIINFVVVTKGAGRISEVSARFTLDAMPGKQMAIDADLNAGLIDQSQAKLRRLEVAQEAEFYGSMDGASKFVRGDAIAGLLILFINLIGGMAVGIFQHGMAFGDAGKVYALLTIGDGLVAQLPSLLLSTAAAIMVTRASGSEDMGKQINRQMFASPKALAVAAGLMAVMGLVPGMPHFSFLSMAALAAGGAYLFWKKQNVQKVQALEEVKRQQELLPSPARAMETKELGWDDVTPIDMIGLEVGYRLIPLVDRNQGGQLLARIKGVRKKLSQDLGFLMPTVHIRDNLDLAPSAYRLTLMGVILAEAEIYPDRELAINPGQVYGSLNGITAKDPAFGLEAVWIEISQRAQAQSLGYTVVDASTVVATHLNQILYKHSSELIGHEEVQQLLQVLAKGSPKLAEELVPGVVSLSQLLKVLQALLAEQVPVRDIRSIAEAIANNASKSQDTAALVAAVRVGVSRAIVQSIVGTESELPVITLEPRLEQILLNSLQKAGQGSEEGVLLEPSMAEKLQRSLIEAAQRQEMQGQPVILLVAGPIRAMLSRFGRLAVPGLHVLAYQEIPDNKQVTIVATVGPNG	PGPT0015320_313	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_III_SECRETION_SYSTEMS	CE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015320-flhA|lfhA|fhiA|rhcV-K02400	NA	NA
D1-36_03556	1137	flhB	COG1377	Flagellar biosynthetic protein FlhB	ATGGCCGAGAGCGAAAGCGGTCAGGATAAAACAGAAGACCCCACCGAGAAACGCAAGAAGCAATCCCGGGAAAAGGGCGAGATTGCCCGTTCCAAGGAGCTCAACACCCTGGCGATCATGCTCGCCGGTGCCGGTGGCTTGCTGATTTACGGTGGCGGACTGGCGTTGGATCTGCTGGAAATCATGCGGTTGAATTTTTCCTTGCCTCGCGAGGTATTGCTCACGCCGGGCGCTATGACGCAGTACCTGTTGCATTCGGGCAAGATCGCGATGCTTGCAATGCAACCGGTGCTCATTTTTCTGCTGTTGGCGGCTTTCATCGGCCCGATTTCCCTGGGCGGATGGCTGTTCGCCGCCGGTAGCCTGGCACCGAAGTTCAGCCGGATGAATCCGGCCGCCGGTATCAAGCGCATGTTTTCCACCACGGCGTTGATGGAACTGCTCAAGGCTTTCGGAAAATTTCTTCTGGTGTTGTTCGTCGCGCTGGCGGTGTTGCAGGCCGATATCGACGATCTGCTGCGCATTGCCCATGAGCCGCTGGAGCAAGCCATCATCCATAGCGTGCAGTTAGTCGGCTGGAGCACCTTGTGGATGGCTTGCGGGCTGATCCTCATCGCCGCCATCGACGTGCCGATCCAGCTTTACCAGAGCAAGCAGAAATTGATGATGACCAAGCAGGAGGTGCGCGACGAGTACAAGGACTCGGAGGGCAAGCCGGAGGTCAAGCAGCGGATCCGCCAGTTGCAGCGCGAGGTTTCCCAGCGGCGGATGATGGCGGCGATTCCCGACGCCGACGTGGTCATCACCAACCCGACTCACTATGCCGTCGCGCTCAAGTACGATCCCGACAAGGGCAATGCGCCGGTCCTGCTGGCCAAGGGCAGCGATTTCCTGGCGTTGAAGATTCGCGAGATCGCCGTCGCCAACGAAGTGATGTTGCTCGAATCTCCGGCATTGGCGCGGTCGATCTACTACTCCACCGAGCTTGACCAGGAAATCCCGGGAGGCTTGTACCTCGCCGTCGCCCAGGTGCTGGCCTACGTCTACCAGATCCGCCAGCACCGCGCCGGCAAGGGCAAGCGGCCAGAACCGCTCAAGGACCTGCCCATCCCGCCGGATTTGCGCCGCGATTCCTGA	MAESESGQDKTEDPTEKRKKQSREKGEIARSKELNTLAIMLAGAGGLLIYGGGLALDLLEIMRLNFSLPREVLLTPGAMTQYLLHSGKIAMLAMQPVLIFLLLAAFIGPISLGGWLFAAGSLAPKFSRMNPAAGIKRMFSTTALMELLKAFGKFLLVLFVALAVLQADIDDLLRIAHEPLEQAIIHSVQLVGWSTLWMACGLILIAAIDVPIQLYQSKQKLMMTKQEVRDEYKDSEGKPEVKQRIRQLQREVSQRRMMAAIPDADVVITNPTHYAVALKYDPDKGNAPVLLAKGSDFLALKIREIAVANEVMLLESPALARSIYYSTELDQEIPGGLYLAVAQVLAYVYQIRQHRAGKGKRPEPLKDLPIPPDLRRDS	PGPT0015325_1014	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_III_SECRETION_SYSTEMS	CE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015325-flhB-K02401	NA	NA
D1-36_03557	777	fliR	COG1684	Flagellar biosynthetic protein FliR	ATGCTCGCGCTGACGGATACCCAGATCAGTACCTGGGTGGCGTCGTTCATCCTGCCGTTGTTTCGTGTCACGGCCGTGCTGATGAGCATGCCGGTCTTCGGCACGACCTTGGTGCCGGGTCGTGTGCGCCTGTATTTCGCCCTGGCGATTACGGTGGTCATCGCCCCCGGGCTGCCGCCCATGCCGCCGGTAAATGCCCTGGACCTCACCGCGTTGATGCTGGTGGCCGAACAGATCCTCATAGGCGCCTTGTTGGGCTTTTCGCTGCAGTTGTTTTTCCAGGCATTCGTGGTGGCCGGGCAAATCATCTCGATCCAGATGGGCATGGCCTTCGCCTCGATGATCGACCCCACCAACGGCGTGAACACTGCCGTTATCGGGCAGTTCCTGACGATGCTGGTGACGTTGCTGTTCCTCGCTATGAACGGGCATCTGGTGGTGTTCGAAGTATTGACGGAGAGCTTCACCACATTGCCGGTAGGCAGCGCGATGCTGGTCAATCATTTCTGGGACATTGCCAACAAGCTTGGCTGGGTCCTCGGCGCGGCGATGGTACTGGTGTTGCCGGCGATTACCGCGCTGCTGGTGGTCAACATCGCCTTCGGCGTGATGACCCGGGCGGCGCCGCAGTTGAACATCTTTTCCATCGGCTTCCCGCTTACCCTGGTGCTGGGCATGGTGATTTTCTGGGTCAGCCTGGGGGACATTCTCAATCAGTATCAGCCGTTGGCCACCCAGGCCTTGCAGCTGTTACGCGACATGGCACAGGCGCGCTGA	MLALTDTQISTWVASFILPLFRVTAVLMSMPVFGTTLVPGRVRLYFALAITVVIAPGLPPMPPVNALDLTALMLVAEQILIGALLGFSLQLFFQAFVVAGQIISIQMGMAFASMIDPTNGVNTAVIGQFLTMLVTLLFLAMNGHLVVFEVLTESFTTLPVGSAMLVNHFWDIANKLGWVLGAAMVLVLPAITALLVVNIAFGVMTRAAPQLNIFSIGFPLTLVLGMVIFWVSLGDILNQYQPLATQALQLLRDMAQAR	PGPT0015360_1538	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_III_SECRETION_SYSTEMS	CE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015360-fliR|lfiR-K02421	NA	NA
D1-36_03558	270	fliQ	COG1987	Flagellar biosynthetic protein FliQ	ATGACGCCTGAAGTAGCGGTAGACCTGTTCCGCGAGGCCCTCTGGCTGACCACCATGATGGTGGCCATCCTGGTGATCCCGAGCCTGCTGGTTGGCTTGCTCGTGGCGATGTTCCAGGCCGCCACGCAGATCAACGAGCAGACCCTGAGTTTCCTGCCGCGCCTGCTGGTGATGCTGGTCACGCTGATCGTCGCCGGCCCCTGGCTGGTGCAAACCTTCATGGAATACATCCTGCAGTTGTACGGCAGTATTCCGCAGTTGATTGGCTGA	MTPEVAVDLFREALWLTTMMVAILVIPSLLVGLLVAMFQAATQINEQTLSFLPRLLVMLVTLIVAGPWLVQTFMEYILQLYGSIPQLIG	PGPT0015355_395	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_III_SECRETION_SYSTEMS	CE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015355-fliQ|lfiQ-K02420	NA	NA
D1-36_03559	750	fliP	COG1338	Flagellar biosynthetic protein FliP	ATGCCGTTGCGCATTCTCTTGGCGTTGGCCCTGATGCTGGCCGCGCCGTTGGCGTTCTCCGCCGACCCGCTGTCGATCCCTGCGATCACCTTGGGCACCAACGCCGAAGGGGCACAGGAATACTCGGTCAGCTTGCAGATCCTGCTGATCATGACCGCGCTGAGTTTCATCCCGGCGTTCGTTATGCTGATGACCAGTTTCACCCGGATCATCATCGTCTTTTCGATCTTGCGCCAGGCCCTTGGCCTGCAACAGACGCCGTCGAACCAGATCCTCACCGGCATGGCGCTGTTCCTGACCATGTTCATCATGGCGCCGGTGTTCGACCGGGTGAACCAGGACGCGCTGCAACCCTATCTGGCGGAAACCCTCAGCGCCCAGGATGCCGTGGCCAGGGCCCAGGTGCCGATCAAGGATTTCATGCTCGCCCAGACCCGCAGCAGCGACCTGGAGCTGTTCATGCGCCTGTCCAAACGCACCGACATTGCCAGCCCCGACCAGGCGCCATTGACCATCCTGGTGCCGGCGTTCGTGACCTCCGAGCTCAAGACCGCCTTCCAGATCGGTTTCATGATTTTCATCCCGTTCCTGATCATCGACCTGGTGGTCGCCAGTATCCTCATGGCCATGGGCATGATGATGTTGTCGCCGCTGATCATTTCGCTGCCATTCAAGATCATGCTGTTCGTGCTGGTGGATGGCTGGGCGTTGATCATCGGCACCCTGGCGGGCAGTTTCGGCGGTGTTTAG	MPLRILLALALMLAAPLAFSADPLSIPAITLGTNAEGAQEYSVSLQILLIMTALSFIPAFVMLMTSFTRIIIVFSILRQALGLQQTPSNQILTGMALFLTMFIMAPVFDRVNQDALQPYLAETLSAQDAVARAQVPIKDFMLAQTRSSDLELFMRLSKRTDIASPDQAPLTILVPAFVTSELKTAFQIGFMIFIPFLIIDLVVASILMAMGMMMLSPLIISLPFKIMLFVLVDGWALIIGTLAGSFGGV	PGPT0015350_1504	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_III_SECRETION_SYSTEMS	CE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015350-fliP|rhcR-K02419	NA	NA
D1-36_03560	438			hypothetical protein	ATGAAAGGCTTTCTCACCGCAGCTCTGATGCTGCCGTTCAGTGTTCTGGCAGCCGAGCCGGTGGCCACGGCTGCCGTTGCGCCGGCGAGTGGCAGCGGCATGGCCGGGCAACTGGCGCAACTGGTGCTGGGCCTGCTGGTGGTGCTCGGGTTGATTTTCTTCCTGGCGTGGATGCTGCGACGCGTTCAGCAGGCGGGGCCTGCCGGCAAAGGGCAGGTCATTGACATTGTCGGTTCCCGCGCGCTGGGGCCACGGGATCGGCTGGTGCTGGTGCAGGTCGGCACCGAGCAGATCCTGCTCGGCCTGAGTCCTGGCAGCATCACTGCGCTGCATGTCCTGAAGGAACCGGTGCAGGTGCCGGTCACGGAGCAGGCCACGCCCGAGTTTGCCCAACGGCTCATGGAACTGCTGGGAAAAGACCAAAAGGATAAAAAGTAA	MKGFLTAALMLPFSVLAAEPVATAAVAPASGSGMAGQLAQLVLGLLVVLGLIFFLAWMLRRVQQAGPAGKGQVIDIVGSRALGPRDRLVLVQVGTEQILLGLSPGSITALHVLKEPVQVPVTEQATPEFAQRLMELLGKDQKDKK	PGPT0015345_974	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_III_SECRETION_SYSTEMS	CE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015345-fliOZ-K02418	NA	NA
D1-36_03561	459	fliN	COG1886	Flagellar motor switch protein FliN	ATGGCTGACGATATGAATACCCAGGATGACCAGGCGCTGGCCGATGAGTGGGCTGCGGCCCTGGAAGAAACCGGCGATGCCGGGCAGGCAGACATCGATGCATTGCTGGCGGCTGACACAGGCAACCATGGGTCCAACCGCTTGCAAATGGAAGAATTCGGCAGCGTGCCGAAAAGCAACGAACAAGTGACGCTCGACGGTCCCAACCTGGACGTGATCCTCGACATCCCGGTGTCGATCTCCATGGAAGTGGGCAGCACCGACATCAACATCCGCAACTTGCTGCAGCTCAACCAAGGCTCGGTGATCGAGCTGGATCGCCTGGCCGGTGAGCCGCTGGATGTGTTGGTCAACGGCACCCTGATCGCCCATGGCGAAGTGGTTGTGGTCAACGAGAAGTTCGGCATTCGCCTGACGGACGTGATCAGCCCGAGCGAACGCATCAAGAAGCTGCGCTGA	MADDMNTQDDQALADEWAAALEETGDAGQADIDALLAADTGNHGSNRLQMEEFGSVPKSNEQVTLDGPNLDVILDIPVSISMEVGSTDINIRNLLQLNQGSVIELDRLAGEPLDVLVNGTLIAHGEVVVVNEKFGIRLTDVISPSERIKKLR	PGPT0015410_1296	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_III_SECRETION_SYSTEMS	CE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015410-fliN|lfiN|fliNY|cheC|cheD-K02417	NA	NA
D1-36_03562	969	fliM	COG1868	Flagellar motor switch protein FliM	ATGGCCGTGCAGGACTTGTTGTCCCAGGACGAAATCGACGCGCTGTTGCACGGTGTCGACGACGGCCTGGTGCAGACCGAAAACGCTGCTGAACCGGGCAGCGTCAAAAGCTACGACCTGACCAGCCAGGATCGCATCGTTCGTGGACGCATGCCGACCCTGGAAATGATCAACGAGCGTTTCGCCCGATACACCCGCATCAGTATGTTCAACATGCTGCGCCGCTCGGCCGACGTGGCCGTGGGTGGCGTGCAGGTGATGAAATTCGGCGAATATGTTCATTCGCTGTACGTGCCCACCAGCCTCAATCTGGTGAAGATCAAGCCGCTGCGTGGCACGGCATTGTTCATCCTCGACGCCAAGCTGGTGTTCAAGTTGGTGGACAACTTCTTCGGCGGCGACGGTCGTCACGCCAAGATCGAAGGTCGCGAATTCACACCGACCGAACTGCGTGTCGTGCGCATGGTGCTGGAGCAGGCTTTCGTCGATTTGAAGGAAGCCTGGCAGGCGATCATGGAAGTGAATTTCGAGTACATCAACTCGGAAGTGAACCCGGCGATGGCCAACATCGTCGGCCCAAGCGAAGCGATTGTCGTCTCGACGTTCCACATCGAGCTCGATGGGGGTGGCGGCGACCTGCACGTGACCATGCCGTATTCGATGATCGAGCCGGTGCGTGAAATGCTCGACGCCGGTTTCCAGTCGGACCTCGACGACCAGGACGAGCGTTGGATCAACGCCTTGCGCCAGGACGTGCTGGATGTCGACGTGCCGATCGGCGCGACGGTCGCCCGGCGCCAGCTACGATTGCGGGACATCCTGCACATGCAGCCGGGGGATATCATCCCCGTCGAAATGCCGGAAGACATGATCATGCGCGCCAATGGCGTGCCGGCCTTCAAGGTCAAGATGGGCTCTCACAAAGGTAACCTGGCGTTGCAGGTGATCGAGCCGATCGAACGCCGCTGA	MAVQDLLSQDEIDALLHGVDDGLVQTENAAEPGSVKSYDLTSQDRIVRGRMPTLEMINERFARYTRISMFNMLRRSADVAVGGVQVMKFGEYVHSLYVPTSLNLVKIKPLRGTALFILDAKLVFKLVDNFFGGDGRHAKIEGREFTPTELRVVRMVLEQAFVDLKEAWQAIMEVNFEYINSEVNPAMANIVGPSEAIVVSTFHIELDGGGGDLHVTMPYSMIEPVREMLDAGFQSDLDDQDERWINALRQDVLDVDVPIGATVARRQLRLRDILHMQPGDIIPVEMPEDMIMRANGVPAFKVKMGSHKGNLALQVIEPIERR	PGPT0015405_1974	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_C-RING,PGPT0015405-fliM-K02416	NA	NA
D1-36_03563	504			hypothetical protein	ATGGCGAAGAGCGAAGCAGCAGCTGTAAAAGACCCCGCAACCAAAGGCAAACTCAAGATGATCATCCTGATCGTGGTGGGCTTGCTCCTGGCCGTGGGCGTGTCCGTGGGGGCGACCTGGTATTTCATGCACAACGCCCAGAGCAAGCCGGCCGAGGCGGTGGAAGCTGCTCCGGTGGGCAAGCAGCCAGCGGTTTTCGAGCCGATGGCCCCGGCCTTCGTCGCCAACTACACCCAGAACGGTCGTCAGCGCTACATGCAGGTGAGCATTACCTTGCTGGGGCGCAACCAGGCCGACCTGGAAGCGTTGCGTGTACACATGCCGCTGATTCGCAATAATCTGGTGATGCTGTTTTCCGGACAGAGTTTCGACACCCTGGCCACTCCGGTGGGCCAGGAAATGCTGCGTCAGAAAGCCACGGCCAGCGTGCAGGAAGTGGCCCAGAAAGAACTCGGCAAAGTGGTGATCGAACAGTTGCTCTTCACTAACTTCGTATTGCAGTAG	MAKSEAAAVKDPATKGKLKMIILIVVGLLLAVGVSVGATWYFMHNAQSKPAEAVEAAPVGKQPAVFEPMAPAFVANYTQNGRQRYMQVSITLLGRNQADLEALRVHMPLIRNNLVMLFSGQSFDTLATPVGQEMLRQKATASVQEVAQKELGKVVIEQLLFTNFVLQ	PGPT0015525_1213	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015525-fliL-K02415	NA	NA
D1-36_03564	1365			hypothetical protein	ATGCCCGTTACACCCAACACACTGCTCCAGGCCACCGCCCAGGCCAAGCCGCAGGCCGCCGTCAATCCGCTGGCAGCAGGTCCGGACGCCGAGAACAGAGCCTCCAGCTTCGCCCAGGTCTTCGCCAAGCAGGCACCCGTCAAATCACCGGCGGTGCCTGAGCCATCGGCAAAACCGGTGCGCGACAAGACCGCCGACAATGCCGCCAAGAAGGACGCGGGCAGCGATACTGCCGCTCCGGAGCCGGCGGTTGCCGATAGCGGCAAACCCTTGCCCGCCGACAAGCCGACCACTGCCGGCAGCAAGACGGCGGATGATGCCGACAGCGATGCGCCAGAAACGCCGGTAGCGGATGCCGCGCCTGTCGATCCGACGCTGGACCCTGCGTTGTTGCCGGGCACCGTTATTCCAGAGGGCGTCGCTGAGGCGCAGCCTGCCGTGGTGCCTACGATCGAGGCCCAAGTCACTGCGGCGGTAGCGGCTCCCGTTGCCCCGAGTGTGGCGGCCAATGCCTCGGCGCCGGTGACGGACCCGGAGTTCGACCCGCAGGCCGATCCGCTCGACGCACTACCGGCGTTGCGGTTGGCGATGGAGCAGAGCGGCCACGTGTCCGCTTCCAGCCAGGCGCAGTCCAAGACCGCTGCGCCGGCGTCTCTCGATGGTGAGCCGACTTCGGCCCAGACGTTCGCCGCCGGTATGGCGAGCATGCTCACCGTGCAAGCCGACCAGGACAGCACCGGTGCCGGCAGCCAGGGGGGTGACAAGGCGTTCAGTGGCCTGATCAGCGAAGGCCTCAAGGATCTGACGGCCGCTTCCAGCGATACGCGCGTGGATGACTTTGCCAACCGCCTGGCGGCACTGACCCAGGCCGCCACACCGAAAACCGCCAACGCGGTGCCGGTCAATCAGCCCATCGCCATGAACCAGGGCGGCTGGACCGAGGAGGTGGTCAACCGGGTGATGTACTTGTCGAGCGCCAATCTCAAGGCGGCCGACATCCAGTTGCAACCTGCCGAGCTCGGACGCCTGGATATTCGGGTGAACATGATTCCAGACCAGCAGACCCAGGTGACCTTCATGAGCGCCCACTCAGGCGTGCGCGAAGCCCTCGAAGGCCAGATGCATCGTCTGCGTGACAGTTTCGCCCAGCAGGGAATGGGGCAGGTCGACGTCAGCGTGTCGGATCAATCCCGTGGCTCGCAGAACCAGGATCAACAGGCCCAGCAGCAAGCCCAGGCTGGACGCACCACGTCCTCCGGCGGCCGAGTTGACTCGCTGGATGAAGAGGTGCCGGCCAGCGTTGCCGAAGTGGCGGCCAGCACCACCAGCGTCATTGGCACCAGCGCGGTCGATTACTACGCCTGA	MPVTPNTLLQATAQAKPQAAVNPLAAGPDAENRASSFAQVFAKQAPVKSPAVPEPSAKPVRDKTADNAAKKDAGSDTAAPEPAVADSGKPLPADKPTTAGSKTADDADSDAPETPVADAAPVDPTLDPALLPGTVIPEGVAEAQPAVVPTIEAQVTAAVAAPVAPSVAANASAPVTDPEFDPQADPLDALPALRLAMEQSGHVSASSQAQSKTAAPASLDGEPTSAQTFAAGMASMLTVQADQDSTGAGSQGGDKAFSGLISEGLKDLTAASSDTRVDDFANRLAALTQAATPKTANAVPVNQPIAMNQGGWTEEVVNRVMYLSSANLKAADIQLQPAELGRLDIRVNMIPDQQTQVTFMSAHSGVREALEGQMHRLRDSFAQQGMGQVDVSVSDQSRGSQNQDQQAQQQAQAGRTTSSGGRVDSLDEEVPASVAEVAASTTSVIGTSAVDYYA	PGPT0015520_1158	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015520-fliK|motD-K02414	NA	NA
D1-36_03565	345			hypothetical protein	GTGAACGAAGTTCATCTGGATCTCGACGTGCTGAGCACGTTGAAGGAAGTCATGGAGGACGGGTATCCGGAGCTGTTGGATACTTTCCTCAAGGATTCCGAAGCCCGCCTTCGTGTACTGCACGAGGCGAGGGACGCGCAAATGCTCAGTGCTACTGCCCATAGCTTCAAGGGCAGCAGCAGCAACATGGGCGCCATTCGCCTGGCCGAGCTGTGTGGTGAGCTGGAGCAGCGTGCCAAGGAGCCGTCGCTGCACGGTATCGAGAGCCTGGTCAATGAAATCGATAGCGAATTCGCTCACGTTCGTACGCTTTGTCGAGAAGAGCGCGAAAGCTTTCACTGCTGA	MNEVHLDLDVLSTLKEVMEDGYPELLDTFLKDSEARLRVLHEARDAQMLSATAHSFKGSSSNMGAIRLAELCGELEQRAKEPSLHGIESLVNEIDSEFAHVRTLCREERESFHC	PGPT0025855_396	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QUORUM_SENSING_REGULATORS	CE-QSR-QUORUM_SENSING_REGULATED_FLS,PGPT0025855-hptB-K20976	NA	NA
D1-36_03566	1707	rcsC_20		Sensor histidine kinase RcsC	ATGCAATCGTCGCCGGAGCCGCTGACGATCCTGATTGCCGAAGACAGCGCCGCCGACCGACTGCTGTTGTCGACCATTGTCCGTCGCCAGGGGCACCACGTGCTCACCGCCGCCGATGGCGCCGAGGCGGTCGACGTCTATCTGGAGCAGCGTCCTCATCTTGTGCTGATGGACGCAATGATGCCGGTCATGGATGGCTTCGAAGCGGCGCAGAAGATCAAGCAATTGGCCGGGGATCAGTTGGTCCCGATCATTTTCCTCACCTCATTGACCGAAAGCGAAGGGCTCGCCCGATGCCTTGAGGCCGGTGGGGATGACTTCCTGGCGAAACCCTATAACCAAGTCATCCTGGCTGCGAAAATCAAGGCCATGGACCGCTTGCGTCGGTTGCAGGCCACGGTGGTCGAGCAGCGCGACCAGATCGCCCGACACCACGATTACCTTCTCAATGAGCAGCGGGTCGCCAAGGCCGTGTTCGACAAGATTGCCCACTCCGGTTGCCTGAGCGCGCCGAATATCCGTTATCTGCAATCACCTTATGCCTTGTTCAACGGCGACTTGCTGCTGGCCGCGTTCAACCCGGCCGGCGACATGCATATCCTGCTCGGCGATTTTACCGGGCACGGCCTGCCGGCGGCGGTCGGCGCGATGCCGCTGGCGGAAGTGTTCTACGGGATGACTGCCAAAGGTTATGGCCTGGCGCAGATCCTGCGGGAGATGAATGCCAAGCTCAAGCGCATCCTGCCGGTGGATATGTTCTGTTGCGCGACGCTGTTAAGCATGAGTTTCCAGCGCTGCACCGTCGAGGTCTGGAATGGCGGCATGCCTGACGGGTATCTGCACGACAGCCTCAGTGGCGTGCGCACGCCGTTGCCGGCGCGGCACTTGCCGCTGGGTGTGCTGACGCCCCAGTTGTTCGACGATCGCACCGAGGTCCACTCGCTGTCGGTGGGTGATCGGGTCTTCCTGTTGTCCGACGGAGTGATAGAAACCAGCGACCACGATGATCAACCGTTTGGCGTGGAGCGGTTGCAGCAGGTGTTCTCGGCCAACCGCGAACCCGACCGTCTCTTCGAGGATATCCAGCAGGCCTTGCGGGATTTTCGCGGTGAGGCCCGTGATGACTTCAGCATGGTCGAGGTGCGGCTGGTCGCGCCGACGCAACTCAACCCGCCGCCACCGGTCTATTCCGATAGTGGCCAGTCCAGTCCGCTGGATTGGTCGTTGAGTTTCGAATTCCGCGCGCAAACACTCAAGCGCTTCAACCCGATGCCTTACCTGCTGCAATTATTGTTGGAGGTCCACGGGCTCAGGGCGCAGAGTGGAGCCCTATACAACGTGTTGTCGGAGCTTTATTCCAACGCCCTGGAACACGGGGTGCTGGGGCTCGACTCCAGCCTGAAGCGTGATGCGACCGGTTTTGCTCGTTACTATCAGGAGCGCGGCGCGCGTCTGGACAAGCTGGACGATGGTCACGTGCGGGTGCATCTGCACGTCACGCCCCAGGGCGACGGTGGCAGACTAATCATTGAAGTCGAAGACAGCGGAAAGGGCTTCGATGTCGCCAAGGTGTTGGCGCGGCCGCTGGACCGGGATCGATTGTCGGGGCGCGGCGTGAGCCTGGTGCGCCAACTCTGTCATCAGGCCTCCTGGTCCGACGATGGTCGTAGTGCGCGCGTGGAGTTTTTCTGGGAGGCTCTGTCATAA	MQSSPEPLTILIAEDSAADRLLLSTIVRRQGHHVLTAADGAEAVDVYLEQRPHLVLMDAMMPVMDGFEAAQKIKQLAGDQLVPIIFLTSLTESEGLARCLEAGGDDFLAKPYNQVILAAKIKAMDRLRRLQATVVEQRDQIARHHDYLLNEQRVAKAVFDKIAHSGCLSAPNIRYLQSPYALFNGDLLLAAFNPAGDMHILLGDFTGHGLPAAVGAMPLAEVFYGMTAKGYGLAQILREMNAKLKRILPVDMFCCATLLSMSFQRCTVEVWNGGMPDGYLHDSLSGVRTPLPARHLPLGVLTPQLFDDRTEVHSLSVGDRVFLLSDGVIETSDHDDQPFGVERLQQVFSANREPDRLFEDIQQALRDFRGEARDDFSMVEVRLVAPTQLNPPPPVYSDSGQSSPLDWSLSFEFRAQTLKRFNPMPYLLQLLLEVHGLRAQSGALYNVLSELYSNALEHGVLGLDSSLKRDATGFARYYQERGARLDKLDDGHVRVHLHVTPQGDGGRLIIEVEDSGKGFDVAKVLARPLDRDRLSGRGVSLVRQLCHQASWSDDGRSARVEFFWEALS	PGPT0025865_104	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0025865-hsbR-K20977	NA	NA
D1-36_03567	306			STAS-domain containing protein	ATGTCTGTCGTTACCGAAGTATCTCCTGATGGGCAAAAACTGACGATCTCGATCAAGGGCCGCTTCGATTTTGGCCGGCATCAGGAGTTTCGTGAGTCCTATGAAAAGCTCAACACGAAACCCGAGTCCATCGTGGTGGATCTGAAAGAGGCCACTTACCTAGATAGCTCTGCCTTGGGCATGCTCCTGCTGTTGCGTGACCATGCCGGTGGCGACGAATCGGATATCCGCGTCGTCAACAGCAGCAGCGACGTCAAGAAAATCCTCGCGATTTCCAATTTCGACAAGCTGTTCGATATCAGTTGA	MSVVTEVSPDGQKLTISIKGRFDFGRHQEFRESYEKLNTKPESIVVDLKEATYLDSSALGMLLLLRDHAGGDESDIRVVNSSSDVKKILAISNFDKLFDIS	PGPT0025860_158	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0025860-hsbA-K20978	NA	NA
D1-36_03568	450	fliJ	COG2882	Flagellar FliJ protein	ATGGCCACGAGTCGTGCGGCGCGCCTGGCACCGGTGGTGGACATGGCGGAAAAGGCTGAGAAAACCGCTGTACAGCGGTTGGCGTATTTCCAGGGGCAAGTGGCTGTTGCTGAAAGCAAGCTGGCTGACCTGGAGAATTTTCGTCTGGAATACCAGGAACAGTGGATTGCCCGTGGCAGTCACGGCGTTTCCGGGCAGTGGTTGTTGGGTTACCAGGGGTTCCTGGCGCAATTGGGCACCGCCATCGATCAGCAGCGCCAAAGCCTGGTCTGGCACCAGAACAATCTCGAGAAGGCTCGCCAGAGTTGGCAGGAAGCGTTCGCCCGAGTCGAGGGGCTGCGCAAGCTGGTACAGCGTTACATCGACGAGGCGCGGCAATTGGAGGATAAGCGTGAGCAGAAACTGCTGGATGAATTGTCCCAGCGCTTGCCGCGCCAGGACCCGTATTGA	MATSRAARLAPVVDMAEKAEKTAVQRLAYFQGQVAVAESKLADLENFRLEYQEQWIARGSHGVSGQWLLGYQGFLAQLGTAIDQQRQSLVWHQNNLEKARQSWQEAFARVEGLRKLVQRYIDEARQLEDKREQKLLDELSQRLPRQDPY	PGPT0015615_548	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLUM_CONTROL	MOTILITY-FLAGELLUM_CHAPERONES,PGPT0015615-fliJ-K02413	NA	NA
D1-36_03569	1359	fliI	COG1157	Flagellum-specific ATP synthase	ATGCGCCTTGAGCGAACCAGCTTTGGCAAGCGCCTGGGCAGCTACGCCGAGGCCACCGAGCTGGCCGGCCAACCGATCCTGGAAGGTCGCCTGCTGCGTATGGTCGGCCTGACCCTTGAGGCGGAAGGCTTGCGTGCCGCCATGGGCAGTCGTTGCCTGGTGATCAACGATGACAGTTATCACCCGGTGCAGGTCGAAGCCGAGGTCATGGGTTTCTCCGGCAGCAAGGTATTCCTGATGCCGGTGGGCAGTGTCGCCGGCATCGCCCCGGGTGCCCGCGTGGTACCGCTGGCCGATACCGGTCGCCTGCCCATGGGCATGAGCATGCTCGGCCGGGTGCTGGATGGCGCTGGACGGGCCCTGGACGGCAAGGGCGGTATGAAGGCTGAAGATTGGGTGCCGATGGATGGCCCGACGATCAACCCGCTCAAGCGCGACCCCATCAGCGTACCGCTGGACGTGGGCATTCGTTGCATCAACGGTTTGTTGACGGTTGGACGCGGCCAGCGCCTGGGCCTGTTCGCCGGTACTGGTGTGGGCAAGAGTGTGCTGCTGGGCATGATGACCCGCTTTACCGAAGCCGACATCATCGTGGTGGGCTTGATCGGCGAGCGGGGTCGCGAGGTGAAGGAATTCATCGAGCACATCCTCGGCGAAGAAGGGCTCAAACGTTCCGTGGTGGTGGCTTCGCCGGCGGACGATGCGCCATTGATGCGCCTGCGTGCCGCCATGTACTGCACGCGTATCGCTGAATATTTCCGCGACAAGGGCAAGAATGTCCTGTTGCTGATGGACTCACTGACCCGTTTCGCCCAGGCCCAGCGGGAAATCGCCCTGGCCATCGGCGAACCTCCGGCGACCAAAGGGTATCCGCCTTCAGTCTTCGCCAAGCTGCCGAAATTGGTGGAACGCGCCGGAAACGCGGAGAAGGGCGGTGGCTCCATCACCGCGTTCTACACCGTGCTGTCCGAGGGCGACGACCAACAGGATCCGATCGCCGACTCGGCCCGTGGTGTGCTCGACGGCCATATCGTATTGTCCCGGCGTCTGGCGGAAGAAGGACATTACCCCGCCATCGACATCGAAGCGTCGATCAGCCGGGTCATGCCATCGGTGATCAGCCCCGAGCACATGAAGCGGGCGCAACAGTTCAAGCAGTACTGGTCCCGTTACCAGCAGAGTCGCGACCTGATCAGCGTAGGTGCCTATGTGCCTGGCGGCGATCGCGAAACCGACACGGCCATCAACCTCTATCCGGCCATGGCGGTGTATCTGCGCCAGGCGCTGAATGACAGCATCGGCATGGGCGCCAGCGAAGCGCACCTGCAAACCATTTTCGCCCCAGTCTCCGGCACGTAA	MRLERTSFGKRLGSYAEATELAGQPILEGRLLRMVGLTLEAEGLRAAMGSRCLVINDDSYHPVQVEAEVMGFSGSKVFLMPVGSVAGIAPGARVVPLADTGRLPMGMSMLGRVLDGAGRALDGKGGMKAEDWVPMDGPTINPLKRDPISVPLDVGIRCINGLLTVGRGQRLGLFAGTGVGKSVLLGMMTRFTEADIIVVGLIGERGREVKEFIEHILGEEGLKRSVVVASPADDAPLMRLRAAMYCTRIAEYFRDKGKNVLLLMDSLTRFAQAQREIALAIGEPPATKGYPPSVFAKLPKLVERAGNAEKGGGSITAFYTVLSEGDDQQDPIADSARGVLDGHIVLSRRLAEEGHYPAIDIEASISRVMPSVISPEHMKRAQQFKQYWSRYQQSRDLISVGAYVPGGDRETDTAINLYPAMAVYLRQALNDSIGMGASEAHLQTIFAPVSGT	PGPT0015340_1075	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_III_SECRETION_SYSTEMS	CE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015340-fliI|lgiI-K02412	NA	NA
D1-36_03570	831			hypothetical protein	ATGTCTGCCAAGAGTGATGATGCACCCAGCGACCTGATCCGCGCCCGGGACGTCGGAGGTTTCGACGTCTGGTCGCTGCCCAGTTTCGACCCCTTCGTGCCCGAGCCCGAGCCGGAGCCGGTGGAAGAACTGCCGGAGATGGAGGAGGTGCCGCTGGAGGAAGTCCAGCCACTGACCCTCGAAGAAGTCGAGAGCATTCGTCAGGAGGCCTACAACGAAGGCTTCGCCATTGGCGAGAAAGAAGGTTTCCACAGCACGACGATCAAGGTTCGCCAGGAAGCCGACGTGGCGCTGACGGCGAAGCTATGTGCGTTGGAATCACTGATGCTCAATCTGTTCGAGCCCATCGCCGAGCAGGACACCCAGATCGAAAAGTCATTGGTCGGGCTGGTGCAGCACATCACCCGCCAAGTGATCCAGCGCGAGCTGGCGATTGATTCGAGCCAGATCGAACACGTCATGCGCGAAGCCCTCAAGCTGCTGCCGCTGGGCGTGGGCAACGTGCGGCTGTACATCAATCCTCAGGACTTCGAACTGGTGAAGGCCCTGCGCGAGCGCCACGAGGAAACCTGGCGCATCGTCGAGGACGAGTCCCTGCTGCCGGGCGGTTGCCGCGTAGAAACCGAGCACAGCCGCATCGACGCGACAATCGAGACGCGCATCAGCCAGATCATGGCGAAACTCTTTGACCAACTGCACGAACAGGCCCTGCATCCGGCTCCGGCCGACCTCAGCCTGGATCTGCCGGACGAACCCAAGGCCGCTGTCATCGTCGATCCGGACGGTGACGAACCGCTTGTTGGCGCAACGGACAGCCGCGATGCGCCTTGA	MSAKSDDAPSDLIRARDVGGFDVWSLPSFDPFVPEPEPEPVEELPEMEEVPLEEVQPLTLEEVESIRQEAYNEGFAIGEKEGFHSTTIKVRQEADVALTAKLCALESLMLNLFEPIAEQDTQIEKSLVGLVQHITRQVIQRELAIDSSQIEHVMREALKLLPLGVGNVRLYINPQDFELVKALRERHEETWRIVEDESLLPGGCRVETEHSRIDATIETRISQIMAKLFDQLHEQALHPAPADLSLDLPDEPKAAVIVDPDGDEPLVGATDSRDAP	PGPT0015335_341	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_III_SECRETION_SYSTEMS	CE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015335-fliH-K02411	NA	NA
D1-36_03571	1020	fliG	COG1536	Flagellar motor switch protein FliG	ATGAGTGATAATCGAGCCGCTGTTGCCAAATTGTCCCGGGTCGACAAAGCCGCGATCCTGCTGCTGTCCCTGGGTTCGACCGACGCCGCCCAAGTGCTGCGTCACATGGGGCCCAAAGAGGTCCAGCGCGTTGGCGTGGCCATGGCCCAGATGGGCAATGTCCATCGCGAGCAGGTCGAGCAGGTCATGAGCGAGTTCGTCGACATCGTCGGCGACCAGACCAGCTTGGGCGTCGGTTCCGACGACTACGTGCGCAAGATGCTCACCCAGGCCCTGGGCGAGGACAAGGCCAACGGCCTGATCGACCGGATCCTGCTGGGTGGCAACACCAGCGGCCTGGACAGCCTCAAGTGGATGGAGCCGCGCGCGGTTGCCGACGTGATCCGTTACGAACACCCCCAGATCCAGGCGATCGTGGTGGCGTACCTCGACCCGGACCAGGCCGGCGAAGTGCTGGGCAACTTCGACCATAAGGTTCGCCTCGATATCATCCTGCGTGTGTCGTCGTTGAACACCGTGCAGCCGGCGGCCCTGAAAGAACTGAACCAGATTCTCGAGAAGCAGTTCTCGGGCAACTCCAATGCCTCGCGCACCACCTTGGGCGGTATCAAACGCGCGGCGGACATCATGAACTTCCTCGACAGTTCGATCGAAGGTCAACTGATGGACTCGATTCGCGAAGTCGACGAAGACCTGTCCGGTCAGATCGAAGACCTCATGTTCGTGTTCAACAACCTGGCCGATGTCGACGATCGTGGTATCCAGGCTCTGTTGCGCGAAGTGTCCTCCGACGTCCTGGTCCTGGCCCTCAAGGGTTCGGACGAAGGCGTCAAGGAGAAGATCTTCAAGAACATGTCCAAACGAGCGGCCGAACTGTTGCGCGACGACCTCGAGGCCAAGGGCCCGGTGCGCGTCAGCGACGTGGAAACCGCACAGAAGGAAATCCTCACCATCGCCCGCCGTATGGCCGAAGCCGGAGAAATCGTGCTCGGTGGCAAGGGCGGCGAAGAGATGATCTAA	MSDNRAAVAKLSRVDKAAILLLSLGSTDAAQVLRHMGPKEVQRVGVAMAQMGNVHREQVEQVMSEFVDIVGDQTSLGVGSDDYVRKMLTQALGEDKANGLIDRILLGGNTSGLDSLKWMEPRAVADVIRYEHPQIQAIVVAYLDPDQAGEVLGNFDHKVRLDIILRVSSLNTVQPAALKELNQILEKQFSGNSNASRTTLGGIKRAADIMNFLDSSIEGQLMDSIREVDEDLSGQIEDLMFVFNNLADVDDRGIQALLREVSSDVLVLALKGSDEGVKEKIFKNMSKRAAELLRDDLEAKGPVRVSDVETAQKEILTIARRMAEAGEIVLGGKGGEEMI	PGPT0015400_1118	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_C-RING,PGPT0015400-fliG-K02410	NA	NA
D1-36_03572	1785	fliF	COG1766	Flagellar M-ring protein	ATGGCAGAAGCAGCCGTTGATAACGTTCCAGCCAAGGCCACTCCGGTAGACGGCAAACCGCCGTTGTTCGGTCTGTCTTTCCTGGAAAACCTCTCCGAGATGACCATGCTGCGTCAGGTTGGCCTGTTGGTCGGCCTGGCTGCCAGCGTGGCGATTGGTTTCGCCGTCGTGTTGTGGTCCCAGCAGCCAGACTACCGTCCGTTGTACGGTAGCCTGGAAGGCATGGACGCCAAGCAGGTCATGGAAACCCTGGCTTCTGCCGACATTCCCTACACCGTTGAACCCAATTCTGGCGCCTTGCTGGTCAAGGCCGACGACGTGGCGCGCGCGCGCCTCAAGCTCGCTGCCGCTGGCGTGACACCGACCGATGGCAACATCGGTTTCGAGATTCTGGACAAGGACCAGGGCCTGGGCACCAGCCAGTTCATGGAAGCGACTCGTTATCGTCGCGGCCTGGAAGGCGAACTGGCGCGCACCATCTCCAGCCTCAACAACGTCAAGGCTGCCCGTGTGCACTTGGCGATCCCGAAAAGCTCGGTGTTCGTGCGCGATGAGCGCAAGCCGAGTGCTTCGGTACTGGTTGAACTGTATTCCGGCCGCTCCCTGGAGCCAGGCCAGGTCGTTGCCATCATCAACCTGGTGGCGACCAGCGTTCCCGAACTGAGCAAGTCGCAAATCACCGTGGTCGACCAGAAGGGCAACCTGCTGTCCGACCAGGCGGAAAACTCCGAACTGACCATGGCCGGCAAGCAGTACGATTACAGCCGCCGCATGGAAGGCATGTTCACCCAGCGCGTGCATAACATCCTGCAACCTATCCTGGGCAATGGCCGCTACAAGGCCGAAGTTTCGGCGGACGTGGATTTCAGTGCGGTCGAATCGACTTCCGAGCAATTCAACCCGGATCAACCGGCGTTGCGCAGCGAGCAGTCGGTGAACGAACAGCGTACCGCCAGTAATGGTCCGCAAGGCGTGCCGGGTGCCCTGAGCAACCAGCCGCCGTCGCCGGCCAGCGCGCCGCAAACCACCGGTGGCGCCACCGCCGCCGCGGGCATGGTGCAGCCCGGCCAGCCGCTGATCGATGCCAACGGCCAACAGATCATGGACCCGGCCACCGGCCAGCCGATGCTCGCGCCGTACCCGGCCGACAAGCGTCAACAATCCACCAAGAACTTCGAGCTCGACCGTTCCATCAGCCACACCAAGCAGCAGCAGGGCCGTTTGAATCGCCTGTCGGTTGCCGTCGTCGTGGACGATCAGGTCAAGATCAACCCGGCCAACGGCGAAACCAGCCGCGCGCCGTGGAGCGCCGACGAATTGGCGCGCTTCACTCGCCTGGTGCAGGACGCCGTTGGTTTCGACGCCAGCCGTGGCGACAGCGTCAGCGTGATCAACGTGCCGTTCTCCCTGGAGCGCGGTGAAGAAATCGCCGACATTCCGTTTTATTCGCAACCCTGGTTCTGGGATGTGGTCAAGCAAGTATTGGGTGTGTTGTTCATCCTGATACTGGTATTCGGCGTGTTGCGCCCGGTGCTGAACAACATCACCGGTGGCGGCAAGAACAAGCAGTTGGCAGGCTTGGGCGATGTAGAGCTGGGAGGCATGGGCGGCCTGGATGGCGAATTGGCCAACGATCGCGTCAGCCTCGGCGGGCCGCAGAGCATCCTGCTGCCAAGCCCGAGCGAAGGCTACGACGCTCAGTTGAACGCCATCAAGAGTCTGGTGGCAGAAGATCCGGGTCGTGTGGCCCAGGTCGTGAAAGAGTGGATTAACGCAGATGAGTGA	MAEAAVDNVPAKATPVDGKPPLFGLSFLENLSEMTMLRQVGLLVGLAASVAIGFAVVLWSQQPDYRPLYGSLEGMDAKQVMETLASADIPYTVEPNSGALLVKADDVARARLKLAAAGVTPTDGNIGFEILDKDQGLGTSQFMEATRYRRGLEGELARTISSLNNVKAARVHLAIPKSSVFVRDERKPSASVLVELYSGRSLEPGQVVAIINLVATSVPELSKSQITVVDQKGNLLSDQAENSELTMAGKQYDYSRRMEGMFTQRVHNILQPILGNGRYKAEVSADVDFSAVESTSEQFNPDQPALRSEQSVNEQRTASNGPQGVPGALSNQPPSPASAPQTTGGATAAAGMVQPGQPLIDANGQQIMDPATGQPMLAPYPADKRQQSTKNFELDRSISHTKQQQGRLNRLSVAVVVDDQVKINPANGETSRAPWSADELARFTRLVQDAVGFDASRGDSVSVINVPFSLERGEEIADIPFYSQPWFWDVVKQVLGVLFILILVFGVLRPVLNNITGGGKNKQLAGLGDVELGGMGGLDGELANDRVSLGGPQSILLPSPSEGYDAQLNAIKSLVAEDPGRVAQVVKEWINADE	PGPT0015430_130	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_III_SECRETION_SYSTEMS	CE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015430-fliF-K02409	NA	NA
D1-36_03573	279	fliE		Flagellar hook-basal body complex protein FliE	ATGCAAATGGACGCCATGGCCCAGCCGAAATCGGTCGCGGTCCCCCAGGTGGGTGGCAGCAGCTTTTCCGACATGCTCGGTCAGGCCGTCAATAAAGTGAACGATACCCAGCAGGCTTCGAACCAGTTGGCCAGTGCTTTCGAGATGGGTAAAAGTGGCGTCGACCTGACGGATGTAATGATCTCTTCGCAGAAAGCCAGTGTCTCGTTTCAGGCGTTGACCCAGGTACGTAACAAACTGGTTCAAGCCTACCAAGACATCATGCAGATGCCGGTCTAA	MQMDAMAQPKSVAVPQVGGSSFSDMLGQAVNKVNDTQQASNQLASAFEMGKSGVDLTDVMISSQKASVSFQALTQVRNKLVQAYQDIMQMPV	PGPT0015515_1088	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015515-fliE|lfiE-K02408	NA	NA
D1-36_03574	1383	atoC_2	COG2204	Regulatory protein AtoC	ATGGCAATCAAGGTTTTGCTGGTGGAGGACGATCGTGCCCTGCGCGAGGCGCTCGCCGATACACTGCTGTTGGCCGGGCATGATCATGCCGTCGTCGGTTCGGCGGAGGAGGCGTTGTTGGCGGTCGCCCGTGAGCCGTTCAGCCTGGTGGTCAGCGACGTCAATATGCCGGGCATGGACGGCCATCAGTTGCTCGGTTTACTGCGGGCGCGCCAGCCTCAATTGCCAGTCCTGTTGATGACGGCCCACGGTGCGGTCGAACGAGCAGTGGATGCCATGCGCCAGGGGGCGGCGGACTATCTGGTCAAGCCGTTCGAGCCCAAGGCGCTGCTGGACCTAGTGGCGCGCCATGCCCTGGGAAGCCTTGCCGTTGAAGGTGAAGGCCCGGTGGCGATCGAGCCGGCCAGTGCGCAGCTGCTGGAATTGGCCGCGCGGGTGGCACGCAGCGATTCAACCGTATTGATTTCCGGTGAGTCCGGTACGGGCAAGGAAGTCTTGGCCCGTTATATTCACCAGCAGTCCCGTCGCGCCAGCGAGCCGTTCATTGCCATCAACTGCGCGGCGATTCCCGACAACATGCTCGAAGCAACATTGTTCGGCCATGAAAAGGGTTCGTTCACCGGCGCCATCGCGGCCCAGGCTGGCAAGTTCGAACAGGCCGATGGCGGCACCATCCTGCTGGATGAAATCTCTGAGATGCCCCTGGGCCTGCAGGCAAAATTGCTGCGGGTGTTGCAGGAGCGAGAAGTGGAGCGGGTCGGCGCGCGCAAGCCCATCAGCCTAGACATCCGGGTGGTCGCGACGACCAACCGCGACCTGGCGGGCGAAGTGGCGGCGGGGCGTTTCCGGGAAGACCTTTATTACCGGCTGTCGGTTTTTCCGTTGGCCTGGCGTCCGTTACGCGAGCGCACCGCCGATATCCTGCCGCTGGCCGAGCGTCTGCTGGCCAAGCACGTCAATAAAATGAAGCACGCAACGGCGCGCCTGTCCGCCGAGGCACAGGCTTGCCTGATCGGGTATCCCTGGCCCGGCAACGTCCGGGAACTCGATAACGCGATCCAGCGGGCGCTGATCCTGCAGCAGGGCGGCTTGATCCAGCCCGAGGATTTCTGCCTGGCCGGTCCGGTGGCTTGTGCGCCTTTGCCGGTACCGCCGCTGGCGCCGGTAGTGCCTCCGGTCGAGGTAGCCGAATCAGCCGGTGCGTTGGAGGACGATCTGCGTCGTCGCGAATTCCAGATGATCATCGACACCCTGCGCGCCGAGCGCGGCCGTCGCAAGGAAGCGGCCGAGCGACTCGGCATCAGTCCCCGAACCCTGCGCTACAAGTTGGCGCAAATGCGTGATGCCGGGATGGATGTGGAGGCCTACCTTTTCGCCAGTTGA	MAIKVLLVEDDRALREALADTLLLAGHDHAVVGSAEEALLAVAREPFSLVVSDVNMPGMDGHQLLGLLRARQPQLPVLLMTAHGAVERAVDAMRQGAADYLVKPFEPKALLDLVARHALGSLAVEGEGPVAIEPASAQLLELAARVARSDSTVLISGESGTGKEVLARYIHQQSRRASEPFIAINCAAIPDNMLEATLFGHEKGSFTGAIAAQAGKFEQADGGTILLDEISEMPLGLQAKLLRVLQEREVERVGARKPISLDIRVVATTNRDLAGEVAAGRFREDLYYRLSVFPLAWRPLRERTADILPLAERLLAKHVNKMKHATARLSAEAQACLIGYPWPGNVRELDNAIQRALILQQGGLIQPEDFCLAGPVACAPLPVPPLAPVVPPVEVAESAGALEDDLRRREFQMIIDTLRAERGRRKEAAERLGISPRTLRYKLAQMRDAGMDVEAYLFAS	PGPT0015570_269	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLUM_CONTROL	MOTILITY-FLAGELLUM_REGULATION,PGPT0015570-flrC|fleR-K10943	NA	NA
D1-36_03575	1209	atoS	COG0642	Signal transduction histidine-protein kinase AtoS	ATGACCCAAGCCGCCCTGATGTCTCCTGTCCCTGAGCCGGGACTCATGCCGTCCGCCGAGCAGGCTAGCCGGCTTGGACTTGAGCAGGCGTTTTCGCTGTTTAACCAGGTCTCCAGCCAGTTATCCGACTCCTACAGCCTGCTCGAAGCCCGGGTCACCGAGCTCAAGGGTGAGCTGGCGGTGGTCAGCGCTCAGCGCATGCAGGAGTTGGCGGAAAAAGAACGCCTGGCCAATCGGCTGCAAAACCTCCTCGACCTCTTGCCTGGCGGCGTCATTGTCATTGATGAGCACGGTTTCGTGCGCGAAGCCAACCCGGCAGCGTGCGAGCTGCTCGGCCTGCCATTGGAGGGCGAGCTGTGGCGGCATGTGATTGCCCGCTGCTTCGCTCCTCGCGAAGATGACGGCCATGAGATTTCCCTCAAGGACGGTCGACGCCTTTCTATCTCGACCCGTTCGCTTGACGCCGAGCCCGGGCAGTTGGTGCTGCTCAACGACCTGACTGAAACCCGTCACCTGCAAGATCAGCTGGCTCGCCACGAGCGGCTGTCTTCCCTTGGGCGGATGGTGGCGTCGCTGGCCCATCAGATCCGTACGCCGCTGTCCGCCGCGTTGCTCTACGCCAGTCATTTGACTGAACAGCAACTGCCGATGGATACCCAGCAGCGCTTCGCCGGCCGCCTGAAGGAACGCTTGCATGAGCTGGAGCACCAGGTCCGCGACATGCTGGTGTTTGCCCGCGGCGAATTGCCGTTGACCGACCGCGTGACGCCCAAGGCGTTGCTGCAATCCTTGCAGGCCGCAGCGTCGACCCACGTACAGGGTTTGCCGATCCGCTGGCAGTGTGACAGCCGCGCGGGCGAAGTCCTGTGCAACCGCGACACACTGGTGGGCGCGGTATTGAACCTGATTGAAAACGCGATCCAGGCGGGCGACGGCGACGTTCGCCTGAAAGTCCACCTATACACCCGTGGCAGCACGTTACGCCTGTGTGTCAGCGACAACGGCAGCGGCATCGATCCAGCCGTGTTGACCCGCCTGGGTGAGCCTTTTTTCACCACCAAGACCACCGGGACGGGCCTCGGTCTGACCGTGGTCAAGGCCGTGGCGCGGGCCCATCAGGGTGAATTGCAGTTGCGCTCGCGGCCGGGGCGCGGCACGTGTGCGCTGGTCCTCCTGCCGCTGTTTTCCAGTGTGCCAAGGGTGGAGTGA	MTQAALMSPVPEPGLMPSAEQASRLGLEQAFSLFNQVSSQLSDSYSLLEARVTELKGELAVVSAQRMQELAEKERLANRLQNLLDLLPGGVIVIDEHGFVREANPAACELLGLPLEGELWRHVIARCFAPREDDGHEISLKDGRRLSISTRSLDAEPGQLVLLNDLTETRHLQDQLARHERLSSLGRMVASLAHQIRTPLSAALLYASHLTEQQLPMDTQQRFAGRLKERLHELEHQVRDMLVFARGELPLTDRVTPKALLQSLQAAASTHVQGLPIRWQCDSRAGEVLCNRDTLVGAVLNLIENAIQAGDGDVRLKVHLYTRGSTLRLCVSDNGSGIDPAVLTRLGEPFFTTKTTGTGLGLTVVKAVARAHQGELQLRSRPGRGTCALVLLPLFSSVPRVE	PGPT0015565_134	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLUM_CONTROL	MOTILITY-FLAGELLUM_REGULATION,PGPT0015565-flrB|fleS-K10942	NA	NA
D1-36_03576	1476	norR_4		Anaerobic nitric oxide reductase transcription regulator NorR	ATGTGGCGTGAAACCAAAATTCTCCTGATCGATGACGATAGCGTCCGCCGCCGCGACCTGGCGGTGATCCTTAATTTTCTCGGCGAAGAAAATTTACCCTGCGGCAGCCATGACTGGCAGCAGGCTGTCGGCTCATTGTCGTCCAGCCGTGAAGTCATTTGCGTCCTTATCGGGACCGTAAATGCCCCCGCATCGCTTTTGGGCTTGCTAAAGACACTCTCAACCTGGGATGAGTTCCTTCCCGTTTTGCTGATGGGCGAAAATTCTTCCCTAGACCTGCCGGAAGACCAGCGCCGCCGGGTACTTTCCACCTTGGAAATGCCGCCCAGCTACAGCAAATTGCTTGATTCGCTGCACCGTGCCCAGGTTTATCGCGAAATGTATGACCAGGCCCGTGAACGCGGCCGGCATCGTGAACCCAATCTTTTCCGCAGCCTTGTCGGCACCAGCCGTGCGATCCAGCACGTGCGCCAGATGATGCAGCAGGTGGCCGACACCGACGCCAGCGTGCTGATCCTGGGTGAGTCCGGCACCGGCAAGGAAGTGGTTGCGCGCAACCTGCATTACCATTCCAAGCGCCGCGAAGCGCCGTTCGTTCCAGTCAACTGCGGGGCGATCCCAGCCGAGTTGCTGGAAAGCGAATTGTTCGGCCACGAGAAGGGCGCATTCACCGGCGCAATTACCAGTCGCGCCGGGCGTTTCGAATTGGCTAACGGCGGCACGCTGTTCCTCGATGAAATCGGCGACATGCCGCTGCCGATGCAGGTCAAGCTGCTGCGCGTGCTGCAAGAGCGCACCTTTGAACGCGTGGGCAGCAACAAGACCCAGAGCGTCGACGTGCGGATCATCGCCGCGACTCACAAGAATCTGGAAAGCATGATCGAGGTCGGCAGTTTCCGCGAGGATCTCTATTACCGCCTCAACGTATTCCCGATCGAAATGGCGCCGCTGCGTGAGCGGGTCGAAGACATCCCGCTGCTGATGAACGAATTGATCTCGCGCATGGAGCATGAGAAGCGCGGTTCGATCCGCTTCAACTCTGCGGCGATCATGTCCCTCTGCCGCCATGGCTGGCCGGGCAACGTCCGCGAGTTGGCCAACCTGGTGGAGCGCATGGCGATCATGCACCCCTACGGCGTGATCGGCGTGGCCGAGTTGCCGAAGAAGTTCCGCTACGTCGACGACGAAGACGAGCAGATGGTCGACAGCTTGCGCAGCGACTTGGAAGAGCGCGTAGCGATCAATGGCCATACGCCGGACTTCACCAGTAACGCGATGCTGCCGCCGGAAGGCCTGGATCTGAAGGATTATCTGGGAGGCCTGGAGCAGGGCCTCATCCAGCAGGCGCTCGACGATGCCAACGGCATCGTCGCCCGCGCGGCGGAACGCCTGCGCATCCGTCGCACGACTCTGGTGGAAAAGATGCGCAAGTACGGCATGAGCCGTCGCGAAGGAGATGAACAGGCGGATGATTGA	MWRETKILLIDDDSVRRRDLAVILNFLGEENLPCGSHDWQQAVGSLSSSREVICVLIGTVNAPASLLGLLKTLSTWDEFLPVLLMGENSSLDLPEDQRRRVLSTLEMPPSYSKLLDSLHRAQVYREMYDQARERGRHREPNLFRSLVGTSRAIQHVRQMMQQVADTDASVLILGESGTGKEVVARNLHYHSKRREAPFVPVNCGAIPAELLESELFGHEKGAFTGAITSRAGRFELANGGTLFLDEIGDMPLPMQVKLLRVLQERTFERVGSNKTQSVDVRIIAATHKNLESMIEVGSFREDLYYRLNVFPIEMAPLRERVEDIPLLMNELISRMEHEKRGSIRFNSAAIMSLCRHGWPGNVRELANLVERMAIMHPYGVIGVAELPKKFRYVDDEDEQMVDSLRSDLEERVAINGHTPDFTSNAMLPPEGLDLKDYLGGLEQGLIQQALDDANGIVARAAERLRIRRTTLVEKMRKYGMSRREGDEQADD	PGPT0015560_143	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0015560-flrA|fleQ-K10941	NA	NA
D1-36_03577	297			hypothetical protein	ATGAGTCTTGTCTTGCAGCGCATAGAACAAACCCGAGATGCCCTGGTTGATGCCCTGGCTGAGCGCAATTGGGAGGCCATCGGTCAATTGGACCTGGCGTGCCGTTCCTGCATGGAAGACGTCATGGGCGAGTCCGAGGTGGACGAGGCGGCGTTGCGTAACAACCTGGAAGAGTTGCTTGGCGTGTATCGGCAGTTGCTGGATGCCGCGACGGGGGAACGTCAGGCGATCGTGAACGAAATGTCACAGATTAACCAGGCACAGAACGCGGCGAAGGTTTATCACCTGTTCGGATGA	MSLVLQRIEQTRDALVDALAERNWEAIGQLDLACRSCMEDVMGESEVDEAALRNNLEELLGVYRQLLDAATGERQAIVNEMSQINQAQNAAKVYHLFG	PGPT0015625_899	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLUM_CONTROL	MOTILITY-FLAGELLUM_CHAPERONES,PGPT0015625-fliT-K02423	NA	NA
D1-36_03578	396	fliS	COG1516	Flagellar secretion chaperone FliS	ATGAATCCGATGTTAGCCCTTCGCCAATACCAGAAGATTGGCGCCCAGGCGCAAACCTCCGAAGCAAGTCCCCATCGTCTCGTGCAGATGCTCATGGAAGGTGGGTTGGACCGTATCGCCCAGGCCAAGGGCGCTATGGAGCGCAAGGACATAGCCAACAAAGGCGTACTGATCAGTAAGGCCATCGGTATCGTGGGTGGCCTGCGTGAAGGCTTGGATCTGGAAAACCAGGCCGAGTCGGTAGCCGAGTTGGATGCTCTTTACACCTACATGATGAAACGTCTCGCCGAAGCCAACGCCAAGACCGATCCGAAGATCCTCGACGAAGTCGCTGATCTACTGCGCACGGTCAAGGAAGGCTGGGACGGTATCGCGCCACCTGGCCCGCAATTCTGA	MNPMLALRQYQKIGAQAQTSEASPHRLVQMLMEGGLDRIAQAKGAMERKDIANKGVLISKAIGIVGGLREGLDLENQAESVAELDALYTYMMKRLAEANAKTDPKILDEVADLLRTVKEGWDGIAPPGPQF	PGPT0015620_1549	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLUM_CONTROL	MOTILITY-FLAGELLUM_CHAPERONES,PGPT0015620-fliS-K02422	NA	NA
D1-36_03579	1437	fliD	COG1345	B-type flagellar hook-associated protein 2	ATGGCAAGTCCAATTCTACCTGGCTTGGGTTTAGGCTCTGGCCTTGATACCACTGCTATCGTCAAGGCACTGGTTGATTCTGACAAAGCGGCCAAGCAAGGTCAGATTGATCGTGCCACCAAGATCAATACGGCCAATATTTCGGGGATCGGCACCCTGAAGTCGCTGTTGGCTACCTTCCAATCCACGCTGAAAAGCCTGGGCAGCACGACTACGCCTCAATTTACCGGGGTTTCCGCGACTTCGGCCAATACCAGCGCTTTGACGGTGACAGCCGGCAACTCGGCGGTTAGCGGCACTTACACGGTAAACGTCACTCAGTTGGCAACCTCGTCAAAAGTTGCGACGGCTGCTTTCGCCGGTGGCGCTTCCAGTGCTGTGGAAACCGGTACGCTGACCATCAGACAAGGAAGCACGGATTACACCCTTGATATACCTGCTGATTCGACGCTGCAGTCGGTTCGGGACGCCATCAACAGCAAGTACTCGTCCAGCGGTCTGACCGCCAACATCGTGACCGACAGTTTTGGTTCACGCCTGGTGGTCGGCTCGACTAAAACCGGTGCGGGTAATGATATCTCCCTCAGCGGCATTACAAGCCTCGCAGCTGACGGCTCCGTAGCCATGGCCTCATCACCCACCGCGACTTCTTCGGGGTCGCTGGGGTTTGCCAAGGACGCTATTTTCACTGTTGACGGCTTGGCAATGACCAGCCCGACCAACAAGCTGGATAACGTGGTCTCGGGCTTGAGCATGACGTTACTCGTCGAGGGCACTGGCCCGACCGTCGTTACCGTCGCTACCAACGCCGACGGCCTTAAAGCTTCGATCCAGAAGTTCGTCGACGCTTATAATGCTGTTGCGAAGGCCGTGACGTCCCTGACCAAGCCGACCACAGATGCTGAGGGTAACTCTGTTCCAGCGGCCTTGACCGGTGACTCGTTGCCTCGCTCGCTTTTGGCGGCCATTCGCGCGCCTTTGTCTGAGACCGGTGCAGGTGACAAGCTGACGGTTCTTTCTCAGTTGGGAATCACCACCAATCAGACGACCGGAGCTCTGGATTTCGACAGTGGGAAATTCACCTCTGCGTTGAATGACAAACAGTTGGGTGGGGAGATCCAGACACTGTTTGTAGGTGAGAATGGCCTGCTTGAGCGCATGGATAATGCCATCAAGCCGTACACTGAAGGCAAAACGGGTGCGGGCGGTATCGGGGGCTCAGAGGCTATCCTGACTACTCGCTCCAAGAACCTCGACATCATCAAGACGAAGCTGTTCGAAGATCAGCAGGCTCTTGATCGTCGCATCGAAACGCTCACCGCCGTACTGACCAAGAAGTATAACGACATGGACACTCTGGTCGGCAAGCTGAAAGCCACTGCCAGTAACATCACCTCGATGTTTGAAGCGATGACGGCCCAACAGAAGAACAGCTGA	MASPILPGLGLGSGLDTTAIVKALVDSDKAAKQGQIDRATKINTANISGIGTLKSLLATFQSTLKSLGSTTTPQFTGVSATSANTSALTVTAGNSAVSGTYTVNVTQLATSSKVATAAFAGGASSAVETGTLTIRQGSTDYTLDIPADSTLQSVRDAINSKYSSSGLTANIVTDSFGSRLVVGSTKTGAGNDISLSGITSLAADGSVAMASSPTATSSGSLGFAKDAIFTVDGLAMTSPTNKLDNVVSGLSMTLLVEGTGPTVVTVATNADGLKASIQKFVDAYNAVAKAVTSLTKPTTDAEGNSVPAALTGDSLPRSLLAAIRAPLSETGAGDKLTVLSQLGITTNQTTGALDFDSGKFTSALNDKQLGGEIQTLFVGENGLLERMDNAIKPYTEGKTGAGGIGGSEAILTTRSKNLDIIKTKLFEDQQALDRRIETLTAVLTKKYNDMDTLVGKLKATASNITSMFEAMTAQQKNS	PGPT0015200_1368	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015200-fliD|flaB-K02407	NA	NA
D1-36_03580	366			hypothetical protein	ATGGATATGAGCGTGAAGCTGAACTTGTCTTATCCGGCGGCGAAACCGGCGCCTAGTGTGGCCGATAAGCCGGTGGAGAAGCCTCGGGCCGAGATGGCTGTGGTAGCTCCGGTCAAAGAAGTCCCTAAGGATGCTGCTGCCGAGCAGGACAAACTCAAGAAAGCCGTTCAGGAAATCGAGAAGTTCGTTCAGTCGGTCAAGCGTAACCTGGAGTTCTCTATCGATGAGCCTTCAGGCAAAGTAGTGGTCAAAGTGATCGCCAGTGGTTCCGGTGAAGTGATTCGCCAGATCCCGAACGAAGAAGTTCTGAAACTGGCCAACAGTTTGAATGATGCAAACAGCTTGTTGTTCAGCGCTGAAGCCTGA	MDMSVKLNLSYPAAKPAPSVADKPVEKPRAEMAVVAPVKEVPKDAAAEQDKLKKAVQEIEKFVQSVKRNLEFSIDEPSGKVVVKVIASGSGEVIRQIPNEEVLKLANSLNDANSLLFSAEA	PGPT0015440_669	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015440-flaG-K06603	NA	NA
D1-36_03581	852	hag	COG1344	Flagellin	ATGGCTTTAACAGTAAACACCAACGTCACATCGTTGAACGTTCAGAAGAACCTGAACAAGGCTTCCGATGCTCTGTCCACTTCGATGACCCGCCTGTCGTCCGGCCTGAAAATCAACAGTGCCAAAGACGACGCCGCCGGCCTGCAGATCTCCACTCGTATGACTTCGCAAATCCGCGGTCAGACTGTTGCGATCAAGAACGCCAACGACGGTATCTCCATCGCTCAGACCGCTGAAGGCGCTCTGCAGGAATCCACCAACATTCTGCAGCGTATGCGTGAACTGGCCGTACAGGCACGAAACGACAACAACGGTACAGCTGACCGTGATGCTCTGAACAAAGAATTTGCTCAGATGTCGGACGAGCTGACTCGTATCGCTGATTCGACCAACCTCAACGGCAAGAACCTGATCGACGGTTCCGCTGGCACCATGACCTTCCAGGTCGGTTCCAACACTGGTGCTACCAACCAGATCACTCTGACCCTGAGCGACAGCTTCGACGCTGCTACCCTGAGCGTTGACTCTGGTGCCATCGCGATCAGTGCTGCAGACAGCGCCGAAGCCGAAACCAACACCTCTGCTGCAATCGACGCGATCGACGCTGCTTTGGCGACCATCAACGCCAGCCGTGCGGACCTCGGTGCTGCCCAGAACCGTCTGACCAGCACCATCTCCAACCTGCAGAACATCAACGAAAACGCCGCTGCTGCACTGGGTCGCGTACAAGACACCGACTTCGCTGCTGAAACTGCCCAGCTGACCAAGCAGCAGACTCTGCAACAAGCTTCCACTTCGGTTCTGGCCCAGGCTAACCAACTGCCGTCCGCTGTACTGAAGCTGCTTCAGTAA	MALTVNTNVTSLNVQKNLNKASDALSTSMTRLSSGLKINSAKDDAAGLQISTRMTSQIRGQTVAIKNANDGISIAQTAEGALQESTNILQRMRELAVQARNDNNGTADRDALNKEFAQMSDELTRIADSTNLNGKNLIDGSAGTMTFQVGSNTGATNQITLTLSDSFDAATLSVDSGAIAISAADSAEAETNTSAAIDAIDAALATINASRADLGAAQNRLTSTISNLQNINENAAAALGRVQDTDFAAETAQLTKQQTLQQASTSVLAQANQLPSAVLKLLQ	PGPT0015190_3850	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015190-fliC|laf1|lafA|fla1|hag-K02406	NA	NA
D1-36_03582	270			hypothetical protein	ATGACCACGCTTGATGAGGCACTCATTGATGGCCGCGCATGCGCGCGCCTGTTTCGACTAGGGCGGGATGTTGAGGCGGGGTTGGCGATGGTCACGCTGATCGAGTCGGCGCAGCCCCTGGTCGAACGGATGCCAGGCGATGTCGTCTCGTCGTGGAACGCGCTGCTTGCCCTGATGCTCGATGATCAACAGGCGCAGAATTGGATTTCGCTGGCCGATTATCTTGAGTACGAGTGGGTCCAGCTGCTGACCGCTGGTCACTCCATCTAG	MTTLDEALIDGRACARLFRLGRDVEAGLAMVTLIESAQPLVERMPGDVVSSWNALLALMLDDQQAQNWISLADYLEYEWVQLLTAGHSI				NA	NA	NA	NA	NA
D1-36_03583	1293			hypothetical protein	ATGAGCGAGTATTTTGAGCGCAATCTACAGGTGATCCAGCGGCGTTGGCCTGCACTGGCCGAGCGCTTGCTGCTGGAAGACGTGGGTAGATTGCAAGCTGATCTGGTGGAGGGCATTGGTTCGACCCTGAGTATCAATGGAATCCAACTGACCAGCCGACATGACCGTCTTGCCGAGGCGGAGCTGCAAGCCGCCAGTCTGCCTTTGGACGCTTGCGTCGTGCACGTCTACGGAACCGGGCTGGGCGACCTGCAAAACCGTTTGCTGGAACGGGCAGGGCTCGAGCGGTTGTATGTTCATGTGCTCAATGGCGCGGTGTTTGCGTTGGTATTGCAGGTGCTGGATCAGATGCCATGGCTTGCCGATCCCAGGGTGGTATTGCTCTACGCGGGAGATCTGACGGAAATCCAGCTGCCATTCTTCGCACTCCCCGCCGAGCTGGTACTGGCCGATGATTACAGTGCCAAGATTCGCGATCGGTTGATCAGTGAAGTTCATCTGGACTTCACCAACCGAACGTTCGACCCCAAGGCTCCCGAGGTCGTCGAGCGGCTGCAATCGACGTTCAATCTTGTACAGGGCGACCGCGATGTTGCCGAGCTGTTCGGCGCATTCCAGGGGCGGGAGGTGTTCGTCGTTGCCACCGGCCCGAGCCTTGAGCACCATTTCGACAGGCTGCGCCGCGTGAGCGAGCGAGCTGAGCGACCGTTGTTGATTTGTGTCGATACGGCTTACCGACCGTTGATCAATCACGGCATCCGTCCTGATGTCGTGGTCAGCATCGACCAGCGTATCTCGGGGCGTCATCTTCCGCCTGAGCAAACCGAAGGCATTGCCCTGGTTTATCTGCCCATGGCCGACCCCTTAGTGATTCAGGCATGGCGGGGGCCGCGCTACGCCGGTTATTCCTCCAGTCCCGTCTACCGCCAGATGCGTGAGCGACTCTGCCGGGCCGAACTTCATGTGGGCGGGAGCGTGATTCATCCAGCGGTCGATTTAGCGGTGCAAATGGGCGCTGCGCAAATCACGCTGTTTGGTGCCGATTTTGCCTTCCCCCATGACAAGACTCACGCAGGATGGGGCGATGGCGATTTGGGGCCGCAGTTGGGGGCGTCAAGGCATTGGGTGCTCGATGGGCATGGACGGCGCGTCAAGACCCAGCTCAACTTTCGCAGCTACCTCTGTGAACTGGAGCGTTTCATTGCCAGGCACCCCAACGTACGCTTCTTCAACAGCAGTCGGGACGGGGCGATGATCGTCGGCACCGATTTCCATCCGGAGTACGTGCAATGA	MSEYFERNLQVIQRRWPALAERLLLEDVGRLQADLVEGIGSTLSINGIQLTSRHDRLAEAELQAASLPLDACVVHVYGTGLGDLQNRLLERAGLERLYVHVLNGAVFALVLQVLDQMPWLADPRVVLLYAGDLTEIQLPFFALPAELVLADDYSAKIRDRLISEVHLDFTNRTFDPKAPEVVERLQSTFNLVQGDRDVAELFGAFQGREVFVVATGPSLEHHFDRLRRVSERAERPLLICVDTAYRPLINHGIRPDVVVSIDQRISGRHLPPEQTEGIALVYLPMADPLVIQAWRGPRYAGYSSSPVYRQMRERLCRAELHVGGSVIHPAVDLAVQMGAAQITLFGADFAFPHDKTHAGWGDGDLGPQLGASRHWVLDGHGRRVKTQLNFRSYLCELERFIARHPNVRFFNSSRDGAMIVGTDFHPEYVQ				NA	NA	NA	NA	NA
D1-36_03584	927	fabH		3-oxoacyl-[acyl-carrier-protein] synthase 3	ATGATTGGCATAAAAAGCATTGCGAGCTACGTTCCTGTAGCCGGCGTGGACAATTACGCACAAGGTGCAAAATTTGAAAAGGATGAAGAGTTCATCCTCGGCAAGATCGGTTCCGCCTTCTTGCCACGCAAGGATGACGGCCAGGAAACCTCGGATCTGTGCGTCGAAGCGGCCAATGCGCTGTTTGCCAATAATCCCGATCTGAAGCGCGAATCCATTGACGTGCTGATCGTCGTCACCCAGAACGGCGATGAAGAAGGCTTGCCCCACACGGCGGCTATCGTTCAGGACAAGCTCGGCCTGCCCACCAGCGTAGCGGCGTTCGATATATCCCTGGGTTGCTCGGGTTATGTCTATGGCATCTACGCCATCAAGGGCTTCATGGAAGCCGCTGGCCTGAAGAATGGCCTGTTGGTAACCGCCGACCCATACTCGAAAATCGTCGACCCGGAAGATCGCAACACCACGATGCTGTTCGGTGATGCCGCCACGGCGACGTGGATGGGCGAGGATGCGCCGTGGCAACTGGGCAAGGCAAAGTTCGGCACCGACGGCTCCGGTGCGCCGCACCTGAAGGTCAGCGACGGCGTATTCTTCATGAACGGCCGCCAGGTGTTCAACTTCGCTTTGCTCAAGGTGCCGGCACATTTGCATGAGTTGCTCGCCGATTCCGATCTGCAACCCAGTGACATCGATGCGTTCTGCATTCATCAAGGCAGCGCCGCAATCGTCGATGCCGTGGCGCGGCGTTTCGAAGGCGAGCCGGAGAAGTTCATCAAGGACATGGTCGAGACCGGCAACACAGTGTCGTCGAGTATTCCGCTCTTGCTGGAGAAGCACGTGATCGATTCCGACTGGAAGCGAGTGGCGTTGAGTGGCTTTGGCGTGGGCTTGTCATGGGGCTCGGCGATCATCTATCGCCCTTGA	MIGIKSIASYVPVAGVDNYAQGAKFEKDEEFILGKIGSAFLPRKDDGQETSDLCVEAANALFANNPDLKRESIDVLIVVTQNGDEEGLPHTAAIVQDKLGLPTSVAAFDISLGCSGYVYGIYAIKGFMEAAGLKNGLLVTADPYSKIVDPEDRNTTMLFGDAATATWMGEDAPWQLGKAKFGTDGSGAPHLKVSDGVFFMNGRQVFNFALLKVPAHLHELLADSDLQPSDIDAFCIHQGSAAIVDAVARRFEGEPEKFIKDMVETGNTVSSSIPLLLEKHVIDSDWKRVALSGFGVGLSWGSAIIYRP	PGPT0008355_7507	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008355-fabH-K00648	NA	NA
D1-36_03585	2919			hypothetical protein	ATGCTTCAAAACAACGTGGCACCGCTGAGCGAGCGGTTCACCGTGGTAGTCATCTCCCACAACCGCAGCGCATTTCTGCGCCGCACATTGCATTACTACAGCAGCTATCCGTGTTCGGTACTGGTATTGGACTCGTCGGTGGAGCGCGATGATCGGATCGCCGAGGATTTTCCGTCGGTCGATTACCGCCACTTGCCTCAGTTCACCTACAAAGGGCTTCAGGAAAAATTGACCTACGGTGTCAACCAGGTCAAAACGCCTTATATGGTGTTCGCCGCCGACGACGATTTCCTGCTGCATGATGCCTTGACCGAATCGGTTGAGTTTCTCGAAGCCAACCCCGACTACGGCCTTTGCCACGGCTACGGCATCATGTATTTGTCCTGCGCAACAGAAGTCTGCTACTTCCGCCGTGACCGCAAGGTGCATGAGGACTACGACAGCGAACTGGCCGAGGACCGTGTGATCCGTTTCATGGATCAATTCCTGCCGCCGTTCTACGCCGTGACCCGCACTGACTTGCTGCAACAGTGGTACGGCATGTTGCCGCCTGGCACCAGTTTCGAGTGGCAGGAGATCGGCCATACCTTTTACTTGCTGGCTTGTGCCAAGGCGCGGATCCTGCCGATTCCGTTCGCCGTGCGCGAACTCAACTACGGCGGTTCCGAACACAACACCAACGTCCTGACGGTGTTGAGTTACAAAGACGCCAAAAGCGTCGCCGAGCGTGAGCAGTTCGCCGAGTTCCTGGCATCGGTGCCGACCCAGCTCAGCGAGCAGGCTCCGGAACGCATCAAGCAGATTGCCCTGGACAGTTTTGCGGCCATGGCCGACTGCCTGCAGCAAGGGCGTTCGCTCAAGGGCACGCAGATTATCCGTTCGGCCTGGTTGGAGGCCGGTGGTGAGCCGGTTCGTTCGTTTGGCCCACAGCAATTTGTTGAAATGCCTTTCTACAATCAACGGGTCTTCGATCTTCTGACTCACTTTGAATTCCTGCTGCATGCCATGCCAGCCGGCCGCCTTCAGCTTCAACAATTGGAAGGCATTCTGCTGCGTCAGCATGAGCTGATGCGTGTGCAACCAAACGATAACGAGCGCACCCTACGCAGCCGTCTGTGGGAAGCCCAAGGCCTGTACGCGTTCAACCGCACCGTGATCAAGCGCCTAGCCGAGTCGTTGAAAAGCAGCGATGAGCCTGATGAGGCAGTGAAACTTCAGGCCTGGGCCGAGCGCCTGGACTCGGTGCCGGGTCAGCAAGAGCGCCGGTTACTGGAAAACATGCATTCCGGCCGTTTGTTGAATTGGCTTGAGGCGCGTAATCCAGATGCGCAGCAGCTCAAGTCCATCGCGGCGCACCTGGCCGAGCATCAAGGCGGCCCGCGGTTCGGCATCTTGTTGCTGGACCTGGACGCTGACATGTTCAAGCTGCAGGCGACCTTCGACAGCCTGGTCAACGGTCATAGCAAGGCGTTCAACGTGGTGGTTTTCACCACCGGCGACCTGCCGGCGACCACCACCGTGCGCGACACCGTGCACTTCGTCAAAGTCAGCACTGGCAATTATGTCGAGCGCATCAACCAGATCATCGGGCAGTCCTCCGCCGACTGGATGGTACTGGCCGAGGCTGGCGACCAGTTCACCGAAAGCGGTCTGCTGCGCGCCAGTCTTGAACTGATCGGCGCCGATGGCGTGCGTGCCGTGGCCATGGACGAAATCCAGCGTAAGGCCGACGGCAGCCTGGTCGATGTGTTCCGTCCTGGCGTCAATCTTGACTTCCTGCAATCGGTGCCTTCGCTGATGGCGCGGCATTGGCTGATTCGTCGTGACGTGCTGGTACAGACACGCGGTTTTACGCCTGAATACACCCAGGCGTTGGAGTTGGACGTGTTGTTGCGTCTGATCGAAGAGGCGGGGCTTGCCGGCCTGGCGCATCTGTCCGAGCCGTTGCTGATCTGCAATGCCCCGGCGCAAGAGGAAAATGCCCAGGAGCGTCAAGTACTGACGCGCCACTTGGCGGCCCGGGGTTATCGCGCCCAGGTCACCTCGGCGCAACCGCTGACCTATCAAATCGACTACCAGCATGCCGAGCGGCCGTTGGTATCGATCATTCTCGAAAGCCGGGACAACTTCGAACAGATTCAACAGGCGCTGGTGAGCGTGCTGCAGCGCACCCGTTATCATCGCCATGAAATCCTGATCGCAGATAATCATAGCCAGTCCGAAGCAATGGCCCAGTGGCTCGACAGCCTGGAAGGCAAAGGCGATCGGATCCGTATCCTGCGCAGCGATCGGCGCTTGAGTGCGTCGGCTCTGTACAATTGGGCGGGCGCCCAGGCCAAGGGTGAATACCTGGTGCTGTTGTCGGCCGAGGTGCAAGTGATCAACGCCAACTGGCTCGACAGCTTGCTCAACCAGGCCCAGCGACCGGAAGTGGGGATCGTCGGCAGCAAACAGATGGATGTTCGCGGCATCACCACTCAGGCTGGCCTGGTGCTCAAGCCCGATGGCCAGGTGGCCTCGGTGTTCGTTGGCGAACGCAAGGACGCCAAGGGTTATCTCAATGGCCATCAGGCGGAACAGAACTACTCTGCGGTGTCCGGCGTTTGCCTGATGATTCGTAAGGATTTGTTCGAAGCCGTAGGCGGCCTGGACGAAGAACATTTCGCCGAGGCCTTTGCCGACGTCGACCTTTGTCTGAAAGTAGCTGACGCAGGCTATCTCACGGTCTGGACACCCCAGGCGCAGATGCTGCACGCCGGTACGGTCCCCGATGCGCCGGAGGCACTCGATGCCCTATGCAAAAAGTGGCAGGCGCGTTTCGAACACGACGCGGTCCGTAACCCGAACCTGGCCTTGACGGACAAAGGTTTTGCGCTGGGTACCGCCACGGCTGTCGACTGGGCGCGGTTGCTGGCATAG	MLQNNVAPLSERFTVVVISHNRSAFLRRTLHYYSSYPCSVLVLDSSVERDDRIAEDFPSVDYRHLPQFTYKGLQEKLTYGVNQVKTPYMVFAADDDFLLHDALTESVEFLEANPDYGLCHGYGIMYLSCATEVCYFRRDRKVHEDYDSELAEDRVIRFMDQFLPPFYAVTRTDLLQQWYGMLPPGTSFEWQEIGHTFYLLACAKARILPIPFAVRELNYGGSEHNTNVLTVLSYKDAKSVAEREQFAEFLASVPTQLSEQAPERIKQIALDSFAAMADCLQQGRSLKGTQIIRSAWLEAGGEPVRSFGPQQFVEMPFYNQRVFDLLTHFEFLLHAMPAGRLQLQQLEGILLRQHELMRVQPNDNERTLRSRLWEAQGLYAFNRTVIKRLAESLKSSDEPDEAVKLQAWAERLDSVPGQQERRLLENMHSGRLLNWLEARNPDAQQLKSIAAHLAEHQGGPRFGILLLDLDADMFKLQATFDSLVNGHSKAFNVVVFTTGDLPATTTVRDTVHFVKVSTGNYVERINQIIGQSSADWMVLAEAGDQFTESGLLRASLELIGADGVRAVAMDEIQRKADGSLVDVFRPGVNLDFLQSVPSLMARHWLIRRDVLVQTRGFTPEYTQALELDVLLRLIEEAGLAGLAHLSEPLLICNAPAQEENAQERQVLTRHLAARGYRAQVTSAQPLTYQIDYQHAERPLVSIILESRDNFEQIQQALVSVLQRTRYHRHEILIADNHSQSEAMAQWLDSLEGKGDRIRILRSDRRLSASALYNWAGAQAKGEYLVLLSAEVQVINANWLDSLLNQAQRPEVGIVGSKQMDVRGITTQAGLVLKPDGQVASVFVGERKDAKGYLNGHQAEQNYSAVSGVCLMIRKDLFEAVGGLDEEHFAEAFADVDLCLKVADAGYLTVWTPQAQMLHAGTVPDAPEALDALCKKWQARFEHDAVRNPNLALTDKGFALGTATAVDWARLLA				NA	NA	NA	NA	NA
D1-36_03586	738		COG3510	Rhamnosyl O-methyltransferase	ATGACTGACAACACTATCCATACAGCTTTCGAAGCCCAATGCCAGACCGAAATCGCCGGGCAAGGCCAAGATCAGAAACTCGTCGGCTTGGCCAAGGAGTTTTTCAACGAGTCGGCCCGCCACAAGTACAGCTACCATTTTTCATGGATGGGCCGGCCAATCATCCAACTGCCGCAGGACATGATGGCCATGCAGGAACTGATCTGGCAGATCAAGCCTGACCTGATCATCGAATGCGGTATCGCCCACGGCGGTTCGATCATCTATTACGCTTCGTTGCTGGAGTTGCAAGGCCACGGCAAAGTATTGGGCATCGACCTGGATATCCGCCCGCACAATCGCGAAGCCATCGAGAGCCATCCGATGAGCAAGCGCATCTCGATGATCGAAGGTTCGAGCATCGATCCGGCCATTGCCGAGCAGGTGCATGCAGCGGCCAAAGGCAAGAAAGTCATCCTGGTACTTGATTCCAACCACACCCATGACCACGTGCTCGAAGAGCTGCGCCTGTACGCGCCGCTGGTTTCGGTGGGCAGCTACTGCGTGGTGATGGACACGGTGGTGGAAGACATGCCGGCGGACTTCTTCCCGGATCGCCCATGGGGCCCGGGCGACAACCCGAAAACCGCTGTGTGGAAATACCTCGAAGAAAACGACAGCTTCGAAATCGACCAGCAACTGCAGAACAAGCTGCTGATCACCGTTGCGCCGGATGGTTATCTGCGTCGGGTTCGTTAA	MTDNTIHTAFEAQCQTEIAGQGQDQKLVGLAKEFFNESARHKYSYHFSWMGRPIIQLPQDMMAMQELIWQIKPDLIIECGIAHGGSIIYYASLLELQGHGKVLGIDLDIRPHNREAIESHPMSKRISMIEGSSIDPAIAEQVHAAAKGKKVILVLDSNHTHDHVLEELRLYAPLVSVGSYCVVMDTVVEDMPADFFPDRPWGPGDNPKTAVWKYLEENDSFEIDQQLQNKLLITVAPDGYLRRVR				NA	NA	NA	NA	NA
D1-36_03587	1071			hypothetical protein	ATGACGCGTGAGCTGTACCGGGCCGCCGGCCTTCCGGTTCTGCAGAACCGTACCTTCGCCGATGAGCAGTCGGCCAGAGCCTCGGCGAGTGCCGACATGGTGTTGGTTCAGGACGACGTGAGCGGGTTGGTTTTCAACCAAGCGTTCGATGCGGACAAGCTCAGCTATGACAGCGACTACCAGAATGAACAGGCCCACTCCGGTCAGTTCCAGAGGCATCTCGCTGACGTGGAAGGCATCATCGCCAGGCATTTCAGCGGTCAGGACTTGATCGAGGTCGGTTGCGGCAAAGGCTATTTCCTGGAACTGCTCAAGGAACGTGGTTATGCGATCACGGGTATCGACCCTGCCTATGAGGGCGACAACGCCGACGTGATCAAGGCGCCGTTCACTCGCGATCTGGGCCTGTCGGCCGACGCGGTCGTGCTACGTCACGTGCTGGAGCATATTCAGGATCCGGTGGCTTTCCTTGCAGAAATCTCAGCGGCCAACCAGGGCGGACAGATTTACATTGAAGTGCCGTGCCTGGACTGGATCCTGGAGCATCGTGCCTGGTTCGACCTGTTCTATGAGCACGTGAACTATTTCCGCCTCGATGACCTGCGCCGGATGTTTGGCACGGTGCATGAGGCCGGGCACCTGTTCGGCGGTCAGTACCTGTACATCGTTGCCGATCTGGCCACGTTGCGCCTGGAGCCGGAGCAACCCGTTCCAGCCTTGCAAATGCCAGACGAATTCACCGCCAGCCTCAGTCGCGCCGTGCAGATCGTTCAGGCCGCGCCGCAACAAGGCTCGGCGATCTGGGGGGCATCCTCCAAAGGGGTGATCTACTCGCTATTCCTGCAACGAGCCGGTGTAGCGGTGGACTGCGTGGTGGATATCAACCCGGCCAAGCAGGGGCGATATCTGCCGCTGTCGGGCGCCCGGGTGTCTTCGCCGCAAGAAGCCATGAATGCATTGCCCGAAGGCGCCAACCTGTTCGTAATGAATTCCAATTACCTCGAAGAGATCAAGCGGATGACCGGTGGGCGCTACGTCTACCACGCCGTTGACAGCGCTTCGTTCCAATAA	MTRELYRAAGLPVLQNRTFADEQSARASASADMVLVQDDVSGLVFNQAFDADKLSYDSDYQNEQAHSGQFQRHLADVEGIIARHFSGQDLIEVGCGKGYFLELLKERGYAITGIDPAYEGDNADVIKAPFTRDLGLSADAVVLRHVLEHIQDPVAFLAEISAANQGGQIYIEVPCLDWILEHRAWFDLFYEHVNYFRLDDLRRMFGTVHEAGHLFGGQYLYIVADLATLRLEPEQPVPALQMPDEFTASLSRAVQIVQAAPQQGSAIWGASSKGVIYSLFLQRAGVAVDCVVDINPAKQGRYLPLSGARVSSPQEAMNALPEGANLFVMNSNYLEEIKRMTGGRYVYHAVDSASFQ				NA	NA	NA	NA	NA
D1-36_03588	858	tll		dTDP-6-deoxy-L-talose 4-dehydrogenase (NAD(+))	ATGAAGGTGTTGGTGACGGGGGCAACCGGATTTGTGGGTCGACATCTCGTCGAAGCTCTGCTCGCGCGTGGTTGCCAGGTTCGGGCCGTTGCGCGTCGGGTCGAGCCGGCCGAGGCGCTGCCCTGGTTCGACAGTGTTGAATTCGTCGCGGCCGATGTCCATTCCAATGAGCTGGACGTCGCTGCATTGGTCAAGGGTGTCGATGCCTTGGCGCACCTGGCGTGGCCGGGATTGCCGAATTACCAGGCCCTTCTTCATTTCGAACATAACCTGATGGCCGATTATCAGTTCATCAAACAGGTAGTCGTGGCGGGGGTGGGACAGGTGCTGGTCACGGGTACCTGTTTTGAATATGGCCTGCAGAGCGGGCCGCTTGACGAGAAGACTGCGCCACAACCGTCCAACCCTTACGGCTTGGCAAAAAATACCTTGCGCCTGTTTCTTGAACACCTGCAACGCGAGCATTCGTTTACGTTGCAGTGGGTACGCTTGTTCTATTTGCACGGCATCGGTCAGAACCCCAACAGCCTGCTCGCGGCGCTGGACCGGGCCATCGATGCCCAAGCGCCGGTATTCGATATGTCGGGTGGCGAGCAGTTGCGCGATTACCTGGCCATCGAAACAGCGAGTGCTTATATGGCGGGTCTGCTGTCGCGGCGCGAATTCAATGGTGTCGTCAATTGCTCAAGTGGCGAACCGGTGTCGGTTCGCGCACTGGTAGAAGCACGCCTGCGCGAGCGTGGCGCGGCCATTCGCCTGAACTTGGGCCATTATCCCTATCCGACCCACGAACCCATGGCGTTCTGGGGCGTGGCCGAACGTTTGCAAACCTTGTTGGGAGCCGAACATGACGCGTGA	MKVLVTGATGFVGRHLVEALLARGCQVRAVARRVEPAEALPWFDSVEFVAADVHSNELDVAALVKGVDALAHLAWPGLPNYQALLHFEHNLMADYQFIKQVVVAGVGQVLVTGTCFEYGLQSGPLDEKTAPQPSNPYGLAKNTLRLFLEHLQREHSFTLQWVRLFYLHGIGQNPNSLLAALDRAIDAQAPVFDMSGGEQLRDYLAIETASAYMAGLLSRREFNGVVNCSSGEPVSVRALVEARLRERGAAIRLNLGHYPYPTHEPMAFWGVAERLQTLLGAEHDA				NA	NA	NA	NA	NA
D1-36_03589	1227			hypothetical protein	ATGAACTGCCGAGGTTGCGGAACTGCCCTGGCTTTGCCTTTGATCGATCTTGGTACTTCGCCGCCATCCAACGCTTATGTGCGGGCCGACCAACTGGATCAGGCCGAGCAGTGGATGCCGCTCAAGGTCGCGGTGTGCCAGCAATGCTGGTTGGTGCAGACCGAGGACTACACCCGCGCGGACACATTGTTTGACGCTGAGTACGCCTATTTCAGTTCGTTCTCCAGCACCTGGCTGGCCCACGCCGAGCGCTATGTTGCCGAGATGGCCGAGCGCTTCGAACTGAGTGCTGACAGTCGCGTGGTGGAAATTGCCGCCAACGATGGCTACCTGTTGCAGTACGTGGCCAAGCGCAGTATTCCCTGCCTGGGCGTCGAGCCGACGCGCAGCACCGCCGAGGCGGCTCGTGCCAAAGGCCTGGTGATCCGCGAGTTGTTCTTTGGTCGCGAAACGGCCATGCAATTGAACAGCGAAGGCTGGGCAGCGGATTTGATGGCGGCCAACAACGTATTGGCCCACGTGCCGGACATCAATGATTTCCTCGCCGGCTTCGCCACACTGCTCAAGCCAACCGGCGTCGCCACGTTCGAGTTTCCGCAACTGCTGACATTGATGGCCGGGCAGCAATTCGACACGCTGTACCACGAGCATTTTTCCTACTTGTCGCTGACCTCCGTGCAAACCCTGTGCGAGCGCAACGGGCTGGAAGTATTCGATGTCAGCCGGTTGTCGACCCATGGCGGTTCGTTGCGAGTCTTCGTCCAGCGTGCCGACGGAGTGCGGCGTTCGATCCAGCCCTCGGTGCAGCAACAATTGCAGGCCGAACAGGAGGCTGGCGTGAAGACCGCCGCGTACTACGCCACCCTGGCGCCGGCTGCCGAAGCGATCAAGCATGGCTTGCTGCGTTTCCTGTTGCAGGCCAAGGCCGACGGCAAGCGTGTGGTGGGCTACGGCGCAGCGGCCAAGGGCAATACATTGCTGAATTATGCGGGGGTCAGGCCCGACCTGCTGGCATGGGTAGCCGATGCCAATCCACACAAACAAGGTAAATACTTGCCGGGCAGTCGCATTCCCATAGTGGCGCCTGAGCGTATTGCTGCCGAGAAGCCTGATTACATTCTCGTCCTGCCTTGGAACCTGCTGAGCGAAGTCAGCCAGCAGTTGGAAGAGGTGCGTGGGTGGGGTGGCCGATTTGTAGTCGCCGTACCTGAGTTGACGCTCCTATGA	MNCRGCGTALALPLIDLGTSPPSNAYVRADQLDQAEQWMPLKVAVCQQCWLVQTEDYTRADTLFDAEYAYFSSFSSTWLAHAERYVAEMAERFELSADSRVVEIAANDGYLLQYVAKRSIPCLGVEPTRSTAEAARAKGLVIRELFFGRETAMQLNSEGWAADLMAANNVLAHVPDINDFLAGFATLLKPTGVATFEFPQLLTLMAGQQFDTLYHEHFSYLSLTSVQTLCERNGLEVFDVSRLSTHGGSLRVFVQRADGVRRSIQPSVQQQLQAEQEAGVKTAAYYATLAPAAEAIKHGLLRFLLQAKADGKRVVGYGAAAKGNTLLNYAGVRPDLLAWVADANPHKQGKYLPGSRIPIVAPERIAAEKPDYILVLPWNLLSEVSQQLEEVRGWGGRFVVAVPELTLL				NA	NA	NA	NA	NA
D1-36_03590	561	rfbC	COG1898	dTDP-4-dehydrorhamnose 3,5-epimerase	GTGAGCGAGTTTTCCTTGATGGCGTTGCCGCTGGCCGGTCTGTTCAGCGTTCAGCACAAACGCTTCGAAGACCAGCGCGGGCATTTCGCCCGGCTGTTCTGCGAAGGTAGCCTGAGCGCATTTGGCCAGCCATTTCATATCCGCCAGATCAACCATTCCTGCACTCGTGAGCGCGGTAGCGTGCGTGGGTTGCATTATCAGAACGCGGCGCAGCCGGAAGCCAAGCTGATCACCTGCCTGCGTGGCGAAGTCTGGGATGTAGCAGTGGATCTGCGTCCCGATTCCGAGACGTTTTTGCATTGGCATGCCGAGCACTTGAAGGCTGGCGATGGCCGCAGCCTGTTGATCCCGGCCGGGTTTGCCCATGGGTTCCAGACCCTGACCGAAGACGCCGAGCTGCTTTACTTGCACAGTGCCGACTACGCTCCCGAGCACGAGGGCGGCCTGTCGGTGAATGATCCGCGGCTGGCGATTGCCTGGCCGCTGCCTGTCAATAATCTGTCGAGCCGGGACAGCAACCATCCCTTGCTCGACGAGCGTTTCGCTGGAGTGCGTCTATGA	MSEFSLMALPLAGLFSVQHKRFEDQRGHFARLFCEGSLSAFGQPFHIRQINHSCTRERGSVRGLHYQNAAQPEAKLITCLRGEVWDVAVDLRPDSETFLHWHAEHLKAGDGRSLLIPAGFAHGFQTLTEDAELLYLHSADYAPEHEGGLSVNDPRLAIAWPLPVNNLSSRDSNHPLLDERFAGVRL	PGPT0014300_1481	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
D1-36_03591	1083	rfbG	COG0451	CDP-glucose 4,6-dehydratase	ATGGAAGCAATGGTCTTGAACCCTGAGTTCTGGCGTGGCAAGCGCGTACTGGTCACAGGCCATACCGGCTTCAAGGGCAGTTGGCTGACGCTGTGGCTGCAAAGCCTCGGGGCCAAGGTCAGTGGTTTTTCCCTCGACCCCGCCACCCAGCCGAACCTGTTCGAGTTGGCCCGCGTGAGCGAGGGCATCGATGACCGGCGCGGTGACTTGCGCGACCTCGGCGCCTTGCTGGAACTGCTGGCCGACGTGCAGCCGGAGATCGTCCTGCACCTCGCCGCTCAGCCGCTGGTGCGCGAAGGTTACCGGGACCCATTGGGCACGTATTCCAGCAACGTCATGGGCACTCTCAACCTGCTGGAAGCGGTTCGCCAGGTGGGTGGCGTCAAGGCATGTGTACTGGTTACCACCGACAAGGTCTACGCCAACCAGGAATGGTTATGGCCCTACCGGGAAAACGAGCCTTTGGGCGGTCACGATCCTTATAGCAGCAGCAAGGCCTGCTGCGAATTGCTGGCGCAGTCTTATGCCGCCTCATTCTTTTCGGCTGAGCGCTATGCCGAGCATGGCCTTGCTCTGGCCACGGCGCGGGCCGGCAATGTGCTGGGCGGCGGTGATTTCGCTCCCGAGCGCCTGATTCCCGACGTGCTTAAAGCCTGGTCGGCAGACGAGCCGGTGACGCTGCGTTATCCACAGGCCGTTCGTCCGTGGCAGCACGCCCTGGAACCGTTGGCCGGATACCTATTATTGGCTGAGTGCCTTTATCAGCAGGGACCAGAGTTCGCCGGTGCCTGGAACTTCGGCCCGGGTGAAACCGACATGTGCAGCGTCGGCGAGGTCGTCCAGCTGTTGGCCGAGCGCTGGCCGCAAGCGCCCGGCCTGCGCATCGAGCCGAGCGACTTACATGAGGCCGGCCTGTTGCGCCTGGACAGCAGTCGCGCCCGGCAGCTGCTTGGCTGGCAGCCGCGCTGGTCGTTGCAACAATGCCTGGCCCAGACCCTGGATTGGCACTTGGCATGGCAGGACGGCGATGATATGCGTCAAGTCAGCCTCGGCCAACTGAACCTGTATCGAGGGGCGTTGTGA	MEAMVLNPEFWRGKRVLVTGHTGFKGSWLTLWLQSLGAKVSGFSLDPATQPNLFELARVSEGIDDRRGDLRDLGALLELLADVQPEIVLHLAAQPLVREGYRDPLGTYSSNVMGTLNLLEAVRQVGGVKACVLVTTDKVYANQEWLWPYRENEPLGGHDPYSSSKACCELLAQSYAASFFSAERYAEHGLALATARAGNVLGGGDFAPERLIPDVLKAWSADEPVTLRYPQAVRPWQHALEPLAGYLLLAECLYQQGPEFAGAWNFGPGETDMCSVGEVVQLLAERWPQAPGLRIEPSDLHEAGLLRLDSSRARQLLGWQPRWSLQQCLAQTLDWHLAWQDGDDMRQVSLGQLNLYRGAL	PGPT0019060_318	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-PARATOSE|TRYLOSE|ABEQUOSE|ASCARYLOSE_MODIFICATION,PGPT0019060-yfnG|rfbG-K01709	NA	NA
D1-36_03592	774	rfbF	COG1208	Glucose-1-phosphate cytidylyltransferase	ATGAAGGCAGTTATCTTGGCAGGTGGTCTCGGCACGCGGATCAGCGAGGAGTCGCACCTCAAGCCCAAGCCGATGATCGAGATCGGTGGCAAGCCAATTCTTTGGCACATCATGAAGCAGTATTCCGCCCATGGAATCCACGACTTCGTGATCTGCCTGGGCTACAAGGGCTATGCCATCAAGGATTTCTTCGCCAACTACTTCCTGCACACCTCCGACGTTACCTTCGACATGTGCAACAACCGCATGGACGTTCACCAGAACTACAGTGAACCGTGGCGTGTGACCTTGATCGACACTGGCGATGACACCATGACCGGTGGGCGACTGCGTCGGGCGGCGCGTTACCTGGAGAATGAAGAGGCGTTCTGCTTCACCTATGGCGACGGTGTGTCGGATCTCAATATTGGCGCGCTGGTGGATTTTCATTTGTCCCACGGCAAGCTTGCCACGGTGACAGCCGTCCAGCCGCCTGGACGTTACGGTGCGCTGGAGCGCAACGGCGATTCTGTCCTCGGGTTTACCGAAAAACCGCGAGGCGATGGCGGTTGGATCAATGGCGGATTCTTCGTGCTTTCGCCCAAGGTGTTGCCTTATATCGCTGACGATCAGACCTCATGGGAGGCCGAACCGCTGGCGACGCTGGCAGCGCAGGAGCAACTCAACGCTTTCCAGCACGACGGTTTCTGGCATCCGATGGACACCTTGCGGGACAAGAACCACCTCGAAGCCCTGTGGCAAAGCGGCGAGGCCCCATGGAAGCAATGGTCTTGA	MKAVILAGGLGTRISEESHLKPKPMIEIGGKPILWHIMKQYSAHGIHDFVICLGYKGYAIKDFFANYFLHTSDVTFDMCNNRMDVHQNYSEPWRVTLIDTGDDTMTGGRLRRAARYLENEEAFCFTYGDGVSDLNIGALVDFHLSHGKLATVTAVQPPGRYGALERNGDSVLGFTEKPRGDGGWINGGFFVLSPKVLPYIADDQTSWEAEPLATLAAQEQLNAFQHDGFWHPMDTLRDKNHLEALWQSGEAPWKQWS	PGPT0022605_542	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
D1-36_03593	3570			hypothetical protein	GTGAAGTCACTTCCCCTCGTCAGCATCGTCATCCCCGCATACAACCCTCGGTTCTTTGACCAGGCACTGCTCAGTGCGTTGGCCCAGACCTACGAAAACGTTGAAATCATCGTTTGCGACGATTCGCCTGACGATGAGATTCGCAACATAGTCGCGTCATTCAAACAGCCGGCCCATCCGGTCCGCTATCTGAAAAATCCTCAACGGCTAGGACTGCCGGGCAATCTGTTGCGTTGTGTCGATGAGGCGCAGGGCGAGTTCATCAAGGTCTTGTGCGATGACGATCGTCTATTCGCACCGAGCGTTGCGATGCAGGCCCAGGCGTTGATGGATCATGCTGACGTGAGCGTGGTGTTCGCGCTGCGGCTGTTGTGCGACGCAGGCAACTTCATCTTGCCGCCCCGGGTGGATAACTGCCGCTTCTCGCCAAATGACGCCTTGCTCAAAGGCGACGACATGCTGGCAATTTTCGAGAGCACGCCAACCAACTTCATCGGCAATTTCAGTTCCACCCTGATGCGCCGCGCCGATGTGCTGGAATTGTTGCCTGCGTTGATCCAGGACGGTGCCGGTTTTGTCGCGGTGCTCGACTTCGCCTTGTTTGTTTGCCTGATGCGGCGCGGCAATCTGATTGCCTTGAATACCGTGTTGAGTATCGAGCGCCTCTACCCGGAGCGTTTGAGCAAGACCCCGGAAATGCTCAAGGCAGCAAAGACAGAGTGGGAATGGCTGGCGCAGATGCTTGTCGCGCGCAGCGGTGAAGCGGCGCCGGCTTCTGGTTGGGTGCGCTGCATTGATCTGGACAAGATCACCGATGAACCTCACGCCTGGCAGGAGCTCTGCGTAACCCGCGTATTGGGCAACCGCAATACCGTCGTGAATGGTCGAGTCGGGGCGCAAAGCGATAGTTATGCCGACTTCTATCGGGAATGGCTGGCCGTCCGCCGGTTCAGTGAGGTAGAACGACGCGTCATGCCCGCGCGCATCGATAGTTGGCCGTTTCGGCCGAACATCGTGCCTTTGGTCATCGACGCGCTCGGCGATGCGGAGTCGCTTGAGGCGACGCTACGCAGCATCAAGGGCCAGCTGTATTCAGCCCAGGCCGTAGTGGTGCTTTCCGATGCTCCTTGCGAAGCGGATGAACGGGTTCTGCAGTTGCCTTACCAGGCGGATTGGCCGAGTCAGCTTAATGCCATCGTTCCACAGCTGGAAGGCGCCCATTGGTTCTACGTGCTGCGCGCGGGCGACGTGCTGCGCGATTCAGCGTTGTTGATCCTGGCCGAGCGCGTTGCCGGGAGGCCGGGCATCCTTTGCGTCTACAGCGATGAAGGCGCTTTGGTGGACGGCGAGTCCTTCGAGCCAGTGTTCAAGCCGGATTTCAACCTGGACCTGATGCGCGCCTATCCCTATGTCGGTCGGACCTTGGCTTTCGAGCGTGAACGATTCATGGCCCTCGGTGGTTTTGAACCGGATCACGGTGAACTGGCGCCCCACGATCTGCTCTGGCGCCTGGTGGAAGAGGCTGGCCCTCAGACCATCGAACACATCGCGGAAATCCAGGTTGAGTCGGTCCTGAGCTTCGCCCAATGGTTGTCGCTGCCCGAGGTGATCGAGGGCAACGCCCGGTTGGTTGGCGCGCATCTGGAGCGTATCGGCATCGATCATGAGATTTCCCCGGACACCTTGCCGTTGATCAACCGCATCAGCTACCGACACGGCGAGCGCCCGCTGGTATCGATCATCATGCGTACCGGTGACTCGCTCGCCGCCTTGCAGCGTTGCGCCGAGAGCCTGATCGAACGTACGGCCTACACCCATTATGAAATTCTGATTGTTGACAGCGGCGTCCGGGACCCGGCAATGCTCGACTGGCTGGATAACATGTCGCAGTTGGGTGCGAGCATGTTGCGCGTATTGCGATACGCCGGTGATGACAGCGATGCAGCGGTGCGCAATTTTGCTGCAGGTCAGGCCCGGGGCGACTATTTGCTGTTGCTCAGTCCGCAAACGGTCATTTGTGAAAATGACTGGTTGGACGAGATGGTCAATCATGCCCAGCGTCCTGAGGTAGCGGTGGTCGGTGCGAGAATACTCAGTCCTCAAGGCACGGTTGTCGGCGGCGGGCAAGTTCTTGGGTTGGCTGGGCCGGTGGGCACGCCGTTCTACGGTGAATCCGCGGCTTCGCGCGGCTACATGCAGCGTTTGCATACGACGCAGAACTGGAGTTCGGTAAGCAGCGATTGCTTGATGGTGCGCAAGCAGGTATTCGATGAACTCGGCTGCCTGGATGCGTCCTTAACCTTCGGCCTCAGCGATGTCGATCTGTGCCTGCGCGCAGGAAAAATTGGCTACCTGGTTGTCTGGACGCCCTACGCCACGGTCATGAAAGTCGACCTGCCGTCGACCGCTGTCCAGCCTGAAGAAACCACGTTGGTGGAGCGCGAGCGCGAAATCTTCTATCGCAAATGGCTGCCGCAGATCGCCCAGGATCCAGGCTACAACCCTGCGCTGAGCCTCGGGGCGTCCAGCTTCAGCCTGGAACCTTCGCTGCGCAACAATTGGAACCCGTTCTGCCGCCGCGCCCTGCCATTGATACTTGGCTTGCCGGTCAACGCCACCGCGGTTGGGCATTATCGCGTCACGGCCCCGTTGGCCGAATTGGAGGCCGCCGGGCGGGTAATCGCTCGGGTCGCCTACGAGTCGCCTCCTACCGTCGAGATTGAGCGCCTGTCGCCGGATACGATCGTATTGCAGGGGCGCTACAGCGAAGGGGCCGCCGGCGATATTCTCAGAATGAAAAAATACTCCGGTGCCTTGCGGATTTTCGAACTCGACGATTACGTCATCCAGGCACCCAAGAAAAACACGCATGCGCGCAACAAGCCGGCCAATATCGAACAGATGCTGCGCGAAGGAATCGGGCTGTGTGATCGTGTGGTGGTGACGACACCTTCGCTCGCTGATGCCTTGTCCAGCATGCACAATGAAATTCGTATCGTGCCTAACATGTTGCCACCTGAGCCGTGGGCGAAGCTGACCAGCCGGCGCGGCACGTCCTCCAAGCCTCGGGTAGGTTGGGGGGGAGGAACCAGCCACAGCGGTGATCTGGAAATCATTGCGGACGTGGTTCGCGAGTTGGCAAACGAAGTGGAATGGGTGTTCTTCGGTATGTGCCCGGATGCACTGCGTCCGTATATTCATGAGTTCCACAGCTCGGTCGGCTTGAACACCTACCCATTCAAGCTGGCCAGCCTGAATCTCGACTTGGCGCTGGCTCCCCTGGAGTTCCACATTTTCAACGACTGCAAAAGCAACCTGCGCTTGCTGGAATACGGTGCCTGTGGCTACCCGGTCATCTGCACCGACACCAAGGCCTACGACGGTTTTCTGCCCTGCACCAAAGTGCGCAGCAACAGCACCGAGGAGTGGGTTGAAGCGATCCGCATGCACCTGGCCGATCCGGACGCGAGTTACCGCATGGGTGACGAACTGCGCGAAGCGGTGCTGCGGGACTACATGCTCAGCGGCAAGAACCTGCAGCATTGGTTGTGGGGGTGGTTGCCGGATTGA	MKSLPLVSIVIPAYNPRFFDQALLSALAQTYENVEIIVCDDSPDDEIRNIVASFKQPAHPVRYLKNPQRLGLPGNLLRCVDEAQGEFIKVLCDDDRLFAPSVAMQAQALMDHADVSVVFALRLLCDAGNFILPPRVDNCRFSPNDALLKGDDMLAIFESTPTNFIGNFSSTLMRRADVLELLPALIQDGAGFVAVLDFALFVCLMRRGNLIALNTVLSIERLYPERLSKTPEMLKAAKTEWEWLAQMLVARSGEAAPASGWVRCIDLDKITDEPHAWQELCVTRVLGNRNTVVNGRVGAQSDSYADFYREWLAVRRFSEVERRVMPARIDSWPFRPNIVPLVIDALGDAESLEATLRSIKGQLYSAQAVVVLSDAPCEADERVLQLPYQADWPSQLNAIVPQLEGAHWFYVLRAGDVLRDSALLILAERVAGRPGILCVYSDEGALVDGESFEPVFKPDFNLDLMRAYPYVGRTLAFERERFMALGGFEPDHGELAPHDLLWRLVEEAGPQTIEHIAEIQVESVLSFAQWLSLPEVIEGNARLVGAHLERIGIDHEISPDTLPLINRISYRHGERPLVSIIMRTGDSLAALQRCAESLIERTAYTHYEILIVDSGVRDPAMLDWLDNMSQLGASMLRVLRYAGDDSDAAVRNFAAGQARGDYLLLLSPQTVICENDWLDEMVNHAQRPEVAVVGARILSPQGTVVGGGQVLGLAGPVGTPFYGESAASRGYMQRLHTTQNWSSVSSDCLMVRKQVFDELGCLDASLTFGLSDVDLCLRAGKIGYLVVWTPYATVMKVDLPSTAVQPEETTLVEREREIFYRKWLPQIAQDPGYNPALSLGASSFSLEPSLRNNWNPFCRRALPLILGLPVNATAVGHYRVTAPLAELEAAGRVIARVAYESPPTVEIERLSPDTIVLQGRYSEGAAGDILRMKKYSGALRIFELDDYVIQAPKKNTHARNKPANIEQMLREGIGLCDRVVVTTPSLADALSSMHNEIRIVPNMLPPEPWAKLTSRRGTSSKPRVGWGGGTSHSGDLEIIADVVRELANEVEWVFFGMCPDALRPYIHEFHSSVGLNTYPFKLASLNLDLALAPLEFHIFNDCKSNLRLLEYGACGYPVICTDTKAYDGFLPCTKVRSNSTEEWVEAIRMHLADPDASYRMGDELREAVLRDYMLSGKNLQHWLWGWLPD				NA	NA	NA	NA	NA
D1-36_03594	1566			hypothetical protein	ATGCGCATTTCTACTTCTCAGTTTTACGAAAGCACGGCTGCGAACTACCAGAAGAACTTCGCCAACGTGGTCAAGACCAGCGAAGAGGCCAGCAGCCTGGTGCGCGTGAACACCGCCGCCGATGATCCGGTGGGCGCTTCGCGTCTGCTGCAATTGGGTACCCAGGCTTCGATGCTGGCCCAGTACGAAACCAACGCCAACACCATCAAGGCCACCCTGGGTACCACCGAAGCGGTGATGACCAGCATCGGCAACGTGCTGCAGCGCGCCAAGGAACTGGCTGTCGGTGCCGGTAACGCCGGTTACACCGACGCTGACCGTCAGGCCAACGCTTCGGAGCTGGCGCAGATCGAAGAACAGTTGCTGAGCCTGATGAACAGCAAGGACGAAAACGGAAAGTACATCTTCTCCGGTTCCAAGGGTGACACCGTCCCGTTCACCCGCAACACCGATGGTAGCTACAGCTACAACGGCGACCAGGTGACGCTCGACCTGCCGGTCGGTGACACCATGTCGATGGCCACCAACAGCACCGGCTGGGAGGTGTTCCAGCAAGCCGTCAACACCAGCCGCAGCCAGGTCACTCGGACCGCGCCGCCGGTGGATGACGGGCGCGTGGTCTTGTCCGACGGCCAGGTTTCCTCCAGCGTTAGCTATAACAGTAAGTTCCGCAGCGGCGAGCCGTACACCGTGGAGTTCACCAGCGGCACGCAACTGAGAATCACCGACTCGCTCGGCAATGACGTGACCGCCGAAGCGAGCCAGGGCGGCGCGTTCGACCCTAACAGCAAGAGCGGGCAGGCGGTCCAGTTCCGTGGTGTGGAGCTGACCCTGAACATCAATCTGCAAACGGGCGATGTCCCTGGCACGGTGTTGCCAGGCCATACCTTCACCCTGGCTGCCAAGCCGGACACCTTTGTTCCGATGCGCAGTCCTGGCAACCCGACCGCGGTGCAAGTCGCCGGCAGCGAAATCACCGATCCGGTGGCCTACCACGCCAGTTTCCCTACGGGGGCGGCCGTGTTGAAGTTCACCAGCGCCACCGATTTCGATCTTTACGCAGCGCCGCTGACCGCTAACAGCCAACCCGTGTCCAGCGGCACCCTGGCCGGTAACGTAGCCACCGCTTCGGGCGTGAGCTTCACTCTGGACGGCACGCCAGCCGCAGACGATCAGTTCAGCATCGCGGTCAACACCCACGAAACCCAGAACATCCTGGACACCGTGAATCAGCTGAAAACCGCGTTGAACACACCGACCAACAACGATCCGATAGCGTTGCAGAAACTGCAGGCTTCGCTGGCGTCCGGCATCGGCAACCTGGCAAGCGGCACCGATCAATTGTCCAGCGCCCTGAGTTCCGTGGGTGGTCGTGGTGCCGCTCTGGACACCCAGAGCGACACCAACCAGAGCTTGATGCTGGCCAATAAACAGACCCAATCGTCGATCCGTGACTCCGATTCGGCCGAGGTATTAACCCGCCTGACATTGCAACAGACCATGCTGCAAGCCTCGCAACTGGCGTTCAGCAAGATCGCCCAGTTGGGTCTGTTCAACAAGATCTGA	MRISTSQFYESTAANYQKNFANVVKTSEEASSLVRVNTAADDPVGASRLLQLGTQASMLAQYETNANTIKATLGTTEAVMTSIGNVLQRAKELAVGAGNAGYTDADRQANASELAQIEEQLLSLMNSKDENGKYIFSGSKGDTVPFTRNTDGSYSYNGDQVTLDLPVGDTMSMATNSTGWEVFQQAVNTSRSQVTRTAPPVDDGRVVLSDGQVSSSVSYNSKFRSGEPYTVEFTSGTQLRITDSLGNDVTAEASQGGAFDPNSKSGQAVQFRGVELTLNINLQTGDVPGTVLPGHTFTLAAKPDTFVPMRSPGNPTAVQVAGSEITDPVAYHASFPTGAAVLKFTSATDFDLYAAPLTANSQPVSSGTLAGNVATASGVSFTLDGTPAADDQFSIAVNTHETQNILDTVNQLKTALNTPTNNDPIALQKLQASLASGIGNLASGTDQLSSALSSVGGRGAALDTQSDTNQSLMLANKQTQSSIRDSDSAEVLTRLTLQQTMLQASQLAFSKIAQLGLFNKI	PGPT0015505_346	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015505-flgL-K02397	NA	NA
D1-36_03595	2067			hypothetical protein	ATGAGTTTGCTCAATATCGGGATGTCGGGTCTGTCCGCAAGCCAGACCGCACTGGTGACCACGGGTAACAACATCGCCAACGTCGATACCGCAGGGTATTCGCGTCAGCAGACCGTGCAGACCACCAAGGCGTCGAACCAGTACGGCAACGTGTTCATCGGCTCCGGCACGACCCTGGCGGACGTACGCCGGGTCTACAACTCCTATCTTGAAGCACAACTGAAGACCACCACCTCGCTCAACAGCGATGCGGCGGCCTACCAGGGGCAGATCACACCGCTTGATTCCCTGCTGTCGGACAGCGGCACTGGCCTCAACGGCGCGCTGACCAAGTTCTTCGCCTCGGTGCAGAACGTCAACGCCAAGCCGGGCGACGACGCCTCTCGCCAGTTGCTGCTCAGCGATGCACAGGCCTTGAGCAACCGTTTCAATTCGGTAGCCAGCCAGTTGACGGCGCAGAGCGAGAACATCAACGGCAACCTGTCGAACATGGTCGAGCAGATCAACAGCCTGGCCACCACCGTCGCCCAGTTGAACAAGAAAATCGCCGAAGTCTCCAACGCCGGCGGCGCGCCGAACGACCTGCTCGATGCACGCAGCGAGACCATTCGCCAGCTGTCCACCTTCACCGGCACTCAGGTCGTGGAGAACGGCAGCAGCCTGGACATCTACCTGGGATCCGGCCAGCCACTGGTCATGGGCAATATCACCAATAAACTGGAAGCGGTGCCGGACAAGAACGACCCCGGTCGCATTGGCATCCAGCTCAACAGCGGCTCCAGCGTCATGGACATCACCCAGGTGATGACCGGCGGTGAAATCGGTGGCCTGATGCGCTACCGCAGCACCGTCCTCGACCCGGCCATGAACGAGCTGGGCCGTGTGGCGCTGGTCGTCGCCGACCAGATGAACAGCATCCAGGCCTCGGGTATCGACAAGAACGGCGCATTCGGTTCCAACCTGTTCAGCAGCATCAACAGTGCAGCCCAGATGAGCCAGCGCAGCGTTGCCTCGCTGGGCAACAGCGCCGGGTCCGGCAACTTCAACGTGTCGATCGAAGACACGGGCAAGCTGACGACCAACGACTACAAGATCACCTTCACCAGCGCCACCGACTACACCGTCCAGCGTCTGCCCGATAACACGCCGATGGGTGCGTTCAACACCGCGACCACGCCGGCACCGGTGGTCGATGGTTTCTCGCTGACCTTCGCCAACGGCACCGCGGCCGTCGGTGACTCGTTCAAGATCACCCCGACCCGCAACGCCGCGGGCAGCATCAAGACCGAGATGACCGACTCCAAGCGGCTGGCGATCGCTGCGCCGCTGGGCGCCGCCATCACGCCGGGCGGCAGCGGCACGCTGACCATTCCGGCCAGCGGCCAGCCGACCATGACCACCAAGCTGGACATCTACGACGAAGCCACTACCAGCATCATCCAGAACGGCATCAAGAATTCGATGCCGGTCAAAGTGGTGTTCGGGGCGACGTCGGCCGGTGGCACCAGCCAGGCTTATCAGTTGCTCGATGCCAAGGGCGGCGTGATCAGCAGTGGCACCATCAAACCCGGTCAGAGCAACACCCTGAGCCTGAGCGTTCCGCTCAAGGACGCCACCGGCGCCCCGATCATGGATTCGTCCGTACCGCCGGTGCAGCGTACCGTCACGTTCGATATGTCCATCGCCGGCGCGCCTTCCGACGGTGCCGGCATCGATATAAGCCTCAGTCAGCCTGGTAGCCTTGATAACCGTAACGGTACCGTGCTCGCTGGCTTGCAGACCGCCAAAACCGTGGATACCGGTTCGGCCAGCAAGGGCATTTCCTTGAACGATGCCTACGGCAAACTGGTGGAAGGCGTCGGTGCCAGGGCCGCCCAAGGCAAGCTGGACAGCGCCGCCACCGGCGCGATCCTGGACAACGCCAAGAATGCCCGCGACTCGCTATCGGGCGTCGACCTGGATGAAGAGACCGGCAACCTGGTCAAGTTCCAGCAGTACTACACCGCGTCTTCGCAGATCATCAAGGCTGCGCAGGAAATCTTCAGCACATTGATCAACAGTCTTTAA	MSLLNIGMSGLSASQTALVTTGNNIANVDTAGYSRQQTVQTTKASNQYGNVFIGSGTTLADVRRVYNSYLEAQLKTTTSLNSDAAAYQGQITPLDSLLSDSGTGLNGALTKFFASVQNVNAKPGDDASRQLLLSDAQALSNRFNSVASQLTAQSENINGNLSNMVEQINSLATTVAQLNKKIAEVSNAGGAPNDLLDARSETIRQLSTFTGTQVVENGSSLDIYLGSGQPLVMGNITNKLEAVPDKNDPGRIGIQLNSGSSVMDITQVMTGGEIGGLMRYRSTVLDPAMNELGRVALVVADQMNSIQASGIDKNGAFGSNLFSSINSAAQMSQRSVASLGNSAGSGNFNVSIEDTGKLTTNDYKITFTSATDYTVQRLPDNTPMGAFNTATTPAPVVDGFSLTFANGTAAVGDSFKITPTRNAAGSIKTEMTDSKRLAIAAPLGAAITPGGSGTLTIPASGQPTMTTKLDIYDEATTSIIQNGIKNSMPVKVVFGATSAGGTSQAYQLLDAKGGVISSGTIKPGQSNTLSLSVPLKDATGAPIMDSSVPPVQRTVTFDMSIAGAPSDGAGIDISLSQPGSLDNRNGTVLAGLQTAKTVDTGSASKGISLNDAYGKLVEGVGARAAQGKLDSAATGAILDNAKNARDSLSGVDLDEETGNLVKFQQYYTASSQIIKAAQEIFSTLINSL	PGPT0015195_242	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015195-flgK-K02396	NA	NA
D1-36_03596	1302			hypothetical protein	ATGGTGGATATGCGCAAAGGCGCCTTGATCAGTGGGGATTCAGCGTCCTATTCGGACCTCAATCGCCTCAATCAGCTCAAGGTCGGCGACAAGAACAGCGAAGGCAACCTGCGCAAAGTGGCGCAGGAGTTCGAGTCGCTGTTCCTCGGCGAAATGCTCAAGTCCATGCGTTCGGCCACCGAGGCCCTGGGCAAGGACAATCCGATGAACACGCCGGAAGCCAAGCAATACCAGGAGATGTACGACCAGCAGTTGGCCGTTTCCATGTCCCGCGAGGGCGGCGGTATCGGCCTGGCTGACGTGCTGCTGCGCCAGATGTCGAAGAACAAACCGCTGGCCTCGGGCGAGGCGGCCACCTTATCGGCCGCCAAGCAGCAAGAGGCGCTGGACAAGGCCAAGGCGCCAGTACCCACGCCTGTGGCGGCCGGAACGCTGCCCGACGGGCCGTTGTCGCGCAGCAACGGCCAGCGCCCACTCTGGGCGTCGCGGGCCGTGAGCGCGCCGCAAGGTGCCGAGGGCATTCACCGTAACGACATGGAATTGATCAACCAGCGCCGCCTGGCCCTGCCACCGAAACTCGCCGACCGCTTGCTCGCGGGGTTGGTGCCTTCGGCATCGGTCAAGCCTGAAGCCATGGCGCAGAACGTCTTGCCTGATCGCGCCATTGCCGCCGTCAAGCCGGCTTCCGGTGAGCTGGCCAACGGTGACTGGCTGGCCGCGCTCAAGGCTGCCGAGCCCAAAGGCGACATGCAAGTCTATGGCCGCGCCGTGGCCCAGCCACCGTTGGCGCCGGCGCGCAAGGCCTTCCGCGATGCCGATGAATTCGTCAACGCCATGCTGCCAATGGCCAAGGAAGCAGCGGACCGTATCGGCGTCGACCCTCGTTACCTGGTGGCCCAGGCTGCTCTCGAAACCGGTTGGGGCAAATCGGTGATGCGCCAGCCCGATGGCAGCAGCAGCCACAACCTGTTCGGCATCAAGGCCAGCGCGAACTGGAAGGGCGATTCGGCGCGGGCGATCACCAGCGAATTCCGCAATGGCGAGATGGTCAAGGAGACGGCCGAGTTCCGTTCCTACGCCTCGTACCGTGACAGTTTCCATGACCTGGTCAATCTGCTGCAAAGCAACAGTCGCTATCAAGCTGTGCTGAAGTCGGCCGATAACCCGGAACAGTTTGTACGCGAGTTGCAGAAGGCCGGTTACGCCACCGACCCGAACTACGCCAGCAAGATTTCGAACATAGCCCGGCAGATGACGAGTTACCAAAACTACGCTTCGGCTGGTGCCACCACGACTTTATAA	MVDMRKGALISGDSASYSDLNRLNQLKVGDKNSEGNLRKVAQEFESLFLGEMLKSMRSATEALGKDNPMNTPEAKQYQEMYDQQLAVSMSREGGGIGLADVLLRQMSKNKPLASGEAATLSAAKQQEALDKAKAPVPTPVAAGTLPDGPLSRSNGQRPLWASRAVSAPQGAEGIHRNDMELINQRRLALPPKLADRLLAGLVPSASVKPEAMAQNVLPDRAIAAVKPASGELANGDWLAALKAAEPKGDMQVYGRAVAQPPLAPARKAFRDADEFVNAMLPMAKEAADRIGVDPRYLVAQAALETGWGKSVMRQPDGSSSHNLFGIKASANWKGDSARAITSEFRNGEMVKETAEFRSYASYRDSFHDLVNLLQSNSRYQAVLKSADNPEQFVRELQKAGYATDPNYASKISNIARQMTSYQNYASAGATTTL	PGPT0015500_13	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015500-flgJ-K02395	NA	NA
D1-36_03597	1107	flgI		Flagellar P-ring protein	TTGAATCTTAAACAGCTGTTGTTCGGTGCCCTGGTGATGTCGGCAGCCTTCAGCGCTCAAGCCGAGCGCCTGAAGGACATCGCCAGTATTTCCGGCGTGCGTTCCAACCAGTTGATCGGCTACGGCCTGGTCGTTGGCCTCAATGGCACCGGTGACCAGACCACACAGACACCGTTCACCCTGCAGACCTTCAACAACATGCTGTCGCAGTTCGGCATCAAGGTGCCGGCGGGCTCCGGCAACGTGCAGTTGAAAAACGTAGCGGCGGTGTCGGTCAGTGCCGATCTGCCGGCCTTCGCCAAGCCCGGCCAGCAGGTGGACATCACCGTTTCGTCCATCGGTAACTCCAAGAGCTTGCGCGGCGGCACCTTGTTGCTGACCCCGCTCAAGGGTATCGACGGCAACGTCTACGCCATCGCCCAGGGCAACCTGGTGGTGGGCGGTTTCGATGCCGAAGGGCGCGACGGTTCGAAGATCACCGTCAACGTTCCGTCGGCCGGGCGCATCCCTGGCGGCGCGTCGGTAGAACGTGCGGTGCCGAGCGGTTTCAACCAGGGCAACAGCCTGACGCTGAACCTCAATCGTTCCGACTTCACCACGGCCAAGCGCATCGTCGACAAGATCAATGACATGCTCGGCCCAGGCGTGGCCCAGGCCATCGACGGCGGTTCGATCCGCGTCACCGCGCCACTGGATCCGAGCCAGCGGGTCGACTACCTGTCGATCCTGGAAAACCTCGAAGTCGACCCGGGCCAGGCGGTGGCGAAAGTCATCATCAACTCGCGCACCGGCACCATCGTGATTGGCCAGAACGTCAAGGTTTCGCCAGCCGCCGTGACCCACGGCAGCCTGACCGTGACCATCACCGAAGACCCGATCGTCAGCCAGCCGGGCCCATTGTCCAACGGCCAGACCGCCGTGGTCCCGCGTTCGCGGGTCAATGCCGAGCAGGAAGCCAAGCCGATGTTCAAGTTCGGCCCGGGCACGACCCTGGATGAAATCGTCCGGGCGGTGAACCAGGTCGGCGCGGCACCGGGCGACCTGATGGCGATTCTCGAAGCCTTGAAGCAGGCCGGCGCGTTGCAAGCCGACCTGATCGTGATTTAA	MNLKQLLFGALVMSAAFSAQAERLKDIASISGVRSNQLIGYGLVVGLNGTGDQTTQTPFTLQTFNNMLSQFGIKVPAGSGNVQLKNVAAVSVSADLPAFAKPGQQVDITVSSIGNSKSLRGGTLLLTPLKGIDGNVYAIAQGNLVVGGFDAEGRDGSKITVNVPSAGRIPGGASVERAVPSGFNQGNSLTLNLNRSDFTTAKRIVDKINDMLGPGVAQAIDGGSIRVTAPLDPSQRVDYLSILENLEVDPGQAVAKVIINSRTGTIVIGQNVKVSPAAVTHGSLTVTITEDPIVSQPGPLSNGQTAVVPRSRVNAEQEAKPMFKFGPGTTLDEIVRAVNQVGAAPGDLMAILEALKQAGALQADLIVI	PGPT0015425_1201	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_M|S|P|L-RINGS,PGPT0015425-flgI-K02394	NA	NA
D1-36_03598	696	flgH		Flagellar L-ring protein	ATGAATCGCTTCGTATCTGTTCTGGCATTGAGTGGGATCACCGCATTGGCGGGCTGTGTCGCGCCAACGCCAAGGCCCAATGACCCGTATTACGCTCCGGTGTTGCCGCGCACACCGTTGCCGGCGGCGGCCAATAACGGTTCGATCTACCAGGCCGGTTTCGAGCAGAACCTGTACAGCGATCGCAAGGCTTTCCGGGTCGGTGACATCATCACCATCACCCTGAACGAGCGGACCCAGGCCAGCAAGAACGCCAACTCGCAGATCGACAAGACCAGCGAGACCAGCGTCGGCCTGACATCGCTGTTCGGCTCGGGCCTGACCACCAACAATCCGATCGGCAGCAACGATCTCAGCCTCAACGCCGGCTATGGCGCCGACCGTGCCACCAAGGGCGACAGCAAGTCGGGACAGAGCAACAGCCTGACCGGTTCGATCACCGTGACGGTGGCCGACGTCCTGCCCAACGGCATCATCGTCGTACGGGGTGAAAAGTGGCTGACGCTCAACACCGGTGACGAACTGGTACGCATCGCCGGCATGGTTCGGGCCGATGACATCGCCACCGATAACACCGTTTCGTCCACTCGCGTGGCCGATGCGCGCATCACCTATTCGGGCACTGGTGCCTTTGCCGATGCGAGTCAGCCAGGTTGGTTCGACCGCTTCTTCCTCAGCCCGAAGTTCCCTTTCTAG	MNRFVSVLALSGITALAGCVAPTPRPNDPYYAPVLPRTPLPAAANNGSIYQAGFEQNLYSDRKAFRVGDIITITLNERTQASKNANSQIDKTSETSVGLTSLFGSGLTTNNPIGSNDLSLNAGYGADRATKGDSKSGQSNSLTGSITVTVADVLPNGIIVVRGEKWLTLNTGDELVRIAGMVRADDIATDNTVSSTRVADARITYSGTGAFADASQPGWFDRFFLSPKFPF	PGPT0015420_1163	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_M|S|P|L-RINGS,PGPT0015420-flgH-K02393	NA	NA
D1-36_03599	786	flgG	COG4786	Flagellar basal-body rod protein FlgG	ATGCTTCCGGCTCTTTGGGTTGCCAAAACAGGTCTGTCCGCCCAGGACACAAACCTGTCCACCATTTCCAACAACCTGGCGAACGTCTCGACCACGGGTTTCAAACGTGATCGCGCCGAGTTCCAGGACCTGCTGTACCAGGTAAAACGCCAGCCTGGCGCCCAGTCGACCCAGGACAGCGAATTGCCGTCGGGCCTGCAAGTGGGTACCGGTGTGCGCATCGTCGGCACCCAGAAAAACTTCAACGCCGGCAGCCTGCAGACCACCGAGCAGCCGCTGGACATGGCCATCGACGGTCGCGGTTTCTTCCAGATCCTGCAGCCGGACGGCACCACGTCCTACACTCGTGACGGTACCTTCCACCTCGATTCCAATGGCCAGATCGTCAACGCCAGTGGTTTCGCCCTGGAACCGGCCATCATCATCCCGAACGATGCCCAGACCTTCACCGTGGGCCGCGACGGCACCGTGTCCATCACCGTGGCGGGCAACCCGGCCTCCCAGGTGATCGGCAACCTGCAGACCGCCGATTTCATTAACCCGGCCGGCCTGCAAGCGGTGGGTAACAACCTGTTCATGGAAACCGCTGCCAGCGGCGCGCCACAAGTCGGCACGCCTGGCCTGAACGGCTTCGGCACCACGCTGCAGAACACCCTGGAAACGTCGAACGTGAGCACCGTTGAGGAGATGGTCAACATGATCACCACCCAGCGCGCCTACGAGATGAACTCCAAAGTGATCTCCACCGCCGACCAGATGCTCTCGTTCGTCACGCAGAACCTGTAA	MLPALWVAKTGLSAQDTNLSTISNNLANVSTTGFKRDRAEFQDLLYQVKRQPGAQSTQDSELPSGLQVGTGVRIVGTQKNFNAGSLQTTEQPLDMAIDGRGFFQILQPDGTTSYTRDGTFHLDSNGQIVNASGFALEPAIIIPNDAQTFTVGRDGTVSITVAGNPASQVIGNLQTADFINPAGLQAVGNNLFMETAASGAPQVGTPGLNGFGTTLQNTLETSNVSTVEEMVNMITTQRAYEMNSKVISTADQMLSFVTQNL	PGPT0015495_1287	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015495-flgG-K02392	NA	NA
D1-36_03600	738	flgF	COG4787	Flagellar basal-body rod protein FlgF	GTGGACAAGTACCTTTATGTGGCAATGACCGGCGCCAGCCAGAACGCACTGGCGCAACGGGCCCATGCCAACAACCTGGCGAACATCTCCACCAATGGTTTTCAGAAAGACCTGGAGCAGGCACGTTCGATGCCGGTGTTCGGCGACAGCTTTCCGGCGCGGGCGTTTGCCATGTCCGAGCGGCCTGCCACTGACTTCACCCCGGGAGCGCTGGTTGAAACCGGTCGCGACCTGGACGTGGCGGTCAGCGGGCCGGGCTGGATGGCCGTGCAGAATCCCGACGGCGGTGAAAGCTACGTGCGTACCGGCAGCCTCAACGTTGACGCCTTGGGTGTGCTGCGGGCCGGCAACGGCATGCCGGTAATGGGCAATGGCGGTCCGATCGCCGTGCCACCAGAGCAGAAAATCGAAATCGGGCAGGACGGCACCATCAGCATTCGCGCCATGGGCGAAGGCCCGCGGGTGATGGCTGAGGTGGACCGAATCAAACTGGTCAACCCTGACCTCAAGAACATGACCAAGGGCCTCGACGGCTCGATCCGTACCAAGGACGGCCAGCCCGCGCCCATCGATGCCAACGTACAACTGGTGTCGGGCTTCCAGGAAGCGAGCAACGTCAATGCCGTGGATGAAATGACTTCGGTGCTGGCCCTGGCCAAGCAGTTCGAGCTTCACGTCAAGATGATGAACACCGCCAAAGAGGGCGATGAGGCCATGGCTCGGGTCTTGCAGATCTAA	MDKYLYVAMTGASQNALAQRAHANNLANISTNGFQKDLEQARSMPVFGDSFPARAFAMSERPATDFTPGALVETGRDLDVAVSGPGWMAVQNPDGGESYVRTGSLNVDALGVLRAGNGMPVMGNGGPIAVPPEQKIEIGQDGTISIRAMGEGPRVMAEVDRIKLVNPDLKNMTKGLDGSIRTKDGQPAPIDANVQLVSGFQEASNVNAVDEMTSVLALAKQFELHVKMMNTAKEGDEAMARVLQI	PGPT0015490_1913	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015490-flgF-K02391	NA	NA
D1-36_03601	1563	tyrR_2		Transcriptional regulatory protein TyrR	ATGCGTATCAAAGTCCATTGCCAGAACCGCATCGGCATCCTGCGGGACATTCTCAATCTGCTGGTGGAATACGGCATCAACGTCGCCCGGGGCGAGGTCGGTGGCGAGCATGGCAATGCGATCTACCTGCACTGCCCGAACCTGATCAACATTCAGTTCCAGGCGTTGCGTCCGAAGTTCGAAGGCATCGCCGGGGTGTTCGGCGTCAAGCGCGTAGGGCTGATGCCGAGCGAGCGTCGGCACATGGAGCTCAATGCCTTGCTTGGCGCCTTGGAGTTTCCGGTGTTGTCCATCGACATGGGCGGCTCCATCGTCGCGGCCAACCGGGCGGCGGCGCAGTTGCTCGGGGTGCGGGTCGACGAGGTGCCGGGGATTCCCTTGTCCCGCTACGCCGAGGACTTCGACCTGCCGGAACTGGTGCGCGCCAACCAATCGCGGATCAATGGCCTGCGGGTCAAGGTCAAGGGCGATGTGTTCCTGGCGGACATCGCGCCGTTGCAATCGGAGCACGACGACAGCGAGGCGATGGCCGGCGCGGTGCTGACCTTGCACCGCGCCGACCGGGTGGGCGAGCGCATCTATAACGTGCGCAAGCAGGAACTGCGCGGCTTCGACAGTATTTTCCAGAGTTCGAAGGTTATGGCGGCGGTGGTCCGCGAGGCCCGGCGCATGGCACCGCTGGACGCGCCGCTATTGATAGAAGGCGAAACCGGAACCGGCAAGGAATTGCTGGCCCGTGCCTGTCACCTGGCAAGCCCACGGGGGCAATCGCCGTTGATGGCGCTCAACTGCGCCGGATTACCGGAGTCCATGGCCGAGACTGAACTGTTCGGCTACGGGCCCGGCGCCTTCGAAGGGGCGCGGGCCGAAGGCAAGCTCGGGCTGCTGGAGCTGACGGCGGGCGGTACGCTGTTTCTCGACGGTGTCGGAGAAATGAGTCCGCGCCTGCAGGTGAAATTGCTGCGTTTCCTACAGGACGGTTGCTTCCGCCGCGTAGGCAGTGACGAAGAGGTCTACCTGGATGTCAGGGTAATCTGCGCGACCCAGGTCGATTTATCCGAACTCTGTGCCCGGGGAGAATTCCGTCAAGATTTGTACCATCGCCTGAATGTGCTTTCTCTGCACATCCCGCCGCTGCGCGAATGCCTCGACGGGCTGGCCCCGCTGGTCGAGCATTTCCTCGACCAGGCCAGTCGCCAGATTGGCTGCCCACTGCCAAGACTGGCCCCAGCGGCGATGGACCGGCTCAGTCACTACCACTGGCCAGGCAATGTCCGGCAACTGGAAAACGTGCTGTTCCAGGCCGTTTCCCTATGCGACGGCGGGAAGGTCAAGGCCGAACACATTCGCCTGCCGGACTACGGCGTGCGCCAACCCCTCGGTGACTTTTCCCTCGACGGAGGGCTGGACGAGATCGTCGGCCGTTTCGAGAAGGCCGTGCTCGAGCGCCTGTATTCCGAACACCCGAGCAGCCGGCAACTGGGCAAGCGGCTGGGGGTTTCCCATACGACGATTGCCAATAAGTTGCGTGAGTATGAGGTGGGCAAAGAACCCGGCGTGTGA	MRIKVHCQNRIGILRDILNLLVEYGINVARGEVGGEHGNAIYLHCPNLINIQFQALRPKFEGIAGVFGVKRVGLMPSERRHMELNALLGALEFPVLSIDMGGSIVAANRAAAQLLGVRVDEVPGIPLSRYAEDFDLPELVRANQSRINGLRVKVKGDVFLADIAPLQSEHDDSEAMAGAVLTLHRADRVGERIYNVRKQELRGFDSIFQSSKVMAAVVREARRMAPLDAPLLIEGETGTGKELLARACHLASPRGQSPLMALNCAGLPESMAETELFGYGPGAFEGARAEGKLGLLELTAGGTLFLDGVGEMSPRLQVKLLRFLQDGCFRRVGSDEEVYLDVRVICATQVDLSELCARGEFRQDLYHRLNVLSLHIPPLRECLDGLAPLVEHFLDQASRQIGCPLPRLAPAAMDRLSHYHWPGNVRQLENVLFQAVSLCDGGKVKAEHIRLPDYGVRQPLGDFSLDGGLDEIVGRFEKAVLERLYSEHPSSRQLGKRLGVSHTTIANKLREYEVGKEPGV				NA	NA	NA	NA	NA
D1-36_03602	786	phhA	COG3186	Phenylalanine-4-hydroxylase	ATGAAGCAGACGCAATACGTGGCCCGCGAGCCCGATGCGCAAGGTTTTATTCACTACACCGCTGAAGAACACGCAGTGTGGAACACGCTGATCACCCGCCAGCTGAAAGTCATCGAAGGCCGTGCGTGCCAGGAGTACCTGGACGGTATCGACAAGCTGGGGTTGCCCCATGACCGCATCCCGCAGCTGGACGAAGTCAACAAAGTGCTGGGCGAGACCACGGGCTGGCAGGTCGCCCGGGTGCCCGCGCTAATCCCTTTCCAGACCTTCTTCGAGTTGCTCGCCAGCAAGCAGTTTCCGGTGGCGACCTTTATTCGTACCCGTGAAGAACTGGACTACTTGCAAGAGCCGGACATTTTCCACGAGATCTTTGGTCACTGCCCTCTGCTGACCAATCCCTGGTTCGCTGAATTTACCCACACCTACGGCAAACTCGGCCTACAGGCCTCCAAGGAAGAACGCGTCTACCTGGCGCGTCTGTATTGGATGACCATCGAATTCGGCCTGGTGCAGACGCCGCAAGGCCGGCGCATCTACGGCGGCGGCATTCTCTCGTCGCCCAAGGAAACCGTGTACTGCCTGTCAGACGAGCCGGAGCATCAAGCCTTCGACCCGCTGGAAGCCATGCGTACGCCTTATCGCATCGACATCCTGCAGCCGGTGTATTTCGTGCTGCCCGAGCTCAAGCGCCTATTCGACCTGGCCCACGAGGACATCATGGGCATGGTCAAGCGCGGGCGGGAACTGGGCCTGCACGCACCGAAATTTCCACCGAAAGCCGCGTGA	MKQTQYVAREPDAQGFIHYTAEEHAVWNTLITRQLKVIEGRACQEYLDGIDKLGLPHDRIPQLDEVNKVLGETTGWQVARVPALIPFQTFFELLASKQFPVATFIRTREELDYLQEPDIFHEIFGHCPLLTNPWFAEFTHTYGKLGLQASKEERVYLARLYWMTIEFGLVQTPQGRRIYGGGILSSPKETVYCLSDEPEHQAFDPLEAMRTPYRIDILQPVYFVLPELKRLFDLAHEDIMGMVKRGRELGLHAPKFPPKAA	PGPT0020295_1327	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_PHENYLALANINE_DEGRADATION,PGPT0020295-phhA-K00500	NA	NA
D1-36_03603	357			Putative pterin-4-alpha-carbinolamine dehydratase	ATGACCACTTTGAACCAAGCCCATTGCGAAGCCTGCCGCGCCGATGCCCCACAGGTCAGCGACGAAGAACTTCCAGTACTGATCAAGCAGATCCCCGACTGGAACATCGAAGTGCGCGACGGCGTGATGCAGCTGGAAAAGGTCTTCCTGTTCAAGAATTTCAAGCACGCCCTAGCGTTCACCAACGCCGTCGGCGAGATCTCCGAGGCCGAAGGTCATCACCCGGGCCTGCTTACCGAATGGGGCAAAGTCACCGTCACCTGGTGGAGCCATTCGATCAAGGGCCTGCACCGCAACGACTTCATCATGGCCGCCCGCACCGATGAAGTTGCCAAAACCGCCGAGGGCCGCAAGTAA	MTTLNQAHCEACRADAPQVSDEELPVLIKQIPDWNIEVRDGVMQLEKVFLFKNFKHALAFTNAVGEISEAEGHHPGLLTEWGKVTVTWWSHSIKGLHRNDFIMAARTDEVAKTAEGRK				NA	NA	NA	NA	NA
D1-36_03604	1194	aspC_1	COG1448	Aspartate aminotransferase	ATGCATTTCGATGCCATCGGCCGGGTGCCCGGCGACCCGATCCTCGGCCTGATGGAGGCCTACGGGGCGGACAGCAATCCTGGCAAGTTCGACCTGGGCGTAGGCGTCTATAAGGATGCCCAGGGCCTGACGCCAATTCTGCAGTCGGTGAAACAGGCCGAGCAGCGGCTGGTGGATCGCCAGGTCACCAAGACTTACATCGGCGGTCATGGCGACGCCGCGTTCGGCCAACTGATGAATGCGCTGGTGCTGGGCGCCGATTCACCATTGATCGCCGGCAAACGCGCCGGTGCCACCCAGACCCCAGGCGGCACCGGCGCCCTGCGCTTGAGCGCCGACTTCATCGCCCAGTGCCTGCCGGGCCGTGGCGTCTGGTTGAGCAACCCGACCTGGCCGATCCACGAAACCATCTTCGCCGCCGCGGGCGTCAAGGCCAGTCATTACCCCTACGTGGGCGCCGACAACCGCCTGGATTTCGAGGCAATGCTCGCCACCCTGGGTCAGGTGCCAAAAGGCGATGTGGTGTTGCTGCACGCGTGCTGCCACAACCCGACCGGCTTCGACCTGTCTCATGAGCAATGGCGCCAGGTGTTGGAAGTGGTGCGCAGCCGTGGCCTGCTGCCGTTGATCGATTTCGCTTACCAGGGCTTCGGCGACGGGCTGGAGCAGGACGCATGGGCCGTGCGGTTGTTTGCCGAAGCGTTGCCCGAGGTGCTGGTCACCAGTTCATGCTCGAAGAATTTCGGCCTTTACCGCGACCGCACCGGAGCGCTGATTGTCTGTGCTCGCGATGGGGAAAAATTGACGGACATTCGCAGCCAACTGGCCAACATCGCCCGCAACCTTTGGTCGACGCCGCCGGATCATGGCGCGGCGGTGGTGGCGACGATCCTCGGCAATCCGGAACTCAAGGGCCTGTGGGCCGACGAAGTGGAAGCCATGCGCCTGCGCATCGCTCAACTGCGCAGCGGTCTGCTGGAAGCACTCGAACCCCACGGCTTGCGTGAGCGCTTTGCCCATATGGGAGTGCAGCGCGGGATGTTTTCCTACACCGGCCTGACGCCGGAACAGGTCAAGCACCTGCGCGAGCGCCACAGCGTCTACATGGTCGGCACCGGCCGGGCCAACGTGGCCGGCATCGATGCGACGCGCCTGGATGCCCTGGCGGTGGCGATTGCGGATGTTTGCAAATAA	MHFDAIGRVPGDPILGLMEAYGADSNPGKFDLGVGVYKDAQGLTPILQSVKQAEQRLVDRQVTKTYIGGHGDAAFGQLMNALVLGADSPLIAGKRAGATQTPGGTGALRLSADFIAQCLPGRGVWLSNPTWPIHETIFAAAGVKASHYPYVGADNRLDFEAMLATLGQVPKGDVVLLHACCHNPTGFDLSHEQWRQVLEVVRSRGLLPLIDFAYQGFGDGLEQDAWAVRLFAEALPEVLVTSSCSKNFGLYRDRTGALIVCARDGEKLTDIRSQLANIARNLWSTPPDHGAAVVATILGNPELKGLWADEVEAMRLRIAQLRSGLLEALEPHGLRERFAHMGVQRGMFSYTGLTPEQVKHLRERHSVYMVGTGRANVAGIDATRLDALAVAIADVCK	PGPT0020115_217	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_TRYPTOPHANE_DEGRADATION,PGPT0020115-aspC-K00813	NA	NA
D1-36_03605	564	ydjA	COG0778	Putative NAD(P)H nitroreductase YdjA	ATGCAGGCTTTAGATGCTTTGCTCAACCGTGTTTCCGTGCCACGCCTGGTTGATCCGGCGCCCACGCCGCAACAGCGCGAAGTCATGTTCGCGGCCGCGATGCGCGCGCCCGACCATGGCCAGTTGCGCCCGTGGCGGTTCCTGACGGTGGAGGGGCAGGCACGCCATCGCATGGGCGAGCTGTTGGCCGAAGCAGCGCGCTTTAATGATCCGCTGGTGCCCGAAGCCGTCGTGGAGAAAGCCCTCAACGGCCCGCTACGGGCGCCGCTGGTGGTGGTAGTGATTGCGCGGTTGCAAGACCATTTCAAGATTCCAAAGCCTGAACAATTGCTGGCGGCAGGCTGCGCGGCACACGGCATTCTGCTGGCCGCTTATGCACAAGGGATAGGCGGCGTGTGGCGTACGGGTGAGCTGGCTTACTCGCCGCATGTGGCCCGGGGCCTGGGGCTTGAAGACGGCGAGGAGGTGATTGGTTTCCTTTACCTTGGCACGCCGCAGAAAGAGGCGCGCACGGCACCACAGGAAGATATCGGGCGGTTTGTCCGGGCCTGGACGGGGGAATAA	MQALDALLNRVSVPRLVDPAPTPQQREVMFAAAMRAPDHGQLRPWRFLTVEGQARHRMGELLAEAARFNDPLVPEAVVEKALNGPLRAPLVVVVIARLQDHFKIPKPEQLLAAGCAAHGILLAAYAQGIGGVWRTGELAYSPHVARGLGLEDGEEVIGFLYLGTPQKEARTAPQEDIGRFVRAWTGE				NA	NA	NA	NA	NA
D1-36_03606	1455	trkI_2	COG0168	Trk system potassium uptake protein TrkI	ATGGCGTTGCCGACCCTGCGGATCATTGGTTTCATCATCGGCATCTTCCTGATCACCCTGGCGATCTTCATGGTCGTGCCGATGGCCACGTTGCTGGTCTACGAGCGCACCGGCGACCTGCCATCGTTCCTCTGGTCAAGCATGATTACTTTTGTCGCCGGCCTGGCACTGATTCTTCCCGGACGCCCCGAGCACGTCCATCTTCGGCCCCGGGACATGTACCTTTTGACCGTCAGCAGTTGGCTGGTGGTGTGTGTGTTTGCCGCGCTCCCCTTCCTGTTGACCCAGCACATCAGCTACACCGATTCGTTCTTCGAAAGCATGTCAGGCATTACCGCCACCGGCGCGACGGTGTTGAGCGGCCTGGACACGATGTCGCCCGGAATCCTGATGTGGCGATCGCTGTTGCACTGGCTTGGCGGCATCGGCTTTATCGGCATGGCCGTGGCGATCCTGCCGCTGTTGCGCATCGGCGGCATGCGGCTGTTCCAGACCGAGTCGTCCGACCGCTCGGAAAAGGTCATGCCCCGCTCGCACATGGTGGCGCGGCTGATCGTGGCGTCCTATGTGGGCATTACGGTTCTCGGCACGCTGGCGCTCTGGTGGGCCGGGATGAGCCTGTTCGATGCGATCAACCATTCGATGTCGGCGATTTCCACCGGTGGTTTTTCCACCTCGGACCTGTCCCTGGCCAAATGGACCCAGCCAGCGGTGCATTGGGTCACTATTGTGATCATGATCCTCGGCAGCCTGCCGTTCGCCTTGTATGTCTCGACGCTGCGGGGCAATCGCCGGGCGCTGATCAAGGACCAGCAAGTCCAGGGGCTTATCGGCGTGCTGCTGGTCACCTGGCTGGTGCTTGGCACCTGGTATTGGGCGACCACCGACCTGCATTGGCTCGACGCGCTGCGGCATGTGGCGCTGAACGTGACGTCCATCGTCACCACCACCGGTTTCGCCCTGGGCGACTACAGCCTCTGGGGCAATTTCTCACTGATGCTGTTCTTCTACCTGGGTTTCGTCGGCGGCTGCTCGGGCTCGACCGCCGGCGGAATCAAGATTTTCCGCTTCCAGGTCGCCTACATCCTGCTTCGGGCCAACCTTAACCAACTGATCCACCCGCGTGCGGTGATCAAGCAGAAATACAACGGCCATCGCCTCGATGAAGAAATCGTGCGTTCGATCCTGACCTTCTCGTTCTTCTTCGCCATCACCATCTGCGTGATCGCGCTGCTGTTGTCGCTGTTGGGCGTGGAATGGATGACAGCGTTGACCGGCGCGGCCAGTACCGTGTCCGGCGTCGGCCCTGGGCTCGGCGAGACAATCGGCCCGGCCGGCAACTTCGCGCCGCTGCCGGACGCGGCCAAGTGGATCCTCTCGGGCGGCATGTTGCTGGGCCGGCTGGAGATCATCACGGTGTTCGTGCTGTGTATTCCTGCGTTCTGGCGTCACTGA	MALPTLRIIGFIIGIFLITLAIFMVVPMATLLVYERTGDLPSFLWSSMITFVAGLALILPGRPEHVHLRPRDMYLLTVSSWLVVCVFAALPFLLTQHISYTDSFFESMSGITATGATVLSGLDTMSPGILMWRSLLHWLGGIGFIGMAVAILPLLRIGGMRLFQTESSDRSEKVMPRSHMVARLIVASYVGITVLGTLALWWAGMSLFDAINHSMSAISTGGFSTSDLSLAKWTQPAVHWVTIVIMILGSLPFALYVSTLRGNRRALIKDQQVQGLIGVLLVTWLVLGTWYWATTDLHWLDALRHVALNVTSIVTTTGFALGDYSLWGNFSLMLFFYLGFVGGCSGSTAGGIKIFRFQVAYILLRANLNQLIHPRAVIKQKYNGHRLDEEIVRSILTFSFFFAITICVIALLLSLLGVEWMTALTGAASTVSGVGPGLGETIGPAGNFAPLPDAAKWILSGGMLLGRLEIITVFVLCIPAFWRH	PGPT0002735_1696	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002735-trkG|trkH|ktrB-K03498	NA	NA
D1-36_03607	1071			hypothetical protein	ATGCAAGTAAACGTCATGAGCGAACGAACCACTTCTTCAAGCTGGGCGATGGGGATTGTCAAGGCGTTGGAAATGGACGGCCTGGACTGTCGGGCGCTGTTCAAGCAACTGGGGCTGGATTTCGAGGCGCTGGACGATCCGGATGCGCGCTTTCCCCAGGATTCGATGACACGGCTCTGGCAGCTTGCGGTGGAGCAGTCGGGCAATGCGGCCATCGGCTTGAACATGGGCAAGGTGGTGCGCCCGGCATCGTTCCATGTGGTCGGTTACGCGTTGATGTCCAGTCGGACGCTGGCCGAAGGGTTCCGCCGGTTGGTGCGTTATCAACGAATCATTGCCGAAAGCGCCGACTTGAGCTTCCGCCATTTGGATGAAGGGTATGGGCTGATCCTGACGGTGCACGGCGACCACCTCCCGCCCACCCGGCAAAGTGCCGAAGCGTCCCTGGCTTGCGCGCTGGCCTTGTGCAGTTGGCTGACCGGGCGCACTTTGCATCCGGTGAAAGTGCTGTTCCAAGGCAACGAACCCGTTGACGTTGCACCTTATCGACAGGCCTTCGGCGCGCCGCTGGTTTTTGACGCACCCTACGATGCGCTGATTTTCCAGCAGGACGACATGGAAACACCACTGCCCACGGCCAACGAGGCCATGGCGCTGTTGCACGACCGGTTCGCGGGGGAATACCTGGCGCGGTTTTCAGGCAGCCGCGTGACTCACCAGGCGCGGCAAGTGCTGTGCCGGTTGCTGCCCCAGGGCGAGCCCAAGCGTGACGTGGTGGCGCAGACGCTGCACTTGTCCCAGCGCACCTTGCAGCGGCGCTTGCAGGAAGAGGGCACCAGTTTCCAGAGTTTGCTGGACGACACCCGACGCGAGCTGGCCGAGCAATACCTGGCGCAACCCAGCATGACCTTGCTGGAAGTCGCCTACTTGCTCGGGTTTGCCGATCCGAGCAATTTTTTCCGGGCCTTCCGCCGTTGGTTCGGTACCACGCCCGGCGACTATCGGGCGCGGGGCGTGGCCAAGCCGGTCAGTGACGCCAGAACGCAGGAATACACAGCACGAACACCGTGA	MQVNVMSERTTSSSWAMGIVKALEMDGLDCRALFKQLGLDFEALDDPDARFPQDSMTRLWQLAVEQSGNAAIGLNMGKVVRPASFHVVGYALMSSRTLAEGFRRLVRYQRIIAESADLSFRHLDEGYGLILTVHGDHLPPTRQSAEASLACALALCSWLTGRTLHPVKVLFQGNEPVDVAPYRQAFGAPLVFDAPYDALIFQQDDMETPLPTANEAMALLHDRFAGEYLARFSGSRVTHQARQVLCRLLPQGEPKRDVVAQTLHLSQRTLQRRLQEEGTSFQSLLDDTRRELAEQYLAQPSMTLLEVAYLLGFADPSNFFRAFRRWFGTTPGDYRARGVAKPVSDARTQEYTARTP				NA	NA	NA	NA	NA
D1-36_03608	384			hypothetical protein	ATGACCGCTCTAGACTTGGTCATGAGCCATGAAACACCGGTCGCCAGAACAATAACCAAAGAGCCCGCAGTCTTGGAAAACACTAAACGATTCAACACCTTCGCCGAGTTTTATCCGTACTACCTCAGCGAACACCGCAACAGCACCTGCCGACGCTTGCACTTCATCGGCACCTCCCTGGTCCTGCTGGTTTTCGCCACGGCGCTGGTGGTCGGTGCCTGGTGGCTGTGGGTCGCCCTGCCGGTGGCGGGCTACGGTTTCGCCTGGGTCGGGCATTTTTTCTTCGAGAAAAACCGTCCTGCCACTTTCCAACATCCCCTTTACAGCCTGCTCGGTGACTTTGTCATGTACCGCGACATGCTGCTGGGCAAAGTCGCGTTCTAG	MTALDLVMSHETPVARTITKEPAVLENTKRFNTFAEFYPYYLSEHRNSTCRRLHFIGTSLVLLVFATALVVGAWWLWVALPVAGYGFAWVGHFFFEKNRPATFQHPLYSLLGDFVMYRDMLLGKVAF				NA	NA	NA	NA	NA
D1-36_03609	585			hypothetical protein	ATGAATTCTCACGCACGCTTCACCCACATGCAGGACGGGACCCAGGAAGACTGGGCGATCATCGCGGCCGACTTCAGCGCCTATGCGCGGCAGCTGCCGAGTCGGGTTCTCGCTCATTTGAAATTGCTCGACGGCGATTTTGGCGGGTTCCCGGTGGATCGCATGACCCATTCCCTGCAAACCGCCACGCGCGCCTACCGCGACGGGCGGGACGAGGAGTACGTGGTCTGCGCCCTGCTTCATGACATCGGCGATACGTTGGGCACCTACAATCACCCGGACATCGCCGCGGCGATCCTCAAGCCGTTCGTCAGCGCCGAAAACCTGTGGATGGTGGAAAAACACGGGATTTTCCAGGGCTACTACTTTTTCCATCATTTGGGCATGGACCGGCATTTGCGCGAGCAATTCTGCGAACATCCTCAGTACCAGGCGACCATCGACTTCTGTGCGAAATACGACGCCGCGGCGTTCGATCCCGAATACGACACGCTGCCGTTGAGCTTCTTCGAGCCGATGCTGGAAAGGGTGTTCGCCGCGCCGAAGCAATCCATCTACAAGGCGGCGATGGCCGAACAGCCCTGA	MNSHARFTHMQDGTQEDWAIIAADFSAYARQLPSRVLAHLKLLDGDFGGFPVDRMTHSLQTATRAYRDGRDEEYVVCALLHDIGDTLGTYNHPDIAAAILKPFVSAENLWMVEKHGIFQGYYFFHHLGMDRHLREQFCEHPQYQATIDFCAKYDAAAFDPEYDTLPLSFFEPMLERVFAAPKQSIYKAAMAEQP				NA	NA	NA	NA	NA
D1-36_03610	819	lpxH_2		UDP-2,3-diacylglucosamine hydrolase	ATGACCAGCGCCGAGCTCGCCAGGCCCAGCCGCAAGCAACGTGTACGCACCCTGTGGATTTCCGATGTGCACCTGGGCACTCGGGATTGCCAGGCCGAACACCTGTCGCACTTCCTCAAGGGCTACCACGCCGACAAGGTCTATCTGGTGGGCGATATCATCGACGGCTGGAAACTGCGCAGCGGCATGTATTGGCCCCAGGCCCATACCAATGTCATTCGCCGCCTGCTGACCATGAGCAAGCGCGGCACCGAGGTGATCTATGTCACCGGCAACCATGACGAATTCCTGCGGCGTTATTCGAAGCTGATACTGGGCAATATCCAGTTGGTGGACGAAGCGGTGCACGTCACCGCCGACGGCCGGCACCTGCTGGTGATCCATGGCGATCAGTTCGATGTCATTACCCGTTACCACCGTTGGTTGGCGTTCCTTGGGGATTGGGCCTACGAATTCACCCTGACGCTGAACCGTTGGCTCAACCATTGGCGGGCCCGTTACGGCTACGGCTATTGGTCGCTGTCGGCGTACCTCAAGCACAAGGTCAAGACCGCCGTCAGTTTTATCAGCGATTTCGAAGAAGCCATCGCCCATGAATGCGTGAAGCGTGAATTGCACGGGGTGGTTTGCGGGCACATCCACCATGCCGAGATTCGCAAGGTGGGCGAGGTGGAATACCTTAACTGCGGCGACTGGGTCGAATCCTGCACGGCGCTGATCGAACATTGGGATGGGACGATCGAGCTGTATCGGTTGGCGGACGCCCAGGCGCGGGAGGCGCTGCTCAAGGCTGAATTGAAAGTGGCTGAGCCTGCCTAG	MTSAELARPSRKQRVRTLWISDVHLGTRDCQAEHLSHFLKGYHADKVYLVGDIIDGWKLRSGMYWPQAHTNVIRRLLTMSKRGTEVIYVTGNHDEFLRRYSKLILGNIQLVDEAVHVTADGRHLLVIHGDQFDVITRYHRWLAFLGDWAYEFTLTLNRWLNHWRARYGYGYWSLSAYLKHKVKTAVSFISDFEEAIAHECVKRELHGVVCGHIHHAEIRKVGEVEYLNCGDWVESCTALIEHWDGTIELYRLADAQAREALLKAELKVAEPA				NA	NA	NA	NA	NA
D1-36_03611	750	rhaS_12		HTH-type transcriptional activator RhaS	ATGAGACCGATCCTCACGCTACGCCACTACAGCCACGATCTGATTGTCCACAGCCACGACCACGCGCAACTGGTGTTCGGGTTGTCTGGCGCGCTGGACTTCGAAGTCGAAGGGCGTGGCAGCCAGGTGGTGCAGCAGAGTTTCGTGGTGGTACCGGCCGGTGCTCATCATGCGTGCGGCAGCCCACGGGGCAGCCGTTGCCTGGTGCTGGACGTGCCGGATGATGAATGGATCGGGCAATGCCTGGGCGACCATGCCGATGCCAGCCGCCGATTACTCGACAACAACACCCGCCTGCCCCTGGATGCGGGGCAAAGCCAACTGGTCAGTTGGTTGGCGGGCAGCCCGATGGACGACCCGGTGATTGCACAGCAAGGCGCGGTACTGTTGCTGGCCAGCCTCAACGGCGGGCGTTTGGAAACCACCGGTGGCCGGCGCCTGCCCTACGCGGCGCTCAACGCTCACATCGACCAATATGCCGCTTATCCGCTACAGGTAGCGGACCTGGCGCAAGTCGCAGGGCTTTCCAGTGCTCGCCTGCATGCCCGTTTCGTCGCCGAATGCGGCCAGACACCGATGGAATACATCCGCAGCCGCCGCTTGCACAAGGCACTTGAGCTGCTGCGTGACTCGCAGTTGGCGATCGGCGAGATCGCCCATCGCGTTGGCTACAGCTCGCAAAGCGCTTTTGCCGCAGCCGTGCAGCGCGAATTCGGCGTCCCGCCGGGCAAGCTCCGGCAACCGCGCTAG	MRPILTLRHYSHDLIVHSHDHAQLVFGLSGALDFEVEGRGSQVVQQSFVVVPAGAHHACGSPRGSRCLVLDVPDDEWIGQCLGDHADASRRLLDNNTRLPLDAGQSQLVSWLAGSPMDDPVIAQQGAVLLLASLNGGRLETTGGRRLPYAALNAHIDQYAAYPLQVADLAQVAGLSSARLHARFVAECGQTPMEYIRSRRLHKALELLRDSQLAIGEIAHRVGYSSQSAFAAAVQREFGVPPGKLRQPR				NA	NA	NA	NA	NA
D1-36_03612	891			hypothetical protein	ATGACACCCCGTACCGCCCTCGGCGCCCTGCACATCGGCGCACTCATGTTCGGCCTCACCGGCGTGTTCGGTAAGCTCGCCGCAGCCTCGCCGGCCGTCATCGTGTTTGGTCGCGCGGTGTTCGCCGTGCTGGCGCTGGCGGCGTTTGCCCGGTTCGCCAGCCCTACCCGCTGGGAAAAGCTGCGGGGCCGGGACCTGCGCAGGTTGCTGCTCGGCGGGCTGTTGCTCACCGGGCACTGGGTGAGTTTTTTCATTTCGGTGAAAGTCGCCGGCGTTGCGATCGCCACCCTGGGATTCGCCAGTTTTCCGGCCTTTACGGTGCTGCTTGAAGGGCTGATTTTCCGCGAGCGCATCCGCGCCAACGAAATCCTCTTGGTGGTGCTGGTGAGCGTCGGCCTGGTGTTGGTCACGCCAACCTTCGACCTGGCGAGCGGCGCTACCACCGGGCTGCTCTGGGCGGTGGCCTCGGGGCTGTTGTTCTCGTTGTTATCACTGACCAATCGCGCCGGTTCAGGACACGTGCCCCCGGTGCAGGCCGCGCTGTGCCAGAACGTCGTGGTCGGACTCTGCCTGTTGCCAATGGCCGCGCCGCAATTGGCCGACGTTCGTCCGCTCGACTGGTTGTGGATCGGCCTGCTCGGGGTGTTCTGCACCGGCCTGGCCCATAGCCTGTTCGTCGCCAGCCTCGCGGTGATCAAGGCCCGCACCGCCGCGGTGGTGTTCGCCATGGAGCCGGTCTACGGCATCACCATCGCCTGGCTGCTGTTCGACGAAGACCCGACCCTGCGCATGTTGCTCGGTGGCGCGCTGATCATCGTTGCGATCGTGGTGTCGAGCCAGCTGGACGGCACAAAGAAATCCAGCGCCGGCGCCCAGGCCCCGTCTCACTGA	MTPRTALGALHIGALMFGLTGVFGKLAAASPAVIVFGRAVFAVLALAAFARFASPTRWEKLRGRDLRRLLLGGLLLTGHWVSFFISVKVAGVAIATLGFASFPAFTVLLEGLIFRERIRANEILLVVLVSVGLVLVTPTFDLASGATTGLLWAVASGLLFSLLSLTNRAGSGHVPPVQAALCQNVVVGLCLLPMAAPQLADVRPLDWLWIGLLGVFCTGLAHSLFVASLAVIKARTAAVVFAMEPVYGITIAWLLFDEDPTLRMLLGGALIIVAIVVSSQLDGTKKSSAGAQAPSH				NA	NA	NA	NA	NA
D1-36_03613	288			hypothetical protein	ATGACCGCGCAGAAACCGGAAATCGTCATCACTTATTGCACACAGTGCCAATGGCTGCTGCGTGCCGCCTGGTTGGCCCAGGAACTGCTAAGCACGTTCGGCGACGACCTCGGCAAGGTGTCCCTGGTGCCAGGCACCGGTGGGGTTTTCCACATTGGCTGCGATGGTACCCAGATCTGGGAGCGCAAGGCGGATGGAGGTTTTCCCGAGGCCAAGGTGCTCAAGCAGCGGGTCCGCGACCAGATCGACCCGGAGCGCGACCTGGGGCACAACGACAGAATCCAGTGA	MTAQKPEIVITYCTQCQWLLRAAWLAQELLSTFGDDLGKVSLVPGTGGVFHIGCDGTQIWERKADGGFPEAKVLKQRVRDQIDPERDLGHNDRIQ				NA	NA	NA	NA	NA
D1-36_03614	2202	bamA_1		Outer membrane protein assembly factor BamA	ATGCGCCGCCTGCTGCCTTGCCTGCTACTTTTGCTATTGCCCCTGCTCGGCCAGGCCAACGAGCCCGCCGTCGAAACATCGCGCCCGAAGATCGGCCTGGTACTGTCCGGCGGCGCGGCCCGTGGGCTGGCCCACATCGGCGTGCTCAAGGCCCTGGAGGAACAAGGCATCAAGATCGACGCCATCGCCGGCACCAGCATGGGCGCGGTGATCGGCGGCCTCTATGCCTCGGGCTACAAGATCGACGAGCTGGAAAAACTCGCCCTGGGCATTGATTGGCAACAAGCCCTGTCCGATGCCCCGCCGCGCAAGGACGTACCCTTCAGGCGCAAGCAGGATGACCGGGATTTCCTGGTCAAGCAGAAACTGAGCTTTCGCGACGACGGCAGCCTCGGCCTGCCGCTGGGAGTGATCCAGGGACAGAACCTGGCCCTGCTGCTCGAAAGCCTCCTGGCCCACGCCAGTGATACCCGGGACTTCGACAAACTGCCAATCCCCTTCCGCGCCGTGGCGACCGACATTGCCACCGGTGAAAAAGTCGTGTTTCGCAAGGGCCACCTGCCCAAGGTCATCCGCGCCAGCATGTCGATCCCGGCCGTGTTTGCGCCGGTGGAGCTGGACGGCCGCCTTCTGGTGGACGGTGGCATGACCGACAACATCCCTTTGGATGTGGCTCGAGAAATGGGGGTGGACGTGGCCATCGTCGTTGATATCGGCACCCCACTGCGCACCCGTAAGCAACTGGTCACGGTGGTGGACGTGTTGAATCAGTCAACGACGCTCATGACCCGGCGCAACTCCGAAGAGCAATTGGCCACCTTGGGGAAAGATGACGTGTTGATCCAACCGGCCCTGGCAAGCTTCGGTTCCACCGACTTCGGACGAGCGCAGGAAATAGTCGATGCCGGTTACCGCGCCACACGGATACTCCAAACGCGCCTGGCGCACTTGCGTCCCGCCGAGCCGGCCGACGCCGAACTGCTGGCGGCGCGCACCCCGAGCGAGCGCACCCCGGTCATCACCGCGATCCGGGTGGAAAACGATTCGAAAGTCGGTGACGACGTGATCCGCTATTACATTCGCCAGAAGATCGGCGAGCCGCTGGATCTGGGGCGCCTGCAAACCGACATGGGCACGCTGTACGGCCTGGATTATTTCGAGCAGGTGCAATACCGCGTCGTACACAAGGGCGCGGACAACACGCTGGTGATCAATGCCCGGGGCAGACGCACCGGCACCGATTACCTGCGCGTGGGCCTGAGCCTGTCGGACGACATGCGCGGCGACAGCGCCTTCAACCTTGGCGCCAGCTATCGGGTCAACGGTATCAATCGACTGGGTGCGGAATGGCTGACCCGGGCGCAGATCGGCGACAAACAGGAGCTGTACAGCGAGTTCTACCAACCGCTGGATGTCGGCTCGCGCTACTTCGTCGCGCCCTATGGACGGTTCGAATCGCGCAACGTCGATTCGATCCTCGACAACGATCCGGTGGCCCAGTACAGGGTCGAGCGCTATGGCTTTGGTCTGAACCTGGGTCGCCAGATCGGCAACAGCGGGGAGATCCGCTTCGGTGTGGGCCAGGCCTGGGGCAAGGCCGACGTGCGCATCGGCGACCACGACCAGCCCAGCGAGAATTTCAATGAGGGCTTTTACGAGCTCAAGTATTCCTTCGACTCCCTGGACAACGTGTACTTCCCCCACGAAGGCGAAGACATCGGTTTGTCCTGGCGTCAGTACGAACCGGGCCTGGGTTCGGACCAGCGCTACCGCCAATGGGAATTCAAACTGGACAAGGCCCTGAGCAGCGGCCCGGACACGTTCATCCTGGGTGGTCGCTACGGCCGCACCCTCGATACCGCCGAAGTAGTGACCTCCAGTTTTGTCCTCGGCGGCGCTCGGCAATTATCAGGCTTTCGCGAGGACGGGATATCCGGCCAGAACATGAGCCTGATGCGCGCCGTGTATTACCGCAGGCTCACGCCTCGGGCCTACCTGCCGTTGGATTTCCCGCTGTATATCGGCGGCTCGCTGGAGCGTGGTCGGTCCTGGAACAACGACAACGAGTTCGACAGTGGCTACATCAACGCCGCCAGTATTTTCCTGGGTTTCGACACGCCGCTGGGCCCCTTGAACTTCAGCTATGGCGTAAATGACGACGATGAGCAGGCGGTGTATTTGAACCTGGGGCAGACGTTCTAA	MRRLLPCLLLLLLPLLGQANEPAVETSRPKIGLVLSGGAARGLAHIGVLKALEEQGIKIDAIAGTSMGAVIGGLYASGYKIDELEKLALGIDWQQALSDAPPRKDVPFRRKQDDRDFLVKQKLSFRDDGSLGLPLGVIQGQNLALLLESLLAHASDTRDFDKLPIPFRAVATDIATGEKVVFRKGHLPKVIRASMSIPAVFAPVELDGRLLVDGGMTDNIPLDVAREMGVDVAIVVDIGTPLRTRKQLVTVVDVLNQSTTLMTRRNSEEQLATLGKDDVLIQPALASFGSTDFGRAQEIVDAGYRATRILQTRLAHLRPAEPADAELLAARTPSERTPVITAIRVENDSKVGDDVIRYYIRQKIGEPLDLGRLQTDMGTLYGLDYFEQVQYRVVHKGADNTLVINARGRRTGTDYLRVGLSLSDDMRGDSAFNLGASYRVNGINRLGAEWLTRAQIGDKQELYSEFYQPLDVGSRYFVAPYGRFESRNVDSILDNDPVAQYRVERYGFGLNLGRQIGNSGEIRFGVGQAWGKADVRIGDHDQPSENFNEGFYELKYSFDSLDNVYFPHEGEDIGLSWRQYEPGLGSDQRYRQWEFKLDKALSSGPDTFILGGRYGRTLDTAEVVTSSFVLGGARQLSGFREDGISGQNMSLMRAVYYRRLTPRAYLPLDFPLYIGGSLERGRSWNNDNEFDSGYINAASIFLGFDTPLGPLNFSYGVNDDDEQAVYLNLGQTF				NA	NA	NA	NA	NA
D1-36_03615	1974			hypothetical protein	ATGCTTGAAAGTTTGCAGTCCACGTTGCGCAGTTGGATCAACGTGTCGGTCGTCGTGGGTGTCCTGGGATTTCCAGCCCTGGCGTCGGCGCTGGGGCTGGGTGAGATCACGCTCCATTCCGCCCTGAACCAGCCGTTGCGCGCCGATATCGCCTTGGTTGACGCGGCGGGCCTCAGCGAGGGCGACCTGTCCGCCAGCCTGGCGGGGGCGGAGGATTTCAGTCGTGCGGGCGTGGAGCGGGTATTCTTCCTCAATAATTTGCGCTTTACCCCCGTGCTGCGTGGCGGGCGCAGTTTCATTCGGGTGACGTCCAGCAAACCGGTGGAGGAGCCGTTTCTCAACTTTCTGGTGCAGCTCAATCAGCCCAACGGGCGTTTGTTGCGAGAATACACCGTGTTGATCGATCCACCGGGCGCGCCCGGCATAGCTCCGTCTGTTGATGAGCCTTCCGCCCCGGCCGAAACAAAGGCAGCCATCAAGCCGCCTCCGGCCACACAGGGCAAACGCTACACCGTGGTGCAGGGCGACAACCCTTGGATCATCGCCAAGCGCCTGCACGATGCGGGCAGCAATGCATCGGTCAATGAACTGATGCAGGGGATTGAGGCCTTGAACCCCGGCAGCGAGCGACTTTCCATCGGCCAACGCTTGTTGCTTCCCGATTCGGCCGTCTTGCCTGCTCCAGCCCAAAGTCCTGTCAGCCCGGCTCCCGCCGCGCCCGACAACAATGCCGAGCAATTGGCAGCCAGTGTGCTGCAAGGCCAGCAGCAACAGCAGACCATCGAACAACTACAAGCCAGGATCCAGGCTCAGGACCAGGAAATCGCCGCTCAACGCCAGCAGATCAGCGATCTCCAGGCGCAACTGACCCAGGCATCGTCACCTGAGATCACCTCGGAACTTGCTCCGGAACCTGCCGAATCAACCGAACCCGCCGAAGCCTCGCCGATGGACGAGACAGCACCAGCGACGCAAACCGAAGGCGTCGACTGGTTGTGGGTAGGGGGATTGGTGGGGCTGGTTGGGTTGCTTGCGCTTTTGCTGTTCCTTCGTCACCGTCAACAACGGGAAGTGACAAGGCCTGTGCCATTGGCCGAGCGTCCGGACCTGGCCCTGGATGACGACACCGAAACCTATGCCGAGAGTGCCGACAAAGAGCATCCCGAGGTCGCCTCGTCGTTCAACAATGGCGATGCGCCTTTGGGAGACGTGCTCGAGGGCGTTGGGATCTACCTGACGTATGGCCGTTTCACTGAAGCCGCGGGGCTGCTGCGCGCGGCACTGCTGGCCGAGCCGGACCGTACCGACCTGGGCCTGAAGTTGCTGGATGTATTGGGCAAGCAGGGCGATGTGATCGGCTTCCAGGCCCAGGAGAGCCATTTATCGGCCCAGGGCGTCGATCGCCAGGCACTGGAAGACGTCCGCAAGCGTTACCCCAGGGTGACCCTCGTTAATGCTGCGACGCAAACGCCGACAGAACTCCAGGCACCAGTGCCCGCGCCGAAACCTGTGGCCGCGCCCAGCGATGAGTTCGAGTTGAACCTGGATGGACTTTCCCTGGAGAACAGCTGGGACCTGGCCGATGACCAACGGGCATCCCCAGAGCCCCCAAAACCGCCGGCCGCTGCCGCCGATACGCTGACCCTATCGGGCTTCGATGAGACGGACCTGCAATGGGGCGCGCCGTTGGAAACGGAGTCGTTGGACGATGATTTCCTCGATGGGTTTGCCGATGAGGAGCAAGCGCTGGAGTTGGAGCCAGCGCCCGTTGAACCCGAATTCGAATCCCTCTCCCTCGAACCTGTCTCCTTCGAACCGCACACATCGGAGCACTCGGAGAAACTTGAAGAAGCCCAGAATTGCATCGACGAGGGCGATCTGAAGAGCGCCATCACGTTGCTGGAGGAGCTGCTGCAAGAGGGCGATGAACCGCTCAGGGAAACCGCCCGGGTTTTGCTCGCCGGGATTCGCTGA	MLESLQSTLRSWINVSVVVGVLGFPALASALGLGEITLHSALNQPLRADIALVDAAGLSEGDLSASLAGAEDFSRAGVERVFFLNNLRFTPVLRGGRSFIRVTSSKPVEEPFLNFLVQLNQPNGRLLREYTVLIDPPGAPGIAPSVDEPSAPAETKAAIKPPPATQGKRYTVVQGDNPWIIAKRLHDAGSNASVNELMQGIEALNPGSERLSIGQRLLLPDSAVLPAPAQSPVSPAPAAPDNNAEQLAASVLQGQQQQQTIEQLQARIQAQDQEIAAQRQQISDLQAQLTQASSPEITSELAPEPAESTEPAEASPMDETAPATQTEGVDWLWVGGLVGLVGLLALLLFLRHRQQREVTRPVPLAERPDLALDDDTETYAESADKEHPEVASSFNNGDAPLGDVLEGVGIYLTYGRFTEAAGLLRAALLAEPDRTDLGLKLLDVLGKQGDVIGFQAQESHLSAQGVDRQALEDVRKRYPRVTLVNAATQTPTELQAPVPAPKPVAAPSDEFELNLDGLSLENSWDLADDQRASPEPPKPPAAAADTLTLSGFDETDLQWGAPLETESLDDDFLDGFADEEQALELEPAPVEPEFESLSLEPVSFEPHTSEHSEKLEEAQNCIDEGDLKSAITLLEELLQEGDEPLRETARVLLAGIR	PGPT0016075_1071	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-SURFACE_ATTACHMENT	SURFACE_ADHESION	SURFACE_ADHESIVE_FIMBRIAE,PGPT0016075-fimV-K08086	NA	NA
D1-36_03616	435	slyA		Transcriptional regulator SlyA	ATGCCTTTGACCGATCAACACCGTTTTGGCATGCAGTTGGCGCAAATGTCCCGAGGCTGGCGCGCCGAACTGGATCGTCGTCTCGCCGGACTGGGCCTGTCCCAGGCGCGCTGGCTGGTGCTGCTGCACCTGGCCCGTTTCGAGCAGGCGCCGACCCAACGCGAGTTGGCCCAGAGTGTCGCCGTCGAAGGCCCGACCCTGGCCCGCTTGCTCGATAGCCTGGAAACCCAGGGGCTGGTGCAACGCCAAGCCGTGGCCGAAGACCGTCGGGCCAAGAAAATCGTGCTGTGCGCCCCGGCGTTACCGCTGATCGAACAAATCGAAACCATTGCCACGCAGTTGCGCCGGGAGTTGTTCGAGGGCGTCGATGAAGCGGACATGCGGGTTTGCATGCGGGTTCACGGCACGATCCTGGCCAACCTTGAAAAATCCTGA	MPLTDQHRFGMQLAQMSRGWRAELDRRLAGLGLSQARWLVLLHLARFEQAPTQRELAQSVAVEGPTLARLLDSLETQGLVQRQAVAEDRRAKKIVLCAPALPLIEQIETIATQLRRELFEGVDEADMRVCMRVHGTILANLEKS	PGPT0016255_1557	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0016255-sylA-K06075	NA	NA
D1-36_03617	2127	recQ	COG0514	ATP-dependent DNA helicase RecQ	ATGCTCGAACAGGCTCAACGCGTTCTCAAGGACATCTTCGGCTACGACAGTTTCCGTGGCCGCCAGGGTGCCATTATTGAGCGCGTGGCCAGCGGTGGCGATGCCCTGGTGCTCATGCCCACCGGCGGTGGCAAGTCCTTGTGTTTCCAGGTGCCCGCGCTGCTGCGCAATGGTCTGGCGGTGGTGGTTTCGCCGCTGATCGCTTTGATGGATGACCAGGTCGCCACGCTTGAAGAGCTGGGTGTCGCCGCCGCATCGCTCAATTCCACCTTGAGCGCCGAGCAGCAGCGGGACCTGGCGGCGCGCATCAAGCGTGGCGAGGTGAAAATGCTGTACCTGGCGCCGGAGCGCCTCGTGCAGCCGCGCATGCTGGCTTTTCTACAGGGCTTGGAAATAGCCCTGTTCGCCATCGACGAAGCTCACTGCGTGTCCCAATGGGGTCATGATTTCCGTCGCGAATACCTGCAGTTGGGACAACTGGCGGAGCTGTTTCCCGATGTACCGCGGATCGCGCTGACGGCCACCGCCGACAAGCGTACCCGTGAAGAAATCATTGAGCGGCTGCATCTGCAAGACGCCGAGCGATTCCTCTCCAGTTTCGACCGCCCGAATATTTTCTATCGCATCGTGCCCAAGGAGCAGCCACGCAAGCAGTTGCTGGCGTTCCTCGCGGAGCGGCGCAGCGACGCGGGCATTGTCTATTGCCTGTCGCGCAAGAAAGTCGAGGAGGTGGCGGCGTTCCTCAGCGAACAAGGTTTCCCGGCATTGCCCTATCATGCGGGGCTACCCAATGACTTGCGGGCCTATCACCAGAAGCGCTTTCTCAACGAAGAAGGCTTGATCATGGTCGCCACCGTGGCGTTCGGCATGGGCATCGACAAGCCCAACGTGCGTTTCGTCGCTCATCTTGACTTGCCCAAGTCCCTCGAGGCCTATTACCAGGAAACCGGGCGTGCCGGTCGTGACGGCTTGCCGGCGGATGCCTGGATGGCCTACGGCCTGCAAGACGTGGTGATGCTCAAGCAGATGCTGCAGAACTCGGAGGGCGATGAACGTCACAAGCGGTTGGAGCAGCACAAGCTCGACGCGATGCTTTCACTGTGCGAAGAAACCCGCTGCCGACGCCAGACCCTGCTCGCCTATTTCGACGAAGACATGCCCCAGCCTTGCGGGCACTGTGACAACTGCGTCGATGGAGTGGAGACCTGGGACGCCACCGAGCCTGCCCGCCAGGCACTCTCGACGATCTATCGCACGGGCCAGCGTTATGGCGTGGGGCATCTGGTCGATGTGCTGCTGGGCAAGGACAACGAGAAAGTCCGTGGCTTCGGTCATCAGCACTTGTCAGTGTTTGGCGTGGGCAAGGCCCGCAGCGAAAGCGAATGGCGGTCATTGTTCCGGCAACTGGTGGCCCGCGGGCTGGTGGACATCGACCTGGAAGGCTACGGCGGCTTACGCCTGAGCCCGAGTTGCCGCCCCTTGCTCAAGGGTGAGGTCACCCTGGAGCTGCGCCGCGACCTCAAGCCCGCGACAGCGGTCAAGAGCAGCAAGAGCCAGGCCAGCCAACTGGTGCGCGGCGAAGAGCGCGATCAGTGGGAAGCCTTGCGCGCCCTGCGTCGCAAGCTGGCCGAGGAACACGGTGTACCGCCGTATGTCATCTTTCCCGATTCCACTTTGCTGGAAATGCTCCGCAGCCAACCGACTTCCCTGGCGGAAATGGCCCGGGTCAGTGGTGTCGGCGCGCGCAAGCTGGAGCGTTATGGCGAGGCCTTCCTCCAGGTGTTGGGAGGCGAAGCCGAGACACCGCCAGCGGTGGCCGATGTACGCCACGAACTCATCACCTTGGCTCGAGCCGGCATGACCCCGCTGCAGATTGCCGGACAGTTGCAATGCTCGGAAAAGAACGTCTACACGATGCTGGCCGAGGCCATTGGCGAGCAACAACTGTCCCTGGAGCAGGCGCTGGATCTGCCTGAAGAATTGATGGGCGAGGTTCAGGATGCGTTTCTCGATGGGGAGGGCGAGTTGCCTCCCGTATCGGAAGTTGCCGCGTTGTTTGTAGGACGTGTCCCAGAAGGAGTTTTGTATTGCGTCAGGGCTGCATTGCAATCGGAATTTGAAGTCTGA	MLEQAQRVLKDIFGYDSFRGRQGAIIERVASGGDALVLMPTGGGKSLCFQVPALLRNGLAVVVSPLIALMDDQVATLEELGVAAASLNSTLSAEQQRDLAARIKRGEVKMLYLAPERLVQPRMLAFLQGLEIALFAIDEAHCVSQWGHDFRREYLQLGQLAELFPDVPRIALTATADKRTREEIIERLHLQDAERFLSSFDRPNIFYRIVPKEQPRKQLLAFLAERRSDAGIVYCLSRKKVEEVAAFLSEQGFPALPYHAGLPNDLRAYHQKRFLNEEGLIMVATVAFGMGIDKPNVRFVAHLDLPKSLEAYYQETGRAGRDGLPADAWMAYGLQDVVMLKQMLQNSEGDERHKRLEQHKLDAMLSLCEETRCRRQTLLAYFDEDMPQPCGHCDNCVDGVETWDATEPARQALSTIYRTGQRYGVGHLVDVLLGKDNEKVRGFGHQHLSVFGVGKARSESEWRSLFRQLVARGLVDIDLEGYGGLRLSPSCRPLLKGEVTLELRRDLKPATAVKSSKSQASQLVRGEERDQWEALRALRRKLAEEHGVPPYVIFPDSTLLEMLRSQPTSLAEMARVSGVGARKLERYGEAFLQVLGGEAETPPAVADVRHELITLARAGMTPLQIAGQLQCSEKNVYTMLAEAIGEQQLSLEQALDLPEELMGEVQDAFLDGEGELPPVSEVAALFVGRVPEGVLYCVRAALQSEFEV				NA	NA	NA	NA	NA
D1-36_03618	588			hypothetical protein	ATGTCCTTCGCTGAGCAACTGACCCGCCTGCAAGTCTTCCTCGACGCCGATGAGCTGCACGAAGAGGCGCTGGATTACGTGGCCGCTCATGGCTATCTGACTGCCCTGTCGATCTGCGCAGAATCGGTGCCCGATCGTGAGTGGATCGACGCCCTGTTCGCCGAAGAACCGCACTACGCCGACGAAGCCCAGCGCGCTGAAATCGAAGCCACGCTGGTGGGCCTCAAGGCCCACATCGCGCGTCAACTGGCTTCCGATGAGGAATTCGAGTTGCCGTGCGAGCTGGACCTGGGCGACGACCCGGACGATTCGGAACTGCGCGGCTGGTGCATCGGTTTCATGGAAGGCGTGTTCCTGCGCGAAGCCGCCTGGTTCGAAACCGCCGAGGAAGAAGTCAGCGAAATGCTGCTGCCGATCATGGTCGGTTCCGGCCTGTTCGACGAGCAACCGGAGTTCGAAGACATTGCCAAGGACGCGAACCTGATGGACGACATGATCGTGCAGATTCCGGAAGCGCTGACGGCCCTGTATCTGCTATGCAACGCACCGGACGAGAAGCCGGCGATTCTCAAGCCTCGCCACCACTGA	MSFAEQLTRLQVFLDADELHEEALDYVAAHGYLTALSICAESVPDREWIDALFAEEPHYADEAQRAEIEATLVGLKAHIARQLASDEEFELPCELDLGDDPDDSELRGWCIGFMEGVFLREAAWFETAEEEVSEMLLPIMVGSGLFDEQPEFEDIAKDANLMDDMIVQIPEALTALYLLCNAPDEKPAILKPRHH				NA	NA	NA	NA	NA
D1-36_03619	396	ybaN_1	COG2832	Inner membrane protein YbaN	GTGCGCGCCCCTATCGGCAAGCGCCCGCTGATCCTGCGTTACGCTCTGCTGGCCGTCGGCTGGCTGAGCGTGGTGCTGGGGGTCATCGGCATCTTCATTCCCGTTCTCCCCACCACCCCCTTCCTCCTCCTGGCCGCTGCCTGTTTCGCTCGCAGTTCGCCGCGCTTCTACCAATGGCTGGTGGAACATCCCCGCCTCGGCCCGTGGATCGGCGACTACCTCAGCGGCAACGGCATCCCGCTCAAGGGCAAGGTCTACGCCATCGGCTTGATGTGGGTAAGCATCCTGCTCTCGTGCTACCTGGTGCCATTGCCGTGGGCGCGGGTCTTCATGCTGACCAGCGCGGTGCTGGTGACGGTTTACATACTCCGGCAAAAAACGCTGCGCCGGCCCTGA	MRAPIGKRPLILRYALLAVGWLSVVLGVIGIFIPVLPTTPFLLLAAACFARSSPRFYQWLVEHPRLGPWIGDYLSGNGIPLKGKVYAIGLMWVSILLSCYLVPLPWARVFMLTSAVLVTVYILRQKTLRRP	PGPT0009435_7	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_K_METABOLISM	PLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009435-mqnB-K11783	NA	NA
D1-36_03620	441			hypothetical protein	ATGCCCGACATTTCCTCCCCACTCGGTTCCTACGCCAATCAAGTATCGCCTCGCGCCCGCCATGCAGCCAAACGGCTGCCCCCTACCGTGCGTGCCACGTTGCCCTGCCCCAGGTTGGAAGAGGCCTCCCCGCCGGATGTGTTCGACCCTGGCAAAGAGTTCGAAGTCGTTCACGTGCTGATCGAATATCCGCAAATGGCCCGCAACGACATTCTTAGGTGCTATTGGCTTGGGGAAGATTCGTTGGGGTGTACCAGCAGCAAATTGACCGTCTCCGACGTCTTCGAAGGCCGTCCGGTGCGGTTCGCGGTGGGGACAGAATTTGTCATGCCGAACATGGGCCGACGTGTCAGGGTGAGCTACACCTTGTGGCGCGCCGGCACGCGGGAATATGAATACTCATCGGTGCTCAACTTGTTGGTGCGTGAACTCATAGCATGA	MPDISSPLGSYANQVSPRARHAAKRLPPTVRATLPCPRLEEASPPDVFDPGKEFEVVHVLIEYPQMARNDILRCYWLGEDSLGCTSSKLTVSDVFEGRPVRFAVGTEFVMPNMGRRVRVSYTLWRAGTREYEYSSVLNLLVRELIA				NA	NA	NA	NA	NA
D1-36_03621	246			hypothetical protein	ATGTTCTGGACGAGTGGTTGGGCAGGGGGGGGAGATAACGGCACCGGCGCATCGGTCGTGACCAGCATCGACGTCAGCACCACCGCCGGTACCACGCCGAACCAGACCATCGACCTGGCCGGCATCGATCTTGCCAGCCATTACGGGGTGACGACGGGATCGGGTGGAATGATTGGCGGGGCTGATACGGCGACGATCATCAACGGGATGCTGAATGATCATTCGTTGAAGGTGGATAAGGTCTGA	MFWTSGWAGGGDNGTGASVVTSIDVSTTAGTTPNQTIDLAGIDLASHYGVTTGSGGMIGGADTATIINGMLNDHSLKVDKV	PGPT0027825_95	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0027825-prtC-K01406	NA	NA
D1-36_03622	2964			hypothetical protein	ATGTCCGACTCAACGCCAACCGACGATCAAACCGTACTGGTGCTCTTCCCTCCCCGTCTCCCCCTGGCCACATCCCCTGTGGCCCGCGCGCACTACGGTGTGCCCATACACAGTTACGATTTAATCCCGATGGGTTGCAAAGTGGAGGTCGACCCTTATCAGGGGCAGCAGGCTGGCGACACCGTTTCAATCAATCTAAATGGCGAAACGGCTCTTGATAGCCAACAGACCACCGGTACGAACGACACCGTCACGCTCCATATTCCTCATCAGAAATTGATGCCTGGCGTTGTAAATCGCTTGACCTACACCGTGACTCGCGCCAGCACGAACCTGGACACCTCTGAGCCACCGCTGGAAATCCTTTACCACAGGATCCGCCCAGGTAACGAGGACTTGACCCCGGGAGACAGGGAGCACTCCGAGCTTGTCCTGCTGTTGCCGGACGAAATCAAAAATGGTGTGGGCCCGGGTTTTACCGGGGCGACCGTGTGCGTGGAATATCCGTATTGCCGTGCTCACGACGTCATTCGACTCAACTGCAATGGCAATGACGTGCGTTACGTGGTGACCGAGACCCAGGCCCCTGCGCCGCCGGATCATGGTTCGTCCGTACCCACTCGGGTGTGCTTCGACATCACCAGTACCGACCTGGGCCCTGATCATCCCGAGTTCAAATTCTCCTTCACCGTAAACGACCAGCTCAACAACAGCCCCGACCTCGATTCCCCTTGGTCGGCCGTCCAGACAGTGGACGTGGACCAAGCCGGGGCCCGTTTGCCGGAGCCGATTCCACGGGAAATTCTCAGCGAGGCGAACGACGACCCCCATGTTATCGACCTCGAGAAACTGGGTTCCAATTCTTTATCGGTGATTATTCTGACCAGCGATCCGCGCTTTGTAGCAGGGGATACGATCGAGGCGACTTATATCGCGAAAATCGCCGGACAGCAGAATATCGAGTTCACCGTGACGGGCATCGTTGAATTGGATGAACTGGGACAAAAGAAGGCATGCATCCTTCTGGTTCCAAACGACAAGGTGATTCCAGACAGTACGGTGCAGATATCCTACAAACTATCCAGAAATGGCGCCCCGGTGGGCTCTTCCAGAACAGCAACCGCAACCGTTGTCGGAACAGCACCGGGACAACTTCCCACACCTTTAATCGATGAGGCTGCTGGAGATCACCTCGATCCATCCAACGTACCCAGCACCGGCGCAACCGTACGCATCGACGCATCAGCCCAATTGAAGGCCAACGATAACGGCGAAGTCCACTGGATGGGCGCGGCAGGCGCCGGTAGCAGGACTGTCCCGTTTTCGGTGGCGGCAAGTGAGGAAGGCCAGGACAAGACGGTCAAGGTACCGTTCTCGGTGGTTGAGGCTAACGAGGGGCGCACCATTACCCTGACCTACACCCTCAACCGCGCCGCAGGCGGCCCGCCCGAAGACTCGCCACCGTCGATTTACGACGTCGGGCGGCAGGTAGGCCCCGGCGCGCTGTTGGTCATGGGTGCTCGTAGCGCTTTCTTCAGGCATTGGTCCAGCATGGACATACGCCAGCTGGCGGCACTGGACCCAACGACCCTTCAGCCCCGCCTAGCGCTGTGGAGCTATGAGGGGGACAGTGGCAGCGTAAATGCAACCCACTTCCCGGATACCCAACCGTCACGCATGCTGTTGGTGCGCAGTGGCGACGATTCGATTCGTATCAATCCCATCAACGTTTTCAGCAACGGCAACGACCGGGAAACCGACCACCCGCTACCCTTCAGCGCATTTGCCGCTCGCCGTGACCGAGGCACCCTGATCGGGTGGGGCAGGATAGAGAACGGCAGTGACATCCCGCCGACCATCCGTACCTTCACAGACATTGTCGAAGTTGCCGGCTCAGCCTTCGCCTTTGCAGCATTGCGCGCCAACGGCCATGTGGTTGCCTGGGGCGATCCGACCAATGGTGGAGACCTGCCAGCATCGATAGCCCCTTACAACGATATCGTTGGAGTCAGCGCAAATGCTTCCGCCTTCGCAGCGCGCCGGTCCAACGGTAATCTGCTTGTCTGGGGCAGTGGTCGCTATGGTGGAGTTGTGCCGGACGAGATCGCGTCCCTTGGTGACATCGTTGAAGTGACAGGTAATCACGCGGCATTCGCTGCTCGTCGCGCCAATGGTCATGTTGTTGCTTGGGGCGTTTCAACCGCAGGCGGCTCGGTCCCGTCAGACATCTCGGCGCTGAACGATATCGATCACATCGTGAGCTCTGCTGCTGCTTTTGCAGCGCTACGCACCAATGGCAGGGTGGCCGCCTGGGGATATCCTACAGGGGGCGGAAGCGTTCCAGGCGCGATCACGATATTGGATGACATAACCTACATTACTTCCACTCAGGTTGACGCCAACGCCGATGCCACCCAAGGCACCTTCGCAGCACTTCGGCAAAACGGACACGTCGTGGCCTGGGGCAACCCAGCACTTGGCGGCACAGTTCCTGGGGACATCGCCGAGCTGAGCGACATCAGGCAGATCTCCTCCACGCTCGGGGCCTACGCGGTGTTGCGAGCCAGCGGGCATGTGGCAGCCTGGGGCCATACGACATATGGCGCAGTGGTACCGGCAGATATCATCGGGATCAATGACATCGTGCAAGTCACCTCCACCCAAGGCGCCTTCGCCGCACTGCGTGCCAACGGCACGGTCGTGGCCTGGGGTCTCGCGGCGTGGGGGGGCGATACCGCCGCGGTGGCGAGCCAATTGCACGATGTGCGCGCGGTTTATGCCAACAACCAGGCGTTCACCGCGTTGACGACCGACGGACGGGTCGTCACCTGGGGACTTGCCGGGGCGGGGGGCAACAGCGACGCAGTCCAGGGTCAGCTGCAAGGCCAGGTTTCTTACGAAGCCACCCCCATATCGCGTGGCGTGGCGCAGACAACGTTTGCAGCGTTCCAGGACGGTGCCTGA	MSDSTPTDDQTVLVLFPPRLPLATSPVARAHYGVPIHSYDLIPMGCKVEVDPYQGQQAGDTVSINLNGETALDSQQTTGTNDTVTLHIPHQKLMPGVVNRLTYTVTRASTNLDTSEPPLEILYHRIRPGNEDLTPGDREHSELVLLLPDEIKNGVGPGFTGATVCVEYPYCRAHDVIRLNCNGNDVRYVVTETQAPAPPDHGSSVPTRVCFDITSTDLGPDHPEFKFSFTVNDQLNNSPDLDSPWSAVQTVDVDQAGARLPEPIPREILSEANDDPHVIDLEKLGSNSLSVIILTSDPRFVAGDTIEATYIAKIAGQQNIEFTVTGIVELDELGQKKACILLVPNDKVIPDSTVQISYKLSRNGAPVGSSRTATATVVGTAPGQLPTPLIDEAAGDHLDPSNVPSTGATVRIDASAQLKANDNGEVHWMGAAGAGSRTVPFSVAASEEGQDKTVKVPFSVVEANEGRTITLTYTLNRAAGGPPEDSPPSIYDVGRQVGPGALLVMGARSAFFRHWSSMDIRQLAALDPTTLQPRLALWSYEGDSGSVNATHFPDTQPSRMLLVRSGDDSIRINPINVFSNGNDRETDHPLPFSAFAARRDRGTLIGWGRIENGSDIPPTIRTFTDIVEVAGSAFAFAALRANGHVVAWGDPTNGGDLPASIAPYNDIVGVSANASAFAARRSNGNLLVWGSGRYGGVVPDEIASLGDIVEVTGNHAAFAARRANGHVVAWGVSTAGGSVPSDISALNDIDHIVSSAAAFAALRTNGRVAAWGYPTGGGSVPGAITILDDITYITSTQVDANADATQGTFAALRQNGHVVAWGNPALGGTVPGDIAELSDIRQISSTLGAYAVLRASGHVAAWGHTTYGAVVPADIIGINDIVQVTSTQGAFAALRANGTVVAWGLAAWGGDTAAVASQLHDVRAVYANNQAFTALTTDGRVVTWGLAGAGGNSDAVQGQLQGQVSYEATPISRGVAQTTFAAFQDGA				NA	NA	NA	NA	NA
D1-36_03623	5634			hypothetical protein	ATGGCAGCGCTCATCGGTACCGTCAGCAAGGTGGTAGGGCAGGTTTTCGCACAGGACGTCGGCGGGCTGCGGCGTCCTCTGGTCGAAGGTGACCGGCTGTATGCCGGCGAGCACCTGGTCACCGGGGCCGAAGGCGCTGTCGCGGTGCAGTTGCAGAACGGCCATGAGCTGACCCTGGGTCGCGGCAGCGACTTGACCTTGACCCCACAATTGCTCGCCGATCAGCAGGCGCCGCGGGTGGACACGCCGCAAACGCCGACGCCCAGCGAGGCCCAACTGACCGATGTGCAGAAGCTGCAGCAAGCCATCGCGGCCGGCGCCGACCCGACCCAGACTGGCGAGGCCACGGCCGCCGGGGCCGAGGGCGGCAACCCCGGCGCAGTGGGCGGCGGGCACAGTTTTGTGTTGCTGGAAGAAGTCGGTGGACAGGTCGATCCACTGATCGGCTTCCCCACCGCAGGCTTCAATGGCATACCCGAATTTCCGCTGCTGGAGGTGGCGGCTGACCCGGATGGCGACGACGCAGCCGTTGCGCCGGTCATTCCTGAAACCCCAGACAACCCCGTCACCCTCGATGGCCTGACCGTGGACGGTGGCGAATTGACCGCCAACGAGGCCAACCTCGCCGACGGCACCGCCAGTAATGCTGGTGCATTGGTGCAAAATGGCACCTTTACCATCTCGGCTCCCGACGGCCTGAGCAGCTTGAGCATCGGCGGCATCAGCGTCATCACCGGTGGCGTGCCCGCAGGTTTCCCGCAGTCCATCACTTCGGCCCTGGGCAACACGCTGACGATTACCGGATACGACCCCGCCACTGGCGTCGTCACCTACAGCTACACCTTGACCGACAACGAAGCGCATCCGGCGGGCGGTGGTGCCAACACCATCAGCGAGCAATTCCCGGTGGTGGCAATCGACACCGACGGTGATACCGCGAACGGGAGCCTGGACGTCAACATCACCGACGACGTGCCCCAGGCGATCGACGACAGCCACGCCAGTACCGCGTCGGAAACCCTCGTGAGCCTGACCGGCAACGTTTTGCCCAACGATCACCAGGGTGCGGACCGCATTCCCACCGGCCCTGACAGCGGGCCGATCATTGGCGGCACATTTACCGGCACCTACGGTACTTTGGTTCTCAATCCCAATGGCACCTACACCTACACGCTGAACACCAGCGATCCGCAGTTTGTCGCGTTACACGGTGGCGGCAGCGGCACGGAAACCTTCACCTACACCCTGACCGACGCCGATGGCGACACCAGCACCGCGAACCTGGTGCTGCAAGTCCACAACAACGACGACCCGGTGATCATCACCGGCCTGGATACCGATGGCGGCGAGCTCACGGTCCAGGAAAACAACCTCGACGACGGCAGCAGCCCGGACACGTCGGCGCTGACGCAAAACGGCACCTTCACCGTGACCGCGCTGGACGGCGTGCAGAGCCTGAGCGTTGGCGGCATCACCGTGGTCAGCGGTGGCGTGGCCGCCGGATTTCCACAATCGATCACCACGGCGCTGGGCAATACCCTGACCGTGACCGGCTTCAACGCCGCCACGGGCGTGGTCAGCTACAGCTACACCTTGCTCGACAACGAAGCCCATCCCAACGCCAACGGCGCCAACAGCCTGGGCGAGCAATTTACCGTGGTGGTCACGGACGATAACGGGACCACGGCCACCGGCAATCTGGACGTGAACATTGTCGATGACTTGCCTACCGCTCATGCCGACTCCGCCTCGGTGGATGAGGGCGGGACGGTCAGCGGCAACGTTCTCAACAACGATGAGGGCGGTGCCGATGGGCCTGCGGCAAGCGGCGCGGTGATCGGCGTTCGCGCTGGCAGCGATACCTCGACCTCGGCCGTTGGCGGCCTCAATACCCAGATCAACGGCAGCTATGGTTACCTGACCCTGGACGCCAATGGCAACGCTGTGTACCACAGCAATCCAAATGCCGTCAGCGCACCGGGTGCCACCGACGTGTTCACCTACACCGTGCGCGACGCCGACGGTGACGAAAGCACCACCACCATCACCATCGACGTGCATAACAGCTGCCTTGTCGCCGCACCGGATGATGAAGTCAGCGTGCGTGAAAGTGCGCTCGACCTGAACCAGGACGGCCAGGACCTGGCTCCCGGCACCGTCACCGGTAGCCTGCCGAACGCCACCAGCGAAACCGCCAGCGGCAGCCTGCTGGACTCGGTGACCGGTGCCGTTGGCGCCGTCACGTTCGCCCTGGTCGGCAATGCCACCGGCGCCCACGGTCAACTATTGCTCAACCCGGACGGTTCCTACACCTACACCCTGACGTCGCCCGCCACGACAACGCCCGCCGCCAACGATGGCCCGAATGAACTGAGTGAAAGCTTTACCTATCAGGCCACGGATGCACTCGGCAACACCGTCACCAGCACCATCGTCATCAATATTGTCGACGATGTGCCCAAGGCGCATTGCGATACCGCCGCGGTGGTGGAGGGCGGGACGGTCAGCGGCAACGTTTTGCACAACGACGTGCTTGGTGCCGACGGTGGCACGATGGTTGGCGTGCGCGCTGGCAACGACACCTCAAGCCCCGCCAACGGCGGCCTCAATACGCAGATCAATGGCGCTTATGGCTACCTGACGCTGGATGCCAACGGCAATGCGGTCTATCACAGCAATCCGGACTCCGTCGGCGCGCCAGGTGCAACTGATGTGTTCACCTACACCGTGCGCGACGGTGACGGCGATGAAAGCACCACAACCATCACCATCGATGTGCACAACAGTTGCCTGGTTGCCGAGACCGACCATGACATCACCGTCTACGAAAAGGCCCTGGACCTGAAACAGGACGGCCAGGACTTGGCGCCCGGCACCACGACCGGCAGCGAGCCAGGCTCCACCAGCGAAACCGCGACTGGCTCCCTGGTAGGCTCGGTCACTGGCGCAACCGGAGCCGTCACGTTCGCCCTGGTGGGTGATGCCAACGGCGCCCACGGCCAATTGTCGCTCAACCCCAATGGTTCCTACACCTATACGCTGACGTCTGCGGCGGCAACGTCGCCCAATGCCAACAATGGCCCAAACGTATTGACCGAGAACTTCACTTATCAGGCTACTGACGCCCTGGGCAACAGCACCACCGGCAACCTGGTGGTCAGCATCGTCGATGACGTACCCAAGGCTGTCGCGTCCGAGCGTTCGGTCACGGCGACCGAGATCGACTCGAACCTGCTGATCGTGCTCGACGTCTCCGGCAGCATGAAAGATGCCTCCGGTGTCCCGGGGCTTTCGCGAATGGACCTGGCCAAGCAGGCGGTCAGCGCCTTGCTCGACAAATACGACGACATGGGCGACGTGAAAGTCCAACTGGTGACCTTCAGCGGCAGCGCCACCGACCAGAGTGCCGTCTGGGTGGACGTTGCAACCGCCAAGACGCTGATCGCCGCGCTGAAAGCGCACGGTGACACCAATTACGACGCGGCAGTGGCCACGGCCCAGACTGCGTTCGCAACCTCCGGCAAACTGGCTGGCGCACAAAACGTTGGCTACTTCTTTTCCGACGGCAAGCCGACCTTGGGCGAAATCGGCTCGGCGGACGAGGTCGCGTGGAAAGCCTTTCTCGATGCCAATGGCATCAAGAACTACGCCATCGGACTGGGCAGCGGCGCGAGAAACATCAATCTCGATCCGCTGGCCCACGACGGCAGCACCCACACCGACACGAACGCGGTCGTGGTCACCGACCTGAACCAGCTCAACTCGGTGCTTTCCGGCACCGTGCAGGGCGTGCCGGTCACCGGCAGCCTGCTCGGGGAGGGCGGTTCGTTCGGCGCCGACGGCGGATTTGTGAAAAGCCTCCTGGTGGACGGCACGACCTACAGCTACAACCCGGACGCCAACGGTGGCCAGGGAGCACTGACTGCCAGCGGCGGCACCAATCATGGGGTCTTCAATACGGCGACCAACACGGTCAGCATCGCCACCGGCCACGACGGCACTCTGGTGGTGAACCTCGACACCGGGGCGTTCAGCTACACCTCCCAGACCACCACCGGTACGTTGATCACCGAGAACATCGGCTACACCCTCAGTGATAACGATGGCGACCTGGCCAGCTCCAACCTGGTCATCAAGGTCCAACCCAACAGCCCGCCGGTGGCGATCGATGACAACGTCATAACCAACGTGCTGTCGGGCAATATCGTAGTCCCCGGTGAGCTGTTGCTGGGCAACGACAGCGACGCCAATAGCGACCCGCTTACCGCGTCGCCGACCAGTTTCAACACAGGCTGGGTTGCCAAGGGCGCGGACTTCACCGGCAGCACCGGCACCGCAAGCTTCGCCGGCAACAACGTCCAGTCGATCAACCTGAACCGCAGCGCCTTCGTCGCCAATGCCGCGAGCATGACAGCGGTGCTGGTAGTCAGTGGCGCGCTGGGGGCGGTGTCGAACAGCAACGCCAACGATGAAGACCGGCTCAACATCAGCCTGAAGCAGGGCGAAACCCTCAAACTGGATCACAACCTGGCCGCGGGCCGCATCGCCATGGAGTACTCCTTGAATGGCGGGCCCTTCATCGCGATCAGCGACGGTGCCTCGTTCACGGCGGCGGCGACTGGCAACTACCAGATCCATGTGACCAACATTCCCAATCCTGGCAATGGCAACGGCAATGGCTCGGAAAACTACCAGCTGACCCTGACGGTCAACTACGCGGGCGCTCAAAACAGCACGCCGGATTTCCATGGCACCTACACCGCCAGCGACAACCACGGTGGCAGCGATAGCGCCGGGGTAGGCATCAGCTATCAAGCCGGTCACACCCTGACGGGGACGGCGGGCGACGACGTGCTGCTGGCCGGCAATGGCGACAACGTGCTGAACGCCGGCGGTGGCGACGATGTTCTCAGCGCGGGCTCTGGCAATAACGCCATGCACGGTGGGGCAGGGGATGATGTGCTCTACAGCGGCGTCGGCAACGACCTGCTCGACGGCGGCACCGGCAACGATACCGCCAGCTATGCCCATGCCACGGCAGGCGTCACTGTGAACCTCGGCCTGCTGGCCGCGCAAAACACCCTCGGGGCCGGGACCGACACCCTGGCCGGCATCGAAAACCTCGTTGGCTCGAATTTCAACGACACCCTCACGGGCGACGGCTCGGGCAATCGCATCGATGGCGGCCTTGGCCATGACGTGCTCAACGGCGGGGGCGGCGACGACATTTTGATTGGCGGCCTGGGCAATAACATCCTCAGCGGCGGCAGCGGCGCGGACACCTTCCAATGGCAGGCTGGCAACAGCGGCCACGACGTCATCACCGACTTCACCCCGGGCCTGGACAAACTCGACCTGTCCCAACTGCTACTGGGCGAAAACGGCAGCGCGGCGTCCCTGGACGACTACCTGCACTTCACCGTCACCGGCACCGGCGCATCGGTCGTGACCAGCATCGACGTCAGCAGCACCGCGGGCGCCACGCCGAACCAGACCATCGACCTGGCCGGCATCGATCTTGCCAGCCATTACGGGGTGACGCCGGGATCGGGTGGAATGATTGGCGGGGCTGATACGGCGACGATCATCAATGGGATGCTGAATGATCATTCGTTGAAGGTGGATACGGTTTGA	MAALIGTVSKVVGQVFAQDVGGLRRPLVEGDRLYAGEHLVTGAEGAVAVQLQNGHELTLGRGSDLTLTPQLLADQQAPRVDTPQTPTPSEAQLTDVQKLQQAIAAGADPTQTGEATAAGAEGGNPGAVGGGHSFVLLEEVGGQVDPLIGFPTAGFNGIPEFPLLEVAADPDGDDAAVAPVIPETPDNPVTLDGLTVDGGELTANEANLADGTASNAGALVQNGTFTISAPDGLSSLSIGGISVITGGVPAGFPQSITSALGNTLTITGYDPATGVVTYSYTLTDNEAHPAGGGANTISEQFPVVAIDTDGDTANGSLDVNITDDVPQAIDDSHASTASETLVSLTGNVLPNDHQGADRIPTGPDSGPIIGGTFTGTYGTLVLNPNGTYTYTLNTSDPQFVALHGGGSGTETFTYTLTDADGDTSTANLVLQVHNNDDPVIITGLDTDGGELTVQENNLDDGSSPDTSALTQNGTFTVTALDGVQSLSVGGITVVSGGVAAGFPQSITTALGNTLTVTGFNAATGVVSYSYTLLDNEAHPNANGANSLGEQFTVVVTDDNGTTATGNLDVNIVDDLPTAHADSASVDEGGTVSGNVLNNDEGGADGPAASGAVIGVRAGSDTSTSAVGGLNTQINGSYGYLTLDANGNAVYHSNPNAVSAPGATDVFTYTVRDADGDESTTTITIDVHNSCLVAAPDDEVSVRESALDLNQDGQDLAPGTVTGSLPNATSETASGSLLDSVTGAVGAVTFALVGNATGAHGQLLLNPDGSYTYTLTSPATTTPAANDGPNELSESFTYQATDALGNTVTSTIVINIVDDVPKAHCDTAAVVEGGTVSGNVLHNDVLGADGGTMVGVRAGNDTSSPANGGLNTQINGAYGYLTLDANGNAVYHSNPDSVGAPGATDVFTYTVRDGDGDESTTTITIDVHNSCLVAETDHDITVYEKALDLKQDGQDLAPGTTTGSEPGSTSETATGSLVGSVTGATGAVTFALVGDANGAHGQLSLNPNGSYTYTLTSAAATSPNANNGPNVLTENFTYQATDALGNSTTGNLVVSIVDDVPKAVASERSVTATEIDSNLLIVLDVSGSMKDASGVPGLSRMDLAKQAVSALLDKYDDMGDVKVQLVTFSGSATDQSAVWVDVATAKTLIAALKAHGDTNYDAAVATAQTAFATSGKLAGAQNVGYFFSDGKPTLGEIGSADEVAWKAFLDANGIKNYAIGLGSGARNINLDPLAHDGSTHTDTNAVVVTDLNQLNSVLSGTVQGVPVTGSLLGEGGSFGADGGFVKSLLVDGTTYSYNPDANGGQGALTASGGTNHGVFNTATNTVSIATGHDGTLVVNLDTGAFSYTSQTTTGTLITENIGYTLSDNDGDLASSNLVIKVQPNSPPVAIDDNVITNVLSGNIVVPGELLLGNDSDANSDPLTASPTSFNTGWVAKGADFTGSTGTASFAGNNVQSINLNRSAFVANAASMTAVLVVSGALGAVSNSNANDEDRLNISLKQGETLKLDHNLAAGRIAMEYSLNGGPFIAISDGASFTAAATGNYQIHVTNIPNPGNGNGNGSENYQLTLTVNYAGAQNSTPDFHGTYTASDNHGGSDSAGVGISYQAGHTLTGTAGDDVLLAGNGDNVLNAGGGDDVLSAGSGNNAMHGGAGDDVLYSGVGNDLLDGGTGNDTASYAHATAGVTVNLGLLAAQNTLGAGTDTLAGIENLVGSNFNDTLTGDGSGNRIDGGLGHDVLNGGGGDDILIGGLGNNILSGGSGADTFQWQAGNSGHDVITDFTPGLDKLDLSQLLLGENGSAASLDDYLHFTVTGTGASVVTSIDVSSTAGATPNQTIDLAGIDLASHYGVTPGSGGMIGGADTATIINGMLNDHSLKVDTV				NA	NA	NA	NA	NA
D1-36_03624	1359	bepC_2		Outer membrane efflux protein BepC	ATGCGCGTTCTTACCCCCCTCTGCAGCGCGGTTCTACTGGCCATGGCCTGCTCCTCTCAGGTTCAGGCGATGTCCCTGACCGAGGCGATCCAGAGCACCATCGCGACTCACCCGGAACTGGCGCAACGGGTAGACAGCCGTCTGTCGGCCAACGAGGACGTCAAGGTCGCCAGAGGAGGCTTCTTTCCGTCGGTGGATTTGAACGCCGGTTATGGCCGTGGCTACAGCGACAACACCAATACCCGGGCACTGGGCAACCATCACACCAACATCCTGACCTACACCCAGTCGGAACTGCGCCTGCGGCAGATGATCTTCGACGGTTTTAATACCGCCAATGAAGTGGAACGTACCCAGGGCGTGGTCAATTCCCGGGCCTATTACGCCCAGGGCACCGCGCAGGATCTGGCGCTGCGGACCATCGAGGTCTACCTGGAAGTGCTCAAGCGTCGCGAACTGGTGACCTTGGCCAAGAACAACCTGCAAGCGCACCTGCGCGTCAATGACCAGATCGGCCTGCGCACCGAGCGCGGCGTGGGCAGTACCGCCGACTCCGATCAGTCCAATGCACGTCGGGCCCTGGCGGAAAACAACTACGACACCGCCCAGGTCGACCTGGCGGACGCGGAAGCAAATTTCTACAGCGTGGTCGGGCGCATGCCCGATGAGCTGGAAACCCCACCGTCCACCAAAGGCGAGATCCCCGTGGACCTGCGCGAAGCCCAGCAAAGCATGGTGGATAACAACCCGTACCTGAAATCGGCCCAGGCCGACATCCAGTCCGCCGAAAGCCAATACGAGGTGGCGAAATCACCGTTCTATCCGCGCTTCGACGCCGAAGCAGCCGTGGGCGCCAACAACAACCTGGGTGGCGAGGAAGGCCACGACAACAACTGGCGGCTGGGCGTGGTGATGAACTACAACCTGTTCCGCGGCGGCAGCGACAAGGCGCGGCTGGCATCCAACGCCCACCAGATCAACCAGGCGATGGACATCCGCAACAACGCACTGCGCCAGCTCAACGAAGACACCCGCCTGGCCTGGAACGCAATGCTCAACGCCCGCAAACAGACGCCGACCGCCCGGGAATACGCCGACACCACTTCTCGTGTGCGCGCGGCTTATCAAGATCAGTTCGGCCTCGGCCAACGCACACTGCTTGACCTGCTCGACAGTGAAAACGAGCTGTATAACGCCAACCGCCGTTACACCGAGGTGCGCTACACCGAGGAGTATTCGATGTACCGGGTGTTGGCGAACATGGGCCTGCTGCTGCAGAAACAGCGGATCGTGCTGCCGGCCGATGCGGTCGCGCAGACCGAAGTCAAGAACCAGGCACGGCTGCCGGAACTGAAGTAA	MRVLTPLCSAVLLAMACSSQVQAMSLTEAIQSTIATHPELAQRVDSRLSANEDVKVARGGFFPSVDLNAGYGRGYSDNTNTRALGNHHTNILTYTQSELRLRQMIFDGFNTANEVERTQGVVNSRAYYAQGTAQDLALRTIEVYLEVLKRRELVTLAKNNLQAHLRVNDQIGLRTERGVGSTADSDQSNARRALAENNYDTAQVDLADAEANFYSVVGRMPDELETPPSTKGEIPVDLREAQQSMVDNNPYLKSAQADIQSAESQYEVAKSPFYPRFDAEAAVGANNNLGGEEGHDNNWRLGVVMNYNLFRGGSDKARLASNAHQINQAMDIRNNALRQLNEDTRLAWNAMLNARKQTPTAREYADTTSRVRAAYQDQFGLGQRTLLDLLDSENELYNANRRYTEVRYTEEYSMYRVLANMGLLLQKQRIVLPADAVAQTEVKNQARLPELK	PGPT0022235_756	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_I_SECRETION_SYSTEMS	CE-TSS1-ADHESIN_TRANSPORT,PGPT0022235-lapE-K12543	NA	NA
D1-36_03625	2160	apxIB	COG2274	Toxin RTX-I translocation ATP-binding protein	ATGACCCGCATGGAACCGGCAATTCCCGGCACCGACCCGCGCTTGAACTTCGATGATCCCTTGCTGGACGGCTTGTTGATCCTCTGCAAACTCCATGGCGCGACCGTCAGCCGCGCCAGCCTCAGCGCCGGGCTTCCTATGGCGCACCAACGTCTGAGCCTGGACCTGCTGCCTCGCGCAGCGGCCCGGGCCAGTTTGCAGGCGCGGCTGTTGCGCCGCGAGCTGGGGGATATATCGGCGCTGAATTTGCCAGTGATGCTGATCCTCGCCGGGGGCCGCTGCGCGATATTGCGGCGCTGGGGCGAGGACGGTCGCGCGCTGATCCTGCCCAGCGAGGCCGATGGCGGTGAACAATGGGTCAGCCGCGAGGAACTGACCACCGATTACAGCGGCCAGGCGCTCTTCGCCCGGCCGCGCCATGAGCTTGAAGACCTGCGCGCGCCTCTGGTGCCACGGGTCGAAGCGTGGTTTCGCGACACCTTGAAACTGTCCCGCTGGCTGTACAGCGACGCAATCCTGGCCAGTTTCCTGATCAATCTGCTGGGCTTGATGGTGCCACTGTTCGTCATGCAGACCTACGACCGCGTGGTGCCGAACCAGGCCACCTCCACGTTGTGGGTGCTGGCCGTCGGGCTGTTGATCGGCACCGGTTTCGAGCTCGTGTTGCGGGTGGTGCGTGCTCATCTGCTGGACACCGCCGGCAAGAAAACCGACGTGATTCTTTCCGCCACCCTGTTCGAGCGCATCACCGGCATGGCCATGAAAGCCAAGCCGGTGACCATCGGCGGATTCGCCCAAAGCATCCATGACTTCCAAGGGCTGCGGGAGTTTCTTACCGCCGTGACCCTTACCAGCCTGATCGACCTACCCTTCGCCCTGCTGATGCTGGTGGTGATTGGGCTGCTGGGCGGTTGGCTGGTGGTGATTCCGGTGGTGGCGTTTCCCATCACCGTGGTATTCGCGATGATCATCCAGGCGCGCCTGCGCGACACCGTGCAAAAAAGCCTGGCCCTGGGCGCCCAGCGCCAAGCCCTGCTGATCGAAACCCTCGGCGGCCTGGAAACCCTCAAGGCCTGCAGCGCCGAAAGCGAACGCCAGCATCAGTGGGAAAGCACCCACGGCGCCCTCACCCGCCTCGACAGCCATGCGCGCAATCTTTCGGCTCTGGCGACCAACGGCACGTTGTTCCTGCAACAACTGGCGGGCATGGCGACCATCGTCGCCGGGGTCTACAGCATCATCGCTGGCAACCTCAGCGTCGGCGCACTGGTGGCGACTTACATGCTCGGCAGCCGCGTGCTGGCCCCGCTCGGGCAGATCGCCGGGTTGATCACCCGCTACCAGCAAGCGCAGCTCACCATGCGCAGCACCGATGCCCTGATGGCCTTGCCCCAGGAGCGCGACGCCAAGCAGCGCCCGCTGGACCGAACCCAATTGCAAGGTGCCCTGGACATCAGCGGCATCACCTTCCATTACAACGGCCAGGACGCTCCGGCGCTGGCCGATGTCAGCTTCAGCCTCAAGCCCGGCGAACGGGTCGGGATCATCGGCCGCAGCGGCTCGGGCAAAAGCACCCTGGCGCGGCTGGTGATGGGGTTTTATGCGCCGGAGCAAGGCCAGTTGCTGCTGGACGGCCTGGACTTGCGGCAACTGGACGTTGCCGACTTGCGTCAGCAGATCGGCTATGTCGCCCATGACTTGCCGCTGCTGGCCGGCAGCCTGCGGGACAACCTCACCCTCGGCGCGCGCTACATCAGCGACGGGCGCATGCTGGAAGTGGCGGAACTGACCGGCGTTACCGAATTGGCCCGTCAACATCCCCAAGGCTTCGACCGCCCGGTGGGCGAACGCGGGCAACTGCTGTCCGGCGGCCAACGCCAGGCCGTGCTACTGGCCCGGGCCTTGTTGCTCGATCCGCCGATCCTGCTGCTGGACGAACCCACCAGCGCCATGGACAACAGCAGCGAAGACACTCTGCGCCAGAAGCTTCATACCCATGTGCAAGGCAAGACCGTGCTGCTGGTCACCCACCGTACCTCGATGTTGAGCCTGGTTGACCGGTTGGTGGTGCTGGATAACGGGCGGATCGTGGCGGACGGACCGAAGGACGCGGTGATCGATGCGCTGCGCAAGGGACGGGTGGGCTCTGCTGCGGTGTAG	MTRMEPAIPGTDPRLNFDDPLLDGLLILCKLHGATVSRASLSAGLPMAHQRLSLDLLPRAAARASLQARLLRRELGDISALNLPVMLILAGGRCAILRRWGEDGRALILPSEADGGEQWVSREELTTDYSGQALFARPRHELEDLRAPLVPRVEAWFRDTLKLSRWLYSDAILASFLINLLGLMVPLFVMQTYDRVVPNQATSTLWVLAVGLLIGTGFELVLRVVRAHLLDTAGKKTDVILSATLFERITGMAMKAKPVTIGGFAQSIHDFQGLREFLTAVTLTSLIDLPFALLMLVVIGLLGGWLVVIPVVAFPITVVFAMIIQARLRDTVQKSLALGAQRQALLIETLGGLETLKACSAESERQHQWESTHGALTRLDSHARNLSALATNGTLFLQQLAGMATIVAGVYSIIAGNLSVGALVATYMLGSRVLAPLGQIAGLITRYQQAQLTMRSTDALMALPQERDAKQRPLDRTQLQGALDISGITFHYNGQDAPALADVSFSLKPGERVGIIGRSGSGKSTLARLVMGFYAPEQGQLLLDGLDLRQLDVADLRQQIGYVAHDLPLLAGSLRDNLTLGARYISDGRMLEVAELTGVTELARQHPQGFDRPVGERGQLLSGGQRQAVLLARALLLDPPILLLDEPTSAMDNSSEDTLRQKLHTHVQGKTVLLVTHRTSMLSLVDRLVVLDNGRIVADGPKDAVIDALRKGRVGSAAV	PGPT0022225_755	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_I_SECRETION_SYSTEMS	CE-TSS1-ADHESIN_TRANSPORT,PGPT0022225-lapB-K12541	NA	NA
D1-36_03626	1365	hlyD		Hemolysin secretion protein D, chromosomal	ATGTCTGCTCAAACATCCGATTCAGCCGCCCGAAGCTACTTCGGCAGCTTCAGCAAAAGCGCTGAAAGCGAGTTCATGCCGGAAACCGCCGGTGCCACGCTGCAGGACTCGCCCCGTCGCTCGCGGGTCACTGTCTGGCTGGCGGCCGGGCTGATTGTCACTGGGCTGGTCTGGGCGAAACTGGCGGTCCTGGAGGAAGTCACCACCGGAGAAGGCAAGGCGATTCCATCGAGCAAGATCCAGGTGATCCAGAACCTGGAGGGCGGCATCGTCACCGAGATTTTCGTGCGCGAAGGCCAGATGGTGAACAAGGGCGACACCTTGCTGCGCCTGGATGACACGCGGTTCCTGTCGAACAAGGGCGAGAGCGAGGCCGACCGTTATGCGTTGATGGCCCAGGTCGAACGCTTGTCGGCGGAGGCCGAAGGACGACCATTGCAGTTATCCAGCGAAGTGACCGGCAAGGCGCCACAAGTGGCCGAGGACGAGCGTGCGCTCCATGAGCAGCGCCAGCGTCGCCTGGCCAGCGAGCAACGGACCTTGACCGAACAATTGCGGCAGAAAACCCAGGAACTGGCGGAGTTTCGCTCCAAGCAAGGCCAATTCAGCTCGGCACTGGCGTTGCTGCAGGAAGAGATGAACATGTCGGCACCGCTGGTGCGTACCGGGGCGGTGTCGCCGGTGGAGATTCTGCGGCTCAAGCGCAGCGCGGTGGAAATCCGCGGCTCGCTCAACGCCACCACCCTGGCGATCCCTCGGGCCGAGTCGGCCATCAATGAGATCAAGAGCAAGATCGACGAATCGGAACAGACCTTCCGCTCCGACGCGGCCAAGGAGCTCAACGAGAAACGCACGGAACTGTCGAAAATCACCGCCTCCAGCATCGCCATCGATGACCGCGTGACCCGCACCACCGTAGTCTCGCCGGTGCATGGGGTAATCAAGCAAATGAAGGTCAACACCATCGGCGGCGTGGTCCAGCCGGGCAGCGACATGATCGAAGTCGTGCCCCTGGAAGACAACCTGCTGATCGAAGCCAAGGTCCGCCCACAGGACGTCGCCTTCCTGCACCCAGGCCAGAAAGCCATGGTCAAGTTCAGCGCCTACGACTACACGATCTATGGTGGGCTGAGCGCCAAGCTCGAGCTGATCGGCGCCGACACCATCACCGACGACAAGGGCAACAGTTTCTATTTGATCCAGGTGCGCACCGATAAGAACCACTTGGGTGGGGACGCGAAACCGTTGCTGATCATTCCGGGAATGGTGGCGACAGTGGACATCATCACCGGGGAGAAAAGTGTGTTGGACTACCTGCTCAAGCCGGTGTTGAAGGCGCGGACCGAGGCGATGCGCGAGCGGTAA	MSAQTSDSAARSYFGSFSKSAESEFMPETAGATLQDSPRRSRVTVWLAAGLIVTGLVWAKLAVLEEVTTGEGKAIPSSKIQVIQNLEGGIVTEIFVREGQMVNKGDTLLRLDDTRFLSNKGESEADRYALMAQVERLSAEAEGRPLQLSSEVTGKAPQVAEDERALHEQRQRRLASEQRTLTEQLRQKTQELAEFRSKQGQFSSALALLQEEMNMSAPLVRTGAVSPVEILRLKRSAVEIRGSLNATTLAIPRAESAINEIKSKIDESEQTFRSDAAKELNEKRTELSKITASSIAIDDRVTRTTVVSPVHGVIKQMKVNTIGGVVQPGSDMIEVVPLEDNLLIEAKVRPQDVAFLHPGQKAMVKFSAYDYTIYGGLSAKLELIGADTITDDKGNSFYLIQVRTDKNHLGGDAKPLLIIPGMVATVDIITGEKSVLDYLLKPVLKARTEAMRER	PGPT0022230_416	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_I_SECRETION_SYSTEMS	CE-TSS1-ADHESIN_TRANSPORT,PGPT0022230-lapC-K12542	NA	NA
D1-36_03627	597			hypothetical protein	ATGTCCAGAATCCACTGCCCACGTTGCCTCAGGCCGCAAAGCCATTGCCTGTGCCCTTTGATCCCCAGCCTCGACAGTCGCACCCGCGTGTTGCTGTTACAGCATCCCAGCGAGGTGAACCATGCCTTGAACACCGCACGGCTGGCGGCGTTGGGGCTCAACAATGCCGAATTGATCGTGGGCGAGGTGTTCGAGGATCTGTCACGGCTGCTCGATCAACCGGGTTACCGGGCGCGGTTGTTGTTTCCCGCCGACGATGCGCAGCCGCTGCAAGCCTACACCCCCTGCGATGAGCCGCTGCTGTTGGTCGTTCCTGACGGCACCTGGCGCAAGGCCCGCAAGTTACTGCACCTCAACCCGCTGCTGGCGGCACTGCCAAGGGTGACCTTGGCCGACGGCGGCGTGTCCCGCTATCGTTTGCGCAAGGCGCCAGGGCCAGGGGCGTTGTCGACGGTGGAGGCGATCGCCCAGGCGTTGCAGACGCTTGAGACACCGGTGAGTTTCGAGCCGTTGTTGCGGCCGTTCGAGGCGTTGATCGAGGGGCAAATTGCGGCGATGGGAGAGGAGACTTACCAGAAGAACCATGGAGGGGTATAG	MSRIHCPRCLRPQSHCLCPLIPSLDSRTRVLLLQHPSEVNHALNTARLAALGLNNAELIVGEVFEDLSRLLDQPGYRARLLFPADDAQPLQAYTPCDEPLLLVVPDGTWRKARKLLHLNPLLAALPRVTLADGGVSRYRLRKAPGPGALSTVEAIAQALQTLETPVSFEPLLRPFEALIEGQIAAMGEETYQKNHGGV				NA	NA	NA	NA	NA
D1-36_03628	894			hypothetical protein	ATGGCCAACGCTCTACCCGACCTGAAACTGCTGCGCATCTTCGTCAGCGTGGTCCGGCACCAGGGGTTTGCCAACGCGCAGCACGAGCTCAACCTCTCCACATCCGCCATCAGTACCTACATGAGCCAACTCGAATCGGCCCTGGGCCTGGTGCTCTGTCATCGCGGGCGGGGTGGGTTCAGCCTGACCAGCAAGGGCGAGTTGTTCCATCAGGAAACCTTGCGCCTGCTCGGCGAACTCGAAGGCTTCGAGCAATATGCTGCGGCCCTCAAGGGCGAGTTGCGCGGCACCCTGAACCTGGGGGTGATCGATTCCACGGTGAGCGACAAAGCCTTGCCGTTCGCCGAAGCCATCGGCGCGTACAGTCAGGAACACCCGGCGGTGCATCTGCACCTGTCGGTCCTGAGCCCTTACGAATTGCAACTCGGCGTCCAGGACAACCGCCTGGACCTGGCCATCGGCGCGTTTTCCACGCGCATGAGTGGGCTGGTCTACATGCCGCTGTACCGCGAGCAGCACTGGTTGTATTGCAGCAGTCGCCACCCGTTGTTCGGTGAACGACGTATCCCGGAGCAACTCATCACCCAGCAGCGCATGGTCGGACGCGGTTACTGGAGCCAGGCCGAGCTGGCCCGCCATGGCTTCAAGCACAGCGCGGCGACAGTGGAAAGCATGGAGGCCCAGTTGATCCTGGTACTGTCGGGCGCCTACATCGGTTATCTGCCCGAACATTACGCTCAGGCCTGGGTCGACAAGGGCGATTTACGCGTGCTGCTGCCGGCGACGTTTGGTTATCAGGCGCCGTTCTCGATGATCGTTCGCCGTGGCCGCAGCCGCGAGCCGCTGATCCAGACCTTCCGTGATCTGCTCAAAGCTCAACTGAACCAGGCCTGA	MANALPDLKLLRIFVSVVRHQGFANAQHELNLSTSAISTYMSQLESALGLVLCHRGRGGFSLTSKGELFHQETLRLLGELEGFEQYAAALKGELRGTLNLGVIDSTVSDKALPFAEAIGAYSQEHPAVHLHLSVLSPYELQLGVQDNRLDLAIGAFSTRMSGLVYMPLYREQHWLYCSSRHPLFGERRIPEQLITQQRMVGRGYWSQAELARHGFKHSAATVESMEAQLILVLSGAYIGYLPEHYAQAWVDKGDLRVLLPATFGYQAPFSMIVRRGRSREPLIQTFRDLLKAQLNQA	PGPT0003120_872	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-ACINETOBACTIN_METABOLISM,PGPT0003120-bauR-K21699	NA	NA
D1-36_03629	951	gbuA	COG0010	Guanidinobutyrase	GTGGACAAGATTCTTCACCAACCACTGGGCGGCAACGAAATGCCGCGCTTCGGCGGCATCGCCACCATGATGCGACTTCCCCACGTGCCCACCGCCGCCGGCCTGGACGCTGCCTTTGTCGGCGTGCCGCTGGACATCGGCACGTCCCTGCGCGCCGGCACCCGTTTCGGGCCGCGCGAAATCCGCGCCGAATCCGTGATGATCCGCCCCTACAACATGGCCACCGGTGCCGCGCCGTTCGACTCCTTGTCGGTGGCGGACATTGGCGACGTGGCGATCAATACCTTCAACCTGCTCGATGCCGTGCGAATCATCGAGGAGTCGTACCACAAGATCCTCGAACACAACGTCATCCCCCTGACCCTGGGCGGTGACCACACCATTACCCTGCCGATTTTGCGGGCGATCCACAAAAAACACGGCAAGGTCGGCCTCGTGCACATTGACGCCCACGCCGACGTGAACGACCACATGTTCGGCGAGAAAATCGCCCACGGCACCACCTTCCGCCGCGCCGTGGAAGAAGGGCTGCTCGATTGCGACCGCGTGGTGCAAATCGGGCTTCGCGCCCAGGGCTATACCGCCGAGGATTTCAACTGGAGTCGCAACCAGGGCTTTCGCGTGGTCCAGGCCGAAGAGTGCTGGCACAAATCCCTGGCGCCGTTGATGGCTGAAGTGCGCGAGAAAGTCGGCGGCGGCCCGGTGTACCTGAGCTTCGACATCGACGGCATCGACCCGGCCTGGGCGCCAGGCACCGGCACCCCGGAAATCGGCGGCCTGACCACCATCCAGGCAATCGAAATCGTCCGCGGCTGCCAGGGCCTCGACCTGGTCGGTTGCGATCTGGTAGAAGTTTCGCCGCCGTACGACACCACCGGCAACACCTCGCTGCTGGGCGCGAACCTGCTGTACGAGATGCTCTGCGTACTGCCCGGCGTGGTTCATCGCTGA	MDKILHQPLGGNEMPRFGGIATMMRLPHVPTAAGLDAAFVGVPLDIGTSLRAGTRFGPREIRAESVMIRPYNMATGAAPFDSLSVADIGDVAINTFNLLDAVRIIEESYHKILEHNVIPLTLGGDHTITLPILRAIHKKHGKVGLVHIDAHADVNDHMFGEKIAHGTTFRRAVEEGLLDCDRVVQIGLRAQGYTAEDFNWSRNQGFRVVQAEECWHKSLAPLMAEVREKVGGGPVYLSFDIDGIDPAWAPGTGTPEIGGLTTIQAIEIVRGCQGLDLVGCDLVEVSPPYDTTGNTSLLGANLLYEMLCVLPGVVHR	PGPT0007635_241	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	INSECTICIDAL_COMPOUNDS	INSECTICIDAL-GAMMA-AMINOBUTYRIC_ACID_BIOSYNTHESIS,PGPT0007635-gbuA-K12255	NA	NA
D1-36_03630	408			hypothetical protein	ATGAACGATCGAGATCAAGTCTTCGAAGCCGCCGCCGATCTGGTGTCGGCCTTCGCCCGCAACGATCGCGAGGCTTACTTCGGTGCGTTCAGCACCGATGCGAGCTTCGTGTTCCACACCCTCGAACAGCCGCTGCTGTCGCGCGATGCCTACCAGGCGTTGTGGGATCGCTGGCGGTCCGAGGATGGTTTCGAGGTGCTGAGCTGCACCTCGAGCAACGCCTTCGTCAGCCTGCAAGGGAACGTGGCGATTTTCATCCATGACGTGGCCACCGAGCTGCGCATGCAAGGGGAGCTTCACTTTAGCCAGGAGCGCGAAACCATCGTGTTTCGCCAAGAACAACAAGGCCTATGGCTGGCCTGTCATGAACATTTGTCCGCAATGCCGGAAGGGCTGCCACCCCCTTAG	MNDRDQVFEAAADLVSAFARNDREAYFGAFSTDASFVFHTLEQPLLSRDAYQALWDRWRSEDGFEVLSCTSSNAFVSLQGNVAIFIHDVATELRMQGELHFSQERETIVFRQEQQGLWLACHEHLSAMPEGLPPP				NA	NA	NA	NA	NA
D1-36_03631	1503			hypothetical protein	ATGGATAACAATAACGATAAAAGCCTTACGCAGATTGAAACCAACGGGGTCGAGCAGATCCCGGACCATGAACGAACCGCCGGCCCGGGTGATCTGTTTCGACTGATCTTCGGCGGCGCCAATACCTTTGCCACCGCCGTGCTCGGCAGTTTCCCGGTGTTGTTCGGCCTTTCGTTCCAGGCCGGGGTCTGGGCGATCGTGCTGGGGGTTTTGGTCGGTTCGATCATCCTCGCGCCGATGGGCCTGTTCGGCCCGCTCAACGGCACCAACAACGCGGTTTCGTCCGGCGCGCATTTCGGTGTTCACGGCCGGATCGTCGGCTCGTTCCTGTCGCTGCTGACCGCTATCGCGTTCTTCTCCCTGTCGGTATGGAGTTCGGGGGACGCGCTGATCGGCGGCGCCAAGCGGCTGGTCGGTGTGCCGGAAACCGACTTGAGTCTGGGCCTGGCCTACGGCCTGTTCGCCCTGCTGGTGCTGACGGTGTGCATCTACGGCTTCCGCTTCATGCTGTGGGTCAATCGCATCGCCGTGTGGGCCGCGAGCCTGTTGTTCCTGCTGGGCATCTTCGCCTTCGCGCCGAGTTTCGACAGCCAGTTCGCCGGCACGGTCGCCCTCGGCCAAACAGGCTTCTATGCCGCCTTCATCGGCGCGGCACTGGTGGCCATGAGCAACCCGATTTCTTTCGGCGCCTTCCTGGGTGACTGGTCGCGCTACATTCCGCGAAATACCCCCAAGCGACACATCATGCTGGCGGTGATTGCCGCTCAGTTGGCAACGCTGATCCCGTTCCTGTTCGGCCTCGCCACCGCCACCATCGTGGCGACCAAGGCGCCGGACTACATCGCGGCAAACAACTACGTGGGCGGGCTGCTGGCGGTTTCGCCGGGATGGTTCTTCCTGCCGGTGTGCCTGATAGCGGTGATCGGTGGCATGTCCACCGGCACCACATCGCTGTATGGCACGGGATTGGACATGTCCAGCGTATTCCCACGGGTGCTGTCGCGGGTCAAGGCGACGCTGCTGATCGGCGTCATGTCGATTGCCTTCATCTTCATCGGCCGCTTCGCGGCAAACCTTGTGCAGAGCGTCTCGACCTTCGCCGTGCTGATCATCACCTGCACCACGCCGTGGATGGTGATCATGATCATCGGGCTGCTGGTGCGCCGCGGCTTCTACTGCCCGGATGACCTGCAAGTGTTCACCCGAGGCGAGACCGGCGGACGCTACTGGTTCAGCCACGGCTGGAACTGGCGCGGTCTGGGAGCGTGGATTCCCAGCGCATTGGTCGGGCTGTGCTTCGTCAACTTGCCGGGACAGTTCGTCGGGCCGCTGGGTGAGTTGGCCGGTGGGATCGACATCAGCCTGCCGGTGACCCTGGGGCTGGCCTCGGTGGTGTACCTGGCATTGCTGGGGCTGTTTCCGGAACCGGCGGCGGTGTATGGGCCGCAGGATCCGCGGAGCATAGCGCCGCTCACGAAACCAGCGCTCCGGCAGGCCGCCTGA	MDNNNDKSLTQIETNGVEQIPDHERTAGPGDLFRLIFGGANTFATAVLGSFPVLFGLSFQAGVWAIVLGVLVGSIILAPMGLFGPLNGTNNAVSSGAHFGVHGRIVGSFLSLLTAIAFFSLSVWSSGDALIGGAKRLVGVPETDLSLGLAYGLFALLVLTVCIYGFRFMLWVNRIAVWAASLLFLLGIFAFAPSFDSQFAGTVALGQTGFYAAFIGAALVAMSNPISFGAFLGDWSRYIPRNTPKRHIMLAVIAAQLATLIPFLFGLATATIVATKAPDYIAANNYVGGLLAVSPGWFFLPVCLIAVIGGMSTGTTSLYGTGLDMSSVFPRVLSRVKATLLIGVMSIAFIFIGRFAANLVQSVSTFAVLIITCTTPWMVIMIIGLLVRRGFYCPDDLQVFTRGETGGRYWFSHGWNWRGLGAWIPSALVGLCFVNLPGQFVGPLGELAGGIDISLPVTLGLASVVYLALLGLFPEPAAVYGPQDPRSIAPLTKPALRQAA				NA	NA	NA	NA	NA
D1-36_03632	1389	opuE	COG0591	Osmoregulated proline transporter OpuE	ATGGCCTTGGATTTAATCGTCGTTCTCATCTACGCCACCGGCATGATCGCCCTCGGCTGGTACGGCATGCGCCGCGCCAAGACCCGTGACGACTACCTCGTCGCCGGACGCAACCTCGGCCCGGGCTTCTACCTGGGCACCATGGCCGCCACCGTGCTCGGCGGCGCATCGACCATCGGCACCGTGCGCCTGGGCTATGTCCATGGCATTTCCGGATTCTGGCTGTGCGGCGCCATCGGCCTGGGCATCGTCGGGCTGAGCCTGTTTCTCGCCAAGCCGTTGCTCAAGCTCAAGATCTATACCGTGACCCAAGTGCTAGAGCGCCGTTACAACCCGGCCGCACGCCATGCCAGCGCATTGATCATGCTGGTCTACGCGCTGATGATCGGCGCCACCTCGACCATCGCCATCGGCACGGTCATGCAGGTGCTGTTCGGCCTGCCCTTCTGGGTTTCGATCCTGGTGGGCGGCGGCGTGGTGGTGCTGTATTCAACCATTGGCGGGATGTGGTCGCTGACCCTGACCGACATCGTGCAATTCCTAATCATGACCATCGGCCTGGTGTTCTTGCTGATGCCCCTGTCCATCAGTGACGCGGGTGGCTGGGACGCGATGGTGGTGGCCTTGCCGGCGCGCTATTTCGATTTCACGGCCATTGGCTGGGACACCATCATCACGTACTTCCTGATCTACTTCTTTGGCATCTTCATCGGCCAGGACATCTGGCAACGGGTGTTCACCGCCCGCAGCGAAGGCGTGGCAAAAGTCGCCGGCACCGCCGCCGGCCTGTACTGCGTGCTGTACGGCCTGGCCGGTGCGCTGATCGGCATGGCCGCCAAGGTGCTGTTGCCGGACCTGGAAAACGTCAACAACGCCTTTGCCAGCGTGGTGCAACACAGCTTGCCCAACGGGATACGCGGTCTGGTAATCGCCGCAGCCCTCGCGGCGCTGATGTCCACTGCGGCGGCGGGTCTGTTGGCAGCCTCCACCACCGTGGTCCAGGACCTGCTGCCGCGTCTGCGCCAGGGTCGTGAAAGCGGCAACGGCGACGTCCATGAAAACCGCATCGCAACCCTGCTACTGGGCGCCGTGGTCCTGGCGATCGCCCTGGTGGTGAGCGACGTGATCAGCGCCCTGACCCTGGCCTACAACCTGCTGGTGGGCGGCATGCTGGTCCCGCTGATCGGCGCCATTTACTGGAAACGCGCTACCACGGCCGGCGCGATTACCAGCATGTCGCTGGGCTTCGTGACCGCGCTGTTCTTCATGGTCAAGGATGGCCTGGACGCGAATACGCCGATCTATTACAGCCTGAGCGTGGCATTGGTGAGTTTCGTGGTGGTCAGCCTGCTTTCGCCACGGTCGAATGTGGTGCCAAAGGCGGCTTGA	MALDLIVVLIYATGMIALGWYGMRRAKTRDDYLVAGRNLGPGFYLGTMAATVLGGASTIGTVRLGYVHGISGFWLCGAIGLGIVGLSLFLAKPLLKLKIYTVTQVLERRYNPAARHASALIMLVYALMIGATSTIAIGTVMQVLFGLPFWVSILVGGGVVVLYSTIGGMWSLTLTDIVQFLIMTIGLVFLLMPLSISDAGGWDAMVVALPARYFDFTAIGWDTIITYFLIYFFGIFIGQDIWQRVFTARSEGVAKVAGTAAGLYCVLYGLAGALIGMAAKVLLPDLENVNNAFASVVQHSLPNGIRGLVIAAALAALMSTAAAGLLAASTTVVQDLLPRLRQGRESGNGDVHENRIATLLLGAVVLAIALVVSDVISALTLAYNLLVGGMLVPLIGAIYWKRATTAGAITSMSLGFVTALFFMVKDGLDANTPIYYSLSVALVSFVVVSLLSPRSNVVPKAA	PGPT0013955_5603	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
D1-36_03633	129			hypothetical protein	ATGAAAGAGAAAATCCAGAACTGGCTTCACGACTTGGGTGTCGCGCTCGGCCTGATCGAGCCGCCCATGCAGCCGATACCGATCCGCACTGACGATGAGCAACGCCGCCGCCAGCCGCGCCGCCGGTAA	MKEKIQNWLHDLGVALGLIEPPMQPIPIRTDDEQRRRQPRRR				NA	NA	NA	NA	NA
D1-36_03634	894	gltR_4	COG0583	HTH-type transcriptional regulator GltR	ATGGAGTTCAGCCAACTTAGGATTTTCCAGGCCGTGGCCGAGGAAGGTTCGATCACCCGGGCTGCCGAGCGCTTGCATCGGGTGCCGTCGAACTTGTCGACGCGGCTCAAACAGCTCGAAGAGCAGTTGGGCGTGGATCTTTTCCTAAGAGAGCGTCAGCGTTTGCAATTGTCGCCTGCGGGAAAAGTCCTGTTGGACTATGCGACCAAGCTGTTTGCCCTGCATGACGAAGCCCACGCGGCGGTGCAGGGCGGTCAGCCGGCCGGGGATTTCCTGCTCGGCACCATGTACAGCACGGCAGCGACGCATTTGCCTGATCTGCTGGCGGCTTATCACCGGGCCTACCCGGCGGTGAACCTGCAAGTGCAATCGGGGCCAAGTGGCGAATTACTTGAAGGCCTGCTCACCAATCGCCTCGACGCGGCGCTGGTGGACGGCCCGCTGGAACTGGCGGGGCTCGATGGCGTGCCGTTGTGCGACGAGCGGCTGGTGCTGATCACCGAGGCTGACCACGCACCGGTACGCAGTGCGCTGGACGTGCAAGGCCGCGCAGTGTTCACCTTTCGCCGGGGCTGTTCGTACCGGATGCGCCTGGAGGCCTGGTTTGCCCATGATCATGCAACCATGGGTCGGGCGATGGAGATCGAGTCCTATCAGGGGATGCTGGCGTGTGTCATCGCCGGGTCCGGGGTGGCGCTGATGTCCGAGTCGATGCTCGCCAGCCTGCCGGGGCGCGAGCGTGTGATGGTCCATCCACTGGCTGAGCCATTTGCGAGTGCGACAACGTGGTTGATGTGGCGTAAAGGCATGGTCGGAGCCAACCTGAACGCCTGGATTGAGATGCAACAACAAGCGTGGCCGCGGGCGCCAATGATGACGGCGCAATCGGCTTGA	MEFSQLRIFQAVAEEGSITRAAERLHRVPSNLSTRLKQLEEQLGVDLFLRERQRLQLSPAGKVLLDYATKLFALHDEAHAAVQGGQPAGDFLLGTMYSTAATHLPDLLAAYHRAYPAVNLQVQSGPSGELLEGLLTNRLDAALVDGPLELAGLDGVPLCDERLVLITEADHAPVRSALDVQGRAVFTFRRGCSYRMRLEAWFAHDHATMGRAMEIESYQGMLACVIAGSGVALMSESMLASLPGRERVMVHPLAEPFASATTWLMWRKGMVGANLNAWIEMQQQAWPRAPMMTAQSA				NA	NA	NA	NA	NA
D1-36_03635	1173			hypothetical protein	ATGTCGCCCTTGATTCGCCTGCTCGCCAGTTTCATAGCCCTGATGATGGCCATGGGCATCGGCCGCTTCGCCCTTACACCGCAGTTACCTCATTTGATCGGCGAAGGCCAGGTGGACTTGACCGCCGCCGGTCTGATCGCCGCCGCCAACTACCTGGGTTATTTCCTCGGGGCGCTGGACGCCATGTTTGCTCGTCGCGCCGAACAGGTACAGCGGCGTTTATTGGGCGGCCTGTGGTTGTGCGTGCTGCTGACGCTGGCGTCGTTCTGGGCCTGGGGCTTCTGGCCGCACTTGGCGCTGCGCTTCGGCACAGGCGTGGCGAGCGCTTGGGTGATGGTGATGATCACCGCCCTCAGCCAACCCTTGGCTGCGGCGGCAGGACGGCCACGCCTTGGTGCACTGGTATTCGCCGGACCGGGGCTGGGGATTTCTCTCACAGGCTTGTTGGCCCTTGGCTCGAACCTGCTGGGCCAGACCTCCGACGTGTTGTGGCTGGTATATGCCGGCGCGGCACTGTTGATGTTGCTGGTGATCCTGCCGGCCCTGCCGAAACCCACGTCGGCAGCCGCCCCAGCAGCATCCGTCGTTGCATCCAGCAATCGCGGCATCGCCCGGCTTTGCGTGGTCTACGCCTTGTATGGCGTGGGCTACATCATACCGGCGACGTTCCTGTCGCAGATGGCTTCGGCGCAGTTCCACGGGCAATGGCAGGCGGATCTGTTCTGGCCTTGTTTCGGCCTGGCGGCCGCCACGGGCGTGCTGTTGGTGAGTCTGCGGCGGCCGAACCCGGACACCACTGCCCGGTGGTTGATGGCCACTTTATGGCTGCAAGCCGCGGGCGTGTTTGCCTGCATGCTGGGCAGTGGCACAGGCCTGGCGCTGGGCGTGATCCTGTGTGGCGCCCCGTTTCTGGCCTGCATGCAATTGATGGTGATGCGCGCCCGGGAACTGGCGCCCCATGCCACCCAGCGCAACATCGGTTTGTTGACCGCATGCTTCGCCGTCGGCCAACTCAGCGGCCCCCTGTTGGCGGCACTGAGCAGTCACTTCAGCGGCGGCTTGCAACCGGCATTGATCGTTGCCGGCAGCGGCCTGGTGCTGGCGGGCGGCCTGTTGCTGCGGCCCACCAATGCGAGCGCGGTGAAACCTTGCGCCCAGACCGCCCTGCGCTGA	MSPLIRLLASFIALMMAMGIGRFALTPQLPHLIGEGQVDLTAAGLIAAANYLGYFLGALDAMFARRAEQVQRRLLGGLWLCVLLTLASFWAWGFWPHLALRFGTGVASAWVMVMITALSQPLAAAAGRPRLGALVFAGPGLGISLTGLLALGSNLLGQTSDVLWLVYAGAALLMLLVILPALPKPTSAAAPAASVVASSNRGIARLCVVYALYGVGYIIPATFLSQMASAQFHGQWQADLFWPCFGLAAATGVLLVSLRRPNPDTTARWLMATLWLQAAGVFACMLGSGTGLALGVILCGAPFLACMQLMVMRARELAPHATQRNIGLLTACFAVGQLSGPLLAALSSHFSGGLQPALIVAGSGLVLAGGLLLRPTNASAVKPCAQTALR				NA	NA	NA	NA	NA
D1-36_03636	1455	pucI_2	COG1953	putative allantoin permease	ATGTCCGAGCAATTGCCCAACGGCTACAGCCCCCGCCTCTATAACGAAGACCTGGGCCCGCTGCCGCAGAAATGGAATTGGTACAACATCTTCGCGTTCTGGATGAGTGATGTGCACAGCGTCGGCGGTTATGTGTTTGCTGCCAGCCTGTTCGCCTTGGGCCTGGCGAGTTGGCAGGTGCTGATTGCCTTGCTCGGCGGGATTTGTATCGTGCAGTTGATCGCCAACCTGGTCGCCAAGCCGAGCCAGCAAGCGGCGGTGCCTTATCCGGTCATTTGCAGGCTGGCGTTCGGCGTGTTCGGGGCGAACATCCCGGCGGTCATTCGTGGGCTGATCGCCGTGGCTTGGTATGGGATCCAGACGTACCTGGCGTCCAGCGCTCTGATCATCGTGGTCCTGCGGTTCTTTCCTTCGATGGAAGTCTACGCGACGCCACATTTTGCAGGTTTGTCCTACCTCGGCTGGTTCGGTTTCCTTGGGCTGTGGTTTGTCCAGGCGCTGGTGTTCTGGACGGGCATGGAGTCGATCCGTCGCTTCATCGACTGGGCCGGGCCGGTGGTGTATGCCGTGATGTTCCTGCTGGCCGGCTGGATCGTCTGGAAGGCCGGCTGGAGCAACATCAGTTTTACCTTGGCGGAAAAATCGCTGTCCGGCTGGCAGGCATTCGGCCAAGTGATCGTGGCAACGGCCCTGGTTGTGTCGTACTTTTCCGGCCCTACCTTGAATTTCGGTGATTTCAGCCGGTACTGCCGGAGCATGTCCGACGTACGTCGCGGCAATTTCTGGGGGCTACCGGTGAATTTCCTGGCCTTTTCCCTGGTGACCGTGGTGATCGTTTCCGGGACGTTGCCAGTGTTCGGCGAGATGCTCCACGACCCGATCGCCACCGTGGCACGCATCGACAACGACGTGGCCGTCTTGCTGGGAGCCTTTGCGTTCGTCACCGCAACCATTGGCATCAACATCGTCGCCAACTTCGTGTCCCCGGCTTTTGATTTCGCCAACGTCGCGCCGAGCAAGATCAGCTGGCGCGCCGGCGGCATGATCGCGGCAGTGGCCTCGATTTTCATCACGCCTTGGAACCTGTTCAATAACCCTGAAGTGATCCACTACACCCTGGACGTGCTAGCGGCGTTTATTGGCCCGCTTTTCGGGATCCTGCTGGTGGATTACTACCTGATCAAGAAGCAGCAGATCGACGTTGATTCGCTATTCAATGATGGCCCGACCGGGCGCTATTACTACAGCGGGGGCATTAACTGGACAGCAGTCAAAGCGTTGATCCCGGCGACGCTGATGGGCGTGGCGATCACTTTCACGCCGCTCCTCCAGCCAATGGCCAACTTTGCCTGGTTCACCGGTTGCTTCCTTGGAGGCGTGTTGTATTTCGCCTTGGCCCGACGCCAACCCTTCCTACACCTGAACCCGTCGTTAAACCCGGTCGGCCCGGCTTGA	MSEQLPNGYSPRLYNEDLGPLPQKWNWYNIFAFWMSDVHSVGGYVFAASLFALGLASWQVLIALLGGICIVQLIANLVAKPSQQAAVPYPVICRLAFGVFGANIPAVIRGLIAVAWYGIQTYLASSALIIVVLRFFPSMEVYATPHFAGLSYLGWFGFLGLWFVQALVFWTGMESIRRFIDWAGPVVYAVMFLLAGWIVWKAGWSNISFTLAEKSLSGWQAFGQVIVATALVVSYFSGPTLNFGDFSRYCRSMSDVRRGNFWGLPVNFLAFSLVTVVIVSGTLPVFGEMLHDPIATVARIDNDVAVLLGAFAFVTATIGINIVANFVSPAFDFANVAPSKISWRAGGMIAAVASIFITPWNLFNNPEVIHYTLDVLAAFIGPLFGILLVDYYLIKKQQIDVDSLFNDGPTGRYYYSGGINWTAVKALIPATLMGVAITFTPLLQPMANFAWFTGCFLGGVLYFALARRQPFLHLNPSLNPVGPA	PGPT0009075_2177	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
D1-36_03637	837	cvfB	COG2996	Conserved virulence factor B	ATGGCTTTAGTCGGGCGCTACAACAGTTTGCAAGTGGTTAAACATACTAACTTCGGTTTATATCTGGACGGCGGCGCGGACGGTGAAATCCTGCTGCCCAACCGTTATATCCCCAAGGATATTCCCAGCGAAGATGAAGACTGGCTCAATGTTTTCATTTATCTGGACAGCGACGACAAACTGATCGCTACGACAGAAAAACCAAAAGTCCAGGTGGGCGAATTCGCCAGTCTGAAAGTGGTTGAAGTCAACAGCATCGGCGTGTTCCTGGACTGGGGCCTGCCCAAGGATTTGCTGTTGCCGTATTCCGAAGAGAAACGCCAGCTGACCGCCGGCGAGTACTGCGTGGTCCATGTCTATCTGGACAAGCACACCCGCCGCATCACCGCGACGGCACGCCTGGATCGTTATCTGGACAAGACCCCGGCCAACTACACGCCTGGTCAGGAAGTGGATTTGCTGGTCGCCGAAGCCACCGACATGGGCTTCAAGGCAATCATCAATAACAAGCACTGGGGCTTGATCCACAAGAACGAAATCTTCAAGTTCATGCGCGCCGGCAAACAGGAAAAGGGCTTTATCAAGGAAGTCCGTCCGGACGGCAAGATCAGCCTGAGCTTGCAGCCGGTGGGCCAGGAAGCGGCGACCAGCCTCAACGCCAAGATTCTTGCCAAGTTGCGTGAGAACAACGGCACGCTCGCGGTGAGCGACAAGAGCGATCCTGCGCTGATCACCAGTCTGTTTGGCGTCAGCAAGGGCAACTTCAAGAAAGCCATTGGTGCGCTGTACAAGAATGGCCAGATTATCATTCATGCTGATCGTATTGAGCTGACTTGA	MALVGRYNSLQVVKHTNFGLYLDGGADGEILLPNRYIPKDIPSEDEDWLNVFIYLDSDDKLIATTEKPKVQVGEFASLKVVEVNSIGVFLDWGLPKDLLLPYSEEKRQLTAGEYCVVHVYLDKHTRRITATARLDRYLDKTPANYTPGQEVDLLVAEATDMGFKAIINNKHWGLIHKNEIFKFMRAGKQEKGFIKEVRPDGKISLSLQPVGQEAATSLNAKILAKLRENNGTLAVSDKSDPALITSLFGVSKGNFKKAIGALYKNGQIIIHADRIELT				NA	NA	NA	NA	NA
D1-36_03638	180			hypothetical protein	ATGCGCGTAAAAGCATCCAACAGCAAAGCAAAGCCAGCTCCAGCCGTTGAAACCAGCGAGTCGATCAACGACCAGATCGCTGCGTTCCTCAAGTCCGGCGGTGAAATCCAGCAGATTGCCAAAGGTGTCAGCGGCCAGACATTCGGCCCGTCCAAGCAGATCAGCCTGGGCAAGAAGTAA	MRVKASNSKAKPAPAVETSESINDQIAAFLKSGGEIQQIAKGVSGQTFGPSKQISLGKK				NA	NA	NA	NA	NA
D1-36_03639	711			hypothetical protein	TTGCGCATTACTGTTGTCCTGCTGGCGTTCAGTCTGCTCGCTTGCCCTGCTTCTTATGGGCAGGTGTTTCAGCGTGAGCTCGGTGACTTCGACCTTAAACTCGGCACCACACCCAGCCGCAGCATGGCACAGGGCCTCGTCACGCCGTCGAGCACCGGCTCGTTCCATGGCGGCCTGGACCTGAGCCATGACAGCGGCTGGTACGTCGGACAATGGTCACCCAGCGCCGGCTTCTCCGCTGACCTGGAAGTCGATTCCTACATGGGTTTCAAACAACCCTTCGACCAGACCTTGGGTTACGAAGTCGGCCTGATCCACTACAGCTACCCCACCGTCGATACCCTCGACAGCCAGGAATTCTATGGCGGCCTGACCATTCTAGGCAGCCGCTTCGGTGCGGCCTTGAGCAACGACCCGGACAAACAGAACAGCACCCTGTTCGCCGACCTCGGTGGCAACGTGCCCTTCGGCATCGGCATCAGCGCCAAGTACACCACCCACCAGCTCAATACCCCGGTCTCGGTGGAGAATGGTTACGTAGGCAGTTTCAGCGACTGGTCGTTGAAAATATCCCGTCCCTGGAAAGGTATCGACCTGGACCTGATCTACAGCGACTCAAGCCTCAGCGGCAGCAGTTGCTCGGCCTATTCCGGGCACAACAGCGAATGCGACAGCCTGCTGACCCTGAAGATGGCCCATCCTTTTTACTAA	MRITVVLLAFSLLACPASYGQVFQRELGDFDLKLGTTPSRSMAQGLVTPSSTGSFHGGLDLSHDSGWYVGQWSPSAGFSADLEVDSYMGFKQPFDQTLGYEVGLIHYSYPTVDTLDSQEFYGGLTILGSRFGAALSNDPDKQNSTLFADLGGNVPFGIGISAKYTTHQLNTPVSVENGYVGSFSDWSLKISRPWKGIDLDLIYSDSSLSGSSCSAYSGHNSECDSLLTLKMAHPFY				NA	NA	NA	NA	NA
D1-36_03640	867			hypothetical protein	ATGTCGCGCTGGTTAACACGCACCGCCATGTTCATCGCCCTGCTGCTGACACTCACCGCTTGCAGCCGTGTCGGCCTGGCCTACCGCAACCTCGACCTGATCATTCCCTGGACCCTCAACGATTACCTGGAGATCAACGGCGAGCAAAAGGACTGGTTCGACGATCGCCTCAAGGAACACCTGAGCTGGCACTGCACCACGCAACTACCAGGCTACCTCGATTGGCTGGACCGCCTGAAGACCATGGTGCAAACCAACGCGGTAACCGACGAAGCCCTGCAGCAACGCACCCGCGAAGCCAAGGCCGCCATCGCCGAAACCGCCCGGGCAATCACCCCGTCGGCCATCGAACTGCTGCAAGGCCTGAGCGACGAACAAGTCGCCGACATGGACGCCGCGTTCGTCAAGGATCAACAAAAGCGTCAGCGCGAATACCTCAAGCCGACGTTGCAGCAGCAGATCCAGGAACGTGCCGAGCGCATGGAGAAACGGCTCAACGACTGGATCGGCCCGCTCAACGACGCCCAGCGCCAGCGTGTGATGGCTTGGTCTACCGCTCTTGGCGATCAAAACCAGCAATGGATCGCCAACCGCGCACACTGGCAAAACCAGTTCAGCGAGGCCGTCGCCCAACGCCACAGCCCCGACTTCCCGAAACGCATCGAGCAACTGCTGGTAAACCGCGAAAGCTTGTGGACCCCGGCCTACCGCGAGGCCTACAACAAAACCGAAGCCCAGGCTCGCAGCCTGCTGGTGGATCTGATGGCCGACAGCACCCCGGCACAGCGTGAACGGCTATTGCAGAAAATCGACGGCGTAAAGAAGGATTTCAGCGATCTGAAATGCTTGAAGGCAGCACGATCATAA	MSRWLTRTAMFIALLLTLTACSRVGLAYRNLDLIIPWTLNDYLEINGEQKDWFDDRLKEHLSWHCTTQLPGYLDWLDRLKTMVQTNAVTDEALQQRTREAKAAIAETARAITPSAIELLQGLSDEQVADMDAAFVKDQQKRQREYLKPTLQQQIQERAERMEKRLNDWIGPLNDAQRQRVMAWSTALGDQNQQWIANRAHWQNQFSEAVAQRHSPDFPKRIEQLLVNRESLWTPAYREAYNKTEAQARSLLVDLMADSTPAQRERLLQKIDGVKKDFSDLKCLKAARS				NA	NA	NA	NA	NA
D1-36_03641	393			hypothetical protein	ATGACGACTTATAACTGGGACTTGATCGAACGGTTGCTGCACGAAGTGCAGAACGGCGCCGGCCACAGTTTTACCCCTCGGCCCTACGCGGAGCAGCACGCGGCGGAAAAGGCGGCTCAGGGCGAGGAAATCGAGAACCTTGATCATCTGAAAGCGGTCGCCGGAGAGTACGAAAAATTACTGCTGGAGCGTGGGTATATCGAGCCTCGGCCGGAGGAAGAGGGCGGCAATGGCGAGAATTTTGTGCTGACGCCTCGCGGCTCGCGGTTGTTGAGCCTGATCGACAGCAGCATTCCGGGCAATGATCATCCGCGCCAGGTGCTGGATGAGCAGGAAGATGCGCTGGATGAGTTTACCTTTGATGATCTGGCTTCTAAGGCGCAGATTGCCTGA	MTTYNWDLIERLLHEVQNGAGHSFTPRPYAEQHAAEKAAQGEEIENLDHLKAVAGEYEKLLLERGYIEPRPEEEGGNGENFVLTPRGSRLLSLIDSSIPGNDHPRQVLDEQEDALDEFTFDDLASKAQIA				NA	NA	NA	NA	NA
D1-36_03642	732			hypothetical protein	ATGAACATCGAGCACCATCAGGTCGTCTCGCGGGAAGCCTGGCTCGCCGCCCGCCGCGAACACCTGGCCCACGAAAAAGCCTTCACCCGTGAACGAGACAAACTCAGCGCCGAACGCCGCGCCCTGCCCTGGGTAAAAATCGACAAACCCTACCGCTTCCAAGGCCCCCACGGCGAATTGAGCCTCGCCGACCTGTTCGGCGGCCGCAGCCAACTGATCATCTACCACTTCATGTTCGGCCCCGGCTGGACCGAAGGCTGCCAAGGCTGCTCGTTCCTGTCCGACCACATCGACGGCGCCAACCAACACCTGGCCCACCACGACGTCGCCGTCGTAGCCGTCTCCCGCGCGCCCTTCACCGAATTCCAACCCTTCAAACGCCGCATGGGCTGGGCCTTCGATTGGGTCTCGTCGCAAGGCTGCGACTTCAACTACGACTTCGGCGTCAGCTTCAAAACCGAAGACACCGCCGCCGGAACAGCCACCTACAACTACGAAAAAACCGACACCACCGAAGGCGAACTCCCCGGCCTGAGTGTCTTCTATCGCAACGAAGCCGGCGACATCTTCCACACCTACTCCACCTACGCCCGCGGCCTCGACATCCTCGTCGGCACCTACAACTACCTCGACCTCACGCCCAAGGGCCGCAATGAAGACGAGATCATGGATTGGGTGAGGCATCATGATAAGTATGAAGAGGCCAGGCCGCGTGGTTGCTGCCACAGTTGA	MNIEHHQVVSREAWLAARREHLAHEKAFTRERDKLSAERRALPWVKIDKPYRFQGPHGELSLADLFGGRSQLIIYHFMFGPGWTEGCQGCSFLSDHIDGANQHLAHHDVAVVAVSRAPFTEFQPFKRRMGWAFDWVSSQGCDFNYDFGVSFKTEDTAAGTATYNYEKTDTTEGELPGLSVFYRNEAGDIFHTYSTYARGLDILVGTYNYLDLTPKGRNEDEIMDWVRHHDKYEEARPRGCCHS				NA	NA	NA	NA	NA
D1-36_03643	258			hypothetical protein	ATGTCGAAAACATCGAAAACTGACTGGGAGCGCTTGGCCAAGTTAGATGATGCGGACATCGATACCAGCGATATCCCCGAATTGGATGAGGATTTCTTCCGTCGCGCCGAGCTGCGTGTGCCGGTAAAGCAGGCGGTGACTATTCGCCTTGATGCCGATGTGGTCGAGTGGTTCAAGGGGCAGGGCGCGGGCTATCAGACACGCATCAATCAGCTTCTTCGCCAATACATGCAGGCCCAGCAGGGCCATCGGCGATGA	MSKTSKTDWERLAKLDDADIDTSDIPELDEDFFRRAELRVPVKQAVTIRLDADVVEWFKGQGAGYQTRINQLLRQYMQAQQGHRR	PGPT0027802_5029	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-BrnA-BrnT_TOXIN-ANTITOXIN_SYSTEM,PGPT0027802-BrnA_antitoxin-na	NA	NA
D1-36_03644	279			hypothetical protein	ATGCTATTTAAATGGGACGAAGCCACGAACCGGGCCAACATTCTTAAGCACGGCATCGACTTCAACGACGTGCCGGGCATTTTCCAGCATCCGATGCTGGTCTTCCACGATGACCGAATGGCTTACGGGGAAGAGCGTTGGATCACTATCGGATTGATCAAAGCGTTGATTGGCGTGGTCGTGTATACCGAACGGCGGGACGATGTGATCCGCATCATCTCCGCCCGAAAAGCCACTAAGCAGGAGGCCATACGTTATGTCGAAAACATCGAAAACTGA	MLFKWDEATNRANILKHGIDFNDVPGIFQHPMLVFHDDRMAYGEERWITIGLIKALIGVVVYTERRDDVIRIISARKATKQEAIRYVENIEN	PGPT0027803_5383	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-BrnA-BrnTTOXIN-ANTITOXIN_SYSTEM,PGPT0027803-BrnT_toxin-K09803	NA	NA
D1-36_03646	273			hypothetical protein	ATGAATCGATACATGCCCATCACCGGCGTCGACTGTACCCCGGCCACCCTTCTCATCGACACCGAAGCCCCACTCGACGTCCTCTTCGAAACCGCTGACTACCGCATCCGCACCGTGACCCAACTGCTGGAAAACATCGCGTTTCGTTCGGATATCAGTTCCGATACGCTGGTGCTTTCAGACTTTTGCAAGATGCTGACGATAGCGTTGCGTGATGGGTGTGATGTGATGGATGTGATTGGGAGACGATTGCGGGCGCTAGCTGCTGAATAA	MNRYMPITGVDCTPATLLIDTEAPLDVLFETADYRIRTVTQLLENIAFRSDISSDTLVLSDFCKMLTIALRDGCDVMDVIGRRLRALAAE				NA	NA	NA	NA	NA
D1-36_03647	285			hypothetical protein	ATGTCTTTCAATGAGCTTTCTGAAAAATATGCGGCTCGTTTCGGTTCGCCAAGTATGAATAGCGTCGGGCTAGAGGAGTTTATTCAAATACTAGAGTTGGTGGCGATGAAAAGTAAGGGTTTTTTCATCTTTAAGGTGGATGGTGAAAGAGAGTGTAATATTTATACTTTTATTTTAAATACGTCGACAAATAACGATGTTGTAATAAGAAAAGATACAGATAGCATGCGGGAAGGTATGGAATATTTTTTCTCTGAGCTTGAGCGGCTCGGTATATATCCATGA	MSFNELSEKYAARFGSPSMNSVGLEEFIQILELVAMKSKGFFIFKVDGERECNIYTFILNTSTNNDVVIRKDTDSMREGMEYFFSELERLGIYP				NA	NA	NA	NA	NA
D1-36_03648	447			hypothetical protein	ATGCCCAGGATGGGACGTATTGTTTTGCCGAATTACCCACACCATATCGTGCAACGCGGTCACAACCGTCAGGTAGTTTTTGCGGTCGCCGAGGATTATCAACGCTACCTGACGGATCTGCGCGAGCTCAAGGACGCGTTTGGGGTCAGGGTCTACGCCTATTGTTTGATGACCAATCATGTTCATCTGTTACTGGCTCCGGGTGAGTCCATCGCTGGATTGGGACAGATGATGAAGGCTTTAGCGGCGCGAGCCACGCGTTACCGCAATCGACTCGAAGGGCGCTCCGGTACGCTATGGGAAAGTCGTTACAAATCCAGCGTGGTGCAATCAGATGCCTATCTCCTTGCCTGTTGTCGTTACATTGAATTGAATCCCGTACGCGCTCAAATGGTGGCCGATGTTGGCGGACTACCTTTGGTCGAGCTACAGAAGCAGGGTGTGTGA	MPRMGRIVLPNYPHHIVQRGHNRQVVFAVAEDYQRYLTDLRELKDAFGVRVYAYCLMTNHVHLLLAPGESIAGLGQMMKALAARATRYRNRLEGRSGTLWESRYKSSVVQSDAYLLACCRYIELNPVRAQMVADVGGLPLVELQKQGV	PGPT0030655_891	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MOBILE_ELEMENTS	CE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030655-yafM|rayT|tnpA-K07491	NA	NA
D1-36_03649	3375			hypothetical protein	TTGATTGAGGGCAACAACCTCAACCTGGTCGCCGGCAAGAACCTGGCTAACGTAGGTACGCTGAAGGCGACCAGTAACCTGTCAGCTTCGGCGGGGGAGAATCTGGTCAACAGCGGCTTGGTGCAAGCAGGTGAGCGTCTCGACCTTTTGGCCGGCAACCATCTCGTCAACAGGGCGGGTGGCATTATCACCGGTCGGGATGTCTCTGCCACGGCGTTGATGGGGGATGTGGTCAACGAGCGCACGGTGACGTCATCGCAAATTGCCTACGGCCAGGTCCAGGATCGCAACGATTTCGCCGACAGCGCGGCGCGCATCGAAGCCGCCAATGACCTGAGCCTCTCGGCGGGCGGCAGCCTCAACAACATCGGCGGTGCCCTGCAAAGTGGGCGCGACATCCGCTTGAATGCCGGAAACGACGTCAACCTCGTCGCTGCGCAGACCGTCGACAACCTGATCCGCGACGTCAACCGCAACAGCAGCACCATCACCCAGTACGGCGCCAGCGTCAGCGCCGGGCGAGATGTATCGGCTACGGCCGGCCGGGACCTCAATGTCGTTGCCAGCCAGATCGACGCCAAGCGCGACGTCGACATGGCCGCGACCGAGAACGTCAACATCAGCTCGGCGGCGGATGAACAGCACTTTCTGTACAAGAGCAAGAAGCTGACGATCCAGGAAGACCATGTCCGGCAGGTCAAGGCCCAAATCACCGCCGGCGGCGATGTTGCCTTGGCGGCGGGCAAGAACCTGATGATGGTCGCCAGCCGGATCACGGCGGGTGACGAGGCCTACCTGGTGGCGGGGGGGAAACTGGGGTTGATCGCGGCGCAGAACAGCGATTACTCACTGTATGACGAGAAGAAAAAGGGGAGTTGGGGGAGCAAGAAGACTCAGCGTGATGAAGTGACTGATGTGAAGAACATTGGGAGTGAGATCACGACGGGGGGCGATCTGGTCATCAAGAGCGGGGATGACCAGCGATATCAGGTGGCGAAGCTTGAAAGTGGCAAGGACATCACGCTGGACAGTGGCGGTTCGATTACCTTCGAAGCCGTGAAGGATTTGCATAAAGAGGACCACGCAAAAAGCAAAAGCAGCATGGCCTGGAGCTCGATGTCGGGCAAAGGCAATACCGACGAAACACTGCGCCAGACGCAGATGGTTGCTGCCGGTGCCATTGCGATCAAAGCTGTCGATGGGTTGAACATCGACATCAAGCAGGTCAATCAAGAAAGCGTCCATCAATCGATCAAAGCCATGGTCGATGCGGACCCGCAACTGGCGTGGTTGGCCGAAGCCGAGAAGCGCGGCGATGTGGATTGGCGCAAGGTCAGGGAAGTCCACGACTCTTATAAATACAGCCACTCCGGCATGGGGCCGGCTGTGCAGATGATCATCGCGATCCTTGTCGTCTATTTCACCGCGGGTGCTGCCAGTGGCTTGATTGGCACTATGGCCGGAAGCACCGCTGCTGCTGGTTCAGGTACAGCCTTTGCAGCAGCCGGAACAGCCACCACATCAGCGGTGGCCGGTGGCGCGGCAGCTGGGTCAACCGTGGCCGCAGGTTGGGCGAACGTGGCGCTCACGGCTGTCGCAACGGGGGCTGCGAGCAACGCCACGGTCAGCTTTATCAATAACGGTGGAAATCTGGGGGCCGTATTCAAGGATGTAACTTCTTCGGATGCCTTGCGCGGTTATGTCGTGTCGGGGGTGACGGCGGGGTTGACGGCCGGCATCTTCGACAAGATGACCAGTACCACCACCTCGCTGGAGGGGGCGTTGCCGAATGCAGGCAAGGTAATTGCCGAAGGCGGCTTAGGAAGTTTGGAAGGCATCGGTCGCTTCGGCGCGAACCAGCTGTTGCAGAACGGTACGTCAACACTATTGGACCGGGCGCTGGGTGGTGACAGTCAGTTCGATAATGCCCTGCGTTCCAGTTTGGCGAATACCTTTGCTGCCGCGGGATTCAATCTCGTTGGGGATCTTGGCAAGAAATTCGATTTGAAAGAAGGGGGGCTGGCCAAGGTTGGCTTGCACGCGGTCATGGGCGGACTGGCCGCTGAGGCGGCCGGCGGTGATTTCAAAACCGGCGCATTGGCTGCGGGTGTCAATGAGTTGCTGATTGATAGCTTGGCCGAGCAGTACACCGAGATGACCTTGGAACAGAAGAATCGGCTTCTGGTGATGAACTCCCAAATAGTAGGCGTGCTTGCAGCCGCCGCGCAGGGAGGGGATGCGAAGAGCCTTCAGACCGGGTCATGGGTAGCGGGCAGTGCGACTTCCTATAACCGGCTGTTGCATTCGTCGGAGAAAAAAGCGCTTGCTGATGAGGCGAAGGCTCTAGAAGAGAAATTGGGCAAGCCCAAGTCAGATATGTCTTGGGAAGAGGTACTGCTCCTCGCGGCCAATGCTCAAGTGGATGCTACCGAAAATGCGCGATTGCAGGCACTGGTAAACAGCTTTCCCCCGGGCAACCCTGAAGGTCAGCATCTTGCGCAAGACTTGTTAAAGGCGACCAGTAGCATTCAAAGCCTAGCTGCTCGGAACACTGCCCTTACATGGAGTGATGGCCGCACAATTGTCGCCAACGGCGCCGAGGTACATGCGTTTCAGGCGACGACGGCTCAGTTTGTTGATCCGGCCTTGTTCAATACCGCCTCCCAATGGTCCAGCAACAACAATTGGGCCAATGAGCCTGAGATCGTTCCCACGGCTTGGAGGGAGCAATTCGGTCGGGACGCCGTCACTTATCTTAGGGAAATCGCTGGAGTTTCCAGTAGCCGGCAAGAGTTCGACGACCTGGTGCAAAGGGTTTCAACTATAGTCGGCGGTGGGATCGAAAGGGTTACCTGGGATTTGGATGCTGCGCTTGCAGTTACGGGGGCGCCTGCGGTATTAAGGGCCTTGCTGGCTAGGCGGCTTGCTGCGGCTGGTGGTGCTGATGCGGTGGTGGTGGGTGCAAAAGGCGCAGGTACATCCTTAGAGCGAGGTCTTGCCTATGACAACCCATCAAACCTTGTCCAAAATCGTGTAAGTGAAATTCAGTCACAAATACCTGCGAACTCTCAAGGCCGAATAACTATGGGGGTCGCGGTAGTAGAGGATGCGAATGGTGTTCGCTCTGTTCTGGTCAGTACAAGTGAACCTCGTGGCTATCTTCGCCCTGGAGTGAGTTTGCAAGAAGGCGAGAAAGTAGTTGTTGGAACTGGCCACGCAGAAGCGGATATTGTCAGCTATGCCAACGCTAACGGATTGAAAGTTGTTGATATCGGTGCGACACGCCCTGTCTGTGCATCATGTCAGAACGTAATTGAGCCGACAGGGGCCAATGTGTCAACACCATTAAAACCACTGCCAAAGGCTAAACAATGA	MIEGNNLNLVAGKNLANVGTLKATSNLSASAGENLVNSGLVQAGERLDLLAGNHLVNRAGGIITGRDVSATALMGDVVNERTVTSSQIAYGQVQDRNDFADSAARIEAANDLSLSAGGSLNNIGGALQSGRDIRLNAGNDVNLVAAQTVDNLIRDVNRNSSTITQYGASVSAGRDVSATAGRDLNVVASQIDAKRDVDMAATENVNISSAADEQHFLYKSKKLTIQEDHVRQVKAQITAGGDVALAAGKNLMMVASRITAGDEAYLVAGGKLGLIAAQNSDYSLYDEKKKGSWGSKKTQRDEVTDVKNIGSEITTGGDLVIKSGDDQRYQVAKLESGKDITLDSGGSITFEAVKDLHKEDHAKSKSSMAWSSMSGKGNTDETLRQTQMVAAGAIAIKAVDGLNIDIKQVNQESVHQSIKAMVDADPQLAWLAEAEKRGDVDWRKVREVHDSYKYSHSGMGPAVQMIIAILVVYFTAGAASGLIGTMAGSTAAAGSGTAFAAAGTATTSAVAGGAAAGSTVAAGWANVALTAVATGAASNATVSFINNGGNLGAVFKDVTSSDALRGYVVSGVTAGLTAGIFDKMTSTTTSLEGALPNAGKVIAEGGLGSLEGIGRFGANQLLQNGTSTLLDRALGGDSQFDNALRSSLANTFAAAGFNLVGDLGKKFDLKEGGLAKVGLHAVMGGLAAEAAGGDFKTGALAAGVNELLIDSLAEQYTEMTLEQKNRLLVMNSQIVGVLAAAAQGGDAKSLQTGSWVAGSATSYNRLLHSSEKKALADEAKALEEKLGKPKSDMSWEEVLLLAANAQVDATENARLQALVNSFPPGNPEGQHLAQDLLKATSSIQSLAARNTALTWSDGRTIVANGAEVHAFQATTAQFVDPALFNTASQWSSNNNWANEPEIVPTAWREQFGRDAVTYLREIAGVSSSRQEFDDLVQRVSTIVGGGIERVTWDLDAALAVTGAPAVLRALLARRLAAAGGADAVVVGAKGAGTSLERGLAYDNPSNLVQNRVSEIQSQIPANSQGRITMGVAVVEDANGVRSVLVSTSEPRGYLRPGVSLQEGEKVVVGTGHAEADIVSYANANGLKVVDIGATRPVCASCQNVIEPTGANVSTPLKPLPKAKQ				NA	NA	NA	NA	NA
D1-36_03650	276			hypothetical protein	ATGAAAACCTTCCTTAAACTCACCCTCGCCGCCACCCTCGCCTGCGCCCTGCCGGCCTGGGCTACGTGCACGCCTGAAGAAGCCACCATCAAGCGTGAGCAGCTGGCGGACAAAGTCGCCAAGCTCACCGAGCAGGACCCATCCAAGGCAAAAGAGATGAATGAAGAACTGCAGGCCATGAACATGGAGACATCCAGCAAGGACGTGCCGGACAAGTGCCAGTTGATCGACAAGCGTCTGCAGGAGTTGGAAGAGGCGCAGAAGAAGGCGGAGTGA	MKTFLKLTLAATLACALPAWATCTPEEATIKREQLADKVAKLTEQDPSKAKEMNEELQAMNMETSSKDVPDKCQLIDKRLQELEEAQKKAE				NA	NA	NA	NA	NA
D1-36_03651	1347	rhlE_1	COG0513	ATP-dependent RNA helicase RhlE	GTGTTTTCCCAATTCGCCCTGCACGAACGCCTGCTCAAAGCCGTGGCCGAGCTTAAATTTGTCGAGCCAACGCCGGTGCAGGCAGCGGCTATTCCGCTCGCGCTCCAAGGGCGTGACCTGCGGGTGACGGCGCAGACCGGGAGCGGCAAAACGGCCGCGTTCGTGCTGCCGATCCTCAATCGCCTGATCGGCCCGGCCAAGGTCCGTGTCAGCATCAAGACGCTGATCCTGCTGCCAACCCGTGAACTGGCCCAGCAGACCTTGAAGGAAGTGGAGCGCTTCTCGCAGTTCACCTTCATCAAGTCCGGCCTGATCACCGGCGGCGAAGATTTCAAGGTCCAGGCCGCCATGCTGCGCAAGGTTCCGGACATCCTGATTGGCACCCCTGGGCGGATGATCGAGCAGCTGAACGCCGGCAACCTCGACCTCAAGGAAGTCGAAGTGCTTGTGCTCGACGAAGCCGACCGCATGCTCGACATGGGTTTTGCCGAAGACGTGCGACGCCTGGTAGACGAGTGCGTGAACCGCCAGCAGACCATGCTATTCTCCGCCACCACCGGCGGTTCGGGCCTGCGCGAGATGATCGCCAAGGTGCTGAACAACCCCGAGCACCTGCAGCTCAACGCGGTCAGCCAGCTGAACTCCACCACCCGCCAGCAGATCATCACCGCTGACCATAACCAGCACAAAGAACAGATCGTGAACTGGCTGCTGGCCAACGAGACCTACGAAAAGGCCATCATCTTCACCAACACCCGGGCCATGGCCGACCGCATCTACGGCCGCCTCGTTGCCCAGGAATACAAGGCGTTCGTGCTGCACGGCGAGAAGGATCAAAAGGACCGCAAGCTGGCCATCGACCGTCTGAAGCAGGGCGGCGTGAAAATCCTCGTCGCCACCGACGTCGCCGCTCGTGGCCTGGACGTGGAAGGCCTGGACATGGTCATCAACTTCGACATGCCCCGCAGTGGTGATGAATACGTTCACCGCATCGGCCGTACCGGTCGTGCTGGCAACGATGGCTTGGCGATCTCGCTGATTTGCCACGGCGACTGGAACCTGATGTCGAGCATCGAGCGCTACCTGAAGCAGAGCTTCGAGCGCCGCACCATCAAGGAAGTCAAAGGCACCTACAGCGGACCGAAGAAGGTCAAGGCATCGGGCAAGGCCGTTGGCGTGAAGAAGAAAAAGGTCGACGGCAAGGGCGACAAGAAAAAGACCGGCGCCAAGGCCCCGACCAAACGCAAGACCGCCAACCGCCCGAAGACCGACGCGCCGTCTCTGGTCAGCAAGGACGGCATGGCCCCGCTCAAGCGCCGCAAGCCAGAGGCGCCGGCGGCTGAGTGA	MFSQFALHERLLKAVAELKFVEPTPVQAAAIPLALQGRDLRVTAQTGSGKTAAFVLPILNRLIGPAKVRVSIKTLILLPTRELAQQTLKEVERFSQFTFIKSGLITGGEDFKVQAAMLRKVPDILIGTPGRMIEQLNAGNLDLKEVEVLVLDEADRMLDMGFAEDVRRLVDECVNRQQTMLFSATTGGSGLREMIAKVLNNPEHLQLNAVSQLNSTTRQQIITADHNQHKEQIVNWLLANETYEKAIIFTNTRAMADRIYGRLVAQEYKAFVLHGEKDQKDRKLAIDRLKQGGVKILVATDVAARGLDVEGLDMVINFDMPRSGDEYVHRIGRTGRAGNDGLAISLICHGDWNLMSSIERYLKQSFERRTIKEVKGTYSGPKKVKASGKAVGVKKKKVDGKGDKKKTGAKAPTKRKTANRPKTDAPSLVSKDGMAPLKRRKPEAPAAE	PGPT0013740_2632	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927	NA	NA
D1-36_03652	1299	ybdG	COG0668	Miniconductance mechanosensitive channel YbdG	ATGGATATCAAACAACTCTGGCTCAACCTCCAGGATTTCTGGGGCGCCCTTGATCAACATCCGATCCTGCATTCGAGCCTTGCGCTGGTGTTGCTGCTGGCGATCGCGCTGGTGCTTGGACGGGTGGCGCGCTATTTGATCCTGCACGGCGCCAAGCTGATCGGCCGCCAGCCGGCGCTGCACTGGGTCAACGACCTGCGCCAGAACAAAGTTTTTCATCGCCTGGCGCAGACGACGCCGTCGCTGATCATTCAGTTCGGCTTGCACCTGGTGCCAGGGCTGAGCAAGACCAGCATGATTTTCCTGGGCAATGTCGCGCTGTCCTTCACCATCCTGTTCATGTTGCTGGCCATCAGCGCCTTGCTCAGCGCCCTGCTGGACGTCTACGCCCGCACCGAACACGCGCGCACCCGCTCGATCAAAGGCTACGTGCAGCTCACGAAAATGGTGTTGTACGTGTTTGGCGCGATCATCATTGTCGCCACGCTGATCGATCGTTCGCCGCTGTTGCTGCTGTCGGGCCTGGGTGCGATGTCGGCGGTGATCCTGTTGGTCTACAAGGACACCCTGCTGTCGTTCGTCGCCAGCGTGCAGCTGACCAGCAACGACATGCTGCGGGTTGGCGATTGGATCGAAATGCCACAAGTGGGCGCCGACGGTGATGTAGTGGACATCACGCTGCACACGGTGAAGGTGCAGAATTTCGACAAGACCATCGTCTCGATCCCCACCTGGCGGTTGATGTCCGAGTCGTTCAAGAACTGGCGCGGCATGCAGCAATCCGGCGGACGACGGATCAAGCGCAGCCTGTTCATCGACGCCAGTGGCGTGCGCTTCCTGCATGACGACGAAGAGCAGCGCCTGTCCCAGGTTCGCCTGCTGACTGATTACATCGGCCGCAAACAGGCCGAGCTCAAGGCCTGGAACGAAGCCCAGGGCAACGTCGCGGCGATGTCGGCCAACCGTCGGCGCATGACCAACCTGGGCACCTTTCGCGCCTATGCCCTGGCCTATCTGAAAAGCCACCCCGAGATCCAGCCGAACATGACCTGCATGGTCCGGCAGCTACAGACCACCGCCCAAGGGATCCCGCTGGAGATCTACTGCTTCACGGGTACCACCGTGTGGGCCGACTACGAGCGCATCCAGGGGGATATTTTCGATTACCTGCTGGCGGTGATGCCGGAGTTCGGGCTGGGCTTGTACCAGCAGCCGAGCGGCACGGATTTGCGGGCGGGACTGCTGCCGGCGGCGCTGGGGGCGAGTCACTTGTCGGAGCCGGAGAAGCAGGCGGTATAA	MDIKQLWLNLQDFWGALDQHPILHSSLALVLLLAIALVLGRVARYLILHGAKLIGRQPALHWVNDLRQNKVFHRLAQTTPSLIIQFGLHLVPGLSKTSMIFLGNVALSFTILFMLLAISALLSALLDVYARTEHARTRSIKGYVQLTKMVLYVFGAIIIVATLIDRSPLLLLSGLGAMSAVILLVYKDTLLSFVASVQLTSNDMLRVGDWIEMPQVGADGDVVDITLHTVKVQNFDKTIVSIPTWRLMSESFKNWRGMQQSGGRRIKRSLFIDASGVRFLHDDEEQRLSQVRLLTDYIGRKQAELKAWNEAQGNVAAMSANRRRMTNLGTFRAYALAYLKSHPEIQPNMTCMVRQLQTTAQGIPLEIYCFTGTTVWADYERIQGDIFDYLLAVMPEFGLGLYQQPSGTDLRAGLLPAALGASHLSEPEKQAV	PGPT0013774_186	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013774-mscM|ybdG-K16053	NA	NA
D1-36_03653	867	bioP	COG0697	Biotin transporter	ATGGGCTATCTACTTTTTGTAACGCTGATCCAGGCGTTTTCCTTCAGCCTGATCGGCGAATACCTGGCGGGGCATGTCGACAGTTATTTCGCGGTGCTGGTGCGGGTCGTGCTGGCGGGGCTGGTGTTCATCCCCCTGACGCGCTGGCGCCAGGTCGAGCCGTCGTTCATGCGCGGCATGCTGTTGATCGGTGCCTTGCAGTTTGGTGTGACCTACGTCTGCCTCTACCTGAGTTTCCGGGTGTTGACGGTCCCGGAAGTGCTGCTGTTCACCATCCTTACACCCCTGCACGTGACCTTGATCGAAGACGCCCTCAATCGGCGCTTCAATCCCTGGGCATTGGTTGCGGCACTGGTGGCCGTGGCCGGTGCGGCGGTGATTCGTTATGACAGGATCAACCCGGACTTCTTCATGGGTTTCCTGCTGCTGCAACTGGCCAACTTCACCTACGCGGCCGGGCAGGTGCTTTACAAGCACTTGGTGGCGCGTCACCCAAGCGATCTGCCGCATTACCGGCGTTTCGGTTATTTCTACCTCGGTGCATTGATGGTGGCGTTGCCGGCGTTCCTGCTGTTCGGCAAAGCCGACTTCTGGCCGCAAGCGCCGTTGCAGTGGGGCGTGCTGGTCTTCCTCGGCCTGGTTTCCACCGCGTTGGGCCTCTACTGGTGGAACAAAGGCGCGTGCCTGGTCAACGGCGGCACGCTGGCGGTGATGAATAACCTGCACGTGCCGGTGGGGTTGCTGGTGAACCTGCTGATCTGGAACCAGCACGAGGCGCTGGGGCGGTTGGTGTTGGGTGGTTCGGTGATACTGGCGGCGGTGTGGATCAGTCGGTTGGGGGTTCGCCAACCGCTCGTTACACGCTGA	MGYLLFVTLIQAFSFSLIGEYLAGHVDSYFAVLVRVVLAGLVFIPLTRWRQVEPSFMRGMLLIGALQFGVTYVCLYLSFRVLTVPEVLLFTILTPLHVTLIEDALNRRFNPWALVAALVAVAGAAVIRYDRINPDFFMGFLLLQLANFTYAAGQVLYKHLVARHPSDLPHYRRFGYFYLGALMVALPAFLLFGKADFWPQAPLQWGVLVFLGLVSTALGLYWWNKGACLVNGGTLAVMNNLHVPVGLLVNLLIWNQHEALGRLVLGGSVILAAVWISRLGVRQPLVTR				NA	NA	NA	NA	NA
D1-36_03654	600	azoR	COG1182	FMN-dependent NADH-azoreductase	ATGTCCCGCGTCCTGATCATCGAAAGCAGCGCCCGCCAGCAACATTCGGTTTCCCGCCAACTGACCCAAACGTTTATCAGCCAGTGGAAAGCCGCGCACCCGGCCGATGAGATCAGCGTCCGCGACCTGGCAATCAATCCGGTGCCGCACCTGGATGCCAACCTGCTGGGCGGCTGGATGAAGCCTGCCGAGCAACGCAACGACATCGAGAACGCTTCGCTGGAACGCTCCAACGAACTGACTGACGAGCTGCTGGCCGCCGACGTCCTGGTGATGGCGGCGCCGATGTACAACTTCGCCATTCCCAGCACTTTGAAAGCCTGGCTCGACCATGTGCTGCGTGCTGGTGTGACCTTCAAATACACCCCCACCGGTCCTCAAGGTCTGCTGACCGAAAAGCGCGCCTTCGTGCTCACCGCTCGCGGCGGCATCCACGCCGGCGGCGCCACCGATCACCAGGAACCGTACCTGCGCCAAGTGATGGGTTTCATCGGTATCCACGACGTGACCTTCATTCACGCCGAGGGCATGAACCTGGGTGGCGACTTCCAGGAGAAGGGTTTGAACCAGGCCAACGCCAAGCTTTCCCAGGTCGCCTAA	MSRVLIIESSARQQHSVSRQLTQTFISQWKAAHPADEISVRDLAINPVPHLDANLLGGWMKPAEQRNDIENASLERSNELTDELLAADVLVMAAPMYNFAIPSTLKAWLDHVLRAGVTFKYTPTGPQGLLTEKRAFVLTARGGIHAGGATDHQEPYLRQVMGFIGIHDVTFIHAEGMNLGGDFQEKGLNQANAKLSQVA	PGPT0006790_2691	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_DEGRADATION_OF_OTHER_NITRO-COMPOUNDS	XENOBIOTIC_AZO_DYE_DEGRADATION,PGPT0006790-acpD|azoR-K01118	NA	NA
D1-36_03655	315			hypothetical protein	ATGAAAAAAATCTGTTGTGCGGTGCTGGCCCTGCTGCCGCTGACTGCATTTGCCTACCCGATCGATGTGGAAAAACACCTCAACGGCCTGAGCATCGACTACAACGCCTATGACACCGACGCCGACATCGGCTCGATCCAGGTCAACAACTACGGCAGCACCGATGCAACCTGCAAAGTAGTGTTCCGCAACGGCCCGGAGGCGCCGCGCACCCGCACCATCGAAGTCGCCGCCGGCAAGTTCAAGAACGCCACCGCCAAGTTCAACCGCAACATCATCAAGCTGCGCATCGAGCTGACCTGCAAGCCGAAATAG	MKKICCAVLALLPLTAFAYPIDVEKHLNGLSIDYNAYDTDADIGSIQVNNYGSTDATCKVVFRNGPEAPRTRTIEVAAGKFKNATAKFNRNIIKLRIELTCKPK				NA	NA	NA	NA	NA
D1-36_03656	924	yhaJ_2		HTH-type transcriptional regulator YhaJ	ATGAAAGCGCCCCGCGTGACCCTTGATCAATGGCGAACGTTGCAGGCGGTGGTGGACCACGGTGGTTTCGCCCAGGCCGCCGAAGTGCTGCACCGCTCGCAATCGTCGGTGAGCTACACCGTGGCTCGCATGCAAGACCAGCTCGGCGTGCCGCTGCTGCGCATCGATGGACGCAAGGCGGTGCTGACCGAGGCCGGCGGCGTGCTGCTGCGCCGCTCGCGGCAACTGGTGAAGCAGGCCAGCCAACTGGAAGACCTGGCCCACCACATGGAGCAAGGCTGGGAAGCGGAAGTGCGTCTGGTGGTGGATGCGGCCTACCCCAACGCCCGCCTCGTCCGCGCCCTCACGGCATTCATGCCACAAAGCCGGGGCTGCCGGGTGCGCCTGCGCGAAGAAGTGTTGTCGGGCGTCGAAGAAGTGCTGCTCGAAGGCGTGGCCGACCTGGCCATCAGCGGCTTCAGCATCCCTGGTTACCTGGGCGCGGAGTTGAGCGACGTCGAATTCGTCGCGGTGGCCCACCCCGAACATGCCCTGCATCGCCTCAACCGCGAACTGAGTTTCCAGGACCTGGAAAGCCAGCTGCAAGTGGTCATCCGCGACTCCGGTCGCCAGCAGCCCAGGGACGTCGGCTGGCTCGGTGCCGAACAACGCTGGACCGTAGGCAGCCTGGCCACCGCCGCGACGTTTGTCGGCAGCGGCCTGGGGTTCGCCTGGCTGCCGCGGCACATGATCGAACGAGAGCTCAAGGAAGGCTTGCTCAAGCGTCTACCCTTGGAGCAAGGAGGCAGCCGCAACTCGACTTTCTATCTGTTCTCCAACAAGGAAAAACCTCTGGGCCCGGCCACGCAAATCCTCATCGAGCTGCTGCGCACCTTTGATACCGCGCCGCTGGATGCGCCGTTCGCCGCACCTGAACAAGCCTGA	MKAPRVTLDQWRTLQAVVDHGGFAQAAEVLHRSQSSVSYTVARMQDQLGVPLLRIDGRKAVLTEAGGVLLRRSRQLVKQASQLEDLAHHMEQGWEAEVRLVVDAAYPNARLVRALTAFMPQSRGCRVRLREEVLSGVEEVLLEGVADLAISGFSIPGYLGAELSDVEFVAVAHPEHALHRLNRELSFQDLESQLQVVIRDSGRQQPRDVGWLGAEQRWTVGSLATAATFVGSGLGFAWLPRHMIERELKEGLLKRLPLEQGGSRNSTFYLFSNKEKPLGPATQILIELLRTFDTAPLDAPFAAPEQA				NA	NA	NA	NA	NA
D1-36_03657	804	catD_3	COG0596	3-oxoadipate enol-lactonase 2	ATGGCCTATTTTGCGCACGAAGGTTGCAACCTGCACTATGAGGAATATGGCCACGGCGCGCCCCTGGTGCTGGTCCACGGGTTGGGCTCCAGCACACGGGATTGGGAAAAGCAGATCCCGGTGCTGTCCGCCCGCTATCGCCTGATCGTGTTGGATGTGCGCGGACACGGTCGGTCCGACAAGCCGCGTGAGCGCTACAGCATCGAAGGCTTCAGCGACGACCTGAGCGCCCTGATCGATTACCTCGACCTGGGCGCGGTGCATCTGGTGGGCTGGTCCATGGGCGGCATGATCTGCTTCCAACTGGCCGTGGACGAACCCACGCGGGTCAAGAGCCTGTGCATCGTCAACAGCGCCCCGGAGGTCAAGGTCCGCACGCCCGACGATTGCTGGCAATGGTTCAAGCGCTGGAGCCTGATGCGGCTGCTCAGCCTGGAAACCATCGGCAAGGCCCTCGGTGCCAAGCTGTTCCCCAAGCCCGAACAGACCGAGTTGCGCCTGGAAATGGCCCGGCGCTGGGCAATGAATGACAAACGTGCTTATCTGGCCAGCTTCGACGCCATTGTCGGCTGGAGCGTACAGGAACGCCTGTCGCAAGTTGCCTGTCCAACCCTCATCATTTGCGCCGACCACGACTACACCCCGGTGGCGCTGAAAGAAGCCTATTCAAAGCGTTTGCCTGACGCACGACTGGCAGTCATCACCGATTCACGGCACGCTACGCCGCTGGATCAACCCGAACGCTTCAACCAAACCCTGCTCGAATTCTTGATCGCAATCGATTCCACTACTCAGGATCACTGA	MAYFAHEGCNLHYEEYGHGAPLVLVHGLGSSTRDWEKQIPVLSARYRLIVLDVRGHGRSDKPRERYSIEGFSDDLSALIDYLDLGAVHLVGWSMGGMICFQLAVDEPTRVKSLCIVNSAPEVKVRTPDDCWQWFKRWSLMRLLSLETIGKALGAKLFPKPEQTELRLEMARRWAMNDKRAYLASFDAIVGWSVQERLSQVACPTLIICADHDYTPVALKEAYSKRLPDARLAVITDSRHATPLDQPERFNQTLLEFLIAIDSTTQDH	PGPT0004995_970	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
D1-36_03658	564	ppiA	COG0652	Peptidyl-prolyl cis-trans isomerase A	ATGCTGAAAAAAATCGCCCTCGCCGCCGGCTCCGTCCTCTTTGCTGCCAACCTGATGGCCGCGCAACCGGCCAAGGCCCCTCACGTATTGCTGGACACCACCAACGGTCAGATTGAAATCGAACTGGACCCGGTCAAGGCCCCTATCAGTACCAAGAATTTTCTTGAGTACGTTGACAGCGGCTTCTACAACAACACGATTTTCCACCGTGTGATCCCGGGCTTCATGGCCCAGGGCGGCGGTTTCACCCAACAGATGCAACAGAAAGACACCAAGGCGCCGATCAAGAACGAAGCCAGCAATGGCCTGCACAACGTACGCGGCACCTTGTCGATGGCCCGCACATCCAACCCGGATTCGGCCACCAGCCAGTTCTTCATCAACGTGGCCGACAACGCCTTCCTGGATCCGGGTCGCGACGCTGGTTACGCGGTGTTCGCCAAGGTGGTCAAGGGGATGGACGTGGTGGACATCATCGTCAACTCCCAGACCACCACCAAGCAAGGCATGCAAAACGTGCCGATCGACCCTGTGATCATCAAGTCGGCCAAGCGCATCGACTAA	MLKKIALAAGSVLFAANLMAAQPAKAPHVLLDTTNGQIEIELDPVKAPISTKNFLEYVDSGFYNNTIFHRVIPGFMAQGGGFTQQMQQKDTKAPIKNEASNGLHNVRGTLSMARTSNPDSATSQFFINVADNAFLDPGRDAGYAVFAKVVKGMDVVDIIVNSQTTTKQGMQNVPIDPVIIKSAKRID	PGPT0015110_1641	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
D1-36_03659	1833		COG1132	Putative multidrug export ATP-binding/permease protein	ATGGTTTATCGCCGTTTCGAAAAACTGATCGACATCTTCCGCGACGCCCCGACTTCGGCCCCGCCGAACCGCGTCCTGCCCTTTTACACGTATTACCTGAAACAGGTCTGGCCCAGCTTCGCCGTGCTGCTGGTGGTCGGCCTGATCGGCGCGCTGATCGAAGTGGCGCTGTTCAGCTACCTGAGCCGCATCATCGACCTGACCCAGGCCACGCCCAACGCAGAGTTCTTCAAGCTCCACGGCCTCGAATTGGCCTGGATGGCGGTGGTCGCACTGGTTCTTCGGCCGATTTTCGTCGCCCTGCATGACTTGCTGGTTCACCAGACCCTGAGCCCCAGCATGACCAGCCTGATCCGCTGGCAAAACCACAGCTATGTGCTCAAGCAGAGCCTCAACTTCTTCCAGAACGATTTTGCCGGGCGTATCGCCCAACGCATCATGCAGACCGGCAACTCGCTGCGGGACTCGGCGGTGCAGGCCGTGGATGCGTTGTGGCACGTGCTGATCTACGCCGTCAGCTCGCTGGTGCTGTTCGCCGAAGCCGATTGGCGCCTGATGATCCCGCTGTTGATGTGGATCGCCGCCTACATCGGCGCGCTCTATTACTTCGTCCCCCGGGTCAAGGAACGCTCGGTGGTGTCCTCCGATGCCCGTTCAAAGCTCATGGGGCGGATCGTCGATGGCTATACCAACATCACTACCCTGAAGCTGTTCGCCCACACCAACTTCGAACAGCAATACGCTCGCGAAGCCATCGAAGAGCAGACTCAAAAAGCCCAGCTCGCCGGTCGCGTCGTGACCAGCATGGATGTGGTCATCACCAGCATGAACGGGCTGCTGATCGTCGGCACCACAGCCCTGGCGCTGTGGCTGTGGACCCAGTCGCTGATCAGCGTCGGCGCGATTGCACTGGCCACCGGACTGGTGATCCGCATCGTCAACATGTCCGGCTGGATCATGTGGGTGGTCACCGGCATTTTTGAGAATATCGGCATGGTCCAGGACGGATTGCAGACCATCTCCCAGCCCGTCAGCGTCATCGACCGAGATCAGGCCAAGCCGTTGGCGGTAGCCCAGGGCGAAGTGCGTTTCGAGCAGGTGGATTTTCACTACGGCAAGAAAAGCGGCGTGATCAGCGACCTCAACCTGGTGATCAAGCCGGGCGAGAAAATCGGCCTGATCGGCCCGTCCGGCGCCGGCAAATCGACCTTGGTCAACCTGCTGCTGCGCCTTTATGACGTGCAGGGCGGGCGCATCCTCATCGACGGCCAGGACATCGCCCACGTCGGCCAGGAAAGCCTGCGCGCACGCATCGGCATGATCACCCAGGACACGTCGCTGCTGCACCGTTCGATTCGCGACAACCTGCTTTACGGCAAGCCCGACGCCACCGACGCGCAACTCTGGGAAGCGGTACACAAGGCCCGGGCCGATGAATTCATCCCGTTGCTCTCAGACGCTGAGGGCCGCACCGGTTTCGATGCCCACGTGGGCGAGCGCGGCGTGAAGCTCTCTGGCGGCCAGCGTCAGCGCATCGCTATTGCCCGGGTGCTGCTCAAGGACGCGCCAATCCTGATCATGGACGAAGCGACCTCCGCGCTGGACTCGGAAGTCGAGGCGGCCATCCAGGAAAGCCTCGAGACGCTGATGCAAGGCAAAACCGTGATCGCCATCGCCCACCGCCTCTCCACCATCGCCCGGATGGACCGGCTGGTGGTGCTGGAGAAGGGTCGCATCGCCGAGACCGGCAGCCATGCCGAGTTGCTGGCCCAGGGTGGGTTGTACGCGCGGCTGTGGCAGCATCAGACGGGTGGGTTCGTCGGGATCGACTGA	MVYRRFEKLIDIFRDAPTSAPPNRVLPFYTYYLKQVWPSFAVLLVVGLIGALIEVALFSYLSRIIDLTQATPNAEFFKLHGLELAWMAVVALVLRPIFVALHDLLVHQTLSPSMTSLIRWQNHSYVLKQSLNFFQNDFAGRIAQRIMQTGNSLRDSAVQAVDALWHVLIYAVSSLVLFAEADWRLMIPLLMWIAAYIGALYYFVPRVKERSVVSSDARSKLMGRIVDGYTNITTLKLFAHTNFEQQYAREAIEEQTQKAQLAGRVVTSMDVVITSMNGLLIVGTTALALWLWTQSLISVGAIALATGLVIRIVNMSGWIMWVVTGIFENIGMVQDGLQTISQPVSVIDRDQAKPLAVAQGEVRFEQVDFHYGKKSGVISDLNLVIKPGEKIGLIGPSGAGKSTLVNLLLRLYDVQGGRILIDGQDIAHVGQESLRARIGMITQDTSLLHRSIRDNLLYGKPDATDAQLWEAVHKARADEFIPLLSDAEGRTGFDAHVGERGVKLSGGQRQRIAIARVLLKDAPILIMDEATSALDSEVEAAIQESLETLMQGKTVIAIAHRLSTIARMDRLVVLEKGRIAETGSHAELLAQGGLYARLWQHQTGGFVGID	PGPT0029145_990	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029145-vcaM-K18893	NA	NA
D1-36_03660	1125			hypothetical protein	ATGCCGCTTCACGTCTTGGACAGCCTGTCCGCCATCGCGCCACATGAGTGGGACGCGCTGGTGCCCGTCAACCAACCCTTCCTGCGCCACGCTTTTCTCACCGCCCTGGAAGACAGCGCCAGCCTGGGTTCGCATTCCGGGTGGCAGCCCGAGCATCTGCTGCACCTTGAAGAGGGGCGGCTGCTGGCGGCTTTGCCCAGCTATCGCAAGTGGCATTCCTACGGTGAGTACGTGTTCGATCATGGCTGGGCCGACGCTTGTGCCCGGGCCGGCATCGACTATTACCCCAAGCTACTGACGGCGGTGCCATTCAGTCCGGTGAGCGGCCCGCGACTGCTGACGGCGCGTGTTGAGGATGGCTTGGAACTGCTGGGCAGCCTGCCGGGCTATCTGGAGATCGAAGGGCTATCCAGCGCCCACATCAACTTCACCGACGCCTTCACCGACGAGGCATTGGCCAGGCAGGAGGGCTGGTTGCAGCGAATCGGTTGCCAGTACCACTGGCAGAATCGCGGCTATCGGGATTTCCAGGATTTCCTCGACGCGCTCAGTTCCCGCAAGCGCAAGCAGATGCGCAAGGAGCGCGAGCAGGTGGCGGGGCAGGGCATTGATTTCGAATGGCTGGAAGGCCATCAATTGGACGAGGCGCAGTGGGATTTTGTCTACGCCTGTTACGCCAATACCTACGCGGTGCGTCGGCAGGCGCCTTATCTGACCCGTGCTTTTTTCAGCCTGCTGGCCGAGCGCATGCCCGAGGCCATTCGCGTGGTACTGGCCAAGCAAGGTTCACGGCCGGTGGCGATGGCGTTCAGCCTGTTGGCGGGCGACAGTTTTTATGGGCGTTATTGGGGCTGCCTGGCAGAGTTCGATCGGCTGCATTTCGAGACGTGTTTCTATCAAGGCATGGACTACGCGATTGCCAACGGCGTGCAGCGTTTTGACGCCGGGGCCCAGGGTGAGCACAAGTTGATTCGCGGCTTCGAACCGGTGATCACCCGTTCATGGCACTACCTTCGCCATCCGGGCTTGAAAGCGGCGGTGGCGGATTTTCTTGCGCGCGAGCAGGAGGGCGTGATGGCGTATGCCGAAGAAGCGAAAACGGCACTGCCTTATCGGCAGTGCTGA	MPLHVLDSLSAIAPHEWDALVPVNQPFLRHAFLTALEDSASLGSHSGWQPEHLLHLEEGRLLAALPSYRKWHSYGEYVFDHGWADACARAGIDYYPKLLTAVPFSPVSGPRLLTARVEDGLELLGSLPGYLEIEGLSSAHINFTDAFTDEALARQEGWLQRIGCQYHWQNRGYRDFQDFLDALSSRKRKQMRKEREQVAGQGIDFEWLEGHQLDEAQWDFVYACYANTYAVRRQAPYLTRAFFSLLAERMPEAIRVVLAKQGSRPVAMAFSLLAGDSFYGRYWGCLAEFDRLHFETCFYQGMDYAIANGVQRFDAGAQGEHKLIRGFEPVITRSWHYLRHPGLKAAVADFLAREQEGVMAYAEEAKTALPYRQC				NA	NA	NA	NA	NA
D1-36_03661	1311	oprO	COG3746	Porin O	ATGATCCGTAAGCACTTCGCAGGTTTTGCCGCCAGCGCTCTGGCAATGGCAGTAACCGCCCAGGCTTTCGCCGGCACCGTGACCACAGACGGCGCCGATATCGTGGTCAAGACCAAGGGCGGCCTGGAGGTCGCTACCACTGACAAAGAGTTCAGCTTCAAGCTCGGCGGTCGTTTGCAGGCTGACTACAGCCAGTTCGATGGCATCTACACCGACAACGGTGACAAAGCCGATGCCGCTTACATCCGCCGTGGCTTCCTGGAGTTGTCCGGTGTGCTGTACACGGACTGGGCCTACACCATCAACTACGATTTCTCCCACAACAGCGGCGATTCCGATAACGGCTACTTCGACGAAGCTTCCTTGGCCTACAACGGCTTCAAGCCGGTTTCGATCAAGGTCGGCCGTTTCGACCCGGATTTCGGCCTTGAAAAAGCCACCAGCTCCAAATGGGTCACCGCACCTGAGCGTAATGCCGCCTACGACCTGATCGACTGGGCCAACGGCCACCAGAACGGCCTGGGCCTGCAAGCATCCGGCGTCTTCGCTGATTCGTTCTACGTCTCGGCCGGTGTGTTCAGCAAAGACACCGACGACACCGACGGCAACAGCATCAAGCAAGCCAATGGTCGTTTCGTGTTCGCCCCGATGCACGAAGCTGGCAACGTGCTGCACTTCGGTTTGAACGTGGCCTCGCGCGACGTTTCGGACACCGCATTCGACGCTCGTTATCGCTCCCGTCTGGGCATGCGTGGCGTTGAAACCCTGGGCGGCAATGACGCCGGCCCTAACGGCAACCGTCCGGTCCTGGGCGGCGCCAACAACTCGCCGGCCGGTTCCTACGACACCGACACTGCCTTCGGTCTGGAAGCCGCTTTCGCCATGGGCCCAGCGTCTATCCAGGGTGAATACATCTCCCGCAAGACCAAGGCTGACAGCGACGCCTTCGAAGACCTAAAAGGTCACGGCTTCTACGTCCAGGGTGCCTACACCCTCACTGGTGAATCCCGTGGTTATAAACTCGGCAAATTCGACGCCATCAAGCCTCAGAACAAATCCATCGGCGCTTGGGAAGTGTTCTACCGCTTCGACAGCATGACCGTCGAAGACGACAACATCACCACCGCCTCGGCGACCCGCGAAGTGGGCGATGCCGAAGCCAAGGTGCACAACCTGGGTGTGAACTGGTACGCCAACGAAGCGGTGAAAATCACCGGTGCCTACGTCAAGGCCAAGACCGATAAAGTCACCAACGCCAATGGCGATGATGATGGCGACGGTTTCGTAGTCCGTGCCCAGTACGTGTTCTAA	MIRKHFAGFAASALAMAVTAQAFAGTVTTDGADIVVKTKGGLEVATTDKEFSFKLGGRLQADYSQFDGIYTDNGDKADAAYIRRGFLELSGVLYTDWAYTINYDFSHNSGDSDNGYFDEASLAYNGFKPVSIKVGRFDPDFGLEKATSSKWVTAPERNAAYDLIDWANGHQNGLGLQASGVFADSFYVSAGVFSKDTDDTDGNSIKQANGRFVFAPMHEAGNVLHFGLNVASRDVSDTAFDARYRSRLGMRGVETLGGNDAGPNGNRPVLGGANNSPAGSYDTDTAFGLEAAFAMGPASIQGEYISRKTKADSDAFEDLKGHGFYVQGAYTLTGESRGYKLGKFDAIKPQNKSIGAWEVFYRFDSMTVEDDNITTASATREVGDAEAKVHNLGVNWYANEAVKITGAYVKAKTDKVTNANGDDDGDGFVVRAQYVF	PGPT0002640_466	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATE_METABOLISM	P-SOLUBILISATION-PHOSPHATE_TRANSPORT,PGPT0002640-oprO-K07221	NA	NA
D1-36_03662	1122		COG0332	Beta-ketodecanoyl-[acyl-carrier-protein] synthase	ATGCATAACGTCGTCATCAGCGGCACCGGCCTGTACACCCCGGCCAACAGCATCTCCAACGAAGAGCTGGTGCAATCCTTCAATACTTACGTCGCGCAGTTCAACGCCGATAACGCCGAGGCCATCGAGCGCGGCGAAGTGCAAGCATTGACCGAATCCAACGCCGCGTTCATCGAGAAGGCTTCCGGCATCAAGAGCCGCTTTGTCATGGACAAGGACGGCATTCTTGATCCACAACGCATGACGCCGCGCCTGCCCGAGCGCTCCAATGACGAGTGGTCGGTGCTCTGCGAAATGGCCGTCGGCGCCGCGAAGCAGGCCCTGGAACGCGCCGGTCGCACCGCCGCCGACATCGACGGCGTGATCGTGGCTTGTTCGAACTTGCAGCGTCCTTACCCGGCCATCGCCATCGAAGTACAGGAAGCCCTGGGCATCGAAGGTTTCGGTTTCGACATGAACGTGGCCTGTTCTTCGGCGACGTTCGGCATCCAGGCCGCCGCCAACAGCGTGCAACTGGGCCAGGCCCGGGCGATCCTCATGGTCAACCCGGAAGTCTGCACAGGCCACCTGAATTTCCGTGACCGCGACAGCCACTTCATCTTCGGCGACGCGGCCACCGCCGTGATCATCGAGCGCGCGGACCAGGCCACGTCGCCGTATCAGTTCGATGTGGTCAGCACCAAGCTGCTCACCAAGTTTTCCAACAACATCCGCAACAACTTCGGCTTCCTCAACCGCGCGGCGGAGGAGGGCATCGGCACCCGGGACAAACTGTTCGTTCAGGAAGGACGCAAGGTGTTCCGCGACGTCTGCCCGATGGTGGCTGAACTGATCGGCGCCCATTTGGAGGAAAACCAGCTGAACGTCGGCGAAGTGAAGCGATTCTGGCTGCATCAGGCCAACCTGAGCATGAACCAGCTGATCGTGCGCAAGTTGCTGGGACGCGAAGCCAGCGAAGAGGAAGCCCCGGTGATCCTCGACCGCTACGCCAACACCAGCTCGGCCGGCTCGGTGATTTCGTTCCACCTGTATCAGGACGACCTGCCCAGCGGCTCCGTCGCGGTGCTCAGCTCGTTTGGCGCCGGCTATTCGATCGGCAGCGTGATCCTGCGCAAGCGTTGA	MHNVVISGTGLYTPANSISNEELVQSFNTYVAQFNADNAEAIERGEVQALTESNAAFIEKASGIKSRFVMDKDGILDPQRMTPRLPERSNDEWSVLCEMAVGAAKQALERAGRTAADIDGVIVACSNLQRPYPAIAIEVQEALGIEGFGFDMNVACSSATFGIQAAANSVQLGQARAILMVNPEVCTGHLNFRDRDSHFIFGDAATAVIIERADQATSPYQFDVVSTKLLTKFSNNIRNNFGFLNRAAEEGIGTRDKLFVQEGRKVFRDVCPMVAELIGAHLEENQLNVGEVKRFWLHQANLSMNQLIVRKLLGREASEEEAPVILDRYANTSSAGSVISFHLYQDDLPSGSVAVLSSFGAGYSIGSVILRKR	PGPT0008355_521	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008355-fabH-K00648	NA	NA
D1-36_03663	3912			hypothetical protein	ATGACTGACCAAACCCCCGCTATCGACAAACTGCTGAAAAACCTCGATCACGCCATGCTCGCCGACCGGCACCGGTTGCGGCGGCAGTTGCTCGAGCTGCGCAAGAAGCCCGACGAGGCCAAGCTGGCCCAGTGGGTAGCGCGGATGCAAGCGTCGTGCGACCTGGTGCTGGCGCGCAAGGCGAGCGTGCCGTCGATTCGCTACGACGACAACTTGCCGATCGCCGCCAAGCGCGACGAGATCAAGGAGGCGCTGCTCAAGCATCAGGTGCTGATCATCGCCGGAGAAACCGGCTCGGGCAAAACCACCCAGTTGCCGAAGATCTGCCTGGAGATCGGCCGTGGCCAGCAGGGTTTGATCGGCCACACCCAGCCACGCCGCATCGCCGCCCGCAGCGTGGCGAGCCGTGTCGCCGAAGAGCTGGCGACCCCCCTGGGGGCGCTGGTGGGTTATCAGGTGCGTTTCGAGGACCAGAGCGACGCCAACACGCTCATCAAGTTGATGACCGATGGCATCCTGCTGGCGGAAACCCAGAACGACCGCTACCTCGAACGTTACGACACGATCATCGTCGACGAAGCCCACGAGCGCAGCCTGAATATCGACTTCCTGCTGGGCTACCTCAAGACCCTGTTGCCGCGTCGCCCCGATCTGAAAGTCATCATTACGTCGGCGACCATCGACCTGGAGCGTTTCTCCAAGCACTTCGATGACGCCCCCATCGTTGAAGTCTCGGGCCGCACCTTCCCGGTGGAAACCTGGTATCGCCCGCTGACCCTTGAGCAAGACGAGGAGGGTAACCGGGTCGAGGATGACTTGACCGTCGACCAGGCGATTCTCGCCACCCTCGACGAAATCGCTGCTTACGAGCGCAGCGAACGGCGCAGCCCCGGCGACGTGCTGGTGTTCCTGCCGGGCGAGCGGGAGATTCGCGACGCCGCGGAAATGCTGCGCAAGGCCCAACTCAAGCACACCGAGATCCTGCCGCTGTACGCGCGCTTGTCGCCGGCCGAACAACAACGGATCTTCCAGTCCCACCCGGGCCGTCGCGTGGTGCTGGCCACCAACGTCGCCGAAACCTCATTGACCGTGCCGGGTATCCGCTACGTAATCGACAGCGGCACCGCGCGCATCAGCCGCTACAGCTATCGCGCGAAGGTCCAGCGCCTGCCCATCGAAGCCATATCCCAGGCCAGCGCCAACCAGCGCAAAGGCCGTTGCGGGCGGGTCGAGCCGGGGATCTGCGTGCGGTTGTACAGCGAAGAGGATTTCATCAGTCGCCCTGAATTCACCGATCCGGAAATCCTGCGCACCAACCTGGCGGCGGTGATCCTGCAGATGCTGCACCTGCGTCTCGGCGAGATCACCGATTTCCCGTTCATCGAGCCGCCGGACGGCAAGGCCATCAGCGACGGATTCAACCTGCTGCAAGAATTGTCGGCGGTGGACCGTAACAGCCAATTGACGCCGTTGGGTCGGCAATTGGCGCGTTTGCCGGTGGATCCGCGCATGGGCCGCATGCTGTTGGAAGCAGCGAAGCTGGGCAGCCTGCAGGAAGTGCTGATTGTCGCCAGCGCCATGTCGATCCAGGATCCGCGCGAGCGTCCGCCCGAGCGCCAACAGGCCGCCGACCAGGCTCACGCCCAATGGAAGGACGCGGATTCGGACTTCGCCGGGCTGGTCAATCTGTGGCGAGGTTTCGAAGAACAGCGCCAGGCCCTGACCGCCAACCCGCTGCGCAACTGGTGCCGCAAGAACTTCCTGAATTACCTGCGCCTGCGCGAATGGCGTGATTCCCACCGCCAGTTGAGCCTGATCTGCCGCGACATGCAGTTGAGCCTCAACAAAGAGCCGGCCGATTACCCGAAACTGCACAAGGCGGTGCTCTCGGGGCTGTTGAGCCAGATCGGCCAGAAAACCGAAGACGGCGATTACCTCGGCGCTCGCCAGCGGCGCTTCTGGGTCCATCCATCGTCAGGCCTGGGCAAGAAGCGTCCGCAGTGGCTGATGACCGCCGAACTGGTGGAAACCACCAAGTTGTACGCGCGCATGGTGGCGAAGATCGAGCCGGACTGGATCGAACCGCTGGCGGGGCACCTGATCAAGAAAAACCACTTCGAGCCCCATTGGGAGAAGAAGCGCGGGCAAGTGGTGGCTTATGAGCAGATCACCTTGTTCGGGCTGATCGTCGTTGGTCGTCGGCCCGTTCACTACGGGCCGGTGGACCCGGTGGTGTCCCGTGAATTGTTCATCCGCGAGGCGCTGGTGCGTGGCGAGATCCAGTCCAAGGCCAAGTGCCTGAGCGCCAATACGCGGTTGCTTGAACAACTCGACGAGCTCGAAGCCAAGGCCCGTCGCCGCGACATCCTCGCGGACGAGGAAACGCTGTTCGCCTTCTACGACGCGCGCCTGCCTGCCGAAATTCATCAGACCGCGACGTTTGACAGCTGGTATCGGATCAACAGCCAGAAAGATCCGCAGCTGTTGATCATGCGCGAAGAAGACGTGCTGGCCCGGGAGGCCAGCGAGGTGACGGCCAACCAGTACCCCGACACCTTGCGCGTCGGCGACTTGACGTTGCCGTTAAGCTATCACTTCGAGCCCAACCATCCCCGCGACGGCGTCACGTTGCGTGTACCGGCGCCGCTGCTGCCGATGCTGCCACCTGAGCGCCTGGAATGGCTGGTGCCGGGGATGATCGAAGCCAAGTGCATCGCGCTGGTGCGCAACCTGCCCAAGGCCTTGCGCAAGAACTTCGTGCCAGTGCCGGACTTCGTCAAGGCCGCGTTGCAACGCATCACGTTTGCCGAAGGTTCGTTGCCGCAATCCCTGGGGCGCGAATTGCTGCGCATGACCGGTGCGCGGGTCAGCGATGACGCCTGGGCGGAAGCGGCGCAGCAGGTAGAAAGCCATTTGCGCATGAACCTGGAAATCGTCGATGGCCAGGGCAAGTTCCTCGGTGAAGGCCGCGACCTGGCCGAGCTGACGGCGCGTTTTGCCGAGGCCAGCCAGGCCGCCTTGGCCGTGCCGCAAACAGCCAAGAGCCAGGAACCGGTGGAGGCGAAAGTCTTCGCACCGGTGGCCGAGAAAACCCAGCAGAAGATCGCCGGGTTGTCGATGACGGTGTACCCGGCGTTGGTGGAAGAGGGCGGCGTGGTCAAGGAAGGGCGCTTCCCGACCCCGGCCGAAGCCGAGTTCCAGCACCGTCGTGCCTTGCAGCGTTTGCTCATGCAGCAATTGGCCGAAACGGCGAAATTCCTCCGTGGCAAGCTGCCGGGATTGACGGAGTTGGGCCTGCTCTATCGTGAATTGGGGCGCGTCGACGCTCTGGTGGAAGACATCCTGCTGGCGAGCCTCGACAGCTGCATCCTCGAAGGCGAGCCGAGCCTGCCCCGTGACGGTGCCGCGCTGGCGGCCCTGGCCGAACGCAAGCGCGGCGCCTGGACCGAGCACGCCGAACGCCTGGCGAAGCTGACCCTGGACATCCTCAAGCTCTGGCACGGCCTGCAAAAACGCTTCAAGGGCAAGATCGACCTGGCCCAGGCCGTGGCGCTGAACGACATCAAGCAACAGCTCGGCCACTTGGTGTACCCAGGCTTCGTGCGGGAAACCCCCCATCAATGGCTCAAGGAGCTGCCACGCTATCTCAAGGCAATCGAGCAACGTTTCGAGAAGCTGGGCAGCCAGGTCCAGAAGGACCGGGTCTGGAGCGGCGAGCTCTCCAATCTCTGGGCTCAATACCAGGCCCGCGCCAGCAAACACGCCCAGGAAGGCAAGCGCGACCCGCAACTGGAGCTCTACCGTTGGTGGCTGGAGGAATACCGCGTGTCGCTGTTCGCCCAGCAGTTGGGGACCAAGGTGCCGATTTCCGACAAGCGCCTGGGTAAGCAGTGGGGGTTGGTGGAGGGTTGA	MTDQTPAIDKLLKNLDHAMLADRHRLRRQLLELRKKPDEAKLAQWVARMQASCDLVLARKASVPSIRYDDNLPIAAKRDEIKEALLKHQVLIIAGETGSGKTTQLPKICLEIGRGQQGLIGHTQPRRIAARSVASRVAEELATPLGALVGYQVRFEDQSDANTLIKLMTDGILLAETQNDRYLERYDTIIVDEAHERSLNIDFLLGYLKTLLPRRPDLKVIITSATIDLERFSKHFDDAPIVEVSGRTFPVETWYRPLTLEQDEEGNRVEDDLTVDQAILATLDEIAAYERSERRSPGDVLVFLPGEREIRDAAEMLRKAQLKHTEILPLYARLSPAEQQRIFQSHPGRRVVLATNVAETSLTVPGIRYVIDSGTARISRYSYRAKVQRLPIEAISQASANQRKGRCGRVEPGICVRLYSEEDFISRPEFTDPEILRTNLAAVILQMLHLRLGEITDFPFIEPPDGKAISDGFNLLQELSAVDRNSQLTPLGRQLARLPVDPRMGRMLLEAAKLGSLQEVLIVASAMSIQDPRERPPERQQAADQAHAQWKDADSDFAGLVNLWRGFEEQRQALTANPLRNWCRKNFLNYLRLREWRDSHRQLSLICRDMQLSLNKEPADYPKLHKAVLSGLLSQIGQKTEDGDYLGARQRRFWVHPSSGLGKKRPQWLMTAELVETTKLYARMVAKIEPDWIEPLAGHLIKKNHFEPHWEKKRGQVVAYEQITLFGLIVVGRRPVHYGPVDPVVSRELFIREALVRGEIQSKAKCLSANTRLLEQLDELEAKARRRDILADEETLFAFYDARLPAEIHQTATFDSWYRINSQKDPQLLIMREEDVLAREASEVTANQYPDTLRVGDLTLPLSYHFEPNHPRDGVTLRVPAPLLPMLPPERLEWLVPGMIEAKCIALVRNLPKALRKNFVPVPDFVKAALQRITFAEGSLPQSLGRELLRMTGARVSDDAWAEAAQQVESHLRMNLEIVDGQGKFLGEGRDLAELTARFAEASQAALAVPQTAKSQEPVEAKVFAPVAEKTQQKIAGLSMTVYPALVEEGGVVKEGRFPTPAEAEFQHRRALQRLLMQQLAETAKFLRGKLPGLTELGLLYRELGRVDALVEDILLASLDSCILEGEPSLPRDGAALAALAERKRGAWTEHAERLAKLTLDILKLWHGLQKRFKGKIDLAQAVALNDIKQQLGHLVYPGFVRETPHQWLKELPRYLKAIEQRFEKLGSQVQKDRVWSGELSNLWAQYQARASKHAQEGKRDPQLELYRWWLEEYRVSLFAQQLGTKVPISDKRLGKQWGLVEG				NA	NA	NA	NA	NA
D1-36_03664	1722	aceK	COG4579	Isocitrate dehydrogenase kinase/phosphatase	ATGCCGCAGCCATGGCCCGCGACCGATATCGCCCGTTCGATCCTCGACGGTTTCGACGATTATCGTGAGCATTTCCGGCAGATCACCGACGGCGCCCGCGCCCGGTTCGAGCAGGCGCAATGGTTGGAGGCGCAGGCGGCCTCGGCGGCGCGCATCAATCTGTATGAAGAAAAAGTCTTCGAAACCGTCGCCCGGTTGCGCCAGGCCTTTAGCGCCGAGGCCTTGATGGACGTTGGTTGCTGGCCATTGGTGAAGAGCGCCTATATCAGCCTGATCGACCTGCGCTTCGACGATGAATTGTCGGAGACCTGGTACAACTCGATCTTCTGCGGCCTGTTCAGCCATGATCTGATCAGCGACGGCACCATGTTCATCCACACGACCCGGCCGAGCCTGCGTCGTGCTCGCGCGGCACAGACCCGCACCTATAAACCCGAAGGGCAACTGGACAAAATGCTCGCGGCGATCTTTGCCGATTATCGCTTCAGTGAAGAGTACGCCGACCTGCCCGGCGACCTGCGACGTCTCGAAAGCCAGCTGCGCGAAAACCTGCCGGATTGGGTCTGCAAGGACCCGGAACTGACGGTCGAACTGTTTTCCTCGGTGCTCTATCGCAACAAGGGCGCCTACCTGGTGGGCCGCATCTACACCCATGACGATCAGTGGCCCCTGGTGATCCCGTTGCTGCACCGCGAAGGCCGGGGTATCCAGATCGACGCGCTGATCACCGACGAGGCGCAGGTGTCGATCATCTTCTCGTTCACCCGTTCGTATTTCATGGTGGACGTGCCGGTGCCGGCGGAATTCATTGGCTTTCTCAAGCGCATCCTGCCGGGCAAGCACATTGCCGAGCTGTACACTTCGATTGGTTTCTACAAGCACGGCAAGTCGGAGTTCTACCGGGCGCTGATCAACCACCTGGCGAACACCGATGACCAGTTCATCATGGCGCCTGGCGTGCGCGGCATGGTCATGAGCGTGTTCACCCTGCCGGGCTTCAACACCGTGTTCAAGATCATCAAGGACCGTTTCTCGCCGTCGAAGAACGTCGACCGGGCCACGGTCATCGAGAAATACCGATTGGTGAAAAGCGTTGACCGGGTCGGGCGCATGGCCGACACCCAGGAGTTCGCCGACTTCCGCTTCCCCCTGAGCAAATTCGAGCCGGCCTGCCTGGAAGAACTGCTGGATGTGGCGCCGTCCACGGTGTCGGTGGAGGGCGACACGGTGTTGATCCGCCACTGCTGGACCGAACGCCGGATGACGCCTCTGAACCTCTACCTGGAAAACGCCAACGAAGCTCAGGTGCGCGAGGCGCTGGAAGATTATGGCCTGGCGATCAAGCAACTGGCGGCCGCCAATATCTTCCCCGGCGACATGCTGCTCAAGAACTTCGGCGTAACCCGCCATGGCCGCGTGGTGTTCTACGATTACGATGAGATCTGCTTTCTCACCGAGGCCAACTTCCGCCATATCCCCCAGCCGCGCACGCCGGAAGATGAGATGGCGTCCGAGCCTTGGTATTCCATCGGCCCGCTGGACGTTTTCCCTGAAGAGTTCCCGCCGTTCCTGTTCGCCGACGCCGGGCAGCGCAAGCTGTTCGACCAGTTGCACGGCGAGTTGTACAACGCTGACTACTGGAAAGGCCTGCAGGACGCGATCCGGGCGGGAAAGGTGATCGATGTGTTCCCGTATCGGCGTAAAGACCTGGACAGCGAATAA	MPQPWPATDIARSILDGFDDYREHFRQITDGARARFEQAQWLEAQAASAARINLYEEKVFETVARLRQAFSAEALMDVGCWPLVKSAYISLIDLRFDDELSETWYNSIFCGLFSHDLISDGTMFIHTTRPSLRRARAAQTRTYKPEGQLDKMLAAIFADYRFSEEYADLPGDLRRLESQLRENLPDWVCKDPELTVELFSSVLYRNKGAYLVGRIYTHDDQWPLVIPLLHREGRGIQIDALITDEAQVSIIFSFTRSYFMVDVPVPAEFIGFLKRILPGKHIAELYTSIGFYKHGKSEFYRALINHLANTDDQFIMAPGVRGMVMSVFTLPGFNTVFKIIKDRFSPSKNVDRATVIEKYRLVKSVDRVGRMADTQEFADFRFPLSKFEPACLEELLDVAPSTVSVEGDTVLIRHCWTERRMTPLNLYLENANEAQVREALEDYGLAIKQLAAANIFPGDMLLKNFGVTRHGRVVFYDYDEICFLTEANFRHIPQPRTPEDEMASEPWYSIGPLDVFPEEFPPFLFADAGQRKLFDQLHGELYNADYWKGLQDAIRAGKVIDVFPYRRKDLDSE	PGPT0001475_766	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-CITRIC_ACID_BIOSYNTHESIS,PGPT0001475-aceK-K00906	NA	NA
D1-36_03665	909			hypothetical protein	GTGAACCTCGTCGATATCCTGCGCTTGCTGTCACTGGCCGCCATCTGGGGCGCGAGCTTCTTGTTCATGCGCATTATCGCTCCGGTCATCGGTACGATTCCCACGGCTTTCTTTCGCGTCTCCATTGCCTTCGTCGGCCTGCTGGTCATTCTTGCGCTGATGCGTGTCGACTGGAATTTTCGCGGCAAGCTAAAAGCCGTGATGGTTTTGGGCTTGATCAATTCCGGCATTCCCGCAACGTTCTACTCCCTGGCGGCCCAAGTGTTGCCGGCGGGCTACTCGGCGATCTTCAACGCGACGACGCCGCTGATGGGCGTGCTGATCGGTGGGTTGTTTTTCCGTGAGCCACTCACGGCGGCCAAGGTCAGCGGGGTTTTTCTCGGCCTGATGGGCGTCGCGATCCTCACCCGCGCAGGTCCGGTGGCGTTCGACCAGCAACTGTTGATGGGCGCCCTCGCCTGCCTGCTCGCCACGACCTGCTATGGCTTTGCCGGTTTTCTGACCCGGCGCTGGCTCGATCATCAAGGCGGGTTGGACAGCCGCTTGTCCGCCCTTGGCAGCATGTTCGGCGCCACGATCTTCCTGTTGCCGCTGTTTGGCTACAGTGTCATCACCCAACCACCGGCCAGCTGGGGCGGCTGGAGCGTATGGCTGTCGCTGCTGGGCCTGGGCCTGGTGTGTACGGCGCTGGCGTACATTCTTTATTTCCGCTTGCTCAGCTCCATTGGCCCAGTCAAATCCATGACAACGACCTTTCTGATCCCGCCGTTCGGCGTGCTGTGGGGCGCATTGCTGCTGGATGAGCCACTGGGCATGGCCCATGTGTATGGCGGGGTGTTGATTGCGGCGGCGTTGTGGTTGGTGTTGAAGCCTGGGGTGGTCAAGCCGGTTGGAGCGTCTGCCCGGTAA	MNLVDILRLLSLAAIWGASFLFMRIIAPVIGTIPTAFFRVSIAFVGLLVILALMRVDWNFRGKLKAVMVLGLINSGIPATFYSLAAQVLPAGYSAIFNATTPLMGVLIGGLFFREPLTAAKVSGVFLGLMGVAILTRAGPVAFDQQLLMGALACLLATTCYGFAGFLTRRWLDHQGGLDSRLSALGSMFGATIFLLPLFGYSVITQPPASWGGWSVWLSLLGLGLVCTALAYILYFRLLSSIGPVKSMTTTFLIPPFGVLWGALLLDEPLGMAHVYGGVLIAAALWLVLKPGVVKPVGASAR				NA	NA	NA	NA	NA
D1-36_03666	864			hypothetical protein	ATGTTTTCCTTTTCCAAAAACGCCTTATTGGCGACGGCTTCGACGAGCCTGTTCGTTCTGTTGTGGAGCAGCGGGGCGATCTTCTCCAAATTGGGCCTGGCCCACGCGTCACCTTTCGCCTTCCTGCTGATCCGCTTCGCCATCGCGTTGTGCGCATTGGTGCTGTTGATCCCCATGTTGAAGTTCAAGCTGCCCGGCACCGGCAAGCCGATGCTGTACGCGGCGGCGACGGGACTGGTGCTGTTGGGTGCCTATCAGATTTTCTATCTGCTGGCGCTGCAACTGAACGTCACCCCTGGAGTAATGGCGACGCTCATGGGCGTGCAGCCGATCCTTACCGTGGTGCTCATGGAGCGTCAGCGTTCATGGCAGCGCATGTTCGGCCTGGCGCTGGGGCTGGTGGGGTTGGTGATGGTGGTTTACCAAGGCATTGGCCTGGCCGGCATGTCCCTGGCGGGCATGCTGTGCGGGTTGCTGGCGCTGGTGAGCATGACGGCGGGCTCCATCATGCAGAAGCGCATCACCGACAACCCACTGGGCACGCTGCCGGTGCAGTACCTGGCCGGGCTGGTGTTGTGCTCGGTGTTCGTGCCGTTCCAACCCTTCCACTTCGAGCGCAGCGCGGGTTTCATCGTGCCGGTGTTGTGGATGGGGCTGGTGGTGTCGGTGTTGGCGACGTTGCTGCTGTACCGGCTGATTGCCCGGGGCAATCTGGTCAACGTCACCAGCCTGTTCTACCTGGTGCCGGCGGTGACGGCGATCATGGACTACCTGGTGTTCGGCAACCGGTTGGCGTTGTTGAGCTTGCTGGGGATGGGGTTGATCATCGTGGGGTTGCTGTTTGTGTTTCGTAAAAGTCGCTAG	MFSFSKNALLATASTSLFVLLWSSGAIFSKLGLAHASPFAFLLIRFAIALCALVLLIPMLKFKLPGTGKPMLYAAATGLVLLGAYQIFYLLALQLNVTPGVMATLMGVQPILTVVLMERQRSWQRMFGLALGLVGLVMVVYQGIGLAGMSLAGMLCGLLALVSMTAGSIMQKRITDNPLGTLPVQYLAGLVLCSVFVPFQPFHFERSAGFIVPVLWMGLVVSVLATLLLYRLIARGNLVNVTSLFYLVPAVTAIMDYLVFGNRLALLSLLGMGLIIVGLLFVFRKSR				NA	NA	NA	NA	NA
D1-36_03667	939			hypothetical protein	ATGACCGTTTCGTTTGTCGCGAAGGCTTCGGTATTGCTGCTGTTTTTGGGCAGCACGCTTTACGTGCATTTACGTGGCAAGGCGCGTTTGCCTGTCCTGCGCCAGTTCGTCAACCACTCGGCATTCTTCGCGCCCTATAACGCCCTGATGTACTTGTTCTCCAGCGTGCCGTCCAAGCCTTATCTGGATCGCAGCCAGTTCCCAGAGCTGGATGTGCTCAAGGAGAACTGGCAAGTGATCCGCGACGAAGCCATGCGCCTGTTCGACGAGGGTTATATTCGCGCCGCCGAGAAGAACAACGATGCCGGCTTCGGCTCTTTCTTCAAGAAGGGCTGGAAGCGCTTCTATCTCAAGTGGTATGACAAGCCGCTGCCCTCGGCGAAGCAGCTCTGCCCAAGGACCGTTGAGCTGGTCAATCGAATTCCCAACGTTCGGGGCGCGATGTTTGCCCTGCTGCCGGGCGACAGTCACCTGAACCCCCATCGCGATCCGTTCGCTGGGTCCCTGCGCTATCACCTCGGGTTGTCCACGCCCAACTCCGATGATTGCCGGATCTTCGTAGACGGACAAATCTACGCCTGGCGCGACGGTGAAGACGTCATGTTCGACGAAACCTACGTGCACTGGGTCAAGAACGAAACGCCGCAGACCCGCGTTATCCTGTTCTGCGATGTCGAGCGTCCACTTAAAAACCCGCTGATGACTCGTCTCAATCGCGCTATCAGTGCATTCCTTGGCCGCGCTACCGCGCCGCAGAACCTCGACGACGAACGCGTCGGCGGTATCAACCGGGCCTACGCCTGGAGCAAGTCGTTCAGTGACGGCATCAGCGGTAGGGTCAAGCAATTCAAGCGCAAGCACCCCAAGGCGTATCGGGTGATGCGGCCGGTGCTGGCCGTGGCTGTGCTGACGGCGCTCGGCTACTGGTTGTTTGTTTAA	MTVSFVAKASVLLLFLGSTLYVHLRGKARLPVLRQFVNHSAFFAPYNALMYLFSSVPSKPYLDRSQFPELDVLKENWQVIRDEAMRLFDEGYIRAAEKNNDAGFGSFFKKGWKRFYLKWYDKPLPSAKQLCPRTVELVNRIPNVRGAMFALLPGDSHLNPHRDPFAGSLRYHLGLSTPNSDDCRIFVDGQIYAWRDGEDVMFDETYVHWVKNETPQTRVILFCDVERPLKNPLMTRLNRAISAFLGRATAPQNLDDERVGGINRAYAWSKSFSDGISGRVKQFKRKHPKAYRVMRPVLAVAVLTALGYWLFV	PGPT0022350_62	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LIPID_A_METABOLISM,PGPT0022350-lpxO-K12979	NA	NA
D1-36_03668	975	cysK	COG0031	Cysteine synthase A	ATGAGTCGTATATACGCTGACAACGCCCATTCCATTGGCAATACGCCACTGGTGCAGATCAATCGCATCGCCCCGCGCGGCGTGACCATCCTGGCCAAGATCGAAGGGCGCAACCCGGGTTATTCGGTCAAGTGCCGGATAGGCGCGAACATGATCTGGGACGCCGAAAGCTCCGGCAAACTCAAGCCCGGCATGACCATCGTCGAACCGACTTCGGGCAACACCGGCATTGGCCTGGCATTCGTGGCCGCCGCCCGTGGCTATAAATTGATGCTGACCATGCCGGCGTCCATGAGCATCGAGCGGCGCAAGGTGCTCAAGGCCCTGGGGGCGGAACTGGTGCTCACCGAGCCGGCCAAGGGCATGAAAGGTGCCATCGAGAAAGCCGCCGAGATCATGGCCAGCGACCCCTCGAAATACTTCATGCCGCAGCAGTTCGAGAATCCGGCCAACCCGGCGATCCACGAGAAAACCACCGGCCCGGAAATCTGGAACGACACCGATGGCGCGGTGGACGTTCTGGTCGCGGGCGTCGGGACGGGCGGAACCATTACCGGTGTCTCGCGGTATATCAAGAATACGTGCGGCAAACCGATCCTGTCGGTGGCGGTAGAGCCCGAGGCTTCCCCGGTGATCACCCAGGTGATGGCGGGGCAGGAAATCAAGCCCAGCCCCCACAAGATCCAGGGTATCGGCGCGGGCTTCGTGCCGAAGAACCTCGATCTGTCGATCGTCGATCAGGTGGAGCGGGTGACCGATGACGAGTCCAAGGCCATGGCCCTGCGCTTGATGCAGGAAGAGGGAATTCTCTGCGGCATCTCTTGCGGCGCGGCGATGGCCGTGGCGGCACGCCTGGCGGAAAAGCCGGAAATGCAGGGCAAGACCATCGTGGTAATCCTGCCGGATTCGGGCGAACGATACCTGTCGAGCATGTTGTTCAGTGACTTGTTTACCGAGCAGGAGACCCAGCAGTAG	MSRIYADNAHSIGNTPLVQINRIAPRGVTILAKIEGRNPGYSVKCRIGANMIWDAESSGKLKPGMTIVEPTSGNTGIGLAFVAAARGYKLMLTMPASMSIERRKVLKALGAELVLTEPAKGMKGAIEKAAEIMASDPSKYFMPQQFENPANPAIHEKTTGPEIWNDTDGAVDVLVAGVGTGGTITGVSRYIKNTCGKPILSVAVEPEASPVITQVMAGQEIKPSPHKIQGIGAGFVPKNLDLSIVDQVERVTDDESKAMALRLMQEEGILCGISCGAAMAVAARLAEKPEMQGKTIVVILPDSGERYLSSMLFSDLFTEQETQQ	PGPT0002810_3392	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
D1-36_03669	1077			hypothetical protein	ATGAAGCGTCGATACAGCTGGCCACTGTGGGCCTTCGTCGCCATCGTTGCGCTGTTGGTGGCCCTGCATTTCGCATTGCCTTACCTGGTGCGCAACTACCTCAACGACAAACTGGCGGACATGGGTGATTACCGCGGCCAGGTCGTCGATGTCGACCTGGCCCTCTGGCGTGGAGCCTACCGGATCAATGGCTTGAAGATCGTCAAGGTCGACGGCAAGGTGCCGGTGCCATTCGTCGATGCTCCGGTGGTCGACCTGTCCGTGAGCTGGCACTCGCTGTGGTATGACCATGCGGTGGTGGCCGAAGTGGAATTTGCCCGTCCCGAAGTCAACTTCGTCGACGGCGGGGCCGACCGGCAAAACTCCCAGACCGGCCAGGGCACCAACTGGCGCGAGCAGTTGAGCAAACTGTTGCCTATCACCTTCAACGAAGTGCGCCTGCGGGATGGCAAGGTCACCTTTCGCAATTTCAACTCCAAGCCACCGGTCAACCTGCGGGCCACAGAGGTCAACGCCAGCTTCTATAACCTGACCAACGTGGTCGACACCGAAGGCAAGCGCGACGCCCGGTTCGAGGGCAAGGCCCTGGTGGCCGAACACGCGCCCCTGGAGGTGCAAGCGACCTTCGATCCCTTGAGCAATTTCGAGGACTTCGACTTCCGTCTGCGGGCCAGAAACATCGAGTTGAAACGCCTGAACGACTTTGCCGCGGCCTATGGGAAATTCGACTTCAATGCCGGTCACGGCGATCTGGTGGTCGAAGCCGAAGCTGACAATGCTCGGCTCAGCGGCTACATCAAGCCGCTGCTTCGCGACGTCGACGTGTTCGATTGGCAGCAGGACGTGGAGAACGAGAAAAAGAACATCTTCCGCTCGGTCTGGGAAGCCTTGGTCGGCACGGGCGAAACGGCCCTGAAAAATCAGAGCAAGAACCAGTTCGCCACGCGGGTGGAGCTGAGTGGCAACGTGCATCAGCAGAACATCAGTGCCTTCGAAGCCTTCCTGCAAATCCTGCGCAACGGTTTCGTACAGGCCTTCAATGCCCGGTACGAGCAACCGCCGCCTTCCAAAGATTAG	MKRRYSWPLWAFVAIVALLVALHFALPYLVRNYLNDKLADMGDYRGQVVDVDLALWRGAYRINGLKIVKVDGKVPVPFVDAPVVDLSVSWHSLWYDHAVVAEVEFARPEVNFVDGGADRQNSQTGQGTNWREQLSKLLPITFNEVRLRDGKVTFRNFNSKPPVNLRATEVNASFYNLTNVVDTEGKRDARFEGKALVAEHAPLEVQATFDPLSNFEDFDFRLRARNIELKRLNDFAAAYGKFDFNAGHGDLVVEAEADNARLSGYIKPLLRDVDVFDWQQDVENEKKNIFRSVWEALVGTGETALKNQSKNQFATRVELSGNVHQQNISAFEAFLQILRNGFVQAFNARYEQPPPSKD				NA	NA	NA	NA	NA
D1-36_03670	846			hypothetical protein	ATGAAGTTCGAAGGCACCAGCGCCTACGTGGCCACCGATGACCTGAAACTGGCCGTCAACGCCGCCATCACCCTGGAGCGGCCGCTGTTGGTCAAGGGCGAACCGGGCACTGGCAAGACCATGCTCGCCGAACAACTGGCGGAGTCCTTCGGCGCGCGCCTGATCACCTGGCACATCAAGTCCACCACCAAGGCCCACCAGGGCCTGTACGAGTACGATGCGGTCAGCCGCCTGCGGGACTCGCAGTTGGGCGTGGACAAGGTCCACGACGTGCGCAACTACTTGAAGAAGGGCAAGCTCTGGGAAGCCTTCGAGTCCGAAGAACGGGTGATCCTGCTGATCGACGAGATCGATAAGGCCGACATCGAGTTCCCCAACGACCTGCTGCAAGAGCTCGACAAGATGGAGTTCTACGTCTACGAGACCGACGAAACCATCAAGGCCAAGCAGCGCCCGATCATCATCATTACCTCCAACAACGAAAAGGAACTGCCGGACGCCTTCCTGCGTCGCTGCTTCTTCCACTACATCGCATTTCCCGACCGCGCCACCCTGCAGAAAATCGTCGACGTGCATTACCCGGATATCAAGAAGGACCTGGTCAGCGAAGCGCTGGACGTGTTTTTCGATGTGCGCAAAGTCCCGGGCCTGAAGAAAAAGCCTTCCACCTCCGAGTTGGTGGATTGGCTCAAGCTGCTGATGGCCGACAACATCGGCGAAGCGGTGCTGCGCGAGCGTGATCCGACCAAGGCCATTCCGCCGCTGGCCGGCGCCTTGGTCAAGAACGAACAGGACGTGCAATTGCTTGAGCGCCTGGCGTTCATGAGCCGTCGCGGCACTCGCTGA	MKFEGTSAYVATDDLKLAVNAAITLERPLLVKGEPGTGKTMLAEQLAESFGARLITWHIKSTTKAHQGLYEYDAVSRLRDSQLGVDKVHDVRNYLKKGKLWEAFESEERVILLIDEIDKADIEFPNDLLQELDKMEFYVYETDETIKAKQRPIIIITSNNEKELPDAFLRRCFFHYIAFPDRATLQKIVDVHYPDIKKDLVSEALDVFFDVRKVPGLKKKPSTSELVDWLKLLMADNIGEAVLRERDPTKAIPPLAGALVKNEQDVQLLERLAFMSRRGTR				NA	NA	NA	NA	NA
D1-36_03671	1179			hypothetical protein	ATGCTGCTTAACCTGTTCAATGAGATGCGCGCCGCCAAGGTGCCCGTGTCGGTGCGAGAACTGCTGGACCTGATCAACGCGCTGAAACAGCGGGTGATCTTTGCCGACATGGATGAGTTCTATTACCTGTCCCGGGCCATCCTGGTGAAGGACGAGCGGCATTTCGACAAGTTCGACCGGGCGTTCGCCGCGTATTTCAATGGCCTGGAGAAACTCGACGATCACCTCCAGGCGCTGATTCCCGAAGACTGGCTGCGCAAGGAATTCGAGCGCTCGTTGACCGACGAGGAACGGGCGCAGATCCAATCCCTGGGCGGCCTGGACAAGCTGATCGAAGAATTCAAGAAGCGCCTGGAAGAACAAAAGGAACGCCATGCCGGCGGCAACAAGTGGATCGGCACTGGCGGCACCAGCCCGTTCGGTTCCGGCGGCTTCAACCCCGAAGGCATTCGCGTCGGCGACGCCGGCAAGCGCCAGGGCAAGGCCGTCAAGGTCTGGGACCAGCGCGAATACAAGAACCTCGACGACCAGGTCGAACTGGGCACCCGCAACATCAAGATCGCCCTGCGCCGCCTGCGCAAGTTTGCCCGTCAGGGCGCGGCGGAAGAGCTGGACATCGACGGCACCATCGACCACACCGCCCGGGATGCCGGCCTGCTGAATATCCAGATGCGCCCGGAGCGACGCAACACCGTCAAGCTCCTGTTGCTGTTCGATATCGGCGGTTCGATGGACGCCCACGTGAAGATCTGCGAAGAGTTGTTCTCGGCCTGCAAGACCGAGTTCAAGCACCTGGAATACTTCTACTTCCATAACTTTGTGTATGAATCGGTTTGGAAGAACAACCTGCGCCGTACCTCGGAGCGCACGTCGACTCAGGATTTGTTGCACAAGTATGGCGCCGACTACAAAGTGATCTTCATCGGCGACGCCGCCATGGCGCCCTATGAAATCACTCAGGCCGGCGGCAGCGTCGAGCACTGGAACGAAGAAGCCGGTTACGTGTGGATGCAGCGCTTCATGGAGAAGTACAAGAAACTCATCTGGATCAATCCCTACCCCAAAGACACCTGGGGTTATACCGCCTCGACCAACATCGTGCGCGAGCTGGTGGAAGACCGGATGTATCCGCTGACCTTGCGGGGGCTGGAGGAAGGGATGCGGTTTCTTTCCAAGTAA	MLLNLFNEMRAAKVPVSVRELLDLINALKQRVIFADMDEFYYLSRAILVKDERHFDKFDRAFAAYFNGLEKLDDHLQALIPEDWLRKEFERSLTDEERAQIQSLGGLDKLIEEFKKRLEEQKERHAGGNKWIGTGGTSPFGSGGFNPEGIRVGDAGKRQGKAVKVWDQREYKNLDDQVELGTRNIKIALRRLRKFARQGAAEELDIDGTIDHTARDAGLLNIQMRPERRNTVKLLLLFDIGGSMDAHVKICEELFSACKTEFKHLEYFYFHNFVYESVWKNNLRRTSERTSTQDLLHKYGADYKVIFIGDAAMAPYEITQAGGSVEHWNEEAGYVWMQRFMEKYKKLIWINPYPKDTWGYTASTNIVRELVEDRMYPLTLRGLEEGMRFLSK				NA	NA	NA	NA	NA
D1-36_03672	921	pxpC	COG1984	5-oxoprolinase subunit C	ATGAGCCGGTTGTTGATCGAGGCCAGCACGCCGCTGTGCCTGTTGCAGGACACCGGCCGCTTCGGCGTGAGGCACTTGGGCGTGACCCAGGGCGGCGCGGCGGATTGGTTGTCGATGGCGTGGGCCAACTGGATGCTCGGCAATGATCTCGACGCGGCGGTGGTGGAGGTTACCCTCGGCGGCTTCACCGTGGTGGCTGAAGAGGATTGTGTGCTGGCCCTGGCCGGAGCGGACCTGGGTGCGCGGATAGACGGCCAGGGCGTGGCGTCGTGGCGCTTTTTCAGCTTGCGCAAGGGCCAGGTGCTGGCGCTGACCCAGCCCGTGCTCGGTGCCCGGGCCTACCTGGCGGCGCCTGGCGGGTTCGATGCACCGCAAGTCCTGGGCAGCCGTTCGACCGTCGTGCGCGAAGAACTCGGTGGCCTGGATGGGCGAGGGCGGGCCCTGAATCGTGGGGCGCGCTTGAGCTATTCAGGCTCGGCGACGCCTCGGCCCATGCCGCATACGCGGATTCCGGATTTCCAGCAGGTACAGCCGCTGGATCTGATCCTGGGTGCGCAGAATGGCGAGTTCAGCGGACGGAGCCTGTTCGATGCGTTCAACAGCCCGTGGACGCTGGACAGTCGCGCCGACCGCATGGGCATGCGTTTGCTGGGGACTGCGCTGGAGTATCAGGGGCCGGCGATGATCTCGGAGGGCATTCCCCTCGGTGCCGTGCAGGTACCGCCGGACGGCCAGCCGATCGTGTTGCTCAATGATCGGCAAACCATCGGCGGTTACCCACGCCTGGGTGCGTTGACGCCGCTGTCCCTGGCACGGTTGGCGCAATGCCTGCCGGGAACTCAGGTGCGGTTGCGTCCGGTGGTGCAGGCGGTTGCGCATCGGCAGCAGGTGGAGTGTATGCGGGCGCTGTTAAACCGCTAA	MSRLLIEASTPLCLLQDTGRFGVRHLGVTQGGAADWLSMAWANWMLGNDLDAAVVEVTLGGFTVVAEEDCVLALAGADLGARIDGQGVASWRFFSLRKGQVLALTQPVLGARAYLAAPGGFDAPQVLGSRSTVVREELGGLDGRGRALNRGARLSYSGSATPRPMPHTRIPDFQQVQPLDLILGAQNGEFSGRSLFDAFNSPWTLDSRADRMGMRLLGTALEYQGPAMISEGIPLGAVQVPPDGQPIVLLNDRQTIGGYPRLGALTPLSLARLAQCLPGTQVRLRPVVQAVAHRQQVECMRALLNR				NA	NA	NA	NA	NA
D1-36_03673	705	pxpB	COG2049	5-oxoprolinase subunit B	ATGAAACCACGCTTGGAAGTGGTGGCGGTGGACTGCCTGATGGTGCGCCTGTTCGACGAAATCGCAGAGGCCAACATGCCTTGGATGCTGGCCGCCAGCGAGCGCCTGCGAGCGGTGTTTGCCGAGCGTTTGATCGACCTGGTGCCGTCCTATACCACGTTGATGGTCCATTACGATTTGCTCGTCCTGAACCCGGTCCAGGCCCGCGAATTGATCAGCGAGGCATTGCATAACCTTTCACCGGACGCCCGATCCGCCGGTCAATGCCACGTGCTGCCGGTGTGGTACGACGCTACCGTCGGGCCGGAGTTGGGCCTGCTGGCGAGTCGCAGTGGGCTGACGGTGGAGCAGGTGATCCGGCGCCACAGCGAGCGCGAATACCAGGTATTTGCCCTGGGCTTCGCACCGGGGTTCGCCTTCATGGGGCTGGTGGACGAAGCATTGGCCGCCCCGCGCCTCGACACGCCGCGCAAACGGGTCGCGGCGGGCAGTGTCGGCATTGCCGAACGGCAGACCGCAGCGTATCCGGCGGTGTCGCCCGGCGGCTGGAACCTGATCGGGCGCACCCCGGCCAGACTGTTTGATCGTGAGCGCGACGGCTACAGCCTGATGCAGCCGGGGGACACGGTGCGTTTCGCTGCCGTGGACCACGCCGAATTCATCGCCCTGGGTGGCGACGACACACCGTTGGAGGCCCAGGCATGA	MKPRLEVVAVDCLMVRLFDEIAEANMPWMLAASERLRAVFAERLIDLVPSYTTLMVHYDLLVLNPVQARELISEALHNLSPDARSAGQCHVLPVWYDATVGPELGLLASRSGLTVEQVIRRHSEREYQVFALGFAPGFAFMGLVDEALAAPRLDTPRKRVAAGSVGIAERQTAAYPAVSPGGWNLIGRTPARLFDRERDGYSLMQPGDTVRFAAVDHAEFIALGGDDTPLEAQA				NA	NA	NA	NA	NA
D1-36_03674	753	pxpA3	COG1540	5-oxoprolinase subunit A 3	GTGAACCGCCTGCTATTGAATTGTGACATAGGCGAAAGTTTCGGCAGCTGGACCATGGGTCTGGATGCCGAGGTGATGCCCTTCATCGATTGCGCCAACATCGCCTGCGGTTTCCATGCCGGCGACCCGAGCATCATGCGCAAGACCGTCGGCCTGGCCCTGAGCCACGACGTGCGCATAGGCGCCCACCCGGCCTATCAGGACCTGGCGGGCTTCGGCCGGCGTTCCATGGCTTATGGCCCCCAGGAACTGCAGGACTTGCTGCATTATCAGATCGGCGCGCTGGACGGCATTTGCCGGGCCCAGGGCGGGCAGGTCAGCTACGTCAAGCCCCACGGCGCGATGTACAACGACATGATGGCCAGCCCGGCGCAACTGCGCGCCGTCATCCAGGCCGTTGCCGCTTATGATCGCGGGTTGCCGTTGATGCTCATGGCGACCCGGGACAACAGCGCCGCCCAGGCCCTGGGCGATGAGTATGGCCTGACGCTGTGGTTCGAAGCCTTCGCCGATCGTGCTTATGACAGTGCCGGCCGCCTGGTTTCGCGGCAAACGCCGGGCGCGGTGCATCACGACCCCGAGGTCATCATCGCGCAGGCCCTGACAATTGCTCGCGGCGATCCGTTGACGGCCAGCGATGGCAGCGCCCTGAACCTGCACGCCACTACGTTGTGCGTACATGGCGACAACGCCAGTTCGGTAGCCGCTGTGCAACGCATCCGCGAAGCCCTGGATCGGCAGAGTGCGCCATGA	MNRLLLNCDIGESFGSWTMGLDAEVMPFIDCANIACGFHAGDPSIMRKTVGLALSHDVRIGAHPAYQDLAGFGRRSMAYGPQELQDLLHYQIGALDGICRAQGGQVSYVKPHGAMYNDMMASPAQLRAVIQAVAAYDRGLPLMLMATRDNSAAQALGDEYGLTLWFEAFADRAYDSAGRLVSRQTPGAVHHDPEVIIAQALTIARGDPLTASDGSALNLHATTLCVHGDNASSVAAVQRIREALDRQSAP				NA	NA	NA	NA	NA
D1-36_03675	1287	yjhB		Putative metabolite transport protein YjhB	ATGAGTGCACCCGACACGCTCGGCGTCCCCCAACCCCAGGCCCGGTCCGGCCCGTTCGATTGGTATCGCAACATCAACCAGCAGGAACGGCGCACCTTCTGGAGCTGCAAGATCGGTTACGCCCTGGACGGCATGGACACGCAAATGCTCAGTTTCGTGGTGCCGACCCTGATCGCGATGTGGGGCATCACCACCGGGCAGGCAGGCCTGATCCACACCAGCACCTTGATCGCCTCCGCCATTGGCGGCTGGGTGGCGGGCATTCTCTCTGACCGCATCGGCCGGGTCCGTACCCTGCAACTGACGGTGCTGTGGTTCGCATTCTTCACTTTTCTGTGCGGCTTTGCCCAAAACTACGAACAACTGTTGATCGCCCGCACGCTGATGGGCTTCGGTTTCGGCGGCGAGTGGACCGCCGGCGCGGTGTTGATGGGCGAAGTTATTCGCGCCAAGGACCGCGGTAAAGCGGTGGGCATGGTGCAATCGGGCTGGGCGCTGGGTTGGGGCATGACGGCGATCCTGTATGCGCTGCTGTTTTCGGTGCTGCCGCCGGAAGACGCCTGGCGCGCATTGTTCATTCTCGGCATCGTGCCCGCCGTGTTCGTGATTTTCGTCCGCCGGTTGGTCAAGGATCCGGAAGTCTATAACCAGACCAAGGCCCGCCTGACGCCGGAAAACCCAGCGAAGTTCTACGAGATTTTCGCCCCCGGCATTCTCTTCACCACGATACGAGCCTCGTTGCTGACCACCGGCGCGCTGGGTGGTTACTACGCGATCACGTCCTGGCTGCCGACTTTTCTCAAGAACGAACGTGGCCTGAGCGTCCTGGGCACCGGTGGCTATCTGGCCATGGTGATCGTCGGCTCCTACGTGGGTTACGTCATCAGTGCGTACCTGTCGGACATCCTGGGACGAAAGAAGAATTTCGTCCTGTATGCCGTAGGCTCGTTCACCATCGTCTTGCTGTACACCCAGGTGCCGGTGAGCAATAACGTGATGCTCTGGCTGGGCTTTCCCCTGGGCTTTTTCGCATCGGGTATGTTCAGTGGCATGGGCTCGTTTCTCACCGAGCTGTTTCCCACGCGCATCCGGGGTTCTGGCCAGGGTTTCTGCTACAACATTGGCAGGGCGGTGGCGGCACTGTTTCCGCTGCTGATCGGTATCTTGAGCCAGAAGGTGCCGTTGAGTGTTGGCATTGGTGCGTTTGCCGCAGTGTCCTACGGCGTGGTGATCCTGGCGGCCCTGAGCCTGCCGGAAACCCAAGGCAAGCAGCTGGAAGCCGAGTAA	MSAPDTLGVPQPQARSGPFDWYRNINQQERRTFWSCKIGYALDGMDTQMLSFVVPTLIAMWGITTGQAGLIHTSTLIASAIGGWVAGILSDRIGRVRTLQLTVLWFAFFTFLCGFAQNYEQLLIARTLMGFGFGGEWTAGAVLMGEVIRAKDRGKAVGMVQSGWALGWGMTAILYALLFSVLPPEDAWRALFILGIVPAVFVIFVRRLVKDPEVYNQTKARLTPENPAKFYEIFAPGILFTTIRASLLTTGALGGYYAITSWLPTFLKNERGLSVLGTGGYLAMVIVGSYVGYVISAYLSDILGRKKNFVLYAVGSFTIVLLYTQVPVSNNVMLWLGFPLGFFASGMFSGMGSFLTELFPTRIRGSGQGFCYNIGRAVAALFPLLIGILSQKVPLSVGIGAFAAVSYGVVILAALSLPETQGKQLEAE				NA	NA	NA	NA	NA
D1-36_03676	543			hypothetical protein	ATGTTGCTCAGTTATCTACGGCTGGTGTTGTTCGCGGTGGGCCTGTTGGTGGGGGTCCAGGTTCCGGGGTTCATCAATGACTACGCCAAGCGGGTCGAGGCTCACCTGATCGAGGCGCAGACTGGCCTGCAAGGTTTCCAGGGCACCGCCAATCAATTCTTCAAAGGCGACATGCAGGCCCTCGTGGCCCATTACCGCGCCAGCGAAGACCCGATCTTTCGCAGCGATGCCGACAGCCTGAACACCTTGCTCGTGCGCCAGCAGGCCCTGGACAAGCAATTCCAGGCGATGCAAGGCCCGTGGTACATCCGCCTGCTGCAAGTGGCGCTGGCCGCCGATCCGGACATCCGCAAGGAAACATGGAACGGCTACAGCTACCAGATCCTGCTGACCCCCGAGGCGATGATCTGGGGCATCAGCGGCGCGATGTTGCTGTCGTTCGGCCTGGAATGCCTGTTCCGCCTGATCGACTGGGTGGTGCTGGGCGGCAAGCGCTTGCGCCAGAGCCGGCCGATCGAAGAGCGTGACCTGCGCGGGCTCTAG	MLLSYLRLVLFAVGLLVGVQVPGFINDYAKRVEAHLIEAQTGLQGFQGTANQFFKGDMQALVAHYRASEDPIFRSDADSLNTLLVRQQALDKQFQAMQGPWYIRLLQVALAADPDIRKETWNGYSYQILLTPEAMIWGISGAMLLSFGLECLFRLIDWVVLGGKRLRQSRPIEERDLRGL				NA	NA	NA	NA	NA
D1-36_03677	777	yafJ	COG0121	Putative glutamine amidotransferase YafJ	ATGTGTGAGTTATTGGGCATGAGCGCGAATGTGCCGACCGACATCGTGTTCAGCTTCACTGGGCTGATGCAGCGCGGCGGCAAGACCGGGCCGCACCGCGACGGCTGGGGCATCGCCTTTTACGAGGGCCGTGGCCTGCGCCTGTTCCAGGACCCGGCCGCGAGCAGCGAGTCTGAAGTGGCGAACCTGGTGCAGCGTTATCCGATCAAGAGCGAAGTGGTGATCGGGCATATCCGCCAGGCCAACGTCGGCAAGGTCTGCCTGTCCAATACGCACCCGTTCGTGCGGGAGTTATGGGGACGCAACTGGTGTTTCGCCCACAACGGCCAGCTCGCTGATTTCCAGCCGGGCGCAAGCTTCTACCGTCCGGTGGGTGATACCGACAGCGAAGCGGCGTTCTGCGACCTGCTTAACCGCGTGCGCCAGGCGTTTCCCGAGCCAGTGGACGTGGAACACTTGCTGCCGTCGTTGATCGAGGCCTGTACCGAATACCGCAGCAAAGGCGTGTTCAACTGCTTGCTCAGCGATGGCGACTGGCTGTTCTGCTATTGCTCGACCAAACTGGCGCAGATAACCCGTCGCGCGCCGTTCGGCCCGGCGCGGCTCAAGGACGTGGACGTGATTGTCGATTTCCAGGCGGAAACCACCCCCAACGACGTGGTCACGGTGATCGCTACCGAACCCTTGACCGAAAACGAAACCTGGACCCGCTACGAGCCGGGCCAATGGAGCCTGTGGCGGCGCGGCGAATGCGTCAGCCACGGCCGGACCGAATAA	MCELLGMSANVPTDIVFSFTGLMQRGGKTGPHRDGWGIAFYEGRGLRLFQDPAASSESEVANLVQRYPIKSEVVIGHIRQANVGKVCLSNTHPFVRELWGRNWCFAHNGQLADFQPGASFYRPVGDTDSEAAFCDLLNRVRQAFPEPVDVEHLLPSLIEACTEYRSKGVFNCLLSDGDWLFCYCSTKLAQITRRAPFGPARLKDVDVIVDFQAETTPNDVVTVIATEPLTENETWTRYEPGQWSLWRRGECVSHGRTE				NA	NA	NA	NA	NA
D1-36_03678	495			hypothetical protein	ATGGACACCATGACCGAGAACGACTATCTGATTGCCTGGGGCCTGTACGCCTTTGCCGCCGTGGGCTGCCTCCTGGTTTGGATGCGCATGACCCGCTTCATGTGGCGCTGGTTGCGCGAGCCGCTGCGGCTGCTGATGGCGGTGTTGCTGTTCAGCCCCACCATCGTCGACCCGGTGAAGGAAAAAGTCGCGCCGGCCTTGGCCATCGTCGCCCTGGACGTATTGTTCAAGGTCGGCAACAACGTATGGCGCGCAGCGTCCGACCTGCTTATGTACGGCATGGTCGCGTTCGGCCTTTATCTGATTTTCGTGCTGATCCGCTTCCCCATCGAACGCGCTGCCAACGCTCGCAGGGAACGGGCCGCCGCCGCTAAAGCCGCCGCCGCTGCCGAGCCTGACGACGAGCCGCCGTTCGGCGTGGCCGGTGACGACCGTTACGGTCGCCCACCCGTGCCGAGCAACCCCCAGCGTTCGCGTATCGAACCGCGCCTGTAA	MDTMTENDYLIAWGLYAFAAVGCLLVWMRMTRFMWRWLREPLRLLMAVLLFSPTIVDPVKEKVAPALAIVALDVLFKVGNNVWRAASDLLMYGMVAFGLYLIFVLIRFPIERAANARRERAAAAKAAAAAEPDDEPPFGVAGDDRYGRPPVPSNPQRSRIEPRL				NA	NA	NA	NA	NA
D1-36_03679	2055	dapb1		Dipeptidyl aminopeptidase BI	ATGCCCCGATCTGCCCACGTTACCGATGCCCCGATTGCCCGCAAGGCCCCTGGTATCGACCCGTATGCCTGGCTGCAAGACCGCGACACCGACGCCGTGCTCGATTACCTAAAGGCTGAAAACAGCTACCAGGAGGCCCTGCTTGCCGACCAGGCTGAACTGCGCGAAACGCTGTTCCAGGAAATCAAGGGACGGATCCTCGAAACCGACCTGTCCCTGCCCTCGCCCTGGGGTCCCTACCTGTATTACACCCGCACCACGGCGGGCGACGAATACCCGCGCCACTACCGCTGCCCGCGTCCGGCCGACGACAGCCTGACCGTGGATGAAAGCCATGAACAGCTGTTGCTGGACCCGAACGCCCTGGCCGGGGGCGGATTCTTTGCCCTGGGCGCGTTCAGCATCAGCCCCGATCACCAACGCTTGGCCTACAGCCTGGATACCACGGGTGATGAGATCTACACGCTGTTCGTGAAGGAATTGTCCAACGACAGGGTCAGCGAACTGTCCTTCGAAAACTGTGATGGCAGCATGACCTGGGCCAACGACAGCCTGACGCTGTTCTTTGGCGAACTGGACGACACCCATCGCCCGCATAAGCTGTTTCGTTATCGTTTGGACGGCACCGCCGCCGAAGAGGTCTTCCATGAGCCGGACGGGCGGTTTTTCCTGCATTGCTACCGCTCCAGCTCGGAAAAACAGTTAATCCTGTCCCTGAGCAGCAAGACCACGAGTGAAGTCTGGGTGCTCGACGCGGCGCAGCCGCAACAACCGTTTACCTGCGTGGCGCCACGGGTGGAAAACCATGAGTACGACGTCGACCACGGCTTGCTCGATGATCGTTGGACCTGGTTTATCCGCAGCAACCGTGACGGCATCAACTTCGCGCTGTACGAGGCCGTCGACACGGGCGAGGCGCCGACCGAGGCCGACTGGCAGAACCTGATCCCCCACAGCGACACGGTGATGATCGACGGCCTAAGCCTGAACGCCATGGCCATGACCTTGAGCTTGCGCGAAGGCGGCCTGCCGATCATCGAAGTTCACCCACAGGGATCGCCGACATATCGGGTGCAACTTCCAGACGCGGCCTACAGCCTGCACGTACAGAACAGCCTGGAATTCGTCAGTGAGCGCATCCGCCTGCGCTACGAGGCACTGAATCGCCCGGCCCAGATCCGCCAGTTGGACCTGGCCAGCGGCAACCAGGTCGTGCTCAAGCAAACCCCGGTATTGGGTCCGTTCGATGCCGACGCCTATGTCAGCCAACGGCTTTGGGCCACGGCACCGGACGGCACGCAAGTGCCCATCAGCCTGGTGGTCAAGCGCGAGGCCCTGGGTCGGCCAGTGCCGCTGTATCTGTATGGCTACGGCGCCTATGGCGAAAGCCTCGACCCGTGGTTTTCCCATTCACGGTTGAGCCTGCTGGACCGCGGCGTGGCGTTTGCCATCGCCCATGTGCGCGGTGGCGGTGAACTGGGCGAAGCCTGGTATCGCGCCGGCAAGCAAGAGCACAAGCACAACACCTTCAGCGACTTCATCGCCTGCGCCGAACACCTGATCGCCAATGGCTTCACCACCGCCGGCCAGTTGGCGATCAGCGGCGGCAGCGCCGGTGGGCTATTGATCGGCGCGGTGCTCAACCAGCGCCCGGAGCTGTTCAAGGTCGCGATCGCCGAAGTGCCGTTTGTCGATGTTCTCAACACCATGCTCGATCCCGAGTTGCCATTGACGGTGACCGAATACGACGAATGGGGTAATCCCGAGGAGCCGCAGGTCTATGATCGGATCAGGGCCTACGCCCCGTACGAAAACGTCCGCGCCCAGGAATATCCGGCGATGCTGGTGATCGCTGGCTACAACGACAGCCGCGTGCAGTACTGGGAAGCGGCCAAGTGGGTCGCGAAGCTGCGGGCCACCAAGACCGACGACAACCTGCTGCTGCTCAAGACCGAACTGGGCGCCGGCCATGGCGGCATGAGCGGTCGCTACCAGGGATTGCGTGACGTAGCGCTCGAATATGCGTTTGTGTTGAAGGTTTTGGGAGTGGCCTGA	MPRSAHVTDAPIARKAPGIDPYAWLQDRDTDAVLDYLKAENSYQEALLADQAELRETLFQEIKGRILETDLSLPSPWGPYLYYTRTTAGDEYPRHYRCPRPADDSLTVDESHEQLLLDPNALAGGGFFALGAFSISPDHQRLAYSLDTTGDEIYTLFVKELSNDRVSELSFENCDGSMTWANDSLTLFFGELDDTHRPHKLFRYRLDGTAAEEVFHEPDGRFFLHCYRSSSEKQLILSLSSKTTSEVWVLDAAQPQQPFTCVAPRVENHEYDVDHGLLDDRWTWFIRSNRDGINFALYEAVDTGEAPTEADWQNLIPHSDTVMIDGLSLNAMAMTLSLREGGLPIIEVHPQGSPTYRVQLPDAAYSLHVQNSLEFVSERIRLRYEALNRPAQIRQLDLASGNQVVLKQTPVLGPFDADAYVSQRLWATAPDGTQVPISLVVKREALGRPVPLYLYGYGAYGESLDPWFSHSRLSLLDRGVAFAIAHVRGGGELGEAWYRAGKQEHKHNTFSDFIACAEHLIANGFTTAGQLAISGGSAGGLLIGAVLNQRPELFKVAIAEVPFVDVLNTMLDPELPLTVTEYDEWGNPEEPQVYDRIRAYAPYENVRAQEYPAMLVIAGYNDSRVQYWEAAKWVAKLRATKTDDNLLLLKTELGAGHGGMSGRYQGLRDVALEYAFVLKVLGVA	PGPT0020980_1965	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
D1-36_03680	474			hypothetical protein	ATGTCAGAACCGACCTTACTGAACAACCAAATCCGCGATTGGCTGATGGACTGCGGTCTGTTCGACCAACTGCTGCCCGTCGACTTCGCCGCCGCATCGGGTTACTTCAGCATCAGCACCGTCGCCGAGGGCGAGGCGATTTTTCGCGAGGGCGATGCCGGCAGTTTCATGTGCATCCTTCATACAGGGCAGGTGGCCGTGCAGAAAACCGGCCCCGACGGCCAACCCGTGACCATTGCCACACTGCGCAGCGGCAGGGCGTTCGGCGAAATGGCCGTGCTCGACGGCGAACGGCGCTCGGCCAGCTGCATCGCGGCCACTCACTGCCAATTGCTGAACCTGGGGAAGGACTCATTGGAAAAAATGCTCAACGACGCACCGAAGGTCGCCGCCAAGATCATCCGCGCCCTCGCCGTCTCCCTCTCCAAGCGTCTGCGCATGGCGGATGGACAGCTGCTGTCGCAGCAGGTCTAG	MSEPTLLNNQIRDWLMDCGLFDQLLPVDFAAASGYFSISTVAEGEAIFREGDAGSFMCILHTGQVAVQKTGPDGQPVTIATLRSGRAFGEMAVLDGERRSASCIAATHCQLLNLGKDSLEKMLNDAPKVAAKIIRALAVSLSKRLRMADGQLLSQQV	PGPT0015075_5300	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
D1-36_03681	1098	speE_3		Polyamine aminopropyltransferase	GTGGGAGCGAGCAAGCTCGCTCCCACAGGGGATGGCGTCGTATTCGCAATCTACCCCCCCGGTGACTTGGCCTTCTCCGGCTTCGGCTCCATACCCGGTATCGGCTGGTCCTTGGGCGGCCTGGGCATTTCGATGGGCGGCAACAGGGGCGGGCCGTTTCCTGGCGCCACCTTTGGGACGCCGCTGGGCGTAACCGGCGGATACGGCACGGGCGTGGCGGTGCCGGGAGAGCCGGGAATGCTCGGCGGCGCGACCGGAATCGTCGGTTGTTGGGCCTGGGCGCAACTTATCGAGAGCGTCACCAGCGCAATGGCCGTTAGAATGATGCACTTCATCAATGGCTCCGTGGCTATTGTCTGCTTTCAGGCTAGCCCCTGCCGGGCCGGTCTGCTTCTTCTCCATGAGATTTCCATGAAACGTTTTGTTCTGCTCGACACCACGCCTATCCCCGACAACGGCGGCGCCTTGTGCCTGTTCGAGTATGGCGAGGACTTCGTCATCAAGATCCAGGGCGGCGACGGCGGGCAACTGATGAACACCCGCATGCACGGTTCCGAAGACGCCTTGGCCGAGATCCCCTGCCGCAAGGTCGCCGGTCGCCCCGGCTCGCGCGTGCTGATCGGCGGGCTTGGCATGGGCTTTACCCTCGCCTCGGCCCTCAAGCATTTGGGCAAGAGCGCTGAAGTGGTGGTGGCTGAACTGGTGCCAGGCGTGGTGGAGTGGAATCGTGGCCCCTTGGGCGAAAAAGCCGGGCGACCGCTGTCGGACCCACGCACGGTGATCCGCCTGGAGGACGTTGCCAAGGTGTTGCAAGCCGAACCTCAGGGGTTCGACGCGATCATGCTGGATGTCGACAACGGCCCCGAAGGCCTGACCCAGAAAGCCAATAGCTGGCTGTATTCGGCCGGTGGCCTGGCCGCCTGCGCCAAGGCCCTGCGGCCCAAGGGCGTACTGGCCGTATGGTCGGCCAGCGCCGACCGGCAGTTTTCCGACAAGCTGAAGAAGGCCGGTTTCAAGGCTGAAGAGGTGCAGGTGTTCGCCCATGGCAACAAAGGCACCCGCCACACCATCTGGATTGCCGAGAAGCTCAAGGGCTGA	MGASKLAPTGDGVVFAIYPPGDLAFSGFGSIPGIGWSLGGLGISMGGNRGGPFPGATFGTPLGVTGGYGTGVAVPGEPGMLGGATGIVGCWAWAQLIESVTSAMAVRMMHFINGSVAIVCFQASPCRAGLLLLHEISMKRFVLLDTTPIPDNGGALCLFEYGEDFVIKIQGGDGGQLMNTRMHGSEDALAEIPCRKVAGRPGSRVLIGGLGMGFTLASALKHLGKSAEVVVAELVPGVVEWNRGPLGEKAGRPLSDPRTVIRLEDVAKVLQAEPQGFDAIMLDVDNGPEGLTQKANSWLYSAGGLAACAKALRPKGVLAVWSASADRQFSDKLKKAGFKAEEVQVFAHGNKGTRHTIWIAEKLKG				NA	NA	NA	NA	NA
D1-36_03682	375			hypothetical protein	ATGAGTTCGTCCACCCCGCCGTCCAACACTGCCAAGCTGGACCGTATCCTCGCCGACGCCCAGCGCGACCGGGAGATGGGCTACCGCGACAAAGCCCTGAAAATGTACCCCCACGTCTGCGGCCGCTGCGCCCGTGAATTTTCCGGCAAGCGCCTGAGCGAACTGACCGTTCACCACCGCGACCACAACCACGACAACAACCCGCAGGACGGTTCCAACTGGGAACTGCTGTGCTTGTATTGCCACGACAACGAGCACTCGCGCTACACCGACCAGCAGTATTTCGGCGACGGCTCCCTGAGTACGCCGAAGACTGCCAAGGCGACCCACAACCCCTTCGCCGCGTTGGCGGGGTTGATGAAAAAAGACGAGTGA	MSSSTPPSNTAKLDRILADAQRDREMGYRDKALKMYPHVCGRCAREFSGKRLSELTVHHRDHNHDNNPQDGSNWELLCLYCHDNEHSRYTDQQYFGDGSLSTPKTAKATHNPFAALAGLMKKDE				NA	NA	NA	NA	NA
D1-36_03683	471			hypothetical protein	GTGGCCAACAAACGCTACAGCTGCATCGGTCTGTTCAACCCCAAGTCACCGGAAAACGTCGGTTCGGTCATGCGCGCCGCCGGCTGCTACGGCGTGGCATCGGTGTTCTACACCGGCAAACGCTATGAACGCGCGGCCGACTTTGTCACCGACACCAAGAAAGTCCACTACGACATCCCGCTGATCGGCATCGACGACTTGAAAAAGATCCTGCCCCTGGGCTGCGTGCCGGTGGCCGTCGAACTGGTGGAAGGCGCCCGTCCGTTGCCCGAATACACCCATCCGGACCGCGCCTTGTATATCTTCGGCCCGGAAGACGGCTCGCTGGACAAAGACATCCGCGACTGGTGCGAAGACGTGATCTACATCCCCACTCATGGCTGCATGAACCTGGCGGCCACGGTCAACGTCGTGCTGTACGACCGGATGGCCAAAGGCAACAACACGCGCTCGGGACCGCAATTCCGCTGA	MANKRYSCIGLFNPKSPENVGSVMRAAGCYGVASVFYTGKRYERAADFVTDTKKVHYDIPLIGIDDLKKILPLGCVPVAVELVEGARPLPEYTHPDRALYIFGPEDGSLDKDIRDWCEDVIYIPTHGCMNLAATVNVVLYDRMAKGNNTRSGPQFR				NA	NA	NA	NA	NA
D1-36_03684	378			hypothetical protein	ATGAGCGATAACAATCCGTTCGGGCCGGTTGAAACCACCCCCTTCCAATCCCACAGCCCCCAGAACGTTCACGGCTGGGAGCGCATTGGTTCATTGGCCGGCGGGGTGCTGATGATGGGCAAGGGTCTGCGTCGCGGCGGGGTGATCGGCCTGGCGCAACTGGCAATCGGTGGCATGGCCCTGGCGCGCGGCATCACCGGGCATTGTTCGGCCAAGAGCATGCTGGAAAGAAATCGTCAGCATCTGCATGACGCCCGCGCCCGCATCGAACAGGCCGGCGACGAACTGAGCCGCATGAAGGCCAATGCCGAGGCGGCGACTGGCACGGCTACCGTGACCGGGAATGATTCGTTGGTTTCGCCAAAGGCTGGGCTCTGA	MSDNNPFGPVETTPFQSHSPQNVHGWERIGSLAGGVLMMGKGLRRGGVIGLAQLAIGGMALARGITGHCSAKSMLERNRQHLHDARARIEQAGDELSRMKANAEAATGTATVTGNDSLVSPKAGL				NA	NA	NA	NA	NA
D1-36_03685	1230			hypothetical protein	ATGGCTTCAGGATTGAGACAGACACTGGCGGCGGGGCTGCTGGCGGTGTGCGGGCCGCTGTGGGCGGCGCAGAAAGTCGATCTGGATTATCAGGTGCATTTGTTGCCGCAGAGCGACCAGGCTGAAGTGCGCCTGACCCTCGCGCGGGGCTCGGCGGTGCGCAGCCTGGATTTTGACCTCGGCGATGATGGCCGCTACAGCGATTTCAAGGCGGACGGCCAATGGCAGCTCACATCCGGCAAGGCGTCGCGAGGCGTCTGGCGTCCCGCTGCTGACAAGGCGAGCCTGACTTACCGCGTACGCATCAGCGAGTCGCGCAAGAACGGCTCTTTCGAAACCCGCATGACCCCTGGCTGGGCGCTGCTGCGCGGCGACGCCCTGGTGCCGCCGGCGAAGCTGGACCAGCAGGACGGCGTTGAGCTGGTGTCGCGCCTGGCGTTCGAGTTGCCGGGCGGCTGGCAAAGCATCGAGACGGCCTGGCCGCGTATCGGCAAGCAACGCTTTCGTATCGATAATCCATCTCGCCTCTTCGATCGCCCCACCGGTTGGATGCTTGCCGGCAAGCTCGGCAGTCGCCGCACGCGCCTGGGCGAGACCGACGTGACGGTGACTTCGCCCAAGGGCCAGGGCATGCGCAGGATGGACGTACTGACACTGCTGACGTTTGTCTGGCCGCAGGTCCAGGCGGTGGTGCCGCGTCATCCCGGCAAGTTGCTGATTGTCGGCGCTGGCGATCCGTTGTGGCGTGGCGCCCAGGCCGGCCGCGAATCGATTTATCTGCATAGCCGCCCACCGTTGGTCAGCGAGCGAGGCAGCAGCCCTTTGCTGCGCGAGTTGATGCAGGTGCTGGCGCGTATCAACGATCATGATCGCAGCGACTGGATCAGCGAAGGGTTCAATGAATACTACGCCATCGAATTGCTGCGCCGAGCCGGAGGCATGAGCGATGAGCGTTATCAGGCCCTGAACGATCGGCTCGCCCGGGACAGCAAGGGCGTCACCACGCTGCGCGGCGAGCAGATGAGCCCCGCGATGGTGTCCAGGGCGGTGCTGTTGTTACAGGAGCTGGACCGGGAGATTCGCCTGAAGACGCGCAACAAGCGCTCGCTCGATGATGTGCTGCAGGCGGCGATGCGCCTGGAAACGGTCGACACCGAGGAATTTGTGCAGCTCAGCGAGAGCATTCTGGGTGGTGGTTCAACTGTTCTGGATACCCGGTTACTTCAGTAA	MASGLRQTLAAGLLAVCGPLWAAQKVDLDYQVHLLPQSDQAEVRLTLARGSAVRSLDFDLGDDGRYSDFKADGQWQLTSGKASRGVWRPAADKASLTYRVRISESRKNGSFETRMTPGWALLRGDALVPPAKLDQQDGVELVSRLAFELPGGWQSIETAWPRIGKQRFRIDNPSRLFDRPTGWMLAGKLGSRRTRLGETDVTVTSPKGQGMRRMDVLTLLTFVWPQVQAVVPRHPGKLLIVGAGDPLWRGAQAGRESIYLHSRPPLVSERGSSPLLRELMQVLARINDHDRSDWISEGFNEYYAIELLRRAGGMSDERYQALNDRLARDSKGVTTLRGEQMSPAMVSRAVLLLQELDREIRLKTRNKRSLDDVLQAAMRLETVDTEEFVQLSESILGGGSTVLDTRLLQ				NA	NA	NA	NA	NA
D1-36_03686	450			hypothetical protein	ATGGCCGCCAAAGTCGAACCGTTCTGGATACGCAAAACCCTCGATCAGCTCGATCCGCAGGAGTGGGAATCGTTGTGCGATGGCTGTGGCCTGTGCTGCCTGCAAAAGCTCGAGGACGAAGACGACAACGCCGTCTATTACACGCGCATCGCCTGCAAACTGCTGGACCTGAAGACCTGCCAGTGCACCGACTACCCCAACCGCCGCGACTTCGTTCCCGATTGCATCCAGCTTACGCCGGGCAAGGCCGACGAGTTCAAATGGCTGCCGCCGACCTGCGGTTATCGCCTGGTCAGCGAGGGCAAGGATTTGCCGCTGTGGCACCACTTGGTCTGTGGCGACCGGGATGCCGTGCATCACGAGCGCATTTCCCAGTCGGGGCGCATGCTGGCCGAAGGCAGCGTGGCTGAAGAAGATTGGGAAGATCATCTGATTTTCCGCGCTGGTTGA	MAAKVEPFWIRKTLDQLDPQEWESLCDGCGLCCLQKLEDEDDNAVYYTRIACKLLDLKTCQCTDYPNRRDFVPDCIQLTPGKADEFKWLPPTCGYRLVSEGKDLPLWHHLVCGDRDAVHHERISQSGRMLAEGSVAEEDWEDHLIFRAG	PGPT0009760_724	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-AI-1_ExpI|EsaI_PERCIPITATION|SIGNALLING|AHL|NAHL,PGPT0009760-ycgN-K09160	NA	NA
D1-36_03687	594	rutE		malonic semialdehyde reductase RutE	ATGAGCGCCAACTCCCGCATTGCCGACTACGCGATCCATCCCCAATTCATCGAACGCTGGTCCCCCCGCGCTTTCACCGGCGAACATATTGCGGAAGAAACCTTGCTGAGTTTCTTCGAAGCTGCGCGCTGGGCGCCTTCGGCCTACAACTCACAGCCGTGGCGCTTCCTTTATGCCCGTCGTGACACGCCGAACTGGGAGCGTTACCTGGGCCTGCTCAACGAGTTCAACCGTGGCTGGGCCCAGCACGCCTCGGCGCTGGTGATCATTGCCTCGAAAACCACGTTCGCGGTGCCCGGCGCCACCGAAGAAACCCCGGCGCAATGCCACACCTTCGACACCGGCGCGGCGTGGGGCCATCTGGCGCTGCAAGCGAGCCTAAGCGGCTGGCATACCCATGGCATGGCCGGCTTCGACCAGGAGCTGACCCGCAAGGAATTGAAAATCCCGGACGGCTACGCCCTGCATGCCGCCGTGGCGATCGGCAAGCTGGGGGATAAATCCACCTTGGCCGACTACCTCCAGGCCCGCGAAGTCCCAAGCCCGCGCCGACCGTTGAGCGAACTGGTGGCCGAGGGGGATTTCACTCTCTGA	MSANSRIADYAIHPQFIERWSPRAFTGEHIAEETLLSFFEAARWAPSAYNSQPWRFLYARRDTPNWERYLGLLNEFNRGWAQHASALVIIASKTTFAVPGATEETPAQCHTFDTGAAWGHLALQASLSGWHTHGMAGFDQELTRKELKIPDGYALHAAVAIGKLGDKSTLADYLQAREVPSPRRPLSELVAEGDFTL				NA	NA	NA	NA	NA
D1-36_03688	933	ghrA_2		Glyoxylate/hydroxypyruvate reductase A	ATGCGCGTTCTGATTGCCGAACACGACCACGCGGTCTATGCCCAGCTCCTGCGTCAGGCTGCACCCGATATCGAAGTGCTGACCAGCGGCGATTCCGCCGAGCTGTCGCGGCTTGCCACCGACTGCCCGGTCTGGCTCGGCCAGCCTGATCTATTGGCGACGCTGTTGCGTCAGGGCCATCGACCCCGTTGGTTGCAATCGACGTGGGCGGGCATCACGCCGCTGCTGGCCGAGGGCCTGACCCGCGAGTACCGCCTGACCCGCGCAGTGGGCATCTTTGGCCAAGTGATGGCTGAATATGTATTGACCTACATGCTGGGGCATGAGCGCGAGGTGCTGGCTCGGCTGGTCAGCCAGGTGGAGCGCAAGTGGGACAACCGCCAGGGGCAAAGCCTGGCGGGGCGCAAGGTGCTGATCGTCGGAACCGGCGATATCGGCCAGCGCGTGGCGCAGTTCCTGGTGCCGTTTGGCGTGCAGTTGTACGGCATCGCCAGTGAAGCCCGTGAGTTGGCGCCGTTTATCGAAGTCGGTGCGCTGGCGGATTTGCCGCGGTTGGTGGGCGAGATGGATTATGTGATCAACCTGCTGCCGAACACGCCGGATACCCATGACATCTACGACGCCGCGCTGTTCAAGCAATTCAAGCCCACCGGTTTGTTTATCAATGTCGGCCGTGGCGTGGCCGTGGTTGATGCCGACCTGGTGCAAGCCTTGAAGGACGGGCACCTGGCCGGGGCGGTGATCGATGTGTGTCGCCAGGAGCCGTTGCCGCAGCGCCATCCGTTCTGGACGGCTTGGGGCTTGCTGTTGACGGGGCATAGCTCGGCACCGACCTCGCCGTCCATGATGGTGCAGCTGTTCCTGGAGAACCTGCGCGCTTACCAGGCTGGCGAAGCGCTGCGTGGGGAGGTGGATTTCAGTCGGGGCTATTGA	MRVLIAEHDHAVYAQLLRQAAPDIEVLTSGDSAELSRLATDCPVWLGQPDLLATLLRQGHRPRWLQSTWAGITPLLAEGLTREYRLTRAVGIFGQVMAEYVLTYMLGHEREVLARLVSQVERKWDNRQGQSLAGRKVLIVGTGDIGQRVAQFLVPFGVQLYGIASEARELAPFIEVGALADLPRLVGEMDYVINLLPNTPDTHDIYDAALFKQFKPTGLFINVGRGVAVVDADLVQALKDGHLAGAVIDVCRQEPLPQRHPFWTAWGLLLTGHSSAPTSPSMMVQLFLENLRAYQAGEALRGEVDFSRGY				NA	NA	NA	NA	NA
D1-36_03689	294	ycgL	COG3100	Protein YcgL	TTGAAACGAATTTGCTCCATCTACCGAAGCTCGAAGAAAAACGAGATGTACCTGTACGTGCTCAAGAGCGACGCGTTGGCCCGTGTGCCGGAACCGTTGATGGCGGCATTCGGCAAGGCCATCCACGCATTCGACCTGGTATTGAGCCCGGAGCGCCAGTTGTCCCGGGAGGACATCGGCAAGGTGCTGGAGAACCTCGACACCCAGGGTTATCACCTGCAAATGCCACCGGCCGAAGATGAGTACATCGAGCATCTGCCTGAAGAGTTGCTGCGACGCAACGATCCGGTCTGA	MKRICSIYRSSKKNEMYLYVLKSDALARVPEPLMAAFGKAIHAFDLVLSPERQLSREDIGKVLENLDTQGYHLQMPPAEDEYIEHLPEELLRRNDPV				NA	NA	NA	NA	NA
D1-36_03690	1134	rnd	COG0349	Ribonuclease D	GTGGCCATCGATATTCACTGGATTCGCGACAACGATAGCCTCGGTCGGTTTTGCGCCGAATGGCAACAGTTGCCGTTCGTCGCCCTCGACACCGAATTCATGCGGGTCGACACCTTCTATCCCATCGCCGGCTTGCTGCAGATTGGCGATGGTAAAAGTGCGTACCTGATCGACCCCTTGAGCATCGACAATTGGCAGCCCTTGGCCGCGCTGCTGGAAAATCCGGCTGTGCTCAAGGTGCTTCATGCCTGCAGCGAAGACCTGGAAGTCCTGCTACGCCTGACGGGCAGCCTGCCCGCGCCGCTGTTCGACACCCAACTGGCCGCCGCCTACCTGAACCTGGGTTTTTCCATGGGTTACTCGCGGTTGGTGCAGGAGGTGCTGGGCATCGAGTTGCCCAAGGGCGAGACGCGCTCCGACTGGCTGCAGCGACCCTTGTCCGAGACGCAGATCAGCTACGCCGCGGAGGACGCGGTGCATCTGGCGGAAGTCTTTGTAGAGCTGCGTCCCAAGCTTTGCGACGACAAATACGCCTGGGTGCTGGAAGACGGCGCCGAACTGGTCGCCAACCTGCGTCGCGAAGTGGACCCCTACGAGGTTTACCGCGAGGCTAAGCTGGCCTGGAAACTGTCCCGCGCGCAGTTGGCCGTGCTGCGCGAACTGTGTGCCTGGCGCGAGCGCGAGGCGAGGGCTCGTGATTTGCCGCGCAACCGGATCATTCGCGAGCACTCGTTGTGGCCCCTGGCCCGCACGCAGCCGGATAACCTCGCTGCGCTGGCAAAAATCGAAGACATGCATCCGCGTACCGTGCGTCAGGACGGTGAGTTCCTGCTGGACCTGATCAAGCGCGCGGGCAGCGTGCCGCCCGAACAGTGGCCGCCCGCCGTGGCTGAACCCTTGCCCATCGAGGCCTCGGCGCTGCTCAAGCGTCTCAAGGCACTGGGACAGGCCGAAGCCGAGCGCCTGGGCATCGCCCCGGAATTGATGCTGCGCAAGAAAACCCTCGAAGCCCTGATCAAGAGTGGCTTTCCCGAGGGCCCTTACCAACTGCCCGATTCGCTGCGTGGCTGGCGCCGCGAGTTGATGGGCCAGGCATTGCTCGACAGCCTGGCCACCGCCGGAGAACAGCCTTGA	MAIDIHWIRDNDSLGRFCAEWQQLPFVALDTEFMRVDTFYPIAGLLQIGDGKSAYLIDPLSIDNWQPLAALLENPAVLKVLHACSEDLEVLLRLTGSLPAPLFDTQLAAAYLNLGFSMGYSRLVQEVLGIELPKGETRSDWLQRPLSETQISYAAEDAVHLAEVFVELRPKLCDDKYAWVLEDGAELVANLRREVDPYEVYREAKLAWKLSRAQLAVLRELCAWREREARARDLPRNRIIREHSLWPLARTQPDNLAALAKIEDMHPRTVRQDGEFLLDLIKRAGSVPPEQWPPAVAEPLPIEASALLKRLKALGQAEAERLGIAPELMLRKKTLEALIKSGFPEGPYQLPDSLRGWRRELMGQALLDSLATAGEQP				NA	NA	NA	NA	NA
D1-36_03691	642			hypothetical protein	ATGTCCGGGCAACCCCCATCCACCGTCGAGCTTGAATTCGCCAGGCAGCATGACCAAGAGCATGCACAAATCTGTCGCCAGCCGGTGCCCCGCCGTTTACGCCTGACCTTCTGGCGTGACGAGCAATTAGTGCGCAACGCCATGAAAGTGGCCGGTGAGCCTGGGCTGGTGTTGGATGTCGCGTGTGGAGCCGGGCGGTTCTGGCCGGTGTTGGCCGAACATGCCAACCGGGTCATCCTGGCGGCGGACCCTTCGCCGGACACCCTCGATCACGCACGCAGCCACCACGGTGGTGCGTTGCTCAAGCGGGTCAAGACCTTCCCCAGTTCGGCGTTTACCCTTGGGCTGTCAGCCAACGCCGTGGACTGCATTTTCTGCCTGCAACTGTTTCAGCACATCAAGGCCAGCGAACATCGCCAGGCCTTGTTGCGCGAGTTTCATCGGGTCAGCCGCGATACGGTGGTCGTGTCGGTCCGGATCGAAGGGCGTCTCAAGCTCGGCCAGCCTGGGCGGCGAATCCTGGCTGGCAAGAACGACGTCGAAGGGGAGTTTGTCGAAGCCGGTTTCAGTGTGCTGTGGTATCAGGATTTCCTTCCGGGTTTCGCCTTGAGACGGGTTTATGTATTACGCAAGGCCAGTTAA	MSGQPPSTVELEFARQHDQEHAQICRQPVPRRLRLTFWRDEQLVRNAMKVAGEPGLVLDVACGAGRFWPVLAEHANRVILAADPSPDTLDHARSHHGGALLKRVKTFPSSAFTLGLSANAVDCIFCLQLFQHIKASEHRQALLREFHRVSRDTVVVSVRIEGRLKLGQPGRRILAGKNDVEGEFVEAGFSVLWYQDFLPGFALRRVYVLRKAS				NA	NA	NA	NA	NA
D1-36_03692	1650	eptA	COG2194	Phosphoethanolamine transferase EptA	ATGCTGACTATCAAAGCCGTGCGCCCCGAGTGGGTGACGCTGGCCGCCAGTGCCTTTTTGTTAGTGGGTTTCAATCTGATCCTCTGGCAGCATCTGCTCACCATAACCGCATCCGATGGGCACGGTGCGCTGCTGTGCCTGGCGTTTGGCGTGATGGTGTTCTGCGCGTTCAACCTGGTGCTCACGCTGCTGGCGTTCCGGCCGCTGCTAAAGCCGTTGTTGATGGCGCTGTTTATGATCAGCGCTGGCGTGGCATATTTCATGGCCGAGTACGGCGTGTTGATCGATGCCGGGATGTTGCGCAACTTTGCCGAAACCAATGCCACGGAAGTTCGCGACCTGTTGTCGTTCAAGTTGTTTGCCTATTTATTCTCGTTGGGTGTCCTGCCAGCCTGGTTGTTATTCAAGACACCGATAAAATATCGTCGCTGGCCCAAGGAGTTGTTAAGTAAGTTTGTGGTCTCCGTGGTCACGATTGCCGTGCTCGGCGGGGTGGCGTTGGTCAACTACCAGGGCTTGGCGTCGTTGTTTCGCAATCATCACGAGTTGCACTTGATGGTCGTGCCGAGCAACTACATCGGTGCGTCGATCGGCTATTTGCGCGAGCAGGTCGCATCGGCCAAGCAACCGTTCATCACGTTGGGCGAGGATGCGAGTCGCAACCCCGCCTGGCAAACCCATCCACGAAAATCCCTCACTGTGCTGGTCGTGGGCGAGAGCGCCCGTGCCGAGAACTTCGGCATTCTTGGGTATAACCGTGATACCACGCCGCAACTGGACAAAGAGGCCGGCCTGATCGCCTTCACCGACGTGCATTCCTGTGGCACCGAAACCGCCGTGTCAGTGCCTTGCATGTTTTCCAACATGGGGCGCAAGAACTACGACGCGAGCAAGGCCAAGAACGAAGAGGGGTTGCTCGACGTGCTCAAGCACGCCGGGCTGGACGTGATCTGGCGCGACAATCAGTCCGGCTGCAAAGGCACCTGTGATCGGGTCACGGTGCAGGACGTGAGTAATCTCAAGGACCCGGCCCTGTGCGCCAACAGTGAATGCCGTGATGAAATCCTGCTTCAGGGCTTGCAGCACTTCATCGACAGCCTCGACAAGGACACCGTGCTGGTACTGCATCAGATGGGCAGCCATGGGCCGGAATACTTCAAGCGCTACCCCAAGGAATACGAGCATTTCACGCCGGTGTGTGAAAGCAACGCGTTGAACAACTGCAGCCGCGAAAGCATCGTCAACGGCTACGACAACACGCTGGTGTACACCGACCACGTGTTGTCGACGCTGATCGATCTGTTGCGGGCCAACCAGGACAAAGTCGACACGGCCATGCTGTACCTGTCGGACCATGGCGAATCCTTGGGCGAGTACAACCTGTTCCTCCATGGCACGCCCTACATGCTAGCGCCGGAGCAACAGAAACATGTGGCGATGCTGGCATGGTTCTCCGATAGCTATCAGAAGTCCTTTGCTGTCGACACCCATTGCTTGCAACTGAGTCGGGACAAGCCCCTGAGCCAGGACAACTTGTTTCATTCGATGATTGGGCTGTTGGAAGTCAACAGCAAGGCCTACAACCCGGACCTCGATCTGTTTGCCAATTGCCGGGGAGCGGTGATCGATGGCGTGCTTGCCCGGGAATGA	MLTIKAVRPEWVTLAASAFLLVGFNLILWQHLLTITASDGHGALLCLAFGVMVFCAFNLVLTLLAFRPLLKPLLMALFMISAGVAYFMAEYGVLIDAGMLRNFAETNATEVRDLLSFKLFAYLFSLGVLPAWLLFKTPIKYRRWPKELLSKFVVSVVTIAVLGGVALVNYQGLASLFRNHHELHLMVVPSNYIGASIGYLREQVASAKQPFITLGEDASRNPAWQTHPRKSLTVLVVGESARAENFGILGYNRDTTPQLDKEAGLIAFTDVHSCGTETAVSVPCMFSNMGRKNYDASKAKNEEGLLDVLKHAGLDVIWRDNQSGCKGTCDRVTVQDVSNLKDPALCANSECRDEILLQGLQHFIDSLDKDTVLVLHQMGSHGPEYFKRYPKEYEHFTPVCESNALNNCSRESIVNGYDNTLVYTDHVLSTLIDLLRANQDKVDTAMLYLSDHGESLGEYNLFLHGTPYMLAPEQQKHVAMLAWFSDSYQKSFAVDTHCLQLSRDKPLSQDNLFHSMIGLLEVNSKAYNPDLDLFANCRGAVIDGVLARE	PGPT0022420_401	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0022420-eptA-K03760	NA	NA
D1-36_03693	1374	puuA_1	COG0174	Gamma-glutamylputrescine synthetase PuuA	ATGAATCTTTCTTTTGCATCCGAGCAACAGGCCCAGGCGTTCCTGGCGCAAAACCCGGATATCGAGCTGTTCGAATTGTTTATCGTCGACAACAACGGCGTGCCCCGGGGCAAGTGGCTGCATCGGGACGAATTGCTCGCGGTCTATCAAAGTGGCCGGCCACTGCCCAGCACGATTCTGGGGCTGACCGTCAATGGCGACGACGTGGAGAATTCCGGCCTGGTCTGGGATGTGGGCGACATTGATTGCCGGGCCTATCCCATCAGCGGCAGCTTGCAACGCATGCCCTGGCGGCAGATTCCCACCGCCGCGGTGCAAGTGGCCATGCATCCCCAGGAGGGCATGCCGGCGGCCATCGCCGATCCCCGCCATCTGCTCGGCCGGGTCATCGATGAATTGCAGGCGGACGGCTATTACCCGGTGATGGCGGCGGAGCTGGAGTTCTACCTGTTGGATGGGCAGCGCGACAGCGAGGGCCGGCCCCAACCGGCGCGGGACGCCGACGGCAGCAGGCCGCGCCATACCCAGGTCTATGGCTTGCGTGAACTGGAGCAGATCGAGCCCTTTCTCGCCGATCTCTATGCGGCCTGCAAACTGCAGGGCATTGCGGCCCGGACAGCCATTTCCGAATACGCTCCGGGGCAGGTGGAAATCACCCTCGAACACCGTGCCGATGCCTTGCAAGCCATGGATGAAGCGGTGCGCTACAAACGACTGGTCAAGGGCGTGGCCCATAAACATGGGATGGCGGCGTGTTTCATGGCCAAGCCATTCGAGCATCTGGCGGGATCTGGCCTGCACATGCACGTCAGCCTCGCGGACCGGGATGGCAACAATCTGTTTGCCAGCGAAGCCGCCGATGGCACGCCGTTACTGCGTCAAGCGGTGGGCGGTATGCTCGAAACGTTGCTCGACTCGCTGTTGATGTTCTGTCCGAACGCCAATTCCTACCGTCGGTTTCAAAGCAACAGCTACGCGCCGCTGGGGGCGACGTGGGGCGTGGACAATCGCACCGTCAGCTTGCGGGTGCCCGGCGGCCCGGCGTCCTCGCGGCACATCGAGCATCGTATCTGTGGCGCCGATGCCAACCCCTACCTGGCTGCGGCGGCAATATTGGCTGGCATCCATCGGGGCATCCGTGGACAGTCTGATCCTGGTGCGCCTGTCGAAGGCAACGGCTATGCCCAGGCCACCCAATTATTGCCCACCGACTGGCTCACGACTTTACGCGCCCTGGAGGCGTCCACTTGGGCGCGGGACGCTTTTGGGGAGGCGTTCCTCGGTGTCTACCTGGCGGTCAAACGTGCGGAGTATCGCCAGTTCATGGGTGAGGTCGGCGAGCAGGATTGGCGTTGGTACCTGAACCAGGCCTGA	MNLSFASEQQAQAFLAQNPDIELFELFIVDNNGVPRGKWLHRDELLAVYQSGRPLPSTILGLTVNGDDVENSGLVWDVGDIDCRAYPISGSLQRMPWRQIPTAAVQVAMHPQEGMPAAIADPRHLLGRVIDELQADGYYPVMAAELEFYLLDGQRDSEGRPQPARDADGSRPRHTQVYGLRELEQIEPFLADLYAACKLQGIAARTAISEYAPGQVEITLEHRADALQAMDEAVRYKRLVKGVAHKHGMAACFMAKPFEHLAGSGLHMHVSLADRDGNNLFASEAADGTPLLRQAVGGMLETLLDSLLMFCPNANSYRRFQSNSYAPLGATWGVDNRTVSLRVPGGPASSRHIEHRICGADANPYLAAAAILAGIHRGIRGQSDPGAPVEGNGYAQATQLLPTDWLTTLRALEASTWARDAFGEAFLGVYLAVKRAEYRQFMGEVGEQDWRWYLNQA	PGPT0000645_4892	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
D1-36_03694	366			hypothetical protein	ATGCCTCACTTGCACATGGAGTACACCGCCAACCTGACCGAGCTGAACGCTGATGTCGCGCTGTTGCGCTTGAACAATGCGCTGGTAGCCTCGGGGCAGTTCGCTGCCGAGTTCGACATCAAGAGCCGGGCCGTGAAGCTCGAGACGTTCCGCGTAGGAACCGGCATGGGGGAGCGGGCTTTCGTGCATGTGAAACTGGCCTTGCTGAGCGGCCGTTCACCGGAAATCAAAAAACAGCTGGCAGACAGCCTGCTGGTGGTAATTCAGGACCTGGGCCCTTGGCCCGCCGGCGTTAGCGTGCAGTTGTGCGTGGAACTGCTGGATATCGACCGTGGCCCGTACGCCAAGGCTGCCATCGGTTTTTAA	MPHLHMEYTANLTELNADVALLRLNNALVASGQFAAEFDIKSRAVKLETFRVGTGMGERAFVHVKLALLSGRSPEIKKQLADSLLVVIQDLGPWPAGVSVQLCVELLDIDRGPYAKAAIGF				NA	NA	NA	NA	NA
D1-36_03695	180			hypothetical protein	ATGGCCGCTTCCGGTCACTTGTTCAGCGAGCCATTTCCCTTCAAGACGCCGACGCTGGACCTGTCCATGGTCTGGCTGAGCCATGTCGACAACGATCCGGCGGAGCGCTGGTTGAGTTCCCGGCTGGAGGCCTTCATGAGCGAGCGCATGGGAGCGATGGACGAAACAAATCCTGCCTGA	MAASGHLFSEPFPFKTPTLDLSMVWLSHVDNDPAERWLSSRLEAFMSERMGAMDETNPA	PGPT0028130_230	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexEF-OprN,PGPT0028130-mexT-K18297	NA	NA
D1-36_03696	192			hypothetical protein	ATGTATTTTGAAATCTACCGACAGACCCGAGGAACCCCAAGTACCGGACGAGGCCAGTGGCGCTGGCGCCTGAGGGCCGGCAATAACGAAACCATCGCCAGCGGCGAGTCCTATGTGAACAAGGCCGACTGCCTGCACGTTATCGGATTGATCAAAAGTGCCCACGGCGAGACGCCCGTAAAGGAAATCTGA	MYFEIYRQTRGTPSTGRGQWRWRLRAGNNETIASGESYVNKADCLHVIGLIKSAHGETPVKEI				NA	NA	NA	NA	NA
D1-36_03697	807			hypothetical protein	ATGAGTCAATTCAGTCACCGTCGCGACTGGCTGATGCGTGCGCCTGAATCGAGGAAACTGGAACGCATCGAGGCCTATTTCAGCGGTCATGGGTATAACACCCATCGGCATGACACCTATGCCATCGGCTTCACGCTTTCCGGCGTCCAGAGCTTCAATTACCGGCACAGCAAGCGCCATAGCCAGCCCGGCGGAACCATCGTCCTGCACCCGGACGAGGTGCATGATGGGGAGGCCGGAACGATCGATGGCTTTCGTTACCGGATGTCCTACATTGAGCCCGCGTTGATCCAACAAGTGTTGGGCGGCAGGTCACTGCCCTTCATCGAAGGCGGACTTTCGAACGATCCACGACTCAACATAGCGACCCGCCGGTTATTGGCCAGCCTCGAGCATCGTCTCGATCCACTGGAGGAAGAGGATGCCATCTACGACCTGGCCCAGGCGCTCGCCGTCGCGTCAGGGAGCCGACGAGGCCGCAGGCTGCTTGACTACCCTGCTGCGGAACGCGCGCGGCTGTTCATTCATGATGCCCTTGACCAACCCATTACCCTCGATGACCTCGTGCAGGCCAGTGGCCGGGACCGATGGAGCCTGTCGCGGGACTTTCGCGCCTTGTACGGCACCAGCCCCTATCGCTACATCACCCAACGTCGATTGAGCGAAGCTCGTCGCCTGGTATTGCACGGCATGCCCTTGAGTGAAGCGGCGCTGGCCTGTGGCTTTTTCGACCAGAGCCACATGACGCGGCTCCATACCCAGGCCTTTGGTCTTTCACCGGCACGCTGGCTGAAAATGCTGCGCTGA	MSQFSHRRDWLMRAPESRKLERIEAYFSGHGYNTHRHDTYAIGFTLSGVQSFNYRHSKRHSQPGGTIVLHPDEVHDGEAGTIDGFRYRMSYIEPALIQQVLGGRSLPFIEGGLSNDPRLNIATRRLLASLEHRLDPLEEEDAIYDLAQALAVASGSRRGRRLLDYPAAERARLFIHDALDQPITLDDLVQASGRDRWSLSRDFRALYGTSPYRYITQRRLSEARRLVLHGMPLSEAALACGFFDQSHMTRLHTQAFGLSPARWLKMLR				NA	NA	NA	NA	NA
D1-36_03698	369			hypothetical protein	ATGAATCATTACTCCCCCATTAACTTCGAGCAGAAATACGCGCTGTTCCATGAGCAATGGGCACCCAAGGTTGTCGCCGAGATGAACGACTACCAGTTCAAGATTGCTCGTCTCGAAGGCGATTTTATCTGGCACACCCATGCCGATACCGACGAAACCTTTATCGTGCTGGAAGGTGAACTGCGCATCGACTTTCGCGACGGCGCCGTCATGATTGGCCCGGGCGAGATGTATGTGGTCAAGAAAGGCGTCGAACACAAACCCAGTGCCGAGCGGGAAGTGAAGTTGTTGTTGATCGAACCGCGGGGCGTCATCAACACGGGGGAGCAAATCAATACGCGAACCGCAGTCAATGACGTCTGGATCTGA	MNHYSPINFEQKYALFHEQWAPKVVAEMNDYQFKIARLEGDFIWHTHADTDETFIVLEGELRIDFRDGAVMIGPGEMYVVKKGVEHKPSAEREVKLLLIEPRGVINTGEQINTRTAVNDVWI				NA	NA	NA	NA	NA
D1-36_03699	747		COG5285	putative protein	GTGGCGACTGACGACCTTCTACGTGCCTTGCATCAGGACGGCTTTGTCCTGATGCCCGGTGTGTTGGACGCCGGGCAGGTCGCCGACCTGCGTCGCGCTATCGACTTGCTGAAGCCTCAGCACTGGGATTACAGCGGCGTCATCGATCATTACAAATGCGTTTTCAACAGGGATCCGTTCTGGTTGCCGTACCTGGACGTGAGCGCAGTTATCGAGCTTGCCGAGGCCGCCTTGGGAGATGATTGCCATATCATCGGGCAGACAGCCTGGCGCTGCCATCCCGGTTTTATCGGCGCGCCTCTGCATCTGGATTACCTGCCCATGGAGCTGCCGCCCGCCCTGTTGGCCGACCCCGGTTTCGAACTGCCGATGCAGGTGTTCACCGCACAGTTTTACCTTGATGACATCGATGCTGACCTGAGCCCGACACGGGTAATACCCGGCAGCCACAAGGCGGGCCGGGCGCCTGCGGCGGGCGAAACGCAGTGGCAGGGACGTTCGGCGCAGCCAGTGTTGTGCCGGGCGGGCGATGTTCTGGTACTGCGAAGTGAGTTGTGGCACGCCGGCAGCGACAACCGGACCGCCGACCGCACGCGGTACATGCTCCAAGTGCATTACGGTCGGCGGATGGTTGCGCAGAAGTTCTCGCCTTATCTTCAGTGGCAGTTCAACCCCGCAGTACTGGCCGCCGCGACGCCTCGCCAGCGACGGCTGCTTGGCGATCACCAGGAAGCGGAATACGACTGA	MATDDLLRALHQDGFVLMPGVLDAGQVADLRRAIDLLKPQHWDYSGVIDHYKCVFNRDPFWLPYLDVSAVIELAEAALGDDCHIIGQTAWRCHPGFIGAPLHLDYLPMELPPALLADPGFELPMQVFTAQFYLDDIDADLSPTRVIPGSHKAGRAPAAGETQWQGRSAQPVLCRAGDVLVLRSELWHAGSDNRTADRTRYMLQVHYGRRMVAQKFSPYLQWQFNPAVLAAATPRQRRLLGDHQEAEYD				NA	NA	NA	NA	NA
D1-36_03700	1635			hypothetical protein	ATGCCGCGGTTTTTTGCCGATTTGGGCTTTCGTTGGAAAATCACTCTGCCGATTGCGTTCCTGGCTGCATTGCTTGTGCTGATGGGGGGGGCGGGTGTGCGCGGTATCGGCCAGGTGACGGAGTCCAGCACGCAGTTGACCAAGCGTTATCTGCCGGCCATCAGCCTGTTGCTCAATGCCGATCGTGATCTTTATCAGGCTTTCGTGGCCGAGCGCAGTTTGCTGGACGGTCATGCAAGCGAGCACCTGCAAGCGCTGGGTGCCAGTCACAGTGAAAATGCGAAGCAGGCTTATGACCGTGTGCAGCAATATGCTGCGATGCAGCCCGGTGCCGAGTCGCAGGCGTTGGTCAGTCAGTTCAATGACAGTTTCGGCAAATGGATGCAGGTTTCGCGACGGGTCCTCGAGCTGTCGGTAGGCGATCCGCAAGGCGCTAGCGCGCTGAGCTTTGGTGACAGTGAGCGCTTGTTCGAAACCATGCGCGATTCCATCGACAAGCTGGGTGAGCTGGAAGATGCTGCGTCGCATCGTGAAGGCGACGCAGCGATTGAAAACGGCGAGACAGTCGGGGTGCAACAGGGTGTGATTCTGTTGGTCGGTTTGCTCGGTTGCATCTTGGTGCTGGTTGCCCTGCCGCTGGTGGTGTTGAGCCCGATGCGCCGGCTGCTGCATCGTGTCGAGCAAATTGCCGAGGGCGGCGGCGATCTCAAGGGACGCCTGGAGGTACGTTCGGCCGATGAGCTGGGACAACTCGGCAGCGCCTTCAACCGTTTCCTCGACAAGCTGCAACCGCTGATTGCCGAAGTAGGGCGGGTGACCGGCGAGGTCGATTCCGCCGCGCGGGCCATGGCCGATATGGCCGCGACGAACGATCGGTTGATCAGCAGCGAGCATGCCGCGCTCGATCAGGTCAGTACCGCCGCCACCCAAATGAGCGCGGCGGTGCATGAAGTGGCGCACAACGCGGTAAGTGCTTCGGATGCAGCGCAACAGGCGAGCAGTCAATCTCGCGATGGCGCCGAGGTGGTCAGCAGCACCATCGAGTCGATCCGCCAGTTGGCCCAGGAAGTGGAGAGCGCCTCGGGTACGATCGAGGCACTGGCCCAGGAGACCTCCAGTATCGGTGCCGTGCTCGAGGTGATCCGTGGCATCGCTGAGCAGACCAACCTGTTGGCGCTGAATGCTGCCATCGAAGCCGCTCGGGCCGGTGAGCAGGGCCGTGGTTTTGCCGTGGTGGCCGACGAGGTGAGGGCGCTCGCGGCCCGCACCCAGGACTCCACCAAGGACATCCAGGTTCGCATCGAGCGCTTGCAGAGCGGCGTCGCCAAGGCGGTACAAGCCATGCATGTGGGCAGTAGCAAGGCCCGGGACAGCGTGGAGCGTGCGGCAGGTGTCGATCAGGTGCTCAGCGGTACCGGCGGTTCGATCCAGCGGATCAACGACATGGCCGCGCAGATCGCCAATGCCTGTGAGGAACAAAGCAGCGTCACCGAGGAAATAGCCCGCAATATTTCCGATATCCGCGATCTTTCCAACGAAGCGGCCGCCAATTCTGCCCAAAGCATGCATGCCAGCCAGCAGTTGTCGAATCTGTCGAGGAATCTCGCAGAGCTGACCGGCCGCTTCCGCACCTGA	MPRFFADLGFRWKITLPIAFLAALLVLMGGAGVRGIGQVTESSTQLTKRYLPAISLLLNADRDLYQAFVAERSLLDGHASEHLQALGASHSENAKQAYDRVQQYAAMQPGAESQALVSQFNDSFGKWMQVSRRVLELSVGDPQGASALSFGDSERLFETMRDSIDKLGELEDAASHREGDAAIENGETVGVQQGVILLVGLLGCILVLVALPLVVLSPMRRLLHRVEQIAEGGGDLKGRLEVRSADELGQLGSAFNRFLDKLQPLIAEVGRVTGEVDSAARAMADMAATNDRLISSEHAALDQVSTAATQMSAAVHEVAHNAVSASDAAQQASSQSRDGAEVVSSTIESIRQLAQEVESASGTIEALAQETSSIGAVLEVIRGIAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRALAARTQDSTKDIQVRIERLQSGVAKAVQAMHVGSSKARDSVERAAGVDQVLSGTGGSIQRINDMAAQIANACEEQSSVTEEIARNISDIRDLSNEAAANSAQSMHASQQLSNLSRNLAELTGRFRT	PGPT0015710_20252	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_03701	1626			hypothetical protein	ATGAGAGGTTCTTCAGATTGGTCTGGTAAAGGCTTGTTGTTGATCTTGTGTTTGCTTGCTTGCACGACTCAGGCCGCCACTGGCCCGGAAGTCGCACAACTGCTCAACAACCGTTACCGCGCGACTCCGCAGGAATGCCCCGGAAACCATCCTGCGTACTACTGCAGCGGCGTGCTGGTCAGCGGGCTGGCGGGCAATTTCACGGTGAAGTTTTGGGAACATGGCCCCACGGCTATCGCGCTGGGCGCGCGCGGCTTTTCCTATCTGCGGCGCGATGTGGGTACTCGCACCCTGACGCAGCCCAGCGGAATGGTGTTCACTGACTCGTTTACCGCTATCAGCCAAGGCAAACCGCTGGACGTGCTCTGCGCCTTTCCATTGGTGGCGGCGAATCGGGATAAATATGGTTGTGGCGTCGGAGGCAACGAGAGTGATCCGGGCTCCTGCGCTGCCCAGGGCGTGAGCGATGCCCCAGGCTGGCTGGCGCATTTCCAGCAGCAAGGCCAGGCGCCGTCGCTGCAATGTTCGTTGAGCAGCCGCATCGCGGCGCAGTTTCGTGCCAGTTTGCTGGCCCATGAACAACTGGGCGGCAGTTGGAGCGCCCAGCCCAATGAGCTGCAAGTGCGCAATTGGGATCCCCAGGCGCCGGGCCAAGTGCCCGTGCAAGCGTTGTTCTATGACCTCAAGCAGCGCGGCGGGCTACGTGTGGCCCAGGCTGATCAGAACGACTATTACGCGGCCACGGGGCAATGGCTGCCGATCCTGCGCCTGGATCTGACACAGGCCGACGGCCTGGTGTTTGGTTTCGATTTGCAGGAGCAGTTGTACGTCGGCTATCAGGTGGCGGAGCGGCTCAACAAGCGCTATTTCAACACGGCGAAAACCTGCCCGAATGGCCAGCCGGCGCCTTATTGCAATGGGGTCATCGTCAGGGGGGTCCATTCCACCTCACAGTTTCATTCATGGAACCCCAGTCCAATTGCAATCGCCATGGGCGGTGTTTCCAGCAGCTATGCACGGGCTGACTCCTCGCTGGTAATGGTGCCATATCGGCAAGGACTATTGTTCAAACCCTTGTCGGCACCTGCCATCAACCCCGTACCGGTACGTTGCTATTACCCATTCGATGGATGGACGCAGGGTGGGGGAGATGCATGTACAAAGCGTCAGCGGTGTTCGGACCTGGGTATCGACAGCGTTGAAAAATGGGCGGCCCGCTATACTTCGAATGTTTTCGACTCTTGCAGTTTTTCTCCTACGGAAGAAGGCGTCCAGTTGATGATGGACATCCGCAATGGAGTGACCCATCCCCATTCCCACTGGAACGAGTCTGTCCTGACACTTTGGGAACAAAATATCCCGGAGCAGTTGCCTGTCGATGCGTTGTATCACAGCGACGGAGGCGTTCCAGGAGACGGACCTGTCGGGGCGCGGTACATCCAGGATGACTACTTCAAGGTAACGGGGCGCTTCTGGCCTATCGTCCATATGCGTTTCGACGCCACGGACGGCCAGGTATTTAGCTTCACCCCCAATGATCAGTGCTTGAGGGACACCTGCCCACCCCCCCCGGACGCTTTGGGAGTCCAAGAAACGGATTTCTGGCTTCGTTTCTACGAACAATAG	MRGSSDWSGKGLLLILCLLACTTQAATGPEVAQLLNNRYRATPQECPGNHPAYYCSGVLVSGLAGNFTVKFWEHGPTAIALGARGFSYLRRDVGTRTLTQPSGMVFTDSFTAISQGKPLDVLCAFPLVAANRDKYGCGVGGNESDPGSCAAQGVSDAPGWLAHFQQQGQAPSLQCSLSSRIAAQFRASLLAHEQLGGSWSAQPNELQVRNWDPQAPGQVPVQALFYDLKQRGGLRVAQADQNDYYAATGQWLPILRLDLTQADGLVFGFDLQEQLYVGYQVAERLNKRYFNTAKTCPNGQPAPYCNGVIVRGVHSTSQFHSWNPSPIAIAMGGVSSSYARADSSLVMVPYRQGLLFKPLSAPAINPVPVRCYYPFDGWTQGGGDACTKRQRCSDLGIDSVEKWAARYTSNVFDSCSFSPTEEGVQLMMDIRNGVTHPHSHWNESVLTLWEQNIPEQLPVDALYHSDGGVPGDGPVGARYIQDDYFKVTGRFWPIVHMRFDATDGQVFSFTPNDQCLRDTCPPPPDALGVQETDFWLRFYEQ				NA	NA	NA	NA	NA
D1-36_03702	1623			hypothetical protein	ATGAAAATGCTCGAGCCTCGCAAGATCATTCTGTTGTCATTGCTATTAAGTGTCCTCTGCACTCAGGCCGCCACCGGTCCAGAAGTCGCGCAACTGCTCAACAACCGCTATCGCAGCACACCGCAGGAATGCCCCGGCAATCATGCGGCGTATTACTGCAGCGGGGTGCTGGTCAGCGGGCTGGCGGGCAATTTTACGGTGAAGTTCTGGGAACATGGCCCCACGGCCATTGAACTGGGCGCGCGCAGCTTTTCCTATCTGCGGCGCGATGTGGGCACTCGCACCCTGACGCAGCCCAGCGGAATGGTGTTCAGTGATGCGTTTACTGCCATCAGCCAAGGCAAGCCGCTGGAGGTGCTGTGCGCCTATCCGCTGGTATCGGCGAATCGGGATAAATACGGTTGCGGCATCGGTGGCAGCGAGAATGATCCGGGTTCCTGCGCCGCCCAGGGTGTTAGCGATGCCCCAGGCTGGCTGGCGTTTTTCCAGCAACAAGGCCAGGAACCGTCGTTGCAATGTTCACTGAGTAGCCGGATCGCCGGGCAATTTCGCGCCAGTCTGCTTGCCCATGAGCAACTGGGTGGCAGTTGGGTCGCTCAACCCAATCAACTGCAAATGCGTAACTGGGATCCCCAGGCCCCGGAACAGGTGCCTGTACAAGCGTTGTTTTATGACATCAAGCAGCGCGGCGGATTGCGCGTGGCCCAGGCTGACCAGAACGACTATTACGCGGCTACGGGGCAATGGCTGCCGATCCTGCGGCTGGACCTGACACAGCCGGACGGCCTGGTGTTTGGTTTCGATTTGCAGGAGCAGTTGTACATCGGCTATCAGGTGGCGGAGCGGCTCAACAAGCGCTATTTCGATACGGCACAGACTTGTCCGGATGGTCGGGCGTCGTTCTACTGCAATTGGGTAATGTTGAGAGGAACGGATGTTTCCGCTTTATTTCACTCTTGGAATCCCAGTCCCGCTTCGGTCTTGAATAATGGTGTTTCCGTCACTCTCCTCAGGACTGACTCCTTGGTGCCGCGACCGGTTTGGCCTCAAGGTTTATTGTTCAAAGAGTTGGGTGCTCCCACCGCTCACCCGCAGGCATTGCGCTGTGGATACCCTTACGATGGTCATACGGGATGGGGCACCGATGCGTGCCTGGTAAATGACGCATGCGTCAATCTTGGGATCGACAGCCTGGCAAAATGGACGGAGAAATATCATGCGAGTCTCTACTCTTCCTGCAGCTTCGATCCAACGGTAGCGGCTTTTCGATTGATCGATGAGATTCGCCGAACGGTCTCGATGCCTGAGTACGATTGGAACGAATTCATCCTGGCGGCCTGGCCACAAAATATTCCCGAGCAATTGCCCGTCGATGCTCTTTTTTATAGCCACACATCCTATTTTCCAAGAGATGGTCTGGCCGGCGCGCGTTATATCCAAGATGACTACTTCAAGAGTACGCAGCGCTTTTGGCCAATTGTTCAGCTAAAACTTGGCGCCACGGATCGACAGATATTCATCTTTAATCCCGTCGATCAGTGCCTGGCTGACGATTGTGCTCCCCCTGCGCAGGCGTTTGGGGCACAGGACGCGGATATCTGGTTTCTCAAGCACGGGCAATAA	MKMLEPRKIILLSLLLSVLCTQAATGPEVAQLLNNRYRSTPQECPGNHAAYYCSGVLVSGLAGNFTVKFWEHGPTAIELGARSFSYLRRDVGTRTLTQPSGMVFSDAFTAISQGKPLEVLCAYPLVSANRDKYGCGIGGSENDPGSCAAQGVSDAPGWLAFFQQQGQEPSLQCSLSSRIAGQFRASLLAHEQLGGSWVAQPNQLQMRNWDPQAPEQVPVQALFYDIKQRGGLRVAQADQNDYYAATGQWLPILRLDLTQPDGLVFGFDLQEQLYIGYQVAERLNKRYFDTAQTCPDGRASFYCNWVMLRGTDVSALFHSWNPSPASVLNNGVSVTLLRTDSLVPRPVWPQGLLFKELGAPTAHPQALRCGYPYDGHTGWGTDACLVNDACVNLGIDSLAKWTEKYHASLYSSCSFDPTVAAFRLIDEIRRTVSMPEYDWNEFILAAWPQNIPEQLPVDALFYSHTSYFPRDGLAGARYIQDDYFKSTQRFWPIVQLKLGATDRQIFIFNPVDQCLADDCAPPAQAFGAQDADIWFLKHGQ				NA	NA	NA	NA	NA
D1-36_03703	1602			hypothetical protein	ATGAGTCGTTCTTCCCGGGGGGCGCTGGTCAGGCTCGTCTGGCTGCTATGGGTGTTGCTGGGGCCGATGGCTCAGGCGGCCACTGGCCCGGAAGTCGCCCAGCTACTCAACAACCGTTACCGCGCCACCCCACAGGAATGCCCCGGCAATCATGCGGCGTATTACTGCAGCGGGGTGCTGGTCAGCGGGCTGGCGGGCAATTTTACGGTGAAGTTCTGGGAACATGGCCCCACGGCCATTGAACTGGGCGCGCGCAGCTTTTCCTATCTGCGGCGCGATGTGGGCACTCGCACCCTGACGCAGCCCAGCGGAATGGTGTTCAGTGATGCGTTTACTGCCATCAGCCAAGGCAAGCCGCTGGAGGTGCTGTGCGCCTATCCGCTGGTATCGGCGAATCGGGATAAATACGGTTGCGGCATCGGTGGCAGCGAGAATGATCCGGGTTCCTGCGCCGCCCAGGGCGTTAGCGATGCCCCAGGCTGGCTGGCGTTTTTCCAGCAACAAGGCCAGGAACCGTCGTTGCAATGTTCACTGAGTAGCCGGATCGCCGGGCAATTTCGCGCCAGTCTGCTTGCCCATGAGCAACTGGGCGGTAGTTGGGTTGCCCAGCCCAATCAATTGCAGGTACGCAACTGGGATTCCCAAGCCCCGGCGCAGGTGCCTGTGCAGGCGCTGTTTTATGACGTGCATGGGGCCAAGGGACTGCGCGTGGCCCAATCTGACCAGAGGGATTATTACGCGGCCACGGGCGAGTGGCTGCCGATTCTGCGGCTGGATATGACGCAGCCCGACGGCTTGGTGTTTGGTTTCGATTTGCAAGAACAGTTGTATGTCGGTTATCAGGTGGCCGGACGTTTGAATGCGCGCTATGCCAATACTGCTACTACCTGTCCCGACGGCAGCGCGGCGTTCAATTGCAACGGCGTTCTGATACGTACCACCGACGCGCATCCGGATTTTCATGCTTGGAATCCAAGTCCTGGTTCGGTAGAGCGCAATGGTGTGGCATTTTCCTATATGCGCGCCGACATACCCTTTCCGATTCTCGCTTGGGATAAACATCAAGGGTTGATAGTCAAGGAACTCGCTGCACCCATGTCATATCGCCTGATCGTGCGATGTTCCTATCCTTATGACGGATCAACCTTTTCTAGAAGTGACAGTTGTAACGAACACAGTGTTAACCCTGCCGTAAGCCGCCCGTGCGCTGAACAGGGAATTTCCACGGTCGAGCAATGGCTGGTTTATTTTCGCTCTCTTGCTAATCCGATCACAGGATGCAGCTTCAGAGGGGATGCGACGTATTTTGCCTTGAGCATACAAGCCCGGATCCAGCTTCCTGAGAACTTCAAGCGGGGGCACAACGAAGTCATCATTGCCAGTTGGGACCAGGACATTCCAGAACGGATTCCTCTGGAAGCGTTTTTCTATACTGTTTCCAGCCAGGCCCTACCCCAGGCTCGGTATTTTCAGTGGAATTATTTCGAGCAGACCGGAAAATTTTTGCCGATCGTCAAACTCAATCCAACCCCTACGGACGAGGCGCCGAGCTTTTCCTTCGATCCGCGAGATCAGGTGGAGCCTGGAGCACCAGGCATATGA	MSRSSRGALVRLVWLLWVLLGPMAQAATGPEVAQLLNNRYRATPQECPGNHAAYYCSGVLVSGLAGNFTVKFWEHGPTAIELGARSFSYLRRDVGTRTLTQPSGMVFSDAFTAISQGKPLEVLCAYPLVSANRDKYGCGIGGSENDPGSCAAQGVSDAPGWLAFFQQQGQEPSLQCSLSSRIAGQFRASLLAHEQLGGSWVAQPNQLQVRNWDSQAPAQVPVQALFYDVHGAKGLRVAQSDQRDYYAATGEWLPILRLDMTQPDGLVFGFDLQEQLYVGYQVAGRLNARYANTATTCPDGSAAFNCNGVLIRTTDAHPDFHAWNPSPGSVERNGVAFSYMRADIPFPILAWDKHQGLIVKELAAPMSYRLIVRCSYPYDGSTFSRSDSCNEHSVNPAVSRPCAEQGISTVEQWLVYFRSLANPITGCSFRGDATYFALSIQARIQLPENFKRGHNEVIIASWDQDIPERIPLEAFFYTVSSQALPQARYFQWNYFEQTGKFLPIVKLNPTPTDEAPSFSFDPRDQVEPGAPGI				NA	NA	NA	NA	NA
D1-36_03704	2094			hypothetical protein	ATGAACGACACGCCAGAGAACACTGCAGCAAACGCTTTGTTGCCACCGCCTTCCGTGGAGGGAGTGGGTGAGGACGCGACACTTGATCCCGATTCGGTGCCCAAGGGTATCAGGGTTCAAATTCCCGCAGGCAGCTTGGTCGAGGGTGATCTTGCAGTGCTCAGTTGGGCGGACGCGGCAGGCGTCGTGGCCGCTTACACGCGCGACAAGCCCTATACCTATAACGACGTGGGCCAACCTTTGTACTTCACCGTAGCCCAGGCAGAGGCTCGCCGGTTCCTCGATCAAAGCGTGGCGCTGAGCTACACGGTGCAGCGCTTGGGGGGCGGCGCAGACGAAGACTCTGAAGTCTTCAGCTTTCGGGTGGCAAAGCTGCCGCTGCCCGCGCCGACGATGCTGAAGGCCGAGGACAACCAACTGAACCCGGACGACTTGTTAGGTGACGCCACGGCACTGATACCGCGCGAAGCCTGGCTGAAAGCTGGCGATGTACTGCGGGTGAACCTGGCGGGCGCGGCGGGTGCCGGCAGTACCGAGGTGACGCATACGGTCCTGCCGAGCGAGGCCGGGCAGGCGCTGGAAGTTACCATTCTCTATAGCGTGATCAACGCCAACGAAGGCCGGTCTGTCGTGTTGTCCTATACCGTCAACGGGCGGGACCCGAGCCCAGAGGCCGTGTATTCAATCAAGCGAGACATTGGCGCCGGGGAACTGCGGGTCATGGGCGCGCGGTACAACCGTGGCTTGTATCGCTGTTCGGGTTGTTCGCGGCGCTTGAGTGCGTTCCAGGCCGCCACGGGGCGGCCGATCCTGGCGCAATGGCAGTATGACGGTGATGACAGCTGGGTCGCCGGTACGACGTTCCGTGACACCGATGCGTCCCGACTCCTGCATGTGCGCTCAACCGATTCCCAGGTCACCCTCAACCCGGCCAACGTCTTTGGCAACGGCGTCGATACCCTGTTTACCGGCGATGCGGCCTTTGTTGCTCGGCGGAATATCGGCGATCTGGTGGGCTGGGGCAATGCTGTCGAGGGCGCGAAGATTCCGCCAACCATCATCAGCATGGACGATATCGTTGAGGTGAGTGCCACGATGGCGGCGTTTGCCGCGCGCCGCGCCAATGGCAACGTGGTTGCCTGGGGGCTGGCGACCCATGGCGCGGCCATGGGCGATATTTCCAGGCTGGATTTTGCCCAGGTGGTGAGCAATGGCGCGGCGTTCGCCGGTCTCAAGCGCAGCGGCCAACTGGTTGCCTGGGGCGACGGGCCCAGTGGTGGAGTGCTGTCGGAGTCGGTCGCAGAGTGTACCGATATCGTTCGGGTGTATGGCGGGGCGACGGCCTTCACCGCCATCCGCGGCACGGGTGCACTCGTCGCTTGGGGTAACGTCGCCCATGGCGGCGAGCTGGGCGAAGAGATCGCACAGCTGACTGACATCGAAGATGTGATCGGCAACTTTGGCGCGTTCGCCGCCCTGCGTGCCAACCGTCGTCTGATTGCCTGGGGGAGCGACGCGCAAGGTGGGGTGCTGCCGGAAGAGATTGCCTATCTGGATGACGTGATCGAGTTGAGTTGCGCCAATGCCCAGGCCTTCGTCGCCCGGCGCGCCAGCGGCAACATTGTCGCTTGGGGAGCGGCGACTCACGGTGGGGTATTGCCGGACCTTATCAAGGACCTGGACGATGTCGTCGAGGTGACGGCCAATTGGCAGTCGTTTGTCGCCCGTCGGGAAAATGGCCGTGTAGTGGCCTGGGGAACCGTGGAGAGCGGTGGCGAACTCAGCGATGACATCGCCCGGCTGAATGACATTGTCCAGGTGGTTGCGTCATCCAAGGCTTTCGCGGCCCTGCGCGAGGATGGCAGCGTGGTCGCCTGGGGCGACGCCACGGTGGGGGGAGATTCGACTCCGGAAGATGAGTCGTTGATCAATGTCCTTGCCATCTACGGCAACTCACATGGGTTCACTGCCTTGACTGGCGACGGCCGGGTGGTGACCTGGGGCCATGCCCTTGGAGGCGGAGACCGTGACGCCGTGCAGTCTTTGCTCAATGGCCAGGTTTCTTATTACCGGTCAGCCAGGGCACTGGCATGA	MNDTPENTAANALLPPPSVEGVGEDATLDPDSVPKGIRVQIPAGSLVEGDLAVLSWADAAGVVAAYTRDKPYTYNDVGQPLYFTVAQAEARRFLDQSVALSYTVQRLGGGADEDSEVFSFRVAKLPLPAPTMLKAEDNQLNPDDLLGDATALIPREAWLKAGDVLRVNLAGAAGAGSTEVTHTVLPSEAGQALEVTILYSVINANEGRSVVLSYTVNGRDPSPEAVYSIKRDIGAGELRVMGARYNRGLYRCSGCSRRLSAFQAATGRPILAQWQYDGDDSWVAGTTFRDTDASRLLHVRSTDSQVTLNPANVFGNGVDTLFTGDAAFVARRNIGDLVGWGNAVEGAKIPPTIISMDDIVEVSATMAAFAARRANGNVVAWGLATHGAAMGDISRLDFAQVVSNGAAFAGLKRSGQLVAWGDGPSGGVLSESVAECTDIVRVYGGATAFTAIRGTGALVAWGNVAHGGELGEEIAQLTDIEDVIGNFGAFAALRANRRLIAWGSDAQGGVLPEEIAYLDDVIELSCANAQAFVARRASGNIVAWGAATHGGVLPDLIKDLDDVVEVTANWQSFVARRENGRVVAWGTVESGGELSDDIARLNDIVQVVASSKAFAALREDGSVVAWGDATVGGDSTPEDESLINVLAIYGNSHGFTALTGDGRVVTWGHALGGGDRDAVQSLLNGQVSYYRSARALA				NA	NA	NA	NA	NA
D1-36_03705	912			hypothetical protein	ATGTCCGGTACGCCTGAACGTGCGGTAAACCTGCCTCCCCCGTCGGTGGATGAAGCGCCTGACGGCGTCCTCGACCCTGCCGATATCCCGCCTGATGGCGCCCGTGTCCGGCTCAAGCGCTCTGCCGCCGATACTGGCTGGCAGAAGGCGTTTGTCTTCGTCGGCCCTACCTATAGCAATCAGCTACCCGTAGGAACGACGATCAAGGATGTCGTGTTCTATGTCGAGGCAGAGCATTTTGTTGCTGATGCGGACGGTATCGTGATCATCCGTTATGACGTGCTGATGAGCGATGGCAGCACGGAACACTCGGAAAATCTTGAACTGAAAGTAGACGTTGGCTTCGAGGCGCCTGCGATATTCGATCTCAGCCAGGATAATTATGTCGCGGTGGCCGACAAGGCTCCGCTGGACGTACCGCCCTATGCCCGGATGACACGACTGGCGACCGGGGGCACCCCGCCCTATCGCTATGAAAGCAGCAACGAGTACGTGGCCAGCGTCGATGCCCAGACCGGCGAGGTGACCGCCAGGGGCAACGGCCAATGCACGATCACTGCCACCGACAGCCTGAATCAGCCGCGCCAGTATGAGCTGACCGTCAAGGGCATCCGGCAAGTGCAGTGGCTGAGTAACAGCGCCGATTGGCAGGGCATGACCGCGGTTTGTGATGTCGCCGGCGTGGATATCGTCGCGCGATCGGACCTCGACCGGTTACGGGCAGTGTACAAACACCCGGATATTGGTGAGGCGGTCGGGGAGTATCTGGGTTGGTTGCCCTATCCGTTCTGGACCGGTGACGCGGCGGGGGCGGGTACCTATTGGATCTATGACATGGACACCGGTGACAAGACGTCAGCCGATGCCGGCGCCCATCACCAGGCACTCGGTATCTCCAAACGAGTGTCATGA	MSGTPERAVNLPPPSVDEAPDGVLDPADIPPDGARVRLKRSAADTGWQKAFVFVGPTYSNQLPVGTTIKDVVFYVEAEHFVADADGIVIIRYDVLMSDGSTEHSENLELKVDVGFEAPAIFDLSQDNYVAVADKAPLDVPPYARMTRLATGGTPPYRYESSNEYVASVDAQTGEVTARGNGQCTITATDSLNQPRQYELTVKGIRQVQWLSNSADWQGMTAVCDVAGVDIVARSDLDRLRAVYKHPDIGEAVGEYLGWLPYPFWTGDAAGAGTYWIYDMDTGDKTSADAGAHHQALGISKRVS				NA	NA	NA	NA	NA
D1-36_03706	2490			hypothetical protein	ATGGACATCCAATCTTCCGCCTTGAGCGAATTGTTCACGCTATACCCTGTGATCATTATGGGATGGGTAACGCCAGTGAAGCCGGCGGATCGTGCGCATGGCGGTATTCCCAAGAGCCTTTACGACGATCAGCCCAGGGGACTGAGATGTCTGATCGATCCGTGGACCGAACTTCAGCGGCGTTCCTGGACAATGGCGGTGGATGATCGAGCGGACTTGTACGTCAACGACGATCCTTTTCCGGTGGCTGGCAAGGACGTAGGGCCAGGAGAAGAGCAATTGCGAATGGAGTTGCATGTGCCCCATGGCCGTTTATTGGATGGTGTCAATCGGCTGCACTACAAAGTAACCCGTCCCGGCCAGAACGGTGCGCCATCCAGGGATTTGCTCGTACTTTATCACCTCAGGGCGCCGGGCGAGCCTGCGCCCCAAGGTCTCGACCTGGTGATTCCACCCGACGTGATTGCCGACGGAGTCAGCGCCGAACGGGCGGCGCAAGGTGTAGCGTTTGGTTTTACTTATTCCAACCGGCGGACCTATGACCGCATCAATTTTTTGATAGGCAATGCGACGGTTCCATTTGAGGTATTGGACGGTTCGGTGCCCGTGGTGCATACGCTCTTTACCGATACATTCGTACAGGCAGGGGACAATCCAGACACGCCTCTCGAATTCCGGGTGATGGACCAACTGGGCAACTCCAACCAATCAGCGATCAAATACATCGCTGTCCACCTTGATCAGATCGAGCCGGAGCTACCGGTACCCATCGTCGAAGGTGTGCAGGACGGCGGCACGCTCGATCCCTCTCAAACAGTCCAAGTCTGGACTCGAGTACCCGGTGATAGATTGAACCCTGGTGATGACGTCACCGTAACCTGGACGGACTCAAATGGAGCGATCACGCCCTACGTCTCTCCACCCAAACCGTATACGGCCAACGACCAGCCCAATAATTATCTGCGGTTTCTGATCCCTGCGGCTGATGTTCTGAGATTCCTCGGGAAGAACGTGAGAGTCACCTATACGCGGGATCGAAACGGGACGATCACCGGACCATCACTGGCGTTCAATATGCGGGTTGAAACGCCTGTATCGCAGGAGCCGTTCAAGGTCATGGGCGCGCGTTTCAACCGCACCACCTATCGGGCTTCCGGCAGCTCACGGTTGCTGAGCGCGCTGCACGCCACGACCCTGCAGCCGTTGCGGGTCGAGTGGAAATACCTGGATGAATCGAGCTGGAGTGCTCCTTCCGCTAGCTGGCGTGATACCCAACCGTCCAAGCCCTTGCAGGTACGCTCCAGCAGCCATGAGGCGACAGTGAACCCGGCGAATATTTTCGGCAATGGGGCCGATACGCTTACCAATGGTGGTGCGGCTTTTGTCGCCTTGCTCGACCAAGGCAGTGTGGTTGGCTGGGGCAATTCGGATTTCGGCGCGGCACCTCCTGCCTTGAACAACATTGTCGAAATAAGCTGCACCCAGAGCGCTTACGCGGCGCTGGACAGTGGCGGCACTGTCCATGTCTGGGGTGATCCGGCCGCAGGCGGGATGATGGGAAGCGTATTGCCTTATGGCTTCGCTGATTTGACCGCCAATGGCAATGCATTTGCCGGACGCAAGACCAGCAACAACAGCTTGGTGGCCTGGGGGAGAGGTCAGCAGACGGATTTGATCCCCCCGGAACTGGGCGGGCTCCCCGGAACGACACATGTTTACGGCGCCTCCCAGGCATTTGCGGTTCGTCGCCTGAATAACCCAGTCGTGGCCTGGGGTCGAAACTGGGACGGTGACTACGGCGGTACTATTCCTGTGGGCCTCGTCATCACTGACGCGGTGGATATCATGGGCAGTTTCGCCGCTTTCGCGGTGTTGCGTACTGGCGGCCGAGTGGTGGCATGGGGTAATCCTGCCTATGGCGGCACGTCACCAAATCTCTCCGGCATTGCTTCTCTGGGGTGTTCAAACGCCCAGGCGTTCTGTGTCCTGAATAACAGTCAGCAGGTGCAATCGTGGGGCACACCGGATTACGGAGGCGGCGGGGTTCCGTCACCCAACAGCAACGTCGTCGAAGTCGTCAGCACTTGGCGCGCATTCGCCGCGCGTCGCAGTGACGGTACCGTGGGCGCATGGGGGCGGGTTAGCGAGGGTGGAACCGCGCCGCCGGGGCTGGACAACGTGGTGCAGATAGCTGGCAGTTCGGAGGCTTTCGCCGCGTTGCGCAGTGACGGCACGATCGTAGTCTGGGGCAATCAGTCGGTGGGCGGCGTGGCACCGACCCTGACTAACGTCTTGGCCCTCTACAGCAACTCTCATGGTTTTACCGCATTGACCTCTACGGGCGACGTGGTCTCCTGGGGGCATTCCATCGGCGGCGGGAACAATGCGAGCGTAATCCATCTGTTGCGCAACAACGTTTCCTATTACCGCTCGCCACCGGCACCGAGACCGTTGGCCGCCCAGGCTGAGCACGCCTCCAGCATCTCCTGA	MDIQSSALSELFTLYPVIIMGWVTPVKPADRAHGGIPKSLYDDQPRGLRCLIDPWTELQRRSWTMAVDDRADLYVNDDPFPVAGKDVGPGEEQLRMELHVPHGRLLDGVNRLHYKVTRPGQNGAPSRDLLVLYHLRAPGEPAPQGLDLVIPPDVIADGVSAERAAQGVAFGFTYSNRRTYDRINFLIGNATVPFEVLDGSVPVVHTLFTDTFVQAGDNPDTPLEFRVMDQLGNSNQSAIKYIAVHLDQIEPELPVPIVEGVQDGGTLDPSQTVQVWTRVPGDRLNPGDDVTVTWTDSNGAITPYVSPPKPYTANDQPNNYLRFLIPAADVLRFLGKNVRVTYTRDRNGTITGPSLAFNMRVETPVSQEPFKVMGARFNRTTYRASGSSRLLSALHATTLQPLRVEWKYLDESSWSAPSASWRDTQPSKPLQVRSSSHEATVNPANIFGNGADTLTNGGAAFVALLDQGSVVGWGNSDFGAAPPALNNIVEISCTQSAYAALDSGGTVHVWGDPAAGGMMGSVLPYGFADLTANGNAFAGRKTSNNSLVAWGRGQQTDLIPPELGGLPGTTHVYGASQAFAVRRLNNPVVAWGRNWDGDYGGTIPVGLVITDAVDIMGSFAAFAVLRTGGRVVAWGNPAYGGTSPNLSGIASLGCSNAQAFCVLNNSQQVQSWGTPDYGGGGVPSPNSNVVEVVSTWRAFAARRSDGTVGAWGRVSEGGTAPPGLDNVVQIAGSSEAFAALRSDGTIVVWGNQSVGGVAPTLTNVLALYSNSHGFTALTSTGDVVSWGHSIGGGNNASVIHLLRNNVSYYRSPPAPRPLAAQAEHASSIS				NA	NA	NA	NA	NA
D1-36_03708	714	purC	COG0152	Phosphoribosylaminoimidazole-succinocarboxamide synthase	ATGGAAAAACGTGAAGAACTCTACCGCGGCAAAGCGAAGTCGGTTTACAAGACCGACGACGCTGACCGCTTGATCCTGCTGTTTCGCAACGACACTTCGGCGTTCGACGGCAAGCGCATCGAACAACTCGACCGCAAGGGCATGGTGAACAACAAGTTCAACGCCTTCATCATGCAGAAACTCGAAGCCGCCGGCGTGCCGACTCAGTTCGACAAGCTGCTGGGCGACAACGAGTGCCTGGTCAAGAAGCTGGACATGATCCCGGTCGAATGCGTCGTGCGTAACTACGCCGCTGGCAGCCTGGTCAAGCGCCTGGGCGTGGAGGAGGGCATGAAGCTCAACCCTTACACGTTCGAGCTGTTCCTGAAGGACGACGCCAAGGGCGACCCGTTCATCAACGAATCCCATGTCGTGGCCTTCGGTTGGGGCACCGCCGAGCAACTGGCTCGCATGAAGGAACTGTCCCTGAAGGTCAACGAAGTGCTGACCAAGCTGTTCGACGACGCGGGCCTGCTGCTGGTGGACTTCAAGCTTGAATTCGGTGTGTTCAGCGATGGCTCCATCGTCCTGGGCGACGAGTTCAGCCCGGATGGCTGCCGCCTGTGGGACAAGGATACCAAGAAGAAAATGGACAAGGACCGCTTCCGCCAAGGCCTCGGTGACGTCATCGAAGCCTACGAAGAAGTCGCCCAGCGCCTGGGTGTACCGCTGTAG	MEKREELYRGKAKSVYKTDDADRLILLFRNDTSAFDGKRIEQLDRKGMVNNKFNAFIMQKLEAAGVPTQFDKLLGDNECLVKKLDMIPVECVVRNYAAGSLVKRLGVEEGMKLNPYTFELFLKDDAKGDPFINESHVVAFGWGTAEQLARMKELSLKVNEVLTKLFDDAGLLLVDFKLEFGVFSDGSIVLGDEFSPDGCRLWDKDTKKKMDKDRFRQGLGDVIEAYEEVAQRLGVPL	PGPT0021565_4194	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021565-purC-K01923	NA	NA
D1-36_03709	759	yycJ	COG1235	Putative metallo-hydrolase YycJ	ATGCGTTTTGCCGTTCTCGGCAGCGGTAGCCAGGGGAACGGCACGCTGATAGCCAGTGCTGGGACCTACGTTCTGGTCGATTGTGGTTTCTCCCTGCGGGAAACCGAGAAGCGCCTGCTGCGCCTGGGTGTGCACCCGGCGCAACTGAGCGCGATATTGGTGACCCACGAACATGCCGACCACGTGCATGGCGTGGGTTTGCTGTCTCGGCGCTACAATCTGCCGGTGTACCTGAGCCGTGGGACGTTCGAAGGCCTGCGCAAACCCATCGAGCCAGCTGGTTTCGTGGCCGGCGGCGAGCAACTGCGTGTCGGCGGCCTGGATATCAGCGTGGTCAGTGTGGCCCACGATGCCCGGGAGCCAACCCAGTATGTGTTCAGCGACGGCGAGCGGCGCTTTGGATTGCTCACCGACCTGGGATCGTATTGCGACAGGGTCATGGACAGCTACCGGGACCTCGATGCGTTGATGATCGAGTCCAACCACTGCCGGGACATGTTGGCGCGTGGGTACTATCCGTATTTTCTCAAGCAGCGGGTAGGCGGGGAGCACGGACATTTGAACAACCACCAGGCGGCATACCTGGTGGCCGAGTTGGGCTGGCAAGGCCTGCAACACCTGGTCCTGGCCCATTTGAGCAGCAAGAACAACCTGCCGCAGCTGGCCCGGCAATGTTTCGTCGACACCCTTGGGTGCGACCCGGACTGGCTGCAACTGGCCGATCAAGATTCAGGGCTCGACTGGCGACATATCGCCTAG	MRFAVLGSGSQGNGTLIASAGTYVLVDCGFSLRETEKRLLRLGVHPAQLSAILVTHEHADHVHGVGLLSRRYNLPVYLSRGTFEGLRKPIEPAGFVAGGEQLRVGGLDISVVSVAHDAREPTQYVFSDGERRFGLLTDLGSYCDRVMDSYRDLDALMIESNHCRDMLARGYYPYFLKQRVGGEHGHLNNHQAAYLVAELGWQGLQHLVLAHLSSKNNLPQLARQCFVDTLGCDPDWLQLADQDSGLDWRHIA				NA	NA	NA	NA	NA
D1-36_03710	1116	bamC		Outer membrane protein assembly factor BamC	ATGAAGCGAATGGCCGGACTTTCCGCACTTGCCTTGATTATCTCCAGCACCAGTGGCTGCGGGTGGATCTGGGGACCGGATGGTTACTTCCGCGACCGTGGTAGCGACTACCTCGAAGCGCAACAGACTGCACCGATGCAACTGCCACCGGACGTCAGCGTCGCCAAGCGTTTGGATCCGCTGCTGCCGATCCCGCGCAACGTCGCTGACGACAGCGTCAAGGGCGAATACGTAGTCCCGCGACCACAGCCGCTGTCGGCCGTGGCCGATGCCAGCGACTACACCCTGCAAAAGAGCGGTGACTCCAGCTGGGTCATGGGCCAGCACCCACCGGCCGAAGTCTGGCCGGTGGCGATCCAGTTCTTCCAGGACAACGGTTTCCGCCTGGACGAGCAGCGCCCACAGACGGGTGAATTCACCACCACCTGGCAGCGTTCCGATGAACTGTCCGCCGCCATGGCCAAGCGCCTGAGCGCCGCCGGTGTCTCGGCAGACAGCGAAACCCGCGTGCGCGTACGGATCGAGCCGGGCGTACAGCGCAACACCAGTGAGATCTACGTGGTCAGCGCCGAGCGTCCCGCCGGCAGCACCGCCGACGTGGCCTTCACCAATCGCTCGGTCAATACCGGCCTCGACGCCGCGCTGGTGGACGACATGCTTGCCAGCATGAGCCGCACCGCGGAGCAGGGCGGTTCGGTTTCGATGCTCGCGACCCGCGACTACGACACGCCAAGCCGCGTCAGCCTGAGCGAAGACGGCAGCGGCAACCCGGTGCTCAACGTCGGCTCCGACCTCGACCGTGCCTGGTCGAGCGTGGGTCGTGCGCTGGAGCAGGGCGAATGGCGCGTTGAAGACATCAACCGCAGCCTGGGCCTGTACTACATCAACCTGGCTGAAAAAGCCGAGAAGAAAGACGAGAAGCCTGGCTTCTTCAGCAACCTGTTCGGCAGCGCGCCGGACAAGGAAGAAATCGAAGCCCGCGCCGAGCGTTACCAGGTTCGCCTGAGCAAGGTCGGCGACAACGTCCAGGTCACCGTCGAGAAGAACATCAACACCGTGGCGCCGGCCGATGTAGCCCGCAAGGTGTTGGGCGTGATTCAGGACAACCTGGGCTGA	MKRMAGLSALALIISSTSGCGWIWGPDGYFRDRGSDYLEAQQTAPMQLPPDVSVAKRLDPLLPIPRNVADDSVKGEYVVPRPQPLSAVADASDYTLQKSGDSSWVMGQHPPAEVWPVAIQFFQDNGFRLDEQRPQTGEFTTTWQRSDELSAAMAKRLSAAGVSADSETRVRVRIEPGVQRNTSEIYVVSAERPAGSTADVAFTNRSVNTGLDAALVDDMLASMSRTAEQGGSVSMLATRDYDTPSRVSLSEDGSGNPVLNVGSDLDRAWSSVGRALEQGEWRVEDINRSLGLYYINLAEKAEKKDEKPGFFSNLFGSAPDKEEIEARAERYQVRLSKVGDNVQVTVEKNINTVAPADVARKVLGVIQDNLG				NA	NA	NA	NA	NA
D1-36_03711	879	dapA_2	COG0329	4-hydroxy-tetrahydrodipicolinate synthase	ATGATTGCGGGCAGTATGGTGGCACTGGTCACACCCATGGATGCACAAGGGCGTCTTGACTGGGCCAGCCTCAGCAAACTCGTGGACTTCCACCTTGAAAACGGCACCCATGCCATTGTCGCCGTCGGCACCACCGGCGAGTCGGCTACCCTTGATGTCAACGAACATATCGAAGTCATCCGCGCCGTCGTCAAGCAGGTCAACGGGCGCATTCCGGTGATCGCCGGCACCGGAGCCAACTCGACCCGCGAAGCCGTCGAACTGACCCGCAACGCCAAGGAAGCCGGCGCCGATGCCTGCCTGCTGGTCGTTCCGTACTACAACAAGCCGACCCAGGAAGGCTTGTACCAGCACTTCAAGTACATTGCCGAAGCGGTCGACATCCCGCAGATCCTCTATAACGTTCCCGGCCGCACCTCCTGCGATATGCAAGCCGAGACCGTGATTCGCCTGTCCACCGTGCCGAACATCATCGGCATCAAGGAAGCCACGGGCGACCTGGTACGGGCCAAGGCCATCCTCGATGGCGTCAGCAAGGATTTCATCGTGCTGTCTGGCGATGACCCGACAGCCGTCGAGCTGATCCTGCTGGGCGGCAAGGGCAATATTTCCGTGACCGCCAACGTCGCTCCGCGAGAAATGGCCGATCTGTGCGAGGCCGCGCTCAAGGGCGATGCCGAGACCGCACGTGCAATCAACGAAAAACTGATGCCGCTGCACAAGGACCTGTTCATCGAAGCCAACCCGATCCCGGTGAAGTTTGCCTTGGTCGAAATGGGCCTGATGCACGAAGGCATTCGCCTGCCGCTCACCTGGTTGAGCAACACCTGTCACGAACCGCTGCGGCAGGCCATGCGCCAGTCCGGCGTCCTGGTTTAA	MIAGSMVALVTPMDAQGRLDWASLSKLVDFHLENGTHAIVAVGTTGESATLDVNEHIEVIRAVVKQVNGRIPVIAGTGANSTREAVELTRNAKEAGADACLLVVPYYNKPTQEGLYQHFKYIAEAVDIPQILYNVPGRTSCDMQAETVIRLSTVPNIIGIKEATGDLVRAKAILDGVSKDFIVLSGDDPTAVELILLGGKGNISVTANVAPREMADLCEAALKGDAETARAINEKLMPLHKDLFIEANPIPVKFALVEMGLMHEGIRLPLTWLSNTCHEPLRQAMRQSGVLV	PGPT0002080_7806	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISM	CE-BACTERIAL_FITNESS-RHIZOPINE_BIOSYNTHESIS,PGPT0002080-dapA|mosA-K01714	NA	NA
D1-36_03712	561	gcvR	COG2716	Glycine cleavage system transcriptional repressor	ATGTCCACCCCCACAGTCCGCGAACAATTCCTTGTTATCAGTGCCCTTGGCGCCAACCCCATGGAGCTGACTAACGTCCTGTGCCGCGCCAGCCATGAAAATCGCTGCGCCGTCGTGACGTCACGCCTGACCCGTCATGGCGAGTGCAGCGCGCTCGTGCTGGAAATTTCCGGCAGCTGGGACGCGCTGGCCCGCCTTGAGGGCAGCCTGCCTGTACTGGCCAAGAAACATGCCTTCACCGTCAACGTGGTACGCAGCGCCGCCTTGGAGAATCGTCCCCAGGCCCTGCCTTATGTGGCTTACGTCAGCTCGGCCTACCGCCCGGACATCATCAACGAGCTGTGCCAGTTCTTCATGGACCACCACGTCGAACTGGAGAACCTGACCTGCGACACCTACCAGGCCCCGCAGACCGGCGGCACCATGCTCAACGCCACGTTCACCGTGACACTGCCGGCCGGCACCCAGATCAGCTGGCTGCGCGATCAGTTCCTGGATTTCGCCGATGCGATGAACCTGGACGCATTGATCGAACCGTGGCGCCCACAAAACCCAATGTAA	MSTPTVREQFLVISALGANPMELTNVLCRASHENRCAVVTSRLTRHGECSALVLEISGSWDALARLEGSLPVLAKKHAFTVNVVRSAALENRPQALPYVAYVSSAYRPDIINELCQFFMDHHVELENLTCDTYQAPQTGGTMLNATFTVTLPAGTQISWLRDQFLDFADAMNLDALIEPWRPQNPM	PGPT0026370_281	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026370-gcvR-K03567	NA	NA
D1-36_03713	474	bcp	COG1225	Peroxiredoxin Bcp	ATGGCCGTTGCCATCGACCAGCCGGTTACCGATTTCCAGGCGCCCGCCACCAGCGGGCAGACCATCAGCCTCGCGGCCCTGAAGGGCAAGCAAGTGGTCATTTATTTTTACCCCAAGGACAGCACGCCCGGCTGCACCACCGAAGGCCAGGGTTTCCGCGATCAGTACGCGCAATTCCAGGCCGCCAACACCGAAGTGTTCGGCGTCTCCCGGGACAGCCTCAAGTCCCACGAGAACTTCAAGTGCAAGCAGCAATTCCCCTTCGAGCTGATCAGCGACAAGGACGAAGCGGTTTGCCAGTTGTTCGACGTGATCAAGTTGAAGAAGCTTTACGGCAAGGAATACCTGGGCGTTGATCGCAGCACGTTCCTGATCGATAAACAGGGAGTGTTGCGCCAGGAATGGCGTGGCGTGAAGGTGCCGGGGCATGTGGATGCGGTGTTGGCGGCGGCTCAGGCCCTCGACAAGTCCTGA	MAVAIDQPVTDFQAPATSGQTISLAALKGKQVVIYFYPKDSTPGCTTEGQGFRDQYAQFQAANTEVFGVSRDSLKSHENFKCKQQFPFELISDKDEAVCQLFDVIKLKKLYGKEYLGVDRSTFLIDKQGVLRQEWRGVKVPGHVDAVLAAAQALDKS	PGPT0013120_2837	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013120-bcp|PRXQ|DOT5-K03564	NA	NA
D1-36_03714	1071			hypothetical protein	ATGTTCAAAGTGTTACGCGACTGGATTCAGCGCTACTTTTCCGATGAAGAGGCGGTGGTCCTGGCAGTGCTCCTGTTCCTGGCTTTTACCGCCGTGCTCACGCTGGGCGGCATGTTGGCACCGGTGTTGGCGGGGATGGTGCTGGCGTACCTGATGCAAGGGCTGGTCATCACTTTGGAGCGCTTGCGACTGCCGGGTTCGGTCGCGGTAGGGTTGGTGTTCGCGCTGTTCATGGGCGTGCTGGTGGTCTTCCTGGTGGTGATCGTGCCCTTGCTGTGGCACCAGTTGGTGACGTTGTTCAACGAATTGCCGGGGATGCTTGTCAAATGGCAATCGCTGCTGTTGCTGCTACCGGAGCGTTATCCCCACCTGGTCTCGGACGAGCAGGTATTGCAGACGATCGAAGTGGTACGCGGCGAGATCGGCAAGTTCGGCCAGTGGGCGCTGACGTTTTCGCTGTCCAGCCTGCCGTTGCTCGTGAACATCATGATCTATCTGGTGCTGGTGCCAATCCTGGTGTTTTTCTTCCTCAAGGACCGGGAAATGATCGGACGCTGGGTCCGCGGTTACCTGCCGCGCGAACGGGCATTGATCACCCGGGTGGCGCAGGAGATGAATCGGCAGATCGCCAATTACATCCGCGGGAAAGTCATCGAGATTTTTATCTGTGGCGGCGTCACCTACATCGGCTTCGTCGCCCTGGGGCTCAATTACGCCGCCCTGTTGGCGCTGCTGGTGGGTATTTCAGTGGTGGTGCCCTACGTCGGCACCGTGGTGGTGACCGTGCCGGTGGCATTGATCGCACTGTTCCAGTGGGGCTGGAGCGATCAGTTCATCTATCTGATGGCCGTCTACGGAATCATCCAGACCCTGGACGGCAACGTGCTCGTACCGTTGCTGTTCTCCGAGGCGGTGAACCTGCATCCGGTGGCGATTATCTGCGCAGTGTTGCTGTTCGGCGGATTGTGGGGGTTCTGGGGAGTGTTCTTCGCGATTCCCCTGGCGACGCTGTTCAAGGCGGTGCTGGATGCGTGGCCGAGCAAGGAGCCGGTGGTGGCGCCGTTGTTATAA	MFKVLRDWIQRYFSDEEAVVLAVLLFLAFTAVLTLGGMLAPVLAGMVLAYLMQGLVITLERLRLPGSVAVGLVFALFMGVLVVFLVVIVPLLWHQLVTLFNELPGMLVKWQSLLLLLPERYPHLVSDEQVLQTIEVVRGEIGKFGQWALTFSLSSLPLLVNIMIYLVLVPILVFFFLKDREMIGRWVRGYLPRERALITRVAQEMNRQIANYIRGKVIEIFICGGVTYIGFVALGLNYAALLALLVGISVVVPYVGTVVVTVPVALIALFQWGWSDQFIYLMAVYGIIQTLDGNVLVPLLFSEAVNLHPVAIICAVLLFGGLWGFWGVFFAIPLATLFKAVLDAWPSKEPVVAPLL				NA	NA	NA	NA	NA
D1-36_03715	240	tusA_2	COG0425	Sulfur carrier protein TusA	ATGACCGATGCTGTAGCCCACGATGCCGAGCTGGACGCCAGTGGCCTGAATTGTCCGTTGCCGTTGCTCAAGGCCAAGCTGGAACTCAATCGTCTGACCAGTGGCGCCGTGCTCAAGGTAACCGCCACGGACGCTGGCTCCCAGCGCGATTTCCGCACCTTCGCCCGGTTGGCCGGTCATACGCTGCTGCGTGAAGAGGACGAAAACGGCACCTACCGTTACTGGTTGAAAAAAGCCTGA	MTDAVAHDAELDASGLNCPLPLLKAKLELNRLTSGAVLKVTATDAGSQRDFRTFARLAGHTLLREEDENGTYRYWLKKA				NA	NA	NA	NA	NA
D1-36_03716	1434	bepA_2	COG4783	Beta-barrel assembly-enhancing protease	ATGACATTTCTGCGCCCCACCCTGCTGACGCTCGCCTGCCTGCTTGCCTCACCGGGCTTCGCCGACGACCTGCCGTCACTTGGCGACGCCAGTTCTGCCATCGTCTCGCCAGAACAGGAGCACCAACTGGGCCGCGCCTGGCTGGCGCTGCTGCGCAGCCAGGTTTCACAGCTCAACGACCCCCAGCTCAAGGACTACGTCGAAACCAGCGTCTACAAGCTGGTGGAGACCAGCCAGGTCAATGACCGGCGCCTGGAATTCATCCTGATCAACAGCCCGCAGCTCAACGCCTTCGCCGCACCGGGCGGAATCGTCGGGGTCAACGGCGGGCTGTTCCTCAACGCACAGACCGAAGGCGAATACGCGTCGGTCATGGCCCACGAGCTGGCGCACTTGTCGCAGCGCCACTTCGCCCGTGGCGTGGAAGCTCAACAGCGCATGCAAGTACCGATGATGGCCGCGCTGCTGGCTGGCATCGTGGTCGCCGCCGCTGGCGGGGGCGATGCAGGGATTGCCGCCATCGCGGGGACCCAGGCCGCCGCCATCCAGGAGCAACGGCGCTTTTCGCGCCAGAACGAACAGGAAGCCGACCGAATCGGCATCCAGAATCTGGAAAAAGCTGGGTACGACCCTCGATCCATGCCGACCATGTTCGAGCGTCTGATGCGCCAATACCGCTTTGACGCCAAGCCTCCGGAGTTTCTGTTGACGCACCCGGTCACCGAGTCGCGTATCGCCGACACCCGCAACCGCGCCGAACAGGCCAAGCCGGGGGGCATCGAGGACAGCATGCGTTATCAACTGATTCGTGCGCGCGTCCAGCTGACCTATGAGGAAACCCCAGGCCTGGCCGCCAAGCGCTTTCGCGCACTGTTGGACGAGAACCCCAAAAACGATGTGGCCCGCTATGGCCTGGCCATCGCCCAGGTCAAGGGTGGCCAGTTGAATGAAGCGCGGGAGAACCTCAAGCCGCTGCTGGCCAAATCACCCAACGAAATCATCTACAACCTGGCCCAAGTCGATCTGGACATTACCAACAACAAGCTGGCTGACGCCCAATCCCGCGTTGACCGGATGCTGGTTCAATACCCTGGCAACTATCCCCTCAACCAAGTGCGCGTTGACCTGCTGCTAAAGCAAAACCGCCCCGCTGACGCAGAAAAAGCCCTGGAGACGCTGCTCAAGAGTCGCCCGGACGATCCGGACGTCTGGTACATGGTTGCCGAGACGCGCGGCCTGTCGGGCAACATCATCGGCTTGCACCAGGCCCGCGCCGAATACTTCGCGTTGGTCGGCGACTATCGCCAGGCGATTCAACAATTGGACTTCGCCAAACGCCGCGCCGGCGGCAACTTTCCATTGTCGTCCCGCATCGACGCACGGCAGCGTGAGCTTATGGAACAGGAGCGAATGGTCAAGGACATGATGGGCTGA	MTFLRPTLLTLACLLASPGFADDLPSLGDASSAIVSPEQEHQLGRAWLALLRSQVSQLNDPQLKDYVETSVYKLVETSQVNDRRLEFILINSPQLNAFAAPGGIVGVNGGLFLNAQTEGEYASVMAHELAHLSQRHFARGVEAQQRMQVPMMAALLAGIVVAAAGGGDAGIAAIAGTQAAAIQEQRRFSRQNEQEADRIGIQNLEKAGYDPRSMPTMFERLMRQYRFDAKPPEFLLTHPVTESRIADTRNRAEQAKPGGIEDSMRYQLIRARVQLTYEETPGLAAKRFRALLDENPKNDVARYGLAIAQVKGGQLNEARENLKPLLAKSPNEIIYNLAQVDLDITNNKLADAQSRVDRMLVQYPGNYPLNQVRVDLLLKQNRPADAEKALETLLKSRPDDPDVWYMVAETRGLSGNIIGLHQARAEYFALVGDYRQAIQQLDFAKRRAGGNFPLSSRIDARQRELMEQERMVKDMMG				NA	NA	NA	NA	NA
D1-36_03717	1428	degP	COG0265	Periplasmic serine endoprotease DegP	ATGTCGATACCACGCTTGAAAACCTATCTCTCCATATTCGCCACCGTGCTGGTCCTCGGTCAGGCCGTTCCCGCAGCGGCGGTCGAATTGCCGGACTTCACCCAACTGGTCGAACAGGCTTCACCCGCAGTCGTGAACATCAGTACGACGCAGAAGCTGCCTGAGCGCCGGGTGATGGACCCACAGATGCCGGACCTGGAAGGTCTGCCACCCATGCTGCGCGAGTTTTTCGAGCGCGGAATGCCGCAGCCCCGTTCACCGGGTGGTGGCCGCCAGCGGGAAGCGCAATCCCTGGGTTCGGGTTTCATTATTTCGCCCGATGGCTACATCCTCACCAATAACCATGTCATCGCGGATGCCGATGAGATCCTGGTCCGCCTGGCCGATCGCAGTGAGCTCAAGGCCAAACTGATCGGCACCGATCCACGGTCCGATGTGGCCCTACTCAAAATCGAAGGCAAGGATTTGCCAGTCCTCAAGCTTGGCAAATCCCAGAACCTGAAGGCCGGCCAATGGGTCGTGGCGATCGGTTCGCCGTTCGGCTTTGACCACACCGTGACCCAGGGCATTGTCAGCGCCATCGGCCGCAGCCTGCCGAACGAGAACTACGTGCCGTTCATCCAGACCGACGTGCCGATCAACCCCGGCAACTCCGGCGGCCCGTTGTTCAACCTTGACGGTGAAGTGGTGGGCATCAATTCCCAGATCTACACCCGCTCGGGCGGGTTCATGGGTGTGTCCTTCGCCATTCCAATCGACGTGGCAATGGACGTTTCCAATCAGTTGAAAAGCGAAGGCAAAGTCAGCCGTGGCTGGCTGGGCGTGGTCATCCAGGAAGTGAACAAGGACCTGGCCGAGTCGTTCGGGCTGGAAAAACCCGCCGGTGCCCTGGTGGCGCAGATCCAGGAAGGTGGCCCGGCTGCCAAGGGCGGCTTGCAGGTTGGTGATGTGATTCTCAGCCTCAATGGCCAGCCGATCGTCATGTCTGCTGACTTGCCGCACCTGGTGGGTGCCCTGAAGGCCGGAGCCAAGGCCAACCTCGAAGTGATTCGCGAAGGCAAGCGCAAGAACGTCGAGTTGACCGTTGGCGCTATCCCGGAAGAGGGCAAGGAGCTGGATTCGCTGCCCAAGTCCGGCGTAGAGCGCAGCAGTAATCGCTTGGGCGTCGCGGTGGTCGAACTGACCGACGAGCAGAAGCGCACTCTGGAACTGCAGGGCGGCGTGGTGATCAGGGAGGTACAGGACGGTCCTGCTGCACTGATCGGCCTGCAACCGGGCGACATCATTACGCACCTGAATAACCAGGCCATCGGGTCCGCCAAGGAGTTCACCGATATCGCCAAGGCCCTGCCGAAGAATCGCTCGGTGTCGATGCGAGTCCTGCGCCAGGGACGTGCGAGCTTCATCACGTTCAAACTGGCTGAATAA	MSIPRLKTYLSIFATVLVLGQAVPAAAVELPDFTQLVEQASPAVVNISTTQKLPERRVMDPQMPDLEGLPPMLREFFERGMPQPRSPGGGRQREAQSLGSGFIISPDGYILTNNHVIADADEILVRLADRSELKAKLIGTDPRSDVALLKIEGKDLPVLKLGKSQNLKAGQWVVAIGSPFGFDHTVTQGIVSAIGRSLPNENYVPFIQTDVPINPGNSGGPLFNLDGEVVGINSQIYTRSGGFMGVSFAIPIDVAMDVSNQLKSEGKVSRGWLGVVIQEVNKDLAESFGLEKPAGALVAQIQEGGPAAKGGLQVGDVILSLNGQPIVMSADLPHLVGALKAGAKANLEVIREGKRKNVELTVGAIPEEGKELDSLPKSGVERSSNRLGVAVVELTDEQKRTLELQGGVVIREVQDGPAALIGLQPGDIITHLNNQAIGSAKEFTDIAKALPKNRSVSMRVLRQGRASFITFKLAE	PGPT0015105_3270	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
D1-36_03718	948	mucB	COG3026	Sigma factor AlgU regulatory protein MucB	ATGCGCGCCATACCTCTTTTATCGCTTCTGCTCGGTGGCTGGTGCGTGATTCCAGCCCATGCCGGCGAGGCTCAAGACTGGCTTAATCGTCTGAGTCAAGCCGAGCAACAGCAAAGCTTCCAGGGCACTTTCGTTTACGAGCGTAACGGTAGTTTTTCTACCCATAACATCTGGCATCGCGTCCAGGATGGCAAAATCCGCGAGCGGTTGCTCCAGCTCGACGGTTCGGCACAGGAGGTCATGCGCATTGATGGACGTACTCAATGCGTCAGTGGCACCTTGATCGCCGGGCTGGGAAATACGCCAGATGGCACTGCACGTGCGCTCGATCCGCAAAAACTCAAGAATTGGTATGACCTTGCCGTGATCGGCAAGTCGCGTGTGGCTGGGCGACAAGCTGTCATTGTGGCCCTGACTCCGAAGGACCAGCATCGCTACGGGTTCGAGTTGCATCTGGACAAGGAAACCGGGCTGCCGCTCAAATCCCTGCTGCTCAACGACAAGGGACAGTTGCTCGAACGCTTTCAATTCACCCGCCTGAACATCACCTCACCTTCGGACGCTGACCTGCAGGCCAGTGCCGAATGCACGGCTGTTGCGCAGGATCCGAACAAGGCGACGGCAGTGAAGACCGCATGGCGTTCGGACTGGCTTCCGCCGGGCTTTGAATTGACCAGCAGTGTTGCGCGAAATGACCCGGACACCAAAGTGCAGGTCAGCAGCCTCATGTACGACGATGGCCTGGCTCGGTTCTCGGTGTTTCTGGAACCGTTGAACGGCGCCACGGCTACCGATACCCGAACTCAGCTAGGTCCGACCGCCGCCGTATCCCGCCGTCTGACCACGCCGCAAGGTGAAATGATGGTCACGGTGGTAGGTGAGATACCTATCGGGACGGCGGAACGGATCGCGCTTTCCATGCGCTCCGACGTCGCGGCAGCCAAGTAG	MRAIPLLSLLLGGWCVIPAHAGEAQDWLNRLSQAEQQQSFQGTFVYERNGSFSTHNIWHRVQDGKIRERLLQLDGSAQEVMRIDGRTQCVSGTLIAGLGNTPDGTARALDPQKLKNWYDLAVIGKSRVAGRQAVIVALTPKDQHRYGFELHLDKETGLPLKSLLLNDKGQLLERFQFTRLNITSPSDADLQASAECTAVAQDPNKATAVKTAWRSDWLPPGFELTSSVARNDPDTKVQVSSLMYDDGLARFSVFLEPLNGATATDTRTQLGPTAAVSRRLTTPQGEMMVTVVGEIPIGTAERIALSMRSDVAAAK				NA	NA	NA	NA	NA
D1-36_03719	588	mucA	COG3073	Sigma factor AlgU negative regulatory protein	ATGAGTCGTGAAGCCCTGCAGGAATCGCTGTCCGCAGTGATGGATAACGAAGCGGACGAATTGGAATTACGTCGGGTATTGAATGCCTTCGACGATGTTGAAACCCGTGAAACCTGGGCGCGCTATCAGATCGCCCGGGCTGTCATGCACAAGGACCTGCTGCTTCCGCGTCTGGATATCGCTGCGGCAGTGTCTGCTGCGCTGGCTGATGAAGCCGTACCGGCAAAAGCCTCCCGCGGTCCATGGCGTAGCCTGGGTCGCCTGGCTGTAGCTGCTTCGGTCACCGTTGCGGTACTGGCCGGTGTGCGGTTGTACAACCAGGACGAGATCGCTGGCGTTCAAATGGCGCAGCAATCGAACCAGCCAAGCCTGGCAACGCCACAGGTCAAAGGTCCTGCGGTGCTGGCCGGCTACAGTGAAGGTTCGGAAGCTGCTGGCCCGATGAACAATGGTGTCCTGCAAGGACAACCAGGCTGGCACGATCAGCGCCTGCCTAACTACCTGCGCCAGCATGCCCAACAGGCTGCATTGAAGGGCACTGAAAGCGCGCTGCCCTACGCTCGCGCGGCCAGTCTGGAAAACCGTTAA	MSREALQESLSAVMDNEADELELRRVLNAFDDVETRETWARYQIARAVMHKDLLLPRLDIAAAVSAALADEAVPAKASRGPWRSLGRLAVAASVTVAVLAGVRLYNQDEIAGVQMAQQSNQPSLATPQVKGPAVLAGYSEGSEAAGPMNNGVLQGQPGWHDQRLPNYLRQHAQQAALKGTESALPYARAASLENR	PGPT0014976_792	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014976-rseA-K03597	NA	NA
D1-36_03720	582	algU	COG1595	RNA polymerase sigma-H factor	ATGCTAACCCAGGAAGAGGATCAGCAGCTGGTCGAACGCGTTCAGCGCGGCGACAAGCGAGCTTTCGATCTGCTAGTGCTGAAATACCAGCACAAAATTCTCGGGTTGATCGTGCGTTTCGTGCACGACACCCATGAAGCCCAGGATGTTGCCCAGGAAGCCTTCATCAAGGCCTACCGCGCACTTGGAAATTTCCGCGGGGATAGCGCGTTTTACACGTGGCTTTACCGCATCGCCATTAACACGGCGAAAAACTATCTGGTTTCACGCGGCCGCCGGCCGCCGGATAGTGATGTGAGTTCCGAAGATGCTGAGTTCTACGATGGCGATCATGGCCTCAAGGACCTCGAATCTCCGGAGCGTGCATTACTGCGGGATGAGATCGAAGGCACCGTCCATCGAACCATCCAGCAATTGCCTGAAGATTTGCGTACGGCTTTAACTTTACGTGAATTCGACGGTCTGAGTTACGAGGACATTGCGAGCGTCATGCAATGTCCGGTGGGTACCGTGCGCTCCCGGATCTTCCGCGCTCGGGAGGCCATCGATAAAGCCCTGCAACCGTTGTTGCAGGAAAACTGA	MLTQEEDQQLVERVQRGDKRAFDLLVLKYQHKILGLIVRFVHDTHEAQDVAQEAFIKAYRALGNFRGDSAFYTWLYRIAINTAKNYLVSRGRRPPDSDVSSEDAEFYDGDHGLKDLESPERALLRDEIEGTVHRTIQQLPEDLRTALTLREFDGLSYEDIASVMQCPVGTVRSRIFRAREAIDKALQPLLQEN	PGPT0014960_6447	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
D1-36_03721	1617	nadB	COG0029	L-aspartate oxidase	ATGAGCCAACAGTTCCAACATGATGTTCTGGTAATCGGCAGCGGTGCCGCCGGATTGAGCCTGGCGTTGACTTTGCCCGCGCATCTGCGCATCGCCGTGCTGAGCAAGGGCGACCTGGCCAACGGCTCGACGTTCTGGGCCCAGGGCGGCGTCGCGGCCGTGCTGGATGACGCCGACACGATCCAATCCCACGTCGACGACACACTCAACGCTGGCGGCGGGCTGTGCAATCAGGATGCGGTGCGCTTTACCGTCGAGCACAGCAGGGAGGCCATCCAATGGCTGATCGACCAAGGCGTGCCATTCACCCGCGATGAGCAGTCCGGCACCGAAGATGGCGGCTTTGAATTTCACCTGACCCGCGAGGGCGGCCATAGCCATCGGCGGATCATCCATGCCGCCGATGCGACCGGCGCGGCGATTTTCAAGACGCTGCTGGCCCAGGCCAGGCAACGGCCGAACATCGAGTTGCTGGAGCAACGGGTCGCGATCGATCTGATTACCGAAAAACGCCTGGGTCTGAACGGTGATCGCTGCCTGGGCGCCTATGTGCTCAACCGTGGCACGGGCGAAGTCGACACCTACGGGGCGCGCTTCGTGATCCTGGCCTCCGGTGGCGCGGCCAAGGTCTACCTCTACACCAGCAACCCGGACGGCGCCTGCGGTGACGGCATTGCCATGGCCTGGCGTTCCGGTTGCCGGGTGGCGAACCTGGAGTTCAACCAATTCCACCCGACTTGTTTATATCACCCGCTCGCCAAGAGTTTTTTGGTGACCGAGGCCCTGCGCGGCGAAGGCGCGCACCTGAAGCTGCCCAACGGGGAACGCTTCATGCAGCGCTTCGATCCCCGCGCCGAACTGGCCCCACGGGACATCGTTGCCCGAGCCATCGACCATGAGATGAAGCGCCTGGGCATCGACTGCGTTTACCTGGATATCAGCCACAAGCCCGAAGCGTTCATCAAGAGTCATTTCCCGACGGTCTACGAACGCTGCCTGGAATTTTCCATCGACATCACCAAGCAGCCTATCCCGGTGGTGCCGGCGGCGCATTACACCTGCGGCGGGGTCATGGTCGATCAGTTCGGTCGCACCGACGTCCCCGGCCTGTATGCCATTGGCGAAACCAGTTTCACCGGGCTGCACGGCGCCAATCGCATGGCCAGCAATTCGCTGCTGGAATGTTTCGTCTACGCCCGCTCGGCAGCGGCCGACATCCTTGAGCAATTGCCGCGCATCGACATACCTGCCGCCCTGCCCTCGTGGGATGCCAGCCAGGTCACCGACTCGGATGAAGACGTCATCATCGCCCACAACTGGGACGAACTGCGGCGCTTCATGTGGGACTACGTTGGGATCGTGCGCACCAACAAACGCTTGCAACGGGCCCAGCATCGGGTACGACTGCTGCTCGATGAGATCGATGAGTTCTACAGTAACTACAAGGTCAGCCGGGACCTGATCGAACTGCGCAACCTCGCGCAAGTGGCCGAACTGATGATTCGCTCGGCGATGGAACGCAAGGAAAGTCGAGGGCTGCATTACACCCTCGATTACCCAGACCTGTTGCCCGAGCCATTGGATACTATCCTGGTGCCGCCCACCTACGCCGGCTGA	MSQQFQHDVLVIGSGAAGLSLALTLPAHLRIAVLSKGDLANGSTFWAQGGVAAVLDDADTIQSHVDDTLNAGGGLCNQDAVRFTVEHSREAIQWLIDQGVPFTRDEQSGTEDGGFEFHLTREGGHSHRRIIHAADATGAAIFKTLLAQARQRPNIELLEQRVAIDLITEKRLGLNGDRCLGAYVLNRGTGEVDTYGARFVILASGGAAKVYLYTSNPDGACGDGIAMAWRSGCRVANLEFNQFHPTCLYHPLAKSFLVTEALRGEGAHLKLPNGERFMQRFDPRAELAPRDIVARAIDHEMKRLGIDCVYLDISHKPEAFIKSHFPTVYERCLEFSIDITKQPIPVVPAAHYTCGGVMVDQFGRTDVPGLYAIGETSFTGLHGANRMASNSLLECFVYARSAAADILEQLPRIDIPAALPSWDASQVTDSDEDVIIAHNWDELRRFMWDYVGIVRTNKRLQRAQHRVRLLLDEIDEFYSNYKVSRDLIELRNLAQVAELMIRSAMERKESRGLHYTLDYPDLLPEPLDTILVPPTYAG	PGPT0013355_1222	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013355-nadB-K00278	NA	NA
D1-36_03722	453			hypothetical protein	GTGTCCAACCCAAGTAATCGCTTCGAATGCCGCTGGCGCGCCTCCGGGCAGTTGTTGGCGGCCTATCTGCTGGCGCAGCTGTTCGCCCTTGGCTCGTTGTTGCTATTGGCCGTCCCACCCGGGTTCGCAGCCGTCGGCATCATACTGTGCCTGGGCCATGGCGCCTGGGTACTGCCGCGACACCTGCTGCTGACCCATCGACAGGCGTTTCGCGGCTTGCGTCGCGATGCCGGTGGCTGGCAGCTATGGAGCTCCGACGGCGGCTGGCAATCGGTGCAGTTGCGGCCCGATAGCCTCGCATTGCCGATAATCGTCGTGTTGCGCTTTCGGCTCCAGGGCGAGCGGCGGGTCCGCTCGCTGTGTGTGCCCCGTGATGCGCTGGCGCCGGATGTGCACCGACGCCTGCGAGTGCGGCTCAGGTTCAGCCGGCGTAGGTGGGCGGCACCAGGATAG	MSNPSNRFECRWRASGQLLAAYLLAQLFALGSLLLLAVPPGFAAVGIILCLGHGAWVLPRHLLLTHRQAFRGLRRDAGGWQLWSSDGGWQSVQLRPDSLALPIIVVLRFRLQGERRVRSLCVPRDALAPDVHRRLRVRLRFSRRRWAAPG	PGPT0027745_166	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-CptA-CptB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027745-toxin_cptA|ygfX-K19168	NA	NA
D1-36_03723	255	sdhE	COG2938	FAD assembly factor SdhE	ATGGTCGAAGATGTTGAACTGAATCGCCTCTACTGGCACAGCCGCCGCGGCATGCTTGAGCTTGACGTGTTGCTGGTGCCTTTCGTGAAGGAGGTCTACCCCCACCTCAATGAGGTTGACCGTGCATGCTACGTCCGCCTGCTGGAATGTGAGGACCAGGACATGTTCGGCTGGTTCATGGAACGCAGTGAGTCCGAAGATCCGGAGTTGCAGCGCATGGTCCGGATGATCCTGGACCGTGTCCAACCCAAGTAA	MVEDVELNRLYWHSRRGMLELDVLLVPFVKEVYPHLNEVDRACYVRLLECEDQDMFGWFMERSESEDPELQRMVRMILDRVQPK	PGPT0027750_1281	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-CptA-CptB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027750-antitoxin_cptB|ygfY|sdhE-K09159	NA	NA
D1-36_03724	942	ygfZ		tRNA-modifying protein YgfZ	ATGGCTGATTCCGCTTTTTTCTGCACCCTGTCCCACGAAGGCATTCTCGCGGTCCGCGGCGTGGATGCCGGTAAATTCCTGCAAGGCCAATTGACCTGCAATCTCAATTACCTGAGCGACAGCCGGGCCAGCCTCGGCGCCCGCTGCACACAGAAAGGCCGGATGCAATCAAGCTTCCGGATCCTGCTCGAGGGCGACGGCGTACTCATGGCGATGGCCAGCGAGTTACTCGAACCGCAACTGGCGGACCTGAAAAAATACGCGGTGTTTTCCAAATCCAAACTCACCGATGAAAGCCCGGCCTGGGTTCGCTTCGGACTGGAAAACGCTGACGCCGCCCTCAGCGAACTGGGCCTGGAGCTGCCGGCCGACACCGATAGCATGGCACGCCATGAATCCTTGATCGCCATCCGCGTATCCCCGGGCCGCGCCGAACTCTGGGTCCGCGCCGAACAGGCCGATACGCTGCGCGCTCGCCTGGGCTCGCAACTGGGCGAAGGCGACTTGAACCGCTGGCTGCTGGGCCAGGTTCGTGCGGGAATCGGCCAAGTCATGGCGGCCACACGCGAACTGTTCATTCCTCAGATGCTCAACCTGCAGGCCGTTGGCGGTGTCAGCTTCAAGAAAGGCTGCTATACCGGCCAGGAAATCGTCGCGCGCATGCAGTACCTCGGCAAGCTCAAGCGTCGCCTGTATCGCCTGCAACTGGACGCCGCCGAGTTGCCGGAGCCTGGCACCCCGCTGTTTTCCCCTACGCATGGCAGCTCGATCGGCGAGGTCGTCATTGCTGCCCAGGCCGAGCAGAATATTGAGCTGCTGGGAGTGTTGCAGGCCGAAGCCGCCGAGGATGGCAATTTGCACCTCGGTGCTTTGGAAGGACCCGCGCTACAATTGCTGGACTTGCCTTACGAACTGGACCGCGACCGCGAAATCCAGCGTTGA	MADSAFFCTLSHEGILAVRGVDAGKFLQGQLTCNLNYLSDSRASLGARCTQKGRMQSSFRILLEGDGVLMAMASELLEPQLADLKKYAVFSKSKLTDESPAWVRFGLENADAALSELGLELPADTDSMARHESLIAIRVSPGRAELWVRAEQADTLRARLGSQLGEGDLNRWLLGQVRAGIGQVMAATRELFIPQMLNLQAVGGVSFKKGCYTGQEIVARMQYLGKLKRRLYRLQLDAAELPEPGTPLFSPTHGSSIGEVVIAAQAEQNIELLGVLQAEAAEDGNLHLGALEGPALQLLDLPYELDRDREIQR				NA	NA	NA	NA	NA
D1-36_03725	822			hypothetical protein	ATGAGCGATTTGGCGGATAAGGTCCAGCGGGATTTGGTGGCGGCCATCGATAAGGACGACCTGGTCCTGCCCACACTACCGGAAGTGGCCATGCAGATTCGCCGGGCCGCGGAAGATCCGGAGATCAGTGTCAGTAACCTGAGCAAAGTGATCGGTCGTGACACGGCACTCTCGGCGCGCCTGATAAAAGTGGTCAACAGCCCGCTGCTACGCGCCACGCAGGAAGTGACGGACTTGCACACGGCCATCACTCGGCTGGGCGTCAACTACAGCAGTAACCTGGCGATTGGCCTGGTCATGGAGCAGATATTCCATGCCCGCTCCGATGTTGTGGAACAGAAGATGCGTGAGGTGTGGCGCAAGAGCCTGGAGATCGCCGGCGTCAGTTATGCGCTATGTCGCAGCTATACCCACCTCAAGCCTGACCAGGCCGCGCTGGGCGGATTGGTCCATCAGATCGGCGTGCTGCCGATCCTGACGTACGCCGAAGACAACAACGAATTGCTGTCGGATCCAATCAGCCTCAACCACGTCATCGAGACGATTCATCCCGTGTTGGGGGACAAGCTGCTCAGCGTCTGGGAGTTTCCGGAACGATTGATGAGGTTGCCGGGGTTGTATCTGGATTTCACCCGGGATTCGGAACAACTCGATTACGTCGACCTGGTGCAAGTCGCCGCACTGTACTGCTACAAGGACTCCGACCATCCGCTGAGCAGAATCGACGTATTTGGCGTCCCCGCGATCAAGAAGCTGGGCATTGACCTGGACAACCACGACCGCTGCGCGGATCTGGAAGAAGCGCGGTCGATGTTTTACTGA	MSDLADKVQRDLVAAIDKDDLVLPTLPEVAMQIRRAAEDPEISVSNLSKVIGRDTALSARLIKVVNSPLLRATQEVTDLHTAITRLGVNYSSNLAIGLVMEQIFHARSDVVEQKMREVWRKSLEIAGVSYALCRSYTHLKPDQAALGGLVHQIGVLPILTYAEDNNELLSDPISLNHVIETIHPVLGDKLLSVWEFPERLMRLPGLYLDFTRDSEQLDYVDLVQVAALYCYKDSDHPLSRIDVFGVPAIKKLGIDLDNHDRCADLEEARSMFY				NA	NA	NA	NA	NA
D1-36_03726	1386	qseC_2		Sensor protein QseC	ATGCATAAGCCCGACAGCCTGCGCTGGCGGCTCCTTCGCAACCTTGCATCGCTGCTGGTGGTGCTGATGCTCGCCAGTGGCCTGAGTGCCTATTGGAATGGTCGCGAAGCGGCCGATACTGCCTATGACCGGACGTTGCTGGCTTCGGCCCGGACCATTGCCGCCGGGCTTTCCCAGCGAGACGGCACCCTGAGTGCGGACGTGCCGTACGTGGCCTTGGACACCTTCGCCTATGACAGCGCCGGGCGTATCTACTATCAGGTCAACGATATCCACCAGAAGCTGATCTCCGGGTACGAAAATCTTCCTGGCCCGCCGCCGGGTACGCCGCGCACGGACGATTACCCCGCGCTGGCGCGCTTCTATAACGCCTCCTATCAGGGCCAGAATGTGCGCGTCGTAAGCCTGCTCAAGGCCGTGAGCGAGCCGGAGATGAACGGCATGGCGGAAATCCGCGTGGCGGAAACCGAAGAGGCGCGGGTCAGCATGGCGCGCAGCTTGATGGCCGATACCTTGCTGCGGTTGGGCATGCTGGCGGTGGGTGCGCTGCTTTTGGTGTGGTTCGCGGTCAGTGCCGCGCTGCGTCCCCTGGAACGCTTGCGCACGGCGGTGGAAGAGCGGCAGCCAGACGATCTGCGACCGCTGCCGCTGGTGGAAGTCCAACATGAGTTATGGCCGCTGGTACGGGCACTCAATCACTTCACCGAGCGCCTGCGCGGCCAATTCGAGCGTCAGGCGCAATTCATTGCCGACGCCGCCCATGAGCTGCGAACGCCATTGGCCGCCCTCAAGGCTCGCCTGGAGCTGGGCCTGCGCGCCAGCGAACCGGCCACGTGGCGCCAAACCCTGGAGACCGCCGCCCAGGGCACCGACCGCTTGACCCACCTGGCCAACCAGTTGCTGTCATTGGCCCGGGTGGAAAATGGCGCCCGGGCGATTGCCGAGGGCGGCGCGCAATTGCTCGACCTGAGCCAGCTCGCCCGTGAGCTGGGCATGGCCATGGCACCCTTGGCCCATGCCCGTGGGGTCGCGTTGGCGCTGGAGGCAGATGAGCCCGTCTGGTTGCGGGGCGAACCGACGTTGCTGAACGAACTGTTGAGCAACCTGGTGGACAACGCCCTGGCCCACACCCCCTCGGATGGCAACGTCATCCTGCGGGTGATCGCGCCGGCGATCCTGGAAGTCGAGGACGACGGCCCCGGCATTCCTGAGACTGAGCGCGAGCGAGTGTTCGAGCGCTTCTATCGACGCAACCAGCAAGTGGCCGGTTCTGGCTTGGGATTGGCGATCGTCGGGGAAATCTGTCGCGCGCATCTGGCCCAGATCACCCTGCATGACGGGCAGGAGAGTGGGCTGAAGGTGCGGGTGAGTTTTATCCCCGGCTAA	MHKPDSLRWRLLRNLASLLVVLMLASGLSAYWNGREAADTAYDRTLLASARTIAAGLSQRDGTLSADVPYVALDTFAYDSAGRIYYQVNDIHQKLISGYENLPGPPPGTPRTDDYPALARFYNASYQGQNVRVVSLLKAVSEPEMNGMAEIRVAETEEARVSMARSLMADTLLRLGMLAVGALLLVWFAVSAALRPLERLRTAVEERQPDDLRPLPLVEVQHELWPLVRALNHFTERLRGQFERQAQFIADAAHELRTPLAALKARLELGLRASEPATWRQTLETAAQGTDRLTHLANQLLSLARVENGARAIAEGGAQLLDLSQLARELGMAMAPLAHARGVALALEADEPVWLRGEPTLLNELLSNLVDNALAHTPSDGNVILRVIAPAILEVEDDGPGIPETERERVFERFYRRNQQVAGSGLGLAIVGEICRAHLAQITLHDGQESGLKVRVSFIPG	PGPT0017370_849	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-GENTAMICIN|TOBRAMYCIN|KANAMYCIN_RESISTENCE,PGPT0017370-tctE-K07649	NA	NA
D1-36_03727	672	tctD	COG0745	Transcriptional regulatory protein tctD	ATGCGTGTTCTGCTCGTCGAAGACCATCTGCAGCTGGCCGAAAGTGTCGCCCAGGCGCTCAAGAGCACGGGTTTGACAGTGGACGTGCTGCACGATGGGGTGGCCGCTGACCTGGCCCTGAGCAGCGAGGAATACGCCGTGGCGATTCTAGATGTGGGGCTGCCGCGCATGGACGGTTTCGAAGTGCTGGCGCGCTTGCGGGCGCGGGGCAAGACCTTGCCGGTGCTGATGTTGACCGCGCGCAGCGACGTCAAGGACCGCGTCCACGGCCTGAACCTCGGCGCCGATGATTACCTGGCCAAGCCATTCGAACTGACCGAGCTGGAAGCCCGGGTCAAGGCGTTGCTGCGCCGTAGCGTACTCGGGGGCGAGCGCCAGCAGCGCTGCGGTGGGTTGGTCTACGACCTGGACACCCGCCGCTTCACCCTTGATGAGGAACTGATGACCTTGACCTCCCGCGAGCAGGCGGTCCTGGAGGCGTTGATAGCTCGACCGGGGCGGGTGATGAGCAAGGAACAACTGGCCGCCCAGGTGTTTGGCCTGGACGAAGAGGCCAGCCCCGACGCCATCGAGATCTACGTTCATCGGCTGCGTAAGAAACTCGATGGCCATGCGGTGGCGATCGTGACGTTCCGGGGCCTGGGCTATTTGCTGGAAACCCGTGATGCATAA	MRVLLVEDHLQLAESVAQALKSTGLTVDVLHDGVAADLALSSEEYAVAILDVGLPRMDGFEVLARLRARGKTLPVLMLTARSDVKDRVHGLNLGADDYLAKPFELTELEARVKALLRRSVLGGERQQRCGGLVYDLDTRRFTLDEELMTLTSREQAVLEALIARPGRVMSKEQLAAQVFGLDEEASPDAIEIYVHRLRKKLDGHAVAIVTFRGLGYLLETRDA	PGPT0017365_838	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-GENTAMICIN|TOBRAMYCIN|KANAMYCIN_RESISTENCE,PGPT0017365-tctD-K07774	NA	NA
D1-36_03728	105			hypothetical protein	ATGCTGTCCATACAGCTCCAGGCTTCAATGCCCACCCGCCTTTGCTGCCCCAACCAGACTACCCTTGCCTGTGCCTCTGCGCAGACCGAACTGCTGCGTCTTTGA	MLSIQLQASMPTRLCCPNQTTLACASAQTELLRL				NA	NA	NA	NA	NA
D1-36_03729	993			hypothetical protein	ATGAACCTAGCACTGCGTAAAGTAGCCCTTGCCGTCGGATGCCTGATGCTCGCCGGGCAAACGCTCGCCGCTGATTCGTCCAAAGAGCCGAAGCGCCCTGAGTGCATCGCCCCCGCCGCACCCGGCGGTGGTTTCGACCTGACCTGCAAATTGGCGCAAAGCGCACTGGTCAATGAAAAGCTGCTGACCAAGCCGATGCGCGTCACCTACATGCCCGGCGGTGTCGGCGCGGTGGCCTACAACGCAGTGGTTGCGCAGCGCCCGGCAGACGCCGGCACGCTGGTGGCCTGGTCCAGCGGCTCGTTGCTGAACCTGGCGCAAGGCAAGTTCGGCCGTTTCGATGAAACCAATGTGCGCTGGCTCGCTGCCGTCGGCACCAGCTATGGCGCCATCGCGGTGAAAAGCGATTCGCCCTACAAGAATCTCGACGATCTGGTACAGGCTCTGAAGAAAGATCCTGGCTCGGTGGTGATCGGCTCTGGCGGCACCGTCGGTAGCCAGGACTGGATGCAGACCGCTTTGATTGCCAAGGCTGCCGGTATCGACCCGCGCAAACTGCGCTACGTGGCCCTTGAAGGCGGCGGCGAAATCGCTACCGCTCTGCTCGGCGGTCATATCCAGGTGGGCAGTACGGACATCTCCGACTCCATGCCACACATCCTGAGCGGCGACATGCGTCTGCTGGCCGTATTCTCCGATAAGCGCCTGGACGAGCCGGAAATGAAAGACATCCCGACCGCCGTGGAACAAGGCTACGACATCCGCTGGCCGGTGGTACGTGGCTTCTACCTGGGCCCGAAGGTCACCGATGAGGAATACGCCTGGTGGAAAAACGCCTTCGACAAACTGCTGGCCTCCGAAGAGTTCGCCAAGCTGCGTGACCAGCGCGAACTGTTCCCGTTCGCCATGACCGGTCCGGAGCTGGACACCTACGTGAAGAAGCAAGTGGCCGACTACAAGATGCTGGCCAAAGAGTTCGGCCTGATCCAGTAA	MNLALRKVALAVGCLMLAGQTLAADSSKEPKRPECIAPAAPGGGFDLTCKLAQSALVNEKLLTKPMRVTYMPGGVGAVAYNAVVAQRPADAGTLVAWSSGSLLNLAQGKFGRFDETNVRWLAAVGTSYGAIAVKSDSPYKNLDDLVQALKKDPGSVVIGSGGTVGSQDWMQTALIAKAAGIDPRKLRYVALEGGGEIATALLGGHIQVGSTDISDSMPHILSGDMRLLAVFSDKRLDEPEMKDIPTAVEQGYDIRWPVVRGFYLGPKVTDEEYAWWKNAFDKLLASEEFAKLRDQRELFPFAMTGPELDTYVKKQVADYKMLAKEFGLIQ	PGPT0017360_1031	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017360-tctC-K07795	NA	NA
D1-36_03730	462			hypothetical protein	ATGCTCGTCATCCAACGTATTGTTGCCGCGGTGCTGCTGCTGGCCTGTATCGGCCTGGCGCTGATGGCCTGGCCTTATCAGGCCGCCTTTTCCTATGAACCGGTCGGCCCGCGCGCCTTTCCCCTGCTGATAATCGGGCTGATGGGGCTGGCGCTGCTGTACATGCTGTTTCGTCCTACCCCCGTCGTGCACAGCGAAGACGACCCGCAACTGGACCGTGAAACCCTGCAGAAAATCGGCATCTGCGTTTTGCTGCTGTTGGTCTTCGCCGGAACGTTCGAACCCCTGGGCTTCATCCTCGCCAGCATTGTCACTGGCGTGCCGATGGCGCGCCTGTACGGCGGCCGCTGGGTACCGAGCGTAGTGATCATCAGCCTGATGGCCATTGGTCTTTATCTGTTGTTCGACAAGCTGATGGACGTGCCGCTGCCCCTGGGCCTGCTCGACGTCCTGGAGAATTGA	MLVIQRIVAAVLLLACIGLALMAWPYQAAFSYEPVGPRAFPLLIIGLMGLALLYMLFRPTPVVHSEDDPQLDRETLQKIGICVLLLLVFAGTFEPLGFILASIVTGVPMARLYGGRWVPSVVIISLMAIGLYLLFDKLMDVPLPLGLLDVLEN	PGPT0017355_1939	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017355-tctB-K07794	NA	NA
D1-36_03731	1515			hypothetical protein	ATGGATACCCTGAATTATCTCGGCCAGGGTTTTGGCGTTGCATTGACTCCCTACAACCTCGTCACCGCGTTGAGCGGCACCTTGATCGGCACCGTCGTAGGGCTGCTGCCGGGCCTGGGCCCGATCAACGGCGTGGCGCTGCTGATCCCGATCGCCTTCGCCCTGGGCCTGCCGCCGGAGTCGGCGTTGATCCTGTTGGCGGCCGTTTACCTGGGCTGCGAATACGGCGGGCGTATCAGCTCGATTCTGCTCAACATCCCGGGCGAAGCGTCCACTGTAATGACCACGCTGGACGGCTACCCAATGGCTCGCCAAGGCCTGGCCGGGGTCGCTTTGTCATTGTCGGCGTGGAGTTCGTTCCTCGGCGCGCTCATCGCCACCTGCGGCATGGTGCTGTTTGCTCCCTTGCTGGCCAAATGGGCAATTGCCTTCGGACCGGCGGAGTATTTCGTACTGATGGTGTTCGCCATCGTCTGCCTGGGCGGCATGGCCGGTGATCGACCGCTCAAGACGTTCATCGCGGCGCTGATCGGCCTGTTCCTGTCGTGCGTCGGCATCGACGCCAACAGCGGCGTCTACCGCTTCACCGGTGACAACATTCACTTGACCGATGGCATCCAGTTCGTCGTGCTGGTGCTGGGCCTGTTCTCCATCAGCGAGATTCTGTTGCTGCTGGAAAAAACCCATCGCGGCCAGGAAGCTGTGAAAGCCACCGGGCGGATGATGTTCAACGTCAAGGAAGCTGCCTCGGTGTTCTGGGTGAACATGCGCTGTGGCGTGCTCGGTTTCATCATGGGCGTATTGCCAGGTGCCGGCGCGACCTTGGCCAGTGCCGTAGCCTATATGACTGAAAAACGCATGGCCGGTGCCACCGGTACGTTCGGCCAGGGCGACAAGCGTGGCCTCGCGGCGCCGGAAACCGCCATCGGTGGCGCAGCCTGCGGCGCCCTCGTGCCTATGCTGACCCTCGGCGTTCCCGGCTCGGGCACCACGGCGGTCATGATCGGCGCGCTGTCGCTGTACAACATCACCCCCGGCCCGCTGCTGTTCCAACAGCAACCGGACATCGTCTGGGGCCTGATCGCCTCGTTGTTCATCGCCAACGTCATGCTGGTGATCCTCAACATCCCTATGATCCGCGTGTTTACGCGCATCCTGGCGGTGCCGAACTGGGCGCTGGTGCCGGTCATCGCAATCATCACCGGGATCGGTGTCTATGCGGTACACGCCACCACGTTCGACCTGTTCCTGATGATCGGCATCGGTATCTTCGGCTATATCCTGCGCAAGCTTGAGTTCCCGCTGTCGCCAGTCCTGCTGGGCTTCATCCTTGGCGGCCTGATGGAGCAGAACCTGCGTCGTGCGTTGTCGATCTCCAACGGCGCGCTGGAAATCCTCTGGTCGAGCCCGATCACCTTCGGTTGCTGGGTCCTGACGGCAATCATGTTGTTCCTGCCGCTGCTGCGCATCTGGCGTCGCCGCAGTGCCCAGCGTCGTGCCCTGGCCAATGCCTGA	MDTLNYLGQGFGVALTPYNLVTALSGTLIGTVVGLLPGLGPINGVALLIPIAFALGLPPESALILLAAVYLGCEYGGRISSILLNIPGEASTVMTTLDGYPMARQGLAGVALSLSAWSSFLGALIATCGMVLFAPLLAKWAIAFGPAEYFVLMVFAIVCLGGMAGDRPLKTFIAALIGLFLSCVGIDANSGVYRFTGDNIHLTDGIQFVVLVLGLFSISEILLLLEKTHRGQEAVKATGRMMFNVKEAASVFWVNMRCGVLGFIMGVLPGAGATLASAVAYMTEKRMAGATGTFGQGDKRGLAAPETAIGGAACGALVPMLTLGVPGSGTTAVMIGALSLYNITPGPLLFQQQPDIVWGLIASLFIANVMLVILNIPMIRVFTRILAVPNWALVPVIAIITGIGVYAVHATTFDLFLMIGIGIFGYILRKLEFPLSPVLLGFILGGLMEQNLRRALSISNGALEILWSSPITFGCWVLTAIMLFLPLLRIWRRRSAQRRALANA	PGPT0017350_1491	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017350-tctA-K07793	NA	NA
D1-36_03732	1044			hypothetical protein	ATGCCTGAGACGACAACTTTCAGACAATGGTGGGGAACACCGCTGGTCGGTCTGGCCGGCGGTTATCTGGCCAGCCTGATCGGTTGGCCCTTGCCCTGGATGGTCGGCTCGCTGTTGGCGATCATCCTGGTGCGCTGCCTCACGCCGTGGCAATTGATGGAAATCCCCGGCGGCCGCAAATGCGGCCAATGGGTGGTGGGCATCGGTATCGGCCTGCACTTTACGCCAGTGGTGATGGAGCAAGTCCTGAGCCACTTCGGCCTGATTTTCTTCGGCGCGCTGATCACCAGCGTGTCCAGCGTGGTGAGCGTGTGGCTGATGCGCCGCACCGGCGAGGACCGCGCCACCGCTTTCTTTTCCAGCATGCCAGGCGGTTCCGGCGAGATGGTCAACCTCGGCGCCCGCAACGGCGCGATGCTCAGCCATGTCGCCGCGGGCCAGAGCCTACGCGTGCTGGTGGTGGTGCTGTGCGTTCCCGCCGCCTTCAAGTACCTGCTGGGCGAAGGCACCCCACTGCAACACGCCACGACGGTGGACTGGATGTGGCTGGCGATCCTGTTCCCGGCCGGCGCACTGCTCGCCTGGATCTGGGAGCGCCTTCGCCAGCCCAACCCATGGCTGTTCGGTCCGCTGTTGGTCAGCGCGGCGGTGAGCATCGGCTGGGATTTGCACATCGGCCTGCCCGACGGCGGTAGCCAGATCGGCCAATGGCTGATCGGCAGCGGCCTGGGCTGTCATTTCAACCGGCAGTTCTTCCGCCGGGCACCGTCGTTCATGGGGCGTACATTGGTTGGCACGGTATTGACGATGCTGATCGCCACGCTCGCGGCCCTGGGCCTGAGCACCTTGACTCACCTGGATTTGCGTTCGCTGACCCTGGGCATGATGCCCGGTGGCATCGCGGAGATGAGCCTGACGGCGGAGACGTTGCAATTGTCGGTGCCGTTGGTCACGGCGTTGCAGGTGATGCGGCTGCTGTTCGTGCTGTTCCTGGCGGAGCCGTTGTTCAGGTATTGGATGCGCAAGACAGGTTCAAGCTTGTAA	MPETTTFRQWWGTPLVGLAGGYLASLIGWPLPWMVGSLLAIILVRCLTPWQLMEIPGGRKCGQWVVGIGIGLHFTPVVMEQVLSHFGLIFFGALITSVSSVVSVWLMRRTGEDRATAFFSSMPGGSGEMVNLGARNGAMLSHVAAGQSLRVLVVVLCVPAAFKYLLGEGTPLQHATTVDWMWLAILFPAGALLAWIWERLRQPNPWLFGPLLVSAAVSIGWDLHIGLPDGGSQIGQWLIGSGLGCHFNRQFFRRAPSFMGRTLVGTVLTMLIATLAALGLSTLTHLDLRSLTLGMMPGGIAEMSLTAETLQLSVPLVTALQVMRLLFVLFLAEPLFRYWMRKTGSSL	PGPT0027725_1319	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-AbrB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027725-antitoxin_abrB-K07120	NA	NA
D1-36_03733	693	ung	COG0692	Uracil-DNA glycosylase	ATGACCGCTGACGACCGTATCAAGCTCGAACCCAGCTGGAAGCAGGCACTGCGTGCCGAGTTCGACCAGCCCTACATGGCAGAGTTGCGCGAATTCCTGCGCAGTGAATACGCCGCCGGCAAGGAGATCTACCCTCCGGCCCCGTTGATTTTCAACGCCCTCAATTCCACTCCGCTGGACAAGGTCAAGGTCGTGATCCTCGGCCAGGATCCCTACCACGGGCCGGGCCAGGCACATGGCTTGTGCTTCTCGGTGCAGTCGGGCGTGCCGACACCGCCATCGCTGGTGAATATCTACAAGGAATTGAAGCGCGACCTGAACATCGACATTCCCAGCCACGGTTATCTGCAAAGCTGGGCCGAACAGGGCGTACTGCTGCTCAATACCACCCTGACCGTTGAACGCGCCAATGCCAACGCCCACGCCAAGAAAGGTTGGCAGCACTTTACCGACAGGGTCATCGAGGTGGTCAGCGAACACCAGCCGAACCTGGTGTTCCTGCTGTGGGGCGCCCATGCCCAGAGCAAACAGAAGCTGATCGATGCGACCAAGCATTTGGTCCTGACCTCGGTGCATCCGTCACCGCTGTCGGCCCACCGGGGCTTTATTGGTTGCGGGCATTTCAGCCGGACCAACAAGTTTCTGGAGCAGCACGGCGAGAAGCCGATCGAGTGGCGGTTGCCGCCGGTTTGA	MTADDRIKLEPSWKQALRAEFDQPYMAELREFLRSEYAAGKEIYPPAPLIFNALNSTPLDKVKVVILGQDPYHGPGQAHGLCFSVQSGVPTPPSLVNIYKELKRDLNIDIPSHGYLQSWAEQGVLLLNTTLTVERANANAHAKKGWQHFTDRVIEVVSEHQPNLVFLLWGAHAQSKQKLIDATKHLVLTSVHPSPLSAHRGFIGCGHFSRTNKFLEQHGEKPIEWRLPPV	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
D1-36_03734	1113	fadJ_2		Fatty acid oxidation complex subunit alpha	ATGAATCTGCACTTCGAAGAACTCACCGGCATCGATGGCGCGCGCCTGGGCATCGCCACCCTGGACGCCGAAAAATCCTTGAACGCCCTCTCCCTGCCAATGATCAACGCCCTGCGTGATCGGCTCGACACCTGGGCCAGGGACCCGCAGATAGTCTGCGTATTGCTGCGCGGCAAAGGTGCCAAAGCGTTTTGCGCCGGTGGCGAGGTCCGCAGCCTGGCAGAAGCCTGCCGCGCCCACCCCGGCGAGGTGCCGCCGTTGGCCGCGCAATTCTTCGCCGCCGAATATCGCTTGGACTTCAATCTCCATACCTACCCCAAGCCATTGCTGTGCTGGGGCCATGGCTACGTGCTCGGCGGCGGCATGGGATTGCTGCAAGGCGCGAGCACGCGGATCGTCACGCCGAGCAGTCGATTGGCGATGCCCGAAATCAGCATCGGGTTGTACCCGGATGTAGGCGCCAGTTGGTTCCTGTCGCGCCTGCCGGGCAAGCTGGGCCTGTTTCTCGGCCTGACCGGTGCCCACATGAACGCGCGCGACGCCATCGACCTGGGCCTGGCCGATCGTTTTTTACTCGATGAGCAGCAGGACGACCTGATCGAGGGCTTGTTGCAACTCAATTGGCAGGAACAGACCGAGATGCAACTCAACAGTCTGCTCAAGGCCTTGCAGCAAGAAGCGCTGACCCAGTTGCCCGAAGCCCAGTGGTTGCCCCGTCGGCACAAAATCGACGAATGGCTGGATGTCAGTGACGTCCGCTGCGCCTGGAAGGCCCTCAGCTTGCTGATGGAGCATCCTGATCCGCTGATCGCCCGCGCGGCCAAGACCATGACCGAGGGCTCGCCGTTGACGGCGCACCTGGTCTGGGAGCAGATCAGCCGGGCGCGGCATTTGTCGTTGGCCGGTGTGTTCCGCATGGAGTACACCTTGAGCCTGAACTGCTGTCGCCATCCGGAATTCAGCGAAGGCGTGCGGGCGCGATTGATCGACAAGGATCACAAACCCCACTGGCACTGGCCGGACATCAATCATGTACCGGAAGCAGCGGTGCAAGCGCATTTTCACAAGGTGTGGGAGGGTCGGCATCCGTTGGCGGATTTGTCCAACGAATAA	MNLHFEELTGIDGARLGIATLDAEKSLNALSLPMINALRDRLDTWARDPQIVCVLLRGKGAKAFCAGGEVRSLAEACRAHPGEVPPLAAQFFAAEYRLDFNLHTYPKPLLCWGHGYVLGGGMGLLQGASTRIVTPSSRLAMPEISIGLYPDVGASWFLSRLPGKLGLFLGLTGAHMNARDAIDLGLADRFLLDEQQDDLIEGLLQLNWQEQTEMQLNSLLKALQQEALTQLPEAQWLPRRHKIDEWLDVSDVRCAWKALSLLMEHPDPLIARAAKTMTEGSPLTAHLVWEQISRARHLSLAGVFRMEYTLSLNCCRHPEFSEGVRARLIDKDHKPHWHWPDINHVPEAAVQAHFHKVWEGRHPLADLSNE				NA	NA	NA	NA	NA
D1-36_03735	138			hypothetical protein	ATGGTCGCGATCGAGGCGGCTGGAACGATGACCGTCGTGGCCGGGGCGGGCGTGACCGCGGACATGACCATCGAGGACGTGGTCATGATGGGCGAGGCAACCATCGGTAAAGGACAGGCAGCAAAAAGCGGCGCATGA	MVAIEAAGTMTVVAGAGVTADMTIEDVVMMGEATIGKGQAAKSGA				NA	NA	NA	NA	NA
D1-36_03737	1068			hypothetical protein	ATGTTCAAGCTTCGTCTGTCCGCCCTGCTCGTCGCCGTCCTCTCGGCTTTCCTGAGCTTCTCATCCGCCGCCGCGCAAAAAGACCACTTCAGCGTCTGCTGGACCATTTACGCCGGCTGGATGCCCTGGGAGTACGCGGGCAGCCAAGGCATCGTCGACAAGTGGGCAAAAAAGTACGGCATTACCATCGATGTCGTGCAGCTCAACGATTACGTTGAATCCATCAACCAGTACACCGCCGGCCAGTTCGACGGCTGCACCATGACCAACATGGACGCCCTGACCATTCCCGCCGCCGGTGGCGTGGACAGCACCGCGCTGATCGTCAGCGATTTCTCCAACGGCAACGACGGCATCGTCCTCAAGGGCGAAGGCAAGAAAGTCGACGATCTTAAAGGCATGGACGTCAACCTGGTGGAACTGTCGGTGTCCCATTACCTGCTGGCCCGTGCCCTGGATTCGGTCGGCCTCGCCGAGAAAGACCTGAAAGTCGTCAACACCTCCGACGCCGATATCTCCGCCGCCTTCAACACCGACCAGGTCAAGGCCGTCACCACTTGGAACCCGATGCTTTCGGACATCAAGGCCCAGCCGGGCGTGAGCGAAGTGTTCAACTCCAGCCAAATGCCCGGCGAGATCATGGACATGATGGTGGTCAACACCCAGACCCTGAAAGACAACCCAGCCCTGGGCAAGGCCTTGACCGGCGCCTGGTTTGAAGTGGTGGCGCTGATGAACGCCAGGAACGCTGCCGCCAACGCTGCGCTGGAACACATGGCCAAAGCGTCGGGCACTGACCTCAAAGGTTTCCAGGCGCAACTGGACACGACCAAATTGTTCGCCACGCCCACGGAAGCGCTGGCCTTCGTCACCAGCGAACAACTGCCCGCCACCATGGGCAAGGTGGCGGCGTTTTCGTTCCAGCACGGCTTGCTGGGCGAAGGCGCCAAGGACACCGATGCGGTCGGCATGGCGTTCGCCAATGGCGTGACTCGCGGCGACAAGGCCAACCTGAAGCTGCGCTTTGATCCGACCTACGTACAGCTGGCCGCCGACGCCAAGCTGTAA	MFKLRLSALLVAVLSAFLSFSSAAAQKDHFSVCWTIYAGWMPWEYAGSQGIVDKWAKKYGITIDVVQLNDYVESINQYTAGQFDGCTMTNMDALTIPAAGGVDSTALIVSDFSNGNDGIVLKGEGKKVDDLKGMDVNLVELSVSHYLLARALDSVGLAEKDLKVVNTSDADISAAFNTDQVKAVTTWNPMLSDIKAQPGVSEVFNSSQMPGEIMDMMVVNTQTLKDNPALGKALTGAWFEVVALMNARNAAANAALEHMAKASGTDLKGFQAQLDTTKLFATPTEALAFVTSEQLPATMGKVAAFSFQHGLLGEGAKDTDAVGMAFANGVTRGDKANLKLRFDPTYVQLAADAKL	PGPT0001135_1786	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-RELATED_FUNCTIONS	N-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051	NA	NA
D1-36_03738	816			hypothetical protein	ATGCGCCTGATCAACCGCTACCCGGACCGTCCCAGCCGCTTGTTGCTGGTGATCCTGCCGTTCGCGCTGGTGCTGTTCGCCTACTTCATGGGCTCGGCCGAACGGTTGACGGACAACCCCAACGACAAGCTGCTGCCCAGCGCCGGGCAGATGGCCGATGCGGTGAAACGCCTGGCCTTTACCGCCGATGCGCGCAGTGGCGACTACCTGCTCTGGCAAGACACCGCGTCGAGCCTGCGCCGGTTGGCGATCGGCCTGGGCATCAGCGCCCTGGTCGGGCTGTGCCTGGGCATCGCGGCTGGCACGCTGCCGCTGTTGGGCGCACCGCTTTCACCGTTGCTCACCGTGGTGTCGATGATGCCGCCATTGGCGATTCTGCCGATCCTCTTCATCGTCTTCGGCCTGGGGGAATTGTCGAAAGTGATGCTGATCGTGATCGGCATCACACCGTGTCTGGCCCGGGACTTGGAACAGCGCGCCCGGGAGATTCCCCGTGAGCTGCTGATCAAGGCCCAGACCCTCGGCGCGTCAACCTGGACTCTGATCTTGCGCGTGGTCCTGCCGCAACTGCTGCCACGCTTGCTGATCTCCCTGAGGTTGATGCTGGGTTCGGCCTGGCTGTTTCTGATCGCCGCCGAAGCCATCGCGTCCACCGATGGGCTGGGTTATCGGATTTTCCTGGTGCGTCGTTACTTGGCGATGGACGTGATCCTGCCGTACGTGGTGTGGATCACCCTGCTCGCCTGGCTGATGGACTGGGGCCTCAAGCGCCTGACCCGTCGAGCGTTTCCTTGGTACGAGGGAGCGAAGGCATGA	MRLINRYPDRPSRLLLVILPFALVLFAYFMGSAERLTDNPNDKLLPSAGQMADAVKRLAFTADARSGDYLLWQDTASSLRRLAIGLGISALVGLCLGIAAGTLPLLGAPLSPLLTVVSMMPPLAILPILFIVFGLGELSKVMLIVIGITPCLARDLEQRAREIPRELLIKAQTLGASTWTLILRVVLPQLLPRLLISLRLMLGSAWLFLIAAEAIASTDGLGYRIFLVRRYLAMDVILPYVVWITLLAWLMDWGLKRLTRRAFPWYEGAKA	PGPT0001145_5042	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-RELATED_FUNCTIONS	N-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050	NA	NA
D1-36_03739	789	cmpD		Bicarbonate transport ATP-binding protein CmpD	ATGAGCTTTATCTGTGTGAACAATGTCTGGCAGCAATACGCCGATCAGGTCGTGCTGGAACGCTTGAACCTGAACGTCGCCGAGGGTGAATTTTGCACCTTGGTGGGCGCATCGGGTTGCGGCAAGTCGACTTTCCTGCGCTTGCTGCTCGGCCAGGAGCGCGCCAGTCGCGGACAGATCCTGCTGGACGGCGAACCCTTGGCGGGCGAGCCGGATGCCAGCCGGGGCGTAGTGTTCCAGCGCTATTCGGTGTTCCCGCACCTGACGGTGCTGGACAACGTCGCCCTGGGCCTGGAGTTGCCGCGCTCGCCGTTGCTGGGGCGTTTGTTCGGCGGTGCCAAACGCCAGGCTCGCGAAGAGGCTGCGCAACTGTTGGACAAGGTTGGCCTCGGCCACGCGCTGGACAAATACCCGGCGCAGCTCTCCGGCGGCATGCAGCAACGGCTGGCGATTGCCCAGGCGTTGATCATGAAGCCCCGGGTCCTGCTGCTGGACGAACCGTTCGGCGCCCTCGACCCGGGCATTCGCAAAGACATGCACGCCCTGCTGCTGGAACTGTGGCGCGAAACCCGGCTGACGGTATTCATGGTCACCCATGATCTGTCCGAAGGTTTCAGCCTCGGCACACGCCTGCTGGTGTTCGACAAGGTCCGCGTCGATCCACACGCCCCTGGCGCCTATGGCGCACGCATCACCTACGACATTCCATTGAACAGCGACCGTCGCACCGCCCGTGCCGCCGTCGACGCCCTGCCCGCCGAACTGGCCGGCACGCTGCGTATCGCTTGA	MSFICVNNVWQQYADQVVLERLNLNVAEGEFCTLVGASGCGKSTFLRLLLGQERASRGQILLDGEPLAGEPDASRGVVFQRYSVFPHLTVLDNVALGLELPRSPLLGRLFGGAKRQAREEAAQLLDKVGLGHALDKYPAQLSGGMQQRLAIAQALIMKPRVLLLDEPFGALDPGIRKDMHALLLELWRETRLTVFMVTHDLSEGFSLGTRLLVFDKVRVDPHAPGAYGARITYDIPLNSDRRTARAAVDALPAELAGTLRIA	PGPT0001140_5213	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-RELATED_FUNCTIONS	N-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049	NA	NA
D1-36_03740	726			hypothetical protein	ATGACCGATTCGATCCAAGTGTTTCCCCCCTTCGCTGAAGAGATTCTGCCCGGCGGCGGCCACCGTTCCTTCGTGCTCAAGCGCGGCCAACTGCTGCGCCTGACCGACCTTCGCGGCGGCGCCAACGTGAGCCTGACGCTGCTCAACGCCAATGAAAAAACCGAACGCCTGAACCTGCCGGACAGCCTCAAGTGCCAACACACCGCCAAGCTCACCGCCGGCCATTGCCTTTATTCCGACATGGGCCGGGTATTGGCGGCGATCACCGTCGACACCTGCGGCTGGAGCGACAGCCTGGGCGGTGTGCTCTGCGCCGAGGAAGTCGATGAAAAATATGGCCAGGGCCGCTATCAGGAACTGCGCAACGGCTTCTTTCGCAACGGCACCGACAACCTGTTGGTGGAACTGGGCAAATGGGGGCTGGGCCTGTCCGACCTGCTGATGACCCTCAACCTGTTCAGCCGGGTCGATGTCGACGAGGCCGGCCACTTTCATTTCGTGGAAGGCAACTCCAAGGCGGGCGACTACATCGAGTTGTACGCGCCAATGGACACCTTGGTGGTGCTGACCGCATTGCAACACCCGATGGACCCGAACCCGCAATACGCCCCGCAGCCGCTCAAGCTCAGCTGGATGAATGCCAACCCCAGCGTCGCCGAACACTGCCGCCTTTCGCGCCCGGAAAACCAGCGGGGCTTCATCAATACCGACCGCCTGTTCGCCTGA	MTDSIQVFPPFAEEILPGGGHRSFVLKRGQLLRLTDLRGGANVSLTLLNANEKTERLNLPDSLKCQHTAKLTAGHCLYSDMGRVLAAITVDTCGWSDSLGGVLCAEEVDEKYGQGRYQELRNGFFRNGTDNLLVELGKWGLGLSDLLMTLNLFSRVDVDEAGHFHFVEGNSKAGDYIELYAPMDTLVVLTALQHPMDPNPQYAPQPLKLSWMNANPSVAEHCRLSRPENQRGFINTDRLFA	PGPT0001000_758	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-UREA_USAGE	N-AQUISITION-UREA_METABOLISM,PGPT0001000-ycgI-K09967	NA	NA
D1-36_03741	642			hypothetical protein	ATGTCACTCGCCATCGCCACCGCACACAAGCACGCCGAGACCGCTGTCTACCGCGCCACGATTCCCGCCGGGGAACCCTGGCTGACCGAGGTCAAGGCCGGCCAGACCCTGCGCATCCTGGACCTGGAAGGCAACCAGGCGGTCGATACGCTGTTCTACAGCCTGGCCAACCCCAAGGAACGCTACGACGTGCAACGCACCCTGCGCCGGCAGAACAGCGTTTATCTAAGTACCGGCAGCGTGCTGTACTCCAACCTCGGTCGACCGATGCTGACGATCATCGAAGACACCTGCGGACGTCACGACACCCTCGGCGGCGCCTGCGCCCAGGAAAGCAACACCGTGCGCTACGCCCTGGAAAAACGCTACATGCACAGCTGCCGCGATAACTACCTGCGGGCCTGCGCCCACGACGGCCGCCTCGGTAAAGGCGACATCGGGCCGAACATCAATTTCTTCATGAACGTACCGGTGACCGCCGACGGCGGCCTGACCTTCGAAGACGGGATCTCGGCACCGGGCAAATACGTCGACCTACGGGCCGAGATGGACGTGATCGTCCTGATCTCCAACTGCCCGCAGTTGAATAACCCATGTAACGCCTATAACCCCACGCCTGCGGAGCTTTTGATATGGAACTGA	MSLAIATAHKHAETAVYRATIPAGEPWLTEVKAGQTLRILDLEGNQAVDTLFYSLANPKERYDVQRTLRRQNSVYLSTGSVLYSNLGRPMLTIIEDTCGRHDTLGGACAQESNTVRYALEKRYMHSCRDNYLRACAHDGRLGKGDIGPNINFFMNVPVTADGGLTFEDGISAPGKYVDLRAEMDVIVLISNCPQLNNPCNAYNPTPAELLIWN	PGPT0001000_1266	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-UREA_USAGE	N-AQUISITION-UREA_METABOLISM,PGPT0001000-ycgI-K09967	NA	NA
D1-36_03743	3630	carB_2		Carbamoyl-phosphate synthase large chain	ATGTTCGAAAAAATCCTCATCGCCAACCGTGGCGCCATCGCCTGCCGCATCCTGCGGACGTTGCGCGAGCTGAATGTCCAAGGCGTCGCGGTGTACTCCCAAGCGGACGAAGCCAGCCTGCATATCCTCCAGGCCGACGAAGCCCACTGCTTGGGCGAAGGCGCGGCGGCGGGCACCTACCTGGCGGTGGATAAGCTCCTGGCAATCGCCAAAAGCAGCGGCGCGAAGGCGATTCATCCCGGCTACGGTTTCCTCTCGGAAAACGCCGCTTTCGCCGAAGCCTGCGAGGCCGCCAGTATCGCCTTCATCGGCCCCACGCCGGAACAACTGCGGGTGTTCGGCCTCAAGCACACCGCCCGAGACCTGGCCAAGCGGCACGGCGTGCCGCTGCTCGAAGGCACCGAACTGCTCGACAGCCTCGACGCCGCGCTGCTGGCCGGAACGCAGGTCGGTTACCCGGTAATGCTGAAAAGTACGGCTGGCGGCGGTGGGATTGGCATGCGTGTGTGCCGTAGCGCCGCCGAATTGAGCGATTCCTTCGAAGCGGTCAAGCGCCTGGGACAGAACAACTTCAGCGACGCCGGCGTGTTCATCGAAAAATACATCGAACGGGCACGGCACCTGGAGGTGCAGGTCTTCGGCGACGGCCAAGGCCAAGTGATCGCCCTCGGCGTGCGCGACTGTTCGGTGCAGCGGCGCAACCAGAAGGTCATCGAAGAAACGCCCGCGCCCAACCTGCCCGAGGGCATGGCCGACGCCCTCTGCGCAGCGGCGATCAAACTGGCCCGGGCAGTGAACTACCGCAGCGCGGGCACCGTGGAGTTCGTCTACGACAGCGACGCCGGGCGCTTCTACTTCCTGGAAGTAAACACGCGCCTGCAAGTGGAGCACGGCGTTACCGAGCAGGTATGGGGCGTGGACCTGGTGCGCTGGATGGTGCAACTGGCCGCCGGCGAACTGCCGCCCTTGAGCGAGCTGAGCCTGGGCCTGAAAGCCGAGGGCCACGCGATCCAGGCGCGCCTGTATGCCGAGGATCCGGGCCGGGATTTCCAGCCGAGCCCGGGCCTGTTGACCGCCGTGAAATTCCCCCACGCCGACGGGCAACAACTGCGCATCGACACGTGGGTCGAGGCCGGCTGCCAGATCCCGCCCTATTTCGACCCGATGATCGCCAAGGTGATTCGCTGGGCGCCGACCCGTGAACAGGCGCGCTTGGGATTGCATCAAGCGCTGGACGAAAGCCTGCTCTACGGCGTGGAAACCAACCGCATCTACCTGCAGCAAATTCTTCTCGACGCGCCCTTCGCCGACGGCCAGCCCTGGACGCGCTGCCTGGAAACCCTGGCCTATCGCGCCAACACCTTCGAAGTGCTCAGCCCTGGCACCCAGACCAGCGTGCAAGATTACCCGGGCCGCCTCGGTTATTGGGCCGTGGGCGTACCGCCGTCGGGTCCGATGGACAGCCGCTCGCAGCGCTTGGGCAATCGCCTGCTGGGCAATGACGAAGGCGCGGCGGCCCTGGAAATCACCATGAGCGGGCCGGTGCTGCGCTTCAATTGCAACGCCCGGGTGGCGGTGACCGGTGCGCAAATTGCCCTGACCCTGGACGGCGAAGCGGTGCCGATGAACGCCCCGCTGTCGATCAATCCCGGATCCACTCTGGCCCTGGGCACCATCACCGGCGCCGGGGCGCGCAGCTATGTGTGCCTGCAAGGTGGCTTGCAGGTACCGAATTACCTCGGCAGCAAAAGCACCTTCACCCTCGGCCAGTTTGGCGGCCATGGCGGACGGGCGCTGTGTACCGGCGATGTGCTGCACCTGGCTGCGCTGGATGAGCACGCCGTGTTGCCGACAGTGGACGAGCCGCCTCTGCTGTTGCCAGCCGTGCGGCAAATCCGGGTGATCTACGGCCCCCATGGCGCGCCGGAATATTTCACCGAGCGCTACATCCAGACGTTTTTCGATACCTCCTGGGAAGTGCATTTCAACTCCAGCCGAACCGGCGTGCGACTGATCGGGCCCAAGCCGCAATGGGTGCGCGCCGACGGCGGCGAAGCAGGCCTGCACCCGTCCAATATCCATGACAATCCCTACGCCATTGGCGCCGTGGACTTCACCGGCGACATGCCTGTCATCCTCGGCCCCGACGGCCCTAGCCTGGGTGGCTTCGTCTGCCCGGTGACGGTGATCGAGGCGGACCTCTGGCAGTTGGGGCAGCTCAAGGCGGGGGACAAGGTGCGGTTCGTACCGGTGGATCTGAAGACCGCCCGCTCCCTTGCATTGAAATGGGATCAATGTGGGAGCGAGCCTGCTCGCGAAGGGGCCAGTTCAACCACCGCGTCGACTTCTTCGCGAGCGGGCTCACTCCCACAGGGGATGGTGTCGCCTGTGGTATTGGACATCGGCCAGGACGATACCCGCCTGGTCGCACGCCTGTCCGGCGACACCCATCTGCTGCTGGAAATCGGCGCACCCGAACTGGACCTGGTGCTGCGCTTTCGCGCCCACGCCTTGATGCAGGCGCTGGAACAAAAACACCTGCACGGCGTGATCGACCTGACGCCTGGCATCCGTTCGCTGCAAGTGCATTACCAACCCGAACAACTGCCGCTGGCCGAACTGCTGGCAATCGTCGCCGGCGAGTGGGGCGCCGTGTGCGCCGCGCGAGATCTTCAAGTGCCGTCGCGCATCGTTCATCTGCCACTGTCCTGGGACGATCCGGCCTGCCAATTGGCCATCGAAAAATACATGACCACCGTGCGCAAGGACGCCCCTTGGTGCCCAAGCAACCTGGAGTTCATCCGCCGCATCAATGACCTGCCGAACCTCGACGAGGTCCAGCGCACGGTGTTTGACGCCAGCTACCTGGTGATGGGGCTGGGAGACGTCTACCTCGGCGCGCCGGTCGCCACCCCGCTGGACCCGCGCCATCGCCTGGTGACCACCAAATACAACCCGGCCCGGACCTGGACCGCGGAAAACTCGGTGGGCATCGGCGGCGCCTACATGTGCGTGTACGGCATGGAGGGTCCCGGCGGCTATCAGTTCGTCGGGCGCACGTTGCAGATGTGGAATCGTTATCGGGACGTCGCCGCGTTCGATGGCAAGCCCTGGTTGCTGCGGTTCTTCGACCAGATCCGCTTCTACCCGGTCAGCGCCGATGAGCTGTTGCGCATCCGCCGGGATTTCCCGCTGGGCCGCTTCGACCTCAAGATCGAGCACAGCCAACTCAACCTCGCGCACTACCAGCATTTCCTGGCCCGGGAAGCGGACAGCATCGGCGCATTCCGCCAGCAGCAACAACGTGCCTTCAACGCCGAGCGCGAGCGCTGGATTGCCAGCGGCCAGGCTCATTTCGACAGTGAGGAACCGACACTCGCGCCGAGCGAAGATGCGTTGCTGGACGCGGGCCAACTGAGCGTCGACAGCCACATCGCCGGCAATCTCTGGCAAGTCCAAGTGCAGGTGGGTACGCGAGTTGCTGCCGGTGACGTACTGGTCATTCTGGAGTCCATGAAGATGGAGATCCCGATGCTTGCGCCCATGGCCGGCGTGGTACGTGAAGTACGCGTCCAACCCGGTTCGGCGGTGCGCGCAGGGCAGCGTGTCGTGGTGCTGGAACGTGACTGA	MFEKILIANRGAIACRILRTLRELNVQGVAVYSQADEASLHILQADEAHCLGEGAAAGTYLAVDKLLAIAKSSGAKAIHPGYGFLSENAAFAEACEAASIAFIGPTPEQLRVFGLKHTARDLAKRHGVPLLEGTELLDSLDAALLAGTQVGYPVMLKSTAGGGGIGMRVCRSAAELSDSFEAVKRLGQNNFSDAGVFIEKYIERARHLEVQVFGDGQGQVIALGVRDCSVQRRNQKVIEETPAPNLPEGMADALCAAAIKLARAVNYRSAGTVEFVYDSDAGRFYFLEVNTRLQVEHGVTEQVWGVDLVRWMVQLAAGELPPLSELSLGLKAEGHAIQARLYAEDPGRDFQPSPGLLTAVKFPHADGQQLRIDTWVEAGCQIPPYFDPMIAKVIRWAPTREQARLGLHQALDESLLYGVETNRIYLQQILLDAPFADGQPWTRCLETLAYRANTFEVLSPGTQTSVQDYPGRLGYWAVGVPPSGPMDSRSQRLGNRLLGNDEGAAALEITMSGPVLRFNCNARVAVTGAQIALTLDGEAVPMNAPLSINPGSTLALGTITGAGARSYVCLQGGLQVPNYLGSKSTFTLGQFGGHGGRALCTGDVLHLAALDEHAVLPTVDEPPLLLPAVRQIRVIYGPHGAPEYFTERYIQTFFDTSWEVHFNSSRTGVRLIGPKPQWVRADGGEAGLHPSNIHDNPYAIGAVDFTGDMPVILGPDGPSLGGFVCPVTVIEADLWQLGQLKAGDKVRFVPVDLKTARSLALKWDQCGSEPAREGASSTTASTSSRAGSLPQGMVSPVVLDIGQDDTRLVARLSGDTHLLLEIGAPELDLVLRFRAHALMQALEQKHLHGVIDLTPGIRSLQVHYQPEQLPLAELLAIVAGEWGAVCAARDLQVPSRIVHLPLSWDDPACQLAIEKYMTTVRKDAPWCPSNLEFIRRINDLPNLDEVQRTVFDASYLVMGLGDVYLGAPVATPLDPRHRLVTTKYNPARTWTAENSVGIGGAYMCVYGMEGPGGYQFVGRTLQMWNRYRDVAAFDGKPWLLRFFDQIRFYPVSADELLRIRRDFPLGRFDLKIEHSQLNLAHYQHFLAREADSIGAFRQQQQRAFNAERERWIASGQAHFDSEEPTLAPSEDALLDAGQLSVDSHIAGNLWQVQVQVGTRVAAGDVLVILESMKMEIPMLAPMAGVVREVRVQPGSAVRAGQRVVVLERD	PGPT0001005_218	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-UREA_USAGE	N-AQUISITION-UREA_METABOLISM,PGPT0001005-uca|dur|urd-K01941	NA	NA
D1-36_03744	1785	atzF		Allophanate hydrolase	ATGAACCTTTCTCTGCGCCTGGACAACCTTCGCGACGCCTATCGCAAAGGGGAAACGACACCCCGCCAGTTGCTGCTGGCCCTGCGGGAAAAAGCCGCTGCGCTCAACCCGGACTACCACCTGTTCATTCACCTGCTGTCGCCCGAGGAACTGGAGCCTTATCTGGCGGCCCTGGAAAGTCGCGACCTGGACAGCTTGCCGTTGTATGGCGTGCCGTTCGCCATCAAGGACAACATTGACCTGGCCGGCATTCCCACCACGGCCGCCTGCCCGGCGTTTGCCTACGTACCGCAACGTTCGGCCACGGTGGTCGAGCGGTTGCTGGCGTTGGGCGCTGTTCCCCTGGGCAAGACCAACCTCGATCAGTTCGCCACCGGGCTCAACGGCACCCGCACCCCCTACGGTGCCTGCCGCAACAGCGTGCTGGCGGATTATCCGGCGGGTGGCTCGAGTGCCGGCTCGCCGCTGGCGGTGGCCCTGGGTGTGGCAAGCTTTGCCTTGGGCACCGACACCGCGGGCTCCGGCCGGGTGCCCGCGGCGCTGAACAATCTGGTCGGGCTGAAAGCCACCAAAGGTTTGGTTTCCACCGCCGGCGTGGTGCCGGCCTGCCGTACGCTGGACTGCGTGACGACCTTCACCGCGACGGCGCGGGAAGCCAGCCAGCTGTTGGCATTGACCGCGCATTTCGACCCGCGCGACGAATACAGCCGCCGCAACCCGCAATGGAACGACGGCTCGGCGTTCGGCGCGCCACGGCGCTTTCGTTTCGGTGTGCCTCGCTGGCAAGACCTGGAATTTTTTGGCTGCGACGAAGGCCCACGGTTGTTCCACGACGCCATTGAGCGACTCGAACGTCTGGGCGGCGAAGCCGTCGAGCTGGACCTGTCGCCCTTCCTCGAAGCGGCGCGCTTGCTGTATGAGGGGCCTTGGGTCGCCGAGCGCTACAGCGTTGCCGGGGACCTGATCGAGCGCGACTCCAGCGCGGTACTGCCAGTCATCCGCGCCGTGCTGGCGAAAGCGCCTACCGTAACGGGTGTAGAAACTTTCCGCGCCCAGTACCGTTTGCAAGCGCTCAAGGCCCAGTGCGACCGAACGATGGAAGCCCTCGACTGCGTGCTCACCCCCACCATCGGGCGCCCGGTGAGCCTCGCCGAACTCGCTGCCGAACCGCTGCAGCGCAACGCTGAACTGGGTTATTACACCAACTTCATGAACCTGCTGGACTACGCCGCCGTCGCCGTGCCCAGCGCCTTCATGGCCAGCGGTTTGCCTTGGGGCGTGACGTTGTTCGGCCGGGCCTTCACCGATCAATATCTCCTGGGCGTGGCCGACGCCTTGCAGCGTCAGCAACTGGATGACTTGCCAACCCCCGCCAATCCCGCGCGCCATGATCGGGCTCGGCTGGTGGTGTGCGGCGCGCACCTGGAGGGTTTGGCGTTGAATTGGCAACTCAAGCAGCGTGGGGCCCGGCTGGTCGAGGTCAGCCAAAGCTCGCCGGATTATCGGCTCTATGCCCTCGCCGGCGGCCCGCCAATGCGCCCCGGCATGCTTCGGGTTGGCGAGGGAGGCATGGCGATCGAGGTGGAAATCTGGGAACTGCCAACCAGTGAACTTGGCTCGTTCCTGACCGGTATCCCCGCACCGCTTGGGTTGGGCAAGGTGCAATTGGCCGACGGGCGCTGGGAAAGCGGTTTCATCTGCGAGCCGTATGGCCTGGACGGCGCACAGGACATCACCCATTTGGGCGGATGGCGGGCTTATTTGCGAACCCTGGAATCGCGATGA	MNLSLRLDNLRDAYRKGETTPRQLLLALREKAAALNPDYHLFIHLLSPEELEPYLAALESRDLDSLPLYGVPFAIKDNIDLAGIPTTAACPAFAYVPQRSATVVERLLALGAVPLGKTNLDQFATGLNGTRTPYGACRNSVLADYPAGGSSAGSPLAVALGVASFALGTDTAGSGRVPAALNNLVGLKATKGLVSTAGVVPACRTLDCVTTFTATAREASQLLALTAHFDPRDEYSRRNPQWNDGSAFGAPRRFRFGVPRWQDLEFFGCDEGPRLFHDAIERLERLGGEAVELDLSPFLEAARLLYEGPWVAERYSVAGDLIERDSSAVLPVIRAVLAKAPTVTGVETFRAQYRLQALKAQCDRTMEALDCVLTPTIGRPVSLAELAAEPLQRNAELGYYTNFMNLLDYAAVAVPSAFMASGLPWGVTLFGRAFTDQYLLGVADALQRQQLDDLPTPANPARHDRARLVVCGAHLEGLALNWQLKQRGARLVEVSQSSPDYRLYALAGGPPMRPGMLRVGEGGMAIEVEIWELPTSELGSFLTGIPAPLGLGKVQLADGRWESGFICEPYGLDGAQDITHLGGWRAYLRTLESR	PGPT0001010_620	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_ATRAZINE|DERIVATE_DEGRADATION	XENOBIOTIC_CYANURIC_ACID_DEGRADATION,PGPT0001010-atzF-K01457	NA	NA
D1-36_03745	747	dosC		Diguanylate cyclase DosC	ATGTCGCTTCGTTCGCCGCTGTATTCCCAGCGCTCACCGGTGCTGATGCTCGCCGTTTTGCTGGGTGCCGCCTTCCTGCTGACTTCGCTGTTGGCTTATTACGCCGCCAACACGTCACTCAAGGACAACATCCTCAAGGCGTTGTACGTCAACCTCCTGATTGGCCTACTGGTCACGGTGACGGTGTTCGTCATGCTTTATCGGCTGATCGCCAGTTTCCAACGCCGGATCGACGCCCAAGCGATTCTGGATGGGCTGACGGAACTGCCCAATCGCCGGGGCTTCGACCTGCTGGCGGTGCAAGCGCTGCACGAAGCCCAGCGAGAACCCAAGCCCTTGAGCGCGTTGTTGCTGGAGGTGGATGCTTTCAAACAACTGGATGCCACCCACGGTCATGTCGTCAGCGACCAATTGCTGAGCGGTTTCGCCCACGACCTGACCGACACCTTGCGGCACTCGGACATCGTGTGTCGGTGGGGCACAGACGCCTTCGTCATGCTACTCAAGGACACCGATGGACAGAACGGTCTGAAAATCGCTGAGAAAATTCGCCAGCGCATCGAGTTGCAGCGCTACTTTTGCAGCGGGAAACAATTGCAGGTCACCGTCAGCATCGGCCTGACCACCTTGCAGGACAAAGACACCTTGCATAGCCTGCTGTCCCGAGCCGATCATGCGCTGCAACGCGCCCGACAAACCGGCAGCAACCGAACCTGCGTGGAAATGCCTCACTCCAGCTATGAATGA	MSLRSPLYSQRSPVLMLAVLLGAAFLLTSLLAYYAANTSLKDNILKALYVNLLIGLLVTVTVFVMLYRLIASFQRRIDAQAILDGLTELPNRRGFDLLAVQALHEAQREPKPLSALLLEVDAFKQLDATHGHVVSDQLLSGFAHDLTDTLRHSDIVCRWGTDAFVMLLKDTDGQNGLKIAEKIRQRIELQRYFCSGKQLQVTVSIGLTTLQDKDTLHSLLSRADHALQRARQTGSNRTCVEMPHSSYE	PGPT0015900_2281	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-CELL_FATE_CONTROL	PUTATIVE-CELL_FATE_CONTROL-1,PGPT0015900-pleD-K02488
D1-36_03746	693	rsuA	COG1187	Ribosomal small subunit pseudouridine synthase A	ATGCGCGTTGACCGTTTCCTCAGTAATCTGCCGCGTTTCAATCGGCAGCAGGTCCGCCTGCTCCTGGTGGGGCGTCGGGTGCGTATCGATGGCCAGACCGTCACCGACCCACACGCGCCGGTGCGCGAGTTCAGCCGCGTCGAAGTCGATGGTGACGTATTGCAAGCAGGCCGACCCGCGCGGTACTTCATGCTGCACAAGCCGCCTGGCTGCGTCAGTGCCACCCGCGATCCACAGCACCGCACCGTGCTCGATCTACTGGACGAGCCGGACAAGGACGACTTGCACATCGCCGGCCGCCTGGATTTCAACACCACCGGGCTGATGCTGATCACCAACGACGGCAGTTGGTCGCGGCGCCTGACCCAACCGCAAACCAAACTGCCGAAGGTCTACTACGTCGAGACCGAGCAGCCCCTCACCGCCGAGTACGCCCCCACCTTTGCCAAAGGCCTGTATTTCGGATTCGAAGACCTGACCACGCAACCGGCGCAACTGACGCTGCTAGGGCCGAAGTCCGCGCGATTGAGCATCGTTGAAGGTCGCTACCACCAGGTCAAGCGCATGTTCGGTCACTTCAATAACAAGGTGCTGCGCCTGCACCGCGAGAGCATGGGCCCCCTGGTGCTGGACTCGGATCTCGAGCCCGGTCGCTACCGTGCCCTTGGCCCCGAGGAAATCTGCCTGGTCTGA	MRVDRFLSNLPRFNRQQVRLLLVGRRVRIDGQTVTDPHAPVREFSRVEVDGDVLQAGRPARYFMLHKPPGCVSATRDPQHRTVLDLLDEPDKDDLHIAGRLDFNTTGLMLITNDGSWSRRLTQPQTKLPKVYYVETEQPLTAEYAPTFAKGLYFGFEDLTTQPAQLTLLGPKSARLSIVEGRYHQVKRMFGHFNNKVLRLHRESMGPLVLDSDLEPGRYRALGPEEICLV				NA	NA	NA	NA	NA
D1-36_03747	885	rhlA		3-(3-hydroxydecanoyloxy)decanoate synthase	ATGAGGCCAGAAATCGCTGTGCTGGATATACAGGGTCAGTATCGGGTTTACACGGAGTTCTATCGCGCAGACGCCGCGCAAAAGACCATCATCCTGGTCAACGGCTCGATGGCCACCACCGCGTCGTTTGCCCAGACCGCCAAGAACCTCTACCCGCAATTCAACGTCGTGCTGTACGACCAGCCCTACGCGGGCAAGTCCAAGGCCCATAACCGTCACGAGAAAATGCTCACGAAGGAAATCGAAGGGCAGATCCTCCTGGAGTTGATCGACCACTTCGCCGCCGAACACGTGCTGTCCTTTTCGTGGGGCGGCGCGGCCGCGCTGACGGCACTGGCCCACCGCCCGCGGCGCATCGAAAAAGCCGTCATCAGCTCGTTCTCACCGGTGCTCAACATGCCGATGCGCGACTACCTGGAACGCGGTGTCGACTACCTCAGCAGCCTGGACGGCGACCGTGTTGGACATTTGGTCAACAGCACCATCGGCAAGCACCTGCCGCCCCTGTTCAAGCGCTTCAACTATCGCCACGTCAGCAACCTGGCCGAGCATGAATACGGACAGATGCACTTTCACATCAACGACGTGCTTCACAGCGACCAACAGTGCTACGTCAACGCAGCCAGGAAGGTCAACGTTCCGGTGCTGTTCCTGAACGGCGAATGGGACGAGTACACCTCGGCAACCGACGCCAGGCTCTTCGCCGACCACGTCCAGCACAGCAGCTTCACCACGTTGCAAGCGACCGGGCACTTCCTGGACATGGAACACAAAGCCGCCTGCCGCGACAGCCGCGACGCGTTGCTGGGCTTCCTCAAGCCGACCCGCCACGAAAGCCGACCGCGCTACAGCTATGTGCAGGACTACCATGCACTGGCTATCTGA	MRPEIAVLDIQGQYRVYTEFYRADAAQKTIILVNGSMATTASFAQTAKNLYPQFNVVLYDQPYAGKSKAHNRHEKMLTKEIEGQILLELIDHFAAEHVLSFSWGGAAALTALAHRPRRIEKAVISSFSPVLNMPMRDYLERGVDYLSSLDGDRVGHLVNSTIGKHLPPLFKRFNYRHVSNLAEHEYGQMHFHINDVLHSDQQCYVNAARKVNVPVLFLNGEWDEYTSATDARLFADHVQHSSFTTLQATGHFLDMEHKAACRDSRDALLGFLKPTRHESRPRYSYVQDYHALAI	PGPT0006830_121	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-AI-1_RhlI|CepI|SolI_PERCIPITATION|SIGNALLING|AHL|NAHL,PGPT0006830-rhlA-K18100	NA	NA
D1-36_03749	813			hypothetical protein	ATGGATGTTAAAGGTCGTTTTGCTGCAATCGATGCGTGTGAAAATATTTTGCGTGAGGACTTTAAGTATAACGAGGCGCACGGTATCTGGCGCAGTATCAATCGGATCATTGAAGGTCTGCTGGGACGCTCCACTGAGCTTGCTGATGTCTACGTGGAGCTGCATGCCGCATTGGCTGAACAGCCTAGGGCGCTGAATTCGTTCTTCGACGTTTTCACAACCACGGTGTACTCCTGGAATCCTGGAAAGATCAAAGAAGCTCGCGAGGATCGGGAAAAGCTCACTGAGTTGAATGAGAGAATTGCAAAAGTTTCGGAGTTACTCTCGGAGTTGCTCTCGCGGCGCACCGAGGTTAAAGAGATGTCGAGTTTTAGTAGTGATACTTACTACCATATTATGGATGTTGTTGAAGAGGCCTCTGAGGATAATGGGCTTTTCAGGTTTCACGTGAAAGGAAAGTTGGAGAAGTTAACCTATCAGTATGATCTCAAATATTGGCCTTCCATAACTAAGGTGGTGGCGCAGATTGGTGTCAATGCGGCCAACGCAGTAATAGTTGCTGATGACTCCGCTGCAAGTGCAGCAACTGAAGCTCGCCGCCCTGGGCTGGCTGACTTCTTAAAAGCATTTGAAGCAGAACTTGATAGGAATAGGGTGGAGAATATTGGCTTTATTCCCGATGATTTTTCACTGACCGATAGTTCTATGGCGTCGTTGGTAAACTGCGGACTTGGGCTGGGAGTCGAAGAGCTGATCGGAGCCAGCTTTGTAAAGCGTTACCGCCAACGTGAGCGTGATCGTGACCGTGGTTAG	MDVKGRFAAIDACENILREDFKYNEAHGIWRSINRIIEGLLGRSTELADVYVELHAALAEQPRALNSFFDVFTTTVYSWNPGKIKEAREDREKLTELNERIAKVSELLSELLSRRTEVKEMSSFSSDTYYHIMDVVEEASEDNGLFRFHVKGKLEKLTYQYDLKYWPSITKVVAQIGVNAANAVIVADDSAASAATEARRPGLADFLKAFEAELDRNRVENIGFIPDDFSLTDSSMASLVNCGLGLGVEELIGASFVKRYRQRERDRDRG				NA	NA	NA	NA	NA
D1-36_03750	522			hypothetical protein	ATGGAGGAGATTGCCAAGGCGGCAGCGGTGACCCGCCAGGCTCTGTACAACCGCTTCCCCGATGGCAAGGAGTCGCTTTTCGTGGCGGTGGCAGAGCGGATGTGGAAAGCCTTCCCCATCATGAACGTTGCAACAGATGAGCGCGCTCTGTCCGACCCGAAGAGAGGCCTCATGCAGATCGCCACCGAGTTCGCGTGCTTCTGGTCTGGCCCGACAGCCGCCGACTTCCTACGCATGGTCATCATGGAAGGCAGAAGATTCCCTATGCTGGCCAGCCGATTTGACGAGGTTATCCAAGCGCCGGTATTGACCGTCATCAGCGATTACTTGGCCGAACTGGCACGCAGAGGTGTCTTGGCAGTTCAAGAGCCTGAGACAGCCGCCTGCGACTTCATGGAGACGCTCGATGGTCGGGTTCTCTGGAAACAGGTCAGGGCCAACAGCGAGCCGCTTGCCCGCGAGGAGATCGAGCAGATCGTGGAGCGCACCGTGGACGCCTTCCTACGATCGCTCCGGCACTGA	MEEIAKAAAVTRQALYNRFPDGKESLFVAVAERMWKAFPIMNVATDERALSDPKRGLMQIATEFACFWSGPTAADFLRMVIMEGRRFPMLASRFDEVIQAPVLTVISDYLAELARRGVLAVQEPETAACDFMETLDGRVLWKQVRANSEPLAREEIEQIVERTVDAFLRSLRH				NA	NA	NA	NA	NA
D1-36_03751	1293			hypothetical protein	ATGGTGTGCTATCAGTGCGTGCACGACCCCTTCCTTGGGAGGAAGATTCAGCGCAGTGGGGCCTCTTCTCAGTGCAGCCTGTGCGACTTGAAGCGCAAGTGTGTACCTCTCGCTGAGATCGTCGAACGGGTCAATGAAATCCTTCGTGTCTATATCACAGAAGGTGATCACGTTTGGCGTTGGAGCGGTGGGCGGATCGACCAGCAAGAAGGCGAGGGCATCGAATACTGGGTCAGCGAAATTTTTGGCTGCGACAACATTGAACCTATTGTGGGTGCAGTTTGCCGGCGCCTGACGTCATACAGTGACGACATTCGGTACTCCAGACAACGTTTCAGCTTGGATGACATCGGCCACCAGTGGTGCGAATTCCAAGAAGGTATGAAGCATGGAATCCGCTTCTTCAACGACAGCGCCAAGGCGTTCCTGGACTGGATCTTCAAAGATCTGGACAAGTACTCAGCCTCATCTGATGAGCATGCTGTGGTGCGATTGCTCACACCTGAAGGCTCGCCACCGATCTACCGCGCGCGAACCTGCATGAGCTCCGAAAGCGTCTCCGAGATCACAGCTGATCCTGCACGTAATCTTGGTGCTCCTCCAAAGGAGCGGGCCGGTGAAGGAAGGATGAACCCCGCAGGTGTTCCAGCCTTTTACGGAGCCTTCGAGCGTAAGACCTGTGTCGCTGAGCTGCGTCCCCCGGTCGGCGGCACCGTCGTGAGTGGCAAGTTCAGGTTGGTCAGGGCGGTAAAGGTGTTGGATTTCGGACGTTTCGAAAACGCAGACCTTGGGCCCATGCCAAGCTTCTTTGACTCCAAATACCATTCAAAGGTGGGGCGGCGGGATTTCCTGAGGTATTTGCATGATGCAATCACGGTGCCGGTGCTCCCTGGAGCAGAGCGCGATTATCTGACCACCCAAGTCATCGCAGAATACCTGGCGACGCATTGCAAGCCCCGTATCGACGGAGTGATCTTCAAGTCGGTGCAGGAGAGTGCCGGCAGCAACATTGTGCTGTTCTCGCACGTCGCCTGCGCTGCCACCGCGTCGATGGGAAGGATTCAGAACGGCTATATGGTCAGAGGCCCCAAGGAGTCCGATGGGCCTTGCATCGAGTATGTCAGTGACAGCCTTGTCTACCACGGGATCCGGCAGGTGAAGTACGACACAGATGATCAGGCGCTGCTGGAGGACAAGTTGTTGCCATTGCCAGTGCAAAGCGCGCTGACTCCCCCAAGTGGCGCGCACTCGCTTCCGACAGGTATGGAAGGGCTGCTGGACGGGGATTTCTGA	MVCYQCVHDPFLGRKIQRSGASSQCSLCDLKRKCVPLAEIVERVNEILRVYITEGDHVWRWSGGRIDQQEGEGIEYWVSEIFGCDNIEPIVGAVCRRLTSYSDDIRYSRQRFSLDDIGHQWCEFQEGMKHGIRFFNDSAKAFLDWIFKDLDKYSASSDEHAVVRLLTPEGSPPIYRARTCMSSESVSEITADPARNLGAPPKERAGEGRMNPAGVPAFYGAFERKTCVAELRPPVGGTVVSGKFRLVRAVKVLDFGRFENADLGPMPSFFDSKYHSKVGRRDFLRYLHDAITVPVLPGAERDYLTTQVIAEYLATHCKPRIDGVIFKSVQESAGSNIVLFSHVACAATASMGRIQNGYMVRGPKESDGPCIEYVSDSLVYHGIRQVKYDTDDQALLEDKLLPLPVQSALTPPSGAHSLPTGMEGLLDGDF				NA	NA	NA	NA	NA
D1-36_03752	357			hypothetical protein	ATGCTGATCGAGCTCGACCTGAACCATAACGACGCGCAGGCGCTGTTGCACCATTGCACAGAGCACCAGCCAAGCTCTGATGATTTCCGAGAAAATACCCGCCTCAGAGAGGCCTTGGAAACGCTCGCAGAGGCAATCAATGACGCGATGAGTCCGAGGGAGGAAAGCCCAGAGTCTTCGGAAACGATTGACTCACGGTTGCTTGATGCAGCCATGGCAATCTTCGGCGACAAGAAAAGCGCGGGGGACTGGCTATCGAAACCCTTACGAGCGTTGGGAGCAAAACGCCCGATGGATGTCCACATCGACGACGCCTTGAAACTTCTTGCGCGCATTGAGCATGGGTTCGGTGCCTGA	MLIELDLNHNDAQALLHHCTEHQPSSDDFRENTRLREALETLAEAINDAMSPREESPESSETIDSRLLDAAMAIFGDKKSAGDWLSKPLRALGAKRPMDVHIDDALKLLARIEHGFGA				NA	NA	NA	NA	NA
D1-36_03753	894			hypothetical protein	ATGGCCAAGAAGCCGAAGTTCTACGCTGTTGTCCACGGACGGAAACTCGGGATTTTCAATAGCTGGGAAGGTGGGGCTCGCTTGTCGATTGACCGTTTTCCGGAAGCGAAACACCAGTCGTTCGCAACGCTTGAACTCGCTGAGGAGTGGTACCGCCAGAACACCCCCACGCCAGGCTCGAATCACTCACCGGTTCTTCACTTCAGCACACAAGCCTCAGGGAAGCAGCCGACGGCCACCCCTGAACAAACAACCCTAGACGGCGTGGTTGCCAAGGACTATGTCGTCTATCTGATCATTGATCCCGTAACGGAGGAGCCATTCTACGTGGGGCAGACAGGCGACTTCGAAGGCCGGCAGCGAGGCCATCTCGGGAAAGCCAACCACGACTGCAAGCGCGCGGCAGCCAAGATCGCCCAGATACTCGATGACGGGATGACCCCAGCATTCAAAGTTGTGGAAACCTGCGAATCTGAAGAGGCCTCATTGGAGGCAGAGACACGCTGGATCGAGCGCTGTACCGCCAGGGGTATCACGGTTTGGAACCGCACGAGGGAGCATCGCCAAATCCAGGCATTACACATGAAGCCCAGAATCGAGTTTGATCGAATTATCGGGGACGGCCCCTTCACCCTCGGCCCCTACCCATACGACTCCAGATTTGAGCTGAAGAGCAAGCTCAATGCCTTCCTGGCCAAGTCTGCCCAAGGTGCGATACAGCTGGGCATGGCCACCGAGAAGCTCAGGTTGATCTGGAAACTCACCGGCCAGGCAGGGGAAGTCAGCGAATTTCGCATCGTCAAGAACGCATCCAAGCATCAGCTCGAAGCAATCCTCGTGTCCGGATCAACCATGAACTTTGACTACGGCGCCGCGATTGACCGCCTCCCCTAA	MAKKPKFYAVVHGRKLGIFNSWEGGARLSIDRFPEAKHQSFATLELAEEWYRQNTPTPGSNHSPVLHFSTQASGKQPTATPEQTTLDGVVAKDYVVYLIIDPVTEEPFYVGQTGDFEGRQRGHLGKANHDCKRAAAKIAQILDDGMTPAFKVVETCESEEASLEAETRWIERCTARGITVWNRTREHRQIQALHMKPRIEFDRIIGDGPFTLGPYPYDSRFELKSKLNAFLAKSAQGAIQLGMATEKLRLIWKLTGQAGEVSEFRIVKNASKHQLEAILVSGSTMNFDYGAAIDRLP				NA	NA	NA	NA	NA
D1-36_03754	1068			hypothetical protein	ATGCGCGTTCCGATCTATCCCGAAGATCTGCTGCCCCAAACCGCCTTTAAAAGACTCGCTAAAAGCATTCAGAAAAGATGGCCAGGGAATTCGCCCATCTTGCTTTCTCTTGCTCGTGAGACCCTTTCTAAAGGGCTAGGGTATACGAGCTACCACCACCTCAGGAAAGCGTCCGTCACCTGCCCTCGGGATGCAGAAACTCCTGTCCTGCCCGCCGTGCACGCCCAGATCGCGGCGGCGATTTCTTCGGTACTGGCCTTGGCCAGCGATGCCTCAGTACCGCGCAGTGTCCTTGACTCTTTTGTCGAAACTCTCACGTTGAAAGCACTTAGCACGTTCAAGGGGGCTGCCTCACGAGGCGTTGAGGTGACCAAGATCCCAATGCCTGATTTAGACCAGACTGAAATCTGTCCGGTGAACACTACCGCCCCAGAGTCAGAAGTCCCGCGCTACACGTGTCCCCCTCTAACGCACAAGCCATCGAAGCTCCACGCCATTTCGTTGGGGCTGGATGTCTTCACTCACAGTGATGCGATCAAGCAGATCGTCGAAAACTCAGGAAGCCTTCGCGACCGGAGCCTTTTTGCATTGCTGGAGACAGGGCTTCGGGGGCACGTCATCCTTGGTGCCAAGGTTTCCCAAGTTGTCAGCTTGGTTACCTACATGCCTTCGAGCAGGGAGATGACTGTGGAGGTCACGAAAGCGACATCACCATTGCCCGTTGCGAACATAGCGGTGATCGAGAAGTACATCAGCGCGGAGAATCTCTCTGCCGATGACTACCTCTTTCACGGTAATGAACGGACGCAACCCATGTCGACATCGCAACTGCTTCGGATTTTTCAGTCGTGGGAACGAGAAGCTCAACTCCCTCGCTCAACACTCACGCCGAGCACATTGAGACGGGCAGCTATGGCACAGCTAGCAGCTTCCACCCTACCGCAACAGCCTGGCGAGCGAATCGCCGATCAGTTGGGTCACTCCTCCAGTTCCATGGCCGAACACTACGTCTCACTCACTACGACAGGCGCTGATGCGGCCTTGAAAACCAAGAAGCGTCGTACCTAA	MRVPIYPEDLLPQTAFKRLAKSIQKRWPGNSPILLSLARETLSKGLGYTSYHHLRKASVTCPRDAETPVLPAVHAQIAAAISSVLALASDASVPRSVLDSFVETLTLKALSTFKGAASRGVEVTKIPMPDLDQTEICPVNTTAPESEVPRYTCPPLTHKPSKLHAISLGLDVFTHSDAIKQIVENSGSLRDRSLFALLETGLRGHVILGAKVSQVVSLVTYMPSSREMTVEVTKATSPLPVANIAVIEKYISAENLSADDYLFHGNERTQPMSTSQLLRIFQSWEREAQLPRSTLTPSTLRRAAMAQLAASTLPQQPGERIADQLGHSSSSMAEHYVSLTTTGADAALKTKKRRT				NA	NA	NA	NA	NA
D1-36_03755	939			hypothetical protein	ATGTATAATTTCCTAGTGACGTCTCGTGAGGGGGCATGGGAAAGCGGCTATGAGTATGATAAGAGCCGCTTTCTGGAGTACACGAACGATGATATTGCTGCAAGTTTCAAAGAGCTGAAAGAGCCTCAGCTTAAAGCACTGATGGAGCTCCCTTGCCTCTTTGCTTACGAGGGCACGCGTCACGCCATGAGAGTGGGGAAGCTTGAGGTGAAGCTTCGTAGTAACGGCAAAATTTTGTTTGCTCGACCGATCATGGACGATCGAATCGCACCCATTGAGTTTGAGCAGATCAAACCTCTTCAAGCCGCTCTTGATATTCGCGATTGGGAGATCAATCGCACGCACTGGGCAGTCAAAGACGAAGATCTTTTCGCCATTCTTCACCACTCAGGTATTTTGCCGGAAGGGATGGTTGGCTCGAAAGTCACCAAGGAAGATCTTCCTGCCACCTCGCTACCGGAAACTCACGCTGACAGCGTCGGTGCCTTTATTGAACATGTTTTTCGACTAAACCATGGCCATCGCGAGGTCTTTTATCGGGGGCACTCCAATAGCAAAAAGTATCGCTTGGAGCCCTCAATTTTCCGCAGGGATCAGGGTGGTAACTTCGTATACCGAGATGCTGAGGATAGGATGTATCGGGAGCTTCTGGTTTCCAACTCCCTGGATTTCAGTGGCGACATTTATACCCTGGATCGCCTAGTGCGGATGCAACATTATTCGCTGCCGACACGGTTGCTTGATATTACATCGAACCCATTGATTGGGTTGTACTTCTGCTGCAAGAGCCACTTAGATGAGACTGGAGAGGTCATCGTGCTCTCCATGGATCCTGGTTATATAAAGTACTTCGATTCCGACACGGCGAGTTGTATTGCTAATCTTTCTCGTTTGTCCAAGGGCGTCAGGACTCAATCATATTCGATTCTGAAGACGTAG	MYNFLVTSREGAWESGYEYDKSRFLEYTNDDIAASFKELKEPQLKALMELPCLFAYEGTRHAMRVGKLEVKLRSNGKILFARPIMDDRIAPIEFEQIKPLQAALDIRDWEINRTHWAVKDEDLFAILHHSGILPEGMVGSKVTKEDLPATSLPETHADSVGAFIEHVFRLNHGHREVFYRGHSNSKKYRLEPSIFRRDQGGNFVYRDAEDRMYRELLVSNSLDFSGDIYTLDRLVRMQHYSLPTRLLDITSNPLIGLYFCCKSHLDETGEVIVLSMDPGYIKYFDSDTASCIANLSRLSKGVRTQSYSILKT				NA	NA	NA	NA	NA
D1-36_03756	2112			hypothetical protein	GTGATCAAGAATTTGATATTGCGCGGCGTTTCGAGCTACTCCCCAGAGCAAAACTCCCATATCGGCCCACTCACGAAAGTGAACATGTTTTATGGGCACAATGGAACGGGTAAGACCACGATCGGCAATTATCTTCAAGATCCTTCTGACCTGCTGTACCACCAGTGCAAGACCCAGCCTGTCTCGGCGGAACGTGAAGTGATGGTCTACAACCACACGTTCATGGAGACCAATTTTCACGCGAGCTCACAGCCCGGCATCTTCACGCTCAATGAAGGAAATATTGAGGCCGAGAAAAAGCTGCTCGCGGCTGAAGAAGCACTCAAAAAGCTAATGGTTGAACACCAGGCCGAGGTGGCAGCGGGCAATGGATTCGGAGAGTCCCAAAAATCCAATAAAGCGAATTTGCTCGATCAGCTATGGGCCCTCAAAAGACCGTTCGATACCGGGCCTCTGCGGTACTGCTTCACTTCTCTCAACACAAAGGAACGGCTTGGGGAAAAGCTACGCACCCTGTCTCTTGTGCCGTCGCCGGATGATTTCTCAGCGTTGGCGGCGGAGGCGGAACAGCTGCAATCAGCCAGTGATGCTGAGCTGCCTGGTATACCCATAATCCGGTTTGCGGAAGCGGACGTTGAAGCCAGCTCTCTGCTATCGGAGGCCATTGCCGGCTCCGGTGACTCCTATCTTTCCGCCTTGATCACCGACCTGGGGAACTCCGATTGGGTAAAGCGAGGGTTGCAGTACCCGCAGTGGGAAGAGTGCCCGTTTTGTCAGCAAACTCTACCTTCTGGATTTTACGAAGAAATCCAGAAGGTGTTCGACAAGACGTATGAACAGCGCATCACCCAATTGAAAGCCCTGAAAACGCGGTACGAAGGCGGGGTCACTCGCTTGAGAACCCAGTTCAAGCGTCCCGAATACGACGCGTCTGAGTATCAACTGCTGATTACGAAACTCGATGCTCTGCTTTCGCAGAACACGCAAAAGCTGGATGCCAAAGTGGCCAGTCCTTCAATGGTAGTGGCACTAGAGCCTACCGGGTTGATCATTGATGATCTCACCGACTTGATTGCGGAAGGTCAAAGGAAAATCGATGCTTTCAATCTCAAGGTGAAAGACAAGAAAAATCACCTGGAGAAAATCAAGGCGCGCTTCTGGGTCTGCTTCAGATCCAGTTGCGATACAGCTATTGCATCGGCCAGGAAGGTGCATGAGGAGCTTGGGGTCAAGAAGGAAGCGAAACGCAAGCTGGCGGATGAGATCCGTCTCAAGTCACAAGCTCACCAAGATGTCATCGCCGAGAGTAAAGCTAAGATCACGAATATCGATCAATCTATTGGCAGCATTAACTCGTCGCTTGCCGCACTGGGCCTGAACGGCTTTCTGGTGGTCAGGGAGGAGGGGGAGTTGCCGCGCTATCGCCTGCAGCGGCCTGATCAGCAGGCTGGGGTATTCAAGACGCTCAGCGAGGGAGAAAAGACCCTTATCTCATTCCTGTACTTTCTTGAAGTCTGTAATGGCGAGCTCGACGATAAAGGTGGCAAGCTCAAAAGTGAGCGGATCATTGTCATTGACGATCCTATCTCAAGCCTCTCTCACAACTATATTTACGACATCGCCACAATGATTCATAGGCGAGTGCTGAGCCCCAAGGAACGCTTCAAACAAGTATTTATCCTGACGCATAATTTGTTCTTCTTTCATGAAATGCTCAAGCACCTAAAGAAGTCCGATGAGTACTCGTTGTTCCGTATTACCAAAGCAGCTCACAGCATGATCACCCCGATGAAGGCCAGTGATGTACAGAATGACTATCAATCATTCTGGCAGGCCATCAAGGATGCTCAAGCAGGTCGCACTTCTTCTAGCGTTATTCCGAACATGATGCGAAATATTTTGGAGTACTACTTTACCTTCGTACATCGGCAAGACGAGCTCCAGGCAGCACTCATGGCCCTGTCTGATGAGGATGCAGAATTCAAAGGACTCTATAGGTACGTGAACCGCGAGTCTCATTCCGACGCAGTCAATTTGACTGATTTTGGTGAGATTGTGCCGTCGCATTACGTGGATCGGATTCAGGCAGGTATTTGTGAGGACTGGCTTTGA	MIKNLILRGVSSYSPEQNSHIGPLTKVNMFYGHNGTGKTTIGNYLQDPSDLLYHQCKTQPVSAEREVMVYNHTFMETNFHASSQPGIFTLNEGNIEAEKKLLAAEEALKKLMVEHQAEVAAGNGFGESQKSNKANLLDQLWALKRPFDTGPLRYCFTSLNTKERLGEKLRTLSLVPSPDDFSALAAEAEQLQSASDAELPGIPIIRFAEADVEASSLLSEAIAGSGDSYLSALITDLGNSDWVKRGLQYPQWEECPFCQQTLPSGFYEEIQKVFDKTYEQRITQLKALKTRYEGGVTRLRTQFKRPEYDASEYQLLITKLDALLSQNTQKLDAKVASPSMVVALEPTGLIIDDLTDLIAEGQRKIDAFNLKVKDKKNHLEKIKARFWVCFRSSCDTAIASARKVHEELGVKKEAKRKLADEIRLKSQAHQDVIAESKAKITNIDQSIGSINSSLAALGLNGFLVVREEGELPRYRLQRPDQQAGVFKTLSEGEKTLISFLYFLEVCNGELDDKGGKLKSERIIVIDDPISSLSHNYIYDIATMIHRRVLSPKERFKQVFILTHNLFFFHEMLKHLKKSDEYSLFRITKAAHSMITPMKASDVQNDYQSFWQAIKDAQAGRTSSSVIPNMMRNILEYYFTFVHRQDELQAALMALSDEDAEFKGLYRYVNRESHSDAVNLTDFGEIVPSHYVDRIQAGICEDWL				NA	NA	NA	NA	NA
D1-36_03757	678			hypothetical protein	ATGACCGTCAAATTTGTCCTCTTCGATGCGTTCGGCACGCTTGTCTGCATCCCCAAAGCCACTCACCCTTATCGTCAAATTCTCAAGGAGGGCATCCGCCAGGGCCGCAAGCCGCGACCAGATGACCTTCACCACATCATGGCTCGTGCTCTGAGCCTGACCGATGCGGCAAAGCAATTCGGGATCAAGATCCCTGCAGATCGCATGGCCGAGATTCAAGGTGCTCTTGAAGCAGAACTGGACAGTATCGAAGCCTTCGAAGATGGGATTCGAGCAGTCGAGAGATTACAGGCTGCGGGCATCAAGATCGCCATCGCCTCCAATCTAGCAGCCCCATATGCAGCGCCTGTCCGGCGCTTGTACCCAACGATGGATGCCTATGGTTTCAGCTTCGCTGTTGGAGCCCTGAAACCCCAGCCATTCCTGTATCGAGCTACCTGCGAACTCTTGGGGGCAAAGACAAGCGATGCGTGTGGAGAAAGCGATGTACTGATGATTGGCGATTCAGAAAAGTGTGACCGTGACGGCCCTATGGCCGTGGGCATTCAGGGGTTTCTGCTGAACCGCAATGGGGGTAAAGATTTCGCCAACCTCGATGAGTTTGCCGAATACGTATTGAAGGTGTCCCACCCCATCGCTTCCGCTGTCAAACCGGCGCGTCATGAACTGGTCAAGTAA	MTVKFVLFDAFGTLVCIPKATHPYRQILKEGIRQGRKPRPDDLHHIMARALSLTDAAKQFGIKIPADRMAEIQGALEAELDSIEAFEDGIRAVERLQAAGIKIAIASNLAAPYAAPVRRLYPTMDAYGFSFAVGALKPQPFLYRATCELLGAKTSDACGESDVLMIGDSEKCDRDGPMAVGIQGFLLNRNGGKDFANLDEFAEYVLKVSHPIASAVKPARHELVK				NA	NA	NA	NA	NA
D1-36_03758	837			IS3 family transposase ISLad1	ATGATCGCAGAGCTAAGAGAGTCATTTCCGACGGCCGTGGTGTGTCGTGTTTTCGGTGTGAAGCGCAGCAGCTTTTATGAGTGGATTCAACGGCGGGCCAAGCCGCGGATCAGACGTGAAGAACTCAGGTTGAAAGTCGTTGAGCTGCACAGCGAAAGCCGCGAAGCCATGGGCTCCAGAATGATTAGCAAAGGCCTGAAGGCTCAGAAAATAACAGCTGGAAGGAGCCTTGTTCGAGCGCTGATGAGGGAGGCCAACATTGTCAGTAAACAACGTCAGCCCCACCCCTTCAGATCCAGAGGCGTGGAGGCATTTGTCGCGCCCAATCGGCTAAAACGCAACTTCAAACCGGCGGCAATCGATCAGGTTTGGTGTGGCGACGTGACCAGTCTGATGGTGGGCAAACGCTGGCTTCATCTGGCCATCGTGATTGATTTGTATGCTCGCAGGGTCATTGGCTGGGCTTTTTCTCTGGTTAATGACGCCAACTTGGTCAGCAAAGCGCTACGCATGGCGACAGAAGTACGAACGTGTCCTCCTGGGCTGATGTTTCACTCAGATCAAGGATGTCAGTACACCAGTCGCAAGTTTCAAGAAGAGCTGACGCGCCACGGCATTTTGCAAAGCATGAGCCATCGAGGGCAGTGCTGGGACAACGCTCCAACTGAGCGCTTTTTTGGCACGCTAAAGTCAGAGTGGGTACCTCGCAACGGCTACGGCCTGATCGAGGAGGCAAAAACGGACATGGTGCGTTTCTTCATGTACTACAACCGCACTAGGCTCCACAGCTACAACAACTACCTGTCGCCAATAGCCATGGAGCAAAAAGCGGCATAA	MIAELRESFPTAVVCRVFGVKRSSFYEWIQRRAKPRIRREELRLKVVELHSESREAMGSRMISKGLKAQKITAGRSLVRALMREANIVSKQRQPHPFRSRGVEAFVAPNRLKRNFKPAAIDQVWCGDVTSLMVGKRWLHLAIVIDLYARRVIGWAFSLVNDANLVSKALRMATEVRTCPPGLMFHSDQGCQYTSRKFQEELTRHGILQSMSHRGQCWDNAPTERFFGTLKSEWVPRNGYGLIEEAKTDMVRFFMYYNRTRLHSYNNYLSPIAMEQKAA				NA	NA	NA	NA	NA
D1-36_03759	306			hypothetical protein	ATGAACGAAAGAAAGGTCTATACCCGCGAGTTCAAGCTGCACGCTGCCAGCATGGTGCTTGATGATAACTGCCCGGTTCTAGATGTGTGTGCATCACTGGATATCGGGCCCACTGCTTTGCGACGCTGGGTTGATCAGGTTCGCAAGGAGCGTGAGGGGCAGCCAGTTAAAGGCACCAAGGCGATTACCGAAGATCAACGCCAGATTCAGGAATTGAAGGCCAAGATCAAGCGCATGGAAATGGAAGCCGAAATATTAAAAAAGGCTACCGCTCTCTTGATGTCGGATCCCGATCGTTTCCGATGA	MNERKVYTREFKLHAASMVLDDNCPVLDVCASLDIGPTALRRWVDQVRKEREGQPVKGTKAITEDQRQIQELKAKIKRMEMEAEILKKATALLMSDPDRFR				NA	NA	NA	NA	NA
D1-36_03760	498			hypothetical protein	ATGTCTGAACTGAAAAAAATTAAAGTAGTAGTAAAGAATTATGACGTGCAGGGATCGGGTGACCTGGATGCACTGTATGGCCGGGTTAGGCTTGAGGATGAACAAGGTCAGACGTTTTACTTCAAGCAGGTAGTAATGCCGAAATACTTGAAGCAACATGGCGCGATGGCAATGAATGTGCCACGCACATGGTTTTACAAGCATGTTTCCAAGAAATCAATTGTGGTTATCGCATTTGAGAATGCTAACGGAAAGGTTGAATATGACCTCAGTGATCTGCAGTTGATCGCTAGGTCAACGGTCATGAAAGGTATTTTAATGACGATTGCAGCGATCCCAATGGGCGTTATCGCTGCGACGGCAACTTATGGGTTGGGGCTGATACTCATTCCGATGGGATTCTGGTATGGGTATCGGAATACGTTCAAGCTGCCAGCGATGCTTAGCCGGAAAAGAATTCTCAGTGACTTTTCTGCCTATGGTATCGAGGTTCGATAA	MSELKKIKVVVKNYDVQGSGDLDALYGRVRLEDEQGQTFYFKQVVMPKYLKQHGAMAMNVPRTWFYKHVSKKSIVVIAFENANGKVEYDLSDLQLIARSTVMKGILMTIAAIPMGVIAATATYGLGLILIPMGFWYGYRNTFKLPAMLSRKRILSDFSAYGIEVR				NA	NA	NA	NA	NA
D1-36_03761	327			hypothetical protein	ATGTCGAGTTCAGTGTTGAAGTATGAGTTCAGAGGCAAAGAAGGTGGCTCGGCTCCTAATCAAACCGTTCCCACCGAGGTAGTACAGGCGCGAAAACTGGATTGGGGTGTGATTGTAGACGCCTACTTGGTCGGGGCGGCCAGGGTGGGGGATCGCTTTGCGGCAAGAGTTTTTCACGATTTATCGGGCGTTAATGAAAATGCTATGACTGTAGTGACTCCCCCTCTGCAGGAGGTTGAGCGCAGGTACGGATTCAAATTAATGCGAAGTGTAAGTGGTGTGGACTACTTCGTTATTGCAAGTGAACTGAGTTCCTCAATGCCTTAA	MSSSVLKYEFRGKEGGSAPNQTVPTEVVQARKLDWGVIVDAYLVGAARVGDRFAARVFHDLSGVNENAMTVVTPPLQEVERRYGFKLMRSVSGVDYFVIASELSSSMP				NA	NA	NA	NA	NA
D1-36_03762	732	cpdA_2		3',5'-cyclic adenosine monophosphate phosphodiesterase CpdA	TTGAAAGTCAGGATCTACTCAGACCTGCATCGTGAATTTCACCCTTGGAATCCCCCCGATTGTTCAGGCGTTGACCTGGTGATATTGGCTGGAGACGTCGACAAAAAGACTCGCGGTGTCCAGTGGGCCAATGAGTCGTTCGAATGCAAGGTAGCCTACGTCATGGGTAATCACGAGCTGTACGGCGGTCATCTTGATCGCACGCTGCAGAAGATGCGGGATGCCGCTGCGGCGCACGTGCATGTTCTGGAAAACCAGATCTTGGAGTTGGCTGGCGTCAGGGTGCTTGGCACGATGAGCTGGACGGATTTCACGAGCACTGGCGACCAGCTTGCCGCTAGCAACATGGCGAGAGAGTGGATGACAGATTTCAAACAGATCAGGACAGATAGTAACTACCGTCGCATCCGTCCAGATGATCTGGTCAGCCGAAATCAGCTGGCCAAGGCGTGGCTGACCGAGCAATTGAATCAACCCTATGAGGGCAAGACGGTTGTCGTGACCCATCATTGTCCGTCGTCGGTTGTGGCCGGAACTCAAAATGAAGGGCATCTCAATGCCGCTTATACCAACGAGTGGGCAAGCCTGATCGAGAAAAGTGACATATGGGTATTCGGCCACACACACCATGCTGTCGATGTAACACTTGCCGGCTGCCGATTGATTTCAAATCCGCGAGGCTATCCAAATGAGCCTACGGCTTTCGATCCGTTTTTTGAGATTGAGATCTGA	MKVRIYSDLHREFHPWNPPDCSGVDLVILAGDVDKKTRGVQWANESFECKVAYVMGNHELYGGHLDRTLQKMRDAAAAHVHVLENQILELAGVRVLGTMSWTDFTSTGDQLAASNMAREWMTDFKQIRTDSNYRRIRPDDLVSRNQLAKAWLTEQLNQPYEGKTVVVTHHCPSSVVAGTQNEGHLNAAYTNEWASLIEKSDIWVFGHTHHAVDVTLAGCRLISNPRGYPNEPTAFDPFFEIEI				NA	NA	NA	NA	NA
D1-36_03763	435			hypothetical protein	TTGGGTCTTACCCAGGAAGGGCTGGGCCATGCCATCTCGCGCACCTACGCAGCAAAGATCGAGAATGCGCTCAGCTCCCCTACCCTCGACAAGTTCACAGAGCTCGCCGCCGCCCTTAACCTGAGCCCGGTTGCTTTGCTCTCCCTTGTCATTGCGACACGAGACAACGTCCCCACCTCGACCGTGCTGACAGAAGCAGCAGACCAACTGAAGGCGATAGAAGAGAAGATCAGCCCGAGCGATATCGCAGAGCAGTTAACCGGTAAAGAGATTATGAAGCGCCCCGCCGCGCGCCCAGCCGATCCTCTGAAACTGCAGCAAGTGCTTGAGAGCAAGAATGCTGGGCTGACGAAAGCCGAAACCGCCAGGCAGCTTGGGATGAGCCGCTCGACGGTAGGCTTTCTATGGGATCGCTCCCCTACCACCGAAAACTAG	MGLTQEGLGHAISRTYAAKIENALSSPTLDKFTELAAALNLSPVALLSLVIATRDNVPTSTVLTEAADQLKAIEEKISPSDIAEQLTGKEIMKRPAARPADPLKLQQVLESKNAGLTKAETARQLGMSRSTVGFLWDRSPTTEN				NA	NA	NA	NA	NA
D1-36_03764	702			hypothetical protein	ATGAGCAACTCTCGGCATTGGGCTGCTGAAGCTCGTGAACACCAAAGCGGTACGCCAAATAACCTAACCCCAATGAAGCTGGCTACTGCTGCCCTCAAGTCCGGCGTGAAGCGATACTTTCCATGGCAGTTCGGTGTCGACTTCGAGGTAATCGGTCGGGGCAGTCCTCAGGATCTGTTCGATGCTCAGCTTGATGTTCGCGAATTGCTTCGCGCCCAGGATAAAACTGAATGGGTCATCATCTCGGCTGGTATGTTCACCAGCTTTCTGTTCGAGCCTGTATTCGAGGTGGTCGATTTCGAAAACGACACCTTGAACGCACTGGGCAGTCTCGAAACCAGCGTGACGCTTACGACTCCAGACGACATCGGCGCCTTGGCAGCGGAAATTGTTTTCTTCGAACCCCGCTTTCGCAATGAAATTGTTTATCTATCTGGAGACACTGTGACGTACGGAGAGGTCGCCAGCCTCCTTGAACGTGTGCTGGGTCGCCCGTTCAAACGAAACGTGTGGACTGTTCCGTACTTGCTTGAGGAATTGGAGAAAGATCCGACGCATCACATCAAGAAGTATCGCGCTGTGTTTGCTCAGGGCAAGGGTGTGTCATGGTCTAAAGCAGGTACCTTCAACGAGCAGCAGTCGATTCAAGTCACGACCGCTGAGAACTGGGCCCAGGCAAACCTGACAGCCTCTTCAGTATAA	MSNSRHWAAEAREHQSGTPNNLTPMKLATAALKSGVKRYFPWQFGVDFEVIGRGSPQDLFDAQLDVRELLRAQDKTEWVIISAGMFTSFLFEPVFEVVDFENDTLNALGSLETSVTLTTPDDIGALAAEIVFFEPRFRNEIVYLSGDTVTYGEVASLLERVLGRPFKRNVWTVPYLLEELEKDPTHHIKKYRAVFAQGKGVSWSKAGTFNEQQSIQVTTAENWAQANLTASSV	PGPT0019990_8	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_FLAVONOID_UTILIZATION	PLANT_DERIVED_HYDROXYISOFLAVONE_REDUCTION,PGPT0019990-EC_1_3_1_45_like-NA	NA	NA
D1-36_03765	1632			hypothetical protein	ATGGTGCGTATTATTAGCCCATCCAACAAAGGTGGGCCCGCTGCGAGGCAAGGCTTCAAGTATCAAGACCATGTAGCCGTCAGCTTCATTTTCAAGATGCTGCGCGATAGCAGTTACTCCCAAGTAGAGTGCGAGACCGCCGACGATATCGTGGCCGTATTTCAGTGCGCTGGGGAGCTCGTCAACGAGTACATCCAGGTCAAGACGACTGAGGGTGACCACAAATGGAATATGGAAGAGGTGACCAAGCTGGATGGCACCAAAGCCAACTCGTCCTTGCTCCATAAATCGCTGAATTGCGATGTTCGTTCTGGCCCTGCCCGCTTCCGAATTGTGACCCAGCGCGACGTCGCAAAGATTCTCAACGGCTTCAAAACCGAGCTGGATAAGCGGAATCTGCCTGACACCACCACGGCCCGAGGCAAGGCACTGCTCAAGAAGTTCAAGACATTCAGTTCCCCACAAAATCGGAATTTTGCCTACTGGGCAGAGAACTGCGTCTGGCAGGTCTACGGGGATGTGGAAGCATTAGAAGCGGTCAACATCAAGGCCCTCTCCAAGCTGGCTGAGGATTTCGGGAACCGCCCCAACAATACCCAGATGCAGGCTATTTACGATGATTTCTTGGAGATGGCTGACAAGGCTGCCACGGCCAACGTGAAAACAGCAGCATCGACGAAGATCATTCTGCGGGCTTCGGCTCTGGCCCACCTCAAGCAGCTACTAGAGGCCGCAGATGAACAGTCAACGGCTACAGCCAAACCCTACAAAAAACGTCCAGATCCCTTCCTGGTCGAGTTTCACGCAAGCACCGATGAAGGCCTGCTGCACACATTTTCCGGCTTCGACGTTCGCTACGCGCTGAAGGCATGGCGGCACGATGGTTTTGCTAAACACCTGGTCGAATGGCTCCCAGAATTCTCACTCAAGGCGAGCGAGATCGTGAATATCCTCGCGCACAATGCCGAGGCCATGCTCGCTCGTTCCATCAATACCTTCAGCGACAGCGAGCTGCCTCGCGATAGGTTGATCGCCGAACTGATCCTCCACGCCATCCTGCGCAGCCGCCAAAACAGCGAGCCCGTGGCATGCAAGGTTTTCTATAAATCCGGTGGCAAGCTCTCCGAATTTGGCAACGCCCACATCGTCCAGATACCTGGCCAGGACGATCAGCTATGGCTAGGGCTCGCGCGCCTGATTGAAGCAGGCAACATGGACGCGACGTTGGCCCAGATCTGCGGCGTCTTGGACGCCACCATTTCGGAAACGGTACTGTCGTCAGAACGCGAAATCATCATCAACCTGCGCGAGCCTCTTCACCATCAACCGAAAGCGGACGCCTTCAACCAGGCACTGCATCGAAACTCGCCAGTCGATGACATGCTGAACGTCCTCTGCTTTCCTATCCTGTTGACCTACGACAGTCACGCACTCTCATCAGGCTGGCTAGCTGATTACGTGAACCACCTCAGAAAAGAGATTGAAGCCCACTTCAGCACCTTCACCACCCAGTTGCCAGAGAACATCAAGCAAGTGAAGGTCATGGTGTTCCTTGTGCCAATGGAGAGCATCGAGAAGCTGACCAACGCCTTCAATGCTCGCTGCAAAACACTGGAAGACTTGCAGGTATGA	MVRIISPSNKGGPAARQGFKYQDHVAVSFIFKMLRDSSYSQVECETADDIVAVFQCAGELVNEYIQVKTTEGDHKWNMEEVTKLDGTKANSSLLHKSLNCDVRSGPARFRIVTQRDVAKILNGFKTELDKRNLPDTTTARGKALLKKFKTFSSPQNRNFAYWAENCVWQVYGDVEALEAVNIKALSKLAEDFGNRPNNTQMQAIYDDFLEMADKAATANVKTAASTKIILRASALAHLKQLLEAADEQSTATAKPYKKRPDPFLVEFHASTDEGLLHTFSGFDVRYALKAWRHDGFAKHLVEWLPEFSLKASEIVNILAHNAEAMLARSINTFSDSELPRDRLIAELILHAILRSRQNSEPVACKVFYKSGGKLSEFGNAHIVQIPGQDDQLWLGLARLIEAGNMDATLAQICGVLDATISETVLSSEREIIINLREPLHHQPKADAFNQALHRNSPVDDMLNVLCFPILLTYDSHALSSGWLADYVNHLRKEIEAHFSTFTTQLPENIKQVKVMVFLVPMESIEKLTNAFNARCKTLEDLQV				NA	NA	NA	NA	NA
D1-36_03766	2142			hypothetical protein	ATGAACTACGAAACGATCAAGAACCGTCTGGCCAACCTCAATGATGAGGGAGCCTCAACAGTCGATGTGCTGCTCGCCATCAATACCATCGTCAACCGAAGCAACTCCGATTGGGAAGGACGCGACCTGGTGATCCGAGCGCTCGATAAATTCGCACTCTTTGACGCAGTCGAGCAATCGCTCCTGCTCAACATGGTGCGAGCTGTTGGGCTCTTTCCTTACATCACGCCCCACCTGAGCAACATGGCCCTGTCTGACCGCTTGGCTTACGAGGCTCACAGGGTTGAAGGTGTAGAGCCTGGCATGGTGTTTCATCACCTTCAGGCACACGTTTTCAGCTTGATCATGCAGGGTCAAAACGTCGTCTTGAGCGCCTCCACCAGTGTCGGCAAGAGCCTGGTCATCGACGCGGTACTTGCCCAGCGACGGTTCAAAAAGGTAGTGGTGATCGTTCCCACCATTGCGTTAATCGACGAAACCCGACGCCGCTTGGTCAAGCGCTTCCGGGACTTCAACCTGATCACGCATCCTAGCCAGGAAGCTGTGCCAGACGCCACTAACGTGTACCTGCTGACGCAGGAGCGAGTCATCCAGCGCCCAGACTTGGATGATGTGGAATTCTTCATCCTGGACGAATTTTACAAAATCGATTTGGCGAGTGATAAGGATGGAAGCACACGCGCCGTCGATCTGAGCTTGGCGTTCCACAAGCTCGCAAAGACCGGAGCACAGTTTTACATGCTAGGGCCGCACATTCAGAAGATCTCTGGGTTGGACGGGTACGAGTACCATTTCATCCCGTCCGACTACAGCACCGTCGCGGTCGATATCCAGAATTTCAATCTGGGCATGCGCTCTGAACAGCGCACACAAAAGCTCCTGGAGCTGGTCAGGACGCTGGAGTCCCCTACCCTGATCTACTGTCAGGCGCCGGCAAGCGCAAACAGAGTCGCTGAGTATTTGATCCAAGATGCCGGGTTGGCCCCGGTGCCGGAGACGCAAGAAATCGCTGCCTGGATCTCCAAGCATTACCACCCGGAATGGAACGTTGCCAGGGCGATAGCCCTGGGCATCGGGATACACCATGGCGGGGTGCCTCGCGCGCTGCAGCAGTACATCGTCAAGCTATTCAACGAGGGCGTTATCAAGCGAATCATTTGCACATCCACGATGATCGAGGGCGTCAATACGTCGGCTGAAAACGTCATTATTTATGACCGGCGCCTCAAAACGTCCACGTTCGACTACTTCACCTACAAGAACATTTCCGGGCGTGCTGGCCGAATGAACAAATACTTCATCGGCAAGGTGTTCATGCTCGAAGCACCGCCCGTTGAGCAGGGATTGACCGTCGAGTACCCCATCGGCCATCAGGATGAGACTTCACCTATCGGCCTGTTGATGCAACTAGAAAACGAATACCTCACGGACATCTCGCGAGGCCGGCTCCAGGAAGCGTATGCCAACGAGGTGCTGTCACCCGCCACCTTAATCGAAAACCGCCACATTCCTATCGAGCGGCAGGTCAAGGTCGCGAAAACGATCATAGGTGAGCTTCCAGACAACCACGAATTGTTAAGCTGGAAAGGCATCCCTGAGCCTGACCAGCTGAACTACTTGTGTGAGCTGGTCTATAGCCTGGAAGGTGAGAACCTGATGGAGTACCAGATCGCGTCCAGCTCTCAGTTAGCCTGGCACATCAACGAGCTCCGAAATCAGAAAAACTTGCCGGCCTACCTGAGCGAAGCGGTGGAAAATCGGTGGGTGAATGTGTCAGCGAGCGAAGCTATTAACCTGCGCCTGAAATTCATTAGAAACATGGTGTGCTTCAGGTTGCCTCGGGACATCATGGCCATTCACAAAATCCAGGTCGACGTACTGGGGCAAGAGGGGTACGAACCTGGAGACTTCAGCTTCTTCGCTGAGCAACTGGAAAATATGTTCCTTGATCCCCTGCTCACCGCACTCGACGAATACGGAATTCCTACCCAGATCTCGACCAAGATCAAGCACCTGATCTTGCCATCAGAGCACCTGAACGACTTGCTGGCAAAACTGCGGTTGCTTGCCCCTCGGGTGGAGCGCCTCCAGCTCACCAGCTTTGAGAAAGATGTGATGCAATGGGCGGTCGCTGAGATGTGA	MNYETIKNRLANLNDEGASTVDVLLAINTIVNRSNSDWEGRDLVIRALDKFALFDAVEQSLLLNMVRAVGLFPYITPHLSNMALSDRLAYEAHRVEGVEPGMVFHHLQAHVFSLIMQGQNVVLSASTSVGKSLVIDAVLAQRRFKKVVVIVPTIALIDETRRRLVKRFRDFNLITHPSQEAVPDATNVYLLTQERVIQRPDLDDVEFFILDEFYKIDLASDKDGSTRAVDLSLAFHKLAKTGAQFYMLGPHIQKISGLDGYEYHFIPSDYSTVAVDIQNFNLGMRSEQRTQKLLELVRTLESPTLIYCQAPASANRVAEYLIQDAGLAPVPETQEIAAWISKHYHPEWNVARAIALGIGIHHGGVPRALQQYIVKLFNEGVIKRIICTSTMIEGVNTSAENVIIYDRRLKTSTFDYFTYKNISGRAGRMNKYFIGKVFMLEAPPVEQGLTVEYPIGHQDETSPIGLLMQLENEYLTDISRGRLQEAYANEVLSPATLIENRHIPIERQVKVAKTIIGELPDNHELLSWKGIPEPDQLNYLCELVYSLEGENLMEYQIASSSQLAWHINELRNQKNLPAYLSEAVENRWVNVSASEAINLRLKFIRNMVCFRLPRDIMAIHKIQVDVLGQEGYEPGDFSFFAEQLENMFLDPLLTALDEYGIPTQISTKIKHLILPSEHLNDLLAKLRLLAPRVERLQLTSFEKDVMQWAVAEM				NA	NA	NA	NA	NA
D1-36_03767	330			hypothetical protein	ATGCCAAACCCACTGGTAATCAAAGGTCAGCGTTTTTCATCCCAAATTGAGGCGGAGCGCTTTTTTTACGCCATGCGTGACAGAAACCTCGTCCGCGGTGGAGATATAAAAGGCTCCACTGAATTCGATTTGCTCGAAGAGCTGTACCTCCGGTATTGCCAGGCCACCAACTGGCCAACGTCAGGAAATCCTGCTGCGTTTTACGCGCGCAATATCGCGCGTGGGAGCGGCCCAAATGGTGGCACCACGCAGGGGTTCGTCGTGAAGTTCAGTGATGGGAGCGAGCAGGAGTTTTCCGTAAAGAAAGCAGTTAAGGCCTTGGCAACGTAA	MPNPLVIKGQRFSSQIEAERFFYAMRDRNLVRGGDIKGSTEFDLLEELYLRYCQATNWPTSGNPAAFYARNIARGSGPNGGTTQGFVVKFSDGSEQEFSVKKAVKALAT				NA	NA	NA	NA	NA
D1-36_03768	1401			hypothetical protein	ATGACGTATGCACTGATCGACAATGCCACACTCACAGCCGTCCAGCGCGCCACCGGGGCGGTAGCAGTCAAGACCAGCGACACGATAAACGGGGATCTGTGTGCTTTGGAGAACTTTCTGCAAGGCAATCTCTTCTACGATGATCTTCTCTGCATAGACAACTACAAGCCTGAGCATAGAGACAGTCGGAAACAGCAATTTCCTTACCTTCGGTTCTTGGCGCCTTCTGAATTTGGTCTTGAGGAGGTGGATGCGGTCGCGCAAAAGGAAGCGGCATCAATCCGTCCCGAAATTCGGGGGGGAGAATTTGTGGATGAGGACTTCAGCGCCCTATTGGAGCAATTAAAAATGAACATGGTGTGCACCTGGGATCAAGCCTCCAGCGTGTATTACCTGACCATGAGAATGTTGGGGTACCGTGGCTCTGAGGAATACAGCAAGTACAGTGCTTTAAGTGCAGCTATCTTCGCAGAGTTGAGTGATGCAGGCGAAACGCGCGGGCGCTGGTCGAAGGACGTCAAGCTTGTAAGCTCGGATGGTCACGTGTTCAGCAAGTCAGAGTTCTCAGAAAGCAGCCGGGGCGACTATGGTGGCCCCACAAGGCAGTTGGAGATGTTCGTAGCCTCCCTAAATTGGCTTGCCTATAAATCCATTTATTACTCGACTGCCGCCAAACACTTGAAAGCTGACTCCTTCATCCACCCCATCCGGCACGCTTATCAGGTGCACTGGATGAAAAAAGTCGGCGCCTTTGGCCATGATTTCACCGCCCGACTCCTGGCCAACCTCGCGGACAAGACAAGAACAAGCATTTCGGAAATCCAATCACACGGAGCAACCCAAACTGTTGCATTGGATCTGCCCTTGTTCTCGGCGTGGTTAACTCAATCTACTGGTAGCGTCTCCAATGCCATTGAGGGTGCCAGGCAGCTCCGCAACGAAGGTCATTTCGTCACCATGCGTGAAACGCTCAAAGCCATTCGCATTGCGTTCGACGAGCAGGGCATTGCGAGCGGCAACAAGCGCATTACGAAGCTCACGGACGACGTCGACAAGATTTGCGGCGACCTTAGGCGTAGCTATGGTGTACGGTCTCCTCAAGGCATTCAGGGCAGCTTCCTCATTAAAACGGCAAGCTCAGTCACCAGCCTATTCGGGGTTTCACTACCTGACCGCGATTTCGCACTCTCGACACCTGAGTTCATGAAATCAGAATCGACCAAAGCCTTCACAACCGTCGTGAAGGACATAACCAAGGAGCTCACCTCAATGGAGCGCCTGGGGGGATTACGAGATCTCATGGCCAAGTCTTTTAGGATCGAGGGCGAAGATCACGGTGGCCCCAAGGTTCAGGAACCGAGGTTCCGTTACGTAAAGTCCGGATGGCAAAAACCGATGTGA	MTYALIDNATLTAVQRATGAVAVKTSDTINGDLCALENFLQGNLFYDDLLCIDNYKPEHRDSRKQQFPYLRFLAPSEFGLEEVDAVAQKEAASIRPEIRGGEFVDEDFSALLEQLKMNMVCTWDQASSVYYLTMRMLGYRGSEEYSKYSALSAAIFAELSDAGETRGRWSKDVKLVSSDGHVFSKSEFSESSRGDYGGPTRQLEMFVASLNWLAYKSIYYSTAAKHLKADSFIHPIRHAYQVHWMKKVGAFGHDFTARLLANLADKTRTSISEIQSHGATQTVALDLPLFSAWLTQSTGSVSNAIEGARQLRNEGHFVTMRETLKAIRIAFDEQGIASGNKRITKLTDDVDKICGDLRRSYGVRSPQGIQGSFLIKTASSVTSLFGVSLPDRDFALSTPEFMKSESTKAFTTVVKDITKELTSMERLGGLRDLMAKSFRIEGEDHGGPKVQEPRFRYVKSGWQKPM				NA	NA	NA	NA	NA
D1-36_03769	1455			hypothetical protein	ATGCGTAAATCGAAGATTGCCTTGGTTGGCCAGGGTTCGAATCCACCCACCATGGCCTCGCAAAAGCAGCCACCCGCCGGTAATAGCATCGAGGCGATGAATAGCCTCACGCGAGTCAAGTGCGAACCACCCAGACTCTACGAGACAGCCACAGGTGCACCATTGGATTTCTACAACGAGTTCACCGAGTACCTCTGGGGCGAGATCGGCATCAGCTACTCGCGCAACTCGGTTATTGCGATCGAGCGAGGTGGGCGGGTTTTCACCGAGTTCCTCTATGAAACCGGCGCCCTCTCTGGCCGACTCGACCCTGAGACTGCGTCGAAAACCATGCATCTTTTCTCGTCTTATCTGATCGAGGGAGCAGAAGCCAAAGACCCAATCGTGCGCCAAGCCTTCATTCGAACTGGCCGAAAAACAATCTCCGCCAAGTCAGCCGGAGCGTACATCGCAGCAGCCAATGTTCTGCTGACCGCCTGCAGCGCGATCTCGTTCGAGCAGGCACAACTGACCTCCGTGCTAACCGGCCTGCCTCCCCAGACTCAAACCAATGCGCTGCCGGAACTCAACCCCAGGCTGCGCAGCCCTCAGGAATTAGCTCGAATCCATGCCAATACGCTGCAGGTCAAACCCACTCTTGGTGCCGGCGCAAAGAAAGCCCGAGGCGGCCTGCGCGCCCCTAAGGTCAAGAAAGACCGGAAGGCCAAGCACATTGACCTCCTACATATCCTACCCATGCTTGAGAACGCCCCAACGCCATTGGACGGTTTGATCTGGAGCTTGGGACTTGGCAGCCTGAGGCTCTCGGAAGCGGTTGGGGTTCGCCTGGAGGACGTTGACGTTCACAAGAGGATCATTCGCGTCGAAGATCCTGATGGCCTTCGTGACACCACGAACAAGGAACGCTTTGGGTTCAAAGGTCGCAAGACTGCGGTCGTGACGATGTTCGAGCCATTCAAATCCATTTTCTGGCAGAAGCTGGCTGATTACATGGCTGTGCGCCCCTGCTCCGACAGCCGCTGGCTGCTGCTGTCGCTTGATGAAGACACCTACGGTGTACCTCTCTGCGAACTCAATTCAAACAGCGTCAACAAGGCGATCAACCGCCGCATTCAAGCCACTCAGAAAAAACTGAAGTTCGTCGCTCCCCAGGGAAACTACTCGTCCCACGACTTCCGACACCTCTTCGGGGTTTGGGCGCGCAACTACGTAATGGTGCCGGGCCGACCCAAGCCGGGCCTCGACCTACCTGAAATTCAGTTGCTGATGGGGCACGCAGATCTCCGGAGTACCGAGATCTATGCCGCAGATCTGGGCATCAACACACTTGTGGACGTCGATGCTGCTAACGAACTCGTGTACCACCAAGGCAAGGGCGAAAGCATTGACCACTACCGTGGCCTGGCCTACGCGCGTTTGAGCGAAGAACTGCTTGAGCGGGGCCCAGAAGCGTGA	MRKSKIALVGQGSNPPTMASQKQPPAGNSIEAMNSLTRVKCEPPRLYETATGAPLDFYNEFTEYLWGEIGISYSRNSVIAIERGGRVFTEFLYETGALSGRLDPETASKTMHLFSSYLIEGAEAKDPIVRQAFIRTGRKTISAKSAGAYIAAANVLLTACSAISFEQAQLTSVLTGLPPQTQTNALPELNPRLRSPQELARIHANTLQVKPTLGAGAKKARGGLRAPKVKKDRKAKHIDLLHILPMLENAPTPLDGLIWSLGLGSLRLSEAVGVRLEDVDVHKRIIRVEDPDGLRDTTNKERFGFKGRKTAVVTMFEPFKSIFWQKLADYMAVRPCSDSRWLLLSLDEDTYGVPLCELNSNSVNKAINRRIQATQKKLKFVAPQGNYSSHDFRHLFGVWARNYVMVPGRPKPGLDLPEIQLLMGHADLRSTEIYAADLGINTLVDVDAANELVYHQGKGESIDHYRGLAYARLSEELLERGPEA				NA	NA	NA	NA	NA
D1-36_03770	3378			hypothetical protein	GTGATCAACACCACCGACAGTATCACCCTGCACGGCGATGATGTTCTTGAGAGCGCTGCGGCAATCCTAGAAGAGCTGGCTCAGAAAGCCATGGAGGCCGAGAAGGTTGCGGGGAAAGTCAATCCCGAGCTTCTGAAGGATATGCAAGCCAGACATCGCCTGGCCTTAACCATCTTCCTGAGACATCGTAAAGGCCGAGCTTTGACCTATCAGGAGCTCACAACGCTCTACAGGCTCTGCCTCGTACCGGACAAACAGCTCGATCTTGCAATGCCCTTGTACGTGCAGCTTACGGGCGAGCAAACGCCACCTCCCAAAGATGTAAGCGGACTTCGCATCCCCATCCGGGCGATGTTCGTACTCTTATGGTCGAAGGGAAACGCCACCCTCCCCTACAGCTTCAACCTGAGTGGTGTATGGCCCAAGTATCCCGAGATGATTGACAGATCTGAGGGTTTCATTCACGAGATCACTGGAATTAAAGAGTCGCATCAGAAGCGCTGCAGTCGAACATTCCAGTATCGCGTTAACTGGAAAAAACCTGAAGATGTGGTATTCGAAGACTTATGGGAGGCAGCTCCTGCAGTTGTTGACAAACAACGTCAAATCAAAAGCAAAGCTAAGAAAGGCAGTATATGCCTTCACTTTTCCTATTTATCTTGGCTTCACCTATTCGCCCAAAAATATCCGGCGATTGTAAGTCCTGATCAAGCGCGACTGCTTGAGGGCTATCATACTCACTTAAGTACGACAAGGATTGAGGAATCGAGCGCCGAAATCAGAAAATCTTATGCGGACTTTGCAAAACACTGGGGTTCGATCGACCCTAATCAATCAAAAAGCGAAAACCTCAAATGGAGAAGGGCACGCTATAACTCAGGGCTGGATGGCCGCAAGAAGAGGAACCAAAAAAAATCTGAGGAAAAACTTGCCCGCAATACAAAAAGCTGGGAAGCGCAGAGTGTACTCTCTCCCGAAGAGTACGCGGTTCTGCCTGGTCGCAGGCGACCCACCAACGGTACATACGAATGGGTTGAGGGTTATTACAACACCCCACAAAACCCGCACATTGAGGAAAACTTGCGCTCATGGATCAAAGCAGGAAATCTGCATTTTGGCCATATCGAAGAACTCGCGAAGACCACTCGCCGGCAAGAGATTGGCTATATTCATATCTTGATGGACTACCTGGGCAGGTATCTGCCCGCATGGCTGAGCAAACATCCAGAAAGCGGTATCGAATTCCCGACCAATATTGAGGAGTTCCATCGCTCCATATTTTGGCATCGCACGAGCAAAAATACCAAGCTCACTAACAACGAAGATAACTCCGAGGTCGATCTTCCCCTCACGCTGATGCAGTTTTATGACCTCAAGCGGAGCATTAAAACCAAAGCACACTTCATCTTTTCTGTATGGCGTTTTTTTGAGATCGCGATAGCGAACGGTAGCGACTTACTGCCAAACGGCAAAGTACTGATCAGCGGGCCCTACAAGAACCCAGTCCATCCAGAGCTGGACTCACCTGGAAGTGGCCCGTCGGGAAAAAGTGACAAGGTTCCCTTGCCCATTAACTCCATGATGATGGTTGAAGCCTACATGTTGGCACTCGATGCGGTCGGAGTCGAACTCCAGGACAAATGCATCAAAGGCTTACTGAGCTTCCAAGACACCTTGGATCTGAAAAACAGCGTCTGGATTGACATTGAGAAATACGGAATTTCGTACTCCATCAAACTGTGGAACCCTGATGGCAGTTCTGAAGCCCTGGAGATCCCCCTCAGAAAAGTCATCAACGCGTACTCTTGGAAGAATGAAAAGTTCAAATCCAGTAACGGGGAAGTATACGTACCATGGTTATCGCAGGTGAGGATGCTCACAGTGGCCCTGTTTTCAGGCCTACGTTTGCAAAATTGCCAATGGCTTGATGTTCGCAGCTTCGATAAATACTATGATCATTCCCTGAGGGGGAGTCTGAGTAGCTGTATTCTTTATGTCAACACGGACAAAAACGGCAATAGCCGTCCTGTGACTTTGCCTTACAAAGTCATGGACGTGCTGCTTCAAGAGCGCCATTTCCAGACAAGAGAATACGGCAAAAAATATACGGGCATTTATTACGAAAAAGACCCCAATAGCACTAATAAATATAAAAAAATCCACCCCCTTTTCAGGAGTCCCTGGCTCGCGAACGGCGCACCGTTTTCCGATGCATCATACGCCCTCAAGTGGACGTTGATACTTCGGGGCTTTCAGGAGGTGTACAACAGCTTCGTATCCCCTGAAAATCGCCATGATTTCGTGGAGCAAACAGCCAGTGGGAATTGGTCAGCAGTACACACTCCCCATGCGTTGCGTGCGACGTGGATTACTCATCGCCGAATTTATGCCTACCTCGACTACGCCATTATCGGAGGACAAGTCGGCCACGCACAGCGGTACACGTCCGCTCATTACGTAGTGCCGACTAAGCAAGAAACGCTGGCACTGATTGATTCCGCCAACCAAGCGGTTTCGGCGCACGCATTCGCGGCTCTGACCGGACGGCCTCCCGCCCCATCATCGCCCGACTCAGCCCTAGTCAAAGGCTGGACACAGCATCGTGAAGAGACCGTGCGCGACCAGCATCTTGTCTCTGTAATCCCTGATATTTTGGACGCCGATGAAACTGGCCTGGATTTGATTGCCAGCACGAAAACTCAGCGCATCAAATTTCTAGACTGTTGCATGTGCGCACTTGATGGCGAGTGCCCAAAAAAACTGATGGCTTTCACCCGGAAGGCTCGTACCTGTGGTATCTGCCCTTACGCTGTCTTCGGTGTCGATCACCTGCCTGGCCTTAACGCAAAAGTCCGCGACCTTGCTAACCGTGCTGAAAACCTCAAACCTAGGCTACAGCAGACACTAAAGCACCAGCCCAACTCATCCAACGCCGAGATAATTTACGACGAACTTTCGCTGTGCACCCTGGAGCTGGCTGGCTATCGTCAAGTCATCCAAATTCTCGAAAAAAAATGGCGAGAAGAAAAATTTCCTAAAGGCTACATCGCTCGTCATCGCGACCTTGCGAACGCTGTTCGACACAGTGTCGATATGGCAGATCCCAAGCAGCGCGTTATTTCGATGCTGATAGATTCCTCCCAGTTTCCAGCTTTCGCGTCAGAACATTACCCCCTGATTCTTGATGAGTTGGCACGTAATCCCGAATTCCTCCAGGTTGCCAACCAACCATTCGAGGAAAGGGAAATCTACATCGGGCAGATCTTGTCGATCATGGGCGGTACAGGCCTTACATTTGAGGAAATCTCCGCGTATGCACTGAGCAAGCCCTCCGCCCTCCTCCTCAACCATCAAGACTCAATGGCAGGGGCAAATTGA	MINTTDSITLHGDDVLESAAAILEELAQKAMEAEKVAGKVNPELLKDMQARHRLALTIFLRHRKGRALTYQELTTLYRLCLVPDKQLDLAMPLYVQLTGEQTPPPKDVSGLRIPIRAMFVLLWSKGNATLPYSFNLSGVWPKYPEMIDRSEGFIHEITGIKESHQKRCSRTFQYRVNWKKPEDVVFEDLWEAAPAVVDKQRQIKSKAKKGSICLHFSYLSWLHLFAQKYPAIVSPDQARLLEGYHTHLSTTRIEESSAEIRKSYADFAKHWGSIDPNQSKSENLKWRRARYNSGLDGRKKRNQKKSEEKLARNTKSWEAQSVLSPEEYAVLPGRRRPTNGTYEWVEGYYNTPQNPHIEENLRSWIKAGNLHFGHIEELAKTTRRQEIGYIHILMDYLGRYLPAWLSKHPESGIEFPTNIEEFHRSIFWHRTSKNTKLTNNEDNSEVDLPLTLMQFYDLKRSIKTKAHFIFSVWRFFEIAIANGSDLLPNGKVLISGPYKNPVHPELDSPGSGPSGKSDKVPLPINSMMMVEAYMLALDAVGVELQDKCIKGLLSFQDTLDLKNSVWIDIEKYGISYSIKLWNPDGSSEALEIPLRKVINAYSWKNEKFKSSNGEVYVPWLSQVRMLTVALFSGLRLQNCQWLDVRSFDKYYDHSLRGSLSSCILYVNTDKNGNSRPVTLPYKVMDVLLQERHFQTREYGKKYTGIYYEKDPNSTNKYKKIHPLFRSPWLANGAPFSDASYALKWTLILRGFQEVYNSFVSPENRHDFVEQTASGNWSAVHTPHALRATWITHRRIYAYLDYAIIGGQVGHAQRYTSAHYVVPTKQETLALIDSANQAVSAHAFAALTGRPPAPSSPDSALVKGWTQHREETVRDQHLVSVIPDILDADETGLDLIASTKTQRIKFLDCCMCALDGECPKKLMAFTRKARTCGICPYAVFGVDHLPGLNAKVRDLANRAENLKPRLQQTLKHQPNSSNAEIIYDELSLCTLELAGYRQVIQILEKKWREEKFPKGYIARHRDLANAVRHSVDMADPKQRVISMLIDSSQFPAFASEHYPLILDELARNPEFLQVANQPFEEREIYIGQILSIMGGTGLTFEEISAYALSKPSALLLNHQDSMAGAN				NA	NA	NA	NA	NA
D1-36_03771	627			hypothetical protein	ATGAAAAGAACACCCATTAAAGCTCCGGCTGCTCGAACACCTAAAGAGCGACGAGGTGAAGCACAACTCAAGGCAACGATTGCTCGAATCCATGCCGCCTTGCAGGTGCTTCAACAACAGGCTGAGCCCTTCAAAAACATCAGTCAGTTGGCAGACGAAGTCGCTCGTATCTGCGGCGTCGACCGCAGCCTGCTCTTGAAGCGTGGAAAGTCATACAGGAAGTGCCTCGACGCTTACCCAGGGCTCCTTGGCAATGGAAGCACCCCGCCCACCCCATACAACACAGACATAGATCCACTGCATCCGGTCATGATCCGAAACACCCAGTTGGAAGAGGAGAACGCCAAGCTTCGCAACATCGTGGACGATTTATCGAAACGCCCCGTGCAGGCTGCCCGGTCTCAGGACGCTGCGACCAAGACCAGCGGAGTGGCTGAGTACCAGCGCGAGTATGAAGTGACCTGCCAGTTGGTGGACAGGATCCTCGATCACAAGCGGGCCATTCGGATCATAAACGACACCCTGACCGACCTCTCAGATGTCAGCGGCATCCCGAAACCGATAGCCGACTCAACACTCATTGCCCCCTATGTCGAATGGAAGAATGCCCGTGCGGGAACTGAATGA	MKRTPIKAPAARTPKERRGEAQLKATIARIHAALQVLQQQAEPFKNISQLADEVARICGVDRSLLLKRGKSYRKCLDAYPGLLGNGSTPPTPYNTDIDPLHPVMIRNTQLEEENAKLRNIVDDLSKRPVQAARSQDAATKTSGVAEYQREYEVTCQLVDRILDHKRAIRIINDTLTDLSDVSGIPKPIADSTLIAPYVEWKNARAGTE				NA	NA	NA	NA	NA
D1-36_03772	135			hypothetical protein	ATGATCGTATCTCCAATGCTGAGGCTGAAGTTGGGTTGGGAATTGGGGCTAGGTCAGCCGGGAGTACTTCTGGTGCAGGTGCTTCTGCAGGTGCTTCTGGTGGCGGTTCGCCGCATGAGGTGCTACGCGCCATGA	MIVSPMLRLKLGWELGLGQPGVLLVQVLLQVLLVAVRRMRCYAP				NA	NA	NA	NA	NA
D1-36_03773	372			hypothetical protein	ATGAAACCGGAACTGGAGTCGGCGAAGAGGCTGCGCCAGGTAGCCCTGGAGATCATCGAGTCAGGTAAGAGCGTGCCGATGCGGGCCGGCAAGATAAACCTTGCATGGCTGGCCGGGACGGTGGGGCTTACCAGGCAGGTCTTCTACGAGGGGCGTGGCGGGCCAGAGCTGTCCCAGATTGCTGAGCTGCTGCTGGAGCATGTGCGATCTCAACCCTCCACCAAAGCCCATTCGCAGTACGACAAATCACTGACCAGCTTACGAACCGAGATCCAGCTGCTCAGAACCCAGCTGCGAGATGCCGAGCGTGGCTTGCAGCGTGCTGCTTTCCGGGAAGAGATCATTCGGTCAGGGAAGATCCTCACGTTCTGA	MKPELESAKRLRQVALEIIESGKSVPMRAGKINLAWLAGTVGLTRQVFYEGRGGPELSQIAELLLEHVRSQPSTKAHSQYDKSLTSLRTEIQLLRTQLRDAERGLQRAAFREEIIRSGKILTF				NA	NA	NA	NA	NA
D1-36_03774	1971			hypothetical protein	ATGGCAAAGTACTACTTCGTCCGGAAATTCACGCTCACGCTGGGTGGCGAGCGGCAATTCCACCTCCTATCGCTGGCCACCGGGACATCCGTCAAGGCGCGACTCGATCCGGAGCTAGTGTCGAAACCCATATTCCCCGGCATGACCTATCGCGCGTCCATCACCAAGCGCGGGAGGGGGCTGGTCATTACCCACCTGTACCCCGCTCTTTGCGTGGAATATGACGAATGCAGGACACTGGCGGGCTTCGTTAATACACAGAAAGCGCTCCCTCAATACTCACCCCCCTCCGGACTCGCGAGCGTTTTGGAACAAGCTGCTTTGCTGGAGCAGCGCAGTGTGCGGCAGCTGCTTGACCATGAGAGTCGGTTCATTCTTGGGAAGCATCTTGGCGATGCTCAGACGGCCCAGTTGCAGTTCGCATGGCAAGAGTACAAGGCCTTTCAGGAATCGGTGTCTGGACTCATGATCCAAGGATTCGATCAAGCCAGTGCGGAGCAGATGGTGATTTGTCTGCCACTAAACGCCTGCTTCCTCCTTATTCAACCTCCACTGGCACTACCGTTTCTTGAGACCAATGACGACTCAGTTCTGGATCATCCAGGCTTCGATCAGACGCCTGGATTGAGGAAGGCTTGGGCACTGCTAAGGCATCTGGAAGCTCATTCAACGACGGGGAACACCCTTGTTGAGGTCGCTTCTGTTTACGGATGTGGGGCTGACGTGGTTGGGGTAAATGCGGTTGAGGTAGATGGCGGTGGTGATGTTATCGGCAGCGTCATCGCGGACTCGGATGATGTGCTTGAGGCGATTCGCGAGTGTGAGGGCCACGGCTGGGTTGTGGCGACGGAGGGCCACGTTCAGCTCAAGTCGAACCATATCCTGCAGAGCGCAGTACGCCATCATCTGACCAGGATCTGCACGCCCTTTCATCCAACCTATAGCGAGCGTGAGATTGAACACGCCTTCAGCCGCTTGAGCGCGTTCACTCCGGAGATGTTCGCTTTCGACATGCTCGACGAAGTGACCTTGGCACTGAATTCACGCGTACTGCTCGTTCGATATGACGATGTCAAAGCAGCCGTCGAATTCACCCAGCAGTACTGTGCGGTCTCGGAGCTATTGACGAATACCGTTCCGACCTCGGTGACGATCGCGAAGGCCAGGGGTGCAGCCTATGAAAATGAGTTAGGTCATGCCCCTGTTCCGTTCTACGAAATTACAGATGGCGCGCATGCCCAGGCAATCGTCGTACATCAGTTCAATCAGTTGCCCTTGTTCGAGATTTTTCAGCTGCTGGCAGAGCTGGAGAATGTGGTGAATTTGGTTGCGCTGGTCGATGCCACCCTGCCGGCCAATGCAGCTGTTGACCAGATGTCTCGCTACTTCCCCACAGTGGATGTCCGCATTCGCCAGCAAGGTGCTTTGCCGATCCAGCAATGCCTTCGGAAACTCTCCGAGATCGAGGCACGGATCGATGCAGAGGATGTTCAGCGCATCGCGGTGATCTGTGATTGCCCTGAGATTGCCTACTTGCTGAACCGGCGGTACAGCTCAGTTCCAGCAGATACGAAAGTGCCTAAAAAGGGCGATCTGATTCGGCTTTCTCCTCGTGGTCTTCGACGTAAGGATGACGCCCTGATTCGCATTGTGAACGTCAGGTCGAATGAGCTTTTCGTGTCTCAGTCACAGACGTATCGGATGATCAAAGCGGACGAGTTCGCGGGGTACTCCTGGGATGCAGGATTTGCACTGAGCCCGAACGAAGCACTGGGGGTCGAGCTTCCTCCGGTACTGGTGTTCACCTCCGCTCAAGGCGGTGCTGGTGGGGAAAGGTCGGGGGCTGCCTTCGTCAGGAACCTGCAGGCGCAAGGAGTTCGCGTGATTGAGCACTGCGTGTATGAGATCGAGGGCTCTCCGAGGCTTGCGAGTCCTGGGACTTTGCAGCGGATTGTGCCGCTGGTTGAGTGA	MAKYYFVRKFTLTLGGERQFHLLSLATGTSVKARLDPELVSKPIFPGMTYRASITKRGRGLVITHLYPALCVEYDECRTLAGFVNTQKALPQYSPPSGLASVLEQAALLEQRSVRQLLDHESRFILGKHLGDAQTAQLQFAWQEYKAFQESVSGLMIQGFDQASAEQMVICLPLNACFLLIQPPLALPFLETNDDSVLDHPGFDQTPGLRKAWALLRHLEAHSTTGNTLVEVASVYGCGADVVGVNAVEVDGGGDVIGSVIADSDDVLEAIRECEGHGWVVATEGHVQLKSNHILQSAVRHHLTRICTPFHPTYSEREIEHAFSRLSAFTPEMFAFDMLDEVTLALNSRVLLVRYDDVKAAVEFTQQYCAVSELLTNTVPTSVTIAKARGAAYENELGHAPVPFYEITDGAHAQAIVVHQFNQLPLFEIFQLLAELENVVNLVALVDATLPANAAVDQMSRYFPTVDVRIRQQGALPIQQCLRKLSEIEARIDAEDVQRIAVICDCPEIAYLLNRRYSSVPADTKVPKKGDLIRLSPRGLRRKDDALIRIVNVRSNELFVSQSQTYRMIKADEFAGYSWDAGFALSPNEALGVELPPVLVFTSAQGGAGGERSGAAFVRNLQAQGVRVIEHCVYEIEGSPRLASPGTLQRIVPLVE				NA	NA	NA	NA	NA
D1-36_03775	621			hypothetical protein	ATGCACGAAACCCAGCACCCAAGTCATTTCGCACCCGAGTTGCTCCCCGAATACCTGGATCTGGTCTGCCAGGAAGTGATCTCAGTTGCGTATCAGGCGCTGGCTGATGCATCTACACCAAACGATACCGCATACACCCGCGCGACCCTGCTCTACGGGCGTCTTCAAGGGCTCTGTAAGGCGTTGGGGGCCGATGTGACCCTGCCATGGCTTGAGCTGCGAAACGGCACCATGGACTTCACGATCAGCATCAACGGTGTTTTGCTACAGATCGTCACCGACGATCCTTATGCTCCTAAGAAGCTACATCGGCTCAAGGCCAATCTGGTCGAGCTGCACCAACTGAGTCTCTTCGAGGCCAGCCCCGAGGTTTCCACTTGGAGACTGTTTGTTGATGGGAACAACGACCTCGAATTCCCTGAGTTCAAAGCCACGATCGTGGGCTTCGATATCAACCAAAATATCCTTTGCCACTGGGCACATGAATACAAGGCCAGCGTGCCGGTCAGAACCAGCGATCTCCCTGCTCAAGTCGAGATCGAGGAACCTTTGGTGGTTCGCAGAAACAAAGACGCCGACACGAAAAAACCCGACGAACCTGGCAGCGTAGATGGACGATAG	MHETQHPSHFAPELLPEYLDLVCQEVISVAYQALADASTPNDTAYTRATLLYGRLQGLCKALGADVTLPWLELRNGTMDFTISINGVLLQIVTDDPYAPKKLHRLKANLVELHQLSLFEASPEVSTWRLFVDGNNDLEFPEFKATIVGFDINQNILCHWAHEYKASVPVRTSDLPAQVEIEEPLVVRRNKDADTKKPDEPGSVDGR				NA	NA	NA	NA	NA
D1-36_03776	1098			hypothetical protein	ATGGACGATAGAACACAGCAACTGGCATTAGGCGACGAATTCTCTCCGGACAAGCTGCGCCTTGCGCGCTGCGCGTCCGGTTGGTCGCTTGCAGACATCGGTGACCTGCTTGGAGTTACCCGGCAGTATGCTCACAAACTGGAGGTGAATGGATTTCCCTCCGCCGCACAGCTGGAAATGCTGAGCACGGCTCTGGGCGTCACTCAGGAGTTTTTCTTTGCGCCTAGACGCAGCTCCGTTGAACTTGAGCAATGCCATTTCCGAAGCGTGCGCGCCTCAACGGTGACGGTGAAGAAATCGATTGCAGCTCAGGTTGAGCTTTTCGAACTGCTGATCGATGAGCTCGACAAAGAAGTCGCGTTCCCGGATATCAGCTTTTGGACACACGATGAACCAGTGACAAGCGTCGATACTATCGAACAGATTGCAGAGCGTTTTCGTAGAGAGCAATCGTTGGGGCTTGGGCCTCTCTCGAACGTCACCAGACTGGTCGAGAAGATTGGAGTGCTGGTCGTCAATATCGCTGAAGCGGATGACCGCATCGACGCGTTCTCCCTACACAACAAGCGCCCACTGATTGTTCGCAATACCGCCAAGCAGAACCCATGCAGACAACGTTTCGACATCGCCCATGAGCTCGGTCACCTGGTGATGCACCAAGGTGTGGAAACGGGCTGCCGGCACACGGAAGATCAGGCCAACCAATTCGCAAGTGCCCTTTTGATGCCCAGGGCAAGCTTTGCAGGAGAATTCCCTGCAATGCGAGGCCGGTATCTCAACTGGCAAGCCTTGGGTGAGCTCAAGCTGAGGTGGAAGGTTAGTTTCAAGGCTCTGATCTATCGGGCTCAGGCTCTGGATCTCATCAGCCAAGAACAGGCCAAGTCAGGCTTCACCTATCTGAATCGCAAGGGCTTCACACGGCGAGAAGATCTCGATGATCAGATCGAGATGGAATCACCTCGACTGGTGCAGCGCGCACTGGATTTGCTGGATCACGCTAGCTGGAGAAAGGCTCTCAAGGCTTGTGGGCTTACCCGCGAGATGGTTGAAAGCCGCTTCATGCTCACACCACCTGAGTCACCTTTGAGACTGGTCTGA	MDDRTQQLALGDEFSPDKLRLARCASGWSLADIGDLLGVTRQYAHKLEVNGFPSAAQLEMLSTALGVTQEFFFAPRRSSVELEQCHFRSVRASTVTVKKSIAAQVELFELLIDELDKEVAFPDISFWTHDEPVTSVDTIEQIAERFRREQSLGLGPLSNVTRLVEKIGVLVVNIAEADDRIDAFSLHNKRPLIVRNTAKQNPCRQRFDIAHELGHLVMHQGVETGCRHTEDQANQFASALLMPRASFAGEFPAMRGRYLNWQALGELKLRWKVSFKALIYRAQALDLISQEQAKSGFTYLNRKGFTRREDLDDQIEMESPRLVQRALDLLDHASWRKALKACGLTREMVESRFMLTPPESPLRLV				NA	NA	NA	NA	NA
D1-36_03777	465			hypothetical protein	ATGGAGCACAATTTCGAACGACTGCAGGCACATATCCTCCCGCTTTCAATGGCTAAAACTTTCTCGGTAGCTCGGCAGGAGTGGACACTTGTCGGGATCGAGATCAGCGAGGAATTTGATAACTGCCCCTGCGGGCAGGATATCAAAGAGCACTGCTGGATTCAGAACAAGCTGACAGGTCACAAGACCTATGTAGGCAACGTGTGCATTAATCGCTTCCTCGGCATCGACACCGGCACGCTGTTTGATGGATTGAAGCGTATCGCCAAGAACAGTCAGGCCAACGCGAACCTTGATCTCATCATTCATGCCTACAAGTTTGGGTACATCTACGAAAGCGAGTTCACATTTCTGATGAGCACCCGGCTCAAGCGTAATCTCAGCGCTAAGCAGATCGCCTGGAAGGAAAAGATCAACAGGCGAATCACCAATAGCACCGTTGTACAACGACGGACGAAGCCATAG	MEHNFERLQAHILPLSMAKTFSVARQEWTLVGIEISEEFDNCPCGQDIKEHCWIQNKLTGHKTYVGNVCINRFLGIDTGTLFDGLKRIAKNSQANANLDLIIHAYKFGYIYESEFTFLMSTRLKRNLSAKQIAWKEKINRRITNSTVVQRRTKP				NA	NA	NA	NA	NA
D1-36_03778	1029			hypothetical protein	ATGATAAACTTCAGGGACGAGTTGCGTATAAATGATAAACTCGCTTGCGATTACGCTGTGCTCAAGAAAGAATTGGCCAAAGCTCATAAGGATGATGTTGATTCTTATGTCTTGGGCAAAAAAGATTTTATAGAAAAAGCATTAAAAAAACGAGCGCCTAAGTTTAGTATAAATAAACTCCTTACACACCAGAATGTAGAGTTCGATAAGGCTGATCGCTACGGTAGATCAATGATGTGGCTGCAGTTGTCTATGGCTTTTACTGCTGCATTTTCAGTGTATGTTGATCAAGGCTGGGTGCTTTTGTTAATAGCACTTATGGGGTTTGGGTCTCTGGCTGTCTGGCTAGTGCTAAGCCAGTCTAAACAACAGCATCGTGCAGCGGGAGATCAAGCTCGGCGTGCAGTATTATTTATGAGTGGTCTAGGCAAAAAGCCATCTCTAGAAGAGCAGCAGCGAATTCTTAAAAAGTTCACTCTCTCGCTGTCAAGTGTTGACTTGGCTCTGGAGGAAAATCGCTTCGCCAGTCGTGAGTTTCCAGGCTATCAAAGATTGGCGGAGATTATTGAGGAATCTGCATTTTGGACTGGTGATCTTCATCGTGGTAGCGCCGAATTTATGGGTAAGGTTTTATGGGGGGCGTTATTGTGCTCCTTTGCAGTGAGTATCGCTGCTATTGTGATCGCCCCTCAAAATAGCCTAATAGCGTTCAATAGGGCTCTGATTGCAGTGATGCTATTCTTTATATCGTCTGACATGCTTGGGTTGTACTTTTCCTATAGGAGATCAGCAGCCTCTCTAGATGAAATATTTCATAGGGTTGAGATATCTGCCCTAAGAGGTTATCTGGATTCGGATATTTTGCTTTTGGCCTCTGATTATAATGCTGTCATCGAAAACTCTCCATCTCCGCTTAATTTTTTCCTTAAGTCTAGGGTGAATAAACTGAGCCTGCGGTGGGAAATTTATAAGGGGATTAAACGAGCTGGTGCTGCGAAAGAGTTTGAAGGTCGACGCTCTTATCGATAA	MINFRDELRINDKLACDYAVLKKELAKAHKDDVDSYVLGKKDFIEKALKKRAPKFSINKLLTHQNVEFDKADRYGRSMMWLQLSMAFTAAFSVYVDQGWVLLLIALMGFGSLAVWLVLSQSKQQHRAAGDQARRAVLFMSGLGKKPSLEEQQRILKKFTLSLSSVDLALEENRFASREFPGYQRLAEIIEESAFWTGDLHRGSAEFMGKVLWGALLCSFAVSIAAIVIAPQNSLIAFNRALIAVMLFFISSDMLGLYFSYRRSAASLDEIFHRVEISALRGYLDSDILLLASDYNAVIENSPSPLNFFLKSRVNKLSLRWEIYKGIKRAGAAKEFEGRRSYR				NA	NA	NA	NA	NA
D1-36_03779	4020			hypothetical protein	ATGAACTCTTCGTTCTCATCAGGGCAGCGACTTGCACCTTCAGGTAATCCCAAACGCCAAGCAGTAGATGCTCTCCGAGGCTACGCCTACCAGCTATACGTCAGTGCGCTGGCATGGGTTCGACTAACCGAAAAGGAGCGGCTGTACCTGGAAGTCGCTGAAGACTACGCCCTGGTGGCTCAAGACTCTCTCGAAGGCGTTCAAGTCAAAGATACAGCGGGCTCCGGTGCGGTCACCATCAACAATCAGGATGTGCTCGACACCCTCGATAACTTCGTTGATTTGGTTGAGAGAAATCCACAGTTCAACGTCAGCATGCGATTTCTCTCTACATCCCCTATTGGCATGGAGAAGCAGACCACGCACAGAGTTGACGGTCGCGCTGTATTGACTTACTGGCCCGAAGCCGCAAGGAATGCAGACGTCAAGCTTTTGCGTGACGCCATACTCAAAGCAGCGATAACACCGCGCGTTAGGACGTTCATTGATTCACGAAACGATGAAGAACTGCGGCGGGATCTTTTGAAACCCATTTGTTGGGACTGTGGCCAGCCAATCCTGTTAGAGGTCAAAGATGACTTGTCTTCAGCCCTTACGTGGTATGCAAATAACTCGCTGAGGTTACCACCCAGCGATTCAGCGTATTTGCCAGCAGAGGTGATGGATCACCTACTTGAGACTGTGCTTAAGCCAAATCCCCAAGATCGGTATCTTGATGCTGTGACCCTTCTGAGGCTATGTGAAGCCGTTGGCACCGTCACTCTGTCGCGCAGCAACCACGACGCCCTCATGGAACAGGCAATGAGAGGCAGTCACGCAAACTGGTTACCCATGAATCGCATGCCCCGGTTATTGGAGAATGAAGAAAGCATACCTATGCCTACTCTTCTTCTACCGCGCCCCGCAGCATTGCAGAAAGCGGTCGCGGGGCTATCGGAAAGATCGGTAGTTTTTCTGTGCGCCGGAACCGGAATGGGTAAAACAGTCATCGCACGAATGGTGGCCAGAGCACATGGAGGTGATTGGAAGGTCGTCGACCTTAGAAATGTATCAATCGAAGAGTGTGAGTTCCGCTTGAAACAAGCCAGGGATGAGGTCGCAGCCGTATCTGTCGCGGGAGTCATCTTGGACGATATGAATGAAATCGATTCCCCTAAAGTTGCGGCGGCACTAGGGCTACTGACTCACAGCCTTGGCCGACAAAATGCCATCTGCATCATCACCTGCTATCGCCATCCGTCAGCAGGAGCGTTGAACAAACTTGGGCTCGACTCATCCGCCAGCATTCAGATTCCGCCCCTTGACCAGGCTGAGGTCGCGAGTCTGATCCACATGAGCGGCGGAGATCCAGCAGTATGGACGTTATCTGTCCACAACGCCGGAGGCGGCGGCCACCCCCAGTTGGTGCGTGCTGTTTTGGCGGGCTTACAAAGTCGTGGATGGCCGACTTCAGAAGTCATGTCTTTTGGGTCAAACAGTATCGGTATCGACGTTGCGACGGAACGTGATTCCGTTCGCCGCACGCTGGTTGAAGTCTTGAGTGATGGTCAGAGGAAACTTCTATACCGGGCCAGCCTCGCGGCTGGACGATTCGAACGGAACATGGTTCTGCATCTTGGCGACATTAGCCCGGAGATTGCGTCGACTGGGGAGTCTCTGGACGTTTTGGTTGGCCCGTGGATCGATAATGTCGGATCCGGGCAGCTCCGGATCTCGCCGCTTGTCGTTAACGTGGGTGAGGAGGTACTCCCTAATGCGGAGCAAATTGCCGTTCACAAGGTGTTCGCGGACAGCCTGCTCCAAAACGGCTCACTTGATATTAGACGAGCAAACAAGCTGTTTATCCACAGCCTGAAAGCAAAAAGCAGCAAACGTTTAGAGGCCGTGGCACATGGTGTGATAACAGCTGCTCAGGAAGATCTCTCTACGCTTGCTGAATGGCTTCCCGGTGTGCGCTTCGCGCCCTTGGAGAGAAGGATTTTCTCGGATGATCATAAAAGCTCAAACCTATTGAGGCTATGTCAGTTTTTGCTCTCAGCATCGTCAGCGCCTCAGCCAGACCATCCTCGAAAAGTATGGGAGGTTCTGAACTCAGAGGTTCGTGAAAGCGATACTGCCAAAACAGAAGCTTTCAAAGTTACGATTTTGGCGAAAACCCTGAGTCTCTTTAAGCTCCCTGCAATACTCCCAGACTGGTTTATTTTACTCAGGCAGCTTAGATCGGCCATTTCGCAAAACGCTCAGCTTTCTTCAGCGTTCAGCGAGGTCTCACATAGTGGCGTGATGTTCGTGACTCAAGCGATACATGTCGGAAGTGTGGGTGCCCAACTCGATTTAATAAGAGAGCTGGATGCCCTGGATCCTGTGGAACGAGGAGACTACCTGCAATTCGCAATGCAAACTCGTAGTGGCCTGACTGCAATGATAAGCGGGCCATGGCTCGAAGAGGTTCGGACAGGCGTGCTTGACGCGCCCAAGGCACTCGCCGCCTTTCAAGAAATGGCGAGAATTTCCCGTGCCTGGGGTTACCTACCATTGACGATCTCACTAGAAATCACATCCAGCATCATGCTTGATGAATACATGAGCGATGCTCATGGTGCTCTAGAGGTACTCAAGAAGGCAGAGTCAGAATTTGGAAGTAACTTTGATCTGACGCGAGCTCGTGCGAAGGTCTACTTCCGTAAACACCAACATAGGGACATGATCTCCACTATCCAAGACCTTGAAGCCCATATGGATGTTCTCGAACCGTTGGAGAGGATGCTTCTTCGTCGAGAGATGGCGATCAGCCTTTCTGAGCTTGGAGACTGGGCAGCGGCAGCGGAACAGTTCGCCCATGCACGTGCTGACGTGTTGCTCACCAGACACGATGACGGTCAAGCACTGAGTCTGGGGCTGCTTGCAGACCAGGCGCTTGCGCTGTACCAAGCACAAGACTTTTTCTCGGCAGTCACCCTATACGAGGCGGTGCTCGAAGCCCTTCCCTCAGTTGATGCGATCGAAACGCTTCAGGCTGAATATTGCAGCCGTGTCATCCGGCACGGCTTGCTATGGCTGCACCTTCAAGCAATCGGAAGTACATCCGACATCGGGTTTACCAAACAGGACACCGTGATGAATGCTGGGATGTGCAGCAATATGAACCCTCCAGAGTCGATTCGTGAGTTGCCAAAAGCGCCCGCCGAAATGACTTGGTACATGTTTGCGCCAGTTGAATGTACCGTCCTTGCCACTTCCGAGACCCTCAACCGATTAGATAAAAGAGTCGAAAATAGAACTGCACCAATCTACGAGCTATCCGCCCGGAGTAACTGCCTTAATATAGCAATTCAGACTTTGTGCTGGGACGGTTTTGCATCTCAGCTCAACAAGCTTATGGCCGTTCGTGACTATGTTGAAAAACACCCAGAGCAACGTGATAGCTCCAGAATAATCAGCCCAGTGTACGATGTAGTTCCTGAGGCATCGAACGAAGCCCTCAGCTCAGACGCGTATCTCGGCTTTCAAAAAGATGTGCTAATTGCATTCGGCATAGTGGCAGCGGCATCCAACCGCCTGGACGTGCTTGAACTGCTCAGGGTCGACTTTGAAAGTCATCCTGCATCAAATCATCTGCTCGCTGTGGTTAAAGCAATGACAGCCCCCGAAAAATCAGCAGGTGTAGCAAACGAAATTCTTCATTGCATCCATCAGGTTGCAACAAAGCCAGAGCTCACCACCGATGAGCTTTTTAGAGCCACGACACGTTTCGTTGTGGCGATATCCAATTCAGATGTGCGGAAGACGTACGAAGATGTTCTCGTAGGTTGGGCGCGAGAAGCGTGGCGTGAAAAAGCAAAATCGATGCTCGGTTTTAAGAATGCCGACGCCGTAATTCCTAAAATCATGGACGCGTTGGAAACGCCAGGAATCGCCGGGATTGCAGAACTCGTATTGTCTGCAGAAGCGGGTGTACATATTGAGCTGCATCCCTTACTTAGACAGTTTATGCACAGAATAGTAGATACCACCTCCTAG	MNSSFSSGQRLAPSGNPKRQAVDALRGYAYQLYVSALAWVRLTEKERLYLEVAEDYALVAQDSLEGVQVKDTAGSGAVTINNQDVLDTLDNFVDLVERNPQFNVSMRFLSTSPIGMEKQTTHRVDGRAVLTYWPEAARNADVKLLRDAILKAAITPRVRTFIDSRNDEELRRDLLKPICWDCGQPILLEVKDDLSSALTWYANNSLRLPPSDSAYLPAEVMDHLLETVLKPNPQDRYLDAVTLLRLCEAVGTVTLSRSNHDALMEQAMRGSHANWLPMNRMPRLLENEESIPMPTLLLPRPAALQKAVAGLSERSVVFLCAGTGMGKTVIARMVARAHGGDWKVVDLRNVSIEECEFRLKQARDEVAAVSVAGVILDDMNEIDSPKVAAALGLLTHSLGRQNAICIITCYRHPSAGALNKLGLDSSASIQIPPLDQAEVASLIHMSGGDPAVWTLSVHNAGGGGHPQLVRAVLAGLQSRGWPTSEVMSFGSNSIGIDVATERDSVRRTLVEVLSDGQRKLLYRASLAAGRFERNMVLHLGDISPEIASTGESLDVLVGPWIDNVGSGQLRISPLVVNVGEEVLPNAEQIAVHKVFADSLLQNGSLDIRRANKLFIHSLKAKSSKRLEAVAHGVITAAQEDLSTLAEWLPGVRFAPLERRIFSDDHKSSNLLRLCQFLLSASSAPQPDHPRKVWEVLNSEVRESDTAKTEAFKVTILAKTLSLFKLPAILPDWFILLRQLRSAISQNAQLSSAFSEVSHSGVMFVTQAIHVGSVGAQLDLIRELDALDPVERGDYLQFAMQTRSGLTAMISGPWLEEVRTGVLDAPKALAAFQEMARISRAWGYLPLTISLEITSSIMLDEYMSDAHGALEVLKKAESEFGSNFDLTRARAKVYFRKHQHRDMISTIQDLEAHMDVLEPLERMLLRREMAISLSELGDWAAAAEQFAHARADVLLTRHDDGQALSLGLLADQALALYQAQDFFSAVTLYEAVLEALPSVDAIETLQAEYCSRVIRHGLLWLHLQAIGSTSDIGFTKQDTVMNAGMCSNMNPPESIRELPKAPAEMTWYMFAPVECTVLATSETLNRLDKRVENRTAPIYELSARSNCLNIAIQTLCWDGFASQLNKLMAVRDYVEKHPEQRDSSRIISPVYDVVPEASNEALSSDAYLGFQKDVLIAFGIVAAASNRLDVLELLRVDFESHPASNHLLAVVKAMTAPEKSAGVANEILHCIHQVATKPELTTDELFRATTRFVVAISNSDVRKTYEDVLVGWAREAWREKAKSMLGFKNADAVIPKIMDALETPGIAGIAELVLSAEAGVHIELHPLLRQFMHRIVDTTS				NA	NA	NA	NA	NA
D1-36_03780	876			hypothetical protein	ATGCATTCTGAACAAGATTTTCGTGAAGCTGTTGCGGCACTCAAGATCAAGCTGGAAGCCCACCATGGTGATTTCATCACCGGGTCAAAGGTCGGGGAAATTCTCATCGACCAATGCAAGTTTCGGCTCAAGAACCTCGCTCAGCCCCAGCTCACGCTTTCTCAGCTGATCAGGCATCACCTCGCCGACACGCTCACAACCTACGGTCATCAAGGTGGCGACACCTTGTATTTCGTCGGCAAAGGTGCACAGCCTCTCACGGCTCAGCCGGAGTACCGTTTCTGGACGGCGTTTGCCAAGGCAGACGAACAGTGCCTCTTTGCAATCCGACAGAGCGATAACGAGCCAGTCATTGTCGAGGGTGAAGCGGACTTTACGGGGTTGAAGGTGTTGCCTAAGATCACGCTTTCTGATCTTGAGGCGATCAAAGCATCCTTCGTTGATACATACCTCGTCGTCCCAGGCCAGTCACCACTTCCAGGCGCAGATATTCCCTACCTTCAATGGGTCGCAAGTGTTCGGGCTTCATCCAATCAGCAGATGAGTGCTTGGAGCCTCTACCGTATCGAGCAGATCAAACAGCTTTTCAAGGATCGTATAATCGAGTTGGGCGTGCAGGAAACCGATCAAGCCCGTCTAGAGCGATTCCTGTCAGAATCTCAACGCAAAAAAATTCGACCTACCACCGCTGTTGCTCGCGATGAGCAGGAGGCCTGTTCGGTGTCGCTGAACCACGATCCCTACCTCCCTCGAAATCCCGACCAAGTTTTCCGGGATGCTGTTGTGGTCGTCATCCGCCAGCTCAGCATGCCCGAGCTACGGGAGCTCAAGCTCCCAGCGGGCCTGTTGAGCGATGCTCTCCTAATTAGGAAATAG	MHSEQDFREAVAALKIKLEAHHGDFITGSKVGEILIDQCKFRLKNLAQPQLTLSQLIRHHLADTLTTYGHQGGDTLYFVGKGAQPLTAQPEYRFWTAFAKADEQCLFAIRQSDNEPVIVEGEADFTGLKVLPKITLSDLEAIKASFVDTYLVVPGQSPLPGADIPYLQWVASVRASSNQQMSAWSLYRIEQIKQLFKDRIIELGVQETDQARLERFLSESQRKKIRPTTAVARDEQEACSVSLNHDPYLPRNPDQVFRDAVVVVIRQLSMPELRELKLPAGLLSDALLIRK				NA	NA	NA	NA	NA
D1-36_03781	1377			hypothetical protein	GTGGTAGTGCAATTGAAGCAAAGCCCTTGCGTCAAAATTTATATCGTCGTGTATTCGAGTGGTGCCGAGGCGCTCAAGCGGGACATACACGAATTGTGTAGATTGGATTGGGAGCCCTACGTAGGGTTTAAGATCACCAATACCACTGACGACAAGGATGAACTCACTACCGAGCTCATTCAGACGCTCAAGCGTCATGGCGCAGAGTACTGCAAAGTCTACGTTCAGGGCGCCGGAGTGAATAAAAGGCGGCTAGAGGCAGCCGGCTATCCGGTGGAGAGCGCTGCGGCTATCAAAACCCTGCAGAAAAAGATAAAGACCGGACTGAGAGATTGTGGCCTGGAGTGGCGAGCCAATGCGGATGCTGAATGGAGAAAATCGTCCATCCAGTTCGCTTCAATCGACAAATGGTATCAGCAGTTTTCTGATCGCGGGCATGGGGATGTTGCTAAAAATCTCCTTAAAGGTCTTCGCGTCATCACCGATGCAGAGATCCGTGAATCCTTTAGAAATTGTGGATCGGAAGGCGATAACGTGGGTCAGCGGTGTCTTCACGCGTACGTCGCAGACGACGAACTTGGCGCAAGCTCCAATACGATCAGCGATGTCTTGATCAAGATCTGGCCGGAAAGCATGGTTTGCTCCCTGAACTTGGAGAACCCAGATTTCTTCACCGGTTTGAAAGCCGATGTGCTTTACGTCTACGAAGATGGGCTGTGGAGCGGGGTCGAACTGGTGGAACGCTTGGCTCAGCTTTCCAGAATGGGCAGCGTCATGCAATCCAATGTGAGGATTGAGTTCCGCTACTGCGCAGTCGCGGATGCTGGCTTGGCTGCTGCTAGGCTGGCAGTGTCGAACTACTCGCCTGGGAAATTTGCAGTGCTCTCTGCAGAGAACCACTTTAGGTTCATCCGGGATGGTGTCGATCCTACTTTCGCTGACCTGGAAGATCGGAGTGATGCGGCGGTGCGAGAAGCTATCGATGGGAGCATTGAGCCCTATATTTTCTCGCGCCTAGGACTATGGGGCGACTCAGGCATGCAGGCGGTGCAGCTGTGTGGCGAGATCGGTGCCCAGTTGATCAAGCCATTTCTGGAGCATCAGGCAAGAAAAAAGGTCATGCAATCGGTATCGCCGTCAGCAATTGATATGGAGGCTGCGCTGGAAATACCCGAAATCGATCCGGGAAAAATTTTGAAGTGGAAACTCGGCGCAGGAGGGTTTGCATCTACTGTAGTGTTTCAGTCGAGCATCCCTAAGCCGGTGCTACCTCTGATATGGCTGGGAGGGCGAGTCGAGCTCAATGGAGAGCAAATCGAGTGGGCACCGCTGTTCTGGGATTCGCGAAGGACTGGCGTCGCAGCCCCCAGGATCTGA	MVVQLKQSPCVKIYIVVYSSGAEALKRDIHELCRLDWEPYVGFKITNTTDDKDELTTELIQTLKRHGAEYCKVYVQGAGVNKRRLEAAGYPVESAAAIKTLQKKIKTGLRDCGLEWRANADAEWRKSSIQFASIDKWYQQFSDRGHGDVAKNLLKGLRVITDAEIRESFRNCGSEGDNVGQRCLHAYVADDELGASSNTISDVLIKIWPESMVCSLNLENPDFFTGLKADVLYVYEDGLWSGVELVERLAQLSRMGSVMQSNVRIEFRYCAVADAGLAAARLAVSNYSPGKFAVLSAENHFRFIRDGVDPTFADLEDRSDAAVREAIDGSIEPYIFSRLGLWGDSGMQAVQLCGEIGAQLIKPFLEHQARKKVMQSVSPSAIDMEAALEIPEIDPGKILKWKLGAGGFASTVVFQSSIPKPVLPLIWLGGRVELNGEQIEWAPLFWDSRRTGVAAPRI				NA	NA	NA	NA	NA
D1-36_03782	477	lrp_4	COG1522	Leucine-responsive regulatory protein	ATGAAATTGGATACGTTCGACCGCAAAATCCTGACGGCACTGCAACGGGACGGTAGGCTGAGCAACGTGCAACTGGCCGAAGAAATCGGCTTGTCTCCCTCACCCTGTCTGCGTCGCGTGCGGATGCTTGAAGAGGCGGGGGTGATTCGCGGTTATCAAGCCATCCTGGATCGCGATGAAGTGGGACTTGGGATGACGATTTTCGTTGGCATCAAGGTCGAACGGCACACCGACGAGCGAGCCGAGGCTTTCCGTCAGGCGGTGACCGCGCTGCCCGAAGTGATCTCGGCGTTCCTGGTGTCCGGTGAGTCCGACTTCCTGCTGCAAGTGGCGGTGCCTGACCTACGAGCCTATGACCGTTTTGTCACGGGCAAGCTGCTGAAGTTGCCGGGGGTCAGTGATATTCGCAGCAATTTCGCGATCAACACGGTGAAGGCGCCGGGGCCGTTGCCGTTGGGGCATTTGGGTGGGGATTGA	MKLDTFDRKILTALQRDGRLSNVQLAEEIGLSPSPCLRRVRMLEEAGVIRGYQAILDRDEVGLGMTIFVGIKVERHTDERAEAFRQAVTALPEVISAFLVSGESDFLLQVAVPDLRAYDRFVTGKLLKLPGVSDIRSNFAINTVKAPGPLPLGHLGGD				NA	NA	NA	NA	NA
D1-36_03783	630	rhtB_4	COG1280	Homoserine/homoserine lactone efflux protein	ATGACAGGGCTCTGGTTGTTTTTCATGGCATTGACGGTGGCGTATCTACTGCCTGGGCCGGACATGATCCTGGTGCTGCAAACCGGAGCTCGACAGGGCAAAGGCGTGGCATTGGCAACGGCGCTGGGATTGGGCGTTGCCCGGGCATGTCATGTCGCGCTGGCAGCGATGGGCCTTTCGGTATTGTTCAAGACGGCGCCGTGGACGTTTGATGCGGTGCGCCTGGCCGGAGCTGCTTATCTGGCCTGGATCGGGTTTCAATGTTTGCGGACGACGTTGTTGCCCCGCTTCGAAGGAGCCGCCGCTGAAATCGGGAAGAGGCAATGGCATCAGGCGATCCGGCGCGGTCTGTTGACGAATTTGCTCAACCCCAAGGCGTTGCTGTTCTGCTCGGTGTTGCTCCCGCAATTCATCGATCCACAGGACGGGCCGGTGTTGGGGCAATTCGCGATATTGGGTGTAGTACTGGTCGGCGTTGGCCTGCTGTTCGACAGCGCTTATGCATTGATCGGTGTAGCGCTTGGGCGATGGCTCCAACGCTCGCCTTCGGCCCAGCGCGTGCAGCGGTGGGTGTTTGGTGGTTTGCTGATCGGTTTTGCGGTCCGGCTGACGTTTGTGCAGCAGTCGTGA	MTGLWLFFMALTVAYLLPGPDMILVLQTGARQGKGVALATALGLGVARACHVALAAMGLSVLFKTAPWTFDAVRLAGAAYLAWIGFQCLRTTLLPRFEGAAAEIGKRQWHQAIRRGLLTNLLNPKALLFCSVLLPQFIDPQDGPVLGQFAILGVVLVGVGLLFDSAYALIGVALGRWLQRSPSAQRVQRWVFGGLLIGFAVRLTFVQQS				NA	NA	NA	NA	NA
D1-36_03784	411			hypothetical protein	ATGCTTTACCCAATTGCGATTTCCATGGGCGATGACAAGCACGCCTGGGGTGTGGAAGTGCCGGATATTCCCGGTTGTTTTTCCGCAGGTGACGACCTGGACGAGGCCATGGCGATGGCGCGGGAGGCCATCGAGGGTCATTTCGAGATTCTGGCCGAAGACGGTTCGCCCATTCCATCGGCCAACACCGTTACCCTGCACGCAGCCAACCCACAATACGCCGGTTGCACCTGGGCGCTGGTGGACATCGATGTGACCAAGTACCTGGGCAAGGCGCAGAAACTCAACATCACGTTACCCGGCTACCTGCTCAACCGGATTGATGAATATGTATTGCACCATCCCGAAGAGAAGAGCCGCTCCGGCTTCCTCGCGTCGGCAGCGCTGAAGGTGCTGCAGCAAGGGCGATGA	MLYPIAISMGDDKHAWGVEVPDIPGCFSAGDDLDEAMAMAREAIEGHFEILAEDGSPIPSANTVTLHAANPQYAGCTWALVDIDVTKYLGKAQKLNITLPGYLLNRIDEYVLHHPEEKSRSGFLASAALKVLQQGR				NA	NA	NA	NA	NA
D1-36_03785	147			hypothetical protein	ATGAATATCGCCCGCACCCTTTGCCTCGCCTGCTGCCTGTTCGCTTTGCAAGGCTGCTTCGACAACTCGGGTAACGAGACCAAGGACAACACCGACGGCAGCAAGTCTTCGGTGCAGATGCAGGAGTCCAAGTCGGAGAGCAAGTAG	MNIARTLCLACCLFALQGCFDNSGNETKDNTDGSKSSVQMQESKSESK				NA	NA	NA	NA	NA
D1-36_03786	405			hypothetical protein	ATGACGTTCGCCAAAATCGCTCAAAAACTATCCCTCTGGGCCGGGAGCCCCAAGACCTTCCTAGGGGCCATCGTGCTGTTGGTGCTCTGGGCTGCCAGCGGACCTTTGTTCGGTTTCAACGATACCTGGCAACTGATCATCAACACCTCGACCACGATCATCACCTTCCTGATGGTGTTCCTCATCCAGAATACGCAGAACCGCGATACGGATATCCTGCACCTGAAAGTGGATGAATTGCTTCGGGCGTCCAAGGATGCGCAGAACGCGATGCTTGGTCTCGAGTCGCTTGATCTCAAACAACTTGAAGCGTTGAGGAAGCGGTATCAGGACATGGGCAAGGTCGACGCCAAGAGCCTTGATGGCGTCGAACAGGAAAAAAAGGTAGACCTGAACCAATGCTGA	MTFAKIAQKLSLWAGSPKTFLGAIVLLVLWAASGPLFGFNDTWQLIINTSTTIITFLMVFLIQNTQNRDTDILHLKVDELLRASKDAQNAMLGLESLDLKQLEALRKRYQDMGKVDAKSLDGVEQEKKVDLNQC				NA	NA	NA	NA	NA
D1-36_03787	909	yghA		putative oxidoreductase YghA	ATGTCTACACGCCGAGAACCCAACCAATACGCGATGCAGAATCCGCTGACCCAATACCCGCGTCCGGAATTTCCCGACCAGCCGCAGTCACCCCCTGGCATTGATCAGGATATGGAACCGCAACCGGATCATGGTGAAAAAAGCTATCAAGGTTTTGGTCGCCTGGAGGGGCGCAAGGCCTTGATCACGGGCGGCGATTCGGGGATTGGTCGCGCCGCTGCCATCGCCTACGCCCGGGAAGGGGCCGATGTCGCAATCAATTATCTGCCCAGCGAAGAGCGCGATGCACAACAAGTCGTCGAACTGATCAAGGCTGAGGGCCGCAAGGCCATCGCCATACCAGGCGACCTTAAGGATGAGGCGTTCTGTGTCCAGATGGTGAATATGGCGCAGCAGCAACTCGATGGCCTGGATATCCTGGTGAATGTCGCCGGTAAGCAGGAGGCGCAAAAAGACATTGCCGACATCACCACCGCGCAATTCGATGACACCATGAAGACCAACATCTATGCGATGTTCTGGATCTGCAAGGCTGCTGTTCCGCTGATGCCGGCTGGGGCAACCATCATCAATACCGCCTCTATCCAATCCTACGATCCGTCCGCGACGCTGCTGGACTACGCCACCACCAAAGCGGCAATCGTGGCGTTTACCAAGGCGCTGGCCGGGCAAGTCATCAGCAAGGGCATTCGTGTCAATGCAGTCGCGCCGGGTCCAATCTGGACCGTGCTGCAACCCAGCGGCGGACAACCTAGGGAGAAGATTCCTACGTTCGGCTCCCAGGTTCCGATGAAACGTCCGGGCCAACCCGCTGAATGCGCGCCGCTTTATGTACTGCTCGCTTCCCAGGAGTCGAGCTATATCACCGGGGAAGTATTTGGCGTGACGGGAGGCAACCCGTTGCCCTGA	MSTRREPNQYAMQNPLTQYPRPEFPDQPQSPPGIDQDMEPQPDHGEKSYQGFGRLEGRKALITGGDSGIGRAAAIAYAREGADVAINYLPSEERDAQQVVELIKAEGRKAIAIPGDLKDEAFCVQMVNMAQQQLDGLDILVNVAGKQEAQKDIADITTAQFDDTMKTNIYAMFWICKAAVPLMPAGATIINTASIQSYDPSATLLDYATTKAAIVAFTKALAGQVISKGIRVNAVAPGPIWTVLQPSGGQPREKIPTFGSQVPMKRPGQPAECAPLYVLLASQESSYITGEVFGVTGGNPLP				NA	NA	NA	NA	NA
D1-36_03788	504			hypothetical protein	ATGAGCCGGATGGCCACCTTTTTACGCACCACCAGTGTTGTTGTACTGATGGGCCTGGGTGCCAACAGTGCGTGGGCCCAGTCACCTGTCGAATTCATCAACGATGCATCCGCCAAAGGCATGGCCGACATCGAAGCCAGCCGCGAGGCACATTCGAAGGCGGAGTCACGGGAGGTCAAGGATTACACCATCATGGTGATCAACGACCGCACCACCGCCAACCAACATCTGGCGAAGATCGCCAAGAAACTCGACTTGCCTGTCGCGCCGCGGGAAGTAGTGGCGGACAAAGCGAAGACCCTGCAGCCGCAAGTCGCCGAGGGCGAGTCGTTTGAAGCGGCGTATGCCGCCAGCCAGGTCAAGGCCACTGAGGACGCCATCGCGCAGATCCAGCAGCAGGCCCAGACCACTGACGTGCCGGAGATCAAGGCATTCGCCGACGAAACCCTGCCTAAATTGCAGACGCACCTTGAAATGGCCAGGGCCCTGCAAGCCAGCCGTTGA	MSRMATFLRTTSVVVLMGLGANSAWAQSPVEFINDASAKGMADIEASREAHSKAESREVKDYTIMVINDRTTANQHLAKIAKKLDLPVAPREVVADKAKTLQPQVAEGESFEAAYAASQVKATEDAIAQIQQQAQTTDVPEIKAFADETLPKLQTHLEMARALQASR				NA	NA	NA	NA	NA
D1-36_03789	159			hypothetical protein	ATGGGCGGATCAAGCAACATTTATCCGGGAAACATTGCCCACGATCGAACGAAGGTGTCCGAAGCGGGTCGCAAAAGTGGGAGAACCACCATCGCGAGTGTCGATAAAAGTCCGCTGAAAGCCGAGATTGGCCGCAGGCCGGGCGGGACGTCTCGCTGA	MGGSSNIYPGNIAHDRTKVSEAGRKSGRTTIASVDKSPLKAEIGRRPGGTSR				NA	NA	NA	NA	NA
D1-36_03790	1407			hypothetical protein	ATGAACGGGGGCGACCCGGTTCGCCCATTGCTTGATTACCCGGATGGCTTGCGCGTCATGGACACCCGAAACTCCACGCCGTTGGCCAGTTACCTCGACCTGCTGCTCGATGCCGTCTGCGCCGTCGATGTCCAGGGACGCTTCGTATTCGTCAGCGCCGCCTGCGAGCGTATTTTCGGCTATACCCCCCAGGAACTGATCGGTCGGTCGATGATCGAGCTGGTTCATCCCGCCGATCGCCAACGTACCCTCGAGGCTGCGCGGGAGATCATGGGGGGCGAGCCCAAGCTCAATTTCGAAAACCGCTATCTGCGCAAGGACGGTGGCGTGGTGCACATCTTGTGGTCGGCGCGCTGGTCGGAGGCTGACCAGCTTCGGATCGCCGTGGCTCGCGACATCACCGAGCGCAAGCAGGCGGAATCCAGGCAGGCCGCGTTGTATGCAATTTCCGAGGCGGCCCATGCCGCCGCCGACTTGCTGGCATTATTCAAGCGTATCCACCTCATCATTGGCGAGTGGTTGCCGGCGCTGAATTTCTCGGTGGCGTTGTATGACGAGCAGTGCGCACAGCTCAACTTTGCCTATCACGTCGACGATCGAGAACGACAGCCCGAGCTGCCTGGCACGGCTATCGGGCGCTTGTGCGCCGAAGTGGTACGCAGCGGCCAGCCGATCCTGCTCACGCCCGGTTGCAGCTCGTCGCCCGTGGAATTCTGCGACCTCGTGGCGAAGCCTGATGCGCCTTGCTGGCTGGGTGTACCGCTGAATTCGCAAGGCAGTATGATCGGCGCATTGATCGTCAAGAGTGCTCCGGACAGTGGTCGCTATACGGAGCAGGACAAGGAATTGCTGCAATACGTCTGCGCCCAGATCACCCTCGCCATCGAGCGCCAGCAACTGCACGCCCGGCTTCAGCACATGGCGCAGTACGACCAACTGACCCAGGTACCCAACCGTGAGTTGCTGCGGGATCGGTTCAAGGCCGCGTTGGCCACGGCCCGTGTTGTTTCCGGACGGATGGCGTTGTTGTACATCGACCTGGATCGTTTCAAGCAAGTCAACGACACCTACGGCCATGGCGTCGGCGATATGCTGCTGCAAGCGGTCGCCAGCCGATTGAAGGGGTGCATACGTGACGCCGACACCGTCGCGCGCATCGGTGGCGATGAGTTCGTCGTGTTGCTCCATAGCGTCCACAGCGTGGAAGATGCCGGCAGGGTACAGGAGAAAATTCGTCTCGCATTGGCCCAACCTCTGCGGCTGGACGGCCACTGTCTCAGCATCGAGCCGAGCATCGGTCTGGCCTGTTTTCCTGACCACGGGACCGAAGACGTAACGCTGTTCCGCCATGCCGATGAGGCGATGTACGCAGCCAAGCGCCACAATCATAGGGCTTTCGGCATTTGA	MNGGDPVRPLLDYPDGLRVMDTRNSTPLASYLDLLLDAVCAVDVQGRFVFVSAACERIFGYTPQELIGRSMIELVHPADRQRTLEAAREIMGGEPKLNFENRYLRKDGGVVHILWSARWSEADQLRIAVARDITERKQAESRQAALYAISEAAHAAADLLALFKRIHLIIGEWLPALNFSVALYDEQCAQLNFAYHVDDRERQPELPGTAIGRLCAEVVRSGQPILLTPGCSSSPVEFCDLVAKPDAPCWLGVPLNSQGSMIGALIVKSAPDSGRYTEQDKELLQYVCAQITLAIERQQLHARLQHMAQYDQLTQVPNRELLRDRFKAALATARVVSGRMALLYIDLDRFKQVNDTYGHGVGDMLLQAVASRLKGCIRDADTVARIGGDEFVVLLHSVHSVEDAGRVQEKIRLALAQPLRLDGHCLSIEPSIGLACFPDHGTEDVTLFRHADEAMYAAKRHNHRAFGI				NA	NA	NA	NA	NA
D1-36_03791	1236	kbl	COG0156	2-amino-3-ketobutyrate coenzyme A ligase	ATGAACCAGATTGCGCAGCCCACTCAGCACTTCAGTAACTATCGCAAAATCATTTCCCTGGCGGACCGGGACTGGCAGAACGCCGAAAACGGAAAGATCGCTGGACTGAACGTCGAGGTCCAGTCTCCCAACGTGCTCATCGACCAATATGGTCGCACCTTGCATCACTTTTGCACCACGTCGTACCTGGGCCTGGATTACCACCCCGCCTTGCTGGATGGCGCCATGACCACGCTGTGGGAAACAGGAACACTGCGTGTCGCCAACTCCAGAAACCGCAGCCGGCTAGCAATCCTGGACCAATACGAAACCCAGCTGTCGGAGCTGTTCGGCGCCAGCTGCCTCAGTGCGCTGTCCTGCAGTGCGGCGAGTGCGGGAATCCTGCCGCTGCTGGCCAGCGGCGCGCTGACGAAAAACCGCCCGCCGGTGATGGTGTTCGACAAGCACGCCCACTACTCGATGAACCATATCAAGGCCGCTTGTGCGGATGAAACCCAGGTCCTCACCTGCCCACACAACGACATGGATTTTCTTGAGGACGTCTGCAAACGCCAGGGCAACGTGGCCTACGTGACGGACGGTGCCTACAGCATGGGCGGCATGGCGGACCTGGACAGTTTGTTGTACCTCAGACAGCGCTATGGTCTGTTCCTTTATTTGGACGATTCCCATGCCGTGTCTACCGTGGGGCACTGCGGCATCGGTCGGGTACGCTCACGGATCCACGCCTTGGATGAGCGAACCCTGATCGTCGCCTCGCTGGCCAAGTCCTTCGGGGCCAGTGGCGGGCTGGCCATGTTCGGCAGCGAGCGGCACAAGACGCTGGTGCAGCGTTACGGCGGCCCCGCCAACTGGTCGCAGAGCCTCAATTCGGCGGCTATCGGCGCCGGCATGGCCTCGATCCGCTTGCATCGCAGTCGAGAATTCCACGCCTTGCAAGAACGTTTGCAGGCTAATATCCGTTTTTTCGACAGCCTCATCCGCACCGAACAGTATGCAAGCCCCATGGCAATCCGCCTGGTGCGCTGCGGTGAGGCAGCCCTGGCTACCCGCCTGGCGGTGGAGTTGGCCGACCTGGGGTATTTCACTTCAGCGGTCTTTTTCCCCGTGGTGCCGCAAGACAAGGCCGCGATCCGCATCACCCTGCGCGCCGACATGGAGCCGGACGTGATTCGTTTGTTCTGCGAACAGCTGACCAGTCTTTTGGTGGCCCACGGCCGTGATATCCGTCCTTGA	MNQIAQPTQHFSNYRKIISLADRDWQNAENGKIAGLNVEVQSPNVLIDQYGRTLHHFCTTSYLGLDYHPALLDGAMTTLWETGTLRVANSRNRSRLAILDQYETQLSELFGASCLSALSCSAASAGILPLLASGALTKNRPPVMVFDKHAHYSMNHIKAACADETQVLTCPHNDMDFLEDVCKRQGNVAYVTDGAYSMGGMADLDSLLYLRQRYGLFLYLDDSHAVSTVGHCGIGRVRSRIHALDERTLIVASLAKSFGASGGLAMFGSERHKTLVQRYGGPANWSQSLNSAAIGAGMASIRLHRSREFHALQERLQANIRFFDSLIRTEQYASPMAIRLVRCGEAALATRLAVELADLGYFTSAVFFPVVPQDKAAIRITLRADMEPDVIRLFCEQLTSLLVAHGRDIRP	PGPT0022095_590	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022095-bioF-K00652	NA	NA
D1-36_03792	1167	ydhC		Inner membrane transport protein YdhC	ATGAAAAACCGTACAACACTGATCGTCACCTGCACCACGGTCTTCCTGGCACAGCTGGGCATGAGCATCTATCTGCCAGCCCTGCCGGATATCGCCCAGGCTCTGAGCGCCGATGCATCCCGAGTGTCGTGGGGGTTGTCGGTGTACCTGGTCGGCATGGCCTTGCCGATGCTGATGTGGGGCAGCCTGAGCCAGCGTCTTGGACGCAAACCGGTGCTGTTGGCGGCATTGACGCTGTACGGCCTCGCAAACCTGGCGCTGCCGTTGGGTACGACGATAGAAACGTTCCTGGCGTTCAGGTTGGTCCAGGGCGTCGGCGCCAGCGGTATTTCGGTGATGGCGAGGGTGCTGATCCGTGACAGCTTCAGCGGCGACCAGCTGGCCAAGGCCTTGTCCTGGATATCGATCGCCTTCGTGGTTGCCCTCGGCATCGGCCAGTACCTCGGCTCACTGATCCAGGCTGCGTTTGGATGGGAGGCGATTTTTCTCGGATTGGGCGCGGCCAGCCTGGTCATGGCCGCCGCGGTGTCCACGGCGGCGTTCCCGGTACTTGCCGAAAACAGCAATGGACAGTCGGCTTGGGGGATCTACGTACGGATACTCCAGCATCGTGGTTTTCTGTTGCCTGCGTTGGCGGGCGGGTTGGGTTATGGCGTGATCATCGCCTTCAACACCGCCGCGCCGCTGATCCTGCAACAGGGCTTTCACTGGTCTGCCATCGAGTATGGGCTGTTGGGCTGGCCGATCAGCGGCGCGTACTTGCTGGGCGCGCTCGCGGTCAATGCCTTTGTGCTGCGCACGGGCCAGCGCCGGCTGATGGGTTGGGGCATTGCCCTGGTCCTGGGTGGCAGCGCGACCATGCTGGCAGGAAGCGTTTCACTGAGCAGCGTCGCGCTTTTGTTCTGGTTGCCATACTGCTTCGCGGTGTTCGGCCAGTCGTTGAATTATCCGATCAGCCTGTCGCTGGCAAACGAAGGCTCGCCGATCGCCGGTGCTTACGCCATGGCGTTGAGCGGTTTCCTGCACCAGCTGATGGCGTCTATGATCGGCGCGATTGCCAGCCTCTTGCTAAGCCAACAGGCGTGGCCACTCGCGGTTTTATGCATGTTATTGGCGACGGCGGCGACGCTGTGCGCCAGGTTCACGCCAAATGGACCGGGTCGGTAA	MKNRTTLIVTCTTVFLAQLGMSIYLPALPDIAQALSADASRVSWGLSVYLVGMALPMLMWGSLSQRLGRKPVLLAALTLYGLANLALPLGTTIETFLAFRLVQGVGASGISVMARVLIRDSFSGDQLAKALSWISIAFVVALGIGQYLGSLIQAAFGWEAIFLGLGAASLVMAAAVSTAAFPVLAENSNGQSAWGIYVRILQHRGFLLPALAGGLGYGVIIAFNTAAPLILQQGFHWSAIEYGLLGWPISGAYLLGALAVNAFVLRTGQRRLMGWGIALVLGGSATMLAGSVSLSSVALLFWLPYCFAVFGQSLNYPISLSLANEGSPIAGAYAMALSGFLHQLMASMIGAIASLLLSQQAWPLAVLCMLLATAATLCARFTPNGPGR	PGPT0029005_5371	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
D1-36_03793	1020			hypothetical protein	ATGACCGATTTCCAGGAATACGACGCCCGGCTCGAAGATTGGGAGACCTTGCGCGCCGACATCGCCTTCAGCGGCTTGTTGGTGGGCAATGGCGCCAGCCGCGCCGTGTGGGATGATTTCGGCTATGACTCGTTGTTCGAGAACGCCCGCACCGTCGAGGAAAAACCCTTGAGCGCGTCGGAACTGAGCGTGTTCGACGCGCTGCAGACACGCAGTTTCGAACAAGTGCTGGGGGCGCTGAAAACCACCAGTCGGGTCAACAAGGCCTTGGCCGTCAGCTCCGCGGCGCCGCGCAATCGTTATTACGCGATCAAGGAAGCGCTGATCAACACCGTACATGCGGTGCATATTCCTTGGCGGTTGGTACAACCGTCGACCCTGGAGAACCTCAATCAGGAACTGGGTAGCTACCGTACGGTGTTTACCACCAACTACGATCTGCTGAGCTATTGGGCGATCCAACAAGCGCCCGAAACCCTCACCGATCTGTTCCTGGGGGCCGACCACAGCTTTGACCTGAGCCAGGCCCACCTCGACAAACCCCGTCTCTTGTACCTGCACGGTGGCCTGCACCTGGTGCGCAACCAGGACGGCACGGCACGCAAGCTCACCTCCACCGAAGGCACGCTGCTGGGCAGCTTCGCCATCAACAACACCATCAAGACCCTCGACGATGTGCCGTTGTTGGTCAGCGAAGGGCCGAGCCAGGACAAACTCAAAACGATTCGCAGCAGCGACTATCTGTCGTTCTGCTACGACCAACTGCTGCATCACCACGACAATCTGTGCCTGTTCGGCCATGCCCTGGGCGAGCAGGACAGCCACATTGTCGATGCCTTGCGCCAAGCCGCGCCGAAGACCGTCGCCATCTCGATCTACCCACGCAGCCAGGCGTTCATCCAGCACCAGAAACGGCATTACGCCAAGCTGTTCCAGGGTTTGGACACAGAGCTGCGTTTCTTCGATGCCAAGAGCCATCCACTGGGCGATCCGAAGCTGTCGGTGCCGGTGGAGGTCTAG	MTDFQEYDARLEDWETLRADIAFSGLLVGNGASRAVWDDFGYDSLFENARTVEEKPLSASELSVFDALQTRSFEQVLGALKTTSRVNKALAVSSAAPRNRYYAIKEALINTVHAVHIPWRLVQPSTLENLNQELGSYRTVFTTNYDLLSYWAIQQAPETLTDLFLGADHSFDLSQAHLDKPRLLYLHGGLHLVRNQDGTARKLTSTEGTLLGSFAINNTIKTLDDVPLLVSEGPSQDKLKTIRSSDYLSFCYDQLLHHHDNLCLFGHALGEQDSHIVDALRQAAPKTVAISIYPRSQAFIQHQKRHYAKLFQGLDTELRFFDAKSHPLGDPKLSVPVEV				NA	NA	NA	NA	NA
D1-36_03794	582	yhbO	COG0693	Protein/nucleic acid deglycase 2	ATGGCCGCCAAGAAAATCCTCATGCTGGTCGGCGATTACGTCGAAGATTACGAAGTCATGGTGCCGTTTCAGGCCCTGCAGATGATCGGCCACACCGTCCATGCCGTGTGCCCGGATAAAACGACCGGGCAGACTGTCCGCACGGCGATTCATGACTTCGAGGGCGACCAGACCTACAGCGAAAAACCGGGACATCTGTTCGCCCTCAACCATGACTTCGCCAGCGTCGAGGCGGCCGACTACGATGCGTTGCTGGTGCCAGGCGGTCGCGCTCCGGAATACTTGCGGCTGAATGAAAAAGTCTTGCAACTGGTGCGCGATTTTGACTTGGCGGGCAAGCCGATCGCGGCGGTGTGCCACGGGGCGCAATTGCTGGCGGCGGCGGGCATCCTGGAGGGGCGCGAGTGCAGCGCCTATCCGGCCTGTGCCCCGGAAGTGCGCTTGGCCGGCGGGACGTTCATCGACATCCCGGTGACCGAAGGCCATGTCCAGGGCAACCTCGCCACGGCACCGGCCTGGCCGGCGCACCCGAGCTGGCTGGCGGGGTTTCTGACGTTGCTCGGTACGGCGATTACCCTATAG	MAAKKILMLVGDYVEDYEVMVPFQALQMIGHTVHAVCPDKTTGQTVRTAIHDFEGDQTYSEKPGHLFALNHDFASVEAADYDALLVPGGRAPEYLRLNEKVLQLVRDFDLAGKPIAAVCHGAQLLAAAGILEGRECSAYPACAPEVRLAGGTFIDIPVTEGHVQGNLATAPAWPAHPSWLAGFLTLLGTAITL	PGPT0015010_717	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
D1-36_03795	1218			hypothetical protein	ATGTCCGTCACCGCAACTCCCACCCGTCCCGGGCCGGATCACCACGCTCAGTTCATCGAGCTTTTGCAAACCAGTCTCGAACAAAACGCGTTCATCAAGCTGGTGCTGGCCAAGTACGTCGGTGACGAAAGCGATCTGCAGCGGCTGATCATCAAGCAACTGACCGTCAAGGACCAGCCGTGCCTGTCCTTTGTCTATCGCTACAAGACCCGCGACATCACCAAGAATTTTTCGCTGGCCGAAGGCGTGGATGCCATCGCCACGCTGTTGCCGACTTCGTTCAAGAATGCTCACTTGTTGGCGATTACCGACGAGGCGCAGTTGGAATACAGCAAGAAAGGCAAGAGCTCGCTGTTCAAGAGCAAGCCGCAGCAACTGCGGGAAGTACCGTCCGCCGGGCACAACCGCGAGAAAAACCGCTTCCTCGACCTGAATCGGCCCTTTTTGGCCGACCTGGGGGTGACCAACCATAAGCACGAATTGATCCCGGCCATGTCGCGCAAGTGGAAGCAGATCAACAAGTTCATCGAAGTGTTCAGCCACGCGCTGACATCTTCGCCATTGGCCTTGGACACGCCGGTGCGAGTCTCGGATTTCGGCTCGGGCAAGGGCTACCTGACCTTCGCCATCCATGATTACTTGCGCAACACCTTGCAGGCCGAAGGCGTGGTGACGGGTGTCGAGCTGCGCGAAGACATGGTCAAGCTGTGCAATGAAGCCGCGGCACGACTGGAGCATCCGGGCCTGAGTTTCCAGCACGGTGACGTGCGCACCGTGGCGCCGAGCGCGGTGGATGTGATGATCGCTTTGCACGCCTGCGACATCGCCACCGATTACGCTATCCACATGGGCATCCGCTCGGGCGCCTCGATCATCATGTGCTCACCGTGCTGCCACAAGCAGATCCGCCTGCAAATCCAGAGCCCGGCGCTGCTCAAGCCGATGTTGCAATATGGCCTGCACCTGGGCCAGCAGGCGGAAATGGTCACCGACAGTTTGCGGGCGTTGTTCCTCGAAGCCTGCGGCTATGAGACCAAGGTGTTCGAGTTCATTTCCCTGGACCACACCAACAAGAACAAGATGATCCTTGCGGTCAAACGCCCCGAACCGGTGGAGCCCGCCGAACTGCTGGCCAGGATCGACGAACTCAAGGCGTTCTACCACATTACCGAGCACTGCCTCGAAACGCTGCTGCGGGCGGATGGCTACCTGGCCTGA	MSVTATPTRPGPDHHAQFIELLQTSLEQNAFIKLVLAKYVGDESDLQRLIIKQLTVKDQPCLSFVYRYKTRDITKNFSLAEGVDAIATLLPTSFKNAHLLAITDEAQLEYSKKGKSSLFKSKPQQLREVPSAGHNREKNRFLDLNRPFLADLGVTNHKHELIPAMSRKWKQINKFIEVFSHALTSSPLALDTPVRVSDFGSGKGYLTFAIHDYLRNTLQAEGVVTGVELREDMVKLCNEAAARLEHPGLSFQHGDVRTVAPSAVDVMIALHACDIATDYAIHMGIRSGASIIMCSPCCHKQIRLQIQSPALLKPMLQYGLHLGQQAEMVTDSLRALFLEACGYETKVFEFISLDHTNKNKMILAVKRPEPVEPAELLARIDELKAFYHITEHCLETLLRADGYLA				NA	NA	NA	NA	NA
D1-36_03796	618			hypothetical protein	ATGGCATTACTGACTGAACACGAACAGCGCAAAGTGGCCGAGGCGATCGCTCGGGTCGAGCGCGACACCGACGCCGAACTGGTCACGGTGCTCGCCGCCCGCGCCGATGACTACGCCTATATCCCCTTGCTCTGGGCCAGCCTGCTGGCGCTGGTGGTGCCGGGCATCCTGCATTACGTGACGGGATGGCTGAGCGTGCATAGCCTGTTGTGGGTGCAATGGGGTGGTTTCATCGTGCTGTGCCTGATGTTTCGCATTCCTGCCGTCACCACGCACCTCATTCCTCGCTCGGTACGCCACTGGCGGGCTTCCAACCTGGCGCGCCGGCAATTCCTCGAACAGAACCTGCATCACACCGTAGGCAGCACCGGCATGCTCATTTTCGTCTGCGAGGCCGAGCGGTATGTGGAAATCCTGGTGGACGAGGGTATTTCCAAGCGACTCGACAACAGCCATTGGGATGCCATTGTCGGTACGTTCACCCAGCAGGTTCGCCAGGGCCAGACGTTGCAAGGTTTTGTGGCGTGCATCGAGGCTTGCGGCGAATTGCTCAAGGAGCACGTGCCGGTGACCCATGCGCGTAATGAGCTGCCGAATCGGTTGGTGGTGTTGGGCTGA	MALLTEHEQRKVAEAIARVERDTDAELVTVLAARADDYAYIPLLWASLLALVVPGILHYVTGWLSVHSLLWVQWGGFIVLCLMFRIPAVTTHLIPRSVRHWRASNLARRQFLEQNLHHTVGSTGMLIFVCEAERYVEILVDEGISKRLDNSHWDAIVGTFTQQVRQGQTLQGFVACIEACGELLKEHVPVTHARNELPNRLVVLG				NA	NA	NA	NA	NA
D1-36_03797	819			hypothetical protein	ATGGAGCAGCCTCAAGTTCTGAGCGGCAAGCTGCAAGCTCAGGTAACGCGTACGGCTTTCGGCTTGAGGCTTGCTGCTCGAAGCTTGAAGCTGTTCGTGCTGTTGCTCTGGGCTTTTGCAGCCACGGCCCAGGCAGAATTGAGCTTCCCGGCGCTGACCGGGCGGGTGGTGGACACCGCCCAGTTGCTCGACCCATCGGTGCGCACGCAACTCGATGCGCAACTCAAGGCCCATGAACAGGCCACCGGCGAGCAGGTGGTTGTCGTTACGCTGGCGAACCTTCAAGGCGCCAGCATCGAAGACTTCGGTTATCAATTGGGGCGCCATTGGGGCATCGGGCAAAAGGATAAAAACAACGGCGCGCTGCTGATCGTCGCCCGCGATGACCGTAAACTGCGCATCGAAGTGGGTTACGGGCTGGAAGATCGCCTGACCGACGCCCAGAGTTCGGTGATCATCAACCAGGTGATCACCCCGGCGTTCAAGACGGGCAACTTCAACAAGGGCATCAGTGACGGTGTGGCGGCGATGCTCGTGGTGTTGGGTGGCAACCCCCTCGATGAACCGGCTGCGGCATACAGCGCGGGCAGTGCGGACGAGGGCGATTTCGTCGAGCGCCACCCAGGCTTGTTCATCTTCCTCGCGATGCTTTTCATCCTGACGATTTTCGTTTGCCAAGTGCTCGGTATCCTGCCCAGCGGAGGGGGCTCCGGCGCAAGTTATAGAGGCGGAGGAGGCGGCTTCGGCGGCGGTGGTGGCGGTGGCTTCAGCGGTGGTGGCGGCAGTTTCGGCGGCGGCGGTTCGTCCGGCGGCTGGTGA	MEQPQVLSGKLQAQVTRTAFGLRLAARSLKLFVLLLWAFAATAQAELSFPALTGRVVDTAQLLDPSVRTQLDAQLKAHEQATGEQVVVVTLANLQGASIEDFGYQLGRHWGIGQKDKNNGALLIVARDDRKLRIEVGYGLEDRLTDAQSSVIINQVITPAFKTGNFNKGISDGVAAMLVVLGGNPLDEPAAAYSAGSADEGDFVERHPGLFIFLAMLFILTIFVCQVLGILPSGGGSGASYRGGGGGFGGGGGGGFSGGGGSFGGGGSSGGW				NA	NA	NA	NA	NA
D1-36_03798	609	lemA	COG1704	Protein LemA	ATGATTCGACGACTGAACCACCGCAGCGCGCTGCAAATGCTGGCCCTGATGCTGTTCACCACGCTGCTGGCCGGTTGCGGCATCAACAACATCCCGACCCTGGACGAGCAGGCAAAGGCGGCCTGGGGCCAGGTGCAGAACCAATACCAGCGCCGCGCCGACCTGATTCCCAACCTGGTGGAGACCGTCAAGGGTTATGCCCAGCATGAGCAGGAAACCTTGACGGCGGTGATCGAAGCCCGGGCCAAGGCTACGTCCATTCAGGTCGATGCCAGCACCCTGGACAACCCGGAAAAACTCAAGCAGTTCCAGCAGGCCCAGGACCAGTTGAGCGGCGCATTGAGCCGCCTGATGGTGGTATCCGAGCGCTACCCGGACCTGAAGGCCAACCAGAACTTCCTGGCCTTGCAATCGCAACTCGAAGGCACCGAGAACCGCATCGCCGTGGCGCGTCGTGATTTCATCCTGGCCGTGCAGAAATACAACACAGAGATTCGTACCTTCCCGGGTCGCCTGTGGCACAGCGTGATGTACAGCGATCTGCCAGTTCGCGAGACTTTCGAGGCCACCAGCCCGAATGCCGAAAAAGCGCCTGAAGTGAAGTTCTGA	MIRRLNHRSALQMLALMLFTTLLAGCGINNIPTLDEQAKAAWGQVQNQYQRRADLIPNLVETVKGYAQHEQETLTAVIEARAKATSIQVDASTLDNPEKLKQFQQAQDQLSGALSRLMVVSERYPDLKANQNFLALQSQLEGTENRIAVARRDFILAVQKYNTEIRTFPGRLWHSVMYSDLPVRETFEATSPNAEKAPEVKF				NA	NA	NA	NA	NA
D1-36_03799	2292			Beta-xylosidase	ATGAAGAAGCTGTGTTTGCTGGGCCTGTTTGTCAGTCTGGCCAGTCAATCCGTATTAGCCGACAACCTGCCAGCCCCCATAGAGAACAAGGACGCTTTCATCAGCAGCCTGATGAAGCAAATGACCCTCGAGGAAAAGATCGGCCAGCTGCGCCTGATCAGCATCGGCCCGGAGATGCCCCGGGAGATGATCCGCAAGGAAATCGCCGCCGGCAACATCGGAGGCACATTCAACTCCATTACCCGCGATGAGAACCGTCCGATGCAGGACGCGGCCATGCGCAGCCGGCTGAAGATCCCGATGTTCTTCGCCTATGACGTGATTCATGGCCATCGCACCATTTTCCCGATTCCCCTGGCCCTGGCCTCGAGCTGGGACATGGACGCCATCTACCGCTCCGGCCGCATCGCGGCCAAGGAAGCAGCGGCCGACAGCATCGACATCACCTTCGCGCCCATGGTCGATATCTCCCGCGATCCACGCTGGGGCCGGACCTCCGAAGGCTTCGGCGAAGACACTTATCTGGTGTCGCGCATTGCCGGGGTGATGGTCAAGGCGTTCCAGGGCACCGGCGCCAACGCCGCCGACAGCATCATGGCCAGCGTCAAGCACTTCGCCCTTTACGGCGCCGTGGAAGGCGGCCGGGACTACAACACCGTGGACATGAGCCCGGTGAAAATGTACCAGGACTACCTGCCGCCCTATCGCGCCGCCATCGACGCCGGCGCGGGCGGGGTGATGGTCGCGCTGAATTCCATCAACGGCGTACCGGCCACCGCGAACACATGGCTGATGCACGACCTGCTGCGCAAGGAATGGGGCTTCAAGGGCCTGGCCGTCAGTGACCATGGCGCGATTTTCGAGCTGATCAAGCATGGCGTCGCTCGGGACGGTCGCGAAGCGGCCAGGCTAGCGATCAAGGCCGGCATCGACATGAGCATGAACGACTCGCTCTATGGCAAGGAGCTGCCAGGGCTGCTCAAGGCGGGCGAGATCGAGCAGAGCGACCTCGACAACGCGGTGCGTGAAGTGCTGGCCGCCAAGTACGACATGGGCTTGTTCAAGGATCCGTACCTGCGTATCGGCAAGGCCGAGGACGACCCGGCCGATGTCTATGCCGACAACCGCATGCACCGCGCCGATGCCCGTGACGTGGCGCGCCGCAGCCTGGTGCTGCTGGAAAACCGCAACCAGATCCTGCCCCTGAAGAAAACCGCGAAGATCGCCCTGGTCGGCCCGCTGGCCAAGGCGCCGATCGACATGATGGGCAGTTGGGCCGCCGCCGGGCGCCCGGCGTTGTCGGTCACGGTGTATGACGGCATGGCCCGCGCATTGGGCGGTGAGTCGAAGCTGATCTATGCCCGTGGCGCCAACATCACGGGCGACAAGAAGGTGCTCGACTACCTGAACTTCCTCAACTTCGATGCCCCGGAAGTGGTGGACGATCCGCGTCCGGCCCAAGTGCTGATCGATGAAGCGGTGAAAGCCGCGAAAGAAGCGGACGTAGTCGTCGCCGCCGTGGGCGAGTCCCGTGGCATGTCCCATGAATCGTCGAGCCGTACCGAACTGAACATCCCCGCCAGCCAGCGCGAGCTGATCAAGGCCCTGAAGGCCACCGGCAAGCCGTTGGTGCTGGTGTTGATGAATGGCCGCCCGCTGTCGTTGCTGGAAGAAAAACAGCAGGCCGATGCGATCCTGGAAACCTGGTTCAGCGGTACCGAAGGCGGCAACGCCATCGCGGACGTGCTGTTCGGCGACTACAACCCGTCGGGCAAGCTGCCGATCACGTTCCCACGCTCGGTCGGGCAGATTCCGACCTACTACAACCACCTGAGCATTGGTCGGCCGTTCACGCCGGGCAAGCCAGGCAACTACACCTCGCAGTACTTCGACGACACCACCGGCCCGCTCTACCCGTTCGGCTATGGGCTGAGCTACACGACGTTCAGCCTGTCGGACATGGCCCTGTCGTCCACCACGCTGAACAAGACCGGCAAGCTCGACGCCAGCATCACTCTGGAAAACACCGGCGATCGTGACGGCGAAACCGTGGTGCAGCTGTACATCCAGGACGTTACCGGCTCGATCATCCGTCCGGTGAAGGAGCTGAAAAACTTCCGCAAGGTCATGCTCAAGGCCGGCGAGAAGAAGGTCATCCACTTCGACATCACCGAAGACGACCTGAAGTTCTTCAACGCGCAGCTCAAGTACGCGGCAGAGCCAGGCAAGTTCAACGTGCAGATCGGCCTGGATTCCCAGGACGTGAAGCAGCAGAGTTTTGAGTTGCTCTGA	MKKLCLLGLFVSLASQSVLADNLPAPIENKDAFISSLMKQMTLEEKIGQLRLISIGPEMPREMIRKEIAAGNIGGTFNSITRDENRPMQDAAMRSRLKIPMFFAYDVIHGHRTIFPIPLALASSWDMDAIYRSGRIAAKEAAADSIDITFAPMVDISRDPRWGRTSEGFGEDTYLVSRIAGVMVKAFQGTGANAADSIMASVKHFALYGAVEGGRDYNTVDMSPVKMYQDYLPPYRAAIDAGAGGVMVALNSINGVPATANTWLMHDLLRKEWGFKGLAVSDHGAIFELIKHGVARDGREAARLAIKAGIDMSMNDSLYGKELPGLLKAGEIEQSDLDNAVREVLAAKYDMGLFKDPYLRIGKAEDDPADVYADNRMHRADARDVARRSLVLLENRNQILPLKKTAKIALVGPLAKAPIDMMGSWAAAGRPALSVTVYDGMARALGGESKLIYARGANITGDKKVLDYLNFLNFDAPEVVDDPRPAQVLIDEAVKAAKEADVVVAAVGESRGMSHESSSRTELNIPASQRELIKALKATGKPLVLVLMNGRPLSLLEEKQQADAILETWFSGTEGGNAIADVLFGDYNPSGKLPITFPRSVGQIPTYYNHLSIGRPFTPGKPGNYTSQYFDDTTGPLYPFGYGLSYTTFSLSDMALSSTTLNKTGKLDASITLENTGDRDGETVVQLYIQDVTGSIIRPVKELKNFRKVMLKAGEKKVIHFDITEDDLKFFNAQLKYAAEPGKFNVQIGLDSQDVKQQSFELL	PGPT0019110_3879	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349	NA	NA
D1-36_03800	1158	clsA_1	COG1502	Major cardiolipin synthase ClsA	ATGAGCGGCCCGGTCTTTCCCTGGCGTGAAGGCAATCGCTTCGAGCTGTTGATCGACGGCCCGCAATTTTTCCCGCGCATGCTGGTGGAAATCGCCCGCGCCCAGGAACAGGTCGAACTGGAGTTGTACCTGGTGGAAGCGGGCGCTTGCGCCGAGGCGATGGTCCAGGCCCTTGTCCAGGCGGCCGAGCGCGGGGTGCGCGTGCGCTGTCTGTTCGATGACTATGGCAGCCTGGCATTTACCTTGGGCCTGCGCAATCGCCTCATCCAGGCGGGCGTGGAGCTGCGGTTCTATAATCGCCTGAGTTGGCGGCGTTGGGTGCGCAATCTCTACCGCGATCACCGCAAGTTGCTGTTGGTCGACCAACGCTTGGCGGTGGTGGGCGGTACCGGCGTCACCGACGAATTCTGGAACCCTTCGGACGACCGAAGCGATTGGCATGAGGTGATGGTGGAAATCGTCGGCCCGTTGGTACTGGACTGGCAATTGTTGTTCGATCGCCAATGGCTTGCCAACCGCCATCGACGGGCTTGGAAACCGGCGTCCAATTTCGGCCTGCCCCGTCTGCCTCGCGTCCCGCCGGTGGGCGAAGGCATGGGCCGGGTCGCCTATGCCGACGCCCGCCAGCACCGCGACATCCTGCAGTCGCTATCCCGGGCATTGAACAGCGGCCAGAAACGCATCTGGATGGCCACGCCATACTTTTTGCCGACCTGGAACGTGCGCCGCTCCTTGCGCAAGGCCGCGGCGCGAGGCATCGACGTGCGGCTGCTGCTGACGGGCCCGCGCACGGATCATCCATCGGTGCGATACGCAGGCCATCGCTATTACCCACGCTTGCTCAAGGCAGGGGTGAAAATCTACGAATACCAGCCCTGCTTCCTGCACTTGAAAATGGTGCTGGTGGACGATTGGGTCAGCATTGGCTCATGCAATTTCGATCACTGGAACCTGCGCTTCAACCTCGAAGCCAACCTGGAAGCACTGGACTCTGGGCTGAGCAAGGCCGTGGCCGCCAGTTTTGAACGGGACTTCGAGCAGAGCCTGCAAGTGAGCCTCGACACCTGGCAGCGCCGGCCATTTTGGAAGCGCTTCAAGCAAAGGGTGTGGGGGTTGGTGGATCGGGTGGTGGTGAATCTGCTGGATCGGCGGGGTTAG	MSGPVFPWREGNRFELLIDGPQFFPRMLVEIARAQEQVELELYLVEAGACAEAMVQALVQAAERGVRVRCLFDDYGSLAFTLGLRNRLIQAGVELRFYNRLSWRRWVRNLYRDHRKLLLVDQRLAVVGGTGVTDEFWNPSDDRSDWHEVMVEIVGPLVLDWQLLFDRQWLANRHRRAWKPASNFGLPRLPRVPPVGEGMGRVAYADARQHRDILQSLSRALNSGQKRIWMATPYFLPTWNVRRSLRKAAARGIDVRLLLTGPRTDHPSVRYAGHRYYPRLLKAGVKIYEYQPCFLHLKMVLVDDWVSIGSCNFDHWNLRFNLEANLEALDSGLSKAVAASFERDFEQSLQVSLDTWQRRPFWKRFKQRVWGLVDRVVVNLLDRRG	PGPT0007725_5116	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
D1-36_03801	591			hypothetical protein	ATGTTCAAGCGGTTATTTTCTCGCGCTGTCACCACCTTGCTCCTGGCCTGCGCCACGCTGCCGGCCCAGGCCGACTGGTACCTGGATGGTGAGTCATCGCGACTGTCCTTTATCAGCAGCAAAAACGGCAATGTCTCCGAAGTCCAACGTTTCCTGGTGCTTCATGGGCAGGTCCAGCCCAAGGGCCAGGCACGGCTGGAGGTCGAACTCGAATCCATCAACAGCGGTATCCCCCTGCGGGACGAGCGCATGCGCGCCGAGTTGTTCGATATCAAGCAATTCGCCGAAGCCACCATCACCGCGCAGCTCGACCTGATGCCGATCCAGGACCTGGCCAACGGCGCGCAACTGGAACTGCGCCTGCCGGTGACCGTGGACCTGCATGGCAAGCAGCATGAGTACAACGTCCAACTGCTGGCGACTCGCCTGGATGAGCGGCGTTTTCAGGTCGTGACTCTGGAACCGGTGGTGCTCAACGCGGCGGATTTCGACCTGGCGCCGGGGTTGGAGAAGCTGCGCGACCTGGCCGGATTGTCGACCATCAGCCTGTCGGTGCCGGTGAGTGCGGTGCTGATTTTCACGGCGCGCTGA	MFKRLFSRAVTTLLLACATLPAQADWYLDGESSRLSFISSKNGNVSEVQRFLVLHGQVQPKGQARLEVELESINSGIPLRDERMRAELFDIKQFAEATITAQLDLMPIQDLANGAQLELRLPVTVDLHGKQHEYNVQLLATRLDERRFQVVTLEPVVLNAADFDLAPGLEKLRDLAGLSTISLSVPVSAVLIFTAR				NA	NA	NA	NA	NA
D1-36_03802	312			hypothetical protein	ATGAAGCGCAGGGTAGTGTTCATTCTTTTGTCGATGTTGCTTGTTGGCCTGTTCGGTTGGGGCTGGCAGGAGCGGGTGGCCTTGCGGGCGTTTCCCGACATCATCAGCGCCTATACCGCGAAGGAATACTGCTCGTGCCGCTATGTAATGCGGCAACCGGCCGACTATTGCCGCGGCTATGTGAAGCAGTCGGTGCCGATCAGCGATTTCCTCGAGACCGTCGAAGCAAAACGCATCACAGTCAGCGGCTTGGGGCGTAGCCACAGTGCGCGGTGGATGGGGGAGCGGGAAGGCTGTCGGTTAGAACCCTGA	MKRRVVFILLSMLLVGLFGWGWQERVALRAFPDIISAYTAKEYCSCRYVMRQPADYCRGYVKQSVPISDFLETVEAKRITVSGLGRSHSARWMGEREGCRLEP				NA	NA	NA	NA	NA
D1-36_03803	1095			hypothetical protein	ATGCCCAAAGGCTGGTTGTTGCTTTCGCTCCTGCTGCTGACCCTGACGGCCCGCGCCGAAGTCTGGCCTGGCGAACAATGGCCGACCGGCCAGGCCTCGAGTGGGCCGGCCATCGAAGCCTTGGCGCATTACGCTTTTGCACCCAGGGACGACGCCACCCGCCAAGGCATCCGCACCGACGCGCTGGTGGTTATCCAGGACGGTCGACTGGTCTACGAACGCTACGCCGGACCGACTGACGCACAGACCCCGCACCTGACCTGGTCCATCAGTAAAAGCCTGCTGGCGACGGTGTTCGGCGTCGCCTACGGTGAAAAACGCTTTGCCCTGGATGATCCAGCCGCCCAGTACTACCCGCCGCTCAAGCGACATCCGGACATGACCCTGGCCGATCTTTTTCATTGGGCGTCTGGCCTGGACTGGCAAGAAGACTATGAATACGCGCCACTCAATTCCTCGGTCGTGGCGATGCTCTATACCCGTGGGCGCCACGACATGGCCGCGTTCACCGCCAGGCACGAAAGCTTCAGCCCACCCGGGCAGGTGTTCCGTTATTCCAGCGGCGACAGCAATCTGCTGGCGGCAGCCCTGAAAAATATCGTCGGCCCGGCGCGTTATGCCGATTACCCCTGGACAGCCTTGTTCGAGCCGCTGGGCATCCGCCATGCGACCTGGGAAACCGACGCCAGCGGCACGTTTGTCGGTTCGTCCTATGCCTATCTCACCGCCCGGGACCTGGCGCGTGTCGGCCTGCTGATGCAACGCGATGGCCGTTGGGGCGATCGGCAATTGATTCCCAAGGATTGGATTGCCTTCAACCGCGAGCCTTTCGCTCGGTTTCAGGCGGGCCAGGACGAAGCCGTGCCTGGCGGACACTGGTGGCTCAATCGCGGCGCCGACCCGTCGATCCGACCGTGGCCCGACGCGCCGCCGGATACGTTCGCCGCCCTGGGCCATTGGGGCCAGGCGCTGTATGTCATCCCCAGCGCCAGGCTGGTGATCGTGCGCTACGGCGATGACCGCGACGGCACCTATCGCCACAACGAGCTGCTCAAGCGTGCCATGGCGGCCTTCGCCGGGACGGTGCAGCCATGA	MPKGWLLLSLLLLTLTARAEVWPGEQWPTGQASSGPAIEALAHYAFAPRDDATRQGIRTDALVVIQDGRLVYERYAGPTDAQTPHLTWSISKSLLATVFGVAYGEKRFALDDPAAQYYPPLKRHPDMTLADLFHWASGLDWQEDYEYAPLNSSVVAMLYTRGRHDMAAFTARHESFSPPGQVFRYSSGDSNLLAAALKNIVGPARYADYPWTALFEPLGIRHATWETDASGTFVGSSYAYLTARDLARVGLLMQRDGRWGDRQLIPKDWIAFNREPFARFQAGQDEAVPGGHWWLNRGADPSIRPWPDAPPDTFAALGHWGQALYVIPSARLVIVRYGDDRDGTYRHNELLKRAMAAFAGTVQP				NA	NA	NA	NA	NA
D1-36_03804	879			hypothetical protein	ATGCCTTGGCAAACCCTGATCGAACGCGGCGAGCGGCTGCCCGCCTGTGCGGATCTGGCCGAAGGTTATGCCGCGTTGCTGCATCGCTTGGGGTCGGTGACGCCGTTCGAGTTGGCCGTGGTCGGCGGTCGGTCGATGGCCACGCCCGGGTTGGCGTTTCTGGTGGGTTACCAAGCGGCGTTGCGGGCGCTTTGGCCGAGCGCGCCCCAAAGCCTCGGTGCGTTGTGCGCCACCGAGCAGCGCAGCTTGCGCCCGGCGGACATGCAGACCCGACTCGCCGACTTGCGGCTGAGCGGGCGCAAGGATTTCGTCACCGCGGGCGATGCCGCCGAGTGGTTGCTGGTCGCGGCCCGAAGCGAGGCGCCCGGCGAGGCGCCGCGATTGAACCTGGCGGTGGTGCGTGCGGGCGAACCGGGCGTGACGCTGGAAAAGTTGCCGACGTTGCCGTTCATGCCGGATATCAGCCATGGCCGGATGTTGCTGGACGGTGCGCTGTGCCAATTGCTCCCCGGCGACGGCTGGGACGTCTACGTCAAACCGTTTCGCACCTTGGAAGATGTCTACGTGCTCAGTGCGATCACCGCCTGGTTGTACGGCTTAGGGCAAGAATGCGGCTGGCCCCGGCCGTTGCAACTGCGTCTGTTGGCGTTGCTCGCCGGTTGCGCGCAGACGAGTCGCCACAACCCTTCGAGTGCTGTCGCGCATGTGTTGCTGGGTGGGCTGTTCGCTCAATTCAAAGGGCTCGATGCTGAGTTGGACGATGCCTTGGCCGATGGGCCGGCGGCGTGGCGTGAGATGTGGGGGCGTGACAAGGCGGTGATGGACATCGCGGCGGGGGCGCGGGCCAAGCGGTTGGACAAGGCGTTGGGGTCTTCGTAG	MPWQTLIERGERLPACADLAEGYAALLHRLGSVTPFELAVVGGRSMATPGLAFLVGYQAALRALWPSAPQSLGALCATEQRSLRPADMQTRLADLRLSGRKDFVTAGDAAEWLLVAARSEAPGEAPRLNLAVVRAGEPGVTLEKLPTLPFMPDISHGRMLLDGALCQLLPGDGWDVYVKPFRTLEDVYVLSAITAWLYGLGQECGWPRPLQLRLLALLAGCAQTSRHNPSSAVAHVLLGGLFAQFKGLDAELDDALADGPAAWREMWGRDKAVMDIAAGARAKRLDKALGSS				NA	NA	NA	NA	NA
D1-36_03805	756			hypothetical protein	ATGACCCAGATCGCCCGCATCAGCGACACCGGCAATGAACGCCGCCTGCAAGCCGAACGCCTGATCGGCGCCCAGGCCTTGCAAGAAGCACAGGCCCTGCGCTTCAACGTCTTCAGCGGCGAATTCAACGCCAAGCTCAAGGGCGCGGAGATGGGTCTGGACATGGATGACTATGATGTTCACTGCGCTCACATTGGCGTACGCGACCTGAACACTGGCCGCCTCGTGGCCACCACTCGCCTGCTCGACCACCAGGCCGCCAGCAGCCTGGGCCGGTTCTACAGCGAAGAAGAATTCGCCCTACACGGCCTGATTCATCTCCAAGGCCCGATTCTGGAAATAGGCCGTACCTGCGTGGACCCGGCCTACCGCAACGGCGGCACCATCGCGGTGCTCTGGGGCGAGTTGGCCGAAGTCCTCAATCAAGGCGGCTACAGCTACTTGATGGGTTGCGCAAGCATCCCGATGCAGGACGGCGGCATCCAGGCCCAGGCAATCATGCAGCGTCTGCGCGAACGCTACCTGTGCACCGAACACCTGCAAGCGGTGCCGAAAAAGCCGTTGCCGGCCTTGGACGTCCCGTCCAACGTCATCGCCGAAATGCCCCCGCTGCTCAAGGCCTACATGCGCCTGGGGGCGAAAATCTGCGGCGAGCCCTGCTGGGATGAAGACTTCCAGGTGGCCGACGTGTTTATCCTGCTCAAGCGCGACGAGCTCTGCCCGCGTTATGCCCGTCACTTCAAGGCGGCGGTCTGA	MTQIARISDTGNERRLQAERLIGAQALQEAQALRFNVFSGEFNAKLKGAEMGLDMDDYDVHCAHIGVRDLNTGRLVATTRLLDHQAASSLGRFYSEEEFALHGLIHLQGPILEIGRTCVDPAYRNGGTIAVLWGELAEVLNQGGYSYLMGCASIPMQDGGIQAQAIMQRLRERYLCTEHLQAVPKKPLPALDVPSNVIAEMPPLLKAYMRLGAKICGEPCWDEDFQVADVFILLKRDELCPRYARHFKAAV				NA	NA	NA	NA	NA
D1-36_03806	795			hypothetical protein	ATGAGCCGGTTGCGGGTGTACGCGCGAGTCGCACGAGTATTGCTGGTCGTCACCCTGGGCCTGGCCATGGCCAGTGTGTTCGGGATGCTGGAACGTCTGGGACTCGCTCATTCGATGGTGCGCCGCCAGCGCTGGTCGCGTTTCTTCATGGCGCGGCTGACCAATGCCCTGCCCTTTCGCGTCACCGTCCATGGGCAACTGCCGAAACAGCCGATGCTGTGGGTCAGCAACCACGTGTCCTGGACCGATATCCCACTGCTGGGCATGCTCACGCCCCTGTCGTTCCTGTCCAAGGCCGAAGTGCGTACCTGGCCGGTCGCCGGATGGCTGGCAGCCAAGGCCGGCAGCCTGTTCATCCGTCGTGGTTCGGGCGACAGTCAGTTGATTCGCAAGCAGATGAGCCGTCACCTGGAGCAGGCCTATCCGCTGCTCATGTTCCCCGAAGGCACCACCACCGACGGCCGCACGCTGCGCACTTTCCACGGCCGCCTGTTGTCGGCGGCCATCGATGCCGACGTGGCCTTGCAACCGGTGGCGATCCGTTACCTGCGCAAGGGCGAACCCGATTTGCTGGCGCCGTTCATTGGCGATGACGATCTGCTGTCGCACCTGATGCGATTGTTCGCCAATGATCTTGGCGATGTGGAAATCCATCTCTTGGAACCGATTGCTTGCCACGGCCAGGAACGCGCGGCCCTGGCTTTCCAGGCCCAACAAGCAGTACACAAAGCATTGTTCGGCGAAATGCCCGAGAAGCAGACAATTCCGGTTCGGCCGGCGGCGATTGCGGCTTGA	MSRLRVYARVARVLLVVTLGLAMASVFGMLERLGLAHSMVRRQRWSRFFMARLTNALPFRVTVHGQLPKQPMLWVSNHVSWTDIPLLGMLTPLSFLSKAEVRTWPVAGWLAAKAGSLFIRRGSGDSQLIRKQMSRHLEQAYPLLMFPEGTTTDGRTLRTFHGRLLSAAIDADVALQPVAIRYLRKGEPDLLAPFIGDDDLLSHLMRLFANDLGDVEIHLLEPIACHGQERAALAFQAQQAVHKALFGEMPEKQTIPVRPAAIAA	PGPT0014465_479	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULE-ORNITHINE_LIPIDS_BIOSYNTHESIS,PGPT0014465-olsA-K22617	NA	NA
D1-36_03807	585	acpH	COG3124	Acyl carrier protein phosphodiesterase	ATGAACTATCTCGCACACCTGCACCTCGGCGGCCCTGGCCGGGAACAACTGCTCGGCAGCCTTTATGGCGACTTCGTCAAAGGGCCGCTGCAGGGCCAATTCAACCCGCGGATCGAAGCGGCGATAGCCCTGCATCGACGCATCGACATGTACACCGATCGCCATCCGCTGGTGGATATCGCCTTGTCGCGTTTCTCCACGGTGCGGCGGCGTTATGCCGGGATCGTGCTGGATGTATTCTTCGACCATTGCCTGGCCCGGGATTGGACGCTGTACAGCGAAGGACCGCTGATGGACTTCACCTCCCGGGTCTATCAGGTCCTCGCTGCTGAACCGCAACTGCCGGGGCGGCTGGCGCAGATCGCACCTTATATGGCGGCGGACGACTGGCTGGGGTCGTATACGCAATTCGAGGTGCTGGGCCAGGTGCTGCGCGGCATTTCCCGGCGGCTATCGCGGCCGGAGGAACTGGCGGGTGCGATGTCAGAACTGGTCAGGCTCTATGAGCCGTTGAGCGAAGACTTTCGGTTGTTCTATCCGCAGTTGCAGGATTTTGCGCTGGGCCAAGTCACGCCACAAAACTAA	MNYLAHLHLGGPGREQLLGSLYGDFVKGPLQGQFNPRIEAAIALHRRIDMYTDRHPLVDIALSRFSTVRRRYAGIVLDVFFDHCLARDWTLYSEGPLMDFTSRVYQVLAAEPQLPGRLAQIAPYMAADDWLGSYTQFEVLGQVLRGISRRLSRPEELAGAMSELVRLYEPLSEDFRLFYPQLQDFALGQVTPQN	PGPT0008850_556	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,PGPT0008850-acpH-K08682	NA	NA
D1-36_03808	303			hypothetical protein	ATGACTCTCGACCTCGACGAAATAATAAAAGCCCTGGCACACCCAGTACGGCGAGACATCCTCAACTGGCTCAAGGACCCCAAGGCCCAGTTTCCCGAACAGTTGCACAACCACGAATTCGGCATCTGCGCGGGCCAGATCGACCAGCGCTGCGGCCTGTCGCAGTCCACGGTTTCGGCGCATCTGGCGGTGTTGCAACGGGCCGGGTTGATCACCAGCCAGAAGGTCGGCCAATGGCACTTCTTCAAACGCAACGAGGAAGCGATCCAGCAGTTCCTCAAGCAAATGAGCCAAGAGCTCTAA	MTLDLDEIIKALAHPVRRDILNWLKDPKAQFPEQLHNHEFGICAGQIDQRCGLSQSTVSAHLAVLQRAGLITSQKVGQWHFFKRNEEAIQQFLKQMSQEL	PGPT0004735_436	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE_SYSTEM,PGPT0004735-arsR-K03892	NA	NA
D1-36_03809	1167	ydhP_3	COG2814	Inner membrane transport protein YdhP	ATGCCCCTTTCACTCTTGATTCTGGCGCTTAGCGCCTTCGCCATCGGTACGACGGAATTCGTCATCATGGGCCTGTTGCCCGATGTGGCGGCGGACCTGGGCGTATCGATTCCCGGCGCCGGCTGGTTGGTGACCGGCTACGCCCTGGGCGTGGCCATCGGTGCGCCGTTCATGGCCCTGGCCACCGCGCGACTGCCGCGCAAGGCTGCGTTGGTGGCATTGATGGGGATTTTCATTGTCGGCAACCTGCTCTGCGCAGTAGCCAGCGACTACAACGTGCTGATGTTTGCCCGAGTCGTCACCGCCCTCTGCCACGGTGCGTTCTTTGGCATAGGCTCGGTCGTCGCCGCCGGCCTGGTGGCGCCCAACAAGCGTGCCTCGGCCGTGGCCCTGATGTTCACCGGCCTGACCCTGGCCAATGTGCTTGGCGTACCGCTGGGCACTGCATTGGGCCAGCAAGCCGGCTGGCGCTCGACCTTCTGGGCCGTGACGATCATCGGCGTGATTGCCCTGATCGGCCTGATCCGCTTCCTGCCGGCCAAGCGCGACGAGGAAAAACTCGACATGCGTTCAGAGCTGGTGGCGCTCAAGGGCGCCGGCTTGTGGCTGTCGTTGAGCATGACCGCGCTGTTCTCCGCCTCGGTATTCACCCTGTTCACCTACGTCGCCCCGCTGCTCGGCGAAGTGACCGGCGTGTCGCCCCGTGGCGTGACCTGGACCCTGGTACTGATCGGCCTCGGCCTGACCCTGGGCAACATCATTGGCGGCAAGCTGGCGGACAAGAGCCTGGCGAACACGCTGATGGGCGTATTCCTGACCATGGCCGTCGTGTCCACCGTCCTGAGCTGGACCAGCGTGGCGCTGATCCCGACCGAGATAACGCTGTTCCTGTGGGCCACCGCCTGCTTCGCCGCCGTGCCGGCCCTGCAGGTCAACGTGGTGACCTTCGGCAAAGACGCGCCCAACCTGGTGTCCACCTTGAATATCGGCGCCTTCAATATTGGCAATGCCTTGGGCGCCTGGGTCGGCGGCACTGTCATCGACCATGGCCTGGGCCTGACCACCGTGCCCCTCGCCGCCGGCGCGCTGGCCGTGCTGGCGCTGCTGGTGACCCTGATCACTTTCCGTCAGGGCGGCCATGCCGACCTGGCACCTGCCACTCACTGA	MPLSLLILALSAFAIGTTEFVIMGLLPDVAADLGVSIPGAGWLVTGYALGVAIGAPFMALATARLPRKAALVALMGIFIVGNLLCAVASDYNVLMFARVVTALCHGAFFGIGSVVAAGLVAPNKRASAVALMFTGLTLANVLGVPLGTALGQQAGWRSTFWAVTIIGVIALIGLIRFLPAKRDEEKLDMRSELVALKGAGLWLSLSMTALFSASVFTLFTYVAPLLGEVTGVSPRGVTWTLVLIGLGLTLGNIIGGKLADKSLANTLMGVFLTMAVVSTVLSWTSVALIPTEITLFLWATACFAAVPALQVNVVTFGKDAPNLVSTLNIGAFNIGNALGAWVGGTVIDHGLGLTTVPLAAGALAVLALLVTLITFRQGGHADLAPATH	PGPT0028991_3757	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
D1-36_03810	1050	nemA_3	COG1902	N-ethylmaleimide reductase	ATGGCAACAATTTTCGACCCCATCAAACTCGGCGATATCGAGCTGAAGAACCGCATCATCATGGCCCCGCTTACCCGCTGCCGCGCCGACGCAGGCCGCGTACCCAACGCCTTGATGGCCGAATACTACGTGCAACGCGCTTCCGCCGGCCTGATCCTCAGCGAAGCCACGTCGGTCACGCCAATGGGCGTGGGTTATCCGGACACCCCTGGCATCTGGTCCAACGACCAGGTACGCGGCTGGGCCAACGTGACCAAAGCCATCCACGGCGCCGGCGGCAAGATCTTCCTGCAGCTCTGGCACGTGGGCCGGATCTCCCACCCTTCCTACCTGGACGGCGAACTTCCAGTGGCACCGAGCGCCATCCAGCCCAAGGGCCACGTAAGCTTGGTTCGCCCGTTGGCTGACTACCCGACACCGCGAGCACTGGAAACCGCTGAAATCGCCGACATCGTCGATGCCTACCGCGTCGGTGCCGAAAACGCCAAGGCCGCCGGTTTCGACGGGGTGGAAATCCATGGTGCCAACGGCTACCTGCTCGACCAGTTCCTGCAAAGCAGCACCAACCAGCGCACCGATCACTACGGCGGCTCCCTGGAAAACCGCGCTCGCCTGCTGCTGGAAGTCACCGATGCGGCCATCGAAGTCTGGGGCGCCGGCCGCGTGGGCGTACACCTGGCGCCGCGCGCCGACTCCCATGACATGGGCGACGAGAACCGTCTGGAAACCTTCAGCTATGTCGCCCGCGAGCTGGGCAAGCGTGGCATCGCCTTTATCTGCTCCCGCGAGAAAGAAGGCGACGACAGCATCGGCCCACAACTCAAGCAAGCCTTCGGCGGCCCGTACATTGCCAACGAGCGCTTCACCAAGGAAAGCGCCAACGCCTGGCTGGCAGCAGGCAAGGCGGACGCCGTGGCGTTTGGCGTGCCATTCATTGCCAACCCGGACCTGCCGGCACGCTTGAAAGCCGACGCGCCATTGAACGAGCCGCATCCGGAAACCTTCTACGGGAAAGGCCCGGTGGGTTATATCGATTACCCTGTACTTTAA	MATIFDPIKLGDIELKNRIIMAPLTRCRADAGRVPNALMAEYYVQRASAGLILSEATSVTPMGVGYPDTPGIWSNDQVRGWANVTKAIHGAGGKIFLQLWHVGRISHPSYLDGELPVAPSAIQPKGHVSLVRPLADYPTPRALETAEIADIVDAYRVGAENAKAAGFDGVEIHGANGYLLDQFLQSSTNQRTDHYGGSLENRARLLLEVTDAAIEVWGAGRVGVHLAPRADSHDMGDENRLETFSYVARELGKRGIAFICSREKEGDDSIGPQLKQAFGGPYIANERFTKESANAWLAAGKADAVAFGVPFIANPDLPARLKADAPLNEPHPETFYGKGPVGYIDYPVL	PGPT0005930_2955	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_TOLULENE|DERIVATE_DEGRADATION	XENOBIOTIC_NITROTOLULENE_DEGRADATION,PGPT0005930-nemA-K10680	NA	NA
D1-36_03811	627			hypothetical protein	ATGAATGACGCGACGGACAGCACGCCACCGGCCAATAACGACCTTATCGAGAGACTCCTTTCACAGTTCCGCTTTTTGCCCTTGTCAGTCTTGTACGAGCAATTCAAGTCACTCGACACGACAGAGTACGCCGAGGCACTTAACGCCTTGATAGAAAAGAATAAAAAGAACGATGAGGTCGACCGGAAGATTCAAGCCTGGGAGCAAGAAAAGATTCGCCAGGATAAAACCCGATTGCTGGTCAAGATATTCAACCACACCGACCAGGCTTTTCAATTTCGCGAAAATAACCTCAACCTGAACGCCATTGATCATGACTTCTTCAATATCCGTCGCGGGGATATCCAGGCGTTGAAATTCGACTTCTCGTACGTCAGGACATTGCGCAGCCGTAGCAAGGATATGTTCCAACACTTCATTGTGTTTGGCGACAAACAATGTGGATTCCGCTTCGATTTCGGCTTACGCGTGGAGACTTCTTTTGGCGTTTTCACCCCCACCCTGACACCGGTACGGACCCTTAACGTGACCTCTATTGGCGCAACGCCCGTCAATTGCACAACTCGCATCACGCACGCGGCGGAGGGAGAACCCTACGGCTTTACCGTAGAAATCGTAATTAGCTGA	MNDATDSTPPANNDLIERLLSQFRFLPLSVLYEQFKSLDTTEYAEALNALIEKNKKNDEVDRKIQAWEQEKIRQDKTRLLVKIFNHTDQAFQFRENNLNLNAIDHDFFNIRRGDIQALKFDFSYVRTLRSRSKDMFQHFIVFGDKQCGFRFDFGLRVETSFGVFTPTLTPVRTLNVTSIGATPVNCTTRITHAAEGEPYGFTVEIVIS				NA	NA	NA	NA	NA
D1-36_03812	633	ttgR		HTH-type transcriptional regulator TtgR	ATGGTCCGTCGTACCAAAGAGGAAGCCTTGGAGACTCGCAGCCAGATACTCGAAGCGGCCGAAAAAGCCTTCTTCGAGCGAGGCGTTGCGCGTACCACGCTGGCCGATATCGCGACGCTCGCCGGTGTGACACGGGGCGCCATCTATTGGCATTTCAGCAACAAGGCGGATCTGCTCCAGGCCATGCTCGATACGCTGCATGAACCGCTCGATGAATTGGCCCGCGCGAGCGAAAACGAGGAAGAGCTTGATCCCCTGGGGTGCGTGCGCAAGTTGTTGGTACGGTTGTTCCAGCAGGTGGCCCTGGACCCGAAAACCCGGCGCATCAATGAGATTCTGTTCCATAAGTGCGAGTTCACCGATGAAATGTGCGATTTGCGCCAGCAGCGACGTGAAGTCAGCCTCGACTGCAACGTGCGTATCGCCTTGTCGTTGCGCAATGCAATGAAACGCGGCCAGTTGCCGGATGACCTCAATCCCGAAAGGGCGGCGGTTGCCATCCATGCCTATATCGACGGCATTCTTTACCAGTGGTTGCTGGCTCCAGACAGTTTCGCCCTGGCGAATGAAGCCGAACGCTGGGTGGACATCGGGCTGGATATGCTGCACCTGAGCCCTAGCCTGCGCAAATGA	MVRRTKEEALETRSQILEAAEKAFFERGVARTTLADIATLAGVTRGAIYWHFSNKADLLQAMLDTLHEPLDELARASENEEELDPLGCVRKLLVRLFQQVALDPKTRRINEILFHKCEFTDEMCDLRQQRREVSLDCNVRIALSLRNAMKRGQLPDDLNPERAAVAIHAYIDGILYQWLLAPDSFALANEAERWVDIGLDMLHLSPSLRK	PGPT0003255_580	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexAB-OprM,PGPT0003255-acrR|smeT-K03577	NA	NA
D1-36_03813	1158	ttgA		putative efflux pump periplasmic linker TtgA	ATGCAATTCAAGCCAGCTGTTACCGCTCTGGTCACTGCCATCGCCCTGGCATCGCTGCTCAGCGGATGCAAAAAGGAAGAGGCTGCACCCGCGCCTCCCCCTCCTCAGGTCGGCGTCGTAACCCTCAAGACCCAGCCTTTTACCCTGACCTCTGAACTGCCGGGCCGCACCAGTGCGTTCCGCGTTGCCGAAGTGCGTCCTCAGGTCAATGGCATCATCCTCAAGCGCCTGTTCAAGGAAGGCGCCGACGTCAAGGCCGGCCAGCAGCTGTACCAGATCGACCCCGCCGTTTACGAAGCGAACCTCAAGAGCGCCGAGGCCAACCTGCGTTCCACCAAGTCGATCGCTGATCGCTACAAGCAATTGGTTGATGAACAAGCCGTGAGCCGCCAGGAATACGACACTGCCGTGGCCAATCGCCTGGAGTCGGAAGCCAGCCTGCAGACCGCGCAGATCAATGTGCGGTACACCAAGGTCTATGCGCCGATTTCAGGTCGCATCGGACGTTCCTCGGTGACCGAAGGCGCGCTGGTCAGCAACGGGCAGACCGATGCCCTGGCGACCATCCAGCAACTCGACCCGATCTATGTCGACGTGACGCAAAGCTCCGTCGAACTCCTGCAACTGCGCCGCGAGCTGGAAAGCGGCCGCCTGCAGAAGGCCGGCGACAACGCCGCCATGGTCAAGCTGACCCTGGAAGACGGCAGCCAGTACCCCCATGAAGGCAAGCTCGAATTCTCCGAAGTCTCGGTCGACCAGACCACCGGCTCCGTGACCTTGCGCGCCGTGTTCCCCAACCCCGACCACACGTTGCTGCCGGGCATGTTTGTCCACGCGCAACTGCAGGCTGGCGTGAACAGCGCGGCGATCCTGGCACCGCAGCAAGGCGTGACCCGCGACCTCAAGGGTACGCCGACCGCCATGGTCGTGGGCGCCGATAACAAGGTCGAACTGCGTCAGCTCAAGGCCAGCCGCACCGTTGGCAACCAATGGCTGATCGAAGACGGCCTCAAGGCCGGTGATCGCCTGATCACCGAAGGGTTGCAGTACGTACGGCCAGGGGTAGAAGTCAAAGCCACCGAAGCCACCAACGTTGGCGCTAAGAACCCGGCCCCCGCTCAGGCAGCTGACAAAGCCGCCGGCGGCAAAGGGGAGTAA	MQFKPAVTALVTAIALASLLSGCKKEEAAPAPPPPQVGVVTLKTQPFTLTSELPGRTSAFRVAEVRPQVNGIILKRLFKEGADVKAGQQLYQIDPAVYEANLKSAEANLRSTKSIADRYKQLVDEQAVSRQEYDTAVANRLESEASLQTAQINVRYTKVYAPISGRIGRSSVTEGALVSNGQTDALATIQQLDPIYVDVTQSSVELLQLRRELESGRLQKAGDNAAMVKLTLEDGSQYPHEGKLEFSEVSVDQTTGSVTLRAVFPNPDHTLLPGMFVHAQLQAGVNSAAILAPQQGVTRDLKGTPTAMVVGADNKVELRQLKASRTVGNQWLIEDGLKAGDRLITEGLQYVRPGVEVKATEATNVGAKNPAPAQAADKAAGGKGE	PGPT0003275_2969	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexAB-OprM,PGPT0003275-acrA|lir|mtcA|mexA|adeI|smeD|mtrC|cmeA-K03585	NA	NA
D1-36_03814	3165	ttgB	COG0841	putative efflux pump membrane transporter TtgB	ATGTCGAAATTCTTTATCGACCGTCCGATCTTCGCCTGGGTGATCGCCCTGGTGATCATGCTGGTCGGCGCTTTGTCGATCCTCAAGTTGCCGATCAACCAGTACCCGAGCATCGCGCCGCCGGCCATTGCGATCCAGGTGACCTACCCAGGTGCTTCCGCACAAACCGTGCAAGACACTGTGGTGCAGGTCATCGAGCAGCAGCTCAACGGCATCGACAACCTGCGTTATGTGTCCTCGGAAAGTAACTCCGACGGCAGCATGACCATCACCGCGACCTTCGAGCAGGGCACCAGCTCCGATACCGCCCAGGTCCAGGTCCAGAACAAGCTGAACCTGGCCACCCCGCTGTTGCCGCAAGAAGTGCAGCAGCAAGGCATCCGCGTGACCAAGTCGGTGAAAAACTTCCTGATGGTGATCGGGGTGGTGTCGCGCGACGGCAGCATGACCAAGGACGATCTGTCCAACTACATCGTGTCCAACATGCAGGATCCGATCTCGCGCACTGCCGGTGTCGGCGACTTCCAGGTCTTCGGGGCCCAGTATGCGATGCGGATCTGGCTCGACCCGGCCAAGTTGAACAATTTCAGCCTGACCCCGGTGGACGTCAAAAACGCTATCGCCGCGCAAAACGTCCAGGTCTCGTCCGGCCAACTCGGCGGCTTGCCTGCCCTGCCCGGCCAGCAACTGAACGCGACCATTATCGGCAAGACCCGCTTGCAGACCGCCGAGCAATTCAAGGCGATCCTGCTGAAGGTCAACCCGGACGGCTCCCAAGTGCGCGTTGGCGATGTGGCCGACGTTGGCCTGGGCGGCGAGAACTACAGCATCAGCGCCCAGTTCAATGGCGCACCAGCGTCGGGCCTGGCGGTAAAACTGGCCAACGGTGCCAACGCACTCGACACGGCCAAAGCCCTGCGCAAGACCATTGACGACCTCAAGCCGTTCTTCCCCCAGGGCGTAGAAGTGGTGTTCCCATACGACACCACGCCGGTGGTGAGCGAGTCGATCAAGGGTGTGGTTGAAACCCTGGTCGAGGCGGTCGTGCTGGTGTTCCTGGTGATGTTCCTGTTCCTGCAGAACTTCCGAGCCACCATCATCACCACGATGACGGTGCCGGTGGTGTTGCTGGGTACCTTCGGGATTCTCGCGGCGGCCGGCTTCAGCATCAACACCCTGACCATGTTCGGCATGGTGCTGGCCATCGGCTTGCTGGTGGACGACGCCATCGTCGTGGTGGAAAACGTCGAACGGGTGATGAGCGAAGAAGGCCTGTCGCCCAAGGAAGCCACCAAGAAGTCCATGGGCCAGATCCAGGGCGCCCTGGTGGGTATCGCCCTGGTGCTTTCGGCGGTGCTGCTGCCGATGGCGTTCTTCAGCGGCTCTACCGGCGTGATCTACAAACAGTTCTCCATCACGATCGTCTCCGCGATGGCGCTGTCGGTGTTGGTCGCCCTGATCTTCACCCCGGCCCTGTGCGCCACCATGCTCAAGCCCATTCCGAAAGGCGAGCACGGCACGCCGAAACGCGGTTTCTTCGGCTGGTTCAACCGCACTTTCGACCGTGGCGTCAGGAGCTACGAGCGTGGTGTGGGCAACATGCTCCAGCGCAAGGCTCCGTATCTGCTCGCTTACGTGATCATTGTGGTCGGCATGGTCTGGCTGTTCACCCGCATCCCTACCGCGTTCCTGCCCGAAGAAGACCAGGGCGTGTTGTTTGCCCAAGTACAGACACCGGCCGGCTCCAGTGCCGAGCGCACCCAGGTGGTGGTCGACAAGATGCGCGAGTTCCTGCTGCGTCCAAGCAAGGACGGTGGTGAAGGCGATGCCGTGGCCTCGGTGTTTACCGTGACCGGCTTCAACTTCGCCGGTCGTGGCCAGAGCTCGGGCATGGCGTTCATCATGCTGAAACCGTGGGAGGAGCGTAACGCCGACAACAGCGTGTTCAAGCTCGCCGCTCGCGCCCAGCAGCATTTCTTTACCTTCCGTGACGCAATGGTGTTCGCCTTCGCCCCGCCAGCAGTACTGGAATTGGGTAACGCCACCGGTTTCGACGTGTTCCTGCAGGACCGCGCCGGCATCGGCCACGACAAGCTGATGGAAGCTCGTAACCAGTTCCTGGGCATGGCGTCCCAGAGCAAGGTCTTGACCCAGGTCCGTCCGAACGGCCTGAACGACGAGCCGCAATACCAGCTCGAGATCGACGACGAGAAGGCCAGCGCGCTGGGCATCACCTTGGCCGATATCAACAACACCCTGTCGATCGCCCTGGGCAGTAGCTACGTGAACGACTTCATCGACCGTGGCCGGGTTAAAAAGGTCTACGTGCAAGGCCAGCCGGGCGCTCGCATGAGTCCGGAAGACCTGAAGAAGTGGTACGTGCGCAACAGCGCCGGGACCATGGTACCGTTCAGCGCCTTTGCCAAAGGCGAGTGGACCTATGGTTCGCCGAAACTCGCGCGCTACAACGGCGTGGAAGCGATGGAAGTCTTGGGTGCTCCGGCGCCGGGCTATTCCACCGGTGAAGCCATGGCCGAGGTCGAAGCCATCGCCAAGAAGTTGCCGGCCGGCGTCGGCATCTCCTGGACAGGCCTGTCGTACGAGGAACGCCTGTCGGGTTCCCAGGCCCCAGCCCTGTACGCGCTCTCGCTGCTGATGGTATTCCTCTGTCTGGCGGCACTGTATGAAAGCTGGTCGATTCCGATCGCCGTCATGCTCGTGGTGCCGTTGGGGATTATCGGTGCCCTGCTGGCCACCAGCCTGCGCGGTCTGTCCAATGACGTGTACTTCCAGGTGGGCTTGTTGACAACGATCGGCCTGGCGGCGAAAAACGCCATCCTGATCGTCGAGTTCGCCAAGGAACTCCACGAACAAGGCCGGACCCTGGTGGAAGCCGCCATCGAAGCCTGTAGGATGCGTCTGCGGCCCATCATCATGACGTCCCTGGCGTTCGTCCTCGGCGTCGTCCCGCTGGCGATTTCCACCGGCGCCGGTTCGGGCAGCCAGCACGCCATCGGTACCGGCGTGATCGGCGGTATGCTCACGGCCACCATCCTGGCAATCTTCTGGGTGCCATTGTTCTTCGTGACAGTGTCGTCGTTAGGTCGTCGCAAAAATGCCGACCAGGACAACACTCCTGAAACTTCTAAAGAGGCTGGCCAATGA	MSKFFIDRPIFAWVIALVIMLVGALSILKLPINQYPSIAPPAIAIQVTYPGASAQTVQDTVVQVIEQQLNGIDNLRYVSSESNSDGSMTITATFEQGTSSDTAQVQVQNKLNLATPLLPQEVQQQGIRVTKSVKNFLMVIGVVSRDGSMTKDDLSNYIVSNMQDPISRTAGVGDFQVFGAQYAMRIWLDPAKLNNFSLTPVDVKNAIAAQNVQVSSGQLGGLPALPGQQLNATIIGKTRLQTAEQFKAILLKVNPDGSQVRVGDVADVGLGGENYSISAQFNGAPASGLAVKLANGANALDTAKALRKTIDDLKPFFPQGVEVVFPYDTTPVVSESIKGVVETLVEAVVLVFLVMFLFLQNFRATIITTMTVPVVLLGTFGILAAAGFSINTLTMFGMVLAIGLLVDDAIVVVENVERVMSEEGLSPKEATKKSMGQIQGALVGIALVLSAVLLPMAFFSGSTGVIYKQFSITIVSAMALSVLVALIFTPALCATMLKPIPKGEHGTPKRGFFGWFNRTFDRGVRSYERGVGNMLQRKAPYLLAYVIIVVGMVWLFTRIPTAFLPEEDQGVLFAQVQTPAGSSAERTQVVVDKMREFLLRPSKDGGEGDAVASVFTVTGFNFAGRGQSSGMAFIMLKPWEERNADNSVFKLAARAQQHFFTFRDAMVFAFAPPAVLELGNATGFDVFLQDRAGIGHDKLMEARNQFLGMASQSKVLTQVRPNGLNDEPQYQLEIDDEKASALGITLADINNTLSIALGSSYVNDFIDRGRVKKVYVQGQPGARMSPEDLKKWYVRNSAGTMVPFSAFAKGEWTYGSPKLARYNGVEAMEVLGAPAPGYSTGEAMAEVEAIAKKLPAGVGISWTGLSYEERLSGSQAPALYALSLLMVFLCLAALYESWSIPIAVMLVVPLGIIGALLATSLRGLSNDVYFQVGLLTTIGLAAKNAILIVEFAKELHEQGRTLVEAAIEACRMRLRPIIMTSLAFVLGVVPLAISTGAGSGSQHAIGTGVIGGMLTATILAIFWVPLFFVTVSSLGRRKNADQDNTPETSKEAGQ	PGPT0003280_765	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexAB-OprM,PGPT0003280-acrB|acrE|mexB|adeJ|smeE|mtrD|cmeB-K18138	NA	NA
D1-36_03815	1458	ttgC	COG1538	putative efflux pump outer membrane protein TtgC	ATGAGCAAGTCGCTACTCTCCCTGACCATCGCCGCGGTCGTGCTCAGCGGTTGCTCGCTGATCCCGGACTATCAGCGGCCCGAAGCTCCGGTCGCGGCGCAGTACCCGCAAGGCCCGGCCTACGAACCGGCCAACGCCCCCGGCCAGGCAGCCGCCGAGCAGGGCTGGAAGCAGTTTTTCCATGACCCTGCGCTGCAACAGCTGATCCAGGTTGCCCTGGAAAACAACCGCGACCTACGGGTCGCTGCGTTGAACATCGACGCCTACGCCGCGCAATACCGCATCCAGCGGGCGGACCTGCTCCCGGCGGTCTCGGCAACCGGCTCCGGCAGCCGCCAGCGCGTGCCGGCACGGGCTTCGCAGACCGGCGAAGCGGCCATCAGCAGTTCCTACTCCGCAACGCTGGGGATCAGCGCCTACGAGTTGGACCTGTTCGGTCGCGTCCGCAGCCTGAGCGAGCAAGCGTTGCAAAGCTACTTCGCCACCGAAGAAGCCCGTCGCAGCACCCAGATCAGCCTGGTGGCCAACGTCGCCAACGCCTATCTGACCTGGCAGGCGGACAAGGAACTGCTCAAGCTGACCCAGGACACCCTGGGCACCTACGAACAGAGCCTGAAGCTGACCTCGCGCAGCGCCGAAGTCGGCGTGGCCTCGGCCCTGGACCTGAGCCAGGCGCGCACCGCAGTGGAAAACGCCCGCGTGCAACTGGCTCGCTACACCCGCCAAGTGGCCCAGGATGAAAACAGCCTGACCCTGCTGCTGGGCACCGGCCTGCCGGCCAACCTGCGCACTCAACCGTTGAGCGATGACCTGCTCAGCGAAGTGCCGGCCGGGCTGCCGTCGGACCTGCTGCAACGTCGTCCGGACATTCTCCAGGCCGAACGCAACCTGCTCGCCGCCAATGCCAACATCGGCGCCGCACGGGCCGCGTTCTTCCCAAGCATCAGCCTTACGGCCAACGCCGGTACCCTGAGCCCTGACCTGTCCGGTCTGTTCAAGGGCGGTTCGGGCACCTGGACCTTCGCGCCGCAGATCAACCTGCCGATCTTCAACGCCGGCAGCCTGCGGGCGAGCCTGGATTACGCCAAGATCCAGAAAGACATCAACGTCGCGCAGTATGAGAAGTCGATTCAGACAGCGTTCCAGGAAGTCTCCGACGGCCTGGCCGCGCGCCAGACCTACAACGAACAGCTGCAGGCCCAGACCGACTTCGTCGCCGCCAACCAGGACTACTACCGCCTGGCCGAGCGTCGCTACCGCATCGGCGTCGACAGCAACCTGACCTTCCTCGACGCCCAACGCCAGTTGTTCAGCGCACAACAATCGCTGATCACCGACCGCCTTGCGCAACTGACCAGCGAGGTCAATTTGTACAAGGCTCTGGGTGGTGGCTGGAATGCCGAGACGGGCAAGCACGAACCGCTGGCGGAAAAAGCGCCGGAGACGAAGTTGTTCTGA	MSKSLLSLTIAAVVLSGCSLIPDYQRPEAPVAAQYPQGPAYEPANAPGQAAAEQGWKQFFHDPALQQLIQVALENNRDLRVAALNIDAYAAQYRIQRADLLPAVSATGSGSRQRVPARASQTGEAAISSSYSATLGISAYELDLFGRVRSLSEQALQSYFATEEARRSTQISLVANVANAYLTWQADKELLKLTQDTLGTYEQSLKLTSRSAEVGVASALDLSQARTAVENARVQLARYTRQVAQDENSLTLLLGTGLPANLRTQPLSDDLLSEVPAGLPSDLLQRRPDILQAERNLLAANANIGAARAAFFPSISLTANAGTLSPDLSGLFKGGSGTWTFAPQINLPIFNAGSLRASLDYAKIQKDINVAQYEKSIQTAFQEVSDGLAARQTYNEQLQAQTDFVAANQDYYRLAERRYRIGVDSNLTFLDAQRQLFSAQQSLITDRLAQLTSEVNLYKALGGGWNAETGKHEPLAEKAPETKLF	PGPT0009810_1023	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexXY-OprM,PGPT0009810-toxI|oprM|oprM|emhC|ttgC|cusC|adeK|smeF|mtrE|cmeC|gesC-K18139	NA	NA
D1-36_03816	357			hypothetical protein	ATGATCAAAGAAACACCAAATCCCCCAACGCCTGAATCCACCTTCCCCTACAACGACCCCGATCCACAAAAACTCCAAGAAGCCGCAGACCGAGCACTCAATTACCATCTGGGCACCACTCCCGACCCCAAGCCCAAGACCTCAACCACCCAAGTGTTCACCGTCATCGATACCCTCGACACCGAGTGTCTACTGGCAAATCTCAGCGAAACCCTGGCCTCGGCCAATGCCATGCTCAACGACCTGGCGTTCGATCTGGGAGGCTCGCGACGGCATGTCGCGCTAGGCGTTGCGCAGATGATTGACTTGAGCGAGTTGCTGGCCAGTCGAGCGCTGGATATCGTCGACCCGCGTTAA	MIKETPNPPTPESTFPYNDPDPQKLQEAADRALNYHLGTTPDPKPKTSTTQVFTVIDTLDTECLLANLSETLASANAMLNDLAFDLGGSRRHVALGVAQMIDLSELLASRALDIVDPR				NA	NA	NA	NA	NA
D1-36_03818	1254	nicP_5		Porin-like protein NicP	ATGAAGCCCACACAGCACTTGTTCCCCAGCCTCATTGCCGTCGCCCTGACCAGCACCGCCCTCCCCGTCCTGGCGGCGGAATCGGGGTTCGTCGAAGATGCCAAAGCCACGCTGAACCTGCGCAACTTCTATATCAACCGCAACTTCACCAACCCGGACAATGCCCAGGGCAAAGCCGAGGAATGGACCCAGAGTTTCATCCTCGACGCCAAGTCCGGCTTCACCCAGGGCACCGTCGGTTTCGGCGTTGACGTGCTGGGCCTGTACTCGGTCAAGCTCGACGGCGGTCGTGGCACGGCCGGCACCCAGCTGCTGCCGGTGCACGACGACGGCCGCCCGGCCGATGACTTCGGTCGCCTGGGCGTCGCCCTGAAGGCCAAGGTCTCGAAGACCGAATTGAAAGTCGGCGAGTGGATGCCAGTGTTGCCGATCCTGCGTTCCGACGATGGCCGTTCCCTGCCGCAAACCTTCCGTGGCGGCCAGGTGACCTCCACCGAAATCAACGGCCTGAGTCTCTACGGCGGCCAGTTCCGCGCCAACAGCCCGCGTAACGACGCGAGCATGGAAGACATGTCGATGAACGGCCGCGGTGCATTCACCTCCGACCGTTTCAATTTCGGTGGCGGCGAATACGCCTTCAACGAAAAACGCACCCAGGTCGGCGTCTGGTACGCGGAACTGTCCGACATCTACCACCAGCAGTATTTCAACCTGACCCACAGCCAGCCCATCGGCGACTGGACCCTGGGCGCCAACCTCGGTTACTTCACCGGCAAGGAAGACGGCAGCGCATTGGCCGGCGACCTTGACAACAAAACCGCCTTCGCCATGCTTTCCGCCAAATACGGCGGCAACACCTTCTACGTCGGCCTGCAGAAAGTCGGCGGCGACGATGCCTGGATGCGCGTCAACGGCACCAGCGGCGGCACCCTGGCGAACGACAGCTACAACTCCAGCTACGACAACGCCAGGGAAAAATCCTGGCAACTGCGCCACGACTTCAACTTCGCCGCCGTCGGCGTGCCGGGCCTGACCCTGATGAACCGCTACATCAGCGGTGACAACGTTCACACCGCCACGGTCGACGACGGCAAGGAATGGGGCCGGGAAAGTGAGCTGGCCTACACGGTGCAGAGCGGCGTGTTCAAGAGCCTCAACGTGAAATGGCGTAATTCGACGATGCGTAGGGACTTCAGTACCAATGAGTTCGATGAGAACCGGTTGATTGTCAGCTATCCGATCAGCCTGCTGTAA	MKPTQHLFPSLIAVALTSTALPVLAAESGFVEDAKATLNLRNFYINRNFTNPDNAQGKAEEWTQSFILDAKSGFTQGTVGFGVDVLGLYSVKLDGGRGTAGTQLLPVHDDGRPADDFGRLGVALKAKVSKTELKVGEWMPVLPILRSDDGRSLPQTFRGGQVTSTEINGLSLYGGQFRANSPRNDASMEDMSMNGRGAFTSDRFNFGGGEYAFNEKRTQVGVWYAELSDIYHQQYFNLTHSQPIGDWTLGANLGYFTGKEDGSALAGDLDNKTAFAMLSAKYGGNTFYVGLQKVGGDDAWMRVNGTSGGTLANDSYNSSYDNAREKSWQLRHDFNFAAVGVPGLTLMNRYISGDNVHTATVDDGKEWGRESELAYTVQSGVFKSLNVKWRNSTMRRDFSTNEFDENRLIVSYPISLL	PGPT0023610_3	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0023610-galP-K16517	NA	NA
D1-36_03819	393			hypothetical protein	GTGGACGAGAAACAACGTTACGACGAAGGCATGCAAGTGCGCCGCGCCGTGCTGGGCGATGCCCACGTGGATCGCAGCCTCAACGCCCTGACCGAATTCAACAGCGAATTCCAGGAGATGATCACCCGTCACGCCTGGGGCGACATCTGGACCCGCCCGGGACTGCCGCGCCATACCCGCAGCCTGATCACCATTGCCATGCTGATCGGCATGAACCGCAACGAAGAACTCAAGCTGCACCTGCGCGCCGCCGCCAACAATGGCGTCAGCCGTAGTGAGATCAAGGAAGTGATCATGCAAAGTGCGATTTATTGCGGCATTCCGGCGGCCAATGCCACCTTCCATCTGGCCGAATCGGTCTGGGATGAACTGGGTGTCGAATCGCGGGGTTAG	MDEKQRYDEGMQVRRAVLGDAHVDRSLNALTEFNSEFQEMITRHAWGDIWTRPGLPRHTRSLITIAMLIGMNRNEELKLHLRAAANNGVSRSEIKEVIMQSAIYCGIPAANATFHLAESVWDELGVESRG	PGPT0005005_2856	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
D1-36_03820	801	catD_4	COG0596	3-oxoadipate enol-lactonase 2	GTGGGACTCGTCAAACTCGCCGAGGGCGATCTGAATTATCGATTGGACGGGCCGGAAGACGCGCCGGTTCTGGTGCTTTCCAACTCCCTGGGCACCGACCTGCACATGTGGGACGAGCAGATCCAAGCTTTCAGCGAACACTTTCGCGTGCTGCGTTTCGACACGCGTGGTCATGGTCAGTCGTTGGTGACCGAAGGCCCCTACAGCATTGAACAGCTGGGGCGCGATGTGCTGGCCATGCTTGATGCCTTGAGCATCGACAAGGTGCATTTCTGCGGATTGTCCATGGGCGGGCTGATCGGCCAATGGCTGGGAATCAACGCGGGCGAGCGGTTGTTCAAACTGGTCATCTGCAACACGGCGGCCAAGATTGGCGACCCGTCGGTGTGGAACCCGCGCATCGAAACCGTGCTGCGTGACGGCCAGGCGGCGATGGTGGCCTTGCGTGACGCGTCGATTGGCCGCTGGTTTACACCGGACTTCGCCGAGGCGCACCCCGCGACGGTAAAGAAAATCACCGACATGCTGGCTGCCACCTCGCCCCAGGGTTATGCGGCAAACTGCGCGGCGGTGCGGGACGCCGATTTCCGCGAGCAGTTGGCGTCGATCCGCGTGCCGTTGTTGGTTGTGGCGGGCACCGAGGATGCGGTGACACCGCCGTCCGGTGGGCATTTTATACAAGAGCGGGTCAATGGGGCCGAATATGCCGAGTTCCGCGCCGCGCATTTGTCCAACGTCCAGGCCGGCGCTGCGTTCAGCGCGCGGGTGCTGGATTTCCTGCTTGATTCTGGCCGGGCCTGA	MGLVKLAEGDLNYRLDGPEDAPVLVLSNSLGTDLHMWDEQIQAFSEHFRVLRFDTRGHGQSLVTEGPYSIEQLGRDVLAMLDALSIDKVHFCGLSMGGLIGQWLGINAGERLFKLVICNTAAKIGDPSVWNPRIETVLRDGQAAMVALRDASIGRWFTPDFAEAHPATVKKITDMLAATSPQGYAANCAAVRDADFREQLASIRVPLLVVAGTEDAVTPPSGGHFIQERVNGAEYAEFRAAHLSNVQAGAAFSARVLDFLLDSGRA	PGPT0004995_1001	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
D1-36_03821	1365	pcaB	COG0015	3-carboxy-cis,cis-muconate cycloisomerase	ATGAGCGAACGACCGGGCAATCAGCTCTTCGATGCCTACTTCACCGCCCGCGACATGCGCGACGTGTTCTGCGATGCGGGGCGGGTGCAGGCCATGCTGGACGTCGAAGCGGCACTGGCCCGGGCCGAGGCGCGAGTGGGGCTGATCCCCCACGAGGCGGTGGCGCCGATCGAGAACGCCTGCCACGCCCACCTGTACGATTTCGGCGCGTTGAGCGAAGCGATCGCCAGTGCCGGCAATTCGGCGATCCCGCTGGTCAAGGCGTTGGGCAAGCGCATCGCCACCCAGAGCCTGGAAGCTGAGCGGTACGTGCATTTGGGTGCCACCAGCCAGGACGTGATGGACAGCGGTCTGGTGGTGCAACTGCGCCAGGCGCTTGGGCTGATCGAAAACGAACTGGCGCAACTGGCCGACAGCCTGGCCCGACAAGCCGAACGCTACGCCGCGACGCCAATGGCCGGGCGTACGTGGTTGCAACACGCCACGCCGGTGACCCTGGGCATGAAGGTCGCCGGTTGGCTGGGGGCGATCACCCGCAGTCGCCAACGCTTGCGCGAGCTCAAGCCGCGCCTGCTGGTGCTGCAATTCGGCGGCGCTTCCGGGACGCTCGCTGCCTTGGGTGAGCACGCGCTGCCAGTCGCAGAGGCGTTGGCCGCCGAGCTGCAATTGAACCTGCCGGAGCAGCCGTGGCACACCCAGCGCGATCGCCTGGTGGAGTTCGGTTCGGTGCTGGGCCTGATCGCCGGCAGCCTGGGCAAGTTGGGGCGTGACATCAGTCTGTTGATGCAAACCGAAGCCGGCGAAGCGTTCGAACCCTCGGCGCCGGGCAAGGGCGGTTCGTCCACCATGCCCCACAAACGCAACCCGGTGGGCGCGGCCGTGCTGATCGGCGCGGCGACGCGCGTGCCGGGCTTGTTGTCGACGCTGTTCAGCGCCATGCCCCAGGAACACGAGCGCAGCCTGGGGCTGTGGCACGCCGAATGGGAAACCCTGCCGGAGATCTGCTGCCTGGTATCCGGCGCGCTGCAACAGGCGCGGCTGCTGGTCGACGGGCTGGAAGTGGATCCGTCGCGCATGGCCCGTAACCTGGAGTTGACCCAAGGGCTGCTGCTGGCGGAGGCCGTGAGCATCGTCCTGGCCCAGCGTGTGGGGCGCGACACCGCGCATCATTTGCTCGAACAATGCTGCAAGCGCGCCGTGGCCGAACAACGGCACCTGCGCGAAGTGCTGGGGGACGAACCTCAGGTCACCGCGCAGCTATCCACGACCGAGCTCGATCATCTGCTCGACCCGGCCCACTACCTTGGACAGGCCCAGACCTGGGTCGCCCGAGCCGTGGCCGAACACCTTGCCTTGAAAGCCTGA	MSERPGNQLFDAYFTARDMRDVFCDAGRVQAMLDVEAALARAEARVGLIPHEAVAPIENACHAHLYDFGALSEAIASAGNSAIPLVKALGKRIATQSLEAERYVHLGATSQDVMDSGLVVQLRQALGLIENELAQLADSLARQAERYAATPMAGRTWLQHATPVTLGMKVAGWLGAITRSRQRLRELKPRLLVLQFGGASGTLAALGEHALPVAEALAAELQLNLPEQPWHTQRDRLVEFGSVLGLIAGSLGKLGRDISLLMQTEAGEAFEPSAPGKGGSSTMPHKRNPVGAAVLIGAATRVPGLLSTLFSAMPQEHERSLGLWHAEWETLPEICCLVSGALQQARLLVDGLEVDPSRMARNLELTQGLLLAEAVSIVLAQRVGRDTAHHLLEQCCKRAVAEQRHLREVLGDEPQVTAQLSTTELDHLLDPAHYLGQAQTWVARAVAEHLALKA	PGPT0005000_397	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
D1-36_03822	1296	kgtP_2		Alpha-ketoglutarate permease	ATGACCACCCCAACCAGCCACTACACCGGTGAAGAGCGCAGCAAGCGTATCTTTGCCATCGTCGGTGCCTCATCCGGCAACCTGGTCGAATGGTTCGACTTCTATGTCTATGCCTTTTGCGCCATTTACTTCGCGCCGGCATTCTTTCCGTCGGACAACCCCACCGTGCAACTGGTCAACACCGCCGGTGTATTCGCCGCCGGGTTCCTGATGCGACCTATCGGCGGTTGGATTTTCGGCCGGGTGGCGGACCGTCACGGGCGCAAGAATTCGATGATGATCTCGGTGCTGATGATGTGCTTCGGCTCGTTGCTCATCGCCTGCCTGCCAACCTACAAGGACATCGGCGTGTGGGCGCCGGTGCTGCTGTTGCTCGCCCGTCTGCTGCAAGGCCTGTCGGTGGGCGGCGAGTACGGCACCACTGCCACCTATATGAGCGAAGTCGCCCTGAAAGGCCAGCGCGGCTTCTTTGCGTCGTTCCAGTACGTGACGCTGATCGGCGGGCAGCTGCTGGCGGTGTCGCTGGTGGTGATCCTGCAGCAGTTTCTCAACGAAGATGAACTGCGCGCCTGGGGCTGGCGGATTCCGTTCGTGGTCGGCGCGGTGGCGGCAGTGATTTCCCTGTTCCTGCGCCGCTCACTGAAGGAAACCAGCAGCAAGGAAATGCGCGAAAACAAGGACGCCGGCAGCATCGCTGCACTGTTTCGCAGCCACAAGGCCGCCTTCATTACCGTACTGGGCTACACCGCCGGTGGTTCGCTGATTTTCTACACCTTCACCACGTATATGCAGAAATACCTGGTGAACACCGCCGGGCTGCACGCCAAGACCGCCAGCTACATCATGACCGGCGCGCTGTTCCTTTACATGTGCATGCAACCGCTGTTCGGCATGCTGGCGGACAAGATTGGCCGGCGTAACTCCATGCTCTGGTTCGGTGGCCTTGGGGCGCTGTGCACGGTGCCGATCCTGCTGACACTCAAAAGCATCAGCAGCCCGTTCCTGGCATTTGTCCTGATCACGTTGGCGTTGGCGATCGTCAGCTTCTACACCTCCATCAGCGGTTTGGTGAAGGCTGAAATGTTTCCACCGGAAGTGCGCGCGCTGGGAGTAGGGTTGGCGTATGCGGTGGCGAATGCGATTTTTGGCGGTTCGGCCGAATACGTCGCCTTGAGCCTGAAGGCCCAGGGCATGGAGAACGCCTTTTATTGGTATGTCACGGTGATGATGGTAGTGGCGTTCCTGTTCAGCCTGCGCCTGCCCAAGCAGCCGGCGTATTTGCATCACGATCTTTAA	MTTPTSHYTGEERSKRIFAIVGASSGNLVEWFDFYVYAFCAIYFAPAFFPSDNPTVQLVNTAGVFAAGFLMRPIGGWIFGRVADRHGRKNSMMISVLMMCFGSLLIACLPTYKDIGVWAPVLLLLARLLQGLSVGGEYGTTATYMSEVALKGQRGFFASFQYVTLIGGQLLAVSLVVILQQFLNEDELRAWGWRIPFVVGAVAAVISLFLRRSLKETSSKEMRENKDAGSIAALFRSHKAAFITVLGYTAGGSLIFYTFTTYMQKYLVNTAGLHAKTASYIMTGALFLYMCMQPLFGMLADKIGRRNSMLWFGGLGALCTVPILLTLKSISSPFLAFVLITLALAIVSFYTSISGLVKAEMFPPEVRALGVGLAYAVANAIFGGSAEYVALSLKAQGMENAFYWYVTVMMVVAFLFSLRLPKQPAYLHHDL	PGPT0001525_96	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_KETO-|OXOGLUTARATE_TRANSPORT,PGPT0001525-kgtP-K03761	NA	NA
D1-36_03823	567	pcaG	COG3485	Protocatechuate 3,4-dioxygenase alpha chain	ATGACGCTCAACGCCACTACGTCCCACACCGTCGGGCCTTACTACCACATCGGCCTGACCTGGCTGAACCGCGAAGACCTGACCGACGAGCAGACCCTCGGCCAAAGGGTGGCGATCACCGGGCAGGTGGTCGATGGCAATGGTCAGTTCGTCAACGACGCGATGCTGGAAGTCTGGCAGGCCAACGCGGCCGGCAAGTACGCCCACCCGGAAGACGACCAGGACAAACCCCTCGACCCGCATTTCGACGGTTTTGGTCGGGTACCGGTGGATGCCGAGGGACGTTTTCGTTTCACCACCATCAAGCCCGGCACCGTGCCGGGGCTGGGCGGCACGACCCAAGCCCCGCACCTGGTGGTGTTGGTGTTCGCCCGTGGGCTGGTCAAGCATCTGCTGACGCGGATCTATTTTGACGATGAACCCGGTAACGAAGCCGACCCGCTGCTGGCCTGCGTGCCGCAGGAACGACGCGGCACCCTCGTGGCCAAGCCCGATGCGTCAGGTGTGTACCAGTGGAACGTGATCCTGCAGGGCACGGATGCCGAAACGGTGTTCTTCGATTACTGA	MTLNATTSHTVGPYYHIGLTWLNREDLTDEQTLGQRVAITGQVVDGNGQFVNDAMLEVWQANAAGKYAHPEDDQDKPLDPHFDGFGRVPVDAEGRFRFTTIKPGTVPGLGGTTQAPHLVVLVFARGLVKHLLTRIYFDDEPGNEADPLLACVPQERRGTLVAKPDASGVYQWNVILQGTDAETVFFDY	PGPT0005010_750	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005010-pcaG-K00448	NA	NA
D1-36_03824	705	pcaH	COG3485	Protocatechuate 3,4-dioxygenase beta chain	ATGACTGACAAGCCTGGTTACCGCCGCCCTCAAGTGGGCACCCAGCCGGAATACCTGCACCCGTCGTACCAGTCCACCAACCTGCGTTCGCCGTCGAAACCTTTGGTGTATCTGCCTCATTCGCTGTCGGAAATCACCGGCCCGACTGTGGGCGCAGATCGCATCCAGGAGAAGGACCACGACCTGACCGCCCAGCACACTGGCGAGCCGCTCGGCGAGCGGATCATCATTCATGGGCGCGTGCTGGATGAGCACGGCGAGCCGGTGCCGGGCGTTCTCGTGGAGATCTGGCAGGCCAACGCCGCCGGACGCTACAACCACGACCGTGACAACCATGACGCGCCGCTGGACCCGAACTTCACCGGCACCGGTCGCACCGTCACCGACGCCGACGGTTGGTATCAATTCCAGACCATCAAGCCCGGCGCTTACCCGTGGGGCAATCACCACAACGCCTGGCGCCCGGCGCATATCCACTTCTCACTGTTCGGGCCGAGCATCCTGACGCGCCTAGTGACGCAGATGTATTTCCCCGGCGACCCGTTGCTGGAATACGACCCGATCTATAACTGCGTGCCGGACACCAGTGCCAAGGAACGCTTGATCGCCCGGTTCGACCTGGAAAAAACCGTCCCTCACTACGCCCTCGGTTATCGCTGGGACATCGTCTTGCGCGGCCGCGATGCCACGCCGATGGAGAAATAA	MTDKPGYRRPQVGTQPEYLHPSYQSTNLRSPSKPLVYLPHSLSEITGPTVGADRIQEKDHDLTAQHTGEPLGERIIIHGRVLDEHGEPVPGVLVEIWQANAAGRYNHDRDNHDAPLDPNFTGTGRTVTDADGWYQFQTIKPGAYPWGNHHNAWRPAHIHFSLFGPSILTRLVTQMYFPGDPLLEYDPIYNCVPDTSAKERLIARFDLEKTVPHYALGYRWDIVLRGRDATPMEK	PGPT0005015_811	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005015-pcaH-K00449	NA	NA
D1-36_03825	1203	pcaF		Beta-ketoadipyl-CoA thiolase	ATGCGCGACGTTTTTATCTGTGATGCGATTCGAACCCCCATCGGCCGGTTCGGCGGCAGCCTGGCCGCCGTGCGTGCCGATGATCTGGCCGCCGTGCCGATCAAGGCATTGATGGAGCGCAACCCATCCGTGGACTGGAATGCAGTGGACGAGGTATTCCTCGGCTGCGCCAACCAGGCCGGCGAGGACAACCGCAACGTCGCGCGCATGGCGCTGCTGTTGGCGGGCCTCCCTGAAAGTGTTCCTGGCGTGACCCTCAACCGCCTCTGCGCTTCGGGCATGGATGCTATCGGGACCGCGTTCCGCGCCATCGCCAGCGGCGAGATGGAACTGGCGATTGCTGGCGGCGTGGAGTCGATGTCCCGTGCGCCGTTCGTGATGGGCAAGGCCGACGCGGCGTTTTCCCGCAACATGAAACTGGAAGACACCACCATCGGCTGGCGCTTCATCAACCCTTTGATGAAAGCCCAGTACGGCGTGGACGCGATGCCGCAGACGGCGGATAACGTGGCCGACGACCATGTTGTGTCCCGCGCCGACCAGGACGCCTTCGCCGTGCGCAGCCAGCAGCGGGCGGCAGCGGCCCAGGCGGCCGGTTTTTTTGCCGAGGAAATCGTGCCGGTGCGCATCGCCCACAAAAAAGGTGAAACCGTGGTCGAGCAGGACGAGCATCCACGGGCTGACACCACGCTGGAGACCCTGAGCAAGCTCAAGCCGGTCAACGGCGCGGACAAAACCGTCACCGCCGGCAACGCCTCGGGTGTGAATGACGGCGCGGCCGCGATGATCCTGGCGTCTGCAGAGGCGGTTAAAAAACATGGCCTGACGCCTCGGGGCAAAGTGCTGGGCATGGCCAGTGCCGGGGTGGCGCCCCGGGTAATGGGCATCGGCCCGGTGCCAGCGGTGCGCAAGCTCACCGAGCGCCTGGGAATGGCCGTCGCCGATTTTGACGTGATCGAGCTTAACGAAGCCTTTGCCAGCCAAGGCTTGGCGGTACTGCGGGACTTGGGGCTGGCGGACGATGCGCCGCAAGTCAACCCGAACGGTGGCGCCATCGCCCTGGGCCACCCGCTGGGCATGAGCGGGGCACGGTTGGTGCTGACCGCGTTGCATCATCTGGAAAAGACCGGCGGCAAGAAAGGCCTGGCGACCATGTGTGTTGGGGTCGGCCAAGGTCTGGCGCTGGCGATCGAACGCGTCTGA	MRDVFICDAIRTPIGRFGGSLAAVRADDLAAVPIKALMERNPSVDWNAVDEVFLGCANQAGEDNRNVARMALLLAGLPESVPGVTLNRLCASGMDAIGTAFRAIASGEMELAIAGGVESMSRAPFVMGKADAAFSRNMKLEDTTIGWRFINPLMKAQYGVDAMPQTADNVADDHVVSRADQDAFAVRSQQRAAAAQAAGFFAEEIVPVRIAHKKGETVVEQDEHPRADTTLETLSKLKPVNGADKTVTAGNASGVNDGAAAMILASAEAVKKHGLTPRGKVLGMASAGVAPRVMGIGPVPAVRKLTERLGMAVADFDVIELNEAFASQGLAVLRDLGLADDAPQVNPNGGAIALGHPLGMSGARLVLTALHHLEKTGGKKGLATMCVGVGQGLALAIERV	PGPT0001570_149	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001570-pcaF-K07823	NA	NA
D1-36_03826	780	catJ		3-oxoadipate CoA-transferase subunit B	ATGACCTATTCCACCAATGAGATGATGACGGTCGCGGCGGCGCGGCGGTTGAAGAACAATGCCGTGTGCTTCGTGGGCATCGGTTTGCCGTCGAAAGCGGCCAATCTGGCACGGCTGACTTCGTCACCCGATGTAGTGCTGATCTACGAGTCCGGTCCGATCGGTGCCAAGCCCAGCGTATTGCCGCTGTCCATCGGCGACGGTGAGCTGGCGGAAACCGCGGACACTGTCGTACCGACCGGTGAGATTTTCCGCTACTGGCTGCAAGGGGGGCGTATCGACGTCGGTTTCCTCGGTGCGGCCCAGGTCGACCGTTTCGGCAACATCAACACCACGGTGGTGGGTGACTACCATCAGCCGAAAGTCCGTCTGCCCGGCGCGGGTGGCGCGCCGGAAATTGCCGGTTCCGCCAAGAGTGTGCTGATCATCCTCAAGCAGTCGGCCCGTTCGTTTGTCGACAAGCTGGATTTCATCACCTCGGTCGGTCACGGCGAAGGTGGCGATTCGCGCAAGCGCCTTGGCTTGCCGGGTGCCGGGCCGGTGGGGATTATCACTGACCTGTGCATCATGGAGCCGGAAGCCGGCAGTCATGAATTCGTGGTCACCTCGCTGCACCCTGGCGTGACTCGCGAGCAAGTGATCGCGGCCACCGGGTGGGCGATCCGCTTCGCCGACCAGGTGCAGACCACCGCCGAGCCGACCGAGGTGGAGCTGCGCGCACTGCGTGACCTTGAGGCCCGCACCGCGGCGGCCCACGGGCAGACACCGGGAGAAGCCTGA	MTYSTNEMMTVAAARRLKNNAVCFVGIGLPSKAANLARLTSSPDVVLIYESGPIGAKPSVLPLSIGDGELAETADTVVPTGEIFRYWLQGGRIDVGFLGAAQVDRFGNINTTVVGDYHQPKVRLPGAGGAPEIAGSAKSVLIILKQSARSFVDKLDFITSVGHGEGGDSRKRLGLPGAGPVGIITDLCIMEPEAGSHEFVVTSLHPGVTREQVIAATGWAIRFADQVQTTAEPTEVELRALRDLEARTAAAHGQTPGEA	PGPT0006110_342	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_STYRENE|DERIVATE_DEGRADATION	XENOBIOTIC_ACRYLONITRITE|ACRYLAMIDE_DEGRADATION,PGPT0006110-gctB-K01040	NA	NA
D1-36_03827	861	catI		3-oxoadipate CoA-transferase subunit A	ATGGCTGAAATCCTTTCGCTGCACGATGCGGTGAAGCAGTTCGTCAACGACGGCGATACCGTCGCGCTCGAAGGCTTCACCCACTTGATCCCGACAGCGGCGGGTCATGAAATCATCCGTCAGGGCAAGAAAGACCTGACGCTGGTGCGCATGACGCCCGACCTGATCTATGACCAGTTGATCGGAGCCGGTTGTGCCCGCAAGCTGATTTTTTCCTGGGGCGGCAACCCAGGCGTGGGCTCGTTGCATCGGTTGCGTGACGCAGTGGAAAAGCAATGGCCGCATCCGCTGGAAATCGAGGAGCACAGCCACGCAGACCTGGCCAATGCCTACGTTGCCGGTGCCTCCGGCCTACCGTTCGCGGTGCTGCGGGCCTACGCGGGTTCCGACCTGCCGAAGGTCAACCCGCTGATCAAGAGCGTGACCTGTCCCTTTACCGGTGAGGTGTTGGCCGCCGTGCCTTCGGTGCGCCCGGACGTCACGGTGATCCACGCTCAGAAAGCCGACCGCAAAGGAAACGTGCTGCTGTGGGGCATCCTCGGCGTGCAGAAAGAAGCCGCCCTGGCCGCCAAGCGCTGCATCGTCACCGTGGAAGAAATCGTCGATGACCTGAATGCGCCGATGAACGCCTGCGTGCTGCCGACCTGGGCGTTGAGCGCCGTGTGCCATGTGCCCGGCGGCGCCCATCCGTCCTACGCCCACGGTTATACCGAGCGAGATAATCGTTTCTACCAAGCGTGGGACCCCATCGCCCGGGATCGCGATACGTTTAGCGCTTGGATCGACGAATACATTCGCGGCACCCAGGATTTCAGTGAATTCCAGGCCCGGCTCGCAGCCGCTTCGCAGGTGAAACCATGA	MAEILSLHDAVKQFVNDGDTVALEGFTHLIPTAAGHEIIRQGKKDLTLVRMTPDLIYDQLIGAGCARKLIFSWGGNPGVGSLHRLRDAVEKQWPHPLEIEEHSHADLANAYVAGASGLPFAVLRAYAGSDLPKVNPLIKSVTCPFTGEVLAAVPSVRPDVTVIHAQKADRKGNVLLWGILGVQKEAALAAKRCIVTVEEIVDDLNAPMNACVLPTWALSAVCHVPGGAHPSYAHGYTERDNRFYQAWDPIARDRDTFSAWIDEYIRGTQDFSEFQARLAAASQVKP	PGPT0006105_472	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_STYRENE|DERIVATE_DEGRADATION	XENOBIOTIC_ACRYLONITRITE|ACRYLAMIDE_DEGRADATION,PGPT0006105-gctA-K01039	NA	NA
D1-36_03828	1347	pcaK	COG0477	4-hydroxybenzoate transporter PcaK	ATGAATCAGCCCCAGACTTCCGTAGGCACCTGCCTCGATGTGCAGTCCTTCATCAACGCTCAACCGATCTCACGCTATCAGTGGCGCGTGGTCATTCTCTGTTTCCTGATCGTCTTCCTCGATGGCCTCGATACCGCGGCCATGGGTTTCATCGCGCCGGCGTTGTCCCAGGATTGGGGCATCGACCGGGCCAGCCTTGGCCCGGTCATGAGTGCCGCACTGATCGGCATGGTCTTCGGCGCCCTGGGCTCCGGCCCGTTGGCCGATCGCTTTGGACGAAAACTCGTATTGGTCGGCGCGGTCGTGTTGTTTGGCGCGTTCAGCCTGGCCTCGGCGTTCTGTACCAATGTCGATCAATTGCTGGTGCTGCGCTTCCTGACCGGCCTGGGATTGGGCGCCGGCATGCCGAACGCCACCACTCTGCTGTCGGAATACACCCCGGAGCGCAAGAAATCCCTGCTGGTGACCAGCATGTTCTGTGGCTTCAACCTCGGCATGGCCGGCGGCGGGTTCATCTCGGCCAAGTTGATCCCGGCATTTGGCTGGCACAGCCTCCTGCTGATTGGCGGCGTTCTGCCGCTGATACTCGCGGTCGTGCTGGTGTTCTGGTTGCCGGAGTCCGCGCGTTACCTGGTTGTGCGTAACCGTGGCACCGACAAAGTGCGCAAGACCCTGGCGCCGATTGACCCAACGACTATCGCCCAGGCGTCCAGCTTCAGCGTGCCGGAGCAGACAACCGTGAAGGCGCGCAACGTGCTGGCGGTGATTTTCTCGGGCACTTACAGCGCCGGCACTTTGTTGCTGTGGCTCACGTATTTCATGGGCCTGGTGATCGTTTATCTCCTGACCAGTTGGTTGCCGACCCTGATGCGTGACAGCGGCGCGAGCATGGAGCAGGCGGCGTTCATCGGCGCGCTGTTCCAGTTCGGTGGGGTATTGAGCGCCGTTGGCGTGGGCTGGGCGATGGATCGGTTCAATCCGCACAAGGTTATCGGCATTTTCTATCTGTTGGCAGGGCTGTTTGCCTATGCGGTAGGGCAGAGTCTGGGCAACATCACCCTGCTTGCCACCTTGGTGCTGGTGGCGGGCATGTGCGTCAACGGCGCCCAATCGGCGATGCCGTCCCTGGCGGCGCGCTTCTACCCGACCCAGGGCCGGGCCACCGGTGTTTCCTGGATGCTGGGCATAGGTCGCTTCGGGGCGATTCTCGGGGCCTGGATGGGCGCGACCCTGCTGGGGCTGGGCTGGAACTTTGAACAGGTCCTGACCGCGTTGGTGATCCCGGCGGCCCTGGCGACCGTGGCGGTGGTGATCAAGGGCATGGTCAGCCATGCGGACGCAACCTGA	MNQPQTSVGTCLDVQSFINAQPISRYQWRVVILCFLIVFLDGLDTAAMGFIAPALSQDWGIDRASLGPVMSAALIGMVFGALGSGPLADRFGRKLVLVGAVVLFGAFSLASAFCTNVDQLLVLRFLTGLGLGAGMPNATTLLSEYTPERKKSLLVTSMFCGFNLGMAGGGFISAKLIPAFGWHSLLLIGGVLPLILAVVLVFWLPESARYLVVRNRGTDKVRKTLAPIDPTTIAQASSFSVPEQTTVKARNVLAVIFSGTYSAGTLLLWLTYFMGLVIVYLLTSWLPTLMRDSGASMEQAAFIGALFQFGGVLSAVGVGWAMDRFNPHKVIGIFYLLAGLFAYAVGQSLGNITLLATLVLVAGMCVNGAQSAMPSLAARFYPTQGRATGVSWMLGIGRFGAILGAWMGATLLGLGWNFEQVLTALVIPAALATVAVVIKGMVSHADAT	PGPT0005400_1001	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-HYDROXYBENZOATE_METABOLISM,PGPT0005400-pcaK-K08195	NA	NA
D1-36_03829	843	pcaR	COG1414	Pca regulon regulatory protein	ATGAACGACCAATTGCGCAATGCCTTTACGTCAGTCGCGCCACCGATCGTCGCCTCGCCGGCCAAGCGGATCCAGGCCATGACGGGTGACCCGGATTTCATGACCTCGCTGGCCCGGGGCCTTGCCGTGGTCCAGGCTTTCCAGGAGCGCAAGCGGCACCTGACCATCGCGCAGATCAGCCATCGCACGGAAATCCCCCGCGCCGCCGTCCGCCGTTGCCTGTATACCTTGATCAAGCTCGGCTATGCGACCACCGATGGGCGTACCTATTCGTTGCTGCCCAAAGTGCTGACGCTGGGCCACGCCTATTTGTCATCGACGCCGCTGGCCGTGTCCGCCCAGCCTTATCTGGACCGCATGAGCGAACAGCTGCACGAGGCCTGCAACATGGCCACGCTCGAAGGCGACGATATCCTCTACATCGCCCGGTCGGCGACCACCCAGCGGCTGATTTCCGTGGACCTGTCCGTCGGCGGCCGCCTGCCGGCGTATTGCACGTCCATGGGCAGGATCCTGCTGGCGGCCCTGGACGACGCTTCGCTGCGAGATTACCTCGACCATGCCGACCTTCAGGCCAAGACCAGCAGGACCCTGCATACGCCCGAGGCGCTGCTTGAATGCTTGCATCAGGTCCGGCAGCAAGGGTGGTGCATCGTCGATCAGGAGTTGGAGCAGGGGCTGCGCTCAATTGCCGTGCCGGTCTATGACGCGTCGGGTCAAGTAGTCGCGGCCCTGAATGTCAGCACGCATGCCGGGCGGGTCAGCCGCAATGAGTTGGAGCAACGTTTCCTGCCAGGTCTGCTGGGGGCCAGCCGCGACTTGAGCGCACAGTTGTTTTCTTAA	MNDQLRNAFTSVAPPIVASPAKRIQAMTGDPDFMTSLARGLAVVQAFQERKRHLTIAQISHRTEIPRAAVRRCLYTLIKLGYATTDGRTYSLLPKVLTLGHAYLSSTPLAVSAQPYLDRMSEQLHEACNMATLEGDDILYIARSATTQRLISVDLSVGGRLPAYCTSMGRILLAALDDASLRDYLDHADLQAKTSRTLHTPEALLECLHQVRQQGWCIVDQELEQGLRSIAVPVYDASGQVVAALNVSTHAGRVSRNELEQRFLPGLLGASRDLSAQLFS				NA	NA	NA	NA	NA
D1-36_03830	201			hypothetical protein	GTGACGAAAGAAGAACTGCGCGCGGAACTTGAGCGCCAGGAACAACGTTACAAGGAAGTCTACGGCGGGGAAATCACCACCTACGCCGCGCAACCCGAACCGGAACGCAAACCTTGGCGCAAACGCGCCACCGTCCAGGACCAGGCTTTCAGCCAGGAACTTCAAAAGATGGAAAAAGAGCTCAAGTCCGAAGAAGGATGA	MTKEELRAELERQEQRYKEVYGGEITTYAAQPEPERKPWRKRATVQDQAFSQELQKMEKELKSEEG				NA	NA	NA	NA	NA
D1-36_03831	1476	pitA	COG0306	Low-affinity inorganic phosphate transporter 1	ATGATCGATTTATTCAGCGGACTGGATGCTTGGGTGCTCGTGAGCCTCTTGCTCGCCCTGGCTTTTGTCCTCGCCTTCGAGTTCATCAACGGCTTTCATGACACCGCTAACGCGGTTGCCACTGTTATCTACACCAAAGCCATGCCGCCTCACCTGGCGGTGTTCTTTTCCGGTGTGTTCAATTTCCTCGGCGTGTTGCTGGGCGGTGTGGGGGTGGCGTATGCCATCGTGCACTTGCTGCCCGTGGAACTGTTGATCAACGTGAACACCGGCCACGGGTTGGCCATGGTGTTCTCACTGCTTGCGGCGGCCATCACCTGGAACCTGGGCACGTGGTACTTCGGTATCCCGGCCTCCAGCTCCCACACCCTGATCGGCTCGATCCTTGGCGTCGGCCTGGCCAACGCATTGATCAATGACATTGCGCTGCGCGATGGCGTGAATTGGCAGAAGGCAATCGACATCGGTGCTTCCCTGGTGTTCTCGCCCATGGCCGGCTTCCTGATCGCCGCCCTGGTGTTGATCGGCCTGAAATGGTGGCGTCCGTTGTCGAAAATGCACAAGACGCCGGAACAGCGCCGCAAGATCGACGACAAGAAACACCCGCCATTCTGGAACCGCCTGGTGCTGGTGATTTCGGCCATGGCCGTCAGCTTCGTCCACGGTTCCAACGACGGCCAGAAAGGCATCGGCCTGATCATGCTGGTGCTGATCGGGATCGTCCCCGCGCAGTTCGTACTCGACCTGAACAGCACGACCTACCAGATCGAGCGTACCCGCGACGCGACCCTGCACTTGAGCCAGTTCTACAAGCGCAACAGTGAATCCCTCGGCGAATTCCTGGCCTTGGGCAAGAGTGTCGAAGGCGATCTGCCGGAGAAATTCCGTTGCAACCCGCAACAGACCGAACCGACCATCAACGCGCTGCTCGATACGCTCAAAGGCGTGGCGGACTACCACTCGCTGCCTTCGGAAAGCCGTATCGAAGTGCGTCGCTACCTGCTCTGCCTGGACGACACGGCGAAAAAGGTCGGCAAGCTGCCGGGTTTGGCGGCTCGTGAGAAAGACGACCTGAACAAGCTGCGCAAGGACCTGACCGCGACCACCGAATACGCGCCGTTCTGGGTGATCCTGGCGGTTGCCCTGGCGCTGGGCCTGGGCACCATGGTCGGCTGGAAGCGCGTGGTACTGACCATCGGCGAGAAGATCGGCAAGCAAGGCATGACCTACGCCCAAGGCATGTCGGCCCAGATCACCACCGCTTGCATGATTGGCGCGGCGAACGTCTTCAGCCTGCCGGTTTCCACCACCCATGTACTGTCTTCCGGCGTGGCGGGCACCATGGTCGCCAACAAGAGCGGCCTGCAAGGCGGTACGGTGAAGACCATCCTGCTGGCCTGGGTGCTGACCTTGCCGGCAACGGTGGCCCTGTCGGCGGCGCTGTTCTGGCTGGCGTCCAAGGCCATCAGCGGCTGA	MIDLFSGLDAWVLVSLLLALAFVLAFEFINGFHDTANAVATVIYTKAMPPHLAVFFSGVFNFLGVLLGGVGVAYAIVHLLPVELLINVNTGHGLAMVFSLLAAAITWNLGTWYFGIPASSSHTLIGSILGVGLANALINDIALRDGVNWQKAIDIGASLVFSPMAGFLIAALVLIGLKWWRPLSKMHKTPEQRRKIDDKKHPPFWNRLVLVISAMAVSFVHGSNDGQKGIGLIMLVLIGIVPAQFVLDLNSTTYQIERTRDATLHLSQFYKRNSESLGEFLALGKSVEGDLPEKFRCNPQQTEPTINALLDTLKGVADYHSLPSESRIEVRRYLLCLDDTAKKVGKLPGLAAREKDDLNKLRKDLTATTEYAPFWVILAVALALGLGTMVGWKRVVLTIGEKIGKQGMTYAQGMSAQITTACMIGAANVFSLPVSTTHVLSSGVAGTMVANKSGLQGGTVKTILLAWVLTLPATVALSAALFWLASKAISG	PGPT0002645_329	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002645-pitA|pit-K16322	NA	NA
D1-36_03833	117			hypothetical protein	ATGTTTATCGATAATGTGGTGTTTGCCGGTGTGTTGACGGTCGGCCTCATGTTCGTGTTTTTCGCAGGTTTTGGATTATTCATCTGGAAAGATGCGCACAAGCGCAAGAAGCCGTAG	MFIDNVVFAGVLTVGLMFVFFAGFGLFIWKDAHKRKKP				NA	NA	NA	NA	NA
D1-36_03834	162			hypothetical protein	ATGAGCCAAGAAGACAAGCTGATTGACCTGGGCGCTGAGCGCGCCAAGCGCGTTCACGACCTCAACGAAAAACGCCTCAATGAAGTTCGCCAGGCTTTCGAGCAGGCCATGCCGCTGGGCAAGCCAAAGAAAAAACCGAAAAACAAACCGAAAAAGCGCTGA	MSQEDKLIDLGAERAKRVHDLNEKRLNEVRQAFEQAMPLGKPKKKPKNKPKKR				NA	NA	NA	NA	NA
D1-36_03835	342			hypothetical protein	ATGTTGCCACCCATGCTTCCCTTGAGCGCCGTACCCGTTACCGCGCAGCAGGATCCTATCCGGCCGCGACCGGATATTCCGCCCGTGGTCCCTGTTCAGGAAAGCTCCAGCGAAAGCACCATCGACCTGCAAAAGCGCGATCCTGAAGAAACCGCGTTGTTGCTGCGCGAGGAACAGCGCCGCCAGCAGGAGCGTGAAAGGCGTCGCCGTGAAGCCGATGAAGACCCCGACGAACATTTGGCGGTGCCGGGCACCGAGCTGAACGCCGACAACACCGTACCGGTCGTACCGCTGGTGGAAGGGGAGTCGCGCCAAGGCCTGTGGGTCGATATCCAGATCTGA	MLPPMLPLSAVPVTAQQDPIRPRPDIPPVVPVQESSSESTIDLQKRDPEETALLLREEQRRQQERERRRREADEDPDEHLAVPGTELNADNTVPVVPLVEGESRQGLWVDIQI				NA	NA	NA	NA	NA
D1-36_03836	2847	rapA	COG0553	RNA polymerase-associated protein RapA	ATGGCGCAGCAGTATCAACCGGGGCAACGCTGGATCAGTGACAGCGAAGCCGAGCTGGGTTTAGGCACCGTTCTGGCACAGGACGGCCGCTTGTTGACCGTGCTCTATCCGGCCACTGGCGACACTCGCCAGTACGCGCTACGGAATGCGCCCTTGACCCGCGTACGGTTTTCGCCGGGCGACGTGATCACTCACTTCGAAGGCTGGAAAATGACCGTGCGCGAAGTCGACGACGTCGATGGACTGTTGGTCTACCACGGCCTTGACGGCCAGAACGAAGTCGTCACGCTGCCCGAAACCCAGCTGTCGAACTTCATCCAGTTCCGCTTGGCCAGCGACCGCCTGTTCGCCGGCCAGATCGACCCACTGGCCTGGTTTTCCCTGCGCTACCACACGCTGGAACATACCAGCCGCCAATTGCAGTCCCCGCTTTGGGGCCTGGGTGGCGTCCGCGCCCAACCGATCGCCCACCAACTGCACATCGCCCGCGAAGTGGCTGACCGCATTGCGCCACGGGTACTGCTGGCAGACGAAGTGGGCCTGGGCAAGACCATCGAAGCCGGCCTCATCATCCACCGCCAACTGCTTTCCGGGCGCGCCAGCCGCATCCTGATCCTGGTCCCGGAAAACCTCCAGCACCAATGGCTGGTGGAAATGCGCCGGCGCTTCAACCTGCAGGTGGCGCTGTTCGACGAAGAACGCTTCATTGAAAGCGATGCCAGCAACCCCTTCGAAGACACCCAACTGGCGCTGGTGGCGCTGGAATGGCTGGTAGACGACGAGAAGGCCCAGGACGCGCTGTTTGCCGCCGGATGGGACCTGATGGTTGTCGACGAAGCCCATCACCTGGTGTGGCACGAAGACCATGTCAGCCCTCAATACGCACTGGTGGAGCAACTTGCCGAAACCATTCCCGGCGTACTGCTGCTGACCGCGACACCTGAGCAACTGGGACAGGACAGCCACTTCGCCCGTCTGCGCCTGCTGGACCCGAACCGTTTCCATGACCTGCAGGCCTTCCGTGCCGAAAGCGAGAACTATCGCCCGGTCGCCGAAGCCGTCCAGGAGTTGTTGGACAAAGGGCGCCTGTCGCCCGAAGCCCACCAGACCATCCACGGTTTCCTGGGTAACGAGGGCGAAGCGCTGCTGACGGCTGTCAACGATGGCGACATCGAAGCCAGCGCCCGCCTGGTTCGTGAATTGCTCGACCGACATGGCACTGGCCGCGTGCTGTTCCGCAATACCCGCGCCGCCGTGCAAGGCTTCCCGGAGCGCAAGCTGCACGCTTATCCTTTGCCATGCCCGGACGAATACCTGGAACTGCCGCTGGGCGATCATGCCGAGCTGTACCCGGAAGTCAGCTTCCAGGCCCAGCCGGACGCCAGCGAAGAAGAGCGCTGGTGGAAATTCGACCCGCGCGTCGAATGGCTGATCGACCAGTTGAAAATGCTCAAGCGCACCAAGGTCCTGGTGATCTGCGCCCACGCGGAAACCGCCATGGACCTGGAAGACGCCCTGCGCGTGCGCTCTGGCATCCCTGCCACGGTGTTCCACGAAGGCATGAACATTCTGGAGCGCGACCGCGCGGCCGCTTACTTCGCTGATGAAGAGTTTGGCGCCCAGGTGCTGATCTGCTCGGAAATCGGCAGCGAAGGTCGTAACTTCCAGTTTGCCCATCACCTGGTGCTGTTCGACCTGCCATCGCACCCGGACCTGCTGGAACAACGGATCGGCCGCCTGGACCGGATCGGCCAGAAACACACCATCGAGCTGCACGTGCCCTACCTGGAAACCAGCCCGCAGGCCCGGCTGTTCCAGTGGTATCACGAAGCCCTGAACGCGTTTCTCAACACCTGCCCGACCGGCAACGCCTTGCAGCATCAATTCGGCCCGCGCCTGCTGCCATTGCTCGAAGAAGCCGACGATGGCGACTGGCAAGCGCTGATCGACGAGGCCCGCGTGGAGCGCGAGCGCCTGGAAGCCGAGCTGCATACCGGCCGCGATCGCCTGCTGGAGCTCAATTCCGGCGGCGCGGGTGAAGGTGATGCGCTGGTGGAGGCCATTCTCGAACAGGATGACCAGTTTGCCCTGCCGATCTACATGGAGACCTTGTTCGACGCCTTCGGTATCGACAGCGAGGACCATTCAGACAACGCGCTGATCCTCAAGCCGAGCGAGAAAATGCTCGACGCCAGTTTCCCCTTGGGCGACGACGAAGGCGTGACCATCACCTACGACCGCAACCAGGCGCTGTCTCGCGAGGACATGCAATTCATCACCTGGGAGCACCCGATGGTGCAAGGCGGCATGGACCTGGTGCTGTCGGGCTCCATGGGCAACACGGCCGTGGCGCTGATCAAGAACAAGGCACTCAAACCCGGCACCGTGCTGCTGGAACTGCTCTATGTCAGCGAAGTGGTCGCCCCGCGTTCGCTGCAGCTGGGCCGCTACCTGCCACCAGCGGCCCTGCGCTGCCTGCTGGACGCCAACGGCAACGACCTGGCGGCTCGGGTCTCTTTCGAAACCCTGAACGACCAGCTCGAAAGCGTGCCACGCGCCAGCGCCAACAAATTCATCCAGGCCCAGCGCGACCAACTCGCGCCGCGGATCAATGCCGGCGAACAGAAAATCATCCCACGCCATGCCGAGCGCGTGGCCGAGGCCCAACGTCGCCTGGCGGCTGATACCGAAGAAGAGCTGGCACGCTTGACCGCGTTGCAAGCGGTCAACCCAACCGTGCGGGACAGCGAGCTGGAGGCTTTGCGCCAGCAGCGTGAGCAAGGGTTGGCGATGTTGGAGAAGGCTGCGTTGCGGTTGGAGGCAATTCGGGTGCTGGTGGCGGGGTAA	MAQQYQPGQRWISDSEAELGLGTVLAQDGRLLTVLYPATGDTRQYALRNAPLTRVRFSPGDVITHFEGWKMTVREVDDVDGLLVYHGLDGQNEVVTLPETQLSNFIQFRLASDRLFAGQIDPLAWFSLRYHTLEHTSRQLQSPLWGLGGVRAQPIAHQLHIAREVADRIAPRVLLADEVGLGKTIEAGLIIHRQLLSGRASRILILVPENLQHQWLVEMRRRFNLQVALFDEERFIESDASNPFEDTQLALVALEWLVDDEKAQDALFAAGWDLMVVDEAHHLVWHEDHVSPQYALVEQLAETIPGVLLLTATPEQLGQDSHFARLRLLDPNRFHDLQAFRAESENYRPVAEAVQELLDKGRLSPEAHQTIHGFLGNEGEALLTAVNDGDIEASARLVRELLDRHGTGRVLFRNTRAAVQGFPERKLHAYPLPCPDEYLELPLGDHAELYPEVSFQAQPDASEEERWWKFDPRVEWLIDQLKMLKRTKVLVICAHAETAMDLEDALRVRSGIPATVFHEGMNILERDRAAAYFADEEFGAQVLICSEIGSEGRNFQFAHHLVLFDLPSHPDLLEQRIGRLDRIGQKHTIELHVPYLETSPQARLFQWYHEALNAFLNTCPTGNALQHQFGPRLLPLLEEADDGDWQALIDEARVERERLEAELHTGRDRLLELNSGGAGEGDALVEAILEQDDQFALPIYMETLFDAFGIDSEDHSDNALILKPSEKMLDASFPLGDDEGVTITYDRNQALSREDMQFITWEHPMVQGGMDLVLSGSMGNTAVALIKNKALKPGTVLLELLYVSEVVAPRSLQLGRYLPPAALRCLLDANGNDLAARVSFETLNDQLESVPRASANKFIQAQRDQLAPRINAGEQKIIPRHAERVAEAQRRLAADTEEELARLTALQAVNPTVRDSELEALRQQREQGLAMLEKAALRLEAIRVLVAG				NA	NA	NA	NA	NA
D1-36_03837	879			hypothetical protein	ATGCCCACGCGTAACGATGCCAACGACGACTTCGACGATGTACCGAGCCTGCGGATGCGGGCGGACATCCCCGATGACGATGACTTCCTGAGCAATCGCCCGCCCCACGTGCAGGCGCGTCCGGCGTCCGTTGCGGCGGCGAAGGTCAAGGCACCGAGCACCGGGCCGCTGTGGGCCTTGGTCGGAGCCTTGCTGTGCGCGCTGGCCTTCCTGGCGTGGTGGAGTTTCCAGCAGATTTCCCTGATGGAACAGCAATTGGTGGCCACCCAGGAAAGCTTCGCCCGCATCAGTGAGGATGCGGCCGGGCGCTTGCAGGACATTTCCGGCAAGGTGGTCGCCGGACAGTCCAATGTCATGAGCGACAGTGAAGCCTTGAAACTGCAGATCAGACAGTTGGAAAACAAGATGCAAGAGCAGGGCCGCCAATTCGACGGCAAGCTGCAGGAACAATATAAAGCGCTGCAAGGCGCCTTCGGCCCGTCCGCCGACCTGGACACGCAACTGGCCAAGATGATCACCCAGGCTTCGCAGCAGGAAAACACCAACACCCAGCTGCAAGCGGCCAACAAGGAACTCCAGGCTCAGGTCAAGGCGTTGGCGGCGGAAGTGTCGGCCTTGAAGAACCAAGGCGAGGGTGGTGCCCTGGATGCCCAGCTCAAAAGCATCGGTGCGGACATCACGGCTTTGAAACGAGCCACTTCCAACTCGGCCATCGAGCGTTTGGAGCAGGACATGGTCGTGCTCAAGAGCCAACAGGAAAACCGTTCCGGCAACACCGCCGAATTCGATGCCTTCCGCGGCCAGGTCACCCGCAACATCAACACGTTGCAATCGCAGATCCAGTACCTGCAACAGCAACTGAGCAACCGATCTCAGTAA	MPTRNDANDDFDDVPSLRMRADIPDDDDFLSNRPPHVQARPASVAAAKVKAPSTGPLWALVGALLCALAFLAWWSFQQISLMEQQLVATQESFARISEDAAGRLQDISGKVVAGQSNVMSDSEALKLQIRQLENKMQEQGRQFDGKLQEQYKALQGAFGPSADLDTQLAKMITQASQQENTNTQLQAANKELQAQVKALAAEVSALKNQGEGGALDAQLKSIGADITALKRATSNSAIERLEQDMVVLKSQQENRSGNTAEFDAFRGQVTRNINTLQSQIQYLQQQLSNRSQ				NA	NA	NA	NA	NA
D1-36_03838	993	oleD	COG0451	2-alkyl-3-oxoalkanoate reductase	ATGAAAATTCTGGTCACCGGCGTAAGCGGCTTCATTGGCGGACGCTTTGCGCGTTTCGCCCTGGAGCAAGGCCTGGATGTTCGGGTCAATGGCCGCCGGCCTGAAAACGTCCAGCACCTGGTGACGCGCGGCGCCGAGTTCATCGAGGGCGATCTGGGCGACCCGATGTTGGCCCGGGACCTGTGTCGCGATGTCGACGCCGTGGTGCATTGCGCCGGCTCGGTGGGGTTATGGGGACGCTACCAGGACTTTCACCAAGGCAATGTCCAGCTCACCGAGAACATCGTCGAGGCTTGTCTGAAGCAAAAGGTCCGGCGACTGGTTCACCTTTCTTCGCCCTCGATCTACTTCGATGGTCGTGACCACTTGGGATTGACCGAAGAACAGGTGCCTAAACGTTTCAAGCATCCCTACGCTGCCACCAAGTACCTGGCCGAACAGAAAGTCTTCGGTGCTCAGGAGTTCGGTTTGGAAGTGCTGGCCCTGCGCCCGCGATTCGTCACCGGTGCCGGCGACATGAGCATTTTCCCGCGGCTGCTTAAAATGCAGCGCAAGGGACGCCTGGCGATTGTTGGCAACGGCTTGAACAAAGTGGATTTCACCAGCGTACAGAACCTCAACGAAGCGCTGCTCAGCAGCCTGCTGGCCACCGATTCGGCCTTGGGCAAGGCTTATAACATCAGCAATGGCGTGCCTGTCCCGCTGTGGGATGTGGTCAATTATGTGATGCGGCAGATGGAAGTCCCGCAGGTCAGGCGTTACCGCTCCTATGGACTGGCCTACAGCGTTGCGGCCATGAACGAAGGTCTTTGCGCAATCTGGCCCGGACGGCCCGAACCGACGCTGTCACGCCTGGGCATGCAGGTGATGAGCAGGAATTTCACCCTGGATATCGACCGGGCACGGCACTGTCTGGATTATGATCCGAAGGTCAGCCTCTGGGCCGCCCTCGATGAATTCTGCGCCTGGTGGCGCGTCCAGCATGGCCGCTGA	MKILVTGVSGFIGGRFARFALEQGLDVRVNGRRPENVQHLVTRGAEFIEGDLGDPMLARDLCRDVDAVVHCAGSVGLWGRYQDFHQGNVQLTENIVEACLKQKVRRLVHLSSPSIYFDGRDHLGLTEEQVPKRFKHPYAATKYLAEQKVFGAQEFGLEVLALRPRFVTGAGDMSIFPRLLKMQRKGRLAIVGNGLNKVDFTSVQNLNEALLSSLLATDSALGKAYNISNGVPVPLWDVVNYVMRQMEVPQVRRYRSYGLAYSVAAMNEGLCAIWPGRPEPTLSRLGMQVMSRNFTLDIDRARHCLDYDPKVSLWAALDEFCAWWRVQHGR				NA	NA	NA	NA	NA
D1-36_03839	894	argP_2	COG0583	HTH-type transcriptional regulator ArgP	ATGTTCGATTACAAACTGCTTTCCGCCCTGGCGAGCGTTGTCGAGCAAGCTGGCTTCGAGCGAGCCGCGCAGGTGCTGGGATTGTCGCAATCGGCCATCTCCCAGCGGATAAAGCTACTCGAAGCGCGGGTCGGCCAGCCCGTGCTGGTGCGCGCCACGCCTCCGACGCCCACGGAAATCGGCCGTCGCCTGCTCAACCATGTACAACAGGTGCGTTTGCTGGAGCGCGACCTGCAAAGCCTGGTACCGGCGCTGGACGAAGAGGGCCTGCCGGAGCGCCTGCGCATTGCGCTGAACGCCGACAGCCTGGCCACATGGTGGGCCAGCGCGGTGGGGACATTCTGTGCCGAGCAGCATGTGTTGCTCGATTTAGTGGTGGAGGACCAGACCGTAGGCCTCAAGCGCATGCGCGCCGGAGAGGTCGCCGCTTGTCTTTGCGCCAGTGAACGCCCGGTGGCCGGCGCCCGCAGCGTGTTGCTGGGGGCCATGCGCTACCGGGCGCTCGCCAGTCCCGCCTTCATTGCCCGGCATTTCCCCGGCGGGGTGCGCGCCGATCTGCTGGCTCGCACACCTGCCCTGGTGTTCGGCCCGGATGATTTCCTGCAACACCGGTATCTGGCTTCCCTCGGCGTCGAAGGCGGATTCGAACACCATTTATGCCCATCATCCGAAGGTTTCCTTCGCCTTATCGAGGCGGGGCTTGGCTGGGGGCTAGTGCCCGAGCTGCAAGTTCGCGATGCACTGGGCAGAGGCGAACTGGTGGAATTACTCGCAGATAAGCCGATTGACGTGCCGCTGTACTGGCATCATTGGCGCAATGGCGGGCAGCTGCTCGGTTTGTTGACCGAGCAGCTGGTCGCAGCGGCAGGCAGCACGCTGCATGGGGTGAACTGA	MFDYKLLSALASVVEQAGFERAAQVLGLSQSAISQRIKLLEARVGQPVLVRATPPTPTEIGRRLLNHVQQVRLLERDLQSLVPALDEEGLPERLRIALNADSLATWWASAVGTFCAEQHVLLDLVVEDQTVGLKRMRAGEVAACLCASERPVAGARSVLLGAMRYRALASPAFIARHFPGGVRADLLARTPALVFGPDDFLQHRYLASLGVEGGFEHHLCPSSEGFLRLIEAGLGWGLVPELQVRDALGRGELVELLADKPIDVPLYWHHWRNGGQLLGLLTEQLVAAAGSTLHGVN				NA	NA	NA	NA	NA
D1-36_03840	603	argO	COG1279	Arginine exporter protein ArgO	ATGTGGCAAAGCTATGTAAACGGGCTGCTGGTGGCCCTTGGGTTGATCATGGCGATCGGCGCGCAGAACGCGTTCGTGCTGGCCCAGAGCCTGCGCCGCGAGCATCACCTGCCGGTGGCTGCGCTGTGCATCGCCTGTGATGCGCTGTTGGTCGCCGCCGGGGTGTTCGGCCTGGCAACGCTGCTGGCCCAGAGCCCATTGTTGCTTTCGATCGCTCGCTGGGGCGGCGCTGCGTTCTTGCTTTGGTACGGCAGCCAGGCGCTGCGTCGGGCCTGTTCGAGGCAAAGTCTGGAGCGGGATGAAAAGCAGGTCGCGCGGTCTCTGCGAACCGTGCTGCTGAGCGCGCTGGCGGTCACGCTGCTCAACCCTCACGTCTACCTCGACACCGTGTTGCTGATCGGCTCTCTCGGTGCCCAGCAGAGCGTGCCTGGCGCCTACGTCGTGGGCGCGGCCAGTGCTTCGCTGCTGTGGTTTTCCACGTTGGCCCTGGGTGCCGCGTGGCTCGCTCCCTGGCTGGCCCGCCCTGCGACCTGGCGCGTCCTGGACCTGCTGGTGGCCGTGATGATGTTCACGGTAGCAGCGCAACTGATCGTGTCGGGCTGA	MWQSYVNGLLVALGLIMAIGAQNAFVLAQSLRREHHLPVAALCIACDALLVAAGVFGLATLLAQSPLLLSIARWGGAAFLLWYGSQALRRACSRQSLERDEKQVARSLRTVLLSALAVTLLNPHVYLDTVLLIGSLGAQQSVPGAYVVGAASASLLWFSTLALGAAWLAPWLARPATWRVLDLLVAVMMFTVAAQLIVSG	PGPT0020651_2201	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
D1-36_03841	597	sodB	COG0605	Superoxide dismutase [Fe]	ATGGCTTTCGAATTGCCGCCGCTGCCGTACCCACACGACGCACTGGCGCCACACATCTCCAAAGAAACGCTGGAATACCACCACGACAAGCACCACAACACCTATGTCGTGAACCTGAACAACCTGGTGCCTGGCACCGAGTTCGAAGGCAAGACCCTGGAAGAAATCGTCAAGACTTCCTCGGGCGGTATCTTCAACAACGCCGCTCAGGTCTGGAACCACACCTTCTACTGGAACTGCCTGACGCCTAACGGCGGCGGCCAACCTACCGGCGCGCTGGCTGAAGCCATCAATGCTGCCTTCGGTTCGTTCGACAAGTTCAAGGAAGAATTCAGCAAGACGTCCATCGGCACCTTCGGTTCCGGTTGGGGCTGGCTGGTGAAAAAGGCTGACGGTTCCCTGGCCCTGGCCAGCACCATCGGCGCCGGCAACCCGCTGACCAGCGGCGACACCCCGCTGCTGACCTGCGACGTCTGGGAGCACGCCTACTACATCGACTACCGTAACGTGCGTCCAAAATACGTCGAGGCGTTCTGGAACCTGGTGAACTGGGAGTTCGTGGCTCAGCAGTTCGAAGGCAAGACCTTTACTGCCTAA	MAFELPPLPYPHDALAPHISKETLEYHHDKHHNTYVVNLNNLVPGTEFEGKTLEEIVKTSSGGIFNNAAQVWNHTFYWNCLTPNGGGQPTGALAEAINAAFGSFDKFKEEFSKTSIGTFGSGWGWLVKKADGSLALASTIGAGNPLTSGDTPLLTCDVWEHAYYIDYRNVRPKYVEAFWNLVNWEFVAQQFEGKTFTA	PGPT0004190_5494	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
D1-36_03842	2052			hypothetical protein	TTGAAGCTGGAACTCAAAAACAGCTTGTCTGTGAAGTTGCTCCGGGTCGTGCTCCTCTCGGCGTTGATCGTTGGCATGGTTTTAAGCTGCGCCCAGATCGTATTCGACGCCTACAAAACCAACCGGGCCGTCGCCGACGACGCCCAGCGCATCCTCGATATGTTCCGCGATCCGTCCACCCAGGCGGTCTATAGCCTGGACCGCGAGATGGGCATGCAGGTGATCGAAGGCCTGTTCCAGGATGAAGCCGTGCGCATGGCGTCCATCGGGCATCCGCGCGAAACCATGCTGGCCGAAAAAACCCGGCCTCTGCAGAAGTATGAAAGCCGCTGGCTGACCGACCTGATACTGGGCCAGGAGCGGACCTTCACCACGCAACTGGTGGGCCGCGGCCCCTACAGTGAATATTATGGCGACCTGAGCATCACGCTCGACACCGCCACCTATGGCCAGGGCTTTATCGTCAGTTCGGTCATCATCTTCATTTCCGGAATGCTGCGGGCTCTGGCCATGGGCCTGGTGCTGTATCTGGTCTACCACTGGCTGTTGACCAAGCCGCTGTCGCGAATCATCCAGCACCTGACCGAAATTAACCCGGACCGCCCCAGTGCCCACAAGATCCCGCAGCTAAGGGGTCACGAGCACAACGAACTGGGCCTGTGGATCAACACCGCCAATCAATTGCTGGCCTCCATCGAGCGCAACACCCACCTGCGCCACGAGGCTGAAAACAGCCTGCTGCGCATGGCCCAGTACGATTTCCTGACCGGCCTGCCCAATCGCCAGCAACTGCAACAGCAACTGGACAAGATCCTCGTGGATGCCGGACGTCTGCAACGTCGCGTCGCGGTGCTGTGCGTGGGGCTGGATGATTTCAAGAGCATCAACGAACAGTTCAGCTACCAGACCGGTGACCAGCTGCTGCTTGCCCTGGCCGATCGGCTGCGCGCCCACAGCGGACGCCTCGGCGCATTGGCGCGACTGGGCGGCGACCAGTTTGCGCTGGTCCAGGCCGATATCGAGCAACCCTATGAAGCCGCCGAACTGGCCCAGAGCATTCTTGACGACCTGGAAGCGCCGTTCGCGCTGGACGACCAGGAGATCCGCCTGAGGGCGACCATTGGCATCACCTTGTTTCCTGAAGACGGCGACAGCACCGAAAAGCTGCTGCAAAAAGCCGAGCAGACCATGACCCTGGCCAAGACCCGCTCGCGCAATCGTTATCAGTTCTACATTGCCAGCGTCGACAGCGAGATGCGCCGCCGTCGCGAATTGGAAAAGGACCTGCGCGAAGCCCTGTCGCGGGAGCAGTTCACCCTGGTGTACCAGCCGCAGATCAGCTATCGCGACCTGCGCGTGGTGGGCACCGAAGCGCTGATTCGCTGGAACCATCCCGAACACGGTTTCGTGCCGCCAGACCTGTTCATTCCTCTGGCCGAGCAGAACGGCACGATCATCGCGATCGGCGAATGGGTCCTGGACCAGGCTTGCAAGCAGCTGCGGGACTGGCATGACCAGGGCTTCGTCGACCTGCGCATGGCGGTCAACCTGTCCACCGTGCAGCTGCACCACGCCGAGCTGCCCAGGGTGGTGAACAACTTCCTGCAGATGTACCGCCTGCCGCCGCGCAGCCTGGAGCTGGAAGTCACCGAGACCGGCCTGATGGAGGACATCACCACCGCTGCCCAGCATTTGCTGAGCCTGCGCCGTTCCGGCGCGCTGATCGCCATTGACGATTTCGGCACTGGCTACTCATCGCTGAGTTATCTCAAGAGCCTGCCGCTGGACAAGATCAAGATCGACAAGAGCTTCGTCCAGGACCTGCTCGATGACGAAGACGATGCAACAATCGTTCGCGCCATCATCCAACTGGGCAAGAGCCTGGGTATGCAGGTCATTGCCGAAGGTGTCGAGACTATCGAGCAGGAGGCGTACATCATTTCCGAGGGCTGCCATGAAGGCCAGGGTTACTACTACAGCAAACCCCTGCCCGCGCGGGAGTTGGGCCTTTACCTGAAGCAGGCGGAGCGCATCAAGGCTTCCATCGTCTGA	MKLELKNSLSVKLLRVVLLSALIVGMVLSCAQIVFDAYKTNRAVADDAQRILDMFRDPSTQAVYSLDREMGMQVIEGLFQDEAVRMASIGHPRETMLAEKTRPLQKYESRWLTDLILGQERTFTTQLVGRGPYSEYYGDLSITLDTATYGQGFIVSSVIIFISGMLRALAMGLVLYLVYHWLLTKPLSRIIQHLTEINPDRPSAHKIPQLRGHEHNELGLWINTANQLLASIERNTHLRHEAENSLLRMAQYDFLTGLPNRQQLQQQLDKILVDAGRLQRRVAVLCVGLDDFKSINEQFSYQTGDQLLLALADRLRAHSGRLGALARLGGDQFALVQADIEQPYEAAELAQSILDDLEAPFALDDQEIRLRATIGITLFPEDGDSTEKLLQKAEQTMTLAKTRSRNRYQFYIASVDSEMRRRRELEKDLREALSREQFTLVYQPQISYRDLRVVGTEALIRWNHPEHGFVPPDLFIPLAEQNGTIIAIGEWVLDQACKQLRDWHDQGFVDLRMAVNLSTVQLHHAELPRVVNNFLQMYRLPPRSLELEVTETGLMEDITTAAQHLLSLRRSGALIAIDDFGTGYSSLSYLKSLPLDKIKIDKSFVQDLLDDEDDATIVRAIIQLGKSLGMQVIAEGVETIEQEAYIISEGCHEGQGYYYSKPLPARELGLYLKQAERIKASIV	PGPT0026015_223	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,PGPT0026015-bifA-K21024	NA	NA
D1-36_03843	1344			hypothetical protein	ATGATTCGTATGCCTCTGGCTACCGCCAGTCTGTTGGCCATTGCTATTTCCCTCGCCGGTTGCGGCGAAGGCAAAGACAAGGCCGCCGCGCCGCAAGCGCCAACGCCGGCCGCCAGCACCGCTGCACCGGCTGCCCCCGCTGCCGCTGGCAAGATCGATGAAGCCGCCGCCAAGGCTGTTGTCGCGCACTACGCCGACATCGTCTACGCCGTCTACAGCGATGCCGAATCCACCGCGAAAAACCTGCAGACCGCCGTCGATGCCTTCCTGGCCAAGCCGAACGCCGACACCCTGAAAGCCGCCAAGGCTGCCTGGGTCGCCGCACGCGTGCCATACCTGCAGAGCGAAGTGTTCCGCTTCGGCAACACCATCATCGACGACTGGGAAGGTCAGTTGAACGCATGGCCCCTGGACGAGGGCTTGATCGACTACGTCGACAAATCCTACGAGCATGCCTTGGGTAACCCGGGCGCCACCGCCAATATCATTGGCAACACCGAGGTCCAGGTCGGCGAAGACAAGGTCGACGTCAAGGACATCACCCCGGAAAAACTCGCCAGCCTGAACGAGCTGGGCGGTTCCGAGGCCAACGTCGCCACCGGCTACCACGCCATCGAATTCCTGCTGTGGGGCCAGGACCTCAACGGCACCGGCCCTGGCGCTGGCAATCGCCCGGCCTCGGATTACCTGGAAGGCGCCGGCGCCACGGGCGGCCACAACGATCGTCGTCGCGCCTACCTGAAGTCCGTCACCCAGCTGCTGGTCAACGACCTGCAGGAAATGGTCGGCAACTGGAAGCCGAACGTAGCCGACAACTATCGCGCCACCCTGGAAGCCGAGCCTGCCGAAACCGGCCTGCGCAAGATGCTGTTCGGCATGGGCAGCCTGTCCCTGGGTGAACTGGCGGGCGAGCGCATGAAAGTCTCCCTGGAAGCCAACTCCCCGGAAGACGAACAGGATTGCTTCAGCGACAACACCCACAACTCGCATTTCTACGATGCCAAGGGCGTGCGTAACGTTTACTTGGGTGAATACACACGCGTAGACGGCACCAAGATGACCGGTGCCAGCCTGTCGTCCCTGGTGGCGAAGGCCGACCCGGCCGCCGACACCGCGCTCAAGGCCGACCTGGCCGATACCGAAGCGAAGATCCAGGTCATGGTGGATCACGCCAACAAGGGTGAGCACTACGACCAACTGATCGCCGCTGGCAACACCGCGGGCAACCAGGTCGTGCGCGACGCCATTGCCGCCCTGGTCAAGCAGACCGGTTCGATCGAACAGGCCGCAGGCAAGCTGGGCATCAGCGACCTGAACCCGGACAGCGCTGATCACGAGTTCTGA	MIRMPLATASLLAIAISLAGCGEGKDKAAAPQAPTPAASTAAPAAPAAAGKIDEAAAKAVVAHYADIVYAVYSDAESTAKNLQTAVDAFLAKPNADTLKAAKAAWVAARVPYLQSEVFRFGNTIIDDWEGQLNAWPLDEGLIDYVDKSYEHALGNPGATANIIGNTEVQVGEDKVDVKDITPEKLASLNELGGSEANVATGYHAIEFLLWGQDLNGTGPGAGNRPASDYLEGAGATGGHNDRRRAYLKSVTQLLVNDLQEMVGNWKPNVADNYRATLEAEPAETGLRKMLFGMGSLSLGELAGERMKVSLEANSPEDEQDCFSDNTHNSHFYDAKGVRNVYLGEYTRVDGTKMTGASLSSLVAKADPAADTALKADLADTEAKIQVMVDHANKGEHYDQLIAAGNTAGNQVVRDAIAALVKQTGSIEQAAGKLGISDLNPDSADHEF				NA	NA	NA	NA	NA
D1-36_03844	1236			hypothetical protein	ATGTCGGCCGAAGTGGTCAAGGCGCGGGTCGAGCAGGTCTACCGGCAGGACTCGCGGCGGATCCTGGCGACCCTGATTCGCCTGCTGGGAGACTTCGACCTCGCTGAAGAGGCTATGCACGAGGCCTTTTTCATCGCGGTGGAGCGCTGGCAGCGCGACGGAGTGCCGGACAATCCGCGAGCCTGGCTTGTATCGGCGGGGCGGTTCAAGGCGATTGACGGCCTGCGCCGGCGGGCGCGCTTCGCGGCATCTCAATCGATGCTGATTGCGCAGCTCGAGGAACTGGAGCAGGCCGATTGGAGTGACGAGGACGTGGAAGACGATCGCCTGCGGCTGATTTTCACCTGCTGCCACCCCGCGCTGGCGGCTGACGCCCAAGTGCCGTTGACCCTGCGAGAAGTGTGCGACCTGACGACCGAGGAGATCGCCCACGCATTTCTCGCGGCGCCGGCGACCATCGCCCAGCGCATCGTGCGGGCCAAGGCGAAGATCCGTGATGCACGAATTCCTTACCAGGTGCCGTCCCGCACCGAATTGCCTGAACGCCTCGACAGCGTCCTGCGCGTGATCTACCTGGTGTTCAACGAAGGGTACTCGGCGTCGATGGGCGCCGAGTTGACCCGGGAAGACCTGACCCGCGAAGCCATACGCCTGGCACGCCTGTTGATGGAGCTGTTGCCCGAAGCCGAAGTCATGGGGTTGCTGGCATTGATGCTGTTGCACGAATCGCGGCGGCCGGCGCGGACTTCCATGACCGGTGAGCTGGTCTTGCTGGATGAACAGGACCGATCGCTGTGGGACCAGGCAATGATTGCCGAAGGCTGCGCCATGATCGAGGCGGCGCTCAATACCCGGCGGTTCGGACCGTATTGCCTGCAAGCGGCGATCGCTGCGGTGCACGCCGAAGCGCCGACAGCGCAGCAAACCGACTGGCCGCAGATCGTCGGCCTCTACGATGTGCTGCTGCGTGCCGTGCCATCGCCGGTCATCGAACTCAACCGCGCGGCCGCCTTGGCCAAGCGCGACGGGCCGCAGGCTGGGCTGAGCCTGATCGATGGAATACTGGGTAGGGGTGAATTGACCGACTATCACCTGGCCCATTCGGCGCGGGCGGAGTTTTGTCGGCAGTTGGGACGGGTGGAGGAGGCGAGGGCGGCGTACCGTCGTGCGCTGGCGTTGACGCAGCAGTTGCCGGAGCGGCGGTTTATCGAAGCCAGGCTTGCCGGCTTGCACTGA	MSAEVVKARVEQVYRQDSRRILATLIRLLGDFDLAEEAMHEAFFIAVERWQRDGVPDNPRAWLVSAGRFKAIDGLRRRARFAASQSMLIAQLEELEQADWSDEDVEDDRLRLIFTCCHPALAADAQVPLTLREVCDLTTEEIAHAFLAAPATIAQRIVRAKAKIRDARIPYQVPSRTELPERLDSVLRVIYLVFNEGYSASMGAELTREDLTREAIRLARLLMELLPEAEVMGLLALMLLHESRRPARTSMTGELVLLDEQDRSLWDQAMIAEGCAMIEAALNTRRFGPYCLQAAIAAVHAEAPTAQQTDWPQIVGLYDVLLRAVPSPVIELNRAAALAKRDGPQAGLSLIDGILGRGELTDYHLAHSARAEFCRQLGRVEEARAAYRRALALTQQLPERRFIEARLAGLH	PGPT0014960_512	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
D1-36_03845	345			hypothetical protein	ATGAAGTATTTATGCCTGGTGTATAGCAACGAAGAGGTCCTGCACAACTCGCCGGACAGTCCCGAGGACGCCGAATGCATGGCCTACGCCGAATCAGTCCAGGGCAGTGGCCGGATGGTCGCGGCCGAAGCCCTGGAGTCGGTGCAGACCGCCACCACGGTGCGCATGCGCGGCGGCAAGCTGTCCATCACCGATGGCCCGTTCGCCGAAACCAAGGAGCAATTGGCGGGCTTCTACCTGATCGACGCCAAGGACCTGAATGAAGCCATCCAGGTCGCCGGCCACATACCGGCGGCCCGGGTCGGCTGTGTCGAGGTTCGACCGGTACGTCAATTGAATCCTTGA	MKYLCLVYSNEEVLHNSPDSPEDAECMAYAESVQGSGRMVAAEALESVQTATTVRMRGGKLSITDGPFAETKEQLAGFYLIDAKDLNEAIQVAGHIPAARVGCVEVRPVRQLNP				NA	NA	NA	NA	NA
D1-36_03846	435			hypothetical protein	ATGAATACCCAAGCTGCCGATACCGAGATCCAGACCCTGATCGATACTTATCGCCAAGCGGTCATGGCCAAGGATGTAGAAAAGGTCATGGCACTTTATGACGATGGCATCGTTTCGTTCGACGCCATCCAGGCCTTGCAATTCAAGGGCAAGGTCGCCTACCGGGCGCACTGGGAGGCTTGCATGGAAATGTGCCCCGGCCCGCACAAGTTCGATTTTCACCAGGTGCAGATCAACGCAGCCGATGACATTGCGTTTGCCCACTGGCTGGCTTATTGCGGTGGCACCAACGATAAGGGCGAGGAGCAGGCCTGCTGGATGCGCGTGACGGCCTGCTACAAACGTTCGGCCGGGCAGTGGAAAATCGTCCACGAGCATTGGTCCGCGCCGTTCGATCCCATGGCCGGGACGGCGATTTTCGATTTGCAGCCCTGA	MNTQAADTEIQTLIDTYRQAVMAKDVEKVMALYDDGIVSFDAIQALQFKGKVAYRAHWEACMEMCPGPHKFDFHQVQINAADDIAFAHWLAYCGGTNDKGEEQACWMRVTACYKRSAGQWKIVHEHWSAPFDPMAGTAIFDLQP	PGPT0030505_2	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM	PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030505-phnB|yjdN-K04750
D1-36_03847	486			hypothetical protein	GTGACTGCTCAGCTCGTACCCTATGAAGACCTGACCCCACTGCAACGGCAACAGGTCGAATCCATCGAGATTTACCCCGACCAAATCAAGTTCTCTGGCGACATCCACGGCGCGCTGCACACACTGCTGTCCAAGCCCGGCCCAGGGGTCAAGGGCTTCGCCTTGTTGGACGACGAGGTGCCCGTGGCGTTCCTGCTGCTCAAGCGCCCGCCCGTGCTGCCGGCCTGGGCCAACGAACACAGCGCGACCCTGCACGCGTTGCAAGTTGACCACCGCGCCCAGGGCAAAGGCTATGGCAAGGCGTGCCTGCAAGCGCTACCCGCCGCGGCCCGCGCGGCCTGGCCGGAAATCAGGGGATTGGAGCTCTCCGTCGATGCTGACAACCACTCGGCCATCGGCCTCTACACCCGACTGGGCTGGGTCGACAGTGGCGAAGCCTACAAAGGCCGCATCGGTTATGAGCGGCGGATGGGGTTGGTGTTTTGA	MTAQLVPYEDLTPLQRQQVESIEIYPDQIKFSGDIHGALHTLLSKPGPGVKGFALLDDEVPVAFLLLKRPPVLPAWANEHSATLHALQVDHRAQGKGYGKACLQALPAAARAAWPEIRGLELSVDADNHSAIGLYTRLGWVDSGEAYKGRIGYERRMGLVF				NA	NA	NA	NA	NA
D1-36_03848	489			hypothetical protein	ATGGAAACGCAAAAACGCGCTAACGCAACCGAGCCGCGCTTCGAGCAGGGACGCTTTCAGCTCATCGCCGGTTTCGGCGCGCGTTTTACCCAGGAAACCGCCCAGGACATCCCGCAGCTCTGGGAAAAATTCCTGCCTTGGCTCGGCAAGGTGCCCGGACAGAAAGACGAGGTGACGTACGGGGTGTGCTGCAACCCGGACGGCCAGGGCGGCTTCGAGTACATCGCTGGCGTGGAAATCAGCCGGCTCGACGACCTACCCGAACAATATCGCTGGATCGAGATCCAGCCCGGGTCCTACGCGGTCTTCGAGCACAAAGGGCCGCTCAAGGATCTGCCGGATACGTTCCAATACATCTGGAAAGAATGGCTGCCCCAATCCGGCCATCAGGCGGCGGATGAACCGGAGTTTGAGCGCTACAGTGAAGATTTCAATCCCCGGACCGGCGAAGGCCACCTGGAAATCTGGATACCGCTCAAGCCGAGTTGA	METQKRANATEPRFEQGRFQLIAGFGARFTQETAQDIPQLWEKFLPWLGKVPGQKDEVTYGVCCNPDGQGGFEYIAGVEISRLDDLPEQYRWIEIQPGSYAVFEHKGPLKDLPDTFQYIWKEWLPQSGHQAADEPEFERYSEDFNPRTGEGHLEIWIPLKPS				NA	NA	NA	NA	NA
D1-36_03849	663			hypothetical protein	ATGGAATTTTCCAGCGGCTTCCTGCTGAGTCTTTCGCTGTGCCTGGACATTGGCGTGGCCAACATCGCGATGATCACGCTGGCGATGCAACGCGGCTATTTCCAAGGCTTCGCCTTGGGCCTGGGCACGTGCGTGGGCGACCTGGTCTATGCAGTCCTGGCGCTGGCCGGGATGACCGTTTTGCTGCAATACGAACCGGTGCGTTGGGCGCTGTGGATTGGCGGCTCGGTGCTGCTCTTGTATTTCGCGGCGAAAATGGTTCATTCGGCGATCTATCACAACGCGGTGCTGGCTGAGGCGGGCGAGACTCGGGCCAACTCGCCGCGCCAGGAATTTTTTCGCGGGATTTTCCTCGCCATGTCATCGCCCAGCGCCATTCTCTGGTTCGCCGCAGTGGGCGGAACGCTCATCGCCCGCTCGGGTGGCGGCACCGTGCTCAGCTCGGCCTTGTTCCTGGGCGGATTCCTCAGCGCCGGGCTGCTTTGGAGCGCTGGCCTGTGCCTGGCAGCGACCCAGGGCGGGAAAATGCTAGGCGATAAGTTGCTGCGGTACTCCTATTGGGCATCGGCGGCGATCTTCTGTTATTTCGCGGTCTACGTGATCGTTTCTGGTTATAACGAGTTTGTAGGAACGGTAAACGCCCCCAGCTTGCCGGGACTTTAA	MEFSSGFLLSLSLCLDIGVANIAMITLAMQRGYFQGFALGLGTCVGDLVYAVLALAGMTVLLQYEPVRWALWIGGSVLLLYFAAKMVHSAIYHNAVLAEAGETRANSPRQEFFRGIFLAMSSPSAILWFAAVGGTLIARSGGGTVLSSALFLGGFLSAGLLWSAGLCLAATQGGKMLGDKLLRYSYWASAAIFCYFAVYVIVSGYNEFVGTVNAPSLPGL	PGPT0020651_230	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
D1-36_03850	1215	alaC	COG0436	Glutamate-pyruvate aminotransferase AlaC	ATGGCCGAACAAGGTTCGCCGCGCCGCTTTGCGCGCATCGATCGACTCCCCCCGTACGTATTCAATATCACTGCCGAGCTGAAGATGGCTGCGCGTCGGCGCGGCGAAGACATCATCGACTTGAGCATGGGTAACCCCGATGGCGCCACGCCCCCACATATCGTGGAGAAGTTGGTCACCGTCGCCCAGCGTGAAGACACTCACGGCTACTCCACGTCCAAAGGCATCCCGCGCCTGCGCCGCGCCATTTCGCGTTGGTACAAGGACCGCTACGAGGTGGACATCGACCCGGAAAGCGAAGCCATCGTCACCATCGGTTCCAAGGAAGGCCTCGCGCACCTGATGCTGGCGACCCTGGACCAGGGCGACACGGTGCTGGTGCCCAACCCCAGCTATCCGATCCACATCTACGGCGCGGTGATCGCCGGCGCCCAGGTGCGTTCGGTGCCGCTGGTGCCCGGCGTGGATTTCTTCGATGAGCTGGAGCGGGCCATTCGCGGTTCGATCCCCAAGCCGAAGATGATGATCCTCGGCTTCCCGTCCAACCCGACCGCGCAATGCGTGGAGCTCGATTTTTTCGAACGGGTCATCGCCCTCGCCAAGCAATACGACGTGCTGGTGATCCACGACCTGGCGTACGCCGACATCGTGTATGACGGCTGGAAAGCGCCGTCGATCATGCAAGTGCCAGGGGCCAAAGACATCGCGGTGGAGTTCTTCACCCTGTCCAAGAGCTACAACATGGCCGGCTGGCGCATCGGTTTCATGGTCGGCAACCCGGAACTGGTCAGCGCCCTGGCGCGGATCAAGAGCTACCACGACTACGGCACCTTCACCCCGCTGCAAGTGGCCGCCATCGCCGCCCTCGAAGGCGACCAGCAATGCGTGCGCGACATCGCCGAGCAGTACCGCCAGCGCCGCAATGTGCTGGTCAAGGGCCTGCACGAGCTGGGCTGGATGGTGGAAAACCCGAAGGCGTCGATGTACGTCTGGGCCAAGATCCCCGAAGCCTATGCGCACCTGGGCTCACTGGAGTTTGCCAAGAAGCTGCTGGCCGAAGCCAAGGTCTGCGTCTCGCCGGGGGTGGGGTTCGGGGAATATGGGGATGATCACGTGCGCTTTGCGCTGATCGAGAACCAGGACCGGATTCGCCAGGCGGTGCGGGGGATCCGTGGGATGTTCCGGGCGGATGGGTTGGCTGGCAAACAAGCCTGA	MAEQGSPRRFARIDRLPPYVFNITAELKMAARRRGEDIIDLSMGNPDGATPPHIVEKLVTVAQREDTHGYSTSKGIPRLRRAISRWYKDRYEVDIDPESEAIVTIGSKEGLAHLMLATLDQGDTVLVPNPSYPIHIYGAVIAGAQVRSVPLVPGVDFFDELERAIRGSIPKPKMMILGFPSNPTAQCVELDFFERVIALAKQYDVLVIHDLAYADIVYDGWKAPSIMQVPGAKDIAVEFFTLSKSYNMAGWRIGFMVGNPELVSALARIKSYHDYGTFTPLQVAAIAALEGDQQCVRDIAEQYRQRRNVLVKGLHELGWMVENPKASMYVWAKIPEAYAHLGSLEFAKKLLAEAKVCVSPGVGFGEYGDDHVRFALIENQDRIRQAVRGIRGMFRADGLAGKQA				NA	NA	NA	NA	NA
D1-36_03851	1353	gntT_2	COG2610	High-affinity gluconate transporter	ATGTTCGGCATGTCCCACGAGACGTTTCTACTGCTTGATGCAGTGGTCACGGTGATCGGACTCATCGTCCTTATCACCAAGTTCAAATTCCACCCGTTCATTGCGCTGACCATCGCCGCCGCGTTCCTCGGCCTGACGTCGGGCATGCCGACCGGCACCATCATCAAGGCGTTCCAGGACGGCTTCGGTGGCGTGCTCGGTTTTGTCGGCATCATCCTGGCGCTGGGCACGATGCTCGGAAAAATGATGGCTGAATCGGGCGGGGCCGATCAGATCGCCCAGACGCTGATCCGTGCCTTCGGCAAGGAAAAGGTGCAGTGGGCGATGATGTTCGCCGCGTTCCTGGTGGGCATCCCGCTGTTCTTCGAAATCGGCTTCGTGTTGCTGATTCCGTTGGTGTTCATCGTGGCGCGCCGCACCGGCGTGTCGATCATCAAGATTGGTATCCCGCTGCTGGCCGGCCTCTCCGCGGTCCACGGCCTGGTGCCGCCGCACCCGGGGCCGCTGCTGGCGATCGGCATCTTCGGCGCCGACATCGGCAAGACCATTCTTTATGGCCTGATCGTCGCGCTGCCGACCGCTATCATTGCCGGCCCGATCTTCGGTACCTTCATCGCCAAGCACATCCCCGGGCATCCAAATCAGGAACTGGTGGACCAACTGGCCCGTGAGACGAACGCCGCCGAGCTGCCAAGCTTCAGCATCACCCTGATCACCGTGCTCTCGCCGGTGTTCCTGATGCTGCTCAAGACGTTCGCTGATGTGGCGCTGCCGGATGGCAACCTCTTCCGCGTCTGGATGGACATGATCGGCCACCCGATCTCGGCGCTGTTGTTGGCGTTGCTGCTATCGCTTTACACCTTCGGCTACAAACAGGGGATCGGTTCCAGCCAGATGTTGAAATGGCTCGACGCGAGCCTGGCCCCGACCGCCGCGATCATCCTGATCATCGGTGCTGGTGGTGGCTTCAAGCAGATGCTGGTGACCAGCGGTGTGGGCGATGTGATCGGTCACATGGCGGTGAGTGCACAGATTTCGCCGATCCTGCTGGCGTGGCTGGTGGCGGCGGTGATCCGTATCGCCACAGGCTCAGCGACCGTGGCGACCATTACCGGTGCGGGGATCGTGGTGCCTGTCGTGGGGATGATGCCGGGCGTGAACCGTGAGCTGCTGGTGCTGGCGACCGGCGCCGGTTCGCTGATCCTGTCCCACGTCAACGATGCGGGTTTCTGGCTGGTCAAGCAGTACTTCAACATGACCGTGGCCGAGACTTTCAAGACCTGGACCGCGATGGAAACCATTCTGTCCGTGGTGGGCTTGATCTTCATCCTGCTGCTGTCGCTGGTGATCTAA	MFGMSHETFLLLDAVVTVIGLIVLITKFKFHPFIALTIAAAFLGLTSGMPTGTIIKAFQDGFGGVLGFVGIILALGTMLGKMMAESGGADQIAQTLIRAFGKEKVQWAMMFAAFLVGIPLFFEIGFVLLIPLVFIVARRTGVSIIKIGIPLLAGLSAVHGLVPPHPGPLLAIGIFGADIGKTILYGLIVALPTAIIAGPIFGTFIAKHIPGHPNQELVDQLARETNAAELPSFSITLITVLSPVFLMLLKTFADVALPDGNLFRVWMDMIGHPISALLLALLLSLYTFGYKQGIGSSQMLKWLDASLAPTAAIILIIGAGGGFKQMLVTSGVGDVIGHMAVSAQISPILLAWLVAAVIRIATGSATVATITGAGIVVPVVGMMPGVNRELLVLATGAGSLILSHVNDAGFWLVKQYFNMTVAETFKTWTAMETILSVVGLIFILLLSLVI	PGPT0001340_1837	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
D1-36_03852	534		COG3265	Gluconokinase	ATGAATAATCCAATCACCGCCCTGGTCATCATGGGCGTTGCCGGTTGCGGCAAAACTTGCGTCAGCCAGGCCCTGTGCCAACTGAGCGGCGCCACCGCCATCGAAGGCGACACGTTCCACCCCGCGGCCAACATTCAGAAGATGAGCGCCGGTATTCCCTTGACTGACGACGACCGTGCCGGCTGGCTCGACAGCCTGTGCGACGAGTTGCGTCGTGTCGACGGCACGGGCGAGCGCCCGGTGCTGACCTGCTCGGCCCTCAAGCACAGCTACCGCGAGCGCCTACGCAGCGCCCTGCCGGGCCTGGGCTTCGTATTCCTTGAATTGACCCCCGAAGTGGCTGCCGATCGTGTCTCCCACCGTCCGGGCCATTTCATGCCGTCGACCCTGATCGACAGCCAGTTTGCCACCCTCGAATCCCCTGTCGGCGAGCCCCTGACCCTGGCTCTGGACGCGTCCAGCCACAGCATCGATGAATTGGCCCGCCAGGCCTACGTCTGGTGGCTGGCCCACGGTTTGAAACTCGCCGGCTGA	MNNPITALVIMGVAGCGKTCVSQALCQLSGATAIEGDTFHPAANIQKMSAGIPLTDDDRAGWLDSLCDELRRVDGTGERPVLTCSALKHSYRERLRSALPGLGFVFLELTPEVAADRVSHRPGHFMPSTLIDSQFATLESPVGEPLTLALDASSHSIDELARQAYVWWLAHGLKLAG	PGPT0018055_1033	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
D1-36_03853	1032	gntR_2		HTH-type transcriptional regulator GntR	ATGACCGCCCCTAAAAACGATAAGAATACTCGCACCACCGGTCGCCCCACGCTCAATGAAGTCGCCCGCCTGGCCGGGGTCAGCCCGATCACCGCCTCCCGTGCCCTGCGCGGCGTCAGCACCGTGGCCGTCGAACTGGTGGACAAGGTCCGCCAGGCCGCCCTGGAACTCAATTACGTCGTCAATCCCGCGGCCCGGGCCTTGGCTTCGGCCCAGAGCCATTCAGTGGTGGTACTGGTGCCGTCACTGTCCAACCTGTTGTTCATCGACACCCTGGAAGCCATCCATCGCGTCTTGCGGCCCAAGGGATTCGAAGTGGTGATCGGCAACTACCATTATTCCCGGGACGAAGAAGAAGACCTGCTGCGCAATTACATGGCCTATCAGCCGCGCGGTCTGTTGCTGACCGGATTCGACCGGACCGAAAGCGCCCGGCGCATGATCGAGGCCAGCAATATCCCCTGCGTGTACATGATGGAACTGGATCCGGGCGCCGGCCTCAACTGCGTGGGATTCTCCCAGCTCCAGGCCGGCGAGACCGCCGCCGAGCATTTGATCTCCCGAGGCCGCAAGCGCCTGGCCTACATCGGCGCGCAACTGGACCAACGCACGTTGCTGCGCGGCGAAGGCTTTCGTCGCGCCCTCCAGAAGGCCGGGCTCTACGACCCTGACCTGGAAGTGCTGACCCCTCGCCCGTCGTCGGTGGGCCTGGGCGGCGAATTGTTCCTGCAATTGCTGGCCAGCCATCCAGACGTCGACGCGATTTTCTTCGGCAACGACGACCTGGCCCACGGCGCCCTGCTCGAAGCGTTGCGCTGCGGCATCAGGATTCCCGAACAGGTTTCGATACTGGGCTTCAACGACCTGCCCGCTTCGGCCCACATGGTCCCGCGCTTGAGCAGCATCAGCACCCCGCGAGAAGAAATCGGCCGGCGCGCCGCCGAACAGATGCTCACGTTGATGGCCGGCAACCGCATCGCCCAGCCGGTCGTCGACCTGGGTTTCGAACTCAAGATTCGCGAAAGCACCTGA	MTAPKNDKNTRTTGRPTLNEVARLAGVSPITASRALRGVSTVAVELVDKVRQAALELNYVVNPAARALASAQSHSVVVLVPSLSNLLFIDTLEAIHRVLRPKGFEVVIGNYHYSRDEEEDLLRNYMAYQPRGLLLTGFDRTESARRMIEASNIPCVYMMELDPGAGLNCVGFSQLQAGETAAEHLISRGRKRLAYIGAQLDQRTLLRGEGFRRALQKAGLYDPDLEVLTPRPSSVGLGGELFLQLLASHPDVDAIFFGNDDLAHGALLEALRCGIRIPEQVSILGFNDLPASAHMVPRLSSISTPREEIGRRAAEQMLTLMAGNRIAQPVVDLGFELKIREST				NA	NA	NA	NA	NA
D1-36_03854	555			hypothetical protein	ATGTTGGTCAGCGTAAAACAACAAGCGATAAACCTGCCCCTCAAACGCCCCGGCGAAGACCCGACCGCCGAAGCCGCCAGCGGCTTGCAAAGCGCCGCCCTGCAATCGCTGCGTGACAACGTCCAGGCCCAGGCCAACCAGGGCAGCACCCAGGTCCAGGAATCCATCACCCGGCAAGCCACGCAGCAGGTCAACGCCGCCACCGCCATCAGCGACAACGTCGACGAGGCCTTCGCCAAGACCCGCGTGCAACTGCAGACCGTCGCTTCGTCAGCCGCCGACGAGGCGAAGAAAGCACGCAGCTCTGCCATGACGGAGTTCAAGGAATACATGAGCAAGACGCCTGAAGAACGCTTGCGTGACAGCATTCTTGAGGAAATGGGCATCACTGAAGAAGAGTACGCGCAGATGCCGCCCGAGAAGCAACGGGCGGTCGGCGAGGAAATTGCCCAGCGCATGCAGGACAAGGCCGCGATGGCGCAGGTGGAAAAAGCCCAGGAAAGCCGGACGGATGAGAAGAATCCGGCCACGGACATGTTCCTCGCCTCGCTGTAG	MLVSVKQQAINLPLKRPGEDPTAEAASGLQSAALQSLRDNVQAQANQGSTQVQESITRQATQQVNAATAISDNVDEAFAKTRVQLQTVASSAADEAKKARSSAMTEFKEYMSKTPEERLRDSILEEMGITEEEYAQMPPEKQRAVGEEIAQRMQDKAAMAQVEKAQESRTDEKNPATDMFLASL				NA	NA	NA	NA	NA
D1-36_03855	423			hypothetical protein	ATGCCCGACTTCCACTACACACGTCTCGACGAGCCTCTGTGGCCGTTGATGAACAAGTTCTACCGCGCCCACCAATCCTCGATGAAAGCCGTGCGCGACGCCCAGCTGTGGGTAGCACGGCGCGAAGACATCGTCGCGGCGCTGTGCCTTCGACCGGTTTCGGGCGGGCATTGGTTGACGGGATTGTTCGTCGACCCGGCGCACCGCGTACAAGGCGTCGCCGCGCGACTGATCGCAGAAGCGGTGAAGGGGCTGGATGAACCGGTGTGGCTGTTCTGTCACCCGGACTTGCGCGGGTTTTATGAACGACGGGGCTTCAGCTTCGACCCCGAACTGCCCTATGCGATGGCTGAAAGGCTGAGCCGGTATGCGCGCAGCAAGCCGATGATTGCGATGGGGTTGGAGCCCAACATACTCTCCTGA	MPDFHYTRLDEPLWPLMNKFYRAHQSSMKAVRDAQLWVARREDIVAALCLRPVSGGHWLTGLFVDPAHRVQGVAARLIAEAVKGLDEPVWLFCHPDLRGFYERRGFSFDPELPYAMAERLSRYARSKPMIAMGLEPNILS				NA	NA	NA	NA	NA
D1-36_03856	540	def_2	COG0242	Peptide deformylase	ATGATCCGCGAAATCCTGAAGATGGGCGACGAACGCCTGCTGCGCATCGCCCCGCCGTTGCCGCCGGAAATGTTCGACAGCGCCGAGTTGTGGCAACTGATCGACGACATGTTCCAGACCATGGAAAGCGTCGGCGGCGTCGGCCTGGCGGCGCCGCAGATCGGCGTGGACCTGCAACTGGTGATCTTTGGCTTCGAGCACAGCGAGCGCTATCCCGATGCCGAAGCGGTGCCGCAGACGATCCTGATCAATCCTTTGATCACGCCGCTGAGTCCGTTGATGGAAGAAGGCTTCGAAGGTTGCCTGTCGGTGCCAGGCTTGCGCGGCGCGGTGGATCGTTACCAGCATATTCGTTACGAAGGTTTCGACCCCAAGGGCGAGCCGATCATGCGCACCGCCTCGGGCTTTCATGCCCGGGTGGTCCAGCATGAGTGCGATCACTTGATCGGCCGCTTGTATCCGTCGCGCATCACTGATTTCAGTAAGTTCGGGTTTACCGAAGTGATGTTTCCGGATCTGGACCCTATGGCTGACGACTAG	MIREILKMGDERLLRIAPPLPPEMFDSAELWQLIDDMFQTMESVGGVGLAAPQIGVDLQLVIFGFEHSERYPDAEAVPQTILINPLITPLSPLMEEGFEGCLSVPGLRGAVDRYQHIRYEGFDPKGEPIMRTASGFHARVVQHECDHLIGRLYPSRITDFSKFGFTEVMFPDLDPMADD	PGPT0008125_40	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008125-fmt-K00604	NA	NA
D1-36_03857	951			hypothetical protein	ATGATGTTCCCGGCCTTGAAAGGCTTGCCCCTGCATCGCGTGATGATGCGCACGGTGACCGAGTTTCTCGACGACGAGATGTCGACCTACGCCTCCGCACTGGCTTACCAGATGCTGTTTTCGCTGTTTCCCTTCATTCTTTTCCTCATCGCGCTGATCGGCTTCCTGCACCTGCCGGATTTCTTTTCCTGGCTGCGCCTGCAATCGGAACTGGTGCTGCCGCCCCAAGCGCTGGAGCAGGTCAACCCGGTGATCGACCAGCTCCAGCAATCCAAGGGCGGCTTGCTCTCGGTGGGTATCGTCATTGCGCTGTGGACCGCGTCGGCCGGCGTGCGGCTGATGATGAGCGCCATGAACGCGGCGTACGACGTGGTCGAGGGGCGCCCGGCCTGGAAGCGCTTTCCGCTGTCGATTCTTTATACGGTCGGTATCGCCGGCATGCTGTTGGTCGCCGCGGCCTTGATGGTACTGGGCCCGCAAGTGATGGGTTGGATTGCCTCGCAGATCGGGCTGGAGGAGTTCATCGTCACCGTCTGGACCCTGGCGCGCTGGCCGGTCATCGTGTTTTTGCTGATGGTGGCTGTGGCGCTGATCTATTACGTGATGCCTGACGTCAAACAGGAGTTCCGCTTCATCACGCCGGGCTCGGTATTGGCGGTGGTGGTGTGGATCATCGCGTCCCTGGGTTTTGCGTTCTATGTGAAGACTTTCGCCGACTACAACGCCATGTATGGCAGTATCGGCGCGATCATCGTGTTGTTGCTGTATTTCTATATCTCTGCGGCGGTGTTGCTACTCGGCGCCGAGATGAATGCGGTCATCGAACACATGTCCGCCGAAGGCAAGGACACCGGTGAAAAGACCCCGGGCGAGCACGAGAAACAGCATGTGTCGGGCTTGGGGCGCGACCATTCCGTTGCTCATACCCCTACAGACGAAGCCCGACCATGA	MMFPALKGLPLHRVMMRTVTEFLDDEMSTYASALAYQMLFSLFPFILFLIALIGFLHLPDFFSWLRLQSELVLPPQALEQVNPVIDQLQQSKGGLLSVGIVIALWTASAGVRLMMSAMNAAYDVVEGRPAWKRFPLSILYTVGIAGMLLVAAALMVLGPQVMGWIASQIGLEEFIVTVWTLARWPVIVFLLMVAVALIYYVMPDVKQEFRFITPGSVLAVVVWIIASLGFAFYVKTFADYNAMYGSIGAIIVLLLYFYISAAVLLLGAEMNAVIEHMSAEGKDTGEKTPGEHEKQHVSGLGRDHSVAHTPTDEARP	PGPT0014525_4081	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0014525-yfkH-K07058	NA	NA
D1-36_03858	192			hypothetical protein	ATGGGAAGCACGAACGATAAAGTGAAGGGCGTTGCCAACGAAGCTGTCGGCAATATCAAGCAAGGTGTCGGCAAGGCCACCGACAATGACCGCATGCGCGCCGAGGGCGTGGTCCAGGAGAAAAAAGGTGAGGCCCAGCAAACCGCGGGCAAGGCCAAGGATGCAGTCAAGAAAGGCGTGGACGAGGCATAA	MGSTNDKVKGVANEAVGNIKQGVGKATDNDRMRAEGVVQEKKGEAQQTAGKAKDAVKKGVDEA				NA	NA	NA	NA	NA
D1-36_03859	378			hypothetical protein	ATGAAACTCGATAAAAAGCAGGCCATCGCCCGCAGGAACCAGGAACTGGGCGGTGCCGTCCTGGGTGTCAACAACTGCCATTTCAGCGAACTGAACCGCAACCGCAACATCTTCTGGTTCGACATCCCGGTGGCCCGCCTGGCCATTGGGCAGTACGAATGGATTCACCTGCTGCTGCACACGCCTGCCACCGACGAACTCTTGCACCTGAAAGTGCCCACCGTGTTCCTGCGGGAAAAAATGGAAGGCCTGGAAGTACGCAACCAGGGCAAACGCAAGGCAGCCCTGAGCCTGGAGCTCAGCGCAGACAAGGATTCGTACCTGCAAGACATGCGGCCCGGCGGCACCAATCTGGATTTTGCGCAGTTTCGGTTGTAA	MKLDKKQAIARRNQELGGAVLGVNNCHFSELNRNRNIFWFDIPVARLAIGQYEWIHLLLHTPATDELLHLKVPTVFLREKMEGLEVRNQGKRKAALSLELSADKDSYLQDMRPGGTNLDFAQFRL				NA	NA	NA	NA	NA
D1-36_03860	1692	fadD_1	COG0318	Long-chain-fatty-acid--CoA ligase	ATGATTGAAAACTTTTGGAAGGATAAGTACCCAGCTGGGATTGCTGCCGACATCAATCCAGATGAGTATCCGAATATTCAGGCGGTGTTGAAGCATTCCTGCCAACGCTTCGCCGACAAGCCGGCATTCAGCAACCTCGGCAAGACCATCACCTACGGTGAGCTCTACGAATTGTCCGGTGCCTTTGCCGCGTACCTGCAACAGCATACCGATTTGCAGCCGGGCGATCGAATCGCCGTGCAACTGCCCAACGTCCTCCAGTACCCAGTGGCTGTGTTTGGCGCGATCCGCGCCGGCCTGATCGTGGTCAATACCAACCCGCTCTACACCGCGCGGGAAATGGAGCATCAATTCAACGATTCCGGTGCCAAGGCACTGGTCTGCCTGGCTAACATGGCGCACCTTGCCGAAAGCGTGGTGCCCAAGACTGGCGTCAAGCACGTCATCGTCACCGAAGTGGCCGACTTGCTGCCGCCGCTCAAGCGCCTATTGATCAACAGCGTGATCAAGTACGTCAAGAAGATGGTCCCGGCCTATCATTTGCCCAAGGCCATCAAGTTCAACGACGTCCTGAGCAAGGGCCACGGCCAGCCTGTGAACGAAGCGAGCCCCACCAGTGATGATGTGGCGGTGTTGCAATACACCGGCGGCACCACGGGCGTGGCCAAGGGCGCCATGCTGACCCACCGCAACCTGGTGGCGAACATGCTGCAATGCAAGGCGCTGATGGGTTCCAACCTCAATGAGGGCTGTGAAGTACTGATCACGCCGCTGCCGCTGTACCACATCTACGCGTTTACCTTCCATTGCATGGCGATGATGCTGATCGGCAACCACAACATCCTGATCAGTAACCCGCGCGATTTGTCGGCGATGGTCAAGGAGCTGTCGAAATGGAAGTTCAGCGGCTTCGTAGGGCTCAACACGTTGTTCGTGGCGCTGTGCAACAACGAAGCCTTCCGCAAGCTGGATTTCTCGGCGCTGAAGGTTACCCTGTCTGGCGGCATGGCTTTGCAGTTGGCGGCGGCGGAGCGTTGGAAAGCGGTCACCGGTTGCCCGATCTGCGAAGGCTACGGCATGACCGAGACGAGCCCGGTTGCCACGGTCAACCCGATCCAGAACATCCAGGTCGGCACCATCGGCATTCCGGTTCCGTCGACCTTGTGCAAGGTCATCAATGACGCGGGCGAAGAGTTGCCTTTGGGGGAAATCGGCGAATTGTGCGTCAAAGGCCCGCAGGTCATGAAGGGCTACTGGCAGCGCCAGGACGCCACCGACGAGATCCTCGACAGCGAAGGCTGGCTCAAGACCGGTGACATCGCCGTGATCCAGCCGGATGGCTACATGCGCATCGTCGATCGCAAGAAAGACATGATCCTGATCTCCGGTTTCAACGTGTACCCCAACGAGCTGGAAGACGTGCTGGCGGCCTTGCCGGGCGTGCTGCAATGCGCGGCCATCGGTGTACCTGACGAGAAATCCGGCGAGGCGATCAAGATATTCATCGTCGCGCGTCCGGGTGTCACGCTCACAAAGGAACAGGTGATGGAGCACATGCGCGCCAACGTCACCGGCTACAAGGTGCCCAAGTCCGTGGAGTTCCGCGATGCACTGCCGACCACCAACGTCGGCAAGATCCTGCGGCGTGAGTTGCGGGATGAAGAGCTCAGGAAGCTGGGGCTGAAAAAGTAA	MIENFWKDKYPAGIAADINPDEYPNIQAVLKHSCQRFADKPAFSNLGKTITYGELYELSGAFAAYLQQHTDLQPGDRIAVQLPNVLQYPVAVFGAIRAGLIVVNTNPLYTAREMEHQFNDSGAKALVCLANMAHLAESVVPKTGVKHVIVTEVADLLPPLKRLLINSVIKYVKKMVPAYHLPKAIKFNDVLSKGHGQPVNEASPTSDDVAVLQYTGGTTGVAKGAMLTHRNLVANMLQCKALMGSNLNEGCEVLITPLPLYHIYAFTFHCMAMMLIGNHNILISNPRDLSAMVKELSKWKFSGFVGLNTLFVALCNNEAFRKLDFSALKVTLSGGMALQLAAAERWKAVTGCPICEGYGMTETSPVATVNPIQNIQVGTIGIPVPSTLCKVINDAGEELPLGEIGELCVKGPQVMKGYWQRQDATDEILDSEGWLKTGDIAVIQPDGYMRIVDRKKDMILISGFNVYPNELEDVLAALPGVLQCAAIGVPDEKSGEAIKIFIVARPGVTLTKEQVMEHMRANVTGYKVPKSVEFRDALPTTNVGKILRRELRDEELRKLGLKK	PGPT0008380_9245	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897	NA	NA
D1-36_03861	1689	fadD_2	COG0318	Long-chain-fatty-acid--CoA ligase	ATGCAGCCTGATTTCTGGAATGACAAACGCCCGGCCGGCGTGCCCTCGGACATCGACCTGAGTGCCTACAAGTCAGTCGTCGAGGTGTTCGAGCGTTCCTGCAAGAAATTTGCCGACCGTCCGGCGTACAGCAACATGGGGGTGACGATCACCTACGCCGAGTTGGAGCGTTACAGCGCGGCCTTCGCCGGTTACCTGCAAGCCAATACCGACCTGGCGCCCGGCGATCGTATCGCCGTGCAGATGCCCAATGTCCTGCAATACCCGATCGCGGTTTTTGGTGCCCTGCGCGCCGGGCTGGTGGTGGTCAACACCAATCCGCTGTACACCCCCCGGGAAATGCGTCACCAATTCAAGGACTCCGGCGCCCGGGCGCTGGTGTACATGAACCTGTTCGGGCAGAAAGTGCAGGAAGTGCTGCCCGACACCGACCTGCAATACCTGATCGAGGCGAAGATGGGCGACCTGATGCCCACCGCCAAGGGCTGGCTGGTCAATACAGTCGTGAGCAAGGTCAAGAAAATGGTCCCGGCCTATTCGCTGCCCCAGGCCATTTCCTTCAAGAGCGCCTTGCGTTTGGGACGGGGCCAGGCCATCAAGCCGCTCAATGTCAGCCTCGGGGACATTGCCGTGCTGCAATACACCGGCGGCACCACCGGCTTGGCCAAGGGCGCCATGCTGACCCACGGCAACCTGGTGGCCAACATGCAGCAGGCCCGCGCCTGCCTGGGGCAGATCGGCGACGACGGCAAGCCTTTGTTGCGCGAGGGCCAGGAGGTGATGATCGCACCGCTGCCGCTGTATCACATCTACGCCTTCACGGCGAACTGCATGTGCATGATGGTCACGGGCAACCACAACGTGCTGATCACCAATCCAAGGGACATCGGCGGTTTCATCAAGGAGCTGAAGAACTGGCGGTTTTCCTTGCTGCTGGGGCTCAACACGCTGTTCGTCGCGCTGATGGACCATCCGGATTTCAAGACGCTGGATTTCTCCAACCTCAAGGTCACCAACTCAGGCGGCACCGCGTTGGTCAAGGCCACCGCCGAACGTTGGAAGCAGTTGACCGGTTGCGGCATCACCGAGGGCTACGGCCTGACGGAAACCTCGCCAGTGGCCAGCGCCAACCCTTACGGTGGCAAGTCGCGCCTGGGCACGGTGGGGCTGCCGGTGCCGGGTACGCTGATGAAAGTCATCAGTGACGACGGTGTCGAGCTGCCCTTGGGCGAACGCGGCGAGCTGTGCATCAAGGGGCCGCAGATCATGAAGGGCTACTGGAACAAGCCCGAAGCGACCGCCGAAGTGCTCGACAGGGAGGGCTGGTTCAAGTCCGGAGATATCGCTGTGATCGACCCCGACGGGTTCGTGCGCATCGTTGATCGCAAGAAAGACATGATCATTGTCTCGGGCTTCAACGTGTACCCGAACGAAATCGAGGATGTGGTGATGGCCCACCCGAAAGTCGCCAGCTGCGCGGTCATCGGCGTGCCGGACGAACGTTCGGGCGAGGCGGTGAAACTGTTCGTCGTGGCCCGTGAGGCGGGCGTCAGCCTCGAAGAGCTCAAGGCGTACTGCAAGGAGAATTTCACCGGCTACAAGGTGCCCAAGCACATCGTGTTGCGGGAATCGCTGCCGATGACACCGGTGGGCAAGATCCTGCGCCGGGAGTTGCGCGATATCGCCTGA	MQPDFWNDKRPAGVPSDIDLSAYKSVVEVFERSCKKFADRPAYSNMGVTITYAELERYSAAFAGYLQANTDLAPGDRIAVQMPNVLQYPIAVFGALRAGLVVVNTNPLYTPREMRHQFKDSGARALVYMNLFGQKVQEVLPDTDLQYLIEAKMGDLMPTAKGWLVNTVVSKVKKMVPAYSLPQAISFKSALRLGRGQAIKPLNVSLGDIAVLQYTGGTTGLAKGAMLTHGNLVANMQQARACLGQIGDDGKPLLREGQEVMIAPLPLYHIYAFTANCMCMMVTGNHNVLITNPRDIGGFIKELKNWRFSLLLGLNTLFVALMDHPDFKTLDFSNLKVTNSGGTALVKATAERWKQLTGCGITEGYGLTETSPVASANPYGGKSRLGTVGLPVPGTLMKVISDDGVELPLGERGELCIKGPQIMKGYWNKPEATAEVLDREGWFKSGDIAVIDPDGFVRIVDRKKDMIIVSGFNVYPNEIEDVVMAHPKVASCAVIGVPDERSGEAVKLFVVAREAGVSLEELKAYCKENFTGYKVPKHIVLRESLPMTPVGKILRRELRDIA	PGPT0008380_9627	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897	NA	NA
D1-36_03862	945		COG2267	Monoacylglycerol lipase	ATGATCCACCAAACGTTCTGGCTGACCGCGACCGATCACAGCCGCTTGCTCGTCAACCAATGGCTACCCGAAACCGCCCCGCTGGCGGTGATCATGCTGGCTCACGGCATGGCGGAACACAGTGACCGCTATGGGCGCCTGGCCCAGGCGTTGTGCGATGAAGGCTACGGCGTCTACGCGCCGGACCAACGTGGCCACGGCAAGACCGGCGAAGAAGCGATCCTGGGTCATTTTGCCGACCAGGACGGCTGGGCCAAAGTTGTGGGCGACCTGGCAAGCCTGAACCATCACATCGGCCAGCAACATCCAGAAACACCAATCCTGCTGCTGGGGCACAGCATGGGCAGCTATATCGCCCAGGGCTATTTGTTGCACCACAGCGCCAGCCTGCACGGGGCCATCCTCAGCGGTTCGAACTTCCAACCCGTGGCGCTTTACCGCGCGGCGCGGCTAATCGCCCGTTTCGAACGCAGGCGGCAGGGCGCCACTGGGCGTAGCGCCCTGATCGAATGGCTCTCATTTGGCAGCTTCAATAAAAAGTTCAAACCGACCCGCACGCCCTTCGACTGGCTCAGCCGCGACCCCGGCGAAGTCGACAAATACATTCGCGACCCGCTGTGCGGCTTTCGTTGCACCAATCAACTGTGGATCGACCTGCTCGGCGGGTTGCAGCAGATCAGCAAAGCGTCCAATCTCGCGCAGATTGATCCAGGGCTGCCGCTGCTGGTGATTGGCGGTGAATGTGATCCGGTGAGCGAAGGCAAGCGTCTGAGAGATCTGGCCGATGCCCTGCGCGACGCCGGCAACCAACGTTTGCAACTGAAGATCTATCCGCAGGCTCGGCACGAACTGTTCAACGAAACCAACCGCGATGAGGTGACCGCCGATGTGCTGGCCTGGATTGCCCAGACGCTAAGCCACCAGCGACCACCACGCAGCGAGTAG	MIHQTFWLTATDHSRLLVNQWLPETAPLAVIMLAHGMAEHSDRYGRLAQALCDEGYGVYAPDQRGHGKTGEEAILGHFADQDGWAKVVGDLASLNHHIGQQHPETPILLLGHSMGSYIAQGYLLHHSASLHGAILSGSNFQPVALYRAARLIARFERRRQGATGRSALIEWLSFGSFNKKFKPTRTPFDWLSRDPGEVDKYIRDPLCGFRCTNQLWIDLLGGLQQISKASNLAQIDPGLPLLVIGGECDPVSEGKRLRDLADALRDAGNQRLQLKIYPQARHELFNETNRDEVTADVLAWIAQTLSHQRPPRSE				NA	NA	NA	NA	NA
D1-36_03863	471	phaJ	COG2030	(R)-specific enoyl-CoA hydratase	ATGACCCAGGTTACCAACATCCCTTACGAAGCCCTCGAAGTCGGCCAGACCGCCAGCTACAGCAAGACCGTCGAAGAGCGCGACATCCAGCTGTTCGCCGCCATGTCCGGCGATCACAACCCGGTACACCTGGACGCCGAATTCGCCGCCGCCAGCATGTTCAAGGAACGCATCGCCCACGGCATGTTCAGCGGTGCGCTGATCAGCGCGGCAGTGGCCTGTGAGTTGCCTGGGCCGGGGACCATCTATATCGGCCAGCAGATGAGTTTCCAGAAGCCGGTGAAGATTGGCGATACCCTGACCGTGCGCCTGGAGATCCTGGAAAAGCTGCCGAAATTCCGCGTGCGTATCGCCACGCGCGTGTTCAACCAGCGCGATGAGCTGGTGGTGGACGGCGAAGCGGAGATCCTGGCGCCGCGCAAGCAGCAGACCGTGACCTTGCCCGAGTTGCCGGCAATCAGCATCGGCTGA	MTQVTNIPYEALEVGQTASYSKTVEERDIQLFAAMSGDHNPVHLDAEFAAASMFKERIAHGMFSGALISAAVACELPGPGTIYIGQQMSFQKPVKIGDTLTVRLEILEKLPKFRVRIATRVFNQRDELVVDGEAEILAPRKQQTVTLPELPAISIG	PGPT0014741_364	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_RELATED_GENES	CE-BIOFILM-POLYHYDROXYBUTYRATE_PRODUCTION,PGPT0014741-phaJ|croR-K17865	NA	NA
D1-36_03864	864	aaeA_2	COG1566	p-hydroxybenzoic acid efflux pump subunit AaeA	ATGCGTACTTCCGTACGTGTCGCCGTCACGTTGAGCGTGGTGGCCCTGGCGATCTTCGCCGGTTTTCATTTGTGGCAGTACTACATGCTCACGCCCTGGACCCGGGACGCGCGAATCCGTGCCGACGTGGTGGTGATCGCCCCAGACGTCTCGGGTTGGGTGCGCGAGCTCAGGGCCGTGGACAACCAGCACGTCAAGGCGGGGGATTTGTTGCTGAGTATCGATCGCGAGCGTTTCGAGGCCGCGGTGGAGAAGGCCCGCGCGGTAGTGCAGACCCGCCAGCAGCAGTTGAGCCTGCGCGAACACGAAGCCAGCCGTCGAGCGGCCCTGGGACCCCAGGCCATCAGCGCCGAATTGCGCGAGAACGCCCAGATCAATGCCGGCATCGCCCGTGGCGAGCTACGCGAGGCCCAGGCCGAGGCCAAAGTCGCGGAGCTGAACCTGGCTCGCAGCCAGGTCCTGGCCCCACGCAGCGGCCACGTCACCAACCTGCGCCTGGCCGAAGGCAACTATGTGAACGCCGGGCAACCGGTCATGGCGTTGGTCGATGATTCGACGTTCTACGTGCAAGCTTACTTCGAGGAAACCAAGTTGCCGCGCATTCGCGTCGGCGATCCGGTCAAGGTCTGGTTGATGAGCGCCGGCCATGCGCTGGACGGCCATGTGGAAAGCATCAGTCGAGGCATCACCGACCGCAACACCAACCCCGATGCGCAACTGCTGGCAGAGGTCGAGCCGACCTTCAACTGGGTGCGCCTGGCCCAGCGGATCCCGGTGCGGATCAAGCTGGACAAGGTGCCGGAAGGGGTGAGCCTGAGTGCCGGGATGACAGCGAGTGTGCAGGTGCAGGACGAACAGCGATAG	MRTSVRVAVTLSVVALAIFAGFHLWQYYMLTPWTRDARIRADVVVIAPDVSGWVRELRAVDNQHVKAGDLLLSIDRERFEAAVEKARAVVQTRQQQLSLREHEASRRAALGPQAISAELRENAQINAGIARGELREAQAEAKVAELNLARSQVLAPRSGHVTNLRLAEGNYVNAGQPVMALVDDSTFYVQAYFEETKLPRIRVGDPVKVWLMSAGHALDGHVESISRGITDRNTNPDAQLLAEVEPTFNWVRLAQRIPVRIKLDKVPEGVSLSAGMTASVQVQDEQR	PGPT0023615_86	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYBENZOIC_ACID_GALLATE_RESISTANCE,PGPT0023615-aaeA-K15548	NA	NA
D1-36_03865	207			hypothetical protein	ATGGGCTTGCATGAATGGTCGATCGGCGGGGTGCTGCTCAGCCCGTTTTTGATTTATGTCGTGCTGGCCTTGTTGGTCACCGGAGCCTTGCGACTGCTGCTCAGTCTCGTGCCGGCAGGGCGCTGGATCTGGCATGAAGCGCTGTTCGACTGCGCTCTGTATGTCTGTGTTTTGACTGTCATTACCCTGGTCCTCGGACCGTCATGA	MGLHEWSIGGVLLSPFLIYVVLALLVTGALRLLLSLVPAGRWIWHEALFDCALYVCVLTVITLVLGPS				NA	NA	NA	NA	NA
D1-36_03867	2001	aaeB_2		p-hydroxybenzoic acid efflux pump subunit AaeB	GTGCCCATCACCTTTCAGGCTCTGTTCGCCCCTGATCGTCTCGCTGTGCAGTTCGCCATCAAGACTGTGCTCGGTGGCGGCCTGGCGTTGTGGCTGGCGTTGCGCTGGGGATTGGAGCAGCCGTCGTGGGCGCTGATGACCGCGTTTATCGTTGCCCAGCCGTTGTCTGGGATGGTGGTGCAGAAGGGCCTGGCACGCTTGGTCGGGACTCTGGTGGGGACAATCATGTCGGTGGTGTTCATGGGCCTGTTCGCCCAGGCGCCCTGGTTGTTCCTGCTGGCGCTGGCGTTGTGGCTGGGCGTGTGCACGGCCTGTTCGACGCTCTTGCGCAGCGCGTGGTCGTATTCGTTCGTGCTGGCTGGCTACACCGTGGCGATCATTGCCTTGCCGGCCATCGCCCATCCGCTTGGAGTGTTCGACCAGGCGGTGGCGCGTTGCACCGAGATCAGCCTGGGCATCACCTGCGCCACCGTGACCAGCGCCTTGCTCTGGCCGTTGCGGGTTGAACGGCAATTGGCGGATCAGGCACGTGCCGCCTGGCAAAGTGGCATGCAGGCGGCGCGCGCCACATTGGCCGGCGATGCCCAGGCGCGCAAAGGTCTGTTGGAAATCCTCGGCAAAATCGTCGCGGTAGACGCCCAGCGCGAACATGCCTGGTTCGAAGGCCGCCTGGGCCGCCAGCGTGCCCGGGCCATCAGTGGCTTGAGCCAGAAACTGTTGATGCTGCTGCGCATTTCGCGCTCGGTACGCCGACAATGGAACCAGCTCGACCCTCAAGAAGCCCAAGCGCTGCAGCCGTGGATGAGCGAGGTGCAGCAAGCCCTCGACGCCGACAGCACGACATTGCAGGCACTGCGGCCGCGGGTATGGGATGCGTCTCACGAAGCACGGTTCAGCTCGGCGCAAAGTTATTGCCTGGCACGTTTCGCTTTGTTGCTCGACACCGCCCTGGCGGCCTGCGCTGCGCTGTCGGCGGTGCAAGAGGGCAGGGCGGCGGCCGATCCGCCACGCACCCTGGCGCCCCATCGGGACTTGTCCCTGGCGATGGTGTTTGGAGCCCGCAGCGCCCTGGCGTTCCTGGCAGTGGCGTGTTTCTGGCTGGCCACTGCCTGGCCTGCCGCGTCGGGCGCGCTGTTGCTGACGTGTGTGGTGTGCAGCCTGTTCGCCAGCCGCGAAAATGGCGCGCAGATCGGCATGAGTTTCTTGCGAGGCATTCTCCTGGCGGTACCGACCGCGTTTGTGATCGGTGAAATCCTGCTGCCCCAATGGAGCAGCTTTGCGATGCTCTGCATGGCCATGGGCGTACCTCTGTTCCTGGGGGCGCTGGGCATGGCCAAGCCGCCGCTCTACGCGACCGCCACCTCGTTCTGCCTGCACTTCGTGGTGTTGGTATCGCCGCTTAACGCCATGAAGTACGACGTTGCGACATTTTTCAACAATGCCCAGGCCATGATGATCGGTGTCGGCGCGGCCGTGCTGGCATTCAACTTGTTGATTCTGCGCAACCCGGCCTGGCACAGCCGTCGGTTGCTGGCGGCAACGCTCGATGACCTGGTGCGCTTGACCCATCGCAATCTGCGCGGCGCCGAGAGCTGGTTCGGCGGGCGCATGGCCGATCGTTTGCTGCAACTGGCGCGGCACTATCCGGAGCTGCCGGTGCCGGCGCGCAGTCGTTGGGACGATGGTTTGCTGGGCCTGGACGTCGGGGACGAATTGCTCCATCTGCGCTTGAGCCTGGCCGTCGCCCAAGTCCCGGACAGTCCAGCCCAACGCCGATATTTCGAAACGTTGGAGCAGGTACTGGAGCACGGCCCGGCGGGCGGGCAGGCCGACGCACTGGCCCAGGCGAGCGACGATTATCTGGCAGCGCTTTCAAAGCAACCGCCAAGCGACGCGCTGAAGCTGGCCCAGGGCGCGGTGGTGCAATTGCAGAACAGCTGGCGCGCCTGGTGCCGCCAGCACGAATCTTCAGAAGGGAAACATAGCCATGGGCTTGCATGA	MPITFQALFAPDRLAVQFAIKTVLGGGLALWLALRWGLEQPSWALMTAFIVAQPLSGMVVQKGLARLVGTLVGTIMSVVFMGLFAQAPWLFLLALALWLGVCTACSTLLRSAWSYSFVLAGYTVAIIALPAIAHPLGVFDQAVARCTEISLGITCATVTSALLWPLRVERQLADQARAAWQSGMQAARATLAGDAQARKGLLEILGKIVAVDAQREHAWFEGRLGRQRARAISGLSQKLLMLLRISRSVRRQWNQLDPQEAQALQPWMSEVQQALDADSTTLQALRPRVWDASHEARFSSAQSYCLARFALLLDTALAACAALSAVQEGRAAADPPRTLAPHRDLSLAMVFGARSALAFLAVACFWLATAWPAASGALLLTCVVCSLFASRENGAQIGMSFLRGILLAVPTAFVIGEILLPQWSSFAMLCMAMGVPLFLGALGMAKPPLYATATSFCLHFVVLVSPLNAMKYDVATFFNNAQAMMIGVGAAVLAFNLLILRNPAWHSRRLLAATLDDLVRLTHRNLRGAESWFGGRMADRLLQLARHYPELPVPARSRWDDGLLGLDVGDELLHLRLSLAVAQVPDSPAQRRYFETLEQVLEHGPAGGQADALAQASDDYLAALSKQPPSDALKLAQGAVVQLQNSWRAWCRQHESSEGKHSHGLA				NA	NA	NA	NA	NA
D1-36_03868	465			hypothetical protein	ATGACTGACATCAACAAAGAATCCATCTCTGTCTTGAACGACCTGATCGAGACCAGCAAGGATGGCCAGGAAGGATTCAAGACCTGCGCTGAAGACATCAAGCACCCTGAGCTCAAGGCGCTGTTTGTCAAGCGCGCCGCCGATTGCGCCACCGCTGCGGCTGAGCTGCAAGCCGCCGTGCGTTCCCTGGGTGGCGATCCGGAAACTTCTACCAGCGTTGCCGGTGACCTGCACCGCCGTTGGGTCGACGTAAAATCCATGTTCACCGGCAAGGACGAAGAGGCTGTGCTGAACGAAGCCGAGCGCGGCGAAGACCATGCGCTGAAGGCTTATAAGGAAGCCATCGAGAAGATCAACAAACACAACCTGGTGGGCATTCGTGACCTCGTGGAGCGTCAGTACCACGGCGTGCAACGCAACCATGACCAGGTCAAGGCTCTGCGCAACCAGGCGCGTGCCAGCTAA	MTDINKESISVLNDLIETSKDGQEGFKTCAEDIKHPELKALFVKRAADCATAAAELQAAVRSLGGDPETSTSVAGDLHRRWVDVKSMFTGKDEEAVLNEAERGEDHALKAYKEAIEKINKHNLVGIRDLVERQYHGVQRNHDQVKALRNQARAS				NA	NA	NA	NA	NA
D1-36_03869	237			hypothetical protein	ATGAATCCAGAAAAGCTTGAGCTGCTGGTCACCCGCCAGATGCCCTTCGGCAAGTACAAGGGCAGAATTCTTGCCGACCTGCCAGGCCAATACCTGAATTGGTTCGCGCGGGAGGGCTTCCCTCACGGCGAATTGGGCGGGTTGCTGGCATTGATGCAGGAAATCGACCACAACGGTCTGTCTGACCTGCTGGATCCGCTGCGGGCTAAACATGGCTTGCCCAAACCTCGCCATTGA	MNPEKLELLVTRQMPFGKYKGRILADLPGQYLNWFAREGFPHGELGGLLALMQEIDHNGLSDLLDPLRAKHGLPKPRH				NA	NA	NA	NA	NA
D1-36_03870	1188	cefD_2	COG0520	Isopenicillin N epimerase	ATGCCCGAAAATACGCTGCGTGCCCACGACGAAGCCTTCTGGGAAACCTTTGTCGGTCGTTACGATGTCGACGTCAATGGTCCGCTCAACCTGGAAAACGGCTACTTTGGCCGGATGTCCCGTACGGTGGTCGCGGAGTACCAACGCAATATCGACTGGGTGAACCGCGGCAATTCGGTCTACGTGCGCCAACAGTTCGACCTGGAGCATTGCGAAGTGATTCGCCGAGAGGTGGCGCAGCTCATCCACGCCCCAGCGTCCACCGTGGCGCTGGCCACCAACGCGGTTGACGCCTTGCAGACGCTGATCCGCAATTACAACCAGCTCAAGCCTGGCGACCAGGTTCTGATCAGCGACGTGGAGTACGAGTCGGTCAAAAGCGCGATGCGCTGGCTCGCCCGCCAGCGTGGCGCCGAGGTCATCGAGCTGGTCCATCCGCACCCCGCCAGTTTCGACAGCCTGGTGGGCACGTATCGAGAAGCCTTCATTCGTTATCCGCGCCTGAAGCTGATGGCGCTGACCTACGTTAACCACCTGACCGGCCTGGTGATGCCGGTCCAGGCGATAGCCGAGACGGCACGGGAGTTCGACGTCGATATCATTCTCGACGGCGCCCACGCCCTGGGGCAGATCGATTTCAATCTCAATAAGCTCGGCATTCAATTTGCCGGGTTCAACTTGCAGAAATGGCTTGGCGGCCCTCTGGCCCTGGGCTTTCTCTATATCGCTCCACACCGGCTGGCCGACATCGACCCGGACATGGACGAAGGCCACTACCCCACCACCGATATACGCTCGCGCACGCCCCACAGCACGCCCAACATCCCGGCCCTGCTGACGCTGCCCCTGGTATTCGAAGAGCACCGTGCCCTGGGCGGAGCACCGGCCAAGGGTGCTCGGCTCTGTTATCTACGGGACCTGTGGGTGAGCGCGGTGCGCGATGTGCCCGGCATCGAGGTCATGACCCCAGACGACCGGCGCCTCTATTGCGGTATCACGTCCATGCGATTCACCAACCAGCCTGATCAACAGGTGATGGCCGACCGACTGCTCAAGGAATATGGGATCTTTACCGTGGTGCGCAAGACCAGCGTCGGCCTCTGCATCCGCATTACGCCGGGGTTGATTACCTTGGCGCGGGATATGGAGCGGTTGACTGCGGCACTGATCAACCTGAACAGTACGTAA	MPENTLRAHDEAFWETFVGRYDVDVNGPLNLENGYFGRMSRTVVAEYQRNIDWVNRGNSVYVRQQFDLEHCEVIRREVAQLIHAPASTVALATNAVDALQTLIRNYNQLKPGDQVLISDVEYESVKSAMRWLARQRGAEVIELVHPHPASFDSLVGTYREAFIRYPRLKLMALTYVNHLTGLVMPVQAIAETAREFDVDIILDGAHALGQIDFNLNKLGIQFAGFNLQKWLGGPLALGFLYIAPHRLADIDPDMDEGHYPTTDIRSRTPHSTPNIPALLTLPLVFEEHRALGGAPAKGARLCYLRDLWVSAVRDVPGIEVMTPDDRRLYCGITSMRFTNQPDQQVMADRLLKEYGIFTVVRKTSVGLCIRITPGLITLARDMERLTAALINLNST	PGPT0010995_236	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-PENICILLIN_METABOLISM,PGPT0010995-cefD-K04127	NA	NA
D1-36_03871	666	eda	COG0800	2-dehydro-3-deoxy-phosphogluconate aldolase	ATGACAAACCCATCCCCGACCGTTTCCATGGCGGACAAAGTGACGCTGATCGACAGCCTCTGCGCCAAGGCGCGGATCCTGCCGGTGATTACCATCGCGCGTGAACAGGACATCCTGCCGCTGGCCGATGCCCTGGCCGCCGGTGGCCTGACGGCACTGGAAGTGACCTTGCGCTCGCAATACGGGCTCAAGGCCATTCAGGTCCTTCGCGAGCAGCGCCCAGAGCTGGTGACCGGTGCCGGCACGGTGCTCGATCGCCACATGCTGGCCGCCGCCGAGGCTGCCGGTTCGCAATTCATCGTGACGCCGGGTATCACTCGGGATCTGTTGGAAGCCAGCGTCCAGAGTCCGATTCCGTTGCTGCCGGGGATCAGCAATGCCTCGGGCATCATGGAAGGTTATGGCCTGGGCTATCGCCGCTTCAAGTTGTTCCCGGCGGAAGTCAGCGGTGGCGTTGCTGCCATCAAGGCATTGGGCGGGCCGTTCGGCGAAGTGAAATTCTGTCCGACCGGCGGCGTGAGCCCGGCCAATATCAAAAGTTACATGGCGTTGAAAAACGTGATGTGCGTAGGCGGGAGCTGGATGCTCGATCCGGAGTGGATCAAGAACGGCGACTGGGCCCGCATCCAGGAATGCACCGCCGAGGCATTGGCGCTGCTGGACTGA	MTNPSPTVSMADKVTLIDSLCAKARILPVITIAREQDILPLADALAAGGLTALEVTLRSQYGLKAIQVLREQRPELVTGAGTVLDRHMLAAAEAAGSQFIVTPGITRDLLEASVQSPIPLLPGISNASGIMEGYGLGYRRFKLFPAEVSGGVAAIKALGGPFGEVKFCPTGGVSPANIKSYMALKNVMCVGGSWMLDPEWIKNGDWARIQECTAEALALLD	PGPT0002060_530	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
D1-36_03872	714	pgl_2		6-phosphogluconolactonase	ATGGCGATATCTGAATTGAAACTGCCCCAGGGTGTCACTGCCCTGGAGTTCAAGAGCCCAGTGGTGCTTGCGGAAAAATTGGCGGTGAACGTGGCGGAGCAATTGCGCGCCGCGATCGATGCCAAAGGCGCGGCGACCTTGGTGGTGTCCGGCGGTCGTAGCCCGGTGGCGTTTTTCCAGCATCTGGCCAAGCAGGCGCTGGACTGGTCGAACGTGGTGGTGAGCCTGGCCGATGAGCGCTGGGTGCCGGTTGAACATGCCGACAGCAACGCCGGCCTGCTCAAGCGTTATCTGCTTCAAGGGGCTGCGGCCAAGGCCCAGTTCCTAAGCCTCTACAGCGCCAGCGCCAATCTGGAAGCCGCCGCCGAGCAGGCGGATCGCCTGCTCGCCGAGCTGCCGCCGATCGACGTGCTGATACTGGGCATGGGCGATGACGGGCATACCGCGTCGCTGTTTCCCGACAGCCCGAATCTGGCCGAGGCCCTGGATAAGAATGGTGCTCGCCGCTGCTGGCCGATGCTCGCGCCGACGGTCCCACACCAACGCCTGACCATGAGCCGCGCCTTGCTGGCGTCGGCCAGGCACAAAGTGCTGTCTATTTCCGGTCAATCGAAACTGACCACCCTGAATGCCGCGGTGTCTGGTGACGATGTCGCCGAGATGCCGATCCGCGCATTTCTGCAACCTACGTTAGAGATTTACTGGTGCCCATGA	MAISELKLPQGVTALEFKSPVVLAEKLAVNVAEQLRAAIDAKGAATLVVSGGRSPVAFFQHLAKQALDWSNVVVSLADERWVPVEHADSNAGLLKRYLLQGAAAKAQFLSLYSASANLEAAAEQADRLLAELPPIDVLILGMGDDGHTASLFPDSPNLAEALDKNGARRCWPMLAPTVPHQRLTMSRALLASARHKVLSISGQSKLTTLNAAVSGDDVAEMPIRAFLQPTLEIYWCP				NA	NA	NA	NA	NA
D1-36_03873	1473	zwf_2	COG0364	Glucose-6-phosphate 1-dehydrogenase	ATGCATTCGATTACGGTTGAACCGTGTACTTTTGCCTTGTTCGGCGCGTTGGGCGACCTGGCGCTACGCAAGCTGTTTCCTGCCCTTTACCAGCTCGATGGCGCCGGCTTGTTGCACGAAGACACGCGGATCCTGGCGCTGGCCCGTGAACCGGGCAGCGAACAACAGCATCTGGCGTTCATCACCACCGAACTGCGGCGTTACGTCGGTGATAAAGACCTCGACGAATCCGTGATCGAACGCTTCCTGGCGCGGCTGACGTACCTGCACGTGGATTTTCTCAAGGCGGACGATTACGTCGCGCTTGCCGAGCAGGTCGGGCTGACGCAGCAACAAGTCATTGCCTATTTCGCCACGCCGGCGGCGGTCTACGGCGCGATTTGCGAGAACCTGGCGAAAGTCGGCCTCAGCGAAAACACCCGTGTGGTGCTGGAAAAGCCCATCGGTTCGGACCTCGAATCGTCGCGCAAGGTGAACGACGCCGTGGCGCAGTTCTTTCCGGAGAACCGCACTTACCGCATCGACCATTATCTGGGCAAGGAAACGGTACAGAACCTGATCGCGCTGCGGTTCGCCAACAGCCTGTTCGAAACCCAGTGGAACCAGAATTACATTTCCCACGTGGAAATCACCGTGGCCGAGAAGGTCGGGATCGAAGGGCGCTGGGGCTATTTCGACAAGGCCGGCCAACTGCGGGACATGATCCAGAACCACCTGCTGCAGCTGTTGTGCCTGATCGCCATGGACCCCCCGGCGGACCTTTCCGCCGACAGCATCCGTGACGAGAAGGTCAAGGTGCTCAAGGCCTTGGCGCCGATCAGTCCGGAAGGCCTGACCACCCAGGTGGTGCGTGGCCAGTACATCGCCGGCCACAGCGAAGGCAAGGCGGTGCCCGGCTACCTCGAAGAGCCGAATTCCAATACCCAGAGCGACACCGAGACCTTCGTTGCCCTGCGCGCCGATATCCGCAACTGGCGCTGGGCCGGGGTGCCGTTCTACCTGCGCACCGGCAAGCGCATGCCGCAGAAGCTGTCGCAGATCGTGATTCACTTCAAGGAACCGTCCCACTACATCTTCGCCCCCGAGCAGCGCTTGCAGATCAGCAACAAACTGATCATCCGCCTGCAACCGGACGAAGGGATTTCCTTGCGGGTAATGACCAAGGAGCAGGGCCTGGACAAGGGCATGCAGTTGCGCAGCGGTCCGCTGCAACTCAACTTTTCCGACACCTACCGCAGCGCACGGATTCCCGATGCCTACGAGCGGTTGTTGCTGGAAGTCATGAACGGCAATCAGAACCTGTTTGTTCGTAAAGATGAAATCGAAGCCGCGTGGACGTGGTGTGACCAGTTGATCGCCGGCTGGAAGAAGTCTGGCGATGCGCCCAAGCCTTATGCCGCTGGGTCATGGGGGCCGATGAGCTCCATTGCACTGATCACGCGGGATGGGAGGTCATGGTATGGCGATATCTGA	MHSITVEPCTFALFGALGDLALRKLFPALYQLDGAGLLHEDTRILALAREPGSEQQHLAFITTELRRYVGDKDLDESVIERFLARLTYLHVDFLKADDYVALAEQVGLTQQQVIAYFATPAAVYGAICENLAKVGLSENTRVVLEKPIGSDLESSRKVNDAVAQFFPENRTYRIDHYLGKETVQNLIALRFANSLFETQWNQNYISHVEITVAEKVGIEGRWGYFDKAGQLRDMIQNHLLQLLCLIAMDPPADLSADSIRDEKVKVLKALAPISPEGLTTQVVRGQYIAGHSEGKAVPGYLEEPNSNTQSDTETFVALRADIRNWRWAGVPFYLRTGKRMPQKLSQIVIHFKEPSHYIFAPEQRLQISNKLIIRLQPDEGISLRVMTKEQGLDKGMQLRSGPLQLNFSDTYRSARIPDAYERLLLEVMNGNQNLFVRKDEIEAAWTWCDQLIAGWKKSGDAPKPYAAGSWGPMSSIALITRDGRSWYGDI	PGPT0017380_4042	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_SUGAR_ACID_UTILIZATION	PLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017380-zwf-K00036	NA	NA
D1-36_03874	870	hexR_2	COG1737	HTH-type transcriptional regulator HexR	ATGGACCGCGTGCGAAATCTACTGGAGCAGATCCAGAGTCGCCTGGAAGACCTGAACAAGGCCGAACGCAAGGTGGCCGAGGTGATCCTGCTCAACCCACAGCAGGCTACCCGCTTCAGCATTGCCGCCCTCGCCCAGGCGGCCTCGGTCAGCGAACCGACCGTCAACCGCTTTTGCCGCTCGTTCGGCGTGAGCGGTTACCCGGAACTCAAGCTGCAACTAGCCCAAAGCCTGGCCAGCGGCGCGGCTTATGTCAGCCGCGCAGTGGAAGCCGACGACAACCCTGAAGCCTACACCCAGAAAATCTTTGGCAGCGCCATTGCCTCATTGGACAGTGCCTGCCAGGCCCTTGATCCAAATTTGATCAGCCGCGCGGTCGACCTGCTGATCCAGGCCCGGCAGATCCACTTCTTCGGCCTCGGCGCCTCGGCTCCGGTGGCGCTGGATGCCCAGCACAAGTTTTTCCGGTTCAACCTGGCAGTGACCGCCCACGCCGACGTGCTGATGCAACGCATGATCGCCTCGGTGGCCCATACCGGTGAGTTGTTCGTGATCATTTCCTACACCGGTCGTACCCGCGAACTGGTGGAAGTAGCGCGTATCGCCCGGGAAAACGGCGCATCGGTACTCGGCCTGACCGCCGAGGGCTCGCCACTGGCCAAGGCCAGCACCTTGAGCCTCAATATTCCGCTGCCCGAAGACACCGATATCTACATGCCGATGACTTCGCGAATCATCCAGCTCACCGTACTGGACGTGCTCGCCACCGGCATGACCCTGCGCCGCGGGGTGGACTTCCAGCCGCACCTGCGCAAGATCAAGGAAAGCCTCAATGCCAGCCGGTATCCGGTTGGGGATGAGTTCAACTGA	MDRVRNLLEQIQSRLEDLNKAERKVAEVILLNPQQATRFSIAALAQAASVSEPTVNRFCRSFGVSGYPELKLQLAQSLASGAAYVSRAVEADDNPEAYTQKIFGSAIASLDSACQALDPNLISRAVDLLIQARQIHFFGLGASAPVALDAQHKFFRFNLAVTAHADVLMQRMIASVAHTGELFVIISYTGRTRELVEVARIARENGASVLGLTAEGSPLAKASTLSLNIPLPEDTDIYMPMTSRIIQLTVLDVLATGMTLRRGVDFQPHLRKIKESLNASRYPVGDEFN	PGPT0017985_428	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
D1-36_03875	855	yeaD_1	COG0676	Putative glucose-6-phosphate 1-epimerase	ATGCATGAGCATCCGCTACAACGCTTTTTCAGATCCTTGCGCGAGCGTCCGGTGTTTGCGTGGGAGCGCTATCAGCAGCGCGACGTCTTGGTTATTGACCATCCGTTGTGCCAAGCGGTTTTCAGCCGCCAGGGTGCGCAGTTGTTGCACTTCCAGCCGCGAGGCCAGAAACCTTGGCTGTGGTGCGCGGCCAAGTGGCCCCAGGTCGGCGCGATACGCGGCGGGGTACCGGTGTGTTGGCCTTGGTATGGCCGCCATCCGAGTGAAAATGCCTGGCCGTCTCATGGTTGGGCGCGGCTGATCGATTGGAAGTTGCTCGACAGCGCCAGCGATGACGTTGGCGTGCATCTGCATTGGCAATTGCAGCTGTGCGACTGGCAAGTGGACCTGCATGCCGACTTGGGCGACCGCATGGAATTGCGCTTGAGCACCGAGCATCAAGACAGCCTGCCTTGCCAATTGAGCCAGGCCTTGCATGCCTATTGGCGCATTGGTGACGTTGGCGAGGTAGCGCTGTCTGGACTCGAAGGCGCGCAAGGTTACGACCAATTGAACCGTGCGGTTTGCCGGCAGGAAGGCGAGTTGCGGGTCGAGGGCGGCTGTCAGCGAGTGTTCCAGCATGAAGGAGAGTTGCAGCTCAAGGATCACGCCTGGCAGCGGGAATTGTGCATCGACACCGGTGAAAGCGCCGACACGGTGGTGTGGCATCCCGGTACACGGCCGTTGCTGGGCGTGAGCTGGGATGAGGTCAACGAGTTCGTTTGCGTCGAAGCGGCCAGTGGCGGCACCGACAGCCTGAGCCTGGCGCCCGGGGAGCGGGCGCATTTGAGTTTGCAGGCGCGGGTAGGGGCTTAG	MHEHPLQRFFRSLRERPVFAWERYQQRDVLVIDHPLCQAVFSRQGAQLLHFQPRGQKPWLWCAAKWPQVGAIRGGVPVCWPWYGRHPSENAWPSHGWARLIDWKLLDSASDDVGVHLHWQLQLCDWQVDLHADLGDRMELRLSTEHQDSLPCQLSQALHAYWRIGDVGEVALSGLEGAQGYDQLNRAVCRQEGELRVEGGCQRVFQHEGELQLKDHAWQRELCIDTGESADTVVWHPGTRPLLGVSWDEVNEFVCVEAASGGTDSLSLAPGERAHLSLQARVGA				NA	NA	NA	NA	NA
D1-36_03876	1347	oprB	COG3659	Porin B	ATGAAGAAGAAGAACAATGCCCAGCTTATCTGCCAGTTGTCAGCCGTTGCGGCGATGATGCTGGCCGGTAGCGCGCACGCTGCCGACGCGTTCAGCGCCGATTCGCAGTGGATGACGGGCGACTGGGGCGGTGAACGGACCAAGCTGATCGAGCAGGGTATCGACATCAAGGCCGATTTCGTCGGTGAGATGGGTGCCAACCTCCACGGCGGCTACAACGATGACAAGACTGCGCGTTGGTCCCAGCAGTTTGGCCTGGGTGTCGCGCTCGACCTGGAAAAACTGGCGGGCTGGAACGATACCGAAGCCAAGATCCAGTTCACTCGCCGGGATGGTCGCAACATTTCCAACGACCGTATCGGTGACCCGCGTGCCGGCACGCTCAGTTCGTCCCAGGAAGTCTGGGGCCGCGGCCAAACCACGCGTCTGACGCAGTTGTGGATCAAGCAGAAGTACTTTGACAGCAAGCTGGACGTCAAGGCCGGTTACTACGGCGTGGGCGAGGATTTCAACACTTTCCCTTGCGACTTCCAGAACCTGGCCTTCTGCGGTTCCCAAGCGGGTAACTGGGCCACCGGCATCTGGTACAACTGGCCAATCATGCAGGCAGCGATTCGGTTCAAGTACAACATCACCCCTGAGCTCTACGCGCAAATCGGTGCGTACAACCAGAACCCTTCGCAACTGGAAAACAACAACCGTTACAAGCTCAGCGGCAGCGGGACCGAGGGTACGCTGATTCCGGTCGAGTTGGTCTGGTCGCCCAAGCTCAACAACCTGCCTGGCGAATACCGTGTCGGTTACTACAAGAGCACGGCCAAGGCCGATGACGTCCGTGAGGACGACAACGGCAACGACGCCGCAACCACCGGCAGCGCCTATCGCAGCCACAGCAGCAAGGACGGCTACTGGTTCGTCATGCAACAGCAGCTCACCACCCACAATGGTGACGCTTCGCGCGGCTTGAACATCGCGGCCAACGCCACCTTCCACGACAAGGACACCAACATCGTCGACAACTACCAGTCGCTGATGTTCGTGTACAAGGGCCCATTCGATGCGCGTCCAAAGGATGACGTGGGTATCGGCTTCGCCCGTATCCATGTCAACGAAGACGTGAAGAAGAACGCCGATCTGACCAACGTAGCCAATGGCGTGACCGATTACGACGATCCGCTGTTTTCGCCGTTGCGCAGCACCGAGTACAACTACGAAATCAACTACGGCTTCCACGTCACCAACTGGCTGACCGTGCGTCCGAACCTGCAATACGTCACTCACCCGGGCGGTGTTGACGAGGTGGACAACGCGCTGGTGGCCGGCCTGAAAATCCAGTCGGTGTTCTGA	MKKKNNAQLICQLSAVAAMMLAGSAHAADAFSADSQWMTGDWGGERTKLIEQGIDIKADFVGEMGANLHGGYNDDKTARWSQQFGLGVALDLEKLAGWNDTEAKIQFTRRDGRNISNDRIGDPRAGTLSSSQEVWGRGQTTRLTQLWIKQKYFDSKLDVKAGYYGVGEDFNTFPCDFQNLAFCGSQAGNWATGIWYNWPIMQAAIRFKYNITPELYAQIGAYNQNPSQLENNNRYKLSGSGTEGTLIPVELVWSPKLNNLPGEYRVGYYKSTAKADDVREDDNGNDAATTGSAYRSHSSKDGYWFVMQQQLTTHNGDASRGLNIAANATFHDKDTNIVDNYQSLMFVYKGPFDARPKDDVGIGFARIHVNEDVKKNADLTNVANGVTDYDDPLFSPLRSTEYNYEINYGFHVTNWLTVRPNLQYVTHPGGVDEVDNALVAGLKIQSVF				NA	NA	NA	NA	NA
D1-36_03877	1161	ugpC_2	COG3839	sn-glycerol-3-phosphate import ATP-binding protein UgpC	ATGGCTACGCTTGAACTTCGCAATGTAAACAAGACCTACGGCGCGGGCCTGCCCGACACCTTGAAAGACATCCAGCTGTCGATCAAAGAAGGCGAATTCCTGATCCTGGTCGGTCCTTCGGGCTGCGGCAAATCGACCCTGATGAATTGCATCGCCGGCCTCGAGACCATCACCGGCGGCGCGATCATGATCGGCGACCAGGATGTCAGCGGCATGAGCCCGAAGGATCGCGACATCGCCATGGTGTTCCAGTCCTACGCGCTGTACCCGACCATGAGCGTGCGCGAGAACATCGAGTTCGGCCTGAAGATTCGCAAGATGAAACAGGCCGACATCAATGAGGAAGTGGCGCGGGTCGCCAAGCTGTTGCAGATCGAACACCTGCTCAACCGCAAGCCTGGCCAGCTCTCCGGTGGTCAGCAACAGCGCGTTGCGATGGGGCGGGCCCTGGCGCGGCGGCCGAAGATCTACCTGTTCGACGAACCGTTGTCCAACCTCGACGCCAAGCTGCGGGTCGAGATGCGCACCGAAATGAAACTGATGCACCAGCGCCTGAAGACCACCACGGTCTACGTGACCCACGACCAGATCGAAGCCATGACCCTGGGCGACAAAGTGGCGGTGATGAAGGACGGGATCATCCAACAGTTCGGCACGCCGAAGGACATCTACAACAACCCGGCGAACCTGTTCGTGGCAAGCTTCATCGGTTCGCCGCCGATGAACTTCATCCCGCTGCGCCTGCAACGCAAGGACGGCCGCCTGCTGGCCTTGCTCGACAGCGGCCAGGCCCGTTGCGAGTTGCCGCTGGGCATGCAGGACGCCGGCCTGGAAGATCGCGAAGTGATCCTTGGCTTGCGCCCGGAGCAGATCGTGCTGGCCGGCAACGAGCCGAACGGCATGCCAGCCATTCGCGCCGAAGTGCAGGTCACCGAACCCACCGGGCCAGACACGCTGGTGTTCGTCAATCTCAACGACACCAAGGTCTGCTGCCGCCTGGCGCCAGACGTGGCGCCGCAGCCGGGAGAGACCCTGACGTTGCAATTCGACCCAGCGAAAGTGCTGCTGTTCGACGCCAAGTCCGGCGAACGCCTGGGCGTGGCTGCGCAGCCGCAGGCCGAAGACCGACCTGCCAACGTGGCGCAGTTCAAAGGCCGGTGA	MATLELRNVNKTYGAGLPDTLKDIQLSIKEGEFLILVGPSGCGKSTLMNCIAGLETITGGAIMIGDQDVSGMSPKDRDIAMVFQSYALYPTMSVRENIEFGLKIRKMKQADINEEVARVAKLLQIEHLLNRKPGQLSGGQQQRVAMGRALARRPKIYLFDEPLSNLDAKLRVEMRTEMKLMHQRLKTTTVYVTHDQIEAMTLGDKVAVMKDGIIQQFGTPKDIYNNPANLFVASFIGSPPMNFIPLRLQRKDGRLLALLDSGQARCELPLGMQDAGLEDREVILGLRPEQIVLAGNEPNGMPAIRAEVQVTEPTGPDTLVFVNLNDTKVCCRLAPDVAPQPGETLTLQFDPAKVLLFDAKSGERLGVAAQPQAEDRPANVAQFKGR	PGPT0016310_982	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
D1-36_03878	840	ngcG	COG0395	Diacetylchitobiose uptake system permease protein NgcG	ATGACTAGTCTCGCTGCGAAACCTTCCATCAGCCGCATCGCGATCTATGCGGTGCTGATTGTTGCGGTACTGCTTTACCTGGTGCCGTTGGTGGTCATGCTGTTGACCAGCTTCAAGACGCCGGAAGACATCAGCACCGGCAACCTGTTGAGCTGGCCGACCGTGGTCAGCGGCATCGGCTGGGTCAAGGCCTGGGCGACGGTCAACGGTTATTTCTGGAACTCGATCAAGATCACCGTGCCGGCCGTACTGATTTCCACGGCCATCGGTGCGCTGAACGGTTATGTGCTGTCGATGTGGCGCTTCCGTGGCTCGCAGTTGTTCTTCGGCCTGCTGCTGTTCGGTTGCTTCCTGCCGTTCCAAACCGTGCTGCTGCCGGCCTCGTTCACCCTCGGCAAGATGGGCCTGGCCAGCACCACCACTGGCCTGGTGTTTGTCCACGTCGTCTACGGCCTGGCGTTCACCACGCTGTTCTTCCGTAACTACTACGTGAGTATTCCCGACGCGCTGGTGAAGGCGGCGCGCCTCGATGGCGCCGGGTTCTTCACCATCTTCCGGCGGATCATCCTGCCGATGTCGACGCCGATCATCATGGTCTGCCTCATCTGGCAGTTCACGCAGATCTGGAATGACTTCCTGTTCGGCGTGGTGTTCTCCAGCGGTGACTCCCAGCCCATCACGGTGGCGCTGAACAACCTGGTCAACACCAGCACCGGGGCCAAGGAATATAACGTGGACATGGCGGCGGCGATGATCGCCGGGCTGCCGACCCTGCTGGTCTATGTGATCGCAGGCAAGTATTTCGTGCGCGGCCTCACGGCTGGCGCGGTCAAGGGGTAA	MTSLAAKPSISRIAIYAVLIVAVLLYLVPLVVMLLTSFKTPEDISTGNLLSWPTVVSGIGWVKAWATVNGYFWNSIKITVPAVLISTAIGALNGYVLSMWRFRGSQLFFGLLLFGCFLPFQTVLLPASFTLGKMGLASTTTGLVFVHVVYGLAFTTLFFRNYYVSIPDALVKAARLDGAGFFTIFRRIILPMSTPIIMVCLIWQFTQIWNDFLFGVVFSSGDSQPITVALNNLVNTSTGAKEYNVDMAAAMIAGLPTLLVYVIAGKYFVRGLTAGAVKG	PGPT0016580_646	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
D1-36_03879	909	melD_2	COG1175	Melibiose/raffinose/stachyose import permease protein MelD	ATGAGTTCTGTTGCTGTGTTCAGCAAGGCCTCGCCTTTCGATGCATTGCAGCGCTGGCTACCAAAACTGGTGCTGGCGCCGAGCATGTTCATCGTCCTGGTGGGCTTCTATGGCTACATCCTGTGGACGTTCGTCCTGTCGTTCACGACGTCGACTTTCCTGCCTACCTATAAATGGGCGGGCCTGGCTCAGTATGCGCGGCTGTGGGACAACGACCGCTGGTGGGTGGCCAGCAAGAACCTCGCGGTGTTCGGCGGGATGTTCATCGGCATCACCCTGGTCATCGGCGTGCTGCTGGCGGTGTTTCTCGACCAACGTATTCGCCGCGAAGGTTTCATCCGCACCATTTACCTGTACCCAATGGCGCTCTCGATGATCGTCACCGGTACCGCTTGGAAGTGGCTGCTCAACCCGGGCATGGGCCTGGACAAATTGTTGCGTGACTGGGGTTGGGAAGGCTTCCGCCTGGACTGGCTGATCGACCCCGATCGCGTGGTGTATTGCCTGGTGATCGCTGCCGTTTGGCAGGCCTCGGGCTTCATCATGGCGATGTTCCTGGCCGGCCTGCGAGGCGTGGACCAGTCGATCATCCGCGCCGCGCAGATCGATGGCGCGAGCATGCCGCGCATCTACTGGAAAGTCGTACTGCCGAGCCTGCGCCCAGTGTTCTTCAGCGCCGTGATGATCCTGGCGCACATTGCGATCAAGAGCTTCGATTTGGTGGCGGCCATGACGGCCGGTGGTCCGGGCTATTCCTCCGACCTGCCTGCCATGTTCATGTATTCGTTCACCTTCAGTCGCGGCCAGATGGGCATGGGCTCGGCCAGTGCAATCCTGATGCTCGGTGCGATCCTCGCGATCATCGTGCCTTACTTGTATTCCGAGCTGAGGGCCAAGCGTCATGACTAG	MSSVAVFSKASPFDALQRWLPKLVLAPSMFIVLVGFYGYILWTFVLSFTTSTFLPTYKWAGLAQYARLWDNDRWWVASKNLAVFGGMFIGITLVIGVLLAVFLDQRIRREGFIRTIYLYPMALSMIVTGTAWKWLLNPGMGLDKLLRDWGWEGFRLDWLIDPDRVVYCLVIAAVWQASGFIMAMFLAGLRGVDQSIIRAAQIDGASMPRIYWKVVLPSLRPVFFSAVMILAHIAIKSFDLVAAMTAGGPGYSSDLPAMFMYSFTFSRGQMGMGSASAILMLGAILAIIVPYLYSELRAKRHD	PGPT0016575_421	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
D1-36_03880	1302			putative sugar-binding periplasmic protein	ATGAATGCGATTTCTCGCCTCGCTACTGTCATTTCTCTTGCTTCCTTGCTTCCCGTCGCAGCATTCCCTGTCAGCGCCCTGGCCGCCGAATCGAAAGGTTCCGTGGAAGTCGTCCACTGGTGGACGTCGGGCGGTGAAAAAGCCGCGGTCGATGTGCTCAAGGCTCAAGTAGAAAAAGACGGTTTTACCTGGAAGGACGGCGCCGTCGCCGGCGGTGGCGGTTCTACCGCCATGACCGTGCTCAAGAGCCGCGCCGTGGCCGGCAACCCACCGGGCGTTGCCCAGATCAAGGGCCCGGACATCCAGGAATGGGCGACCACCGGCCTGCTCGACACCGACGTCCTCAAGGACGTTTCCAAGGCAGAAAAGTGGGACAGCCTGCTCGACAAGAAAGTCTCCGATACCGTGAAGTACGAAGGTGACTACGTCGCCGTGCCGGTGAACATCCACCGCGTCAACTGGCTGTGGATCAACCCTGAAGTCTTCAAGAAAGCCGGTATCACCAAGAATCCAACCACCCTCGAAGAATTCTACGCCGCCGGCGACAAGCTCAAGGCCGCGGGCTTCATCCCCCTGGCCCACGGTGGCCAGCCTTGGCAGGACAGCACCGTGTTCGAAGCGGTGGTGCTCTCGGTCATGGGCGCTGATGGCTACAAGAAAGCACTGGTCGACCTGGACAACAAAGCGTTGACCGGCCCGGAAATGGTCAAGGCGCTGACCGAGCTGAAGAAAGTCGCGACCTACATGGACGCCGATGGCAAGGGCCAGGACTGGAACCTGGAAGCGGCCAAGGTCATCAATGGCAAGGCCGGCATGCAGATCATGGGTGACTGGGCCAAGAGCGAGTGGACTGCCGCGAAGAAAGTCGCCGGCAAGGACTACGAGTGCGTAGCGTTCCCGGGTACCGAGAAGGCCTTCACCTACAACATCGACTCCCTGGCGGTGTTCAAGCAGAAGGATGCAGGCACTGCGGCGGGCCAGCAGGACATCGCCAAGGTCGTGCTGGGTGAGAACTTCCAGAAAGTCTTCAGCATCAACAAGGGTTCGATCCCGGTGCGTAACGACATGCTGGCCGACATGGGCAAGTACGGTTTCGACTCCTGCGCCCAGACCGCCGCCAAGGACTTCCTGGCGGACGCCAAGAACGGCGGCCTGCAACCGAGCATGGCGCACAACATGGCGACCACGCTGGCCGTGCAAGGCGCGTTCTTTGACGTCGTGACCAACTACATCAACGACCCGAAAGCCGACCCGGCCGACGCAGCCAAGAAACTTGGCGCAGCGGTTCAGTCTGCGAAGTAA	MNAISRLATVISLASLLPVAAFPVSALAAESKGSVEVVHWWTSGGEKAAVDVLKAQVEKDGFTWKDGAVAGGGGSTAMTVLKSRAVAGNPPGVAQIKGPDIQEWATTGLLDTDVLKDVSKAEKWDSLLDKKVSDTVKYEGDYVAVPVNIHRVNWLWINPEVFKKAGITKNPTTLEEFYAAGDKLKAAGFIPLAHGGQPWQDSTVFEAVVLSVMGADGYKKALVDLDNKALTGPEMVKALTELKKVATYMDADGKGQDWNLEAAKVINGKAGMQIMGDWAKSEWTAAKKVAGKDYECVAFPGTEKAFTYNIDSLAVFKQKDAGTAAGQQDIAKVVLGENFQKVFSINKGSIPVRNDMLADMGKYGFDSCAQTAAKDFLADAKNGGLQPSMAHNMATTLAVQGAFFDVVTNYINDPKADPADAAKKLGAAVQSAK	PGPT0016570_115	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
D1-36_03881	1260	yihS	COG2942	Sulfoquinovose isomerase	ATGGACACCTTCCAACCGGCGTTCAGCAGTTGGCTGAATGCGCCCGCCCACCAGCAATGGCTTGCCGCAGAAGGCTTGCGTCTGCTGACGTTCGCCAAGGCCTCCAAGCTGCCGGACGGCTTTGGCAACCTGGACGAATTGGGCCGCCTGCCGGCCGATGCCCGGGCCGAAACCATGAATACCGCGCGCATGACCCACAGCTTCGCCATGGCCCACATCCAAGGCCTGCCGGGGTTCGCCGAGCTGGTTGACCATGGCGTACAGGCGCTCATGGGGCCGCTGCGCGATGCCGAGCATGGCGGTTGGTTCGCCAAGACCGATCCGGCTGAAAACGAGACTGGAAAAGCCGCTTACCTGCATGCTTTCGTTGCCCTGGCAGCCAGCTCTGCGGTCGTGGCCCAGCGCCCTGACGCCGAGGCACTGCTCAAGGAGGCGGTGCGGGTCATCGACGAACATTTCTGGTGCGAGGAGGAGGGTGCCCTGCGTGAATCCTTCAACCGCGACTGGTCAGAAGAAGAGGCCTATCGCGGCGCCAACAGCAACATGCACGGCACCGAAGCCTTCCTCGCCCTCGCCGATGCCACGGACGATCCGCGCTGGCTGGCTCGCGCGTTGCGTATCGTCGAGCGGGTGATCCATGGTCACGCGGCCGCCAACGACTACATGGTCGTCGAGCATTTCGACCGCGACTGGCAGCCGCTGCGCGAGTACAACCACGACAACCCGGCAGATGGGTTTCGTCCCTACGGCACCACCCCTGGCCATGGTTTCGAATGGGCGCGGCTGTTGTTGCACCTCGAGGCCGCGCGCGTGCAGATCGGCATGCTGACGCCGGGCTGGCTGGCCCAGGACGCTCAGAAACTGTTCGACCAGAACTGCCGCCATGGCTGGAACGTCGACGGCGCCCCGGGCATCGTTTACACGCTGGACTGGGACAATCGCGCCGTGGTTCGCCATCGCCTGCACTGGGTGCATGCCGAAGCGGCAGCGGCGGCCAGTGCCTTGCTCAAACGTACCGACGAGGCTCGATACGAAGCGTGGTACCGACGCTTCTGGGAATTTTGTGACAAACATTTCATCGATCGCTGCAACGGCAGCTGGCATCACGAGCTCGACCCGCAGAACCGCCCCAGCGCCGACATCTGGCCGGGCAAGCCGGACCTTTATCATGCCTGGCAAGCGGTGTTGATCCCTCGTCTGCCGTTGGCCCCGAGCATGGCGTCAGCCTTGGCGCGGTTGTCCGATCCTGCACCTGTGTAA	MDTFQPAFSSWLNAPAHQQWLAAEGLRLLTFAKASKLPDGFGNLDELGRLPADARAETMNTARMTHSFAMAHIQGLPGFAELVDHGVQALMGPLRDAEHGGWFAKTDPAENETGKAAYLHAFVALAASSAVVAQRPDAEALLKEAVRVIDEHFWCEEEGALRESFNRDWSEEEAYRGANSNMHGTEAFLALADATDDPRWLARALRIVERVIHGHAAANDYMVVEHFDRDWQPLREYNHDNPADGFRPYGTTPGHGFEWARLLLHLEAARVQIGMLTPGWLAQDAQKLFDQNCRHGWNVDGAPGIVYTLDWDNRAVVRHRLHWVHAEAAAAASALLKRTDEARYEAWYRRFWEFCDKHFIDRCNGSWHHELDPQNRPSADIWPGKPDLYHAWQAVLIPRLPLAPSMASALARLSDPAPV				NA	NA	NA	NA	NA
D1-36_03882	1443	sasA_15		Adaptive-response sensory-kinase SasA	GTGCGCCGGGTGCCCGTGCCACGCTCGTTGCTGGGGCGGATGCTGCTGCTGACGCTACTGGTGGTGCTGTTCGCCCAGACGCTGTCCAGTCTGATCTGGGTCTCCCAATTGCGCGCCACCCAGCTTGAAGGCCTGGTCACCAGCGCGCGCAGCCTTGCCCATTCGATGACCGCCACTGTCAGTTATCTGCGCTCGCTGCCGGTGGCGTACCGGCCCCTGGTGCTGGACCAGTTGCGCAGCATGGGCGGCACACGCTTTGTCGTCACCCTCAATGACAAGCCGCTGGGCATGGACGTGCTGCCCGTGACGCCGCGAAAGCTGGCGGTGCTCCAGGCCGTGGATGACGTGCTGCGGCGCTCCCTGGGCAGCAGCGCCGACATCTCGGTCAAATTCGTCAGCCCTGAAGACCTGCGGATTTTCAACGGCGGGCTCAAGCTCGACGAGCTGCCGCGATCATGGGCCCATTACGCCTTGACGCTTGAGCCGGTGAATCCGCCGGTCTTGGTCACGCAAATCCAGATGGCGCCGGGTGAATGGCTTTACATCGCCTCGCTGCTGCCCGAACCCTATACCAGCCTCGAAGAGCAGGATCTGCCCAAGCAGCAGGTGGGCTTCATCGTGCTCACCAGCAGCCTGTTGCTGTTGTTCATCGGCTTGTTGGTGCATTGGCAGAGCCGACCATTGAAACGCCTGGCCCGAGCGGCGCGGGACATGTCCCTCGGTGCCGAAGTGGAACCGGTGGCCGAGGGTGGCGGCAGCGAAGTGGTGGAGGTGGGCCGGGCTTTCAATGCCATGCGCGAGCGCATCAGCCGCTATTTGACCGAGCGCAGCCAGTTGTTCAGCGCCATCTCCCACGATCTGCGCACGCCGATTACCCGGCTGCGGTTGCGGGTCGAGCTGCTGGAGGATGAAAACCTGCAAGCCAAGTTCGGCCGAGACCTGGATGAGCTGGAGCTGTTGGTCAAGGGGGCGCTGCAATGTGTGAAGGACACCGACATCCACGAAAACATCGAGCCGGTGGACCTCAACCATGTGCTGGATTGCCTGGTAGAGCCTTATCTGGCGCCCAACGGCAACGGCCGAGTGACCCAGGATGGCCGGGCGCTGGCGCCGTATCCCGGCAAGCCGCTGGCCCTCAAGCGGTGCATCGGCAACCTGATCGACAACGCCTTGAAATACGGCCAGAGAGCCCATTTGCACATCGATGATGATGAGTCGGCGTTCATTCTGCACGTCGATGACGAAGGCCCGGGCGTACCGGAACAACGCCTCGAACAAGTCTTCGAGCCGCACTTTCGCCTGGCCGGGCAGCAGCAGGGGTACGGCCTGGGGCTGGGTATCGCACGCAACATTGCCCACAGCCATGGCGGTGAGGTGAGTTTGCAGAACCTGCGCGAGGGTGGGTTGCGGGTGACGTTGCAGTTGCCTCGCAGCGTGGATTGA	MRRVPVPRSLLGRMLLLTLLVVLFAQTLSSLIWVSQLRATQLEGLVTSARSLAHSMTATVSYLRSLPVAYRPLVLDQLRSMGGTRFVVTLNDKPLGMDVLPVTPRKLAVLQAVDDVLRRSLGSSADISVKFVSPEDLRIFNGGLKLDELPRSWAHYALTLEPVNPPVLVTQIQMAPGEWLYIASLLPEPYTSLEEQDLPKQQVGFIVLTSSLLLLFIGLLVHWQSRPLKRLARAARDMSLGAEVEPVAEGGGSEVVEVGRAFNAMRERISRYLTERSQLFSAISHDLRTPITRLRLRVELLEDENLQAKFGRDLDELELLVKGALQCVKDTDIHENIEPVDLNHVLDCLVEPYLAPNGNGRVTQDGRALAPYPGKPLALKRCIGNLIDNALKYGQRAHLHIDDDESAFILHVDDEGPGVPEQRLEQVFEPHFRLAGQQQGYGLGLGIARNIAHSHGGEVSLQNLREGGLRVTLQLPRSVD				NA	NA	NA	NA	NA
D1-36_03883	732	ompR_6		Transcriptional regulatory protein OmpR	GTGAGTGCAGTGAACAAATCGATTTTGTTGGTCGACGATGACCAGGAGATTCGCGAACTGCTGGACACTTACCTCAGCCGTGCGGGTTTCCAGGTGCGCACCACGCCTGATGGCGCCGGGTTTCGCCAGGCCTTGAACGAGGCGCCAAGCGACCTGGTGATCCTCGATGTGATGCTGCCCGATGAGGACGGTTTCAGCCTGTGCCGCTGGGTTCGCGAACATCCACGCCAGGCCCATGTGCCGATCATCATGCTCACCGCCAGCTCCGACGAAGCCGACCGGGTCATTGGCCTGGAATTGGGTGCCGATGATTACCTGGGCAAGCCGTTCAGCCCGCGTGAATTGCAGGCGCGCATCAAGGCGCTGCTGCGCCGGGCGCAGTTCGGCCAGGAGCGGACGGGCGGCGACGTGCTGGCCTTCGACGAATGGCGGCTGGACATGGTCAGCCATCGGCTGTTCCACGCCGACGGTGAAGAGGTGATTCTCTCCGGTGCTGATTTTGCCCTGCTCAAGTTGTTCCTCGACCACCCTCAGGAAATCCTCGACCGTGACACCATCGGCAACGCCACGCGTGGGCGCGAACTGATGCCCTTGGACCGGATCGTCGACATGGCGGTCAGTCGCCTGCGCCAGCGCCTGCGCGACACGGAAAAGCCGCCGCGGTTGATCCGCACGGTGCGCGGCAGTGGTTATCAACTGGCGGCCAGTGTGGTTGCCAGCAATGGTCACTGA	MSAVNKSILLVDDDQEIRELLDTYLSRAGFQVRTTPDGAGFRQALNEAPSDLVILDVMLPDEDGFSLCRWVREHPRQAHVPIIMLTASSDEADRVIGLELGADDYLGKPFSPRELQARIKALLRRAQFGQERTGGDVLAFDEWRLDMVSHRLFHADGEEVILSGADFALLKLFLDHPQEILDRDTIGNATRGRELMPLDRIVDMAVSRLRQRLRDTEKPPRLIRTVRGSGYQLAASVVASNGH	PGPT0012985_740	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
D1-36_03884	960	glk	COG0837	Glucokinase	TTGAAACTGGCTTTGGTCGGTGACATCGGTGGGACCAACGCGCGTTTCGCCCTGTGGAAGAACCACAACCTGGAGAATATCCAGGTGCTGGCGACAGCGGATTACGCCTGCCCGGAAGATGCCATCGAGGTTTACTTGAATGGCATGGGAATGAAACCGGGCGCCATCGGTTCGGTGTGCCTGTCGGTGGCCGGCCCCGTGAGCGGCGATGAGTTTCGTTTTACCAACAATCACTGGCGCCTGAGCAACCTGGCGTTCTGCCAGAGGTTGCAGGTGGAGAAACTGTTGCTGGTCAACGACTTCTCCGCCATGGCCCTGGGCATGACCTGCTTGCGTCCGGATGAGTACCGGGTTGTCTGCCAGGGCACGCCGGAGCCGATGCGCCCGGCGGTGGTGATCGGCCCGGGCACCGGGCTGGGCGTCGGTACGCTGCTGGACTTGGGCGAGGGCCGTTTTGCGGCGTTGCCAGGGGAGGGCGGCCATGTCGACCTGCCGATGAGCAGTCCGCGCGAGACCCAGCTCTGGCAGCACATCTACAACGAGATCGGCCACGTCAGCGCCGAAACCGCCCTGAGCGGCAGCGGCCTGCCCCGTGTCTACCGGGCGATTTGCGCGGTGGACGGTCATGACCCGGTGCTCGATACCCCCGAGTCGATCACTGCCGCCGGGCTGGCCGGCGACCCTATCGCCCTGGAAGTGCTCGAGCAGTTCTGCCGATGGCTGGGCCGCGTGGCCGGCAACAACGTACTCACGGTGGGCGGGCGTGGCGGCGTGTACATCGTTGGCGGCGTGGTCCCGCGGTTTGCCGATTTCTTCGTCGAAAGCGGTTTCGCCAAATCCTTCGCCGACAAGGGCTGCATGAGCGATTATTTCAAGGGTATTCCGGTCTGGCTGGTGACGGCGCCATACTCCGGCCTGATGGGCGCGGGCGTGGCGTTGGAGCAATCCTCCACGATTTGA	MKLALVGDIGGTNARFALWKNHNLENIQVLATADYACPEDAIEVYLNGMGMKPGAIGSVCLSVAGPVSGDEFRFTNNHWRLSNLAFCQRLQVEKLLLVNDFSAMALGMTCLRPDEYRVVCQGTPEPMRPAVVIGPGTGLGVGTLLDLGEGRFAALPGEGGHVDLPMSSPRETQLWQHIYNEIGHVSAETALSGSGLPRVYRAICAVDGHDPVLDTPESITAAGLAGDPIALEVLEQFCRWLGRVAGNNVLTVGGRGGVYIVGGVVPRFADFFVESGFAKSFADKGCMSDYFKGIPVWLVTAPYSGLMGAGVALEQSSTI	PGPT0017730_1995	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017730-glk-K00845	NA	NA
D1-36_03885	1827	edd	COG0129	Phosphogluconate dehydratase	ATGCATCCCCGCGTACTTGAGGTCACCGAACGGCTTATCGCCCGCAGTCGCGCTACGCGCGAGGCTTACCTTGCACTGATCCGCGGTGCAGCCAGCGACGGGCCGATGCGCGGCAAGCTGCAGTGCGCCAACTTCGCCCATGGCGTGGCCGGTTGCGGCACTGAAGACAAGCACCACCTGCGGATGATGAACGCCGCCAACATCGCCATCGTGTCGTCCTACAACGACATGCTCTCGGCCCACCAGCCCTACGAAACATTTCCAGAACAAATCAAGAAAGCCCTGCGCGAGATCGGCTCGGTTGGCCAGTTCGCCGGCGGCACGCCCGCCATGTGCGACGGCGTGACCCAGGGTGAGGCGGGGATGGAACTGAGCTTGCCGAGCCGTGAAGTGATCGCACTGTCCACGGCGGTGGCGTTGTCCCACAACATGTTCGACGGCGCGCTGATGCTCGGCATCTGCGACAAAATCGTCCCTGGCCTGATGATGGGCGCGCTGCGCTTCGGTCATCTGCCGACGATCTTCGTGCCCGGCGGGCCGATGGTCTCGGGCATTTCCAACAAGGAAAAAGCCGACGTACGCCAGCGCTACGCCGAGGGCAAGGCCAGCCGTGAAGAGCTGCTGGAATCGGAAATGAAGTCCTACCACAGTCCGGGCACCTGCACGTTCTACGGCACCGCCAACACCAATCAGTTGCTGATGGAAGTGATGGGCTTGCATTTGCCGGGCGCTTCGTTCGTCAACCCGAACACGCCGCTGCGCGATGCGTTGACCCGTGAGGCCGCGTTCCAGGTGACGCGCCTGACCAAGCAGAGCGGCAACTTCATGCCCATCGGCGAAATCGTCGACGAACGCTCACTGGTCAACTCCATCGTTGCACTGCACGCCACCGGCGGTTCCACCAACCACACCCTGCACATGCCGGCCATCGCCATGGCGGCGGGCATCCAGCTGACCTGGCAGGACATGGCCGACCTCTCCGAAGTGGTGCCGACCCTCAGCCACGTCTACCCGAACGGCAAGGCCGACATCAACCACTTCCAGGCGGCGGGCGGCATGTCCTTTCTGATCCGCGAATTGCTGGAAGCCGGCCTGCTCCACGACAACGTCAACACCGTGCTCGGCCATGGCCTGAGTCGCTACACCCAGGAGCCGTTCCTGGAGGATGGCGAGCTGGTGTGGCGCGACGGCCCGACCGAAAGCCTCGACGAAACCATCCTGCGTCCGGTGGCCCGTGCCTTCTCCCCAGAAGGCGGGTTGCGGGTGATGGAAGGCAACCTCGGGCGTGGGGTCATGAAGGTTTCGGCCGTGGCCTTGGAAAACCAGATCGTCGAAGCGCCGGCCATGGTCTTCCAGGATCAGCAGGACCTGGCGGATGCGTTCAAGGCGGGTCTGCTGGAGAAGGATTTTGTCGCGGTGATGCGCTTCCAGGGCCCGCGCTCCAACGGCATGCCGGAGCTGCACAAGATGACGCCGTTCCTCGGCGTGCTGCAGGACCGTGGCTTCAAGGTGGCGCTGGTCACTGATGGACGCATGTCCGGGGCATCCGGGAAAATCCCGGCGGCCATTCATGTCAGCCCTGAAGCTTATGTCGGCGGCGCGTTGGCGCGGGTGCAGGAGGGCGATATCATCCGCGTCGATGGCGTCAAAGGCACCTTGGAGCTGAAGGTCGACGCCGAGGAATTCGCCGCGCGCGAACCGGCCAAGGGCTTGTTGGGCAACAACATCGGCACTGGTCGCGAGCTGTTCGGTTTCATGCGCATGGCCTTCAGCTCGGCAGAGCAGGGCGCCAGCGCCTTCACTTCTGCCTTGGAGACGCTTAATTGA	MHPRVLEVTERLIARSRATREAYLALIRGAASDGPMRGKLQCANFAHGVAGCGTEDKHHLRMMNAANIAIVSSYNDMLSAHQPYETFPEQIKKALREIGSVGQFAGGTPAMCDGVTQGEAGMELSLPSREVIALSTAVALSHNMFDGALMLGICDKIVPGLMMGALRFGHLPTIFVPGGPMVSGISNKEKADVRQRYAEGKASREELLESEMKSYHSPGTCTFYGTANTNQLLMEVMGLHLPGASFVNPNTPLRDALTREAAFQVTRLTKQSGNFMPIGEIVDERSLVNSIVALHATGGSTNHTLHMPAIAMAAGIQLTWQDMADLSEVVPTLSHVYPNGKADINHFQAAGGMSFLIRELLEAGLLHDNVNTVLGHGLSRYTQEPFLEDGELVWRDGPTESLDETILRPVARAFSPEGGLRVMEGNLGRGVMKVSAVALENQIVEAPAMVFQDQQDLADAFKAGLLEKDFVAVMRFQGPRSNGMPELHKMTPFLGVLQDRGFKVALVTDGRMSGASGKIPAAIHVSPEAYVGGALARVQEGDIIRVDGVKGTLELKVDAEEFAAREPAKGLLGNNIGTGRELFGFMRMAFSSAEQGASAFTSALETLN				NA	NA	NA	NA	NA
D1-36_03886	1002	gapA	COG0057	Glyceraldehyde-3-phosphate dehydrogenase 1	ATGACTCTTCGAATCGCAATCAATGGTTTTGGCCGCATCGGCCGCAACGTCCTCCGCGCACTGTATACCCAAGGCTATCGTCGCGACCTGCAGATCGTCGCCATCAACGACCTGGGCGACAGTGCGATCAACGCTCATCTGCTCAAGTTCGACACCGTGCATGGCACTTTCGATGCCGACGTGCAGCACGATCACGAAAGCCTGACGGTCAATGGCGACCGCATTTCGGTCAGTGCCATCCGCAACCCGGCCGAGCTGCCCTGGGCCGCCGAGAAAATCGATGTGGTGTTTGAATGCACCGGTCTGTTTACCGACCGCGCCAAGGCTGCCGCCCACATCAGTGCCGGCGCTCGCAAAGTGATTATCTCGGCCCCGGCCAAGGGCGCCGATGCCACTGTGGTGTACGGCGTCAACCATGACATCTTGCGCCAGTCCCACCAGATCATTTCCAACGCGTCGTGCACCACCAACTGTTTGGCCCCGGTGGCCCAGGTGCTGCACCGCGAGCTCGGCATCGAAAGCGGCCTGATGACCACCATCCATGCCTACACCAACGACCAGAACCTGACCGACGTCTATCACAGCGACCCGTACCGCGCCCGCTCGGCCACCCAGAACATGATCCCGAGCAAGACCGGCGCCGCCGAAGCCGTGGGCCTGGTGCTGCCGGAACTGGCGGGCAAGTTGACCGGCATGGCCGTGCGCGTGCCGGTGATCAACGTCTCCCTGGTGGACCTCACCGTGCAACTCAAGCGCGAAGCGTCGGCCGATGAAGTCAACGCACTGCTCAAGCAGGCCAGCCAGCACTCCAAGATCCTCGGCTACAACACCCTGCCGTTGGTCTCCAGCGATTTCAACCACAACCCGTTGTCGTCGATCTTCGATGCCAACCACACCAAAGCCAGCGGCAAGCTGCTCAAGGTGCTGGCCTGGTATGACAACGAATGGGGCTTCTCCAACCGCATGCTGGATAACTGCCTGGCGTTGTGTAACGCGGAGTAA	MTLRIAINGFGRIGRNVLRALYTQGYRRDLQIVAINDLGDSAINAHLLKFDTVHGTFDADVQHDHESLTVNGDRISVSAIRNPAELPWAAEKIDVVFECTGLFTDRAKAAAHISAGARKVIISAPAKGADATVVYGVNHDILRQSHQIISNASCTTNCLAPVAQVLHRELGIESGLMTTIHAYTNDQNLTDVYHSDPYRARSATQNMIPSKTGAAEAVGLVLPELAGKLTGMAVRVPVINVSLVDLTVQLKREASADEVNALLKQASQHSKILGYNTLPLVSSDFNHNPLSSIFDANHTKASGKLLKVLAWYDNEWGFSNRMLDNCLALCNAE	PGPT0018000_6928	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
D1-36_03887	513	sigE	COG1595	ECF RNA polymerase sigma factor SigE	GTGAGTCAATCGCGCTTTCATCATGTCTTTCTCGCCCAGCGCACGCCCCTGCTGCGCACCCTGGAGCGGATGGTCAACAACCCGAGCACCGCCGAAGACTTGCTGCAGGAAACCTACCTGCGTGTCACCCGCGCCTTGAGCGAACGCACCGTCGATCATCTCGAACCCTTTGTTTTCCAGACCGCCCGCAATCTGGCGCTGGATCATCTGCGCGCGCGGCGGATCCAGTCGCGGGCCCTGGTCGACGACGTGCCGCTGGACATCGTGAACAACGTCGTCGCCCCTCAAAGCAGCGCCGAAGATGCCGCCCACGCCGCGCAAATGCTCGAGCGCCTCAACGTCAGCCTGCAATCCCTCAGCCCCCGTCAACAGCGGATCTTCATTCTCAGCCGGCTGCATGGCCACAGCTACCAGGACATCGCGCAACGATTAGGCGTGTCCCTGAGCACGGTGCAAAAAGAACTGAAACTGATCATGGCCATCTGCGTGGGCGTGGCCGAACGCAACCCGTGA	MSQSRFHHVFLAQRTPLLRTLERMVNNPSTAEDLLQETYLRVTRALSERTVDHLEPFVFQTARNLALDHLRARRIQSRALVDDVPLDIVNNVVAPQSSAEDAAHAAQMLERLNVSLQSLSPRQQRIFILSRLHGHSYQDIAQRLGVSLSTVQKELKLIMAICVGVAERNP	PGPT0014960_10384	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088	NA	NA
D1-36_03888	963			hypothetical protein	GTGACGGACAACCATCGCCCACCTGAAGCCGCCGAGGCGCAGGACACCGCTCACGCCATGGACCAGGCGCTGGACTGGTTGATCCTGCTCGACAGCCCCAGCGAGGAGCAGCGCCGACACTTCCAGGCCTGGCTGGCGGCCGATCCACGCCATGGCGAAGCGTTCGTCAGGGCCCAGGCGATCTGGAACGGTCCGCAGATAATCGAAAGCGCCCGGCAATTGAGGGACCGGCCAAAGATCACCTCGCTGTCGCGCATGCGTGCCCATTGGAAACCCCTGGCCACCGCCGCCGTGCTGTTGCTGGGACTGTTCAATTTCAGCGACCTGCCCATGCGCTTCCAGGCCGACCACCTGACCGTGGTCGGTGAACGCCAGCGCCTGCAGTTGGAAGACGGCTCCAAGGTGCTGCTCAATACCGATTCGGCCTTCTCCAGCTCATTCGACAACCAACGGCAGGTGGCCCGGCTCTACAAGGGCGAAGCTTTCTTCGAGGTGCCAGCCAACCGTCATTTGCCGTTGGAGCTGGACGCAGGCCCGGTCACCGCCAGCGTCAGCGACACCTCGTTCGCCGTGCGCTACGTGGATGGCGTCGCGCAAGTCCAGGTGCAGCGCGGCGACGTCGACCTGCGGGCCACCCGCTACGACACCCACGTGCGGCTGTCGGCTGGCGAAAGCATCCGCATCGGCCCCAATGGCTTCGACCGCCCGGCACGGCTCGATGCCGGCACCGACCTTGCCTGGGTGCAGGGCCGACTGGTGTTCGAGAACCGTCCGCTGAGCCAGGTCTTGGCGGAGTTGCGACGCTACTACCCAGGCTGGATCATCAACACCAACGAACGGCTGGCCAACGTCGCGGTGACGGGCAACTACCGCCTCGACCAGCCCCTGGACGTGGTCCGCTCCCTGGCCCAGATCACCTCCGCGCGCCTGCAGGAATTGCCGGCGCTGGTGATTTTGAACTAA	MTDNHRPPEAAEAQDTAHAMDQALDWLILLDSPSEEQRRHFQAWLAADPRHGEAFVRAQAIWNGPQIIESARQLRDRPKITSLSRMRAHWKPLATAAVLLLGLFNFSDLPMRFQADHLTVVGERQRLQLEDGSKVLLNTDSAFSSSFDNQRQVARLYKGEAFFEVPANRHLPLELDAGPVTASVSDTSFAVRYVDGVAQVQVQRGDVDLRATRYDTHVRLSAGESIRIGPNGFDRPARLDAGTDLAWVQGRLVFENRPLSQVLAELRRYYPGWIINTNERLANVAVTGNYRLDQPLDVVRSLAQITSARLQELPALVILN	PGPT0003910_4976	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165	NA	NA
D1-36_03889	2592	hemR	COG1629	Hemin receptor	ATGTCCTCTCGCCTTACTTGCCGGTTACTCGCCCCTTCCCGCGCACTTTCATTGCTGACCGCCGCCATCCTGATGGCCGGTGCCGCGCCGGCCGCCCTTGCCGCCGCTGGCCAACCGCCCGCGCACAACATGGGCGACTACAGCTTCAACATCGCCCGGCAGCCCTTGGTCTCCGCGCTCAACGCGTTCACTGCCGTCACAGGCTGGCAGGTGGGGCTGCCGGCTGAACTGGCCGAAGGCATCGCCTCGCCGGGCGTCAACGGCTCGCTGTCGCCGGAGAAAGCCTTGGAGCGCCTGTTGGTGGGGACCGACTTGCGTTACCGCAAACTGGGCAGCAACAACATCGTTCTGGAAAAACGCAGCGCGGGCAACGTGCTGGACTTGCAGCAGGTGACCATCAGCGCCACCCGTCAAGAACAGGACATCACCCGCGTACCGAGCACCGTTTCCGTTCATGATCGCCAGCAACTGGACCGTAACAACGTAAACACCATCAAGGACTTGGTGCGCTACGAGCCCGGCGTATCGGTGGGCGGCGCGGGCGAGCGCGGCGGCATCAGCGGCTACAACATCCGCGGGATCGACGGCAACCGCATCCTGACCCAGGTCGACGGCGTGGAAGTGCCCGGCGGTTTCTTCAACGGCCCCTACGCCAAGACCCAGCGCAACTATGTCGACCCGGAGATCATCAAGCGCGTGGAGATCCTGCGCGGACCGGCCTCGGTGCTGTACGGCAGCAACGCCATTGGTGGCGTCGTGAGTTATTTCACCCTCGATGCGGATGACATCATCAAACCGGGCAAGGATGTCGGCGCGCGCCTGAAGACTGGCTACAGCTCCGTAGACGAGAGCTGGCTCAAGTCCGCCACCGTCGCCGGTCGCAGCGGGCCCTTCGACGGCCTGCTGCACTACAGCCAGCGCGACGGCCATGAAACCGAATCCTACGGCAGCAACAATGGCACCGGCCTGGACCGCACCGCGGCCAACCCGCAGGACGTGCGCGCCAAAAACGTGCTGGCCAAACTCGGCTGGAACTACAACGATGACGCACGCCTGAGCCTGGTCTACGAGAAGTACAAGGACGACCGTGACACCGATCTGAAAAGCGCCTACGGCGGTCCTTACGCCAACGGCCAACCGGCCATTCCCGCCTCCATCCTGCCGGGCGGCATGTACCAGTGGCGCACCGGCAACGACACCATCACCCGCGAACGTTTCGGCCTGGAGCACAGCTTCGCGCTCGACAGCCTGCTGGCCGATAACATCAAGTGGAGCCTGAACCACCAGGTCGCCAAGACCGACCAGAGCACCGCCGAATTCTACTTCCCGATCACCCGTAGGGTCCTTCGCACGCGAGAGACCCTGTATGAAGAAAAACAGTGGGTGCTTGATGCGCAAGTCGACAAGTCATTCAGCATTGCCGACACCGATCACACGCTGACCTACGGCACCACGCTCAAACAGCAGAAAGTCACCGGTTCGCGCAGCGGCAATGGCGTGTGCCTGGCGGTCGGCGTGGGCTGTGCCGCCGTCGGCGCCATCAGCACGCGGGACGTACTGGCAAAAGCCAGTGACTTCCCGGACCCGACCATCAACACCTACAGCCTGTTCGCCCAGGACCAGATCAGCTGGGAAAAATGGACCTTCACACCGGCGCTGCGTTACGACTACACCCAGCTCAAGCCACACCTGACCGAAGAATTCCTCAGCACCGTTGACCCTACCGCCGGCGGTAAAGTCAGTGATGAGAACAAGACCTGGCACCGCGTCTCGCCCAAGTTCGGGCTGACTTACGCCCTGACCGACCAATACACCTGGTTTGGCCAATACGCCGAGGGTTTCCGCACCCCGACCGCCAAGGCTCTGTACGGGCGCTTCGATAACCCGGACGCGGGCTACAGCGTGGAACCCAATCCCGACCTGGAGCCGGAAAAAAGCAAGAGCTACGAAACCGGCCTGCGCGGTCGTTTCGACTCCGGTTCGTTCGACGTGGCGGTGTTCTACAACAAGTACCGCGATTTCATCAACGAGGACGCCATTACCCCTGGCGCGGACCAGTTGACCTTCCAGAGCAACAACATCAAGCACGCCACCATCAAGGGCATCGAGGCCAAGGGGCGCCTGGACCTGGACGTGTTCGGCGCGCCACGGGGCCTCTATACCCAAGGTTCGGTGGCTTACCTCCAAGGCCGCAACGACGACACCGGCGAACCGCTCAACAGCATCAACCCGATGACCGGCGTATTCGGCCTGGGCTATGACCAGGAGCAGTTCGGCACTTTGCTCAGCTGGACCCTGGTGAAGAAGAAAAACCGCGTCGACGACAGCAACTTCAACTCTCCTGACGGCGTCAGCAGCCAGTTCAAGACGCCGGGCTTCGGCATCCTCGACCTGAGCGGGTACTACAAGGTCACCGACGATGTCACCGTCAGCGGCGGCCTCTACAACCTCACCGACAAGAAATACTGGCTGTGGGACGACGTGCGCGGCTACGACAGCGTCGGCGAAGCGGCAGTGCTGAGCCCGGCCAACCTCGACCGCCTGACCGCCCCTGGGCGCAACTTCGCGGTCAACCTGATCTGGGATATCTGA	MSSRLTCRLLAPSRALSLLTAAILMAGAAPAALAAAGQPPAHNMGDYSFNIARQPLVSALNAFTAVTGWQVGLPAELAEGIASPGVNGSLSPEKALERLLVGTDLRYRKLGSNNIVLEKRSAGNVLDLQQVTISATRQEQDITRVPSTVSVHDRQQLDRNNVNTIKDLVRYEPGVSVGGAGERGGISGYNIRGIDGNRILTQVDGVEVPGGFFNGPYAKTQRNYVDPEIIKRVEILRGPASVLYGSNAIGGVVSYFTLDADDIIKPGKDVGARLKTGYSSVDESWLKSATVAGRSGPFDGLLHYSQRDGHETESYGSNNGTGLDRTAANPQDVRAKNVLAKLGWNYNDDARLSLVYEKYKDDRDTDLKSAYGGPYANGQPAIPASILPGGMYQWRTGNDTITRERFGLEHSFALDSLLADNIKWSLNHQVAKTDQSTAEFYFPITRRVLRTRETLYEEKQWVLDAQVDKSFSIADTDHTLTYGTTLKQQKVTGSRSGNGVCLAVGVGCAAVGAISTRDVLAKASDFPDPTINTYSLFAQDQISWEKWTFTPALRYDYTQLKPHLTEEFLSTVDPTAGGKVSDENKTWHRVSPKFGLTYALTDQYTWFGQYAEGFRTPTAKALYGRFDNPDAGYSVEPNPDLEPEKSKSYETGLRGRFDSGSFDVAVFYNKYRDFINEDAITPGADQLTFQSNNIKHATIKGIEAKGRLDLDVFGAPRGLYTQGSVAYLQGRNDDTGEPLNSINPMTGVFGLGYDQEQFGTLLSWTLVKKKNRVDDSNFNSPDGVSSQFKTPGFGILDLSGYYKVTDDVTVSGGLYNLTDKKYWLWDDVRGYDSVGEAAVLSPANLDRLTAPGRNFAVNLIWDI				NA	NA	NA	NA	NA
D1-36_03890	591	pigA	COG3230	Heme oxygenase PigA	ATGAGCACACAACGCACCCTTTCCCGCTCCCAACGCCTGAACCAGATCACCCACGAGCCCCACGGCAAGCTCGACGCGCTGGTCAAGGCTCACGCCCCATTCGAAACCCAGGCCAGCTACGCCCGCTTCGTCGTCGCCCAGTACCAATTCCAGTCGGAACTGGTGGCGCTGTACAACGACGCGCAACTGACCGCGCTGATTGCCGACCTGCCCGCGCGCTGCCGCGCCGAAGCGGCCAAGGCCGACCTGGCGGACCTGCACACCGAAGTGCCGCCGCCAGTGGCCGGCGCAGTGAAAAACCCAACCCAGGCCGAAGCCCTCGGCTGGCTGTTCGTGTCCGAGGGTTCCAAGCTTGGCGCCGCGTTCCTGATCAAGCGCGCCGTGGGGCTGGGGCTGAGCGAAACCTTTGGTGCCCGACACTTGGCAGAACCGGCGGGCGGGCGTGCCGAAGGCTGGAAAACCTTCACCCGGATCCTCGACGCGCTGCCCCTCACCGAACAGCAGGAAGCCGAGGCGGACAAAGGAGCGCTGGCGGCCTTCAACCGCTTTACCGTGTTACTGGAGCAAGCCTACGCGACCGAGTTGGCCTGA	MSTQRTLSRSQRLNQITHEPHGKLDALVKAHAPFETQASYARFVVAQYQFQSELVALYNDAQLTALIADLPARCRAEAAKADLADLHTEVPPPVAGAVKNPTQAEALGWLFVSEGSKLGAAFLIKRAVGLGLSETFGARHLAEPAGGRAEGWKTFTRILDALPLTEQQEAEADKGALAAFNRFTVLLEQAYATELA	PGPT0003620_221	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-HEMOPHORES-HEME|HEMIN_UTILISATION,PGPT0003620-hemO|pigA-K07215	NA	NA
D1-36_03891	423	ybaN_2	COG2832	Inner membrane protein YbaN	ATGAAACGCCCTTCCAGATTCACTCGCCTGCTCTTCGCCCTCCTCGCCTACACCAGCCTGGCCATCGGCCTGGTGGCCATCGTCGTGCCGGGCTTGCCCACCACCGAATTCATCCTGCTTGCCGCCTGGGCCGCGACCCGCAGTTCGCCGCGCCTGAGCGCTTGGCTGGAGGGCCATCGGTTGTTCGGGCCGATGCTGCGCAACTGGCGCAACGGCAAGGTTATCCCGCGCCGGGCCAAGATCGCTGCAACGGTCAGCATGCTGTGCTGTGCAGGGTTTATGCTGCTGATGCTCGATCACCGCTGGCCGGTATACCTGGCACTCGCAGGCATGGGCCTGGGCAATCTCTGGATCTGGTCCAGACCGGAGAATCGTGGCGAGGGAGCTGGCTCCCGCTGGGCCGGTCCGACGCCTCGGGCGTAG	MKRPSRFTRLLFALLAYTSLAIGLVAIVVPGLPTTEFILLAAWAATRSSPRLSAWLEGHRLFGPMLRNWRNGKVIPRRAKIAATVSMLCCAGFMLLMLDHRWPVYLALAGMGLGNLWIWSRPENRGEGAGSRWAGPTPRA				NA	NA	NA	NA	NA
D1-36_03892	1347	frc		Formyl-CoA:oxalate CoA-transferase	ATGTCAGACCTACTCACACCCATGCAAACCGCCATGGGCTTGCCCACGACACCCATCCCCTTCACCAGCGAAGGCGCCCTGCCCTCCGCCTTCGCCGTCACCGAGCTGGCCTGCGCGAGCATCGCCACGGCCGGTCAAGCGGTCGCCGAACTGATCCGCCAGCAAACCGGTCGCCTGCCGTCGATGGAAGTCGACCGGCGCCTGGCCTCATTCTGGTTTTCCACCTCCCTGCGGCCCATCGGCTGGGGCGTGCCGCCCCTGTGGGATCCGGTGGCGGGCGACTACGCCACCGCCGACGGCTGGATCCGCCTGCACACCAACGCGCCGCATCATCGCCAGGCGGCGCAAAAGGTGCTCGGCGCCTGCACCGACCGCGCCGACATGGCCAGCAGAGTGGTCCGGTGGAACAAGGCCGAACTGGAACAGGCCGTGATCGATGCCGGCGGTTGCGCCGCGCAGATGCGTTCATGGCTGGCATGGCAGGCGCATCCCCAGGGCATCGCTGTCAATGCCGAGCCCCTCGTTCATTTGGATAGCGGAGCGCAAGGCGCGCCTGGCCCCTGGCTCGGCTCCGTCGCCCAGCCCTTGGCGGGCCTCAAGGTGCTGGACCTGACCCGCGTGCTGGCCGGCCCGGTTGCCAGTCGCTTTCTCGCCGGGCTGGGGGCCGACGTGCTGCGCATCGACCCGCCGACCTGGAACGAACCCGGCGTGGTGCCTGAAGTCACCCTCGGCAAACGTTGCGCCCGCCTCGACTTGCGCCAGCCCACCGATCGAGCAGCGTTCGAGGCGCTGCTCCAGGAGGCGGACATCCTGTTGCACGGCTACCGCGCCGACGCGCTCGAACGCCTGGGCTACGGCGCTACACAACGTCGGCAGTTGGCGCCCGGCCTGATCGACGTCTGCCTCAACGCCTACGGCTGGAGCGGCCCCTGGCAACACCGCCGCGGCTTCGACAGCCTGGTGCAGATGAGCTGCGGTATCGCCGAGGCCGGCATGGCCTGGAAACACACGGACAAACCGACGCCTCTGCCGGTCCAGGCGCTGGACCACGGCACCGGTTACCTGATGGCCGCCAGCGCAATCGTGTTGCTGAATCGACGCTTGGCCAACGGCCGTGGGGGCTCGGCACGCTTGTCACTGGCGCGCACGGCGAAGCTGTTGATCGAGGGCGGCGCCGGCAGTGAGGTTGCATTGCGCCCCGAAGACGAGGCTGACCAGGGGTTGCTGGTGGAACAGACGCCCTGGGGTCCGGCGCATCGCTTGCAGGTACCGCTGAAAATGCCCGGCACGCCGCTGCAATGGAAGTTGCCGGCCGCTGACCTGGGCGCCCACCGCGCGCAATGGTGA	MSDLLTPMQTAMGLPTTPIPFTSEGALPSAFAVTELACASIATAGQAVAELIRQQTGRLPSMEVDRRLASFWFSTSLRPIGWGVPPLWDPVAGDYATADGWIRLHTNAPHHRQAAQKVLGACTDRADMASRVVRWNKAELEQAVIDAGGCAAQMRSWLAWQAHPQGIAVNAEPLVHLDSGAQGAPGPWLGSVAQPLAGLKVLDLTRVLAGPVASRFLAGLGADVLRIDPPTWNEPGVVPEVTLGKRCARLDLRQPTDRAAFEALLQEADILLHGYRADALERLGYGATQRRQLAPGLIDVCLNAYGWSGPWQHRRGFDSLVQMSCGIAEAGMAWKHTDKPTPLPVQALDHGTGYLMAASAIVLLNRRLANGRGGSARLSLARTAKLLIEGGAGSEVALRPEDEADQGLLVEQTPWGPAHRLQVPLKMPGTPLQWKLPAADLGAHRAQW				NA	NA	NA	NA	NA
D1-36_03893	360			hypothetical protein	ATGGCCACGTTCCAACCCGGACACCTGCACATGGAGCGCCATGCGCTGAACAAGGATGATTTCAGCTACAACCTGTGCATCGATTACGAAATAGCCCAGGATCCCGACGAGGGAAAGGGCATGTCATTTCGCCTGCACGGCACGGTAGAAGACAAGAACGTAGACGAGACGTTTTTCCTGGCCAAGGACCAAGCCTTCGACTTCGCCCGCCACGCCACCCGCATTGCCCAATACTACGGCCTGCCCAAGAGCACGAACATCGGCGCGATGCACAAGTACTACGACGAAATGTTCGAAGACGTGCGCCACCAGTTGGATGTCAAGCCGGGGGATCCGATGAAACCTGAGCATTTGGAATAG	MATFQPGHLHMERHALNKDDFSYNLCIDYEIAQDPDEGKGMSFRLHGTVEDKNVDETFFLAKDQAFDFARHATRIAQYYGLPKSTNIGAMHKYYDEMFEDVRHQLDVKPGDPMKPEHLE				NA	NA	NA	NA	NA
D1-36_03894	177			hypothetical protein	ATGAACATCAAAACAAGAAGACGCCTCGCCATATTTGTCACCTGCACCGCCACGCTGGCGCTGTATGGCACCGCGGCTTATCGGGTCGAGCAGGCCAGGCAGCTGCCCCGTGAATACGCCAGCTGCAACTTCGAACGCTGCATACCGCACAACGCAACCTTGAACGCGCTGCGCTGA	MNIKTRRRLAIFVTCTATLALYGTAAYRVEQARQLPREYASCNFERCIPHNATLNALR				NA	NA	NA	NA	NA
D1-36_03895	894	rhaS_13		HTH-type transcriptional activator RhaS	ATGAAGAAAACTGAGCTGCCTTCGATTCCCGTGTTCAAGCTCTACGGCGAGAGCCAGGATTGGCCCACGCCGGACCTACTGCACTGCGAAACCATTTCCAGCCGCAGTAGCGAGCACCAATGGGAAATAAAACCCCATCGGCATGCCGATCTGTGCCAGCTGCTTTTTGTGTTCAAGGGTCAAGCGGAACTGGAAATCGAAGGCCAGCGTACGCGGCTCGACGAGCCGGCCGTGCAGATCCTGCCGCCGCTGTCGGTCCATGGTTTCCGTTTTTCGGAGGATGTGCAGGGTTACGTCGTGACCCTGGCGGCGCCGCTGGTCACGCACCTGCAAGCCCAGCTAGGCCATTCGGTCAATGTCCTGGCCCAGGCGGAAGCCTATCCGGCCGGAGAGAACGCTGATTACCTCAATAGTTTGTTCAGTGCCATGCAGGCGGAGTACGTGGGCCATCAACCGGCCCGGGAAATGCTCATGCATGCCTTGGTCAGCGTGATCATGGTCTGGGTGAGCCGCCAGGTGATGAACCGGCGTATCTCCACCCAGCGCCCGCAGCGGGCCCGGGAATACCTCAACGGGTTCATCCAATTGGTGGAAGAGACCTATCGCCAGCACGTCAAGGTCGAGGACCTGGCCCATCGCCTGGGCATCTCGGTGTCGCACCTCAATGGCACCTGTCGCGAACTCGCGGGACAGCCGGCACTGCAAATCATGCACGAGCGCCAGTTGCTGGAAGCCAAGCGGCTGCTGACCTATACAGGCATGACGATCTATGAGATCTCCGAGATGCTTGGCTTCTCCGACCCGACCAACTTCACCCGACTGTTCCGTCGGCGCGTCGGTATCTCGCCCAAAGCCTTCCGAGACCGGCTCAAGACCGATCAGCAGGACGACTGA	MKKTELPSIPVFKLYGESQDWPTPDLLHCETISSRSSEHQWEIKPHRHADLCQLLFVFKGQAELEIEGQRTRLDEPAVQILPPLSVHGFRFSEDVQGYVVTLAAPLVTHLQAQLGHSVNVLAQAEAYPAGENADYLNSLFSAMQAEYVGHQPAREMLMHALVSVIMVWVSRQVMNRRISTQRPQRAREYLNGFIQLVEETYRQHVKVEDLAHRLGISVSHLNGTCRELAGQPALQIMHERQLLEAKRLLTYTGMTIYEISEMLGFSDPTNFTRLFRRRVGISPKAFRDRLKTDQQDD				NA	NA	NA	NA	NA
D1-36_03896	1191	pobA	COG0654	p-hydroxybenzoate hydroxylase	ATGAAAACCCTCAAGACCCAAGTCGCCATTATCGGCGCCGGCCCCTCTGGGCTGCTGCTCGGCCAGTTATTGCACAACGCAGGGATCGACACGGTGATCCTCGAGCGCCAGACTCCCGATTACGTCCTCGGCCGGATCCGCGCCGGTGTACTCGAGCAGGGCATGGTCCATCTGCTGCGCCAGGCCGGAGTTGGCCAACGCATGGACGCCGAGGGCTTGTCCCATGATGGCTTCGAGCTGGTCCTCAACGGTCGGCGCGTCCACATCGATCTCAAAGGGCTGACCGGTGGCCAGAACGTCATGATTTACGGTCAGACCGAAGTCACTCGCGACTTGATGGCCGCCCGGCAGGCATCCGGCGCCCAGACGCTGTATCAGGTCGACAACGCCCAGCCCCACGACCTGAAGACCGAGCACCCCTTCGTGACCTTTGAACACGCCGGCGAAACCTGGCGCCTGGACTGCGATTACGTGGCCGGCTGCGATGGTTTCCATGGCGCGGCAAGGCAATCGATCCCGGCGCAAAAGCTCAAGGTCTTCGAACGCGTCTACCCGTTCGGCTGGCTCGGCATCCTCGCCGACACCCCGCCCGTCCACGAAGAACTCGTCTACGCTCGCCACGAGCGCGGCTTTGCCCTGTGCAGCATGCGCTCGCGGACCCGCACCCGTTATTACCTGCAAGTGCCCGCCGAGGAACAAGTGGCCGACTGGCCGGACGAGCGTTTCTGGGATGAACTGAAAATACGCCTGCCCACCGACCTGGCCGAAACCCTGGTGACCGGTCCCTCCATAGAAAAAAGCATCGCACCACTGCGCAGCTTCGTCGTGGAACCGATGCAGTACGGGCGGATGTTTTTGGTGGGCGACGCCGCCCACATCGTCCCGCCGACCGGGGCCAAGGGGCTGAACCTGGCTGCCAGCGATGTCAGCACGCTATTCAATATTTTGCTTAAGGTCTATCGCGACGGTCGCGCGGATCTGCTGGAACGCTATTCCGACATCTGCCTGCGACGGGTCTGGAAAGCCGAGCGCTTCTCCTGGTGGATGACGTCGATGCTGCACCGCTTCGATGACGACGCGTTCAACCAGCGCATCAGCGAGGCGGAGCTGGAGTATTTCGTCGACTCCGAGGCGGGGCGCAAAACCATCGCGGAAAATTACGTCGGCCTTCCTTATGAGGCTATCGAATAG	MKTLKTQVAIIGAGPSGLLLGQLLHNAGIDTVILERQTPDYVLGRIRAGVLEQGMVHLLRQAGVGQRMDAEGLSHDGFELVLNGRRVHIDLKGLTGGQNVMIYGQTEVTRDLMAARQASGAQTLYQVDNAQPHDLKTEHPFVTFEHAGETWRLDCDYVAGCDGFHGAARQSIPAQKLKVFERVYPFGWLGILADTPPVHEELVYARHERGFALCSMRSRTRTRYYLQVPAEEQVADWPDERFWDELKIRLPTDLAETLVTGPSIEKSIAPLRSFVVEPMQYGRMFLVGDAAHIVPPTGAKGLNLAASDVSTLFNILLKVYRDGRADLLERYSDICLRRVWKAERFSWWMTSMLHRFDDDAFNQRISEAELEYFVDSEAGRKTIAENYVGLPYEAIE	PGPT0005065_322	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-HYDROXYBENZOIC_ACID_GALLATE_RESISTANCE,PGPT0005065-pobA-K00481	NA	NA
D1-36_03897	1491	bmr3		Multidrug resistance protein 3	ATGCAACCCGCTATCCGCAGCGTGCTGGTGGCGCTGATGCTGGCGATTTTCCTCGGTGCGCTGGACCAGACCATTGTCGCGGTCTCGATGCCGGCCATTTCCGCGCAATTCAAGGATGTCAGCCTGCTGGCCTGGGTGATCTCCGGCTACATGGTCGCCATGACCGTAGCGGTGCCGATCTACGGCAAGCTGGGCGACTTGTATGGCCGGCGCCCGCTGATGCTGTTCGGCATGGGCCTGTTCACCCTCGCTTCGCTGTTTTGCGGGTTGGCACAGAACATGGAGCAACTGGTGCTGGCGCGGATTTTCCAGGGCATCGGCGCCGGCGGCATGATTTCTGTGAGCCAGGCGATCATCGGCGACATCATCCCGCCCCGCGAGCGTGGGCGCTACCAGGGTTATTTCAGCAGCATGTATGCGGTGGCCAGCGTGGCCGGACCGGTGCTGGGCGGCTACATGACCGAGTACCTGTCGTGGCGCTGGGTCTTCTGGATCAACCTGCCATTGGGCCTGGGCGCCTGGCTGGTGGCCCGGCGCGCCCTGGTGGGGCTGCCGGTGCCACAACGCACACCAATCATCGATTACCTGGGCACCGTGTTGCTGATCATCGGTCTGACCTCGCTGCTGCTGGGCATTACCCAGATCGGCCAAGGCCATGCCTGGCACAGCCGCGAAGTGCTCGGGCTGCTGGGTGGCGCAGTACTCGTGCTGGGTCTCTTCGCCTGGCATGAACGCCGCGCACGGGAGCCGTTGCTGCCTATGCACCTATTCGTCAACCGCAGCGCGGTGCTGTGCTGGTGCACGGTTTTTTTCACCAGCTTCCAGGCGATTTCCCTGACAGTGCTGGTGCCGTTGCGCTTCCAGAGCGTGACCGGCGCCGGCGCCGACAGCGCCGCGCTGCACTTGCTGCCGCTGGCGATGGGTTTGCCGATGGGCGCCTATTTTGCCGGGCGGCGCACCTCGATCACCGGGCGCTACAAACCGATGATCCTCAGTGGCGCCCTGCTCTTCCCGTTCGCCATTCTTGGCATGGCTTTCACGCCGCCCGCCGTGTTCTGGCTGAGCAGCCTGTTCATGTTGCTCAGCGGCATCGCTTCGGGCATGCAATTTCCCACTTCGCTGGTGGGCTCGCAGAATTCGGTGCAGCAACGGGACATCGGTGTCGCTACCAGCACCACTAACCTGTTTCGCTCATTGGGCGGCGCGGTGGGTGTGGCGCTGATGTCGGCGTTGCTGCTGGCCTTGCTGCAGGATTCCGGTTTTGCCCAGCTCGCCGGTTCGTCGATGATCGGCGAGGGGCATTCCGGCAACGTCCTGCTCGATGGTTTGAACGCCGCTCCCGGAGAGGCACGGGACGCCTTGCGTGAGGAGTTGCAAGCGACGTTCCGGCACTTGCTGATGATCAGCGCGGCGGTGTCATTGCTGGGGCTGGCGGCTGCGGTGGCCATGCCCGATCGCCTGTTGCGCGGGCGAGAGGAAAAGGCTCGTTAG	MQPAIRSVLVALMLAIFLGALDQTIVAVSMPAISAQFKDVSLLAWVISGYMVAMTVAVPIYGKLGDLYGRRPLMLFGMGLFTLASLFCGLAQNMEQLVLARIFQGIGAGGMISVSQAIIGDIIPPRERGRYQGYFSSMYAVASVAGPVLGGYMTEYLSWRWVFWINLPLGLGAWLVARRALVGLPVPQRTPIIDYLGTVLLIIGLTSLLLGITQIGQGHAWHSREVLGLLGGAVLVLGLFAWHERRAREPLLPMHLFVNRSAVLCWCTVFFTSFQAISLTVLVPLRFQSVTGAGADSAALHLLPLAMGLPMGAYFAGRRTSITGRYKPMILSGALLFPFAILGMAFTPPAVFWLSSLFMLLSGIASGMQFPTSLVGSQNSVQQRDIGVATSTTNLFRSLGGAVGVALMSALLLALLQDSGFAQLAGSSMIGEGHSGNVLLDGLNAAPGEARDALREELQATFRHLLMISAAVSLLGLAAAVAMPDRLLRGREEKAR				NA	NA	NA	NA	NA
D1-36_03898	1350	sotB_2		sugar efflux transporter	ATGCAGAACTCGACCCAAGCGGCGAATGCCTGGCGCATTCTGTTCCTGTTGTTCCTGGCCAACCTGTTCAACTTCTTCGATCGCACCATCCCGGCGATCATCATCGAGCCGATCCGCATGGAGTGGAGCCTCAGCGACTTCCAGATCGGCATCATCGGCACCGCGTTCACAATCGTCTACGCCATTGCGGGCTTGCCGCTGGGGCGCATGGCCGATACCGGTTCGCGCAGCAAGTTGATGGGCTGGGGCCTGGCCGCCTGGAGCGGATTGACCGCGGTGAATGGCCTGGTGGGCAGTTTCTGGGCGTTCCTGGTGGTGCGCATGGGCGTGGGCATCGGTGAGGCCAGCTATGCGCCGGCCGCCAATTCGTTGATTGGCGATCTGTTCCCGGCTCACCGCCGGGCTCGGGCAATGGGCATCTTCATGTTGGGGCTGCCGCTGGGCCTGTTGTTGGCGTTCTTCACCATCGGCGCGATGGTCAAGGCCTTCGACAGCTGGCGTGCGCCTTTCTTCATCGCGGCGGTGCCGGGGCTGGTGCTGGCGGTGTTCATGTTCTTCATCAAGGAACCCAAGCGCGGCGCGGCGGAAACCGTGCAGGTGTCCCAAGAGAAGGTTGATAAACCGGTTCGCCGGGTGCTGGCGATTCCGACCTTTCTCTGGTTGGTGCTGGCGGGGCTGTGCTTCAACTTCGCCACCTACGCCTGCAACTCATTCCTGGTGCCAATGCTGCAACGGTATTTCGGGATGCCGCTGCACGAGGCGGCCGTGGCGACCGGCATCATGGTGGGCGTGACCGGATTGTTCGGGCTGACCCTTGGCGGCTGGGTCGCAGACAAGATCCACCAGCGCGTGCCCAACGGCCGTCTGTTGTTTGCAGCGTTCAGCCTGGCCATTTCGACAGTGACCACGGCGTGGGCCCTCCATGCCGGGCGCATCGAGATCGGTGTTTTCGTGGCCGTGTTCAGCGTTGGTTGGTTGTTTGCCTATAACTTCTACACCTGCGTCTATACCGCGATCCAGGACGTGGTGGAGCCGCGACTGCGTGCTACGGCGATGGCCTTGTATTTTGCCGGGCTGTATCTGCTCGGCGGCGGCCTCGGGCCGGTGGTGGTGGGCGGCTTGTCCGACTACTTCGCCCACACGGCGATGGCTGTAGCAGGTGCCCCGCAAATGACCGAAGCCTTCAAGGCCATCGGCCTGCATGACGCGATGTATCTGATCCCGGTGGCGCTGTTGCTGACCATGGTGTTCCTGTTCCTGGCGTCTCGCTGCTTCGTGCGCGATGCCAAGCGGATGAAGGACGGGATGAGCGTCGTGGTGGAGCCGGCGGGCGTGGCGGCGACAGCTTGA	MQNSTQAANAWRILFLLFLANLFNFFDRTIPAIIIEPIRMEWSLSDFQIGIIGTAFTIVYAIAGLPLGRMADTGSRSKLMGWGLAAWSGLTAVNGLVGSFWAFLVVRMGVGIGEASYAPAANSLIGDLFPAHRRARAMGIFMLGLPLGLLLAFFTIGAMVKAFDSWRAPFFIAAVPGLVLAVFMFFIKEPKRGAAETVQVSQEKVDKPVRRVLAIPTFLWLVLAGLCFNFATYACNSFLVPMLQRYFGMPLHEAAVATGIMVGVTGLFGLTLGGWVADKIHQRVPNGRLLFAAFSLAISTVTTAWALHAGRIEIGVFVAVFSVGWLFAYNFYTCVYTAIQDVVEPRLRATAMALYFAGLYLLGGGLGPVVVGGLSDYFAHTAMAVAGAPQMTEAFKAIGLHDAMYLIPVALLLTMVFLFLASRCFVRDAKRMKDGMSVVVEPAGVAATA				NA	NA	NA	NA	NA
D1-36_03899	2175			hypothetical protein	ATGACTTCCAAAAAAACAGCCACTGCGGTTTCCGATCTGACCTTGAGCCCAGCCGCCAACGGCCCTGAAACCTCGACGCTGTCGAGCAGCTCGCGATCCCTGGCTACCCAGCAATACCTGTATTTCACCGAGACCAACACCGACCGCATCCTCGACAACCTCGACGGCCTGCGCGATGCCGTGTTCCCCCGTCCGCCGCACCTGGTGGACGACGAGAGCGAACGTGGCCAGCAGGAGTTCCCATCGGTTTGCCTGATCGGCCTAGGTCGCTGCGGTTCCAACATCGCCCTGGACGTCGCGGAGCTGGTCTACAACGCCCGCAAGTTCTACCTCAACGAATTCAATGCCGAGGATAAAAACTACGGCGACAAAAGTTATCGCCCGGCGCAGTGGATGCGCAACCTGCGCCTGGGCAACAGCAAGGCAAGCAAACCGGTGTTCCTGGTGGAACCACTGGTCATGCTGGGAGACTTGGACAAGGACATCGCCGGGCGCATCCGTTTCTCGCGCAAAGGCGAGAAAAGCGGCTTCTTGCGCGACTACAGCAAGATGAAAATCATGGACCTGTCGGAAGTCCATGCTGGTGGCGCCGGCAACGCGCCGATCCTCGGCCAGTATCTGGCGAAGATCATCCTGAACAAGGACACCCAGCGTTTCTCCAGCCCCGACTGGAAGATGATTCACTCGTACCTGATCGACAGCTGCGGCATCAAGGCCAACCAGTCGCGCCTGTATTTTTCGATCTTCAGCGCCGGCGGCGGTACCGGTTCGGGCATGGCCTCGGAGTTTGGCCTGGCCCAGCAGTACTCCTACATGAACAAGACGTTCGACACCAAGCCGATGGACGAACACGATAGCAAGAGCGGTCACTCCTTCGTCTTCGAGCCGATTTTCACCAGCGGCATCTGTGTGCTGCCGAATATCTCCGACCACCGCAGCGAAATGTCCGAGGCTCTGCACATCAACGCCGGTCGGCTGTTGTGCAAATACCTCTCGGAAGAATGGGACTTCTCGTACAACTTCGCCAACGAAGACAGCAGCGAAGCCAGCGTCATGGGCCGCATCCGTCCGTGGAACGCGATGATGTTGATCTCCAACGACATCATGCGCTACGCCGAAGAGAGTGATGACGGCAACATCCAGAACATTGATGTCAATGCCATGGAAAAGCACGCCAACCAGTACATTTCCCAGCAGATATTCAACATCCTGACGGCCCAGGCCGTGACCACCGACTACGACCAGAACTACTTCCGTCGCGCCGGCATCGACATTGGTGAAACCATTCGCCTGGACGCCAACGACCTGTTCATGAGCCTGGCCGGCCCGGTGGCGATTGCCTACGCCGAGTCCGTGGTCCCGGAAACCCCGGCGCCGAGCGGCGACAAGTTCAAGGTGTTCGAGAAAGAGCCACCGCGCTTGAACATCGATGACCTGTTTTTCCGTTCCATCGACTTGCCGCACTTCAACAAAGTCACCCAGGCCATCGAAGGCATCAGCCTGTTGCCCATCGAGTCCAAGCGCTACCGCGCCTCGCTGGAGCAGTACAAGAACTCCGGCTACGACGCCGCTGCGCTGCATGACCTGCACTTCTTCAAGAACTGCTCGTCGGTGGTATCGATCGTCTCGTTGCCCAAGGATTACAAGCTGTCCTACATGGACTTGAACCGGCTCAAGACCCACCTCAACAGCCTGTTCCCCAACACCACGCTCAAGCGCTACGCGTTGGTGATCGGCGCCTCGGCGAACCTGTCGCTGACCACGCTGATCGCCAAGAGCCCGTGCCTTTCGGACGACTTCCTGACCCTGATCGTGGCGTTTATCAAACGCTGCTTCGCCCGTACGCCGTACCGCTTCGATGAGACCTTGGACAACTCGATCCTGGACTTCATCATCAACGAAGAATTCGACGAGGCACGCATCGACGACCTGCTCAATGAATTCGAGAACCCGGCGAAAATCCTCGACACCAACTGGTACGCGATCAAGCCGATGTATGAAAAGAAATACCGCGAGCTGATCAGCGACAAGGAAAAATTCGTCTCGATCAACGACATCCGCCTGTCCCGCGACTGCGTGAAGAAGTCCATCAAGTACCTGCGCGAGATCTACCGTCATCGGATCGGCAAGACCAAGGTTATTTCGCTTAATAACCATACTGGCCGTACTTACTGA	MTSKKTATAVSDLTLSPAANGPETSTLSSSSRSLATQQYLYFTETNTDRILDNLDGLRDAVFPRPPHLVDDESERGQQEFPSVCLIGLGRCGSNIALDVAELVYNARKFYLNEFNAEDKNYGDKSYRPAQWMRNLRLGNSKASKPVFLVEPLVMLGDLDKDIAGRIRFSRKGEKSGFLRDYSKMKIMDLSEVHAGGAGNAPILGQYLAKIILNKDTQRFSSPDWKMIHSYLIDSCGIKANQSRLYFSIFSAGGGTGSGMASEFGLAQQYSYMNKTFDTKPMDEHDSKSGHSFVFEPIFTSGICVLPNISDHRSEMSEALHINAGRLLCKYLSEEWDFSYNFANEDSSEASVMGRIRPWNAMMLISNDIMRYAEESDDGNIQNIDVNAMEKHANQYISQQIFNILTAQAVTTDYDQNYFRRAGIDIGETIRLDANDLFMSLAGPVAIAYAESVVPETPAPSGDKFKVFEKEPPRLNIDDLFFRSIDLPHFNKVTQAIEGISLLPIESKRYRASLEQYKNSGYDAAALHDLHFFKNCSSVVSIVSLPKDYKLSYMDLNRLKTHLNSLFPNTTLKRYALVIGASANLSLTTLIAKSPCLSDDFLTLIVAFIKRCFARTPYRFDETLDNSILDFIINEEFDEARIDDLLNEFENPAKILDTNWYAIKPMYEKKYRELISDKEKFVSINDIRLSRDCVKKSIKYLREIYRHRIGKTKVISLNNHTGRTY				NA	NA	NA	NA	NA
D1-36_03900	306			hypothetical protein	ATGAATCAAGAACCTAGCACCCTCTATGCCAAATTGCTCGGTGAAACCGCATCCATCACCTGGAAAGAGCTGGAGCCGTTCTTTGCCAAGGGTGCCCTATTGTGGGTCGATCCGGCACTGGATCTGATCGCTGCCGCCGAGGCCGTGGCCCAGGACGAAGGTACCAAAGTCGCCGCCTGGCTGGGCGCCGGGCAGGTCGCCAAGCTGTCTGAAACGCGGGCGCTGGATTTTCTGGAGCGCGATCCGCAGCTCTGGGCGGTGGTGGTTTCGCCTTGGATCATGATCCAGGAAAGGGCATCGAATTGA	MNQEPSTLYAKLLGETASITWKELEPFFAKGALLWVDPALDLIAAAEAVAQDEGTKVAAWLGAGQVAKLSETRALDFLERDPQLWAVVVSPWIMIQERASN				NA	NA	NA	NA	NA
D1-36_03901	1128	braC_2	COG0683	Leucine-, isoleucine-, valine-, threonine-, and alanine-binding protein	ATGACTAAGGCTACTAAGCAGATTTCCAAACTGTTTGCCGCTATGGTTCTGGCCGGGGTTGCCAGCCATTCGTTTGCCGCCGATACCATCAAGATCGGCATCGCCGGCCCGAAAACCGGCCCTGTAGCCCAATACGGCGACATGCAGTTCAGCGGCTCCAAGATGGCGATCGAGCAAATCAACGCCAAGGGCGGCGTCGACGGCAAGAAACTCGAAGCCGTTGAATACGACGACGCCTGCGATCCAAAACAAGCGGTCGCCGTCGCGAACAAGGTCGTCAACGACGGCGTCAAGTTCGTGATCGGCCACCTGTGCTCCAGCTCCACCCAGCCGGCTTCGGACATCTACGAAGACGAAGGCGTGATCATGATCACCCCAGCGGCCACCAGCCCGGACATCACCGCCCGTGGCTACAAGATGATCTTCCGCACCATCGGTCTGGACAGTGCCCAAGGCCCAGCGGCCGGCAACTACATCGCCGATCACGTCAAGCCGAAAATCGTTGCGGTCCTGCACGACAAGCAGCAGTACGGTGAAGGCATCGCCAGCGCGGTGAAAGCCACCCTCGAGAAGAAAGGCACCAAGATTGCCGTGTTCGAAGGCGTCAACGCCGGCGACAAGGACTTCTCCGCGATCATCGCCAAGCTCAAGCAAGCCGGTGTCGACTTCGTTTACTACGGCGGTTACCACCCGGAGCTGGGCCTGATCCTGCGCCAGGCCCAGGAAAAGGGCCTGAAAGCCCGCTTCATGGGTCCGGAAGGCGTGGGCAACGATTCGATCACCCAGATCGCCAAGGATGCTTCCGAAGGCCTGCTGGTGACCCTGCCGAAGTCCTTCGACCAGGATCCGGCCAACGTTGCATTGGCTGACGCGTTCAAAGCGAAGAAGGAAGACCCGAGCGGCCCGTTCGTGTTCCCGTCCTACTCCGCAGTGACCGTGATTGCCGAAGGCATCAAGGCGGCCAAGTCCGAAGACGCGACCAAAGTGGCTGAAGCCATCCACGCCGGCACTTTCAAGACGCCGACCGGTGACCTGAGCTTCGATGAAAAGGGCGACCTGAAAGACTTCAAATTCGTGGTTTACGAGTGGCACAACGGCAAACCTAAAACTGAAGTTTCGCCTCAGTAA	MTKATKQISKLFAAMVLAGVASHSFAADTIKIGIAGPKTGPVAQYGDMQFSGSKMAIEQINAKGGVDGKKLEAVEYDDACDPKQAVAVANKVVNDGVKFVIGHLCSSSTQPASDIYEDEGVIMITPAATSPDITARGYKMIFRTIGLDSAQGPAAGNYIADHVKPKIVAVLHDKQQYGEGIASAVKATLEKKGTKIAVFEGVNAGDKDFSAIIAKLKQAGVDFVYYGGYHPELGLILRQAQEKGLKARFMGPEGVGNDSITQIAKDASEGLLVTLPKSFDQDPANVALADAFKAKKEDPSGPFVFPSYSAVTVIAEGIKAAKSEDATKVAEAIHAGTFKTPTGDLSFDEKGDLKDFKFVVYEWHNGKPKTEVSPQ	PGPT0020765_12836	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
D1-36_03902	924	livH_2	COG0559	High-affinity branched-chain amino acid transport system permease protein LivH	ATGCCTGACATCTATCACTTCTTCCAACAGCTGGTTAACGGCCTTAACGTTGGCAGCATGTATGCCCTGATCGCCATCGGCTACACGATGGTTTACGGCATCATTGGAATGATCAACTTCGCCCACGGCGAGGTGTACATGATCGGCTCCTACGTGGCGTTCATCGCCATTGCCGGGCTGACCATGATGGGACTCGACAGTGTCCCGCTGTTGATGACCGCGGCTTTTATCGCGAGCATCGTGGTCACCAGTTCCTATGGCTACAGCATCGAACGGATCGCCTATCGCCCCTTGCGCGGCAGCAACCGTCTTATCCCGCTGATTTCCGCCATTGGTATGTCGATTTTCCTGCAGAACACCGTTCTGCTGGCGCAAGACTCCAAGGACAAAGCAATCCCCAACCTGATCCCTGGCAACTTCGCCTTCGGTCCGGGTGGCGCACAAGAAGTGCTGATTTCCTACATGCAGATCGTGGTGTTCGTCGTCACTGTGATCGCCATGCTCGGCCTGACCCTGTTCATCTCCCGTTCTCGCCTGGGCCGCGCCTGCCGCGCCTGTGCCGAGGACATCAAGATGGCCAACCTGCTCGGCATCAACACCAACAACATCATCGCCCTGACTTTTGTCATTGGTGCTGCGCTGGCAGCCGTTGCGGCTGTTCTGCTGAGCATGCAATACGGCGTGATCAACCCGAACGCTGGTTTCCTCGTCGGCCTCAAGGCCTTCACCGCTGCGGTATTGGGCGGCATCGGCAGCATTCCCGGAGCCATGCTCGGTGGATTGGTGCTGGGGGTGGCGGAAGCCTTTGGCGCCGATATCTTCGGCGACCAGTACAAGGACGTCGTTGCATTCGGCTTGTTGGTTCTGGTGCTGTTGTTCCGTCCGACCGGCATTCTGGGCCGTCCGGAGGTTGAGAAAGTATGA	MPDIYHFFQQLVNGLNVGSMYALIAIGYTMVYGIIGMINFAHGEVYMIGSYVAFIAIAGLTMMGLDSVPLLMTAAFIASIVVTSSYGYSIERIAYRPLRGSNRLIPLISAIGMSIFLQNTVLLAQDSKDKAIPNLIPGNFAFGPGGAQEVLISYMQIVVFVVTVIAMLGLTLFISRSRLGRACRACAEDIKMANLLGINTNNIIALTFVIGAALAAVAAVLLSMQYGVINPNAGFLVGLKAFTAAVLGGIGSIPGAMLGGLVLGVAEAFGADIFGDQYKDVVAFGLLVLVLLFRPTGILGRPEVEKV	PGPT0020770_3167	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
D1-36_03903	1257			hypothetical protein	ATGACTAGGAATCTTAAACAGGCACTGTTCAGTGCCTTGCTGGTCTGGGCCGTGGCCTACCCGGTACTCGGTCTGAAACTGACCATCGTCGGTATCAACCTGGAGGTGCACAACACCAGCCCTGCGGTGCTTGCGACCATCGCGATCTGCTCGGTGCTGATGTTCCTGCGCGTGCTGTTCAACCAGCAAATCAGCAAGGCCTGGCGCTCCTCCCCGGGCCTGCCGCTGATCCCGGCCAAGGCCAGCAACTTCCTGACCCTGCCAACGACTCAGCGCTATTTCATCATCGCCCTCATCATCGTCGCGCTGGTATGGCCGTTCTTCGGCTCGCGCGGCGCGGTGGACATCGCTACGCTGATCCTGATCTACGTGATGCTCGGCCTGGGCCTGAACATCGTGGTAGGCCTGGCCGGCCTGCTGGACCTGGGTTACGTCGGCTTCTATGCCGTCGGCGCCTACAGCTACGCGCTGCTGTCCCACTACTTCGGCCTGAGCTTCTGGATCTGCCTGCCGATCGCCGGGCTGATGGCTGCCACCTTCGGTTTCCTGCTGGGTTTCCCGGTCCTGCGCTTGCGTGGTGACTATCTGGCGATCGTGACCCTGGGTTTCGGTGAGATCATCCGGCTGTTCCTGCGTAACATGACCGACATCACCGGTGGTCCGAACGGCATCAGCAATATCGAGAAGCCGACGTTCTTCGGCCTGACCTTCGAGCGCAAGGCCGCCGAAGGCTTGCAGACCTTCCACGAGTACTTCGGCCTGCAATACAACTCGATCAACAAGGTGATCTTCCTGTACCTGGTTGCCCTGTTGCTGGCACTGGCGGCACTGTTTGTCATCAATCGCCTGCTGCGCATGCCGATCGGCCGTGCGTGGGAAGCGCTGCGTGAAGACGAAATCGCCTGCCGCGCGCTGGGTCTCAACCCAACCGTGATCAAACTGTCGGCCTTTACCCTCGGTGCTGCGTTCGCCGGTTTCGCCGGTAGCTTCTTCGCGGCTCGCCAGGGCCTGGTGACGCCCGAATCGTTCACCTTCATCGAGTCGGCGATCATCCTCGCCATCGTCGTGCTGGGCGGGATGGGCTCGCAGCTGGGCGTGATCCTGGCTGCGATCGTGATGATCCTGCTGCCTGAAATGATGCGTGAATTCAGTGAATACCGCATGTTGATGTTCGGCGCCTTGATGGTGCTGATGATGATCTGGCGTCCTCAAGGTCTGCTGCCTATGCAACGCCCACACATGGAGCTGCGCAAATGA	MTRNLKQALFSALLVWAVAYPVLGLKLTIVGINLEVHNTSPAVLATIAICSVLMFLRVLFNQQISKAWRSSPGLPLIPAKASNFLTLPTTQRYFIIALIIVALVWPFFGSRGAVDIATLILIYVMLGLGLNIVVGLAGLLDLGYVGFYAVGAYSYALLSHYFGLSFWICLPIAGLMAATFGFLLGFPVLRLRGDYLAIVTLGFGEIIRLFLRNMTDITGGPNGISNIEKPTFFGLTFERKAAEGLQTFHEYFGLQYNSINKVIFLYLVALLLALAALFVINRLLRMPIGRAWEALREDEIACRALGLNPTVIKLSAFTLGAAFAGFAGSFFAARQGLVTPESFTFIESAIILAIVVLGGMGSQLGVILAAIVMILLPEMMREFSEYRMLMFGALMVLMMIWRPQGLLPMQRPHMELRK	PGPT0020775_2712	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
D1-36_03904	768	lptB_3	COG1137	Lipopolysaccharide export system ATP-binding protein LptB	ATGAGCCGCGAGATCCTCAAAGTTGAAAACTTGAGCATGCGCTTCGGCGGCTTGCTTGCGGTCAACGGCGTGGCCCTGACCGTGAAAGAGAAACAGGTGGTTGCCCTGATCGGGCCGAACGGCGCGGGCAAGACCACAGTGTTCAACTGCCTGACCGGCTTCTACCAGCCCACCGGCGGCACCATCCTGCTGGACGGCGAGCCGATCCAGGGCCTGGCCGGCCATCACATCGCTCGCAAGGGCGTGGTGCGGACCTTCCAGAACGTGCGGCTGTTCAAGGACATGACGGCGGTCGAGAACCTGTTGATCGCCCAGCACCGTCACCTGAACACCAACTTCTTCGCGGGCCTGTTCAAGACCCCGGCGTTCCGCAAGAGCGAACGCGAGGCGATGGAGTACGCCGCGTACTGGCTGGACAAGGTCAACCTCACCGAGTTCGCCAACCGTACCGCCGGCACCCTGGCCTACGGTCAGCAACGGCGCCTGGAAATCGCCCGCTGCATGATGACCCGCCCGCGGATCCTCATGCTCGACGAACCGGCCGCCGGCCTGAACCCGAAGGAAACCGAAGACCTGAAGGCGCTCATCAGCGTGTTGCGCGAGGAGCACAACGTCACCGTCCTGCTGATCGAGCACGATATGAAGCTGGTCATGAGCATTTCCGACCACATCGTCGTGATCAACCAGGGCACGCCGCTGGCCGACGGTACGCCGGAACAGATCCGCGATAATCCCGAAGTGATCAAAGCCTACCTGGGGGAAGCGTAA	MSREILKVENLSMRFGGLLAVNGVALTVKEKQVVALIGPNGAGKTTVFNCLTGFYQPTGGTILLDGEPIQGLAGHHIARKGVVRTFQNVRLFKDMTAVENLLIAQHRHLNTNFFAGLFKTPAFRKSEREAMEYAAYWLDKVNLTEFANRTAGTLAYGQQRRLEIARCMMTRPRILMLDEPAAGLNPKETEDLKALISVLREEHNVTVLLIEHDMKLVMSISDHIVVINQGTPLADGTPEQIRDNPEVIKAYLGEA	PGPT0020780_6447	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
D1-36_03905	702	livF_3	COG0410	High-affinity branched-chain amino acid transport ATP-binding protein LivF	ATGCTGCAATTCGAAAACGTTTCCACCTTCTACGGCAAGATCCAGGCGCTTCACAGCGTCAACGTCGAGGTCCGCCAGGGCGAAATCGTCACGCTGATCGGCGCCAACGGTGCTGGCAAATCGACGCTGCTGATGACCCTCTGCGGTTCGCCCCAGGCCCACAGCGGCAGCATCCGCTACATGGGCGAGGAACTGGTGGGCCAGGAGTCGGCGCAGATCATGCGCAAGAGCATCGCTGTGGTGCCTGAAGGCCGTCGGGTATTTGCCCGGCTGACCGTGGAAGAAAACCTCGCCATGGGCGGGTTCTTCACCGACAAGGGCGACTATCAGGAACAGATGGACAAGGTGCTGCACCTTTTCCCACGCCTGAAAGAGCGTTTTACCCAGCGCGGCGGCACCATGTCCGGTGGCGAACAGCAAATGCTCGCCATCGGCCGTGCGCTGATGAGCAAGCCCAAGCTGCTGCTGCTCGACGAGCCTTCCCTGGGCCTGGCACCGATCATCATCCAGCAGATCTTCGACATCATCGAACAGCTGCGCAAGGATGGCGTGACGGTGTTCCTGGTGGAGCAGAACGCCAACCAGGCGCTGAAAATCGCCGACCGGGCGTACGTGTTGGAGAACGGTCGCGTGGTGATGCAAGGCACCGGTGAAGCGCTGCTGACCGACCCGAAAGTGCGCGAGGCGTACCTGGGCGGCTGA	MLQFENVSTFYGKIQALHSVNVEVRQGEIVTLIGANGAGKSTLLMTLCGSPQAHSGSIRYMGEELVGQESAQIMRKSIAVVPEGRRVFARLTVEENLAMGGFFTDKGDYQEQMDKVLHLFPRLKERFTQRGGTMSGGEQQMLAIGRALMSKPKLLLLDEPSLGLAPIIIQQIFDIIEQLRKDGVTVFLVEQNANQALKIADRAYVLENGRVVMQGTGEALLTDPKVREAYLGG	PGPT0020785_8822	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
D1-36_03906	909	dmlR_21		HTH-type transcriptional regulator DmlR	GTGAGCGAGATAGATGACCTCGCAGCGTTCGCCGTGCTGGTGGAGGCTGGGAGTTTCACCTTGGCGGCGCAGCAGTTGGGGTGCAGCAAGGGGCAACTGTCCAAGCGCATCAGTCTGTTGGAAGAGCGGTTTTCGGTGCTGCTGCTCCAGCGCACGACACGACGCCTTAGCCTGACGGCGGCGGGCGCTGCGCTGTTGCCCCAGGCCCAGGCATTGTTGGTCCAGGTGGAAAGGGCGCGTCAGGCGTTGGCGCGCTTGAAGGGCGAAATTTCCGGGCCGGTGCGCATGACGGTTCCGGTTTCGTTGGGCGAAACGTTCTTCGAGGGATTGCTTACGGAATTTGCCTGTGCCTATCCCGACGTGCAGATTGAGCTGGAGCTCAACAATGGTTACCGCGATTTAACCCGCGATGGCTTCGATTTGGCGATTCGTTCGGATGCGGCGGTCGATGAGCGGTTGGTGGCTCGACCGTTGCTGGCCTGGCATGAAATGACCTGCGCCAGCCCGGCCTACCTGGAACGCTACGGCGAACCCGAGTCCCCCCACGCCTTGGTGGAGCACAAGTGCCTGCTCAACAGCCACTACAGTGGTCGGGAAGAGTGGCTGTATCACCAGCAGCACGAATTGTTGCGGGTGCGAGTGTCCGGGCCGTTCGCCAGTAACCATTACAGCCTGTTGAAAAAAGCCGCCTTGGCCGACGCGGGTATCGCCCGTTTGCCATCGTATTTGCTCCATGAAGAGCTGGCGGACGGACGCCTGCGTTGGCTGTTGCGCGATTTCCAGACCCGGCGCATGCCGATGTACCTGGTGCATCCTTATCAGGGTGGGTTGCCCAAGCGTACCCAGGTGCTGGCTGATTATTTGATTGAATGGTTCAAGCGCAGTGGGGAGGCGTTGGATCGGTTGTAG	MSEIDDLAAFAVLVEAGSFTLAAQQLGCSKGQLSKRISLLEERFSVLLLQRTTRRLSLTAAGAALLPQAQALLVQVERARQALARLKGEISGPVRMTVPVSLGETFFEGLLTEFACAYPDVQIELELNNGYRDLTRDGFDLAIRSDAAVDERLVARPLLAWHEMTCASPAYLERYGEPESPHALVEHKCLLNSHYSGREEWLYHQQHELLRVRVSGPFASNHYSLLKKAALADAGIARLPSYLLHEELADGRLRWLLRDFQTRRMPMYLVHPYQGGLPKRTQVLADYLIEWFKRSGEALDRL				NA	NA	NA	NA	NA
D1-36_03907	600			hypothetical protein	ATGAAAATCCTGTTGATCGGCGCCAACGGCACCATCGGTTCGGCCATCGATAATGAATTATCGCCCCGCCACGAAATCGTACGCATCGGCCGCCATAGCGGTGACGTACAAGTCGATATCAGCGACAGCGCCTCGATCCGCGCCTTGTTTGAAAAGACCGGCCGCTTCGACGCGCTGGTCTGTGCCGCGGGCAATGTCACCTTCGCACCTCTGGGCGACATGACCGAAGACAGCTTTGCCCTAGGCCTGAAGGACAAACTGATGGGCCAGGTCAATCTGCTGCTGATCGGCCGCGAGTTCGCCAACGACGGTGCATCCTTTACCTTCACCACTGGCGTACTTAGCCACGACCCCATCAAGAGCGGCGCTTCGGCGGCACTGGTGAACGGCGCCCTCGACAGTTTCGTGCGCGCGGCGGCAATCGAATTGCCGCGCGGGCTACGGGTCAATTCGGTAAGCCCGAACGTGCTTCTGGAAGCCATGGACAAATATGCGCCGTACTTCCGTGGCTATAAGCCCGTTCCTGCGGCGGAAGTGGCGCTGGCCTACGCGAAGAGTGTCGAAGGCCTGCAAACCGGCCAGACCTTTCACGTGGGCTGA	MKILLIGANGTIGSAIDNELSPRHEIVRIGRHSGDVQVDISDSASIRALFEKTGRFDALVCAAGNVTFAPLGDMTEDSFALGLKDKLMGQVNLLLIGREFANDGASFTFTTGVLSHDPIKSGASAALVNGALDSFVRAAAIELPRGLRVNSVSPNVLLEAMDKYAPYFRGYKPVPAAEVALAYAKSVEGLQTGQTFHVG				NA	NA	NA	NA	NA
D1-36_03908	678			hypothetical protein	ATGATGCGTGCCGCTCGTTCCCTGCTGTTTGTCGCCCTCCTCCCGCTTTTCGCCGGCTGCCAGCTGCTCGAAGCCCCGCGCCAGAGTGCGCCCCATGCGGGGCAAACACGTATGCAAGGCGAACTGACAGCCGCGGACGGCAAGTTGATGTTCCAGCCGTGCCAGGAACAGCGCCGCTACATGGTCAATGACGCCGGCGGCACCAGCGTCCTGCAACAAGCCGCCACCCTGGCGGATGATAGCGGCAAGTTGTTCGCCGACCTGCGCGGCCGCATCGTTTCCAGCGCATCGGCCGGTGCCGACAGCCAGCTGGACGTTGGCCAGCTCTATCGCCTGGAACCTTCGGGGACCGCGTGCGGCGACGCAGACTTCAAGCGCGTGATTCTGCGTGCAACGGGCCACAGCCCTGAATGGACCCTCACGGCCAGCGGCAAGGGCCTGGTGCTGGATCGGGTAGGTCAGCCGCCACTGGCGGTGCCCTATGTCGAGGAGCAATTGGGTGATGGCAGGTTCAACCTCGGTACCGAAGCCAATGGCCAGAAAGTCGAGCTATGGGTCACCCCGGCTCGCTGTGTCGACAGCGCCAGCGGCAGCGTGCAACACATGAGCGCCGAATTGCGGGTCAACGGCCAGGTCCAGCGCGGATGTGCCTATTTCGGTGGCGCACGGGACGACTGA	MMRAARSLLFVALLPLFAGCQLLEAPRQSAPHAGQTRMQGELTAADGKLMFQPCQEQRRYMVNDAGGTSVLQQAATLADDSGKLFADLRGRIVSSASAGADSQLDVGQLYRLEPSGTACGDADFKRVILRATGHSPEWTLTASGKGLVLDRVGQPPLAVPYVEEQLGDGRFNLGTEANGQKVELWVTPARCVDSASGSVQHMSAELRVNGQVQRGCAYFGGARDD				NA	NA	NA	NA	NA
D1-36_03909	1614			hypothetical protein	ATGTTACGAATCACCGAACTCAAGCTGCCGATCGACCATCCCGAAGAAGACCTGCGTCCCGCCATCGTGCAACGCCTGGGCATCGCCAGCGATGACCTGCTCGACTTCACCTTGTTCAAGCGCAGCTATGACGCACGCAAGAAATCTTCCGAGCTGTGCTTCATTTACACCATCGACCTGACGGTGCGCGATGAAGCCAGCGTGCTGCGCAAGTTCGCTGATGACCGTAACGTCAACGAAGCGCCGGACGTCAGCTACAAAGTGGTTGGCCAGGCGCCGGCCGACCTGGGCGAACGGCCGATCGTGGTCGGCTTCGGCCCGTGCGGCATTTTCGCCGCCATGTTGCTCGCGCAGATGGGCTTCAAGCCGATCATCCTCGAGCGCGGCCCGGAGGTGCGCCAGCGCACCAAGGACACTTGGGGCCTGTGGCGCAAAAGCGTGCTCAACCCTGAATCCAACGTGCAATTCGGCGAGGGCGGTGCGGGGACATTCTCCGACGGCAAGCTCTACAGCCAGATCAAGGACCCTAAATTCCTTGGGCGCAAGGTCCTGCACGAGTTCGTCAAGGCCGGGGCGCCCGAAGAAATCCTCTACGTCAGCAAGCCACACATCGGTACGTTCCGCCTGACAGGCGTCGTGGAAAACATGCGTGAGCAGATTCGCGCGCTGGGCGGCGAAGTGCGCTTCGGGCAGCGAGTCACCGATGTGCTGATCGAAGACGGCCAATTGGTCGGTGTCGAGTTGGCCAGCGGTGAACAGATCCATTCCAAACACGTGATCCTTGCCCTGGGCCACAGCGCCCGGGACACGTTCCGCATGCTCCACAGCCGTGGCGTGTACATGGAAGCGAAGCCGTTTTCGGTGGGTTTCCGCATCGAACACCCGCAATCACTGATCGACAGTGCACGCCTGGGCAAGTACGCCGGCCATCCGAAGCTCGGCGCGGCCGACTACAAACTGGTGCACCACGCCAAGAACGGCCGTTCGGTGTACAGCTTCTGCATGTGCCCGGGCGGTACAGTGGTGGCGGCGACTTCCGAGCCGAACCGGGTCGTGACCAACGGCATGAGCCAGTATTCACGTAACGAGCGCAACGCCAACTCCGGCATCGTTGTCGGCATTACCCCGGAAGTGGATTACCCGGGGGGCCCGCTGGCGGGAATCGAGTTGCAGGAGCGTCTGGAGTCCCACGCCTTCGTACTTGGCGGCAGCAACTATGAGGCCCCCGCGCAACTGGTGGGCGATTTCATCGCCGGCAAGCCTTCGACGGCGCTGGGCAGCGTTGAACCGTCCTACAAACCGGGGGTTGCCTTGGGCGACCTGGCCCTGGCCCTGCCGGATTTCGCCATCGAAGCCATTCGTGAAGCGTTACCGGCGTTCGAGAAACAGATCCGTGGCTATTCGCTGCACGATGCAGTGCTCACCGGCATCGAGACGCGCACCTCGTCACCGCTGCGCATCACGCGAAACGAAACGCTGCAAAGCCTGAATGTGAAGGGCTTGTTCCCCGCAGGTGAAGGCGCCGGTTACGCAGGCGGCATCCTGTCGGCGGGCGTGGATGGAATCCGGATTGCCGAGGCGGTGGCGCGGGATATGCTCGGCCTCGAGGCCTGA	MLRITELKLPIDHPEEDLRPAIVQRLGIASDDLLDFTLFKRSYDARKKSSELCFIYTIDLTVRDEASVLRKFADDRNVNEAPDVSYKVVGQAPADLGERPIVVGFGPCGIFAAMLLAQMGFKPIILERGPEVRQRTKDTWGLWRKSVLNPESNVQFGEGGAGTFSDGKLYSQIKDPKFLGRKVLHEFVKAGAPEEILYVSKPHIGTFRLTGVVENMREQIRALGGEVRFGQRVTDVLIEDGQLVGVELASGEQIHSKHVILALGHSARDTFRMLHSRGVYMEAKPFSVGFRIEHPQSLIDSARLGKYAGHPKLGAADYKLVHHAKNGRSVYSFCMCPGGTVVAATSEPNRVVTNGMSQYSRNERNANSGIVVGITPEVDYPGGPLAGIELQERLESHAFVLGGSNYEAPAQLVGDFIAGKPSTALGSVEPSYKPGVALGDLALALPDFAIEAIREALPAFEKQIRGYSLHDAVLTGIETRTSSPLRITRNETLQSLNVKGLFPAGEGAGYAGGILSAGVDGIRIAEAVARDMLGLEA				NA	NA	NA	NA	NA
D1-36_03910	1095			hypothetical protein	ATGAACGACCACCGCCCGTGGGCGCGTGAAGCCATCCGTATCATCGAGGCGGACTTCCAGCGCAGCGCCGATACGCACTTGATCCCACTGCCGTTGCCGGGGTTGCCGGGCATTGAGCTGTACTTCAAGGATGAGTCCAGCCATCCCACTGGAAGCCTCAAGCATCGATTGGCTCGTTCGCTTTTCCTCTATGCGTTGTGCAACGGCTGGCTCAAGCCGGGGGCGCCGGTGATCGAAGCCTCCAGCGGATCGACGGCAATTTCCGAGGCCTACTTCGCCCGGTTGCTGGGCCTGCCATTCATTGCGGTGATGCCGGCGACGACCTCTCGGGAAAAAATCGCACAGATCGCCTTTTATGGCGGCCAGAGCCATTTGGTGGATGATCCTACGCAGATCTACGCCGAGTCCGAACGCCTGGCGCGGGAGCATGACGGCCATTTCATCGACCAATTCACCTACGCCGAGCGCGCTACGGACTGGCGCGCCAACAACAACATCGCCGAGTCGATCTTCCAGCAGATGCGTTTTGAGCAGCATCCGGAACCGACCTGGCTGATTTCCAGCCCCGGAACCGGTGGCACGACCGCCACCCTGGGACGTTATGTGCGTTACCGCCAGCACTGTACCCGTGTGCTGTGTGCCGACGCCGAGCGCTCGGTATTCTTCGATTACTACCGCAGCGGCGACGCCAGCCTGCGCCTGGATTGCGGCTCGCGGATCGAAGGCATCGGCCGACCACGGGTCGAAGCGTCGTTCCTGCCCACGGTCATCGATGCGATGGTCAAGGTCCCGGACGCCTTGTCTCTCGCGGCCATGCATTACCTGGCCCAGCGGTTGGGGCGACGGGTAGGTGGGTCCAGCGGTACCAACCTGATCGGCGCGCTGATCGCCGCGAAGGGGATGGTGGATGCTGGTGAGTCAGGGTCGATCGTGGCCATTCTTTGCGACGGCGGGGAGCGTTATGCCACGACTTATTATGATCCGGCGTGGCTCAAGCAGCAGGGGTATGAGTTGAGTGGGTTGATCGATGCGGTGGTTGCGTGTGCGGAACGCGGAGAAGCGCTGCCGGAGAGTGTGTTGCGGGCTAACATCTGA	MNDHRPWAREAIRIIEADFQRSADTHLIPLPLPGLPGIELYFKDESSHPTGSLKHRLARSLFLYALCNGWLKPGAPVIEASSGSTAISEAYFARLLGLPFIAVMPATTSREKIAQIAFYGGQSHLVDDPTQIYAESERLAREHDGHFIDQFTYAERATDWRANNNIAESIFQQMRFEQHPEPTWLISSPGTGGTTATLGRYVRYRQHCTRVLCADAERSVFFDYYRSGDASLRLDCGSRIEGIGRPRVEASFLPTVIDAMVKVPDALSLAAMHYLAQRLGRRVGGSSGTNLIGALIAAKGMVDAGESGSIVAILCDGGERYATTYYDPAWLKQQGYELSGLIDAVVACAERGEALPESVLRANI	PGPT0002810_1086	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
D1-36_03911	1170	nhaA_2	COG3004	Na(+)/H(+) antiporter NhaA	ATGACACGTTTTTTCCAACTGGAAGCGGCAAGCGGCCTTTTGTTGATCGCGGCCGCTGTGCTGGCCCTGGTGATCAACAATTCGCCGCTGGACTGGCTTTATAACGGCTTGCTGGAGACTCCGGTGGTGGCTCAGGTCGGCGCCTTGCAGATCGCCAAGCCCTTGCTGCTGTGGATCAACGACGGCCTGATGGCTATGTTCTTCCTGCTCATCGGCCTTGAGGTCAAGCGGGAGGTCCTCGACGGGCAATTGTCCAAACCATCGCAGATTGTCCTGCCGGGCGCTGCAGCCGTCGGCGGCATGCTGGTGCCGGCGCTCATCTACTGGTTCCTCAACCGCGACAACCCAGCCGCACTGGCCGGCTGGGCGATCCCGACGGCCACCGATATTGCCTTCGCCCTGGGCGTGCTGGCCTTGCTGGGCAAGCGAGTGCCGGTGTCGCTCAAGCTGTTCCTGATGACGCTGGCGATCATTGATGACCTGGGCGCCATTATCATCATTGCGATCTTCTACTCTGGCGACCTGTCGACCCTGTCATTGGGGCTGGCTGCGGCCTGCATCGCGGCATTGGTGGCAATGAACCGCATGGGCGTGGTCAAACTCGGCCCCTACATGGTGGTCGGGCTGATTCTGTGGGTTTGCGTGCTCAAGAGCGGTGTCCATGCCACCCTGGCGGGTGTCACCCTGGCCTTCTGCATTCCACTGCGCACGAAAAACGCTGAAACGTCGCCATTACTGACCCTCGAACATGCGCTTCATCCCTGGGTGGCGTATGGCATCCTGCCGCTGTTCGCCTTCGCCAACGCGGGTCTGTCGTTGAGCGGCGTCACCGTCGAAAGTTTTACTCACCACGTGCCGATGGGCATCGCGGTCGGGCTGTTGCTGGGCAAGGCAGTCGGTGTGTTCGGCCTGACCTGGCTCGCGGTGAAAGTCGGCATTGCCAGCCTTCCCGCCGGGGCGAACTGGGGGCAGATACTGGGGGTGGCGATTCTCTGCGGGATCGGTTTCACGATGAGCCTGTTCGTGGGTTCCCTGGCGTTCGCACCGGGTGCAAGTGAGTATGCAGGAATGGACCGGATGGGGATTCTTACCGGGTCGATCCTGGCGGCGGTAATTGGGTATGGGGTTACGGCGATGGCTAGTCGCAAGCCCGTTTCGCAGCATTCATGA	MTRFFQLEAASGLLLIAAAVLALVINNSPLDWLYNGLLETPVVAQVGALQIAKPLLLWINDGLMAMFFLLIGLEVKREVLDGQLSKPSQIVLPGAAAVGGMLVPALIYWFLNRDNPAALAGWAIPTATDIAFALGVLALLGKRVPVSLKLFLMTLAIIDDLGAIIIIAIFYSGDLSTLSLGLAAACIAALVAMNRMGVVKLGPYMVVGLILWVCVLKSGVHATLAGVTLAFCIPLRTKNAETSPLLTLEHALHPWVAYGILPLFAFANAGLSLSGVTVESFTHHVPMGIAVGLLLGKAVGVFGLTWLAVKVGIASLPAGANWGQILGVAILCGIGFTMSLFVGSLAFAPGASEYAGMDRMGILTGSILAAVIGYGVTAMASRKPVSQHS	PGPT0013935_1803	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013935-nhaA-K03313	NA	NA
D1-36_03912	465	slyB	COG3133	Outer membrane lipoprotein SlyB	ATGCGTAAGTCTGTTTTGCTGGTTGCTTCCTTTTCCACGATGGCGATGTTGCTCACTGGCTGTCAGTCGAGCCTGACCGGTGACTCCTACTCCCGTGACGAAGCGCGTCGCGTTCAGACGATTCGCATGGGCACTATTGAATCCCTGCGTCCGGTCAAGATCGAAGGCACCAAGACGCCTATCGGCGGTGCGGCGGGTGCTGTAGTAGGCGGCGTGGGTGGCAGCGCGATCGGTGGTGGCCGTGGCAGCATCGTTGCCGCCGTAATCGGCGCGGTGGCTGGCGGCTTGATCGGTTCGGCCACTGAAGAAGGCCTGACCCGTACCCAGGGTGTTGAAATCACGGTTCGTGAAGACGACGGCAGCATGCGTGCCTATGTTCAACAGGTTCAGGAGAATGAAGTGTTCCGCGTGGGCGAGCGGGTGCGGATTTCTACTGTCGGTGGAACCAGTCGCGTTTCCCACTAA	MRKSVLLVASFSTMAMLLTGCQSSLTGDSYSRDEARRVQTIRMGTIESLRPVKIEGTKTPIGGAAGAVVGGVGGSAIGGGRGSIVAAVIGAVAGGLIGSATEEGLTRTQGVEITVREDDGSMRAYVQQVQENEVFRVGERVRISTVGGTSRVSH	PGPT0024490_827	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024490-slyB-K06077	NA	NA
D1-36_03913	282			hypothetical protein	ATGGATTACTTCATCATAGTCGCTACCACCCTAGCCGGCCTGTACTTCCACTGGTGGCTGTACGTACGCATCAAACGCTGGATGGACCGAGACCTGGCGCTGTCATTGGCGGGGCAGGATGAACCGAAAAAACACTACATGCTGCAACAACTGGCTCGCGCCCGCGGACAAGGCGTCAAGCGACGGGACCTGCCGCAATGGCTCCAGGCGGCAGCGGCAGGTTACCCCATCAAGGCGCCAGGCGCTCGCGAGTCCAATCCGCCCCTTGCAGGCGGTAGTTGA	MDYFIIVATTLAGLYFHWWLYVRIKRWMDRDLALSLAGQDEPKKHYMLQQLARARGQGVKRRDLPQWLQAAAAGYPIKAPGARESNPPLAGGS				NA	NA	NA	NA	NA
D1-36_03914	648	pdxH	COG0259	Pyridoxine/pyridoxamine 5'-phosphate oxidase	ATGACCCAAGCGCTGGCTGATATGCGCCGTGACTACACCCGCGATGGCCTGACCGAGGCGCAAGCCCCGGCCGAGCCGTTCGCGTTGTTCCACCAATGGTTCGCCGACGCGGTGAAAACCGAACAGGCTCCGGTGGAAGCCAATGCCATGACCCTGGCAACAGTGGACGCTGACGGCCGGCCTCACTGCCGGATCCTGCTACTGAAGGGCCTGGATGCCCAGGGCTTTACTTTCTTCACCAACTACGACAGCGCCAAAGGCCAGCAACTGGCTGCGAATCCGTACGCGGCCATGACGTTTTTCTGGCCGACACTGGAGCGTCAGGTGCGTATCGAAGGCAAGGTAGTGAAAGTCACTTCGCAGGAGTCGGACGCTTATTACCAGGTCCGACCGCTGGGCAGCCGCCTTGGTGCCTGGGCCTCTCCCCAGAGCCGGGTGATTGCCGGGCGCGGCGAGCTGGAAGACTTGCTCAAGGCCACTGAGCAGCGTTTCAGCGACAGCCAACCCCATTGTCCCGAGCACTGGGGCGGCTACCGCTTGCTGCCCGAGCGCATCGAGTTCTGGCAGGGGCGCCCCAGTCGCCTGCATGATCGTCTCAACTACCGCCTGCAAGGGGCGGATTGGACTCGCGAGCGCCTGGCGCCTTGA	MTQALADMRRDYTRDGLTEAQAPAEPFALFHQWFADAVKTEQAPVEANAMTLATVDADGRPHCRILLLKGLDAQGFTFFTNYDSAKGQQLAANPYAAMTFFWPTLERQVRIEGKVVKVTSQESDAYYQVRPLGSRLGAWASPQSRVIAGRGELEDLLKATEQRFSDSQPHCPEHWGGYRLLPERIEFWQGRPSRLHDRLNYRLQGADWTRERLAP	PGPT0009115_1751	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009115-pdxH-K00275	NA	NA
D1-36_03915	1119	pal_6		Peptidoglycan-associated lipoprotein	ATGTCATCGAACAAAACCCTCGCTCTGGCGCTGTGCTTCGCTATCACCGGTTGCGCACAAAACCCACAAAATGATGCCGAGGGCGGCGGTGGCTGGTGGCCGTTCGGGTCCTCCGACAAGGTCGCGGCCAAGGAGCCGGTCCCGCCGGCTCCCCTGAAACCCGCCGCCGTGGCGCCGCAAGCCAAGGCAGAGGGGGCCACGCATTGGTGGTGGCCGTTCTCCTCCGACGATGGCGCCGATGTCGCCAAGAAAGAAGAAGCGAAACCTGTCGCCAAGCCTGAAACCAAGGCGCCGGCTACCGTCGCCAAGGCCCAAGCCGAGAGCAGTGGCAAGTGGTGGTGGCCGTTCGGCGGCAAAGAGCAGGAGACCGCGAAGGCAATGCCGATGCCCGACCCGAAAGTCACTCAGGCCTGGCTCGACGACTATGAGCCAAAGCTGCGTACCGCCATCAAGGACAGCAAGCTTGAGCTGGAGCGCCGCGATAATGTGCTGGTGGTTACCGCTCCCGTGGACGGCTCGTTCAACCCGGACCGTCCGGCCATGCTGCTGCCGGTGACACTCGGCCCGTTCACTCGCGTCGCCAAGATTCTAGAGGCCGATCCGAAAACCGCGGTGCTGATCCTCGGTCACGCCGATACGTCGGGCGCGGCGCCGGCGAATCTGAAGCTCAGCCAGGAACGCGCCCAATCCGTCGCGGCGATCTTCCGGCTCAGTGGCTTGCAGCGTGATCGCCTGATGCTGCGCGGGATGGGCTCGGTGGCGCCACGTGCGGCCAACGATAGCGTCGAGGGTCGGGCTTTGAACCGTCGTGTCGAATTGCTGGTCACGCCCGCCAATACCATGGTCGCGTTGTTGAGCAAGTACAACATGCCGACCCCTGCGCCGGTGACCATGGTGGCTGCCCAGGACGTCAAGCCCGCGGCACCTGCCCCGGCCCCGGCGGCGAAAAAATCCGCCGCGCCGGCAACCAAGAAAGCCGCAGCCAAGAAGGCTCCTGCAAAGGCCCCGGCAAAAAAAGCCCCGGCCAAGAAGGCGACTCCGGCGAAAAAACCTGAACCGGCCAAGGCCGCGGCTGACGGAAAAAAAGTTGCTGCCGCCGACTCCTCCAAAAAACAGTGA	MSSNKTLALALCFAITGCAQNPQNDAEGGGGWWPFGSSDKVAAKEPVPPAPLKPAAVAPQAKAEGATHWWWPFSSDDGADVAKKEEAKPVAKPETKAPATVAKAQAESSGKWWWPFGGKEQETAKAMPMPDPKVTQAWLDDYEPKLRTAIKDSKLELERRDNVLVVTAPVDGSFNPDRPAMLLPVTLGPFTRVAKILEADPKTAVLILGHADTSGAAPANLKLSQERAQSVAAIFRLSGLQRDRLMLRGMGSVAPRAANDSVEGRALNRRVELLVTPANTMVALLSKYNMPTPAPVTMVAAQDVKPAAPAPAPAAKKSAAPATKKAAAKKAPAKAPAKKAPAKKATPAKKPEPAKAAADGKKVAAADSSKKQ				NA	NA	NA	NA	NA
D1-36_03916	1146	yfeW_3		Putative D-alanyl-D-alanine carboxypeptidase	GTGCAAATTCAAGGCCATTACGAACTTCAGTTCGAAGCAGTGCGTGAAGCGTTCGCGGCACTGTTTGACGATCCGCAGGAGCGCGGCGCGGCGTTGTGCATCCAGGTCGGGGGCCGCACGGTCATCGACCTCTGGGCCGGCACAGCCGACAAGGATGGCCATGAGGCTTGGCACTGCGACACCATCGCCAATCTGTTTTCTTGCACCAAGACATTCACCGCCGTTACCGCCTTGCAATTGGTCGCCGAAGGCAAGTTGCAACTGGACGCGCCGGTCGCTCGCTATTGGCCTGAGTTTGCGGCGGCGGGCAAGCAATCCGTCACCCTGCGCCAGTTGCTCTGCCATCAGGCCGGACTTCCCGCATTGAGGGAGTTGATGGCCCCCGCGGCACTTTACGATTGGCAGACCATGGTCGATGCACTGGCTGCCGAGACGCCTTGGTGGACCCCCGGCGAGGGCCACGGCTATGCCGCGATCACGTACGGCTGGTTGGTGGGCGAATTGTTGCGCAGGGTCGATGGCCGTGGGCCAGGCGAGTCCATCGTGGCCCGGGTTGCCAAACCCCTGGGACTGGATTTCCACGTTGGCCTGGCCGACGAAGAGTTTCATCGCGTGGCGCATATTGCCCGCGGCAAAGGCAACGTTGGCGACGCAGCGGCCCAGCGTCTGTTGCAGGTCACGATGCGCGAACCGACGGCCATGACCACCCGGGCCTTCACCAACCCTCCATCGATCATGACCAGCACCAACAAGCCGGAATGGCGGCGGATGCAGCAACCGGCTGCCAACGGTCACGGCAACGCCCGCAGTCTCGCCGGGTTCTACGCCGGCCTGCTGGACGGAAGCTTGCTGGAAGGTGAAATGCTCGACGAACTGACTCGCCAGCACAGTTTCGGCGAGGACAAGACATTGTTGACCCAGACCCGTTTCGGCCTGGGTTGCATGCTGGATCAACCGGATGTGCCCAATGCGACCTACGGCCTGGGGCCGCGGGCGTTTGGTCATCCCGGAGCAGGGGGCTCCATCGGTTTCGCCGATCCTGAGCATGACGTTGCGTTCGGGTTCGTGACCAATACCCTCGGGCCCTATGTCTTGATGGACCCACGTGCCCAGAACCTTGCGCGGGTGCTTGCCACTTGTCTATAA	MQIQGHYELQFEAVREAFAALFDDPQERGAALCIQVGGRTVIDLWAGTADKDGHEAWHCDTIANLFSCTKTFTAVTALQLVAEGKLQLDAPVARYWPEFAAAGKQSVTLRQLLCHQAGLPALRELMAPAALYDWQTMVDALAAETPWWTPGEGHGYAAITYGWLVGELLRRVDGRGPGESIVARVAKPLGLDFHVGLADEEFHRVAHIARGKGNVGDAAAQRLLQVTMREPTAMTTRAFTNPPSIMTSTNKPEWRRMQQPAANGHGNARSLAGFYAGLLDGSLLEGEMLDELTRQHSFGEDKTLLTQTRFGLGCMLDQPDVPNATYGLGPRAFGHPGAGGSIGFADPEHDVAFGFVTNTLGPYVLMDPRAQNLARVLATCL				NA	NA	NA	NA	NA
D1-36_03917	2145	dinG_4	COG1199	ATP-dependent DNA helicase DinG	ATGATCAGCACCGAACTCAAAACCACGATCCAGGGCGCCTACTCGCGTTTTCTCGAAGCCAAGAGCCTCAAGCCGCGATATGGCCAGCGCCTGATGATTGCCGAAGTGGCAAAAGTCCTGGGCGACATCGACACCGATGACGAAGGTCGGCGCAGTGGCGAGCCGGCCGTCGTGGCGGTCGAGGCCGGCACCGGTACCGGCAAGACCGTGGCCTACAGCCTGGCGGCGATTCCGAGCGCCAAGGCTGCCGGCAAGCGGCTGGTGATCGCCACAGCCACCGTCGCCCTGCAGGAGCAGATCGTCTACAAGGACCTGCCCGACCTGATGCGCAACAGCGGGCTGAATTTTACCTTCGCCCTGGCCAAGGGCCGCGGGCGCTATATGTGCCTGTCCAAGCTCGACATGTTGCTGCAGGAAGGCCACGCCCAGACCGCCACCGCGCAGTTGTTCGAAGAGGAAGGCTTCAAGATCGAAGTCGACGAGGCGAGCCAGAAGCTGTTTACCAGCATGATTGAAAAACTGGCCGGCAATAAGTGGGACGGTGACCGCGACAGCTGGTCAACGGCCCTGGAAGACGCCGACTGGTCGCGCCTGACCACGGATCACAGCCAGTGCACCAATCGTCACTGCCCTAACTTCGGCCAGTGTGCTTTCTACAAGGCGCGCGAAGGCATGGGCAAGGTCGACGTGATCGTCACCAACCACGACATGGTCCTGGCCGACCTGGCCCTGGGCGGTGGTGCGGTGTTGCCGGACCCGCGCGACACCATCTACGTGTTCGACGAAGGCCATCATCTGCCGGACAAGGCCATCGGCCATTTCGCCCATTACACGCGGCTGCGCTCCACCGCCGACTGGCTGGAAACCACGGCGAAGAACCTGACCAAGCTGTTGGCTCAGCACCCACTGCCGGGTGACCTGGGCAAATTCATCGAACAGGTGCCCGAGCTCGCGCGTGAGATCAAGACGAACCAGCAGTTCATGTTCACCGCATGCGAACAGGCGGCTGATTTCAAGCCAGGCGAAGATGTAGAGGGCCGCGAGCGGCCTCGCCATCGGTTTGTCGGCGGGATCATCCCCGAGCATATGCGCGAGATGGGCATCGAGCTCAAGAAGGGCTTCGCGCGCCTGACGGATTTGTTCACACGCCTGACCGACTTGCTCAAGGAAGGCATGGATGGCGAGGTGAACATCGGGATCGCCAGCAACCAGGCCGAGGAATGGTATCCGCTGTTCGGCAGCTTGCTGTCCCGCTCGCAAGGCAATTGGGAGCTGTGGACGGCTTTCACCACCGAAGACCCGGAAGACAACCCTCCGATGGCGCGCTGGTTGACCCTGGCCGAGAGCGGTTCGCTGTTCGACATCGAGGTCAATGCCAGCCCGATCCTGGCGGCGGACATGCTGCGGCGCAACCTGTGGAACGTTGCCTACGGCGCGCTGGTGACGTCCGCCACACTGACCGCCCTGGGTACGTTCGACCGTTTCCGTATGCGCGCCGGCTTGCCGAAAATCGCCGTGACGGCCGTGGTCCCGAGCCCATTCCACCATGCCGACGCCGGCGTGTTGCGAGTCCCCGACCTCAAGGCCGACCCACGGGACGCCGCGGCCCACACCGCGGCGATCATCCGTGACTTGCCGGACCTGGTGGAAGGTTCCCGTGGCACCCTCGTGCTTTTTTCTTCACGCAAGCAGATGCAGGACGTGTTCGACGGTCTCGACCGTGACTGGCGCAAGCAAGTGTTCATCCAGGGCAATCTGTCGAAGCAGGAGACCCTGAACAAACACAAGGCGCGGGTCGATGGCGGCGACTCCAGCGTACTGTTCGGCCTGGCAAGTTTTGCCGAAGGCGTCGACTTGCCCGGCGCCTATTGCGAGCACGTGGTGATCGCAAAGATACCGTTTTCGGTCCCGGACGACCCGGTTGAAGCCGCGCTGGCCGAATGGATCGAAGCCCGGGGTGGCAATCCGTTCATGGAAATCTCCGTGCCGGACGCCTCGCTGAAACTGGTCCAGGCCTGCGGTCGCTTGCTGCGCACCGAGGAAGACCGCGGCACCATCACTTTGCTCGACCGCAGGCTGGTGACCCAACGTTATGGCAAGGCCATCCTCAACGCGCTGCCACCGTTTCGGCGGGAGATTTCCTGA	MISTELKTTIQGAYSRFLEAKSLKPRYGQRLMIAEVAKVLGDIDTDDEGRRSGEPAVVAVEAGTGTGKTVAYSLAAIPSAKAAGKRLVIATATVALQEQIVYKDLPDLMRNSGLNFTFALAKGRGRYMCLSKLDMLLQEGHAQTATAQLFEEEGFKIEVDEASQKLFTSMIEKLAGNKWDGDRDSWSTALEDADWSRLTTDHSQCTNRHCPNFGQCAFYKAREGMGKVDVIVTNHDMVLADLALGGGAVLPDPRDTIYVFDEGHHLPDKAIGHFAHYTRLRSTADWLETTAKNLTKLLAQHPLPGDLGKFIEQVPELAREIKTNQQFMFTACEQAADFKPGEDVEGRERPRHRFVGGIIPEHMREMGIELKKGFARLTDLFTRLTDLLKEGMDGEVNIGIASNQAEEWYPLFGSLLSRSQGNWELWTAFTTEDPEDNPPMARWLTLAESGSLFDIEVNASPILAADMLRRNLWNVAYGALVTSATLTALGTFDRFRMRAGLPKIAVTAVVPSPFHHADAGVLRVPDLKADPRDAAAHTAAIIRDLPDLVEGSRGTLVLFSSRKQMQDVFDGLDRDWRKQVFIQGNLSKQETLNKHKARVDGGDSSVLFGLASFAEGVDLPGAYCEHVVIAKIPFSVPDDPVEAALAEWIEARGGNPFMEISVPDASLKLVQACGRLLRTEEDRGTITLLDRRLVTQRYGKAILNALPPFRREIS				NA	NA	NA	NA	NA
D1-36_03918	465			hypothetical protein	ATGACACCCTTTGCCCTCGTCTACACCCTGCATTTACTGGCGGCCCTGATCTGGGTCGGCGGCATGTTTTTCGCCTGGATGATCCTGCGTCCCGCCGCAATGACGGCGCTTGAAGGCCCCGCCCGGCTAAAACTATGGGTAGAAGTGTTTCAGCGTTTTTTTGTCTGGGTCTGGGTGGCGGTGGTGCTTTTGCCGATCAGCGGCGTGGGCCTGATCCACATGCGCTTCACCGGCTTCGAAACCGCGCCACGTTATGTGCAGGTGATGATGGGGCTGTATATCGTGATGACGGCACTGTTCATCCGTATTCAGGGCCTGCAACTGCCTGCATTGCGCACCGCCGTGACGGCCCAGGACTGGCCGACTGGCGCAGCGATGCTGGGCAAGATACGCCGCTTGGTGGGCATCAATCTGTTGATCGGGTTGCTGGTGGTGGCGATAGGCGCGGCGCGGCCGATGTTTTGA	MTPFALVYTLHLLAALIWVGGMFFAWMILRPAAMTALEGPARLKLWVEVFQRFFVWVWVAVVLLPISGVGLIHMRFTGFETAPRYVQVMMGLYIVMTALFIRIQGLQLPALRTAVTAQDWPTGAAMLGKIRRLVGINLLIGLLVVAIGAARPMF				NA	NA	NA	NA	NA
D1-36_03919	759			hypothetical protein	ATGCGTAAATTGTGTCTACTCGCGGCATTCGTGTGCCCGTTGGCCTGTGCCCAAGTGGTCCAGGTCGAAAGCAATTCCTTGATGCGCCTGCCGAACACCACCAGCGTGCTGGCCCTGGAGCGCTTGGATGTGGCCGATTACGGCACGCTGTTGGTGCCTTCGAACGTCACGCAACTGTCCATCGCAGAGCTGCACCTGGGGCGCGAGGCACGCATTGCGATCGTGCCGGCGCAACAGGCATTGGAGATGAAGGTGGCCCAGGCCGAACTGGACGAGGGCAGCCAGATCACGGCTCGCGGCGCGCCGGGAACCTACATGAAGGCGGCGCGGCCGGGGCGCAATCTCAACCTGCGCTTCAATGCGTTGAACGCACCGCTACTGTCAGTCGATGCCCGTGGCGGCAGCGGTGCGCCAGGTTATGTGGGGCTCGACGGCGCCAACGGACAAGCTCCGGGGTGTACCTGGGGTTCGGCCGGTCGCGGCGCCGACGGCAGCAATGGCGGCGACGGCCAGCCGGGCGCGGCCGGTGCGCTGGTGCGGCTCGAGTTGCCTCGCGCCTACCCCGATGAACAGATAAAGGTCACGGTGGACGGCGGCGCCGGCGGCAAACCTGGGCACGGTGGCAAACCCGGAGCAGGCGGCAAGGCCAAGGGATGCCTGGTCTATACCGCCGACGGTGGCAAGAGCGGCCGGCCAGGCGCCGATGGCCAGCCAGGGCCTGCCGGAACGGCGGGCGCGGTGACGGTGCAGCGGTTCTGA	MRKLCLLAAFVCPLACAQVVQVESNSLMRLPNTTSVLALERLDVADYGTLLVPSNVTQLSIAELHLGREARIAIVPAQQALEMKVAQAELDEGSQITARGAPGTYMKAARPGRNLNLRFNALNAPLLSVDARGGSGAPGYVGLDGANGQAPGCTWGSAGRGADGSNGGDGQPGAAGALVRLELPRAYPDEQIKVTVDGGAGGKPGHGGKPGAGGKAKGCLVYTADGGKSGRPGADGQPGPAGTAGAVTVQRF				NA	NA	NA	NA	NA
D1-36_03920	273			hypothetical protein	ATGAAGGTGTTTTGGGGGCTGGGGCGCTTGTTGACCCTGCTGTTCTGGCTGGTGGTGCTGGTCAATCTGCTCTTGCCGTTTGTCCACCCGCTGCATGTCTTGGTCAATCTCGCCGGGGCGCTGTTACTGGCGGTCCATTTGCTTGAGCTGTTGTTGTTCAGGGCACAGTTTCGCGGGCGTCCCGCTCCGGGCCGTGATCGCCTCCGAGTGCTGCTGTTCGGCATCTTCCACTTGCAAACCCTTCCGACCGCGCCAGAGGCTTCCCATGCGTAA	MKVFWGLGRLLTLLFWLVVLVNLLLPFVHPLHVLVNLAGALLLAVHLLELLLFRAQFRGRPAPGRDRLRVLLFGIFHLQTLPTAPEASHA				NA	NA	NA	NA	NA
D1-36_03921	726	ompA_2		Outer membrane protein A	ATGAAGGTTCTCATCAGGGTTGCCATGCCGGTGCTGCTCGCGAGCAGTCTGTTATCCGGTTGCGCCACTCACAGCGACGGCAGCGCATCACTCAATCAACGCACCTGGCCGATCTGCAGCCTGATCGGCGGGCTCGTCGGCGGCGGTCTGGGTGCCATCGAAAGCACTGGCTGGGCGGCCGGTGGCGCCGCGTTGGGGCTGCTCGGCGGTGGCTTGATCTGTTATGCCCAGGATGGCGACGAAGATGACGATGGCGTGTTCGGTCGTCGCGACCGTTGCCCCGACACGCCGGCCGGTACGGCCGTTGAACATCACGGTTGCCCGCTGCCGCAGTATCCGGCCAGCGCACCACCGGACGAGCCGCAAACGCCGACCAGTGAAGTCATCACCCTCAATGACACCGGCAAGGTGCTGTTCGAATTCGATAAATCCGATCTCACCCCGGCGGCTCGAAGCCAGCTCGACGAGCTGATGGGCAAGCTGAGCCACGCCAACGTCGCGAGCATTCGCGTGGTCGGCCATACCGACAGTGTCGGTACCGACGCTTATAACGAAGGCCTTTCCGAGCGCCGGGCCGGCAGCGTCGTGGAGTATTTGCTGACCCAGGGCGTGGCGCCGGCAAAAGTCACCAGTGAAGGCAAGGGCGAAAGCGAACCGGTGGCCGACAACGAGACCGACGAAGGCCGCGCCCAGAACCGTCGGGTTGAGTTGCGCATCCAGCGTTGA	MKVLIRVAMPVLLASSLLSGCATHSDGSASLNQRTWPICSLIGGLVGGGLGAIESTGWAAGGAALGLLGGGLICYAQDGDEDDDGVFGRRDRCPDTPAGTAVEHHGCPLPQYPASAPPDEPQTPTSEVITLNDTGKVLFEFDKSDLTPAARSQLDELMGKLSHANVASIRVVGHTDSVGTDAYNEGLSERRAGSVVEYLLTQGVAPAKVTSEGKGESEPVADNETDEGRAQNRRVELRIQR	PGPT0022215_4248	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-SURFACE_ATTACHMENT	SURFACE_ADHESION	OTHER_SURFACE_ADHESION_PROTEINS,PGPT0022215-ompA_ompF_porin|oprF-K03286	NA	NA
D1-36_03922	696	ompA_3		Outer membrane protein A	ATGAGCATAGTTCGGACAGCGTTACCCCTGGTTCTGCTAACGAGTGTGTTGACTGGTTGCGCAGGTTTGCAGAAAACCGACTGGCCGATCTGTGCGGCCACCGGTGGTGTCGTGGGCGCGGGATTGGGCGCCATCGAGAGCAGTTCCTGGATTGGGCCGGGCGCGTTGGTGGCCGGCACCGTGGCGGCAGGTTGGTGCTGGGCCCATGGCGATGGCGACGAAGACGGCGATGGCGTCCCGGACAGCCGCGATAAGTGCCCGGGCACACCGAAAGGCGTGCAGGTCGACGCCGACGGCTGCCCACCTCCCGCCCCGGCGCCAATGGCCGAAGAGCCGGTAGTGGTCAAGGAAGAAACGATCGTGGTGCGCGATGTGCATTTCGAATTCAACAAGGCCACGCTGACACCAACCGACAAGGAAGTACTGAGCACCATCGCGACCCGGTTGAAACAGGAAACCTCCACCGCGCAACTGCGGGTGACGGGCCACACCGACAGTGTCGGCAGTGATGCCTACAACCAGAGACTGTCGGAAAAACGCGCCAATTCCGTGGTGCAGTACCTGGTGGAAAGCGGCGTGCCTCGCGCCAGTTTCGTCTCGGTGGAAGGCGCCGGGGAAGGCCAGCCGGTGGCGGACAACAAAACTGCTGATGGCCGGGCGATGAACCGTCGTACCGAAATCAAGATAAACCGTTGA	MSIVRTALPLVLLTSVLTGCAGLQKTDWPICAATGGVVGAGLGAIESSSWIGPGALVAGTVAAGWCWAHGDGDEDGDGVPDSRDKCPGTPKGVQVDADGCPPPAPAPMAEEPVVVKEETIVVRDVHFEFNKATLTPTDKEVLSTIATRLKQETSTAQLRVTGHTDSVGSDAYNQRLSEKRANSVVQYLVESGVPRASFVSVEGAGEGQPVADNKTADGRAMNRRTEIKINR	PGPT0022215_4365	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-SURFACE_ATTACHMENT	SURFACE_ADHESION	OTHER_SURFACE_ADHESION_PROTEINS,PGPT0022215-ompA_ompF_porin|oprF-K03286	NA	NA
D1-36_03923	498			hypothetical protein	ATGACCGTTGCCATTTCTTCGCGTACGCCCCAGCAAGCCCTGGCCGCCGTGCTTGACCGTTACGCCCCGCAAAGGCTGCTGCTGATCGGCGCCAGCAGCTTTCCTGCGCTGGAGGCGTTCCAGCAGGCCCATCCCGCCACCGAAGTGGTCCACGCGGGCCCCGGCGCGCTGCCGGCAAACGTGGCGGCGCGGCGTTTCGACCTGGCCCTTGCGCTCGATTGCCTGGAGCATTTGCCCAAGCGCGACGGTCTGAACCTGTTGGGCGGCATCCGCAATCTCAACGCCAGCCGGATTGCGGTGCTGGCCGACCTCAACGCCTGCGGCTGGCAGGAAACGGACTTCTTTTCCCTGGCCTTGCAAGCCAGCGAGCGGTTCCAGCGCGAGGACCAGGTGCTGACCCTGTTTACCTACGATCTGCTTGAATACAAGCAGGTCCCCGACTGGCTCAACTCACGGTTTTGGGCTAACCCCGAAAACTTTGGAAAATATTGGTGGTAG	MTVAISSRTPQQALAAVLDRYAPQRLLLIGASSFPALEAFQQAHPATEVVHAGPGALPANVAARRFDLALALDCLEHLPKRDGLNLLGGIRNLNASRIAVLADLNACGWQETDFFSLALQASERFQREDQVLTLFTYDLLEYKQVPDWLNSRFWANPENFGKYWW				NA	NA	NA	NA	NA
D1-36_03924	498			hypothetical protein	GTGGTAGCTGTGGACACAAGCCTGCACACGACCATTTGCCCTTGTGGCAGTGGCAACCCATTGGATGCCTGCTGCGGCCGTTACCATGACGGCCATCCCGCGCCCTGTGCCGAAGCCTTGATGCGCTCGCGCTACAGCGCTTATGTACTGGGCCTTGTGGACTACCTCGTCAGCACCACTCTGCCGGCCCAGCAGGATGGCCTCGATCGCCAGTCCATCAGCGAATGGAGCGCCAGGAGCACCTGGCTGGGGCTGGAAGTGGAAAGCAGCGAAGTGTTCGGCGGCCAACCGGAACACGCTTTCGTTACGTTCACCGCGCGCTGGCACGACGGCCAAGGTGAGCACAGCCATCGCGAACAGTCATCGTTCGTGCAGAACGGCGGGCGTTGGTACTTCATCGACCCCACCGTGCCGGTGAAGATCGGCCGCAACGACAGTTGCCCTTGTGGCAGCGGGCATAAATTCAAAAAATGCTGCGCCGGGTATTTCAATCGCTGA	MVAVDTSLHTTICPCGSGNPLDACCGRYHDGHPAPCAEALMRSRYSAYVLGLVDYLVSTTLPAQQDGLDRQSISEWSARSTWLGLEVESSEVFGGQPEHAFVTFTARWHDGQGEHSHREQSSFVQNGGRWYFIDPTVPVKIGRNDSCPCGSGHKFKKCCAGYFNR				NA	NA	NA	NA	NA
D1-36_03925	486			hypothetical protein	ATGACCTTCAAACTCCAATGGCTATGCGTCACCTGCCTGCTACTGATCGTAGGGCTCGGCGGTTGCGCGTCCTGGCAAGCTGAAGAGGCACCCGAGCCGCGAATCCACCTGGTCAAGGTCGAGGTGGTGCGGGCGCGCCTGGTGGAGCAAAGGTTCATGCTGCACTTTCGCGTCGACAACCCCGGTGATAGCGACCTCACCGTGCGCGGCCTGACCTACCGGGTTCATTTGGGCGACCTCTTGCTGACCGAAGGCGAGCATGAGCACTGGTTCACGGTTCGCCCCGGACGCAGCGGGTATTTCAAGCTGCCGGTTCGCACCAACCTGTGGCCCCAGGTGCGGGAGCTGGTAAAGCTGTTGGAGAAACCTCGTGAGCAGATCCCCTATCGCCTGGAAGGTGAGCTGGAAACCGGTTTATTCATCGCCCACTACGTGCACCTGGAGCGCAATGGCGTGATAATCGCCGCCGATTTAATTGCGGAGTAA	MTFKLQWLCVTCLLLIVGLGGCASWQAEEAPEPRIHLVKVEVVRARLVEQRFMLHFRVDNPGDSDLTVRGLTYRVHLGDLLLTEGEHEHWFTVRPGRSGYFKLPVRTNLWPQVRELVKLLEKPREQIPYRLEGELETGLFIAHYVHLERNGVIIAADLIAE				NA	NA	NA	NA	NA
D1-36_03926	201			hypothetical protein	ATGACACAGCAACCCCATGTCCATGGCCCTGATTGCAACCACGATCATGACCACCACGACCATGATCACGGCCACGTCCATGGCCCGAACTGCGGCCACGCCCACCCAGAGCCCGTGCGCAATGCCTTGAAGGATGTGGGCCGCAACGATCCATGCCCTTGCGGCAATGGCAAGAAATTCAAGAAGTGCCACGGGGCTTGA	MTQQPHVHGPDCNHDHDHHDHDHGHVHGPNCGHAHPEPVRNALKDVGRNDPCPCGNGKKFKKCHGA				NA	NA	NA	NA	NA
D1-36_03927	558	yecD	COG1335	Isochorismatase family protein YecD	ATGGATCTACAGAAAAACGCGGCGCTGATTCTTATCGATCAACAAAAAGGCATCCTCCATCCCAAGCTCGGCCCCCGCAACAACCCCGAGGCGGAGCTGCGCATGCTTGAGCTGCTTGCCCGCTGGCGGAATTCGGCGCGGCCTGTCATCCATGTCCACCATCTGTCCCGCTCTGAAGACTCGGTGTTCTGGCCCGGGCAATCAGGCGTGCAAGTCCAGGAACGGTTCGAGCCGATGGCCGGGGAGCGGTTGGTTCAAAAGCAGGTGCCGGATGCGTTCTGCGGCACCTCCCTGGAGGCGGATTTGCGCGGTGCGGGAATCGGGCAACTGGTGATCGTCGGCGTCGCGACGAACAATTCGGTGGAGTCCACCGCGCGGACGGCCGGCAACCTGGGATTCGATACATGTGTGGCCGAAGACGCCTGTTTCACCTTCGACAAGGCCGATTACTTCGGCAATGCCCGTTCGGCTGCCGAGGTGCATGGGATGTCCCTGGCTAACCTGCACGGGGAATATGCGACGGTGGTCAGTGTGATGCAGATTCTGCAGGCGGGGTAA	MDLQKNAALILIDQQKGILHPKLGPRNNPEAELRMLELLARWRNSARPVIHVHHLSRSEDSVFWPGQSGVQVQERFEPMAGERLVQKQVPDAFCGTSLEADLRGAGIGQLVIVGVATNNSVESTARTAGNLGFDTCVAEDACFTFDKADYFGNARSAAEVHGMSLANLHGEYATVVSVMQILQAG				NA	NA	NA	NA	NA
D1-36_03928	2451	quiP_1	COG2366	Acyl-homoserine lactone acylase QuiP	ATGGCCTCGCCAGCCTTTATTTCCCTCATTCCCAAGCTCGGCGTAGCCGCAGCAGCGGCCAGTGTGCTCGGTTTGAGCGGTTGCCAGGCCTGGAATACCCAGGACACTGTCCCGCCTACCACCGGCGTGCAACCGCTCAAGGGGCTGGCGCAGAATGTCTCGGTCCGGCGCAACGCCATGGGCATGCCGTTGATCGAAAGCAACAGTTTCCACGACGCCCTGTTCGCCCTCGGCTATGTCCACGCCAGTGATCGGATCACGCAGATGGCGACCCTGCGCCTGCTTGCCCAAGGTCGGCTTGCGGAAATGTCCGGGGCCGAACGGCTCGATATCGACCGCTACATGCGGGCGGTGAACCTGAAGAAAAACGCCGACGAGCTTTATAAAGCGTCATCGCCGCGCCTCAAGCGATTCTTTGAAGTCTATGCCCGGGGCGTCAATGCCTACCTGTTCCGCTATCGCGACAAGTTGCCGGCGGACTTGGCTGCCACCGGCTACAAGCCCGAATACTGGAAGCCGGAAGACTCGGCGCTGCTGTTCTGCCTGCTGAATTTCAGCCAGTCGGCCAACTTGCCGGAAGAGCTGGCCACCCTGGTGCTGGCCCAGACCGTCACAAACGACAAACTGGCCTGGCTGAGCCCGTCCTACCCCGATGAACCGCTGCCTCTGGCGGAAGCCGATAAACTTCAGGGCGTCCGCCTCAATGGCCAGGTGCCCGGCCTGGACCAAATCAGCAAGGCTGGCGCCCAGTTGTCCGACCTGAATCTGTTGGGCGCAGCGTTTTCGAGCAACTGGGCCATCGCCCCGCAACGCAGCCGCAACGGTAAAAGCCTGTTGGCCAGCGACAGCCATGGCCCGCTGGGCGTGCCGTCGCTCTGGAGCCCGGTGCAGATCCGCGCGCCCAAGTACCAGGCGGCCGGGCTTTCCGTGGCGGGTATTCCGATGATCCTGGCCGGCTTCAACGGCCACGTGGCGTGGAGCATGACCAGCGTCCTTGGTGACAACCAAGACCTGTTCCTGGAAAAGATCCGACGCCAGGGCAACGGGCTGTCCTACGAAGTGAACGGCAAATGGCAGCCGGCGACCGTGCGCAACGAAACCTATTTCATCAAGGGTCAACGGTCTATTCGTGAAGCCGTGTACGAGACCCGCCACGGCCCCCTGCTCAACAGCGCCCAAGGCCCGGCCATGGCCAACGGTCTGGGGCTGGCCTTGCAATTGCCGAGCTTCACCGACGACAAGACCCTGGATGCGTTCTTCGATCTGTCACGCTCGCGAAATATCGAGAAAGCCTCGGATGCGAGCCGGGAGATTCGCGCCCTGGCGGTGAACATGGTGTTTGCCGACGCGCGCAACATCGGCTGGCAAGTGACCGGCCGCTACCCCAACCGCCGTGAAGGCGAAGGATTGCTGCCATCGCCCGGCTGGGAGGGTCGCTATGACTGGGACGGTTATGCCGACCCGATGCTGCACCCCTACGACCAGGACCCGGTCCAGGGTTGGCTCGGCACTACCAACCAGCGGGTCATTCCCCATGGCTACGGCATGCAATTGTCTAACTCCTGGGCGGCGCCGGAGCGTGGCGAGCGCCTGGCCGAACTGGCCGGCGCCGGCAAGCACGACGCCCGCAGCCTGAGCGCCATGCAATATGACCAGACCACGACGTTCGCGGCCAAACTCAAGAAAGTCTTCGAAGCCCCAGGCATGGCCCAGCCGCTGAAACAGGCGATCGAAGCCCTGCCGGTGGCGGACCGGGCCAAGGCTCGCGAGGCCTACACCCGCCTGATGGCGTTCGACGGCAGGCTCAGCCCGGTGTCCACCGACGCGGCGCTCTACGAGCTGTTCCTGCAGGAAAGCATGAAGCAGACGTTCCTCGATGAACTGGGTCCGGAAAGCAGCCCGGCTTGGAAAGCACTGGTCGCGAACGGCCAACGATCCTACTCGGCCCAGGCCGATCACCTGCTCGGCCGCGAGGACAGCCCGTTCTGGGACGACGTGCGCACCCCGCAGAAAGAAGACAAGGCCGTGATCCTGGCTCGCAGCCTGGCAGCGGCAATCACTGTCGGCGAGAGCCAACTGGGCAGCGATCACACCACTTGGCAGTGGGGGAAACTGCACCGCTACGAGTGGAAAAACACCAGCGGCCAGGTCGTACGTGGGCCGTTGGCGGCTGGCGGTGATGGCACCACGCTCAATGCCGCCGCATTCGCCTGGGGCCAGGATTTCAACACCGCCCTGGCGCCGGCCCTGCGCTTGATCGTCGATTTCAGCCAGCCCGAGCCGTTGACGATCCAGGGCGGCGCCGGTCAATCGGGGAACCCGGCCAGCCCGAACTATGTGAACGGCATCGATCCGTGGATCAAAGCGCAGTATCAAAGCCTGCCGATGCAACCGCAGAACTTTGATCGCGGGTATGGCAAGGCGCGGTTGACGTTGGTGCCTGGAAAATAA	MASPAFISLIPKLGVAAAAASVLGLSGCQAWNTQDTVPPTTGVQPLKGLAQNVSVRRNAMGMPLIESNSFHDALFALGYVHASDRITQMATLRLLAQGRLAEMSGAERLDIDRYMRAVNLKKNADELYKASSPRLKRFFEVYARGVNAYLFRYRDKLPADLAATGYKPEYWKPEDSALLFCLLNFSQSANLPEELATLVLAQTVTNDKLAWLSPSYPDEPLPLAEADKLQGVRLNGQVPGLDQISKAGAQLSDLNLLGAAFSSNWAIAPQRSRNGKSLLASDSHGPLGVPSLWSPVQIRAPKYQAAGLSVAGIPMILAGFNGHVAWSMTSVLGDNQDLFLEKIRRQGNGLSYEVNGKWQPATVRNETYFIKGQRSIREAVYETRHGPLLNSAQGPAMANGLGLALQLPSFTDDKTLDAFFDLSRSRNIEKASDASREIRALAVNMVFADARNIGWQVTGRYPNRREGEGLLPSPGWEGRYDWDGYADPMLHPYDQDPVQGWLGTTNQRVIPHGYGMQLSNSWAAPERGERLAELAGAGKHDARSLSAMQYDQTTTFAAKLKKVFEAPGMAQPLKQAIEALPVADRAKAREAYTRLMAFDGRLSPVSTDAALYELFLQESMKQTFLDELGPESSPAWKALVANGQRSYSAQADHLLGREDSPFWDDVRTPQKEDKAVILARSLAAAITVGESQLGSDHTTWQWGKLHRYEWKNTSGQVVRGPLAAGGDGTTLNAAAFAWGQDFNTALAPALRLIVDFSQPEPLTIQGGAGQSGNPASPNYVNGIDPWIKAQYQSLPMQPQNFDRGYGKARLTLVPGK	PGPT0003395_211	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QUORUM_QUENCHING	CE-QUORUM_QUENCHING-AHL-DEGRADATION,PGPT0003395-pvdQ-K07116	NA	NA
D1-36_03929	1032			hypothetical protein	ATGGATCTTGTCATTGCCCGCCCCGAAGGCCTGTACTGTCCGCCCGGAGATTTCTACATCGACCCCTGGCGCCCGGTAGAACGCTCAGTGATTACCCACGCCCACGGCGATCATGCCCGCGGCGGCAACCAGCACTACCTCGCAGCGGCCCCCGGCGAAGGCATTCTCCGTTCCCGGCTGGGCCAGGACATCAATCTGCAAACCCTGCCCTATGGCGAACGCCTGCGGCATCACGGCGTGACGCTGAGCTTTCATCCCGCCGGGCATGTGCTGGGCTCGGCCCAGGTCAGGTTGGAATACGAAGGCGAAGTGTGGGTCGCCTCCGGCGATTACAAAGTCGAGCCCGACGGCACCTGCGCACCGTTCGAGCCGGTGAAATGTCACACGTTCATCACCGAATCCACCTTCGGCCTGCCGATCTATCGCTGGCAACCCCAGGCGCAAGTCTTTGATGAGATCAACCAGTGGTGGCGCGGGAACATTGCCGCCGGCCGGGCCAGCGTGTTGTTCTGCTATTCCTTCGGCAAGGCCCAGCGGATTCTCCACGGCATCGATGAAAGCCTCGGGCCGATCCTCGCCCACGGCGCGGTGGAACCGTTGAACCGGGTGTACCGAGAAGCAGGTATTCACCTGCCGCCGACACTTTATGCGGGCGATTTCAAAAAGAACGACCCGATCATGAGCCAGGCGCTGATCATTGCTCCACCTTCCGCCGGCGGTAGCAGCTGGATGCGTCGTTTCGGCGACTACAGCGACGCCTTCGCCAGTGGCTGGATGCGCCTGCGCGGCACCCGTCGGCGCCGCGGCGTGGACCGCGGATTCGTGTTGTCCGACCACGCCGACTGGCCTGGCCTGCTCTGGGCCGTCGAGCAGACCGGCGCCGAGCGGGTCATGGTCACCCATGGTTCGGTCGCCGTGCTGGTGCGCCACCTTTGCGAACAAGGTCTCGACGCCCAGGGTTTCACCACCGAGTACGGCGACGATGAAGAAGACCTCGCCCAGGCACCCGTCAGCGGCGAGGAGGCACCATGA	MDLVIARPEGLYCPPGDFYIDPWRPVERSVITHAHGDHARGGNQHYLAAAPGEGILRSRLGQDINLQTLPYGERLRHHGVTLSFHPAGHVLGSAQVRLEYEGEVWVASGDYKVEPDGTCAPFEPVKCHTFITESTFGLPIYRWQPQAQVFDEINQWWRGNIAAGRASVLFCYSFGKAQRILHGIDESLGPILAHGAVEPLNRVYREAGIHLPPTLYAGDFKKNDPIMSQALIIAPPSAGGSSWMRRFGDYSDAFASGWMRLRGTRRRRGVDRGFVLSDHADWPGLLWAVEQTGAERVMVTHGSVAVLVRHLCEQGLDAQGFTTEYGDDEEDLAQAPVSGEEAP				NA	NA	NA	NA	NA
D1-36_03930	1689	lig		DNA ligase	ATGAAAGCCTTCGCCGAGCTGTATGCCGAACTGGACGCCACCACCTCCAGCAACGCCAAGCTGGCCGCCATGCAGGATTATTTCGGCAAGGCACCGCCGGAAGATGCCGCCTGGGCCGTGTACTTCCTCTCCGGTGGCCGTCCACGGCAACTGGTGCCGGTGAAAATCCTGCGGGAGCTGGCGGTCCGGGTGTCCGGGTTGTCGCTCTGGCTGTTCGAGGAAAGTTATCAGGCCGTGGGCGACCTGGCCGAAACCATTTCTCTGGTCCTTCCCGAATCGACCCACAACAGCGACGAGGGCCTGGCGCTTTGGATCGAAGAGAAACTGTTGCCGCTGCGCGGTGAGTCGCCCGAGGTCCTGGCTCAACGGCTTCCGGCGCTGTGGGCGCAGCTCGACCGGTCGAGCCTGATGCTCTGCATCAAGCTGATCACCGGCAGTTTCCGCGTCGGTGTGTCCAAGCTATTGGTGACCCGTGCCCTGGCGACCATGGCCGGGCTGGACAGCAAACGGGTGGCCCAACGACTGGTGGGCTACACCGATCTGTCCCATCGTCCCACGGCGGCCAGCTACCTCAAGCTGATCGCCGCCGAGTCCGACGATGAACATGCCCAGCGCGGCGGCCAGCCATATCCGTTCTTCCTGGCACACGCCCTGTCGCAACCGGCGGAGCAATTCGACACCCTGCTGGGGCCAGCCAGTGACTGGCAGGTTGAGTGGAAATGGGACGGGATCCGCGCCCAGGTGATCAAGCGCGACGGCCACTTGTGGATCTGGTCCCGAGGCGAGGACCTGGTCACGGAACGATTCCCGGAACTGCACCCACTGGCCCAGGCGTTGCCCGACGGCACGGTAATCGACGGCGAGATCGTCGTCTGGAAAGCGCCGCAGTCAGTCACCGACGACGCTTTCGACCCGCAGGCGCCACTGCAACCTGCGGTGCAACCCTTCGCCTTGTTGCAACAACGCATTGGTCGCAAGACCCTGGGCAAGAAAATCCTCGAAGACGCCCCCGTGGTGGTGATGGCCTATGACCTGCTGGAATGGCAAGGCGAGGACTGGCGCAGCCGGCCCCAGGCCGAGCGTCGCGAACAGCTGGAAACGTTGGTCGCCCGTTGCCACAGCCCCGTGCTGTTGCCGTCGCCCGTCGTGACCGGCCGGGACTGGCTCGACCTCGCCCGCCAGCGCGAAGCCTCACGCAGCCTCGGCGTCGAAGGCATGATGCTCAAGGCCCGCAATGCGCTGTACGGCGTCGGGCGGACCAAGGACATGGGCGTTTGGTGGAAATGGAAAATCGACCCGTTCAGCGTCGATGCCGTGTTGATCTACGCCCAACGCGGCCATGGCCGACGCGCCAGCCTGTACAGCGACTACACCTTCGCGGTGTGGGACAACCCGCCGGGCAGTCGCGAACGCACGCTGGTGCCGTTCGCCAAGGCTTATTCAGGCCTGACCGATGCACAAATGCGCCAGGTCGACAGCATCGTGCGCAAGACCACCGTGGAAAAGTTCGGCCCGGTAAGCAGCGTCACCCCCACCTTGGTGTTCGAATTGGGCTTCGAAGGCATCGCCCTGTCCAAGCGCCACAAGAGTGGGATCGCGGTGCGGTTTCCGCGAATGTTGCGCTGGCGCCAGGATAAGAGCGTCGATGAGGCCGACACACTGGCAACCCTTCAGGACTTGCTGAAATAA	MKAFAELYAELDATTSSNAKLAAMQDYFGKAPPEDAAWAVYFLSGGRPRQLVPVKILRELAVRVSGLSLWLFEESYQAVGDLAETISLVLPESTHNSDEGLALWIEEKLLPLRGESPEVLAQRLPALWAQLDRSSLMLCIKLITGSFRVGVSKLLVTRALATMAGLDSKRVAQRLVGYTDLSHRPTAASYLKLIAAESDDEHAQRGGQPYPFFLAHALSQPAEQFDTLLGPASDWQVEWKWDGIRAQVIKRDGHLWIWSRGEDLVTERFPELHPLAQALPDGTVIDGEIVVWKAPQSVTDDAFDPQAPLQPAVQPFALLQQRIGRKTLGKKILEDAPVVVMAYDLLEWQGEDWRSRPQAERREQLETLVARCHSPVLLPSPVVTGRDWLDLARQREASRSLGVEGMMLKARNALYGVGRTKDMGVWWKWKIDPFSVDAVLIYAQRGHGRRASLYSDYTFAVWDNPPGSRERTLVPFAKAYSGLTDAQMRQVDSIVRKTTVEKFGPVSSVTPTLVFELGFEGIALSKRHKSGIAVRFPRMLRWRQDKSVDEADTLATLQDLLK				NA	NA	NA	NA	NA
D1-36_03931	783	argT_5	COG0834	Lysine/arginine/ornithine-binding periplasmic protein	ATGAAAAAAGCACTGCTGACCCTTTCTGCACTGGCATTGTGCGTGGCTGCTGGCGCTGCCACGGCCAAGGAATACAAGGAACTGCGTTTTGGTGTCGACCCGTCCTACGCCCCGTTCGAATCCAAGGCCGCCGACGGCAATCTGGTGGGTTTCGACATCGACCTGGGCAATGCGATCTGCGCAGAACTGAAGGTCAAATGCAAATGGGTCGAAAGCGATTTCGACGGCATGATCCCAGGCCTCAAGGCCAATAAATTCGACGGCGTGATCTCGTCCATGACCGTGACCCCGGCCCGCGAAAAAGTCATCGACTTTTCCAACGAGCTGTTCTCCGGCCCAACGGCTTATGTATTCAAGAAAGGTTCGGGTCTGAGCGAAGACGTTGCCTCGCTCAAAGGCAAGACCGTTGGCTACGAGCAAGGCACCATCCAGGAAACCTACGCCAAGACCGTGCTGGACAAGGCTGGCGTCAAGACCCAGGCCTACCAGAACCAGGACCAGGTCTATTCCGACCTGACCTCCGGCCGCCTCGATGCCGCGATCCAGGACATGCTCCAGGCTGAGCTGGGCTTCCTGAAGTCGCCAAAAGGCGCAGACTATGAAGTCAGCAAGCCAGTGGACAGCGAACTGCTGCCCTCCAAGACCGCTATCGGTATCAAGAAAGGTAACAAAGAGCTGAAGGCGCTTTTGGATAAAGGTATCAAAGCGTTACACGACGACGGCAAGTACGCCGAAATCCAGAAAAAACACTTTGGCGATCTGAATCTGTACAGCGGCAAATAA	MKKALLTLSALALCVAAGAATAKEYKELRFGVDPSYAPFESKAADGNLVGFDIDLGNAICAELKVKCKWVESDFDGMIPGLKANKFDGVISSMTVTPAREKVIDFSNELFSGPTAYVFKKGSGLSEDVASLKGKTVGYEQGTIQETYAKTVLDKAGVKTQAYQNQDQVYSDLTSGRLDAAIQDMLQAELGFLKSPKGADYEVSKPVDSELLPSKTAIGIKKGNKELKALLDKGIKALHDDGKYAEIQKKHFGDLNLYSGK	PGPT0020595_166	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_HISTIDINE_TRANSPORT,PGPT0020595-hisJ-K10014	NA	NA
D1-36_03932	729	hisQ_2	COG4215	Histidine transport system permease protein HisQ	ATGTTCGAACAACTCCTACAAAATCTGGGGCTCTCGGCCTTCAGCCTGCAGGGCTTTGGCCCGCTCCTGATGCAAGGCACCTGGATGACGATCAAGCTCTCTGCCCTGTCCCTGTTGTTAAGCGTTCTGCTCGGCCTGCTGGGCGCCAGCGCCAAGCTGTCCAGCGTCAAGCTGCTGCGTGTTCCAGCCCAGCTCTACACCACGCTGATTCGCGGTGTACCCGACCTGGTGCTGATGCTGCTGATCTTCTACAGCCTGCAAACCTGGCTGACGTCTTTTACCGATTTCATGGAATGGGAATACATCGAGATCAACCCATTCGGCGCCGGGGTCATCACCCTGGGCTTCATTTATGGCGCGTACTTCACCGAAACCTTTCGCGGCGCGATCCTCGCGGTGCCTCGCGGGCAGGTCGAAGCGGCCACGGCCTATGGCCTCAAGCGTGGCCAGCGTTTCCGCTACGTGGTGTTCCCGCAAATGATGCGCTTTGCCCTGCCGGGCATTGGCAACAACTGGATGGTGATGCTCAAGGCCACCGCGCTGGTGTCGATCATCGGCCTGGCTGACCTGGTCAAGGCGGCCCAGGACGCGGGCAAGAGCACCTACCAGCTGTTCTACTTTCTGGTGCTCGCGGCGCTGATCTATCTGATGATCACCAGCGCGTCCAATATCATCCTGCGCTGGCTTGAACGGCGCTACGCCGCCGGAGCCCGGGAGGCGGTGCGATGA	MFEQLLQNLGLSAFSLQGFGPLLMQGTWMTIKLSALSLLLSVLLGLLGASAKLSSVKLLRVPAQLYTTLIRGVPDLVLMLLIFYSLQTWLTSFTDFMEWEYIEINPFGAGVITLGFIYGAYFTETFRGAILAVPRGQVEAATAYGLKRGQRFRYVVFPQMMRFALPGIGNNWMVMLKATALVSIIGLADLVKAAQDAGKSTYQLFYFLVLAALIYLMITSASNIILRWLERRYAAGAREAVR	PGPT0020605_48	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020605-hisQ-K10016	NA	NA
D1-36_03933	711	hisM	COG4160	Histidine transport system permease protein HisM	ATGATCGAACTCCTGCAGGAATACTGGCGACCGTTTCTCTACAGCGACGGCGTCAACATCACGGGCCTGGCGATGACTCTGTGGCTGCTCAGCGCTTCGTTGCTGATCGGCTTCGTGGTATCGATCCCGCTGTCCATTGCCCGGGTTTCACCCAGGTTCTACGTCCGCTGGCCGGTGCAGTTCTACACCTACCTGTTCCGTGGCACGCCGCTCTACATTCAGTTGCTGATCTGCTACACCGGCATCTACAGCCTCGAGGCGGTGCGCGCCCAACCCATGCTCGACAGTTTCTTTCGCGACGCGATGAACTGCACGATCCTGGCATTCGCCTTGAACACCTGCGCCTACACCACGGAGATTTTCGCCGGGGCCATTCGCAGCATGAACCACGGCGAGGTCGAGGCGGCCAAGGCTTACGGCCTGACCGGCTGGAAACTCTACACCTACGTGATCATGCCGTCGGCCCTGCGTCGTTCGCTGCCGTATTACAGCAACGAAGTGATTCTGATGCTGCACTCGACGACCGTGGCGTTCACCGCTACCGTTCCAGACGTGCTGAAGGTCGCGCGGGATGCAAACTCGGCCACGTTCCTGACGTTCCAGTCGTTCGGGATCGCCGCCTTGATCTACCTGACCATAACGTTTGCACTGGTGGGCCTCTTCCGCCTCGCCGAACGCCGCTGGCTGGCCTTCCTCGGGCCAACCCACTAA	MIELLQEYWRPFLYSDGVNITGLAMTLWLLSASLLIGFVVSIPLSIARVSPRFYVRWPVQFYTYLFRGTPLYIQLLICYTGIYSLEAVRAQPMLDSFFRDAMNCTILAFALNTCAYTTEIFAGAIRSMNHGEVEAAKAYGLTGWKLYTYVIMPSALRRSLPYYSNEVILMLHSTTVAFTATVPDVLKVARDANSATFLTFQSFGIAALIYLTITFALVGLFRLAERRWLAFLGPTH	PGPT0020600_395	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020600-hisM-K10015	NA	NA
D1-36_03934	1119			hypothetical protein	ATGCGCCACCAGATACATGACCTGCTGGCCCCGCTGCCGGGGACCGCACGCAAGATCCACAGCTTTCACTTCGGCCCGGAAAAGGCCGATGGCAAAATCTACATCCAGTCGTCCCTGCACGCCGATGAGCTGCCCGGCATGCTCGTGGCCTGGCACCTCAAGCAGCGCCTGGCCGAGTTGGAGGCCTCCGGCCATTTGCGACACGAGATCGTGCTGGTGCCGATCGCCAACCCCATCGGCCTTGAACAAGTGCTGATGGACGTGCCGCTGGGCCGCTATGAGTTGGAGAGCGGGCAGAATTTCAACCGCCGGTTCGTCGACTTGAGCGAAGAGATCGGCAACGAAATCGAAGGCTTGCTGACCGACGACCCGCGGCACAACCTGAGGCTGATCCGTACCAGCCTGCGCGATGCCCTGAGCCGCCAGAGCGCCAGCACGCAATTGCAATCCCAGCGCCTGGTCCTGCAGCGGCTGGCCTGCGACGCCGACATGGTGCTCGACCTGCATTGCGATTTCGAAGCCGTGGCCCACCTCTACACCACCCCCGAAGCCTGGCCGCAGGTCGAGCCGCTGGCGCGCTACATCGGCGCCGAGGCCAGCCTGTTGGCCACCGACTCGGGCGGCCAGTCGTTCGATGAGTGTTTCACGCTGCTGTGGTGGCAACTCAAGGAACGTTTTGGCGAACGATTCGAGATTCCCCTGGGAAGCTTTTCCGTCACCGTCGAACTGCGCGGCCAGGGTGACGTCAACCACGGCCTGGCGAGCCTCGACTGCCAGGCATTGATCGAGTACCTGATCCACTTCGGTGCCATCGACGGCGAACCGGTGCCATTGCCCGACCTGCCCTACCCGGCCACGCCGCTGGCGGCCGTCGAACCGGTGGCGACGCCGGTTGGCGGGCTGCTGGTGTACAACGCTCTGCCCGGCGAGTACATGGAGGCGGGGCAACTGATCGCCGAAATCATCGACCCGGTCAACGACACCGTCACGCCCGTTCATTGCCGCAACGCCGGGCTGCTTTATGCCCGCTCGCTGCGCCGCATGGCCACCGCCGGCATGGTCATCGCCCATGTCGCCGGAACCGAAGCCTACCGCAGCGGCTACTTACTTTCGCCTTGA	MRHQIHDLLAPLPGTARKIHSFHFGPEKADGKIYIQSSLHADELPGMLVAWHLKQRLAELEASGHLRHEIVLVPIANPIGLEQVLMDVPLGRYELESGQNFNRRFVDLSEEIGNEIEGLLTDDPRHNLRLIRTSLRDALSRQSASTQLQSQRLVLQRLACDADMVLDLHCDFEAVAHLYTTPEAWPQVEPLARYIGAEASLLATDSGGQSFDECFTLLWWQLKERFGERFEIPLGSFSVTVELRGQGDVNHGLASLDCQALIEYLIHFGAIDGEPVPLPDLPYPATPLAAVEPVATPVGGLLVYNALPGEYMEAGQLIAEIIDPVNDTVTPVHCRNAGLLYARSLRRMATAGMVIAHVAGTEAYRSGYLLSP				NA	NA	NA	NA	NA
D1-36_03935	765	hisP_2	COG4598	Histidine transport ATP-binding protein HisP	ATGTACAAACTGACCATCGAAGGCCTGCACAAGAGCTATGGCCAGCACGAGGTGCTCAAAGGGGTTTCACTCAAGGCCAGGACCGGCGACGTGATCAGCCTGATCGGCGCCAGCGGCTCGGGCAAAAGCACCTTCTTGCGCTGCATCAACTTCCTCGAACAACCCAACGACGGCGCCATGACCCTGGACGGCCAGTCGATCCAGATGATCAAGGATCATCACGGCATGCGCGTGGCCGATGCCGACGAGCTGCAACGCATCCGTACGCGCCTGGCCATGGTGTTCCAGCACTTCAACCTATGGAGCCACATGACCGTGCTGGAAAACATCACCATGGCGCCACGCCGGGTGCTGGGCGTCAGCAAGCAGGAAGCCGACGAGCGCGCCCGTCGTTATCTCGACAAGGTCGGCCTGCCGGCCCGCGTCGCCGAGCAATACCCGGCGTTCCTGTCTGGCGGGCAGCAACAGCGCGTGGCGATTGCCCGCGCCTTGGCGATGGAGCCGGAAGTCATGCTGTTCGACGAACCGACTTCCGCCCTTGACCCGGAGCTGGTGGGAGAAGTGTTGAAGGTGATCCAAGGCCTGGCGGAAGAGGGCCGCACCATGATCATGGTGACTCACGAAATGAGCTTCGCCCGCAAGGTTTCCAACCAGGTGCTGTTCCTGCACCAGGGCCTGGTGGAAGAAGAAGGCGCGCCGCAAGACGTGCTGGGCAACCCCAGGAGCGAGCGACTCAAGCAGTTCCTCAGCGGCAATCTGAAATAA	MYKLTIEGLHKSYGQHEVLKGVSLKARTGDVISLIGASGSGKSTFLRCINFLEQPNDGAMTLDGQSIQMIKDHHGMRVADADELQRIRTRLAMVFQHFNLWSHMTVLENITMAPRRVLGVSKQEADERARRYLDKVGLPARVAEQYPAFLSGGQQQRVAIARALAMEPEVMLFDEPTSALDPELVGEVLKVIQGLAEEGRTMIMVTHEMSFARKVSNQVLFLHQGLVEEEGAPQDVLGNPRSERLKQFLSGNLK	PGPT0020610_461	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020610-hisP-K10017	NA	NA
D1-36_03936	2487			hypothetical protein	ATGGCGACATCCAGCAACTTCGCAAAAAAGTGGTTCGACGCCCGGGGCTGGAAGCCGTTCGCTTTTCAAAAAAATGTGTGGGCCGCGGTCAAGCGCGGCGAGTCGGGGCTGCTGCACGCCAGCACCGGCGCCGGCAAGACCTACGCCGTGTGGTTTGCCGCTCTCAACCGTTTCGCCCGCGCCGTGCCGCCGCCGGACAAACCCCGAAAACGCAAACCTGCGGCCGAGCCGTTGACAGTCTTGTGGATAACGCCGATGCGCGCGCTGGCCGCTGATACTGGCAAGGCACTTCAAGCGCCCCTCGACCCGTTGCAGATCCCCTGGACCGTCGGCCTGCGCACCGGTGACACCAGCGCGAACGAACGCGCCCGCCAAGGCCGACGCCTGCCCACGGCGCTGATCACCACCCCGGAAAGCCTGACCCTGATGCTGGCCCGCGCCGACGCGCAAACCGCCGTTTCGACCTTGCGCATGGTCGTGGTGGATGAATGGCACGAATTGCTCGGCAACAAGCGTGGCGTGCAGCTGCAACTGGCCCTGGCCCGCTTGCGGCGCTGGCATCCGGGGCTGATTGTGTGGGGAGTCTCCGCGACCCTGGGTAACCAGGCCCACGCCGAACAGGTGCTTATCCCACAAGGCAATGGTGCCAGCGTGCAGGGCGCCAACGCCAAGGCCCTACAGGTCGATACGCTGTTGCCGCCGACCCTTGAACGTTTCCCCTGGGCCGGGCACATCGGCTTGAAAATGCTGCCCCAGGTCGTCGCCGAAATCGACGCCAGCAGCAGCTGCCTGGTCTTTACCAACACCCGTGCGCAGTCGGAAATCTGGTACCAGGCGATCCTCGAGGCACGTCCGGACTGGGCCGGGCTGATCGCGCTGCATCACAGCTCGTTGTCCCGCGAGACCAGGGATTGGGTGGAACAAGCCCTCAAGGATGGCCAGCTCAAAGCGGTGGTGTGCACCTCAAGCCTGGACCTGGGGGTGGATTTTCTGCCGGTAGAACGGGTGTTGCAGATCGGCTCGGCCAAGGGTGTGGCGCGGCTGATGCAGCGCGCCGGACGCTCCGGCCACGCGCCGGGACGGACCTCGCGAATCACACTCGTGCCGACCCATAGCCTGGAACTGATCGAGTCCGCCGCCGCGCAGGACGCCGTGGCGCAGCGGCGCATCGAGCCCCGGGAATCGCCGCACAAACCCCTGGACGTGCTGGTCCAGCATTTGGTCAGCATGGCCCTGGGCGGCGGTTTCAGGCCCGACGAACTGTTCGACGAGGTCCGTGGCGCCTGGGCTTACCGCGATTTGAACCCTGCCGAATGGGCATGGGCCCTGGCGTTCGTGCGCCACGGTGGACTCTCGTTGACGGCCTACCCTGACTATCGACGGGTCGAGCCGGACGAGCACGGCGTATGGCGCGTGCCTGACGCACGCCTGGCCCGGCGCCACCGCATGAGCATCGGCACCATCGTCAGCGACGCCAGCCTGCAGCTGAAGTTCTGGAGCAAGGGCGGGGGCGGCAAAACCTTGGGCAGCGTGGAAGAAGGTTTTATCGCGCGGCTGCGTCCCGGCGACGGGTTTCTCTTCGCCGGGCGGTTATTGGAACTGGTCCGGGTCGAAGACATGACGGCCTACGTGCGGCGCAGCCAGGCGAAAAAAGCTGCCGTGCCACGCTGGAACGGCGGCCGCATGCCACTTTCCAGCGAACTTGCCGCCGCGGTCGTAGCACGCCTGAGCGAGGCCGCCGCAGGCCATTTCGACGGCCCGGAGATGCGCGCCGTGCAACCATTGCTATCGACGCAACTGCGCTGGTCCGGCCTCCCCACGCAGGGCACGTTGCTGGCCGAAGCGCTCAAGTCCCGGGAGGGCTGGCACCTGTTCCTCTATCCGTTCGCCGGGCGCCAGGTTCACCTCGGGCTTGCCAGCCTGCTGGCCTGGCGCGTCAGCCAGCGACAACCGGTGACATTTTCCATCGCGGTCAACGACTACGGACTGGAACTGCTCAGCGCCACCCAAGTGGACTGGTCAGCGCACCTGAACCCGGGGCTCTTGCGCACCGATAATCTGCTGGTGGACGTGCTCGCCAGCCTGAATGCCGGAGAACTGGCGCTGCGGCGCTTTCGCGAGATCGCCCGAATCGCCGGGCTGGTATTCGCCGGCTATCCCGGCGCGCCGAAGAGCACACGGCAAGTCCAGGCCTCCAGCGGACTGTTTTTTCAAGTGTTCAAGCAATACGACGCCGATAACCTGCTGCTGGCCCAGGCCGGCGAGGAGGTCCTGCGCGAAGAATTGGATATACGCCGACTGGAGCAGACCTTGGAACGCCTCGATACGTTGAAGCTGGACCTGCACATCATTAAACGCCCCACCCCGCTGGGCTTCCCGTTATTGGTGGAACGGTTCCGCGAAAGCATGAGCTCGGAAAAACTTGCCGATCGCATCCGCCGGATGGTCAGCGAACTGGAACGAACCGCCGATAAAGGTACCGTCTGA	MATSSNFAKKWFDARGWKPFAFQKNVWAAVKRGESGLLHASTGAGKTYAVWFAALNRFARAVPPPDKPRKRKPAAEPLTVLWITPMRALAADTGKALQAPLDPLQIPWTVGLRTGDTSANERARQGRRLPTALITTPESLTLMLARADAQTAVSTLRMVVVDEWHELLGNKRGVQLQLALARLRRWHPGLIVWGVSATLGNQAHAEQVLIPQGNGASVQGANAKALQVDTLLPPTLERFPWAGHIGLKMLPQVVAEIDASSSCLVFTNTRAQSEIWYQAILEARPDWAGLIALHHSSLSRETRDWVEQALKDGQLKAVVCTSSLDLGVDFLPVERVLQIGSAKGVARLMQRAGRSGHAPGRTSRITLVPTHSLELIESAAAQDAVAQRRIEPRESPHKPLDVLVQHLVSMALGGGFRPDELFDEVRGAWAYRDLNPAEWAWALAFVRHGGLSLTAYPDYRRVEPDEHGVWRVPDARLARRHRMSIGTIVSDASLQLKFWSKGGGGKTLGSVEEGFIARLRPGDGFLFAGRLLELVRVEDMTAYVRRSQAKKAAVPRWNGGRMPLSSELAAAVVARLSEAAAGHFDGPEMRAVQPLLSTQLRWSGLPTQGTLLAEALKSREGWHLFLYPFAGRQVHLGLASLLAWRVSQRQPVTFSIAVNDYGLELLSATQVDWSAHLNPGLLRTDNLLVDVLASLNAGELALRRFREIARIAGLVFAGYPGAPKSTRQVQASSGLFFQVFKQYDADNLLLAQAGEEVLREELDIRRLEQTLERLDTLKLDLHIIKRPTPLGFPLLVERFRESMSSEKLADRIRRMVSELERTADKGTV				NA	NA	NA	NA	NA
D1-36_03937	657			hypothetical protein	ATGCCCGCGCCCTACCCCATCAACCTCGCCGGTGAAGAACTCTGGCTGCTGCCGCACAAAGCCCTGTACTGGCCGGCCCAGGAAACCCTGATGGTGGCCGACGCACATTTCGGCAAGGCCGCTGCCTATCGCAGCCTCGGCCAACCGGTGCCCCACGGCACGACGGCGAGCAATATCGCCATGCTGGATCAACTGCTGGCAAGCGTGCCGTGTCGATTGCTGATTTTCCTTGGGGATTTCCTTCACGGGCCTGGTTCCCATGCCCCCGGCACACTGAACGCTCTCGCCGGTTGGCGTGAACGGCATCAAGCACTTCCCATCACACTCATACGTGGCAATCACGACAAGAGCGCTGGCGATCCACCGCCCTCGATGAATATCCGCGTCGTACCCGAGCCACTGCTGCTGGGCCCGTTCGCCGTGCAACACGAACCCACGCCGCACCCAAGCCGACATGTGCTGGCCGGGCATGTGCACCCGGTCTATCACTTGACAGGCAAAGGCCGGCAACGGCTTCGGCTTCCGTGTTTCCGCCTTGGTAGTGATGTCAGCCTGCTGCCGGCCTTCGGTGCGTTCACCGGAGGCTATCGGGTCGAGCAGGACAACGACTGCAAGATCTTCGTGATTGGCGACAACGAAATATGGCCCGTCAGCTGA	MPAPYPINLAGEELWLLPHKALYWPAQETLMVADAHFGKAAAYRSLGQPVPHGTTASNIAMLDQLLASVPCRLLIFLGDFLHGPGSHAPGTLNALAGWRERHQALPITLIRGNHDKSAGDPPPSMNIRVVPEPLLLGPFAVQHEPTPHPSRHVLAGHVHPVYHLTGKGRQRLRLPCFRLGSDVSLLPAFGAFTGGYRVEQDNDCKIFVIGDNEIWPVS				NA	NA	NA	NA	NA
D1-36_03938	207			hypothetical protein	ATGAAGATCGATCCGCGAATCAGTGCCGAACTGGCAAGTCTTGAGCCCAATCAGATCGGCGTCCTGGCTTGGTCACTGCTGGCCCATCCTGCTGAAGCGGCAGGCGGCATCCCCGGCCAGCCAGATCCCGATACCCCCAACGAGCAGCCAACCGAACCCGGCGAACCGACACTTCCCGACGAGCCGCCTCCTGCGCCCGTAGCCTGA	MKIDPRISAELASLEPNQIGVLAWSLLAHPAEAAGGIPGQPDPDTPNEQPTEPGEPTLPDEPPPAPVA				NA	NA	NA	NA	NA
D1-36_03939	567	dcd		dCTP deaminase	ATGAGCATCAAATCGGACAAGTGGATTCGCCGCATGGCGCAAGAGCACGGCATGATCGAGCCCTTCGTAGAGCGCCAGATGCGTGGCGAAGGCGCCGACCGGCTGATTTCCTTCGGTGTTTCCAGCTACGGCTACGATGTGCGCTGCGCCGATGAATTCAAGGTGTTCACCAACATCAACTCGGCCACAGTCGACCCGAAGAACTTCGACGAGAAGAGCTTCGTCGACATCAAGAGCGATGTCTGCATCATTCCGCCGAACTCCTTCGCCCTGGCCCGCACCGTCGAGTATTTCCGTATTCCGCGCAACGTGCTGACCATTTGCCTGGGTAAAAGCACCTATGCCCGTTGCGGCATCATCGTCAACGTCACGCCCCTGGAACCGGAATGGGAAGGCCATGTGACCCTGGAGTTTTCCAACACCACGACCCTCCCGGCCAAGATATACGCCAACGAAGGCGTGGCGCAGATGCTGTTCCTCGAATCCGATGAAGAGTGCGAAGTGTCCTATAAGGACCGGGGTGGCAAATACCAGGGCCAGCGCGGCGTGACACTGCCGCGTACCTGA	MSIKSDKWIRRMAQEHGMIEPFVERQMRGEGADRLISFGVSSYGYDVRCADEFKVFTNINSATVDPKNFDEKSFVDIKSDVCIIPPNSFALARTVEYFRIPRNVLTICLGKSTYARCGIIVNVTPLEPEWEGHVTLEFSNTTTLPAKIYANEGVAQMLFLESDEECEVSYKDRGGKYQGQRGVTLPRT	PGPT0021225_2250	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021225-dcd-K01494	NA	NA
D1-36_03940	210	capB_2		Cold shock protein CapB	ATGTCTAATCGCCAAACCGGTACCGTTAAGTGGTTCAACGATGAAAAAGGCTTCGGCTTCATCACTCCACAATCCGGTGACGATCTGTTCGTTCACTTCAAAGCTATCCAATCCGACGGCTTCAAAAGCCTGAAAGAAGGCCAACAGGTTTCTTTCATCGCTACCCGCGGTCAGAAAGGCATGCAAGCTGAAGAAGTTCAAGTTATCTAA	MSNRQTGTVKWFNDEKGFGFITPQSGDDLFVHFKAIQSDGFKSLKEGQQVSFIATRGQKGMQAEEVQVI	PGPT0014675_3928	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	LOW_TEMPERATURE_TOLERANCE	COLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704	NA	NA
D1-36_03941	963			hypothetical protein	ATGCCTTTGCTTGCCGATACCGTCTGGTTGAAGAACGGCGACAAGCTCAGCGGCAAGATCACCGTTTTCGACGGCGGCAAGTTGCTGATCCAGACCGATTATGCCGGCGCGGTCCCTATCGATTGGAAACAGGTCAAGACCCTTGAAAGCGACCAGCAGTTGTTGGTCAAGCAGGACGCTTACAGTGGCGAGAAAGCCAAGGCGTTGCAGGCGGCCGAGGATGGCAAGGTGACCTTGGCCAATGGTGATGTGCCCAAGACCGTCGAGCTGGCGAGCATCCAGCAGATTCTCAAGCCCAAGCCGGTGGTCGAGGATTTGGTGTGGAAGGGCAATATCGACGCCGCACTGGATTACCAGCGGGCGGAAAACGACACCGACGACTACGACATCGACTTCAAGACCTCGGCGCGCCACGGCAGGTGGCGGCACACCGCCGAAGGCGAATACAACCGCGAATTCCAGGACGACATAGTCTCGGCTGATAACTGGCGACTGGAGTACTCCCTCGACCGGTTCATCACCGATAAATGGTTCTGGCAAGGTCGGCTCAATTACAAGCGCGACAAAGTCGAGGACCTGGCCCGCCAGCGTGTCGTGGGTACCGGTCCGGGCTACCAGTTCTGGGACGACGAACTGGGTGCGTTCTCCCTGGGTTCGCTGCTCAACCGCACCGATTACGAGTACAGCGATGGCGGCAAGGACAACTTCTATTCCGTCGCCATGAAATGGGACTACAACCGTTACCTGATCGGCAAACGGGTTGAGTTTTTCACCAATGGCGAAGTCGGCAAGCCGCTGTCTGGCGTGGCGGATTATGCCTACGACGCAGAGTTGGGGTTGCGCTATAAAGTGACCGACTGGGCGTCACTCAATCTCAAGGCCGAGAAAGATGTCATCGAAGGGACGGAAGACAGCGACATCAGTAAGACGCGCTACACGGCTGGGTTCGGTGTGACCTGGTAA	MPLLADTVWLKNGDKLSGKITVFDGGKLLIQTDYAGAVPIDWKQVKTLESDQQLLVKQDAYSGEKAKALQAAEDGKVTLANGDVPKTVELASIQQILKPKPVVEDLVWKGNIDAALDYQRAENDTDDYDIDFKTSARHGRWRHTAEGEYNREFQDDIVSADNWRLEYSLDRFITDKWFWQGRLNYKRDKVEDLARQRVVGTGPGYQFWDDELGAFSLGSLLNRTDYEYSDGGKDNFYSVAMKWDYNRYLIGKRVEFFTNGEVGKPLSGVADYAYDAELGLRYKVTDWASLNLKAEKDVIEGTEDSDISKTRYTAGFGVTW				NA	NA	NA	NA	NA
D1-36_03942	354			DNA base-flipping protein	GTGACTGACGCCACTTCGGCCACCGAGAACGCCGCCCAGATCCGCCGCACCACGCTTTACCTCACCCTGGCACAGGTGCCTGCCGGCAAAGTCGTAACCTACGGCCAACTCGCCGAAATGGCCGGGCTGGGCCGCGCCGCGCGCTGGGTCGGACGAACCCTCAGCCAATTGCCCGGCGACACGAAGCTGCCGTGGCATCGCGTGCTCGGTGCCGGCGGTCGGATCAGCCTGCCGGTGGGAAGCCCCTCAGGGGACGAACAACGCGCGCGCTTGCGCACGGAGGGGATCAGTGTCCTGAATAATCGTGTTGATATTCAGCGCCATGGCTGGCGCCCGGTAGAGCACAGCGGTTAG	MTDATSATENAAQIRRTTLYLTLAQVPAGKVVTYGQLAEMAGLGRAARWVGRTLSQLPGDTKLPWHRVLGAGGRISLPVGSPSGDEQRARLRTEGISVLNNRVDIQRHGWRPVEHSG				NA	NA	NA	NA	NA
D1-36_03943	1584			hypothetical protein	ATGCCCCGTAAAACCTGGCGCGCCGCCCTCGCCGCCTATGCCAGTCCTTCGACGCTCGTGCTGTTGCTGCTTGGCTTCGCCGCCGGCTTGCCGTACATGCTGGTGTTTTCCACGCTCTCGGTCTGGTTGCGCGAAGCCGGCGTGGCTCGCGAGACCATCGGTTACGCCAGCCTGATCGGCCTCGCCTACGCCTTCAAGTGGGTCTGGTCGCCATTGCTGGACCAATGGCGCCTGCCACTGCTGGGCAAGCTGGGACGCCGCCGATCCTGGTTGGTGCTGTCCCAAGGGCTGGTCATCCTGGGCCTGGTGGGCATGGGTTTCTGCGATCCGCAAAAGCACCTGTCCTGGCTGATCGCAATCGCGGTGATAGTGGCCTTCGCCTCCGCGACTCAGGACATCGCCGTCGATGCCTATCGACTGGAAATCGTGGACGACACCCGCCAGGCCGCATTGGCCGCCAGCTACATGTCCGGCTACCGGGTCGCCGCCCTGCTGGCCACGGCCGGCGCGCTGTTTTTCGCCGAGGGCTTCGGCTCCACCGGGTTCAGCTACAAACATTCGGCCTGGGCGGGCACGTACCTATTGTTCGGCGTGCTGATGGTGCCCGCCTTGCTGACCTCACTGTTCATGCGCGAGCCTCCGGTGCCACTGCGCACACAGTTGCAGGCCGGGCGCTATACCTTCGTCCATCAGCTCGCATCGGTGTTCGTCCTGATCGTGCTCCTGGTGTCGGTCCCGGCCATGTTCACCCAACTCTATAACACCGACTTTGCCAGCGTGCTGTTCGAGGGCGTCAGCCTGCTCGACCTGCTGCTCGAGGACCGGGCGTTCCTGCGCGCCATCCTCTATATCCTCCTGACTGTCATGTGCCTGTCGTCGATGGGCCGTCGCGGCCTGGCGCCGGTGCTCACCCCCGTCAACGACTTCATCCTGCGCTACCGCTGGCAGGCGCTGCTGCTGCTCGGCCTGATCGCCACCTACCGGATGTCCGACACGGTCATGGGCGTCATGGCCAACGTGTTCTACATCGACCAAGGATTTACCAAGGACCAGATCGCCAGCGTCAGCAAGATATTCGGGCTGATCATGACGCTGGTGGGCGCCGGCATGGGCGGCCTGCTCATCGTGCGATTCGGCATCTTGCCGATCCTGTTCATTGGCGGCGTGTCCTCGGCGGCCACCAATATCCTGTTCTTGATGCTCACGGGGATGGGCGCCGACCTGGAGATGCTGATTGTCACCATCTCCCTGGACAATTTCAGCTCCGGCCTGGCGACCTCGGCATTCGTCGCGTACCTGTCCAGCCTGACCAACCTGAAATTCTCCGCAACCCAGTACGCCCTGCTCAGCTCGATCATGCTCTTGCTGCCGCGCCTGATCGGTGGGTATTCCGGGGTCATGGTGGAAAAGTTCGGCTATCACGATTTCTTCCTGATCACCGCCCTGCTCGGCGTTCCAACCTTGCTGCTGATCGCGCTCCACTGGTACCAGGAAAATCGCCGCCAGGACTCGACGCACGGAACGGAGTCAGAGTCAGAGCCGGAGTCGAAATCGACGCCGACCCGGCCCGCCCAAGAGTCGTAG	MPRKTWRAALAAYASPSTLVLLLLGFAAGLPYMLVFSTLSVWLREAGVARETIGYASLIGLAYAFKWVWSPLLDQWRLPLLGKLGRRRSWLVLSQGLVILGLVGMGFCDPQKHLSWLIAIAVIVAFASATQDIAVDAYRLEIVDDTRQAALAASYMSGYRVAALLATAGALFFAEGFGSTGFSYKHSAWAGTYLLFGVLMVPALLTSLFMREPPVPLRTQLQAGRYTFVHQLASVFVLIVLLVSVPAMFTQLYNTDFASVLFEGVSLLDLLLEDRAFLRAILYILLTVMCLSSMGRRGLAPVLTPVNDFILRYRWQALLLLGLIATYRMSDTVMGVMANVFYIDQGFTKDQIASVSKIFGLIMTLVGAGMGGLLIVRFGILPILFIGGVSSAATNILFLMLTGMGADLEMLIVTISLDNFSSGLATSAFVAYLSSLTNLKFSATQYALLSSIMLLLPRLIGGYSGVMVEKFGYHDFFLITALLGVPTLLLIALHWYQENRRQDSTHGTESESEPESKSTPTRPAQES	PGPT0028125_202	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028125-ampG-K08218	NA	NA
D1-36_03944	1716	proS	COG0442	Proline--tRNA ligase	ATGCGCACCAGTCAATTTTTGCTCGCCACACAGAAAGAAACGCCTTCCGACGCCGTCGTGATCAGCCACCAGCTGATGCTGCGTGCCGGCATGATCCGCAAACTCGCCTCCGGCCTGTACACCTGGCTGCCGATGGGCCTGCGGGTCATGCGCAAGGTCGAAGCCATCGTCCGTGAAGAAATGGACGCCGCCGGCTCTCTGGAAGTGTTGATGCCGAGCACCCAACCGGCCGAGCTGTGGCAGGAGTCGGGACGCTGGGAGGAGTACGGCCCCGAGCTGCTGCGCATCAAGGACCGTCACGGTCGCGACTTCTGCGCAGGCCCGACCCACGAAGAAGTGATCACCGACCTGATGCGCAACGAGTTGAGCAGCTACAAGCAGCTGCCCATCAACCTGTATCAGATCCAGACCAAGTTCCGTGACGAGATCCGTCCGCGCTTCGGCCTGATGCGCGGTCGCGAGTTCATCATGAAGGACGCCTACTCGTTCCACGCCGACCTGGCGTCGCTGCAGGTTACTTACGACCGCATGCACCAGGCGTACTGCAACGTGTTCACCCGCCTGGGCCTGAAATACCGCCCGGTTGAAGCCGACAACGGCTCCATTGGCGGTGCCGGCTCCCACGAATTCCACGTACTGGCCGAGTCCGGCGAAGACGACATCGTCTTCAGCAACGGCTCCGACTACGCCGCGAACATCGAGAAAGCCGAAGCCGTCCCACGGGAAACGTCCCGCGCCGCGCCGACCGAAGAATTGCGCCTGGTGGATACACCCAACACCAAGACCATCGCCCAGTTGGTGGAAGGCTACAACCTGCCGATCGAACGCACCATCAAGACCCTGATCGTGCGCGCGGAAGAAGAAGGCAAGCTGATCGCCCTGATCGTCCGCGGCGATCACGAGCTCAATGAAATCAAGGCGGCCAACCAGCCTGGCGTCGCAAGCCCATTGGTCATGGCCACCGACGCCGAGCTGCGCGACGCCATCGGCGCCGGCGCCGGCTCCCTCGGCCCGCTGAACCTGCCGCTGCCGATCATCATCGATCGCTCGGTGGAGCTAATGAGCGATTTCGCCATCGGCGCCAACATCGACGACAAGCATTATTTCGGCGTGAACTGGGAGCGCGACCTGCCGGTTCCAGCCGTCGCGGACCTGCGCAACGTGGTGGCCGGCGATCCAAGCCCGGACGGCAAGGGCACTCTGGAAATCAAGCGCGGTATCGAAGTCGGACACATCTTCCAGCTGGGTGACAAGTACAGCAAGGCGATGAAATGCGAGGTGCTGGGCGACAACGGCAAGCCAGTCACCCTGCAGATGGGCTGCTACGGCATCGGTGTATCCCGCGTGGTGGCCGCTGCCATCGAGCAGAACAACGACGAGAACGGGATCATCTGGAGCGACACACTGGCGCCCTTCCAGGTCGCGCTGGTGCCGCTGCGCTATGAAACCGAACAGGTTCGCGAAGCGACCGACAAGCTCTACGCCGAATTGACGGCCGCTGGCTTCGAGGTGCTGCTGGACGACCGCGACAAGAAAACCAGCCCCGGTATCAAGTTCGCCGACATGGAACTGATCGGTATCCCGCACCGGATCGTAGTCAGTGATCGCGGCCTGGCCGAAGGCAACCTGGAATACAAGAGCCGCACCGAGGCCGAGCCGCAAGCGCTACCGGTCGCCGAAGTGCTGTCCTTCCTCCAGGCTCGTATCCGCCGCTGA	MRTSQFLLATQKETPSDAVVISHQLMLRAGMIRKLASGLYTWLPMGLRVMRKVEAIVREEMDAAGSLEVLMPSTQPAELWQESGRWEEYGPELLRIKDRHGRDFCAGPTHEEVITDLMRNELSSYKQLPINLYQIQTKFRDEIRPRFGLMRGREFIMKDAYSFHADLASLQVTYDRMHQAYCNVFTRLGLKYRPVEADNGSIGGAGSHEFHVLAESGEDDIVFSNGSDYAANIEKAEAVPRETSRAAPTEELRLVDTPNTKTIAQLVEGYNLPIERTIKTLIVRAEEEGKLIALIVRGDHELNEIKAANQPGVASPLVMATDAELRDAIGAGAGSLGPLNLPLPIIIDRSVELMSDFAIGANIDDKHYFGVNWERDLPVPAVADLRNVVAGDPSPDGKGTLEIKRGIEVGHIFQLGDKYSKAMKCEVLGDNGKPVTLQMGCYGIGVSRVVAAAIEQNNDENGIIWSDTLAPFQVALVPLRYETEQVREATDKLYAELTAAGFEVLLDDRDKKTSPGIKFADMELIGIPHRIVVSDRGLAEGNLEYKSRTEAEPQALPVAEVLSFLQARIRR				NA	NA	NA	NA	NA
D1-36_03945	954			hypothetical protein	ATGTTCAAGCGAAACACCTTAGGCCTCGGGGGCGCCGCACTGTGCGGCGCCCTGCTGGTCAGCGGCTGCGCCAACCAGATGTCGCAACGCAACGAGCACGAAGAACGGATCGAGCGCAAGCTGCTCGACCATAGTCTGCAGATCGATGTGGGCGAGCCCAAGGTGCTCGACTTACCGCAGCGTCGGGTTCGGATCAACGAGCAAAAAACTTTCGAGGTCACTGAATTCGAAGTCACCCGGCACTACGATCGCTACACGCCCTACCAGCCATGGCGCGAGGTCTATGAGATCCCGCTGGGCGCGGTGGCGGTGGTGGCCGGTGTCGGCGCGAACGTGGTCAATGTGTTCGCCCTGGGCACCTTGCCTGACACCGCGACCCGTGACTGGATCAGCTACGGTTTCGCCGGCCTGAACCCATTCATGAACGTCCCGTCCAACGGTCGAGCGCAACAAAACCTGGCCGGTATCGACGAAATCCAGCGCGACAAGCGCACCGAACACTCGAGCCTGCCCTGGAGCGAACGCCCGGTACAGGTGAAGGCCGCCCGCCAGACATTCGAGATGAGCACCGACCGCAACGGGGTGCTGCGCTTGAACCTGCTGGAAAGCCCGTTCGCCGAACATGACCTGAGCCAGTTCGGCAAATTGCAGATCAGCGTGACGGATGCCCAGGACGAGGTGCATACCGACTCGTCGCTGAGCATCAGCAGCACCCTGCGCAGCAAATTGGTCGAAGCCCACGCATTGATCTACGACGACCTGGAAGATGACGAAGTGAGCCAGTGGGTTCACCGGGTCAAACGCCTGTCGGAACTGGGCCTTGAAGAAGAAGCCAGTGAGCTGGAGCAAAGCCTGATCGAACTGACCCGCAACGATCCGGAACTGCAGACCGAGTTCCTGAAGGCGTTGACCAAGGATGGCGGACGGTTGGTGGCGGACCCAGGGGCGAGTTGA	MFKRNTLGLGGAALCGALLVSGCANQMSQRNEHEERIERKLLDHSLQIDVGEPKVLDLPQRRVRINEQKTFEVTEFEVTRHYDRYTPYQPWREVYEIPLGAVAVVAGVGANVVNVFALGTLPDTATRDWISYGFAGLNPFMNVPSNGRAQQNLAGIDEIQRDKRTEHSSLPWSERPVQVKAARQTFEMSTDRNGVLRLNLLESPFAEHDLSQFGKLQISVTDAQDEVHTDSSLSISSTLRSKLVEAHALIYDDLEDDEVSQWVHRVKRLSELGLEEEASELEQSLIELTRNDPELQTEFLKALTKDGGRLVADPGAS				NA	NA	NA	NA	NA
D1-36_03946	1062	dinB	COG0389	DNA polymerase IV	ATGACGCAACGCAAAATCATCCACGTCGACTGCGACTGCTTCTATGCCGCTATCGAGATGCGTGATGATCCGCAGCTGGCCGGCAAGCCATTGGCGGTCGGCGGCTCGGCGGACCGGCGCGGCGTAATCGCGACCTGCAACTATGAGGCCCGAGCCTATGGCGTGCGCTCTGCCATGTCTTCCGGCCATGCGCTGAAGCTCTGCCCTGACCTGACCATCGTCAAGCCGAGGATGGACGCCTACCGAGAGGCGTCGAAGGAAATCCACACGATCTTCAGCGATTACACCGATCTGATCGAGCCGCTGTCCCTCGACGAGGCTTACCTGGATGTCTCCGCCAGCGCGCATTTTGGCGGCAGCGCCACGCGTATTGCCCAAGACATTCGCCGGCGTGTCTCCAATCAGCTGCACATCACCGTGTCCGCTGGCGTTGCGCCGAACAAGTTTCTCGCCAAGATCGCCAGTGATTGGAAGAAGCCCAATGGCTTGTTTGTCATCACCCCCGACCAAGTGGAAGATTTCGTCTCGGCATTACCGGTGAATAAACTCCACGGTGTTGGCAAGGTCACCGCCGACAAGTTGAACAGGCTCGGGATCACCGATTGTTCACAGTTGCGTCAGTGGGACAAGCTCGCCCTGGTGCGTGAATTCGGCAGTTTTGGCGAGCGCCTCTGGAGCCTTGCCCGTGGGATCGATGAGCGTCTGGTGCACAACGACAGCCGTCGTCAGTCCATCAGCGTGGAAAACACCTACGACGTTGATCTGCCCGATCTGAAAAGCTGCCTGGATAAGTTGCCGGAGCTGATGGAAACCCTCAGCGGGCGCATGGCGCGGATCGACAGCAGTTACCGCCCGGGCAAGCCATTCGTCAAAGTCAAATTCCATGATTTCACCCAGACCACCCTGGAGCAGTCCGGGGCCGGGCGGGATCTGGGCAGTTACCAGCTTTTGTTGACCCAGGCCTTCAACCGTGGCGGCAAGCCGGTGCGGTTGTTGGGGATCGGGGTACGGTTGGAGGATTTGCGGGGAGGGTATGAACAGTTGGAGCTGTTTGATCGGTAA	MTQRKIIHVDCDCFYAAIEMRDDPQLAGKPLAVGGSADRRGVIATCNYEARAYGVRSAMSSGHALKLCPDLTIVKPRMDAYREASKEIHTIFSDYTDLIEPLSLDEAYLDVSASAHFGGSATRIAQDIRRRVSNQLHITVSAGVAPNKFLAKIASDWKKPNGLFVITPDQVEDFVSALPVNKLHGVGKVTADKLNRLGITDCSQLRQWDKLALVREFGSFGERLWSLARGIDERLVHNDSRRQSISVENTYDVDLPDLKSCLDKLPELMETLSGRMARIDSSYRPGKPFVKVKFHDFTQTTLEQSGAGRDLGSYQLLLTQAFNRGGKPVRLLGIGVRLEDLRGGYEQLELFDR	PGPT0014881_4547	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
D1-36_03949	2643			hypothetical protein	ATGCGCGCCCACTCGTCTGACCCACAAGACACTGTTTCTGCGACACAACCGATCAAGGCCGAGCGATTGCGCTGGATGGAGCGGATCAGCCAGTACCGGCAACCGATCGGCCTCGCTGTCACGCTGCTCCTGTTTGCAATTGCCTTGATCGCCTGCCGCCATCTGTTGAGCGAGCTCGACCTTTACGCCCTTCACGACTCGATCCTCGAGGTGCCGAGGCCGGCGCTGCTCGGCGCGATCGCCGCGACCGTGGCCGGTTTTGTCATTCTGCTGGGCTATGAGTGGTCCGCCACCCGCTACGCGGGGGTGAAGCTGCCGCCGCAAACCCTGGTGCTAGGGGGCTTCAGCGCTTTCGCCATTGGCAACGCCATCGGCCTGTCGCTGCTGTCGGGCGGCTCGGTTCGTTATCGCCTGTATGCTCGCCATGGCCTGGGAGCGACGGATGTCGCCCATATGACGTTGTTCGCCAGCCTGTCGCTGGGCTGCGCCCTGCCGCCCTTGGCCGCCCTGGCGACACTGAGCAATCTGCCTGCGGCATCCGCCGCCTTGCATCTTCCAGCCACGTTGCTGGGATCGATCGCCGTCGCGGTGCTGCTGCTGACTGGCGTGCTGGCGGTGGGTATCTATCGCCGTCGCCTGCCGGACCAACCCTACCGCGACAGCCTGCTGGTCAGGGCCGGTCGCCGGACCTTGCGGCTGCCCGGCCGACGCCTGACGCTCCTGCAATTGGTGATTACCGCGCTGGACGTCGCAGCTGCCGCGACGGTGCTCTATCTGTTGCTGCCCGAGGCGCCCCCGTTCGGTCCATTCCTGTTGGTGTACTTGCTCGCGCTGGCCGCCGGTGTACTCAGCCACGTGCCGGGCGGGGTCGGGGTGTTCGAGGCGATCCTGCTGGCCGCGTTTGCCGACAAGCTGGGTGCCGCGCCGCTGGCCGCCGCCTTGCTGCTGTATCGCTTGATCTACGTGCTGCTGCCGATGCTGGTAGCGTGCGTGCTGCTGCTGATCAATGAGGCGCAACGACTCTTCCAGACACGCCAGTCCTTGCGGGCGGCGTCAGGTTTCGCGGCACCGATCCTGGCCGTGCTGGTGTTTTTGTCGGGCGTGGTGCTGCTGTTTTCCGGGGTGACACCCGAAATCGACACCCGCCTGGAGCACATCGGCTTTCTGATTCCTCACCGACTGGTGGATGCCTCGCACTTTGGCGCCAGCCTGATTGGCGTGCTGTGCCTGTTGCTGGCCCAAGGCTTGCGCCGTCGCCTGTCCGCCGCCTGGATGCTCACCACCGTGTTATTGCTGGTGGGTGCCCTGCTCTCGCTGCTCAAGGGCTTTGATTGGGAAGAAGCCACGCTGCTGACCTTGACTGCTGCCCTGCTGTCGATCTTCCGGCGTTCGTTCTACAGGCCGAGTCGCCTGACCGAGTTGCCGTTTTCGCCATTGTTCTTGATCGCTAGCCTGTGCGTCCTGGGGGCGTCGATCTGGCTGTTGCTGTTCGCCTATCAGGACGTGCCCTACAGTCATCAACTGTGGTGGCAATTCACCCTGGATGCCGACGCTCCCCGCGGCCTGCGCTCATTGCTCGGTGCCGCGGTGCTGCTGGTGGTGGTGTCGCTGACCTGGTTGCTGCGCACCGCGCGGCCGGTGATTCACTTGCCTACGGCACAAGAGCTGGAACGCGCCAAGACCATTCTCATGGCGTCGTCTCAACCCGACGGCGGCTTGGCCCTGACCGGCGACAAGGCGCTGCTGTTTCACCCCAACGACGAGGCATTTTTGATGTACGCCCGTCGCGGCCGCAGCCTTGTCGCGCTGTACGACCCGATCGGGCCGACCCAGCAACGGGCGGAAATGATCTGGCAGTTCCGTGACCTGTGCGACATCTATCACGCCCGGCCAGTGTTCTACCAGGTACGCGCCGAGAACCTGCCTTACTACATGGACATCGGCCTGACCGCGATCAAGCTGGGCGAAGAGGCGCGAGTCGACCTCAAACGTTTCGATCTCGAAGCCAAGGGCAAAGAGATGAAGGACCTGCGCTACACCTGGAATCGCGGCACCCGCGATGGCCTGTCGCTGGAAATCCACGAGCCGGGCCAGGCGCCCATGGAGGAACTGAAAGTCATCTCCGACGCCTGGCTGACCGGCAAGAACGTCCGGGAAAAAGGCTTCTCCCTCGGACGATTCAGCGATGACTACCTCAAGCATTTCCGCATCGCGGTGATTCGTTTCGAAGGCCGGCCGGTGGCATTCGCCAACCTGCTGGAAACCCACAACCACGAATTGGCCAGCCTCGACCTGATGCGCGCCCACCCCGAGGCGCCGAAGCTGACCATGGAATTCATGATGGTCGGCCTGATTCAGCATTACAAAAACCATGGCTACGCTCGCTTCAGTCTCGGCATGGTCCCTTTGTCGGGCTTGCAGCCGCGTCGCGGCGCACCGCTGACCCAGCGCCTGGGGTCGATGGTGTTTCGCCGTGGCGAGCAGCTTTACAATTTCCAGGGGCTGCGCCGCTTCAAAGACAAATTCCAGCCTGACTGGGAACCTCGTTACATGGCCGTGCCCGCCGGACTCGATCCGTTGGTTGCACTGGCTGATACCGCCGCCCTGATTGCAGGCGGCCTGACTGGATTGGTGAAACGCTGA	MRAHSSDPQDTVSATQPIKAERLRWMERISQYRQPIGLAVTLLLFAIALIACRHLLSELDLYALHDSILEVPRPALLGAIAATVAGFVILLGYEWSATRYAGVKLPPQTLVLGGFSAFAIGNAIGLSLLSGGSVRYRLYARHGLGATDVAHMTLFASLSLGCALPPLAALATLSNLPAASAALHLPATLLGSIAVAVLLLTGVLAVGIYRRRLPDQPYRDSLLVRAGRRTLRLPGRRLTLLQLVITALDVAAAATVLYLLLPEAPPFGPFLLVYLLALAAGVLSHVPGGVGVFEAILLAAFADKLGAAPLAAALLLYRLIYVLLPMLVACVLLLINEAQRLFQTRQSLRAASGFAAPILAVLVFLSGVVLLFSGVTPEIDTRLEHIGFLIPHRLVDASHFGASLIGVLCLLLAQGLRRRLSAAWMLTTVLLLVGALLSLLKGFDWEEATLLTLTAALLSIFRRSFYRPSRLTELPFSPLFLIASLCVLGASIWLLLFAYQDVPYSHQLWWQFTLDADAPRGLRSLLGAAVLLVVVSLTWLLRTARPVIHLPTAQELERAKTILMASSQPDGGLALTGDKALLFHPNDEAFLMYARRGRSLVALYDPIGPTQQRAEMIWQFRDLCDIYHARPVFYQVRAENLPYYMDIGLTAIKLGEEARVDLKRFDLEAKGKEMKDLRYTWNRGTRDGLSLEIHEPGQAPMEELKVISDAWLTGKNVREKGFSLGRFSDDYLKHFRIAVIRFEGRPVAFANLLETHNHELASLDLMRAHPEAPKLTMEFMMVGLIQHYKNHGYARFSLGMVPLSGLQPRRGAPLTQRLGSMVFRRGEQLYNFQGLRRFKDKFQPDWEPRYMAVPAGLDPLVALADTAALIAGGLTGLVKR	PGPT0024390_194	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_PHOSPHATIDYLGLYCEROL_LYSYLTRANSFERASE,PGPT0024390-mprF|fmtC-K14205	NA	NA
D1-36_03950	1290			hypothetical protein	ATGATGCAACGCTCGTGGCGATACGTAGTGGCCGCCCTGCTGGTGCTGGCTGTGATTCTCGGTGGCGGCTACTGGTATTGGAACCGCCCTGCCCCGCAACCGACCCTGGAACAACTGGAACCCGCCGACGGCGTGCCAATGACGCGCATCATCCCCGGCACCAAGCCCCGCGCCCAGGTGCTGGTGGCCGTGAATGAGGACCAAAAGCTCAGCGACACCCAGTTGACGACCCTCAGCCGCAGCGGCTCGGCACAGATCGTCCAAGTGATCCTGCCCAAGGACTGCATGTTGCAAGGCCGTGCTCTACAGGCCGGCCTGAGACAACTCCACGGCCCGGCCACGCTGGTCAGCGGCATCGGCCCCGGCGCCGTGCTGGCCTGGCGCTGGTTGGCCGAGCAGAAGGACGACAATGCCCGGGCCGTCTCGGTGGACCTGGCCCTGGAAAAACCGGGCTGCACGCACCTGCTGCCCAAGAGCGCCGCACACGGTCACTGGCTGGTCGCCTGGAACGATAACCCCGACGACACCAGCGCCGGGTTCGTTCGTGATCAACACAATGCCGAAACCAGCATCAGCGACTACGACATCAACCTGCCGCAAGTGCTGAACAATGAACTGCGCAAGATCCTGGTAGGTGCCGAAAAGGGCAAGGGCGGCCTGAGCATCCCGGTGGTGGAGGTGCCCGCCAGCCAGGCCCGGGATACCGTGACGCTGTTTCTCTCTGGCGACGGTGGCTGGCGTGACCTGGACCGCGACGTGGCCGATGAAATGGCCAAGGTCGGCTACCCGGTCGTCGGCATCGACACCCTGCGTTACTACTGGCAGCACAAGAGCCCCGAACAGAGCGCCGCCGACCTGACCGAGCTGATGCAGCACTACCGCCAGATCTGGGGCACCAAGCGCTTCATCCTGACCGGCTACTCCTTCGGCGCCGATGTGCTGCCGGCGATCTACAACCGTCTACCGGCGACAGAGCAACAGCGGGTCGATGCAATCATCCTGCTCGCCTTCGCTCGCACCGGCAGCTTCGAAATCGAAGTCGAGGGCTGGCTCGGCAACGCCGGCACCGAAGCCGCCACCGGCCCGGAGATGGCCAAGCTGCCCGCCGAAAAAGTGGTGTGCATCTACGGCGCCGAAGAGGCCAACGAAAGCGGCTGCACCGACAAGACTGCCGTGGGCGAAGTCATCAAGTTGCCGGGCGGCCACCACTTCGATGAAAACTACCCGGCCCTGGCCAAGCGCCTGATCGGCGAGATCGACAAGCGCCAAACCAAGCCTGCCGTGCAGTAA	MMQRSWRYVVAALLVLAVILGGGYWYWNRPAPQPTLEQLEPADGVPMTRIIPGTKPRAQVLVAVNEDQKLSDTQLTTLSRSGSAQIVQVILPKDCMLQGRALQAGLRQLHGPATLVSGIGPGAVLAWRWLAEQKDDNARAVSVDLALEKPGCTHLLPKSAAHGHWLVAWNDNPDDTSAGFVRDQHNAETSISDYDINLPQVLNNELRKILVGAEKGKGGLSIPVVEVPASQARDTVTLFLSGDGGWRDLDRDVADEMAKVGYPVVGIDTLRYYWQHKSPEQSAADLTELMQHYRQIWGTKRFILTGYSFGADVLPAIYNRLPATEQQRVDAIILLAFARTGSFEIEVEGWLGNAGTEAATGPEMAKLPAEKVVCIYGAEEANESGCTDKTAVGEVIKLPGGHHFDENYPALAKRLIGEIDKRQTKPAVQ				NA	NA	NA	NA	NA
D1-36_03951	288			hypothetical protein	ATGGCTTGGAACGTTGTTTACCATCCGGAGGTTCAAGACGATCTGGATCAGTTGGGTGCTGCGGCTGCGAACCGTATCCTTGATGTCATCGAAGAGCGGATCATCAATGGCGAGCCGGACAAGATCGGCAAGCCGCTCAGAGCCAGCCTGGCCGGGTGCCGAAGGATCCGAACGGGTGATACCCGCATTGTTTACAGGGTCGACGGAAAAGCGATTCAGGTGCTGATAGTCGCCGTTGGCGCGCGGCGAGATAAAGAAGTATACGACGCGGCAGAACGTCGCCGTTAA	MAWNVVYHPEVQDDLDQLGAAAANRILDVIEERIINGEPDKIGKPLRASLAGCRRIRTGDTRIVYRVDGKAIQVLIVAVGARRDKEVYDAAERRR	PGPT0027425_656	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-RelE|StbE-RelB|StbD_TOXIN-ANTITOXIN_SYSTEM,PGPT0027425-toxin_relE_2|stbE|pasB-K06218	NA	NA
D1-36_03952	291			hypothetical protein	ATGGCAGCACTACTGGAGCGGGCGGATCAAGCGATATCCGTTACGGCAATGGTCAGGGGGTTCAGCGCGAAGCTCAAGGAAGTATCGAGTCGTGCAACCGAAAGGCTGGTGATCTTCAAGGACAATGAACCCGCAGCGGTGATCATCAACGTCGACGCTTATCAGGAAATGCTCGATGAGCTGGAAAATCTTCGCGTCGAGGCGACGGCTCGTGAACGCTTGATCAATTTCGATCGGGCCAAGGCCGTCAGTCATGAGGATATGCGGGCGCGGTATGCCAAAAACGACTGA	MAALLERADQAISVTAMVRGFSAKLKEVSSRATERLVIFKDNEPAAVIINVDAYQEMLDELENLRVEATARERLINFDRAKAVSHEDMRARYAKND	PGPT0027440_68	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-RelE|StbE-RelB|StbD_TOXIN-ANTITOXIN_SYSTEM,PGPT0027440-antitoxin_stbD-K18923	NA	NA
D1-36_03953	1902	kup		Low affinity potassium transport system protein kup	ATGGGTCATGCAGGTAGTCAGGCGGCGGGCGCCGAGCATTCGGCGGCCAAACCGCTGAGCATGCTGGTCGCGGCGGTCGGGGTGGTTTATGGCGACATTGGCACGAGCCCGCTGTACACCCTTAAAGAAGTGTTTTCCGGTGGTTATGGCGTGCCCGTCAACCATGACGGGGTGCTGGGGATCCTGTCGCTGATTTTCTGGTCTCTCATCTGGGTCGTGTCCATCAAGTACATGATGTTCGTCCTTCGCGCGGACAACCAGGGCGAAGGCGGAATCATGGCCTTGACTGCCCTGGCGCGGCGCGCGGCGGCCGGCAGGGCGCGGCTGCGTACGTTGTTGGTGATCTGCGGTTTGATCGGTGCGGCGCTGTTCTATGGCGACAGCATGATCACCCCGGCGATCTCGGTATTGTCGGCGGTCGAAGGCCTGGGCCTCGCATTCGAAGGCATCGATCACTGGGTGGTGCCGCTATCGGTGGTGGTGCTGGTGGCGTTGTTCCTGATCCAGCGCCACGGCACCGCGCGCATTGGCATCCTCTTTGGTCCGATCATGGTGACCTGGTTCCTCGTCCTCGGCGCCTTGGGCGTGTATGGCATCAGCCAGCACCCGGAAGTATTGAACGCAGTGAACCCGGCCTGGGCCGTGCGTTTCTTTGTCGTCCACCCGGGCATGGGCGTAGCGATCCTTGGCGCGGTGGTGCTGGCGCTGACCGGGGCCGAAGCGCTGTACGCCGACATGGGCCACTTCGGCCGTAAACCCATCGCCCGTGCCTGGTTCATCCTCGTGCTGCCGGGCCTGATGCTCAACTATTTCGGCCAGGGCGCCTTGCTGCTCGGTGATCCTGAAGCGGCGCGCAACCCGTTCTATCTGCTGGCGCCGAGCTGGGCATTGCTGCCCTTGGTGGGCCTGGCGACGCTGGCGACGGTGATTGCCTCGCAAGCGGTGATCTCCGGCGCGTTCTCCCTGACGCGCCAGGCAATCCAGCTCGGCTACATCCCGCGCATGTACATCCAGCACACCTCCAGCGCCGAACAGGGCCAGATCTACATCGGCGCGGTGAACTGGTCTTTGATGGTCGGCGTGGTCTTGCTGGTGCTGGGCTTCGAGTCGTCCGGAGCGCTGGCATCGGCCTACGGCGTGGCGGTGACCGGTACGATGTTGATGACCACGATCCTGGTCTCCGCCGTGATCCTGTTGCTATGGAAATGGCCGCCGCTGCTGGCGGTGCCGGTGCTGTTCGGTTTCTTGCTGGTAGATGGGCTGTACTTCGCCGCCAACGTGCCGAAAATCATCCAGGGCGGCGCATTCCCGGTCATAGCCGGCATCGCCTTGTTCGTATTGATGACCACCTGGAAACGCGGCAAGCAGCTGTTGGTGGAGCGGCTGGACGAAGGGGCGTTGCCGCTGCCGGTCTTCATCAGCAGCATCCGCGTGCAGCCGCCGCACCGGGTCCAGGGCACGGCGGTGTTCCTGACGGCGCGCTCGGATGCGGTGCCCCATGCGCTATTGCACAATCTGCTGCACAACCAGGTGCTGCATGAGCAGGTGGTGTTGCTGACAGTGGTCTACGAAGACATTCCCCGCGTGCCGCCACAACGGCGTTTCGAGGTCGATGCCTATGGCGAGGGCTTCTTCCGGGTGATCCTGCATTTCGGTTTTACCGACGAGCCGGACGTGCCCGAGGCGCTCAAGCTCTGTCATTTGGACGACCTGGATTTCAGTCCGATGCGCACCACCTACTTTCTCAGTCGCGAGACTGTTATCGCCTCCAAGCTGGAGGGCATGGCGCGTTGGCGTGAGTCGTTGTTTGCTTTCATGTTGAAAAATGCCAACGGCAACCTGCGCTTTTTCAATCTGCCGTTGAATCGGGTGATTGAATTGGGGACGCAGGTGGAGATGTAG	MGHAGSQAAGAEHSAAKPLSMLVAAVGVVYGDIGTSPLYTLKEVFSGGYGVPVNHDGVLGILSLIFWSLIWVVSIKYMMFVLRADNQGEGGIMALTALARRAAAGRARLRTLLVICGLIGAALFYGDSMITPAISVLSAVEGLGLAFEGIDHWVVPLSVVVLVALFLIQRHGTARIGILFGPIMVTWFLVLGALGVYGISQHPEVLNAVNPAWAVRFFVVHPGMGVAILGAVVLALTGAEALYADMGHFGRKPIARAWFILVLPGLMLNYFGQGALLLGDPEAARNPFYLLAPSWALLPLVGLATLATVIASQAVISGAFSLTRQAIQLGYIPRMYIQHTSSAEQGQIYIGAVNWSLMVGVVLLVLGFESSGALASAYGVAVTGTMLMTTILVSAVILLLWKWPPLLAVPVLFGFLLVDGLYFAANVPKIIQGGAFPVIAGIALFVLMTTWKRGKQLLVERLDEGALPLPVFISSIRVQPPHRVQGTAVFLTARSDAVPHALLHNLLHNQVLHEQVVLLTVVYEDIPRVPPQRRFEVDAYGEGFFRVILHFGFTDEPDVPEALKLCHLDDLDFSPMRTTYFLSRETVIASKLEGMARWRESLFAFMLKNANGNLRFFNLPLNRVIELGTQVEM	PGPT0002720_3040	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002720-trkD|kup-K03549	NA	NA
D1-36_03954	1341	rimO	COG0621	Ribosomal protein S12 methylthiotransferase RimO	ATGTCCACCACTACCGCGCCAGCCAATCCCAAGGTTGGCTTCGTATCCCTGGGTTGCCCGAAAGCGCTGGTCGACTCCGAGCGCATCCTGACCCAGCTGCGCATGGAAGGTTATGACGTTGTGTCCACCTACCAGGACGCCGACGTGGTGGTGGTCAACACCTGTGGCTTCATCGACTCGGCCAAGGCCGAATCCCTTGAAGTGATCGGCGAAGCCATCAAGGAAAACGGCAAGGTCATCGTGACAGGCTGCATGGGCGTGGAAGAAGGCAATATCCGCGACGTGCACCCGAGCGTGCTGTCCGTGACCGGGCCGCAGCAGTACGAACAAGTGGTCAACGCCGTGCATGAAGTCGTGCCGCCGCGCCAGGACCACAATCCGCTGATCGACCTGGTGCCGCCACAAGGCATCAAGCTGACCCCGCGTCACTACGCCTACCTGAAGATTTCCGAAGGCTGCAACCACAGCTGCAGCTTCTGCATCATCCCCTCGATGCGCGGCAAACTGGTGAGCCGTCCGGTGGGTGACGTGCTCGACGAAGCCCAGCGCCTGGTCAAGGCCGGCGTCAAGGAATTGCTGGTGATTTCCCAGGACACCAGCGCCTACGGCGTCGACGTCAAGTACCGCACCGGCTTCTGGAACGGCGCGCCGGTGAAAACCCGCATGACCGAACTGTGCGAAGCCCTCAGCACCCTCGGTGTCTGGGTCCGCCTGCATTACGTCTACCCGTACCCGCACGTCGACGAGCTGATCCCGCTGATGGCCGCCGGCAAGATCCTGCCGTACCTGGACATCCCGTTCCAGCACGCCAGCCCGAAAGTTCTCAAGGCCATGAAACGCCCGGCTTTCGAAGACAAGACCCTAGCGCGCATCAAGAACTGGCGTGAAATCTGCCCCGAGCTGATCATCCGCTCGACCTTCATCGTCGGCTTCCCGGGGGAAACCGAAGAAGACTTCCAGTACCTGCTGGACTGGCTGACCGAAGCCCAGCTCGACCGCGTCGGCTGCTTCCAGTACTCGCCCGTCGAAGGCGCACCGGCCAACGACCTGAACCTGGACGTGGTGCCGGATGACGTCAAGCAGGACCGTTGGGAGCGCTTCATGGCGCACCAGCAGGCCATCAGCTCGGCGCGCCTGCAAATGCGCATCGGCCGTGAGATCGAAGTGCTGGTGGACGAAGTCAACGAACAAGGTGCCGTCGGCCGCTGCTTCTTCGATGCTCCGGAAATCGACGGCAACGTGTTCATCGACAACGGCAGCAATCTCAAGCCGGGCGACAAGGTCTGGTGCAAGGTCACCGACGCCGACGAGTATGACTTGTGGGCTGAGCAGATCGGTTGA	MSTTTAPANPKVGFVSLGCPKALVDSERILTQLRMEGYDVVSTYQDADVVVVNTCGFIDSAKAESLEVIGEAIKENGKVIVTGCMGVEEGNIRDVHPSVLSVTGPQQYEQVVNAVHEVVPPRQDHNPLIDLVPPQGIKLTPRHYAYLKISEGCNHSCSFCIIPSMRGKLVSRPVGDVLDEAQRLVKAGVKELLVISQDTSAYGVDVKYRTGFWNGAPVKTRMTELCEALSTLGVWVRLHYVYPYPHVDELIPLMAAGKILPYLDIPFQHASPKVLKAMKRPAFEDKTLARIKNWREICPELIIRSTFIVGFPGETEEDFQYLLDWLTEAQLDRVGCFQYSPVEGAPANDLNLDVVPDDVKQDRWERFMAHQQAISSARLQMRIGREIEVLVDEVNEQGAVGRCFFDAPEIDGNVFIDNGSNLKPGDKVWCKVTDADEYDLWAEQIG				NA	NA	NA	NA	NA
D1-36_03955	474	yjaB	COG0454	Peptidyl-lysine N-acetyltransferase YjaB	ATGCGCCAGCATTCGGTCATCCACACACCGAAACCGAGCGATTATCAGGAACTGACCCGGGTCTGGGAGGCATCGGTACGGGCCACCCATGATTTCCTGCCCGACAGTTATATCGAACTGCTCAGAAACCTGGTGCTCACCCGTTACCTGGACGCGGTGATGCTCATCTGCACCCGTGATTCACGCCAGCGCATCACAGGGTTCGCCGGGGTCGCGGCTGGCAAGATCGAAATGCTCTTCATCGACCCCGAGCATCGCGGCCAAGGCCTGGGCAAACAACTGCTGCGCTATGCCATTGAACACCTGAACGCCGATGAACTGGACGTCAACGAACAGAACCCGCAAGCCCTTGGCTTTTATCTCAAGCAAGGGTTCGAAGTTATCGGTCGCTCGGCAAAGGATGGCATGGACCAGCCCTACCCGCTGCTGCATATGCGCTACAAGCAGCCCGATCTGAAAGCGGGGCGCGGCTAA	MRQHSVIHTPKPSDYQELTRVWEASVRATHDFLPDSYIELLRNLVLTRYLDAVMLICTRDSRQRITGFAGVAAGKIEMLFIDPEHRGQGLGKQLLRYAIEHLNADELDVNEQNPQALGFYLKQGFEVIGRSAKDGMDQPYPLLHMRYKQPDLKAGRG	PGPT0003925_21	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
D1-36_03956	711	rluF	COG1187	Dual-specificity RNA pseudouridine synthase RluF	ATGACTGACCCGATTCGTCTCTCCAAGCGTCTCATCGAACTCGTCGGCTGTTCCCGTCGGGAGGCTGAGCTGTTCATCGAGGGCGGCTGGGTCACCGTGGACGGCGAAGTCATCGATGAACCGCAGTTCAAGGTCACCACCCAAAAGGTCGAACTCGACCCCCAAGCCAAGGCCACCGCGCCAGAGCCTGTGACCCTCCTGCTGAACGTCCCGGCTGGCATGGATGTCGACGCGGCAATGGCAACCCTGGGGCCACAGACCTTGAGCGAAGAACATCGCTTCGGCAAGCGCCCGCTCAAGGGCCACTTCCTGCGCCTGACCGCCAGCGCCGATTTGCAGGCTGGCGCCAGCGGCCTTTTGGTATTCACCCAGGACTGGAAGATCCTGCGCAAGCTCACCGCCGACGCGGCCAAGATCGAGCAGGAGTATGTGGCGGAAGTCGAGGGCGAGATGGTCGCCCACGGTCTCAATCGCTTGAACCACGGCCTGACCTACAAAGGCAAGGAATTGCCGGCGGTCAAGGCCAGCTGGCAGAACGAGAACCGCCTGCGCTTCGCCATGAAGAACCCGCAACCGGGCGTTATCGCGCTGTTTTGCCAGGCCGTCGGGCTCAAGGTCGTTGCCATCCGCCGCATCCGCATAGGCGGCGTGTCGATCGGCAAGGTGCCGTTGGGCCAATGGCGCTACCTGTCCGCCAAAGAGAAATTCTAA	MTDPIRLSKRLIELVGCSRREAELFIEGGWVTVDGEVIDEPQFKVTTQKVELDPQAKATAPEPVTLLLNVPAGMDVDAAMATLGPQTLSEEHRFGKRPLKGHFLRLTASADLQAGASGLLVFTQDWKILRKLTADAAKIEQEYVAEVEGEMVAHGLNRLNHGLTYKGKELPAVKASWQNENRLRFAMKNPQPGVIALFCQAVGLKVVAIRRIRIGGVSIGKVPLGQWRYLSAKEKF				NA	NA	NA	NA	NA
D1-36_03957	462			hypothetical protein	ATGATTCACAACGACGTACTGCGCAGCGTGCGCTACATGCTCGACATCAGCGACAAGAAAGTCGTCGAGATCATCAAGCTGGGCGGCTTGGAAATCTCCCTGGAAGATTTGGCCGGCTACCTCAAGAAAGATGAAGAAGAAGGCTTTGTGTTCTGCCCCGACCTGGTCATGGCGCATTTCCTCGACGGGCTGGTGATCTTCAAGCGCGGCAAGGACGAAAGCCGTCCGCCGCAGCCGATCGAAGTGCCGGTCACCAACAACATCATCCTGAAAAAGCTGCGGGTGGCCTTCGAGCTGAAGGAAGACGACATGCACGCCATCCTCAAGGCCGCCGACTTCCCGGTGTCCAAGCCGGAACTGAGCGCATTGTTCCGCAAGTTCGGCCATACCAACTACCGGCCGTGTGGCGACCAGCTGCTGCGCAACTTCCTCAAGGGCCTGACGCTGCGCGTTCGCGGCTAA	MIHNDVLRSVRYMLDISDKKVVEIIKLGGLEISLEDLAGYLKKDEEEGFVFCPDLVMAHFLDGLVIFKRGKDESRPPQPIEVPVTNNIILKKLRVAFELKEDDMHAILKAADFPVSKPELSALFRKFGHTNYRPCGDQLLRNFLKGLTLRVRG				NA	NA	NA	NA	NA
D1-36_03958	699	trmO	COG1720	tRNA (adenine(37)-N6)-methyltransferase	ATGACCTACAACGTCTCCCCCATCGGCTTCGTACGCTCCTGCTTCAAGGAGAAGTTCGCCATTCCGCGCCAACCACAACTGGCCCCGGCCGCGCGCGGTGTGTTGGAGCTGGTGGCGCCATTCGACCAGGGCGAGGCCGTGCAGGGTCTGGAGCAGGTCAGCCATGTCTGGTTGCTGTTCCTGTTCCATCAAGCCCTGGAAGACAAGCCACGATTGAAAGTACGGCCGCCGCGCCTGGGTGGCAATAAATCCATGGGCGTCTTCGCCACCCGAGCCACCCATCGCCCCAACGGCATCGGCCAGTCGGTGGTAAAGCTGGAACGGGTGGAGGCCGCTCGACTGTGGATCTCGGGCATCGACCTGTTGGACGGCACACCCGTGCTCGATATCAAGCCCTACGTCCCCTACGCGGACATCATCGACTTGGCCTCCAACAGGATCGCCAGCGCCGCGCCTGAGTTGATTCCAGTGCAATGGGCGGACTCTGCCCTGCTTCAGGCACGCGACCACGCAAGGCGCCTCGAAGAGCCCTTGGTGGAGCTGATCGAACAATGCCTGGCCCAAGACCCACGTCCGGCGTATCAGGTTCCTACAGCTGAACGGGAATACGGTGCGCGGTTCTGGGATCTGGACGTGCGCTGGCATTACCCGGAGCCGGGGGTGATTCGGGTGTTGGAAGTCGTTCCTACGGCTGGATAA	MTYNVSPIGFVRSCFKEKFAIPRQPQLAPAARGVLELVAPFDQGEAVQGLEQVSHVWLLFLFHQALEDKPRLKVRPPRLGGNKSMGVFATRATHRPNGIGQSVVKLERVEAARLWISGIDLLDGTPVLDIKPYVPYADIIDLASNRIASAAPELIPVQWADSALLQARDHARRLEEPLVELIEQCLAQDPRPAYQVPTAEREYGARFWDLDVRWHYPEPGVIRVLEVVPTAG				NA	NA	NA	NA	NA
D1-36_03959	780	fpr_1	COG1018	Ferredoxin--NADP reductase	ATGAGCAACATGAACCACGAGCGTGTCCTCAGTGTTCATCACTGGAACGACACTCTGTTCAGCTTCAAGTGCACCCGCGATCCGGGCCTGCGCTTCGAGAACGGTCAGTTCGTGATGATCGGCCTGCAGCAGCCCAACGGCCGCCCGCTTATGCGCGCTTACTCGATTGCCAGCCCGAACTGGGAAGAGCATCTGGAATTCTTCAGCATCAAGGTCCCTGATGGTCCGCTGACTTCCCAGTTGCAGCACTTGAAGGAAGGCGACGAGATCATCATCAGCAAGAAGCCCACCGGCACGCTGGTGCTGGACGACCTCAAGCCTGGCAAGCATTTGTACCTGCTCAGCACCGGTACTGGCCTGGCGCCTTTCATGAGCGTCATCCAGGATCCGGAAACCTACGAGCGTTTCGAAAAAGTGATCCTGTGCCACGGCGTGCGTTACGTCAATGAAGTCGCCTATCGCGAATTCATCACCGAGCACCTGCCACAGAACGAGTTCTTCGGTGAAGCGCTACGCGAAAAGCTGATCTACTACCCCACCGTGACCCGCGAGCCGTTCGAGAACGAAGGTCGCCTGACCGACCTGATGCGCAGCGGCAAGTTGTTCCGCGACATCGGCCTGCCGCCGATCAACCCGCAAGACGACCGCGCGATGCTGTGCGGCAGCCCAAGCATGCTCGACGAAACCAGCGAAGTGCTCAACAGCTTCGGCCTGACCGTTTCGCCGCGTATGCGCGAGCCGGGTGATTACCTGATCGAGCGCGCGTTTGTAGAGAAGTAA	MSNMNHERVLSVHHWNDTLFSFKCTRDPGLRFENGQFVMIGLQQPNGRPLMRAYSIASPNWEEHLEFFSIKVPDGPLTSQLQHLKEGDEIIISKKPTGTLVLDDLKPGKHLYLLSTGTGLAPFMSVIQDPETYERFEKVILCHGVRYVNEVAYREFITEHLPQNEFFGEALREKLIYYPTVTREPFENEGRLTDLMRSGKLFRDIGLPPINPQDDRAMLCGSPSMLDETSEVLNSFGLTVSPRMREPGDYLIERAFVEK	PGPT0013215_2511	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013215-fpr-K00528	NA	NA
D1-36_03960	987	cmpR_4		HTH-type transcriptional activator CmpR	ATGGCGGCGACAATATCTGTTAAATGGATTATTAAGATAAGGGTTATCGGTTATATCGATATGCGATTTACTCTACGGCAACTTCAAGTCTTCGTCGCTGTCGCCCAGCAGGAAAGCGTGTCCCGTGCCGCGGGCTTGCTCAATCTGTCGCAGTCGGCCGCCAGCACTTCCATCACTGAATTGGAGCGTCAATCCAGCTGCCAACTGTTCGACCGCGCCGGCAAGCGCCTGAGCCTCAACGCCTTGGGTAAGCAATTGCTGCCCCAGGCCGTGGCATTGCTGGACCAGGCCAAAGAGATCGAAGACCTACTCAACGGCAAGTCCGGCTTCGGTTCGCTGGCGGTCGGGGCCACGCTGACCATCGGCAATTACCTGGCGACGCTGCTGATCGGCGGATTCATGCAGCGCCATCCGGAAAGCCAGGTGAAGCTGCACGTGCAAAACACTGCCAATATCGTGCACCAGGTCGCCCATTACGAAATTGATCTGGGTCTAATCGAAGGCGATTGCAGCCATCCGGACATTGAGGTGCAGAGCTGGGTCGAGGATGAATTGGTGGTGTTCTGCGCGCCCCAGCATCCACTGGCCAAGCGTGGTCAGGCGACCATGGAGGAATTGACCCATGAAGCGTGGATTTTGCGGGAGCAGGGTTCAGGTACGCGGCTGACCTTCGATCAGGCCATGCGCCACCACCGCAGCGCGCTGAACATTCGCCTGGAATTGGAACACACCGAAGCGATCAAGCGAGCAGTGGAATCGGGCCTGGGCATTGGCTGCATTTCGCGCCTGGCCTTACGTGATGCTTTCCGTCGCGGCAGCCTCGTGGCCGTGGAAACCCCGGACATGGACCTGGCGCGGCAGTTTTATTTCATCTGGCACAAACAGAAGTACCAGACCTCAGCCATGCGTGAATTCCTCGACCTCTGCCGGGCCTTCACCGCTGGGGTCCAGCGCAGCGACGAGATCGTCCTGCCTGCCATCGCTTGA	MAATISVKWIIKIRVIGYIDMRFTLRQLQVFVAVAQQESVSRAAGLLNLSQSAASTSITELERQSSCQLFDRAGKRLSLNALGKQLLPQAVALLDQAKEIEDLLNGKSGFGSLAVGATLTIGNYLATLLIGGFMQRHPESQVKLHVQNTANIVHQVAHYEIDLGLIEGDCSHPDIEVQSWVEDELVVFCAPQHPLAKRGQATMEELTHEAWILREQGSGTRLTFDQAMRHHRSALNIRLELEHTEAIKRAVESGLGIGCISRLALRDAFRRGSLVAVETPDMDLARQFYFIWHKQKYQTSAMREFLDLCRAFTAGVQRSDEIVLPAIA				NA	NA	NA	NA	NA
D1-36_03961	363	dgkA	COG0818	Diacylglycerol kinase	ATGTCTCCTTTCAAAGGCCAAACCGGCCTGAAACGCATCCTCAATGCCTCCGGCTATTCCCTGGACGGGCTGCGTGCAGCTTTCGTCGGCGAAGCGGCGTTCCGTCAACTGGTCCTGCTTAACGTCATCCTGATTCCGTTGTCGTTTTTCCTGAACGTGAGTCGCGTGGAGCAGGCGCTGTTGATAGCGGTGTGCCTGCTGGCCTTGATCGTGGAGTTGCTCAACTCGGCGGTAGAGGCGGCAATCGACCGTATTTCCCTTGAGCTGCACCCCTTGTCGAAAAACGCCAAGGACATGGGCAGCGCGGCCCAACTTGTCGCCCTGACGATGATTGCCCTGGTCTGGGGCCTGGTGCTGCTCTGA	MSPFKGQTGLKRILNASGYSLDGLRAAFVGEAAFRQLVLLNVILIPLSFFLNVSRVEQALLIAVCLLALIVELLNSAVEAAIDRISLELHPLSKNAKDMGSAAQLVALTMIALVWGLVLL	PGPT0024340_4724	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0024340-dgkA|DGK-K00901	NA	NA
D1-36_03962	654	lnrK	COG2197	Transcriptional regulatory protein LnrK	ATGGCCACATACGAAATCCTGATTGCCGATGACCACCCGCTCTTTCGCAGCGCGTTGCATCAGGCGGTGACCCTGGGCCTTGGTTCGGATGTCCGGTTGACGGAGGTGGCCAGCATCGCGGAGCTGGAAGCCCGATTGGCGGAAAAGGCTGATTGGGACCTGGTGCTGCTGGATCTGAACATGCCCGGCGCGTATGGTTTTTCAGGGCTGGTCCTGTTGCGTGGGCAGTATCCGCAGATTCCCGTGGTGATGGTCTCAGCCCAGGAAGAAGCTTCGGTGATGGTCAAGGCCCGCGAATTTGGTGCCAGCGGGTTCATCCCCAAATCCAGCTCCCTCGAAATGATTCAACGGGCGGTTAAGGCCGTCCTCAGCGGTGATGTATCCTGGCCGCCGCAGGCGTTCGAGGCGGTGAGCGTGTCCGACGAGGCCAAGGCGGCCAGCGAAGGGCTCGCGAGCCTGACGCCCCAGCAGTTCAGAGTGCTGACCATGGTTTGTGAAGGTCTGTTGAACAAGCAGATCGCTTACGAACTGAATGTGTCAGAGGCCACCATCAAGGCTCATGTTACGGCGATCTTTCGTAAATTGAATGTGCGCACCCGGACCCAGGCTGCCTTGTTGTTGCAACAACTTGAGTCAATTTCGCCGCAGTCGTAG	MATYEILIADDHPLFRSALHQAVTLGLGSDVRLTEVASIAELEARLAEKADWDLVLLDLNMPGAYGFSGLVLLRGQYPQIPVVMVSAQEEASVMVKAREFGASGFIPKSSSLEMIQRAVKAVLSGDVSWPPQAFEAVSVSDEAKAASEGLASLTPQQFRVLTMVCEGLLNKQIAYELNVSEATIKAHVTAIFRKLNVRTRTQAALLLQQLESISPQS				NA	NA	NA	NA	NA
D1-36_03963	744			hypothetical protein	ATGAGCTGTGCTTCCAACGCCGTAGCCCGCTTGCGCGACCAACGCGCCGATGAAGGCATCAAGCCGCTCCAGGCCCGAGGGTGGCGCGCGCCCCGTTGTGGCGCCTGTCGAGTGATCGAGAGCCATTGCTTGTGTGCCTGGCGTCCGAGCGTCGAGACCCGTTCCGGCGTCTGCCTGATCATGACCAATAAGGAAGTCTTCAAGCCGAGCAACACGGGCTGGCTGATCGCCGATGTGGTACGGGATAACCATGCCTTCATCTGGTCGCGCACTGATGTCGATGAGCAACTCCTGGCTTTGTTGAACGATCCACAATGGCAACCGTACCTGGTATTTCCAGGTGAGTATGTCGAACCCTCCCGGGTAACCCACACGGTTGATCTGGCTCGGGGCAAGCGTCCCTTGTTCATCTTGCTGGATGCCACTTGGACGGAAGCGCGCAAGATGTTCCGTAAAAGTCCTTACTTTGACCGGCTGCCCATCTTGAGCCTGCTGCCCGACAGGCTGTCGCGCTATCGCTTGCGGCGCTCCACACGCAGTGAGCACCTGTGCACCGCCGAGGTCGCGGCGCTGTGCCTTGAGCTGGCGGGCGATAGCGACGCGGCGTCGGCCCTGGACGCCTATTTCGATGTGTTCAGCCAGCATTACCTGGGTGCCAAGCGTCAGCAGGAAGTGAACGTGTCGACTCCGGCCCATGCCGAACTGCTGCCCTTTGTCCGCTCGGCTCAGGCGGCGTTGGCCTAA	MSCASNAVARLRDQRADEGIKPLQARGWRAPRCGACRVIESHCLCAWRPSVETRSGVCLIMTNKEVFKPSNTGWLIADVVRDNHAFIWSRTDVDEQLLALLNDPQWQPYLVFPGEYVEPSRVTHTVDLARGKRPLFILLDATWTEARKMFRKSPYFDRLPILSLLPDRLSRYRLRRSTRSEHLCTAEVAALCLELAGDSDAASALDAYFDVFSQHYLGAKRQQEVNVSTPAHAELLPFVRSAQAALA				NA	NA	NA	NA	NA
D1-36_03964	423			hypothetical protein	ATGCTGCGCCTTATCGTTCCAACCGTTGCCGTTCTGCTGGCGACGTCCATCAGCGCTCAGGCTGCGTCGCTGAAAGAACTCGAACTGAACAAGATGCTGCAGAACGTTGCCAAGCAAAGCAGTGTCGGCACGCCGCGCGCGATCAACGAAGACATTCTTGACCAGGGCTACACCGTCGAAGGCACCGAGCTGATCAACCATCTCAGCGTCCAAAGCAGCCATGCGCAAAAAATGCGCGCGGATCCCAAGGCGGTTTATTTCCAGCTGGGCTCCACGGTGTGCACCAATCCAGGGTTCCGCAAACTGATGGCCAAGGGCGCGACCATGCGCTACGAGTTCACCGAAGTGAAGACCAACCGTCCGGTCGCCAGCGAACGTTTCCAGGAATCGGATTGCCCGAAACCGGCCAAGACCAAGAAATAA	MLRLIVPTVAVLLATSISAQAASLKELELNKMLQNVAKQSSVGTPRAINEDILDQGYTVEGTELINHLSVQSSHAQKMRADPKAVYFQLGSTVCTNPGFRKLMAKGATMRYEFTEVKTNRPVASERFQESDCPKPAKTKK				NA	NA	NA	NA	NA
D1-36_03965	195			hypothetical protein	ATGACCAGGGTAACGCTGGAGCTCGAAGGGCAGTTGTATTTGATGTTGTTGGAAGCGGCTCAAGCCAATCGGGTAAGCCTGGAAGAGGAATGTTGCCGTCGGCTGGAAGGTCGGGAATGGCGCTCACGCTATTTGCAGGCGCTGGTGGCGGAACTGCGCGCCGACGAAGAGCAGCGGCGCGCGCGCGCGGGTTGA	MTRVTLELEGQLYLMLLEAAQANRVSLEEECCRRLEGREWRSRYLQALVAELRADEEQRRARAG				NA	NA	NA	NA	NA
D1-36_03966	1119			hypothetical protein	ATGCCTTACAAACCGAATGACCTGCTCAGCCGTCATTTTGAGAGCCATGGCCACGACCTCACCCGCAAGGTCGAAGAGCAACTCAACCTGGTATCGCCCAACAGCCCCAACCTCCCCATCTACCGCGACATGATCCTGACCGTGCTGCGCATGGCCCAGGAAGATCACAACCGCTGGAATGCCAAGATCACGCTTCAGGCCCTTCGGGAACTGGAACATGCGTTTCGAACGCTGGAACAATTCAAAGGGCGCCGCAAGGTTACGGTCTTCGGCTCGGCCCGAACGCCCATCGAACACCCTTTGTATGGCTTGGCACGGGAGCTGGGAGCGGCGCTGGCTCGGTCAGACATGATGGTGATCACCGGCGCAGGCGGCGGGATCATGGCCGCGGCCCATGAAGGCGCGGGCCGCGAGCACAGCCTGGGATTCAACATCACCCTGCCCTTCGAGCAGCATGCGAACCCGACCGTCGAAGGGACGCAGAACCTGTTGCCGTTCCATTTCTTCTTCACTCGCAAGCTTTTTTTCGTCAAGGAAGCCGATGCCTTGGTGCTGTGCCCCGGCGGTTTCGGCACTCTTGACGAAGCATTGGAGGTCCTGACTCTGGTGCAGACGGGCAAAAGCCCATTGGTACCGGTGGTATTGCTGGACGTGCCCGGAGGCAAGTTCTGGCAGAGCGCCCTGGACTTTATCCGCGAACAATTGGAGGAAAACCGCTACATCCTGCCGACCGACATGAAGTTGATGCGCCTGGTGTACTGCGCCGAGGACGCTGTGGGGGAAATCAACCAGTTCTACCGTAACTTCCATTCCAGCCGCTGGCTCAAGCATCAGTTCGTGATCCGCATGAATCACGAACTCAGTGAACAAGCACTGCAACAAATGCAGGCCGAGTTCGCCGACCTGTGCCTGAATGACTGTTTCCATCAGCACGCTTACAACGGCGAAGAACCCGAGGAAGCGCCCTTCAGTCATCTGACGCGATTGGCATTTACGTTCAACGCCCGTGACCACGGTCGCTTAAGGGAATTGGTGGACTACATCAACCTGCCGGAAAACTGGGCCCAACCCACCGCCAAGGCCCACCCCCTGACTTGGGAGCCGATCAAGGTAACGTGA	MPYKPNDLLSRHFESHGHDLTRKVEEQLNLVSPNSPNLPIYRDMILTVLRMAQEDHNRWNAKITLQALRELEHAFRTLEQFKGRRKVTVFGSARTPIEHPLYGLARELGAALARSDMMVITGAGGGIMAAAHEGAGREHSLGFNITLPFEQHANPTVEGTQNLLPFHFFFTRKLFFVKEADALVLCPGGFGTLDEALEVLTLVQTGKSPLVPVVLLDVPGGKFWQSALDFIREQLEENRYILPTDMKLMRLVYCAEDAVGEINQFYRNFHSSRWLKHQFVIRMNHELSEQALQQMQAEFADLCLNDCFHQHAYNGEEPEEAPFSHLTRLAFTFNARDHGRLRELVDYINLPENWAQPTAKAHPLTWEPIKVT				NA	NA	NA	NA	NA
D1-36_03967	423	recX	COG2137	Regulatory protein RecX	ATGGACCTGCTCGCCAGGCGCGAGCACGGTCGTGTGGAGCTGACGCGTAAACTGCGTCAACGCGGGGCTCATGATGAGTTGATCGACGCCGCTCTTGACCGTTTGACGGAAGAGGGGCTGTTATCGGAAGCGCGGTACCTCGAGAGCTTCGTCTCTTATCGCGCCCGCTCCGGCTACGGTCCAATGCGCATTCGTGAAGAGCTTGGCCAACGCGGGTTGCAACGAGCGGATATCGAATCAGCCTTGCGCGAGAGCGGTATCGATTGGCAGCAACAGTTAGCCGAGACCTGGCGCCGCAAGTTTTCGGGACATTTGCCTATCGACATTCGGGAGCGTGCCAAGCAAGGGCGTTTCCTGGCGTATCGAGGCTATTCCATGGAAATGATCAACCGCTTGTTCAGTGGTCGCAGCATGGACGACTAA	MDLLARREHGRVELTRKLRQRGAHDELIDAALDRLTEEGLLSEARYLESFVSYRARSGYGPMRIREELGQRGLQRADIESALRESGIDWQQQLAETWRRKFSGHLPIDIRERAKQGRFLAYRGYSMEMINRLFSGRSMDD	PGPT0007240_3111	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-CYTOKININ_METABOLISM	PHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007240-recX-K03565	NA	NA
D1-36_03968	1053	recA	COG0468	Protein RecA	ATGGACGACAACAAGAAGAAAGCCTTGGCTGCGGCCTTGGGTCAGATCGAACGTCAATTCGGCAAGGGTGCCGTAATGCGTATGGGCGATCAGGACCGCCAGGCTATTCCCTCCATCTCCACCGGCTCCCTGGGCCTGGACATCGCGCTTGGCATCGGCGGCTTGCCAAAAGGTCGTATTGTTGAAATCTACGGTCCCGAATCTTCCGGTAAGACCACGCTGACGCTGTCCGTGATCGCCCAGGCTCAAAAAGCGGGCGCTACCTGCGCCTTCGTCGACGCCGAACACGCCTTGGACCCGGAATATGCCGGCAAGCTGGGCGTCAACGTCGATGACCTGCTGGTCTCCCAACCGGACACCGGCGAGCAGGCCTTGGAGATCACCGACATGCTGGTGCGCTCCAACGCAGTTGACGTGATCATCGTCGACTCCGTGGCGGCCCTGGTACCGAAAGCGGAAATCGAAGGTGAGATGGGCGACACGCACGTGGGTCTGCAGGCTCGCCTGATGTCCCAGGCCTTGCGCAAGATCACCGGTAACATCAAGAACGCCAACTGCCTGGTGATCTTCATCAACCAGATCCGCATGAAGATCGGCGTGATGTTCGGCAGCCCTGAAACCACCACCGGTGGTAACGCGTTGAAGTTCTACGCCTCGGTTCGCCTGGACATCCGTCGTACTGGCGCGGTGAAAGAAGGTGATGAGGTTGTCGGCAGCGAAACCCGCGTCAAGGTTGTGAAGAACAAGGTGGCATCGCCGTTCCGTCAGGCTGAGTTCCAGATCCTGTACGGCAAGGGTATCTACCTCAACGGCGAAATGATCGATCTGGGTGTGCTGCACGGTTTCGTCGAGAAGTCGGGCGCCTGGTATGCCTACAACGGCACCAAGATCGGTCAGGGCAAGGCCAACTCGGCCAAATTCCTGGCGGACAACCCGGAAGTCGCGGCAGCCCTCGAGAAGCAACTGCGTGACAAGCTGTTGAGCCCGGTGGCGGACGTCAAAGCCGTGGCCAACCGCGAGACTGCCGACGACCTGGCCGACGCTGATATCTGA	MDDNKKKALAAALGQIERQFGKGAVMRMGDQDRQAIPSISTGSLGLDIALGIGGLPKGRIVEIYGPESSGKTTLTLSVIAQAQKAGATCAFVDAEHALDPEYAGKLGVNVDDLLVSQPDTGEQALEITDMLVRSNAVDVIIVDSVAALVPKAEIEGEMGDTHVGLQARLMSQALRKITGNIKNANCLVIFINQIRMKIGVMFGSPETTTGGNALKFYASVRLDIRRTGAVKEGDEVVGSETRVKVVKNKVASPFRQAEFQILYGKGIYLNGEMIDLGVLHGFVEKSGAWYAYNGTKIGQGKANSAKFLADNPEVAAALEKQLRDKLLSPVADVKAVANRETADDLADADI	PGPT0007235_2939	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0007235-recA-K03553	NA	NA
D1-36_03969	501	pncC	COG1546	Nicotinamide-nucleotide amidohydrolase PncC	GTGGACGACATCACTGAACTGGCCGCTGAATTGGGTAGGCGCTTGCAGGTGCTAAATGCCCATGTCACCACGGCCGAGTCTTGCACCGGCGGGGGGATCGCCGAGGCAATCACTCGGATTCCGGGGAGCTCGGCCTGGTTCGAGGCCGGTTTTGTCACGTATTCCAATCGCCAGAAAACCCAGCAGTTGGGTGTTCCCGCAGAGCTGTTCGACAAAGTCGGCGCGGTCAGTCGCGAGGTGGTGGAGGCCATGGTGCGCGGCGCCCAGCAGAAAAGCCTGGCGCGGTTTGCCGTGGCGGTCAGCGGCGTGGCCGGGCCGGACGGGGGCTCGCCGAGCAAGCCGGTGGGCACGGTGTGGCTTGCCTGGGGTGTTGGCGAGGCGGTGTACAGCGAGCAGAAATTCTTACCTGGCAACCGCGACGAGGTCCGCCGACAAACGGTGAAGGCCGCGCTAGACGGGCTGTTACAACATGCCGCCGCAGAAATCTCAAATCAGGGGTAG	MDDITELAAELGRRLQVLNAHVTTAESCTGGGIAEAITRIPGSSAWFEAGFVTYSNRQKTQQLGVPAELFDKVGAVSREVVEAMVRGAQQKSLARFAVAVSGVAGPDGGSPSKPVGTVWLAWGVGEAVYSEQKFLPGNRDEVRRQTVKAALDGLLQHAAAEISNQG	PGPT0013460_1682	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013460-pncC2-K03743	NA	NA
D1-36_03970	516			hypothetical protein	ATGAATCCGGCGCTGTTGAGGTTCTTTCCCATCACAGTATTGGGGCTTTTACTGCTGGCGACCAGCATGGCATGGAAGGTCCAGGATTGGCGTTACGGCAGGGTCTTGGCCGAGCAAGCGCGGGCGCAGGCCGAGACCTTAAAGCAGATGACCGCGGCAGCTGCGGCTTCCCAGCATAAGGAAACACAGAAACGCCTCGCCCTGGAACAACAACTCTCCACCAGCGAACAAACCCATTACCGAGCCCTGAGCGATGCCCAACGTGATCAGGATCGCCTGCGCGATCGCCTTGCTACTGCCAATGTCCGGCTGTCAGTCCTCCTCGACGCCGACGATGTCGCCGCCGGTTGTACAGTGCCTGCCACCACCGGCACCGGCGGCGTGGATCATGGCGCCTCACGCGCCCGACTTGACCCGGCGCATGCTCAACGAATTATCGCCATCACCGACGCGGGCGACCGTGGACTGATTGCCTTGCAGGCCTGCCAGGCGTATGTCAGGGCGCTGGGCCGGTAA	MNPALLRFFPITVLGLLLLATSMAWKVQDWRYGRVLAEQARAQAETLKQMTAAAAASQHKETQKRLALEQQLSTSEQTHYRALSDAQRDQDRLRDRLATANVRLSVLLDADDVAAGCTVPATTGTGGVDHGASRARLDPAHAQRIIAITDAGDRGLIALQACQAYVRALGR				NA	NA	NA	NA	NA
D1-36_03971	546			hypothetical protein	ATGTTCATCACCCCAGCCCAACTACTGCGTATCCTCCCAAACGCCGGCGACAATGCCGGCGTTTTTGCACCTCTCCTAGGCACTGCCATGGAGCTTTACCAGATCATCGGCCCCAAGCGTGCCGCCGCATTCATTGCGCAGGTGGGGCACGAGTCCGGCCAGCTGCGGCACGTACGGGAGCTAGGCAACGATGTTTATTTATCAAAGTATGACACTGGCCGATTGGCTTCGTGCCTGGGCAACTCCCCCGAAGCCGATGGCGACGGGCAAAAATACCGTGGGCGAGGTCTGATCCAGATCACCGGGCGGGCTAATTACCAGGCCTGCGGTAAAGCCTTGAGTCTGGATCTGATGGAGCAGCCTGCATTGCTGGAGCTGCCGCGATGGGCCGCGCTTTCGGCTGCGTGGTTCTGGGCGTCGCATGGGCTTAATTCTCTCGCTGATGCTGGTCGATTCGACGCCATCACGCAGCGGATCAATGGCGGCCAGAATGGCGCGGCGCAGCGGCGGGCCTTGCATGGGCGGGCGTTGCAGGTGTTGGGATGA	MFITPAQLLRILPNAGDNAGVFAPLLGTAMELYQIIGPKRAAAFIAQVGHESGQLRHVRELGNDVYLSKYDTGRLASCLGNSPEADGDGQKYRGRGLIQITGRANYQACGKALSLDLMEQPALLELPRWAALSAAWFWASHGLNSLADAGRFDAITQRINGGQNGAAQRRALHGRALQVLG	PGPT0012140_671	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	FUNGICIDAL_COMPOUNDS|ANTIBIOTICS	FUNGICIDAL-CHITINOLYTIC_ACTIVITIES,PGPT0012140-putative_chitinase-K03791	NA	NA
D1-36_03972	813			hypothetical protein	ATGAGCAGGCGAAGTAGTTTTGAGAAATCGCTCATTACGGAGTCATCGTTTACACCGTTTGAAAACATGAGCTTTAGCGAATGTAGGAATGTAAAAAGTGGACCGGTTTTCATCATCGCCTCGGGCAACTCAGCGAAGGGCTTTCCGCTGGAGGAGTTTTCAGCCGTACCCATGATTACCATGAACGGCGCTATATCCATGTTCAGCCAAGCGCATACAAAACCCTTTTTTTACATCTGCTCCGATACCCACTTCCCGCTCCAGCAGCCCGATCTTTTTGCAACCGCTATGCGGCTCAGTGAGAACGTTGCCTTATGGGAGGACCAGTTCGACATCGTCCAAGCTAAGCCAAGCGGGCGAGCCTTCGGCTTGAAAAAAGCTCCCAGGGCCTCGATCTGCTCTACGTTATTCAACCCGCAGAAGTCTCTCGTCAGGTACAGATCTCTTTTTAGCAAGCGAAGCAAAGACATCGGCTTCAGCAAAAATATGACCCTCGGTTGCTTCGATGCCAGGACGGTGATGTATTTGGCCTTACAGGTCGCCTACCATCTGGGCTTCAATAGGGTTTTCCTTGTAGGTTTCGACTTGGACCAAGCGGCCGGCCGATTCTATGAAACGGTCGAAAGCAAACGCTCGCCCTGCGGGTTGGATCAGCATTACAAGACTCGCATCCTGCCTTCTCTAAAACTGATGTCCAAGCAGATCATTGATGATGATTTTCAGGTGTATAACTTGTCCGCGACCTCAAGGGTGCCGGCAGATATCATCAAAAAAATCAGTCTCGACGACGCACGGCGAATGCTACGTAACTGA	MSRRSSFEKSLITESSFTPFENMSFSECRNVKSGPVFIIASGNSAKGFPLEEFSAVPMITMNGAISMFSQAHTKPFFYICSDTHFPLQQPDLFATAMRLSENVALWEDQFDIVQAKPSGRAFGLKKAPRASICSTLFNPQKSLVRYRSLFSKRSKDIGFSKNMTLGCFDARTVMYLALQVAYHLGFNRVFLVGFDLDQAAGRFYETVESKRSPCGLDQHYKTRILPSLKLMSKQIIDDDFQVYNLSATSRVPADIIKKISLDDARRMLRN				NA	NA	NA	NA	NA
D1-36_03973	1017			hypothetical protein	ATGTCATTGGGTTTCACGCCTGCGGTGGAAATTTATGGTGCGAACGCCGCGCTGCTCAACGAACGCCTGCTCGGTTGGAGCCACGTCGACGCGGCGGGGATCGAGTCCGATCAATTGACGCTCACCATCAGCCTGGACGGACTCGAAGGGTTGCCAAGCCTGGGCGGGAAAATCGGCCTGCGGGTCGGTTATCTTGAATCGGGGCTGGTGGACAAAGGCGAGTTTGTCATCACTCGGCGCACGCCGTTGCTGTTTCCTCTGCAACTCGTTCTGGTGGCCATGGCGGCGCCGTTCAGCGCGGCTGACCAGACGGGCTTCAAGCAGCGCCGATCCATCAGCCATGGCCCGACGACCCTGGGGGCGTTGTTTCGGGAGCTGACGTCCAGGCACGGGTTCTCGCCCCGTGTGGCGCCGGAGCTTTCGCTGATTAAAATCGAGCACATTGACCAAACCAACGAAACCGACATGGGCTTGCTGACCCGCCTGGCCCATCGTTATGACGCTGTGGCCAAACCAGTCAACGAGTTGTATGTGCTGGCCCGGCGCGGTCAGGCGAAGTCGTTGTCGGGCAAGGTCCTGCCCGAGATAAGGCTGTCGGTGACGACGAACAATCGCCCGGGCGACCACGCTTTCATTTCGGCCAAGCTGGATGAAACCGCGCGGGCGAAGTACGAGGGTTGCAAGACCTGTTGGTGGGATGCGGCGGCGGGCAAGCTGCGGGTCGAGGAGAGCGGCATCGCGCCGTTCAAGACCCTGCGCCAGCGCTTCCAGAGCGCAGAAGAGGCCCGCGCCGCCGGCGAAGGCGAGGTGCGCCGGATGCTGCGCGAGGCCCTCAAGGTGACGATCGAATGCCCGGGTAACCCGGCGCTGTCCGCCGAGGGCATCGTGCTGCTCGATCCTTCCTGGCCCGATTTCATGCGCGGTCGCTGGTCGATCGACAAGGTCACCGCCAGCGGTAGCCGGGAGAAAAGCTACCGCTGCAGCGTTGAGGCGACTTGCCTGGATGCAAGAGCGTGA	MSLGFTPAVEIYGANAALLNERLLGWSHVDAAGIESDQLTLTISLDGLEGLPSLGGKIGLRVGYLESGLVDKGEFVITRRTPLLFPLQLVLVAMAAPFSAADQTGFKQRRSISHGPTTLGALFRELTSRHGFSPRVAPELSLIKIEHIDQTNETDMGLLTRLAHRYDAVAKPVNELYVLARRGQAKSLSGKVLPEIRLSVTTNNRPGDHAFISAKLDETARAKYEGCKTCWWDAAAGKLRVEESGIAPFKTLRQRFQSAEEARAAGEGEVRRMLREALKVTIECPGNPALSAEGIVLLDPSWPDFMRGRWSIDKVTASGSREKSYRCSVEATCLDARA				NA	NA	NA	NA	NA
D1-36_03974	213			hypothetical protein	ATGCGTAGGGTTCGAAGTATCGCCGGTGATTCGGTGAATCTGTTGCTGTACCGCGAGCTTGAGCGCTGTGACGACCTCGTTGAGGAGGCGCTCTGGCTGCTAAATCCGGGGTTGGCGCAATGGGGCCCGGTATTGCCGGCGGGCGTATGGATTGTCCTGCCGGAAGTGGATCTCAAGCCCGTGGCGATCCCTCCGGTTTCGGCCTGGGATTAA	MRRVRSIAGDSVNLLLYRELERCDDLVEEALWLLNPGLAQWGPVLPAGVWIVLPEVDLKPVAIPPVSAWD				NA	NA	NA	NA	NA
D1-36_03975	384			hypothetical protein	ATGCGTCAACAAATGGCGTTGGGCAATTTCATTTTCGGCCTCTCCCGCAACTTCGCTTATCACTCGCTGGTTCGCACCTCGGACGGTGGCTGGAAAAACATCGACATCCTCACCAGCAAACCCAGGTCCAGTCAGGTCGGGCAAGGCTTGCAAGGGCTGACGATCACCGGCAAATCGATGTACGCGACCGCCATGGATCGCCTCGATGAATTGCGAGCGCTGCAAGCCTTGCGCATCCCTTTGCCATTGGTCGATGGCATCGGTCGCAACTGGGGGCTGTGGCAGATCAACAAGGTGTCGGAGACCCAGACCGAGGTCATCGACGATGGCACGGCGATGGTGGTCGGTTGGGTGATTGATTTGACGGAGTTCGCCAATGCGTAG	MRQQMALGNFIFGLSRNFAYHSLVRTSDGGWKNIDILTSKPRSSQVGQGLQGLTITGKSMYATAMDRLDELRALQALRIPLPLVDGIGRNWGLWQINKVSETQTEVIDDGTAMVVGWVIDLTEFANA				NA	NA	NA	NA	NA
D1-36_03976	2040			hypothetical protein	ATGGCGGACGATAGATATTCGCTCAGATACGCAGCCTTCAACGAGAGTGGGTTGGCGGCCTCAAATACGAACCCTGCGAGCAGTGTGATCATCTCCGCTGGGGATCGGCTGCCAGGACTGAGCCTCGCGATGGAAAACCTTGGGCTCAAGCTCGGCCGACTGACCACGGCAATCGAGTCGCTGACCGTCAAGGTTTCGGCGCAGCGATTGTTTTCCCAGGCAATGGGAACCGGCGCCAAGGGCGAGACAGCCAAGGAACCGAAGGGTCAGCCGGCCGGCGGTATTGAGCCACCAGAACTGCTGAAACCCGCGATAGCGATGGATTCAGCCATTGCCGATCTGAAGCTGGCCACCCAATTCAGCCCTCGCCAGATTGCCGAGATGGCTGAGCCCACCCAGCGCATCGCCAGCGCGCCATTAGTGGCGGCGGGCGGGACCACGGCGGTTGATGTCGTGAGGATGGAAAGCCTGGCGGCCAGGGCGGGAATCAGCAGCGATCTGCCCAATGCCTCGGACCGGCAATTGGCACTGTTGCGCTTTGCCAGTGATGCAGGCGTGACGGCATCCACATTCAAGATGCCGGCCATGGAAGCCGCCGAGATGCTGCTCGGCTGGCGCACCGCCATGAAACTCAGCGCTGAAAAAGCGTTTGACCTGGCGGATGCAACCAACCACCTCGGCAAGCTCCCCGGCGGTGCGAAAGCCAGTGAGATCGGTACCGTGTTGCAGCGTGACGGTGCGGCCGCGACCTCGGCGGGTTTGCAACCAGCGCAAGCCGCAGCGTTGACGGCGGCGTTGCTCAACACCGGTTCGCAACAAGCTGAAGCCGGCGCCGCGCTGGATAGCTTCGCGAAGGCTTTGGGCAAGGGCAATCAGGCCTCCGCGACCGAGCAGGCAGCCTGGAAGCAGTTGCGGCTTGACCCTGAGGAAGTGGCGAGTGGGCTGCGTGACAAAGACGCAGCGCCCGGTACGGTGATGTCGGTATTGGCGGCCTTGAATGCGCAGCCGGTGGACCAGCGCCCGAACCTCGCCGCTTCGCTGTTTGGCGTGGGCGACCAAGCGGTGCTACGCATGGCGCAGAAGCTTGACGATGTGAACGCAGCGTTCTGGCAGGTGAAAGACCCGGCCCACTACGCCACGTCGCTATTGGGTGACAAGGGCTCGGTGCGGCAGGATGCGTTGGCGTTGTCGAACACCCAGCAAGGTCGGTGGAACGTCTTCAATGCCAGCAATGAGCGTTTGTCGGCGGCCGCTGGCAATGCCGTGACACCCGTTGTGGACAGCTCGCTGCAATGGCTCGGGTCGTTGAACGATGACATGAGCGAGTTGGCCGAAACCTCACCTAAAGCCGCCGCCGCCATTGTGCTGGTCGGCGCGGCGATCAAGCCGCTGGTGGGGGCGTTGCTCAAGGCCCTCACGGATGAATTGGGCAGTCGAGCTGCCAAGCGAATTTTGGAGCCGACGAGCGCTGCGAAGGCCGAGGGTGGTGTGAGCGGCGGCCGCTCCCTGCAAGGCGTGACCAGTTCATTGCGTACGGTGACTCGTTTAATGCCCAAAGCGATGGTTTTAGGTGCCGCCGCTGAGGTCGTCGAGGGCGCGATCAATGGGGACGGCGGAATGATCGGAGAGGGCCTGGGGGCCGCTGGCGGCGGCTGGGCGGGCGCGTCGGCAGGCGCTGCGATTGGCACCTTTTTCGGTCCGGGCATCGGCACCGTCCTCGGTGGAGCGATCGGCGCGCTTGTTGGCGGCCTGACGGGAAGCTCGATGGGCAGGGAGGCGGGGTCCTGGCTGGGTGACAAACTCGCCACGCCCGCCGACAGGCTCGCCGCCCCAGAGCAGGTCAGCAAAGACCTGCACGGCACCCAGGCAACCACCCAGCAAAACACCCTGACCGCAAACATCTACATCAACGGCCAGGATCAGGCCAGTGCCGCCCAATTGGCGAACCTGGTGGTGCAACAAATCAGCAGCCAATTCCAACTCATGCCCAACCCACTCGCCATGCGCAGTGACGCGGCCCTGACGGACGGAGGTACGTGA	MADDRYSLRYAAFNESGLAASNTNPASSVIISAGDRLPGLSLAMENLGLKLGRLTTAIESLTVKVSAQRLFSQAMGTGAKGETAKEPKGQPAGGIEPPELLKPAIAMDSAIADLKLATQFSPRQIAEMAEPTQRIASAPLVAAGGTTAVDVVRMESLAARAGISSDLPNASDRQLALLRFASDAGVTASTFKMPAMEAAEMLLGWRTAMKLSAEKAFDLADATNHLGKLPGGAKASEIGTVLQRDGAAATSAGLQPAQAAALTAALLNTGSQQAEAGAALDSFAKALGKGNQASATEQAAWKQLRLDPEEVASGLRDKDAAPGTVMSVLAALNAQPVDQRPNLAASLFGVGDQAVLRMAQKLDDVNAAFWQVKDPAHYATSLLGDKGSVRQDALALSNTQQGRWNVFNASNERLSAAAGNAVTPVVDSSLQWLGSLNDDMSELAETSPKAAAAIVLVGAAIKPLVGALLKALTDELGSRAAKRILEPTSAAKAEGGVSGGRSLQGVTSSLRTVTRLMPKAMVLGAAAEVVEGAINGDGGMIGEGLGAAGGGWAGASAGAAIGTFFGPGIGTVLGGAIGALVGGLTGSSMGREAGSWLGDKLATPADRLAAPEQVSKDLHGTQATTQQNTLTANIYINGQDQASAAQLANLVVQQISSQFQLMPNPLAMRSDAALTDGGT				NA	NA	NA	NA	NA
D1-36_03977	126			hypothetical protein	GTGATCCTCGATGTGGTGCCGCTCATTTACTCGGTAAGTGAAGCGGAAATCCTGGAGTGGGACGCCGGCAAGGCCTTGCGCCGATACGACATCGCGATCACTCGCCTTGGCGTGAAACAGGAGTAG	MILDVVPLIYSVSEAEILEWDAGKALRRYDIAITRLGVKQE				NA	NA	NA	NA	NA
D1-36_03978	567			hypothetical protein	ATGTCCTGGATGCCTCCAACCCTTGAGCTGTTATCGCCGATCACCGATGACGACGGTTCGCAGCTCGAGCAACTGCAACTCAGGCCGCTGTACTACGCCGCGCAAAAAGACGCCTTGGCCCGTGCCGGCGATGACGAAGACGAGCAATTCTTCGAATTGGCCAAATTGGCCACCGGCCTGTCGGGCAAGGAACTCGATCAGCTCAAGCGTCCGGATTACGTGAGCATTGCCCAGTACGTGCACGAAATGTCCACGCGCCCGGCGTCGTATTTCCTGGATGACCCACAGGCCGATCCTGACCAGGTGCCGCTGCTGCAACCACTCGACGTCGCGGGCCGCAGCCTGACCTCATTAACCCTGGAAATGCCGGTTCTGCGGGCCACCAAGGCGATGAAGAAACTGAAGACGGCCAAGGAACGCGCCGAGTTCATCACGGCCCATTGCACCGGCCTGATGCTGCCCGATCTGGCCTCGCTGACTGTGCCTGACTGGACGCAACTTCAGGTGCGCATCGACGATTTTTTAAACAAACCGGCGGACTTCTTTCGGAGCGCGACATCGAAGTGA	MSWMPPTLELLSPITDDDGSQLEQLQLRPLYYAAQKDALARAGDDEDEQFFELAKLATGLSGKELDQLKRPDYVSIAQYVHEMSTRPASYFLDDPQADPDQVPLLQPLDVAGRSLTSLTLEMPVLRATKAMKKLKTAKERAEFITAHCTGLMLPDLASLTVPDWTQLQVRIDDFLNKPADFFRSATSK				NA	NA	NA	NA	NA
D1-36_03979	507			hypothetical protein	ATGTTTACCAACCGCGTAAGACAGGCCATTGCGGCCACCCTGCAGGGCCTGCCGTTGTCGGCGACCGTGGAAGAATTCACGCCGCCGAAAATTGAATTCGAAATGGAAGAAATGCGCGGCGGACGCTTCATCGGCGAGGAAATGGCCAAGAGCGGCAAAGCGCTGACAGCCAAACTGGTGCTGCAAGGTGTCGGCCCGGAAATCATGCTGGCGCTGGGCGTGAGCGTCGGAGACGACATCCTGCTGAACGTGCGCGAGGCGGGCCAGGATCAGGACGGCAATACCTGGTTCACCTACCACACTGTGGGCGGCAAGTTGAAATCCCTCGACGAAGCCGCCCTGAAAATGAACGAGACGCCCACCACCACCCTGGAGCTGTCCTGCCGCACCTACAGCCGCCTGGAAAACGGCATCCCAGTGATCGACATCGACGTGCGCACCCAGAAGTTCGTGCTCAACGGCGTCGACATTCTTGGCGATGCGCGTCGTGCGGTGTTGCTGCCTTAA	MFTNRVRQAIAATLQGLPLSATVEEFTPPKIEFEMEEMRGGRFIGEEMAKSGKALTAKLVLQGVGPEIMLALGVSVGDDILLNVREAGQDQDGNTWFTYHTVGGKLKSLDEAALKMNETPTTTLELSCRTYSRLENGIPVIDIDVRTQKFVLNGVDILGDARRAVLLP				NA	NA	NA	NA	NA
D1-36_03980	1167	gpFI		Putative prophage major tail sheath protein	ATGGCTGAGGTTTTGAACTTCGAGCACAACGGCATCACCGTCAATGCCACCGAATCTCCCGAGGCCATGGGTGGCCTGGGGGACAACGTCATCGGGCTGGTCGGCACCGCGCCGAATGCCAACCCGCTGATTCCAAAAAATACCCCGTTTCGCATCAACAGTTTTACCACCCAAGCCCAGCTCGACCCGAGCGGTGCCGAGGCCGGGACGTTGTTCCACGCGGTGTACCAGATCCTCAAAGTGGTCAAGGTGCCGGTGTACGTGGTCATCGTCGAAGAGGGCGCGACACTGGCCGACACGCAGAACAATGTAATCGGCGGCATCGAGGCGCAGACCGGGCGCAAGTTGGGCCTGGCCGCGTTGAGTGGCGTGGCCGAAGACCTGACGATCATCGGCGCGCCGGGCTTCACCGGCACCAAGGCCGTGGCCGGCGAGTTCGCTTCGTTCGGCAAGCGCATCAAGGCCCGTGTGGTGCTGGATGGCAAGGACGCCTCGGTCGCTGATCAAGTGACCTACAGCCAGGAATTGGGCGGCGCCGACCTCGGTTTCGACCGTTGCCTGGTGGTGCACAACATGCCGGCGGTGTACTCCAAGGCGGCGAAGAAAAACGTCTTCTTGGCCCCGTCGAGCCTGGCCATCGCCGCACTTGCCAAGGTCAAGCAGTGGGAGAGTCCGGGCAATCAGGTGACCTTCGCCGAGGACGTTTCCCGCACCGTCGAATACAACATCCTCGACACCTCCACCGAAGGCGATCTGCTCAACCGCTACGGCGTCAGCTATTACGCCCGCACCATCCTCGGCGGCTTCTCTTTGCTGGGCAACCGTTCCATCACCGGCAAGTTCATCAGCTACGTCGGCCTGGAAGACGCCATCAGCCGCAAGCTGGTGAAGGCCGGCCAGAAAGCCATGGCCAAGAACCTGACCAAGTCGTTCATGGACCAGGAGGTCAAGCGCATCAACGACTGGCTGCAAACCCTGGTGGCCGACGAAACCATTCCTGGCGGCAGCGTGTACCTGCACCCGGAACTGAACAGCGTCGAGAAGTACAAGAACGGCACCTGGTACGTAGTCATCGACTACGGCCGCTATGCGCCGAATGAACACATGATTTATCAACTCAATGCCCGCGATGAAATCATCGAGCAGTTTCTGGAGGACGTTCTCTAA	MAEVLNFEHNGITVNATESPEAMGGLGDNVIGLVGTAPNANPLIPKNTPFRINSFTTQAQLDPSGAEAGTLFHAVYQILKVVKVPVYVVIVEEGATLADTQNNVIGGIEAQTGRKLGLAALSGVAEDLTIIGAPGFTGTKAVAGEFASFGKRIKARVVLDGKDASVADQVTYSQELGGADLGFDRCLVVHNMPAVYSKAAKKNVFLAPSSLAIAALAKVKQWESPGNQVTFAEDVSRTVEYNILDTSTEGDLLNRYGVSYYARTILGGFSLLGNRSITGKFISYVGLEDAISRKLVKAGQKAMAKNLTKSFMDQEVKRINDWLQTLVADETIPGGSVYLHPELNSVEKYKNGTWYVVIDYGRYAPNEHMIYQLNARDEIIEQFLEDVL				NA	NA	NA	NA	NA
D1-36_03981	228			hypothetical protein	ATGCCCGTTCGTAAGCAATACACCGTGCTGCTGCCATTTCCTACCGGCGGTGGGCACTGGTCGAGCGTCGGCCAGACGTTGGATTTGTTGGATGTTCAGGCCAGCGCGTTGCGCAGTGCCGGTCGCCTCGAACTGACCAGCGTCCTGAATTCGCAGGAGCCGGCTTCTGACACGCAAGCCACCACAACCACCCCGGCCAAAAAGGCCACCACCAAAAAGGCTGAATAA	MPVRKQYTVLLPFPTGGGHWSSVGQTLDLLDVQASALRSAGRLELTSVLNSQEPASDTQATTTTPAKKATTKKAE				NA	NA	NA	NA	NA
D1-36_03982	258			hypothetical protein	ATGTCTGATCTGTCCAACAATGACATACCCGAAATTCCACTTGCCGTACCGTCGCCTGAAATCGAATGGGCTGCCATTCGCACGCGTCGTAATCAACTGTTGCGAGACACGGATTTCACCCAATTACCAGACTTCCCCGCAACAGAAACCCAGCTCGCCGATATCAAGGCTTATCGCCAGGCCTTGCGAGACATCCCCGAAACGGATGTGGAGCCGTCCAGCCTGCTCTGGCCCGTGCTGCCAGATTTCATCAAGTAA	MSDLSNNDIPEIPLAVPSPEIEWAAIRTRRNQLLRDTDFTQLPDFPATETQLADIKAYRQALRDIPETDVEPSSLLWPVLPDFIK				NA	NA	NA	NA	NA
D1-36_03983	621			hypothetical protein	GTGAGTCTGGAAACCACTATCGCGTCGCTGGTATCAGCGGCCAATAATTTGACCTCGGTGGTCAATGGGAAAATCGGCAGTATCAACACGACCATGGCCACGGCGCTGACGCAGTTCAACGAGTGGCGAAGTCAGAAGGATGTAGAAGGGGATCCAAGCGCGCTCGGTACGATTCGTCGCAATGTGCTGCAGGGACATGTCTATGGGACTGGTGGTGTCTATGGCGCCACGGCTCAAGGTGATTTTGTATCGACGAACCTGGGTGCCAGCGCGAATGTCTATATGCATTTCAAAGTGCCATTGAACATCAATGTTCACTCGGAGATGTTCTGGTTCAACATCAAGGGTTACAGCTACGGCACAGCAAAAATAATCGACGAAACGTTGGTGGGGTATTGCTATCAGCCCACTCGGGTTCTGCAAAACGCTTCGACTTTTGGAAACATGACCCCTTCTATCTATGTCGATACTAACGGCAATATCGTCATGCGAATTCTGATTCCAAACATTTATTACACCACCGTGCGCATTGACACCATGCGCGTGGGCAATGGTCGGTTGTTCAATCTTGGGGATTTGGTCACCAGATTGTCGCTGGCCGAAACCGTTATTTTCAGCTAA	MSLETTIASLVSAANNLTSVVNGKIGSINTTMATALTQFNEWRSQKDVEGDPSALGTIRRNVLQGHVYGTGGVYGATAQGDFVSTNLGASANVYMHFKVPLNINVHSEMFWFNIKGYSYGTAKIIDETLVGYCYQPTRVLQNASTFGNMTPSIYVDTNGNIVMRILIPNIYYTTVRIDTMRVGNGRLFNLGDLVTRLSLAETVIFS				NA	NA	NA	NA	NA
D1-36_03984	531			hypothetical protein	ATGACAGAAGACATTACGCGCTTGGTTCGTTTCACTTCCGCCGGCCTGGCCGAAGTGCTGCAGGCAAAGAACCAAGGCTTGAAAGGTGAGATCACTCACATTGGAGTTGGCACCGCCCGCTACGATCCCAACGGATCGGAAACGGCGCTTCGCAATGAGCGACAGCGTGTGCCAATCGTGGATTACGAAGACCTGGATACAGGGCAGTTGCGAATGGCCGCTTTGTTTGAGGGGGCGGATGAATATGAGATTGGCGAGTTCGGTTTTTATCTTTCCACGGGCACGTTGTTGGCGGTGTATTCGGTGGCTGGGAAGCTGCTGACCTACAAAGCCGCTGCAGCGCGAGTCTTGCAAAAGTTCACGCTGGATATTTCACCATTGCCGGCGCAAAGCGTCACGGTGGTGGTCGGGTCCGACAACCTGAACATTCTATTGAGTGAAGAAATCGCCACGTTGGCTACCGCTAATATCGACAACATGGCGCGGCACGTTGGCCTGATGCTTCGGGTAATGGCGCTCGAAGCCAAATAA	MTEDITRLVRFTSAGLAEVLQAKNQGLKGEITHIGVGTARYDPNGSETALRNERQRVPIVDYEDLDTGQLRMAALFEGADEYEIGEFGFYLSTGTLLAVYSVAGKLLTYKAAAARVLQKFTLDISPLPAQSVTVVVGSDNLNILLSEEIATLATANIDNMARHVGLMLRVMALEAK				NA	NA	NA	NA	NA
D1-36_03985	645			hypothetical protein	ATGAGCGACGACACATCTCGACCGAGCCTGCTGCCGGTCAACAGTTCACCGCTGGAGCGGGCGCTGGATCTTGGGTTTGCCCAATTGCTGGAGCGCATCGATCCGCCGTTTCCCGAGTTGATGAACCCGGCGGCCACGCCTTTGGCGTTCCTGCCGTATTTGGGGGCGGATCGTGGGGTCAGTGAATGGGACACAGGAGCCGACGACCTGGAAAAGCGCTTGACCGTTTCGTTGTCCTGGCAGATCCAGCGTCAGGCTGGTACGCGTCGAGCCCTGAGTCATGCCGTCGAGTCCATGGGGTTTATACCCCATGTTGTCGCCTGGTATGAGCAGCAACCTCCTACACATCCCTACACCTTTGATGTGCAAGCGATCATCGGCCAGAGCTGGTCCAGCGGCGACCACAATCGCTTGATACGGCGCATCAATGCCGCCAAGAGCGAGCGCGACCAGGCCACTATCACGCTTGTACATCAAACGAGGGGCAGTCTGGCGCTCGCGTCAGCTCCCCATGGAGCATTGAGCGAAGCAGAGCTGTTTCTGTGGGGGGCGCTGCCAGCACTTGATCTTGATGCACGACTTATCAGCACCAGCTTTTTCCAACCCTACACCATTAACGATTACGACCTCAGGGCGCAGCCATGA	MSDDTSRPSLLPVNSSPLERALDLGFAQLLERIDPPFPELMNPAATPLAFLPYLGADRGVSEWDTGADDLEKRLTVSLSWQIQRQAGTRRALSHAVESMGFIPHVVAWYEQQPPTHPYTFDVQAIIGQSWSSGDHNRLIRRINAAKSERDQATITLVHQTRGSLALASAPHGALSEAELFLWGALPALDLDARLISTSFFQPYTINDYDLRAQP				NA	NA	NA	NA	NA
D1-36_03986	996			hypothetical protein	ATGAGCATGTTGATACCCGGCCAGAACCAACTGGCCGAACCGGCCATCGTCACCGTCGAGGCATTCGAGGATCTGCTCGCAGAATTCAAGACCTTCGTGGTGGAGTATGTCGCGGCACGCTCTCCCGCAAGCGCCGCAAAACTGGTGGACAGCCTCGAAAACGAAAGCGAACTGCTGACCCTGGCCCTCGAGGCGTTCTGTGTCCGGCTGCAAACCCACGAACGCAAATACAACGCCCGCATCAAGCAGATGCTGGCGTGGTGGGCCACCGGCACCAACCTCGATGCTCGCCTCGCGGACATGGGTCTTGAACGCCAGTTGCTCGACCCGGGCGATCCGGCGGCATTCCCGCCCGTTCCCCCGGTCTACGAGAGCGATGACGATGCGCGGCTGCGCTACTACCTGGCGCCCCATGCCCCGGCGGCTGGCTCGCGCATGCAATATCGACGGGAAATTTTCACCCTGGGGCAACGCCCCGTCGTGAAGGTTGAAAGCGCTTCGGCGGGTGTGGTGACGGTCACGTACACCTTCGACCCGGACAGCTACGCCGCCCAGATCAAGGACGGCAACGGACGCCGCACCGCGCCCGGCGAAGTCACGGTCACGGTGCTGTCCCGAGACGGCGATGGAACGCCATCCGAAGCGTTGCTCGACGGCGTTCGCGAGCACTTCGCCCGACCGGATGTACGACCGGAAACCGACCTGGTCATCGTCCAACCCGCGCAGATCAAGAACTACAAGATCCGCGTCGTGGCGAAGATCAATCCCGGCCCTGACTCGGGCCTGACCCAGGTTGCTGCACAGCGGCAACTGCAGGAATACGCCGAGGCCTGCCATCGCCTGGAAGGTCGGGTGGACCCGAGCTGGATTGACTACACGCTGCACAGCGCCGGCGCGGTTCAACTGCAGATTCTCGAACCGCTTGCGCCGATCGTGACGACGGCTTTCCAGGCGCCGTACTGCACGGGCGTCGAGGTCGAGGTGGATACGTTATGA	MSMLIPGQNQLAEPAIVTVEAFEDLLAEFKTFVVEYVAARSPASAAKLVDSLENESELLTLALEAFCVRLQTHERKYNARIKQMLAWWATGTNLDARLADMGLERQLLDPGDPAAFPPVPPVYESDDDARLRYYLAPHAPAAGSRMQYRREIFTLGQRPVVKVESASAGVVTVTYTFDPDSYAAQIKDGNGRRTAPGEVTVTVLSRDGDGTPSEALLDGVREHFARPDVRPETDLVIVQPAQIKNYKIRVVAKINPGPDSGLTQVAAQRQLQEYAEACHRLEGRVDPSWIDYTLHSAGAVQLQILEPLAPIVTTAFQAPYCTGVEVEVDTL				NA	NA	NA	NA	NA
D1-36_03987	333			hypothetical protein	ATGATTGGAATCGATCGAAATACCGGCGCCACGGTCGACGACTGGCTGCAGTTCGTGCAGCGCGCTACCCGTGCCTTGACCACGCCGTTGGGCACTCGTCAGAAGCGTCCGTTGTATGGCTGCGCACTCACGCAGTTGCTGGGGCAGAACCTTGGTGACGACCTGCTGATCCTCGCCCAGAGCCATGCGGCCCAAGCGTTCTACAACCCGCACAACGGTATCGATGATTTCGAGCCGCAGGTCATCGTTGCCAGCCGGCACGGTGCGGGATTGCTGCTGCGTTTCGCCGGCACCTGGAGAAACCGCAAACAGACTTTCGAGGTGGTGGCATGA	MIGIDRNTGATVDDWLQFVQRATRALTTPLGTRQKRPLYGCALTQLLGQNLGDDLLILAQSHAAQAFYNPHNGIDDFEPQVIVASRHGAGLLLRFAGTWRNRKQTFEVVA				NA	NA	NA	NA	NA
D1-36_03988	612			hypothetical protein	ATGTTTGATGCGCTGTTGCGGATGCATCTGGGGCCGATCATCGAGCGTCTGGCGCAAATGGAAACCGAGCTCGAAGACCTGCATCGGCGTGCGGAAAGTTTCTGTCGCATCGGTGTGTGTCAGGAAGTCGATGCCGCCACCAATACCTGCAAGGTCAGCCATGGCGGGCTGCTGACACCGGCGATCCGCTTCTTCAACCCGAGCGCCGGTGCCCAGAGCGAGTCGCGGATTCCGTCCGTGGGCGAGCAGTGCCTGTTGCTCAACCATGGCGGCGGCGACGGCGGTGGCCAAGCGGTGGCGCTGTTCGGCCTTAACGGTGGTCAGTTTCCGCCCGTCTCGACCCAGGCTTCGCTGACGCGTCGCCTCTATCAGGACGGCGCGGAAAACGGCTACGACCACGCCAGCCATGTCCTGCATTGGAACAACGGTCCGGCGGCATTCAGCGGTTCCCGCGAATCCCTCCGGTTGAACATTGGCCCATCCAGTTTGGTGATGACGCCGCAAACCATCGAGTTGCAACTGGGCGCTGTTGGCATTCGCCTCGACGCGTCGGGTGTGCACCTGAGCGGCCCGGTGGTGGATCACCAGGGACGCGTCATCAGTACCGCATAA	MFDALLRMHLGPIIERLAQMETELEDLHRRAESFCRIGVCQEVDAATNTCKVSHGGLLTPAIRFFNPSAGAQSESRIPSVGEQCLLLNHGGGDGGGQAVALFGLNGGQFPPVSTQASLTRRLYQDGAENGYDHASHVLHWNNGPAAFSGSRESLRLNIGPSSLVMTPQTIELQLGAVGIRLDASGVHLSGPVVDHQGRVISTA				NA	NA	NA	NA	NA
D1-36_03989	513			hypothetical protein	ATGCCTGCCGTCCTCGAAAAACCGTCGCAGCTGTTCTTCGCCATTGCCCAGACGCTGCGCGCCACTTATCCCGCCTTGAAGATCGGCAGCCCCCAAGAATTCGACGGCACCGACGACCAACCTTGGGTGCTGATCGCCATTGAGCGCGATGCGTCCGGCCTTCGCGCCAACGACGGGCGTATTGCCCATGTGCTGACGGTGTCTTTGCAGGTGGTCATGGCCGTTCCGGGATGGGACGCCTGCGATTTGGCCGCAGAGCTGAAGCAATTGGTCATGGATAACCGCTGGGGGCTGTCCGGTGATCAATGCGACCTGCCGACGGAGCTCGATGGCCTCCCGTCTACATTCATCCATCCGGCGCGGCAATACACCGCCTGGACCCTTTCTTTCAGCCAGGCCCTGTACCTGGGGCCAACGCTGCTGGATGACCCGTTGGGCATTCCGAAATTCGCGCGAACCTGGGAAGTCTCGAGCATCGACGACCCAGATCAATACACAGCACTCGAGGGTTGA	MPAVLEKPSQLFFAIAQTLRATYPALKIGSPQEFDGTDDQPWVLIAIERDASGLRANDGRIAHVLTVSLQVVMAVPGWDACDLAAELKQLVMDNRWGLSGDQCDLPTELDGLPSTFIHPARQYTAWTLSFSQALYLGPTLLDDPLGIPKFARTWEVSSIDDPDQYTALEG				NA	NA	NA	NA	NA
D1-36_03990	351			hypothetical protein	ATGACAAACGAGCAACAAGCGTTGCTGGACATGCCGATCTGGCTGGTCATCGTGCTCGCCCTGGTGGGCGGGGTGACTGGCGAGATGTGGCGTGCCGATAAGGAAGGCGCCCGTGGCTGGTCGCTGCTGCGGCGCCTGGCGCTGCGTTCCGGTGCCTGCATGGTCTGTGGCGTCTCGGCGATCATGCTGTTGTACGCCATGGGCCTGTCGATCTGGGCCGCTGGTGCCTTCGGTTGCCTTACCGCAATGGCCGGGGCGGACGTGGCCATAGGGCTTTACGAACGCTGGGCCGCCAAACGGATGGGCGTGAGTGAACTGCCGCCGCGTGATTCCCGTTCCGATCCACATTGA	MTNEQQALLDMPIWLVIVLALVGGVTGEMWRADKEGARGWSLLRRLALRSGACMVCGVSAIMLLYAMGLSIWAAGAFGCLTAMAGADVAIGLYERWAAKRMGVSELPPRDSRSDPH				NA	NA	NA	NA	NA
D1-36_03991	645			hypothetical protein	ATGAAACTGCTCAAAAAAGCCCTACTAACAACTGTGTTTTTGTCGTCCTTCGTATCCCTGAACAGTTGGGCTGATACGGCCCTGTCGTGGAACCTGGCCCGGGACATGTACCTGATGACCGAAGCCGCACCGGCCGGTTCGCCGTGGTCGTTCATGCAAAACAAATCGGGCGTGAATGCCTCGGCCAACTACACGCTCTTTCCGACATTTCAGGCCGGGGTCTGTAGTGGCAAGCCAACGACATGCTGGCGCGACGATGTGACGGGCGCTTGGATCTCCATTCCAAATGAAAGCTTCACCTTCACCGGCTCGGGCACCAGCTTCGTGTTCAAGCAGGGCGATGTCGCCACGCATCCCGGTACCAACAGCCAGAGCATCTTCCGCTGGGCCAGTCCCGTCACCGGCAATATCAACGTACTGGGCCGGGTCAATGACCTGCATAACGCTTGCGGGGACGGTGTCGGCTGGTCGCTCAACCTGGGCGACACGGTGCTTCAGTCCGGGAGCCTGGCAAACGGAGGCAGTACCACGTTCATGTTGAACAACGTCGCCGTCACGCCGGCGTCTTCGCTTTATCTGGCCATCGATAGAAAGGCTAACAACTCTTGCGATGCGACCAGTGTGGACATGCTGATTACAAAGTGA	MKLLKKALLTTVFLSSFVSLNSWADTALSWNLARDMYLMTEAAPAGSPWSFMQNKSGVNASANYTLFPTFQAGVCSGKPTTCWRDDVTGAWISIPNESFTFTGSGTSFVFKQGDVATHPGTNSQSIFRWASPVTGNINVLGRVNDLHNACGDGVGWSLNLGDTVLQSGSLANGGSTTFMLNNVAVTPASSLYLAIDRKANNSCDATSVDMLITK				NA	NA	NA	NA	NA
D1-36_03992	735	prtR_2	COG2932	HTH-type transcriptional regulator PrtR	ATGCAAAAACGCAACGTTTCTACTGTATTAAGAGTATTGCTCGATCAGCACGGGATCTCCCCCACGGAGCTTCACCGGCGTACCGGCGTGCCTCAGTCCACCCTCTCGCGGATCCTCAGCGGCAAGATCGTCGACCCTTCGGATAAACACATCTCGAAGATCGCCGAATATTTTGCCGTGAGCACCGACCAGTTGCGCGGGCGCGCGGACGTTGTGCCCGCCGGCAATGCCCGCCGCGACGAGCCGCATTCCGAACTCAAGGACATAAGCCTGTGGGACGATGACACACCCGTCGAGGAAGACGAGGTGTCCGTTCCTTTTCTGCGTGAGGTTGAATTGGCTGCTGGATCAGGAAGATTCGTCATCGAGGAAAGCGAGCGCTCCAGCCTGCGCTTCGGCAAGCGCAGCCTGCGCCACAACGGCGTGCAGTTCGACCAGGCCAAGTGTGTGACGGTACGCGGCAACAGCATGTTGCCGGTGCTGCGTGACGGCGCCACGGTTGGGGTGAACGCGGGCAAATGCGGGATCGGCGACATTGTCGACGGTGACCTCTACGCCATCAACCACAACGGCCAACTGCGGGTGAAACAGCTATACCGCTTGCCCACTGGCATTCGTCTGCGCAGCTTCAACCGCGATGAACATCCGGATGAGGACTACACGTTCCAGGAAATGCAGGACGAGCAGATCGTCATCCTCGGTCACGTCTTCTGGTGGGGCATGTACGCCCGTTAA	MQKRNVSTVLRVLLDQHGISPTELHRRTGVPQSTLSRILSGKIVDPSDKHISKIAEYFAVSTDQLRGRADVVPAGNARRDEPHSELKDISLWDDDTPVEEDEVSVPFLREVELAAGSGRFVIEESERSSLRFGKRSLRHNGVQFDQAKCVTVRGNSMLPVLRDGATVGVNAGKCGIGDIVDGDLYAINHNGQLRVKQLYRLPTGIRLRSFNRDEHPDEDYTFQEMQDEQIVILGHVFWWGMYAR				NA	NA	NA	NA	NA
D1-36_03994	354			hypothetical protein	ATGAGCAAGAACACTCCAAATCCCCCAGACGATCACATCTCCCGCACCCAATCGGCCAACGCCAAGAAACTCGACGACGCGGCCACCCGCGCCCTGAACTACTACCTCAAGCCGAAAACCGACAAAGAAACCTCAGAATCACTCGATACGCTCTATGTCATAGCTCCCAACATCGACGCCGAATGCCTGCTCGCCAACCTCAGCGAAACCCTGGCCTCGGCCAACGCCATGGTCAGCGACCTGGCATTCGACCTGAAGGGCTCGCGGCGGAATATCCTGCTGGGGGTTCAACAGATGATCGAGCTGAGCCAGTTGCTGGCGAACCGGGCGTTGGATGTGGTTGAGGTGAGGTAA	MSKNTPNPPDDHISRTQSANAKKLDDAATRALNYYLKPKTDKETSESLDTLYVIAPNIDAECLLANLSETLASANAMVSDLAFDLKGSRRNILLGVQQMIELSQLLANRALDVVEVR				NA	NA	NA	NA	NA
D1-36_03995	759			hypothetical protein	ATGACGGAGGATGCCAACACTCGCAATCAGGAAGTGGCTTTAGCAGATCGAACCGTTTATGAAGACGCATTGCGCTTCGCTCGATCCAATAAAAAAGCAATCGCAAAACGACTTACAGATAAGGAGCTTTATCCACCAGAAGAAGCGCCGGTATCAGTTTTCATGGCGGGTTCCCCTGGCGCAGGTAAAACCGAGGCCTCAATAGCTTTGGTGAATCTCTTTGCGGATACCGCCATTCTACGGATAGATGCTGATGAGCTGCGAAGTGAGTTTCCAGCTTATACGGGAACAAATTCGTGGCTTTTTCAGGGTGGGGTTTCGATTCTGGTCGACAAAATCCTCGATTTCGCATTGGATCAAAGGCAATCGTTTATCCTTGACGGGACGTTTTCCAACATAGATGTTGCAAGACGGAACGTCGACCGCTCATTGAAAAAAGGCCGATTCATACAAATTTTGTATGTCTATCAATCACCTGTGCTTGCCTGGGGGTTTGTCAACGCTCGTGAGGCGGCCGAGGGTAGGAGGATTCACAAAGAGCATTTCATCCAGCAATACTTCGCAGCACGTGACGTCGTGAACGCGCTTAAGCTAGAGTATCAAGGTGATGTCCATGTAGATCTGTTGCTCAAACATATCGACAATTCGGGACGACTTTACAAGGCTGGTGTCGATAAGATTGACTACCATATCCCTGAGCAACACACGCGGGCGGACCTAGAGGCCATGCTCGGAGCACCATCAGGAGGGCACCTATGA	MTEDANTRNQEVALADRTVYEDALRFARSNKKAIAKRLTDKELYPPEEAPVSVFMAGSPGAGKTEASIALVNLFADTAILRIDADELRSEFPAYTGTNSWLFQGGVSILVDKILDFALDQRQSFILDGTFSNIDVARRNVDRSLKKGRFIQILYVYQSPVLAWGFVNAREAAEGRRIHKEHFIQQYFAARDVVNALKLEYQGDVHVDLLLKHIDNSGRLYKAGVDKIDYHIPEQHTRADLEAMLGAPSGGHL	PGPT0027620_106	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-PezT-PezA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027620-toxin_pezT|Zeta_toxin-K16214	NA	NA
D1-36_03996	168			hypothetical protein	ATGATTTCGATCAAGCTTGGCTTGTCCAAAGGAACCAAGAGCACCTTCGCCGATTTTATTCGTAACGCGAAATCGGACCAAAAGAAGCGTGTTTATAGCGAGGTTTTGACGGAGGCTACCAAGCAGCAAAACCTAGTCATGATGCAGGCCGAGGCGAAACGAGCCTGA	MISIKLGLSKGTKSTFADFIRNAKSDQKKRVYSEVLTEATKQQNLVMMQAEAKRA				NA	NA	NA	NA	NA
D1-36_03997	2628	mutS	COG0249	DNA mismatch repair protein MutS	ATGCCCCTCCTTTTGCCTACACCTTTCAACGAGCTTTGCCTGACCCCAATGAATACCGCCGTGAACGACCTGTCCTCCCACACGCCGATGATGCAGCAATACTGGCGCCTGAAGAACCAGCACCCCGATCAGCTGATGTTCTATCGCATGGGCGACTTCTACGAGATCTTCTACGAAGATGCGAAGAAAGCCGCCAAGCTGCTGGACATCACCCTGACGGCGCGTGGGCAATCGGCGGGCATGGCGATTCCGATGTGTGGGATTCCTTACCACGCAGCGGAAGGTTATCTGGCGAAGCTGGTCAAACTCGGCGAGTCCGTGGTGATTTGCGAGCAAGTCGGCGACCCGGCCACCAGCAAAGGGCCGGTGGAACGCCAGGTCGTGCGGATCATCACCCCGGGCACGGTCAGTGACGAAGCCTTGCTGGACGAGCGTCGGGACAACCTGATTGCTGCAGTCCTGGGCGACGAGCGCCTGTTCGGTCTGGCGGTGCTGGACATCACCAGCGGCAATTTCTCGGTGCTGGAAATCAAGGGCTGGGAAAATCTGTTGGCGGAGCTGGAACGGGTCAACCCGGTGGAGCTGTTGATTCCCGACGACTGGCCCAAAGACCTGCCGGCGGAAAAACGCCGTGGCGTACGTCGTCGGGCACCGTGGGACTTCGAGCGCGATTCGGCGTTGAAAAGTCTTTGCCAACAGTTCGCCACGCAAGACCTCAAGGGCTTTGGTTGCGAAAACCTGACCCTGGCCATCGGCGCTGCCGGTTGCCTGCTGGCCTACGCCAAGGAAACCCAGCGCACCGCCCTGCCCCACTTGCGCAGCCTGCGTCACGAACGCCTGGATGACACGGTGGTGCTGGACGGCGCGAGTCGACGCAACCTGGAGCTGGACACCAACCTGGCCGGCGGACGCGACAACACCTTGCAGTCGGTGGTCGATCGCTGCCAGACCGCCATGGGCAGCCGCCTGTTGACCCGCTGGTTGAACCGTCCGCTGCGGGACCTGACGGTACTGACAGCGCGCCAGTCTTCCATTACTTGCCTGCTGGACCGTTATCGCTTCGAGCAGTTGCAACCGCAGCTCAAGGAAATCGGCGACATCGAGCGGATCCTCGCCCGTATCGGCCTGCGCAACGCCCGTCCCCGTGACTTGGCGCGCCTGCGCGACGCCCTCGGCGCGCTGCCGGAACTGCAAGTGGCGATGACCGACCTCGAAGCACCGCACCTGCAACAACTGGCGCGCATCACCAGCACCTACCCGGAACTGGCCGCGCTGTTGGAAAAAGCAATTATCGACAATCCGCCGGCGGTGATCCGTGACGGTGGCGTGCTGAAAACCGGCTACGACGCCGAGCTCGACGAACTGCAATCGCTGAGCGAGAACGCCGGCCAGTTCCTGATCGACCTCGAAGCCCGGGAAAAAGCCCGTACGGGCCTCGCCAACCTCAAGGTCGGCTACAACCGCATCCACGGCTACTTCATCGAACTGCCGAGCAAGCAGGCCGAGCAAGCCCCGGCCGATTACATTCGCCGCCAGACCCTCAAGGGCGCCGAGCGTTTCATCACTCCGGAGCTCAAGGCGTTCGAAGACAAGGCGCTGTCGGCCAAGAGCCGCGCCCTCGCCCGGGAAAAAATGCTCTACGAAGCCCTGCTCGAAGACTTGATCAGCCAGCTCCCGCCGCTGCAGGACACCGCCGCCGCCCTGGCTGAACTGGACGTGTTGAGCAACCTGGCCGAACGCGCGTTGAACCTGGACCTGAACTGCCCGCGCTTCGTCAGCGAACCGTGCATGCGCATCAGCCAGGGTCGTCACCCGGTGGTCGAGCAAGTACTGACCACGCCGTTCGTGGCCAACGACCTGAGCCTGGACGACAATACCCGCATGTTGGTGATCACCGGCCCGAACATGGGCGGTAAGTCCACCTACATGCGCCAGACGGCGTTGATCGTGCTGCTGGCCCACATCGGCAGCTTCGTGCCGGCGGCCAGCTGCGAACTTTCCCTGGTGGACCGCATCTTCACCCGGATCGGCTCCAGCGATGACCTGGCGGGTGGGCGTTCGACGTTCATGGTGGAAATGAGCGAAACCGCTAACATCCTGCACAACGCCACCGAACGCAGCCTGGTGCTGATGGACGAAGTCGGCCGGGGCACCAGCACCTTCGACGGCCTGTCCCTGGCCTGGGCTGCCGCTGAACGCCTGGCTCAACTGCGCGCCTACACGCTGTTCGCCACGCACTACTTCGAATTGACCGTACTGCCGGAAAGCCAACCGCTGGTAGCAAACGTCCACCTCAACGCCACCGAGCACAACGAACGCATCGTCTTCCTGCATCACGTGTTGCCCGGCCCAGCCAGCCAGAGCTACGGGTTGGCGGTGGCGCAGCTAGCCGGCGTGCCGAGCGATGTCATCACCCGCGCCCGCGAGCACCTGAGCCGCCTGGAAACCACCAGCCTGCCCCACGAAGTACCCCGCCCGACCAAAGGCAAACCGGCCGCGCCGCAGCAAAGCGACCTGTTCGCCAGCCTGCCCCATCCGGTGCTGGATGAACTGGCCAAGGTTGACCTGGACGACCTGACGCCACGCCGTGCACTCGAATTGCTTTATACATTGAAGACACGGATCTAA	MPLLLPTPFNELCLTPMNTAVNDLSSHTPMMQQYWRLKNQHPDQLMFYRMGDFYEIFYEDAKKAAKLLDITLTARGQSAGMAIPMCGIPYHAAEGYLAKLVKLGESVVICEQVGDPATSKGPVERQVVRIITPGTVSDEALLDERRDNLIAAVLGDERLFGLAVLDITSGNFSVLEIKGWENLLAELERVNPVELLIPDDWPKDLPAEKRRGVRRRAPWDFERDSALKSLCQQFATQDLKGFGCENLTLAIGAAGCLLAYAKETQRTALPHLRSLRHERLDDTVVLDGASRRNLELDTNLAGGRDNTLQSVVDRCQTAMGSRLLTRWLNRPLRDLTVLTARQSSITCLLDRYRFEQLQPQLKEIGDIERILARIGLRNARPRDLARLRDALGALPELQVAMTDLEAPHLQQLARITSTYPELAALLEKAIIDNPPAVIRDGGVLKTGYDAELDELQSLSENAGQFLIDLEAREKARTGLANLKVGYNRIHGYFIELPSKQAEQAPADYIRRQTLKGAERFITPELKAFEDKALSAKSRALAREKMLYEALLEDLISQLPPLQDTAAALAELDVLSNLAERALNLDLNCPRFVSEPCMRISQGRHPVVEQVLTTPFVANDLSLDDNTRMLVITGPNMGGKSTYMRQTALIVLLAHIGSFVPAASCELSLVDRIFTRIGSSDDLAGGRSTFMVEMSETANILHNATERSLVLMDEVGRGTSTFDGLSLAWAAAERLAQLRAYTLFATHYFELTVLPESQPLVANVHLNATEHNERIVFLHHVLPGPASQSYGLAVAQLAGVPSDVITRAREHLSRLETTSLPHEVPRPTKGKPAAPQQSDLFASLPHPVLDELAKVDLDDLTPRRALELLYTLKTRI				NA	NA	NA	NA	NA
D1-36_03998	342	fdxA	COG1146	Ferredoxin 1	ATGACCTTCGTCGTCACCGACAACTGCATCAAGTGCAAGTACACCGACTGCGTAGAAGTGTGTCCGGTGGACTGCTTTTACGAAGGCCCGAATTTCCTGGTCATTCACCCGGACGAGTGCATCGACTGCGCCCTGTGTGAACCGGAATGCCCGGCGAATGCCATTTTCTCGGAAGACGAAGTGCCAGCTGGCATGGAGAACTTCATCGAGCTGAACGCTGAACTGGCGGATGTCTGGCCGAACATCACCGAGAAGAAAGACGCCCTGCCGGACGCTGAAGAGTGGGATAGACTCATTAACAAGACGGTCAAGGATAACAAGCTCGAACACTTGGAACGCTAA	MTFVVTDNCIKCKYTDCVEVCPVDCFYEGPNFLVIHPDECIDCALCEPECPANAIFSEDEVPAGMENFIELNAELADVWPNITEKKDALPDAEEWDRLINKTVKDNKLEHLER	PGPT0030810_1357	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-ENERGY_METABOLISM	PUTATIVE-FE-S_CLUSTER_BIOGENESIS,PGPT0030810-fdxA-K05524
D1-36_04000	1008	rpoS		RNA polymerase sigma factor RpoS	ATGGCTCTCAGTAAAGAAGTGCCGGAGTTTGACATCGACGATGAGGTTCTCCTTATGGAGACCGGCATCGCTATGGATTCGATGTCGAATGATGAAGGGGCGACTCCACCTTCCGTTCGTGCCAAATCCAAACACTCCGCTTCACTTAAACAACATAAGTACATTGACTACACCCGGGCGCTGGACGCCACTCAGCTGTACCTCAACGAAATCGGTTTCTCGCCGCTGCTCTCCCCCGAGGAAGAAGTTCATTTTGCGCGCCTGTCGCAACGTGGCGACCCGGCCGGTCGAAAACGCATGATTGAAAGCAACCTGCGCCTGGTGGTGAAAATCGCCCGACGTTATGTCAATCGTGGGCTTTCGCTGCTGGACCTGATCGAAGAGGGAAACCTGGGGCTGATTCGCGCTGTCGAGAAATTCGACCCCGAGCGCGGCTTCCGTTTCTCGACCTACGCGACCTGGTGGATCCGCCAGACCATCGAACGGGCGATCATGAACCAGACCCGGACCATTCGGCTGCCGATCCATGTGGTCAAGGAGTTGAATGTCTATCTGCGGGCTGCCCGTGAACTGACCCAAAAGCTGGACCACGAACCTTCACCTGAAGAAATCGCCAACCTGCTGGAAAAACCTGTGGGTGAGGTCAAGCGCATGCTTGGGCTCAATGAGCGGGTTTCGTCGGTGGACGTTTCCCTGGGGCCGGACTCTGACAAGACGCTGCTCGATACCCTGACCGATGACCGTCCCACCGATCCATGCGAGTTGCTCCAGGATGACGATTTGTCCCAGAGCATCGACCAGTGGCTCTCGGAGCTTACGGACAAGCAACGGGAAGTGGTGATTCGCCGCTTCGGCTTGCGCGGCCATGAAAGCAGCACGCTGGAAGATGTCGGCCTGGAGATTGGTTTGACTCGGGAGCGGGTGAGGCAGATCCAGGTCGAAGGCCTCAAGCGCCTCCGGGAGATCCTGGAGAAAAATGGCCTGTCGAGCGAATCGTTGTTTCAATAA	MALSKEVPEFDIDDEVLLMETGIAMDSMSNDEGATPPSVRAKSKHSASLKQHKYIDYTRALDATQLYLNEIGFSPLLSPEEEVHFARLSQRGDPAGRKRMIESNLRLVVKIARRYVNRGLSLLDLIEEGNLGLIRAVEKFDPERGFRFSTYATWWIRQTIERAIMNQTRTIRLPIHVVKELNVYLRAARELTQKLDHEPSPEEIANLLEKPVGEVKRMLGLNERVSSVDVSLGPDSDKTLLDTLTDDRPTDPCELLQDDDLSQSIDQWLSELTDKQREVVIRRFGLRGHESSTLEDVGLEIGLTRERVRQIQVEGLKRLREILEKNGLSSESLFQ	PGPT0014685_391	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-ENERGY_METABOLISM	CE-BACTERIAL_FITNESS-OXYGEN_AVAILABILITY_SIGNALLING,PGPT0014685-rpoS-K03087	NA	NA
D1-36_04001	903			hypothetical protein	ATGTCTGCCTGGACAGGCAGTTTCGAATTTCTTCAGCCACCACAAAGGGAGCGGCGGGTGAGTCTCACAGTCATTGCGCAGCGTATGGGTATCACGAGCTTAAAGCGCCTGGTGACTGGCCTTCTCTTGGGTACCTTGCTGGTCGGTTGTTCCAGCACGCCTTCGGGTAACGTCCGAGTGGTCGATCGCAACAATGCGACACCGCAACGGCCAACGGTCACGACCGGCCAGTATGTAGTCCGGCGTGGCGATACGCTGTTTTCCATCGCTTTTCGCTACGGCTGGGACTACAAAGCCCTCGCGGCCCGGAACAACATTCCTGCGCCTTATACGATCCACCCAGGTCAGACAATTCGCTTTGACGGGCGCAGCGGTTCAACGCCTACGGCGGTCGTCACCCAGTCCGGTTCCACACCTTCTTCCTCGAGCAAAACCACGGTTATCCGTCGTCCGGCGGGTCCCGCGCCGGCGGCTGTACCGTCCGTCGCGAACAAGCCGGCCCCTGCTCCGATGCCTCCTGCAGGCCCCGCCCCGACTGGCTGGGGATGGCCTTCTAATGGCGTTCTCATTGGAAAATTCTCTTCAAACGGTAGTTTGAATAAAGGAATTGATATCGCCGGGGATTTGGGACAGCCTGTTTTAGCCGCGTCTGATGGCACGGTTGTGTACGCCGGGAGTGGTTTGAGGGGCTACGGCGAACTCGTGATCATCAAACACAGCGATACCTACGTCAGTGCCTACGGTCACAACCGCAGGCTGTTGGTTCGGGAGGGGCAGCAGGTCAAGGTCGGACAGACAATTGCCGAGATGGGATCAACGGGTACAGACCGGGTGAAGCTGCATTTTGAGATTCGCCGACAAGGTAAACCTGTAGATCCGCTGCAATTCCTGCCACGTCGTTGA	MSAWTGSFEFLQPPQRERRVSLTVIAQRMGITSLKRLVTGLLLGTLLVGCSSTPSGNVRVVDRNNATPQRPTVTTGQYVVRRGDTLFSIAFRYGWDYKALAARNNIPAPYTIHPGQTIRFDGRSGSTPTAVVTQSGSTPSSSSKTTVIRRPAGPAPAAVPSVANKPAPAPMPPAGPAPTGWGWPSNGVLIGKFSSNGSLNKGIDIAGDLGQPVLAASDGTVVYAGSGLRGYGELVIIKHSDTYVSAYGHNRRLLVREGQQVKVGQTIAEMGSTGTDRVKLHFEIRRQGKPVDPLQFLPRR	PGPT0023860_1112	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0023860-nlpD-K06194	NA	NA
D1-36_04002	678	pcm	COG2518	Protein-L-isoaspartate O-methyltransferase	ATGTCACGTGAACAAGACGATATGCTGCGCCGGGGAATTGGCATGACCTCCCAGCGCACCCGGGAACGGTTGATCCAGCGGCTTTACGAAGAAGGGCTGTCGAATGCCCAGGTGCTGGAGGTGATTCGTCGCACGCCGCGTCACCTGTTCGTCGATGAGGCGCTGGCCCATCGCGCCTATGAAGACACGGCGTTGCCGATCGGCCATAACCAGACCATTTCCCAGCCTTATATGGTGGCCCGCATGAGCGAGCTGCTGCTGGAGGCTGGGCCGCTGGACAAGGTGCTGGAGATCGGCACGGGTTCGGGCTATCAGACCGCCGTGTTGTCGCAGTTGGTGGAACGTGTGTTTTCCGTGGAGCGGATCAAGGTGCTGCAAGATCGCGCCAAGGAACGTCTCGTGGAATTGAATCTGCGCAACGTGGTATTTCGCTGGGGAGACGGTTGGGAAGGCTGGCCAGCGTTGGCGCCTTATAACGGCATCATTGTCACGGCGGTGGCCACAGACGTCCCCCAGGCCTTGTTGGATCAGCTTGCTCCGGGCGGGCGCCTGGTCATTCCGGTCGGTGCGGGTGAAGTCCAGCAGCTGATGTTGATTGTGCGCGAAGAGCACGGTTTTTCACGACACGTCCTTGGGGCGGTGCGTTTCGTACCGTTGCTCAACGGACCGTTGGCCTGA	MSREQDDMLRRGIGMTSQRTRERLIQRLYEEGLSNAQVLEVIRRTPRHLFVDEALAHRAYEDTALPIGHNQTISQPYMVARMSELLLEAGPLDKVLEIGTGSGYQTAVLSQLVERVFSVERIKVLQDRAKERLVELNLRNVVFRWGDGWEGWPALAPYNGIIVTAVATDVPQALLDQLAPGGRLVIPVGAGEVQQLMLIVREEHGFSRHVLGAVRFVPLLNGPLA				NA	NA	NA	NA	NA
D1-36_04003	750	surE	COG0496	5'-nucleotidase SurE	ATGCGTATTCTGATTTCTAACGACGACGGGGTGACAGCACCCGGTCTTGCCGCGCTTTATGCTGCGCTGGCGGATTTTGCCGAGTGCGTGGTGATCGCCCCGGACCAGGACAAAAGCGGCGCCAGCAGTTCGCTGACGATCGATCGTCCGTTGCACCCTTGCTACCTGGACAATGGTTTCATCAGCCTCAACGGTACGCCGACCGATTGCGTGCACCTGGGCCTGAACGGCCTGTTGGAGCGCGAGCCGGATATGGTGGTCTCAGGTATTAACCTGGGGGCAAACCTGGGGGACGATGTGCTGTATTCGGGTACGGTTGCCGCGGCCCTGGAAGGTCGTTTCCTGAACCACACCTCTTTTGCCTTTTCGTTTGTTTCACGGCAGGTCGACAACTTGCCTACCGCCGCCTACTTCGCCCGCAAGCTGGTGGAGGCCCACGGCGAACTGGACCTGCCGCCGCGCACGGTGCTGAACGTGAACATCCCGAATTTGCCGCTAGACCATATCCGTGGCATCCAGCTCACTCGCCTGGGCCATCGTGCCCGCGCGGCCAAACCGATGCATGTCGTCGATCCGCGCGGCAAGGCCGGCTACTGGATCGCGGCCGCCGGCGACGCCGAAGATGGCGGGCCTGGCACGGACTTCCATGCGGTCATGCAGGGCTACGTCTCGATCACGCCGTTGCAGCTGGATCGAACCTTCAACGATGCCTTCAGGCATCTCGAAGGCTGGCTGGAGGGGCTGCACTGA	MRILISNDDGVTAPGLAALYAALADFAECVVIAPDQDKSGASSSLTIDRPLHPCYLDNGFISLNGTPTDCVHLGLNGLLEREPDMVVSGINLGANLGDDVLYSGTVAAALEGRFLNHTSFAFSFVSRQVDNLPTAAYFARKLVEAHGELDLPPRTVLNVNIPNLPLDHIRGIQLTRLGHRARAAKPMHVVDPRGKAGYWIAAAGDAEDGGPGTDFHAVMQGYVSITPLQLDRTFNDAFRHLEGWLEGLH	PGPT0013405_3390	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013405-surE-K03787	NA	NA
D1-36_04004	1059	truD	COG0585	tRNA pseudouridine synthase D	ATGACCGAACTTGAACTACTGGGGCCACGGGCCTATGGCGAGTCGTTGGGCAGCGCGGTACTGAAAGCCACGGCGGAGGATTTCCAGGTCGATGAAGTGCTCGACATTCCGTTGACCGGCGATGGCGAGCACTTGTGGATCTGGGTGGAAAAACGCGGATTGAACACCGAGGAGGCTGCCCGGCGTATCGCCAAGGCCGCCGGCGTGCCGCTGCGCACGGTCAGCTACGCCGGACTCAAGGATCGCCAGGCACTGACTCGTCAGTGGTTCAGCGTGCAATTGCCAGGCAAGGCCGACCCGGACCTGGCGGCCGCCGAAAACGACACCCTGAAAATCCTCAAGACCGCCCGCCACAGGCGCAAGCTGCAGCGCGGTGCGCACTCGGCCAACGGTTTTACCTTGCGCCTGACCCAGTTCACAGGCGACAAAGCGGCGATCGAGGCACGCCTGCAACAAATTGTTCGCCAGGGCATCCCTAACTATTTCGGCGCCCAGCGCTTCGGCCACGAAGGTGGCAATGTTGTCGATGCTCGTGCATGGGCGGCGCGCAAAGCCTTGCCGGAACAGCGCAACGTGCGTTCGCGCCTGCTGTCGACGGCCCGCAGTTTTCTCTTCAACAAAGTGCTGGCGGCCAGAGTGGCCGACGGTACCTGGCAACACGCCCAGGTGGGCGATCTGCTGGCTTTCACCGACAGCCGCAGTTTTTTCCCGGCCGGGGAGGCTGAATGCAGCGATCCGCGCCTGGCGATTCTCGATCTGCACCCGACCGGTCCCCAATGGGGCGAAGGCCCTTCACCCGCCGCTGGCGTGGTCTTTGAATTAGAGCAGGCCGTCGCCCAGAGCGAGGCGGACCTGCGCGACTGGTTGATAAACGCGGGGATGAGTCACGAACGTCGCATCCTGCGGCTGCCCATTGGCGGGCTGTCGTGGCATTATCCCTCGCTGGACATTCTGCAATTGGAATTCGTCCTGCCGGCCGGATGTTTCGCCACTGTCTTGGTGCGCGAACTCGTCGATCTGGTGCCTGCAGGGCAGACGGACAACCCATGCGTATTCTGA	MTELELLGPRAYGESLGSAVLKATAEDFQVDEVLDIPLTGDGEHLWIWVEKRGLNTEEAARRIAKAAGVPLRTVSYAGLKDRQALTRQWFSVQLPGKADPDLAAAENDTLKILKTARHRRKLQRGAHSANGFTLRLTQFTGDKAAIEARLQQIVRQGIPNYFGAQRFGHEGGNVVDARAWAARKALPEQRNVRSRLLSTARSFLFNKVLAARVADGTWQHAQVGDLLAFTDSRSFFPAGEAECSDPRLAILDLHPTGPQWGEGPSPAAGVVFELEQAVAQSEADLRDWLINAGMSHERRILRLPIGGLSWHYPSLDILQLEFVLPAGCFATVLVRELVDLVPAGQTDNPCVF				NA	NA	NA	NA	NA
D1-36_04005	474	ispF	COG0245	2-C-methyl-D-erythritol 2,4-cyclodiphosphate synthase	ATGCGTATTGGCCACGGCTACGATGTTCACCGTTTTGCTGAAGGCGACTTCATTACTCTGGGCGGCGTGCGGATCGCACACGGCTTCGGGCTGCTTGCGCATTCTGATGGTGACGTGTTGCTGCACGCCTTGAGCGATGCCTTGCTCGGCGCTGCCGCCCTGGGCGATATCGGCAAGCATTTCCCTGACACCGACCCGCAATTCAAGGGCGCCGACAGCCGTGTGCTGCTACGTCACGTGGTTTCCTTGATCCATGCCAAGGGCTGGAAAGTGGGCAACGTCGACAACACCATCGTTGCCCAGGCGCCAAAGATGGCGCCGCACATCGAAGCGATGCGCCAGCGGATTGCCGAAGATCTCCAGGTAGACCTGGACCAGGTGAACGTGAAGGCCACCACCACCGAGAAGCTGGGCTTCGTCGGTCGTGAAGAAGGCATAGCCGTCCATTCCGTTGCCTTGTTGTTGCGCTCATGA	MRIGHGYDVHRFAEGDFITLGGVRIAHGFGLLAHSDGDVLLHALSDALLGAAALGDIGKHFPDTDPQFKGADSRVLLRHVVSLIHAKGWKVGNVDNTIVAQAPKMAPHIEAMRQRIAEDLQVDLDQVNVKATTTEKLGFVGREEGIAVHSVALLLRS	PGPT0007595_2628	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0007595-ispF-K01770	NA	NA
D1-36_04006	846	yeiG	COG0627	S-formylglutathione hydrolase YeiG	ATGAGCCTGGAAAACATTTCCTGCCAGAAGAGCTTCGGCGGCTGGCACAAGCGTTACCGGCACCGTTCCGAAGTGCTGGGTTGCGACATGGTCTTCGCCGTGTATCTGCCGCCGCAAGCGGAGCAGGGCGGTAAGTTGCCGGTGTTGTACTGGTTGTCCGGTTTGACCTGCACGGACGAAAATTTCATGCAAAAGGCCGGTGCCCAGCGCATGGCCGCCGAGTTGGGCTTGATCATCGTCGCGCCGGACACCAGCCCCCGTGGCGCCGAAGTGCCCGGTGATCCGGACGGTGCGTGGGACTTCGGCCTGGGGGCAGGGTTCTATCTGAACGCCACGCAGGATCCTTGGGCGCGACACTATCGGATGCATGACTATGTCGTGCAGGAATTGCCGGCGTTGGTAGAAGCGCATTTCCCGGCTTCGGATAAGCGTGGCATCAGCGGTCATTCCATGGGCGGTCATGGCGCGCTGGTCTGCGCCTTGCGCAACCCCGGGCGTTACCGTTCGGTGTCGGCCTTTTCTCCGATCAACAATCCGATGGATTGCCCGTGGGGACAGAAAGCGTTCGCCCGCTACCTTGGGGAAGACCGTTCGAAATGGCGCGAATGGGATGCCTGCGCGTTGATCGCCGAAGCGGGAGAAAAGCTGCCGCTGTTGGTGGACCAGGGTGATCGCGATGATTTCCTCGCCAACCAGCTCAAGCCCGAAGCCTTGCAACAGGCGGCCAAGGCGGCCGATCACCCGTTGGAACTGCGGCTGCAACCCGGCTATGACCACAGCTACTTCTTCATTGCCAGCTTCATCGATGAACACTTGCAACATCATGCACGCGCCCTGAACGGCTAA	MSLENISCQKSFGGWHKRYRHRSEVLGCDMVFAVYLPPQAEQGGKLPVLYWLSGLTCTDENFMQKAGAQRMAAELGLIIVAPDTSPRGAEVPGDPDGAWDFGLGAGFYLNATQDPWARHYRMHDYVVQELPALVEAHFPASDKRGISGHSMGGHGALVCALRNPGRYRSVSAFSPINNPMDCPWGQKAFARYLGEDRSKWREWDACALIAEAGEKLPLLVDQGDRDDFLANQLKPEALQQAAKAADHPLELRLQPGYDHSYFFIASFIDEHLQHHARALNG	PGPT0002120_1166	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-FORMIC_ACID_BIOSYNTHESIS,PGPT0002120-frmB|fghA-K01070	NA	NA
D1-36_04007	1113	frmA	COG1062	S-(hydroxymethyl)glutathione dehydrogenase	ATGATCAAGTCACGCGCTGCCGTTGCCTTCGAGGCCAAGAAACCCCTGGAAATCGTTGAAGTCGACGTGGCCATGCCCAAGGCGGGCGAAGTGCTGTTGCGCGTGGTGGCTTCGGGCGTTTGTCACACCGATGCCTACACGCTGTCCGGCGCTGACCCGGAAGGGATCTTCCCCTCGATTCTTGGCCATGAAGGCGGCGCCATTGTCGAAGCCATCGGCGAGGGTGTGACATCGGTGGCGGTGGGTGACCATGTGATCCCGCTGTACACCCCGGAGTGCGGCCAGTGCAAATTCTGTAAGTCGGGCAAGACCAACCTCTGCCAGGCCATCCGCGCCACCCAGGGCAAAGGCCTGATGCCGGACGGTACTTCGCGCTTTTCCTACAAGGGCGAGTCGATTTTCCACTACATGGGTACGTCGACGTTCTCTGAATACACCGTGCTGCCGGAAATCTCCGTAGCGAAGATCCAGAAAGATGCGCCCCTGGAAAAGGTCTGCCTGCTGGGTTGCGGCGTTACCACCGGCATCGGCGCCGTGTTGAACACCGCCAAGGTCAAGCCGGGTGACACCGTGGCGATCTTCGGCCTGGGCGGTATCGGGCTTTCGGCCGTGATCGGTGCCGTGAAGGCCAAGGCCGCGCGCATCATCGCCATCGACATCAACCCGGCCAAGTTCGAAATCGCCAAGCAGCTGGGCGCCACCGATTGCGTCAACCCGAAAGATTTCGACCGTCCGATCCAGGAAGTCATTGTCGACATGACAGACGGCGGCGTGGACTTTTCCTTCGAGTGCATCGGCAATGTGCAGTTGATGCGTGCCGCCCTGGAATGCTGCCATAAAGGTTGGGGCGAATCGGTGATCATCGGCGTGGCCGGGGCCGGCCAGGAGATCGCCACCCGTCCGTTCCAACTGGTAACCGGACGCGTCTGGCGCGGTTCGGCGTTTGGCGGCGTGCGCGGTCGCAGCGAACTGCCGAGCTACGTGGACATGGCTGAAAAGGGCGAGATCCCGCTGGATACCTTCATCACTCACACCATGGGCCTGGAGGACATCAACAAGGCATTCGACTTGATGCATGAAGGCAAGAGCATCCGTACCGTTATTCATTTCTGA	MIKSRAAVAFEAKKPLEIVEVDVAMPKAGEVLLRVVASGVCHTDAYTLSGADPEGIFPSILGHEGGAIVEAIGEGVTSVAVGDHVIPLYTPECGQCKFCKSGKTNLCQAIRATQGKGLMPDGTSRFSYKGESIFHYMGTSTFSEYTVLPEISVAKIQKDAPLEKVCLLGCGVTTGIGAVLNTAKVKPGDTVAIFGLGGIGLSAVIGAVKAKAARIIAIDINPAKFEIAKQLGATDCVNPKDFDRPIQEVIVDMTDGGVDFSFECIGNVQLMRAALECCHKGWGESVIIGVAGAGQEIATRPFQLVTGRVWRGSAFGGVRGRSELPSYVDMAEKGEIPLDTFITHTMGLEDINKAFDLMHEGKSIRTVIHF	PGPT0006355_2522	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006355-frmA|ADH5|adhC-K00121	NA	NA
D1-36_04008	897	dmlR_22		HTH-type transcriptional regulator DmlR	ATGTCAGACAACCGCTGGGAAGGCATCGATGAGTTCGTGGCTGTGGCCGAATGCAGCCAGTTCACCGCCGCAGCCGAACGTCTCGGTGTGTCGTCTTCCCATATCAGTCGACAAATCGTACGGCTTGAGGAGCGCCTGCAGACACGCTTGCTTTATCGAAGTACCCGTCGGGTAACGCTGACCGAAGCCGGGCAGACCTTCTTGCAGCATTGCCAGCGCTTGCAGGATGGGCGCGAGGAAGCATTGCGGGCCGTCGGTGATCTTGCCAGCGAACCCAAGGGCATGCTGCGCCTGACCTGTGCCGTTGCCTACGGTGAACGGTTCATCGTGCCATTGGTGACGCGGTTCATGGGGATCTATCCACAGTTACGGGTGGACATCGAGCTGAGCAATCGCGCGCTGGACCTGGTGCATGAAGGCCTGGACCTGGCGATTCGCCTCGGCCGCTTGCAGGACTCACGGCTGGTAGCCACGCGCCTGGCACCGCGGCGGATGTACCTTTGCGCTTCGCCGTCCTACCTGGAACGTTATGGTCGGCCCCATAGCTTGTCGGAACTGAGCCGCCACAACTGCCTGATCGGCAGCTCCGACATCTGGCAACTGGAGCAGAACGGCCGGGAATTTTCCCAGCGGGTGCAGGGAAACTGGCGCTGCAACAGCGGGCAAGCGGTGCTGGACGCTGCGTTGCAAGGCGTGGGGTTGTGCCAGTTGCCGGATTATTACGTGCTGGAGCATCTGCACAGCGGTGCGTTGATTTCGTTGCTGGAAGCCCATCAGCCCCCAAACACGGCGGTGTGGGCGCTTTATCCGCAGCAGCGACATCTGTCGCCGAAGGTGCGCAAGTTGGTGGATTACTTGAAGGAAGGGTTGGCTGAGCGGCCGGAGTATCGGGGGTAA	MSDNRWEGIDEFVAVAECSQFTAAAERLGVSSSHISRQIVRLEERLQTRLLYRSTRRVTLTEAGQTFLQHCQRLQDGREEALRAVGDLASEPKGMLRLTCAVAYGERFIVPLVTRFMGIYPQLRVDIELSNRALDLVHEGLDLAIRLGRLQDSRLVATRLAPRRMYLCASPSYLERYGRPHSLSELSRHNCLIGSSDIWQLEQNGREFSQRVQGNWRCNSGQAVLDAALQGVGLCQLPDYYVLEHLHSGALISLLEAHQPPNTAVWALYPQQRHLSPKVRKLVDYLKEGLAERPEYRG				NA	NA	NA	NA	NA
D1-36_04009	708	ispD	COG1211	2-C-methyl-D-erythritol 4-phosphate cytidylyltransferase	ATGAGCATTCGTCCACCGGCCTTCTGGGCCGTGATTCCTGCCGCGGGCGTTGGTGCTCGCATGGCCGCGGACCGACCCAAGCAATACCTTCAACTGGGCGCACGCACAATTCTTGAACACAGCCTCGGCTGTTTCCTCGATCACCCGACCGTCAAGGGCGTGGTGGTCAGCATTGCTCACGACGATCCCTATTGGCCGACCCTGGCCTGCGCCAGCGATCCCCGTATCCAGCGGGTGGACGGCGGCGAGCAGCGTTCGGATTCGGTCCTCAATGCATTGCTGCACTTACACGAACAGGGCGCCGACGATTTCGATTGGGTGTTGGTTCACGACGCTGCGCGTCCCAATCTTGCCCGGGTCGACCTGGATACGTTGCTCCATGAGCTGGCGAACGATCCGGTCGGTGGCCTGCTGGCCGTCCCGGCTCGCGACACCCTCAAGCGCGCCGACAAGCATGGCCGCGTGCTGGAGACCGTCGATCGCAGCGTGATCTGGCAAGCCTATACACCGCAGATGTTCCGTCTTGGCGCCTTGCACCGGGCCCTGGCCGACAGCCTGGTGGCCGATGCCGTGATAACCGATGAAGCGTCCGCCATGGAGTGGGCGGGGCAAGCGCCTCGGCTGATTGAGGGGCGGGCGGATAACATCAAGGTCACCCGGCCGGAAGACCTTGAGTGGTTGCGCCAGCGGTGGGCGAATCGGCGTTAA	MSIRPPAFWAVIPAAGVGARMAADRPKQYLQLGARTILEHSLGCFLDHPTVKGVVVSIAHDDPYWPTLACASDPRIQRVDGGEQRSDSVLNALLHLHEQGADDFDWVLVHDAARPNLARVDLDTLLHELANDPVGGLLAVPARDTLKRADKHGRVLETVDRSVIWQAYTPQMFRLGALHRALADSLVADAVITDEASAMEWAGQAPRLIEGRADNIKVTRPEDLEWLRQRWANRR	PGPT0007590_1621	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0007590-ispD-K00991	NA	NA
D1-36_04010	279	ftsB		Cell division protein FtsB	ATGCGCAGTCCCAATTGGTTGTTTCTCGTCTTGCTCCTGTTGCTGGCCGGCCTGCAGTACCGCCTGTGGGTGGGCAATGGCAGCCTGGCGCAAGTGGCCGAGCTGAATCAGCAGATTGCCGACCAGCACGCCGAAAACGAGGCATTGCTGGAGCGCAATCGGGTGATGGACGCCGAAGTGATGGAACTGAAGAAAGGCATGGAGACCGTCGAAGAACGGGCTCGCCATGAACTGGGCATGGTCAAGGAGGGCGAAACCCTCTACCAGTTGGCCCAATGA	MRSPNWLFLVLLLLLAGLQYRLWVGNGSLAQVAELNQQIADQHAENEALLERNRVMDAEVMELKKGMETVEERARHELGMVKEGETLYQLAQ				NA	NA	NA	NA	NA
D1-36_04011	1290	eno		Enolase	ATGGCAAAAATCGTCGACATCAAAGGTCGTGAAGTTCTCGACTCCCGTGGCAACCCCACTGTCGAAGCGGACGTGCTTCTCGACAACGGCATCATCGGCAGCGCCTGCGCGCCGTCCGGTGCTTCCACTGGCTCGCGCGAAGCGCTGGAGCTGCGTGATGGCGACAAGAGCCGTTACCTGGGCAAGGGCGTGCTGAAAGCCGTCGCCAACATCAACGGTCCGATCCGCGAACTGTTGCTGGGCAAGGACCCTGCCGACCAGAAGGCCCTCGACCAGGCCATGATCAAGCTCGACGGCACCGAAAACAAAGCCACTCTGGGCGCCAACGCGATCCTCGCAGTGTCCCTGGCCGCCGCCAAAGCCGCCGCTCAGGACCAGGACCTGCCTTTGTACGCCCACATTGCCAACCTCAACGGTACGCCAGGCGTGTACTCGATGCCGGTGCCAATGATGAACATCATCAACGGCGGCGAACATGCCGATAACAACGTCGACATCCAGGAATTCATGGTGCAGCCGGTTGGCGCCAAGTCCTTCTCCGAAGGCCTGCGCATGGGCACCGAGATTTTCCATCACCTCAAGGCTGTGCTGAAGGCCCGTGGCCTGAGCACCGCCGTGGGTGACGAAGGCGGTTTCGCACCGAACCTGGCGTCCAACGAAGACGCCCTGAAAGTGATCTCCGAAGCCGTGGCCAACGCTGGCTACAAGCTGGGCACCGACGTGACCCTGGCCCTGGACTGCGCGGCCAGTGAGTTCTTCGAAGACGGCAAGTACAACCTGTCCGGCGAAGGCCAGGTGTTCACCGCCGAAGGGTTCGCCGACTACCTCAAGGGCCTGACCGAGCGCTATCCGATCATTTCCATCGAAGACGGCCTGGACGAGTCCGACTGGGCTGGCTGGAAAATCCTCACCGACAAGATCGGCGAGAAAACCCAGCTGGTGGGCGACGACCTGTTCGTGACCAACACCAAGATCCTGAAAGAAGGCATCGACAAGAAGATCGCCAACTCTATCCTGATCAAGTTCAACCAGATCGGCACCCTGACCGAAACCCTGGAAGCCATCCAGATGGCCAAGGCTGCCGGCTACACCGCCGTGATCTCCCACCGCTCCGGTGAGACCGAAGACTCGACCATTGCCGACCTGGCCGTGGGCACCGCGGCGGGCCAGATCAAGACCGGTTCGCTGTGCCGCTCTGACCGCGTTTCCAAGTACAACCAACTGCTGCGCATCGAAGAGCAGTTGAACGGCAAGGCCAAGTACAACGGTCGCGCCGAGTTTCGCGGTTAA	MAKIVDIKGREVLDSRGNPTVEADVLLDNGIIGSACAPSGASTGSREALELRDGDKSRYLGKGVLKAVANINGPIRELLLGKDPADQKALDQAMIKLDGTENKATLGANAILAVSLAAAKAAAQDQDLPLYAHIANLNGTPGVYSMPVPMMNIINGGEHADNNVDIQEFMVQPVGAKSFSEGLRMGTEIFHHLKAVLKARGLSTAVGDEGGFAPNLASNEDALKVISEAVANAGYKLGTDVTLALDCAASEFFEDGKYNLSGEGQVFTAEGFADYLKGLTERYPIISIEDGLDESDWAGWKILTDKIGEKTQLVGDDLFVTNTKILKEGIDKKIANSILIKFNQIGTLTETLEAIQMAKAAGYTAVISHRSGETEDSTIADLAVGTAAGQIKTGSLCRSDRVSKYNQLLRIEEQLNGKAKYNGRAEFRG	PGPT0018050_3700	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
D1-36_04012	846	kdsA	COG2877	2-dehydro-3-deoxyphosphooctonate aldolase	ATGGCCCAGAAGATCATCCGCGTCGGCGACATCGAGATTGCCAACGACAAGCCCATGGTGCTGTTTGGTGGCATGAACGTGCTGGAAAGCCGCGACATGGCGATGCAGGTCTGCGAAGAATACGTGAAGGTGACCCAGAAGCTGGGTATCCCTTACGTCTTCAAGGCCAGCTTCGACAAGGCCAACCGTTCGTCGGTCACCTCCTACCGAGGCCCCGGCCTGGAAGAAGGCATGCGGATCTTCCAGGACATCAAGCAAGCGTTCGGCGTGCCGATCATCACCGACGTCCACGAGCCGGCCCAGGCCGCGGTCGTCGCCGAAGTCTGCGACATCATCCAGTTGCCGGCCTTTCTGTCGCGCCAGACCGACCTGGTGGTCGCGATGGCCAAGACCGGCGCGGTGATCAATATCAAGAAAGCCCAGTTTCTCGCGCCCCAGGAAATGAAACACATCCTGAGCAAATGTGAAGAGGCCGGGAATGACCAATTGATCCTCTGCGAGCGTGGTTCGAGCTTCGGCTACAACAACCTTGTCGTGGACATGCTCGGCTTCGGCATCATGAAGCAGTTCGAGTACCCGGTGTTCTTCGACGTGACCCACGCGCTGCAAATGCCCGGCGGTCGCTCCGATTCCGCCGGCGGTCGTCGCGCCCAGGTGACCGACCTGGCCAAGGCCGGCATGAGCCAGTCTCTGGCTGGCCTGTTCCTTGAAGCCCACCCTGATCCCGACAATGCCAAGTGCGACGGCCCTTGTGCCTTGCGCTTGAACAAGCTGGAACCTTTCCTGTCTCAGCTCAAGTCGCTGGATGAGCTGGTCAAGGGTTTTCCGACGATAGAAACCGCGTAA	MAQKIIRVGDIEIANDKPMVLFGGMNVLESRDMAMQVCEEYVKVTQKLGIPYVFKASFDKANRSSVTSYRGPGLEEGMRIFQDIKQAFGVPIITDVHEPAQAAVVAEVCDIIQLPAFLSRQTDLVVAMAKTGAVINIKKAQFLAPQEMKHILSKCEEAGNDQLILCERGSSFGYNNLVVDMLGFGIMKQFEYPVFFDVTHALQMPGGRSDSAGGRRAQVTDLAKAGMSQSLAGLFLEAHPDPDNAKCDGPCALRLNKLEPFLSQLKSLDELVKGFPTIETA	PGPT0023060_1298	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-8-AMINO-3|8-DIDEOXY_D_MANNO-OCTULOSONIC_ACID_MODIFICATION,PGPT0023060-kdsA-K01627	NA	NA
D1-36_04013	1632	pyrG_2	COG0504	CTP synthase	ATGACGCGCTACATATTCGTCACGGGCGGTGTTGTTTCTTCATTGGGGAAAGGCATTGCCTCGGCTTCATTGGCGGCCATCCTGGAGGCGCGGGGACTTAAGGTCACCATGCTCAAGCTGGACCCGTACATCAACGTCGACCCGGGCACCATGAGCCCGTTCCAGCACGGTGAAGTGTTCGTTACCCATGACGGCGCCGAGACCGACCTGGACCTGGGCCACTACGAGCGGTTCATCCGCACGACCATGACCCAGAACAACAACTTCACCACCGGCCGTGTCTATGAGCACGTGCTGCGCAAGGAACGCCGTGGTGACTACCTGGGCGCGACCATCCAGGTCATCCCGCACATCACCGACGAAATCAAGCGCCGCATCATCAAGGGCGCCGGCGACGCGGACGTGGCGATGGTAGAGATCGGCGGTACCGTGGGCGACATCGAGTCCCAGCCGTTCCTCGAAGCCATCCGCCAGTTGCGTTTCGAAATCGGTGCCAAGCGCGCGATGCTGATGCACCTGACGCTGGTGCCGTACATCGCCACGGCCGGCGAAACCAAGACCAAGCCAACCCAGCACTCGGTCAAGGAACTGCGTTCCATCGGCTTGCAGCCGGACGTGCTGGTATGCCGCTCCGATCACCCGATCGATATGTCCTCGCGTCGCAAGATCGCCCAGTTCACCAACGTGGAAGAACGCGCGGTCATCGGCCTGGAAGACGCCGACACCATCTACAAGATCCCGGGCATCCTGCACTCCCAGGGCCTCGATGATTTCGTCGTCGAGCGCTTCGGCCTGCAATGCGCCAGCGCGGACCTGTCTGAGTGGGAGGCCGTGGTCGATGCCAAGCTCAACCCGGAACACGAAGTCACCATCGCCATGGTCGGCAAGTACATGGAGCTGCTGGACGCCTACAAGTCGCTGATCGAGGCGATGAGTCATGCCGGCATCAGCAACCGCACCAAGGTCAACCTGCGCTACATCGACTCCGAAGACATCGAGAACCAGGGCACCGGCCTGCTCGAAGGCGCCGATGCGATCCTCGTGCCGGGCGGCTTTGGCCTGCGCGGCGTGGAAGGCAAGATCACCGCGGTGCAATACGCTCGTGAAAACAAGGTGCCGTACCTGGGCATCTGCCTCGGGATGCAAGTGGCGGTCATCGAGTTTGCACGTAACGTGATGGGCTGGAAAGACGCCAACTCCACCGAATTCGATCGCGCCAGTGGCCACCCGGTCGTGGGCCTGATCACCGAGTGGGAAGACGCCACCGGTGCCGTCGAAGTGCGTACCGAAAGCTCCGACCTGGGCGGCACCATGCGCCTCGGCGCACAGGAATGCCTGCTCGAAGCCGGCTCCAAGGTGCACGACTGCTACGCCAAGGATGTCATCGTCGAGCGCCATCGCCACCGCTACGAAGTGAATAACAACCTGCTGCCTCAACTGATCGAAGCCGGCCTGAAGATCTCCGGTCGTTCCGGTGACGGCGCGCTGGTCGAAGTGGTCGAAGCTGCCGACCATCCATGGTTCGTGGCCTGCCAGTTCCACCCGGAGTTCACTTCGACACCGCGCGACGGTCACCCGCTGTTCAGCGGTTTCGTGAAAGCCGCTTTGGCTCAACACCAGAAAAAGGCATAA	MTRYIFVTGGVVSSLGKGIASASLAAILEARGLKVTMLKLDPYINVDPGTMSPFQHGEVFVTHDGAETDLDLGHYERFIRTTMTQNNNFTTGRVYEHVLRKERRGDYLGATIQVIPHITDEIKRRIIKGAGDADVAMVEIGGTVGDIESQPFLEAIRQLRFEIGAKRAMLMHLTLVPYIATAGETKTKPTQHSVKELRSIGLQPDVLVCRSDHPIDMSSRRKIAQFTNVEERAVIGLEDADTIYKIPGILHSQGLDDFVVERFGLQCASADLSEWEAVVDAKLNPEHEVTIAMVGKYMELLDAYKSLIEAMSHAGISNRTKVNLRYIDSEDIENQGTGLLEGADAILVPGGFGLRGVEGKITAVQYARENKVPYLGICLGMQVAVIEFARNVMGWKDANSTEFDRASGHPVVGLITEWEDATGAVEVRTESSDLGGTMRLGAQECLLEAGSKVHDCYAKDVIVERHRHRYEVNNNLLPQLIEAGLKISGRSGDGALVEVVEAADHPWFVACQFHPEFTSTPRDGHPLFSGFVKAALAQHQKKA	PGPT0021215_3537	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021215-pyrG-K01937	NA	NA
D1-36_04014	1302	tilS	COG0037	tRNA(Ile)-lysidine synthase	ATGAACTCAAACACGGATCTGCCCACCCGGCTTCTCGCTCAGTTATCTGACTGGCGCAACGCGTCCACCTGGCGCATCGCCTTCTCCGGTGGCCTCGACTCCACCGTCCTGCTGCACCTGCTCGTTTCCCTGGCAAAAAGCCAGGTCCTGCCGCCCCTCGGCGCCATCCATGTCCACCATGGCCTCCAGGCCGTGGCCGAGGCGTGGCCGGAACATTGTCGCCGGGTCTGCGAGGCCCTTGGGGTACCGCTGCAAGTGATCAGCGTTGAGGTCCGGCCCGGCGCCAGTGTCGAGCGCGCTGCCCGGGATGCGCGTTACAGGGCTTTCATCGCGGCGACGCAGAACAACGAAGTGCTGCTCACGGCCCAACACCGGGATGACCAGGCCGAAACCCTGTTGTTTCGTTTGCTGCGCGGGGCCGGGGCGCGGGGCTTGTCGGCAATGCCGAGGCGGCGGCCCTTGGGGCAGGGGCTTTTGCTGCGACCATTGCTCGATGTCTCCCGGGCGGAACTGGAAGCCTATGCCAGCCGGCATGGCTTGAGCTGGGTCGAAGATCCCTCCAATGACGATCATCGTTACGCCCGCAATTTTCTGCGGCAGCGGGTCTTTCCAGTCTTGGCCGAGCAGTGGCCCCAGGCGTCGCTGACCCTGGCCCGCAGCGCCGCGCACCTGAGCGAGGCGCAAGGCTTGCTGGACGAGCTGGCGCAGATCGACCTGGCGCGCGCCCTCACGCCGAATGCCTTCGATTGGCTCGGGCTGCGGTCCCTTGAAATGACATCTTTTCGGGCCCTGTCCCCCGCCCGGCAACGCAATGCGTTGAGTCATTGGCTGGCGCCCGTCACGCGGCTTCCCGACAGTGACCATTGGGTTGGCTGGGACTCGTTGCGTGATGCCAGGGACGATGGCCATCCTGTCTGGCGACTGGCCGATGGGGAAATACACCGGACCGGCGGACGCATCTGGTGGTTATCCGACCACTGGCTGCAGCCAGTCTCAAGCCCCGTTGAATGGCCTTGCGTGGATCAGCCTTTGGCCTTGCCGGGCAATGGCCGGGTGAGCTTGCGCGGCGAAGCCCCCCCGGGACCGCTTTGCGTTCGCTATCGCCGGGGCGGCGAAGTCATGGAATTGCCGGGTCGTGGGCACCGGGACCTCAAGCGTTTGCTCAACGAAAACAGCGTGCCGGCGTTCGTCCGTGGCCGTTTGCCGCTCCTGTACCGGGGCGAGCAATTGCTGGGGTTGGCCAATCTGAAGGGGTTCGATCGAGACGCCAGTGACCGTTGGCAACTCATTTGGCAGCCATGA	MNSNTDLPTRLLAQLSDWRNASTWRIAFSGGLDSTVLLHLLVSLAKSQVLPPLGAIHVHHGLQAVAEAWPEHCRRVCEALGVPLQVISVEVRPGASVERAARDARYRAFIAATQNNEVLLTAQHRDDQAETLLFRLLRGAGARGLSAMPRRRPLGQGLLLRPLLDVSRAELEAYASRHGLSWVEDPSNDDHRYARNFLRQRVFPVLAEQWPQASLTLARSAAHLSEAQGLLDELAQIDLARALTPNAFDWLGLRSLEMTSFRALSPARQRNALSHWLAPVTRLPDSDHWVGWDSLRDARDDGHPVWRLADGEIHRTGGRIWWLSDHWLQPVSSPVEWPCVDQPLALPGNGRVSLRGEAPPGPLCVRYRRGGEVMELPGRGHRDLKRLLNENSVPAFVRGRLPLLYRGEQLLGLANLKGFDRDASDRWQLIWQP				NA	NA	NA	NA	NA
D1-36_04015	948	accA	COG0825	Acetyl-coenzyme A carboxylase carboxyl transferase subunit alpha	ATGAACCCGAATTTTCTAGATTTCGAACAGCCGATCGCCGACCTGCAAGCCAAGATCGAAGAGTTGCGCTTGGTCGGTAACGACAATTCGCTGAATATCGGCGATGAAATCTCTCGGCTGCAGGACAAGAGCCGCACGCTGACCGAAGACATCTTCGGCAAGCTGACCAGTTGGCAGATCGCGCGTCTGGCGCGTCATCCGCGTCGTCCCTACACCCTGGACTACATTGAACACATCTTCACCGAGTTCGATGAGCTTCACGGCGACCGTCATTTCTCCGACGACGCCGCGATTGTCGGTGGTGTCGCCCGCCTGGACGACCAGCCAGTGATGGTGATCGGTCACCAGAAGGGTCGTGAAGTGCGCGAGAAGGTGCGTCGCAACTTCGGCATGCCGCGTCCGGAAGGCTACCGCAAGGCTTGCCGCCTGATGGAAATGGCCGAGCGCTTCAAGATGCCGATCCTGACCTTCATCGACACCCCAGGCGCCTATCCGGGCATCGACGCTGAAGAGCGCAACCAGAGCGAAGCGATCGCCTGGAACCTGCGCGTGATGGCGCGCCTGAAGACCCCGATCATCGCCACCGTGATCGGCGAAGGCGGTTCTGGCGGTGCGTTGGCCATCGGTGTCTGCGACCAATTGAACATGCTGCAATATTCCACCTACGCGGTGATTTCGCCGGAAGGTTGCGCTTCGATCCTCTGGAAAACCGCCGAGAAGGCACCGGATGCCGCCGAAGCCATGGGCATCACCGCCGAGCGCCTCAAGGGCCTGGGCATCGTTGATAAAGTGATCAACGAGCCAGTGGGCGGCGCCCATCGCGATCCGGCCGCAGCAGCGGCGCTGATTCGCGCTGAACTGAGCTCGCAGTTGTCGATGCTCAAAACCTTCGACAACGAGGCGCTGCTGGCCCGTCGCTATGAGCGCTTGATGAGCTACGGTCTCTGA	MNPNFLDFEQPIADLQAKIEELRLVGNDNSLNIGDEISRLQDKSRTLTEDIFGKLTSWQIARLARHPRRPYTLDYIEHIFTEFDELHGDRHFSDDAAIVGGVARLDDQPVMVIGHQKGREVREKVRRNFGMPRPEGYRKACRLMEMAERFKMPILTFIDTPGAYPGIDAEERNQSEAIAWNLRVMARLKTPIIATVIGEGGSGGALAIGVCDQLNMLQYSTYAVISPEGCASILWKTAEKAPDAAEAMGITAERLKGLGIVDKVINEPVGGAHRDPAAAAALIRAELSSQLSMLKTFDNEALLARRYERLMSYGL	PGPT0001695_2834	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0001695-accA-K01962	NA	NA
D1-36_04016	3522	dnaE	COG0587	DNA polymerase III subunit alpha	ATGCCGGCTTCATTCGTTCATCTACGCCTGCACACTGAATATTCCCTGGTCGACGGTCTGGTGCGGATCAAGCCCCTGGTCAAGACCCTGGTGGGCATGAACATGCCTGCCGTGGCGGTTACCGACCAGAACAACATGTGCTCGCTGGTCAAGTTCTACAAGAACGCCATGGGCGCCGGGATCAAGCCGATCTGCGGCGCCGACCTGTGGCTGGCGAGCAAGGACCCGGATGCGCCGCTGAGCCGTATCAGCCTGCTGGTGATGAATGCCGTGGGCTACCGCAACCTCACCGAGCTGATTTCCCGCGGCTTTATCGACGGCCAGCGCAACGGCTCGATCATCATCGAGCGCGAATGGGTGGCCGAGGCCAGCGAAGGGTTGATCATGCTGTCGGCGGCCAAGGAGGGCGAGATCGGCCTGGCCCTGCTCAGCGGCAATACCGAAGAAGCCGAGCAGCTCGCTCGCGACTGGATGGCGGTGTTCCCGGATCGCTTCTACATCGAAGTGCAGCGCACCAGCCGTCCCAATGACGAAGAGCACCTGCACGCCGCCGTGGCCCTGGCCGACAAGCTCGGTGCGCCGCTGGTGGCGACCAACGACGTGCGGTTTATCAAGCAAGAAGATTTCGAGGCCCACGAGACCCGCGTCTGCATCGGCGAGGGCCGCGCCCTCGACGACCCGCGTCGGCCGAAGAACTACAGCGACCAGCAGTACCTCAAGAGCGCCGAGGAAATGGCCGAGTTGTTCAGCGACCTGCCCGAAGCGCTGGAAAACACCGTCGAGATCGCCAAGCGCTGCAACATCGAAGTGAAGCTGGGCAAGCACTTTTTGCCCAACTTCCCGATTCCCGATGGCATGACCATCGATGAATATTTCCGCAAGGTCTCGTTCGACGGCCTCGAAGAACGGCTGAGCGTCCTTTTGCCCAAGGACACCACCGAAGATTACGAAGCCAAGCGCCAGGTCTATGTCGATCGGTTGAATTTCGAACTGGATATCATCATCCAGATGGGGTTCCCCGGTTACTTCCTGATTGTGATGGACTTCATCCAGTGGGCCAAGAGCAACGGCGTGCCGGTAGGCCCTGGCCGGGGGTCGGGCGCCGGGTCGCTGGTGGCCTACGTGCAGAAGATCACCGACCTCGACCCGCTGGAATATGACCTGCTGTTCGAACGTTTCCTCAACCCGGAACGGGTTTCCATGCCCGACTTCGACGTCGACTTCTGCATGGACGGTCGCGACCGGGTGATCGACTACGTGGCCGAAAAATACGGCCGCAACGCAGTGAGCCAGATCATCACTTTCGGTTCCATGGCCGCCAAGGCTGTGGTGCGCGACGTGGCGCGGGTGCAGGGCAAGTCCTACGGCCTGGCGGATCGCCTGTCGAAGATGATCCCCTTCGAAGTCGGCATGACCCTGGAAAAAGCCTACGAGCAGGAAGAAATCCTGCGGGACTTCATCAAGGTCGACGAAGAGGCCGCGGAAATCTGGGAGATGGCCCGCAAGCTCGAAGGCGTGGTGCGTAACGTCGGCAAGCACGCCGGTGGCGTGGTGATCGCGCCGACCAAGCTGACCGACTTCTCGCCGATCTATTGCGATGAAGAGGGCGACGGCCTGGTCACCCAGTTCGACAAGGACGACGTCGAGGCGGCGGGCCTGGTGAAGTTCGACTTCCTTGGCCTGCGGACCCTGACCATCATCGACTGGGCGCTCAAGACCATCAACCGCGACCGGGCCAAGGTCGGCGAAGAGCCGCTGGACATTGCCTTCATTCCGCTTGACGACAAGCCGACCTACAGCCTGTTGCAGAAAGCTGAAACCACGGCGGTGTTCCAGCTTGAATCCCGAGGCATGAAGGAGCTGATCAAGAAGCTCAAGCCCGACTGCCTGGAAGACTTGATCGCACTGGTGGCCCTGTTCCGTCCGGGCCCGCTGCAATCGGGCATGGTGGACGACTTCATCAACCGTAAGCACGGGCGCGCCGAGCTGGCCTATCCGCACCCCGACTACCAGTACGAGGGCCTCAAGCCAGTACTGGCACCGACCTACGGCATCATCCTGTATCAGGAACAGGTGATGCAGATTGCCCAGGTGATGGCCGGCTACACCCTCGGCGGCGCGGATATGCTGCGTCGAGCGATGGGTAAGAAAAAGCCCGAGGAGATGGCCAAACAACGCGGCGGTTTCATCGAAGGTTGTGCAAACAACGGCATCGATGCGGACCTGGCGGGCAACATCTTCGACCTGGTGGAAAAATTCGCCGGCTATGGCTTCAACAAATCCCACTCCGCCGCCTATGGCCTGGTGTCGTACCAGACGGCATGGTTGAAAGCACACTACCCGGCGCCGTTCATGGCGGCGGTGCTCTCGGCGGATATGCACAACACCGACAAGGTCGTGACCTTGATCGAAGAAGTGCGGACCATGAAGCTGCGCCTCGACGCGCCGGACGTGAACGCTTCGGAGTTCAAGTTCACGGTGAACGACGAAGGCCGCATCATCTACGGCCTCGGCGCGATCAAGGGCGTGGGCGAAGGCCCGGTGGAGGCGATCACCGAAGCGCGCCAGGACGGGCCCTTCAAGGACCTGTTCGATTTCTGCGCCCGGGTCGACCTCAAACGTATCAACAAGCGTACCCTCGACGGGCTGATCCGCAGTGGCGCCCTGGACCGTTTGGGCCCGTACTTCCATGACGAGCCCAAGGCCTACCAGGCCAACATCGACCGCAACCGCGCGGTGTTGCTGGCGGCGATGGAAGAAGCGATCAAGGCCGCCGAACAGACGGCCCGCACCCACGACAGCGGCCACGCCGACCTGTTTGGCGGGTTGTTCGTCGAGGAAGACGCCGATGTGTATGCCAATCATCGCAAGGCCAAGGAGCTGACCCTCAAGGAGCGCCTCAAGGGCGAGAAAGACACCTTGGGTCTGTACCTCACCGGTCACCCGATCGATGAATACGAAGGCGAGATCCGCCGCTTCGCCCGTCAGCGCATCATCGACCTGAAGCCGGCACGCGACACGCAAACGGTCGCCGGCATGATCATCGCCCTGCGGGTAATGAAAAACAAAAAGGGCGACAAGATGGGCTTCATCACCCTCGACGACCGCTCTGGGCGTATCGAAGCGTCATTGTTTGCCGACGCGTTCCATTCGGCGCAGTCGTTGCTGCAGACGGATGCGATGGTCGTGGTGGAAGGGGAGGTCAGCAATGATGACTTTTCCGGCGGCCTGCGGTTGCGGGTCAAACGCGTAATGAGCATGGAGGATGCCCGCACCAACCTGGCCGAGAGCCTGCGCCTGAAGTTGCAGACCCAGGATCTGAAGGGCGATCAGCTACGCTGGTTGGGTGAATTGTTCAAGCGTCATCGCGGTGCTTGCCCGATTACCATGGAGTACGTGCGCCCCGACGCCAAGGCCGTGCTGCAGTTTGGCGAGGGGTGGCGGATCGACCCGGCGGATGCGTTGATTCAAGCCTTGCGTGACCAGTTCGGCAAAGACAACGTCTTCCTCCAATACCGTTGA	MPASFVHLRLHTEYSLVDGLVRIKPLVKTLVGMNMPAVAVTDQNNMCSLVKFYKNAMGAGIKPICGADLWLASKDPDAPLSRISLLVMNAVGYRNLTELISRGFIDGQRNGSIIIEREWVAEASEGLIMLSAAKEGEIGLALLSGNTEEAEQLARDWMAVFPDRFYIEVQRTSRPNDEEHLHAAVALADKLGAPLVATNDVRFIKQEDFEAHETRVCIGEGRALDDPRRPKNYSDQQYLKSAEEMAELFSDLPEALENTVEIAKRCNIEVKLGKHFLPNFPIPDGMTIDEYFRKVSFDGLEERLSVLLPKDTTEDYEAKRQVYVDRLNFELDIIIQMGFPGYFLIVMDFIQWAKSNGVPVGPGRGSGAGSLVAYVQKITDLDPLEYDLLFERFLNPERVSMPDFDVDFCMDGRDRVIDYVAEKYGRNAVSQIITFGSMAAKAVVRDVARVQGKSYGLADRLSKMIPFEVGMTLEKAYEQEEILRDFIKVDEEAAEIWEMARKLEGVVRNVGKHAGGVVIAPTKLTDFSPIYCDEEGDGLVTQFDKDDVEAAGLVKFDFLGLRTLTIIDWALKTINRDRAKVGEEPLDIAFIPLDDKPTYSLLQKAETTAVFQLESRGMKELIKKLKPDCLEDLIALVALFRPGPLQSGMVDDFINRKHGRAELAYPHPDYQYEGLKPVLAPTYGIILYQEQVMQIAQVMAGYTLGGADMLRRAMGKKKPEEMAKQRGGFIEGCANNGIDADLAGNIFDLVEKFAGYGFNKSHSAAYGLVSYQTAWLKAHYPAPFMAAVLSADMHNTDKVVTLIEEVRTMKLRLDAPDVNASEFKFTVNDEGRIIYGLGAIKGVGEGPVEAITEARQDGPFKDLFDFCARVDLKRINKRTLDGLIRSGALDRLGPYFHDEPKAYQANIDRNRAVLLAAMEEAIKAAEQTARTHDSGHADLFGGLFVEEDADVYANHRKAKELTLKERLKGEKDTLGLYLTGHPIDEYEGEIRRFARQRIIDLKPARDTQTVAGMIIALRVMKNKKGDKMGFITLDDRSGRIEASLFADAFHSAQSLLQTDAMVVVEGEVSNDDFSGGLRLRVKRVMSMEDARTNLAESLRLKLQTQDLKGDQLRWLGELFKRHRGACPITMEYVRPDAKAVLQFGEGWRIDPADALIQALRDQFGKDNVFLQYR				NA	NA	NA	NA	NA
D1-36_04017	660	rnhB	COG0164	Ribonuclease HII	ATGAGCAACGTAAAGCTGCAGATGGGCCTGGATTTCAACCTGGTCGCCGAGGTGGAACAGCTTGTCGCCGGTGTCGATGAAGTAGGACGCGGCCCGTTGTGCGGCGCGGTGGTCACGGCGGCGGTGATTCTCGATCCGACACGGCCGATTCTGGGTCTCGATGACTCGAAGAAACTCACCGAGGCCCGTCGCGAAAAGCTTTATGACGAAATCTGTGAGAAAGCCTTGAGTTGGTGCATCGCCCGGGCCGAAGTCGAAGAAATCGATGAACTCAATATCCTGCACGCCACCATGCTCGCCATGCAGCGTGCGGTGCACGGGCTGCATGTCACGCCGAAGCTGGCGATGATCGACGGCAATCGCTGTCCGAAACTGTCGATGCGCGCCGAGGCGGTCATCCAGGGCGACGGCAAGGTTCCGGCCATCGCAGCCGCCTCGATCCTGGCCAAGGTCAGCCGCGACCGGGAAATGGCCGCGTTCGAATTGATCTACCCCGGCTACGGGATTGGCAGCCACAAGGGTTATCCGACCCCGGTGCATCTGGAAGCCCTGGCACGCCTTGGGCCGACGCCGATCCACAGGCGTTCGTTTGCGCCGGTTCGGCTGGCTTATGAAGCGCGTGTTGGGCTGATCGTGAGTAATCAGGCTCCCATTACATAA	MSNVKLQMGLDFNLVAEVEQLVAGVDEVGRGPLCGAVVTAAVILDPTRPILGLDDSKKLTEARREKLYDEICEKALSWCIARAEVEEIDELNILHATMLAMQRAVHGLHVTPKLAMIDGNRCPKLSMRAEAVIQGDGKVPAIAAASILAKVSRDREMAAFELIYPGYGIGSHKGYPTPVHLEALARLGPTPIHRRSFAPVRLAYEARVGLIVSNQAPIT				NA	NA	NA	NA	NA
D1-36_04018	1131	lpxB	COG0763	Lipid-A-disaccharide synthase	ATGGCCAATCTGCGTATTGCGCTGGTAGCGGGAGAGGCTTCCGGTGACATCCTGGGTGCCGGCTTGATGCGCGCGCTCAAGGCGCAGCATCCCGCGGTCGAATTCATCGGTGTCGGCGGCCCGTTGATGCAGGCCGAAGGCCTGGAGTCCTACTTTCCCATGGAGCGGCTGTCGGTCATGGGCCTGGTGGAGGTGCTCGGGCGCTTGCGCGAGTTACTGGCCCGTCGCAAGAAACTGATCCAGACGCTGATCGAGGAGAAACCGGACGTCTTCATCGGCATCGACGCGCCGGACTTCACCCTCAATATCGAGCTCAAGTTGCGCCAGGCTGGCATCAAGACCGTGCATTACGTCAGCCCGTCCGTCTGGGCCTGGCGGCAGAAGCGGGTGCTGAAGATTCGCGAAGGCTGCGACCTGATGCTCACGCTGCTGCCATTCGAAGCGCGCTTCTACGAAGAAAAAGGCGTGCCGGTGCGGTTCGTCGGGCACACCCTGGCCGATACCATTCCCCTGGAGGCAGACCGCGCGGCGGCTCGCCAGGCATTGGGCCTGCCGGAAGGGCCGCTGGTGGCGTTGATGCCTGGCAGCCGGGGCGGCGAGGTCAGTCGCCTGGGCGGGTTGTTCTTCGACGCCGCCGAACGGATGCGGACGATGCGTCCCGATGTCAGGTTTGTCCTTCCTTGTGCCAGCCCGCAGCGGCGCGGCCAGCTTGAAGCCTTGCTGGCCGGGCGCGATTTGCCGGTGATGCTGCTCGACGGTCAGTCCCACCAAGCGCTGGCCGCCTGCGATGCCGTGTTGATTGCCTCTGGCACTGCTACCCTTGAGGCGTTGTTATACAAACGCCCAATGGTGGTCGCGTATCGTTTGGCGCCGCTGACGTTCTGGATTCTCAAGCGCATGGTCAAGAGCCCTTACGTTTCCTTGCCGAATCTTCTGGCCCAGCGCTTGCTGGTACCGGAGCTGCTTCAGGGCGACGCAACCGCCGAGTCGCTGGCCAATACGCTGTTGCCCCTGATCGACGGCGGCGAGGAACAGACCCGGGGCTTTGACGAAATCCACCGCACCTTGCGACGCGATGCGTCCAACCAGGCTGCGGAGGCTGTATTGACCCTGATCGGCAAGAAACAATGA	MANLRIALVAGEASGDILGAGLMRALKAQHPAVEFIGVGGPLMQAEGLESYFPMERLSVMGLVEVLGRLRELLARRKKLIQTLIEEKPDVFIGIDAPDFTLNIELKLRQAGIKTVHYVSPSVWAWRQKRVLKIREGCDLMLTLLPFEARFYEEKGVPVRFVGHTLADTIPLEADRAAARQALGLPEGPLVALMPGSRGGEVSRLGGLFFDAAERMRTMRPDVRFVLPCASPQRRGQLEALLAGRDLPVMLLDGQSHQALAACDAVLIASGTATLEALLYKRPMVVAYRLAPLTFWILKRMVKSPYVSLPNLLAQRLLVPELLQGDATAESLANTLLPLIDGGEEQTRGFDEIHRTLRRDASNQAAEAVLTLIGKKQ	PGPT0022325_2443	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LIPID_A_METABOLISM,PGPT0022325-lpxB-K00748	NA	NA
D1-36_04019	777	lpxA		Acyl-[acyl-carrier-protein]--UDP-N-acetylglucosamine O-acyltransferase	ATGAGTTTGATTGACCCTCGCGCAATCATCGATCCGTCGGCCGTGCTGGCCGCCGATGTCGAGGTTGGCCCTTGGTCAATCATCGGCGCAGGTGTGGAAATCGGCGAGGGCACGGTGATCGGTCCCCACGTAATTCTCAAGGGGCCGACCCGGATCGGCCGGCACAATCGCATCTACCAGTTTTCATCGGTAGGCGAGGACACGCCCGATCTCAAGTACAAAGGTGAAGAAACCCGCCTGGTGATCGGCGATCACAATGTGATTCGCGAAGGCGTGACGATCCACCGTGGCACCGTCCAGGACCGTTCCGAAACGACGCTGGGCGATCACAACCTGATCATGGCCTATGCCCATATCGGTCACGACAGCATCATTGGCAACCATTGCATCCTGGTCAACAACACCGCGTTGGCCGGCCATGTGCATGTGGATGACTGGGCGATCCTGTCCGGTTTCACCCTGGTCCACCAGTATTGCCATATCGGTGCCCACAGTTTCTCCGGCATGGGCACCGCCATCGGCAAGGATGTCCCGGCCTATGTCACGGTGTTCGGTAACCCGGCCGAAGCCCGCAGCATGAACTTCGAAGGCATGCGTCGTCGTGGTTTCAGCGAAGAGGCGATCACGGCCTTGCGCCGCGCCTACAAGGTCGTCTACCGCCAGGGCCTGACGGTCGACCAGGCGCTCGCCGAACTGGCCGAAGCGTCAGTGCAGTTCCCGGAGGTCGCGACATTCCGCGACTCCATCCAGTCTTCGACCCGCGGCATCACCCGCTGA	MSLIDPRAIIDPSAVLAADVEVGPWSIIGAGVEIGEGTVIGPHVILKGPTRIGRHNRIYQFSSVGEDTPDLKYKGEETRLVIGDHNVIREGVTIHRGTVQDRSETTLGDHNLIMAYAHIGHDSIIGNHCILVNNTALAGHVHVDDWAILSGFTLVHQYCHIGAHSFSGMGTAIGKDVPAYVTVFGNPAEARSMNFEGMRRRGFSEEAITALRRAYKVVYRQGLTVDQALAELAEASVQFPEVATFRDSIQSSTRGITR	PGPT0022320_2500	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0022320-lpxA-K00677	NA	NA
D1-36_04020	441	fabZ	COG0764	3-hydroxyacyl-[acyl-carrier-protein] dehydratase FabZ	ATGATGGACATCAACGAGATTCGCGAATACCTGCCTCACCGTTACCCGTTCCTGCTGGTGGATCGGGTCGTGGACCTGGATGTTGAAGGCAAGCGCATTCGCGCCTACAAGAATGTCAGCATCAACGAACCGTTCTTCAATGGCCACTTCCCAGCGCATCCAATCATGCCGGGCGTGTTGATCATCGAAGCGATGGCTCAGGCTGCCGGGATCCTTGGTTTCAAAATGCTCGACGTGAAGCCTGCCGATGGCACGCTGTATTACTTCGTCGGCTCCGACAAGCTGCGTTTCCGCCAGCCGGTGACCCCGGGCGATCAATTGATCCTCGAGGCCAAGTTCATCAGTTGCAAGCGCCAGATCTGGAAATTCGAATGCCAGGCTTCGGTCGACGGCAAGCCGGTCTGCTCCGCTGAAATCATCTGCGCGGAACGCAAGCTATGA	MMDINEIREYLPHRYPFLLVDRVVDLDVEGKRIRAYKNVSINEPFFNGHFPAHPIMPGVLIIEAMAQAAGILGFKMLDVKPADGTLYYFVGSDKLRFRQPVTPGDQLILEAKFISCKRQIWKFECQASVDGKPVCSAEIICAERKL	PGPT0008365_2676	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008365-fabZ-K02372	NA	NA
D1-36_04021	1056	lpxD_1	COG1044	UDP-3-O-acylglucosamine N-acyltransferase	ATGACAGCGACTATCAAGCTCGGCCAATTGGCTGAGTTCCTCGGCGCCACCCTGCGTGGCGACCCGGAAAAGGTCATCACTGGGCTAGCCACTTTGCAAGAGGCTGGCCCAGCTCAGTTGAGCTTCCTGGCAAATCCCCAGTACCGCAAATACCTGGCTGACAGCCGGGCTGCCGCGTTATTGCTCAAGGCTGGCGATGCCGAAGGGTTTGTCGGCGATGCGCTGATCGTGGCCGATCCGTACCTGGCGTACGCGCGAATTTCCCATCTGTTCGATCCCAAACCCAAGTCGGCGGCAGGCATTCATCCCAGCGCGGTGATCGCGTCGGATGCCGTCGTCGATCCCTCGGCCAGTATCGGTCCCTTCGTCGTCATCGAAAGCGCGGCCCGGATTGGCGCCGGCGTGACGCTGGGCGCCCATTGCTTCATCGGTGCGCGCAGCGAGATCGGCGAGGGCGGTTGGCTGGCTCCGCGGGTCACCCTCTACCACGATGTACGCATCGGCAAACGGGTGGTGATCCAGTCCGGCGCGGTGCTGGGCGGTGAAGGGTTCGGTTTCGCCAATGAGAAGGGCGTCTGGCAAAAGATCGCCCAGATTGGCGGCGTGAGCGTTGGCGACGACGTGGAGATAGGCGTCAATACGGCCATAGACCGTGGCGCGCTGGCCGATACGGTCATCGGCAATGGCGTCAAGCTCGATAACCAGATCCAGATCGCCCACAACGTCCAGGTCGGTGATCACACCGCCATGGCGGCTTGTGTCGGCATTTCCGGCAGCACCAAAATCGGCAAGCACTGCATGCTCGCCGGCGGCGTGGGCCTGGTGGGCCATATCGATATTTGTGACAACGTTTTCCTGACCGGGATGACCATGGTGACCCACTCGATTACCGAGCCGGGTGCCTATTCTTCCGGCACAGCCATGCAACCGGCTGCCGAGTGGCGAAAGAGCGCGGCGCGTATCCGCCAGCTCGACGACATCGCGCGGCGCCTCAAGCAGGTGGAAAAGCGTGTAGGGGACGTGACCCCTGGCGGTAATGCTTCATCAGATGGCTGA	MTATIKLGQLAEFLGATLRGDPEKVITGLATLQEAGPAQLSFLANPQYRKYLADSRAAALLLKAGDAEGFVGDALIVADPYLAYARISHLFDPKPKSAAGIHPSAVIASDAVVDPSASIGPFVVIESAARIGAGVTLGAHCFIGARSEIGEGGWLAPRVTLYHDVRIGKRVVIQSGAVLGGEGFGFANEKGVWQKIAQIGGVSVGDDVEIGVNTAIDRGALADTVIGNGVKLDNQIQIAHNVQVGDHTAMAACVGISGSTKIGKHCMLAGGVGLVGHIDICDNVFLTGMTMVTHSITEPGAYSSGTAMQPAAEWRKSAARIRQLDDIARRLKQVEKRVGDVTPGGNASSDG	PGPT0022340_827	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LIPID_A_METABOLISM,PGPT0022340-lpxD-K02536	NA	NA
D1-36_04022	504			hypothetical protein	GTGCGTAAGTTGACTCAATTGGTTCTCCTGGCGACCGTGCTGGTCGCAGGCCCGGCTTTTGCCGACATGAAAATCGCCGTGCTGAACTATCAGATGGCCTTGCTGGAGTCCGACGCGGCGAAGAAATACGCCGTAGACGCCGAGAAGAAATTTGGCCCGCAACTGACCAAGCTCAAAGGCCTGGAAAGCAGCGCCAAAGGCATTCAGGACCGTCTGGTGGCCGGTGGCGACAAGATGGCCCAGGGCGAGCGCGAACGCCTGGAGCTTGAATTCAAGCAGAAGGCTCGTGACTTCCAGTTCCAGTCCAAGGAACTGAACGAAGCGAAAGCCGTGGCCGACCGTGAAATGCTCAAGCAGCTCAAGCCGAAACTCGACAGCGCCGTGGAAGAAGTCATCAAGAAAGGTGGTTTCGACCTGGTGTTCGAGCGGGGCGCAGTGATCGATGTCAAACCTCAATACGACATCACGCGCCAGGTCATCGAGCGCATGAACCAGCTGAAGTAA	MRKLTQLVLLATVLVAGPAFADMKIAVLNYQMALLESDAAKKYAVDAEKKFGPQLTKLKGLESSAKGIQDRLVAGGDKMAQGERERLELEFKQKARDFQFQSKELNEAKAVADREMLKQLKPKLDSAVEEVIKKGGFDLVFERGAVIDVKPQYDITRQVIERMNQLK	PGPT0024525_1765	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	OTHER_INTEGRAL_MEMBRANE_REMODELLING__PROTEINS,PGPT0024525-hlpA|ompH|skp-K06142	NA	NA
D1-36_04023	2376	bamA_2	COG4775	Outer membrane protein assembly factor BamA	ATGAAACGTCTGCTGCTAACTGCGGTTCTCACCGTATTGATGATCGCCGAAGTTCACGCCGAGTCCTTCACTATCTCTGATATTCGCGTCAACGGCCTCCAGCGGGTTTCCGCAGGTAGCGTCTTTGGTGCCTTGCCGCTGAACGTCGGCGAGCAGGCGGATGATCGGCGCCTGGTGGAATCCACTCGTGCGTTGTTCAAGACCGGCTTCTTTCAAGATATCCAGCTGGGCCGCGACGGCAATGTCCTGGTCATCACGGTCGTCGAGCGCCCTTCGGTCGCCAGTATCGAGATCGAGGGCAACAAGGCGATTTCCACTGAGGACCTGATGAAAGGCCTCAAGCAATCCGGCCTGGCCGAAGGCGAGATCTTCCAGCGCGCCACTCTCGAAGGTGTGCGTAACGAGCTGCAGCGCCAGTACGTCGCCCAGGGTCGCTATTCGGCCACAGTCGACACCGAAGTGGTGCCGCAGCCACGCAACCGCGTCGGCCTGAAGGTCAACATCAACGAAGGCACCGTGGCGGCCATCCAGCACATCAACGTGGTGGGCAACACGGTTTTCCCGGATGAAGACCTGATCGACCTGTTCGAGCTCAAGACCACCAACTGGCTGTCGTTCTTCAAGAACGACGACAAGTACGCCCGTGAAAAACTTTCCGGTGACCTGGAGCGCCTGCGTTCCTACTACCTGGACCGTGGCTACATCAACATGGATATCGCTTCGACCCAGGTGTCCATTACCCCGGACAAGAAGCACGTCTACATCACCGTCAACGTCAACGAAGGCGAGAAGTACACCGTTCGTGACGTCAAGCTCAGTGGTGACCTGAAAGTCCCTGAAGACCAGGTGAAATCACTCTTGCTCGTGCAGAAGGGCCAGGTGTTCTCGCGCAAGCTGATGACCACCACGTCCGAGCTGATCACCCGTCGCCTGGGTAACGAGGGTTATACCTTCGCCAACGTCAACGGCGTGCCGCAGCCGCACGATGAAGACCATACCGTCGACATCACCTTCGCCGTGGATCCGGGCAAGCGTGCCTACGTCAACCGCATCAACTTCCGTGGCAACACCAAATCCGAAGATGAAGTGCTGCGTCGTGAAATGCGCCAGATGGAAGGCGGTTGGGCGTCGACCTACCTGATCGACCAGTCCAAGACCCGTCTGGAACGCCTGGGCTTCTTCAAGGAAGTCAACGTCGAGACCCCGGCCGTACCGGGCGTCGATGACCAGGTGGATGTGAACTACAGCGTTGAAGAACAAGCTTCCGGCTCGATCACCGCCAGCGTCGGTTTCGCCCAGAGCGCGGGCCTGATCCTGGGTGGGTCGATCACCCAGAACAACTTCCTGGGCACCGGTAACAAGGTCAGCCTCGGCCTGACCCGAAGCGAGTACCAGACCCGCTACAACTTCGGCTACGTGGACCCCTACTGGACCGCCGACGGCGTGAGCCTGGGCTACAACGCCTTCTATCGCACCACCGACTACGACGAGCTCGATGCTGACATCTCCAGCTACGCCGTGGACAGCCTGGGTGCGGGTGTGAACGTTGGTTACCCAATCAGCGAGACTTCGCGCCTTACCTTCGGCCTCACCGCGCAGCAGGACAAGATCAACACCGGTCGCTACACCGTTGACGAGATTTTCGATTTCGTCGAGAAGGAAGGCGATAACTACCTGAACTTCAAGGCGTCTGTCGGCTGGTCCGAATCGACCTTGAACAAGGGCGTGCTGGCGACGCGCGGTCGGTCCCAGAGCCTGGTGCTGGAAACCACCACCCCTGGCAGTGACCTGTCGTTCTTCAAGCTCGATTACCGTGGCCAGTTGTTCCAGCCGTTGACCGACAACTACACCATGCGCCTGCACACCGAGCTGGGTTATGGCGATGGCTACGGTTCGACCGATGGCCTGCCGTTCTATGAGAACTACTACGCCGGTGGTTTCAACTCGGTCCGTGGTTTCAAGGACAGCACCTTGGGCCCGCGCAGTACGCCGAGCCGTGGCACCAACCCGGGGACCATCCGCGATCCGGACCAGGATCCGCTGCCGTTCGGTGGCAACGTGCTCATCCAGGGCGGCGCGGAAATCCTGTTCCCGATGCCGTTCGTCAAGGATCAGCGCTCCCTGCGTACCTCGGTATTCTGGGACGTGGGTAACGTATTCGACTCCAGTTGTGATGACACCACCAACGCTAACGGTACGAGTTCCAATACCAAGTGCAACGACATCAGCCTCAGCAACCTGGCCAGCTCCGTCGGTGTGGGCGTGACCTGGGTCACCGCGCTGGGCCCGTTGAGCTTCGCATTGGCGATGCCGATCAAGAAACCGGACGACGCTGAAACCCAAGTGTTCCAATTCTCCCTCGGCCAGACGTTCTAA	MKRLLLTAVLTVLMIAEVHAESFTISDIRVNGLQRVSAGSVFGALPLNVGEQADDRRLVESTRALFKTGFFQDIQLGRDGNVLVITVVERPSVASIEIEGNKAISTEDLMKGLKQSGLAEGEIFQRATLEGVRNELQRQYVAQGRYSATVDTEVVPQPRNRVGLKVNINEGTVAAIQHINVVGNTVFPDEDLIDLFELKTTNWLSFFKNDDKYAREKLSGDLERLRSYYLDRGYINMDIASTQVSITPDKKHVYITVNVNEGEKYTVRDVKLSGDLKVPEDQVKSLLLVQKGQVFSRKLMTTTSELITRRLGNEGYTFANVNGVPQPHDEDHTVDITFAVDPGKRAYVNRINFRGNTKSEDEVLRREMRQMEGGWASTYLIDQSKTRLERLGFFKEVNVETPAVPGVDDQVDVNYSVEEQASGSITASVGFAQSAGLILGGSITQNNFLGTGNKVSLGLTRSEYQTRYNFGYVDPYWTADGVSLGYNAFYRTTDYDELDADISSYAVDSLGAGVNVGYPISETSRLTFGLTAQQDKINTGRYTVDEIFDFVEKEGDNYLNFKASVGWSESTLNKGVLATRGRSQSLVLETTTPGSDLSFFKLDYRGQLFQPLTDNYTMRLHTELGYGDGYGSTDGLPFYENYYAGGFNSVRGFKDSTLGPRSTPSRGTNPGTIRDPDQDPLPFGGNVLIQGGAEILFPMPFVKDQRSLRTSVFWDVGNVFDSSCDDTTNANGTSSNTKCNDISLSNLASSVGVGVTWVTALGPLSFALAMPIKKPDDAETQVFQFSLGQTF				NA	NA	NA	NA	NA
D1-36_04024	1353	rseP	COG0750	Regulator of sigma-E protease RseP	ATGAGCGCGCTCTATATGATCGTCGGCACCCTGGTTGCGCTGGGTGTGCTGGTCACTTTTCACGAATTCGGCCATTTCTGGGTCGCGCGTCGCTGTGGCGTCAAGGTCCTGCGTTTTTCCGTCGGCTTCGGCATGCCCCTGCTACGCTGGCACGACAAGCAGGGCACTGAATTCGTTGTCGCGGCCATCCCCCTGGGCGGCTACGTGAAGATGCTCGACGAGCGCGAGGGTGAAGTTCCTCTCGACCAGCTCGACCAATCCTTCAATCGCAAGACCGTTCGTCAGCGCATCGCCATCGTGGCGGCGGGGCCGATCGCCAACTTCCTGCTGGCCCTGGTGTTTTTTTGGGCGCTGGCCATGCTGGGCAGCGAGCAGGTGCGCCCTGTCATTGGCGCGGTCGAGGCGGGGAGCGTTGCGGCGCGCGCCGGGTTGGGCGCGGGCCAGGAAATCGTGGCCATCGATGGCGAGCCAACATCAGGCTGGGCCGCCGTCAATCTGCAATTGGTGCGTCGCCTGGGTGAGAGCGGTTCCCTGCAGATGATCGTTCGCGAGGAGGGATCCACCGCGGACTCGCCCCGGGAGCTGGTACTCGATAATTGGCTCAAAGGTGCCGACGAGCCTGATCCGATCCGCTCCCTCGGGATCCGTCCATGGCGTCCCGCGCTGGCGCCTGTCCTCGCCGAACTCGACCCGAAAGGCCCGGCACATGCCGCGGGCCTGAGGACCGGTGACCGTTTGCTCGCGTTCGACGGGCGGGCGGTCAGCGACTGGCAACAGGTGGTCGACTCGGTTCGTGTCCGTCCTGATGCCAAAATATTGCTGAGCGTGGAGCGCGACGGCGCCACGATTGATGTTCCCGTGACGTTGGCCGCCCGTGGCGAAGCCAAAGCGCCGACGGGTTACCTGGGGGCCGGGGTCAAGGCGGTCGACTGGCCACCGGAGATGGTTCGAGAGGTCAGCTTCGGCCCTGTCGCGGCAATTGGCGAGGGCGCGCGGCGTACTTGGACCATGAGTGTCCTGACCCTCGACTCGCTGAAGAAAATGTTGTTCGGCGAGCTCTCGGTAAAAAACTTGAGTGGACCGATAACCATTGCTAAAGTGGCGGGCGCTTCTGCCCAGTCGGGCGTCGCTGATTTCCTGAATTTCCTTGCTTATCTGAGCATTAGCCTGGGGGTTCTGAATTTGCTGCCCATCCCGGTACTGGATGGGGGGCATCTGCTGTTTTATCTGATCGAGTGGGCGCGTGGTCGTCCCTTGTCGGATCGGGTGCAAGGTTGGGGGATACAGATCGGTATCAGCTTGGTGGTCGGGGTGATGTTGCTTGCCTTGGTCAACGATCTGGGTCGTCTGTAA	MSALYMIVGTLVALGVLVTFHEFGHFWVARRCGVKVLRFSVGFGMPLLRWHDKQGTEFVVAAIPLGGYVKMLDEREGEVPLDQLDQSFNRKTVRQRIAIVAAGPIANFLLALVFFWALAMLGSEQVRPVIGAVEAGSVAARAGLGAGQEIVAIDGEPTSGWAAVNLQLVRRLGESGSLQMIVREEGSTADSPRELVLDNWLKGADEPDPIRSLGIRPWRPALAPVLAELDPKGPAHAAGLRTGDRLLAFDGRAVSDWQQVVDSVRVRPDAKILLSVERDGATIDVPVTLAARGEAKAPTGYLGAGVKAVDWPPEMVREVSFGPVAAIGEGARRTWTMSVLTLDSLKKMLFGELSVKNLSGPITIAKVAGASAQSGVADFLNFLAYLSISLGVLNLLPIPVLDGGHLLFYLIEWARGRPLSDRVQGWGIQIGISLVVGVMLLALVNDLGRL	PGPT0011685_1121	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-PILUS|FIMBRIAE_SYSTEM	MOTILITY-PILUS_SYSTEM,PGPT0011685-rseP-K11749	NA	NA
D1-36_04025	1191	dxr	COG0743	1-deoxy-D-xylulose 5-phosphate reductoisomerase	GTGAGTCGTGCACAGCAGATCACTGTGCTGGGCGCTACGGGTTCGATCGGCCTCAGCACGCTGGACGTCATTGGCCGGCACCCTGAGCGCTACCAGGTGTTCGCCCTCAGTGGTTTCACGCGCTTGAGCGAGTTGCTGGCGCTGTGCATTCGCCACGCGCCACGGTTTGCCGTAGTGCCCGAGGCTGGCGTGGCGAGCGCGCTGCAAGACGACCTGCGGGCCGCGGGGCTACAAACCCGGGTGCTTGTGGGGGAAGAGGGTCTTTGCCAGGTGGCCTCCGATCCGGAAGTCGACGCCGTGATGGCGGCGATCGTGGGTGCGGCGGGGCTGCGCCCGACCTTGGCGGCGGTGGAGGCTGGCAAGAAAATTCTGCTGGCCAATAAAGAGGCGCTGGTGATGTCTGGCGCGCTGTTCATGCAAGCGGTGCGCAAAAGCGGCTCGGTACTGTTGCCGATCGACAGCGAACACAACGCGATTTTCCAATGCATGCCGCAGGACTTTTCCCGTGGCTTGGAGGCAGTGGGCGTCCGGAGGATTCTTCTGACGGCGTCCGGTGGTCCGTTCCGGCAGACACCGCTGGAAGAATTGGTGCATGTTTCACCCGAGCAGGCCTGCGCTCATCCGAACTGGTCCATGGGGCGCAAGATATCCGTGGATTCAGCCAGCATGATGAACAAAGGGTTGGAGTTGATCGAGGCCTGCTGGCTGTTCGACGCCAAGCCGTCGCAGGTAGAAGTGGTGATCCACCCGCAAAGCGTGATCCACTCCCTCGTCGACTACATCGATGGTTCGGTGCTGGCCCAGTTGGGCAACCCGGACATGCGCACGCCGATCGCCAACGCGTTGGCCTGGCCGGAGCGGATTGATTCGGGAGTGGCGCCGCTGGACCTGTTCGCGATCGCGCGCCTGGATTTCCAGGCGCCCGATGAACAGCGCTTTCCCTGCCTGCGCCTGGCGCGGCAGGCGGCAGAGGTGGGCGACAGCGCGCCGGCCATGCTTAATGCCGCTAACGAAGTGGCGGTTGCAGCGTTTCTCGATGGGCGTGTCCGTTACCTCGAGATCGCGAGTATCATCGAGGAAGTCTTGAACCTCGAGGCCGTGGTCTCCCTCGATGACCTCGACGCGGTATTTACCGTGGATGCCAGGGCTCGCCAGTTGGCGGGCCAGTGGTTGAGCCGCCACGGGCGTTGA	MSRAQQITVLGATGSIGLSTLDVIGRHPERYQVFALSGFTRLSELLALCIRHAPRFAVVPEAGVASALQDDLRAAGLQTRVLVGEEGLCQVASDPEVDAVMAAIVGAAGLRPTLAAVEAGKKILLANKEALVMSGALFMQAVRKSGSVLLPIDSEHNAIFQCMPQDFSRGLEAVGVRRILLTASGGPFRQTPLEELVHVSPEQACAHPNWSMGRKISVDSASMMNKGLELIEACWLFDAKPSQVEVVIHPQSVIHSLVDYIDGSVLAQLGNPDMRTPIANALAWPERIDSGVAPLDLFAIARLDFQAPDEQRFPCLRLARQAAEVGDSAPAMLNAANEVAVAAFLDGRVRYLEIASIIEEVLNLEAVVSLDDLDAVFTVDARARQLAGQWLSRHGR	PGPT0007585_1798	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007585-ispC|dxr-K00099	NA	NA
D1-36_04026	807	cdsA	COG0575	Phosphatidate cytidylyltransferase	ATGCTAAAACAACGAATCATCACAGCCTTGATCCTGTTGCCCATCGCGTTGGGTGGTTTTTTCCTATTGGAAGGTGCGGGCTTCGCCCTGTTCATCGGCCTGGTCGTGACGTTGGGCGCTTGGGAATGGGCGCGGCTGGCGGGTTTTGCCGCTCAATCGGCGCGCGTGACCTACGCGGCGGCGGTAGCGGCCATGTTGTTCATCATGTATGTGGTGCCTGGTATCGCGCCCTGGGTACTGGGAGCGGCGGTGCTCTGGTGGGCAACCGCGACGTTCCTGGTCTTGACCTATCCGCGTACCACGCACCATTGGTCCAATGCCGCGACCAAGCTGGTGATAGGGCTGCTGATCCTGTTGCCGGCCTGGCAAGGGCTGATCTGGATCAAGCAGGGGCCTCTGGGCAACTGGCAGATCATGGCGGTGATGGTGCTGGTGTGGGGCGCCGATGTCGGAGCCTATTTTTCTGGCCGTGCCTTCGGCAAGCGCAAGCTGGCGCCAAAGGTCAGTCCTGGCAAGAGCTGGGAAGGCGTCTATGGCGGCCTTGCCTTGAGCCTGGTCATCACGGCGGTGGTCGGCTTCGTGCGAGACTGGACCGTCGCGCAACTGTTGATGGGGTTGTTCGGCGCGGCCCTCATCGTGTTTGTCTCGGTGGTCGGCGACTTGACCGAAAGCATGTTCAAGCGCCAGTCCGGGATCAAGGACAGCAGTAACCTGCTGCCGGGTCACGGCGGCGTACTGGATCGTATCGACAGCCTGACTGCCGCGATTCCTGTCTTCGCCGTTCTGCTCTGGATGGCCGCGTCGTGA	MLKQRIITALILLPIALGGFFLLEGAGFALFIGLVVTLGAWEWARLAGFAAQSARVTYAAAVAAMLFIMYVVPGIAPWVLGAAVLWWATATFLVLTYPRTTHHWSNAATKLVIGLLILLPAWQGLIWIKQGPLGNWQIMAVMVLVWGADVGAYFSGRAFGKRKLAPKVSPGKSWEGVYGGLALSLVITAVVGFVRDWTVAQLLMGLFGAALIVFVSVVGDLTESMFKRQSGIKDSSNLLPGHGGVLDRIDSLTAAIPVFAVLLWMAAS	PGPT0007685_4904	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_CYTIDYLYLTRANSFERASE_ACTIVITY,PGPT0007685-cdsA|ynbB-K00981	NA	NA
D1-36_04027	756	ispU	COG0020	Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)	ATGGATAAGACCAAGCAGGCCGTGCCGTTCGCGGTGCCGCGCCACGTGGCGATCATCATGGACGGCAATAACCGCTGGGCCAAGAAACGCTTTATGCCCGGCGTCGCCGGGCATAAAGCCGGGGTTGATGCGGTCCGTGCAGTCATCGAGGTGTGTGCCGAGGCCGGCGTCGAGGTGCTCACCCTGTTCGCCTTCTCCAGCGAGAACTGGCAGCGTCCGGCCGATGAGGTCAGTGCCTTGATGGACCTGTTCCTCAAGGCCTTGCGACGTGAAGCCAAGCGCCTGGACGAAAACAAGATCAGCTTGCGGATCATCGGCGATCGTTCACGTTTTCATCCTGAGCTGCAGGCGGCAATGCGCGAGGCTGAGTCAGCCACGGCTGGCGCCGATCGGTTTGTCCTGCAAATCGCCGCCAATTATGGCGGCCAATGGGATATTGCCCAGGCCGCCCAGCGGCTGGCGCGGGAGGTTCAGGCCGGTCATTTGCGGCCAGAGGACATCACTGCCGACCTGTTGCAAACGTGCCTGGCGACCGGCGACCTGCCGCTGCCGGACTTGTGCATCCGCACCGGTGGCGAACACCGCATCAGCAATTTCCTGCTGTGGCAGCTGGCTTACGCCGAGCTGTACTTCTCCGACCTGTTCTGGCCGGACTTCAAACACGAAGCCATGCGCACCGCGTTGGCCGATTTCGCTTCCCGTCAGCGTCGTTTCGGTAAAACGAGCGAGCAGATCGAAGCTGGAGCCCGGGTTTAA	MDKTKQAVPFAVPRHVAIIMDGNNRWAKKRFMPGVAGHKAGVDAVRAVIEVCAEAGVEVLTLFAFSSENWQRPADEVSALMDLFLKALRREAKRLDENKISLRIIGDRSRFHPELQAAMREAESATAGADRFVLQIAANYGGQWDIAQAAQRLAREVQAGHLRPEDITADLLQTCLATGDLPLPDLCIRTGGEHRISNFLLWQLAYAELYFSDLFWPDFKHEAMRTALADFASRQRRFGKTSEQIEAGARV	PGPT0024180_2172	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024180-uppS|ispU-K00806	NA	NA
D1-36_04028	558	frr	COG0233	Ribosome-recycling factor	ATGATCAACGAAATCAAGAAAGACGCTGAAGAGCGCATGAAGAAATCCTTGGACTCCCTGAGCCACGCATTCGGTCAGATTCGTACCGGCAAGGCTCACCCGAGCATCCTCGGCAGCGTCATGGTGCCTTACTACGGCACTGACACACCGCTGAGCAGCGTTGCCAACGTCACCGTGAAAGATTCGCGCACCCTGCAGGTCGTGGCTTTTGAGCGCAACATGCTCGCTGCTGTAGACAAGGCGATCCAGAGCGCCGGTCTGAACCTCAACCCAACTAACCTGGGTGAGCTGCTGCTGATCCCGATGCCGGCTCTCACCGAGGAAACGCGCAAAGGCTTTACCAAACAGGCCCGTAGCGCTGCGGAAGACGCGCGTGTTGCCGTGCGCAACATCCGTCGTGACGCGTTGGGTGAGCTGAAGAAGCTGGTCAAGGATAAGGAAATCAGTGAAGACGAAGAGCGTCGTGCCATCGCTGATATCGATAAGCTGACCAAAGAATCCGAGGCCCAGATCACCAAGGCCACGGACGAGAAAGAAAAAGACCTGATGGCCGTATAA	MINEIKKDAEERMKKSLDSLSHAFGQIRTGKAHPSILGSVMVPYYGTDTPLSSVANVTVKDSRTLQVVAFERNMLAAVDKAIQSAGLNLNPTNLGELLLIPMPALTEETRKGFTKQARSAAEDARVAVRNIRRDALGELKKLVKDKEISEDEERRAIADIDKLTKESEAQITKATDEKEKDLMAV				NA	NA	NA	NA	NA
D1-36_04029	744	pyrH	COG0528	Uridylate kinase	ATGGCTCAGCAGGGCAGTGGTTATCAGGCTCGCTATAAACGCATTCTACTCAAGCTTAGCGGCGAGGCCCTGATGGGCTCGGAAGAGTTCGGGATCGATCCGAAAGTGCTGGACCGCATGGCCCTGGAAGTTGGCCAGTTGGTCGGGATCGGCGTACAGGTCGGCCTGGTCATCGGCGGTGGCAACCTGTTCCGTGGTGCTGCGCTGAGCGCGGCGGGCATGGATCGGGTCACGGGCGACCACATGGGCATGCTGGCCACTGTGATGAACGCTCTGGCTATGCGCGACGCGCTGGAGCGTGCCAATATCTCGGCCATCGTGATGTCGGCCATTTCCATGGTTGGCGTGACCGATCACTACGATCGCCGCAAGGCCATGCGCCACCTCAACTCCAAGGAAGTGGTGATCTTTGCCGCCGGTACCGGTAATCCGTTCTTCACCACGGATTCGGCCGCGTGCCTGCGAGCGATCGAAATCGATGCCGATGTCGTGCTCAAGGCAACCAAGGTAGATGGCGTGTACACCGCTGACCCGTTCAAAGACCCGCATGCCGAGAAGTTCGATCATCTGACCTACGATGAAGTGCTGGATCGCAAGCTGGGTGTAATGGATCTGACAGCTATCTGCCTGTGCCGCGACCACAAGATGCCGCTGCGCGTTTTCAACATGAACAAACCCGGTGCCCTGCTGAATATCGTCCATGGCGGCGCCGAAGGAACACTGATCGAGGAAGGCAAGCAATGA	MAQQGSGYQARYKRILLKLSGEALMGSEEFGIDPKVLDRMALEVGQLVGIGVQVGLVIGGGNLFRGAALSAAGMDRVTGDHMGMLATVMNALAMRDALERANISAIVMSAISMVGVTDHYDRRKAMRHLNSKEVVIFAAGTGNPFFTTDSAACLRAIEIDADVVLKATKVDGVYTADPFKDPHAEKFDHLTYDEVLDRKLGVMDLTAICLCRDHKMPLRVFNMNKPGALLNIVHGGAEGTLIEEGKQ	PGPT0021205_790	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021205-pyrH-K09903	NA	NA
D1-36_04030	867	tsf	COG0264	Elongation factor Ts	ATGGCAGAGATTACTGCAGCGTTGGTCAAAGAACTGCGCGAGCGTACCGGCGAAGGCATGATGGATTGCAAGAAAGCCTTGACCAAGGCTGGCGGCGACATCGAGAAAGCCATTGATGACATGCGCGCTTCGGGCGCCATCAAGGCTGCCAAGAAAGCTGGCAACGTTGCCGCTGAAGGCGCCATCGCCATCAAGGACGACGGTAAAGCCGCCGTTCTGCTGGAAGTCAACTCCCAGACCGACTTCCTGGCTCTGCAGGATGACTTCAAGGCATTCGTCGCTGCCAGCGTCGAAAAAGCTTTCGCTGACAAACTGACCGACGCAGCTCCGCTGATCGAAGCTCAGGAAGAAGCCCGCCTGGTCCTGGTTGGCAAGACCGGCGAAAACGTCAACATCCGTCGCCTGGTTCGCGTTGAAGGTGATGTGGTTGGTACCTACCTGCACGGCAACAAGATCGGTGTTGCAGTTGTCCTGAAGGGCGGCGATACCGAGCTGGCGAAAGACATCGCCATGCACGTGGCTGCAACCAACCCTGAGTTCCTGCTGCCTTCGGACGTTTCGGCTGAAGCGATCGAGCGCGAGAAGGGTGTTTTCCTGCAGCTGAACGAAGAGAAGCTGAAAGGCAAGCCTGCTGAAATCGCTGAAAAAATGGTCAGCGGCCGTATTTCCAAATTCCTGGCCGAAGCCAGCCTGGTTGAGCAGGCGTTCGTCAAGAACCCGGAAATCAAGGTCGGCGACCTTGCTAAGAAAGCCGGCGCTGAAATCGTTTCGTTCACCTACTTCAAAGTAGGCGAAGGCATCGAGAAGCCGGTCGACAACTTCGCTGAAGAAGTTGCTGCCCAGGTAGCTGCTGCCAGCAAGCAATAA	MAEITAALVKELRERTGEGMMDCKKALTKAGGDIEKAIDDMRASGAIKAAKKAGNVAAEGAIAIKDDGKAAVLLEVNSQTDFLALQDDFKAFVAASVEKAFADKLTDAAPLIEAQEEARLVLVGKTGENVNIRRLVRVEGDVVGTYLHGNKIGVAVVLKGGDTELAKDIAMHVAATNPEFLLPSDVSAEAIEREKGVFLQLNEEKLKGKPAEIAEKMVSGRISKFLAEASLVEQAFVKNPEIKVGDLAKKAGAEIVSFTYFKVGEGIEKPVDNFAEEVAAQVAAASKQ				NA	NA	NA	NA	NA
D1-36_04031	738	rpsB	COG0052	30S ribosomal protein S2	ATGTCCCAAGTCAACATGCGCGATATGCTGAAGGCCGGTGTGCACTTCGGCCACCAGACCCGTTACTGGAACCCGAAAATGGGCAAGTACATTTTCGGCGCGCGCAACAAGATCCACATCATCAACCTTGAAAAAACCCTGCCGATGTTCAACGAAGCACTGACCTTCGTAGAGCGCCTGGCCCAGGGCAAAAACAAGATTCTGTTCGTCGGCACCAAGCGTTCCGCCGGCAAGATCGTTGCTGAAGAAGCAGCACGTTGCGGTTCGCCGTACGTCGATCACCGCTGGTTGGGCGGCATGCTGACCAACTTCAAGACCATCCGCGCTTCCATCAAGCGTCTGCGTGACCTTGAAGTCCAGTCCGAAGACGGTACTTTCGCCAAGCTGACCAAGAAAGAAGCGCTGATGCGCACTCGCGATCTTGAGAAGCTGGACCGCTCCCTGGGCGGTATCAAGGACATGGGCGGTCTGCCTGACGCACTGTTCGTGATCGACGTTGACCACGAGCGCATCGCGATCACCGAAGCCAACAAGCTGGGTATCCCGGTCATCGGCGTTGTCGATACCAACAGCAGCCCGGAAGGCGTTGACTACATCATCCCAGGCAACGATGACGCCATCCGCGCCATCCAGCTGTACATGGGTTCGATGGCTGACGCTGTTATCCGTGGTCGCAACAACGTTAATGGCGGCACCGAAGTCTTCGCTGAAGAAGCTCCGGCGGCAGCCGCTGAGTAA	MSQVNMRDMLKAGVHFGHQTRYWNPKMGKYIFGARNKIHIINLEKTLPMFNEALTFVERLAQGKNKILFVGTKRSAGKIVAEEAARCGSPYVDHRWLGGMLTNFKTIRASIKRLRDLEVQSEDGTFAKLTKKEALMRTRDLEKLDRSLGGIKDMGGLPDALFVIDVDHERIAITEANKLGIPVIGVVDTNSSPEGVDYIIPGNDDAIRAIQLYMGSMADAVIRGRNNVNGGTEVFAEEAPAAAAE				NA	NA	NA	NA	NA
D1-36_04033	783	map	COG0024	Methionine aminopeptidase	ATGACCGTTACCCTCAAGACTCCCGAGGACATCGCTAAAATGCGTGTCGCCGGCAAACTCGCCGCCGAAGTGCTGGAAATGATCGCCGACTACGTCAAGCCGGGCGTTACCACTGAAGAGCTGGACCGCATCTGCCACGACTATATCGTCAACGAGCAGAAAGCCATCCCTGCCCCGCTCAACTATAAAGGCTTTCCGAAGTCGATCTGTACCTCGATCAACCATGTGGTCTGCCATGGCATCCCCAATGAGAAACCATTGAAGGACGGCGATACCCTGAACATCGACGTCACTGTCATCAAGGATGGCTACCATGGCGATACCAGCCGGATGTTCCATGTCGGCAACGTACCGGAGTGGGCCGAACGCCTGTCCAAGGTCACCCAGGAATGCATGTACATGGCCATCGAACTGGTGAAACCGGGCTGCCGCCTGGGCGACATCGGCGAAGTGATCCAGAAGCACGCGCAGAAGAACGGTTTCTCGGTGGTGCGCGAGTTCTGCGGCCACGGCATCGGCAAGGTGTTCCATGAAGAACCGCAAATCCTGCATTACGGCCGCGCCGGCACCGGCATGGAACTGCAGGCGGGCATGACCTTCACCATCGAGCCGATGATCAACCAGGGCCGCGCCGACACCAAGGTACTGGGCGACGGCTGGACCGCCATCACCAAGGACCGCAAGTTGTCGGCCCAATGGGAGCACACGCTGCTCGTCACCGAGACCGGCTACGAAATCTTTACCCTGCGCAGCGATGACACCATCGCGCGTGTTTCCGCCTGA	MTVTLKTPEDIAKMRVAGKLAAEVLEMIADYVKPGVTTEELDRICHDYIVNEQKAIPAPLNYKGFPKSICTSINHVVCHGIPNEKPLKDGDTLNIDVTVIKDGYHGDTSRMFHVGNVPEWAERLSKVTQECMYMAIELVKPGCRLGDIGEVIQKHAQKNGFSVVREFCGHGIGKVFHEEPQILHYGRAGTGMELQAGMTFTIEPMINQGRADTKVLGDGWTAITKDRKLSAQWEHTLLVTETGYEIFTLRSDDTIARVSA	PGPT0020010_6564	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
D1-36_04034	2703	glnD	COG2844	Bifunctional uridylyltransferase/uridylyl-removing enzyme	ATGCCGCAGGTGGACCCCGAACTCTTCGACCGCGGCCAGTTCCAGGCTGAACTGGCCCTGAAGGCAAGCCCCATTTCGGCGTTCAAGAAGGCGATCCGCCAGGCCCACGAAGTGCTCGACCAGCGCTTTCGCAGTGGCCGCGATATCCGCCGGTTGATCGAAGACCGCGCCTGGTTCGTCGACAACATCCTGCAAAAGGCCTGGGACCAGTTCAACTGGAGCGAGGATGCCGACATCGCGCTGGTGGCGGTGGGCGGCTACGGGCGTGGCGAACTGCACCCCTATTCCGACATTGATCTGCTGATCCTTTTGGATAGCGCGGACCACGAGATTTTCCGCGATTCCATCGAGCGCTTCCTGACGCTGCTGTGGGACATTGGCCTGGAAGTCGGCCAAAGCGTGCGTTCTGTGCAGGAATGCGCCGACGAGGCCCGCGCCGACCTGACGGTGATCACCAACCTGATGGAAAGCCGCACCATCGCCGGCCCCGAGCGCCTGCGCCAGCGCATGCTGGATGTGACCAGCACCGCGCACATGTGGCCCAGCAAAGACTTTTTCCTGGCCAAGCATGCCGAGCAGAAGGCCCGGCACCACAAGTACAACGACACCGAATACAACCTGGAGCCCAACGTCAAGGGCTCGCCCGGCGGGCTGCGTGACATCCAGACGATCCTGTGGGTCGCCCGCCGTCAGTACGGCACGCTGAACCTGCGAGCCCTGGCCGGCGAAGGTTTCCTGGTGGAAAGCGAGAACGCCTTGCTGGCATCGTCCCAGGAATTCTTATGGAAGGTCCGCTACGCCCTGCACATGCTCGCTGGACGCTCCGAGGACCGCTTGCTGTTCGATCATCAGCGCTCCATTGCCGGCCTGCTGGGTTTCGAAGGACAGGATGCCAAGCAATCCATCGAAAACTTCATGCAGCAGTACTACCGTGTCGTGATGAGCATCGCCCAGCTCAGCGAACTGATCATCCAGCACTTCGAAGAGGTCATCCTCGCCCCCGAGGACGAGGAGCCGCCGCAGCCGATCAACTCGCGCTTCCAACTGCACGACGGCTACATCGAAGCGCGCAATGCCAATGTGTTCCGCCGCACCCCGTTCGCCATGCTCGAGGTTTTCGTGCTCATGGCCCAGCAACCGGAAATCAAGGGCGTGCGCGCCGATACCATTCGCCTGCTGCGGGAAAACCGGCATCTGATCGACGATGATTTCCGCCACGATATCCGCAACACCAGCCTGTTCATCGAACTGTTCAAGTGCAAGATCGGCGTGCACCGCAACCTGCGACGCATGAACCGCTACGGGATCCTGGGGCGCTACCTGCCGGAATTCGGCTACATCGTCGGGCAGATGCAACACGACCTGTTCCACATCTACACGGTCGACGCCCACACCCTGAACCTGATCAAGCATCTGCGTAAGCTGCAGTACACCCAGGTGTCGGAGAAATTTCCGCTGGCCAGCAAGCTCATGGCCAAGCTGCCCAAGCCCGAGCTGATCTACATGGCGGGGCTGTATCACGACATCGGCAAGGGCCGCCAGGGCGACCATTCCGAGATTGGCGCGGTGGATGCCGAGGCTTTTTGCCAGCGGCACCAACTGCCAACTTGGGACAGCCGGCTGATCGTCTGGCTGGTGCAGAACCACCTGGTGATGTCCACCACCGCCCAGCGCAAGGACCTGTCCGACCCGCAGGTGATCCATGACTTCGCCCAGGCCGTTGGCGACGAAACCCGCCTGGATTACCTCTACGTGCTGACCGTTGCCGACATCAACGCCACCAACCCGACCCTGTGGAATTCCTGGCGCGCCAGCCTGTTGCGCCAGCTCTACACCGAGACCAAGCGCGCCTTGCGCCGTGGCCTGGAAAACCCCGTGGACCGCGAAGAGCAGATCCGCCGCACCCAAAGCGCGGCCCTGGATATCCTGGTGCGCGGGGGCACTGATCCGGACGACGTCGAGCAGCTCTGGTCGCAATTGGGTGATGATTATTTCCTGCGCCATACCGCCGGCGACGTGGCCTGGCACAGCGACGCGATCCTGCAGCAACCGGCCGATGGCGGGCCGCTGGTGTTGATCAAGGAAACCACCCAGCGCGAGTTCGAGGGCGGCACGCAGATCTTCATCTATGCGCCGGACCAGCACGACTTCTTCGCGGTGACGGTGGCGGCGATGGACCAGCTCAATCTCAACATCCATGACGCTCGGGTCATTACGTCCACCAGCCAGTTCACCCTCGACACCTATATCGTGCTCGACACTGACGGCGACTCTATTGGCGACAACCCGGCGCGGGTCAAGCAGATTCGCGACGGACTCACCGACGCCCTACGCAACCCGGCGGACTACCCGACCATCATCCAGCGACGCGTGCCCCGCCAGCTCAAGCATTTTGCCTTTGCACCACAAGTGACGATCCACAACGACGCCCAGCGTCAGGTCACGGTGTTGGAGCTCAGCGCACCGGATCGCCCGGGCCTGCTGGCGCGAGTCGGCCATATTTTCCTGGAATTCGACCTGTCGCTGCAGAACGCCAAGATCGCCACGCTCGGCGAGCGGGTGGAAGACGTTTTCTTCATCACCGACGCCCACAACCAGCCGTTGTCCGATCCGCAGCTTTGCAGCCGCTTGCAGGAAGCGATCGTCCAGCACTTGAGCGTCAACCAGGAACCCGATGCTCACCTGACTCGCATTAGCATCTGA	MPQVDPELFDRGQFQAELALKASPISAFKKAIRQAHEVLDQRFRSGRDIRRLIEDRAWFVDNILQKAWDQFNWSEDADIALVAVGGYGRGELHPYSDIDLLILLDSADHEIFRDSIERFLTLLWDIGLEVGQSVRSVQECADEARADLTVITNLMESRTIAGPERLRQRMLDVTSTAHMWPSKDFFLAKHAEQKARHHKYNDTEYNLEPNVKGSPGGLRDIQTILWVARRQYGTLNLRALAGEGFLVESENALLASSQEFLWKVRYALHMLAGRSEDRLLFDHQRSIAGLLGFEGQDAKQSIENFMQQYYRVVMSIAQLSELIIQHFEEVILAPEDEEPPQPINSRFQLHDGYIEARNANVFRRTPFAMLEVFVLMAQQPEIKGVRADTIRLLRENRHLIDDDFRHDIRNTSLFIELFKCKIGVHRNLRRMNRYGILGRYLPEFGYIVGQMQHDLFHIYTVDAHTLNLIKHLRKLQYTQVSEKFPLASKLMAKLPKPELIYMAGLYHDIGKGRQGDHSEIGAVDAEAFCQRHQLPTWDSRLIVWLVQNHLVMSTTAQRKDLSDPQVIHDFAQAVGDETRLDYLYVLTVADINATNPTLWNSWRASLLRQLYTETKRALRRGLENPVDREEQIRRTQSAALDILVRGGTDPDDVEQLWSQLGDDYFLRHTAGDVAWHSDAILQQPADGGPLVLIKETTQREFEGGTQIFIYAPDQHDFFAVTVAAMDQLNLNIHDARVITSTSQFTLDTYIVLDTDGDSIGDNPARVKQIRDGLTDALRNPADYPTIIQRRVPRQLKHFAFAPQVTIHNDAQRQVTVLELSAPDRPGLLARVGHIFLEFDLSLQNAKIATLGERVEDVFFITDAHNQPLSDPQLCSRLQEAIVQHLSVNQEPDAHLTRISI	PGPT0000660_724	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-REGULATION	GLN-NITROGEN_REGULATORY_SYSTEM,PGPT0000660-glnD-K00990	NA	NA
D1-36_04035	1200	dapL	COG0436	LL-diaminopimelate aminotransferase	ATGAACAACGCTTTGAACCAGCTCCAGCCGTACCCGTTCGAAAAACTCCGCGCCCTGCTCGGCAGCGTCACGCCGAACCCGGACAAGCGCCCGATCGCGTTGTCCATCGGCGAGCCCAAGCATCGCTCGCCAAGCTTCGTGGCCGAGGCGCTGGCCAGCAATCTGGAAAAAATGGCGGTGTACCCGACCACACTCGGCATCCCGGAACTGCGTGAAGCCATCACCGGCTGGTGCGAGCGCCGCTTCAACGTGCCGAACGGCTGGCTCGACCCGGCGCGCCACGTGCTGCCGGTCAATGGCACCCGCGAAGCCCTGTTCGCCTTCACCCAGACCGTGGTCAACCGTGGCGACAACGCCTTGGTGGTGAGCCCGAATCCGTTCTACCAGATCTACGAAGGCGCGGCGTTCCTGGCCGGGGCCAAGCCGCATTACCTGCCGTGCCTGGACACGAACGGTTTCAATCCGGATTTCGATGCCGTCTCGCCAGACGTCTGGAAACGTTGCCAGATCCTGTTCCTGTGCTCCCCCGGCAACCCGACTGGCGCGCTGATCCCGGTGGATGTGCTGAAGAAACTCATCGCCCTGGCGGATGAATATGACTTCGTTATCGCCTCGGACGAGTGCTACAGCGAACTCTACTTCGACGAACAAACCCCACCGCCAGGCCTACTCACCGCCTGCGTCGAACTGGGCCGCAAGGACTTCAAGCGTTGCGTGGTGTTCCACAGCCTCTCCAAGCGCTCCAACCTGCCCGGCCTGCGCTCCGGTTTCGTGGGCGGCGACGCCGATATCCTCAAGGGCTTTTTGCTGTACCGCACCTATCATGGCTGCGCGATGCCGGTTCAGACCCAACTGGCGAGCATCGCCGCGTGGAACGACGAAGAGCACGTGCGAGCCAACCGCGCCCTGTACCGGGAAAAATTCGACGCCGTGCTGGAAATCCTCAGTCCGGTGCTGGACGTACAACGCCCCGATGGCAGCTTCTACCTGTGGCCGAACGTAGCGGGCGATGATGCCGCCTTCTGCCGCGACTTGTTCGAACAGGAACACGTAACCGTCGTGCCAGGCTCGTACCTGTCCCGCGATGTGGACGGCGTCAACCCAGGCGCCGGCCGCGTGCGCATGGCCCTGGTTGCGCCATTGGCCGAATGCGTGGAAGCGGCGGAGCGGATCCGAGCGTTTATCCAGCGCCGGGGTTGA	MNNALNQLQPYPFEKLRALLGSVTPNPDKRPIALSIGEPKHRSPSFVAEALASNLEKMAVYPTTLGIPELREAITGWCERRFNVPNGWLDPARHVLPVNGTREALFAFTQTVVNRGDNALVVSPNPFYQIYEGAAFLAGAKPHYLPCLDTNGFNPDFDAVSPDVWKRCQILFLCSPGNPTGALIPVDVLKKLIALADEYDFVIASDECYSELYFDEQTPPPGLLTACVELGRKDFKRCVVFHSLSKRSNLPGLRSGFVGGDADILKGFLLYRTYHGCAMPVQTQLASIAAWNDEEHVRANRALYREKFDAVLEILSPVLDVQRPDGSFYLWPNVAGDDAAFCRDLFEQEHVTVVPGSYLSRDVDGVNPGAGRVRMALVAPLAECVEAAERIRAFIQRRG				NA	NA	NA	NA	NA
D1-36_04036	303			hypothetical protein	ATGAACAAACACATCGGATCTGATTTTGACGACTTCCTCGCCGAGCAAGGTATCGCCGAAGAAGTTTCCGCAGCTGCGCTCAAACGCGTTATTGCCTGGCAGATTGCCGAAGCAATGAAGCTTCAGAAAGTGACCAAAAAGGCCTTGGCACAGCGGATGCACACCAGTCGCACTGCTGTTGATCGTGCGCTGGATCAGAACGATGCGGGGATGACGCTGGCAACACTTGCCAGCGCAGCGCGTGCGTTGGGTCAGAGGGTGGAAGTACGGCTGGTGCCTGAGCAGGAAGAAACCCACGCATAA	MNKHIGSDFDDFLAEQGIAEEVSAAALKRVIAWQIAEAMKLQKVTKKALAQRMHTSRTAVDRALDQNDAGMTLATLASAARALGQRVEVRLVPEQEETHA	PGPT0027495_481	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-HicA-HicB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027495-antitoxin_hicB-K18843	NA	NA
D1-36_04037	363			hypothetical protein	ATGATCAAAGATACGCCTAATCCTCCAAAGCCAGCCTCCACTTTCCCCTACGGCGATTACGCCCCCGAAAAACTGCAAGAAGCAGCTGACCGTGTGCTGGATCAATATCTCAAGCCTGATGACGACAGCAAGTCAGAGCCCAAGCCCTCAGTGCAGTTATTCACGGTGGCTGACGGTATCGACACCGAAGTGTTGCTGGCCAACCTCAGCGAAACCCTGGCTTCGGCCAATGCGATGCTCAATGATCTTGCCTTCGATCAGGACGGCTCGCGACGGCATGTAGCGTTGGGGGTGGCGCAGATGATTGAGTTGGGGATGTTGTTGGCGAACAAGTGCCTAGATCGGGTAGAGCTTCGGACTTGA	MIKDTPNPPKPASTFPYGDYAPEKLQEAADRVLDQYLKPDDDSKSEPKPSVQLFTVADGIDTEVLLANLSETLASANAMLNDLAFDQDGSRRHVALGVAQMIELGMLLANKCLDRVELRT				NA	NA	NA	NA	NA
D1-36_04039	303			hypothetical protein	ATGAGAATTATCGCCATCAGTCACCTGAAAGCCTTCTGGGAGAAATACCCAGATTCCGAACAGCAGCTTAAGGCTTGGCTTGACGATGCCAAAAAAGCCACTTGGACCAACCCTAACGACATCAAGGCGCAATACGGTAACGCAAGCATTCTCAAGAGTCGCCGCGTGGTATTCAACATCAAGGGTAACGACTACCGCCTGGTGGTCGCCATTGCCTACCGCTTCGGCGCTGTGTACATCAAGTTTGTCGGCACTCATCGTCGGTACGATGAGATCGACGTAAACACCGTGGAAATGGAGTAA	MRIIAISHLKAFWEKYPDSEQQLKAWLDDAKKATWTNPNDIKAQYGNASILKSRRVVFNIKGNDYRLVVAIAYRFGAVYIKFVGTHRRYDEIDVNTVEME	PGPT0027570_292	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-HigB-HigA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027570-toxin_higB-K19166	NA	NA
D1-36_04040	372			hypothetical protein	ATGAACATTCGCCCAATCCGCACCGATGACGAATACCGGATAGCTCTCAAAGAGATCTCTCCCCTGTTTGAGAATGAGCCTGAACCTGGCACCCCGGAAGGCGATGCTTTCGAAGTCATGATCACTCTGATCGAGGCCTACGAAACCAAGAACTTCCCGGTTGATCTGCCTGACCCAATTGAAGCCATCAAGTTTCGCATGGAGCAATCCGGACTCACCGCGGCCGATCTGGCTCCCGCTATCGGAAAAACGAACCGCGTATACGAGGTGCTCAACCGTAAACGCTCGTTAACTCTGCCCATGATCTGGAAGCTTCACGATATGTTCGGCATTCCAGCAGAAAGCCTGATAAAGCCAGTAAAAGCTGCCTGA	MNIRPIRTDDEYRIALKEISPLFENEPEPGTPEGDAFEVMITLIEAYETKNFPVDLPDPIEAIKFRMEQSGLTAADLAPAIGKTNRVYEVLNRKRSLTLPMIWKLHDMFGIPAESLIKPVKAA	PGPT0027580_972	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-HigB-HigA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027580-REGULATION_higA-K18831	NA	NA
D1-36_04041	363		COG1393	putative protein	TTGACCGATTCAAGCAAAACGTTGCACCTTTTCGGCATCAAAGCCTGTGACACGATGAAAAAGGCGCGCACCTGGCTCGATGATCACGCTGTGCATTACGATTTTCATGACTACAAGACCGCCGGCATCGACCGTGAGCACCTGACTCAATGGTGCGACGAGCATGGCTGGCAAGTGGTGTTGAACCGCGCCGGTACGACCTTTCGCAAACTCGACGACGAACGCAAAGCCGATCTCGACCAGACGAAAGCCATCGAACTGATGCTCGCCCAACCCTCGATGATCAAGCGCCCGGTGCTCGACCTCGGTGACCGTACCCTGATTGGCTTCAAGCCAGATATCTACGCGGCAGAAATCAAGTAA	MTDSSKTLHLFGIKACDTMKKARTWLDDHAVHYDFHDYKTAGIDREHLTQWCDEHGWQVVLNRAGTTFRKLDDERKADLDQTKAIELMLAQPSMIKRPVLDLGDRTLIGFKPDIYAAEIK	PGPT0004720_1602	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0004720-arsC1-K00537	NA	NA
D1-36_04042	1035	dapD	COG2171	2,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-succinyltransferase	ATGTCCACTACCCTGTTCAGCCTGGCCTTCGGCGTCGGCACCCAAAATCGTGAAGGCGCCTGGCTGGAAGTGTTCTACGCACAGCCATTACTCAACCCGTCGGCCGAGATCGTGGCAGCCGTCGCGCCGATCCTTGGCTACAGCGAAGGCAACCAGGCCATCACTTTCACCACCGCTCAGGCCTCGCAACTGGCCGAGGCACTTCGCAGCGTCGACGCCGCGCAAGCCAAGCTGTTGACTCGCCTGGCTGAAAGCCACAAGCCGCTGGTCGCCACCCTGTTGGCCGAGGATGCCCAGCTGAGCTCCACCCCTGAGGCTTACCTGAAGCTGCACCTGTTGTCCCATCGTCTGGTCAAGCCTCACGGCCTGAACCTGGCCGGTATCTTCCCGCTGCTGCCAAACGTGGCATGGACCAGCCAGGGCGCGATCGACCTGGCCGAACTGGCCGAGCACCAGCTCGAAGCCCGCTTGCGTGGCGAGTTGCTGGAAGTGTTCTCGGTGGATAAATTCCCGAAAATGACCGACTACGTGGTCCCGGCCGGCGTGCGTATCGCCGACGCCGCGCGCCTGCGCCTGGGCGCCTATGTGGGCGAAGGCACCACGGTCATGCACGAAGGTTTCGTCAATTTCAACGCCGGCACCGAAGGCCCGGGCATGATCGAAGGCCGTGTTTCGGCGGGCGTGTTCGTCGGCAAGGGCTCGGACCTGGGTGGCGGCTGCTCGACCATGGGTACTCTCTCGGGCGGCGGCAACATTGTGATCAAGGTCGGCGAAGGCTGCCTGATCGGCGCCAACGCCGGCATCGGTATCCCGCTGGGCGACCGCAACACCGTGGAGTCGGGCCTGTACGTGACCGCCGGCACCAAAGTCGCCCTGCTGGATGAGAACAACCAGCTGGTCAAAGTGGTCAAGGCCCGCGATCTGGCTGGCCAGCCGGACCTGTTGTTCCGCCGTAACTCCGAGACCGGCGCGGTGGAATGCAAGACCCACAAGTCGGCCATCGAGCTCAACGAAGCATTGCACGCGCACAACTAA	MSTTLFSLAFGVGTQNREGAWLEVFYAQPLLNPSAEIVAAVAPILGYSEGNQAITFTTAQASQLAEALRSVDAAQAKLLTRLAESHKPLVATLLAEDAQLSSTPEAYLKLHLLSHRLVKPHGLNLAGIFPLLPNVAWTSQGAIDLAELAEHQLEARLRGELLEVFSVDKFPKMTDYVVPAGVRIADAARLRLGAYVGEGTTVMHEGFVNFNAGTEGPGMIEGRVSAGVFVGKGSDLGGGCSTMGTLSGGGNIVIKVGEGCLIGANAGIGIPLGDRNTVESGLYVTAGTKVALLDENNQLVKVVKARDLAGQPDLLFRRNSETGAVECKTHKSAIELNEALHAHN				NA	NA	NA	NA	NA
D1-36_04043	1206	sufS	COG0520	Cysteine desulfurase SufS	ATGTTGATTCAATCCCCCTGGCGTGCCGATTTCCCGGCCATCGCCGCCCTGCAACGGCAAGGCCAGACCTACCTGGACAACGCCGCCACCACGCAAAAACCCCAAGCTTTGCTCGACGCTCTGGCGCATTACTACGCCAACGGCGCGGCCAACGTGCACCGGGCGCAACATCTGCCCGGAGCCCTGGCCACCCAGGCATTCGAAGACAGTCGCCTCAAGGTCTCACAATGGCTCAACGCGGGTGACTGCGGGCAAATCGTATTCACCCACGGCGCCACTTCGGCGTTGAACCTGCTCGCCTACGGGCTGGAACACCTGTTCAACCCAGGCGATGAAATTGTCGTCAGCGCCCTGGAGCATCACGCCAACCTGTTGCCCTGGCAGCAACTGGCCGAGCGCCGCGCGTTGACACTGGTGGTACTGCCACTGGACGCCGACGGCGTTATCGACAGCGCTGCGGCCGCCGAGCTTATCGGTCCTCGCACGCGCCTGTTGGCGGTGAGCCAATTGTCCAACGTGCTTGGCACTTGGCAGCCGTTGCCGGCATTGCTGGCGATGGCCAAGGCGCAGGGTGCGCTGACGGTCATCGATGGCGCCCAAGGCGTCGTCCATGGTCGTCATGATGTGGAGACCTTGGGCTGCGACTTCTATGTGTTTTCCAGTCACAAGCTGTACGGCCCGGAAGGCTTGGGCGTGCTGTTTGGCCGCACCGCAGCGCTTGGCCAACTGCGTCACTGGCAGTTTGGCGGCGAAATGGTGCAGCAGGCCGATTACCACAGCGCCACCTTCCGCCCGGCGCCACTGGGTTTCGAAGCCGGGACGCCGCCTATCGCCAGTGTGATCGGCCTGGGAGCGACCCTCGATTACCTGTCCGGCCTCGACGGGCAGGCGGTCATCGATCATGAAACTGCCCTGCATGACTATCTGCTTCACGGCCTGCAGGCGCGCAACGGCGTGCGCCTGGTGGGCGAGCCGCAACTGGCCCTCGTCAGTTTTGTGGTCGACGGCATCCACAATGCCGACCTGGCGCACCTGCTGACCGAGCAAGGCATCGCCGTGCGCGCCGGGCATCACTGCGCAATGCCGCTGTTCAGGCATCTGAAGCTGTCCGGGGCGATTCGGGTGTCGCTGGCGCTGTACAACGACTCCGCCGATCTCGAACGTTTTTTCGAGGCCCTGGACCAGGCCTTGGAGATGCTGCGATGA	MLIQSPWRADFPAIAALQRQGQTYLDNAATTQKPQALLDALAHYYANGAANVHRAQHLPGALATQAFEDSRLKVSQWLNAGDCGQIVFTHGATSALNLLAYGLEHLFNPGDEIVVSALEHHANLLPWQQLAERRALTLVVLPLDADGVIDSAAAAELIGPRTRLLAVSQLSNVLGTWQPLPALLAMAKAQGALTVIDGAQGVVHGRHDVETLGCDFYVFSSHKLYGPEGLGVLFGRTAALGQLRHWQFGGEMVQQADYHSATFRPAPLGFEAGTPPIASVIGLGATLDYLSGLDGQAVIDHETALHDYLLHGLQARNGVRLVGEPQLALVSFVVDGIHNADLAHLLTEQGIAVRAGHHCAMPLFRHLKLSGAIRVSLALYNDSADLERFFEALDQALEMLR	PGPT0020195_4102	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
D1-36_04044	405	sufE	COG2166	Cysteine desulfuration protein SufE	ATGAACCTGCCTGCCGATGCGGTCGCCGCGCTGCAAGTTTTTCAGGACGCCTCCGGTTGGGAACAGCGGGCCCGCCTGCTGATGCAATGGGGCGATCGCCTGGCGCCATTGAGCGATGCAGACAAGTGCGACGCCAACCTTGTCCACGGCTGTGAGAGCCAGGTGTGGTTGGTGGGGCAGTTGCGCGATGGCCACTGGCAGTTCTCCGCCAACAGCGATGCGAGATTGATCCGTGGCTTGGTGGCGTTGTTGCTCGCGCGGGTCAATGGCTTATCCGCTGACGAGTTACAGCAGGTTGATTTGCCGGATTGGTTCAATCAGTTGGGGTTATCGCGGCAGCTATCGCCGTCGCGCAGCAATGGATTGAATGCGGTGTTGAAGCGCATGCGCGAACTGACGCAATAA	MNLPADAVAALQVFQDASGWEQRARLLMQWGDRLAPLSDADKCDANLVHGCESQVWLVGQLRDGHWQFSANSDARLIRGLVALLLARVNGLSADELQQVDLPDWFNQLGLSRQLSPSRSNGLNAVLKRMRELTQ	PGPT0020195_287	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
D1-36_04045	813	tcdA	COG1179	tRNA threonylcarbamoyladenosine dehydratase	ATGAGTACAGAAGATCCACGGTTTGCCGGCATCGCCCGTTTGTATGGCATCGAAGGCCTGGAGCGCCTGCGGGCGGCCCATGTGGCAATTGTCGGTGTTGGCGGCGTCGGATCCTGGGCGGCGGAAGCCATTGCCCGTTGTGGCGTGGGCGAGATTTCGCTGTTCGACTTGGACGACGTCTGCGTCAGCAACGCAAACCGCCAACTACACGCCCTGGATAGCACCGTCGGCAAGCCCAAGGTCGAGGTGATGGCCGAGCGGCTGCGCGGCATCAACCCCGATTGCACCGTGCATGCAGTCGCGGACTTCGTCACCCGCGACACCATGGCCGAGTACATCACGCCGAACATCGACTGCGTGATCGACTGCATCGACAGCGTCAATGCCAAGGCCGCGCTCATCGCCTGGTGCAAGCGCCGCAAGATCCAGATCATCACCACCGGCGGCGCGGGCGGGCAGATCGACCCGACGCTGATCCAGGTCTGTGACTTGAACCGCACCTTCAATGACCCGCTGGCCTCCAAGGTGCGCTCGACCTTGCGCCGCGACTACGGCTTCTCCCGCACCGTGACCCGCCACTACAGCGTGCCGTGCGTGTTCTCCACCGAACAACTGCGCTACCCGAAACCGGATGGCAGCATTTGCTTGCAGAAGAGTTTTGTCGGAGACGGCGTCAAGCTCGACTGCGCCGGCGGGTTCGGCGCGGTGATGATGGTCACGGCGACGTTCGGCATGGTCGCGGCGACCAAGGCTGTGGATAAGATTGTCGCGGGCGTGCGGCGGCCGGCGGACAGGGTCAAACCCGGGGAGTGA	MSTEDPRFAGIARLYGIEGLERLRAAHVAIVGVGGVGSWAAEAIARCGVGEISLFDLDDVCVSNANRQLHALDSTVGKPKVEVMAERLRGINPDCTVHAVADFVTRDTMAEYITPNIDCVIDCIDSVNAKAALIAWCKRRKIQIITTGGAGGQIDPTLIQVCDLNRTFNDPLASKVRSTLRRDYGFSRTVTRHYSVPCVFSTEQLRYPKPDGSICLQKSFVGDGVKLDCAGGFGAVMMVTATFGMVAATKAVDKIVAGVRRPADRVKPGE				NA	NA	NA	NA	NA
D1-36_04046	1152	dapE_2	COG0624	Succinyl-diaminopimelate desuccinylase	ATGACGGCCCACGCCGACCTTTCGCCAACCCTGCAACTCGCCATCGACCTGATCCGCCGTCCGTCCGTGACGCCGTTGGATGCCGATTGCCAGAAAATCATGATGCAGCGCCTGGGCGACGCCGGTTTTAAGCTGGAGCCGATGCGCATCGAGGATGTGGATAACTTCTGGGCCAGCCATGGCAAGCAGGACGGCCCGGTGCTGTGCTTCGCCGGCCACACCGATGTGGTGCCGACCGGTCCGGTGCAGGCGTGGCAGCTCGACCCGTTCAATGCGGTCATCGACGAACACGGCATGCTCTGCGGCCGCGGCGCGGCGGACATGAAAGGCAGCCTGGCGGCGATGGTTGTGGCGGCCGAGCGGTTTGTCGCCGACTACCCGGACCACAAGGGCTCGCTGACTTTCCTGATCACCAGCGATGAAGAAGGCCCGGCCCACCACGGCACCAAAGCCGTGGTCGAACGCCTCAAGGCCCGCCAGGAGCGCCTGGACTGGTGCATCGTCGGCGAGCCGTCGAGTACCACGCTGGTGGGCGATGTGGTCAAGAACGGCCGTCGCGGCTCCCTCGGCGCGAAACTCACCGTACGCGGCAAACAGGGTCACGTGGCTTATCCACACCTGGCGAAGAACCCGATCCACCTGGCCGCGCCGGCCCTGGCCGAACTCGCCGCCGAGCACTGGGACCATGGCAACGATTTCTTCCCACCGACCAGCTTCCAGATCTCCAACCTGAACTCTGGCACCGGCGCGACCAACGTGATCCCCGGCGATCTGGAAGCGGTGTTCAACTTCCGCTTCTCCACTGAATCCACCGTCGAGGGCCTGCAACAGCGCGTCGCCGATATCCTCGACAAGCATCAGCTGGACTGGCACATCGACTGGGCTTTGTCCGGCCTGCCATTCCTCACCGAGCCGGGTGCCCTGCTGGACGCCGTGTCGTCGAGCATCAAGGACGTGACAGGCCGCGAGACGAAAGCTTCCACCAGCGGCGGCACGTCCGACGGTCGCTTCATCGCCACCATGGGCACGCAAGTGGTGGAGCTGGGGCCGGTCAACGCGACTATCCACCAGGTCAACGAACGCGTGTTGGCGGCCGATCTCGACGTCCTCACCGAGATCTACTACAAGACGCTGATCAAGTTGCTCGCCTGA	MTAHADLSPTLQLAIDLIRRPSVTPLDADCQKIMMQRLGDAGFKLEPMRIEDVDNFWASHGKQDGPVLCFAGHTDVVPTGPVQAWQLDPFNAVIDEHGMLCGRGAADMKGSLAAMVVAAERFVADYPDHKGSLTFLITSDEEGPAHHGTKAVVERLKARQERLDWCIVGEPSSTTLVGDVVKNGRRGSLGAKLTVRGKQGHVAYPHLAKNPIHLAAPALAELAAEHWDHGNDFFPPTSFQISNLNSGTGATNVIPGDLEAVFNFRFSTESTVEGLQQRVADILDKHQLDWHIDWALSGLPFLTEPGALLDAVSSSIKDVTGRETKASTSGGTSDGRFIATMGTQVVELGPVNATIHQVNERVLAADLDVLTEIYYKTLIKLLA				NA	NA	NA	NA	NA
D1-36_04047	810	rlmA	COG0500	23S rRNA (guanine(745)-N(1))-methyltransferase	ATGCTCGCCTGTCCGATCTGCAGTGAACCGCTGAACGCGGTGGACAACGGCGTGGTGTGCCCCGCCGGGCATCGGTTCGACCGTGCGCGGCAGGGTTACCTGAACCTGTTGCCGGTGCAGCACAAGAACAGCCGCGACCCCGGCGACAACCAGGCGATGGTCGAAGCTCGCCGCGACTTTCTCAATGCCGGGCACTACGCCCCGGTCGCCCGGCGCCTGGCCGAATTGGCCGCTGAACGGGCACCTGGGCGTTGGCTCGACATCGGTTGTGGTGAGGGCTACTACACCGCGCAAATCGCCGATGCCCTGCCCAACGCCGATGGCTATGCCCTCGACATCTCCCGCGAAGCGGTCAAGCGCGCCTGCAAGCGCAACCCGCGGCTTACCTGGTTGATCGCCAGCATGGCCCGGGTGCCGCTGGCGGATGGCTGCTGCCAGTTCCTCGCGAGTGTGTTCAGCCCGTTGGATTGGCAAGAGGCCAAGCGCTTGCTCAGCCCCGGCGGCGGCCTGATGAAAGTCGGCCCTACCGCCGGCCACCTGATGGAATTGCGCGAGCGCCTGTACGACGAAGTGCGCGAGTACACGGACGACAAGCACCTGGCCTTGGTGCCGCCCGGCATGGCGCTGGATCACAGCGAAACCCTGGAATTCAAGCTGACGCTCGACAGCGGCCAGGACCGCGCCAATCTGCTGGCGATGACGCCCCACGGCTGGCGCGCCAGCGCCGAGCGCCGCGCCAACGTGATCGAACAGGCCGAGCCGTTCGAAGTCACGGTGTCGATGCGCTACGATTATTTCATTGTTCAATAA	MLACPICSEPLNAVDNGVVCPAGHRFDRARQGYLNLLPVQHKNSRDPGDNQAMVEARRDFLNAGHYAPVARRLAELAAERAPGRWLDIGCGEGYYTAQIADALPNADGYALDISREAVKRACKRNPRLTWLIASMARVPLADGCCQFLASVFSPLDWQEAKRLLSPGGGLMKVGPTAGHLMELRERLYDEVREYTDDKHLALVPPGMALDHSETLEFKLTLDSGQDRANLLAMTPHGWRASAERRANVIEQAEPFEVTVSMRYDYFIVQ				NA	NA	NA	NA	NA
D1-36_04048	378			hypothetical protein	ATGCGCCAACCCGATATCGAGATTTACCTGAAGGACGCCGACGTTGACCACAAGGCCATCGCCCACTGGCTAGGCGAGGCCCTGGGCCCATGCAGCGACTGGGTACAGAAAGGCCAGACCTACAAGTGCAAGGCTGGCCACATTCCGGTGACCTGGCTGCCCAAGGCCGTAGGAAAATGGAACAGCCTCTATCTGGAAAGTGACCAGACCCCGTGGGAAGACGACATTGCCTGCGCCCGCGCCGCCTTCGCCGCGCTGAACGTCGAAGTGCGCTGCGCGCCCGGCTCCTGGGTGGAAGAAGAAGGGGAAGAATCGGCGGACCGCTGGATCCGCATCAGCGCCGATGGGGAAGAAGAGATTACCTGGAAAACGGCGTGA	MRQPDIEIYLKDADVDHKAIAHWLGEALGPCSDWVQKGQTYKCKAGHIPVTWLPKAVGKWNSLYLESDQTPWEDDIACARAAFAALNVEVRCAPGSWVEEEGEESADRWIRISADGEEEITWKTA				NA	NA	NA	NA	NA
D1-36_04049	210	cspA_2	COG1278	Major cold shock protein CspA	ATGGCAACACGCGAAACCGGCAGTGTGAAGTGGTTCAACGACGCCAAGGGCTACGGCTTTATCCAGCGCGAGGGCGGAGCGGATGTGTTCGTGCATTACCGCGCGATCCGTGGCGAGGGCCACCGCTCACTGACCGAAGGCCAGCAGGTCGAGTACGCGGTCGTGGAAGGCCAGAAGGGCCTGCAGGCTGAGGATGTGGTGGGGTTGTAA	MATRETGSVKWFNDAKGYGFIQREGGADVFVHYRAIRGEGHRSLTEGQQVEYAVVEGQKGLQAEDVVGL	PGPT0014675_4293	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	LOW_TEMPERATURE_TOLERANCE	COLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704	NA	NA
D1-36_04050	2502	plsB	COG2937	Glycerol-3-phosphate acyltransferase	ATGACCCGCTCCCCGTTCCGCCGTCTTGTGTTTGGCACCTTGCGCCGACTTTTATATCTCTGGGTTCGCTCCGAGACGATCAATCAGTCGTCCTTTACCCTCAACCTCGACCGCAGTCGCCCCGTGTTCTACGTCCTGCAAGACCCTTCGCTGACCGACCTGGCGGTGCTCGACACCGAATGCACCAAGGCCGGCCTGCCGCGCCCGGTACTGCCGGTCTCGGTGGGCAACCTGCTGGAGCCGGCGGCATTTTTCTACCTGACGCCGGCACCGGACTGGCTCGGGCGCCAGGATAAACGCGGTGCGCCGCCCACCCTGACGCGGCTGGTCGACGTGCTGACCCACAACGCCGCCGAGGACGCGCAGATCATTCCGGTCAGCGTGTTCTGGGGCCAATCGCCCGACAGCGAATCCAGCCCGTGGAAACTGTTGTTCGCCGACAGTTGGGCGGTCACCGGACGCCTGCGCCGATTGCTGAGCATCATGATCCTGGGGCGCAAGACCCGCGTGCAGTTCTCCGCCCCGATCCATCTGCGCGAACTGATCGAGCACGATAAAGGCCACGAACGCACCGTGCGCATGGCCCAGCGGATCCTGCGGGTACACTTTCGCAACTTGAAAGCGGCGGTCATCGGTCCCGACATCTCCCACCGACGCCATCTGGTCAAGGGTCTGTTGAACCAGCCGCTGGTCAAGCAGGCCATCGCCGAAGAAGCCGAGCGGGAGAAGATCTCGCCGGAGAAAGCCAAAGCCCAGGCCCTGCGCTACGGCAACGAGATCGCCTCGGACTACACCTACACGGCCATCCGCTTCCTGGAAGTGGTGCTGAGCTGGTTCTGGAACAAGATCTACGACGGCATCAAGGTCAACCACATCGAAGGCGTGCAAAACGTTGCCCAAGGCCATGAAGTCATTTATGTCCCCTGCCACCGCAGTCATATCGACTACCTGCTGCTGTCGTACCTGCTGTTTCGCAATGGCCTGACGCCACCGCACATCGCCGCCGGCATCAACCTGAACATGCCGGTGATCGGCAGCCTGCTGCGCCGCGGCGGGGCGTTTTTCATGCGCCGCACGTTCAAGGGCAACCCGCTCTATACCGCCGTGTTCAACGAATACCTGCATACGCTGTTCACCAAGGGGTTCCCGGTGGAGTACTTCGTCGAAGGCGGCCGTTCGCGCACCGGGCGCATGCTGCAACCCAAGACCGGCATGCTCGCCATTACCCTACGCAGCTTCTTGCGCTCGTCACGCATGCCCATCGTCTTCGTGCCGGTGTACATCGGTTATGAGCGGGTCCTGGAAGGCCGTACCTACCTGGGCGAACTGCGCGGCGCGAGCAAGAAGAAGGAGTCGATCTTCGACATCTTCAAGGTCATCGGCGCCCTCAAGCAACGCTTCGGCCAAGTGGCGGTGAACTTCGGCGAGCCGATCAAGCTGGCGGAATTCCTCGACGGCGAGCAACCTGGCTGGCGCCAGCAGGAGCTGGGCCCGCAATTCAAGCCGGCCTGGCTCAACGCGACCACCAACCGCCTCGGCGAACGCGTGGCGCGGCACCTGAACGAGGCCGCCGCTATCAACCCGGTCAACCTTGTCGCCCTGGCATTGCTGTCCACCAGCCGACTGGCTCTCGACGACCAGGCCATGGCCCGCGTGCTGGACTTGTACCTCGCGCTGCTGCGCAAAGTGCCCTATTCGCCCCACACCACCTTGCCTGAGGGCGACGGCCGGGCGTTGATCGAGCATGTCAAAGGCATGGACCTGCTGTCGGAACAGAGCGATGCCTTGGGCAAGATTCTGTATCTGGATGAACAGAACGCGGTGTTGATGACCTACTACCGCAACAACGTGCTGCACATCTTCGCCCTTCCGGCGCTGCTGGCGAGCTTCTTCCAGAGCAGCTCGCGCATGAGCCGCGAACAGATCCTGCGTTATACACGGGCCCTGTATCCGTACCTGCAATCGGAGCTGTTCATTCGTTGGTCGCTGGAAGAACTGGACGATGTGGTCGACCAGTGGCTTGAAGCGTTCGTCGAACAGGGCCTGCTGCGCTTCGAGAAAGACCTGTACTTGCGTCCCGTTCCAAGTTCTCGAAACTTTGTGCTGCTGACCTTGCTATCGAAGAGCATCGCCCAGACCTTGCAGCGCTTCTACATGACCGTTTCGCTGCTGCTCAACAGCGGGCAGAACAGCATCAGCGCCGAAGAACTGGAAGACCTCTGCACAGTCATGGCCCAGCGGCTGTCGATCCTGCACGGACTCAACGCGCCGGAGTTCTTCGACAAGAGCCTGTTCCGCCACTTCATCCAGACGATGCTCGACCTCGACGTACTGCGCCGTGATGAAGCGGGCAAGCTAAGCTATCACGAGCTGCTCGGCGAATTGGCCGAAGGCGCGGCCAAGCGTGTGTTGCCGGCGGAGATTCGCTTGTCGATCCGCCAGGTGGCGTTGCATCGCAGTGAAGACGCCATGGCTCCGGACACGCCAGTCACCCAGGATTGA	MTRSPFRRLVFGTLRRLLYLWVRSETINQSSFTLNLDRSRPVFYVLQDPSLTDLAVLDTECTKAGLPRPVLPVSVGNLLEPAAFFYLTPAPDWLGRQDKRGAPPTLTRLVDVLTHNAAEDAQIIPVSVFWGQSPDSESSPWKLLFADSWAVTGRLRRLLSIMILGRKTRVQFSAPIHLRELIEHDKGHERTVRMAQRILRVHFRNLKAAVIGPDISHRRHLVKGLLNQPLVKQAIAEEAEREKISPEKAKAQALRYGNEIASDYTYTAIRFLEVVLSWFWNKIYDGIKVNHIEGVQNVAQGHEVIYVPCHRSHIDYLLLSYLLFRNGLTPPHIAAGINLNMPVIGSLLRRGGAFFMRRTFKGNPLYTAVFNEYLHTLFTKGFPVEYFVEGGRSRTGRMLQPKTGMLAITLRSFLRSSRMPIVFVPVYIGYERVLEGRTYLGELRGASKKKESIFDIFKVIGALKQRFGQVAVNFGEPIKLAEFLDGEQPGWRQQELGPQFKPAWLNATTNRLGERVARHLNEAAAINPVNLVALALLSTSRLALDDQAMARVLDLYLALLRKVPYSPHTTLPEGDGRALIEHVKGMDLLSEQSDALGKILYLDEQNAVLMTYYRNNVLHIFALPALLASFFQSSSRMSREQILRYTRALYPYLQSELFIRWSLEELDDVVDQWLEAFVEQGLLRFEKDLYLRPVPSSRNFVLLTLLSKSIAQTLQRFYMTVSLLLNSGQNSISAEELEDLCTVMAQRLSILHGLNAPEFFDKSLFRHFIQTMLDLDVLRRDEAGKLSYHELLGELAEGAAKRVLPAEIRLSIRQVALHRSEDAMAPDTPVTQD	PGPT0024370_261	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024370-plsB-K00631	NA	NA
D1-36_04051	399			hypothetical protein	ATGAAAAAGCTTCTTCTCGTCGCTGCTGCCACGTTGCTCAGCGCCTGCTCCAGCACGCCGCTGGCCAGCAAGAACAGCCTCGACGGCGAGGTGTTCTACCTGCAACGCATCGCCTTACCGCCCACTGCTACCTTGACCGTGAGCCTGCAAGACGTCTCCCTCGCCGACGCGCCAGCCGTGACGGTCGATGAGCAGCGGGGCCCCGTCAAAGGCCAAGTCCCATTACCATTCAAGCTCAGTTATGATCCGGCGCAGGTCAAGCCCGGCCACCGTTATGCCGTGAGCGCCCGCATCGAAGTCGACGGCCAGTTGATGTTCATCAGCACTGAACAACACACCGTGCAGCTCGATGGCAAAGATCCGCAGCCGTTGAAGATTCGCGTCAACGCTGCACGCTGA	MKKLLLVAAATLLSACSSTPLASKNSLDGEVFYLQRIALPPTATLTVSLQDVSLADAPAVTVDEQRGPVKGQVPLPFKLSYDPAQVKPGHRYAVSARIEVDGQLMFISTEQHTVQLDGKDPQPLKIRVNAAR				NA	NA	NA	NA	NA
D1-36_04052	690			hypothetical protein	ATGCTCCGCTTTACCCTTCGTTTCACCGGCCTGTGCGCCGGCCTGTTGATCTGCGCCAATGCCATGGCCCTGTCCCTCGGCGACCTTTCCCAGAAAGACGCCACGGGTGGTCTCAAGGATGCCCTGACCCAGGGCGCCCAGGTGGCGGTCAAGCAGCTGGGCACCCCAGGCGGGTTCAGCAACAACCCGGACGTCAAGATTGAATTGCCAGGCAAGCTCGGCAAAGTCGCCAGCAAGATGAAAGCCTTCGGCATGGGCGACCAGGTGGATCAGCTGGAAACCAGCATGAACCAGGCGGCCGAAGCCGCGGTGGTGCAGGCCCAGCCGATCCTGGTCGACGCCGTGAAGAACATGAGCGTGAGCGACGCCAAGGGCATATTGAGCGGCGGCAACGATTCGGCCACCCAGTACCTGAACAAGAGCAGCCGCGAGCAGATTCGCGCCAAGTTCCTGCCCATCGTCAAGCAAGCCACCGACAAGGTCGGCCTGGCCCAGCAATACAACGCCTTTGCCGGCCAAGCCGCGACACTGGGAGTGGTCGATGCCAAGAGCGCCAATGTCGAGAACTATGTGACTGAACAGGCGCTGGATGGTTTGTTCGAGATGATCGCAAAACAGGAAGCCACCATTCGCCAGAATCCGGCGGCTGCGGCGACCAGTTTGGCGAAGAAGGTTTTTGGCACTCTCTAA	MLRFTLRFTGLCAGLLICANAMALSLGDLSQKDATGGLKDALTQGAQVAVKQLGTPGGFSNNPDVKIELPGKLGKVASKMKAFGMGDQVDQLETSMNQAAEAAVVQAQPILVDAVKNMSVSDAKGILSGGNDSATQYLNKSSREQIRAKFLPIVKQATDKVGLAQQYNAFAGQAATLGVVDAKSANVENYVTEQALDGLFEMIAKQEATIRQNPAAAATSLAKKVFGTL				NA	NA	NA	NA	NA
D1-36_04053	3066	cnrA_2		Nickel and cobalt resistance protein CnrA	ATGGGCTTCAATCTTTCCGAATGGGCGTTGCGGAACCGCCAGATCGTACTGTTCCTGATGCTGTTGCTCGCAATCGTCGGGGCGCTTTCCTACACCAAGCTTGGCCAGAGCGAAGACCCGCCGTTCACCTTCAAGGCCATGGTCATTCGCACGATCTGGCCAGGCGCCACGGCTGAGGAAGTGTCGCGCCAAGTCACCGAGCGCATCGAAAAGAAGCTGATGGAAACCGGCGATTACGAAAAGATCGTCTCGTTCTCCCGCCCGGGCGAATCCCAGGTGACGTTCATGGCTCGCGACTCCTTGCATTCCAAGCAGATTCCCGAGCTGTGGTATCAGATCCGCAAGAAAATCAGCGATATCCGGCATACCTTGCCGCCGGGTATCCAGGGGCCGTTCTTCAACGATGAGTTCGGCACCACGTTTGGCAATATCTACGCACTCACCGGTGACGGCTTCGATTATGGCGTGCTCAAGGATTATGCCGACCGCATCCAGATCCAGCTGCAGCGGGTCAAGGATGTGGGCAAGGTCGAATTGCTCGGCCTGCAGGACGAGAAAATCTGGGTCGAACTGTCGAACGTGAAACTGGCGACCCTCGGCCTGCCGCTGGCGGCGGTCCAGCAAGCCCTGGAAGCGCAGAACGCGGTGTCTACGGCCGGATTCTTCGAGACCGCCAGCGAGCGATTGCAGCTACGGGTTTCCGGGAATTTCCAGACCGTGGAAGAGATCCGTGACTTTCCGATCCGCGTGGCCGACCGCACCTTCCGCATCGGCGATGTAGCAGACGTGCGTCGCGGCTTCAACGATCCACCCGCGCCGCGCATGCGGTTCATGGGCGAAGATGCCATCGGCCTGGCCGTGGCGATGAAGGAGGGCGGTGACATCCTTGTGTTGGGCAAGGCCCTGGAAGTCGAGTTTGCCCGCATCCAGAACACGCTGCCGGCGGGTATGCAATTGCGCAAGGTTTCCGACCAGCCCGCGGCGGTGAAGACCGGTGTCGGCGAGTTCGTCCAGGTGCTGGTGGAAGCGCTGACCATCGTGTTGCTGGTGAGCTTTTTCTCCCTGGGGCTGCGTACCGGGATGGTGGTGGCGCTGGCGATTCCGCTGGTGTTGGCGATGACCTTCGCCGCGATGTACTACCTGGGGATCGGCTTGCACAAAATCTCCCTCGGCGCGCTGGTCTTGGCCCTGGGGCTGCTGGTGGACGACGCGATCATCGCCGTGGAGATGATGGCGATCAAGATGGAGCAAGGCTTCGACCGGATCAGGGCGGCCAGCTACGCCTGGACCAGTACGGCGTTTCCGATGCTCACCGGGACTTTGATCACCGCGGCGGGCTTCCTGCCGATCGCCACCGCCCAATCGGGCACCGGCGAGTACACCCGTTCGATTTTCCAGGTGGTGACCCTCGCACTGTTGGCTTCCTGGGTGGCTGCCGTGGTATTCGTGCCGTACCTGGGGGAAAAACTCCTGCCGGACCTGGCGAAGATTCATGCGGCCAAGCATGGCACGGTGGACGGCCAGCCCGATCCCTACGGTACGCCGTTCTACCAGCGTGTACGGCGATTGGTGGAGTGGTGCGTGCGTCGGCGCAAGACCGTCATCGCGTTGACCGTGCTGCTGTTCCTGGGCTCAGTCGTGTTGTTCCGTTTTGTCCCGCAGCAGTTTTTCCCGGCGTCGGGGCGCCTGGAGCTGATGGTCGATTTGAAATTGGCCGAAGGCGCTTCGTTGGTCAACACCGCCGAGCAGGTCAAGCGCCTGGAAGCGTTGCTCAAGGACCACGCCGGTATCGACAACTACGTCGCTTATGTCGGCACCGGTTCACCGCGTTTCTATCTGCCCCTGGATCAACAACTGCCGGCGCCGAGCTTCGCCCAATTCGTGGTGTTGGCCAAGACCATCGAAGACCGCGAGCCGTTGCGCAGTTGGCTGATCACCACCCTGAACGAGCAGTTCCCAACCTTGCGCTCGCGGGTGACGCGCCTGGAGAACGGTCCGCCGGTGGGCTACCCGGTGCAGTTTCGCGTGACAGGCGAGCACATCGAGGAGGTGCGGGCCCTGGCGAGGAAAGTGGCGACAAAAGTCCGGGAAAACCCCTACGTTGCCAATGTGCATCTGGACTGGGAAGAGCCCAGCAAAGTGGTCTATCTGAACATCGACCAGGACCGTGCGCGAGCCTTGGGGGTGACCACCGCGAATCTGTCGAGCTTCTTGCGAAGCTCCCTCACCGGATCCAGCGTCAGCCAGTACCGTGAAGACAACGAGTTGATCGAGATTCTGCTGCGCGGCACGGTGCATGAGCGCACGGAGCTGTCGCTGTTGCCAAGCCTGGCGGTGCCGACCGACAACGGCACGACCGTTGCCCTGTCGCAGATCGCCACGCTGGAGTATGGCTTTGAAGAGGGCGTGATCTGGCACCGCAACCGCCTGCCGAGCGTGACCGTTCGGGCCGATATCTACGGCAAAGAACAGCCAGCGACCCTGGTGCAGCAGATTTTCCCGACCCTGGATCCGATCCAGGCGGAACTTCCGGATGGTTATCTGCTTGAGGTGGGTGGCACGGTAGAGGACTCGGCCCGAGGCCAGAAATCGGTGAACGCCGGTGTGCCGTTGTTCATCGTGGTGGTGCTGACCTTGTTGATGCTGCAACTGCGCAGCTTCTCTCGCACTGCCATGGTCTTCCTCACCGCGCCGCTGGGGTTGATCGGCGTGACGCTGTTCCTGTTGGTGTTCCGCCAGCCGTTCGGTTTCGTTGCAATGCTTGGCACCATCGCCTTGTCCGGCATGATCATGCGCAACTCGGTGATCCTGGTGGATCAGATCGAACAGGATATCAAGGCCGGGCTTGCCCCGTGGCAGGCGATCATCGAAGCGACGGTGCGACGGTTCCGCCCGATCGTGCTCACCGCGCTGGCGGCGGTGCTGGCAATGATCCCGCTGTCACGCAGCCTGTTCTTCGGCCCGATGGCGGTGGCGATCATGGGGGGATTGATCGTGGCAACGGCATTGACGCTGCTGTTCCTGCCGGCGTTGTATGCGGCGTGGTTCAGGGTCAAGAAGACTTGA	MGFNLSEWALRNRQIVLFLMLLLAIVGALSYTKLGQSEDPPFTFKAMVIRTIWPGATAEEVSRQVTERIEKKLMETGDYEKIVSFSRPGESQVTFMARDSLHSKQIPELWYQIRKKISDIRHTLPPGIQGPFFNDEFGTTFGNIYALTGDGFDYGVLKDYADRIQIQLQRVKDVGKVELLGLQDEKIWVELSNVKLATLGLPLAAVQQALEAQNAVSTAGFFETASERLQLRVSGNFQTVEEIRDFPIRVADRTFRIGDVADVRRGFNDPPAPRMRFMGEDAIGLAVAMKEGGDILVLGKALEVEFARIQNTLPAGMQLRKVSDQPAAVKTGVGEFVQVLVEALTIVLLVSFFSLGLRTGMVVALAIPLVLAMTFAAMYYLGIGLHKISLGALVLALGLLVDDAIIAVEMMAIKMEQGFDRIRAASYAWTSTAFPMLTGTLITAAGFLPIATAQSGTGEYTRSIFQVVTLALLASWVAAVVFVPYLGEKLLPDLAKIHAAKHGTVDGQPDPYGTPFYQRVRRLVEWCVRRRKTVIALTVLLFLGSVVLFRFVPQQFFPASGRLELMVDLKLAEGASLVNTAEQVKRLEALLKDHAGIDNYVAYVGTGSPRFYLPLDQQLPAPSFAQFVVLAKTIEDREPLRSWLITTLNEQFPTLRSRVTRLENGPPVGYPVQFRVTGEHIEEVRALARKVATKVRENPYVANVHLDWEEPSKVVYLNIDQDRARALGVTTANLSSFLRSSLTGSSVSQYREDNELIEILLRGTVHERTELSLLPSLAVPTDNGTTVALSQIATLEYGFEEGVIWHRNRLPSVTVRADIYGKEQPATLVQQIFPTLDPIQAELPDGYLLEVGGTVEDSARGQKSVNAGVPLFIVVVLTLLMLQLRSFSRTAMVFLTAPLGLIGVTLFLLVFRQPFGFVAMLGTIALSGMIMRNSVILVDQIEQDIKAGLAPWQAIIEATVRRFRPIVLTALAAVLAMIPLSRSLFFGPMAVAIMGGLIVATALTLLFLPALYAAWFRVKKT	PGPT0028890_668	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexJK-OprM,PGPT0028890-mexK-K18303	NA	NA
D1-36_04054	1101	mdtA_7		Multidrug resistance protein MdtA	ATGTTCCGCTATGTCCTGCCCCTCGCCGTGCCAGTCAGCCTGGCTTTTTTATTGTCTGCGTGTGGCCACGAGGAGCCGGTGGCCGTCACCGTCCGCCCGGCCATGGTGGTAAAGCCCGAGCCCTCGGCCCAGGCGATGGACAGTTATCCTGGCGAAGTGCGGGCGCGATTCGAGCCGGACCTGGCCTTTCGCATCGGTGGCAAAGTCAGCCGACGGCTGGTGGAGGAGGGGCAGCGGGTCAAGGCCAATCAACCCTTGGCTGAACTCGATCCCGAAGACGTGCGTCTGCAACTCGAGGCGAGCCGGGCCCAGGTCGCTGCCGCCGAGGCCAACCTGAGCCTGGTGCGTGCCGAGCGTGACCGCTACAAGACCTTGATGGAGCGGCAGATGGTCAGCCGCTCCCAATACGACAACGCCGAAAATCTCTTTCGCTCCGGGGCCGCGCGGGTCAAGCAGATCAAGGCTGAATTCGACGTTGCCAGCAACCAGGCCAGCTATTCGATTTTGCGTGCGCCCCAGGATGGCGTCGTGGCCCGGCGTTCGGTGGAAGTGGGTCAGGTCGTGTCGGCCGGTCAAACCGTCTTCACCCTGGCCACCGACGGTGAACGCGAGGTGCTGATCAGCCTGCCGGAGCAGAGTTTCGGTCGGTTCAAGATTGGCCAGCCGGTTTCGGTCGAGCTGTGGAGCCAACCTGATCAGCGCTTTAGCGGACGTATCCGCGAACTCTCGCCGGCCGCCGATCCCAGATCCCGCACCTTCGCCGCTCGTGTCGCCTTCACCGCCGGCAGCGTCCCGGCGGAACTGGGCCAGAGCGCCCGGGTGTTTATCCAGAATGCCGAAAAGGTCCCCCTGTCAGTGCCGCTGTCGGCCCTCACCGCCGAGAACGGCGCGACTTATGTCTGGGTGGTCAACCCCGACAACACCCTCAAGAAAGTCCCGGTGCGTGTCGGTGCCTTTGGCGAAAACAACGTGCCGGTGCTTGAAGGCCTGGGTGCCAATGACTGGGTGGTGGCCGCTGGCGTGCATGTGCTCCTGGACGGCCAGCAGGTGCGGCCGGTGGATCGCTCCAACCGCGTAGTCAACCTGGCGGCCAAGGAGTAA	MFRYVLPLAVPVSLAFLLSACGHEEPVAVTVRPAMVVKPEPSAQAMDSYPGEVRARFEPDLAFRIGGKVSRRLVEEGQRVKANQPLAELDPEDVRLQLEASRAQVAAAEANLSLVRAERDRYKTLMERQMVSRSQYDNAENLFRSGAARVKQIKAEFDVASNQASYSILRAPQDGVVARRSVEVGQVVSAGQTVFTLATDGEREVLISLPEQSFGRFKIGQPVSVELWSQPDQRFSGRIRELSPAADPRSRTFAARVAFTAGSVPAELGQSARVFIQNAEKVPLSVPLSALTAENGATYVWVVNPDNTLKKVPVRVGAFGENNVPVLEGLGANDWVVAAGVHVLLDGQQVRPVDRSNRVVNLAAKE	PGPT0028885_562	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexJK-OprM,PGPT0028885-mexJ-K18302	NA	NA
D1-36_04055	636			hypothetical protein	ATGTCGAACAATCCTCCCCCTCCCAGCGGCCCTGGTCGTCCGAAGGATCTGGCCAAACGCCAGGCCATTCTCGATGCGGCCAAAAATCTCTTCCTGAGCCTGGGTTACGCCAGTACCAGCATGGATGCGGTGGCGACCGAGGCCGGCGTATCGAAGCTGACGGTCTACAGCCACTTCAACGATAAGGAAACGCTGTTTTCCGCCGCGGTGATCGCCAAGTGCGAGGAGCAAGTGCCGCCGCTGTTCTTCGAATGGGTCGAAGGCGTCCCGATCGAACACGTGTTGTTGAACATCGCCCGAGGCTTCAATCAACTGATCAACAGCGACGAGTCGGTGAATCTGCATCGGCTGATGGTCGCCCTGGGTAGTCAGGATCCGAAGCTCTCGACGATTTTCTACGAGGCCGGCCCGCAACGCATGCTCTGCGGCATGGAGCGGTTATTGAGCAAGGTCAACCAGAGCGGCGCCTTGAGCATCGACAAACCGCGAAATGCCGCCGAGCATTTTTTCTGCCTGATCAAGGGGGCGGCCAACTTCAGGTTGCTGTACGGCTGCGACGGACCGCAAGACGCCGAGGCGGCCGAGGCTCATGTGCAGGAAGTGGTGGGGTTGTTCATGCGGGCCTATCGGCCCTAG	MSNNPPPPSGPGRPKDLAKRQAILDAAKNLFLSLGYASTSMDAVATEAGVSKLTVYSHFNDKETLFSAAVIAKCEEQVPPLFFEWVEGVPIEHVLLNIARGFNQLINSDESVNLHRLMVALGSQDPKLSTIFYEAGPQRMLCGMERLLSKVNQSGALSIDKPRNAAEHFFCLIKGAANFRLLYGCDGPQDAEAAEAHVQEVVGLFMRAYRP	PGPT0028895_550	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexJK-OprM,PGPT0028895-mexL-K18301	NA	NA
D1-36_04056	783	rsmJ		Ribosomal RNA small subunit methyltransferase J	ATGATTGAGCAACCCGCGGCCTGCCGCATCCATGTCGAGGCCTTGATTCCGGCGTTCCAGCCCCAGGCCGAACAATGGGCAGAGCGGCTTGGCCTGCCTTTGCAAGTGGACGATGGCGAGTTTGCCTTGCAGGTCGGCGAGCAGGGATTGCAATTGCAGCAATTGGGTCCGGACGCGCCGGGACCGGTGCGGGTGGATTTCGTCGAGGGTGGCGCGGCCCATCGGCGCTTGTACGGCGGTGGCAGCGGTCAGATGATCGCCAAGGCGGTCGGTGTCGCCCAAGGTGTGCGTCCGCGGGTACTCGACGCCACGGCCGGGTTGGGCAAGGACGCGTTTGTGCTGGCGAGCCTGGGCTGCGAAATGAGCCTGATCGAGCGCCAGCCGCTGATCGGTGCACTGCTGGAAGATGGCCTGGCCCGTGGCGCGGAAGATTTCGACGTGGCGCCGATCGTGGCGCGCATGCGTTTGCTCAAGGGCAACTCCATCGAGGTGATGCGCCATTGGGAAGGCGAGCCGCCCCAGGTGATCTACCTGGACCCGATGTTTCCCCATCGAGAGAAAACCGCCCTGGTGAAAAAGGAAATGCGCCTGTTCCGACCTTTGGTGGGCGATGACAATGACGCACCGGCGCTGCTGGCCGCGGCGCTGGCGCTGGCGACCCACCGGGTGGTGGTCAAGCGCCCGCGCAAGGCGCCTTGCATCGAAGGGCCGAAGCCGAGCCATGGGCTCGAGGGCAAGTCCAGTCGGTACGATATCTATCCCAAGAAGGCGCTCAAGGCTTGA	MIEQPAACRIHVEALIPAFQPQAEQWAERLGLPLQVDDGEFALQVGEQGLQLQQLGPDAPGPVRVDFVEGGAAHRRLYGGGSGQMIAKAVGVAQGVRPRVLDATAGLGKDAFVLASLGCEMSLIERQPLIGALLEDGLARGAEDFDVAPIVARMRLLKGNSIEVMRHWEGEPPQVIYLDPMFPHREKTALVKKEMRLFRPLVGDDNDAPALLAAALALATHRVVVKRPRKAPCIEGPKPSHGLEGKSSRYDIYPKKALKA				NA	NA	NA	NA	NA
D1-36_04057	621			hypothetical protein	ATGTCAGACATTCAATCCACATCGATAGGCGTTATCTCCCCTTACGGCGATTACAGCCTGCGTAACACCCAAGCGCTGAGCGGCGTCAGTCACCTGTGGCAGGATTTTTTTGCCCGGGCCCTGGCCGATCAACTGGGTGAAAACGCACCGGCGCCTGGCAGCTACCAGCCCGTCGCCCTCGATGAAGCGGTTGAACCGACCCTTGGCGCCGAGCTGCTGGAGCACATCGTCAGCCAGCGCACCTGCGACGTGAAGGAAACCCAGGTCAAGCCGCCAGAGCCGTTGTTCCTGCCGATTGCCGAGTTCGAACTGGATTTGCTGGACAAACCGTTCCCACCGTTCCCGCCCGAAGAAATCGTTGCCCAGCAAAAGCAGCAAACCTTCGAGAGCAACTGGGTTCGCCCGATCGTCCTCACAGCCGGCCAGCCACAGTCGGAACCGGGCCCGGCGCCGCACCCGCGTCCATTGCACCTGCCGATCGCCGAGTTCGAACTCGACTTGCTGGATAAACCGTTCCCTCCGTTCCCGGAAGAGGAATTGGTGGCGCAGCAGAAGCAACTCGATTTCGATACCCGTTGGGCACGTCCGATCGTTTTGCAGAACCTTCGTATCGCCGCCTGA	MSDIQSTSIGVISPYGDYSLRNTQALSGVSHLWQDFFARALADQLGENAPAPGSYQPVALDEAVEPTLGAELLEHIVSQRTCDVKETQVKPPEPLFLPIAEFELDLLDKPFPPFPPEEIVAQQKQQTFESNWVRPIVLTAGQPQSEPGPAPHPRPLHLPIAEFELDLLDKPFPPFPEEELVAQQKQLDFDTRWARPIVLQNLRIAA				NA	NA	NA	NA	NA
D1-36_04058	678			hypothetical protein	ATGGTGGTGCTGCTGATCGTCGGCGCCGCAGTGCTTGGCGTATGGCGCGGCTGGTTGTCGGTGCCGCCGCAATGGAATCCCTGGGCGCCGCTGGACGTCAGCGCCCCGCCGAACATGCTGACCCGCTACAAGCTGATGGCCCTGCGCAACGACCCACAACTGTGCGACCAAGCGCTCGCTACGTCAGGGCTTCGGACCTCTCGCCAGGCGGACAGCGGCGCCAACACCACCTGTCCGTTGACCAATGTGTTGCGAGTGCAGGGCGGCGAGGTGGCGCTGAGCAGCAGCTTCCTGGCCAGTTGCCCGCTGGCCGTGGCTTTCGCGTTGTTCGAGCGCCATGCGCTGCAGCCGGCGGCAACGGCGGCCTATGGGCAGAAAGTCACGCGGGTCGATCATCTGGGCAGCTTTGCCTGTCGCAACATGTACGGCCGTGAGAGCGGGGCGCGCAGCCAGCACGCCACCGCCAGCGCGCTCGATATTGCCGGGTTTCGCCTGGCCAATGGGAAAGCGATCAGCGTGCTCAGGGACTGGCCGAAAGACAACACCGATGCGCAGTTCCTGCGGCAGGTGCGAGATGGCGCCTGTGAGATGTTCAGTGTGGTGTTGAGTCCGGACTACAACGCGGCGCACCGCAACCACTTCCATCTGGATGTAGGGCCGTGGTGGATCTGTCGGTAA	MVVLLIVGAAVLGVWRGWLSVPPQWNPWAPLDVSAPPNMLTRYKLMALRNDPQLCDQALATSGLRTSRQADSGANTTCPLTNVLRVQGGEVALSSSFLASCPLAVAFALFERHALQPAATAAYGQKVTRVDHLGSFACRNMYGRESGARSQHATASALDIAGFRLANGKAISVLRDWPKDNTDAQFLRQVRDGACEMFSVVLSPDYNAAHRNHFHLDVGPWWICR				NA	NA	NA	NA	NA
D1-36_04059	822		COG2513	putative protein	ATGGATGCACAAACCCGGCGAGCCCAGGCGTTCAAGGCCCTGCATGAACGCGAAGGGGCCTTTGTAATTCCCAATCCGTGGGATGCCGGATCGGCGAAGATGCTCGCCAGCCTTGGCTTCGAAGCCTTGGCGACCACCAGTGCCGGCCACGCTTTTTCCCTGGCGCGGCCCGATGGTGCGCTGGGCCTGGATGACACCCTGGCCAACGTGCGAGCGATTGTGGCGGCCACGGATCTGCCAGTTGCGGTCGACCTGGAAAACGGCTTTGCCGATGCGCCCGACGCATGCGCGGCCAGCCTGCTGCGTGCGGCAGAGGCCGGGGCGGTGGGGGGCTCCATCGAGGACGCCACCGGGCGCGAAGACAGCCCGATCTATCGTTTCGATCAAGCAGTGGCGCGGGTCAAGGCCGCGGCCGAGGCGGTGCGCAGCCTGCCGTTCCCGTTCATGCTCACCGCCCGCGCGGAAAATTTCCTGCACGGCAAACCCGACCTGGACGACACGATCCGACGCCTCAAGGCGTTCGCCGACGCAGGCGCCGACGTGTTGTACGCGCCAGGATTGAGCAGCGCTGAACAGGTCCTCGCGGTGGTACAAGCGGTGGCGCCCAAACCGGTCAATGTGCTGATGTCCGGCGCCCTGGACCTTACCGTGGCGCAGTTGAGCGAACTGGGCGTCAAGCGCATCAGTGTCGGCTCGGCGTTGGCGCTGGCGGCCTATGGCGAGTTCTTCCGCGCCGCGCAGGAAATCCAGGAGCAAGGCACGTTCACCTTCACCCGTCGCTCGATGCCATTCAAGCAGGCCAATCAATTATTCAAGGGCTGA	MDAQTRRAQAFKALHEREGAFVIPNPWDAGSAKMLASLGFEALATTSAGHAFSLARPDGALGLDDTLANVRAIVAATDLPVAVDLENGFADAPDACAASLLRAAEAGAVGGSIEDATGREDSPIYRFDQAVARVKAAAEAVRSLPFPFMLTARAENFLHGKPDLDDTIRRLKAFADAGADVLYAPGLSSAEQVLAVVQAVAPKPVNVLMSGALDLTVAQLSELGVKRISVGSALALAAYGEFFRAAQEIQEQGTFTFTRRSMPFKQANQLFKG				NA	NA	NA	NA	NA
D1-36_04060	861			hypothetical protein	ATGCGGTTGCCTTATTACCTGGGCTGCCCATCCTGGAGCGAAAACGCCTGGCGCGATTATCTTTATCCCCAAGACGCAAAAAGCTCCGACTTCCTGAACCTCTATAGCCAGGTTTTCAATGCCGTGGAAGGCAACACGACCTTCTATGCGAGCCCGTCTGCGGCCACTGTCCAGCGCTGGGCGGAAATCATGCCCGAGCATTTTCGTTTCACGGCCAAGATCCCGGGCGACATCAGCCATGGCGGCGACTTGCGTGAACACCTGACCGCCACTGAAACCTTCGTTCAACTGCTCAGCCCGCTGGGCGAGCGCGTCTCGCCGTTTTGGCTGCAGCTGTCCAAGGCCTTCACGCCCAATCGGATGCAGGAGCTGGCGGCGTTTATCGACGCGTTCCCGAGCCCGTTGGCGGTCGAGGTCCGTCACGACGAGTTTTTTGCCAAGGGCGATGCCGAGCGCCGGCTCAATCGCCTGTTGCTCGATCGCGGCGTGGAACGCATCTGTCTCGATCCACGGGGCTTGTTCAGCTGCGCCTCGACCGATCCCTCAGTGATCCATGCGCAATACAAGAAGCCTCGGGTGCCAACGCGGCCAGCGGCTTTCACTCAATGCCCGCAGGTGCGCTTCGTCGGCCATCCAGTGGTGGAAGCCAACGAGCCGTTCCTGACGCCCTGGGTGGAGAAAATCGCCGAGTGGATCGAAGAAGGGCGCACCCCGTACATGTTCCTGCATACCGCCGACAACCTTCTGGCGGCAAAGCTCGCGATGCGTTTTCACAGCCGCTTGATGAACCGTTTGCCTGGCTTGCCGGCCCTGCCTGAGCTATATAGAGAACCCGCCGCCGAGCAACTGGGTTTGCTCTAA	MRLPYYLGCPSWSENAWRDYLYPQDAKSSDFLNLYSQVFNAVEGNTTFYASPSAATVQRWAEIMPEHFRFTAKIPGDISHGGDLREHLTATETFVQLLSPLGERVSPFWLQLSKAFTPNRMQELAAFIDAFPSPLAVEVRHDEFFAKGDAERRLNRLLLDRGVERICLDPRGLFSCASTDPSVIHAQYKKPRVPTRPAAFTQCPQVRFVGHPVVEANEPFLTPWVEKIAEWIEEGRTPYMFLHTADNLLAAKLAMRFHSRLMNRLPGLPALPELYREPAAEQLGLL				NA	NA	NA	NA	NA
D1-36_04061	309			hypothetical protein	ATGCGTATAGACGGCGTTTCATCCCAGTCCTACCCGATCAAGCGTCGGCCTCGTGCGGGTAAATCCGCTGAGCCCGAAAACTTCGATGATATCGATGGCGACCTGGAATTTCCGTCCGAAGAGCAACTGGCCGCACGTGCCGCCAAAGCCTCTGCGCAGCGCCTGAGCAATCTCCCCGCCCGTCAGCAGGACATGCTGTATCACCGCGCCATGAGCCGCAGTGTCGCCACGGCCCTTGCCAGTTATTTGAGCACTGCCGGTTTTGTCGACTGGGATATGGAAGTGCTAGGGCTCGACCTCTACATCTGA	MRIDGVSSQSYPIKRRPRAGKSAEPENFDDIDGDLEFPSEEQLAARAAKASAQRLSNLPARQQDMLYHRAMSRSVATALASYLSTAGFVDWDMEVLGLDLYI				NA	NA	NA	NA	NA
D1-36_04062	681	tsaB	COG1214	tRNA threonylcarbamoyladenosine biosynthesis protein TsaB	ATGAGCACCTTGCTGGCCCTGGACACCGCGACTGAAGCTTGCTCCGTTGCTTTGCTGCACAACGGCAAGGTCACGAGCCATTACGAGGTGATCCCGCGTTTGCATGCGCAGAAATTGCTGCCGATGATCCAGCAGTTGCTCAGCGATGCCGGCACCAACTTGCAAGCGGTGGATGCAATCGCCTTCGGTCGCGGGCCCGGGGCTTTCACCGGTGTGCGCATCGCCATCGGCGTGGTGCAGGGCTTGGCCTTTGCCCTGGAGCGCCCGGTGCTGCCGGTGTCGAACCTGGCGGTGCTGGCCCAGCGCGCCCTGCGCGAACACGGTGCGCGCCAGGTCGCCGCAGCGATCGATGCGCGCATGGACGAGGTGTATTGGGGCTGCTATCGCGAAGCCAACGGCGAGATGCGCCTGGCGGGGCCTGAAGCGGTATTGCCACCCGAGGCGGCGGCGCTGCCGGCTGAGGCGAGTGGTGATTGGTTCGGCGCCGGTACGGGCTGGGGTTATGCCGAGCGGATCGGTGTCAGCCTTGTTGGCCAGGACGCCTCGATGTTGCCCCATGCCGAAGACTTGCTTGCGCTGGCACGCTTCGCCTGGGAACGCGGCGAGGCCATTGTGGCCGATGATGCCCAGCCGGTTTACCTGCGGGACAAGGTAGCAACGCCAAAATCCGAGCGGCTCTGA	MSTLLALDTATEACSVALLHNGKVTSHYEVIPRLHAQKLLPMIQQLLSDAGTNLQAVDAIAFGRGPGAFTGVRIAIGVVQGLAFALERPVLPVSNLAVLAQRALREHGARQVAAAIDARMDEVYWGCYREANGEMRLAGPEAVLPPEAAALPAEASGDWFGAGTGWGYAERIGVSLVGQDASMLPHAEDLLALARFAWERGEAIVADDAQPVYLRDKVATPKSERL				NA	NA	NA	NA	NA
D1-36_04063	648	adk		Adenylate kinase	ATGCGCGTCATTCTGCTGGGAGCTCCCGGGGCCGGTAAAGGTACTCAGGCAAAGTTCATCACCGAAAAATTCGGTATCCCGCAAATCTCCACCGGCGACATGCTGCGTGCGGCGGTCAAGGCCGGCACCGAGCTGGGCATCAAGGCCAAGAGCATCATGGATGCCGGCGGCCTGGTGTCGGATGACCTGATCATCGCCCTGGTCAAGGATCGTATCGCTCAACCTGACTGCGCCAATGGCTTCCTGTTCGATGGTTTCCCGCGCACCATTCCACAGGCTGAAGCCCTGGTGAGCGCCGGCGTCGAGCTGGATGCAGTCGTTGAAATCGCCGTCGAGGACGAAGAAATCGTCCAGCGCATCGCCGGTCGACGTGTTCATGAGCCGTCCGGCCGTGTCTATCACACCGTCTACAATCCTCCAAAAGCCGAAGGCAAGGACGATGTGACGGGTGAAGAACTGGTGCAGCGCAAGGACGATACCGAAGAAACCGTGCGTCATCGTTTGTCGGTCTACCACTCCCAGACCAAGCCGCTGGTGGATTTCTACCAGAAGCTGTCGGCTGCCAACGGCAAGCCGAAATACAGCCATATCGAAGGCGTCGGTTCGGTTGAGGCCATCACTGCCAAAGTGCTTGCGGCCTTGAGCTGA	MRVILLGAPGAGKGTQAKFITEKFGIPQISTGDMLRAAVKAGTELGIKAKSIMDAGGLVSDDLIIALVKDRIAQPDCANGFLFDGFPRTIPQAEALVSAGVELDAVVEIAVEDEEIVQRIAGRRVHEPSGRVYHTVYNPPKAEGKDDVTGEELVQRKDDTEETVRHRLSVYHSQTKPLVDFYQKLSAANGKPKYSHIEGVGSVEAITAKVLAALS	PGPT0009040_4514	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0009040-adk|AK-K00939	NA	NA
D1-36_04064	2631	ppc	COG2352	Phosphoenolpyruvate carboxylase	ATGACCGATATCGATGCCCGCCTGCGCGAGGATGTCCACCTGCTCGGCGAATTGCTGGGCAACACCATTCGCGACCAGTACGGGGACACCTTTCTCGACAAGATCGAGCAGATCCGCAAAGGCGCCAAGGCGGACCGACGTGGTTCCATGGACGCCGAACTGAGCGCCAGCCTCAATCAGTTGAGCGAGGAGGAATTGCTGCCGGTCGCGCGAGCGTTCAACCAGTTCTTGAACCTGGCAAACATCGCTGAGCAATACCAGTTGATTCATCGGCGCGAAGAATCCAAGCCTGCGCCGTTTGAAGCGCGAGTGTTGCCCGAGTTGCTGGCACGCTTGCGCGCCGAAGGCCACAGCGCCGAATCGCTGGCCCGGCAGTTGGGCCGGCTCGATATCGAGTTGGTCCTCACCGCCCACCCCACGGAAGTCGCCCGGCGTACGCTGATCCAGAAATACGACGCCATCGCCGCGCAACTGGCGGCCCAGGATCACCGTGACCTCACCAGTGCCGAGCGCGCGCAGATCCATGAGCGCTTGCAAAGATTGATCGCCGAAGCCTGGCACACCGAAGAAATCCGCCGCACCCGGCCCACGCCCGTGGACGAGGCCAAGTGGGGCTTTGCGGTGATCGAGCATTCGCTGTGGCAGGCCATCCCCAATTACCTGCGCAAGGCCGACCAGGCCCTGCACGCCGCCACCGGGCTGCGCTTGCCGCTGGAAGCCGCGCCGATCCGCTTTGCCTCCTGGATGGGCGGCGACCGGGATGGCAACCCGAACGTCACCGCCGCGGTCACACGCGAAGTGCTGTTGCTGGCGCGTTGGATGGCGGCGGACCTTTATCTGCGCGATGTCGATCACCTGGCGGCCGACCTCTCCATGCAAAAGGCCAGCGAGGCCTTGCGCGCCCAGGCCGGTGATAGCGCCGAACCCTATCGCGCGGTACTCAAGCAATTGCGTGAACGCCTGCGGGCCACCCGCAACTGGGCCCAGGCCTCCTTGAAAGCCACTACGCCGGCCTCTTCCGAAGTGTTGCAGGACAACCGCGAACTGCTCGATCCGCTGGAGTTGTGCTATCAGTCCCTGCACGAGTGCGGCATGGGGGTGATTGCCGACGGGCCGCTGCTCGATTGCCTGCGCCGCGCGGTGACCTTCGGGCTGTTCCTCGTGCGCCTCGATGTGCGCCAGGATTCGACGCGCCACACGATGGCCATGACCGAGATCACCGATTACCTCGGGCTTGGACGCTATGAAGACTGGGACGAAGAGCAGCGCATCCGTTTTCTGCTGGATGAGCTGAATAACCGACGTCCGTTGTTGCCGCCGCATTTCAAACCGTCCGCCGACACTGGTGAGGTCCTGGCGACCTGTCGGGAAGTCGCGGCGGCGCCGGCGGCGTCCCTGGGTTCCTACGTGATCTCGATGGCCGGTGCCGCTTCCGATGTGCTGGCAGTGCAATTGCTGCTCAAGGAAGCCGGCGTGTTGCGGCCGATGCGGGTGGTGCCGCTGTTCGAAACCCTCGCCGACCTGGACAACGCTGGGCCGGTGATGGAGCGCCTGCTGGCGTTGCCGGGTTATCGCTCGCGCCTGCATGGACCCCAGGAGGTGATGATCGGCTATTCCGATTCAGCCAAGGACGCCGGGACCACGGCGGCGGCCTGGGCACAGTATCGAGCGCAGGAGCGACTCGTGGACATCTGCCGCGAGCAGCAAGTCGAACTGCTGTTGTTTCATGGTCGCGGGGGTACGGTAGGCCGTGGCGGTGGCCCGGCGCACGCGGCGATCCTGTCGCAGCCGCCAGGTTCGGTGGCGGGGCGGTTCCGCACCACTGAGCAAGGCGAAATGATTCGTTTCAAATTCGGCCTGCCGGACATCGCCGAACAGAACCTCAACCTTTATCTCGCTGCGGTGCTGGAAGCGACCCTGCTGCCACCGCCGCCGCCCACGCCAGAATGGCGCCATTTGATGGACGAATTGGCCGCTGACGGTGTCAGTGCCTACCGCGCGGTGGTGCGGGAAAATCCACAATTCGTCGAGTATTTTCGCCAGTCCACGCCGGAGCAGGAGTTGGGTCGTCTGCCCTTGGGCAGCCGTCCGGCCAAGCGTCGCGCCGGGGGGATCGAGAGCTTGCGGGCGATTCCGTGGATCTTCGGCTGGACCCAGACCCGCCTGATGCTGCCAGCCTGGCTCGGTTGGGAAACCGCCCTGGGCAAGGCGCTGGAGCGCGGCGAGGGTGAATTGCTGGGGCAGATGCGCGAACAATGGCCGTTCTTCCGCACCCGCATCGACATGCTGGAGATGGTGCTGGCCAAGGCCGACGCCGATATTGCCCAGTCTTACGATGAGCGTCTGGTGGAACCGGCATTGCTGCCGTTGGGCGAGCATTTACGCGACCTATTGTCGCAGGCCTGTTCGGTGGTCCTGGGGTTGACCGGCCAGTCGCAGCTACTGGCACATAGCCCAGATACCTTGGAATTCATTCGCCTGCGCAACACTTACCTCGACCCCTTGCACCTGTTGCAAGCCGAACTGCTGGCACGGTCGCGGCAGCAGGACGTTGCCCAAGGCAGCCCCGTGGAACAGGCATTGCTGGTGTCTGTAGCCGGGATCGCCGCCGGTTTGCGCAACACCGGCTGA	MTDIDARLREDVHLLGELLGNTIRDQYGDTFLDKIEQIRKGAKADRRGSMDAELSASLNQLSEEELLPVARAFNQFLNLANIAEQYQLIHRREESKPAPFEARVLPELLARLRAEGHSAESLARQLGRLDIELVLTAHPTEVARRTLIQKYDAIAAQLAAQDHRDLTSAERAQIHERLQRLIAEAWHTEEIRRTRPTPVDEAKWGFAVIEHSLWQAIPNYLRKADQALHAATGLRLPLEAAPIRFASWMGGDRDGNPNVTAAVTREVLLLARWMAADLYLRDVDHLAADLSMQKASEALRAQAGDSAEPYRAVLKQLRERLRATRNWAQASLKATTPASSEVLQDNRELLDPLELCYQSLHECGMGVIADGPLLDCLRRAVTFGLFLVRLDVRQDSTRHTMAMTEITDYLGLGRYEDWDEEQRIRFLLDELNNRRPLLPPHFKPSADTGEVLATCREVAAAPAASLGSYVISMAGAASDVLAVQLLLKEAGVLRPMRVVPLFETLADLDNAGPVMERLLALPGYRSRLHGPQEVMIGYSDSAKDAGTTAAAWAQYRAQERLVDICREQQVELLLFHGRGGTVGRGGGPAHAAILSQPPGSVAGRFRTTEQGEMIRFKFGLPDIAEQNLNLYLAAVLEATLLPPPPPTPEWRHLMDELAADGVSAYRAVVRENPQFVEYFRQSTPEQELGRLPLGSRPAKRRAGGIESLRAIPWIFGWTQTRLMLPAWLGWETALGKALERGEGELLGQMREQWPFFRTRIDMLEMVLAKADADIAQSYDERLVEPALLPLGEHLRDLLSQACSVVLGLTGQSQLLAHSPDTLEFIRLRNTYLDPLHLLQAELLARSRQQDVAQGSPVEQALLVSVAGIAAGLRNTG	PGPT0001165_3086	DIRECT EFFECT	BIO-FERTILIZATION	CARBON_DIOXID_FIXATION	CO2_FIXATION-ALTERNATIVE_PAHTWAYS	CO2_FIXATION-PHOSPHOENOLPYRUVATE_CARBOXYLASE_BIOSYNTHESIS,PGPT0001165-ppc-K01595	NA	NA
D1-36_04065	345			hypothetical protein	ATGAAAATCCGTGAGCTTGCCCAGCATTGGGAAGAAAATGCCAAGGGTCGCCTGACCCAGACCGGCTACACGATTCATCTCGATGTAGAGGCCGCTGCGCGCCTGGCGGCCATCTGCGACATGTACCCCAAGCGTCAGCCCGAAGAACTGCTCGGGGAGCTGATCGGCGCCGCGTTGGAAGAGCTGGAAGCCAGCTTCCCCTACGTCAAGGGATCGCAAGTCGTATCGACCGATGAGGAAGGTGATCCGCTGTATGAAGACGTGGGCCCGACGCCACGTTTTCTCGCGCTGTCACGCCGTCATCTGCGCGAACTTTCCTCCCACAGCGACAAATCCAAACACTGA	MKIRELAQHWEENAKGRLTQTGYTIHLDVEAAARLAAICDMYPKRQPEELLGELIGAALEELEASFPYVKGSQVVSTDEEGDPLYEDVGPTPRFLALSRRHLRELSSHSDKSKH				NA	NA	NA	NA	NA
D1-36_04066	414			hypothetical protein	ATGGAGTTGAAGCCTATGAATACCTGCACTGCCAAACCCTCATCCACTGGCCTGCGCGGCCTGAAGTTGGCTGCCCTGGCTATCGGTAGCAGCTTCATTCTGGCCGGTTGTGCCGGCAACCCACCTTCGGAGCAATACGCGGTCACGCAATCTGCGGTCAACAGCGCCGTCAGCGCTGGCGGCACCGAGTTTGCCGCCGTGGAAATGAAATCGGCCCAGGACAAGCTCAAGCAGGCCGAGATCGCCATGCACGACGAGAATTACGAAGAGGCCAAGCGTCTGGCCGAACAGGCCGAATGGGATGCCCGCGTCGCCGAGCGCAAGGCCCAGGCCGCCAAGGCCGAACAGGCCCTCAAGGATTCCCAGAAAGGGGTTCAGGAACTGCGTCAGGAAGGCATGAACAAGGTCCAGTGA	MELKPMNTCTAKPSSTGLRGLKLAALAIGSSFILAGCAGNPPSEQYAVTQSAVNSAVSAGGTEFAAVEMKSAQDKLKQAEIAMHDENYEEAKRLAEQAEWDARVAERKAQAAKAEQALKDSQKGVQELRQEGMNKVQ				NA	NA	NA	NA	NA
D1-36_04067	792	pal_7		Peptidoglycan-associated lipoprotein	ATGACGCACAAACATTTCATGATGCCCGCCCTGCTTGCCGCCTGCGTAGCCCTGGCCGCTTGCTCCCACGATCCGAACGCGAACCTGGAACAGGCGCGCACCAACTACAACGGCTTGCAGGCCGACCCGGCGGCCACCAAGGTCGCGGCTCTGGAAACCAAGGACGCTGCCGATTTTCTCGCCAAGGCCGACAAGGCCTACATGGATAACGAGGACGAAGCCAAGGTCGACCAACTGGCCTACCTGACCAACCAGCGTGTCGAAGTGGCCAAGCAGACCATTGCCCTGCGCAACGCCGAAGCCGAGCTGAAAAACGCCGGTGACGAACGCGCCCGCGCACTGCTGGAAGCCCGCAACGCGCAGATCAAGCAGTTGCAGGACAGCCTCAACGCCAAGCAGACCGAGCGCGGTACGCTGGTGACCTTCGGCGACGTGCTGTTTGCCACCAACAAGTCGGACCTGCGTACCAGCGGTATGACTAACGTGAGCAAACTGGCGCAGTTCCTCCAGGAAAACCCGGATCGCAAGGTGATCATCGAAGGCTACACCGACAGCACCGGTTCGGACTCCTACAACCAATCGCTGTCCGAACGCCGCGCCAGCTCCGTGCGCACCGCCCTGGTGAAAATGGGCGTCGACCCGGCCCGCATCGTGACTCAGGGCTACGGCAAGGAATTCCCGGTCGCCGACAACACCAGCGTCTCGGGCCGCGCCATGAACCGTCGCGTGGAGGTCACCATCTCCAACGACAACCAGCCCGTCGCCCCGCGTTCGACCATGAGCGCCAACTGA	MTHKHFMMPALLAACVALAACSHDPNANLEQARTNYNGLQADPAATKVAALETKDAADFLAKADKAYMDNEDEAKVDQLAYLTNQRVEVAKQTIALRNAEAELKNAGDERARALLEARNAQIKQLQDSLNAKQTERGTLVTFGDVLFATNKSDLRTSGMTNVSKLAQFLQENPDRKVIIEGYTDSTGSDSYNQSLSERRASSVRTALVKMGVDPARIVTQGYGKEFPVADNTSVSGRAMNRRVEVTISNDNQPVAPRSTMSAN				NA	NA	NA	NA	NA
D1-36_04068	135			hypothetical protein	ATGATCAAATTTATTTGGCTGCACACGATCATTGTGGGAGCGAGCTTGCTCGCGATAGGGGAGTGTCAGGCACTATCAATGCTGCTGAACCACCGCTATCGCGAGCAAGCTCGCTCCCACAGGGGTCTCGCTTAA	MIKFIWLHTIIVGASLLAIGECQALSMLLNHRYREQARSHRGLA				NA	NA	NA	NA	NA
D1-36_04069	330			hypothetical protein	ATGAGCGAAGAACGTAACGCCATCCCCCTGATAATCACAGGTATCTGCAGCATCCTCGGCACCGTCGCGGCGCTCTGGTACTACGGCTACCTGCATTTCGCCAAGCCCGAGGATGCGTTGCTGCTCAACGAGTTCACCATGCTCAAGACCGTTCCGGGGGAGGACTACAAGGTTTCCCTGGAGCCGGCGCCGCAAGTGGCCCAGTGCATCGAGGGCGTGCTGGTGTTGTTCGACACCGAACAGAAAGGCCTGACCGGTGTGCTGATCAACGAGAAGAAGCGCGCGGTGCGGTGCATGGGGCAGGAGACCCCACAAAAACTTCAGCCTTAA	MSEERNAIPLIITGICSILGTVAALWYYGYLHFAKPEDALLLNEFTMLKTVPGEDYKVSLEPAPQVAQCIEGVLVLFDTEQKGLTGVLINEKKRAVRCMGQETPQKLQP				NA	NA	NA	NA	NA
D1-36_04070	906			hypothetical protein	ATGCGAACCCTCGGCATCATTTGCCTGCTGCTGGCCCTGAGCGGTTGCAGCTCCCTGCTGTTCTACCCCGAACGCGGCCTGCCGTTTACCCCGGAACGGGCCAAGCTTGACTACCGCGACGTCACCCTGACCACCGCCGATGGGCTGAAGCTGCGGGGTTGGTGGCTGCCGGTGAAGCCGGGTGTAGAGGTCAAGGGCACAGTGCTGCATCTTCACGGCAACGGCGGCAACCTAGCCTGGCACCTCGGCGGGAGCTGGTGGTTGCCGGAGCAGGGTTATCAAGTCTTGATGGTCGATTACCGTGGCTATGGCGTTTCCGAAGGCGAGCCGAGCCTGCCGGCGATCTACCAGGACATCGACGCCGCGTTCAATTGGCTCGACCAGGCGCCGGAAGTGCGGGGCAAGCCGTTGGTGCTGCTCGGCCAGAGTCTCGGTGGCGCGCTGGCGGTGCATTACCTGGCCGAGCACCCGCAGCGCCAGCAGCAGCTCAAGGCCTTGGTGCTCGACGGCGTGCCCGCCAGTTATCGTGATGTAGGGCGTTTCGCTCTTGGCACCTCATGGCTGACCTGGCCACTCCAGGTGCCGCTGTCGTGGCTGGTGCCGGACGGCGACAGCGCCATCGGCTCGATCGCGCAATTGAACGGCGTACCGAAACTGATCTACCACAGCCTCGACGATCCGATCGTGCCCCTTTCCAACGGCATCCGCTTGTATCAAGCTGCGCCGCCGCCACGGGTGCTGCAACTGACCCGTGGCGGGCATGTGCAGACCTTCGCCGACCCAACCTGGCGAACCGTGATGCTGCGCTACCTCGACGACCCCCGGCACTTTGACGGCCTGCGCCGCCTGGGCGAAATTCCGAATTACCCGAAATCACCCGTTGAATCACCTGAGAATCCGCAATGA	MRTLGIICLLLALSGCSSLLFYPERGLPFTPERAKLDYRDVTLTTADGLKLRGWWLPVKPGVEVKGTVLHLHGNGGNLAWHLGGSWWLPEQGYQVLMVDYRGYGVSEGEPSLPAIYQDIDAAFNWLDQAPEVRGKPLVLLGQSLGGALAVHYLAEHPQRQQQLKALVLDGVPASYRDVGRFALGTSWLTWPLQVPLSWLVPDGDSAIGSIAQLNGVPKLIYHSLDDPIVPLSNGIRLYQAAPPPRVLQLTRGGHVQTFADPTWRTVMLRYLDDPRHFDGLRRLGEIPNYPKSPVESPENPQ				NA	NA	NA	NA	NA
D1-36_04071	1278			hypothetical protein	GTGGACGATTACCAGCAGACGATACGCACCTTGTCCGATCGCATTGTGCTGGCGCAGACGCCGATTCGAATCCTCGACGCGGTGAAGTGGGACGAGAACATCCGCAAAGGTTTTCTCAAGACCAAGGGCAAGGAAATGCCCGCCGTGGACCGCGACTATTATCTCAACCGACCGCTGTCGTTCGATTCCAGCAAAGTGAAGCTGGAGTTTCAGAACATCGAGCGCGACATCACCCGCCAACTCGGGCAGTTCAACCCGGTTGGCCAGATCATGCGCCGCATGTGCAAGGAATACCGCATGGTGGTGCGCATGCTCGAAGCGCGCGGCACCGAGGACTTCGGGCTGATTTCCCAGGAGCTGTATGGCGCGGCGTCCGACGCCTTCCACGCCGGTGACCCGACCCTGGCCGACCTGGGGCTGATGCTGTCCGATTACCTGAACAACATCGATGGCCGTGGCGACCTGAAGGACGAGCCCAAGGTCCTCAGCGCCAAGGAAGCCGTGAGCCTGTTGCAGCATCGCCTCAACCGGGTGTTCGGCGAAGCCGAGGAAACCATCCGCGTGTTCGAGTCCGACGGGATCGTGGCCGACGCGGCGGCGGGCGCCGACTACATCAAGATCCGCACCGACGCGATGTTCAACGAGCGCGATGTGCGCGCCCTGGAGGTCCATGAAGGGCTGGTGCACGTCGGCACCACCCTCAACGGGCTGAACCAGCCGATCTGCACCTTCCTGTCCAAGGGCCCGCCCTCGTCGACAGTGACTCAGGAAGGCCTGGCGATCCTGATGGAGATCATCACCTTCGCGTCCTACCCGAGTCGCTTGCGCAAGCTCACCAACCGTACCCGCGCCATTCATATGGTGGAAGAGGGCGCCGATTTCCTGCAGGTCTACGAGTTCTTCCGTGAACAGGGCTTTGAAATGGCCGAAAGCTACGGCAACGCCAGCCGGGTTTTCCGTGGTTCGGTGCCGACCGGACTGCCGTTCACCAAAGACTTGTCCTACCTCAAGGGCTTCATCATGGTTTACAACTATATTCAGCTGGCCGTGCGCAAAGGCAAGCTGGAGCAGGTGCCGTTGCTGTTCTGCGGCAAGACCACCCTGGAGGACATGCGCACGTTGCGCCAGTTAGTGGATGAAGGCCTGGTCGTACCGCCCAAGTACCTGCCCGACCAATTTCGCGACATGAACGCGCTGTCGGCCTGGATGTGCTTCTCCAACTTCTTGAACCACCTGAGCCTGGACCGGATCGAAGCGGATTATTCCAATATCCTTTGA	MDDYQQTIRTLSDRIVLAQTPIRILDAVKWDENIRKGFLKTKGKEMPAVDRDYYLNRPLSFDSSKVKLEFQNIERDITRQLGQFNPVGQIMRRMCKEYRMVVRMLEARGTEDFGLISQELYGAASDAFHAGDPTLADLGLMLSDYLNNIDGRGDLKDEPKVLSAKEAVSLLQHRLNRVFGEAEETIRVFESDGIVADAAAGADYIKIRTDAMFNERDVRALEVHEGLVHVGTTLNGLNQPICTFLSKGPPSSTVTQEGLAILMEIITFASYPSRLRKLTNRTRAIHMVEEGADFLQVYEFFREQGFEMAESYGNASRVFRGSVPTGLPFTKDLSYLKGFIMVYNYIQLAVRKGKLEQVPLLFCGKTTLEDMRTLRQLVDEGLVVPPKYLPDQFRDMNALSAWMCFSNFLNHLSLDRIEADYSNIL				NA	NA	NA	NA	NA
D1-36_04072	555			hypothetical protein	ATGAAAGCCTGGCATGCCGTTGTTCTGGCCGTGTCGTTGCTGCTGCTCAGTGGGTGCCTGGTGTCGTTCAAGGCGCCGTTGCCCGACAGCGAAGCCGCGCCCAAGGGCCTGCTCGGCCAATGGACCAGCACCAACGCCTGGGGCGAGCCGTTGAACCTGGAGCTGACGCAAGTCGGCAAGCACCGCTACCAGGCCATCAGCTACTTCAGGGCCAAGCCCCGGGAACGCGAAGCCATTCCCGTGACGGTCTCCCGACACGGCAGCCGCTGGTACCTGTCGGCCAAGGTGCCGGCCCGCTATGGCGGACATTTCGTCATTGCCGGTTTCGAACTGACCGACAAACAGGAACTGGTGGTCTACAACCTGGACATGGAACAGATCAACCAGGCCATCGGCCAGAAGCTCCTCAGTGGTCAGCCGAACCCAAGCGAAGAGGGCGATGGCGTGCTGGTGGACAGCGACATGGTCAAGGTGTTCAGCTACCTCGACGACCCAGCCAATTCCGACGTGTTCTCGGAAGCCGTGCGCTATCAGCGACTGGCCAAATCCCAATAA	MKAWHAVVLAVSLLLLSGCLVSFKAPLPDSEAAPKGLLGQWTSTNAWGEPLNLELTQVGKHRYQAISYFRAKPREREAIPVTVSRHGSRWYLSAKVPARYGGHFVIAGFELTDKQELVVYNLDMEQINQAIGQKLLSGQPNPSEEGDGVLVDSDMVKVFSYLDDPANSDVFSEAVRYQRLAKSQ				NA	NA	NA	NA	NA
D1-36_04073	717	betI_1		HTH-type transcriptional regulator BetI	GTGAATCGTGCAATGGCTCCAGAAGGTGCAGCGGGCGTCGCCACTGCTGTCGCTGAAAGTGTTCAGTACCAGGGTCGCAAGGCCAGCCGACAGGGCAGTGAACAGCGCCGCCAGGACATTCTCGACGCGGCCATGCGCATCGTCGTGCGCGATGGCGTGCGGGCCGTGCGACACCGCGCGGTGGCCGCCGAAGCGGGCGTGCCGCTGTCGGCCACCACTTACTACTTCAAGGACATCGACGACCTGCTCACCGATACCTTCGCCCAGTACGTGGAGCGCAGCGCGGCGTTCATGGCCAAGCTGTGGACCAACAACGAGGGGCTGCTGCGTGAAATGGTCGCCTACGGGGACGGCAGCGCCGAGTCGCGCTCGCAATTGGCCGACGACATTGCGCGGATGACCGCTGATTATGTGCAGCATCAGTTGCAGAGTCGTCGCGACTATTTGATGGCCGAACAGGCCTTTCGCCAGGAAGCGCTGCTCAACCCACGCCTGGCGGAACTGGTTCGTTCTCATCAACGAATCCTGCTCCATGGCACCTGTCAGTTTTTCCAGGTGTTGGGCTCGCGCGAGCCGCAACAGGATGCCAAAGTGTTGACGGCGATTATCGGTCGGATGGAATATCAGGGCTTGCTCAATGGCGCCGAGCCTGTCGCTGAAGAAGACATGCTCGGCATCCTGACCCGCTACATGCACCTGGTACTGGCGTCGGTGTAG	MNRAMAPEGAAGVATAVAESVQYQGRKASRQGSEQRRQDILDAAMRIVVRDGVRAVRHRAVAAEAGVPLSATTYYFKDIDDLLTDTFAQYVERSAAFMAKLWTNNEGLLREMVAYGDGSAESRSQLADDIARMTADYVQHQLQSRRDYLMAEQAFRQEALLNPRLAELVRSHQRILLHGTCQFFQVLGSREPQQDAKVLTAIIGRMEYQGLLNGAEPVAEEDMLGILTRYMHLVLASV				NA	NA	NA	NA	NA
D1-36_04074	1503	lysU	COG1190	Lysine--tRNA ligase, heat inducible	ATGAGCGACCTAGAACTCGACCCGCAAGCCCTGCAACAGGAAGAAAACTCCCTGATCGCCCTGCGCAAGGAAAAGCTTGCTGCCGAGCGCGCCAAGGGCCAGGCCTTCCCCAACGACTTCCGCCGCGACGCGTATTGCGACGTCCTGCAGAAGAAGTACGCAGACAAGACCAAGGAAGAGCTGGCCGAGGCGGCGATTGCGGTCAAGGTTGCCGGTCGCATCATGCTCAACCGTGGTTCGTTCATGGTGATCCAGGACATGACCGGGCGCATTCAGGTCTACGTCAACCGCAAGACCCTGCCGGAAGAAACCCTGGCCGCCGTCAAGACCTGGGACCTGGGCGACATCATCGCCGCCGAAGGCACCCTGGCCCGCTCCGGCAAGGGCGACCTGTACGTCGAAATGACCAGCGTGCGCCTGCTGACCAAGTCCTTGCGCCCGCTGCCGGACAAGCACCACGGCCTGACCGACACCGAGCAACGTTACCGCCAGCGCTACGTCGACCTGATCGTCAACGAAGACGTGCGCCAGACCTTCCGCGTGCGTTCGCAAGTCATCGCCCACATCCGCAGCTTCCTGATGAAGCGTGACTTCCTGGAAGTCGAGACGCCGATGCTCCAGACCATCCCTGGCGGCGCGGCGGCCAAGCCGTTCGAAACCCACCATAACGCCCTGGACATGGAAATGTTCCTGCGTATCGCCCCGGAGCTGTACCTCAAGCGCCTGGTGGTCGGCGGCTTCGAGAAAGTGTTCGAGATCAACCGCAACTTCCGTAACGAAGGCGTTTCGACCCGGCACAACCCCGAGTTCACCATGCTCGAGTTCTACCAGGCCTATGCTGACTACGAAGACAACATGGACCTGACCGAAGAACTGTTCCGCGAACTGGCGCAGTTGGTCCTGGGCAGCACCGATGTGCCATACGGCGACAAAGTGTTCCACTTCGGCGAGCCGTTCGTGCGCCTGTCGGTGTTCGATTCGATCCTCAAGTACAACCCTGAGATCACCGCCGCCGATCTGCAGGACATCGACAAGGCCCGTGCCATCGCCAAGAAGGCCGGCGCCAAGGTGCTCGGCTTCGAAGGCCTGGGCAAGCTGCAGGTGATGATTTTCGAAGAGCTGGTGGAGCACAAGCTGGAGCAGCCGCACTTCATCACCCAGTACCCGTTCGAAGTGTCGCCGCTGGCCCGTCGCAACGACGAAGACCCAAGCGTGACCGACCGCTTCGAGCTGTTCATCGGTGGCCGGGAAATCGCCAACGCCTATTCCGAGCTCAATGACGCGGAAGACCAGGCCGAGCGCTTCATGGCCCAGGTAGCCGACAAGGACGCGGGCGACGACGAAGCCATGCACTACGACGCCGACTTCGTCCGCGCCTTGGAGTACGGCATGCCGCCGACCGCAGGTGAAGGCATCGGCATCGATCGCCTGGTGATGTTGCTGACCAACTCGCCGTCGATCCGGGATGTGATCCTCTTCCCGCACATGCGGCCCCAAGCGTAA	MSDLELDPQALQQEENSLIALRKEKLAAERAKGQAFPNDFRRDAYCDVLQKKYADKTKEELAEAAIAVKVAGRIMLNRGSFMVIQDMTGRIQVYVNRKTLPEETLAAVKTWDLGDIIAAEGTLARSGKGDLYVEMTSVRLLTKSLRPLPDKHHGLTDTEQRYRQRYVDLIVNEDVRQTFRVRSQVIAHIRSFLMKRDFLEVETPMLQTIPGGAAAKPFETHHNALDMEMFLRIAPELYLKRLVVGGFEKVFEINRNFRNEGVSTRHNPEFTMLEFYQAYADYEDNMDLTEELFRELAQLVLGSTDVPYGDKVFHFGEPFVRLSVFDSILKYNPEITAADLQDIDKARAIAKKAGAKVLGFEGLGKLQVMIFEELVEHKLEQPHFITQYPFEVSPLARRNDEDPSVTDRFELFIGGREIANAYSELNDAEDQAERFMAQVADKDAGDDEAMHYDADFVRALEYGMPPTAGEGIGIDRLVMLLTNSPSIRDVILFPHMRPQA	PGPT0012225_4346	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	FUNGICIDAL_COMPOUNDS|ANTIBIOTICS	FUNGICIDAL-MOTILITY-MEDIATED_DEFENSE_SIGNALLING,PGPT0012225-lysS-K04567	NA	NA
D1-36_04075	882	prfB	COG1186	Peptide chain release factor RF2	TTGTCCAGCGGCCTGGCCGATTGTCGCGACCTGCTGGACATGGCTGTCGAAGAGAACGACGAAGGCGCGGTCGGCGATGTCGTCGCCGAACTGACTCGCCTGGACGAGAACCTCGCCAAGCTGGAATTCCGTCGCATGTTCAGCGGCGAGATGGACATGAACAACGCCTACCTGGACATCCAGGCCGGTTCCGGCGGCACCGAAGCCCAGGACTGGGCCAACATCCTGCTGCGCATGTACCTGCGCTGGGCTGACAAACGCGGTTTCGACGCCACGATCATGGAACTGTCCGCCGGCGAAGTCGCCGGGATCAAGGGCGCCACCGTGCACATCAAGGGCGAATACGCCTTTGGTTGGCTGCGGACCGAGATCGGCGTGCACCGCCTGGTACGCAAGAGCCCGTTCGACTCCGGCAACCGGCGCCACACCTCGTTCTCAGCGGTATTCGTCTCTCCGGAAATCGATGACAACATCGAAATCGAGATCAACCCGGCCGACCTGCGCATCGACACCTACCGCTCCTCCGGTGCCGGTGGCCAGCACGTAAACACCACCGACTCGGCCGTGCGGATTACCCACGTACCGACCAACACGGTGGTGAGTTGCCAGAACGAACGTTCCCAGCACGCCAACAAAGACACCGCGATGAAGATGTTGCGGGCCCGCTTGTACGAGCAGGAAGTGCAGAAGCGCAACGCCGCGTCCCAGGCACTGGAAGACACCAAGTCCGACATCGGCTGGGGTCACCAGATCCGTTCGTACGTGCTCGACGCCTCGCGGATCAAGGACTTGCGTACCAGCATCGAACGCAGCGACTGCGACAAAGTGCTTGATGGCGACATCGATGAATACCTGATCGCCAGCCTCAAGCAAGGGCTGTAA	MSSGLADCRDLLDMAVEENDEGAVGDVVAELTRLDENLAKLEFRRMFSGEMDMNNAYLDIQAGSGGTEAQDWANILLRMYLRWADKRGFDATIMELSAGEVAGIKGATVHIKGEYAFGWLRTEIGVHRLVRKSPFDSGNRRHTSFSAVFVSPEIDDNIEIEINPADLRIDTYRSSGAGGQHVNTTDSAVRITHVPTNTVVSCQNERSQHANKDTAMKMLRARLYEQEVQKRNAASQALEDTKSDIGWGHQIRSYVLDASRIKDLRTSIERSDCDKVLDGDIDEYLIASLKQGL				NA	NA	NA	NA	NA
D1-36_04076	711			hypothetical protein	ATGAACACCCGTGGATTGCTCGATCAGTTACTCAAGTCCGGTCAGGAAATGTTGCAGAACAAGGCCGGCGGTTCGCAAGGCAAGCCATCCAGCGGCCTGGGCGGGTTGCTCGGCGGCTCCGGCAACCTGGGCGGCATGCTGTCCGGCGCGGGGGGCGGGGCGCTGGCGGCGAGCGCCATGGGCATGCTGCTGGGCAACAAGAAAGCCCGCAATTTTGGTGGCAAGGCGCTGGCTTATGGTGGCCTGGCTGCCCTGGGCGTGATTGCCTACAAGGCTTACGGCAATTGGCAGGCCCAACAGGGCAACGCGCCGAAAACCGAGCCGCAGACCCTGGACCGCGTGCCGGCGGCGCAAGTCGAGCAACACAGCCAGGCGATCCTCAAGGCCCTGGTCGCGGCGGCCAAGGCTGACGGCCATGTGGATGACCGCGAGCGGCAGTTGATCGAAGGCGAATTCACCAAGCTCGATAACGACCAGGAGCTTCAACACTGGCTGCATGCCGAGCTCAACAAACCGCTGGACCCCACCGACGTGGCACGTGCCGCAAGCACGCCGGAAATCGCCGCAGAGATGTACATCGCCAGTGTGATGTTGGTGGACGAAGAGAATTTCATGGAAAAGTCCTACCTCGACGAACTGGCGCGGCAGTTGAAGCTGGAGCCGGGGTTGAAGGCGGAACTGGAAAAGCAGGTGCGCCAGGCGACTGCCTGA	MNTRGLLDQLLKSGQEMLQNKAGGSQGKPSSGLGGLLGGSGNLGGMLSGAGGGALAASAMGMLLGNKKARNFGGKALAYGGLAALGVIAYKAYGNWQAQQGNAPKTEPQTLDRVPAAQVEQHSQAILKALVAAAKADGHVDDRERQLIEGEFTKLDNDQELQHWLHAELNKPLDPTDVARAASTPEIAAEMYIASVMLVDEENFMEKSYLDELARQLKLEPGLKAELEKQVRQATA				NA	NA	NA	NA	NA
D1-36_04077	915	gltC_3		HTH-type transcriptional regulator GltC	ATGATGACCCTGCGCCAGATCCGTCATTTCATCGCAGTGGCCGAGACCGGCTCGATCTCCGCCGCCGCGCAGACCGCATTCATCTCCCAATCGACCTTGACCCTGGCAATCCAGCAACTGGAAGAGGAAATCGGCGTCAGCCTGTTCAACCGCCACGCGAAAGGCATGACGCTGACCCATCAGGGACACCAGTTCCTGCGCCAGGCCCATCTGATTCTCGCCACGGTCGATAACGCCAAGCGTAGCCTGCAGCAAAGCACCGACCAGGTGGCCGGCCAGATCACCATCGGCGTGACCAGCCTGGTCGCCGGTTACTACCTGGCGGATCTCCTGACCCGTTTCCAGCGCGCCTACCCCAATGTGGCAATCCGGGTTATGGAGGACGAACGTCCCTACATCGAACATCTGCTGGTCAGCGGTGAGATCGATGTCGGCGTGCTGATCCTCTCCAACCTGGAAGACCGCCACGCCCTGCAGACCGAAGTGCTGACCCACTCACCCCATCGCTTGTGGTTGCCGGCGCAGCATCCGCTGCTTGAAAACGACAGCATCCACCTGGCGGATGTCGCCCGGGAACAGCTGATCCAATTGAACGTCGATGAAATGGACCGCAACGCGCAACGCCTGTGGCGCGGCGCCGGCCTGCAACCGCAAATCACCCTCCGCACAGCCTCGACCGAAGCGGTACGCAGCCTGGTGGCGGCCGGCCTGGGTGTTTCGATCCAGCCGGACATGACCTACCGCCCCTGGTCGCTGGAAGGCGACATCATCGAGGCGCGCCCCATCGCCGACCTCAACCAGACGCTGGATGTCGGGCTGGCCTGGCGCCGGGGAACTGCACGCCCGGCCTCGGTCGACCCGTTCCTGGCGGTCGCTCGGGAACAATCCCATGGCGGACGCAAGCCATCGATTTAA	MMTLRQIRHFIAVAETGSISAAAQTAFISQSTLTLAIQQLEEEIGVSLFNRHAKGMTLTHQGHQFLRQAHLILATVDNAKRSLQQSTDQVAGQITIGVTSLVAGYYLADLLTRFQRAYPNVAIRVMEDERPYIEHLLVSGEIDVGVLILSNLEDRHALQTEVLTHSPHRLWLPAQHPLLENDSIHLADVAREQLIQLNVDEMDRNAQRLWRGAGLQPQITLRTASTEAVRSLVAAGLGVSIQPDMTYRPWSLEGDIIEARPIADLNQTLDVGLAWRRGTARPASVDPFLAVAREQSHGGRKPSI				NA	NA	NA	NA	NA
D1-36_04078	1458	prr_1	COG1012	Gamma-aminobutyraldehyde dehydrogenase	ATGGCTGGCACGCAAACCCCGTTGTGTACCGCGTTGTTGATCAACGGAGAATTGGCGGCCGGCGAGGGTTTTGTCGAGCCGATTCTCAACCCGGCCACGGGTGAAGTGGTTGCGCAAATCGCCGAGGGCAGTATCGAACAGGTCGAAGCCGCGATCCTCGCGGCTCATCACGCCTTCGGCGGCTGGTCACGTACCACGCCGCAACAACGCTCGAACCTGCTGCTGGAAATCGCCAGCGCCATCGAAAAAAATGCCGATCACCTGGCCCGTCTCGAATCCTTGAACTGCGGCAAGCCCTTGCACCTGGCTCGCCAGGATGACTTGAGCGCCACGGTGGATGTGTTCCGTTTCTTCGCCGGCGCGGTGCGCTGCCAGACCGGCCAGCTCAGCGGTGAATACCTGCCGGGCTACACCAGCATGGTGCGCCGCGACCCGATCGGCGTGGTGGCCTCCATCGCGCCGTGGAATTACCCCATCATGATGGCGGCCTGGAAGATCGCCCCGGCCCTGGCCGCTGGCAATACCTTGGTGTTCAAGCCTTCCGAGCACACGCCGCTGTCGATCCTGGCCCTGGCGCCAATACTGGCCGAGATCCTGCCGCCCGGCGTCATCAACATCATCTGCGGTGGCGGCGAAGGCGTCGGTAGCCATCTGGTCAGCCATCCGAAGGTGCGCATGGTCTCGCTGACCGGCGATATCGTCACCGGCCAGAAGATCCTTCAGGCGGCGGCGAAAACCCTCAAGCGCACGCATCTGGAACTGGGTGGCAAGGCCCCGGTGATTGTCTGTGACGACGCCGATCTCCAAGCGGTGATCGAGGGCGTGCGCACCTATGGTTATTACAACGCCGGACAGGATTGCACCGCCGCCTGCCGGATCTACGCCCAGGCCGGTATCCACGACCGGCTGGTGGCGGAACTCGGCGCGGCGGTCGGCAGCCTGCGCTTTGCCGGCAAGCGCGACGCCGACAATGAAATCGGTCCGCTGATCAGCGTGCGCCAGCGCGACCGTGTCGCCAGTTTTGTCGAGCGAGCCCTTGGCCAGCCGCACATCGAACGCATCACCGGTGCGGCGGTGCATTCCGGGGCCGGTTTCTACTATCAGCCGACGCTGCTGGCCGGCTGCAAGCAAAGCGATGAGATCGTCCAACGGGAAGTGTTCGGCCCGGTGGTCACCGTGACCCGCTTCGACGAGCTCAGCCAAGCGGTGGACTGGGCCAACGATTCGGAATATGGCCTGGCCTCCTCGGTATGGACCCAGAACCTGGACAAGGCGATGCAAGTGGCGGCACGGCTGCAATACGGCTGCACCTGGATCAACAGCCATTTCATGCTGGTCAGCGAGATGCCCCACGGCGGCTTGAAACGCTCGGGCTACGGCAAGGATCTGTCCAGCGATTCGCTCCAGGACTACAGCGTGGTGCGCCATATCATGGCCCGGCATGGCCGGGAGCTTTGA	MAGTQTPLCTALLINGELAAGEGFVEPILNPATGEVVAQIAEGSIEQVEAAILAAHHAFGGWSRTTPQQRSNLLLEIASAIEKNADHLARLESLNCGKPLHLARQDDLSATVDVFRFFAGAVRCQTGQLSGEYLPGYTSMVRRDPIGVVASIAPWNYPIMMAAWKIAPALAAGNTLVFKPSEHTPLSILALAPILAEILPPGVINIICGGGEGVGSHLVSHPKVRMVSLTGDIVTGQKILQAAAKTLKRTHLELGGKAPVIVCDDADLQAVIEGVRTYGYYNAGQDCTAACRIYAQAGIHDRLVAELGAAVGSLRFAGKRDADNEIGPLISVRQRDRVASFVERALGQPHIERITGAAVHSGAGFYYQPTLLAGCKQSDEIVQREVFGPVVTVTRFDELSQAVDWANDSEYGLASSVWTQNLDKAMQVAARLQYGCTWINSHFMLVSEMPHGGLKRSGYGKDLSSDSLQDYSVVRHIMARHGREL	PGPT0007650_63	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINE_USAGE	PLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007650-patD|prr|ydcW-K00137	NA	NA
D1-36_04079	1152	ydcS		Bifunctional polyhydroxybutyrate synthase / ABC transporter periplasmic binding protein	ATGTACGCGCACAAGACCGTATTGCTCAGTGCAATCACCACGGCGCTGCTGACCAGCGTCAGCGTCCAGGCCGCCGAACCGCTCAAGGCCATTGGTGCCGGCGAAGGCCAATTGGATATCGTCGCCTGGCCGGGCTACATCGAACGCGGTGAAAGCGACAAGGCCTATGACTGGGTCACCGGTTTCGAAAAGGAAACCGGCTGCAAGGTCAACGTGAAAACCGCCGCCACGTCCGATGAAATGGTCAGCCTGATGAGCAAGGGCGGCTATGACCTCGTCACTGCTTCGGGCGATGCCTCGTTGCGGCTGATTGCCGGCAAACGCGTGCAGCCGATCAACACCGCGCTGATCGCCAATTGGAAAAACCTCGACCCGCGCCTCAAAGACGCGCCGTGGTATGTGGTCAATCAACAGACCTACGGCACGCCCTACCAGTGGGGCCCAAACGTGTTGATGTACAACACCCAGGTATTCAAGCAGGCACCGACCAGTTGGAGCGTGCTGTTCGAAGCCCAGAACCTGCCCGACGGAAAGCCGAACAAGGGGCGCGTGCAAGCCTACGACGGCCCGATCTACATCGCCGACGCGGCGCTTTATCTCATGACCGCCAAACCTGAACTGGGTATCAAGGACCCGTACCAGCTCGACGAAACCCAGTACAAGGCTGTGCTCCAATTGCTACGGGCCCAGCAACCGTTGATTCACCGCTACTGGCATGACACCACCGTGCAGATGAGCGACTTCAAGAACGAAGGCGTGGTGGCGTCCGGCGCCTGGCCGTATCAGGTCAACGGTTTGATGAACGAGAAACAGCCAATCGCCTCGACCATTCCCAAAGAAGGCGCCACCGGCTGGGCCGACACCACCATGCTGCACGCCGAGGCCAAGCACCCCAACTGCGCCTACAAGTGGATGGATTGGTCGCTGCAACCGAAAGTCCAGGGTGACGTGGCCGCATGGTTCGGCTCCTTGCCTGCCGTGCCCGAGGCGTGCAAAGGCAGCGAACTGCTGGGCGCCGAAGGTTGCAAAACCAACGGCTTCGATCAGTTCGACAAGATCGCTTTCTGGAAAACGCCCCAGGCCGAGGGTGGCAAGTTCGTACCGTACAGCCGCTGGACCCAGGATTACATAGCGATCATGGGTGGGCGTTAA	MYAHKTVLLSAITTALLTSVSVQAAEPLKAIGAGEGQLDIVAWPGYIERGESDKAYDWVTGFEKETGCKVNVKTAATSDEMVSLMSKGGYDLVTASGDASLRLIAGKRVQPINTALIANWKNLDPRLKDAPWYVVNQQTYGTPYQWGPNVLMYNTQVFKQAPTSWSVLFEAQNLPDGKPNKGRVQAYDGPIYIADAALYLMTAKPELGIKDPYQLDETQYKAVLQLLRAQQPLIHRYWHDTTVQMSDFKNEGVVASGAWPYQVNGLMNEKQPIASTIPKEGATGWADTTMLHAEAKHPNCAYKWMDWSLQPKVQGDVAAWFGSLPAVPEACKGSELLGAEGCKTNGFDQFDKIAFWKTPQAEGGKFVPYSRWTQDYIAIMGGR	PGPT0007855_1147	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007855-ABC_SP_S|ydcS-K02055	NA	NA
D1-36_04080	1038	potA_2	COG3842	Spermidine/putrescine import ATP-binding protein PotA	ATGACACTTGCAGTCCAGTTCACCCATGTGTCCCGTCAGTTCGGCGATGTGAAGGCCGTCGATCGGGTCTCCATCGACATCCAGGACGGCGAGTTCTTCTCCATGCTGGGCCCTTCCGGCTCCGGCAAGACCACCTGCCTGCGGCTGATCGCAGGCTTCGAGCAACCCAGCGCCGGTTCGATCCGTATCCACGGTGAAGAAGCCGTGGGTCTTGCGCCCTACCAGCGGGACGTGAATACGGTTTTCCAGGACTACGCCCTGTTCCCCCATATGAATGTGCGCGACAACGTGGCCTATGGCTTGAAAGTCAAAGGCGTCGCCAAGGCCGAGCGCATCAAGCGCGCCGACGAAGCCTTGGAGATGGTAGCCCTGGGCGGCTACGGCGAGCGCAAGCCGGTGCAACTTTCCGGCGGCCAGCGCCAGCGTGTCGCCCTGGCCCGTGCGTTGGTCAATCGCCCACGGGTATTGTTGCTGGACGAGCCGCTGGGCGCCCTCGACTTGAAGCTGCGTGAACAGATGCAAGGCGAACTGAAGAAGCTGCAACGGCAGCTGGGCATCACCTTCATTTTCGTTACTCATGACCAGACCGAAGCGTTGTCGATGTCCGATCGCGTGGCGGTGTTCAACAAGGGCCGCATTGAACAGGTCGATACGCCGCGCAACCTGTACATGAAACCGGCCACTACCTTCGTTGCCGAATTCGTCGGCACCTCCAACGTGATCCGCGGCGAACTGGCGCGACAACTGAGCGGTTATCCACAGCCGTTCTCGATTCGTCCGGAACACGTGCGTTTTGCCGAAGGACCGCTGGCGAGTCATGAAATAGAGGTCAATGGCCTGCTCCATGACATCCAGTACCAAGGCAGCGCGACACGCTACGAATTGAAGCTGGAAAACGGCCAGACCCTGAGCCTCAGCCAGGCCAACACCCAGTGGAGCGACAACGGCACCCGGCATCAGGCCGGCCAGCACCTGGCCGTGCGCTGGGCCCGCGAGGCGATGGTTGCCCTGCACGACACCGTCGGCAGCGAGGTCTGA	MTLAVQFTHVSRQFGDVKAVDRVSIDIQDGEFFSMLGPSGSGKTTCLRLIAGFEQPSAGSIRIHGEEAVGLAPYQRDVNTVFQDYALFPHMNVRDNVAYGLKVKGVAKAERIKRADEALEMVALGGYGERKPVQLSGGQRQRVALARALVNRPRVLLLDEPLGALDLKLREQMQGELKKLQRQLGITFIFVTHDQTEALSMSDRVAVFNKGRIEQVDTPRNLYMKPATTFVAEFVGTSNVIRGELARQLSGYPQPFSIRPEHVRFAEGPLASHEIEVNGLLHDIQYQGSATRYELKLENGQTLSLSQANTQWSDNGTRHQAGQHLAVRWAREAMVALHDTVGSEV	PGPT0007860_3078	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007860-ABC_SP_A|ydcT-K02052	NA	NA
D1-36_04081	948	ydcU	COG1176	Inner membrane ABC transporter permease protein YdcU	ATGAGCACCCTGGCCATGGCTCAAACAGCGACGCACGGCTCGGCGTTGCGGCGCTTTTCGAATCTGCTGTACCGACGACCGAATCTGTATCTGTCGATGCTGCTGGTGCCTCCGCTGATCTGGTTCGGCGCGATCTACCTGGGTTCGTTGCTGACCCTGCTCTGGCAGGGCTTCTACACTTTCGACGACTTCACCATGGCGGTCACGCCGGACCTGACCCTGGCGAATTTTTCAGCACTGTTTCAGCCATCGAATTTCGACATCATCGCTCGCACCCTGACCATGGCGATTGCCGTGTCCATCGCGAGCGCCCTGGTTGCGTTCCCGATTGCCTATTACATGGCGCGCCACACCAGCGGCAAGACCAAGGCGTTCTTCTACATCGCGGTGATGCTGCCGATGTGGGCCAGCTATATCGTCAAGGCCTATGCCTGGACGCTGTTGCTGGCCAAAGGCGGCGTGGCGCAATGGTTCGTCCAGCACCTGGGCCTGGGGCCGCTGCTGCAATGGGCGCTGGAGATTCCCGGCGTGGGCGGCAGCACGTTGTCCACATCGCACTTGGGGCGCTTCCTGGTGTTCGTCTACATCTGGCTGCCGTTCATGATCCTGCCGATCCAGGCATCCCTGGAACGCCTGCCGCCGTCGCTGCTGCAGGCCTCGGCGGACCTGGGCGCCCGTCCACACCAGACATTCATGCAGGTGATCCTGCCGCTGTCGGTCCCAGGCATCGCGGCCGGCTCGATCTTCACCTTCTCGCTGACCCTGGGGGATTTCATCGTGCCGCAACTGGTGGGCCCGCCGGGCTACTTCGTCGGCAGCATGGTCTACGCCCAGCAAGGCGCCATCGGCAACATGCCCATGGCCGCGGCATTCACGCTGGTGCCCATCGTGCTGATCGCCATCTATCTTTCCATCGTCAAGCGACTGGGGGCTTTCGATGCACTCTGA	MSTLAMAQTATHGSALRRFSNLLYRRPNLYLSMLLVPPLIWFGAIYLGSLLTLLWQGFYTFDDFTMAVTPDLTLANFSALFQPSNFDIIARTLTMAIAVSIASALVAFPIAYYMARHTSGKTKAFFYIAVMLPMWASYIVKAYAWTLLLAKGGVAQWFVQHLGLGPLLQWALEIPGVGGSTLSTSHLGRFLVFVYIWLPFMILPIQASLERLPPSLLQASADLGARPHQTFMQVILPLSVPGIAAGSIFTFSLTLGDFIVPQLVGPPGYFVGSMVYAQQGAIGNMPMAAAFTLVPIVLIAIYLSIVKRLGAFDAL	PGPT0007850_1036	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007850-ABC_SP_P1|ydcU-K02054	NA	NA
D1-36_04082	813	ydcV_2		Inner membrane ABC transporter permease protein YdcV	ATGCACTCTGACTCTCGAGCGTCATGGGGCCTGCGCATCGCGGCATGGGGCGGGCTGGTGTTCCTGCACTTCCCGATCCTGATCATCTTCCTTTATGCCTTCAACACCGAAGACGCCGCGTTCAGCTTCCCGCCCAAGGGCCTGACGTTAAAATGGTTTAGCGTGGCCTTTTCGCGCCCGGACGTGCTGGAAGCGATCAAGTTGTCGTTGCAAGTGGCGGCTGTCGCCACGCTGATCGCCATGGTGCTCGGCACCCTGGCCTCGGCGGCGCTGTATCGCCGGGACTTCTTCGGCAAACAAGGCATTTCCCTGATGTTGATCCTGCCGATTGCCCTACCGGGGATCATCACCGGCATTGCGCTGTTGGCGACCTTCAAGAGCCTGGGCATCGAGCCGGGGATGTTCACCATCATCGTCGGCCACGCAACCTTCTGCGTGGTGATCGTCTACAACAACGTCATCGCCCGCCTGCGCCGCACGTCCCATAGTCTGATCGAAGCCTCGATGGACCTGGGCGCCGACGGCTGGCAGACCTTTCGCTACATCGTCCTGCCCAACCTGGGGTCGGCCCTGCTGGCCGGAGGGATGCTGGCGTTTGCCTTGTCGTTCGATGAAATCATCGTCACCACCTTCACCGCCGGCCACGAGCGCACCTTGCCGCTCTGGCTGCTCAACCAGCTCAGCCGCCCTCGCGACGTCCCAGTAACCAATGTGGTGGCGATGCTGGTGATGTTGGTCACGATGTTGCCGATCCTCGGCGCGTATTACCTGACCCGTGGTGGCGAAAGCGTGGCGGGGAGCGGTGGGAAATAG	MHSDSRASWGLRIAAWGGLVFLHFPILIIFLYAFNTEDAAFSFPPKGLTLKWFSVAFSRPDVLEAIKLSLQVAAVATLIAMVLGTLASAALYRRDFFGKQGISLMLILPIALPGIITGIALLATFKSLGIEPGMFTIIVGHATFCVVIVYNNVIARLRRTSHSLIEASMDLGADGWQTFRYIVLPNLGSALLAGGMLAFALSFDEIIVTTFTAGHERTLPLWLLNQLSRPRDVPVTNVVAMLVMLVTMLPILGAYYLTRGGESVAGSGGK	PGPT0007845_2015	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007845-ABC_SP_P|ydcV-K02053	NA	NA
D1-36_04083	1425	prr_2	COG1012	Gamma-aminobutyraldehyde dehydrogenase	ATGCAAACCAAACTGCTTATCAACGGCCACCTCGTCAACGGCGAGGGCCCTGGCCAGGCCGTTTTCAATCCGGCCCTGGGCCGGGTGCTGGTGGAAATCAACGAAGCCAGCGAGGCCCAGGTCGATGCCGCGGTCCGCGCTGCCGACAACGCCTTCGAATCCTGGTCGCAGGTGCCGCCCAAGGACCGTTCCCTGTTGCTGCTCAAGCTGGCGGACGCCATCGAGACCCATGGCGAGGAACTGGCGAAACTGGAATCGGATAACTGCGGCAAACCGTTCAACGCCGCGCTGAACGACGAAATCCCGGCAATCGCCGACGTGTTCCGCTTCTTTGCCGGCGCCAGTCGCTGCATGAACGGCTCGGCGGGCGGCGAATACCTGCCGGGCCACACCTCGATGATCCGTCGCGACCCGGTGGGCGTCATCGCGTCCATCGCACCGTGGAATTACCCGTTGATGATGGTTGCCTGGAAAATCGCCCCCGCCCTGGCCGCCGGCAACACGGTGGTGCTCAAGCCGTCGGAGCAGACGCCGCTGACAGCGTTGCGCATGGCGGAATTGGCATCAGAGATATTTCCGGCGGGCGTGCTCAACGTGATCTTCGGCCGCGGGCAAACCGTGGGCAACCCGCTGGTCACCCACCCGAAAGTGCGCATGGTATCCCTCACAGGCTCCATCGCCACTGGCTCGAACATCATTTCCAGTACCGCCGACAGCGTCAAACGCATGCACATGGAGTTGGGCGGCAAGGCCCCGGTGATCATTTTCGATGATGCCGACATCGACGCTGCGGTGGAAGGTATCCGCACCTTCGGCTTCTATAACGCTGGCCAGGATTGCACCGCCGCTTGCCGCATCTACGCCCAGCAAGGCATCTACGACAAGTTTGTCGAGAAACTCGGCGCCGCCGTCGCCAGCATCAAGTACGGTCTGCAGAACGAGCCCGACACCGAGATGGGGCCGCTGATCACTGCCCAGCATCGTGACCGAGTGGCCGCCTTCGTCGAGCGAGCCATCGCCCAGCCCCACATCCGCCTGGTCACCGGGGGCAAGGCGGTAGAAGGCAACGGTTTCTTTTTCGAACCGACAGTGCTGGCCGATGCCCAGCAGGATGACGAAATCGTCCGCCGCGAAGTCTTCGGCCCGGTGGTGTCCGTCACGCCGTTCCTTGATGAAGCGCAAGTGTTGGCCTGGGCCAACGATTCGGACTACGGACTGGCCTCATCGGTATGGACCACCGACATCGGCCGCGCCCATCGCCTCTCGGCGCGGCTGCAATACGGCTGCACCTGGGTGAATACCCACTTCATGCTGGTCAGCGAAATGCCCCATGGCGGTCAGAAACGTTCTGGCTACGGCAAGGACATGTCCATGTATGGGTTGGAGGATTACACGGTGGTGCGGCATGTGATGTTCAAGCACTGA	MQTKLLINGHLVNGEGPGQAVFNPALGRVLVEINEASEAQVDAAVRAADNAFESWSQVPPKDRSLLLLKLADAIETHGEELAKLESDNCGKPFNAALNDEIPAIADVFRFFAGASRCMNGSAGGEYLPGHTSMIRRDPVGVIASIAPWNYPLMMVAWKIAPALAAGNTVVLKPSEQTPLTALRMAELASEIFPAGVLNVIFGRGQTVGNPLVTHPKVRMVSLTGSIATGSNIISSTADSVKRMHMELGGKAPVIIFDDADIDAAVEGIRTFGFYNAGQDCTAACRIYAQQGIYDKFVEKLGAAVASIKYGLQNEPDTEMGPLITAQHRDRVAAFVERAIAQPHIRLVTGGKAVEGNGFFFEPTVLADAQQDDEIVRREVFGPVVSVTPFLDEAQVLAWANDSDYGLASSVWTTDIGRAHRLSARLQYGCTWVNTHFMLVSEMPHGGQKRSGYGKDMSMYGLEDYTVVRHVMFKH	PGPT0007650_438	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINE_USAGE	PLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007650-patD|prr|ydcW-K00137	NA	NA
D1-36_04084	264			hypothetical protein	ATGGCCTCGCCCGTTTTGTCCTTTCGTGTCGAGGAAGGTCTGGCCCAGCAATTGGACTTGCTGGCTGCCGCCACCGACCGCGACCGTCAATATCACCTCAAGCGTGCATTGGTTCGATATGTGGAAGCCGAATCGTGGCATCTGCAAGCGATCAGCGAAGGCATGGCGGATGCCGATGCTGGACATCTGACCGACCTGGACGCCGTGAAGGCTAAGTGGGCAAAGCGTGCCGAGCATCGTACTGACCGACAAAGCACAGAGTGA	MASPVLSFRVEEGLAQQLDLLAAATDRDRQYHLKRALVRYVEAESWHLQAISEGMADADAGHLTDLDAVKAKWAKRAEHRTDRQSTE				NA	NA	NA	NA	NA
D1-36_04085	186			hypothetical protein	ATGACGAAAATACAGGGCCTTACCGAAATGCTGGGAGTCTTCCCGGGCCTGATCAACGCGCGCAAGAAACGCCGGCTCAGCCGGGAAGAATTGAGATTGGTCGAACGGTACCGGGAGCTGTCGGAAAGCGACCGGATCGCCATGCGCTACCTGCTGGATGCGATGCGCAGTGTTTCGCGGTTTTGA	MTKIQGLTEMLGVFPGLINARKKRRLSREELRLVERYRELSESDRIAMRYLLDAMRSVSRF				NA	NA	NA	NA	NA
D1-36_04086	1626	mdoD	COG3131	Glucans biosynthesis protein D	ATGCACCGCAGGAATTTGCTCAAGGCCTCCATGGCCTTCGCCGCCTACACCGGGCTATCGGCGTCGGGACTCATGGCCGCACGCGCCTGGGCCGCTGACCAGACCGCCGACGGCGAAGCCCGTCCCTTCGATTTCAAAGGGCTGAAGGATCAGGCCCGGCGGCTGGCCGAGAGCCGCTACGTCGACACCAAGCAAGTCCTGCCACCGACCCTGGCCCAGATGTCGCCGCTGCAGTTCAATGCCATCCGGTACGACGCCAACCACTCCCTGTGGAATGAGCTGGACGGGCAACTGGACGCGCAGTTCTTCCATGTCGGCATGGGTTTCAAGCAACCGGTTCGCATGTACAGCGTCGACCCGAAGACGCGTATGGCCCGTGAGGTGCATTTCCGCCCGGAGCTGTTCAACTACGAAAAGACCACGGTCAATACCTCGCAATTGACCGGTGACCTGGGCTTCGCGGGTTTCCGGGTGTTCAAGGCACCGGAGCTGGACCGGCACGACATCGTTTCATTCCTGGGGGCCAGCTATTTCCGCGCCGTCGATGCCAGCGGCCAGTACGGGCTGTCGGCCCGGGGCCTGGCCATCGACACCTATGCGAAGAAGCGCGAGGAGTTTCCGGATTTCACCAAGTTCTGGTTCGAAACCCCGGACAAGAACAGCACCCGTTTCGTGGTCTACGCCCTGCTCGACTCGCCCAGCGCCACCGGCGCCTATCGTTTCGATATCGATTGCCAGCCGACCCGGGTCGTCATGGAAATCGATGCGCACATCCATGCCCGTACCGCCATTGAGCAACTGGGCATCGCACCGATGACCAGCATGTTCAGCTGCGGCACGGTCGAGCGGCGCATGTGCGACACCATTCACCCGCAAATCCACGACTCCGACCGGCTGGCCATGTGGCGCGGCAACGGCGAATGGGTCTGCCGCCCGCTGAACAACCCCGCCACCCTGCAATTCAACGCGTTCGCCGACAAGAATCCGAAAGGCTTCGGGCTGGTGCAGACCGACCATGACTTCGACAGCTACCAGGACACCGTGGATTGGTACAGCAAACGTCCGAGCCTGTGGGTCGAGCCTACGACCGCATGGGGAGAAGGCTCAATCGATCTGTTGGAAATTCCTACAACCGGCGAAACCCTGGATAACATCGTCGCGTTCTGGACCCCGAAAAAACCCGTCGCAGCCGGTGATTCGCTGAATTACGGCTACAAGCTCTACTGGAGTGCCTTGCCACCCGTGAGCACCGACCTGGCGCGTGTCGATGCCACCCGCTCCGGCATGGGCGGCTTCATCGAAGGCTGGGCACCCGGCGAGCATTACCCGACCGTCTGGGCGCGGCGCTTTGCAGTGGACTTCACGGGCGGTGGCCTCGACCAGTTGCCACCGGGCACCGGTATCGAACCGGTCGTGACGTGCTCCCACGGCGAGGTCAAGGACTTCAACGTGTTGGTACTGGACGCTATCAAGGGCTACCGCATTACTTTCGACTGGTACCCGACCGACGATCGCGTGGACCCGGTAGAGATGCGGCTCTTCCTGCGTTCCAAGGACCGCACGTTGAGCGAGACCTGGCTGTACCAGTATTTCCCGCCGGCGCCGGATCGGCGTAAGTATCCCTGA	MHRRNLLKASMAFAAYTGLSASGLMAARAWAADQTADGEARPFDFKGLKDQARRLAESRYVDTKQVLPPTLAQMSPLQFNAIRYDANHSLWNELDGQLDAQFFHVGMGFKQPVRMYSVDPKTRMAREVHFRPELFNYEKTTVNTSQLTGDLGFAGFRVFKAPELDRHDIVSFLGASYFRAVDASGQYGLSARGLAIDTYAKKREEFPDFTKFWFETPDKNSTRFVVYALLDSPSATGAYRFDIDCQPTRVVMEIDAHIHARTAIEQLGIAPMTSMFSCGTVERRMCDTIHPQIHDSDRLAMWRGNGEWVCRPLNNPATLQFNAFADKNPKGFGLVQTDHDFDSYQDTVDWYSKRPSLWVEPTTAWGEGSIDLLEIPTTGETLDNIVAFWTPKKPVAAGDSLNYGYKLYWSALPPVSTDLARVDATRSGMGGFIEGWAPGEHYPTVWARRFAVDFTGGGLDQLPPGTGIEPVVTCSHGEVKDFNVLVLDAIKGYRITFDWYPTDDRVDPVEMRLFLRSKDRTLSETWLYQYFPPAPDRRKYP	PGPT0013325_884	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0013325-mdoG-K03670	NA	NA
D1-36_04087	1107	namA	COG1902	NADPH dehydrogenase	ATGAGTCTGCTGCTGGAACCCTATACCCTTCGCCAATTGACCCTTCCCAATCGCATCGCGGTTTCGCCGATGTGCCAATACTCGAGCGTCGATGGCCTGGCCAACGACTGGCACCTGGTACACCTTGGCAGTCGCGCCGTGGGCGGCGCCGGGCTGGTGTTCACCGAAGCCACCGCAGTCACCGCGGACGGCCGTATCACCGCCCAGGACCTTGGGTTGTGGAACGATGAGCAAATCCCGGCGCTGCAACGCATCACCCGTTTCATCACCGCCCAAGGGGCCGTCCCCGGCATCCAGCTGGCGCACGCAGGTCGCAAGGCAAGTACCTGGCGGCCCTGGTTGGGCAAGCATGGCAGCGTCAAGCCGGAGGACGGCGGCTGGGTGCCGGTCGGTCCTTCGCCAATCGCCTTCGACCCACAACACACCCAGCCGATGCAATTGGACGAGGGGCAGATCGCTGGCGTGATCCAGGCATTCGTGGACGCGGCCAAGCGTGCCCTGACCGCAGGCTTCAAGGTGGTCGAGGTCCATGCGGCCCACGGTTACCTGCTGCATCAGTTCCTGTCGCCCTTGAGCAACCAGCGCCGCGATCAATACGGCGGATCGTTCGAAAACCGTATCCGGCTGGTGCTGCAAGTGACTGAAGCGGTGAGGGCGGTGTGGCCAGAAGAACTACCGGTGTTCGTTCGCGTCTCCGCCACCGACTGGGTCGAAGACGGTTGGAACCCGGACGAAACCGTGGAACTGGCGCGACGATTCAGGATGTTGGGGGTGGACTTGATTGACGTGTCGTCGGGCGGAACCGCCGCGAATGCGGAAATTCCCACCGGCCCGGGTTATCAGACCCGCTTCGCCGAGCGGGTACGCAAGGAGTCGGAGATTGCCACCGGCACCGTGGGCATGATTACCGAGCCGGCCCAGGCCGAGCACATCCTGCGCACCTGCCAGGCCGATATCATCTTCCTCGCCCGGGAATTGTTGCGCGATCCGTATTGGGCCTTGCATGCCGATGATGACTTGGGTGGGCGCAAGGCCACTTGGCCGGCGCAGTACCAGCGGGCGACGCATCGGGACCAGCCGATCCATGAGTCGGATCTTCGGGACTGA	MSLLLEPYTLRQLTLPNRIAVSPMCQYSSVDGLANDWHLVHLGSRAVGGAGLVFTEATAVTADGRITAQDLGLWNDEQIPALQRITRFITAQGAVPGIQLAHAGRKASTWRPWLGKHGSVKPEDGGWVPVGPSPIAFDPQHTQPMQLDEGQIAGVIQAFVDAAKRALTAGFKVVEVHAAHGYLLHQFLSPLSNQRRDQYGGSFENRIRLVLQVTEAVRAVWPEELPVFVRVSATDWVEDGWNPDETVELARRFRMLGVDLIDVSSGGTAANAEIPTGPGYQTRFAERVRKESEIATGTVGMITEPAQAEHILRTCQADIIFLARELLRDPYWALHADDDLGGRKATWPAQYQRATHRDQPIHESDLRD	PGPT0005575_544	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATION	PLANT_DERIVED_NITRO-|AMINOBENZOATE_DEGRADATION,PGPT0005575-namA-K09461	NA	NA
D1-36_04088	1710	recJ	COG0608	Single-stranded-DNA-specific exonuclease RecJ	ATGCGCATAGAACCCCGCCAACTCCCCGACACCCTGCCGTTCCTTGGTGACCTGCCGCCCTTGTTGACTCGCCTCTATGCCGCTCGAGGCGTGCAATCGGCGGCTGAGCTGGACAAAAGCCTGGCGCGCCTGATTCCCTACCAGCAGCTCAAGGGGATCGATGCGGCGGTGGATCTGTTGGTGGCGGCGCTCGAGCAACGCCAGCGGATCCTGATTGTCGGCGACTTCGACGCCGACGGCGCGACGGCCAGTGCCGTGGGTGTGTTGGGCCTGCGGCTGCTGGGCGCGGCTCATGTCGATTACCTGGTGCCCAATCGCTTCGAATACGGCTATGGCTTGACGCCGGAGATCGTCGAAGTCGCCCTGACACGCGAGCCACAGTTACTGATCACCGTGGACAACGGCATTTCCAGCGTGGAAGGCGTGGCGGCGGCCAAGGCGGCGGGCCTGAAGGTGCTGGTTACCGATCACCACTTGCCTGGGTTGGAGTTGCCGCAGGCCGATGCAATCGTCAACCCGAACCAGCCGGGCTGCGAATTCCCAAGCAAGGCTTTGGCGGGCGTCGGGGTGATTTTTTATGTACTGATGGCGCTGCGGGCGCGCCTGCGCGGCCTGGGCTGGTATGCCAGCACGCCCCAGCCGAACATTGGTGAATTGCTGGACCTGGTGGCGCTGGGCAGCGTGGCCGACGTGGTGCCCCTGGACGCCAACAACCGGATCCTGGTTCACCAGGGTCTGGAGCGTATTCGCGCTGGCCGCGCGCGTCCCGGGATCAAGGCCATCCTGGAAGTGGCCAAGCGCGATCCGTCGCGCATCACCTCCACGGACCTGGGTTTCATCGTCGGTCCACGACTGAATGCGGCGGGACGCCTGGACGACATGAGCCTGGGCATCGAATGCCTGCTGACCGCCGACCCATCGCTGGCCCGTGAGATGGCGGCCCAGCTGGACGGCATGAACCAGGATCGCAAATCCATTGAGCAGGGCATGCAGCGCGAAGCCCTGGCTCAGCTCAAGGACCTGCCGGTGGAGTCGATGCCGTTCGGCTTGTGTCTGTTCGACCCGCAATGGCACCAAGGCGTGATCGGTATCCTCGCCTCGCGCATGAAGGAGCGTTATTTCCGTCCGACCATCGCTTTCGCCGATGCCGGCGACGGTCTTCTGAAGGGCTCCGGTCGTTCGGTGCCGGGCTTCCATATCCGCGATGCCCTGAGTGTCGTTGCGGCACAGCATCCAACCCTCATCAGCAAATACGGCGGCCACGCCATGGCGGCGGGGCTGACATTGCCCGAGGCGAATTTTCCGTTGTTCGCCGAGGCATTCGACGCTGAAGTACGTAGGCAACTGCGTGAGGAGGACCTGACTGGACGAATGCTGTCGGACGGCACCCTGGCGGTCGAGGAATTCCATCTGGAACTGGCCCGGGCACTGCGCCATGCGGGACCGTGGGGCCAGCATTTCCCGGAGCCAGTGTTCCACGGTGTTTTCCAGTTGGTCGAGCAGCGAGTGGTGGGCGAACGTCACTTGAAGGTTGTTCTCAAAAGTGAGTGCGGCTCGCTGAAGCTCGATGGCATCGCCTTTGGCATCGACCGTGAGATCTGGCCGAACCCGACTGTGCGCTGGGTGGAACTGGCCTACAAGCTTGACCTCAACGAGTTTCGTGGCCAGGAAACGGTGCAACTGATGATCGCCCATATCGAGCCGCGATAG	MRIEPRQLPDTLPFLGDLPPLLTRLYAARGVQSAAELDKSLARLIPYQQLKGIDAAVDLLVAALEQRQRILIVGDFDADGATASAVGVLGLRLLGAAHVDYLVPNRFEYGYGLTPEIVEVALTREPQLLITVDNGISSVEGVAAAKAAGLKVLVTDHHLPGLELPQADAIVNPNQPGCEFPSKALAGVGVIFYVLMALRARLRGLGWYASTPQPNIGELLDLVALGSVADVVPLDANNRILVHQGLERIRAGRARPGIKAILEVAKRDPSRITSTDLGFIVGPRLNAAGRLDDMSLGIECLLTADPSLAREMAAQLDGMNQDRKSIEQGMQREALAQLKDLPVESMPFGLCLFDPQWHQGVIGILASRMKERYFRPTIAFADAGDGLLKGSGRSVPGFHIRDALSVVAAQHPTLISKYGGHAMAAGLTLPEANFPLFAEAFDAEVRRQLREEDLTGRMLSDGTLAVEEFHLELARALRHAGPWGQHFPEPVFHGVFQLVEQRVVGERHLKVVLKSECGSLKLDGIAFGIDREIWPNPTVRWVELAYKLDLNEFRGQETVQLMIAHIEPR				NA	NA	NA	NA	NA
D1-36_04089	543	yaeQ	COG4681	putative protein YaeQ	ATGGCCCAGCCGTCCACGACCTACAAATTCGAACTGAACCTCACCGACCTCGACCGCAGTGTGTATGAGAGCGTGAAGCAGACCATCGCCCGCCATCCTTCGGAAACCGAGGAACGCATGACCGTGCGCTTGTTGGCGTACGCGTTCTGGTACAACGAGCTGCTGGCGTTTGGTCGTGGCCTGTCAGACGTCGATGAACCTGCCCTGTGGGAAAAAAGCCTGGATGACCGTGTCCTGCATTGGATCGAAGTCGGCCAGCCGGATGCCGAACGCCTGACGTGGTGCTCGCGTCGTACCGAGCGCACCAGCCTGCTGGCCTATGGCAGCCTGCGTGTCTGGGAGGGCAAGGTGATTCCAGCCGTGAAGACCCTGAAAAACGTGAACATCGCCGCCGTGCCCCAGGAAGTCCTCGAAACCCTGGCCAAGGACATGCCCCGCGTCATCAAGTGGGACGTGATGATCAGCGAAGGGACCATTTTCGTGACCGACGACCGTGGCCAGCATGAAGTCCAGTTGCAATGGTTGCTGGGTGAGCGTGGTTGA	MAQPSTTYKFELNLTDLDRSVYESVKQTIARHPSETEERMTVRLLAYAFWYNELLAFGRGLSDVDEPALWEKSLDDRVLHWIEVGQPDAERLTWCSRRTERTSLLAYGSLRVWEGKVIPAVKTLKNVNIAAVPQEVLETLAKDMPRVIKWDVMISEGTIFVTDDRGQHEVQLQWLLGERG				NA	NA	NA	NA	NA
D1-36_04090	1200	smtB_2	COG1804	Succinyl-CoA--L-malate CoA-transferase beta subunit	ATGTCGCTTACTGCCAAACCCCTTGCCGGCGTCAAAGTCATTGAACTCGGCACCTTGATCGCCGGCCCTTTCGCCTCGCGGATCTGCGGTGAATTCGGTGCCGAGGTGATCAAGGTCGAATCCCCCGACGGCGGCGATCCGCTGCGCAAATGGCGCAAGCTGTATGAAGGCACGTCCTTGTGGTGGTTCGTCCAGGCACGCAACAAAAAGTCCCTGACTCTGAACCTCAAGCACCCCGAAGGCCTGTCGATCCTGAAACAGCTGATCGGCGAAGCGGACATCCTGATCGAGAATTTTCGCCCGGGCGTGCTGGAAAAGCTCGGTCTGGGCTGGGACGTATTGCACGCGCTGAACCCTAAACTGGTCATGGTGCGGCTCTCCGGTTTCGGCCAGACCGGGCCGATGAAGGATCAACCGGGGTTTGGCGCCGTCGGCGAATCCATGGGCGGCCTGCGCTACATCACCGGTTTCGAGGATCGTCCGCCAGTGCGTACCGGAATTTCAATCGGCGACTCCATTGCCGCACTCTGGGGCGTGATCGGCGCACTGATGGCCTTGCGTCACCGCGAGGTAAATGGCGGGACCGGACAAGTGGTGGACGTGGCGCTGTACGAGGCGATCTTCGCCATGATGGAAAGCATGGTGCCGGAGTTCGATGTGTTCGGCTTCATCCGCGAGCGCACCGGCAATATCATGCCCGGCATCACCCCGTCATCCATCCACACCAGTGCCGACGGCAAGCACGTGCAGATCGGCGCTAACGGTGACGCAATCTTCAAGCGCTTCATGCAGATCATCGGCCGCGACGACCTGGCCAACGACCCGCAACTGGCCGGCAACGATGGACGCGACAGTCGCCGCGACGAGCTGTATGGCGTGATCGATCGCTGGGTCAACTCACTGCCGCTGGAGGCTGTCATCGACCAACTGAACCAGGCCGGAGTACCGGCCAGCCGGATCTTCAGCGCCGAAGACATGTTCAGCGACCCGCAGTTTCTCGCCCGGGAAATGTTCTTGCAGGCCAAGCTGCCGGACGGCAAGGCGTTCAAGATGCCGGGCATCGTACCGAAACTGTCGGACACGCCGGGCACATCCGAATGGGTCGGGCCGGCGCTGGGTGAGCACACGGCACAGGTACTCGGCGAGCTGGGCTACGATGCGCAGCGGATCGCCAAACTGCGGGCCGATGGTGCTATTTGA	MSLTAKPLAGVKVIELGTLIAGPFASRICGEFGAEVIKVESPDGGDPLRKWRKLYEGTSLWWFVQARNKKSLTLNLKHPEGLSILKQLIGEADILIENFRPGVLEKLGLGWDVLHALNPKLVMVRLSGFGQTGPMKDQPGFGAVGESMGGLRYITGFEDRPPVRTGISIGDSIAALWGVIGALMALRHREVNGGTGQVVDVALYEAIFAMMESMVPEFDVFGFIRERTGNIMPGITPSSIHTSADGKHVQIGANGDAIFKRFMQIIGRDDLANDPQLAGNDGRDSRRDELYGVIDRWVNSLPLEAVIDQLNQAGVPASRIFSAEDMFSDPQFLAREMFLQAKLPDGKAFKMPGIVPKLSDTPGTSEWVGPALGEHTAQVLGELGYDAQRIAKLRADGAI	PGPT0002130_25	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0002130-frc|yfdW-K07749	NA	NA
D1-36_04091	288			hypothetical protein	ATGGAAAGTATCAGCCTGTTGCTGAATGAAGCCTTGAGCCCGTATCAGGTCACGCTCACTCCCTCCGGTGCCAAGGGTGAATGCCTGGTAACGCTGAAAAACCCCACGGGGGCCATCATGGTCGAGCGGGTGTTCAACCAGGCCCAGCTGGCCGACAAGCGCCAGCTCACCGACGTGGTCGATGGCCTGCACCGCGATGTACTGATCGCCGAAGGCCGCCTGGAGCCCTGCGTGATCGCGGCTTTGCGTAATCTGGCAGGGGACAAGGCCATGGCTGTCCCTAATTGA	MESISLLLNEALSPYQVTLTPSGAKGECLVTLKNPTGAIMVERVFNQAQLADKRQLTDVVDGLHRDVLIAEGRLEPCVIAALRNLAGDKAMAVPN				NA	NA	NA	NA	NA
D1-36_04092	1377	bvgS_2		Virulence sensor protein BvgS	ATGTTGTTCTTTATACGTTGCAAACCAGTGATGAGCTGGATGATGGGCCTGGTGTTTTTGTTTGGGGCGCCATGGGGAGGCGCGGCCCAGTTGGCGGCCTCTGGCAAGCCACCGTTCGAATCCAGCGGACGGATCGCGCTCGATGCCCAGGAGCTGAAGTGGATCAGCGAAAACCCTCGCGTCGTCGTCGCCTCGATGCAGTTCCCGTTGTACCTGTTCAAAAATGAACGTGGGCAATGGAACGGGCTGAACGACGATATTCTCCGGCGTATCGAGCACATGACCGGACTTGAATTCGTTCATCGGGAGTCGTTCTCTCCCGATCAATTAATGGCCCTGTTGGAAAAAGGCGAGGCCGACATGACGACTACCCTGGCGATGAATGACGAGCGCAGGGAGTTCTTGAGTTTCAGCCATGCCTTCGGAGGTTCCGGTTGGGTCTTCGTCGGACGTGACGCAGAGCCCGCACTTCGTTCGCTGGAGCAACTCGAAGGCAAGGTGCTGGTGTTGCCGGCACGGCATGCGTTGGAGTCGGAGATCAGGCGCAATCATCCAGCCATCGAGTTGCGCACGGTCAAGACGTACGGTGAAGCTCGGGCGCTGGTGGAAAGCGGTGAAGCCTACGCCACCATTGAAAATGAAACCGGCGCGCACCTGTACCCTGCGGGGCAGCTGCAAGTAGGAAGCAATCTCGAAGGCAAGTGGGAGCCCGACTATCTGGCTGTGCGCCAAGACCTTCGGCCATTGTTAAGCATCCTGAACAAGGCGCTGGAAGCGTTCCCCGCCGAAGAGATGCGAGCGCTGCGCTCGAAATGGCTGACAGGCATCGCTCCCCATCCGTCACCGTCTTCCTGGTTGTACATCAAACAGTGGGGCTACTGGTGTGTGGTCGTGTTCGGGGTGTTTGGCCTGTTGTCCCTGCTGTCGCTGTTATGGAACCGACGCCTGCAGGTCCAGATTGATCAACGGCTCAAGGTCGAGGCCGTACTCAATGACCAACTGAAGTTCCAGCGAGCCCTGATGGACGCGATTCCCGATCCGATCTTCATTCGCGACCTGGAAGGTCGCCTGATCATGTGCAACAAAAGTTATGAGGATCAGTTCGAGACTCGCTTCGAGAAGCTGCTGGGCACGCGCCTGACCGATTCCGCGACGTTTCCAGCAGCAACCGCCGAATTGTTGCACGGCGAGTTGATGGAGCAGCTGCAAACCCGCCAGCCGCGTTTTGTGGACCGCCAACTGATGTTCAGCGGTGGCTTGCGGGACATCTATCACTGGTCAGTGCCGTTCTATGGGGCCGATGGTCAGTTGCGCGGTCTGCTGGGAGGGTGGATCGATGTTGGGCATCGTTGGCGCCGCAACCGCTTCCTGGCTTGA	MLFFIRCKPVMSWMMGLVFLFGAPWGGAAQLAASGKPPFESSGRIALDAQELKWISENPRVVVASMQFPLYLFKNERGQWNGLNDDILRRIEHMTGLEFVHRESFSPDQLMALLEKGEADMTTTLAMNDERREFLSFSHAFGGSGWVFVGRDAEPALRSLEQLEGKVLVLPARHALESEIRRNHPAIELRTVKTYGEARALVESGEAYATIENETGAHLYPAGQLQVGSNLEGKWEPDYLAVRQDLRPLLSILNKALEAFPAEEMRALRSKWLTGIAPHPSPSSWLYIKQWGYWCVVVFGVFGLLSLLSLLWNRRLQVQIDQRLKVEAVLNDQLKFQRALMDAIPDPIFIRDLEGRLIMCNKSYEDQFETRFEKLLGTRLTDSATFPAATAELLHGELMEQLQTRQPRFVDRQLMFSGGLRDIYHWSVPFYGADGQLRGLLGGWIDVGHRWRRNRFLA	PGPT0014485_880	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE_EVG-EMR_SYSTEM,PGPT0014485-evgS|bvgS-K07679	NA	NA
D1-36_04093	1410	thrC	COG0498	Threonine synthase	ATGCGCTATATCAGCACCCGCGGCCAGGCACCGGCCCTGAATTTCGAAGATGTCCTGCTGGCCGGCCTGGCCACGGATGGCGGTCTTTATGTGCCGGAGAACCTGCCACGTTTCACACAGGAGGAGATTGCCTCCTGGGCCGGCCTGCCGTACCACGAGCTGGCTTTCCGGGTCATGCGCCCGTTTGTTGCCGGCAGCATTCCGGACGCCGATTTCAAAAAGATTCTGGAAGAGACCTATGGGGTCTTTTCCCACAATGCCATCGCACCGTTGCGCCAGCTAAACGGTAACGAATGGGTCATGGAGCTGTTCCACGGTCCGACCCTGGCGTTCAAGGATTTCGCCCTGCAGCTGCTCGGCCGCCTGTTGGACTACGTGTTGCAAAAGCGTGGCGAGCGCGTGGTGATCGTCGGCGCAACGTCCGGCGACACCGGCTCGGCCGCGATCGAAGGCTGCAAGCATTGCGAGCACGTCGATATTTTCATCCTGCACCCGCACAACCGCGTCTCGGAAGTGCAGCGTCGGCAGATGACGACGATCTTCGGCGACAACATCCACAACATCGCCATCGAAGGCAACTTCGATGACTGCCAGGAAATGGTCAAGGCCAGTTTCGCCGACCAGAGCTTCCTCAAGGGCACCCGGCTGGTGGCGGTGAACTCGATCAACTGGGCGCGGATCATGGCCCAGATCGTCTACTACTTCCACGCGGCGCTGCAGTTGGGCGGCCCGGCCCGTTCGGTGGCGTTCTCGGTGCCTACCGGCAACTTCGGCGATATTTTCGCCGGTTACCTGGCGCGCAACATGGGCCTGCCGATCAACCAATTGATCGTCGCCACCAACCGCAACGACATCCTGCATCGCTTCATGAGCGGTAACCAGTACGTCAAGGAAACCCTGCACGCCACGCTGTCACCTTCGATGGACATCATGGTGTCGTCGAACTTCGAGCGCCTGTTGTTCGACTTGCACGGTCGCAATGGCGCCGCGATTGCCGGCCTGATGGACAGCTTCCGCCAGGGTGGCGGTTTCAGCGTCGAAGCCGAGCGCTGGACCGAAGCCCGCAAGCTGTTCGACTCCCTTGCAGTGGATGACGCACAGACCTGCGAAACCATCGCCGAGGTGTTCGAGCAGAGCGGTGAGCTGCTCGACCCACACACCGCCATTGGCGTGAGAGCTGCACGCGAGTGCCGCCGCAGCCTGGATACCCCGATGGTCGTCCTGGGCACCGCACACCCGGTCAAGTTTCCGGAAGCCGTGGAGAAAGCTGGCGTAGGAAAAGCGCTTGAACTGCCTGCACATCTTTCGGATTTGTTTGAGCGAAACGAGCGTTGCACGGTGTTGCCCAATGACTTGAAAGCCGTGCAGGCCTTTGTCAGCCAGCATGGCAACCGCGGCAAGCCTCTCTGA	MRYISTRGQAPALNFEDVLLAGLATDGGLYVPENLPRFTQEEIASWAGLPYHELAFRVMRPFVAGSIPDADFKKILEETYGVFSHNAIAPLRQLNGNEWVMELFHGPTLAFKDFALQLLGRLLDYVLQKRGERVVIVGATSGDTGSAAIEGCKHCEHVDIFILHPHNRVSEVQRRQMTTIFGDNIHNIAIEGNFDDCQEMVKASFADQSFLKGTRLVAVNSINWARIMAQIVYYFHAALQLGGPARSVAFSVPTGNFGDIFAGYLARNMGLPINQLIVATNRNDILHRFMSGNQYVKETLHATLSPSMDIMVSSNFERLLFDLHGRNGAAIAGLMDSFRQGGGFSVEAERWTEARKLFDSLAVDDAQTCETIAEVFEQSGELLDPHTAIGVRAARECRRSLDTPMVVLGTAHPVKFPEAVEKAGVGKALELPAHLSDLFERNERCTVLPNDLKAVQAFVSQHGNRGKPL	PGPT0009175_1848	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_SERINE_DEGRADATION,PGPT0009175-thrC-K01733	NA	NA
D1-36_04094	1305	hom	COG0460	Homoserine dehydrogenase	GTGAATCCGGTCAAAGTAGGCATCTGTGGGTTAGGTACCGTCGGTGGCGGCACCTTCAACGTACTTCAGCGCAACGCCGAGGAAATTGCTCGTCGTGCCGGGCGTGGAATCGAAGTGGCACAAATTGCCATGCGCACGCCAAAGCCTCAGTTCCAGACGACCGGTATTGCGATTACCAACGATGTCTTCGAAGTGGCCACGAACCCTGAGATCGACATCGTAATAGAGCTGATGGGCGGCTATACCGTTGCCCGAGAGCTGGTACTCAAGGCCATCGAGAATGGCAAGCATGTGGTCACCGCGAACAAGGCGCTTATCGCCGTTCACGGTAATGAAATCTTCGCCAAGGCACGAGAGAAAGGCGTGATCGTGGCGTTCGAAGCCGCCGTGGCGGGTGGCATCCCAGTGATCAAGGCGATTCGCGAAGGCCTGTCGGCCAACCGTATCAACTGGCTTGCGGGAATCATCAACGGCACCGGCAACTTCATCCTCACCGAGATGCGCGAGAAAGGTCGCACCTTCGAGGACGTCCTCACCGAGGCCCAGGCCCTGGGTTATGCCGAGGCGGATCCAACCTTCGACGTGGAGGGCATCGACGCGGCGCACAAGCTGACGATCCTGGCTTCCATCGCCTTTGGTATACCGCTGCAATTCGACAAGGCCTACACCGAAGGCATCACCAAGCTGACCACCGCTGACGTGAACTATGCCGAAGCCTTGGGCTACCGCATTAAACACCTGGGCGTGGCGCGCAGCACCGCCAGCGGCATCGAATTGCGCGTACACCCGACGCTGATCCCGGCCGACCGCCTGATCGCCAACGTCAACGGTGTGATGAACGCAGTGATGGTCAATGGTGATGCCTCCGGGTCGACGCTGTTCTACGGGGCTGGCGCGGGCATGGAGCCGACTGCATCGTCGGTGATCGCCGACCTGGTGGATGTGGTTCGCGCGATGACCTCGGATCCAGAGAACCGTGTGCCGCACCTGGCCTTCCAGCCGGATTCGCTGTCGGCCCATCCGATTCTTCCGATCGATGCTTGCGAAAGTGCCTACTACTTGCGTATCCAGGCCAAGGACCATCCGGGCGTATTGGCCCAGGTGGCGAGCATTCTTTCGGAGCGCGGCATCAACATCGAGTCGATCATGCAGAAGGAAGTCGAGGAACATGATGGCCTGGTGCCGATGATTCTGCTGACCCATCGCGTGGTCGAGCAGCGCATCAACGATGCGATTGCGGCATTGGAAGCGCTCCAGGGGGTCGTTGGCCCAGTGGTCCGTATCCGCGTCGAACATTTGAACTAA	MNPVKVGICGLGTVGGGTFNVLQRNAEEIARRAGRGIEVAQIAMRTPKPQFQTTGIAITNDVFEVATNPEIDIVIELMGGYTVARELVLKAIENGKHVVTANKALIAVHGNEIFAKAREKGVIVAFEAAVAGGIPVIKAIREGLSANRINWLAGIINGTGNFILTEMREKGRTFEDVLTEAQALGYAEADPTFDVEGIDAAHKLTILASIAFGIPLQFDKAYTEGITKLTTADVNYAEALGYRIKHLGVARSTASGIELRVHPTLIPADRLIANVNGVMNAVMVNGDASGSTLFYGAGAGMEPTASSVIADLVDVVRAMTSDPENRVPHLAFQPDSLSAHPILPIDACESAYYLRIQAKDHPGVLAQVASILSERGINIESIMQKEVEEHDGLVPMILLTHRVVEQRINDAIAALEALQGVVGPVVRIRVEHLN	PGPT0020155_1601	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_SERINE_DEGRADATION,PGPT0020155-hom-K00003	NA	NA
D1-36_04095	732	dsbC	COG1651	Thiol:disulfide interchange protein DsbC	ATGCGTTTGATCCAGATGTTCACCGCCGCCGCCATTGCGTTGGCCAGCACCTTTGCCATCGCCGACGACGCGGCTGACCAGGCTATCCGCAAGAGCCTGGCCAACCTCGAGCTCGAAGTGCCGATCGAAGCCATCTCTGCCAGTCCCATGTCCGGGCTCTATGAAGTCAAGCTCAAGGGCAGCCGCGTGCTGTACGCCAGCGCCGACGGCCAGTACATCGTCCAGGGCAACCTGTTCACGCTCAAGGACGGCAAGCCGGTCAATCTCACCGAGATCACCGAACGCCAGGGCATTTCGAAGTTGATCAACGGCATCCCGGTCGCCGAAACCGTGGTCTATCCAGCAGTCGGCGAAACCAAGTCGCACATCACCGTGTTCACCGACACCACCTGTCCTTATTGCCACAAGCTGCACGCTGAAGTGCCCGAGCTCAACAAGCGCGGCATCGAAGTGCGTTATGTAGCGTTCCCGCGCCAGGGCCTGGGCTCGCCGGGTGACGAGCAGTTGCAAGCGGTCTGGTGTTCCAAGGACAAAAAAGCGGCCATGGACAAGATGGTCGATGGCAAGGAGATCAAGTCCGCCAAGTGCGAGAATCCGGTTTCCAAGCAGTTCGCCCTCGGCCAGTCCATCGGCGTCAACGGTACGCCGGCCATCGTTTTGGCAGACGGCCAGGTGATTCCGGGCTATCAGCCGGCGCCGCAAGTCGCCAAACTGGCTTTGGACGCAAAATGA	MRLIQMFTAAAIALASTFAIADDAADQAIRKSLANLELEVPIEAISASPMSGLYEVKLKGSRVLYASADGQYIVQGNLFTLKDGKPVNLTEITERQGISKLINGIPVAETVVYPAVGETKSHITVFTDTTCPYCHKLHAEVPELNKRGIEVRYVAFPRQGLGSPGDEQLQAVWCSKDKKAAMDKMVDGKEIKSAKCENPVSKQFALGQSIGVNGTPAIVLADGQVIPGYQPAPQVAKLALDAK	PGPT0030050_960	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_IV_SECRETION_SYSTEMS	CE-T4SS-CONJUGAL_TRANSFER_PILUS_ASSEMBLY_PROTEIN,PGPT0030050-dsbC-K03981	NA	NA
D1-36_04096	897	xerD	COG4974	Tyrosine recombinase XerD	ATGCCAGCCATCGACCATCCACTGATAGACCAGTTCCTCGACGCCCTGTGGCTGGAGAAGGGGCTCTCCGATAACACCCGCGGCGCCTATCGCAGCGACCTGGCCTTGTTCAATGGCTGGTTGCAGGAACAGAACCTGGAATTGATCAACGCCGGAAGGGAATTGATCCTCGACCATCTGGCGTGGCGTTTGGAGCAGAACTATAAACCCCGCTCTACCGCCAGATTTCTTTCCGGGTTGCGTGGCTTCTATCGCTATTTGCTGAGGGAAAAAGTGATTGCGGTGGACCCGACCTTGCGCGTGGAAATGCCGCAACTGGGCCGTCCGCTGCCAAAATCCCTGTCGGAAGCGGACGTGGAAGCATTGCTGGCGGCCCCCGACCTCAGTGACCCCATCGGCCAGCGCGACCGAGCGATGCTGGAAGTGCTGTATGCCTGTGGTTTGCGGGTCACCGAACTGATCAGCCTGACACTTGAGCAAGTGAACCTGCGCCAGGGCGTGCTGCGGGTGATGGGCAAGGGCAGCAAGGAACGCCTGGTGCCCATGGGCGAGGAAGCGATCGTCTGGGTCGAGCGCTACATGCGCGATGCGCGTCATGACCTGCTGGGTGGGCGTCCCAGCGATGTGCTGTTTCCGAGCCTGCGCGGCGAGCAGATGACTCGCCAGACTTTCTGGCACCGCATCAAGCACCAGGCCAAGGTGGCGGGAATCAATAAATCGCTGTCCCCCCACACCTTGCGCCATGCCTTCGCCACGCACCTGCTCAATCATGGCGCTGATCTGCGGGTAGTACAGATGTTGCTGGGGCATAGCGACCTGTCCACCACCCAGATCTACACCCACGTGGCTCGGGCGCGGTTGCAGGACCTGCACGCCAAGCATCATCCCCGCGGCTGA	MPAIDHPLIDQFLDALWLEKGLSDNTRGAYRSDLALFNGWLQEQNLELINAGRELILDHLAWRLEQNYKPRSTARFLSGLRGFYRYLLREKVIAVDPTLRVEMPQLGRPLPKSLSEADVEALLAAPDLSDPIGQRDRAMLEVLYACGLRVTELISLTLEQVNLRQGVLRVMGKGSKERLVPMGEEAIVWVERYMRDARHDLLGGRPSDVLFPSLRGEQMTRQTFWHRIKHQAKVAGINKSLSPHTLRHAFATHLLNHGADLRVVQMLLGHSDLSTTQIYTHVARARLQDLHAKHHPRG	PGPT0022000_6288	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MOBILE_ELEMENTS	CE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0022000-xerD-K04763	NA	NA
D1-36_04097	351	rplS	COG0335	50S ribosomal protein L19	ATGACTAACAAAATCATCCTTGCACTCGAAGCAGAGCAGATGACCAAAGAGATCCCTACCTTTGCCCCAGGCGACACCATTGTCGTTCAGGTGAAAGTGAAGGAAGGCGACCGTTCGCGTCTGCAAGCGTTCGAAGGCGTTGTTATCGCCAAGCGTAACCGCGGCGTAAACAGTGCATTCACCGTTCGTAAAATCTCCAACGGTGTTGGCGTAGAGCGTACTTTCCAGACCTACAGCCCGCAAATCGACAGCATGGCTGTGAAGCGTCGCGGTGACGTGCGTAAAGCCAAGCTGTACTACCTGCGTGACCTGTCGGGTAAAGCAGCTCGCATCAAGGAAAAACTGGCTTAA	MTNKIILALEAEQMTKEIPTFAPGDTIVVQVKVKEGDRSRLQAFEGVVIAKRNRGVNSAFTVRKISNGVGVERTFQTYSPQIDSMAVKRRGDVRKAKLYYLRDLSGKAARIKEKLA				NA	NA	NA	NA	NA
D1-36_04098	753	trmD	COG0336	tRNA (guanine-N(1)-)-methyltransferase	GTGGCTAATTTGCGCGTTGAAGTCATCACGCTGTTTCCCGAGATGTTTTCCGCCATCAGCGAATACGGCATAACCAGCCGCGCGGTGAAACAGGAGCTGTTGCAGCTCACCTGTTGGAATCCGCGAGACTACACCACGGATCGGCATCACACTGTGGACGATCGCCCGTTTGGCGGTGGTCCGGGCATGGTGATGAAGATCAAGCCCCTGGAAGATGCGCTGGTTCAGGCCAGGATGGCAGCCGGGGAGGGTGCGAAGGTGATCTACCTGTCGCCCCAAGGCCGTCAGCTGACTCAGTCGGCGGTACGCGAGCTGGCGAATTCGGATGCATTGATCCTGATTGCCGGCCGTTATGAAGGCATTGACGAGCGTTTCATTGAGGCTCATGTCGATGAAGAGTGGTCGATTGGCGACTATGTACTGTCTGGCGGCGAGCTGCCGGCGATGGTCCTGATCGATGCGGTTACACGACTGCTGCCTGGAGCTTTAGGGCATGCGGATTCCGCCGAGGAAGATTCCTTTACGGATGGTCTGCTGGATTGCCCGCACTACACCCGACCGGAGGTGTATGCGGATCAGCGTGTTCCCGACGTGTTGCTAAGTGGCAACCACGCGCACATCCGGCGTTGGCGTTTACAGCAGTCCCTTGGTCGGACCTATGAACGACGCGCCGATCTTCTGGAAAGCCGCTCGCTTTCTGGAGAAGAGAAGAAGCTGCTCGAGGAATACATCCGCGAGCGGGACGATAGTTAA	MANLRVEVITLFPEMFSAISEYGITSRAVKQELLQLTCWNPRDYTTDRHHTVDDRPFGGGPGMVMKIKPLEDALVQARMAAGEGAKVIYLSPQGRQLTQSAVRELANSDALILIAGRYEGIDERFIEAHVDEEWSIGDYVLSGGELPAMVLIDAVTRLLPGALGHADSAEEDSFTDGLLDCPHYTRPEVYADQRVPDVLLSGNHAHIRRWRLQQSLGRTYERRADLLESRSLSGEEKKLLEEYIRERDDS	PGPT0007595_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0007595-ispF-K01770	NA	NA
D1-36_04099	537	rimM	COG0806	Ribosome maturation factor RimM	ATGAACGCGACGCCAAAAGATGCCGGTGATTTGATCGTTGTCGGCAAGATCTACTCTGTACATGGCGTTCGCGGCGAAGTGAAGGTGTATTCCTTTACTGATCCGATCAAGAACCTGTTGGACTACAAAACCTGGACGCTCAAGCGCGAAGGTAGCGTGAAACAGGTGGAGCTGGTCAGCGGACGCGGGAACGACAAGTTCCTGGTCGCGAAGCTCAAGGGTCTCGATGATCGTGAAGAAGCGCGTCTTCTGGCCGGTTATGAGATCTGCGTGCCGCGCAACCTGTTCCCTGAACTGACCGACGGCGAGTACTACTGGTACCAGCTGGTGGGTCTGAAGGTCATCGACCACCTCGGGCAATTGCTCGGGAAGATCGATCATCTGCTCGAGACCGGTTCGAACGATGTCATGGTGGTCAAGCCTTGCGTCGGCAGCCTGGATGATCGCGAACGCCTGTTGCCCTATACGGAGCAATGCGTGTTGGCAGTCGACCTTGAAGCAGGCGAGATGAAGGTGGAATGGGATGCGGATTTCTAA	MNATPKDAGDLIVVGKIYSVHGVRGEVKVYSFTDPIKNLLDYKTWTLKREGSVKQVELVSGRGNDKFLVAKLKGLDDREEARLLAGYEICVPRNLFPELTDGEYYWYQLVGLKVIDHLGQLLGKIDHLLETGSNDVMVVKPCVGSLDDRERLLPYTEQCVLAVDLEAGEMKVEWDADF				NA	NA	NA	NA	NA
D1-36_04100	252	rpsP	COG0228	30S ribosomal protein S16	ATGCTAACAATCCGTCTTGCCCTTGGCGGCTCCAAAAAGCGCCCGTTTTACCACCTGACCGTAACCGACAGCCGCAACCCGCGTGACGGTTCCCACAAGGAACAGGTTGGTTTCTTCAACCCTGTTGCCCGTGGTCAGGAAGTTCGTCTGTCCGTGAACCAAGAGCGCGTAGCCTACTGGCTGAGCGTTGGTGCACAGCCTTCTGAGCGTGTTGCTCAGTTGTTGAAGGAATCGGCTAAGGCCGCGGCCTGA	MLTIRLALGGSKKRPFYHLTVTDSRNPRDGSHKEQVGFFNPVARGQEVRLSVNQERVAYWLSVGAQPSERVAQLLKESAKAAA				NA	NA	NA	NA	NA
D1-36_04101	1377	ffh	COG0541	Signal recognition particle protein	ATGTTTGAAAACCTAACCGACCGTCTCTCGCAGACGCTGCGCCATGTCACCGGCAAGGCGAAACTGACCGAAGACAACATCAAAGACACCTTGCGCGAAGTGCGCATGGCGTTGCTCGAAGCCGACGTTGCCCTGCCGGTGGTGAAGGACTTCGTCAATTCGGTGAAGGAACGCGCCGTCGGCACCGAAGTGTCCCGCAGCCTGACCCCGGGCCAGGCGTTCGTGAAGATCGTCCAGGCCGAGCTCGAAAGCCTGATGGGCGCCGCCAACGAAGACCTGAACCTCAGCGCCGTGCCGCCAGCGGTGGTGCTGATGGCCGGTCTGCAAGGCGCGGGCAAGACCACCACCGCCGGCAAGCTGGCGCGCTTCCTTAAGGAGCGCAAGAAGAAGTCGGTGATGGTGGTGTCGGCGGACATCTACCGTCCGGCGGCAATCAAGCAGCTGGAAACCCTGGCCAGCGATATCGGCGTGACGTTCTTTCCGTCCGACCTGAGCCAGAAGCCGGTGGACATCGCCCAGGCGGCTATAAAGGAAGCGAAGCTCAAATTCATCGACGTGGTCATCGTCGACACCGCCGGTCGCCTGCACATCGATGAAGAGATGATGGGTGAGATCAAGGCGCTGCACGCCGCGATCAACCCCGTGGAAACGCTCTTCGTGGTCGATGCCATGACCGGCCAGGACGCGGCCAACACCGCCAAGGCGTTCGGTGACGCACTGCCGCTGACCGGCGTGATCCTGACCAAGGTCGACGGCGACGCCCGTGGCGGTGCCGCGCTGTCGGTACGCGCCATCACCGGTAAGCCCATCAAGTTCATCGGCATGGGCGAGAAGAGCGAAGCGCTCGAGCCGTTCCACCCTGAGCGTATCGCTTCGCGCATCCTCGGCATGGGCGATGTGCTCAGCCTGATCGAGCAGGCCGAACAGACCCTCGACAAGGACAAGGCCGACAAACTGGCCAAGAAGCTGAAGAAGGGCAAGGGCTTCGACCTCGAAGACTTCCGCGACCAGCTGCAACAAATGAAGAACATGGGCGGCCTCGGCGGCCTCATGGACAAACTGCCGAACATCGGCGGCGTGAACCTGGCGCAGATGGGCAATGCCCAGGGCGCGGCTGAAAAGCAGTTCAAGCAGATGGAAGCCATCATCAACTCCATGACCCCGGCCGAGCGCCGCGACCCTGAGCTGATCAGCGGTTCGCGCAAGCGTCGTATCGCCATGGGTTCCGGCACCCAGGTGCAGGACATCGGACGCTTGATCAAGCAGCACAAGCAGATGCAGAAGATGATGAAGAAATTCTCCGCCAAGGGCGGGATGGCCAAGATGATGCGCGGCATGGGCGGTATGTTGCCCGGCGGCGGCATGCCGAAAATGTAA	MFENLTDRLSQTLRHVTGKAKLTEDNIKDTLREVRMALLEADVALPVVKDFVNSVKERAVGTEVSRSLTPGQAFVKIVQAELESLMGAANEDLNLSAVPPAVVLMAGLQGAGKTTTAGKLARFLKERKKKSVMVVSADIYRPAAIKQLETLASDIGVTFFPSDLSQKPVDIAQAAIKEAKLKFIDVVIVDTAGRLHIDEEMMGEIKALHAAINPVETLFVVDAMTGQDAANTAKAFGDALPLTGVILTKVDGDARGGAALSVRAITGKPIKFIGMGEKSEALEPFHPERIASRILGMGDVLSLIEQAEQTLDKDKADKLAKKLKKGKGFDLEDFRDQLQQMKNMGGLGGLMDKLPNIGGVNLAQMGNAQGAAEKQFKQMEAIINSMTPAERRDPELISGSRKRRIAMGSGTQVQDIGRLIKQHKQMQKMMKKFSAKGGMAKMMRGMGGMLPGGGMPKM	PGPT0025750_3102	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0025750-ffh-K03106	NA	NA
D1-36_04102	813	ypjD	COG4137	Inner membrane protein YpjD	ATGCTCCCCTTGTCACCCAGCTTGCTTGCAACCCTCGCCGCCGCTTGTCTTTATGCCGCTGCGACCTTCTATCAGGGCACCCGTCTGGCCTCCGGCGCCAAGGCGAACAAGCGCCTGCTGGTCACGCTCGGCGTGCTGGCGGTGCTCGGCCATGCGGTCAGCCTGTTCACCCACTTGATGACGCCGATCGGCCTGGGCCTGGACTTCTTCAACGCCGCCAGCCTGATCGCCATGGCCGTGATCGCGCTGACGCTGCTGGCCTGCTCGCGCATCCCCGTGGAAAACCTGCTGGTGCTGCTGTTCCCCCTCGGGCTGGCCACGGTGCTGCTGGCGCAATTCGCGCCCTCGGGCACCGTGCAGATCATCGACGAGGAACCGGGCATCCTGGCGCATATCCTGTTGTCGATCCTCGCCTACGGCCTGTTCACCATCGCGGTGTTCCAGGCACTGCTCCTGCTGTTGCAGGACCACCAGCTCAAGCACAAGCACCCCTCCGGTCTGATCCGCAATTTCCCGCCCCTGCAAACCATGGAAAGCCTGCTGTTCGGCTTCCTCTGGGCCGGCTGGACCCTGCTCTCGCTGTCGTTGATCTCCGGCTGGCTGTTCGTCGAGAACCTGTTCGCCCAGCATCTTGTGCACAAGACTCTGCTGGCGTGCCTGGCGTGGGTCGTTTTCAGCGTGCTGCTGTGGGGTCGCAACCGCCTCGGCTGGCGTGGCCACAAAGCCATTCGTTGGACCCTGGCGGGATTCTGCCTGCTGATGCTGGCCTACTTCGGCAGCAAGCTGGTCCGCGAATACATCCTGCATGTCTGA	MLPLSPSLLATLAAACLYAAATFYQGTRLASGAKANKRLLVTLGVLAVLGHAVSLFTHLMTPIGLGLDFFNAASLIAMAVIALTLLACSRIPVENLLVLLFPLGLATVLLAQFAPSGTVQIIDEEPGILAHILLSILAYGLFTIAVFQALLLLLQDHQLKHKHPSGLIRNFPPLQTMESLLFGFLWAGWTLLSLSLISGWLFVENLFAQHLVHKTLLACLAWVVFSVLLWGRNRLGWRGHKAIRWTLAGFCLLMLAYFGSKLVREYILHV				NA	NA	NA	NA	NA
D1-36_04103	1239			hypothetical protein	ATGGATAGGCTGCCCTTGGGGCCATTGTTTGCGGTAATGGTCGTGCTGATCCTGTGGTCAGCCCTGTTCACGGCCATCGAAGCCGCCCAACAGTATCTGCTCGCCCGACGCAGGGCCTCGCGCTCCGGCGACAAGCCATTGGCGAAGCTCAGCTTTCCCTTGGCCAGCCTGATCCTGTGCAACACCCTCTGTCGCGCCCTCGCCGTGGTCATCGGCACGTGGCTGGCTATTTTCACCTGGCTGGAAAACGGTCCCTGGCTGGCCTGGCTCGGCACCAGCGTGGCCCTGCTGGTTTTCGCCGACTACCTGCCACGCACGCTCGCCACCCGTCATCCCGATGCGGTGCTGGCCCTGGGCAACGGTTTGCTGGGCGTTCCGTTGAAAATCGTTTATCCGGTGGCCTGGCTGCTCAATGGCCTCAGCCAGTTGCTGCTGCGCCCTTTTGCCCGCAAGGCTGGCGCGGTCCAGCAAAGCGACGACGAGCCCCCCGCGACGCCGCGTGCCGAGGAACAGGAACAGACCAGCGGTCGGGTGCATCCGGTTTCCGGTATCCACGCGCTGGACAACATCACCGTCAACGACATCCTCGTCCCTCGCAGCGAGGTGGACGGGATCAATCTCGACGACCCCATCGGCGACATCATCGAGCAGTTGCGCCTGAATCGGCGAACCCGCCTGCCCGTGTTCCACAGCGATATCAACCAGGTCGAAGCAGTCCTCAATACCCGCCAGGTTCGCCATCTACTGGCGGATGCGAGCCTGACCAAGGAAGCACTGCTGGCAGCCTGCCACGAACCGTATTTCGTTCCCGAGAGCACCCCCCTGCAGCTGCAGTTGCTCAACTTCCACAAGCAGCAACGCCGCTTGGGCATGGTGGTGGACGAATATGGCGAAGTCATGGGCATCGTGACCCTGGAGGACATCCTGGAGGAGATTGTCGGCGAGTTCGAAAGCGAGCACAGCCTCGACAATCCCCACGTTCATCCCCAACCCGACGGCCGCTTGATGATCGATGGCGCCGCGTCGATCCGCGAGCTGAACAAGACCCTCGGTTGGCATTTGCCCTGCGACGGCCCCAAGACGCTCAATGGCTTGGTGACCGAAGCACTGGAAACCATCCCGGAAAGCCCGGTGTGCCTGAAGATCGGCCGCTACCGCCTGGAAATCATCGAGACCGTCGACAACCGCGTCAGCCAGGTGCTGGTGTGGCATAACAGTTCGGTGCCGGTAGTTCTCTAA	MDRLPLGPLFAVMVVLILWSALFTAIEAAQQYLLARRRASRSGDKPLAKLSFPLASLILCNTLCRALAVVIGTWLAIFTWLENGPWLAWLGTSVALLVFADYLPRTLATRHPDAVLALGNGLLGVPLKIVYPVAWLLNGLSQLLLRPFARKAGAVQQSDDEPPATPRAEEQEQTSGRVHPVSGIHALDNITVNDILVPRSEVDGINLDDPIGDIIEQLRLNRRTRLPVFHSDINQVEAVLNTRQVRHLLADASLTKEALLAACHEPYFVPESTPLQLQLLNFHKQQRRLGMVVDEYGEVMGIVTLEDILEEIVGEFESEHSLDNPHVHPQPDGRLMIDGAASIRELNKTLGWHLPCDGPKTLNGLVTEALETIPESPVCLKIGRYRLEIIETVDNRVSQVLVWHNSSVPVVL				NA	NA	NA	NA	NA
D1-36_04104	1314	yhjE		Inner membrane metabolite transport protein YhjE	ATGACAACCACTACCTGCAACGAAGCAGTGCCTGTCGAGCCGACCAACTCCGCCACCCGCGTGGCGACCGCGAGCTTCATCGGCACCGCCATCGAGTTCTATGATTTCTACGTCTATGCCACCGCCGCGGCCCTGGTGATCGGACCGGTATTCTTTCCGCAGACCTCAGGCACGGCACAGATGCTGTCGTCCTTTCTGACCTTCGGTATCGCGTTTCTCGCCCGCCCCCTGGGCTCGGCGTTGTTCGGCCACTTCGGCGACCGCATCGGGCGCAAGTCGACACTCGTGGCCTCGCTGCTGCTGATGGGCGTGTGTACCACGCTCATCGGCGTGCTGCCTGGCTACGCCAGCATTGGCGCCTGGGCCCCGATTCTCTTGTGCCTTTTGCGTTTCGGCCAAGGGTTGGGGCTTGGCGGCGAATGGGGCGGCGCGGCCTTGCTGGCCACCGAGAACGCCCCAAAAGGCAAGCGCGCCTGGTTCGGCATGTTCCCGCAACTGGGCCCCTCTATCGGTTTCCTGGCGGCCAACGGATTGTTCCTTACCCTTGCCATGACCCTGGATGACGAGCAGTTCCGCTCATGGGGCTGGCGGATTCCGTTCTTGCTCAGCGCCGTATTGGTGATCGTCGGCCTCTATGTACGTCTCAAGCTCCACGAGACGCCGGTGTTCGCCAACGCCATGGCCCGCCAGGAACGGGTGAAAATCCCGCTGGTGGAGTTGTTCAGCCAGTACTGGGCGCCGACACTGCTTGGCGCGGCCGCGATGGTGGTGTGTTACGCCCTGTTCTACATCTCCACGGTATTTTCCTTGAGCTATGGCGTCGCGACCCTGGGCTATAGCCGCGAGACCTTCCTCGGCCTGCTGTGCTTTGCAGTGTTGTTCATGGCCGCCGCCACGCCGCTGTCGGCCTGGGCAAGCGACCGGTTTGGCCGCAAGCCGGTGCTCATCACCGGCGGCCTGCTGGCGGTGGCCTCGGGCTTCCTCATGGAGCCCCTACTGACTCAAGGCTCCACGGGAAGCGTGGCGCTGTTCCTGTGCATCGAGCTGTTCCTGATGGGCGTGACCTTCGCGCCCATGGGCGCGTTGCTGCCGGAGCTGTTTCCTACGCATGTGCGCTACACCGGCGCGTCGGCGGCCTACAACCTGGGTGGCATTGTCGGCGCTTCTGCGGCACCGTTCTTCGCGCAGAAGCTGGTGGCGATGGGCGGCCTGAGCTACGTCGGCGGTTACGTATCCGCTGCCGCGGTGCTCAGCGTGATCGCGGTGCTGTGCCTGAAGGAAACACGCCATAACGACCTGAACCGCGTAGGCTGA	MTTTTCNEAVPVEPTNSATRVATASFIGTAIEFYDFYVYATAAALVIGPVFFPQTSGTAQMLSSFLTFGIAFLARPLGSALFGHFGDRIGRKSTLVASLLLMGVCTTLIGVLPGYASIGAWAPILLCLLRFGQGLGLGGEWGGAALLATENAPKGKRAWFGMFPQLGPSIGFLAANGLFLTLAMTLDDEQFRSWGWRIPFLLSAVLVIVGLYVRLKLHETPVFANAMARQERVKIPLVELFSQYWAPTLLGAAAMVVCYALFYISTVFSLSYGVATLGYSRETFLGLLCFAVLFMAAATPLSAWASDRFGRKPVLITGGLLAVASGFLMEPLLTQGSTGSVALFLCIELFLMGVTFAPMGALLPELFPTHVRYTGASAAYNLGGIVGASAAPFFAQKLVAMGGLSYVGGYVSAAAVLSVIAVLCLKETRHNDLNRVG	PGPT0002956_55	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_SHIKIMATE_TRANSPORT,PGPT0002956-shiA-K08172	NA	NA
D1-36_04105	2415	lon_2	COG0466	Lon protease	ATGAGCGACCAGCACTCTACTGAAGCGAATAACGAATACACAGAATCCGAGCACATCGAACACACCGTTTCCGGCACCGGCCTGGCCCTGCCCGGCCAGAGCCTGCCGGACAAGGTCTACATCATTCCTATCCACAACCGCCCGTTCTTCCCGGCCCAGGTGCTGCCGGTCATCGTCAACGAAGAGCCGTGGGCCGAAACCCTGGAACTGGTGGCCAAGTCCGAACATCATTCCCTGGCGCTGTTCTTCATGGACTCACCCCAGGAAGACCCGCGCCATTTCGACACTTCGAAGCTGCCGCTCTACGGCACGCTGGTGAAGGTCCACCACGCCAGCCGTGAAGCCGGCAAATTGCAGTTCGTTGCCCAGGGCCTGACCCGCGTGCGCATCCGCACCTGGCTCAAGCACCACCGCCCACCGTACCTGGTGGAAGTCGAATACCCGCACCAGCCGAGCGAGCCGACCGACGAGGTCAAGGCCTATGGCATGGCGCTGATCAACGCGATCAAGGAGCTGCTGCCGCTCAACCCGCTGTATAGCGAAGAGCTGAAAAACTACCTCAACCGCTTCAGCCCCAACGACCCGTCGCCGCTGACCGATTTCGCCGCCGCGCTCACCTCCGCCACCGGCAGCGAATTGCAGGAAGTACTCGATTGCGTGCCGATGCTCAAGCGCATGGAAAAAGTCCTGCCGATGCTGCGCAAGGAAGTCGAGGTCGCGCGGTTGCAGAAAGAAATTTCCGCCGAGGTCAACAGCAAGATCGGCGAACATCAGCGCCAGTTCTTCCTCAAGGAACAACTCAAGGTCATCCAGCAGGAGCTGGGTCTGACCAAGGACGACCGCAGCGCAGACCTGGAACAGTTCGAACAGCGCCTTGAAGGCAAGGTATTACCGGCCCAGGCCGAGAAGCGCATCGAAGAGGAAATGAACAAACTCTCGATCCTGGAAACCGGCTCACCGGAGTACGCCGTCACACGCAATTACCTGGACTGGGCAACATCGGTGCCTTGGGGCGTGTATGGCCAGGACAAGCTCGATCTCAAGCATGCGCGCAAGATTCTCGACCAGCACCACGCCGGGCTGGGCGACATCAAGGAGCGCATCCTGGAATTCCTCGCCGTGGGCGCCTACAAGGGTGAGATCAGCGGTTCCATTGTGTTGCTGGTGGGCCCGCCCGGCGTGGGCAAGACCAGCGTCGGTAAATCCATTGCCGAATCCCTCGGGCGGCCGTTCTATCGCTTCAGCGTCGGCGGCATGCGCGACGAAGCCGAAATCAAGGGTCACCGGCGCACCTACATCGGGGCCCAGCCGGGCAAGCTGGTGCAGGCGCTCAAGGACGTCGAAGTGATGAACCCGGTGATCATGCTCGACGAAATCGACAAGATGGGCCAGAGCTACCAGGGCGACCCAGCGTCCGCGCTGCTGGAAACTCTCGACCCCGAGCAGAATGTCGAATTCCTCGATCATTACCTGGACATGCGCCTGGACCTGTCGAAAGTGCTCTTTGTGTGCACCGCCAACACCCTCGACTCGATCCCCGGCCCGCTGCTGGACCGCATGGAAGTCATTCGCCTGTCGGGCTACATCACCGAAGAGAAGGTTGCCATCGCCAAGCGTCACTTGTGGCCCAAGCAACTGGCCAAGGCCGGCGTGTCCAAGGGCAGCCTGAGCATCAACGATAGCGCCCTGAAGGCCCTGATCGACGGCTACGCCCGTGAAGCCGGGGTACGCCAGTTGGAGAAACAACTGGGCAAACTGGTGCGCAAGGCCGTGATGAAACTGATCGAAGATCCAAAAGCCGTGATCAAGCTCGGGCCCAAGGATCTCGAAGCCTCCCTGGGCAAACCGGTATTTCGCAACGAGCAGGTGCTGTCTGGCGTCGGGGTCATCACCGGCCTGGCCTGGACCAGCATGGGCGGCGCCACGTTGCCGATCGAGGCAACGCGGATCCACACTCTCAATCGCGGCTTCAAGCTCACCGGGCAACTGGGCGAGGTGATGAAGGAGTCTGCGGAGATAGCCCACAGCTACGTCAGCTCCCACCTGAAGCAATTCGGTGGCGATCCGAAGTTCTTTGACGAGGCCTTCGTGCACCTGCACGTACCGGAAGGCGCCACGCCCAAGGACGGCCCGAGTGCCGGCGTGACCATGGCCAGCGCCTTGCTGTCCCTTGCGCGCAACCAGCCGGCGAAGAAAGGCGTGGCCATGACTGGCGAATTGACACTTACCGGCCACGTCCTGCCGATTGGCGGCGTACGCGAAAAGGTCATCGCGGCGCGCCGGCAGAAAATCAATGAGTTGATCCTGCCGGAAGCCAACCGTGGCAACTTCGAGGAGCTGCCGGACTATCTGAAGGAAGGCGTCACGGTGCACTTCGCCAAGCGGTTTGCGGACGTGGTGAAGGTGTTGTTCTGA	MSDQHSTEANNEYTESEHIEHTVSGTGLALPGQSLPDKVYIIPIHNRPFFPAQVLPVIVNEEPWAETLELVAKSEHHSLALFFMDSPQEDPRHFDTSKLPLYGTLVKVHHASREAGKLQFVAQGLTRVRIRTWLKHHRPPYLVEVEYPHQPSEPTDEVKAYGMALINAIKELLPLNPLYSEELKNYLNRFSPNDPSPLTDFAAALTSATGSELQEVLDCVPMLKRMEKVLPMLRKEVEVARLQKEISAEVNSKIGEHQRQFFLKEQLKVIQQELGLTKDDRSADLEQFEQRLEGKVLPAQAEKRIEEEMNKLSILETGSPEYAVTRNYLDWATSVPWGVYGQDKLDLKHARKILDQHHAGLGDIKERILEFLAVGAYKGEISGSIVLLVGPPGVGKTSVGKSIAESLGRPFYRFSVGGMRDEAEIKGHRRTYIGAQPGKLVQALKDVEVMNPVIMLDEIDKMGQSYQGDPASALLETLDPEQNVEFLDHYLDMRLDLSKVLFVCTANTLDSIPGPLLDRMEVIRLSGYITEEKVAIAKRHLWPKQLAKAGVSKGSLSINDSALKALIDGYAREAGVRQLEKQLGKLVRKAVMKLIEDPKAVIKLGPKDLEASLGKPVFRNEQVLSGVGVITGLAWTSMGGATLPIEATRIHTLNRGFKLTGQLGEVMKESAEIAHSYVSSHLKQFGGDPKFFDEAFVHLHVPEGATPKDGPSAGVTMASALLSLARNQPAKKGVAMTGELTLTGHVLPIGGVREKVIAARRQKINELILPEANRGNFEELPDYLKEGVTVHFAKRFADVVKVLF	PGPT0014315_2499	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014315-lon-K01338	NA	NA
D1-36_04106	393			hypothetical protein	ATGTCCCTCACCCGCCTGCTTGTCCCCGTCAGCCTCGCCTTGCTGAGCGCCTGCGCCACACAGCCGAAACACAATGTGACGGTGGAAAAACAGAGCCAATGCCCGGTGCAGCTCAAAAACGGGCAGAACCTGATCCTGAGTTTGCCGAGCAATCCCACCACCGGCTATCGCTGGAGCATCCAGGATTCGGCCGGCGGTGTTCTCAAAGGCCTCGGCCCAGAGGTTTACCGTAACCCGGAAGACGCCGGCATCGTCGGCGCCGCCGGTGTCTCGACTTGGCGCTTCCAGGCGTTCGACACCGGCACCGGGCGCTTGCGCCTGACTTATCAACAGCCATGGGCACCCGAAGTGCCACCCGTGGAAACGTTTGACTGCGCTATTTCGGTGAAATGA	MSLTRLLVPVSLALLSACATQPKHNVTVEKQSQCPVQLKNGQNLILSLPSNPTTGYRWSIQDSAGGVLKGLGPEVYRNPEDAGIVGAAGVSTWRFQAFDTGTGRLRLTYQQPWAPEVPPVETFDCAISVK				NA	NA	NA	NA	NA
D1-36_04107	642			hypothetical protein	ATGACTGTGGGTTGGCTGATCCTCGCGCTGATGGGTGCGGCCACCTTTCTATATGGCCTGAGCGTGCATGCCACGTTGCTGTGCCTGCTGGTCAAGCCGATGCCGGTGCTGGCCCTGCTGGGCTGGCTGCACGACGCGCCGCCGGGCGAATACCGACGCTGGATAAGCCTGGGCCTGATATTTTCAGTGGTGGGCGACGTATTGCTGGCCTGGCCAGGAGATTTGTTTGTATTGGGGCTCGGCGCTTTTTTGTTGGCGCACCTGGCCTATTTGAAAGCCTACCTCAGTGACTGCCGCCGCCCGGCGCTCATGCCGTTGACGATTGCCTTGTTCATTGGCGCCTTGCTGTTGGGAATATTGGTGTCGAACGGCCTCGGGCCGCTGCTGGTGCCGGTGGTCGTCTATGGCTTGGTCATCAGCGCTATGCTCTGGAGGGCCCTGGCGCGCTTGGGGACCGAGGTGCCGAAACGCTCGGCCCTGCTCGCAGCCGTTGGAGCGCTGGGGTTTGTCTTTTCCGACAGCCTGATCGGGATCAACCGGTTCGTGGCGCCGTTCCATGCCGCGCCCTACCTGATCATCATCAGTTACTGGCTGGGACAGTGGGGCATCACCGCATCGGCGTTCCCCCGAAAGCCGCACTAA	MTVGWLILALMGAATFLYGLSVHATLLCLLVKPMPVLALLGWLHDAPPGEYRRWISLGLIFSVVGDVLLAWPGDLFVLGLGAFLLAHLAYLKAYLSDCRRPALMPLTIALFIGALLLGILVSNGLGPLLVPVVVYGLVISAMLWRALARLGTEVPKRSALLAAVGALGFVFSDSLIGINRFVAPFHAAPYLIIISYWLGQWGITASAFPRKPH				NA	NA	NA	NA	NA
D1-36_04108	744	cmoA	COG0500	Carboxy-S-adenosyl-L-methionine synthase	GTGAGCAAAGAGCCCGATCGCCTATTCGCCCAACCCTTGGCCCAGGTGCCCGACTTCGCCTTCAATGAAGACGTGGTGCGGGTGTTCCCGGACATGATCAAGCGGTCAGTGCCAGGCTACCCGACCATTGTCGAGAACCTCGGCGTGCTCGCGGCGCAATTTGCCCAGCCCAACAGCGTGCTTTATGACCTGGGCTCCTCCCTCGGAGCCGTGACCCAGGCATTGCGCCGCCACGTGCGCACCGAGGGTTGCCGGGTGATTGCGGTGGATAACTCTTCGGCCATGGTCGAGCGCTGCCGCGAATACCTCAACGGCCAGGACTCGATGTTCCAAGAGCTGCTGCCGGTGGAAGTGATCGAAGGTGACATCCTGGCCCTGACGTTTCAACCGGCCTCGGTGGTGGCGTTGAACTTCACCCTGCAATTCATCGCGCCGGACCAGCGCACCGCGCTATTGGGCCGCATTCGCCAATCGTTGCTACCCGGCGGCGCCCTGATCCTTTCGGAGAAGCTGCGCTTCAACGATGCCGAGGAACACGCGTTGCTCACCGACCTGCATGTGGCGTTCAAGCGCGCCAACGGCTACAGCGAACTGGAAATCGCTCAGAAACGCAGCGCCATCGAAAACGTCATGAAGCCCGACAGCCTCGAAGAGCACCGCGAGCGCCTGCTGGCCGCCGGGTTCTCGAAAGTCGTGCCGTGGTTCCAGTGTCTTAACTTTGCCTCGTTGATTGCCCTGCCATGA	MSKEPDRLFAQPLAQVPDFAFNEDVVRVFPDMIKRSVPGYPTIVENLGVLAAQFAQPNSVLYDLGSSLGAVTQALRRHVRTEGCRVIAVDNSSAMVERCREYLNGQDSMFQELLPVEVIEGDILALTFQPASVVALNFTLQFIAPDQRTALLGRIRQSLLPGGALILSEKLRFNDAEEHALLTDLHVAFKRANGYSELEIAQKRSAIENVMKPDSLEEHRERLLAAGFSKVVPWFQCLNFASLIALP				NA	NA	NA	NA	NA
D1-36_04109	957	cmoB	COG0500	tRNA U34 carboxymethyltransferase	ATGATCGATCTGTCCCCCCTCGCCCGCCATCTGGCCGGCACGCCCCTGGCCGATTGGGCCGCGACGCTGCAAACGCAGCTCGACGTCAAGATGGAAAAGGGCCACGGCGACCTGGAGCGTTGGCAAAGCGCCCTTGATGCGCTGCCGCTCTTGCAGCCCACCACGGTGGATTTGCTGAATGGGCTGACGCTGGACGCCGATTGCTCCGACGAAACCCGCGCCCAAATGCGTACCGCGTTGATGGGCCTTTCGCCTTGGCGCAAAGGTCCGTTCAATCTGTTTGGCGTGCATGTGGATACCGAATGGCGCTCGGATTGGAAATGGTCGCGCGTCGCCCCGCATTTGGATCTCAAGGGCAAGCGGATCCTCGACGTTGGTTGCGGCAACGGATACTACATGTGGCGCATGCTGGGCGCCGGAGCCGACACGGTGATCGGCGTCGACCCGAACTGGCTGTTCTTCTGCCAATTCCAGGCGGTACAGCGCTACCTGTCCCAGCCCAACGCCTGGCACCTGCCGTTCCCCTTCGAGGCCCTGCCGCCAGAGCTCGAAGGCTTCGATACGGTGTTTTCCATGGGCGTGTTCTACCACCGCCGCTCGCCAATCGAGCATCTACTTGCTTTGAAGGATTGCCTGGTCAAGGGCGGCGAACTGGTGCTGGAAACCCTGGTGATCGAGGGCGACGAGCATCAAGTGCTGGTGCCCGAAGATCGCTACGCGCAGATGCGCAACGTGTGGTTCCTGCCATCGGTTCCGGCCTTGGAGCGCTGGCTGCGTCGCGCCGGGTTCAGCGACGTGCGCTGCGTGGACGTGAGCCTGACGACCGTGGAGGAACAGCGCGGCACCGAATGGATGAAATATCAATCCCTAAGTGACTTCCTCGACCCCGCCGACCACAGCAAAACCGTCGAAGGGCTGCCAGCGCCGATGCGGGCGGTGATTGTGGCGCGCAAATAA	MIDLSPLARHLAGTPLADWAATLQTQLDVKMEKGHGDLERWQSALDALPLLQPTTVDLLNGLTLDADCSDETRAQMRTALMGLSPWRKGPFNLFGVHVDTEWRSDWKWSRVAPHLDLKGKRILDVGCGNGYYMWRMLGAGADTVIGVDPNWLFFCQFQAVQRYLSQPNAWHLPFPFEALPPELEGFDTVFSMGVFYHRRSPIEHLLALKDCLVKGGELVLETLVIEGDEHQVLVPEDRYAQMRNVWFLPSVPALERWLRRAGFSDVRCVDVSLTTVEEQRGTEWMKYQSLSDFLDPADHSKTVEGLPAPMRAVIVARK				NA	NA	NA	NA	NA
D1-36_04110	498	tadA	COG0590	tRNA-specific adenosine deaminase	ATGCGCCAGATTCGTCCCGCCAAGATCATTGATCGTAGCCGTGACCAGGATTTCATGCGCGAAGCCCTGGCCCTCGCCGCACAGGGCGCCGCCTTGGGCGAAGTGCCGGTGGGCGCGGTGTTGGTGCAGGATGGCGAAATCATCGGGCGTGGTTTCAACTGCCCGATCAGCGGCCACGACCCCAGCGCCCATGCCGAAATGGTCGCCATCCGTGCCGCCGCCCAGGCGGTGAGCAACTATCGCCTGCCGGGTAGCACCCTTTATGTCACGTTGGAGCCGTGCAGCATGTGCGCCGGGCTGATCGTGCATTCACGCATCGCCCGGGTCGTCTACGGCGCATTGGAGCCCAAGGCCGGAATCGTGCAGAGTCAGGGGCAGTTTTTCAGCCAGGGGTTCTTGAACCATCGGGTACTGTTCGAGGGCGGGGTGCTGGCTGAGGAGTGCAGCACGGTGCTGAGTGAGTTCTTCAAGACACGAAGAGCCAAATCGCAAGGTTGA	MRQIRPAKIIDRSRDQDFMREALALAAQGAALGEVPVGAVLVQDGEIIGRGFNCPISGHDPSAHAEMVAIRAAAQAVSNYRLPGSTLYVTLEPCSMCAGLIVHSRIARVVYGALEPKAGIVQSQGQFFSQGFLNHRVLFEGGVLAEECSTVLSEFFKTRRAKSQG	PGPT0006855_8	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_HYDROCARBONS|OIL_DEGRADATION	XENOBIOTIC_DICHLOROPROPENE_DEGRADATION,PGPT0006855-dhaA-K01563	NA	NA
D1-36_04111	1377	mmcO	COG2132	Multicopper oxidase MmcO	ATGTCTTTCACCCGTCGCCAAATACTCGGTGGCCTGGCCGGTCTTGTTGTCGTTGGTGTGGGGGCGGGAGGCGCGTCGCGGTACTGGCTGGGGAAAATGGCCGATGCCGAGGCCGGTCACGACTACGAGCTGATCGCGGCGCCTTTGGACGTGGAGCTGGTGGCCGGGCATAAGACCCAGGCCTGGGCGTTTGGCCCCTCGGCGCCGGGGACGGAGTTGCGGGTGCGTCAGGGCGAGTGGTTGCGGGTTCGCTTTATCAACCATTTGCCGGTCGCGACGACCATTCACTGGCACGGTATCCGTTTGCCGCTGGAGATGGACGGCGTACCTTATGTCTCGCAACTGCCGGTGCTGCCGGGTGAGTACTTCGACTACAAATTCCGCGTGCCGGACGCCGGCAGCTATTGGTACCACCCCCACGTCAATAGCAGTGAAGAACTCGGGCGCGGGCTGGTGGGGCCGCTGATCGTCGAAGAGCGCGAGCCCACCGGTTTCAAATACGAACAGACCCTGAGCCTCAAGAGCTGGCACGTGGACGAGCAGGGCCAGTTCGTCGAATTCAGCATTCCCCGCGAGGCTGCGCGTGGTGGTACGGCTGGACGGTTGTCGACCATCAACGGCGTGCCGCAGGCGGTAATCGATCTGCCGGCAGGGCAGATTACCCGGGTGCGTTTGCTCAACCTCGACAACACGCTTACCTATCGCATCAACATTCCAGGCGTAGAGGCGCAGATCTATGCGTTGGATGGCAACCCCATCGAGCCGCGCCCGTTGGGCAAGGAATACTGGCTGGGGCCAGGCATGCGCATTTGCCTGGCGATCAAGGCTCCGCCGGCCGGTGAAGAATTGTCGCTGCGCAATGGCCCGGTGCGCTTGGGGACCCTGCGTTCGGTGCCAAACAATGAGGCGCCGACCCCATGGCCGCCGGCATTGCCGCCCAACCCGGTGGCTGAGCCGGACCTGGCCAATGCCGAGAAGCTCAACTTCAATTTCGAATGGGTCGGTTCGGTGTCGGTCAATGTCGACAATGGCAAGCCGCCGAGCCTGTGGCAGATCAACGGCAAGGCCTGGGACATCACCGACAAGACCTGTTCCGACCGGCCGATCGCTACGCTGAAAAAAGGCCAGAGTTACATTTTTGAATTGAAGAACATGACTCAGTACCAACATCCGATCCATCTGCACGGCATGAGCTTCAAAGTGATCGCGTCGAACCGGCACAAGGTCATCCCGTACTTCACCGACACCTACCTGCTGGGCAAGAACGAGCGGGCGCAGGTGGCGTTGGTGGCGGATAATCCGGGCGTATGGATGTTCCACTGCCATGTGATCGACCACATGGAAACCGGCCTGATGGCCGCCATCGAGGTGGCGTGA	MSFTRRQILGGLAGLVVVGVGAGGASRYWLGKMADAEAGHDYELIAAPLDVELVAGHKTQAWAFGPSAPGTELRVRQGEWLRVRFINHLPVATTIHWHGIRLPLEMDGVPYVSQLPVLPGEYFDYKFRVPDAGSYWYHPHVNSSEELGRGLVGPLIVEEREPTGFKYEQTLSLKSWHVDEQGQFVEFSIPREAARGGTAGRLSTINGVPQAVIDLPAGQITRVRLLNLDNTLTYRINIPGVEAQIYALDGNPIEPRPLGKEYWLGPGMRICLAIKAPPAGEELSLRNGPVRLGTLRSVPNNEAPTPWPPALPPNPVAEPDLANAEKLNFNFEWVGSVSVNVDNGKPPSLWQINGKAWDITDKTCSDRPIATLKKGQSYIFELKNMTQYQHPIHLHGMSFKVIASNRHKVIPYFTDTYLLGKNERAQVALVADNPGVWMFHCHVIDHMETGLMAAIEVA				NA	NA	NA	NA	NA
D1-36_04112	288			hypothetical protein	ATGTTCGACAAACTACAACAGGCCTTCTGGAAAGCCTTGACCCCGGACCTGGTCCCGGAAGAACCCAAGCAGCCGCCAACGGTGGACGGGCTGGCACCGGCCATCATCGCTGCATTGGGTGGCGCGGAAAACCTCAAGTCTCATCAGCCCGTGGCCTTGACGCGGCTGCGGGTGGAGCTGCGGGATGTGGCGCGCATGGATCGGGCCGGGTTGAGCGACGCCGGTGTGACGGGGGTGATGGCGCTGGACGACGGCGTGGTGCACCTGATCACTGGCTTGCAAGGCTGA	MFDKLQQAFWKALTPDLVPEEPKQPPTVDGLAPAIIAALGGAENLKSHQPVALTRLRVELRDVARMDRAGLSDAGVTGVMALDDGVVHLITGLQG	PGPT0016880_92	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_GLUCOSE_DEGRADATION,PGPT0016880-ptsGb|ganC-K02778	NA	NA
D1-36_04113	2535			hypothetical protein	ATGAACACAACGCAATCCTTGCAATTGCTCGCACCGCTGTCCGGGGTCTTGATGCCTTTGGACAACGTGCCGGATCCGGTTTTCTCCAGCCGTGTGGTGGGGGATGGCATTTGTATCGATCCGACCTCGCAAACCCTTTGCGCTCCGCTGTCCGGTGTCATCGGCACGCTCCAGGACAGCGCCCATGCGGTGAGTATCACCGCTGACAATGGTGTCCAGGTGCTGATGCATATCGGCCTGGACACGGTCAACCTGGCGGGCAAGGGGTTCACCTCGCGGGTGACCATGGGGCAACGGGTCGAGGCCGGTCAGCCGCTGATCGATTTCGATGCCGACTACATCGCCTTGCACGCGCGCAGTCTGTTGACGCTGATGCTGGTGGTCAGTGGCGAACCCTTCAGCCTGCTCGTGGACGAGGCTACTTGCGTCGAGAGTGGCGTGCCGTTGTTGCAGGTGCGCCCGGGTGAGCAAGGGGCGATCGATGAGGCGCAGCCGGGGACGGTGCTGTTTTCCCGGCCGCTGGTCGTGCCCAATGAAAGCGGCCTGCATGCCCGTCCCGCCGCGGCGTTTGCCCAAGCGGCCAAGGGATTCGATGCGCATATTCAGCTCCATAAGCAGCAAGCCAGCGCCAACGCCAAATCCCTGGTGGCGATCATGGCGTTGCAGACGGCCAAGGGCGACAGTGTGCAGATCAGCGCCGCCGGTGCCCAGGCTGGGCAGGCCATCGAAGCGCTGGAGCAATTGCTGCTGTCAGGGTGCGGCGAAACAGTACGAGCGCCGCTAACGCTGGAACCGATCATCGCCGTCGAACCATCGACGCCTGGCCGGCTGCGGGGTGTTTGCGCATCGCCCGGCTCGGCGTTTGGTGAAGTGGTCCAGATCGCCTCCCAGGTGTTGGACATCGAGGCTGCGGGCGTCGGCATCGAGGCCGAGCAGGCGGCCCTTGTTCAAGCACTGGAGCAGGCGACGCAAGCCTTGAAAGCATTGCAGGACGAGGCAGCGGGCAGTGTCCAGGCACAGATTTTTCGTGCCCATCAAGAGTTGCTCGAAGACCCCACCTTGCTGGAGCAGGCCCAAGCCTTGATGGCCGCGGGCAAGAGCGCGGCGTTCGCCTGGAAAACCGCCACCGAGGCGAGTGCTGCGCTATTCCAGCAATTGGGCAGTGCCTTACTGGCCGAGCGCGCAACGGACCTGGCCGACGTCGGGCAACGGGTGCTCAAGCTGATCCTGGGCGTGCAGGACAACGCCTGGAACCTGCCCGAACAGGCGATTCTGGTGGCCGAGCAATTGACGCCCTCCCAGACCGCCAGCCTCGACACCTCACGCATCGCCGGTTTTGTGACCGTGGGCGGCGGCGCCACCAGCCATGTCGCGATCCTGGCCCGTGCGCTGGGTTTGCCATCGTTGTGTGGCGTGGCGCAAGACGTGTTGGTCTTGGATAACGGCACCCGGGTGTTGCTGGACGCTGATAGCGGTGAGTTGCACGTGAACCCGGATCAGGCCCTGATCGAGCAGCGCCAGGCCGCGGGTGAGCGGCAGCGCCAGCGACATCAACGTGACCTGGAACAGTCCGCCCTGGCGGCTCGTACCCTTGACGGTCATCGAATCGAGGTCAGTGCCAATGTCGGGTCGCTGCGGGACGTGGAGCAGGCCATGACCCTAGGGGGCGAAGGTGTGGGACTGTTGCGCTCCGAACTGCTCTACCTGGATCGCGCGCACCCACCGGGTCACGACGAGCAAGCCGCCCTCTACAGCGCCGTCGCCCGGGTTCTCGGACCTGAGCGCAACCTGGTGGTTCGCACCCTGGACGTGGGTGGGGACAAGCCGCTGGCTTATGTGCCGATGGCTCATGAAGCCAATCCATTCCTGGGCATGCGTGGTATTCGCCTGTGCCTGGAGCGACCGCAGTTGTTGCGTGAACAATTCCGGGCCATTCTCGCCTGTTCGCGGCTGGCGCGGCTGCACATCATGTTGCCCATGGTTACGCAACTGGCGGAGCTGCGCCTGGCGCGGCAGATGCTGGACGAAGAGGTCCGTCAGTTGCGGCTCGAGCACGCGCCGAAGCTGGGCATCATGATCGAAGTGCCGGCTGCTGCGCTGATGGCCGATCTGTTTGCCCCTGAAGTGGATTTCTTTTCCATCGGCACCAACGACCTGACCCAATACACCCTGGCGATGGACCGTGACCATCCTCGCCTGGCCAGCCAGGCCGACAGCCTGCATCCCTCGGTGTTGCGCCTGATCGCCCGTACGACCGAGGCCGCTCGCGCCCATGGCAAATGGGTCGGCGTATGTGGCGCGCTGGCCTCGGAATCCCTGGCGGTGCCGCTCTTGTTGGGGTTGGGCGTGGACGAATTATCGGTCAGTGTGCCGCTGATTCCGGCGATTAAGGCCTGCGTGCGTGAATGGGACCTGAAGGACTGCCGCACGCTCGCTCAACAGGCCTTGGGCCAGGACAGCGCGGAGCAGGTTCGTGACCTCCTGCGTACTCATTCATCCGCGGCCAATCCGGCCACCCTGGCCATGGAGCATTGA	MNTTQSLQLLAPLSGVLMPLDNVPDPVFSSRVVGDGICIDPTSQTLCAPLSGVIGTLQDSAHAVSITADNGVQVLMHIGLDTVNLAGKGFTSRVTMGQRVEAGQPLIDFDADYIALHARSLLTLMLVVSGEPFSLLVDEATCVESGVPLLQVRPGEQGAIDEAQPGTVLFSRPLVVPNESGLHARPAAAFAQAAKGFDAHIQLHKQQASANAKSLVAIMALQTAKGDSVQISAAGAQAGQAIEALEQLLLSGCGETVRAPLTLEPIIAVEPSTPGRLRGVCASPGSAFGEVVQIASQVLDIEAAGVGIEAEQAALVQALEQATQALKALQDEAAGSVQAQIFRAHQELLEDPTLLEQAQALMAAGKSAAFAWKTATEASAALFQQLGSALLAERATDLADVGQRVLKLILGVQDNAWNLPEQAILVAEQLTPSQTASLDTSRIAGFVTVGGGATSHVAILARALGLPSLCGVAQDVLVLDNGTRVLLDADSGELHVNPDQALIEQRQAAGERQRQRHQRDLEQSALAARTLDGHRIEVSANVGSLRDVEQAMTLGGEGVGLLRSELLYLDRAHPPGHDEQAALYSAVARVLGPERNLVVRTLDVGGDKPLAYVPMAHEANPFLGMRGIRLCLERPQLLREQFRAILACSRLARLHIMLPMVTQLAELRLARQMLDEEVRQLRLEHAPKLGIMIEVPAAALMADLFAPEVDFFSIGTNDLTQYTLAMDRDHPRLASQADSLHPSVLRLIARTTEAARAHGKWVGVCGALASESLAVPLLLGLGVDELSVSVPLIPAIKACVREWDLKDCRTLAQQALGQDSAEQVRDLLRTHSSAANPATLAMEH				NA	NA	NA	NA	NA
D1-36_04114	1224	lamB	COG4580	Maltoporin	ATGAAAACAATAATAAACCGTGGCCTTGCCGCGTCCTGTATCTGCCTGGCGCTGCCGTTCCCGGTCCAGGCGCTGGAGTTTTCCGGTTATTTGCGCAGTGGCGTCGGCAGCGCGACCAATGGCCGTTCCCAATCCTGTTTCCAACTGCCTGGGGCGCAGACTAAATATCGGTTGGGCAACGAGTGCGAGCAGTACGGGGAGTTGGAGCTGCGCCAGGACTTGTTCACCCTCGACGATGGCTCGGTGTTGAGCGTGGACGGCATGGCTTCGCTGTACAACCGCTACGACCTCGCGCCGACCTTCCAGGGTGAAAACGGCGCGGCGCGCATGCCGCAGATGTATGCCCAATGGTCGAACATGCCCAGCCTGAACGGCGGATCGTTGTGGGCCGGGCGGCGGTATTACAAACGCAACGACATCCATATTTCGGATTTTTACTACTGGAACCAGAGCGCCACCGGTGGCGGGATCGAGGACGTGTTGATCGGCGGGTTGAAATACAGTTACGCCTTCTCGCGCAAGGACAACCTCTACCAGAAAGACCCGGTCAACCGGCACGACTTCAACGTCGCCGGTTTCAGGACCAACCCTGGCGGCGAGTTGGAATTTGGCCTGAGCTTCATCGATCGGGCGAACCGTCGCGACGCCCACCGCGGTTGGGCCCTGACCGCCCAGCACGTGCAGCAGGACTTCCTGGGCGGCAAGAATAAATTGGCCTTGCAATACGGCGAGGGGCCCGGAACTGGGCTGGGTTATACCGGCGACACGGGGCTGGACGACAGCAACAAGCGCTATCGTCTGGTGGAGTTTTTCGATTGGCAGGTCACGCCGCGTTTCGGCGGGCAGGTGCAGGCGGTGTACGAGAAGAACATACGCCCCGACGGCACCGACCAGGACTGGCTGTCACTGGGGGTTCGCCCGGCGTACGCCATCACCGATCAGTTCAAGCTGGTGGCCGAACTGGGCCATGACCAGGTGCAGGCCAACGATGGCACACGCAAGCTGAGCAAATTCACCTTTGCTCCCACCTGGTCGCCCAAGGGCCCGGAATTCTGGGCGCGCCCGGAAATACGGCTCTATTACACCTACGCCAGTTGGAACGCGGCGGCCCAGCGAGCAGCCAATGAGCTGGCGGCCGGTTCGGCGCTGTCCGACACCGGTGCGTTTGGTGGGGCGCGACATGGTTCCAACGTGGGCCTGCAGGTCGAATACTGGTGGAAGTGA	MKTIINRGLAASCICLALPFPVQALEFSGYLRSGVGSATNGRSQSCFQLPGAQTKYRLGNECEQYGELELRQDLFTLDDGSVLSVDGMASLYNRYDLAPTFQGENGAARMPQMYAQWSNMPSLNGGSLWAGRRYYKRNDIHISDFYYWNQSATGGGIEDVLIGGLKYSYAFSRKDNLYQKDPVNRHDFNVAGFRTNPGGELEFGLSFIDRANRRDAHRGWALTAQHVQQDFLGGKNKLALQYGEGPGTGLGYTGDTGLDDSNKRYRLVEFFDWQVTPRFGGQVQAVYEKNIRPDGTDQDWLSLGVRPAYAITDQFKLVAELGHDQVQANDGTRKLSKFTFAPTWSPKGPEFWARPEIRLYYTYASWNAAAQRAANELAAGSALSDTGAFGGARHGSNVGLQVEYWWK	PGPT0016830_751	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_MALTODEXTRIN_TRANSPORT,PGPT0016830-lamB-K02024	NA	NA
D1-36_04115	1647	treA_2	COG0366	Trehalose-6-phosphate hydrolase	ATGCAAGACTGGCAACGCTCGGTGATCTACCAGATCTACCCCAAGAGTTTCTACAGCCATGGCGGCCAGGCCACCGGTGATTTGCTGGGGGTGGTGGACAAGCTCGACTATTTGCATTGGCTGGGTGTGGACTACCTGTGGCTGACGCCGTTCCTGCGTTCGCCGCAACGGGACAATGGGTACGACATCAGTGACTACTACGCCATCGACCCCAGCTACGGCACCATGGCCGACTGCGAGTTATTAATCGCCGAGGCGCGCAAGCGCGGTATCAAGCTGATGCTCGACATCGTGGTCAATCACACGTCCATCGAGCACCCCTGGTTCCAGGCCGCCCGCAGCAGCCTCGATAACCCGTACCGCGATTTCTATATCTGGCGGGACCAGCCGAACACCTGGGAGTCCAAGTTCGGTGGGTCGGCCTGGGAGTACGAAGCCCAGACCGGCCAATATTACCTGCACCTGTTCGACCATACCCAGGCCGACCTGAACTGGGATAACCCCCAGGTCCGCGCCGAAGTGTTCAAGATGATGCGTTTCTGGCGGGACAAGGGCGTGGGAGGCTTCCGTCTCGATGTGATCAACCTGATCTCCAAGCCAGCCGACTTTCCTGACGACCACACCGACGGTCGACGTTTCTATACCGACGGTCCCAACGTTCACCGCTACTTGCAGGAAATGCACCGGGAAGTCTTCGAGGGTTTCGACCTGATCAATGTTGGCGAGATGTCGTCCACCAGCCTCGAGCACTGTGTCCGTTATTCGTGCCCGGCCTCCCGGGAACTGTCGATGACCTTCAATTTCCATCACCTGAAGGTGGATTATCCGAACCTGCAAAAGTGGGTACGGGCCGACTTCGATTTTCTCGAGCTCAAACGCATCCTGTCCGACTGGCAGAGCGGCATGCAGGCCGGTGGCGGTTGGAATGCGCTGTTCTGGTGTAACCATGACCAGCCGCGGGTGGTGTCGCGGTTCGGTGATGACGGTGAGTACCGCGTGCCTTCGGCGAAGATGCTCGCCACGGCGTTGCATTTTCTCCAAGGCACGCCGTTCGTGTACCAGGGCGAGGAGCTGGGCATGACCAATCCGGATTTCGATCACATCGAGCAATACCGCGATGTGGAAACCCTGAACATCTATCGCCTCAAGCGCAACGCCGGAGTTCCCGAAGCCGAGGCCATGGCGCCAATCATGCAGAAGTCCCGAGACAACGGACGCACGCCGATGCAATGGAGTGCCGGGCCGCACGCGGGCTTCAGTCGGGTCGAACCCTGGATTGGCGTGCCTGCCAACGCCGCTTTCATCAATGTCGAGCAACAACGAGAAGACGCGACCTCGGTGCTGCATTTCTACCGCGAGCTGATCGCCCTGCGCCGCAGCGAAGCCTTGATCCAGGACGGCGTCTATCGCCTGCTTTTGCCCGAACATCCGCACGTGTGGGTGTACCTGCGCGAAGGGCAGGGAGAGCGTCTGCTGGTGGTCAGCCATTTTTATGGGGGCAACTGCGAGGTGGAGCTGCCCGAAGGGATCCTCACCCAAGAGACGACACAGCGCTGGGTGATTGGCAACTACGAAGCGGGTGAACACCGATACCAACGGCTGCGCCTGCGGCCCTACGAGTCGTTCGTGCTGCACCTGAGCGACTGA	MQDWQRSVIYQIYPKSFYSHGGQATGDLLGVVDKLDYLHWLGVDYLWLTPFLRSPQRDNGYDISDYYAIDPSYGTMADCELLIAEARKRGIKLMLDIVVNHTSIEHPWFQAARSSLDNPYRDFYIWRDQPNTWESKFGGSAWEYEAQTGQYYLHLFDHTQADLNWDNPQVRAEVFKMMRFWRDKGVGGFRLDVINLISKPADFPDDHTDGRRFYTDGPNVHRYLQEMHREVFEGFDLINVGEMSSTSLEHCVRYSCPASRELSMTFNFHHLKVDYPNLQKWVRADFDFLELKRILSDWQSGMQAGGGWNALFWCNHDQPRVVSRFGDDGEYRVPSAKMLATALHFLQGTPFVYQGEELGMTNPDFDHIEQYRDVETLNIYRLKRNAGVPEAEAMAPIMQKSRDNGRTPMQWSAGPHAGFSRVEPWIGVPANAAFINVEQQREDATSVLHFYRELIALRRSEALIQDGVYRLLLPEHPHVWVYLREGQGERLLVVSHFYGGNCEVELPEGILTQETTQRWVIGNYEAGEHRYQRLRLRPYESFVLHLSD	PGPT0014095_716	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASES	CE-EPS-PHOSPHOTREHALASE,PGPT0014095-treC-K01226	NA	NA
D1-36_04116	1443	treP	COG1263	PTS system trehalose-specific EIIBC component	ATGAGCCACGATTACTCCAGAATCGCCAGCGAGCTGCTGCACAGCTTGGGTGGCGTCGACAATATCGAGCAGGCCGCCCATTGCGTGACGCGCCTGCGCCTGTCCCTGAATGACGCGGCGCGGGTGGACAGTGCCACGCTGAACCAGATCGACCTGGTCAAGGGCTCGTTTTTCACCGGTGGCCTGTTCCAGGTGGTCATTGGCCCGGGCGAGGTGGAAAAGGTCTACGCCGCCCTGCGCGAGCTGACGGGCCTGGCCGCCGCGACCATCGCCGACGTCAAGCGCCAGGGCGCGCAGAAGGGCAACGGGATGCAGCGCCTGGTGCGGGTGCTGTCCGATGTGTTCATGCCTATCCTGCCCGCCCTGGTGATCGCCGGCCTGCTGATGGGTGTCAACAACCTGCTGGGCGCCAAGGGCATGTTCATTGCCGGGCAAACGTTGCTCGATGCCTATCCGAACCTGGACGGCGTCTGGAGCCTGATCAACCTGATGGCCAATACCTCCTTCGTCTTTCTCCCGGCCTTGGTGGGCTGGTCGGCGGCCAAGCGTTTCGGCGGCAGTGAGATCCTCGGCATCGTGCTGGGTCTGATGCTTGTCCACCCAGACCTGCTCAACGCCTGGAACTACGGCAAGGCGGTAGCGGGGCTGGAAGGCCAGAGCCTGCCGTATTTCGATATCTTCGGCTGGTTCCGGATCGAGAAAGTCGGCTACCAGGGCCAGATTCTCCCGATCCTGTTGGCGGCCTATGTCATGAGCGTGATCGAGCGATGGTTGCGGGCCAGGGTGCCCAACGCCATCCAATTGCTGGTGATCCCCATTACCACCATTGTGATCACCGGGGTGCTGGCCCTCGCCATCATCGGTCCGGTCACCCGGCACCTGGGCATCCTGATCACCGAAGGCATGGTGGCGCTGTTCGACCTGGCGCCGGTGATTGGCGGGGCGATTTTCGGCCTGCTCTATGCGCCGCTGGTGGTGACCGGCATGCACCACATGTTCCTGGCGGTGGACCTGCAATTGATCTCGACCCAGGGCGGCACCTTCATCTGGCCGATGATCGTCATGTCCAACCTGGCCCAGGGCAGCGCGGCGCTGGCAGTGTTCTACATGACCCGCAATGCGCGGGACAAGAGCATGGCGTCGACCTCGGCGATTTCCGCTTATTTCGGCATCACCGAACCGGCGATGTTCGGGGTCAACCTGCGCTACAAATTTCCCTTCTATTGCGCCCTGGCCGGCTCGGCCCTGGGCTGCATTTTCCTGTCGCTGAACAAGATCAAGGCCTCGGCGATTGGCGTGGGAGGCCTGCCGGGGTTCATTTCCATCGTGCCGGACTACATACCGATGTTCGTGGTCGGCATGGTCATCGCCATGAGCGTGCCCTTTGCCCTGACCTGCGCCTTGAGCATGAAGATCGTTCGGCCGGGGTATCGGGTGGCCTGA	MSHDYSRIASELLHSLGGVDNIEQAAHCVTRLRLSLNDAARVDSATLNQIDLVKGSFFTGGLFQVVIGPGEVEKVYAALRELTGLAAATIADVKRQGAQKGNGMQRLVRVLSDVFMPILPALVIAGLLMGVNNLLGAKGMFIAGQTLLDAYPNLDGVWSLINLMANTSFVFLPALVGWSAAKRFGGSEILGIVLGLMLVHPDLLNAWNYGKAVAGLEGQSLPYFDIFGWFRIEKVGYQGQILPILLAAYVMSVIERWLRARVPNAIQLLVIPITTIVITGVLALAIIGPVTRHLGILITEGMVALFDLAPVIGGAIFGLLYAPLVVTGMHHMFLAVDLQLISTQGGTFIWPMIVMSNLAQGSAALAVFYMTRNARDKSMASTSAISAYFGITEPAMFGVNLRYKFPFYCALAGSALGCIFLSLNKIKASAIGVGGLPGFISIVPDYIPMFVVGMVIAMSVPFALTCALSMKIVRPGYRVA	PGPT0014075_250	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_TREHALOSE_METABOLISM,PGPT0014075-treB-K02819	NA	NA
D1-36_04117	705	treR	COG2188	HTH-type transcriptional regulator TreR	ATGAGCAAATACAACCAGATCTACAACGATCTGCTGACCAGCATTACCACCGAACGCCTGGAGCGAGGCGCCCGCCTGCCCTCCGAAACCGAACTGATGGACAGCTATCAGGCCAGTCGTGGCACGGTGCGCAAGGCCATCGAACAGCTCCAGGAGCGCGGCTTCGCCCAGAAGATCCATGGCAAGGGCACCTTCGTGCTATCGACCCAGCCGATCGAATTCCAGCTCGGCGGCATCGTCAGTTTCCAGGAGACCTACCCGCGCCTGGGCAACGATGTCAGTACCAAAGTGGTCGAGTTCAGTCAGTTACCCTTGGAAGGAGCGCTGCTCGAGCACATCAAGGCCCCCGTCGGCAGCCAGATCACCCGCATCAAGCGGGTCCGGCGAATCGACGGCAAGCGCGTGATCCTGGACATCAACCACTTCGTCAGCGACGTGATCCCCGGCCTGACCCGCGACATCGCCGTGCAGTCGATCTACGCCTTCATCGAACAGACCCTGCAACTGCAGATCGCCTACGCCCAGCGCACCATCGAAGCGGTCCGCTGCGGCAAGGACGACCAGCAACACCTGGACCTCGAAGGCCAGAGCCATGTCATCGTGGTGAGTAACCAGACCTTTCTCCAGGACGGTCGGCAGTTCGAGTACACCGAATCGCGGCATACGCTGGATAAGTTTTATTTTTCGGATGTGGCGCGGCGGTGA	MSKYNQIYNDLLTSITTERLERGARLPSETELMDSYQASRGTVRKAIEQLQERGFAQKIHGKGTFVLSTQPIEFQLGGIVSFQETYPRLGNDVSTKVVEFSQLPLEGALLEHIKAPVGSQITRIKRVRRIDGKRVILDINHFVSDVIPGLTRDIAVQSIYAFIEQTLQLQIAYAQRTIEAVRCGKDDQQHLDLEGQSHVIVVSNQTFLQDGRQFEYTESRHTLDKFYFSDVARR	PGPT0014110_549	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATION	PLANT_DERIVED_TREHALOSE_METABOLISM,PGPT0014110-treR2-K03486	NA	NA
D1-36_04118	1578	guaA	COG0518	GMP synthase [glutamine-hydrolyzing]	ATGGCCCTCGACATTCACGCTCACCGCATCCTGATCCTCGACTTCGGTTCCCAGTACACCCAGCTGATTGCCCGCCGCGTGCGTGAGATCGGCGTGTACTGCGAACTGCATCCGTTCGACATGGATGACGAAGCGATTCGCGAATTCGCTCCGAAAGGCGTCATCCTCGCCGGCGGCCCCGAGTCCGTGCACGAAGCCAACAGCCCGCGTTGCCCGCAAGCGGTGTTCGACCTGGGGGTACCGGTGTTCGGCATCTGCTACGGCATGCAGACCATGGCTGAACAGCTGGGCGGCAAGGTCGAGGGTTCCGACCTGCGTGAGTTCGGTTACGCTCGCGTCGACGTGGTCGGCAAGAGCCGCCTGCTGGACGGCATCGAGGATCATATCGACGCCGACGGCCTGTTCGGCCTCGACGTGTGGATGAGCCATGGTGACAAAGTCACCAAGATGCCTGAAGACTTCCACATCCTGGCCAGCACCCCGAGCTGCCCGATCGCTGGCATGTTCAGCGACGAGCGTCGCTACTACGGCGTGCAGTTCCACCCGGAAGTGACCCACACCAAGCAGGGCGGCCGCATTCTGTCGCGCTTCATCCTCGACATCTGCGAATGCGAAGCCTTGTGGACTCCGTCGAAAATCGCTGAAGACGCCATCGCCCAGGTCCGCGCCCAGGTCGGCACCGACAACGTATTGCTGGGCTTGTCTGGCGGCGTTGATTCCTCGGTGGTTGCCGCACTGCTGCACAAGGCCATCGGCGACCAGCTGACGTGCGTCTTCGTCGACAACGGCCTGCTGCGCCTGCACGAAGGCGAGCAAGTGATGGCCATGTTCGCCGAGAACATGGGCGTCAAGGTGATTCGCGCCAATGCCGAAGAGCAGTTCTTGAACAACCTGGCCGGCGAGTCCGACCCGGAGAAGAAACGCAAGATCATCGGCCGTACCTTCATCGACGTGTTCGATGCCGAATCCTGCAAGCTGGACAACATCAAGTACCTCGCCCAGGGCACCATCTACCCTGACGTGATCGAGTCGGCCGGCGCCAAGAGCGGCAAGGCCCACGTGATCAAGTCCCACCACAACGTTGGTGGCTTGCCGGAAGAGATGAACCTGAAGCTGGTCGAACCACTGCGCGAACTGTTCAAGGACGAAGTGCGTCGCCTCGGCCTGGAACTGGGCTTGCCGTATGACATGGTCTACCGCCACCCATTCCCGGGCCCGGGCCTGGGCGTGCGGATCCTCGGCGAAGTGAAGAAGGAATACGCCGACCTGCTGCGTCGCGCCGACCACATCTTCATCGAAGAACTGCGCAAGGCCGACTGGTACCACAAGGTCAGCCAGGCATTCGTGGTGTTCCAACCGGTGAAATCGGTCGGCGTGGTCGGCGATGGCCGTCGCTACGCCTGGGTCGTGGCCCTGCGCGCCGTGGAAACCATCGACTTCATGACCGCTCGCTGGGCACACCTGCCGTACGAGCTGCTGGAAACCGTTTCCGGGCGGATCATCAATGAAATCGAAGGCATCTCTCGCGTGACGTATGACGTGTCGAGCAAGCCGCCGGCGACGATTGAGTGGGAGTGA	MALDIHAHRILILDFGSQYTQLIARRVREIGVYCELHPFDMDDEAIREFAPKGVILAGGPESVHEANSPRCPQAVFDLGVPVFGICYGMQTMAEQLGGKVEGSDLREFGYARVDVVGKSRLLDGIEDHIDADGLFGLDVWMSHGDKVTKMPEDFHILASTPSCPIAGMFSDERRYYGVQFHPEVTHTKQGGRILSRFILDICECEALWTPSKIAEDAIAQVRAQVGTDNVLLGLSGGVDSSVVAALLHKAIGDQLTCVFVDNGLLRLHEGEQVMAMFAENMGVKVIRANAEEQFLNNLAGESDPEKKRKIIGRTFIDVFDAESCKLDNIKYLAQGTIYPDVIESAGAKSGKAHVIKSHHNVGGLPEEMNLKLVEPLRELFKDEVRRLGLELGLPYDMVYRHPFPGPGLGVRILGEVKKEYADLLRRADHIFIEELRKADWYHKVSQAFVVFQPVKSVGVVGDGRRYAWVVALRAVETIDFMTARWAHLPYELLETVSGRIINEIEGISRVTYDVSSKPPATIEWE	PGPT0021580_1983	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021580-guaA-K01951	NA	NA
D1-36_04119	1470	guaB	COG0516	Inosine-5'-monophosphate dehydrogenase	ATGCTGCGTATCAGCCAAGAAGCTCTGACCTTCGACGACATTCTCCTAGTGCCCGGTTATTCCGAGGTGCTGCCTAACGAAGTCAGTCTCAAAACCCGTCTCACCCGTGGCATCGAACTGAATATCCCCCTGGTTTCCGCCGCCATGGACACCGTGACCGAAGCCCGTCTGGCCATTGCCATGGCCCAGGAAGGCGGTATCGGTATCATCCACAAGAACATGACCATCGAACAGCAGGCCGCCGAAGTGCGCAAGGTCAAGCGGTTCGAGGCTGGCGTGGTCAAGGATCCGATCACCATCGAGGCTGACGCCACGGTCCGGGATCTGTTCGAACTGACCCGCATGCACAACATCTCCGGCGTTCCGGTGCTGCACGATGGCGACCTCGTCGGCATCGTTACTTCCCGTGACGTGCGCTTCGAAAGCCGCCTGGACGCCTCTGTTCGCCAGGTGATGACGCCTAAAGAGCGCCTGGTCACGGTCAAGGAAGGCACCAGCAAGGACGACGTCCGCGAATTGCTGCACAAGCACCGCATCGAGCGCGTGTTGATCGTCGATGACAAATTCGCCCTCAAGGGCATGATGACCGTCAACGACATCGAAAAAGCCAAGGCCTACCCGCTGGCCAGCAAGGACGACCAGGGTCGTCTGCGCGTCGGCGCCGCCGTCGGCACCGGCAAGGACACTGGTGACCGCGTCGCCGCCCTGGTCAACGCTGGCGTTGACGTGGTGGTGGTCGACACCGCCCACGGTCACTCCAAAGGCGTTATCGACCGCGTGCGCTGGGTCAAGCAGAACTTCCCCGACGTACAGGTGATCGGCGGCAACATCGCCACCGGCGCTGCCGCCAAGGCCCTGGCCGAAGCGGGCGCCGACGCGGTCAAGGTCGGTATCGGCCCAGGCTCGATCTGTACTACCCGTATCGTCGCCGGTGTCGGCGTGCCGCAGATCAGTGCCATCGCCAACGTCGCCGCTGCCCTTGAAGGCACCGGCGTGCCGTTGATCGCCGACGGCGGTATCCGTTTCTCCGGTGACCTATCCAAGGCCATCGTCGCCGGTGCCTACTGCGTGATGATGGGTTCGATGTTCGCCGGTACCGAAGAAGCGCCGGGCGAGATCGAACTGTTCCAGGGCCGTAGCTACAAGGCTTATCGCGGCATGGGTTCGCTGGGCGCCATGTCCCAGGCCCAGGGTTCGTCCGACCGTTACTTCCAGGACTCCTCCGCGGGTGCCGAGAAGCTGGTGCCGGAAGGCATCGAAGGTCGCGTGCCGTATAAGGGCACCCTGAGCGCCATCATCCATCAACTGATGGGCGGCCTGCGTTCCTCGATGGGCTACACCGGCAGCGCTGACATCGAAGAGATGCGCACTAAGCCGGAATTCGTGCGCATCACTGGCGCCGGCATGGCCGAGTCCCATGTACACGACGTGCAGATCACCAAGGAAGCGCCGAACTACCGCGTAGGTTAA	MLRISQEALTFDDILLVPGYSEVLPNEVSLKTRLTRGIELNIPLVSAAMDTVTEARLAIAMAQEGGIGIIHKNMTIEQQAAEVRKVKRFEAGVVKDPITIEADATVRDLFELTRMHNISGVPVLHDGDLVGIVTSRDVRFESRLDASVRQVMTPKERLVTVKEGTSKDDVRELLHKHRIERVLIVDDKFALKGMMTVNDIEKAKAYPLASKDDQGRLRVGAAVGTGKDTGDRVAALVNAGVDVVVVDTAHGHSKGVIDRVRWVKQNFPDVQVIGGNIATGAAAKALAEAGADAVKVGIGPGSICTTRIVAGVGVPQISAIANVAAALEGTGVPLIADGGIRFSGDLSKAIVAGAYCVMMGSMFAGTEEAPGEIELFQGRSYKAYRGMGSLGAMSQAQGSSDRYFQDSSAGAEKLVPEGIEGRVPYKGTLSAIIHQLMGGLRSSMGYTGSADIEEMRTKPEFVRITGAGMAESHVHDVQITKEAPNYRVG	PGPT0021445_3051	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021445-guaB-K00088	NA	NA
D1-36_04120	549			hypothetical protein	ATGAATTCGCAAAGCATTATCGTCCCGAAAATCTCCACACTGCCGGTCCACGAGCCTCGGGCCCGGGCAATCGTGCGCTGGCTGGTGCGCAAGAACATTATCGAAGAGCAATTGACCACTTGCGGCCGCACCGGCAATCGCATGGCCCACGCCATCGCTCCCGGTGCGCGCGACGTGGTCATGCACCCCGAAGCCTTGCCGTTCGGCGAGCCGATCAATGGCCTGGAGATCATCACCAAGCGCTGCATCTATACGCCGGCCAAGGGCTTTCTTGAAGAAGCCGGTTGCGCTGAGTGTCGCCGGGAGATTGGCGAAGCGCTATTCGAAAGCCTGGAAGACTGGATGCCAGGGCGTACCGATAACTTCACCTGCCCCGAGTGTGGGCATGAAGATGACATCAATGGCTTCCTGTTCCTACAACCCTGCGCGTTCTCCAACCTGGGGTTCATCTTCAATAACTGGCTGGAGGCGGGGTTCAAGCAGGGGTTTCTTGATGAATTCGCCGACTGGCTGGATCAGCCGGTGAGTTGGGTGAAGGTGGAGTTGTAG	MNSQSIIVPKISTLPVHEPRARAIVRWLVRKNIIEEQLTTCGRTGNRMAHAIAPGARDVVMHPEALPFGEPINGLEIITKRCIYTPAKGFLEEAGCAECRREIGEALFESLEDWMPGRTDNFTCPECGHEDDINGFLFLQPCAFSNLGFIFNNWLEAGFKQGFLDEFADWLDQPVSWVKVEL				NA	NA	NA	NA	NA
D1-36_04121	768			hypothetical protein	ATGAATCTTCTCCCATGGTTGGGCCAGTGGGCATTTGCCCCGATGGAATGGCTGGTAATCGCCTCGGCCATTGTCCTGGCCTACATCGTGTTCGGCATCGCCGGGTTCGGCACCGCCCTGGTGGCTGCGCCGATCCTGCTGTTGTTCATGCCGCTGTCGAAGATTGTCCCGCTATTGGTCTTGCTGGATTTTGTCGCCGCCTTTGGCAACTTGTTGCCGTCGCGGCGGGACGTGTCCCGGCCGGAGCTGCTGCGGTTGCTGCCCTGCATGGCTGTGGGGTGCACCTTGGGTGTGATTTTCCTGCTCAACCTCAAGTCAGATCTTTTGCTGCTGTTGATGGGGCTGTTTATTAGCGCCTATGCGATCTACAGCCTGTTGATAAAAACCAGGCCCAAGCAGTTATCTTCATTGTGGGCGTTGCCGATGGGCACGGTGGGCGGGATGTTCGGAGCGTTGTTTGGCAGTGGCGGCTTTTTATATGCCATCTACCTGAACAGCCGTTTGCCCAAGGAGGCGGCGCGGGCGACCCAGAGTGCGCTGATCAGTTGCAGCACTGTGGTGCGCTTGAGTTTGTTTGTCATTGCGGGCGTGTATGCCGAGCTACCCTTGCTGGTACTGGCGCTGTGTTTATTGCCGGCCATGGCGCTGGGATTGTGGGTGGGGCGTCGCCTGACCCTGAAGATGTCGCGCGAAGCGTTCGTGCGGTTGGTCACCTGGCTGGTGCTCGCCAGCGGGCTGGCGTTGATCGGCCGTTACCTGAGTGCTTGA	MNLLPWLGQWAFAPMEWLVIASAIVLAYIVFGIAGFGTALVAAPILLLFMPLSKIVPLLVLLDFVAAFGNLLPSRRDVSRPELLRLLPCMAVGCTLGVIFLLNLKSDLLLLLMGLFISAYAIYSLLIKTRPKQLSSLWALPMGTVGGMFGALFGSGGFLYAIYLNSRLPKEAARATQSALISCSTVVRLSLFVIAGVYAELPLLVLALCLLPAMALGLWVGRRLTLKMSREAFVRLVTWLVLASGLALIGRYLSA				NA	NA	NA	NA	NA
D1-36_04122	1380	xseA	COG1570	Exodeoxyribonuclease 7 large subunit	ATGATTAAAGATCCCTTTGCCCGACTGGGCCTGGACCGCGAGGTCCTGACTGTCAGCCAACTCAACGGCCGTGCACGGGTGTTGCTGGAAGACGTGTTCAGCAACATCTGGGTCGAGGGCGAGATCTCCAACCTCGCCCGCCCGGCTTCCGGCCACGTGTATTTCACCCTCAAGGACAGCGGCGCCCAGGTGCGCTGCGCGCTGTTCCGGCAGAACGCCGCACGGGTGCGCCAGGCCTTGAAGGATGGGTTGGCGGTGAAGGTGCGCGGCAAGGTCTCGCTGTTCGAGGGCCGTGGCGACTATCAACTGATCCTCGACACCGTGGAACCGGCCGGCGATGGTGCCCTGCGCCTGGCCTTCGATGCCCTGAAGGAAAAGCTCAGCGCCGAAGGGCTGTTCAGCGCCGAACGCAAAGTGCCGCTGCCGGCCCATCCGCAACGCATCGGCATCATCAGTTCGCCCACCGGCGCGGTGATCCGCGACATCATCAGCGTCTTCCGCCGCCGCGCGCCGCAGATTTCCCTGACCTTGATTCCCACCGCAGTGCAAGGCCGAGAAGCCACCGGGCAAATTGTTCGCGCCCTGAAACTGGCCGATGCCCGCGGCTTCGACGCGCTGATCCTGGCCCGGGGCGGCGGTTCGCTGGAAGATTTGTGGTGCTTCAACGAAGAAGCCGTGGCCCGGGCGGTGGATGCCTGCGTCACGCCGATCGTCAGCGCCGTCGGCCATGAGACCGACGTATCCATCAGCGATTTCGTCGCCGATGTGCGTGCCCCGACCCCGTCCGCCGCCGCCGAACTGCTGGCACCGGATGCCGGCGACCTGGTCCGCCGGGTTGAAAGTCTGCACCGCCGGTTGGTGATGCGCATGCGTGACCGGCTGATGCGCGACCAACTGCGCCTCGAAGGTCTTACGCGGCGCCTGCGTCATCCCGGCGAACGGCTGCGCCAACAGGCCCAGCGCCTCGACGATCTGGACATGCGCATGCGCCGGGCCTTCGAGCGCAGCCTCAACACCCGCCGCGAAAGGCTGATCCGCCTGGAAACCCGTCTGGCCGGACAGCATCCGGGCCGGCAATTGGCCATGTTGCGTCATCGCCTCGACAGCCTTGCCGAACGCTTGCCCCGGGCGATGCGCGAAGGGCTCAAAACGCGACGCGTGCAGTTGCAAAACCAGATGCAGACGCTGCACATCGTCAGCCCGCTGGCGACCCTTGGTCGTGGCTACAGCATCCTGCTCGACGAGCGCGGCCATGCCATCCGCAACGCCGGGCAAACCCAGATGGGCCAGCGCCTGACCGCCAAGCTCGGCGAAGGCGAACTGCTGGTGCGGGTCGAAGACAACCACCTGACGCCAGTCACCCTTTCTTTATTGGATTGA	MIKDPFARLGLDREVLTVSQLNGRARVLLEDVFSNIWVEGEISNLARPASGHVYFTLKDSGAQVRCALFRQNAARVRQALKDGLAVKVRGKVSLFEGRGDYQLILDTVEPAGDGALRLAFDALKEKLSAEGLFSAERKVPLPAHPQRIGIISSPTGAVIRDIISVFRRRAPQISLTLIPTAVQGREATGQIVRALKLADARGFDALILARGGGSLEDLWCFNEEAVARAVDACVTPIVSAVGHETDVSISDFVADVRAPTPSAAAELLAPDAGDLVRRVESLHRRLVMRMRDRLMRDQLRLEGLTRRLRHPGERLRQQAQRLDDLDMRMRRAFERSLNTRRERLIRLETRLAGQHPGRQLAMLRHRLDSLAERLPRAMREGLKTRRVQLQNQMQTLHIVSPLATLGRGYSILLDERGHAIRNAGQTQMGQRLTAKLGEGELLVRVEDNHLTPVTLSLLD				NA	NA	NA	NA	NA
D1-36_04123	822			hypothetical protein	ATGCCGCGATTCCTCGCTCCGCTGCTGTTGCTGTGCCTGACCTTCAACGCCCACGCCGACAGCTACATCACCCGCCTGTTGAACAAACCGGTGCCCGGCGGTGTGGCCGTGGTGGACCTGGGCAGCGCGGCCCAGGCGCCAAAAGCCACCTACCAGGGCAAACCGGTGCTGGTGGTCAAGGAGCAACAGAACTGGCTGGCGATTGTCGGCATTCCGTTGACGGTACAACCCGGCACGCAGCAGATCAGCAGCGGCGGCAGCACTCAGCCCTTCGTGGTCGGTTACAAGAAGTATCCCGAGCAGCACATCACGCTGAAGAACAAGCGTCAGGTCAACCCTAACCCGGCGGACCTCAAGCGTATCGACGCCGAGCTGGCGGTGCAGTTGAAGGCCTACCGCAGCTTCAGCCCGAACATCCCCAGCAATCTGTTGCTGGATAAACCGGTCAACGGCCCGCTGTCGAGCAAGTTCGGTGTGCGCCGTTTCTTCAACGGCGAAGAACGCAACCCCCACGCAGGCCTGGACTTCGCCGTGCCCGCCGGCACACCGATCAAGACCCCGGCCGCCGGCAAGGTGATCCTCACCGGCAACTATTTCTTCAATGGCAACACGGTATTCGTCGACCATGGCCAGGGCTTCATCAGCATGTTCTGCCACATGTCGAAAATAGATGTGAAGGTCGGCCAGCAGTTGGCCCGTGGCACAGTGGTCGGCAAGGTCGGCGCCACCGGCCGGGCGACCGGGCCGCATATGCACTGGAACATCAGCCTGAACGATGCTCGTGTGGATCCGGCGATTTTTATCGGGGCGTTTCAGCCCTGA	MPRFLAPLLLLCLTFNAHADSYITRLLNKPVPGGVAVVDLGSAAQAPKATYQGKPVLVVKEQQNWLAIVGIPLTVQPGTQQISSGGSTQPFVVGYKKYPEQHITLKNKRQVNPNPADLKRIDAELAVQLKAYRSFSPNIPSNLLLDKPVNGPLSSKFGVRRFFNGEERNPHAGLDFAVPAGTPIKTPAAGKVILTGNYFFNGNTVFVDHGQGFISMFCHMSKIDVKVGQQLARGTVVGKVGATGRATGPHMHWNISLNDARVDPAIFIGAFQP				NA	NA	NA	NA	NA
D1-36_04124	1680	leuA	COG0119	2-isopropylmalate synthase	ATGAGCATGCTCAAAGACCCGTCTTCGAAATACCGCGCCTTCCCGACCATCAACCTGCCGGATCGCACCTGGCCGTCGAAGACCATCACTGCCGCGCCGATCTGGTGCAGTTCCGACCTGCGTGATGGCAACCAGTCGCTGATCGAGCCCATGGACGCGGCCAAGAAGCTGCGCTTCTGGAAAACCTTGGTGGCGGTGGGCGTGAAAGAAATCGAAGCGTCGTTCCCGGCCGCTTCCCAGACTGACTTCGACTTCGTGCGCACCCTCATCGAAGAAGGCCACATCCCGGACGACACCACCATCCAGGTGCTGACCCAGGCCCGCGAAGACCTCATCGCCCGTACCTTCGAATCCCTGCGTGGCGCGAAGAAAGCCATCGTCCACCTCTACAACGCCACCTGTCCGTCGTTCCGCCGCATCGTGTTCAACCAGGACAAGGAAGGCGTGAAGGAAATTGCAGTGAACGCGGCCAAGCTGTTCGTCAAATACGCCGCTCAGCAGCCGGAAACCCAGTGGCAGTTCGAATATTCCCCAGAAACCTTCAGCGCCACCGAGCTGGAGTTCGCCAAGGAAGTCTGCGACGCCGTGATCGAAGTGTGGAACCCGACCCCGGAGCGCAAGGTGATCCTTAACCTGCCCGCCACCGTGGAAGTCGCCACGCCGAACATCTACGCCGACCAGATCGAGTGGTTCCACCGCAACATCAGCCGTCGTGACAGCGTGCTCATCAGCCTGCACACCCACAACGACCGTGGCACCGGCGTGGCCGCTACCGAGCTGGGCCTGATGGCCGGCGCCGACCGTGTCGAAGGCTGCCTGTTCGGCAACGGCGAGCGCACCGGCAACGTCGACCTGGTGACCGTCGCGCTGAACCTCTACACCCAGGGTATCGACCCTGAGCTGGATTTCTCCGACATCGACGGCGTACGCAAAGTGGTCGAAGAGTGCAACCAGATCGCGGTGCACCCGCGTCATCCTTATGTGGGCGACCTGGTCCACACCGCATTTTCCGGCTCGCACCAGGACGCGATCCGCAAGGGCTTCGCCCAGCAGAAACCCGACACCCTTTGGGAAGTGCCGTACCTGCCGATCGACCCGGCTGACATCGGCCGCAGCTACGAGGCGGTGATCCGCGTGAACAGCCAGTCGGGCAAGGGCGGCATCGCCTACCTGCTGGAGCAGGAATACGGCATCAGCCTGCCGCGTCGCATGCAGATCGAATTCAGCCAAGTGGTGCAGCGCGAAACCGATCGCCTGGGCCTGGAAATGACTGCCCAGCAGATCCATGCCCTGTTGCAGCGTGAATACCTGCAAGCCAACACCCCGTATGCGCTGGTCAGCCATCGCCTGCAGGAAGAAAACGGCAACAGCGCCGTGGAAGTGGAAGTCGCCAGCAAAGGCCAGGGCGAAACCAACCTGCACTGGCGTGGCAAAGGCAACGGCGCGCTGGAAGCGCTGGTGGCCGGCCTGCCGATTCCGGTGGAAATCATGGACTACAACGAACACGCCATCGGCGCCGGCACCAACGCCAAGGCGGCGGCTTACATCGAGCTGCGGGTCAACGGTGAGCGTGCGGTGCATGGCGTGGGCATCGATGAAAACATCACCACCGCCAGCTTCAAGGCGCTGTTCAGTGCACTGAACCGCTCGCTGAGCCAGCCGGAAGCCAAGGCGGCCTGA	MSMLKDPSSKYRAFPTINLPDRTWPSKTITAAPIWCSSDLRDGNQSLIEPMDAAKKLRFWKTLVAVGVKEIEASFPAASQTDFDFVRTLIEEGHIPDDTTIQVLTQAREDLIARTFESLRGAKKAIVHLYNATCPSFRRIVFNQDKEGVKEIAVNAAKLFVKYAAQQPETQWQFEYSPETFSATELEFAKEVCDAVIEVWNPTPERKVILNLPATVEVATPNIYADQIEWFHRNISRRDSVLISLHTHNDRGTGVAATELGLMAGADRVEGCLFGNGERTGNVDLVTVALNLYTQGIDPELDFSDIDGVRKVVEECNQIAVHPRHPYVGDLVHTAFSGSHQDAIRKGFAQQKPDTLWEVPYLPIDPADIGRSYEAVIRVNSQSGKGGIAYLLEQEYGISLPRRMQIEFSQVVQRETDRLGLEMTAQQIHALLQREYLQANTPYALVSHRLQEENGNSAVEVEVASKGQGETNLHWRGKGNGALEALVAGLPIPVEIMDYNEHAIGAGTNAKAAAYIELRVNGERAVHGVGIDENITTASFKALFSALNRSLSQPEAKAA				NA	NA	NA	NA	NA
D1-36_04125	420			hypothetical protein	ATGACCAGCATCAGCGCAACGACCGTAAACCCTTATCCATTGTCTGCTCCCACAGTCACCATCCGCGGGGCTGAGGAAGACAGGGCGGTCAGTCCAGTGACACCGACCGAAACCGCCGAAGACAAAGACAAGCTACTGAAAGTCGACACCAGCGGCGCGAACATCGCAGGTGCCGGCGGCAGCAGCGGCAGCAGCGATGTCATCGAACAGTTGAAGAAGCAGATCGAACGAACCGAAAAATTGCTGGCCGACCAGCAAGCCCAACTGGCCCGCGTCCAGAAAAGCCAGGCCGACCAGGCGCAGAAATCCCAGCAAGCCATGGCGATCCAGACCCAGATCATGGCGACCCAGGCAACCTTGCAGACCCTGCAGGCTGCGCTGTTGCAGGCGATGACGATTTCGATCGATACCCATGCCTGA	MTSISATTVNPYPLSAPTVTIRGAEEDRAVSPVTPTETAEDKDKLLKVDTSGANIAGAGGSSGSSDVIEQLKKQIERTEKLLADQQAQLARVQKSQADQAQKSQQAMAIQTQIMATQATLQTLQAALLQAMTISIDTHA				NA	NA	NA	NA	NA
D1-36_04126	795	yafV		Omega-amidase YafV	ATGCGTGATTTGAGCACCTTGCCCAACCTGAACGTTGCCTTGATCCAGACAACCCTGGCCTGGCATGACCGTCGAGCTAACCTTGAGCATTTCGACGCGCTGCTTGAACAGGCGCGGGGGGCGGACCTGATCATCCTGCCGGAAATGTTCACCACGGGCTTTTCCATGGAGTCCGAGACGTTGGCGGAGCCCGAGAATGGTCCGACGCGCCAATGGCTCAAGGACCAGGCGGCGAAACTGGATGCAGTGATCACCGGCAGCGTGATCGTCCAGGCCGGCGATGGCAGCCATCGTAATCGCTTGCTGTGGGCGCGGCCCGACGGCGAGGTGCTGCATTACGACAAACGCCATCTGTTCCGCATGGCCGGCGAGCACAACCACTACACGCCGGGTGATCAGCAGGTACTGTTCGAGCTCAAGGGATGGCGGATTCGCCCGTTGATCTGCTATGACCTGCGCTTTCCGGCGTGGAGCCGCGACGCCGAGGACACCGATCTGTTGCTGTACACCGCCAACTGGCCGGGCGCTCGGCGTCAGCATTGGAACCGTTTGCTGCCGGCACGGGCCATCGAAAACCTGTGCTATGTGGCGGCGGTGAATCGGATCGGCACCGACGGCAAGGGCTTCGCCTACACCGGCGACAGCCAGGTGCTGGACTTCCAGGGCGAGACCCTGCTCGGCGCCGGCGATGCCGACGGTGTGTTCACGGTTTGCCTGAGCGCCGCGGACCTGGCTGAGTATCGCAAACGCTTTCCAGCGAACCTGGATGCCGATCGTTTCGAATTCATCTATTGA	MRDLSTLPNLNVALIQTTLAWHDRRANLEHFDALLEQARGADLIILPEMFTTGFSMESETLAEPENGPTRQWLKDQAAKLDAVITGSVIVQAGDGSHRNRLLWARPDGEVLHYDKRHLFRMAGEHNHYTPGDQQVLFELKGWRIRPLICYDLRFPAWSRDAEDTDLLLYTANWPGARRQHWNRLLPARAIENLCYVAAVNRIGTDGKGFAYTGDSQVLDFQGETLLGAGDADGVFTVCLSAADLAEYRKRFPANLDADRFEFIY				NA	NA	NA	NA	NA
D1-36_04127	1149	ybdL	COG0436	Methionine aminotransferase	ATGATCACCAGCAAGTTGCCGAACGTCGGCATCACGATTTTCACCCAGATGTCCCAACTCGCCGCACAGACCGGCGCGCTGAACCTGTCCCAGGGGTTTCCCGATTTCGATGGCCCGCAAGCCCTGCGCGATGCGGTCGGCCGGCACATCGCCCAAGGCCACAACCAATATTCCCCCATGACCGGCCTGCCGGCGCTGCGCCAGCAGATTGCGGCCAAAGTTGCCCGCAGCTATGGCGCTACCGTCGATGCCGATCAGGAAGTCACCGTGACCCCTGGCGCGACCCAGGCGATTTTTTGCGCCATCGCGGCGGTGGTTAACAGCGGCGATGAAGTCATCGTCTTCGACCCCGCCTACGATAGCTACGAGCCGTCCGTGCAACTGGCCGGCGGGCGTTGCGTGCATGTGCCATTGAGCCTGGGCGATTTCGCCATCGACTTTGAAAAGCTCGGCGAAGCCCTGAGCCCGCGCACGCGCATGATCATCCTCAACACGCCGCACAACCCCAGCGGTGCGTTGATCAGCCGCGCCGAGCTGGACCAATTGGCGGCGTTGATCCGCGACCGTGACATCTATCTGATCAGCGACGAGGTGTATGAGCACCTGGTGTTCGACGGCGTGGCTCATGTCAGCGTGCTTGCCCATGAAGAACTGTATCGCCGTGCCTTCGTGGTCAGTTCGTTTGGCAAGACCTACCACGTCACCGGCTGGAAGACCGGTTATGTCGTCGCGCCACCGGCCCTGACGGCGGAGTTGCGCAAGGTGCATCAGTACGTCAGTTTTTGCGGCGTCACACCGTTGCAGTATGCCTTGGCCGACTACATGGCCGCGCATCCGGAGCACGTCGACGAACTGCCGGACTTCTACCAGGCCAAGCGCGATCTGTTCTGCGACCTGCTGGCACCGTCGCGGTTCAGCTTCAAGCGCGTCACCGGCACCTATTTCCAGCTGGTGGATTACTCGCAGATCCGCCCGGACCTCAACGACGTCGACATGGCGGTGTGGATGACCCGCGAACATGGCGTGGCGACCATTCCGATCTCGGTCTTCTACCAGAACCCACCGCAAGGCCAGCGCCTGGTGCGCCTGTGCTTTGCCAAGCGCGAGGAGACGCTGCGTGAAGCGGCGCAAAAGCTATGCGTGATTTGA	MITSKLPNVGITIFTQMSQLAAQTGALNLSQGFPDFDGPQALRDAVGRHIAQGHNQYSPMTGLPALRQQIAAKVARSYGATVDADQEVTVTPGATQAIFCAIAAVVNSGDEVIVFDPAYDSYEPSVQLAGGRCVHVPLSLGDFAIDFEKLGEALSPRTRMIILNTPHNPSGALISRAELDQLAALIRDRDIYLISDEVYEHLVFDGVAHVSVLAHEELYRRAFVVSSFGKTYHVTGWKTGYVVAPPALTAELRKVHQYVSFCGVTPLQYALADYMAAHPEHVDELPDFYQAKRDLFCDLLAPSRFSFKRVTGTYFQLVDYSQIRPDLNDVDMAVWMTREHGVATIPISVFYQNPPQGQRLVRLCFAKREETLREAAQKLCVI	PGPT0020025_956	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020025-ybdL-K14287	NA	NA
D1-36_04129	1143	bamB	COG1520	Outer membrane protein assembly factor BamB	GTGATCCGTTGGAAACATGCAGCATTGCTGACCCTGGCCATTCTGGCCGCGGGTTGCAGCAGCAACAGCAAGAAAGAACTGCCTCCGGCCGAACTGACCGACTTCAAAGAAGAAGTCGTGCTGCAGAAGCAATGGAGCCGCTCCATCGGTGACGGCCAGGGTGAAACCTACAATATGCTGGTGCCGGCCATCGACGGCGACACCATCTATGCCGGCGACGTTACTGGCGTCGTCATGGCCATGGATCGCACGAACGGCGACGTGAAGTGGGAAAAAGATCTCGAGCTGCCTGTGTCCGGCGCCGTTGGCGTGGGTTACGGGCTGGTCATGATCGGCACGCTCAAGGGCGAGATCGTCGCCCTTGACGCGAGCAGCGGCGAAGAAAAATGGCGCGCCCGCGTGACCAGTGAAGTCCTCGCGCCGCCTGCCACCAACGGTGATGTGGTCGTGGTCCAGACCCAGGACGACCGTCTGATCGGCCTGGACGCCGCCACCGGCGGCCAGCGCTGGTTGTATGACAGTACCCCGGCGGTCCTGACCCTGCGCGGCACCAGCGCACCGATCGTCACCAACCGCCTCGCGGTGGCTGGCCTGTCGACCGGTAAAGTCGTGGCCCTGGACATTTCCAATGGCGTGCCGGTCTGGGAGCAGCGTGTAGCGATCCCTCAAGGTCGTTCGGAACTGGAACGCGTGGTCGACATCGATGGCGGCTTGCTGCTGTCCGGCGGTACGCTGTACGTCGCCAGCTACCAGGGCCGCGTCGCGGCGCTCGACCTGGAAACCGGTCGTCCGTTGTGGCAGCGCGATGCGTCCAGCTACGCCGGTGTCGCCCAAGGCTTTGGCAGCGTCTACGTAAGCCTGTCCTCGGGCACCGTCGAAGGCGTCGACGAGCGTTCCACCACCGCATTGTGGAGCAACGATTCCCTGGCCCGTCGTCAACTGTCGGCCCCGGAAGTGTTCTCCAGCTACGTTGCAGTGGGTGACCTGGAAGGTTACCTGCACCTGCTCAGCCAGGTGGACGGTCGTTTCGTCGGCCGTGAGCGCATCGACAGCGACGGCCTGCGTGCCCGTCCGCTGGTGGTGGGCAGCATGATCTATGTGTATGGCAACAGCGGCAAACTGGAAGCCCTGACCATCAAGTAA	MIRWKHAALLTLAILAAGCSSNSKKELPPAELTDFKEEVVLQKQWSRSIGDGQGETYNMLVPAIDGDTIYAGDVTGVVMAMDRTNGDVKWEKDLELPVSGAVGVGYGLVMIGTLKGEIVALDASSGEEKWRARVTSEVLAPPATNGDVVVVQTQDDRLIGLDAATGGQRWLYDSTPAVLTLRGTSAPIVTNRLAVAGLSTGKVVALDISNGVPVWEQRVAIPQGRSELERVVDIDGGLLLSGGTLYVASYQGRVAALDLETGRPLWQRDASSYAGVAQGFGSVYVSLSSGTVEGVDERSTTALWSNDSLARRQLSAPEVFSSYVAVGDLEGYLHLLSQVDGRFVGRERIDSDGLRARPLVVGSMIYVYGNSGKLEALTIK				NA	NA	NA	NA	NA
D1-36_04130	642			hypothetical protein	GTGTCGAGTACCGAAGATGAACAGCTGGCGGATTTGAAGGACTGGTGGACGCGCAATGGCAAGCCGCTGGTCACTGGCGGCCTGTTGGCGCTGGTCATCGTGTTCGGCTGGCAGGCCTACCAGAAATACCAGAGCAACCAGTCGCAAGGCGCCTCGATGCTCTACCAGCAATTGCTGGAAACCACCCTGACCCCGGACGGCAAGCCTGACGCGGCCCGCGTGGCGGACCTGGCCGGCAAGCTCAACAAAGAGTTCGGCGGCACCGCCTATGCCCAGTACGGCAGCCTCTTCGTGGCCAAGGTCGCGGTGGACAGCGGCAAGCTGGACGATGCGGCCACCGAGCTGAAAGCGATCGTCGACAAGCCGGCCAACCCGACCCTGGGCGAAGTGGCGCGTCAGCGCCTGGCACAGGTGCTGGCGGCACAGAACAAGGCTGAAGATGCATTGAAGCTGCTCGACGGCGACGCCGACAAGGCGTTCCTGGCGACTCGCGAAGAACTCAAGGGCGACCTGCTGGTACAGCTGGGTCGTGCCGATGAGGCCCATGTGGCCTACCAAAAAGCCAAGGCTGCGCTGTCGGATGAAGCCGCGGTCGGTGGCCTGCAAATCAAGCTGGACGACCTGGCCAAAGGGGATGCGTGA	MSSTEDEQLADLKDWWTRNGKPLVTGGLLALVIVFGWQAYQKYQSNQSQGASMLYQQLLETTLTPDGKPDAARVADLAGKLNKEFGGTAYAQYGSLFVAKVAVDSGKLDDAATELKAIVDKPANPTLGEVARQRLAQVLAAQNKAEDALKLLDGDADKAFLATREELKGDLLVQLGRADEAHVAYQKAKAALSDEAAVGGLQIKLDDLAKGDA				NA	NA	NA	NA	NA
D1-36_04131	1290	hisS	COG0124	Histidine--tRNA ligase	GTGAGCAAGTCTCTGCAAGCCATTCGTGGCATGAACGACATCCTGCCCGAGCAGACGCCCCTGTGGCGCTATTTCGAGGGCACCGTGGCGCGTTTGCTGGATAACTACGGTTATCGGCAGATCCGCATGCCGATCGTCGAGTTCACCGAGCTGTTCAAGCGCTCCATCGGTGAAGTGACCGACATCGTCGAAAAAGAGATGTACACCTTCGACGACCGCAACGGCGATTCCCTGACCTTGCGCCCCGAAGGCACGGCGGCATGCGTGCGTGCAGTGCTCGAGCATGGCATTACCGGCGGGGGCCAGGTGCAGAAACTCTGGTACGTCGGCCCGATGTTCCGCCACGAGCGTCCGCAGAAAGGCCGGTACCGCCAGTTCCACCAGATCGGTCTCGAGGTGTTCAACCTCGAAGGGCCGGACATCGACGCCGAATTGATCGTCATGACCTGGCGCCTGTGGGGCGAGCTGGGGCTGCGCGACGCAGTCAAGCTTGAGCTCAACAGCCTGGGCACCAGCGAGTCCCGTGGCCGCTATCGCGAAGCGCTGGTGGAGTTTCTGTCCGCGCACATCGACAAGCTCGACGAAGACAGCCAGCGCCGCCTCAAGACCAACCCGCTGCGCGTGCTGGACACCAAGAACCCGGAAACCCAAGCGATCCTGGTGGACGCGCCGAAAATGGCCGACTACCTCGACGACGAGTCCCGGGCGCATTTCGAAGGGTTGAAGGCACGCCTGGACGCCGTTGGCATTCCTTATGTGATCAACCCCAAGTTGGTCCGGGGCCTGGATTACTACAGCAAGACCGTCTTCGAGTGGGTCACCGACAAGCTCGGCGCCCAGGGCACCGTGTGTGCCGGTGGTCGCTACGACGGGCTGGTGGAGCAGATGGGCGGCAAGCCGACCCCGGGCGTGGGCTTTGCCATGGGCATCGAACGTTTGGTACTGATGCTTGAAGCTCTGGATAAAGTGCCTGAAGAGCTTTCCCGCCAGGTCGACGTATACCTGTGCGCCTTTGGCGAGGCCGCCGAACTGGCCGCCTTGTCGTTTAGCGAGCGGATCCGTGACCAGCTACCCAACCTGCGCTTGCAGATCAATGCCGGCGCCGGCAGCTTCAAGAGCCAATTCAAGAAGGCCGACAAGAGCGGTGCGCTGTACGCATTGATCCTCGGTGACGACGAACTGGCCCAACAAGTGGTAGGTTTCAAACCCCTGCGTGGCCAGGGCGAACAACAAAGCATTGCCTGGGATGCGCTTGCCGCGCACCTGGCCACCTGCGTCGTGCAGGGTTGA	MSKSLQAIRGMNDILPEQTPLWRYFEGTVARLLDNYGYRQIRMPIVEFTELFKRSIGEVTDIVEKEMYTFDDRNGDSLTLRPEGTAACVRAVLEHGITGGGQVQKLWYVGPMFRHERPQKGRYRQFHQIGLEVFNLEGPDIDAELIVMTWRLWGELGLRDAVKLELNSLGTSESRGRYREALVEFLSAHIDKLDEDSQRRLKTNPLRVLDTKNPETQAILVDAPKMADYLDDESRAHFEGLKARLDAVGIPYVINPKLVRGLDYYSKTVFEWVTDKLGAQGTVCAGGRYDGLVEQMGGKPTPGVGFAMGIERLVLMLEALDKVPEELSRQVDVYLCAFGEAAELAALSFSERIRDQLPNLRLQINAGAGSFKSQFKKADKSGALYALILGDDELAQQVVGFKPLRGQGEQQSIAWDALAAHLATCVVQG				NA	NA	NA	NA	NA
D1-36_04132	1110	ispG	COG0821	4-hydroxy-3-methylbut-2-en-1-yl diphosphate synthase (flavodoxin)	ATGCACGGCGAATCTCCAATCAAGCGTCGCGAGTCCCGGAAAATCTGGGTCGGTAACGTGCCCGTGGGCGGCGATGCGCCAATCGCTGTGCAGAGCATGACCAACAGCGACACCAATGACGTGGCCGCCACGGTCGCGCAGATCAACCGCCTGGAAGCCGCCGGCGTCGACATCGTGCGCGTGTCCGTGCCGGATATGGACGCCGCCGAGGCATTCGGCAAGATCAAGCAACTGGTCAAGGTCCCCTTGGTGGCCGATATCCACTTCGACTACCGCATCGCCCTGCGCGTGGCCGAATTGGGCGTCGATTGCCTGCGCATCAACCCCGGCAACATCGGTCGCGAAGACCGTGTGCGGGCCGTGGTGGATGCCGCCCGTGATCGCGGCATTCCGATCCGCATCGGCGTCAACGCTGGCTCCCTGGAAAAAGACCTGCAGAAAAAATACGGCGAACCGACCCCAGCCGCGCTGGTGGAGTCGGCCCTGCGCCATGTGGAGCACCTCGAACGCCTGAATTTCCAGGACTTCAAGGTCAGCGTAAAGGCGTCCGATGTGTTCATGGCCGTCGAAGCCTACCGCCTGCTGGCCAAGGAAATCGTCCAGCCGCTGCACCTGGGCATCACCGAAGCCGGTGGGTTGCGTTCGGGTACGGTGAAATCCGCCGTCGGCCTCGGTATGCTGCTCGCCGAAGGGATTGGCGATACCATCCGCATCTCGCTGGCGGCTGACCCGGTCGAGGAAGTGAAAGTCGGCTACGACATCCTCAAGTCCCTGCACCTGCGTTCGCGCGGCATCAACTTCATCGCCTGCCCGAGCTGCTCGCGGCAGAACTTCGATGTGGTCAAGACCATGAACGAGCTGGAAGGGCGCCTTGAAGATTTGCTGGTGCCGCTGGATGTCGCGGTGATCGGCTGCGTGGTCAACGGGCCTGGCGAAGCCAAGGAGGCCCATATCGGCCTCACTGGCGGCACACCGAACCTGATTTACATCGATGGCAAGCCGTCGCAGAAACTGACGAATGACAATCTGGTGGATGAGCTGGAAAAGCTGATCCGCCAGAAAGCGGCCGAAAAGGTCGAAGCCGACGCAGCGGTCATCGCGCGCGGTTAA	MHGESPIKRRESRKIWVGNVPVGGDAPIAVQSMTNSDTNDVAATVAQINRLEAAGVDIVRVSVPDMDAAEAFGKIKQLVKVPLVADIHFDYRIALRVAELGVDCLRINPGNIGREDRVRAVVDAARDRGIPIRIGVNAGSLEKDLQKKYGEPTPAALVESALRHVEHLERLNFQDFKVSVKASDVFMAVEAYRLLAKEIVQPLHLGITEAGGLRSGTVKSAVGLGMLLAEGIGDTIRISLAADPVEEVKVGYDILKSLHLRSRGINFIACPSCSRQNFDVVKTMNELEGRLEDLLVPLDVAVIGCVVNGPGEAKEAHIGLTGGTPNLIYIDGKPSQKLTNDNLVDELEKLIRQKAAEKVEADAAVIARG	PGPT0007580_3271	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007580-gcpE|ispG-K03526	NA	NA
D1-36_04133	1032	rodZ	COG1426	Cytoskeleton protein RodZ	ATGAAAGCGGCGCATCCCGAAGTTGTAGCAGCGACTCGCGTAAATCCCGGTGAGACCCTGCGTCAAGCCCGCGAAAGCAATGGTTGGTCGCTGGCCGAAGTGGCCCTCAAGCTCAACCTCACCGTGACTTCCCTGAGCAACCTGGAAGCAGGCGCGTTCGACAAATTGCCAGGGCATACCTTTGCCCGGGGCTATATCCGCGCCTATGCCAAACTGCTTGGCATGGACCAGACCACGCTGGTCCAGCAATTCGATCAATACACCGGTTCCGATGCCCAGGGCAGCAGCGTGCACAGCCTGGGTCGTATCGAGGAGCCGGTTCGCGTTTCCCACACCATTTTGCGAATCGTCAGTCTGTTGCTGCTGATTGCGGTGATTGGTGGTGGTTTTGTCTGGTGGCAAGACCAGGCTTCCTTGCGTGGCAAGGAGCCGGTTGCCATGAACCCCGAGCACGTCGAAGTCGAAGGCGCCGACGGCACGACCCAGATCCATCCGCTGGACGAACCGGAAGACCAGGCCGTCGTCGAAGGCCAGGCCGAAGGCGAAACCGCCCTGGCCCTGCCGCAAGGCCCTGACAATGGCGAGACCGGTGCCGCCGCGGGTACCGAATCAGCCGCTCCAACGGCCCCAGCCACTGCGCCCGCACCGACCGCGCCGGTCCAGGCTGGCAGCGCTCCGGCGGCACCAGCAGCCCCGGCAGCTCCGGCCCCTGTCACGCCCGCGCCGACCGTGGCGGCTCCAACGGTGCCGGCGGCGCCGGTTGCTCCAACCGCTCAGGCCCCCGCACCGGGCGACGGCCAGGTACAGATTCAGTTCACCGCCGATTGCTGGACGCAGATCACCGACGGCAACGGCAAGGTGTTGTTCAGTGGCCTCAAGCGCAAGGGCGACAGCACCTCAGTCAACGGCAAGCCACCGTTTGCCGTACGCCTGGGTTATGCCCGTGGCGCGCAGGTCAGCTACAACGGCCAGCCGGTCGATGTGGCTCCGTTCACCAGTGGCGAGACCGCTCGCCTGAAATTGGGTCAATAA	MKAAHPEVVAATRVNPGETLRQARESNGWSLAEVALKLNLTVTSLSNLEAGAFDKLPGHTFARGYIRAYAKLLGMDQTTLVQQFDQYTGSDAQGSSVHSLGRIEEPVRVSHTILRIVSLLLLIAVIGGGFVWWQDQASLRGKEPVAMNPEHVEVEGADGTTQIHPLDEPEDQAVVEGQAEGETALALPQGPDNGETGAAAGTESAAPTAPATAPAPTAPVQAGSAPAAPAAPAAPAPVTPAPTVAAPTVPAAPVAPTAQAPAPGDGQVQIQFTADCWTQITDGNGKVLFSGLKRKGDSTSVNGKPPFAVRLGYARGAQVSYNGQPVDVAPFTSGETARLKLGQ				NA	NA	NA	NA	NA
D1-36_04134	759			hypothetical protein	ATGTCCCTGCGCTTCGCGCTGCTGTTGCTGTTGGCCGGACTCTGCTCCGGTTGTGTCCTGTCGGGTGACTACAACCCGATGAAGACCAGCAAAGGGCGCGACGAGGCGCGCGAAGCCTATGTGCAGTTGGGCATTGGCTACTTGCAGCAGGGCATGACCGAGCGGGCCAAGGTGCCCCTCAAGAAAGCCCTGGAACTGGACAGCTCCGACGCCGATGCCAACGCGGCGCTGGCGTTGGTGTTCCAGGCGGAGCTGGAGCCGGAACTGGCTGACGAGCATTTTCGCAAGGCGCTGTCGGCCCAGCCGCAAGATGCCCGGATCCTGAACAATTACGGCAGTTTTCTCTACGAACAGGCCCGCTACAAGGACGCCTACGAACGTTTCGAGCAAGCCGCCGCCGATACCCTTTACCCCGAGCGCTCACGGGTCTTCGAGAACCTCGGCATGACCGCCGCGAAACTCGGCCAGCGCGACCTGGCCCGCCAGCAGTTGGAAAAAGCGCTGCGGCTCAACCGCCAACAACCCCGTGCGTTGCTGGAAATGGCTGAGTTGTCCTACGAAGACAGGCATTATGTGCCCGCGCGCGACTATTACGAGCGTTTTAGCCTGCTCAGCGAGCAAAATGCACGTAGTCTATTGCTCGGCGTTCGGCTGGCACATGTGTTTGAAGATCGCGACAAGGCCGCAAGCTACGGCCTGCAACTCAAAAGACTTTATCCCGGTACGCCGGAATATCAGCAATACCTGTCGGAGCAATGA	MSLRFALLLLLAGLCSGCVLSGDYNPMKTSKGRDEAREAYVQLGIGYLQQGMTERAKVPLKKALELDSSDADANAALALVFQAELEPELADEHFRKALSAQPQDARILNNYGSFLYEQARYKDAYERFEQAAADTLYPERSRVFENLGMTAAKLGQRDLARQQLEKALRLNRQQPRALLEMAELSYEDRHYVPARDYYERFSLLSEQNARSLLLGVRLAHVFEDRDKAASYGLQLKRLYPGTPEYQQYLSEQ	PGPT0015935_720	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015935-pilF-K02656	NA	NA
D1-36_04135	1149	rlmN	COG0820	Dual-specificity RNA methyltransferase RlmN	ATGACTACATCGAACGGCAAAACCAACCTGTTGGGCCTGACCCAGCCGGAAATGGAGAAATTCTTCGACTCGATCGGGGAGAAGCGTTTCCGTGCCGGCCAGGTGATGAAATGGATTCACCACTTTGGCGTCGACGATTTCGACGCCATGACGAATGTCGGCAAGGCCCTGCGCGAAAAGCTCAAGGCTGTTGCCGAGATTCGCGGTCCCGAAGTGGTCAGCCAGGACATCTCCAGCGACGGCACCCGTAAATGGGTAGTGCGCGTGGCTTCCGGCAGCTGCGTCGAGACCGTCTACATTCCCCAGGGCAAGCGCGGCACCTTGTGCGTTTCGTCCCAGGCAGGCTGTGCCCTGGATTGCAGTTTCTGCTCCACCGGCAAGCAAGGCTTCAACAGCAACCTCACCGCCGCCGAAGTGATCGGCCAGGTGTGGATTGCCAACAAATCCTTTGGCAGTGTCCCGGCAACCGTCGACCGTGCCATCACCAACGTGGTGATGATGGGCATGGGAGAGCCGCTGCTGAACTTCGACAACGTCGTTTCCGCCATGCACCTGATGATGGATGACCTGGGCTACGGCATTTCCAAGCGCCGCGTGACCCTATCCACGTCCGGCGTGGTGCCGATGATCGATGAGCTGGCCAAGCACATCGACGTCTCCCTGGCGTTGTCGCTGCACGCACCCAATGACGCATTGCGTAACCAATTGGTGCCGATCAACAAGAAATATCCGCTTAAGATGCTGCTCGAGTCGTGCCAGCGCTATATGTCGTCCCTGGGCGAAAAGCGCGTGCTGACCATCGAATACACCCTGCTCAAGGACGTGAACGACAAGGTTGAACACGCGGTCGAGATGATCGAGCTGCTCAAGAACATCCCGTGCAAGATCAACCTGATCCCCTTCAACCCGTTCCCGCATTCCGGTTACGAGCGTCCGAGCAACAACGCGATCCGTCGCTTCCAGGATCAGCTCCACCACGCTGGCTTCAACGTCACCGTGCGCACCACCCGCGGCGAAGACATCGACGCCGCGTGTGGCCAATTGGTTGGACAGGTGCTGGATCGCACCCGTCGCAGCGAACGCTACATCGCCGTGCGCGAATTGAACGCCGCCGACGAAGTCGCGCAGAACGCTGCGAACAGTCACTAA	MTTSNGKTNLLGLTQPEMEKFFDSIGEKRFRAGQVMKWIHHFGVDDFDAMTNVGKALREKLKAVAEIRGPEVVSQDISSDGTRKWVVRVASGSCVETVYIPQGKRGTLCVSSQAGCALDCSFCSTGKQGFNSNLTAAEVIGQVWIANKSFGSVPATVDRAITNVVMMGMGEPLLNFDNVVSAMHLMMDDLGYGISKRRVTLSTSGVVPMIDELAKHIDVSLALSLHAPNDALRNQLVPINKKYPLKMLLESCQRYMSSLGEKRVLTIEYTLLKDVNDKVEHAVEMIELLKNIPCKINLIPFNPFPHSGYERPSNNAIRRFQDQLHHAGFNVTVRTTRGEDIDAACGQLVGQVLDRTRRSERYIAVRELNAADEVAQNAANSH				NA	NA	NA	NA	NA
D1-36_04136	426	ndk	COG0105	Nucleoside diphosphate kinase	ATGGCTGTTCAACGTACTTTCTCCATCATCAAGCCTGACGCCGTTGCTAAAAACGTGATCGGCAAGATCGTTACCCGCTTCGAAGACGCTGGCCTGCGCGTTGTAGCTTCGAAAATGAAGCAACTGTCCAAAGCCGAAGCCGAAGGCTTCTACGCTGAGCACAGCGAGCGCGGTTTCTTCGGTGAGCTGGTTGCTTTCATGACTTCCGGTCCGGTTGTCGTTCAGGTGCTGGAAGGCGAAAACGCCATCGCTCGCAACCGTGAGCTGATGGGCGCTACCAACCCTAAAGAAGCTGCTGCCGGCACCATCCGTGCTGACTTCGCTGAATCCATCGACGCCAACGCCGTCCACGGTTCGGACTCCGAAGCTGCCGCTGCTCGCGAAATCGCTTACTTTTTCTCCGCTACTGAAGTAACCACTCGCTAA	MAVQRTFSIIKPDAVAKNVIGKIVTRFEDAGLRVVASKMKQLSKAEAEGFYAEHSERGFFGELVAFMTSGPVVVQVLEGENAIARNRELMGATNPKEAAAGTIRADFAESIDANAVHGSDSEAAAAREIAYFFSATEVTTR	PGPT0021210_3568	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021210-ndk-K00940	NA	NA
D1-36_04137	237			hypothetical protein	ATGCGGCCGAAGCGCCGCACTGATGGTGACACTGTCATGAGCTATGGTTGGAATGATGTACAGCGCATCGCAGAAGAATTGGCTGAAGCCCATGAGGGCCTCGATCCGTACTCTGTAGGTTTCGTCCGTCTGCAGCAGATGATCCTGGAGCTGCCTGGCTTCGATGCCACGTCTGGCCGAGTCGGCGAGAAGGTGTTGGAAGCGGTTCAGGAGCTCTGGGCCGCCGAATTGGACTGA	MRPKRRTDGDTVMSYGWNDVQRIAEELAEAHEGLDPYSVGFVRLQQMILELPGFDATSGRVGEKVLEAVQELWAAELD				NA	NA	NA	NA	NA
D1-36_04138	342	fdx_1	COG0633	2Fe-2S ferredoxin	ATGCCGCAGGTGATTTTTCTGCCCCACGAGAAGTTCTGTCCGGAGGGCATGGTCGTAGAGGCTGAGCCCGGAATCTCCATTCTCGAGCTGGCCCATGAGCACCATATCGAGATGGAAAGTGCCTGTGGCGGCGTCTGTGCTTGCACGACCTGCCATTGCATCATTCGCGAAGGCTTCGACTCGCTGGAAGAGGCGGACGAACTGGAGGAAGACTTCCTTGATCGGGCCTGGGGACTGGAAGCGCAATCGCGCCTGGGTTGCCAGGTTATCGTCGGCACCGAAGACCTGACCGTCGAAATCCCGAAATATTCGCTTAACCATGCGGCCGAAGCGCCGCACTGA	MPQVIFLPHEKFCPEGMVVEAEPGISILELAHEHHIEMESACGGVCACTTCHCIIREGFDSLEEADELEEDFLDRAWGLEAQSRLGCQVIVGTEDLTVEIPKYSLNHAAEAPH	PGPT0006786_222	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-ENERGY_METABOLISM	PUTATIVE-FE-S_CLUSTER_BIOGENESIS,PGPT0006786-fdx|cndB-K04755
D1-36_04139	1863	hscA	COG0443	Chaperone protein HscA	ATGGCCCTACTGCAGATCGCCGAACCCGGCCAAAGTCCACAACCGCACCAGCGTCGCCTGGCTGTCGGGATCGACTTGGGTACCACCAATTCCCTGGTCGCTGCCTTGCGCAGCGGTCTTTCCGAACCGCTGGCCGACGAGCAGGGGCGGGTCATCCTGCCGTCCGCCGTGCGCTACCACGCCGATCGCGTCGAAGTAGGCGATTCGGCCAGGCTGGCCGCCGCCAGCGATCCCCTGAACACCATTGTGTCGGTCAAGCGCTTGATGGGTCGTGGTCTGTCCGACGTCAAGCAATTGGGCGAGCAGCTGCCGTACCGCTTCGTTGGCGGCGAGTCCCACATGCCGTTCATCGAGACCGTGCAGGGGCCGAAAAGCCCGGTAGAAGTGTCCGCCGACATCCTCAAGGTCCTGCGTCAGCGCGCCGAAGCGGCGTTGGGTGGTGAGCTGGTGGGCGCAGTGATTACCGTCCCGGCGTATTTCGACGACGCTCAGCGCCAAGCCACCAAGGACGCTGCCAAGCTCGCCGGCCTCAACGTGTTGCGCCTGCTCAATGAGCCGACCGCCGCTGCCGTTGCCTACGGCCTGGACCAGCACGCCGAAGGCCTGGTCGCGATTTACGACCTGGGTGGCGGTACTTTCGATATTTCGATCCTGCGCCTGACCGGCGGTGTCTTCGAAGTCCTCGCTACCGGTGGCGACAGCGCCCTGGGCGGCGACGATTTCGACCACGCGATCGCTGGCTGGATCATCGAGCAGGCCGGCCTCTCTGCCGACCTCGACCCAGGTGCCCAGCGCCATCTGCTGCAAACCGCCTGCGCGGCCAAGGAAGCCTTGACCGACGCTGCCTCCGTTGAAGTCGCTTATGGCGACTGGAGCGCCGCCCTTACCCGCGAAGCCTTCAACGCACTGATCGAACCCATGGTTGCCCGCAGCCTCAAGGCCTGCCGCCGTGCCGTGCGTGATTCCGGCGTGGAGCTTGAGGATGTGAAAGCGGTGGTCATGGTCGGTGGTTCGACCCGAGTGCCGCGGGTTCGTGAAGCCGTTGCCGAGGCCTTCGGCCGCCAGCCGCTGACCGAAATCGACCCGGACCAGGTAGTCGCCATCGGCGCCGCGATCCAGGCCGACACCCTGGCCGGCAACAAGCGCGACGGTGGCGAGCTGCTGTTGCTCGACGTAATCCCGCTGTCCCTGGGGCTGGAAACCATGGGTGGCCTGATGGAGAAGGTAATTCCGCGCAACACTACCATCCCGGTTGCCCGCGCCCAGGACTTCACCACTTATAAAGACGGCCAGTCGGCCATGATGATCCACGTGCTGCAAGGCGAGCGTGAGCTGATCAGCGACTGCCGTTCCCTGGCCCGCTTCGAATTGCGCGGCATCCCGGCGATGGTTGCCGGTGCAGCGAAGATCCGCGTGACCTTCCAGGTCGACGCCGACGGTCTGCTCAACGTCTCCGCCCGCGAGTTGGGTTCGGGCGTGGAGGCGAGCATCCAGGTCAAGCCGTCCTATGGCCTGACCGACGGTGAAATTGCCAAGATGCTCAAGGACTCGTTCCAGCACGCCAGCGACGACAAGGTTGCCCGTGTGTTGCGTGAACAGCAAGTCGACGGCCAGCGTCTGATCGAAGCCGTGCAAGCCGCCCTTGAAGCGGATGGCGACCGTTTGCTCGACGCCGAGGAACGCATGGTCATCGAGCTGCAAGTGCAGGAATTGTCCGAATTGCTCAAGGGCACCGATGGTTATGCCATCGAGCAGCAGACCAAGCGTTTGTCGCAGGTCACCGATGCCTTTGCTGCCCGCCGCCTGGACTCGACGGTGAAAGCCGCCCTGGCGGGGCGCAACCTGAATGAAATCGAGGAATAA	MALLQIAEPGQSPQPHQRRLAVGIDLGTTNSLVAALRSGLSEPLADEQGRVILPSAVRYHADRVEVGDSARLAAASDPLNTIVSVKRLMGRGLSDVKQLGEQLPYRFVGGESHMPFIETVQGPKSPVEVSADILKVLRQRAEAALGGELVGAVITVPAYFDDAQRQATKDAAKLAGLNVLRLLNEPTAAAVAYGLDQHAEGLVAIYDLGGGTFDISILRLTGGVFEVLATGGDSALGGDDFDHAIAGWIIEQAGLSADLDPGAQRHLLQTACAAKEALTDAASVEVAYGDWSAALTREAFNALIEPMVARSLKACRRAVRDSGVELEDVKAVVMVGGSTRVPRVREAVAEAFGRQPLTEIDPDQVVAIGAAIQADTLAGNKRDGGELLLLDVIPLSLGLETMGGLMEKVIPRNTTIPVARAQDFTTYKDGQSAMMIHVLQGERELISDCRSLARFELRGIPAMVAGAAKIRVTFQVDADGLLNVSARELGSGVEASIQVKPSYGLTDGEIAKMLKDSFQHASDDKVARVLREQQVDGQRLIEAVQAALEADGDRLLDAEERMVIELQVQELSELLKGTDGYAIEQQTKRLSQVTDAFAARRLDSTVKAALAGRNLNEIEE	PGPT0014555_5374	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014555-dnaK-K04043	NA	NA
D1-36_04140	522	hscB	COG1076	Co-chaperone protein HscB	GTGGGTACTCCTTGTCATTTTGCGTTGTTCCAGTTGCAGCCTGCTTTCCAGCTGGACCTCGATCAGTTGTCCGCGCGTTACCTGGAACTGGCCCGTGGTGTTCATCCCGACCGCTTTGCCGATGCCTCCGAGGCGGAGCAGCGGCGGGCGCTCGAGCAGTCGGCGAACCTCAACGAGGCTTACCAGACGCTCAAGAACCCGGCCAAGCGTGCGCGCTACCTGCTGGCCATCAGCGGCCATGAGTTGCCGCTGGAGGTCACGGTCCATGATCCCGAGTTTCTTTTGCAGCAGATGCAATGGCGCGAAGAGCTCGAAGACCTGCAGGACAGCGCGGATCTGGCCGGTGTCGCGGTATTCAAGCGTCGCTTGAAAGACGCCCAGCAAGAACTGAACGAAGACTTCGCAGCCTGCTGGAACGATGCCGCGCAACGCGAACAGGCCGAGCGCCTGATGCGGCGCATGCAGTTCCTCGACAAGCTCACCCACGAAGTGCGCCAGTTAGAAGAGCGCCTCGACGATTAA	MGTPCHFALFQLQPAFQLDLDQLSARYLELARGVHPDRFADASEAEQRRALEQSANLNEAYQTLKNPAKRARYLLAISGHELPLEVTVHDPEFLLQQMQWREELEDLQDSADLAGVAVFKRRLKDAQQELNEDFAACWNDAAQREQAERLMRRMQFLDKLTHEVRQLEERLDD				NA	NA	NA	NA	NA
D1-36_04141	324	iscA	COG0316	Iron-binding protein IscA	ATGGCTATCCAGATGACAGAAGCGGCAGCTAACCATATCCAGCGCTCCCTTGCGGGGCGCGGCAAGGGCGAGGGTATCCGCCTGGGTGTTCGCACCACGGGCTGTTCTGGCCTCGCCTATGTACTGGAATTCGTCGACGAAGTGGGCGAAGACGATCAGGTGTTCGAGAGTCATGGTCAGAAAGTGATCATTGACCCGAAGAGCCTGACGTACCTGGACGGCACCGAGCTGGATTTCGTCAAGGAAGGGTTGAACGAAGGCTTCAAGTTCAACAACCCCAACGTGCGCGGTGAGTGTGGCTGCGGCGAAAGCTTCAACATCTGA	MAIQMTEAAANHIQRSLAGRGKGEGIRLGVRTTGCSGLAYVLEFVDEVGEDDQVFESHGQKVIIDPKSLTYLDGTELDFVKEGLNEGFKFNNPNVRGECGCGESFNI				NA	NA	NA	NA	NA
D1-36_04142	387	iscU	COG0822	Iron-sulfur cluster assembly scaffold protein IscU	ATGGCATATAGCGAAAAGGTCATCGACCACTACGAGAACCCGCGCAACGTCGGCAAGATGGACGCGCAGGATCCTGACGTCGGCACCGGCATGGTCGGTGCTCCGGCGTGCGGCGACGTGATGCGCCTGCAGATCAAGGTCAACGAGCAAGGCATCATCGAGGATGCCAAGTTCAAGACCTATGGCTGCGGCTCGGCCATCGCGTCCAGCTCCCTGGCTACTGAGTGGATGAAGGGCAAGACCCTCGATGAAGCCGAAACCATCAAGAACACCCAGCTGGCCGAAGAACTGGCCCTGCCGCCAGTGAAGATCCACTGCTCGGTACTCGCCGAAGACGCCATCAAGGCCGCCGTTCGCGATTACAAGCAGAAGAAAGGCTTGATCTGA	MAYSEKVIDHYENPRNVGKMDAQDPDVGTGMVGAPACGDVMRLQIKVNEQGIIEDAKFKTYGCGSAIASSSLATEWMKGKTLDEAETIKNTQLAEELALPPVKIHCSVLAEDAIKAAVRDYKQKKGLI	PGPT0000075_2825	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-ATMOSHPHERIC_NITROGEN_FIXATION	N-FIX-NITROGENASE_BIOSYNTHESIS,PGPT0000075-nifU|iscU-K04488	NA	NA
D1-36_04143	1215	iscS_2	COG1104	Cysteine desulfurase IscS	ATGAAATTGCCGATTTACCTTGATTACTCTGCGACCACCCCGGTTGATCCGCGTGTCGCGCAAAAGATGAGTGAATGCCTGCTGGTCGACGGAAACTTCGGTAACCCGGCTTCGCGCTCCCACGTGTTTGGCTGGAAAGCCGAAGAATCGGTCGAAAACGCTCGTCGCCAGGTCGCCGACCTGGTCAACGCCGACCCGCGCGAGATCGTCTGGACCTCCGGTGCCACCGAATCCGACAACCTGGCAATCAAGGGTGTCGCGCATTTCTACCACACCAAGGGCAAGCACTTGATCACCTCCAAGATCGAGCACAAGGCTGTCCTGGACACCACGCGTCAACTGGAGCGTGAAGGCTTCGAAGTCACCTACATCGAGCCCGGTGAAGACGGCCTGATCACCCCGGCCATGGTCGAAGCCGCCCTGCGCGACGACACCATCCTGGTTTCGATCATGCACGTGAACAACGAAATCGGCACCGTCAACGACATCGCCGCCATCGGCGAGCTGACCCGTTCCAAGGGCGTCCTGTTCCACGTCGACGCGGCGCAATCCACTGGCAAGGTCGACATCGACCTGTCGAAGCTGAAAGTCGACCTGATGTCGTTCTCGGCCCACAAGACCTACGGTCCTAAAGGCATCGGCGCCCTGTACGTCAGCCGCAAGCCGCGTGTTCGCCTCGAAGCGACCATGCACGGCGGTGGTCACGAGCGCGGCATGCGTTCCGGTACCCTGGCGACCCACCAGATCGTCGGCATGGGCGAAGCGTTCCGAGTTGCCAAGGAAGACATGGCTGCCGAAAACGTGCGGATCAAGGCCTTGAGCGATCGTTTCTTCAAGCAGGTCGAGCACCTCGAAGAGCTGTACGTCAATGGCAGCATGACCGCCCGCGTCCCGCACAACCTGAACCTGAGCTTCAACTACGTTGAAGGTGAGTCGCTGATCATGGCGCTCAAGGATCTGGCCGTGTCGTCCGGTTCGGCGTGCACCTCGGCGTCGCTGGAGCCTTCGTACGTACTGCGCGCCCTGGGCCGCAACGACGAACTGGCCCACAGCTCCATCCGCTTCACCTTCGGCCGCTTCACCACCGAAGAAGAAATCGATTATGCCGCGCAGAAAGTCTGCGAGGCAGTGACCAAGCTGCGCGCACTGTCGCCGCTGTGGGACATGTACAAAGACGGCGTCGACATTTCGAAAATCGAATGGGCAGCGCACTGA	MKLPIYLDYSATTPVDPRVAQKMSECLLVDGNFGNPASRSHVFGWKAEESVENARRQVADLVNADPREIVWTSGATESDNLAIKGVAHFYHTKGKHLITSKIEHKAVLDTTRQLEREGFEVTYIEPGEDGLITPAMVEAALRDDTILVSIMHVNNEIGTVNDIAAIGELTRSKGVLFHVDAAQSTGKVDIDLSKLKVDLMSFSAHKTYGPKGIGALYVSRKPRVRLEATMHGGGHERGMRSGTLATHQIVGMGEAFRVAKEDMAAENVRIKALSDRFFKQVEHLEELYVNGSMTARVPHNLNLSFNYVEGESLIMALKDLAVSSGSACTSASLEPSYVLRALGRNDELAHSSIRFTFGRFTTEEEIDYAAQKVCEAVTKLRALSPLWDMYKDGVDISKIEWAAH	PGPT0000065_2257	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
D1-36_04144	492	iscR	COG1959	HTH-type transcriptional regulator IscR	ATGCGACTGACTACAAAAGGCCGATACGCCGTGACCGCAATGCTGGATCTGGCATTGCATGCGCAGCACGGGCCGGTGTCCCTGGCCGATATCTCCGAGCGCCAGGGCATCTCCCTGTCTTACCTCGAACAGCTGTTCGCCAAGCTGCGCCGCAGCAACCTGGTTTCCAGCGTTCGTGGTCCCGGTGGCGGCTACCAGCTGTCACGCGAGATGCAAGGCATCCAGGTCGCCCAGGTGATCGATGCCGTGAACGAATCGGTCGATGCGACCAAATGCCAGGGGCTGGGCGATTGCCATGGCGGCGATACATGCCTGACCCACCATCTGTGGTGTGACTTGAGCCTGCAGATCCACGAGTTTCTGAGCGGTATCAGCTTGGCCGACCTTGTAACTCGCCGTGAGGTGCAAGAAGTCGCCCAGCGTCAGGACCAGCGCCGTTGCAATGGCAAGGCGCCGCACCTGGACAAGATCGAAGCGTCCGCCGTCGAATGA	MRLTTKGRYAVTAMLDLALHAQHGPVSLADISERQGISLSYLEQLFAKLRRSNLVSSVRGPGGGYQLSREMQGIQVAQVIDAVNESVDATKCQGLGDCHGGDTCLTHHLWCDLSLQIHEFLSGISLADLVTRREVQEVAQRQDQRRCNGKAPHLDKIEASAVE	PGPT0004960_606	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE-ANTIMONY_HOMEOSTASIS,PGPT0004960-iscR-K13643	NA	NA
D1-36_04145	777	cysE	COG1045	Serine acetyltransferase	ATGTTCGAACGTTTGCGTGAAGATATCCAGAGCGTCTTTCATCGTGACCCGGCGGCGCGCAATGCCTTTGAAGTATTGACCTGCTACCCGGGGATGCACGCCATCTGGATCCATCGCCTGTCCGGCGCCTTGTGGAACATGGGCTGGAAATGGCTGGCGCGGCTGGTCTCGAACTTCGGCCGCTGGCTGACCGGGATCGAGATCCATCCGGGCGCCAAGGTCGGTCGCCGGTTCTTCATCGATCATGGCATGGGCATCGTCATTGGCGAGACCGCCGAGATCGGCGACGACGTGACGCTGTACCAGGGTGTGACCCTCGGCGGCACCAGCTGGAACAAAGGCAAGCGCCACCCAACGCTGGAGGACGGCGTCGTCGTCGGTGCCGGCGCCAAGGTGCTCGGGCCGTTCACGGTAGGGGCGGGGGCGAAGGTCGGTTCCAACGCCGTGGTTACCAAGGCCGTGCCGCCTGGCGCGACCGTGGTGGGTATTCCGGGGCGGATCATCGTCAAATCGGATGAAGAGCAGGACGCACGGCGCAAAGCCATGGCCGAAAAGATCGGCTTCGACGCCTACGGTGTCGGCGAAGACATGCCCGACCCGGTCGCCCGCGCCATCAACCAGCTGCTGGACCATTTGCAGGCCGTCGATGGACGCCTGGAGGGGATGTGCGGAGCCCTCAAGGACCTGGGCAGTAATTATTGTGCCAAGGACCTGCCTGAGCTGCGCGAAGAAGACTTCGCGTGTGTGAAGGACAAGGATGAGACCCAGGCTGGCTGA	MFERLREDIQSVFHRDPAARNAFEVLTCYPGMHAIWIHRLSGALWNMGWKWLARLVSNFGRWLTGIEIHPGAKVGRRFFIDHGMGIVIGETAEIGDDVTLYQGVTLGGTSWNKGKRHPTLEDGVVVGAGAKVLGPFTVGAGAKVGSNAVVTKAVPPGATVVGIPGRIIVKSDEEQDARRKAMAEKIGFDAYGVGEDMPDPVARAINQLLDHLQAVDGRLEGMCGALKDLGSNYCAKDLPELREEDFACVKDKDETQAG	PGPT0020265_2988	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
D1-36_04146	771	trmJ		tRNA (cytidine/uridine/adenosine-2'-O-)-methyltransferase TrmJ	TTGTTGCAGAACATTCGTGTCGTCCTGGTCAATACCAGCCATCCGGGAAATATCGGCGGAGCTGCGCGGGCCATGAAGAACATGGGCCTGTCGCGGCTGGTGCTGGTCGAGCCCCGTTCGTTTCCCCATCACGAAGCCGATGCCCGGGCATCCGGCGCGAACGACATCCTGGCCAATGCCGAGGTCGTCGCCACGTTGGAAGACGCCCTGGTGGGTTGCAACCTGGTGCTCGGCACCAGCGCCCGCGATCGGCGTATCCCGTGGCCGCTGCTCGATCCCCGCGAATGCGGCACCAAAGTGGTCGAGGAGGCGGGGCAGGGCGTGCAGATCGCTTTGGTGTTCGGCCGAGAAGATTCCGGCCTCACCAACGAAGAACTGCAGCGATGTCATTATCACGTGCATATCCCTTCCGACCCTGGATTCAGCTCGCTGAACCTTGGGGCGGCGGTGCAGGTGTTGAGCTATGAAGTGCGCATGGCCTGGCTGCAAGCCGAAGGCCAGCCCAGCAAGGTGGAAAAATTCGAGGCGACGTCGCCGCGCAGTGAGACACTGGCGACCATGGACGAACTGGAGCGATTCTATGAGCACCTGGAACAAGCCCTGGTGGACATCGAATTCCTCGACCCGGACAAGCCTCGACACTTGATGGCGCGCCTGCGTCGGTTGTACGGACGAAGCTCGGTGAGCCGGGCGGAAATGAATATATTGCGCGGCATCCTCACGGAAACCCAGAAAGCGGCCCGTGGCGAGCTGATTAAGCGGAAGGAATAA	MLQNIRVVLVNTSHPGNIGGAARAMKNMGLSRLVLVEPRSFPHHEADARASGANDILANAEVVATLEDALVGCNLVLGTSARDRRIPWPLLDPRECGTKVVEEAGQGVQIALVFGREDSGLTNEELQRCHYHVHIPSDPGFSSLNLGAAVQVLSYEVRMAWLQAEGQPSKVEKFEATSPRSETLATMDELERFYEHLEQALVDIEFLDPDKPRHLMARLRRLYGRSSVSRAEMNILRGILTETQKAARGELIKRKE				NA	NA	NA	NA	NA
D1-36_04147	819	suhB	COG0483	Inositol-1-monophosphatase	ATGCAGCCCATGCTGAATATCGCGCTGCGCGCCGCCCGCAGCGCCAGTGAACTGATCTTCCGCTCCATCGAGCGCCTGGATACCATCAAGGTCGATGAAAAAGACGCCAAGGACTACGTGTCCGAGGTCGATCGCGCCGCCGAACAGAAAATCGTCGACGCCCTGCGCAAGGCTTACCCGAACCACTCTATCCGCGGTGAAGAGACCGGCATGCACGCCGGTACCGGCATCGAAGGCGAAGAGTACCTCTGGATCATCGATCCGCTGGACGGCACCACCAACTTCCTGCGCGGCATCCCCCACTTCGCTGTCAGCATCGCCTGCAAATACCGTGGCCGCCTGGAACACGCCGTCGTGCTGGACCCGGTTCGCCAGGAAGAATTCACCGCCAGCCGTGGCCGTGGCGCCCAATTGAACGGTCGTCGCCTGCGCGTCAGCGGCCGCACCAGCCTGGACGGCGCCCTGCTGGGTACCGGCTTCCCGTTCCGTGACGACCAGATGGACAACCTGGACAACTACCTGGGCATGTTCCGTGCCCTGGTCGGCCAGACCGCCGGCATCCGCCGCGCCGGTGCCGCCAGCCTGGACCTCGCTTATGTCGCGGCCGGTCGTTTCGATGCGTTCTGGGAGTCGGGCCTGTCAGAGTGGGACATGGCAGCAGGCGCTCTGCTGATCCAGGAAGCGGGTGGCTTGGTGAGCGACTTCACTGGCGGTCATGACTTCCTTGAAAAAGGCCACATCGTTGCTGGCAACACCAAATGCTTCAAGGCTGTGCTGACGGCGATCCAGCCACACCTGCCGGCCTCGCTGAAGCGCTAA	MQPMLNIALRAARSASELIFRSIERLDTIKVDEKDAKDYVSEVDRAAEQKIVDALRKAYPNHSIRGEETGMHAGTGIEGEEYLWIIDPLDGTTNFLRGIPHFAVSIACKYRGRLEHAVVLDPVRQEEFTASRGRGAQLNGRRLRVSGRTSLDGALLGTGFPFRDDQMDNLDNYLGMFRALVGQTAGIRRAGAASLDLAYVAAGRFDAFWESGLSEWDMAAGALLIQEAGGLVSDFTGGHDFLEKGHIVAGNTKCFKAVLTAIQPHLPASLKR	PGPT0018535_2745	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
D1-36_04148	549			hypothetical protein	GTGAACAAATCGATGCTGGTTGGTGCGGTATTGGGTGCTGTCGGTGTAACAGCCGGTGGTGCGGTCGCCACCTACAGCTTGGTAAAAAGTGGTCCTGAGTATGCGCAAGTATTGGCCGTGGAACCGGTCAAGACCCAGATCAAGACTCCGCGTGAAGTGTGCAAGGACGTCACCGTGACTCGGCAGAAGCCCGTCCAGGACCAACACCAGATCGCTGGCACCGTGCTCGGTGCTGTGGCCGGTGGCCTGTTGGGCAACCAGATCGGCGGCGGCACCGGCAAGAAAATCGCCACGGTGGCGGGTGCGGCCGGCGGTGGTTATGCCGGTAACAAGATCCAGGAAGGCATGCAAGAACGCGACACGTACACTACCACCCAAACTCGCTGCAACACGGTCAATGACATCAGCGACAAGGTGGTCGGCTACGACGTCCGCTACATGCTCGACGGCAAGGAAGGAAAAGTCCGCATGGACCGCGACCCGGGCAACCAGATCCCGGTTAGCAAGGAAGGCCAACTGATCCTGGGCCAGAACGAACCGGCCCAGTGA	MNKSMLVGAVLGAVGVTAGGAVATYSLVKSGPEYAQVLAVEPVKTQIKTPREVCKDVTVTRQKPVQDQHQIAGTVLGAVAGGLLGNQIGGGTGKKIATVAGAAGGGYAGNKIQEGMQERDTYTTTQTRCNTVNDISDKVVGYDVRYMLDGKEGKVRMDRDPGNQIPVSKEGQLILGQNEPAQ				NA	NA	NA	NA	NA
D1-36_04149	915	secF	COG0341	Protein translocase subunit SecF	ATGTTACGTACAATCAACTTCATGGGCGTCCGCAACATTGCGTTCGGCGTCACATTGTTCCTTACGGCCTTGGCGTTGTTCAGCTGGGCCACCAAGGGCCTGAACTACGGCTTGGACTTCACCGGCGGTACGCTCATCGAGCTGACCTACGAACGTCCGGCCGATGTCACCAAGGTGCGTGAGCAGCTGGCGACCTCGGGCTACAGCGACGCCGTGGTGCAGAGCTTTGGCGCCACCACTGATTTGCTGGTGCGCATGCCGGGTGAAGACCCGCAACTGGGCCAGCGCGTAGCCGATGCCTTGCAGAAGGCCGGTGGCGACAACCCGGCGGTGGTCAAGCGCGTCGAGTTCGTCGGCCCGCAAGTGGGTGAAGAACTGCGCGACCAGGGCGGCCTCGGCATGCTGTTGGCGTTGGGCGGCGTGATGCTCTACCTGGCTTTCCGCTTCCAGTGGAAGTTCGCGGTAGGCGCCATTGTCTCGCTGATCCACGACGTGATCGTGACCGTGGGCATCCTGTCGTTCTTCCAGATCACCTTCGACCTGACGGTATTGGCGGCGGTGCTGGCGATCATCGGTTACTCGCTCAACGACACCATCGTGGTGTTCGACCGGGTGCGTGAGAACTTCCGTGTGCTGCGCAAGGCGTCCCTGGTCGAGAACATCAATATCTCGACCACCCAGACCCTGTTGCGGACCATGGCGACGTCGATCTCCACCTTGTTGGCGATTGCCGCGTTGCTGTTCTTTGGTGGCGACAACCTGTTCGGTTTCTCCATCGCGTTGTTCATCGGTGTGATGGCGGGTACCTACTCCTCGATCTACATCGCCAACGTGGTGTTGATCTGGCTGAACCTGAGCACCGAGGATCTGATTCCTCCGGCCGCTACGGAGACCGAGGTGGACGACCGCCCGTAA	MLRTINFMGVRNIAFGVTLFLTALALFSWATKGLNYGLDFTGGTLIELTYERPADVTKVREQLATSGYSDAVVQSFGATTDLLVRMPGEDPQLGQRVADALQKAGGDNPAVVKRVEFVGPQVGEELRDQGGLGMLLALGGVMLYLAFRFQWKFAVGAIVSLIHDVIVTVGILSFFQITFDLTVLAAVLAIIGYSLNDTIVVFDRVRENFRVLRKASLVENINISTTQTLLRTMATSISTLLAIAALLFFGGDNLFGFSIALFIGVMAGTYSSIYIANVVLIWLNLSTEDLIPPAATETEVDDRP	PGPT0029265_3045	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0029265-secF-K03074	NA	NA
D1-36_04150	1869	secD	COG0342	Protein translocase subunit SecD	ATGCTGAACAAATACCCTCTGTGGAAATACCTACTGATCCTGGCGGTGCTGGCGGTCGGTCTGATTTATTCCGCTCCCAATCTTTACCCGGATGACCCGGCCATTCAGGTCAGTGGCGCAAGCACTGCGCTGCAGGTCACCCAGGCCGATCTGGACCGTGCGAGCGCTGCGCTCAAGGCGTCCAACATCGACGTCAAGGCTGCGTCCATCGCCGAAAACGGCAAGGGCGGCCTGTTGCGCCTGGTCAAGTCTGAAGACCAGTTGCCGGCCAAGGACGTGGTGCGCAAGGCGTTGGGCGACGATTACGTTGTAGCCCTGAACCTGGCCCAGACCACCCCACAATGGCTGCGCAATCTCGGCGCCCACCCAATGAAGCTGGGCCTGGACTTGTCCGGTGGTGTGCACTTCCTGCTGGAAGTGGACATGGAAAAAGCCCTCGACGCACGCCTGAAAGTCTACGAAGGCGACGTCAAGAGCCTGTTGCGCAAAGAGCGCGTGCGCTATCGCAGCCTGCCGCAGTTCGAAGGTGCCATTCAGCTGGGCTTCAGTGATGAAGATACCCGCGAACAGGCCCGTGCGCTGGTCCGCAAGAATTTCAACGATTTCGACATTGTGCCGGCCGACCTCAATGGCCAACCGGTGCTGCGTCTGGCGATGACCCCGGCCAAGCTGGCGGAAATCCGCGAATACTCCATCAAGCAGAACTTGACCACGGTCCGTAACCGCGTCAACGAGCTGGGTGTGGCCGAGCCGATCGTGCAGCGCCAGGGCGCCAACCGCATCGTGGTCGAGCTGCCAGGCGTGCAGGACACGGCCGAAGCCAAGCGTATCCTCGGCAAGACCGCCAACCTGGAATTCCGCCTGGCCGCAGAGCCGGGTGCGTCCAAGGCCACTTCCGAGAGCTTCGAGTTCCGTGAAGGCGGTCGTCCGGCGGCGCAGATCGAGCGTGGCCTGATCATCACCGGTGACCAGGTGACCGATGCCCAGGCGGGCTTCGACGAGCAAGGTCGTCCGCAGGTGAACATTCGCCTCGACGGCCACGGCGGCGAACTGATGAGCCGCGCCACGCGCAGCAACGTCGGTCGCAGCATGGCGGTGATCTTCATCGAGCAGAAGCCGACCACCACCTACACCAAGCAAGTGGTCAACGGCGTCGAAAAAGACGTACCGGTCCAGACCTTCAAGGAAGAGAAGAAAATCATCAGCCTGGCGACCATCCAGTCGCCGCTGGGCAGCCAATTCCGCATCACCGGCCTGAACGGCCAGGGCGAGTCCTCGGAACTGGCCCTGCTGCTGCGTGCCGGTGGCCTGGCCGCGCCGATGTACTTCGCTGAAGAACGCACCATCGGCCCGAGCCTGGGTGCCGACAACATCACCAAGGGCGTCGATGCATCCCTGTGGGGCATGCTGTTCGTGTCGCTGTTCATCATCGCCATCTACCGTTTCTTCGGCTTGATCGCCACGGTTGCGCTGGCGGTGAACATGGTGCTGCTGCTGGCCTTGATGTCCTTGCTGGGCGCCACGCTGACCCTGCCGGGTATCGCCGGTATCGTCTTGACCATGGGCATGGCGGTGGACGCCAACGTGCTGATCTTCTCGCGGATACGTGAAGAGATCGCCGCGGGCATGTCGATCCAGCGGGCAATCAACGAAGGCTTCGGCCGCGCATTCACTGCGATTATCGACTCCAACCTGACCACGTTGCTGGTCGGCGGGATTCTCTTTGCCATGGGCACCGGCCCGGTCAAAGGCTTCGCAGTGACCATGTCCCTCGGGATCTTTACCTCGATGTTCACAGCCATTCTGGTGACCCGTGCAATGGTCAACCTGATTTATGGTGGTCGTGACGTCAAGAAGTTGTGGATTTAA	MLNKYPLWKYLLILAVLAVGLIYSAPNLYPDDPAIQVSGASTALQVTQADLDRASAALKASNIDVKAASIAENGKGGLLRLVKSEDQLPAKDVVRKALGDDYVVALNLAQTTPQWLRNLGAHPMKLGLDLSGGVHFLLEVDMEKALDARLKVYEGDVKSLLRKERVRYRSLPQFEGAIQLGFSDEDTREQARALVRKNFNDFDIVPADLNGQPVLRLAMTPAKLAEIREYSIKQNLTTVRNRVNELGVAEPIVQRQGANRIVVELPGVQDTAEAKRILGKTANLEFRLAAEPGASKATSESFEFREGGRPAAQIERGLIITGDQVTDAQAGFDEQGRPQVNIRLDGHGGELMSRATRSNVGRSMAVIFIEQKPTTTYTKQVVNGVEKDVPVQTFKEEKKIISLATIQSPLGSQFRITGLNGQGESSELALLLRAGGLAAPMYFAEERTIGPSLGADNITKGVDASLWGMLFVSLFIIAIYRFFGLIATVALAVNMVLLLALMSLLGATLTLPGIAGIVLTMGMAVDANVLIFSRIREEIAAGMSIQRAINEGFGRAFTAIIDSNLTTLLVGGILFAMGTGPVKGFAVTMSLGIFTSMFTAILVTRAMVNLIYGGRDVKKLWI	PGPT0029260_721	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0029260-secD-K03072	NA	NA
D1-36_04151	336	yajC	COG1862	Sec translocon accessory complex subunit YajC	ATGAGCTTTTTTATCTCTAACGCCATGGCCGATGCCGCTGCACCTGCAGCTGCGCCAATGGGTGGCGGTTTCGAGTGGATTTTCCTGGTCGGCTTCCTGGTCATCTTCTACCTGATGATCTGGCGTCCACAGGCCAAGCGCGCCAAAGAGCAGAAGAACCTGCTCAGCAGCCTGCAAAAAGGTGATGAAGTGGTCACCACCGGCGGCATCGCCGGCAAGATCACCAAAGTGGCCGATGACTTCGTGGTACTGGAAGTGTCCGACACGGTTGAGATGAAGTTCCAGAAGGGCGCCATCGCGGCCACGCTGCCAAAAGGCACGCTGAAAGCGATCTAA	MSFFISNAMADAAAPAAAPMGGGFEWIFLVGFLVIFYLMIWRPQAKRAKEQKNLLSSLQKGDEVVTTGGIAGKITKVADDFVVLEVSDTVEMKFQKGAIAATLPKGTLKAI	PGPT0025730_1833	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0025730-yajC-K03210	NA	NA
D1-36_04152	1134	tgt	COG0343	Queuine tRNA-ribosyltransferase	ATGAGTCGCACCTGTCGCATGTCCTTCGAGTTGCTTGCCACCGATGGCAAGGCTCGTCGCGGACGCCTGACCTTCCCCCGCGGTACCGTGGAAACCCCGGCATTCATGCCGGTGGGCACCTACGGCACGGTCAAGGGCATGCTGCCGCGTGATATCGAGGCAATTGGCGCGGAGATCATTCTCGGCAACACCTTCCACCTGTGGCTGCGCCCGGGCATGGAAGTGATCAAGGCCCACGGCGACCTGCACGATTTCATGCAATGGAAAGGCCCGATTCTGACCGACTCTGGCGGTTTCCAGGTGTTCAGCTTGGGCGCGATGCGCAAGATCAAAGAGGAGGGCGTGACCTTCGCTTCTCCGGTGGACGGTTCCAAGGTGTTCATGGGGCCGGAAGAGTCGATGCAGGTGCAGCGCGACCTGGGCTCGGACATCGTGATGATCTTCGACGAATGCACGCCGTACCCGGCCGATGAAGACGTGGCGCGGGTGTCCATGGAGCTGTCGTTGCGCTGGGCCCAGCGTTCGAAGAATGCCCACGGCGAAAACACCGCGGCGCTGTTCGGCATCGTCCAGGGCGGCATGCACCGCGACCTGCGCATGCGCTCGCTGGAAGGCCTGGACAAGATCGGGTTCGACGGCCTGGCGATTGGCGGTCTGTCGGTGGGTGAACCGAAGCACGAAATGATCAAGGTGCTCGATTACCTGCCGGGGGAAATGCCCGCTGACAAACCTCGTTACCTTATGGGCGTTGGCAAACCGGAAGATCTGGTTGAGGGTGTGCGCCGCGGGGTGGACATGTTCGATTGCGTGATGCCAACCCGTAATGCCCGCAATGGGCATCTGTTCATCGACACCGGTGTGCTGAAGATCCGTAACGCGTTCCATCGCCATGATGATTCGCCGCTGGATCCGACGTGCGATTGCTACACCTGCCAGAACTTCTCCCGCGCTTATCTGCATCATTTGGACAAGTGCGGCGAAATGCTCGGCAGCATGCTCAATACCATCCACAATTTGCGCCATTATCAGGTGCTTATGGCTGGTTTGCGCGAGGCTATCCAACAGGGTACATTGGCCGCCTTTGTCGAGGCCTTCTATGCCAAGCGCGGGTTGCCTGTTCCGCCTTTGGACTGA	MSRTCRMSFELLATDGKARRGRLTFPRGTVETPAFMPVGTYGTVKGMLPRDIEAIGAEIILGNTFHLWLRPGMEVIKAHGDLHDFMQWKGPILTDSGGFQVFSLGAMRKIKEEGVTFASPVDGSKVFMGPEESMQVQRDLGSDIVMIFDECTPYPADEDVARVSMELSLRWAQRSKNAHGENTAALFGIVQGGMHRDLRMRSLEGLDKIGFDGLAIGGLSVGEPKHEMIKVLDYLPGEMPADKPRYLMGVGKPEDLVEGVRRGVDMFDCVMPTRNARNGHLFIDTGVLKIRNAFHRHDDSPLDPTCDCYTCQNFSRAYLHHLDKCGEMLGSMLNTIHNLRHYQVLMAGLREAIQQGTLAAFVEAFYAKRGLPVPPLD				NA	NA	NA	NA	NA
D1-36_04153	1050	queA	COG0809	S-adenosylmethionine:tRNA ribosyltransferase-isomerase	ATGCGTGTTGCTGACTTTACTTTCGAACTCCCGGATTCGCTGATCGCTCGCCACCCGCTGGCCGAGCGGCGCGCCAGTCGACTGTTGACCCTGGACGGGGTCAGCGGTGCCATGGCTCACCGTCAATTCACTGATTTGCTCGAGCATTTGCGTCCGGGCGATTTGATGGTGTTCAACAATACCCGGGTGATTCCGGCGCGGTTGTTCGGCCAGAAGGCCTCCGGTGGCAAGCTGGAGATTCTGGTGGAGCGGGTGCTGGACAGTCATCGCGTGCTGGCCCATGTGCGGTCGAGCAAGTCGCCCAAGCCGGGTTCGTCGATTTTGATCGACGGCGGCGGTGAGGCGCGGATGGTGGCGCGGCACGATGCGTTGTTCGAGCTGGAATTTGCCGAAGAGGTGTTGCCGCTACTCGACCGTGTCGGGCACATGCCGTTGCCTCCTTATATAGACCGCCCGGACGAAGGTTCGGACCGCGAGCGCTATCAGACCGTATACGCCGAGCGCCTGGGGGCGGTGGCGGCGCCGACGGCGGGGCTGCATTTTGATCAGCCGTTGCTGGAGGCGATTGCGGCCAAGGGCGTGGAGACGGCGTTCGTGACGCTGCACGTCGGCGCCGGCACGTTCCAGCCGGTGCGGGTGGAGCGCATCGAAGACCACCACATGCACAACGAATGGCTCGAAGTGAGCCAGGAAGTGGTCGATGCCGTGGCGGCCTGTCGCGCGCGCGGTGGGCGGGTGGTGGCGGTGGGGACCACCAGCGTGCGCTCTTTGGAAAGCGCCGCGCGCGATGGCGTGCTCAAGCCGTTCAGTGGCGACACCGATATCTTTATCTACCCGGGCCGGCCGTTTCATGTGGTCGATGCCCTGGTCACCAACTTTCATTTGCCCGAATCCACGCTGTTGATGCTGGTTTCGGCCTTCGCCGGTTACCCCGAAGCCATGGCCGCCTACAAGACCGCCGTCGAGCATGGGTACCGCTTTTTCAGCTACGGTGATGCGATGTTCATCACCCGTAACCCCGCGCCACGCGGGCCCGAGGAAACCGTATGA	MRVADFTFELPDSLIARHPLAERRASRLLTLDGVSGAMAHRQFTDLLEHLRPGDLMVFNNTRVIPARLFGQKASGGKLEILVERVLDSHRVLAHVRSSKSPKPGSSILIDGGGEARMVARHDALFELEFAEEVLPLLDRVGHMPLPPYIDRPDEGSDRERYQTVYAERLGAVAAPTAGLHFDQPLLEAIAAKGVETAFVTLHVGAGTFQPVRVERIEDHHMHNEWLEVSQEVVDAVAACRARGGRVVAVGTTSVRSLESAARDGVLKPFSGDTDIFIYPGRPFHVVDALVTNFHLPESTLLMLVSAFAGYPEAMAAYKTAVEHGYRFFSYGDAMFITRNPAPRGPEETV	PGPT0023660_2119	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-SAM|QUEUOSINE|LIPID_METABOLISM,PGPT0023660-queA-K07568	NA	NA
D1-36_04155	330			hypothetical protein	ATGGAATTGCTGCTGGAAACGGTCGCTCTTTACTCCCTCAAGCTGGCTTATGAGACAGAAGGCCACAGCCCGATCCTGCGGGATGATCCGTTGATGGGCAGTTGCGACCGGGAGATTTTCGAGTTGTTGGTGCGGCGGGGCGATGTGGCCGGGATTCAGGGCGAAATCAGTCGATGCCTGGATTTGGCGTTGGGGGCGATTGGTGGGGTGGATACAGTGCTGGGCCGAGAGCTGCATCGTTTGGCTACGGATTTCAGCTCAGCGCAAAAGATAGACGACCTTCACGCTCCGCTCATCGCGCTTAACGCTTATGTGAAAGATATTCTATAA	MELLLETVALYSLKLAYETEGHSPILRDDPLMGSCDREIFELLVRRGDVAGIQGEISRCLDLALGAIGGVDTVLGRELHRLATDFSSAQKIDDLHAPLIALNAYVKDIL				NA	NA	NA	NA	NA
D1-36_04156	687			hypothetical protein	ATGAAAGCTCGCTGGCCCGCACTGATCGCTTGCTCCCTCATCCTGATGGGATGTGCCGGGATGCAGAACCCGCAAAAAGCCAACCTTGCGCACTGCACAAATCAGCTCAAGGCGGCTAAAGCCGAAAACTATCCACTAGTGCTGCAGGAAGGTGATTTGTGCTTACAGAAAAATTCGCTGCCTGCCTCGCTGGAAAGTCTGATTTACGCGGTGCAGGCTGACGCCCACAGCAACCTCAAGCATTTTCCCGAAGCTGTGGCTGCCAAGGAAAAATCCATCCAGTTGGCGGCCAAGCCTGATGCACGCGCCAATCTGGATTTGAGCGGTATGTATCGCGACGCCGGCAATCCGAAAAAAGCGCTGGAACTTGTGCAATACAACCTCGACAACGGGCTGGGAGAAGCCGGAAAGGGTTCGGGCTTCCACATGCCGACCTACTATCATCTGGGCCTCGCGCTGACAGACCTGGGTCAGTACAGAGAGGCCACTGAAGCATTCAGCACCGGCCTTGAGCGTCAGTCGAACTATGCCTGGGCCTATTATGCGCGCGGGATCGCCTATGATCATTTGGGGGACAAGGACGATGCCAAGATCGACTTCATGAAGTTTTCGCAAATCGTCGATGAAAAGTACGTTCGGGATGAGCACAAGGCCAAGCTTGCCGAGTACAAGATTTCCTTGCCTTGA	MKARWPALIACSLILMGCAGMQNPQKANLAHCTNQLKAAKAENYPLVLQEGDLCLQKNSLPASLESLIYAVQADAHSNLKHFPEAVAAKEKSIQLAAKPDARANLDLSGMYRDAGNPKKALELVQYNLDNGLGEAGKGSGFHMPTYYHLGLALTDLGQYREATEAFSTGLERQSNYAWAYYARGIAYDHLGDKDDAKIDFMKFSQIVDEKYVRDEHKAKLAEYKISLP				NA	NA	NA	NA	NA
D1-36_04157	672			hypothetical protein	ATGTTCCGCTCCGTTTTTTCCGGCGTTGCTTTGCTCGCTGCCGCCGCTGCCTGCACGGCCCAGGCCCAGACCGTCACCACTCCCGAACAACTGCTGACCGAATTTTCTCGTTGCGATGCGCGTTTCTTCGAGAGCCTGCGTGACGCCCGCCTGCCGGCAGGTACAGTGCGCCTGAGTGATTACGGTTCGGTCAGGGCACCGACCATTATGAATCCGCTCCAGGAGGGTGGCACTTACCAACATTTCGAAGCGCCCCTGATCGTCAACGGTGTGCGTATGGTCGGCTATTACAACCAGGCCCAAACCATCAAGGATCTCGGTAATTTTCTGTTCTGGGGGTTCGTAGTCGATGGCTCGCCGCAAGAGGTGGCCGCGAAACTAAAGCCGTTGATCGTCGATAACGCGCGCTTTGTCAGTCAGGGCAAAGCCATTGCCCGCGCCGAAATTCGCCGCGTCGGTGACCCGATCGGCCAATGGCGCACCGAAGGATTGACCGGCCCTGGCGTCGCCACTCCGTTTGGTTTCGTAGACCGTGTGTTGATGGTCGACACGGGCGACACGACACCGCCGCTCGCCGGGCATACAACCGTGTTCTGCTCGCTCCAAGGCACCGTGACCGCGCCGCTCTTGCAGGCCTATCGCCCTGACCTCAACGCTCGTCTCTTCGACTGA	MFRSVFSGVALLAAAAACTAQAQTVTTPEQLLTEFSRCDARFFESLRDARLPAGTVRLSDYGSVRAPTIMNPLQEGGTYQHFEAPLIVNGVRMVGYYNQAQTIKDLGNFLFWGFVVDGSPQEVAAKLKPLIVDNARFVSQGKAIARAEIRRVGDPIGQWRTEGLTGPGVATPFGFVDRVLMVDTGDTTPPLAGHTTVFCSLQGTVTAPLLQAYRPDLNARLFD				NA	NA	NA	NA	NA
D1-36_04158	1128			hypothetical protein	ATGAGCAAGAAAAACGCCATCGACCGGCTGACAATCAAGGGCTTCAAGTCCATAAAAAATTTGGAGGGCCTGGAGCTTGGCAGCCTGAACGTCCTGCTGGGCGCCAATGGTGCCGGCAAGAGCAGCTTCGTCTCCTACTTTCGCATGCTTGGCGAGATGATGGAACAACGCCTGAAGAAATGGACCGCTCAACAGGGCTCTGCTGATCGCATCCTCAGTTTCGGCGTAAAAGAAACTCAGAAAATCGTGTCCTTCGTCAAATTTGGCCTAAACGGATACCAATTCGAGCTTGAGCCAACAGTGGATGGGGACTTTGTATTTTCGAATGAGAGACTTTTCTTTGATGGCCCTCGGTACGGAGCACAATGGATAGAGCTAGGTTCTGGACATCAAGAAGCGAAGCTGAAAGAAACATTCAATTCCAAGCGTTTTTATGCCGATTACAAAAACGATGTGGTCTCCTACTGCTACGAATCGATTTCCAGTTGGAAAGTATTCCACTTCCATGACAGCAGCGATACAGCAAGCGTCAAGCGTCGCGGCCCCGTCCACATCAACGACTACCTGCGCCCAGACGCATCCAACCTGGCAGCCTATCTATATCGGCTCTTTACAGAAGCGCCGGATGTCTACGAACAGATTCGTAAAACAATTCAATTGGCGATTCCGTTTTTTGATGATTTCGTGCTCATTCCTCTTCGCTTAAAGACGGAAGAGGAGCTGATCAACTTGCTGTGGCGACAGAAAGACAGCGATTACGTCTTCTGGCCCAGCCAGCTCTCAGACGGTTCTATCCGCTTCATTTGCCTGGTCACTGCACTACTACAACCGGAGCCGCCTTCCACAATCATCATTGACGAACCTGAACTGGGTTTGCACCCGTATGCAATTACTTTGTTGGGCTCCCTGCTTCGGTCGGCCTCGACGAGGATGCAAGTGATTGTCTCAACCCAGTCAGTTCCGTTGGTGAATGAGTTTCCCATTAGCGATCTGATCATAGTCGAGCGCGAAGAAGGGGCGACGGTATTCAAACGGCTCGACGAGAACGAGTTTGATATCTGGTTAGAAGATTATTCAGTTGGTGAGCTTTGGGAGAAAAATATCCTTGGCGGGAGGCCGCGTAGATGA	MSKKNAIDRLTIKGFKSIKNLEGLELGSLNVLLGANGAGKSSFVSYFRMLGEMMEQRLKKWTAQQGSADRILSFGVKETQKIVSFVKFGLNGYQFELEPTVDGDFVFSNERLFFDGPRYGAQWIELGSGHQEAKLKETFNSKRFYADYKNDVVSYCYESISSWKVFHFHDSSDTASVKRRGPVHINDYLRPDASNLAAYLYRLFTEAPDVYEQIRKTIQLAIPFFDDFVLIPLRLKTEEELINLLWRQKDSDYVFWPSQLSDGSIRFICLVTALLQPEPPSTIIIDEPELGLHPYAITLLGSLLRSASTRMQVIVSTQSVPLVNEFPISDLIIVEREEGATVFKRLDENEFDIWLEDYSVGELWEKNILGGRPRR				NA	NA	NA	NA	NA
D1-36_04159	675			hypothetical protein	ATGATTCGAGTACATGTCATCTGCGAGGGTCAGACCGAGGAAATGTTCATTAATCAGGTGCTTGCACCAGCCTTCCATCATTTGAACATTTATCTTGTGCCAGCCTTAATAGGGAAACCGGGGCACAAGGGTGGTAACTTCCGTTTTGAGCGCCTGCTTACTGATGTTGAGAAACGGCTGCTCGGAGACCGTCAGGCCTATTGCACTACCTTCTTCGATTTCTATGGCTTGCCCGAAGCGTTTCCCGGAAAAAATGAAGCCAACAGCAAGGAAACTATGGATGCCAAAGCTGATTGCTTGCTGGAGATCATGACAGAAAAGCTACGAGAAAAGCTCGGTGGCGAGGTAATGCGCCGCTTCATTCCTTACGTCCAAATGTATGAATTCGAGGGATTACTGTTCAGCTGTCCCACGCGACTTGCCCAAGGAATCAATCAACCGGCCCTCGAAGCAAAGCTGCTGCGGATCCGAAACGATTTCGATACTCCGGAAGCCATCAACAATAGTCCGTTGACAGCTCCGAGCAAACGAATCCAGAACCTATACCAGGGCTATGACAAACCATGGCATGGCTCGTTGGCAGCAATTGAGATTGGGCTACCGGTGATTCGGTCGCAATGCAACAGATTTGATGCTTGGATCAAATGCATGGAATCCTTGCTACCCATCACATAG	MIRVHVICEGQTEEMFINQVLAPAFHHLNIYLVPALIGKPGHKGGNFRFERLLTDVEKRLLGDRQAYCTTFFDFYGLPEAFPGKNEANSKETMDAKADCLLEIMTEKLREKLGGEVMRRFIPYVQMYEFEGLLFSCPTRLAQGINQPALEAKLLRIRNDFDTPEAINNSPLTAPSKRIQNLYQGYDKPWHGSLAAIEIGLPVIRSQCNRFDAWIKCMESLLPIT				NA	NA	NA	NA	NA
D1-36_04160	90			hypothetical protein	ATGCTCGGGCTGAAGCTGTCGAGCTATTGGCTTTGTATTCCCGTGCGCTTTATAGACATGTTTGCCCTGACCCATGATGGCGACCCATAA	MLGLKLSSYWLCIPVRFIDMFALTHDGDP				NA	NA	NA	NA	NA
D1-36_04161	615			hypothetical protein	ATGGACAAGCTAGCAGTACTGGATGCATTCGAGGCAGCCCATGATAAGTATTTTCATCTTATGCTCGAACACTATCCGACGTTTCGTACCGCAGAGCCGAACGGCGGTTTCGGACCTCCTGAACTAATTACGCTTGCGATCGAAGCCCACTCGTGCGCCATCGCGTTAGGGCCGAAAGCGCTAAAGCGACTATGTTATCTGGGGCTGGATGTCCTTTATCCATTTGACAATATCGTCGATCTTTACAATTGGCGGGTGAAGGTCAAAAAGGAAAAAATTGAACACACCACCTATGCTTCCATAGCCATCCGCATCGACTCGGAAATCGACCGGATGCGCCGTGTGTTTTCGCTAGGAGCATACGACTCATATGAGGCTTTGCCTACCGAAGAGTTTCTTGTATCGAAGTTACGCTACAGCGCGTCGCCCCAAAACGTGAGCGCAGTCGAAGCGCCTCAAGAGATGCCTGCACCAACCATGCGCGTCGATACGATAAATGTGCAATACGCTGCGGATTCACAGGCCGTCAGTAATCTCGAAAAGCTTGAGAAAGAAACGTCGATCGGATCGAACCTCAGCACAATTATTACGACGTTGAGACAGCTATTGGGTTGA	MDKLAVLDAFEAAHDKYFHLMLEHYPTFRTAEPNGGFGPPELITLAIEAHSCAIALGPKALKRLCYLGLDVLYPFDNIVDLYNWRVKVKKEKIEHTTYASIAIRIDSEIDRMRRVFSLGAYDSYEALPTEEFLVSKLRYSASPQNVSAVEAPQEMPAPTMRVDTINVQYAADSQAVSNLEKLEKETSIGSNLSTIITTLRQLLG				NA	NA	NA	NA	NA
D1-36_04162	1158	metC	COG0626	Cystathionine beta-lyase MetC	ATGCACCGTGACTCTGCTCTTGTTCACCTGGGCCGAACCAGCGCCGCAGCGGTTCATGCGGTCAACCCACCCTTGGTACGCGCTTCAACAGTAGTGTTTGAAACCCTGGAGGAATATCGGCATTCGTACCAGGGCAGGGTTTTCGAATCGTTACGTTATGGGCGCTCGGGCACGGTCACCACGTTTGAGTTACAAGAGGCCATGGCACGCCTTGAAAATGCCGAAAGCTGCATCGCCACCTCCAGCGGTTTGAGCGCTATCGCCGCAGTGTTAGGCGCACATGCGGGACCGGGAAAACATATCCTGGTCTACAACGGCGTGTATGGTCCGACCCGAGTATTTTGCGAGCAATCGCTGACAGCACTTGGCACCAAAATCAGCTTCTTCAACGACAGCGCCGAAGTCGGCCAACTGATCGACGACAATACGAGCCTAGTCTTCATCGAAGTGCCTTCATCGTTGACGATGCAGATGCTGGACATCACGCAAGTGTGCGCGGCGGCCCATGAACGGGGCATACCGGTTGCCTGCGACTCAACGTGGGGCTCACCGATGTACTTCAACGCCCATGCGCTGGGGATCGATATTTCGATTCACGCGGCAACCAAGTTCATCAACGGCCACTCAGACGTCATTCTCGGCCTGGTGACCTGCGCTTACTCAACGTTGGACACGACACGCAAATGGTGTGACCGCTACGGCTCACATGCCTCCCCGGACGCGTGCTGGCTCACCCTGCGCGGATTGAGAACACTCGCCGTGCGCATGCCCCGGCATCAAGCCAGCGCAATCGAAGTGGCTGAATGGTTGAATGAACATTCGAAGGTCAAACGCGTGATGTTTCCAGTATTGGCCTCCGATCCCGGGCACGCACTTTGGAAAAGACAGTTCTCCGGTGGCGCAGGGCCCTTTACTTTCGAACTGCAACCTTGCAATGAAGCCACGTTTGAACGCTTCATCAATGCGTTGAAATTGTTTGGCCTAGGCACCAGTTGGGGCGGGTATGAAAGTCTGGTCATGCCCGCCATTCCACACGAACTGCGCTCGATCAAGACGCTACCTGACGAGGGGCGGCTGGTTCGCCTGCACATTGGGCTCGAACATGCGCCTGATCTGTGTGCGGATCTGGCCCAGGCGTTTGATCGGATGGATGAATGA	MHRDSALVHLGRTSAAAVHAVNPPLVRASTVVFETLEEYRHSYQGRVFESLRYGRSGTVTTFELQEAMARLENAESCIATSSGLSAIAAVLGAHAGPGKHILVYNGVYGPTRVFCEQSLTALGTKISFFNDSAEVGQLIDDNTSLVFIEVPSSLTMQMLDITQVCAAAHERGIPVACDSTWGSPMYFNAHALGIDISIHAATKFINGHSDVILGLVTCAYSTLDTTRKWCDRYGSHASPDACWLTLRGLRTLAVRMPRHQASAIEVAEWLNEHSKVKRVMFPVLASDPGHALWKRQFSGGAGPFTFELQPCNEATFERFINALKLFGLGTSWGGYESLVMPAIPHELRSIKTLPDEGRLVRLHIGLEHAPDLCADLAQAFDRMDE	PGPT0001995_2415	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
D1-36_04163	819	nimR_3		HTH-type transcriptional regulator NimR	ATGTTTGGCATGTCAGACTCCATCAGCCAAAAAATATCGCTGACGCGCCATCCCGAGCCCGCCGAGTTTCGCCTGTTAGCGAAGCGGCATGAGCGCGGCGCTGTGTTGCCTTCGCACGAGCACCAGACCGGGCAACTGGTGTTTGCGTTGCGCGGCACGATGTTGGTTGAAACACAGCAAAGTCGCTGGACGGTTCCACCGCAACGGGCGTTGTGGATACCGCCGCATCAACCCCATGCCATTCAAATCCTGTCGGATGTTGAGATGCGAACGGTGTATTTCCACCCGGCATTGTTCACCGAAGTCGCCGGCTTCGCGCGTTGCAACGACGTGCACGCGGTCGTGGCATCCAGCCTTATCAGGGAACTGGTACTGGGCTTGTTCGAACAGCCGCGCCAGGGTGAGATGCGCGAATTGATGGTGCAGTTATTACTGCATGCATTGGGTGAAGCGGCCTGCCTACCGACACACTTGCCGATGCCGACTAACGAGCGGCTGCGCGCGGCATTGATGGAGCTGATTTCAGGCAATCAGTGGCATTGGTCGATATCTGAAATTGCGTATCGTGCGGCCATGTCCGAACGCACCTTTACGCGGCGCTTTAGCGCGGAAGTGGGCTTGAACTATCGCACATGGCACCATCGGGCGCGCATCGTTGCCTCGCTGGATCTGCTGGCATCGAATCGGTCCGTCAAATCGGTTGCACATACTTTGCAGTTTGCGAGTGCAGCAGCCTATGTGGCGGCCTTTCGAAAAATAACAGGCAGTACGCCACGGGCCTTTCAGTCCACTCATTTAATGCAAAGCGCGCCTCAGTGA	MFGMSDSISQKISLTRHPEPAEFRLLAKRHERGAVLPSHEHQTGQLVFALRGTMLVETQQSRWTVPPQRALWIPPHQPHAIQILSDVEMRTVYFHPALFTEVAGFARCNDVHAVVASSLIRELVLGLFEQPRQGEMRELMVQLLLHALGEAACLPTHLPMPTNERLRAALMELISGNQWHWSISEIAYRAAMSERTFTRRFSAEVGLNYRTWHHRARIVASLDLLASNRSVKSVAHTLQFASAAAYVAAFRKITGSTPRAFQSTHLMQSAPQ				NA	NA	NA	NA	NA
D1-36_04164	360			hypothetical protein	ATGGTCAAAATTACACCGAATCCTCCAGTAACAGACGAACCCACATCCCGTGCCCAGTCTGCCCGCAACAAAAAGCTCGATGACGCGACCACTCGCGCGTTGGATTACTACCTGAAGCCCAAGCCTAAGAGCGAAACATCTGACAAGACCGACTCCATTTTACGGATTGATCCGAGTGTGGATTCTGAGTGTTTGCTTGCGAATCTCAGTGAGAATTTGGCTTCGGCGAACGCGATGATCAGTGACTTGGCGTTTGATCTGGATGGATCGCGGCGACGTGTTGCGTTGGGGATTTTGCAGGTGATTGAGGTAAGTGAGCTGTTGGCGAATCGGGCGTTGGATATTGTTGAGGTGAGGTAG	MVKITPNPPVTDEPTSRAQSARNKKLDDATTRALDYYLKPKPKSETSDKTDSILRIDPSVDSECLLANLSENLASANAMISDLAFDLDGSRRRVALGILQVIEVSELLANRALDIVEVR				NA	NA	NA	NA	NA
D1-36_04166	639			hypothetical protein	GTGCCGACACTTCCCAGTATCTACACTTGGGAGTTTGATACCGCGCTCGTCTACCAAACGTTTGGATGGGATATTGGCGGCTCGAATTGGTACGAAAAGGCGTCCGCGCTGAAGCGGTATGCCTCACAGCAATGGGGGGCGTCACCCGACCAACGGATGGCGCTCGCGGACTACGCGGTGCGCGTCTGGGGTGGCGTCAAAGGAAATGCATCTGCAACGATGCAAGGCTACGTTCAGATTGTGTCGCAGGGCCAAGTGCCGATAAATCACAAGGGAATCGCCTCATGGTCGAAAGTGGCGGCGTTCTCGAATCCAAACGAGCATGCCATCTTCGATGCGCGGGTTTCATTTTCCCTGAACGTTCTACAAATGCTTCAGGGTGATGAGCAACGCTGGTGGTTTCCGCACTTGGCGGGTCAAAACCCGCGGCTCAAGGCCTGCTGGCCACGCTTGAAGACCCAGGCGCGGCAACAGGGCTGGCTTCGAATTGCAACGACTGATGTCTACTCGACCTATATTGGGTTGCTGATAAGCGTCACCCGAAAACTCCAAGTCGAGATAGGAGATGTTGAGATGCTGCTGTTTTCAAAGGCGGAAGATTTTGCATCAGCGTTTAACGAGGTCTATCCCTCTCCTTAA	MPTLPSIYTWEFDTALVYQTFGWDIGGSNWYEKASALKRYASQQWGASPDQRMALADYAVRVWGGVKGNASATMQGYVQIVSQGQVPINHKGIASWSKVAAFSNPNEHAIFDARVSFSLNVLQMLQGDEQRWWFPHLAGQNPRLKACWPRLKTQARQQGWLRIATTDVYSTYIGLLISVTRKLQVEIGDVEMLLFSKAEDFASAFNEVYPSP				NA	NA	NA	NA	NA
D1-36_04167	498			hypothetical protein	ATGAAAGTTCCCGAGCTGTTTGATCTTGAGGCGCATGGCGCAGGCTGGTACCCCTGGGCAGAAATCAGCAATTGCTTCTGGCCCGGGGTCGGCAAGAAATCCACCGGTGTGGACCCCGTTCTCGCACAGATGGTTGCTGCGAAGGGCGTCTACTGCATTGCCTGGAGAGCGACCGGGAAGGCCTCTCCTGACAATCCAACCGTCCAATACATTGGGCAAACGAGCAGTTTCAAGTTTCGCATGGGCCAATTTGCCTGGTCCGCAGGGCTTTGGGGAGCCCGGGCTCGTGGCCATTCGGCTGGCTGGCGCTGGCATGAACAAAAAGAAGACCAATTGTCCATCGCGTTCTTTCCGCTGCGTAATTCAAACATCCCCAAACACATGTTGAATGGCTATCTGCATTGGTATGAGGCACTGGCCCTTGAAGCCCATCATCAGCGATGCAGCGCGTTGCCGTTCGTGAACGTTCCCCAGAATGGCATTGTTGTACTGGACTAA	MKVPELFDLEAHGAGWYPWAEISNCFWPGVGKKSTGVDPVLAQMVAAKGVYCIAWRATGKASPDNPTVQYIGQTSSFKFRMGQFAWSAGLWGARARGHSAGWRWHEQKEDQLSIAFFPLRNSNIPKHMLNGYLHWYEALALEAHHQRCSALPFVNVPQNGIVVLD				NA	NA	NA	NA	NA
D1-36_04168	1086			hypothetical protein	ATGAACCTACACACCTTCATTCGCAGCTATTGCCTGAACTCCAGGCTCGCCACGAATGCCCTGACCCGCCTGCACAAATCGCTCTCTTCCCTGGTCCGCTACTTGGCCCTGCAAGGCTTCGATTCCAATACATGGCCCGCCACCCGCGACGAAGCCGCCCTGGACCGTCACCTCAACACCCTGTGCCCAGAGCTGGCCACCACCGTGTTCTGCCATGCCCGCGAAGGCATCATCCTCGTTGATCCCTTCGGCCGCGTCATCGCCGTGAACGAGGCCTTTACGCGGCTTACCGGTTACGGTCAGGAAGAGATTCAGGGCCATGAGCTGAACTCCCATCGCATGGTCCGTCGCCTCACCGCGTTTTACGCGCCGATGAAGAATGCGCTGGATTTCCACGGACATTGGTCCGGTGAGATTCAGACCAACCATAAAGATGGCCGGGAGATGACGTCGAGGATCAGCATCAGTGCGGTGCATGACCGTCACGGCAATGTTCAGCACTACGTGGCGCTGTTCAGCGACATGACGCAGATGAAGCAGCGCTTGCAGCTGCTGGAACGGGATGCGCGGTATGACGCGCTCACGCAGTTGCCCAATCGGTTGTTGTTGGCCGAGCGGATGCGGCAGGCGTTGGGCAAGGCGCGGGTTCATCAGCAGAAGGTGGCGATTGCGTTTATCGACCTGGATGGGTTCAAGGCGCTGAACGACAGTTATGGGCATGACTGGGGGGATCGGGTGTTGCAGATTGTCGCGGCGCGGATCAATGCGACGTTGCGCGAGGGCGATACGTTGGCGCGCCTTGGGGGGGATGAGTTTGTGGCCGGGTTGGTGGGGCTGCAGGAAGTGGAGGATTGCGAGCCGATGCTCAAGCGGATGCTGGCGGCGGCCAATGCGCCGATCCTGATTGGCGCGCAGACGGTGGAGATTGCCGCGAGTATCGGGGTGGCGTTTTTTCCGGAGCATGGGCTTGAGGTGGATGGGCTGATCAGCAAGGCGGATCAGGCCATGTACCTGTCGAAAAAGGCCGGTGGTAATCGCCTGGCGTTTTGTCCAACCCGCTGCCTTTCGGTCAATAACGAAACCTGA	MNLHTFIRSYCLNSRLATNALTRLHKSLSSLVRYLALQGFDSNTWPATRDEAALDRHLNTLCPELATTVFCHAREGIILVDPFGRVIAVNEAFTRLTGYGQEEIQGHELNSHRMVRRLTAFYAPMKNALDFHGHWSGEIQTNHKDGREMTSRISISAVHDRHGNVQHYVALFSDMTQMKQRLQLLERDARYDALTQLPNRLLLAERMRQALGKARVHQQKVAIAFIDLDGFKALNDSYGHDWGDRVLQIVAARINATLREGDTLARLGGDEFVAGLVGLQEVEDCEPMLKRMLAAANAPILIGAQTVEIAASIGVAFFPEHGLEVDGLISKADQAMYLSKKAGGNRLAFCPTRCLSVNNET	PGPT0026010_3824	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0026010-mucR-K21023	NA	NA
D1-36_04169	2352	fyuA	COG1629	Pesticin receptor	ATGCCGGGTATGGGTTATCGGCTGCTCTTGCTCGGCAGCCTTACGGTATTGCCTTGGCTGTCGGCCAAGGCAGCGCAAGACACCTCCGGCGGCCTCGTCCTTGACCAGACCACCGTCACCGCTCGCCGCCGCGAAGAAGACCCGCAAGACGTGCCGATCCCGATCAACGTCCTCTACGGCGATCAACTGGACGAAGCCGGCCTGCATCGACTGCAAGACATCCAGCAACGGGTTCCGGGCCTGGTGGTCTCCGGTCACGATGCCCGTTATGCCGGTTTCGGCCTGCGCGGCTTCGGCGCGACCGCCTACAACGATGGCCTGGAAGGCAGCGTCGGCACCTACGTCGACGGTGTTTACCAGGCACGCCAGGGCATGGCCTTCAGCGAGTTGATGGACATCGAACGCATCGAAGTGTTGCGCGGGCCGCAAGGCACCTTGTTCGGCAAGAACACCACCGCGGGCGCGCTGAACATCGTCACGCGCCAGCCGACTTTCCAGCCCGAAGCCAACCTCGAAGCCAGTTACGGCGAGCGCGGTCTGCGGGAATATCGCGGCACCGTCTCCGGGCCGCTGCAAGACGGCGTTCTCGCCGGGCGGCTCAATGTCTTCGACGGCTCCAGCGAGGGCGCCGTGGAAAACCTGCACGACGGCAGCCGCCTCGGCGACGCCGACAGCCAAGGCCTGCGCGGCCAGTTGCTGTGGACGCCGAACAGCGACTTCAGCGCCCGCCTGATCGCCGACTACGCCGAGCAGAACGAAGCCGGCAACGTCCTGTTGGTCAATCACTACAGCGAGCAAACCCGCAAGCGCGCCAAATTCCTTGGCTATCCGCTGGCGGAGCCCGACCCTTACCAACGGGAGAACCGCATCGACGCGCCGGGTCGCCCGCGAACTCTGCAGAACGGCGTGTCACTGGAATTGAATTGGGACTTGGACGAGGCGATGCGCTTCACCAGCATCACCGCCTACCGCGACTGGGACTACCGCGCCGGCCGCGACGGTGACAGCACCGCGCTGGCGGTGGCCCAATCCGAAACCGAGTTGGGCCATCGGCAGTTCAGCCAGGAATGGCGGCTGTCCGGCACGGCCGGCTCGTCCGTCGATTATGTCGCCGGGCTCTATTACCTGCGCCAGCAACTCGACCGGCAGATCGACGCCGAATTCGGCCCGGACGCCGCGCCCTGGTTCGTTGGCGATCAACTGGAGGCACTGCAAAAAATCTTCGGCATCAGCTTCACCGATCCAAGGCAGGTGCCTTCGGTGCTGCTCGATGGCGCTCGGCAGCGTTATGACGGCGAGCAGAAGGGCGACAGCCGCGCGGTGTTCGGTCAACTTTCCTGGCGTCCGATCGACCCGTTGGAACTCACCGGCGGCCTGCGCTACAGCCAGGAGCGCAAGGACGGCTGGATCTCCCGCGACGTCAGCAACCTTGCCCCGCTGAACGGCTTACCCCCGGTGTTCCAGGTGGGCGGGCAATTGCTGCGGGACATCGCCCTCGGCGGTACTTATTACCGTGAGGACTCCATAAAAGAAAACAACGTCTCCGGCCTGCTCAGCGCCAGCTATCGCTTCAGCGATGCCGTGATGGGCTACGTCAGTTGGTCGCGGGGCTACAAGGCCGGCGGCATCAACTTCGACGTGATCGGGCCGTTCACCGAGCCCACCTTCGAGCCGGAACGCGCCACGTCCCTGGAAGTGGGCATGAAGACGCAGTTCTGGGATCAGCGCGCATTGCTCAATCTTGCCGTCTACCAGACCGACGTCGATGACTACCAAGCGCTCACCTACAGCCCGCCGACATCGCTGTTCGCGCCGCCGCTGCGGGACAACCTGATCAACGTCGGCAAAGTCCGCTTGCGCGGCATCGAATTCGATTCCGCGTGGCAACTCACCTCCCAACTCACCGGGCGCCTGGGCGTGGCCTGGAGCGACGCGCGCTACCGCAGCTTCCCCAACGCCCCGTGCCCACCGGCCTCGGGTCAATGGACCTGCGACCTCAGCGGCGAGCGCCTCTACAACGCGCCGGAATGGAACCTGAGCAGCGGCCTCGACCACACCCACCCGCTGCCCTATGGCCTGGAACTCTACAGCGGCGTCGACTACAGCTTCCGCACCGGTTACTACGGCACCCTCGAAGGCGGCGAAGGCAGCTATCAACCCAGCTACGGCCTCACCAACCTGCGCCTGGGCATGCGCAGCCAGGATCGCGCCTGGGAAGTCGAAGGCTGGGTGCGCAACGTGTTCGATCGCAACTACATCACCGCCGTCTACTCACTGCTCGGTGCCGGCGACTACGGCGTCATGACCGGCAGCGAACGCACCGTCGGCACCACCGTCAGGTTTCGTTATTGA	MPGMGYRLLLLGSLTVLPWLSAKAAQDTSGGLVLDQTTVTARRREEDPQDVPIPINVLYGDQLDEAGLHRLQDIQQRVPGLVVSGHDARYAGFGLRGFGATAYNDGLEGSVGTYVDGVYQARQGMAFSELMDIERIEVLRGPQGTLFGKNTTAGALNIVTRQPTFQPEANLEASYGERGLREYRGTVSGPLQDGVLAGRLNVFDGSSEGAVENLHDGSRLGDADSQGLRGQLLWTPNSDFSARLIADYAEQNEAGNVLLVNHYSEQTRKRAKFLGYPLAEPDPYQRENRIDAPGRPRTLQNGVSLELNWDLDEAMRFTSITAYRDWDYRAGRDGDSTALAVAQSETELGHRQFSQEWRLSGTAGSSVDYVAGLYYLRQQLDRQIDAEFGPDAAPWFVGDQLEALQKIFGISFTDPRQVPSVLLDGARQRYDGEQKGDSRAVFGQLSWRPIDPLELTGGLRYSQERKDGWISRDVSNLAPLNGLPPVFQVGGQLLRDIALGGTYYREDSIKENNVSGLLSASYRFSDAVMGYVSWSRGYKAGGINFDVIGPFTEPTFEPERATSLEVGMKTQFWDQRALLNLAVYQTDVDDYQALTYSPPTSLFAPPLRDNLINVGKVRLRGIEFDSAWQLTSQLTGRLGVAWSDARYRSFPNAPCPPASGQWTCDLSGERLYNAPEWNLSSGLDHTHPLPYGLELYSGVDYSFRTGYYGTLEGGEGSYQPSYGLTNLRLGMRSQDRAWEVEGWVRNVFDRNYITAVYSLLGAGDYGVMTGSERTVGTTVRFRY	PGPT0003790_12806	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014	NA	NA
D1-36_04170	2388	rcsC_21		Sensor histidine kinase RcsC	ATGCGGCTTCTTCAGTTTCTATTGCTGACCATTACATTGTTATCCACAGGCCTGCTGCGTGCGGCACCTGTGGATATCTGCCGCGCCGACTCTCTGAACCTGATGTCCGTCGTGCGGATTCTCGAAGACACCCAGGCACGCCTGAGCCTGGCAGAAGTCGCTCGGCTGCCAGACACGCAGTTCAAAGCCGCCACCCCAAGCTGGCCGACGCAGGGCTACAGCCGCTCCGCCTTCTGGTTGAAATTACGGCTGACCAATTCGAGCGATGCGGCGTGTTCGCGCTTGCTGGTGGTCGGGGCGCCGCGCCTGGAAGACATCCGCGTCTACCGACCGGGGTACGAGGCACACGGCGGCGGCGCCTATCCCCTGGCCGAATGGCCTCAGCCGGCGGCGCGTCAGCCGGCGTTCCCGGTGTCGTTGGCGGCGGGGCAGAGCACCACGGTGTTCGTCCGGGTGGCGAGCAACTTCCAGATGCTGCTGGAGCCGGAACTGTGGTCCGAACCGGCGCTGCTGCGCAGTCAGCAACAGACGTACCTGAGCGACGGGCTCTCCCTCGGCATTGTCCTGCTGGTCGTGCCGTTCGGCTTTATCGTCGGCTGGATCCTGCGCTCTCGGCTGCTGATGGTGAACGCGGGTGCGGTACTGAGCTACATCCTGCTGACCTGCATCCTCAACGGTTACCTGATCTACTGGCCGTCGGCGCTGGGCTGGATGCGCGAGCTGCTGACCTGCGCCAGCGCGCTCTCGTTCGTACTGTTCCTGGCGTACTTCCGCGTACTGTTGCAGGTGTCCCAGCTGCCCAGGATCATCGGCTGGAGCTATTGGGTGCCGCTGCTAGGTTGTGTCTTCGGCCGACTCTGGTGGTTGAAGATCGATGCGGTCCAGGGCGCGCAGATCGTTCAGGTCTTCCTGATGAGTTTCTACGGCGTGTTGTTCGCTACGTTATTCATGGCGTGGCGCAGGCGGCTGAGCTACAGCTGGATGGCATGGCTGGTGCCCGGGCTCTTGGTGGGGCAACTGCTGATGCGGATTTTCTTCCCCCAGGAACAATTGCCCTGGCAGTCGCCGGAAAGCAAGTACAGCCTGTCTTCCACCTTGGCGGGCGTGGTGTTGCTGGTGTGCACCTTGATCATGGAAGTGGCCCGCAGCCGCAACCGGGAAAAGCACGCGCTGTCGACCCTCGAACAGCAACGCCAGGCAGAGCACGAGCGCCTGGAAAGCACCGTGGCCCTGCGCACCTCGCAGCTGCGCGACTCCCTCGCGGCTCGCAGCGCATTGATGGCGCGGATCAGCCACGACCTGCGCTCGCCACTGGTGCGCATCATCGACTATGCGCGCCTGCTACACGGCGGGCCGAATCGCGACTACCCGGCGACGATCGAGCGCAACGCCCGTCAACAACTGGAGCTGATCGACGAGATGCTCGAGTTCTCCCAGGGCGAGCTGGAGCAGATGCAACTGACCCTCGCGCCGGGCTATCTGTACGGCTTTCTCCAGGAAATCGCCGACGAGGCGGGCTTTCTCGCCGCGCGCCAGGGCAACAGCTTCAACGCGGTAATGGCCCAGGATCTGCCGCCCCTGGTGGAGGCTGATTTCAAACGGCTTCGGCAGGTGCTGATGAACCTTCTGGCGAACGCGGCGAAATTCACCCGCAACGGCCAGATCCGTTTCGAAGTGGGCTGTTGTCCGGGAGCAACCGCTGACACCGTGGAGCTGCGCTTCAGCGTGATCGACACCGGCATTGGCATCGACCCGCAAGAATTCGAACAACTGCTGCAACCGTTCCGCCGTGGCCGCAACGCCCAACGCTACGAAGGCAGCGGGCTGGGGCTGTCCATCGTCACCCAATTGCTGGAACGCATGGGCAGCCGTCTCGAACCCCAGGCCACGGGGCAGGGCAGCCACTTCAGTTTTCGCCTGCAACTCAAATGCGCCCAAGAAGATGACCTGGAAAACGGCATCGTCGATAACAACATCACGCCGCTCGATGGCCAGGGCAAACACGTGTTGCTGGTGGACGACATCGAACAAAACAGCGAATGGCTCTATGACCTGCTGGCCGGTTACGGTTTCGATGTGAGCATGGCGGCGAGCGGCGAAGATGCCTTGGCTTGCCTGGCGGAACAGCCAATCGACCTGCTGATCAGCGATCAGATGATGCCTGGGATGGACGGTTGGGAACTGCTGCGACACGTTCGCGCCCGTGAGCATGATCTGCCCGTGATGCTTTATTCAGCGGTCCCGCCACACCGGCCGCCGGGATACCCCGAGGACCTGGCCTTCGACGCTGTGTTGCTCAAGCCCACCGACAGCCGCCAATTGCTGGCGCGGATCAAGACCCTGGTTTGCCCGGACACGGTGCATCGAGCAATGGCCCGGGAGTTCTAG	MRLLQFLLLTITLLSTGLLRAAPVDICRADSLNLMSVVRILEDTQARLSLAEVARLPDTQFKAATPSWPTQGYSRSAFWLKLRLTNSSDAACSRLLVVGAPRLEDIRVYRPGYEAHGGGAYPLAEWPQPAARQPAFPVSLAAGQSTTVFVRVASNFQMLLEPELWSEPALLRSQQQTYLSDGLSLGIVLLVVPFGFIVGWILRSRLLMVNAGAVLSYILLTCILNGYLIYWPSALGWMRELLTCASALSFVLFLAYFRVLLQVSQLPRIIGWSYWVPLLGCVFGRLWWLKIDAVQGAQIVQVFLMSFYGVLFATLFMAWRRRLSYSWMAWLVPGLLVGQLLMRIFFPQEQLPWQSPESKYSLSSTLAGVVLLVCTLIMEVARSRNREKHALSTLEQQRQAEHERLESTVALRTSQLRDSLAARSALMARISHDLRSPLVRIIDYARLLHGGPNRDYPATIERNARQQLELIDEMLEFSQGELEQMQLTLAPGYLYGFLQEIADEAGFLAARQGNSFNAVMAQDLPPLVEADFKRLRQVLMNLLANAAKFTRNGQIRFEVGCCPGATADTVELRFSVIDTGIGIDPQEFEQLLQPFRRGRNAQRYEGSGLGLSIVTQLLERMGSRLEPQATGQGSHFSFRLQLKCAQEDDLENGIVDNNITPLDGQGKHVLLVDDIEQNSEWLYDLLAGYGFDVSMAASGEDALACLAEQPIDLLISDQMMPGMDGWELLRHVRAREHDLPVMLYSAVPPHRPPGYPEDLAFDAVLLKPTDSRQLLARIKTLVCPDTVHRAMAREF	PGPT0025890_174	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR|BF-Gac|Rsm_PATHWAY,PGPT0025890-ladF-K20971	NA	NA
D1-36_04171	837	rhaR_2		HTH-type transcriptional activator RhaR	ATGGACAACGGACGATACGCAAGGCAGGCAGCGACGGCGGAGGGCACGGCGGTGTCCGAGCCCGTGCCGCATATCCTGCTGATCGATGATATCCCCGAAGACATCCGCGCCACGCTCATCCTCTTGAAGGCCCAGCCCTGGCGAATTTCCCTGGCCAGCGACGCCTATCAGGGCTATCAACGGGCACTTGCGCTGCGCCCGGACCTGATCGTCCTGGATGTGCACATGCCACAAATGGACGGCTTCAGCCTGTGCAGGCTGTTGCGCGAGGCACCGGCCACCCGGCATATCCCGATTCTGTTCCTGTCTTCTGCAAATACCTCATTGGAACGATTGGAAGGGCTGACCGTCGGCGCCGTGGACTACATCCCCAAATCCTGCGCCCCCGAAGAAGTGCTGGCGCGCATCAAGATCCACCTGCAGCTGACTTGGCGCGCACCACCGACCGTCCAGGAAAGTCCGGCCGATCCGGAGCCGCAGGGTGATGAAATCGTGCTGCGCGCGGCCATGCGACTGATAGAAAACCAGTTGGACGACATGCCGTCCCTGGGCATGCTCGCGCAAAAAGTCGGCACCCATGAGAAACGCCTCTCCGCCATTTTTCGCGAGCATCTCGGGCTGACCGTGTTCGCCTATATTCGCGACGCGCGGTTGCGGCGCGGCCAGGATCTACTGTGCGAAAGCGCCATGAGCGTGCAGGATGTCGCCGAACTGGTGGGCTTTCGCAGCGCCTGCAACTTCACCACGGCCTTCCGCCAGCGAATCGGCATGACGCCCAGCCAGTTTCGCCAGCAAACCCTGGGCATCGTTGAAACCGAGTCGGCCGGGCGCACCTGA	MDNGRYARQAATAEGTAVSEPVPHILLIDDIPEDIRATLILLKAQPWRISLASDAYQGYQRALALRPDLIVLDVHMPQMDGFSLCRLLREAPATRHIPILFLSSANTSLERLEGLTVGAVDYIPKSCAPEEVLARIKIHLQLTWRAPPTVQESPADPEPQGDEIVLRAAMRLIENQLDDMPSLGMLAQKVGTHEKRLSAIFREHLGLTVFAYIRDARLRRGQDLLCESAMSVQDVAELVGFRSACNFTTAFRQRIGMTPSQFRQQTLGIVETESAGRT				NA	NA	NA	NA	NA
D1-36_04172	1665	hxuB	COG2831	Heme/hemopexin transporter protein HuxB	ATGCATAACAAATTGATGTATTGCGCCGCTGGTCTGGCGCTGTTGTCCACTTCCCCGGCCTGGGCGGCGACCCTACCGGCACGCCCGATCCCCGACGCGGGGCGCATCCTGCAAGAACTGCCGATTCCTCAACAGGAACTGCCGCAAAGCATTCGCCTGGACGTCGAGGCGCCGCAACCGGCGCAGGAAAAAGTCGGCGGCGCCAAGGTCCAGCTCAATGCCGTGCGTTTCACCGACAATACCCGTATCGACGAGGCCAACCTGCAACGCGTCGTCGCGCCGGCCATTGGCAAGTCCCTTGATCTGGACGAGCTGCGGGAAATCGCCCGGCAGGTCACGCTTTACTACCGTGAGCACGGTTACCCGTTTGCACGCGCCTACCTGCCGGCTCAGCGCATGGCCAACGGCGAGCTGACCATCGCGGTGATCGAAGGGCGTTATGGCAAAGTCACTGCCGTCAACGACGATGCAAAACTGGCCGCGCAGGCGCAGCCCTTCCTGGACGACTTGCAGCCGGGCGACGTGATCGAGCGTGACCGCCTGGAGCGCAGCATTCTGGTTCTGTCCGACCTGCCGGGCGTGGCGGTTCGTCCGGTCATCCGCCCGGGTGACGAGCTCGGTACGGGCGACCTCGATGCCCAGGTGAGCAAAACCAAGGCCTTCGAAGGCAAGGCCACGCTGGACAACCACGGCAACCGGTATTCGGGGCGCAATCGCCTGACGGTACAAGGTGACTGGAACAGCCCGATGATGCTGGGCGACCGGCTGAGCGCCGCCGTGATGGCCACCGATGAGGAGCTGTATTTCGGCAGCCTCGGCTACTCGATGCCATTGGGAACCTCTGGCCTGCGCGGCAACGTGGGCTACGCCAAGAGCTCCTATGACCTGGGCGCTGAATTCGCCGACCTGGGTGCGACCGGTACCGCCGAAGTCAGCAGCGTCGGCTTGAGTTATCCGCTCGTACGCAGCAATCAGGCGAACCTCATGTTGGCCGGGCAGTACCAGCACAAGGATCTAGAAGATAAGTACGAAGTACTGGGCCTGAGCTTTGAAAAAAGCAGCGACTCGCTGCCCATCAGCCTGCAGTTCGATGTGAGGGACACCTTGCTCGGCGGCGGCATCACCTACGGTGGCGCGACGCTGACCTACGGTGACCTGAAACTTGATTCCGCCCTGCGCGAGGGCGACCGTCAGACCGCCCAGACCGAAGGTCAATTCAGCAAGGTGAACGTCGACCTTGCCCGCCTGCAAGCGCTGCCCGCCAACTTCACGCTGTTCGCCCGGTTCCTCGGCCAATGGAGCCAGGACAACCTCGATTCCTCCGAAGATTTCAGCCTCGGTGGCATCGATGGGGTGCGGGCTTATCCACAAAGCGAAGCCTCGGGCGACGAAGGCATGCTGACCCAGATCGAGCTTCGCTACCCCATCGACAAGCTGACGCCTTACCTGTTCTGGGACGCCGGCAAAGTGCGCATCAACCACGACGAGTGGGCTGACGAGGAAAACACCCGCAGCATCTCCGGCGGCGGTGTGGGTTTGCGCGCTCAGTACGGCCCGCTCTCGTTCGACGCAACGGTCGCCTGGCGTCACTCCGGCGGTGAAGCGCAAAGCGACACGCGTCAGGAAAACCCACAACTGCTGGCCCAGATTGGGTACCAGTTCTAA	MHNKLMYCAAGLALLSTSPAWAATLPARPIPDAGRILQELPIPQQELPQSIRLDVEAPQPAQEKVGGAKVQLNAVRFTDNTRIDEANLQRVVAPAIGKSLDLDELREIARQVTLYYREHGYPFARAYLPAQRMANGELTIAVIEGRYGKVTAVNDDAKLAAQAQPFLDDLQPGDVIERDRLERSILVLSDLPGVAVRPVIRPGDELGTGDLDAQVSKTKAFEGKATLDNHGNRYSGRNRLTVQGDWNSPMMLGDRLSAAVMATDEELYFGSLGYSMPLGTSGLRGNVGYAKSSYDLGAEFADLGATGTAEVSSVGLSYPLVRSNQANLMLAGQYQHKDLEDKYEVLGLSFEKSSDSLPISLQFDVRDTLLGGGITYGGATLTYGDLKLDSALREGDRQTAQTEGQFSKVNVDLARLQALPANFTLFARFLGQWSQDNLDSSEDFSLGGIDGVRAYPQSEASGDEGMLTQIELRYPIDKLTPYLFWDAGKVRINHDEWADEENTRSISGGGVGLRAQYGPLSFDATVAWRHSGGEAQSDTRQENPQLLAQIGYQF	PGPT0003648_78	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-HEMOPHORES-HEME|HEMIN_TRANSPORT,PGPT0003648-hxuB-NA	NA	NA
D1-36_04173	6144			hypothetical protein	ATGAATAGAAGTTACCGAGTCGTCTGGAATGCCGTGATGGGCGCATGGCAGGTGGCATCCGAGTTGGTCAAAAGCCAGGGCAAGGACAAAAGCCGTCAATCCCTCAACCTCAGGCTGAGCCTCGTCATGGGCGTGGGCGGCAGTGTATTCGCCTCGTTTGCCACGGCGGGGCCTTTGCCGTCCGGCGGCAATATCGTGGCGGGTAACGGCAGCATCCACCAGGGCGGCACGGGCATGGTCATTCATCAGGGCAGCGACAAGCTTGCGATTGACTGGCAGAGCTTCTCCATCGGCAAGGGCAACACCGTCCAGTTCGTCCAGCCTGGCGCGAATTCTGTCGCATTGAACCGGGTATTAGGCTCGGATGTGTCGGTGATCCAGGGCGCGCTGAAAGCCAACGGCCAGGTGTTCCTTGTCAACCCCAACGGCGTATTGTTCACCCCCGGCGCGCAAGTGGATGTGGGCGGTCTGGTGGCCTCCACGCTTAATCTATCCACCGAAGATTTCCTTGCCGGCAATTACCGTTTCAGTGGCGACAGCGCCGCGTCGGTGGTCAACCAGGGCAACATCAACGCAGCGCAAGGCGGCACTGTTGCCCTGATCGCTGCGAAAATCGTCAACGAAGGCAACATCACCGCGCACAAGGGCAACGTGCTGCTGGGCGCCGGCAGCGTCGTGACGCTCGACTTGGGTGGGCCGGTGCAGTTGGAAGTCCAGGAAGGCGCGTTGCAGGCGTTGATTGAAAACGGCGGTGCAATTCGTGCCGATGCCGGGAAAATCCTGCTGACCGCCCGTGCGGCGGAAACCCTGGCGAGCACCGTCATCAACAACACCGGCCTGATCGAAGCCCGTTCCCTGGATGTCGGTGAAAACGGCGTGGTCACGTTGATGGGCGACCGGGGCGACGTACAAGTCGCCGGGCGCATCGATGTGTCTTCCGACACCGCCAAGGGCGGCAAGATCGTCGTGACCGGGGATCGCGTGGCCATCAACGGCGGCGCTGCGCTCGACGCCACCGGCGCCAAGGGCGGCGGCGAGATTTACGTGGGCGGAAGCTGGCAAGGCAAGGACGCTTCGATCAAGCAGGCCAGCCAGACCACTATCGCCGCTGGCGCCGTGCTCGATGCATCGGCCACCGATAACGGCAAAGGCGGCACCGTGGTGGCCTGGTCGGATGTGAAGAAGCCTGGCAGCGTGACGCGCGTGGACGGCACCTTGAAAGCCACCGGCGGCGCCAAGGGCGGTGACGGCGGCAAGATCGAAACCAGCGGCGCCAAGCTGGCGGTGAGCAAAGCCGCCGATGCCTCGGCCAAAAACGGCAAGGGCGGCTTGTGGTTGCTCGATCCGGACAGCGTCACGGTGGGACCGGGCAACGGCGGGTTGACGGGCGGCGCCAACGGGACAGAGGCCACGGTCGGTTTCAACGCGATCGATACGGCCCTGGCCGGCGGCACCGATGTGGCGATCAAAGCCGACAACAGCATCCACTGGAACGGCGACTACACCCCGACGAACATCAGCGGCGATCGGACGCTGACCTTGCAGTCCGGGCACAACGACGTCGGCACGGGCCGCTACGTCTTCGGCAATATCTTCCTCAACGGTGACATCGACGCCAGCGGCGCGGGCAATGGCAACAGTTTGGCGTTGATCTTCAATGGCAAGATGGCGCTCAACACCGACGTCAGCCTGAAGAGCAACGGCGGCAACATCGTGTTTGCCGGCGTGGTGGATTCCGATGCGGTGGCCAACAAGCGCGAGCTGCGCGTGGACGCAGGTTCAGGCTCGATCATCTTCAGCGACATGGTCGGCGGTAACAGCGCCCTGGGCGCCCTGTACGCGACCACCAGTGGCGCCGGCAAGACGTATATCAACGGTGCAAAAGTCTTTACCAGCGGCGAGCAGGTCTACAACGGTGCGGTTGAGATGGGCACCTCGCAGTTCCTGAACGCCGACTTCGAAAACGGCCTGGTCGGCTGGAAGACCTCCATCGACCAGTTCTTCACTGGTGTGACCGTGGTGGAGGGCGTGGTATCTCCCGATGACCCGACGCTGCCAACCACATCGCCGACCAATGGCAACCCGCCGAGCGTTTCGCCTGGCGACCAGGGCGACATGAACTACAAGCCCCTCACACCGGTCGTCGCGGCTGGCCAGGGCCAGGACGGTGGCGCTGCGCTGCTGCTGGGCACCGAGAACAACTCCAACTGCCAGAACGCACCCGCCGGTTGCATCATGCGCGGTCCGTCGGTGGTGAGCGAGGGCACGGTCTCCCTGGCGGCGGGGGAAGCGGTCAGTTTCGATTACAAACCGGTTGCGGGCGGCGACACCTATGATGTCTTCGGCTATCTGTTGAACGTCAACACCGGTGAATACCAGATCATCCTGAACGAAACGGGGAACGGCACGGGCGCGGTGGATTGGAAAAGCCATACGGCGACCGCTGACAAGGCCGGCACGTACAAATTCGTGTTCGTTTCGGGCAGTTTCGACCAGACCGCCGGCAAGCAGGTTGGCGGCTCGCTGTACGTCGACAACATCAAGACCAACACCTCTGGCAGCAAGGGCCTGCAAGGCAGTTCGATTACGTTCAACGGCAGCCTCAACGGCACCGACAACAACCTGGCCATCAAGGCCGACGATATCAACTTCAACGGCGGCGCCGGCAGCGTTACCGGCAATGGCTCCATTGCCCTTGAAACCAACACCCCGAGCAAAAACATTGCCGTGGGCGGCAGCACCGGCGACGCCGCCGGTTCGTTGGAACTGACCGGCACCGACATCAGCGCCCTGGGCGACGGGTTCACTTCCGTCAAGATCGGTGGCGCGGACATGACCGGTGACATCAGCATCATCGAAGCCACCCGCATCAACGACAACCTTATCCTCGATGCCGGCACCGGCGATATCCACATCAATGACCAGTTGACCGTGGCGGACGCACCGGGCACCGGCAACGACGACAACAAACCGGCTCCGGTCCTGGCATTGCAAAGCAATGGCGGCAAGATCGACCAGACCGCTGGCGGCGCCATTGTCGCCGATGGCCTGGTGTTGCTGGGTGACGGCGCCGTCCATGACCTGGACAACGCCGCCAACGACGTCGACACGATTGCCAGCGACACCGGCACCGTCAGCTTTGCCGATGTCGATGACCTGACCGTCGGCGTCGTCACCGTTCCTGACAGCCAGACCCCGGCGAACCCGCAAGGTGTGCCGGTGGCCGGCATGACTCAGACCGGCGACCTGAACCTTATCGCCGACACGCTCACGGTCGGCCAGGCATTGGCGACCCAGGGCAATACGAGCCTGACCGCCGACGAAATCGATCTCGCCGCGAGCGTTGCCGGTGGCGGCAGTCTCACCTTGCAGCAGAAAACCCCAGGCCTGGATATCCACGTGGGCGGCAGTGATGACCCAGAGGTGACCGGGCCAAACGATCCGCTGGTGCTGTCCGACGCTGACCTGGCCAACATCCAGGACGGTTTCGACAAGGTCGTCATCGGCAATGACAAGACCCGCAACATCACCGTCGACGATGAAGGCGCGACGCTCATGGACGACCTGGCGTTGGTCGCCAACGGTGTCCTGAACCTGCTGGGCGATCTGACCCTCGAGGATCCCGAAGGCAACGACGAAGACGGCACGACCGGCAAAGGCCTGACCCTCACCGTCGACGCCGGCAAAGGGGCGACCCAGGCAACGGGCGCGACCATTACCGCGGACGAATTGGCCCTGCGCGGCGAAGGCGATTTCGACCTGGGCAAGGGGCATGACGTGGGCGTCATCGCCGCCGATGTCGGCAGCTTGAAATTCGCCGGCAACGGCAACCTGACGGTTGGCGTCGTGGACGGCACCGTTGGGATTACCTCCGACGAAGCGGTCACCCTGAAAACCGACCACGACCTGTCGCTGGTTAAAGGCATCACCATCGAAAACGGCCCACGGGATGACGCCGGCCAGGGTCAAACCCGCGCCGACGACATCATCACCCTGGAAGTGGCGGGCAACACCACTCAGGCCGGTGACGCCGGGGCCAAGCTCGATGCCAGCGGCCTGGTGCTGCTGGGCGGCAACTACGCCCTGGGCAACAGCGGCAACGTGATCGGCGATATCGCCAGCGATGCGGGCAAGGTCCAGTTCAACAACAACGGGAACCTCAAGGTGGGCTCGCTTACCGCGACCCATGCCGATGGCACGCAGACGACCGTCACCGGTGTGAACAACACTGGCGACGTCAGCATCGCCACCGACGGTGATCTGGCGATCAACGAAGCGCTGGCCACCAGCGGCAACGTGTTCCTCAACGTCGATGGCAAGACCACCCAGGATGCCAACGGCAACATCACCGCTGACGGCCTGGCGCTCAACGGCGGCGACTTCGAGTTGCGCAACAACGGCAACGTGGTGGGCGATATCGCCAGCGAGGCGGGCAAGGTCGCGTTCAACAACACTGGCAACCTGAAGGTCGGCACGCTGACTGAAACCGACGGCAACGGCAACGTGGTCAAGACGACCACCGGGGTGAACAACACCGGCGACGTCAGCATCGGCACCGACGGCGATCTGGCGATCAACGAAGAACTGGTCACCAGCGGCAACGTGTTCCTGAACGTCGATGGCAAGACCACCCAAGATGCCAACGGCAACATCACCGCGGACGGCCTGGCGCTCAACGGCGGCGACTTCGAGTTGCGCAACAACGGCAACGTGGTGGGCGACATCGCCAGCGAGGCGGGCAAGGTCGCGTTCAACAACACTGGCAACCTGAAGGTCGGCACGCTGACTGAAACCGACGGCAACGGCAACGTGGTCAAGTCCACCTCCGGGGTGAACAACACCGGCGACGTCAGCATCGGCACCGACGGCGATCTGGCGATCAACGAAGCGCTGGCCACCAACGGCAACGTGTTCCTCAACGTCGATGGCAAGACCACCCAAGATGCCAACGGCACCATCACCGCCGATGGCCTGGCGCTCAAGGGCGGCGATTTTGACCTGCGCAATGCCAGCAACTGGGTCGGCGATATCGCCAGCCGGGCGAAGGACGTCAACTTCGTCAACCGCACGGACGTCACCGTCGGCAGGCTGACCGAGACGGCGCTGGACGGCACCCAGCTGGATCAGATCGTTGGCATCGGCAACACCGGCAAAGTCCAGGTTGTAACGACCACCGGTAATATCACCCTGACCGAGAACGTCAGCACCACCAGCAATGCCGCTGATGTGATCGTGCTCAACGCCGGTCAATCCGCTTCGGCGGGCGTGGCCTCGGGCGGTGACGTGAAAGCCAACGCGGGCGTGACGGTGTCCACCGGCGCGGGTGGCCGGGCGGTGATCTACACCGGCAGCCTCGCCGGCAGCACCGGCGTGGTGGATGTGGTGGGCAGTGGCAGCGGCAACTTCCGCTACAACAGCGACGAGCAGCAGAGCAATTTCGGTCGGGCGCTGGGCAACACCGGGGTTCATGCCGTATACCGCGAGCAACCGACGCTGGTGGTGTCCACGAACGGTACGACCACCCAGACCAAACCATTCGACGGCCAAACCACGTTCAACGGTGGCGGTGCAGCCGGTTTCGACGTCAACGGCCTGCAGAACGGTGACACCAAACAGATGCTCGGCCAGCCGGAGTATTCGATAGGAAACCCAGACCCCGGCACCCACCAGATCAATATCGGTGGGCTGGCTGACCTCGGTTACCTGATCGTCAGCGACCCGGCCAATGGCAACCTCACGGTGACGCAGTCCATCGATATCAGCGCCATCCAGCAGAGCGTCGCCGATGCAACGCGCATCGTCGTGCAAGTGACTTCGCCCCATGCGCCGGAGCTCAATCCGGTCCAGCCGAAACCGACTGATTGGTCCGGCGTCGGGGTCGAGGACGGCGGCCTGCTGCTGGTGGATCAGAGCGGCGCGCCGGCAAACGCCAATGGCGGCAACGCTGCGGGCGACGCCCTGGCCCAAGGCGACGGCGATTCGGCTGCCCAGGCCCAGGACGCCGACAGCGAGCGGGAACTGGCCGGGACTGTCTGCGCCGACGGCGGTGTATCGGGTGGGGCCGCCTGTGCGGCCTACCCGCCACAGACTGTTTTCGTCGTGCGCGGCGGTGTGCGCTTGCCGAGCCTGGCCATGCGTCCCTGA	MNRSYRVVWNAVMGAWQVASELVKSQGKDKSRQSLNLRLSLVMGVGGSVFASFATAGPLPSGGNIVAGNGSIHQGGTGMVIHQGSDKLAIDWQSFSIGKGNTVQFVQPGANSVALNRVLGSDVSVIQGALKANGQVFLVNPNGVLFTPGAQVDVGGLVASTLNLSTEDFLAGNYRFSGDSAASVVNQGNINAAQGGTVALIAAKIVNEGNITAHKGNVLLGAGSVVTLDLGGPVQLEVQEGALQALIENGGAIRADAGKILLTARAAETLASTVINNTGLIEARSLDVGENGVVTLMGDRGDVQVAGRIDVSSDTAKGGKIVVTGDRVAINGGAALDATGAKGGGEIYVGGSWQGKDASIKQASQTTIAAGAVLDASATDNGKGGTVVAWSDVKKPGSVTRVDGTLKATGGAKGGDGGKIETSGAKLAVSKAADASAKNGKGGLWLLDPDSVTVGPGNGGLTGGANGTEATVGFNAIDTALAGGTDVAIKADNSIHWNGDYTPTNISGDRTLTLQSGHNDVGTGRYVFGNIFLNGDIDASGAGNGNSLALIFNGKMALNTDVSLKSNGGNIVFAGVVDSDAVANKRELRVDAGSGSIIFSDMVGGNSALGALYATTSGAGKTYINGAKVFTSGEQVYNGAVEMGTSQFLNADFENGLVGWKTSIDQFFTGVTVVEGVVSPDDPTLPTTSPTNGNPPSVSPGDQGDMNYKPLTPVVAAGQGQDGGAALLLGTENNSNCQNAPAGCIMRGPSVVSEGTVSLAAGEAVSFDYKPVAGGDTYDVFGYLLNVNTGEYQIILNETGNGTGAVDWKSHTATADKAGTYKFVFVSGSFDQTAGKQVGGSLYVDNIKTNTSGSKGLQGSSITFNGSLNGTDNNLAIKADDINFNGGAGSVTGNGSIALETNTPSKNIAVGGSTGDAAGSLELTGTDISALGDGFTSVKIGGADMTGDISIIEATRINDNLILDAGTGDIHINDQLTVADAPGTGNDDNKPAPVLALQSNGGKIDQTAGGAIVADGLVLLGDGAVHDLDNAANDVDTIASDTGTVSFADVDDLTVGVVTVPDSQTPANPQGVPVAGMTQTGDLNLIADTLTVGQALATQGNTSLTADEIDLAASVAGGGSLTLQQKTPGLDIHVGGSDDPEVTGPNDPLVLSDADLANIQDGFDKVVIGNDKTRNITVDDEGATLMDDLALVANGVLNLLGDLTLEDPEGNDEDGTTGKGLTLTVDAGKGATQATGATITADELALRGEGDFDLGKGHDVGVIAADVGSLKFAGNGNLTVGVVDGTVGITSDEAVTLKTDHDLSLVKGITIENGPRDDAGQGQTRADDIITLEVAGNTTQAGDAGAKLDASGLVLLGGNYALGNSGNVIGDIASDAGKVQFNNNGNLKVGSLTATHADGTQTTVTGVNNTGDVSIATDGDLAINEALATSGNVFLNVDGKTTQDANGNITADGLALNGGDFELRNNGNVVGDIASEAGKVAFNNTGNLKVGTLTETDGNGNVVKTTTGVNNTGDVSIGTDGDLAINEELVTSGNVFLNVDGKTTQDANGNITADGLALNGGDFELRNNGNVVGDIASEAGKVAFNNTGNLKVGTLTETDGNGNVVKSTSGVNNTGDVSIGTDGDLAINEALATNGNVFLNVDGKTTQDANGTITADGLALKGGDFDLRNASNWVGDIASRAKDVNFVNRTDVTVGRLTETALDGTQLDQIVGIGNTGKVQVVTTTGNITLTENVSTTSNAADVIVLNAGQSASAGVASGGDVKANAGVTVSTGAGGRAVIYTGSLAGSTGVVDVVGSGSGNFRYNSDEQQSNFGRALGNTGVHAVYREQPTLVVSTNGTTTQTKPFDGQTTFNGGGAAGFDVNGLQNGDTKQMLGQPEYSIGNPDPGTHQINIGGLADLGYLIVSDPANGNLTVTQSIDISAIQQSVADATRIVVQVTSPHAPELNPVQPKPTDWSGVGVEDGGLLLVDQSGAPANANGGNAAGDALAQGDGDSAAQAQDADSERELAGTVCADGGVSGGAACAAYPPQTVFVVRGGVRLPSLAMRP				NA	NA	NA	NA	NA
D1-36_04174	405			hypothetical protein	ATGATCCGATGCAAACGCGCCTATGAAACCGCCACCGCCGAGGATGGCGTACGGGTGCTGGTCGACCGCTTGTGGCCGCGTAACTGCCCCAAGGGTGCCTTGGCGATCACCGAGTGGCTGCCGCAGGTCGGGCCTTCCCATCCATTGCGCAAGGCGTTCAAGGCGGGCGCGGTTTCGTTCGAGCAGTTCCGCGAGGCGTATCGCAAGGAATTGGCGGCGCGGCCGGAGCATTGGTGGAAGCTGGTGGACCTTGCGCGGGATGGAACGCTTACCCTGGTGTATGCGGCCAAATCGACGGATGAAAATAACGCGGTGGTGCTGGCGCAGTGGTTGGAGGATGAGGTGGAGAAACGCACGGAGTCGAGCTCACCGGTGTGTTATCTGGATGAGTTTCCAGAGCTTTGA	MIRCKRAYETATAEDGVRVLVDRLWPRNCPKGALAITEWLPQVGPSHPLRKAFKAGAVSFEQFREAYRKELAARPEHWWKLVDLARDGTLTLVYAAKSTDENNAVVLAQWLEDEVEKRTESSSPVCYLDEFPEL	PGPT0014885_18	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014885-yxlJ|aag-K03652	NA	NA
D1-36_04175	1512			hypothetical protein	GTGACGCCATCGCCCTTTGATCCGTTGGTTCATATCGATTGGAAAACACCCGGCAGCGACTTGCTTGGGCTGCTGCAGCATTACTACCCCGACATCGGGGTGTTTGCCGGCCCGGGGTTCGAGACGTTATTGGATGAGCTGTCCAACGAGATGCCCGAGGTCTGCTTCGAGGCGCTGGCGGCGCTGTTGTCGCACCAGGGTTACGACCTGTGGAACCTGGACGCCGGCGGCGATGATTATCGGCCGGTTATTTTCCCCTCCGACCAACGCGAGGCGTTTGCCCAGCATTGGCAAAGCCCACGTGGCGAACCCAGATTCACGCCGAGATTGATCGAGCCGCCCAAGACCATGGTGACCGAACACAAACCGGCCAAGACCAAGCGCGGCAAGGTGAACTGGCTGCAGGAAGTCCATGACTACCCCGGCCCCACTCACGTGCATGAATACAACTACCGCAATGGCTGGGCTGCCATCACCGAGCAGGACGAAGACCGGTGGTTGTGCTTTTTGATCGACTACAACCAGTGGCCGCCTGTCGAGCTGGACATGCTCGAACAACGCACCGATGAGGTGGATGGCGGGGACCTGCGGCTGATCGACGCCAACGCCCAGCGCAGCCTGTGGCGACGCCAGGTCAAACACGGCGATTACAGCGCGGATGATCGGTTCAAATATGAGATTCGCCGGGGCGATACCATCGAGGACTTCGGACCTGCCGGCCAGGAGTGGCAGGCATTTGAAGAACCCTGCGTTGTTGCAGACGACACGATTTTCGAGCGCCAGCGCATTTACGAGCCCAAGCACCTGACGAGGATCTGGCGGACCACGGCGGACAGCAGCGAGGTGATTTTCGAGGACTCGGATGAGCTGACCATCCTGCCCGTCGGCCCGCGCCGATTGCTGTTCATGCAACACAACGGCAAGCGCTGCTGGGTCTGGAACCAGGACCCGCCGCACCAGGCCGTCGCCGCCAAGCCAATGCCCGCCGAGGCTTATAAGCTGCGCGCATCGACCGCGTACCTGGGCGGTGACGAAATTTTGCTGTTCAGCGAAGGCGCGCGGCCGAACGTCGAGCACTCGGGTTATCAAGAGACGGTGCTGTTGGCGTGGCGCTTCAATTTCATCACCGGCACCAAGGCGAAGGCGACGTTGGACGGCTTCGGCAGCGAACTGCGCCAGGACACCCGCCTGCTGGTCACCCAGCCCAAGCAGGTGATCACGCTGCGCACGTTCCATGGACAGCTTCATGTGTCCCGTGGGCATGATGATTGGTGGGTGTGGCGTTATCGCGCCAACACCTTCGGCACCCAGACCCTGGCATGGTTTTGGAATCAACGCAGCAATGAGGTAGTGAAGCTCTCGACCAAGGATATCCCGCGCGTCAAGCCTGAGATTCGTTACGTGCCGGCGCAGGAACGGTATCTGGCGTTCGAGACGGATTTTGTGGCGCGGTTGCCGGGCTTCGCGCAGATCCTTGAGGCCAAGGGATGTGAGGTTCTGACTTTTCAGTGA	MTPSPFDPLVHIDWKTPGSDLLGLLQHYYPDIGVFAGPGFETLLDELSNEMPEVCFEALAALLSHQGYDLWNLDAGGDDYRPVIFPSDQREAFAQHWQSPRGEPRFTPRLIEPPKTMVTEHKPAKTKRGKVNWLQEVHDYPGPTHVHEYNYRNGWAAITEQDEDRWLCFLIDYNQWPPVELDMLEQRTDEVDGGDLRLIDANAQRSLWRRQVKHGDYSADDRFKYEIRRGDTIEDFGPAGQEWQAFEEPCVVADDTIFERQRIYEPKHLTRIWRTTADSSEVIFEDSDELTILPVGPRRLLFMQHNGKRCWVWNQDPPHQAVAAKPMPAEAYKLRASTAYLGGDEILLFSEGARPNVEHSGYQETVLLAWRFNFITGTKAKATLDGFGSELRQDTRLLVTQPKQVITLRTFHGQLHVSRGHDDWWVWRYRANTFGTQTLAWFWNQRSNEVVKLSTKDIPRVKPEIRYVPAQERYLAFETDFVARLPGFAQILEAKGCEVLTFQ				NA	NA	NA	NA	NA
D1-36_04176	543			hypothetical protein	ATGAAAGAACAACAACAAACCTTGCTGCAAACCCTGCGGGCCCGTTTTGAACAGAAACCCGACCGCCATCCAAACATCCCATGGGCCGACGTCCAGACGCGGCTCGACAACAACCCCAGCGCCCTTGAAACGCTCCAAGCCATGGAAGCCACCGGCGGCGAGCCCGACGTGATTGGCCTGGACGCGAAGACAGGCTCTATCACCTTTTGCGATTGCGTAAAGGAAAGCCCGACCGGCCGCCGCAGCCTCTGCTACGACCGTGCGGCCCTGGATGCGCGCAAGGAGAACAAACCCAAAGGCAGTGCCTTGGAATTGGCCGAAGCGATGGGCGTGAGCCTGTTGACCGAAGTGCAATACCGGGCATTACAAGCGCTGGGTGAGTTTGATGCCAAGACGTCCAGTTGGTTGGCAACACCTTCGGAAATCCGGGCGCTGGGTGGGGCGTTGTTTGGCGATTTTCGTTATGGCCGGGTGTTCGTTTACCACAATGGGGTGCAGTCGTATTACGCGGCGCGTGGGTTTCGTGGGGTGCTGCAGGTTTAA	MKEQQQTLLQTLRARFEQKPDRHPNIPWADVQTRLDNNPSALETLQAMEATGGEPDVIGLDAKTGSITFCDCVKESPTGRRSLCYDRAALDARKENKPKGSALELAEAMGVSLLTEVQYRALQALGEFDAKTSSWLATPSEIRALGGALFGDFRYGRVFVYHNGVQSYYAARGFRGVLQV				NA	NA	NA	NA	NA
D1-36_04177	300			hypothetical protein	GTGAATACAACGATAAGCTGCATCAGAGCGCTGCCACTTATCCTGCCTATTACATTGGCCGGCACCTGTTTCCCGGCGCTGGCGACCGAGGACTGCAATATTCAGAAAGTCGGGCTGGCGATGATTCTGGAACCTGGAGGTATAGCTCAAAAAGCCTTGTCCAAAGCCCAGTACAGGGAAAAACTGGATGTGAAGCGCGTGCGGATCACCCACTCGGAACGGGCCAAGCACCCGGATAAATCTCGCCTCACTGTGGTGATCGACAAAAAAAGAAAAGTGAAGCACATCTATTGCGAATGA	MNTTISCIRALPLILPITLAGTCFPALATEDCNIQKVGLAMILEPGGIAQKALSKAQYREKLDVKRVRITHSERAKHPDKSRLTVVIDKKRKVKHIYCE				NA	NA	NA	NA	NA
D1-36_04178	285	aceE_2	COG2609	Pyruvate dehydrogenase E1 component	ATGCACCCCGGGATGCCAAGACGATCGTCGCATCTGCTCGACTGCCTGGGCCCCTCGGACAGTCCGGTCGTCGCGGTGACGGGTTACGCGCAGCACGTCGCCGAGCAGATCGGCAGCCACATCGGCTCACGGTTCGTGGCCCTCGGCGCCGACTCTATCGGTGCCGCTTGCGCAGCGGTGGATAAACACTGGATCGTGGTGTCGTCGTTGCAGGCCCTGGCTCAGGATGGGCTTATCGACCGAGCGTTGGTCGAGCAGGCGATGAGCCAATACCTGTTGCAATGA	MHPGMPRRSSHLLDCLGPSDSPVVAVTGYAQHVAEQIGSHIGSRFVALGADSIGAACAAVDKHWIVVSSLQALAQDGLIDRALVEQAMSQYLLQ				NA	NA	NA	NA	NA
D1-36_04179	453			hypothetical protein	ATGTCTTCAAACGAGCCGGACACCTGGTTCAGATTCGTCCGGGCCCACCGCTGCCTGATCCGCGAAATAGAGCGTCGCCTGGCGGCTGAGGGGCTGCCTGCCTATGCTTGGTACGACGCGTTATGGGGCTTGGAAAGTGGCCCTGACGGCGCGCGGCGGATGAGCGAATTGGCCGATGTCATGGCCATCGAACGCTACAATCTCACGCGCCTGGTCGACCGCCTGGAGGCTGAGGGCCTGGTCACCCGCAGCCGCGCCAGCGACGACGGTCGAGGCGCGTACGCGGCCATCACCGAGAGCGGGAAAGCGCTGCGCAAGAAGATGTGGAAGGTCTATGAAGGCGCGGTGGACGAATTGTTCCTATCGCAGTTCGATGACGACCAGCAACGAGTCTTCAGCGAAGCATTGGAACGTGCGGCCAAAGCGGCGCGCTCCAGTGGGCGAGCGGGATGA	MSSNEPDTWFRFVRAHRCLIREIERRLAAEGLPAYAWYDALWGLESGPDGARRMSELADVMAIERYNLTRLVDRLEAEGLVTRSRASDDGRGAYAAITESGKALRKKMWKVYEGAVDELFLSQFDDDQQRVFSEALERAAKAARSSGRAG				NA	NA	NA	NA	NA
D1-36_04180	2670	aceE_3	COG2609	Pyruvate dehydrogenase E1 component	ATGGCACAACAATCCATTTTTCTCGACGAGGATCCACAAGAGACTCGCGAATGGCTCGAATCCATTGAGTCGGTGGCAAGCGTCGAAGGGCGCCCTCGCGCTCACTACCTGATCGACCAGATGCTTGATTTCGACGCCAACCGCCACGGCGATTTCTACGGCCGAGTGACGACCCCCTACGTCAATACGATCCCGGTCGACCGCCAGCAGCCCTATCCTGGCGACCTGGCCGTCGAGCGCCGGATCAACGCCTATATCCGTTGGAATGCACTGGCCATGGTGCTGCGCGCCGGCAAACATTCAAACGTGGGCGGGCACATCGCGTCCTATGCATCGGCGGCCGTTTTGTACGACGTCGGCTTCGAGCATTTTTTCCGTGGCCGCACCGAGCAATTCGCTGGCGACATGGTGTACATCCAAGGCCATTCTTCACCCGGCATCTATGGACGCGCCTATCTGGAAGGTCGCCTGAGCGAAGAGCAGCTGGACAACTTCCGCCGCGAGACTGACCGCGACGGTGTTTCGTCCTATCCGCATCCACGGCTGATGCCAGACTTCTGGCAGTTTCCAACGGTCTCCATGGGGCTCGGACCGATCACCGCCGCGTATCAGGCCCGGTTCATGCGCTACCTTGAAGATCGTGGCCTGAAAGAACACCAAGGCCGCAAAGTCTGGGCGTTTCTCGGTGACGGTGAAATGGATCAGCCGGAATCGCTGGCGGCCATTTCCCTGGCGGGCCGGGAGAAGCTCGACAACATCATTTTTGTCGTCAACTGCAACCTGCAACGCCTGGACGGTCCGGTGCGTGGCAACAGCAAGGTGATCCAGGAGTTCGAAAGCCTGTACCGGGCGGCCGGCTGGAATGTCATCAAGGTGATCTGGGGCAGTGGCTGGGATGCCCTGCTGGAAAAGGACAAGAGCGGCCTGCTGCGCCAACGGATGATGGAATGCGTTGACGGCGACTACCAGAACTATAAATCCCAGAACGGCGCCTATGTCCGTGAACACTTCTTCGGCAAGTATCCCCAGTTGCTGGAGCTGGTCAGCGACCTGAGCGACGACGACATCTGGAAGTTGTCTCGCGGTGGCCACGATCCGGAAAAAGTCTACAACGCCTATGCCGCTGCCATGCGCCACACTGGCGGGCCGACAGTCATTCTGGCCAAGACCGTGAAAGGCTTCGGCATGGGCGAAGCGGGTGAAGGCCAGAACATCAATCATCAACTCAAGAAAATGGGCGACGAGGCGGTCAAGGCGTTCCGTGACCGGTTCGCACTGGCGCTCACCGACGACCAGTTGGGTGACATGCCTTATCTCAAACCCGCCGCGGACAGCGTCGAAGCCCTCTACCTGCAAGCCAGGCGGACCCAGTTAGGCGGCTATATCCCGGCGCGTTTCAACGCCGTGGCGCCATTGCAGGTGCCACCCTTATCAGCGCTGGATACACAGCTCAAAGGCACGGGCGAACGGGCGATTTCCACCACCATGGCGTTCGTGCGCATCCTCGGCACGCTGCTCAAGGACCCGAACATCGGCAAGCTGATCGTGCCCATTGTGCCGGACGAATCTCGCACCTTTGGCATGGAAAGCCTGTTCCGCCAGATCGGCATTCACTCCCATGTCGGCCAGTTGTATACCCCACAAGACGCCGGCCAGTTGAGCTACTACAAAGAAGCCCGGGACGGCCAGATCATGCAGGAGGGGCTGAACGAGTCCGGCGGGATATCTTCGTGGATCGCCGCAAGCACGTCCTACAGCACCCATGGCGTGATGACGGTGCCGTTCTACATCTTTTACTCGATGTTCGGCTTCCAGCGCGTTGGCGACCTGGCCTGGGCGGCGGGCGACGCACGCGCTCGCGGCTTCCTGCTCGGGGCGACTTCCGGCAGGACGACGCTCATGGGTGAAGGCCTGCAACACGACGACGGCCATAGCCACGTGCTGTCCTCGACCATCCCGTGTTGCGTATCCTACGACCCGACCTACGCCTACGAACTGGCGGTGATCATCCAGGACGGTATGCGGCGGATGTACGCTGAAAACGAAGACATCTTCTATTACATCACCGTACTGAACGAAAACTACGCCCACCCACCGATGCCCGAAGGTGTCGAGGAAGGCATTCTCAAGGGCATGTACCGCCTCTCGGCGCCGGAAAAACCTGTCGAAGGCAAGCATGTGCAGCTGATGGGTTGCGGTTCAATCCTTCAGGAAGTCGTTGCGGCGGCCCAATTGCTGGAACAGGATTTTGCTGTCAGCAGCGAAGTCTGGAGCGTGACCAGCCTGACCGAACTGCGCCGTGACGGCCAGGAAGCCGAACGCTGGAACCTGCTGCATCCCGAGCACGCGCCGCGCGTCGGTTATGTGGAAAGTTGCCTGCACGACAAACAGGGCCCGGTGGTGGTCGCGACGGACTACATGAAGATTTTCGCCGACCAGATCCGCCCGTTCGTACCCAAGCGCCGCTTCGTGGCCCTGGGCACGGATGGTTTCGGTCAATCGGACACTCGCGAGTCGCTGCGCAGATTCTTTGAGGTGGACCGTCACTTCATCGCCCTCGCGGCGTTGAAGGCCCTGGCCGACGACGGGCAAATCCCAAGGGGAAAAGTCGCTGAGGCGATCACACTTTATGGGATCGATCCGCAAAAGCAGAACCCTGCGAAAGTTTGA	MAQQSIFLDEDPQETREWLESIESVASVEGRPRAHYLIDQMLDFDANRHGDFYGRVTTPYVNTIPVDRQQPYPGDLAVERRINAYIRWNALAMVLRAGKHSNVGGHIASYASAAVLYDVGFEHFFRGRTEQFAGDMVYIQGHSSPGIYGRAYLEGRLSEEQLDNFRRETDRDGVSSYPHPRLMPDFWQFPTVSMGLGPITAAYQARFMRYLEDRGLKEHQGRKVWAFLGDGEMDQPESLAAISLAGREKLDNIIFVVNCNLQRLDGPVRGNSKVIQEFESLYRAAGWNVIKVIWGSGWDALLEKDKSGLLRQRMMECVDGDYQNYKSQNGAYVREHFFGKYPQLLELVSDLSDDDIWKLSRGGHDPEKVYNAYAAAMRHTGGPTVILAKTVKGFGMGEAGEGQNINHQLKKMGDEAVKAFRDRFALALTDDQLGDMPYLKPAADSVEALYLQARRTQLGGYIPARFNAVAPLQVPPLSALDTQLKGTGERAISTTMAFVRILGTLLKDPNIGKLIVPIVPDESRTFGMESLFRQIGIHSHVGQLYTPQDAGQLSYYKEARDGQIMQEGLNESGGISSWIAASTSYSTHGVMTVPFYIFYSMFGFQRVGDLAWAAGDARARGFLLGATSGRTTLMGEGLQHDDGHSHVLSSTIPCCVSYDPTYAYELAVIIQDGMRRMYAENEDIFYYITVLNENYAHPPMPEGVEEGILKGMYRLSAPEKPVEGKHVQLMGCGSILQEVVAAAQLLEQDFAVSSEVWSVTSLTELRRDGQEAERWNLLHPEHAPRVGYVESCLHDKQGPVVVATDYMKIFADQIRPFVPKRRFVALGTDGFGQSDTRESLRRFFEVDRHFIALAALKALADDGQIPRGKVAEAITLYGIDPQKQNPAKV	PGPT0001385_1763	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
D1-36_04181	714	lutR_4	COG2186	HTH-type transcriptional regulator LutR	ATGGAGCGTGTCACAACCGATCGACGCCTGAGCATGACTCAGCAACTGGTGGTCGACCTGACGCAGCAGATACTCACGGGCGACCTGCCTGCGGGCAGCAAGTTGCCAACGGAACAGGTGATCATCAAGGAGCGTGGCGTCAGTCGGACTGTTGTCCGTGAAGCCATGTCCCGGCTCCAGGCTGAAGGCTTGGTGGAAACCCGACATGGCATCGGCACGTTTGTGGTGGACACCGCGCGCCCGGGAGATTTCCAGGGCGGCAAACATGTCAAGGGTGGTGCTTATGACGCGCTGGCCGTGATCGAGCTGCGCCTGAGCCTGGAAGTGGAAGCTGCGGGTATCGCTGCGCAACGCGCCACGCCGGATCAGTTGCTAACGATGCGTGAGGCGCTCGATGCGGCGAATGCGCTTGATCCAACGGATGAGGAAAGCGCCCGGGTCGATTTCGAGTTTCATCGGCAGGTCGCCCAGTGCACCGGCAACAGCTTTTTCATCGATGCCATGGCCCATGTGGGCAACACGTTGATCGAGGTAGTGCAACAGGCCGGGCCGTCGGTGACAGGCCAGAACCGGGCACTGGTGGTGCGCGAGCGGGAGCAGATCTACGCGGCGTTGGCGCGGCACGATGCGCAAGCAGCACGGGCTTCGATGCGGTTGCATTTGATCAATATGTTGCAGCGAGTCCGGGGTGTGGTCGAACTGAAGGCGCAATGA	MERVTTDRRLSMTQQLVVDLTQQILTGDLPAGSKLPTEQVIIKERGVSRTVVREAMSRLQAEGLVETRHGIGTFVVDTARPGDFQGGKHVKGGAYDALAVIELRLSLEVEAAGIAAQRATPDQLLTMREALDAANALDPTDEESARVDFEFHRQVAQCTGNSFFIDAMAHVGNTLIEVVQQAGPSVTGQNRALVVREREQIYAALARHDAQAARASMRLHLINMLQRVRGVVELKAQ				NA	NA	NA	NA	NA
D1-36_04182	744	lutR_5	COG2186	HTH-type transcriptional regulator LutR	ATGACGGACCAAGCGTTATCTCCATTGAACAAGCCGCGCCGCCTGGCCGAAACACTGGTCGACCGTTTTGCCCAGCGCATGCGCGACGGCATCCTGAAATGTGGCGAAAAACTGCCCACCGAAGTGCACATCATGGAAGCCGAAGGCGTCAGCCGTTCGGTGGTGCGCGAGGCATTGTCGCGTTTGCAGGCGGCGGGGTTGGTGGAGACGCGCCATGGCGTCGGCACGTTTGTTCTGGATATGCCGGCACCGGAAGGGTTTACCCTCGGGCCAGCGACGATTGCCACATTGTCCGACGTGCTCAACTTGCTGGAGTTTCGTCTGAGCCTCGAAGTGCAGGCCGCCGGCATGGCCGCCGAACGCGCCACGCCCGAAGCCCTGGCCGAACTGGCCCAGGCGTTGGATGCGTTGTTGCAAGGGCCGGAAAAATCCGGCACCACCATCAACGCCGACTTTCAGTTCCACTTGAAAATCGCCAAGGCGGCCGGCAATTACTACCTGATCGACATCATGAAGCACCTGGGTACGAAGCTGATCCCGCGCACCCGGATGAACTCCGCCTACTCAGGGCAAAGTGATCGCAGCGCCTACCTGCAGGGGATCAATGCCGAGCACCAGCAAATCTTCGATGCCATCGCCAGTCGCAATGTCGATGCGGCGCGGGCGGCCATGTACCTGCATTTGAGCAACAGCCGCATGCGCCTGTGTGAAACCCAACAACGCCAGGCGTTCTACAACGACTAA	MTDQALSPLNKPRRLAETLVDRFAQRMRDGILKCGEKLPTEVHIMEAEGVSRSVVREALSRLQAAGLVETRHGVGTFVLDMPAPEGFTLGPATIATLSDVLNLLEFRLSLEVQAAGMAAERATPEALAELAQALDALLQGPEKSGTTINADFQFHLKIAKAAGNYYLIDIMKHLGTKLIPRTRMNSAYSGQSDRSAYLQGINAEHQQIFDAIASRNVDAARAAMYLHLSNSRMRLCETQQRQAFYND				NA	NA	NA	NA	NA
D1-36_04183	723	kdgM		Oligogalacturonate-specific porin KdgM	ATGAAAAAGACCCTCGTAGTTTTGTCGATCGCTTCGTTGTTCACCTCGGTTGTCGCTCAGGCGGATACCGGTTATATCAATGTCCGGCATCAATATGCTGAAAAGACTCGAATGCATGCCGACCGCGCCAAGTTCGGCATCAGGCTGGATAACGGCGTGGGCCTGGAAGGTGAACTCAAATACAAGACGGCCGGTGACCGGAAAGACGTCGCCTTCGACAATACCGTCGGCAGCGGCCATGAGTTTACCGTCAACTACCAGCATAAGATCAATGATCGCTGGACGCTGACGCCTTCGTTGGCCCTGGACAGCGATGAGGAGTCCACCACCTACAAGTTGGGCCTGCGCCTGGGTTACCGAGTAACCAAAGAGCTGAGTATCGCCGGTCGCTATCGTTATGATTCAGCCAAGCTGGACCGCGACAAGATTGACCGTGACGTTCCGCACAATGGGCAGGACGACCAGAAGGTCAACCGTTACGATGTTTATGTCAACTACGGTCCTCAAGGACCGTGGGCCTATGAATATCAATTGACTTACTTCGACGCCGACTACATTCGCTATAACGGCGGTACTGACGACTATGAGCAGAATGCCGTGGTTAAATACCAGTGGGATAAACGCTGGGCGCCGTTCTTTGAAGTGGGTGATATCAAGGTCAACTCGGTGGACAGTGATCGACAACTGCGGTTGCGGGTCGGCGTTAAATACAGCTTCTTCTAA	MKKTLVVLSIASLFTSVVAQADTGYINVRHQYAEKTRMHADRAKFGIRLDNGVGLEGELKYKTAGDRKDVAFDNTVGSGHEFTVNYQHKINDRWTLTPSLALDSDEESTTYKLGLRLGYRVTKELSIAGRYRYDSAKLDRDKIDRDVPHNGQDDQKVNRYDVYVNYGPQGPWAYEYQLTYFDADYIRYNGGTDDYEQNAVVKYQWDKRWAPFFEVGDIKVNSVDSDRQLRLRVGVKYSFF	PGPT0017275_140	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_OLIGOGALACTURONATE_TRANSPORT,PGPT0017275-kdgM|kdgN|nanC|ompL-K22110	NA	NA
D1-36_04184	768	oppF	COG4608	Oligopeptide transport ATP-binding protein OppF	ATGAGCATGATCGAAATCACCGGCCTGAACCTCAGTTTCGGCACCGGCGCGGCACTGAACGCGGTACTGCACGACGTGGACCTGAGCGTTGGCGAAGGTGAGGCGTTTGGCCTGGTGGGGGAGTCCGGTTCGGGCAAGACCACCGTGCTGCGTTGCCTGGCCGGACAATACCAGCACTGGACTGGTCAACTGCAAATCGCCGGCAGGGCAGTGACGCGCAAGCTGCCGCTGGACCACTACCGTACCGTGCAGATGGTTTTCCAGGACCCGTACGCCTCGCTGCATCCGCGCTACACCATCGACGCCGCGCTGCAGGAGCCACTGCGTATCCACGGTATCGACGGGCGTGGGCCGAAGGTCAGCGAGATCCTGCGCAAGGTTGGTTTGAACGACAGCTTTCGCTTTCGTTACCCGCATCAATTATCCGGCGGCCAGCGCCAACGCGTGGCGATTGCCCGTGCGCTGATCCTGCGCCCTCGGGTATTGCTGTTGGACGAGCCGACCTCGGCGCTGGATGTCTCGGTGCAGGCGGAAATCCTCAATCTGTTGGCCGATCTGCGTCGTCAGGAAGGGCTGACCTATTTGATGGTCACCCACGACTTGGCGGTCGTTGCGCATTTGTGCGATCGGCTGGCGGTGATGCAGCAGGGCAGGGTAGTGGAGACACTCGACAGTCACTTGCTCGCGAACAATGGCGCCGACCATGAATACACGCGCCTGTTGGTGCAAGCCAGTCGCGATATTCAACGCGTACCTATTGCCGTTTGA	MSMIEITGLNLSFGTGAALNAVLHDVDLSVGEGEAFGLVGESGSGKTTVLRCLAGQYQHWTGQLQIAGRAVTRKLPLDHYRTVQMVFQDPYASLHPRYTIDAALQEPLRIHGIDGRGPKVSEILRKVGLNDSFRFRYPHQLSGGQRQRVAIARALILRPRVLLLDEPTSALDVSVQAEILNLLADLRRQEGLTYLMVTHDLAVVAHLCDRLAVMQQGRVVETLDSHLLANNGADHEYTRLLVQASRDIQRVPIAV	PGPT0004440_9363	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004440-ddpF-K02032	NA	NA
D1-36_04185	840	oppD	COG0444	Oligopeptide transport ATP-binding protein OppD	ATGACTGAGATAAAACTTGCGGTACGGGATTTGTGCGTGGAATTTCGCAACGCGGGCAAAACCTCGCTGGCGGTGCGTGATGTGTCGTTCAACCTGGGCCGGGAAAAACTCGCCATTGTCGGCGAATCCGGCTCGGGCAAATCCACCGTCGGCCGCAGCCTTTTGCGTCTGCATCCGCCGACGGCGCGGGTCACCGCCAAGACCCTGCGCTTCGCCGATATCGACTTGCTGAGCGCGAGCGAAAAGCAGATCCAGGCGATTCGCGGCGCGCGCATGTCGATGATCATGCAAGACCCGAAATATTCACTGAACCCGGTGGTGCGCGTTGGCGAGCAAATCGCCGAAGCCTATCTTGCCCATCACAAAGTGCCCCATCGCCAAGCGCGGGAACGGGCCTTGGACATGCTCGCAAAGGTGCACATTCGTGACCCTCGTCGGGTCTATGACCTGCACCCCCACGAAGTCTCTGGCGGCATGGGCCAGCGGATCATGATCGCCATGATGGTCATCACCGATCCCCAGGTGATCATCGCCGACGAACCCACCTCGGCCTTGGACGTATCGGTGCGCCGGCAGGTGCTCAACGTGCTGGAAGAGCTGGTCAGCGAGCGTGACCTTGGACTGATTTTCATCAGCCACGATTTGAACCTGGTACGGCATTTCTGCGACCGCGTGCTGGTGATGTACGCCGGCCGCGTGGTCGAGTCGATTGCCGCCGCCGACCTGGATAACGCCACCCATCCCTACACCCAAGGCCTGTTGGCCGCATTGCCCAGCCTGGACCATCCGCGCGCCACGCTGCCGGTGTTGCAGCGCGACCCGCACTGGTTGAATCCTTGA	MTEIKLAVRDLCVEFRNAGKTSLAVRDVSFNLGREKLAIVGESGSGKSTVGRSLLRLHPPTARVTAKTLRFADIDLLSASEKQIQAIRGARMSMIMQDPKYSLNPVVRVGEQIAEAYLAHHKVPHRQARERALDMLAKVHIRDPRRVYDLHPHEVSGGMGQRIMIAMMVITDPQVIIADEPTSALDVSVRRQVLNVLEELVSERDLGLIFISHDLNLVRHFCDRVLVMYAGRVVESIAAADLDNATHPYTQGLLAALPSLDHPRATLPVLQRDPHWLNP	PGPT0004435_13395	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
D1-36_04186	909	ddpC_2	COG1173	putative D,D-dipeptide transport system permease protein DdpC	ATGAACCTGCCCCTTGCTTCCAGCGCAGCCGGCAGTGCCGCGCTGCCTGCTTCGAGTACGGCTGCGCTGGTCGCCAGCGCCACCCGGCTGCTGCGATTTCTGCTGCGCAACCCGATGACGTTCGCCGGCCTGGTCGTCGTCTCGACCCTGATCCTGGTCGCGGCCTTCGCGCCCTGGATCGCCGGTCACGATCCCTTGGCGCAGAACCTTGCTGGCGCGTTGCATGCGCCCAGCAGCGAGCACTGGTTCGGCACTGACGAGTACGGTCGCGATGTGTTCGCCCGGCTGGTGTATGGCTCGCGCATCACGCTGTACATCGTCTTGCTGGTGACGGTGATCGTCGGCCCTATCGGCCTGTTGGTCGGCACGGTTTCCGGTTACTTCGGCGGTTGGGTCGACAGCCTGTTCATGCGCATCACTGACATCTTCATCTCGTTCCCCAGCCTGGTGTTGGCGCTGGCTTTCATCGCTGCCCTCGGCCCGGGCCTGGAGCACGCGGTGATCGCCATCGCGCTGACGGCGTGGCCGCCGATAGCCCGATTGGCACGCGCTGAAACCCTGCCGCTGCGCAACGCTGACTTTGTCGTGGCGGTCCAGCTCCAGGGCGCGTCGAGTCCCCGGATCATCCTGCGCCACATCATTCCGATGTGCCTGTCGTCAGTGATCATCCGCCTGACCATGAACATGGCGAGCATCATCCTCACCGCCGCCGCCCTGGGCTTTCTCGGCCTCGGCGCTCAGGCACCCTTGCCGGAGTGGGGGGCGATGATCTCCACCGGGCGGCGCTACATGCTCGAAAGCTGGTGGCTGGTGGCGGCGCCCGGTGCGGCGATCATGCTGGTCAGCCTGGCCTTCAACCTGTTGGGCGACGGCTTGCGCGACGTCCTTGATCCCCGCAGCCAATCCTGA	MNLPLASSAAGSAALPASSTAALVASATRLLRFLLRNPMTFAGLVVVSTLILVAAFAPWIAGHDPLAQNLAGALHAPSSEHWFGTDEYGRDVFARLVYGSRITLYIVLLVTVIVGPIGLLVGTVSGYFGGWVDSLFMRITDIFISFPSLVLALAFIAALGPGLEHAVIAIALTAWPPIARLARAETLPLRNADFVVAVQLQGASSPRIILRHIIPMCLSSVIIRLTMNMASIILTAAALGFLGLGAQAPLPEWGAMISTGRRYMLESWWLVAAPGAAIMLVSLAFNLLGDGLRDVLDPRSQS	PGPT0004450_6851	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
D1-36_04187	1038	dppB_2	COG0601	Dipeptide transport system permease protein DppB	ATGTCGACTGCATCCTTTTCAATCTGGACCATCCGGGCCGTTTCGGCGACCCGGCGCGGCGGCTCGGTGGCGGTGACGCTGCTGGGGTTGCTGCTGCTGACTTTCTTTATCGGACGCGTGATGCCCCTGGACCCGGTGCTGGCCATCGTCGGCCCGGACGCCGACGCTTCGGCGTATGCCCAGGTATATAAAGAGCTCGGCCTGGACAAGCCATTGTGGACCCAGTTCGCTATCTATCTCGGCGATCTGGTTCACGGTGATTTCGGCATGGCGTTGCTGACGGGCAATCCAGTCATCACTGACATCGCCCGAGTATTCCCGGCGACATTGGAACTGGCGACCCTGGCCATTCTGTTCGGCGTGCTGGCGGGCCTGCCGCTGGGTGTCTACGCGGCGACCCATCAGGGCCGTGCCGGTGACCATATCGCACGGCTGATCACGCTGTTCGGTTATTCCACGCCGATTTTCTGGATCGGCATGATGGCTTTTTTGGTGTTCTACGCCTGGCTGGGTTGGGCCGGCGGCGTCGGGCGGATCGGCCTGGCCTATGACGGGCTGATCCCCAGTCACACCGGATTGTTGTTGATCGACACGGCTTGGTCCGGCGATTGGGAGGCCTTTCGCAGCGCACTGCGGCACATCCTGCTGCCGGCGGTGATCCTCAGCTTCAACTCGGTCGCCTACATCAGCCGCATGACCCGCAGCTTCATGCTCGAACAGCTGTCCCAGGAGTACATCATCACGGCCCGGGTCAAGGGTCTGTCCCAACGCAAGATCGTCTGGGGCCATGCCTTCGGCAACATTCGCGTGCAGCTGTTGACCATTGTTGCGCTGGCCTACGGCGGGTTGCTCGAAGGCGCGGTGCTGATCGAAACCGTGTTTGCCTGGCCGGGCTTCGGGCAGTACCTGACGAGCAGTCTGTTGCTCGGTGACATGAACGCGGTGATGGCTTGCGTTCTGTTGATCGGCCTCATCTTCGTGACGCTGAACCTGATCAGCGATGCGCTCTACAAGATCTTCGACCCGAGGACTCGCTAA	MSTASFSIWTIRAVSATRRGGSVAVTLLGLLLLTFFIGRVMPLDPVLAIVGPDADASAYAQVYKELGLDKPLWTQFAIYLGDLVHGDFGMALLTGNPVITDIARVFPATLELATLAILFGVLAGLPLGVYAATHQGRAGDHIARLITLFGYSTPIFWIGMMAFLVFYAWLGWAGGVGRIGLAYDGLIPSHTGLLLIDTAWSGDWEAFRSALRHILLPAVILSFNSVAYISRMTRSFMLEQLSQEYIITARVKGLSQRKIVWGHAFGNIRVQLLTIVALAYGGLLEGAVLIETVFAWPGFGQYLTSSLLLGDMNAVMACVLLIGLIFVTLNLISDALYKIFDPRTR	PGPT0004445_2000	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
D1-36_04188	1623	ddpA	COG0747	putative D,D-dipeptide-binding periplasmic protein DdpA	ATGAAACTCTGGCCCAAGCGCCTGTCCAGGCTGCTGTGTGTCATCGTGGCGCTGTGCACAGTGCAGGTGCCCGTCAGCCTGGCCAAAGGCGAAACGCCCGCCGACCAATTGGTGGTGGGCATGAGCATGATCAACCTGTTGTCCCTGGACCCGGCCGCCGCGACGGGCCTGGAGGTTGCCGAGGTCAACGCCAACGTCTACGACATGCTCCTGGAGCAAGACGCGGCGCAGCCGGACACGCTGGTTCCGGCCTTGGCCAAAAGCTGGGAAATCAGCCCGGACCGGATGCGCCTGACGTTTCAATTGCGCGACGACGTACGCTTTCACTCCGGCGCTCCGCTCACTGCGCAGGATGTCGCCTGGTCCTTGCAGCGCGTTGTCATCCTCAACCGCGCCTTGGCTTCGACTTGGAAAGCTTACGGTTTCACAGCCGAAAATGTCGTCAAACTGATGCGGGCAGAAGGGCCGCACACCTTTGTCATGGAGCTGGCGCGCAGCACCGATCCGCTGCTGGTGCTCAATACCTTGGCAACTTCGCCCAGTGCCTTCATCGTCGACCGCTCGGTGGCCTTGCAGCATCAGGTCGGTGACGATCAGGGCGCGGCCTGGCTGGCTACGCATACGGCCGGGTCAGGCGCATTCAAGCTCGACATATGGCGGGCCAACGATGTGATCCTGATGAGTCGCAATGACGACTATTGGCGCGGCGCGCCGAAGTTGCGCCGGGTGATCATGCGCAACATGACCGAGTCACAGGCGTTGCGCCTGATGGTCGAGCGGGGTGACCTGGACGTAGCGCGCGGCATGGCCGCCACCGACATCAAGGCGCTGGGCAAGGTCGACGAGGTGCGCATTCAGAGCATCGCCCGCGGAACGCTGTACTACGTGGCGATGAGCATGCAGCAACCGCTGTTCCAGGACATCCGCGTGCGCCAGGCGATCCGTCTGTTGATCGACTACCAGGGCATCAACGATGTGGTGATGCCGCATTACGGCGTGATCAACCAGCGGCCGATGCAGTTGGGCTTGCCGGCGCGCCTGGACGATCCGGGTTATCGCCTGGACGTGGCCAAGGCCAAGCGGCTGCTGGCGGAGGCCGGACATGCCGAAGGCTTCAAGGTGAGCATTCGCTCGCTGACCGACCCGCCGTTCATCAACATCGCCACCAGCCTGCAAGCGACGCTGGCCCAGGCGGGCATCCAGGCGACGATCATCACCGGCACCGGCAACCAGATTTACGGGGCGATGCGCGACCGACAGTTCGACATCCTCGTGGGGCGTGGTGGTGGCGGGGCTGAGCGCCATCCGCATTCGAGCCTGCGCGCTCTGGTGTACAACCCGGACAACCGCACCGAAGCCAAGTTGAGCAACTTCCAGGGCTGGCGCACCTCGTTCTTCAACCCGCAGCTCAACCAGTTGATCGAACAGGCCGAGCGCGAGCGCGACCCCGAGCGTCAGCGGCAAATGTACGCCCAGGTCCAGACCCTCTATGACCAACAGGCCGGGGCAATCATGCCGGTCTCACAGATGGTCGATGAGGTGGTGATCCACGCTGACGTGCGCAACTACATCGGACACACCGCCGCTACCACGCGCCTTCGGGACGTCTACAAGCAGCGCTGA	MKLWPKRLSRLLCVIVALCTVQVPVSLAKGETPADQLVVGMSMINLLSLDPAAATGLEVAEVNANVYDMLLEQDAAQPDTLVPALAKSWEISPDRMRLTFQLRDDVRFHSGAPLTAQDVAWSLQRVVILNRALASTWKAYGFTAENVVKLMRAEGPHTFVMELARSTDPLLVLNTLATSPSAFIVDRSVALQHQVGDDQGAAWLATHTAGSGAFKLDIWRANDVILMSRNDDYWRGAPKLRRVIMRNMTESQALRLMVERGDLDVARGMAATDIKALGKVDEVRIQSIARGTLYYVAMSMQQPLFQDIRVRQAIRLLIDYQGINDVVMPHYGVINQRPMQLGLPARLDDPGYRLDVAKAKRLLAEAGHAEGFKVSIRSLTDPPFINIATSLQATLAQAGIQATIITGTGNQIYGAMRDRQFDILVGRGGGGAERHPHSSLRALVYNPDNRTEAKLSNFQGWRTSFFNPQLNQLIEQAERERDPERQRQMYAQVQTLYDQQAGAIMPVSQMVDEVVIHADVRNYIGHTAATTRLRDVYKQR	PGPT0004430_8153	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
D1-36_04189	1155	gci	COG4948	D-galactarolactone cycloisomerase	ATGAGAATCACAGGCGTTCACGTCGAAATATTTTCCACTCCGTCGCGTCGCGCCCAGGACAGCGCCGGCCACGCTCATCCCGGCGACGAAGTCATGATCAAGATGGCCCTGCTGCGGATCAGCTGTGACGATGGATCGGAGGGTTATGCGTTCGGTACGCCTGAATTGATTCGACCGCACATCATCGAATCCTTCGTGCGCAAGGTGCTGATCGGTCGCGACCCGATGGACCGTGAGCGCATCTGGCAGGACCTGGCGCATTGGCAGCGCGGTAGCGCAGGGCAGTTCACCGACCGGGCGCTGGCCCTGGTGGAACAAGCCTTGTGGGATCTGGCCGGGCGCAAGCTGAAGCTGCCGGTGCACAAGCTCATCGGCGGTTACCGCGACAAAGTCCTGGCCTACGGCTCGACGATGTGCGGCGATGATCTGCCGGGCGGTCTATCGACGCCGGATGAGTACGGCCAGTTTGCCGAAAAGCTCGTCGAGCGCGGCTACAAGGCAATCAAGCTGCACACCTGGATGCCGCCGATTTCCTTCGCGCCAAATCCGCAGATGGATATCCAGGCCTGCGCCGCCGTGCGCGAAGCGGTTGGCCCGGACATCGCGCTGATGCTCGACGGCTACCACTGGTACAGCCGCATGGACGCGCTGACCATCGGCAAGGCCCTGGAAAAGTTGAATTTCGCCTGGTTCGAAGAGCCGATGATGGAAGACTCCGCCGAGTCCTACGCCTGGCTGGCGGCCAACCTGGATATTCCGGTGCTGGGCCCCGAAAGCATCGCCGGCAAATTCCACAGCCGCGCCAGTTGGGTCACGCACAAATCCTGTGACATCCTGCGCGCCGGCGTGGCCGGCGTCGGCGGCATCGGGCCCTGCCTGAAAGTGGCGCACCTGGCCGAGTCGTTCGGCATGGATTGCGAAGTCCACGGCAACGGCGCGGCGAACCTCGCCGTGGTGGGGGCGATCAGCAATTGTCGTTGGTACGAGCGTGGCCTGCTGCACCCGTTCCTCGATTACGAGCAAGTGCCGGCGCATCTCAACAGCATCGTCGATCCGATGGACGCCGACGGTTATGTGCACCTGTCTGATCGGCCGGGGTTGGGCGAGGACATCAACTTCGCCTATATCGAAGCCAACACATTATCCCGACATTGA	MRITGVHVEIFSTPSRRAQDSAGHAHPGDEVMIKMALLRISCDDGSEGYAFGTPELIRPHIIESFVRKVLIGRDPMDRERIWQDLAHWQRGSAGQFTDRALALVEQALWDLAGRKLKLPVHKLIGGYRDKVLAYGSTMCGDDLPGGLSTPDEYGQFAEKLVERGYKAIKLHTWMPPISFAPNPQMDIQACAAVREAVGPDIALMLDGYHWYSRMDALTIGKALEKLNFAWFEEPMMEDSAESYAWLAANLDIPVLGPESIAGKFHSRASWVTHKSCDILRAGVAGVGGIGPCLKVAHLAESFGMDCEVHGNGAANLAVVGAISNCRWYERGLLHPFLDYEQVPAHLNSIVDPMDADGYVHLSDRPGLGEDINFAYIEANTLSRH				NA	NA	NA	NA	NA
D1-36_04190	417			hypothetical protein	ATGAAGAACTTCAGCATCGAGCGCATCGACCACATCGTCTTGCGCGTGAAAGACATCGAACGCAGCCTCGCCTTCTACACATCGGTATTGGGTTGCGAGCTCAGGAAACGTCGGGACGAGCTGGGACTGATCCACCTCGGCGCCGGTGCATCGATGATCGATCTGGTGGACGTCGACGGGCCACTTGGCCGTCAGGGTGGCGAAGCAGCGGGCCAACAGGGCCATAACGTCGACCATTTCTGCCTGCGCATCGAACCGTTCGACGAACCAGCGCTGCTCGCTCATCTACACGCAGCCGGCCTGGAGGTCGAGAAAGCGCAAATGCGCTTCGGGGCGGAGGGTAAGGGCTTATCGATCTACTGCTGCGATCCGGATGGCAACCAGATCGAGTTGAAGGGGCCGTCGCTGGAGCCCTGA	MKNFSIERIDHIVLRVKDIERSLAFYTSVLGCELRKRRDELGLIHLGAGASMIDLVDVDGPLGRQGGEAAGQQGHNVDHFCLRIEPFDEPALLAHLHAAGLEVEKAQMRFGAEGKGLSIYCCDPDGNQIELKGPSLEP				NA	NA	NA	NA	NA
D1-36_04191	372			hypothetical protein	ATGATCGATTTCAACAACAAAGGTTTCTTCAAGCTCAAGCAAAACGATGAGTACGCCGAACGCGTCACAGCCCTCTTGCTGGACGGCGAACAAGTCATCGACGCCTACAAGTCCATGCGCGATGGGGTGGTCTTTACCAACAAACGCATCATTGCCGTGAACGTGCAGGGCATCACCGGCAGCAAAAAGGACTTCACTTCGCTGCCCTATAAAAACATCGTCGCGTACTCGGTGGAAACCTCCGGCACCTTCGACCTGGATTCTGAACTGGAGATTTACTTTTCGTCCCTGGGCAAGGTGAAGTTCGAATTCACCGGCAAGACCGGTATCGTTGAAATCTCCAAGGTCATCTCCAGGCACCTCTTGGCCTGA	MIDFNNKGFFKLKQNDEYAERVTALLLDGEQVIDAYKSMRDGVVFTNKRIIAVNVQGITGSKKDFTSLPYKNIVAYSVETSGTFDLDSELEIYFSSLGKVKFEFTGKTGIVEISKVISRHLLA				NA	NA	NA	NA	NA
D1-36_04192	996	dctP_1	COG1638	C4-dicarboxylate-binding periplasmic protein DctP	ATGCTCAAATCCTTGTGGAAAGCGCTCGCCTGTACATTGGTCATTACCGCATCGGGCGCCGCCATGGCAGCCGATCCCATCGTCATCAAGTTCTCCCACGTAGTCGCCGAGCAGACGCCGAAGGGCCAAGGCGCGCTGATGTTCAAGAAACTGGCGGAAGAACGCTTGGCGGGCAAGGTGAAGGTCGAGGTTTACCCCAACTCCACGCTGTTGGGCGATGACAAGGAGATGGAAGGCTTGCTGCTGGGAGACGTGCAGATCATTGCCAGGTCACTGGCGAAGTTCGAGCAGTACACCCGCAAAGTCCAACTGTTCGACCTGCCGTTCCTGTTCGATGACATCGCGGCGGTAGATCGCTTCCAACAAAGCCCCCAGGGCCAGCAATTGCTCAAGTCCATGGAGAGCAAGAACATCACTGGCCTGGCCTATTGGCACAACGGCATGAAACAGCTCTCGGCGAACAAACCGCTGCGCATGCCCAGCGATGCGCAGGGCCTGGTGTTTCGTGTGCAGACCTCCGCCGTGCTGGAGGAGCAGTTCAAGGCGGTAGGCGCCAAAGGGCAACCGATGATTTTTTCGGTGGTGTATCAGGCCCTGCGCGCGGGTGTGGTCAATGGCGCGGAGAACCCCTATTCGAACTTTTACAACCAGAAACTGAACGAGGTGCAGAAGTACGTCACCGAGACGGACCACGGCATTCTCGACTACATGCTCATTACCACGTCCGATTTCTGGAACGGTTTGCCAGCGGACATTCGAGTCGAACTGGACAAGATCGTGGTCGAGGCAACCGCCCATGCCAACAAAGAGGCGCAGCGACTGAACCAGCACGACAAGGAACGGGTTCTGGCCGCCAAGACCACCGAAATCACCACCCTCACGGCGGACGAGCGCAACGCGTGGCGCGACAAGATGAAGCCCGTTTGGGCGAAGTTTGAAGCAGATATCGGCCCGGACCTGATCAAGGCTGCCGAAGCGTCCAACAAGACGCAGTAA	MLKSLWKALACTLVITASGAAMAADPIVIKFSHVVAEQTPKGQGALMFKKLAEERLAGKVKVEVYPNSTLLGDDKEMEGLLLGDVQIIARSLAKFEQYTRKVQLFDLPFLFDDIAAVDRFQQSPQGQQLLKSMESKNITGLAYWHNGMKQLSANKPLRMPSDAQGLVFRVQTSAVLEEQFKAVGAKGQPMIFSVVYQALRAGVVNGAENPYSNFYNQKLNEVQKYVTETDHGILDYMLITTSDFWNGLPADIRVELDKIVVEATAHANKEAQRLNQHDKERVLAAKTTEITTLTADERNAWRDKMKPVWAKFEADIGPDLIKAAEASNKTQ	PGPT0017325_699	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017325-dctP-K11688	NA	NA
D1-36_04193	996	dctP_2	COG1638	C4-dicarboxylate-binding periplasmic protein DctP	ATGTTTAAACCTATGTGGAAAGCACTCGTCTGCACGCTGGCTCTCAGCGCGCTGAGCACCGCCATGGCGGCTGATCCGGTGGTCATCAAGTTCTCGCACGTGGTGGCTGAACAAACGCCAAAGGGCCAGGGCGCGCTGCTGTTCAAGAAGTTGGTGGAAGAACGCCTGCCGGGCAAAGTCAAAGTCGAGGTGTACCCTAACTCCTCGCTGTTCGGCGACGGCAAGGAAATGGAAGCCCTGCTGTTGGGCGACGTGCAGATGATCGCCCCGTCCCTGGCCAAGTTCGAGCAGTACACCAAGACGGTGCAGTTGTTTGACCTGCCCTTTCTGTTCGATGACATCTCCGCCGTGGACCGCTTCCAGCTGAGCCCAGAGGGCCAGAAACTGCTCAAGTCCATGGAAAGCAAGAACATCACCGGCCTGGCCTATTGGCACAACGGCATGAAGCAACTGTCCGCCAACAAGCCACTGCGCGAACCCAAGGACGCCCGTGGCCTGAAGTTCCGCGTTCAGGCGTCGGCCGTACTGGAAGAACAGTTCAAGGCGGTGAACGCCAACCCGCGCAAGATGAGCTTCGCCGAGGTGTACCAAGGCCTGCAGACTGGCGTGGTCAACGGTGCGGAAAACCCGTACTCGAACATCTACAGCCAGAAAATGCATGAAGTTCAGAAGTACATCACCGAGTCCAACCACGGCTTGCTCGACTACATGCTGATCACCAACACCAAGTTCTGGAACGGCCTGGACCCAGACGTTCGTACCGAACTGGACAAGATCGTGGTGGAAGTTACCAAGCACGTGAACAAAGAAGCCGAGCAACTGAACCAGAAAGACAAGCAGAACATTATCAACGCCAAGACCACCGAGATCATTACGCTCACGCCTGAACAGCGCAACGAATGGCGCGAGAAGATGAAACCGGTGTGGAAGAAGTTCGAAGGTGACATCGGTGCCGACCTGATCAAGGCCGCCGAAGCCTCCAACAAGGCTCAGTAA	MFKPMWKALVCTLALSALSTAMAADPVVIKFSHVVAEQTPKGQGALLFKKLVEERLPGKVKVEVYPNSSLFGDGKEMEALLLGDVQMIAPSLAKFEQYTKTVQLFDLPFLFDDISAVDRFQLSPEGQKLLKSMESKNITGLAYWHNGMKQLSANKPLREPKDARGLKFRVQASAVLEEQFKAVNANPRKMSFAEVYQGLQTGVVNGAENPYSNIYSQKMHEVQKYITESNHGLLDYMLITNTKFWNGLDPDVRTELDKIVVEVTKHVNKEAEQLNQKDKQNIINAKTTEIITLTPEQRNEWREKMKPVWKKFEGDIGADLIKAAEASNKAQ	PGPT0017325_698	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017325-dctP-K11688	NA	NA
D1-36_04194	633	dctQ	COG3090	C4-dicarboxylate TRAP transporter small permease protein DctQ	ATGAACGCCCTTCGGCGCACTTGGGAACATTTCGAGGAAGCTTTCATTGCCTTCCTTTTGGCCGCCATGACGTTGGTCACCTTCGTCTACGTGGTCCTCAACAACCTTTATGCGGTGTTCTACAGCCTTGGCGACAACTGGCCGGCCGCCAGCGAGCCCATGTTCGCCATCGGCGACGGCATCATGGGCATGGCCCAGGCCATGACCTGGAGCAGCTCCTTGACCAAGGCGCTGTTCGGCTGGTTGATTTTCTTTGGCCTGTCCTACGGCGTGCGCACCGCCGGGCACATCGGTGTCGATGCGCTGGTGAAACTGGCGAGCAAACCGGTGCAACGCTACATCGGCGTGATCGCCTGCCTGTGCTGCCTGGGTTATGCCGGGTTGCTCGCGGTGGCGAGTTTCGAGTGGATCAACACCTTGATGATTGCCGAGATCGGCGCCGAAGACCTCGGCCACTTCGGCATCATGCAATGGCATATCGGGCTGATCGTGCCCGTAGGATTCGCGTTGGTATTCATCCGCTTTGCGGAAATTCTCGTACGCATCCTGATGAATCGTCAGACCGGACTGGGCCTGGCCGATGAAGCGGCGGAAGCGATCAAACTGACCGATATCGAGGAAGACAAGCCATGA	MNALRRTWEHFEEAFIAFLLAAMTLVTFVYVVLNNLYAVFYSLGDNWPAASEPMFAIGDGIMGMAQAMTWSSSLTKALFGWLIFFGLSYGVRTAGHIGVDALVKLASKPVQRYIGVIACLCCLGYAGLLAVASFEWINTLMIAEIGAEDLGHFGIMQWHIGLIVPVGFALVFIRFAEILVRILMNRQTGLGLADEAAEAIKLTDIEEDKP	PGPT0017330_272	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017330-dctQ-K11689	NA	NA
D1-36_04195	1284	dctM_2	COG1593	C4-dicarboxylate TRAP transporter large permease protein DctM	ATGACCATTGCCTTCCTGTTCCTCGCGCTGTTCGTGCTGATGTTTATCGGCGTGCCGATCGCGATTTCCCTGGGCCTGGCCGGATCGCTGACGATCATTTTCTTCAGCCCCGACTCGGTACGTTCCCTGGCGATCAAGCTGTTCGAAACCAGCGAACACTACACCCTGCTGGCGATTCCGTTCTTCCTGCTGGCCGGTGCGTTCATGACCACGGGCGGCGTGGCGCGACGGCTGATCGACTTTGCCAACGCCTGCGTCGGCCACATCCGTGGCGGCCTGGCGATTGCGGCGGTGCTGGCGTGCATGCTGTTTGCCGCCTTGTCCGGCTCCAGCCCCGCGACGGTGGCGGCGGTGGGTTCCATTGCCATCGCCGGCATGGTGCGTTCGGGTTATCCGCAGGCATTTGGCGCGGGTATTGTCTGTAACGCGGGCACCCTGGGCATCTTGATCCCGCCGTCGATCGTCATGGTGGTGTACGCCGCCGCGACCGAAACCTCGGTGGGCAAGTTGTTCATGGCCGGTGTGATACCGGGCCTGCTGCTTGGGACCGCCTTGATGGTGGTGATCTACATTGTCGCGGTGAAGAAAAACCTGCCGGCCATGCCCAGGGCAACCTTGCGTGAATGGCTGACGGCAGCGCGCAAGGCAGGCTGGGGCCTGCTGCTCATGGTGATCATCCTCGGCGGGATATATTCGGGGATGTTCACACCCACCGAAGCAGCAGCCGTGGCGGCGGTCTACTCAGCGTTTATCGCACTGTTCGTCTACAAGGACCTGACGTTCCGCGAAACGCCCAAGGTGCTGTTGGAGTCGGCCAAGTTGAGCATCATGCTGATGTTCATCATCGCCAACGCCATGCTCTTCGCCCACGTGCTGACCACCGAGCAACTGCCGCAGCAGATCACTGCGTGGGTGATCGAAGCCGGGCTGACGCCGGTGACCTTCCTGCTGGTGGTGAACATCGTGCTGCTGATTGCCGGTGCGTTCATGGAGCCGTCGGCGATCATCCTGATCCTGGCGCCGATCCTGTTCCCCATCGCCATGAAACTGGGCATCGACCCGATCCACCTGGGCATCATCATGGTGGTGAACCTGGAGATCGGCCTGATCACACCGCCGGTGGGGCTGAACCTGTTCGTCACCTCGGCGGTGACAGGCATGTCGTTGACAGCGACCATCCGCGCGGCCATGCCGTGGCTGATGATCCTGCTGGCGTTCCTGGTGCTGATTACTTATGTGCCATGGATCTCGTTGGCATTGCCGAACTGGCTGGGCATGAGCTAA	MTIAFLFLALFVLMFIGVPIAISLGLAGSLTIIFFSPDSVRSLAIKLFETSEHYTLLAIPFFLLAGAFMTTGGVARRLIDFANACVGHIRGGLAIAAVLACMLFAALSGSSPATVAAVGSIAIAGMVRSGYPQAFGAGIVCNAGTLGILIPPSIVMVVYAAATETSVGKLFMAGVIPGLLLGTALMVVIYIVAVKKNLPAMPRATLREWLTAARKAGWGLLLMVIILGGIYSGMFTPTEAAAVAAVYSAFIALFVYKDLTFRETPKVLLESAKLSIMLMFIIANAMLFAHVLTTEQLPQQITAWVIEAGLTPVTFLLVVNIVLLIAGAFMEPSAIILILAPILFPIAMKLGIDPIHLGIIMVVNLEIGLITPPVGLNLFVTSAVTGMSLTATIRAAMPWLMILLAFLVLITYVPWISLALPNWLGMS	PGPT0017335_2079	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017335-dctM-K11690	NA	NA
D1-36_04196	1908			hypothetical protein	ATGTTGCCGTCCTCTTCCGACACCTCTTGCACCCTGCCCTCCGTCCTTGTAGGCCCGCTGCTTCGGCGGCTGGAGCCCCGGCGGCTGGTGATGTGGCTGGTGGGCTCGCGGCCGTTGGCGTTGACCTTGCGGCTGGACGGCGCAGCCGATCTGCAACTCGACGCCCTGCATTGCACGGTGGTGCCGGTGGGCCGCCACGCGTTTGTGCATTTGATCGATGTGCAACTCGATACCGCCCTGCCGCTGGACGCGGCGATTGACTATGACCTGCTGGTGGACGGTGCCGGCATCGCCGAATGGGCGCCGCATCTGGTGTATGACGATGCACGGTGTCCAAGTTTCATGGTGCATTCGCGCATCGACCAACTGGTCCACGGCTCCTGCCGCAAACCCCATTTCCCCGCCAACGACGGATTGCTCTGCGTCGACCGGTTGTTGGCGCAATCCCCCGAACAACGGCCGGCGCTGCTGATGATGAGCGGCGACCAGGTGTATGCCGATGATGTGGCGGGCCCGATGCTGCGGGCGATCCATGCCTTGATCGAGCGCCTTGGGCTGTTTGAAGAGTGCCTTGAAGGCGCGGTGGTGCAAGACAGCGCCAAGCTTTACCAACACCCGGCCAGTTACTACCACCGCGCCGATCTGCTGCCGGCACTGGAAAGCAACGAAACCCTGCGGGAACGATTTTTCGGCGGGGCGCGCAAGCCGATCTTTACCAGCAGCAGCGCCGATAATCACTTGGTGACCTTCGCTGAAGTCATGGCGATGTATTTGCTGGTGTGGTCACCCGTGCCGTGGACGCTGATCGATCCGCAACCGCCGGAACTGACCGTCGAACGGCGCCAGCGCTACGAGCTGGAACACCAACGGATCGAGGCCTTCAAGACCGGGCTGGACGGCGTGGCGCGGGTATTTGCTCACCTGTCCTGCCTGATGATCTTCGATGATCACGACATCACGGACGACTGGAACCTGTCCGCCCAATGGGAAGAAACCGCCTACGGTCATCCCTTCTCCAAGCGCATCATCGGCAATGCATTGATCGCCTACATGCTCTGCCAGGGCTGGGGCAACAACCCGGATGCCTTTGGTGAGGTCATCCAGCAAACCGTGGCCTTGAGCGGAACCGCCCAGGACCGCTACATCGACAGCGCCCCCCAGGATGCGTTGATCGATAGATTGCTCAGTTTCCAACAATGGCATTACGTGTTGCCGACGACCCCGGCGTTGGTGGTCCTCGACACCCGTACTCGCCGTTGGCGCAGCGAGAGCAGTCTCAAGCAGCCGTCGGGCCTGCTGGATTGGGAGGCCCTGAGCGAACTGCAACAAGAATTGCTCGACCACCCTTCGGCGATCATCGTCTCGCCGGCGCCGATTTTTGGCGTCAAGCTGATCGAGACCGTACAACGGGTGTTCAGCTGGTGCGGCTACCCGCTGCTGGTGGACGCGGAAAACTGGATGGCCCACCGTGGCGCGGCCCAGGTGATCCTGAATATCTTCCGACACTCGCGCACACCGGGCAGCTACGTGGTGCTGTCCGGCGACGTGCATTATTCGTTCGTCTACGAGGTATTGATCCCACATCGCAAGGGTGGCCCGCGCGTCTGGCAGATCACCAGCAGCGGCATCAAGAATGAATTTCCGCCGGCGTTGCTGGAGTGGTTCGACCGCCTGAACCGCTGGCTCTATTCACCCCGTTCGCCGTTGAACTGGTTCACCAAGCGCCGCAGCATGCGCATCGTTCCCCATGTCCCGGAACACGCCGAGGCCGGGGAACGGTTATGGAACTCGGCCGGGATCGGCCAGGTATTTTTCAACGAACAGGGGCAACCGGCGCGAATCTATCAACACAATGCCGATGGCAGGCCGCCAACGCGCATGCTGTCGCCAAAAAACCCCATGAGCTGA	MLPSSSDTSCTLPSVLVGPLLRRLEPRRLVMWLVGSRPLALTLRLDGAADLQLDALHCTVVPVGRHAFVHLIDVQLDTALPLDAAIDYDLLVDGAGIAEWAPHLVYDDARCPSFMVHSRIDQLVHGSCRKPHFPANDGLLCVDRLLAQSPEQRPALLMMSGDQVYADDVAGPMLRAIHALIERLGLFEECLEGAVVQDSAKLYQHPASYYHRADLLPALESNETLRERFFGGARKPIFTSSSADNHLVTFAEVMAMYLLVWSPVPWTLIDPQPPELTVERRQRYELEHQRIEAFKTGLDGVARVFAHLSCLMIFDDHDITDDWNLSAQWEETAYGHPFSKRIIGNALIAYMLCQGWGNNPDAFGEVIQQTVALSGTAQDRYIDSAPQDALIDRLLSFQQWHYVLPTTPALVVLDTRTRRWRSESSLKQPSGLLDWEALSELQQELLDHPSAIIVSPAPIFGVKLIETVQRVFSWCGYPLLVDAENWMAHRGAAQVILNIFRHSRTPGSYVVLSGDVHYSFVYEVLIPHRKGGPRVWQITSSGIKNEFPPALLEWFDRLNRWLYSPRSPLNWFTKRRSMRIVPHVPEHAEAGERLWNSAGIGQVFFNEQGQPARIYQHNADGRPPTRMLSPKNPMS				NA	NA	NA	NA	NA
D1-36_04197	501	ogt	COG0350	Methylated-DNA--protein-cysteine methyltransferase	ATGTTGCCGTTGTACAAAACCATCCCATCCCCGGTCGGCGAGCTGATCCTCGTTGCTCGCGACGCCAAGCTGGCAGCCATCCTGTGGGAAAACGAACGGCTCAACCGGGTGCGCCTCGGACCGCTGGAGCTCGACAGCGATCACCCGACCCTCAAGGAGGCCGAGCGCCAGTTGCTTGAATATTTCGCCGGTCAGCGCCGCCAGTTCGAGCTGGCACTGGACTTCGCCGGCACTGACTTCCAGGTGCGGGTCTGGCAGGCGTTGCTGACCATCCCGTTCGGCGAAACCCGCAGTTATCGCGACATCGCCATCCAGATCGGCCAACCGACCGCGACCCGGGCGGTAGGGGCGGCCAACGGCCGCAATCCGATCTCGATCATCGCCCCGTGTCATCGGGTCATCGGTACATCCGGCAGCCTCACCGGTTTCGCCGGCGGCCTCGCCGCCAAACAGTATTTGCTCAGCCTTGAAGGCCAGCAGAGCCTGCAACTGGCATTCTGA	MLPLYKTIPSPVGELILVARDAKLAAILWENERLNRVRLGPLELDSDHPTLKEAERQLLEYFAGQRRQFELALDFAGTDFQVRVWQALLTIPFGETRSYRDIAIQIGQPTATRAVGAANGRNPISIIAPCHRVIGTSGSLTGFAGGLAAKQYLLSLEGQQSLQLAF				NA	NA	NA	NA	NA
D1-36_04198	2733	malT_4	COG2909	HTH-type transcriptional regulator MalT	ATGACTGATCTGTCTTCACTCCCGGATTCTTCCCGCGCAGCCTTCGCGGTACAGGAAGGGCGCTTTTATCGCCCCCCTTTGCCCGATGGCCACGTCGTGCGGCCGCGGTTGTGCGAGCGCCTGAGCGCGGGGCTCGGTGGCCGGTTGTTGTTGGTGAGCGCCCCGGCGGGGTTCGGCAAGAGCTCGTTGGCGGTGGAGTTTTGCCAGGGTTTGCCGACGCATTGGCACAGCCTCTGGTTGGGGCTCAGTGCCAGGGACAACGATCCGGGGCGTTTCCTGGAGCGGTTGCTTGAAGGGCTCCAGGCGTTTTTCCCCCAGTTGGGCGGCCAGGCGTTGGGCCTGTTGAAGATGCGCCAGCGCCACCAGCCCTTTGCTTTCGAGGAATGGCTGGACGGCCTGCTGGACGAGCTGTCCGGGCATCTATCGCCACGGGCGCCCTTGCTGCTGGTGCTCGATGACTACCATCTCGCCCAGAGTCCGGTGCTGGATCGCTGCTTGCAGTTTTTCCTCAACCACTTGCCCGATGGGTTGCTGGTGCTGGTGACCAGTCGCCAGCGGCCGGACTGGCATCTGGCGCGTTTGCGCCTGTCGCGCCAGTTGCTGGAACTCAACGAGCAGGACCTGCGCCTGACCCACGACGAAGCGCTGACGCTGCTTCAGCACCACAGCAGTTCACTGCGTGGGGAAGCCTTGGAAAACCTGATCCAGCGCAGCGAAGGCTGGGTCGCCGGGCTGCGTTTCTGGCTGCTGGCTGCTTCCGAGGCCGGCAGCGAGGGGCGATTGCCCCAAGCCCTGCACGGGGGGGAAGGGCTGATCCGTGACTATCTGCTGGAAGAAGTCATCGATTGCCTGCCCGCCGAGGTGCAAGCGTTTCTCTACGACATCGCCCCGCAGGAACGCTTTTGCAGCGAGCTGTGCGATGCGGTGCGCGACGCCCACGACAGCCAGGAAATTCTCCAATACCTGGCGGCCCATCAGGTTTTCCTCGTGCCGTTGGACGAGCACGGGCGCTGGTATCGCTTCCATCACCTGTTTTCCGATCTGTTGCGCAGTCGGCCCAGCGCGCAAGCCATGGTGCCGGGCGCAACGTTGCACCTGCGCGCCTGTCGCTGGTTCAACGCCCAAGGCCTGATCGATGAAGCCGTGGAGCAGGCGCTGCGCGCCGGGCATCTGGACGTGGCGGCAAACCTGGTGCAAAACCTTTCGGAGGAACAACTGCTGGCCGAACAGAATGTCGGTATGTTGCTGCGCTGGAAAATGGACCTGCCCGACAGCCTGCTCATCAGCACGCCGCGCTTGATCGTGCTCTACAGCTGGGCCTTGGGCCTGGCCTGCCAACTGGACGCCGCGCAGGAGCTGGCCGCTCATTTGAGCCGCTTCCTGCCGGCCCCTTCGGCCACCGCGCATAAATCCATGCTCGCCCAGTGGCTGGCCCTGAGCGGCATCGTCGCCCGTGGCCGTGGCGATCGCCAGGCCACCCTTCGCTATTGCACCGAAGCCCTGGAAAGCCTGCCGCAAAAACGTTACGGCCAACGCCTGATGTGCTTGTCCACCTTGTCGAACCTGGCGATTGCCGACGGCGACCTGTGGCGCGCCCGGGCGCTGAACCGCGATTCCCTGGAACTGGCGCAGCGGGTCGGCAACCCCCTCTTCGAGGCTTTGGCCCATTACGATCGCGCCCGGGTGTTGCAGGCCCGAGGGGAAATCCTGAGGGCGCTCGATGAGGTGAAACAGGGCTTGCAGCGCTTGCACGCGCTCTCGCCTCAACGGTTGTATGCGGTGCGCGCGCGACTGGTCCTGTACGAAGGTTTCCTGTTGACGCTGCGCATGCAATCCACGGCCGGGTTGGCGCGGTTGCAGGCAGGCCTCACTGAAGCCCGTACCTGCCGGGATATCAGCGTGTTGATCGGCCATTGCGTGATCGCCCGCGTCGAAGGCCACGCGGGCGAATTTGCCCGAGCCTTTGCCGAACTGGCCGAAGCCGAGCGCCTGATGCATATCTGGGATGTTCCGCCGGTGTACTACCTGGCGATGATCACCCTTGTGAAATGCGAGCTCTGGTTGGCCCAGGGTCGCACTGAACTGGCCGAAGCCTGGCTGGCGCGGCTGGGGCAGACCTATACCGGCGAACGCGCCGCCGCGCCACCGGAATTCCATCCGCAACTGCCGTTGCATGTCGAGCTGCAACAAGCCCTGCTGGAGTCCATCCGCGGCCAGCCGATGCAGGCTGAAGGGCGGCTCGATGCGTTGCTCCAGCACGCCCAGCAAACCGGACGGCAGATGCTCGCCGTGATGGTGCTCAACCAGAAAGTCGCCTTGCTGCTGAGCGTGGGCCGCGAACCCGATGCGCGCGGCACATTGGCCGAGGCTTTCGAAGCCGCCATCGGGGGGGCGCTGCAGCCATTTGAATGGTTGTTCAAGGAGCGTCCCGAATGGTTGCGTGAGCAACTGCTGCAAGCTCCGCACAGCGAGTTGCGTCAACAGTTGCTCGATCGTTTACCGTCGACGGTACTGCCTGTCGAGGCCGCGCCATCGGTGGAGACCCTCAGCAGCCGGGAGCGAGCGGTGCTGCAACTGATTGCCCAGGGATGTTCCAATCAGGAGATCAGCGAGCAACTGTTCATCTCGCTGCACACGGTGAAGACCCACGCCAGCCATATCAACAGCAAGCTCGGCGTCGAGCGCCGCACCCAGGCCGTGGCTCGGGCCAAGGCGTTGGGATTGTTGGGATGA	MTDLSSLPDSSRAAFAVQEGRFYRPPLPDGHVVRPRLCERLSAGLGGRLLLVSAPAGFGKSSLAVEFCQGLPTHWHSLWLGLSARDNDPGRFLERLLEGLQAFFPQLGGQALGLLKMRQRHQPFAFEEWLDGLLDELSGHLSPRAPLLLVLDDYHLAQSPVLDRCLQFFLNHLPDGLLVLVTSRQRPDWHLARLRLSRQLLELNEQDLRLTHDEALTLLQHHSSSLRGEALENLIQRSEGWVAGLRFWLLAASEAGSEGRLPQALHGGEGLIRDYLLEEVIDCLPAEVQAFLYDIAPQERFCSELCDAVRDAHDSQEILQYLAAHQVFLVPLDEHGRWYRFHHLFSDLLRSRPSAQAMVPGATLHLRACRWFNAQGLIDEAVEQALRAGHLDVAANLVQNLSEEQLLAEQNVGMLLRWKMDLPDSLLISTPRLIVLYSWALGLACQLDAAQELAAHLSRFLPAPSATAHKSMLAQWLALSGIVARGRGDRQATLRYCTEALESLPQKRYGQRLMCLSTLSNLAIADGDLWRARALNRDSLELAQRVGNPLFEALAHYDRARVLQARGEILRALDEVKQGLQRLHALSPQRLYAVRARLVLYEGFLLTLRMQSTAGLARLQAGLTEARTCRDISVLIGHCVIARVEGHAGEFARAFAELAEAERLMHIWDVPPVYYLAMITLVKCELWLAQGRTELAEAWLARLGQTYTGERAAAPPEFHPQLPLHVELQQALLESIRGQPMQAEGRLDALLQHAQQTGRQMLAVMVLNQKVALLLSVGREPDARGTLAEAFEAAIGGALQPFEWLFKERPEWLREQLLQAPHSELRQQLLDRLPSTVLPVEAAPSVETLSSRERAVLQLIAQGCSNQEISEQLFISLHTVKTHASHINSKLGVERRTQAVARAKALGLLG	PGPT0018616_495	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_COMPLEX_SUGAR_UTILIZATION	PLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018616-malT-K03556	NA	NA
D1-36_04199	1365			putative protein	ATGAAAATAACAAAGAATCTGTTGCAAGTCGGAGCGCTGGGGTTGTCCCTGCTGGCGGCCAGCGTCATGGCCGCCGTGCCTGCGGCCGAGGCCGATAAGCTGGGCAAGAGCCTGACGCCGATGGGCGCCGAGATGGCGGGTAACGCCGATGGTTCGATTTCGGCCTGGAAACCCATGACCAAGAACGCCGGTAGCGTGGACGGCAAGGGTTTCCTCGCCGATCCGTACGCCAGTGAAAAACCGTTGTTCACGATCACCGCGCAAAACGTCGACCAGTACAAGGACAAACTCGCCCCCGGCCAGTACGCGATGTTCAAGCGCTACCCGGAAACCTTCAAGATGCCGGTCTACACGACCCATCGCGGCGCAACCGTGCCCGATGATGTGTTGGCCTCCATCAAGAAAAACGCCGTGAACACCAAACTGGTGGGCGGCGGCAACGGCCTGGAGAATTTCGAGACGGCCGTGCCGTTCCCGATTCCCCAGAGCGGACTCGAAGTGATCTGGAACCACATCACCCGTTATCGCGGCGGCAGCGTGACCCGCCTGGTGACCCAGGCCACGCCGCAGCCAAACGGTTCGTACAACCTGGTGTACTTCCAGGATCAGTTCGTCTTCCGCGACAAGATCAAGGGCTTCGATCCGGCCAACCCGGGCAACGTGCTGTTCTACTTCAAGCAGCAAGTGACCGCGCCGGCACGCCTGGCGGGTACCGTGCTGCTGGTTCACGAAACCCTCGACCAGGTGAAGGAACCACGCAAGGCCTGGATCTACAACGCCGGCCAACGCCGTGTGCGTCAGGCCCCGCAAGTCGCCTATGACGGCCCGGGTACCGCCGCCGACGGCCTGCGCACCTCCGACAACCTGGACATGTACAACGGCGCGCCGGATCGTTACGACTGGAAGCTTGAAGGCAAGAAAGAGCTGTACATCGCCTCCAACAGCCACAAGATCGATTCGCCGCAACTCAAGTACGCCGACATCCTCAAGGCCGGCCACATCAACCAGGACTTGGCGCGCTATGAACTGCGTCGTGTCTGGCACGTGACCGCGACCCTGAAGGAAGGCCAGCGCCATATCTACGCCAAGCGTGACTTCTATATCGACGAAGACACCTGGCAAGCGGCGGTTATCGACCACTACGACGGTCGTGGCCAACTGTGGCGCGTGGCCGAGGCCCATGCCGAGAACTACTACGACAAGCAAGTGCCGTGGTACGCCCTGGAAACCCTCTACGACCTGCAGTCCGGTCGTTACCTGGCCCTGGGCATGAAGAACGAAGAGAAATCGGCCTACGACTTCGGCTTCACCGCGTCCACCAGCGACTTCACCCCAGCGGCGCTGCGCCAGGAAGGCGTTCGCTAA	MKITKNLLQVGALGLSLLAASVMAAVPAAEADKLGKSLTPMGAEMAGNADGSISAWKPMTKNAGSVDGKGFLADPYASEKPLFTITAQNVDQYKDKLAPGQYAMFKRYPETFKMPVYTTHRGATVPDDVLASIKKNAVNTKLVGGGNGLENFETAVPFPIPQSGLEVIWNHITRYRGGSVTRLVTQATPQPNGSYNLVYFQDQFVFRDKIKGFDPANPGNVLFYFKQQVTAPARLAGTVLLVHETLDQVKEPRKAWIYNAGQRRVRQAPQVAYDGPGTAADGLRTSDNLDMYNGAPDRYDWKLEGKKELYIASNSHKIDSPQLKYADILKAGHINQDLARYELRRVWHVTATLKEGQRHIYAKRDFYIDEDTWQAAVIDHYDGRGQLWRVAEAHAENYYDKQVPWYALETLYDLQSGRYLALGMKNEEKSAYDFGFTASTSDFTPAALRQEGVR				NA	NA	NA	NA	NA
D1-36_04200	1896			hypothetical protein	ATGACCTCAGCAAACACTTTCTGGCGCCGGGCAAAACTGCCTCTGGCCGTCAGTCTTGCCTCCTCGCTCGCCGGCCCGGCATTCGGCGTCAGCTTCAACATTGGTGAAATCGAAGGCCAGTTCGATTCGTCCCTGTCGGTCGGCGCGAGCTGGTCCACGGCCAAGGCCAACAAGAACCTGATCGGCGTCAACAACGGTGGCCATGGTTTGTCCCAGACCTCTGATGACGGTCACTTGAATTTCAAGCGAGGGGAAACTTTCTCGAAGATCTTCAAGGGTATCCATGACCTGGAGCTGAAGTACGGCGACACCGGTGTGTTTGTGCGTGGCAAGTACTGGTATGACTTTGAGCTCAAGGACGAAAGCCGTCCGTTCAAGGACATCAGCGACAGCAACCGCAAGGAAGGCGCTCAGTCTTCCGGCGGGCAGATTCTCGATGCGTTCATTTACCACAACTACGCCATTGCCGATCAGCCCGGCTCGGTGCGCCTCGGCAAGCAGGTGGTTAGTTGGGGCGAGAGCACCTTCATTCAGAACGGCATCAATGCCATCAACCCGGTCGATGTGTCCGCGTTCCGTCGTCCGGGCGCCGAGGTCAAGGAAGGGCTGATCCCGGTCAATATGTTCTATGTGTCACAGAGCTTGACCGATAACTTGTCGGCTGAAGCGTTCTACCAGTTGGAGTGGGATCAGACCGTTACTGACAACTGCGGGACTTTCTTCTCGCAGCCGGACGTCATTTCCGATGGTTGTGACAGTAACCTGCGAGTGCTGAGGAGCGCGTCGGCGATTCCGGCGGCTGCCATGCCTACGTTGGGTGCGTTCGGTGTGGACGTAGATGGCGAAGGCACTTTGGTGCGTCGTGGCCCCGACCGTGATGCTCGGGACAGCGGCCAGTTCGGCGTGTCTTTCAAGTACATGTACGAGCCGCTGGATACCGAGTTTGGCGCTTATTTCATGAACTACCACAGCCGTGCACCAATTTTCAGTGGTCATGGTGCACCAGCCAGCGCTTATACCAGCGGACCCGGATTGGTAGGGTCGCTGATGGCTGCCGGCATTCCGTTTGCTCAAGCGGTTGCCATGGCTCAAGCCATGGTACCGATGGTTGTCGCAGGTAATTCAAACTACTACGTCGAGTATCCCGAAGATATCCGCCTGTATGGCCTGAGTTTCTCGACCACATTGCCCACAGGTACCGCATGGAGCGGCGAAATCAGCTACCGCCCGAATGCGCCGGTCCAGCTCAATACCACCGATATCCTGTTTTCCGGATTGACGCCTTTGAACCCCGATGTTTCCGTACTGCCAGGACAGGCAGACACGGACCAGCCAGGCTATCGCCGCAAAGAAGTGACACAGCTGCAAACCACTTTTACCCACTTCTTCGATCAGGTCATGGGTGCCGAGCGTCTGACCCTCGTAGGCGAGGTCGGCTTCACTCACGTCGGCGGTCTGGAAAGCACTTCCAAGGCGCGTTATGGCCGTGATCCGAGCTATGGCCCTGGGCCTTTGCCGAATGGCCAATGTGAGATATTGAACGGTTCGACCCTGGCAGGCGGAGCGCAGAACAACGCTAGTCGCTATTGCGAAAATGACGGCTTCACCACGGCAAACTCTTGGGGTTATCGCGGTCGTGCCATTTGGGACTACAACGACGTATTTGCCGGTGTAAATCTCCGTCCCAACGTAGCTTGGTCCCATGACGTCAAGGGCTACTCGCCAGGCCCTGGCGCCAACTTCGAGGAAGGCCGCAAGGCTGTGAGCCTGGGTGTTGATGCCGAATACCAGAACACCTATACCGCCAGCCTGGCCTACACCAATTTCTTCGACGGCAAGTACACCACCGTGGACGACCGGGATTTCGTGGCGCTCAGCGTCGGCGTGAACTTCTAA	MTSANTFWRRAKLPLAVSLASSLAGPAFGVSFNIGEIEGQFDSSLSVGASWSTAKANKNLIGVNNGGHGLSQTSDDGHLNFKRGETFSKIFKGIHDLELKYGDTGVFVRGKYWYDFELKDESRPFKDISDSNRKEGAQSSGGQILDAFIYHNYAIADQPGSVRLGKQVVSWGESTFIQNGINAINPVDVSAFRRPGAEVKEGLIPVNMFYVSQSLTDNLSAEAFYQLEWDQTVTDNCGTFFSQPDVISDGCDSNLRVLRSASAIPAAAMPTLGAFGVDVDGEGTLVRRGPDRDARDSGQFGVSFKYMYEPLDTEFGAYFMNYHSRAPIFSGHGAPASAYTSGPGLVGSLMAAGIPFAQAVAMAQAMVPMVVAGNSNYYVEYPEDIRLYGLSFSTTLPTGTAWSGEISYRPNAPVQLNTTDILFSGLTPLNPDVSVLPGQADTDQPGYRRKEVTQLQTTFTHFFDQVMGAERLTLVGEVGFTHVGGLESTSKARYGRDPSYGPGPLPNGQCEILNGSTLAGGAQNNASRYCENDGFTTANSWGYRGRAIWDYNDVFAGVNLRPNVAWSHDVKGYSPGPGANFEEGRKAVSLGVDAEYQNTYTASLAYTNFFDGKYTTVDDRDFVALSVGVNF				NA	NA	NA	NA	NA
D1-36_04201	1683		COG0318	Long-chain-fatty-acid--CoA ligase	ATGTTGCAGACTCGCGTTATTCCTCCAGCCGAGGGCGTTTATCAATACCCGTTGCTGATCAAGCGGCTGCTGATGTCCGGCGCACGCTATGAGAAAACCCGCGAGATCATCTACCGGGACCAGTTGCGCTACAGCTACCCCACCCTGATCGAGCGCGTCGCACGGCTGGCCAACGTGCTGACCGAGGCCGGGGTGAAAGCCGGGGATACCGTGGCGGTCATGGACTGGGACAGCCATCGGTACCTGGAATGCATGTTCGCTATCCCGATGATCGGCGCGGTGATCCATACCATCAACGTGCGACTGTCGCCGGAACAGATCCTCTACACCATGAACCACGCCGAGGATCGCTTCGTGCTGGTCAACAGCGAGTTCGTCGGCTTGTACCAGGCGATCGCCGGCCAGCTGACAACGGTGAAAAAGACGCTACTGCTGACCGACCAGCCGGACAAGACCGCCGACCTGCCCGACCTCGTGGGCGAGTACGAGCAACTGCTGGCCGGCGCCAGTCCGACCTACGATTTCCAGGATTTCGACGAAAACTCCGTCGCCACCACGTTCTATACCACCGGCACCACGGGCAACCCCAAGGGCGTGTATTTCACCCATCGGCAGTTGGTGCTGCACACCCTGGGTGTGTCGACCATCATGGGCGCCATCGACAGCGTGCGCCTGCTGGGCACCAACGACGTGTACATGCCCATCACACCCATGTTCCACGTTCACGCCTGGGGCTTGCCGTACGTGGCAACCATGCTCGGCCTCAAGCAGGTCTACCCAGGTCGCTACGACCCGGAGTTCCTGGTGGAGCTGTGGCGCAAGGAAAAGGTCACTTTTTCCCACTGCGTGCCGACCATCCTGCAAATGGTCCTCAACGCCAAGGGCGCCCAGGACACCGATTTCGGCGGCTGGAAAATCGTCATCGGCGGCAGCGCCCTGAACCGCAGCCTGTACGAGGCTGCTAAGGCCAAGGGCATCCAGCTCACCGCCGCCTACGGCATGTCCGAAACCGGCCCGTTGGTGTCCTGCGCCCACCTCAACGATGAGTTGATGGCCGGCGGCGAAGACGAGCGCATCACTTATCGGATCAAGGCCGGCGTGCCAGGGCCACTGGTGGAGGCAGCGATCGTCGACGGCGAGGGCCGCTTCCTTCCCGCCGATGGCGAAACCCAGGGCGAATTGGTATTGCGCGCGCCATGGCTCACCGAAGGTTATTTCAACGAACCGCAGAAGGGCGCCGAACTCTGGAGTGGCGGCTGGTTGCACACTGGCGACGTCGCCACGCTCGACGGCATGGGCTTCATCGACATTCGCGACCGCATCAAGGATGTGATCAAGACCGGCGGCGAATGGATCTCGTCCCTGGACCTGGAAGACCTTATCAGTCGGCATGTGGCGGTACGCGAAGTAGCAGTGGTCGGCATTCCCGACCCGCAGTGGGGCGAGCGGCCGTTTGCCTTGCTGGTCGTTCGTGAGGGGCACCAGATCGGGGCTCGCGAGCTCAAGGAGCACCTCAAGCCGTTTGTCGAGCTGGGGCACCTGAGCAAATGGGCGATCCCTAGCCAGATTGCCCTTGTTACGGAAATTCCCAAGACCAGCGTCGGCAAGCTCGACAAGAAACGTATCCGCGTTGACATCACCGAATGGCAGAGCAACAACAGCACCTTCCTTTCGACGCTTTGA	MLQTRVIPPAEGVYQYPLLIKRLLMSGARYEKTREIIYRDQLRYSYPTLIERVARLANVLTEAGVKAGDTVAVMDWDSHRYLECMFAIPMIGAVIHTINVRLSPEQILYTMNHAEDRFVLVNSEFVGLYQAIAGQLTTVKKTLLLTDQPDKTADLPDLVGEYEQLLAGASPTYDFQDFDENSVATTFYTTGTTGNPKGVYFTHRQLVLHTLGVSTIMGAIDSVRLLGTNDVYMPITPMFHVHAWGLPYVATMLGLKQVYPGRYDPEFLVELWRKEKVTFSHCVPTILQMVLNAKGAQDTDFGGWKIVIGGSALNRSLYEAAKAKGIQLTAAYGMSETGPLVSCAHLNDELMAGGEDERITYRIKAGVPGPLVEAAIVDGEGRFLPADGETQGELVLRAPWLTEGYFNEPQKGAELWSGGWLHTGDVATLDGMGFIDIRDRIKDVIKTGGEWISSLDLEDLISRHVAVREVAVVGIPDPQWGERPFALLVVREGHQIGARELKEHLKPFVELGHLSKWAIPSQIALVTEIPKTSVGKLDKKRIRVDITEWQSNNSTFLSTL				NA	NA	NA	NA	NA
D1-36_04202	630	rhtC	COG1280	Threonine efflux protein	ATGTACCTCGCCGAATTTCTCACTGTCGCCCTGATCCACCTGTTGGCCGTGGCCAGCCCTGGCCCGGACTTCGCCGTGGTGGTCCGCGAAAGCGTGACCCACGGCCGCCGCGCCGGGACCTGGACGGCGTTGGGGGTCGGCACGGCGATTTTCCTGCACGTGGGGTATTCGTTGCTGGGCATCGGCCTGATCGTGTCCCAGTCGATCGTGCTGTTCAACGCCTTGAAGTGGGCCGCCGCCGCTTACCTGCTGTACATCGGCTTCAAGGCCCTGCGCGCCCAGCCGGCCAAGGCGAGCCAGGAAAACCTGCACAAGGAGGCAGGTGAGCGCACCGCTCGGGGCGCGTTTACCGCCGGCTTCGTTACCAATGGCCTGAACCCCAAGGCGACGCTGTTCTTCCTCTCCCTGTTTACCGTGGTCATCAATCCCCATACGCCCCTGGCGATCCAGGCCGGCTACGGTGTGTACCTGGCGGTTGCCACGGCGGCCTGGTTCTGCATGGTTGCAATGTTGTTCAGCCAGGCGCGGGTGCGTGCCGGTTTTGCCCGCATGGGCCATTGGTTCGACCGGACCATGGGCGCCGTGCTGATCGCCATCGGCGTGAAACTGGCGTTTACCGAGGCCCATTGA	MYLAEFLTVALIHLLAVASPGPDFAVVVRESVTHGRRAGTWTALGVGTAIFLHVGYSLLGIGLIVSQSIVLFNALKWAAAAYLLYIGFKALRAQPAKASQENLHKEAGERTARGAFTAGFVTNGLNPKATLFFLSLFTVVINPHTPLAIQAGYGVYLAVATAAWFCMVAMLFSQARVRAGFARMGHWFDRTMGAVLIAIGVKLAFTEAH				NA	NA	NA	NA	NA
D1-36_04203	966	hprA_2	COG1052	Glycerate dehydrogenase	ATGACCAATACCGCACGCGCAGTTTTCCTCGATCACGCTTCACTGGACCTCGGCGACCTGGAGCTGGCTCCATTGCGCGATTGCTTCACCGAACTGCAGCTGTTCCCCGGCACCCGCCCGGATGAGGTGGCAGGCCGGCTCGAGGGCGCCACGGTGGCGATCACCAACAAGGTCGTGATCGACGCAGCCGCGATGGCCGCCAACCCTGAACTGAAGCTGATCCTGATCAGCGCCACCGGCACCAATAACGTCGACCTCGCCGCTGCCCGCAGCCATGGCATCGTCGTCAGCAACTGCCAGGGCTATGGCACACCGTCGGTGGCCCAGCACACGATCATGCTGCTACTGAACCTGGCGACGCGCCTGGGCGACTATCAAAAAGCCGTGGGCGAAGGTCGCTGGCAACAGGCTTCGCAGTTCTGCCTGCTGGACTACCCGATCGTCGAACTGCAGGGCAAGACCCTCGGGCTGCTCGGCCATGGCGAACTGGGTGGCGCCGTCGCACGGCTGGCCGAAGCCTTCGGCATGCGCGTGCTGCTGGGGCAGATTCCAGGAAGGCCCGCCCGTGCGGACCGCGTGGCCCTGGACCAACTGCTACCCGCGGTGGATGCCTTGACCTTGCATTGCCCGCTCAACGAGCACACCCGCCACTTCATTGGCGCGCGTGAACTGGCGTCGCTCAAACCCGGCGCGTTCGTAGTCAACACCGCACGCGGTGGCCTCATCGACGAACAGGCACTGGCCGATGCGCTGCGCAGCGGTCACCTGGGCGGGGCGGCCACCGATGTGTTGAGCGTGGAGCCGCCGACCCAGGGCAATCCGCTGTTGGCAGGTGATATCCCCCGGCTGATCGTCACACCGCACAACGCCTGGGGCAGCCGCGAGGCCAGGCAACGGATCGTCGGCCAACTGGCGGAAAACGCCCGGGGCTTTTTCAGCGGTACAGCGCAACGAGTCGTCAATTGA	MTNTARAVFLDHASLDLGDLELAPLRDCFTELQLFPGTRPDEVAGRLEGATVAITNKVVIDAAAMAANPELKLILISATGTNNVDLAAARSHGIVVSNCQGYGTPSVAQHTIMLLLNLATRLGDYQKAVGEGRWQQASQFCLLDYPIVELQGKTLGLLGHGELGGAVARLAEAFGMRVLLGQIPGRPARADRVALDQLLPAVDALTLHCPLNEHTRHFIGARELASLKPGAFVVNTARGGLIDEQALADALRSGHLGGAATDVLSVEPPTQGNPLLAGDIPRLIVTPHNAWGSREARQRIVGQLAENARGFFSGTAQRVVN				NA	NA	NA	NA	NA
D1-36_04204	999	rsmC	COG2813	Ribosomal RNA small subunit methyltransferase C	ATGGATCCGCGCAGTGAAGTACTGCTTCGTCAGGCCGAGTTATTCCAGGGTCCGGTCCTGCTGGCCGGGCTCCCAGCCGACGACCTGCTTGGCCGCTTGCCCGAGGCCCATGGCTGGTGCTGGCATGCCGGCGACCAGGCGGCCCTGGATGCCCGCTTCCCAGGGCGCAGCCATTTTGGCGTGAATGTACCCGAACTTTCGTTCGACGCTGCCGTGGTCTTCCTGCCCAAGGCCAAGGACCTGACCGACTACATCCTCAACGCCGTTGCCGCGCGCCTGGCTGGGCGCGAGGTGTATCTGGTGGGGGAAAAGCGCAGCGGCATCGAAGGCGCTTCCAAGCAGCTCAACCCCTTTGGCGAGCCGCGCAAGCTCGACAGCGCGCGGCATTGCCAACTGTGGCAGGTCACCGTCGCCAACGTCCCTGAAGCCAAGCCGCTGGAAAGCCTCGCGCAAACCTATGAACTGCCACTGGTCGAGGGCCCGCTCAAGGTCATCAGTTTGCCGGGAGTCTTCAGTCATGGCCGCCTTGATCGCGGCAGCGCGCTGTTGCTGGAGCATCTGGACAAGCTGCCCAGCGGCCACCTGCTGGACTTCGGCTGCGGCGCCGGCGTGCTGGGGGCGGCGGTCAAGCGGCGCTATCCCCATAACACCGTGACGCTGCTGGACGTGGATGCCTTCGCCGCCGCCAGCAGTCGATTGACGCTGGCCGCCAATGGCCTGGAAGCCGAAGTGCTGACGGGTGACGGGATCGACGCCGCGCCCATGGGCCTGAACGCGATTCTGAGCAACCCGCCGTTCCACGTCGGCGTACACACCGACTACCACGCGACCGAAAACCTGTTGCGAAAAGCGGCCAAACATCTGAAAAACGGCGGCGAACTGCGCCTGGTTGCCAACAGTTTCTTGAAGTATCAGCCGTTGATCGAAGAGCACCTGGGCCCCTGCGCGATCAAGGCCGAGGGCCAAGGCTTTCGCATCTACCGGGCCAAGCGCGGCTGA	MDPRSEVLLRQAELFQGPVLLAGLPADDLLGRLPEAHGWCWHAGDQAALDARFPGRSHFGVNVPELSFDAAVVFLPKAKDLTDYILNAVAARLAGREVYLVGEKRSGIEGASKQLNPFGEPRKLDSARHCQLWQVTVANVPEAKPLESLAQTYELPLVEGPLKVISLPGVFSHGRLDRGSALLLEHLDKLPSGHLLDFGCGAGVLGAAVKRRYPHNTVTLLDVDAFAAASSRLTLAANGLEAEVLTGDGIDAAPMGLNAILSNPPFHVGVHTDYHATENLLRKAAKHLKNGGELRLVANSFLKYQPLIEEHLGPCAIKAEGQGFRIYRAKRG				NA	NA	NA	NA	NA
D1-36_04206	585	mneA		Putative manganese exporter	ATGCTGGACTCTTTCCTTGTTCCCACCGCCATCGTTGCACTGGCCGAAATCGGCGACAAGACGCAACTGCTTGCGCTTATCCTCGCTGCTCGCTTTCGCAAGCCGTGGCCGATCATCGCTGGCATCGTCGCCGCGACCCTGGCCAACCATGCGGCCGCGGGCGCGGTAGGAGCCTGGGTCAGCGGGTTCTTTTCCGATGCGGTGTTGCACTGGATATTGGCGGCAAGCTTCGCGGCCACGGCCCTTTGGACCCTGGTGCCGGACAAGCTCGACGATGAAGAGGCGAATACGGCCCGCAAGTTCGGCCCCTTCCTGACCACGCTGATCGCGTTTTTCCTGGCGGAAATCGGTGACAAGACCCAGATCGCGACGGTGATGCTCGCCGCGCAATACCCGGAACTGTGGCTGGTGATCATTGGCACCACCGTGGGCATGTTGATTGCCAACGTGCCGGTGGTACTGGCTGGCAACTTTGCCGCCGAGAAACTGCCCCTGGCCCTCATCCGCCGCCTGGCCGCCTCGGCGTTTTTCATCCTGGCGATCGTTGCGGTGTACAAGGCGATGCAGAGCAGTGGGTGGGTTTGA	MLDSFLVPTAIVALAEIGDKTQLLALILAARFRKPWPIIAGIVAATLANHAAAGAVGAWVSGFFSDAVLHWILAASFAATALWTLVPDKLDDEEANTARKFGPFLTTLIAFFLAEIGDKTQIATVMLAAQYPELWLVIIGTTVGMLIANVPVVLAGNFAAEKLPLALIRRLAASAFFILAIVAVYKAMQSSGWV	PGPT0013980_1276	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0013980-TMEM165|gdt1-K23541	NA	NA
D1-36_04207	816	loiP	COG0501	Metalloprotease LoiP	ATGAACAAGACTTTGATGGTGAGCGCTCTGGGCGCGGCTCTGCTGCTCGCCGGTTGCCAGTCAGTCAACACCACCAGCGGCGGAGCCGTGGGCGTGGAGCGCAAGCAGTACATGTTCAGCATGCTGTCGACCGCCGAGGTCAACCAGATGTATGCCCAGTCCTATCAGAAGACGTTGGGTGAGGCGAGTGCGCAAGGTGCCCTGGACAAGACCAGTAGCGACGCCAAGCGCCTTCAGGTCATTGCTGATCGTTTGATCGCCCAGGCGCCTGTGTTCCGTCCGGATTCGGCGCAGTGGAACTGGGAAGTGAACCTGATCAAGAGCGATGAACTCAACGCCAACTGTGGTCCCGGCGGCAAGATCATGTTCTACACCGGCCTGATCGACAAACTGAAGCTGACCGACGCTGAAATCGCCGCGATCATGGGCCATGAAATCGCTCACGCTTTGCGCGAGCACGGCCGTGAAGCCATGTCCAAGGCTTATGGCATCGAAATGGCCAAGCAGGGTGCCGGTGCGATATTCGGCCTGGGCCAGGATAGCCTGGCGTTGGCCGACACGGTTGCCAACTATGGCATGACCCTGCCTAACAGCCGTGGCAACGAGAACGAAGCCGACCTGATCGGCCTGGAGCTGGCCGCCCGCGCAGGCTACGACCCGAACGCCGCGATCACCTTGTGGAACAAGATGGCCAAGGCTTCGGAAGGGGCACCACCGGAATTCATGAGCACCCACCCGTCCTCGAGCAGCCGGATCGCCTCGTTGCAGGCGGCGATTCCGAAGGTGATGCCGCTTTATCAGCAAGCCAAGAAGTAA	MNKTLMVSALGAALLLAGCQSVNTTSGGAVGVERKQYMFSMLSTAEVNQMYAQSYQKTLGEASAQGALDKTSSDAKRLQVIADRLIAQAPVFRPDSAQWNWEVNLIKSDELNANCGPGGKIMFYTGLIDKLKLTDAEIAAIMGHEIAHALREHGREAMSKAYGIEMAKQGAGAIFGLGQDSLALADTVANYGMTLPNSRGNENEADLIGLELAARAGYDPNAAITLWNKMAKASEGAPPEFMSTHPSSSSRIASLQAAIPKVMPLYQQAKK				NA	NA	NA	NA	NA
D1-36_04208	2139	mcpU	COG0840	Methyl-accepting chemotaxis protein McpU	ATGAAATTCAAATCGATCCAGTTTTCCGTTGCCGCCCTGGCCGGTGCCATCGTCCTCAGCGTTGTTGGTGCCCTGGTGCTGTACGCATTGTTCGCCGGCGCCCGTACCCAGGAAATGGTGCAACAACGGACCAAGGCGCAATTCGAGCAACTCATCGAACAACGCCTCAGTGCGCTCGCCCGCACCCAGGCCAGCCTGATCCAACGCGAGCTTGAAGCACCGCTGTTGCTTGCCCGAGGACTGGCGACGACTAACGCCCTGATGGGCATGAACGGCACGGACGGCAACCCGTTATTGAAGATGCCCCGTGAGCAGATGATCAGCCTGTTGCGCGAGTCCGTGGTGCGCAACCCGAAGGTCCTGGGTGCCTACATCGCCTGGGAACCGAACGCTATCGACCACGACGACGCCAACTATGTGAACAGCCAGGTGCTCGGCATGGAAACCAATGGGCGCTTCCTGCCGTGGTGGTTTCGCAACCAGGACGGCACCTTGGGCCTGGAAAAGCTCGCCGACGTGACTGACCAGAAACTGCTGTCCACCGGCATTCGTGCCAGCGAATACTACCTGTGCTCCCAGGACAGCAGGAAAGCCTGCGTGATCGACCCGGCGCCCTACCGCGTCGGCAGCACCATGACCATGCTGGCCTCCTTCATCGAACCGATCCTCATCGATGGTAAATTCCAGGGCATCGTCGGCGCCGACCTGTCGGTGAACTTCATCCAGGACATGCTCGTTGCCGCTGACGCCAAGCTGTACGACGGCGCCGGGGAAATGGCCTTGCTCGCCAGCAACAATCGCCTGGTGGCCTTCACCAAGGACCCAAGCAAGCTCGGGGAAAAAGCCAGCGACCTGCTGGACGCCAACGAGCTGGACAACCTGGCCAAGCTTGGCGCTGGCGAAGTGCGTTACGACGTCGACGAAGCCCACGGTCACATCGAGGTGTACATGCCGTTCGGCATCGGCGAGACCAGCGCTCGCTGGACGCTGATGATGCAACTGCCGTTGAACGCGGTGATGGCAGATCTGCAAGCCTTGCAGAAGGACCTCGACGATCAGCGCGAGACCGACATTTTCGGCATGGCCATGGTCGGCCTGGCGATTGCCGCCATCGGCCTGCTGGTGATCTGGCTGGTGGGCCACGGCATCGCCCGGCCGCTCAAGCAAATGGTGGCGATGCTCGATGACATCGCCCAGGGCGAGGGCGACCTGACTCGCCGATTGACCAGCGACCGCGCCGATGAACTGGGCGCCATCGCCAAGGGCTTCAACACGTTCCTCGGCAAATTGCAGGGAATGATTACCCAAGTGGTGACCTCGGTGCAGAGTGTCAGCGACTCATCGGAGCACACCGCCGACATCGCAATCCGCACCAACCAGGGCGTGCACAAGCAGATGTCGGAGATCGATCAGGTCGCCACCGCCGTGCATGAAATGACTGCCACCGCCCAAGACGTGGCCCGCAATGCGACCCAGGCCGCCCAAGCCGCCAGTCACGCCGACCAGGCCGCCAGCCAGGGCATGCAGATCGTACGCGACACCTCCACCTCCATTGGCGCGCTGGCCGTGGAAATCGGCAAGGCCGTGGGCGTGGTGCAAACCCTGGCCAAGGACAGCGAGAACATCAACGCGATCCTCACGGCCATTCGCGGGATCGCCGAGCAGACCAACCTGCTGGCCCTCAACGCGGCCATCGAAGCGGCTCGGGCCGGTGAACAAGGTCGAGGTTTTGCGGTGGTCGCCGATGAGGTGCGCAACCTCGCGCAGAAGACGCAGCAGGCCACGGAAGAAATCCAGTCGATGATCCAGCAGTTGCAACAGGGCACCCGCGATGTCGTGCGCGTCATGGAAGACAGCCAGCACCGCACCGATGAAAGCGTGCAGCACGCAGCCAAGGCAGCCCAGGCGCTGGAGACGATTACCCAGGCGGTGTCGGTCATCAACGACATGAACACCCAGATCGCCAGCGCCGCCGAGGAGCAAAGCGCTGTAGCTGATGACATCAACCGCAACGTGATCAACATCGGCCAAGTGGCGAACGAAGTGGCCAGCGGCGCCGACGAGTCGAGCGCGGCCAGTGCCGGGCTGACCAAGTTGGCGGAGCAGCAGCGGCGGTTGATCAATCAGTTCAGGGTCTGA	MKFKSIQFSVAALAGAIVLSVVGALVLYALFAGARTQEMVQQRTKAQFEQLIEQRLSALARTQASLIQRELEAPLLLARGLATTNALMGMNGTDGNPLLKMPREQMISLLRESVVRNPKVLGAYIAWEPNAIDHDDANYVNSQVLGMETNGRFLPWWFRNQDGTLGLEKLADVTDQKLLSTGIRASEYYLCSQDSRKACVIDPAPYRVGSTMTMLASFIEPILIDGKFQGIVGADLSVNFIQDMLVAADAKLYDGAGEMALLASNNRLVAFTKDPSKLGEKASDLLDANELDNLAKLGAGEVRYDVDEAHGHIEVYMPFGIGETSARWTLMMQLPLNAVMADLQALQKDLDDQRETDIFGMAMVGLAIAAIGLLVIWLVGHGIARPLKQMVAMLDDIAQGEGDLTRRLTSDRADELGAIAKGFNTFLGKLQGMITQVVTSVQSVSDSSEHTADIAIRTNQGVHKQMSEIDQVATAVHEMTATAQDVARNATQAAQAASHADQAASQGMQIVRDTSTSIGALAVEIGKAVGVVQTLAKDSENINAILTAIRGIAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRNLAQKTQQATEEIQSMIQQLQQGTRDVVRVMEDSQHRTDESVQHAAKAAQALETITQAVSVINDMNTQIASAAEEQSAVADDINRNVINIGQVANEVASGADESSAASAGLTKLAEQQRRLINQFRV	PGPT0015710_3309	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_04209	624	yedK	COG2135	SOS response-associated protein YedK	ATGTGTGGACGTTATGCCCTGTTTCGCTGGAACCCCGCCTTTGCGGCCTTGCCTGGCTTCCCTGCCGACCAGAAGGCCCAATGGAACATATCGCCCAATGATTCGGTTCTGATGCTGCGGGCTGGCGCCGATGGCCAGCGCGAATTGGCCCGCGCCCGTTGGGGGCTTACGCCTCCGTGGCTGACGGACCTGTCCCGGACCCCGGCCCATGCTCGGGCCGAAACCGTCGCCGAACAGCCGATGTTCCGCGAGGCCCTGCGGTTGCGTCGGTGTCTGCTGCCGGCCAACGGGTTCTACGAATGGCGCGGTGGTTCGCGTAAACGCCCCTATTGGCTGACGCCGGGGGAAGGTTCGTCGCTGTTTTTTGCGGCGATCTGGGAAGCGTATCCGGTGCAGGAACAGGTGTGGTTGAGCACCGCCGTCATCACCCAGCCGGCGGCCGGTCAGCGGCGTCCATTGATTCTGAATGAAGAAGGCCAACGGTTGTGGCTCGACCCCGAGACACCCTTGCATGCCTTGCAAGGGCTGCTGGCGAGCGAGCCTGCGCAACTGCGCGAGCGGGTGCTGGCCAACATGGTCAACGACCCGAAACTCAATGGGCCGGAGTGCCTGACGCCGGCTTGA	MCGRYALFRWNPAFAALPGFPADQKAQWNISPNDSVLMLRAGADGQRELARARWGLTPPWLTDLSRTPAHARAETVAEQPMFREALRLRRCLLPANGFYEWRGGSRKRPYWLTPGEGSSLFFAAIWEAYPVQEQVWLSTAVITQPAAGQRRPLILNEEGQRLWLDPETPLHALQGLLASEPAQLRERVLANMVNDPKLNGPECLTPA				NA	NA	NA	NA	NA
D1-36_04210	261			hypothetical protein	ATGCAGCGAATCTACGAACTGGAAAACCTGATGGAAGGCGAATTGCTGCAAGGCATGCTCGCCAGCGAAGGCATCACCGCGCATCTGGTGGGACGTGACCTGGTGGGGGGCGCAGGGGAATTGCCGATGCATGGCTTGCTGGGGCTGGCGGTGGACGATGAACAGGCGCAATACGCCCAGGAACTGATCGCCGCCTACAATGCCGCGCTGCCGGTACCCGGCGATGAGCCGGACAGTTACCCCGGAACGCTGGTCTGTTAG	MQRIYELENLMEGELLQGMLASEGITAHLVGRDLVGGAGELPMHGLLGLAVDDEQAQYAQELIAAYNAALPVPGDEPDSYPGTLVC				NA	NA	NA	NA	NA
D1-36_04211	183			hypothetical protein	ATGCTGGAAGCTGCTGAATATGAATGTCCATATTGTGGAGAAGAGGTCGAGACTTCATTGGATCTTTCCGGTGGCGACCAGACCTATATCGAGGATTGCCAGGTCTGTTGCCGGCCGATCACTTTCGTACTACAGGTACACGATGAAGAATGGCACCTCGAGGTCTTCAGCGAAAACGAATGA	MLEAAEYECPYCGEEVETSLDLSGGDQTYIEDCQVCCRPITFVLQVHDEEWHLEVFSENE				NA	NA	NA	NA	NA
D1-36_04212	1164			hypothetical protein	ATGGGCGAATTCGATGCCATCCGACCTTACGACGACAGTGAAGTCCCAGCGGTGCTGGCACGGCTGCTCAGCGATAAGGCGTTTCTAGATATCCTCACCCACTTCCGCTTCCCGCGCCTGGCCGGTGCTTTCGGCTGGATGCTCAAACCCCTTATAGCGCAGAAGCTGCGTCGAGAGTTCGCCGGTGTGACATCGGTCGCCACGTTGCAGGACAAAGTGGAGTTCTATGTCGACCACACCATCGAACGCGCCACCGATGGCGTGACCTACACAGGGGTGGAGCAGTTCAAGTCCGGCAACGCGTACCTGTTCATCGCCAACCACCGCGATATCGTGATGGACCCGGCATTCGTCAATTACGCCGTCTACCACGCGGGCCTGCCGACGCCGCGCATCGCCATCGGCGACAACCTGCTGCAAAAGCCGTTTGTCAGCGACCTGATGCGCTTGAACAAGAGTTTTATCGTGCACCGTTCCATCACCGGTCGCCGGGAAAAAATGGCGGCGTACCAGTTGCTGTCGGCGTACATCAATCACTCGATCCGCAACGATTGCGCCTCGATCTGGATCGCCCAGGCCGAGGGCCGAGCCAAGGACGGCGATGACCGGACCGAATCGGCGATCCTCAAGATGTTCCACATGAGCCGCAAGGACGAGCCGTTCGGCGAGGTCATCCGCTCGCTGAACCTCACGCCGGTGTCGATCAGCTACGAATATGATCCGTGCGACCAGGCCAAGGCCCGGGAGCTTTACATCCGCGCCACCACCGGGACCTACACCAAGGCACCAGGCGAGGACGACGTCAGCATCGCCAAGGGCATCACCGGCTACAAAGGCCGGGTCCACGTGAACTTCTCCGCGCCGATTACAGAGCTGTTCGAGGACACCAAGCAGTTGGCAGCGGAGATGGACCGGCAGATTCTCGGCGGTTATCGCCTGTTCCCCGTGCACTACCTGGCCTACGCCCAATGGACCGATGCCGACCCGCAGCTGCAGGTGCCGACGGCGGCTGAAGTGTTCGGTGCCGAAGAACTGGCGAAAGCTCAGGAAGAATGGCAGCGTCGGTTGGATGCGTGCCCGGCGGAACAGCGGCCATTCCTGGTGCTGCAATATGCAACGCCGGTGCGTAATCAGTATCGGGTCAAGGCGGGGTTGCCGCTTTAA	MGEFDAIRPYDDSEVPAVLARLLSDKAFLDILTHFRFPRLAGAFGWMLKPLIAQKLRREFAGVTSVATLQDKVEFYVDHTIERATDGVTYTGVEQFKSGNAYLFIANHRDIVMDPAFVNYAVYHAGLPTPRIAIGDNLLQKPFVSDLMRLNKSFIVHRSITGRREKMAAYQLLSAYINHSIRNDCASIWIAQAEGRAKDGDDRTESAILKMFHMSRKDEPFGEVIRSLNLTPVSISYEYDPCDQAKARELYIRATTGTYTKAPGEDDVSIAKGITGYKGRVHVNFSAPITELFEDTKQLAAEMDRQILGGYRLFPVHYLAYAQWTDADPQLQVPTAAEVFGAEELAKAQEEWQRRLDACPAEQRPFLVLQYATPVRNQYRVKAGLPL				NA	NA	NA	NA	NA
D1-36_04213	282			hypothetical protein	ATGTCGTTGCAATTGTTTTCGCTGTTCGCTGCCCACCCGGCCAAACTGATCAACCTGCTCGCGCTGCTGTTTGCCTGCCCGGGTGGCTGGGTATTGCATGCAACGCGCCGCCGCGAACAGCGAGCACGCGCCTGCCTCCAAGCGCGCAGTGGCGAAAGCAATGAACGATTCGAAGCCCTGCTGGACCTGGCCACCCAGCGCATGAACCGGTTTTTCTACCGGTTCGGCTTTGCCTGCCTGGGCGTCGCGCTGCTGATGTCCTGGATCAGCACGCAGCTCTGA	MSLQLFSLFAAHPAKLINLLALLFACPGGWVLHATRRREQRARACLQARSGESNERFEALLDLATQRMNRFFYRFGFACLGVALLMSWISTQL				NA	NA	NA	NA	NA
D1-36_04214	207			hypothetical protein	ATGCTGCACGCCGAAAACCAGGATCGCCTCTATCTCATCAGCCCGAGCGACGAACAACAGAACCTCGTCGACAGCCTGTCCTTCAACGTGCAGGACCGGCACTGGCTGGTGTATTGCGCCCTCGGCGGCCATTCACATGCCGATCTGCCGGAGACGGACCTGCTGACCGGGATCAGCGTGCTGGAGCTCTATTCCCAGGCGGCGTGA	MLHAENQDRLYLISPSDEQQNLVDSLSFNVQDRHWLVYCALGGHSHADLPETDLLTGISVLELYSQAA				NA	NA	NA	NA	NA
D1-36_04215	585			hypothetical protein	ATGTTGCAACGCCTGTTGTTCGGTTTGATCGCAGTGACCAGTCTGACCCTCGTCGGCTGTGCCCACAGCCCGCAACAACTTAACCCGGAGCCCAAGCTCAACGCCCAACTGGCGCCGGTGGGTCGCGGCCAGCCGGTGGTGGTCCGTGTCGTGGACGGTCGTCCGTCGCCGACCCTCGGCACACGTGGTGGCTTGTACCCGGAAACCAGCGTGATCACGGTGCAGGGTGCGCAAATCTTGCCTAAATTGCAGGCCCAGGCCGAGGCGGCCGTGCGTTTGCTGGGCTTCACCCCCACCGCCAATGCAATGAATGCCCCGCAACTGACCGTGACCCTGGCGGAACTGAAATACCAGTCGCCCAAGGAAGGCATGTACGTGACCGAGGCGACGATTGGCGCGACCTTCCGCTCTGACGTGCAGAACGCCAATCGTCGCTACAGCGGTCGTTATGGCGCTTCGCTGGACCAACGCTTCGGCATGGCGCCCAACCAGGACACCAATACCAAGCTGGTCAGCGATGTATTGAGTGATGCCCTGACCCGTCTGTTCAAGGACCCGACCATCGGTCAGGTGTTGGCAGAGTAA	MLQRLLFGLIAVTSLTLVGCAHSPQQLNPEPKLNAQLAPVGRGQPVVVRVVDGRPSPTLGTRGGLYPETSVITVQGAQILPKLQAQAEAAVRLLGFTPTANAMNAPQLTVTLAELKYQSPKEGMYVTEATIGATFRSDVQNANRRYSGRYGASLDQRFGMAPNQDTNTKLVSDVLSDALTRLFKDPTIGQVLAE	PGPT0024500_191	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024500-yajG-K07286	NA	NA
D1-36_04216	234			hypothetical protein	ATGCGTTTTCTCATCTCCCTGTTTACCCCGCGCCCGCATCATCGTTGCTTCGCCCTGCTGGACCGTACCGGCCGCTGCCAGGCATTCAAGCAGTGCAGCCTGCAGCCCATGGGCGATGGCTGGGTGGAAATCGAAGAGATCCGCCTCAACTGGCTGCACCAGCCCTTGCCTGCCAGTGCCCTGGTACAACCGCCTCGCACTCGCGTACGTAACCGCCAGCTGTTGGCCTTCTGA	MRFLISLFTPRPHHRCFALLDRTGRCQAFKQCSLQPMGDGWVEIEEIRLNWLHQPLPASALVQPPRTRVRNRQLLAF				NA	NA	NA	NA	NA
D1-36_04217	1509	mqo_3	COG0579	Malate:quinone oxidoreductase	ATGGCGCATAACGAAGCAGTTGATGTAGTTCTGGTAGGGGCCGGCATCATGAGTGCCACCCTGGCCGTACTGCTCAAGGAGCTCGACCCGGCGATTTCCCTGGAAGTCGTCGAGCTGATGGACTCGGGTGCCGCGGAGAGTTCCAACCCCTGGAACAACGCCGGTACCGGTCATGCCGGGCTGTGTGAGCTGAACTACACGCCCCAGGCCGCCGATGGCACTGTCGACATCAAGAAAGCCGTGCACATCAACACCCAGTTCGAGGTGTCGAAGCAGTTCTGGACGTACCTGACTAAAAAGGGCACGTTCGGCTCGTCGAAATCCTTCATTGCCCCGGTGCCGCACCTGAGTTTCGTACAGGGTGAAAAAGGCGTGGAGTTCTTGAAGAAGCGCTTCGAACTGATGAGCCAGCATCACGCCTTCGCCGACATGGAATACACCGAAGACCGCGACCAGATGGCCGAGTGGATGCCCCTGATGATGCCAGGCCGGCCGGCCGATGAAGTCATCGCCGCCACCCGCGTCATGAACGGGACCGACGTCAACTTCGGCGCCTTGACCAACCAGTTGCTCAAGCACCTGGGCAGCGCGCCGGACACTCAGATCAAATACTGCAAGCGCGTCACCGGCCTCAAGCGCAAAGGTGACGGCTGGACCGTGAGCATCAAGGACGTCAATTCCGGCAGCACCCGCGAAGTCGACGCCAAGTTCGTCTTCCTCGGTGCCGGTGGCGCCGCGTTGCCGCTGTTGCAAGCGTCGGGTATCGAAGAAAGCAAGGGCTTCGGTGGTTTCCCGGTCAGCGGCCAGTGGCTGCGTTGTGACAACCCGGAAGTGGTCAAGCACCACCAGGCCAAGGTCTACAGCCAGGCCGCCGTGGGCTCGCCACCGATGTCGGTGCCGCACCTGGACACCCGCGTGGTCGACGGCAAGAAGTCCCTGCTGTTCGGGCCTTACGCCGGTTTCACCACCAAGTTCCTCAAGCACGGCTCGCTGATGGATCTGCCGATGTCGGTACGCGCCGGCAACATCGGCCCGATGCTGGCCGTGGCCCGGGACAACATGGACCTGACCAAGTACCTGATCAGCGAAGTGATGCAGTCCATGGAGCAGCGCCTGGAATCCCTGCGCCGCTTCTACCCCGAGGCGAAAGCCGAGGACTGGCGCCTGGAAGTGGCCGGCCAGCGGGTGCAGATCATCAAGAAAGACCCGAAGAAAGGCGGCGTACTGCAATTCGGCACCGAACTGGTGGCGGCCAAGGACGGAACCCTCGCCGCCCTGCTCGGCGCTTCGCCAGGCGCCTCGGTCACCGTTTCGATCATGCTGGAACTGATCGAGCGTTGCTTCCCGGAAAAAGCCAAGGGCGAGTGGGCCACCAAGCTCGCGGAAATCTTCCCAGCCCGGGAAAAAGTACTGGAAACCGATGCCGCGCTGTATCGCAAGATCAATGCGCAAAACAACATTGCGTTGGAACTGGTTGAAGAAAGCAGCGAGACCCAAAGCTACGCTTGA	MAHNEAVDVVLVGAGIMSATLAVLLKELDPAISLEVVELMDSGAAESSNPWNNAGTGHAGLCELNYTPQAADGTVDIKKAVHINTQFEVSKQFWTYLTKKGTFGSSKSFIAPVPHLSFVQGEKGVEFLKKRFELMSQHHAFADMEYTEDRDQMAEWMPLMMPGRPADEVIAATRVMNGTDVNFGALTNQLLKHLGSAPDTQIKYCKRVTGLKRKGDGWTVSIKDVNSGSTREVDAKFVFLGAGGAALPLLQASGIEESKGFGGFPVSGQWLRCDNPEVVKHHQAKVYSQAAVGSPPMSVPHLDTRVVDGKKSLLFGPYAGFTTKFLKHGSLMDLPMSVRAGNIGPMLAVARDNMDLTKYLISEVMQSMEQRLESLRRFYPEAKAEDWRLEVAGQRVQIIKKDPKKGGVLQFGTELVAAKDGTLAALLGASPGASVTVSIMLELIERCFPEKAKGEWATKLAEIFPAREKVLETDAALYRKINAQNNIALELVEESSETQSYA	PGPT0001440_909	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
D1-36_04218	288			hypothetical protein	ATGCGTAAAGACAAGAAACAAGTGATTGGTGACGAGATTGGCGACGAACAGATCAAGCTGTTCCTCAATTTTGAACCGGTCGATGCTACGTCGCCGTCGCTGCACAAACTGATCAAGGCCTACCGTGGGCTGCGTGTCGACGACTTCGAGCGTTTCCTGGTGTTTTTCGTCGAGGCGGGCTACGACCTCGATGGCAAGGACGAACATGGCAATGATTTCGTTGCGCTGAACAAGGACCAGCGCAACGCCGAGGAATACATCGAGTTGATCAACAAGGCGCGTGGCTGA	MRKDKKQVIGDEIGDEQIKLFLNFEPVDATSPSLHKLIKAYRGLRVDDFERFLVFFVEAGYDLDGKDEHGNDFVALNKDQRNAEEYIELINKARG				NA	NA	NA	NA	NA
D1-36_04219	486			hypothetical protein	ATGAGTGTATCGATCCGCCGCTGCGCCACTTTGCTGTTGCTAACTAGCTTGCCCTTGATGGCCGTGGCCGCGCCGATGCACAGTCAGTTCTTGCCGCCGGATGACCTCGTGGCGCGCCAGGAGCAGCCTGAACAGCAGCAGTTGCTGCAAGTCACCGAATACTCGGTGGTACTGGGCAACCAGCGCCCTTCCAACCAGCAGCCGATCCCGGTCACCTCACCATTGATGGTGCGCCTCAAAGGCAAACCGTTGAACAAGGGCGCGACCATCAGCCAGGTGATTCTCAATTTCGACGGGGAAAGCAAAAGCCTGAAGAAACCGGCGTACGACGAGGCGAGCAAGACCTTGACCTTGTCTTATCCACAGGCCCAGTACCGGGTGGTCATCGACCTGTTGCGCAATGACACGGTGTACGTGCAATTCCTCAGCTACGCCAACGGCCATATCTGGGCCGATCTGCACACCGGCACCGCACGCCCGCGTTGA	MSVSIRRCATLLLLTSLPLMAVAAPMHSQFLPPDDLVARQEQPEQQQLLQVTEYSVVLGNQRPSNQQPIPVTSPLMVRLKGKPLNKGATISQVILNFDGESKSLKKPAYDEASKTLTLSYPQAQYRVVIDLLRNDTVYVQFLSYANGHIWADLHTGTARPR				NA	NA	NA	NA	NA
D1-36_04220	474			hypothetical protein	ATGACTGGCCCTGCCTTCCTGGATCAAGCCTTGTTCGATGAGCTGGCCGAGAAGGCCGGGGCCAGTGCGCGTGGGCGCCAACACCACAATTTCCACCAGATGGATGAGCCTTGCCACCGCATGGCGGTGGGTTTGCAGCCCTCGACCTACATCCCGCCGCATCGCCACCTGAGCGCCGACAAGGCTGAAACCTTACTGGTGCTCAAAGGCCGCCTCGGTGTGTTGATCTTCGATGAAACCGGAACCGTGACCGGCAAGCGCATCCTGCAGGCCGGTGGCGATTGCCTCGGTGTCGATCTGCCGGCCGGTGTCTACCATGGCCTGGTGGTACTGGAGGCTGACAGCCTGATGTTCGAATGCAAAGCCGGCCCCTACCGGCCGGTGGGCGACGGCGAACTGGCCCCTTGGGCGCCCCGCGAAGGCGAGCCCGGCGTTGCGCAATACCAGGCCTGGATGCGCGCTCAATTCGACTAA	MTGPAFLDQALFDELAEKAGASARGRQHHNFHQMDEPCHRMAVGLQPSTYIPPHRHLSADKAETLLVLKGRLGVLIFDETGTVTGKRILQAGGDCLGVDLPAGVYHGLVVLEADSLMFECKAGPYRPVGDGELAPWAPREGEPGVAQYQAWMRAQFD	PGPT0007295_6	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0007295-hprT|hpt-K00760	NA	NA
D1-36_04221	558	hpt		Hypoxanthine-guanine phosphoribosyltransferase	ATGTCCGCTGATCTCGAGCATATCCGTCAAGTCATGCGAGAGGCTGACTGCCTGTACACCGAAGCTGAAGTCGAAGCGGCCATCGCCCGTGTCGGTGCGCAAATCAACGATCAATTGGCTGAAAGCAATCCGGTCGTGTTCTGCGTGATGAACGGCGGGCTGATTTTCTCCGGCAAGCTGCTGACCTATCTGAACTTCCCGCTGGAAGCTTCCTACCTGCACGCCACCCGTTATCGCAACGAGACCAGCGGCGGCGACCTGTTCTGGAAAGCCAAGCCGGAAGTCTCGTTCATAGACCGTGACGTGCTGATCATCGACGACATCCTGGATGAAGGGCATACCCTGGGCGCGATCATCGATTTCTGCAAACACGCTGGCGCCCGCGCGGTGCACACCGCCGTGCTGATCGACAAGGACCACGACCGCAAGGCCCGTCCTGACCTGAAGGCCGATTTTGTCGGCCTGCCGTGCATCGACCGCTACATCTTCGGCTACGGCATGGACTATAAAGGCTACTGGCGCAACGCCAATGGCATTTTCGCCGTCAAGGGGATGTAA	MSADLEHIRQVMREADCLYTEAEVEAAIARVGAQINDQLAESNPVVFCVMNGGLIFSGKLLTYLNFPLEASYLHATRYRNETSGGDLFWKAKPEVSFIDRDVLIIDDILDEGHTLGAIIDFCKHAGARAVHTAVLIDKDHDRKARPDLKADFVGLPCIDRYIFGYGMDYKGYWRNANGIFAVKGM	PGPT0007295_1172	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0007295-hprT|hpt-K00760	NA	NA
D1-36_04222	639	upp	COG0035	Uracil phosphoribosyltransferase	ATGCCCATCCTCGAGATCCGCCATCCGCTGATCAGACATAAACTCGGCCTGATGCGCCGCGCAGACATCAGCACCAAGAACTTCCGCGAACTCGCCCAGGAAGTCGGCGCCCTGCTCACCTACGAAGCCACCAAAGACCTGCCGCTCGAATCCTACGAGATCGCCGGCTGGGCCGGTGCGGTGCAAGTGGAAAAAATCGCCGGCAAGAAGATTACCGTGGTGCCGATCCTGCGCGCCGGTATCGGCATGCTCGAAGGCGTGCTCAGCTTGATCCCGGGCGCCAAGGTCAGTGCCGTGGGCGTGGCTCGCAACGAGCAGACCCTGCAAGCCCACACCTACCTGGAAAAACTGGTGCCGGAAATCGACGAACGCCTGGCAATGATCATCGACCCGATGCTCGCCACCGGCAGCTCGATGGTCGCCACCATCGATCTGTTGAAAAAGGCCGGTTGCCGCGATATCCGCGCCATGGTGCTGGTCGCCGCGCCCGAAGGCATCAAGGCCGTGGAAGATGCCCACCCCGACGTGACCATCTACACCGCCTCCATCGACCAGAAACTCAACGAACACGGCTACATCATTCCGGGCCTGGGCGATGCCGGCGACAAAATCTTCGGCACCAAGCAGAAGGACGCCTGA	MPILEIRHPLIRHKLGLMRRADISTKNFRELAQEVGALLTYEATKDLPLESYEIAGWAGAVQVEKIAGKKITVVPILRAGIGMLEGVLSLIPGAKVSAVGVARNEQTLQAHTYLEKLVPEIDERLAMIIDPMLATGSSMVATIDLLKKAGCRDIRAMVLVAAPEGIKAVEDAHPDVTIYTASIDQKLNEHGYIIPGLGDAGDKIFGTKQKDA	PGPT0021240_1595	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021240-upp-K00761	NA	NA
D1-36_04223	1275	uraA	COG2233	Uracil permease	ATGCAGGACGAATTCAACGATCCGCTCTGGCGTCAGGTGCTGTCCGGCGCGCAGATGCTGTTCGTCGCCTTCGGCGCGCTGGTGCTGATGCCGCTGATCACGGGCCTGGACCCGAACGTGGCACTGTTCACGGCGGGCCTGGGAACGATCCTGTTCCAGATCGTCACTGGGCGCCAGGTGCCGGTGTTCCTGGCGTCGAGCTTTGCCTTCATCACACCGATCATCCTCGCCAAGGGCCAGTTCGGCCTGGCGGCGACCATGGGCGGCGTGATGGCGGCCGGTTTCGTCTACACGTTTCTGGGCTTGGCGGTGAAGATCAAGGGCACCGGGTTCATTGACCGCCTGCTGCCGCCGGTGGTGATCGGTCCGGTGATCATTTCCATCGGCCTGGCGATGGCGCCGATTGCCGCGAACATGGCCATGGGCAAGGCCGGCGACGGTACCGAGCTGATTCATTATCAGACCGCGATGATGATTTCGATGCCGGCGTTGCTCACCACGTTGATTGTCGCCGTGTTCGGCAAGGGCATTTTCCGCCTGGTGCCGATCATCTCCGGCGTGCTGGTGGGCTTCGCCATGGCGTTTTTCTTTGGCGTCGTCGACACCGCGAAGATCGCCGCGGCCCCCTGGTTCGCCCTGCCCGCCTTCACCGCACCGGAGTTCAACTGGCAGGCGATCCTGTTCATCGTGCCCGTCGCGCTGGCACCGGCCATCGAGCACATCGGCGGCGTCATTGCCGTGGGCAGCGTGACCGGTCGCGATTACCTGAAGAAGCCGGGCCTGCATCGCACGTTGTTCGGCGACGGCGTCGCCACCACCGCAGCCGGCCTCTTCGGCGGCCCGCCCAACACCACTTACGCCGAAGTCACCGGCGCGGTGATGCTGACCAAGAACTACAACCCGAAGATCATGACCTGGGCCTCGATCTTTGCCATCAGCCTGGCGTTCATCGGCAAGTTCGGCGCGCTGCTGCAAAGCATTCCGGTGCCTGTGATGGGTGGGATCCTGTGCCTGTTGTTCGGCTCGATTGCCGCAGTGGGCATGAACACGCTGATTCGTCACAAGATCGATCTGGGCGAGGCGCGCAATTTGGTGATCGTTTCGGTGACGCTGGTGTTCGGCATCGGCGGCGTGCTGGTCGGCACCGGCACGGGCCCGGACGACTTCGGCCTCAAGGGCATCGCGCTGTGCGCCGTGGTGGCGATCGCGTTGAACCTGATCTTGCCGGGCAATGACGGATGGAAGCAGAAGAAGGCGGATGAGCCTCTGGTCTGA	MQDEFNDPLWRQVLSGAQMLFVAFGALVLMPLITGLDPNVALFTAGLGTILFQIVTGRQVPVFLASSFAFITPIILAKGQFGLAATMGGVMAAGFVYTFLGLAVKIKGTGFIDRLLPPVVIGPVIISIGLAMAPIAANMAMGKAGDGTELIHYQTAMMISMPALLTTLIVAVFGKGIFRLVPIISGVLVGFAMAFFFGVVDTAKIAAAPWFALPAFTAPEFNWQAILFIVPVALAPAIEHIGGVIAVGSVTGRDYLKKPGLHRTLFGDGVATTAAGLFGGPPNTTYAEVTGAVMLTKNYNPKIMTWASIFAISLAFIGKFGALLQSIPVPVMGGILCLLFGSIAAVGMNTLIRHKIDLGEARNLVIVSVTLVFGIGGVLVGTGTGPDDFGLKGIALCAVVAIALNLILPGNDGWKQKKADEPLV				NA	NA	NA	NA	NA
D1-36_04224	1026	hemH	COG0276	Ferrochelatase	ATGACCGATCACGCGTTGCTTCTGGTGAATCTGGGTTCGCCTGCCTCCACCTCGGTGGCCGATGTGCGCCGCTACCTCAATCAATTCCTGATGGACCCGTACGTGATCGACCTGCCATGGCCGGTCCGGCGGTTGCTGGTGTCGCTGATCCTGATCAAGCGCCCCGAACAGTCTGCCCACGCCTACGCGTCGATCTGGTGGGAAGAGGGCTCACCTCTGGTAGTGCTCAGCCGCCGCTTGCAACAGGCGATGACCGCCCAATGGACGCAGGGGCCCGTAGAGTTGGCGATGCGTTACGGCGAGCCGTCGCTGGAGTCCACCTTGGTGCGCCTGGCGAGCCAGGGCCACAAGAGCATCACCCTCGCCCCGTTGTATCCGCAATTTGCCGACAGCACTGTCACCACAGTCATCGAAGAAGCCAAGCGGGTTGTGCGCGAGAAGAAGCTCGACGTGAAATTCTCGATTCTCCAGCCTTTCTACGATCAACCGGAATACCTCGATGCGCTGGTTGCCACCGCCAAGCCGTACCTGATGCAGGACCATGATCATCTGTTGTTGAGTTTCCATGGCTTGCCCGAGCGGCACCTGACCAAGCTCGACCCCACGGGTTACCACTGCTTCAGGGATGCCGACTGCTGCAAGAACGCGCCGCCTGAAGTCATGGCGACCTGTTACCGCGCCCAGTGCATTCGTACCGCCGAATTGTTCGCCCAGCGCATGGGCCTGACGCAGGGTAAATGGTCGGTGTCGTTCCAGTCGCGATTGGGCCGTGCCAAGTGGATCGAACCCTACACCGAAGCGCGTCTGGAGGAACTGGCCAAGAGCGGCGTGAAAAAAGTCCTGGTGATGTGCCCGGCGTTCGTGGCCGATTGCATCGAGACGCTCGAGGAAATCGGTGATCGCGGCCGAGAGCAGTTCCGCGAGGCGGGAGGCGAGGAGTTGGTACTGGTGCCATGTCTCAATGACGATTCGCGCTGGGCGCAGGCCTTGAGTACCCTCTGCGAACGGGCGCCTCTAGCGCTATAA	MTDHALLLVNLGSPASTSVADVRRYLNQFLMDPYVIDLPWPVRRLLVSLILIKRPEQSAHAYASIWWEEGSPLVVLSRRLQQAMTAQWTQGPVELAMRYGEPSLESTLVRLASQGHKSITLAPLYPQFADSTVTTVIEEAKRVVREKKLDVKFSILQPFYDQPEYLDALVATAKPYLMQDHDHLLLSFHGLPERHLTKLDPTGYHCFRDADCCKNAPPEVMATCYRAQCIRTAELFAQRMGLTQGKWSVSFQSRLGRAKWIEPYTEARLEELAKSGVKKVLVMCPAFVADCIETLEEIGDRGREQFREAGGEELVLVPCLNDDSRWAQALSTLCERAPLAL	PGPT0008485_2874	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
D1-36_04225	900			Epimerase family protein	ATGCACATATTGCTGACCGGCGGTACTGGTTTGATCGGACGTCAGCTCTGCCAGCACTGGTTGGAGCAAGGCCATCGCTTGACGGTATGGAGTCGTCGACCCGAGCAGGTGGCGAAAATCTGCGGGGCGCAGGTGCGCGGCATCGCCGCGCTCGATGAAATTGGCGAGCCGGTGGACGCGGTGGTCAACCTCGCCGGCGCGCCCATCGCTGATCGGCCCTGGAGCCACAAGCGCAAGATCTTGCTGTGGAGCAGCCGCATCACGTTGACCGAGGCTTTGCTTGCATGGCTGGAACGGTGCGAGCAGAAACCGCAGGTGCTGATTTCCGGATCCGCCGTGGGCTGGTATGGCGACGGTGGCGAGCGGGAGCTGACCGAGGAATCAGGGCCGGTCAGCGAGGACTTCGCCAGCCAGCTGTGCATCGCTTGGGAGGAAACGGCGCAGCGGGCCGAGGCCTTGGGCCTGCGCGTGGTCCTGGTTCGAACCGGCCTGGTCCTGTCCGCCGAGGGCGGCTTTTTGTCGCGGTTGCTGCTGCCCTTCAAACTGGCGCTGGGCGGGCGTATCGGCAACGGGAGACAGTGGATGCCATGGATACATATCGACGATCAAATCGCTCTGATTGATTTTCTTCTGCACCGCAGTGATGCCAGCGGTCCTTATAATGCCTGCGCGCCGAACCCGGTGCGCAACCGCGATTTTGCCAAGGCCCTGGGGCACGTGTTGCATCGCCCGGCCGTGGTGCCGATGCCGGAGCTTGCGCTGAAAGTCGCGTTGGGGGAATTGTCATTGCTGTTGCTGGGCGGCCAGCGCGCCACGCCGGCCCGATTGCAGGCGGCGGGTTTTTCATTCCAGTTCACTGATTTGCCCGCGGCCCTGGAAGATTTATCGGGTCGCCTTTGA	MHILLTGGTGLIGRQLCQHWLEQGHRLTVWSRRPEQVAKICGAQVRGIAALDEIGEPVDAVVNLAGAPIADRPWSHKRKILLWSSRITLTEALLAWLERCEQKPQVLISGSAVGWYGDGGERELTEESGPVSEDFASQLCIAWEETAQRAEALGLRVVLVRTGLVLSAEGGFLSRLLLPFKLALGGRIGNGRQWMPWIHIDDQIALIDFLLHRSDASGPYNACAPNPVRNRDFAKALGHVLHRPAVVPMPELALKVALGELSLLLLGGQRATPARLQAAGFSFQFTDLPAALEDLSGRL	PGPT0014730_2525	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	LOW_TEMPERATURE_TOLERANCE	LOW_TEMPERATURE-RELATED_ENZYMES,PGPT0014730-yfhF-K07071	NA	NA
D1-36_04226	987		COG3380	Renalase	ATGACTGTACCTATCGCAATCATCGGCACCGGCATCGCCGGACTCTCCGCCGCCCAGGCCCTGACGGAGGCCGGGCATGTCATCCAACTTTTCGATAAAAGCCACGGTAGCGGCGGACGCATGTCGAGCAAGCGCAGCGACGCTGGCGCGCTGGACATGGGCGCCCAGTATTTCACTGCCCGGGACCGGCGCTTCGTCACGGAGGTGCAGCGCTGGCAAGCCAACGGCTGGGCAGCGGAATGGAACCCGCAGCTCTATCACTTCCAGGACGGGCAGATGAGCCCTTCACCGGACGAACAGACCCGTTGGGTCGGCACCCCGCGCATGAGCGCGATTACCCGTGCCCTGCTCGGCGACCTGCCCGTGCAGTTCTCCTGCCGCATCACCGAAGTGTTTCGCGGCCAGGAGCACTGGCATCTGCAGGACGCTGAAGGGTTCACCCATGGCCCGTTCGGCCAGGTGGTCATCGCCACGCCCGCGCCCCAGGCGACCGCATTACTGGCCGCGGTGCCGAAACTGGCTGGCGTGGCCGCCGGGGTAAAAATGGACCCGACCTGGGCGGTGGCGCTGGCCTTCGAACAGCCTTTGGATACGCCCATGGAAGGCTGCTTCGTACAGGATAGCCCTCTCGACTGGCTGGCACGCAACCGCAGCAAGCCAGGCCGCGACAGCAAGCTCGACACTTGGGTGCTGCACGCCACCAGCGACTGGAGCCGCCAGCACATCGACATGTCCAAGGAAGCGGTCATCGAACACCTGCACGGTGCCTTCGCCGAACTGCTGCACAGCGCGATGCCCGCCCCGAGCTTCAGCGTGGCCCACCGCTGGCTGTACGCCCGCCCCGCCAGCAGTCACGAATGGGGCGCGCTGGCCGATGCCGACCTGGGGTTGTACGTATGCGGAGATTGGTGCCTGTCCGGCCGGGTCGAAGGGGCTTGGCTCAGCGGCCAGGACGCCGCGCGCCGGTTGCACGCCAGCCTCCAATAA	MTVPIAIIGTGIAGLSAAQALTEAGHVIQLFDKSHGSGGRMSSKRSDAGALDMGAQYFTARDRRFVTEVQRWQANGWAAEWNPQLYHFQDGQMSPSPDEQTRWVGTPRMSAITRALLGDLPVQFSCRITEVFRGQEHWHLQDAEGFTHGPFGQVVIATPAPQATALLAAVPKLAGVAAGVKMDPTWAVALAFEQPLDTPMEGCFVQDSPLDWLARNRSKPGRDSKLDTWVLHATSDWSRQHIDMSKEAVIEHLHGAFAELLHSAMPAPSFSVAHRWLYARPASSHEWGALADADLGLYVCGDWCLSGRVEGAWLSGQDAARRLHASLQ				NA	NA	NA	NA	NA
D1-36_04227	963			hypothetical protein	ATGCCCAGCGAAGCGAACGCCAAACCCAAGATTGCTATCAGCGCATGCCTGATGGGCGCCGAAGTTCGCTTCAATGGCGGGCACAAGCAATCCCAGCTATGCAGCCGCACGCTTAATGACTTTTTCGATTTCGTCCCGGTTTGCCCTGAGGTCGCCATAGGCTTGGGCATTCCCCGGGAACCGATTCGGCTGGTGGGCAAACCCGAGCAACCCCACGCGGTCGGCACCGTGAACCGCGATCTCGACGTCACCCAACCACTGGACGATTACGGTCGGCAAATGGCCGAGGAACTAAACGACATTTGCGGCTACATCTTCATGCAGAAGTCGCCGTCGTGCGGGCTGGAACGGGTCAAGGTCTACGATCACAACAGCGTGCCCCAGGACGGCGGCGGGCGTGGTATCTACGCGCAGGCCTTTTGTGCGCGCCATCCGGACCTGCCGGTGGAAGAAGACGGTCGCCTCAACGACCCGGTTCTGCGTGAGAACTTCCTCACGCGTGTGTTCGTCTACGCCGCTTGGCAACCGCTGCGCCGTCGCGACCTGACCCGGCGCGATCTCATCGAATTCCACTCGCGCTACAAATACTTGCTGATGGCTCACGATCCGGTGCAATACAAGGCCCTCGGCAACCTGTTGGGCAACATGGGCACGTCGGATCCCAATGAGTTGGGCCCGCGTTATTTCAGTGCCCTGATGACGGCCTTGAAGAAATGCGCCACCCGCCGAACCCACGCCAACGTACTTCAACATTTGAGCGGCTATCTCAAACGCGCCATCGGCGCCGATGACAAGCGGGAAGTGCAGCACCTCATCCAGCAATATCGCCTCGGCATCGTGCCCTTGGTGGTGCCGCTGACGTTACTCAAGCATCACCTGCGCCAGCATCCCGATCCATATCTCGCGCAACAGGCGTACCTGCAACCCCACCCGGAAAATCTCAGCCTGCGAAATGCCATCTGA	MPSEANAKPKIAISACLMGAEVRFNGGHKQSQLCSRTLNDFFDFVPVCPEVAIGLGIPREPIRLVGKPEQPHAVGTVNRDLDVTQPLDDYGRQMAEELNDICGYIFMQKSPSCGLERVKVYDHNSVPQDGGGRGIYAQAFCARHPDLPVEEDGRLNDPVLRENFLTRVFVYAAWQPLRRRDLTRRDLIEFHSRYKYLLMAHDPVQYKALGNLLGNMGTSDPNELGPRYFSALMTALKKCATRRTHANVLQHLSGYLKRAIGADDKREVQHLIQQYRLGIVPLVVPLTLLKHHLRQHPDPYLAQQAYLQPHPENLSLRNAI				NA	NA	NA	NA	NA
D1-36_04228	915			hypothetical protein	ATGAACGACGAACCCGACTCCAGCGCCAGCGAAGACCTCGGCGCTGATTTTGCCACAGCGCTGGCGCAGGGCTGGCTGCCCATACGCGAAGTGTCCCGGCGGACCGGCGTCAACGCCGTCACGCTGCGTGCCTGGGAGCGCCGCTATGGCTTGATCGTGCCGCACCGCACCCCCAAGGGCCATCGCTTGTTCAGCGCTGAACATGTGCAACGGATCCAGAGCATCCTCACTTGGATCAATCGCGGCGTGGCCGTGAGCAAGGTCAAGCCGTTGCTCGACACTCCGCAGCCGCCCGACGAGCCATTGGAAGATGATTGGCAGTGCCAGCGCCACGCCCTTGCGCTGGCGGTGATGCAACTGGTCAACCAGGCGATGGCGCTTTATCCGCCCAGTACTGTTTGCGAACAGTTGCTGCTGCCCTTGCTCGACGAATTGCAGACACGTTGGCAAGGGCAGTTCGGCGCGCAGTTGGAGCAGGTGTTCTTTTATTCCTGGCTGCGCAGCAAGTTCGGCAGCCGGGTCTACCACAACAACCGCCAGGTGCATGGCGCGCCGTTGCTGATGGTCAATCATTCTCTGTCGTCCCAGGAACCGCACCTGTGGTTGACGGCCTGGCTCGCCAGCAGCTCCGATTGCCCCGTGGAGGTCTTCGATGCGCCTTTGCCGGCGGGAGAGTTGGCGCTGGCGGTCGAACGGCTCAAGGCCCGCGCCGTGTTGCTGTATTCAAGCAATGCCTTGAACCTTTCCCAATTGCCTAGGCAACTGAATGCCGTCGACTGCCCGATCATCATCGCCGGCCCGGCCGTGTCCATTCATCTCGCCAGGCTATCCACCGACGTCTCGATGCCCCACGTCAGTTGGGCCGAAAACCCGCTCTGCGCTCACGCCGAACTGAATCGTCGGGCGCTTCTTTAA	MNDEPDSSASEDLGADFATALAQGWLPIREVSRRTGVNAVTLRAWERRYGLIVPHRTPKGHRLFSAEHVQRIQSILTWINRGVAVSKVKPLLDTPQPPDEPLEDDWQCQRHALALAVMQLVNQAMALYPPSTVCEQLLLPLLDELQTRWQGQFGAQLEQVFFYSWLRSKFGSRVYHNNRQVHGAPLLMVNHSLSSQEPHLWLTAWLASSSDCPVEVFDAPLPAGELALAVERLKARAVLLYSSNALNLSQLPRQLNAVDCPIIIAGPAVSIHLARLSTDVSMPHVSWAENPLCAHAELNRRALL				NA	NA	NA	NA	NA
D1-36_04229	1440	phrB	COG0415	Deoxyribodipyrimidine photo-lyase	ATGCAATTGATCTGGCTGCGCAGCGATTTGCGCGTGCACGACAACACCGCGCTTGCCACCGCTGCCGCCCGAGGCCCCTGCGTGGCGGTATATCTGCCAAGTCCGGGGCAATGGCGCGCCCACGATGATGCGCCTTGCAAAGTCGATTTCTGGTTGCGCAACCTGGCGTCGCTGAGCACGGCGTTGGAACGACTGAACATCCCGCTGCTGATCCGCCAAGCGCCCCAATGGGACCAGGCGCCAGAAGTATTGGCGACACTGTGCCGGGAGCTGAACATCGACGCCGTGCACGTCAACGAAGAATACGGCCTGAACGAAACCCGACGCGACACCGAAGTCGCTCGTGCGCTGGCTGGAGAGGGTGTCGAGTTTCATAGCCACCTCGACCAGCTCTTGTTCAAGCCCGGCAGCGTGCTGACCAAGACCGGCAACTATTTCCAGGTATTCAGCCAGTTTCGCAAGGTGTGCTACCAACGCTTGCATTTCTCACTACCGAGCGTGGTGCCCACGCCTGCCCGGCAAGCGTCCACCGCCATAGCCAGTGATCCCGTGCCGACGTGCGTCGAAGGCTTCGAGCCACCCAGCGAAACGCTGCGAACCCTGTGGCCGGCCGGTGAGAGCGAAGCCCGGCGGCGGCTGGATGGGTTTGTCGAGCAGCACATCGACGACTACCTGACTGAGCGGGACTTCCCGGCCAGGCCTGGCACCAGCCAGCTTTCGGCCTACCTGGTGGCCGGCGTGGTATCGCCGCGCCAATGCCTGCACGCGGCACTGCACGCCAACCAGGGTGAATTCGAAAGTGGAAATGCAGGAACAGTGACCTGGATCAATGAATTGCTCTGGCGGGAGTTTTACAAACACATATTGGTGGGCTATCCACGCGTGTCCCGACACCGCGCGTTTCGCCCGGAGACCGAGGCCTTGGCCTGGCGCCAAGCGCCGGATGAACTGGCGGCGTGGCAACAGGCGCGCACCGGCCTGCCGATCATCGATGCGGCCATGCGCCAGCTGCTGGAGACGGGCTGGATGCACAACCGGTTGCGGATGGTGGTGGCCATGTTCCTGACCAAGAATCTGCTGATCGACTGGCGCGAAGGCGAACGTTTTTTCATGCGCCATCTGATCGACGGCGACCTGGCGGCCAACAATGGCGGCTGGCAATGGAGCGCTTCCACCGGGACGGACTCGGCGCCCTGGTTCCGCATCTTCAATCCACTGAGCCAATCGGAGAAATTTGATCGCGAGGGACTATTTATCAAGCGTTGGCTGCCTGAATTGAACAATTTGGATAACCAACGTGTCCACCGTCCTGATGCCCAGCGCGAACTGTTTGACGCAACGGATTATCCGTCACCGATCGTTGATCTGGCGCAATCAAGAATGCGGGCTTTGGCGGCCTTCAAGCGGTTGCCGTCTCGCCAGGACATGAAATCAAACTGA	MQLIWLRSDLRVHDNTALATAAARGPCVAVYLPSPGQWRAHDDAPCKVDFWLRNLASLSTALERLNIPLLIRQAPQWDQAPEVLATLCRELNIDAVHVNEEYGLNETRRDTEVARALAGEGVEFHSHLDQLLFKPGSVLTKTGNYFQVFSQFRKVCYQRLHFSLPSVVPTPARQASTAIASDPVPTCVEGFEPPSETLRTLWPAGESEARRRLDGFVEQHIDDYLTERDFPARPGTSQLSAYLVAGVVSPRQCLHAALHANQGEFESGNAGTVTWINELLWREFYKHILVGYPRVSRHRAFRPETEALAWRQAPDELAAWQQARTGLPIIDAAMRQLLETGWMHNRLRMVVAMFLTKNLLIDWREGERFFMRHLIDGDLAANNGGWQWSASTGTDSAPWFRIFNPLSQSEKFDREGLFIKRWLPELNNLDNQRVHRPDAQRELFDATDYPSPIVDLAQSRMRALAAFKRLPSRQDMKSN				NA	NA	NA	NA	NA
D1-36_04230	747			hypothetical protein	TTGGGACGGAGGTATTGGCTAACCGGTGCGGCTGATGGCGTGGGTGCCTCGCTGGCTGAAGCATTGCTTCAGACCGGGGCGCAGTTGGCTATCGGCTCGTCTAAAATGTCCAAGCTCCTTTCCCAGCGCTTTCCCGATCAAGTCTTGGCGGTCCCGGCCAAATTGACCAACAGCCAGATTGCTCGAGAGGTCGGCCAATTGATTTCCCAGCAATGGGGCGCGTTGGACACGGTGATCATCAATGCCGGAACGGCCGAATACGTTGAAGGCCAACCGGCTGACCATACGCTGGTCGAACGCATCATCCGCAGCAATCTGTTGGTTGCAAGTTTTTGCATTGACGTGGCGCTGCCGTTATTGCGCCAGGGGGGCACGCCTCACCTGGTAGGCATTACCAGCCCCGTCACGTACCTGGCACCTTCCCACGCGCCAGGCGACGGCACTACGCTGCGCCAGGTGTTTGAATCGGTTCGTGGCGCCCCGTCCGGCAAAGGCATCGACGTAACGCTGGTTATCCCAGGATTCGACGACCCGGCGATGGGTCTCGACGGTAGCCTTCCCATCCCGACCCGATGGTCGGCCCCAGCGACGGCGAACTACATCTTGGCGCAGTTGAACGAACGCCCCCACGAAACGCCCCTACCCGCCGCCTCCATGAAGACGCTCTGGCCGTTACCCTCCCCGGCCAACAATTTTCCCGCGGACACCCAGCCCGCTGGCGAATCCCCGATCAAGGGACAACCCTGA	MGRRYWLTGAADGVGASLAEALLQTGAQLAIGSSKMSKLLSQRFPDQVLAVPAKLTNSQIAREVGQLISQQWGALDTVIINAGTAEYVEGQPADHTLVERIIRSNLLVASFCIDVALPLLRQGGTPHLVGITSPVTYLAPSHAPGDGTTLRQVFESVRGAPSGKGIDVTLVIPGFDDPAMGLDGSLPIPTRWSAPATANYILAQLNERPHETPLPAASMKTLWPLPSPANNFPADTQPAGESPIKGQP				NA	NA	NA	NA	NA
D1-36_04231	306			hypothetical protein	ATGAAAACCATCCCCCTCGTTGAACTGCCTGCGCCGGTCGTCACATGCTCGACATGCGCGGCGTGCTGCTGCCAGCTGGAAGTGATGTTGATCACCGATACTGGCGTTCCGGAACGTTTCATCGACACAGACGATTGGGGTGGGGAGGTCATGCTGAGGCTCGATGACGGCTGGTGCGCGGCGCTGGATCGCGACAGCATGATGTGCACGATCTACGAAAAGCGCCCGCTGATCTGCAGAGAATTCGAGATGGGCGCGCCGGAGTGCCTGGAAGAACGCCAGGGCATTGCGACGGCGTATCGATAA	MKTIPLVELPAPVVTCSTCAACCCQLEVMLITDTGVPERFIDTDDWGGEVMLRLDDGWCAALDRDSMMCTIYEKRPLICREFEMGAPECLEERQGIATAYR				NA	NA	NA	NA	NA
D1-36_04232	519	pagL		Lipid A deacylase PagL	ATGAAGCGTTTATTCTGCTTTGCCGCGCTTGCGGCTGCGTTGCTGGGGCACACTTACACCGCACAGGCGGCAGGCGTGGAGTTCGGGGTCGGCCAGACCGGCGACTCGACCATGACCTATCGCCTGGGCATGCAGTTCGATTGGGACAAGAGCTGGCTGCAGAGTGACGTGGGTCGGCTGACCGGTTATTGGAGCGGTGCCTACACTTACTGGGAAGGGGACAAGACCTCCAGTAACCATAGCCTGTCGTTCTCGCCGGTGTTTGTGTACGAATTTGCGGGTCAGAACGTGAAGCCCTACATCGAGGCGGGGATCGGCGTCGCGTTTTTTGACAATACCGAGATCGAAACCAACAAGCTCGGTACGTCGTTCCAGTTCGAAGACCGTGTCGGTTTCGGCCTGCGCTTCAATGGCGGACACGAAGTGGGCATTCGTGCCACTCACTATTCCAACGCCGGCATCTCGTCGGACAACGACGGGGTAGAAAGTTACGCGCTGCACTACACGATGCCGCTGTAA	MKRLFCFAALAAALLGHTYTAQAAGVEFGVGQTGDSTMTYRLGMQFDWDKSWLQSDVGRLTGYWSGAYTYWEGDKTSSNHSLSFSPVFVYEFAGQNVKPYIEAGIGVAFFDNTEIETNKLGTSFQFEDRVGFGLRFNGGHEVGIRATHYSNAGISSDNDGVESYALHYTMPL	PGPT0022415_607	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LIPID_A_METABOLISM,PGPT0022415-pagL-K12976	NA	NA
D1-36_04233	792	yrpC	COG0796	Glutamate racemase 2	ATGAGTGAGGCACCGGTCGGGGTGTTCGATTCAGGGGTCGGCGGGCTGTCGGTGCTGGGGGAAATTCGCCGATTGCTGCCCCGTGAGTCGCTGCTGTACGTAGCCGATTGCGGGCATATTCCCTACGGAGAAAAAAGCCCGGAATTCATCCGTCGGCGGTGCGCGATCATTGCCGATTTTTTTCAACGCCAGGGAGCCAAGGCGCTGGTGGTGGCCTGCAATACGGCAACCGTCGCCGGAGTGGCTGACCTGCGTCGTGATTATCCGGACTGGCCCATTGTCGGCATGGAACCGGCGGTCAAGCCGGCCGCTGCGGCGACTCGAAGCGGCATCGTCGGTGTGCTCGCCACCACAGGCACGTTGCAGAGCGCCAAATTTGCCGCATTGCTCGACCGCTTCGCCACGGACGTGCGAGTGGTCACGCAGCCCTGTCCCGGATTGGTCGAACTGATCGAGGCTGGCGACTTGCACAGCCCGGCCTTGCGCCAGTTGCTGCAGGGCTACGTTGCCCCGTTGCTGGCGGCTGGTTGCGACACGGTGATCCTGGGTTGCACGCACTATCCATTCCTCAAGTCACTGCTCAAAGAGATGGTTCCGGAGGATGTCAGCCTGATCGACACTGGCGCTGCCGTGGCTCGCCAACTCCAGCGCTTACTGAGCGAGCGGGCAATAGCTGCCGAGGGGCCTGCTGGCGAAACGCAATTCTGGAGCAGTGCCGATCCGTCACATTTAAGAAAAATCCTACCGATGCTATGGAATTCTTCCGGCATTGTGCGAAGCTTCGTCCTGTAA	MSEAPVGVFDSGVGGLSVLGEIRRLLPRESLLYVADCGHIPYGEKSPEFIRRRCAIIADFFQRQGAKALVVACNTATVAGVADLRRDYPDWPIVGMEPAVKPAAAATRSGIVGVLATTGTLQSAKFAALLDRFATDVRVVTQPCPGLVELIEAGDLHSPALRQLLQGYVAPLLAAGCDTVILGCTHYPFLKSLLKEMVPEDVSLIDTGAAVARQLQRLLSERAIAAEGPAGETQFWSSADPSHLRKILPMLWNSSGIVRSFVL	PGPT0020200_3595	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_RELATED_RACEMASES,PGPT0020200-murI-K01776	NA	NA
D1-36_04234	756	moeB	COG0476	Molybdopterin-synthase adenylyltransferase	GTGCTGAACGATCAAGAGCTGCTGCGCTACAGTCGACAGATCTTGTTGCAACACCTCGACATCGATGGGCAACTGCGCCTCAAGCAGAGCCGCGCATTGATTGTCGGTCTCGGTGGCCTGGGCGCGCCAGTGGCGTTGTACCTGGCCGCAGCCGGTGTCGGCGAGTTGCACCTGGCCGACTTCGACACGGTCGACCTGACCAACCTGCAGCGACAGATCATCCACGACACTGATAGCGTCGGGTTGACCAAGGTCGATTCGGCGATGCGCCGCCTCACCGCCATCAACCCTGAAGTCCGACTGGTCCCCCATCCAGCGGCCATGGACGACGACAGCCTGGCTGACGCGGTGGCGGCGGTCGACGTCGTGCTGGACTGCTCCGACAACTTTTCCACCCGCGAAGCGGTGAACGCAGCCTGCGTCGCCGCGGGCAAGCCCTTGATCAGCGGCGCGGCCATCCGCCTGGAGGGCCAACTGTCGGTATTCGACCCGCGCCGCCCCGAAAGCCCTTGTTACCACTGCCTCTACGGGCACGGCAGCGAAGCCGAGCTGACCTGCAGCGAGGCCGGCGTTCTTGGGCCGCTCGTGGGGTTGGTGGGCAGTCTCCAGGCGCTTGAGGCCCTGAAACTGTTGGCCGGCTTTGGTGAGCCGCTAATGGGGCGCCTGCTGTTGATCGATGCGCTGGGCACGCGATTTCGCGAATTGCGGGTCAAGCGTGATCCGGAATGCGGCGTTTGCGGTACCCGACATGAGTGA	MLNDQELLRYSRQILLQHLDIDGQLRLKQSRALIVGLGGLGAPVALYLAAAGVGELHLADFDTVDLTNLQRQIIHDTDSVGLTKVDSAMRRLTAINPEVRLVPHPAAMDDDSLADAVAAVDVVLDCSDNFSTREAVNAACVAAGKPLISGAAIRLEGQLSVFDPRRPESPCYHCLYGHGSEAELTCSEAGVLGPLVGLVGSLQALEALKLLAGFGEPLMGRLLLIDALGTRFRELRVKRDPECGVCGTRHE	PGPT0008935_729	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B1|THIAMIN_METABOLISM	ISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008935-thiF-K03148	NA	NA
D1-36_04235	831	prmC_2	COG2890	Release factor glutamine methyltransferase	ATGACCATCATCGCCAGTTTGCTTCGCGCCGCCGAATTGCCGGATTCCCCCACGTCACGCTTGGATGCGGAGTTGTTGCTGGCCGCTGCCCTGGGCAAGTCCCGCAGCTTCCTGCACACCTGGCCCGAGCGGATCGTGCCGAGCGAGGCCGCGCTGGTGTTTTCCGAATATCTACGCCGTCGTCGCTCCGGCGAGCCGGTGGCCTATATCCTCGGGCAGCAGGGTTTCTGGAAATTGGACCTGGAGGTCGCGCCCCACACATTGATCCCGCGTCCCGACACCGAGTTGCTGGTTGAGGCTGCGTTGGAGCTGCTGACAGCCACGCCGGCCCGGGTCCTCGACCTGGGCACCGGCAGCGGCGCGATTGCCTTGGCATTGGCCAGCGAGCGTCCGGCCTGGAGCGTGACGGCGGTCGATCGTGTGCTGGAGGCTGTGGCGTTGGCCGAACGCAATCGCCAGCGCCTGGGCCTGCGTAACGTCGCAATCCTGAGCAGCCACTGGTTCAGTGCGCTGGAAGGCGAACGTTTCGGGCTGATCATCAGTAACCCGCCCTATATAGCCGCCAGCGATCCGCATCTGGCCGAGGGCGACGTGCGTTTCGAGCCGGCCAGTGCGCTGGTGGCGGGGCCGGACGGGCTCGACGATTTGCGCGCGATTGTCCAGCAGGCCCCCGATCACCTCGAGGCAGGCGGCTGGCTGATGCTCGAGCATGGTTATGACCAGGCCGACGCGGTGCGGGGGCTGCTGCAAGAACAAGGTTTTGCCCAGGTCCATAGCCGCAAGGACCTCGGTGATCACGAACGCATCAGTCTGGGACGCCTGCCGTGCTGA	MTIIASLLRAAELPDSPTSRLDAELLLAAALGKSRSFLHTWPERIVPSEAALVFSEYLRRRRSGEPVAYILGQQGFWKLDLEVAPHTLIPRPDTELLVEAALELLTATPARVLDLGTGSGAIALALASERPAWSVTAVDRVLEAVALAERNRQRLGLRNVAILSSHWFSALEGERFGLIISNPPYIAASDPHLAEGDVRFEPASALVAGPDGLDDLRAIVQQAPDHLEAGGWLMLEHGYDQADAVRGLLQEQGFAQVHSRKDLGDHERISLGRLPC				NA	NA	NA	NA	NA
D1-36_04236	1083	prfA	COG0216	Peptide chain release factor RF1	ATGAAAGCGTCACTGCTCAATAAGCTGGACATTCTCCAGGACCGTTTCGAGGAACTGACCGCCTTGCTGGGCGACGGCGAAGTCATTTCCGACCAGAACAAATTCCGCACCTATTCCAAGGAGTACGCGGAAGTCGAGCCGATTGTCGCCACCTATAAGCAACTGCTCAAAGTGCAGGGCGACCTTGAGGGCGCCCAGGCGCTGCTCAAGGACAGCGACCCGGACATGCGCGAAATGGCCGTGGAGGAAGTGCGCGAAGCCAAGGAGCAATTGGTCGAGCTGGAAAGCAATCTACAACGCATGTTGCTGCCAAAGGACCCGAATGACGGACGAAACGTCTTTCTCGAAATCCGCGCCGGCACGGGCGGCGACGAAGCCGCGATCTTTTCCGGCGACCTGTTTCGCATGTATTCGCGTTATGCCGAGCGTCGCGGCTGGCGGGTGGAGATCCTGTCCGAGAACGAAGGCGAACACGGTGGCTATAAAGAAGTCATCGCCCGGGTCGAGGGCGACAACGTCTACGGGAAGTTGAAGTTCGAATCCGGCGCCCACCGCGTACAACGGGTGCCGGCCACCGAATCCCAGGGCCGCATCCATACATCGGCCTGCACCGTCGCGGTGTTGCCCGAGCCGGACGAGCAGGAAGCCATCGAGATCAACCCGGCGGACCTGCGGATCGACACCTACCGTTCCTCGGGGGCTGGTGGCCAGCACGTCAACAAGACCGATTCGGCGATCCGCATCACTCACTTGCCCTCGGGCATTGTCGTCGAGTGCCAGGAAGAACGCTCTCAGCACAAGAACCGGGCACGGGCAATGGCCTGGCTTTCGGCCAAGCTCAACGACCAGCAGACCAGCGCCGCCGCCAACGCCATCGCCAGCGAGCGCAAACTGCTGGTGGGGTCGGGCGACCGTTCCGAGCGCATCCGTACCTACAACTTTGCCCAGGGCCGGGTCACCGATCACCGGGTCAACCTGACCTTGTACTCCCTCGACGAGATCCTGGCCGGTGGTGTGGACGCCGTCATCGAACCTTTGCTCGCCGAATACCAGGCCGACCAACTGGCCGCGATTGGCGAGTAA	MKASLLNKLDILQDRFEELTALLGDGEVISDQNKFRTYSKEYAEVEPIVATYKQLLKVQGDLEGAQALLKDSDPDMREMAVEEVREAKEQLVELESNLQRMLLPKDPNDGRNVFLEIRAGTGGDEAAIFSGDLFRMYSRYAERRGWRVEILSENEGEHGGYKEVIARVEGDNVYGKLKFESGAHRVQRVPATESQGRIHTSACTVAVLPEPDEQEAIEINPADLRIDTYRSSGAGGQHVNKTDSAIRITHLPSGIVVECQEERSQHKNRARAMAWLSAKLNDQQTSAAANAIASERKLLVGSGDRSERIRTYNFAQGRVTDHRVNLTLYSLDEILAGGVDAVIEPLLAEYQADQLAAIGE				NA	NA	NA	NA	NA
D1-36_04237	1230	hemA	COG0373	Glutamyl-tRNA reductase	GTGGCCTTTACGCCTGAGCAGCTGGTTGAGGCCCTGCAGCAGCTCTGCCGACTCACCGACAGCCGCGAAGCTGCGATCCTCTCCACCTGTAATCGCAGTGAGCTTTATATAGAACAGGATCACGTCTCGGCCGATTCGGTGCTGCGCTGGCTGGCCGAATACCATGACCTGAGTCTGGAAGAGCTGCGCGCCAGTGCCTATGTACATGAGGACGATGCGGCCGTTCGTCACATGATGCGTGTCGCTTCGGGGCTCGATTCGCTGGTGCTCGGCGAACCGCAGATTCTCGGCCAGATGAAATCGGCCTATGCCGTGGCGCGCGAGGCCGGCACCGTCGGGCCGCTGCTTGGGCGTCTGTTCCAGGCCACTTTCAACGCCGCCAAGCAAGTGCGCACCGACACCGCCATTGGCGAAAACCCTGTGTCCGTGGCGTTTGCCGCTGTCAGCCTGGCGAAGCAGATATTCAGCGATTTGCAACGCAGCCAGGCGCTGCTGATCGGTGCTGGCGAGACCATCACCCTGGTCGCCCGCCATCTGCATGACCTGGGGGTGAAGCGCATCGTGGTCGCCAACCGCACCCTTGAGCGCGCCAGTACCCTGGCCGAGCAATTCGGTGCGCATGCGGTGCTGCTGTCGGATATTCCCGCCGAACTGGTGCACAGCGACATTGTCATCAGTTCCACCGCCAGCCAGTTGCCGATCCTGGGCAAGGGCGCGGTGGAAAGCGCCTTGAAACTGCGCAAGCACAAGCCGATCTTCATGGTCGACATTGCCGTGCCCCGCGACATCGAGCCCGAAGTCGGCGAACTGGATGACGTATACCTCTACAGTGTCGATGACCTGCACGAAGTCGTAGCCGAGAACCTGAAGAGCCGGCAAGGCGCGGCGCAGGCCGCCGAGGAAATGATCACCGTTGGCGCCGAGGATTTCATGGTGCGCCTGCGCGAACTGGCGGCGGTGGACGTGCTCAAGGCGTATCGTCAGCAAAGCGAGCGCCTGCGCGACGAAGAATTGCAAAAGGCCCAGCGCCTGCTGGCCAACGGCGGTAGCGCCGAAGAGGTGTTGGTGCAACTGGCGCGCGGCCTGACCAACAAATTGCTCCATGCCCCAAGCGTCCAGCTCAAGAAGCTGACGGCCGAGGGCCGCCTCGATGCGCTGGCCATGGCCCAGGAACTTTTCGCCCTCGGTGAGGCTTCACCGGATAGCTTTTCGGATAAAAAATCGCAATGA	MAFTPEQLVEALQQLCRLTDSREAAILSTCNRSELYIEQDHVSADSVLRWLAEYHDLSLEELRASAYVHEDDAAVRHMMRVASGLDSLVLGEPQILGQMKSAYAVAREAGTVGPLLGRLFQATFNAAKQVRTDTAIGENPVSVAFAAVSLAKQIFSDLQRSQALLIGAGETITLVARHLHDLGVKRIVVANRTLERASTLAEQFGAHAVLLSDIPAELVHSDIVISSTASQLPILGKGAVESALKLRKHKPIFMVDIAVPRDIEPEVGELDDVYLYSVDDLHEVVAENLKSRQGAAQAAEEMITVGAEDFMVRLRELAAVDVLKAYRQQSERLRDEELQKAQRLLANGGSAEEVLVQLARGLTNKLLHAPSVQLKKLTAEGRLDALAMAQELFALGEASPDSFSDKKSQ	PGPT0003650_2055	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003650-hemA-K02492	NA	NA
D1-36_04238	1668	bepA_3		Beta-barrel assembly-enhancing protease	ATGGCCCCCGTTTCGACGGACGGTACGCCACCGGTCGAAGGCAGCACTCCGGCTCTTGAAAAGCCCAAGGTGTACGGCTCGTTCAGCGAAGAAACTGTCTTCAGCCTGCTGAGTGCCGAGCTGGCAGGCCAGCGCAATCGTTTCGACATTGCCCTGGATAACTACGTCACCCAGGCCATCAACACTCAGGATCCGGGCATTTCCGAGCGGGCGTTCCGCATTGCCGAATACCTGGGGGCCGACCAGGCCGCGCTGGATACGGCGCTGATCTGGGCCAAAAATGCCCCGGACGACCTCGAAGCGCAACGCGCCGCCGCCGTGCAACTGGCGCGCGCCGGGCGTTACGACGATTCCATGGTGTACATGGAAAAAGTCTTGCTGGGCAAGGGCGATACCCATTTCGATTTCCTTGCGCTGTCCGCCGCCGATACCGACCAAGAGACCCGCGACGGCTTGAAGAAGAGTTTCGATCGCCTGCTGGAACGTCACCCGAACAACGGCCAGTTGATTTTCGGCAAGGCCTTGCTGCTGCAGCAGGACGGCGACTCCCAAGGCGCCCTCACCTTGTTGGAAGACAACCCGCCGGAAGCGGGCGAAGTGGCGCCTATCCTGTTGCGTGCACGCTTGCTGCAAGGCATGAATCGCGGCGACGAAGCGCTGCCGCTGATGGAAAAAAGCATCAAGAAGTACCCGGACGACAAACGCCTTCGCCTCACCTACGCCCGCATGCTGGTGGAAAACAACCGCATGGACGACGCCAAGGTCGAGTTTTCCAGCCTGGTGCAGCAATACCCCGAAGACGACGATTTGCGTTATTCCCTGGCGCTGGTCTGCCTGGAGGCCAAGGCGTGGGAAGAAGCCAAGGGTTACCTGGAAGACCTGATAGCCCGGGAAAGCCACGTCGACTCGGCCCACCTGAACCTGGGCCGCATCGCCGAGGAGCGCAACGATCCCGAGAGCGCGCTGATCGAGTACGCCCAGGTCGGCCCGGGCAATGACTACCTCCCAGCGCAGCTGCGCCAGGCTGACATCCTGATCGGCAACGGCCGGACGGCCGAGGCCCAAAGTCGCCTGGCCGTTCAGCGCGACACCCAGCCGGACTATGGCATCCAGCTCTACCTGATCGAGGCCGAAACCCTGTCGGCCAACAAGCAGGGCGATAAAGCCTGGACTGTCCTGCAACAAGCGTTGAAGCTATACCCGGACGATCTGAACCTGCTGTACACCCGCGCCATGCTCGCGGAAAAACGCAACGATCTGGCCCAGATGGAAAAAGACCTGCGGCTGATCATCCAGCGCGACCCCGACAACGCGATGGCCCTCAACGCCCTCGGCTACACGCTATCGGATCGGACCACCCGCTACGATGAGGCCAAGGTGCTGATCGAGCAGGCCCACCGGATCAATCCGGAAGACCCGGCCGTACTCGACAGCCTCGGCTGGGTGAATTTCCGCCTGGGCAACCTCGACGAAGCCGAACGCCTGTTGCGCCAGGCCCTGGAGCGCTTCCCCGACCAGGAAGTCGCCGCGCACCTGGGTGAAGTACTGTGGGCCAACGGCAAACAACGCGAAGCCAGGCAGATCTGGGACAAGTTCCTCAAGGAACAACCGGACAGCCCGATTCTGCGCGGCACCATCAAACGCCTGACCGGATCAGAGACCCTTTAA	MAPVSTDGTPPVEGSTPALEKPKVYGSFSEETVFSLLSAELAGQRNRFDIALDNYVTQAINTQDPGISERAFRIAEYLGADQAALDTALIWAKNAPDDLEAQRAAAVQLARAGRYDDSMVYMEKVLLGKGDTHFDFLALSAADTDQETRDGLKKSFDRLLERHPNNGQLIFGKALLLQQDGDSQGALTLLEDNPPEAGEVAPILLRARLLQGMNRGDEALPLMEKSIKKYPDDKRLRLTYARMLVENNRMDDAKVEFSSLVQQYPEDDDLRYSLALVCLEAKAWEEAKGYLEDLIARESHVDSAHLNLGRIAEERNDPESALIEYAQVGPGNDYLPAQLRQADILIGNGRTAEAQSRLAVQRDTQPDYGIQLYLIEAETLSANKQGDKAWTVLQQALKLYPDDLNLLYTRAMLAEKRNDLAQMEKDLRLIIQRDPDNAMALNALGYTLSDRTTRYDEAKVLIEQAHRINPEDPAVLDSLGWVNFRLGNLDEAERLLRQALERFPDQEVAAHLGEVLWANGKQREARQIWDKFLKEQPDSPILRGTIKRLTGSETL				NA	NA	NA	NA	NA
D1-36_04239	618	lolB	COG3017	Outer-membrane lipoprotein LolB	ATGTTTGTGCGCCACTTCATTATTTTCAGTTTCATCGCCCTGCTCGCCGGTTGCGCGGGCTTCGGCGCCCGAGAATCCGTCCAGGGCCATGGCGACCCGGCCCAGTGGCGCGAGCATAAAGAACAGCTCAGCGGCCTCGACGGCTGGCAGATCGACGGCAAGATCGGCATTCGTGCGCCCAAGGACTCTGGCAGCGGTACCTTGTTCTGGTTGCAGCGCCAGGATTACTACGACATTCGACTTTCGGGCCCCCTGGGGCGCGGTGCGGCGCGGCTGACCGGCCGGCCGGGGCAGGTTTCGCTGGAAGTCGCCAACCAGGGACGCTACGAGGCTCCGAGCCCCGAAGCACTGCTGGAAGAACAGCTGGGCTGGAAACTGCCGGTTTCCCACCTCACCTGGTGGGTTCGCGGCCTCCCGGCACCGGACAGCAAGAGCCGTCTGACCCTGGACGCCGACAGCCGCCTGTCGAACCTGGAGCAGGATGACTGGCAGATCGAATACCTGAGCTATGCCGAGCAGAACGGCTACTGGTTGCCGGAGCGCATCAAGCTGCACGGCAGCAACCTGGACGTCACGCTGGTCATCAAGCAATGGCAGCCGCGCAAGCTGGGGCAATGA	MFVRHFIIFSFIALLAGCAGFGARESVQGHGDPAQWREHKEQLSGLDGWQIDGKIGIRAPKDSGSGTLFWLQRQDYYDIRLSGPLGRGAARLTGRPGQVSLEVANQGRYEAPSPEALLEEQLGWKLPVSHLTWWVRGLPAPDSKSRLTLDADSRLSNLEQDDWQIEYLSYAEQNGYWLPERIKLHGSNLDVTLVIKQWQPRKLGQ	PGPT0024480_802	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024480-lolB-K02494	NA	NA
D1-36_04240	852	ispE	COG1947	4-diphosphocytidyl-2-C-methyl-D-erythritol kinase	ATGACCGCTGCACGCCTGACGCTGCCCTCCCCGGCCAAGCTCAACCTGATGCTGCACATCCTCGGTCGTCGCCCGGATGGCTATCACGAGCTGCAAACGATTTTCCAGTTCCTGGATTATGGCGACGAGATCACTTTTGCCGTGCGCGATGACGGCGTGATCCGTTTGCACACCGAATTCAACGGTGTTCCCCACGACAGCAACCTGATCGTCAAGGCGGCGAAGAAGCTTCAGGAGCAATCCGGCTGTTCGCTGGGCATCGACATCTGGATCGAAAAAATCCTGCCCATGGGTGGAGGGATCGGTGGCGGCAGTTCGAATGCGGCCACGACGCTGCTAGGCCTCAATCATCTCTGGCAGTTGGGCTGGGACCTGGATCGCCTCGCGGCGCTGGGCCTTTCGCTGGGTGCCGACGTACCGGTTTTCGTGCGTGGCCACGCGGCTTTCGCCGAGGGCGTCGGGGAAAAACTCACACCGGTAGAGCCCGAGGAACCTTGGTACTTGGTGCTGGTGCCGCAAGTCTCTGTAAGTACAGCAGAAATTTTTTCAGATCCACTGTTGACACGTAACTCTCCTCCCATTAAAGTGCGCCCCGTTCCCAAGGGAAACAGTCGAAATGACTGCTTACCGGTGGTAGCAAGGCGTTATCCAGATGTTCGTAACGCATTGAATTTGTTAGGTAAATTTACCGAAGCAAAACTCACCGGAACTGGAAGTTGTGTGTTTGGGGGCTTCCCAAGCAAAGCTGAAGCTGATAAAGTCTCGGCCCTTCTTACAGAGACCCTTACAGGGTTTGTAGCAAAAGGAAGCAACGTTTCGATGTTGCATCGCAAGCTGCAAAGTCTGCTCTAA	MTAARLTLPSPAKLNLMLHILGRRPDGYHELQTIFQFLDYGDEITFAVRDDGVIRLHTEFNGVPHDSNLIVKAAKKLQEQSGCSLGIDIWIEKILPMGGGIGGGSSNAATTLLGLNHLWQLGWDLDRLAALGLSLGADVPVFVRGHAAFAEGVGEKLTPVEPEEPWYLVLVPQVSVSTAEIFSDPLLTRNSPPIKVRPVPKGNSRNDCLPVVARRYPDVRNALNLLGKFTEAKLTGTGSCVFGGFPSKAEADKVSALLTETLTGFVAKGSNVSMLHRKLQSLL	PGPT0007605_3382	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007605-ispE-K00919	NA	NA
D1-36_04242	933	prs	COG0462	Ribose-phosphate pyrophosphokinase	ATGATGGTCTTTACGGGGAACGCTAACCCCGATCTGGCTCGGCGTGTCGTACGTCAGCTGCATATCCCTCTCGGTGACATCTCTGTCGGTAAGTTCTCCGACGGCGAAATCACTGCCGAGATCAATGAAAACGTTCGCGGTAAAGACGTCTTCATTATTCAGCCGACTTGCGCTCCGACCAACGATAACCTGATGGAACTCGTCGTGATGGCTGATGCCTTCCGCCGTTCCTCGGCTACTCGTATTACTGCTGTTATTCCTTACTTTGGTTATGCCCGCCAGGATCGCCGTCCGCGTTCCGCACGCGTGGCCATCAGCGCGAAAGTCGTTGCCGATATGCTGACCGTGGTCGGCATCGATCGTGTACTGACGGTCGATCTGCATGCTGACCAGATCCAGGGCTTCTTCGATATTCCCGTGGACAACATCTACGGCTCCCCCGTCCTGGTGGATGACATCGAGGATCAGCGCTTCGAAAACCTCATGATCGTGTCCCCGGACATTGGCGGCGTCGTGCGTGCACGGGCCGTAGCCAAATCCTTGGGCGTTGATCTGGGTATCATCGACAAACGCCGCGAGAAGGCCAATCACTCCGAAGTGATGCACATCATCGGCGATGTCGAGGGGCGCACCTGTATCCTGGTCGACGACATGGTCGATACCGCCGGCACCCTGTGCCACGCGGCCAAGGCCTTGAAGGAGCATGGCGCTGCCAAGGTCTTCGCCTACTGCACGCACCCTGTGCTGTCGGGTCGGGCGATCGAAAACATTGAAAATTCCGTGCTGGACGAGCTGGTGGTGACAAACACCATTCCGCTGTCCGCTGCAGCACAAGCCTGTGCGCGTATCCGTCAGTTGGATATCGCACCGGTGGTTGCCGAGGCGGTTCGCCGCATCAGCAATGAAGAATCGATCAGTGCGATGTTCCGCTAA	MMVFTGNANPDLARRVVRQLHIPLGDISVGKFSDGEITAEINENVRGKDVFIIQPTCAPTNDNLMELVVMADAFRRSSATRITAVIPYFGYARQDRRPRSARVAISAKVVADMLTVVGIDRVLTVDLHADQIQGFFDIPVDNIYGSPVLVDDIEDQRFENLMIVSPDIGGVVRARAVAKSLGVDLGIIDKRREKANHSEVMHIIGDVEGRTCILVDDMVDTAGTLCHAAKALKEHGAAKVFAYCTHPVLSGRAIENIENSVLDELVVTNTIPLSAAAQACARIRQLDIAPVVAEAVRRISNEESISAMFR	PGPT0021480_5018	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021480-prsA-K00948	NA	NA
D1-36_04243	603	rplY		50S ribosomal protein L25	ATGACCGATTTCATTCTGAACGCCCAAGCGCGTACCGACCTGGGGAAAGGTGCGAGCCGCCGCCTGCGTCGTCTCGCCAGCCAGGTTCCTGCCGTTGTATACGGTGGTGACAAGGCCCCTGAATCCATCACCATGCTGGCCAAAGAAGTGGCCAAGCTGTTCGAAGACGAGGCTGCTTTCAGCCACGTGATCGAACTGAACGTTGATGGCAAGAAGCAAAACGTCATTGTTAAAGCGATGCAGCGTCACCCGGCCAAGCAGTTCATCATGCACGCTGACTTCATCCGCGTCGTGGCTGGCCAGAAACTGACCGCTACCGTTCCAGTGCACTTCATCAACGAAGCTGCTCCGATCAAGAAAGGCGGCGAAATCTCGCACGTGACTTCCGAGCTGGAAGTTTCCTGCCTGCCGAAGGACCTGCCTGAATTCATCGAAGTCGACCTGGCTGACGCCGAGATTGGCACGATCGTTCACCTGTCCGACCTCAAGGCTCCTAAAGGCGTTGAGTTTGTTGCCCTGGCACACGGTGATGACAAGGCTGTTGCCAACGTCCACGCTCCACGTGTTGCTCCAGAAGCGACTGAAGAAGGCGCAGCAGAGTAA	MTDFILNAQARTDLGKGASRRLRRLASQVPAVVYGGDKAPESITMLAKEVAKLFEDEAAFSHVIELNVDGKKQNVIVKAMQRHPAKQFIMHADFIRVVAGQKLTATVPVHFINEAAPIKKGGEISHVTSELEVSCLPKDLPEFIEVDLADAEIGTIVHLSDLKAPKGVEFVALAHGDDKAVANVHAPRVAPEATEEGAAE				NA	NA	NA	NA	NA
D1-36_04244	585	pth	COG0193	Peptidyl-tRNA hydrolase	GTGACTGCCATCAAACTGATCGTTGGCCTGGGTAATCCAGGCGCCGAATACGAACAGACCCGGCATAACGCAGGGGCCCTTTTTGTTGAGCGCATCGCGCACGCCCAAGGCGTCAGCCTGGCCGCCGATCGCAAATATTTTGGCCTGACCGGGCGTTTTTCACACCAGGGTCAGGATGTTCGCCTGTTGATTCCCACCACCTATATGAACCGCAGCGGCCAGGCCGTGGCGGCGTTGGCCGGTTTCTTTCGCATCAAGCCTGAAGAAATCCTGGTGGCCCACGACGAACTCGACCTGCCTCCGGGCGTTGCCAAGCTCAAGCAGGGCGGCGGCCATGGCGGTCACAACGGGTTGCGCGACATCATTGCGCAACTGGGCAATCAAAATACCTTTCACCGCCTGCGGCTCGGCATCGGCCACCCGGGCGTTGCCAGTATGGTTTCAAATTTTGTCCTGGGTCGCGCGCCTCGCGCCGAACAGGAAAAACTCGATGCCAGCATCGACTTTGCCCTCGGCGTGCTGCCGGATATCCTCGCCGGTGAATGGAACCGCGCGATGAAAAACCTGCACAGCCAGAAGGCCTGA	MTAIKLIVGLGNPGAEYEQTRHNAGALFVERIAHAQGVSLAADRKYFGLTGRFSHQGQDVRLLIPTTYMNRSGQAVAALAGFFRIKPEEILVAHDELDLPPGVAKLKQGGGHGGHNGLRDIIAQLGNQNTFHRLRLGIGHPGVASMVSNFVLGRAPRAEQEKLDASIDFALGVLPDILAGEWNRAMKNLHSQKA				NA	NA	NA	NA	NA
D1-36_04245	1101	ychF	COG0012	Ribosome-binding ATPase YchF	ATGGGATTCAATTGCGGCATCGTCGGCCTGCCTAACGTCGGCAAGTCCACCCTGTTCAACGCCCTGACCAAATCCGGTATCGCGGCCGAGAACTTCCCCTTCTGCACCATCGAGCCGAACAGCGGCATCGTGCCGATGCCCGATCCGCGCCTGGACGCACTGGCGGCCATCGTCAATCCCAAGCGCATCCTGCCGACCACCATGGAGTTCGTCGACATCGCAGGCCTGGTGGCCGGTGCTTCGAAGGGTGAAGGCCTGGGCAACAAGTTCCTGGCCAACATCCGCGAAACCGATGCCATCGCCCACGTGGTGCGCTGCTTCGAAGACGAGAACGTGATCCACGTTTCCAACAGCGTCGACCCGAAACGCGACATCGAGATCATCGACCTGGAACTGATCTTCGCCGACCTCGACAGTTGCGAGAAACAACTGCAGAAGGTTGCCCGCAACGCCAAGGGTGGCGACAAGGATGCAGTCGTCCAGAAAGGCCTGTTGGAGCGATTGATCGCTCACTTCACCGAGGGCAAGCCCGCGCGTAGCCTGATGAAGGACATGAGCACCGACGAGAAGCTGGTGATCAAGGGCTTCCACCTGCTGACCACCAAGCCGGTCATGTATATCGCCAACGTCGCCGAAGACGGTTTCGAGAACAACCCGCATCTGGACGTGGTCCGTGCCATCGCCGAGGAAGAAGGTGCCATGGTCGTTCCGGTCTGCAACAAGATCGAAGCGGAAATCGCCGAACTGGACGATGGCGAAGAGAAGGACATGTTCCTCGAGGCCCTGGGCCTGGAAGAGCCTGGCCTGAACCGGGTGATCCGCGCTGGCTACGAAATGCTCAACCTGCAGACCTACTTCACCGCCGGTGTCGAAGAAGTCCGCGCCTGGACCGTTCGCGTGGGCGCCACCGCCCCGCAAGCCGCTGGCGTCATCCATACCGACTTCGAAAAGGGCTTCATCCGCGCCGAAGTCATCGCCTACGCCGACTTCATCCAGTACAAGGGCGAAGCTGGCGCGAAGGAAGCCGGTAAGTGGCGCCTGGAAGGCAAGGAATACATCGTCAAGGACGGCGACGTGATGCACTTCCGCTTCAACGTCTGA	MGFNCGIVGLPNVGKSTLFNALTKSGIAAENFPFCTIEPNSGIVPMPDPRLDALAAIVNPKRILPTTMEFVDIAGLVAGASKGEGLGNKFLANIRETDAIAHVVRCFEDENVIHVSNSVDPKRDIEIIDLELIFADLDSCEKQLQKVARNAKGGDKDAVVQKGLLERLIAHFTEGKPARSLMKDMSTDEKLVIKGFHLLTTKPVMYIANVAEDGFENNPHLDVVRAIAEEEGAMVVPVCNKIEAEIAELDDGEEKDMFLEALGLEEPGLNRVIRAGYEMLNLQTYFTAGVEEVRAWTVRVGATAPQAAGVIHTDFEKGFIRAEVIAYADFIQYKGEAGAKEAGKWRLEGKEYIVKDGDVMHFRFNV				NA	NA	NA	NA	NA
D1-36_04246	2076			hypothetical protein	ATGGCAACCGTCGATAACCCGAACCTGAATTCCCATACCGTAAGAACCGGCCCCGGCACTGTCCAGGTCGACCTCACCGGCCAGCTAGATGATGCCCAGAGCATCATTATCCAGCCGGACGGCAAGATACTGATTGGCGGCTATACCGAGTACCTGGCATGGGGCTACCCCGGGGCGCCAGGTGAGGAAAGCTACGGCTACGAGCAGAACCATTCCGTTATCCGCCTGAATGCGGATGGCAGCCTGGACACCCGCTTTCATGAAGGTGGCGTCGATACGATACCGACCACGACAGCCCCAGCGTCCCGCTATGAGCTGACGGCGGTGCAGGCCGATGGCAAGGTGCTCGTCGCTGTGGCGCTGAACACCGGCATACAAGTGGAGCGCTACAACAGTGACGGGACGCGTGATGTCGGCTTTGGTCAGAACGGTGTCATGACGGTCGACATCAACCATGATTTCAAGGATATCGACCTGACGGCCAATATGGACGGCACCTTTCAGGTCAGTGCCCGCGGGTTTGATCAGGCTACCGTGACCAAGGCTGGCAATGACGGCAGCTTGTTCGACGGCTTTGGTCACAACGGCGTGCTCACCGTCGACATTTACGAAGACCCGTTTTTCAACGGAGGGATCTCCACTGCGGTGTTGGCAGATGGAAGTGTCGTGGTCGGGGCTGCCTACAATGCCGCCGGCATGGGCGATCCGACGTTCGCCTTGCAGCGTTTCAACGCCGACGGCCAGTTGGATACCCGTTTCGGTGACGACGGCGTCCTGCATTTGAGCGCTGCCATGGGGTTTGGGGAAGACTCGGTGGTCACCGTGCAGGCTGACGGAAAGATCATCGTGATGGGGCATGGCGAGGGCGATCGCCTGGCTACCGTGGCGCGGCTCAACGCTGACGGGTCATTCGACAGTAGTTTCGGCAGCAATGGCTCGGTGACCTTCGAGGCCGACACGCCGGCGGCTTTGACGGTGCAAGCCGATGGCAGGATCGTGGCTGCCGGCACGAACAACGGAGATTTCAATGTCATCCGCTTGAACGCCGACGGTAGCCTGGACTCAAGCTTTGGCAGCCAGGACGGCAAGCTCCATATGGAGGGGTACGCCGGCGAGGAAATCTTGCGGGGCACCGATGCCGCCGAAATCATCCACGGCCTGGCGGGCGATGATGTGCTCCACGGCGACGGCGGGCGTGATGTGTTGCAAGGTGGCTCAGGCTCGGACATCTTCCGTTTTACCGAACTGGGCGACAGCTTCCGCACCGCCACGCTGAACAGCAGCGACCGAATCCAGGACTTCGATGTCTCCGAGGACCGCATTGACCTGATCGGCTTGGGCTTCACCGGTATTGGCGATGGCCATGACGGTACCTTGGCCATCCAGGCCAGCGCGGACGGCACCCGCACCTACCTCAAGAGCTTCGACGCCGATGCTACCGGGCAACGTTTTGAACTGACCTTGGATGGCAATCTGGTCGGGCAACTGAACTACACGAATCTTGTGTTCACGGCGCCCACGCTTGAAGGGGAATCTACCAACGATACGATTACCGGTTCTGCCTTGTCGGAAATCATCCATGGCCTGGACGGCAATGACCGTATCAACGGCGGCGCCGGAGCGGATGTCATCATCGGCGGCGCGGGCGCCGACCGTCTCAACGGTGGGGACAGAGCCGACATTTCGTTGTGGACGGACAATCGGGAAAACGCCGACGTGTTCCGCTATCTCTCCATCGAGGACAGCTACCGTACCGACAACCAGAGCTTTGCCGACCTTATCGAAGGCTTTACGGTTGACGACAAAATCGATGTGTCGGCACTGGGCTATACCGGCTTCGGAGAGGGTACGGGCACTACGCTGAAGTTGGTCTACAACGAGGCATTGGACCGCACTTACCTGAAGGATGCGCAAGCGGACGCGCAAGGCCATTCGTTCCAGGTTGCGCTGGCCGGGGACTGGCGGGAAAGCCTCGGGGAAGACAACATGGTCTTTGCTCCCACAGCGGCTCCCGACGCCCAACTAGGCCTGATCGGGGTGGCGCCAGACGTCGATCAATGGCATTTGTTAAGTTGA	MATVDNPNLNSHTVRTGPGTVQVDLTGQLDDAQSIIIQPDGKILIGGYTEYLAWGYPGAPGEESYGYEQNHSVIRLNADGSLDTRFHEGGVDTIPTTTAPASRYELTAVQADGKVLVAVALNTGIQVERYNSDGTRDVGFGQNGVMTVDINHDFKDIDLTANMDGTFQVSARGFDQATVTKAGNDGSLFDGFGHNGVLTVDIYEDPFFNGGISTAVLADGSVVVGAAYNAAGMGDPTFALQRFNADGQLDTRFGDDGVLHLSAAMGFGEDSVVTVQADGKIIVMGHGEGDRLATVARLNADGSFDSSFGSNGSVTFEADTPAALTVQADGRIVAAGTNNGDFNVIRLNADGSLDSSFGSQDGKLHMEGYAGEEILRGTDAAEIIHGLAGDDVLHGDGGRDVLQGGSGSDIFRFTELGDSFRTATLNSSDRIQDFDVSEDRIDLIGLGFTGIGDGHDGTLAIQASADGTRTYLKSFDADATGQRFELTLDGNLVGQLNYTNLVFTAPTLEGESTNDTITGSALSEIIHGLDGNDRINGGAGADVIIGGAGADRLNGGDRADISLWTDNRENADVFRYLSIEDSYRTDNQSFADLIEGFTVDDKIDVSALGYTGFGEGTGTTLKLVYNEALDRTYLKDAQADAQGHSFQVALAGDWRESLGEDNMVFAPTAAPDAQLGLIGVAPDVDQWHLLS	PGPT0027825_330	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0027825-prtC-K01406	NA	NA
D1-36_04247	156			hypothetical protein	ATGAACTTGCCGCTCTTTGGTGTTTCCGACGCAAAGAGCCTGTTCCAGTCAATTGGCTCCAACAAGAAGCCACCGGTCATGGTTATGACCGAGGCAGCGTGCAAAGCGTTGTCGCTCTACCAGGTGACGAAACTGGCATTTCTTTTAAGGGACTAA	MNLPLFGVSDAKSLFQSIGSNKKPPVMVMTEAACKALSLYQVTKLAFLLRD				NA	NA	NA	NA	NA
D1-36_04248	1218	fsr		Fosmidomycin resistance protein	ATGGCTATCAGCAATACCCCGGCTGACGCGACGCCCATTGGCGCCACGCCCCAAAGCAGTCCTTTGGTCATGCGCATCATTGGTGCGGTGGCGTTGGCTCATCTGATCAACGATCTGATCCAGGCTGTGCTGCCGTCCATCTATCCGATGCTCAAGGACAGCTATGGCCTGACGTTTACCCAGGTCGGCTTGATCACCCTTACGTTCCAGTTGACCGCATCTTTGTTGCAGCCTTGGGTCGGCTATCACACCGATCGGCACCCGAAGCCCTGGCTGTTGCCGGCCGGAACGGTGTGCACGCTGATCGGCATCGTGATGATGTCCATGGTCGGCAGCTTTGCCATGATCCTGCTGGCGGCGGCCTTGATCGGTATCGGCTCGTCGACTTTTCACCCCGAGGCATCGCGAGTGGCGCGACTGGCTTCCGGCGGTCGTTACGGCCTGGCGCAATCGACTTTCCAGGTGGGCGGAAACGCCGGCTCCGCATTCGGCCCGCTGCTGGCCGCAGCGATCATCATTCCCTACGGTCAAGGCAATGTGGCCTGGTTCGGCTTGTTCGCGCTGTTTGCCTTGTTCGTGCTGTACCGCATCAGCCGTTGGTACGCCAATCACCTGAACCTGTTCAAGCTCAAGCAAGGCCAGGCGGCGACGCATGGCTTATCCAAGGGGCGGGTCCTGAGTGCGTTGGTGGTGCTTGGCCTGTTGGTGTTCTCGAAGTATTTCTACATGGCCAGTTTCACCAGCTATTTCACCTTCTACCTGATCGAAAAGTTCGACCTGTCGGTGGCATCTTCCCAACTGCACCTGTTCCTGTTCCTTGGCGCAGTGGCGGCGGGGACCTTCTTTGGCGGCCCGATCGGCGACAAGATCGGACGCAAGGCGGTGATCTGGTTCTCGATTCTGGGTGTGGCGCCATTTACGCTGATCTTGCCTCACGTGGACCTGCTGTGGACCAGCATCCTCAGCGTAGTGATCGGCTTCATCTTGGCTTCGGCTTTCTCCGCCATCGTGGTGTATGCCCAGGAGCTGGTGCCGGGCAACGTTGGGATGATCGCCGGCGTGTTCTTCGGGTTGATGTTCGGCTTCGGTGGGATCGGCGCCGCGCTGCTGGGGCATCTGGCGGACATCCGGGGTATCGAATACGTGTATTGGCTGTGCTCGTTCCTGCCGTTGTTCGGCGTGTTGGCGATTTTCCTGCCAAGGACCAAAAGGGCCTGA	MAISNTPADATPIGATPQSSPLVMRIIGAVALAHLINDLIQAVLPSIYPMLKDSYGLTFTQVGLITLTFQLTASLLQPWVGYHTDRHPKPWLLPAGTVCTLIGIVMMSMVGSFAMILLAAALIGIGSSTFHPEASRVARLASGGRYGLAQSTFQVGGNAGSAFGPLLAAAIIIPYGQGNVAWFGLFALFALFVLYRISRWYANHLNLFKLKQGQAATHGLSKGRVLSALVVLGLLVFSKYFYMASFTSYFTFYLIEKFDLSVASSQLHLFLFLGAVAAGTFFGGPIGDKIGRKAVIWFSILGVAPFTLILPHVDLLWTSILSVVIGFILASAFSAIVVYAQELVPGNVGMIAGVFFGLMFGFGGIGAALLGHLADIRGIEYVYWLCSFLPLFGVLAIFLPRTKRA				NA	NA	NA	NA	NA
D1-36_04249	2058			hypothetical protein	ATGCAGGCTTTTCTATCACCGGGCATCCGGTTGCTGGGGCATTTTGGTTTCGCCCGTAAATTCCAGTTGTTGTTCCTTTTGTTCATCCTGCCGCTCATGGGCAGCCTGTGGCTCATCGGCCAGGACTACCGGGACAAACTCAACCTGATTTCCGGAGAGCGCGCCGGCGTACGCCAGTTGCTCGCCCTGGATAACCTGGACAACCTGCTCGCCGCCCAGCGTAATCGCGCGGCGCGCTGGCGGGCCACGGAGACCAATCGACAACCCACCCCTGCGACGATCGCCGCCATGGCCGCGTTCGATGCGGTGCAACCGGAGCTCAACCAGGTCGCCAACGATCTTGGCGCGACCTTGCAGGCCGAGGGCGTCGAAGCCGACACCCTCGCCCGCTACCAGGCCTTGCAGACCAGCCTCAACGGCCTGGATTCCAAGAGCCTGGGCGCCGTGGGTTGGTGGCCGGATGGCTATGATCGTTTCACCGCTGCCCTCAGCGCATTGCAAGCGTTGCGCGAACAGATGGTCATGGACAATCGCCTGACGCTCGCCTCCTGGCTGGAAACCTACCTGCTCACCCAGATTTCGACCCAGCAGACACCCGAGCTGATCGAACGTGTCGGCCGCCTGGCCAGCGTTGGCCAGGCCTCGGTGGTGTCAGGCCAATTCACTTTGCAGAGCCGCCTGCAACTGCGTGACTTGCGCAGCCGCATCGGCGACGCCCGGGATCAGTTGGTCAAGACCGGTGCGTTGCTGGAAACACGCTTGCCCAGCGAATTGCAATCCTGGGCCGGACAGTTCCAGGGCAGCCTCAAGCACTTGGACGCCGGCTTGAAAGTCTTGGATGACGGCGTGTTCGGTGGCTCCATCAATCTCAAGCCGGAAGCGTTCGAGAAACACATGGACGCCCTTCTTCGGGACCTGGCGACCCTGCGACAACAATCGCTGGTCGCACTGGACACGCGGCTGGACCATTACCACGGCTCGGCGATCCGCCAGTTCACATTGGTGGCCACGGTGCTTGGCTGCCTATTGCTGGCGGCGCTGTACCTGTTCGTCTGCTTGCAAGCCTCTATCCGCCGCAGCGCCAGTGGCATAACCCTACTGGCCGAAGCCCTGCGTGACGGAAACCTGAGCCTCCAGGTACCCGTGCAAGGACGCGACGAGCTGGCAGCTATCAGCACCGCGCTCAACGTCGCGGTGGTGCAGTTGCGCACCAGCCTGCTGGGCGTGGATCACGAAACGCTGCAACTGAGCGACGCCGTGCGCACCCTCAATACACACTCCAGCGGTGCCTTGGGCGAAGTCGAGGCTCAGCAGATGCAAATCAGCCAGATCGCCGCCGCCGCGACGCAGCTGGCCGCAACTTCCCAAGGCGTTGCGAAAAGTTGCGAACAGGCGTCAGACAGCGCCCAACAGACCCGCCGCATCGCCGCCGACAGCAGCCGCGACAGCCAGCGCACCACGGCGAGCATTCAGCAGCTCAACCAGCGGCTCAACGAAACCGCCGCCGCCTTGGGCCGGGTCAGCGAGCAGGGCCAACAGATCCAACTGGTGGTCGATACCATTCGCGGCGTGGCCGAGCAGACCAATCTCCTGGCGCTCAACGCCGCCATCGAAGCCGCCCGCGCCGGTGAACAAGGCCGGGGCTTTGCCGTGGTGGCCGATGAAGTGCGCAGCCTGTCGCAACGTACCCAGTCCTCCACCCAACAGATCGCCGGCACCGTCGACAGCCTGCGCGCCACGGTCAACGAAGCCGTCAGCCTGATGGAAGCGGCCTGCGGCCAGGCCCAGACCGATGCGCAAGCCGTGACCGGCCTTGGCGAGCGTCTGGGGGAAATTGCCAGCGCCGTACAGAGCGTCACCGATACCCTGGCGCAAATCGCCACCGCGGTGGATGAGCAGGCCAGCACAGCCGACGAGGTCAGCGGCAATATCCAGCAGGTCGATCAAGCGGCCATGCGCCTGCTGGAAGGCGCCCGCGCGGTGAACGTGGCGGCGGACACCTTGAGCCAAGGCAGCCAGGCCTTGAGCGCGAACACAGGGAGATTTCAGCTCAGTTGA	MQAFLSPGIRLLGHFGFARKFQLLFLLFILPLMGSLWLIGQDYRDKLNLISGERAGVRQLLALDNLDNLLAAQRNRAARWRATETNRQPTPATIAAMAAFDAVQPELNQVANDLGATLQAEGVEADTLARYQALQTSLNGLDSKSLGAVGWWPDGYDRFTAALSALQALREQMVMDNRLTLASWLETYLLTQISTQQTPELIERVGRLASVGQASVVSGQFTLQSRLQLRDLRSRIGDARDQLVKTGALLETRLPSELQSWAGQFQGSLKHLDAGLKVLDDGVFGGSINLKPEAFEKHMDALLRDLATLRQQSLVALDTRLDHYHGSAIRQFTLVATVLGCLLLAALYLFVCLQASIRRSASGITLLAEALRDGNLSLQVPVQGRDELAAISTALNVAVVQLRTSLLGVDHETLQLSDAVRTLNTHSSGALGEVEAQQMQISQIAAAATQLAATSQGVAKSCEQASDSAQQTRRIAADSSRDSQRTTASIQQLNQRLNETAAALGRVSEQGQQIQLVVDTIRGVAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRSLSQRTQSSTQQIAGTVDSLRATVNEAVSLMEAACGQAQTDAQAVTGLGERLGEIASAVQSVTDTLAQIATAVDEQASTADEVSGNIQQVDQAAMRLLEGARAVNVAADTLSQGSQALSANTGRFQLS				NA	NA	NA	NA	NA
D1-36_04251	1326	puuP	COG0531	Putrescine importer PuuP	ATGGCTCATTTGCAACGCACCCTGTCATTGGGGTCGGTGGTGCTGTTCGGCATCGCCTATATGACACCGATCATTGTCCTTGGCACTTTCGGTATTCTCGCTCAATCCACCTCCGGCATGGTCCCCGCCGCTTACCTGGCAGCACTGGTGGCGATGTTCTTCACCGCGATGAGCTACGGCCGAATGGCCGCGGCGTTCCCTGTCGCCGGTTCGGCCTACAGCTATGTCCGCAAGGCGATCAGCCCGAAACTCGGTTTCATCGCCGGTTGGGCGGTATTGCTCGATTACCTTTTCTTGCCCATGGCCATCTGGCTGATCGGCGCGGCCTACCTTCATTCCGCATTCCCGACCGTGCCGCAGTGGCTCTGGGTGCTGGTCTTCATTGGCATCACAAGTGCGATCAACATCGTCGGTCTGAAACTGGCCAACGGCATCAACGCGCTATTGATGCTGGTGCAATTCCTGGTGCTGATCGCCTTCGTTGCGTTGTGCGTTCATTATGTCGGCGGGGATGCGAGCACACCGTTATGGTCGGTCGAGCCCTTTTTTAACGGTGACATGCAGATGCCATTGATCATGAGCGGCGCAGCCATCGCCTGTTATTCATTCCTGGGGTTCGACGCGGTCAGTACCCTGACCGAAGAAACCCGCGATCCGCGCCGTACCATTCCACGAGCGATCATGCTGATTACCCTGGTCGGCGGATTGATCTTCGTCAGCGTGTCGTACTTCGTGCAGATCGCCCATCCGTCGTCCCAGTTCGACAGTGTCGACGCGGCGGCCTATGAAATTGCCCGCAATATCGGTGGCGACCTGTTCGTATCGATCTTCCTGATCGGCCTGATCGTTGGCCAATTCGCGTCGGGGCTGTCGGCTCAGGCCAGCGGCTCCCGGCTGTTGTTCGCCATGGGCCGAGATGGCGTACTGCCGAAATCGTTCTTTGGCGCCTTGCATGAACGCTTCGGTACGCCGGTCAACAGCATTCTCTTGTGCGCTGTGGTCGCGTTGCTGGCGCTGAAACTGGACGTCACCACCTCAACCTCGTTCATCAATTTCGGCGCGTTCCTGGCATTCAGCCTGGTGAACCTGTCGGTGATTTTTCACTACTGGATCGGCGCGCAGAAGAAAGGGCCGCGTGAATTCGTGCTGTTCCTGCTGTTCCCGTTCGTTGGTCTGGCGGCTGATGTATGGCTGATGGTCAGCCTCGATCACTTGGCGATCTACCTTGGCCTGAGCTGGCTGGCGATTGGCGTGGTGTATCTGGCGGTGCTGACGGGAGGTTTTCGTCGCCAGCCACCGGAGATAGACTTCCAGGAAGCCACATAA	MAHLQRTLSLGSVVLFGIAYMTPIIVLGTFGILAQSTSGMVPAAYLAALVAMFFTAMSYGRMAAAFPVAGSAYSYVRKAISPKLGFIAGWAVLLDYLFLPMAIWLIGAAYLHSAFPTVPQWLWVLVFIGITSAINIVGLKLANGINALLMLVQFLVLIAFVALCVHYVGGDASTPLWSVEPFFNGDMQMPLIMSGAAIACYSFLGFDAVSTLTEETRDPRRTIPRAIMLITLVGGLIFVSVSYFVQIAHPSSQFDSVDAAAYEIARNIGGDLFVSIFLIGLIVGQFASGLSAQASGSRLLFAMGRDGVLPKSFFGALHERFGTPVNSILLCAVVALLALKLDVTTSTSFINFGAFLAFSLVNLSVIFHYWIGAQKKGPREFVLFLLFPFVGLAADVWLMVSLDHLAIYLGLSWLAIGVVYLAVLTGGFRRQPPEIDFQEAT	PGPT0007795_498	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007795-puuP-K14052	NA	NA
D1-36_04252	822	ramA_1		(R)-stereoselective amidase	ATGAAAGTCGAACTCGCCCAGTTGGCGGGCCGTGATAACGACACGGCCTATAACCTCGAACGCGCCCTTCAGGCGATTGCCGCCTGTGCGGCCGATACGCAGTTGATCGTATTTCCCGAAACGCACCTGATGGGCTTCCCATCGCTTGAGACAGTGGCAGAAACCGCTGAGCCATTGGATGGCCCGACTGTCAGCGCGGTGCTTGCTGCGGCCCGGGAGCACAACATTGCCGTGGTCATAGGCGTGGCCGAAAACGACCGTGGCCGCTTCTACAACACCACGCTGCTGATCACCCCGCAGGGCATCGCGCTGAAGTATCGCAAGACCCACCTCTGGGCGTCGGACCGCGGTGTGTTCGAGGCCGGCGACCGTTACGCCACGTGTGAGTGGAACGGTGTGCGCGTCGGTCTGCTGATCTGCTACGACATCGAGTTCCCGGAAACCGCCCGAGCCCTGGCGCAACTGGGGGCCGAACTGCTGATCGTCACCAACGGCAACATGGACCCCTACGGGCCGACTCACCGCACCGCGATCATGGCTCGCGCCCAGGAAAACCAAGCGTATGCGCTGATGGTCAATCGGGTGGAAGAAGGGGATGGCGGGTTGGTGTTCGCAGGCGGCAGTGCGTTGGTGGACCCGCTGGGCACGCTGTTGTTCGAGGCCGGGCGCGAAGAAGGGCAGTTTGCGGTGGAATTGGACCTGAACCAACTGACGGCGGCGCGGCGTGATTATCGCTACCTCGATGATCAGCGGCTGAAGATGCCGGGAGAGATTGTTGAGCATCCCTATGGACTGCGAGAGCTGTTGATTCCTTCGCGTTGA	MKVELAQLAGRDNDTAYNLERALQAIAACAADTQLIVFPETHLMGFPSLETVAETAEPLDGPTVSAVLAAAREHNIAVVIGVAENDRGRFYNTTLLITPQGIALKYRKTHLWASDRGVFEAGDRYATCEWNGVRVGLLICYDIEFPETARALAQLGAELLIVTNGNMDPYGPTHRTAIMARAQENQAYALMVNRVEEGDGGLVFAGGSALVDPLGTLLFEAGREEGQFAVELDLNQLTAARRDYRYLDDQRLKMPGEIVEHPYGLRELLIPSR				NA	NA	NA	NA	NA
D1-36_04253	801			hypothetical protein	ATGACACTTTCGTTAGACGACATTGCGTGGCACCGCTCGGTTGGGCAACTGATCGACGCCTTGGACAAGCCTAATTTCTGGACGCAGCTGGTCCGTTTGCTCGATCAATACGTACCTTTCGACAGCTGGGTGGCACTGCTTTTCAGCGCCGACCAGCGCCCGCAGGTATTCGCAGAGTGCCCGGGTGCGGACGGCAGTCCGGATCAATTGTTCCAGGATTATCTGCGCGGCCTGTATCTGCTCGATCCGTTCTACATCGCCTGTCGCGAGCAGTCGCGCACCGGGCTGTATCGCCTGTCGGAAGTCGCACCGGAACATTTCGAGTTGACCGAGTACTACCAGCGTTACTTCCGCCTGAATGTGGTGTCCGATGAGGTCCAATTCAATTGCCAGCTCGAAGGCGACCGCACGCTTTGCCTGTCGCTGGGCAGCAAGCAGCGGTTCAGTGGCGAGCAGACTGCCTTGCTGTCACTCATCCAGCCCTGGGTGCTCGGCCTGTTGCGCCAGCGCCTGCCTTACGAAATCAACGAAGTGGTGGCCCTTGCACCAGCACCGCCGCAAGCCGATTGGCGCGTGCAGCTGGAAGCGTCAGTCCAGCAGCTCAAAGGCGCGCAATTGACCGCACGGGAGCTGGATGTCGGGCGCTTGATGCTCAGCGGTTGCTCCAGCAAGGAAATCGCCCGCAAGCTGGAAATTTCCGCCGAAACCGTAAAAGTCCATAAAAAACATATGTACAGCAAACTGGGGATCAAGTCCCAGTCCGAGCTGTTTTCTATTTTTCTCCAGGCGCAGAACGCCTGA	MTLSLDDIAWHRSVGQLIDALDKPNFWTQLVRLLDQYVPFDSWVALLFSADQRPQVFAECPGADGSPDQLFQDYLRGLYLLDPFYIACREQSRTGLYRLSEVAPEHFELTEYYQRYFRLNVVSDEVQFNCQLEGDRTLCLSLGSKQRFSGEQTALLSLIQPWVLGLLRQRLPYEINEVVALAPAPPQADWRVQLEASVQQLKGAQLTARELDVGRLMLSGCSSKEIARKLEISAETVKVHKKHMYSKLGIKSQSELFSIFLQAQNA				NA	NA	NA	NA	NA
D1-36_04254	1845	ggt_2	COG0405	Glutathione hydrolase proenzyme	GTGCTTTCAGATCTCAAATCGAATCTTCATCGCCTGTCAGCCGTTTCGCTGCTGGCTGTCGCCTTGGCACTCGTCGCCTGCAAGGCTCCGCCCTCCTCCACGTCCGCTTCTGCCTTGCCCACGGCTCCGGAAATCGCTTCCGGCTACCGCACCGACCTACAGACACATCATGCCGACAAACACATGGCCGCCGCGGCAAACCCGCTTGCCGCGCAAGCCGGCCGGGAAATGCTCCGGCGCGGCGGGTCGGCCATCGACGCGGCAATTGCCATGCAGGCAGTGCTGACGTTGGTGGAGCCGCAGTCTTCCGGCATCGGCGGAGGTGCGTTCATTGTGCTATGGGACGGCAAGGCGGTGCGTACCTACGACGGCCGCGAAACGGCGCCGGCCGGTGCTACCGAAAAACTCTTCATCCAGGCCGACGGCAAACCGATGCCGTTTACCGCCGCGCAGATCGGCGGCCGCTCCGTGGGTACACCGGGCGTGTTGCGTGCCCTGGAGCTGGCCCATCGCAAACATGGCCGCCTGAAGTGGGCGACACTGTTCGAGCCGGCGATTGTATTGGCGGAACAGGGGTTCAGGATTTCGCCTCGACTTCACTCGATGATTGCCGCCGATGCCTCTTTACCCGGCTCCCCCGACATGGCCGCCTATTTCCTGAATGCCGACGGCAGCCCCAAGGCAGTGGGCACCCTGCTTAAAAATCCGGCACTGGCGGGCGTCCTCAAGCGTATTGCCAACGAAGGCCCCAATGCTTTGTACGAAGGGCCCGTTGCTGAAGAAATTGTCGCCAAGGTCCAAAGCCACGCCAATCCGGGCAGTCTGTCGTTGAGCGACCTCAAAGGTTACGCCGCCCGCGAGCGCGCGCCGTTGTGCACCGACTACAAACGCTGGCAAGTCTGTGGCATGGCGCCGCCCTCCTCCGGCGGGATTGCCGTGGCGCAGATCCTCGGAACATTGGAGAACCTGGAACAGCGCGACGGCCTAACCGCCCTCGCGGCATTGAAACCGATCAAATCCACGAAACCCGCTGGTATCGAGCCTTTGCCCGAAGCCGTGCACATGATTTCCGAGGCTGAGCGCCTGGCCTACGCTGACCGCGCCCTCTACGTTGCCGATCAGGATTTTGTCCCCGTGCCGGTCAAAGGCTTGGTCGACCCCACGTATCTGGCGAGCCGCGCAAGCCTCATCGGCCCTCGCAGCATGGGCGTTGCCAAGCCGGGAACACCACCGGGCATCCAGATGGCCTTCGCGCCGGATCGCTCGCCCCTGCGAATTTCCACCTCGCAAGTAGTGGCCGTGGATGACCAGGGCGGCGCCGTGTCGATGACGACCACGGTGGAGTCAGCGTTTGGTTCGCACTTGATGGTGCAGGGATTCATGCTCAACAACCAGATGACTGACTTTTCCTTCATTCCCGAAGAGAACGGGCGCAAAGTCGCCAACCGCGTCGAGCCCGGCAAACGCCCGCGATCATCCATGGCTCCGACCCTGATCTTTGATCGCCAGAGCGGCGAATGGCTGGCCGCGGTTGGTTCCCCAGGTGGATCACAGATCATTGAATACGTCGCCAAGTCCGTCATCGGCCTGCTGGATTGGGACCTGGACCCGCAAGCCGCCATCAATCTTCCCAACTTCGGCAGCCGCAATGGCCACACCGAACTGGAACAGGGGCAATTCAGCCCGGGGTCGGTCCAGGCGTTGAAAGACAAAGGCCACACAGTGGGCGAAATCGACATGACCAGCGGCACCCAGGCGATCATCCGGGTGCGTGATGGCCAAGGGAAATCCTCGCTGGCTGGCGGGGCGGATCCAAGGCGCGAAGGTCAAGCGCTGGGCGACTGA	MLSDLKSNLHRLSAVSLLAVALALVACKAPPSSTSASALPTAPEIASGYRTDLQTHHADKHMAAAANPLAAQAGREMLRRGGSAIDAAIAMQAVLTLVEPQSSGIGGGAFIVLWDGKAVRTYDGRETAPAGATEKLFIQADGKPMPFTAAQIGGRSVGTPGVLRALELAHRKHGRLKWATLFEPAIVLAEQGFRISPRLHSMIAADASLPGSPDMAAYFLNADGSPKAVGTLLKNPALAGVLKRIANEGPNALYEGPVAEEIVAKVQSHANPGSLSLSDLKGYAARERAPLCTDYKRWQVCGMAPPSSGGIAVAQILGTLENLEQRDGLTALAALKPIKSTKPAGIEPLPEAVHMISEAERLAYADRALYVADQDFVPVPVKGLVDPTYLASRASLIGPRSMGVAKPGTPPGIQMAFAPDRSPLRISTSQVVAVDDQGGAVSMTTTVESAFGSHLMVQGFMLNNQMTDFSFIPEENGRKVANRVEPGKRPRSSMAPTLIFDRQSGEWLAAVGSPGGSQIIEYVAKSVIGLLDWDLDPQAAINLPNFGSRNGHTELEQGQFSPGSVQALKDKGHTVGEIDMTSGTQAIIRVRDGQGKSSLAGGADPRREGQALGD	PGPT0002935_713	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_TAURINE_UTILIZATION,PGPT0002935-ggt-K00681	NA	NA
D1-36_04255	234			hypothetical protein	ATGCCTATCGTGATTCAACTTGATGTGATGCTGGCGATGCGCAAGGTCAAGTCCAAGGATCTTGCCGCCGCCATTGGCATCACCGAGGCCAACCTTTCCCTGTTGAAGCAGGGAAAGGTCAAGGGCATACGTTTGGCGACCCTGGAAGCCATCTGTGACTATCTGCACTGTCAGCCGGCCGACCTGCTGGTTTACCAGCCGCGAAGCGAATCCGATCAGTCGCCCAGCGCTTGA	MPIVIQLDVMLAMRKVKSKDLAAAIGITEANLSLLKQGKVKGIRLATLEAICDYLHCQPADLLVYQPRSESDQSPSA	PGPT0014940_586	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014940-yozG-K07727	NA	NA
D1-36_04256	555			hypothetical protein	ATGGGTTCGAATCGCCTAGCTGTTTATAGTCAACGCATGGCTGCCATCACGCTGATATTCATTGCGGCCATGATGGCCATCAATGCCCTGGTCTGGGTGTTTCCTAATATCGAGTCGCAGTACGGCCTGGGCTTTGCGTTGACTCAGCGTCAGTTGTCCAGCCTGTCAGGGGAGGCGACCTTGTTGACTGGTTGGCAGAGCCTCGGCGCGATCTTCTTATCGAGTATCCCTCTGCTGGCGCTGACAGTCGGGCTGGTCAATCTGCGACAGCTCTTCAAGCGCTATGCGCAGGGGCAGTATTTCTCCGGCGAAGCCGCCATTGCACTGGGCAAGGCCGGCCGCGCGGTGGCATTGTGGGTGCTGCTGGATTTCCTATGCGAACCTTTGTTGAGCCTGCTGCTCACCATCAATGCGCCCGTTGGCCAGCGATTGCTGAGCTTGAGCATCACCGCGCCGTCCTTCGTCGCTTTGTTTCTGGCGGCGTGCATTGCGATCATTGCCCGGATATTGTCCCAAGCCGCTGAAGTCGATTCAGAAAACCGAACTTTCGTTTGA	MGSNRLAVYSQRMAAITLIFIAAMMAINALVWVFPNIESQYGLGFALTQRQLSSLSGEATLLTGWQSLGAIFLSSIPLLALTVGLVNLRQLFKRYAQGQYFSGEAAIALGKAGRAVALWVLLDFLCEPLLSLLLTINAPVGQRLLSLSITAPSFVALFLAACIAIIARILSQAAEVDSENRTFV				NA	NA	NA	NA	NA
D1-36_04257	1317	bdlA	COG0840	Biofilm dispersion protein BdlA	ATGTTCAACAATCGCTTGAAGCAGGAGCTGCTCGCTCTTCGCCAAGAACTCTCCAGTCTCATGCAGATAAAAGAGAGCCTTGATCGCGAAATGCTCGGTTTGACCCTCGATGCTGAGGGGAGGATACAGTCGGTCAACCAGAACTTTCTCGATGACATGCGTTACAAGAGCCAAGACCTGATTGGCCGTTCTGTCGAGGAACTGGTACCGGCTTACCTGAAGTCCAATGAATTCCAGGCGCGCTTCAAGACCGCGCTGACCCGTGGCGAGCATTTTTCCGGCGCCGTGCGCCTGATGCGGGGCGACGGCAAAGAGGCCTGGCTGCGCTCGATCCTCCAGCCCATACGCAATGCCGAGGGGCGAATTCGTTCTTTTTCGATGTACTCCAACGACCTCACTCGCACCATCGAAAACTCCCGCGAGCATGAGAACCTGATAAGTGCCCTGGTGCATTCGACGGCGGTAATCGAGTTCGACCTGGGTGGCCATGTACTGACGGCCAATGACCGTTTCCTCAATGCGATGGGTTACAGCCTCGCGCAGATCAAGGGCAAGCATCACCGTACGTTTTGCGAGCCTGAGCAATACAACAGCGCGACCTACCAGCAGTTCTGGAAGCGTTTGAACAGCGGCGAGTTCGTTGCCGGGCGCTTCAAGCGTATCGACAGCAGCGGTCGCGAGGTGTGGCTGGAAGCTTCCTATAATCCGGTGGTCGATGCCAACGATCGCCTGTACAAGATCGTCAAGTTCGCCACCAACATCACCGACCAGGTCAAGCAGGAAAAAGCCGTTGCCGCGGCCGCCAACATCGCCTACAGCACTTCCCTGCAAACCGATAACAGCGCCCAGCGCGGCACCACCGTCGTGACCCAGGCCGTGGACGTGATGCGCGACCTGGCCCGGCATATGCAGACCGCTGGCCAGGGTATCGAGGCACTGAACGAACAGTCGCTGGTCATCGGAACCATCGTCAAGACCATCAGCGGCATCGCCGAACAGACCAACCTGCTGGCGCTCAACGCCGCAATCGAGGCTGCCCGGGCCGGTGAACAAGGGCGCGGATTTGCGGTGGTGGCCGATGAGGTCCGGCAACTGGCGTCGCGTACCAGCCAGGCAACCGATGAGATCGTCGGCGTCGTTCGCCAGAACCAGGACATGGCTCGCAATGCCGTGGCGCTGATGACCGACGGCCAACACCAGGCTGAACAGGGCCTGGCCTTGGCGGCCGAGGCGGGAACGGTAATCGTCGAGATCCAGGACGGCGCGAAGAAAGTCGTGGACGCGGTGAGCCAGTTTGCCAATCAGTTATCAACATAA	MFNNRLKQELLALRQELSSLMQIKESLDREMLGLTLDAEGRIQSVNQNFLDDMRYKSQDLIGRSVEELVPAYLKSNEFQARFKTALTRGEHFSGAVRLMRGDGKEAWLRSILQPIRNAEGRIRSFSMYSNDLTRTIENSREHENLISALVHSTAVIEFDLGGHVLTANDRFLNAMGYSLAQIKGKHHRTFCEPEQYNSATYQQFWKRLNSGEFVAGRFKRIDSSGREVWLEASYNPVVDANDRLYKIVKFATNITDQVKQEKAVAAAANIAYSTSLQTDNSAQRGTTVVTQAVDVMRDLARHMQTAGQGIEALNEQSLVIGTIVKTISGIAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRQLASRTSQATDEIVGVVRQNQDMARNAVALMTDGQHQAEQGLALAAEAGTVIVEIQDGAKKVVDAVSQFANQLST	PGPT0015710_26658	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_04258	1419	atoE	COG2031	Putative short-chain fatty acid transporter	GTGACCACTGACATTGAAGACAGCCGTTCCGCCCGCTTCGCGCTGCGCTGTTCCAGTTTTGCCGAGCGCTGGTTCCCCGACTCCTGGGTCTTTGCCGCGCTGGCGGTGCTGGTGGTCGCGCTGGCGACGCAGCTCATTGGCGCCACGCCCACTGCCGCAGCCATGGCTTTCGGCGATGGGTTCTGGAGCCTGATTCCCTTCACCATGCAAATGGCGTTCGTGGTGATTGGCGGTTATGTAGTGGCCAGCTCGCCTCCAGCCGTCAAGCTGATCGACCGCCTGGCGCGCATTCCCAGCAATGGCCGCTCCGCGGTGGCGTGGGTGGCCGTGATCTCCATGGTCGCATCGCTGCTCAACTGGGGGCTGTCGCTGGTGTTCGGCGGCCTGCTGGTGCGTGCCCTCGCCCGGCGCGCGGACTTGAAGATGGATTATCGCGCCGCTGGCGCTGCCGCTTACCTGGGCCTGGGCGCGGTGTGGGCGCTGGGGTTGTCTTCTTCGGCCGCGCAATTGCAAGCCAACCCGGCCAGCCTGCCGCCATCGATCCTGTCGATTACCGGCGTCATCCCTTTTACCCAGACGATTTTCCTCTGGCAGTCCGGTGTGATGCTGCTGGCGCTGATCGTGATCTCGGTGATCATCGCGTATGCCACCGCGCCGGGCCCCAACAGCGCCCGTGACGCCGCCGCCTGCGGGATCGACCCCAGTTTCAGCATGCCGGCGCTGCAACCGCGCACCCGCCCCGGGGAATGGCTGGAGCACAGCCCGCTGTTGACCATTGCATTGGTGCTGCTCGCCGCTGGTTGGCTGTTCCATGAGTTTTCGACCAAGCCGGCCATCAGCGCCATTTCCGGGCTCAACACCTATAACTTTCTGTTCATTATGTTGGGCGCCTTGCTCCACTGGCGGCCACGCAGTTTTCTCGATGCCGTGGCCCGCGCCGTGCCAACCACCACCGGCGTGCTGATTCAGTTCCCGTTGTACGGATCGATTGCCGCACTGTTGACCACCGTCAAGGGCAGCGATGCGCAGACGCTGGCACACCATATCTCGACCTTTTTCGTACAGATCGCTTCCCATGACACCTACGCCCTGTTGATGGGCGTCTACTCGGCGGTGCTGGGCTTTTTCATTCCTTCCGGCGGCGGTAAGTGGATCATCGAAGCGCCCTATGTCATGCAGGTGGCCAACGACCTGAACTACCACTTGGGCTGGGCCGTGCAGATCTATAACGCCGCCGAAGCACTGCCGAACCTGATCAACCCGTTCTACATGCTGCCGTTGCTGGGCGTTCTGGGGTTGAAAGCGCGGGACTTGATCGGATTCTCTTTCGTGCAGTTGCTGGTTCACACGCCGCTGGTATTGGTGCTGCTGTGGGCCCTGGGGACCACGCTGACCTATTTGCCGCCAGTAATGCCATAA	MTTDIEDSRSARFALRCSSFAERWFPDSWVFAALAVLVVALATQLIGATPTAAAMAFGDGFWSLIPFTMQMAFVVIGGYVVASSPPAVKLIDRLARIPSNGRSAVAWVAVISMVASLLNWGLSLVFGGLLVRALARRADLKMDYRAAGAAAYLGLGAVWALGLSSSAAQLQANPASLPPSILSITGVIPFTQTIFLWQSGVMLLALIVISVIIAYATAPGPNSARDAAACGIDPSFSMPALQPRTRPGEWLEHSPLLTIALVLLAAGWLFHEFSTKPAISAISGLNTYNFLFIMLGALLHWRPRSFLDAVARAVPTTTGVLIQFPLYGSIAALLTTVKGSDAQTLAHHISTFFVQIASHDTYALLMGVYSAVLGFFIPSGGGKWIIEAPYVMQVANDLNYHLGWAVQIYNAAEALPNLINPFYMLPLLGVLGLKARDLIGFSFVQLLVHTPLVLVLLWALGTTLTYLPPVMP	PGPT0021760_229	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021760-atoE-K02106	NA	NA
D1-36_04259	1161			hypothetical protein	ATGTTCAAACTCGCCGTACTTCCTCTCGCCGCCTTGGCCTTGAGCGCCACCGCCCAAGCCGCCGACATCGGTGTCAACCTTGGCAGCACCGAACGCGTCACCCGCCTCTTCGCTTACCCCAACAACTGCAATGTCATCTGTTTTCGCAACTGGACACTCGAGCAGACCGTCGAGCATTATTTGACGCAAAGCGTCCAGCGCGACGGCTACGACGCGGCCAAAGTCGAGGTCAAAAGCGACAACGGCACCGTCTACGCCAACATCAGCGGCGTGCCGAAGAGTTATGGCCAACCGTTGGCCGCCTTGCTCAACGCCGGCGACCTCGCCTATAACGGCGCCACGAAACTCAACACCGATAAAAAATGGGCCTACAACTGGTACCTGTTCCTGCCCCTGGGCATGGCCCTGGAGAACCGCAAGAGCGTCGAGCTGCTGCACTTCCCGCCGGATTATTCGCTGACCCAGGCCCAGGATTACCTGGAGTCGGCCACCACCGACCGCTGGGCCACGCTGCTGACCGCCAACGGCATCGCCGCCGGGGACACGCCTGCTTACCAGACCATCATCGACATCGCGCCCATTGCGGCGCCGTCCAATGCGGGCAGTACACTCGCCGGCCTGTACAGCTATTTCAACGATTACCAGACCACCATGGTCAAGGAAGTCACTCGGAACGCCAGCGGGGCGTCGCTGCCGATGGTGGCTTTCGGAGCGCCCGTCCGGGACTGGATCAAGACCCAATACGGCCAGGCCGTGGCGGTACTCGGCCTGGCGACCATCGAGCCTGCGCCGGGGGCCAAGGTTCCGGTGCTGGGCTCCAACCACCCCAGCTACATCTGGTACGCAGCCGATCCGGACAGTTATGACGGCGACCAGGCCAAGGCCGATGCCGCGGGCTTGAAAGTCATGGGCCAGGACCTGAGCGCTGCATGCTGGCAGGCCGGAATGGGCAGCAAGCCAGGCACCGACCCGAGCGCATTGCTGAGCCAATGCACCCAGACGTGGCAGGTCACGCAAAAAGAGCAGACTTGCGAGCTGTTCTATACCTCGGTTCGCAAGCTGAGCGAGGTGGACGCAGACAAGAAGTGCGAAACACCACCGGTCAAATCGCAACTGCAGCAGTTGAAAGTGCCCATGCCATTACCCGCCGAAGCCGTATAA	MFKLAVLPLAALALSATAQAADIGVNLGSTERVTRLFAYPNNCNVICFRNWTLEQTVEHYLTQSVQRDGYDAAKVEVKSDNGTVYANISGVPKSYGQPLAALLNAGDLAYNGATKLNTDKKWAYNWYLFLPLGMALENRKSVELLHFPPDYSLTQAQDYLESATTDRWATLLTANGIAAGDTPAYQTIIDIAPIAAPSNAGSTLAGLYSYFNDYQTTMVKEVTRNASGASLPMVAFGAPVRDWIKTQYGQAVAVLGLATIEPAPGAKVPVLGSNHPSYIWYAADPDSYDGDQAKADAAGLKVMGQDLSAACWQAGMGSKPGTDPSALLSQCTQTWQVTQKEQTCELFYTSVRKLSEVDADKKCETPPVKSQLQQLKVPMPLPAEAV				NA	NA	NA	NA	NA
D1-36_04260	528			hypothetical protein	ATGATCGAATTCATCGACAATTGCGTCGATTCAAAGACCCGGGACTGCATCTATCCGGGAAAACAATTCAGCCCTCGCCAGGGCTATCCCTCGGTGCGCGATTTTGAAGTGCGCCAGACCAACGCCGGTCGCGGCAATGGGATCATCGCCCGCAAGCCATTCGCCCCCATGACGCGGATGTGCAGGGTATCGGGGCTGCTGATCAGCCGCCGACGCCTGCACACATTGCAGCTTCTGCCGGATGTCCACATGTACGACCCACACTTCGCCGGATTGCTGCTGCACTCCTGCAATCCCAATGTCTTCCTGGACATGAGCGAATTGTGGCTGTGGTCCCTGACGGATATCCGTGAAGGCGACCGCCTGGCGATGGACTACGCCAGTACTGAACGCAAGCTGTATCGGCAATTCGCCTGCCGGTGCGGTTCATCCAACTGCCACGGCTGGATCACTGGCTATGACGAATCGCCGAATGAGCGAGGAATGGAATTTTTGCGGCACTGGCGGCGCCGTTGTCATCGCGACTAG	MIEFIDNCVDSKTRDCIYPGKQFSPRQGYPSVRDFEVRQTNAGRGNGIIARKPFAPMTRMCRVSGLLISRRRLHTLQLLPDVHMYDPHFAGLLLHSCNPNVFLDMSELWLWSLTDIREGDRLAMDYASTERKLYRQFACRCGSSNCHGWITGYDESPNERGMEFLRHWRRRCHRD				NA	NA	NA	NA	NA
D1-36_04261	645	can	COG0288	Carbonic anhydrase 2	ATGAATGAATTACAAGATCTGATTGATAACAACGCGCGCTGGGCCGATGCGATCAAGCAGGAGGATCCTGACTTCTTCGCCAAGCTGGCTCGTCAGCAGACCCCTGAATACCTGTGGATCGGCTGCTCCGATGCGCGGGTACCGGCCAACGAAATCGTTGGCATGTTGCCGGGTGATCTGTTCGTGCACCGCAATGTCGCCAACGTCGTACTGCACACTGACCTGAATTGCCTTTCGGTCATCCAATACGCAGTCGACGTGCTTAAGGTCAAGCACATCCTGGTGACGGGTCACTACGGCTGCGGCGGCGTGCGTGCTTCGATGCAGGACCGCCAACTGGGCCTGATCGACGGCTGGCTGCGCTCGATTCGCGATCTGTATTACGAGCATCGCGATGCCTTGGCCAAGCTCCCCACCGAAGAAGAACGCGTGGACCGTTTGTGCGAGCTCAACGTGATCCAGCAAGTGGCGAACGTGGGCCACACCAGCATCGTGCAGAACGCCTGGCACCGTGGGCAGAAGTTGTCGATTCATGGCTGCATCTACGGCATCAAGGACGGGCGCTGGAAAAGCCTGGACACCACGATCAGCGGCTTCGAGCAACTGCCGCCGCAGTATCGGCTACGTCCGGTCGACGCGCCCTGA	MNELQDLIDNNARWADAIKQEDPDFFAKLARQQTPEYLWIGCSDARVPANEIVGMLPGDLFVHRNVANVVLHTDLNCLSVIQYAVDVLKVKHILVTGHYGCGGVRASMQDRQLGLIDGWLRSIRDLYYEHRDALAKLPTEEERVDRLCELNVIQQVANVGHTSIVQNAWHRGQKLSIHGCIYGIKDGRWKSLDTTISGFEQLPPQYRLRPVDAP	PGPT0002415_4369	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	K-SOLUBILISATION-OTHER_ACID_METABOLISMS	K-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002415-cynT|can-K01673	NA	NA
D1-36_04262	405			hypothetical protein	ATGAATGATTCACGACGTCCCTACGATGCGGTGCAACCGGAACCCATCGACGACAACGAAGACCGCATGGGCTCGATGCGTGAGCTGGAATTCGATGACGATGAATACGACGCCAGGATCGGCGATGAATTGCCGGAGGAAGAACGCGAGCAACTGATGCCGGATGAACGCGTGCGTGAAGCGGGCATGACAGGGGCCTCGATGGAAGACCGCCAGCCGACCGATGATGACATGAGCCCCGAAACCTTGATCCACGAAGACGGTGCCCGGGACGCCCGCGAGGCCGGCGAGGATGAGCAGGCCGATTGGGACCTGAGCATCGTTGGAGAAAACGATATAGGTGGAGGCGACGGGTTGGACGAAGCGGAAATGGCCGATATCGATCCGCTCGACGGCAAGCGCTGA	MNDSRRPYDAVQPEPIDDNEDRMGSMRELEFDDDEYDARIGDELPEEEREQLMPDERVREAGMTGASMEDRQPTDDDMSPETLIHEDGARDAREAGEDEQADWDLSIVGENDIGGGDGLDEAEMADIDPLDGKR				NA	NA	NA	NA	NA
D1-36_04263	453	rimI	COG0456	[Ribosomal protein S18]-alanine N-acetyltransferase	ATGAGTGACGCTGTATCGTTCCGCCCGATGACCGAGGCGGACCTCGACGCTGTGCTGAAGATTGAATACGCGGCCTATAGCCACCCGTGGACCCGCGGGATATTTCTTGATGGGCTGGGCAAATACCAGATCTGGCTGATGTTCGAAGGCCAGCAGCAAGTCGGCCATGGGGTGGTGCAGATCATCCTGGATGAGGCGCACCTGCTTAACATCACCGTCAAACCGGAAAACCAAGGGCGGGGCTTAGGCCTGCGGCTGTTGGAACACCTCATGTCGATTGCCTACAAGGCCGAGGCGCGTGAGTGCTTCCTGGAAGTGCGCGACAGCAATCGCACGGCGTTCCGACTGTATGAGCGCTATGGCTTCAACGAGGTTGGGCGGCGCCGCGACTATTACCCTGCCGTGGGTGGGCGCGAGGATGCGGTGGTCATGGCGTGTACGCTGGTGGATTGA	MSDAVSFRPMTEADLDAVLKIEYAAYSHPWTRGIFLDGLGKYQIWLMFEGQQQVGHGVVQIILDEAHLLNITVKPENQGRGLGLRLLEHLMSIAYKAEARECFLEVRDSNRTAFRLYERYGFNEVGRRRDYYPAVGGREDAVVMACTLVD				NA	NA	NA	NA	NA
D1-36_04264	747			hypothetical protein	ATGCAGGTGGTCAATTGGCTGCCGCGTACCGAATTGCCCTTTGCCGCGCCATCGCGGCCTGAGCTGTTGGAAACGCCGGAGCCGGTGGAAATCGCGCCGCCTCACGCAGCGCCCGTAGCCAAGGCTGCCGCCGAACCGGTTGCGCCTGCCGCTGAACGGCCGAAAATCGAAGTCCCGCGTCCGAGCTTGGCCTCGACCCGTACGAATGCCAAACCGGTAGAAGAGGCCGACGTAGCGCCGGCCCCGATCAAGGTCGCCCATGTGCCGCCGCCGCGCTTCGCCCTGCAATTGCTGCGGGCCGGCCGTTGCCTGTTGCTGGTGGAGTTACCCACAGGCGAGCCGTTCCAAAGCCGCGATCCCGCTTACCTGTTGCTCAAGGACATGCTGCGCGCCGCTGGCCTGCCGGACAGCCCGCAGATCATTGGCGAACCGGTGCGCTGGCCGTTGTTGTCGCGGGGCACGATGGACCAGGGGCCCGAGGCGGCTCGGGATTTCGTCCAGGGATTCGTCTCGGCGCGGCTCGAAGACGAACCGTGTGTGTGCTTGTGGCTGGTTGGCCTGCCCGCGGTGAAATTCGCTGGCGAGGCGGACTTCGACGCGTTCTACCGTGAATTGCAGGTCGAAGGCCTGGGCTCTGCCTGGGCGTTGCCGGGGCTTGAATCGTTAATGGAAACGCCACAGCGCAAGGCTGAAGTCTGGCAAGCCATGCGCCGGCTGATGGCGCGCTGGAAAGAATCGAATGAGTGA	MQVVNWLPRTELPFAAPSRPELLETPEPVEIAPPHAAPVAKAAAEPVAPAAERPKIEVPRPSLASTRTNAKPVEEADVAPAPIKVAHVPPPRFALQLLRAGRCLLLVELPTGEPFQSRDPAYLLLKDMLRAAGLPDSPQIIGEPVRWPLLSRGTMDQGPEAARDFVQGFVSARLEDEPCVCLWLVGLPAVKFAGEADFDAFYRELQVEGLGSAWALPGLESLMETPQRKAEVWQAMRRLMARWKESNE				NA	NA	NA	NA	NA
D1-36_04265	1281			hypothetical protein	ATGATCGAACCCAAGCGCGTCTTGCGCGCCCTCGCTGAACACTGGGCATTGCTGGAACCTTTGTGTGAGCATTTCGACCAGGGCACCCTGAGCCTCAACGAATTGCGTTCACAGCTGGCCGCCCAACAATTGGACAGCACGCCCCAGGACATCACCCATCTGCTGGACGTGTGGATCCGCCTGGACATCCTCGTACCGGTCGCGAAAAGCCCGAACCGCTTCGAGCTCAACGCCCAGATCCACGATTTCCTCGCCTACCTGCGCCGCGAACACCGCTTGGGCCTGTGCCTGGAAATCGAAGCCTACCTGCGCCACCTCGAGCGTCTGGCCGGCTATATCCAGGACGCCTTCGATGTGCGCGACGGCAACGACCTCGCCCGCCAGTTGCGCCTACTGGACATGCGCGTGCGCGACGTTCTCAAGAAGCTCGCCAACGACGAACAGGCGCTGGTCGCCGTCGCCGAACGGGCCAAGACCAGCGACCGGCAGATCCCGCTGCGCCAGCGCTACGCCGAAGTGCTGGCGACCTGGGACGAATACGTCGAGCCGATGATCCAGTTGGTGAACGCCGACGGCGCGTTCGAGCAAGGTGTGCGCAAGGTCGAGAATGTATTGCTGCGCATGCTCACCGAACAGCAGCGCCTCGGTCACCTGGTGGACGACGACATGCTGCTGCGCACTCACGCGCGAATCCTGGAGATGCAGACCAGCGCCCAGCTGACCCTGCGCCATGCGCGTGAGCTGCTGCTGCCGCTGCGCGAAGAGGCCCGCCGCCACAACGCCGTGACTCGTGGCGCAGCCCTGGCCCTGGCCGCCATTCGCCGTAAAGGTCTCGATGCCGTGCCGCAAGCGGCGATGCCGCTGTTCACCCGACCGCAAAGCACCTTCCTGGGCAGCGCCAGCCAGGTCGAAGCCTACGTGTATGCACTGGCCCGCTTCGAACCAAAACCGGCGCGGTTCCCCAAGTCTCACAAGGCCCACAAGGGCGGCGATGCGCCGCGTGCGCCACGCACCGTGCGCGAGATGGTCGAGCGTTGCGAAGATGCCCTGCCGATGCCGGACCTGATGACGTGGCTGCTGGAGCAGGAACCGGACGGCGCCACCGACGAATTGCTGTACTGGTTCTCGCGCCTGTCGCGGGAAAAACGCTTCAAGCGCGAGCGTCTGGAACGCCGCGACTACCATACTCACGAGCATCAGGTCAGCCTGCGCTCCTTCGCCCTGCTCTCGGCCGGCGACACCGCCGCCGAGGATTCTGCGAGCATCCCCCATGCATCTTGA	MIEPKRVLRALAEHWALLEPLCEHFDQGTLSLNELRSQLAAQQLDSTPQDITHLLDVWIRLDILVPVAKSPNRFELNAQIHDFLAYLRREHRLGLCLEIEAYLRHLERLAGYIQDAFDVRDGNDLARQLRLLDMRVRDVLKKLANDEQALVAVAERAKTSDRQIPLRQRYAEVLATWDEYVEPMIQLVNADGAFEQGVRKVENVLLRMLTEQQRLGHLVDDDMLLRTHARILEMQTSAQLTLRHARELLLPLREEARRHNAVTRGAALALAAIRRKGLDAVPQAAMPLFTRPQSTFLGSASQVEAYVYALARFEPKPARFPKSHKAHKGGDAPRAPRTVREMVERCEDALPMPDLMTWLLEQEPDGATDELLYWFSRLSREKRFKRERLERRDYHTHEHQVSLRSFALLSAGDTAAEDSASIPHAS				NA	NA	NA	NA	NA
D1-36_04266	708			hypothetical protein	ATGCATCTTGATCTATCCGAACTGTCCCAGCTGGCGCCGATCTTCCGCGAGCTGTTCAAGGGTTATCACGTCAGCCGCCGCGACCCGGAGCTGTACGCCCAATTATCGAACTTCCAGGATCAATACCGCACGCTGTTCAAGGCCCTGGGCTTCGAGCTGGTGTGCGATACCCGCGGGTTCTATTACTTCGTGCCAGACCTGGCCGCCGCGGCAGTGAACAAGACCGCCCAGCGCCTGGCCCTGTTTACCTTCATCCTCGTCGAGCACCTGGCCGACCAGGGCCGCGACCCGATCGCCGTGCTCGACGGTGGCAGCCTGGGCCGTGATGAGCTGCCTTCGCTGCTGGAGAAATACCGCGACCTGTTCATCCAGGCCGAAGTGCAGACCCAGGAAGAGTTGGAAGAAAAAATCATGCGCCGCATGACCCAACTGGGTTTCGCCAGCGAAGAGAACGGCGTGTACCGCTTCCTGCCGCCAATGCATCGCTTCCTCGACGTCTGCCTGTCGGTCCAGCAGGACCGCGACCTGGCCGCCAGCCTGCACAGCGTGTTGCCGCTGCCAGCGCCGGTGCTGATCGACGAAGACAGCGACGAAAAACTGCTTCAGACCGATGACCCGCTGGACCTCAGTGAATTCGACGGTGAAGAAGAAAGCGAAGAAGACGCACTGGCCCGCGCCATTGCCGAAGAACAGGAGACCGACGCATGA	MHLDLSELSQLAPIFRELFKGYHVSRRDPELYAQLSNFQDQYRTLFKALGFELVCDTRGFYYFVPDLAAAAVNKTAQRLALFTFILVEHLADQGRDPIAVLDGGSLGRDELPSLLEKYRDLFIQAEVQTQEELEEKIMRRMTQLGFASEENGVYRFLPPMHRFLDVCLSVQQDRDLAASLHSVLPLPAPVLIDEDSDEKLLQTDDPLDLSEFDGEEESEEDALARAIAEEQETDA				NA	NA	NA	NA	NA
D1-36_04267	2841			hypothetical protein	ATGAGCAAGGAACGCTACGGCATCCGCCGCTTTGCCCTTTTGAACACCGCCGGCTACAGCCTCGGCCTGTTCCCCCTGGAGGAACCGCTGTCGGTGTACGGCGCGAACAACCTGGGTAAATCCGCCTCGATCAACGCCCTTCAGTTTCCGATCCTGGCGCGCATGTCGGACATGAGTTTCGGCAAGTACAGCCTGGAACAATCCCGGCGCTTCTACTTTGCCTCCGACACCAGCTACATTCTGGTGGAAGTCGCCCTGCCCCACGGCCCACACGTGATTGGCGTGGTAGGTCGCGGCCCTGGCGGCGGTTTCGGCCACCAGTTCTTTGCCTATGCCGGCAAACTGGACCTGGCTCATTACCAGAAAAACGACACCTGCCTGCGGCAGAAAGAACTGTTCACCAACCTGGAGCGCGAGGGCCTGAAAGCCTACGAACTCAAGCCGGATGAACTGCGTCGCCTGCTGGTGGGCGGCCACACTTCGATTCCGCTGGACCTGACGCTGATTCCGCTTCGCTCCACCAGCGAGCAAAGCCTCAAGACCTTCCGCGCGTTGTTCATCAACCTGCTGCACATGCGTGAAATCACCGCGGCCAAGCTCAAACAACTTTTCCTCGATGCGTTCGAGCACAGCCTGCGCTCCGGCAGCGTGGACTACATCGCGGCGTGCGAAGAAGCCTTCCGCGACGTACGACGCATGGAGCAGGACTACAACTCACTCGTGGCGGCCGGTCCGCTGGTGGAAGCCTTGGCCAATGGCGTGAAGCAGCGCGATGTCCTGCGGGGCAAACTGCATCGGCTCTCGCCGCTGCTCGACTCGCTGCTGGGCACCTGGTCGGATTACGCCAGTGCACGCAAGGAAGAGCTGACCATCCAAGCCGAGCATTACCGCAACGAGCAGGATTCGCTGCAGAACGACCAACGCGGCGGCACTCAGGAGCTGATGCGCCTGGAGCGGGAAATCAGCGGCATCCAGCGTTGGCTAGGCGAGCTGTCGGTGCTCAAGCATCGCTTTGCCCTGGTGGATGACGCCAAGGTCCTGGAGCAGCAACTGCTCGCCGCCAAGGACGCTCACGACGAACTGGCCGGCGCCCTGGCCCAGTCCCGTCAATTCAGCGCCGAAGACCTGGAAGAGCGCCTGCGGGACCTGGAAAAACGCCTCAAGTCGGTCAAGCAGCAACTCGACCACGCCGACAACAACAGCTACGCCCGCCTGCGCGAAGAGTTCTCCCAGCAGGACGTGGAACGCCTGATGCGCTTGTTCAACAGCGCCCTGTTCAGCCTGCCGTTGGGCGAACATGGCATCGCGCTGGATGAGAACGGCGAGTGGGTCAAGTCCATGGAGCTGATCCTCGACGGGTTCAAGGGCGAGCGGTTCGAAGTGCCGGGCCTGTCCATCGACCTGTCCCACATCGAGCCGCCGGCCCTGCAAGCCCTGGCCGACCGTGCCGCGCTGCGGGATCAGAAAGAGCGTCTGGAAAAAGAACTCAAGCAGCTCAAGACCCAGCAAGCCGTGGCCGCCGACCGCGCCGCAAGCAAGACCCAGACCGAGGCGCTGTACCAACAAGTGCTGGATGCACAGAAAGCCCTGGAAGACTTCCGTCGCACCCAGACCTTGAGTGCCGAAGAGGGCGAGAAGCTCGAGCAACTGGCGCAGATGGAAGCCGCCCAGGATGAGCTCAAGCGCTCCAGCGATGCCTTCACCGAGCGCGTCCAGCAGTTGTCCGCCAAGTTGCAACTGGTGGGCCGGCAGATCGCCGACATGGAAGCCAAGCAGCGCACCCTCGACGACGCCCTGCGCCGTCGCCAGTTGCTGCCGGCGGACCTGCCGTTCGGTACGCCATTCATGGACCCGGTCGACGATTCCATGGACAACCTGCTGCCACTGCTCAACGACTACCAGGACAGCTGGCAAGGGCTGCTGCGGGTTGACGGTCAGATCGAGGCCTTGTATGCCCAGGTACGCCTCAAGGGCGTAGCCAAGTTCGACAGCGAAGACGACATGGAGCGGCGCCTGCAACTGCTGATCAACGCCTATGCCCACCGCACCGACGAGGCCCTGACCCTGGGCAAGGCGCGCCGCGCGGCCGTCACAGACATTGCCCGAACCCTGCGCAACATCCGCAGCGACTATGACAGCCTCGAGCATCAACTGGCGCTGTTCAACCGCGAGATCAACAAGCGTCAGGTGTCCAACCTGCAGAGCTTCCGTATCGTCCTGGCGCCGAACAAGGAAGCACTCAAGCACATCGACCAGATCATCCACAGCGCCGGCCAGTACGAGGAAGGCGAGACGCTGTCGGTGTTCGACCTCAGCCAGAGCGCCGAGCAGGACAACAAGAACGAAGAAGCCAAGGAGTACCTGGCACGACTGGTGGCGGCGAACCACAACCAGCTCGGCCTCAAGGACCTGTTCGAACTGGCATTCGAGATCACCAAGGTCAATGGCCAGCCGGTGATCCACACCGACATCGACGGCGCGGCGTCCAACGGCACTACCATGACCATCAAGGCGCTGACCAACATGTACTTGTTGCTGCACCTGATGGACCGTGAACAGGCCGGCCGCGTGCGCCTGCCGTACTACCTGGACGAAGCGGCGGACATCGACGAGAAGAACCAGGCCGCACTGCTGGAAACCAGTCTGCAATTGGGCTTCGTGCCGATCCTGGCGAGCGTGAAGCCACAGGTCTGCGCCAGTGTCGCCATCGACCTGGAGGGCGGCAGCGGCCCGAACGGCATCTACATCGATGAGGCGGACTGGAAATACATTCGTCGCCATGATGCCGTGAAGGCCACGATAAACGTCCAGGCCGATGAACCGGAGCTGGATTCGGTTTGA	MSKERYGIRRFALLNTAGYSLGLFPLEEPLSVYGANNLGKSASINALQFPILARMSDMSFGKYSLEQSRRFYFASDTSYILVEVALPHGPHVIGVVGRGPGGGFGHQFFAYAGKLDLAHYQKNDTCLRQKELFTNLEREGLKAYELKPDELRRLLVGGHTSIPLDLTLIPLRSTSEQSLKTFRALFINLLHMREITAAKLKQLFLDAFEHSLRSGSVDYIAACEEAFRDVRRMEQDYNSLVAAGPLVEALANGVKQRDVLRGKLHRLSPLLDSLLGTWSDYASARKEELTIQAEHYRNEQDSLQNDQRGGTQELMRLEREISGIQRWLGELSVLKHRFALVDDAKVLEQQLLAAKDAHDELAGALAQSRQFSAEDLEERLRDLEKRLKSVKQQLDHADNNSYARLREEFSQQDVERLMRLFNSALFSLPLGEHGIALDENGEWVKSMELILDGFKGERFEVPGLSIDLSHIEPPALQALADRAALRDQKERLEKELKQLKTQQAVAADRAASKTQTEALYQQVLDAQKALEDFRRTQTLSAEEGEKLEQLAQMEAAQDELKRSSDAFTERVQQLSAKLQLVGRQIADMEAKQRTLDDALRRRQLLPADLPFGTPFMDPVDDSMDNLLPLLNDYQDSWQGLLRVDGQIEALYAQVRLKGVAKFDSEDDMERRLQLLINAYAHRTDEALTLGKARRAAVTDIARTLRNIRSDYDSLEHQLALFNREINKRQVSNLQSFRIVLAPNKEALKHIDQIIHSAGQYEEGETLSVFDLSQSAEQDNKNEEAKEYLARLVAANHNQLGLKDLFELAFEITKVNGQPVIHTDIDGAASNGTTMTIKALTNMYLLLHLMDREQAGRVRLPYYLDEAADIDEKNQAALLETSLQLGFVPILASVKPQVCASVAIDLEGGSGPNGIYIDEADWKYIRRHDAVKATINVQADEPELDSV				NA	NA	NA	NA	NA
D1-36_04268	2304	yebT	COG3008	Intermembrane transport protein YebT	ATGACTGATTTGCCTACTGCTAAAACCCGACCGGCTTCAAATTGGTCGGCCATCTGGGTCCTGCCGTTGATTGCCTTGATTATTGGCGGCTGGCTTGGCTGGCGTGCTTATAACGAGACCGGTATTGAGATCAACGTGCGTTTTGAAAGCGGTGAGGGCATCCAGGTCAACAAGACAGAGGTCGTCTACAAAGGCATGACGGTCGGTAAGGTGAAGGACCTCACGCTTGATGATGAAGGAAATTCGAAGGGGGTCATTGCGACCATCGAGATGAACAAGGAAGTCGAGCAATATCTCAAGACCGGCACACGTTTCTGGCTGGTCAAACCAAGTGTGAGCCTGGCAGGGATTACCGGGTTGGAGACGTTGGTTTCCGGTAATTACGTCGCCATCAGCCCGGGGGAAGGCGAGTCGACTCGCAAGTTCAAGGCCTTGGCCGAAGAGCCCCCGCTGTCTGACGCCAAGCCTGGCCTGCACTTGACGATCAAGGCCGATCGACTGGGGTCTCTGGACCGTGGCAGTCCGGTTTTCTACAAACAGATCCAAGTTGGCCAGGTGAAAAGTTACTCACTGTCCGAAGATCAACGCGCAGTAGAGATCAAGGTCTTTATCGAGCCGACTTATGCCAGCCTGGTCCGCAAGCACACGCGCTTCTGGAATGCCAGCGGCATTAGCATCGATGCCAATTTGTCAGGCGTCAAAGTACGCAGCGAGTCGCTGGCCAGTATCGTGGCAGGCGGCATCGCGTTTGCTACTCCGGAAAACCGCAAGGACAGCCCTCCGACGGATCCAAGCCTGCCATTTCGCCTGTATGAAGATTTCGAGGCAGCCGCCGCCGGGATTCGCGTCAAGGTCAAGCTCAGTGATTTCGAGGGATTGCAGGCTGGCCGTACGCCAGTGATGTACAAGGGCATCCAGGTCGGCAGCCTGAAGACGTTGAAAGTCGATCCGGACCTGTCCAGCGCCAGCGCCGAGTTGACGCTCGATCCGTTGGCGGAAGATTACCTGGTCGCCGGCGCTCAGTTCTGGGTCGTCAAACCATCGATTTCCCTGGCGGGCATCACGGGCCTGGAGGCGTTGGTGAAGGGTAACTACATCGCCGTGCGCCCTGGCGACAAAGGCGGAGCGCCGCAGCGCGAGTTCGAGGCCAGGGCGAAGGCGCCGCCGTTGGACCTTCGTTCACCCGGGCTGCATCTGGTCTTGCTGACCGAAAATCTCGGGTCGCTGGAGGTCGGTAGCCCGATCCTCTACAAGCAGGTCAAGGTCGGATCGGTGCAGAGCTACCAGTTTTCCCGCAAGAAGAAGCAACTGATCATCGGAGTGCATATCGAGAAGGAATACGAAGGGCTCGTCAACGGCTCCACGCGGTTCTGGAATGCCAGTGGCGTTACCCTCACGGGCGGCTTGACCGGCGGGATACAGGTCAAGAGCGAGTCCCTGCAAAGCTTGATGGCCGGGGGGATCGCTTTCGAAACTCCTGAGCCGAACGTGCCGCTGAAACGGCGCATCCCCCGGTTCCGTTTGCACGAAGATCGTGAAACCGCGCAGCAACGAGGCACTGTCGTGACGATCAAGGTCGATCGTGCCGACGGTTTGCGCAGCGGCACGCCGATCCGGTTCAAGGGGTTGGATGTGGGCAAGATCGAGGACGTCGACCTGAGCGCCGATATGCAGTCGGTGCTGGTTACCGCACGTATCACCGAAGTGCCCGAGCGTATCGCCCGCACAGGGACTCAGTTCTGGGTGGTCAAGCCTGAATTGGGACTGATGAAGACATCGAATCTGGAAACCCTGGTGACCGGCCAGTACATCGAAGTGCAGCCCGCGACGAAGAACCTGGGGCCGCAGAAAAACTTCGTGGCCTTGGCCGAACCACCCGAAAGTGTTGTTCCCGAAGCTGGCTTGAGCCTGGTGTTGAGTGCCGCCCGACGTGGTTCGTTGAAGATTGGCGTGCCGGTGACCTACCGCGAAGTGACCGTGGGTAAAGTCACGGGCTACGAGTTGGGCCAGACGGCGGACCGGGTGCTGATTCACATCCTGATCGAGCCTAAATACGCGCCACTGGTGCGCAGCGGTACACGTTTCTGGAACAGCAGCGGCTTCGGCCTGGACTTCGGCCTGTTCAAGGGCGCGACGGTGCGAACCGAGTCGCTTGAAACCTTGATCCAGGGCGGTATCGCATTCGCAACGCCAGACGGCGAGCGGATGGGCAACCCGGCACGCCCGGAGCAAACCTTCCCGCTGTTCGACAAGTTTGAAGATGAATGGCTGACCTGGGCGCCGAAGATCAGTCTCGCCAAGTAA	MTDLPTAKTRPASNWSAIWVLPLIALIIGGWLGWRAYNETGIEINVRFESGEGIQVNKTEVVYKGMTVGKVKDLTLDDEGNSKGVIATIEMNKEVEQYLKTGTRFWLVKPSVSLAGITGLETLVSGNYVAISPGEGESTRKFKALAEEPPLSDAKPGLHLTIKADRLGSLDRGSPVFYKQIQVGQVKSYSLSEDQRAVEIKVFIEPTYASLVRKHTRFWNASGISIDANLSGVKVRSESLASIVAGGIAFATPENRKDSPPTDPSLPFRLYEDFEAAAAGIRVKVKLSDFEGLQAGRTPVMYKGIQVGSLKTLKVDPDLSSASAELTLDPLAEDYLVAGAQFWVVKPSISLAGITGLEALVKGNYIAVRPGDKGGAPQREFEARAKAPPLDLRSPGLHLVLLTENLGSLEVGSPILYKQVKVGSVQSYQFSRKKKQLIIGVHIEKEYEGLVNGSTRFWNASGVTLTGGLTGGIQVKSESLQSLMAGGIAFETPEPNVPLKRRIPRFRLHEDRETAQQRGTVVTIKVDRADGLRSGTPIRFKGLDVGKIEDVDLSADMQSVLVTARITEVPERIARTGTQFWVVKPELGLMKTSNLETLVTGQYIEVQPATKNLGPQKNFVALAEPPESVVPEAGLSLVLSAARRGSLKIGVPVTYREVTVGKVTGYELGQTADRVLIHILIEPKYAPLVRSGTRFWNSSGFGLDFGLFKGATVRTESLETLIQGGIAFATPDGERMGNPARPEQTFPLFDKFEDEWLTWAPKISLAK	PGPT0014520_21	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_HERBICIDIAL_STRESS	HERBICIDIAL_STRESS-PARAQUAT_STRESS_REDUCTION,PGPT0014520-pqiB-K06192	NA	NA
D1-36_04269	624	pqiA_2	COG2995	Intermembrane transport protein PqiA	ATGCGAGCAATTGATGCGGGCATTTTGGTTTGCACTGAATGTCATGAATTGAATCGGCAGGACGACGCCGCCCAGAAGCAAGTCTGCACTCGTTGTGGCGCTCGTATTCACCCTCGGCGTCCCAACAGCTTGATGCGGACCTGGGCACTGCTGATCACGGCAGCGATTATCTATATCCCTGCCAACGTACTGCCAATCATGACCATCAACTCGCTCGGCCAGGGCGCGCCCAGCACCATCATGGCGGGTGTTATCGAGCTGGTTCAACACGGCATGATTCCCATTGCAGCGGTGGTATTCATTGCCAGTATCGTAGTCCCCACCTTCAAGTTGGTCGGTATCGCATTGCTGCTGTTTTCCGTGCAACGTCACCAACCCATGTCGGCGCGCCAGCGCATCCTGATGTATCGCTTCATTGAGTTTATCGGCCGCTGGTCGATGCTGGATATTTTTGTAATCGCCATTCTGGTGGCGGTGGTGAATTTCGGCCGGCTTGCCAGTGTCGAAGCCGGTCTTGGCGCCATCGCGTTTGCCAGCGTGGTGATCCTTACAATGATTGCCGCAGTAACCTTCGATCCCCGACTGATTTGGGATAACACGGAGTCGGATGACGACCATGACTGA	MRAIDAGILVCTECHELNRQDDAAQKQVCTRCGARIHPRRPNSLMRTWALLITAAIIYIPANVLPIMTINSLGQGAPSTIMAGVIELVQHGMIPIAAVVFIASIVVPTFKLVGIALLLFSVQRHQPMSARQRILMYRFIEFIGRWSMLDIFVIAILVAVVNFGRLASVEAGLGAIAFASVVILTMIAAVTFDPRLIWDNTESDDDHD				NA	NA	NA	NA	NA
D1-36_04270	660			hypothetical protein	ATGCCCGATCCGTCAGACATTGATAGGTTGTCAGATCTACCCCTGGACGATCTGGTAGCGTGTCATGAGTGTGACCTGTTGATGCGCAAGCCTCAGTTGGCCGATGGCGAGAAAGCCGAATGCCCGCGCTGTGGATACGAGCTCTACGCCCACCGGCACAATGTGATTGATCGCAGCCTTGCCCTGGTTGTCGCCGCTCTGCTGTTGTATGTACCCGCGAACTTTTTACCCATCATGCAGCTCAATCTGCTCGGACAATCCGCCCAAGACACCGTCTGGAGTGGCGTGGTCGGTCTGTTCGGCACCGGAATGCAAGGTGTATCGGTGGTGGTATTTCTATGCAGCATGGGCATTCCGTTGCTCAAGTTGCTTTGCCAATTGGCTGTACTGCTGACCATCCGCTGGAACGTTGGAAGAAGTTACGGCTTGTTGTGGTATCGCATTTATCATCATCTAAGGGATTGGGGGATGCTCGAGGTTTATCTCATGGGCGTACTGGTTGCCATCGTCAAACTTGCGGACATGGCAGCGATTACCGTGGGGTTGGGCCTGGTGTGCTTTATCAGCTTGTTACTGGTTCAGGTCTGGCTGGAAGTGGTGATGTCACCGCACCAGATCTGGCACGCGTTGTCAGGGGAAGACGTCCATGCGAGCAATTGA	MPDPSDIDRLSDLPLDDLVACHECDLLMRKPQLADGEKAECPRCGYELYAHRHNVIDRSLALVVAALLLYVPANFLPIMQLNLLGQSAQDTVWSGVVGLFGTGMQGVSVVVFLCSMGIPLLKLLCQLAVLLTIRWNVGRSYGLLWYRIYHHLRDWGMLEVYLMGVLVAIVKLADMAAITVGLGLVCFISLLLVQVWLEVVMSPHQIWHALSGEDVHASN				NA	NA	NA	NA	NA
D1-36_04276	624	msrQ		Protein-methionine-sulfoxide reductase heme-binding subunit MsrQ	ATGCGTTTCCTGGCATGGCGGATAGGCGTTTTCGTCGCAGCGGCGATATGGCCATTGCTTTGGCTTTACGAAGCGTTGATGAATTCGTTGGGACCGGATCCAGGCAAGGTGCTGGTGGATCGACTCGGGTTGGGAACCCTGGTACTGCTATTGATCACATTGAGCATGACGCCGCTGCAGAAGCTGACCGGCTGGGCTGGGTGGATTGCCGTAAGACGACAGTTGGGGTTGTGGTGCTTTGCTTACGTCGTGTTGCATTTGGGTGGATATGCGGCGTTCATCCTGGGGTTCGATTGGTCGCAGTTAGGCGTCGAGCTGAGCAAACGGCCCTACATCATCGTTGGAGCGCTCGGCTTTCTTGGCCTGCTGGCCTTGGCAGTTACGTCCAATCGTTATAGTCAAAGGCGACTTGGAGCCCGCTGGAAAAAGCTGCATCGGCTGGCCTACCTGATCCTCGGGCTTGGGTTGCTGCATATGTTGTGGATCGTGCGAGCGGATCTCAAGGAGTGGTCGATATATGCCTTTATAGGCGGCGTATTGTTGTTGCTGAGGATTGGGCCGGTTGCGCGGCGGATCCCTCGTTTAATCGGCAAGAAGATCCCGTCGGTAATAAAAACGAAATAA	MRFLAWRIGVFVAAAIWPLLWLYEALMNSLGPDPGKVLVDRLGLGTLVLLLITLSMTPLQKLTGWAGWIAVRRQLGLWCFAYVVLHLGGYAAFILGFDWSQLGVELSKRPYIIVGALGFLGLLALAVTSNRYSQRRLGARWKKLHRLAYLILGLGLLHMLWIVRADLKEWSIYAFIGGVLLLLRIGPVARRIPRLIGKKIPSVIKTK				NA	NA	NA	NA	NA
D1-36_04277	1014	msrP	COG2041	Protein-methionine-sulfoxide reductase catalytic subunit MsrP	ATGCTGATCAAGATCCCCAAGTCGTCCGATTGTCATGAGTCGGACGTCACGCCCGAATCCCTTTATCTATCCCGTCGCCAGATGCTGGGGGCCGCCGTGGCTGGCGTCGCCATAAGCAGTCTGCCGCGCTGGGCCGGCGCCGCTGATGTGGCGCGTTATCCCAATGTGGAGCCTGGAAACGCGCCGTCCTGGTTTGCCGATAAGCTGCCTGCTACCCAATGGGATGCGGTGACCGCCAAGGGGGAGGCAATCACACCCTTCAAGGATGCAACCCACTACAACAACTTTTATGAGTTCGGCACTGACAAAGGCGATCCGGCAGCCAATGCGGGATCGTTGAAAACCGAGCCCTGGACCGTGGTGGTGGATGGCGAGGTGGGCAAGCCGGGGCGCTATGGACTGGAAGATTTCATGAAGCCTTATCAGCTCGAAGAGCGTATCTACCGTTTGCGCTGCGTCGAGGCTTGGTCAATGGTCATCCCTTGGATTGGTTTCCCCATATCCGCGTTACTCAAGCAAGTCGAGCCGACGTCCAAGGCCAAATACATTCGTTTTGAAACCTTGCAGGACCCCAAGACCATGCCAGGCCAGCGTTCAGGTTTTGCATTGATCGACTGGCCCTACGTGGAAGGTTTGCGGTTGGATGAAGCGATGAACCCGCTGGCCATCCTGGCGGTTGGCATGTACGGAAGGGAGCTGCCTAACCAGAATGGCGCTCCTTTACGGTTGGTGGTGCCGTGGAAGTATGGCTTCAAGAGCGTCAAGTCCATCGTGCGCATCAGCCTGGTGGGTGAGCAGCCCAAGACCACTTGGCAAAGCATAGCCTCCGATGAGTACGGCTTTTATGCGAACGTGAATCCCACCGTCGATCATCCCCGTTGGACCCAGGCGCGAGAGCGTCGTTTGCCAAGCGGTCTGTTGAGCCCCAATGTGCGCGATACCTTGATGTTTAACGGATACCAGGAGGAAGTAGCTTCTTTATATGCAGGGATGGATCTGAGGAAAGACTACTGA	MLIKIPKSSDCHESDVTPESLYLSRRQMLGAAVAGVAISSLPRWAGAADVARYPNVEPGNAPSWFADKLPATQWDAVTAKGEAITPFKDATHYNNFYEFGTDKGDPAANAGSLKTEPWTVVVDGEVGKPGRYGLEDFMKPYQLEERIYRLRCVEAWSMVIPWIGFPISALLKQVEPTSKAKYIRFETLQDPKTMPGQRSGFALIDWPYVEGLRLDEAMNPLAILAVGMYGRELPNQNGAPLRLVVPWKYGFKSVKSIVRISLVGEQPKTTWQSIASDEYGFYANVNPTVDHPRWTQARERRLPSGLLSPNVRDTLMFNGYQEEVASLYAGMDLRKDY	PGPT0013075_300	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-SULFOXIDE_REDUCTASES,PGPT0013075-msrP|yedY-K07147	NA	NA
D1-36_04278	846			hypothetical protein	ATGAGCGAACGTCCCGACGAGCCGAACCAGGCTCCTGACGCCGAAAGCCTGTTGCCTATCGACGAGCATGTCGAAGAGGGGCATGACGCGGAAGGCCGTAAGGTCCGGCATCGTGGCATCTATCTGCTGCCGAACCTGTTTACCACCGCGAACCTGTTCGCCGGTTTCTATTCCATCATCAGCTCCATGAGTGCCCAGGCGGCATTAAGTGCGGGTGACAGCGCTGGGGCGAGTCGCTACTTCGCTTTTGCCGCGATTGCGATTTTCGTCGCCATGGTGCTCGATGGCCTGGATGGGCGCGTGGCCCGCATGACCAACACCCAGAGTGCATTCGGTGCCGAATACGATTCTCTGTCCGACATGGTTGCGTTCGGTGTCGCCCCTGCGTTGCTGGCATTCGGCTGGGCGCTGGGTGACATGGGCAAGGTCGGCTGGATGGTTGCTTTCATCTATGTAGCCGGTGCCGCGTTACGTCTGGCGCGTTTCAATACCCAGGTCGGCACTGCGGACAAGCGCTACTTCATTGGTCTCGCCAGTCCTGCGGCTGCAGGGGTCGTGGCGGGGGTGGTCTGGGCGTTCAGCGACTACGGGATCCAGGGCTCGAAGATGTCGTTCCTGGTCGCATTGTTGGTCGCGGCGGCCGGAATGCTGATGGTCAGCAACATCAAGTACAACAGCTTCAAGGAGCTGGACCTTAAGGGCCGTGTGCCGTTCGTGGCCATCCTGGCCGTAGTACTGGTGTTTGCGGTGGTGTTCAGCGATCCGCCACGTATCCTGCTGCTGGTCTTCCTCGCCTATGCCGCTTCCGGTCCGGTGCAATATTTGTTGCGTCTTCGCCGCCGCTAA	MSERPDEPNQAPDAESLLPIDEHVEEGHDAEGRKVRHRGIYLLPNLFTTANLFAGFYSIISSMSAQAALSAGDSAGASRYFAFAAIAIFVAMVLDGLDGRVARMTNTQSAFGAEYDSLSDMVAFGVAPALLAFGWALGDMGKVGWMVAFIYVAGAALRLARFNTQVGTADKRYFIGLASPAAAGVVAGVVWAFSDYGIQGSKMSFLVALLVAAAGMLMVSNIKYNSFKELDLKGRVPFVAILAVVLVFAVVFSDPPRILLLVFLAYAASGPVQYLLRLRRR	PGPT0007695_834	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-PSS-RELATED_EXOPOLYSACCHARIDE_METABOLISM	CE-EPS-PSS-RELATED_EXOPOLYSACCHARIDE_BIOSYNTHESIS,PGPT0007695-CHO1|pssA-K17103	NA	NA
D1-36_04279	1017	ilvC	COG0059	Ketol-acid reductoisomerase (NADP(+))	ATGAAAGTTTTCTACGATAAAGATTGCGACCTGTCGATCATCCAGGGCAAGAAAGTCGCCATCATCGGCTACGGTTCTCAAGGTCACGCCCAGGCGTGCAACCTGAAAGACTCCGGCGTTGACGTGACCGTGGGCCTGCGCAAAGGCTCGGCCACTGTTGCCAAGGCCGAGGCCCATGGCCTGAAAGTCACCGACGTGGCTTCCGCCGTAGCCGCTGCCGACCTGGTCATGATCCTGACCCCGGACGAGTTCCAATCGTCGCTGTACAAGAACGAAATCGAGCCGAACATCAAGAAAGGCGCCACCCTGGCCTTCTCCCACGGCTTCGCGATCCACTATAACCAGGTTGTGCCACGCGCCGACCTCGACGTGATCATGATCGCGCCGAAGGCACCGGGCCACACCGTACGCTCCGAGTTCGTCAAGGGCGGCGGTATCCCTGACCTGATCGCGATTTACCAGGATGCGTCCGGCAACGCCAAGAACGTGGCCCTGTCCTACGCTGCCGGTGTTGGTGGCGGTCGTACCGGCATCATCGAAACCACCTTCAAGGACGAGACTGAAACCGACCTGTTCGGCGAGCAAGCCGTTCTGTGCGGTGGTACCGTTGAGCTGGTGAAAGCCGGTTTCGAAACCCTGGTTGAAGCAGGCTACGCGCCTGAAATGGCCTACTTCGAATGCCTGCACGAACTGAAGCTGATCGTTGACCTCATGTACGAAGGCGGTATTGCCAACATGAACTACTCGATCTCCAACAACGCCGAGTACGGCGAGTACGTGACCGGTCCGGAAGTCATCAACGCCGAGTCCCGTCAGGCCATGCGCAATGCCCTGAAACGTATTCAGGACGGCGAATACGCCAAGATGTTCATCAGCGAAGGTGCTACTGGCTATCCTTCGATGACCGCCAAGCGTCGTAACAACGCCGCTCATGGTATCGAGATCATCGGCGAGCAACTGCGCTCCATGATGCCGTGGATCGGTGCCAACAAGATCGTCGACAAAGCCAAGAACTGA	MKVFYDKDCDLSIIQGKKVAIIGYGSQGHAQACNLKDSGVDVTVGLRKGSATVAKAEAHGLKVTDVASAVAAADLVMILTPDEFQSSLYKNEIEPNIKKGATLAFSHGFAIHYNQVVPRADLDVIMIAPKAPGHTVRSEFVKGGGIPDLIAIYQDASGNAKNVALSYAAGVGGGRTGIIETTFKDETETDLFGEQAVLCGGTVELVKAGFETLVEAGYAPEMAYFECLHELKLIVDLMYEGGIANMNYSISNNAEYGEYVTGPEVINAESRQAMRNALKRIQDGEYAKMFISEGATGYPSMTAKRRNNAAHGIEIIGEQLRSMMPWIGANKIVDKAKN	PGPT0008735_2792	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
D1-36_04280	492	ilvH	COG0440	Acetolactate synthase isozyme 3 small subunit	ATGCGACACATTATTTCCTTGCTTCTGGAAAACGAACCGGGTGCTCTGTCTCGCGTAGTGGGCCTGTTCTCACAGCGCAACTACAACATCGAAAGCCTGACCGTGGCACCAACGGAGGATCCGACCTTGTCGCGTCTGACGCTGACCACCGTGGGCCACGATGAAGTCATCGAGCAGATCACCAAGAACCTGAACAAGCTGATCGAGGTGGTCAAGCTGGTGGACCTGTCGGAAAGCGCTCACATCGAACGCGAACTGATGTTGGTCAAGGTCAAGGCCACCGGTGCCCAGCGCGCCGAGATCAAACGCACTACCGATATTTATCGTGGGCAGATCGTCGATGTCAGCGCCAGCGTCTATACCGTTCAGTTGACCGGTACCAGCGACAAGCTCGACAGCTTCATTCAATCGATCGGCACTGCCTCGATTCTGGAAACCGTACGCAGTGGCGTCACCGGGATTGCCCGTGGCGACAAAGTACTGAGCATCTAA	MRHIISLLLENEPGALSRVVGLFSQRNYNIESLTVAPTEDPTLSRLTLTTVGHDEVIEQITKNLNKLIEVVKLVDLSESAHIERELMLVKVKATGAQRAEIKRTTDIYRGQIVDVSASVYTVQLTGTSDKLDSFIQSIGTASILETVRSGVTGIARGDKVLSI	PGPT0008205_2784	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
D1-36_04281	1761	ilvI	COG0028	Acetolactate synthase isozyme 3 large subunit	ATGGGTCGGTATTCTGGCGTTTTAGAGGTGAACAACGTGGAGCTTTTATCTGGCGGTGAGATGCTCGTCCGCTTCTTGCGTGACGAAGGCGTCAAATATATCTACGGGTACCCCGGTGGTGCTCTTCTTCATGTCTATGATGCCCTGTTCAAAGAACCGGAAGTGACCCACATCCTGGTTCGCCACGAACAAGCGGCCACCCACATGGCTGACGGCTATGCCCGCGCCACCGGCAAGGCCGGCGTGGTTCTGGTGACATCCGGCCCCGGCGCCACGAACGCCATTACCGGTATCGCCACGGCCTATATGGACTCGATTCCAATGGTGATCATCTCCGGCCAGGTGCCCAGCACCATGGTCGGCACCGATGCGTTCCAGGAAACCGACATGATCGGTATCTCCCGGCCGATCGTGAAGCACAGCTTCATGATCAAGCACGCTTCGGAAATCCCGGAGGTCATGAAAAAGGCGTTCTACCTGGCCGAGTCCGGTCGTCCTGGCCCTGTCGTGGTCGACGTACCAAAAGACATGACCAACCCGGCCGAGAAGTTCGAATACATCTATCCGAAGAAAGCCAAGCTGCGCTCCTACAGCCCGGCCGTGCGCGGTCACTCGGGACAAATCCGCAAGGCTGCCGAAATGCTGCTGGCGGCCAAGCGTCCAGTGCTCTATTCCGGCGGTGGCGTGATCCTCGGCGGTGGTTCTGAGCCCCTGACCGAACTGGCCAAGATGCTCAACCTGCCTGTTACGAATACGCTGATGGGGCTCGGCGCCTACCCAGGTACCGACCGCCAGTTCATCGGCATGCTCGGCATGCACGGCAGCTACACCGCCAACCTGGCGATGCACCATGCCGATGTGATCCTGGCCGTGGGCGCGCGCTTCGACGACCGTGTCATCAACGGTCCGGCGAAGTTCTGTCCGAACGCCAAGATCATCCACATCGATATCGATCCGGCGTCCATCTCCAAGACCATCAAGGCAGACGTGCCTATTGTGGGTCCTGTCGAGAGCGTGCTGACCGAGATGGTCGCGATCCTCAAGGAAATTGGCGAGGCTCCTAACAAAGATGCCGTGGCCAGTTGGTGGAAGCAGGTCGATGAATGGCGTGGCGATCGGGGCCTGTTCCCGTACGACAAGGGCGACGGCAGCGTAATCAAGCCGCAGACCGTCATCGAGACGTTGTGCGAAGTGACCAACGGCGACGCCTTCGTGACGTCGGACGTGGGCCAGCACCAGATGTTCGCGGCGCAGTACTACAAGTTCAACAAACCCAACCGCTGGATCAACTCCGGCGGCCTCGGCACCATGGGCTTCGGATTCCCGGCGGCCATGGGCGTCAAGTTGAGCTTCCCGGACAACGATGTTGCCTGTGTGACCGGTGAAGGCAGCATCCAGATGAATATCCAGGAGCTGTCGACCTGCCTGCAATACGGTCTGCCGGTGAAAATCGTCAACCTGAACAACGGTGTACTGGGCATGGTTCGCCAGTGGCAGGACATGAGCTACGGCAGCCGTCACTCGCACTCCTACATGGAGTCGTTGCCGGATTTCGTCAAGCTGGTCGAGGCCTATGGTCACGTCGGCATCCGCATCACTGACCTGAAGGACTTGAAGTCCGGGCTCGAAGAAGCCTTCGCCATGAAGGATCGACTGGTGTTTCTGGACATCCAGGTCGACACCAGCGAGCACGTCTACCCGATGCAGATCAAAGACGGCTCCATGCGCGATATGTGGCTGAGCAAGACGGAGCGTACCTAA	MGRYSGVLEVNNVELLSGGEMLVRFLRDEGVKYIYGYPGGALLHVYDALFKEPEVTHILVRHEQAATHMADGYARATGKAGVVLVTSGPGATNAITGIATAYMDSIPMVIISGQVPSTMVGTDAFQETDMIGISRPIVKHSFMIKHASEIPEVMKKAFYLAESGRPGPVVVDVPKDMTNPAEKFEYIYPKKAKLRSYSPAVRGHSGQIRKAAEMLLAAKRPVLYSGGGVILGGGSEPLTELAKMLNLPVTNTLMGLGAYPGTDRQFIGMLGMHGSYTANLAMHHADVILAVGARFDDRVINGPAKFCPNAKIIHIDIDPASISKTIKADVPIVGPVESVLTEMVAILKEIGEAPNKDAVASWWKQVDEWRGDRGLFPYDKGDGSVIKPQTVIETLCEVTNGDAFVTSDVGQHQMFAAQYYKFNKPNRWINSGGLGTMGFGFPAAMGVKLSFPDNDVACVTGEGSIQMNIQELSTCLQYGLPVKIVNLNNGVLGMVRQWQDMSYGSRHSHSYMESLPDFVKLVEAYGHVGIRITDLKDLKSGLEEAFAMKDRLVFLDIQVDTSEHVYPMQIKDGSMRDMWLSKTERT	PGPT0008185_3977	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
D1-36_04282	423			hypothetical protein	ATGCGAATGATGTTATTGATGGCCAGCCTGTTGGTGGGCCTGAGCCCGATGAGCATGGCCGGCCAGATCTTCAAGTGGGTCGATGCCCAAGGCGTGACCCATTTCGGGGCCCAGCCGCCCGAGGGCGTCCAAGCGACCACCGTGGGCAAATCCGCGACGCCCGCCCCCAAACCTGCGGCACCAGCTTCAGGAGGAGTCATTGGAGACCAGAAAACCATCGATCAGCAGGTAAAACAGCAGGTTGCTGAACAGGAAGCTCAACTCAAGGCGTTTTGCGAACAGGCACGGACAAACCTGGCGCAGCTGCAGAACAACCCTAGGGTACGGGAAGAGGTGGAAGGCGAAATGCGCCGGCTTACCGACGAAGAGCGGCGCCAGCGCATCGATGAAACCCGTGCGCAGATCGACGAGAACTGCCAGTGA	MRMMLLMASLLVGLSPMSMAGQIFKWVDAQGVTHFGAQPPEGVQATTVGKSATPAPKPAAPASGGVIGDQKTIDQQVKQQVAEQEAQLKAFCEQARTNLAQLQNNPRVREEVEGEMRRLTDEERRQRIDETRAQIDENCQ				NA	NA	NA	NA	NA
D1-36_04283	330	yqcC	COG3098	putative protein YqcC	ATGGATGTTCGGTTTCCCAAGATTGCCGATCAGCTACTGCTGATCGAGCGAGAGCTGCGGGTCCAGGGCTGGTGGAGTGATGTTTCGCCTTCGGCCGAGGCGCTGGCCAGTGTCGAGCCGTTCGCCGTCGACACCCTGGATTTCGAGCAGTGGCTGCAATGGATCTTTCTTCCGCGCATGAAAGCCATCCTGGAAAACGACCTGCCGCTGCCCAACGCCTCGGGTATTCTGGCCATGGCTGAAATGGTCTATGCCCAACGGCCAGGGCAGGGGACCGAGTTGCAGCGACTGCTGGCACAATTCGACCAGCTGATCGCCGACGTCAGCTGA	MDVRFPKIADQLLLIERELRVQGWWSDVSPSAEALASVEPFAVDTLDFEQWLQWIFLPRMKAILENDLPLPNASGILAMAEMVYAQRPGQGTELQRLLAQFDQLIADVS				NA	NA	NA	NA	NA
D1-36_04284	720			hypothetical protein	GTGAACAAGTGGTTGATTCCAGCGGTAACCGCCGTGGCTTTGCTCAGTGGCTGTTCCACCGTACAGCGCGGTTCGATTCCGGTCGTCGACTCCGGTACGGCCGTTTCCAATAGCGAGCGAGTCTCGGCCAACGGTGGTTTCCGTCAGACGACGGTCAAACGGCCAGTACAAGGCCAGGCGCAGGCGATTCCCCAAGGGGACACCGGCGTGGTGGTAATGGTGCCGGGAGGTGGCGCCACCACGTCGGCACCGATCAGCAGCACGCCGATCACGCCGGGCCCGATCACGCCTGGACCTATCGAAACCTCGCCGATCAACCAGGGCAGCTACAGCATGCCATCGACGCCGAGCAGTACCCCATCGGCCAGTTCCGGTGGCTTGTCCGCCGATGAGCAACTGGACGGACCGGTATTGGCCCTGTTGACCACGGCGCAACAGCAGCAGGCGGGAGGGGATCTCAACGGCGCTTCCTCGAGCCTCGAGCGAGCCCAGCGTGTTGCGCCGCGTGAGCCGCAGGTTCTTTATCGTCTGGCCCAGGTACGCATGGCCCAGGGCGATGCGCCGCAAGCCGAACAACTGGCTCGTCGCGGCCTGACATTCTCCAGCGGTCGCCCGGCGCTCCAGGCGAGCCTGTGGGAATTGATCGCCCAGGCTCGCGAGAAGCAAGGCGATTCGGCAGGCGCGGCATTGGCCCGCCAGAAAGCCAAGGTTTCGCTCTGA	MNKWLIPAVTAVALLSGCSTVQRGSIPVVDSGTAVSNSERVSANGGFRQTTVKRPVQGQAQAIPQGDTGVVVMVPGGGATTSAPISSTPITPGPITPGPIETSPINQGSYSMPSTPSSTPSASSGGLSADEQLDGPVLALLTTAQQQQAGGDLNGASSSLERAQRVAPREPQVLYRLAQVRMAQGDAPQAEQLARRGLTFSSGRPALQASLWELIAQAREKQGDSAGAALARQKAKVSL				NA	NA	NA	NA	NA
D1-36_04285	2319	mrcB	COG0744	Penicillin-binding protein 1B	ATGACTCGTACCCGATCCCCCCGCACCCCCAAGAAACCACCCGCCAGCCGCCTGCGGCCCTGGTTGGGCTGGGCCCTTAAACTGAGCCTGGTAGGCCTTGTCGTGCTTGCCGGTTTTGCCGTCTACCTCGATGCCATCGTCCAGGAGAAGTTCTCCGGCAAGCGCTGGACCATCCCGGCCAAGGTCTACGCGCGGCCGTTGGAGCTGTTCGTCGGACAAAAGCTGAGCAAGGATGATTTCCTGACTGAGCTCGATGCCTTGGGTTATCGCCGCGAAAGCGTCGCCAATGGTCCCGGGGCGGCGTCGGTGAACGGCAATACCATCGACCTCAACACCCGCGGTTTCCAGTTCTATGAAGGCATGGAGCAGGCGCAACCGGTGCGGGTGCGGTTTTCCGGCGACTATGTAGCCGCGCTGACCGGTGCCAACAATGCCAAGCTGTCCGTGGTGCGTCTTGAGCCGCTGTTGATTGGCGGCCTATACCCCAAGAACCTCGAAGACCGGATCCTGATCAAGATCGACCAGGTGCCACCGTTCCTGCTCGATACGCTGATTGCCGTCGAGGACCGTGATTTCTACCATCACTTCGGCGTCTCGCCCAAGTCGATCGCCCGTGCCGTCTGGGTCAATACTTCTTCGGGGCACATGCGCCAGGGCGGAAGTACCTTGACCCAGCAGTTGGTCAAGAACTTCTACCTGACCAACGAGCGCAGCCTGACCCGCAAGTTGACTGAAGCCATGATGGCGTTGCTGCTGGAGCTGCACTACGACAAGCAGGAGATCCTGGAGGCGTACCTCAACGAGGTCTTCGTCGGGCAAGACGGCCAGCGCGCGGTGCACGGTTTCGGCCTGGCCAGCCAGTTCTTCTTCAGCCAGCCACTGTCCGAACTCAAGCTGCACCAGGTGGCGTTGTTGGTGGGCATGGTCAAGGGGCCGTCTTCCTACAACCCGCGTCGTAATCCGGAGCGTGCGCTTGAGCGCCGCAACCTGGTGCTCGATCTGTTGCAGCAGCAGGGCGTGGCAACGGCGGAACAAGTCGAGGCGGCGAAAAAGATGCCGCTGGGCGTGACCAAGCGTGGCAGCTTGGCGGACAGCTCGTTCCCTGGCTTCATGGACCTGGTCAAGCGTCAACTGCGAGAAGACTACCGCGACGAAGACTTGACCGAAGAAGGCCTGCGGATCTTCACCAGTTTCGACCCGATCCTGCAGATGAAGGCCGAGGCCTCGGTCAATGACACTTTCAAGCGACTGGCGGGGCGCAAGGGTTCCGACGAAGTCGAAGCGGCTATGGTGGTGACCAACCCTGAAACCGGGGAAGTCCAGGCGATGATCGGCAGCCGCCAGGCCAGTTTCGCAGGATTCAACCGGGCGTTGGACGCGGTGCGACCGATCGGCTCGCTGATCAAACCGGCGGTTTATCTCACTGCTTTGGAAAAGCCAAGCCAGTACACGCTCACCAGTTGGCTGTCCGATGAGTCGTTCTCGGTCAAGGGCGCGGACGGGCAGGTCTGGACGCCGCAGAACTATGATCGTCGTCCCCACGGCACGGTGTTCCTGTACCAAGGCCTGGCGCATTCCTACAACCTATCGACGGCCCGCCTCGGGCTGGAAGTCGGCGTGCCGAATGTGCTCAAGACCTTGGCGCGCCTGGGAGTGAACCGCGAATTCCCGGCCTTCCCATCGATGCTGTTGGGCGCCGGTGGCCTGGCTCCGATCGAAGTGGCGGCCATGTACCAGACCCTTGCCAATGGTGGCTTCAACACACCGATGCGCGGGATCCGCAGCGTGTTGACCGCCGATGGCGAGCCGCTCAAGCGTTATCCGTTCCAGATTCAGCAACGCTTCGACCCGGCTTCTATTTATCTGATCCAGAGCGCCATGCAACGAGTCATGCGCGAAGGCACTGGCAGTTCGGTCTATAACGTACTCCCACGGACGTTGACCCTGGCGGGCAAGACCGGTACGAGTAACGATTCGCGCGACAGCTGGTTCGCCGGATTCAGCCAGGACTTGCTGGCGGTTGTCTGGCTTGGCCGTGACGACAATGGCAAGACGCCGTTCACTGGCGCCACCGGTGCGTTGCAGGTCTGGACCAGTTTCATGCGCAAGGCCGATCCGCTGCCTCTGGACATGCCGCAACCCGACAACATCGTCCAGGCCTGGGTCGATTCGCGCACTGGGCAAGGCTCCGATGCCAACTGCCCGGGCGCTGTGCAGATGCCGTATATTCGCGGCAGCGAACCGCCACCCGGTGCAGCCTGTGGTGGTCAGAATCCCGCCGAATCGGTGATGGATTGGGTCAAGGACTGGATGAATTAA	MTRTRSPRTPKKPPASRLRPWLGWALKLSLVGLVVLAGFAVYLDAIVQEKFSGKRWTIPAKVYARPLELFVGQKLSKDDFLTELDALGYRRESVANGPGAASVNGNTIDLNTRGFQFYEGMEQAQPVRVRFSGDYVAALTGANNAKLSVVRLEPLLIGGLYPKNLEDRILIKIDQVPPFLLDTLIAVEDRDFYHHFGVSPKSIARAVWVNTSSGHMRQGGSTLTQQLVKNFYLTNERSLTRKLTEAMMALLLELHYDKQEILEAYLNEVFVGQDGQRAVHGFGLASQFFFSQPLSELKLHQVALLVGMVKGPSSYNPRRNPERALERRNLVLDLLQQQGVATAEQVEAAKKMPLGVTKRGSLADSSFPGFMDLVKRQLREDYRDEDLTEEGLRIFTSFDPILQMKAEASVNDTFKRLAGRKGSDEVEAAMVVTNPETGEVQAMIGSRQASFAGFNRALDAVRPIGSLIKPAVYLTALEKPSQYTLTSWLSDESFSVKGADGQVWTPQNYDRRPHGTVFLYQGLAHSYNLSTARLGLEVGVPNVLKTLARLGVNREFPAFPSMLLGAGGLAPIEVAAMYQTLANGGFNTPMRGIRSVLTADGEPLKRYPFQIQQRFDPASIYLIQSAMQRVMREGTGSSVYNVLPRTLTLAGKTGTSNDSRDSWFAGFSQDLLAVVWLGRDDNGKTPFTGATGALQVWTSFMRKADPLPLDMPQPDNIVQAWVDSRTGQGSDANCPGAVQMPYIRGSEPPPGAACGGQNPAESVMDWVKDWMN	PGPT0023880_814	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023880-mrcB-K05365	NA	NA
D1-36_04286	1638		COG0645	putative protein	ATGAGTCCGCCAAGGTTTGCGTTAGCGCCGCTTGCGGCCATAATGACCGCCTTGAATTTTCCAGTCTCTGAAGGATCGCCCGTGAGCCAATCACTGATCGCTGCCCTGCAAAACCCAGCCCTCTACCCGCATCCCATCGAAGGGTTCCAGGTCATCGAAACCCACATCTCCTGGGTGTTGCTCACCGGCCCCTACGCTTACAAATTCAAGAAACCGGTCAATTTCGGCTTCCTCGACTTCACCAGCCTCGACGCACGCAAGCATTTCTGCGGCGAAGAACTGCGCCTGAACCAACGCCTGACCCAGGACCTTTACCTGGAAGTCTTGCCGATCACTGGCAGTGCCCAAGCGCCACAACTGGGCGGCGACGGCCCGGCTATCGAATACGCCTTGAAAATGCGCCAGTTCCCCCAAAGTGAACTGCTCAGCACGCTGCAGGCCAATGGCGAACTGACCACCGCGCACATCGATGAAATGGCCGCGCAGATCGCCCAGTTCCACCTCACCACGCCAAAAGTGCCTGCCGACAATGCGGCGGGCACACCAGACAGCGTCATGGCGCCGGTGCGGCAGAATTTCGAACAGATCCGTCCATTCCTCAACGACAAGGCTGACCTGCTGCAACTCGAGGCTCTCCAGGCCTGGGCGGAGACCAGCTTCGAGCGGCTCAAGCCGTTGTTTACCCAACGCAAGGCCGACGGTTTCATTCGCGAATGCCACGGCGACATCCATCTGGGCAACGCCACGGTGATCGACGGCAAAGTGGTGATCTTCGACTGCATCGAATTCAACGAGCCATTCCGTTTCACCGATGTCTACGCCGACACCGGGTTCTTGGCGATGGACCTTGAAGACCGCGGCCTCAAGTCCCTGGCGCGACGCTTCGTCAGCCAATACCTGGAGCTGACCGGCGATTACGATGGCCTGGAATTGCTGAACTTCTACAAGGCCTATCGTGCCCTGGTCCGCGCCAAGGTCGCGCTGTTCAGCATGCCCGCCGAAGCCGATCCGGTGCAGCGCGCCACGACCCTGCGTCAATACCGCAACTACGCCAACCTGGCGGAAAGCTACAGCACGATTCCTTCGCGCTTCCTGGCCATCACCCATGGCGTGTCCGCCGTTGGCAAAAGCCACGTAGCGATGCGCCTGGTGGAAGCGCTTGGCGCGATTCGCCTGCGCTCGGACGTGGAACGCAAGCGCCTGTTCGGTGAACAGCAAGTGCCGAACGATCCACAGGCCGGCATCTATAGCAGCGATGCCAGCAGCGCCACGTACGCCCGGCTGCATGAGGTCGCCGATGCGATCCTCCACGCCGGGTTCCCCGTGGTGATCGATGCCACCTACCTCAAGCATGACCAGCGCGACGCCGCGGCCAAGATTGCCGAAGGCACGGGCGCGCCGTTCCTGATTCTGGATTGCGAGGCGCCGCAAGCAGTGATCGAGAGCCGGCTCGCCCAGCGCCAAGCCGACCAGAAGGATCCTTCCGATGCCAACCTGACCGTCATCGCCTCCCAGCAGGCCAGCCGGGAAGCATTGACGCCGGCAGAAATCCTTTGCAGCAAACGGGTTCAAACCAACGAAAGCGGCACGCTGGATGTCGTGGTGGCGCAGATCCGCCAGCGCTTGCCGGGCCTGTAG	MSPPRFALAPLAAIMTALNFPVSEGSPVSQSLIAALQNPALYPHPIEGFQVIETHISWVLLTGPYAYKFKKPVNFGFLDFTSLDARKHFCGEELRLNQRLTQDLYLEVLPITGSAQAPQLGGDGPAIEYALKMRQFPQSELLSTLQANGELTTAHIDEMAAQIAQFHLTTPKVPADNAAGTPDSVMAPVRQNFEQIRPFLNDKADLLQLEALQAWAETSFERLKPLFTQRKADGFIRECHGDIHLGNATVIDGKVVIFDCIEFNEPFRFTDVYADTGFLAMDLEDRGLKSLARRFVSQYLELTGDYDGLELLNFYKAYRALVRAKVALFSMPAEADPVQRATTLRQYRNYANLAESYSTIPSRFLAITHGVSAVGKSHVAMRLVEALGAIRLRSDVERKRLFGEQQVPNDPQAGIYSSDASSATYARLHEVADAILHAGFPVVIDATYLKHDQRDAAAKIAEGTGAPFLILDCEAPQAVIESRLAQRQADQKDPSDANLTVIASQQASREALTPAEILCSKRVQTNESGTLDVVVAQIRQRLPGL				NA	NA	NA	NA	NA
D1-36_04287	342			hypothetical protein	ATGAGCCACCCAAAGCTTCTCGATACCCCGCTTTATGCCTTGTTGCGCAAAGATGACGTCGCCGGGTTTAACGCCGAACGACCTCAAGGTCCTATCGACATGCGCGGCGGCGATTTTCGTGGCCTCGACCTGCGGGAACTGAACGCCGACGACGTGGATTTCACGGATGCCTACTTCCGTTCCACCGATTTGCGCGGCATCGATTTTCGCAAGTCGTCACTGGAAGGCGCGAGCCTGGCTCATGCGCAGATCTCCGGCACCTACTTTCCACCCGAGCTATCTGCCGACGAGATCCTGATGTCGATGAATTTCGGCACTCGCCTGCGCTATCGCACCCGCTGA	MSHPKLLDTPLYALLRKDDVAGFNAERPQGPIDMRGGDFRGLDLRELNADDVDFTDAYFRSTDLRGIDFRKSSLEGASLAHAQISGTYFPPELSADEILMSMNFGTRLRYRTR				NA	NA	NA	NA	NA
D1-36_04288	273			hypothetical protein	ATGAATGATGAACTGCAACACCTGAAGAATCTGGGCAAGACATCAGCCCAGTGGCTGCACGCCGTGGGCATCCACAGCGCCTCGGATCTGCGCCGGCTCGGCGCAGTAGACGCCTATCGCGCCGTACGCACTCGCGGGTTTCGCGCTTCCAAAGTGCTGCTGTATGCCATCGAAGGCGCGCTGATGGACATGCATTGGAACGATATCCCCCCGGAACGCAAGGAAGCCCTCAACAAACAGTTGGATGCCATTTCGGCGCGGCACAAAGCCTGA	MNDELQHLKNLGKTSAQWLHAVGIHSASDLRRLGAVDAYRAVRTRGFRASKVLLYAIEGALMDMHWNDIPPERKEALNKQLDAISARHKA				NA	NA	NA	NA	NA
D1-36_04290	849			hypothetical protein	ATGCGCTTGATCCTGATGCTGGCATTGGCTGTGTTGACGGCCTGTCAAACTGTCGAGCCCCCTCCGCTTGGTGGACGGATTCGTGATTTGCACACCGGCCAATCGATCACGGCCCAGGCATTGGTCAAGCGTTTGGCGGGTGCCCAGCGAGTCGTGGTTGGAGAGCAACATGACAATCGCGATCACCATGAATTGCAGCGTTGGCTGCTCCAGGCCTTGGCCGAGCGACGGGCCCAAGGCAGCCTGTTACTGGAGATGTTGACGCCCCAGCAACAACCACGGGTCGACGCGGTTCGCCAGTTGTCTGCCTTGCCAAGGGATCTGCCCGGCGCGTTGGACTGGTCGCCAGGTTGGGACTGGAGCCTCTACGGGCCCATGGTCGAGTTCGCCCTGATGCAATCCTATCCCGTGCTGGCGGCCAATCTAGACAGCGCGCAGATCCAACGGATTTATCGTCAAGCGCCTGTGTTGCAGGGCATTCGTTCCAATTCGGATGCTGTGAAGGGCGTGCTGCTGGAGCAGATCCGTGAGTCCCACTGCGGACTCCTGCCAGAGTCGCAAATGCCCGCGATGCTAGCTGTGCAGCAGCAGCGTGACCGGCGCATGGCCGAACGATTGCTTGAGGCTCCCGCGCCGGCGTTGTTGTTCGCGGGCGCCTGGCATGGCCGCAAGGACGTTGGCGTGCCGCTGCATGCGCTGGATCTGGGGGCCCACGATGCGCCGTCGGTGCTGATGTTGGCTGAAGAGGGCAGCAATGTGACACCGGCCATGGCGGATTACGTGTGGTACACCCCGGCAATGCCGCCGCAGGATTACTGCGCGCAAATGCGTTCAGGCGACGCGAAGTGA	MRLILMLALAVLTACQTVEPPPLGGRIRDLHTGQSITAQALVKRLAGAQRVVVGEQHDNRDHHELQRWLLQALAERRAQGSLLLEMLTPQQQPRVDAVRQLSALPRDLPGALDWSPGWDWSLYGPMVEFALMQSYPVLAANLDSAQIQRIYRQAPVLQGIRSNSDAVKGVLLEQIRESHCGLLPESQMPAMLAVQQQRDRRMAERLLEAPAPALLFAGAWHGRKDVGVPLHALDLGAHDAPSVLMLAEEGSNVTPAMADYVWYTPAMPPQDYCAQMRSGDAK				NA	NA	NA	NA	NA
D1-36_04291	768	hmuV	COG4559	Hemin import ATP-binding protein HmuV	ATGTTACGAGCGCAGAACCTGTACATTCGCCGGGGCCACAAAACCGTATTGGCGGATATTGATCTGCAGCTCACTCCGGGCGAAGTGCTGGGTGTGCTGGGTCCCAATGGGGCGGGCAAAAGTACGCTGCTCGCCGGTTTGTGTGGAGAAATGCGTCCGGCACAGGGAGAGGTCTGGCTCGATGATCGGCCACTGGCCCAGTGGGAAGGCAGCGAGCGCGCCCGTCGCCTGGCGGTATTGCCGCAGACCTCGACCTTGGATTTCGCATTCCGTGTTGAAGAAGTCGTCGGCCTCGGGCGGCTGCCCCACCAGAGCGGCCGGATACGTGACGGGCAAATTGTCGAATTGGCGCTGCGGGCTGCGGACGCCGCACATTTGCAAGGTCGCAATTACCTGAGCTTGTCCGGCGGTGAGCGACAGCGGGTCCATCTGGCCCGGGTACTGGCGCAATTGTGGCCGGGCGAGGCGGGACAGATCCTGCTGCTGGACGAACCCACTTCCATGCTCGATCCGCTGCATCAGCACACCATTCTGCAAGCGGTGCGTGAATTTTCCGGTCGTGGCGCGGCGGTGCTGGTGATCCTGCATGACCTGAACCTGGCGGCGCGTTACTGTGATCGCCTGTTGCTGCTGGCGTCCGGCAGGTCGGTGGCCCTGGATTCGCCCCAGCAAGTGCTGCGCCCGGAGCCCCTCAAGGCGGTGTTTGGCCTGGACGTGCTGGTGCAGTCCCATCCGGAGCGCGGCCATCCGTTGATCATTGCCCGCTGA	MLRAQNLYIRRGHKTVLADIDLQLTPGEVLGVLGPNGAGKSTLLAGLCGEMRPAQGEVWLDDRPLAQWEGSERARRLAVLPQTSTLDFAFRVEEVVGLGRLPHQSGRIRDGQIVELALRAADAAHLQGRNYLSLSGGERQRVHLARVLAQLWPGEAGQILLLDEPTSMLDPLHQHTILQAVREFSGRGAAVLVILHDLNLAARYCDRLLLLASGRSVALDSPQQVLRPEPLKAVFGLDVLVQSHPERGHPLIIAR	PGPT0003760_5879	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
D1-36_04292	1038	hmuU_2	COG0609	Hemin transport system permease protein HmuU	ATGACGGCGCTGGTCAAGCCGCGCACGTTGTTTATTGGGCTGGGCCTGCTGTGTCTGCTGGCGACCTGGCTGTCCCTGGCGTTGGGGCCGGTGAGCTTGCCCTTATTCGATACCTTGCGGGCCGCCCTGCGCCTGTTGGGTTTGCCGGTGGCCGCCGATGGCCTGGAGCAGGCCGAGCTGATCCTTGGCCAGATTCGTCTGCCGCGCACGTTGCTGGGACTGATGGTGGGGGGAGTGTTGGCGCTGTCCGGCGTGGCGATGCAAGGATTGTTTCGTAACCCGCTGGCCGACCCGGGGTTGGTGGGCGTGTCCAGTGGCGCGGCGTTGGGTGCCGCGTTTGCCATCGTCGCCGGCTCGGCGCTGGGCGGGGTGCCCGAAGCGTTGGGACCCTACGTGTTGTCGTTGTGTGCGTTTCTCGGCGGGCTTGGAGTCACGGCGCTGGTCTATCGCCTCGGCCGGCGCAACGGCCAGACGCATGTCGCCACCATGCTCTTGGCTGGCATTGCCTTGACCGCGCTCTCCGGTTCCGCGGTCGGCTTGTTCACTTACCTGGCGGACGATGCGACCTTGCGCACCCTGACGTTCTGGAACCTGGGGAGCCTAAACGGTGCCAGCTACGGCCGGTTGTGGCCGTTGTTGCTGGTCAGCGTCGGCGTCGCGATCTGGCTGCCGCGTCGCGCCCGGGCGCTTAACGCCTTGCTGCTCGGCGAATCGGAAGCCGCCCATCTGGGCATCGACGTCGAACGGCTCAAGCGAGAGTTGGTGTTCTGCACCGCCTTGGGCGTCGGGGCTGCCGTCGCGGCGGCGGGCATGATCGGCTTTGTCGGGCTGGTGGTGCCGCACCTGGTACGGTTGATGGCGGGGCCGGACCACCGCGTCCTGTTGCCGGCATCGGTGCTGGCGGGGGCGAGCCTGTTGCTGCTCGCCGATTTGGTCGCGCGTCTGGCGCTGGCCCCGGCTGAGCTGCCGATCGGCATCGTCACGGCCTTCATCGGCGCGCCGTTTTTCCTTTATCTTTTGTTGCGGGGGCGCGCCTGA	MTALVKPRTLFIGLGLLCLLATWLSLALGPVSLPLFDTLRAALRLLGLPVAADGLEQAELILGQIRLPRTLLGLMVGGVLALSGVAMQGLFRNPLADPGLVGVSSGAALGAAFAIVAGSALGGVPEALGPYVLSLCAFLGGLGVTALVYRLGRRNGQTHVATMLLAGIALTALSGSAVGLFTYLADDATLRTLTFWNLGSLNGASYGRLWPLLLVSVGVAIWLPRRARALNALLLGESEAAHLGIDVERLKRELVFCTALGVGAAVAAAGMIGFVGLVVPHLVRLMAGPDHRVLLPASVLAGASLLLLADLVARLALAPAELPIGIVTAFIGAPFFLYLLLRGRA	PGPT0003770_2889	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
D1-36_04293	870	hmuT	COG4558	Hemin-binding periplasmic protein HmuT	ATGCGCCTGAATGTCCGCGTTGCTGCGCTCTGTATCGTCTTGCTGGCCTGCCAGGGAGCGTTGGCGGCCGATCTTGCGCAGCGCTGGGTGAGCGCCGGCGGCGCCTTGTCCGAGTGGGTCGGCGCGCTGGGTGGTGAATCGAAACTGGTGGGCGTGGACACGACCAGCCAGCATCCCGAATCGCTGCGAGCGTTGCCCAGTATCGGTTATCAGCGGCAGCTATCGGCGGAGGGCGTGCTGAGCCTGCGTCCGCAGATTCTGGTGGGTACCGAAGAAATGGGGCCGCCTCCGGTTTTGGCGCAGATTCGCAACGCCGGGGTGCAGGTCGAACTGTTCTCTGCGGCGCCAAGCCTGGCGGCGCTCCAGGACAATCTGCGTCACCTGGGTCAGTTGTTGGGAGCCGAGTCCAGGGCTAGAGAATTGTTCGAGGATTATCAACAGAGTCTTTCCCGGCATAGCGTCAGGGTGGATGAAGCCCGGCTCAAGCAAAAGGCGCCTGGTGTATTGCTGTTGGTGGGCAGCGCTGGCGGCAAGCCGCTGGTCGCGGGCAAGGACACCGCCGCTGATTGGCTACTGCAGCAGGCCGGCGGCCACAACCTGGCGACCCACAGCGGTTACAAACCGTTCTCCGTTGAAACCCTGGCCAGCCTGAACCCTGAAGTGCTGGTCTTCGCCGATCGTGCCTTGCGCGGTGAAGAGGCGCGCGCGGCGTTGTTCAAGGAAAATCCGATCCTGTCCTCGACGCGCGCCGCCAGAGACGGGCGCGTCATGGAGCTGGACCCAACGTTGCTGGTGGGCGGACTAAGCCCACGTTTGCCGCAAAGCCTGGTGAAGCTGACCAATGCGTTCTATCCGGCCCAGGTGCCATGA	MRLNVRVAALCIVLLACQGALAADLAQRWVSAGGALSEWVGALGGESKLVGVDTTSQHPESLRALPSIGYQRQLSAEGVLSLRPQILVGTEEMGPPPVLAQIRNAGVQVELFSAAPSLAALQDNLRHLGQLLGAESRARELFEDYQQSLSRHSVRVDEARLKQKAPGVLLLVGSAGGKPLVAGKDTAADWLLQQAGGHNLATHSGYKPFSVETLASLNPEVLVFADRALRGEEARAALFKENPILSSTRAARDGRVMELDPTLLVGGLSPRLPQSLVKLTNAFYPAQVP				NA	NA	NA	NA	NA
D1-36_04294	318			hypothetical protein	ATGAAATTTCTTTGTAGCACCGCCGAGCTGCCTGAAAGCGGCAGTCGCGGTTTCGACGTGGATGGGCGCAAGCTCCTGGCCGTGCGGCGCGCAGGCCAGGCGTATGTCTATCTCAACCGCTGCCCGCACCGCGGCGTGCCGCTGGAATGGCAACCCGACCAGTTTCTCGATACCAGCGCCAGCCTCATCCAGTGCGCGACCCACGGCGCGCTGTTCCTGATCGAAAGCGGTGAGTGCGTCGCCGGCCCTTGCGCGGGGCAATTCCTGGCGGCGCTAGATAGCCGGGAGGACGATCAAGGCATTTGGGTCGAGCTGTAG	MKFLCSTAELPESGSRGFDVDGRKLLAVRRAGQAYVYLNRCPHRGVPLEWQPDQFLDTSASLIQCATHGALFLIESGECVAGPCAGQFLAALDSREDDQGIWVEL				NA	NA	NA	NA	NA
D1-36_04295	759	sfsA	COG1489	Sugar fermentation stimulation protein A	ATGCTCTTTTCCCCTGCCTTGGAAGAAGGACGGTTGATTCGACGTTACAAACGTTTTCTCGCCGATATCGAGACCGTTCATGGCGAACTGTTGACAATTCATTGTCCCAACACCGGCTCGATGCTCAATTGCATGGCCGAGGGCGCGCGCGTCTGGTTCAGTCGCTCCAACGACCCCAAACGCAAGTTGCCGGGCACTTGGGAAATAGGCGAAACCCCTCAGGGGCGCTTGGCCTGTATCAACACCGCGCGGGCCAATGGGTTGATCGAGGAAGCGCTGCGCGCCGGTGTCATCAGTGAGCTGAACGGGTTCATAGGGCTCAAGCGGGAAGTGGCCTATGGCGTCGAGAACAGCCGCATCGATTTTCGGCTCGACTACGCGGATCGCAGCTCGGCCTGGGTCGAGGTGAAAAGCGTCACGCTGGGTTTCGACGGGACGAATGTCGCGGCGTTCCCCGATGCGGTAACCCTGCGTGGCGCCAAGCACCTGCGAGAGCTGGCTTGCCTGGCGCGGGAGGGCGTGCGCGCGGTGCAGTTGTATTGCGTGAACCTGAGCGGCATCGATGCGGTGCGGCCGGCGCACGAAATCGACCCGGTGTACGCCGCGGCGTTGCGCGAGGCCGTGGCCGCCGGGGTGGAAGTGTTGGCATATGGCGCCATGCTGACGCCGGAGCAGATGTGGGTCGATCGTCCGCTGCCGGTGTTGCTTGAGCCACTACAGCTCGACCCAAATGCCTTGATCGTCCTCCCGGCTATCTAG	MLFSPALEEGRLIRRYKRFLADIETVHGELLTIHCPNTGSMLNCMAEGARVWFSRSNDPKRKLPGTWEIGETPQGRLACINTARANGLIEEALRAGVISELNGFIGLKREVAYGVENSRIDFRLDYADRSSAWVEVKSVTLGFDGTNVAAFPDAVTLRGAKHLRELACLAREGVRAVQLYCVNLSGIDAVRPAHEIDPVYAAALREAVAAGVEVLAYGAMLTPEQMWVDRPLPVLLEPLQLDPNALIVLPAI	PGPT0017980_152	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGE	PLANT_DERIVED_SUGAR_FERMENTATION,PGPT0017980-sfsA-K06206	NA	NA
D1-36_04296	1173	aspC_2	COG0436	Aspartate aminotransferase	ATGGCCCAGCCCTACAGTGCACGCAGCCGTGCCATCGAACCATTCCATGTCATGGCCCTGCTGGCGCGCGCCAACGAACTGCAGGCCGCCGGGAACGATGTCATTCACCTGGAAATCGGCGAGCCGGACTTCACCACCGCCGAGCCGGTCATCCAGGCCGGCCAGGCTGCCCTGGCCGCCGGCAAGACCCGCTACACCGCGGCCCGGGGCATTCCCGAGCTGCGCGAAGCCATCGCCGGTTTCTACGCGCAGCGCTACGGCGTGGAGATCGATCCCCGGCGCGTCCTGGTTACTCCGGGCGGCTCCGGCGCGTTGTTGCTGGCCAGTGCTCTGCTGGTGGACCCTGGTAAACATTGGCTATTGGCCGATCCAGGCTACCCCTGCAACCGTCATTTCCTGCGGCTGATCGAAGGCGCGGCACAATTGGTGCCCGTGGGGCCGGACGTGCGTTATCAGTTGACGCCGGACCTGGTGGATCGCCATTGGGACCAGGACAGCGTCGGTGCCCTGGTGGCTTCCCCGGCCAACCCGACCGGGACGATTCTCAGCCGGGATGAATTGGCGGGATTGTCCAAGGCGATCAAGGCCCACAACGGGCACCTGGTCGTCGACGAGATCTATCACGGCCTGACCTACGGCACCGACGCCGCCAGCGTGCTGGAAGTCGATGACGATGCGTTCGTCCTTAATAGCTTTTCCAAATATTTCGGCATGACCGGCTGGCGGCTGGGCTGGCTGGTGGCGCCTTCGGCGGCCGTCGCTGAGTTGGAAAAGCTCGCGCAAAACCTCTACATCAGTGCGCCAAGCATGGCCCAGTACGCGGCCTTGGCCTGTTTCGAGCCGGCGACCATTGCGATTTTCGAACAACGGCGCGCCGAGTTCGCGCTGCGTCGTGACTTTCTCCTGCCAGCGTTGCGTGAGCTGGGGTTCGGCATCGCAGTGGAGCCCCAAGGGGCGTTCTACCTTTATGCAGATATCAGCGCTTTCGGCGCAGATGCCTTCGCGTTCTGCCAGCACTTCCTGGAAACCGAACACGTGGCGTTCACGCCGGGGCTCGATTTCGGTCGTCATCAGGCCGGTCATCACGTGCGTTTCGCCTACACCCAAAGCCTGCCGCGGCTGCAAGAAGCGGTGGAGCGAATCGAACGCGGACTGCGGAGCTGGCAAGGCTGA	MAQPYSARSRAIEPFHVMALLARANELQAAGNDVIHLEIGEPDFTTAEPVIQAGQAALAAGKTRYTAARGIPELREAIAGFYAQRYGVEIDPRRVLVTPGGSGALLLASALLVDPGKHWLLADPGYPCNRHFLRLIEGAAQLVPVGPDVRYQLTPDLVDRHWDQDSVGALVASPANPTGTILSRDELAGLSKAIKAHNGHLVVDEIYHGLTYGTDAASVLEVDDDAFVLNSFSKYFGMTGWRLGWLVAPSAAVAELEKLAQNLYISAPSMAQYAALACFEPATIAIFEQRRAEFALRRDFLLPALRELGFGIAVEPQGAFYLYADISAFGADAFAFCQHFLETEHVAFTPGLDFGRHQAGHHVRFAYTQSLPRLQEAVERIERGLRSWQG				NA	NA	NA	NA	NA
D1-36_04297	444	dksA_2	COG1734	RNA polymerase-binding transcription factor DksA	ATGCCCACCCAAGCAAAGCAGAATCAAAATCAGTCGCTCAGCGGGTTTGAGCCGTATGTCGCGAAAGAGGGCGAAGAGTACATGGGCGCCCCCATGCGCGCGCACTTCACCAAGATCCTGAACAAGTGGAAACAGGACTTGATGCAGGAAGTCGACCGCACGGTTGACCATATGAAGGACGACGCTGCTAACTTCCCCGACCCGGCCGACCGTGCCAGCCAGGAAGAAGAATTCAGCCTTGAACTGCGCGCTCGCGACCGTGAACGCAAGCTGATCAAGAAAATCGACAAGACGCTGCAACTGATCGAAGACGAAGAATACGGCTGGTGCGAGTCCTGCGGCGTCGAGATTGGCGTCAAGCGACTGGAGGCACGTCCGACCGCCGACATGTGCGTCGACTGCAAGACCCTCGCGGAAATCAAGGAAAAACAGGTCGGCAAATAA	MPTQAKQNQNQSLSGFEPYVAKEGEEYMGAPMRAHFTKILNKWKQDLMQEVDRTVDHMKDDAANFPDPADRASQEEEFSLELRARDRERKLIKKIDKTLQLIEDEEYGWCESCGVEIGVKRLEARPTADMCVDCKTLAEIKEKQVGK	PGPT0014560_1004	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
D1-36_04298	882	gluQ	COG0008	Glutamyl-Q tRNA(Asp) synthetase	ATGACTGACTACACCGGACGCTTCGCCCCCACCCCCAGCGGCCACTTGCATTTCGGCTCGCTGGTCGCCGCCCTGGCGTCGTACCTCGACGCCCGGGCCGTGGGCGGACGCTGGTTGTTGCGCATGGAAGACCTCGACCCGCCCCGGGAAGAGCCCGGCGCGCAGGCGGCAATTCTCAAGGCGCTGGAAAGCTACGGCTTTGAATGGGATGGTGAAATGGTGCGCCAGAGCGACCGCCACGCCGCCTACCAGCAGGTCATCGATCGCTTGTTCAACCAAGGCCTCGCCTACGCCTGCACCTGTTCGCGCAAGCAACTGGAACCCTATCAGGGCATTTATCCGGGACTGTGCCGCAACGCAGGTCACAACATCGAAGACGCCGCCATCCGCCTGCGCGTCCCCGAACTTGAATACCATTTCGTCGATCGGGTCCAAGGCGTATTCCGCCAGCACCTGGGCCGCGAGGCCGGCGACTTTGTGATTCGTCGCCGCGACGGGCTGTATGCCTACCAATTGGCAGTGGTCCTGGACGACGCCTGGCAGGGTGTCACCGATGTAGTCCGAGGCGCCGACCTGCTGGATTCCACGCCGCGCCAGCTATACCTGCAAGAACTGCTTGGGTTGCCACAACCGCGCTATCTGCACGTGCCACTGATTACCCAGCCGGACGGGCACAAACTCGGCAAATCCTATCGTTCACCACCCTTGACGGCCGATCAGGCAACGCCTCTGCTGTTGAGAGCGCTGCGCGCACTGGGCCAGCAACCGGCATCGGAGTTGGTCGATGCCAGCCCACGGGAGTTGCTGGCCTGGGGCATTCGCCACTGGGATGCGGGAAAGATCCCACGCACACTGTCCCTGCCCGAAGCGCAAATACAGTGA	MTDYTGRFAPTPSGHLHFGSLVAALASYLDARAVGGRWLLRMEDLDPPREEPGAQAAILKALESYGFEWDGEMVRQSDRHAAYQQVIDRLFNQGLAYACTCSRKQLEPYQGIYPGLCRNAGHNIEDAAIRLRVPELEYHFVDRVQGVFRQHLGREAGDFVIRRRDGLYAYQLAVVLDDAWQGVTDVVRGADLLDSTPRQLYLQELLGLPQPRYLHVPLITQPDGHKLGKSYRSPPLTADQATPLLLRALRALGQQPASELVDASPRELLAWGIRHWDAGKIPRTLSLPEAQIQ	PGPT0008460_6020	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
D1-36_04299	177			hypothetical protein	ATGTACATCTATCGCTTGGTCCTGCTCCTGGTAGTGGGGATTTACCTGTTCTCCCCAGCCATCATGGATTGGTGGATCGATGCCACGGGTGCCTGGTATCGGCCCTATCTGCTCTGGCTGATCCTGATCGTCGTGACCTTCATCCTGCAGAGCCAAAAAGATGCCGATGAGCTTTAG	MYIYRLVLLLVVGIYLFSPAIMDWWIDATGAWYRPYLLWLILIVVTFILQSQKDADEL				NA	NA	NA	NA	NA
D1-36_04300	2955	sasA_16		Adaptive-response sensory-kinase SasA	ATGCCGATGAGCTTTAGCCTGACCCAGATGATCCTGATCAGCGGCGCCTATCTGGCGGTGCTGTTCGGCGTGGCTTGGATCAGTGAACGAGGCATGATCCCCCGGGCAATCATTCGCCACCCGCTGACCTACACCCTCTCGTTGGGCGTCTACGCCAGTGCGTGGGCGTTTTATGGCACGGTCGGCCTTGCGTACCAATACGGCTATGGCTTCCTGTCCAGTTACCTCGGGGTGTCCGGCGCCTTCCTGCTGGCGCCGGTGCTGCTTTATCCGATCCTGAAAATCACCCGCACCTATCAATTGTCTTCGTTGGCCGACCTGTTCGCCTTTCGATTCCGCAGCACCTGGGCCGGTGCGCTGACCACCATCTTCATGCTGGTCGGCGTGCTGCCATTGCTGGCGCTTCAAATGCAGGCGGTCGCCGACTCCATCAGCATTCTGACCCACGAACCGGTGCAGCACCGGGTGGCGCTGAGCTTCTGCGTCCTGATTATCCTGTTCACGATTTTCTTTGGCTCGCGGCACATCGCCACGCGGGAAAAACATGAAGGCCTGGTGTTCGCGATCGCCTTCGAATCGGTGATCAAGCTGGTCGCCATCGGCGGCGTCGGCCTCTATGCCTTGTATGGCGTATTCGATGGCCCGCAGCAGCTCGAGATCTGGCTGTTGCAGAACCAGACCGCCCTCGCCGCGCTGCATACGCCGCTCCAGGAAGGCCCGTGGCGCACGCTGCTGCTGGTGTTCTTCGCCTCGGCGATCGTCATGCCGCACATGTACCACATGACCTTCACCGAGAACCTCAACCCGCGCTCGCTGGTCAGCGCGAGCTGGGGCTTGCCGCTGTTCCTGCTGTTGATGAGTCTGGCCGTGCCGCTGATCCTGTGGGCCGGCTTGAAACTGGGCGCCAGCACCAACCCGGAGTATTTCACCCTCGGCATCGGCATCGCCGCCAACAATGAAGCCTTGGCGCTGCTGGCGTATGTCGGCGGCCTGTCAGCGGCCAGTGGCCTGATCATCGTGACCACCCTGGCACTGTCGGGCATGGCTCTCAACCACTTGGTACTGCCGCTCTACCAGCCTCCAGCCGAGGGAAACATCTATCGCTGGCTGAAATGGACCCGTCGCGCATTGATCGTCGCGATCATCATGGCCGGCTACGGTTTCTATCTGATGCTGGGCGACGGACAGGACCTGGCCAACCTGGGCATCGTCGCGTTCGTTGCGACCCTGCAATTCCTGCCCGGCGTCCTGTCAGTGTTGTATTGGCCGACCGCCAACCGCCGCGGCTTTATCGCCGGCCTGCTGGCGGGGATCGTGGTCTGGCTGGTCGCCATGCTGCTGCCGCTGCTGGGCAACCTGCAGGGTTTCTATATTCCGCTGTTGAACATGATCTACGTGCTCGACGACACCAGTTGGCACATGGCAGCCATCGCCTCGCTGGCGGCAAACGTGCTGATGTTTACCCTGATCTCGCTGTTCACCAATGCCAGCAGCGAAGAAGCCAGTGCCGCCGAAGCCTGCGCTGTGGATAACGTGCGCCGGCCCCAGCGCCGTGAACTGCACGCTGCCTCGCCCCAGGAATTCGCCACTCAACTGGCCAAGCCTCTTGGCGCCAAGGCCGCGCAAAAGGAAGTCGAACAGGCCCTGCGCGACCTTTACCTGCCATTCGACGAACGCCGTCCATACGCCTTGCGTCGGTTGCGGGATCGGATCGAAGCCAACCTGTCCGGCCTGATGGGCCCCAGCGTGGCCCAGGACATGGTCGAAACGTTCCTGCCCTACAAGGCCGGCGGCGAGAACTATGTCACCGAAGACATCCACTTCATCGAGAGCCGCCTGGAGGATTACCACTCGCGCCTCACCGGCCTGGCCGCCGAGCTGGATGCCTTGCGCCGTTACCATCGCCAGACCCTGCAGGAACTGCCGATGGGCGTGTGCTCCCTGGCCAAGGACCAGGAGATCCTCATGTGGAACAAGGCCATGGAAGAACTGACCGGGATTGCCGCGCAGCGGGTGGTCGGTTCCCGCCTGAGCACGTTGGGCGAGCCGTGGAAAGGCTTGCTGCAAGGCTTCATCGACCTGCCGGACGAGCATCTGCACAAACAACACCTGGCCCTGGACGGACAGACCCGCTGGCTGAACCTGCACAAGGCAGCGATCGACGAGCCTTTGGCGCCGGGCAACAGCGGCCTGGTGCTGCTGGTGGAAGACCTGACCGACACGCAGATGCTCGAAGACAAGCTGGTCCACTCCGAGCGCCTGGCCAGCATCGGTCGCTTGGCCGCCGGGGTGGCCCATGAAATCGGCAATCCGATCACCGGCATCGCCTGCCTGGCGCAGAACCTGCGCGAAGAGCGCGAGGACGATGGCGAGCTGACGGAAATCAGCGGCCAGATTCTCGAACAGACCAAGCGCGTATCGCGCATCGTCCAGTCGTTGATGAGTTTCGCCCACGCCGGCGGTCATCAGCACAACGACGAGCCGGTGTGCCTGGCCGAAGTGGCCCAGGACGCCATCGGCCTGCTGGCGCTCAACCGGCGCAACTTCGAAGTCCAGTTCTTCAACCTGTGCGACCCCGAACACTGGGTCGACGGCGACCCCCAACGGCTCGCCCAGGTGCTGATCAATCTGCTCTCCAACGCGCGCGACGCCTCACCGGCCGGCAGCGCGGTACGGGTCAAGAGCGAAGCTTTCGAACATACCGTCGACCTGATCGTCGAAGACGAAGGCAGCGGTATTCCACAGAACATCATGGACCGATTGTTCGAACCCTTCTTCACCACCAAGGATCCTGGCGAAGGCACCGGTCTGGGCCTCGCACTGGTCTATTCCATCGTTGAAGAGCATTATGGACAAATCACCATCGACAGCCCGGCCGATGTTCAGAGCCAACGCGGCACCCGTATTCGGGTGACCTTGCCGCGTCATGTCGAAGCGACGTCCGCTGTGAACTGA	MPMSFSLTQMILISGAYLAVLFGVAWISERGMIPRAIIRHPLTYTLSLGVYASAWAFYGTVGLAYQYGYGFLSSYLGVSGAFLLAPVLLYPILKITRTYQLSSLADLFAFRFRSTWAGALTTIFMLVGVLPLLALQMQAVADSISILTHEPVQHRVALSFCVLIILFTIFFGSRHIATREKHEGLVFAIAFESVIKLVAIGGVGLYALYGVFDGPQQLEIWLLQNQTALAALHTPLQEGPWRTLLLVFFASAIVMPHMYHMTFTENLNPRSLVSASWGLPLFLLLMSLAVPLILWAGLKLGASTNPEYFTLGIGIAANNEALALLAYVGGLSAASGLIIVTTLALSGMALNHLVLPLYQPPAEGNIYRWLKWTRRALIVAIIMAGYGFYLMLGDGQDLANLGIVAFVATLQFLPGVLSVLYWPTANRRGFIAGLLAGIVVWLVAMLLPLLGNLQGFYIPLLNMIYVLDDTSWHMAAIASLAANVLMFTLISLFTNASSEEASAAEACAVDNVRRPQRRELHAASPQEFATQLAKPLGAKAAQKEVEQALRDLYLPFDERRPYALRRLRDRIEANLSGLMGPSVAQDMVETFLPYKAGGENYVTEDIHFIESRLEDYHSRLTGLAAELDALRRYHRQTLQELPMGVCSLAKDQEILMWNKAMEELTGIAAQRVVGSRLSTLGEPWKGLLQGFIDLPDEHLHKQHLALDGQTRWLNLHKAAIDEPLAPGNSGLVLLVEDLTDTQMLEDKLVHSERLASIGRLAAGVAHEIGNPITGIACLAQNLREEREDDGELTEISGQILEQTKRVSRIVQSLMSFAHAGGHQHNDEPVCLAEVAQDAIGLLALNRRNFEVQFFNLCDPEHWVDGDPQRLAQVLINLLSNARDASPAGSAVRVKSEAFEHTVDLIVEDEGSGIPQNIMDRLFEPFFTTKDPGEGTGLGLALVYSIVEEHYGQITIDSPADVQSQRGTRIRVTLPRHVEATSAVN				NA	NA	NA	NA	NA
D1-36_04301	1434	zraR	COG2204	Transcriptional regulatory protein ZraR	ATGCCGCACATTTTGATCGTCGAAGACGAAACAATCATCCGCTCCGCCTTGCGCCGCCTGCTGGAACGCAACCAGTACCAGGTCAGCGAAGCCGGTTCCGTGCAGGAAGCACAAGAACGCTTCAGTATTCCAACCTTTGACCTGATCGTCAGCGACCTGCGCCTGCCCGGCGCCCCCGGCACCGAGCTGATCAAGCTGGGCCAGGGCACGCCCGTACTGATCATGACCAGCTACGCCAGCCTGCGCTCGGCGGTCGATTCCATGAAAATGGGCGCGGTCGACTACATCGCCAAGCCATTCGACCACGACGAGATGCTCCAGGCCGTGGCCCGGATCCTGCGTGATCGACAGACGGCGAGCAGCCAGCCAGCGGAAGCGACGAACGGTAAGGCCGCGGCGTCCGGTAAGGTGGGCGCAAGCAACAGCAACGGCGAAATCGGCATCATCGGCTCTTGCCCTCCGATGCAGGACCTCTACGGCAAGATCCGTAAAGTGGCGCCGACCGACTCCAATGTGCTGATCCAGGGCGAGTCCGGCACCGGCAAGGAACTGGTGGCCAGGGCGCTGCACAACCTGTCCCGCCGGGCGAAGGCCCCGATGATCTCGGTGAACTGCGCAGCCATCCCGGAAAGCCTGATCGAGTCCGAATTGTTCGGCCACGAAAAAGGCGCATTCACGGGCGCCAGCGCCGGGCGCGCCGGCCTTGTTGAAGCAGCGGACGGCGGCACGTTGTTTCTCGATGAAATTGGCGAACTTCCTCTGGAAGCCCAGGCGCGGTTGCTGCGCGTGCTCCAGGAAGGCGAAATCCGCCGGGTGGGCTCCGTGCAATCGCAGAAAGTTGATGTGCGCCTGATCGCGGCGACCCACCGGGACCTCAAGAGCCTGGCGAAGATCGGCCAGTTCCGTGAGGACTTGTATTACCGCCTGCACGTGATCGCGCTCAAGCTGCCGCCGCTGCGCGAGCGTGGCGCGGACGTCAATGAAATCGCCAATGCCTTCCTGGCCCGCCAGAGTGCGCGTGTCAACCGCACCGACCTCAAGTTTGCCCCGGACGCCGAGCAGGCCATTCGTCACTACGCCTGGCCGGGTAACGTACGCGAACTGGAGAATGCCGTGGAGCGCGCGGTGATCCTGTGCGAGAGCCCGGAAATTTCCGCCGACCTGCTGGGCATCGATATCGAGGTGGGCGACCTGGACGATGAGGAGTTCATCGGGCTCGCACCGCAGCAAAACGGCGCGAACAACACCAGCCACGAGCCCACCGAGGACCTGTCGCTGGAAGACTACTTCCAGCACTTCGTCCTCGAGCACCAGGACCACATGACCGAGACGGAGCTGGCACGCAAGCTGGGCGTGAGCCGCAAATGCCTGTGGGAACGCCGGCAGCGCCTGGGTATTCCACGGCGCAAGACCGGGGCCACCAGCGAAAGCTGA	MPHILIVEDETIIRSALRRLLERNQYQVSEAGSVQEAQERFSIPTFDLIVSDLRLPGAPGTELIKLGQGTPVLIMTSYASLRSAVDSMKMGAVDYIAKPFDHDEMLQAVARILRDRQTASSQPAEATNGKAAASGKVGASNSNGEIGIIGSCPPMQDLYGKIRKVAPTDSNVLIQGESGTGKELVARALHNLSRRAKAPMISVNCAAIPESLIESELFGHEKGAFTGASAGRAGLVEAADGGTLFLDEIGELPLEAQARLLRVLQEGEIRRVGSVQSQKVDVRLIAATHRDLKSLAKIGQFREDLYYRLHVIALKLPPLRERGADVNEIANAFLARQSARVNRTDLKFAPDAEQAIRHYAWPGNVRELENAVERAVILCESPEISADLLGIDIEVGDLDDEEFIGLAPQQNGANNTSHEPTEDLSLEDYFQHFVLEHQDHMTETELARKLGVSRKCLWERRQRLGIPRRKTGATSES	PGPT0004315_354	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ZINK_RESISTANCE	ZINK_RESISTANCE-ZINK_HOMEOSTASIS,PGPT0004315-zraR|hydG-K07713	NA	NA
D1-36_04303	1398	pcnB	COG0617	Poly(A) polymerase I	ATGCTGAAGAAGCTGTTCCAGTCATTCCGTTCTCCCTTGCGTCGTACGCAACACATACGCAGCACGCCTGAAGTGCTCAATAGCGGCCAGCATTCGTTGCAAAAGGCCCAATTCAGCCGTTACGCGGTGAACATCGTCGAACGCCTGCAGAACGCCGGCTACCAGGCCTACCTGGTCGGCGGGTGCGTGCGTGACATGCTGTTGAACATCACCCCCAAGGATTTCGACGTCGCCACCAGCGCCACGCCAGAGCAGATACGGGCCGAGTTCCGTAACGCACGGATCATCGGGCGTCGCTTCAAGCTGGTGCATATCCACTTTGGCCGCGAAATCATTGAAGTGGCGACTTTTCGCGCCAACCATCCGCAGAATGACGAAGACGAAGACAGCAACCAGTCTTCTCGCAACGAAAGCGGACGCATCCTGCGCGACAACGTCTACGGCACGCTGGAAGAAGACGCGCAACGCCGCGACTTCACCATCAACGCCTTGTATTACGATCCGGTCAGCGAACGCATCCTCGATTACGCCAACGGCGTACACGACATCCGCAATCGGCTCATCCGCCTGATCGGCGATCCCAGGCAGCGGTACCAGGAAGACCCGGTGCGAATGCTGCGGGCCGTGCGTTTCGCCGCCAAACTGGATTTCGGTATCGAGAAACACAGCGCCGCGCCTATCCGCGACCTGGCCCCCATGCTCAGGGAAATTCCTTCGGCTCGCCTGTTCGAAGAAGTGCTCAAGCTGTTCCTTTCAGGCAACGCCGCAGACACCTTCGAGATGCTCGTCGACCTGCAATTGTTCGACCCGCTGTTCCCAGCCAGTGCCGAGGCGCTGGAATACAACCCGACCTACACCCACACACTGATCAGCGAAGCGCTGATCAACACCGACCTGCGCATCAAGCAGAACAAACCGGTAACTCCGGCGTTCCTGTTCGCCGCTTTGCTCTGGCCGGCCCTCCCCGCCCGCGTCTTGCGCTTGCAAGAGCGCGGCATGCCGCCGATCCCGGCGATGCAGGAAGCCGCCCACGAGCTGATTGCCGAACAGTGCCAGCGCATCGCCATTCCAAAACGTTTCACGATGCCGATTCGCGAAATCTGGGACATGCAGGAACGCCTCCCCCGCCGCAGCGGCAAACGTGCCGACCTGCTGCTGGACAACCCGCGTTTCCGCGCCGGCTACGACTTCCTGCTACTGCGCGAAAGCGCGGGCGAGCAGACCGACGGCCTGGGCGAATGGTGGACCGATTACCAGGACGCCAACGACAGCGAACGCCGCGACATGATCCGTGACCTCAGCGGCAAGGACGACGGCACCGGCGGCCCGCGCAAGCGCCGACGCAGCAGCGGTGCCAAGCGCAAGCGCGCGGGTGTACCGAGCGCCTCGGGCGAGTAA	MLKKLFQSFRSPLRRTQHIRSTPEVLNSGQHSLQKAQFSRYAVNIVERLQNAGYQAYLVGGCVRDMLLNITPKDFDVATSATPEQIRAEFRNARIIGRRFKLVHIHFGREIIEVATFRANHPQNDEDEDSNQSSRNESGRILRDNVYGTLEEDAQRRDFTINALYYDPVSERILDYANGVHDIRNRLIRLIGDPRQRYQEDPVRMLRAVRFAAKLDFGIEKHSAAPIRDLAPMLREIPSARLFEEVLKLFLSGNAADTFEMLVDLQLFDPLFPASAEALEYNPTYTHTLISEALINTDLRIKQNKPVTPAFLFAALLWPALPARVLRLQERGMPPIPAMQEAAHELIAEQCQRIAIPKRFTMPIREIWDMQERLPRRSGKRADLLLDNPRFRAGYDFLLLRESAGEQTDGLGEWWTDYQDANDSERRDMIRDLSGKDDGTGGPRKRRRSSGAKRKRAGVPSASGE				NA	NA	NA	NA	NA
D1-36_04304	486	folK	COG0801	2-amino-4-hydroxy-6-hydroxymethyldihydropteridine pyrophosphokinase	ATGGAACGCATCTACATCGGCATGGGCAGCAACCTGGCCGAACCCGCAGGACAACTGCGCAGCGCCGTCGAAGCGCTGGCGCGACTGCCCGAGACCCGATTGGCAGGCGTCTCGGCGTTCTATCAAAGCGACTCGCTGCTTCCTGGCCAGCCACGCTACACCAACGCCGTGGCGGCGCTGGAAAGCAGCCTCGCACCGCTGGATCTGCTCGATGCGCTGCAAGCCATCGAAACCGATCAAGGGCGTGAACGCCTGGAGCGCTGGGGCCCGCGGACGCTGGACCTGGATATCCTGCTGTTCGGCGATCGCCTGATCGACGAACCCCGTCTCAAGGTTCCTCATTACCATATGCAGGCCCGGGCCTTCGTGCTCTATCCCTTGGCAGAGTTGGCGCCCGCCGACCTGCGCCTCGCTGACGGACGCCGTCTCAAGGACCTGCTTGCGGCGTGCCCATTCGTCGGCCTGGAACGCTTGCCTCTTATCTGA	MERIYIGMGSNLAEPAGQLRSAVEALARLPETRLAGVSAFYQSDSLLPGQPRYTNAVAALESSLAPLDLLDALQAIETDQGRERLERWGPRTLDLDILLFGDRLIDEPRLKVPHYHMQARAFVLYPLAELAPADLRLADGRRLKDLLAACPFVGLERLPLI	PGPT0007910_3439	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007910-folK-K00950	NA	NA
D1-36_04305	801	panB	COG0413	3-methyl-2-oxobutanoate hydroxymethyltransferase	ATGCCAGCTATTACCCTGACCACGCTGCAAGGTCTCAAGCAGAAAGGTGAGAAGATCACCATGCTGACCTGCTATGACGCCACCTTCGCCAATGCCTGCAACGAGGCCGGAGTTGAAGTGTTGCTGGTGGGCGACTCCCTCGGCATGGTGCTGCAAGGTCATGACAGCACCTTGCCGGTGACAACCGCCGACATGGCCTACCATGTGGCCGCCGTCAAACGCGGTAACACCGATGCGCTGATCCTCGCCGACCTGCCCTTCATGGCCTATGCCACCCTCGAACAAACCATGACCAACAGCGCCCTGCTGATGCAGGCCGGCGCGCACATGGTCAAGATCGAAGGCGCGTTGTGGCTGGCCGATTCGATCCGCTTGCTGGCCGAGCGTGGTATCCCGGTATGCGCACACCTGGGCCTCACCCCCCAGGCGGTGAATATCCTGGGGGGTTACAAGGTCCAGGGTCGCAGTGAAAACCAGGCGCGGCAGATGCGTGCCGATGCAATCGCGCTGGAACAGGCCGGGGCCGCCATGCTGTTGCTCGAATGCGTGCCCAGCGAACTGGCCCAGGAAATCACCCAGGCAGTGAGCATCCCGGTGATCGGCATCGGCGCCGGCAACGCCACCGACGGCCAGGTGCTGGTGCTCCACGACATGCTCGGGCTGTCGATCACCGGTCGCGTGCCGAAATTCGTGAAAAACTTCATGGCTGGGCAACCCTCTATCCAGGCAGCCCTGCAGGCCTATGTCGCCGAAGTGAAGGCTGCGTCCTTTCCCGGCGCTGAGCACGGATTCTCCGCATGA	MPAITLTTLQGLKQKGEKITMLTCYDATFANACNEAGVEVLLVGDSLGMVLQGHDSTLPVTTADMAYHVAAVKRGNTDALILADLPFMAYATLEQTMTNSALLMQAGAHMVKIEGALWLADSIRLLAERGIPVCAHLGLTPQAVNILGGYKVQGRSENQARQMRADAIALEQAGAAMLLLECVPSELAQEITQAVSIPVIGIGAGNATDGQVLVLHDMLGLSITGRVPKFVKNFMAGQPSIQAALQAYVAEVKAASFPGAEHGFSA	PGPT0008740_3330	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
D1-36_04306	861	panC	COG0414	Pantothenate synthetase	ATGAACACCGTCAAGACCGTACGCGAACTCCGCGCCGCAGTGGCCCGCGCCCGCGGCGAGGGCAAGCGCATCGCTTTCGTGCCGACCATGGGCAACCTGCACAGCGGCCACATGGCCCTGGTGACCAAAGCCTCGCAACGAGCCGATTTCGTCGTGGCAAGTATTTTCGTCAACCCGCTGCAATTTGGCGCTGGCGAGGATCTGGACAAATATCCCCGCACCCTCGCCGCTGACCAGGAAAAACTGCTTCAGGCCGGTTGTCATCTGCTGTTCGCACCCGGTGTCGAGGAAATGTATCCCGATGGCATGGCCGGGCAGACCCGGGTCAGCGTCCCGCAGTTGTCCGAAGGATTGTGCGGAGCCAGCCGTCCGGGGCATTTCGAGGGTGTGGCGACCGTGGTGAGCAAACTGTTCAATATGGTCCAGCCGGACCTGGCAGTGTTCGGCCAGAAAGATTTCCAGCAATTGGCGGTGATCCGCGCATTGGTCCATGACCTGAACATGCCGATCCAGATTATCGGTGAGCCAACCGTCCGCGCCGAGGACGGCCTGGCGCTGTCGTCGCGCAACGGCTTCCTCAGCCCCGAGCAGCGCGCCGTCGCGCCCGTGGTCTATCGCGTCCTGAGCCAGATCGCTCAAGCCATCCAGCAGGGGCAACGGGATTATCCGGCGTTGATCGATGAGCAGCTCAAGCAACTCGAAGCCGCGGGCCTGCGCCCCGACTATCTGGAAATCCGTCACGCCAAGACCTTGCGTCCGGCCGTGAGCGAGGACCGCGACCTGGTGATCCTGGCCGCTGCTTTCCTGGGCACCACACGGTTGATCGACAACCTGCACCTGGATCTCGACGCGCCCGCCTGA	MNTVKTVRELRAAVARARGEGKRIAFVPTMGNLHSGHMALVTKASQRADFVVASIFVNPLQFGAGEDLDKYPRTLAADQEKLLQAGCHLLFAPGVEEMYPDGMAGQTRVSVPQLSEGLCGASRPGHFEGVATVVSKLFNMVQPDLAVFGQKDFQQLAVIRALVHDLNMPIQIIGEPTVRAEDGLALSSRNGFLSPEQRAVAPVVYRVLSQIAQAIQQGQRDYPALIDEQLKQLEAAGLRPDYLEIRHAKTLRPAVSEDRDLVILAAAFLGTTRLIDNLHLDLDAPA	PGPT0008750_1458	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
D1-36_04307	381	panD	COG0853	Aspartate 1-decarboxylase	ATGCACGCCATCATGCTCAAGGCCAAGTTGCACCGCGCCGAAGTCACTCACGCCGTGCTCGATTACGAAGGCTCCTGCGCCATTGACGGTGAATGGCTGGACCTGTCGGGCATCCGTGAATACGAACAGATCCAGATCTACAACGTCGATAACGGCGAGCGCTTCACCACCTACGCGATTCGTGGCGAAGAAGGCTCGCGGATGATTTCAGTCAACGGCGCCGCCGCGCACAAGGCCAAGGTGGGCGATCGCGTCATCATCTGCGCCTACGCCCACTACAGCGAAGCCGAGCTGCTCAACTTCAAGCCTCGCATGCTCTACATGGCACCGGGCAACGAACTGAGCCATACCAGCAACGCCATTCCGGTTCAGGTCGCCTGA	MHAIMLKAKLHRAEVTHAVLDYEGSCAIDGEWLDLSGIREYEQIQIYNVDNGERFTTYAIRGEEGSRMISVNGAAAHKAKVGDRVIICAYAHYSEAELLNFKPRMLYMAPGNELSHTSNAIPVQVA	PGPT0008890_1437	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0008890-panD-K01579	NA	NA
D1-36_04308	1665	pgi	COG0166	Glucose-6-phosphate isomerase	ATGGCGTATTACCGAACTCCTCAAGACGTGACCGCTCTGCCCGCCTGGCAAGCGCTGAATGACCACCGCAAAGCCATGCAGGATTTCAGCATGCGCGAAGCGTTCAATGCCGATCCGCAGCGTTTCAACCAATTCACCCTGTCGAGCTGCGGCCTGTTTCTCGACTATTCGAAGAACCTGATCAACGCCCAGACCCGCGACCTGCTGGTGGGCCTGGCGAACGAAGTCGACCTCCAGGGCGCGATCAAGGCGCTGTTCGAAGGAGAAATCGTCAACGCCTCGGAAAACCGCCCCGCCCTGCACACCGCCTTGCGTCGTCCGGTCGGCGACAAGTTGCTGGTCAATGGCGTCAACGTGATGCCAGACGTACACAAAGTGCTGAACCAGATCACCGACCTGGTGGGCCGCATTCACGACGGCCTGTGGCGCGGTTACACCGAGAAGCCGATCACCGACGTGGTGAACATCGGTATCGGTGGCTCCTTCCTCGGCCCACAGCTGGTATCCGAAGCGTTGTTGTCCTACACACATAAGGGCGTTCGCTGCCATTACCTGGCGAATATCGACGGCAGCGAGTTCCACGAGCTGACGATGAAACTGCGCGCCGAGACCACGTTGTTCATTGTCTCGTCGAAATCCTTCAACACCCTCGAAACCCTGAAAAACGCCCAAGCTGCACGTGCTTGGTACCTGGCCCAAGGCGGTTCGGAAGCGGAGCTGTATCGCCACTTCATCGCGGTGTCGAGCAACAACGCCGCCGCCGTGGCCTTCGGCATCCGCGAAGAAAACATCTTCCCGATGTGGGATTGGGTCGGCGGGCGTTACTCGCTGTGGTCAGCCATCGGCCTGCCGATCGCCCTGGCCATCGGCATGTCGAACTTCAAGGAATTGCTGTCCGGCGCCTATTCCATGGACCAGCATTTCCAGAGTGCGCCGTTCGAACAGAACATGCCGGTGCTGTTGGCATTGCTGGGCGTGTGGTACGGCAACTTCTGGGGTGCGCAGAGCCACGCGATCCTGCCGTACGACCACTACCTGCGCAACATCACCAAGCATTTGCAACAGCTGGACATGGAGTCCAACGGCAAGAGCGTTCGCCAGGACGGCACGCCGGTGTCCACCGACACTGGCCCGGTGATCTGGGGCGGCGTCGGCGCCAACGGCCAGCACGCTTATCATCAGTTGCTGCACCAGGGCACCCAATTCATCCCGGCCGACTTCATCGTGCCGATCGTCAGCTTCAACCCGGTTTCCGACCATCACCAGTGGCTGTACGCCAACTGCTTGTCCCAGAGCCAGGCGCTGATGCTCGGCAAGACCCGCGCCGAAGCCGAGGCCGAGCTACGTGAGAAAGGCGTCAGCGAAGCAGACGTACAGAAACTGGCCGCCCACAAGGTGATCCCGGGCAACCGTCCGAGCAACACCCTGGTGGTGGAACGCATCAGCCCGCGCCGTCTCGGTGCGCTGGTCGCGCTGTATGAACACAAGGTCTTCGTACAAAGCGTGGTCTGGGGCATCAACGCCTTCGACCAGTGGGGCGTGGAGTTGGGCAAGGAACTGGGCAAAGGCGTCTACAACCGTCTGGTGGGCAGCGAGGAAAGCGCGGCCGAAGACGCCTCGACCCAAGGCCTGATCAATTATTTCCGCGGGCGTCATCGCGGCTGA	MAYYRTPQDVTALPAWQALNDHRKAMQDFSMREAFNADPQRFNQFTLSSCGLFLDYSKNLINAQTRDLLVGLANEVDLQGAIKALFEGEIVNASENRPALHTALRRPVGDKLLVNGVNVMPDVHKVLNQITDLVGRIHDGLWRGYTEKPITDVVNIGIGGSFLGPQLVSEALLSYTHKGVRCHYLANIDGSEFHELTMKLRAETTLFIVSSKSFNTLETLKNAQAARAWYLAQGGSEAELYRHFIAVSSNNAAAVAFGIREENIFPMWDWVGGRYSLWSAIGLPIALAIGMSNFKELLSGAYSMDQHFQSAPFEQNMPVLLALLGVWYGNFWGAQSHAILPYDHYLRNITKHLQQLDMESNGKSVRQDGTPVSTDTGPVIWGGVGANGQHAYHQLLHQGTQFIPADFIVPIVSFNPVSDHHQWLYANCLSQSQALMLGKTRAEAEAELREKGVSEADVQKLAAHKVIPGNRPSNTLVVERISPRRLGALVALYEHKVFVQSVVWGINAFDQWGVELGKELGKGVYNRLVGSEESAAEDASTQGLINYFRGRHRG	PGPT0017735_1192	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
D1-36_04309	1938	acsA_3	COG0365	Acetyl-coenzyme A synthetase	ATGTTCGATATCAGCCAGTACCCCCAAGCCGATGCCGTCCGCCGGGCTGCGCAACTGAGTCAAGACGAGTACAAGCGGCTCTACAAGGAATCCATCGAACACCCCAGCGCCTTCTGGGCCGAGCAGGCCACGCGCTTTCTCGACTGGATGACGCCATGGCAGACCGTCCAGCGCTACGACCTCAGGAGTGGCGAAGCCAGTTGGTTCACCGGCGCCAAGCTGAACGTCAGCGCCAACTGTATTGACCGTCACCTGGAAGCCCGAGGCGATCAGACTGCGATCATCTGGGAAGGCGACAACCCTGCCGAATCGGCACAAATTACCTACAGCAAACTTCATCACCACGTTTGCCGACTGGCCAATGTGTTGAAAAGCCGTGGGGTGAAGAAAGGCGACCGGGTATGTATCTACATGCCGATGATCCCGGAGGCGGCGTACGCCATGCTCGCCTGCACCCGCATCGGTGCGGTGCATTCGGTGGTGTTCGGTGGATTCTCGCCGGATTCACTGCGCGACCGGATCCTCGACGCCGACTGCCGCACCGTCATCACCGCCGACGAAGGCGTACGCGGTGGGCGCTTCATACCCCTCAAGCGTAATGTCGACAAGGCGCTGCAAAGCTGCCCGAACGTCAGCACCGTGCTGGTGGTCGAGCGCACCCAGGGCGAGGTGGATTGGGTCGAAGGCCGTGATCTCTGGTATCACCAGGCCACTCATGAAGTGAGCGACGATTGCCCGCCCGAGCCGATGGACGCTGAAGACCCTCTGTTCATCCTCTATACGTCCGGCAGCACCGGCAAGCCCAAGGGCGTGCTGCACACCACCGGCGGCTATCTGCTGCAAGCCGCGATGACTTTCAAGTACGTGCTGGACTACCGCGACAACGAAGTGTTCTGGTGCACCGCCGACGTCGGCTGGGTCACCGGCCACAGCTATATTGTCTACGGCCCGCTGGCCAACGGCGCCACCACGCTGATCTTCGAAGGCGTGCCGAGCTACCCGAGCAGTTCGCGGTTCTGGCAGGTAATCGACAAACACCAGGTCAATATCTTCTACACCGCGCCGACCGCCCTGCGCGCCCTGATGCGCGAAGGTGCCGCCCCCTTGCAGGACACGTCTCGCAAGAGCCTGCGTTTGCTCGGCAGCGTCGGTGAGCCAATCAACCCCGAGGCGTGGGAATGGTACTTCAACGTCGTCGGCGAGCAGCGCTGCCCGATTGTCGATACCTGGTGGCAGACCGAAACCGGCGGCATCATGCTCAGCCCCTTGGTGAGCGCGCCAAGGCTCAAGCCGGGCTGCGCCACTCGGCCGATGTTCGGCGTGCAGCCGGTGCTGCTGGATGAGACCGGCAAGGAGATCAGCGGGCCGGGCAGTGGCGTGCTGGCGATCAAATCCAGCTGGCCGGCACAGATTCGTAGCGTCTACGGTGACCATCAACGCATGGTCGATACGTACTTCAAACCCTACCCCGGCTATTACTTCACCGGCGACGGCGCCCGCCGCGACGAAGACGGCGACTACTGGATCACCGGACGTATCGACGACGTCATCAACGTCTCGGGCCACCGCATCGGCACCGCCGAAGTGGAAAGCGCGCTGGTGTTGCACGACAACATCGCCGAGGCGGCCGTCGTTGGTTATCCCCACGACCTCAAGGGCCAGGGCATCTATGCGTTTGTCACGCCAATGGACGGCGTCGAGGCCAACGACGCGTTGAAGCAAGAGCTCCTGGCCCATGTCAGCAAGGAAATCGGCAGTTTCGCCAAGCCGGAGCTGATCCAGTGGGCGCCGGCGCTGCCAAAGACCCGGTCAGGCAAGATCATGCGCAGGATCCTGCGCAAGATCGCCTGCAACGAGCTCGACAGCCTGGGTGACACCTCGACCCTGGCCGACCCAAGCGTGGTGGAGGGTTTGATCGACAAACGCCTGAACCGCTGA	MFDISQYPQADAVRRAAQLSQDEYKRLYKESIEHPSAFWAEQATRFLDWMTPWQTVQRYDLRSGEASWFTGAKLNVSANCIDRHLEARGDQTAIIWEGDNPAESAQITYSKLHHHVCRLANVLKSRGVKKGDRVCIYMPMIPEAAYAMLACTRIGAVHSVVFGGFSPDSLRDRILDADCRTVITADEGVRGGRFIPLKRNVDKALQSCPNVSTVLVVERTQGEVDWVEGRDLWYHQATHEVSDDCPPEPMDAEDPLFILYTSGSTGKPKGVLHTTGGYLLQAAMTFKYVLDYRDNEVFWCTADVGWVTGHSYIVYGPLANGATTLIFEGVPSYPSSSRFWQVIDKHQVNIFYTAPTALRALMREGAAPLQDTSRKSLRLLGSVGEPINPEAWEWYFNVVGEQRCPIVDTWWQTETGGIMLSPLVSAPRLKPGCATRPMFGVQPVLLDETGKEISGPGSGVLAIKSSWPAQIRSVYGDHQRMVDTYFKPYPGYYFTGDGARRDEDGDYWITGRIDDVINVSGHRIGTAEVESALVLHDNIAEAAVVGYPHDLKGQGIYAFVTPMDGVEANDALKQELLAHVSKEIGSFAKPELIQWAPALPKTRSGKIMRRILRKIACNELDSLGDTSTLADPSVVEGLIDKRLNR	PGPT0002265_4328	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ACETATE_UTILIZATION,PGPT0002265-acs-K01895	NA	NA
D1-36_04310	1017	rlmI_1	COG1092	Ribosomal RNA large subunit methyltransferase I	ATGTCTTCCTTGAATCTGGCGCTGCGCGCCGCCCTCGACCAGCGCCAGGCCCTGCTCGACCAACTGCACCAGCAAGGCACCGATTGCTATCGCCTGTTCCACGGCAGCCAGGAAGGCGCGCCGGGCCTCACCGTCGACCGCTATGGCCCGCAACTGCTGGTGCAGAGTTTCCATCAGTCGCTGGAACTGGAACCCTTGCTGCAGCTGCACGGCATCGTCAATGAACACCTGCACCTCGACACCCTGCTGGTCTATAACGACCGCTCCCGGGGCAATTCGCGTATCGACCGTCAGGACAGCGTCTACCAGGCCGATGAGGCCGCCCTGCAAGACCTCGTCGGGCATGAGTGGGGTTTGAACTACCGCGTCCGCGGCCGCCATGCCGGGCAGGATCCGTTGTTGTTTCTCGACTTGCGCAACGCCCGCGGCTGGGTCAAGGCGCACAGCCGGAACAAAAGCGTGCTGAACCTGTTTGCCTACACCTGTGGTGTAGGGCTCAGCGCGGCGGCCGGCGGGGCGCGGGAGGTCTGCAACCTGGATTTTGCCGAAGGCAATCTGGCGGTGGGCCGCGAGAATGGCCTGCTCAATCCCGAGCTGCCGACGATGGAATTCGTACAATCGGATTATTTTCCAGCAATCCGCCAGCTGGCCGGCCTGCCCGTCAGCCAACGGCGCGGACAGAAACTTCCAAGTTACGTGCGCCTGGAACAGCGCCAGTACGATCTGGTGCTCCTCGACCCACCCGCGTGGGCCAAGAGCGCATTCGGCACCGTCGATTTATTGCGCGACTACCAGAGCCTGCTCAAGCCGGCGCTGCTCGCTACCGCCGACGATGGCGTGCTGATCTGCTGCAACAACCTGGCGAAAGTGCCCATGGAGGACTGGCGTGAACAAGTCCTGCGTTGTGCGCAAAAGGCTGGTCGCCCGGTCCGCGAGTGGAGCGTGCTGGCGCCCGGCGACGATTTCCCGTCGCGGGACCAGCAGCCACCGCTCAAAACGCTGATTCTTCAATTCTGA	MSSLNLALRAALDQRQALLDQLHQQGTDCYRLFHGSQEGAPGLTVDRYGPQLLVQSFHQSLELEPLLQLHGIVNEHLHLDTLLVYNDRSRGNSRIDRQDSVYQADEAALQDLVGHEWGLNYRVRGRHAGQDPLLFLDLRNARGWVKAHSRNKSVLNLFAYTCGVGLSAAAGGAREVCNLDFAEGNLAVGRENGLLNPELPTMEFVQSDYFPAIRQLAGLPVSQRRGQKLPSYVRLEQRQYDLVLLDPPAWAKSAFGTVDLLRDYQSLLKPALLATADDGVLICCNNLAKVPMEDWREQVLRCAQKAGRPVREWSVLAPGDDFPSRDQQPPLKTLILQF				NA	NA	NA	NA	NA
D1-36_04311	2934			hypothetical protein	ATGCCCAAAGGATTGATTCGCGCTTTCGGCGCCCTGTTGACCGCACTGGCCCTCTACAGCCTGATGGGTTTCCTGATCTTGCCGGGCATCGCCCTGCGCATCGTCAATCAGCAACTGGCCGCCCACGCCACGGTGCCGGCCCAGATCCAGCGTATCGAACTCAATCCCTTCAGCCTTGAATTGACCTTGTGGGGCCTGATCGTCGGCGAGCCGGGCAAGGAGCAGGTCGGCTTCGAACGCCTCTACGCCAACCTGCAAGTCGACAGCCTGTGGACGGGCGCCCTGCACCTGGCGGACATCGAACTGGACAAGCCCAAGACCGAAGTGTTGTTCGCCAAGGACGGCCAATTGAACCTGCTGGGCCTGTTCAAACTGCCACCCAGCGAGCCGACCCCGGCCGATCCGGATGCCAAGCCGTTTCCCCTGCGGGTGGATCGGGTCAGGCTTGCCAGCGGCTACGTGCATTTCCAGGACCTGCGCCCCAGCGAGCCCATCGAGTTTTTGTACGACGCCCTCGATTTCGAGCTGAAAAACCTCAGCACCCTGCCCGACGACAGCGCAGACATGACATTGGTGGCCGCGGGCCCCGAGGGTGGGCAGATCGACTGGACGGGCAATTTCAGCCTCGCGCCAATTGCCTCCGAGGGCACACTGAAAATTACCGATGGACAGATGAAAGCCTGGTGGCCCTACGTGCGTGACGCGCTGCCCCTGGTGTTGGAAAACGGCGTGCTGAACCTCAGCACCGACTACAAGCTCAACCTCGCCCAGGGCACGCAATTGCTGCTCAGCAACGCAGCGGTCAGCGTCGCGCCGTTCGCCATGAAGGCGCCTGACGGCCGTCCATTGGCACGGCTGGAGCGCCTGGACGTAAGCGAAACCTCCGTGGACCTGACGAAGCAGCAGGTCATCGTCGGCAAGATCCGCAGTCAGAAGCTGGAAACCTGGGCCGCTCGGGAAGCGGACGGACAATTGGACTGGCAGAAGCTATTCGCCAGCCAGCCAGCCAAACCGCAGGTCAAGGCCGAACCCGCCTCGGCCCCGGCAGCCGCCGACTCGCCCAAGCCTGAGCCGACAGCACCCAGCAAACCGTGGCAAGTGCTGCTCAAAGACGTGCAGTTGCGCGATTACCAGGTGCACCTGGCCGACCGTCAGGCACAGCCGCCCGTAGCCTTGGAGGTTGGCCCACTGAACCTCGACCTGCAAAACTACGACACCCTCAACGGCTCGCCCTTCAACCTGAAGCTGGATACCGGGCTGGGCAAGCAGGGCAAGGTACTCGCCGACGGCGTGGTCAACCTCAACCCGGTCACCGCGAAGCTCAACGTCAAGACCCAGGACATCGACCTGCGAGTCGCCCAGGCCTACATCAACCCGTTCATTCGCCTGGAGCTACGCTCCGGGATGCTCGGCAGCGACCTGGTGGTGGATCTCAAGAGCACCGAGCCGTTGGCATTGGCCGTCACCGGCCGCGCCCAGGTCGACCAGTTGCACACCCTCGATACGCTCAAGACCCGCGACTTCCTCAAATGGCAACGCCTTGAACTCCAGGGCCTCAACTACCAGCATGGCGACAGCCTGTCGATCGCCAAGGTCAATCTGCTCCAACCCTACGCGCGGTTCATGATCAATGACGATCGCACCACCAACGTCGACGACCTGTTGATCCCGCAACCCGCCGACGGCACGGCCAAGAACAGCGGGGCCAAACCGGCATCGAAGGAAAAGCCGCTGGGCATTCACGTCGGAGCCATTGCGATCAATGACGGTTCGGCCAATTTTGCCGACTTCAGCCTGACGCCGAACTTCGCCACGGCCATCCAGCAGCTCAACGGAGAGATCGGCACCATCGACAGCCGCCAGGCCAAGCCCGCCACCGTGGACGTAAAAGGCAAGGTCGACCGCTACGCACCGGTGACCATAAAGGGCGCGGTCAACCCCTTCGACCCGATGGCCAGTCTCGATATCGCCACCAGTTTCAAGCGGGTCGAATTGACGACCCTGACGCCCTACTCCGGCAAGTTCGCCGGCTATCGCATCCGCAAGGGCCGGCTCAACCTCGACCTGCATTACCGGATCACCAAGGGCCAGCTCCAGGCCGACAACAAAGTCGTGGTCGAGCAATTGCAATTGGGCGAAAAGGTCGACAGCCCGGACGCCGTGAGCCTGCCGCTGAAGCTGGCCGTCGCCCTGCTCAAGGACTCCGAAGGCAGGATCTCCATTGAACTGCCGGTCTCCGGCAACCTCAACGATCCGCAGTTCAGCGTGATGCCAATCGTCTGGCAAACCCTGCGCAACCTGGTGGTCCGCGCTGCCCAGGCACCGTTCAAGCTCATCGGCGGGCTGGTGGCCGGCGGCGGTTCGGAAGACTTGGGCAGCGTGGCGTTCGCCCCCGGGTCAAGCGACCTGAGCCAGAACAACGAAAGCGTGTTGTTGAAGTTGTCCGAGGCCTTGGGCAAACGTCCGGAACTTCGCCTGGAGATCGAGGGTACCGCCGCCCAGAGCAGCGACGGCCCGCTGCTCGCCGCCCAGCGCCTGGAACGCGAATATCAGTACAACTACTACAAGATACTGCAGCGCCGAGGCGATAAAGTCCCGGCCAAGGCTTCCCTGTTGCAAGTACCGGAAGACGAAAAAGCCCCGCTGCTGGAAGGTATCTACCGCACCCGCCTGAAGACCCAGCCACCGGCTGAATGGACGCAACTGGACAAACAGGCCCGCATCGACAAGCTCCGTGAAGGCGTCATCAAGTTCTGGAGCGGTAGTGATGTACTGTTGCGCGAACTGGGCCAGGAGCGGGCCAGCAGCATCAAGGATTTCCTCGTGGACAAGGGCAAGCTGGCCGATGACCGCGTGTACTTCATTGACGCCAGCCTGGGCCAGGCCGAAAAGGACGGCACCGTCATTACGCCAATGCATCTGGATGCGGAGTGA	MPKGLIRAFGALLTALALYSLMGFLILPGIALRIVNQQLAAHATVPAQIQRIELNPFSLELTLWGLIVGEPGKEQVGFERLYANLQVDSLWTGALHLADIELDKPKTEVLFAKDGQLNLLGLFKLPPSEPTPADPDAKPFPLRVDRVRLASGYVHFQDLRPSEPIEFLYDALDFELKNLSTLPDDSADMTLVAAGPEGGQIDWTGNFSLAPIASEGTLKITDGQMKAWWPYVRDALPLVLENGVLNLSTDYKLNLAQGTQLLLSNAAVSVAPFAMKAPDGRPLARLERLDVSETSVDLTKQQVIVGKIRSQKLETWAAREADGQLDWQKLFASQPAKPQVKAEPASAPAAADSPKPEPTAPSKPWQVLLKDVQLRDYQVHLADRQAQPPVALEVGPLNLDLQNYDTLNGSPFNLKLDTGLGKQGKVLADGVVNLNPVTAKLNVKTQDIDLRVAQAYINPFIRLELRSGMLGSDLVVDLKSTEPLALAVTGRAQVDQLHTLDTLKTRDFLKWQRLELQGLNYQHGDSLSIAKVNLLQPYARFMINDDRTTNVDDLLIPQPADGTAKNSGAKPASKEKPLGIHVGAIAINDGSANFADFSLTPNFATAIQQLNGEIGTIDSRQAKPATVDVKGKVDRYAPVTIKGAVNPFDPMASLDIATSFKRVELTTLTPYSGKFAGYRIRKGRLNLDLHYRITKGQLQADNKVVVEQLQLGEKVDSPDAVSLPLKLAVALLKDSEGRISIELPVSGNLNDPQFSVMPIVWQTLRNLVVRAAQAPFKLIGGLVAGGGSEDLGSVAFAPGSSDLSQNNESVLLKLSEALGKRPELRLEIEGTAAQSSDGPLLAAQRLEREYQYNYYKILQRRGDKVPAKASLLQVPEDEKAPLLEGIYRTRLKTQPPAEWTQLDKQARIDKLREGVIKFWSGSDVLLRELGQERASSIKDFLVDKGKLADDRVYFIDASLGQAEKDGTVITPMHLDAE				NA	NA	NA	NA	NA
D1-36_04312	300			hypothetical protein	ATGAAGTATTGGTACGGATTCAGCCTGAGTCTGCTGCTATTGGCAGCCGGCCAGGCCACAGCCGCCAATACGTTGCGCTGTGGCAGCCATTTGATCAGCATCGGTGATCGTACGAGCGAGGTGCTGCAAAAATGTGGACAGCCTGCAGCGCGTGATGATCTGGGCTACAAACGCAGCGTCAACCGCCGGGAGGAGTATCCGGTGGAGGAATGGACTTACGGACCCCGTAGCGGGATGTACCAGTACTTACGCTTCGAGAGGAATCGGCTGGTGGAGATTACCAGCAAGCGTGGGCGGTGA	MKYWYGFSLSLLLLAAGQATAANTLRCGSHLISIGDRTSEVLQKCGQPAARDDLGYKRSVNRREEYPVEEWTYGPRSGMYQYLRFERNRLVEITSKRGR				NA	NA	NA	NA	NA
D1-36_04313	354			hypothetical protein	ATGAAGAAGTTCGCTATCACTGCCGCTGCTGCCACTGCACTGACCCTGACCATGGCTAGCGCTTTCGCCGAGACCACTCAAGCAACTCAGGCCCCGATGATGCTGGCTGCGGGCGAAGTGACAGAGGCTAAGGAAGACGTTTCCGATACCTGGATCACCACCAAGGTCAAGGCCGACCTGGTGACCGAGAAAGGCATTCCAGGCTCCGACATCAAGGTTGAAACCAACAAGGGCGTCGTGTCCCTGTCTTCGACCGCTGTGTTGAGCGATGCCCAGAAAGACACCGCCGTCGCGATCGCCAAGAAAATCAAAGGGGTACGTGATGTGTCGGCCGATGGCCTGAAATCCGAGTAA	MKKFAITAAAATALTLTMASAFAETTQATQAPMMLAAGEVTEAKEDVSDTWITTKVKADLVTEKGIPGSDIKVETNKGVVSLSSTAVLSDAQKDTAVAIAKKIKGVRDVSADGLKSE	PGPT0013305_1253	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013305-osmY-K04065	NA	NA
D1-36_04314	432	pilA		Fimbrial protein	ATGAATAAGCAAAAGGGTTTTACACTGATCGAGCTGCTGATCGTGGTGGCGATCATTGGGATCCTGGCGACGTTTGCGTTGCCGCAGTACTCGAAGTACCAGGCGCGGGCGAAGGTGACGGTCGGGCTGGCGGAAGCTTCTTCATTGAAGGTGCCGGTTGAAGACCTTCTGAATAAAGGTACAACGCCAACCGCTGCCAACACGGGCGTACCGGCGTCGAGCAATAACTGCACGATGACCATTGGGGGTGACGCGGCCGCTGGGACGGCCAGCATCACTTGCACTATCAAAGAGGCACCTGCCTCCATCATAGGCAAGACGATCATTCTCAGCCGTGCCGGCACAGGTGCCTGGACATGTACTTCTAACGTTGCGGAAGAGTTCTTGCCTGCGGGCGGTTGCACAGCAGCGGCTGGCGCGGCAGCGGGTTGA	MNKQKGFTLIELLIVVAIIGILATFALPQYSKYQARAKVTVGLAEASSLKVPVEDLLNKGTTPTAANTGVPASSNNCTMTIGGDAAAGTASITCTIKEAPASIIGKTIILSRAGTGAWTCTSNVAEEFLPAGGCTAAAGAAAG	PGPT0015905_1864	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015905-pilA-K02650	NA	NA
D1-36_04315	1701			hypothetical protein	ATGAATGACATCGCCCTCAGCGGCCTGGCCAAGCAATTGGTGTTGGCTGAACTGATCACCGAACAAAGCGCGCAGCATGCTTTTCAACAGGCCCAGCGCAACCGAGTGCCCCTGGTCAGCTACCTGGTGCAAAACAAACTGATCCAGAGCCGCCAGGTGGCGGAAATCGCCTCCGAGCATTTTGGTATCGCCCTGCTGGACCTCAACAGCCTAGACAAAGACAACCAGCCCGCCGGCCTGGTCAGCGAGAAACTGGTGCGCCAGCATCACGTGCTGCCGCTGTGGCGGCGCGGCAACAAGCTCTATGTGGGCATTTCCGACCCCACCAATCACCAAGCCATCAACGACATCCAGTTCAGCACCGGCCTGACCACCGAAGCCATCCTGGTGGAAGACGACAAGCTCAGCGATGCCATTGAAAAATTCTTCGAATCCAGCAGCACCGGCCTGGAGGGCATGGCCGACGTCGATCTCGACGGCCTGGACATCGAGTCGATCGACGACCGCAAGCAGGACACAATCGCGGGGCAGGACGGCGACGATGCGCCGGTCGTGCGTTTCGTCAACAAGATGCTGCTGGACGCGATCAAGGGCGGCTCTTCCGACCTGCACTTCGAGCCTTATGAGAAAACCTACCGGGTGCGGGTGCGTACCGACGGCATGCTGCGGGAGGTCGCCAAGCCTCCTATCCAGCTAGCCAACCGCATTGCCGCGCGCTTGAAAGTCATGGCGAGCCTGGACATTTCCGAGCGACGCAAACCCCAGGACGGTCGACTGAAGATGCGCCTGTCGAAGACCAAGTCCATCGACTTCCGGGTCAATACCCTGCCCACGCTGTGGGGGGAAAAAGTGGTGATCCGGATCCTCGATCCCTCCAGCGCGCAAATGGGCATCGATGCCCTGGGCTATGAGCCGGAACAGAAAGACCTGTACATGACAGCCTTGAAGCAACCACAAGGGTTGATCCTGGTGACCGGGCCGACCGGCTCGGGCAAGACCGTGTCGCTCTACACCGGCCTGAACATCCTCAACACCGTGGATATCAATATCTCCACGGCGGAGGACCCGGTGGAAATCAATATGGAAGGCATCAACCAGGTCAACGTGAACCCGCGCCAGGGCTTGGATTTCGCCCATGCCCTGCGCTCGTTCCTGCGTCAGGACCCGGACGTGATCATGGTCGGCGAGATCCGTGACCTGGAAACCGCCGAAATCGCCATCAAGGCCGCCCAGACCGGGCATCTGGTGCTGTCCACCCTACACACCAACAGCGCCGCCGAAACACTGATCCGCCTGCAGAACATGGGCATCCCCGGCTTCAACATTGCCACGGCGGTCCACCTGATCATCGCCCAGCGCCTGGCGCGCAAGCTGTGCGCACAGTGCAAGAGAGCCATCGAGATTCCCGAGGAAACCCTGCTTAAAGAGGGTTTCCCCCGGGAACGCATCGGCTCATTCACGATCTATGAGCCGGTCGGTTGCGAACAGTGCAACAGCGGTTACAAAGGTCGCGTGGGGGTATACGAAGTGGTGAAGAACACGCCAGAGCTGCAACGATTGATCATGGCCGAGGGCAACTCCCTGGAAATCGACCTGCAGATGCGCAAGGACGGCTTTAACGACTTGCGCACCTCGGGGCTGTTCAAAGTGATGCAAGGCATCACCAGCCTCGAAGAAATCAACCGGGTCACCAAGGATTGA	MNDIALSGLAKQLVLAELITEQSAQHAFQQAQRNRVPLVSYLVQNKLIQSRQVAEIASEHFGIALLDLNSLDKDNQPAGLVSEKLVRQHHVLPLWRRGNKLYVGISDPTNHQAINDIQFSTGLTTEAILVEDDKLSDAIEKFFESSSTGLEGMADVDLDGLDIESIDDRKQDTIAGQDGDDAPVVRFVNKMLLDAIKGGSSDLHFEPYEKTYRVRVRTDGMLREVAKPPIQLANRIAARLKVMASLDISERRKPQDGRLKMRLSKTKSIDFRVNTLPTLWGEKVVIRILDPSSAQMGIDALGYEPEQKDLYMTALKQPQGLILVTGPTGSGKTVSLYTGLNILNTVDINISTAEDPVEINMEGINQVNVNPRQGLDFAHALRSFLRQDPDVIMVGEIRDLETAEIAIKAAQTGHLVLSTLHTNSAAETLIRLQNMGIPGFNIATAVHLIIAQRLARKLCAQCKRAIEIPEETLLKEGFPRERIGSFTIYEPVGCEQCNSGYKGRVGVYEVVKNTPELQRLIMAEGNSLEIDLQMRKDGFNDLRTSGLFKVMQGITSLEEINRVTKD	PGPT0015915_1234	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015915-pilB-K02652	NA	NA
D1-36_04316	1218	epsF_2	COG1459	Type II secretion system protein F	ATGGCGGTCAAGGCAGTAAAAACCGACGTCTACACGTGGGAAGGCAAAGACCGCAAAGGCACGAAAATGTCCGGCGAACTGACCGGCCAAAGCCCGGCACTGGTCAAGGCACAGTTGCGCAAGCAGGGCATCAACCCGGGCAAGGTTCGCAAAAAGTCCACCTCGATATTCAGCAAGGGCAAGCGCATCAAGCCGTTGGACATCGCCCTGTTCACCCGCCAGATGGCGACGATGCTCAAGGCCGGGGTGCCGCTGTTGCAGGCGTTCGATATCATTGGCGAGGGCTTCGACAACCCGAATATGCGCAAGTTGGTGGACGAGGTGAAGCAGGAGGTCGCCGCCGGAAACAGTTTCGCCGCCTCGCTGCGCAAATGCCCCCAGTATTTTGACGAGTTGTACTGCAACCTGGTAGATGCCGGTGAGCAGGCCGGTGCCCTGGACACGCTGCTGGACCGCGTCGCGACCTACAAGGAAAAAAGCGAGGCCCTCAAGGCCAAGATCAAGAAAGCCATGACCTATCCTGCCGCGGTGATCGCCGTTGCCGCCGTGGTCACAAGCATCCTGCTGATCAAGGTCGTGCCGCAGTTCGAGTCGGTATTCGCAGGCTTTGGCGCAAAGCTGCCGGCCTTCACGCTGATGGTCATCGGCTTGTCGGAGTTCTTGCAAGAGTGGTGGTGGATGTTGCTGGGAGGGCTGGTGGGTGGGTTCTTCGGCGTGAAATATGCGCTCAAGCGTTCCCAGGCATTTCGTGACTGGCGAGACAAATGGCTGCTCAAGCTGCCCTTGATCGGCACCTTGATGTACAAGTCCGCCGTGGCTCGCTACGCCCGTACGCTGTCGACGACCTTTGCGGCCGGCGTACCATTGGTCGAAGCCCTCGATTCCGTGTCGGGCGCTACCGGCAACGTAGTGTTCAAGCGCGCGGTACAACGCATCCGGCAGGATGTCTCGACCGGCATGCAGTTGAATTTTTCAATGCGCGCTTCCGGCGTTTTCCCGAACCTGGCGATTCAGATGACCGCCATCGGCGAAGAATCAGGCGCGCTGGATGACATGCTCGACAAGGTGGCGAGTTTTTATGAAGCCGAGGTGGATAATCTGGTGGACAACCTCACCAGCCTGATGGAACCCTTCATCATGGTAATCCTGGGGGTGGTGGTCGGTGGCCTTGTGGTTGCCATGTACATGCCCATCTTCCAACTCGGCTCTGCGATCTGA	MAVKAVKTDVYTWEGKDRKGTKMSGELTGQSPALVKAQLRKQGINPGKVRKKSTSIFSKGKRIKPLDIALFTRQMATMLKAGVPLLQAFDIIGEGFDNPNMRKLVDEVKQEVAAGNSFAASLRKCPQYFDELYCNLVDAGEQAGALDTLLDRVATYKEKSEALKAKIKKAMTYPAAVIAVAAVVTSILLIKVVPQFESVFAGFGAKLPAFTLMVIGLSEFLQEWWWMLLGGLVGGFFGVKYALKRSQAFRDWRDKWLLKLPLIGTLMYKSAVARYARTLSTTFAAGVPLVEALDSVSGATGNVVFKRAVQRIRQDVSTGMQLNFSMRASGVFPNLAIQMTAIGEESGALDDMLDKVASFYEAEVDNLVDNLTSLMEPFIMVILGVVVGGLVVAMYMPIFQLGSAI	PGPT0015920_1052	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015920-pilC-K02653	NA	NA
D1-36_04317	870	outO		Type 4 prepilin-like proteins leader peptide-processing enzyme	ATGCCCCTGAGCGAATTCTTCGTGCTTTACCCCTTGGCTTTCGTGCTGACCGCATTGCTGCTCGGGCTGATCGTCGGCAGCTTTCTCAATGTGCTGGCGTGGCGCCTGCCCAAGATGCTCGACCGTGAATGGCGCCTGCAAGCCCAGGACCTGCTGGGCCTGCCGACGCAGGCCCCTGGCCCGGTCTACAACCTGATGCTGCCTCATTCCCAATGCCCTCATTGCGGCCACCGTATCCGGGCGTGGGAAAATATTCCGCTGCTGAGCTACCTCGTGTTGCGGGGCCGTTGTTCGAGTTGCGCCGCGCCCATCGGCAAGCGCTACCCACTGACCGAACTGGCCTGCGGCGCGCTGTCGGCTTTCGTTGCCTGGCATTTCGGCTTCGGCTGGCACGCCGCGATGGCGATGGTGCTGAGCTGGGGCCTGCTGTCCATGAGCCTGATCGACGCCGAGCATCAGCTGCTGCCCGATACCCTCGTACTGCCGTTGTTGTGGCTGGGGCTGATCGTCAACAGCTTCGAGCTGTTCGTCTCGCTGAACCAGGCATTGTGGGGCGCGGTGGCGGGTTATCTGGCGCTGTGGTCGGTGTTCTGGGTCTTCAAACTGATCACCGGCAAGGAAGGCATGGGCTACGGCGACTTCAAGTTGCTGGCGATGCTGGGCGCCTGGGGGGGCTGGCAAATCTTGCCGCTGACGCTGTTGCTGTCCTCGCTGGTGGGCGCCGTCGTCGGCATTATTGTGCTGCGCATGCGGGACGCGCCGGCCTCGACACAAATCCCCTTCGGCCCCTATCTGGCCATCGCCGGCTGGATTGCGCTGCTCTGGGGTGGTCAAATAACCGACTTCTATTGGCAGTCAGTCGGTTTCTAA	MPLSEFFVLYPLAFVLTALLLGLIVGSFLNVLAWRLPKMLDREWRLQAQDLLGLPTQAPGPVYNLMLPHSQCPHCGHRIRAWENIPLLSYLVLRGRCSSCAAPIGKRYPLTELACGALSAFVAWHFGFGWHAAMAMVLSWGLLSMSLIDAEHQLLPDTLVLPLLWLGLIVNSFELFVSLNQALWGAVAGYLALWSVFWVFKLITGKEGMGYGDFKLLAMLGAWGGWQILPLTLLLSSLVGAVVGIIVLRMRDAPASTQIPFGPYLAIAGWIALLWGGQITDFYWQSVGF	PGPT0015925_769	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
D1-36_04318	624	coaE	COG0237	Dephospho-CoA kinase	ATGAACAGCCCTGCGAAAAAACCCTGGATTCTCGGCCTGACCGGCGGCATCGGCAGCGGCAAGAGCGCCGCCGCCCAGCATTTCATCGACCTGGGCGTGCACGCGATCGATGCCGATCATGCGGCACGCTGGGTGGTCGAACCTGGACGCCCGGCACTGGCAAGCATTGCCGAGCACTTCGGCCCTGGCGTGTTGCAGGCAGACGGCGCGCTGGATCGCTCGGCGCTGCGCACGCTGATCTTCGAGAATGCCGATGAGCGTCGTTGGCTGGAAAAGCTGCTGCACCCGCTGATTGCCGAGGAAATTGCCCATCATCTGGGGCAGGCCCAATCGCCCTACGCGATCCTGGTGTCACCGCTGTTGATCGAGTCGGGACAATACGCAATGACCCAGCGGATCCTGGTGATCGACGCGCCTGAACAACTGCAGATCGAACGCACCTTGCAGCGCGACCAGACCAGCGAACAGCAGGTCCAGGCGATCCTCAAGGCCCAATCCAGCCGTCAGGACCGCCTGAACCATGCCGACGATGTGGTGGTCAACGACCGCGATCTCACCTGGCTGCACAGCGAGGTCGAGCGCCTGCATCACTTTTACCTTACCTTGCGTGGAGGCCAACCATGA	MNSPAKKPWILGLTGGIGSGKSAAAQHFIDLGVHAIDADHAARWVVEPGRPALASIAEHFGPGVLQADGALDRSALRTLIFENADERRWLEKLLHPLIAEEIAHHLGQAQSPYAILVSPLLIESGQYAMTQRILVIDAPEQLQIERTLQRDQTSEQQVQAILKAQSSRQDRLNHADDVVVNDRDLTWLHSEVERLHHFYLTLRGGQP	PGPT0008835_1511	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
D1-36_04319	207	yacG	COG3024	DNA gyrase inhibitor YacG	ATGAGCCAACCCCCCATCGTCGATTGCCCAACCTGTGGCGCCCCGGTCGAGTGGACCCCTGAAAGTAAATTCCGGCCATTCTGCTCAGATCGCTGCAAGCTGATCGACCTGGGCGCCTGGGCGTCGGAAGAACACAAGATCCCCGTGGCCCCGGATGCCGAGGATGAGTTGTTCAGCGAAGACTTCAACCCTCGTTCCCACCATTAA	MSQPPIVDCPTCGAPVEWTPESKFRPFCSDRCKLIDLGAWASEEHKIPVAPDAEDELFSEDFNPRSHH				NA	NA	NA	NA	NA
D1-36_04320	687			hypothetical protein	ATGATCGGAGCCGAATTGCTCTCGTCGCAGACCTTGGTGGCCGGCTGGCTGATCTATGTGCCGGCGCTGGCCTGGGCGGTGGCGCGTGCTCCGTGGGTCGAGCTGTTTACCGACGGTCGTCGCCAGCATCTGTTGTTCGGCACGGTGTTCGCGCTGTTCATGTTGTGGCTGGTGCGACGAGACTTCGACACGGGCGTTTCGTATCACTTCATCGGCCTGACCGCCGTGACTCTGCTGTTGGACTGGCCGCTGGCGATCCTTGGTGGCTTGTGCGCGCAGCTCGCGCTGGTGCTGCTGGGCCGTCAGGACATGATGGCGGTCGGCATCAACGGCGCGCTGTTGGTTCTCCTGCCAGTGCTGATCACTGAGTGTTGCGCGATCCTGGTGGAGCGTGCCCAGCCGCGCAACCTGTTTGTGTATATCTTCTGCTCGGGGTTCCTGGCTGCCGCGCTTTCGGCGCTAGTCTGCCTGCTGCTGGGGCTGGGCCTGCTCTGGCATGACGGCATATTTGCCATGCCTTACTGGCTGGGGGATTTCATCGGCTACCTCTGGCTGATCATTTTTCCCGAGGCTTTCATCAACGGCATGGTGGTCAGCGCGTTGGTGGTGTTCAGCCCCGAATGGCTGGAGACTTTCAACCGCACGCGCTACCTGTCGGCACCCTGGAACGACGACGACAAGCCTTGA	MIGAELLSSQTLVAGWLIYVPALAWAVARAPWVELFTDGRRQHLLFGTVFALFMLWLVRRDFDTGVSYHFIGLTAVTLLLDWPLAILGGLCAQLALVLLGRQDMMAVGINGALLVLLPVLITECCAILVERAQPRNLFVYIFCSGFLAAALSALVCLLLGLGLLWHDGIFAMPYWLGDFIGYLWLIIFPEAFINGMVVSALVVFSPEWLETFNRTRYLSAPWNDDDKP				NA	NA	NA	NA	NA
D1-36_04321	627			hypothetical protein	ATGGATGATTCCGATTATTTACGCCTGCTGACCATCGCGGCCGAGCAGGCCAACGCCTTTCTCTCCAACGCCCGCAAATGGGAGCGTGAGCGGTGGGTCTGCCAGCGCCTGTTACAAGGGCTCAACGTGCCTTATCGCGCCGACGAATTCGCTCCGGCCGGAGAGCCGCCGGATGTGCTGTTTCGCGACGCCAATTTCGAAGTATTTTTTGTGCTCGACGAGGGCCGTCGTCTCAATGACGAATGGCGCGATGAACTGCAGCGTCGTCGTAGTGCCTTCTCACTGAGCCAACTGGTGCGGCGCGAGGCCAAGCCCCGACGAATTCCCGCCAATGAGTTTCTGATGAGATTGGCACCGACCCTACGCAAGAAAGCCCATAACTACACCGAGCGTGGCATGGACCTGGGCGAACTGGACATCATCGCGTTCGCCAGCCTCAAGCGCGAAGTCCTGGACCTCAACAGCCACTTCCCACCGCCGACCGAATACCTGCGCCAGGGCTGGCGCTCGCTGTCGCTGGTGGGGCCGACGTTCGCCCGGGTGCTGTTCGCCCACCCCGATGCGCCGGACTTCCTGCGAGGCAACCTGGGCCGCAGCATTGTCTTCGACGTGGGGATCAGCCTGTGA	MDDSDYLRLLTIAAEQANAFLSNARKWERERWVCQRLLQGLNVPYRADEFAPAGEPPDVLFRDANFEVFFVLDEGRRLNDEWRDELQRRRSAFSLSQLVRREAKPRRIPANEFLMRLAPTLRKKAHNYTERGMDLGELDIIAFASLKREVLDLNSHFPPPTEYLRQGWRSLSLVGPTFARVLFAHPDAPDFLRGNLGRSIVFDVGISL				NA	NA	NA	NA	NA
D1-36_04322	174			hypothetical protein	ATGACCAGCCGCCTGAACCCAGATGACCAGAAGCATGTCGAAGAGTACCTGCAACTGTCCCAGCACCGAGTCGAGCGCCGGCCTTTCCGGCCGTGGATGCTCCTGGTGGTGGTACTGGCCATCACGATTGGCCTGGGCCTGTTGAGCCGATTGATCAGTTACCTGACGCTATGA	MTSRLNPDDQKHVEEYLQLSQHRVERRPFRPWMLLVVVLAITIGLGLLSRLISYLTL				NA	NA	NA	NA	NA
D1-36_04323	1299	ndh	COG1252	NADH dehydrogenase	ATGACTCATCGTATTGTCATCGTTGGCGGCGGCGCCGGCGGTCTGGAGTTGGCTACCCGTCTGGGTAAGACCCTGGGCAAGCGTGGCACGGCCAGTGTGATGCTGGTCGACGCGAACCTGACCCACATCTGGAAACCGTTGCTCCACGAAGTAGCGGCCGGCTCCCTCAACTCCTCCGAAGACGAACTCAACTATGTGGCCCAGGCGAAATGGAACCACTTCGAGTTCCAGCTCGGGCGCATGAGCGGCCTGGATCGCGAGAACAAGAGAATCCAACTGGCCGCCACCTATGACGAGGCGGGCGTCGAGCTGTTGCCAGCCCGGGAGCTGGGCTACGACACGCTGGTGATCGCGGTGGGCAGCACCACCAACGATTTCGGCACCGAGGGCGCGGCGCAGCATTGCCTGTTCCTCGATACCCGCAAGCAGGCCGAGCGCTTCCACCAGCAGTTGCTTCACCACTACCTGCGCGCTCACGCCGGGCAGACCGATACCATCGAGCGCATCAGCGTTGCGATCGTCGGCGCCGGTGCGACCGGCGTTGAACTGGCGGCCGAGCTGCACAACGCCGCCCACGAACTGCATGCCTACGGCCTGGACCGGATCAAACCGGAGAACATGCACATCACCCTGATCGAGGCGGGCCCACGGGTCTTGCCGGCACTGCCAGAGCGGATCGGCGGGCCAGTGCACAAAACCCTGGAAAAACTTGGGGTGAATGTCATGACCAACGCCTCCGTCAGCCAGGTGACTGCCGACAGCTTGATTACGGCGGACGGCAAAGTGATCGACGCGAGCCTGAAAGTCTGGGCCGCCGGGATCCGCGCGCCAGAATTCCTCAAGGACATCGACGGACTGGAGACCAACCGGATCAACCAGCTGCAGGTGCTGCCGACACTCCAGACCACTCGCGACGACAACATCTTTGCCTTCGGCGACTGCGCCGCCTGCCCGCAACCGGACAGCGACCGCAACGTCCCACCCCGCGCCCAGGCAGCGCATCAGCAAGCCTCGCTGCTGGCTAAATCGCTGAAGTTGCGGATCGAGGGCAAGGCCTTGCCTGAATACAAATACACTGACTACGGCTCGCTGATCTCGCTGTCGCGCTTTTCGGCGGTGGGTAACCTGATGGGCAACCTGACCGGCAGCGTGATGCTTGAAGGCTGGCTGGCGCGGATGTTCTATGTGTCGTTGTACCGCATGCACCAGATGGCGCTGTACGGGATGTTCCGTACCGCGATGCTGATGCTGGGTAGCAAGATCGGGCGTGGGACCGAGCCACGGTTGAAACTGCACTGA	MTHRIVIVGGGAGGLELATRLGKTLGKRGTASVMLVDANLTHIWKPLLHEVAAGSLNSSEDELNYVAQAKWNHFEFQLGRMSGLDRENKRIQLAATYDEAGVELLPARELGYDTLVIAVGSTTNDFGTEGAAQHCLFLDTRKQAERFHQQLLHHYLRAHAGQTDTIERISVAIVGAGATGVELAAELHNAAHELHAYGLDRIKPENMHITLIEAGPRVLPALPERIGGPVHKTLEKLGVNVMTNASVSQVTADSLITADGKVIDASLKVWAAGIRAPEFLKDIDGLETNRINQLQVLPTLQTTRDDNIFAFGDCAACPQPDSDRNVPPRAQAAHQQASLLAKSLKLRIEGKALPEYKYTDYGSLISLSRFSAVGNLMGNLTGSVMLEGWLARMFYVSLYRMHQMALYGMFRTAMLMLGSKIGRGTEPRLKLH	PGPT0004020_2904	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
D1-36_04324	1626			hypothetical protein	ATGTTCCTTCGCCAACTGAATATTGCCCGCCGCGCCGCGCTGGGTTTTGCCTTGATCGCCGTCCTGGTGGCGCTGCTCGGGGTCTTTGCGCTGGGACAGATGTCGAGCATTCGCGACAGTGAGGTCGCGGTGGAAACCCAGTGGTTGCCCAGCATCCGTGGCGGAGACGAGATCCGTGAATTGATGCTGCGCATTCGCACCATTTCCCTGCGCATGGCCTTGGATCAGGACCCGAAAAACATTGCGGTGTATCGCGGCCAGATGGATACCCGCGATAAAGAACTGAGCGAAAAAATCGCCAGTTACGACAAATTGGTCGTCACGCCGGAAGGCAAGGCGCTTTACGACCAGTTCAAACAGACTTTCGCCGCCTATCGTTCGGGTATCGCCCAGTCGTTTACCTTGGCGGAGCAGGGGCGTCGGGATGAGCTGATCAAGCTGTTGCTGGTGGACATGAAAACCGTGGTGGACGGTTCGGGCAAACAGCTCAATGATCTGGCGGAATTATTCTCCAAGCAGGTGTCGATCGAGAGCCAGAAGTCCCAGGAGCACTACGTCAATTCCCGCATGATCGTCAGCCTGTTCATTGTGCTTGCCGCCCTGGCTACGGTGGCCCTGGCCATGTTGCTCACGCGCAGCATCGTCAAGCCCCTGGGCGAGGCGCTGAATGCTGCGCAGAGCGTAGCCCGGGGTGACCTGACCCGGCCGATCGAGACCCATGGCAACGATGAAGTCAGCCGTTTGCTCATGGCGCTGGCGGCCATGCAGCAGAATCTGCGTGAGACGTTGCAGGGCATCAGCGGCTCGGCCGCGCAACTGGCCACGGCAGCCGATGAGCTGAACGCCGTCACGCTCGACAGCACCCACAGCCTGCAGCAGCAGAACAACGAAATTGAACAGGCTGCCACTGCCGTCACCGAGATGACCACCGCCGTGGAGGAAGTCGCGCGCAACGCCGTTTCAACCTCCGACGCCACCCGCCAATCCAGCGAATCGGCGACGTTGGGGCAGGAGCGGGTCAGCGACACCGTCGACGCCATCAGCGCGCTCGCCAACGATGTTCAGGTTACCGGCGGCCTGGTGCAGTCACTGGCCAGCCAATCCCAGGATATCGGCAAAGTGCTGGATGTGATTCGGGCCATTGCCGAGCAGACCAACTTGCTGGCCCTTAACGCGGCCATTGAAGCGGCCCGGGCGGGAGAGAGCGGGCGGGGGTTTGCGGTGGTTGCCGACGAGGTGCGGGCGCTGGCGTATCGCACGCAGCAATCGACCCAGGAGATCGAGCAGATGGTCCAGGGCATGCGCAGCGGTGCCACCCAGGCGCTGGATTCCATGCAAGCCAGTTCCAGCCGTGCGGCGAGCACCCTCGCGATGGCGGAGCGGGCAGGGGAAGCGCTGCAAACCATTACGGCATCGGTCAGCGAGATCCATGAGCGCAACCTGGTCATCGCCAGTGCCGCCGAAGAACAGGCGCAAGTGGCTCGCGAGGTTGATCGCAACCTGGTGAATATTCGCGATTTGTCCGTGCGCTCGGCTTCCGGCGCGGATCAGACCAGTGCCTCCAGCCATGAATTGTCGCAGCTTGCAAACTCGCTGCGCACGATGGTGCAGCGGTTTCAGGTTTGA	MFLRQLNIARRAALGFALIAVLVALLGVFALGQMSSIRDSEVAVETQWLPSIRGGDEIRELMLRIRTISLRMALDQDPKNIAVYRGQMDTRDKELSEKIASYDKLVVTPEGKALYDQFKQTFAAYRSGIAQSFTLAEQGRRDELIKLLLVDMKTVVDGSGKQLNDLAELFSKQVSIESQKSQEHYVNSRMIVSLFIVLAALATVALAMLLTRSIVKPLGEALNAAQSVARGDLTRPIETHGNDEVSRLLMALAAMQQNLRETLQGISGSAAQLATAADELNAVTLDSTHSLQQQNNEIEQAATAVTEMTTAVEEVARNAVSTSDATRQSSESATLGQERVSDTVDAISALANDVQVTGGLVQSLASQSQDIGKVLDVIRAIAEQTNLLALNAAIEAARAGESGRGFAVVADEVRALAYRTQQSTQEIEQMVQGMRSGATQALDSMQASSSRAASTLAMAERAGEALQTITASVSEIHERNLVIASAAEEQAQVAREVDRNLVNIRDLSVRSASGADQTSASSHELSQLANSLRTMVQRFQV	PGPT0015710_21032	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_04329	2565	clpB	COG0542	Chaperone protein ClpB	ATGCGTATTGACCGTTTAACCAGCAAATTACAATTGGCCTTGTCCGACGCCCAGTCCTTGGCCGTCGGGCTGGACCATCCCAGTATCGAACCGGCGCATTTGATGCAGGCCATGCTCGAACAGCAGGGCGGCTCGATCAAGCCGCTGCTGATGCAAGTGGGCTTTGACGTCAACAGCCTGCGCAAGGAACTGGCCAAAGAACTCGACCAGTTGCCCAAGATCCAGAATCCGACCGGTGATGTGAACATGTCCCAGGATCTGGCGCGGCTGCTCAACCAGGCCGACCGCCTGGCCCAGCAGAAGGGCGACCAGTTCATTTCCAGCGAACTGGTGTTGCTCGCCGCGATGGACGAGAACAGCAAGCTTGGCAAGTTGCTGCTCGGTCAGGGCGTGAGCAAGAAAGCCTTGGAAAACGCCATCAACAACCTGCGCGGGGGCGATGCGGTCAACGACCCGAACCACGAGGAAGCGCGTCAAGCCCTGGATAAATACACCGTCGACCTGACCAAGCGCGCCGAAGAAGGCAAGCTCGACCCGGTGATCGGCCGTGACGATGAAATCCGTCGAACCATCCAGGTCCTGCAACGGCGCACGAAGAACAACCCGGTCCTGATCGGTGAGCCCGGCGTGGGTAAGACCGCCATCGCCGAAGGCTTGGCCCAGCGCATCATCAACGGCGAAGTGCCGGACGGGCTGAAGGGCAAGCGCCTGCTGTCTCTGGACATGGGGGCGCTGATCGCTGGCGCCAAGTATCGCGGTGAATTCGAAGAACGGCTCAAGGCCCTGCTCAATGAACTGTCGAAGCAGGAAGGCCAGATCATTCTATTCATCGATGAATTGCACACCATGGTTGGCGCCGGCAAGGGCGAAGGCTCGATGGACGCCGGCAACATGCTCAAGCCTGCGCTGGCCCGTGGTGAGCTGCATTGCGTCGGTGCGACCACGCTCAACGAATACCGCCAATACATCGAGAAAGACGCGGCGCTTGAGCGGCGATTCCAGAAAGTGCTGGTGGATGAGCCCAGCGAAGAAGACACCATCGCCATCTTGCGCGGCCTGAAGGAGCGCTATGAGGTCCACCACAAAGTGGCCATCACCGATGGCGCGATCATCGCGGCGGCCAAGCTCAGCCATCGCTATATCACCGACCGTCAGTTGCCGGACAAGGCCATCGACCTGATCGACGAGGCCGCCAGCCGTATCCGCATGGAAATCGACTCCAAGCCCGAAGTGCTGGATCGGTTGGAGCGACGCTTGATTCAACTCAAGGTCGAGTCCCAGGCGCTGAAAAAAGAAAGCGACGAAGCGGCGAAGAAACGTCTGGAAAGATTGCAGGAAGAAATCGTTCGTCACGAGCGCGAATATTCCGATCTCGAAGAGATCTGGAATTCGGAAAAAGCTGAAGTCCAGGGTTCGGCTCAGATCCAGCAAAAGATCGAACAATCCCGCCAGGAGCTGGAAGCGGCTCGCCGCAAAGGTGACCTCAACCGCATGGCCGAGCTGCAATACGGGGTCATCCCGGACCTGGAGCGCAGCCTGCAGATGGTCGACCAACACGGCAAAAGCGAAAACCAGCTGCTGCGCAGCAAGGTCACCGAGGAAGAAATCGCCGAAGTGGTGTCCAAGTGGACCGGCATTCCGGTCTCGAAGATGCTCGAAGGCGAGCGCGACAAGCTGCTGAAGATGGAAAGCCTGTTGCACCAGCGTGTGATCGGCCAGGAAGAAGCGGTGGTGGCGGTGTCCAACGCCGTGCGCCGGTCCCGTGCCGGGTTGTCGGACCCCAACCGTCCGAGCGGCTCGTTCATGTTCCTCGGCCCGACCGGTGTGGGTAAAACCGAGCTGTGCAAGGCGCTGGCCGAGTTCCTCTTCGATACCGAGGAAGCCATGGTGCGCATCGACATGTCCGAATTCATGGAGAAGCACTCCGTGGCCCGCTTGATCGGCGCACCGCCGGGCTATGTTGGATATGAAGAGGGCGGTTACCTGACCGAGGCCGTGCGTCGCAAGCCGTACTCGGTGATATTGCTCGATGAGGTCGAGAAAGCGCACCCGGATGTCTTTAACATCCTGCTGCAAGTGCTGGAGGACGGTCGCCTGACCGACAGTCATGGGCGCACGGTGGACTTTCGCAACACGGTGATCGTGATGACCTCCAACCTGGGCTCGACGCAGATTCAGGAGCTGGTCGGCGATCGCGAGGCGCAACGTGCCGCAGTGATGGATGCGATCTCTACGCACTTCCGGCCGGAGTTCATCAACCGTGTTGACGAAGTGGTGATCTTTGAGCCGTTGGCCCGGGATCAGATCGCCGGCATCACCGAGATCCAGCTGGGTCGCCTGCGCAGCCGCCTCACCGAGCGCGAGTTGAAGCTGCAACTGAGCGACGAGGCGTTGGACAAGCTGATCGCGGTGGGTTACGACCCGGTCTATGGCGCGCGGCCGCTCAAGCGAGCGATCCAGCGCTGGATCGAAAACCCGTTGGCGCAGTTGATTCTGTCCGGGCGGTTCATGCCGGGCGAAACCGTGACCGGTACCGTGGAAAACGACGAAATCGTCTTCAACTGA	MRIDRLTSKLQLALSDAQSLAVGLDHPSIEPAHLMQAMLEQQGGSIKPLLMQVGFDVNSLRKELAKELDQLPKIQNPTGDVNMSQDLARLLNQADRLAQQKGDQFISSELVLLAAMDENSKLGKLLLGQGVSKKALENAINNLRGGDAVNDPNHEEARQALDKYTVDLTKRAEEGKLDPVIGRDDEIRRTIQVLQRRTKNNPVLIGEPGVGKTAIAEGLAQRIINGEVPDGLKGKRLLSLDMGALIAGAKYRGEFEERLKALLNELSKQEGQIILFIDELHTMVGAGKGEGSMDAGNMLKPALARGELHCVGATTLNEYRQYIEKDAALERRFQKVLVDEPSEEDTIAILRGLKERYEVHHKVAITDGAIIAAAKLSHRYITDRQLPDKAIDLIDEAASRIRMEIDSKPEVLDRLERRLIQLKVESQALKKESDEAAKKRLERLQEEIVRHEREYSDLEEIWNSEKAEVQGSAQIQQKIEQSRQELEAARRKGDLNRMAELQYGVIPDLERSLQMVDQHGKSENQLLRSKVTEEEIAEVVSKWTGIPVSKMLEGERDKLLKMESLLHQRVIGQEEAVVAVSNAVRRSRAGLSDPNRPSGSFMFLGPTGVGKTELCKALAEFLFDTEEAMVRIDMSEFMEKHSVARLIGAPPGYVGYEEGGYLTEAVRRKPYSVILLDEVEKAHPDVFNILLQVLEDGRLTDSHGRTVDFRNTVIVMTSNLGSTQIQELVGDREAQRAAVMDAISTHFRPEFINRVDEVVIFEPLARDQIAGITEIQLGRLRSRLTERELKLQLSDEALDKLIAVGYDPVYGARPLKRAIQRWIENPLAQLILSGRFMPGETVTGTVENDEIVFN	PGPT0014580_4691	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014580-clpB-K03695	NA	NA
D1-36_04330	726	yfiH	COG1496	Polyphenol oxidase	ATGAATGACTGGCTGCTCCCCGACTGGCCCGCGCCAGCCCGGGTCAAAGCCTGCGTCACCACCCGCGAAGGCGGCGTCAGCCTGGCGCCGTTCGACAGCCTCAACCTGGGCGACCATGTCGGCGACGACCCTGCGGACGTCGCTGAAAATCGTCGCCGCCTCACCGACCGATTCGCGATTACTCCAACCTGGCTGCAGCAAGTCCACGGTATTGACGTGGTCGAGGCTGATCCGACCCAGGTGGTTACCGCTGATGCGAGCTGGAGCGCCACGCCGGGTGTCGCTTGCACGGCAATGACGGCCGATTGCCTGCCGGTGTTGTTCTGCAACCGCGCCGCAACCCATGTCGCGGCGGCCCATGCCGGGTGGCGCGGACTGGCGAACGGTGTGCTGGAAGCCACCCTCGATAGCCTTGCCATGCCCGCGGATGAAATCCTTGCCTGGCTCGGCCCGGCCATCGGTCCGCAAGCGTTCGAAGTTGGGCCGGAAGTGCGCGAAGCCTTTATTGCGCAACTGGCCGACGCAGAGCGAGCCTTCGTACCCAGCCACAACACCGGCAAGTTCCTGGCTGATATCTACGCGCTGGCGCGCCTGCGTCTGGCGGCACGGGGCGTTACCGCCGTGTACGGTGGCGGCTTGTGCACCGTGACCGACCCACGCTTCTTTTCCTATCGCCGCAACGCGCGCACCGGTCGCTTCGCTTCCTTGATCTGGCTCGAACGCTAG	MNDWLLPDWPAPARVKACVTTREGGVSLAPFDSLNLGDHVGDDPADVAENRRRLTDRFAITPTWLQQVHGIDVVEADPTQVVTADASWSATPGVACTAMTADCLPVLFCNRAATHVAAAHAGWRGLANGVLEATLDSLAMPADEILAWLGPAIGPQAFEVGPEVREAFIAQLADAERAFVPSHNTGKFLADIYALARLRLAARGVTAVYGGGLCTVTDPRFFSYRRNARTGRFASLIWLER	PGPT0019965_3454	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
D1-36_04331	1062	rluD	COG0564	Ribosomal large subunit pseudouridine synthase D	ATGATGAGCGCCCCGTTGAAAGCCTCGGGGCAAAAGACGCCGTATTTAACCACAAGCGCGCAGCCGAAACCAAAGGCTGTGCCGACGCCCAGTCCGAGCATGTCCGATAAAATAGAACTTCGCGCAGAGGTGCCGTCCGAATTGGGCGGCCAACGCCTCGATCAAGTCGCCGCCCAACTCTTCGCCGAGCACTCGCGCTCGCGCCTTTCCGCCTGGATCAAGGACGGCCGCCTGACGGTGGACGGGGCGGTGATCCGCCCGCGCGACATCGTCCATGGCGGTGCCGTCCTCGAGCTGACCGCCGAGCAGGAGGCCCAGGGAGAATGGGTCGCCCAGGACATTGCCCTGGACATCGTCTATGAAGACGACGATATCCTGGTGATCAACAAGCCTGCGGGCCTGGTGGTCCACCCGGCGGCCGGTCATGCCGACGGCACGTTGCTCAACGCCTTGCTGCACCACGTGCCGGGCATCATCAATGTGCCGCGCGCCGGTATCGTCCATCGCCTGGACAAGGACACCACCGGTCTGATGGTGGTCGCCAAGACCATCCAGGCGCAGACGCAACTGGTGACACAGCTGCAAAGCCGGAGCGTCAGCCGCATCTATGAGTGCATCGTGATCGGGGTGGTCACCGCCGGTGGCAAGATCAACGCGCCGATCGGCCGTCACGGCCAGCAGCGCCAGCGCATGGCCGTGATGGAAGGCGGAAAGCAGGCCGTCAGCCACTACCGCGTGCTTGAACGCTTCCGTTCCCACACCCACGTGCGGGTCAAGCTGGAAACCGGCCGGACCCACCAGATCCGCGTGCACATGGCTCACATCAATTTCCCATTGGTGGGCGACCCGGCCTATGGCGGTCGTTTCCGTATTCCACCGGCTGCCAGCCAGACCATGGTGGAATCACTGAAGAATTTCCCTCGACAGGCGCTGCACGCGCGCTTCCTTGAGCTCGATCACCCGACGACCGGCAAGCGCATGAGCTGGGAATCGCCGCTGCCGGATGATTTTGTCTGGCTTTTGACGTTGCTCAAGCAGGACCGCGAGGCGTTCATCGGATGA	MMSAPLKASGQKTPYLTTSAQPKPKAVPTPSPSMSDKIELRAEVPSELGGQRLDQVAAQLFAEHSRSRLSAWIKDGRLTVDGAVIRPRDIVHGGAVLELTAEQEAQGEWVAQDIALDIVYEDDDILVINKPAGLVVHPAAGHADGTLLNALLHHVPGIINVPRAGIVHRLDKDTTGLMVVAKTIQAQTQLVTQLQSRSVSRIYECIVIGVVTAGGKINAPIGRHGQQRQRMAVMEGGKQAVSHYRVLERFRSHTHVRVKLETGRTHQIRVHMAHINFPLVGDPAYGGRFRIPPAASQTMVESLKNFPRQALHARFLELDHPTTGKRMSWESPLPDDFVWLLTLLKQDREAFIG				NA	NA	NA	NA	NA
D1-36_04332	1017	bamD		Outer membrane protein assembly factor BamD	ATGCAAGTGAAACACCTGCTGCTGATCGCCATCCTCGCATTGACTGCTGCTTGCTCGTCGAAGGAAGTCGTAGACGAAAACCTGAGCGAAGTCGAACTGTACCAACAGGCGCAGAACGACCTGGATAACAACAGCTACACCAGCGCCACCGCCAAGCTGAAGGCGCTGGAGTCGCGGTATCCGTTCGGTCGCTACGCCGACCAGGCGCAGTTGGAGCTGATCTACGCCAACTACAAGAACGCCGAGCCGGAAGCTGCCAAGTCCGCCGCCGAGCGCTTCATTCGTCTGCACCCGCAGCACCCGAACGTCGATTACGCTTACTACCTCAAGGGCCTGACCTCCTTCGACCAGGACGTCGGACTGCTGGCGCGCTTCCTGCCGCTGGACATGACCAAGCGTGACCCGGGCGCCGCGCGCGACTCCTACAACGAGTTCGCCCAGCTGACCAGCCGCTTCCCCAACAGCCGTTATTCGCCCGACGCCAAGCAGCGCATGATCTACCTGCGCAACCTGCTGGCGTCCTACGAAATCCACGTGGCTGATTACTACCTGACTCGCCAGGCCTACGTCGCCGCCGCCAACCGTGGCCGATACGTGGTGGAAAACTTCCAGGAAACCCCATCGGTCGGCGACGGCCTGGCGGTGATGACCGAAGCCTACCAGCGCCTGCACCTGGACGAACTTGCGGCCACCAGCCTGGAAACCCTGAAGCTGAACTACCCCGACCACCCTTCCCTGGTCGACGGCCAATTCACCCCACGCGTCGACGAAGCCGACAACCGTTCGTGGCTGAGCAAGGCGACCCTTGGCCTGATCGAGTCCCGTCCTCCGCTGCCACCGGGCGAAACCCGCGCCAACCAGGACGTACAGCGTCAGTTCCAGGATGCCAAGGAAGCCATTCCGAACGAGCTCAAGCCAAAGGATGAAAATGGCGACGTGATCGAAGAGCCAGAGCCTGAAAGCGAGTCCAGCGACCGCTCCTGGTTCAGCTACATGACCTTCGGCCTGTTCGACTGA	MQVKHLLLIAILALTAACSSKEVVDENLSEVELYQQAQNDLDNNSYTSATAKLKALESRYPFGRYADQAQLELIYANYKNAEPEAAKSAAERFIRLHPQHPNVDYAYYLKGLTSFDQDVGLLARFLPLDMTKRDPGAARDSYNEFAQLTSRFPNSRYSPDAKQRMIYLRNLLASYEIHVADYYLTRQAYVAAANRGRYVVENFQETPSVGDGLAVMTEAYQRLHLDELAATSLETLKLNYPDHPSLVDGQFTPRVDEADNRSWLSKATLGLIESRPPLPPGETRANQDVQRQFQDAKEAIPNELKPKDENGDVIEEPEPESESSDRSWFSYMTFGLFD				NA	NA	NA	NA	NA
D1-36_04333	234			hypothetical protein	ATGCTTCGTCTATTGTTCTGGATCGTACTGATTGCCGCCGCGATATGGCTGTGGCGCAAGTTCAAGGGTGCCTCCTCCGCGTCCAACGCGCCCCGGGAGCAGGACGCGCCGCCGATGGTTCGCTGCGCCCATTGCGGCGTTCACTTGCCACGGGACCGGGCGCTGGAGCTCCAGCAACAATGGTACTGCAGCCAAGCTCATCTCGAGCAAGGCCCGGGCACTCGTGATCGCTAA	MLRLLFWIVLIAAAIWLWRKFKGASSASNAPREQDAPPMVRCAHCGVHLPRDRALELQQQWYCSQAHLEQGPGTRDR				NA	NA	NA	NA	NA
D1-36_04334	1590	sasA_17		Adaptive-response sensory-kinase SasA	GTGATCGCTAAGGACGAACGCCCTCGCGTCAAACAGGCGCAGCGCCTGCTGCGTCTTTATCACCTGTACCGCCTCAGCATCGGCATCACCCTGGTGCTGTTGATCTCCAGCAACATGGACAACCGCCTGCTGGAGTTCGCCAACGACGACCTGCTACGCAGTGGCAGTTGGTTATACCTGATATTGAACATCCTGCTGGTAGTGTTCCTGGAGAACACTCGCCACCCCGCGCGACTGTTTGGCCTGGCATTGACCGACATATTGCTGCTGTCGTGGCTGTTCTTCGTCGCGGGCGGCGCCCCCAGCGCCATCGGTAACCTGATCATTGTGTCGGTGGCGATCGGCAATACCTTGCTGCGCGGCCGAATCGGCCTTCTGCTCGCCGCCGTGGCCACCCTCGGAATCGTCGGCTCGACTTTCGTGCTCGGCCTCAGCGATTCGAGCCGGCCCAGCAGTTATTTGCAGGCGGGCACCCTGGGCGCCTTGTGCTTTGCCGCCGCGTTGCTCGTGCAGCGCCTGACCCGACGACTGGAAGCGAGCGAGATCCTCGCCGAGCAAAGGGCCAGCGAAGTGCTCAGCCTCGAAGCGCTCAACGCATTGATCCTGCAACGCATGCGCACCGGCATCCTGGTCCTGGATCGTCAACGCAGGGTCCAACTGGCCAATGAAAGCGCCTTGAACCTGCTGGGCATGCATGACCTGATCGGCCAGCGAATCGACGATTCATCGATCGCCCTGGTCGAACGACTGCAACTATGGCTGAACAACCCCAGCCTGCGGCCGCAAAGCCTGACCATCAGCGGCAGCGGCCTGACGTTGCAGCCCAGCTTTATCGCCCTGGGATCGCAGGATCAGCAGCAGATCCTGGTATTTCTCGAAGATCTGGCCCAGGTGGCCCAACACGCCCAGCAACTGAAGTTGGCTTCCCTCGGTCGCCTCACCGCCGGTATCGCCCATGAAATCCGCAACCCGCTGGGAGCGATCAGCCACGCTGCGCAATTGCTGCGCGAGTCCGAGGAACTGAACGACGCGGACCGGCGTCTGACGCAGATTATTCAAGATCACTCCCAACGCATGAATCGCGTCATCGAGAATGTCCTGCAGCTGTCACGCCGCCAGCAAACCGCGCCCCAACGCCTGGATCTACGCACCTGGTTGGAGCAATTCGTCCAACAGGCCAGGGAAAGCGCCGCGCAACACCAACAGTTGCACCTGGACATCGCTCCAGGCGACTACATCACCCTGATGGACCCCGGCCAGCTGGCCCAGGTGCTGGATAACCTGCTGCGCAACGCCTGGCGCCACAGCGCAATGGCCCATGAACAGGCCGAGGCGTGGCTGGAGCTATTCACCGATCCCCGCAGTCAACTGGCGACACTGGACATCCGCGACAACGGCCCCGGCGTGACACCTGACCAGCAGACACACCTGTTCGAACCGTTCTTCACCACCAGCAACCAGGGTACCGGCCTTGGGCTCTATCTGTCCCGTGAGCTGTGCGAAAGCAACCAGGCCCGCCTAGACTTCAAACCACGCCAAGGCGGCGGCTGCTTTCGCATCACCTTTGCTCACGGACGGAAACAGATTTGA	MIAKDERPRVKQAQRLLRLYHLYRLSIGITLVLLISSNMDNRLLEFANDDLLRSGSWLYLILNILLVVFLENTRHPARLFGLALTDILLLSWLFFVAGGAPSAIGNLIIVSVAIGNTLLRGRIGLLLAAVATLGIVGSTFVLGLSDSSRPSSYLQAGTLGALCFAAALLVQRLTRRLEASEILAEQRASEVLSLEALNALILQRMRTGILVLDRQRRVQLANESALNLLGMHDLIGQRIDDSSIALVERLQLWLNNPSLRPQSLTISGSGLTLQPSFIALGSQDQQQILVFLEDLAQVAQHAQQLKLASLGRLTAGIAHEIRNPLGAISHAAQLLRESEELNDADRRLTQIIQDHSQRMNRVIENVLQLSRRQQTAPQRLDLRTWLEQFVQQARESAAQHQQLHLDIAPGDYITLMDPGQLAQVLDNLLRNAWRHSAMAHEQAEAWLELFTDPRSQLATLDIRDNGPGVTPDQQTHLFEPFFTTSNQGTGLGLYLSRELCESNQARLDFKPRQGGGCFRITFAHGRKQI	PGPT0015870_466	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0015870-pilS|pehS-K02668	NA	NA
D1-36_04335	1347	atoC_3	COG2204	Regulatory protein AtoC	TTGAATACACGCTCACGGCAACGAATCCTGGTCGTCGATGACGAGCCGGACATCCGCGAACTCCTGGAAATGACCCTGGGAAGGATGAAACTCGACACCCGCAGCGCCAAGAACCTGGCCGAGGCGCAATCCGCCCTGGCGGGCGAAGCCTTCGACCTGTGCCTGACCGACATGCGCCTGCCCGATGGCACCGGCCTGGAACTTGTGAAACATATCCAGCAACGTTATCCCCAACTGCCCGTGGCGATGATCACTGCCTACGGCAGCCTGGACGTCGCCATCGACGCCCTCAAGGCCGGCGCCTTCGATTTCCTGACCAAGCCCGTGGACCTGACTCGCCTGCGGGAACTGGTCGGCAGCGCCCTGCGCCTTTCAGCGGCCATCCCGCCCGCCGCCACCGTCGAACGCTGTCTATTGGGCGATTCGCCACCGATGCGCAGCGTGCGCAAGCACATCGAAAAACTGGCCCGCAGCCAGGCGCCGGTGTACATCAGCGGCGAATCGGGTTGCGGCAAGGAACTGGTCGCCCGCCTGATCCACGAGCAAGGGCCCCGTGCCAGTCAGCACTTCGTGCCTGTCAATTGTGGGGCGATTCCCAATGAGCTAATGGAAAGCGAGTTTTTCGGCCATCGAAAAGGCAGCTTTACCGGCGCCATCGAAGACAAACCCGGACTGTTCCAGGCCGCGCACGGCGGAACGCTGTTCCTCGATGAAGTGGCCGACCTGCCGCTGGCGATGCAGGTCAAACTCTTGCGCGCCATCCAGGAGAAAGCCGTTCGCGCCGTCGGAGGCCAGCAGGAAGAAGTGGTGGACGTACGAATCCTCTGTGCCACCCATAAAGACCTGGACGCTGAAGTCGCCGCCGGGCGCTTTCGCCAGGATTTGTACTACCGACTGAACGTCATCGAACTGCGCGTCCCGCCCCTGCGCGAACGCCGTGAAGACATCGAACCCCTGGCCAACCACATGCTCCAGCGCCTGGCCGCCAGCACTGGCAACCCTGTGGCGAAGCTGCACCCACAAGCACTCGAGGCTCTGCGCAACTATCGTTTTCCGGGCAACGTGCGGGAATTGGAAAACATGCTGGAAAGGGCCTATACCCTTTGCGAACACCATCAGATCGAGGCCGATGACCTGCGCCTTGCCGAGAGCTACGCGGGTGGCGACGTGGCCAATGCCGACCTGGTGCGGGTCGACAACCTGGAAGACTACCTCGAAGACGTTGAACGCAAGGTCATCCTTCAGGCGCTGGAGGAAACCCGCTGGAATCGCACGGCGGCGGCACAACGATTGAAGTTGTCGTTTCGGTCGATGCGATATCGGTTGAAGAAGTTGGGGTTGGATTAG	MNTRSRQRILVVDDEPDIRELLEMTLGRMKLDTRSAKNLAEAQSALAGEAFDLCLTDMRLPDGTGLELVKHIQQRYPQLPVAMITAYGSLDVAIDALKAGAFDFLTKPVDLTRLRELVGSALRLSAAIPPAATVERCLLGDSPPMRSVRKHIEKLARSQAPVYISGESGCGKELVARLIHEQGPRASQHFVPVNCGAIPNELMESEFFGHRKGSFTGAIEDKPGLFQAAHGGTLFLDEVADLPLAMQVKLLRAIQEKAVRAVGGQQEEVVDVRILCATHKDLDAEVAAGRFRQDLYYRLNVIELRVPPLRERREDIEPLANHMLQRLAASTGNPVAKLHPQALEALRNYRFPGNVRELENMLERAYTLCEHHQIEADDLRLAESYAGGDVANADLVRVDNLEDYLEDVERKVILQALEETRWNRTAAAQRLKLSFRSMRYRLKKLGLD	PGPT0015865_512	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0015865-pilR|pehR-K02667	NA	NA
D1-36_04336	129			hypothetical protein	ATGTATGACAAGCCTTCTTCACCTTCAGAAAACAATAAAGCCTCTCCTGACGCCAGCCTTAACCCAGAAGGGCTCGATGAAGCCACCAAGCGCACCATCGACAAATCGCCCTGGGCGTACAGCAACTGA	MYDKPSSPSENNKASPDASLNPEGLDEATKRTIDKSPWAYSN				NA	NA	NA	NA	NA
D1-36_04338	99			hypothetical protein	ATGCGGGTCCGTCCGCTGTTGCTGTTGCTGTTGCTGTTGCTGTTGCTGTTGCTGTTGCTGTTGCTGTTGCTGTTGCTGTTGCTGTTGCTCTGCTTTTGA	MRVRPLLLLLLLLLLLLLLLLLLLLLLLLLCF				NA	NA	NA	NA	NA
D1-36_04340	1146	thiO		Glycine oxidase	ATGGGCGCGGCGTTGCGCCCTTTGTCTAATGAGTCGAAACAGAACATGACCAGGCAACAGCAAGTGGTGATCGTCGGCGGTGGGGTGATTGGCCTTCTGACCGCATTCAATCTGGCCTGCGAGGGGCAGCGCGTCGTGCTGCTGGATCGCTCCGGCGTTGGGCAGGAGTCATCCTGGGCGGGTGGCGGTATCGTTTCGCCGTTGTACCCGTGGCGTTATAGCCCGGCGGTCACCGCGCTGGCCCATTGGTCACAGGATTTTTATCCACAGCTGGGCGAGCGCTTGTTTGCCGCCACCGGGATTGATCCACAGGTGCATGTCACCGGGCTGTATTGGCTCGACCTCGATGACCAGGACGAAGCGCTGGCCTGGGCCGAGCGGGAAGGGCGTCCGTTGCGCGCCGTGGATATCTCGGCGGTTCACGACGCCGTGCCGGTGCTGGGCTCAGGGTTTTCCCGGGCGATCTACATGGCCGACGTGGCTAACGTGCGTAATCCCCGGCTGGTGAAATCCCTCAAGGCCGCGTTGGCAGCGCTGCCCAACGTCACGCTCCATGAGTACTGCGAAGTCCGGGGATTCATACGCGACGGTGAGCGCGTGGTGGGAGTGGACAGCTCGGCTGGAGCGATTCGCGGCGATCAAGTGGTATTGGCGGCTGGCGCCTGGAGTGGCGAGCTGCTCAAGACATTGGGCTTGAAGTTACCGGTCGAACCGGTGAAGGGGCAGATGATCCTGTACAAATGCGCGGAGGATTTTTTGTCGAGCATGGTCCTGGCCAAGGGGCGCTACGCGATTCCACGTCGTGATGGGCACATCTTGGTTGGAAGTACGCTGGAGCGTGAGGGCTTTGACAAGACGCCGACCGATGCCGCGCTGGAGAGTCTCAAGGCTTCGGCGGTGGCGCTTATTCCTGAGCTTGCCGATGCCGAGGTGGTTGGGCACTGGGCGGGGTTGCGACCTGGGTCGCCGAAAGGGATTCCCTATATTGGCGAAGTGCCAGGGTTTGCGGGGCTTTGGTTGAACTGTGGGCATTATCGCAATGGGCTGGTGCTGGCGCCGGCTTCGTGTCGGTTGTTTGTGGATTTGATGTTGGGGCGCGAGCCGGTGGTTGATCCTGTGCCTTATGCGCCGGCTGGGCGGTTGTAG	MGAALRPLSNESKQNMTRQQQVVIVGGGVIGLLTAFNLACEGQRVVLLDRSGVGQESSWAGGGIVSPLYPWRYSPAVTALAHWSQDFYPQLGERLFAATGIDPQVHVTGLYWLDLDDQDEALAWAEREGRPLRAVDISAVHDAVPVLGSGFSRAIYMADVANVRNPRLVKSLKAALAALPNVTLHEYCEVRGFIRDGERVVGVDSSAGAIRGDQVVLAAGAWSGELLKTLGLKLPVEPVKGQMILYKCAEDFLSSMVLAKGRYAIPRRDGHILVGSTLEREGFDKTPTDAALESLKASAVALIPELADAEVVGHWAGLRPGSPKGIPYIGEVPGFAGLWLNCGHYRNGLVLAPASCRLFVDLMLGREPVVDPVPYAPAGRL	PGPT0008955_1211	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008955-thiO-K03153	NA	NA
D1-36_04341	405			hypothetical protein	ATGCACAGATCCAACCGAGGTTTCACCTTGATCGAAATCATGATTGTCATCGCGATCATCGGTATCGTGATCACCATCGGCTACCCGAGCCTGACCGAATACATTAAAAAGGCCCGGCGTACCGAGATTGCCTCGCTGCTGTCGGAGCAGGCGCAGATCCTCGAGCGTCACTACTCGAAGAACAACGTCTATTCCAACGCGACCGGCCTGAGCACTGGGAATGACTTCTACACCATTATCCCTACGACCTTGACGGACCAGACCTTTACGTTGACGGCCGCGCGCAGGAGCGGCTCGTCCATGGCCGCGGACAAGTGCGGTGATTTCACGATCAACAACACGGGCAAGCGGGACATCACGAACGCCGCTGCCGGGGTGACCGTCAAGGACTGCTGGGGCCGCTGA	MHRSNRGFTLIEIMIVIAIIGIVITIGYPSLTEYIKKARRTEIASLLSEQAQILERHYSKNNVYSNATGLSTGNDFYTIIPTTLTDQTFTLTAARRSGSSMAADKCGDFTINNTGKRDITNAAAGVTVKDCWGR	PGPT0015930_1155	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015930-pilE-K02655	NA	NA
D1-36_04342	3093			hypothetical protein	ATGCGAAGTATTAGGGCGCTGCTCGGTTCGTTGTGGGGGGCGTTGCTCAGCCTTTACCTGGCGGCGCCGGTCTATGGCTTCACGCCTTCGGAGTCGCCTCTGTTGAGCGCGGCGGCGGTGACGCCCAACGTGATGCTGCTGATCGATGATTCCGGGAGCATGAACAACATCATCTGGGCCGCCGGCTTTGATCCGGCGGCGACGCAGACGCGCACCTTTGCATGTAACGCCAGTAACAACTGCAACGACAGGTATGAGCTGGATCAGGACGATTCGAACATTCTGTTGGTGAGCCTGTTGCGGGGCGGCTGCTTGTCTGGCTGGTACGGCTTCTATCGGACCGGCATCGGGCGAATCTGCCTGCGACTGCCAGATCCGGTGGGCGGGGGTAATACCCGTTACGCGGGGAAGTACCTGGCCTATCTGGTAACCCTGGCCAACGGTGCCAGCCGGGACTTCACCACGGGGACGATTCCCAACGATTATCGCATCAACGTTGCACGGGATGTCTCGACCGACCTGGTCGCCAATAACCGCGCCCTGCGCATTGGCCTTGCCACCTTCAACCCGCCCAACAGCAGCAACTCCGGCCCGGGCGGCTACATTGCCCGGGCCATCAGCGATCTTTCTTCAGTCAGTGGCAGCGTGACCCAGGCCCAGGCCAACAATAACTACAGCGCCTTGATCAACGCCATCAACGGCTTGGGCGCCGTTGCCAACACGCCTTTGGCCGAAAGTTATTACGAAGTCACCCGCTATTTCCGAGGCATGGCGCCGTATTACAACGGTACACCCAGCACCTATACCAGCCCGATCCAATACCGATGCCAGAAGAACTTTGGCGTGGTGATCACGGATGGCCTGCCCACCTATGACCGCACGTTTCCAACCAACGACCCCCTAGGGGGCAACCGCTTGCCGAACTGGGATGGCATCAGTGCCAACGATGGTGCCAGCTCCAGCGGCGATGCGGAGGGCGACACGCTTTATCTGGATGACATCGCCAAGTTCGCCTTCGACATTGACATGCGCACCACAGGCACCGATGTCACGGGCAAGAGCTGGGATGGGGCCGAGTTTCGCCGGCAGTACCTCAACACTTATACCGTAGGGTTTGCCGTTACTAACCAGATGCTTTCCGACGCCGCTCGCTATGGTGCGGGCAAATATTATCCGGCCACCGACAGCGAGGGCTTGAACTCGGCGCTGTCATCGGCCCTCAGCGACATCACCTCCAAGGCCGGTTCGGGAGGCGGCGGCACCAGCAATGGCGCCACGCTCTCAAGCACCTCCAGTTACTACCAGACCACCTATGACCCCAGGGATTGGCGCGGGACCATCAAGGCGTTCGGTTTCAACTCCACCGGGACGGTCAACACGGCGGCGGTTCAATGGACCACCGACACCGCTATCGTGCCCGGCGCGACGGCGCCGATCTATCAGTCCTGGAACACCGCCACCAATGTGCCGGTAACCCTGGCCTACGGGAACTTCTCCCCGGCTCAGCAGACCAGCCTGAGCCAGGGCTTGCCTACAGGGGTCACCGGCAACGATTTGGTGGAATGGAGCAAGGGCATCAACAAGACCGGGCTGAAAGCGCGCAGCGCCTTGCTCGGGGACATCATCAATTCACCGCTGCTGCTGGCTTCGCCCAACGACCAGACCGCCTCCGACCTGGTGAGTGACACCAGCTACAGCGCCTACCTGACGACCAAGGCGGCGAACATGAACGCCAGCCTGGTGGTGAACGCCAACGATGGTTTCTTCAGCGTCATCAACAGTACGAACGGCACCCGGCGTTACGCTTACATGCCATCGAGCGTCCTCCCGTCGTTGCAGCTCATCGCCGACCCCAGCTACGTCAACGGCGTAAGCCACAAATTCCTGGTGGATGGGCAGCTCGGCGTTTTTGATGCACAACTGGGCTCCGTCTGGAAAACCCTTGCCCTGGGCGGAACCGGCGCGGGTGGCCGGGCGTTTTATGCGGTGCAACTGTTCGATGCATCGGCGGGCAACGCGATTCGGGCGTTGTGGGAAATCAGCGCGCCGACGGTCGCCAACACAGCGCACCCCTTCAATGACCTGGGCTACGCCTACGCACGCCCCGAAGTGGCACGGTTGGCGGATGGCCGTTGGGCCGCGTTCATTTCCAATGGTTACGGCAGCAACACCGGTGTGGCCGCGCTGTACGTGGTGGATATTCGCGACGGTTCGCTGATCCGGAAAATCATCGTCAACAGCAGCGAAACCAATAACGGGCTGTCGTCGGTCAAGCTTCGGGTCAATTCCCAGAATGTGGTTCAGGCCGCCTATGGCGGTGACCTGAGAGGACGGATGTGGAAGTTCGACCTCAGTGGCACCTCACCGAACACTTGGGGCCTGGCATTCGCCGGTCAGCCATTGTTCACCACCCCCGGCGGGACGACCCAGCCGATTACCGCCCAACCTTTGCTGGCGGAAAATCCCCAGGGCGGCATTCAGGTGTTTTTCGGCACGGGCAAATTCAACGAGTCCGTGGACAAGCTCAACAAGGATCTGCAGGGGTTCTATTCAATCTGGGACGCCACTGGCGGCACGGGGCAGATCACCGTCTCGAGCCTGCAAGCCCAGTCAATCACGGGTATCTTTTCCGGCGCTACGGGGCAGTTCATAACGACCAGCGAGACCGACGTGGCCTATCCCACGAAGAAAGGCTGGTATCTGCCGCTGACATACAACAATGCACTCACCGGCGAGCGTGTCATCAATCCGGCCAACTTGGTACTTGGTCGCGTTGTCTTCACCACGGCCGCCGTGGACACCACCGACCCATGCGCCAGCTTCGGTACCGGCAAATTGATCGAAGTGGATGCGTTCAACGGTAAGATGCTCAACTATGCGGTACTCGATACCAATAACGATGGTTCGCTCAACAGCCTCGACACGATTTCCGCCGGCGTGGTGTTCACGGGCGGGATCCCGACCCTAAGCGCGGTGGTCAGTGCCAACGGGGCTACTAATATGATCGTGAACGACTCCGGTGGTGGTATCACCGATCTGCTGGGCAAAGCCGTCGGCGGCAGCCGCCGCATCATGTGGCGACAAATACAGTGA	MRSIRALLGSLWGALLSLYLAAPVYGFTPSESPLLSAAAVTPNVMLLIDDSGSMNNIIWAAGFDPAATQTRTFACNASNNCNDRYELDQDDSNILLVSLLRGGCLSGWYGFYRTGIGRICLRLPDPVGGGNTRYAGKYLAYLVTLANGASRDFTTGTIPNDYRINVARDVSTDLVANNRALRIGLATFNPPNSSNSGPGGYIARAISDLSSVSGSVTQAQANNNYSALINAINGLGAVANTPLAESYYEVTRYFRGMAPYYNGTPSTYTSPIQYRCQKNFGVVITDGLPTYDRTFPTNDPLGGNRLPNWDGISANDGASSSGDAEGDTLYLDDIAKFAFDIDMRTTGTDVTGKSWDGAEFRRQYLNTYTVGFAVTNQMLSDAARYGAGKYYPATDSEGLNSALSSALSDITSKAGSGGGGTSNGATLSSTSSYYQTTYDPRDWRGTIKAFGFNSTGTVNTAAVQWTTDTAIVPGATAPIYQSWNTATNVPVTLAYGNFSPAQQTSLSQGLPTGVTGNDLVEWSKGINKTGLKARSALLGDIINSPLLLASPNDQTASDLVSDTSYSAYLTTKAANMNASLVVNANDGFFSVINSTNGTRRYAYMPSSVLPSLQLIADPSYVNGVSHKFLVDGQLGVFDAQLGSVWKTLALGGTGAGGRAFYAVQLFDASAGNAIRALWEISAPTVANTAHPFNDLGYAYARPEVARLADGRWAAFISNGYGSNTGVAALYVVDIRDGSLIRKIIVNSSETNNGLSSVKLRVNSQNVVQAAYGGDLRGRMWKFDLSGTSPNTWGLAFAGQPLFTTPGGTTQPITAQPLLAENPQGGIQVFFGTGKFNESVDKLNKDLQGFYSIWDATGGTGQITVSSLQAQSITGIFSGATGQFITTSETDVAYPTKKGWYLPLTYNNALTGERVINPANLVLGRVVFTTAAVDTTDPCASFGTGKLIEVDAFNGKMLNYAVLDTNNDGSLNSLDTISAGVVFTGGIPTLSAVVSANGATNMIVNDSGGGITDLLGKAVGGSRRIMWRQIQ	PGPT0015990_928	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015990-pilY1-K02674	NA	NA
D1-36_04343	480			hypothetical protein	ATGACTTCGACAGGCCTCGGACATCGCCAGCGCGGCATGGCATTGCTGGTCAGCCTGGTTTTTTTGCTGCTATTGACGCTGATCGGCCTGTCGTCGATGCAGAGCGCCACGCTCCAGGAAAAAATGACCGGCAGCGTCATGCAGCGCAACCAGTCGTTCCAACTGGCCGAGGCTGCGCTGAGGGTGGGGGAAAGCGCTGTGCAGGTCGAGACGTATTCATTGCCGGTCTGTAGCACCCCTGCACAATGTGCTCCACCGGCCGAGTCGGCGACGGTGACAGGCGCGGGGCGTAATTCGTCGTCGGGGGTGCTCTGGGTGGCCGCCGCGGGCGGCTTTTATGGGGTGCAGAATATCGGCACGACCCTTGCGGCAGTCAACGTGCCGGTCAATACCTCGGCGACGTTGTATCGGATCACTGCGGTGGCTGTAGTGGGCAACAATCAGCGCAGCGTGGTGGAGAGCATCTATGCGAAGTATTAG	MTSTGLGHRQRGMALLVSLVFLLLLTLIGLSSMQSATLQEKMTGSVMQRNQSFQLAEAALRVGESAVQVETYSLPVCSTPAQCAPPAESATVTGAGRNSSSGVLWVAAAGGFYGVQNIGTTLAAVNVPVNTSATLYRITAVAVVGNNQRSVVESIYAKY	PGPT0015985_636	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015985-pilX-K02673	NA	NA
D1-36_04344	714			hypothetical protein	ATGAATAGAAGCAACCGGGGATTCGGCCTGATTGAATTGATGATCGCGCTGGTGATCAGCCTGGTCGTGGTGTTGGGCGTCGTGCAGATTTTCATCTCGGCCAAGAACACCTATGTCAGCCAGAACGCTGCGGCGGTGATGCAGGAGGACGCACGGTTTGCCTTGAGCAAGATGATCCAGGAGATTCGCATGGTGGGCATGTTTGGCTGCCTGGCGACCATCACCGATGCCTCTTCGAACAATGATTTCGCCGCCAGCCAGCTCACCCCGATTCGCTGGGACAACGCCAACCGAAGGTTGACCCTGGTGACGGCCGACATCGGCAACAGCGGCGGCCCGCCGGCCTGGACGATCATTTCCGACTGCCGTAACACGGCGACCGCCTACACCGGGGCGCGACTACCGGCGAGCGGACAATTGGCTTTTCCGATTCGTCGTTTGATCTACGGTTTCAGCAACAATCAACTGCTCCTGGGCAGTGGCCGCGGCAACCCGACCATGGCGGTGCTGGTGGACAACGTGCGGGCGTTCGACGTGACCTTTGGCGTGGCCGACAGTGCGACGGATATCGCGGCCACCAACTACAGCGCCAACCCGACCGACCCGGCGCTGATTCGCAGCGTGCGCTTGACACTGACGCTGTTCGATCCGAGGAACAGCGTGCGCGACCAGACCTTCAACGTGGTTGCCGCCTTGCGCAACCGGCTGCCATGA	MNRSNRGFGLIELMIALVISLVVVLGVVQIFISAKNTYVSQNAAAVMQEDARFALSKMIQEIRMVGMFGCLATITDASSNNDFAASQLTPIRWDNANRRLTLVTADIGNSGGPPAWTIISDCRNTATAYTGARLPASGQLAFPIRRLIYGFSNNQLLLGSGRGNPTMAVLVDNVRAFDVTFGVADSATDIAATNYSANPTDPALIRSVRLTLTLFDPRNSVRDQTFNVVAALRNRLP	PGPT0015980_1066	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015980-pilW-K02672	NA	NA
D1-36_04345	462			hypothetical protein	ATGAAGGGTTGCAGTAGACGGGCACAGGAGGGCATGACGCTGATCGAGGTGCTGGTGGCGGTGCTGATCCTTGGCGTGGGCCTGTTGGGGGCGGCGATGGTCCAGCTCAATGCGCTCAAGTACACCGACAGCTCGCGCATGACCAGCCAGGCCAGCTTCATCGCCTACGACCTGATGGACCGTATCCGCGCCAATTCAGCCGCCGACTACACCATCACGCCGCCCAGCTCACCCAATCTCAGCGTGGCCCGGGACCAGGACTTGTACGACTTCAAGACCAACATCGTCGCCTTCGGCGGCGCCACGGCCACGGGCACTGTCGCGCTGAATCAGCGTGTCTACACCATCACTGTTTCCTGGGACGATGCCCGGGCCGCCAACACGACAAACACAGCGCAGGCCAGGCGTAGCTTCGTATTGACCAGCCGTGTCGCCGTCGACCCGGTGGCGACGCCACCATGA	MKGCSRRAQEGMTLIEVLVAVLILGVGLLGAAMVQLNALKYTDSSRMTSQASFIAYDLMDRIRANSAADYTITPPSSPNLSVARDQDLYDFKTNIVAFGGATATGTVALNQRVYTITVSWDDARAANTTNTAQARRSFVLTSRVAVDPVATPP	PGPT0015975_781	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015975-pilV-K02671	NA	NA
D1-36_04346	474			hypothetical protein	ATGGATCTTCGTACAAAAGGTTTCACGCTGATCGAGCTGCTGGTGGCCCTCGGTGTGCTGTTGATCCTGATCACCATGGCGGTGCCGTCGTTCACCGGGTCGCTGCAAAGCAGCAAGGCCGATACCGAGATCGGCGACTTGCGCCGTGCCTTGAACTTCGCGCGAATGGAAGCGATCAATCGTGGCATTACCACGCGAATTCGTCCCACCACGCAGGGTGGAGCCTGGAGTGGTGAGTTGACCGTGTATGACAGCACCGGCAATCCGGCCAATGTGTTGCGGGTTGTTCCAGCGATGGGCAGCGGCGTGACTCTGACGCTAACCTCAGATGTGACCAGTATCGATTTCAACAACCTGGGCGGATTATCGGCACCGGCCACGCCGGTGAGTTTCAGTTACGTACGGGGGGCGCAGAGCAGGACGCTCAGTGTTTGCCTCAATGGACGAATTGTATTGGATGGAAGTTGCGGATGA	MDLRTKGFTLIELLVALGVLLILITMAVPSFTGSLQSSKADTEIGDLRRALNFARMEAINRGITTRIRPTTQGGAWSGELTVYDSTGNPANVLRVVPAMGSGVTLTLTSDVTSIDFNNLGGLSAPATPVSFSYVRGAQSRTLSVCLNGRIVLDGSCG	PGPT0016070_50	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0016070-fimU-K08085	NA	NA
D1-36_04347	540			hypothetical protein	ATGTACCAACAAGGCTTCAGCCTGCTCGAACTGCTCATGGGACTGGCAATTGCCGCGATTGTTCTGCCGTGGGCCGGCACAAGCTGCAAAGAGCTGATCGAATCCATGCAGCGCGAGGACACGGCGCATTTGCTGCTCAGCGGGTTGCGCAGCGCCCGCAGCGAAGCCATCACGCGCAACCGCCGGGTGCTGATACAAGGAATAGACAACGATTGGGGCAAAGGCTGGCGGATCACGCTGGACAACAAGGAGAAAACCTTGCTGGTGGAGCGCAGCGCACACGCTCGGGTGATCGGCAACTCGACGGTCAAACGCAGGGTGAGATTCGGCAGCCAGGGGGAAGCGCTGCACCTCAATGGCTCTTTCCAGGCCGGCACGCTGCATGTCTGCGCCAAGCGCGAACCGGTCAGCCATCACCAGGTGATATTGGCGCCCTCCGGCCGCGTCCGTCTGGAAAGTATCGAAGCCGAACAGGCCCTGTGCGCAAAAGGACTTAAAGCAGGGAGCGGACGCGCAGTTCCTTCGGCATCGAAAACGTAA	MYQQGFSLLELLMGLAIAAIVLPWAGTSCKELIESMQREDTAHLLLSGLRSARSEAITRNRRVLIQGIDNDWGKGWRITLDNKEKTLLVERSAHARVIGNSTVKRRVRFGSQGEALHLNGSFQAGTLHVCAKREPVSHHQVILAPSGRVRLESIEAEQALCAKGLKAGSGRAVPSASKT	PGPT0016065_729	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0016065-fimT-K08084	NA	NA
D1-36_04348	948	ispH	COG0761	4-hydroxy-3-methylbut-2-enyl diphosphate reductase	ATGCAAATCAAACTCGCCAACCCCCGTGGCTTCTGCGCTGGCGTGGACCGGGCGATCGAAATCGTCAACCGCGCCCTGGAAGTCTTCGGGCCTCCGATCTACGTGCGCCATGAAGTGGTGCACAACAAGTTCGTCGTCGAGGACCTGCGCAGTCGCGGGGCCATTTTCGTCGAGGAACTGGACCAGGTGCCGGACGACGTCATCGTGATCTTCAGTGCCCACGGCGTTTCCCAGGCGGTGCGTACCGAAGCCGCCGGTCGCGGCCTGAAGGTGTTCGACGCCACATGCCCATTGGTCACCAAGGTTCACATCGAGGTGGCCCGCTACAGTCGTGACGGCCGTGAATGCATCCTGATCGGGCATGAGGGCCATCCGGAAGTTGAAGGCACCATGGGCCAGTATGACGCCAGCAACGGCGGCGCCATCTATCTGGTCGAGGACGAGGAAGACGTGGCGGCCTTGCAGGTGCGCAATCCTGAAAAGCTCGCTTTCGTCACCCAGACCACTCTGTCCATGGACGACACCAGTCGGGTGATCGATGCCTTGCGTTCGCGCTTTCCGGCTATCGGCGGACCGCGCAAGGATGACATCTGCTACGCGACCCAAAACCGTCAGGACGCGGTCAAGCAACTGGCCAACGAATGCGATGTGGTCCTGGTGGTCGGCAGCCCGAACAGCTCCAACTCCAATCGCTTGCGCGAACTGGCCGAGCGCATGTCCACCCCGGCCTACCTGATCGATGGTGCCGAAGACATGCAGCGCAGCTGGTTCGACGGCGTCGAGCGGATCGGCATCACCGCCGGTGCTTCCGCGCCGGAAGTCCTGGTACGTGGCGTAATCGAACAGTTGCAGGCCTGGGGCGCCACCGGGGCTGACGAGCTGGCCGGTCGCGAGGAAAACATTACGTTTTCGATGCCGAAGGAACTGCGCGTCCGCTCCCTGCTTTAA	MQIKLANPRGFCAGVDRAIEIVNRALEVFGPPIYVRHEVVHNKFVVEDLRSRGAIFVEELDQVPDDVIVIFSAHGVSQAVRTEAAGRGLKVFDATCPLVTKVHIEVARYSRDGRECILIGHEGHPEVEGTMGQYDASNGGAIYLVEDEEDVAALQVRNPEKLAFVTQTTLSMDDTSRVIDALRSRFPAIGGPRKDDICYATQNRQDAVKQLANECDVVLVVGSPNSSNSNRLRELAERMSTPAYLIDGAEDMQRSWFDGVERIGITAGASAPEVLVRGVIEQLQAWGATGADELAGREENITFSMPKELRVRSLL	PGPT0007615_1419	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007615-ispH|lytB-K03527	NA	NA
D1-36_04349	438	fkpB	COG1047	FKBP-type 16 kDa peptidyl-prolyl cis-trans isomerase	ATGACTGAGCAGCGTATCGCTCAAAACACCGAAGTGAAGCTTCACTTCGCCCTGCACCTGGAAAACGGCGACACGGTCGACAGCACTTTCGACAAGGAGCCGGCGGTGTTCAAGGTCGGCGACGGCAACCTGCTGCCGGGCTTCGAGGCGGCGCTCTTCGGTTTCAAGGCCGGCGACAAGCGCACCGTGGTCGTTCCACCGGAAAATGCCTTTGGTCAGCCCAACCCGCAAAACGTGCAGACCATGCCACGCTCGCAATTCCAGGACATGGAACTGTCCGAGGGCTTGCTGGTGATTTTCAACGATGCGGCCAACGCCGAGCTGCCGGGTGTGGTGAAGGCTTTCGACGATGCCCAGGTGACGGTGGACTTCAACCATCCATTGGCGGGCAAGACCTTGAGTTTCGAAGTGGAAATTCTTGAGGTCAAGGCGGTTTAA	MTEQRIAQNTEVKLHFALHLENGDTVDSTFDKEPAVFKVGDGNLLPGFEAALFGFKAGDKRTVVVPPENAFGQPNPQNVQTMPRSQFQDMELSEGLLVIFNDAANAELPGVVKAFDDAQVTVDFNHPLAGKTLSFEVEILEVKAV	PGPT0015111_4495	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
D1-36_04350	513	lspA	COG0597	Lipoprotein signal peptidase	ATGCCTAATGTGGCGGGCCGTTTCGGGCGGCTGGGCTGGCTCTGGTTGAGCGTGCTGGTGCTGGTGATCGACCAGGCCAGCAAGTACTACTTCGAGGGTTCGTTGACCCTGTACCAGCAGATCGTGGTCATTCCTGACTACTTCAGCTGGACCCTGGCCTACAACACCGGTGCAGCGTTCAGCTTCCTGGCCGACAGCTCGGGCTGGCAGCGCTGGCTGTTCGCGCTGATCGCCGTGGTGGTCAGCGCCGTGCTGGTGGTCTGGCTCAAGCGCCTGGGGCGTGACGAAACCTGGCTGGCGGTGGCGCTGGCCTTGGTCCTGGGTGGGGCGCTGGGCAATCTCTACGATCGGATTGCCTTGGGCCACGTCGTCGATTTCATCCTGGTGCATTGGCAGAATCGCTGGTACTTCCCCGCGTTCAACTTTGCCGACAGCGCCATCAGCGTGGGCGCCGTGATGCTCGCCCTGGATATGTTCAAGAGCAAGAAAACCGGAGAAGCCGTCCATGACTGA	MPNVAGRFGRLGWLWLSVLVLVIDQASKYYFEGSLTLYQQIVVIPDYFSWTLAYNTGAAFSFLADSSGWQRWLFALIAVVVSAVLVVWLKRLGRDETWLAVALALVLGGALGNLYDRIALGHVVDFILVHWQNRWYFPAFNFADSAISVGAVMLALDMFKSKKTGEAVHD	PGPT0004770_2355	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_LEAD_RESISTANCE	LEAD_RESISTANCE-PBR_TRANSPORT_SYSTEM,PGPT0004770-pbrB|pbrC-K03101	NA	NA
D1-36_04351	2832	ileS	COG0060	Isoleucine--tRNA ligase	ATGACCGACTATAAAGCCACGCTAAACCTTCCGGACACCGCCTTCCCAATGAAGGCCGGCCTGCCTCAGCGCGAACCACAGATTCTGCAGCGTTGGGACAGCATTGGCCTGTACGGAAAGTTGCGCGAAATTGGCAAGGATCGTCCGAAGTTCGTCCTGCACGACGGCCCTCCGTACGCCAACGGCACCATCCACATCGGTCACGCGCTGAACAAGATTCTCAAGGACATGATCATCCGCTCCAAGACCCTGTCGGGTTTTGACGCGCCGTATGTCCCGGGCTGGGACTGCCACGGCCTGCCGATCGAGCACAAGGTCGAGGTGACCCACGGCAAGAACCTGGGCGCGGACAAGACCCGCGAGCTGTGCCGTGCCTATGCCACCGAGCAGATCGAAGGGCAGAAATCCGAATTCATCCGCCTCGGCGTGTTGGGCGACTTCGCCAACCCGTACAAGACCATGAACTTTGCGAACGAAGCCGGCGAAATCCGTGCCTTGGCGAAAATCGTCGAGGGTGGCTTCGTGTTCAAGGGCCTCAAGCCCGTGAACTGGTGCTTCGATTGCGGTTCGGCCCTGGCCGAGGCGGAAGTCGAGTACGAAAACAAGAAGTCCTCGACCATCGATGTCGCATTCCCGATCGCCGATGAAGACAAGCTCGCCGCCGCGTTCGGCCTGGGCAAGCTGGCCAAGCCGGCGGCTATCGTGATCTGGACCACCACCCCGTGGACCATCCCGGCCAACCAGGCGCTGAACGTCCACCCGGAATTCAACTACGCCCTGGTCGATGTCGGTGACAAGCTGCTGGTGTTGGCCGAAGAGCTGGTCGAATCCTGCCTGGCCCGTTACGGCCTCGAAGGTTCGGTGGTTGCCACCGCGCCAGGTTCGGCGTTGGAACTGATCAATTTCCGCCATCCGTTCTACGACCGTCTGTCGCCGGTGTACCTGGCCGACTACGTGGAACTGGGCGCGGGCACCGGCGTGGTTCACTCCGCGCCGGCCTATGGCGTTGACGACTTCGTGACCTGCAAGAAATACGGCATGGTCAACGATGACATCCTCAACCCGGTGCAGAGCAATGGCGTGTACGTGCCGTCGCTGGAATTCTTCGGCGGCCAGTTCATCTGGAAAGCGAACCCGGCCATCGTCGACAAGCTGACCGAAGTCGGCGCGCTGTTGCACACCACCGTCATCGAGCACAGCTACATGCACTGCTGGCGCCACAAGACCCCGCTGATCTACCGTGCCACGGCGCAGTGGTTCATCGGCATGGACAAGCAGCCCACCAGCGGCGACACCCTGCGCCAGCGTTCGCTCAAGGCTATCGAAGAGACCCAGTTCGTGCCGGCCTGGGGCCAGGCGCGCCTGCACTCGATGATCGCCAACCGTCCGGACTGGTGCATCTCTCGCCAGCGCAACTGGGGCGTGCCGATTCCGTTCTTCCTGAACAAGGAAAGCGGCGAGCTGCACCCGCGTACTGTCGAGCTGATGGAACAAGTTGCCCAGCGCGTCGAAGCCGAAGGCATCGAAGCCTGGTTCAAGCTGGACGCCGCCGAGCTGCTGGGCGACGAAGCGCCGCTGTACGACAAGATCAGCGACACCCTGGACGTCTGGTTCGACTCCGGCACCACCCACTGGCACGTGCTGCGCGGTTCACACCCGATGGGCCACGAGACCGGCCCGCGCGCCGACCTGTACCTGGAAGGTTCGGACCAGCATCGCGGCTGGTTCCACTCGTCCTTGCTGACCGGTTGCGCCATCGACAACCACGCGCCGTACCGCGAGCTGCTGACCCACGGCTTCACCGTCGACGAGTCCGGCCGCAAGATGTCCAAGTCCCTGGGCAACGTGATCGCGCCGCAGAAAGTCAACGACACCCTCGGCGCTGACATCATGCGCTTGTGGGTTGCGTCCACCGATTACTCCGGCGAGATGGCGGTTTCCGAGCAGATCCTGCAACGCAGCGCCGACGCCTACCGGCGAATCCGTAACACCGCGCGTTTCCTGCTCTCGAACCTGACCGGCTTCAACCCGGCCACCGACCTGTTACCGGCCGAAGACATGCTCGCCCTGGATCGCTGGGCCGTGGACCGTACCTTGCTGCTGCAACGCGAATTGCAGGAACACTACGGCGAATACCGTTTCTGGAACGTCTACTCCAAGATCCACAACTTCTGCGTGCAGGAGCTCGGTGGTTTCTACCTCGACATCATCAAGGATCGCCAGTACACCACCGGCGCCAACAGCAAGGCGCGCCGTTCCTGCCAGACCGCGCTGTTCCACATCAGCGAAGCGCTGGTGCGCTGGATCGCGCCGATCCTGGCGTTCACCGCCGATGAGCTGTGGGAATACCTGCCGGGCGAGCGCAATGAGTCGGTGATGCTCAACACCTGGTACGAAGGCCTGACCGAACTGCCGCAAGGCTTCGAGCTGGACCGTGCGTACTGGGATCGAGTGATGGCGGTCAAGGCAGCGGTCAACAAGGAAATGGAAATCCAGCGGGCGGCCAAGGCCGTCGGCGGCAACCTGCAGGCCGAAGTGACGCTCTACACCGAAGACGCCCTGGGCGCCGACCTGGCGAAACTGGGCAACGAGCTGCGCTTCGTGCTGATCACCTCCACCGCCAGTGTCGCGCCGTTGGCGCAGGCGCCGGCCGATGCTGTGGTCACCGAAGTGAGTGGCCTGAAGCTCAAGGTGGTCAAGTCGAGCTTCGTCAAATGCGCCCGTTGCTGGCACTGCCGTGAAGACGTCGGCGTGAACCCGGAGCATCCGGAAATCTGCGGTCGTTGCGTCGACAACATCAGCGGCACAGGCGAGGTTCGCCACTATGCCTAA	MTDYKATLNLPDTAFPMKAGLPQREPQILQRWDSIGLYGKLREIGKDRPKFVLHDGPPYANGTIHIGHALNKILKDMIIRSKTLSGFDAPYVPGWDCHGLPIEHKVEVTHGKNLGADKTRELCRAYATEQIEGQKSEFIRLGVLGDFANPYKTMNFANEAGEIRALAKIVEGGFVFKGLKPVNWCFDCGSALAEAEVEYENKKSSTIDVAFPIADEDKLAAAFGLGKLAKPAAIVIWTTTPWTIPANQALNVHPEFNYALVDVGDKLLVLAEELVESCLARYGLEGSVVATAPGSALELINFRHPFYDRLSPVYLADYVELGAGTGVVHSAPAYGVDDFVTCKKYGMVNDDILNPVQSNGVYVPSLEFFGGQFIWKANPAIVDKLTEVGALLHTTVIEHSYMHCWRHKTPLIYRATAQWFIGMDKQPTSGDTLRQRSLKAIEETQFVPAWGQARLHSMIANRPDWCISRQRNWGVPIPFFLNKESGELHPRTVELMEQVAQRVEAEGIEAWFKLDAAELLGDEAPLYDKISDTLDVWFDSGTTHWHVLRGSHPMGHETGPRADLYLEGSDQHRGWFHSSLLTGCAIDNHAPYRELLTHGFTVDESGRKMSKSLGNVIAPQKVNDTLGADIMRLWVASTDYSGEMAVSEQILQRSADAYRRIRNTARFLLSNLTGFNPATDLLPAEDMLALDRWAVDRTLLLQRELQEHYGEYRFWNVYSKIHNFCVQELGGFYLDIIKDRQYTTGANSKARRSCQTALFHISEALVRWIAPILAFTADELWEYLPGERNESVMLNTWYEGLTELPQGFELDRAYWDRVMAVKAAVNKEMEIQRAAKAVGGNLQAEVTLYTEDALGADLAKLGNELRFVLITSTASVAPLAQAPADAVVTEVSGLKLKVVKSSFVKCARCWHCREDVGVNPEHPEICGRCVDNISGTGEVRHYA				NA	NA	NA	NA	NA
D1-36_04352	939	ribF	COG0196	Bifunctional riboflavin kinase/FMN adenylyltransferase	ATGCAGCTGGTTCGAGGCCTTCACAACCTGCGTCCCCGCCATCGGGGCTGTGTCGCCACCATTGGCAACTTCGACGGTGTCCACCGTGGTCACCAGGCTATCCTGGCGCGGCTGCGCGAGCGTGCGCTGGAATTGGGCCTGCCCAGCTGCGTGGTGATCTTCGAGCCGCAGCCCCGGGAGTTTTTCGCCCCGGACACCGCTCCGGCCCGCTTGGCGCGGCTGCGGGACAAGCTGCAGCTGCTGGCCGCCGAAGGCGTCGACCGGGTCCTGTGCCTGGCCTTCAACCAGCGCCTGAGCAAACTCAGTGCCGCCGAATTCGTCGATACCATCCTGGTGGATGGTCTCGATGTGAAACACTTGGAAGTCGGCGATGACTTCCGTTTTGGCTGTGATCGGTCCGGAGATTTTGATTACCTGCAACAGGCAGGTATCGCCCAGGGCTTCACGGTTGAAGCGGCGCAGACCGTCGAGATGGACGGTTTGCGCGTCAGCAGCACCCAGGTCCGCAACGCCTTGGCGGCCGCCGACTTCGAATTGGCCGAGCGCTTGCTCGGCCGGCCGTACCGGATTGCCGGGCGGATCCTGCATGGGCAGAAACTGGCGCGCCAATTAGGCACGCCAACGGCCAACGTGCAGCTCAAGCGCCGTCGTGTGCCGCTCACCGGGGTGTTCCTGGTGAGTGTCGACATCGATGGCAAGACCTGGCCCGGCGTCGCCAATATCGGTGTACGGCCGACGGTCCAGGGAGATGGCAAGGCCCATCTCGAAGTACACATTCTGGATTTTGCCGGCGATCTGTATGACCGGCGTTTGACGGTGGTTTTCCACCAGAAGCTGCGTGAAGAGCAGCGTTTTGCCTCTCTGGAGGCGCTCAAGACGGCGATCCATGCAGATATCGCCGCCGCCCGTGCCCTTGTCGCAACCAGCGCCAATCGCTAA	MQLVRGLHNLRPRHRGCVATIGNFDGVHRGHQAILARLRERALELGLPSCVVIFEPQPREFFAPDTAPARLARLRDKLQLLAAEGVDRVLCLAFNQRLSKLSAAEFVDTILVDGLDVKHLEVGDDFRFGCDRSGDFDYLQQAGIAQGFTVEAAQTVEMDGLRVSSTQVRNALAAADFELAERLLGRPYRIAGRILHGQKLARQLGTPTANVQLKRRRVPLTGVFLVSVDIDGKTWPGVANIGVRPTVQGDGKAHLEVHILDFAGDLYDRRLTVVFHQKLREEQRFASLEALKTAIHADIAAARALVATSANR	PGPT0008625_1627	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
D1-36_04353	1539	murJ	COG0728	putative lipid II flippase MurJ	ATGAATCTGCTTAAATCGTTGGCTGCCGTCAGCTCTATCACGATGCTTTCCCGTGTCCTGGGGTTCGTTCGCGATACGCTGATCGCCCGGATATTCGGTGCCGGAATGGCCACCGACGCCTTCTTCATTGCGTTCAAATTGCCCAACCTGCTGCGGCGAATCTTTGCCGAAGGGGCTTTTTCCCAGGCCTTCGTGCCGATCCTGGCGGAATATAAAAGCCAGAAGGGCGACGAGGCGACCCGCACCTTCATCGCCTATGTAACGGGGTTGCTGACGCTGGTGTTGGCACTTGTCACGGCCGCCGGCATGCTCGCCGCGCCTTGGGTGATCTGGGCCACCGCGCCAGGGTTCACCGACACGCCGGAAAAGTTCCAGCTCACCTCGGATCTGTTGCGGGTGACCTTTCCTTATATATTGCTGATCTCCCTGTCGTCGCTGGCCGGGGCGATCCTCAATACCTGGAACCGCTTTTCGGTGCCGGCCTTCGTGCCGACGCTGCTCAATGTCAGCATGATCGTGTTTGCGTTGTTCCTGACGCCGTATTTCGATCCACCGGTAATGGCCCTGGGTTGGGCGGTATTGGTGGGTGGCCTGGCGCAGTTGCTCTATCAACTGCCGCACCTGAAGAGGATCGGCATGCTGGTGCTGCCGCGGCTGAACCTGCGCGACAGCGGCGTGTGGCGCGTCATGAAGCAGATGCTGCCGGCGATTCTCGGTGTCTCGGTGAGTCAGATCTCGCTGATCATCAACACCATTTTTGCCTCGTTTCTGGTGGCTGGCTCGGTGTCGTGGATGTACTACGCCGACCGCTTGATGGAGTTGCCGTCCGGCGTGCTGGGCGTGGCGCTGGGCACGATTCTGCTGCCGACCCTGGCCAAGACCTACGCCAGCCAGGATCGCCATGAGTACTCGCGGATCCTCGATTGGGGCCTGCGCCTGTGCTTCGTGCTGGTCCTGCCTTGCGCGCTGGCGTTGGGGATCCTCGCCGAGCCGCTGACCGTTTCCTTGTTCCAGTACGGTCAATTCAATGCATTTGATGCCCTGATGACGCAGCGGGCACTGATTGCCTATTCGGTGGGGCTGCTCGGGATCATCGTGATCAAGGTCCTTGCGCCAGGTTTCTATGCCCAGCAGAACATCCGCACGCCGGTGAAGATCGCGGTCTTCACGCTGGTGATGACCCAACTGTTCAACCTGCTGCTCATCGGTCCCCTGGCCCATGCCGGCCTGGCCTTGGCAATCAGTGCAGGGGCCTGCCTCAACGCTGGGCTGCTGTTCTATCAACTGCGCAAGCAGAAGATGTATCAACCGCTGCCGGGCTGGGGCAAGTTCGGCCTCAAGCTGCTGGTCGCCGTGGCGGTGATGTCGGCGGTATTGTTGGCCGGGATGCACTTCATGCCGGCTTGGGGCGAAGGGCAGATGCTCGAGCGTTTCCTGCGCCTGGGCGTGTTGGTCGTGGCGGGCGTGGTGGCGTATTTCGGCATGTTGCTGCTGATGGGGTTCCGTTTGCGCGACTTCAATCGCAAAGCCTTGAACTGA	MNLLKSLAAVSSITMLSRVLGFVRDTLIARIFGAGMATDAFFIAFKLPNLLRRIFAEGAFSQAFVPILAEYKSQKGDEATRTFIAYVTGLLTLVLALVTAAGMLAAPWVIWATAPGFTDTPEKFQLTSDLLRVTFPYILLISLSSLAGAILNTWNRFSVPAFVPTLLNVSMIVFALFLTPYFDPPVMALGWAVLVGGLAQLLYQLPHLKRIGMLVLPRLNLRDSGVWRVMKQMLPAILGVSVSQISLIINTIFASFLVAGSVSWMYYADRLMELPSGVLGVALGTILLPTLAKTYASQDRHEYSRILDWGLRLCFVLVLPCALALGILAEPLTVSLFQYGQFNAFDALMTQRALIAYSVGLLGIIVIKVLAPGFYAQQNIRTPVKIAVFTLVMTQLFNLLLIGPLAHAGLALAISAGACLNAGLLFYQLRKQKMYQPLPGWGKFGLKLLVAVAVMSAVLLAGMHFMPAWGEGQMLERFLRLGVLVVAGVVAYFGMLLLMGFRLRDFNRKALN	PGPT0024200_3303	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
D1-36_04354	279	rpsT	COG0268	30S ribosomal protein S20	GTGGCCAACTCACCTTCCGCCAAAAAACGTGCAAAACAGGCTGAGAAGCGTCGCAGCCACAACGCCAGCCTGCGTTCCATGGTCCGTACCTACATCAAGAATGTAGTCAAGGCCATCGACGCAAAAGACGCTGAAAAAGCACAAGCTGCTTACGTTCTGGCTGTGCCAGTTATCGACCGCATGGCCGATAAAGGCATCATCCACAAGAACAAGGCTGCTCGCCATAAGAGCCGCCTGAATGGCCACGTAAAGGCCTTGAACGTTGCCGCTGCTGCCTAA	MANSPSAKKRAKQAEKRRSHNASLRSMVRTYIKNVVKAIDAKDAEKAQAAYVLAVPVIDRMADKGIIHKNKAARHKSRLNGHVKALNVAAAA				NA	NA	NA	NA	NA
D1-36_04355	465			hypothetical protein	ATGGGTATGGCAAAAGGATTGATCGGTTTGCTACTGGCACTGCCGCTGCTGGCTTCGGCCGAGGAAATCGGCCAGGTCTCTACGGTGTTCAAGTTTGTCGGGCCGAACGATCGGATCGTGGTCGAGGCGTTTGACGATCCCAAGGTGGACGGCGTGACCTGTTACCTGTCGCGAGCCAAGACCGGTGGTGTTAAAGGCGGTCTGGGCCTGGCCGAAGATCGCGCCGAGGCGTCCATCGCCTGTCGGCAGGTCGGGCCCATCAGCTTCAAGGGCGACCTCAAGGACGGCGAAGAGGTGTTCCGCGAGCGCACTTCGTTGGTGTTCAAGACCATGCAGGTGGTGCGGTTCCTCGACAAGAAGCGCAATACGCTGGTGTATCTGGTCTATAGCGATCGCGTGATCGAGGGCAGCCCGCAAAATGCGGTGACGGCGATTCCGATCCTGCCGTGGGCTCGGGCTCAATAA	MGMAKGLIGLLLALPLLASAEEIGQVSTVFKFVGPNDRIVVEAFDDPKVDGVTCYLSRAKTGGVKGGLGLAEDRAEASIACRQVGPISFKGDLKDGEEVFRERTSLVFKTMQVVRFLDKKRNTLVYLVYSDRVIEGSPQNAVTAIPILPWARAQ				NA	NA	NA	NA	NA
D1-36_04356	1119	proB		Glutamate 5-kinase	ATGCGGAGCAAGGTGACGGGTGCGCAGCGCTGGGTCGTCAAGATCGGCAGCGCACTGCTGACGGCGGATGGCAAGGGCCTGGATCGCACGGCTATGGCGGTGTGGGTCGAACAGATGGTGGCCTTGCATGAGGCGGGTGTCGAGTTGGTGTTGGTCTCTTCCGGGGCCGTGGCTGCCGGCATGAGTCGCCTGGGCTGGACGTCGCGACCCAGCGCGATGCATGAGCTGCAAGCTGCCGCCGCCATCGGCCAGATGGGCCTGGTCCAGGCTTGGGAGTCGAGCTTCGCCGAGCATGGTCGCCACACGGCGCAGATCCTGCTGACCCATGACGACCTGTCCGACCGCAAGCGCTACCTCAATGCCCGCAGTACGTTGCGGGCGTTGGTCGAGCTGAAGGTTATCCCGGTGATCAACGAGAACGACACGGTGGTCACCGACGAAATCCGTTTTGGCGACAACGACACCCTGGCCGCGCTGGTGGCGAACCTGGTGGAGGCGGATCTGCTGGTGATCCTCACGGATCGCGACGGCATGTTCGATGCCGATCCACGCAACAATCCCGACGCCAAGCTGATCTACGAGGCCCGCGCCGATGATCCGGCGCTGGATGCCGTGGCGGGTGGCACCGGCGGGGCTTTGGGGCGTGGCGGCATGCAGACCAAGCTGCGCGCGGCGCGCCTGGCGGCCCGCTCCGGGGCGCATACGATTATCGTGGGTGGTCGGCTGGAACGTGTATTGGATCGCCTGAAGGCTGGCGAGCGTATCGGAACATTGTTATCGCCCGAGCGCGGCATGCTGGCGGCACGCAAGCAATGGTTGGCCGGGCATCTGCAAACCCGTGGCACCTTGGTGCTGGATGCGGGGGCGGTGTCGGCCTTGTCCCAGGGCAACAAGAGTTTGCTGCCAGTGGGCGTGAAGCTGGTCCAGGGCAGTTTTCGTCGCGGCGAGATGGTGGTATGCGTCGCGCCGGACGGTCGCGAAATCGCCCGCGGCCTGGCCAACTACAGCGCGTTGGAAGCGCAGAAAATCATCGGCCAGTCGTCTGATGCGATCGTCGGCTTGTTGGGTTACATGGCGGAGCCCGAATTGGTCCACCGTGACAACCTGATCCTCGTCTAA	MRSKVTGAQRWVVKIGSALLTADGKGLDRTAMAVWVEQMVALHEAGVELVLVSSGAVAAGMSRLGWTSRPSAMHELQAAAAIGQMGLVQAWESSFAEHGRHTAQILLTHDDLSDRKRYLNARSTLRALVELKVIPVINENDTVVTDEIRFGDNDTLAALVANLVEADLLVILTDRDGMFDADPRNNPDAKLIYEARADDPALDAVAGGTGGALGRGGMQTKLRAARLAARSGAHTIIVGGRLERVLDRLKAGERIGTLLSPERGMLAARKQWLAGHLQTRGTLVLDAGAVSALSQGNKSLLPVGVKLVQGSFRRGEMVVCVAPDGREIARGLANYSALEAQKIIGQSSDAIVGLLGYMAEPELVHRDNLILV	PGPT0014220_2010	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014220-proB-K00931	NA	NA
D1-36_04357	1224	obg		GTPase Obg	ATGAAGTTTGTTGATGAAGTATCGATTCGAGTAAAGGCTGGCGACGGCGGCAATGGCTGCATGAGTTTCCGTCGGGAAAAATTCATTGAAAACGGTGGCCCGAACGGTGGTGACGGGGGCGACGGCGGCTCGATCTACATGCTCGCCGATGAAAACCTCAATACCCTGGTGGACTACCGTTACACCCGGCATTTCGATGCAGAGCGTGGCTCCAACGGTGGCAGCACCGACTGCACCGGCAAGAAGGGCGAAGACCTGATCCTGCGCGTGCCGGTCGGTACCACGGTGATCGATTCCGCCACCCAGGAAGTCATCGGCGACCTGACCAAGGCCGGCCAGCGTTTGCTGGTGGCCCATGGTGGCTGGCACGGTCTGGGCAACACCCGTTTCAAATCCAGTACCAACCGCGCGCCGCGCCAGACTACGCCAGGCAAGCCCGGCGAACAGCGTGACCTGAAGCTGGAAATGAAAGTGTTGGCCGATGTGGGTCTGTTAGGTCTGCCGAATGCCGGTAAAAGTACCTTCATTCGCTCGGTGTCGGCGGCCAAGCCTAAAGTGGCCGACTACCCGTTCACCACCCTGGTGCCAAACCTGGGCGTGGTCAGTGTCGACCGTTGGAAAAGCTTCGTGATCGCCGACATTCCGGGGCTGATCGAAGGCGCTTCCGAGGGTGCCGGCCTGGGCATTCGCTTCCTCAAGCACTTGTCCCGTACCCGCCTGTTGCTGCACCTCGTCGACATGGCGCCTCTGGATGAAACCAGTGCTGCCGATGCTGCCGAAGTCATCGTCAACGAGCTGACCAAGTTCAGCCCGGCCCTGGCCGAGCGCGACCGTTGGCTGGTGCTGAACAAGTGCGACCAGATCCTCGAGGAAGAGCATGAGGAGCGGGTCAAGGAGATCGTCGATCGCCTGGAGTGGGAAGGTCCGGTCTACGTGATCTCGGCCATCGCCAAGGAAAACACCGAGCGTCTGTGCCACGACATCATGCGTTACCTGGAAGATCGCGCCGATCGCCTGGCCAACGACCCGGCCTACAAGGAAGAGCTGGCCGAGCTCGACCAGCGCATCGAAGACGAGGCGCGCGCCCAGTTGCAGGCGCTGGACGACCAGCGTGCCTTGCGCCGCAGTGGCGTCAAGTCGGTCCATGACATCGGTGACGACGATTGGGACGAAGAAGATGTGGATGACGAGGACGGTCCGGAGATCATCTACGTCCGCGACTGA	MKFVDEVSIRVKAGDGGNGCMSFRREKFIENGGPNGGDGGDGGSIYMLADENLNTLVDYRYTRHFDAERGSNGGSTDCTGKKGEDLILRVPVGTTVIDSATQEVIGDLTKAGQRLLVAHGGWHGLGNTRFKSSTNRAPRQTTPGKPGEQRDLKLEMKVLADVGLLGLPNAGKSTFIRSVSAAKPKVADYPFTTLVPNLGVVSVDRWKSFVIADIPGLIEGASEGAGLGIRFLKHLSRTRLLLHLVDMAPLDETSAADAAEVIVNELTKFSPALAERDRWLVLNKCDQILEEEHEERVKEIVDRLEWEGPVYVISAIAKENTERLCHDIMRYLEDRADRLANDPAYKEELAELDQRIEDEARAQLQALDDQRALRRSGVKSVHDIGDDDWDEEDVDDEDGPEIIYVRD				NA	NA	NA	NA	NA
D1-36_04358	258	rpmA	COG0211	50S ribosomal protein L27	ATGGCACACAAAAAAGCTGGTGGTAGTACCCGTAACGGTCGCGACTCAGAAGCCAAACGCCTTGGCGTGAAGATGTATGGCGGCCAGGCTATCAAAGCGGGCAACATCATCGTGCGTCAGCGCGGCACCCAATTCCACGCTGGCTACGGCGTTGGCATGGGTAAGGATCACACCCTCTTCGCTAAAATCGAAGGCGTGATCAAGTTCGAAGTAAAAGGCGCCTTCGGTCGTCGTTACGTAAGCGTTATCGCAGCTTAA	MAHKKAGGSTRNGRDSEAKRLGVKMYGGQAIKAGNIIVRQRGTQFHAGYGVGMGKDHTLFAKIEGVIKFEVKGAFGRRYVSVIAA				NA	NA	NA	NA	NA
D1-36_04359	315	rplU	COG0261	50S ribosomal protein L21	ATGTCGTATGCAGTAATCGTTACTGGTGGCAAGCAATACAAGGTCGCCCCAGGTGAATACCTGAAGATCGAAAAACTGGAAATCGCTACCGGCGAATCCGTGACTTTTGATCGCGTTCTGTTGGTCGCCAATGGCGATGACGTGAATATCGGCGCTCCAGTCGTTGCTGGCGCTACCGTTGTGGCTGAAGTGATCTCCCAAGGTCGTCACGATAAAGTCCGCATCATCAAGTTCCGTCGTCGTAAGCACCACATGAAGCGTATGGGCCACCGCCAGTGGTACACCGAGATCAAAATCACCGGTATTCAGGCTTAA	MSYAVIVTGGKQYKVAPGEYLKIEKLEIATGESVTFDRVLLVANGDDVNIGAPVVAGATVVAEVISQGRHDKVRIIKFRRRKHHMKRMGHRQWYTEIKITGIQA				NA	NA	NA	NA	NA
D1-36_04360	969	ispB	COG0142	Octaprenyl diphosphate synthase	ATGCAACCCCAAGCTTTCTACCGCGCAGTGGCGGACGATTTTAGTGCCGTCGACGGTATCATCAAGAAGCAGCTGACGTCCCGCGTGCCGCTGGTATCGAAAATCGGCGACTACATCACGTCGGCCGGCGGCAAGCGCCTGCGTCCTTTATTGGTGCTACTGTGCGGCAAGGCACTGGGTCGCGAAGGCGACGACATGCGCCTGCTCGCCGCCACCATCGAATTCCTGCACACCGCGACCCTGCTGCATGACGACGTCGTCGACATGTCCGGCATGCGCCGTGGCCGTTCGACCGCCAACGCCATGTGGGGCAACGCCCCGAGCGTGCTGGTGGGTGATTTCCTGTACTCGCGCTCGTTCGAAATGATGGTCGAGCTGGGCTCGATGCCGGTAATGAAGATCCTGTCCCAGGCCACGCGCATCATCGCCGAAGGCGAAGTGCTGCAGTTGTCCAAGGTGCGCGATGCCAGCACCACCGAAGAAACCTACATGGAGGTCATTCGCGGCAAGACCGCGATGCTCTTCGAAGCCTCGACCCACAGCGCCGCCGCCCTGGCCGGTGCCACCGCCGAGCAGAGCGAAGCCCTGCGCACCTTTGGCGACCACCTGGGCGTGGCCTTCCAGCTGGTGGACGACCTGCTGGACTACAAGGGCGACGCCGAGACCCTGGGCAAGAACGTCGGTGACGACCTGGCCGAAGGCAAGCCGACCCTGCCGCTGATCTACACCATGCGTGAAGGCACACCTGAACAGGCAGCTTTGGTACGCCAGGCGATCCAGAAAGGCGGGATCGAGGACCTGGAGAGCATCCGGATCGCGGTCGAAGCTTCCGGATCGCTGGAATACACCGCGAAATTGGCCCAGGACTACGTCGCCCGCGCAATCAAGTGCCTCGACGCCCTACCGGCCAGCGAGTACCGCGATGCGCTGGTGGAACTGAGCGAGTTTGCGGTCGCCCGCACCCATTGA	MQPQAFYRAVADDFSAVDGIIKKQLTSRVPLVSKIGDYITSAGGKRLRPLLVLLCGKALGREGDDMRLLAATIEFLHTATLLHDDVVDMSGMRRGRSTANAMWGNAPSVLVGDFLYSRSFEMMVELGSMPVMKILSQATRIIAEGEVLQLSKVRDASTTEETYMEVIRGKTAMLFEASTHSAAALAGATAEQSEALRTFGDHLGVAFQLVDDLLDYKGDAETLGKNVGDDLAEGKPTLPLIYTMREGTPEQAALVRQAIQKGGIEDLESIRIAVEASGSLEYTAKLAQDYVARAIKCLDALPASEYRDALVELSEFAVARTH	PGPT0007525_2302	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007525-ispB-K02523	NA	NA
D1-36_04361	342			hypothetical protein	GTGAGCACGTTGCCTCCCTGTCCGAAATGCAATTCCGAATACACCTACGAAGACGGTACCCAGCTGGTCTGCCCGGAGTGCGCCCATGAATGGTCCGCCGGCGGCGAAGCGCAAGCGCCATCCGACGACATCGTGAAGAAGGATTCGGTCGGCAACGTCCTGCAGGACGGCGATACCATTACCGTGATCAAGGACCTCAAGGTCAAGGGCACTTCCCTGGTGGTCAAGGTTGGCACCAAGGTCAAGAACATCCGCCTATGCGATGGCGATCACGATATCGACTGCAAGATCGACGGCATCGGCCCGATGAAGCTTAAATCCGAGTTCGTCAGAAAAGTCTGA	MSTLPPCPKCNSEYTYEDGTQLVCPECAHEWSAGGEAQAPSDDIVKKDSVGNVLQDGDTITVIKDLKVKGTSLVVKVGTKVKNIRLCDGDHDIDCKIDGIGPMKLKSEFVRKV	PGPT0030500_1086	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM	PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030500-phnA|yjdM-K06193
D1-36_04362	258			hypothetical protein	ATGACTTATTTGATCGATGCCTGGCTGGACCGTCCACATCCCTACCTGAGGATCCTGCACCGGGAAACCGGGGAAGTCTGTGCGGTGCTTGAAGAAGAAGCCTTGAATGAGCTGCAGGACCAGGGGGATCTGGACCTCAACAGCCTCAACTCCAGCGAACCGCTGGTGCTAAAGGAGTTGGTGCGAAACCTGTTCCTGTTCTGCTACGCCCGGGCGTTGCGCCCAACGGGTGATTTCAGCGGCAGATTCCATGGATGA	MTYLIDAWLDRPHPYLRILHRETGEVCAVLEEEALNELQDQGDLDLNSLNSSEPLVLKELVRNLFLFCYARALRPTGDFSGRFHG				NA	NA	NA	NA	NA
D1-36_04363	618	fklB_2	COG0545	FKBP-type 22 kDa peptidyl-prolyl cis-trans isomerase	ATGTCCGAAGTTAACCTGTCCACCGACGAAACACGCGTCAGCTACGGCATTGGCCGTCAGTTGGGCGACCAACTGCGCGACAATCCGCCACCGGGCGTGAGCCTGGACGCGATCCTGGCCGGCCTGACCGACGCGTTCGCCGGCAAGCCAAGCCGCGTGGGCCAGGACGAGATGTCCGCCAGCTTCAAGGTCATCCGTGAAATCATGCAAGCGGAAGCCGCCGCCAAGGCTGAGGCCGCTGCGGGCGAAGGTCGTGCGTTCCTGGCTGAAAATGCCAAGCGCGAAGGCATCACCACCCTGGCCTCCGGCCTGCAATTCGAAGTGCTGACCCAGGGTGAAGGCGCCAAGCCGACCCGTGAAGACCAGGTGCGCACCCATTACCACGGCACCCTGATCGACGGCACTGTGTTCGACAGTTCCTACGATCGTGGCCAGCCAGCCGAATTCCCGGTAGGCGGCGTGATTCCTGGCTGGACCGAGGCGCTGCAACTGATGAACGCCGGCAGTAAATGGCGTTTGTACGTGCCTAGCGAGCTGGCCTACGGCGCCCAGGGCGTTGGCAGCATCCCGCCGCACAGCGTGCTGGTGTTCGACGTCGAGCTGTTGGACGTATTGTAA	MSEVNLSTDETRVSYGIGRQLGDQLRDNPPPGVSLDAILAGLTDAFAGKPSRVGQDEMSASFKVIREIMQAEAAAKAEAAAGEGRAFLAENAKREGITTLASGLQFEVLTQGEGAKPTREDQVRTHYHGTLIDGTVFDSSYDRGQPAEFPVGGVIPGWTEALQLMNAGSKWRLYVPSELAYGAQGVGSIPPHSVLVFDVELLDVL	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
D1-36_04364	489			hypothetical protein	ATGGAACGCTTTATCGAAAATGCAATGTACGCCTCCCGTTGGCTGCTGGCGCCGATCTACTTCGGGCTGTCTCTGGGCTTGCTGGCCCTGGCGCTGAAATTCTTCCAGGAAGTCTTTCACGTCATCCCCAACGTGTTTTCCATGGCCGAGTCCGAGCTGATCCTGGTACTGCTGTCGCTGATCGACATGGCGCTGGTGGGCGGTTTGCTGGTCATGGTGATGATCTCCGGCTATGAGAATTTCGTCTCGCAACTGGACATCGATTCCGACAAGGAAAAGCTCAACTGGCTGGGCACCATGGACTCTTCATCCCTGAAGATGAAGGTGGCCGCGTCGATCGTAGCCATCTCTTCCATCCATTTGTTGCGTATCTTCATGGATGCCAAGAATGTCGATCCCGACCACCTGATGTGGTACGTGATCATCCACATGACGTTCGTGGTGTCGGCCTTCGCCATGGGGTATCTGGACAAGCTGACCAAGCACTGA	MERFIENAMYASRWLLAPIYFGLSLGLLALALKFFQEVFHVIPNVFSMAESELILVLLSLIDMALVGGLLVMVMISGYENFVSQLDIDSDKEKLNWLGTMDSSSLKMKVAASIVAISSIHLLRIFMDAKNVDPDHLMWYVIIHMTFVVSAFAMGYLDKLTKH				NA	NA	NA	NA	NA
D1-36_04365	342			hypothetical protein	ATGTCGCGCAACCTTTGCCTTACCCGCCAGTGCCTGGGCCTGGTGACCCGCATTGAATGTGCTGTCCGTCCGCTCGCTGGAGACACGGGCATGTGGACCGTGCTCTTCGCCGCCGGAATGGCCGGTGAGCAACCTTCCGCCATCAAGGCCCAGGGGCCGTTTCCCGGGCCGACCGCCGCAGAAACCATACTCGACACCATCGTCCAGAGCCTGACAACCCACGGTTATGAACTGGCCGACGATCCGCAGATCTGGTCCCTGCACATGCAGGCGCAACTGCGGGAGATCAACGGAGGGCGTTGTCGCAACGTTGGCGGTTTCGAGTTTCGTCCGCTTCAGTGA	MSRNLCLTRQCLGLVTRIECAVRPLAGDTGMWTVLFAAGMAGEQPSAIKAQGPFPGPTAAETILDTIVQSLTTHGYELADDPQIWSLHMQAQLREINGGRCRNVGGFEFRPLQ				NA	NA	NA	NA	NA
D1-36_04366	2439			hypothetical protein	ATGCCTGATCCTGTTGCTGCCAGCTTGCGTCTAGCGCCCGAAGCGCTGACCCGTCCGTTTTCCGCTGAACAGTTCAGCTTCTCTACCACCAATGATCTGGAGCCCTTCCGCGGTGTGCTTGGCCAGGAGCGTGCGGTCGAAGCATTGCAGTTCGGTGTGGCGATGCCACGCCCCGGTTACAACGTATTCGTCATGGGTGAGCCCGGTACTGGCCGGTTCTCTTTCGTCAAGCGCTACCTCAAGGCCGAAGGCAAGCGCATGCAGACCCCGTCGGACTGGGTCTATGTCAATAACTTCGATGAGCCTCGCGAGCCACGCGCCCTGGAGCTGCCCTCGGGTACGGCGGGCACGTTCATCGGCGATATCAATGGCCTTATCGACAATCTGCTGGCGACTTTTCCGGCCGTGTTCGAGCACCCGTCCTACCAGCAGAAAAAAAGCGCCATCGACCGCGCCTTCAACCAGCGCTACGACCGCGCTCTCGATGTGATCGAGCGCCTGGCATTGGAAAAGGATGTCGCGCTGTACCGTGACAGCAGCAACATCGCGTTCACGCCGATGAGCGAGGGCAAGGCGCTGGACGAGGCGGAGTTCGCCCAACTGCCGGAGGCCGAGCGCGAGCGGTTCCACGAAGATATTTCCGGCCTGGAGGAGCGCCTGAACGAAGAGCTCGCCAGCCTCCCGCAGTGGAAACGCGAATCCAACAACCAGTTGCGTCAGCTCAACGAAGAAACCATCACCCTGGCCTTACAGCCTTTGCTGGCGCCGTTGTCGGAAAAGTACGCCGAGAACGCCGCGGTTTGTGGGTATCTGCAAGCCATGCAGGTCTATCTGCTCAAGACCGTGGTCGAACAACTGGTGGACGACAGCAAGACCGACGCCGTCGCCCGCAAGCTGCTGGAAGAGCAATACGCGCCGAGCCTGGTCGTCGGCCATCCGGCGAGCGGTGGCGCGCCGGTGGTGTTCGAGCCGCACCCGACCTACGACAACCTGTTCGGGCGCATCGAGTACAGCACCGACCAGGGCGCGCTCTACACCACGTATCGGCAGTTGCGCCCAGGCGCCTTGCACCGTGCCAACGGTGGTTTTCTGATCCTGGAAGCGGAAAAGATGCTCGGCGAGCCGTTCGTGTGGGATGCGCTCAAGCGTGCCCTGCAGTCGCGCAAGCTGAAAATGGAGTCGCCACTGGGCGAGTTGGGGCGGCTGGCGACGGTCACCCTGACGCCGCAGCACATCCCGTTGCAGGTCAAGGTCGTGATCATCGGCGCGCGCCAGCTCTATTACGCCTTGCAGGACCTGGATTCGGATTTCCAGGAAATGTTTCGCGTACTGGTGGACTTCGATGAAGACATCCCGATGGGCGACGAGAGCCTGGAGCAGTTTGCCCAGTTGCTCAAGACACGCACCTCGGAAGAGGGCATGGCGCCGCTGACCGCCGATGCGGTGGCGCGCCTGGCGACTTACAGTGCGCGTCTGGCCGAACACCAGGGACGCCTTTCGGCGCGTATCGGTGACCTTTTCCAACTGGTCAGCGAGGCGGATTTCATACGCCAACTGGCCGGTGACGAGATGACCGATGCCGGTCACATCGAGCGCGCCTTGAAGGCCAAGGCAACCCGCACCGGGCGTGTCTCGGCGCGAATCCTCGACGACATGCTGGCGGGGATCATCCTCATCGACACCGACGGCGCGGCCGTGGGCAAGTGCAACGGGTTGACGGTACTTGAGGTGGGCGACTCTGCGTTCGGTGTCCCGGCGCGCATTTCGGCCACGGTATATCCCGGCGGCAGCGGTATCGTCGACATCGAGCGAGAGGTCAACCTCGGCCAGCCGATCCACTCCAAGGGTGTGATGATTCTTACCGGCTACCTGGGAAGCCGGTATGCCCAGGAATTCCCGCTAGCGATCTCGGCCAGCATCGCCCTGGAGCAGTCCTACGGCTATGTGGACGGCGACAGCGCATCCCTCGGCGAAGCTTGCACGCTGATCTCGGCCTTGTCGAAGACGCCATTGAAGCAGTGCTTCGCCATCACCGGCTCGATCAACCAATTTGGTGAAGTGCAGGCGGTGGGTGGGGTCAACGAGAAGATCGAAGGCTTCTTCCGCCTCTGTGAAGCCCGCGGGCTGACAGGCGAGCAGGGGGCGATCATTCCCCAGGCCAACGTTGCGACGCTGATGCTCGATGAAAAAGTGCTGGCCGCCGTGCGCGCCGGGCAATTCCACGTCTACGCCGTGCGCCAGGCCGACGAAGCCCTGAGCCTGCTGGTGGGCGAACCCGCGGGCGAGCCGGACGAGAACGGCGAGTTCCCGGAGGGCAGCGTCAATGCGCGCGTGGTGGAGCGGCTGCGGGTTATCGCGGAAATGATCAGCGAGGACGATATCAAGGAGGCGGAAAAGGAACTGGCGCAGCAGGCGCTGGCGGAGGCCAAGCCGGCTTGA	MPDPVAASLRLAPEALTRPFSAEQFSFSTTNDLEPFRGVLGQERAVEALQFGVAMPRPGYNVFVMGEPGTGRFSFVKRYLKAEGKRMQTPSDWVYVNNFDEPREPRALELPSGTAGTFIGDINGLIDNLLATFPAVFEHPSYQQKKSAIDRAFNQRYDRALDVIERLALEKDVALYRDSSNIAFTPMSEGKALDEAEFAQLPEAERERFHEDISGLEERLNEELASLPQWKRESNNQLRQLNEETITLALQPLLAPLSEKYAENAAVCGYLQAMQVYLLKTVVEQLVDDSKTDAVARKLLEEQYAPSLVVGHPASGGAPVVFEPHPTYDNLFGRIEYSTDQGALYTTYRQLRPGALHRANGGFLILEAEKMLGEPFVWDALKRALQSRKLKMESPLGELGRLATVTLTPQHIPLQVKVVIIGARQLYYALQDLDSDFQEMFRVLVDFDEDIPMGDESLEQFAQLLKTRTSEEGMAPLTADAVARLATYSARLAEHQGRLSARIGDLFQLVSEADFIRQLAGDEMTDAGHIERALKAKATRTGRVSARILDDMLAGIILIDTDGAAVGKCNGLTVLEVGDSAFGVPARISATVYPGGSGIVDIEREVNLGQPIHSKGVMILTGYLGSRYAQEFPLAISASIALEQSYGYVDGDSASLGEACTLISALSKTPLKQCFAITGSINQFGEVQAVGGVNEKIEGFFRLCEARGLTGEQGAIIPQANVATLMLDEKVLAAVRAGQFHVYAVRQADEALSLLVGEPAGEPDENGEFPEGSVNARVVERLRVIAEMISEDDIKEAEKELAQQALAEAKPA				NA	NA	NA	NA	NA
D1-36_04367	489			hypothetical protein	ATGAAACGGATTCTTCTCGGTACTCTCTTCACCGCTGTATCCATCAACGCCATGGCTCAGGCGCCGGGCGGCCCGGATTGCGGTTGGGGCAACATGCTGTTCGAAGGTCAGCGTGGCACCCCGGCCCACTTCCTCGCATCCACCACCAACGGCACCTCCGGCAACGCCACCTTCGGCATGACCTCCGGCACCAACGGCTGCTCGACCAACGCAGCACTGACCTACGGTGGCAAGTCCTGGCTGGCCATGAATGGCATGATGAACGAGCTGTCCGAAGACATGGCCAAGGGTCAGGGCGAAGCGCTGACCACCTACGCCGTGGTACTGGGTGTGGCGCCGGAAGATCGCGCTCACTTCTCCGCTGTGACCCACGAGCACTTCCAGCAGATCTTCAGCAAGGCTGACGTGACCGCAGAAGACGTGCATGCCAACACCCTGGCCATTCTGAAAAACGACCCTCGCCTGGCCAAGTACGCGACTCAAGCTTAA	MKRILLGTLFTAVSINAMAQAPGGPDCGWGNMLFEGQRGTPAHFLASTTNGTSGNATFGMTSGTNGCSTNAALTYGGKSWLAMNGMMNELSEDMAKGQGEALTTYAVVLGVAPEDRAHFSAVTHEHFQQIFSKADVTAEDVHANTLAILKNDPRLAKYATQA				NA	NA	NA	NA	NA
D1-36_04368	1854			hypothetical protein	ATGCTCAAACGCCTTGCCTGGCTGGCGCTCTGTGTGTGCGCCCCGCTATCCGCCGCGCCTCATGTCGACCCTCAACGTTTGCAGCAACTGGCCAATGACCGCTTCTGGATTTCCCTTGGCCACTACGAAACCGCCAAGCTCGGCGGCTGGCGCAGCTACATCAGCGACAAGAAATTCTTCCTCGCACCCGACGGCAACGAGCATCCCGACCGCGAACTGACCGCCACGCTGCAAGCCCTGTACGGCCCGGCCAGTGCCGGCCAGCAGCATGTCCAGTGCGTGTACCCGGCGCGTACCCGCTGGCTGAAGGCGCAGCTCGACCTGACGGACCTGCCCTCGGTCAATTGCAGCGATTACACCCAATGGTTCAAGGACGTTTCGCCCCACAGCGCGGTGATGATCTTCCCGGCCGCGTACCTGAACAGCCCGTCATCGATGTTCGGCCATACGTTGCTGCGCATCGACCAGGCCGATGTGCAAAGCGACAAGACCGCGCTGCTCAGCTACGCGATCAACTTCGGCGCCTACATTGAAGGTTCGGATAACAGCATCCTCTACGCCTGGAAGGGCCTGATGGGCGGCTACCCTGGCCTGTTCGCCCTGGTGCCGTACCAGGAAAAACTCTCCGAATACCGCAGCCTCGAGAATCGCGACCTATGGGAATACCGCCTGAACCTGAGCCAGGCGGAAACCGAACGGATGGTCGAGCATGTGTGGGAGCTCAAGCAGATCCAGTTCGACTATTTCTTCTTCGACGAAAACTGCTCCTATCGCCTGCTTGAATTGCTGCAAGTCGCCCGTCCCAGCCTGCGCCTGACCGAACAGTTCCCGCTCACGGCGATCCCCACCGACACCGTCAAGGCGGTGAAAGAAGCCGGGCTGGTGGAAAGCATCCAGTACCGCCCGTCCCGGGAGCGAGAGTTGCTCAGCCGCGCCGAACCGCTCAGCGATAATGAGCAGCAGTGGGTTTTGAAGGTCAGCGCCGACCAGCAACAATTGCAAACGCCCGACTTCAAGGCGCTACCGCGCGAGCGCCAGGCGCTGATCATCGATGCCGCCTACCGCCTGGAGCGTTATCGCGCCAACGGCCAGGAGCGCGATCCACAGCGGGCCCAGCGCAGTTTCGAGCTGCTGAGGGCGATCAACCAGAACCCCGCGCCGGAACTGGACATCCCACAGCCGGGCCTTCCGGAAGACGGCCACGAATCGCGCACCTGGCAGGCCGGCCTGGGTACGCGGGGTGACCGTGCGTTCGGTGAGTACGGCCTGCGCATGGCCTATCACGACCTCAACGACAACGCCGAAAGCTTTCCGCTGGGGGCGCAAATCGAGATCCTTCAACTAAAGCTGCGCCAGTACGAAGGCAACGACTGGCAAGTGCAGCAGCTGGACCTGGCGACCATCCGCTCCCTGACCCCGCGCAACGAGCTGCTGCAACCGTTGTCCTGGCAGGTCACTGGTGGCCTGGAGCGGGTGCCGGGCAAACATGACGATGAAACACTGGTCAGCCACGTCAACGGCGGCGCGGGCGGCACTTGGGCGCTGGGCGAAGATGTACTGGGCTTTGCACTGGGCACGGTGCGGGTCGAACACAACAACGATTTCGCTCAATTCATCGCCCCGGCCGCCGGATTCAACAGCGGCGTGCTGTGGAAAAACCCGCTGGGCAACCTGAGCCTGGAAGCCAAGGGCGATTACTTCGTTAATGGCGAGGTACGCCGTAGCCTGAGCCTGAACCAGCAGTGGGAATTGTCCCGCAACCTGGGCCTGCGCCTGAGCGCCCAGCGAGAGTTCAGCCACTTGGCCTCGCCAGAGAACGAGGTGATGCTCGAGGTGAAGTGGTACCACTACTGA	MLKRLAWLALCVCAPLSAAPHVDPQRLQQLANDRFWISLGHYETAKLGGWRSYISDKKFFLAPDGNEHPDRELTATLQALYGPASAGQQHVQCVYPARTRWLKAQLDLTDLPSVNCSDYTQWFKDVSPHSAVMIFPAAYLNSPSSMFGHTLLRIDQADVQSDKTALLSYAINFGAYIEGSDNSILYAWKGLMGGYPGLFALVPYQEKLSEYRSLENRDLWEYRLNLSQAETERMVEHVWELKQIQFDYFFFDENCSYRLLELLQVARPSLRLTEQFPLTAIPTDTVKAVKEAGLVESIQYRPSRERELLSRAEPLSDNEQQWVLKVSADQQQLQTPDFKALPRERQALIIDAAYRLERYRANGQERDPQRAQRSFELLRAINQNPAPELDIPQPGLPEDGHESRTWQAGLGTRGDRAFGEYGLRMAYHDLNDNAESFPLGAQIEILQLKLRQYEGNDWQVQQLDLATIRSLTPRNELLQPLSWQVTGGLERVPGKHDDETLVSHVNGGAGGTWALGEDVLGFALGTVRVEHNNDFAQFIAPAAGFNSGVLWKNPLGNLSLEAKGDYFVNGEVRRSLSLNQQWELSRNLGLRLSAQREFSHLASPENEVMLEVKWYHY				NA	NA	NA	NA	NA
D1-36_04369	357			hypothetical protein	ATGTGGCGCGCGGCGGTGGTATTGGGGGTGTTGGTGTTGCTCGGTGGCTGTGAAACAACCCATGAGGATTTGATTGCCCGAGGTTATCCACCGGCCTTCGCCGACGGTTTCGATGATGGCTGCAGTAGCGGTCGGCAAGCCGCCGGCGTAATCACAGGCCAGTTCAGGAAGGACGTGCCGCGTTATCTCAAGGATGCCCGCTACGCCGAGGGCTGGAGCGACGGCTTTCGCCAGTGCCAGGCCATGCGCGAGAGTGAAGAGCGTGACGTCTACCGCGAACGCCACTGGGACGATCGCGAACGTGCCTGGCAGCAGGAGAAAGATCGCGACGCCGCTCGGGCCTATCGCACGCAGTGA	MWRAAVVLGVLVLLGGCETTHEDLIARGYPPAFADGFDDGCSSGRQAAGVITGQFRKDVPRYLKDARYAEGWSDGFRQCQAMRESEERDVYRERHWDDRERAWQQEKDRDAARAYRTQ				NA	NA	NA	NA	NA
D1-36_04370	492	greB_2	COG0782	Transcription elongation factor GreB	ATGAGTCGCGCTTTCGTCAACGAAGACAACGCCGCCGCCCAGGCCGATCAACCGGTCGAACGCCAGGTCAGCGCACAGCCCAACTACGTCACGCCGGCGGGGCTTGCTCAATTGCAGGCACGGGTCACCGAACTGCAGCAACTGCATAGCCAACAGTCTGCCCAGGGCGAGCGGGCAGACAAGCAGCGTATCGCCGATATCGAACGGGATCTGCGATATTTCAATCAACGCCTGCAAAGCGCCCAGGTCGTTACGCCGAGCCATTGCGATCAGGTGCGAATCGGGCACTGGGTGACTTTTGCCGATGAGCACGATCAGGAACGGTGTGTGCAATTGGTTGGGGAAGACCAGGCCGATGCGGCCAATGGACTGATCAACTGGGGCTCGCCGCTGGGGCGGGCCTTGCTGGGGGCGAAGGTTGGGGATGAAGTGGTGTGGAAGCGGCCGGCGGGGGATCTATCGATTGAGGTGGTGGCAATTGACCTGAAGTAA	MSRAFVNEDNAAAQADQPVERQVSAQPNYVTPAGLAQLQARVTELQQLHSQQSAQGERADKQRIADIERDLRYFNQRLQSAQVVTPSHCDQVRIGHWVTFADEHDQERCVQLVGEDQADAANGLINWGSPLGRALLGAKVGDEVVWKRPAGDLSIEVVAIDLK				NA	NA	NA	NA	NA
D1-36_04371	1665	ettA	COG0488	Energy-dependent translational throttle protein EttA	ATGGCTCAATACGTCTTCACCATGCATCGGCTGGGCAAAGTTGTTCCGCCGAAGCGGGAAATCCTGAAAAACATTTCTCTTTCCTTTTTCCCTGGCGCCAAGATCGGCGTACTGGGCCTCAACGGCTCGGGTAAGTCCACGCTGCTGAAAATCATGGCCGGCGTCGACAAGGAGTTCGACGGTGAAGCCCGTCCGATGCCCGACCTGAACATCGGCTACCTGCCGCAAGAGCCACAACTGGACCCGACCAAGACCGTGCGTGAAGTGGTCGAGGAAGCGGTCAGCGTGATCAAGGACGCCCAGGCGCGCCTGGACGAGGTCTACGCCGCCTACGCCGACCCGGACGCCGATTTTGACAAGCTGGCCGCCGAACAGGCCAAGCTCGAAGCGATCCTGCAGGCCAGCGACGGTCATAACCTGGATCGCCAGCTGGAAGTGGCCGCCGATGCGCTGCGCCTGCCGGCCTGGGACGCGAAAGTGGAACATCTGTCGGGCGGTGAAAAGCGTCGCGTGGCCCTGTGCCGCCTGCTGCTGTCCGCGCCGGACATGTTGCTGCTCGACGAACCGACGAACCACCTGGACGCCGACTCCGTCGCCTGGCTCGAACACTTCCTGCACGACTTCCCAGGCACCGTGGTTGCGATCACGCACGACCGTTACTTCCTGGACAACGTCGCCGGCTGGATCCTGGAACTCGACCGCGGCGCGGGCATTCCGTACGAGGGCAACTATTCGGGCTGGCTGGAAGCCAAGTCCGATCGTCTGGCCCAGGAGTCCAAGCAGCAGTCGGCCCATGAAAAAGCCATGAAGGAAGAACTGGAATGGGTGCGCAAGGGCGCCAAGGCCCGCCAGTCCAAATCCAAGGCTCGTCTGCAACGCTTCGAGGAAATGCAGTCTCAGGAATTCCAAAAGCGCAGCGAAACCAACGAGATCTACATCCCGGCCGGCCCGCGCCTGGGTGACAAGGTCATCGAATTCAAGAACGTCACCAAGGGCTACGGCGACCGCGTGTTGATCGACAACCTGTCGTTCTCCATGCCTAAAGGCGCCATTGTCGGTGTGATCGGTGGTAACGGTGCGGGTAAATCCACGCTGTTCCGCATGCTGATGGGCAAGGAAACCCCGGACTCCGGCACCATCGAGATCGGTGAAACCGTGCAACTGGCCTGCGTCGACCAGAGCCGTGAGGACCTGGACGGCAGCAAGACCGTGTTCCAGCAGATCTCTGACGGTTCCGACCAGATCCGTATCGGCAACTATGAAATCCCGTCGCGCACTTATGTCGGTCGTTTCAACTTCAAGGGCGGCGATCAGCAGAAGTTCGTCAAGGATCTCTCCGGCGGTGAGCGCGGTCGCTTGCACCTGGCGTTGACGTTGAAGGAGGGCGGTAACGTCTTGCTGCTCGACGAACCGTCCAACGACCTCGACGTCGAAACCCTGCGTTCCCTGGAAGAAGCTTTGCTGGACTTCCCGGGCGCCGCCATTGTGATCTCCCACGACCGGTGGTTCCTTGACCGCGTGGCAACTCACATCCTGGCATATGAAGACGACTCCCAAGCGGTGTTCTTCGAAGGCAACTACACCGAGTACGAAGCCGATCGCAAGAAACGCCTCGGCGAAGCCGCCGCCCAGCCGCATCGCGTACGGCACAAGAAACTGGCCTGA	MAQYVFTMHRLGKVVPPKREILKNISLSFFPGAKIGVLGLNGSGKSTLLKIMAGVDKEFDGEARPMPDLNIGYLPQEPQLDPTKTVREVVEEAVSVIKDAQARLDEVYAAYADPDADFDKLAAEQAKLEAILQASDGHNLDRQLEVAADALRLPAWDAKVEHLSGGEKRRVALCRLLLSAPDMLLLDEPTNHLDADSVAWLEHFLHDFPGTVVAITHDRYFLDNVAGWILELDRGAGIPYEGNYSGWLEAKSDRLAQESKQQSAHEKAMKEELEWVRKGAKARQSKSKARLQRFEEMQSQEFQKRSETNEIYIPAGPRLGDKVIEFKNVTKGYGDRVLIDNLSFSMPKGAIVGVIGGNGAGKSTLFRMLMGKETPDSGTIEIGETVQLACVDQSREDLDGSKTVFQQISDGSDQIRIGNYEIPSRTYVGRFNFKGGDQQKFVKDLSGGERGRLHLALTLKEGGNVLLLDEPSNDLDVETLRSLEEALLDFPGAAIVISHDRWFLDRVATHILAYEDDSQAVFFEGNYTEYEADRKKRLGEAAAQPHRVRHKKLA				NA	NA	NA	NA	NA
D1-36_04372	3849			hypothetical protein	TTGTCCAACGTCACTCCGCCCCCGTCCCCACGCGCACCCGTCGCCGTGCCAGGCTTGCCCCTGCGCGGGACATTGAAGGGCGGGCTGGCCTCGCTGGTGCTGTTGTTGCTGGGGCTACTCTTCTGGCAGTTGCTTGACCAACTGCGCGAAACCCAACAGCAGCAGCGCCAATACACCATCGATTACACGGCCGACCTCGCCGCGCAAGTCAGCCTGAACATGGCCCTGAACGCGCAAATAGCCCTCAATCTGCTACCGATCGTCGAACAACCGCAAACCGCCGACGAACAGCAGGCGCTGTTGCGCAAGCTCAAGCAATCATTGCCCGAATTGCGCAGCCTGGCGCTGCTGAGCCCCTCCGGCAGAGTGCTCAGCGACAGTGACGCGGATAGCCAGGACGCGGATTACCTGGCCGAACTGGTACGGCGCAGTCGCGCCCAGGCTCACTATTTCAGCAATGCCGAGGACGGTTCCGTGGTGCATCTGCTGTTGCACCAGGCCAGCGGCAGCTCTCGCGGATACTGGGCGCTGCGCCTGTCTCCGAGTTTCTTTTCGACATTGACCAAACAGGGCGATACGGGCCTGCGGCCACTGTGGCTGGTGGAGAACCGTCTCAATCGGCAGATCATCAGCCGCGACGAAAGCCTGCCCACGATCACCCCGTCCCAACTGACCCCGCAGGACCTGAGCAACACGGTGTTGACCGTCCCCCTGAGCAGCAGCGACTGGCAGCTGCGCGGGCTGTTCGACCGGCGCCAGGTGCTCGAGCAACTGCTCCCGGCCTTCATCGGCAAATGCCTGCTGGGCCTGGCGTTTTCCATGTTGCCGGTCATTGCCCTGCTGAACATGCGCCGACGCCAGCGGCAGCTGCACGAAGGGCGCCGTCGCTATCAGGACATTTTCGAGGGCACCGGCGTGGCCCTCTGCGTGCTCGACCTGTCCGGCCTCAAGGCGTTTTTTGCCAGGACTGGCCTGCACAACGGCGAGCAATTGCGCGCCTGGTTGCAGGTTCCGCAACAGCTCGAACAGTTGCAACAGCAAGTGCACGTCACCGAAGTCAACCAGGTGGCGTTGAAGCTGCTCAATGTCGACTCCTGCCAACAAGCCTGGCAATTGCTGGTTGGCAACGCCGAAAGGGACAACAACCCGGTCGGTTCGAAACTGCTCGAAGCGTTGCTCGATCCCCATAAACAGCTGGAGCTGGAAATCAGGCTCCAGGACGCCCACGGCCGGGATCAGCATCTGTGGCTGGTGTTGCGCCTGCCGGAAACCCAGCACGACTATAACGCGGTCATCCTGAGCATCAGCGACATCACCAGCCGCAAGCTGATCGAACTGTCGCTACTGGAACGCGAAGGGTTCTGGTCCGATGTGGTGCGCACCGTTCCGGATCATCTTTATGTGCAGGATGTGATCAGCCAGCGGATGATCTTCAGCAACCACCACCTGGGCCAGACGCTCGGCTACGACCGAACCGAACTGCACCAGATGGGCGAGTATTTCTGGGAAATCCTGCTGCACAGCGACGACGCCGATCACTATCACACGCTGCGCCAGGAACAGCGGCGCGGCGGCTACACGCAGTTGCTGCAATGCCAGCTGCGGTTCCGCCATCGCAACGGCAAGTGGCGCCGTTTCGAGGTCCGCGAACAGGCCCTGGCCCGGGACCGCTACGACCAGGTGACCCGGATCATCGGCGTGGCCAAGGACATTACCGAGCAGATCGAGGCCAGCGAATCGCTGCGCGACAGCGAGCAACGCTACCGGATGCTCGCCGAAAGCATCAGCGATGTGATTTTCTCGACCGACAGCAAGCTGTCGCTCAACTATGTCAGCCCGTCCGTCCAGGCGGTGCTGGGCTACACCGCCGACTCGATCTTCCAGAACGGCTGGCAGTCGACCATCGCCAACCCGCAACAACTGACCGGCATCTACAGCCTGATGGACCGCCTCAGCAAGGCCCTCGACAAGCCCGACCAACTGACCGAGCTGCGCAACCAGATGCAGACCCAGTTGTATCTGTTCGACTGCCTGCGCGCCGATGGGCGCAAGATCCCTATCGAGCTGCGGCTGGTGCTGGTGTGGGATGACCATGGCGCGTTCGAAGGTGTACTGGGGGTGGGCCGTGACATCAGCCAGCAGCGGCGCGCCGAAAAAGACCTGCGCATGGCCGCCACCGTATTCGAGCACTCGACATCGGCGATCCTGATCACCGACCCGGCCGGCTACATCGTTCAGGCCAACGAGGCGTTCAGTCGCGTCAGCGGTTACGCGGTATCGCAAGTGCTCGACCAACTGCCCACCATGCTGACCGTGGATGAGCAGCAGGAAGCCCATTTGCGCTACGTGCTCAAGCAACTGCAACAACACAGCACCTGGGAAGGCGAAGTCTGGCTCAAGCGCCGTAATGGCGAACATTACCCGGCCTGGGTCGGCATCACGGCGGTGCTCGACGACGAAGGCGACCTTGCCAGCTACGTGTGTTTCTTCAGCGACATCAGCGAACGCAAGGCCAGCGAGCAACGCATCCATCGCCTGGCCTACTACGACGCATTGACTCACCTGCCCAACCGCACGCTGTTCCAGGACCGTCTGCACACCGCGCTGCAGTCAGCCGAGCGACAGAAGACCTGGGTCGTGCTGATGTTTCTCGACCTGGACCGCTTCAAGCCGATCAACGACTCCCTGGGTCATGCCGCTGGCGACCGGATGCTCAAGGAAATGGCGACGCGCCTGCTCGGCTGCGTGGCCGACGACGACACCGTGGCGCGCATGGGCGGCGATGAATTCACCCTGCTGCTGCAACCGCGAGCCACTCGCGAGATGGCGTTGAACAGGGCGATCACCGTGGCCGAGCAGATCCTTGCTAGCCTCGTCCGGCCCTTCGTGCTGGAAGGTCGCGAGTTTTTCGTCACCGCCAGTATCGGTATCGCCCTCAGTCCCCAGGACGGCAACGAACTCAGCCAATTGATGAAGAACGCCGACACGGCCATGTATCACGCCAAGGAGCGCGGCAAGAACAACTTCCAGTTCTACCAGGCCGACATGAACGCCAGCGCCCTGGAGCGGCTGGAATTGGAAAGCGACCTGCGCCACGCCTTGGAACAGAATGAGTTCGTGCTCTATTACCAACCCCAGTTCAGTGGCGACGGCAAGCGCCTGACCGGCGCCGAGGCCTTGCTGCGCTGGCGCCATCCGCGACGCGGGTTGGTGCCGCCGGGGGATTTCATCCCGGTGCTGGAAGAACTCGGCCTGGTGGTGGACGTCGGCGACTGGGTCATCAGCGAAGCCTGTCGCCAGCTCAGGACCTGGCACCAGGCCAAGGTCCGGGTGCCGAAGGTCTCGGTCAACATCTCGGCCCGGCAGTTCTCCGACGGCCAACTCGGCACACGCATCGCCAATATCTTGCGCAGCACTGGGCTGCCACCGGCCTGCCTGGAGCTGGAACTGACGGAAAGTATTCTGATGCGCGAAGTCAGCGAGGCGATGCAGATCCTCGCCGGGTTGAAAAACCTTGGCCTGAGTATCGCGGTGGATGACTTCGGCACCGGTTATTCGTCGCTCAACTACCTCAAGCAATTCCCCATCGACGTGCTGAAGATCGACCGCACCTTCGTCGACGGCCTGCCGTCCGGCGAGCAGGACGCGCAGATCGCCCGGGCGATCATCGCCATGGCCCACAGCCTCAACCTGGCGGTGATCGCCGAAGGCGTCGAGACCCACGAGCAACTGGACTTCTTGCGCGAACACGGCTGCGACGAAGTACAGGGCTACCTGTTCGGCCGGCCGATGCCGGCGAATCGGTTTGAAGCGCAGTTCAGCAATGATGCGTTGTTCATGATCGACTGA	MSNVTPPPSPRAPVAVPGLPLRGTLKGGLASLVLLLLGLLFWQLLDQLRETQQQQRQYTIDYTADLAAQVSLNMALNAQIALNLLPIVEQPQTADEQQALLRKLKQSLPELRSLALLSPSGRVLSDSDADSQDADYLAELVRRSRAQAHYFSNAEDGSVVHLLLHQASGSSRGYWALRLSPSFFSTLTKQGDTGLRPLWLVENRLNRQIISRDESLPTITPSQLTPQDLSNTVLTVPLSSSDWQLRGLFDRRQVLEQLLPAFIGKCLLGLAFSMLPVIALLNMRRRQRQLHEGRRRYQDIFEGTGVALCVLDLSGLKAFFARTGLHNGEQLRAWLQVPQQLEQLQQQVHVTEVNQVALKLLNVDSCQQAWQLLVGNAERDNNPVGSKLLEALLDPHKQLELEIRLQDAHGRDQHLWLVLRLPETQHDYNAVILSISDITSRKLIELSLLEREGFWSDVVRTVPDHLYVQDVISQRMIFSNHHLGQTLGYDRTELHQMGEYFWEILLHSDDADHYHTLRQEQRRGGYTQLLQCQLRFRHRNGKWRRFEVREQALARDRYDQVTRIIGVAKDITEQIEASESLRDSEQRYRMLAESISDVIFSTDSKLSLNYVSPSVQAVLGYTADSIFQNGWQSTIANPQQLTGIYSLMDRLSKALDKPDQLTELRNQMQTQLYLFDCLRADGRKIPIELRLVLVWDDHGAFEGVLGVGRDISQQRRAEKDLRMAATVFEHSTSAILITDPAGYIVQANEAFSRVSGYAVSQVLDQLPTMLTVDEQQEAHLRYVLKQLQQHSTWEGEVWLKRRNGEHYPAWVGITAVLDDEGDLASYVCFFSDISERKASEQRIHRLAYYDALTHLPNRTLFQDRLHTALQSAERQKTWVVLMFLDLDRFKPINDSLGHAAGDRMLKEMATRLLGCVADDDTVARMGGDEFTLLLQPRATREMALNRAITVAEQILASLVRPFVLEGREFFVTASIGIALSPQDGNELSQLMKNADTAMYHAKERGKNNFQFYQADMNASALERLELESDLRHALEQNEFVLYYQPQFSGDGKRLTGAEALLRWRHPRRGLVPPGDFIPVLEELGLVVDVGDWVISEACRQLRTWHQAKVRVPKVSVNISARQFSDGQLGTRIANILRSTGLPPACLELELTESILMREVSEAMQILAGLKNLGLSIAVDDFGTGYSSLNYLKQFPIDVLKIDRTFVDGLPSGEQDAQIARAIIAMAHSLNLAVIAEGVETHEQLDFLREHGCDEVQGYLFGRPMPANRFEAQFSNDALFMID	PGPT0023624_41	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-GGDEF|EAL|PAC|PAS-DOMAIN-CONTAINING_PROTEIN,PGPT0023624-GGDEF|EAL|PAC|PAS_domain_containing_protein-NA	NA	NA
D1-36_04373	1254	glyA_1	COG0112	Serine hydroxymethyltransferase	ATGTTCAGCCGTGATTTGACTATTGCCAAGTACGACGCCGATCTCTTTGCCGCCATGGAGCAAGAAGCTCAGCGCCAGGAAGAGCACATCGAGCTGATCGCTTCGGAAAACTACACCAGCCCAGCGGTGATGGAAGCTCAAGGCTCGGTACTGACCAACAAGTACGCCGAAGGCTACCCAGGCAAGCGTTACTACGGTGGTTGCGAGTACGTCGACGTGGTCGAGCAATTGGCCATCGACCGCGCCAAGCAGCTGTTCGGCGCCGATTACGCCAACGTCCAGCCACACGCAGGTTCCCAGGCCAATGCCGCCGTGTACCTGGCGTTGCTGTCGGCCGGTGACACCATCCTGGGCATGAGCCTGGCCCACGGCGGTCACCTGACCCACGGCGCCAGCGTTTCCTCCTCCGGCAAGCTGTACAACGCCGTTCAGTACGGTATCGACGGCAATGGCCTGATCGACTACGACGAAGTCGAGCGCCTGGCCCTCGAGCACAAGCCGAAAATGATCGTGGCCGGTTTCTCCGCCTACTCCCAGATCCTCGATTTCCCGCGCTTTCGCGAGATCGCCGACAAGGTCGGGGCCTACCTGTTCGTCGACATGGCCCACGTTGCCGGCCTGGTTGCCGCTGGCGTGTACCCGAACCCGGTACCGTTCGCCGACGTGGTCACCACCACCACCCACAAGACCCTGCGCGGTCCACGTGGCGGCCTGATCCTGGCGCGCGCCAACGCCGACATCGAGAAGAAGCTGAACTCGGCGGTATTCCCAGGCGCCCAGGGCGGCCCGCTGGAGCACGTGATCGCGGCCAAGGCGATCTGCTTCAAGGAAGCCCTGCAGCCTGAGTTCAAGGCCTACCAGCAACAAGTGGTGAAGAACGCCAAGGCCATGGCCGGCGTGTTCATCGAGCGCGGCTTCGACGTGGTGTCCGGCGGTACTGAAAACCACCTGTTCCTGCTCTCGCTGATCAAGCAAGAGATTTCCGGCAAAGACGCTGACGCGGCGCTGGGTAAAGCGTTCATCACCGTCAACAAGAACTCGGTACCCAACGATCCACGTTCCCCGTTCGTCACCTCGGGCCTGCGTTTCGGCACCCCTGCGGTGACCACTCGCGGTTTCAAGGAAGCCGAGTGCAAGGAACTGGCTGGCTGGATCTGCGACATCCTGGCCGACCTGAACAACGAAGCGGTGATCGACGCCGTGCGTGAGAAGGTCAAGGCGATCTGCAAGAAGCTGCCGGTATACGGCGCCTGA	MFSRDLTIAKYDADLFAAMEQEAQRQEEHIELIASENYTSPAVMEAQGSVLTNKYAEGYPGKRYYGGCEYVDVVEQLAIDRAKQLFGADYANVQPHAGSQANAAVYLALLSAGDTILGMSLAHGGHLTHGASVSSSGKLYNAVQYGIDGNGLIDYDEVERLALEHKPKMIVAGFSAYSQILDFPRFREIADKVGAYLFVDMAHVAGLVAAGVYPNPVPFADVVTTTTHKTLRGPRGGLILARANADIEKKLNSAVFPGAQGGPLEHVIAAKAICFKEALQPEFKAYQQQVVKNAKAMAGVFIERGFDVVSGGTENHLFLLSLIKQEISGKDADAALGKAFITVNKNSVPNDPRSPFVTSGLRFGTPAVTTRGFKEAECKELAGWICDILADLNNEAVIDAVREKVKAICKKLPVYGA	PGPT0008090_5862	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008090-glyA-K00600	NA	NA
D1-36_04374	969	yjiA	COG0523	P-loop guanosine triphosphatase YjiA	TTGTCCGCTCCCATCCCGGTCACGATCCTCAGCGGCTTCCTCGGCGCTGGCAAGACCACGCTGCTGCGTCATCTGCTCAAGGCCGAGCACGGCCTGAAAATTGCCGTGATCGAGAACGAATTCAGCGATGCAGGCATCGATACCCAGTTGCTGGGCGAAGAGCCGGTGCAGGTCATGACCCTGGCCAACGGCTGCGTTTGTTGCACCATCCACACCGACCTCACCAAGGCCCTGTACTTGTTGCTCGAGCGGCTGGACAGCGGCGAGATCCAATTTGACCGCCTAGTGATCGAATGCACCGGTCTCGCCGATCCCGCACCGGTGGCGCAAACCTTTTTCATCGACGAGGACCTGCGTGAGCGCTACATCCTCGACGGTATCCTGACCTTGGTGGATGCCGCGCATGCCGACACCCACCTGGCCCAGGCCATTGCCCAGGCCCAGGTCGGATTTGCCGATCGCCTGCTATTGAGCAAGACAGACCTGGTCGACGCGGCCCATGTCGAGGCTCTTCGGGAACGCCTTATGCGCATCAACCGGCGGGCGCCGATTCGGGTGGTCGAACACGGCAAGATCGACCTGGCCGAATTGCTGGACATCCGCGGTTTCAACCTCAATGCGGACCTGGGCGCCGGGCTCAGCCTTCGTCCGGTTGGCAAGGCGACCACGGGCGATCGCATCAGCAGCCTGGTGCTGCGCACCGACAAGCCGCTGGACATCGACAAGCTCAGCGACTTCATGAACCAGTTGCTGGAAGAACACGGCAAGCAGTTGCTGCGCTACAAAGGCGTTTTGAACATCGCGGGCGAGTCCCGTCGGTTGGTATTCCAGGGTGTGCTCAAATTGTACGGTTTCGATTGGGACACCGATTGGGCGCCAGGCGAGGCCCGAGAAAGCGTTATCGTGTTCATCGCCGATGAACTGCCCGAAGAAAAGATCCGCGCCGGCTTCGAAGCCGCGCTCCACTGA	MSAPIPVTILSGFLGAGKTTLLRHLLKAEHGLKIAVIENEFSDAGIDTQLLGEEPVQVMTLANGCVCCTIHTDLTKALYLLLERLDSGEIQFDRLVIECTGLADPAPVAQTFFIDEDLRERYILDGILTLVDAAHADTHLAQAIAQAQVGFADRLLLSKTDLVDAAHVEALRERLMRINRRAPIRVVEHGKIDLAELLDIRGFNLNADLGAGLSLRPVGKATTGDRISSLVLRTDKPLDIDKLSDFMNQLLEEHGKQLLRYKGVLNIAGESRRLVFQGVLKLYGFDWDTDWAPGEARESVIVFIADELPEEKIRAGFEAALH				NA	NA	NA	NA	NA
D1-36_04375	198			hypothetical protein	ATGTTCAATGACTTGAGTCGCCTCGGTAAATACCTCGGTCAGGCCGCCCGCCTGATGGTCGGCATGCCCGACTACGACAACTACGTCGAGCACATGCAAACCAAGCACCCGGACAAGCCGCTGATGGACTACGAGGCGTTCTTCCGAGAGCGCCAAGAGGCCCGTTACGGCGGCAAGGCCGGGCCCAAGTGCTGTTGA	MFNDLSRLGKYLGQAARLMVGMPDYDNYVEHMQTKHPDKPLMDYEAFFRERQEARYGGKAGPKCC				NA	NA	NA	NA	NA
D1-36_04376	2067	btsT_2	COG1966	Pyruvate/proton symporter BtsT	ATGAAAAACAATAATAGCCTGCTACGCCATCTGCCCTGGCTACTGCTGGCCGTCGTAGGAGCGTGCGCCCTGGGCGTCGTGGCATTGCGTCGAGGCGAGGCGATCAACGCCCTCTGGATCGTCGTCGCAGCCGTGGCCATTTACCTGGTCGCCTATCGCTACTACAGCCTCTTCATCGCCAACAACGTGATGCAACTCGATGCGCGCCGGGCCACGCCTGCCGTGCTCAACAACGATGGCCTGGACTACGTCCCGACCAACAAGCACATCCTGTTCGGCCACCACTTCGCGGCCATTGCCGGCGCGGGGCCGCTGGTCGGGCCGGTGCTGGCCGCGCAGATGGGCTACCTGCCCGGCACGCTCTGGCTGATCGCCGGCGTGGTGCTGGCCGGTGCGGTGCAGGACTTCATGGTCCTGTTCCTGTCCACCCGCCGCAACGGTCGCTCCCTGGGCGACATGGTGCGCGAGGAAATGGGCCGTATTCCCGGCACCATCGCGCTGTTCGGCTGCTTCCTGATCATGATCATCATCCTCGCGGTGCTGGCGCTGATCGTGGTCAAGGCCCTGGCCGAGAGCCCGTGGGGCATCTTCACGGTGATGGCGACCATCCCGATCGCGATGTTCATGGGCATCTACATGCGCTACATCCGCCCGGGCCGCATCGGCGAGATCTCGATCATCGGCGTGCTGTTGCTGTTGGGTTCTATCTGGCTGGGCGGGCAGATCGCCGCCGATCCGGTCTGGGCCAAGGCCTTCACCTTCACCGGAATCCAGATCACCTGGATGCTGATCGGCTACGGTTTTGTCGCGGCGGTCCTGCCGGTGTGGCTGATCCTGGCGCCACGGGACTACCTGTCGACCTTCCTCAAGATCGGCACCATCGTCGCCCTGGCGATCGGCATCCTGGTCACCATGCCCGAACTGAAAATGCCCGCGCTGACTCAGTTCACCGACGGCACCGGGCCGGTGTGGAAGGGCGGCTTGTTCCCGTTCCTGTTCATCACCATCGCCTGCGGCGCGGTCTCGGGCTTCCATGCGCTGATCTCCTCGGGCACCACGCCCAAGCTGCTGGATAACGAAACCAACGCCCGCTACATCGGTTACGGCGGCATGCTGATGGAGTCCTTCGTGGCCATCATGGCGATGGTTGCCGCCTCGGTGATCGAGCCGGGCGTGTACTTCGCCATGAACAGCCCGGCGGCGATCGTCGGCACTGACGTGGTGGCCGTGGCCCAGACCGTCAGCAGTTGGGGCTTTGCAATCACCCCCGACGCGCTGCAAGCGGTGGCCAAGGACATCGGTGAAACCACCATCCTGGCCCGTGCCGGCGGTGCGCCGACCCTGGCGGTCGGTATCGCGCAGATCCTGCACTCGGTGCTGCCGGGTGAGAACACCATGGCCTTCTGGTATCACTTCGCGATCCTGTTCGAAGCGCTGTTCATCCTCACCGCGGTGGACGCCGGCACCCGTGCCGGGCGGTTCATGCTGCAGGATCTGCTCGGCTCGTTCGTGCCGGCCCTCAAGCGAACCGAATCCTGGACCGCCAACCTGATCGCCACCGCCGGCTGCGTCGCGCTGTGGGGTTACTTGCTGTATCAGGGCGTGATCGATCCGCTGGGCGGCATCAACACCTTGTGGCCGCTGTTCGGCATCTCCAACCAGATGCTGGCCGGTATCGCGCTGATGCTCGCCACCGTGGTGCTGATCAAAATGAAGCGCCAGCGCTACGTCTGGGTCACGCTGCTGCCGGCGAGCTGGCTGCTGATCTGCACCACCACCGCGGGCCTGATCAAGCTGTTCGACGCCAACCCGGCGATCGGCTTCCTCGCCCTGGCGCGCAAATACAACGATGCCCTGGCCGCCGGCCAGATCCTGGCCCCGGCCAAGAGCATCGAGCAGATGCAGCACGTGGTGTTCAATGCCTACACCAACGCAACGCTGACGGTATTGTTCCTGTTCGTGGTCTTCAGCATCCTGTTCTACGCGCTCAAGGTCGGCATCGCCGCCTGGGGCACGAAAGAGCGCACGGACAAAGAAGCGCCATTCCAGGCCCTGCCGGACGCTTGA	MKNNNSLLRHLPWLLLAVVGACALGVVALRRGEAINALWIVVAAVAIYLVAYRYYSLFIANNVMQLDARRATPAVLNNDGLDYVPTNKHILFGHHFAAIAGAGPLVGPVLAAQMGYLPGTLWLIAGVVLAGAVQDFMVLFLSTRRNGRSLGDMVREEMGRIPGTIALFGCFLIMIIILAVLALIVVKALAESPWGIFTVMATIPIAMFMGIYMRYIRPGRIGEISIIGVLLLLGSIWLGGQIAADPVWAKAFTFTGIQITWMLIGYGFVAAVLPVWLILAPRDYLSTFLKIGTIVALAIGILVTMPELKMPALTQFTDGTGPVWKGGLFPFLFITIACGAVSGFHALISSGTTPKLLDNETNARYIGYGGMLMESFVAIMAMVAASVIEPGVYFAMNSPAAIVGTDVVAVAQTVSSWGFAITPDALQAVAKDIGETTILARAGGAPTLAVGIAQILHSVLPGENTMAFWYHFAILFEALFILTAVDAGTRAGRFMLQDLLGSFVPALKRTESWTANLIATAGCVALWGYLLYQGVIDPLGGINTLWPLFGISNQMLAGIALMLATVVLIKMKRQRYVWVTLLPASWLLICTTTAGLIKLFDANPAIGFLALARKYNDALAAGQILAPAKSIEQMQHVVFNAYTNATLTVLFLFVVFSILFYALKVGIAAWGTKERTDKEAPFQALPDA	PGPT0015060_1073	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CARBON_STARVATION_RESPONSE,PGPT0015060-cstA-K06200	NA	NA
D1-36_04377	357			Cyclic diguanosine monophosphate-binding protein	ATGAGCGAACGCCGCCGCTTCGTACGAATTGAATTCCATGCCAAGACCGAACTGAGCCAAGGGCCCTTCATCTGGCCAGTGAAGTTGCTCGACCTGTCCCTCAATGGGCTGCTGATCGAAAAGCCCCAGCCTTGGCTCGGTGACCCCGAGGCGCCTTTCATGGCAGACATCCACCTGAGCCCGGAGGCAGAGGTCAAGATGGAAGTCCGGCTGGCTCACGACGACCACGGCCACCTGGGCTTCGTCTGCGAGCACATCGACCTGGATTCCATCGCCCACTTGCGTCGATTGGTGGAACTGAACCTGGCCGACCATGATGAACTGGAGCGGGAACTGGCGGCGTTGATCCAGATTTGA	MSERRRFVRIEFHAKTELSQGPFIWPVKLLDLSLNGLLIEKPQPWLGDPEAPFMADIHLSPEAEVKMEVRLAHDDHGHLGFVCEHIDLDSIAHLRRLVELNLADHDELERELAALIQI				NA	NA	NA	NA	NA
D1-36_04378	1368	radA	COG1066	DNA repair protein RadA	ATGGCCAAGGCAAAGCGCATGTACGGCTGCACCGAGTGCGGCTCGACCTTTCCCAAATGGGCCGGCCAATGCAGCGAATGCGGGGCCTGGAACACTCTGACCGAAACCATGGTGGAAAGCGGCGGCGCGGCGGCGCCCACCGGGCGTACGGGCTGGGCCGGCCAGCAGGCGCAGATCAAGACGCTGGCCGAGGTCAGCGTTGAGGAAATTCCGCGTTTCTCCACGGCATCCGGTGAGCTGGACCGCGTGCTGGGCGGTGGTCTGGTGGACGGTTCGGTGGTGTTGATCGGCGGCGATCCGGGCATCGGCAAGTCCACCATCCTGTTGCAGACGTTGTGCAATCTCGCCACGCGCATGCCGGCGCTGTATGTCACTGGCGAAGAATCCCAGCAGCAGGTGGCCATGCGCGCCCGGCGCCTGGGGTTGCCCCAGGATCAGTTGCGAGTCATGACCGAGACTTGCATCGAAACGATCATCGCCACGGCGCGCCTGGAAAAACCCAAGGTCATGGTGATCGACTCGATCCAGACGATTTTTACCGAACAACTGCAATCGGCCCCGGGCGGCGTTTCCCAGGTGCGCGAGAGCGCTGCGTTGCTGGTGCGTTACGCCAAGCAGAGCGGCACGGCGATTTTCCTGGTAGGCCACGTCACCAAGGAAGGCGCGCTGGCCGGGCCACGGGTGCTGGAGCACATGGTCGATACCGTGCTGTATTTCGAAGGCGAATCCGATGGTCGCCTGCGATTGCTGCGGGCGGTGAAGAATCGCTTCGGCGCCGTCAACGAACTGGGTGTATTTGGCATGACCGACAGGGGCTTGAAGGAAGTATCCAACCCCTCGGCGATCTTTCTGACACGCGCCCAGGAAGAAGTTCCAGGCAGCGTTGTCATGGCTACGTGGGAAGGCACCCGACCGATGCTGGTGGAAGTGCAGGCGTTGGTGGATGACAGTCACCTGGCGAACCCGCGCCGTGTCACGTTGGGGCTGGATCAGAACCGATTGGCGATGTTGCTGGCTGTCCTGCACCGGCACGGCGGGATTCCTACGCACGACCAAGACGTGTTTCTCAACGTGGTGGGCGGAGTCAAGGTGCTGGAGACCGCATCCGACCTGGCACTGATGGCAGCGGTCATGTCCAGCCTGCGAAACCGGCCGCTGCCCCACGATTTGTTGGTGTTTGGGGAAGTGGGGTTGTCGGGAGAAGTGCGACCGGTGCCCAGTGGGCAGGAGCGGCTGAAAGAAGCGGCCAAGCATGGCTTCAAGCGCGCCATCGTGCCCAAGGGCAATGCGCCGAAGGAGGCGCCGGCGGGGTTGCAGATCATCGCGGTGACACGTCTGGAGCAGGCGTTGGATGCGTTGTTCGAATAG	MAKAKRMYGCTECGSTFPKWAGQCSECGAWNTLTETMVESGGAAAPTGRTGWAGQQAQIKTLAEVSVEEIPRFSTASGELDRVLGGGLVDGSVVLIGGDPGIGKSTILLQTLCNLATRMPALYVTGEESQQQVAMRARRLGLPQDQLRVMTETCIETIIATARLEKPKVMVIDSIQTIFTEQLQSAPGGVSQVRESAALLVRYAKQSGTAIFLVGHVTKEGALAGPRVLEHMVDTVLYFEGESDGRLRLLRAVKNRFGAVNELGVFGMTDRGLKEVSNPSAIFLTRAQEEVPGSVVMATWEGTRPMLVEVQALVDDSHLANPRRVTLGLDQNRLAMLLAVLHRHGGIPTHDQDVFLNVVGGVKVLETASDLALMAAVMSSLRNRPLPHDLLVFGEVGLSGEVRPVPSGQERLKEAAKHGFKRAIVPKGNAPKEAPAGLQIIAVTRLEQALDALFE	PGPT0014905_3237	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014905-radA-K04485	NA	NA
D1-36_04379	552			hypothetical protein	ATGATGCGTAAGTTCCTTTCATTGATATTAATCACATGGTCATGTGCTGTGCTGGCCGATCAGGCTCCGACCGCCGGCGCGGATGAGGTGCGGGCACAGTTGCAAGATTATTATTTCGATGCCGCCCGCCGGGGCGATGTGCCGATGCTCGATACCTTCATCGAGGCCGGCTATTCGCTGGACACGCGGGATGAGAAGGGCTACACCGCTCTGATCCTGGCGGCGTATCACGGTCATGGCCCGGCGGTCGAGCGTCTGTTGGTCGCCGGGGCGGATGCCTGTGCCCAGGACAAACGTGGCAACACCGCGTTGATGGGGGCGATTTTCAAGGGCGAAGTGCAGATCGCGCGTCGTTTATTGTCCACCGATTGCAGCCCAGATCAGCGCAACGGTGCCGGGCAGACCGCCGCGATGTATGCCGGTCTGTTCAAGCGTGGCGAGTTGCTCGATGCCCTGAAGGCCAAGGGGGCCGACCTGGAGGCCAGGGATCCGTTGGGCAATACCCCGGCAGATCTGGCAAAGGGTGAAATCAAAATGCCGGCCCCGCGGTAA	MMRKFLSLILITWSCAVLADQAPTAGADEVRAQLQDYYFDAARRGDVPMLDTFIEAGYSLDTRDEKGYTALILAAYHGHGPAVERLLVAGADACAQDKRGNTALMGAIFKGEVQIARRLLSTDCSPDQRNGAGQTAAMYAGLFKRGELLDALKAKGADLEARDPLGNTPADLAKGEIKMPAPR				NA	NA	NA	NA	NA
D1-36_04380	1542	katB	COG0753	Catalase	ATGAACACTTCCCTAGGCCTCGGCGCTATGTCCGGTCGCCGTTCCCTTGTTGTGCTGACCGCCAGCCTGTTTTCCCTGTCCATCCATGCCGCCACGCTGACTCGCGATAATGGTGCAGCGGTAGGCGACAACCAGAACTCGCAAACGGCGGGGCCCAATGGCCCAACCTTGCTGCAGGATGTTCAACTGATCCAGAAGCTTCAGCGGTTCGACCGCGAACGTATCCCCGAGCGCGTCGTCCATGCCCGTGGCACCGGTGCCCATGGCGAATTTACCGTGTCCAATGATTTGAGCGACCTGACCAAGGCCAAGGTTTTCGCGGCGGGCCAGGTCACGCCAGTGTTCGTACGTTTTTCCGCCGTGGTGCATGGCAATCATTCGCCCGAAACACTGCGCGACCCGCGTGGCTTTGCCACCAAGTTCTATACGGCGGAGGGTAACTGGGATCTGGTGGGTAATAACTTTCCGACATTTTTCATCCGTGACGCTATTAAGTTCCCTGACATGGTCCACGCGTTCAAACCCGATCCGCGAACCAACCTGGATGATGACTCCCGTCGTTTCGACTTCTTTTCCCATGTTCCAGAAGCGACTCGCACCCTGACCGAGTTGTATTCAAACTCCGGGACACCAGCCAGTTACCGCGAGATGGACGGTAACGGTGTACATGCTTACAAACTGATCAACGCAAAGGGCGAGATCAGTTACGTAAAGTTTCATTGGAAAAGTTTGCAGGGCCTCAAAAATCTCGACCCGAAAGAAGTGGTGAAGGTACAAGGACAGGATTACAGCCATATGACCAACGATTTGGTCAGCCATATCAATAAGGGGGACTTTCCAAAGTGGGACTTGTTCATCCAGGTGCTCAAGCCTCAGGACCTGGCCAAGTTTGACTTCGATCCATTGGACGCGACCAAGATATGGCCGGATGTTCCGGAGCGAAAAGTTGGGCAAATGGTGTTGAACCGTAATCCGGCGAATGTTTTCCAGGAAACCGAACAAGTGGCAATGGCGCCGGCGAACCTGGTGCCGGGTATCGAGCCTTCGGAAGACCGGTTGTTGCAGGGGCGGGTGTTTTCCTACGCCGATACGCAAATGTACCGGATTGGGCCGAACGCGCTGCAGTTGCCAATCAATGCCCCCAAGGTCGCTGTCAACAACGGCAACCAGGATGGCGCGATGAATTTTGGCAAGACCAGCACCGGTGTGAATTACCAGCCGAGCCGCTTGATGCCCCGTGAAGAACAACAAGCGGCGCGCTATAGCCAGGCCGAGCTGACCGGTAGCACCCAACAGGCGAAAATTCAGCGCGAGCAGAACTTCAAGCAGGCGGGCGACCTGTACCGCTCGTTCAACCAAAAGGAGCGCAGTGACTTGATCGAGAGTTTTGGTGGGTCTTTGGCGACTACCGATGACGAGAGCAAGCACATCATCCTGTCGTTCCTCTACAAGGCCGATCCTGAATACGGGACGGGAGTGGCCCGTGTCGCCAAGGGCGACCTGGCGCGAGTCAAGGCGCTGGCCGAGAAGCTGAGCGACTGA	MNTSLGLGAMSGRRSLVVLTASLFSLSIHAATLTRDNGAAVGDNQNSQTAGPNGPTLLQDVQLIQKLQRFDRERIPERVVHARGTGAHGEFTVSNDLSDLTKAKVFAAGQVTPVFVRFSAVVHGNHSPETLRDPRGFATKFYTAEGNWDLVGNNFPTFFIRDAIKFPDMVHAFKPDPRTNLDDDSRRFDFFSHVPEATRTLTELYSNSGTPASYREMDGNGVHAYKLINAKGEISYVKFHWKSLQGLKNLDPKEVVKVQGQDYSHMTNDLVSHINKGDFPKWDLFIQVLKPQDLAKFDFDPLDATKIWPDVPERKVGQMVLNRNPANVFQETEQVAMAPANLVPGIEPSEDRLLQGRVFSYADTQMYRIGPNALQLPINAPKVAVNNGNQDGAMNFGKTSTGVNYQPSRLMPREEQQAARYSQAELTGSTQQAKIQREQNFKQAGDLYRSFNQKERSDLIESFGGSLATTDDESKHIILSFLYKADPEYGTGVARVAKGDLARVKALAEKLSD	PGPT0014380_2512	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0014380-katE|CAT|catB|srpA-K03781	NA	NA
D1-36_04381	414	mscL	COG1970	Large-conductance mechanosensitive channel	ATGGGCGTGCTAAGCGAGTTCAAGGCCTTCGCGGTCAAAGGCAATGTCGTCGACATGGCCGTCGGGATCATCATCGGTGCGGCTTTCGGCAAGATCGTTTCGTCGTTCGTGGGTGACGTGGTCATGCCTCCGATCGGCCTTCTGATCGGCGGGGTGGACTTCAGCGACCTGGCCATCACCCTCAAGGCCGCCCAAGGCGATACGCCGGCAGTTGTGCTGGCCTATGGCAAATTCATCCAGAGCACAGTGGACTTTATCATCGTCGCGTTCGCGATCTTCATGGGCGTCAAGGCCATCAACCGGCTCAAGCGCGAAGAAGCCGTCGCGCCGAGCGCCCCCCCTGTGCCGACCAAGGAAGAGCTATTGCTGAGTGAGATCCGCGACTTGCTCAAGGCCCAGAACGAACGGCCCTGA	MGVLSEFKAFAVKGNVVDMAVGIIIGAAFGKIVSSFVGDVVMPPIGLLIGGVDFSDLAITLKAAQGDTPAVVLAYGKFIQSTVDFIIVAFAIFMGVKAINRLKREEAVAPSAPPVPTKEELLLSEIRDLLKAQNERP	PGPT0013771_1887	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013771-mscL-K03282	NA	NA
D1-36_04382	777	fpr_2	COG1018	Flavodoxin/ferredoxin--NADP reductase	ATGACCGACAATGCAGAAAAGTTTACCCGCCAGAGACTGGTCGACGTACAAACGTTGACGCCTCACTTGTTTACGCTACGCACCACCAGGGATCGCGGTTTCCGCTTCCGGGCTGGTCAGTTCGCCCGGCTCGGTGTCGTCAAGGCGGATGGGAGCACCGTCTGGCGCGCTTATTCCATGGTGTCATCGCCGTTCGACGAGTTTCTCGAGTTCTTTTCGATCGTCGTCCCGGGCGGTGAATTCACCAGCGAGCTGAGCCGTCTGAAACCAGGGGATAATCTGCTGGTCGAGCGCCAGGCCTTTGGCTATTTGACGCTGGACCGTTTTGTCGACGGTCGTGATCTATGGCTGTTGTCCACGGGAACGGGTGTCGCCCCGTTTCTTTCGATCCTGCAGGATTTCGAGGTCTGGGAAAAATTCGAACGGATCATCCTCGTCTACAGTGCGCGGGAGGCCAGGGAACTGGCGTACCAAGACCTTATCGAGGGGTTGTTCCAGCGAGACTACCTGGCCGAATACGCGCATAAGTTCCGGTTTATATCGACCGTCACCCGTGAGCAGGTTCCAGAGGCCCTTAACGGGCGAATCACTACGTTGATAGAAAACGGTGAGCTGGAACGGGTCGCCGGTGTCCCGCTGACGCCTGAGCATTCCCGGGTCATGCTGTGCGGCAATCCCCAGATGATTGACGACACGCGCAAGCTGCTCAAGGCCAGGGGCCTGCAACTGAGCCTCACCCGCCGGCCCGGCCAGGTAGCGGTGGAAAACTATTGGTAG	MTDNAEKFTRQRLVDVQTLTPHLFTLRTTRDRGFRFRAGQFARLGVVKADGSTVWRAYSMVSSPFDEFLEFFSIVVPGGEFTSELSRLKPGDNLLVERQAFGYLTLDRFVDGRDLWLLSTGTGVAPFLSILQDFEVWEKFERIILVYSAREARELAYQDLIEGLFQRDYLAEYAHKFRFISTVTREQVPEALNGRITTLIENGELERVAGVPLTPEHSRVMLCGNPQMIDDTRKLLKARGLQLSLTRRPGQVAVENYW	PGPT0013215_2843	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013215-fpr-K00528	NA	NA
D1-36_04383	714	anoR		Transcriptional activator protein AnoR	ATGGACGAGTGGAAGGACTTGCAACTGCGAAAACTGTCATGTGAAAAGGACTTGCAAAGGGCCTATCGTCTGGTACTGGATTTCTTTAATTTTCAAGGATTTGAATACTGTGCCTTTGCCGCATACTCGGGCGTTCCCGATCGGTATGCCAGCAAGATCAATATTAATAATTACCCTTATGGATGGGACCGGCTTTATGAACAAAATGGTTACGTCAACAATGACCCGATAGTGGCGCATTGCAACCAGTCCGCATTACCGATCCTGTGGAGTGAGAGTGCATTTTCCGAAGCACCCAAGTTATGGCGGGAACTTAACCGACAGGGTCTCAGGCACGGCTGGACACAAGCCATACATGATGAGCACGGCTCCCATTACAGTTTATTCAGCCTCGCCAGGACGCATTGTCCGATCGATGCCGACGAGCACTATGGGAACCTTGGCTATGCCATCTTCGCCAGCCAGAAATTGCATGCTCTGGCGGGCAAGAAGCTGGTCGACAATATGGTGCCCCCGCAAACCTACCACCTCTCCCCCCGGGAGATCGAAGTGCTGAGGTGGTCCGCCGAAGGAAAGACGGCGTCGGAGGTCGGGCGCATCCTGTGCCTGTCCGAACGTACCGTGAATTTCCACGTCTGCAGCTGCATGCGGAAGTTGAACGTGACCAATAAAATCTCGGCGGTGGCGAAAGCTGCGCACATCCATGTGATCTAG	MDEWKDLQLRKLSCEKDLQRAYRLVLDFFNFQGFEYCAFAAYSGVPDRYASKININNYPYGWDRLYEQNGYVNNDPIVAHCNQSALPILWSESAFSEAPKLWRELNRQGLRHGWTQAIHDEHGSHYSLFSLARTHCPIDADEHYGNLGYAIFASQKLHALAGKKLVDNMVPPQTYHLSPREIEVLRWSAEGKTASEVGRILCLSERTVNFHVCSCMRKLNVTNKISAVAKAAHIHVI				NA	NA	NA	NA	NA
D1-36_04384	1125	rlmG	COG2813	Ribosomal RNA large subunit methyltransferase G	ATGCCCTTGCTCGATACTCCCTTCGCCCAACTCGACCTGATCCGCCAGCCCGAACAGCCGAACGAACCCCTGCAAGCGTTCGACGCTGCCGATGAATATCTGCTTGCGCACCTGGCCGAACACCAACCGGGCGCGGAAACCCGGGTGCTGGTACTCAATGATGGCTTCGGCGCCCTGGCGGCCAGCCTCGCAGGCAAGGTCAAGGTCACCAGCAGCGGTGACTCGTTCCTGGCGCTGCAGGCATTGGAAAAGAATCTGGTGCGCAACGGCTTGCCGTTCGATACGGTGCCCATCGTGCCGGCCAGCGAAGCGCTGACGGGGCCTTTCGATTGTGTCCTGGTCAAGGTGCCCAAGACCCTGGCGCTGCTGGAGGAGCAACTGATCCGGCTGCAAGGGCAACTGGCACCAGGGGCCCAGGTGATCGCTGCCGCGATGGTCAAGCACCTGCCCCGAGCCGCAGGCGACCTGATGGAGCGCTACGTCGGCCCGGTGCAGGCCTCGCTCGCTGTCAAGAAAGCCCGTCTGTTGATTGCCACGCCGCAACCGAGGACACCGGCCGCTTCCCCTTACCCCACTCGGTATGCGCTGGATGAGCCGAACATCGAATTGCTCAATCATGCCAATGTATTCTGCCGTGAAGGGCTGGACATCGGCACCCGCGCCTTCCTGCCGCACCTGCCCAAGAACCTGGGCTCGGCGCGTGTTGCGGACCTGGGTTGCGGCAACGGCGTGCTGGCCATTGCCAGCGCCCTGGCTAACCCGGACGCTCACTACACCCTGGTGGACGAGTCGTACATGGCCGTGCAATCAGCCGCCGAAAACTGGCGAGCCGCCCTGGGCGAGCGCGAAGTGATCGTGCGGGCGGGCGATGGCTTGGCCGGGCAAGAAGCGCAGTCCCTGGATGTGGTGCTGTGCAACCCGCCCTTCCATCAGCAGCAAGTGGTGGGCGATTTCCTTGCCTGGCGCATGTTTCAGCAGGCCCGTGAAGCGTTGGTGGTCGGCGGCGCGCTGTACATCGTCGGCAACCGCCACCTGGGCTATCACAGCAAGCTGGCGCGGCTGTTCCGCGGTGTCGAGCAGGTGGCCGCCACGCCGAAGTTCGTGATCCTCAAAGCCCGCAAATAA	MPLLDTPFAQLDLIRQPEQPNEPLQAFDAADEYLLAHLAEHQPGAETRVLVLNDGFGALAASLAGKVKVTSSGDSFLALQALEKNLVRNGLPFDTVPIVPASEALTGPFDCVLVKVPKTLALLEEQLIRLQGQLAPGAQVIAAAMVKHLPRAAGDLMERYVGPVQASLAVKKARLLIATPQPRTPAASPYPTRYALDEPNIELLNHANVFCREGLDIGTRAFLPHLPKNLGSARVADLGCGNGVLAIASALANPDAHYTLVDESYMAVQSAAENWRAALGEREVIVRAGDGLAGQEAQSLDVVLCNPPFHQQQVVGDFLAWRMFQQAREALVVGGALYIVGNRHLGYHSKLARLFRGVEQVAATPKFVILKARK				NA	NA	NA	NA	NA
D1-36_04385	165			hypothetical protein	ATGGCCAAGCCTGACTTGAAAGACATCGAGGCCGCGGAAAAAAAGCCGCTATGGCAGCGGATCGGTTGGCTGGCGGCGATTTGGGCCGGTAGCGTGCTGGCATTGTTCATCGTAGCCAGCTTGATGCGGATGTTCATGAACGCCGCGGGTTTGACGACTCACTGA	MAKPDLKDIEAAEKKPLWQRIGWLAAIWAGSVLALFIVASLMRMFMNAAGLTTH				NA	NA	NA	NA	NA
D1-36_04386	1008	appB	COG1294	Cytochrome bd-II ubiquinol oxidase subunit 2	ATGGGTATTGATCTTCCGCTGATCTGGGCCGTGGTCATCATCTTCGGCATCATGATGTACGTGATCATGGACGGCTTCGACCTGGGCATCGGCATTCTCTTCCCCTTCGTCAAGGGCGAGCGCGACCGCGACGTGATGATGAACACCGTCGCGCCGGTCTGGGACGGTAACGAGACCTGGCTGGTGCTGGGCGGGGCAGGGCTGTTCGGGGCGTTCCCGCTGGCGTATTCGGTGGTGCTCTCGGCATTGTACCTGCCGCTGATTCTGATGCTCATCGGGCTCATCTTCCGGGGCGTGGCGTTCGAGTTCCGCTTCAAGGCCAAGGCCGAGAAGCGGCATCTTTGGGACAAGGCATTTATCGGTGGCTCGCTGACGGCGACGTTCTTCCAGGGGGTCGCCCTGGGGGCGTTCATCGACGGCTTCGAAGTGGTCAATCGCCAGTTCGCCGGCGGTTCCCTGGACTGGCTCACGCCGTTCACCATGTTTTGCGGCCTGGCGCTGATCGCCGCCTATGCCTTGCTCGGCTGTACCTGGCTGATCATGAAGACCGAAGGCAAGCTGCAAGAACAGATGCATGACCTGGCCAGGCCGTTGGCCTTCGTGGTGCTGGCGGTGATCGGCATCGTCAGCATCTGGACCCCACTGGCCCATGCCGATATCGCCGCGCGCTGGTTCACCTTGCCGAACCTGTTCTGGTTCCTGCCGGTGCCGATCCTGGTGTTGGTGACCATGTACGGGTTGTTCCGCGCCGTGGCCCGCAACGCCAACTACACGCCTTTCATCCTGACGCTGGTGCTGATTTTCCTGGGTTACAGCGGCCTTGGCATCAGCCTGTGGCCGAACATCGTGCCGCCGTCCATTTCGATCTGGGACGCCGCGTCGCCGCCACAGAGCCAGGGCTTCATGCTGGTCGGCACGTTGTTCATCATTCCGTTGATCCTGGTGTACACCTTCTGGAGCTACTACGTGTTCCGCGGCAAGGTGACCCATGACGATGGCTACCATTGA	MGIDLPLIWAVVIIFGIMMYVIMDGFDLGIGILFPFVKGERDRDVMMNTVAPVWDGNETWLVLGGAGLFGAFPLAYSVVLSALYLPLILMLIGLIFRGVAFEFRFKAKAEKRHLWDKAFIGGSLTATFFQGVALGAFIDGFEVVNRQFAGGSLDWLTPFTMFCGLALIAAYALLGCTWLIMKTEGKLQEQMHDLARPLAFVVLAVIGIVSIWTPLAHADIAARWFTLPNLFWFLPVPILVLVTMYGLFRAVARNANYTPFILTLVLIFLGYSGLGISLWPNIVPPSISIWDAASPPQSQGFMLVGTLFIIPLILVYTFWSYYVFRGKVTHDDGYH	PGPT0026705_4075	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
D1-36_04387	1440	cydA_2	COG1271	Cytochrome bd-I ubiquinol oxidase subunit 1	ATGTTCGGTTTGGAGGCGCTTGATCTCGCCCGAATCCAGTTCGCGTTCACCATCTCGTTCCACATCCTGTTCCCGGCCATCACCATTGGCCTGGCGAGTTACCTGGCGGTACTCGAAGGCCTGTGGCTGAAGACACACGACGATACCTACCGCGACCTGTATCACTTCTGGTCGAAGATTTTCGCCGTCAACTTCGGCATGGGGGTGGTCTCCGGGCTGGTGATGGCTTATCAGTTCGGCACCAACTGGAGCCGTTTTTCGGATTTCGCTGGCGCTGTAACCGGGCCGCTCCTGACTTATGAAGTGCTCACGGCATTCTTCCTCGAAGCGGGCTTCCTCGGCGTAATGCTGTTCGGCTGGAATCGCGTGGGGCGTGGCTTGCACTTCTTTTCCACGGTCATGGTGGCGATCGGTACGCTGATCTCGACCTTCTGGATCCTGTCGTCCAACAGTTGGATGCAAACCCCGCAAGGCTACGAAATCATCGATGGCCGAGTCATTCCGGTGGACTGGCTGGCCGTGGTGTTCAACCCCTCGTTTCCGTTCCGGCTGATGCACATGTCGGTCGCGGCCTTTGTCGCCACCGCGTTTTTCGTCGGCTCGTCGGCGGCCTGGCACCTGCTGCGCGGTCGCGATAACCCGGCCATTCGCCGCATGTTGTCGATGGCGATGTGGATGGCCCTGCTGGTCGCGCCTGTACAGGCGGTAATCGGTGACTTCCACGGTCTCAATACGCTGAAGCACCAGCCGGCAAAAATTGCCGCCATCGAAGGGCACTGGGAAAACGTCGGCGACGAACCCACGCCGCTGATTCTGTTCGGCTGGCCGGACATGAAGGCCGAGCAAACCAAGTTCGCTGTGGAAATCCCGTACCTGGGCAGCTTGATCCTGACCCACTCGCTGACCGATCAGGTGCCGGCGCTGAAGGATTTCCCGCCTGAGGATCGACCGAATTCGACCATCGTGTTCTGGTCGTTCCGGGTCATGGTGGGCCTGGGGTTGCTGATGATATTCACTGGGCTGTGCAGCCTCTGGCTACGCCGCGGCAACCGGCTTTACCAATCCCGCCCGTTCCTGCATCTGGTGCTGTGGATGGGGCCTTCCGGGCTGATCGCGATCCTGGCCGGCTGGTTCACCACGGAAATCGGTCGCCAGCCGTGGGTAGTCTACGGCTTGATGCGCACGGCGGATGCGTCGTCCGGCCACAGCTTTGCGCAGATGAGCTTCACCCTGGTCATGTTCGTGGTGGTGTATTTCGCGCTGTTCGGCGCGGGGTTGAGCTACATGATGCGTCTGGTGCGCAAGGGCCCGGTGGCCCAGGAAGCCGAGCCGACCGACGGTGGCCCCGGTCAGAAACGCACCCCGGCCCGTCCATTGTCGGCCGCCAACGAAGGCGACGACGAAGTGGACCACAACGACAGCTCGAACAAGGGGAATTGA	MFGLEALDLARIQFAFTISFHILFPAITIGLASYLAVLEGLWLKTHDDTYRDLYHFWSKIFAVNFGMGVVSGLVMAYQFGTNWSRFSDFAGAVTGPLLTYEVLTAFFLEAGFLGVMLFGWNRVGRGLHFFSTVMVAIGTLISTFWILSSNSWMQTPQGYEIIDGRVIPVDWLAVVFNPSFPFRLMHMSVAAFVATAFFVGSSAAWHLLRGRDNPAIRRMLSMAMWMALLVAPVQAVIGDFHGLNTLKHQPAKIAAIEGHWENVGDEPTPLILFGWPDMKAEQTKFAVEIPYLGSLILTHSLTDQVPALKDFPPEDRPNSTIVFWSFRVMVGLGLLMIFTGLCSLWLRRGNRLYQSRPFLHLVLWMGPSGLIAILAGWFTTEIGRQPWVVYGLMRTADASSGHSFAQMSFTLVMFVVVYFALFGAGLSYMMRLVRKGPVAQEAEPTDGGPGQKRTPARPLSAANEGDDEVDHNDSSNKGN	PGPT0026700_2373	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
D1-36_04388	1239	entS	COG0477	Enterobactin exporter EntS	ATGCCCAGCCAAGCGCCCCTTCTGCTCCGTCACCATCGTCCCTTCATTGCTTTCTGGCTGGCTCGGATATTCACCGCCAGCGGTTTCCAGATGCTGACGGTGGCCATCGGCTGGAACCTCTATCAACTGACCGGCAATGTCCTGGACCTGGGGCTCGTCGGCCTCGTGGAGTTCGCCCCACGGGTGCTGTTCATGCTGCATACCGGGCACGTGGCGGATCGATACGATCGACGTAAAGTCGCGGCCATCTGCCAATCGTTGCAAGCCATGATCGCCCTCACCCTGGCGATTGGCAGCGCCAGCGACAACGTTACGCGAGAGATGATCTTCATCCTCGCGTTCCTGCTCGGCGCGGCCCGCTCCTTCGAAATGCCGACCACCCAGGCGCTGTTGCCGAGCATTGTCCCTGCCGCGTTGTTTCCCCGGGCTGTGGCCGCCGCGCAATCAGCACAACAATCGGCCACCATCGTCGCCCCGGCCCTGGGCGGTTTGCTGTACGCCTTTGGCAGCGTCTGGGTCTATGGGCCAACCGTGTTGCTTTATGTCATCGCCTGCTGCCTGATGCTCAACCTGCCCGCCCGGCAGACACCGCTGAATAAAGGCAAGGCGACCCTCGACTCGCTGTTGGCCGGTATTCGCTTCATTCGCAGCCGCCCGGACATCCTAGGGGCGATCTCTCTGGACTTGTTTGCGGTGCTGTTGGGCGGCGCCACCGCGCTGTTGCCGGTATTCGCCAAGGACATCCTGCTCACCGGCCCCTGGGGCCTGGGCCTGTTGCGTTCGGCGCCGGCGGTCGGGGCCTTGCTGATGTCGCTGTGGCTGGCGCGGTTTGCCGTGGAGCGCAAGGTCGGCCGGGTGATGTTTACCGCCGTGGGCGTGTTCGGCGTCGCCACCATTGCGTTCGGCCTTTCCACGTCGTTCTGGTTCTCCCTGGCGGTATTGGTGGTGCTGGGCGCGGCGGACATGATCAGCATGGTCATCCGCGCCTCCTTCGTGCAGTTGGAAACGCCCGACGAGATGCGCGGTCGGGTGAGCGCTGTGAATGGGTTGTTTATCGGCGCCTCGAACCAGTTGGGCGAATTCGAGTCCGGGCTCACCGCCCACTGGTTCGGCACGGTGCCGGCGGTGGTCATGGGCGGCGTCGGCACGCTGCTGGTGACCGGGGCCTGGATCAAACTGTTCCCGACCCTGGCCAACCGTGACCGGATGCACGAACCGGTGGACGAGGCGAAAGCCTAG	MPSQAPLLLRHHRPFIAFWLARIFTASGFQMLTVAIGWNLYQLTGNVLDLGLVGLVEFAPRVLFMLHTGHVADRYDRRKVAAICQSLQAMIALTLAIGSASDNVTREMIFILAFLLGAARSFEMPTTQALLPSIVPAALFPRAVAAAQSAQQSATIVAPALGGLLYAFGSVWVYGPTVLLYVIACCLMLNLPARQTPLNKGKATLDSLLAGIRFIRSRPDILGAISLDLFAVLLGGATALLPVFAKDILLTGPWGLGLLRSAPAVGALLMSLWLARFAVERKVGRVMFTAVGVFGVATIAFGLSTSFWFSLAVLVVLGAADMISMVIRASFVQLETPDEMRGRVSAVNGLFIGASNQLGEFESGLTAHWFGTVPAVVMGGVGTLLVTGAWIKLFPTLANRDRMHEPVDEAKA	PGPT0003290_47	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-ENTEROBACTIN|ENTEROCHELIN_TRANSPORT,PGPT0003290-entS|ybdA|cbsS-K08225	NA	NA
D1-36_04389	2202	paoC	COG1529	Aldehyde oxidoreductase molybdenum-binding subunit PaoC	ATGAATGCACCGAGCAAAACCATAGGCCAACCGCTGGACCGGGTTGATGGCCTCCTCAAGGTGACCGGTCGGGCCCGTTACGCCGGGGAATATCCGGAAGATGGCTTGTTGCACGGCAGTGTCGTATCCAGTGCCATCGCCCGGGGGCGGGTGGTGGGTATCGATGCTTCCCGCGCCCTGGCGCTGCCGGGTGTCGTTGCTGTGATCGATCATACCAATCGGCCCAAAATCGCCAGCTACGACGAACCCTATCAGGATGCCGACGCAGCGGAGGGCTCGCCGTTCCGGCCACTGTTCAACGACCAGATCCTCTATAGCGGCCAGCCGCTGGCCCTGGTGGTCGCCGAAAACCTGGAGCTGGCCCGTTATGCCGGCTCGCTGGTGGAGATTGAATACGAGGCTGAGGGGCATCAGACCGATCTGACAATCCTGCAAAACGAAGCCCATCCAGCACCTGCAGAACTGCCCAAGCCCCGTGGGAATTTTCAGGGCGAGTACGCGAGCGCAGCCCTGAGTGTGGACGTGTCCTACAGCACGCCGATAGAACACCACAACCCGATGGAGCCCCATGCCTCCACCGTGTTGTACCAACCCGACGCAAGCCTGCATATCCACGACAAGACCCAAGGCGCGCAGAACTGCCAGGCGTACGTGCAAAAAGTATTCGGGCTGGAAAAGGAGCAAGTGCGGGTATTTGCCGCCTACGTGGGCGGCGCGTTTGGTTCCGGCCTGCGTCCGCAATACCAATTGGCGCTCGCGGTGATGGCGGCGCTGCATCTCAAGCGTTCCGTACGGGTCAGCCTGACGCGCCAGCAGATGTTTACGTTTGGCTATCGGCCTCGGACATTCCAGCGCTTGCAATTGGGTGCTGCGGCCAACGGAAGATTGCTCGCGGTAGCGCATACCGCCATTGGCCAGACCTCGCGTTTCGAAGATTTTACCGAGCACGTGGTGGAGTGGAGCGGCATGCTCTATCACTGCGATAACGTGACACTGACGTACAAACTGGCGCCGTTGGACGTTTACACACCGCTGGACATGCGCGCCCCGGGCGCGGCCCTCGGGTTGATCGGGCTGGAATGTGCCATGGACGAGCTGGCCTGCGCCCTGGCGATCGACCCGGTGCAGTTGCGTCTGATCAACTATGCCGAACGCAACGAAAACGAAGGCAAGCCCTATTCCAGCAAGGAGCTGCGGGCCTGTTACGCCCAGGGCGCCGACCGTTTCGGTTGGAGCAAGCGCAACCCCGAACCGCGCAGCATGCGCAGCGGCCGACAACTGGTGGGCTGGGGCATGGCGGGCGGCGTGTGGGAAGCCATGCAGCAAAAAGCCAGTGCCCGCGCCTCGCTGGACGCCAACGGCAAGTTGACCGTCAGCAGCGCAACGACGGACATCGGCACCGGCACCTATACCGTCATGACTCAAATTGCCGCCGAGGCGTCAGGCGTTTCCCTTGAGGACGTCACCTTTGTCCTGGGCGACTCGTCGCTGCCAACGGCACCATTGCAGGGTGGTTCGTTTACCGTCTCGTCGGTGGGCACGGCGGTGCAGAAAGCCTGCGAAGCGCTCAGGGAAAAGCTGCTCGCCGTGGCCCGTCAGTCCTGTCCTGCCTTCAGCGGCGCGACCCTTGAGCAGGTAACCTTCATCGACGGTGAACTGCGCATGGGCGAGGCCCGTGTCGCCCTGGCGGAGCTGGCGCAAAAAAGCGGCGAAATGCCGTTGCACGCGGAGGTCGCCACCGGACCGGATGAAAAACGCCAGGCCTATGCGACCGCCACGCATTCGGCGGTTTTTGTTGAGGTGTTGGTGGATGAAGACCTTGGCACGGTGAAGGTCAACCGAGTGGTCAGCGCCATCGCGGCGGGCCGGGTAGTCAATCCGAAGACTGCCCGCAGCCAGATCCTCGGTGGGGTGGTCTGGGGCGTTGGCATGGCACTGCACGAAGAAACCTTGACCGACCATGCCCTTGGCCGCCACATGAACCACAATCTGGCCGAGTACCATGTGCCGGTGAATGCCGACATTGGCGAGATAGACGTGATATTTGTCGAAGAACATGACGAGATCGTCAACGCCCTCGGGTCCAAGGGCGTCGGCGAAATCGGCATTGTCGGCGTGGCCGCGGCGGTGGCGAATGCGATCTACCATGCCACGGGCAAACGGGTGCGGGATTTCCCCATCACCCTGGATAAGTTGCTCTAG	MNAPSKTIGQPLDRVDGLLKVTGRARYAGEYPEDGLLHGSVVSSAIARGRVVGIDASRALALPGVVAVIDHTNRPKIASYDEPYQDADAAEGSPFRPLFNDQILYSGQPLALVVAENLELARYAGSLVEIEYEAEGHQTDLTILQNEAHPAPAELPKPRGNFQGEYASAALSVDVSYSTPIEHHNPMEPHASTVLYQPDASLHIHDKTQGAQNCQAYVQKVFGLEKEQVRVFAAYVGGAFGSGLRPQYQLALAVMAALHLKRSVRVSLTRQQMFTFGYRPRTFQRLQLGAAANGRLLAVAHTAIGQTSRFEDFTEHVVEWSGMLYHCDNVTLTYKLAPLDVYTPLDMRAPGAALGLIGLECAMDELACALAIDPVQLRLINYAERNENEGKPYSSKELRACYAQGADRFGWSKRNPEPRSMRSGRQLVGWGMAGGVWEAMQQKASARASLDANGKLTVSSATTDIGTGTYTVMTQIAAEASGVSLEDVTFVLGDSSLPTAPLQGGSFTVSSVGTAVQKACEALREKLLAVARQSCPAFSGATLEQVTFIDGELRMGEARVALAELAQKSGEMPLHAEVATGPDEKRQAYATATHSAVFVEVLVDEDLGTVKVNRVVSAIAAGRVVNPKTARSQILGGVVWGVGMALHEETLTDHALGRHMNHNLAEYHVPVNADIGEIDVIFVEEHDEIVNALGSKGVGEIGIVGVAAAVANAIYHATGKRVRDFPITLDKLL	PGPT0007260_909	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_DEGRADATION,PGPT0007260-yagR-K11177	NA	NA
D1-36_04390	993	paoB	COG1319	Aldehyde oxidoreductase FAD-binding subunit PaoB	GTGAATCCCTTTCGCTACAGCAAGCCCGACACGCTGCAGGCCGCCGTCGAGCTGTCGAGTGCCGATTCGCGTTTCATCGCTGGCGGCACCAACCTGCTCGACCTGATGAAGGAAAACCTCACCCGCCCCCAGCACCTGATCGATATCACCGGGCTGCCCTTGGCCGACCTCAGCGAAACGCCATCGGGCGGGGTGATGATTGGCGCGTTGGTGAGTAACGCCGATTTGGCCTGGCACCCCTGGATCGAGCGCCGTTATCCATTGCTCTCCCAGGCCATTCTTGCCGGTGCTTCGCCACAGCTGCGCAACATGGCCAGCACGGGTGGCAACCTGTTGCAGCGTACCCGTTGTTACTATTTTTATGACGCCGGTGTGCCGTGCAACAAACGTCGGCCCGGCAGTGGCTGCCCGGCTCGAAGCGGTTTGAACCGTATTCACGCGATTCTTGGGGCGAGCGATCAATGCGTCGCGACTCATCCCTCGGACATGTGCGTGGCACTGGCCGCGCTTGACGCGGTGGTCCATGTGCTGGGCCGGGGTGGACCACGGACCATCGAATTCGCCGACTTCCATCGCCTGCCCGGCGACGCTCCGGACCGGGACAACCAACTGGCCGATGATGAACTGATCACCTATATCGAGCTGCCGCCCACAGGCTTCGCCGAACATAGCCAGTACTTGAAGATCCGTGACCGCGCGTCCTATGCCTTCGCTCTGGTCTCGGTCGCCGCCGCGCTGGAGCTGGACGGGCCGGTGATTCGCCAGGCTCGCCTGGCCTTGGGTGGCGTGGCCCACAAGCCTTGGCGTGATCGATCCGTGGAGAGTTGGTTGGTGGGTCAGGCGGTCAGCCGCGAGACGTTCACGGCCGCCGCGGATGCGCTGCTGCAAGACGCCGAGCCGCTAGAGCACAACGGTTTCAAGGTCAAGTTGGCGCGCCGGGCGATTGTCCGAGCCTTGAGCGATGCCGCACTGGTGGGAGGAACCGCCCGATGA	MNPFRYSKPDTLQAAVELSSADSRFIAGGTNLLDLMKENLTRPQHLIDITGLPLADLSETPSGGVMIGALVSNADLAWHPWIERRYPLLSQAILAGASPQLRNMASTGGNLLQRTRCYYFYDAGVPCNKRRPGSGCPARSGLNRIHAILGASDQCVATHPSDMCVALAALDAVVHVLGRGGPRTIEFADFHRLPGDAPDRDNQLADDELITYIELPPTGFAEHSQYLKIRDRASYAFALVSVAAALELDGPVIRQARLALGGVAHKPWRDRSVESWLVGQAVSRETFTAAADALLQDAEPLEHNGFKVKLARRAIVRALSDAALVGGTAR	PGPT0007275_429	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_DEGRADATION,PGPT0007275-yagS-K11178	NA	NA
D1-36_04391	525	paoA	COG2080	Aldehyde oxidoreductase iron-sulfur-binding subunit PaoA	ATGAGCGCGACCTTGTCCGAAGCGACGCAGGCGTCCTTCGTCCGTCATCCCATACGTCTGACACTCAATGGCGCGGTGCGCGAGTTGCAGGTGCTGCCCTGGACTACGTTGCTCGATTTGCTGCGCGAACAATTGGACCTGGTGGGCAGCAAAAAGGGCTGTGACCACGGCCAATGCGGCGCCTGCACGGTGCTGCGCGACGGCAAGCGGATCAACGCCTGCCTGACCCTCGCGGTGATGTGCGACGGTGCCGAGTTGACCACCGTCGAGGGCCTGGCCAATGGCGACGAGTTGCATCCGATGCAACGGGCATTCATCAAGCATGACGCGTTCCAGTGCGGCTATTGCACTCCCGGGCAGATCTGTTCGGCAGTGGCGCTGGCCCACGAGGGGCGGGCGAGCACTGGCGCCGAAATCAGCGAGCTGATGAGCGGCAACCTCTGCCGATGCGGTGCCTACAACAACATTCGCGATGCCATCGAAGAAGCCCTGCCGCTCTGCCAGCAGACCGGAGGTGAGTCGTGA	MSATLSEATQASFVRHPIRLTLNGAVRELQVLPWTTLLDLLREQLDLVGSKKGCDHGQCGACTVLRDGKRINACLTLAVMCDGAELTTVEGLANGDELHPMQRAFIKHDAFQCGYCTPGQICSAVALAHEGRASTGAEISELMSGNLCRCGAYNNIRDAIEEALPLCQQTGGES	PGPT0007290_1069	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_DEGRADATION,PGPT0007290-yagT-K13483	NA	NA
D1-36_04392	156	higB		Endoribonuclease HigB	ATGCCAAGCGACCTGGACATACCCGGGTGGCGATTGCATTCGCTCAAGGGTGATCTGGTCGATCATTGGTCGCTGAGCGTTTCAGGGAACTGGCGAATTGTCTTCCGCTTCATCGAGTCCGACATCGAACTGGTCGACTACCTCGACCATCACTGA	MPSDLDIPGWRLHSLKGDLVDHWSLSVSGNWRIVFRFIESDIELVDYLDHH	PGPT0027575_1107	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-HigB-HigA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027575-toxin_higB_like-K07334	NA	NA
D1-36_04393	288	yddM	COG3093	putative HTH-type transcriptional regulator YddM	ATGCCCATGCACAATCCGCCACATCCTGGCGAAACATTGCTGGTGGACGTATTGCCCGAGCTGGGCATCACGGTGACCGAACTGGCGAGACACCTCGGTTTCGCTCGATCGCACCTTTCTCGGGTACTGCACGGCCATGCACCGGTCAGCCCAGACCTGGCAGTACGCCTGGAACGCGCAGGCATCGGCAAGGCACGCGTCTGGCTGGGCGTCCAGACCGACTATGACCTATGGCAAGCCGAGCGGCGCGAACAACCAATGATCGAACCCCTTGCCCATCACATTTGA	MPMHNPPHPGETLLVDVLPELGITVTELARHLGFARSHLSRVLHGHAPVSPDLAVRLERAGIGKARVWLGVQTDYDLWQAERREQPMIEPLAHHI	PGPT0027585_1754	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-HigB-HigA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027585-antitoxin_higA_1-K21498	NA	NA
D1-36_04394	567	yajL	COG0693	Protein/nucleic acid deglycase 3	ATGATGCCTGGAACCAAGATCCCCCGAGTCCTGATCGCCGTGGCTGAAGGCGTTGATGATTTGCAGGTGGTGACGCTGATCGACGTGTTGCGCCGGGCGCAGCTTGAAGTCGTCGTGGCGAGTATCGAAGGCCGTCGCATGCTCACCTGCGCACGCGGAACGCGCCTGACCGCCGACGGCATGCTGGTGGACGTGCTGGTGCAGGATTTCGATTTGATCGTCTTGCCGGGCGGCATCATCGGCGTGCAACACCTGGCGGCCCACCCGCCTTTGCAACAGTTGATCAAAGACCAGGCGGCCGCCGGGCGCATCTTCGCCGCCATCGCCGAAGCCCCGGCGTTGGTGCTCCAGGCGTTCGGCGTGCTGCGCCAGCGCCGGATGACCTGCCTGCCCGCCGTGAGCCAGCAACTGTCCGGGTGCAGCTTCGTCGACCAGCCGGTGGTGGTGGACGGCAATTGCATCACCGCCCAGGGTTCCGCCGCCGCCTTGGTGTTTGCCCTTGCGCTGGTGGAAGCATTAGCCGGTAAAGGGGTGAGGAGCGTGGTGGCGGCGGAGTTGTTGGCGTGA	MMPGTKIPRVLIAVAEGVDDLQVVTLIDVLRRAQLEVVVASIEGRRMLTCARGTRLTADGMLVDVLVQDFDLIVLPGGIIGVQHLAAHPPLQQLIKDQAAAGRIFAAIAEAPALVLQAFGVLRQRRMTCLPAVSQQLSGCSFVDQPVVVDGNCITAQGSAAALVFALALVEALAGKGVRSVVAAELLA	PGPT0008945_846	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B1|THIAMIN_METABOLISM	PLANT_VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008945-thiJ-K03152	NA	NA
D1-36_04395	450			hypothetical protein	ATGTATCGCATGAAAAACATTGCATGGGCCTGGGTGTTCGGCCTGGGGCTGGCCGTGCCGGTCGCGCACGCCGCGTCGGCACCACCGCTGAGCGAGGTCAAGGTGCTCAAGGTCGAGTCGCCGGCCTGTGGTTTCGAAGACGTTTCCGCAGGACAGGCGCAAACCCGTTGCGACCACAGTGGCCCGCATATCAAGGTCTACGTGCTGGAGCTCGGCATAGGCCACCAGCCAAATGTCACGCTGGACGGCTTCGAGGTCGACGGCACCCGTTCACCGGTGTGTGCATACGACAATGGCAATCTCAATGATTGTTCGACCGGAGCCCGGCGAACGGTCGGCTACTTGTATATCTTCGATCTGAAGGGCAAGCAGGAAGGCACCTTCAGCTTCAGCAACGTGTCGATCAACGCACCGGGCAACCGAATGTCGACCCAGTTGTACATCAAATGA	MYRMKNIAWAWVFGLGLAVPVAHAASAPPLSEVKVLKVESPACGFEDVSAGQAQTRCDHSGPHIKVYVLELGIGHQPNVTLDGFEVDGTRSPVCAYDNGNLNDCSTGARRTVGYLYIFDLKGKQEGTFSFSNVSINAPGNRMSTQLYIK				NA	NA	NA	NA	NA
D1-36_04396	1296	adeP_2	COG2252	Adenine permease AdeP	ATGCTGGAAAGGCTGTTTCAACTCAAGGCACACAATACCAACGTGCGGACTGAGATCCTGGCGGGCGTCACGACGTTCCTGGCCATGGCCTACATTCTGTTCGTCAACCCGAGCATCCTCGGCGAAACCGGCATGGACAAGGGCGCGGTATTCGTCGCCACCTGTCTGGCGGCGGCCATTGGTTCCACAGTCATGGGCCTGATCGCCAACTACCCGATCGCCCTCGCGCCGGGCATGGGCCTGAACGCCTTCTTCACCTACACCGTGGTCCTGCACATGGGCCATACCTGGCAAGTGGCGCTGGGGGCGGTGTTCGTCTCCGCCGTGCTGTTCTTTCTGCTATCGATCTTCCGCATCCGGGAATGGATCATCAACAGCATCCCGCTGCCGCTGCGCTCGGCCATCGCCGCCGGTATTGGCCTGTTCCTGGCGCTGATCGCCCTGAACAACGCCGGCATCGTGGTGAAAAACCCAGCGACCATGGTCGGCCTCGGCGACCTGAAGCAACCGGCGCCGATCCTGGCAACCCTGGGCTTCGTACTGATTGTCGCTCTGGAGGCGCTTAAAGTGCGCGGCGCGGTACTGATCGGCATCCTGGCGGTCACCATCGTCTCGATCCTGATGGGCTTCACGCCCTTTGGCGGCATCATTTCCGCGCCGCCATCCCTGGCCCCGACCTTCCTGCAACTGGACATCAAGGGCGCCCTGGACATCGGCCTGGTGAGCGTGATCTTCGCGTTCCTGTTCGTCGATCTGTTCGATAACTCCGGCACCCTGATCGGCGTCGCCAAGCGCGCCGGGCTGATGGGCAAGGACGGCCACATGCCGAAAATGGGCCGTGCGCTGATTGCCGACAGCACCGCCGCCATGGCCGGTTCGCTGCTAGGCACGTCGACGACCACCAGCTACATCGAATCGGCGGCGGGCGTCAGCGCCGGCGGCCGCACCGGCCTTACGGCGATCGTGGTCGCGATCCTGTTCCTGCTGGCGCTGTTCTTCTCGCCGTTGGCCGCCAGCGTCCCGGCCTTCGCCACCGCGCCGGCCTTGCTGTTCGTCGCGGTATTGATGACCTCCGGCCTGGCGGAAATCGACTGGGACGACGTTACCGTTGCCGCTCCGGTGGTGATCACTGCCCTGGCGATGCCGTTCACCTATTCCATCGCCAACGGCATCGCCTTCGGCTTCATCGCCTGGACCGCCATCAAACTGGTGTCCGGCCGCGGCCGTGAACTGAACCCGGCGCTGGTCATCCTTTCGATCCTGTTCGTTATCAAGTTGGGTTGGTTCAACGCATGA	MLERLFQLKAHNTNVRTEILAGVTTFLAMAYILFVNPSILGETGMDKGAVFVATCLAAAIGSTVMGLIANYPIALAPGMGLNAFFTYTVVLHMGHTWQVALGAVFVSAVLFFLLSIFRIREWIINSIPLPLRSAIAAGIGLFLALIALNNAGIVVKNPATMVGLGDLKQPAPILATLGFVLIVALEALKVRGAVLIGILAVTIVSILMGFTPFGGIISAPPSLAPTFLQLDIKGALDIGLVSVIFAFLFVDLFDNSGTLIGVAKRAGLMGKDGHMPKMGRALIADSTAAMAGSLLGTSTTTSYIESAAGVSAGGRTGLTAIVVAILFLLALFFSPLAASVPAFATAPALLFVAVLMTSGLAEIDWDDVTVAAPVVITALAMPFTYSIANGIAFGFIAWTAIKLVSGRGRELNPALVILSILFVIKLGWFNA	PGPT0007325_5019	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
D1-36_04397	1080	trmA	COG2265	tRNA/tmRNA (uracil-C(5))-methyltransferase	ATGACTTTTGATTCCCAGGCCTACACCACCCAGCTGCAAGACAAGGTCGTGCGCCTGCGCGACCTGCTGGCTCCGTTCGAGGCCCCCGAGCCCGAGGTGTTCGACTCTCCGCTACAGAACTTCCGCCTGCGAGCCGAATTCCGCCTGTGGCGCGAGGCCGGCGAACGCCATTACGCGATGTTTTCCCAGGAAGACAAGCGCACGCCGATCCTCATCGAAGCGTTCCCCATCGCCAGCCTGCGCATCAACCAATTGATGCCGCAGCTCAAGGCCGCCTGGCAAGCCAGCGCGCCGTTGAGCCACAAGCTGTTCCAGGTGGAGTTCCTGACCACCCTGGCCGGCGACGCGATGATCACCCTGTGTTACCACCGTCCGCTGGATGAACACTGGCACGCCGCAGCTTCGAAACTGGCGGCCGAGCTGGGCGTAAGCATCATCGGCCGCTCCAAGGGCAAACGCGAAGTGATCGGCCACGACTACGTGGTGGAGAAACTCCACGTGGGCGGCCGCACCTTCAGCTATCGCCAACCCGAAGGCGCCTTCACCCAGCCCAACGGCACGGTGAACCAGAAGATGCTCAACTGGGCTTATGAAGCCCTGGGCGATCGCAATGACGACCTGCTGGAGTTGTACTGCGGCAACGGCAACTTCACTCTGCCGCTGGCAACCCGTGTGCGCAAAGTGCTCGCCACTGAGATCAGCAAGACTTCGGTCAACGCCGCACTGAGCAACCTCAGCGAGAACGCGGTAGACAATGTCACGCTGGTGCGCCTGTCCGCTGAAGAGCTGACCGAAGCCCTGAACGAAGTTCGGCCGTTCCGGCGCCTGCAGGGCATCGACCTGAAAAGCTACGAATTCGGCAGCGTCTTCGTCGACCCGCCTCGCGCCGGCATGGACCCGGACACCTGCGAGCTGACCCGGCGCTTCGACAACATCCTCTACATCTCTTGCAACCCCGAAACCCTCGCCGCGAACATCGCGCAACTGAACGATACCCACCGCATCACGCGCTGCGCGTTGTTCGATCAATTCCCTTGGACCCACCACATGGAATCCGGGGTGTTGTTGACGCGGCGCTGA	MTFDSQAYTTQLQDKVVRLRDLLAPFEAPEPEVFDSPLQNFRLRAEFRLWREAGERHYAMFSQEDKRTPILIEAFPIASLRINQLMPQLKAAWQASAPLSHKLFQVEFLTTLAGDAMITLCYHRPLDEHWHAAASKLAAELGVSIIGRSKGKREVIGHDYVVEKLHVGGRTFSYRQPEGAFTQPNGTVNQKMLNWAYEALGDRNDDLLELYCGNGNFTLPLATRVRKVLATEISKTSVNAALSNLSENAVDNVTLVRLSAEELTEALNEVRPFRRLQGIDLKSYEFGSVFVDPPRAGMDPDTCELTRRFDNILYISCNPETLAANIAQLNDTHRITRCALFDQFPWTHHMESGVLLTRR				NA	NA	NA	NA	NA
D1-36_04398	441	aroQ	COG0757	3-dehydroquinate dehydratase	ATGCCTCCGATCGTTCTGGTGCTCAACGGCCCGAACCTGAACCTGCTCGGCACCCGCGAGCCGGCGACCTATGGCCACGAAACCCTGGCCGATATTTCCGCGCTGTGCGGCCGCGCCGCCGAGGAGTTCGGCCTGACCGTGGAATTTCGCCAGACCAACCAGGAGGGTGAATTGATTGATTGGATTCACGGCGCCCGAGGCCGGTGCGGCGGTATCGTCATCAACCCGGCGGCCTGGACCCACACCTCCGTGGCGATCCGCGATGCCCTGGTGGCGAGCGAAGTGCCGGTCATCGAAGTCCATCTTTCCAACGTCCACGCCCGCGAGACGTTTCGCCACCACTCCTTCGTCTCATCCGTCGCCATCGGCGTGATGTGCGGGTTTGGCAGCCATGGTTATCGCCTGGCCCTCGAACATTTCAGTCATCGGTTGAAGGGTTGA	MPPIVLVLNGPNLNLLGTREPATYGHETLADISALCGRAAEEFGLTVEFRQTNQEGELIDWIHGARGRCGGIVINPAAWTHTSVAIRDALVASEVPVIEVHLSNVHARETFRHHSFVSSVAIGVMCGFGSHGYRLALEHFSHRLKG	PGPT0012905_3003	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
D1-36_04399	852	aroE_2		Quinate/shikimate dehydrogenase (NAD(+))	ATGCCGAACGTCACTGTACTGGCCGGCCTGATCGGCGCGGGTATCCAGGCGTCTCGCACGCCAGCGCTGCACGAGCGCGAAGGCGATGCCCAAGGCATGCGTTACCTGTATCGACTGATCGATCTCGACGCGCTGAAACTCGACAGCAGCGCCCTGCCCGACTTGCTGATGGCCGCCGAACGCATGGATTTCACCGGCCTGAACATCACCTTTCCTTGCAAGCAGGCGGTCATACCTCTGTTGGATGACCTTTCGGCGGAAGCGCGGGGAATCGGCGCGGTGAACACCGTGGTGCTCAAGGACGGCAAGCGCATCGGCCATAACACCGACTGCCTGGGTTTCGCCGAAGGTTTTCGTCGAGGCCTGGGCGATGTCGCGCGCAACCGCGTGGTCCAGATGGGCGCTGGCGGCGCTGGCGCAGCGGTGGCCCACGCCTTATTGGTGGAGGGCGTGGAGACGCTGAGCATTTTTGATGTCGAGGTCAGCCGTGCCGAGGCATTGGCCAACAACCTGAACCAACACTTCGGCGCCGGTCGCGCCCGTGCCGGGCATGACCTTCCCGCTGCCATGGCCGAAGCCGACGGCTTGGTGAACACCACGCCCATGGGCATGGCAAAACTGCCGGGCATGCCGGTGCCGGTCGAGTTGTTGCGGGGCGACCTGTGGGTGGCGGAGATTGTGTATTTCCCGCTGGAAACCGAACTGCTGCGCAACGCCCGCGCGCTCGGCTGCCGCACACTGGACGGCGGCACCATGGCAGTGTTCCAGGCGGTGAAGGCGTTCGAACTGTTCAGCGGCGTGGCGCCGGATGCGGGGCGGATGCTGGCGCATTTTCAGAGCATGAATCCCTGA	MPNVTVLAGLIGAGIQASRTPALHEREGDAQGMRYLYRLIDLDALKLDSSALPDLLMAAERMDFTGLNITFPCKQAVIPLLDDLSAEARGIGAVNTVVLKDGKRIGHNTDCLGFAEGFRRGLGDVARNRVVQMGAGGAGAAVAHALLVEGVETLSIFDVEVSRAEALANNLNQHFGAGRARAGHDLPAAMAEADGLVNTTPMGMAKLPGMPVPVELLRGDLWVAEIVYFPLETELLRNARALGCRTLDGGTMAVFQAVKAFELFSGVAPDAGRMLAHFQSMNP	PGPT0012890_1711	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
D1-36_04400	678	nicS		HTH-type transcriptional repressor NicS	ATGACTATGAATCCAGAGCTTTCCGCAGCCCTCGACGAACCTGTCGCCGCGCCGCGCAAGAGTCGCAAGAACAACCCGGAGAAAACCCGGGAGAACATTCTCCAGGAAGCCATCGTCGAGTTTGTCCAGCAAGGCCTGGCGGGCGCTCGGGTCGACGCTATCGCCGAGCGCATCCACACCTCCAAGCGCATGATCTATTACTACTTCGGCAGCAAGGAACAGCTGTACGTGGAGGTGCTGGAGAAACTCTACGGCGATATCCGCACCACCGAAAGCCGCCTGCATCTGGCAGAGCTGGCGCCAGTCGAGGCGATCCGGCGCCTGGTGGAATTCACCTTCGATCACCACGACCGCAACGTGGATTTCGTGCGTATCGTCTGCATTGAAAACATCCACAACGCCGAGTACGTGAAACAGTCTGGTGCAATCAAGGCGATGACCAATACCATCCTCGACTCCCTGGGCGTGATCCTGCGTCGCGGCGCCGAAGAAGGGGTGTTCCGCGCCGGCCTGGAACCGCTGGATGTACATTTGCTGATCAGTTCGTTCTGCTTCTACCGGGTGTCGAACCGCCAGACGTTTGGTGAGATCTTTCAGATCGACTTGTCGGACGAAGCGGTCAAGCAGCGGCACCGACAGATGGTGTGTGAGTCGGTGTTGCGGTACTTGCAGGCCTGA	MTMNPELSAALDEPVAAPRKSRKNNPEKTRENILQEAIVEFVQQGLAGARVDAIAERIHTSKRMIYYYFGSKEQLYVEVLEKLYGDIRTTESRLHLAELAPVEAIRRLVEFTFDHHDRNVDFVRIVCIENIHNAEYVKQSGAIKAMTNTILDSLGVILRRGAEEGVFRAGLEPLDVHLLISSFCFYRVSNRQTFGEIFQIDLSDEAVKQRHRQMVCESVLRYLQA				NA	NA	NA	NA	NA
D1-36_04401	1899			hypothetical protein	ATGCAGCGTTCCATTGCCACTGTTTCCTTGAGCGGTACCCTGCCGGAAAAACTCGAAGCCATTGCCGCCGCCGGTTTTGACGGTGTGGAGATTTTCGAGAACGATCTCCTTTACTACGACGGCAGCCCTCGGGAAATCAGGCAGATGTGCGCCGACCTGGGCATTGCCATCACGCTGTTCCAACCCTTTCGAGATTTTGAAGGATGCCGCCGGGATCGCCTGGCGCGCAACCTGGAGCGAGCCGAGCGTAAGTTCGACTTGATGCAGGAGTTGGGCACCGACCTGGTGCTGGTGTGCAGCAATGCTTCGGCCGACAGCGTCGGCGACGAACGGATACTGGTCGATGACCTGCGGCTGCTGGCCGAGCGGGCCGGCGCCCGAGGCTTGCGCATCGGTTATGAAGCGTTGGCATGGGGCCGGCACGTCAATACTTATCAACAGGTCTGGAACATCGTCCGCCAAGCCGATCACCCGAACCTGGGCGTGCTGCTCGACAGTTTCCATACCTTGTCGCTCAAGGGCGACCCCAGCGCCATCGCCGAGATTCCAGGCGAGAAAATCTTCTTCGTGCAAATGGCCGATGCGCCGATCCTGGCGATGGACGTCCTGGAATGGAGCCGGCACTTCCGTTGTTTCCCGGGTCAGGGCGAATTCGATTTGCCGGGATTCCTCGCGCCGATCATCAAGAGCGGCTATACCGGGCCGCTGTCGCTGGAAATCTTCAACGACGGCTTTCGCGCCGCGCCGCCCAGGGCCAATGCAGCCGATGGGTTGCGTTCACTGCTGTACCTGGAAGAGAAGACGCGCCAGCGCCTGGCCGAGGAAGCGCCCGCGCAGACGCCTGAAATTCTGTTCGAGACCCCTGCGGCCAGCGAATACAACGGCATCGAGTTCCTTGAATTTGCCGTGGACGACAATCTCGGCGCCAAGCTCGCCCATTGGCTGGAGCGCCTGGGCTTCGTCAAGGCCGGCCAGCATCGCTCCAAGAACGTCTGCCTGTTCCGCCAGGGCGATATCAACCTGATCCTCAATTGCGAGCCGTATTCCTTCGCCCATAGTTTTTTCGAGGCCCACGGCCCTTCGCTGTGCGCCATGGCGGTACGCGTCAAGGACAGCACCAGCGCCCTGAAACGGGCCGTGGCCTACAAGGGCCAGCCGTATCGCGGGCTCGTCGGGCCCAATGAACTGGAGCTGGCGGCGGTACGCGCGCCGGACAGCAGCCTGATCTACCTGGTGGATCAGGACGCCGACGTCTACGGCACCGACTTCAATCTGCAGCCCGCTGCCGCCATCGGCGCCGGGCTCAAGCGCATCGACCACATGGCGATGGCCCTGCCGGCCGACAGCCTCGACAGCTGGGTGCTGTTCTACAAGAGCCTGCTGGACTTCGAGGCCGACGACGAAGTGGTACTGCCGGACCCGTATGGCCTGGTGAAAAGCCGTGCGCTGCGCAGCCGCTGCAGCTCGATTCGCTTGCCGTTGAACATTTCCGAGAACCGCAACACCGCAATCTCACATGCGCTGTCGAGTTATCGCGGTTCCGGCGTGCATCACATTGCCTTCGATTGCGATGACATCTTTGCCCAGGTCAGTTGTGCCAAGGAGGCCGGGGTGCCGTTGTTGGACATCCCCCTCAACTACTACGACGACCTGGCGGCGCGTTTCGATTTCGACGATGAGTTCCTCAGCGAGCTGGCATACTTCAACGTGCTGTACGACCGGGATGCCCAGGGTGGCGAGCTGTTTCATGTCTATACCGAGCCGTTCGAAGGGCGTTTCTTCTTCGAAATCATCCAGCGCAAGAACGGTTACGCGGGGTACGGCGCCGCCAACGTCGCGGTGCGCCTGGCGGCCATGGCCAAGTCCCGCAGTGGCGGCGTGCGGCACGCCAAGTTGTAG	MQRSIATVSLSGTLPEKLEAIAAAGFDGVEIFENDLLYYDGSPREIRQMCADLGIAITLFQPFRDFEGCRRDRLARNLERAERKFDLMQELGTDLVLVCSNASADSVGDERILVDDLRLLAERAGARGLRIGYEALAWGRHVNTYQQVWNIVRQADHPNLGVLLDSFHTLSLKGDPSAIAEIPGEKIFFVQMADAPILAMDVLEWSRHFRCFPGQGEFDLPGFLAPIIKSGYTGPLSLEIFNDGFRAAPPRANAADGLRSLLYLEEKTRQRLAEEAPAQTPEILFETPAASEYNGIEFLEFAVDDNLGAKLAHWLERLGFVKAGQHRSKNVCLFRQGDINLILNCEPYSFAHSFFEAHGPSLCAMAVRVKDSTSALKRAVAYKGQPYRGLVGPNELELAAVRAPDSSLIYLVDQDADVYGTDFNLQPAAAIGAGLKRIDHMAMALPADSLDSWVLFYKSLLDFEADDEVVLPDPYGLVKSRALRSRCSSIRLPLNISENRNTAISHALSSYRGSGVHHIAFDCDDIFAQVSCAKEAGVPLLDIPLNYYDDLAARFDFDDEFLSELAYFNVLYDRDAQGGELFHVYTEPFEGRFFFEIIQRKNGYAGYGAANVAVRLAAMAKSRSGGVRHAKL	PGPT0009480_69	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0009480-hppD-K00457	NA	NA
D1-36_04402	1338	exuT		Hexuronate transporter	ATGATTCCTTCCCAAAGTTCCCGCCTGGCCCACGGCCCGGTTGTCGCCAGCGGTGGCATCGGCGACAAGATCCGTGGCGCGATGGCCGTGGGCAAGACCCGTTGGGGCATGCTCGCCCTGGTATTTTTCGCCACGACCCTGAACTACATCGACCGCGCCGCCCTCGGAGTCATGCAGCCGATCCTGGCGAAGCAGATGAGCTGGACGGCGATGGACTACGCCAATATCAATTTCTGGTTCCAGGTCGGTTACGCGGTCGGTTTCGTGCTGCAAGGGCGGTTGATCGACAAAATCGGCGTCAAGCGCGTGTTCTTCTGCGCCGTGCTGCTCTGGAGCCTGGCGACCGGCGCCCACGGCTTGGCTACCTCGGCGGTGGGCTTCATGGTCTGCCGCTTCATCCTTGGCCTGACCGAAGCCGCCAACTACCCGGCCTGCGTGAAAACCACGCGGTTGTGGTTCCCGGCGGGCGAACGCGCCGTGGCCACCGGCATCTTCAATGCCGGGACCAACGTCGGCGCGATGTTCACCCCAATGCTCCTGCCGCTGATCCTGCACGTCTGGGGCTGGCAGGCCGCGTTCCTGTGCATGGCGGCCCTGGGCGGTATCTGGCTGGTGTTCTGGGGCCTGAAATACTTCAACCCCGAAGACCACCCGAGCGTGAAGCAGTCGGAACTGGACTACATCCAGGCCCAGGAAGAACCGGACCCGGTAAGTGTTCCGTTCTCCCGCATCCTGCGCATGCGCGGCACCTGGGCATTCGCCCTGGCCTACTCGATCACCGCGCCGGTGTTCTGGTTCTACCTTTACTGGCTGCCGCCGTTCCTGAACCAGCAATACAACCTGGGCATCAACGTGACCCAGATGGGCATCCCATTGATCATCATTTACCTGACCGCCGATTTTGGCAGTGTCGGCGGGGGGATCCTGTCGTCATTCCTGATCGGCCGCGGGGTCAATCCGATCAAGGCGCGACTGATGTCCATGCTGCTGTTCGCTTGCTGCATTGTCGGGGTGATCATGGCGGCCGGCTCCAGCAGTTTGTGGGTGGCGGTACTTGCGATTTCCCTGGCCATCGGCGCGCACCAGGCCTGGACCGCGAACATCTGGAGCCTGGTCATGGACTACACGCCCAAGCACATGATGAGCACGGTGTTCGGCTTCGGCGGCATGTGCGCGGCCATCGGCGGGATGTTCATGACTCAGTTGGTGGGGCACATCCTCACCATCACTAACAACAACTACACCGTGCTGTTCACCCTGATCCCGGCGATGTACTTCATCGCGCTGGCCTGGATGTACTTCATGGCGCCGCGCAAGGTGCCTACCCTGGAAAATTGA	MIPSQSSRLAHGPVVASGGIGDKIRGAMAVGKTRWGMLALVFFATTLNYIDRAALGVMQPILAKQMSWTAMDYANINFWFQVGYAVGFVLQGRLIDKIGVKRVFFCAVLLWSLATGAHGLATSAVGFMVCRFILGLTEAANYPACVKTTRLWFPAGERAVATGIFNAGTNVGAMFTPMLLPLILHVWGWQAAFLCMAALGGIWLVFWGLKYFNPEDHPSVKQSELDYIQAQEEPDPVSVPFSRILRMRGTWAFALAYSITAPVFWFYLYWLPPFLNQQYNLGINVTQMGIPLIIIYLTADFGSVGGGILSSFLIGRGVNPIKARLMSMLLFACCIVGVIMAAGSSSLWVAVLAISLAIGAHQAWTANIWSLVMDYTPKHMMSTVFGFGGMCAAIGGMFMTQLVGHILTITNNNYTVLFTLIPAMYFIALAWMYFMAPRKVPTLEN	PGPT0017205_297	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_HEXURONATE_TRANSPORT,PGPT0017205-exuT-K08191	NA	NA
D1-36_04403	879	ribN		Riboflavin transporter	ATGACCATCAGCACTCCGCTCTCCGGCGTCAATCAGGCTTTCAAGGGCATCGTGCTTATTCTGGTCGCAACGTTTTTGTTCTCCAGTCACGATGCGTTGTCCAAATATCTCTCGGGTTTCTATCCCATCATCATGGTGGTATGGGCCCGTTACGTGGTGCACACCTTGTTGATGGCGGGTATTTTCCTGCCACGTTCGGGGTTGCGGGTGCTGCGTACCAAGCGCCCGTTGTGGCAGGTTGCCCGGGCTTTATGCCTGTTAGGCACCAGTTTGTTTTTTACCACCTCGCTGATGTTCATCCCATTGGCGGAGGCGACGGCGGTCAACTTCCTCGCCCCCGTGCTGGTCACGGCATTGTCGGTACCGCTGCTGGGCGAGCATGTGACACGTGGTCAGTGGATCGCGGTGATCTTCGGTTTCATCGGGGTGTTGATCATTGTTCACCCCGGTGGCGATTTGTTCACGCCGGCGGTGTTGTTGCCGTTCTGTTCGGCGCTGTTCTTCTGCTTTTATCAACTGCTCACGCGCAAACTCGCCGAGATAGACAGCCCCACGACCAGCAATTTTTTCGCCGGACTGTGCAATACGCTAGTGATGAGCGCCTTGGTGCCGTTCTTCTGGCAGGTGCCGAGCGTGACCCACGGCTTGATGATGTTGGCGCTGGGGGCGTGCGGGATGACCGCGCATTTGATGCTGACCCAGGCTTTCCGCTTCGCCGCCCCGGCGCTGCTTGCGCCGTTCGGGTATTGCCAGATCATCTTTGCCGGGCTGCTGGGCTGGTTGTTTTTCAGCCATACGCCGACGCTGACGACGGTGGTGGGTATTACGCTGATCTGCTTGAGCGGGTTGGCGGCGGCGTGGCAACAGCGGCGCAGATAA	MTISTPLSGVNQAFKGIVLILVATFLFSSHDALSKYLSGFYPIIMVVWARYVVHTLLMAGIFLPRSGLRVLRTKRPLWQVARALCLLGTSLFFTTSLMFIPLAEATAVNFLAPVLVTALSVPLLGEHVTRGQWIAVIFGFIGVLIIVHPGGDLFTPAVLLPFCSALFFCFYQLLTRKLAEIDSPTTSNFFAGLCNTLVMSALVPFFWQVPSVTHGLMMLALGACGMTAHLMLTQAFRFAAPALLAPFGYCQIIFAGLLGWLFFSHTPTLTTVVGITLICLSGLAAAWQQRRR	PGPT0023680_142	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-SAM|QUEUOSINE|LIPID_METABOLISM,PGPT0023680-sam-K15270	NA	NA
D1-36_04404	189			hypothetical protein	ATGGCCCTGCGAAGAAATGACTGCCGTGGCGATGAGTCTAGCCCTCAGGCGTTCAAGGCGCGCGTCGCGCTTGAGCAGTCAGGCAACCGCCGGGGATTTTGGTTCATCGGCGAGCCGATCCTGTCCGGCTGTGGATTTTTCATTACACTTGGGATCCAGAACTTATCGGAACCCTCGCTGGCCCAATAA	MALRRNDCRGDESSPQAFKARVALEQSGNRRGFWFIGEPILSGCGFFITLGIQNLSEPSLAQ				NA	NA	NA	NA	NA
D1-36_04405	888		COG2321	putative protein	ATGTTATGGAAAAAAGGTCGCCGCAGTGACAACGTGGTGGATGCCCGGGGTGACGGTGGGGGCGGCGGCGGGATGCGTTTCGGCGCTGGCAAGGGGCTGAGCCTGACGGCCATCATCCTCATCGTCGGCATCGGCTGGATCACCGGCCAGGACCCGATGCAGATTCTCGGACAACTCACCGGGCAGATGGAACAAGGTTCCGCGCCCACCTCTTCGCAATCCCGCCAGGCGCCACCGGCCAACGATGAGCAGGCGGAATTCGTGCGCTCGATTTTGGGTGATACCGAGGACACATGGGGCCAGGTCTTCCAGCAGGCCGGGCGCCAGTACCAGCAACCGAAGCTGGTGTTGTTCAGCGGTCGGGTCAATTCTGCATGCGGCCTGGCATCCTCGGCCACCGGACCGTTCTATTGCCCGGCAGACCGACAGGTCTACCTGGACATGAGTTTCTTCCATGAAATGTCCCAGCGTTTCTCCGCCGCCGGGGACTTCGCCCAAGCCTACGTCATCGCCCACGAGGTCGGCCACCACGTGCAGACCCTGCTCGGCGTGTCGGCGAAAATCCAGGAGGCGCGCCAGCAAGGCCGGCAAATGGAAGGCGACGGCGGTTTGCTGGTGCGCCAGGAATTGCAGGCCGATTGCCTGGCCGGCGTCTGGGCCAATCACGCGCAGAAACGCCTCAACTGGCTTGAGCCAGGGGACATTGAGGAAGCCTTGACCGCCGCCAATGCCATCGGCGACGACCGCCTCCAGCAGCAAGGCCAGGGCCGCGTTGTGCCGGACTCCTTCACTCACGGCACTTCGGCCCAGCGGGTGCGCTGGTTCAAGACCGGTTTCGCCCAGGGCCAGGTCAGCCAGTGCGACACCTTCGCAGCGAAAAACCTGTAG	MLWKKGRRSDNVVDARGDGGGGGGMRFGAGKGLSLTAIILIVGIGWITGQDPMQILGQLTGQMEQGSAPTSSQSRQAPPANDEQAEFVRSILGDTEDTWGQVFQQAGRQYQQPKLVLFSGRVNSACGLASSATGPFYCPADRQVYLDMSFFHEMSQRFSAAGDFAQAYVIAHEVGHHVQTLLGVSAKIQEARQQGRQMEGDGGLLVRQELQADCLAGVWANHAQKRLNWLEPGDIEEALTAANAIGDDRLQQQGQGRVVPDSFTHGTSAQRVRWFKTGFAQGQVSQCDTFAAKNL				NA	NA	NA	NA	NA
D1-36_04406	948			hypothetical protein	ATGAAGTGGGCGGCGTTGATCGGGCTGGTGCTCTGTTGCGCCGTTGCCCAGGCCGAGGAACACGGCGTCCAGGCGGTCGCCCAGGGGCGCCTGCTGCTCAAGGGCGGGATCATGGCCGTTGCCGTGAGCCCGCCGCCGGCTTCGATCGAGCGGGTGTTGATCATCCTTCACGGTCGGCTGCGCAATGCCGACACTTACCTTCACAGCGGTGAAAAGGCCGCCGCGCAGGCCGGTCAATCGACCACGACGTTGATCATCGCCCCGCAGTTTCTCAACGAACTGGATGCGGCACGTCATCAGTTGCCCGCCGACCTCCTGCGCTGGCAAGGCAACGACTGGATGGCGGGCGGCTTGTCCATCGGACCGAATCCGGTCAGTTCATTTCAAGTGCTGGACGACATCGTGGCGCGGGTCAGCGACCGACAGCAGTTTCCAGAAGTGAAGGAAATCGTCATCGCCGGCCATTCCGGTGGCGCCCAGGTGGTGCAGCGCTACGCCCTGCTCGCCCACGGCACGTATCGCATCGCGCCTCGGTTCGTCATCGCCAATCCATCGTCGTATGCCTATCTTGACGCGCAACGGCCCATGGCGTTCGACCCGGCCAGTTGCCCGGCTTTCAATCGCTGGAAATATGGCTTGGAGTACCTGCCCGCCTATGCGTCCGGACAAACCGCCACGCAGCTCGAAGATCAATACATCAAGCGCGACATCACTTATTTGCTGGGACAACAGGACATCGACCCGGAGCATCCGGCGCTGGACAAAGGCTGCGAGGCTCAGACCCAAGGGGCGTATCGCTTACTGCGCGGGCATTTCTTTTTCGACTACCTGACGCGGCGCCATCCGCAAGGACTCAATCAGCGGCTGATCGAAGTGCCAGGGGTTGGGCATGATGGGGATGGGATGTTCAATTCGCCGGAGGGGCTACAAGTATTGTTTGGGCAGTAA	MKWAALIGLVLCCAVAQAEEHGVQAVAQGRLLLKGGIMAVAVSPPPASIERVLIILHGRLRNADTYLHSGEKAAAQAGQSTTTLIIAPQFLNELDAARHQLPADLLRWQGNDWMAGGLSIGPNPVSSFQVLDDIVARVSDRQQFPEVKEIVIAGHSGGAQVVQRYALLAHGTYRIAPRFVIANPSSYAYLDAQRPMAFDPASCPAFNRWKYGLEYLPAYASGQTATQLEDQYIKRDITYLLGQQDIDPEHPALDKGCEAQTQGAYRLLRGHFFFDYLTRRHPQGLNQRLIEVPGVGHDGDGMFNSPEGLQVLFGQ				NA	NA	NA	NA	NA
D1-36_04407	594	mupP_2	COG0546	N-acetylmuramic acid 6-phosphate phosphatase	ATGAGCCTGTCCGATGTGCGCCATTGGGTGTTCGACATGGATGGCACGCTGACCATTGCCGTGCATGATTTCGCCGCGATCCGCGTCGCCCTGGCGATTCCGGCCGAAGACGACATCCTTACGCACCTGGCGGCATTGCCCGCGGAAGAAGCCGCCGCCAAGCACGCCTGGTTGCTGGAGCACGAGCGGGACCTGGCGCTGGGCTCCAAGCCCGCGCCGGGGGCGGTCGAATTGGTGCGTGAGCTGGCCGGGCGTGGGTACCGCCTGGGCATCCTGACCCGCAATGCCCGCGAGCTGGCGCATATCACCCTCGAAGCCATCGGCCTGGCTGACTGTTTTGCGGTGCAAGACGTGCTGGGCCGCGACGAGGCACCGCCCAAACCGCACCCCGGTGGCCTGTTGAAACTGGCCGAGGCGTGGGAAGTGGCGCCCGGCTCGATGGTGATGGTGGGGGATTACCGCTTTGACCTGGACTGCGGCCGTGCAGCGGGGGCGCGGACGGTGTTGGTGAACCTGCCGGACAATCCCTGGCCTGAATTGACGGACTGGCATGCGCGGGATTGCGAGGAGTTGCGGCGGATGTTGTCGGCTTGA	MSLSDVRHWVFDMDGTLTIAVHDFAAIRVALAIPAEDDILTHLAALPAEEAAAKHAWLLEHERDLALGSKPAPGAVELVRELAGRGYRLGILTRNARELAHITLEAIGLADCFAVQDVLGRDEAPPKPHPGGLLKLAEAWEVAPGSMVMVGDYRFDLDCGRAAGARTVLVNLPDNPWPELTDWHARDCEELRRMLSA				NA	NA	NA	NA	NA
D1-36_04408	870	tesB_2	COG1946	Acyl-CoA thioesterase 2	ATGAGCCACGTGTTGGAAGATCTGGTCGACCTGCTGACCCTGGAACCGATCGAAGAGAACCTGTTTCGCGGTCGTAGCCAGGACCTGGGGTTTCGCCAGTTGTTCGGCGGCCAGGTATTGGGCCAGTCGTTGTCGGCGGCCAGCCAGACCGTGGAAGAGGCGCGCCACGTGCATTCGATGCATGGTTATTTTCTGCGTCCGGGCGATGCGGCCCTGCCGGTGGTCTATCAGGTAGACCGCGTACGGGACGGCGGCAGTTTCAGTACCCGGCGGGTCACGGCGATTCAAAAGGGCAATCCGATCTTCACCTGCAGCGCATCGTTCCAATATGACGAGCAGGGTTTCGAGCACCAGAGCACCATGCCGCAAGTCGTCGGGCCGGAGAACCTGCCGTCCGAGCTGGAGCTGACCCAGCAGCGCGCCCATCTGCTGCCCGAGCACATGCGCGAAAAACTGCTTTGCCCCAAGCCGATCGAGGTGCGTCCGGTCACCGAAAAAGACCCTTACAACCCGCAACCGGCCGATCCGGTCAAATACGTGTGGTTCCGTGCCGATGGCGCCTTGGCGGACATCCCGGCCCTGCACAAATACCTGCTGGCCTACGCGTCGGATTTCGGCCTGTTGACCACCTCGCTGCTGCCCCACGGCAAGTCGGTGTGGCACAAGGATATGCAGGTCGCCAGTCTTGACCACGCGTTGTGGTTCCATGCCGACCTGCGCGCCGATGACTGGTTACTCTATGCCATGGACAGCCCGTGGGCCGGAAATTCCCGTGGATTCTCCCGAGGCAGCGTGTTCAACCGCGCCGGGCAGTTGGTGGCATCGGTGACCCAGGAAGGCCTCATCCGCCATCGCAAGGACTGGGCATGA	MSHVLEDLVDLLTLEPIEENLFRGRSQDLGFRQLFGGQVLGQSLSAASQTVEEARHVHSMHGYFLRPGDAALPVVYQVDRVRDGGSFSTRRVTAIQKGNPIFTCSASFQYDEQGFEHQSTMPQVVGPENLPSELELTQQRAHLLPEHMREKLLCPKPIEVRPVTEKDPYNPQPADPVKYVWFRADGALADIPALHKYLLAYASDFGLLTTSLLPHGKSVWHKDMQVASLDHALWFHADLRADDWLLYAMDSPWAGNSRGFSRGSVFNRAGQLVASVTQEGLIRHRKDWA	PGPT0001835_1246	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001835-tesB-K10805	NA	NA
D1-36_04409	570		COG1670	Acetyltransferase	ATGGAGCCGATACTGGAACTGGAAAGCGCACGGTTGATACTGCGGCAATGGCGCGACGATGATTTGCCCACGTTCGCGGCCATGTCTGCCGATGCGCAAGTGATGCGTTATTTTCCGGCACCCTTGAGTCGCCTGGAAAGCGCTGCGTTGATCGGCCGCGTGCGCGGGCATTTTGCAGAGCATGGTTTTGGTTTGTGGGCGTTGGAGCGCAAGGATACTGGCGCTTTCATTGGCTTTACCGGGCTGGGCGTGGTCGGATTCGACGCGCATTTTACCCCGGCGGTGGAAATCGGCTGGCGCCTGGCCCGCGAGCATTGGGGGTTCGGCTATGCCAGCGAAGCGGCGTGGACGGCGTTGCGTTGCGCCTTCGACCGCCTGGGGCTGGACGAGGTGGTGGCGTTTACCGCCACCGACAACCTGCCGTCGCAGAAGGTCATGCAGGCCATCGGCATGCACCACGACCCGGCCGATGACTTCGAACATCCAAAGCTCGCGGTCGGTCATCCATTGCGTCACCATGTGCTCTATCGCATTGACCGGGAGCAGTGGTTGCAGACTCTGCACGGTTAG	MEPILELESARLILRQWRDDDLPTFAAMSADAQVMRYFPAPLSRLESAALIGRVRGHFAEHGFGLWALERKDTGAFIGFTGLGVVGFDAHFTPAVEIGWRLAREHWGFGYASEAAWTALRCAFDRLGLDEVVAFTATDNLPSQKVMQAIGMHHDPADDFEHPKLAVGHPLRHHVLYRIDREQWLQTLHG	PGPT0012895_7	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATES	BIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012895-aroDE-K13832	NA	NA
D1-36_04410	921			hypothetical protein	ATGCCGCTACCGTTGATCTACCACGAAGACTACAGCCCAGAATTCCCAGCGGAACACCGCTTCCCCATGGACAAGTTCCGCCTGCTGCGCGATCACCTGGTGGAGAGCGGCCTGGCCCGGGACACAGACCTGCTGCGTCCCGCCCTGTGCCCGCCGGAGATTCTCGCCCTGGCCCATGACCGCGCTTATATCGAACGCTACATGGGCGGCGAGTTGTCCCGCGAAGACCAACGGCGACTTGGCCTGCCCTGGAGCGAAGCCCTGGCGCGGCGAACGGTGCGCGCCGTGGGTGGCTCGCTCCTGGCCGCCGAAAAGGCGCTTGAACACGGACTGGCCTGTCATCTGGCCGGCGGCACCCATCACGCCCACTACGACCACCCGGCCGGCTTTTGCATTTTCAATGACCTGGCGGTGATCAGCCGCTACTTCCTGGCCAGCGGCCGGGTTTCGCGCGTGTTGATTTTCGACTGCGACGTGCACCAGGGTGACGGTACGGCTCGAATACTCCATGACACTCCAGACGCCGTGACAGTTTCCCTGCACTGTGAAAAGAATTTTCCCGCACGCAAGGCGCAGAGTGACTGGGACATTCCACTGCCGATGGGCATGGAAGACGCTGCGTACCTTAAAGTCGTGGACGATGCGCTAAATTATCTGCTGCCGCTCTACCAGCCGGACCTGGTGCTGTACGACGCCGGCGTCGACGTACACAAGGATGACGCCCTCGGTTACCTGAAACTTACCGACGAAGGCCTCGCCGCCCGGGACGAAAGCGTCATGCGCCATTGCCTGGGGCGGGACATTCCGGTAGTGGGCGTCATCGGCGGGGGCTACAGCAAGGACCGCAAGGCCCTGGCCCGGCGCCACGGGATCCTGCACCACAGCGCACAAAAGGTCTGGGAGTCATCAGGCTGTCATTGA	MPLPLIYHEDYSPEFPAEHRFPMDKFRLLRDHLVESGLARDTDLLRPALCPPEILALAHDRAYIERYMGGELSREDQRRLGLPWSEALARRTVRAVGGSLLAAEKALEHGLACHLAGGTHHAHYDHPAGFCIFNDLAVISRYFLASGRVSRVLIFDCDVHQGDGTARILHDTPDAVTVSLHCEKNFPARKAQSDWDIPLPMGMEDAAYLKVVDDALNYLLPLYQPDLVLYDAGVDVHKDDALGYLKLTDEGLAARDESVMRHCLGRDIPVVGVIGGGYSKDRKALARRHGILHHSAQKVWESSGCH				NA	NA	NA	NA	NA
D1-36_04411	1242	baiN	COG2081	3-dehydro-bile acid delta(4,6)-reductase	ATGACCTCGACCACCCAGCCCTCCTCCCCACACATCGCCATCATCGGCGGCGGCCCCGCCGGCTTGATGGCAGCCGAGGTGTTGAGCCAGGCCGGTGTCCAGGTCGACCTGTACGACAGCATGCCGTCGGTGGGCAGGAAATTTCTATTGGCGGGCGTGGGCGGCATGAACATCACCCATTCCGAAGCGTTCCCGGCGTTCCTGTCCCGCTACGGCGAACGCTCGCCAAATATCGCCCCGCTGCTGCGGGCATTCGGCGCGGATGAGTTGTGCCAATGGATACAGGGCCTGGGCATCGACACGTTTGTGGGCAGCTCGGGGCGCGTCTTTCCGACCGACATGAAAGCCGCCCCACTGCTGCGCGCCTGGCTCAAGCGCCTGCGGGACGCCGGGGTGGTGATCCACACCCGCCACCGCTGGCTTGGCTGGAGCCCCGACGGCGGCTTGCGCATCGCCAGCCCGGACGGTGAAAAAACCTTGTTCCCCGACGCAACGCTGTTGGCGCTGGGCGGCGGCAGTTGGTCGCGCCTGGGCTCCGATGGCGCCTGGATGCTGTCGCTGGAACAGCGCGGCGTGGCGTTGGCACCCTTGCAACCGAGCAATTGCGGATTCGACGTGGCCGCCTGGAGCGACTTCATGATCGGCAAGTTCGCCGGTGCCCCGCTCAAGAACATCGCCATCGGCCTCAACGACGATGTGCCACGCCTGGGCGAATGCGTAATCACCGCCACCGGCCTCGAAGGCAGCTTGATCTATGCCCTGTCGGCAGCGATTCGCGAGGCCATCAACCAGCACGGCAGCGCGACCATTCATCTGGACCTGTTGCCAGGCCGGCCTGTGGATAAAATCCTCCAGGCCTTGAACAAACCACGCGGGTCACGCTCGATGGCCAAGCACTTGCACAGTCAATTGGGGCTCGACGGGGTCAAGGCAGCGCTGTTGCGCGAGCTGACGTCCGCCGATTGCTTCGCCGACATGGCGCGGCTGGCGAAAGCGATCAAGGCCTTGCCGGTCACGCTGGTGAAAACCCGTCCACTGGACGAAGCCATCAGCAGCGCCGGCGGCGTGACCTTCGAAGCGCTGGACGAACGGCTGATGCTCAAGCAATTACCCGGCGTTTTCTGCGCGGGGGAAATGCTCGACTGGGAAGCACCGACCGGCGGCTACCTGCTCACGGCGTGCGTTGCCAGTGGCCGGGCGGCGGGGTCGGGGATACTGGAGTGGTTACAGCGCCTGGATTGA	MTSTTQPSSPHIAIIGGGPAGLMAAEVLSQAGVQVDLYDSMPSVGRKFLLAGVGGMNITHSEAFPAFLSRYGERSPNIAPLLRAFGADELCQWIQGLGIDTFVGSSGRVFPTDMKAAPLLRAWLKRLRDAGVVIHTRHRWLGWSPDGGLRIASPDGEKTLFPDATLLALGGGSWSRLGSDGAWMLSLEQRGVALAPLQPSNCGFDVAAWSDFMIGKFAGAPLKNIAIGLNDDVPRLGECVITATGLEGSLIYALSAAIREAINQHGSATIHLDLLPGRPVDKILQALNKPRGSRSMAKHLHSQLGLDGVKAALLRELTSADCFADMARLAKAIKALPVTLVKTRPLDEAISSAGGVTFEALDERLMLKQLPGVFCAGEMLDWEAPTGGYLLTACVASGRAAGSGILEWLQRLD				NA	NA	NA	NA	NA
D1-36_04412	1338	rhlE_2	COG0513	ATP-dependent RNA helicase RhlE	ATGACTTTCGCCACCCTTGGCCTGATCGAACCCCTGCTGCGCGCCCTCGAGACGCTCGGCTACCAGACTCCGACCCCGGTCCAGGCCCAAGCCATGCCGGCCGTGCTCGCCGGGCGCGACCTGATGGCCGCGGCCCAGACCGGCACCGGCAAGACCGCCGGTTTCGCCGTGCCGCTGTTGCAGTTGCTGACCACCGAAGGGCCGAAAGTCGCCGCCAACTCGGTGCGTGCGCTGATTTTGGTGCCGACCCGCGAGCTGGCCGAGCAGGTCCACGAAAGCGTGCGCCAATATGCGCAGCACTTGCCTTTGAGCACCTACGCCGTATATGGCGGTGTCAGCATCAACCCGCAGATGATGAAGTTGCGCAAAGGTGTCGACTTGCTGGTGGCCACGCCGGGCCGCTTGCTCGATCTGTTCCGCCAGAACGCGCTGAAGTTCAACCAATTGCAAACGCTGGTGCTGGACGAAGCCGACCGCATGCTCGACCTGGGTTTCTCCGAAGAGCTGGCGAACATCTACAAGGCATTGCCGAAGAAGCGCCAGACGCTGCTGTTCTCGGCGACCTTCTCCGATGCGATCCGCCTGTTGGCCGGGCAGATGCTCAACGACCCGCTGAGCATCGAAGTGAGCCCGCGCAACGTGGCTGCCAATACCGTCAAGCAATGGGTGGTGACGGTGGACAAGAAGCGCAAGCCGGAACTGTTCATTCACCTGATGCGCAAGCACAAGTGGAAGCAGGTGCTGGTGTTCGCTAAGACCCGCAACGGCGTCGATGCGCTGGTGGAAAAACTCCAGGGCCTCGGTGTGAATGCCGACGGCATCCACGGTGACAAACCCCAGGCGACCCGCCAGCGCGCGCTGGATCGCTTCAAGGCCAGCGAAGTGCAGATACTGGTAGCCACCGACGTCGCCGCCCGTGGCTTGGACATTGAGGACTTGCCGTTGGTGGTGAACTTTGACCTGCCAATCGTGGCCGAGGACTACATCCACCGCATCGGCCGTACGGGCCGGGCAGGTGCTACGGGCCAGGCGATTTCCCTGGTCTGCGCCGATGAAGTGAACCTGCTGTCGGCCATCGAGACCCTGACCCGTCAGACATTGCCGCGCCAGATGGAACAGGATTTCGAGCCTGAACACCGCGTGCCGGAGACCGATTCCAGCGGCCAGGTCATCAAAAAACCGAAGAAGCCGAAGAAACCAAAGACCTCCGGTGGCGGCGGCAAGCGCAATCTGGGCAAGTGGGTGGACAGTGGCGACGCTGCGCCTGTGGAACCTTCGGTCAAGCCTGTGCGCAAAGTGCCGGTCTTCAACACTGGGCCGCGTAAGCGTAAGCCTTGA	MTFATLGLIEPLLRALETLGYQTPTPVQAQAMPAVLAGRDLMAAAQTGTGKTAGFAVPLLQLLTTEGPKVAANSVRALILVPTRELAEQVHESVRQYAQHLPLSTYAVYGGVSINPQMMKLRKGVDLLVATPGRLLDLFRQNALKFNQLQTLVLDEADRMLDLGFSEELANIYKALPKKRQTLLFSATFSDAIRLLAGQMLNDPLSIEVSPRNVAANTVKQWVVTVDKKRKPELFIHLMRKHKWKQVLVFAKTRNGVDALVEKLQGLGVNADGIHGDKPQATRQRALDRFKASEVQILVATDVAARGLDIEDLPLVVNFDLPIVAEDYIHRIGRTGRAGATGQAISLVCADEVNLLSAIETLTRQTLPRQMEQDFEPEHRVPETDSSGQVIKKPKKPKKPKTSGGGGKRNLGKWVDSGDAAPVEPSVKPVRKVPVFNTGPRKRKP	PGPT0013740_2565	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927	NA	NA
D1-36_04413	903	yedA		putative inner membrane transporter YedA	ATGCCTGGCCCACGCCGTTTCCCCTTGCCTCTGATCGCTGCTTTTTTTGCCTTGTACGTCATCTGGGGCTCGACCTACCTGGTGATTCGCATTGGCGTCGAGCATTGGCCGCCGTTGCTGCTGGCCGGGATTCGCTTCGTGATCGCCGGATCGCTGATGTACGGCTTCCTGCGCTGGCGCGGGGCGCCGGCACCGACCTGGGCGCAATGGAAGGCCGGGGCGCTCATCGGCGTGCTGTTGCTGACGTTCGGCAATGGTGCGGTGAGCATCGCCGAGCACATGGGCGTGGCGTCGGGGGTGGCGGCGTTGGCCGTGGCGACGGTGCCTTTGTTTACCTTACTCTGTGGATATTTCTGGGGCGCGCGTAATACCCGTCTCGAATGGGCCGGTATTGTGTTGGGATTGATCGGCATCGCCATGCTCAACCTGGGCTCCAACCTGCAATCGAGCCCGTTGGGGGCGGCCTTGCTGGTGTTCGCGGCGGCTTCCTGGGCCTTCGGTTCGGTACTGAGCAAACATCTGCCGTTGCCGGCGGGAGCGATGGCCAGCGCCGTGGAGATGCTGGTGGCCGGCGTGGTGCTATTGATCGGCAGCTTTGCCAGCGGCGAACGTCTGGACCACATGCCGCCGCTGGAAGGCTGGTTCGCGCTGGTCTACCTGATCGGTTTCGGTTCGATCATTGCCTTCAACGCCTACATGTATCTGCTCAAGCATGTGCGCCCGGCCGCGGCCACCAGCTATGCCTACGTCAACCCGGCGGTGGCGGTGTTGCTGGGGATCGTCTTCGCCGGTGAGACCATTGGTATCGAGGAAGCCTTGGCGATGCTGGTGATCATCAGCGCCGTGGTGCTGATCGGTTTGCCCCAGTGGCGCAAGCCCAAGCCCGCACCGGCCGAATCCTGA	MPGPRRFPLPLIAAFFALYVIWGSTYLVIRIGVEHWPPLLLAGIRFVIAGSLMYGFLRWRGAPAPTWAQWKAGALIGVLLLTFGNGAVSIAEHMGVASGVAALAVATVPLFTLLCGYFWGARNTRLEWAGIVLGLIGIAMLNLGSNLQSSPLGAALLVFAAASWAFGSVLSKHLPLPAGAMASAVEMLVAGVVLLIGSFASGERLDHMPPLEGWFALVYLIGFGSIIAFNAYMYLLKHVRPAAATSYAYVNPAVAVLLGIVFAGETIGIEEALAMLVIISAVVLIGLPQWRKPKPAPAES				NA	NA	NA	NA	NA
D1-36_04414	612	polC_1	COG2176	DNA polymerase III PolC-type	TTGGAACGCATCGCAGTCATCGACTTTGAAACCACCGGCATCACCCCGAGCAGCAGCTGCCGGGCCACCGAAATCGCCGTGGTGATCCTTGAACGGGGCCGGATCGTCGACCGTTATCAGAGCCTGATGAACGCGGGCGTTCGCGTCCCCGCCTTCATTGAACAGCTCACCGGCATCAGCAACGCCATGTTGCGCAGCGCACCCCCGGCGGAAAAAGTGATGAACGAGGTCAACGAATTCGTCGGCATCACGCCGCTGCTGGCCCACAACGCCGCGTTCGACCAGAAGTTCTGGGATTTCGAATTGGGACGCATCAAGCGCACCCGCTTGCAGAACTTTGCCTGCTCGCTGTTACTGGCCCGGCGCTTGATGCCAGCGGCGCCGAACCACAAGCTTGGCACCCTCAACACTTTCGCCGGCTTGCCCCACACCGGCCAGGCTCACCGCGCCATGGCCGACGCCGAAATGGCCGCCAACCTCACCGCGCACCTGGCCTCGGAACTGCGAGAAAAGCATGGGCTGCGGGCGTTGTCCCATGACTTGCTGTGCAGCTTGCAAAAAGTGCCGGCGGCGAAGATCAACGAACACCTCAAACGCCATCGCGGGTTCTGA	MERIAVIDFETTGITPSSSCRATEIAVVILERGRIVDRYQSLMNAGVRVPAFIEQLTGISNAMLRSAPPAEKVMNEVNEFVGITPLLAHNAAFDQKFWDFELGRIKRTRLQNFACSLLLARRLMPAAPNHKLGTLNTFAGLPHTGQAHRAMADAEMAANLTAHLASELREKHGLRALSHDLLCSLQKVPAAKINEHLKRHRGF				NA	NA	NA	NA	NA
D1-36_04415	480			hypothetical protein	GTGAAAAAAATCGCAGTGTTCGCCGATGTCCAGAACCTCTATTACACCGTGCGCCAAGCCTACGGCTGCCATTTCAACTATGCGGCGTTGTGGGCTGATGTCAGCAAACAGGGTCAGATCGTCGAGGCCTATGCCTACGCGATCGATCGCGGCGACAGCAAGCAACAACAGTTCCAGCAGATCCTGCGCAACCTGGGTTTCACCGTGAAGCTCAAGCCCTATATCCAGCGCAGCGACGGCTCGGCCAAGGGCGACTGGGACGTGGGCATCACGCTGGACATCATGGACGCCGCCGATCACGTCGATGAGGTGGTGCTGGCCTCCGGCGACGGCGATTTCGACATGCTGCTCGAACGCATCATCAGCAAGCATGGCGTGCAGGCGGTGGCCTACGGTGTACCGGGGCTGACCGCCAACTCGCTGATCCGCGCCGCCAGCCGCTACGTGCCCATTGAAGGCGCGCTGCTGCTCAAGAACTGA	MKKIAVFADVQNLYYTVRQAYGCHFNYAALWADVSKQGQIVEAYAYAIDRGDSKQQQFQQILRNLGFTVKLKPYIQRSDGSAKGDWDVGITLDIMDAADHVDEVVLASGDGDFDMLLERIISKHGVQAVAYGVPGLTANSLIRAASRYVPIEGALLLKN				NA	NA	NA	NA	NA
D1-36_04416	756			hypothetical protein	ATGAACAGCGAAGAACAAACCCTGATCGATGGACTGTTTTCACGGTTGCAACAGGCCGAAAAGGATTCAGCCCCGCGCGACGCCCAGGCTGAGGCGCGGATCAAGGAGCATTTGGCCAAGCAGCCTGCGGCGGGCTATTTCATGGCCCAGGCGATCCTGGTGCAAGAGGCGGCGATCAAGCGACTGGACGAGCAGAACAAGCAACTCGCCCAGCAGGTCGAGCAATTGCAAGCCGAGTTGCAGCAGGCGCGCAACCAGGCATCGGCGCCAAGCGGTGGCGGTGGCTTTCTTTCAAGCATCTTCGGCGGCAGCAACCGAGATTCACGTCCCGCAAGCGCGCCGGCACCCAGCGGTGGCGGCTGGCGCGAACCGGCACGGCCATCTTTTAATACGCCGACACAGCAAGGCTTCGGCGCAGCGCCCGGCAACTATGGCGCGCCGCCGCAGCAAGCCCCAGCGGCGGGCAGCTTCCTGGGCGGTGCGCTGAAAACCGCAGCGGGCGTGGCCGGTGGCGTGATGCTGGCGCAAGGCATCAGCAGCCTTTTCCATAGCAATCAGCCTCAGGAAATCGTTGAGATTCTCAAGGAAGAACCGGCCCAACCCGTCAATGACACGGTTGATAACAGTGGCAACGGTTGGGGCGATGACTCGCGCACGGCCGACAACAGTACCTACGACAACGACCCGGGCGGTTTCAGCGACGCGGATTACAGCGACGATTCGTCCTTCTTCGGCGACGACGACTCCTTCGTCTGA	MNSEEQTLIDGLFSRLQQAEKDSAPRDAQAEARIKEHLAKQPAAGYFMAQAILVQEAAIKRLDEQNKQLAQQVEQLQAELQQARNQASAPSGGGGFLSSIFGGSNRDSRPASAPAPSGGGWREPARPSFNTPTQQGFGAAPGNYGAPPQQAPAAGSFLGGALKTAAGVAGGVMLAQGISSLFHSNQPQEIVEILKEEPAQPVNDTVDNSGNGWGDDSRTADNSTYDNDPGGFSDADYSDDSSFFGDDDSFV				NA	NA	NA	NA	NA
D1-36_04417	705			hypothetical protein	ATGGGTAAAGTGTCGGACCGCTTTTCTGAACTGCGATACCGACCCATGAATCCGTTAGAAGTACTGCGTGACTCCTTGTATTTTTTCAAGCGCCATCTGGGCCGGATCGCCCAGTTGTGCCTGCCGCTGGTGATACTTGAAGCCGTGCTGCAACAAGGGGTGGACAGCGCCGTCGGGGCCGAGGGCTTTTCCGGTTACAGCGTGATCGTCGGGCTGTTGGTATACCCGCTGTACACCGCGGCGTTGATTCTGTTTCTTGACGCCCGCAGTCGTGGCGAAGCCCCCCGCCCTCGCGACCTGCTCGCGGCCTCGCTCCTACAATGGCCACGCTTTGCCTTGCTGACCGCCCTCAATACGCTGTTGATCCTGATTGGCATCTCGTTGTATTTCCTGCCAGGGCTTTGGCTGATGGTTGTCCTCGCCTTTGGTGAGTATCTGGTGGTACTCAAAGGCTTGGCACCACTGGCCGCGATGAAGGAAAGCCTGCGCATGAGCCGCGGTCATTTCTGGCGGATCCTGCTGTGTATCCTGGCGGTGATGATCCCGCTGTGGCTGCTCAAGGGCGCCAGCGTCTCGGTGTATCCGCCGCCGCAAAACCCCTTGGTCAGTTTGCTGATCGACAGCATCCACAGCTTCCTGCAATTGTTCACTACGGTGGTGCTGTTCCGAATGTTCATGTTGATTGTAGAAAAACCTGAGCCATGA	MGKVSDRFSELRYRPMNPLEVLRDSLYFFKRHLGRIAQLCLPLVILEAVLQQGVDSAVGAEGFSGYSVIVGLLVYPLYTAALILFLDARSRGEAPRPRDLLAASLLQWPRFALLTALNTLLILIGISLYFLPGLWLMVVLAFGEYLVVLKGLAPLAAMKESLRMSRGHFWRILLCILAVMIPLWLLKGASVSVYPPPQNPLVSLLIDSIHSFLQLFTTVVLFRMFMLIVEKPEP				NA	NA	NA	NA	NA
D1-36_04418	1080			hypothetical protein	ATGACCCGCCTGCTGCGATACGCCCTGCTGGGCCTGCTGTTGATTGTCGGGATCGGCGCCTTTTCGGTTTATGGCCTGACCTGGCGTCCACAGGCCCGGGAAACGCTGCCCGTCAGCTGCGCCGCCAACGCCGCGCCGCTGATACCCGGCCAGGCCTTGAAAGTCATGACCTGGAACGTCCAGTTCCTGGCCGGCAAGCGCTATGTGTTCTGGCACGACCTGGCCCAGGGCAACGATGAAAGCCCGACTCCTGAAGACATGGCCTTCAGTCTGGACGAAGTGGCTCGGGTCATTCGCGACGAGCAACCAGACGTGGTCTTGCTCCAGGAACTGGACAACGGCGCCAAGGCCAGCGAGTACCAGGACCAGCTCAAGCTGTTGCAGGAACGCCTGGCCGACCTCTACCCGTGCGGCACCAGCGCCTTCGATTGGAAAGCCGACTTCATTCCCGATCCGCGCATCTTCGGCAGCGTCGGCCGACAGCTGGCGACGCTGAGCCGCTACCGCATCGACCATGCCGAGCGGGTGCAATTGCCGGTGGCCGATGGGAACTTCATCAGCCGTCAGTTCCAGCCGAAAAACGCCTTGCTCGTGAGTTACCTGGCCCTTAACGGCGGCGGTCAACTGGCGGTGCTCAATACGCACCTGGAGCGAGCCACGCAGCTGCACGACACGGCGCGCAGGCAGGTCGAAGCCATTTCCAAGTCCCTCGACAAGCTCGAGTCCGCTGGCACGCCCTGGCTGATCGGGGGCGATTTCAACCTGTTGCCCCTGGGCCAATACCGGCGCCTGTCGATCGAACAGCGCTCGCCCTACTCCGCGGACAGCGAGCTACATTTGCTGTGGGACAAATACCCGATGATCCCCACCAACAACGAGGCCAGCGGTCTCGACCGCACGCACTGGCTGACCCACTACCCCAACGACCCCGGCCTCAACGGCCCCGACCGCACCGTCGATTACCTGTTCTACAGCCCACGCCTCAAACGGGTCGAAGCCCAGGTCCGACAGGACGACACGTTGCGCATTTCCGATCATTTGCCGGTGATTGCGCGGTTTTTGTTGCCGGCGATGCCCTGA	MTRLLRYALLGLLLIVGIGAFSVYGLTWRPQARETLPVSCAANAAPLIPGQALKVMTWNVQFLAGKRYVFWHDLAQGNDESPTPEDMAFSLDEVARVIRDEQPDVVLLQELDNGAKASEYQDQLKLLQERLADLYPCGTSAFDWKADFIPDPRIFGSVGRQLATLSRYRIDHAERVQLPVADGNFISRQFQPKNALLVSYLALNGGGQLAVLNTHLERATQLHDTARRQVEAISKSLDKLESAGTPWLIGGDFNLLPLGQYRRLSIEQRSPYSADSELHLLWDKYPMIPTNNEASGLDRTHWLTHYPNDPGLNGPDRTVDYLFYSPRLKRVEAQVRQDDTLRISDHLPVIARFLLPAMP				NA	NA	NA	NA	NA
D1-36_04419	2517	hrpB	COG1643	ATP-dependent RNA helicase HrpB	ATGATTTCTTTGCCGATTGATGAAGTTTTACCCGCGCTGCGCCAAGCGCTGGCCTCGCGCCACGAAGCGGTGCTCGAAGCGCCCCCCGGCGCCGGTAAAACCACCCGTGTTCCCTTGGCCCTGCTGAACGAGCCTTGGCTGGCCGGGCAAACCATCCTCATGCTCGAACCCCGGCGCCTGGCGGCACGGGCGGCGGCCGAGCGCCTGGCCAGTGAGCTAGGGGAAAAGGTCGGTGAAACCGTGGGCTACCGGATTCGCCTCGACAGCAAGGTGGGCCCCAACACGCGCATTGAAGTGGTCACCGAAGGCATTCTCACCCGCCGCCTGCAGGACGATCCGGCGCTGGAAGGCGTGGGGCTGCTGATCTTCGATGAATTCCACGAGCGCAGTCTCGACGCCGACCTCGCCCTTGCCTTGAGCCTCAATGGCCGGGAGCTGTTTCGCGAAGACCAGCCACTGAAGATTCTGCTGATGTCCGCGACCCTGGAAGGCGAGCGCCTGGCGGGATTGCTGGACGACGCGCCGATCCTGCGCAGCGAAGGACGGATGTTCCCGGTGACGGTGCGTTGGGGCCGGCCGTTCCAACCTGGGGAATTCATCGAGCCGCGACTGGTGCAGACCGTGCTCGAAGCGCTGCACGACGAAACCGGCAGCGTGCTGGTGTTCTTGCCCGGGCAAGCCGAAATCCGCCGGGTTCATCAACAATTGGCCGACGCCCTTGGCGACGGCGGCAACGTGTTGCTGTGCCCGTTGCACGGTGAACTGGACCTGACGGCCCAGCGCGCCGCCATCGATCCGGCACCGCCCGGGCTGCGCAAAGTCGTGCTGGCGACCAACATCGCCGAGACCAGCCTGACCATCAATGGCGTGCGGGTGGTGGTGGATGCCGGGCTCGCCCGCATCCCGCGTTTCGATCCGGGCAGCGGTATGACCCGCCTGGACACCCAGCGCATCTCCCGCGCCAGCGCGACCCAGCGGGCCGGCCGTGCCGGACGCCTGGAACCGGGGGTGTGCTATCGGCTGTGGTCCGAAGACCAGCACGAACAGTTGGCCGCTTATGGCAGCGCCGAAATTCTTTCGGCGGACCTGGCCGGGCTGGCCCTGCAATTGGGGCGCTGGGGCATGACGCCGCAGCAATTGGTGTGGCTCGACGTCCCGCCGACCGCCGCGTATGCCCAGGGCCAAGACCTGTTGCAACGTCTCGGCGCACTCGATGGCGGCCAACTGACCCGCCACGGCCAGGCCATGGCCGAACTCCCGGCTCATCCGCGAATCGCCCACTTGCTGTTGCGCGGCCAGGGGCTGGGGCTGGCGGACATGGCCTGCAACGTCGCCGCGTTGTTGGGCGAGCGCGACATTCTTCGCGGCGCCGGCGCGGACCTGCATAGTCGCCTGGCCTTGCTCTCCGGCGAGGAACGGGCGGCACGCGGCGCCCAGGGTGGCGTGCAGCGGGCGCGGCAATTGGCCCGGCAATATCGCGGTTACTTGCGGGGCAAGGCTGGGGAAGCCGTGGCCGATCCCGATCATCCACGTTGGCTCGGCGCGCTGCTGGCGCTGGCTTACCCGGATCGCGTCGCCCAACAGCGCCGGCCCGGCGGCGCGGAGTATCGCCTGGCCAACGGTCGTGCGGCGCTGTTTGCCGAGGCCGACAGCCTGATGAAGCAACCCTGGCTGGTCATTGCCGATTTGGGCAGCCGCCAAGGCCAGCGCGAAGAGCGGATTTATCTGGCGACGGATTTCGACCCGACGCTGTTCGACTCGGTGCTGGCCGAGCAGGTGCATACGGTCGACCAGCTGGACTGGGATGAGCGCGAAGGCGTACTGCGCGCCGAGCGCCAGCGCAAGGTCGGCGAGCTGGTGCTCAGTCGCGAGCCGTTGACCGGGCTGGATGAAGCCGCCCGAAGCCAGGCGCTGGTCAACCTGGTGCGGCGCAAGGGCCTGGAGCTGCTGCCGTGGACGCCGGAGTTGCGGCAATGGCAGGCGCGGGTGGCGCTGTTGCGTCGCCTTGATGTGGAGAGCAAGGGCCAGAGCGAATGGCCGGACGTCAGCGATGCCGCACTGCTGAGCAGTCTCGAACATTGGTTGATGCCGTACCTGGGACGGGTGTCGCGACTCAGTCATTTCGCCAGCCTGGATCTGTCGAGCATCGTCCATAACCTGTTGCCCTGGCCTTTGCCGCAACGCTTGGACGAACAGGCGCCGCACCATTTGAGCGTGCCCTCGGGCTCGTCGATCCGCCTGGACTACAGCGAACACCCGCCGATCCTCGCGGTGCGCTTGCAGGAACTCTTCGGCCTGTCCGACACCCCGCGCATTGCTGGGGGGCGGCAGGTGGTCAAGTTGCACCTGCTGTCGCCGGCTCGTCGGCCCGTGCAGGTGACCCAGGACCTGGCGAACTTCTGGCGCAGTACCTACGCCGAGGTGAAGAAGGACCTCAAGGGGCGCTATCCCAAGCATTACTGGCCGGACGACCCGTTGGTGGCGCAGGCAACGGCGCGGGTCAAGCCGCGCAAGTGA	MISLPIDEVLPALRQALASRHEAVLEAPPGAGKTTRVPLALLNEPWLAGQTILMLEPRRLAARAAAERLASELGEKVGETVGYRIRLDSKVGPNTRIEVVTEGILTRRLQDDPALEGVGLLIFDEFHERSLDADLALALSLNGRELFREDQPLKILLMSATLEGERLAGLLDDAPILRSEGRMFPVTVRWGRPFQPGEFIEPRLVQTVLEALHDETGSVLVFLPGQAEIRRVHQQLADALGDGGNVLLCPLHGELDLTAQRAAIDPAPPGLRKVVLATNIAETSLTINGVRVVVDAGLARIPRFDPGSGMTRLDTQRISRASATQRAGRAGRLEPGVCYRLWSEDQHEQLAAYGSAEILSADLAGLALQLGRWGMTPQQLVWLDVPPTAAYAQGQDLLQRLGALDGGQLTRHGQAMAELPAHPRIAHLLLRGQGLGLADMACNVAALLGERDILRGAGADLHSRLALLSGEERAARGAQGGVQRARQLARQYRGYLRGKAGEAVADPDHPRWLGALLALAYPDRVAQQRRPGGAEYRLANGRAALFAEADSLMKQPWLVIADLGSRQGQREERIYLATDFDPTLFDSVLAEQVHTVDQLDWDEREGVLRAERQRKVGELVLSREPLTGLDEAARSQALVNLVRRKGLELLPWTPELRQWQARVALLRRLDVESKGQSEWPDVSDAALLSSLEHWLMPYLGRVSRLSHFASLDLSSIVHNLLPWPLPQRLDEQAPHHLSVPSGSSIRLDYSEHPPILAVRLQELFGLSDTPRIAGGRQVVKLHLLSPARRPVQVTQDLANFWRSTYAEVKKDLKGRYPKHYWPDDPLVAQATARVKPRK				NA	NA	NA	NA	NA
D1-36_04420	420			hypothetical protein	ATGCGTATTCCCTTTCGCGTGATCGGCGGCGTCCTGGTCGCCACCCTGCTGACCCAGATCAGCGCGTGCGGCTCGATCTTCTACCCGGACCGTCGCGGCCAGATCGAAGGCAAGATCGACCCGGCCATCGCCGCGCTCGATGCCGTTGGCCTGCTGTTCTACATCATCCCCGGCCTGATCGCTTTCGCCGTGGACTTCGCCACCGGCGCGATCTATTTCGAGCCGGGCCGCAGCGTCCAGATCGAGCCAGAAAAACTCAAGCCGGCCATCAACCCCGACGGCACGGTCAATAACCACAAGCTGCAAGCGATCCTGGAAAGCGAGCTAGGCCGCAGTTTCCCGCTGGATGACCCACGTCTTATCCAGCACAAGGGCAACGTCCAGCAACTGGCCGCGTTCGGCCTCAAACCCGCCGCATAA	MRIPFRVIGGVLVATLLTQISACGSIFYPDRRGQIEGKIDPAIAALDAVGLLFYIIPGLIAFAVDFATGAIYFEPGRSVQIEPEKLKPAINPDGTVNNHKLQAILESELGRSFPLDDPRLIQHKGNVQQLAAFGLKPAA				NA	NA	NA	NA	NA
D1-36_04421	894	fieF	COG0053	Ferrous-iron efflux pump FieF	ATGACCACCCGCACCGAACACGCTCGCCTGCTGCGCATGGCCACCCGGGCATCGGTGGCCGTGGCACTCGTGCTGATCGTCGCCAAGGCGCTGGGCTGGTGGCTCAGCGGCTCGGTCAGCATGCTCGCCGGCCTGACCGACTCGGCGTTGGACGGCGTCACCTCGCTGCTCAATCTGCTGGCGGTGCATTACGCGCTGCGCCCCGCCGATGAAGATCACCGCTACGGGCATGGCAAGGCCGAATCCTTGGCCGGCATGGCCCAGGCGCTGTTTATCGGCGGCAGCGCGGTATTGATCGCGTTGCAGGCTTTCGAGCGGCTGAAGGACCCGGTGCCCGTGGACGCGCCCTGGCTCAGCGTCGGCGTGATCGTGTTTTCCCTGTTGCTGACCTTGGCCCTGCTGGCGCTGCAGCATCGGGTCATCCGCGCCACCGGCTCCAATGCCGTGCGCGCCGACTCGCTGCATTACCGTTCGGATTTGTTGCTCAATGGCAGCATCCTGGTGGCGCTGGTCCTGGCCGGGTTCGGTTGGTATCAGCTCGACGCATGGTTCGGCCTGGGGATCGCGGTATACATCCTGTGGAGCGCGATCCAGATCGCCCGGGAAAGCTTCGCGGTGCTGATGGATGAGGAGTTGCCGCCCGACGTCAGCCAACGCATGCTCGAGCTGGCCTGCGCGGTGCCCGGCGTGATCGGCGCCCATGACCTGCGCACGCGGGTCTCCGGCAACCATTGGTTCGTGCAACTGCACCTGGAACTGCCGGGGGAACTGACCCTGTCAGTGGCCCACGGCATCAGCGACCAGGCAGCCGATGCGATCCAGCGTGCTTATCCGAAGGCCGAAGTGCTGGTGCATGCCGATCCGTCGGAAGTGGTGAAGCGCGCCAGCGCCTAG	MTTRTEHARLLRMATRASVAVALVLIVAKALGWWLSGSVSMLAGLTDSALDGVTSLLNLLAVHYALRPADEDHRYGHGKAESLAGMAQALFIGGSAVLIALQAFERLKDPVPVDAPWLSVGVIVFSLLLTLALLALQHRVIRATGSNAVRADSLHYRSDLLLNGSILVALVLAGFGWYQLDAWFGLGIAVYILWSAIQIARESFAVLMDEELPPDVSQRMLELACAVPGVIGAHDLRTRVSGNHWFVQLHLELPGELTLSVAHGISDQAADAIQRAYPKAEVLVHADPSEVVKRASA	PGPT0003831_614	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ZINK_RESISTANCE	ZINK_RESISTANCE-ZINK|IRON-TRANSPORT,PGPT0003831-fieF-K13283	NA	NA
D1-36_04422	1005			hypothetical protein	ATGAAGTCGCGCATCTGGCGTTTGGCAGGTGTTGGTCTGTTGTGGGCAAGTGTCAGTGCGCAGGGGGTGGCCGACGATCAGCAAAACCGTGGCGGCCCGGACGGTGACCGCGGGCAGAACGGACGAGGCGGCAACGGCCAGGGTTATTCAGGGCAACCCAGGCAGCAAAGCAACGAGATCATCCGGGGCGATAACAGCCGACAGTTCGAGGTCAGGCCGCAAAACCCGGGTGGACAGCAATATGAGCGTCCACCGCAGGACCCCAACAGTCACGGCCGCCCACCGCAACAGCCGGGCAACAACCTGCCGATCCAGGGCCGGCCCGACAGCGTGAACCAGACCCGTGAACCGCAACCGGGCTACTACCGCGACATCCCGCGCCGCAACGATGGCTACCCCAATGGCGGGCCTCGTCCCGGTCATGAGGGGCGTCCCGAGCAGCACTGGCCCGGCCGGCCTGACGGCCATGGCAACGGCTGGGGGCCGGGGCCGCAATATCGCCCGGGTTATGTGATCGATCGCTTCCCGGATCGCAATTATCGTGTGCCTTATCGCGGCCACGATTATTTCTACTCCGGTGGCTACTGGTATCGCCCTCAAGGGCCGCGTTATGTCGTGGTCCAGCCGCCACGGGGCATTCGCACCCGTTATCTGCCCGATTATGCCCGCGAGGTCTGGATCGGCAGTTCGCTGTTCTTCCTCGCCGCCGGCGCCTATTACATCTACGAAGCCAATACCCAGGACTACGTCGTGGTCGACGCGCCGGTCGCCAACCCGCAGCCGCAACCGCAGGGCAACAGTTTTGATGTGATGGCTTATCCGGCCAACGGCCAGTCCCGGGAACAGGTCAACCAGGACGGCTACGATTGCTATCGCTGGGCGGTGCAGCAGAGTGGGTTCGACCCGCGCAACTACACCTACCCGCCAGCGCCGGAGGTGGTGCAGACCTATCGCCAGGCGCAGGGCAATTGCCTGAGCAGCCGTGGGTATCAGGTGACGTACTGA	MKSRIWRLAGVGLLWASVSAQGVADDQQNRGGPDGDRGQNGRGGNGQGYSGQPRQQSNEIIRGDNSRQFEVRPQNPGGQQYERPPQDPNSHGRPPQQPGNNLPIQGRPDSVNQTREPQPGYYRDIPRRNDGYPNGGPRPGHEGRPEQHWPGRPDGHGNGWGPGPQYRPGYVIDRFPDRNYRVPYRGHDYFYSGGYWYRPQGPRYVVVQPPRGIRTRYLPDYAREVWIGSSLFFLAAGAYYIYEANTQDYVVVDAPVANPQPQPQGNSFDVMAYPANGQSREQVNQDGYDCYRWAVQQSGFDPRNYTYPPAPEVVQTYRQAQGNCLSSRGYQVTY				NA	NA	NA	NA	NA
D1-36_04424	480	lrp_5	COG1522	Leucine-responsive regulatory protein	ATGAGCAAACTTGACCGTTACGACCTGAGTATTCTGGCGGAATTGCAGCGCGACGCACGTATCTCCAACCAGGAACTGGCCGAACGCATCGGCCTCTCGCCCTCACCGTGCTCGCGGCGGGTCAAGCAGTTGGAAGACGACGGCTATATCACCCGCCAGGTTGCCCTGCTCGATCGCAAGATGCTGGGCCTGAGCCTCACCGCCTACGTGCTGATCGGCATGGATCGCCACACCCCCGATCGCTTCGAGACCTTCGAAGCCGCGATCCGCAACCTGCCGCAAGTACAGGAATGCAGCCTGGTCACCGGCATCGATGCAGACTACCAGCTCAAGGTGGTGGTGCCGGACATGGACCACTATCAGAAATTGCTGTTGGGGCATCTGACCCGAATCGAAGGGGTCACCAGCGTGCGGTCGAGTTTCGTGTTGAACCAGGTGCTCAACAGCACCGAACTGCCGTTGACACATCTGCGCAGCTGA	MSKLDRYDLSILAELQRDARISNQELAERIGLSPSPCSRRVKQLEDDGYITRQVALLDRKMLGLSLTAYVLIGMDRHTPDRFETFEAAIRNLPQVQECSLVTGIDADYQLKVVVPDMDHYQKLLLGHLTRIEGVTSVRSSFVLNQVLNSTELPLTHLRS	PGPT0014049_276	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014049-doeX-K15782	NA	NA
D1-36_04425	210			hypothetical protein	ATGGATCCTGCTGTTTTCGAAGAGTGGATGATGACCGGCCTGGTCAGCATCCTGATCATTTTCATGGGTTTCATCGTCTGGGACCTGGCGAAGAAGTCCAAGGCCGGGCGCTTTGGTTCGTTCATCCTGTTTTTTGTGCTGGGCCTGGGCGTCGCGGCGTTCATCATCAAGAGCGTGGTGATCGGCCTGATCGAATCCGGCGCGTTATAA	MDPAVFEEWMMTGLVSILIIFMGFIVWDLAKKSKAGRFGSFILFFVLGLGVAAFIIKSVVIGLIESGAL				NA	NA	NA	NA	NA
D1-36_04426	636	rluE	COG1187	Ribosomal large subunit pseudouridine synthase E	ATGCCCCGACCGCCCCGTCCCGTTTCCCGCCGCCCTGGCGCAAAGCCCTCAGCCTCCGCCCCGCGCCGCGTGGCCAAGGCGCCGCCGTCCGAGCCGAAGCTGATCCTGTTCAACAAACCCTTTGACGTGCTGACGCAGTTCAGCGACGGCGAAGGGCGCGCCACGCTCAAGGATTTTATCGACGTGCCCGGCATCTACCCGGCCGGTCGGCTGGACCGTGACAGCGAAGGGCTGTTGTTACTCACCAACGACGGGCAATTGCAGGCGCGAATCGCCGACCCCAAGCACAAACTGGCCAAGACGTATTGGGTACAAGTCGAGGGGGAGCCGAGCGACGAACAGCTGCAGCGCTTGCGCGATGGCGTGGAATTGAACGACGGCATGACGCTGCCGGCCGAGGCCCGCCTACTGGACGAACCGCAGTTGTGGCCGCGCAACCCGCCGGTGCGTTTTCGTAAAAGCGTGCCGACGAGCTGGTTGGAACTGGTGATCCGCGAAGGGCGCAACCGCCAGGTACGCCGCATGACTGCCGCCGTGGGATTGCCGACTCTGCGGCTGGTGCGGGTCAGGATCGGCGATTGGACGATCGAAGGGCTCGACCAGGGCCAGTGGAAGGAAGTACCGGCGCGCTTATAA	MPRPPRPVSRRPGAKPSASAPRRVAKAPPSEPKLILFNKPFDVLTQFSDGEGRATLKDFIDVPGIYPAGRLDRDSEGLLLLTNDGQLQARIADPKHKLAKTYWVQVEGEPSDEQLQRLRDGVELNDGMTLPAEARLLDEPQLWPRNPPVRFRKSVPTSWLELVIREGRNRQVRRMTAAVGLPTLRLVRVRIGDWTIEGLDQGQWKEVPARL	PGPT0029005_4	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
D1-36_04427	1464	amn	COG0775	AMP nucleosidase	GTGACCGAAGCGTTTATTGTCGTTCAAACCGCCGAGCAAGCCGTGGATCGGCTGGCGGCCCTGCACGAGCGTGCGACCACTGCGCTGAACCAGGCGCTCAAGCGGTATCTCAAGGACCGCATCGAGCCGGATGCCGAGCAACGGGCCTTGTTTCGCTATCCGGCCCTGCGCCTGACCTACCATTGCCACGGCGAGGTCCCGCAAACCACCCGCGCCTACGCCAAGGTCCAGTTGCCAGGCACCTACAGCGTCACCGTCACCCACCCGGCCGCGTTCCGTAAGTACCTGCTGGAACAACTCGTTCCGTTGATGCACGACTTCACTGTCACCGTCGAAGTGGGCGTCAGCGAGCAGAACATTCCGTACCCGTACGTGGTGGAGCAGGGCGATGAGCTGGCCGGCTCCGGTGTGACCGCCGCCGTGCTGGCGCGGGTTTTCCCCAGCACCGACCTGTCGGCCGCCACCGATGGCATCGCCGACGGCCTCTACGATTGGGAAAACACCGACCCGCTGCCCCTGGCGCTGTTCGACGCCGCGCGGGTGGATTTTTCCCTGCGTCGGCTGGTGCATTACACCGGCAGTGACTGGCGCCATGTGCAGCCGTGGATCCTGCTGACCAACTACCACCGTTATGTCGACCAATTCATCGTCCATGGCCTGGAGCAATTGCGCAGCGACCCGCGCTTCGTGCGCATGGTGCTGCCGGGCAACGTGATCATCGACAAGAACATGGACCACGGCGAAGCCTCGGCCATCGCCGCGGGTGTGGTCTGGCACCGCTACCAGATGCCGGCCTATCACTTGCAGGCCAGCGATGGCCATGGCGTAACCCTGGTGAACATCGGCGTCGGGCCGTCCAACGCCAAGAACATCACCGACCACCTGGCCGTGCTGCGTCCGCATTGCTGGCTGATGATCGGCCACTGCGGCGGCCTGCGACAATCCCAGACTATCGGCGACTACGTGCTGGCCCACGCCTATATGCGCCGCGATGGCATCCTCGACCGCGTCGTGCCGCCGAACATCCCGATCCCGGCCCTGGCCGAAGTGCAACTGGCGCTTCAGCAGGCGGCGGCGAACATCACCGGCGAGAAAGGCGACGAGCTGAAAAAGCGCCTGCGCACCGGCACCGTGCTGACTTACGACGATCGCAACTGGGAGCTGCGCTGGGCCCAGGAGAGACCGTTGATCAACCTCTCCCGCGCCGTCGCGGTGGACATGGAAAGCGGCACCATCGCTGCCCAGGGTTATCGCCTGCGGGTGCCTTATGGCACGTTGCTTTGCGTTTCGGACAAACCGCTGCACAGCGAGATCAAGCTGCCGGGCTCGGCCAACGCGTTTTATGAGCGGGCGGTCAACCAGCATTTGAAGATCGGCATCGCGGCGCTGGACCTGCTGCGCAACGAACTCAACTCGTTGCACTCGCGCAAACTGCGCAGTTTCGATGAGCCGCCGTTCCGCTGA	MTEAFIVVQTAEQAVDRLAALHERATTALNQALKRYLKDRIEPDAEQRALFRYPALRLTYHCHGEVPQTTRAYAKVQLPGTYSVTVTHPAAFRKYLLEQLVPLMHDFTVTVEVGVSEQNIPYPYVVEQGDELAGSGVTAAVLARVFPSTDLSAATDGIADGLYDWENTDPLPLALFDAARVDFSLRRLVHYTGSDWRHVQPWILLTNYHRYVDQFIVHGLEQLRSDPRFVRMVLPGNVIIDKNMDHGEASAIAAGVVWHRYQMPAYHLQASDGHGVTLVNIGVGPSNAKNITDHLAVLRPHCWLMIGHCGGLRQSQTIGDYVLAHAYMRRDGILDRVVPPNIPIPALAEVQLALQQAAANITGEKGDELKKRLRTGTVLTYDDRNWELRWAQERPLINLSRAVAVDMESGTIAAQGYRLRVPYGTLLCVSDKPLHSEIKLPGSANAFYERAVNQHLKIGIAALDLLRNELNSLHSRKLRSFDEPPFR	PGPT0021500_677	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021500-amn-K01241	NA	NA
D1-36_04428	1650	aidB	COG1960	Putative acyl-CoA dehydrogenase AidB	ATGAACTTGCATCAGTTCGCCGAAACCCACGACGTCACCAATCAGCCGCCGTCCTTGGACGGCGCCAACCTGTACCGCATCGATCTGCCGTTGCAACAGTGGTCCCAGCGTTTCGGTGCCGGTTGGGCGCAGGCGCGGATCGATGCCTACGGTGCGTTGGCCGGCGGGCCGTTGATGGAAGCGGGGTTCCTGGCCAACCAGAACACGCCGGTGTTTTCCAGTCATGACCGGTATGGCCATCGCATCGACCTGGTGGAGTTTCATCCCGCGTATCACGAGTTGATGCGCACCGCCGTCGAGCACGGCTTGCCCAGCCTGCCGTGGGCTCATCCGCAACCCGGCGCCCATGTCGCCCGTGCGTCGATGACCTACCTGCACAGCCAGGCCGAAGCCGGCACCGGTTGCCCGTTGACCATGACTTTCGCCAGCGTGCCGGCCCTGCGCCTGCAACCGGACCTGGCCGAGCGCTGGGTGCCGAAGGTGCTCGCCACCGAGTACGACCCGCGCAACGTCGGCATCGCCCACAAGGCCGGGGTCACGATTGGCATGGCGATGACCGAAAAACAGGGCGGCACCGACGTGCGGGCCAACACCACCAAGGCGTATCCGGTAGGCGCCAGCGGGCCTGGCCAGGCCTACGAACTGGTGGGGCACAAATGGTTCTGTTCGGCGCCGATGTGCGACGCTTTCCTCACCCTGGCCCAGACCGACAAGGGCCTCACCTGTTTCCTGCTGCCGCGCCATCGCCCGGATGACACACGTAACCAGTTCTATATCCAGCGACTGAAAAACAAGCTGGGCAATTGTTCCAATGCGTCCAGCGAAGTGGAGTTTCGCGGTGCGCTGGCCTGGATGGTCGGGGAGGAGGGCCGAGGCGTGCCGACAATCATCGAGATGGTTGCCATGACTCGCTTCGATTGCATGGTCGGCTCCAGCGCGCTGATGCGCCAGGCGCTGACCCAGGCCAGTCATCACTGCGCGCACCGCAAGGTCGGTGGCAGAGTATTGAGCGAACAGCCATTGATGCAAAACGTGCTGGCCGACCTGGCGCTGGAAAGCGAAGCCGCGCTGGCCCTGAGCCTGCGCATGGGGCGGGCGCTGGACCACTTGAACGACGACCACGAGGCCAAGTTCGCCCGACTGGTGACGGCGGTGGGCAAATACTGGATCTGCAAGCGCGCCCCCGCGATGATCAACGAAGCCGCCGAGTGCATGGGCGGCGCCGGCTACGTCGAAGACAGCATCCTGCCTCGCCTGTATCGTGAGGCGCCGGTCAATTCGACTTGGGAAGGCTCCGGCAATGTGCAATGCCTCGATGTGTTGCGGGCCCTGTCCAAGGAACCGGGCGTACTGGAAGTGCTGTTCAACGAACTGGGCGATGGCCATGGCGATAAACGCCTGGCCCGCCACATCGACCAATTGCACGCGGCATTCAAAGACACCGACGACATCCAATACCGCGCCCGGCAATTGACCGAAGACATCGCTGTTGGGCTGCAGGCGCGATTGCTGCTCGAAGCGGGCAACAGCGACGTCAGCGATGGGTTCATTGCCAGTCGCCTTGGGGCCGGCGCCAGGGTCTACGGCGCATTGCCCCGAGGCTTGAATGTGGAGGCCATCGTCGCTCGCTCGACCCCACGGGGTTTCTAA	MNLHQFAETHDVTNQPPSLDGANLYRIDLPLQQWSQRFGAGWAQARIDAYGALAGGPLMEAGFLANQNTPVFSSHDRYGHRIDLVEFHPAYHELMRTAVEHGLPSLPWAHPQPGAHVARASMTYLHSQAEAGTGCPLTMTFASVPALRLQPDLAERWVPKVLATEYDPRNVGIAHKAGVTIGMAMTEKQGGTDVRANTTKAYPVGASGPGQAYELVGHKWFCSAPMCDAFLTLAQTDKGLTCFLLPRHRPDDTRNQFYIQRLKNKLGNCSNASSEVEFRGALAWMVGEEGRGVPTIIEMVAMTRFDCMVGSSALMRQALTQASHHCAHRKVGGRVLSEQPLMQNVLADLALESEAALALSLRMGRALDHLNDDHEAKFARLVTAVGKYWICKRAPAMINEAAECMGGAGYVEDSILPRLYREAPVNSTWEGSGNVQCLDVLRALSKEPGVLEVLFNELGDGHGDKRLARHIDQLHAAFKDTDDIQYRARQLTEDIAVGLQARLLLEAGNSDVSDGFIASRLGAGARVYGALPRGLNVEAIVARSTPRGF				NA	NA	NA	NA	NA
D1-36_04429	2385	rcsC_22		Sensor histidine kinase RcsC	ATGCGCTATTTGCTGATGTTGCTGCTGTGCTTGTCCCCCTTGGCAAGTGCGCTCGAATTCGATGAATCAACCCAAAGCCTGCCTTTGGGCCACGCTTTGCAAGTGTTGGAAGACCCCAGTGGCACGGCCTCCATCGATGAGATTCTGGCCCAGGCCGCGGCCGATCGTTTCAAGCCCCATGACAAAGCCACGCTGAACGCCGGTTACTCACGTTCGGCGTTCTGGTTGAAAGTGGATCTGCACTATCGTCCTGCCAATCCCGACGCCCAGCGGACCTGGTTGCTGGAGCTGGCGTATCCGCCGCTGGATCATCTGGACCTGTACCTGGCCGACGGCAGCGGAGCCTATCGCCTGGTCCGCCAGACGGGCGATGCTCTGCCTTTTGCCAGTCGCGAGGTCCGCCAGAACAATTACCTGTTCAGCCTGGACTTCCAGCCGGATCAACGCCAGGTCGTGTACTTGCGTCTGCAAAGCCAGGGTTCGATCCAGGCGCCGTTGACGCTGTGGTCGAGCACGGCGTACCTGGAGCAGCAGCCGGTGCGCCTGTATGTGTTGGGGATCATCTATGGCGTGCTGCTGGGGATGCTGGTCTACAACCTGTTCATTTACCTGAGCGTGCGCGACACCAGTTATTTGTACTACATCTTCTATATCGCCTCGTTCGGCCTGTATCAGTTGTCGGTCAATGGCGCGGCGGTGGAATATTTCTGGCCGGACAATCCCTGGTGGGCCAATGCCGCAACGCCGTTCTTCATCGGCTGCGCGGGGCTGTTCGGCAGTCAATTCGCCCGCAGCTTCCTGCAGACCTCACAACACAGTCGCTGGCTCGATCGACTGCTGCTGGCGCTGATCGCCTACAGTGCCGTGGTGGTAGGGCTGTCGCTGATGACCAGCTACGCCTTGGCCCTGCGGCTGGCGACGGCGTTGGCCCTGGTATTTACCGTGGTGATTTTCGCCGCCGGGCTGTTCGCCTGGTGGCGTGGCCTGCGGGTGGCGCGTTATTTCATCATCGCCTGGTCGGCGTTCCTGCTGGGGGGGATCGTCAACACGATGATGGTGCTCGGTTACCTGCCGAACATCTTCCTGACCATGTATGCCAGCCAGATCGGCTCTGCCATCGAGGTGGCATTGTTGTCCCTGGCCCTGGCGGACCGCATCAACGCCATGCGCGAGCAGCAGGCCCAGACGCTGTTCGACGCCGGACAGAAACTGGAAGTGCTCAACCAGCAATTGGCCCACGGCAACAAACTCAAGGATGAATTCCTCGCCACCCTCACCCATGAATTGCGCACCCCGATGAACGGTGTGATCGGCTCCCTGGAGCTGATGGAAACCGTCGAGATGGACGAGGAGCTGACCCAGTATCAACAGACCGCCGCCGGTTCGGCGCGGGACATGATGCGCATGGTCAACGGCATCCTCACTCTTACCGAGTTGCAGGCCGGCAAGCTCAAGGTCTACCCGACGCCGTTCAGCCTGCGTGGTGTGATTGATGCCCTGCAGGTGCAGTTCGGTGCCAACGCGGCGGCCAAGGGCTTGGACTTCAAGGTCGACATAAGCCCCAGCCTGGCGGATCGGTTGGTGGGCGACAGCGCTAAATTGGCCCAGTGCCTGGAATGCCTGCTGGACAACGCTATCAAGTTCACCCGCTCGGGTGGCATCGCCCTGCGGGTCAGTGGACGACCGTCGGAGCTCGATCGCCTGGTGCTGTCATTCGCGGTGATCGACACCGGCATCGGTTTCACCGATCTTGGCGAGGCGACGTTGTACCAGCGTTTCTTCCAGCTCGATGGCTCGATGACGCGCGAGTACGGGGGGCTCGGCGTAGGCTTGGCGATCTGCCGCCAACTGGTCGAATTGCTCGACGGGCGCCTGACTCATATTTCCGAGCCGGGGCGCGGCAGCCGTTTCCAGCTGGACGTGGAATTCGAAATCGCCTTGCCAGTGGAGGTCCCGACGCCTTTTTCGTTCGGTGGGCGCCGGGATTCCCGCCAGCCCCAGGACTGCACGGTACTCCTGGCGGACGACAACCCCGTCGATCAATTGGTCATGCGAGGCATGTTGCTCAAGCTGGGCTATCGGGTGCGCACCGCCGACAACGGTCGGGCGGCCCTGGACCTGCTACAGGGCGAGAGTGTTGACGCGGTGCTCCTCGATTGCCATTCGGCGCCATTGGACGGGGTGTCGCTCTGTTGCCAGATCCGAGCGCTGTCCGGTTGTGAGGATCTGCCCGTGCTGGTAGTCAGTCCGAACCTCGAACAGGAGCGATGCCCGTCTGGAGCGTTGATCGACTATCTGAGCAAACCGGTGAAGTTCGAGGTGCTCCAGGCGATTCTGCAGCGACGGGTGCTTTGTCCGAAACAGGGTGAAAGCGCCGATATTTAG	MRYLLMLLLCLSPLASALEFDESTQSLPLGHALQVLEDPSGTASIDEILAQAAADRFKPHDKATLNAGYSRSAFWLKVDLHYRPANPDAQRTWLLELAYPPLDHLDLYLADGSGAYRLVRQTGDALPFASREVRQNNYLFSLDFQPDQRQVVYLRLQSQGSIQAPLTLWSSTAYLEQQPVRLYVLGIIYGVLLGMLVYNLFIYLSVRDTSYLYYIFYIASFGLYQLSVNGAAVEYFWPDNPWWANAATPFFIGCAGLFGSQFARSFLQTSQHSRWLDRLLLALIAYSAVVVGLSLMTSYALALRLATALALVFTVVIFAAGLFAWWRGLRVARYFIIAWSAFLLGGIVNTMMVLGYLPNIFLTMYASQIGSAIEVALLSLALADRINAMREQQAQTLFDAGQKLEVLNQQLAHGNKLKDEFLATLTHELRTPMNGVIGSLELMETVEMDEELTQYQQTAAGSARDMMRMVNGILTLTELQAGKLKVYPTPFSLRGVIDALQVQFGANAAAKGLDFKVDISPSLADRLVGDSAKLAQCLECLLDNAIKFTRSGGIALRVSGRPSELDRLVLSFAVIDTGIGFTDLGEATLYQRFFQLDGSMTREYGGLGVGLAICRQLVELLDGRLTHISEPGRGSRFQLDVEFEIALPVEVPTPFSFGGRRDSRQPQDCTVLLADDNPVDQLVMRGMLLKLGYRVRTADNGRAALDLLQGESVDAVLLDCHSAPLDGVSLCCQIRALSGCEDLPVLVVSPNLEQERCPSGALIDYLSKPVKFEVLQAILQRRVLCPKQGESADI	PGPT0025890_179	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR|BF-Gac|Rsm_PATHWAY,PGPT0025890-ladF-K20971	NA	NA
D1-36_04430	798	thiD		Hydroxymethylpyrimidine/phosphomethylpyrimidine kinase	ATGAATATCTACAGCTCTCGCCCCGTTGTCCTCTGTCTCTCCGGCCACGACCCCAGTGGTGGCGCCGGCTTGCAGGCAGATATCGAAGCCCTGCTTGCCCAGGGATGTCATGCCGCCCCGGCCGTTACTGCGTTGACCGTGCAAGACACGGTCAACGTCAGCGATTTCCGCGTGCTGGATCGCGAGTGGGTGCTGGCGCAAGCCAATGCCGTGCTCAACGACTCCCCCGTCGCGGCGGTCAAGCTGGGCATGCTCGGCTCGCTGGAAATGGTCGACACCGTGGTCGAGCTGCTCCAGGCACACCCGCAGTTGCCGATGGTCTGCGACCCGGTGCTGCGCGCCGGCGGTGGCGGACGGCTGGGCAAGGATGAAGTCGGCTACGCCATGCGCGAGCGCCTGCTGCCCCTGGCCACCATCGCCACGCCCAACCTGCCTGAAGCACGCATCCTCGCCGAACTGCCCGAAGGCAGCGCCGATGAATGCGCCGAAAAACTGCTGCCCTTCGTCAAGCACCTGCTGATCACCGGCGGCCATGGCGACGAGCATGAAGTCCACAATCGCCTGTACAGCCGCGACGGACACCGCGAAACGTTCACCTGCCAGCGCTTGCCCGGCAGTTATCACGGCTCCGGCTGCACCCTCGCCAGCGCCATCGCCGGCCGACTGGCCCAGGGCGAACAACTCTCCAGCGCGGTCAAGACAGCCGTGGACTACACGTGGCGCACGCTGCGCGATGCCGAACAATTGGGAAAAGGCCAGTTCGTACCGCGTCGCCTACCGCTGGATTTCTGCTCGTAG	MNIYSSRPVVLCLSGHDPSGGAGLQADIEALLAQGCHAAPAVTALTVQDTVNVSDFRVLDREWVLAQANAVLNDSPVAAVKLGMLGSLEMVDTVVELLQAHPQLPMVCDPVLRAGGGGRLGKDEVGYAMRERLLPLATIATPNLPEARILAELPEGSADECAEKLLPFVKHLLITGGHGDEHEVHNRLYSRDGHRETFTCQRLPGSYHGSGCTLASAIAGRLAQGEQLSSAVKTAVDYTWRTLRDAEQLGKGQFVPRRLPLDFCS	PGPT0008915_3424	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
D1-36_04431	627	thiE_2	COG0352	Thiamine-phosphate synthase	ATGAAATTACGTGGCCTTTATGCCGTGACCGACAGCCAACTGCTGGCCGGCAAGTTCCTAGCCTATGTGCAAGCCGCGCTGGAAGGCGGCGTGACCTTGCTGCAGTACCGCGACAAAAGCAGCGACGAGGCCCGCCGCCTTCGTGAGGCCGAGGCCCTGCGCAACCTGTGCGAGCGCTACAAGACCCAACTGATCATCAATGATGACGCCGAATTGGCCGCGCGCCTGGGCGTCGGCGTGCACCTGGGCCAGACCGATGGCCCGTTGGCGCCGGTGCGGGCGTTGCTGGGCCACAAGGCAATCGTCGGCTCAACCTGCCACGCCAGCCTGGAGTTGGCCGAACAGGCCGTCAACGAAGGCGCCAGCTACGTCGCGTTCGGGCGCTTCTTCAACTCCAGCACCAAGCCTGGGGCACCCAGCGCAAACCTTGAACTGCTCGAACAGACCCGCATCAAACTGCATATACCGGTTTGCGCCATCGGCGGCATCACCCTGGAAAACGCCGCCCCGCTGGCGGCCCATGGGGTCGACCTGCTTGCGGTGGTCCACGGCCTGTTCGGCGCCGACAGCACCGCTGAAGTGACGCGCCGCGCCCGCGCCTTCAACGACCTGCTGCACATCAAATAG	MKLRGLYAVTDSQLLAGKFLAYVQAALEGGVTLLQYRDKSSDEARRLREAEALRNLCERYKTQLIINDDAELAARLGVGVHLGQTDGPLAPVRALLGHKAIVGSTCHASLELAEQAVNEGASYVAFGRFFNSSTKPGAPSANLELLEQTRIKLHIPVCAIGGITLENAAPLAAHGVDLLAVVHGLFGADSTAEVTRRARAFNDLLHIK	PGPT0008995_3763	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
D1-36_04432	1284	hemL	COG0001	Glutamate-1-semialdehyde 2,1-aminomutase	ATGTCCCGTTCCGAAACCCTGTTTGCCAACGCCCAGAAACATATCCCCGGCGGCGTGAACTCGCCTGTTCGCGCGTTCAAGAGCGTCGGCGGCACACCGCTGTTCTTCAAGCACGCCGAAGGCGCGTATGTCACCGATGAAGACGACAAGCGCTACGTTGACTACGTCGGCTCGTGGGGGCCGATGATCCTCGGCCATAGCCATCCGGACGTGCTGGATGCGGTGCGCCAGCAGCTGGAGCACGGGCTGTCCTATGGCGCGCCGACGGCGATGGAAACCGAGATGGCGGACCTGGTCTGCTCCATCGTGCCGTCGATGGAAATGGTGCGCATGGTCAGCTCCGGCACCGAAGCGACCATGAGCGCGATCCGCCTGGCCCGTGGCTACACCGGCCGCGACAGCATCATCAAATTCGAAGGCTGCTACCACGGCCACTCCGACAGCCTGCTGGTCAAGGCCGGTTCCGGCGCCCTGACCCAAGGCGTTCCGAGCTCGGCGGGCGTGCCAGCGGCATTTGCCAAGCACACCCTGACCCTGCCGTTCAACGACCTTGAAGAAGTCGAGAAGATGCTCGGCGAAGTCGGTCAGGAGGTGGCATGCATCATCGTCGAGCCGGTGGCCGGCAACATGAACTGCGTGCCGCCGGCGCCAGGCTTTCTCGAAGGTCTGCGCAGCCTGTGCGACCAGCATGGCGTGGTGCTGATTTTCGATGAAGTGATGACCGGCTTCCGTGTCGCCCTTGGTGGCGCCCAGGCCCACTATGGCGTGACGCCGGATTTGAGCACCTTCGGCAAGATCATCGGTGGCGGCATGCCCGTAGGCTGCTTCGGCGGCAAACGCGCCATCATGGAATGCATCGCGCCGCTGGGCCCGGTCTATCAGGCCGGCACGCTGTCGGGCAACCCGTTGGCGATGGCTGCTGGCCTGACCACCCTGCGCCTGATCAGCCGCCCGGGCTTCCACGCCGAACTGACCGAATTCACCACGCGCCTGCTCGATGGCCTGCAGGTGCGCGCCGACGCGGCCGGCATTCCGTTTGTGACCACCCAGGCCGGCGGCATGTTCGGCCTGTATTTCAGCGGCGCCGATGACATCGTGACCTTCGACGACGTGATGGCCAGCGACGCCGACCGCTTCAAGCGCTTCTTCCACCTGATGCTCGAAGGCGGCGTCTACCTGGCGCCAAGCGCCTTCGAAGCCGGCTTCACCTCCATCGCCCATGGCGAGGCGGAACTGAAAATTACCCTCGACGCGGCTGAACGAGCCTTCGCGGCACTGAAATAA	MSRSETLFANAQKHIPGGVNSPVRAFKSVGGTPLFFKHAEGAYVTDEDDKRYVDYVGSWGPMILGHSHPDVLDAVRQQLEHGLSYGAPTAMETEMADLVCSIVPSMEMVRMVSSGTEATMSAIRLARGYTGRDSIIKFEGCYHGHSDSLLVKAGSGALTQGVPSSAGVPAAFAKHTLTLPFNDLEEVEKMLGEVGQEVACIIVEPVAGNMNCVPPAPGFLEGLRSLCDQHGVVLIFDEVMTGFRVALGGAQAHYGVTPDLSTFGKIIGGGMPVGCFGGKRAIMECIAPLGPVYQAGTLSGNPLAMAAGLTTLRLISRPGFHAELTEFTTRLLDGLQVRADAAGIPFVTTQAGGMFGLYFSGADDIVTFDDVMASDADRFKRFFHLMLEGGVYLAPSAFEAGFTSIAHGEAELKITLDAAERAFAALK	PGPT0003680_4471	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003680-hemL-K01845	NA	NA
D1-36_04433	555			hypothetical protein	ATGAACCGCACCGGCCGCACCCTTGCCTTGGGCTGCCTGTTGCTCCTTCAGCCCCTGCTCGCTCATGCACAGGCAGGCGGTAACTCGTTGTTGATCCCGGCGATGGGCCGTTGCACCCTCAACACCCAGCCACAAGATCTCGCACCGGCACTTGACGCCTGTCGAAAAGCGGCCGACGAGGGCGATGCCCAAGCGCAATATGAATTGGGCGAGTTCTACTACGACGGCAAGGCCGCGCCGCGCGACCTCAAGCTGGCCCTCAACTATTTCGAAAAAGCCTCGCTACAAGGCCACGCCCAGGCGCAGTTCAAGCTTGGCGGCATGTTCTTCCATGGCGAAGGCGTACCGGCCAACAATGTCCAGGCGTATATCGTCTTGAAGATGGCGGCGGTCAACGGCGCCGAAGAGGCATTGGACACCGCCGACGAAGTCGCCGAGCAGATGCCCCGCGACGAGCTGGAAGTGGCCACCCAGGTGCTGGGGCAGATTTTTCGCAAATACCTGATGGAATTGCAGAACGCCGACGGACGCACGCCGTTCTCGCCACTGCCCTGA	MNRTGRTLALGCLLLLQPLLAHAQAGGNSLLIPAMGRCTLNTQPQDLAPALDACRKAADEGDAQAQYELGEFYYDGKAAPRDLKLALNYFEKASLQGHAQAQFKLGGMFFHGEGVPANNVQAYIVLKMAAVNGAEEALDTADEVAEQMPRDELEVATQVLGQIFRKYLMELQNADGRTPFSPLP	PGPT0000855_6128	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	OTHER_MOTILITY_REGULATING_FUNCTIONS	MOTILITY-ACIDITY|NITROGEN_RELATED_REGULATION,PGPT0000855-exoR-K07126	NA	NA
D1-36_04434	330			hypothetical protein	ATGACCAAACGTGAAGCTCCAATCTACAAGGTGATTTTCCTCAACCAGGGCCAGGTGTTCGAGATGTACGCCAAGCAGATCTATCAGAGTGATCTGTGGGGCTTTCTGGAAGTGGAAGAGTTCGTCTTTGGCGAGCGTACACAAGTGGTCGTCGACCCAAGCGAAGAAAAGCTCAAGGCGCAATTCGAGGGCGTGGTGCGCAGCTTCGTGCCGATGCATTCGATCGTGCGCATCGATGAGGTCGAGCGCCTTGGCACTCCGAAAATCAGCGAAGCCCGCGGCGCGGTCGGCAATGTGATGCCGTTTCCGATGCCGATGCCTGAGAAGTAG	MTKREAPIYKVIFLNQGQVFEMYAKQIYQSDLWGFLEVEEFVFGERTQVVVDPSEEKLKAQFEGVVRSFVPMHSIVRIDEVERLGTPKISEARGAVGNVMPFPMPMPEK				NA	NA	NA	NA	NA
D1-36_04435	1329	miaB	COG0621	tRNA-2-methylthio-N(6)-dimethylallyladenosine synthase	ATGGCCAAGAAGCTTTACATCGAAACCCACGGTTGCCAGATGAACGAGTACGACAGCTCGCGCATGGTCGATCTGCTGGGTGAACACCAGGCCCTGGAAGTCACCGCCCGCGCCGAAGACGCAGACGTGATCCTGCTCAACACCTGCTCGATCCGCGAGCGCGCCCAGGACCGGGTGTATTCCCAACTGGGCCGCTGGCGTGAACTGAAGCTGGCCAACCCGGAAATGGTCATCGCGGTCGGCGGCTGCGTCGCCAGCCAGGAAGGCGCGGCCATTCGTGACCGCGCGCCGTACGTGGACGTGGTCTTCGGCCCCCAGACCCTGCACCGCCTGCCGGAAATGATCGACGCGGCGCGCGTGACCAAACTGCCCCAAGTCGACGTTTCGTTCCCCGAAATCGAGAAGTTCGACCACCTGCCCGAGCCGCGCATCGACGGCCCCAGCGCTTATGTGTCGGTGATGGAAGGCTGCAGCAAATACTGCACGTTCTGCGTGGTCCCCTATACCCGCGGCGAAGAGGTCAGCCGGCCGTTCGACGACGTGATCGCCGAGATCATCCACCTGGCGGAAAACGGCGTGCGTGAAGTGACCTTGCTGGGGCAGAACGTCAACGGCTATCGCGGCCTGACCCACGACGGTCGCCTGGCGGACCTCGCCGAGTTGATCCGCGTTGTGGCGGCGGTGGACGGTATCGACCGGATCCGCTACACCACGTCCCATCCGTTGGAGTTTTCCGACAGCCTGATCCAGGCCCACGCCGAAGTTCCCGAGCTGGTCAAGCACCTGCACCTGCCGGTGCAATCGGGTTCGGACAGAATCCTCGCAGCGATGAAGCGCAACCACACGGCGCTGGAGTACAAATCCAAACTGCGCAAGTTGCGCGCCGCAGTGCCGGGGATCTGTATCAGCTCGGACTTTATCGTCGGATTCCCTGGCGAAACCGAGAAAGATTTCCAGCAGACCATGAAGCTGATCGAAGACGTGGGCTTCGACTTCTCCTATTCCTTTGTCTACAGCCAGCGCCCCGGCACGCCGGCGGCCGACCTGGCGGATGAGACGCCCGAGGAAGTGAAGAAGGAACGGCTCAATGCTTTGCAGCACCGCTTGAACCAGCAGGGCTTTGAAATCAGCCGACAGATGGTCGGTTCGATCCAGCGGATCCTGGTCACCGACTACTCGAAAAAAGACCCGGGCGAATTGCAGGGCCGTACGGAAAACAACCGTATCGTCAACTTCCGCTGCGACACGCCAGCCCTGATCGGCCAGTTCGCCGACGTACACATCGACGCCGCGCAACCGCACTCGCTGCGGGGTTCGCTGGTGCAGTAA	MAKKLYIETHGCQMNEYDSSRMVDLLGEHQALEVTARAEDADVILLNTCSIRERAQDRVYSQLGRWRELKLANPEMVIAVGGCVASQEGAAIRDRAPYVDVVFGPQTLHRLPEMIDAARVTKLPQVDVSFPEIEKFDHLPEPRIDGPSAYVSVMEGCSKYCTFCVVPYTRGEEVSRPFDDVIAEIIHLAENGVREVTLLGQNVNGYRGLTHDGRLADLAELIRVVAAVDGIDRIRYTTSHPLEFSDSLIQAHAEVPELVKHLHLPVQSGSDRILAAMKRNHTALEYKSKLRKLRAAVPGICISSDFIVGFPGETEKDFQQTMKLIEDVGFDFSYSFVYSQRPGTPAADLADETPEEVKKERLNALQHRLNQQGFEISRQMVGSIQRILVTDYSKKDPGELQGRTENNRIVNFRCDTPALIGQFADVHIDAAQPHSLRGSLVQ	PGPT0007215_2615	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-CYTOKININ_METABOLISM	PHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007215-miaB-K06168	NA	NA
D1-36_04436	1170	ybeZ	COG1702	PhoH-like protein	ATGCGCTGGATACAAGACCGTTTTCGCGAGCAGGCTCGCTCCCACAATGGGATGTGTAGGTCCTGTTGTCAGATTGCGCCGCTTAAGACCTTTCGCACCCAGCCTACTGGCGTTATCCTTGATTTCACCTTAATTGCCCCTGGGCGGCTAAAAACGACCTTGAACGCACCCATCGAACCTCATCGTTTCATTCTCGAGCCCTTTGAGGCTCGCCGCTTCGCCAATCTGTGCGGGCAATTCGACGAGCATCTTCGCTTGATCGAACAGCGCCTGGCCATCGAGATCCGCAATCGCGGGAACCAGTTCGAACTGATCGGCGATCCCAAGCACACCACCTCCGCGGAAAACCTGCTGCGCCGTCTCTACCGAGAAACCAAGGCGAGCGAGCTGTCTCCGGACATGGTCCACCTGTTCCTGCAAGAGTCGGCGGTCGAAGAACTCGACAATCACGCCCCGTCGGAACCTGCCGTGGCCCTGCGCACGAAAAAAGGCATGATTCGCCCTCGCGGCTTGAATCAGCAGCGCTACGTGAAGGAAATCCTGGCCAACGACATCAATTTCGGCATCGGCCCGGCCGGTACCGGCAAGACCTACCTGGCCGTTGCCTGTGCGGTCGACGCGTTGGAGCGCGAACAGGTGCGCCGCATCCTGCTGGTGCGTCCCGCCGTCGAAGCAGGGGAAAAACTCGGTTTCCTGCCCGGCGACCTGACCCAGAAGATCGACCCGTATCTGCGCCCGCTCTATGACGCGCTGTACGAAATGCTCGGCTTCGAATACGTCGCCAAGCTGATCGAGCGACAGGTCATCGAGGTCGCGCCGCTGGCCTACATGCGTGGTCGGACCCTGAACAACAGCTTCATCATCCTCGACGAAAGCCAGAACACCACCGTCGAACAGATGAAGATGTTCCTGACCCGGATCGGTTTCGGCTCCACCGCCGTCATCACCGGGGACATCACCCAGGTCGACCTGCCCCGAGGCACCAAGTCCGGGCTGAACCACGTGATCCAGGTGCTCAAGGACGTCCCGGGCATCAGCTTCACGCACTTCATGCCCAAGGACGTCGTACGCCATCCGTTGGTGCAGCGCATCGTCGAAGCCTACGAGCGTTTCGAGAACCGCGCCGATGAAGATTCGGCCGAAAGCAAAGGCAATCGCCACAATGCTTGA	MRWIQDRFREQARSHNGMCRSCCQIAPLKTFRTQPTGVILDFTLIAPGRLKTTLNAPIEPHRFILEPFEARRFANLCGQFDEHLRLIEQRLAIEIRNRGNQFELIGDPKHTTSAENLLRRLYRETKASELSPDMVHLFLQESAVEELDNHAPSEPAVALRTKKGMIRPRGLNQQRYVKEILANDINFGIGPAGTGKTYLAVACAVDALEREQVRRILLVRPAVEAGEKLGFLPGDLTQKIDPYLRPLYDALYEMLGFEYVAKLIERQVIEVAPLAYMRGRTLNNSFIILDESQNTTVEQMKMFLTRIGFGSTAVITGDITQVDLPRGTKSGLNHVIQVLKDVPGISFTHFMPKDVVRHPLVQRIVEAYERFENRADEDSAESKGNRHNA	PGPT0002700_124	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-PHOSPHATE_STARVATION_RESPONSE,PGPT0002700-phoH-K06217	NA	NA
D1-36_04437	495	ybeY	COG0319	Endoribonuclease YbeY	ATGAAGATTCGGCCGAAAGCAAAGGCAATCGCCACAATGCTTGAACTCGACCTGCAAGAGGCCAGTGAACACCCCGCCCCCAGCGAAGCCCAGTTCCGCCAATGGTGCGAACTGGCGCTGCGCCAGCGCAGCGCCGACTCGGAACTGACGATCCGCCTGGTGGACGAAGCCGAAGGCCGCGAGCTGAACCACACCTGGCGGCAGAAAGACTACGCCACCAACGTGCTGTCGTTCCCCGCCGACGTGCCCGACGAAATGCTCGACATCCCGTTGCTGGGGGACCTGGTGATCTGCGTCCCGGTCGTCGAGCGCGAGGCCGCCGAACAAGGCAAGTCACCCGAAGCCCACTGGGCCCACCTGGTGATCCATGGCTGCTTGCATTTGCTTGGTTACGACCATATGGAAGAGGACGAAGCCGAGGAAATGGAAGCGCTGGAACGAACGTTGCTTGCCGAGCTGGGTCATCCCGACCCGTATGCCGGCGACGAACACTGA	MKIRPKAKAIATMLELDLQEASEHPAPSEAQFRQWCELALRQRSADSELTIRLVDEAEGRELNHTWRQKDYATNVLSFPADVPDEMLDIPLLGDLVICVPVVEREAAEQGKSPEAHWAHLVIHGCLHLLGYDHMEEDEAEEMEALERTLLAELGHPDPYAGDEH				NA	NA	NA	NA	NA
D1-36_04438	840	corC	COG4535	Magnesium and cobalt efflux protein CorC	ATGAGCGAAGATCGATCGACCAACGGGCAGAAGTCATGGCTGGGCAAGCTCACCCAGGCTTTTGCCCATGAGCCGAAAAACCGCCAGGAGCTGTTGGAGCTGCTGCGCGATGCACACCAGAACAAATTGCTGGACAGCGAAGCGCTGGCCATCGTCGAAGGCGCCATCCAGGTGGCTGACCTGCAAGTTCGGGACATCATGGTCCCGCGCTCGCAGATGATCAGCATCAAGGCGACCCAGACTCCCCGCGAATTCCTGCCCGCCGTGGTCGACTCCGCTCACTCGCGCTACCCGGTCGTCGGCGAGAGCCATGACGACGTCATGGGCGTGCTGCTGGCCAAGGACCTGCTGCCGCTGATCCTCCAGGAGAACGGCGACAGTTTCAATATCAAGGACCTGCTGCGCCCGGCCACGTTCGTGCCCGAGTCCAAGCGCCTGAACGTACTGCTGCGTGAATTCCGCGCCAACCACAACCACATGGCCATCGTCATCGACGAATACGGCGGCGTGGCCGGGCTGGTCACCATCGAAGACGTGCTTGAACAGATTGTCGGCGACATCGAGGATGAGCACGACGTCGAGGAAGACAGCTACATCAAGCCCTTGCCCAGCGGCGACTTCCTGATCAAGGCCCTGACGCCGATCGAGAACTTCAACGAGTTCTTCGACAGCGAATTCTCCGACGATGAGTTCGACACCGTCGGCGGCCTGGTGATGAGTGCCTTCGGCCACCTGCCCAAGCGCAACGAAACCACCGAGATCGGCTCCTGGCGCTTCCGCATCCTGAATGCCGACAGCCGCCGGATTCATCTGCTGCGCCTGTCACCCATTGCCCGTTAA	MSEDRSTNGQKSWLGKLTQAFAHEPKNRQELLELLRDAHQNKLLDSEALAIVEGAIQVADLQVRDIMVPRSQMISIKATQTPREFLPAVVDSAHSRYPVVGESHDDVMGVLLAKDLLPLILQENGDSFNIKDLLRPATFVPESKRLNVLLREFRANHNHMAIVIDEYGGVAGLVTIEDVLEQIVGDIEDEHDVEEDSYIKPLPSGDFLIKALTPIENFNEFFDSEFSDDEFDTVGGLVMSAFGHLPKRNETTEIGSWRFRILNADSRRIHLLRLSPIAR	PGPT0004695_1225	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0004695-corC-K06189	NA	NA
D1-36_04439	1524	lnt	COG0815	Apolipoprotein N-acyltransferase	ATGCGCTGGATAAACCGCCCCGGCTGGCCCGGTAACCTGCTGGCCGTGGCGGCCGGTGCGATCACCACCCTGGCCCTGGCGCCGTTCGATATCTGGCCGCTGGCATTGCTGGCGGTCGGGCTGTTCTATGCTGGCCTGCGCGAGCTCTCGCCGCGCCAGGCCCTGGGGCGCGGCTGGTGTTTCGGTTTCGGCCTGTTTGGCGCCGGCACCAGTTGGATCTACGTCAGCATCCATAACTTCGGTGGCGCCTCGGTGCTGCTGGCCGGGCTTTTGATGCTGCTGTTCATTGCCGCGATCGCTTGGTTCTTCGCCCTGCCCGCCTGGCTCTGGGCGCGCTGGCTGCGGCGCAACGAGGCACCGTTGGCCGATGCCCTGGCCTTCGCCGCGCTCTGGCTGGGCCAGGAAGCCTTTCGGGGCTGGTTCCTGACCGGATTCCCCTGGCTTTACTCCGGCTACAGTCAACTGGACGGCCCACTGGCCGGCCTTGCACCGCTGGGTGGCATGTGGCTGATCTCCTTCACCCTGGCCCTGACCGCCGCGCTGTTGTACAACGCGCCCCGATTACTGCGTTCCGGGCGCAAAGGCTTCGTCGTCGCGGGTGTGGCCTTGCTGATCGGCCCCTGGGCGGCCGGCTTTGCGCTCAAGGGGCATGCCTGGACCAGCCCCTCGGGCGAGCCGCTGAGTGTCGCGGCCATCCAGGGCAACATCGAACAAAGCATGAAGTGGGACCCCGAGCAGCTCAACGCGCAACTGGCGCTGTACCGTGACATGAGCTTCACGTCCAAGCGCGTCGACCTGCTGGTCTGGCCGGAAACGGCCGTGCCGGTACTCAAGGAGTCCGCCCAGGGCTACCTGGACATGATGGGCAGTTTCGCCGCCGAGCGGCATTCGGCGCTGATCACCGGCGTACCGATCCGCCAGGAAGTACGTCATGAGAAGCGCTATTTCAACGGCATCACCGTGACCGGCGAAGGCGACGGCACTTACCTGAAGCAGAAACTGGTGCCCTTCGGCGAGTACGTGCCATTGCAGGATATCCTGCGCGGCCTGATCGCGTTTTTCGACCTGCCAATGTCGGATTTCGCCCGCGGCCCGGCTGATCAGCCATTGCTGCAGGCCAAGGGTTACCAGATCGCGCCATTCATTTGCTACGAAGTGGTCTACCCGGAATTCGCTGCCAACCTTTCAGCGCGAAGCGATCTGTTGCTGACGATCAGCAACGACACTTGGTTCGGTACGTCGATCGGCCCGTTGCAGCACTTGCAAATGGCCCAGATGCGCGCGCTGGAGGCCGGGCGCTGGATGATTCGCGCCACCAACAATGGCGTGACCGGCCTGATCAACCCCTTCGGCCAGATCACCGTCCAGATTCCGCAGTTCCAACGCGGCATCCTCTACGGTGAAGTGGTGCCGATGCACGACCTGACGCCGTACCTTCAATGGCGCTCGTGGCCGCTGATCATTTTGTGTGTATTGCTTTTGGGTTGGGCGCTGGTGGCGGGGCGGATGGCCAAGACGGTTTAA	MRWINRPGWPGNLLAVAAGAITTLALAPFDIWPLALLAVGLFYAGLRELSPRQALGRGWCFGFGLFGAGTSWIYVSIHNFGGASVLLAGLLMLLFIAAIAWFFALPAWLWARWLRRNEAPLADALAFAALWLGQEAFRGWFLTGFPWLYSGYSQLDGPLAGLAPLGGMWLISFTLALTAALLYNAPRLLRSGRKGFVVAGVALLIGPWAAGFALKGHAWTSPSGEPLSVAAIQGNIEQSMKWDPEQLNAQLALYRDMSFTSKRVDLLVWPETAVPVLKESAQGYLDMMGSFAAERHSALITGVPIRQEVRHEKRYFNGITVTGEGDGTYLKQKLVPFGEYVPLQDILRGLIAFFDLPMSDFARGPADQPLLQAKGYQIAPFICYEVVYPEFAANLSARSDLLLTISNDTWFGTSIGPLQHLQMAQMRALEAGRWMIRATNNGVTGLINPFGQITVQIPQFQRGILYGEVVPMHDLTPYLQWRSWPLIILCVLLLGWALVAGRMAKTV	PGPT0024470_2975	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024470-lnt-K03820	NA	NA
D1-36_04440	762			hypothetical protein	ATGCCGTTTCGCTATTTCATCAAACAACTTCTATTGCCGCCTGGCATTCTTTTGCTTTTGCTGGCGCTTGCCTGGTGGTGGCGTGATTCCCGGCCGCGCCTGGCCCGCGTGTGTTTTATCCTGGGGCTGGGTGGTTTCTGGCTGATGAGCCTGCCGATAGTGGTGCAGTGGAGCGCCAAGGCATTGGAGCGCGAACCGCCGCTGCTGCGCAGTGAATGGGCGACCCTGGCCCAGCGCGCCGACGCCATCGTGGTGCTGGGCTCGGGGCGCGAGCGCGGTGACCTGGCCTGGGGCACTGACCAGCCCACCGGGGTGGGCCTGGAGCGCCAGCGTTATGCGGCGCGGCTGGCCAAGGCTTCGGGCTTGCCCGTGTTGACAACCGGCGGCTTGCATTACGGCACCCCGCCCAGCGAGGCCAAGCTGATGGCTGACTCGATGCGTGAGGATTTCGGCGTCGACGTGCGCTGGCAGGAGGGCCACAGCCGCACCACGTGGGAGAACGCCCAGATGAGCGCGCAGATCCTGCTGCCCGAAGGGGCGAAGCGCGTGGTGGTGGTGACCCAGGCCTGGCACATGCCACGGGCGGTCTGGAGTTTTGAACGTTCTGGATTTGAAGTGGTGCCTGCGCCTGTCGGTTTCCTGGGTCAGGATAACGCCCGGCCGTTGGGTGGCTGGATGCCGGAATTCAAATCGGTGTGGCAATCGGGGCAGTTGATGAACGAGGCGGTGGGGTTGGTGGGGTATTGGTTGTTTTATCGCTGA	MPFRYFIKQLLLPPGILLLLLALAWWWRDSRPRLARVCFILGLGGFWLMSLPIVVQWSAKALEREPPLLRSEWATLAQRADAIVVLGSGRERGDLAWGTDQPTGVGLERQRYAARLAKASGLPVLTTGGLHYGTPPSEAKLMADSMREDFGVDVRWQEGHSRTTWENAQMSAQILLPEGAKRVVVVTQAWHMPRAVWSFERSGFEVVPAPVGFLGQDNARPLGGWMPEFKSVWQSGQLMNEAVGLVGYWLFYR				NA	NA	NA	NA	NA
D1-36_04441	321			hypothetical protein	ATGGTTGAATCACAACGAAAAGTCGCTACACCTGAGTTGTATGAAAAACTGATCGATCGCCTGGGGATGGCCTTGGACGCCGCAAGAACCGCCGGTCGCTTGCGTGATGAACGCCCGGCAGAGCTGGAACTGCGAGGCCTGAGCCCCGCAGAGTTCGAGCTGGTCAAGGCTTACCTTGAACAGGCCGGGCACCAGGCCTCAGCAAATGGGGCCCAGGCAAACAAGCGTCTCGAAGCGCCCCGATCGGCCAAGGTTGTCTGGCTCAAGGATCGGACGCCCGACAAGGATGCTGTAAAGGTCCGGTCCCTGCAGTTCAAGTAA	MVESQRKVATPELYEKLIDRLGMALDAARTAGRLRDERPAELELRGLSPAEFELVKAYLEQAGHQASANGAQANKRLEAPRSAKVVWLKDRTPDKDAVKVRSLQFK				NA	NA	NA	NA	NA
D1-36_04442	2739	leuS		Leucine--tRNA ligase	ATGTATGCTACGGCGCTTCCTGTAACTCCACTTCCAGCTTGGCTGGGCATCGAAAACGCCGCATTCGGCGTCATCTGCGTCCAGCATGGCAATGAAGAGGATTGGGCCACCCCATTCAGTACAAAAGTAGCCATGCACGAACACTACCAGCCCCGTGAAATCGAAGCCGCCGCCCAGTCGTTCTGGGACGAGCAAAAGTCCTTTGAAGTCAGTGAACAGCCAGGCAAGGAGACGTACTACTGCCTGTCGATGTTCCCTTACCCCAGCGGCAAGCTACACATGGGGCACGTGCGCAACTACACCATCGGCGACGTGATCTCCCGCTATCAGCGCATGCAAGGCAAGAACGTCCTGCAACCCATGGGTTGGGACGCCTTCGGCATGCCGGCGGAAAACGCCGCGATGAAGAACAACGTCGCCCCCGCCAAGTGGACCTACGAAAACATCGCGTACATGAAGACCCAGCTGCGCAGCCTGGGCCTGGCGGTGGACTGGTCCCGCGAAGTCACCACCTGCAAGCCCGACTACTATCGCTGGGAACAATGGCTGTTCACCCGCCTGTTCGAGAAAGGCGTGATCTACCGCAAGAACGGCACCGTGAACTGGGACCCGGTGGACCAGACCGTACTGGCCAACGAGCAAGTGATCGACGGTCGCGGCTGGCGCTCCGGCGCGCTGATCGAAAAGCGCGAGATCCCGATGTACTACTTCAAGATCACCGCCTACGCGGATGAACTCCTGGAGAGCCTCGACGAGCTGACCGGCTGGCCCGAGCAGGTCAAGACCATGCAGCGCAACTGGATCGGCAAGTCCCGGGGCATGGAAGTGCAGTTCCCCTACGACGTCGCCTCCATTGGCGAAGCCGGCACCCTGAAGGTCTTCACCACCCGTCCGGACACCCTGATGGGCGCCACTTACGTGGCCGTGGCCGCCGAGCATCCGCTGGCGACTCTGGCAGCGCAGAACAACCCCGAGCTGCAGGCGTTCATCGCCGAATGCAAAGGCGGCAGCGTCGCCGAAGCCGACGTCGCCACCCAAGAGAAGAAAGGCCTGCCGACTTCGTTGTTCGTCGAGCACCCGCTCACCGGCGAGAAACTGCCGGTGTGGGTCGCCAACTACGTGCTGATGCACTACGGCGACGGCGCGGTCATGGCGGTGCCCGCCCACGACGAGCGTGATTTCGAGTTCGCCCACAAATACAACCTGCCGGTCAAGCCAGTCGTGCGCACCAGCGCCGGCGACCAGACACCAGCGCCTTGGCAGGACGCCTACGGCGAACACGGCGAGCTGATCAATTCCGGTGAGTTCGACGGCCTGGATTTCGCTGGCGCCTTCGATGCCATCGAAGTGGCCCTGATCAAGAAGAACCTCGGTGCCTCGCGCACCCAGTTCCGCCTGCGCGACTGGGGCATCAGCCGCCAGCGCTACTGGGGTTGCCCGATCCCGATCGTGCATTGCGACACCTGCGGTGACGTACCGGTGCCGGAAGATCAGCTGCCGGTGGTCCTGCCGGAAGACGTCGTACCCGACGGCGCCGGTTCGCCCCTGGCGCGCATGCCCGAGTTCTACGAGTGCAGCTGCCCGAAATGCGGCGCACCGGCCAAGCGTGAAACCGACACCATGGACACCTTCGTCGAGTCCTCGTGGTACTACGCCCGCTACGCCTCGCCGCACTTTGAAGGCGGCCTGGTGGAAAAATCCGCGGCTGACCACTGGTTGCCGGTGGATCAATACATCGGCGGCATCGAACACGCCATTCTTCACCTGCTCTACGCGCGCTTCTTCCACAAGCTGATGCGTGACGAAGGCCTGGTGAGTTCAAACGAGCCGTTCAAGAACCTGCTGACCCAGGGCATGGTGATCGCCGAGACGTACTATCGTCGCGAAGCCAACGGTGCCTACACGTGGTTCAACCCGAGCGACGTCGAGCTCGAACGCGACAGCAAGGCCAAGGTCATCAGCGCCAAGCTGATCGCCGACGGCCTGCCGGTGGAAATCGGCGGCACCGAGAAAATGGCCAAGTCGAAGAACAACGGCGTCGACCCTCAGTCGATGATCGACCAGTTCGGCGCGGACACCTGCCGCCTGTTCATGATGTTCGCCTCGCCACCGGACATGAGCGCCGAATGGTCCGACTCCGGCGTCGAGGGCTCGCACCGCTTCCTCAAGCGCGTCTGGCGCCTGGCCCAGGCCCACGTCACCCAGGGCCTGCCGGGCAAACTGGACGTCGCCAGCCTGAACGATGACCAGAAAGCCGTCCGTCGTTCGATTCACCTGGCGATCAAGCAGGCCAGCCACGACGTCGGCCAGAACCACAAATTCAACACCGCCATCGCCCAGGTGATGACGCTGATGAACGTACTGGAAAAAGCCGCCCAAGGCACCGAGCAGGATCGCGCACTGATTCACGAAGGCCTGGAAGCAGTGACGCTGCTGCTGGCGCCGATCACCCCGCACATCAGCCACGAGTTGTGGAATCGCCTGGGTCACGCTGACCCGGTGATCGACGCCCGCTGGCCGCTGGTGGACGAAAGTGCGCTCGTGCAGGACAGCCTGACCCTGGTCATCCAGGTCAACGGCAAACTGCGTGGCCAGATCGAAATGCCGGCCGCCGCCACGCGCGAAGAAGTCGAAGCCGCCGCGCGGGCCAACGAAAACGTGCTGCGCTTCGTCGATGGCCTGACAATCCGCAAAGTGATCGTCGTGCCCGGCAAACTGGTCAACATCGTCGCAAGCTAA	MYATALPVTPLPAWLGIENAAFGVICVQHGNEEDWATPFSTKVAMHEHYQPREIEAAAQSFWDEQKSFEVSEQPGKETYYCLSMFPYPSGKLHMGHVRNYTIGDVISRYQRMQGKNVLQPMGWDAFGMPAENAAMKNNVAPAKWTYENIAYMKTQLRSLGLAVDWSREVTTCKPDYYRWEQWLFTRLFEKGVIYRKNGTVNWDPVDQTVLANEQVIDGRGWRSGALIEKREIPMYYFKITAYADELLESLDELTGWPEQVKTMQRNWIGKSRGMEVQFPYDVASIGEAGTLKVFTTRPDTLMGATYVAVAAEHPLATLAAQNNPELQAFIAECKGGSVAEADVATQEKKGLPTSLFVEHPLTGEKLPVWVANYVLMHYGDGAVMAVPAHDERDFEFAHKYNLPVKPVVRTSAGDQTPAPWQDAYGEHGELINSGEFDGLDFAGAFDAIEVALIKKNLGASRTQFRLRDWGISRQRYWGCPIPIVHCDTCGDVPVPEDQLPVVLPEDVVPDGAGSPLARMPEFYECSCPKCGAPAKRETDTMDTFVESSWYYARYASPHFEGGLVEKSAADHWLPVDQYIGGIEHAILHLLYARFFHKLMRDEGLVSSNEPFKNLLTQGMVIAETYYRREANGAYTWFNPSDVELERDSKAKVISAKLIADGLPVEIGGTEKMAKSKNNGVDPQSMIDQFGADTCRLFMMFASPPDMSAEWSDSGVEGSHRFLKRVWRLAQAHVTQGLPGKLDVASLNDDQKAVRRSIHLAIKQASHDVGQNHKFNTAIAQVMTLMNVLEKAAQGTEQDRALIHEGLEAVTLLLAPITPHISHELWNRLGHADPVIDARWPLVDESALVQDSLTLVIQVNGKLRGQIEMPAAATREEVEAAARANENVLRFVDGLTIRKVIVVPGKLVNIVAS				NA	NA	NA	NA	NA
D1-36_04443	606	lptE		LPS-assembly lipoprotein LptE	ATGATCAAACGTAATCTGCTGGTTATGGGCCTGGCGGTCCTGTTGAGCGCCTGCGGCTTCCAGCTGCGCGGCACCGGCACCACCGAACTGGCCATCACCGAACTGGACCTCAGCGCGCGCGACGCCTATGGCGATACCGTAAAAGCGTTGCGCGACACGCTGGAAGACAGCGGCGTGAAAGTCTACAGCGGTGCGCCGTACAAGCTGGTATTGACCCGCGAACAGCAAAGCCAGCGCAGCCTGAGCTATGCCGGCGCCGGTCGCTCGGCCGAATACGAGCTCAACAACGTGCTGAACTATGAAATCCGCGGGCAAAACAACCTGGTGCTGCTGGACGACAAGCTGCAAGTACAGAAGGTCTACCTGCATGACGGCAACAACATCACCGGCTCCGACCAGGAGTCCAGCGAAGTACGCGAAGAAATGCGTCGCGACCTGGTACAACGGATGATGCTGCGCCTGCAACAACTGAGCCCGGCCCAGTTGGAGCAACTGCAACAGACCGCCGACGCCAAGGCCAAGGCCGAAGCCGAAGCGCTGGAAGCAGCACGCAAGGCGGAAGCGGAAACCCCGCAACAATCGCCTATGCAAATTCCTGCTCCATAA	MIKRNLLVMGLAVLLSACGFQLRGTGTTELAITELDLSARDAYGDTVKALRDTLEDSGVKVYSGAPYKLVLTREQQSQRSLSYAGAGRSAEYELNNVLNYEIRGQNNLVLLDDKLQVQKVYLHDGNNITGSDQESSEVREEMRRDLVQRMMLRLQQLSPAQLEQLQQTADAKAKAEAEALEAARKAEAETPQQSPMQIPAP	PGPT0023297_274	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_TRANSPORT,PGPT0023297-lptE|rlpB-K03643	NA	NA
D1-36_04444	1038	holA	COG1466	DNA polymerase III subunit delta	ATGAAACTGGCCCCCGCCCAACTCGGCAAACACCTGCAAGGCGCCCTCGCGCCGGTCTACATCATCAGCGGCGATGACCCGCTGCTGTGCCAGGAAGCCGCCGACGCCATCCGCTCCGCCGCTCGCCAACAAGGCTTCGACGAACGCCAGGTGTTCGCGGCCGACGCCGGTTTCGACTGGGGCACGCTGCTGCTGGCAGGGGCGAGCATGTCGCTGTTTGCCGAAAAACGCCTGCTGGAACTGCGCTTGCCCTCGGGCAAACCCGGTGACAAAGGCGCCGCCGCGCTGATCGAATATTGCTCGCGACCGGCCGAAGACACGGTGCTGCTCATCAGCCTGCCGAAACTCGACGGCAGCGCGCAGAAAACCAAATGGGGCAAGGCGCTGGTCGAAGGTCCACAGACCCAGTTCGTGCAGATCTGGCCGGTGGATGCCAGCCAGCTGCCGAGCTGGATCCGCCAGCGCCTGTCCCAGGCCGGTCTATCGGCCAGCCAGGACGCGGTTGAACTGATTGCCGCCCGGGTCGAAGGCAACCTGTTGGCCGCCGCCCAGGAAGTCGAAAAGCTCAAGCTGATGGCCGAGGGCGGCCAGATCACCGTGGAAACGGTGCAGGCCGCCGTGGCTGACAGCGCCCGCTTCGATGTCTTCGGGCTGACCGACGCAATCCTCAACGGCGAAGCCGCTCATGCCTTGCGCATGCTCGAAGGCCTGCGGGGCGAAGGCGTCGAACCTCCGGTGATCCTCTGGGCCCTGGCCCGGGAGCTGCGGCTGCTGGCCAACCTGTCGCTGCAATACAGCCAGGGGGTGCCCCTGGACAAGGCCTTCAGTCAGGCTCGCCCGCCAGTGTGGGACAAGCGCAAACCGCTGATGAGCAAGGCGCTGCAACGCTATTCCGCGTCACGCTGGGCCCAATTGCTGCTCGAGGCCCAGCGCATCGACGCGCAGATCAAGGGCCAGGCCGCCGGCTCGCCGTGGATGAGCCTCAGTCGGTTGTCGTTGTTGATGGCCGGACAACGACTCCCTTTACCCGCGGAATAA	MKLAPAQLGKHLQGALAPVYIISGDDPLLCQEAADAIRSAARQQGFDERQVFAADAGFDWGTLLLAGASMSLFAEKRLLELRLPSGKPGDKGAAALIEYCSRPAEDTVLLISLPKLDGSAQKTKWGKALVEGPQTQFVQIWPVDASQLPSWIRQRLSQAGLSASQDAVELIAARVEGNLLAAAQEVEKLKLMAEGGQITVETVQAAVADSARFDVFGLTDAILNGEAAHALRMLEGLRGEGVEPPVILWALARELRLLANLSLQYSQGVPLDKAFSQARPPVWDKRKPLMSKALQRYSASRWAQLLLEAQRIDAQIKGQAAGSPWMSLSRLSLLMAGQRLPLPAE				NA	NA	NA	NA	NA
D1-36_04445	165			hypothetical protein	ATGAGCAAAAAGCCATCAAGGCATGGCCCCAACAAAGCCAAGTCCATCGTCGCCCAACCCCTGTTCCGCAGCCGCCAGGAACGACCCGCCAAGGGCAAAGGCAGCTACCGCCGCGAAGCCTTCCAGTCTGACAACTGGGAGGCTTCTTGCTTTCTGGCGGCATGA	MSKKPSRHGPNKAKSIVAQPLFRSRQERPAKGKGSYRREAFQSDNWEASCFLAA	PGPT0001755_1905	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001755-ldhA-K03778	NA	NA
D1-36_04446	1323			Tn3 family transposase TnXax1	ATGCCCTTCTGTCTTCCCCGTGGTTGGCCTTTGCGCCAATTGATTGCCGCCACAAGCGTTGTCCTGCTGGTGGCCTGTGCAGAGAAACCCACCGCCGCCGACGCCCAACCGCTCCAGACCGCTCCCGTCGTGACAGCGCCGGCTATCGTGCCGCCTGTCGTGCCTACCGGGGACGACCTGGCCATCGTGCCCACCCAGACCTTTGCCGAATGGCAAGCCGGGTTCCGCAAGCAGGCATTGGCCGCCGGGATTCGAGCCGACCTGTTCGACCGCGCCTTCATCGGGGTCAGTCCGGACATGAGCGTGATCAAGGCCGATCGCAGCCAACCTGAATTCACCCGGCCGGTGTGGGAATACCTCGACGGAGCGTTGTCGCCTCTGCGGGTACGCAAGGGCCAGGCGTTGGTCCAGCAGCACGCCGATATCCTGCAAAGCATCGAGCAACGCTATGGCGTCGATCGCGCGGCGTTGGTGGCGGTGTGGGGCATGGAGAGCAATTTCGGCCAGTTTCAGGGCACCAAGTCGGTCATCAACTCCTTGGCGACCTTGGCCTATGAAGGACGACGCCCAGGTTTTGCCCACGCACAACTGATCGCCGCGCTGCAGATCCTGCAACAGGGCGATATCACGCCAGAAAAAATGCTCGGCTCCTGGGCCGGCGCCATGGGCCAGACCCAGTTCATTCCAACCACCTACAACACCCATGCGGTGGACTTCGACGGCGACGGCCGCCGGGACATCTGGGGCAGCTCTACCGACGCCCTGGCCTCGACCGCGCATTACTTGCAAAGCTCCGGATGGCAGCGCGGCCAGCCGTGGGGGTTCGAGGTGCGGCTGAAGGAAGGCTTCGACTATCCGCTGGCCGACGGCTTGATCCGCAAGCCCGTCGCCGAGTGGCTGCAACTGGGTGTAAGCCTGCCCAACGGCGCCCAGCCGCCGGCCGGCTCCGAACATTTGTCGGCAGCCCTGCTGTTGCCCGCAGGCTATCGCGGCCCGGCGTTCCTGGTGCTCGATAACTTCCGTGCAATTCTCAAATACAACAACTCGTCGTCCTATGCATTGGCGGTCAGCCTGCTGTCGGAGCGTTTCAGCGGCGCAGGGCTGATTGACGGCTCATGGCCAAAGGACGACTTGCCCCTGAGCCGCAGCGAACGCATCGAATTGCAGACCCTGCTGGGCAAACATAATTACGACGCTGGCAACCCCGACGGCATCATCGGCGCCAATACCCGCAAGGCGATCCGCAGCGCCCAGCAGTCGCTTGGCTGGCCGGCGGATGGGTATCCGACGCACAAATTGCTGGAGGCGTTGCGTAGCCGTTGA	MPFCLPRGWPLRQLIAATSVVLLVACAEKPTAADAQPLQTAPVVTAPAIVPPVVPTGDDLAIVPTQTFAEWQAGFRKQALAAGIRADLFDRAFIGVSPDMSVIKADRSQPEFTRPVWEYLDGALSPLRVRKGQALVQQHADILQSIEQRYGVDRAALVAVWGMESNFGQFQGTKSVINSLATLAYEGRRPGFAHAQLIAALQILQQGDITPEKMLGSWAGAMGQTQFIPTTYNTHAVDFDGDGRRDIWGSSTDALASTAHYLQSSGWQRGQPWGFEVRLKEGFDYPLADGLIRKPVAEWLQLGVSLPNGAQPPAGSEHLSAALLLPAGYRGPAFLVLDNFRAILKYNNSSSYALAVSLLSERFSGAGLIDGSWPKDDLPLSRSERIELQTLLGKHNYDAGNPDGIIGANTRKAIRSAQQSLGWPADGYPTHKLLEALRSR	PGPT0023785_187	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-MUREIN_TRANSGLYCOSYLASE_ACTIVITY,PGPT0023785-mltB-K08305	NA	NA
D1-36_04447	933	ykfA	COG1619	putative murein peptide carboxypeptidase	ATGACCCTAACCCCACATCACCCCGTCCCAGCCCTCCCGCCCGAAGGCCTGATCGGCGTGATCGCCCCCGCCGGCCCCGCCCCCCTGGATACGGAGAAAGCAATCCAATGGATGCGCGCAAGGGGCCATGAACTGCGCATCTTCCCAGGCGTCTACGAAACGAACGGCTACCTCGCCGGCAGCGACGAAACACGCCTCAACGACCTCCACGCCGCCTTCGCCAATCCAGAAGTCAAAGCCATCATCTGCCTGCGCGGCGGCTACGGCACCCCGCGTCTACTCGATCGCATCGACTTCAACCTCTTGAAAAGCAACCCCAAGCCATTCGTAGGCTACAGCGACATCACAGCCCTGCACCTGGCCATCAGCCGCTACGCAGGCTTCGTCACCTTCCACGGCCCCTTGCTCAATGCCGACCTGCTGGGCGACAAGGAGCCATCGACCATTACCTCATTCTTCAGCCTGCTACGCGGGCAATTGAAGGCCGGTGACGTGTTGAGCCATCCGGCAGCGTATCCGTTGACCACAGTCGAGCCGGGCATCGCCCACGGCCGCTTGCTGGGGGGCAATCTGTCGATGATTGCCGCCACCATGGGCACGCCCTACGAAATCGACGCAGAAGGGGTGATCCTGCTGGTGGAGGACGTCAACGAGCCGCTTTACCGCATCGATCGCCTGCTCACCCAGCTGCGATTGGCGGGAACCCTGGCCAAATTGCGTGGAGTGCTGTTGGGAGACGTGGCGGGTGTGGACGTCGAGGCGTTGAATCGCTTGTTCAAGCAGACCTTCGCGCCGTTGCGCATCCCGGTGTTGTCGGGTTGGCGCAGCGGGCACTGTGATCCGAACCTGACGTTGCCCATGGGGGCGTTGGTGACGCTGGATGCGGTGGAGAAGAGGCTGGTGTTGGGGCAGGATGTGGTGGTCAGCCGCTAG	MTLTPHHPVPALPPEGLIGVIAPAGPAPLDTEKAIQWMRARGHELRIFPGVYETNGYLAGSDETRLNDLHAAFANPEVKAIICLRGGYGTPRLLDRIDFNLLKSNPKPFVGYSDITALHLAISRYAGFVTFHGPLLNADLLGDKEPSTITSFFSLLRGQLKAGDVLSHPAAYPLTTVEPGIAHGRLLGGNLSMIAATMGTPYEIDAEGVILLVEDVNEPLYRIDRLLTQLRLAGTLAKLRGVLLGDVAGVDVEALNRLFKQTFAPLRIPVLSGWRSGHCDPNLTLPMGALVTLDAVEKRLVLGQDVVVSR	PGPT0023815_1466	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-MURAMOYLTETRAPEPTIDE_CARBOXYPEPTIDASE_ACTIVITY,PGPT0023815-ldcA-K01297	NA	NA
D1-36_04448	1023	lipA	COG0320	Lipoyl synthase	ATGACTACTGATGCAGTGCAAACCATGATCCCGACGCTGGACGTCACCGAGCGTCCGGCCCCGCGTGCCAAGGTAGAGGCCGGCGTCAAGCTGCGCGGCGCCGAGAAGGTTGCACGCATCCCGGTCAAGATCATCCCGACCACCGAATTGCCGAAGAAGCCCGACTGGATCCGCGTGCGCATCCCGGTCTCTCCGGAAGTCGACCGCATCAAGGCGCTGCTGCGCAAGCACAAGCTGCACAGCGTCTGCGAAGAAGCCTCCTGCCCGAACCTGGGCGAATGCTTCTCCGGCGGCACCGCGACGTTCATGATCATGGGCGACATCTGCACCCGTCGCTGCCCGTTCTGTGACGTCGGCCACGGCCGTCCGAAGCCATTGGACACCAACGAGCCGGAAAGCCTGGCCATCGCCATCGCTGACCTGAAGCTCAAGTACGTGGTCATCACCTCGGTGGACCGCGACGACCTGCGTGACGGCGGTGCCCAGCACTTTGCCGACTGCATCCGCGAAATCCGCAAGCTGTCGCCGAATGTCCAACTGGAAACCCTGGTGCCGGACTACCGCGGCCGCATGGACATCGCCCTGGAAATCACCGCCGCCGAGCCGCCGGATGTGTTCAACCACAACCTGGAAACCGTGCCGCGCCTGTACAAGGCCGCGCGTCCGGGTTCGGATTACCAGTGGTCGTTGACCCTGCTGCAACGCTTCAAGCAAATGATGCCGCATATTCCGACCAAGTCCGGCTTGATGCTGGGCCTGGGTGAGACCGATGAGGAAGTCATCGAAGTCATGAAGCGCATGCGTGAGCATGACATCGACATGTTGACCTTGGGGCAGTACCTGCAACCTTCGCGCAGCCACTTGCCGGTGCAGCGTTTTGTGCACCCGGATACCTTTGCCTGGTTTGCTGAGGAGGGGTACAAGATGGGCTTCAAGAATGTGGCCTCGGGGCCTTTGGTGCGTTCTTCGTATCATGCTGATGAGCAGGCCAAATTGGTCAAGGCTGAGCTTCTGGGGTCCTGA	MTTDAVQTMIPTLDVTERPAPRAKVEAGVKLRGAEKVARIPVKIIPTTELPKKPDWIRVRIPVSPEVDRIKALLRKHKLHSVCEEASCPNLGECFSGGTATFMIMGDICTRRCPFCDVGHGRPKPLDTNEPESLAIAIADLKLKYVVITSVDRDDLRDGGAQHFADCIREIRKLSPNVQLETLVPDYRGRMDIALEITAAEPPDVFNHNLETVPRLYKAARPGSDYQWSLTLLQRFKQMMPHIPTKSGLMLGLGETDEEVIEVMKRMREHDIDMLTLGQYLQPSRSHLPVQRFVHPDTFAWFAEEGYKMGFKNVASGPLVRSSYHADEQAKLVKAELLGS	PGPT0003935_987	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
D1-36_04449	648	lipB	COG0321	Octanoyltransferase	ATGCCGGGCACGCTGGGCTTTCGCGAGCTAGGCACGATGGCTTACGAGCCGGTCTGGCATGCCATGCAACGCTTCACGAACGAACGCGGTACCACCGCCGACGATGAAGTCTGGCTGGTCGAGCACCCACCGGTGTTCACCCAGGGCCAGGCGGGCAAGGCCGAGCACTTGTTGTTGCCAGGCGACATCCCGGTGGTGAAGGTCGACCGGGGCGGGCAGGTGACTTACCATGGGCCCGGCCAACTGGTCGCCTATCTGTTGCTGGATGTGCGCAAGCTGGGATTCGGTGTACGCGAGCTGGTCACCCGCATGGAAACGTGCCTGATCGATTTGCTCGCCAGCTACGGCGTAAGCGCGGCGGCAAAGCCCGATGCGCCGGGCGTGTACGTCGACGGGGCGAAGATCGCCTCTCTTGGGCTGCGGATCCGCCATGGCTGTTCGTTTCACGGCCTGGCGTTGAACGTGGACATGAATCTTGAGCCGTTTCGACGGATTAATCCCTGTGGCTACGCAGGGCTGGCGATGACCCAGCTGCGCGATCACACAGGATCGATTGAATTTGCCGAGGTAAGTGCCCGGCTGCGCGCGCAGCTCGTCAAACACCTCGACTATGCTGAGCAGACGACCCTCACGGGCGGAATCGACTGA	MPGTLGFRELGTMAYEPVWHAMQRFTNERGTTADDEVWLVEHPPVFTQGQAGKAEHLLLPGDIPVVKVDRGGQVTYHGPGQLVAYLLLDVRKLGFGVRELVTRMETCLIDLLASYGVSAAAKPDAPGVYVDGAKIASLGLRIRHGCSFHGLALNVDMNLEPFRRINPCGYAGLAMTQLRDHTGSIEFAEVSARLRAQLVKHLDYAEQTTLTGGID	PGPT0003925_2976	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
D1-36_04450	276			hypothetical protein	ATGACAGACTCCGAAGTAAAGGCGCCAAAGATCGAGTTTCCTTGCGAGGACTACCCGATCAAAGTAATCGGCGACACCGGTGTGGGCTTCAAGGACAAGATCGTCGCGATCCTTGAGAAGCACGCCACCGTTGACCTCAAGACCCTGGCCGAGCGCCAGAGTACCAACGGCAAGTACACGACAATCCAGCTGCATATCATTGCCACCGGCCAGGAACAGCTCTACGACATCAACAGCGAGCTGCGAGCGACCGGTTTCGTGCACATGGTGTTGTGA	MTDSEVKAPKIEFPCEDYPIKVIGDTGVGFKDKIVAILEKHATVDLKTLAERQSTNGKYTTIQLHIIATGQEQLYDINSELRATGFVHMVL				NA	NA	NA	NA	NA
D1-36_04451	1158	dacC_2	COG1686	D-alanyl-D-alanine carboxypeptidase DacC	ATGAACATCACCACCTTTGCCAAACGCCTTTGCCTGCTAGTCCCGCTGCTTCTCTCACCGGCCGCGTTCGCGGTCGAGATGATGCCGGCGCCGCCTCAATTGGCCGCCAAATCCTTTGTGCTCATGGATGCCAGCAGCGGCGAGGTGCTGGTGGAAAACAACGGTGACCAGCGTCTGCCACCGGCCAGCCTGACCAAGCTGATGACGGCCTACATCGCCACGCTGGAAATCCGTCGTGGCCAGATCGGTGAAAACGATCCGGTGACCGTCAGCGAGAACGCCTGGCGCACCGGCGGTTCGCGGATGTTCATCAAGGTCGGTTCGCAAGTGACCGTCAGCGACCTGCTGCACGGGATCATCATCCAGTCCGGCAACGACGCCAGCGTCGCCCTGGCCGAGCACATCGCCGGCAGTGAAGACGCATTCGCCGACATGATGAACAAGACCGTTGCCGACCTGGGCATGACCAACAGTCACTTCATGAACCCGACCGGTCTGCCGAACCCGGAGCATTATTCGTCGGCTCACGACATGGCGATCCTGGCGCGGGCCATCATTCATGAAGACCCGGCGCACTACGCCATCTATTCCCAGAAAGAGTTCTTCTGGAATGGCATCAAGCAGCCCAACCGCAACCTGCTGCTGTGGCGCGACAAGACTGTCGACGGTCTGAAGACCGGCCACACCGAGGAAGCGGGTTACTGCATGGTGTCGTCGGCCGTTCGTGACGGCATGCGCCTGATCGCCGTGGTGTTCGGTACCAACAGCGAAGTGGCCCGCGCCGCTGAGACCCAGAAGCTGCTGACCTACGGTTTCCGCTTCTTCGAAACCCAGACCTTCTACCAGAAGGGCACCGAACTGGCCCAGGCCCAGGTCTGGAAAGGCGCCACCAACCAGGTCAAGGCCGGGCTGGCCCAGGACCTGACCATGACCTTGCCTAAAGGCCAGCTCAAGAAGCTCGCCGCCAGCATGACCATGAACCCGCAACTGACCGCGCCGATCGCCAAGGGTGACGTCATCGGCAAGGTCGAAGTCAAACTGGACGACAAAGTGGTGCACAGCGCCGACCTGATCGCGCTGGATGCGGTCGAGGAAGGTGGTATTTTCCGCCGCATGTGGGATAGCATCCGTCTATTCTTCTACGGCTTGTTCAACTGA	MNITTFAKRLCLLVPLLLSPAAFAVEMMPAPPQLAAKSFVLMDASSGEVLVENNGDQRLPPASLTKLMTAYIATLEIRRGQIGENDPVTVSENAWRTGGSRMFIKVGSQVTVSDLLHGIIIQSGNDASVALAEHIAGSEDAFADMMNKTVADLGMTNSHFMNPTGLPNPEHYSSAHDMAILARAIIHEDPAHYAIYSQKEFFWNGIKQPNRNLLLWRDKTVDGLKTGHTEEAGYCMVSSAVRDGMRLIAVVFGTNSEVARAAETQKLLTYGFRFFETQTFYQKGTELAQAQVWKGATNQVKAGLAQDLTMTLPKGQLKKLAASMTMNPQLTAPIAKGDVIGKVEVKLDDKVVHSADLIALDAVEEGGIFRRMWDSIRLFFYGLFN	PGPT0024040_4608	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-CARBOXYPEPTIDASE_ACTIVITY,PGPT0024040-dacC|dacA|dacD-K07258	NA	NA
D1-36_04452	1026	rlpA_2		Endolytic peptidoglycan transglycosylase RlpA	ATGCAGGCATTGCCTACCTATCAACCCCTGAAAGCCAGGCCCCTCAAGCTGGTGGCATTGGCGGCGCTGTCGTTACTGGTTGTCAGTTGTTCGACCAGCCGCGCACCCACCCAGAAAAGCCCCAACGTCGTGCGCGCCACCCCAGGCCTGGACATCAACCGGGCCCACAAGGACGGCGCGCCGTGGTGGGACGTGGATGTCTCGCGCATTCCCGACGCGACGCCGACCCTGCACACCGGCCCCTACAAGGCCAACCCGTATACGGTGCTGGGCAAGACCTATTTCCCGATGGCTGAATCCAAGCGCTACGTCGCCTCGGGCACGGCGTCCTGGTACGGCACCAAGTTCCACGGCCAGAACACCGCCAATGGCGAGGTCTACGATCTCTATGGCATGAGCGCGGCCCACAAGACCTTGCCACTGCCCAGTTATGTGCGGGTGACCAACCTGGACAACAACAAGACGGTGATCCTGCGTGTCAACGATCGTGGGCCGTTCTATTCCGATCGCATCATCGACTTGTCGTATGCGGCGGCGAAAAAGCTCGGTTACGCTGAAACTGGCACCGCGCGGGTAAAAGTCGAGGGCATCGATCCGCAGGAATGGTGGGCCCAGCGCGGCCGTCCGGCGCCTTTGATGCTCAACGAGCCAAAAGTAGCGCAGAATGCCGCGCCAACCGTGACGGCTTCCACCGGCACGGTCGAGCAATGGACCCCACCGCCGCAGCAGCATGCGGCGGCCGTGGTGCCCGTGCAGATCGACGCAAAAAAAAACGCTTCTGCAACAGCGTCTGGCCAGTATCTTCAAGTGGGCGCGTTCGCCAACCCGGACGCTGCAGAGCTGTTGAGATCGAAGCTGAGCTCGATGGTCAGCGCGCCGGTGTTCATCAGCTCGATCGTGCGCAACCAGCAGACACTGCATCGGGTGCGCCTGGGGCCGATCGGTTCTCCGGGTGAGGTCCAGCAGGTACAGAACAGCGTGCGCCTGGCCAATCTCGGTTCGCCGAGCCTGGTCACCGCTGAATAA	MQALPTYQPLKARPLKLVALAALSLLVVSCSTSRAPTQKSPNVVRATPGLDINRAHKDGAPWWDVDVSRIPDATPTLHTGPYKANPYTVLGKTYFPMAESKRYVASGTASWYGTKFHGQNTANGEVYDLYGMSAAHKTLPLPSYVRVTNLDNNKTVILRVNDRGPFYSDRIIDLSYAAAKKLGYAETGTARVKVEGIDPQEWWAQRGRPAPLMLNEPKVAQNAAPTVTASTGTVEQWTPPPQQHAAAVVPVQIDAKKNASATASGQYLQVGAFANPDAAELLRSKLSSMVSAPVFISSIVRNQQTLHRVRLGPIGSPGEVQQVQNSVRLANLGSPSLVTAE	PGPT0024465_696	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024465-rlpA-K03642	NA	NA
D1-36_04453	1011	mltB	COG2951	Membrane-bound lytic murein transglycosylase B	ATGCAAGCAATGCGTGGCTGGTCGACGCGATATGCGCCGTGGGTCGGCCTGGTCGGCTTACTGGGCTGTGCGCCGCATGCCTTGGCGGGCGAATACGAAGGCTCGCCGCAAGTGGCCGAGTTCGTCGGTGAGATGACCCGCGACTACGGGTTTGCCGGCGAGCAGCTGATGGGGGTGTTCCGCGAGGCCGAGCGCAAGCAGTCGATCCTCGATGCGATCTCCCGGCCCGCCGAGCGCGTCAAGCAGTGGAGCGAGTACCGGCCGATGTTCATCACCGAGGCGCGTATCGCCCGGGGCGTGGACTTCTGGCGTCAGCACGAGGCGGCCCTGGCTCGCGCCGAGCAGGAATATGGCGTGCCGGCCCAGGTCATCGTGTCGATCATTGGCGTTGAAACTTTCTTTGGCCGCAACACCGGCAATTTCCGGGTCATCGACGCATTGTCGACCCTGGGCTTCGATTATCCGCCGCGCGCCGAGTTCTTCCGCAAGGAGCTGCGCGAGTTTCTGCTGTTGGCCCGCGAAGAGCAGGTCGATCCGCTGACTCTCAAGGGTTCCTACGCCGGAGCCATGGGCCTGCCGCAATTCATGCCCAGCAGTTTCCGCGCCTACGCGGTGGATTTCGACGGTGATGGCCACATCAATATCTGGACCAACCCGACCGATGCGATCGGTAGCGTTGCCAGTTATTTCAAGCGCCACGGCTGGGAAGCCGGCGAGCCGGTGGTCAGCCGTGCCGACGTGCGCGGCGAGCAGGTTGACGAGGGCTTGACCGAAGGGATCGAGCCGACGAAAACCGTCGGGGAGTTGCGAGCGCTGGGCTGGTCGAGTCATGATGCGCTGCGTGACGATATGTCGGTCACCGCGATGCGCCTGGAAGGCGAGCAGGGCCCTGAATATTGGATGGGCCTGAAGAATTTCTACGCGATTACGCGTTATAACCGCAGCGTGATGTACGCCATGGCTGTATATCAACTGTCTGAAGAGCTGGTCAAAGCACGGGGCGTCAAATAA	MQAMRGWSTRYAPWVGLVGLLGCAPHALAGEYEGSPQVAEFVGEMTRDYGFAGEQLMGVFREAERKQSILDAISRPAERVKQWSEYRPMFITEARIARGVDFWRQHEAALARAEQEYGVPAQVIVSIIGVETFFGRNTGNFRVIDALSTLGFDYPPRAEFFRKELREFLLLAREEQVDPLTLKGSYAGAMGLPQFMPSSFRAYAVDFDGDGHINIWTNPTDAIGSVASYFKRHGWEAGEPVVSRADVRGEQVDEGLTEGIEPTKTVGELRALGWSSHDALRDDMSVTAMRLEGEQGPEYWMGLKNFYAITRYNRSVMYAMAVYQLSEELVKARGVK	PGPT0023785_2085	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-MUREIN_TRANSGLYCOSYLASE_ACTIVITY,PGPT0023785-mltB-K08305	NA	NA
D1-36_04454	1146	mrdB	COG0772	Peptidoglycan glycosyltransferase MrdB	GTGAAGAATAATTTCGACCGCATCCTCTCCAGCGAAGATGTGATGCGCCGTCGCGCCACGTTGCTGCAGCGCATGCACATCGACGGTCCGCTGCTGATCCTGCTGCTGACACTGGCGGCCGGCAGCCTGTTCGTACTTTATTCAGCCAGCGGCAAGAATTGGGACCTGCTGGCCAAGCAGGCCACCTCGTTCGGCATCGGCCTGGTGTCGATGATCGTCATCGCCCAACTCGAACCACGCTTCATGGCGCGCTGGGTGCCACTGGCCTATGTGGTCGGCGTGGGGTTGCTGGTGGTGGTGGACATCATGGGTCATAACGCCATGGGCGCCACCCGCTGGATCAACATCCCCGGGGTGATCCGTTTCCAGCCCTCGGAATTTCTCAAGATCATCATGCCGGCGACCATTGCCTGGTACCTGGCCAAACGCTCGTTGCCGCCGCAACTCAAGCATGTATGTATCAGCCTGTTGCTGATCGGTATCCCGTTCATCCTGATCGTGCGCCAGCCGGACCTGGGCACTTCGCTGCTGATCCTGGCCGGCGGCGCGTTCGTGCTGTTCATGGGCGGGTTGCGCTGGCGCTGGATCCTCAGCGTGATCGCCGCCGCCGTGCCGGTGTCGGTGGCCATGTGGTATTTCGTGATGCACGACTACCAGAAGCAACGCGTCCTGACATTCCTCGACCCGGAAAGCGATCCGCTGGGCACCGGCTGGAACATCATCCAGTCCAAGGCCGCCATCGGTTCCGGTGGGGTGTTCGGCAAGGGTTGGCTGATGGGCACCCAGTCGCACCTGGACTTTTTGCCGGAAAGCCATACCGACTTCATCATTGCCGTGATGGGCGAGGAGTTCGGCCTGGTAGGCATCTGCGTGCTGCTGCTGATCTATCTGCTGCTGATCGGGCGAGGCCTGGTGATCACCGCCCAGGCCCAGACCCTGTTCGGCAAATTGCTTGCTGGCAGCCTGACCATGACTTTTTTTGTTTATGTTTTCGTCAACATCGGTATGGTCAGTGGCCTGTTGCCGGTCGTGGGGGTGCCGTTGCCATTCATTAGCTACGGAGGAACTTCGCTGGTGACGCTACTGTCAGCGTTTGGGGTTTTGATGTCGATTCATACGCATCGCAAATGGATCGCGCAGGTTTGA	MKNNFDRILSSEDVMRRRATLLQRMHIDGPLLILLLTLAAGSLFVLYSASGKNWDLLAKQATSFGIGLVSMIVIAQLEPRFMARWVPLAYVVGVGLLVVVDIMGHNAMGATRWINIPGVIRFQPSEFLKIIMPATIAWYLAKRSLPPQLKHVCISLLLIGIPFILIVRQPDLGTSLLILAGGAFVLFMGGLRWRWILSVIAAAVPVSVAMWYFVMHDYQKQRVLTFLDPESDPLGTGWNIIQSKAAIGSGGVFGKGWLMGTQSHLDFLPESHTDFIIAVMGEEFGLVGICVLLLIYLLLIGRGLVITAQAQTLFGKLLAGSLTMTFFVYVFVNIGMVSGLLPVVGVPLPFISYGGTSLVTLLSAFGVLMSIHTHRKWIAQV	PGPT0023885_26	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023885-mrdA-K05515	NA	NA
D1-36_04455	1896	mrdA	COG0768	Peptidoglycan D,D-transpeptidase MrdA	ATGCCTCAGCCGATCCGCATCAAGGACCACGAAAAAGACGCCCGTCTGGTGCGGGGCCGCGTCGTGTTCGGGGCTATCGCCGTGGTCACGCTGATCGGCGTGCTGATCGCGCGGCTGTATTTCCTCCAGGTCATCCAGTACGAGTATCACTCGACCCTCTCGGAGAGCAACCGCGTCCACGTACAGCCGATTCCGCCGACCCGAGGGCTGATTTTCGACCGCAATGGCGTGGTGGTGGCCGATAACCGGCCTAGCTTCAGCCTGAGCATGACCCGCGAGCGCTCTGGCGACTGGCAAAAAGTCCTCGACGTGATCGTCGAGGTGCTGCAGTTGACACCTGAGGACCGGGCGATTTTCGAGAAGCGCATGCGCCAGGGCCGGCGCCCCTTCGAGCCGGTGCCGATCATGTTCGAGCTGACCGAAGAGCAGATCGCGCTGATCGCGGTGAACCAGTTCCGCCTGCCCGGCGTCGAGGTGGTGGCGCAGTTGGTGCGGCATTATCCGCAAGGGCCGCACTTTGCCCACTCGGTCGGCTACATGGGACGGATCAACGAGAAAGAGCTCAAGACCCTCGATCCGGTCAACTACAGCGGCACCCACCATATCGGCAAGACCGGTATCGAGCGTTTCTACGAGGCCGAGCTGCACGGCCAGGTGGGATACGAGGAAGTCGAGACCAACGCCCGAGGCCGGGTGTTGCGGGTGCTCAAGCGCACCGACCCGATTCCTGGCAAGGACATCGTCCTGAGCCTGGACATCAAGTTGCAGGAAGCCGCCGAAGCGGCGCTGGGCGGACGGCGTGGCGCCGTGGTCGCGTTGGACCCCAGCACCGGCGAAGTCCTGGCGATGGTCAGCCAGCCAAGCTTCGACCCGAACCTGTTCGTCACCGGCATCAGCTTCAAGGCCTACGCCGAGCTGCGCGATTCCATCGACCGGCCGCTGTTCAACCGCGTGCTGCGCGGCCTGTATCCGCCGGGGTCGACCATCAAGCCGGCCGTGGCGATCGCCGGGCTGGATGCCGGCGTGGTCACTGCATCGAGCCGGGTCTATGACCCCGGTTATTACCAACTGCCGAACTACGACCACAAGTACCGCAACTGGAACCGCACCGGTGACGGCTACGTGGACCTGGAAACGGCGATCATGCGCTCCAACGATACCTACTTCTATGACCTGGCCCACAAGCTGGGGATCGATCGGTTGTCGTCCTACATGAACAAGTTCGGTCTCGGCCAGAAAGTCTCCCTGGACATGTTCGAAGAATCGCCGGGCCTGATGCCGTCTCGGGAGTGGAAGCGCGCGACCCGCCGACAGGCCTGGTTCCCGGGCGAAACCTTGATCCTGGGGATCGGCCAGGGCTACATGCAGGCCACGCCGTTGCAACTGGCCCAGGCCACGGCTCTGGTGGCGAGCAAGGGCAAGTGGTATCGCCCGCACCTGGCCAAGACCATCGAGGGCCAGAAGCCCGTGGATCCGGACCCGGTGCCGGACATCATCCTGCGCAATCCATCGGACTGGCAGAAGGTCAACATTGGCATGCAACAGGTAATGCACGGTGCCCGGGGCACGGCGCGCAAGGCTTCCATCGGTGCGCAATACCGGATCGCCGGCAAGAGCGGGACCGCCCAGGTCGTGGCCATCAAGCAGGGTGAGAAGTACGACCGCTCCAAGGTCCAGGAGCGCCACCGCGACCACGCCTTGTTCGTCGGTTTCGCGCCGGCCGATAACCCGAAGATCGTCGTCTCGGTAATGGTCGAGAACGGTGAGTCCGGTTCTGGTGTCGCCGCGCCGGTGGTGCGCCAGGTCATGGACGCCTGGCTGCTGGATGAGCACGGCCAGCTCAAGCCCGAATTCGCAAGCCCGATCAGCGCGGAGGCTACGGCCCGTGAAGAATAA	MPQPIRIKDHEKDARLVRGRVVFGAIAVVTLIGVLIARLYFLQVIQYEYHSTLSESNRVHVQPIPPTRGLIFDRNGVVVADNRPSFSLSMTRERSGDWQKVLDVIVEVLQLTPEDRAIFEKRMRQGRRPFEPVPIMFELTEEQIALIAVNQFRLPGVEVVAQLVRHYPQGPHFAHSVGYMGRINEKELKTLDPVNYSGTHHIGKTGIERFYEAELHGQVGYEEVETNARGRVLRVLKRTDPIPGKDIVLSLDIKLQEAAEAALGGRRGAVVALDPSTGEVLAMVSQPSFDPNLFVTGISFKAYAELRDSIDRPLFNRVLRGLYPPGSTIKPAVAIAGLDAGVVTASSRVYDPGYYQLPNYDHKYRNWNRTGDGYVDLETAIMRSNDTYFYDLAHKLGIDRLSSYMNKFGLGQKVSLDMFEESPGLMPSREWKRATRRQAWFPGETLILGIGQGYMQATPLQLAQATALVASKGKWYRPHLAKTIEGQKPVDPDPVPDIILRNPSDWQKVNIGMQQVMHGARGTARKASIGAQYRIAGKSGTAQVVAIKQGEKYDRSKVQERHRDHALFVGFAPADNPKIVVSVMVENGESGSGVAAPVVRQVMDAWLLDEHGQLKPEFASPISAEATAREE	PGPT0023885_2132	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023885-mrdA-K05515	NA	NA
D1-36_04456	468	rlmH	COG1576	Ribosomal RNA large subunit methyltransferase H	GTGCGACTGCGCCTGATCGCCGTCGGTTCTCGCATGCCCAAGTGGGTGGAAGAAGGCTGGCATGAATATGCCAAGCGTCTTCCGTCCGAGCTGGCCCTGGAACTGGTGGAAATTCCGCTCAATACCCGTGGCAAGAACGCTGACGTGGCGCGTTTCATCCGCCAGGAAGGCGAAGCCATGCTGGCCAAGGTCGGGCCGAACGAGCGGATCGTCACGCTCGAAGTCCACGGCAAGCCCTGGAGCACCGAGCAACTGGCGGTGGAGCTCGATCGCTGGCGATTGGATTCGCGCACGGTCAATTTCATGGTCGGTGGCCCGGAAGGGCTGGCGCCTGAAGTCTGTGCGCGGGCGGATCAGCGCTGGTCGTTGTCGCCCCTGACGTTGCCGCACCCACTGGTGCGGATCCTGATCGGTGAACAGTTGTACCGTGCCTGGACAGTCTTGTCCGGGCACCCTTATCACAAGTAA	MRLRLIAVGSRMPKWVEEGWHEYAKRLPSELALELVEIPLNTRGKNADVARFIRQEGEAMLAKVGPNERIVTLEVHGKPWSTEQLAVELDRWRLDSRTVNFMVGGPEGLAPEVCARADQRWSLSPLTLPHPLVRILIGEQLYRAWTVLSGHPYHK				NA	NA	NA	NA	NA
D1-36_04457	495	rsfS		Ribosomal silencing factor RsfS	ATGACTGACAAAGACCTGAACAAAGTTAAGCGCAAGGGCACCTTCAAGAGCGCCCCGCTGCCGGTAGAAGCACACGCCGGCGTGGCGCTGACCGGCGAAGAGCTGGTCAAGGTGGCCGTGGCGGCCCTGGAAGACGTCAAGGCCCAGGACATCCAGGTGATCGACGTTCGCGAGAAGCAGAGCATCACCGACTACATGATCATCGCCACCGGTACCTCCAATCGCCAGATCAATGCGATGCTGGAAAAAGTTCGCGAAGAAGTCAAAAAGCAAGGCGCCAAGCCGTTGGGCGAAGAAGGCAAGGGCGAAAGCGACTGGGTGCTGCTGGACATGGACGATGTCATCGTTCACATGATGACCGCGTCGGCGCGCCAGTTCTACGACCTGGAACGCCTGTGGGCAGGCGCCGAGCAGAGCCGTTCGGCCAGTGCCGCGCACCACAGCCCGGAAAACTCCCATGAGCACTTCACCAAGCTCAACAAAGACCAGCAATAA	MTDKDLNKVKRKGTFKSAPLPVEAHAGVALTGEELVKVAVAALEDVKAQDIQVIDVREKQSITDYMIIATGTSNRQINAMLEKVREEVKKQGAKPLGEEGKGESDWVLLDMDDVIVHMMTASARQFYDLERLWAGAEQSRSASAAHHSPENSHEHFTKLNKDQQ				NA	NA	NA	NA	NA
D1-36_04458	699	nadD	COG1057	putative nicotinate-nucleotide adenylyltransferase	TTGGGCGACCTCGACCCACTGGCCTCTATGACGATGCCCGTTGTGACGGCGATCGCGCCAAAGCGCATTGGTATCCTGGGTGGCACATTCGACCCGGTGCACATCGGCCATCTGCGCGGTGCGCTGGAAGTCGCCGACGCGCTGGCCCTCGATGAGTTGCGCCTGACGCCCAGCGCCCGGCCGCCTCATCGGGACGCGCCGCAGGTGTCGGCCCGGGATCGCCTGGCGATGGTCGAGTGCGCGGTGGCCGGCGTGGCGCCGTTGGTGGTGGATGCCCGCGAATTGCAGCGGGACAAACCGTCCTACACCATTGATACCCTGGAGCTGATGCGTGCCGAACTGGCCGCCGATGCCCAGGTTTTTCTACTTCTGGGCTGGGACGCTTTTTGCGGCCTGCCCACTTGGCATCGCTGGGAAGAGTTGCTCCAGCATTGCCACATCCTGGTGCTGCAACGCCCGGATGCCGACAGCGAACCGCCGGATGCCTTGCGCAACCTGCTGGCGGCGCGCTCGGTGAGCGACCCGCTGGCCCTCAAGGGGCCGAGCGGACAGATTGCATTCGTCTGGCAGACGCCGCTCGCGGTATCCGCCACCCAGATCCGTCAACTGCTGGCCAGCGGTAAGTCGGTACGTTTCCTGGTGCCCGACGCGGTCCTGGCCTACATCGATGCGCACGGGCTGTACCGTGCGTCGAACTGA	MGDLDPLASMTMPVVTAIAPKRIGILGGTFDPVHIGHLRGALEVADALALDELRLTPSARPPHRDAPQVSARDRLAMVECAVAGVAPLVVDARELQRDKPSYTIDTLELMRAELAADAQVFLLLGWDAFCGLPTWHRWEELLQHCHILVLQRPDADSEPPDALRNLLAARSVSDPLALKGPSGQIAFVWQTPLAVSATQIRQLLASGKSVRFLVPDAVLAYIDAHGLYRASN	PGPT0013435_650	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013435-nadD-K00969	NA	NA
D1-36_04459	1272	proA		Gamma-glutamyl phosphate reductase	ATGACTGAGTCCGTTCTTGACTACATGACCCGCCTGGGTCGCGCCGCCCGCGAAGCGTCGCGCGTCATCGGCCGTGCCAGCACCGCGCAGAAAAACCGCGCCTTGCAGGCCGCCGCCAACGCGCTGGACGCGTCTCGCGCCGAGTTGTCCGCCGCCAATGAGCTGGACCTGGCCGCTGGCCGGGCCAATGGTCTGGAACCGGCCATGCTCGAACGCCTGGCGCTGACACCGGCGCGCATCGACGGCATGATCGTCGGTCTGCGCCAGGTCGCGGCACTGCCGGACCCGGTCGGGGCGATCCGCGACATGAGCTATCGGCCATCGGGTATCCAGGTCGGCAAGATGCGCGTGCCCCTGGGCGTGGTCGGGATCATCTACGAGTCGCGGCCGAACGTGACCATCGACGCCGCGAGCCTGTGCCTGAAGTCCGGTAACGCGACCATCCTGCGTGGCGGTTCCGAGGCGATCCATTCCAACCGCGCCATTGCCGCCTGCATCCAGCGTGGCCTGGCCGAAGCCAACCTGCCGGCCGCCGTCGTGCAAGTGGTGGAAACCACCGATCGCGCCGCGGTCGGGGCGCTGATCACCATGCCCGAGTTTGTGGACGTCATCGTGCCCCGCGGCGGCAAGGGCCTGATCGAGCGCGTCAGTCGCGACGCCCGCGTGCCGGTGATCAAGCACCTGGACGGCATCTGCCATATCTACGTCAGCGCCCACGCCGAATTGCCGAAGGCCCAGCGCATTGCCTTCAACGCCAAGACTTATCGTTATGGCATCTGCGGTGCGATGGAAACCCTGCTGGTGGACCAGGCCGTAGCCAAGGATTTCCTGCCGTCGATGGCTGCCCAGTTCCGCGAAAAAGGCGTCGAGCTGCGTGGTTGCGAGCGCACGCGGGCAATTATCGAGGCCGTTGCGGCCACGGAAGAAGACTGGGATACCGAATACCTGGCGCCGATCCTGTCGATCCGCGTGGTCGATGGGCTCGACCAGGCGATCGAGCATATCAACCGTCATGGCTCCCATCACACCGACGCCATCGTCACCGAACACCAGGGCGAAACCCGGAGTTTCGTGGCGCAAGTGGACTCTGCTTCGGTGATGATCAACACCCCGACCTGCTTCGCCGATGGCTTTGAATACGGATTGGGTGCCGAGATCGGCATTTCTACTGATAAGCTGCACGCCCGCGGTCCGGTGGGCCTCGAAGGCCTGACCTGCGAGAAGTACATCGTGGTCGGTGACGGCCAGTTGCGCGGACAGGAGCCGGCCTGA	MTESVLDYMTRLGRAAREASRVIGRASTAQKNRALQAAANALDASRAELSAANELDLAAGRANGLEPAMLERLALTPARIDGMIVGLRQVAALPDPVGAIRDMSYRPSGIQVGKMRVPLGVVGIIYESRPNVTIDAASLCLKSGNATILRGGSEAIHSNRAIAACIQRGLAEANLPAAVVQVVETTDRAAVGALITMPEFVDVIVPRGGKGLIERVSRDARVPVIKHLDGICHIYVSAHAELPKAQRIAFNAKTYRYGICGAMETLLVDQAVAKDFLPSMAAQFREKGVELRGCERTRAIIEAVAATEEDWDTEYLAPILSIRVVDGLDQAIEHINRHGSHHTDAIVTEHQGETRSFVAQVDSASVMINTPTCFADGFEYGLGAEIGISTDKLHARGPVGLEGLTCEKYIVVGDGQLRGQEPA	PGPT0014215_1815	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014215-proA-K00147	NA	NA
D1-36_04460	681			Putative 3-methyladenine DNA glycosylase	ATGACCGATTCGCCTTCCGTACCCATCGCTTTGCCACACGCTTTTTTTGATCGCGACGCCCAGGTGCTCGCCCGGGACCTGCTGGGCAAGGTCATTCGCCACAAGGTCGGCAGCCTGTGGCTCAGTGCGCGGATCATCGAGACCGAAGCCTATTACTTCGCCGAGAAAGGCAGCCACGCCTCCCTGGGCTATACGGAAAAGCGCAGGGCGTTGTTTCTCGATGGCGGCCACATCTATATGTATTACGCCCGGGGCGGCGATTCACTGAATTTCAGTGCGCAAGGCCCGGGTAATGCGGTGTTGATCAAGTCTGCGTATCCCTGGGTGGATGCCATCAGCGGCCCGGACAGCCTGGCGCGGATGCTCCTCAACAATCCCGACGCCCAAGGCCGACCACGCGCGCCACAAAAGCTGTGTGCCGGCCAGACCTTGCTGTGCAAGGCCCTGGGCCTGAAAGTGCCGGACTGGGACGCCAAACGCTTCGACCCTGAACGGCTGCTGGTGGAAGATGTGGGCGTGCCGACGGTGAATGTGATCCAGACCACTCGCCTGGGCATTCCACTGGGACGAGACGAACACCTGCCCTACCGCTTCGTCGATGCCGCCTACGCGCAATGGTGTACCCGCAACCCGCTGCGGCGCGGACAGGTCGAGGGCCGGGATTATGTTTTGCTGTCCTGA	MTDSPSVPIALPHAFFDRDAQVLARDLLGKVIRHKVGSLWLSARIIETEAYYFAEKGSHASLGYTEKRRALFLDGGHIYMYYARGGDSLNFSAQGPGNAVLIKSAYPWVDAISGPDSLARMLLNNPDAQGRPRAPQKLCAGQTLLCKALGLKVPDWDAKRFDPERLLVEDVGVPTVNVIQTTRLGIPLGRDEHLPYRFVDAAYAQWCTRNPLRRGQVEGRDYVLLS	PGPT0014885_546	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014885-yxlJ|aag-K03652	NA	NA
D1-36_04461	1317			hypothetical protein	ATGGGCCAATGGCTCGATAGCATTACCGGCTGGCTGACCGTCAACCCACAATGGCTGGCGGTGGCGGTGTTTGTCGTCGCTTGCGTTGAATGCCTGGCCATTGCCGGGTTGATTGTGCCGGGCACGGTGTTGTTGTTCGCCATCGCGGTGCTGGCCGGCAGTGGGGCGTTGTCCCTGGGCGAAACCTTGCTGCTGGGCCTTCTCGGCGGATTGCTGGGGGATCTGGTTTCGTACTTTCTCGGACGGCATTTCCACCAGAACATCCGGCGCCTGCCGGGGCTGCGACAACATCCGGAATGGATGAGCGCAGCGGAAAGCTATTTCCAGCGCTACGGTATCGCCAGCCTGCTGGTGGGGCGTTTCATCGGCCCGCTGAGGCCGATGCTGCCGATGGTGGCCGGGATGTGCGACATGCCGTTCCCACGCTTCGCGGTCGTCAGCGTGGTGGCGGCGGCAGGCTGGACCGTTGCCTACCTGCTTCCCGGCTGGGCCACCGGAGCGGCGTTCCGCCTGCCACTGCCCGAAGGCTTCTGGCCACAAGCCGGCGTCGTCATCGGCAGCATCGCGGTGATGCTCGGCCTGAGCGTCAACAGCAGCCTGCGTCGTCACCGTCATGCCTCGGCAATCATCGCGGGTGTTGGCCTGGCCATCCTGATCGGCCTGTTCACTGGTTTTCGCTACCTGACGGCTTTCGACCAGGGCCTGATTGCCCTGGTCCAGGAACATCGCAGCGCAACGCTGGATGAAATCGCCGTGACCTTCACGCTGATCGGCGAATTCCGCTACATGCTGATCTTCAGCGCCCTGGTTACCGGACTGTTGTTATTGGGACGCCAATGGCGCCAGGCAATCTTTGCCGGGGGCACGATGCTGCTCACGGCCCTGGCCAACACCGGCTCCAAACTGTTTTTCGCCCGCGTGCGCCCTGAGATCCTGAGCGAACCGTTGACCAGCTACAGCATGCCCAGCGGCCATGCTTCTGGCGCATTCGCGCTGTTCCTGACCCTCGCCGTGCTGGCCGGCCGGGGACAGCCGCCGCGCCTGCGCTTGACGTGGCTGCTGCTAGGCGCATTGCCGGCCCTGGCCATCGCCCTGTCGCGGGTGTACCTCGGGGCGCATTGGCCGAGCGACATCGTTGCCGGCGCCATGCTCGCCGCCACCGTCTGCGCCGCCGTCCTGTGGCTGACCCAGCGCCAGGAACCGCTGCGCGCCATGTCGCCAAGAGTCTGGTGGCTGGTCCTGCCGGCGCTGTTGGCGGCCTTCAGCTTCTTCGCCCTGCGGCACCTGCCGCATGCGATGTTGCGGTATGCCTATTGA	MGQWLDSITGWLTVNPQWLAVAVFVVACVECLAIAGLIVPGTVLLFAIAVLAGSGALSLGETLLLGLLGGLLGDLVSYFLGRHFHQNIRRLPGLRQHPEWMSAAESYFQRYGIASLLVGRFIGPLRPMLPMVAGMCDMPFPRFAVVSVVAAAGWTVAYLLPGWATGAAFRLPLPEGFWPQAGVVIGSIAVMLGLSVNSSLRRHRHASAIIAGVGLAILIGLFTGFRYLTAFDQGLIALVQEHRSATLDEIAVTFTLIGEFRYMLIFSALVTGLLLLGRQWRQAIFAGGTMLLTALANTGSKLFFARVRPEILSEPLTSYSMPSGHASGAFALFLTLAVLAGRGQPPRLRLTWLLLGALPALAIALSRVYLGAHWPSDIVAGAMLAATVCAAVLWLTQRQEPLRAMSPRVWWLVLPALLAAFSFFALRHLPHAMLRYAY	PGPT0024170_5	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024170-bcrC-K19302	NA	NA
D1-36_04462	591			hypothetical protein	ATGAGCTTGCCGCTGTTCCCGTTGAACACTGTGTTGTTCCCCGGTTGCACTCTTGATCTGCAAATCTTCGAGGCGCGTTACCTCGACATGATCGGGCGCTGCATGAAAAAAGGCGAAGGTTTTGGCGTGGTGTGCATCCTCGATGGCGAGGAAGTCGGCATTGCTCCCGATGGCTACGCGCGGGTCGGGTGTGAAGCGCTGATCACCGATTTTTCCCAGCAGGAAAACGGTCTGCTGGGGATCCGCGTGCAAGGCGCACGGCGTTTCCTGGTGCACAGCACCAGCGTCCAGGCGGATCAGCTCACCGTGGCGCAGGTCGAGTGGCTGGAGGACGAGCCGGAACAACCGTTGCAAGATGAAGATGCCGACCTGGTGGCGCTGCTCAAGGCCCTCGCCGAACACCCGATGGTCGAGGCGCTGAACATGGGCACCGAAGCCAAGGGCCAACAGTCCCTCGCCAATCAGCTGGCCTATCTGCTGCCGTTCAATGAACTGGACAAGATCGACCTCCTGCAACTTGACGACCCGCAACAGCGGCTGGATGCGATCCAAGCGCTGTTGGATGAATTACAGGGCGAACTGTTTGCCTGA	MSLPLFPLNTVLFPGCTLDLQIFEARYLDMIGRCMKKGEGFGVVCILDGEEVGIAPDGYARVGCEALITDFSQQENGLLGIRVQGARRFLVHSTSVQADQLTVAQVEWLEDEPEQPLQDEDADLVALLKALAEHPMVEALNMGTEAKGQQSLANQLAYLLPFNELDKIDLLQLDDPQQRLDAIQALLDELQGELFA				NA	NA	NA	NA	NA
D1-36_04463	717	yohK	COG1346	Inner membrane protein YohK	ATGATGTTCGATTGGCAAGGCGCCTGGACCTCGGTCATCCATCACCCGCTGTTCGGCATCGGCATTACCCTGGGCGCCTATCAATTGGTGCTGGCGGCGTTCGAGAAGACTCGCTGGGTGTTTCTTCAGCCGGTATTGATGTCGATGCTGGTGTTGATCGCCGTGCTGGTGGGCTGCGGCATCAGTTACGCCGAGTACCGCAAGAGCACCGAGATCCTGAGCATTCTGCTGGGGCCGGCAACCGTGGCCTTGGCGGTGCCGTTGTACTTGAACCTGCGGCGAATCCGCCAATTGTTCTGGCCGATTTTTACTACGCTGGTGGTAGGCGGGGTGTTCGCCACCGGTTCCGCGGTGGTGCTGGGCTGGGCGTTTGGCGCCGAGCACATGATCCTCATGACGATGGCGCCCAAGTCGGTGACGTCGCCGATCGCCATGCTGGTGGCCGAGCAGATTGGCGGCGTGGCGGCCATGGCGGCGGTGTTCGTGCTGATCACCGGTGTGCTGGGGGCGATCCTGGGGCCGAGTATTTTGACCCGATTGGGTGTCCACAGCCCTGAAGCGCGGGGCATGGCCCTGGGCCTGACCGCCCACGCGGTGGGCACCTCGGTGGCGTTGCAGGAAAGCGAGGAGACCGGCGCCTTCGCGGCCCTGGCGATGAGTTTGATGGGCGTGGCCACGGCGGTGCTGCTGCCGCTGGTGGTGTCGATGACTGTTTAA	MMFDWQGAWTSVIHHPLFGIGITLGAYQLVLAAFEKTRWVFLQPVLMSMLVLIAVLVGCGISYAEYRKSTEILSILLGPATVALAVPLYLNLRRIRQLFWPIFTTLVVGGVFATGSAVVLGWAFGAEHMILMTMAPKSVTSPIAMLVAEQIGGVAAMAAVFVLITGVLGAILGPSILTRLGVHSPEARGMALGLTAHAVGTSVALQESEETGAFAALAMSLMGVATAVLLPLVVSMTV				NA	NA	NA	NA	NA
D1-36_04464	366	cidA		Holin-like protein CidA	ATGTTGCTACGGGGCCTGACCTGGCTGGTGCTGTTCCAATTGCTGGGCACTGCCATCAACCATTTGTTCCTGCCGATCCTGCCGGGGCCGATCGTTGGCCTGCTGCTGATGCTGGGCTACCTGATCACTCGCGGCGAAGTCAGCGAGCCGTTGAACCTGGCCGCCAGCAGCCTGTTGCGCTACCTGCCGTTGCTGCTGGTGCCGCCGGCGGTTGGGGTGATGGTCTATGCCCGGGCGATCGCCGCCGATTTCTGGGCGATTGTCGGTGCGCTGATGTTGTCGTTGGTCCTTTCGGTGGCGTTGACGGGCGTGATAATGCAGCGCCTGGCCCGGCGCCACAGTGTCGAGCCGGAGGACGCCCCATGA	MLLRGLTWLVLFQLLGTAINHLFLPILPGPIVGLLLMLGYLITRGEVSEPLNLAASSLLRYLPLLLVPPAVGVMVYARAIAADFWAIVGALMLSLVLSVALTGVIMQRLARRHSVEPEDAP				NA	NA	NA	NA	NA
D1-36_04465	456		COG2030	putative enoyl-CoA hydratase 1	ATGCCCTACGTTCCCGTTACAGCGCTCAAGGATTATGTCGGCAAGGAACTGGGATGTTCCGACTGGCTGACCATCGACCAGGACCGCATCAACCTGTTCGCCGAAGCCACCGGCGACTTCCAGTTCATCCATGTCGACCCGGTCAAGGCCGCGCAGACCCCGTTCGGCAGCACCATCGCCCACGGTTTCCTGTCGCTGTCGCTGATGCCCAAATTGATGGAAGACATCCTGATCCTGCCCGAGGGTGTGAAGATGGTCGTCAACTACGGGCTCGACAGCGTGCGCTTCATCCAGCCGGTGAAGGTCGACTCCAAGGTCCGGCTCAAGGTCGATCTGGTGGACGTGACCGAGAAAAAACCTGGCCAATGGCTGCTCAAGGCCACCGCCACGCTGGAAATCGAAGGTTCGGAAAAACCGGCCTACATCGCCGAGCCACTGTCGCTCTGCTTCGTGTAG	MPYVPVTALKDYVGKELGCSDWLTIDQDRINLFAEATGDFQFIHVDPVKAAQTPFGSTIAHGFLSLSLMPKLMEDILILPEGVKMVVNYGLDSVRFIQPVKVDSKVRLKVDLVDVTEKKPGQWLLKATATLEIEGSEKPAYIAEPLSLCFV	PGPT0015281_37	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULATION_METABOLISM,PGPT0015281-nodN-NA	NA	NA
D1-36_04466	1719			hypothetical protein	ATGCGCGCACTTGTACCCCTGACCCTGGCCCTCCTGCTCACAGCCTGCGGCGATGGCGAATCGCTGCTGCCTCCCGATGCACGCCTGCCCGATGGCGGGCGTTATCGCGGCGACCTGGTGGACGGCCTGTTGCAAGGCCAGGGACGCATCGATTACCCCAACGGCAGCTGGTACGCCGGCCAGTTCGACAAGGGCCAGTGGCACGGCACCGGGGAGTGGCACGGCAGCAATGGCGAAGTCTATCGCGGCCAATTCGAGCAAGGCCTGTTCCATGGCCAGGGCAGCCTGACCACACCGACCAGCAGCTACACCGGCGGCTTCAAGCAAGGCCGGCGGGACGGCGAAGGGACGCTCAAGGAAAACGGCATGACCTACCGGGGCGAATTCAAGGCCGACCGTTACTCCGGCCTCGGGCGTCTCGAACTCGACGATGGCAGCCAGTATCAAGGCCCGTTCGCCAACGGCAAGCCCAACGGCGAAGGCCAGCGCTTCGATGCCAGCGGCAACCAGTTCACCGGGCATTTCGTCGACGGCCAGCTCCAGGGCAAGGGCACGTTCAACAGTGCCGAAGGCGACGTCTACATCGGCGGTTTCCGCAACAACCAACTCAACGGTCGGGGGCGTTATGAAAATGCCGACGGCGATGTCTGGATCGGCCAGTTCAAGGACGGCGCGCTGACCGGCAAAGGCGAACTGATTGGCGCGGACGGCAGTCATTATCTCGGCCAGTTCAACGAATGGCGCTTCACCGGCGAGGGCCGCCTCAACCTGCCCGATGGCAGCTTCTACGTGGGCCAGTTCGAAAGCGACAGCTACCACGGGCGCGGCACCTTGGTACTGACCGACGGCACGGTGCAAAGCGGCACCTGGGCCAACGGCCTGCGGATACGCGACGCCGACGGTAAGCTGCTGCCGGACGTGCTCGAACGCGGCATCCTGGCCCAAGGCCGCCTGCTCGACGAAGCGCTGGCCGATATCCCCGCGTCGACGCCTGAGGTGGAACTGTACAGCCTGACCCTGGGCGGCGACGGCAAGCAGAGCGTGTTCCTGCGTGAATCCGACTACGTTGCCAATATGCTTGCCAGCCGTTTCGGCGCGACCGGCCAGATCCGCCTGGTGAACCACCGCGATCACCTCAGCGACCGGCCCATGGCCAGCCGCGAAAGCCTGCGCCGCGCCGCCGTCACTTTGGCCGAGCGCAGCGGCCCGGAAGACCTGATATTCATCTACCTGACCAGCCACGGCACCAGCGAGCACGAACTGGTGCTCGACCAACCTCGCATGGAACTGGCCGACCTGCCCGCCGACGAACTGGCCGTTGTCCTGGCGCCGCTCAAGCATCGCGACAAGATCGTGGTGATCTCGGCCTGTTATTCCGGTGGGTTCATTCCGGCGCTCAAGGATGAACGCACGTTGATCATGACCGCGTCCCGGGCCGACCGGGTGTCATTCGGCTGCTCCGAGGAGGCCAACTTCACTTATTTCGGCGACGCCCTGTTCGCCCAGGCGCTGAACCAGACCGACGACCTGGAGCAAGCGTTCAAGCGCGCCAAGGGCATCGTTGCCGAACGCGAGCAGGCGGACAATTTCGAAGCCTCGGAACCGCAGATCTGGGCGCCGAGGACGGTGCTGTCCCACTGGCAATTGCTGCGCAAGCAACAAGCGCGAAAAGCATTGCGAAGTGCTGCATTGAACGACGAGGGCAAAAAGAGCAACTAA	MRALVPLTLALLLTACGDGESLLPPDARLPDGGRYRGDLVDGLLQGQGRIDYPNGSWYAGQFDKGQWHGTGEWHGSNGEVYRGQFEQGLFHGQGSLTTPTSSYTGGFKQGRRDGEGTLKENGMTYRGEFKADRYSGLGRLELDDGSQYQGPFANGKPNGEGQRFDASGNQFTGHFVDGQLQGKGTFNSAEGDVYIGGFRNNQLNGRGRYENADGDVWIGQFKDGALTGKGELIGADGSHYLGQFNEWRFTGEGRLNLPDGSFYVGQFESDSYHGRGTLVLTDGTVQSGTWANGLRIRDADGKLLPDVLERGILAQGRLLDEALADIPASTPEVELYSLTLGGDGKQSVFLRESDYVANMLASRFGATGQIRLVNHRDHLSDRPMASRESLRRAAVTLAERSGPEDLIFIYLTSHGTSEHELVLDQPRMELADLPADELAVVLAPLKHRDKIVVISACYSGGFIPALKDERTLIMTASRADRVSFGCSEEANFTYFGDALFAQALNQTDDLEQAFKRAKGIVAEREQADNFEASEPQIWAPRTVLSHWQLLRKQQARKALRSAALNDEGKKSN				NA	NA	NA	NA	NA
D1-36_04467	642			hypothetical protein	ATGTACTTGACGCCTCAGCATGTTTTGCTCGCCGGCGCGACCGGATTGACCGGGGAACATCTGTTGGATCGGCTGCTCAATGAGCCGACCATCACCCGGGTACTGGCGCCTTCCCGCCGGCCACTGGCCGAGCATCCGCACTTGGAAAATCCGGTTGGAGAACCGGCCGAGTTGCTGCAACGGCTCGAAGGCCCGGTCGACATCGCCTTCTGCTGCCTCGGCACCACCATCAAGAAAGCCGGCTCCGAACAGGCGTTTCGCGCCGTGGACCTGGACCTGGTGGTGGCCTTCGCCAAACGCGCCCGGGAGCTGGGCGCGCGGCATCTCATCGTGATCAGTGCGTTGAATGCCGACGCGAAGTCGTCGATCTTCTACAACCGGGTCAAAGGCGAAATGGAGGCGGCCCTCAAGGCCCAGGATTGGCCGCAACTGACCATCTGCCGCCCTTCCCTGCTGCTCGGCGAGCGGGTTGAACCGCGCCTGGCCGAGCAACTGGCCGGGCCGTTGTCCAAGCTGATTCCCGGCAAGTACCACGGTATCGAAGCCTGCCAACTGGCCCGGGCCATGTGGCGTCTGGCGCTGGAAGAGCAGGATGGGGTGCGGGTGGTGGAGTCGGATGAGTTGCGCAGGCTTGGGAAATGA	MYLTPQHVLLAGATGLTGEHLLDRLLNEPTITRVLAPSRRPLAEHPHLENPVGEPAELLQRLEGPVDIAFCCLGTTIKKAGSEQAFRAVDLDLVVAFAKRARELGARHLIVISALNADAKSSIFYNRVKGEMEAALKAQDWPQLTICRPSLLLGERVEPRLAEQLAGPLSKLIPGKYHGIEACQLARAMWRLALEEQDGVRVVESDELRRLGK	PGPT0013740_1	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927	NA	NA
D1-36_04468	285			hypothetical protein	ATGAATAAGCTGCTGGCGGTGTTGCTGGCGTTGCAACTGACCGGTTGCGCCACCGCCCGCACCCTCGACGCCGCCAAGCCGGGTGCTCCGGTGGTGTACGCCGGGACGCGCCTGGATCTTTATGCGCTGAACGGCGGTTGCTGCGCCAAGGACCGCTTTGGCGCTGAGGCGCCGAGCTATCCGGGCCTCGACCTGCCTGGGAGCGCGTTGCTCGATACTTTGTTGTTGCCGTTGTCGTTGTTTACGGCGTTGGGTGTGGGGTTCCAGGCGACTGGGGGGTTGTAG	MNKLLAVLLALQLTGCATARTLDAAKPGAPVVYAGTRLDLYALNGGCCAKDRFGAEAPSYPGLDLPGSALLDTLLLPLSLFTALGVGFQATGGL				NA	NA	NA	NA	NA
D1-36_04469	648	ubiX	COG0163	Flavin prenyltransferase UbiX	ATGAACACTCGCTTGCAGGGCAATGGCCCCGAACGCATCACGCTGGCGATGACTGGTGCGTCCGGCGCCCAGTACGGCTTGCGCTTGCTCGATTGCCTGGTGCGCGAAGACCGCGAAGTGCATTTCCTCATCTCCAAGGCCGCGCAACTGGTGATGGCCACCGAGACCGACGTGACCCTGCCACCCAAGACCCAGATGATGCAGGCCTTCCTCACCGAGTACACCGGTGCGGCGGCGGGGCAGATTCGTGTGTATGGCAAGGAAGACTGGATGTCGCCGGTGGCCTCCGGCTCCGGCGCGCCAGCGGCGATGGTGGTGGTGCCGTGTTCCACCGGGACGCTGTCGGCGATTGCCACCGGTGCCTGCAACAACCTGATCGAACGGGCGGCGGACGTCACGCTCAAGGAGCGTCGCCAGTTGATCCTGGTGCCCCGGGAAGCGCCGTATTCGAGCATTCACCTGGAGCACATGCTCAAGCTGTCGAACATGGGCGTGACCATTTTGCCGGCCTCGCCGGGTTTCTATCATCAGCCACAGACCATCGATGACCTGATCGATTTCGTGGTCGCCCGGATCCTCAACCTGATGAACATTCCCCAAGACATGCTGCCACGTTGGGGCGAGCATCATTTGAGCAGCGATGAATAA	MNTRLQGNGPERITLAMTGASGAQYGLRLLDCLVREDREVHFLISKAAQLVMATETDVTLPPKTQMMQAFLTEYTGAAAGQIRVYGKEDWMSPVASGSGAPAAMVVVPCSTGTLSAIATGACNNLIERAADVTLKERRQLILVPREAPYSSIHLEHMLKLSNMGVTILPASPGFYHQPQTIDDLIDFVVARILNLMNIPQDMLPRWGEHHLSSDE	PGPT0009565_288	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-SALICYLIC_ACID_RESISTANCE,PGPT0009565-ubiX|bsdB-K03186	NA	NA
D1-36_04470	1350	mpl	COG0773	UDP-N-acetylmuramate--L-alanyl-gamma-D-glutamyl-meso-2,6-diaminoheptandioate ligase	ATGCACATCCATATTCTCGGTATTTGCGGCACTTTCATGGGTTCGATGGCGGTTTTGGCGAAGGAATTAGGCCATCACGTGACGGGTTCCGACGCCAACGTCTATCCACCCATGAGCACTCAGCTGGAAGCCCAGGGCATCGAGTTGACCCAGGGCTATGACCCGGCACAGCTGGACCCGGCGCCGGACCTGGTGGTCATCGGCAACGCCATGTCCCGTGGCAACCCGGCGGTGGAGTACGTGCTCAACAAAGGCCTGCCGTACGTGTCCGGGCCGCAATGGCTGGCCGACCATGTGCTGCAGGGCCGTTGGGTCCTGGCCGTGGCCGGCACCCACGGCAAGACCACCACCAGCAGCATGCTCGCCTGGGTGCTGGAGCACGCGGGCATGAGCCCGGGCTTCTTGATCGGTGGCGTGCCGCAGAATTTCTCGGTGTCGGCGCGCCTGGGTGGCACGCCGTTCTTCGTGATCGAGGCCGATGAGTACGACAGCGCATTTTTCGACAAGCGCTCGAAGTTCGTCCACTACCGTCCACGCACGGCGATCCTTAATAACCTCGAGTTCGATCATGCGGACATCTTCCCCGATTTGCCGGCCATTGAGCGGCAATTCCACCATTTAGTGCGCACCATCCCCAGCGAAGGCCTGGTGATCCACCCGACTACCGAGCCGGCGTTGCAGCGCGTCATTGAAATGGGCTGCTGGACGCCGGTGCAAACCACCGGTGCGGGCGGTCAGTGGCAGGTCAAGCTGCTCAAGGATGACGGCTCTGAGTTTGAAGTGATGTTCGAAGGCCAGCCCCAAGGCGTGGTCGAGTGGGACATGACCGGCCAGCACAACGTCGCCAATGCCCTGGCGACCCTGGCGGCGGCCCGGCATGTCGGCGTGGTGCCGTCCATGGGCATCGCCGCGTTGAGCGCGTTCAAAAGCGTGAAACGGCGGATGGAAAAGGTTGCCGAAGTCCGCGGCATCACCATTTACGACGACTTCGCCCACCACCCGACGGCTATTGCCACCACCCTCGACGGCTTGCGCAAGCGCATCGGTGATGCGCCGTTGATCGCTATCATCGAGCCGCGCTCCAATTCCATGAAGCTCGGTGCCCACCGCGACGGCTTGCCGGAAAGCGTGGTCGATGCCGACCAGGTGATCTGGTATGCGCCGGCCAACCTGGGTTGGGATCTGGCCGCCACCGCCGCGCTGTGTACGGTGCCGTCGATTGTCAGCGATTCCTTGGAGGGCATCATCGAACGCGTCAAAAGCCAGGCCCAGCCCGGTACCCACGTGGTGATCATGAGCAATGGCGGCTTCGGCGGCCTGCACGGCAAACTGGCCGAGGCGCTGAAATGA	MHIHILGICGTFMGSMAVLAKELGHHVTGSDANVYPPMSTQLEAQGIELTQGYDPAQLDPAPDLVVIGNAMSRGNPAVEYVLNKGLPYVSGPQWLADHVLQGRWVLAVAGTHGKTTTSSMLAWVLEHAGMSPGFLIGGVPQNFSVSARLGGTPFFVIEADEYDSAFFDKRSKFVHYRPRTAILNNLEFDHADIFPDLPAIERQFHHLVRTIPSEGLVIHPTTEPALQRVIEMGCWTPVQTTGAGGQWQVKLLKDDGSEFEVMFEGQPQGVVEWDMTGQHNVANALATLAAARHVGVVPSMGIAALSAFKSVKRRMEKVAEVRGITIYDDFAHHPTAIATTLDGLRKRIGDAPLIAIIEPRSNSMKLGAHRDGLPESVVDADQVIWYAPANLGWDLAATAALCTVPSIVSDSLEGIIERVKSQAQPGTHVVIMSNGGFGGLHGKLAEALK	PGPT0023975_1635	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_RELATED_LIGASES,PGPT0023975-mpl-K02558	NA	NA
D1-36_04471	1905	acoR_5	COG3284	Acetoin catabolism regulatory protein	ATGCACAGCAACCATTTGAGTCGCCATGCCCAGCAAGTCTTGACGGTCACCCAGGGCAAGGCCCATTTGCAGGGGCCTGGCAGCGATCCGTCGATTGCCCGTTCCTGGCTGCGCTGCCTTGAGGACTATCACCTCGACCCGGCGCAGAACCTGGCGCCGACGGTGCTTGAACATGGCCGAGTGCTGGAAAGCCGCGAGCGTTTGCAGCAAGTGCTGCATATCGCCGGCACGGAAATGACCAGCCTGCATCAGCAACTCTCCGGCGCCGGCCACGCTGTGCTGCTCACCGACGCTCGGGGCGTGATCCTCAACTGCGTCACTGCCCCCAGCGAGCGGAAGATTTTCGAGCGGGCCGGCCTTTGGCTGGGCGCCGACTGGAGCGAAGCCTGCGAAGGCACCAACGGCATCGGCACCTGCCTGGTGGAACGCCAAGCCCTGACCATCCACCAGGAAGAACATTTCCGCGGCCGTCACACCGGCCTGACCTGCTCGGCGAGCCCGGTGTTCGACCCTCATGGCGAACTGCTGGCGGTGCTTGACGTGTCCTCGGCCCGGCCAGACGTGTCGCGCCAGAGCCAGTTTCACACCATGGCCCTGGTCAATCTCTCGGCGAAGATGATCGAGAGCTGTTATTTCCTGCGTTGCTTCGACAATCAATGGTTGCTGCGCTTCCACTTGCAGGCCGAGTCCGTGGGGCTGTTCAGCGAAGGGCTGATGGCGTTCGACGGCGAAGGGCGGATCTGCGCGGTGAACCAGAGCGCGCTGAACCTGCTCGGGCACATTCGTGGCGGCTTGCTTGGTCAGCGGGTCGAAGACTTTTTTGATTGTTCCCTGGATGAGCTGATGGGCCGGGCCAGTGCCCAGGCCAGCGCCAGTTGGCCGTTGCGCACCCGTGACGGCCGGCATCTGTTTGCCGTGTTGCGCGGCCAGCCGCGTAGCGTCCCGGCCCCGGTCGCGCCGGCCTTCAAAGTCATCGAGTCGGCACGTCTGCCGGGGATCTGCCTGGGGGATGCGGCGTTGCAGGAACATTTTCGCAAGGCACTGCGGGTCTACGAACGCGATGTGCCGCTGCTGATCCACGGCGAGACCGGCTCCGGCAAGGAGGCGTTTGCCAAGGCTGTGCACCATGCCAGCCAGCGCGCCGAAAAAAACTTCGTCGCCCTCAACTGCGCCGCGATTCCAGAAAGCCTGATCGAAAGCGAGCTGTTCGGTTATCGCGGCGGCAGCTTCACCGGCGCGAGAAAAGAGGGCATGCGCGGCAAGTTGCAACAGGCCGACGGCGGCACGCTGTTTCTCGATGAAATCGGCGACATGCCGCTGGCCTTGCAGACTCGCTTGCTGCGGGTGCTGGAAGATCGCCTCGTGGTGCCCATCGGCGGCGAACCCGAGGCGGTGAACGTACGCATCATCAGCGCCACTCACCGGCAATTGCTCGACCGGGTGCGCGATGGCAGTTTTCGCGAGGATCTGTATTACCGCCTCAATGGCTTGGAAATCCCGTTGCCGGCGTTGCGTGAGCGCAGTGACAAATCTCAGCTGCTGGATTTCCTGTTGGCTGAAGAGAGCGGCGCCGAGACGGTGTTTATCGACGAACCGGCGCGCCAGGCGTTGCTGGGCTTCGATTGGCCGGGCAACGTGCGGCAACTGCGCAATGTGCTGCGTACCCTCGCTGCGTTATGCGACGGCGGGCGGATTGGTTTGGAAGACTTGCCGGCGATGATCCGCCAATGCCCGGTGGAGCAGGTAGAAGCCCCGACAGAACACCCGCTGGAAGATGCCGAGCGACTGGCGTTGCTCGATGCGCTGGAGCGCCAGCGCTGGCATATGACCCACACAGCTGAACAGCTGGGGATCAGCCGCAATACCCTCTACCGCAAACTGCGCAAGCACGCGATTGCCCGATAA	MHSNHLSRHAQQVLTVTQGKAHLQGPGSDPSIARSWLRCLEDYHLDPAQNLAPTVLEHGRVLESRERLQQVLHIAGTEMTSLHQQLSGAGHAVLLTDARGVILNCVTAPSERKIFERAGLWLGADWSEACEGTNGIGTCLVERQALTIHQEEHFRGRHTGLTCSASPVFDPHGELLAVLDVSSARPDVSRQSQFHTMALVNLSAKMIESCYFLRCFDNQWLLRFHLQAESVGLFSEGLMAFDGEGRICAVNQSALNLLGHIRGGLLGQRVEDFFDCSLDELMGRASAQASASWPLRTRDGRHLFAVLRGQPRSVPAPVAPAFKVIESARLPGICLGDAALQEHFRKALRVYERDVPLLIHGETGSGKEAFAKAVHHASQRAEKNFVALNCAAIPESLIESELFGYRGGSFTGARKEGMRGKLQQADGGTLFLDEIGDMPLALQTRLLRVLEDRLVVPIGGEPEAVNVRIISATHRQLLDRVRDGSFREDLYYRLNGLEIPLPALRERSDKSQLLDFLLAEESGAETVFIDEPARQALLGFDWPGNVRQLRNVLRTLAALCDGGRIGLEDLPAMIRQCPVEQVEAPTEHPLEDAERLALLDALERQRWHMTHTAEQLGISRNTLYRKLRKHAIAR	PGPT0001030_1184	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,PGPT0001030-acoR-K21405	NA	NA
D1-36_04472	1521	adh_2	COG1012	Aldehyde dehydrogenase	ATGCGTTACGCTCACCCCGGTACTGAAGGCGCTATCGTTTCGTTCAAGGCCAAATACGGTAACTACATCGGCGGCGAGTTCGTCGCGCCTGTCAAAGGTCAGTACTTCACCAACACTTCGCCGGTCAATGGCCAGCCCATTGCCGAATTCCCGCGCTCCACGGCCGAAGACATCGACAAAGCCCTGGATGCCGCTCACGCCGCCGCTGATGCCTGGGGCGCTACGTCGGTCCAGGCCCGTTCGCTGATCCTGCTGAAAATCGCCGACCGCATCGAAGCGAACCTCGAAACCCTGGCGATCACCGAATCCTGGGACAACGGCAAGGCCGTGCGTGAAACACTCAACGCCGACATCCCATTGGCAGCCGACCACTTCCGCTACTTCGCCGGTTGCCTGCGAGCCCAGGAAGGCAGTGCCGCCGAGATCGACGGCAACACCGTGGCCTATCACATCCATGAACCATTGGGCGTGGTCGGGCAGATCATCCCGTGGAACTTCCCGCTGCTGATGGCCGCCTGGAAACTCGCCCCGGCTCTGGCCGCCGGCAACTGTGTGGTACTCAAGCCGGCCGAGCAAACCCCGCTGGGCATCTGCGTGCTGATGGAACTGATCGGCGACCTGCTGCCACCGGGCGTGCTGAACGTGGTGCAAGGTTTCGGCAAGGAAGCCGGTGAAGCCCTCGCCACCAGCAAGCGCATCGCCAAAATTGCCTTCACCGGTTCCACCCCGGTGGGCTCGCACATCATGAAATGCGCCGCCGAGAACATCATCCCGTCCACCGTGGAACTGGGCGGCAAGTCGCCGAATATCTTCTTCGAAGACATCATGCAGGCCGAGCCAAGCTTCATCGAAAAAGCCGCCGAAGGCCTGGTGCTGGCGTTCTTCAACCAGGGCGAAGTCTGCACCTGCCCATCCCGCGCCTTGGTGCAGGAGTCGATCTACGACGAATTCATGCAAGTGGTGATGAAGAAAATCGAGCAGATTAAGCGCGGCGACCCGCTGGACACCGACACCATGGTCGGCGCCCAGGCATCCGAGCAGCAATTCGACAAGATTCTTTCGTACTTGGAAATCGCCAAGGGCGAAGGCGCGCAACTGTTGACCGGCGGCCAGGTGGAGAAACTCGAAGGCAACCTTTCCAGCGGTTATTACATCCAGCCGACCCTGCTCAAGGGCACCAACAAGATGCGCGTCTTCCAGGAAGAAATCTTCGGCCCGGTGGTGAGCATCACCACCTTCAAGGACGAAGCCGAAGCCCTGGCCATCGCCAACGACACCGAGTTCGGCCTCGGCGCGGGCCTCTGGACCCGCGACATCAACCGCGCCTACCGCATGGGCCGGGCGATCAAGGCCGGTCGCGTCTGGACCAACTGCTACCACCTGTACCCGGCCCACGCCGCGTTCGGTGGCTACAAGAAGTCCGGCGTCGGGCGCGAGACGCACAAGATGATGCTCGACCACTACCAGCAGACCAAGAATCTGCTGGTGAGCTACGACATCAATCCGCTGGGGTTCTTCTAA	MRYAHPGTEGAIVSFKAKYGNYIGGEFVAPVKGQYFTNTSPVNGQPIAEFPRSTAEDIDKALDAAHAAADAWGATSVQARSLILLKIADRIEANLETLAITESWDNGKAVRETLNADIPLAADHFRYFAGCLRAQEGSAAEIDGNTVAYHIHEPLGVVGQIIPWNFPLLMAAWKLAPALAAGNCVVLKPAEQTPLGICVLMELIGDLLPPGVLNVVQGFGKEAGEALATSKRIAKIAFTGSTPVGSHIMKCAAENIIPSTVELGGKSPNIFFEDIMQAEPSFIEKAAEGLVLAFFNQGEVCTCPSRALVQESIYDEFMQVVMKKIEQIKRGDPLDTDTMVGAQASEQQFDKILSYLEIAKGEGAQLLTGGQVEKLEGNLSSGYYIQPTLLKGTNKMRVFQEEIFGPVVSITTFKDEAEALAIANDTEFGLGAGLWTRDINRAYRMGRAIKAGRVWTNCYHLYPAHAAFGGYKKSGVGRETHKMMLDHYQQTKNLLVSYDINPLGFF	PGPT0007176_930	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-BRANCHING_STIMULATION	PLANT_BRANCHING-AUXIN|IAA_METABOLISM	PLANT_BRANCHING-IAA_METABOLISM,PGPT0007176-aldB-K00138	NA	NA
D1-36_04473	1449	potE_3		Putrescine transporter PotE	ATGCCAAGCGATCATGCAACCCCGCAACCGGCAACGTCCTCGGTCGATTTCGAAAAAGTCGGCTCCGAATATTTCCAACAACGTGAACTGAAGAAAGGCGCGGCGGGCTGGGTCCTGCTGGTAGGCCTGGGCGTGGCCTATGTCATTTCCGGCGACTACGCTGGCTGGAACTTCGGCCTGGCCCAGGGCGGCTGGGGTGGGATGTTCCTCGCCACGCTGCTGATGGCCGCGATGTACCTGTGCATGTGTTTTTCCCTCGCCGAGCTGTCTTCGATGATCCCCACCGCCGGCGGCGGCTACGGTTTTGCCCGCAGCGCATTCGGGCCTTGGGGCGGATTCCTCACGGGAACCGCGATCCTGATCGAATACGCCATTGCCCCGGCGGCGATTGCCGTGTTCATCGGCGCCTATTGCCAGTCGCTGTTCGGCATTGGCGGCTGGATGATCTACCTGGCGTTCTACATCATCTTCATTGCCATCCACATTTTCGGCGTCGGAGAAGCCCTCAAGCTGATGTTCATCATCACCGCCGTCGCCGCTCTGGCACTGGGAGTCTTCCTGGTGGCGATGGTGCCGCACTTCAACGTCGCCAACCTGCTGGACATTCCGGTCACCGAGGCCGCTGGGGCCAGTTCGTTCCTGCCGTTCGGCTACGTCGGCGTCTGGGCGGCCATCCCTTATGCGATCTGGTTTTTCCTCGCCGTTGAAGGCGTGCCGCTGGCCGCTGAAGAAACCAAGAACCCCAAGCGCGACCTGCCGCGCGGCCTGATCGGCGCGATGCTGGTGCTGGTGGCCTTTGCCCTGCTGATTCTGGTGATCGGCCCGGGCGGCGCGGGCTCCAACGCGCTGATGGCGTCGGGCAACCCACTGGTGGAAGCCCTGGCCAAGGCTTACGGCGGCTCGACCTGGATGGGCAACTTCGTCAACCTGGTCGGCCTGGCCGGTTTGATCGCCAGTTTCTTCTCGATCATCTACGCCTACTCGCGGCAGATCTTCGCGCTGTCCCGCGCCGGCTACCTGCCGCGCAAACTCTCGGAAACCAATAAAAGCAAAGCGCCGGTCCTGGCGTTGGTCATCCCCGGCATCATCGGTTTCGGCCTGTCCTTGACCGGCCAGGGCGACCTGCTGATTCTGGTGGCGGTGTTCGGCGCGACCATTTCCTACGTGCTGATGATGGCCGCGCACATCACCCTGCGCATCCGTCGCCCCAAAATGGACCGGCCATACCGCACGCCGGGCGGCATCTTCACCTCGGGCGTGGCCCTGGTGCTGGCGTGTATCGCCGTGGTGGCGGGCTTCCTGGTCGATCCTCGGGTGGTGATCGGCGCCGCGATCATCTATGGAGTGTTAATTGCTTACTTTGCTTTCTACAGTCGGCATCACTTGGTCGCAGGCACGCCCGAAGAGGAATTCGCGGCCATTCAAAAAGCCGAAGAAGCCTTGCACTAA	MPSDHATPQPATSSVDFEKVGSEYFQQRELKKGAAGWVLLVGLGVAYVISGDYAGWNFGLAQGGWGGMFLATLLMAAMYLCMCFSLAELSSMIPTAGGGYGFARSAFGPWGGFLTGTAILIEYAIAPAAIAVFIGAYCQSLFGIGGWMIYLAFYIIFIAIHIFGVGEALKLMFIITAVAALALGVFLVAMVPHFNVANLLDIPVTEAAGASSFLPFGYVGVWAAIPYAIWFFLAVEGVPLAAEETKNPKRDLPRGLIGAMLVLVAFALLILVIGPGGAGSNALMASGNPLVEALAKAYGGSTWMGNFVNLVGLAGLIASFFSIIYAYSRQIFALSRAGYLPRKLSETNKSKAPVLALVIPGIIGFGLSLTGQGDLLILVAVFGATISYVLMMAAHITLRIRRPKMDRPYRTPGGIFTSGVALVLACIAVVAGFLVDPRVVIGAAIIYGVLIAYFAFYSRHHLVAGTPEEEFAAIQKAEEALH				NA	NA	NA	NA	NA
D1-36_04474	1395	eutB	COG4303	Ethanolamine ammonia-lyase heavy chain	ATGGCCAGTTTTGCACACACGGTCGGCGCCCAGACCTACCGCTTCGACAGCCTCAAAGACCTGATGGCCAAGGCCAGCCCGGCGCGTTCCGGGGATTTCCTGGCCGAGATCGCCGCGCTCAACGATGGCGAGCGCGTGGCCGCGCAAATGGCCCTGGCTGACTTGCCCCTCAGCCATTTCCTGCAAGAAATGCTGATTCCTTACGAGGCCGACGAAGTCACCCGTTTGATCGTCGACACTCACGACAAACAAGCTTTTGCCGTCGTCAGCCACCTCACGGTCGGGGGTTTTCGCGATTGGCTGCTCAGCGAAGCCGCCGACGAACAGAGCCTGCGGGCACTGGCTCCTGGCCTGACGCCGGAAATGGTCGCCGCCGTGTCGAAAATCATGCGCGTGCAAGACCTGGTGCTGGTGGCGCAGAAAATCCGCGTGGTGACCAAGTTCCGCGGCACCCTCGGCCTGCGCGGGCGATTGTCCACGCGCCTGCAACCCAACCACCCCACCGACGAACCCGCCGGCATCGCCGCGAGCATCCTCGACGGCCTGCTCTTCGGCAACGGCGACGCCATGATCGGTATCAACCCGGCCACTGACAGCACCGCCTCGATCTGCGCCATGCTGGAAATGCTCGACGCCATCATCCAGCGCTACGACATCCCCACCCAAGGTTGCGTGCTGACCCACGTCACCACCTCCATCGAAGCGGCGAACCGGGGCGTGCCCCTGGACCTGGTGTTCCAGTCCATCGCCGGCACCGAAGCGGCCAACGCCAGTTTCGGCATCAGCCTGAACATTTTGAAGGAAGGCTACGACGCAGGGCTCAGCCTGAATCGCGGCACCTTGGGCAACAACCTGATGTATTTCGAAACCGGCCAAGGCAGCGCGCTGTCGGCCAATGCCCACCACGGCGTCGATCAACAGACCTGCGAGACGCGGGCCTACGCCGTGGCGCGACATTTCAACCCGTTCCTGGTGAACACGGTTGTAGGCTTCATCGGTCCGGAATACCTCTACAACGGTAAACAAATCATCCGCGCCGGCCTCGAAGACCACTTCTGCGGCAAGTTGCTCGGCGTGCCGATGGGCTGCGACATCTGCTACACCAACCACGCCGAAGCCGACCAGGACGACATGGACACCCTGCTGACCCTGCTGGGCGTGGCCGGGATCAACTTCATCATGGGCATCCCCGGCTCCGACGACATCATGCTCAACTACCAGACCACCTCGTTCCACGACGCCCTCTATGCCCGCCAGACCCTGGGCCTCAAGCCCGCGCCGGAATTCGAAACCTGGCTGGCGAACATGGGCATCTTCACTCAGGCCGATGGCCGGGTGCGGTTCGGCGACAACCTGCCACCGGCGTTTCGTCACGCCCTCGCGCATTTGGGATAA	MASFAHTVGAQTYRFDSLKDLMAKASPARSGDFLAEIAALNDGERVAAQMALADLPLSHFLQEMLIPYEADEVTRLIVDTHDKQAFAVVSHLTVGGFRDWLLSEAADEQSLRALAPGLTPEMVAAVSKIMRVQDLVLVAQKIRVVTKFRGTLGLRGRLSTRLQPNHPTDEPAGIAASILDGLLFGNGDAMIGINPATDSTASICAMLEMLDAIIQRYDIPTQGCVLTHVTTSIEAANRGVPLDLVFQSIAGTEAANASFGISLNILKEGYDAGLSLNRGTLGNNLMYFETGQGSALSANAHHGVDQQTCETRAYAVARHFNPFLVNTVVGFIGPEYLYNGKQIIRAGLEDHFCGKLLGVPMGCDICYTNHAEADQDDMDTLLTLLGVAGINFIMGIPGSDDIMLNYQTTSFHDALYARQTLGLKPAPEFETWLANMGIFTQADGRVRFGDNLPPAFRHALAHLG	PGPT0000605_514	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_GLYCEROPHOSPHOLIPID-ETHANOLAMINE_AMMONIA-LYASE_ACTIVITY,PGPT0000605-eutB-K03735	NA	NA
D1-36_04475	825	eutC	COG4302	Ethanolamine ammonia-lyase light chain	ATGGATAAAAACCCCGTCGATTCGCAAAACCCTTGGCTGAACCTGCGCAACCTCACCCCGGCGCGCATCGCCCTGGGCCGCACCGGCACCAGCCTACCCACCTCGGCGCAACTGGACTTCCAATTCGCCCACGCCCAGGCCCGCGATGCTGTGCACCTGGCATTCGATCACCAGGGCATCCGCGCACAACTGACTGAGCGTGGCCGTGAAAGCCTGTTGCTCCACAGCGCAGCCAGCGACCGCAATAGCTATCTACAACGCCCGGATCTGGGTCGACGGCTCGACGACGCCTCCGCGCAAATCCTTCAGGACTACGCCGCCGCCCATCCCGGCGGTGTGGACTTGGTCATTGTGGTGGCTGACGGGCTGTCAGCGCTGGCGGTACATCGCCATACGCTGCCGTTCCTGGCGCGCCTGGAAGAACAGATCGCCGCCGAAGGCTGGTCTGTGTCGCCCATCGTTTTGGTGGAACAGGGCCGCGTCGCGGTGGCCGATGAAGTGGCGCAGCGGCTCGGCGCAAAAATGTCGGTGATCCTGATCGGTGAACGCCCCGGCCTCAGCTCCCCCGACAGCCTGGGGCTGTATTTCACCTACGCCCCCAAGGTCGGCCTGACCGATGCGTATCGCAACTGCATCTCCAATGTGCGCCTCGAAGGCCTGAGCTATGGCATGGCGGCCCATCGCCTGATCTATCTGATGCGCGAGGCCTGTCGCCGACAGCTCTCGGGGGTCAATCTGAAGGACGAAGCCCAGGTAAACACTTTAGAGGCGGAAAACGGTGCCGATATGAAAGGTAATTTCCTACTGGCGCCGCCCCCAAGCTGA	MDKNPVDSQNPWLNLRNLTPARIALGRTGTSLPTSAQLDFQFAHAQARDAVHLAFDHQGIRAQLTERGRESLLLHSAASDRNSYLQRPDLGRRLDDASAQILQDYAAAHPGGVDLVIVVADGLSALAVHRHTLPFLARLEEQIAAEGWSVSPIVLVEQGRVAVADEVAQRLGAKMSVILIGERPGLSSPDSLGLYFTYAPKVGLTDAYRNCISNVRLEGLSYGMAAHRLIYLMREACRRQLSGVNLKDEAQVNTLEAENGADMKGNFLLAPPPS	PGPT0000610_413	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_GLYCEROPHOSPHOLIPID-ETHANOLAMINE_AMMONIA-LYASE_ACTIVITY,PGPT0000610-eutC-K03736	NA	NA
D1-36_04476	462			hypothetical protein	ATGCGGATTATCCAAGCGACGCTGGAACACCTGGACCTGCTGACCCCATTGTTCGTCAAATACCGGGAATTCTACGGCTCGCTGCCTTTTCCGGACTCGTCCCGGGCCTTCCTGGAAAAACGCCTGCGCCGCAAGGAGTCGGTGATCTACCTGGCCCTGCCGGATGACGACGACAGCAAGTTGCTCGGCTTCTGCCAGCTCTACCCCAGCTTCTCGTCGCTGTCGCTCAAGCGCGTGTGGATCCTCAACGACATCTACGTCGCCGAAGACGCCCGCCGCCAACTCGTCGCCGACAACCTGATCCGCACCGCAAAAAAAATGGCCAAGGAAACCAACGCCGTCCGCATGCGCGTCTCCACCAGCAGCAACAACGACGTCGCGCAGAAAACCTACGAGTCGATCGGCTTCAAGGAAGACTCCGAGTTCAAGAACTACGTGCTGCCGATCAGTGAAGGGCTTTGA	MRIIQATLEHLDLLTPLFVKYREFYGSLPFPDSSRAFLEKRLRRKESVIYLALPDDDDSKLLGFCQLYPSFSSLSLKRVWILNDIYVAEDARRQLVADNLIRTAKKMAKETNAVRMRVSTSSNNDVAQKTYESIGFKEDSEFKNYVLPISEGL				NA	NA	NA	NA	NA
D1-36_04477	657	dedA	COG0586	Protein DedA	ATGGATTTCAACCCCCTCGACCTCATCCTGCATCTCGACGTCTACCTCGACATGCTGGTGACCAACTACGGGACGTGGATCTACGCCATCCTGTTCCTGGTGATCTTCTGTGAAACCGGCCTGGTGGTCATGCCGTTCCTGCCGGGCGACTCCCTGTTGTTCATCGCCGGCGCCGTAGCCGCCGGTGGCGCCATGGACCCGGTACTGCTGGGGGGCCTGTTGATGCTCGCGGCCATCCTCGGCGACAGCACCAACTACCTCATCGGCCGTACCGCTGGCGAAAAACTGTTCAGCAACCCCAACTCGAAAATCTTCCGCCGCGACTACCTGCAGCAGACCCACGATTTCTACGATAAACACGGCGGCAAAACCGTGACCCTGGCGCGCTTCCTGCCGATCATCCGCACCTTCGCGCCCTTCGTCGCCGGCGTCGGCAAGATGAATTACCTGCGTTTCTTCGGCTTCAGCGTCCTTGGCACCATCCTATGGGTTGGCGGCCTGGTGACCCTCGGCTACTTCTTCGGCAACGTGCCCTTCATCAAGCAAAACCTGTCGCTGCTGGTGGTGGGCATCATCCTGCTGTCGCTGCTGCCGATGATCATTGGCCTGGTGCGCAGCAAAATGAGCCAGCGCGGCTCAAAAGCCGAAACGCGCTGA	MDFNPLDLILHLDVYLDMLVTNYGTWIYAILFLVIFCETGLVVMPFLPGDSLLFIAGAVAAGGAMDPVLLGGLLMLAAILGDSTNYLIGRTAGEKLFSNPNSKIFRRDYLQQTHDFYDKHGGKTVTLARFLPIIRTFAPFVAGVGKMNYLRFFGFSVLGTILWVGGLVTLGYFFGNVPFIKQNLSLLVVGIILLSLLPMIIGLVRSKMSQRGSKAETR	PGPT0004890_1646	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_SELENIUM_RESISTANCE	SELENIUM_RESISTANCE-SELENIUM_TRANSPORT,PGPT0004890-dedA-K03975	NA	NA
D1-36_04478	813	mtfA	COG3228	Protein MtfA	ATGTGGTCCTTGAGCAACTGGCGCCGCCGACGCGCCCTCGCCAAACACCCCGTGGCCGAGGACACCTGGCAACGGGTGCGCCAGCAATTGAGCTTCCTCGACGGCATCAGCGCCGAAGAAGACCAATGGCTGCGTGAAGCCTGCGTACTGTTCCTGCACGACAAACACCTCACCGCCCTGCCCGGCGTCGAACTGCACCAGGAACAACGCCTGCTGCTCGCCGCCCAGGCCCAATTGCCACTGATGCACCTCGGCGACCTGAACTGGTACCAGGGCTTCCACGAAATCGTCCTCTACCCCGACGACTTCCTCAGCCCCCAACGCTACCGCGACGCCAGCGGCATCGAGCACGAATGGGACGGCGAACACAGCGGCGAAGCCTGGCCCCAAGGCCCGATCATCCTGGCCTGGGACGGCGTGATGGCCAGCGGCGGCTGGGACGGTTACAACCTGGTGATCCACGAACTGGCGCACAAACTCGACATGCTCAACGGCGACGCCAACGGCCTGCCACCGCTCCACGCCGACATGCGCGTCAGCGACTGGGCCGACGCCATGCAACATGCATTCGATGATCTGGACCGCCAGCTCGACCACAACCCCGACGCAGAAACCGCCATCGATCCCTATGCCGCCGAAAACCCCGCCGAGTTCTTCGCCGTCACCAGCGAATACTTCTTCAGCGCCCCGGATCTGCTGCACCAGGCCTATCCTCGGGTGTATGAACAGCTCAAGGCGTTTTACCGCCAGGATCCGTTGGCCCGGCTGCGGCAACTTCAGGCCGAAGATCCGGTCTATCAGGCGTCATACTAA	MWSLSNWRRRRALAKHPVAEDTWQRVRQQLSFLDGISAEEDQWLREACVLFLHDKHLTALPGVELHQEQRLLLAAQAQLPLMHLGDLNWYQGFHEIVLYPDDFLSPQRYRDASGIEHEWDGEHSGEAWPQGPIILAWDGVMASGGWDGYNLVIHELAHKLDMLNGDANGLPPLHADMRVSDWADAMQHAFDDLDRQLDHNPDAETAIDPYAAENPAEFFAVTSEYFFSAPDLLHQAYPRVYEQLKAFYRQDPLARLRQLQAEDPVYQASY				NA	NA	NA	NA	NA
D1-36_04479	528	ppa	COG0221	Inorganic pyrophosphatase	ATGAGCTACAGCAAGATTCCGGCTGGCAAAGACCTGCCGAACGACATCTACGTCGCGATCGAAATCCCGGCCAACCACGCCCCGATCAAATACGAAATCGACAAAGACAGCGATTGCCTGTTCGTTGACCGTTTCATGGCCACCCCGATGTTCTACCCGGCCAACTACGGTTACATCCCCAATACCCTGGCCGACGACGGCGACCCCCTCGACGTGCTGGTCGTAACCCCTTACCCAGTGGCTCCAGGCTCGGTCATCCGCGCCCGTCCAGTCGGCATTCTGAACATGACCGACGACGGCGGCGGCGATGCCAAAGTCATCGCAGTACCCCACGACAAACTGTCGCAACTGTACGTCGATGTGAAGGAATACACCGACCTGCCACCACTGCTGATCCAGCAGATCGAGCACTTCTTCGCGAACTACAAAGACCTCGAAAAAGGCAAGTGGGTCAAGATCGAAGGCTGGGCCGGCGCAGACGCCGCCCGCGAAGCGATCACCAAGTCGGTTGCCGCCTACAAAGGCTGA	MSYSKIPAGKDLPNDIYVAIEIPANHAPIKYEIDKDSDCLFVDRFMATPMFYPANYGYIPNTLADDGDPLDVLVVTPYPVAPGSVIRARPVGILNMTDDGGGDAKVIAVPHDKLSQLYVDVKEYTDLPPLLIQQIEHFFANYKDLEKGKWVKIEGWAGADAAREAITKSVAAYKG	PGPT0002600_3267	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATASE_ACTIVITY	P-SOLUBILISATION-INORGANIC_PHOSPHATASE,PGPT0002600-ppa-K01507	NA	NA
D1-36_04480	732	prtR_3	COG2932	HTH-type transcriptional regulator PrtR	ATGAAAATACATTCCAGTGGCGACCGCTTCAGAGCCCTTCTCAAAGAAGCCAACATCCGATCCGCCGACTTCGCGAAGTTGTACGGCGTAAAATCGCAGCATGTAAATAACTGGTTCAACCGTGGCATCCCACCGGGACGCATCTACAGCATCGCCGGCCTGCTCACCGTCAGCCCGCAATGGCTCGCCACCGGCGAAGGCCCGCAAACCCCACTGGGCCTCGGCCCCGGCACCACCTATGAAGCCGCCGAAAACGACGGCGTCTACAGCGTGGCGGAAACCACGGACATCGAACTGCCGTTCTACAAGGAAGTCCCGATTGCCCCCGGCGAAACCAAAACTTACATCACCGAAATCCCCGATCAATCCATCCGCCTGCCCCGCACCCACCTAGAATCCCTGGAAATCGACCCCAGCGACGCCATCTGCACCACCATGGTCGGTGACAGCATGGCCGAACGCATCGAAGACGGCTCCACCCTCGCCATCGACCGGGGTCTGACCCAAATCGTCGACGGCCAAATCTACGCCCTCGAACACGACGGCATGCTGCGCATCAAATACCTGCACCGCATCCCCGGTAACCGACTTCGGCTGCGCAGCCACAACAGCGCCGCCTACCCCGACGAAGTCTTCAGCGCCGAACAGATCGACGCACAACACATCCACGTGATCGGCTGGGTGTTCTGGTGGTCAACCCTCAACAAACAGAGACCGCCGGTGTCCGATTGA	MKIHSSGDRFRALLKEANIRSADFAKLYGVKSQHVNNWFNRGIPPGRIYSIAGLLTVSPQWLATGEGPQTPLGLGPGTTYEAAENDGVYSVAETTDIELPFYKEVPIAPGETKTYITEIPDQSIRLPRTHLESLEIDPSDAICTTMVGDSMAERIEDGSTLAIDRGLTQIVDGQIYALEHDGMLRIKYLHRIPGNRLRLRSHNSAAYPDEVFSAEQIDAQHIHVIGWVFWWSTLNKQRPPVSD				NA	NA	NA	NA	NA
D1-36_04481	4782			hypothetical protein	ATGCGTTTCCCTGACAAGACCCCGTCTCTAAGCGGCGCCATTGGTTCGCTGGTCCTGGCCGTCATGAACAAGCCCAATGTCGAGGCGGTGCTACAGGATTTTCGCAATTGCCTGGGCGACTACGACACCTGGGCGCAAAAGTTCTGGAACGGCCAGACGCTGGACATCGAGCAGGTGTTCAAGGTCGGCAATGAGGTCTCGCTCGCGCCTACGAAGGACGGCGGCAAGCAAGTCAGTGCCGTGGTGGCGAGCTGTCCGGCACAAGGTCCATTGACCCTTGTGCATATGTTCCAGGCATCACGTTTCGTGCCAATCGGCGACACACCGGTGGTGCTCGAGCCCATCATTCGGGACGCGCTGGGGAAAGAAACGTTTGGCGATCCAATCCCATACGTCATCGGCCCCAGCGGCATCCTGGAAATCCCTGAATGCGACCGCGGCCAGCGTTACCGCATCAGCTTTTTTCCGAATGTCACGAGCGATCACGTCAGGGCGCTGTATGCCTCTTATCAAACAGCGATCGCCGAGCTCGAAGGTTGGCTGAAAGCCGAGTGGAACGAGTTTCAACCACAGTGGAAGGAATTCTCCGACAGCCGTTTTTTCAAGCGCGTCGACCTGTTGGAGCAGTCTCAGTTACGCGGCTTTGAAAAAGGCCTGTTTGAACTGTGGGACGACATCAAACAGATCTTCGATCTGCTGGCGGACCTTAAGGCCAACAGTGAAAAGCTCCTGGAATACCTCACCGAGGCCGAGCTTGAGCAACTGCTGGAAACTTCGTCAGAGGCGATCGCCAAAGCGCTGATGATTGTGAGCGATGAGCCCTTGCTCTTCGTTTACACGGCGGCGTTCACCAGTTGGCTGCGGATGTTGCCACCGCAATATTTGGCCGAAGTCCTGGGCGAAGTGCGCGCTGCGGTGCTGATCAACTTCATCCTGGCAATCGTTACCGGCGGCTTAGGCATAGGCCTGCGCCTGAGCGGCAAGGCGCTGCGCTTGGTTCGCTCGGAACGAGCCCGCGCATGGTTGCAGGCCTCGAGCCAACGCCTGGGCCAACTCGGTGGCGACAGCCTTAACGCTCATGCCGATGTGCTCAAGCCGGTCGTGATTGCGGGGCGAGGACCTTCAGTGGGGCCGGCGCCTGTCAGACCCTTGCAAATCACCACGGGAGACTCCCCACCTCTGTCGGTCAGCAATCCTGCCGCGATCGTGCGGGAAAAATCCCAGCCTTCCACTCAGCTAAACAAGTACGAGCCCCACGACGACGCCCCCGCCCAATCGAAAAACCCCAACGGCGACCCCGCCGACAGCGCCGCCCAGACCCGCACCGACGGTTGCCCGGTGTCCATGGTCACCGGCGAAGAGCTGCTCACCCTCGAAGACGGCACCCTCGACGGACGCTTGCCCTTCGTCTTCACCCGCCTCTACCGCACCAGCGCCGCCGACCTGGACATCGGCCTCGGCCGCGGATGGACCCATGCCCTGGCCCATCGCCTGTTGATCGACGGCGAGCAGGTGACCTGGGTCGACCAGGAAAACCGCCGCACCACGTTTCCCCGGCCCAGCCTGCAACGCTCAGCCATCCACAACAGCCTGGCCCGCGCGGCGATTTACCTGAGCAACGAGCCGGACGAATTGATCGTCGCCCAGCCCGGCGAAGACGCTCCTTTCCTACATTTTCGCGACGGTCATCTGACGGCCCTGAGCGATCGGTACGACAACCGCCTGACCGTCCAACGCAACATCTACGGCGACATCAGCCGTCTGGACAACGGTGCCGGCCGCTGTTTGCGTTTGCGCTACGAGCATCGGCACCTGGTCGCCATCGACTATCAGAGCTTCCACCCGGCGCTGACCCTCGACGAAGCCTGGCGCACCGAACAGACCCTGGTGACCTACCGCTACGATGCGCGTTTGCGCCTCATCGAAGCGACCAACGCCGCCGGCGAGAGCGAGCGCTACGACTACGACGACCAGCACGTCATCCTCCAGCGGCAACTGGCCGGGGGCGCGAGTTTCTACTGGGAGTGGCAAGGCCTCGGCCCGGCGGCGCGCTGTGTCCGGCATTGGGCTTCGTTCGCGCAGATGGACAGCCGCTACACGTGGGGCGACGACGGCAGCGTCACGGTCCGGCATATCGATGGCAGCCAGGACGTGTATGTCCACGACGACCGCGCGCGGCTGGTGCGCCAGGTCGATCCCGCCGGCGGCGAACACCTCAAGGCTTATGACGAACAGGGCCGGCTGATCGCCGAGCAAGACCCGCTGGGCGCCGTCACCGAATACCGCTACGACGAAGTCGGACGGCTGGTGGCGCTGATTCCGCCGGAAGGCGAGCCCACGTCCTACGAATACCGAAACGGTTTCCTGCACGCCCGGACTCGCGGCAAGGCCGTGTGGACCTACTGGCGCAATGCCCAGGGCGACATCATCGAAGTCGTCGACCCGGCTCGCCAAAGCACCTGGTATCACTACGACGACCAGGGGCAACTGAACACCATCAGCTACCCGGACGGCGGTGCCCATCATTTTGTGCGAAACCCGTTGGGCCAACTGACGGAAGAAATCCTGCCGGACGACGGCCAGCGAGTTTTTTCCTACGACGCCCTGGGCCGCCTGCTGACCCGTCAAGACGAAAGCGGCGCCGTCACCCATTACCAATGGGACGCCGTGGGCCGCTTGCTACAGACCACCCTGCCCACCGGCGCGACCCGTGCATGGAGCTACAACGCCTACGGCAAGGTCACCGCGGAACGGGACGAACTGGGGCGCGTCACCCGCTACGAATACGCCGACGATCTGCACCTGGTCAGCCGCCGCCTCAACCCCGACGGCAGCGAACTGAAGTACCGCTACGACTCGGCGCGGCTGTTGCTGACCGAAATCGAGAACGAATCCGGCGAAAAGTATCAGCTGGACTACACGCCCAACGGACTGATCCGACAGGAAACCGGCTTCGACGGCCAGCGCACCGGCTATGCCTACGACCTCAACGGCCACCTGCTGGAAAAGACCGAGTTCGGCGCCGACGGCAGCCAGCGGATCACCGCCTACCAACGCGACACCGCCGGCCGCCTGCTGCGCAAGACCTTGCCCGACGGTGCCACGGTCGAGTACGGCTACGACGCCCTCGGGCGGTTGATCAGCGTTGAAGACGGCCATTGGCCGCTGGCCTACGAATACGACAACCAGGACCGCCTCGTCGCCGAACACCAGGGTTGGGCGAGCCTGCATTATCGCTACGACAATGCCGGCCGGTTGGTACATTGCCGCCTGCCCGATCGCAGCACCCTGGATTACCGCCACCTGCGAGGCGGGGCGCTGATCGCCATCGACCTCAACGGCACGTGCCTGACCGAACACCGCTTCAAGGGCGGCCGCGAACGCCAGCGCCAGCAGGGCCAGTTGCTCAGCGACTACAGCTACGACGAACAGGGTCGCCTCAAGGCCCAGACCGTGTGGCAAAGCCAGCAAAAACAACTGTTCTGGCGTGACTATTCCTACAGCGCCAACGGCAACCTCGCCGCGCTTTCCGACACGCGAAACCGACGCGGCTACCACTACGACGCGCTGGATCGCCTGGTGCGCATCGACTACGCCCACAGCCAACCCCCGGAACACTTTTCCCACGACCCGGCCGGCAATGTGTTGTTCAACGACCGTCCCGGCCCGACCACCCTCAAGGGCAACCGCCTGCTGATGGAGGGTGATCGTCACTATGACTACGACGCCTACGGCAACCTGGTCCGCGAACGCCGCGGCCATGCCCAGTGCCTCGTCACGCAATACCGCTACGACAGCCAACATCGGCTCATCGGCGTCACCACCCCCGACGGAAGCGAAACCTCCTACCGCTACGACGCCTTCGGCCGACGCATCGAAAAGACCGTGGACGGCCTCACCACGGAATTCATCTGGCAGGGCGACCAGGTCATCGCTGAAAGCAGCGACCGTCACTACCAGAGCTACGTCTATGAGCCCGGCACCTTCCGCCCCCTGGCCCTGCTGGAAGGCGCAGGCCCGGAAAAAGCCACGCCGTTCTACTACCACCTCGACCACCTCGGCACTCCCCAGGAACTGACCAGCCACCAAGGCGAAGTCGTCTGGGCCGCGCGCTACAACGGCTACGGCAAACTCACCGAACTGCGCCACGGCGACGGCAAGCGCCTGGAACAACCGCTGCGCTTTCAGGGGCAATACCACGACCGGGAAAGCGGCCTGCATTACAACCGGCACCGGTACTACAATCCGGAGACGGGGCGGTATCTGACGCTAGACCCGAGCAAGCTGGCGGGTGGGCTCAATGGGTATCGGTACACCCTGAACCCGACGGGGTGGGTGGATCCGTTGGGGTTGTCATGTTGCCCTGGAGATATTGAGGCCGATGGGCCGTACAGCGAAATAGTGCCCGGGGGAGGTTTGGCTGCGCATGAGGCTCGCGGTGGGCATTTGATTGCAAAGCACGTAGGCAGAACAGATGCACAGCTAGCCCAAAGGATGGAAGCAGAGCCTAATATCCCTGCGGCTTCCACATTCCCTGATAGAGCGACTGCCGAGTCGTCCGCAGCCAGGGGGATAGCCGCCAATAAACAGAACATTGAAGACTTTTTAAATAGCCCAAAGACGAAAACAAAAATCACACATACTTATGCCGAGCCGGTTGGTGTCAGCTTACTGCGCGACCGCGATGATCATATACCAGCGTATAAGGCTTTGTTTGTACTGAAAAAAGACCCTAGGAAACCAGAGGGCTATTTTTTACTGACAGGATTCCCTGAAGCATGA	MRFPDKTPSLSGAIGSLVLAVMNKPNVEAVLQDFRNCLGDYDTWAQKFWNGQTLDIEQVFKVGNEVSLAPTKDGGKQVSAVVASCPAQGPLTLVHMFQASRFVPIGDTPVVLEPIIRDALGKETFGDPIPYVIGPSGILEIPECDRGQRYRISFFPNVTSDHVRALYASYQTAIAELEGWLKAEWNEFQPQWKEFSDSRFFKRVDLLEQSQLRGFEKGLFELWDDIKQIFDLLADLKANSEKLLEYLTEAELEQLLETSSEAIAKALMIVSDEPLLFVYTAAFTSWLRMLPPQYLAEVLGEVRAAVLINFILAIVTGGLGIGLRLSGKALRLVRSERARAWLQASSQRLGQLGGDSLNAHADVLKPVVIAGRGPSVGPAPVRPLQITTGDSPPLSVSNPAAIVREKSQPSTQLNKYEPHDDAPAQSKNPNGDPADSAAQTRTDGCPVSMVTGEELLTLEDGTLDGRLPFVFTRLYRTSAADLDIGLGRGWTHALAHRLLIDGEQVTWVDQENRRTTFPRPSLQRSAIHNSLARAAIYLSNEPDELIVAQPGEDAPFLHFRDGHLTALSDRYDNRLTVQRNIYGDISRLDNGAGRCLRLRYEHRHLVAIDYQSFHPALTLDEAWRTEQTLVTYRYDARLRLIEATNAAGESERYDYDDQHVILQRQLAGGASFYWEWQGLGPAARCVRHWASFAQMDSRYTWGDDGSVTVRHIDGSQDVYVHDDRARLVRQVDPAGGEHLKAYDEQGRLIAEQDPLGAVTEYRYDEVGRLVALIPPEGEPTSYEYRNGFLHARTRGKAVWTYWRNAQGDIIEVVDPARQSTWYHYDDQGQLNTISYPDGGAHHFVRNPLGQLTEEILPDDGQRVFSYDALGRLLTRQDESGAVTHYQWDAVGRLLQTTLPTGATRAWSYNAYGKVTAERDELGRVTRYEYADDLHLVSRRLNPDGSELKYRYDSARLLLTEIENESGEKYQLDYTPNGLIRQETGFDGQRTGYAYDLNGHLLEKTEFGADGSQRITAYQRDTAGRLLRKTLPDGATVEYGYDALGRLISVEDGHWPLAYEYDNQDRLVAEHQGWASLHYRYDNAGRLVHCRLPDRSTLDYRHLRGGALIAIDLNGTCLTEHRFKGGRERQRQQGQLLSDYSYDEQGRLKAQTVWQSQQKQLFWRDYSYSANGNLAALSDTRNRRGYHYDALDRLVRIDYAHSQPPEHFSHDPAGNVLFNDRPGPTTLKGNRLLMEGDRHYDYDAYGNLVRERRGHAQCLVTQYRYDSQHRLIGVTTPDGSETSYRYDAFGRRIEKTVDGLTTEFIWQGDQVIAESSDRHYQSYVYEPGTFRPLALLEGAGPEKATPFYYHLDHLGTPQELTSHQGEVVWAARYNGYGKLTELRHGDGKRLEQPLRFQGQYHDRESGLHYNRHRYYNPETGRYLTLDPSKLAGGLNGYRYTLNPTGWVDPLGLSCCPGDIEADGPYSEIVPGGGLAAHEARGGHLIAKHVGRTDAQLAQRMEAEPNIPAASTFPDRATAESSAARGIAANKQNIEDFLNSPKTKTKITHTYAEPVGVSLLRDRDDHIPAYKALFVLKKDPRKPEGYFLLTGFPEA				NA	NA	NA	NA	NA
D1-36_04482	321			hypothetical protein	ATGAAAACAAAACTTGTCGAACTGCATGATTTTTTTGGCGCCTACTTTCATCAAGACTGGATGATCGAGCATGGAAGCTCAGAAGAAGTCATTAGTTCCTTTTTAGTTGAATCGAATATCGGCATCCTGAGACTCGTCCAGCAGGAAATCGACTCATTGCTTAACGAACAGAGAAGTGAGCAGGACTTAAGAGATTATCTCTTGAAGGAACTTAGCTGTTATTACTGTTACTGGAACGAATGGCAAACCGGCGAACAATGGCTGCTTCATATTGCTAACAGATTAGACATTACAATCAGTCAGCTTGGCCGTCCCAAATGA	MKTKLVELHDFFGAYFHQDWMIEHGSSEEVISSFLVESNIGILRLVQQEIDSLLNEQRSEQDLRDYLLKELSCYYCYWNEWQTGEQWLLHIANRLDITISQLGRPK				NA	NA	NA	NA	NA
D1-36_04483	237			hypothetical protein	ATGAACAACCCAACCCTCACCTTCGCCCAACTCCACCCCGGCGACCGCTTCACCTTGCCCGCCGATCACCGCCTATTCACCAAGCTCACCGACAGCACCGCCCGAGAGCACAGCGTGCATTCGATCAATCTCAAGGAAGAAGGCTTCGGTTATCGCGAGGATCCGATCGAGACTCTGCCTCAGGATGCGCCGGTGGCATACGTACCGGTCGGCGGGCCCCTGCGGGCAGGCGGTTAG	MNNPTLTFAQLHPGDRFTLPADHRLFTKLTDSTAREHSVHSINLKEEGFGYREDPIETLPQDAPVAYVPVGGPLRAGG				NA	NA	NA	NA	NA
D1-36_04484	195			hypothetical protein	ATGTCCCTTCCGCCCGAAGGCCTTCCGATCTATCGCGTGCTGACCGGCCCAGACGATTCCGCGTTCTGTCATCGCGTCAGCGATGCATTGAAGATGGGTTATATGCTCCATGGCGCTCCCTCCGTCACATTCAACGGAGAACGGGTCATCGTCGCCCAGGCGGTTGTCTGGCCTTCGGCAATGGCACCGGCTTGA	MSLPPEGLPIYRVLTGPDDSAFCHRVSDALKMGYMLHGAPSVTFNGERVIVAQAVVWPSAMAPA				NA	NA	NA	NA	NA
D1-36_04485	897		COG0583	putative HTH-type transcriptional regulator	ATGCTGGATCGCCAACAGTTGGAAGCGTTTGCCTGCGTCATTGAACACAAAAGTTTTGAACGCGCTGCGTCGGCGCTCAACATCACCAGCGGTGCCATATCGCAGCGAATCAAATCTCTGGAAAACTCGCTTTCAACTATCCTGGTCATTCGCGAAAGACCTATCCATCCCACCTCCGCCGGCCAGGCCTTGTTGCAGCATGTCTCGGCATTGCGTTCATTGGAACATGACGTGCTCAGGCGTCTTTCGCACAGGGGCAACACCACTTCCAAGGTCGCCATCGGCGTACATCCCGATTCACTCAACACCTGGTTTGCGCCGTTATTGATCGAACTGATGCGAGCGGACCGGGTTTGTGTGGAGGTCATTTCCGATGATCGTTGTTCGAGTCTCAATATCCTGAAGCGCGGTGATGTCCAGGGGTGTGTATCAGTCATTGCCGATACCCTCGATGGCTTCGAAGTACATCCTCTGGGGGCCATGGAATACAAATGCGTCAGCACGCCTGGCTACATGCGCCGTTACTTGGCCCGGGGCCTGGGAACGCACTCCCTGCTCGACGCACCGGCCATCACGCGGGGACGCAACGATACCCGTCATACCGCCTTCCTGCGCGAATTGCTGGGCGTCTCCATCGAGCGATTTCCCTGCCACTACTTGCCTTCGCTGCCGAGAGTCCAGGACGCGGTCCTGGCGGGACTTGGCTACGCGCTGATACCCGCGGATGTCGCTGCGCCGTTAATTGACGAGGGTCAGTTGGTCGATCTGATGCCCCAGAGCAGCTACAGGGAGCCCCTTTACTGGCACGGCTGGATGAACCACTCAGTCGTCAAGGATCTGGTAGCGAAACGAATCATCGACACTGCCAGCAGGTCTCTTCAACCCACGCCATGTTGA	MLDRQQLEAFACVIEHKSFERAASALNITSGAISQRIKSLENSLSTILVIRERPIHPTSAGQALLQHVSALRSLEHDVLRRLSHRGNTTSKVAIGVHPDSLNTWFAPLLIELMRADRVCVEVISDDRCSSLNILKRGDVQGCVSVIADTLDGFEVHPLGAMEYKCVSTPGYMRRYLARGLGTHSLLDAPAITRGRNDTRHTAFLRELLGVSIERFPCHYLPSLPRVQDAVLAGLGYALIPADVAAPLIDEGQLVDLMPQSSYREPLYWHGWMNHSVVKDLVAKRIIDTASRSLQPTPC				NA	NA	NA	NA	NA
D1-36_04486	516	ywnH	COG1247	Putative phosphinothricin acetyltransferase YwnH	ATGATTCGGCCAGCCACTCCTGACGATTTACCCTCCATCGTGGAAACCTATAACCAGGCAATTGCCGACAAGGTTTTCGCCAATTGCGATGTTCCCCACCACAGCATTGAAAAGTTCGAACTTACCTATTTCGGAAAAAACCAGCGGTTTGCGGTCCTCGTTTATCTTTCCAGCGCGGGGGATACGGTCGCTTGGGGCGCACTCAAGCCGTTTTCAGCCCGACCGGACGATGAAACCATGGCGGAAGTTGCCGTATATGTACGACGGGACATGCGCGCACGCGGCGTGGGTATTCGATTGTTGCAGGCACTGGAGGTCTCTGCGCGCGAGGCCGGTTTCGAATCGTTGGTTGCCATTATCTTGGGGCCGAACCACGCCAGCGCTCGCGGGTGTATTTCCCAAGGCTTTTACGAATGTGTACGAATCCCACAAATCGCCAAGTTGGAAAACAATCTGGTCGACATAGTCTGGCTACAGAAAAAAATGGAAGGGAATACTCATGGTGTCAGTCGTTGA	MIRPATPDDLPSIVETYNQAIADKVFANCDVPHHSIEKFELTYFGKNQRFAVLVYLSSAGDTVAWGALKPFSARPDDETMAEVAVYVRRDMRARGVGIRLLQALEVSAREAGFESLVAIILGPNHASARGCISQGFYECVRIPQIAKLENNLVDIVWLQKKMEGNTHGVSR				NA	NA	NA	NA	NA
D1-36_04487	813	COQ5_2		2-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrial	ATGGTGTCAGTCGTTGACGAGTCGTATCAGCTGGGAACCTTTCGAGACAACGAGGACTCCTTGCGTCGCCTGAAATCCCAAGCGGGCATCGCGCTGGATCTGGAGTTCGATCACCTGAGACAAGCCGGATTGGCTGAAGGGCAGCGGGTGCTCGACGTGGGTTGCGGTCCCGGCATCATTACGACGCAGATTGCAATTCGTACGAAACCGAGCAGGTTGCTGGCACTCGATTGCAATCAGATAAGCGTCAATGAAACACGCGAGCAACTGTCCGTCGCGGGGGTTGATCAAGCTCAGGTTCGCCAGTGCAATCTTTATGACGATCGATTGACCGACCCGGGGCAGTTCGACTTCAGTTACGCTCGATTGGTGTTCCAGCACTTATCGGACCCGCTGGGTGCCCTGCGCAATATCCATCGCAGCCTGGCGATTGGCGGCCGCTTGTGCATTTGCGACATCGATGACCGCTGGTTTGGCGCATCGCCCCAGCCGCCCGAACTGCAGTCATTTCTTGCCCGCGTGGCCAAGGCTCAAGCCGCTCGCGGCGGCGACCGTCACGTGGGCAGCAAGCTGGCCCATTATCTGGAACGAGCCGGTTACGGCGACATCCGCTGCAGCATGCTGTTGGTGTCCACTTCGCTGATCGGAGCCTCGGCGTTCTGCGACCTGGTATTCGGCTACAAGATGGAAGTGCTTCCCGAGGCCGAACTCGAAGCGGCCCGGCGCGAATTGGCGATCATCCAGGACAGCATCGAGAGTCCAGGTGGCTGGGCGGGGATCGGCGTATTCTTCGTATCCGCAGCGAAACAGTAA	MVSVVDESYQLGTFRDNEDSLRRLKSQAGIALDLEFDHLRQAGLAEGQRVLDVGCGPGIITTQIAIRTKPSRLLALDCNQISVNETREQLSVAGVDQAQVRQCNLYDDRLTDPGQFDFSYARLVFQHLSDPLGALRNIHRSLAIGGRLCICDIDDRWFGASPQPPELQSFLARVAKAQAARGGDRHVGSKLAHYLERAGYGDIRCSMLLVSTSLIGASAFCDLVFGYKMEVLPEAELEAARRELAIIQDSIESPGGWAGIGVFFVSAAKQ				NA	NA	NA	NA	NA
D1-36_04488	603	lpxD_2		UDP-3-O-(3-hydroxymyristoyl)glucosamine N-acyltransferase	ATGCCTGACAAAGCCCAACTGAACGCGGCCACGAACCAGAAGATTGCGCCCTCCGCCCGGATTGCATCGAGCGCAATCCTGGAGGGCGATGTGTCTATCGGCGCAGGCACCGTCATCGGACACGGCGCGGTCCTCGTCGCAGAGGGCGGCACGCTGAGGATCGGTGAAAATTGTATCGTCATGGAAAACGCCGTCATCCGCAGCACTGCCCATAACGACTGCCAGATCGGCAACCATGTGATGGTCGGGCCGCACTGTCACCTGACAGGCTGCCGGATCGACGACGAGGTATTCATTGCCACCGGCGCTTGCGTTTTTAATGGCGCCCACATTGGCAAAGGCGCGGAAGTCCGCATCAATGGTGTCGTTCACATCAAGACCGTGATGGAAGCAGGCGCCATGGTGCCGATCGGCTGGGTCGCGGTAGGCGATCCGGCCCAATACTTCCCCGCCGACCAGCATGAGCAGATCTGGAACGTCCAAAAGACGCTGGATTTCCCCCGCTATGTATTCGGCGTCGATCGCGAGAGCGAAGGCGTTGTCAGGCAGATGATGGAGCGCTACGCACGCTTCCTTCGCAAGCAGCAGGTGGATGATGAATGA	MPDKAQLNAATNQKIAPSARIASSAILEGDVSIGAGTVIGHGAVLVAEGGTLRIGENCIVMENAVIRSTAHNDCQIGNHVMVGPHCHLTGCRIDDEVFIATGACVFNGAHIGKGAEVRINGVVHIKTVMEAGAMVPIGWVAVGDPAQYFPADQHEQIWNVQKTLDFPRYVFGVDRESEGVVRQMMERYARFLRKQQVDDE	PGPT0002425_493	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILISATION-OTHER_ACID_METABOLISMS	K-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002425-GAMMACA_like-K01726	NA	NA
D1-36_04489	957			hypothetical protein	ATGAATGATGAGCCCGGGCGTATCGTCGGCCCGCTCGTCGACGGCCACAGCCATGTCGCCTCCACGCGTTTCACCCCCCTGAGCTTCCTGGAGGGCGTCGCTGACAATATCGAAGTGAAGCTCCAGGCCAGTGGGTTTCCGGTTCCCAGGTCCAGGATCATTGATCAGTTCCAGCGGGACCTATGCGACCACCAGGGTGACGCTCAAGTCGCCGCTATGGACCGCTCGGGCATCCATCGCTCCGTCCTCCTGCTGCCGGACTTCACCTATGCATTGCCGGACAGCGAACTGAGCATTGAAGAAATGTTCCAGGAACACCAGGCCATTCTCCAACGCCACGCGGGGCGCTTCGAAGTCTTCGCCGGCGTCGACCCACGCTGGGGTAAGGACGGACTCGACCTGTTCATACGCGGGATCGAGACGTACGGCTTCAGCGGCTTGAAGCTCTACCCGCCTTGCGGATACCAGGCCAACGATCCGTTGCTGGAGCCCTTCTATGAATATTGCAACGCTCATCGTCTGCCCGTCCTGTTGCACATCGGGCCGACATCCCCGGCGCTGTCCTTTGCCCATGCCCAAGCCCGCTGGGTGGACGAACCCGCGCGCCGCTATCGGGACATCCCGTTCATCCTGGCCCACGGCGCGGTCAATGATCAGACACAATGCATTGAGCTGTGCAAGTACCGTCCCAACGTCTATCTCGACTTGAGCGGCGCACAGCATTCAATCGACTCTCGCGGCCAGGCGCCCATGTTGAAAGCGTTGTTCGAGAATGAGATCAATCACAAGATCATCTTCGGCACGGACTGGCCCATCAATAATCATGAATCGATCAACAGGCGCCTTCGCTCGTTCATCGTTGACCCCGAACACGCTATCAGTGACCACGACGCCAGCCTGATTCTTTCGGGGAACATGCAACGCCTGCTCAATGGAATCGCGCCGCGCGATCGATGA	MNDEPGRIVGPLVDGHSHVASTRFTPLSFLEGVADNIEVKLQASGFPVPRSRIIDQFQRDLCDHQGDAQVAAMDRSGIHRSVLLLPDFTYALPDSELSIEEMFQEHQAILQRHAGRFEVFAGVDPRWGKDGLDLFIRGIETYGFSGLKLYPPCGYQANDPLLEPFYEYCNAHRLPVLLHIGPTSPALSFAHAQARWVDEPARRYRDIPFILAHGAVNDQTQCIELCKYRPNVYLDLSGAQHSIDSRGQAPMLKALFENEINHKIIFGTDWPINNHESINRRLRSFIVDPEHAISDHDASLILSGNMQRLLNGIAPRDR				NA	NA	NA	NA	NA
D1-36_04490	1320			hypothetical protein	ATGATCGAGTTCATTGATGCTCGCGGTGTGCCGGTGCGTGTACACGACGCCGCCGAAGCAGACGAATTGGAGACTGCCCTGGTCGGCATTCTTGGAATGGAGTTCGATCCACTTCCGCTCCTTCAACAGCGTGACGTTCGCTGCCCGATTTCCCGGTTGATCGAATGTGCCGTCCGGTTATCAAGCATGGAGGACCGGCAAATACAGCACGCCATGGTGCTGCTTGGCGGTCTGGACCAAGAAGATCTGGACCTGCGCGAGCGCGGGCACCTGGCTGCATGCAATCACTGGGTCAATCAGGACTATGAACTGGCCCATGCCTGCTGGCGGGAGCTGTTGGCCCTGCATCCTCGGGATATAGTGGCCTTGTTCAGCGTGCACATGCTGGAATTCAACATGGGCTGGACCGAGCGGATGCGCGAAACCATGGTGACGGCCAGTCCTTCTTGGGCGCTCATGCATCCGCTCTATGGTTACGTGCGAGGGATCGAGGCCTTCGCGCTGGTGGAAAATGGTGACTATGACGCCGCGAGTGTCGCGGCCGAATGTGCCCTGGCGATCAATCCGCGAGACATTTATGCAATCCATGCCGCCTGTCATGTCGGCTATGAACGCGGAGAATATGCCCAGACATTGAAATGGCTGGACGATACGCAGAGCAGTTGGGCCGACAATCTCTGCATGCGCATCCATCTATGGTGGCACCACGCATTGTTCAACCTTTATATGCAGCGTCCGGACGCAGCATTGCAGACTTTCCATCAGAAAATCAGGATCAAGAACGACCCCGACGGCTATGAGGACCTCGACGCGGTCAGCCTGCTGTGGCGCTTGTCGCTGACCGGCGTGGATGTCTCCGACCAGTGGCAGGAGGTCGCACAGTATTGGATGCCGTCGATCGATCAGTCGCAATACTGGTTCAACGATGTGCATTCGATCATGGCGATGGCCAGCTCCAATCACCAGGTATTGGTGCAACGCATCTTGCGACGTATTGACACCACGTATGCCAAGGTCCCGATGGTTGCCAACGTGACACGGACCGTTTGCCGGGGGCTGATTGCATTCCAGCAGGGTGACTACGACTGCGCCCTGGAGCTGCTAGGCAAGATCCTGCCCGCGGTGCGTTCCATCGGGGGCAGTAACGCGCAACGTGACCTGCTGGAGTTGACCGCGATCGAAGCCGCCATACGTGCCCGGCAATTCGACCGCGCGAAACATTTGATCGAGCAGGGGCGCAGCTTGCGTCACCCTTCGCCCTTTCGTACGTTTTTTATCGATCGCTTGGAGCACGACGAACCGATCCATCTGCGAGCGTGA	MIEFIDARGVPVRVHDAAEADELETALVGILGMEFDPLPLLQQRDVRCPISRLIECAVRLSSMEDRQIQHAMVLLGGLDQEDLDLRERGHLAACNHWVNQDYELAHACWRELLALHPRDIVALFSVHMLEFNMGWTERMRETMVTASPSWALMHPLYGYVRGIEAFALVENGDYDAASVAAECALAINPRDIYAIHAACHVGYERGEYAQTLKWLDDTQSSWADNLCMRIHLWWHHALFNLYMQRPDAALQTFHQKIRIKNDPDGYEDLDAVSLLWRLSLTGVDVSDQWQEVAQYWMPSIDQSQYWFNDVHSIMAMASSNHQVLVQRILRRIDTTYAKVPMVANVTRTVCRGLIAFQQGDYDCALELLGKILPAVRSIGGSNAQRDLLELTAIEAAIRARQFDRAKHLIEQGRSLRHPSPFRTFFIDRLEHDEPIHLRA				NA	NA	NA	NA	NA
D1-36_04491	252			hypothetical protein	ATGAACATGCCAACCCAGGAACTGCACACTCAGACCGACACCAGCCCGCTATCGACAGTCCACACCATTTGGGCGGAAGTGCTCAAGCATCCGGCGCTCGACGATCAAGCCGACTTCTTCGACGCCGGTGGTAACTCGATGTTGCTCATTGCGATATTGAACCTGATCCACGAGCGCCTCGACCGTGAAATCAACCCGGCGGCGCTGGTCAGTGGCATCACGCCGGCGAGGCTTGCGGAGCTGGCCGCCTGA	MNMPTQELHTQTDTSPLSTVHTIWAEVLKHPALDDQADFFDAGGNSMLLIAILNLIHERLDREINPAALVSGITPARLAELAA				NA	NA	NA	NA	NA
D1-36_04492	903			hypothetical protein	ATGATCGACGCGTGTGCCTACGTTCTGGGTGAACTCGAACGTCCGTATCACGAAGTGCTTGATTTCACGAAGCAGCTGGAGCGATTCGGCTATCCGGATGAGCCGAGCGTGTTTGGCTGGGGAAGCTACTTCAAGAGCGACGGCGATATATTCGAGCTTGGCATAAAGTCAGCACGTCAGACACTGGCTCGCAGCACCGTGTCCGCGGACGATATCGACTTTGTCATGTTCTGTTCAACCTGCTTCCCTGGCGATGAAATCGAGTACATCAACTACAACGTTCGGGTGTCGCAAGGCTTGGGATTGAAGAAGGCATTTCCCATCGGCGTAACGCTGAACAATTGCATCAGTTTCATAAGTGCAGTCGTGATGGCCGAGAGCATGATTCGTAGCGGGATCTACAACAATATTCTGGTTATCACGGCCGACAAGGTCTATGACGAGTCGATACGTTTCAACAACTTTGCTTTGCTCAGCGATTCGGCGGCGAGTTGCCTGGTCACGCGCCAGGAAGTTGCAGGTCTGCAAATAGTGACTTCGCGTTTTGGTGTCAGCGAGGACCCCATGACCTCCAACCATGGGAAAGATGAACCCGAACTCTATGGGCGAATCCTCAACGAGCTGTTGGACGCTGGCGGAACCCGCCTGGGTGATGTCAGTAAAGTGTTTTGCAACAACATCTTCCGTCCCGTGACGCAACTCAAGGAAACCCGCCTCGGCTTTTCTCGCAGACAGTTGTACCTGGATAACGTCGCGCGCTGCGGGCACTGCTTCTCAGCCGATACGCTGATCAACTATGTCGATTACGCCCGTCAGAACCCGCCGACCGAGGGCGAGAAATTTCTGTTCTCGGTCGATGCGCCCAACCTGCGCGCCAACCTGCTTGTTCAATACAAACATTAA	MIDACAYVLGELERPYHEVLDFTKQLERFGYPDEPSVFGWGSYFKSDGDIFELGIKSARQTLARSTVSADDIDFVMFCSTCFPGDEIEYINYNVRVSQGLGLKKAFPIGVTLNNCISFISAVVMAESMIRSGIYNNILVITADKVYDESIRFNNFALLSDSAASCLVTRQEVAGLQIVTSRFGVSEDPMTSNHGKDEPELYGRILNELLDAGGTRLGDVSKVFCNNIFRPVTQLKETRLGFSRRQLYLDNVARCGHCFSADTLINYVDYARQNPPTEGEKFLFSVDAPNLRANLLVQYKH	PGPT0008355_7564	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008355-fabH-K00648	NA	NA
D1-36_04493	945			hypothetical protein	TTGGACACGTTAAAAGAAGATTTTGGACTGAGCGATGAGGAAATCGCGTTTTTCTTCAAGAATGGATATGTGAAACCGTTCAAGGTCTACGAGCCGGAAGAGATGGAGAAACAGTGGCGGACGGTGCGCCTGCAGACGCTCGATCGCAGCAACGCGGTGTATTCGGACAACACCATTTCCAATGCGGGTAACAACAACCTCGCCAATTATGACCGGCACTTGGATATTCCTTTCCTTGGACAACATGTCTGCAACCCCAGGATTGTGCATAAAGTGCGTAGCTTGATGGGCAAGGACTTGCTGTGCTGGCGCACCGAATTCTTTTCGAAGTATCCCGGCGATGCGGGTACCGATTGGCATCAGGCGAACACGTTCGCCGGCGTGGCGGGGCGGCCTCATATTGTCTGGCCTGATGACTCAGGGCGTCGCGGCACCTTGACCGCCTGGACCGCTTTCACCGACACGATGAAAGACACGGCCTGCATGGCGATCGTCCCGGGCACTCATAACATGATGCATTACGACGAAGAGAAGCGCCTGATCTTCAACCCGGAGAAAAATAACGATCTGGTCAAGGATGGCGTTCGTCGTGGGCTGTGGGGGTATGACTACCGTGACCTGCAAGTTGACCCTGACTGGAAGCCCGACGAATCAAAAGCGGTCTATTTCGAGATGAAGGCCGGCGAGTGCGTGATCTTCTGGTCGACCGTCCTTCATTCGTCGCTGCCGCACCTGGGCTTGACCGACAAAATGCGCCTGGGGTATTCCGCGCGTTATGTGCCGCCGGAGGTTCTGATTCACCCCGATACCGACATGCTCCACGAGTTCGGTGGTGAAGTCAGCCTGGAAAACTACGGCGCCGTCGTGGTGTCGGGCGAGAACCGTTATTCACATAACCGCATTCGCGACAAGAACATGCTGGGCGATCCGTTCATTCCAGCCTGA	MDTLKEDFGLSDEEIAFFFKNGYVKPFKVYEPEEMEKQWRTVRLQTLDRSNAVYSDNTISNAGNNNLANYDRHLDIPFLGQHVCNPRIVHKVRSLMGKDLLCWRTEFFSKYPGDAGTDWHQANTFAGVAGRPHIVWPDDSGRRGTLTAWTAFTDTMKDTACMAIVPGTHNMMHYDEEKRLIFNPEKNNDLVKDGVRRGLWGYDYRDLQVDPDWKPDESKAVYFEMKAGECVIFWSTVLHSSLPHLGLTDKMRLGYSARYVPPEVLIHPDTDMLHEFGGEVSLENYGAVVVSGENRYSHNRIRDKNMLGDPFIPA	PGPT0010776_4	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BACTERICIDAL_COMPOUNDS|ANTIBIOTICS	BACTERICIDAL-SYRINGOMYCIN_METABOLISM,PGPT0010776-syrB2-NA	NA	NA
D1-36_04494	1470	menE		2-succinylbenzoate--CoA ligase	ATGAAAAGTGAGGGACTGGAAACACTGGTTTCAGAACTGAAGCACAATCAGCGCAATGCAGTTTTATTCCACCGTAGTGCGGAAGTGGAGCGCGTCCGGTTTTGTGATCTATACGAAACGATCGCTGTCGTTTCGCGGCAACTCCGCGAGGCCGGGATCACTGCCGGCATGCAGGTTGCCATGGTTGCCGAAAACGGTAAGCCTGCTTTTGTCGTGGACCTCGCGTTGTTGCACATCGGCTGTGTCGTCCTGCAGCTTCCCGAGAAAGCGTTCCAAGGCGGGCTGGCCGATATCGATCAAGCCACTCTTGACTTCCTGTTGGCCGGTCCCTTGTACGGCGAGGCGGTGGACGGCGAGCTGTGGCGCCCCGTAGGGCCGATCTGCGGGTTGGGCCTCTTTGAAAAAATAACGTCTTCGAATGTGTCTCACTCCGTCGTCGGCCCGGTCATTTTCTCGTCGGGAACCAGTGGCAAGGAAAAAAAGATTCGCGTCAACAACGCGACCGTCCTGCATAACGCCAGGCAATTCTTTTCAGCCATCGATGCCGGGCCAGACGATCGTTTCCTAATCTTCCTGCCGCTGTCCAACTACCAGCAGAAACTGTTGATCTACGGGTGCATCGACGCGGGAGTCGATATTGTCTTGAGCTCCATGCAGAACGTCATGCAGGCCCTCAAGCAGACGTCCCCAACCTTGTTCCTGGCGCCACCGCTGTTTTACGACTCGATGTGGCGCCTGGCGGACGGGGACGGGGACAAACTGCGCGTGCTGTTCGGCGCCAATATCCGGCAGATGTGGAGTGGTATGGCCGCACTGCCGTCGGCTGTGCTCAATGGATATCGTACGGGCGGCCTACCGCTTCTGGAAGCGTATGGCATGACGGAATACGGACCTATCGCAGTCAATACCCTTGATCACAATCGACCTGGCTCGGTTGGGCGGGCATTGGTTCCAGGTAGCGTGATGCTGGATGGCGATGGGGAAATCCTGCTCAAGTCAACTCGGCGGTTGACCTGCGGTTACGTGGACCAGCCAGAGGAAGTGGAGCGCGCTGTCTATCGGGACGAAACCCTTATCGCCACGGGCGATATCGGCCATATCGACGAGGACGGTTATATCTTCATCGACGGCCGTAAAAACGACACGATCATTACTTCGGGCGGCCAGAAGATCCACCCCACTTCAGTCGAAGAGGCTTTCAACAGCCTGCCCTTTGTTCACTGTGCGGTAGCGCTGGGCGCCCGTAGACCCCACTTGGGTATGTTGCTGGTCGTCGAACATATCGATTCGAATGCCCGGCAACTCATCGAGCGCACGATTGACAACTACAACCGTGGCGCCACCGTGCCGATACGAAATTATTTCCTGTCGACCGAGCCGTTCACCACGGCGAACGGCCTGCTGACGCAAAACATGAAACTGCAACGCAAGAACATCTCTTCACGATACGAAGCTTCCGTATTCAATTAA	MKSEGLETLVSELKHNQRNAVLFHRSAEVERVRFCDLYETIAVVSRQLREAGITAGMQVAMVAENGKPAFVVDLALLHIGCVVLQLPEKAFQGGLADIDQATLDFLLAGPLYGEAVDGELWRPVGPICGLGLFEKITSSNVSHSVVGPVIFSSGTSGKEKKIRVNNATVLHNARQFFSAIDAGPDDRFLIFLPLSNYQQKLLIYGCIDAGVDIVLSSMQNVMQALKQTSPTLFLAPPLFYDSMWRLADGDGDKLRVLFGANIRQMWSGMAALPSAVLNGYRTGGLPLLEAYGMTEYGPIAVNTLDHNRPGSVGRALVPGSVMLDGDGEILLKSTRRLTCGYVDQPEEVERAVYRDETLIATGDIGHIDEDGYIFIDGRKNDTIITSGGQKIHPTSVEEAFNSLPFVHCAVALGARRPHLGMLLVVEHIDSNARQLIERTIDNYNRGATVPIRNYFLSTEPFTTANGLLTQNMKLQRKNISSRYEASVFN	PGPT0008380_16170	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897	NA	NA
D1-36_04495	1185			hypothetical protein	ATGTCGGCTCGAAACTATCTGTTCTACGGCGTCGTTGCGCTGGCTACGGCTTGCGACCAGGCCGTGCTGACCGGCGTGATCTGGATGTCGCTCAAGCTGTCGGGGTCGAGCGTTCCACTTGGCGTCGTCCTGTGTTTCTCGGTCGCCGTGCCGTTCGCGTTGGATGTGGTGAGCCGGGGACGCGCCGCCAATATCGATGCCCACTGGCTGGTCATTTTACGGGTCGCCGTTTTTCTCATGGCGGCGCTGTTGGCATGGCTCGGGCTTGCCACGGCACTCAGCGTTTTTTTGTTGATCGCCCTGATGGTGGGGACGGCCGACTTCCTGACCGCCAGCTCCTTGGAAATCGAAAATACCCGTCGGGTCGTCGCCGACTGGCTATCGGCCGACGATGCCGCGCGCTATATGCAAACGGCCATCCAAGTCGGCGGCTTCACCGGTTCGCTGGCCGGCGGAGCACTGCTGGGCTGGCTCAGCGACTCGGCGTTCCTGATGGGCGTGGCGTTGGCGGGGGCCGCTCTCAGCCCGGCGCTGCTGGCGGGCAGGATGAAACGTAGCGTGACGACCGTAGCGGACAGCGCGAAACCGCGACAAGACAAGCAGACCAGCGATCGTGTGTTCGACATGCCATATGGCTGGATGGCCTGCCTGGGGCTGATTGCCCTGCATATCGGCGCGTTCAACAGCATGATGCCGGTCGTCTATCAACAAGTGAATCATTGGAGCCCTACCAGTTTCGGCATTGCATCCGGTGTCGCAGGTATCGGCGCTTTCCTGGCGGCATTGATGCCACTGGGCAAGCATCGACTCGCCATGTTCGCGGTGGGGCTGATCGTCGTCGATGCGGTGATGGTCATGGCCCCTCAGGTCGCGTTTTCGCTGATCGGTGCCTTCCTGGTCGGCTTTATCACCAATCACCTGCGCATCGCCGTCCGCAGCCAATTGATGCGCAGCGCCAATAACGATGCCCAGGCGGCACTTGTGGGCAGCCGCAGCACCTTTTGCGCGTATTCCATGCAGGCCACGGGCCCGTTGTTGCTGACGTTCGCCACGTCGGCGTCGGTTATGGGGCCAGCATCCGGACCGGCACTGATGATCGGCACCGGTGTGATCACCGCCACCGGGCTGCTGGGGCTGGCTCAGTTGCGTCGCGCCCCGCGACCCGTTCCGTTGGCACGCTCATAA	MSARNYLFYGVVALATACDQAVLTGVIWMSLKLSGSSVPLGVVLCFSVAVPFALDVVSRGRAANIDAHWLVILRVAVFLMAALLAWLGLATALSVFLLIALMVGTADFLTASSLEIENTRRVVADWLSADDAARYMQTAIQVGGFTGSLAGGALLGWLSDSAFLMGVALAGAALSPALLAGRMKRSVTTVADSAKPRQDKQTSDRVFDMPYGWMACLGLIALHIGAFNSMMPVVYQQVNHWSPTSFGIASGVAGIGAFLAALMPLGKHRLAMFAVGLIVVDAVMVMAPQVAFSLIGAFLVGFITNHLRIAVRSQLMRSANNDAQAALVGSRSTFCAYSMQATGPLLLTFATSASVMGPASGPALMIGTGVITATGLLGLAQLRRAPRPVPLARS				NA	NA	NA	NA	NA
D1-36_04496	285			hypothetical protein	ATGAGTCACGCAGGCCTTGAAGCCGATCGTCACCACAGTGTTCTCGCGCAAATCTATCAACTGATGAAAGAAGTCGCGCCCCAAAGCGTCCAGGTGAACCCGGACGTGTCGTTTCTCGAAGCCGGGATGGACTCGATGAAAGCGATCCTCCTGGTCTCGCGCCTGGAAGACTGGTTTCAAATCGAATTCGAAACCGATCATCTGGCGCCCCAGTTCCTGGGCAGCCCGGCATCCGTGGCAAGGCTGCTCCAAGATCACTACTTGGCTATCCCGGAAAAGGACTAG	MSHAGLEADRHHSVLAQIYQLMKEVAPQSVQVNPDVSFLEAGMDSMKAILLVSRLEDWFQIEFETDHLAPQFLGSPASVARLLQDHYLAIPEKD				NA	NA	NA	NA	NA
D1-36_04497	954	btrH		Ribostamycin:4-(gamma-L-glutamylamino)-(S)-2-hydroxybutanoyl-[BtrI acyl-carrier protein] 4-(gamma-L-glutamylamino)-(S)-2-hydroxybutanoate transferase	ATGCAAGAACAACAGTTTCCCTACGATGTGCATTTGTACGACCGTCGTTTTCTCAACTGTTTCCAGCGCCACGCTGTAGTTTTCATGAAACGCCTGGGCATCGAAGTGGACTGGCTGTTTTACAACGCCTTGCCGACCGTGGGCGACCTGTTCCAGCAGATGGTGGTGGAGAACAAGCCCAAGTACGCGTTGCAAAGCCGCTACTTCGCCGAAGACGACCTGGCCCTGCTGGGCGTGCGTTTCCACGAGCAGAAGGCAAAGTGCCTGGATGACCTGCTGCCGATTATCCATGGGCAAATCCAGGCCCATGGATGCGCGTTCCTTTCAGGAGACGTGTATTACTTCGCTCACTGCCCCGAATACCGTAGCACCCATGCGCAGCATGTTGTCGTGCTGCGCCAGGCCAATGCCGATGGCAGTTGGGAGGTGGTCGACGACAACGCTGCCAGCGTGTTGTGCGAATACCGTTACCCACACGAAGTGATTGAACAGTTCTTCCAGAATGAGGGCAGCCGGCGCATGTTTTGCCTGGAATGGACGCCAGTTCAATCGCCTGATGTCGAGATTACATTCCGTCAGCGTCACCAGGCCTTCCTGGACGACTTCAACACCGACCCTTGGTTCTATGGCCATCTGGAGCAGTTGCTGGACAACCCGCTGGCCAGCAATACGACAAAGTTTCGGGCATTGCACGATGTGTTCACGCTCCTGGCCGGCTCCCGCAATTGCTTTGCCCGCTATCTGGAGATGACCGGTGCTCCCGTTGCAGCCATGAAACGGGTTGGCCTGTTTGTCCAGGAAGCCAGTGTACTCAAAGGCCTGATGGCGATGGCTCAGATAACCGGCAAGGTTCGCCGCCGCGACTTGATCGAGCGCTGTGCAGCCTTGGCCGGGTTGGAAGCCGACTATCTGCGTGAGCTTCGTTTAACCCGGACGATCGATATCGCCAGCTAG	MQEQQFPYDVHLYDRRFLNCFQRHAVVFMKRLGIEVDWLFYNALPTVGDLFQQMVVENKPKYALQSRYFAEDDLALLGVRFHEQKAKCLDDLLPIIHGQIQAHGCAFLSGDVYYFAHCPEYRSTHAQHVVVLRQANADGSWEVVDDNAASVLCEYRYPHEVIEQFFQNEGSRRMFCLEWTPVQSPDVEITFRQRHQAFLDDFNTDPWFYGHLEQLLDNPLASNTTKFRALHDVFTLLAGSRNCFARYLEMTGAPVAAMKRVGLFVQEASVLKGLMAMAQITGKVRRRDLIERCAALAGLEADYLRELRLTRTIDIAS				NA	NA	NA	NA	NA
D1-36_04498	459			hypothetical protein	ATGCTGCAAGTGGATTGGCTCCTCAACCACATGGATAAATGCAACCTGATGGCCGAATGGCTGTATCGAGAATTTACCTATGAATTCGCCCACCAATCATTGGCCCACTGGCAGGAGGAATTCTCGGCAGGCCAGCGCGATGGCCGCTGGAAATGCCTGATCGCCATGGAACATGACCAACTGCTGGGCGGTGCCTCGCTGGCACATGACGACCTGCCCGACCACCCCGAGCTCGGCCCGTGGTTGGCCTGCGTATTCGTCCACCCGGATGCCCGACGAAGGGGGTTGGCCGCGCAATTGATCGAAGGCATCTGCAACCATGCCAAAGAAGCAGGTTTTGCGACGTTGTTCCTGCACACCCACAGTGAACGGGATTACTACGCCAAGCTTGGCTGGGAAGTGCTGGAGCGCTTCGAGGCTTGGGGCAAGGAGCAATGGCTGATGGTGCGGTGTTTGTAA	MLQVDWLLNHMDKCNLMAEWLYREFTYEFAHQSLAHWQEEFSAGQRDGRWKCLIAMEHDQLLGGASLAHDDLPDHPELGPWLACVFVHPDARRRGLAAQLIEGICNHAKEAGFATLFLHTHSERDYYAKLGWEVLERFEAWGKEQWLMVRCL				NA	NA	NA	NA	NA
D1-36_04499	624	ynbA	COG0558	Inner membrane protein YnbA	ATGCCTTCCATTTATCAGCTCAAGCCTGCCTTCCAAAACCTGCTTCGTCCCACCGTACAACGCCTTTACGACAAAGGCATCACCGCCAACCAGGTGACCTTGCTCGCCGGCTTCGTTTCCGTGCTGGTGGGGGCGGTGATTGCATGGTTCGCCAACCATCCGTGGGTTTTCGTCCTGGTGCCGGTGTGGATGTTCCTGCGCATGGCGTTGAATGCGGTGGATGGCATGCTTGCGCGGGAGTTCGGCCAGCAATCGAATCTGGGCGCCTACCTCAATGAGCTATGCGATATCATCGCCGACGCGGCCTTGATCCTGCCTTTTGCCCTGTTTCCCGATACCAGCCTGTTGCTCGTGTTGTTGGTCACGCTGTTGGCGTTGTTCAGCGAATACGCTGGCGTGCTGGGCGCGATGGTCGGGGCTTCGCGGCGCTATGACGGGCCGATGGGCAAGAGTGACCGCGCGTTTGTGTTTGGCGTGCTGGCGACCGGTATTGCCCTGGGTTGGCTCGGGGCGCTGTGGGTTGATGGTGTGATGGCGGTGGTTGCCGCCCTGCTGGTTTATACCTTGGTCAATCGGGTCCGCCATGGCCTGAGCCAGGTGTCGGAAAACGCTCCCTCAGCATAA	MPSIYQLKPAFQNLLRPTVQRLYDKGITANQVTLLAGFVSVLVGAVIAWFANHPWVFVLVPVWMFLRMALNAVDGMLAREFGQQSNLGAYLNELCDIIADAALILPFALFPDTSLLLVLLVTLLALFSEYAGVLGAMVGASRRYDGPMGKSDRAFVFGVLATGIALGWLGALWVDGVMAVVAALLVYTLVNRVRHGLSQVSENAPSA	PGPT0007705_1857	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_PHOSPHATIDYLTRANSFERASE_ACTIVITY,PGPT0007705-pgsA|PGS1-K00995	NA	NA
D1-36_04500	1758	ynbC	COG2267	putative protein YnbC	ATGCGTGAAGCCCAGGAACAGACGTTCACCACCCACGACGGCGTGGAGTTGTTCTACCGGCACTGGCCGGCTGTCGAGGCCACGGCGGGTGAACCCCGTCAGGCTGTGTTGTTGTTTCACCGCGGTCATGAACACTCGGGGCGCATCGCGCACCTTGTGGATGAGCTGGATCTGCCCGGGTTCGAATTTTTCGCCTGGGACGCACGTGGCCACGGCCAGTCGCCGGGCGAGCGCGGCGACAGCCCTAGCTTTGCTACCAGCGCCCGTGACGTGCAGACTTTTTGCGATCACATCGGCGCCACGCACCAGATCGACGAACAGAACATCGCCGTGATCGCACAAAGCGTCGGCGCGGTGATCGCGTCTACCTGGGTCCACGACTACGCGCCGCGCATTCGCTCGCTGGTGCTGGCGTCGCCAGCCTTCAAGGTCAAGCTCTACGTACCGTTCGCCCGTCCGGGCCTGGCGCTGATGCGCAAGTTCCGTGGCAACTTCTTCGTCAACAGCTACGTCAAGGCCAAGTTCCTCAGCCATGACCCGGCGCGGGTGGCGTCCTACGACAGCGATCCGTTGATCACCAAGGCCATTTCGGTGAACGTGCTGCTGGGCCTGTACGAAGCGGCCGACCGGGTTGTAGCCGATGCCCAGGCGATCCAGGTACCGACGCAGCTGTTGATCTCCGGTTCCGACTTCGTGGTGCATCGCAAACCCCAGGAGCAGTTCTTCGAGCGCCTGGGCAGCCTGCACAAGGAGAAGCACATCCTGCCGGGCTTCTTCCACGACACTCTGGGCGAAAAGAACCGTGCGCCAGCCATCGCCAGCGCCCGTCGTTTCATCCTGCAGAATTTTGCCCGCCCGCTGGAGCGCCCTTCCCTGCTGGACGCCGATCGCCTCGGCGTGACCTGCGCCGAAGCCGAAACCCTGGCGACGCCGCTGCCGCACAACTCGCTGCGTGATCTTTACTGGCGCATGACCCGCGCCAGCATGCGCTTTGGCAGCAAGCTGTCTGCCGGCGTGAAACTGGGCTTCGACACCGGTTTCGACTCTGGCAGCACCCTGGACTACGTCTACCGCAACCGCCCCACCGGCACGTCGGCGCTGGGCAAGATGATCGACCAGAACTACCTGAACTCCATCGGTTGGCGCGGTATTCGCCAGCGCAAGGTGCACGTCGAGGAGTTGCTGCGCCTGGCGATGGCCGAGTTGCGCGCCCAGGACCGCGAGGTGCGCATCGTCGACATCGCCGCCGGTCATGGCCGCTACATTCTGGAAGCGCTGCAAGGCGTCAGCCCGTTGCCGGAGTCGATCCTGCTGCGCGACTACAGCGACATCAACGTGCGCGACGGCAGTGCGCTGATCGTCGAGAAGGGCTTGGGCGACATCGCCCGATTCGTCAAGGGCGATGCCTTCGACCGCCAGGACCTGGCGGCGCTGGAGCCCAAGCCGACCCTCGCCGTGGTGTCCGGCCTGTACGAATTGTTCGCCGATAACCAGATGGTCGGCGGCTCCCTCGCGGGCCTGGCCGAAGCGGTGGAGCCCGGCGGTTTCCTGGTCTACACCGGTCAGCCGTGGCACCCGCAACTGGAACTGATCGCCCGCGCCCTGACCAGCCACCGCGCCGGCCAGGCCTGGGTGATGCGTCGGCGCACCCAGGCGGAAATGGATCAGTTGGTCGAGGCGGCGGGCTTTCGCAAGATCACCCTGCGTGTCGATGAGTGGGGCATTTTCAGCGTGTCGCTGGCGCAGCGGGTCCAGTAA	MREAQEQTFTTHDGVELFYRHWPAVEATAGEPRQAVLLFHRGHEHSGRIAHLVDELDLPGFEFFAWDARGHGQSPGERGDSPSFATSARDVQTFCDHIGATHQIDEQNIAVIAQSVGAVIASTWVHDYAPRIRSLVLASPAFKVKLYVPFARPGLALMRKFRGNFFVNSYVKAKFLSHDPARVASYDSDPLITKAISVNVLLGLYEAADRVVADAQAIQVPTQLLISGSDFVVHRKPQEQFFERLGSLHKEKHILPGFFHDTLGEKNRAPAIASARRFILQNFARPLERPSLLDADRLGVTCAEAETLATPLPHNSLRDLYWRMTRASMRFGSKLSAGVKLGFDTGFDSGSTLDYVYRNRPTGTSALGKMIDQNYLNSIGWRGIRQRKVHVEELLRLAMAELRAQDREVRIVDIAAGHGRYILEALQGVSPLPESILLRDYSDINVRDGSALIVEKGLGDIARFVKGDAFDRQDLAALEPKPTLAVVSGLYELFADNQMVGGSLAGLAEAVEPGGFLVYTGQPWHPQLELIARALTSHRAGQAWVMRRRTQAEMDQLVEAAGFRKITLRVDEWGIFSVSLAQRVQ				NA	NA	NA	NA	NA
D1-36_04501	1338	ynbD	COG0671	putative protein YnbD	ATGAGCGCCGTCATCGCTCCGGTCCGCGAACCCGCGCTGCTGAAACCGGCGGTGCTGTGGCTGCTGTTGCTGGCGCCGCTGTTCTTCACCACGTACGGCTTCGCCACCTGGGTCACGGCCCAGCGTGACGACGTCGGCAGCCTGGTGTTCGGCTGGGAAAGCCACATGCCGTTCATGGCCTGGACGATCGTGCCGTACTGGTCGATTGACCTGTTATACGGCCTATCACTGCTGTTGCCCAACAGCCGCGACGAACTCAAGCGCCACGCCTTGCGCCTGCTCACGGCCCAAGGAATTGCCGTCAGCTGCTTCCTGCTCTGGCCGCTGACTTTTACCTTCCCTCGGCCGGAAATGGACGGGGTGTTCGGCTGGATGTTTGACGTACTGGCCGGCTTCGATAAGCCGTTCAACCAGGCGCCGTCGCTGCACATCGCGCTGCTGGTGGTGCTCTGGGTCTGTTATGAGCGCCACCTGCAAGGCGTCTGGCGTTGGCTGATGCACGGTTGGTTCGCGTTGATCGGCGTGTCGGTGCTGACCACTTACCAACACCATTTCGTCGACGTGCCGACCGGCGCGCTGGCCGGGTGGTTGTGTGTCTGGTTGTGGCCGCTGGACCGGCCAAGTCCGCTGTTGAGTGCGCGCCTGGCGACCGATCCAGCCCGTCGACGCTTGGCCATGCGTTATGGCTTGGGCGCGGCGGCGATGTTCATCCCGGCGTTTGCCTACGGTGGCGCGTGGCTCTGGCTGATATGGCCGGCGGTGGCGCTGCTCATGGTGGCACTGAATTATCTGGTGTTCGGCGCGAGCGGGTTCCAGAAACGTGAAGACGGCCGGCTGAGCCCGGCGGTGCGCTGGTTGCTGGCGCCTTATCTGATGGCGGCGTGGATCAATTCCCGCCTGTGGACGCGCAAGCACCCGCAACCTGACCAGATCATGGATGACGTCTGGCTCGGGCGGATTCCTACGTCGACAGCGCTGAAGGACAGCCCGTTCAACGGGGTGCTCGACCTGTGCGCCGAGTTGTCCATGGACAGCACGGCAATCGCTTATCGCACCTTGCCTGTGCTCGACCTGACCGCACCGACCACCGAGCAATGCCTGGAGGCCGCGCAGAAAATCGAGCACCTGCGCCAGCACGGGCCGGTGCTGGTCTGCTGCGCCTTGGGTTATTCGCGCAGCGCCACCGCCGTGGCGGCGTGGTTGCTAAGCACTGGCCGTGCTGCCAGCGTCGACGCAGCCATTGCGCAGATCCAGCGTGTGCGCCCGCGTGTCGTCCTACACCCGGCCCATCGCCAGGCGTTGGGGCAAATATCCGCAGGGTTCGGGGAATGGTCATGA	MSAVIAPVREPALLKPAVLWLLLLAPLFFTTYGFATWVTAQRDDVGSLVFGWESHMPFMAWTIVPYWSIDLLYGLSLLLPNSRDELKRHALRLLTAQGIAVSCFLLWPLTFTFPRPEMDGVFGWMFDVLAGFDKPFNQAPSLHIALLVVLWVCYERHLQGVWRWLMHGWFALIGVSVLTTYQHHFVDVPTGALAGWLCVWLWPLDRPSPLLSARLATDPARRRLAMRYGLGAAAMFIPAFAYGGAWLWLIWPAVALLMVALNYLVFGASGFQKREDGRLSPAVRWLLAPYLMAAWINSRLWTRKHPQPDQIMDDVWLGRIPTSTALKDSPFNGVLDLCAELSMDSTAIAYRTLPVLDLTAPTTEQCLEAAQKIEHLRQHGPVLVCCALGYSRSATAVAAWLLSTGRAASVDAAIAQIQRVRPRVVLHPAHRQALGQISAGFGEWS				NA	NA	NA	NA	NA
D1-36_04502	471			hypothetical protein	ATGGTCATGAGCAGTGACATCGAACTGCACACCGTGGCGAGCTTGTTGCGCCGGGGTCATTCGCTGGATCAGCTTTCCACTGGCCTGACGCTGCTGGCAGCGTTGATCGGCCTGGGCCAATGGCTGGTGGGCAGCGTCGATCCGTGGCTGCTGTTGCTGAGCTTCGGCGTGTTCGTCCTCGGCATGCAGGAAAAATATCTGGCGTTTCGCGTGGCCTTTGATGCCGATCTGTTTCAAATCGTCGCGGATGCCGGCAAGCCACTGACCGAACGCACCCAAGCATTGGACGAGGCCCTCGCCAATCTCGGCCTGCAACCGGCCGAGCGTGGCGGGCGGTCGTGGCCCGAGCGCAGCCACGGCTCGATGCGCCTGCTTCGCCGCCAAGCCTGGCTGGTGTTTACGCAAGCTTTGTTGACCGTGAGCTTCGTCCTGGCCAGTCCCTGGCTGGTTTATTCGGACCTTGGAACTTAA	MVMSSDIELHTVASLLRRGHSLDQLSTGLTLLAALIGLGQWLVGSVDPWLLLLSFGVFVLGMQEKYLAFRVAFDADLFQIVADAGKPLTERTQALDEALANLGLQPAERGGRSWPERSHGSMRLLRRQAWLVFTQALLTVSFVLASPWLVYSDLGT				NA	NA	NA	NA	NA
D1-36_04503	621			hypothetical protein	ATGTTCGAACCCGTGGTCGCCAATCTCATCACCTCCGCCGCGCGGATGGTCACCGGCGCTCGCAGCCTGTGGCTCGGCTGCGCGCCGACGCCGGTACAGCGGATCTATTTCGCCAACCACAGCAGCCACGGTGATTTCGTGTTGCTCTGGGCCTCGCTGCCACCGGCGCTACGCAAGCTCACCCGCCCGGTTGCCGGGGCCGATTACTGGCAAACCAGCCCGGTGCGCCGCTACATCATCAACCGGGTGTTCAACGGCGTGCTGGTGGATCGCGAGCGCAAGGACCCTGCCTACAATCCATTGCAGCCGATGCTCGACGCGCTGGAAAACGGCGACTCGTTGATCATCTTCCCCGAGGGCACGCGCAACCCGGACGAAGGCCTGCTGCCGTTCAAGAGCGGGATCTACCACTTAATGAAAAGCCACCCGGAGGTGGAGGTAATCCCGGTGTGGATCGCCAACCTCAACCGCGTCATGCCCAAGGGCCGCGTGCTGCCCTTGCCGCTGCTGTGCACCACCAGCTTCGGCGCGCCGCTGTGCATCGAGGAAGGCGAAAGCAAAGAGCAATTTCTAGAACGCAGCCGTGCCGCGCTGCTGGCACTGGCCCCGGAGCACGTCTGA	MFEPVVANLITSAARMVTGARSLWLGCAPTPVQRIYFANHSSHGDFVLLWASLPPALRKLTRPVAGADYWQTSPVRRYIINRVFNGVLVDRERKDPAYNPLQPMLDALENGDSLIIFPEGTRNPDEGLLPFKSGIYHLMKSHPEVEVIPVWIANLNRVMPKGRVLPLPLLCTTSFGAPLCIEEGESKEQFLERSRAALLALAPEHV	PGPT0007685_27	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_CYTIDYLYLTRANSFERASE_ACTIVITY,PGPT0007685-cdsA|ynbB-K00981	NA	NA
D1-36_04504	933			hypothetical protein	ATGGATCGATATACCTTGATGTTGTTTGGCGGGATCGGCGCGATTCTGCTGCTGGCTTCGTTGATCGGTTTCATTCTCAAGCTGCGGACCAAAGGCGCGCCGAACTCAGTCATCGAGAACCTCAACGCGCGGATCAACGCCTGGTGGATCATGGTGCTGGTGATCGGCATCGCGTTCTGGCTCGGCAACGCGGCGGTAATCCTGCTGTTCTACGCCGTGTCGTTCTACGCATTGCGCGAATTCCTGACCCTGACGCCGACCCGGCGCAGTGACTATCCCGCCCTCGTGGCGGCGTTTTACCTGGCACTGCCGCTGCAATACCTGCTGATCTACTACGACTGGTACGGACTGTTCTCGATCTTCATTCCGGTGTACGTGTTCCTGCTGTTGCCGATCCTCGCGTCGCTGGGCGGTGACAGCACGCACTTCCTCGAACGCGCGTCGAAAGTGCAGTGGGGGTTGATGATCGCGGTGTTCTGCATTTCCTTCGTGCCCGCCCTGCTGACCTTGGACATTGCAGGTTTTGAAGGGCGCAACCTGTTGCTGATCGCCTACCTGGTGATCGTGGTGCAGCTCTCGGATGTGTTGCAGTACGTCTGCGGCAAGCTGTTCGGCAAGCACAAGATCGCGCCGAACCTGTCGCCGTCGAAGACCGTGGAAGGTTTTGTCGGCGGCATTTTCCTGGCCTCGCTGATCGGCGGCGCGCTGTGGTGGATCACGCCGTTCAACCCCTGGCAGTCATTCCTTATCGCTTTGCTGATCAACCTGCTTGGGTTTGCCGGCGGCATCGTCATGTCGGCCATCAAGCGCGACCGGGGCGTGAAGGATTGGGGCCACATGATCGAAGGCCACGGCGGCATGCTCGACCGCTTGGACTCGGTGTGCTTCGCCGCGCCGATCTTCTTTCATCTGGTTCGGTATTGGTGGACTTGA	MDRYTLMLFGGIGAILLLASLIGFILKLRTKGAPNSVIENLNARINAWWIMVLVIGIAFWLGNAAVILLFYAVSFYALREFLTLTPTRRSDYPALVAAFYLALPLQYLLIYYDWYGLFSIFIPVYVFLLLPILASLGGDSTHFLERASKVQWGLMIAVFCISFVPALLTLDIAGFEGRNLLLIAYLVIVVQLSDVLQYVCGKLFGKHKIAPNLSPSKTVEGFVGGIFLASLIGGALWWITPFNPWQSFLIALLINLLGFAGGIVMSAIKRDRGVKDWGHMIEGHGGMLDRLDSVCFAAPIFFHLVRYWWT	PGPT0007685_1749	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_CYTIDYLYLTRANSFERASE_ACTIVITY,PGPT0007685-cdsA|ynbB-K00981	NA	NA
D1-36_04505	330	cyoD_2	COG3125	Cytochrome bo(3) ubiquinol oxidase subunit 4	ATGAGCAGTCATCAGAGCAGCGTCGATGCCAGCCATGGCAGCGCAAAATCCTACCTCACCGGGTTCGTGCTGTCGGTCATCCTCACCGTCATCCCCTTCGCCCTGGTGATGTATCCCACATTGCCCAAGCCCGTGACGGCCGGGATCGTGGCGATATTCGCGGTGATCCAGATCGTCGTCCACCTGGTGTATTTCCTGCACCTGAACTTCTCACCGCAGCAACGCTGGAACCTGACGGCGCTGGCGTTCTCAGCGGTGGTGATTGCGCTGCTGGTGGGGCTGTCGCTGTGGATCATGTACAGCGTGCATCACAATATGTTGGCGCATTGA	MSSHQSSVDASHGSAKSYLTGFVLSVILTVIPFALVMYPTLPKPVTAGIVAIFAVIQIVVHLVYFLHLNFSPQQRWNLTALAFSAVVIALLVGLSLWIMYSVHHNMLAH				NA	NA	NA	NA	NA
D1-36_04506	615	cyoC_2	COG1845	Cytochrome bo(3) ubiquinol oxidase subunit 3	ATGTCCAATCTCGTTCAACCCAACGCCACCGCGCCGGAATCCGAACACGGGCACTCGGACGCCAGCTCCATGACCCTGTTCGGGTTCTGGATCTACCTGATGACCGACTGCATCTTGTTCGCAACGCTGTTTGCGACCTATGCGGTACTGGGGCAAAGCGTCGCCGGTGGCCCTGGCGCCGCCGACATTTTCGAATTGCCCTACGTCCTTACGGAAACTTTCATCCTGCTGTTCAGCAGCATCACCTACGGTTTCGCCATGCTCGCGCTGAGCGCTGGCCAGAAGCAAAAAGTGCTGGCCTGGCTCGGCGTGACGTTCCTTCTCGGCCTTGCGTTTATCGGCATGGAAATCCATGAGTTCGAGAAACTCATCGCCGAAGGCTATGGCCCGAACCGCAGCGCCTTCCTCACGGGCTTCTTCACCCTGGTGGGCACTCACGGCCTGCACGTCGCCACCGGCCTGTTGTGGATGGCTGTCGTTATGTTCCAGGTTCAACGCAAAGGCCTGACCACCGTCAACGCGACCCGCATGGGCTGCCTGAGCCTGTTCTGGCACTTCCTCGACGTGGTGTGGATTTGTGTGTTTACCGTGGTCTATCTGTTTGGAGTGATGTAA	MSNLVQPNATAPESEHGHSDASSMTLFGFWIYLMTDCILFATLFATYAVLGQSVAGGPGAADIFELPYVLTETFILLFSSITYGFAMLALSAGQKQKVLAWLGVTFLLGLAFIGMEIHEFEKLIAEGYGPNRSAFLTGFFTLVGTHGLHVATGLLWMAVVMFQVQRKGLTTVNATRMGCLSLFWHFLDVVWICVFTVVYLFGVM	PGPT0004035_2439	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FoxABCD,PGPT0004035-coxC|ctaE-K02276	NA	NA
D1-36_04507	1974	cyoB_2	COG0843	Cytochrome bo(3) ubiquinol oxidase subunit 1	ATGTTTGGAAAACTCAACCTTGAGGCGATCCCGACGGATGAGCCCATCATCATGTGGACCCTCGCGGTGGTGGGGCTGGTCGCCTTGGCGGGCATCGGCGCCATCACCTACCGCCGCAAATGGACGTACCTGTGGAAAGAGTGGTTCACCTCGGTCGATCACAAGCGCATCGGCGTGATGTACATCGTCGTGGGCCTGGTGATGCTGCTGCGCGGGTTTTCCGACGCGATCATGATGCGCACGCAGCAGGCGATGGCGTCCGACGGTTCGCCCGGTTATCTGCCACCGGAACACTACGACCAGATCTTCACCGCCCATGGCGTGATCATGATTTTCTTCATGGCGATGCCGTTGGTGGTGGGGTTGATGAACATCGTCGTGCCCTTGCAGATCGGTGCCCGGGACGTTGCGTTCCCGTTCCTCAACGCGTTGAGTTTCTGGCTATTCGTGGCCGGCGCGATGCTGGTGAACATTTCCCTGGCGGTCGGTGAGTTCGCCCGCACCGGTTGGGTCGCTTATCCGCCGTTGTCGGGGCTTTCCTACAGCCCCGGGGTCGGGGTGGACTATTACATCTGGTCATTACAGATATCCGGGGTCGGAACGTTGCTCACCGGGGTGAATTTCTTCGTCACGATCTTGAAAATGCGTACACCGGGTATGACGCTTTTCCGCATGCCGGTGTTCACCTGGACGGTGCTGTGCACGGCGGTGCTGATTCTTGCATCGTTCCCGATTCTTACCGCGACGCTGTTCATGCTCAGCCTCGACCGCTACCTGGACATGCACTTTTTCACCAACGAGCTGGGCGGCAACCCGATGATGTACGTCAACCTCATCTGGGCCTGGGGCCACCCGGAGGTGTACATCCTGATCCTGCCGGCGTTCGGCATCTTTTCCGAGGTGGCGTCCACCTTCAGCCGCAAGCGTCTGTTCGGCTATCACTCGCTGGTGTGGGCGACAATCGTCATCACCATCCTGTCGTTCATCGTCTGGGTGCACCACTTCTTCACGATGGGCTCGGGGGCGAACGTCAACGCCTTCTTCGGCATCATGACCATGATCATCGCCGTGCCTACGGGAGTGAAGATTTTCACCTGGCTGTTCACCATGTACCGCGGGCGAGTTCGCTTTGAAACGCCGATGCTGTGGACGGTGGGCTTCATCGTCACGTTCAGCATCGGTGGCATGACCGGCGTGCTGCTGGCGGTGCCCGGGGCGGATTTCCTGCTGCACAACAGCCTGTTCCTGATCGCCCACTTCCACAACGTGATCATCGGTGGCGCCGTGTTTGGCTACCTGTGCGGCCTGACCTATTGGTTTCCCAAGGCATTCGGCTTCAAGCTCCATGACGGCTTTGGACGGGCGGCGTTCTGGTGCTGGATTGTCGGCTTCTACTTCGCCTTCATGCCGTCCTACTTCCTGGGCTTCATGGGCATGACGCGGCGTTTGAACCACTTTGATGTTCCGCAGTGGCGGCCCTGGCTGGAGCTGGAGTTGATCGGTGTCGGCATCATCCTGTGCGGCGTGGTCTGCCAGATCTTGCAGTTCTACTTCAGCATCCGCCACCGCCACCAGAACCGCGACCTGACGGGCGACCCATGGGACGGTCGCACGCTGGAGTGGTCCACGGCGTCACCGCCGCCGTTCTATAACTTCGCCCAGCAACCGGTGGTGGAGGGCATCGACGCCTATTGGGGCATTAAGGAGCGTGGGCAGAAAACTGCCATCGAAGCCGACTTCCAAGCCATCCACATGCCGCGAAACACCGCCATGGGACTGGTCATCAGCCTGTTCAGCCTGATCATGTGCTTTGCCCTGGTGTGGCATATCTGGTGGCTGGCCATTGTCGGGTTGGTCGCGACCATCGGCGGCGTGATCTGGCGCAGCGCCGATGACGACATCGATTACTACGTGCCCGCCGAGGAGGTGGCGCGCATCGAAAATCAACGCATCAAGATGTTGGCGGAGGCTTGA	MFGKLNLEAIPTDEPIIMWTLAVVGLVALAGIGAITYRRKWTYLWKEWFTSVDHKRIGVMYIVVGLVMLLRGFSDAIMMRTQQAMASDGSPGYLPPEHYDQIFTAHGVIMIFFMAMPLVVGLMNIVVPLQIGARDVAFPFLNALSFWLFVAGAMLVNISLAVGEFARTGWVAYPPLSGLSYSPGVGVDYYIWSLQISGVGTLLTGVNFFVTILKMRTPGMTLFRMPVFTWTVLCTAVLILASFPILTATLFMLSLDRYLDMHFFTNELGGNPMMYVNLIWAWGHPEVYILILPAFGIFSEVASTFSRKRLFGYHSLVWATIVITILSFIVWVHHFFTMGSGANVNAFFGIMTMIIAVPTGVKIFTWLFTMYRGRVRFETPMLWTVGFIVTFSIGGMTGVLLAVPGADFLLHNSLFLIAHFHNVIIGGAVFGYLCGLTYWFPKAFGFKLHDGFGRAAFWCWIVGFYFAFMPSYFLGFMGMTRRLNHFDVPQWRPWLELELIGVGIILCGVVCQILQFYFSIRHRHQNRDLTGDPWDGRTLEWSTASPPPFYNFAQQPVVEGIDAYWGIKERGQKTAIEADFQAIHMPRNTAMGLVISLFSLIMCFALVWHIWWLAIVGLVATIGGVIWRSADDDIDYYVPAEEVARIENQRIKMLAEA	PGPT0004025_429	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-FoxABCD,PGPT0004025-foxA|coxA|ctaD-K02274	NA	NA
D1-36_04508	927	cyoA_2	COG1622	Cytochrome bo(3) ubiquinol oxidase subunit 2	ATGCGAACTCGACTGCCTTGTTACTTATCAAGGTTGTTGCTGGTCGGCGGGATGCTGTTGCTCGGCGGTTGCGACATGGTGTTGTTCAATCCCAAGGGACAGGTCGGCGTTGACCAACGCAACTTGATCATTCTCTCGACGCTGTTGATGTTGCTGGTGGTGGTGCCGGTCATCGTCATGGCGTTCGTCTTTTCGGTGAAGTACCGCGCTTCCAACACAAAGGCGAAATACACGCCGGAGTGGGCGCATTCGCGAAAGATCGAAACGGTGGTCTGGGGTGTCCCGCTGGTGATCATCATCATTCTGGGCGTGGTCACCTGGAAGTCCACCCATGCGCTGGACCCTTACCGGCCGCTGGATTCGGACGTGAAGCCGCTGGTGGTGCAGGTCATCGCGGCGGATTGGAAGTGGGTCTTCATCTATCCGGAACTGGGGATCGCTACGGTCAACGAGTTGGCGATGCCGTTGGACACACCGGTGAACTTTCGCGTGACGTCCGACGGTGCCATGACCTCGTTTTTCATACCGGCACTGGGCGGGCAGATCTACGCCATGGCCGGCATGCAGACCCAACTGCACCTGATTGCCAACGAGGCCGGGGAATACCGGGGCATCGCCGCCAACTACAACGGCCCGGGTTTTTCCGACATGCACTTCCGAACCCTGGCCACCGATGCGGCGGGCTTCGACAAGTGGGTCGCCGACGTCCGCGCAGGGCAAGGGCGGTTGGATAAGGACAGTTACGCCCGACTCGCCCGACCCACGGTCAAGCACCCGGTGGAGCACTACGCCTCGGTCCAGCCGAACTTGTTCCAGAGCATCATCGATAAGTACGAAGGCATGAACCGATCCCGTGAGGTCGAGCATCGCATGGAGCACATGCAAGGCAGCATCGAATCACCCGTCGGGGCCCCGCAAGGGCAGTAA	MRTRLPCYLSRLLLVGGMLLLGGCDMVLFNPKGQVGVDQRNLIILSTLLMLLVVVPVIVMAFVFSVKYRASNTKAKYTPEWAHSRKIETVVWGVPLVIIIILGVVTWKSTHALDPYRPLDSDVKPLVVQVIAADWKWVFIYPELGIATVNELAMPLDTPVNFRVTSDGAMTSFFIPALGGQIYAMAGMQTQLHLIANEAGEYRGIAANYNGPGFSDMHFRTLATDAAGFDKWVADVRAGQGRLDKDSYARLARPTVKHPVEHYASVQPNLFQSIIDKYEGMNRSREVEHRMEHMQGSIESPVGAPQGQ				NA	NA	NA	NA	NA
D1-36_04509	243			hypothetical protein	ATGCCTGCTTCTCATGATCTTTATCAGGATTTGAATTGCAGCAAAGAGGCGGTTCAACAACGTCGTCAGCAGGATCCGGAACTTGATCGCCTGCTCGATGAATACACGGATTTGGATAACCAAGTGCTAGCGGCCGAATCGATTTCGGCGGGCAATGTCGAGGGTGACGATATCCGTAAGCTCAAGGAACAGCGCCTGTCGATCAAAGACAAGATCGCGCAGCAACTGGCAAACACTCAATAA	MPASHDLYQDLNCSKEAVQQRRQQDPELDRLLDEYTDLDNQVLAAESISAGNVEGDDIRKLKEQRLSIKDKIAQQLANTQ				NA	NA	NA	NA	NA
D1-36_04510	885			putative metallo-hydrolase	ATGCATATCCACCACCTCAACTGCGGTTGCATGTGCCCGGTGGGCGGAAAGCTGTTCGACGGTTACAGCCGGGGGCTGACGGCGTGCCTGGTGTGTCATTGCCTGTTGATTGAAACCGACACCAACGGTCTGATACTGGTGGACACCGGTTTTGGCCAGCGCGATGTGCAGACGCCCGAGCGTCTGAGTCGTTTTTTCCGCGCGTTCAACAACATCAAGTTCGAGCATCGCCTCACTGCGTTGGAGCAAGTGCGGCGCCTGGGCTTCGATGCCAACGACGTGCGGCACATTCTTGTTACCCATCTGGATTTCGACCACGCCGGCGGGCTGCAGGATTTTCCCCAGGCCCGGGTTCACGTCATGCGCGACGAAATGGCGGCGGCCCGCACCGCCGACACTTGGATCAGTCGGCGCCGGTTCCAGGCGCGTCAGTGGCAGGGCGTCGATAACTGGGAGTTTTATGCCCCGGATGGCGACACCTGGTTCGGATTCGACTCGGTGCGCGCATTAATCGGCGCGGAAGAAGAGGACATTTTCCTGGTGCCGCTCCAAGGCCACACCGCCGGGCACGCGGGCATTGCCGTGCGCACGTCCGACGGCTGGTTGCTGCACGCCGGCGATGCCTATTTTTTTCACGATGAAGTCCATCAAGCCGAGCGTCGCTGTCCGCCGGGGCTGAAGTTTTATCAATACATGATGGACACCTATCGTTCGGCGCGGATGCGCAATCAGCAACGGCTGCGGGAGCTGGCACGGGTCCAGGATGGGCACGTGGAAATTTTCTGCAGTCACGATGCCAAGGAATGGGAGCGGGCCGTCCAGCAGCACCCAGTCCGTGTCGATTCCAATGCAATGCCGTCGGCCACCGGCAAACAATCTTCCTGA	MHIHHLNCGCMCPVGGKLFDGYSRGLTACLVCHCLLIETDTNGLILVDTGFGQRDVQTPERLSRFFRAFNNIKFEHRLTALEQVRRLGFDANDVRHILVTHLDFDHAGGLQDFPQARVHVMRDEMAAARTADTWISRRRFQARQWQGVDNWEFYAPDGDTWFGFDSVRALIGAEEEDIFLVPLQGHTAGHAGIAVRTSDGWLLHAGDAYFFHDEVHQAERRCPPGLKFYQYMMDTYRSARMRNQQRLRELARVQDGHVEIFCSHDAKEWERAVQQHPVRVDSNAMPSATGKQSS				NA	NA	NA	NA	NA
D1-36_04511	831			hypothetical protein	ATGACACTCCGTTATCCACAGGTCTTGCTGTTGCTTTGCGGCCTCGCTGCGTTGCCATCGGCCATGGCCGCCGACCCGATCAAGCTAGAAACCCCAGTCGGCGGCTGGCGCAGCGGCGCGCCGGGCGGCGAGGGCGAAAGCTTCAGCCAGACCGTCAACTACCCGGCCTCGTCCGTCAACACGCCCCAGGGCCAGGCGAACACGGCGCGCATCAGCGGTCAGATCAAAGGCACGCCGAAGAGCAATGAGCCAGGCCAGCTCATCGTCAACGGTGTGAGCCTGCCGTTGAAGGTTGATGAGGAAGGCCGCTTCGATCGGCCGTTCTCGTTCCCCAACGGCAGCAACAGCGTGGAAGTGCGCAGCGCCGATGGCCAGCAGCGCCACCGCACGCAATTCCTCAACACCAGCGGCGGCGCGACCCCGGCCAAGCTGCGGGTATTGCTGACCTGGGACAGCGATGGTACCGACCTGGACCTGCACCTGGTTACGCCCGACGGCGCCCACATCTGGTACGGCGACCGCGCCGTCGCCAACGGCGCCGCCCTCGACGTCGACGTCACCACCGGCTACGGCCCGGAAATCTTCGCCATGCCCGCGCCGATCAAAGGCCAATACCTGGTGTATGTGAACTACTACGGCGGCGGTTATCGCAGTGACGAGGATGAAGAAGGCGATGGCGAACAAGTCGAACAGGCGCAACAGGCCCTGACCACGGCGAAAGTCACCGTCATCACCGAAGAAGGCACGCCGAGCGAGAAGATGGAAACCTTCGTGGTGCCCATGCGGGCGGTGGGGGAGCTGACGTTGGTGAAGAGCTTCAGCTACCCATAA	MTLRYPQVLLLLCGLAALPSAMAADPIKLETPVGGWRSGAPGGEGESFSQTVNYPASSVNTPQGQANTARISGQIKGTPKSNEPGQLIVNGVSLPLKVDEEGRFDRPFSFPNGSNSVEVRSADGQQRHRTQFLNTSGGATPAKLRVLLTWDSDGTDLDLHLVTPDGAHIWYGDRAVANGAALDVDVTTGYGPEIFAMPAPIKGQYLVYVNYYGGGYRSDEDEEGDGEQVEQAQQALTTAKVTVITEEGTPSEKMETFVVPMRAVGELTLVKSFSYP				NA	NA	NA	NA	NA
D1-36_04512	1551			hypothetical protein	TTGCGCCTGGCCTTCGACGGTCAACTGTTGCGGGTGAGCCAGACCCAGGTGCTGGATCGCCAGCCGTTGACCAATTCCTTGCAGGCACCGTTGGGCAGTTTGTGGAAACTCTTCGTCTACGCCTGGCTGGTGGACACCGATGCTCGCGAGCCGGTTTACGAATGCCGCGGCGAATCGAAGGAAGAGGTCTATTGCTGCAACGCTGGGCAGAGCATCGGCCGCGATCAGGCGCTGGTGAAGTCCTGTGGTTTGTATTTCGAACCCCAGCGACTCGGGATTTCCGCGCCGGGATGGCGTGATTACTGGCAGGCGCGCCAGGCGCCGAAATGGTTGTTGGACCTGCCGACCTTGCAGCCGCAAACCCAGGTGCCGGTGGCCGAACTGCTCAAGGCGCTGGCGATGCTACCGGCCCAGGAGCAGGCCCGTCGGGTATTGCTCGACGTGGTGCTCGGCGCGGCGGATGGTCGGTTGGTCGGCCAGTTGGGCGCTCGCCTGCGGGTCAAGACCTGGAGTTGGTTGGGCGACCAGGGGCCCTCGTCGCGCCAAGGCGGTTTCGCCGGTTGGCTGGCTGATGGCACCCCGGTGTGGGCCGGTGGCCGCGGCACCAGTCAGCAGGTCCTGAAGAAATACGGCGATGGCTTGGCCACGGCGCTGCCGTCCCGCTGGCCTGTGGACACCGGACGCTGCGTGGAAGTCGACCTGTTTGCCCGTTACCCGTTGCAACGGGTGATGGCTGGCGAGCGACCCGCCACGCCGGGCCAGTTGCGCGGCGACTACCGCGTCGAGTTCACCAACGGTAACCAGCTGGACATCCACAGCGACGGCGAACTGTTCCTGCTGCCGGGCAAACTGGTGGCGCGACTGGACCGGGAGGAGTACGTCGCCCGGGTCCTGCAACGCGAAGCCAAGGCCGAACCCGCCGAAGCGGCCAAAGCCCTGGCCGTGGCGATTCGCACCTACCTGCTGCAAAACGCCCAGCGCAACGGCGATTGCCTGAGCATCGACGACAGCAGCCATCGCCAGCGCGTCGCGCCACGTCCGGCGGCGCCTGAAACCCGGGCCATTGCCGCTTGGACCAGCGACCTGGTCCTGGCTGGCACCGACGTCACTTATCACTCCGATCAACCCGGCCCGGACAAACTATCCTGGGCCCAAGCCGTCGAACAAGCCCACGACGGCCAGCGTTACGACGCGATCCTGCTGCATGCCTATCCGCGCGCGAGCCTCAGCCGTTGGGACAATCCGGTGGCATCCTGCCAAGCATTGCCCGCCGCCCAGGAATGGTTGCTGAAGCAGCGACGTGGCTGGCGTCAACGCTTGGAAAGCGAAGTGGGCTACAACGAAATCAGTTCCTTCGCGGTGTGCCGCGTCGCCTTCGGCCGGCCGTATGTGGACCGCGAGCGCCAGCGCATCTACGTGCGCGGCGTGCTGTCGCTGCAAGACCGCCTCGACCTGACCCATGAATATCTGCACCTGGCCTTTGAAGCTCACCCCAACGGCCAGGACGAAACCTATATCGAAGGGCTCGCCCGTCACCTCTTGCTGGAATAG	MRLAFDGQLLRVSQTQVLDRQPLTNSLQAPLGSLWKLFVYAWLVDTDAREPVYECRGESKEEVYCCNAGQSIGRDQALVKSCGLYFEPQRLGISAPGWRDYWQARQAPKWLLDLPTLQPQTQVPVAELLKALAMLPAQEQARRVLLDVVLGAADGRLVGQLGARLRVKTWSWLGDQGPSSRQGGFAGWLADGTPVWAGGRGTSQQVLKKYGDGLATALPSRWPVDTGRCVEVDLFARYPLQRVMAGERPATPGQLRGDYRVEFTNGNQLDIHSDGELFLLPGKLVARLDREEYVARVLQREAKAEPAEAAKALAVAIRTYLLQNAQRNGDCLSIDDSSHRQRVAPRPAAPETRAIAAWTSDLVLAGTDVTYHSDQPGPDKLSWAQAVEQAHDGQRYDAILLHAYPRASLSRWDNPVASCQALPAAQEWLLKQRRGWRQRLESEVGYNEISSFAVCRVAFGRPYVDRERQRIYVRGVLSLQDRLDLTHEYLHLAFEAHPNGQDETYIEGLARHLLLE				NA	NA	NA	NA	NA
D1-36_04513	4569			hypothetical protein	ATGACCGGTGCCCGCATGCTGCGCTTGTGTTCGAAACTGCCCCTGCTGTTTGCTCTGTTGTTGGCGCCCCTCGTGAATGCCGAAGACACCGTGGAGCCCAGCGGCTATACGCCGGTGTCCGGCGAAAGCTTTTTCCTGCTCGCCGACAGCAGCTTCGCCAGCGACGAGCAGGCGATGGTCCGCCTCGAAGCCCCGGGGCGTGATTACCGACGGTTTCGCATGGAGCCCTACGGCGGTGCTGATATCCGGGTCTATCGGATCGAAAAGCCGTTGGAGTTCCTCAAGCGCCAAAAGAACCTCCACAGGGTGGTCAGCGACGGCCAGTTCAAGGGTGAAGGCCTGTCCAACACCCTCGCGTACCTGTGGGACAACTGGTACCGCAAATCCCGTCGCGTGATGCAGCGGGCGTTCTCCTACGAATCCCGCCAGCAGGTTACCGAAGAGGTGCCGGAGCTGAAGATCGGCAACGCCCTGATCGCGCCGACGCCATACGATGCGCCGGCACAATTCGCCTTGATCCCCGGTTTGCCGGTGGTCAGCCAGTTCCGCTATCCGCTGTGGCAGGCCAAGCCGATCCAGCCGCCAGCCGGCGTCAACCTGGCCGGTTCGTCCAGCGAGTTCGTCAGCGTCGCGCCGGGTAACGTCTACGTGCCGTTGGGGCAGTTGAAACCGGGCCTGTACCTGGTGGAAGCGCTGATTGGCAAATACCGCGCGACCACCATGGTTTTCGTGTCCAATACCGTGGCCGTAAGCAAGATCGCCGGGGACGAATTGCTGGTCTGGGCCGCGCGCAAGCATGAAGGGCGCTCGGTACCCAAGGTCAATGTGTTGTGGACCGACGGCCTGGGCGTGATGAGCAGCGGTGCCACTGATGAAGACGGCCTGGTGCGTCTCAAGCACGTCAGCCCGGAGCGTTCGTTTGTCATCGGTGAAGACGAAGAGGGCGGGGTATTCGTCTCGGAAAACTTTTACTACGACAGCGAAATCTACGACACCAAACTCTACGCTTTCACCGACCGGCCGCTGTACCGGCCAGGAGATTGGGTGTCGCTGAAAATCGTCGGTCGCGAGTTCAAGAACGCCCGCGACTCGGTGCAACCAGCGGCCGCCGACGTCAACGTCAGCGTGCTCGATGCCACCGGCACGGCGTTGCAAACCCTGTCCCTGAAGCTCGATTCCAAGGCCGGTACACAAGGTCGTTTCCAACTGCCGGAAAATGCCGTGGCCGGTGGTTATGAATTGCGCTTCAGCTACAAGGACCAGCTCTACAGCAGCGCCTTCCGCGTGGCCGAATACATCAAGCCGCACTTCGAGATCGCGCTGAACCTGGCCAAGCAGGATTACCGCACCGGTGAGCCGGTCAAGGGCAATCTGGTGCTGCTGTACCCGGACGGCAAGCCAGTGGCGAACGCCAAGGTCAGCCTGAGCCTGCGGGCCCAGCAGTTGTCGATGGTGGATAACGAGCTGCAATACCTTGGGCAATTCCCGGTCGAGCTGACCAGCAGCGAAGTGACCACCGATGACAAGGGCAACGCCACGCTCGATTTGCCGGCCGCCGACAAACCGAGCCGCTACACGCTCACGGTGTTCGCCAGTGATGGCGCGGCGTATCGGGTCAAGACCACCAAGGAAATCCTCATCGACCGTGGCGCGGCGAATTTCCGCCTGGGCGCGCCTCGACGTTTCAGCGCAGCCGGCGAGAAAGTCGCGTTCAGCTACGCCAACGAAGGGGGCAGCGAACAAAGCAAGGCCGTGACACCGGGCAGCTACGCCTGGGTGCGTCTGGAAGACCAGACCACCGGCGAAGGCAAGCTCGCCGCCAACGACAAGGGCTTCAGCCTGACCTTCGACCGTCCCGGCACCTACAACCTCACGCTCAAGGACGACCATGGCCGGGCCATCGGCGCGACCAGCCATGCGGTGACGGGCGAAGGCATCAAGGCCGTGCCGGGCACGGTCGAAATCGTCCTCGATAAAGCCGAGTACAAGACCGGTGACGAAGCCCTGGCGCTGATCACCTTCCCGGAGCCGGTCAGCGACGCGCTGTTGTCACTGGAGCGGGACAAGGTCGAGGCCACCGCGATGCTCTCCAAGGGCGCCGACTGGCTGAAGATGGAAAAACTCAGCGATACCCAGTACCGCGCACGCATCGCCGTGAAGGATCATTTCGCGCCGAACCTGACCTTCTCCGTGCTGTACACCAAGGGCGGCCAGTACAGTTTCCAGAACGCAGGCATCAAGGTCGTCGCGCCGCAGATCGACGTAGCGATCACCACCGACAAAGCGACCTATCGCCCCGGCGACACGGTGACCGTCGACCTGGGCACCCAGTTCGCAGGCAAGGCGATCCCGGCGCACCTGACCGTCAGCGTTGTCGATGAGATGGTCTACGCGCTGCAACCGGAAGTCGCGCCAACCATCGACCAATTCTTCTATCACCCGCGCCGCAACAACGTGCGCACCAGCGCCAGCCTGTCGTTCATCAGCTACGACGTGGCACTGCCGGGCAGCCCCGGCGCGCCGGGCAAGGCCAACCGCAGCGAGCGCGGGGTCAAGGTGCTGGAGCGGCCGCGTCGCGAAGATGTCGACACCGCAGCCTGGCAACCGGAGCTGGTCACTGACGCCAACGGCAAGGCCCGCTTCACCTTCAAGATGCCTGACTCCTTGACCCGCTGGCGCATCACCGCCAAGGCAATCGCGGACGACGGCCAGGTCGGTCAGAAGAAGCAATTCATCGCGTCGGAAAAACCGCTGTACCTGAAGTGGAGCGGCCCGACCCGCTTCCGTGTGGGCGACAAGCCGCAATTGGGCCTGTTCGCTTTCAGCCAGTCCGAGAAACCTTTGAAAGCCGAGCTGCTGATCCGCTACGCCGGCGCCGAACAGCGCGTGGTGGCGGAACTGAAAAATGGCATCAACTACGTAGCGTTGCCGGCCCTGGAACTGAGCAGCGGCGACTTGAGCGTCCAGTTGCAGTTGAACGGTGAGACCCAGGACGCCCTGGCCATGCACCTCAATGCCATCGGCAACGGTTGGCAAGTCACCCAGGGCCAGCGCCTCGATGTGGCCGGCGGCGACACACCACTGAACCTGCCGGCCGACGCCAGCGATATCCGCCTGCGCCTGGACGATAGCCCGCAAGCGCTGTTCCGTTCTGCCCTGGACGAATTGCTGAGCTACCCGTACGGCGGCGTCGAGCAGACGGCCAGCCGCCTGTTGCCATTGAGCATCGCGTATCCAACCCTGGCGTCGAACCCGCAGATCCGCGACCGCTTGCGGTTGATCATGCAGAACAGCCGCTTGCGCCTGGTGCAGATGGCCGGGCCGTCGGCGAGCTTCACCTGGTGGGGCCAGGACGGCGAGCCGGATGCATTCCTCACCGCTTATGCCTATTACGCCGACTGGCACGCCAGCAAGGCTTTGGACCTGAACCTGCCGGCGGAACACTGGCAGCGGGTGCTGGAGGTCTATGCCAAGCAGGCCGCTGACACGCCGCTGTTGCAGCGGGCGTTGATCCTGTCGTTCGCCAAGCAGATGCAACTGCCGGTGAATACCTTGCTCAGCGGGCTGATGGACGACCTGGCGAAAGCCAGTGAAGACAGCACCGAGAGCGTGCTGGACAGCGGTGAAGACAGCCTGGTCATGTACGCGCCGGATTCGGCCCTCGGCCTGGCCAGCGCCCGGGTGCTGACCGCATCCCTCGCCAAGCAGGCGAAGGTGCCGTTGCCCGCAGCGTTCAGCCGTCAGGCCGAGGCCGCGCAACAGCAGTTGGAGCTGAGCTCGCAGCCGTTCGTGGAAGCACTGCTGCTGTCGTTGCAGGGCTTCGATCAGGCCCGCGCCAGTGCATTGCTGGAGCGCGTGCTGCCGCAGCAATCCACCTTGGAACGCGCGTTGGCCCTGACCTGGCTGCAACGCAGCATCGAACAGGCCGCGCCGGCCGTGGCATTGACGCCGGGGGAAGGTTGGAAAGCCCAGCAAGGCGCCACGGGTGAAACCTACTGGCAATGGCAGGGCGCGCAGTTGCCGACCTTGCTGACGCTCAGCGGCGCCCAGGAGCGTCCGTTGCAAGCGGCATTGAGCTTCCAGAGTCAGCAAGCGCCCGTCGCGCCGATGGCGGTGTCCATCACCCGTCGCCTGTCGCGCCTGGTGCCGGGCGACGAGGCTTTCACGTTCAAGCTTGAAGCCGTGGGCAACAAGCCGTTGTCCAGCGACGCCCTCTACCTGGATGAAGTGATCATCAACAGCAAGGCCGCGACACCGCTGCGCTACGGCATGCTCGAAGTGCCGTTGCCACCGGGCGCCGATGTGGAGCGCACCACGTGGGGCATCCAGTTGATGGGCAAGGCCGACAGCGAGCCAACTTCCCTGGAAAAGGCGCGCTTCGAGCCGGGCCAGATGGCCTACGCGGTACCGGTCGATGCCCTCAGTGGCGAGTTGCGCCTGCGACATTTGGTGCGCTTCTCCCAGAAGGGTCAGTTCACCTTGCCGCCGGTGCGTTTCACCCAGGTCTATGCGCCACAGAACCAGGCGCGGGAACAGAAACCGGCGCTGGGTCAGGTGACGGTCAACTGA	MTGARMLRLCSKLPLLFALLLAPLVNAEDTVEPSGYTPVSGESFFLLADSSFASDEQAMVRLEAPGRDYRRFRMEPYGGADIRVYRIEKPLEFLKRQKNLHRVVSDGQFKGEGLSNTLAYLWDNWYRKSRRVMQRAFSYESRQQVTEEVPELKIGNALIAPTPYDAPAQFALIPGLPVVSQFRYPLWQAKPIQPPAGVNLAGSSSEFVSVAPGNVYVPLGQLKPGLYLVEALIGKYRATTMVFVSNTVAVSKIAGDELLVWAARKHEGRSVPKVNVLWTDGLGVMSSGATDEDGLVRLKHVSPERSFVIGEDEEGGVFVSENFYYDSEIYDTKLYAFTDRPLYRPGDWVSLKIVGREFKNARDSVQPAAADVNVSVLDATGTALQTLSLKLDSKAGTQGRFQLPENAVAGGYELRFSYKDQLYSSAFRVAEYIKPHFEIALNLAKQDYRTGEPVKGNLVLLYPDGKPVANAKVSLSLRAQQLSMVDNELQYLGQFPVELTSSEVTTDDKGNATLDLPAADKPSRYTLTVFASDGAAYRVKTTKEILIDRGAANFRLGAPRRFSAAGEKVAFSYANEGGSEQSKAVTPGSYAWVRLEDQTTGEGKLAANDKGFSLTFDRPGTYNLTLKDDHGRAIGATSHAVTGEGIKAVPGTVEIVLDKAEYKTGDEALALITFPEPVSDALLSLERDKVEATAMLSKGADWLKMEKLSDTQYRARIAVKDHFAPNLTFSVLYTKGGQYSFQNAGIKVVAPQIDVAITTDKATYRPGDTVTVDLGTQFAGKAIPAHLTVSVVDEMVYALQPEVAPTIDQFFYHPRRNNVRTSASLSFISYDVALPGSPGAPGKANRSERGVKVLERPRREDVDTAAWQPELVTDANGKARFTFKMPDSLTRWRITAKAIADDGQVGQKKQFIASEKPLYLKWSGPTRFRVGDKPQLGLFAFSQSEKPLKAELLIRYAGAEQRVVAELKNGINYVALPALELSSGDLSVQLQLNGETQDALAMHLNAIGNGWQVTQGQRLDVAGGDTPLNLPADASDIRLRLDDSPQALFRSALDELLSYPYGGVEQTASRLLPLSIAYPTLASNPQIRDRLRLIMQNSRLRLVQMAGPSASFTWWGQDGEPDAFLTAYAYYADWHASKALDLNLPAEHWQRVLEVYAKQAADTPLLQRALILSFAKQMQLPVNTLLSGLMDDLAKASEDSTESVLDSGEDSLVMYAPDSALGLASARVLTASLAKQAKVPLPAAFSRQAEAAQQQLELSSQPFVEALLLSLQGFDQARASALLERVLPQQSTLERALALTWLQRSIEQAAPAVALTPGEGWKAQQGATGETYWQWQGAQLPTLLTLSGAQERPLQAALSFQSQQAPVAPMAVSITRRLSRLVPGDEAFTFKLEAVGNKPLSSDALYLDEVIINSKAATPLRYGMLEVPLPPGADVERTTWGIQLMGKADSEPTSLEKARFEPGQMAYAVPVDALSGELRLRHLVRFSQKGQFTLPPVRFTQVYAPQNQAREQKPALGQVTVN				NA	NA	NA	NA	NA
D1-36_04514	660			hypothetical protein	ATGGAAAGCGCTGTGACGGGATTGATTCGCAACCGCGCATGGGCGTTGCTGCTGGCTTTGCTGCTCGGCGGGCCGGCGCTTGCCGTCGAGGCGCCGGCGCTGGATGCACAGCAATCCCAGGTCTTTCGCGCCTGGTTCGTGCGCATCGCCCAGGAACAGCTGACCAAAGGCCCGAGCCCGCGCTGGTACCAGCAGGACTGCGCCGGGCTGGTGCGTTTCGCGGCCAACGAAGCGCTCAAGGTCCACGATGAAAAATGGCTGCGCAGCAATGGCTTGTCCAATCGCTACCTGCCGCCGGAACTGCCCCTCAGCGATGCGCAACGGCGTCTCGCCCAGCAATGGCAACAGGGCGGCGGCAAGATCGGGCCCTACGTCAATGCGATCAAGCTGATCCAGTTCAACAGCCGCCTGGTGGGCCGGGATGTCACCCAGGCCCGCCCCGGCGACCTGATGTTCTTCGATCAGGGCGACGATCAACACTTGATGATCTGGATGGGCCGCTACATCGCCTATCACACCGGCACCACCACCCCAACCGACAACGGCATGCGCTCCGCAAGCCTGCAACAACTCATGAACTGGAAGGACACCCGATGGATACCCGACGCAGCCAACCCCAACTTCATCGGCGTCTATCGACTCAACTTTCTCACCCAATGA	MESAVTGLIRNRAWALLLALLLGGPALAVEAPALDAQQSQVFRAWFVRIAQEQLTKGPSPRWYQQDCAGLVRFAANEALKVHDEKWLRSNGLSNRYLPPELPLSDAQRRLAQQWQQGGGKIGPYVNAIKLIQFNSRLVGRDVTQARPGDLMFFDQGDDQHLMIWMGRYIAYHTGTTTPTDNGMRSASLQQLMNWKDTRWIPDAANPNFIGVYRLNFLTQ				NA	NA	NA	NA	NA
D1-36_04515	1710			hypothetical protein	ATGAGCGACAACACTGCTTCCCCGACCACGCCGACACCTGTCGCCAAACCTGGGCGCCGTTGGCCGGCGATTCTGATCGGGCTGTGCCTGGTGGCCGGCGCTGCCGCCGGGTTGGGCTGGTTCATGACCAAGCCCAAGGCCCCGCCCATGGCGCTGGCGTTGGAAAAACTCGGCGTGAGTCGTCCCGACGGCTTGATCGAGGCGCATTCCCTGAGCCAGTTGCCCAAGGACCTGTTAACGGTGCCGTTTCTCAAGGCCACGCTCACCGAAGATTTTGTCTTCTATTACGAAGCCCACGCCGACCGTCTCGGCCTGATCGGCAGCCTGCGCCGGATCATCTACGAGCATGACCTCAAGCTGCAGGACAGCCTGATCGAGCAGCTTTTCGACCAGCCGGCGGACGTGGCCTTGTGGCGCGGGGCGGACGGTCGTCTCAAGGATTTCCTGCTGGTGATGGATCGCGGCGGGTTGGCCAAGGTCCTGGAACCGCTGGCGAAAGTCGCCCTGGATGACACCCAGTTGAGCAAGCTCGGCGACCTGAAGGTGAGCGGCGATGAGGTCGCGCTCTATCAACTGAGCTATAACGCCAGCAAATCCCTGGTTTTCGCCTCCCACGGCGACAAACTCGTCGTGCTCTCCAACCCGAGCAAGCTGTACGACCAAGGCCATGGCCCTACCGATGAAGCCGGCATGGTTTCGACCCAGGCCTTAGAAGTCCTGCTGGCGGGGGAAAAACTCTTCCCCGAAGCATTCGGCCTGGCGGCCAAGGCACCCGAGGTCAAGCAGCGCATCTCGGTCAACGCCAGTGTGCTTGCCATGGGCTACCAGCGTTTCATCCCGAACTTCGCCGGCTTGCGCTTCGACATGGACGACAAGGGCTGGCACAGCTTTTTGGCCATGGACGAACTGGAAAACCAGCCGGACTTCGATTTCAAGCCGATCTGGCAAGCCATGCCCATGGGCGCCAGCGCCTGCGTAGCGTTGCCCCTGGCCGCCGAGCAGCAGAAACCGTTGCTGGTGAAACTGGGCGCCGAGGAAAAAGCCGCCCAGGCCATGGTTGATCATGTGGCGGGCGCGGCGGGCCTGTGCTGGTACGCCGATTCTCGCCTGTACACGCCATTGCTGGTGGCGAGCCTGAACGAAGACGATGGCAAGCTCGACGCCGATTTGGGCAACCTGTTTGGTTCGATGGTGGGGGCGTATGAAAACAACGTCGCTGAACACGCGTTCCCGGTGGTAGAGAAACAACAAGGTTCGACGCACCAATGGCAACGCCAGGTCAGCACCAACTTCGGCCCTTACGCGGCCAAAGAGGCGGAGCAGCCTGAAGCGATCACCGGCAAGGCGTTCATGCGCGTGAGCCTGGCGCGCCACGGTTCGACGTTGCTGTTCTCCCTTGATGACAAGCTGGTCGACAAAGCCCTCGGTACCCTCGACAAGCGCTTCCCGCCCATGGCCGACGTGGTGCCCAAGGACTTGCTGATGCCGGTCTACTTCGGCCCGGATTCCATGGCGCAACTGATGCAACGCGAAACCCTCGACAGCCTGCCTCAAGACATGGAGCCGGTGTTCTACAACGCCGCGCAAACCTATCTGATCCCTAAACTGCGCACCCTCGGTGGCTATGGCAAATACGCCCTGACATTGCCTGAAGGCAGCGAGCCGGACGGTCGCTGGCAGTGGTTGCCGCTGGAATGGAAAGCGCTGTGA	MSDNTASPTTPTPVAKPGRRWPAILIGLCLVAGAAAGLGWFMTKPKAPPMALALEKLGVSRPDGLIEAHSLSQLPKDLLTVPFLKATLTEDFVFYYEAHADRLGLIGSLRRIIYEHDLKLQDSLIEQLFDQPADVALWRGADGRLKDFLLVMDRGGLAKVLEPLAKVALDDTQLSKLGDLKVSGDEVALYQLSYNASKSLVFASHGDKLVVLSNPSKLYDQGHGPTDEAGMVSTQALEVLLAGEKLFPEAFGLAAKAPEVKQRISVNASVLAMGYQRFIPNFAGLRFDMDDKGWHSFLAMDELENQPDFDFKPIWQAMPMGASACVALPLAAEQQKPLLVKLGAEEKAAQAMVDHVAGAAGLCWYADSRLYTPLLVASLNEDDGKLDADLGNLFGSMVGAYENNVAEHAFPVVEKQQGSTHQWQRQVSTNFGPYAAKEAEQPEAITGKAFMRVSLARHGSTLLFSLDDKLVDKALGTLDKRFPPMADVVPKDLLMPVYFGPDSMAQLMQRETLDSLPQDMEPVFYNAAQTYLIPKLRTLGGYGKYALTLPEGSEPDGRWQWLPLEWKAL				NA	NA	NA	NA	NA
D1-36_04516	789			hypothetical protein	GTGCGTTTTCTTTCATTGTTGATCGTGCTGCTCGGCGCGCCGCTGGCGTGGGCCGGGCCTTCGGCTGAAATGTCGGAGCCGGTCGGCGGCTGGCGTTACCACGGCTTGCTCGATCGCACGCAAAACCCGCAAGTCGCCTACCCCACGCCACCGATCGATCGGGGCGTGCAGCGCAACCGCACGATGATCGAAGGCCGGATCAAGGACATGGGCACGGCGCGCCAGCCCCATAGCCTGTCGGTCAACGGCAACCCGCTGAATCTCTACACCGATGACGAGGGGCGTTTCGCCCGGCCGTACGCGTTTGGCGCCGGCTCCAACAGCGTCGAGGTGCGCAGCTCCGAAGGCCAGTCCCTCAAGCGCGTGCAATTCTATGAAGCCAACAACTTGCGCACTCCGGCGCAAATCCGCGTGGTGCTGGGCTGGGACGATCCGAAAGCCGAACTCGACCTGCATATCGTCACACCCGACGGCCAACATGCTTTTTTCGGCCGGCCGGCCCTGACCAACGGCGGCGGCCTCGACCCGGACGGCGTCGACGGCCCCGGCCCCGAGATGTTCACCATGACCGCACCCATGCACGGCACTTACCTGGTGTACGTGAACTATTGGGGCAACTACGGCAGCGGCGGCTACAACTTCGACGAAGCCAGCAACCAGAACGAGGTAATCACCTCGCAGATCAACCTGGTGCTCAACGAAAACACCGTCGATGAAAAACGCGAAACCTTTGTCGTGCCCCTGCGCGCCATTGGCGATCTGCTGCTGGTCAAGACGTTCAACTACTAA	MRFLSLLIVLLGAPLAWAGPSAEMSEPVGGWRYHGLLDRTQNPQVAYPTPPIDRGVQRNRTMIEGRIKDMGTARQPHSLSVNGNPLNLYTDDEGRFARPYAFGAGSNSVEVRSSEGQSLKRVQFYEANNLRTPAQIRVVLGWDDPKAELDLHIVTPDGQHAFFGRPALTNGGGLDPDGVDGPGPEMFTMTAPMHGTYLVYVNYWGNYGSGGYNFDEASNQNEVITSQINLVLNENTVDEKRETFVVPLRAIGDLLLVKTFNY				NA	NA	NA	NA	NA
D1-36_04517	243	xseB	COG1722	Exodeoxyribonuclease 7 small subunit	ATGGCCCGCAAAAAAGCTGCATTGGATTTCGAACAATCTCTGGCCGACCTGCAGACGCTGGTCGAACGCCTGGAGAACGGCGAACTGTCGCTGGAAGACTCGCTGACTGCTTTCGAGCAAGGTATCGGCTTGACTCGCGACTGCCAGGCAGCGCTGGCCCAGGCCGAGCAGAAGGTACAATTGCTGCTCGAACGCGACGGCGAGCTGACCGAAGAACCTTTCGACGCGGAACAGCCTGAATGA	MARKKAALDFEQSLADLQTLVERLENGELSLEDSLTAFEQGIGLTRDCQAALAQAEQKVQLLLERDGELTEEPFDAEQPE				NA	NA	NA	NA	NA
D1-36_04518	888	ispA	COG0142	Farnesyl diphosphate synthase	ATGATCGGCGCCTATCAGGCCAGCAGCCAGGCCCGGGTCAATGCTGCACTGGAGACCCTGTTCAGCGCCCCGAGCCCGGAACTGGCGCGCCTGTACGAAGCCATGCGCTACAGCGTGATGAACGGCGGCAAGCGCGTGCGCCCGCTGCTGGCCTATGCCGCGTGCGAAGCCCTTGGCGGCGTGGCCGAGCAGGCCAACGGCGCGGCCTGCGCGGTCGAGCTGATTCATGCCTATTCCCTGGTGCATGACGACCTGCCCGCCATGGACGACGACGACCTGCGTCGCGGCCAGCCGACAACCCACAAGAAATTCGACGAAGCCTGCGCAATTCTTGCGGGCGACGGTTTGCAGAGCCTGGCTTTCAGCGCCCTGCTGGACCCGACCCTGAGCGAATGCCCGGCGCAGGTTCGCCTGGACATGGTCAGCGCCCTGGCGTTGGCGGCGGGCCCGGCCGGCATGGTGGGCGGCCAGGCCATCGACTTGGGTTCGGTGGGCCTGAAGCTGGATCAGAGCGCGCTGGAATACATGCACCGGCACAAGACCGGCGCTCTGATCGAGGCCAGCGTCCGGCTCGGCGCCCTGGCCAGCGGTCGGGCCACGCCGGAACAACTGCAAGCCTTGCAGACCTACGCCCGGGCCATCGGCCTGGCGTTCCAGGTTCAGGACGATATCCTCGACGTCGAAAGCGATACCCAGACCCTGGGCAAGCGCCAGGGTGCCGACATTGCGCGCGACAAGCCGACCTATCCGGCCTTGCTCGGCCTCGATGCAGCCAAGGCCTACGCCCTGGAACTGCGCGACCAGGCCCTGGCCGCGCTGCGACCCTTTGACGCGGCGGCCGAACCGTTGCGCGATCTGGCGCGTTATATCGTCGAACGACGCAGCTGA	MIGAYQASSQARVNAALETLFSAPSPELARLYEAMRYSVMNGGKRVRPLLAYAACEALGGVAEQANGAACAVELIHAYSLVHDDLPAMDDDDLRRGQPTTHKKFDEACAILAGDGLQSLAFSALLDPTLSECPAQVRLDMVSALALAAGPAGMVGGQAIDLGSVGLKLDQSALEYMHRHKTGALIEASVRLGALASGRATPEQLQALQTYARAIGLAFQVQDDILDVESDTQTLGKRQGADIARDKPTYPALLGLDAAKAYALELRDQALAALRPFDAAAEPLRDLARYIVERRS	PGPT0007560_1997	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007560-crtE|ispA-K13789	NA	NA
D1-36_04519	1899	dxs	COG1154	1-deoxy-D-xylulose-5-phosphate synthase	ATGCCCACGACGTTTCAAGAGATCCCCCGCACACGCCCGACCACGCCCCTGCTGGACCGCGCCAACACGCCGGACGGCCTGCGTCGACTGGGTGAAGCCGAGCTGGAGACCCTGGCCGATGAGTTGCGCCTGGAACTGCTCTACACGGTCGGCCAGACCGGTGGGCACTTTGGCGCGGGCCTGGGTGTCATCGAGCTGACCATCGCGTTGCACTACGTCTTCGACACACCGGACGACCGGTTGGTGTGGGACGTCGGGCACCAGGCGTATCCGCACAAGATCCTCACCGGTCGTCGCGACCGCATGGGCACGTTGCGCCAGAAGGACGGTGTCGCCGCCTTTCCGCGCCGCTCCGAGAGCGAATACGACACCTTTGGCGTCGGTCACTCCAGCACCTCCATCAGCGCCGCCCTGGGCATGGCGATTGCCGCCCGCCTGCAAAACAGCGAGCGCAAGGCGATTGCCGTGATCGGCGACGGTGCACTGACCGCAGGCATGGCCTTCGAGGCGCTGAACCATGCGCCGGAGGTCAACGCCAACATGCTGGTGATACTGAACGACAATGACATGTCGATCTCGCGCAACGTTGGCGGATTGTCCAATTACCTTGCGAAGATCCTCTCGAGCCGCACCTACGCCAGCATGCGCGAAGGCAGCAAGAAGGTCCTGTCGCGCCTGCCGGGCGCCTGGGAAATCGCCCGCCGCACCGAAGAATATGCCAAGGGCATGCTGGTGCCCGGCACGCTGTTCGAGGAGCTGGGCTGGAACTACATCGGCCCCATCGACGGCCATGACCTGCCCACGCTGATCGCCACCCTGCGCAACATGCGCGATCTCAAGGGCCCGCAGTTCCTGCACGTGGTCACCAAGAAAGGCAAAGGCTTCGCCCCGGCGGAAGTCGACCCGATCGGTTACCACGCCATCACCAAGCTTGAACCCCTGGATGCCCCGGCCGCCGCGCCGAAAAAGACCGGTGGGCCGAAGTATTCCGGCGTGTTCGGCCAATGGCTGTGCGACATGGCCGCCGCCGACCCGCGCCTGGTGGGCATTACCCCGGCGATGAAGGAAGGCTCCGACCTGGTGGCGTTCAGCGAACGCTACCCGCAGCGTTATTTCGACGTAGCGATTGCCGAACAACATGCCGTGACCCTTGCGGCCGGCATGGCCTGCGAAGGCGCCAAGCCGGTGGTGGCAATCTATTCGACTTTCCTTCAACGCGGCTATGACCAACTCGTCCACGACGTGGCTGTGCAGAACCTCGATGTGCTGTTCGCCATCGACCGCGCCGGGCTGGTGGGCGAAGACGGCCCGACCCACGCCGGCAGCTTCGACTTGTCCTACCTGCGCTGCATCCCGGGCATGTTGGTGATGACGCCGAGCGATGAAAACGAACTGCGCAAGATGCTCACCACCGGCCACCTGTTCAATGGCCCGGCGGCAGTGCGCTACCCTCGCGGCACCGGCCCGAACGCGACGATCGAGGCTGACCTTGAGCCCATCGAGATCGGCAAGGGCGTGATCCGCCGTCAAGGCAAGCAAGCGGCCCTGTTGGTGTTTGGCGTGCAGTTGGCCGAAGCCTTGAAAGTCGCCGAAAAGCTTGATGCCACCGTGGTGGACATGCGCTTTGTCAAACCCCTCGACGAAGACCTGGTGCGCGAGATGGCCGACAGCCACGAACTGCTGGTGACCATCGAGGAAAACGCCATCATGGGTGGTGCCGGCGCCGCGGTCAGCGAATTCCTGGCGCGGGAAAACATCCTCAAGTCGGTATTGCACCTTGGGCTGCCGGATCTCTACGTCGAACACGCCAAGCCTGCGCAAATGCTGGCCGAATGCGGGCTGGACGAGGCGGGGATCGAAGCGGCGGTGCGACTGCGGTTGCAGCTGTTGGGCCTGTAA	MPTTFQEIPRTRPTTPLLDRANTPDGLRRLGEAELETLADELRLELLYTVGQTGGHFGAGLGVIELTIALHYVFDTPDDRLVWDVGHQAYPHKILTGRRDRMGTLRQKDGVAAFPRRSESEYDTFGVGHSSTSISAALGMAIAARLQNSERKAIAVIGDGALTAGMAFEALNHAPEVNANMLVILNDNDMSISRNVGGLSNYLAKILSSRTYASMREGSKKVLSRLPGAWEIARRTEEYAKGMLVPGTLFEELGWNYIGPIDGHDLPTLIATLRNMRDLKGPQFLHVVTKKGKGFAPAEVDPIGYHAITKLEPLDAPAAAPKKTGGPKYSGVFGQWLCDMAAADPRLVGITPAMKEGSDLVAFSERYPQRYFDVAIAEQHAVTLAAGMACEGAKPVVAIYSTFLQRGYDQLVHDVAVQNLDVLFAIDRAGLVGEDGPTHAGSFDLSYLRCIPGMLVMTPSDENELRKMLTTGHLFNGPAAVRYPRGTGPNATIEADLEPIEIGKGVIRRQGKQAALLVFGVQLAEALKVAEKLDATVVDMRFVKPLDEDLVREMADSHELLVTIEENAIMGGAGAAVSEFLARENILKSVLHLGLPDLYVEHAKPAQMLAECGLDEAGIEAAVRLRLQLLGL	PGPT0008960_2766	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
D1-36_04520	1881	btuB_2	COG4206	Vitamin B12 transporter BtuB	ATGAAACGCCGCCTCGCCCTCGCCCTCGCCCTGCTCCCCACCCCCGACCTGCTGGCCAATACCTTCGAACGCGACCAAGCCCTCAAGCTGCCCGACATCCTCATCAGCGCCAACCGCCAGGTAGAGGCCCGCAACGACAGCAGCGCCGCCAACACGGTATTCACCCGTGACGACATCGACCGCCTGCAACCGGCCAGTGTCACCGACTTGCTCAGCCGCGTGCCGGGCGTGCAAGTGGCGCCATTGGGCGGGCGCGGCAGCCTGCCGGGGATTTACATCCGCGGCACCAAGTCGGCCCAGAGCCTGGTGTTGGTGGACGGCCAGCGCATCGGCAACGCCACCTCTGGCGACAGCAACCTGCAACGCCTGAATATCAACCAGATCGAGCGGGTAGAAGTGTTGCGTGGCTCGCGCTCGGTGATCTACGGCGCCGATGCGGTGGGCGGGGTGATCCAGATCTTCACACGGCGCGGCAACGATCAAGGGCTGCGACCACGCCTGCGCCTGGGTATTGGCAGCCACCAGACCTGGGAGCGCAGCGTGGGCATGTCCGGAGGCGACGAGCAGACGCGTTTCAACCTCGGCGCCAGCCTGGACGAAACCGCAGGAAGCAATCGGACCCACGAGTCCTACGCCAGCGACCGAGACGCCGACGCCAACCGCAACCGGTCCTTCAGCCTGAGCTTGAGCCATGCCGCCAACGACGATCTGGAGCTCGGCCTGAACCTGCTGGATAACCGTGGCAAAAGTGAATACGACAACCCGTTCGGCCGCTTCGACCCCAGCACCTTCGAGTCCTTGCCCCAGCAGCCGTACAGCGAGTTTGCGGTGAGCAGTTTCAGCAGTTACGCGGACGCTCGGATCAACGACGCCTGGACGTCCCGCCTCGAACTGAGCCACAGCGAGAACCGTGAGAAAACGTTCGACAAGCTCAGTGATGTTCGCGAAGTCTTCAACACCTACCGCGATTCGGTGAATTGGCAGAACGACGTGACACTGGACGAGCGCAACAGCCTGATCGTGGGCGGCGACTGGTATCAAGACCGGGTCAATAGCAGCACGCCGTTCGAGGAAGACAGCCGCTGGAACCGCGCGGCGTTTATCCAGCATCGCTTCCAGGCCGAAACCTTCTCGACAGAGTTGGGCCTGCGCCGCGACCAGAACCAGCAATTTGGTGGCCAGAACAGTTGGAGCGGCACCTTCACCTTGCCAGTGAACTCGGACAACGACGTATTGCTGACCTACAGCGAAAGCTTTCGCGCCCCCACATTCAACGACTTGTATTACCCGGACTTCAGCAACCCAGACCTGAAACCCGAAACGGCCAAGAGCTACGAAGTGCAATGGCGCAGCCAACTTAGCGACAGCGCCCGCCTGGAGGCTTCGCTGTACCGCACGGACCTGGAGGACGCGATCATCTTCGGCAGCGGCTCACGCCCGCAGAACGTTGCGTCGGCGCGGATCAATGGTTTCGAAGCGGCCTTGCGGCAGGAATTGTTCGGTTGGCAGGGCAACCTGGGCCTGACCTTCATCGACCCACGGGACCGTGACAGCGGCCACACCCTGGCCCGCCGCGCTCGTCGCACGTTGAGCCTGGACCTGGACCGACAATTCGATCGCCTGGGTTTCGGCGCCACCTGGCAAGCGGTGAGCAGCAGCTATGACGACGAAAACAACCGCAATGCCCTGAGCGGCTATGCCCTGCTCGGGTTGCGCGGCAGTTGGGCGCTGAGCCGGGAAGTGAAGTTGGAGATGAAGGTGGATAATCTGTTGGACAAAGGTTACAGCCGGGCGCTGTATAGCCATGGGGTGTTGCAGCACGGGTATCGGGAGGAGGGTCGGGCGTGGTTGTTTGGGGTGACCTGGACCCCGGAATTTTGA	MKRRLALALALLPTPDLLANTFERDQALKLPDILISANRQVEARNDSSAANTVFTRDDIDRLQPASVTDLLSRVPGVQVAPLGGRGSLPGIYIRGTKSAQSLVLVDGQRIGNATSGDSNLQRLNINQIERVEVLRGSRSVIYGADAVGGVIQIFTRRGNDQGLRPRLRLGIGSHQTWERSVGMSGGDEQTRFNLGASLDETAGSNRTHESYASDRDADANRNRSFSLSLSHAANDDLELGLNLLDNRGKSEYDNPFGRFDPSTFESLPQQPYSEFAVSSFSSYADARINDAWTSRLELSHSENREKTFDKLSDVREVFNTYRDSVNWQNDVTLDERNSLIVGGDWYQDRVNSSTPFEEDSRWNRAAFIQHRFQAETFSTELGLRRDQNQQFGGQNSWSGTFTLPVNSDNDVLLTYSESFRAPTFNDLYYPDFSNPDLKPETAKSYEVQWRSQLSDSARLEASLYRTDLEDAIIFGSGSRPQNVASARINGFEAALRQELFGWQGNLGLTFIDPRDRDSGHTLARRARRTLSLDLDRQFDRLGFGATWQAVSSSYDDENNRNALSGYALLGLRGSWALSREVKLEMKVDNLLDKGYSRALYSHGVLQHGYREEGRAWLFGVTWTPEF	PGPT0003740_1364	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-VITAMIN_B12_RELATED_FERROUS_UPTAKE,PGPT0003740-butB-K16092	NA	NA
D1-36_04521	786	btuF_2	COG0614	Vitamin B12-binding protein	ATGCGTCTCTGGCTGGCGGTCCTCCTGCTGGCCGCCAGCGCCTCGACGATGGCGGCTTCGCGCGTTGTCAGCCTGGCGCCCTCGCTTTCTGAAATAGTCGTTGAGCTGGACTCCGCTGACCTGCTGGTGGGTGTGTTGGACGGTGGTGAACGTCCGCCGGCCCTCAAAGAGCTGCCTTCCGTTGGGCGTTACGGCCAACTGGATATGGAGCGCCTGCTCAGCCTCAAGCCCGATCTGCTCCTGCTTTGGCCAGGCAGCGTGGGCCCGGCCCAGCGCCAGCAGCTCAAGGCGTTGGGCATCCCGATCTACATCGCCGAGCCCCACGATCTCGATCAACTCATTACGCAAATTCAAGATATAGCCACCCAACTCGGCCGCCCGGAGCGGGGCGTGCAGCGAGCGGCGCAACTGCGCCAGCGCCTGGAGGCGCTACGCCAACGCTACCGACGGGAGAGGCCTGTGCCGGTGTTCTATCAGGTCTGGGACCGGCCGCTGTATACCGTCGGCGGTGGGCAGATCATCAGTGACGCCTTGGCGATATGCGGCGCGCGCAATGTGTTCGCCGACCTGAGCGTACCGGCGCCGCAAGTGAGTGTGGAATCGGTACTCCAGCGCCAGCCGCAGATGATCCTCGCCACGGATCAGGCACAGCTCGATGCCTGGAAAGCCTGGCCGGTGGCGCAGGGGCGACTTTTGCTGGTGGATGACAAAGGGCTGGAGCGGCCCAGTGGGCAGATGATCGAGGCGACAGCGCGGCTGTGCGGGTTGATTGCGCCCGACCGGTAG	MRLWLAVLLLAASASTMAASRVVSLAPSLSEIVVELDSADLLVGVLDGGERPPALKELPSVGRYGQLDMERLLSLKPDLLLLWPGSVGPAQRQQLKALGIPIYIAEPHDLDQLITQIQDIATQLGRPERGVQRAAQLRQRLEALRQRYRRERPVPVFYQVWDRPLYTVGGGQIISDALAICGARNVFADLSVPAPQVSVESVLQRQPQMILATDQAQLDAWKAWPVAQGRLLLVDDKGLERPSGQMIEATARLCGLIAPDR	PGPT0004685_586	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_B12|COBALAMIN_METABOLISM	PLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0004685-btuF-K06858	NA	NA
D1-36_04522	420			hypothetical protein	GTGACGCGCGGCCAGGTTCGGCGGCGGCTGGCCGTCAGTTGGTGGCAGTACCTGGCGCTGGCCTTGCTGCCATTATTTGTGATCAACACGGTATTTGGTCAGGGCGAGGCGATCCTGCCGGTGCTGGCGATGCCGCTGTTCATCGCCGGCGTGGCGTCGATGTTTGTCAGCCTGCGGTTTTTCGGCGGCTATAAAAACGCCCTGATCGCCACGCATAAATCCCTCGATACGCCTGGAGAACCCGAGGCCTGGATCACCCTGGCAGCCCGGCGTCGTGCAGCTTTCCTGGTGGCAGGCCTGCCGGCCTGGATTGGCGCGTTGGCGGTATTCGTCGGCCTCGAAGCGGTGCCGCTGATGCTGTTGGCGTTATCCACCGCCGTGCTGTTCTACCTGTATCGCATCCCGCGTCAGCTCGGTTGA	MTRGQVRRRLAVSWWQYLALALLPLFVINTVFGQGEAILPVLAMPLFIAGVASMFVSLRFFGGYKNALIATHKSLDTPGEPEAWITLAARRRAAFLVAGLPAWIGALAVFVGLEAVPLMLLALSTAVLFYLYRIPRQLG				NA	NA	NA	NA	NA
D1-36_04523	618			Riboflavin biosynthesis protein	GTGCCTGTCGTTTTTGTTGCCGCTTCCAAGCTGCCAACGCCTTTTGCTCAATTCACCATGCATGGTTTTCTCGATGAAGCCACCGGTCGCGAGCACGTCGTGCTGAGCCTGGGTGATTTCGCCGACGGCGCTCCAGTACTCGGTCGCCTGCACTCCGAATGCCTGACGGGCGATGCGTTGTTCAGCCAGCGCTGTGATTGCGGCTCGCAGCTTGAAGCCGCGCTGCAAGCCATCGCCCGTGAAGGTCGCGGCGTGCTGCTGTATTTGCGCCAGGAAGGGCGTGGCATTGGCCTGTTGAACAAGATCCGTGCCTATGAATTGCAAGACGGCGGGGCCGACACCGTGGAAGCCAACGAGCGCCTCGGCTTCGCCGCCGATTTGCGCGATTACAGCATCTGCCTGCCGATGCTGGAACACCTGGGCGTCAAGGCCTTGCGGTTGATGACCAACAACCCGCGCAAGGTCAAGGCACTGACCGACATGGGCATCGCGGTGGCTGAACGCGTGCCGCTGCACACCGGCCACAACCCTCACAACAAGCTCTACCTGGCGACCAAAGCCAGCAAACTCGACCACATGATGGGCAACGAGCACCAGGGCGAGGTCGACCGGGCGTGA	MPVVFVAASKLPTPFAQFTMHGFLDEATGREHVVLSLGDFADGAPVLGRLHSECLTGDALFSQRCDCGSQLEAALQAIAREGRGVLLYLRQEGRGIGLLNKIRAYELQDGGADTVEANERLGFAADLRDYSICLPMLEHLGVKALRLMTNNPRKVKALTDMGIAVAERVPLHTGHNPHNKLYLATKASKLDHMMGNEHQGEVDRA	PGPT0007985_1208	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	INDUCTION_OF_SYSTEMIC_RESISTANCE|ISR	ISR-VITAMIN_B2|RIBOFLAVIN_METABOLISM	ISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0007985-ribA-K01497	NA	NA
D1-36_04524	759			hypothetical protein	ATGGGCGTAAGCCGCGCACTTTTGCTGTTGCTGTGTATCGGAGCGTTGTTCGGCGTTCGGGTGGCCGAGTCGGCGCCGCTGCCCGGCAAGATTCGCGCCGCCAGTGAAGAGTGGGCCGATTACACACAGGCCGATGGGCAGGGCATGGGGTGGGAGCTTTTGCGCGCGGTATTCGAGCCCGAAGGCGTCAAGCTGGAAACCCGTAGCGTGCCCTACACGCGCTCGATCGGGTTGGTGCAGCGCGGCGAGGTCGATGTGCAGGTCGGCGCCTATCGGAATGAGTCCGCAGGAGTGCTTTACCCAAAGTGGCACTACGATGTTGATCATATCTATGCCCTCGGACTGGCCTCCAAGCCGTCCCCAACGTTAGCCACCATCGGCAACTATCGACTGGTGTGGATGCGCGGCTACGAGTACGACAACTACCTGCCCAACGTACGACGTTTCAACGAAATTCATCGCGCCGTGGGAATCCTGCCGATGCTGGCCCATGACCGTGCCGATTTTTATATTGATGCTTCCATGGAGATCGAGGAGGTGCTCGCCAAGGCCGACGATCCCCAGCAATTCAAAATGTCGCCGCTGATCAATCTACCGCTGTACCTGGGCTTCGCCGACAACGAAAACGGTCGCGTGCTGCGTGCGCTGTTTGACCGACGCATGGAAGTGTTAGTGAAGAGCGGTGAGCTGAAACCGATTTTCGAGCGTTGGAATCAACCCTATCCCTTCGACGAGCACGGCAAACCACCGAAGTTGTGA	MGVSRALLLLLCIGALFGVRVAESAPLPGKIRAASEEWADYTQADGQGMGWELLRAVFEPEGVKLETRSVPYTRSIGLVQRGEVDVQVGAYRNESAGVLYPKWHYDVDHIYALGLASKPSPTLATIGNYRLVWMRGYEYDNYLPNVRRFNEIHRAVGILPMLAHDRADFYIDASMEIEEVLAKADDPQQFKMSPLINLPLYLGFADNENGRVLRALFDRRMEVLVKSGELKPIFERWNQPYPFDEHGKPPKL	PGPT0020800_13930	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
D1-36_04525	504	pgpA	COG1267	Phosphatidylglycerophosphatase A	GTGACAGATCATCCCAACCAGGTACCGGCCGAATTCGTTCCGCCCTCGGTCTGGCGCAATCCCTGGCATTTCCTGGCGTTCGGCTTCGGTTCGGGTACCTTGCCCAAGGCGCCGGGCACCTGGGGCTCGCTGGTTGCGCTACCCTTTATACCGTTGTGGCAGATGTTGCCGGATTGGGGCTACTGGCTGATGCTGGGCATCACCATGCTGTTCGGCTTCTGGCTGTGCGGCAAAGTGGCGGATGACCTGCGGGTACACGACCACGAAGGCATCGTCTGGGACGAAATGGTCGGCATGTGGATCACCTTGTGGCTGGTGCCTGAAGGTTGGCAATGGCTGTTGGCCGGTTTCCTGGTGTTCCGCTTCTTCGATATCCTCAAGCCATGGCCGATCCGCTGGATCGACCGGAAGGTACACGGGGGTGTCGGCATCATGCTCGACGACGTGTTGGCCGGCGTTTTTGCCTGGCTTGCAATGCAAGGGTTGGTGTGGTGTTTCACCTGA	MTDHPNQVPAEFVPPSVWRNPWHFLAFGFGSGTLPKAPGTWGSLVALPFIPLWQMLPDWGYWLMLGITMLFGFWLCGKVADDLRVHDHEGIVWDEMVGMWITLWLVPEGWQWLLAGFLVFRFFDILKPWPIRWIDRKVHGGVGIMLDDVLAGVFAWLAMQGLVWCFT	PGPT0007710_660	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_PHOSPHATASE_ACTIVITY,PGPT0007710-pgpA-K01095	NA	NA
D1-36_04526	966	thiL	COG0611	Thiamine-monophosphate kinase	ATGGGTGAATTCGAGCTGATCCGTAACTACTTCGCCGCTGCGCCATGCGCGCAGGGCGGCGAGGGCGTTGCGCTGGGGATCGGCGACGACTGCGCCTTGCTGGCCGTCCCTCCCGGGGAACAGCTGGCGGTTTCCACCGACACGCTGGTCGCCGGTGTGCATTTCCCGGATCCTTGCGATCCGTTCCTGCTCGGCCAGCGCTCGCTGGCCGTGGCGGTCAGTGACTTGGCCGCCATGGGCGCGAGCCCTCTCGCCTTTACCCTTGCCCTGACCTTGCCGATGGTTGCCGCCGATTGGCTGCAAGCCTATGCCCAGGGTTTGAGTCAGATGGCCCGGGCATGCGGCGTCGCGTTGGTGGGCGGCGATACCACGCGGGGGCCCCTGAGCCTGACCCTGACCGTGTTCGGCCGCGTCCCGTCCAGCCAGGCCTTGACCCGCGGCGGCGCGCAGCCCGGCGATCTGCTGTGTGTCGGCGGTGAGCTGGGCAATGCCGCCGGCGCGTTGCCGCTGGTCCTCGGCCAGCGCAGCGCTGAGCCTGCAGTCGCCGAGCCATTGCTGGGCCATTACTGGGCGCCGCGACCGCAGATCGACCTCGGCCTGGCACTGCGGGGCAAGGCCAGCGCGGCGATGGACATTTCCGACGGCCTGCTGGCGGACTGTGGGCATATCGCGCTGGCGTCCGGCGTGGCGTTGACGGTTGAACGTGACCGGCTTCCGCTGTCCAATGCACTTATGGCGCTGCTCGGCCTGTCAGGCGCGCAACACGCCGCCCTGAGTGGTGGGGACGACTATGTATTGCTGTTCACCCTGCCGTCGGTCCGATTGTCGGCACTTCTGGCCGAAGGCTGGCCGATCCATGTGGTCGGCAGTGTCACGCAGGGGCAGGGCGTCATGCTGGTTGACGACCTCGGGCGCGACATCACCCCGCAAACACGGGGCTATCAACATTTTGGGGAGACACCGTGA	MGEFELIRNYFAAAPCAQGGEGVALGIGDDCALLAVPPGEQLAVSTDTLVAGVHFPDPCDPFLLGQRSLAVAVSDLAAMGASPLAFTLALTLPMVAADWLQAYAQGLSQMARACGVALVGGDTTRGPLSLTLTVFGRVPSSQALTRGGAQPGDLLCVGGELGNAAGALPLVLGQRSAEPAVAEPLLGHYWAPRPQIDLGLALRGKASAAMDISDGLLADCGHIALASGVALTVERDRLPLSNALMALLGLSGAQHAALSGGDDYVLLFTLPSVRLSALLAEGWPIHVVGSVTQGQGVMLVDDLGRDITPQTRGYQHFGETP	PGPT0009010_2519	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
D1-36_04527	501	nusB		Transcription antitermination protein NusB	GTGATTAGCGACGAGAGCGATCGTTTCAACCCGCGCGATCCAAAGCCTGCGGACGCCGGCAAGCCTTCGAAAAGCGTCAAGCGCCGCGAAGCCCGTCAGCTCGCGACCCAGGCCCTGTATCAGTGGCATATGGCCAAGCAATCGCTGAACGAGATCGAAGCGCAGTTTCGCGTCGATAACGATTTCAGTGATGTCGATGGTGCGTACTTCCGCGAGATCCTGCACGGCGTCCCCGCCCACAAGACTGAAATCGACAACGCACTGGCACCTTGCCTGGACCTGACCATCGATGAGCTGGACCCAGTCGAGCTCGCCGTGTTGCGCTTGTCCACCTGGGAGCTGATGCAGCGCGTCGACGTGCCGTACCGCGTGGTAATCAACGAAGGGATCGAGCTGGCGAAAGTCTTCGGTTCCACCGACGGCCACAAGTTCGTCAACGGTGTGCTCGACAAGCTCGCCCCGCGCCTGCGTGAAGCCGAAGTGAAGGCGTTCAAGCGCTGA	MISDESDRFNPRDPKPADAGKPSKSVKRREARQLATQALYQWHMAKQSLNEIEAQFRVDNDFSDVDGAYFREILHGVPAHKTEIDNALAPCLDLTIDELDPVELAVLRLSTWELMQRVDVPYRVVINEGIELAKVFGSTDGHKFVNGVLDKLAPRLREAEVKAFKR	PGPT0009010_3	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
D1-36_04528	477	ribH_2		6,7-dimethyl-8-ribityllumazine synthase	ATGACCCTGAAGACCATCGAAGGTACCTTCATCGCCCCCAAGGGCCGCTACGCGCTGGTAGTCGGCCGTTTCAACAGCTTTGTGGTTGAAAGCCTGGTCGACGGCGCGGTGGATGCGCTGGTTCGCCATGGCGTGAGCGAAGGCGACATCACCATCATCCGTGCGCCTGGCGCCTTCGAAATCCCGCTGGTTGCGCAGAAAGTCGCCCAAAAGGGCGAATTTGCGGCAATCATCGCCCTCGGTGCGGTCATTCGTGGCGGTACTCCGCACTTCGAATACGTGGCCGGCGAATGCACCAAGGGCCTGGCCCAGGTGTCCATGGAGTTCGGCGTGCCGGTCGCTTTCGGCGTGCTGACCGTTGATTCCATCGAGCAAGCCATCGAACGTTCCGGCACCAAGGCCGGTAACAAAGGTGCCGAAGCTGCCTTGTCCGCCCTGGAAATGGTCAGCCTGCTGGCGCAGTTGGAGGCCAAGTGA	MTLKTIEGTFIAPKGRYALVVGRFNSFVVESLVDGAVDALVRHGVSEGDITIIRAPGAFEIPLVAQKVAQKGEFAAIIALGAVIRGGTPHFEYVAGECTKGLAQVSMEFGVPVAFGVLTVDSIEQAIERSGTKAGNKGAEAALSALEMVSLLAQLEAK	PGPT0008605_2064	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
D1-36_04529	1092	ribBA	COG0108	Riboflavin biosynthesis protein RibBA	GTGGCGCTCAATAGCATCGAAGAACTGGTTGAAGACATCCGCCAAGGCAAGATGGTCATCCTCATGGATGACGAAGACCGCGAGAACGAAGGCGACCTGATCATGGCCGCCGAATGCTGCAAGGCCGAACACATCAACTTCATGGCCAAGCACGCCCGTGGCCTGATCTGCATGCCGATGACCCGCGAACGCTGCGAGCTGCTGAAGCTGCCGCTGATGGCGCCGCGCAATGGCTCGGGCTTCGGCACCAAGTTCACCGTGTCCATCGAGGCCGCCGAGGGCGTGACCACCGGTATCTCCGCCGCTGACCGCGCGCGCACCGTACAAGCGGCCGCGGCCGCCGACGCCAAGGCCGAAGACATCGTCAGCCCCGGCCACATCTTCCCGTTGATGGCCCAGGCCGGCGGCACCCTGGCCCGCGCCGGCCATACCGAGGCGGCGTGCGACCTGGCGCGCATGGCCGGCTTCGAGCCCGCCGGCGTCATCTGCGAAGTGATGAACGACGACGGCACCATGTCCCGTCGCGCCGAGCTGGAAGCGTTCGCCGCCGAGCACAACATCAAGATCGGCACCATCGCCGACCTGATTCACTACCGAATGATCCACGAACGTACCGTTCAGCGGATTTCCGAGCAGCCGCTGGACAGCGAACTGGGCCAGTTCAACCTGGTGACCTACCGCGACTCGGTGGAAGGCGACGTGCACATGGCGCTGACCCTGGGCACTGTTTGTGCTGAAGAGCCGACCCTGGTCCGCGTGCATAACATGGACCCTCTACGCGACCTGCTGATGGTCAAGCAACCGGGCCGCTGGAGCCTGCGCGCGGCCATGGCCGCCGTGGCCGAGGCGGGCAGCGGCGTGGTGCTGTTGCTCGGGCATCCACTCGATGGTGACGTGCTGTTGGCCCACATCCGTGAGACCACCGAGCAGCAACCGGTGAAAAAGCCGACCACCTACAGCATTGTCGGTGCCGGTTCGCAGATCCTGCGCGACCTGGGCGTGCGCAAGATGCGTCTGATGAGCGCGCCGATGAAATTTAATGCGATATCCGGTTTCGACCTGGAAGTTGTAGAATACGTGCCCTCCGAATAA	MALNSIEELVEDIRQGKMVILMDDEDRENEGDLIMAAECCKAEHINFMAKHARGLICMPMTRERCELLKLPLMAPRNGSGFGTKFTVSIEAAEGVTTGISAADRARTVQAAAAADAKAEDIVSPGHIFPLMAQAGGTLARAGHTEAACDLARMAGFEPAGVICEVMNDDGTMSRRAELEAFAAEHNIKIGTIADLIHYRMIHERTVQRISEQPLDSELGQFNLVTYRDSVEGDVHMALTLGTVCAEEPTLVRVHNMDPLRDLLMVKQPGRWSLRAAMAAVAEAGSGVVLLLGHPLDGDVLLAHIRETTEQQPVKKPTTYSIVGAGSQILRDLGVRKMRLMSAPMKFNAISGFDLEVVEYVPSE	PGPT0007990_4057	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
D1-36_04530	663	ribE		Riboflavin synthase	ATGTTTACCGGCATCATCGAATCCATCGGCAGTATCCGCGCACTCACCCCCAAGGGCGGCGATGTGCGGGTGCATGTCGAAACCGGCAAGCTCGACCTGAGCGACGTCAAGTTGGGCGACAGCATCGCCGTGAACGGCGTCTGCCTGACTGCCGTCGAGCTGCCCGGCAATGGCTTCCTGGCTGACGTCAGCCGCGAAACCCTCGACTGTACCGCGATGAACGATCTCAAGAGTGGCAGCCCGGTCAACCTGGAAAAAGCCCTGACGCCGACCACGCGCCTCGGCGGGCACCTGGTCAGCGGCCACGTCGACGGTGTCGGCGAAGTGGTCTCGCGTACCGATAACGCCCGGGCCGTGGAGTTTCGTATCCGGGCCCCGAAAGAGCTGGCCAAGTACATCGCCCATAAAGGCTCGATCACCGTCGATGGCACCAGCCTGACGGTCAACGCGGTGGACGGCGCTGAGTTCATGCTGACGATCATCCCCCATACCCTGAGCGAAACCATCATGGCCTCGTACCGGCCTGGTCGTCGGGTCAACCTGGAGGTCGACCTGCTGGCCCGCTATCTGGAGCGTCTGCTGCTGGGCGACAAGGCCGCGCAGCCAGCAGCCGGCAATATCACTGAAAGCTTTCTGGCCGCTAACGGCTACCTCAAATCCTGA	MFTGIIESIGSIRALTPKGGDVRVHVETGKLDLSDVKLGDSIAVNGVCLTAVELPGNGFLADVSRETLDCTAMNDLKSGSPVNLEKALTPTTRLGGHLVSGHVDGVGEVVSRTDNARAVEFRIRAPKELAKYIAHKGSITVDGTSLTVNAVDGAEFMLTIIPHTLSETIMASYRPGRRVNLEVDLLARYLERLLLGDKAAQPAAGNITESFLAANGYLKS	PGPT0008610_929	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
D1-36_04531	1134	ribD	COG0117	Riboflavin biosynthesis protein RibD	ATGACCAGCCCGGCGCAACAAGCCGTCCTCGACGCCCATTACATGGCCCGCGCCCTGGAATTGGCGCGACGCGGTCACTACACGACCCATCCCAACCCACGGGTGGGTTGCGTGATCGTGCGGGACGGCGAAGTCGTCGGCGAAGGCTGGCACATCCGCGCTGGCGAACCCCATGCCGAAGTCCATGCCCTGCGCGCCGCCGGTGAAAATGCCCGGGGCGCCACGGCCTACGTGACCCTCGAACCGTGCAGCCACCATGGGCGCACACCGCCCTGTGCCGATGCGTTGGTCACCGCCGGGGTGGCGCGGGTGGTGGCCGCGATGCAAGACCCGAACCCGGAAGTCGCCGGGCGCGGCCTGCAGCGGCTGGCCCAGGCCGGCATCGCCACAGAAAGCGGCGTGCTGGAAGGCGAAGCGCGCAAGCTCAATGAAGGTTTCCTCAAGCGCATGGAACATGGCCTGCCGTTCGTGCGGGTCAAGCTCGCCATGAGCCTTGATGGGCGCACCGCCATGGAGAGTGGCGAGAGCCAGTGGATCACCGGCCCCGCCGCGCGCTCGGCGGTACAACGCCTGCGGGCCCAGGCCAGCGTGGTGCTGACCGGCGCCGATACGGTGCTGGCGGACAATGCCCGGCTGACCGTGCGTGCCGACGAGCTCGGGCTGGACGCCGAGCAGACCGCGCTGTCCATGAGCCGTCCGCCGCTGCGGGTGCTGGTGGACGGCCGCTTGCGAGTGCCGCTGGATGCGCCGTTTTTCAGGGCGGGCCCGGCGCTCGTCGCTACCTGCATGGCGGTGGAAGAACAGTACGCCAACGGCCCCGAATGCATGATCGTGGCGGGTGACGACGGTCAGGTCGATCTGCGCCGCCTGTTGGCGGAGTTGGCGGCCCGAGGCGTCAACGAAGTGTTGGTGGAAGCCGGCCCGCGCCTGGCGGGAGCCTTTGCCCGTCAGGGCCTGGTGGACGAGTTCCAGATTTTCATCGCCGGCAAGTTTCTGGGCTCCTCGGCGCGACCGCTGCTGGACTGGCCGCTGGCGCAGATGAAGGACGCCGCGCCGCTGAAAATCACCGAAATCCGCGCCGTGGGCGATGACTGGCGAGTCATCGCCGTTCCCGTTTCATCGGCCAGCGTATAA	MTSPAQQAVLDAHYMARALELARRGHYTTHPNPRVGCVIVRDGEVVGEGWHIRAGEPHAEVHALRAAGENARGATAYVTLEPCSHHGRTPPCADALVTAGVARVVAAMQDPNPEVAGRGLQRLAQAGIATESGVLEGEARKLNEGFLKRMEHGLPFVRVKLAMSLDGRTAMESGESQWITGPAARSAVQRLRAQASVVLTGADTVLADNARLTVRADELGLDAEQTALSMSRPPLRVLVDGRLRVPLDAPFFRAGPALVATCMAVEEQYANGPECMIVAGDDGQVDLRRLLAELAARGVNEVLVEAGPRLAGAFARQGLVDEFQIFIAGKFLGSSARPLLDWPLAQMKDAAPLKITEIRAVGDDWRVIAVPVSSASV	PGPT0008555_989	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
D1-36_04532	465	nrdR	COG1327	Transcriptional repressor NrdR	ATGCACTGTCCCTTCTGCGGTGCCAACGACACCAAAGTCATCGACTCGCGACTGGTCGCCGAGGGCGAACAGGTCCGCCGCCGCCGCGAATGCCTGGCCTGCGGCGAACGTTTCACGACGTTCGAGACCGCTGAGCTGGTGTTGCCGCGCCTGATCAAGACCGACGGCAGTCGCCAGCCGTTCGATGAAGAAAAACTGCGCGCCGGCATGCAGCGCGCCCTGGAAAAACGCCCGGTGAGCGTCGAACGCCTGGAAGCCGCGCTGGTGCACATCAAGCACAAGCTGCGGGCGACCGGCGAGCGCGAGGTCAAATCCCTGGTGGTCGGCGAGCTGGTGATGGCCGAGCTGCAGAAGCTCGATGAAGTGGCCTACATCCGTTTCGCCTCGGTGTACCGGCGTTTCCAGGACCTCAATGAGTTCCGCGAGGAAATCGACCGCCTGGCCCGCGAGCCGGTGAAAGAATGA	MHCPFCGANDTKVIDSRLVAEGEQVRRRRECLACGERFTTFETAELVLPRLIKTDGSRQPFDEEKLRAGMQRALEKRPVSVERLEAALVHIKHKLRATGEREVKSLVVGELVMAELQKLDEVAYIRFASVYRRFQDLNEFREEIDRLAREPVKE				NA	NA	NA	NA	NA
D1-36_04533	465			hypothetical protein	ATGCCGCTACGATCCATTGTTTTGCTCAGTCTCTTCAGCCTGCTGATGGCGTGCAGCAGCGACGCCCCGAAACCCGCCGCGCCAGCCCCGGCGCCCGCGCCTAAACAGGCTCAGGAAAAGGCCCGCCAAGCCACCGAGCTTGGGCCGCTGCCGGCGCATCAGCGAGAACTAAGCGGTACCTTGCAAGGCGTGCCGGCAGGGGCCGAGGTGGAACTGGCGCTGCTGGTGATCGATGACAAGGATCGCCCGCAGCAACTGCTCGCCAGTTCCAGCCTGATCGGCACCAACCAGGCACTGCCCTTCCGCCTGCGCTTCAACCCCGAAGCCTTCCCCGTTGGCGCCCGCGTGGAACTGCGCGGCCGGGCCAGCCAGTCGGGCCAGTTGATCCTGCACCTGCCGGAGCAACGCATCAGCCAACCGACCACCCAGGCGCTGGGCGTCCTGCAATTCGTCAAAGCGCCATGA	MPLRSIVLLSLFSLLMACSSDAPKPAAPAPAPAPKQAQEKARQATELGPLPAHQRELSGTLQGVPAGAEVELALLVIDDKDRPQQLLASSSLIGTNQALPFRLRFNPEAFPVGARVELRGRASQSGQLILHLPEQRISQPTTQALGVLQFVKAP				NA	NA	NA	NA	NA
D1-36_04534	660			hypothetical protein	ATGAGGCCACCGCAGGACCTGCAACAAGCGCTGGACGAGTTACTTGGCGATGCACGTTTGGTGGCCTGTGCGCTGCCGGACACAGACTTGAAGCTGTGGTTGATCGACGGCGACAACATGGACCGAGCCTTCAGCCCGGAAGAAACCCGGCGCATCCTCCACGAGCCGCCGTATTGGAGCTTCTGCTGGGCCAGCGGCCTGGCGATGGCGTGCTATCTGGCCGAACAGCCACAATGGGTCGAGGGCAAGCGAGTGCTGGATTTCGGTGCCGGCTCCGGCGTGGCGGGCATTGCGGCGGTCAAGGCCGGGGCGCTGGAAGTGGTGGCCTGCGACCTGGATCCGCTGGCGCTTGCCGCGTGCCAGGCCAATGCAGTGCTTAACGGCGTGACGTTGGGTTATTCGACGGATTTTTTCGCCGAGGCTGATCGCTTCGATCTGATCCTCGTCGCCGACGTGCTCTACGACCGGGCGAACCTGCCGCTGCTGGACCAGTTCCTCAGCCGTGGCCGCGAGGCACTGGTGGCGGATTCCCGGGTGCGGGACTTCCAGCATCCGCTGTACCGACGCATCGAAATGCTCGAGGCCATGACCTTGCCGGACCTGGCTGAGCCGGAGGAGTTTCGGCATGTGAGCCTGTACCACGCGCGGCGCTTGTCTTAA	MRPPQDLQQALDELLGDARLVACALPDTDLKLWLIDGDNMDRAFSPEETRRILHEPPYWSFCWASGLAMACYLAEQPQWVEGKRVLDFGAGSGVAGIAAVKAGALEVVACDLDPLALAACQANAVLNGVTLGYSTDFFAEADRFDLILVADVLYDRANLPLLDQFLSRGREALVADSRVRDFQHPLYRRIEMLEAMTLPDLAEPEEFRHVSLYHARRLS				NA	NA	NA	NA	NA
D1-36_04535	873	cnoX	COG3118	Chaperedoxin	ATGACCCAGGACACGTCTTACATCTTCGACGCCACCACGGCCGATTTCGACCAGTCGGTGATCGCCAACTCTTTTCAAAAACCGGTGCTGGTGGATTTCTGGGCCGAGTGGTGTGCGCCCTGCAAGGCACTGATGCCCATGTTGCAAGGTATCGCCGAGAGCTATCGGGGCGAACTGCTGCTGGCCAAGGTCAACTGCGACGTCGAGCAAGACATCGTCGCCCGCTTCGGCATTCGCAGCCTGCCGACCGTGGTGCTGTTCAAGGACGGCCAGCCGGTGGACGGCTTCGCCGGGGCTCAACCGGAATCGGCGGTGCGGGCGATGCTCGAACCCCATGTGCAGATGCCGCCTCCAGCCGCAGCCGACCCTTTCGAACAGGCCCAGGCGCTGTTCGATGAGGGCCGCTTCGCCGATGCCGAAGCCGTGCTCACCGTGTTGCTGGGCGAAGACAACACCAACGCCAAGGCGCTGATCCTTTACGCACGTTGCCTGACCGAGCGCGGCGAGCTGGGCGAGGCACAAACAGTGCTCGACGCCGTGAAAAGCGATGAACACAAGGCCGCACTGGCTGGCGCCAAGGCGCAGATCCAGTTTCTCGGCCTGGCCAAGGATCTGCCGGACGCCGCCGACCTCAAGGCGCGGCTGGCGAAAGATTCTCAGGACGACGAGGCGGTGTATCAACTGGCGATCCAGCAACTGGCGCGCCAGCAGTACGAGCCAGCGCTCGAGGCGCTGCTCAAGTTGTTCATCCGCAATCGCAGCTACAGCGAAGGCCTGCCCCATAAGACGTTGCTGCAAGTGTTCGAACTGCTGGGCAACGATCACCCGCTGGTGACGACCTACCGTCGCAAGCTGTTCGCCGCGCTTTACTGA	MTQDTSYIFDATTADFDQSVIANSFQKPVLVDFWAEWCAPCKALMPMLQGIAESYRGELLLAKVNCDVEQDIVARFGIRSLPTVVLFKDGQPVDGFAGAQPESAVRAMLEPHVQMPPPAAADPFEQAQALFDEGRFADAEAVLTVLLGEDNTNAKALILYARCLTERGELGEAQTVLDAVKSDEHKAALAGAKAQIQFLGLAKDLPDAADLKARLAKDSQDDEAVYQLAIQQLARQQYEPALEALLKLFIRNRSYSEGLPHKTLLQVFELLGNDHPLVTTYRRKLFAALY				NA	NA	NA	NA	NA
D1-36_04536	348			hypothetical protein	ATGTTGCGGATACGCGGGACGGTCGGTGATTGGCCGGTGGACTTGACGATAGAGATGGATGAAGGCGACTGGGCGCAGCTCGGCGCGCGATTGCAAGTGGCCAAGTCCGAAGGCGCGGCGGCGGCGCCCGCCAAGTCGACGAATCAGGATGACGCCCAGTGGCAGATCGCCCGGGAGTTGTTGCGCAAGGCCGGGCAACTGAGCGGCCCGGACTTGCTCGAACAGCTTGAGAGCCTGACCGGCAGCGCCTCGTCAGGCAAGCGCTTGCTGGTGCGCCTGCGCCACAGCGCCGAGGTCAAGGTGCTGAGCGGCGGGGATACGCCGCTCTACAGCTGGATCGGTCAGTAA	MLRIRGTVGDWPVDLTIEMDEGDWAQLGARLQVAKSEGAAAAPAKSTNQDDAQWQIARELLRKAGQLSGPDLLEQLESLTGSASSGKRLLVRLRHSAEVKVLSGGDTPLYSWIGQ				NA	NA	NA	NA	NA
D1-36_04537	597			hypothetical protein	ATGCGTCGTTTGCTTCTTGCCCTGCCATTCGCCCTGCTGCCATTGGCTGTCGCTCACGCGGCGGTGGAGCATGACCACGATCATGAGCATGATCACGAGCACGGCAGCCTGGGCGCCCATGAGCACGGCGTCGCCCGGTTGAATGCGGCCCTGGATGGCCAGACCCTGGAATTGGAATTGGAAAGCCCGGCGATGAACCTGGTGGGCTTCGAACACGCCGCCAGCAGCGATGCCGACAAAGCCAAGGTCGCCGCCGTGCGGGCGCAGCTGGATAAACCCCTGGCGTTGTTCAACCTGCCGGCCGCCGCCAAGTGCACCGTGGCCCAGCAGGAATTGGAAAGCCCGTTGTTCGGTGATGAGCCGGACCACGAAGACCACGACGAAGAGGCAGATGGCGACGAGCACCATGGCGAACACAGCGAGATCCATGCCGACTATCAATTCACTTGCACGGCCCCTGGCGCCTTGAAGAACCTGGATCTGGCGACACTGTTCAAAACCTTCCCGGCCACGCAGAAAATTCAGGTACAACTGATCAGCCCGAGCGGCCAGCAAGGCGTGGAAGTGACGGCCAAGGCGCCAGCGTTGAAATTCTGA	MRRLLLALPFALLPLAVAHAAVEHDHDHEHDHEHGSLGAHEHGVARLNAALDGQTLELELESPAMNLVGFEHAASSDADKAKVAAVRAQLDKPLALFNLPAAAKCTVAQQELESPLFGDEPDHEDHDEEADGDEHHGEHSEIHADYQFTCTAPGALKNLDLATLFKTFPATQKIQVQLISPSGQQGVEVTAKAPALKF				NA	NA	NA	NA	NA
D1-36_04538	711		COG1136	putative ABC transporter ATP-binding protein	ATGACCCAAGCACTCATCGAACTGTCCGACCTGGGCTTCAGCTGGCCCGGGCATCCGCCACTGCTGGACATCCCGGCGTTTCGCCTGGATGCCGGCGAAACCTTGTTCCTCAAGGGGCCGAGCGGCAGCGGCAAGACCACCTTGCTGGGGCTGTTGGGCGGTGTGCAAACGCCGGATCGCGGCAGCATCCGCCTGCTTGGCCAGGAGCTCACCGAATTGGGCGCGGGCAGCCGCGACCGCTTTCGCGTGGACCACACCGGCTACATCTTCCAGCAGTTCAACCTGCTGCCGTTTCTCTCGGTGCGCGAGAACGTCGAACTGCCTTGCCATTTCTCGAAATTGCGCGCGCAACGGGCCATCCAGCGCCACGGGAGTGTCGATCAAGCCGCCGCCACATTGTTGGCCCACCTGGGGCTGAACGATACGAACCTGCTGGAGCGCCGGGCCGACTCGCTGTCCATCGGCCAACAACAACGGGTCGCCGCCGCTCGGGCCCTGATCGGTCAACCGGAACTGGTGATCGCCGACGAACCGACCTCAGCCCTGGACTACGACGCCCGGGAAAACTTCCTGCGTCTGCTGTTCGCCGAATGCAGCGAAGCCGGGTCGAGCCTGTTGTTCGTCAGTCACGACCAGAGCCTGGCGCCGCTGTTCGACCGTCACCTCTCGCTGGCCGATCTGAATCGCGCCGCCAAGCCACTCGAGGTCTGA	MTQALIELSDLGFSWPGHPPLLDIPAFRLDAGETLFLKGPSGSGKTTLLGLLGGVQTPDRGSIRLLGQELTELGAGSRDRFRVDHTGYIFQQFNLLPFLSVRENVELPCHFSKLRAQRAIQRHGSVDQAAATLLAHLGLNDTNLLERRADSLSIGQQQRVAAARALIGQPELVIADEPTSALDYDARENFLRLLFAECSEAGSSLLFVSHDQSLAPLFDRHLSLADLNRAAKPLEV	PGPT0013345_7838	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003	NA	NA
D1-36_04539	1266			hypothetical protein	ATGTATTTGCTCCGTCTAGCCATGGCCAGCCTGGCGAACCGTCGCTTCACCGCGATCCTTACCGCTTTTGCCATTGCCCTCTCGGTGTGCCTGTTGCTCGCGGTGGAGCGAGTGCGCACCGAGGCGCGGGCCAGCTTCGCCAGCACCATCAGCGGCACCGACCTGATCGTCGGCGCCCGCTCCGGCTCCGTGAATCTGTTGCTGTACTCGGTGTTTCGCATCGGCAACGCCACTAACAACATCCGCTGGGACAGCTTCGAGCAGTTCGCCAACAACCCGAAAGTGAAGTGGGCGATCCCCATGTCCCTTGGCGACTCCCATCGCGGTTACCGGGTGATGGGCACCACCGAGGCCTACTTCGAGCATTACCAGTACGGCCGCCGGCAACACCTGGCGTTGGCCGATGGCCGCGCGTTCGCCACCGACCCATTCGAAGTGGTGCTCGGCGCGGAAGTGGCCGAGGCGCTGCATTACAAACTCGGGGAAAAGCTGGTGCTGGCCCACGGCGTGGCGGCGATCAGCCTGGTCAAGCACGACGACAAACCCTTTACCGTGGTGGGGATTCTCAAGCGCACTGGCACGCCGGTGGATCGCACGCTGCACATCAGCCTCGGCGGCATGGAGGCCATCCATATCGATTGGAAAAATGGCGTGCCGGCCCAGGGCAATGGGCGCATCAGCGCCGACCAGGCCCGCAACATGGACCTCACGCCGAAAGCGATTACCGCGTTCATGCTTGGCCTCAACAGCAAGATTTCCACCTTCGCCTTGCAACGCGAGATCAATGAGTTTCGTGGCGAACCGCTGCTGGCGATCCTGCCGGGCGTGGCGCTGCAAGAACTGTGGAGCCTGATGGGCACGGCGGAAAAAGCCTTGTTCGTGATCTCGCTGTTCGTCGTGCTGACTGGCTTGATCGGCATGCTCACGGCGATTCTCACCAGCCTCAACGAGCGGCGCCGGGAGATGGCGATCCTGCGTTCGGTGGGCGCGCGGCCCTGGCATATCGCGAGCCTGCTGGTACTCGAAGCCTTCGCCCTGGCATTGGCCGGGGTCACCGCCGGGCTGGCCTTGTTGTACATCGGCATCGCCGCCGCCCAGGGTTATGTGCAGTCGGCCTACGGTTTGTACCTGCCATTGGGCTGGCCGAGCGAGTATGAATGGGCGCTGCTGGCTGGCATTCTGGTCGCCGCCCTGCTGATGGGCAGCGTGCCGGCCTGGCGCGCCTATCGCCAATCGTTGGCCGATGGCCTGTCGATCCGTTTATGA	MYLLRLAMASLANRRFTAILTAFAIALSVCLLLAVERVRTEARASFASTISGTDLIVGARSGSVNLLLYSVFRIGNATNNIRWDSFEQFANNPKVKWAIPMSLGDSHRGYRVMGTTEAYFEHYQYGRRQHLALADGRAFATDPFEVVLGAEVAEALHYKLGEKLVLAHGVAAISLVKHDDKPFTVVGILKRTGTPVDRTLHISLGGMEAIHIDWKNGVPAQGNGRISADQARNMDLTPKAITAFMLGLNSKISTFALQREINEFRGEPLLAILPGVALQELWSLMGTAEKALFVISLFVVLTGLIGMLTAILTSLNERRREMAILRSVGARPWHIASLLVLEAFALALAGVTAGLALLYIGIAAAQGYVQSAYGLYLPLGWPSEYEWALLAGILVAALLMGSVPAWRAYRQSLADGLSIRL	PGPT0013350_14020	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004	NA	NA
D1-36_04540	519			hypothetical protein	ATGCCCCGCGCCCTGCTTGCACTGTTGATTATGGTTTCCCTGCCGCTGTGGGCGGCCGAGCCGAGGGACCTGGCCTGGTCGGAGATGATCCCACCAGATGCGCCGCCGGAAGTGCCGAACATGACGCCCCTGCACGACCTGTCGAAGATGAGCGATGCCTTGGCCGCCGAATCCGCCCCGGCGGCCAAGCAGGACCTGCCCAATGCCCCGGTGGTCAAGGCCCTCGATGGCCAGCAGATCCGCTTGCCCGGTTATATCGTGCCGCTGGAAGTCAGCGAGGAAGGCCGTACCACCGATTTCCTGCTGGTGCCGTATTTCGGCGCCTGCATCCACGTGCCGCCCCCGCCGTCGAACCAGATCGTGCATGTGAAAAGCGAAGTCGGGGTCAAGCTCGACGAGCTGTACCAACCGTACTGGGTCGAAGGGCCGATGCAGGTCAAGCCGTCCACCAGTGAACTGGCCGATGCCGGGTATCAGATGGAGGCGCAAAAGATTTATGTCTATGAACTGCCGGAGTGA	MPRALLALLIMVSLPLWAAEPRDLAWSEMIPPDAPPEVPNMTPLHDLSKMSDALAAESAPAAKQDLPNAPVVKALDGQQIRLPGYIVPLEVSEEGRTTDFLLVPYFGACIHVPPPPSNQIVHVKSEVGVKLDELYQPYWVEGPMQVKPSTSELADAGYQMEAQKIYVYELPE				NA	NA	NA	NA	NA
D1-36_04541	699	ompW	COG3047	Outer membrane protein W	ATGCACAAGTCTCTGCTCAGCGCCTCCCTCATCGCGCTAGCCCTCGCTGCGCCGTTTGCCCAAGCCCATACCGCCGGCGACATCATCGTTCGCGCCGGCGCGATCACGGTCAACCCGGACGCCGACAGCTCCAGCGTCAAGGTCGACCGTGGCCCGCTGGCCGGCGCCGACCTGGGCGGTAAGGCGACCCTGAGCAGCGACACACAGTTGGGCCTGAACTTCGCCTACATGCTCACCAACAACTGGGGAATCGAATTGCTGGCGGCCTCGCCATTCGAGCACGACGTGAAACTCAAGGGCACCGCACTCGGCGCCGCCAACAACAAGCTCGGCACCCTCAAGCACCTGCCGCCGACCCTGAGCCTGGTCTACTACCCGCTCGACGCCAAGTCGGCATTCCAACCCTATGTCGGCGCCGGCATCAACTACACCTGGATCTATGACGAACACGTCGGCAGCGAAGCCAGCGCCAATGGGTTCAGCAACTTTCGCGCGAAAAACAGCTGGGGCATGGCGTGGCAAGTCGGTGCCGACTATATGCTGACAGACAACATCATGATCAACGGCCAGATCCGCTACATCGACATCGATACCACGGCCTATGTCGACAACAACGCCGTGGCCGGCGGTACGAGGGCCAAAGTGGACGTCGATGTGGACCCGTTCGTCTACATGGTTGGGTTGGGTTACAAGTTCTGA	MHKSLLSASLIALALAAPFAQAHTAGDIIVRAGAITVNPDADSSSVKVDRGPLAGADLGGKATLSSDTQLGLNFAYMLTNNWGIELLAASPFEHDVKLKGTALGAANNKLGTLKHLPPTLSLVYYPLDAKSAFQPYVGAGINYTWIYDEHVGSEASANGFSNFRAKNSWGMAWQVGADYMLTDNIMINGQIRYIDIDTTAYVDNNAVAGGTRAKVDVDVDPFVYMVGLGYKF	PGPT0022210_529	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	OTHER_INTEGRAL_MEMBRANE_REMODELLING__PROTEINS,PGPT0022210-ompW|yciD-K07275	NA	NA
D1-36_04542	930		COG1088	UDP-glucose 4-epimerase	ATGGCTGAAGGCCCAGTTCTCATCACCGGCGGCGCGGGTTTCATTGGTTCGCACCTGACCGACGCCTTGCTTGCCAAAGGGCATTCGGTGCGCATTCTCGATGACCTGTCCACTGGCAAGCGCAGCAACCTGCCGCTGGATAACCCGGCTCTGGAGCTGATCGAGGGCGATGTCGCCGACGCCGCGCTGGTCGCCCGGGCCGTGGCCGGTTGCAGCGCCGTGGCGCATCTGGCCGCCGTGGCCTCGGTGCAAGCCTCGGTGGACGACCCGGTGCGCACGCACCAGAGCAATTTCATCGGCACCCTGAACGTCTGCGAAGCCATGCGCCAGGCCGGGGTGAAGCGGGTGCTGTTCGCCTCCAGCGCCGCGGTCTACGGCAACAATGGCGAAGGCCAGTCCATCGACGAAGAGACGCCCAAGGCGCCGTTGACGCCTTATGCGGCAGACAAACTGGCCAGCGAATTCTATTTCGACTTCTATCGTCGCCAGCATGAACTGGAGCCGGTGGTGTTCCGCTTCTTCAACATCTATGGTCCGCGCCAGGATCCATCCTCGCCGTATTCAGGCGTCATCAGTATCTTCAGCGAACGGGCGCAGAAAGGCCTGCCGATCACCGTGTTCGGCGACGGCGAGCAGACTCGGGATTTCGTCTACGTTGAGGATCTGGTGGACGTGCTGGTCCAGGCCATCGAAAAACCGGAAGTGGAGGTCGGCGCGGTGAATGTCGGCTGGAACCAGGCCACGACCTTGAAGCAGATGCTCCAGGCCCTGGCCGTGGTGGTGGGCGATTTACCTACGATCAGCCATGGCCCGGCGCGCTCCGGCGATATCCGCCATTCGCGGGCAAACAATGCTCGTTTACTGGAGCGCTTCAACGTCCCGAAGCAGACGCCGATGAGCGTGGGGCTGGCGCGGTTGTTGGGGCGCTGA	MAEGPVLITGGAGFIGSHLTDALLAKGHSVRILDDLSTGKRSNLPLDNPALELIEGDVADAALVARAVAGCSAVAHLAAVASVQASVDDPVRTHQSNFIGTLNVCEAMRQAGVKRVLFASSAAVYGNNGEGQSIDEETPKAPLTPYAADKLASEFYFDFYRRQHELEPVVFRFFNIYGPRQDPSSPYSGVISIFSERAQKGLPITVFGDGEQTRDFVYVEDLVDVLVQAIEKPEVEVGAVNVGWNQATTLKQMLQALAVVVGDLPTISHGPARSGDIRHSRANNARLLERFNVPKQTPMSVGLARLLGR				NA	NA	NA	NA	NA
D1-36_04543	870	rmlD		dTDP-4-dehydrorhamnose reductase	ATGTTACTGGGCGGCGGAAATGCCCTTGGGCAGGCGCTGATTCGCCTCGGTGCGGAAGAAGACATCGGTTTTCTCGCCCCCCGCCCCCCCGAAGACGGCTGGGATGCCGCGAGCCTCACGCAGTTGCTCGACGACACCCGGCCGGACGCCTTGATCAACCTGGCGTACTACTTCGACTGGTTCCAGGCCGAAACCGTCAGCGAGCAACGCCTGGCCAGCCAAGAGCGGGCGGTCGAGCGCCTGGCCGAACTGTGCCAGCATCACAACATTGTCTTGCTGCAACCGTCGAGCTATCGCGTGTTCGACGGCTCCCGCGCCACCGCCTACAGCGAAAAGGATGAACCGGTGCCCCTGGGCCTGCGTGGCCAGGCGTTGTGGCGCATCGAGCAAAGCGTGCGCGCCACTTGCCCGCAACATGTTCTGCTGCGTTTTGGCTGGCTGCTGGACGACAGCGCCGACGGCATCCTCGGCCGTTTCCTGGCCCGGGCCGAGCAGCCTGAAGAGTTGTTGCTGGCCGACGACCGTCGGGGTAACCCCACGCCGGTGGACGATGCCGCGCGGGTGATCATTTCGGTGCTCAAGCAACTCGATTGCGCGGCGCCGCTGTGGGGCACCTATCATTACGCCGGGCATGAGGCGACCACGCCGCTGGCTTTGGGCCAGGCGATCCTCACCGAAGCCCGCGCCCTGCACCCGCTGGCCATCGAGTCGCCGACGCCCCAGGCCCACGCCGCAAGGCCGGACGCGGCGGAAGAACCGCAGCACGCGGTATTGGCCTGCAAGAAAATTCTGCACACCTTCGGGATCAAGCCCCGCGCCTGGCGCGCCGCACTCCCGGCCCTACTGGATAGGTTCTATCGCCATGGCTGA	MLLGGGNALGQALIRLGAEEDIGFLAPRPPEDGWDAASLTQLLDDTRPDALINLAYYFDWFQAETVSEQRLASQERAVERLAELCQHHNIVLLQPSSYRVFDGSRATAYSEKDEPVPLGLRGQALWRIEQSVRATCPQHVLLRFGWLLDDSADGILGRFLARAEQPEELLLADDRRGNPTPVDDAARVIISVLKQLDCAAPLWGTYHYAGHEATTPLALGQAILTEARALHPLAIESPTPQAHAARPDAAEEPQHAVLACKKILHTFGIKPRAWRAALPALLDRFYRHG	PGPT0022630_2031	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
D1-36_04544	4311	srmB		ATP-dependent RNA helicase SrmB	ATGAATCTGCCCCTTGCAGCCGACCACGCCATGGCAGGCTTTCATCCCGCCGTTCGCGCCTGGTTCAGCCAGACATTCCCGGCCGTCACGGCCGCCCAGGCCCGGGCGTGGCCGTTGATCGGCCAGCGCCGCTCGGTGCTGGTCGCCGCGCCCACGGGTTCGGGCAAGACCCTGACCGCATTTCTCGCGGTCCTGGATGACTTGGTACATCGTGGCCTGGAGCAAGGCGGGCTGCCGGACGAGACACTCGTGGTCTACGTCTCGCCGCTCAAGGCTTTGAGCAACGACATCCAGATCAACCTGCAGAATCCCCTGGCCGGCATCACCGAGCAATTGCAGCGAATGGGGCTGCCGCCCTTGCCCATCACCACCGCCGTGCGCACCGGCGACACGCCGCAAAAAGAACGCTCGGCGATGCGCAAGACCGCGCCGCACATCCTCGTGACCACGCCCGAATCGCTCTATGTGCTGCTCGGCTCCGATTCCGGCCGGCAGATGCTTGCCAGCACCGGCACGGTGATCGTCGATGAAATCCACGCCATCGCCGCCAGCAAGCGCGGCAGCCATCTGGCCTTGAGCCTGGAACGGCTGCAAGCGCTGTGCGCCGAACCGTTGGTGCGCATCGGCTTGTCCGCCACGCAAAAGCCCATCGAGGCGGTATCGCGGTTTCTCGTCGGTGAAGGACGCGCCTGTGAAATTGTCGACATCGGCCACGCCCGCCCCCGCGACCTGGACATCGAGGTGCCGCCGGTGCCGCTTTCTGCGGTGATGGCCAATGACGTCTGGGAACTGGTCTACAACCGCCTCGCCGAGCTGGCCCGGGCGCACCGAACCACACTGGTATTCGTCAACACCCGGCGGCTGGCCGAACGCCTGAGTCGTCACTTGAGCGAGCGCCTGGGCAAAGACTCGGTGGCGGCCCACCACGGCAGCTTGGCGAAGGAGTTTCGCCTCGACGCCGAGCAACGCCTCAAGCGCGGCGAGCTGCAGGTACTGATCGCCACGGCGTCGCTGGAGTTGGGCATCGATATCGGCGACGTCGACCTGGTCTGCCAGATCGCCTCGCCCCGTTCGATCTCGGCGTTCCTGCAAAGGGTTGGCCGCTCCGGTCACCAGGTCGGCGGCACGCCCAAGGGGCGCCTGTTCGCTACCACGCGCGACGACTTGATCGAGTGCGCCGCCCTGCTCGATTGTGTGCGCCGTGGCGAGCTGGACATCCTGCACATCCCCAAGGCGCCGCTGGACGTCCTGGCCCAGCAGATTGTCGCCGAGGTCAGTTGCCAGGAATGGCATGAGCAGGCGTTGCTGGAGATGTTCCGCCGCGCCTCGCCCTATGCCGGGCTCGACGAAGATCATTACCAGGCCCTGTTGCAAATGCTCGCCGAAGGCCTCAATGGCCGGCAAGGCGTACGCAGTGCCTACCTGCACCGCGATGCCGTGACCCGGACCTTGCGTGGACGGCGCGGTAGCAAGCTGACGGCCGTGACCAGCGGCGGCACCATCCCGGACAACGCTGACTACAGCGTGCTGCTCGAACCGCAGGGCTTGAACATCGGCAGCGTCAACGAAGACTTCGCTGTCGAGAGCATCGCCGGCGACGTCTTCCAACTCGGCAATACCTCGTACCGGATCATTCGCGTCGAGACCGGCCGCGTGCGGGTCGAGGACGCCCAGGGCCAACCGCCCACCATTCCGTTCTGGCTCGGCGAAGCCCCAGGGCGCAGCGCCGAACTGTCCCTGGCCGTGGCCCGCCTGCAAGCCCAGCTGGATCAGTTGCTCGGCGCCACGCCGGGCAACCTGCAACCGGCCCTCGACTGGCTGACCGGCACCTTGCACCTGAACCTCGCCAGCGCCGAACAGATCCTCGATTACCTGGCCCCGGCGCGCCTGGCCTTCGGCGCCCTGCCCTCCCAGGACACATTGGTGATGGAACGGTTTTTCGACGAATCCGGCGGAACCCAACTGATCATCCACACGCCTTTCGGCAGTCGCATCAACCGCGCCTGGGGCCTGGCCCTGCGCAAGCGTTTCTGCCGCACCTTCAACTTCGAATTGCAGGCCGCCGCCAGCGAGGACGCCATCGTGCTGTCGCTGTCCACCAGCCACAGCTTCGAACTCGACGAAGTCTGGCGCTACCTCAACAGCCAGAGCGCCGAACAGATCCTGGTCCAGGCGGTGCTGGACGCGCCGTTGTTCGGCGTGCGCTGGCGCTGGAACGCCGGCGTGGCCCTGGCGTTGCCGCGCTACACGGGCGGGCGCAAAGTCGCGCCGCAGATCCAGCGCATGAAAAGTGAAGATTTGATCGCCAGCGTATTTCCTGACCAGATCGCGTGCCTGGAAAACCTCGCCGGCGAGCGTGAGATTCCCGACCACCCGCTGGTGGAACAGACCCTCGACGATTGCCTCCATGAAGCCATGGACAGCGAAGGCTGGCTGGCCCTGCTGCGGCGGATGGAGGCGGGCGAGATACACTTGGTCAGCCGCGACCTGCCTGCGCCCTCGCCCCTGGCGGCGGAAATCCTCAGCGCCCGGCCCTATACCTTTCTCGACGACGCGCCGCTGGAAGAACGCCGCACCCAAGCGGTGATCAATCGACGCTGGAGCGATCCGCAGTCCACCGATGACCTGGGCGCATTGGACGCCGATGCCATCCAGGCCGTGCGGGAAGAGGCCTGGCCGACGCCGACCAGTATCGATGAAATCCACGAAGCGCTGATGAGCCTGGCCTGCATCGCCGACAGCGAAGCCAGCGCCGATCCGTCGTGGCTGGAGGGGCTGCAAACCCTGGCCGAGCGCGGCCGCGCCAGCCATGTGCGAATCAGCGATGAACGCGGCCTGTGGGTGCCGTTGGAGCGGCTGACGTGCTTGCAAGCAATTTATCCACAAGCCCAATGGCAGCCGCCGCTGGCACCGCTGCCGGGGTTTGATGCGCCGTGGGACAGCGACGAGGCCGTGGTGGAAGTGCTGCGCGCGCGTCTCAGCGCCTTTGGCCCGCAGCCATTGACCGCGATCGCCTACCCGCTTGGGCTGTCGCCGGCGCAAGCGACCCAGGCCCTGGCCCAGCTGGAACAGCAAGGCTATGTGCTGCGCGGTCGCTTTACCCCGGGCACCGGGCAAGAGGAATGGTGCGAACGGCATCTGCTGGCGCGGATCCACCGCTACACGGTCAAGCGCCTGCGCCGGGAAATCGAGCCGGTAATGTTGCAGGACTTCATGCGGTTCCTGTTCGACTGGCAGCACTTGTCGCCGTCCAGCCAGGGCCGGGGCAGCGCCGTGCTGCCATCGATCATCAGCCAGTTCGAGGGCTACCCGGCCGCCGCCTCGGCCTGGGACAGCGACCTTTTGCCGGCGCGGATCAAGGATTATTCGCCGACCTGGCTTGACGAGCTGTGCCGCAGCGGCAAGTTCGTCTGGACGCGCCTGAGCGCCCGCCAGAAGCTGTCCGCCAGCGCCCTGCGCAGCACGCCAATCGTGTTGCTGCCGCGCGCCAAGGTCGCGCTGTGGAGCAGCCTCGCCGAGCAGACACCGATCAGCGAACTGTCGCTCAAGACGCAAAAAGTCCATCAAGCCCTCAGTGAACACGGCGCGTTGTTTTTCGATGAATTGCTGCACGAGGCCCACCTGCTGCGCAGCGAACTGGAAACCGCCTTGCAGGAATTGGTCGGTGCCGGGCTGGTGAATGCCGACAGCTTCGCCGGGCTGCGTGCCCTGATCACCCCCGCCAGCAAACGCCAGGCCCGCAGCAGCCGGCGCGGGCGCGGGGCGTTTGTCGGAGGCATGGACGATGCTGGGCGCTGGGCCTTGCTGCGCCGCAGCTCGCCAGCGCCAGAACCCGGCAACCGGCCCGCGCCCACACCGCCCGACACGCTGGAACACATCGCCATGACCCTGCTGCGCCGTTATGGCGTGGTGTTCTGGCGTTTGCTGGAACGCGAAGCCGACTGGCTGCCGAGTTGGCGTGAGTTGCTGCGCACGTTTCATCGCCTGGAGGCGCGAGGCGAGATTCGGGGCGGGCGTTTCGTCAGCGGGCTGGCCGGCGAACAGTTCGCCTTGCCTGAAGCCATCCCGCTGCTGCGCGACGCACGGCGCAGGCCCATCGATGGCAGCCTGGTGGCGGTGTGCGGGGTCGATCCGTTGAACCTCGCTGGCACGTTGCTGGGGGCGAAAGTACCGGCGCTGGCGAGTAATCGGCTGGTTTATCGGGACGGGTTGCCGGTGGCTGCGGTGGTTGCGGGCAAGCAGCATCTGTTTGTGGAGTTGGATGCAGAAGGGATGGCGGGGGTCAGGAACAAGCTTATTCAGAAAAGTTGA	MNLPLAADHAMAGFHPAVRAWFSQTFPAVTAAQARAWPLIGQRRSVLVAAPTGSGKTLTAFLAVLDDLVHRGLEQGGLPDETLVVYVSPLKALSNDIQINLQNPLAGITEQLQRMGLPPLPITTAVRTGDTPQKERSAMRKTAPHILVTTPESLYVLLGSDSGRQMLASTGTVIVDEIHAIAASKRGSHLALSLERLQALCAEPLVRIGLSATQKPIEAVSRFLVGEGRACEIVDIGHARPRDLDIEVPPVPLSAVMANDVWELVYNRLAELARAHRTTLVFVNTRRLAERLSRHLSERLGKDSVAAHHGSLAKEFRLDAEQRLKRGELQVLIATASLELGIDIGDVDLVCQIASPRSISAFLQRVGRSGHQVGGTPKGRLFATTRDDLIECAALLDCVRRGELDILHIPKAPLDVLAQQIVAEVSCQEWHEQALLEMFRRASPYAGLDEDHYQALLQMLAEGLNGRQGVRSAYLHRDAVTRTLRGRRGSKLTAVTSGGTIPDNADYSVLLEPQGLNIGSVNEDFAVESIAGDVFQLGNTSYRIIRVETGRVRVEDAQGQPPTIPFWLGEAPGRSAELSLAVARLQAQLDQLLGATPGNLQPALDWLTGTLHLNLASAEQILDYLAPARLAFGALPSQDTLVMERFFDESGGTQLIIHTPFGSRINRAWGLALRKRFCRTFNFELQAAASEDAIVLSLSTSHSFELDEVWRYLNSQSAEQILVQAVLDAPLFGVRWRWNAGVALALPRYTGGRKVAPQIQRMKSEDLIASVFPDQIACLENLAGEREIPDHPLVEQTLDDCLHEAMDSEGWLALLRRMEAGEIHLVSRDLPAPSPLAAEILSARPYTFLDDAPLEERRTQAVINRRWSDPQSTDDLGALDADAIQAVREEAWPTPTSIDEIHEALMSLACIADSEASADPSWLEGLQTLAERGRASHVRISDERGLWVPLERLTCLQAIYPQAQWQPPLAPLPGFDAPWDSDEAVVEVLRARLSAFGPQPLTAIAYPLGLSPAQATQALAQLEQQGYVLRGRFTPGTGQEEWCERHLLARIHRYTVKRLRREIEPVMLQDFMRFLFDWQHLSPSSQGRGSAVLPSIISQFEGYPAAASAWDSDLLPARIKDYSPTWLDELCRSGKFVWTRLSARQKLSASALRSTPIVLLPRAKVALWSSLAEQTPISELSLKTQKVHQALSEHGALFFDELLHEAHLLRSELETALQELVGAGLVNADSFAGLRALITPASKRQARSSRRGRGAFVGGMDDAGRWALLRRSSPAPEPGNRPAPTPPDTLEHIAMTLLRRYGVVFWRLLEREADWLPSWRELLRTFHRLEARGEIRGGRFVSGLAGEQFALPEAIPLLRDARRRPIDGSLVAVCGVDPLNLAGTLLGAKVPALASNRLVYRDGLPVAAVVAGKQHLFVELDAEGMAGVRNKLIQKS				NA	NA	NA	NA	NA
D1-36_04545	2088			hypothetical protein	TTGTCCCGATTGAGCACTGTGTTGCTGCTTTTCCTGCTGGCCATGGCCGGCACCAGCGCCTACGGGACCGCTGCGATCCCCGGCACCTCCAAGCCCGCCGAAGCCCCGGCCGAACCCGAGCCGCTGGTACAGGGGGGCCTGTTGGGGGCCATCAGCTCGAGCATCGACGACGTCCAGGACAAGCTCGACCTTGACCGCAGCCTGGTGGGCGCGTGGCGTCTGCGGGCGGATCGTGCGGCGGACGAGGTGGATCGCCTGGTGGATCAGACGTCCCGCTCGTCGTGGCGTGTGGCGGGGGATTTCCTGTTGCTTTCGGGCGTGTGGCTGGGGACGTTTGCGCTGATATGGAGCAGCACGCGATTGCTGATGCGCCGTTTGAGTCGGCGCCGCTGGCTGCGCACTCGCCAACGGATGCTGGACCTGCTCGGCTACCTGCTGCCTTACACGTTACCGGCCGTGGCCTGTCTGCCGCTGACCCTCTATGTCAGCCATTTCCTGCAAGTGTCGGTCGGCCGGGCGTTGGCGTTGTGTTTTGCCTACGCCACCAGCAGCGGCATTGTCTCCACATCGGTACTGCTCTGCGTCATCGTCATGTTCAATGGCGGCCACAAGCGGCGAGCAGTGGCGATCCTTCGTCGTTTCAGCCCGCGGCCGTTGTTCCTGATCGGCTTCCTGGCCGCGCTGAGCGATGCCTTGACCAGCCCGCAGATCGCTCGACAGCTGGGTGGCAACATCACCAGCAGCGTCGCGGTGTTCACCGGCCTGTCGGCTTCGATGATCTTCGGTTGGCTGGTGATCCACATGCGCCGGCCGGTGGCCCATCTGATCCGCAACCGGTCGCTGACCCAGCGCTTGAAGCAACCCGCATTGCAGGAGTCGCTGCGGATCTTTTCCGGCCTTTGGTACTGGCCGATCCTGCTGATGGTACTGGTGTCGGCGGTGAGCCTGGTCGGTGTCGGCGAGGACAACCAGAAGGCCCTGCGTTGCGCCTTGTTCACCACCATTTTGCTGATCGCGACGGTGTTCCTCAGCACCGTGTTCCAGCACATCTTCAAGTCCCCCAAAGCCGAGGCCATCCAGCGCCACAGCGCCTACAAAGGGCGGCTGTTGAGCCTGTTGCATGGGTTGTTGCGCATCGTCATGGCCGTGGCATTCATTGAGATCCTCGGGCGGATCTGGGGCGTGTCGCTGTTCGAGTTCGCCTCGCGCAATGCCGTGGGGCGGGCGATCAGTGATTCCCTGAGCCGCATTGGCTTGATCTTCCTGGTGACGTGGTTGACATGGGTAGTGCTCGACACGGCGATCCAGGAAGCACTGAAACCACCGCTCAACAAGCGCGGCGCTCGCCAGCCCAGCACGCGGGTCAAGACCATCCTGCCGCTGTTGCGCAACGCGTCGAAAATAATCCTGGTGGTGATTTGCGCGATCACCACCATGGCCAATCTCGGCATCAACGTCGCGCCATTGCTCGCGGGGGCCGGCGTGGTGGGGCTGGCGATTGGTTTTGGATCGCAACAATTGGTCCAGGACGTGATCACCGGGCTGTTCATCATCATTGAGGACACGCTGTCCATTGGCGACTGGGTGGTGCTCAGCTCCGGCCATGCCGGCACCGTCGAAGGCCTGACCATCCGCACCCTGCGCCTGCGCGACGGCAAGGGCTTCGTGCATTCGGTGCCGTTCGGGCAGATCAAGGCCGTGACCAACCAATCCCGGCAATTCGCCTTTGCGTTTTTCTCGGTGCAGTTCACCTACGACACCGACGTGGACCGCGCCATCGAGCTGATCCGCGAAGCCGGCGATTCGATCTCCGAGGACCCATTTCTCAAGTTCAACCTGCAAGGGCCGCTGGATGTATTCGGCGTGGACAAGATGGACCTCAACGGCGTGGTCCTCACCGCCCAGTTCCGCACGGTCTCGGGCGGACAATATGCCGTGAGCCGGGCGTTCAACCAGCGGTTGAAAAAGCTTGTGGATAACGAGCCGTCGGTGCACTTCGCGCAGACTTATCCACAGCAGGTGGTGTTGCCGAAGCGCTTGGTTGAGGAGCCGAAGGAGGAAGGTGCTGCCCCTGAGCAAACTCAGTAA	MSRLSTVLLLFLLAMAGTSAYGTAAIPGTSKPAEAPAEPEPLVQGGLLGAISSSIDDVQDKLDLDRSLVGAWRLRADRAADEVDRLVDQTSRSSWRVAGDFLLLSGVWLGTFALIWSSTRLLMRRLSRRRWLRTRQRMLDLLGYLLPYTLPAVACLPLTLYVSHFLQVSVGRALALCFAYATSSGIVSTSVLLCVIVMFNGGHKRRAVAILRRFSPRPLFLIGFLAALSDALTSPQIARQLGGNITSSVAVFTGLSASMIFGWLVIHMRRPVAHLIRNRSLTQRLKQPALQESLRIFSGLWYWPILLMVLVSAVSLVGVGEDNQKALRCALFTTILLIATVFLSTVFQHIFKSPKAEAIQRHSAYKGRLLSLLHGLLRIVMAVAFIEILGRIWGVSLFEFASRNAVGRAISDSLSRIGLIFLVTWLTWVVLDTAIQEALKPPLNKRGARQPSTRVKTILPLLRNASKIILVVICAITTMANLGINVAPLLAGAGVVGLAIGFGSQQLVQDVITGLFIIIEDTLSIGDWVVLSSGHAGTVEGLTIRTLRLRDGKGFVHSVPFGQIKAVTNQSRQFAFAFFSVQFTYDTDVDRAIELIREAGDSISEDPFLKFNLQGPLDVFGVDKMDLNGVVLTAQFRTVSGGQYAVSRAFNQRLKKLVDNEPSVHFAQTYPQQVVLPKRLVEEPKEEGAAPEQTQ	PGPT0013695_915	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013695-ykuT|ybiO-K22044	NA	NA
D1-36_04546	927			hypothetical protein	ATGACGGCGATCCACATTGGCATTTCCGGTTGGCGCTACACGCCTTGGCGGGGCGACTTCTACCCCAAGGGGCTGGCGCAGAAACGGGAACTGCAATTCGCCTCTCGAGCGGTCAACAGCATCGAAATCAATGGATCGTTCTACGCCCTGCAACGTCCCGAGCGGTATGCCCAGTGGTACGCCGAGACGCCGCCAGGCTTCGTGTTCAGCGTCAAGGCGCCGCGCTTCATCACCCATGTCAAACGCCTGCGGGATATCCACAAGCCGTTGGCGAATTTCTTCGCTTCCGGGGTGCTGGAGCTCAAGGAAAAACTCGGCGCCATCCTCTGGCAGTTTCCGCCCAACTTCAAATTCGACCCGGAGCTGTTCGAGGACTTCCTCAAGCAGCTGCCCCACGACACCCACGCCGCCGCCGCGCTGGCACGCGAGCACGAGTCGCGCCTGGACGGCCACGCCAGCACCGAGACCGATAAAAAGCGACCATTGCGCCACGCGGTGGAGATCCGACATGAAAGCTTCGTCGACCCACGCTTCGTCGCCCTGCTCAAACGCTACGACGTCGCCCTGGTGGTCGCCGATACCGCCGGAAAATGGCCCTATCGCGAGGACGTGACCAGTGACTTCGTCTACCTGCGCCTGCACGGCGCCGAAGAGCTGTACGCCAGCGGCTATACCGACGAGGCGCTCAAGCGTTGGGGCGACCGGATCGAGGCCTGGAGCCACGGCACGCAGCCGAGCGACGCCCAGTTGATCGATCCGAAAAAAAAGCCTCGGGCACGCAAGAGCCGAGAGGTGTTCTGCTATTTCGACAACGACATCAAGGTCCGCGCGCCCTACGACGCGCGCCACCTGCTGGAGCGCTTCGACCTGGACAAGCACCTCGCCACCGCTCCCGGTGAGCGCCCGGCAGAAGGAGTATTGCCATGA	MTAIHIGISGWRYTPWRGDFYPKGLAQKRELQFASRAVNSIEINGSFYALQRPERYAQWYAETPPGFVFSVKAPRFITHVKRLRDIHKPLANFFASGVLELKEKLGAILWQFPPNFKFDPELFEDFLKQLPHDTHAAAALAREHESRLDGHASTETDKKRPLRHAVEIRHESFVDPRFVALLKRYDVALVVADTAGKWPYREDVTSDFVYLRLHGAEELYASGYTDEALKRWGDRIEAWSHGTQPSDAQLIDPKKKPRARKSREVFCYFDNDIKVRAPYDARHLLERFDLDKHLATAPGERPAEGVLP				NA	NA	NA	NA	NA
D1-36_04547	819			hypothetical protein	ATGAGCACGCCAGAATCCAGCGAAGCCACCCGCGAGCCGTTGCAGGACGCCGCGCAGCGCTTGCTCGACCAGGTCAATCGATTCACGGTGCTGACGGTCAATACGCACAAGGGCTTCACCGCGTTGAACCGGCGTTTCATCCTGCCGGAACTGCGCGAAGCCGTGCGCAGCGTTTCCGCCGACGTGGTGTTCCTGCAAGAAGTGCATGGCACCCACGAGCACCATCCCCAGCGCTACAGCAACTGGCCGAGCATTCCCCAATACGAATTCCTCGCCGACACCCTCTGGCCGCAGTTCGCCTACGGGCGCAACGCGGTGTATCCGGCGGGCGACCATGGCAACGCGTTGCTGTCGAAATTCCAGATCATCCGCCACGACAACCTCGACGTGTCCATCAGCGGCCATGAAAGCCGCGGCATGCTGCACAGCGTATTGCGCCTGCCGAACGCTGAGGGTGGACGGGACGTGCACGCCATTTGCGTCCACCTGGGGCTGCGTGAAGGCCATCGCGTAGAACAATTGAAGTTGCTTTGCCAACGCCTGGGCGAGCTGCCGCCCGAGGCCCCAGTGATCGTCGCGGGGGATTTCAACGATTGGCGCGGCAAGGCCACTGACCTGCTCGAGCCCTGCGGTTTGCGGGAGGTGTTCGCTGAACAGTGGGGCAAACCGGCCCGAAGTTTTCCGGCACGCCTGCCGATTTTGCGCCTGGACCGGATCTATGTGCGCAACCTCAAGGCCCATCACGCCCAGGTACTGAATGTACGACCCTGGTCGCACCTTTCCGACCACGCACCGCTGTCGGTGGAGATTGAATTATGA	MSTPESSEATREPLQDAAQRLLDQVNRFTVLTVNTHKGFTALNRRFILPELREAVRSVSADVVFLQEVHGTHEHHPQRYSNWPSIPQYEFLADTLWPQFAYGRNAVYPAGDHGNALLSKFQIIRHDNLDVSISGHESRGMLHSVLRLPNAEGGRDVHAICVHLGLREGHRVEQLKLLCQRLGELPPEAPVIVAGDFNDWRGKATDLLEPCGLREVFAEQWGKPARSFPARLPILRLDRIYVRNLKAHHAQVLNVRPWSHLSDHAPLSVEIEL				NA	NA	NA	NA	NA
D1-36_04548	1299	clsB	COG1502	Cardiolipin synthase B	ATGAGCGCGACGATGAACAAGGCGACGGTGGAAAAGGTCGAGGTACCGCCCACCGAGCGCAACCCGGCGCTGGCCGACGTCGAATATGGCTGGCATGGCAACAACCGCGTCACGCTCCTGGAAAACGGAGAGGAGTATTTCCCACGTATCTTCGAGGCGATTCGCCGTGCCCAGGAAGAAGTTCTCCTGGAGACTTTCATTCTGTTCGAGGACAAGGTCGGCTTCGAACTGCGGGACATATTGGTGGACGCGGCCAAGCGCGGCGTACGCATCACCGTCAACCTCGACGGTTTTGGTTGCGGTGAGCTGAGCACTGCGTTTCTCGCGTCGTTGAGCGATGCCGGAGTACGCCTGCAAATGTTCGACCCTGCCCCACGGCACCTGGGCATCCGCACCAACTGGTTCCGCCGCCTGCACCGCAAGATCGTGGTAGTGGATGGCGTGATCGCATTCATCGGCGGGATCAACTTTTCCGCTGACCACCTGGGCGATTTCGGCCCCGAGGCCAAGCAGGATTATTCGGTGGAGATCAAAGGCCCGGCGGTGGTGGATATCCATCACTTCGCGCTGCTGCAAACCGGGCGTCCGGCCCGGGCCAAGTATTGGTGGCAACGTCGCCGCAGCCGCCGTACCGAGCTGGCATTCAATGATCATGACGGTCAGGTGCGCCTGGTTTATCGCGATAACCACGAGCATCAGACCGACATCGAGGAGGTCTACCTGCAAGTGCTGCGCAGCGCCCAGCGCCGGGTAGTGATCGCCAACGCCTATTTCTTCCCCGGTTATCGGTTGCTGCGTGAGCTGCGCAACGCCGCGCGACGCGGCGTCGAGGTCCGGCTGATCCTGCAAGGGCAACCGGACATGATGATCGCCAAGCTGGCGGCGCGGATGCTTTATGACCATTTGATCAAGGCCGGCGTGACGATCTACGAATATTGCGAGCGCCCGCTGCATGGCAAGGTCGCCCTGGTGGACGAGGACTGGGCCACCGTGGGTTCGAGCAACCTCGACCCGCTGAGCCTGTCGCTGAACCTGGAAGCCAACGTGCTGATCCGCGACCGCGGCTTCAACCGCGAACTGTTCGAGCGCCTCGAACACCTGAGCCGCAATCACTGCACCGTCATGCCAGAAAACCACGCCCCGCGCGGGCTGCTCTGGCGCATGACTATCGGTTTCATGGTGTTCCACTTCCTGCGTCATTTTCCGGCCTGGGCCGGATGGCTGCCGGCCCATAAACCACGTCTGAAACCTTTTTCACCGCCGACGGCGGTCCGGAGCGAACCCCATGAACCACTCTGA	MSATMNKATVEKVEVPPTERNPALADVEYGWHGNNRVTLLENGEEYFPRIFEAIRRAQEEVLLETFILFEDKVGFELRDILVDAAKRGVRITVNLDGFGCGELSTAFLASLSDAGVRLQMFDPAPRHLGIRTNWFRRLHRKIVVVDGVIAFIGGINFSADHLGDFGPEAKQDYSVEIKGPAVVDIHHFALLQTGRPARAKYWWQRRRSRRTELAFNDHDGQVRLVYRDNHEHQTDIEEVYLQVLRSAQRRVVIANAYFFPGYRLLRELRNAARRGVEVRLILQGQPDMMIAKLAARMLYDHLIKAGVTIYEYCERPLHGKVALVDEDWATVGSSNLDPLSLSLNLEANVLIRDRGFNRELFERLEHLSRNHCTVMPENHAPRGLLWRMTIGFMVFHFLRHFPAWAGWLPAHKPRLKPFSPPTAVRSEPHEPL	PGPT0007725_3863	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
D1-36_04549	1002	ybhN	COG0392	Inner membrane protein YbhN	ATGAACCACTCTGACGCGCACACCGCGCCGAGAGATGCCCATGCGCCGGAACAGGCCAAGCCCAAGTCCCGCTGGAGCCGCTGGAAACGCCCGCTGACCCTGGCTTTTTTCCTGCTGTTGATTGTGCTGTTCACCGCATTGGCTCGGCGCATCGACTGGTCCGAGGTTTTCACCACCCTGGCGGACTTCAAGCTGCGCACGCTTTTCATTGCCGCCGCCCTGACCATCACCAGTTTCGTCACCTACGCCTGCTTCGATCTGATCGGCCGTACCTACATCCGGCAGAAACTTGGGTGGCGGCAGATCCTGCCGGTGGGGGTGATCAGTTATGCGTTCAATCTCAACCTCAGCGCCTGGGTAGGTGGCATCGCCATGCGCTACCGACTTTATTCGCGGCTGGGGGTGAGCACGGGCAATATCGCCAAGATCCTGGGCTTGAGCCTGGCAACCAACTGGTTCGGTTATATGACCCTGGCCGGCGTGGTGTTCAGCAGCGGCCTGGTGACCATGCCTCCAGGCTGGAAGCTGAGCAGCAATGCACTGCAAGGCGTCGGGGCGCTGTTGTTGCTGGCAAGCGCCGGCTACCTGCTGGCCTGCCGCTTTTCAAAACGCCGCGCCTGGACGGTTCGGGGGATGGAGATCAACCTGCCTTCCCTGCGCATGGCCGTGCTGCAACTGGCCCTCGGGGCGTTGAACTGGTCGTTGATGGCGGCGGTGATCTTTACGTTGCTGCCGAGCAAACTGGATTACCCGGTGGTGCTCGGGGTGTTGCTGATCAGCAGTATCGCCGGGGTGATCACTCACATTCCCGCTGGGCTCGGCGTGCTGGAAGCGGTGTTCGTCGCGCTGCTGCAGCATGAGGTGTCGCGGGGCAGCTTGATCGCGGGGCTGATTGCCTATCGGGCGATCTATTTCATCCTGCCGTTGTTGATCACGGTGGTGATGTACCTGGTGATCGAGGCGAAGGCCAAGGCGTTGCGGGTCAAGCCTGGGGTCAAGTGA	MNHSDAHTAPRDAHAPEQAKPKSRWSRWKRPLTLAFFLLLIVLFTALARRIDWSEVFTTLADFKLRTLFIAAALTITSFVTYACFDLIGRTYIRQKLGWRQILPVGVISYAFNLNLSAWVGGIAMRYRLYSRLGVSTGNIAKILGLSLATNWFGYMTLAGVVFSSGLVTMPPGWKLSSNALQGVGALLLLASAGYLLACRFSKRRAWTVRGMEINLPSLRMAVLQLALGALNWSLMAAVIFTLLPSKLDYPVVLGVLLISSIAGVITHIPAGLGVLEAVFVALLQHEVSRGSLIAGLIAYRAIYFILPLLITVVMYLVIEAKAKALRVKPGVK				NA	NA	NA	NA	NA
D1-36_04550	759			hypothetical protein	ATGACGGCTAGAAGCGAAACCATCCAGATTGCCATTGACGATGAGCATATGAACGGGACCTTCCTCAGCCCCAAGTCGAAGGTCCCCGGCGTGTTGTTCGTACACGGTTGGGGCGGCAGCCAGGAGCGCGACCTGGAGCGGGCCAAGGGCATCGCCGGCCTGGGCTGTGTCTGCCTGACCTTCGACTTGCGTGGGCATACGGGGGGCGCCGGGATCCCGCTGTCACGGGTCACGCGGGAGGACAATCTGCGGGACCTGCTGGCGGCCTACGACCGATTGCTCGCCCATCCCGCCCTCGATACCTCGGCGATAGCCGTGGTTGGCACCAGCTACGGTGGCTACCTGGCCTCGATCCTGACCTCGCTGCGTCCGGTGCGTTGGCTCGCCTTGCGCGTGCCGGCACTTTATCGCGACGAGCAATGGCACACGCCCAAGCGCGACCTGGATAAAGCCGACCTGCTCGATTATCGCAGCACGCTCGTCCATGCCGACACCAATCGCGCCTTGCACGCGTGCTCGCAGTTCACAGGCGATGTGCTGCTGGTGGAGTCCGAGACCGACGATCATGTGCCCCATGCCACCATCATGAGCTACCGCGCCGCCTGTCAGCAGACCCATTCGCTGACCCACCGGATCATCGACGGCGCCGACCATTCCCTGAGCGACCCCGTGTCACAACAGGCCTACACCTCGATCCTGGTGAGCTGGATCACGGAGATGGTGGTGGGCGAGCGGTTGAGCATCATTCAGGAGCGGTAG	MTARSETIQIAIDDEHMNGTFLSPKSKVPGVLFVHGWGGSQERDLERAKGIAGLGCVCLTFDLRGHTGGAGIPLSRVTREDNLRDLLAAYDRLLAHPALDTSAIAVVGTSYGGYLASILTSLRPVRWLALRVPALYRDEQWHTPKRDLDKADLLDYRSTLVHADTNRALHACSQFTGDVLLVESETDDHVPHATIMSYRAACQQTHSLTHRIIDGADHSLSDPVSQQAYTSILVSWITEMVVGERLSIIQER				NA	NA	NA	NA	NA
D1-36_04551	1110			hypothetical protein	ATGACGTCGATCCCTCGTGACAAATTAGTGGTGGCCCACTCGGTCAATCCCCAGGCACCCCTGCATGAAGTCGAAACCAATAGGGCTCTGGCCCGCTGGTTGGCGAATATCCTTGGCTTGGAATACGGCGGCAGTTACGACAGCCAGCAACACGCCGAGCGGGATTTGTATCTGTTGCCTACGCAAACTCTGATCGGTCCAGAGGCCGCGTTGCGTCTGGGCGTCAAGGGACCGGACGATCTTTGGGGCGGCTATGTCGATCACGATTTCATCTGCACCAAGGCGATTGCCCATGGTCTGTTGAATAAGGACGCGGTCGCGCCGAAGGGCTGGTCACCGCTGTTCGGCAAGTTGACCCGTGGCGTCGTGCTTGATGGTGTCAGCGTCTTCTCGCTCAAGGATGCGCGCCAGGCCGCCGAGCATTTGCTCTACGCCGGGCCGATTCGCTTCAAGCCAATCCATGCTTGTGCCGGACGGGGTCAGCGGGTTATCCGCAGCATCGCGCAATTCGATGAAATCGTCGCGGCTCCAGACGCCCAGGCGTTATTCAGCGAGGGGATCGTGCTGGAGCAGAACCTCAATGAGGTCAAGACCCAGAGCGTGGGCCAGAGCTTTATCAACGGCAAGGTCCTGAGCTATTGCGGCGTCCAGCACCTGACCCGCGACAACCAAGGCGAAGAGGTCTACGGCGGCTCTGACCTGCTGGTGGCCCAGGGTGGCTACATCGAGTTGCTCGGCCTGGAATTGCCGGACGATGTACGCGAAGCGGTGCGGTTGGCGCAGGTGTTCGATGACGCTGCCAACCAGGCGTATCCCACGTTCTTTGCTTCGCGGCGCAACTACGACATTGCCCAAGGGACCGACACCGGTGGCCAATTTCGCGGCGGCGTGCTGGAGCAGTCGTGGCGAATGGGCGGCGCCAGCAGCGCGGAGCTCGCGGCATTGCAGGTGTTTGTCGAGGATCCCGCGACCCGCGCGGTTCGGGTGTCCTCGGTTGAGACCTACACCGACCAACCACTGCCGGCCGGCGCTACGGAGGTTTATCGCGGCGCGGCAGAGAATAGTGATTTCCTACTCAAATACGTAACGGTCCAATCCTATGACGGCTAG	MTSIPRDKLVVAHSVNPQAPLHEVETNRALARWLANILGLEYGGSYDSQQHAERDLYLLPTQTLIGPEAALRLGVKGPDDLWGGYVDHDFICTKAIAHGLLNKDAVAPKGWSPLFGKLTRGVVLDGVSVFSLKDARQAAEHLLYAGPIRFKPIHACAGRGQRVIRSIAQFDEIVAAPDAQALFSEGIVLEQNLNEVKTQSVGQSFINGKVLSYCGVQHLTRDNQGEEVYGGSDLLVAQGGYIELLGLELPDDVREAVRLAQVFDDAANQAYPTFFASRRNYDIAQGTDTGGQFRGGVLEQSWRMGGASSAELAALQVFVEDPATRAVRVSSVETYTDQPLPAGATEVYRGAAENSDFLLKYVTVQSYDG				NA	NA	NA	NA	NA
D1-36_04552	996	rhaS_14		HTH-type transcriptional activator RhaS	ATGGCGCAGGAAAGGGCATTCGTCGAACTCGGCGTGCTGATCTACCCCGGCGCGCAAATGGCGGCGGTGCACGGTTTGACCGACTTGTTTGCGGTGGCGGATGCCATCGCGGCGGAGCAGGCCAGTGTGCAATTGCCACGGCTGCGCGTAAGTCACTGGCAAACGGCGAACGGCGAAGTGCCGTCGCGGGTGTTTGCCAGCGATGCCGGTCCGCACGCGCCCTTGATCGCCTTGTTGATACCGCCCTCTATTGCAGGCTTCAATGAAGCTATCGCGACGCCGACCCTGATGGATTGGCTACGGACGCAGCACGCAGGTGGCACCGTTTTGGGCGGGGTTTGCGTCGGCTCGATCCTGCTGGCCGAAAGCGGTTTGCTGGATGGGCGCAGCGCGACCACCCATTGGACTTCAGCCACGACCTTCGCGGCGCGTTATCCCAAGATCAAGCTGGACGCCGATAAACCCATTGTGGACGACGGCGATCTGATCACCACCGCCGGGCTCATGGCCTGGGCGGAGCTTGGGCTGCGGCTGGTGGATCGTCTGCTCGGGCCAAGCATCGCCACACGCACCGCACAGTTCCTGGTGATCGAGCACAGCGACAGCGCGAGCCAGTGCGGCAGCAATTTCGCGCCAATCCTGGGGCATGGCGACGGTGCGATCCTGAAGGTGCAACACTGGCTGCAACGCAGCGGCGCGGTGGATGTTTCCCTTGGCGCGATGGCCGAACAGGCGGGACTGGAAGAGCGCACCTTCCTGCGCAGGTTCCGCGCGGCCACGGGGCTCAAGCCCACCGAATACTGCCAGCACCTGCGAGTTGGCAAGGCTCGGGAAATGCTGGAATTCACCAACGGCACCATCGATCACATCGCCTGGACCGTCGGCTATCAGGACCCTTCTGCCTTTCGAGCGACTTTCAAGAAAATCACCGGCTTAGCGCCGAGTGACTACCGGGCGAAATTTGGCGTGACCCCTCAGAACGCACCCAGAGGCTGA	MAQERAFVELGVLIYPGAQMAAVHGLTDLFAVADAIAAEQASVQLPRLRVSHWQTANGEVPSRVFASDAGPHAPLIALLIPPSIAGFNEAIATPTLMDWLRTQHAGGTVLGGVCVGSILLAESGLLDGRSATTHWTSATTFAARYPKIKLDADKPIVDDGDLITTAGLMAWAELGLRLVDRLLGPSIATRTAQFLVIEHSDSASQCGSNFAPILGHGDGAILKVQHWLQRSGAVDVSLGAMAEQAGLEERTFLRRFRAATGLKPTEYCQHLRVGKAREMLEFTNGTIDHIAWTVGYQDPSAFRATFKKITGLAPSDYRAKFGVTPQNAPRG				NA	NA	NA	NA	NA
D1-36_04553	558	pncA_2	COG1335	Nicotinamidase	ATGTCCAAGCAAGCGCTCATCGTAGTCGATATCCAGAATGACTACTTCCCCCAAGGGAAATGGCCTCTGGCCGGCGCCGAAGCAGCCGCCGATAACGCCGCCAGGTTGATCGAGGCGTTTCGCCAGGCCGCAAACCAGGTGATTCACATCCGCCATGAATTCACTTCCGACCAGGCCCCTTTCTTCACGCCAGGCTCCGAAGGCGCGCAGTTGCACCCCAAGGTAACCAACCGCGCCGACGAACCGGTGGTGCTCAAACACTTCGTCAATGCGTTTCGCGAAACCGAGCTGCAAGCGACACTCGAGCATCACGGTATCGAACGGCTGGTGGTCGTGGGTAGCATGAGCCACATGTGCATCGACGGCATTACGCGGGCGGCCGCTGACATGGGTTATGAGGTGACGGTGGTCCACGACGCCTGCGCCAGCCGCGACCTGGAATTCAATGGGCTTGTCGTCCCTGCTGCCCATGTCCATGCCGCATTCATGTCAGCGCTGGGGTTTGCCTATGCGAAGGTGGTGAATACGGAACAACTACTGGCTGTCGAAAAGCCCTAA	MSKQALIVVDIQNDYFPQGKWPLAGAEAAADNAARLIEAFRQAANQVIHIRHEFTSDQAPFFTPGSEGAQLHPKVTNRADEPVVLKHFVNAFRETELQATLEHHGIERLVVVGSMSHMCIDGITRAAADMGYEVTVVHDACASRDLEFNGLVVPAAHVHAAFMSALGFAYAKVVNTEQLLAVEKP				NA	NA	NA	NA	NA
D1-36_04554	516	ssb	COG0629	Single-stranded DNA-binding protein	ATGGCCCGTGGGGTTAACAAAGTCATATTGGTCGGTACTTGCGGCCAGGATCCAGAAGTTCGCTACCTGCCTAACGGCAACGCCGTGACCAACCTGAGCCTGGCGACCAGCGAACAATGGACCGACAAGCAGACCGGCCAGAAGGTCGAGAAGACCGAATGGCACCGCGTGTCGATGTTCGGCAAAGTGGCCGAGATCGCCGGCGAATACCTGCGCAAGGGTTCGCAGGTGTACATCGAAGGCAAGCTGCAGACCCGCGAGTGGGAAAAGGACGGCATCAAGCGCTACACCACTGAAATCGTGGTCGACATGCAAGGCACCATGCAATTGCTTGGTGGCCGTCCGCAAGGCGACCAGCAGCAGGGTGGCAACAACTACCAGCAGTCCGCCCCGCGCCAGCAAGCCCCTCGTCCGCAGTCAGCGCCACAGCCACAACGCGAGCGCCCGGCCCCACAACAGGCCGCGCCGCAGCCGGCACCGGATTTCGACAGCTTCGATGACGATATTCCGTTCTGA	MARGVNKVILVGTCGQDPEVRYLPNGNAVTNLSLATSEQWTDKQTGQKVEKTEWHRVSMFGKVAEIAGEYLRKGSQVYIEGKLQTREWEKDGIKRYTTEIVVDMQGTMQLLGGRPQGDQQQGGNNYQQSAPRQQAPRPQSAPQPQRERPAPQQAAPQPAPDFDSFDDDIPF				NA	NA	NA	NA	NA
D1-36_04555	1398	yajR	COG0477	Inner membrane transport protein YajR	ATGCACGATCCCCACAGCGAACGCATGAGTAGCGGCGAGACCCGCGCGGCAAGCGGTCTGGCCCTGGTGTTCGCCTTCCGCATGCTGGGCATGTTCATGGTGTTGCCGGTACTGGCGACCTATGGCATGGACCTGGCAGGCGCGACCCCGGCCCTCATCGGGTTGGCGATCGGCGCCTATGGCCTGACCCAGGCCATTTTCCAGATTCCCTTCGGCATTATTTCCGACCGTATCGGGCGACGTCCCGTCATTTACCTGGGGCTCATCGTGTTTGCCCTCGGCAGTGTGCTGGCGGCGAACGCGGATTCGATCTGGGGCGTGATCGCCGGACGGATCCTGCAAGGGGCGGGGGCGATTTCCGCCGCCGTCATGGCCTTGCTGTCAGACCTGACTCGCGAACAGCATCGGACAAAAGCCATGGCCATGATCGGCATGACGATTGGTCTGTCGTTCGCGGTCGCCATGGTTGTAGGACCGTTGGTGACGCGTGCCTTTGGCTTATCGGGCCTGTTTCTGGCAACCGGTGCCATGGCATTGGTCGGTATCCTCATCGTCGCGGTCTTCGTGCCGCGCTCTACCGGGCCCTTGCAGCACCGCGAATCCGGCGTGGCCCGCCAGGCGCTGGTGCCGACACTCAGACATCCCGACCTGCTGCGCCTGGACCTTGGCATCTTCGTCCTCCATTCCATGCTGATGTCCAGCTTCGTGGCCCTGCCGCTGGCACTTGTGCAAAAGGCCGGCCTGCCCAAGGAGCAGCATTGGTGGGTCTACCTGACGGCACTGGTTATTTCGTTCTTCGCCATGGTCCCGTTCATCATCTATGGCGAGAAGCGACGCAAAATGAAACGAGTTTTACTCGGCGCCGTCGTGACCCTCATGCTCACTGAGCTATTCTTCTGGCAGTTCGGCGACAGCCTGCGGGCCCTGGTGATCGGCACCGTGGTTTTCTTTACCGCGTTCAATCTGCTGGAGGCGTCGTTGCCGTCGCTGATCAGCAAGGTTTCACCGGCGGGCGGCAAGGGCACGGCGATGGGGGTGTATTCCACCAGCCAATTCCTCGGTTCGGCGTTGGGCGGGATTCTCGGCGGCTGGCTGTTCCAGCATGGCGGTTTGTCGGTTGTGTTCCTGGGTTGCGCCGCGCTGGCTGCACTTTGGTTGGCCTTTGCTGTTACCATGCGCGAACCTCCGTATGTGACGAGCCTGCGCTTGCCGTTGTCGCCCGAAGCCATTCGCGAAGCAGGCCTGGCCGAGCGCCTCAGGGCCGTCGTTGGAGTAACCGATGCAGTGGTGGTCGCCGACGAGGCGGCCGTATACATCAAACTGGACACCGAATTATTGGATCGTGCGACGCTCGAGCGCCTGGTGAATAACCCGGCCCCGGCAGCGTGCGAAGCCTAG	MHDPHSERMSSGETRAASGLALVFAFRMLGMFMVLPVLATYGMDLAGATPALIGLAIGAYGLTQAIFQIPFGIISDRIGRRPVIYLGLIVFALGSVLAANADSIWGVIAGRILQGAGAISAAVMALLSDLTREQHRTKAMAMIGMTIGLSFAVAMVVGPLVTRAFGLSGLFLATGAMALVGILIVAVFVPRSTGPLQHRESGVARQALVPTLRHPDLLRLDLGIFVLHSMLMSSFVALPLALVQKAGLPKEQHWWVYLTALVISFFAMVPFIIYGEKRRKMKRVLLGAVVTLMLTELFFWQFGDSLRALVIGTVVFFTAFNLLEASLPSLISKVSPAGGKGTAMGVYSTSQFLGSALGGILGGWLFQHGGLSVVFLGCAALAALWLAFAVTMREPPYVTSLRLPLSPEAIREAGLAERLRAVVGVTDAVVVADEAAVYIKLDTELLDRATLERLVNNPAPAACEA				NA	NA	NA	NA	NA
D1-36_04556	2835	uvrA_2	COG0178	UvrABC system protein A	TTGGACAAGATCCTGATTCGTGGGGCCCGTACCCACAACCTGAAGAACATCGACCTGACCCTGCCCCGGGACAAGCTGATCGTCATCACCGGCCTGTCCGGATCCGGTAAATCATCCCTGGCCTTCGATACCTTGTACGCCGAAGGCCAGCGACGCTATGTCGAATCGCTGTCGGCGTATGCCCGGCAGTTCTTGTCGATGATGGAAAAACCCGACGTCGACACCATCGAAGGCCTGTCGCCGGCGATCTCCATCGAGCAGAAATCGACCTCCCACAACCCGAGGTCGACGGTAGGCACCATTACCGAGATCTACGACTACCTGCGCCTGCTGTATGCGCGTGTCGGCATGCCCCGCTGCCCCGACCACGACATCCCGCTGGAAGCCCAGACCGTCAGCCAGATGGTCGACCTGGTGCTGGCCCAACCCGAAGGCAGCAAGTTGATGCTCCTGGCGCCGGTCATACGCGAGCGCAAGGGCGAACACCTTATGGTGTTCGAAGAACTGCGCGCTCAAGGCTTCGTACGTGCCCGGGTCAACGGCAAGCTGTGCGAGCTGGACGAACTGCCGAAGCTGGATAAACAGAAGAAGCACTCGATCGACGTGGTAGTGGACCGTTTCAAGGTCCGGGGCGACCTGCAACAGCGCCTCGCCGAATCCTTCGAGACGGCCCTGAAACTGGCGGACGGCATAGCGTTGGTTGCGCCGATGGACGACGAACCCGGCGAAGAGATCATCTTTTCCGCGCGCTTTGCCTGCCCGATCTGCGGCCACGCCATCAGCGAGCTGGAGCCCAAGCTGTTCTCGTTCAACAACCCGGCCGGCGCTTGCCCGACCTGCGACGGTCTGGGGGTCAAGCAGTTCTTCGACACCAAGCGTTTGGTCAATGGCGAACTGACCCTGGCCGAGGGCGCGATTCGCGGCTGGGACAGGCGTAACGTCTATTACTTCCAGATGCTCGGGTCGCTGGCGGCTCACTATAAGTTCAGCCTGGACAAACCCTTCAACGAACTGCCCGCCGAACAGAAGAAGTTCATCCTGCAAGGCAGCGGCTCGCAAAACGTCGACTTCAAATACCTGAACGACCGTGGCGATATCGTCAAGCGCTCCCACCCGTTCGAAGGCATCGTGCCCAACCTGGAGCGGCGCTACCGCGAGACCGAGTCGGCCAGCGTGCGTGAGGAACTGGCCAAGTTCCTCAGCACCCAGCCCTGCCCGGACTGCCGCGGCACCCGTTTGCGCCGGGAGGCGCGGCACGTGTGGGTCGGCGAGAAAACCTTGCCGGCGGTGACCAGCCTGCCGATCGGCGATGCTACCGATTATTTCGGTGGGCTCAAGCTGACGGGCCGTCGGGGCGAAATCGCCGACAAGATCCTCAAGGAAATCCGCGAGCGCTTGCAGTTCCTCGTGAACGTAGGCCTGGACTACCTGACCCTCGACCGCAGCGCTGACACGCTGTCTGGTGGCGAGGCCCAGCGTATCCGCCTCGCCAGCCAGATCGGCGCCGGCCTGGTGGGCGTCATGTACATCCTCGACGAACCGTCCATTGGCCTGCATCAGCGGGACAACGACCGCTTGCTCGGAACGCTGAAACACCTGCGGGACATTGGCAACACAGTCATCATGGTCGAGCACGATGAGGACGCGATCCGCCTGGCCGACTATGTAGTGGACATCGGTCCCGGCGCGGGCGTGCACGGCGGCCACATCGTCGCCCAAGGGACGGCGGCCGAGGTCATGGCGCACCCTGACTCGTTGACCGGCAAGTACCTGTCTGGCCGAGTGAAGATCAAGGTGCCGGCCAAACGTACGCCGCGTAACAAGAAGTTGTCGCTGACCCTCAAGGGCGCCCGCGGCAACAACTTGCGCAATGTCGACCTGGAAATTCCCATTGGTCTGCTGACCTGCGTCACCGGCGTATCCGGCTCCGGCAAGTCGACGTTGATCAACAACACGCTGTTCCCACTGAGCGCCACGGCCTTGAACGGTGCCACGACCCTGGAAGCCGCCGCCCACGACAGCATCAAGGGCCTCGAGCATCTCGATAAAGTCGTTGACATCGACCAGAGCCCGATTGGCCGGACGCCACGTTCCAACCCCGCGACATACACCGGATTGTTCACACCGATCCGTGAGCTGTTCGCCGGCGTACCGGAATCGCGCTCACGGGGCTACGGGCCAGGCCGGTTCTCGTTCAACGTCAAGGGCGGACGCTGCGAAGCCTGCCAGGGCGATGGCTTGATCAAGGTGGAAATGCACTTCCTGCCCGATATCTACGTGCCGTGCGACGTATGCAAGAGCAAGCGCTACAACCGGGAAACACTGGAGATCAAGTACAAGGGCAAGAACATCCACGAAACCCTGGAGATGACCATCGAAGAGGCCCGGGTCTTCTTCGACGCGGTGCCGGCATTGGCGCGCAAGCTCCAGACATTGATGGATGTAGGCCTTTCGTACATCAAGCTCGGGCAATCGGCGACGACCTTGTCCGGTGGGGAGGCCCAACGGGTGAAGCTATCCCGCGAGCTGTCCAAGCGCGATACCGGCAAGACCCTGTATATCCTCGACGAGCCGACCACCGGTCTGCATTTCGCCGATATCCAGCAGTTGCTCGACGTGCTCCACCGCCTGCGCGATCACGGCAACACCGTGGTGGTTATCGAGCACAACCTGGACGTGATCAAGACCGCTGACTGGCTGGTGGACCTGGGGCCGGAGGGCGGATCCAAGGGCGGACAGATCATCGCGGTAGGTACGCCGGAACAAGTGGCGGAAATGAAGCAGTCCCACACTGGGCACTACCTCAAGCCATTGCTGGAGCGTGACCGGGACTGA	MDKILIRGARTHNLKNIDLTLPRDKLIVITGLSGSGKSSLAFDTLYAEGQRRYVESLSAYARQFLSMMEKPDVDTIEGLSPAISIEQKSTSHNPRSTVGTITEIYDYLRLLYARVGMPRCPDHDIPLEAQTVSQMVDLVLAQPEGSKLMLLAPVIRERKGEHLMVFEELRAQGFVRARVNGKLCELDELPKLDKQKKHSIDVVVDRFKVRGDLQQRLAESFETALKLADGIALVAPMDDEPGEEIIFSARFACPICGHAISELEPKLFSFNNPAGACPTCDGLGVKQFFDTKRLVNGELTLAEGAIRGWDRRNVYYFQMLGSLAAHYKFSLDKPFNELPAEQKKFILQGSGSQNVDFKYLNDRGDIVKRSHPFEGIVPNLERRYRETESASVREELAKFLSTQPCPDCRGTRLRREARHVWVGEKTLPAVTSLPIGDATDYFGGLKLTGRRGEIADKILKEIRERLQFLVNVGLDYLTLDRSADTLSGGEAQRIRLASQIGAGLVGVMYILDEPSIGLHQRDNDRLLGTLKHLRDIGNTVIMVEHDEDAIRLADYVVDIGPGAGVHGGHIVAQGTAAEVMAHPDSLTGKYLSGRVKIKVPAKRTPRNKKLSLTLKGARGNNLRNVDLEIPIGLLTCVTGVSGSGKSTLINNTLFPLSATALNGATTLEAAAHDSIKGLEHLDKVVDIDQSPIGRTPRSNPATYTGLFTPIRELFAGVPESRSRGYGPGRFSFNVKGGRCEACQGDGLIKVEMHFLPDIYVPCDVCKSKRYNRETLEIKYKGKNIHETLEMTIEEARVFFDAVPALARKLQTLMDVGLSYIKLGQSATTLSGGEAQRVKLSRELSKRDTGKTLYILDEPTTGLHFADIQQLLDVLHRLRDHGNTVVVIEHNLDVIKTADWLVDLGPEGGSKGGQIIAVGTPEQVAEMKQSHTGHYLKPLLERDRD	PGPT0014915_4128	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014915-uvrA-K03701	NA	NA
D1-36_04557	465	bfr_2	COG2193	Bacterioferritin	ATGCAAGGTCACCCAGACGTAATCGATTACCTCAACACGTTGCTGACCGGCGAACTGGCGGCCCGTGATCAATATTTCATCCATTCGCGGATGTACGAGGATTGGGGTTTTACCGAGCTCTACGAACGTATCAACCATGAGATGGAAGAAGAGGCTCAGCACGCCGATGCGCTGATGCGCCGGATCCTGATGCTTGAAGGCACGCCACGCATGCGTCCGGACGACCTGGACATCGGCACTACCGTGCCTGACATGCTCGCTGCCGACTTGCGTTTGGAGTACAAGGTTCGCGCTGCTTTGTGTAAAGGTATCGAGCTGTGCGAGCAGCACAACGACTATGTAACTCGCGAGATCTTACGTGTGCAGCTCAACGACACCGAAGAAGATCACACTTACTGGCTGGAAAAACAGTTGGGCCTGATCAAGCTGATCGGGTTGGAGAATTACCTGCAATCGCAATATTGA	MQGHPDVIDYLNTLLTGELAARDQYFIHSRMYEDWGFTELYERINHEMEEEAQHADALMRRILMLEGTPRMRPDDLDIGTTVPDMLAADLRLEYKVRAALCKGIELCEQHNDYVTREILRVQLNDTEEDHTYWLEKQLGLIKLIGLENYLQSQY	PGPT0003965_2644	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-RELATED_PROTEINS_FERRITIN,PGPT0003965-bfr-K03594	NA	NA
D1-36_04558	1449	cat		Catalase	ATGAGCCAGATCAAAACGCTTACGACCGCTAGCGGCGCCCCCGTCGCCGATAACCAGAACTCTCGCTCCGCAGGTCCTCGTGGCCCGCTGTTGCTCGATGATTTCCACCTGATCGAGAAGCTTGCTCATTTCAACCGCGAAAATATTCCCGAGCGTCGTGTGCACGCTAAAGGGTCGGGCGCATACGGTACGTTTACCGTAACGCGTGACATTACCCAATACACCAGCGCCAAGCTGTTCGAATCGGTCGGTAAGCAGACGCCTACGTTCCTTCGCTTCTCTACCGTGGGCGGCGAACGCGGTTCTGCGGATACCGAGCGCGATCCTCGAGGCTTCGCCCTTAAGTTCTACACAGAAGAAGGTAACTGGGACATCGTTGGCAACAACACCCCGGTGTTCTTCATCCGCGACCCGCTGAAATTCCCAGACTTCATCCACACTCAGAAACGCTTGCCGCAAAGCAACCTCAAGAGTGCCCAGATGATGTGGGATTTCTGGTCGCATTCCCCAGAGGCGCTGCACCAGGTCACCATTCTGTTTTCCGATCGGGGTATTCCTGACGGCTACCGTCATATGCACGGCTTCGGCAGTCACACCTACAGCCTGATCAATGGCCAAGGCGAGCGTCACTGGGTTAAATGGCACTACAAGACCAAGCAAGGCATCAAGAATCTCGCGCCGGCCGAAGCCGCGCGCCTGGCGGGCACCGATCCGGATTACGCCCAGCGTGACCTGTTCAATGCGATTGAGCGCGGTGACTTTCCAAAATGGAGCGTCTGCATCCAAATCATGAGCGAAGCCCAGGCTGCAGCCCATTACGAGAATCCGTTCGACGTGACCAAGACCTGGTCGCAGAAGGAATTCCCGCTGATCGAAGTCGGCGAACTCGAGCTGAATCGTAATCCCTTGAACTACTTTGCCGAAGTGGAGCAAGCGGCGTTCGGGCCGAGCAACATGGTGCCGGGCGTGGGTCTTTCGCCTGATCGCATGTTGCAGGGCCGTGTATTCGCCTACGCCGATGCTCACCGCTACCGCGTAGGTACCAACCACCAGCAACTGCCGGTGAATGCTCCGCGCAGCCCGGTCAATACCTACCAGCGCGACGGTTCCATGGCTTTTGGCAGTAACGGCGGCGCAGCGCCAAACTATGAGCCCAACAGTTACGTGGAGGCGCCGAAGCAAGCCCCGCGTTATGCGGAACCGGCACTGGCCCTCAGCGGTGCAGCGGATCGTTATGATCATCGCGAGGACACCGACTACTACAGCCATGCAGGTGCGCTGTTCCGCTTGATGAACGAGGAACAGAAGGCGCTGTTGATCAGCAATATCGCCGGTGCAATGGCAGGCGTGTCGGCTGACGTGATTGATCGCCAACTGCAGCATTTCTTCAAGGCAGACCCTGCTTACGGAGAGGGTATCGCGAAGGCGTTGGGCGTACAGCTTAACTAA	MSQIKTLTTASGAPVADNQNSRSAGPRGPLLLDDFHLIEKLAHFNRENIPERRVHAKGSGAYGTFTVTRDITQYTSAKLFESVGKQTPTFLRFSTVGGERGSADTERDPRGFALKFYTEEGNWDIVGNNTPVFFIRDPLKFPDFIHTQKRLPQSNLKSAQMMWDFWSHSPEALHQVTILFSDRGIPDGYRHMHGFGSHTYSLINGQGERHWVKWHYKTKQGIKNLAPAEAARLAGTDPDYAQRDLFNAIERGDFPKWSVCIQIMSEAQAAAHYENPFDVTKTWSQKEFPLIEVGELELNRNPLNYFAEVEQAAFGPSNMVPGVGLSPDRMLQGRVFAYADAHRYRVGTNHQQLPVNAPRSPVNTYQRDGSMAFGSNGGAAPNYEPNSYVEAPKQAPRYAEPALALSGAADRYDHREDTDYYSHAGALFRLMNEEQKALLISNIAGAMAGVSADVIDRQLQHFFKADPAYGEGIAKALGVQLN	PGPT0014380_4962	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0014380-katE|CAT|catB|srpA-K03781	NA	NA
D1-36_04559	387	rplQ	COG0203	50S ribosomal protein L17	ATGCGTCATCGTAAAAGTGGTCGTCACCTGAGCCGCACCAGCTCGCACCGCAAGGCCATGTTCCAGAACATGGCGGTGTCGCTGTTCGAGCACGAGCTGATCAAAACTACACTGCCGAAAGCCAAAGAACTGCGCCGCGTTGCCGAGCCGCTGATCACTCTGGCCAAGACAGACAGCCTGGCTAACCGCCGCCTGGCCTTCGACCGTACTCGTTCGAAAGCCATCGTTGGTAAGCTCTTCAACGACCTGGGCAAGCGTTACGCTACCCGTGAGGGTGGCTACCTGCGCATCCTCAAGTGCGGTTTCCGCGCTGGCGACAACGCGCCTATGGCGTACGTCGAGTTGGTTGATCGTGCTACTGCTGGCGAAGCTGTAAGCGCCGAGTAA	MRHRKSGRHLSRTSSHRKAMFQNMAVSLFEHELIKTTLPKAKELRRVAEPLITLAKTDSLANRRLAFDRTRSKAIVGKLFNDLGKRYATREGGYLRILKCGFRAGDNAPMAYVELVDRATAGEAVSAE				NA	NA	NA	NA	NA
D1-36_04560	1002	rpoA		DNA-directed RNA polymerase subunit alpha	ATGCAGATTTCGGTAAATGAGTTCCTGACACCCCGCCATATTGATGTGCAGGTTGTCAGTCCAACCCGCGCCAAGATCACACTCGAGCCTCTCGAGCGTGGTTTCGGCCACACCCTGGGCAACGCGCTGCGCCGCATCCTGTTGTCCTCAATGCCCGGCTGTGCAGTAGTCGAGGCCGAGATTGACGGTGTGCTCCATGAGTACAGCGCCATCGAAGGTGTACAGGAAGACGTAATTGAAATCCTGTTGAACCTTAAAGGTCTGGCTATCAAGCTGCACGGTCGTGACGAAGTTACGCTGACCTTGTCGAAGAAGGGTTCGGGGGTGGTTACCGCTGCCGATATTCAGCTGGATCATGATGTCGAGATCGTTAACCCCGATCACGTAATCGCTAACCTGGCGTCTAACGGCGCCCTGAACATGAAGCTCACCGTAGCTCGTGGTCGTGGTTATGAACCGGCAGACTCGCGTCAGAGCGATGAAGACGAAAGCCGCAGCATTGGTCGCTTGCAGCTTGACTCTTCGTTCAGCCCGGTTCGCCGTATCGCATACGTGGTGGAAAACGCCCGTGTCGAACAGCGTACCAACCTGGACAAGCTGGTTATTGATCTGGAAACCAACGGTACCCTGGATCCTGAAGAGGCAATCCGCCGCGCTGCAACCATTCTGCAACAGCAGTTGGCTGCGTTCGTCGACCTCAAGGGTGACATCGTGCCTGAGGCTATCGAGCAGGAAGACGAGATCGATCCGATCCTGCTTCGCCCGGTTGACGATCTGGAACTGACTGTACGTTCGGCTAACTGCCTTAAGGCGGAAAACATCTACTACATCGGCGACCTGATTCAGCGTACCGAAGTAGAGCTGTTGAAGACTCCGAACCTTGGCAAGAAATCCTTGACTGAAATCAAGGACGTTCTGGCCTCCCGCGGTCTGTCCCTCGGCATGCGCCTCGACAACTGGCCGCCTGCAAGTCTTAAGAAGGACGACAAGGCGACTGCCTGA	MQISVNEFLTPRHIDVQVVSPTRAKITLEPLERGFGHTLGNALRRILLSSMPGCAVVEAEIDGVLHEYSAIEGVQEDVIEILLNLKGLAIKLHGRDEVTLTLSKKGSGVVTAADIQLDHDVEIVNPDHVIANLASNGALNMKLTVARGRGYEPADSRQSDEDESRSIGRLQLDSSFSPVRRIAYVVENARVEQRTNLDKLVIDLETNGTLDPEEAIRRAATILQQQLAAFVDLKGDIVPEAIEQEDEIDPILLRPVDDLELTVRSANCLKAENIYYIGDLIQRTEVELLKTPNLGKKSLTEIKDVLASRGLSLGMRLDNWPPASLKKDDKATA				NA	NA	NA	NA	NA
D1-36_04561	621	rpsD	COG0522	30S ribosomal protein S4	ATGGCTCGTTACATTGGTCCAAAATGCAAACTCGCTCGTCGCGAAGGCACCGATCTCTTCCTGAAGAGCGGCGTGCGCGCGATCGAATCGAAGTGCAACATCGAAGCAGCACCTGGTATCCACGGCCAACGCCGCGGTCGCCAGTCCGACTACGGCACCCAACTGCGTGAAAAGCAGAAGGTCCGTCGTATCTACGGCGTTCTCGAGCGTCAATTCAGCGGCTACTACAAAGAAGCTGCTGGCAAGAAAGGCGCAACCGGCGAAAACCTGTTGCAGCTGCTCGAATGCCGCCTGGACAACGTTGTATACCGTATGGGTTTCGGTTCTACTCGTGCCGAATCCCGTCAGCTGGTATCGCACAAGTCGATCAGCGTTAACGGCCAGACCGTGAACGTTCCGTCCTACCAGGTTCGTGCTGGTGACGTGGTTGCTGTTCGCGAGAAAGCAAAGAACCAACTTCGCATTGTCCAAGCTCTCGATCTGTGTGCCCAACGTGGCCGCGTAGAATGGGTAGAAGTAGACACTGAGAAGAAGTCGGGCGTTTTCAAGAACGTTCCTGCTCGCAGTGATCTGTCCGCCGACATCAACGAAAGCCTGATTGTCGAGCTCTACTCCAAGTAA	MARYIGPKCKLARREGTDLFLKSGVRAIESKCNIEAAPGIHGQRRGRQSDYGTQLREKQKVRRIYGVLERQFSGYYKEAAGKKGATGENLLQLLECRLDNVVYRMGFGSTRAESRQLVSHKSISVNGQTVNVPSYQVRAGDVVAVREKAKNQLRIVQALDLCAQRGRVEWVEVDTEKKSGVFKNVPARSDLSADINESLIVELYSK				NA	NA	NA	NA	NA
D1-36_04562	390	rpsK	COG0100	30S ribosomal protein S11	ATGGCAAAACCTGCTGCTCGTCCTCGTAAAAAAGTTAAAAAGACAGTGGTTGATGGCATCGCCCACATCCATGCTTCTTTTAACAACACCATCGTGACCATTACCGACCGTCAAGGTAACGCTCTTTCCTGGGCTACCTCCGGTGGTTCGGGTTTCCGCGGTTCCCGCAAGTCCACCCCGTTCGCTGCTCAAGTAGCTGCTGAGCGTGCTGGTCAAGCTGCGCTGGAATACGGCCTGAAAAACCTCGACGTCAACGTCAAAGGTCCAGGTCCAGGTCGTGAATCCGCAGTCCGCGCTTTGAACGGCTGTGGCTACAAGATCGCCAGCATCACCGACGTGACGCCAATCCCGCACAACGGGTGCCGTCCGCCGAAGAAGCGCCGCGTGTAA	MAKPAARPRKKVKKTVVDGIAHIHASFNNTIVTITDRQGNALSWATSGGSGFRGSRKSTPFAAQVAAERAGQAALEYGLKNLDVNVKGPGPGRESAVRALNGCGYKIASITDVTPIPHNGCRPPKKRRV				NA	NA	NA	NA	NA
D1-36_04563	357	rpsM	COG0099	30S ribosomal protein S13	ATGGCCCGTATTGCAGGCGTTAACATTCCAGATAACAAGCATACTGTTATCTCGCTGACCTACATCTATGGTGTTGGTCGCACTACTGCACAGAAAATTTGTGCAGAGACTGGGGTCAACCCAGCCGCAAAGATCAAGGATCTGAGCGACGAGCAAATTGAACAGCTGCGTGGCGAAGTGGCGAAGTTCACCACTGAAGGTGACCTGCGTCGCGAAATCAACATGAAAATCAAGCGCTTGATGGACCTCGGTTGCTATCGCGGTCTGCGTCATCGTCGTGGTCTGCCAGTACGCGGTCAGCGTACCAAGACCAACGCGCGTACCCGTAAAGGTCCGCGTAAGCCGATCCGCAAGTAA	MARIAGVNIPDNKHTVISLTYIYGVGRTTAQKICAETGVNPAAKIKDLSDEQIEQLRGEVAKFTTEGDLRREINMKIKRLMDLGCYRGLRHRRGLPVRGQRTKTNARTRKGPRKPIRK				NA	NA	NA	NA	NA
D1-36_04565	1329	secY	COG0201	Protein translocase subunit SecY	ATGGCTAAGCAAGGTGCTCTCTCTGCGCTCGGCAAAGGCGGTATGTCTGAACTCTGGGCTCGTCTGCGTTTTCTGTTCCTGGCGATTATCGTCTACCGAATAGGCGCACACATCCCGGTTCCAGGTATCAACCCGGACCGACTCGCGGACCTGTTTCGACAGAATGAGGGGACCATTCTTAGCTTGTTCAACATGTTTTCCGGCGGCGCGCTGGAGCGGATGAGCATCTTTGCACTGGGGATCATGCCGTACATTTCGGCATCGATCATCATGCAGCTGATGTCCGCTGTCAGTCCGCAGTTGGAGCAGTTGAAGAAGGAAGGTGAAGCTGGCCGTCGCAAGATCAGCCAGTACACCCGCTACCTCACTGTCGTCCTCGCTCTCGTCCAGGCCGTTGGCATGTCCATCGGTCTGGCGGGGCAGGGCGTAGCGTTCACTGGTGACTTTGGCTTCCATTTCGTCGCGGTAACCACTTTTGTGGCGGGCGCGATGTTCATGATGTGGCTGGGTGAGCAGATTACTGAGCGTGGTGTTGGCAACGGTATCTCGATGTTGATCTTCGCAGGTATCGTCGCCGGTCTTCCGAGAGCGATCGGGCAGTCTTTCGAGTCTGCGCGTCAGGGCGATATCAACATCTTTGCTCTGGTTGCCATCGGTTTGCTGGCAGTAGCGATTATCGGTTTCGTGGTGTTCATCGAGCGTGGTCAGCGTCGTATTGCTGTTCACTACGCCAAGCGTCAGCAGGGCCGTAAGGTTTTTGCTGCGCAGACCAGCCACTTGCCGTTGAAGGTGAACATGGCCGGTGTTATCCCGGCCATTTTCGCGAGCAGCATCTTGCTGTTCCCGGCTTCGTTGGGTGCCTGGTTCGGCCAGTCTGAAGGTATGGGCTGGTTGCAGGACATCTCGCAGTCGATCGCTCCTGGTCAGCCGTTGAATATTCTGCTGTTTAGTGCAGGGATTATTTTCTTCTGCTTCTTCTATACGGCGTTGATGTTCAATCCGAAAGACGTAGCGGAAAACCTGAAGAAGTCCGGTGCCTTTATTCCGGGTATCCGTCCTGGTGAGCAGTCTGCGCGCTACATTGATGGCGTTCTGACTCGTTTGACCTTGTTCGGTGCTCTTTACATGACGGCCGTCTGCTTGCTTCCCCAGTTCCTGGTGGTTGCGGCAAACGTTCCGTTCTACCTTGGCGGGACCTCGTTGCTGATCGTGGTCGTGGTTGTGATGGACTTCATGTCCCAAGTACAATCGCACCTCGTTTCGCACCAGTACGAATCCCTGATGAAGAAAGCCAACCTGAAGGGCTACGGCAGCGGCATGTTGCGCTGA	MAKQGALSALGKGGMSELWARLRFLFLAIIVYRIGAHIPVPGINPDRLADLFRQNEGTILSLFNMFSGGALERMSIFALGIMPYISASIIMQLMSAVSPQLEQLKKEGEAGRRKISQYTRYLTVVLALVQAVGMSIGLAGQGVAFTGDFGFHFVAVTTFVAGAMFMMWLGEQITERGVGNGISMLIFAGIVAGLPRAIGQSFESARQGDINIFALVAIGLLAVAIIGFVVFIERGQRRIAVHYAKRQQGRKVFAAQTSHLPLKVNMAGVIPAIFASSILLFPASLGAWFGQSEGMGWLQDISQSIAPGQPLNILLFSAGIIFFCFFYTALMFNPKDVAENLKKSGAFIPGIRPGEQSARYIDGVLTRLTLFGALYMTAVCLLPQFLVVAANVPFYLGGTSLLIVVVVVMDFMSQVQSHLVSHQYESLMKKANLKGYGSGMLR	PGPT0025725_2230	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0025725-secY-K03076	NA	NA
D1-36_04566	438	rplO	COG0200	50S ribosomal protein L15	ATGAAACTCAATGATCTGAGTCCAGCGCCGGGTTCCCGTCGCGAAAAGCATCGTCCGGGCCGTGGTATCGGTAGTGGTTTGGGCAAGACCGGTGGCCGTGGCCACAAAGGTCAGACCTCCCGCTCCGGTGGCACCATCGCTCCAGGCTTTGAAGGCGGTCAACAGCCGCTGCATCGTCGCCTGCCGAAGTTCGGTTTCGTTTCCCTGAAGGCCATGGACCGCGCTGAAGTGCGTCTGTCCGAGCTGGCCAAAGTGGACGGCGACATCGTCACCGTGCAGTCCCTGAAGGATGCCAACGTGATCAACCAGAACGTACAGCGTGTGAAAATCATGCTGTCGGGCGAAGTTGCTCGTGCTGTCACCATCGGAAAGGGAATCGGCGCCACCAAAGGTGCGCGTGCGGCTATCGAAGCAGCTGGCGGCAAGTTCGAGGAATAA	MKLNDLSPAPGSRREKHRPGRGIGSGLGKTGGRGHKGQTSRSGGTIAPGFEGGQQPLHRRLPKFGFVSLKAMDRAEVRLSELAKVDGDIVTVQSLKDANVINQNVQRVKIMLSGEVARAVTIGKGIGATKGARAAIEAAGGKFEE				NA	NA	NA	NA	NA
D1-36_04567	177	rpmD	COG1841	50S ribosomal protein L30	ATGGCTACCGTAAAAGTTACGCTGATCAAAAGCATGACCGGCCGCATCCCTAACCACAAACTGTGCGTTAAGGGTCTGGGTCTGCGTCGCATCGGTCATACTGTAGAAGTCCAGGATACTCCCGAGAATCGCGGGATGATCAACAAGGCTTACTACATGCTGCGTGTCGAGGGTTAA	MATVKVTLIKSMTGRIPNHKLCVKGLGLRRIGHTVEVQDTPENRGMINKAYYMLRVEG				NA	NA	NA	NA	NA
D1-36_04568	501	rpsE	COG0098	30S ribosomal protein S5	ATGTCAAATAACGACCAAAAGCGCGACGAAGGCTACATCGAGAAGCTGGTTCAAGTTAACCGCGTAGCCAAAACCGTTAAAGGCGGCCGTATCTTCACTTTCACCGCGTTGACCGTGGTAGGTGATGGTAAGGGCCGTGTTGGCTTCGGCCGTGGCAAGTCGCGTGAAGTGCCTGCTGCGATCCAGAAGGCAATGGAAGCTGCTCGCCGCAACATGATCCAGGTTGATCTGAACGGCACCACCCTGCAGTACGCAATGAAGTCTGCCCATGGCGCTTCGAAGGTGTACATGCAGCCTGCTTCTGAAGGTACCGGTATCATCGCTGGTGGCGCTATGCGTGCTGTCCTCGAAGTTGCTGGCGTTCAGAACGTTCTGGCCAAGTGCTACGGCTCGACTAACCCGGTAAACGTGGTTCACGCCACCTTCAAGGGTTTGAAAGCAATGCAGTCTCCTGAATCCATTGCCGCCAAGCGTGGCAAAAGCGTCAAGGAGATCTTCTGA	MSNNDQKRDEGYIEKLVQVNRVAKTVKGGRIFTFTALTVVGDGKGRVGFGRGKSREVPAAIQKAMEAARRNMIQVDLNGTTLQYAMKSAHGASKVYMQPASEGTGIIAGGAMRAVLEVAGVQNVLAKCYGSTNPVNVVHATFKGLKAMQSPESIAAKRGKSVKEIF				NA	NA	NA	NA	NA
D1-36_04569	351	rplR	COG0256	50S ribosomal protein L18	ATGACCGACAAAAAAGTTACTCGACTGCGTCGCGCTCGCAAAGCACGCCTGAAAATGCACGAACTCGAAGTCGTGCGTCTCTGCGTGTTCCGCTCGTCGCAGCACATCTACGCCCAGGTCATTTCGGCCGACGGCAACAAAGTCCTGGCAAGTGCCTCGACTTTGGATAAAGAACTGCGTGATGGCGCCACTGGCAACATCGACGCGGCCACTAAGGTTGGCCAGCTGGTCGCTACGCGTGCTAAAGCCGCTGGCGTCTCGCAGGTGGCTTTCGACCGCTCTGGCTTCAAGTACCACGGCCGCGTCAAGGCGCTGGCTGATGCTGCTCGTGAAGCTGGGCTGGAGTTCTAA	MTDKKVTRLRRARKARLKMHELEVVRLCVFRSSQHIYAQVISADGNKVLASASTLDKELRDGATGNIDAATKVGQLVATRAKAAGVSQVAFDRSGFKYHGRVKALADAAREAGLEF				NA	NA	NA	NA	NA
D1-36_04570	534	rplF	COG0097	50S ribosomal protein L6	ATGTCACGCGTCGCTAAGAACCCCGTTAAGCTGCCAGCCGGTGTCGAAGTCAAATTCGCAGGCCAACAGCTTTCGGTGAAGGGTGCCAAGGGCACTCTGCAACTGAACATCCATTCGTCCGTTGAGATCGTTGAAGAAGCTGGTGAGCTGCGTTTCGCTGCTCGCAATGGCGATCAACAGACTCGCGCAATGGCTGGTACCACTCGTGCGTTGGTTAACAACATGGTCCAAGGCGTAAGCCAAGGCTTCGAGCGCAAGCTCCAGCTGGTCGGTGTTGGTTACAAAGCGCAAGCAAAAGGCACAGTGCTGAACCTGGCTCTTGGCTTCTCGCACCCAGTGGATTATGAACTGCCGGAAGGCATCACCGCTGAGACTCCTAGCCAGACCGATATCCTGATCAAGGGCATCGACAAGCAGCTGGTAGGTCAAGTGGCCGCCGAGATCCGCGACTTCCGTCCACCAGAGCCGTACAAAGGCAAAGGTGTGCGCTACGCGGACGAAGTCGTCCGTCGTAAAGAAGCCAAGAAGAAGTAG	MSRVAKNPVKLPAGVEVKFAGQQLSVKGAKGTLQLNIHSSVEIVEEAGELRFAARNGDQQTRAMAGTTRALVNNMVQGVSQGFERKLQLVGVGYKAQAKGTVLNLALGFSHPVDYELPEGITAETPSQTDILIKGIDKQLVGQVAAEIRDFRPPEPYKGKGVRYADEVVRRKEAKKK				NA	NA	NA	NA	NA
D1-36_04571	393	rpsH	COG0096	30S ribosomal protein S8	ATGAGTATGCAGGACCCGTTAGCGGACATGCTAACTCGTATCCGTAATGCCCAGATGGCTGAAAAGTCCGTCGTAAGCATGCCATCTTCCACGTTGAAGGTAGCTGTTGCCAAAGTCCTGAAGGACGAAGGTTACATTGCGGGTTATCAGATCAGCAGCGAAATCAAGCCTCTGCTGTCCATCGAGCTGAAGTACTTCGAAGGCCGTCCGGTCATCGAGGAAGTGAAGCGCGTTAGCCGTCCTGGCCTGCGTCAGTACAAGTCCGTTGAGGATCTGCCGAAAGTTCGTGGCGGCCTGGGCGTGTCTATCGTCTCCACCAACAAAGGTGTGATGACGGATCGTGCTGCGCGCGCTGCCGGTGTCGGCGGCGAAGTTCTTTGCACTGTGTTCTAA	MSMQDPLADMLTRIRNAQMAEKSVVSMPSSTLKVAVAKVLKDEGYIAGYQISSEIKPLLSIELKYFEGRPVIEEVKRVSRPGLRQYKSVEDLPKVRGGLGVSIVSTNKGVMTDRAARAAGVGGEVLCTVF				NA	NA	NA	NA	NA
D1-36_04572	306	rpsN	COG0199	30S ribosomal protein S14	ATGGCCAAGAAGAGCATGAAGAACCGTGAGCTGAAGCGTCAGCTCACCGTTGCCAAGTACGCCACCAAGCGTGCAGCGCTGAAAGCTATCATCGTTGATCTGAACGCAAGTCCAGAAGCGCGTTGGGAAGCTACCGTAGCACTGCAGAAGCAGCCACGTGACGCCAGCGCCTCGCGCATGCGTAACCGCTGCCGCCTGACTGGTCGTCCGCACGGCGTGTACCGCAAGTTCGGCCTCGGCCGTAACATGCTGCGTCAAGCCGCTATGCGTGGTGACGTTCCAGGTCTGGTCAAAGCCAGCTGGTAA	MAKKSMKNRELKRQLTVAKYATKRAALKAIIVDLNASPEARWEATVALQKQPRDASASRMRNRCRLTGRPHGVYRKFGLGRNMLRQAAMRGDVPGLVKASW				NA	NA	NA	NA	NA
D1-36_04573	540	rplE	COG0094	50S ribosomal protein L5	ATGGCACGACTAAAAGAGATTTACCGGAAGGAAATCGCACCGAAACTTAAGGAAGAACTTAAGCTTTCGAACGTGATGGAAGTTCCGCGCGTTACCAAAATCACCCTGAACATGGGTCTGGGCGAAGCGATCGGCGACAAAAAAGTCATCGAGCATGCCGTTGCCGACCTGGAAAAGATCACCGGTCAGAAAGTCGTTGTGACTTACGCTCGGAAATCCATCGCTGGCTTTAAAGTCCGTGAAGGTTGGCCGATCGGCGTCAAAGTGACCCTGCGCCGTGAGCGTATGTACGAGTTCCTGGATCGTCTGCTGTCGATCTCCCTGCCTCGGGTTCGCGACTTCCGCGGCCTGAATGCCAAGTCCTTCGATGGTCGTGGCAACTACAGCATGGGCGTGAAAGAGCAGATCATTTTCCCGGAAATCGATTACGACAAGATCGATGCTCTCCGCGGTCTGGACATTACCCTGACCACCACTGCTCGGACGGATGAAGAAGGTCGCGCGCTGCTGCGTGCTTTCAAATTCCCGTTCCGCAACTGA	MARLKEIYRKEIAPKLKEELKLSNVMEVPRVTKITLNMGLGEAIGDKKVIEHAVADLEKITGQKVVVTYARKSIAGFKVREGWPIGVKVTLRRERMYEFLDRLLSISLPRVRDFRGLNAKSFDGRGNYSMGVKEQIIFPEIDYDKIDALRGLDITLTTTARTDEEGRALLRAFKFPFRN				NA	NA	NA	NA	NA
D1-36_04574	315	rplX	COG0198	50S ribosomal protein L24	ATGCAAAAGATTCGTCGTGACGACGAGATCATCGTGATCGCCGGCAAAGACAAGGGTAAGCGCGGTAAGGTGCTGAAGGTTCTTGCTGACAACCGTCTGGTTGTTGGTGGTCTGAACCTGGTCAAGCGTCATACCAAGCCTAACCCGATGTCGGGCGTACAAGGCGGTATCGTCGAGAAAGAAGCGCCACTGCACGCTTCCAACGTCGCCATCTTCAACGGCGAAACCAACAAGGCTGACCGCGTTGGTTTCAAAGTAGAAGACGGTAAGAAAATTCGTGTCTTCAAGTCGACCCAAAAAGCGGTTGATGCTTGA	MQKIRRDDEIIVIAGKDKGKRGKVLKVLADNRLVVGGLNLVKRHTKPNPMSGVQGGIVEKEAPLHASNVAIFNGETNKADRVGFKVEDGKKIRVFKSTQKAVDA				NA	NA	NA	NA	NA
D1-36_04575	369	rplN	COG0093	50S ribosomal protein L14	ATGATTCAGACTCAATCCATGCTCGATGTGGCCGATAACAGCGGCGCTCGCCGTGTTATGTGCATCAAGGTGCTGGGTGGCTCCCATCGTCGTTACGCTGGTATCGGTGACATCATCAAAGTTACCGTCAAGGAAGCAATTCCTCGCGGTAAGGTGAAAAAAGGCCAAGTGATGACTGCTATCGTAGTCCGCACTCGCCACGGTGTTCGTCGTGCTGACGGCTCCATCATCCGCTTTGATGGCAACGCTGCTGTTCTGTTGAACAACAAGCAAGAGCCAATCGGCACCCGTATCTTTGGGCCAGTGACCCGTGAACTTCGTACTGAGAAGTTCATGAAGATCGTCTCGCTCGCCCCAGAAGTGCTGTAA	MIQTQSMLDVADNSGARRVMCIKVLGGSHRRYAGIGDIIKVTVKEAIPRGKVKKGQVMTAIVVRTRHGVRRADGSIIRFDGNAAVLLNNKQEPIGTRIFGPVTRELRTEKFMKIVSLAPEVL				NA	NA	NA	NA	NA
D1-36_04576	267	rpsQ	COG0186	30S ribosomal protein S17	ATGGCTGAAGCCGAAAAAACTGTCCGTACGCTGACTGGCCGTGTTGTCAGCGACAAGATGGACAAAACCATCACCGTTCTGATCGAGCGTCGCGTTAAGCACCCGATCTACGGTAAATACGTTAAGCGTTCGACTAAGCTGCACGCGCACGACGAAACCAATCAGTGCCACATCGGCGACAAGGTCACTATTCGTGAGACTCGTCCGATGGCCAAGACCAAGTCTTGGGCGCTGGTTGATGTTCTCGAACGCGCTGTGGAAGTCTAA	MAEAEKTVRTLTGRVVSDKMDKTITVLIERRVKHPIYGKYVKRSTKLHAHDETNQCHIGDKVTIRETRPMAKTKSWALVDVLERAVEV				NA	NA	NA	NA	NA
D1-36_04577	192	rpmC	COG0255	50S ribosomal protein L29	ATGAAAGCGAATGAACTTCGTGAAAAATCAGCACAGCAGCTGAACGAGCAACTGCTCGGCCTGCTGCGCGACCAGTTCAATCTGCGTATGCAGAAAGCAACTGGCCAGTTGGGGCAGTCTCATCTGCTCTCGCAAGTTAAGCGTGACATCGCTCGCGTGAAAACTGTGCTCAACCAGCAGGCAGGTAAGTAA	MKANELREKSAQQLNEQLLGLLRDQFNLRMQKATGQLGQSHLLSQVKRDIARVKTVLNQQAGK				NA	NA	NA	NA	NA
D1-36_04578	414	rplP	COG0197	50S ribosomal protein L16	ATGTTGCAACCAAAGCGTACGAAGTTCCGCAAGCAGATGACCGGTCACAACCGTGGCCTGGCATTGCGCGGTAGCAAAGTCAGCTTCGGCGAGTTCGCGCTGAAGTCTGTTGCTCGTGGTCGTCTCACCGCTCGTCAGATCGAGTCAGCGCGTCGTGCTCTGACCCGTCACGTAAAACGTGGCGGCAAGATCTGGATCCGTGTATTCCCGGACAAGCCTGTCACCAAGAAGCCACTCGAAGTTCGGATGGGTAAAGGTAAGGGTAACGTGGAGTACTGGGTTGCCCAGATTCAGCCAGGCAAAGTCCTGTACGAAATCGAGGGTGTTTCTGAAGAGCTGGCGCGTGAGGCTTTCGCCCTGGCTGCTGCAAAGCTGCCGCTCGCCACCTCCTTTGTTAAACGGACGGTGATGTGA	MLQPKRTKFRKQMTGHNRGLALRGSKVSFGEFALKSVARGRLTARQIESARRALTRHVKRGGKIWIRVFPDKPVTKKPLEVRMGKGKGNVEYWVAQIQPGKVLYEIEGVSEELAREAFALAAAKLPLATSFVKRTVM				NA	NA	NA	NA	NA
D1-36_04579	687	rpsC	COG0092	30S ribosomal protein S3	ATGGGTCAGAAAGTACATCCCATTGGCATTCGCCTGGGAATCGTCAAGGAGCACACCTCCGTCTGGTACGCAGACGGCCGGACTTATGCGGACTACTTGTTCGCTGATCTGAAGGTGCGTGAGTATCTCCAAGACAAACTAAAAAGCGCGTCCGTCAGCCGTATCGATATCCATCGTCCGGCTCAGACTGCACGTATCACCATCCACACCGCTCGCCCAGGTATCGTTATCGGGAAGAAAGGTGAAGATGTTGAGAAACTGCGTCAGGACCTGACCAAGCAAATGGGTGTGCCTGTGCACATCAATATCGAAGAGATCCGCAAGCCGGAACTCGACGGTATGCTGGTTGCGCAGAGCGTAGCTCAGCAGCTGGAGCGCCGTGTAATGTTCCGTCGCGCTATGAAGCGCGCTGTACAGAACGCAATGCGCATTGGTGCCAAAGGCATCAAAATCCAAGTGAGCGGTCGTCTCGGCGGTGCTGAAATCGCACGTACTGAATGGTATCGCGAAGGTCGTGTGCCACTGCACACCCTGCGTGCCGACATCGACTATGCCAACTACGAAGCTCACACCACCTACGGTGTGATCGGTGTAAAGGTTTGGATCTTCAAAGGCGAAGTAATTGGTGGTCGCCAAGAAGAACTGAAGCCACAAGCACCAGCGCCTCGTAAAAAAGCTGCTAAGTAA	MGQKVHPIGIRLGIVKEHTSVWYADGRTYADYLFADLKVREYLQDKLKSASVSRIDIHRPAQTARITIHTARPGIVIGKKGEDVEKLRQDLTKQMGVPVHINIEEIRKPELDGMLVAQSVAQQLERRVMFRRAMKRAVQNAMRIGAKGIKIQVSGRLGGAEIARTEWYREGRVPLHTLRADIDYANYEAHTTYGVIGVKVWIFKGEVIGGRQEELKPQAPAPRKKAAK				NA	NA	NA	NA	NA
D1-36_04580	333	rplV	COG0091	50S ribosomal protein L22	ATGGAAGTAGCCGCTAAGTTGTCGGGCGCTCGAATCTCCGCCCAGAAAGCCCGCTTGGTCGCCGACCAGATCCGCGGGAAGAAGGTGGGCGAAGCGCTCAACCTGTTGGCTTTCAGCAGTAAGAAAGCCGCCGAGATCATGAAAAAAGTGCTGGAGTCGGCCGTAGCCAACGCCGAGCATAACGAAGGCGCAGACGTTGATGACCTGAAGGTCAGCACCGTTTTCGTCAACGAAGGGCGTTCGCTGAAGCGCATCATGCCACGTGCCAAAGGCCGTGCTGATCGCATCGTCAAGCGGTCTTGCCATATCACTGTCAAGGTTGCTGACAAGTAA	MEVAAKLSGARISAQKARLVADQIRGKKVGEALNLLAFSSKKAAEIMKKVLESAVANAEHNEGADVDDLKVSTVFVNEGRSLKRIMPRAKGRADRIVKRSCHITVKVADK				NA	NA	NA	NA	NA
D1-36_04581	276	rpsS	COG0185	30S ribosomal protein S19	GTGCCACGTTCTCTGAAAAAAGGTCCTTTTATTGATCTTCACCTACTGAAGAAGATCGAAGTGGCGGCGGAAAAGAACGATCGCAAACCAGTTAAGACCTGGTCGCGCCGTTCGATGATCCTGCCACAAATGGTCGGTCTGACCATCGCTGTACACAACGGTCGCCAGCACGTCCCAGTTCTCGTGAACGAAGACATGGTCGGCCACAAACTGGGCGAGTTCGCCGGTACCCGCACATACCGTGGGCACGTGGCTGACAAGAAAGCCAAGCGTTAA	MPRSLKKGPFIDLHLLKKIEVAAEKNDRKPVKTWSRRSMILPQMVGLTIAVHNGRQHVPVLVNEDMVGHKLGEFAGTRTYRGHVADKKAKR				NA	NA	NA	NA	NA
D1-36_04582	825	rplB	COG0090	50S ribosomal protein L2	ATGGCAATCGTTAAATGCAAACCGACTTCCCCTGGCCGCCGTTTTGTGGTCAAGGTGGTCAACCAGGAGCTGCATAAAGGCGCTCCTCACGCACCGCTGCTCGAGAAAAAATCGAAGTCTGGTGGTCGTAACAACAATGGCCGTATTACCACTCGTCACGTTGGTGGTGGTCATAAGCAGCATTATCGTCTGGTCGACTTCCGTCGCAACGACAAGGATGGCATCGCTGCCACCGTCGAGCGTATCGAATACGATCCAAACCGTACTGCTCACATCGCTCTGCTGCTGTACGCAGATGGCGAGCGTCGCTACATCATCGCCCCTAAAGGCGTGAGCGCTGGCGACCAGCTGATCGCAGGTGCCTTGGCGCCGATCAAGCCGGGCAACGCTCTGCAACTGCGTAACATTCCAGTTGGTAGCACCGTACACGGCATCGAATTGAAGCCAGGTAAAGGCGCGCAAATCGCTCGTTCCGCTGGTGCTTCGGCTCAGCTGATCGCTCGTGAGGGTGTCTACGTGACCCTGCGTCTGCGTTCTGGTGAGATGCGTAAAGTACTGGCTGAATGCCGTGCGACCCTGGGCGAAGTCTCGAACTCCGAGCACAGCCTGCGTTCGTTGGGTAAAGCTGGTGCCAAGCGCTGGCGTGGCGTTCGCCCAACCGTTCGTGGTGTTGCCATGAACCCGGTTGACCACCCACATGGTGGTGGTGAAGGTCGTACCTCTGGTGGTCGTCATCCGGTATCGCCATGGGGCTTCCCGACTAAGGGCGCGAAGACTCGTGGTAATAAGCGTACCGACAAAATGATCGTCCGTCGTCGCAAGTAA	MAIVKCKPTSPGRRFVVKVVNQELHKGAPHAPLLEKKSKSGGRNNNGRITTRHVGGGHKQHYRLVDFRRNDKDGIAATVERIEYDPNRTAHIALLLYADGERRYIIAPKGVSAGDQLIAGALAPIKPGNALQLRNIPVGSTVHGIELKPGKGAQIARSAGASAQLIAREGVYVTLRLRSGEMRKVLAECRATLGEVSNSEHSLRSLGKAGAKRWRGVRPTVRGVAMNPVDHPHGGGEGRTSGGRHPVSPWGFPTKGAKTRGNKRTDKMIVRRRK				NA	NA	NA	NA	NA
D1-36_04583	300	rplW	COG0089	50S ribosomal protein L23	ATGAACCAGGAACGCGTATTTAAAGTTCTGCTTGGCCCGCACGTTTCCGAGAAGGCTACGGTTCTGGCAGACAAGAAAGGCCAGTTCGTTTTCAAGGTTGCAACCGATGCAACCAAGCTGGAAATCAAGAAGGCCGTCGAAAGCCTGTTCAGCGTCAAAGTAGAGCGCGTTACTACCCTGAATGTTCTGGGTAAGAGCAAGCGCACTGCTCGCGGTCTGGGCAAGCGTAATGACTGGAAGAAGGCAGTTATCTCCCTTCAGCCAGGCCAAGATCTCGATTTCAGCAGCAGTGCTGAGTAA	MNQERVFKVLLGPHVSEKATVLADKKGQFVFKVATDATKLEIKKAVESLFSVKVERVTTLNVLGKSKRTARGLGKRNDWKKAVISLQPGQDLDFSSSAE				NA	NA	NA	NA	NA
D1-36_04584	603	rplD	COG0088	50S ribosomal protein L4	ATGCAATTAAATGTAAATGACGCTCAAGCGATCGAAGTTTCCGAACTGACATTTGGCGGCGAATTCAACGAGACGCTGGTTCACCAAGCAGTCGTGGCCTACATGGCCGGCGGCCGTCAAGGTAGCAAGCAGCAAAAGACCCGTTCCGACGTTTCTGGTGGCGGTAAGCGCCCATGGCGTCAGAAAGGTACTGGCCGTGCTCGTGCCGGTACTATCCGTAGCCCAATCTGGCGTGGCGGCGGTACCACTTTCGCAGCTCGTCCTCAGGATCACTCCCAGAAGCTGAACAAGAAGATGTACCGCGCAGCAATGCGTTCCATCCTTGCTGAGCTGGTGCGTACTGATCGTCTGGTCGTGGTTCAGGACTTCGCTGTTGAAGCACCGAAAACCAAAGATCTGCTGAACAAGCTGAATGGCATGGGTCTGACTGACGTCCTGATCGTGTCTGACGCTGTTGATCAGAACCTGTACCTGGCTGCTCGCAACCTGCCACACGTCGACGTTCGTGACGTGCAGGGTTCCGATCCGGTCAGTCTGATCGCATACGACAAGGTGTTGATCACCGTGTCGGCCGTGAAGAAATTCGAGGAGCTGCTGGGATGA	MQLNVNDAQAIEVSELTFGGEFNETLVHQAVVAYMAGGRQGSKQQKTRSDVSGGGKRPWRQKGTGRARAGTIRSPIWRGGGTTFAARPQDHSQKLNKKMYRAAMRSILAELVRTDRLVVVQDFAVEAPKTKDLLNKLNGMGLTDVLIVSDAVDQNLYLAARNLPHVDVRDVQGSDPVSLIAYDKVLITVSAVKKFEELLG				NA	NA	NA	NA	NA
D1-36_04585	636	rplC	COG0087	50S ribosomal protein L3	ATGACTATTGGTGTAGTCGGTCGTAAATGCGGTATGACCCGTATTTTCACCGAAGAAGGTGTCTCCATTCCGGTCACGGTCATTGAGATCGAGCCGAATCGCGTCACCCAGTTCAAAACTGAAGAGACCGATGGCTATCGTGCAGTGCAAGTCACTGTCGGCGAGCGTCGCGCTTCGCGTGTAACAGCTGCTCAAGCTGGCCACTTCGCCAAGGCGAACGTAGCCGCTGGTCGTACCGTAATGGAATTCCGCCTTGAAGAAGGCGAGTACCAGGCCGGCGATCTGATCAACGCTGAAATCTTCGCTGCTGGTCAACTGGTTGATGTAACCGGTCAGTCCAAAGGTAAAGGCTTCCAGGGTACGATCAAGCGTTGGAACTTCCGCGGGCAAGATAACACCCACGGTAACTCCGTATCCCACCGCGTTCCAGGCTCTATCGGCCAGTGCCAGACTCCTGGTCGTGTATTCAAGGGCAAAAAAATGTCCGGTCATATGGGCGCTGAGCGCGTGACCGTGCAGTCCCTCGAAGTAGTGCGCGTGGACGCTGAACGCAATCTGTTGTTGGTCAAGGGCGCTGTTCCTGGCGCTACTGGCGGCAACTTGGTTGTACGTCCAGCAGCCAAGGCTCGCGGTTAA	MTIGVVGRKCGMTRIFTEEGVSIPVTVIEIEPNRVTQFKTEETDGYRAVQVTVGERRASRVTAAQAGHFAKANVAAGRTVMEFRLEEGEYQAGDLINAEIFAAGQLVDVTGQSKGKGFQGTIKRWNFRGQDNTHGNSVSHRVPGSIGQCQTPGRVFKGKKMSGHMGAERVTVQSLEVVRVDAERNLLLVKGAVPGATGGNLVVRPAAKARG				NA	NA	NA	NA	NA
D1-36_04586	312	rpsJ	COG0051	30S ribosomal protein S10	ATGCAAAATCAGCAAATCCGTATCAGGTTGAAGGCTTTTGACCATCGCCTGATCGACCAATCCACCCAGGAAATCGTGGAAACCGCGAAACGTACTGGTGCTCAAGTGCGTGGTCCAATTCCACTGCCTACCCGTAAAGAGCGGTTCACCGTTCTGGTCTCCCCGCACGTCAACAAAGACGCGCGTGACCAGTACGAGATCCGTACTCATAAGCGCGTTCTGGACATCGTCCAGCCAACGGATAAAACCGTTGATGCTCTTATGAAGCTTGATCTTGCGGCCGGTGTGGAAGTGCAGATCAGCCTCGGCTAA	MQNQQIRIRLKAFDHRLIDQSTQEIVETAKRTGAQVRGPIPLPTRKERFTVLVSPHVNKDARDQYEIRTHKRVLDIVQPTDKTVDALMKLDLAAGVEVQISLG	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
D1-36_04587	1194	tufA_1	COG0050	Elongation factor Tu-A	GTGGCTAAAGAAAAATTTGAACGGAACAAACCGCACGTCAACGTTGGCACCATCGGCCACGTTGACCACGGTAAAACTACCCTGACCGCTGCTCTGACCCGTGTCTGCTCCGAAGTTTTCGGTTCGGCCAAGGTTGACTTCGACAAGATCGACAGCGCCCCGGAAGAGAAAGCTCGCGGTATCACCATCAACACCGCTCACGTTGAATACGATTCGTCCGTGCGTCACTACGCACACGTTGACTGCCCAGGTCACGCCGACTACGTAAAAAACATGATCACCGGTGCTGCCCAGATGGACGGCGCGATCCTGGTTTGCTCGGCCGCTGATGGTCCGATGCCACAAACCCGTGAGCACATCCTGCTGTCCCGTCAGGTAGGCGTTCCGTACATCGTTGTCTTCCTGAACAAGGCTGACATGGTTGACGACGCTGAGCTGCTGGAACTGGTTGAGATGGAAGTGCGCGACCTGCTGAGCACTTACGACTTCCCAGGTGATGACACTCCAATCATCATCGGTTCGGCTCTGATGGCTCTGAACGGCCAAGACGACAACGAAATGGGCACCACTGCTGTCAAGAAGCTGGTGGAAACTCTGGACAGCTACATCCCAGAGCCAGAGCGTGCTATCGACAAGCCGTTCCTGATGCCAATCGAAGACGTATTCTCGATCTCCGGTCGCGGTACTGTTGTGACTGGTCGTGTTGAGCGTGGCATCGTCCGTATCCAGGAAGAAGTTGAGATCGTCGGTCTGCGCGACACTCAGAAAACTACCTGCACCGGCGTTGAAATGTTCCGCAAGCTGCTCGACGAAGGTCGTGCTGGCGAGAACTGCGGCGTACTGCTGCGCGGCACCAAGCGTGACGACGTTGAGCGTGGCCAGGTTCTGGTCAAGCCAGGCACCGTCAAGCCGCACACCAAGTTCACCGCAGAAGTCTACGTTCTGAGCAAGGAAGAAGGCGGTCGTCACACTCCGTTCTTCAAAGGCTACCGTCCACAGTTCTACTTCCGTACAACTGACGTGACTGGTAACTGCGAGCTGCCAGAAGGCGTTGAAATGGTAATGCCAGGTGACAACATTCAGATGACTGTCACTCTGATCAAGACCATCGCAATGGAAGACGGCCTGCGTTTCGCTATCCGTGAAGGCGGTCGTACCGTCGGCGCTGGCGTCGTAGCCAAAGTCATCGAATAA	MAKEKFERNKPHVNVGTIGHVDHGKTTLTAALTRVCSEVFGSAKVDFDKIDSAPEEKARGITINTAHVEYDSSVRHYAHVDCPGHADYVKNMITGAAQMDGAILVCSAADGPMPQTREHILLSRQVGVPYIVVFLNKADMVDDAELLELVEMEVRDLLSTYDFPGDDTPIIIGSALMALNGQDDNEMGTTAVKKLVETLDSYIPEPERAIDKPFLMPIEDVFSISGRGTVVTGRVERGIVRIQEEVEIVGLRDTQKTTCTGVEMFRKLLDEGRAGENCGVLLRGTKRDDVERGQVLVKPGTVKPHTKFTAEVYVLSKEEGGRHTPFFKGYRPQFYFRTTDVTGNCELPEGVEMVMPGDNIQMTVTLIKTIAMEDGLRFAIREGGRTVGAGVVAKVIE	PGPT0015245_1782	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	TRIGGERED_IMMUNITY	PAMP|EFFECTOR_TRIGGERED_IMMUNITY|PTI	PTI-BACTERIAL_EF-TU,PGPT0015245-elf18|tuf|tufA-K02358	NA	NA
D1-36_04588	2106	fusA	COG0480	Elongation factor G 1	ATGGCTCGTACTACACCGATTAACCGCTACCGTAACATCGGTATCGTTGCTCACGTGGATGCTGGTAAGACCACCACCACCGAGCGCGTCCTTTTTTACACCGGCAAAAGTCACAAAATGGGCGAGGTGCATGACGGCGCCGCGACCACAGACTGGATGGTTCAGGAGCAGGAGCGTGGTATTACCATTACTTCTGCTGCTATTACCGCCTTCTGGAAAGGTTCCGAGAAGCAGTACCCGCACGAGCATCGCTTCAACGTTATCGATACCCCGGGCCACGTAGACTTCACCATTGAAGTTGAGCGTTCCCTGCGTGTACTCGACGGCGCGGTCGTTGTGTTCTGTGGTACTTCGGGCGTTGAGCCTCAGTCGGAAACCGTATGGCGTCAGGCCAACAAATACGGTGTTCCACGTCTTGTTTATGTAAACAAGATGGACCGTGCTGGTGCCAACTTCCTGCGCGTGATCGGTCAGATCAAGCAGCGTCTGGGTCACACTCCGGTGCCTATCCAGCTCGCTATCGGTTCGGAAGACAACTTCCAGGGCCAGATCGACCTGATCAACATGCAGGCCGTGTACTGGAATGACTCCGACAAGGGCATGGTCCCTGTTCGTAAGGAAATTCCTGCCGAGCTGTTGGAAGAAGCCGAGCAATGGCGCAGCAACATGGTTGAGGCTGCGGCCGAAGCCAATGAAGAGCTGATGAACAAGTACCTCGAGGGCGAAGAACTCTCCAACGAGGAAATCAAGGCCGCTCTGCGTCAGCGTACTATCGCTGGTGAGATCGTTCTGGCTGTTTGCGGTTCTTCCTTCAAGAACAAGGGCGTTCCCCTGGTTCTCGACGCCGTTATCGACTTCCTGCCTGCTCCAACCGACATTCCTGCTATCAAGGGTTCCAACCCGGATAACGAGGAAGAGGAAATGGAGCGTCACGCAAGTGACGACGAGCCGTTCGCGGCTTTGGCGTTCAAGATCGCTACTGACCCATTCGTGGGTACCTTGACCTTCGTTCGAGTTTACTCGGGCGTGTTGGCATCCGGCGACGGCGTGATCAACTCGGTAAAAGGCAAGAAAGAGCGCGTGGGTCGTATGGTGCAAATGCACGCAAACGCCCGTGAAGAAATCAAGGAAGTGCGCGCTGGCGACATCGCGGCCTTGATCGGCATGAAGGACGTCACCACCGGTGAAACCTTGTGCAACGCTGACAAGCCAATCATCCTGGTTCGCATGGACTTCCCGGAGCCGGTTATCTCGGTTGCCGTTGAGCCTAAGACCAAGGACGACCAGGAAAAAATGGGTATCGCTCTGGGCAAGCTCGCTCAGGAAGACCCTTCTTTCCGCGTCAAGACTGATGAAGAGACTGGTCAGACGATCATCTCCGGCATGGGCGAGCTGCACCTGGACATCCTGGTTGACCGGATGCGCCGTGAGTTCAACGTCGAAGCCAACATCGGTAAGCCTCAGGTTTCCTATCGTGAGCGCATCACGAAGAGCTGTGAAATCGAAGGCAAGTTCGTTCGCCAGTCCGGCGGTCGTGGCCAGTTCGGTCATTGCTGGATCCGTTTTGCACCGGCTGACGAAGGTCAGGAAGGTCTGCAATTCCTGAACGAAGTCGTTGGTGGTGTGGTTCCTAAGGAATACATCCCGGCGATCCAGAAAGGTATCGAAGAGCAGATGAAGAACGGCGTTGTTGCCGGCTATCCGCTGATCGGCCTGAAGGCGACTGTGTTCGACGGTTCTTACCACGACGTCGACTCCAACGAGATGGCGTTTAAGGTGGCTGCTTCCATGGCTACCAAGCAACTGGCCCAGAAGGGCGGTGGTGAGTTGCTTGAACCTATCATGGCGGTAGAAGTCGTTACGCCTGAAGACTACATGGGTGATGTCATGGGCGACCTTAACCGTCGTCGTGGCATGATTCTGGGTATGGAAGATACGGTTTCCGGCAAGGTTATCCGCGCCGAGGTTCCGTTGGGTGAGATGTTCGGTTACGCAACCGACGTTCGCTCCATGTCTCAGGGTCGCGCAAGCTACTCTATGGAATTCAAAAAATACAATACAGCTCCGTCGCATATCGTCGAGACTGTTACCAAAAAGCAAGGCTGA	MARTTPINRYRNIGIVAHVDAGKTTTTERVLFYTGKSHKMGEVHDGAATTDWMVQEQERGITITSAAITAFWKGSEKQYPHEHRFNVIDTPGHVDFTIEVERSLRVLDGAVVVFCGTSGVEPQSETVWRQANKYGVPRLVYVNKMDRAGANFLRVIGQIKQRLGHTPVPIQLAIGSEDNFQGQIDLINMQAVYWNDSDKGMVPVRKEIPAELLEEAEQWRSNMVEAAAEANEELMNKYLEGEELSNEEIKAALRQRTIAGEIVLAVCGSSFKNKGVPLVLDAVIDFLPAPTDIPAIKGSNPDNEEEEMERHASDDEPFAALAFKIATDPFVGTLTFVRVYSGVLASGDGVINSVKGKKERVGRMVQMHANAREEIKEVRAGDIAALIGMKDVTTGETLCNADKPIILVRMDFPEPVISVAVEPKTKDDQEKMGIALGKLAQEDPSFRVKTDEETGQTIISGMGELHLDILVDRMRREFNVEANIGKPQVSYRERITKSCEIEGKFVRQSGGRGQFGHCWIRFAPADEGQEGLQFLNEVVGGVVPKEYIPAIQKGIEEQMKNGVVAGYPLIGLKATVFDGSYHDVDSNEMAFKVAASMATKQLAQKGGGELLEPIMAVEVVTPEDYMGDVMGDLNRRRGMILGMEDTVSGKVIRAEVPLGEMFGYATDVRSMSQGRASYSMEFKKYNTAPSHIVETVTKKQG				NA	NA	NA	NA	NA
D1-36_04589	471	rpsG	COG0049	30S ribosomal protein S7	ATGCCAAGACGTCGCGTAGCAGCCAAACGTGAGATTCTGGACGATCCGAAATACGGAAGCCAGATTCTCGCCAAGTTCATGAACCACGTTATGGAAAGCGGCAAGAAAGCCGTTGCCGAACGTATCGTTTATGGCGCACTGGACAAAGTTAAGGAGCGCAAGAACAGCGATCCCCTGGAAATCTTCGAAAAAGCTCTCGACGCCATCGCTCCGCTGGTCGAAGTGAAGTCGCGCCGTGTAGGCGGTGCTACTTACCAGGTTCCGGTCGAAGTTCGTCCTTCCCGTCGTAACGCCCTGGCAATGCGCTGGCTGGTAGACTTCGCCCGCAAGCGCGGCGAGAAGTCCATGGCCCTGCGTTTGGCTGGTGAACTGTTGGACGCTGCTGAAGGTAAAGGTGCTGCAGTTAAGAAGCGTGAAGACGTGCACCGTATGGCTGAAGCCAACAAGGCTTTCTCGCACTACCGCTTCTAA	MPRRRVAAKREILDDPKYGSQILAKFMNHVMESGKKAVAERIVYGALDKVKERKNSDPLEIFEKALDAIAPLVEVKSRRVGGATYQVPVEVRPSRRNALAMRWLVDFARKRGEKSMALRLAGELLDAAEGKGAAVKKREDVHRMAEANKAFSHYRF				NA	NA	NA	NA	NA
D1-36_04590	372	rpsL	COG0048	30S ribosomal protein S12	ATGGCAACTATCAACCAGCTGGTACGTCAGCCGCGTAAGCGTATCGTCGAGAAATCCGACGTGCCTGCGCTGCAGAACTGCCCGCAACGTCGTGGCGTATGCACCCGTGTGTATACCACCACGCCGAAAAAACCTAACTCGGCACTGCGTAAAGTATGCCGTGTGCGCCTGACCAACGGTTTCGAGGTTTCCTCGTACATCGGTGGTGAAGGTCACAACCTGCAAGAGCACAGCGTGGTACTGATCCGCGGCGGTCGTGTAAAAGACTTGCCAGGTGTTCGTTACCACACCGTCCGCGGTTCTTTGGATACTTCCGGCGTTAAAGGTCGTAACCAGGGTCGCTCGAAGTACGGTACCAAGCGTCCGAAGTAA	MATINQLVRQPRKRIVEKSDVPALQNCPQRRGVCTRVYTTTPKKPNSALRKVCRVRLTNGFEVSSYIGGEGHNLQEHSVVLIRGGRVKDLPGVRYHTVRGSLDTSGVKGRNQGRSKYGTKRPK				NA	NA	NA	NA	NA
D1-36_04592	4200	rpoC	COG0086	DNA-directed RNA polymerase subunit beta'	TTGAAAGACCTACTGAATTTGCTGAAAAACCAGGGTCAAGTCGAAGAGTTCGACGCCATCCGTATTGGATTGGCCTCGCCTGAGATGATCCGTTCGTGGTCGTTCGGTGAAGTAAAAAAACCGGAAACCATCAACTACCGTACGTTCAAACCCGAGCGTGATGGTCTGTTCTGCGCCAAGATCTTTGGCCCGGTAAAGGATTACGAGTGCCTGTGCGGTAAGTACAAGCGCTTGAAGCATCGCGGCGTGATCTGCGAGAAGTGCGGCGTTGAAGTCGCGCTGGCAAAAGTTCGTCGTGAGCGCATGGCACACATCGAACTGGCCTCGCCGGTTGCCCACATCTGGTTCCTGAAATCGCTGCCGTCCCGTATCGGCCTGCTGATGGACATGACCCTGCGTGATATCGAACGCGTTCTCTACTTCGAGAGCTATGTCGTTATCGATCCAGGCATGACCACTCTTGAAAAAGGTCAGCTGCTCAACGACGAACAGTACTTCGAAGCGCTGGAAGAGTTCGGCGACGATTTCGATGCCCGCATGGGTGCCGAAGCTGTCCGCGAACTGCTGCACGCTATCGACCTGGAGCACGAGATTGGTCGTCTGCGTGAAGAGATTCCGCAAACCAACTCCGAAACCAAGATCAAGAAGCTGTCCAAGCGTCTGAAGTTGATGGAAGCCTTCCAGGGTTCCGGCAACCTGCCAGAGTGGATGGTGCTGACCGTTCTGCCGGTACTGCCGCCAGACCTGCGTCCGCTGGTTCCGCTCGATGGCGGTCGTTTCGCGACTTCCGACCTCAACGATCTGTATCGTCGGGTGATCAACCGTAACAACCGCTTGAAGCGCCTGCTCGATCTGTCCGCTCCGGACATCATCGTGCGCAACGAAAAGCGTATGTTGCAGGAAGCGGTGGACGCATTGCTCGACAACGGTCGTCGTGGCCGCGCTATCACCGGTTCGAACAAGCGTCCTCTGAAATCCCTGGCTGACATGATCAAGGGTAAGCAGGGTCGTTTCCGTCAGAACTTGCTCGGTAAGCGTGTTGACTACTCCGGTCGTTCGGTAATTACCGTAGGCCCGACCCTGCGTCTGCACCAGTGCGGCCTGCCAAAGAAAATGGCTCTGGAACTGTTCAAACCGTTCATCTTCGGCAAGCTGGAAATGCGTGGTCTTGCGACCACCATCAAGGCCGCCAAGAAGATGGTCGAGCGCGAGCTGCCAGAGGTCTGGGACGTTCTTGCCGAAGTAATTCGCGAACACCCAGTGCTGCTCAACCGTGCACCGACCCTTCACCGTCTGGGTATCCAGGCGTTTGAACCGGTACTGATCGAAGGTAAGGCTATCCAGCTGCACCCGCTGGTCTGTGCTGCGTACAACGCCGACTTCGACGGCGACCAAATGGCCGTGCACGTACCGCTGACGCTGGAAGCCCAGCTCGAAGCGCGTGCGTTGATGATGTCGACCAACAACATCCTGTCGCCAGCCAACGGTGAGCCAATCATCGTTCCGTCCCAGGACGTTGTATTGGGTCTGTACTACATGACTCGTGAAGCGATCAACGCCAAGGGCGAAGGTCGTGTGTTCGCGGACCTGCAGGAAGTTGACCGTGTGTTCCGTGCCGGCGAAGCCGCACTGCACGCCAAGGTCAAGGTGCGGATCAACGAAACCGTAAACGATCGTGATGGCAACAGCGTGACCAACACTCGTATCGTCGACACCACCGTCGGCCGTGCGCTGCTGTTCCAGGTCGTGCCGAAAGGCTTGTCCTTCGATGTCGTCAACCTGCCGATGAAGAAAAAGGCGATCTCCAAGCTGATCAACCAGTGCTACCGCGTGGTTGGTCTGAAAGAGACCGTGATCTTCGCTGACCAGTTGATGTACACCGGTTTTGCCTATTCGACCATCTCCGGCGTTTCCATCGGTGTTAACGACTTCGTTATCCCTGATGAAAAAGCCCGCATCATCGGTGCAGCCACCGAAGAAGTGAAAGAGATCGAAAGCCAGTACGCGTCCGGCCTGGTAACCCAGGGCGAGAAGTACAACAAGGTGATCGACCTCTGGTCCAAGGCGAACGACGAAGTATCCAAGGCCATGATGGCCAACCTCTCGAAAGAGAAGGTCATCGACCGCCATGGCAAGGAAGTCGACCAGGAATCCTTCAACTCGATGTACATGATGGCCGACTCGGGTGCGCGGGGTTCTGCTGCGCAGATCCGTCAGCTCGCCGGTATGCGTGGCCTGATGGCCAAGCCGGACGGCTCCATCATCGAGACCCCGATTACTGCGAACTTCCGTGAAGGTTTGAGCGTACTCCAGTACTTCATCTCCACTCACGGTGCTCGTAAGGGTCTTGCGGATACCGCGTTGAAAACGGCGAACTCCGGTTACCTGACTCGTCGTCTGGTAGACGTTGCCCAGGATCTGGTCGTGACCGAGATCGATTGCGGCACCGAGCATGGCCTGGTAATGACTCCGCACATCGAAGGGGGTGACGTTGTAGAGCCGCTGGGTGAGCGCGTATTGGGTCGTGTCATCGCCCGTGACGTATTCAAGCCGGGTACCGAGGACGTCATCGTTCCTGCTGGCACCCTGGTTGACGAGAAGTGGGTCGAATTCATCGAACTCAACAGCATCGACGAAGTGATCGTGCGCTCGCCGATCAGCTGTGAAACCCGCTACGGCATCTGCGCCAAGTGCTACGGTCGCGACCTGGCACGTGGTCACCAGGTGAACATCGGTGAAGCGGTCGGCGTTATTGCTGCCCAGTCCATCGGTGAGCCGGGTACCCAGCTGACCATGCGTACGTTCCACATCGGTGGTGCGGCAAGCCGGACCTCCGCGGCCGACAGCGTTCAGGTGAAGAATGGCGGTACTGTCCGCCTGCACAACCTGAAGCATGTTGAGCGTGTCGACGGTCACCTGGTCGCCGTTTCCCGTTCCGGTGAGTTGGCGATTGCCGACGACTTCGGTCGTGAGCGCGAGCGCTACAAGCTGCCGTACGGTGCCGTGATTTCGGTGAAGGAAGGCGACAAGGTCGACGCTGGTGCCATCGTGGCCAAGTGGGATCCGCACACTCACCCAATCGTCACCGAGATGAAAGGTACCGTGACCTACGTGGGCATGGAAGAAGGCATCACGATCAAGCGTCAGACTGACGAATTGACCGGTATGACCAACATCGAAGTGCTCGACGCAAAAGATCGTCCAGCTGCAGGCAAGGACATCCGTCCGGCCGTGAAGATGGTCGACGACAACGGCAAGGATCTGTTGCTGCCAGGTACTGACGTAATCGCTCAGTACTTCCTGCCAGCCAACGCCCTGGTCGGTGTTGCGGACGGTGCGCGGATCGCGATCGGTGATGTTATCGCTCGTATCCCGCAAGAAACTTCGAAGACCCGCGACATCACCGGTGGTCTGCCGCGTGTTGCCGACTTGTTCGAAGCTCGTCGTCCGAAAGAAGCCTCGATTCTGGCTGAAGTCAGCGGCACCATCGCGTTCGGTAAAGAAACCAAGGGCAAGCGCCGTCTGGTTATCACCCCGAACGACGGTAGCGATCCGTACGAAGAGCTGATTCCTAAGTGGCGTCACCTGAACGTCTTCGAAGGCGAACAGGTAAACCGCGGCGAAGTTATCTCCGACGGTCCGAGCGATCCACATGACATCCTGCGTCTGCTGGGTGTCAGTGCGCTGGCCAAGTACATCGTGAACGAAATCCAGGACGTTTATCGTCTGCAGGGCGTGAAGATCAACGACAAGCACATCGAGACCATCCTGCGTCAGATGCTGCGTAAAGTTGAGATCTCCGAGTCTGGCGACTCCAGCTTCATCAAGGGCGACCAGATGGAACTGACTCACGTGCTGGTGGAAAACGAGCGTCTGGCGAACGAGGACAAGTTCCTTGCCAAGTTCACTCGCGTACTGCTGGGTATCACCAAGGCGTCGCTGTCCACCGAATCGTTCATCTCGGCGGCTTCCTTCCAGGAAACCACTCGCGTACTGACCGAGGCGGCGGTAACCGGCAAGCGCGACTACTTGCGCGGCCTGAAAGAAAACGTGGTCGTGGGTCGTCTGATCCCGGCCGGTACCGGTTTGGCCTATCACAGCGAACGCAAGCGTCGTCGTGATGCAGACAAGCCGCTGCGCGTGAGCGCCAGTGAAGTGGAAGCTGCACTGACCGAAGCACTGAACTCGAGCGGTAACTGA	MKDLLNLLKNQGQVEEFDAIRIGLASPEMIRSWSFGEVKKPETINYRTFKPERDGLFCAKIFGPVKDYECLCGKYKRLKHRGVICEKCGVEVALAKVRRERMAHIELASPVAHIWFLKSLPSRIGLLMDMTLRDIERVLYFESYVVIDPGMTTLEKGQLLNDEQYFEALEEFGDDFDARMGAEAVRELLHAIDLEHEIGRLREEIPQTNSETKIKKLSKRLKLMEAFQGSGNLPEWMVLTVLPVLPPDLRPLVPLDGGRFATSDLNDLYRRVINRNNRLKRLLDLSAPDIIVRNEKRMLQEAVDALLDNGRRGRAITGSNKRPLKSLADMIKGKQGRFRQNLLGKRVDYSGRSVITVGPTLRLHQCGLPKKMALELFKPFIFGKLEMRGLATTIKAAKKMVERELPEVWDVLAEVIREHPVLLNRAPTLHRLGIQAFEPVLIEGKAIQLHPLVCAAYNADFDGDQMAVHVPLTLEAQLEARALMMSTNNILSPANGEPIIVPSQDVVLGLYYMTREAINAKGEGRVFADLQEVDRVFRAGEAALHAKVKVRINETVNDRDGNSVTNTRIVDTTVGRALLFQVVPKGLSFDVVNLPMKKKAISKLINQCYRVVGLKETVIFADQLMYTGFAYSTISGVSIGVNDFVIPDEKARIIGAATEEVKEIESQYASGLVTQGEKYNKVIDLWSKANDEVSKAMMANLSKEKVIDRHGKEVDQESFNSMYMMADSGARGSAAQIRQLAGMRGLMAKPDGSIIETPITANFREGLSVLQYFISTHGARKGLADTALKTANSGYLTRRLVDVAQDLVVTEIDCGTEHGLVMTPHIEGGDVVEPLGERVLGRVIARDVFKPGTEDVIVPAGTLVDEKWVEFIELNSIDEVIVRSPISCETRYGICAKCYGRDLARGHQVNIGEAVGVIAAQSIGEPGTQLTMRTFHIGGAASRTSAADSVQVKNGGTVRLHNLKHVERVDGHLVAVSRSGELAIADDFGRERERYKLPYGAVISVKEGDKVDAGAIVAKWDPHTHPIVTEMKGTVTYVGMEEGITIKRQTDELTGMTNIEVLDAKDRPAAGKDIRPAVKMVDDNGKDLLLPGTDVIAQYFLPANALVGVADGARIAIGDVIARIPQETSKTRDITGGLPRVADLFEARRPKEASILAEVSGTIAFGKETKGKRRLVITPNDGSDPYEELIPKWRHLNVFEGEQVNRGEVISDGPSDPHDILRLLGVSALAKYIVNEIQDVYRLQGVKINDKHIETILRQMLRKVEISESGDSSFIKGDQMELTHVLVENERLANEDKFLAKFTRVLLGITKASLSTESFISAASFQETTRVLTEAAVTGKRDYLRGLKENVVVGRLIPAGTGLAYHSERKRRRDADKPLRVSASEVEAALTEALNSSGN				NA	NA	NA	NA	NA
D1-36_04593	4074	rpoB	COG0085	DNA-directed RNA polymerase subunit beta	ATGGCTTACTCATATACTGAGAAAAAACGTATCCGCAAGGACTTTAGCAAGTTGCCGGACGTCATGGATGTGCCGTACCTCCTGGCCATCCAGCTGGATTCGTATCGTGAATTCTTGCAAGCGGGAGCGACTAAAGATCAGTTCCGCGACGTGGGCCTGCATGCGGCCTTCAAATCCGTTTTCCCGATCATCAGCTACTCCGGCAATGCTGCGCTGGAGTACGTCGGTTATCGCCTGGGCGAACCGGCATTTGATGTCAAAGAATGCGTATTGCGCGGTGTTACTTACGCCGTACCTTTGCGGGTAAAAGTGCGCCTGATCATTTTCGACAAAGAATCGTCGAATAAAGCGATCAAGGACATCAAAGAGCAAGAAGTCTACATGGGTGAAATCCCCCTGATGACTGAGAACGGTACCTTCGTAATCAACGGTACCGAGCGTGTAATCGTTTCCCAGCTGCACCGTTCCCCGGGCGTGTTCTTCGACCACGACCGTGGTAAGACGCACAGTTCCGGCAAACTGCTCTACTCCGCGCGCATCATTCCTTACCGCGGTTCGTGGCTGGACTTCGAGTTCGACCCGAAAGACTGCGTATTCGTGCGTATTGACCGTCGTCGCAAGCTGCCTGCATCGGTACTGCTGCGCGCGCTCGGCTATACGACCGAAGAAGTGCTGGACGCGTTCTACACCACCAACGTCTTCCATGTGCAAGGTGAGAACCTGAGCCTGGAGTTGGTGCCTCAGCGCCTGCGCGGTGAAATCGCGGTCCTGGATATCCAGGACGACAAGGGCAAGGTTATTGTCGAGCAAGGCCGTCGTATTACTGCTCGCCACATCAACCAGCTGGAAAAAGCCGGTATCAAAGAGCTGCAGGTGCCGATGGACTACGTCCTGGGTCGCACCACCGCCAAGGTCATCGTGCATCCAGCCACCGGCGAGATCATCGCTGAGTGCAATACCGAGCTCACCGTCGAGATCCTGGCGAAGATCGTCAAGGCTCAGGTCGTTCGTATCGAGACCCTGTACACCAACGACATCGACTGCGGTCCGTTCATCTCCGACACGCTGAAGATCGACTCCACTGGCAACCAGCTGGAAGCCCTGGTCGAGATCTATCGCATGATGCGTCCTGGCGAGCCGCCAACCAAGGATGCTGCCGAGACCCTGTTCAACAACCTGTTCTTCAGCCCTGAGCGCTATGACCTCTCCGCGGTCGGCCGGATGAAGTTCAACCGTCGTATCGGTCGTACCGAGATCGAAGGTTCGGGCGTGCTGAACAAGGATGACATCGTTGCGGTGCTCAAGACCTTGGTCGACATCCGTAACGGCAAAGGCATCGTCGATGACATCGACCACCTGGGTAACCGTCGCGTTCGCTGCGTAGGCGAAATGGCCGAAAACCAGTTCCGTGTTGGCCTGGTGCGCGTAGAGCGCGCGGTCAAGGAACGCCTGTCGATGGCTGAAAGCGAAGGCCTGATGCCGCAAGACCTGATCAACGCCAAGCCAGTGGCCGCGGCGGTGAAGGAATTCTTCGGCTCGAGCCAGCTGTCCCAGTTCATGGACCAGAACAACCCGCTGTCCGAGATCACCCACAAGCGTCGTGTTTCCGCACTCGGCCCAGGCGGTCTGACCCGTGAGCGTGCAGGCTTCGAAGTTCGTGACGTACACCCGACTCACTACGGTCGTGTATGCCCGATCGAAACGCCGGAAGGTCCGAACATCGGTCTGATCAACTCTTTGGCCGCCTATGCGCGCACCAACCAGTATGGCTTCCTCGAAAGCCCGTACCGTGTGGTGAAAGACGCCCTGGTCACCGACGAGATCGTGTTCCTGTCTGCCATCGAAGAGGCTGATCACGTGATCGCTCAGGCTTCGGCCACGATGAACGACAAGAAAGTCCTGACCGACGAGCTGGTAGCTGTTCGTCACTTGAACGAGTTCACCGTCAAGGCGCCGGAAGACGTCACCTTGATGGACGTATCGCCGAAGCAGGTAGTGTCGGTTGCAGCGTCGCTGATCCCGTTCCTCGAGCACGACGACGCCAACCGTGCGTTGATGGGTTCGAACATGCAGCGTCAGGCTGTACCGACCCTGCGTGCCGATAAGCCACTGGTAGGTACTGGCATGGAGCGCAACGTTGCGCGCGACTCCGGCGTTTGCGTCGTGGCTCGTCGTGGCGGTGTGATCGATTCCGTCGACGCCAGCCGTATCGTGGTTCGTGTTGCCGATGACGAAGTAGAGCCGGGCGAAGCCGGTGTCGACATCTACAACCTGACCAAGTACACCCGCTCCAACCAGAACACCTGCATCAACCAGCGTCCGCTGGTCAGCAAAGGTGATCGGGTTCAGCGCAGCGACATCATGGCCGACGGCCCGTCCACCGACATGGGTGAACTGGCGCTGGGTCAGAACATGCGCATCGCGTTCATGGCATGGAACGGCTTCAACTTCGAAGACTCCATCTGCCTGTCCGAGCGTGTGGTCCAGGAAGACCGCTTCACCACGATCCACATCCAGGAACTGACCTGTGTGGCTCGTGACACCAAGCTTGGCCCAGAGGAAATCACTGCGGACATCCCGAACGTGGGTGAAGCTGCACTGAACAAGCTGGACGAAGCCGGTATCGTTTACGTAGGTGCTGAAGTAGGCGCGGGCGACATCCTGGTCGGCAAGGTCACTCCGAAAGGCGAGACCCAACTGACTCCGGAAGAGAAGCTGCTGCGTGCGATCTTCGGTGAAAAAGCCAGCGACGTGAAAGACACCTCCCTGCGCGTGCCTACCGGCACCAAGGGTACCGTCATTGACGTACAGGTCTTTACCCGCGACGGCGTTGAGCGTGACGCTCGCGCACTGTCGATCGAGAAGACTCAGCTCGACGAGATCCGCAAGGACCTGAACGAAGAGTTCCGTATCGTCGAAGGCGCGACTTTCGAGCGTCTGCGCTCCGCCCTGGTCGGCCACAAAGCCGAAGGCGGCGCCGGCCTGAAGAAAGGTCAGGAGATCACCGACGAAGTCCTCGACGGTCTTGAGCATGGCCAGTGGTTCAAGCTGCGCATGGCTGAAGATGCTCTGAACGAGCAGCTCGAGAAGGCCCAGGCCTATATCGTTGATCGCCGCCGTCTGCTGGACGACAAGTTCGAAGACAAGAAGCGCAAACTGCAGCAGGGCGATGACCTGGCTCCAGGCGTGCTGAAAATCGTCAAGGTTTACCTGGCAATCCGTCGTCGCATCCAGCCGGGCGACAAGATGGCCGGTCGTCACGGTAACAAGGGTGTGGTCTCCGTGATCATGCCGGTTGAAGACATGCCGCACGATGCCAATGGCACCCCGGTCGATGTGGTTCTCAACCCGTTGGGCGTACCTTCGCGTATGAACGTTGGTCAGATTCTCGAAACTCACCTGGGCCTCGCGGCCAAAGGGTTGGGCGAGAAGATCAACCGCATGATCGAAGAGCAGCGCAAGGTCGCTGATCTGCGTAAGTTCCTGCACGAGATCTACAACGAGATCGGCGGGCGCAACGAAGAGCTGGACACCTTCTCCGACCAGGAAATCCTGGACTTGGCGAAGAACCTGCGCGGCGGCGTTCCAATGGCTACCCCGGTGTTCGACGGTGCCAAGGAAAGCGAAATCAAGGCCATGCTGAAACTGGCGGACCTGCCAGAAAGCGGCCAGATGCAGCTGTTCGATGGTCGTACCGGCAACAAGTTCGAGCGTCCGGTTACCGTTGGCTACATGTACATGCTGAAGCTGAACCACTTGGTAGACGACAAGATGCACGCTCGTTCTACCGGTTCTTACAGCCTGGTTACCCAGCAGCCGCTGGGTGGTAAGGCGCAGTTCGGTGGTCAGCGTTTCGGGGAGATGGAGGTCTGGGCACTGGAAGCATACGGTGCTGCATACACTCTGCAAGAAATGCTCACAGTGAAGTCGGACGATGTGAACGGCCGGACCAAGATGTACAAAAACATCGTGGACGGCGATCACCGTATGGAGCCGGGCATGCCCGAGTCCTTCAACGTGTTGATCAAGGAAATTCGTTCCCTCGGCATCGATATCGATCTGGAAACCGAATAA	MAYSYTEKKRIRKDFSKLPDVMDVPYLLAIQLDSYREFLQAGATKDQFRDVGLHAAFKSVFPIISYSGNAALEYVGYRLGEPAFDVKECVLRGVTYAVPLRVKVRLIIFDKESSNKAIKDIKEQEVYMGEIPLMTENGTFVINGTERVIVSQLHRSPGVFFDHDRGKTHSSGKLLYSARIIPYRGSWLDFEFDPKDCVFVRIDRRRKLPASVLLRALGYTTEEVLDAFYTTNVFHVQGENLSLELVPQRLRGEIAVLDIQDDKGKVIVEQGRRITARHINQLEKAGIKELQVPMDYVLGRTTAKVIVHPATGEIIAECNTELTVEILAKIVKAQVVRIETLYTNDIDCGPFISDTLKIDSTGNQLEALVEIYRMMRPGEPPTKDAAETLFNNLFFSPERYDLSAVGRMKFNRRIGRTEIEGSGVLNKDDIVAVLKTLVDIRNGKGIVDDIDHLGNRRVRCVGEMAENQFRVGLVRVERAVKERLSMAESEGLMPQDLINAKPVAAAVKEFFGSSQLSQFMDQNNPLSEITHKRRVSALGPGGLTRERAGFEVRDVHPTHYGRVCPIETPEGPNIGLINSLAAYARTNQYGFLESPYRVVKDALVTDEIVFLSAIEEADHVIAQASATMNDKKVLTDELVAVRHLNEFTVKAPEDVTLMDVSPKQVVSVAASLIPFLEHDDANRALMGSNMQRQAVPTLRADKPLVGTGMERNVARDSGVCVVARRGGVIDSVDASRIVVRVADDEVEPGEAGVDIYNLTKYTRSNQNTCINQRPLVSKGDRVQRSDIMADGPSTDMGELALGQNMRIAFMAWNGFNFEDSICLSERVVQEDRFTTIHIQELTCVARDTKLGPEEITADIPNVGEAALNKLDEAGIVYVGAEVGAGDILVGKVTPKGETQLTPEEKLLRAIFGEKASDVKDTSLRVPTGTKGTVIDVQVFTRDGVERDARALSIEKTQLDEIRKDLNEEFRIVEGATFERLRSALVGHKAEGGAGLKKGQEITDEVLDGLEHGQWFKLRMAEDALNEQLEKAQAYIVDRRRLLDDKFEDKKRKLQQGDDLAPGVLKIVKVYLAIRRRIQPGDKMAGRHGNKGVVSVIMPVEDMPHDANGTPVDVVLNPLGVPSRMNVGQILETHLGLAAKGLGEKINRMIEEQRKVADLRKFLHEIYNEIGGRNEELDTFSDQEILDLAKNLRGGVPMATPVFDGAKESEIKAMLKLADLPESGQMQLFDGRTGNKFERPVTVGYMYMLKLNHLVDDKMHARSTGSYSLVTQQPLGGKAQFGGQRFGEMEVWALEAYGAAYTLQEMLTVKSDDVNGRTKMYKNIVDGDHRMEPGMPESFNVLIKEIRSLGIDIDLETE				NA	NA	NA	NA	NA
D1-36_04595	366	rplL		50S ribosomal protein L7/L12	ATGTCTATCTCTCAAAACGATATCCTCGAAGCCGTTGGCAACATGTCCGTAATGGAAGTTGTTGAGCTGATCAAAGCTTTCGAAGAAAAATTCGGTGTTACCGCTGCTGCTGCTTCCGCTGGTCCAGCTGTTGCCGCTGCCGTTGCTGAAGAGCAAACCGAATTCAACGTCATGCTGACCGAAGCTGGCGAGAAGAAAGTAAACGTGATCAAGGCAGTACGTGAACTGACCGGTCTGGGCCTGAAAGAAGCCAAGGCTGTAGTTGACGGCGCTCCTGCCATGGTTCTGGAAGCTGTTGCCAAAGACGCAGCTGACAAAGCCAAAGCAGCACTGGAAGAAGCAGGCGCTAAAGTCGAGCTGAAGTAA	MSISQNDILEAVGNMSVMEVVELIKAFEEKFGVTAAAASAGPAVAAAVAEEQTEFNVMLTEAGEKKVNVIKAVRELTGLGLKEAKAVVDGAPAMVLEAVAKDAADKAKAALEEAGAKVELK				NA	NA	NA	NA	NA
D1-36_04596	501	rplJ	COG0244	50S ribosomal protein L10	GTGGCAATTAAACTCGAAGACAAGAAGGCCATCGTCGCTGAAGTCAACGAGGCTGCCAAAGCTGCTCTGTCCGCTGTCGTGGCTGATGCCCGTGGCGTAACAGTAGGCGCTATGACCGGACTCCGTAAAGAGGCTCGTGAAGCTGGCGTTTACGTACGTGTAGTACGTAACACCCTGCTCAAGCGCGCTGTTGCTGACACTGAATACAGTGTCCTCAACGACGTGTTCACCGGCCCGACCTTGATCGCGTTCTCCACCCAACATCCTGGCGCTGCTGCCCGTTTGTTCAAGGAATTCGCCAAAGGTCAGGACAAGTTCGAGATTAAGGCAGCTGCGTTCGAGGGCAAGTTCCTCGCAGCTAACCAGATCGACGTACTGGCAACTCTGCCGACCCGTGACGAAGCAATCTCCCAGCTGATGAGCGTGATTCAAGGCGCTACCAGCAAGTTGGCTCGTACTCTGGCGGCACTGCGCGACCAGAAAGAAGCTGCCGCAGCCTAA	MAIKLEDKKAIVAEVNEAAKAALSAVVADARGVTVGAMTGLRKEAREAGVYVRVVRNTLLKRAVADTEYSVLNDVFTGPTLIAFSTQHPGAAARLFKEFAKGQDKFEIKAAAFEGKFLAANQIDVLATLPTRDEAISQLMSVIQGATSKLARTLAALRDQKEAAAA				NA	NA	NA	NA	NA
D1-36_04598	696	rplA	COG0081	50S ribosomal protein L1	ATGGCTAAGCTGACCAAGCGTCAAAAGGCTATCGCCGGCAAAATCGAAGCAGGCAAGGCCTACAACTTTGTAGACGCCGCCGCTCTGCTGGCCGAGCTGTCGACTGTCAAGTTCAGCGAGTCGTTCGACGTTGCTGTTAACCTGGGCGTTGACCCACGTAAATCCGACCAGGTCGTACGTAGCGCTACCGTGCTGCCACACGGCACTGGCAAGACTGTTCGTGTTGCCGTGTTCACCCAGGGCCCAGCAGCTGAAGCTGCTCTGGCCGCTGGTGCTGATCGCGTAGGCATGGACGATCTGGCTGCTGAAATGAAAGGCGGCGACCTGAACTATGACGTCGTGATCGCATCCCCGGATGCCATGCGCGTTGTAGGCCAGTTGGGTCAGATCCTCGGTCCACGTGGTCTGATGCCTAACCCTAAAGTCGGCACCGTAACCCCAGACGTAGCCACCGCGGTTAAAAACGCCAAGGCCGGTCAGGTTCGTTATCGCACCGACAAGAACGGCATCATTCACACTTCCGTTGGCAAAATCGGCTTCGACGCCGTCAAGCTGAAGGAAAACGTCGAAGCTCTGATCGCTGATCTGAAGCGCATCAAGCCAGCTTCTTCGAAAGGTATCTACGTCAAGCGCGTTACCCTGAGCACCACTATGGGCCCAGGTCTGATCATCGATCAGAGCTCGCTCGACGCGTAA	MAKLTKRQKAIAGKIEAGKAYNFVDAAALLAELSTVKFSESFDVAVNLGVDPRKSDQVVRSATVLPHGTGKTVRVAVFTQGPAAEAALAAGADRVGMDDLAAEMKGGDLNYDVVIASPDAMRVVGQLGQILGPRGLMPNPKVGTVTPDVATAVKNAKAGQVRYRTDKNGIIHTSVGKIGFDAVKLKENVEALIADLKRIKPASSKGIYVKRVTLSTTMGPGLIIDQSSLDA				NA	NA	NA	NA	NA
D1-36_04599	432	rplK	COG0080	50S ribosomal protein L11	ATGGCCAAGAAGATTACCGCTTACATCAAGCTGCAAGTGAAGGCCGCTCAGGCTAACCCAAGCCCACCTGTTGGTCCTGCACTGGGTCAGCACGGCGTGAACATCATGGAATTCTGCAAGGCTTTCAACGCCCGTACTCAGGGTCTTGAGCCAGGTCTGCCGACTCCAGTGATCATCACTGTCTACAGCGACCGCAGCTTCACTTTCGAAACAAAAAGCACCCCTGCTTCGGTTCTGCTGAAGAAGGCTGCAGGTTTGACCAGCGGTTCCGCTCGTCCAAACACCGTTAAGGTTGGCACCGTTACCCGTGCTCAGCTGGAAGAAATCGCGAAAACCAAAAACGCGGATCTGACTGCAGCTGATATGGATGCAGCCGTGCGTACTATCGCCGGTTCTGCTCGTAGCATGGGCCTTAACGTGGAGGGTGTGTAA	MAKKITAYIKLQVKAAQANPSPPVGPALGQHGVNIMEFCKAFNARTQGLEPGLPTPVIITVYSDRSFTFETKSTPASVLLKKAAGLTSGSARPNTVKVGTVTRAQLEEIAKTKNADLTAADMDAAVRTIAGSARSMGLNVEGV				NA	NA	NA	NA	NA
D1-36_04600	480	nusG	COG0250	Transcription termination/antitermination protein NusG	ATGCGCTCGTTGATAGAGCGTGTGAAGCTGGCAGGCATGGAAGATGGCTTTGGCGAGATTCTGGTTCCCACTGAAGAAGTGGTTGAAATGCGTAATGGCCAGAAGCGCAAAAGTGAACGTAAGTTCTTTCCAGGCTATGTGCTGGTACAGATGGATATGAACGAAGGGACTTGGCACTTGGTCAAGGATACCCCTCGGGTGATGGGCTTTATTGGCGGTACCGCCGACAAGCCGGCGCCGATCACAGATAAAGAGGCGGAAGCGATTCTGCGTCGTGTCGCTGATGGTAGCGACAAGCCGAAGCCGAAGACATTGTTTGAGCCAGGTGAGGTTGTACGCGTCACCGACGGTCCATTCGCTGACTTCAATGGCACGGTTGAAGAGGTTAACTACGAAAAGAGCCGGATTCAGGTCGCGGTGCTCATTTTCGGTCGCTCTACTCCGGTAGAGTTGGAGTTCAGTCAGGTCGAAAAGGTCTGA	MRSLIERVKLAGMEDGFGEILVPTEEVVEMRNGQKRKSERKFFPGYVLVQMDMNEGTWHLVKDTPRVMGFIGGTADKPAPITDKEAEAILRRVADGSDKPKPKTLFEPGEVVRVTDGPFADFNGTVEEVNYEKSRIQVAVLIFGRSTPVELEFSQVEKV				NA	NA	NA	NA	NA
D1-36_04601	369	secE	COG0690	Protein translocase subunit SecE	ATGACTCCTAAAGCTGAAGCTCAAGGCTCTCGCTTCGATCTGCTCAAGTGGCTAGTGGTAGTCGCTTTGGTGGTTGTTGGCGTTGTTGGCAATCAGTATTTTTCTGCTTCGCCGATCCTGTACCGTGTACTTGCATTGCTTGCCATTGCTGCTGTAGCTGCCTTTGTAGGCCTGCAGACAGCCAAGGGCAAGTCTTTCTTTGTACTCGCTAAGGAAGCTCGCACCGAGATTCGTAAAGTCGTATGGCCGACTCGCCAGGAAACCACGCAGACCACGTTGATCGTTGTGGCTGTTGTTTTGGTGATGGCGTTGCTGCTGTGGGGGCTCGATTCCCTGCTCGGTTGGCTTGTTTCCTTGATTGTTGGCTAA	MTPKAEAQGSRFDLLKWLVVVALVVVGVVGNQYFSASPILYRVLALLAIAAVAAFVGLQTAKGKSFFVLAKEARTEIRKVVWPTRQETTQTTLIVVAVVLVMALLLWGLDSLLGWLVSLIVG	PGPT0025715_1300	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0025715-secE-K03073	NA	NA
D1-36_04603	1194	tufA_2	COG0050	Elongation factor Tu-A	ATGGCTAAGGAAAAGTTCGAACGTAATAAGCCGCACGTCAACGTTGGTACCATCGGTCACGTCGACCACGGTAAAACCACGCTGACCGCTGCTCTGACCCGTGTCTGCTCCGAAGTTTTCGGTTCGGCCAAGGTTGACTTCGACAAGATCGACAGCGCCCCGGAAGAGAAAGCTCGCGGTATCACCATCAACACCGCTCACGTTGAATACGATTCGTCCGTGCGTCACTACGCACACGTTGACTGCCCAGGTCACGCCGACTACGTAAAAAACATGATCACCGGTGCTGCCCAGATGGACGGCGCGATCCTGGTTTGCTCGGCCGCTGATGGTCCGATGCCACAAACCCGTGAGCACATCCTGCTGTCCCGTCAGGTAGGCGTTCCGTACATCGTTGTCTTCCTGAACAAGGCTGACATGGTTGACGACGCTGAGCTGCTGGAACTGGTTGAGATGGAGGTGCGCGACCTGCTGAGCACTTACGACTTCCCAGGTGATGACACTCCGATCATCATCGGTTCGGCTCTGATGGCTCTGAACGGCCAAGACGACAACGAAATGGGCACCACTGCTGTCAAGAAGCTGGTGGAAACTCTGGACAGCTACATCCCAGAGCCAGAGCGTGCTATCGACAAGCCGTTCCTGATGCCAATCGAAGACGTGTTCTCGATCTCCGGTCGCGGTACTGTTGTGACTGGTCGTGTTGAGCGTGGCATCGTCCGTATCCAGGAAGAAGTTGAGATCGTCGGTCTGCGCGACACTCAGAAAACTACCTGCACCGGCGTTGAAATGTTCCGCAAGCTGCTCGACGAAGGTCGTGCTGGCGAGAACTGCGGCGTACTGCTGCGCGGCACCAAGCGTGACGACGTTGAGCGTGGCCAGGTTCTGGTCAAGCCAGGCACCGTCAAGCCGCACACCAAGTTCACCGCAGAAGTCTACGTTCTGAGCAAGGAAGAAGGCGGTCGTCACACTCCGTTCTTCAAAGGCTACCGTCCACAGTTCTACTTCCGTACAACTGACGTGACTGGTAACTGCGAGCTGCCAGAAGGCGTTGAAATGGTAATGCCAGGTGACAACATTCAGATGACTGTCACTCTGATCAAGACCATCGCAATGGAAGACGGCCTGCGTTTCGCTATCCGTGAAGGCGGTCGTACCGTCGGCGCTGGCGTCGTAGCCAAAGTCATCGAGTAA	MAKEKFERNKPHVNVGTIGHVDHGKTTLTAALTRVCSEVFGSAKVDFDKIDSAPEEKARGITINTAHVEYDSSVRHYAHVDCPGHADYVKNMITGAAQMDGAILVCSAADGPMPQTREHILLSRQVGVPYIVVFLNKADMVDDAELLELVEMEVRDLLSTYDFPGDDTPIIIGSALMALNGQDDNEMGTTAVKKLVETLDSYIPEPERAIDKPFLMPIEDVFSISGRGTVVTGRVERGIVRIQEEVEIVGLRDTQKTTCTGVEMFRKLLDEGRAGENCGVLLRGTKRDDVERGQVLVKPGTVKPHTKFTAEVYVLSKEEGGRHTPFFKGYRPQFYFRTTDVTGNCELPEGVEMVMPGDNIQMTVTLIKTIAMEDGLRFAIREGGRTVGAGVVAKVIE	PGPT0015245_1782	DIRECT EFFECT	PLANT_IMMUNE_RESPONSE_STIMULATION	TRIGGERED_IMMUNITY	PAMP|EFFECTOR_TRIGGERED_IMMUNITY|PTI	PTI-BACTERIAL_EF-TU,PGPT0015245-elf18|tuf|tufA-K02358	NA	NA
D1-36_04607	456			hypothetical protein	ATGCGGTGGCTGTTTCTGTTGTTACTGGTTCTGAATGGCTTCTACTATGTCTGGCATCAGCAGGAGGCCCCGCTGCGGGCCAAGGATGTAACGCCACTGAGCTTGTATCGCGGCTCGCAGCAGGATATTCATCTTCTGAGTGAAACGGCGGATTCGCTTGTCAGGCGTGATTTCGGCAAGTCCGGAGAGGTGCGCAAGAATTGTAATTATCTAGGCGGTTTTGCTCGTGCTGAGCTGGCCAGGCAGCTGGAGCAGCGATTGGTTTCGTTGGGCGTGATGGGGCGTACATCTGTGCTGAGCTCCGAAGGTGCACCTGAGGGCGGAGGATTTTGGGTCCAGGTTGTTCCTGAAAGCGCAGGAAAGGTTAATGAAGGGTTGGTTCAAAACCTTTCTAAAGAATTCAATGAGTTAAAACATAAAATAATGCCATGCGAAGGGGTTGCGCCTGCTGGGTAG	MRWLFLLLLVLNGFYYVWHQQEAPLRAKDVTPLSLYRGSQQDIHLLSETADSLVRRDFGKSGEVRKNCNYLGGFARAELARQLEQRLVSLGVMGRTSVLSSEGAPEGGGFWVQVVPESAGKVNEGLVQNLSKEFNELKHKIMPCEGVAPAG				NA	NA	NA	NA	NA
D1-36_04608	750	coaX	COG1521	Type III pantothenate kinase	ATGATTCTTGAGCTCGATTGCGGCAACAGTTTTATCAAATGGCGGGTTCTTTGCTCCGACGGTGTTACGCCTGTTGAAGGTGGTGTGGTCGGTTCCGATGATGATCTGCTCGCCAGCCTGAGCGATGCCCAGAGGTTTCAGCTAAAGAAATGCCGTCTGGTCAGCGTCAGGACGCCCGAGGAAACTGACTCGTTGGTCGCTTCCTTGACACAGACCTTCGGGGTGTCCGTGGTACGTGCCGTACCGGCTCGAGAAATGGCAGGCGTGACAAATGGTTACGAAGAGTACGATCGGTTAGGTCTTGATCGTTGGCTTGCCTTGCTTGGCGGTTTCCATCTCGCTTCCGGCGCTTGCCTGGTGCTCGATTTTGGCACGGCCGTTACAGCCGACTTCGTCGCGGCGGACGGTGAGCATCTAGGGGGGTTCATTTGTCCGGGCATGCCTTTGATGCGCAACCAGTTGCGTACCCATACTCGGCGAATTCGCTACGATGACACTGCTGCCGAGCGAGCGCACGAGACTCTTGCTCCGGGAAGGGCGACGGTCGAGGCGGTTGAGCGCGGTTGTATGCTGATGCTCAGAGGTTTCGTCCTGACCCAGCTTGAATTGGCGCGGCAATACTGGGGGCAGGATTTCGAGGTGTTTTTAACGGGAGGGGACGCCAGTCTGGTTGTTGGGGTTGTACCGCAAGCCAAGGTTGCGCCTGACCTGGTTTTTGTTGGCTTGGCGATGGCTTGTCCTTTGTCTTGA	MILELDCGNSFIKWRVLCSDGVTPVEGGVVGSDDDLLASLSDAQRFQLKKCRLVSVRTPEETDSLVASLTQTFGVSVVRAVPAREMAGVTNGYEEYDRLGLDRWLALLGGFHLASGACLVLDFGTAVTADFVAADGEHLGGFICPGMPLMRNQLRTHTRRIRYDDTAAERAHETLAPGRATVEAVERGCMLMLRGFVLTQLELARQYWGQDFEVFLTGGDASLVVGVVPQAKVAPDLVFVGLAMACPLS	PGPT0008780_2390	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,PGPT0008780-coaX-K03525	NA	NA
D1-36_04609	957	birA	COG0340	Bifunctional ligase/repressor BirA	ATGCTCACGTTGTTAAAACTTCTGAAGGATGGTCGTTTCCATTCAGGCCAGGCACTAGGTGCCGGGCTGGGCATCAGTCGCAGTGCTGTCTGGAAGCAATTGCAGCATCTGGAGGCCGAGTTGGGATTGTCTGTTCATAAAGTTAGAGGCAAGGGGTATCAGTTGGCTAGGCCGCTGTCACTTTTGGATGCTGCGAAAATCTGCGCGAAAGAAGGCCTTGATTGGCCTGTCTATATCCATGACTCCATCGACTCTACTAATGCCGAAGCGTTGCGTTCCATAGAGCGCGGAGTGGATGCGCCATTCTTGGTCTTGGCTGAGCGGCAGCTCGCTGGGCGCGGTCGTCGTGGCCGTAAGTGGGTCAGTCCGTTCGCTGCCAATCTTTATTACAGTCTGGTCTTGCGCATTGATGGCGGTATGCGGCAAATCGAAGGGCTGAGTCTCGTCGTTGGGCTCGCTGTCATGCATGCGCTTCGTGATTTTGGAATCGCTGAGGCTGGGTTGAAATGGCCCAACGATGTGTTGGTGGGCAACAAAAAAATTGCCGGTATCTTGCTCGAATTAGTGGGTGATCCGGCGGACGTCTGTCATGTCGTCCTGGGTGTCGGGGTCAACGTGAATATGCAATCAACTGACGAGGTTGATCAGCAGTGGACGTCCATGAGCCTAGAGGCAGGCCGTGTATTTGATCGTAACGATCTTGTGGTCCATATGAGCGCGAAGCTTCAACAGTACCTCGAGTTGCATCATGCGTCGGGGTTTGCGGCGATCCAGCTGGAGTGGGAAAACTATCATTTATGGCAGGGCCGTGCCGTTTCGCTAATTGCGGGTGTGAACCAGATTGACGGCGTAGTGATGGGCATTGACCACCAGGGAGCGCTGCGTTTGAAGGTGGATGGTGTGGAAAAGAGCTTTAGCGGCGGTGAGCTCAGTTTGAGGTTGCGTGATGATTCTTGA	MLTLLKLLKDGRFHSGQALGAGLGISRSAVWKQLQHLEAELGLSVHKVRGKGYQLARPLSLLDAAKICAKEGLDWPVYIHDSIDSTNAEALRSIERGVDAPFLVLAERQLAGRGRRGRKWVSPFAANLYYSLVLRIDGGMRQIEGLSLVVGLAVMHALRDFGIAEAGLKWPNDVLVGNKKIAGILLELVGDPADVCHVVLGVGVNVNMQSTDEVDQQWTSMSLEAGRVFDRNDLVVHMSAKLQQYLELHHASGFAAIQLEWENYHLWQGRAVSLIAGVNQIDGVVMGIDHQGALRLKVDGVEKSFSGGELSLRLRDDS	PGPT0022055_1823	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
D1-36_04615	1200	tyrS	COG0162	Tyrosine--tRNA ligase	ATGAAGTCGGTTGAAGAGCAGCTAGCGCTGATCAAACGTGGTGCGGAAGAACTGTTGGTCGAGTCCGAGCTGATCGAAAAGCTCAAGCGCGGGCAGCCGCTGCGCATCAAGGCTGGTTTCGATCCGACGGCGCCTGACCTGCACCTTGGCCATACCGTGCTTATCAATAAGCTGCGCCAGTTCCAGGACTTTGGGCACCAGGTCATCTTTCTTATAGGTGACTTCACCGGGATGATCGGTGATCCGAGCGGGAAGAGCGCGACACGCCCACCGTTGACCCGTGAGCAGGTTCTCGACAACGCGGAAACCTACAAGACTCAGGTTTTCAAGATTCTTGACCCCGCCAAGACTGAGGTGGCTTTCAACTCTAGTTGGATGGATCAGATGGGGCCGGCTGATTTCATTCGCCTGACTTCCCAATACACTGTCGCTCGCATGCTCGAGCGTGATGATTTCGACAAGCGCTACACAACCAACCAGCCAATCGCCATTCATGAGTTTCTCTACCCGCTCGTACAGGGTTACGACTCGGTCGCGTTGCGCGCGGACGTTGAGCTTGGCGGAACCGACCAGAAGTTCAATCTGCTGATGGGGCGTGAGCTGCAGCGCGGTTATGGCCAAGAGGCTCAGTGCATCCTGACCATGCCTTTGCTGGAAGGGCTCGATGGCGTGAAGAAGATGTCCAAGTCCCTGGGCAACTACGTCGGCATCCAGGAAGCGCCAGGCGTCATGTATGGCAAATTGGTCTCTATTCCTGATGTTCTGATGTGGCGTTATTTCGAGCTGTTGAGTTTCCGGTCCATGGACGAGATCAATGGGTTCCGTGCGGATGTGGAGGCTGGGGCGAATCCGCGTGACATCAAGATCAAGTTGGCCGAGGAAATCGTTGCGCGTTTCCATGGTGAGGAGGCTGCGGCCAATGCTCATCGTGCAGCAGGTAATCGCATGAAAGATGGTGAGTTGCCGGATGATTTGCCTGAGGTCGAGTTGATCGCCGCTGAGGATATGCCGATCGCTGCGGTGCTTAATAAGGCAGGTTTGGTCAAGAATGCCGCAATGGCGCGGGACCTCCTGGGTTCGGGAGGTGTGCGTATAGATGGTGAGGTGGTGGATCGCACCTACATATATAAGCTGGGTTCTACCCATGTGTGCCAGGCCGGCAAGAAGGCTTTCGCACGTATTACGCTGAAATCTACGTAA	MKSVEEQLALIKRGAEELLVESELIEKLKRGQPLRIKAGFDPTAPDLHLGHTVLINKLRQFQDFGHQVIFLIGDFTGMIGDPSGKSATRPPLTREQVLDNAETYKTQVFKILDPAKTEVAFNSSWMDQMGPADFIRLTSQYTVARMLERDDFDKRYTTNQPIAIHEFLYPLVQGYDSVALRADVELGGTDQKFNLLMGRELQRGYGQEAQCILTMPLLEGLDGVKKMSKSLGNYVGIQEAPGVMYGKLVSIPDVLMWRYFELLSFRSMDEINGFRADVEAGANPRDIKIKLAEEIVARFHGEEAAANAHRAAGNRMKDGELPDDLPEVELIAAEDMPIAAVLNKAGLVKNAAMARDLLGSGGVRIDGEVVDRTYIYKLGSTHVCQAGKKAFARITLKST				NA	NA	NA	NA	NA
D1-36_04616	1407			hypothetical protein	ATGACCTCAGAACCGTCTAAAGCGCCGCCGCTTTACCCGAAGACCCACCTGCTTGCTGCAAGTGGCATCGCAGCCCTCCTTAGCCTGGCGCTCCTGGTGTTTCCCTCCAGCGATGTTGAAGCCAAAAAGACGACTTTGAGTCTCGAACTGGAAAGCCCTGCTGAACAACTGACACAAGAACAAGACGCCGCCGAAGCCGTTCAGGCCACAAACGAACCGGCCGCCTCTCCTTTTGCGCAGATTGAAAACAGCCCGGAAGATACTGCCCAGGCTGCAGCACCTGTCGCAGAAGAACAGAAAGGACCGGACCATCGCGAAGTGATCGTTGCGAAAGGCGACACGCTCTCTACCCTTTTTGAAAAGGTCGGCCTGCCCCCGACTGCCGTCCATGAAATCCTGGCCAGCGACAAGCAAGCCAAACAATTCGCCCAACTGCAACGCGGCCAGAAGCTGGAATTCGAACTCGATCCAGAAGGCCAACTGACCAACCTGCACACCAAGCTGAGCGATCTGGAAACCATCACCCTGACCAAGAACGACAAGGGTTATGTGTTCAACCGCGTCACCGCCAAACCTACCGTTCGCTCAGCCTACGTTCATGGCGTCATCAACAGTTCGTTGTCTCAGTCGGCAGCGCGCGCCGGCCTTTCCCATAGTCTGACCATGGACATGGCCAATGTGTTTGGCTACGACATCGACTTTGCCCAGGACATTCGCCAGGGTGACGAATTTGACGTCATCTATGAACAGAAGATGGTTAATGGGAAGAGCGTCGGCAACGGCCCGATTCTTTCCGCGCGCTTCACCAACCGTGGAAAAACCTACACCGCGGTGCGCTACACCAACAAACAAGGCAATAGCAGTTACTACACCGCCGACGGCAACAGCATGCGCAAGGCATTCATCCGCACACCGGTTGATTTCGCCCGCATCAGCTCGAAGTTTTCCGCCGGTCGCAAGCATCCGATCCTGAACAAGATCCGCGCCCACAAAGGTGTCGATTACGCCGCTCCTCGCGGTACGCCAATCAAGGCTGCCGGTGATGGAAAGGTACTGCTGGCCGGACGTCGCGGCGGGTATGGCAATACGGTGATCATCCAGCACGGCAATACCTATCGCACGCTGTACGGTCACATGCAGGGCTTTGCCAAAGGCGTGAAAACGGGCGGCACCGTCAAGCAAGGCCAAGTCATCGGCTATATTGGCACCACCGGCCTGTCCACCGGTCCGCACTTGCATTATGAGTTCCAGGTCAACGGCGTCCACGTCGACCCGCTTGGCCAGAAATTGCCGATGGCCGATCCGATTGCCAAGGCCGAGCGCACGCGCTTCCTGGCTCAGAGCCAACCCTTGATGGCTCGCATGGATCAAGAGAAAGCCACGATGCTAGCCTCGAGCAAGCGCTAA	MTSEPSKAPPLYPKTHLLAASGIAALLSLALLVFPSSDVEAKKTTLSLELESPAEQLTQEQDAAEAVQATNEPAASPFAQIENSPEDTAQAAAPVAEEQKGPDHREVIVAKGDTLSTLFEKVGLPPTAVHEILASDKQAKQFAQLQRGQKLEFELDPEGQLTNLHTKLSDLETITLTKNDKGYVFNRVTAKPTVRSAYVHGVINSSLSQSAARAGLSHSLTMDMANVFGYDIDFAQDIRQGDEFDVIYEQKMVNGKSVGNGPILSARFTNRGKTYTAVRYTNKQGNSSYYTADGNSMRKAFIRTPVDFARISSKFSAGRKHPILNKIRAHKGVDYAAPRGTPIKAAGDGKVLLAGRRGGYGNTVIIQHGNTYRTLYGHMQGFAKGVKTGGTVKQGQVIGYIGTTGLSTGPHLHYEFQVNGVHVDPLGQKLPMADPIAKAERTRFLAQSQPLMARMDQEKATMLASSKR				NA	NA	NA	NA	NA
D1-36_04617	1092	anmK	COG2377	Anhydro-N-acetylmuramic acid kinase	ATGGCGCTTTATATCGGTGTGATGTCCGGGACCAGCCTGGATGGCTTGGATATCGCACTGGTCGAACTGGACCCGGCGATCAAATTGATCGCCACCCACTACATCCCCATGCCCACCGCCCTGCGCACCGAGCTGCTCGAATTGTGCACCAGCGGGCCCGACGAGATTGCTCGCTCGGCGATTGCCCAGCAAAACTGGGTAAAGCTGGCCGCACAGGGCATACACGCCTTACTCAACGAACAGAAACTCAAGCCGGCGGACATCACGGCAATTGGCAGCCATGGCCAGACCATTCGCCATGAGCCGGCCCGTGGATTTACCGTGCAGATCGGCAATCCAGCATTGCTGACTGAGTTGACCGGCATCACCGTCGTTAGCGATTTCCGCAGCCGTGATGTGGCTGCTGGCGGACAAGGCGCCCCACTCGTTCCTGCGTTTCACGAGGCGCTGTTTGAAGAGCGAGTCGGAAATCGCGCCGTTCTGAACGTCGGCGGCTTCAGCAATCTCAGCCTGATAGAGCCCGCGAAACCCGTAGCCGGTTTCGACTGCGGTCCGGGGAACGTATTGCTCGATGTCTGGATACTTCAACAACGAGGCGAGCACTTCGATCGCGATGGCCAATGGGCCGCCAGCGGGAAAGTCGAACCAGTCCTGCTGAAGACCCTGCTCAGCGACCCGTTCTTCGTCACCAAGGGGCCGAAAAGCACTGGGCGTGAAGTCTTCAACTTGCCTTGGCTGACCCGGCATCTGTCGCAGCTGCCAGGCATCGCCCCGCAAGACGTACAGGCCACGCTGCTCGAACTCACTGCCCTGACGATTGTTGAATCACTGCAACATGCCCAGTCAAATACCCAAGAGTTGTTGGTCTGCGGCGGCGGCGCGCACAACCACACGCTCATGAAGCGCCTGGCTGACTTGCTGCCGCATGCTACCGTCAACAGTACTGCAGTTTACGGCGTTGATCCGGATTGGGTCGAAGCCATGGCCTTCGCCTGGCTTGCCCATTGCTGCCTTGGCGGTATTCCAGGCAATCGCCCAAGCGTCACAGGCGCCCGCGGCCTGCGCGTTCTCGGCGCTATCTACCCGGCCTGA	MALYIGVMSGTSLDGLDIALVELDPAIKLIATHYIPMPTALRTELLELCTSGPDEIARSAIAQQNWVKLAAQGIHALLNEQKLKPADITAIGSHGQTIRHEPARGFTVQIGNPALLTELTGITVVSDFRSRDVAAGGQGAPLVPAFHEALFEERVGNRAVLNVGGFSNLSLIEPAKPVAGFDCGPGNVLLDVWILQQRGEHFDRDGQWAASGKVEPVLLKTLLSDPFFVTKGPKSTGREVFNLPWLTRHLSQLPGIAPQDVQATLLELTALTIVESLQHAQSNTQELLVCGGGAHNHTLMKRLADLLPHATVNSTAVYGVDPDWVEAMAFAWLAHCCLGGIPGNRPSVTGARGLRVLGAIYPA				NA	NA	NA	NA	NA
D1-36_04618	351	erpA	COG0316	Iron-sulfur cluster insertion protein ErpA	ATGAGCGTCGAAACCTTCACCCCCACGGCTTTGCAATTCACCCAAGGTGCCGCGCACAAGGTGAAGAGCCTGGTCGATGAAGAGGGCAATGATCGTTTGAAGCTGCGCGTATTTGTAACGGGCGGCGGTTGTTCAGGTTTCCAGTACGGCTTCACTTTTGATGAAGAAGTGGCTGAGGATGACACCATTGTCGAGCGCGAAGGCGTGAGCCTGGTGGTCGATCCGATGAGCTTCCAGTATCTGGCCGGGGCCGAGGTGGATTACCAGGAGGGCCTGGAAGGGTCGCGTTTCGTGATCAAGAATCCAAACGCTACCACTACTTGTGGCTGCGGCTCTTCATTCTCGATCTGA	MSVETFTPTALQFTQGAAHKVKSLVDEEGNDRLKLRVFVTGGGCSGFQYGFTFDEEVAEDDTIVEREGVSLVVDPMSFQYLAGAEVDYQEGLEGSRFVIKNPNATTTCGCGSSFSI				NA	NA	NA	NA	NA
D1-36_04619	1035	argC	COG0002	N-acetyl-gamma-glutamyl-phosphate reductase	ATGGTCAAGGTCGGTATTGTCGGCGGCACGGGTTACACCGGTGTCGAACTGCTGCGTCTGCTGGCACAGCATCCGCAGGTTGAGGTAGTGGTCATCACCTCCCGATCCGAGGCCGGCCTGGCCGTCGCCGACCTGTATCCGAACCTGCGTGGTCATTATGATGGCCTGGCATTCAGTGTTCCGGATATCAAGACCCTTGGCGCCTGCGATGTGGTGTTCTTCGCCACCCCCCACGGCGTGGCTCACGCGCTGGCAGGCGAATTGCTCGCCGCCGGAACCAAGGTCATCGATCTGTCAGCGGACTTTCGCCTGCAGGACGCCGACGAATGGGCCAAGTGGTACGGCCAGCCTCACGGCGCGCCGGAGCTGCTTGACGAGGCGGTCTATGGGCTGCCGGAAGTCAATCGGGAGAAAATCAGGCAGGCACGGCTGATCGCTGTCCCTGGTTGCTACCCGACTGCAACGCAACTGGGGTTCCTGCCGCTGCTGGAAGCCGGCCTTGCAGATACCTCGCGGCTGATTGCCGACTGCAAGTCCGGTGTCAGCGGTGCCGGGCGTGGCGCCAGTGTCGGTTCGCTGTATTCCGAAACGTCGGAAAGCATGAAGGCCTACGCGGTGAAGGGGCACCGCCACCTGCCGGAGATTCGCCAAGGGTTGCGCCGGGCAGCGGGCAAGGATGTCGGCCTGACCTTCGTGCCGCACCTGACACCGATGATACGTGGTATCCATTCCACCCTGTATGCGACCGTCGTCGACCGTTCGGTGGACCTGCAGGCGTTGTTTGAAAAGCGTTACGCCAATGAGCCGTTTGTCGACGTAATGCCCGCCGGCAGCCACCCTGAGACCCGCAGCGTGCGTGGTGCGAACGTTTGCCGGATTGCCGTGCATCGTCCGCAGGATGGCGACCTGGTAGTGGTATTGTCGGTCATCGACAACTTGGTCAAGGGTGCGTCCGGCCAGGCAGTGCAGAACCTGAACATCCTGTTCGGCCTGGATGAACGCCTGGGCCTGTCCCACGCAGGGATGTTGCCGTAA	MVKVGIVGGTGYTGVELLRLLAQHPQVEVVVITSRSEAGLAVADLYPNLRGHYDGLAFSVPDIKTLGACDVVFFATPHGVAHALAGELLAAGTKVIDLSADFRLQDADEWAKWYGQPHGAPELLDEAVYGLPEVNREKIRQARLIAVPGCYPTATQLGFLPLLEAGLADTSRLIADCKSGVSGAGRGASVGSLYSETSESMKAYAVKGHRHLPEIRQGLRRAAGKDVGLTFVPHLTPMIRGIHSTLYATVVDRSVDLQALFEKRYANEPFVDVMPAGSHPETRSVRGANVCRIAVHRPQDGDLVVVLSVIDNLVKGASGQAVQNLNILFGLDERLGLSHAGMLP	PGPT0014251_1672	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014251-argC-K00145	NA	NA
D1-36_04620	432			hypothetical protein	ATGCTCTATCTGTGGCTCAAAGCACTTCACATCGTCAGCATGGTCTGCTGGTTTGCCGGCCTGTTCTATCTGCCTCGCCTGTTTGTCTATCACGCCCAAAGCGAAGACAGCGTCAGCAAGGAACGCTTCAGCATCATGGAACGCAAGTTGTATCGCGGCATCATGGGTCCGGCGATGATCGCTACCCTGGTGTTTGGCATCTGGCTGCTCAGCCTTAACGCCGGCGCCTACTTCACTCAAGGCGGCTGGATGCACGCCAAGCTCACCCTGGTGGTATTACTGATCGGTTATCACCACATGTGTGGAGCCCAGGTGAAGCGCTTCGCCCGTGGCGAAAACACCCGCAGCCATGTCTTTTATCGCTGGTTCAATGAAATACCGGTCGTGATATTGCTGGCTATCGTAATTCTCGTCGTGGTCCAGCCGTTCTGA	MLYLWLKALHIVSMVCWFAGLFYLPRLFVYHAQSEDSVSKERFSIMERKLYRGIMGPAMIATLVFGIWLLSLNAGAYFTQGGWMHAKLTLVVLLIGYHHMCGAQVKRFARGENTRSHVFYRWFNEIPVVILLAIVILVVVQPF	PGPT0008480_1275	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008480-hemJ-K08973	NA	NA
D1-36_04621	969			hypothetical protein	ATGTCACTGCCCGCCTTGCTTGAACAACGTCTGCGGCTGCCCGTCGTGGCAGCACCCATGTTTCTCATTTCCAACCCCCAATTGGTGCTGGCCTGCTGTCGCAACGGTGTAGTCGGCAGCTTTCCGGCCTTGAACCAACGCGAGAGCAGCGGCTTCAAGGCGTGGTTGGAAGAAATCGAAGCGGGCTTGGCCAATCTGGAAAACCCGGCCCCCTACGCGGTCAATCTGATCGTTCATAACAGTAATCCACGGCTTCAGGCCGACCTGGCGATCTGCATCGAACACAAGGTGCCGATCGTCATCACCAGCCTGGGCGCAGTGAAAGAACTGGTCGATGCGGTCCATGGCTATGGCGGACTGGTCTTCCACGATGTGACGACTCGCCGCCATGCCGAAAAAGCCGCCGAAGCAGGCGTCGACGGCCTGATTGCCGTCGCGGCCGGTGCGGGTGGGCATGCCGGGACCTGGAGCCCGTTCGCACTGGTTGCGGAAATCCGGCAATTCTTTGATAAAACCCTACTACTCGCAGGATGCTTGAACCACGGTCATCAGATCCTGGCGGCTCAATTGCTCGGCGCGGATCTGGCCTACTTCGGAACGCGCTTTATCGGCACGATCGAAAGTCACGCGTCCGACGCTTATAAAGAGATGTTGCTCACATCCAAAGCCGCGGACATCGTGCATACTCCCGCTGTATCTGGAGTGCCGGCCAGTTTCATGCGCCAGAGCCTGGAAAGTGCCGGCTTCGACCTGGCGGCCCTGCAAGGCAAGGGTGCGTCGGGCTCCGATTCGAAACTCAAACCGCTCAATGATGAAGCCAAGGCCTGGAAAACCGTATGGTCCGCAGGTCAAGGCGTGGGCGAGATCGATGATTTGCCAAGCGTCGACCAACTGATCGCACGCCTGGATGAAGAATACCGCCAGGCGCAAGCGCGGGCGGCACAGCTTGGCGGCCAATGGCCCCGCTGA	MSLPALLEQRLRLPVVAAPMFLISNPQLVLACCRNGVVGSFPALNQRESSGFKAWLEEIEAGLANLENPAPYAVNLIVHNSNPRLQADLAICIEHKVPIVITSLGAVKELVDAVHGYGGLVFHDVTTRRHAEKAAEAGVDGLIAVAAGAGGHAGTWSPFALVAEIRQFFDKTLLLAGCLNHGHQILAAQLLGADLAYFGTRFIGTIESHASDAYKEMLLTSKAADIVHTPAVSGVPASFMRQSLESAGFDLAALQGKGASGSDSKLKPLNDEAKAWKTVWSAGQGVGEIDDLPSVDQLIARLDEEYRQAQARAAQLGGQWPR	PGPT0006800_3268	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
D1-36_04622	960			hypothetical protein	ATGAGCGAAAACCGCTTCAACATTGTATTCGACGGGGCTTTGCTGCCTGGCGTCGATACAACTACCGCCAAGCTCAATCTCGCCGAACTGTTCAAAAGCGATGTCAGTGCCATAGAACGTCTGTTCAGCGGTCGCAAAGTGTCCCTGAAGCACAACCTCTCCCAGAATGAAGCGCAGCAGTATCTGGAAGCGCTCCATAAAACCGGGATCGATGCACGGATCGAAACGGAACCGTCCCTCCAACTGAACCTTGGCGAAGTGCAGGAATCGCCCCAGTCGAGTGCGCGTCATCCCGAGTCGGTCATCGACCCAGTCTCTCCCTACGCGCCTCCCCGGGCACAGGTAGGTGAAGCATTCGCCGAGTACGGCACGCTCAAGCCCTTCAGTTTCGAAGGCCGTATCGGGCGCCTGCGCTACCTGGCATGGACCATGGTTTTGACTCTGGCCGTCCTGCCGCTGGTCGGCCTGGGATTCTGGCTCGCCACGACCTGGCTGCTCGCTTCCGATTCGATAGCGGGGCTGATCGTCGGCGGCCTGGTCGCTGCCGTGGTTGTGCTGGCTTTTGCCTTCGTGAGTATCCAGTTCAACGTCCAGCGCCTGCATGACCTCGGCTGGTCAGGTTGGTTGTGGCTGATCAACCTCGTGCCTTTCGTGGGCAGTATTTTCCCGTTCATCCTCATCATCGCCCCGGGCAATACCGGCGCAAACCAATACGGCCCACCTCCGCCACGCAATACCACGGCAGTCAAAGTACTTGCGTCGCTCTGGCTGGTGATGATCGTGTTGATTTTCATGGCCACGTTTGCCGGCATCTTCGGAGCCCTCCAGGATTACGACAGCAGCGACGTAAGCAGCTATGAGAGCAGCGAATACAGCGACCAGAGCGCCGAAGAACCCGCCGTCGAGGCAGCCGAGCCCGCCTCGCCTTCTGTAGACTATCAAGAAGAAGAGGAACAATAA	MSENRFNIVFDGALLPGVDTTTAKLNLAELFKSDVSAIERLFSGRKVSLKHNLSQNEAQQYLEALHKTGIDARIETEPSLQLNLGEVQESPQSSARHPESVIDPVSPYAPPRAQVGEAFAEYGTLKPFSFEGRIGRLRYLAWTMVLTLAVLPLVGLGFWLATTWLLASDSIAGLIVGGLVAAVVVLAFAFVSIQFNVQRLHDLGWSGWLWLINLVPFVGSIFPFILIIAPGNTGANQYGPPPPRNTTAVKVLASLWLVMIVLIFMATFAGIFGALQDYDSSDVSSYESSEYSDQSAEEPAVEAAEPASPSVDYQEEEEQ				NA	NA	NA	NA	NA
D1-36_04623	789			hypothetical protein	ATGACCCGTTACGCTCTGATCACTGGCGCCTCCAGTGGTATCGGCCTGGCCATGGCCGAAGCACTGGCTCGGCGCGGGCGCAACCTGTTACTGGTAGCTCGACAGCGCGATCGGCTGGAAAGCATTGCGATCGAACTGACCCAACGATTTGGCGTGGAGGTTTTGTTTCGAGCCTGCGACCTGAGCGAGCCCCTGCGACTTTCAGGTTTCCTGCTCGAGCTGGAGGAAGGTGAACGCCAGATCGACCTGCTGGTCAACTGCGCCGGCATCAGCACCTGCGGTCCGTTCCTGGGCCAGGACTGGATGACCGAGCAAGACCTGATCGAGGTGAACATCCTTGCCCTGACCCGCCTTTGTCATGCCGTAGGCAATAGCATGGCGTTGCACGGAGGCGGTCAGATTCTCAACGTTGCTTCTATCGCAGCGTTCCAGCCTGGCCCCTGGATGAGCACCTATCACGCCAGCAAAGCCTATGTATTGCACTTCTCCGAAGCCCTTCGAATAGAGCTGAAGAAATACGCAATCAACGTATCCGTACTTTGCCCAGGCCCCACCCAGACTGCCTTTTTTAGCAAGGCCCAGCCCGACGGGAAGACGCTGCGCAGCACTAGCAACTCGATGCCCCCTGAGGAGGTCGCGCTGTACGCCGTCCGCGCACTGGAAAGAAACCGGGCCATCATCATTCCTGGGCGCCGCAATCGCTGGATTGCCCTGCTGCCACGACTCGGGCCGCGCTGGCTGGTTCGAATCCTCGCCGGCAGATCCAACAGAGCCTGTTACGCACGTTGA	MTRYALITGASSGIGLAMAEALARRGRNLLLVARQRDRLESIAIELTQRFGVEVLFRACDLSEPLRLSGFLLELEEGERQIDLLVNCAGISTCGPFLGQDWMTEQDLIEVNILALTRLCHAVGNSMALHGGGQILNVASIAAFQPGPWMSTYHASKAYVLHFSEALRIELKKYAINVSVLCPGPTQTAFFSKAQPDGKTLRSTSNSMPPEEVALYAVRALERNRAIIIPGRRNRWIALLPRLGPRWLVRILAGRSNRACYAR	PGPT0030485_2504	PUTATIVE	PGPT	PUTATIVE_PGPTs	PUTATIVE_FUNCTIONS	PUTATIVE_FUNCTIONS-1	PUTATIVE-OXIDOREDUCTASE_ACTIVITY	PUTATIVE-OXIDOREDUCTASE_ACTIVITY-1,PGPT0030485-yqjQ-K07124
D1-36_04624	339		COG0537	Purine nucleoside phosphoramidase	GTGGATACTCTGTTTACCAAGATCATCAACCGGGAAATCCCGGCCAGGATCATTTACGAGGATGATCAGGTCCTGGCCTTCCATGACATTGCCCCACAGGCTCCGGTGCACTTCCTGGTCATTCCGAAAAAGCCGATCCGAACCCTCAACGACCTGACCGAGGAAGACAAGGGACTGGCCGGGCACATCCTGTTCACCGCCCAGCGCCTGGCGCTCGAACTTGGCTGCGAGGAAGGCTTCCGCGTGGTGATGAACTGTAATGAACTTGGCGGGCAGACTGTCTATCACATCCATATGCACGTGCTGGGACAGCGCCAGATGAACTGGCCGCCGGGTTGA	MDTLFTKIINREIPARIIYEDDQVLAFHDIAPQAPVHFLVIPKKPIRTLNDLTEEDKGLAGHILFTAQRLALELGCEEGFRVVMNCNELGGQTVYHIHMHVLGQRQMNWPPG				NA	NA	NA	NA	NA
D1-36_04625	648	coq7	COG2941	3-demethoxyubiquinol 3-hydroxylase	ATGACTACCCAACGTCACTACTCGCCCATTGACCGTCTGTTGCTGCAGGCCGATACCGCGATGCGCACGCTGCTGCCTTTCAGTGGCCAACCGTACCGCCCATCACCGGCAATCGTGCAGCCGGAAGTGCAGATGAGCGATGAAGAGACTCGCCATGTCGCTGGGCTGATGCGCATCAACCACACCGGCGAAGTGTGCGCCCAGGCCCTATACCAGGGCCAGGCGCTGACGGCGAAACTGCCGCAGGTCCGGGAGGCGATGGAACAGGCCGCCGAGGAAGAAATCGATCACCTGGTCTGGTGCGAGCAACGTATCCACCAACTGGGAAGCCACACCAGCGTGCTGAATCCCTTGTTCTACGGCATGTCTTTCGGGATCGGCGCAGTCGCCGGGTTGATCAGCGACAAGGTCAGCCTCGGATTCGTAGCGGCAACCGAACATCAAGTGTGCAAGCACCTGAACGAACATTTGCAGCAATTGCCGGCCGAGGACGAAAAGTCCAGGGCGATTCTCGAACAGATGCGCCAGGACGAAGAACATCATGCTGAAAGCGCGCTCGATGCAGGCGGCTTCCGATTCCCGGCCCCCGTCAAATTCGGCATGAGCTTGTTGGCCAAAGTGATGACCAAGAGCACCTATCGGATCTGA	MTTQRHYSPIDRLLLQADTAMRTLLPFSGQPYRPSPAIVQPEVQMSDEETRHVAGLMRINHTGEVCAQALYQGQALTAKLPQVREAMEQAAEEEIDHLVWCEQRIHQLGSHTSVLNPLFYGMSFGIGAVAGLISDKVSLGFVAATEHQVCKHLNEHLQQLPAEDEKSRAILEQMRQDEEHHAESALDAGGFRFPAPVKFGMSLLAKVMTKSTYRI	PGPT0009541_449	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009541-COQ7_like-K06134	NA	NA
D1-36_04626	795	speD	COG1586	S-adenosylmethionine decarboxylase proenzyme	GTGAAAAGCAAACTCAAGCTCCATGGGTTCAATAACCTGACAAAGACCTTGAGCTTCAACATCTATGACATCTGCTATGCGGAAACCCCGCAAGACCAACAGGCCTACGTCGAGTACATCAATAAAGAGTACAACGCCAAGCGCCTCACGCAGATCCTCACGGAAGTTGTCGATATCATTGGTGCCAACATCCTGAACATCGCCAGTCAGGACTATGAACCCCAAGGCGCCAGCGTGACCATTCTGATCTCGGAAGAGCCGGTGACACCGACCGACAGCCAGATCGAAGAGTCGCCGGGCCCGTTGCCTGAAATTATCCTGGCCCACCTCGATAAGAGCCACATCACGGTACACACCTACCCGGAAATTCATCCGGTGGACGGTATCGCGACGTTCCGAGTGGACATTGATGTGTCGACCTGTGGCGTCATTTCACCGCTCAAGGCGCTCAACTTCCTGATTCACCAGTTCGATTCCGACATTGTGACGGTGGATTATCGTGTGCGTGGGTTTACCCGGGACGTGGAAGGGCACAAGCACTTCATCGATCATGAAATCAACTCGATCCAGAACTACCTCTCCGAAGACACTCGCGACGCGTACCAGATGACCGACGTGAACGTGTATCAGGAGAACCTGTTCCACACGAAAATGCTCCTCAAGGACTTCGAACTGGACAACTACCTGTTCGGTGACGCCACCAGCAACCTGTCCATCGAACAGCGTGGCCAGGTGGAAGAGCGCGTGAAACACGAAATGCTGGAGATCTTCTACGCGCGCAACATGCCGCGCTAA	MKSKLKLHGFNNLTKTLSFNIYDICYAETPQDQQAYVEYINKEYNAKRLTQILTEVVDIIGANILNIASQDYEPQGASVTILISEEPVTPTDSQIEESPGPLPEIILAHLDKSHITVHTYPEIHPVDGIATFRVDIDVSTCGVISPLKALNFLIHQFDSDIVTVDYRVRGFTRDVEGHKHFIDHEINSIQNYLSEDTRDAYQMTDVNVYQENLFHTKMLLKDFELDNYLFGDATSNLSIEQRGQVEERVKHEMLEIFYARNMPR	PGPT0007760_1366	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007760-speD-K01611	NA	NA
D1-36_04627	423	yhfA	COG1765	Protein YhfA	ATGAAGGCACGCATCCAATGGGCTGGCGAAGCCATGTTCCTCGGTGAGTCGGGCAGTGGTCATGTAGTTGTCATGGACGGCCCGCCGGATGCCGGAGGTCGGAACCTGGGTGTTCGACCAATGGAAATGCTTCTGCTGGGTGTGGGTGGCTGCAGTAATTTCGACGTGGTCAGCATCCTCAAGAAGTCGCGCCAGGCAGTGGAAAGCTGCGAAGCTTTTCTGGAAGCCGAGCGCGCGACCGAGGATCCAAAGGTGTTCACCAAGATCCATATGCATTTTGTAGTAAAGGGCCGAGGGTTGAAGGAGGCCCAGGTCAAGCGCGCCATTGAGCTGTCGGCGGAGAAATACTGCTCGGCCTCGATCATGCTCGGTGCGGCAGGCGTCGAAATCACCCATGATTATGAAATCATCGAGTTGGGTTAA	MKARIQWAGEAMFLGESGSGHVVVMDGPPDAGGRNLGVRPMEMLLLGVGGCSNFDVVSILKKSRQAVESCEAFLEAERATEDPKVFTKIHMHFVVKGRGLKEAQVKRAIELSAEKYCSASIMLGAAGVEITHDYEIIELG				NA	NA	NA	NA	NA
D1-36_04628	645	vfr	COG0664	Cyclic AMP receptor-like protein	ATGGTTGCTATTACTCCCACGTCCAAGATCAAGAATCTCGACAAACTCTTGATGCATTGCCAGCGTCGCCGTTACCCCGCCAAGCACAACATCATCTGCGCAGGTGATCGTTCCGACACGCTGTTTTTTATCATCAAGGGCTCGGTCACTATCCTGATTGAAGATGACGATGGGCGAGAGATGATCATCGCCTACCTCAATTCAGGGGATTTTTTTGGCGAGCTAGGGTTGTTCGAACAGGCGGGGAAAGAGCAGGAACGCAGTGCCTGGGTGAGAGCCAAGGTCGAATGCGAAGTTGCGGAAATCAGTTACGGCAAGTTCCGGGAACTGTCGCAGCAAGACCCGGACATCCTTTACGTCCTAAGTGGACAAATCGCACAGCGCTTGCGAAACACCACTCGCAAGGTCGGCGACCTCGCCTTCTTTGATGTAACAGGCCGCGTTGCCCGCTGCCTCCTGGAACTGTGCAAGCAACCCGACGCCATGACTCATCCGGACGGCATGCAGATCAAGGTGACCCGCCAGGAAATCGGTCGGATCGTGGGCTGTTCGCGGGAAATGGTCGGCCGGGTACTCAAGGATCTGGAAGAACGTAACCTGGTCAATGTCAAAGGCAAGACCATGGTGGTGTTCGGAACCCGCTAA	MVAITPTSKIKNLDKLLMHCQRRRYPAKHNIICAGDRSDTLFFIIKGSVTILIEDDDGREMIIAYLNSGDFFGELGLFEQAGKEQERSAWVRAKVECEVAEISYGKFRELSQQDPDILYVLSGQIAQRLRNTTRKVGDLAFFDVTGRVARCLLELCKQPDAMTHPDGMQIKVTRQEIGRIVGCSREMVGRVLKDLEERNLVNVKGKTMVVFGTR	PGPT0015075_4046	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
D1-36_04629	696			hypothetical protein	ATGATGCCTCCAGCCATAGCCTTCACCATTGAAAACGGACTCCAAGCCGAACAGGATCTGCTGGCCAGCATCTGCGCCGGGGACGCTGAGTCCGGCTTGCTGTTCTGGCAGCCCAGCGACCGCGCGTTGGTCATGCCGCGGCGCTTGAGCCGTTTGCCTGGCTTCGAGCTGGCTTGTGAAGTATCGGCCGCCAATGGGTGGCCCGTGCTGTTGCGTGAAACCGGCGGTGAGCCGGTGCCTCAATCCGCTGCCACCGTCAATATCGCGTTGGTCTACGCACCACCGCGAAGCGAGGGTGACCACGGTCGGATCGAAACCGCTTACCGCCGCTTGTGCGATCCCATCTGCCAGTTGATCGATGAGTTGGGCGGGGTCGCTTCGCTGGGTGAAGTGGAGGGAGCGTTTTGTGACGGGCGCTTCAATGTCAATCTTGACGGTCGCAAGATGGTCGGCACTGCGCAGCGCTGGCGCCAGAGCAAGGGCGGGCAACGGCCTGTAGGGCTGGTGCATGGTGCGTTGTTGCTGGAAGACGAACGCGATTGCATGGTGGCTGCGGTCAATCGTTTCAATGAGGCGTGTGGCCTGGAGCAGCGCGTGCGCGCGGAGAGCCACATCGCCCTCCATGAAAAATACCCGGCGCCTCACGCGCTGGAACGGCTCCAAACGCTCTATCAGAACCTGCTCGACAGCCTTTAG	MMPPAIAFTIENGLQAEQDLLASICAGDAESGLLFWQPSDRALVMPRRLSRLPGFELACEVSAANGWPVLLRETGGEPVPQSAATVNIALVYAPPRSEGDHGRIETAYRRLCDPICQLIDELGGVASLGEVEGAFCDGRFNVNLDGRKMVGTAQRWRQSKGGQRPVGLVHGALLLEDERDCMVAAVNRFNEACGLEQRVRAESHIALHEKYPAPHALERLQTLYQNLLDSL				NA	NA	NA	NA	NA
D1-36_04630	837	trpC		Indole-3-glycerol phosphate synthase	ATGAGCGTGCCAACGGTTCTGGAAAACATTCTGGCCCGCAAAAGGCAGGAAGTCGTCGAGCGCAGTGCCCGGGTCAGTCTGACCGAGCTTGAAGCCCTCGCACGTTTGGCGGACGCGCCACGTGGCTTTGCCCAGGCATTGATCGACCAGGCGAAGAGAAAGCAACCGGCGGTAATCGCCGAGATCAAAAAAGCTTCCCCCAGCAAGGGCGTGATCCGGGAGCATTTTGTTCCGGCCGACATTGCCAAGAGCTACGAGAAAGGCGGCGCGACCTGCCTTTCGGTGCTGACCGATGTCGATTTTTTCCAAGGCGCGGACGATTACCTCAAGCAGGCTCGGGCGGCATGCAAGTTGCCGGTCATCCGCAAGGACTTCATGATCGATCCGTATCAAATCGTCGAGGCGCGAGCGTTGGGCGCCGATTGCGTGCTGTTGATCGTCTCTGCCCTGGACGACGTGAAGATGGCCGAGTTGGCTGCGGTCGCCAAGGACGTTGGCCTGGATGTGCTGGTGGAAGTTCATGATGGCGACGAGCTGGAGCGTGCCCTCAAGACGTTGGACACCAAACTGGTTGGCGTGAACAACCGCAACCTGCACACCTTTGAAGTCAGCCTGGAGACGACCTTGGACCTGTTGCCACGGATCCCCCGTGATCGGCTGGTCATCACCGAGAGCGGCCTCCTCAACCGGGCCGATGTCGAGTTGATGGAAGTCAGCGATGTGTATTCGTTCCTGGTGGGCGAGGCGTTCATGCGGGCTGAAAGCCCGGGCACGGAATTGCAGCGGTTGTTTTTCCCTGAGCGCGGCGTTCCGGTGAGCGGCTCGACGCTGGACTGA	MSVPTVLENILARKRQEVVERSARVSLTELEALARLADAPRGFAQALIDQAKRKQPAVIAEIKKASPSKGVIREHFVPADIAKSYEKGGATCLSVLTDVDFFQGADDYLKQARAACKLPVIRKDFMIDPYQIVEARALGADCVLLIVSALDDVKMAELAAVAKDVGLDVLVEVHDGDELERALKTLDTKLVGVNNRNLHTFEVSLETTLDLLPRIPRDRLVITESGLLNRADVELMEVSDVYSFLVGEAFMRAESPGTELQRLFFPERGVPVSGSTLD	PGPT0007080_636	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
D1-36_04631	1050	trpD_2	COG0547	Anthranilate phosphoribosyltransferase	ATGGATATCAAGGCAGCCCTGAACCGTATCGTCGGCCAGCTCGACCTGAGCACCGATGAAATGCGCGACGTGATGCGCGAAATCATGACCGGCCAATGCACGGATGCGCAGATCGGCGCGTTCATGATGGCCATGCGCATGAAGAGCGAGAGCATCGACGAGATCGTCGGTGCAGTCACGACCATGCGTGAATTGGCGGACAAAGTTGAACTCAAGACGCTGGACGGCGTGGTGGATGTCGTGGGTACGGGGGGCGATGGCGCCAACATCTTCAACGTTTCCACGGCCTCGGCGTTTGTGGTTGCGGCAGCCGGCTGCACCGTCGCCAAACACGGCAATCGCGCTGTCTCGGGTAAGAGCGGCAGCGCCGACTTGCTGGAGGCCGCCGGTATCTACCTGAACCTGACGCCAGTCCAGGTGGCGCGGTGTATCGATAGCGTCGGCATCGGTTTCATGTTTGCCCAGACCCACCACAGCGCCATGAAGCACGCGGCGGCACCGCGCCGTGAACTGGGGCTGCGCACGCTGTTCAACATGCTCGGCCCGCTTACGAATCCGGCCGGCGTGAAGCACCAGGTCGTCGGCGTATTCAGCCAGGCGCTGTGCCGCCCCTTGGCCGAGGTCCTGCAGCGCCTGGGCAGTAAACACGTATTGGTGGTCCATTCCAAGGATGGCCTGGATGAGTTCAGTCTCGCCGCGCCGACCTTCGTGGCTGAGCTGAAAAACGATCAGATCACTGAATATTGGGTCGAACCTGAAGACCTGGGCATGAAGAGCCAGAGCCTGCATGGCCTGGCGGTGGATGGACCGGCCCAGTCGCTGGAGTTGATCCGCGATGCCCTGGGACGTCGTAAAACGGAGAATGGCCAGAAAGCGGCGGAAATGATCATGCTCAACGCGGGTGCCGCGTTGTACGCCGCTGATCACGCCAGCAGCCTCAAGCAAGGCGTAGAGCTCGCCCACGATGCATTGCACACCGGGCTGGCCAGGGAAAAACTGGAAGAATTGGGCGCATTTACCGCCGTATTCAAAGTGGAGAATGAAGGATGA	MDIKAALNRIVGQLDLSTDEMRDVMREIMTGQCTDAQIGAFMMAMRMKSESIDEIVGAVTTMRELADKVELKTLDGVVDVVGTGGDGANIFNVSTASAFVVAAAGCTVAKHGNRAVSGKSGSADLLEAAGIYLNLTPVQVARCIDSVGIGFMFAQTHHSAMKHAAAPRRELGLRTLFNMLGPLTNPAGVKHQVVGVFSQALCRPLAEVLQRLGSKHVLVVHSKDGLDEFSLAAPTFVAELKNDQITEYWVEPEDLGMKSQSLHGLAVDGPAQSLELIRDALGRRKTENGQKAAEMIMLNAGAALYAADHASSLKQGVELAHDALHTGLAREKLEELGAFTAVFKVENEG	PGPT0007090_1252	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
D1-36_04632	594	trpG	COG0512	Anthranilate synthase component 2	ATGTTGCTGATGATCGATAATTACGACTCCTTTACCTACAACGTTGTGCAATACCTCGGCGAGCTGGGCTCCGAGGTCAAGGTGGTGCGCAACGACGAGCTGACCATCGCCGAGATCGAGGCCCTCAAGCCCGAACGTATCGTGGTCTCGCCCGGCCCGTGCACGCCGACCGAAGCGGGCGTATCCATCGAGGCCATCAAGTATTTCGCCGGCAAATTGCCGATCCTCGGTGTCTGCCTGGGCCACCAGTCCATCGGCCAGGCGTTCGGTGGCGACGTCGTGCGCGCCCGGCAAGTCATGCATGGCAAGACCAGCCCGGTGTTCCACCAAGACAAGGGCGTATTCGAAGGCCTGAATCATCCGCTGACGGTCACTCGCTACCATTCCCTGGTCGTCAAGCGCGAAACCTTGCCTGATTGCCTGGAATTGACCGCCTGGACCCAGCGCGAAGACGGCTCGGTGGACGAGATCATGGGACTGCGACACAAGACGTTAAATATTGAGGGTGTGCAATTCCACCCCGAGTCTATCCTCACAGAGCAGGGCCACGAGCTGTTCGCCAACTTCCTCAAACAAAGCGGCGGCACGCGCTAA	MLLMIDNYDSFTYNVVQYLGELGSEVKVVRNDELTIAEIEALKPERIVVSPGPCTPTEAGVSIEAIKYFAGKLPILGVCLGHQSIGQAFGGDVVRARQVMHGKTSPVFHQDKGVFEGLNHPLTVTRYHSLVVKRETLPDCLELTAWTQREDGSVDEIMGLRHKTLNIEGVQFHPESILTEQGHELFANFLKQSGGTR	PGPT0007105_1457	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007105-trpG|phnB-K01658	NA	NA
D1-36_04633	1482	trpE	COG0147	Anthranilate synthase component 1	ATGATCCGCGAAGAATTCTTGCGTCTAGCCGCTGCCGGCTACAACCGCATCCCGCTCGCCTGCGAAACCCTGGCCGACTTCGACACGCCGTTGTCGATCTATCTCAAGCTGGCTGACCAGCCCAACTCCTATCTGCTCGAATCGGTGCAGGGCGGTGAGAAATGGGGCCGTTATTCCATCATCGGCTTGCCGTGTCGCACCGTGTTGCGGGTGCATGGCCATCACATCAGCGTGACCCAGGACGGCGTTGAGATCGAAAGCCTCGAAGCCGAAGACCCGCTGGCGTTCGTCGAGACCTTCAAGGCTCGCTACAACGTGCCGACCATCCCCGGCCTGCCCCGTTTCAACGGCGGTCTGGTGGGTTATTTCGGCTACGACTGCGTGCGCTATGTGGAGAAGCGCCTCGGCACTTGTCCCAACCCTGATCCGTTGGGCGTACCGGACATCCTGTTGATGGTCTCCGATGCGGTTGTCGTCTTCGATAACCTGGCGAGCAAGATGCACGCGATCGTCCTGGCCGATCCGTCTCAGGAAGATGCCTACGAGCAAGGTCAGAAAAGCCTGCAGGCGCTGCTGGAAAAACTCCGCCAGCCGATCACGCCACGCCCAGGCCTGGATTTCAGCAAGCAGTCGGCAACCGACCCGGTGTTCCGCTCCAGCTTCACGCAGGACGATTACGAACGGGCCGTCGATACCATCAAGGAATACATCCTCGCCGGCGATTGCATGCAAGTCGTGCCGTCGCAACGGATGTCCATCGACTTCAAGGCCGCGCCTATCGACCTCTACCGGGCGCTGCGCTGCTTCAACCCCACACCCTATATGTACTTCTTCAATTTCGGCGACTTCCACGTCGTGGGCAGTTCGCCGGAAGTGCTGGTGCGAGTCGAAGACAACCTGATCACCGTGCGTCCGATTGCCGGCACTCGTCCTCGCGGCGCCACGGAAGAAGCGGATCGGGCTCTGGAAGAAGACCTGCTGTCGGACGACAAGGAAATTGCCGAACACCTGATGCTGATCGACCTTGGCCGCAATGACACCGGGCGGGTATCGGAAGTGGGTTCGGTGAAGCTCACCGAGAAAATGGTCATCGAGCGCTATTCCAACGTGATGCACATCGTGTCCAACGTCACCGGCCAGTTGAAGGCCGGATTGACGGCCATGGATGCGTTGCGGGCGATCCTGCCGGCGGGCACCTTGTCTGGCGCGCCGAAAATCCGGGCGATGGAAATCATCGACGAGCTGGAACCGGTCAAGCGCGGTGTGTACGGCGGCGCGGTGGGTTATTTCGCCTGGAACGGCAACATGGACACGGCCATCGCCATTCGTACCGCGGTCATCAAGAACGGCGAACTGCATGTACAGGCGGGCGGTGGCATTGTCGCCGACTCTGTGCCTGCGTTGGAGTGGGAAGAAACCTTGAACAAGCGTCGGGCGATGTTCCGCGCCGTGGCGTTGGCGGAGCAGACTTCAGGCAACTGA	MIREEFLRLAAAGYNRIPLACETLADFDTPLSIYLKLADQPNSYLLESVQGGEKWGRYSIIGLPCRTVLRVHGHHISVTQDGVEIESLEAEDPLAFVETFKARYNVPTIPGLPRFNGGLVGYFGYDCVRYVEKRLGTCPNPDPLGVPDILLMVSDAVVVFDNLASKMHAIVLADPSQEDAYEQGQKSLQALLEKLRQPITPRPGLDFSKQSATDPVFRSSFTQDDYERAVDTIKEYILAGDCMQVVPSQRMSIDFKAAPIDLYRALRCFNPTPYMYFFNFGDFHVVGSSPEVLVRVEDNLITVRPIAGTRPRGATEEADRALEEDLLSDDKEIAEHLMLIDLGRNDTGRVSEVGSVKLTEKMVIERYSNVMHIVSNVTGQLKAGLTAMDALRAILPAGTLSGAPKIRAMEIIDELEPVKRGVYGGAVGYFAWNGNMDTAIAIRTAVIKNGELHVQAGGGIVADSVPALEWEETLNKRRAMFRAVALAEQTSGN	PGPT0007095_3341	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
D1-36_04634	819	gph_2	COG0546	Phosphoglycolate phosphatase	ATGAGCGGTTTCGAGCAGCTGTTTCCCGGCAGCCTGCCGCGCCTGGTGATGTTCGACCTCGATGGCACGCTGGTTGATTCGGTCCCGGACCTCGCGGCAGCCGTGGACAGCATGCTGCTCAAACTTGGACGTCCCCCCGCTGGTATCGACGCGGTTCGCCAATGGGTTGGCAACGGCGCGCCCATGCTGGTGCGCCGGGCCCTGGCCAACCACATCGATGCCCAGGGCGTCGATGAAGCCGAGGCCGAGCGGGCGATGGAGCTTTTCAACGAAGCCTACGAAGGCAACCACGAACTGACCGTGGTCTATCCCGGAGTGCGTTCCACGCTCAAATGGCTGCACAAGCAAGGCGTGGAGATGGCGTTGATCACCAACAAGCCGGAACGCTTCGTCGCGCCGCTGCTGGACCAGATGAAAATCGGCCGATATTTTCGCTGGATCATCGGCGGCGACACCCTGCCGCAGAAAAAGCCAGACCCGGCCGCGCTGTTCTTCGTGATGAAAATGGCCAATGTCCCGGCTTCTCAATCGCTGTTCGTCGGCGACTCGCGCAGTGATGTGCTGGCGGCAAAGGCGGCCGGAGTCAAATGCGTGGCGCTGAGTTATGGCTACAACCACGGCCGGCCGATCGCCGAAGAGTTTCCGACACTGGTGGTCGATGATTTGCGCCTGTTAATTCCCGGTTGCCTGGACCCGGCCGCTGAGATAACGTTGCCCGACGCTGTTCAATCCTCTTCTGGAAACGCCATCGTGGTGGTCACTCGCAAACTCTGGATGAAAGTCATGAAGGCCTTGGCCCGCTGGCGTTGGCGCGCCTGA	MSGFEQLFPGSLPRLVMFDLDGTLVDSVPDLAAAVDSMLLKLGRPPAGIDAVRQWVGNGAPMLVRRALANHIDAQGVDEAEAERAMELFNEAYEGNHELTVVYPGVRSTLKWLHKQGVEMALITNKPERFVAPLLDQMKIGRYFRWIIGGDTLPQKKPDPAALFFVMKMANVPASQSLFVGDSRSDVLAAKAAGVKCVALSYGYNHGRPIAEEFPTLVVDDLRLLIPGCLDPAAEITLPDAVQSSSGNAIVVVTRKLWMKVMKALARWRWRA	PGPT0001730_150	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0001730-gph-K01091	NA	NA
D1-36_04635	675	rpe	COG0036	Ribulose-phosphate 3-epimerase	ATGCAGCCCTTCGCTATTGCTCCGTCGATTCTCTCCGCCGACTTCGCCCGCTTGGGCGAAGAAGTGGACAACGTTCTGGCCGCCGGGGCCGACATCGTGCACTTCGATGTCATGGACAACCATTACGTACCCAACCTGACCATCGGCCCGATGGTCTGCGCGGCGCTGCGCAAGTACGGCATCACCGCTCCGATCGACGCGCACCTGATGGTCAGCCCGGTGGATCGCATCGTCGGTGATTTCATCGAGGCAGGCGCGACCTATATCACCTTCCACCCGGAAGCCTCGTTGCATGTCGACCGCTCCTTGCAGTTGATCCGCGAAGGTGGCTGCAAGGCTGGCCTGGTGTTCAACCCGGCAACGCCCTTGGATGTACTCAAATACGTGATGGACAAGGTCGACATGGTCTTGCTGATGAGCGTCAACCCCGGCTTCGGCGGGCAGAAGTTCATCCCGGGCACCCTCGACAAGCTGCGCGAAGCCCGGGCGCTGATCGATGCCTCGGGGCGCGACATCCGGCTGGAGATCGACGGTGGCGTGAACGTGAACAACATCCGCGAAATCGCCGCGGCCGGCGCCGACACCTTTGTCGCCGGTTCGGCGATCTTCAATGCGCCCGACTACAAAGAGGTCATTGAGAAAATGCGCGCCGAATTGGCCCTGGCGCGCCCATGA	MQPFAIAPSILSADFARLGEEVDNVLAAGADIVHFDVMDNHYVPNLTIGPMVCAALRKYGITAPIDAHLMVSPVDRIVGDFIEAGATYITFHPEASLHVDRSLQLIREGGCKAGLVFNPATPLDVLKYVMDKVDMVLLMSVNPGFGGQKFIPGTLDKLREARALIDASGRDIRLEIDGGVNVNNIREIAAAGADTFVAGSAIFNAPDYKEVIEKMRAELALARP	PGPT0017425_2779	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
D1-36_04636	1149	adh1_2	COG1454	Long-chain-alcohol dehydrogenase 1	ATGAGTCTTTCCTCGTTCAAGATCGCCCACAAACTGATCACCGGTGCCGCTGCCATCGAGCAACTGGCGGCGGAACTGACGCGGTTGGATGTCGACAACCCGCTGATCGTGACCGATGCGGCGCTGGTGAAGTCCGGCACCGTGGAGTTGGCGCTGCAGCATCTTGGCGGCCGCGACTACGAGATTTTCGACCGGGTCATGCCGGACCCGGAAATCGCCATCGTCGAAGACTGCATGCAAGCCTACCGCGACGGTGGCCATGACGGCCTGATCGGCCTGGGTGGCGGCAGTGCCATCGATATCGCAAAGTGCGTGGGCGTCTATGCCGGTTATCACGGCGAACTGCAAGACATGTTCGGCGTCGATCAGGTGCCGCGCAAAGGCCCGCCGATGATCGCCATCCCTACCACGGCCGGTACCGGGTCGGAAGTCACGAACGTGGCGATCCTCTCCGACAAGGCTGCACAGCTGAAGAAAGGCATCGTCAGCGATTACCTGTTGCCGGACGTGGCGCTGGTCAGCCCGCAAATGACCCTCACCTGCCCGCGGGGGGTGACCGCCGCCAGCGGTGTCGATGCGCTGGTGCACGCGATCGAGTCCTACCTGTCGCTCAATGCTTCACCGATCACCGATGCCCTGGCCATCGGCGCAATCAAACTGATCACCCGCGCACTGCCCAAGGCCTACGCCAACCCTTCGCACCTGCAAGCCCGCGAAGACATGGCCACCGCAAGCCTGATGGCGGGCATGGCGTTCGGCAATGCCGGGGTGGGGGCCGTGCACGCGCTGGCTTATCCGCTGGGCGGGCGGTTCCATGTATCCCATGGTGTGGCCAACGCGTTGCTGCTGCCTTATGTCATGGCGTGGAACAAAATGGCCTGTGTCGAACGCATGCGAGACATCGCCGACGCCATGGGCATCAAGACCGCCCATCTGAGCGACCTCGAAGCCGCGGACGAGGCGGTGCAAGCCATGGTTGCGTTGTGTGCCGCCGTTGAAATCCCCTCAGGGCTCAGCGGCTTGGGCGTGACCGAGGATGTGATCCCGTCCATGGCAGCGGAGGCTGCGGGGATAGAGCGGCTGATGCGCAACAACCCGCGGCAACTGAGCGCCGCCGATATCGAGAAGATCTACCGCGCGGCGTATTGA	MSLSSFKIAHKLITGAAAIEQLAAELTRLDVDNPLIVTDAALVKSGTVELALQHLGGRDYEIFDRVMPDPEIAIVEDCMQAYRDGGHDGLIGLGGGSAIDIAKCVGVYAGYHGELQDMFGVDQVPRKGPPMIAIPTTAGTGSEVTNVAILSDKAAQLKKGIVSDYLLPDVALVSPQMTLTCPRGVTAASGVDALVHAIESYLSLNASPITDALAIGAIKLITRALPKAYANPSHLQAREDMATASLMAGMAFGNAGVGAVHALAYPLGGRFHVSHGVANALLLPYVMAWNKMACVERMRDIADAMGIKTAHLSDLEAADEAVQAMVALCAAVEIPSGLSGLGVTEDVIPSMAAEAAGIERLMRNNPRQLSAADIEKIYRAAY	PGPT0008305_370	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_BIOTIC_STRESS	BIOTIC_STRESS_RESISTANCE-VOLATILES	BIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008305-adh1-K19954	NA	NA
D1-36_04637	825	ydcV_3		Inner membrane ABC transporter permease protein YdcV	ATGCTGAGTCCTTACATGTCCCCCGTCGAACGGGTGTGGTTCTACAGCTTGCGCATACTCTGCGGGCTGATCCTGTTGTTCCTGATCCTGCCGGTGCTGGTGATCATTCCATTGTCGTTCAACTCCGGCAGCTTCCTGGTTTACCCGTTGCAGGGCTTTTCGCTGCAGTGGTACCACGACTTCTTCGCTTCGGCGGAATGGATGCGGGCCTTGAAGAACAGCATCATCGTCGCTCCGGCGGCGACGCTGTTGGCGATGGTGTTTGGCACATTGGCCGCTATCGGACTGACCCGTGGCGACTTCCCGGGCAAGGCGCTGGTGATGGCCCTGGTGATTTCGCCCATGGTGGTGCCGGTGGTGATCATCGGCGTGGCCAGCTACCTGTTCTTCGCGCCGTTGGGAATGGGTAACAGCTTCTTTTCACTGATCGTCGTCCACGCTGTGCTGGGCGTACCGTTTGTCATCATCACCGTTTCGGCGACCTTGCAGGGCTTCAACCACAACCTGGTCCGGGCTGCCGCCAGCCTCGGAGCGTCGCCATTGACGGCGTTTCGCCGGGTGACCTTGCCGTTGATCGCCCCAGGCGTCATTTCCGGCGCGCTGTTCGCCTTCGCGACGTCGTTCGATGAAGTGGTGGTGACCTTGTTCCTGGCGGGGCCGGAGCAGGCGACGTTGCCTCGGCAGATGTTCAGCGGCATCCGTGAAAACCTCAGCCCCACCATCGCGGCGGCAGCAACGCTGCTGATCGCCTTCTCGGTGATCCTGTTGCTGACCCTGGAGTGGTTGCGTGGGCGCAGCGAGAAGCTGCGTACTACCCAGGTCTGA	MLSPYMSPVERVWFYSLRILCGLILLFLILPVLVIIPLSFNSGSFLVYPLQGFSLQWYHDFFASAEWMRALKNSIIVAPAATLLAMVFGTLAAIGLTRGDFPGKALVMALVISPMVVPVVIIGVASYLFFAPLGMGNSFFSLIVVHAVLGVPFVIITVSATLQGFNHNLVRAAASLGASPLTAFRRVTLPLIAPGVISGALFAFATSFDEVVVTLFLAGPEQATLPRQMFSGIRENLSPTIAAAATLLIAFSVILLLTLEWLRGRSEKLRTTQV	PGPT0007845_1729	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007845-ABC_SP_P|ydcV-K02053	NA	NA
D1-36_04638	1248			hypothetical protein	ATGGCCATCGCCGTTCCACTGAACGCGGGCACCAGCCCCACCCTAAAGCAGCGGCTCAAGCGCGCCGAGCGGGTCAACCGCTGGAAGGCCCAGGCCTTGATCGCGCCGTTGGTGCTGTTTCTGTTGCTGGTGTTCCTGGTGCCCATCGTCGCGCTGTTGTTCAAAAGCGTCAGCAACCCGGAAGTGGTCAACGCAATGCCGCGCACCGTGGCTGCGGTCGCCGCCTGGGATGGACGTGGATTGCCAGGCGAGCCTGTTTACAAGGCAGCCAGCGAGGACCTGGCCGAAGCCCGGAAAAATCAGACTTTGGGCGACCTGTCCAAACGATTGAACATGGAACTGGCCGGCTATCGCAGCCTCCTGACCAAGACTGCCAGGGCGCTGCCGTTCGCTGCCGAACCGGCTTCCTATAAAGAAGCGCTCGAAGGCCTCGACGAACGTTGGGGGGACCCGGCCTATTGGCAGGTGATCCGCCGTAACACCAGCGACGTCACGCCGTACTACCTGCTCGCGGCGGTCGACCATCGCATCGACGATCTCGGTGAACTCGCGCCGGCCACTCCCGACCAGGCGATCTACCTGGACATTTTTACCCGCACCTTCTGGATGGGCCTGGTCATTACCGCCATTTGCCTGGTGCTCGCCTATCCGTTGGCTTATCTACTGGCGAACCTACCGTCGCGCCAGAGCAATCTGTTGATGATTCTGGTGCTGCTGCCGTTCTGGACCTCGATCCTGGTGCGTGTGGCGGCGTGGATCGTGCTGCTGCAATCGGGAGGCTTGATCAACAGCGCCTTGATGGCCATGGGCATCATCGATAAACCTTTGGAACTGGTATTCAACCGCGTCGGTGTGTACATCTCCATGGTCCACATCCTGCTGCCGTTCATGATCCTGCCGATCTACAGCGTGATGAAGGGTATCTCGCCCACCTACATGCGCGCGGCGATTTCCCTGGGTTGCCACCCGTTCGCCAGTTTCTGGCGGGTGTACTTCCCGCAGACCTACGCAGGTGTCGGTGCCGGTTGCCTGTTGGTGTTCATTCTCGCCATCGGCTACTACATCACCCCAGCGCTGCTGGGCAGCCCGAACGACCAGATGGTCAGCTACTTCGTCGCGTTCTACACCAACACCAGCATCAACTGGGGCATGGCCACGGCGCTCGGCGGCCTGCTGTTGCTGGCGACCATCGTGCTTTATCTGATTTACAGCTGGCTGGTGGGCGCCAGTCGCCTGCGCCTGAGCTAA	MAIAVPLNAGTSPTLKQRLKRAERVNRWKAQALIAPLVLFLLLVFLVPIVALLFKSVSNPEVVNAMPRTVAAVAAWDGRGLPGEPVYKAASEDLAEARKNQTLGDLSKRLNMELAGYRSLLTKTARALPFAAEPASYKEALEGLDERWGDPAYWQVIRRNTSDVTPYYLLAAVDHRIDDLGELAPATPDQAIYLDIFTRTFWMGLVITAICLVLAYPLAYLLANLPSRQSNLLMILVLLPFWTSILVRVAAWIVLLQSGGLINSALMAMGIIDKPLELVFNRVGVYISMVHILLPFMILPIYSVMKGISPTYMRAAISLGCHPFASFWRVYFPQTYAGVGAGCLLVFILAIGYYITPALLGSPNDQMVSYFVAFYTNTSINWGMATALGGLLLLATIVLYLIYSWLVGASRLRLS	PGPT0007850_595	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007850-ABC_SP_P1|ydcU-K02054	NA	NA
D1-36_04639	1044			hypothetical protein	ATGTTGAGATCCTTGAAGTTCACAGCCCTGACATTGGGCATGATGGGTGCGGCAAGCGCGATGGCGGCGGGCCCGGACCTGACCGTGGTGTCTTTCGGCGGGGCGAACAAGGCGGCTCAGGTCAAAGCCTTTTACGCACCGTGGGAAGCTGCCGGCAATGGCAAGATCGTGGCGGGCGAGTACAACGGCGAAATGGCCAAGGTCAAGGCCATGGTCGATACCAAGAGCGTCTCGTGGGACCTGGTGGAAGTCGAGTCGCCGGAATTGTCCCGTGGCTGCGACGAGGACATGTTCGAGCAGCTCGATCCGGCCTTGTTCGGCAAGACCGAAGACTACGTCAAGGGCGCCATCCAGCCTTGCGGCGTGGGCTTTTTCGTCTGGTCGACCGTGCTGGCCTACAACGCCGATAAGCTGAAAACCGCACCGACCAGCTGGGCTGATTTCTGGGACACCAAGCAGTTCCCGGGCAAGCGTGGCCTGCGCAAGGGCGCGAAGTACACCTTGGAATTTGCCTTGATGGCCGACGGCGTGGCGCCCAAAGACGTCTACAAAGTGCTGGCTGGTAAAGATGGCCAGGACCGCGCCTTCAAGAAGCTGGACGAACTCAAGCCGAACATCCAATGGTGGGAAGCTGGTGCCCAACCGCCGCAATACCTCGCTTCCGGTGACGTTGTCATGAGCTCGGCCTACAACGGCCGGATCGCCGCGGTGCAGAAAGAAAGCAACCTGAAAGTGGTGTGGAACGGCGGCATCTACGACTTCGACGCCTGGGCTATTCCTCGTGGCCTGGACAAGACGCGCGCAGAAGCGGCGAAGAAATTCATCGCCTTCTCTGTGGCGCCACAGCAGCAGAAGACCTATTCGGAAAACATCGCCTACGGCCCGGCCAACACCCAGGCTGTTCCGTTGCTGGCCAAGGATGTCCTGAAAGACATGCCGACCACTCCGGAGAACATTGCCAACCAAGTGCAGATCGACGTGAGCTTCTGGGCTGACAACGGCGAGCAACTGGAACAGCGCTTCAACTCCTGGGCGGCGAAGTAA	MLRSLKFTALTLGMMGAASAMAAGPDLTVVSFGGANKAAQVKAFYAPWEAAGNGKIVAGEYNGEMAKVKAMVDTKSVSWDLVEVESPELSRGCDEDMFEQLDPALFGKTEDYVKGAIQPCGVGFFVWSTVLAYNADKLKTAPTSWADFWDTKQFPGKRGLRKGAKYTLEFALMADGVAPKDVYKVLAGKDGQDRAFKKLDELKPNIQWWEAGAQPPQYLASGDVVMSSAYNGRIAAVQKESNLKVVWNGGIYDFDAWAIPRGLDKTRAEAAKKFIAFSVAPQQQKTYSENIAYGPANTQAVPLLAKDVLKDMPTTPENIANQVQIDVSFWADNGEQLEQRFNSWAAK	PGPT0007855_3941	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007855-ABC_SP_S|ydcS-K02055	NA	NA
D1-36_04640	1125	btuD_8		Vitamin B12 import ATP-binding protein BtuD	ATGAGCCAGGTCGATTCAAGCGCGGGGGCCAGTGATGTGCTGGTCAGCTTTCGTGGTGTGCAAAAGAGCTACGACGGCGAGAACCTGATCGTCAAAGACCTCAACCTGGACATTCGCAAAGGCGAATTCCTGACCCTCCTCGGACCTTCCGGCTCCGGCAAGACCACCAGCCTGATGATGCTCGCCGGTTTCGAGACTCCGACCGCCGGTGAAATCCTGCTGGCTGGCCGTTCCATCAACAACGTGCCGCCTCATAAGCGCGACATCGGCATGGTGTTCCAGAACTACGCCTTGTTCCCCCACATGACCGTCGCCGAGAACCTGGCCTTCCCGTTGACCGTTCGCGGCTTGAACAAGAGCGACGTCGGTGATCGGGTCAAGCGAGTCTTGAGCATGGTCCAGCTGGAAACCTTCGCCCAGCGTTATCCGGCGCAATTGTCCGGTGGCCAGCAGCAGCGCGTGGCCCTGGCCCGGGCGCTGGTGTTCGAGCCGCAACTTGTCTTGATGGACGAACCCCTTGGTGCATTGGACAAACAGCTGCGTGAACACATGCAGATGGAAATCAAGCACCTGCACCAGCGCCTCGGCGTCACCGTGGTCTACGTGACGCACGACCAGGGCGAAGCCCTCACCATGTCCGACCGTGTGGCCGTGTTCCACCAGGGCGAGATCCAGCAGATCGCCCCGCCGCGCACATTGTACGAAGAACCGAAAAACACCTTCGTCGCCAACTTCATCGGCGAAAACAACCGCCTCAACGGCCGCCTGCACAGCCAGACCGGCGATCGGTGCCTGGTGGAGTTGGGGCGCGGTGAGAAAGTCGAGGCCCTGGCCGTCAATGTCGGCCAGCCTGGCGAGCCGGTCACGCTCTCGATCCGGCCGGAGCGGGTGAGCCTCAACGGCTCCAGCGAACAATGCGTCAACCGCTTTTCAGGGAGGGTGGCGGAATTCATCTATCTGGGCGACCACGTCCGGGTTCGCCTGGAGGTCTGCGGCAAGAACGACTTCTTCGTGAAACAGCCCATTGCCGAGCTCGATCCCGCGCTCGCCGTCGGGGACGTGGTTCCGCTTGGCTGGCAAGTCGAGCATGTGCGCGCGCTCGATCCCCTTTTAGAGGCGAACTGA	MSQVDSSAGASDVLVSFRGVQKSYDGENLIVKDLNLDIRKGEFLTLLGPSGSGKTTSLMMLAGFETPTAGEILLAGRSINNVPPHKRDIGMVFQNYALFPHMTVAENLAFPLTVRGLNKSDVGDRVKRVLSMVQLETFAQRYPAQLSGGQQQRVALARALVFEPQLVLMDEPLGALDKQLREHMQMEIKHLHQRLGVTVVYVTHDQGEALTMSDRVAVFHQGEIQQIAPPRTLYEEPKNTFVANFIGENNRLNGRLHSQTGDRCLVELGRGEKVEALAVNVGQPGEPVTLSIRPERVSLNGSSEQCVNRFSGRVAEFIYLGDHVRVRLEVCGKNDFFVKQPIAELDPALAVGDVVPLGWQVEHVRALDPLLEAN	PGPT0007860_421	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007860-ABC_SP_A|ydcT-K02052	NA	NA
D1-36_04641	678	uvrY	COG2197	Response regulator UvrY	ATGTTACGCGAGCTTGCTCGCGATGAGATTCTGAATCTGGAGAACAATGTGATCCGTGTACTGGTAGCCGAAGACCACACCATCGTCCGCGAAGGGATCAAGCAGTTGATCGGCCTGGCCAAGGATCTGGTGGTGGCGGGGGAGGCGAGCAATGGCGAACAACTGCTCGAGACCCTGCGACACGTGCCCTGCGAAGTCGTGCTGCTGGATATTTCCATGCCGGGCGTCAACGGCCTGGAGGCGATCCCACGGATCCGGGCGTTGAACAACCCGCCGGCCATCCTGGTGTTGTCCATGCATGACGAAGCGCAAATGGCGGCTCGCGCCCTTAAGGTCGGCGCCGCCGGCTACGCCACCAAGGACAGCGACCCGGCATTGCTGCTCATGGCGATTCGAAAAGTCGCTGCCGGCGGACGCTACATCGACCCGGACCTGGCCGACCGCATGGTCTTCGAAGTGGGCCTGACCGACACCCGACCGCTGCATTCACTATTGTCGGAGCGCGAGTTCTCAGTCTTCGAACGCCTCGCCCAAGGCGCCAATGTCAACGACATCGCCCAGCAACTGGCCCTGAGCAGCAAGACCATCAGTACCCACAAGGCGCGGCTGATGCAGAAACTCAACATCACCTCGCTGGCGGAACTGGTGAAATACGCGATGGAGCACAAGTTGCTCTGA	MLRELARDEILNLENNVIRVLVAEDHTIVREGIKQLIGLAKDLVVAGEASNGEQLLETLRHVPCEVVLLDISMPGVNGLEAIPRIRALNNPPAILVLSMHDEAQMAARALKVGAAGYATKDSDPALLLMAIRKVAAGGRYIDPDLADRMVFEVGLTDTRPLHSLLSEREFSVFERLAQGANVNDIAQQLALSSKTISTHKARLMQKLNITSLAELVKYAMEHKLL	PGPT0017180_34	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_TRANSPORT	PLANT_DERIVED_HEXOSE_PHOSPHATE_UPTAKE_SENSING,PGPT0017180-uhpA-K07686	NA	NA
D1-36_04642	2397	mltF_4		Membrane-bound lytic murein transglycosylase F	ATGATGCGTTATTGCTGCCTGTGGGTTATCGGCTGTTTATGGCTTCCCTTGATGGCTTGGGCTGCGCCTGCGCCGCAGGTTCATGGCGTGCAACTGAGTGCGGAACAGCGTCAATGGCTGACGCAACATCAACAGCTGCGGGTCGGCGTGGTATTGCAGGCCCCCTATGCACAATACGATCGGCGTTTACAGCGGTTGTCCGGTACCCATGTCGAGTTGATGCAATGGCTGGGCAAGACGTTGAACGTCGAGTTGACCTGGCGCAATTTCCAAGACGTCGCGCAGCTGGAAGCAGCGGTACGTGACGGCGAAATCGATGTCGCGCCCGGCCTGACCCAAACCCCGGTCGGGCTCAGGCTCTGGCAGTTTTCCGACCCTTACATGCGAGTGCCGCAATTGATCGTCGGCGCGCAGAAAAGCGCCGAGGGCGTGGAGCTGGAGAAGCTCGACGGCCAGGTCCGCGTTGCGGTGCGCATGCCCAGCGCCACGGCGGATTATCTGCGCAGCAATTACCCAGCGTTGAACCTGCAAGGGGTGCCGATGGAGCGCGAGGCGCTGCAATTGTTGCTGACCCAGCAGGCCCGGTTCGCGGTGGTCGATGAGGCGCAGCTGGGACGGTTGATGGTCGAGCCCGAGTTCTCGGAACTGGCGGTGGTGGGCGATATTGGGTCGCCACAGTTGCTACGGGTCGCCACGCGCCGGGACTGGCCCCAGTTGGCCGAAATTATCGACAAGGGGCTGCAAGCCATCCCGGCCAAGGAACTTGAGCAACTGCACAGTCGTTGGCTCAAGCCGAAATACCCGCGCCTGACCGAAACTCCGGGTTTCTGGCAGAACCTGACCTTGCTGTTGCTGGCATTGCTGCTCGCCAGCGTGGCCACCGTGTCTTGGCAACGCCGCCAGCAACGTGGACTGGAGCGCCGGTTGCGTGCCGCGCGAGAGGACATCGCCCAACGCACCGCCAGCGAAGCAGCCTTGCGGCTGACGCAGTTTTCCATCGATCAAAGCACGGTCGGCATCCTCTGGGTCAACTGGGACAGCCATGTGCGCTACGCCAACCGCGCCGCCGAAACCATGCTGGGCTACGGCCCGGGCGGGATCATCGACCGCCCGCTGATCGATTTCGAGCCGGGCTTGCACATGGACCGTTGGTTGAATTTGTGGAAGCGCGCCCGAGCCAGTGAAGACGGGCCGCAGAGTTTCGAGACCGAATGTGTGCGCGCCGATGGTAGCATCCTGCCGGCCGACGTTTCCCTGAGCTTCCTGCGTTTTCGCGATGCCGAATACCTGGTCGTCTACCTAAACGACGTGACGGAGCGTCGACGCGCATTGGCGGCTTTGCGTGAAAGCGAGGCGCGCCTGCAAGGCATCGCGGCGAACGTGCCGGGGTTGGTCTTTCGACTGGAGCGGGCTCCGGTGACTGGACAAATCGACTTTGCCTACATCAGCGAAGGCAGCGAAAGCCTGGTGGGCTACTCCCCGGCGACTTTGGCCCGCAGTGATACCGGTCTGCGCAGCCTGGTCCATCCGGACGACAAGGCCGATTACCACCGCACCCAGGACCAGGCGCTGGACAGCGACAGCGACTGGTCATGGCAAGGCCGCATCCTGACGCGCGAAGGGCAGCAACGCTGGGCCGAGATCAAGGCAATCACACGTCGTCTCGAGGATGGCGCCTACGTCTGGGACGGTATCGTCTGGGACATCACTGAAAGCAAGCGCATCGAACTGGAGCTGGCCAGCTCGCGTGAACAGTTGCGTGAGTTGTCGGCGCACCTGGAAAGCGTAAGAGAGGAAGAAAAAGCACGTATTGCCCGGGAGGTCCACGACGAGCTGGGCCAGATGCTGACGGTGCTGAAGCTGGAGACTTCCATGTGCGAATTGGCCTACGCGCAGCTGGATCCTGGCCTGCAGGAGCGGCTCAACAGCATGAAGCGCTTGATCGCCCAGCTGTTTCAACTGGTGCGAGACGTGGCCACAGCGTTGCGCCCACCTATCCTGGATGCCGGTATCGCTTCGGCCATTGAATGGCAGGCACGGCGCTTCGAGGCGCGTACCCACATCCCGTGCCTGGTGCAGGTGCCTGACAACTTGCCACCGTTGAGCGACGCGAAGGCCATCGGTCTGTTCCGGATTCTCCAGGAAGCGCTGACCAATGTGATGCGCCACGCCCAGGCGCATACTGTGGAACTGACGCTGACCCAGGAAGGCGGCCATCTATGCCTGACGGTCAGCGATGACGGTGTAGGATTCATTGCCGACGCCAGTAGGCCAACGTCCTTTGGCTTGGTTGGCATGCGTGAGCGTGTGTTGATCATGGGCGGACAGTTGACTCTGGGCAGCGAGCCGGGGGAGGGGACGACCTTGTCGGTGCGCGTGCCGTTGGGTGAGGCATGA	MMRYCCLWVIGCLWLPLMAWAAPAPQVHGVQLSAEQRQWLTQHQQLRVGVVLQAPYAQYDRRLQRLSGTHVELMQWLGKTLNVELTWRNFQDVAQLEAAVRDGEIDVAPGLTQTPVGLRLWQFSDPYMRVPQLIVGAQKSAEGVELEKLDGQVRVAVRMPSATADYLRSNYPALNLQGVPMEREALQLLLTQQARFAVVDEAQLGRLMVEPEFSELAVVGDIGSPQLLRVATRRDWPQLAEIIDKGLQAIPAKELEQLHSRWLKPKYPRLTETPGFWQNLTLLLLALLLASVATVSWQRRQQRGLERRLRAAREDIAQRTASEAALRLTQFSIDQSTVGILWVNWDSHVRYANRAAETMLGYGPGGIIDRPLIDFEPGLHMDRWLNLWKRARASEDGPQSFETECVRADGSILPADVSLSFLRFRDAEYLVVYLNDVTERRRALAALRESEARLQGIAANVPGLVFRLERAPVTGQIDFAYISEGSESLVGYSPATLARSDTGLRSLVHPDDKADYHRTQDQALDSDSDWSWQGRILTREGQQRWAEIKAITRRLEDGAYVWDGIVWDITESKRIELELASSREQLRELSAHLESVREEEKARIAREVHDELGQMLTVLKLETSMCELAYAQLDPGLQERLNSMKRLIAQLFQLVRDVATALRPPILDAGIASAIEWQARRFEARTHIPCLVQVPDNLPPLSDAKAIGLFRILQEALTNVMRHAQAHTVELTLTQEGGHLCLTVSDDGVGFIADASRPTSFGLVGMRERVLIMGGQLTLGSEPGEGTTLSVRVPLGEA				NA	NA	NA	NA	NA
D1-36_04643	996			hypothetical protein	ATGCCCTCTGTTTATCGCCTGGCGTTGCCAGCATTGTGCCTGTCGCTGATCCTGCCGAGTGCATTTTCTGTGCAGGCTGGCGAAACGGCACCCGCCGCAGTGGAACCATCCGCTGGAGAAAAGCCGGTCGAACGCCAACCCTTGCTCGAGCGTAGCCAGGAAGAGGCGGCGGCGCTCGTAAGAAAAGTCCCCGCTCAAGAGCAGCAACAGCTACAAACCGGTAGCGACGCCTTCCTCGCGCTGTGGAAGCCAGCCAATACCAGCGAGCCCAAGGGCGCCGTCATCATCATCCCTGGCGCCGGTGAAACCGCTGACTGGCCTCAAGCAGTCGGCCCCCTGCGCAAGAAACTGCCTGATGCCCAATGGAGCAGCCTGAGTATCACCCTGCCGGACCTGCAAGGCGACGTCATCGCTCCGCGCACCGTGGAAACGCCACCCGAGACCAAACCCGCCGACGTCGCGGCCGCGGCACCGGACGCCACCACCGCCGCACCGATCGAGCAAGTGACGGGGGGCGAAGCCGAGGCAGCGGATGCCGCCATCGCCGAAACCGGTGAAGAACACGCCAACGCCGATGCCGAGCGCATTTTCGCCCGCATCGATGCGGCGCTGGCCTACGCCGAACAGCAGAGCGCCCGCAGCATTGTGCTGCTAGGCCATGGCACGGGCGCCTATTGGGCAGCGCGCTACCTTAGCGAAAAGCAACCCTCGCAGATCGAACGCTTCGTGATGGTCGCGGCCCAGACTCCGGTAACCGCCAAGCCTGGCCTGGCAGAGCTGACACCCACCCTGAAGCTGGCGACCGCCGATATCTTCTATATGGACAAGCCACTGGACCGCAACGCGGCACTGGAGCGCTTGCAAGCGAGCAAACGCCTGAAAGGATCGACCTTCAGCCAGGTTGCCCTCAAAGCCGTGCCGAACCGTTCGGCGGAGCAAGAGCAATTGTTCCGTCGGGTCCGGGGTTGGTTGAATCCGCAAAACCCTGGGGAGTGA	MPSVYRLALPALCLSLILPSAFSVQAGETAPAAVEPSAGEKPVERQPLLERSQEEAAALVRKVPAQEQQQLQTGSDAFLALWKPANTSEPKGAVIIIPGAGETADWPQAVGPLRKKLPDAQWSSLSITLPDLQGDVIAPRTVETPPETKPADVAAAAPDATTAAPIEQVTGGEAEAADAAIAETGEEHANADAERIFARIDAALAYAEQQSARSIVLLGHGTGAYWAARYLSEKQPSQIERFVMVAAQTPVTAKPGLAELTPTLKLATADIFYMDKPLDRNAALERLQASKRLKGSTFSQVALKAVPNRSAEQEQLFRRVRGWLNPQNPGE				NA	NA	NA	NA	NA
D1-36_04644	768	djlA	COG1076	Co-chaperone protein DjlA	ATGTGGTGGCCAGGGACTCTGATCGGAGCGGGAGCAGGCTTTGCCATAGCCAGCATCCCGGGGGCCATGCTTGGCGCATTGCTGGGACAGGCGCTGGACAGGCGCCTGAACGTCCACAGCTGGGCGCAAGTGCGTGAACGGCTGGGCGGGCGCCCGGCGTTGCGCAACGATGAATTATTGTTCGTGTTGCTCGGACGCCTGGCGAAAAGCGATGGGCGGGTTGTGGACGGTCACATTCAGCAGGCTCGCCTGGAAATGCGCGCCCTCGACCTGAGCGAACCGGCGCAGCGTCGTGCCATTGCGGCATTCAACCGAGGCAAGTCCGAGCATGATCGCTTGCGCGGTTATCTGCGTCGCCTCGCCACTCAGCCCCACGCGGCCGAAGGCGTGCTACGCGCCTGCTGGAGGATGGTCTGGGCTGACGGTCGCGCTGGCGCCAGCGAGCGCGAGTTGCTTGTCCAGTGGGGCAAATGGCTGGGTTGGACGCCGCAGCAGGTCCAGGCGTTGGCGATGGATTACGAACCGCAGAAACTGTCGCAACCCTCAAGCGGCGTGACTTATCAGGAGGCATTGCGATTGCTGGGTGTTTCGGCCACCAGCGAGCCGTCGCAAATAAAGCGGGCTTATCGCCGCTTGCTCAGCCGGCATCACCCGGACAAGATCGCCGGCAGCGGCGCCACGCCTTTACAGGTGCGTGAAGCGACCGACAGGACCCGAGAGCTGCACAATGCCTATCGTTTGATTCGCGAGCGGAGGGATTTCCGCTAA	MWWPGTLIGAGAGFAIASIPGAMLGALLGQALDRRLNVHSWAQVRERLGGRPALRNDELLFVLLGRLAKSDGRVVDGHIQQARLEMRALDLSEPAQRRAIAAFNRGKSEHDRLRGYLRRLATQPHAAEGVLRACWRMVWADGRAGASERELLVQWGKWLGWTPQQVQALAMDYEPQKLSQPSSGVTYQEALRLLGVSATSEPSQIKRAYRRLLSRHHPDKIAGSGATPLQVREATDRTRELHNAYRLIRERRDFR	PGPT0014550_874	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	HIGH_TEMPERATURE_TOLERANCE	HEAT_SHOCK_PRTOEINS,PGPT0014550-djlA-K05801	NA	NA
D1-36_04645	672	murU	COG1208	N-acetylmuramate alpha-1-phosphate uridylyltransferase	ATGAAGGCGATGATCCTCGCGGCGGGCAAGGGGGAGCGCATGCGCCCGCTGACGCTTACCACGCCTAAGCCTTTGATCCGTGTCGCCGAAATTCCCTTGATCGAATATCACCTGCGGGCGCTGGTCGCCGCCGGGTTTGGCGAGATCGTCATCAATCACGCCTGGCTCGGGCAGCAGATCGAAGACCACCTGGGGGACGGCTCACGGTTCGGCGTGCGCATCGTCTATTCCCCGGAAGGCGAGCCGCTGGAAACCGGCGGGGGGATTTTCCGGGCGCTGCCGTTGCTGGGCGATGAAGCGTTTCTCGTGGTCAATGGCGACATATGGACTGATTTCGATTTCAGCACCTTGCCTCGTTCGCTCGACGCGTCGGCTCATCTGGTGCTGGTGGACAATCCTGAACATCACCCAGATGGCGATTTCGTCCTCACCGACGGAAAGGTTCATGAAGGCGCGTCCACGGCCGACAAACTGACCTACAGCGGTATCGCCGTCCTGCATCCGCGATTATTCGACGGTTGCGCGGCTGGCGCGTTCAAGCTCGCACCGTTGCTGCGCAAGGCCATGGACCATGGGCAGGTCAGCGGCGAGCGGCTGCAAGGTCATTGGGTAGATGTCGGAACCCTTGAACGTTTGGCGCAGATTGAAAAATTGATAGAAGCGAGCCGTTGA	MKAMILAAGKGERMRPLTLTTPKPLIRVAEIPLIEYHLRALVAAGFGEIVINHAWLGQQIEDHLGDGSRFGVRIVYSPEGEPLETGGGIFRALPLLGDEAFLVVNGDIWTDFDFSTLPRSLDASAHLVLVDNPEHHPDGDFVLTDGKVHEGASTADKLTYSGIAVLHPRLFDGCAAGAFKLAPLLRKAMDHGQVSGERLQGHWVDVGTLERLAQIEKLIEASR	PGPT0019055_1430	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_MURAMATE_DEGRADATION,PGPT0019055-murU-K00992	NA	NA
D1-36_04646	1026	amgK	COG3178	N-acetylmuramate/N-acetylglucosamine kinase	ATGCCTGACCAAGATGTACGCTTGCAACACCTGAAAGTTTGGCTCGATGAGCAGTTACCGATCCTTTTCGATCAACAGGGGTGGGGGGGCGTACCCCCGGCCACGTTGACCGCGGCCAGCAGCGACGCGAGTTTCCGGCGATATTTCCGCTGGGAAGGCGCGGGCCGCAGCCTGATCGTGATGGATGCACCGCCGCCCCAGGAAAACTGCAAACCCTTCGTGGATATCGCGTTTTTGCTGGCGAAATCCGGCATCAACGTGCCAAAAATTTATGCCGAAGACCTCGATCGCGGTTTTCTTTTGCTCAATGATCTGGGTAACCAGACCTACCTGGATGTAATCAACGGCGAAAATGCCGACGATTTATTCCGCGATGCCTTGCAGGCATTGTTGGCTTTTCAGCAATTGCCTATGGTGGCTCCGCTGCCCAGTTATGACGTTGCTTTGCTGCGTCGCGAGTTGGAGCTGTTCCCGGAGTGGTACGTCAAGCGCGAGTTGGGCATCGAACTCGATGCGACACAGCAGCAACTTTGGCAGCAGGCTTGCGAACTGTTGATCAACAGCGCCCTGGCCCAGCCGAAAGTGCTGGTGCACCGCGACTACATGCCGCGCAATCTCATGCTCAGCGATCCCAATCCAGGTGTGCTCGATTTCCAGGACGCGGTCTACGGGCCGGTGACCTACGATGTGACCTGCCTTTTCAAGGATGCTTTCCTCAGTTGGCCCGAGGCGCGAGTGCGCGGTTGGCTGGAGGATTATTGGCAGCAGGCCGGTGCCCTTGGCATTGCTGTGCAGCCGGACTTCGAAGATTTCCTGCGGGCCAGCGACTTGATGGGCGTGCAGCGCCATCTCAAGGTGATCGGCATCTTCGCGCGCATTTGCCACCGCGACGGCAAGCCGCGCTACCTGAAGGACGTACCGCGCTTCTTCGACTATATAGAAGCGGTCATCGACCGCCGTCCTGAGCTGGCGCCGCTGGATGAGTTGCTCCGCAGCCTGCGCCAATCGGCCGGGGCAAATGCATGA	MPDQDVRLQHLKVWLDEQLPILFDQQGWGGVPPATLTAASSDASFRRYFRWEGAGRSLIVMDAPPPQENCKPFVDIAFLLAKSGINVPKIYAEDLDRGFLLLNDLGNQTYLDVINGENADDLFRDALQALLAFQQLPMVAPLPSYDVALLRRELELFPEWYVKRELGIELDATQQQLWQQACELLINSALAQPKVLVHRDYMPRNLMLSDPNPGVLDFQDAVYGPVTYDVTCLFKDAFLSWPEARVRGWLEDYWQQAGALGIAVQPDFEDFLRASDLMGVQRHLKVIGIFARICHRDGKPRYLKDVPRFFDYIEAVIDRRPELAPLDELLRSLRQSAGANA	PGPT0019050_861	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATION	PLANT_DERIVED_MURAMATE_DEGRADATION,PGPT0019050-amgK-K07102	NA	NA
D1-36_04647	2799	lptD	COG1452	LPS-assembly protein LptD	ATGGCATTGAAATCCCCCGCGTTTCGTAAAAAATTTCCGTTGCTGGTTACCGGCAGTCTGCTGGCCCTGCAACCCCTGGCCTCTTCATTCGTCGTTGCGGCGCAACAGTATGACTGTTCCGTCTCCGCTTCGGGTGCCTGGGACTGTTCACCCAAGACGCCGGCCGCTGCATTGCCGCCACGTCCCGTGCATGAAGGCAGCGCGGTTGCCGACAGCGGCAGCGCACCGGCCGACAGCGATTCGGGCGAGGTGGCCGGCGACAAGCCGATGCTCGTCACCGAAGCCAAGGGCCGCGGCTTGAAGACGCGCAGTGAAGACTACAGTCACTTGGACTGGGTTCCGCGCGAGAACCTCACGCCCGCTCAACTGGCTGAAACCGGTCCTTACTGCGCTGGCGCGTACATCGAGCCGACGCGCCCGGGCATGAACGACAAGACCGCCAAGAGCGACGCGCCGACCTTCCTGGGCGCCAAGGCTTCGCGCTACGAGCAGGAGCAGCAGGTGGCGACCCTGGCCGGCGACGTGGTCATGCGCCAGGGCAGCATGCAGGTCGAAGCCGACGAGGCCAGCCTGTACCAGGCCGAGAACCGTGGCGAGCTGAACGGCAACGTGCGGGTCCGCGACAACGGCGCGCTGATTGTCGGCGACCACGCCGATGTGCAGCTGGACACCGGTGAAGCCAAGGTCGACAACGCCGAATACGTGATGCACAAGTCGCGCATCCGCGGTAACGCGCTGTACGCCCGCCGCGCCGAAAACGCGATCATCCGCCTCAAGGACGGTACGTACACCACGTGCGAACCGGGCAGCAACGCGTGGACACTCAAGGGCAACAACATCACCTTGAACCCGGCCACGGGCTTCGGCACCGCGACCAACGTCACGCTGCGGGTCAAGGACTTCCCGGTCTTGTACACGCCTTATATCTATTTCCCGATCGACGACCGTCGTCAGTCCGGCTTCCTGCCGCCGACCATCGGCAGCGGCAGTGATACCGGCTTCCTGCTGGTCACCCCGTACTACTTCAACCTGGCGCCGAACTACGACGCCACGTTGTACCCACGCTACATGAGCAAGCGCGGCCTGTTGATGGAAGGCGAGTTCCGTTACCTGACCAAGTCCAGCGAAGGCCAGTTCGGCGCCGCGTACCTCAACGACGAAGACGATGAGCGCAGCGGGCAGAGCGACTACGACAAGACCCGCTACATGTATAACTGGCAGCACAAGGGCGGCCTCGACTCGCGCGTGCTGACAGAAGTCGACTACACCAAGATCAGCGATCCGTATTATTTCCAGGATCTGCAGACCGATCAGATCGGCGTCGAGTCGCGGGACTACGTGAACCAGCAAGGCGCTGTCAGCTATCGCGGCGACAACTACACCGCTCGGCTCAATGCCCAGGCTTACCAGATGGCGACGATTTCAAAAATCACGCCGTACAATCGCCTGCCTCAGATCACCTTCAATGGCTCGCTGCCCGAACATCCGTATGGACTGGATTTCGCGTACAAGACCGAACTGGTGCGGTTTGATCGTGATTTGCGCACCGGTGACTACACCGATGAAGACGGCAATACCGAGCCGTTCCTGGATAACAACATCCGCGGCTTGGCCAGGGCTAACGGCGACCGTCTGAACCTGGCACCCGTCATGAGCCTGCCGATGACCGCAAGCTATGGCTACATCAAGCCGTCGCTCAAGTACCAGTACACTCAATATGACCTGGACCTGGATAGCAGGGGCAGATCTCAGGTCGCTGCGCAGAACGCCGAGGCCGATCGCCTGCGCGGCACCTACAGCAGCAGCCAGAGCCGTGGTGTTCCAATCGCCAGCATCGACAGTGGCCTGTATTTCGACCGTGACACCCAATGGTTCGGCACCAACTATCGCCAGACCCTGGAGCCTCGCCTGTTCTATCTCTATGTACCGGAGAAGGACCAGAGCGATATCCCCGTGTTCGACACCAGCGAATCGACCTTCAGCTACTCCTCGCTGTTCCGGGATAACCGTTTCACCGGCTCCGACCGTGTTGGCGACGAAAACAAATTGTCCCTTGGCGTGACCAGTCGCTGGATCGAAGAAAACGGGTTCGAGCGTCAGCGCGTCAGCGTCGGCCAGGCTCTGTACTTCAAGGATCGTGAAGTCCAACTGCCAGGCATCGACTTCAAGACACGTGAAGACGCCAAGTCCGACGTTTCCCCGTATGCCTTGGAATACGAATATCGCTGGAACCGCGATTGGCGCACCACGGCGACCTACAACTGGGACCCGGACACCCGCAGCCCCCGTTCGGGCAGCGCGATGTTCCACTACCAGCCTGAAGACAACCCGAACAAGGTCATCAACGCCGGTTATCGCTATCGCAACGACCAGGTCCGCTATGACGAATCCACCGGCCAATGGCAAGTGGGCGGTGGCGACTATGGCCGTCCGGGCGATCCGAACTACGTGAAGGACTACTACAAGATCAAGCAGCACGATTTCTCGATCATCTGGCCGATCGTGCCGCAGTGGAACGCCATCAGCCGCTGGCAGTATGACTACAACCGCAACCGTACCCTGGAAGCCTTCGGTGGTTTCGAATATGACAGCTGCTGCTGGAAACTGCGCCTGATCAACCGTTACTGGGTCGACTATGAAGAATTCAGTCAAGCCGCCCCGCAAAACGAAAAAGGCGACCACGGCGTCTTCCTCCAAATTGTTCTGAAGGGACTCGGCGGCCTTACCGGCGCCAAAGTAGAGAGTTTCCTCGACAAAGGCATTCAAGGTTATCGTGAACGTGAAGACCAAGCTTTCTGA	MALKSPAFRKKFPLLVTGSLLALQPLASSFVVAAQQYDCSVSASGAWDCSPKTPAAALPPRPVHEGSAVADSGSAPADSDSGEVAGDKPMLVTEAKGRGLKTRSEDYSHLDWVPRENLTPAQLAETGPYCAGAYIEPTRPGMNDKTAKSDAPTFLGAKASRYEQEQQVATLAGDVVMRQGSMQVEADEASLYQAENRGELNGNVRVRDNGALIVGDHADVQLDTGEAKVDNAEYVMHKSRIRGNALYARRAENAIIRLKDGTYTTCEPGSNAWTLKGNNITLNPATGFGTATNVTLRVKDFPVLYTPYIYFPIDDRRQSGFLPPTIGSGSDTGFLLVTPYYFNLAPNYDATLYPRYMSKRGLLMEGEFRYLTKSSEGQFGAAYLNDEDDERSGQSDYDKTRYMYNWQHKGGLDSRVLTEVDYTKISDPYYFQDLQTDQIGVESRDYVNQQGAVSYRGDNYTARLNAQAYQMATISKITPYNRLPQITFNGSLPEHPYGLDFAYKTELVRFDRDLRTGDYTDEDGNTEPFLDNNIRGLARANGDRLNLAPVMSLPMTASYGYIKPSLKYQYTQYDLDLDSRGRSQVAAQNAEADRLRGTYSSSQSRGVPIASIDSGLYFDRDTQWFGTNYRQTLEPRLFYLYVPEKDQSDIPVFDTSESTFSYSSLFRDNRFTGSDRVGDENKLSLGVTSRWIEENGFERQRVSVGQALYFKDREVQLPGIDFKTREDAKSDVSPYALEYEYRWNRDWRTTATYNWDPDTRSPRSGSAMFHYQPEDNPNKVINAGYRYRNDQVRYDESTGQWQVGGGDYGRPGDPNYVKDYYKIKQHDFSIIWPIVPQWNAISRWQYDYNRNRTLEAFGGFEYDSCCWKLRLINRYWVDYEEFSQAAPQNEKGDHGVFLQIVLKGLGGLTGAKVESFLDKGIQGYREREDQAF	PGPT0023298_91	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS_TRANSPORT,PGPT0023298-lptD|imp|ostA-K04744	NA	NA
D1-36_04648	1323	surA_2	COG0760	Chaperone SurA	GTGAACGTGAAGACCAAGCTTTCTGATTGTCTGCGCCCGCTGATGCTGGGCGCGCTGTTCCTGGGTACCGCAGCGAACGCTGCGGTACAGTCCATCGACAAGGTCGTGGCCATCGTCGACAACGACGTGGTCATGCAGAGCCAACTGGACCAGCGTGTCCATGAAGTGCAGCAAACCATCGCCAAGCGTGGCGGCGGCTTGCCACCACCGGGCGTGCTGGACCAGCAGGTGCTCGAGCGCCTGATCGTCGAAAACCTGCAGCTGCAGATTGGCGAACGTTCCGGTATCCGCATCACCGATGAGGAACTGAACCAGGCCGTCGGCACCATTGCCCAGCGCAACAACATGTCCATCGATCAGTTCCGCGCCGCCCTGGCTCGCGACGGCCTGTCCTTTGATGACGCCCGCGACCAGATCCGCCGTGAGATGGTCATCAGCCGCGTACGTCAGCGACGCGTGGCCGAGCGCATCCAGGTGTCCGAGCAGGAAGTGAAGAACTTCCTCGCTTCCGACCTGGGCAAGATGCAGCTGTCTGAAGAACTGCACTTGGCGAACATTCTGATCCCAACCCCCGAGAGCGCCAACTCCGAAGCGATTCAGAGTGCCTATCGCCAGGCGATGGATGTTTACCAGCAGCTCAAGCAAGGTGCTGACTTCGGCCAGATGGCCGTGGCGCGTTCGGGCAGTGAGAACGCCCTGGAAGGTGGTGACATGGGCTGGCGTAAAGCCGCTCAATTGCCGCCTCCGTTTGATCGCGAGCTCAGCGCCATGGCCGTGGGCGACATCACCCAGCCGGCCCGCACTCCAGGTGGTTTCATCATCCTCAAACTGCTGGAAAAACGCGGCGGCGGCACACAGGTGCGCGACGAAGTACATGTCCGCCATATCCTGATCAAGCCGAGCGAGATCCGTAGCGAAGCCGAGACCAAGCGCCTGGCCGAGAAGCTCTACGAGCGGATCACCGCCGGCGAAGACTTCGCCGAGCTGGCCAAAAGCTTCTCGGAAGACCCGGGTTCCGCCCTTAACGGTGGCGACCTGAACTGGGTCGACCCGAATGCGCTGGTCCCCGAGTTCCGCCAGGTCATGGCCGAAACACCCCAGGGCCAACTGTCCAAGCCGTTCAAGAGCCCTTACGGCTGGCACGTCCTGGAAGTCCTTGGCCGTCGCGCCACGGACAGTACCACCCAGGCGCGCGAGCAACAGGCGATGACGGTATTGCGTAACCGCAAATACGACGAAGAGTTGCAAACCTGGCTTCGCCAGATTCGCGACGAAGCCTACGTCGAGATCAAACTCCCTGGTGCAGACCAGGCCGCGCAGTGA	MNVKTKLSDCLRPLMLGALFLGTAANAAVQSIDKVVAIVDNDVVMQSQLDQRVHEVQQTIAKRGGGLPPPGVLDQQVLERLIVENLQLQIGERSGIRITDEELNQAVGTIAQRNNMSIDQFRAALARDGLSFDDARDQIRREMVISRVRQRRVAERIQVSEQEVKNFLASDLGKMQLSEELHLANILIPTPESANSEAIQSAYRQAMDVYQQLKQGADFGQMAVARSGSENALEGGDMGWRKAAQLPPPFDRELSAMAVGDITQPARTPGGFIILKLLEKRGGGTQVRDEVHVRHILIKPSEIRSEAETKRLAEKLYERITAGEDFAELAKSFSEDPGSALNGGDLNWVDPNALVPEFRQVMAETPQGQLSKPFKSPYGWHVLEVLGRRATDSTTQAREQQAMTVLRNRKYDEELQTWLRQIRDEAYVEIKLPGADQAAQ	PGPT0014978_1289	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014978-surA-K03771	NA	NA
D1-36_04649	990	pdxA	COG1995	4-hydroxythreonine-4-phosphate dehydrogenase	GTGAAACCCAAGCGTTTCGCGCTGACCCCCGGCGAGCCTGCCGGCATTGGTCCCGACCTGTGCCTGCTGCTCGCCTCGCAAGCCCAGCCTCACCCCCTGATTGCCATCACCAGCCGCGACCTGCTCCTCGAGCGGGCCGCGCAACTGGGGCTGGCCGTCGATCTGCGCTTGGTTACGCCAGACGCCTGGCCCGATGCCCCGGCACCTGCGGGCAGCCTGTATGTCTGGGATACGCCCCTAGGCGCACCGGTCGTCACCGGTCAATTGGATACGGCAAACGCGGCGTTTGTTCTGGAAACCCTGACCCGCGCCGGCCAAGGCTGCCTGGATGGGGCTTTCGCCGGGATGATCACCGCCCCGGTACACAAGGGTGTCATCAATGAATCCGGTATTCAGTTTTCCGGACACACGGAATTCCTGGCAGACCTGACCCGAACCTCGCAAGTCGTGATGATGCTCGCCACGCGCGGCCTTCGCGTAGCCTTGGTCACCACTCATCTGCCCTTGCGAGATATCGCCGACGCGATCACACCGCAACGCCTGGAACGGGTCACGCGCATACTGCACGCCGACCTTCAGGAAAAATTCGGCATCGTCCGGCCACGAATCCTGGTGTGTGGGCTCAATCCCCATGCCGGCGAAGGCGGACACCTGGGCCGTGAAGAAATCGACATCATCGAACCTACATTGGAACGCCTGCGTAGCGAGGGCATGGACCTGCGTGGCCCGCTGCCTGCCGACACTCTGTTTACCCCCAAATATCTGGAGCACTGCGATGCGGTGCTGGCGATGTACCACGACCAGGGCTTGCCCGTGCTGAAGTACAAAGGCTTCGGCGCGGCGGTCAATGTGACGCTGGGCTTGCCGATCATCCGCACCTCCGTGGACCACGGCACCGCCCTGGACCTGGCCGGCAGCGGCAGGATCGACACCGGCAGCCTGCAAGTCGCCTTGGAAACCGCTTACCAGATGGCCGAGACCCACTTATGA	MKPKRFALTPGEPAGIGPDLCLLLASQAQPHPLIAITSRDLLLERAAQLGLAVDLRLVTPDAWPDAPAPAGSLYVWDTPLGAPVVTGQLDTANAAFVLETLTRAGQGCLDGAFAGMITAPVHKGVINESGIQFSGHTEFLADLTRTSQVVMMLATRGLRVALVTTHLPLRDIADAITPQRLERVTRILHADLQEKFGIVRPRILVCGLNPHAGEGGHLGREEIDIIEPTLERLRSEGMDLRGPLPADTLFTPKYLEHCDAVLAMYHDQGLPVLKYKGFGAAVNVTLGLPIIRTSVDHGTALDLAGSGRIDTGSLQVALETAYQMAETHL	PGPT0009165_1839	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009165-pdxA-K00097	NA	NA
D1-36_04650	819	rsmA	COG0030	Ribosomal RNA small subunit methyltransferase A	ATGACCGAGCAATACCAACACCGCGCGCGCAAGCGCTTCGGCCAGAATTTTTTGCATGACGCTGGCGTGATCGACCGCATCCTGCGTTCCATCAATGCCAAGCCCGATGATCGCCTGCTGGAGATCGGTCCAGGCCAGGGTGCACTGACCCAAGGCCTGCTCGGTAGCGGCGCGCAACTGGACGTGGTGGAACTGGACAAGGATCTGGTGCCGATTCTCAACCAGCAATTTGCCGGCAAGAGCAATTTCAACCTGCACCAGGGCGACGCACTGAAGTTTGACTTCAACAGCCTGGACGCCGCGCCGGGCAGCCTTCGGGTGGTTGGCAACCTGCCCTATAACATTTCCACGCCGCTGATTTTCCATCTGCTGAGCAATGCCGCACTGATCCGCGACATGCATTTCATGCTGCAGAAAGAAGTGGTCGAGCGCCTCGCCGCCGGTCCTGGCGGTGGTGATTGGGGCCGACTATCGATCATGGTCCAGTACCATTGCCGGGTCGACCATTTGTTCAACGTGGGCCCGGGAGCATTCAACCCGCCCCCTAAAGTCGACTCCGCGATCGTCCGCCTTGTACCTCATGCGGTCCTTCCTCACCCGGCCAAGGATCACCGCCTGCTGGAGCGCGTAGTGCGCGAAGCTTTCAACCAGCGTCGCAAAACCCTGCGCAACACGTTGAAACTGCTGCTCAGCAGCGCTGAAATCGAAGCCGCGGGTGTTGACGGCAGCTTGCGCCCCGAGCAACTGGACCTGGCGGCCTTCGTGCGCCTGGCCGACAAGCTCAGTGAACAGGTCGCGCCAAAAGACAACGTCATTTGA	MTEQYQHRARKRFGQNFLHDAGVIDRILRSINAKPDDRLLEIGPGQGALTQGLLGSGAQLDVVELDKDLVPILNQQFAGKSNFNLHQGDALKFDFNSLDAAPGSLRVVGNLPYNISTPLIFHLLSNAALIRDMHFMLQKEVVERLAAGPGGGDWGRLSIMVQYHCRVDHLFNVGPGAFNPPPKVDSAIVRLVPHAVLPHPAKDHRLLERVVREAFNQRRKTLRNTLKLLLSSAEIEAAGVDGSLRPEQLDLAAFVRLADKLSEQVAPKDNVI				NA	NA	NA	NA	NA
D1-36_04651	381	apaG	COG2967	Protein ApaG	ATGTCCGATCCTCGTTACCAGGTCGACGTCAGCGTCGCCACCCGCTTCCTCGCTGAACAGTCACAACCCGAGCACGACCGCTTCGCCTTCGCCTACACCATCACAGTGCGCAACAATGGCTCGCTGCCCGCCAGGCTGCTGTCACGGCATTGGATCATCACCAACGGCGACGGCCATGTAGAAGAAGTGCGTGGTGAAGGCGTGGTTGGCCAACAGCCACTGATCGATGCCGGCAAGAGCCACAGCTATAGCAGCGGGACAGTGATGACGACCAAGGTCGGCACCATGGAGGGCACCTACCAAATGCTCGCCGACGACGGTAAGCGATTCGATGCGATCATCAAGCCCTTCCGACTGGCGGTGCCCGGAGCGCTGCACTGA	MSDPRYQVDVSVATRFLAEQSQPEHDRFAFAYTITVRNNGSLPARLLSRHWIITNGDGHVEEVRGEGVVGQQPLIDAGKSHSYSSGTVMTTKVGTMEGTYQMLADDGKRFDAIIKPFRLAVPGALH	PGPT0004665_1034	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_COBALT_RESISTANCE	COBALT_RESISTANCE-RELATED_ROTEINS,PGPT0004665-apaG-K06195	NA	NA
D1-36_04652	876	apaH_2	COG0639	Bis(5'-nucleosyl)-tetraphosphatase, symmetrical	ATGGCCACGTATGCGGTTGGTGACCTGCAGGGCTGCCTGGACCCGCTCAAATGCCTGCTGGAGCAGGTAGCGTTCGACCCATGCAAAGACACGCTGTGGCTAGTCGGCGACCTGGTCAACCGTGGCCCGCAGTCGCTGGAAACCCTTCGTTTCCTCTATGGTATCCGCGACTCTTTGGTATGCGTGCTCGGCAATCACGATCTGCACCTGTTAGCCGCCTGGCAAAACATTGAGCGCCTGAAAAAATCCGACACCTTGAGCGAGATTCTCGACGCCCCCGATTGCGTCGAGCTGCTTGAATGGTTGCGCCAGCAAAAACTCATGCATTACGACGAGGCGCGCAACCTCGCGCTGGTCCATGCCGGCATCCCACCCCAATGGTCGCTGCGCAGAGCGCTCAAGTGCGCTGGCGAAGTGGAACAGGCGTTGCGCGACGACAACCTGTTCGGCCCCTACCTGGACGGCATGTACGGCAACGAACCCGTCAAATGGGACAACGACCTCACCGGCACGGCCCGTCTTCGCGTCATCACCAATTATTTCACGCGCATGCGCTTCTGCACCCGCGACGGCAAGCTCGATCTCAAGGGCAAGGAAGGCATCGAGACCGCCCCGCCCGGCTACGCGCCGTGGTTCAAGCACAAGGAGCGCAAAACCCGCGACCTGAAGATCATTTTCGGGCACTGGGCGGCACTCGAAGGCCAAACTGACGAAGCCGGGGTTATTGCCCTCGATACCGGCTGCGTCTGGGGCAGCGCGATGACACTGATGAACGTCGACACCGGCGAGTTGCTGCGCTGCGATTGCGACGAGAAGGGCCACGCCAGACTCAATACATCGACCATTGCATCATTGCCGGCCGGCACCGACGCTTGA	MATYAVGDLQGCLDPLKCLLEQVAFDPCKDTLWLVGDLVNRGPQSLETLRFLYGIRDSLVCVLGNHDLHLLAAWQNIERLKKSDTLSEILDAPDCVELLEWLRQQKLMHYDEARNLALVHAGIPPQWSLRRALKCAGEVEQALRDDNLFGPYLDGMYGNEPVKWDNDLTGTARLRVITNYFTRMRFCTRDGKLDLKGKEGIETAPPGYAPWFKHKERKTRDLKIIFGHWAALEGQTDEAGVIALDTGCVWGSAMTLMNVDTGELLRCDCDEKGHARLNTSTIASLPAGTDA	PGPT0021535_153	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021535-apaH-K01525	NA	NA
D1-36_04653	330	glpE_2	COG0607	Thiosulfate sulfurtransferase GlpE	ATGACCGAATTCAAACGCATCTCCCCCGAGCAGGCCCAGGCCCTGCGTGAACAAGGCGCGGTGCTCGTCGATGTGCGCGACCCGGCCACTTACGCAACTTCACATATCAGTGGCTCCAAGCATTTGGATAACCATTCCCTTCACGCTTTCATCCAGGGCGCTGATCTCGATGCGCCTACCATCGTAGTCTGCTATCACGGCAACTCCAGCCAAAGCGCAGCGGCTTACCTGGTCAGCCAGGGTTTCAGTGACGTGTACAGCATGGACGGCGGCTTTGAGCTGTGGCGCACGGTTTATCCTGATGAAACAGAGCAAGGCACCCACGAATAA	MTEFKRISPEQAQALREQGAVLVDVRDPATYATSHISGSKHLDNHSLHAFIQGADLDAPTIVVCYHGNSSQSAAAYLVSQGFSDVYSMDGGFELWRTVYPDETEQGTHE	PGPT0003021_166	DIRECT EFFECT	BIO-FERTILIZATION	SULFUR_ASSIMILATION|MINERALIZATION	S-ASSSIMILATION-SULFUR_METABOLISM	S-METABOLISM-THIOSULFATE_DEGRADATION,PGPT0003021-glpE-K02439	NA	NA
D1-36_04654	1923			hypothetical protein	ATGAGTATTTTTAGCCACTTCCAGCAACGTTTCGAGTCCACGCGGCAGGAGGAGTACTCGCTGCAGGAATACCTCGAACTCTGCAAGCAAGACCGCAGTGCCTACGCATCGGCTGCGGAGCGTCTGTTGCTGGCAATCGGAGAACCTGAACTGCTGGACACCTCGACCAACTCGAGGCTCTCGCGGATTTTTTCCAACAAAGTGATCCGGCGCTACCCGGCCTTTGCAGACTTCCACGGGATGGAGGAATGCATCGAACAGATCGTGTCCTATTTCCGCCATGCCGCCCAAGGCCTGGAGGAGAAGAAGCAGATTCTCTATCTGCTCGGCCCCGTCGGTGGCGGTAAATCGTCCCTGGCCGAGAAACTCAAGCAACTGATCGAAAAAGTGCCCTTCTACGCCATCAAGGGCTCTCCTGTCTTCGAATCGCCCCTGGGGCTTTTCAACGCCACCGAGGACGGCGCGATCCTCGAAGAGGACTTCGGCATTCCCCGTCGCTACCTCAACACCATCATGTCGCCATGGGCCACCAAGCGCCTGGCGGAGTTCGGCGGCGACATCAGCCAGTTCCGCGTGGTCAAGCTCTATCCTTCGATCCTCAACCAGATCGCGGTGGCCAAGACCGAACCAGGTGACGAAAACAACCAGGACATCTCGGCCCTCGTGGGCAAGGTCGATATCCGCAAGCTAGAAGAATTCCCACAGAACGACGCCGATGCCTATAGCTATTCGGGCGCGCTGTGCCGGGCCAACCAGGGCCTGATGGAGTTCGTCGAGATGTTCAAGGCGCCGATCAAGGTGCTTCACCCATTGCTGACCGCCACCCAGGAGGGTAACTACAACAGCACCGAGGGGCTGGGGGCGATACCATTCAGCGGCATTCTGCTCGCTCACTCCAACGAATCGGAATGGCATACCTTCCGCAACAACAAAAACAACGAAGCCTTCATCGACCGGATCTACATCGTCAAGGTGCCTTACTGCCTGCGCGTCTCCGATGAGGTGAAGATCTACGACAAGCTGCTGTTCAACAGCTCGCTGTCCAAGGCCCATTGCGCGCCCGACACGCTGAAGATGCTCGCCCAGTTCACTGTGTTGTCGCGCCTGAAGGAGCCGGAGAACTCCAACATCTATTCGAAGATGCGGGTGTACGACGGCGAAAACCTCAAGGACACCGATCCGAAGGCCAAGTCGATCCAGGAATACCGGGACAACGCGGGCGTGGACGAAGGGATGAACGGACTGTCCACCCGTTTTGCGTTCAAGATCCTGTCCAAGGTGTTCAACTTCGACCCCCACGAAATCGCCGCCAACCCTGTCCATCTGCTGTACGTTCTCGAGCAACAGATCGAGCAGGAGCAGTTCCAGGCGGAGACCCGGGAGCGCTACTTGCGTTTCCTCAAGGAGTACCTGGCGCCACGGTACATCGAGTTCATCGGCAAGGAGATCCAGACGGCCTATCTGGAGTCTTACAGCGAGTACGGCCAGAACATTTTCGACCGTTACGTGCTGTATGCGGATTTCTGGATCCAGGACCAGGAATATCGCGATCCGGAAACGGGCGAGATTCTCAATCGCGTAGCGCTCAACGAAGAGTTGGAAAAGATCGAGAAACCCGCGGGCATCAGCAATCCGAAGGACTTCCGCAACGAAATCGTCAATTTTGTCCTACGCGCCCGGGCCAACAACAACGGCAAGAACCCTACCTGGCTCAGCTACGAGAAGCTTCGGGTGGTCATCGAGAAGAAAATGTTCTCCAACACCGAAGACCTGTTGCCCGTCATCAGCTTCAATGCCAAGGCCAGCAAAGAGGACCAGCAAAAACACAACGACTTCGTTACACGCATGGTCGAACGTGGCTATACCGACAAACAGGTACGGCTGCTGTCCGAGTGGTACCTGCGGGTCCGTAAATCACAATAG	MSIFSHFQQRFESTRQEEYSLQEYLELCKQDRSAYASAAERLLLAIGEPELLDTSTNSRLSRIFSNKVIRRYPAFADFHGMEECIEQIVSYFRHAAQGLEEKKQILYLLGPVGGGKSSLAEKLKQLIEKVPFYAIKGSPVFESPLGLFNATEDGAILEEDFGIPRRYLNTIMSPWATKRLAEFGGDISQFRVVKLYPSILNQIAVAKTEPGDENNQDISALVGKVDIRKLEEFPQNDADAYSYSGALCRANQGLMEFVEMFKAPIKVLHPLLTATQEGNYNSTEGLGAIPFSGILLAHSNESEWHTFRNNKNNEAFIDRIYIVKVPYCLRVSDEVKIYDKLLFNSSLSKAHCAPDTLKMLAQFTVLSRLKEPENSNIYSKMRVYDGENLKDTDPKAKSIQEYRDNAGVDEGMNGLSTRFAFKILSKVFNFDPHEIAANPVHLLYVLEQQIEQEQFQAETRERYLRFLKEYLAPRYIEFIGKEIQTAYLESYSEYGQNIFDRYVLYADFWIQDQEYRDPETGEILNRVALNEELEKIEKPAGISNPKDFRNEIVNFVLRARANNNGKNPTWLSYEKLRVVIEKKMFSNTEDLLPVISFNAKASKEDQQKHNDFVTRMVERGYTDKQVRLLSEWYLRVRKSQ	PGPT0014345_739	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	OTHER_STRESS_RESPONSE_PROTEINS,PGPT0014345-prkA|yeaG-K07180	NA	NA
D1-36_04655	1272			hypothetical protein	ATGAGCTATGTGATCGACCGACGCCTGAATGGCAAGAACAAGAGCACGGTAAATCGCCAGCGTTTCTTGCGGCGCTACCGCGACCACATCAAGAAGGCCGTCGAGGAGGCGGTCAGTCGTCGTTCCATTACGGATATGGAACATGGCGAGCAGATCAGCATCCCTGGCCGGGATATTGACGAGCCGGTGCTTCACCATGGCCGGGGCGGCAAGCAGACCGTCGTACACCCTGGAAACAAGGAATTCACCAGCGGCGAGCATATCCCTCGCCCACCCGGTGGAGGCGGCGGCAAGGGCCCGGGCAAGGCTGGCAATTCCGGCGAGGGCATGGATGAATTCGTCTTCCAGATCACCCAAGAAGAGTTCCTTGAATTCATGTTCGAGGACCTGGAACTGCCAAACCTGGTCAAACGCAACCTGACCGGCACCGATACTTTCAAGACCGTGCGCGCCGGTATCAGCAATGAGGGTAATCCGGCGCGGATCAATATCATCCGCACCCTGCGCTCAGCCCACGCACGTCGCATCGCGCTTTCGGGCAGCAGCCGGGCAAAACTGCGCGAGGCCAAGGAGGAGCTTGCCCGCCTCAAGCAGGAGGAGCCGGACAATTTCGGCGACATCCAGGCCTTGGAAGCGGAAATCGAGCGTCTTAGCGCGCGCATCCATCGCGTGCCGTTCCTCGATACCTTCGACCTCAAGTACAACCTTTTGGTGAAGCAACCGAATCCTAGCTCCAAAGCGGTCATGTTCTGCCTGATGGACGTGTCCGGCTCAATGACGCAGGCCACCAAAGACATCGCCAAGCGGTTCTTCATCCTGTTGTACCTGTTCCTCAAGAGGAATTACGACAAGATCGATGTGGTGTTCATCCGGCACCACACCAGCGCCAGGGAAGTCGACGAAGAAGAGTTTTTCTATTCAAGGGAAACCGGCGGCACCATTGTTTCCAGCGCCCTGAAGCTGATGCAGGAAATCATGGCCGAACGCTACCCCGCCAACGAATGGAACATCTATGCGGCCCAAGCGTCCGACGGTGACAACTGGAACGACGACTCGCCGATTTGTCGCGACATCCTGATCAACCAGATCATGCCGTTCGTCCAGTACTACACGTACGTCGAGATTACGCCGCGCGAACATCAAGCGCTGTGGTATGAATACGAACGCATTGCCGAAGCGTTTTCCGATACTTTTGCCCAGCAGCAACTGGTCTCGGCCGGGGATATCTACCCGGTCTTCCGTGAACTCTTCCAGCGCAGGTTAGTGACATGA	MSYVIDRRLNGKNKSTVNRQRFLRRYRDHIKKAVEEAVSRRSITDMEHGEQISIPGRDIDEPVLHHGRGGKQTVVHPGNKEFTSGEHIPRPPGGGGGKGPGKAGNSGEGMDEFVFQITQEEFLEFMFEDLELPNLVKRNLTGTDTFKTVRAGISNEGNPARINIIRTLRSAHARRIALSGSSRAKLREAKEELARLKQEEPDNFGDIQALEAEIERLSARIHRVPFLDTFDLKYNLLVKQPNPSSKAVMFCLMDVSGSMTQATKDIAKRFFILLYLFLKRNYDKIDVVFIRHHTSAREVDEEEFFYSRETGGTIVSSALKLMQEIMAERYPANEWNIYAAQASDGDNWNDDSPICRDILINQIMPFVQYYTYVEITPREHQALWYEYERIAEAFSDTFAQQQLVSAGDIYPVFRELFQRRLVT	PGPT0025005_681	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-SPORE_PRODUCTION	CE-SPORE_FORMATION|GERMINATION	CE_OTHER_SPORULATION_RELATED_PROTEINS,PGPT0025005-yhbH-K09786	NA	NA
D1-36_04656	1566			hypothetical protein	ATGACCGCCAAAAAAGAGCAGAAACGCCAGCCTATTTCCACCGGCTCCGAATGGACGTTCGAGCTGATACAAGCGTACGACCGTGAGATCAGCCGTATCGCGGATCGCTATGCCCTGGACACCTATCCCAACCAGATCGAAGTGATCACCGCCGAGCAAATGATGGATGCCTATGCATCCGTCGGTATGCCGTTGGGTTATCACCATTGGTCGTATGGCAAGCACTTTCTCAGTACCGAGAAATCCTACAGCCGGGGCCAGATGGGCCTGGCCTATGAGATCGTGATCAACTCCGACCCATGCATCGCCTATCTGATGGAGGAGAACACGATCTGCATGCAGGCGCTGGTGGTGGCTCATGCCTGTTATGGCCATAACAGCTTTTTCAAGGGCAACTATCTGTTCCGCACATGGACCGATGCCAGCTCGATCATCGACTACCTGGTCTTCGCCAAGCAGTACATCATGCAATGCGAAGAGCGCCATGGCATCGACGCGGTGGAGGACTTGCTGGACTCTTGCCATGCCCTGATGAACTACGGCGTGGACCGCTACAAGCGACCCTATCCGATCTCCGCCGAAGAGGAACGGCGACGCCAGAAGGATCGAGAGGAACATCTGCAGAAACAGATCAATGACCTATGGCGGACCATTCCCAAAGGCGCCGACAAGTACAACGAGAAGGACAATGCACGCTTTCCGGCCGAGCCCCAGGAAAACATTCTCTACTTCATCGAAAAACATGCGCCCCTGCTGGAGCCCTGGCAACGGGAAATCGTGCGTATCGTGCGCAAGATTGCCCAGTATTTCTATCCGCAGCGCCAGACCCAGGTCATGAACGAAGGGTGGGCGACGTTCTGGCACTACACCTTGATGAACGACCTGTACGACGAGGGCCTGGTCACGGACGGCTTCATGATGGAGTTCCTGACCTCCCATACCAGCGTGGTGTTTCAGCCCGGCTTCGACAGTCCGTATTACAGCGGCATCAATCCCTATGCTCTGGGTTTCGCCATGTATCGGGACATCCGGCGCATGTGCGAAAACCCTACGGAGGAAGATCGCCGCTGGTTCCCGGAAATCGCCGGCTCGGACTGGCTGTCGACGATCAAATTCGCGATGAGCAGCTTCAAGGATGAAAGTTTTATCCTGCAATACCTGTCGCCCAAGGTAATACGCGACCTCAAGCTGTTCAGCATCCTTGACGACGATCAAAAAGATGACCTGCTGGTGCCCGCCATCCATGACGAAGGTGGTTACCGCGTCATCCGGGAAACCCTGGCGGCGCAATACAATCTGGGCAACCGCGAGCCCAACGTGCAGATCTACAGCATCGACCGCCGCGGTGATCGCTCACTGACTCTGCGTCATCAGCAGCACAACCGCAAACCGCTAGGCGAATCAACGGATGAGGTACTCAAGCACCTGCATCGTCTATGGGGGTTCGACATCCATCTGGAAACCCTGCAGGGCGATCAAGTGATGAAAACCCATCATGTGCCGCCACGCACCGAACAAGCCGAAGGAGATTATGGGCGCCTGGATCTGGCCGTCATTCATCTTTGA	MTAKKEQKRQPISTGSEWTFELIQAYDREISRIADRYALDTYPNQIEVITAEQMMDAYASVGMPLGYHHWSYGKHFLSTEKSYSRGQMGLAYEIVINSDPCIAYLMEENTICMQALVVAHACYGHNSFFKGNYLFRTWTDASSIIDYLVFAKQYIMQCEERHGIDAVEDLLDSCHALMNYGVDRYKRPYPISAEEERRRQKDREEHLQKQINDLWRTIPKGADKYNEKDNARFPAEPQENILYFIEKHAPLLEPWQREIVRIVRKIAQYFYPQRQTQVMNEGWATFWHYTLMNDLYDEGLVTDGFMMEFLTSHTSVVFQPGFDSPYYSGINPYALGFAMYRDIRRMCENPTEEDRRWFPEIAGSDWLSTIKFAMSSFKDESFILQYLSPKVIRDLKLFSILDDDQKDDLLVPAIHDEGGYRVIRETLAAQYNLGNREPNVQIYSIDRRGDRSLTLRHQQHNRKPLGESTDEVLKHLHRLWGFDIHLETLQGDQVMKTHHVPPRTEQAEGDYGRLDLAVIHL	PGPT0024845_238	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-SPORE_PRODUCTION	CE-SPORE_FORMATION|GERMINATION	CE-STAGE_V_SPORULATION,PGPT0024845-spoVR-K06415	NA	NA
D1-36_04657	1230	cca	COG0617	Multifunctional CCA protein	ATGCAGATCTACAAAGTCGGCGGCGCTGTACGCGATCGCCTGCTAGGCATCCCCGTCACCGACGTTGACCGGGTCGTGGTGGGCGCCACTGCCGAGGAGATGCTCGCCAAGGGTTTTCGCCCCGTAGGGGCTGATTTTCCGGTATTTCTTGATCCAAAGACTGGCGAGGAATACGCCCTGGCCCGCACCGAGCGCAAGAACGGCCGAGGTTATGGTGGTTTCGTGTTCCATGCCAGCCCCGAGGTCACGCTCGAAGAAGACCTGGTCCGCAGAGACTTGACGATCAACGCGATGGCCGAGGACGACCACGGCAATCTCACCGATCCCTACCACGGGCAGCGCGATCTGGAAGCACGCTTGCTCCGTCACGTTTCCCCCGCATTCGCCGAAGATCCCCTTAGAGTCTTGCGCGTTGCACGTTTTGCGGCACGCTATGCCCCCCTGGGTTTCAAGGTGGCCGACGAGACGCTCGAGCTGATGCGCCAGCTCAGCGAATCCGGCGAACTGGAGGCATTGACGGCTGAACGCAGCTGGAAGGAAATTTCCAGAGCGCTGATGGAGAGCCAGCCCCAGGTATTTATCCAGGTACTGCGCGACTGCGACGCCCTAAAAATCCTCATGCCCGAAGTGGATGCGCTGTTTGGCGTTCCACAACCCGAAGTCCATCATCCGGAAATCGACACCGGCGCTCACACGCTGAGCGTGCTGGAACAGTCGGCACGGCACAAGCAACCGCTGACCGTGCGCTGGGCTTGCCTGCTGCATGACCTGGGCAAAGGCCTGACACCCGAGCATGAATGGCCGAGACACATCGCCCATGAGCACAAGGGGCTGAAGCTGATCAAAGCGGTCAACGAACGCTTCAAGGCGCCACGCGACTGTCAGGAATTGGCACTGCTGGTTGGCCAATATCACACGCATGGACACCGCGCGCTTGAATTAAAGGCGTCTACGCTGCTGGAACTGTTGCAAAGCTTTGATGTGTACCGCCGTCCCCAGCGCTTCGAGGAGTTCATCATGGCCTGCGAAATGGATGCACGGGGGCGCAAGGGGCTTGAGGAACGGAATTATCCACAGGCTGATTATCTGCGGGGAGCCGCGGCAGCGGCTCGCGCAGTGGCGGTGCAGCCGCTGTTGGAAAAGGGCTTCAAGGGACAGGAACTGGGTGAGGCAATCAAGCGTGAGCGCCTCAGGGCATTGAAGGCCTACAAGGAAGCAGCAGCGAATTAA	MQIYKVGGAVRDRLLGIPVTDVDRVVVGATAEEMLAKGFRPVGADFPVFLDPKTGEEYALARTERKNGRGYGGFVFHASPEVTLEEDLVRRDLTINAMAEDDHGNLTDPYHGQRDLEARLLRHVSPAFAEDPLRVLRVARFAARYAPLGFKVADETLELMRQLSESGELEALTAERSWKEISRALMESQPQVFIQVLRDCDALKILMPEVDALFGVPQPEVHHPEIDTGAHTLSVLEQSARHKQPLTVRWACLLHDLGKGLTPEHEWPRHIAHEHKGLKLIKAVNERFKAPRDCQELALLVGQYHTHGHRALELKASTLLELLQSFDVYRRPQRFEEFIMACEMDARGRKGLEERNYPQADYLRGAAAAARAVAVQPLLEKGFKGQELGEAIKRERLRALKAYKEAAAN				NA	NA	NA	NA	NA
D1-36_04658	519			hypothetical protein	ATGTCGCTGACACAGGTTTTCCTCGGGCTTGGTAGCAATATCGAGCGCGAAACCCATCTATGCGCGGGGCTTGAAGCACTGGCCGGTTTCCTGGTGGACATGCGCTGTTCGGCCGTGTTCGAGAGCCAGCCGGTGGGTATCAAGAGTGGGCCTTTTTTCAATTTCGTCTTGTCGGCCTTCACTGACCTGTCGCTGATTGAGTTGGACCGTCGCCTCAAGTTCATCGAGGCCGACAACGGTCGTTATGCACCGGACCGCAAGGGCCTGCCGCTGGACATCGACGTGTTGTTGTATGGCGAGCAGGTAGGCAACTTCGACGGCTTGATCCTACCGCGTGCCGAAATTCTCAAGAATGCCTTTGTCCTGTGGCCTTTGTCTTTGATCGCGCCGGATCGAATCCACCCTGGCGTGGGCAAAAGCTTTGCCACGTTGTGGGAAGAGGCGCAGATCGACCAGGTATTGGCCCCGGTGGCTTTCCAATGGCGAGGGCAGCAGCTTACGCCACCGGATCTGCTCTGA	MSLTQVFLGLGSNIERETHLCAGLEALAGFLVDMRCSAVFESQPVGIKSGPFFNFVLSAFTDLSLIELDRRLKFIEADNGRYAPDRKGLPLDIDVLLYGEQVGNFDGLILPRAEILKNAFVLWPLSLIAPDRIHPGVGKSFATLWEEAQIDQVLAPVAFQWRGQQLTPPDLL	PGPT0007910_1406	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007910-folK-K00950	NA	NA
D1-36_04659	354	folB	COG1539	Dihydroneopterin aldolase	TTGGACAGAGTTTTTATCGAAGGCCTTGAAGTCGACACGGTAATCGGTGCCTACGACTGGGAACGAGGCATCCGACAGTGCCTGCGCCTTGACCTGAGTTTTGCCTGGGACAACCGTCCGGCCGCTGCGGGCGACGACCTGACCCTGGCGCTCGATTACGCCAGCGTATCGTCACGCATCCAGGCGTTCGCCGAGCAGGCGCAGTTCCAGTTGGTCGAGACCTTTGCCGAACGACTGGCCCAGGTGCTCATGGATGAGTTCGAAATCACCTGGCTGCGCCTGAAAGTGACCAAGCCTGGCGCCGTACCGGCTGCCAGCGGTGTGGGCGTGGAGATCGAGCGCGGATGTCGCTGA	MDRVFIEGLEVDTVIGAYDWERGIRQCLRLDLSFAWDNRPAAAGDDLTLALDYASVSSRIQAFAEQAQFQLVETFAERLAQVLMDEFEITWLRLKVTKPGAVPAASGVGVEIERGCR	PGPT0007905_3420	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007905-folB-K01633	NA	NA
D1-36_04660	570	plsY	COG0344	Glycerol-3-phosphate acyltransferase	ATGTTTTGGTTACTGGCGATCCTCGCCTACCTGCTCGGCTCACTGTCCTTCGCCATTTTGCTCAGCCGCCTGACCGGTCGTCCGGATCCGCGAATGAGTGGCTCGGGTAATGCCGGCGCCACCAACATGCTACGCCTGGCCGGACGAAAACTCGCCATCCTGACCCTGCTCGGTGACCTCTGCAAAGGCCTCTTCCCGGTACTGATCGCCAGCCTTGCAGGACTGTCGTTACAGCAACAGGCCTGGATCGGCGTCTGTGCCGTCATCGGCCATCTGTTCCCATTGTACTTTCGCTTTCGTGGCGGCAAGGGCGTCGCCACTGCCGCTGGAATGCTGCTGGGCCTGTATCCGCCGGCCGCCCTGCTTGCCGTCTGCACCTGGCTACTGACTTTCTACCTGACCCGCACCAGCTCGCTAGCCGCGCTGATCGCCACACCGCTCACCCTGCCATTACTGGCTTGGCAGGAGCCGGCGGCCCTGCTGCCGATGACAGCGCTCGTCGCGCTGATCGTCTGGCGTCACCGGGGCAATCTACGCGACCTGTTCGCCGGGCGCGAACGGCATTTCTAA	MFWLLAILAYLLGSLSFAILLSRLTGRPDPRMSGSGNAGATNMLRLAGRKLAILTLLGDLCKGLFPVLIASLAGLSLQQQAWIGVCAVIGHLFPLYFRFRGGKGVATAAGMLLGLYPPAALLAVCTWLLTFYLTRTSSLAALIATPLTLPLLAWQEPAALLPMTALVALIVWRHRGNLRDLFAGRERHF	PGPT0024375_3728	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROLIPID_REMODELLING	CE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024375-plsY-K08591	NA	NA
D1-36_04661	1026	tsaD	COG0533	tRNA N6-adenosine threonylcarbamoyltransferase	ATGCTAGTACTGGGATTAGAAACATCCTGCGACGAAACCGGCGTTGCCCTCTACGACAGTGAGCGCGGCCTGCTGGCTGACGCTTTGTTCAGTCAAATCGACCTGCATCGCGCCTACGGCGGCGTGGTGCCCGAGCTTGCGTCCCGCGACCACGTCAAGCGCATGCTGCCCTTGATCCGCCAGGTCCTGGCCGAAGCCGACTGTGTGCCGACCGAGATCGATGCCATTGCCTATACGGCCGGGCCGGGCCTGGTGGGCGCGCTGCTGGTCGGCGCTTCCTGCGCCCAGGCGCTGGCCTTTGCCTGGGGCATCCCGGCGCTGGGCGTGCATCACATGGAAGGCCATCTGCTGGCGCCGATGCTGGAGCCGCAGCCGCCGCAATTCCCGTTCGTCGCTTTGTTGGTGTCGGGTGGGCATACCCAGCTGGTCCGCGTGGATGGGATCGGTCAATACGAGCTCATGGGTGAATCGCTCGATGATGCCGCCGGGGAAGCTTTCGACAAAACCGCGAAGATGATGGGGCTCAACTATCCGGGCGGGCCGGAAATCGCACGGCTGGCAACCCAGGGTGTTGAAGGACGTTTCGTCTTTCCGCGTCCGATGTGCGATCGACCGGGTCTGGATTTCAGCTTCAGCGGCTTGAAAACCTTCGCGCTGAACACCTGGCAGCAATGTGTCAGCGCCGGGGACGACAGTGAGCAAGCCCGTTGCGACATCTCCCTGGCGTTCCAGCAGGCCGTGGTAGAGACTTTGACCATCAAGTGCAAGCGCGCGTTGAAGCAGGCCGGGCTCAAGCGCCTGGTTATCGCCGGCGGCGTGAGCGCGAACAAGGCGTTGCGGATATCCCTGGAAAAAATGCTCGGCGACATGAAGGGCGACGTTTACTACGCTCGACCACAGTTCTGCACGGATAACGGCGCGATGATTGCCTTTGCCGGCTGCCAGCGCCTGCAAGCGGGCCAGCAGGAGAGCCTGGCGATCAGCGTGCAGGCCCGTTGGCCAATGGAGCAGTTGTCGCCGCTGTGA	MLVLGLETSCDETGVALYDSERGLLADALFSQIDLHRAYGGVVPELASRDHVKRMLPLIRQVLAEADCVPTEIDAIAYTAGPGLVGALLVGASCAQALAFAWGIPALGVHHMEGHLLAPMLEPQPPQFPFVALLVSGGHTQLVRVDGIGQYELMGESLDDAAGEAFDKTAKMMGLNYPGGPEIARLATQGVEGRFVFPRPMCDRPGLDFSFSGLKTFALNTWQQCVSAGDDSEQARCDISLAFQQAVVETLTIKCKRALKQAGLKRLVIAGGVSANKALRISLEKMLGDMKGDVYYARPQFCTDNGAMIAFAGCQRLQAGQQESLAISVQARWPMEQLSPL				NA	NA	NA	NA	NA
D1-36_04662	216	rpsU	COG0828	30S ribosomal protein S21	ATGCCAGCCGTCAAAGTAAAAGAGAACGAACCCTTCGACGTAGCTCTGCGTCGTTTCAAGCGCTCCTGCGAAAAAGCCGGTGTTCTGGCTGAAGTTCGTAGCCGCGAATTCTACGAGAAGCCGACTTCCGAGCGTAAGCGCAAAGCAGCAGCCGCTGTTAAGCGTCACGCCAAGAAAGTTCAGCGCGAACAGCGCCGCGCCGTACGTCTGTACTAA	MPAVKVKENEPFDVALRRFKRSCEKAGVLAEVRSREFYEKPTSERKRKAAAAVKRHAKKVQREQRRAVRLY				NA	NA	NA	NA	NA
D1-36_04663	1959	dnaG	COG0358	DNA primase	ATGGCCGGGCTAATTCCCCAGAGCTTTATTGACGACCTCCTGAACCGCACCGACATCGTCGACGTGGTCAGCTCTCGCCTGCAAATGAAGAAAGCAGGCAAGAACTACACCGCCTGCTGCCCGTTTCACAAAGAGAAAACCCCGTCCTTCAGCGTCAGCCCCGACAAGCAGTTCTATTACTGCTTTGGCTGCGGCGCGGGCGGCAATGCCCTCGGCTTCATCATGGACCACGACAACCTGGACTTCCCCCAGGCAGTCGAAGAACTGGCCAAAGCCGCAGGCATGGAAATTCCACGGGAAGAGAGCGGCCGGCAGCACAAGCCACGCCAACCCACCGATTCGCCGCTTTATCCGCTGCTGACGGCGGCAGCGGACTTTTATCGCCAGGCGCTTAAAAGCCACCCCGCGCGCAAGGCGGCGGTGGACTACCTCAAGGGTCGCGGATTGACTGGCGAGATTGCCCGGGATTTCGGCCTCGGCTTCGCCCCGCCCGGCTGGGACAATCTGTACAAACACCTGAGCAGCGACACGCTCCAGCAGCGCGCCATGATCGACGCAGGCCTGCTCATCGAGAACGCCGAGACAGGCAAGCGCTACGATCGCTTCCGTGACCGAGTGATGTTTCCGATCCGCGATACACGGGGGCGCATCATCGCCTTCGGCGGCCGGGTTCTGGGCGATGACAAGCCCAAGTACCTGAACTCTCCGGAAACCCCGGTTTTCCATAAAGGCCAGGAACTCTATGGCCTTTACGAGGCACGCAAGAACAACCGCAACCTCGACGAGATCATTGTCGTGGAAGGCTACATGGACGTTATCGCCCTGGCACAGCAAGGCTTGCGCAACGCCGTTGCGACCCTGGGAACGGCCACCAGCGAAGAACACATGAAGCGCCTGTTTCGCGTGGTGCCCAGCGTGCTGTTCTGCTTCGATGGCGACCAGGCGGGACGCAACGCCGCCTGGCGCGCATTGGAAGCGACATTGCCATGCCTGCAGGACGGGCGACGTGCACGTTTCCTGTTCCTGCCCGAAGGCGAGGACCCGGATACCCTGGTGCGCTCCGAAGGCACCGACGCATTTCGTGCGCGGATCAACCAGCACGCCCAACCGCTGGCCGATTATTTTTTCCAGCAACTGACCGAAGAAGCCGATCCACGCTCCCTTGAAGGCAAGGCCCACATGGCCACTCTCGCGGCACCGCTGATCGACAAGGTGCCCGGTGCCAACCTGCGCACACTCATGCGCCAACGGCTCAGCGAAATCACCGGCCTGAACAACGAAGCGATGAATCAATTGGTGCACAGCGCTCCGCAGGAAGCACCGCCAGCGTATGACCCAGGCATCGATTACGACGCGATGCCGGATTTCGCCGACTATCATCAACCTCAGCAGGATTACGCGCCTCAGCAGGAATGGACGTCGAAAAAAACCGCCGGTGGCGGCAAGAAATGGGACAAGAAACCCTGGGACAAGAACGGCAAGCGGGGCGATCGCGACCAGCCACGTGTCCCGCGCGTGCCGGCCGCCGTCGAACCACCAACACTGGCCGCCCTGCGCACCTTGCTGCATCACCCGCAACTGGCTGAGAAGGTAGAGGACGCAGGACATTTTGCCGCCGAGGACCACAGCAATACACAATTGCTGGTCGCACTCCTTGAAGCCGTGCAGAAGAACCCCAAGCTAAACTCATTCCAGTTGATCGCTCGGTGGCATGGCACCGAGCAGGGGCGCCTCTTGAAGGCGCTGGCCGAGAAGGAATGGCTGATAGAGGGAGACAACCTTGAACAACAGTTTTTCGACACCATTACTAGCTTGTCCGCCCGCCAACGCGAGCGAAACCTGGAACAACTTCTGCGCAAAGCTCGCCAGAGCGAGTTGACCAGCGAAGAGAAAAACCAATTGCGGGATTTACTCAGCCGCAATGTTTGCGCATCAAACCCGACCTCAACTGGCGCGTGA	MAGLIPQSFIDDLLNRTDIVDVVSSRLQMKKAGKNYTACCPFHKEKTPSFSVSPDKQFYYCFGCGAGGNALGFIMDHDNLDFPQAVEELAKAAGMEIPREESGRQHKPRQPTDSPLYPLLTAAADFYRQALKSHPARKAAVDYLKGRGLTGEIARDFGLGFAPPGWDNLYKHLSSDTLQQRAMIDAGLLIENAETGKRYDRFRDRVMFPIRDTRGRIIAFGGRVLGDDKPKYLNSPETPVFHKGQELYGLYEARKNNRNLDEIIVVEGYMDVIALAQQGLRNAVATLGTATSEEHMKRLFRVVPSVLFCFDGDQAGRNAAWRALEATLPCLQDGRRARFLFLPEGEDPDTLVRSEGTDAFRARINQHAQPLADYFFQQLTEEADPRSLEGKAHMATLAAPLIDKVPGANLRTLMRQRLSEITGLNNEAMNQLVHSAPQEAPPAYDPGIDYDAMPDFADYHQPQQDYAPQQEWTSKKTAGGGKKWDKKPWDKNGKRGDRDQPRVPRVPAAVEPPTLAALRTLLHHPQLAEKVEDAGHFAAEDHSNTQLLVALLEAVQKNPKLNSFQLIARWHGTEQGRLLKALAEKEWLIEGDNLEQQFFDTITSLSARQRERNLEQLLRKARQSELTSEEKNQLRDLLSRNVCASNPTSTGA				NA	NA	NA	NA	NA
D1-36_04664	1848	rpoD	COG0568	RNA polymerase sigma factor RpoD	ATGTCCGGAAAAGCGCAACAGCAGTCTCGTATCAAAGAGTTGATCCTATTGGGTCGTGAGCAGGGCTACCTGACTTACGCGGAGGTCAACGACCACCTGCCGGAGGATATTTCAGATCCGGAACAGGTGGAAGACATCATCCGCATGATCAATGACATGGGGATCAACGTATTCGAGGTTGCTCCAGATAAGGATGCCCTTATGCTGGCCGACGCCGATACCGACGAGGCGGCCGCTGAAGAAGCGGCCGCAGCGTTGGCGGCGGTCGAGACCGACATTGGTCGCACCACCGACCCCGTGCGCATGTATATGCGTGAAATGGGTACGGTAGAGCTCCTCACGCGTGAAGGCGAAATCGAAATCGCCAAGCGTATTGAAGAAGGCATCCGTGAAGTGATGGGCGCGATCGCGCACTTCCCTGGCACGGTCGACCATATTCTCTCCGAGTACACCCGCGTTACCACCGAAGGTGGCCGCCTATCCGACGTCCTGAGCGGCTACATCGACCCGGACGACGGCATCGCGCCGCCTGCCGCTGAAGTGCCGCCGCCGATCGACGCGAAAGCCGCCAAGGCTGACGACGATACCGATGACGAAGACGCCGAAGCGAGCGACGACGAAGAAGAGGCCGAAAGCGGTCCCGATCCGGTCATCGCTGCCCAGCGCTTCGGTGCCGTGGCCGACCAGATGGAGATCACCCGCAAGGCCCTGAAAAAGCATGGTCGCCACAACAAGCAGGCAATCGCCGAGCTGTTGGCGCTGGCCGAGCTGTTCATGCCGATCAAGCTTGTACCCAAGCAGTTCGAAGGCTTGGTAGAGCGTGTTCGCAGTGCCTTGGATCGCCTGCGTCAGCAAGAGCGCGCGATCATGCAATTGTGCGTTCGTGATGCGCGCATGCCCCGTGCAGACTTCCTGCGCCAGTTCCCTGGTCACGAAGTCGACGAAAGCTGGACCGATGCACTGGCCAAGGGCAAGAGCAAATACGCCGAAGCCATTGCCCGCCTGCAACCGGACATCATTCGTTGCCAGCAGAAGCTAAGCGCGCTGGAGACCGAGACCGGCCTGAGCATCGCTGAAATCAAGGACATCAACCGTCGCATGTCGATCGGCGAAGCCAAGGCCCGCCGCGCGAAGAAAGAGATGGTCGAAGCGAACTTGCGTCTGGTGATCTCCATCGCCAAGAAGTACACCAACCGTGGCCTGCAATTCCTCGACCTGATCCAGGAAGGCAACATCGGCCTGATGAAAGCGGTGGACAAGTTCGAATACCGTCGCGGCTACAAGTTCTCGACTTATGCTACCTGGTGGATCCGTCAGGCGATCACTCGCTCGATCGCCGACCAGGCCCGCACCATCCGTATTCCGGTGCACATGATCGAGACGATCAACAAGCTCAACCGTATTTCCCGGCAGATGTTGCAGGAGATGGGTCGCGAACCGACCCCGGAAGAGCTGGGCGAACGCATGGAAATGCCTGAGGACAAGATCCGCAAGGTACTGAAGATCGCCAAAGAGCCGATCTCCATGGAAACCCCGATCGGCGATGATGAAGACTCCCATCTGGGTGACTTCATCGAAGACTCCACCATGCAGTCGCCGATCGATGTCGCCACCGTTGAGAGCCTCAAGGAAGCGACTCGCGAAGTACTTTCCGGCCTCACGGCCCGTGAAGCCAAGGTTCTGCGCATGCGTTTCGGCATCGACATGAATACCGACCACACCCTCGAGGAAGTCGGTAAGCAGTTCGATGTGACCCGTGAGCGGATTCGTCAGATCGAAGCCAAGGCGTTGCGCAAACTGCGCCACCCGACGCGAAGCGAGCATCTACGCTCTTTCCTCGACGAGTGA	MSGKAQQQSRIKELILLGREQGYLTYAEVNDHLPEDISDPEQVEDIIRMINDMGINVFEVAPDKDALMLADADTDEAAAEEAAAALAAVETDIGRTTDPVRMYMREMGTVELLTREGEIEIAKRIEEGIREVMGAIAHFPGTVDHILSEYTRVTTEGGRLSDVLSGYIDPDDGIAPPAAEVPPPIDAKAAKADDDTDDEDAEASDDEEEAESGPDPVIAAQRFGAVADQMEITRKALKKHGRHNKQAIAELLALAELFMPIKLVPKQFEGLVERVRSALDRLRQQERAIMQLCVRDARMPRADFLRQFPGHEVDESWTDALAKGKSKYAEAIARLQPDIIRCQQKLSALETETGLSIAEIKDINRRMSIGEAKARRAKKEMVEANLRLVISIAKKYTNRGLQFLDLIQEGNIGLMKAVDKFEYRRGYKFSTYATWWIRQAITRSIADQARTIRIPVHMIETINKLNRISRQMLQEMGREPTPEELGERMEMPEDKIRKVLKIAKEPISMETPIGDDEDSHLGDFIEDSTMQSPIDVATVESLKEATREVLSGLTAREAKVLRMRFGIDMNTDHTLEEVGKQFDVTRERIRQIEAKALRKLRHPTRSEHLRSFLDE				NA	NA	NA	NA	NA
D1-36_04665	3744			hypothetical protein	ATGCCCAGACTGACGGCCGTGCTTTTGCTGTCACTGATGACCTGGACCGCGACGGCCGGCGCGTTGACGCTCACCGACGAAGAGCGCCGCTGGCTCAAGGACCACCCCGACCTGCGCCTGGGTGTCGATGCCTCATGGCCGCCGTTCGAATTCCGCGACGATCAGGGGCGCTACCAAGGCCTGGCTGCCGATTACGTCGATATCATTCGCCAGCGATTGGCGATTACATTGACGCCCATCGAGCCAGTGAGCTGGACCGTGGTGCTGGAGCAGGTCGCACAGGGCAAAATCGATCTTTTGCCGGGCATCATGTCCACCCCCGAACGCCAGAATTATCTGGCTTTTACCCGTCCCTACCTGGATTTCCCGATTGTCATCCTCGCCCATCACGGGGGCGCCCAACCGCGCAGGCTGGAGGACTTGTACGGCTTGAAGATCGCCGTGGTGGAAAACTATGCCCCCCACGAGTTGTTGCGCAATCACCATCCCGACCTGAATCTGGTTGCCCTGCCCAACGTCAGCTCGGCCTTGCAGGCGCTGGCGACGGATCAGGTGGATGCCGTGGTGGGTGACCTTGCTTCCAGCGTCTGGAGCCTGCGCCAGCTCAAGCTCGATGGGCTCTACGTAAGTGGGGAAACGCCCTACCGGTATCAATTGGCGATGGCCGTCCCCCAGGAAAACAAGATTCTCGTGGGCATTCTGGACAAAGTGATGGCAGATATGACGTCGGCCGAAATCAGCGAGATCCAGGAAAAGTGGATCGGCAATGTGCGCGATTATCGTCAACTCTGGTCAGATCTGCTGCTTTACGGCCTGCCAGGAATGCTTCTGCTGGGCGGCATCCTGGCCGTGGTGATTCGCATCAATCGTCGCCTCAGCTCGGAAATAGCCCGGCGAGTCGATCTTGAACAGGAACTGCGCAGCAGCGAATACCATTATCGGGGATTGGTCGAGAGCCTTTCGGCCATCGCATGGGAAGCGAGGGTCAGCGATTTCACCTACAGCTACGTGTCGCCCCACGCCGAAGAGCTGCTCGGCTACCCTCTCGCCCATTGGCTCATTCCTGGCTTCTGGCGCAACATCATCCACCCGGCAGACCTCATACGCGCCCAGACTTATTGCGACCACGAAGTGCTTGCCGGCCGCGATCACTGCGTCGATTACCGGGTTATCACTGCTGATGGTCGCTGCCTCTGGGTCAGGGATATCGTCAGCCTCATCCAGCACGGCCACGAGCCGCTGATGCGTGGCTTGATGATCGACATCAGTGAAGCCAAGCACACCGAGGAAGCGTTACGTCTTTCCGAACAAAAATTCGCCTCGGTGTTTCGCCAGTGCCCCGACATCCTGGTGATTGCGCGCCTGCAGGACGGCTGCCTGCTGGAAGTGAACAAAGCTTTCGAGGAACAGATCGGCATCAGTGCCGACCAGGTGATTGGCAAAAACACTACGGACCTGGACATCTGGGGCATTCAAGGCGTCGGGCCAAGCCTGTTGCAGCGTTTGCAGGCCGGCAGCATCCGCAACCTCGAAATGCCCTTTCGACGCAGCAACGGCCAGGTGTTTACCGGCCTGATCTCGGCCGAACCCTTCGATCTCGACACCACCCCCGCCCTGGTGGTGGTCGTGCGCGACATCAGCCAACTCAAGGAAACCCAACAACAACTGCAGACCTCCGAAGAAAAGTTCGCCAAGGCTTTTCATGCCTCGCCCGACGGCCTGTTGCTGTCCCGGCAAAGCGACGGCCTGCTGATAGAAGTCAACGAGGGTTTCAGTCGCATCACCGGTTTCAACAGCGCCCTGTCGGTGGATCGCTCCACGCTGGACCTCGGCATCTGGGTCAACCTCAACGAACGCAAACAGATGCTCGACCTGCTGCAACGGGACGGTTTCGTCAAGGATTTCAGCTGCCATATCCGCCGCAACGACGGGCAGATCCGGCTCTGCGAGGTGTCCAGCCGTCCCCTGCCCATCGGCAATGAAGACTGCATGCTGACCATCGCCCGGGACATCACTGAGCGCCACTTCATGCAGGAAAAACTGCAACAGGCAGCCACCGTGTTCGAAAGCACCGCCGAGGGCGTCCTGATCACCGACACGCAACAGCACATCAACGCCGTCAACCGCGCTTTCACCGAAATCACCGGCTATAGCGAAAGCGAAGCATTGGGCCACACCCCCCGCTTACTGGCCTCCGGCCTACATGACAGTGCCTTCTATGCGGCAATGTGGCATCAGCTGACGGCGGAGGGTCATTGGCAAGGAGAGATTTCCAACCGACGTAAAAACGGGGAACTGTACCCCAGCTGGCTAACCATCAGCGCCGTGCGCAACCGGGGCCATCAAATCACTCACTTCGTTGCGGTTTTTGCCGATATTTCAAGCCTCAAGCACGCCCAGGCCCGACTCGATTACCAGGCACACCACGACCCGCTCACCGGCCTTCCGAATCGCACCTTGTTCGAAAGCCGCTTGCTGACCGCCCTGAACAGCCAGCAGGAAAACGGGGGACAAGGCGCAGTGTTGTTCCTTGATCTGGACCGTTTCAAACATATCAACGACAGCCTCGGGCACCCGGTCGGTGACCTGCTGCTAAAGGGCATCGCCGTACGGCTGCGCGAGCAGCTACGGGACATCGACACAGTGGCGCGCCTGGGAGGCGACGAGTTCATCATCCTGCTGCCTGGCCTGCAACAGCCCAGCGACGCCGAGCACATCGCCCAAAAACTCCTGAACTGTTTTGGCGCGCCTTTCCAGGCAGGTGAACACGAGTTTTTCATCAGCGCCAGCATTGGTACCAGCCTGTATCCTCAGGATGGCTGCGACGTGGCCACGCTGGTCAAGAATGCCGACGCGGCGATGTACCGATCCAAAGCCAAGGGGCGCAACCGGGTAGAAAGCTACACCCGCGACCTCACGGCCCAAGCCAGCGAGCGCGTGGCGCTGGAACACGAACTGCGACGGGCGATCGAGCGCAACGAGTTGTCGTTGTCTTTCCAGCCAAAAATCAGCCTGGTCGACAACAGCCTGGTGGGCGCCGAGGCACTGATTCGCTGGACCCATCCGACGTTCGGCGACGTGCCCCCGGAACACTTCATTCCTCTGGCCGAAGAAAACGGGATGATCCTGCAGATCGGCGACTGGGTGCTAGAGACCGCCTGCCGACAGCTATGCGAATGGAATTGCACTCACGAAAGCCTCGGCCCGCTGTCAGTGAACCTGGCTGGCGTCCAACTGCGCCAACCCAACCTGCTGGGTCGTATCGAACAACTCTTGCGGGAAAACCATCTCGAACCGGGCTTATTGCAACTGGAGATTACCGAAAACTTCATCATGAGCCAGGCCGAAGAAGCCCTGGCAGTGTTGCACCAGTTGAAAAAACTCGGTGTGCAACTGGCCATCGACGACTTCGGCACCGGCTATTCCTCACTCAGCTACCTCAAGCGCCTGCCGCTGGATATCCTCAAGATCGACCAATCCTTCGTCCGCGGCCTGCCCGATGACCCCCACGACGCGGCCATCGTACGGGCAATTATCGCCCTGGGTCGCAGCATGCAATTCACCATCATCGCCGAAGGCGTCGAAACCCTGGCCCAACAACAATTCCTCGCCGAGGAGGGCTGCGAACAGATCCAGGGCTACATTGTCAGCCTGCCCCTGTGCGCCGAAGAGTTCGCCGCAACGTTTCTGCGTGTAACCGTATCGGATTTTTCGGATAGCACAGCCGAGAAACCGTCGCTATAA	MPRLTAVLLLSLMTWTATAGALTLTDEERRWLKDHPDLRLGVDASWPPFEFRDDQGRYQGLAADYVDIIRQRLAITLTPIEPVSWTVVLEQVAQGKIDLLPGIMSTPERQNYLAFTRPYLDFPIVILAHHGGAQPRRLEDLYGLKIAVVENYAPHELLRNHHPDLNLVALPNVSSALQALATDQVDAVVGDLASSVWSLRQLKLDGLYVSGETPYRYQLAMAVPQENKILVGILDKVMADMTSAEISEIQEKWIGNVRDYRQLWSDLLLYGLPGMLLLGGILAVVIRINRRLSSEIARRVDLEQELRSSEYHYRGLVESLSAIAWEARVSDFTYSYVSPHAEELLGYPLAHWLIPGFWRNIIHPADLIRAQTYCDHEVLAGRDHCVDYRVITADGRCLWVRDIVSLIQHGHEPLMRGLMIDISEAKHTEEALRLSEQKFASVFRQCPDILVIARLQDGCLLEVNKAFEEQIGISADQVIGKNTTDLDIWGIQGVGPSLLQRLQAGSIRNLEMPFRRSNGQVFTGLISAEPFDLDTTPALVVVVRDISQLKETQQQLQTSEEKFAKAFHASPDGLLLSRQSDGLLIEVNEGFSRITGFNSALSVDRSTLDLGIWVNLNERKQMLDLLQRDGFVKDFSCHIRRNDGQIRLCEVSSRPLPIGNEDCMLTIARDITERHFMQEKLQQAATVFESTAEGVLITDTQQHINAVNRAFTEITGYSESEALGHTPRLLASGLHDSAFYAAMWHQLTAEGHWQGEISNRRKNGELYPSWLTISAVRNRGHQITHFVAVFADISSLKHAQARLDYQAHHDPLTGLPNRTLFESRLLTALNSQQENGGQGAVLFLDLDRFKHINDSLGHPVGDLLLKGIAVRLREQLRDIDTVARLGGDEFIILLPGLQQPSDAEHIAQKLLNCFGAPFQAGEHEFFISASIGTSLYPQDGCDVATLVKNADAAMYRSKAKGRNRVESYTRDLTAQASERVALEHELRRAIERNELSLSFQPKISLVDNSLVGAEALIRWTHPTFGDVPPEHFIPLAEENGMILQIGDWVLETACRQLCEWNCTHESLGPLSVNLAGVQLRQPNLLGRIEQLLRENHLEPGLLQLEITENFIMSQAEEALAVLHQLKKLGVQLAIDDFGTGYSSLSYLKRLPLDILKIDQSFVRGLPDDPHDAAIVRAIIALGRSMQFTIIAEGVETLAQQQFLAEEGCEQIQGYIVSLPLCAEEFAATFLRVTVSDFSDSTAEKPSL				NA	NA	NA	NA	NA
D1-36_04667	708	dapH_2		2,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-acetyltransferase	ATGGGATCGTTAAAAGATTTTTACTGGAAGCGTTGGGTCAAGAGACACCGGTGCAAGCTTGCTGGCGGCCTCCAATCGCTGAGCAGGAGGACAGAGCTGACCCTGGAAGAGGGCGTTGCCCTTGGGCACGTCGACATTGACTCGCCGCGTCTCGCGATCGGCGCCCACACTTATATCCGCAGTGGCAGCCATCTATCCCTGGTGGCATCGATCGGTCGCTTTTGCTCAATGGGCACTGGCGTGGTGATAGGCCAGGAAAAGCACACGCATCCCACCGATTGGCTCAGCTCTCATCCTTTCCAATACACGGCTTCCCCGCTGAGTTACCGTGCCAGGACCCAAATGGCCACGATTGGCCACGACGTCTGGGTGGGCAGCCATGCCATGGTCATGGAGGGCGTCAACGTCGGCACGGGCGCGGTGATTGCAACCCGGGCAGTCGTGGCTGGGGATGTGCCGGCCTACGCAATCGTAGCGGGCGTCCCGGCCAAGGTAGTGCGGTTCAGGCACGCTCCTGATGTTATCGAGCGCCTGTTGGCGAGTCGGTGGTGGGAAATCGAGGTGGAGGAATTGAAGACGCTGCCCCTCGACGAACCTGAAACCTGCCTGGAGCTGCTGGAGCGCAAAGCTCCGGTGGCTGCTCAGTACCGAAAAATCAGCGTGACACGTAAGGGTTGTCGCGCGGGGGAAATGATGACCGTGACGTAG	MGSLKDFYWKRWVKRHRCKLAGGLQSLSRRTELTLEEGVALGHVDIDSPRLAIGAHTYIRSGSHLSLVASIGRFCSMGTGVVIGQEKHTHPTDWLSSHPFQYTASPLSYRARTQMATIGHDVWVGSHAMVMEGVNVGTGAVIATRAVVAGDVPAYAIVAGVPAKVVRFRHAPDVIERLLASRWWEIEVEELKTLPLDEPETCLELLERKAPVAAQYRKISVTRKGCRAGEMMTVT	PGPT0028035_33	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDS	CE-BACTERIAL_FITNESS-PHENICOL_RESISTANCE,PGPT0028035-catB-K00638	NA	NA
D1-36_04668	2292			hypothetical protein	ATGGGCCTCGCCGCGCGCCTGGGCGCTCTGACGATGGGCCGAGGCATCGCGAGGCTGACGGTGGGTGCCGTATTTGGCCTGGGCTTCAGCCTGGGCCGGGCGCTGCCGGAGTGGTGGGGCATTCTCGTGGCGATCATCGCCATCATTGTCGGGCTCGCCTGGGTCAGCAAATGGGAGCGGCGCCTTGGGTTGGCACCGGTTTCCACCAAGGGGCCAAGCGCCTGGGGCGGTAACGAGCCGCTTCTGACCCCGGAAGGCGAGCCAATCCGGGTGTTCAACCACAGTGAAATCGCCATGGGCGGTCCTGTGTATTGCGATTACTTGTTTCCAGACGGCGTACTTTTGCAAGGGATCGGTTCTTCGGCGGTATTTTCCAGCGACTGGCGCTATTTTGCCGCGCCGGTGCCGTCACGGCAGAACTGGGGACTGGTCATTCTCGACCGCCAGCAGCGCACCTTATACCGCTGCGCCGAAAGCGAATTCTGGGAGCTGGACGCTTTTGATTCTGATCAACTGAGCGGCCGCTACAGCCCATTGGTCGATAACGGCGTCCGTCAGGTTCGCCTGGAAAAGCTGCTACAAACCGCAGAGGCAGTCGACCTGATTCCCGTCGCGGATCTTTGGCTGGAGCCTGGCTGGCACCCGGACAATCTCCAGCCTACCTTCGAACGTCCGTCCGCTGATGGTCGACAATGCCTGGCTGGCAACATCATCTTGCCGGCTACGCTGCGCGATTTGGACCGACCCCTGGAGCCACTGTATTCGCCGCGCTATGCCGTCAGCATCAATGGGCAGCCGTCCGGGCTCTTGATGACCGCCGATGCGCCATTGGTGTGGAGCACCGATCACCGCGCCCTGGTGTGCCTGGCCGGGGAACAGGCCAACGAGGCGCAAGGCGAACGGTATTGGTCGTGGCAAGTGGACAAAGGCTGGCGCGACCTGCCCTTGCCTTGGATCAAGAGCACCACCGAACCGTCTTTTTATTGGCATGACTTGCTGAAGCTCGATGCAGGCCAGGTGCATATCGACGCTTACCTCGACTATCCACGACCGGGTTCCGGCCAGTATGGCTACCGCTTGGACAGTATCCACAGCGATACCGAGACGCAGACGGGCCACGACATCCAGGGTCGGGTGCAGGTGGGCGAGTTCAAGCTGACGCGCACGGCCATCGTCATGCCGTTGGACAGCCCGGGCCGCCGGGGCGATTCGCACATCGAGACCCAAGCGCTGCTGGGCGGCACAAGCGCGCGCCTGGGCTGGCAGGGTGACAATCGCGAAGGGCTTGGTGGCTATCGCTGCCAGACCGGTGACTGGCTCCTGCCGGAACGCTGGCTGCTGGATCATCGCGCCTCGGACTGTGGTCGGTACCTGGCGCTGCTGCCTTTTGGAGGGGCAACGACCGTTGCCACCCATGCAGTGGTGGCCGACGTGCAAGAGCGGCGCCTGCTGAAAGGGCCCGCCATGTGGGTAGAACGGATCCTCGACTTTCGCGATGGTCGGTTGAGTCTGGCGGTGGTCGTAGGTCGTCTCGACAATGATCTGCAGAGCAGCCCGCTCCGGCGCTTCAATGTCGCGGCGCCAGAGGTCGGCAGCGACGCGTCTTTCTGTCGCCCCAACGAGCAATCCCGGCTGTTCTATAACACGGTGCAGTTGCAGCCCACAGACTCGCAACTGAGCGTCATCCCCCCATGGCGCTTGGTGGATCGGCCGCAAGCGGCGACTGCCGATGGCGATTTCATCCAGCCCGCGCCGACTCATCGGGACGCTGCCTGGCTGTTCGGCAGCGAGACCGAATATGCCGACAGCTGGGTGCGCGCCGGTACGCCGCGGCTTGGCGGTTATCTGCTGACGGCTTCAGGCTGCGCCTTGGTCGATCTGGCCCCTTCGATGATCTGGTCCTCGGATGGCCGCTACCTGGCCCTGACCCGCATGGCAACTGACGTGGCGCAGCTGTGCGAAAGTTATCGGGGCTGGCAAATGATGCTTCTCGATGTCCAGGCGCACACGCTGCGGATTCATCCGCGATGGCTGGGCAATCGGCCCGAGTTCGAAGGCTTCGATGAAGAAAAGCTGCGGGTCCGGTGTTTCGAACGCGACTGGGAAACCGAAGACGATGAGGATCGAGGCGCGGCGCAGTCGTTTACGCTCGACGATTTGCTGCTGCTGCCCGCGGAACAACTGATCGGCGAGGACGGCCTCTGGCTCAGGCCTTCGCAAGCGCACCTCGCCCCAGCCTGGCGAGCGCTGGCCTTGCCTGCCATCAGCTACTTCGAACGCCGGAGCCTGTAA	MGLAARLGALTMGRGIARLTVGAVFGLGFSLGRALPEWWGILVAIIAIIVGLAWVSKWERRLGLAPVSTKGPSAWGGNEPLLTPEGEPIRVFNHSEIAMGGPVYCDYLFPDGVLLQGIGSSAVFSSDWRYFAAPVPSRQNWGLVILDRQQRTLYRCAESEFWELDAFDSDQLSGRYSPLVDNGVRQVRLEKLLQTAEAVDLIPVADLWLEPGWHPDNLQPTFERPSADGRQCLAGNIILPATLRDLDRPLEPLYSPRYAVSINGQPSGLLMTADAPLVWSTDHRALVCLAGEQANEAQGERYWSWQVDKGWRDLPLPWIKSTTEPSFYWHDLLKLDAGQVHIDAYLDYPRPGSGQYGYRLDSIHSDTETQTGHDIQGRVQVGEFKLTRTAIVMPLDSPGRRGDSHIETQALLGGTSARLGWQGDNREGLGGYRCQTGDWLLPERWLLDHRASDCGRYLALLPFGGATTVATHAVVADVQERRLLKGPAMWVERILDFRDGRLSLAVVVGRLDNDLQSSPLRRFNVAAPEVGSDASFCRPNEQSRLFYNTVQLQPTDSQLSVIPPWRLVDRPQAATADGDFIQPAPTHRDAAWLFGSETEYADSWVRAGTPRLGGYLLTASGCALVDLAPSMIWSSDGRYLALTRMATDVAQLCESYRGWQMMLLDVQAHTLRIHPRWLGNRPEFEGFDEEKLRVRCFERDWETEDDEDRGAAQSFTLDDLLLLPAEQLIGEDGLWLRPSQAHLAPAWRALALPAISYFERRSL				NA	NA	NA	NA	NA
D1-36_04669	483	lrp_6	COG1522	Leucine-responsive regulatory protein	ATGCCTGCGCTGGAGCTGACCTTGACTGATACCCGCCCTCCCGTCCTCGACGAAATTGATCGCCAGCTGATCGCGGCGCTGCAAATCAACGCCCGGGAAAGCGTCGCCGTGCTTGCCCGGCAGTTGGGCATCGCCCGCACGACCGTGACCTCGCGCCTGGCTCGACTGGAAAAATCCAAGATCATCACCGGATACGGCGTGCGTCTGGGGCAGCGAGTGATCGATGGCGGTTTGCAGGCTTACGTCGGCATAAAGGTCCAGCCACGCTCGGGGAAAGACGTATTGCGGCGCTTGAGTGCGATGGCCCAGGTCCAGCAGTTGTGCGCGGTGAGCGGCGAGTTCGATTACGTGGCCTGGCTGCGCACCGACTCGCCGGAACAGCTGGATCAACTGCTGGACCAGATCGGCAGCGTGGACGGGGTGGAGAAAACTACCACTTCGATCATTCTCAGCAGCAAGATCGACCGGGGGCAGCCCGTCTAG	MPALELTLTDTRPPVLDEIDRQLIAALQINARESVAVLARQLGIARTTVTSRLARLEKSKIITGYGVRLGQRVIDGGLQAYVGIKVQPRSGKDVLRRLSAMAQVQQLCAVSGEFDYVAWLRTDSPEQLDQLLDQIGSVDGVEKTTTSIILSSKIDRGQPV				NA	NA	NA	NA	NA
D1-36_04670	1683	iaaM		Tryptophan 2-monooxygenase	ATGAACAAGAACAATCGCCACCCTGCCAACGGCAAGAAACCCATCACCATTTTCGGCCCGGACTTTCCCTTCGCCTTTGACGACTGGATCGAACACCCAGCTGGCCTGGGCATGATTCCGAAGCACAATCACGGCGCCGAGGTAGCGATTGTCGGCGCCGGGATCGCCGGCCTGGTGGCCGCTTACGAGCTGATGAAAATGGGCCTCAAACCGGTGGTGTACGAGGCGTCGAAGCTGGGCGGACGCCTGCGCTCCCAAGCGTTCAACGGCGCCGAAGGTATCGTCGCCGAACTCGGCGGCATGCGTTTCCCAGTGTCGTCCACGGCGTTCTACCACTACGTCGACAAGCTGGGCCTGGAGACAAAACCCTTTCCCAACCCGTTGACGTCGGCCTCGGGCAGCACGGTCATCGACCTTGAAGGGCAGACCTATTACGCAGAAAGCATGGCTGACCTTCCGGCGTTATTCCAAGAAGTGGCCGACGCCTGGGCCGACGCATTGGAGGCTGGCTCGCGCTTCGGCGATATCCAGCAAGCGATCCGCGACCGCGACGTCCCGCGTCTCAAGGAGCTGTGGAACACCCTGGTGCCGCTGTGGGATGACCGCACCTTCTATGACTTTGTCGCTACGTCAAAGGCCTTCGCCAAGCTCTCGTTCCAGCATCGCGAAGTGTTCGGCCAGGTTGGTTTCGGCACTGGCGGCTGGGACTCGGACTTTCCCAACTCGATGCTCGAAATCTTTCGCGTGGTGATGACCAACTGCGACGATCATCAGCACCTGGTGGTCGGCGGCGTCGAGCAGGTCCCCCACGGAATCTGGAAACACGTGCCAGAGCGCTGCGTGCATTGGCCGGAAGGCACCAGCCTGAATTCGTTGCACCTGGGCGCGCCTCGCAGCGGCGTGAAGCGCATTGCCCGTGCCGATAACGACCGCTTCACCGTGACCGACGTCTGGGGTGACACCCGGGAATACGCCGCCGTGCTGGTGACGTGCCAGACTTGGCTGCTGACCACCCAGATCGAATGTGAAGAAGCGCTGTTCTCGCAAAAAATGTGGATGGCCCTGGACCGCACCCGCTACATGCAAGCATCGAAGACATTCGTGATGGTCGACCGGCCCTTCTGGAAGGACAAGGACCCGCAGACCGGCCGCGACTTGATGAGCATGACCCTCACCGATCGGCTGACTCGCGGCACTTACCTGTTCGACAACGGCGACGACAAGCCAGGCGTCATCTGCCTGTCCTACTCATGGATGAGCGATGCGTTGAAAATGCTGCCGTATCCCGTGGAAAAACGCGTGAGGCTGGCGCTTGATGCGCTGAAAAAAATCTATCCGAACGTCGACATCGCCGCGCGGATCATTGGCGATCCGATCACAGTTTCCTGGGAAGCCGACCCCTATTTCCTCGGTGCATTCAAAGGCGCCCTGCCGGGCCACTACCGATACAACCAACGCATGTATGCACACTTCATGCAAGACGACATGCCGGCTGAACAAAAAGGGATCTTTATCGCCGGTGATGACGTCTCATGGACACCCGCCTGGGTAGAAGGCGCGGTCCAGACCTCGCTCAATGCCGTGTGGGGGATCATGAAACATTTCGGCGGTGAAACTCACCCCGAGAACCCGGGGCCAGGCGATGTGTTCGACGAAATCGGTCCGATCGCCTTGCCCGAATAA	MNKNNRHPANGKKPITIFGPDFPFAFDDWIEHPAGLGMIPKHNHGAEVAIVGAGIAGLVAAYELMKMGLKPVVYEASKLGGRLRSQAFNGAEGIVAELGGMRFPVSSTAFYHYVDKLGLETKPFPNPLTSASGSTVIDLEGQTYYAESMADLPALFQEVADAWADALEAGSRFGDIQQAIRDRDVPRLKELWNTLVPLWDDRTFYDFVATSKAFAKLSFQHREVFGQVGFGTGGWDSDFPNSMLEIFRVVMTNCDDHQHLVVGGVEQVPHGIWKHVPERCVHWPEGTSLNSLHLGAPRSGVKRIARADNDRFTVTDVWGDTREYAAVLVTCQTWLLTTQIECEEALFSQKMWMALDRTRYMQASKTFVMVDRPFWKDKDPQTGRDLMSMTLTDRLTRGTYLFDNGDDKPGVICLSYSWMSDALKMLPYPVEKRVRLALDALKKIYPNVDIAARIIGDPITVSWEADPYFLGAFKGALPGHYRYNQRMYAHFMQDDMPAEQKGIFIAGDDVSWTPAWVEGAVQTSLNAVWGIMKHFGGETHPENPGPGDVFDEIGPIALPE	PGPT0020330_195	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_LYSINE_DEGRADATION,PGPT0020330-davB-K00468	NA	NA
D1-36_04671	795	ramA_2		(R)-stereoselective amidase	ATGCGCGTAGCCCTTTACCAATGCCCACCGCTGCCCATGGAACCGGCCGGCAACCTGCAGCGACTGCACCAGGTCGCGCTGGAAGCCAGGGGTGCCGATGTGCTGGTGTTGCCGGAGATGTTCTTGACTGGCTACAACATTGGGGTCGATGCGGTGAATGTACTGGCCGAGGTCTACAACGGCGAATGGGCGCAGCAAATCGGCCGCATCGCCAAGGCGGCCGGCCTGGCCATTCTCTATGGTTACCCGGAGCGCAGCGAAGATGGGCAGATCTACAATTCGGTCCAATTGATCGACGCCCACGGCGAGCGCCTGGCCAATTATCGCAAGAGTCATTTGTTCGGCGACCTCGACCGCACGATGTTCAGCGCGGGCGATTCAGCGTTGCCGATCGTGGAGCTCAACGGTTGGAAGCTCGGCTTCCTGATCTGCTATGACCTAGAGTTTCCAGAAAATGCCCGGCGCCTGGCGCTGGCCGGCGCCGAGCTTATCCTGGTACCCACCGCCAACATGCATCCGTACGAGTTCATCGCCGACGTCACCGTGCGCGCCCGGGCCATCGAGAACCAGTGTTTCGTGGCCTATGCCAACTATTGCGGCCACGAAGGTGAGTTGCAGTATTGCGGTCAGAGCAGCATTGCCGCCCCGAACGGCAGCCGCCCGGCGTTGGCGGGGCTGGACGAAGCGTTGATCGTGGGTGAGCTGGATCGACAATTGATGGAGCAAACGCGGGCAGCCTACAACTACCTGCACGATCGGCGTGCGGCGCTGTACGGCGACTTGCACAAACACTGA	MRVALYQCPPLPMEPAGNLQRLHQVALEARGADVLVLPEMFLTGYNIGVDAVNVLAEVYNGEWAQQIGRIAKAAGLAILYGYPERSEDGQIYNSVQLIDAHGERLANYRKSHLFGDLDRTMFSAGDSALPIVELNGWKLGFLICYDLEFPENARRLALAGAELILVPTANMHPYEFIADVTVRARAIENQCFVAYANYCGHEGELQYCGQSSIAAPNGSRPALAGLDEALIVGELDRQLMEQTRAAYNYLHDRRAALYGDLHKH				NA	NA	NA	NA	NA
D1-36_04672	2436			hypothetical protein	ATGCCGGCCCCCGATTCCCTCCGCCCCTCTACCGAAACCCTGTCCAACGGCCTGAAATTGACGTTGCGTCATGCTCCTGGCCTCAAGCGCAGCGCTGCGGTGTTGCGCGTGGCCGCCGGTAGCCATGATGCGCCCAAGGCCTGGCCGGGGCTGGCGCACTTTCTTGAACATCTTTTCTTCCTGGGGACGGAGCGTTTTCCCACTGGGCAGAACCTGATGGCCTACGTGCGGGACCACGGCGGGCAGGTCAACGCGCGTACCAGTGAACGCACCACGGAGTTTATTCTGGAGCTGCCTCCTGCCGCCCTGCCCGGTGGGCTTGAGCGGTTGGCGGACATGCTTGCCCATCTGCGTCTGGATGAGACCGACCAGTTGCGAGAGCGGGAAGTGCTGCACGCAGAGTTTATTGCCTGGTCCCAGGATGCGGCGGCCCAGCGGCAGGTTGCCTTGTATGAAGGACTGTCGAAGGGTCACCCACTGCGCGGCTTTCATGCGGGCAATCGCGACAGCCTCGCCGTACCACAGCCAGAATTCCAGAGCGCGCTGCGCGATTTCTACCAGCGTTTCTATCAGAGCGGCCAGATGACCTTGAGCCTGGCCGGCCCGCAACGCATCGGGACCCTGGAGGCGCTGGCCACTCAGTTCGGTGAAAGCCTGCCAACCGGCAGAACGCAGGTCAGGCAGCCACCGCCGAGGCTCATGGCAGCAACCGAGACCGGGTACCAGCAGGCCCGGCAAGATTCGCTCGACGTACTGTTCGCCTTCGAAAACTTGCCTGCCGCCTCGCCCCAAGCCTTGGATTTCCTCTGCCACTGGCTCAACGCCCCTAAACCGGGCGGGTTGCTTGCAACGTTGCGCCAACGCGGTCTGGCTGACAGCCTCAAAGCCGTGCCCCTGTATGAATTTTCTGGTCAGGCACTGCTTCACATCGAGTTCAAGCACGACCGCGACCAGGTGCCGACTGATATCCAACCGCTGCTGCGCGATTGGCTGGGTTTTTTTGCCGCTCAGGATGACTGGGCATCACTTCGCCAGGCGTTCACTGCGCTACGCCAACGCCAACTGGAGACGGCAACAGCCTTGCAACTGGCTCGTTGGGACAGCGAAGGACGCCAAGGCCCCTTGTCGGAAAACGACCTGATGCGCCTCAGGGAAATCCTCAAGCAATTACACGCCGTCGACCAGCCCGTCGAACCGTGGCAATTGCCCTCGCCCAACCCGTTTCTGCAGAGCATCAACGAACCACCCCGCGCCGGATTGATTCGCGGCCAAACCAGTGCCCACCGCGGCTTACGAACATTCGCACAAGACCGCAGCCGGGGCCGGCGCGAACGCTCGCCCATGCAGTTCAGCCAGGCATTGCCGGATACCTCGCCGGAAGGCGCGGTGTACCTGCGCTGGCTATTGGCGGCCCCCGTATCGCCCGGCCACCAACGCAGGCTCGATCGGCAATTGGCGGATCTGCGCGAAGACGCCCGCCAGGCCGGCGTGGACATTACCTTCGAGACTCATGACGAACAATGCCTGCTGAAACTGACCGGCTTGCAGGCACCGATGCCGCGAGTACTTGAACACCTGCTGGTGGAACTGGGCCAGCCGCTGCCGCCAGTCCCGGCCAATAGCGAGCCTCCCTTGATACCGATCCGACAGCTGTTGCGTGAATTGCCGGAGCTCTTGCGGCAAACCCCACGATCGCCATCATCGTCCGACAGCGATCAGAGCGTCTGGACGAACGCCCGATGGGACGGCTTGGCCGTCGGTCTGGCGGCGGCCACTCAAGTGGCGCTGGGCCCCGTTCTGGCGCGAATTCCTGGGATCGCCCGAGAAGAAGCGGTGTCGACGCTCGTGGCTGCTCCGGGACGCGCCTGGCACACGCTCGAAACTCCAGGAGACGACCACGCCGTACTGATGTTCTGCCCCACGGCAACCCAGGACATTTGCGACGAGGCTGCGTGGCGTTTGCTCGCCCATCTGAGCCAAACCCCGTACTACCAACGCCTGCGAGTGGACCTGCAACTGGGCTATGCGGTGTTCAGTGGTTTGAAGCAGATCGACGGACGCACCGGCCTGCTACTGGGCGCCCAATCACCCGGTGCCTCGGCAGCGCAGTTGGCTGAACATATGGAGCAGTTCCTGGAAACCTTGCCTGAGTTGATCCAGCAGCTAGACGACTCGACCCTGACCAGCCAGCAACAGGCCTTGGCCAGCCAGATTCAAAGCGCGGCGATGCCCATCGTCCAGGCAGCCGAACTGCTCTGGCAGGGCAAACTGGCCGGTCGTCCAACGGACTACCTGCAACGGTTACCCGACGTCATAACATCGATGACACGCGGACAACTGGTCGACGCCGCGCACCGTTTGAAAGAAGCCCTCGGCGGACGTTCCTGCCTGAGCAACGCGCCGTGCCCGGGAACGCCCTGGCGCGCGGTGCGATGA	MPAPDSLRPSTETLSNGLKLTLRHAPGLKRSAAVLRVAAGSHDAPKAWPGLAHFLEHLFFLGTERFPTGQNLMAYVRDHGGQVNARTSERTTEFILELPPAALPGGLERLADMLAHLRLDETDQLREREVLHAEFIAWSQDAAAQRQVALYEGLSKGHPLRGFHAGNRDSLAVPQPEFQSALRDFYQRFYQSGQMTLSLAGPQRIGTLEALATQFGESLPTGRTQVRQPPPRLMAATETGYQQARQDSLDVLFAFENLPAASPQALDFLCHWLNAPKPGGLLATLRQRGLADSLKAVPLYEFSGQALLHIEFKHDRDQVPTDIQPLLRDWLGFFAAQDDWASLRQAFTALRQRQLETATALQLARWDSEGRQGPLSENDLMRLREILKQLHAVDQPVEPWQLPSPNPFLQSINEPPRAGLIRGQTSAHRGLRTFAQDRSRGRRERSPMQFSQALPDTSPEGAVYLRWLLAAPVSPGHQRRLDRQLADLREDARQAGVDITFETHDEQCLLKLTGLQAPMPRVLEHLLVELGQPLPPVPANSEPPLIPIRQLLRELPELLRQTPRSPSSSDSDQSVWTNARWDGLAVGLAAATQVALGPVLARIPGIAREEAVSTLVAAPGRAWHTLETPGDDHAVLMFCPTATQDICDEAAWRLLAHLSQTPYYQRLRVDLQLGYAVFSGLKQIDGRTGLLLGAQSPGASAAQLAEHMEQFLETLPELIQQLDDSTLTSQQQALASQIQSAAMPIVQAAELLWQGKLAGRPTDYLQRLPDVITSMTRGQLVDAAHRLKEALGGRSCLSNAPCPGTPWRAVR				NA	NA	NA	NA	NA
D1-36_04673	912	pqqB	COG1235	Coenzyme PQQ synthesis protein B	ATGTTCGTCCAGATTCTAGGCTCCGCCGCGGGCGGCGGTTTTCCCCAGTGGAACTGCAACTGCGCCAATTGCGCAGGTTTTCGCAACGGCAGCCTGCGGGCCCAGGCGCGTACCCAGTCGTCCATCGCGATTTCCGACGACGGCGTGAGCTGGGTGCTGTGCAACGCCTCGCCGGACATTCGCGCCCAGCTCCAGGGATTTGCCCCGATGCAGCCTGGCCGGGCCCTGCGGGACACCGGTATCGGCGCGATCATTCTGATGGACAGCCAGATCGACCACACCACCGGCCTGCTCAGCCTGCGCGAAGGTTGCCCGCACCAGGTCTGGTGCACCGACATGGTCCATGAAGACCTGAGCACGGGTTTCCCACTGTTCAACATGCTCACCCACTGGAACGGCGGCCTGAGCTGGAACCGCATCCAACTCGATCAGAGTTTCACTATTGCCGCTTGCCCAAGCCTGCGCTTTACCCCACTGCCACTTCGCAGCGCCGCCCCGCCCTATTCCCCGCACCGCTTCGACCCGCACCCGGGCGATAATATCGGGCTGATCGTCGAAGACCTGCGCACCGGCGGCAAGCTGTTCTATGCACCAGGCCTGGGCAAGGTCGACGGTCCGCTGCTGGACATCATGGCCGGCAGCGACTGCCTGTTGGTGGACGGCACGATGTGGGACGACGATGAAATGCAGCGCCGTGGCGTCGGCACCCGCACCGGTCGGGAAATGGGCCACCTGGCGCAGCACGGCCCTGGCGGCATGCTTGAAGTGCTGGAGCAACTGCCCGAGCAGCGCAAGGTCCTTATTCATATCAACAACACCAACCCGATACTCGACGAGGATTCACCCGAGCGGGCCGAGCTGGTGCGACGCAATGTCGAAGTCGCCTACGACGGCATGAGCATCGAACTGTAG	MFVQILGSAAGGGFPQWNCNCANCAGFRNGSLRAQARTQSSIAISDDGVSWVLCNASPDIRAQLQGFAPMQPGRALRDTGIGAIILMDSQIDHTTGLLSLREGCPHQVWCTDMVHEDLSTGFPLFNMLTHWNGGLSWNRIQLDQSFTIAACPSLRFTPLPLRSAAPPYSPHRFDPHPGDNIGLIVEDLRTGGKLFYAPGLGKVDGPLLDIMAGSDCLLVDGTMWDDDEMQRRGVGTRTGREMGHLAQHGPGGMLEVLEQLPEQRKVLIHINNTNPILDEDSPERAELVRRNVEVAYDGMSIEL	PGPT0001250_583	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-GLUCONIC_ACID-PQQ_PATHWAY,PGPT0001250-pqqB|pqqG-K06136	NA	NA
D1-36_04674	753	pqqC	COG5424	Pyrroloquinoline-quinone synthase	ATGACTGACACGCCATTGACCACCGCAGAATTTGAAGCAGCCTTGCGCGCCAAGGGCGCCTTCTACCATATCCATCACCCGTACCACGTGGCGATGTACGAAGGCCGTGCCACACGCGAGCAGATCCAGGGTTGGGTCGCGAACCGCTTCTATTACCAAGTGAACATTCCGCTCAAGGACGCCGCGATCCTGGCCAACTGCCCGGATCGGGAGGTCCGCCGCGAGTGGATCCAGCGTTTGCTTGACCATGACGGCGCCCCTGGCGAAGACGGCGGCATCGAAGCCTGGCTACGGCTGGGCCAAGCGGTGGGCCTCGATCCCGATCAATTGCGTTCCCAGGAACTGGTGCTGCCAGGTGTGCGCTTCGCCGTGGACGCCTATGTCAACTTCGCCCGCCGCGCCTCTTGGCAGGAAGCCGCCAGCAGCTCGCTGACCGAACTGTTCGCCCCGCAGATCCACCAGTCGCGCCTCGACAGTTGGCCGCAGCACTACCCATGGATCGACCCGGCCGGCTACGAATACTTCCGCACCCGCCTGGGCCAGGCCCGGCGCGACGTGGAGCACGGGTTGGCGATCACCTTGCAGCACTACACCACGCGTGAAGGCCAGGAACGCATGCTGGAGATTCTCCAGTTCAAACTCGACATTCTCTGGAGCATGCTCGACGCCATGAGCATGGCCTACGAACTGAACCGCCCGCCCTATCACACCGTGACCGACCAACGGGTCTGGCACAAAGGAATCGCCTTATGA	MTDTPLTTAEFEAALRAKGAFYHIHHPYHVAMYEGRATREQIQGWVANRFYYQVNIPLKDAAILANCPDREVRREWIQRLLDHDGAPGEDGGIEAWLRLGQAVGLDPDQLRSQELVLPGVRFAVDAYVNFARRASWQEAASSSLTELFAPQIHQSRLDSWPQHYPWIDPAGYEYFRTRLGQARRDVEHGLAITLQHYTTREGQERMLEILQFKLDILWSMLDAMSMAYELNRPPYHTVTDQRVWHKGIAL	PGPT0001255_445	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-GLUCONIC_ACID-PQQ_PATHWAY,PGPT0001255-pqqC-K06137	NA	NA
D1-36_04675	276	pqqD		PqqA binding protein	ATGAGTTTCGATCGCAGCCAAATCCCCGATTGGCGCCCCGGCTATCGCTTTCAGTACGAACCGGCCCAGAAAGGTCACGTGCTGCTCTATCCTGAAGGCATGATCAAGCTGAACGACAGCGCTGCGCTGATCGGTGGCCTGATCGATGGCGAGCGCGATGTGGCGGCGATCATCGCTGAGCTGGACAAACAATTTCCCGGTGTGCCTGAGCTCGGTGACGACATCGAGCAATTCATGGAGGTCGCCCGTGCTGAGCACTGGATCACCCTTGCCTGA	MSFDRSQIPDWRPGYRFQYEPAQKGHVLLYPEGMIKLNDSAALIGGLIDGERDVAAIIAELDKQFPGVPELGDDIEQFMEVARAEHWITLA	PGPT0001260_614	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-GLUCONIC_ACID-PQQ_PATHWAY,PGPT0001260-pqqD-K06138	NA	NA
D1-36_04676	1152	pqqE	COG0535	PqqA peptide cyclase	GTGCTGAGCACTGGATCACCCTTGCCTGAGAAGCCCGCCGTCGGCCTGCCGTTGTGGCTGCTGGCCGAGCTGACCTATCGCTGCCCGCTGCAATGCCCGTACTGCTCCAACCCGCTGGACTTTGCCGAGCAAGGCAAGGAACTGAGCACCGAGCAGTGGTTCAAGGTGTTCCGCGAGGCCCGGGAGATGGGCGCTGCGCAGTTGGGCTTTTCCGGTGGCGAACCGCTGGTGCGCCAGGACCTGGCCGAGCTGATCGGGGAGGCGCGCAAGTTGGGTTTCTACACCAACCTGATCACCTCCGGTATCGGTTTGACCGAACAGAAAATCAGCGATTTCAAGAAGGCCGGCCTGGACCATATCCAGATCAGTTTCCAGGCCAGCGATGAGCAGGTGAACAACTTGCTGGCCGGCTCGAAGAAAGCCTTCGCGCAAAAACTGGAAATGGCCCGGGCGGTGAAGGCCCACGGCTATCCGATGGTGCTGAACTTCGTGACCCATCGGCACAACATCGACAAGATCGATCGCATCATCGAGCTGTGCATCGCCCTGCAAGCCGACTTCGTCGAGCTCGCCACGTGCCAGTTCTATGGCTGGGCGCACCTCAACCGCGTCGGCCTGCTGCCCACCCGGGAACAGCTGGTGCGGGCCGAACGCATTACCAATGAATACCGGGCCAAGCTGGAAGCCGAAGGCAATCCGTGCAAGTTGATCTTCGTGACCCCGGACTACTATGAGGAACGCCCCAAAGCCTGCATGAACGGCTGGGGCAGCATCTTCCTGACCGTCACGCCGGACGGCACCGCATTGCCGTGCCATGGCGCCCGGCAAATGCCGGTGCAGTTTCCGAATGTGCGCGATTACAGCATGCAGCACATCTGGTACGACTCGTTCGGCTTCAACCGTTTCCGCGGATACGACTGGATGCCCGAGCCCTGCCGCTCGTGCGATGAAAAAGAAAAGGATTTCGGCGGCTGCCGCTGCCAGGCGTTCATGCTCACAGGCGACGCCAGCAACGCCGACCCGGTGTGCAGCAAATCCGAACACCACGGCATGATTCTCCAGGCGCGCGAAGACGCCGAGCATGCCACGCAAACCATTGAACAATTGGCCTTTCGCAATGAACGAAACTCGCGCCTCATCGTTAAAGGCTGA	MLSTGSPLPEKPAVGLPLWLLAELTYRCPLQCPYCSNPLDFAEQGKELSTEQWFKVFREAREMGAAQLGFSGGEPLVRQDLAELIGEARKLGFYTNLITSGIGLTEQKISDFKKAGLDHIQISFQASDEQVNNLLAGSKKAFAQKLEMARAVKAHGYPMVLNFVTHRHNIDKIDRIIELCIALQADFVELATCQFYGWAHLNRVGLLPTREQLVRAERITNEYRAKLEAEGNPCKLIFVTPDYYEERPKACMNGWGSIFLTVTPDGTALPCHGARQMPVQFPNVRDYSMQHIWYDSFGFNRFRGYDWMPEPCRSCDEKEKDFGGCRCQAFMLTGDASNADPVCSKSEHHGMILQAREDAEHATQTIEQLAFRNERNSRLIVKG	PGPT0001265_285	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-GLUCONIC_ACID-PQQ_PATHWAY,PGPT0001265-pqqE-K06139	NA	NA
D1-36_04677	1827			hypothetical protein	ATGAACGAAACTCGCGCCTCATCGTTAAAGGCTGATCCGCTCAGCGCCGCCCAGGCTGTCGCGGCAGGCATCGACTTTGCCGAACTGCAACTCGGGCCTTCAGGGCTTTTCTGGAATGAATACCGCCCAGCGGATGGCGCCTGCCGGATCTGGCATTGGCAAGATGCCAAGGCCCGCTGTCTGACCCCGGACGGGTTCAGCGCGCGCAGTCGGGTCTACGAATACGGTGGCGGGTCGTTTTGCCTGAGCGATGACGGCGTGCTGTTTGTCAACGAGGCCGACCAACAGCTGTATTACCAGTCATTGGACGGCGATCGTCCCGTGGCGCTGACTTGGGGCGAGAGGCGATATGGCGACCTGCACTTCGCCGCGGGGCGAGTGCTGGCGGTTGAGGAACAGGCCAATCAGCATCGTCTGGTGTCGATCGGGCTGGCCGATTTTAAGCGACAGGTGCTGGCCGAGGGTGCGGATTTCTACGCCGCGCCGATCCTGAGCCCGGATCAAAAGCGCCTCGCCTGGATCGAATGGAGCCGTCCTCATCAACCCTGGACGGCCACGCGACTGATGTTGGCAGAGCGTAACGATGCAGGTTGGAGTGAGCCGCGCTGCGTTGCCGGCCAAGGTGAGGATGAGTCCATCCAGCAACCACGATTCGACGCGGCGAATCGTCTTTATTGCCTGACGGATCGGGGTGGTTATTGGCAGCCTTGGGTCGAAGATGCCGGCTTCTTGAAACCATTGGCTGCCGCCGAAGCCGATCACGCCCCGGCGCCTTGGCAATTGGGCGGCTGTACCTGGCTGCCCTTGGGCGAGGACATTTACCTGGCGAGCTGGACCGAAGCGGGTTTTGGCCGGCTGGGCCTGCGCCATAGCGGCGCGATTGAGGAGTTCACCGGACCCTACAGCCGCTTTCGCAGCCTGGCCATGGATGAGCAATTCGTTTATGCAATTGCCGCTTCGCCGACCAGCCCGTCGGCGGTCATTGCTATTGAACGACAAAACCACGAAGCCATAATCGTGGCCGGCGGCGTTTCGCCGTTACCCGCCGAGCACATCAGCTGTCCGCAAACCCTGCGCTATCCCGTCGCTTCAAGCGAGGCCCACGGGTTCTTTTATCCTGCGATGGACGCCAAGGCTAAACCGCCGCTGGTGGTGTTTATCCATGGCGGGCCGACGTCGGCCTGCTATCCCATTTTCGACCCGCGCATCCAATACTGGACCCAGCGCGGCTTTGCCGTGGCCGATCTCAACTACCGCGGCAGCAGTGGCTACGGCCGGGCTTACCGGCAGGCATTGCATTTGAACTGGGGCGTGGTGGATGTCGAGGATGCCTGCGCGGTTGTCGCGTATCTGGATGAGCAGGGCTTGATCGATAGCCGCTGCGCCTTCATTCGTGGCGGCAGCGCCGGTGGGTACACGACACTTTGCGCCTTGGCGTTCCGGAACGTATTCCGTGCCGGCGCCAGCCTCTACGGCGTCAGCGACCCCGCTGCCCTGGGCCGCGCGACACACAAATTCGAAGGGGACTACCTGGACTGGCTGATCGGCGATCCACAGCTGGACGCCGAACGCTACAGGGCCCGCACGCCGTTGCTTCACGCCGACCGGATCCGCGCGCCGATGATTTTTTTCCAAGGTGAACTCGATGCCGTGGTCGTGCCGCAGCAAACCCGCGATATGGTCAAGGCCTTGGAAGACAACGGTGTTCCGGTGGAGGCGCACTACTACCCGGACGAGCGCCACGGCTTTCGCAAGGCGTCGAACCAGGCGCATGCGCTGGAGCATGAGTGGTTGTTTTATCGAAAAGTGATAGAAGTGAGCTTATAA	MNETRASSLKADPLSAAQAVAAGIDFAELQLGPSGLFWNEYRPADGACRIWHWQDAKARCLTPDGFSARSRVYEYGGGSFCLSDDGVLFVNEADQQLYYQSLDGDRPVALTWGERRYGDLHFAAGRVLAVEEQANQHRLVSIGLADFKRQVLAEGADFYAAPILSPDQKRLAWIEWSRPHQPWTATRLMLAERNDAGWSEPRCVAGQGEDESIQQPRFDAANRLYCLTDRGGYWQPWVEDAGFLKPLAAAEADHAPAPWQLGGCTWLPLGEDIYLASWTEAGFGRLGLRHSGAIEEFTGPYSRFRSLAMDEQFVYAIAASPTSPSAVIAIERQNHEAIIVAGGVSPLPAEHISCPQTLRYPVASSEAHGFFYPAMDAKAKPPLVVFIHGGPTSACYPIFDPRIQYWTQRGFAVADLNYRGSSGYGRAYRQALHLNWGVVDVEDACAVVAYLDEQGLIDSRCAFIRGGSAGGYTTLCALAFRNVFRAGASLYGVSDPAALGRATHKFEGDYLDWLIGDPQLDAERYRARTPLLHADRIRAPMIFFQGELDAVVVPQQTRDMVKALEDNGVPVEAHYYPDERHGFRKASNQAHALEHEWLFYRKVIEVSL				NA	NA	NA	NA	NA
D1-36_04678	159			hypothetical protein	ATGGATATCATTCGCATCATCATCGCCATTCTTCTGCCGCCGCTGGGTGTGTTTCTGCAAGTCGGTTTCGGCGGGGCTTTCTGGCTGAATATTCTGCTGACGCTGTTGGGCTACATCCCAGGCATCGTGCATGCGGTGTACATCATCGCCAAGCGCTGA	MDIIRIIIAILLPPLGVFLQVGFGGAFWLNILLTLLGYIPGIVHAVYIIAKR				NA	NA	NA	NA	NA
D1-36_04680	1779	dmdC_2	COG1960	3-methylmercaptopropionyl-CoA dehydrogenase	ATGGCTGACTACAAAGCGCCCCTGCGCGATATGCGCTTCGTCCTCAATGAAGTATTCGAGGTCGCGAAACTTTGGGCTCAATTGCCGGCGCTGGCCGACACTGTGGACGCTGAAACTGTCGAGGCGATTCTTGAAGAGGCCGGCAAGGTCACCAGCAAAAGCGTAGCGCCCCTCAGCCGCGCGGCTGACGAGGAAGGTTGCCACTGGGCTGACGGCGCCGTCACGACCCCGGCAGGTTTCCCACAGGCTTATAAGACTTATGCCGAAGGCGGCTGGGTGGGTGTCGGTGGTGATCCGGCGTATGGTGGCATGGGCATGCCCAAGGCTGTTTCGGCCCAGGTCGAGGAAATGGTCAACTCCGCCAGCCTCTCATTTGGGCTGTACCCGATGCTGACCGCCGGGGCTTGCCTGTCGATCAATGCCCACGCCAGCGAAGCGTTGAAGGCCGCGTACTTGCCGAATATGTACGCGGGCATCTGGGCCGGCTCGATGTGCCTGACCGAGCCTCACGCCGGTACCGACCTGGGGATCATCCGGACCAAGGCTGAACCCCAGGCCGACGGTTCCTACAAAGTCAGCGGCACCAAGATTTTCATCACAGGCGGCGAACACGACCTCACCGAAAACATCATTCACCTGGTGTTGGCGAAGCTCCCGGACGCACCGGCCGGGCCGAAAGGCATCTCGCTGTTCCTCGTGCCGAAATTCATGGTCAATGCCGACGGCAGCCTGGGCGCACGCAACGCAGCCAACTGCGGTTCGATCGAGCACAAGATGGGCATCCAGGCGTCCGCCACCTGCGTGATGAACTTCGACGAAGCGGTAGGTTATCTGGTCGGCGAGCCCAACAAAGGCCTGGCGGCGATGTTCACCATGATGAACTACGAGCGCCTGGGCGTCGGTATCCAGGGCCTGGCCACTGGCGAGCGTTCCTATCAGAACGCTATCGAATACGCCCGCGATCGCCTGCAAAGCCGTTCGCCAACCGGCGCGCAAAACAAAGACAAGATCGCTGACCCGATCATCGTCCACCCGGACGTGCGCCGCATGCTACTGACCATGAAAGCCTCGAACGAAGGTGGCCGCGCATTTTCCACCTACGTGGCGATGCAACTGGATACCGCGAAATTCAGCGAAGACCCAGCCACGCGCAAGCGCGCGGAAGACCTGGTCGCGCTGCTGACGCCGGTGGCCAAGGCTTTCCTGACCGATCTGGGCCTGGAAACCACGGTCCATGGCCAGCAGATCTTCGGCGGTCACGGTTACATCCGCGAATGGGGCCAGGAGCAACTGGTGCGTGACGTGCGCATCACGCAGATCTATGAAGGCACCAACGGTATCCAGGCGCTGGATCTGGTAGGGCGCAAGATCGTCGGAAGTGGTGGGGCGTTCTATAAATTGTTCGCCGATGAAATCCGTCATTTCACCGCCACCGCAAGCAGCGATTTGTCGGAGTTCACCCAACCGTTGAACGATGCCGTTGGCACGCTGGACGAGCTGACCGAATGGCTGCTCGATCGGGCAAAAAACAACCCGAACGAAATTGGCGCGGCTTCGGTGGAATACCTGCAAGCGTTCGGCTACACCGCTTATGCCTACATGTGGGCGTTGATGGCCAGGGCGGCCCTGGGCAAGGAAAGCCAGGATGATTTCTACGCAGGCAAGCTGGGCACGGCGCGATTCTACTTCGCCCGCCTGTTACCGCGAATTCATTCGCTGAGCGCTTCGGTGAAGGCCGGCAGTGAGTCGCTGTTCCTCTTGGAGCCGGGCCAGTTCTGA	MADYKAPLRDMRFVLNEVFEVAKLWAQLPALADTVDAETVEAILEEAGKVTSKSVAPLSRAADEEGCHWADGAVTTPAGFPQAYKTYAEGGWVGVGGDPAYGGMGMPKAVSAQVEEMVNSASLSFGLYPMLTAGACLSINAHASEALKAAYLPNMYAGIWAGSMCLTEPHAGTDLGIIRTKAEPQADGSYKVSGTKIFITGGEHDLTENIIHLVLAKLPDAPAGPKGISLFLVPKFMVNADGSLGARNAANCGSIEHKMGIQASATCVMNFDEAVGYLVGEPNKGLAAMFTMMNYERLGVGIQGLATGERSYQNAIEYARDRLQSRSPTGAQNKDKIADPIIVHPDVRRMLLTMKASNEGGRAFSTYVAMQLDTAKFSEDPATRKRAEDLVALLTPVAKAFLTDLGLETTVHGQQIFGGHGYIREWGQEQLVRDVRITQIYEGTNGIQALDLVGRKIVGSGGAFYKLFADEIRHFTATASSDLSEFTQPLNDAVGTLDELTEWLLDRAKNNPNEIGAASVEYLQAFGYTAYAYMWALMARAALGKESQDDFYAGKLGTARFYFARLLPRIHSLSASVKAGSESLFLLEPGQF	PGPT0008385_210	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249	NA	NA
D1-36_04681	1797	dmdC_3	COG1960	3-methylmercaptopropionyl-CoA dehydrogenase	ATGCCCGAGTACAAAGCTCCCCTGCGCGACATGCGCTTTCTGATCGACCACGTCTTCGATTTCCATGGCCGCTATGCCGAACTGGGTGCCAGCGATGCCAGCCCGGACATGGTCAGCGCCATCCTCGAGGAAGGTGCTCGGTTCTGTGAGAATGTGCTGGCGCCGCTCAATCGTCCAGGTGACGAGGAGGGCTGCCATTTCGACAATGGCGTGGTGACTACGCCTACAGGTTTCCGGCAGGCGTTCGCACAGTATGTGGAAGGCGGCTGGCACGGCCTGGCGGCGGACCCAGCGTATGGCGGCCAAGGCCTGCCCAGTTCCCTGGGCCTGGTCATCAGCGAAATGATCGGGTCGAGCAACACTTCCTGGGGCATGTACCCTGGCCTGACCCACGGCGCCATGTCGGCGATCCACGCCCATGGCACCGAGGAACAGAAGCAGACCTATCTCAGCAAACTCACCGCCGGCCAGTGGACCGGTACCATGTGCCTGACCGAAGCCCACTGCGGCACCGACCTGGGCATTATCAAGACCCGCGCGGTGCCCCAGGCTGACGGCAGCTATGCGGTGACCGGCAGCAAGATCTTCATCAGCGCCGGCGAGCACGACATGAGCGACAACATCATCCATCTGGTGCTCGCCAAGCTGCCGGATGCTCCGGCCGGGACCAAGGGCATCTCGTTGTTTATCGTGCCGAAGTTCCTGCCCGACGCCGCAGGCGAGGCCGGGGAGCGCAATGGCGTTTCCTGCGGGTCGATCGAACACAAGATGGGCATCAAGGCCTCGGCGACCTGTGTGCTGAACTTCGACGGCGCCAAGGGGTTCCTGATCGGCGAGGCGAACAAGGGCCTCAACTGTATGTTCACCATGATGAACCATGCCCGCCTCGGCACCGGCATGCAGGGTCTTTGTCTGGGCGAGGCGAGTTTCCAGGGCGCGGTCAGATACGCCAATGATCGTCTGCAGATGCGCTCGCTGACCGGCCCCAAGGCGCCGGAAAAAGCGGCCGACCCAATCATCGTCCACCCTGACGTGCGCAGGATGCTCTTGACGATGAAGGCCTTCAACGAAGGCAACCGGGCGCTGACGTACTTCACTGCGCAATTGCTCGACACCGCGCACTTGAGCCGCGACGAAACCGCCCGCCAAGAGGCCGAAGACCTGTTGGCCTTCCTCACGCCTATCTGCAAAGCGTTCATGACCGACACGGGGCTGGAGGTAACCAACCACGGCATGCAGGTTTTCGGCGGCCACGGCTTTATCCGCGAGTGGGGCATGGAACAATTGGTACGCGATTGTCGGATCGCGCCGATCTACGAAGGCACCAACGGCATCCAGGCCTTGGACTTGCTGGGACGCAAGGTGCTGGGCAGCCAAGGCAAGCTGCTGCGCGGGTTTACCAAAATTGTTCATCAGTTCTGCGCCGCCAATACCGGGCATGCGCAACTCCAGGGATACATTGCGCAACTGGACGGGCTTAATCGGCAATGGGGTGATTTGACGACCCAGGTCGGCATGGCTGCCATGAAAAATCCCGATGAGGTGGGGGCCGCCTCCGTGGATTACCTGATGTACAGCGGTTACATCATCCTGGCTTACCTGTGGTTGCGCATGGCGTTGGTGGCTCAGGCGCAACTCGACAGTGGCGATGGCGACGCGGATTTTTGCCGGGCCAAGCTGGCGACTTGTGAATTTTATTTCAAGCGCCTGTTGCCGCGCACGGCCGCTCATCGCTCAGCTGTCGAGGCGGGAAGCGAATGCCTGATGAAGTTGCCGGCGCAGTTGTTTGCGCTTTGA	MPEYKAPLRDMRFLIDHVFDFHGRYAELGASDASPDMVSAILEEGARFCENVLAPLNRPGDEEGCHFDNGVVTTPTGFRQAFAQYVEGGWHGLAADPAYGGQGLPSSLGLVISEMIGSSNTSWGMYPGLTHGAMSAIHAHGTEEQKQTYLSKLTAGQWTGTMCLTEAHCGTDLGIIKTRAVPQADGSYAVTGSKIFISAGEHDMSDNIIHLVLAKLPDAPAGTKGISLFIVPKFLPDAAGEAGERNGVSCGSIEHKMGIKASATCVLNFDGAKGFLIGEANKGLNCMFTMMNHARLGTGMQGLCLGEASFQGAVRYANDRLQMRSLTGPKAPEKAADPIIVHPDVRRMLLTMKAFNEGNRALTYFTAQLLDTAHLSRDETARQEAEDLLAFLTPICKAFMTDTGLEVTNHGMQVFGGHGFIREWGMEQLVRDCRIAPIYEGTNGIQALDLLGRKVLGSQGKLLRGFTKIVHQFCAANTGHAQLQGYIAQLDGLNRQWGDLTTQVGMAAMKNPDEVGAASVDYLMYSGYIILAYLWLRMALVAQAQLDSGDGDADFCRAKLATCEFYFKRLLPRTAAHRSAVEAGSECLMKLPAQLFAL	PGPT0008385_210	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249	NA	NA
D1-36_04682	1290			hypothetical protein	TTGCCGCGTTCTTCCGCTGTACGTCTCAGCCATTTCCTACCGTCACTGTTGCTGTTGTTGGCAGGGCTCGCGGCTGCCTACGTCAAGGATCTCAACGTATTCTTTACCTCCCTGTTCAATGTGCTTCCTACATTGGTATTGCTACTGGGGGGCGCGTATTGCTCCGTTTACCGGCGCCAGCGTGAGCTGTTTCTGATGGTCACGGTGTACATCGCCTACTTCCTGCTGGACACCCAAACCGATTTCTACCGCGATAACGGTAAGGTGCGTGAAGACGCGGCGGTGGTGTTCCATCTCGTCTGCTTGTTGCTGCCGCTGTTGTTCGGGCTGTTCGCGGCGTGGCAGGAGCGCACCCATCTGTTCCAGGACATGGTGGCGCGGTTCGCGGTGTTGCTGGTTTTCGGCAGCGTGGCGCTGGCCCTGGAGCAAAGTTTCCCCCAGGCCTTGTTGTTGTGGCTTTCGGAGATCCGCTGGCCCGCGTTGCACGGCGCCTGGATGAGCCTGATCCAATTGTCCTACCCTATGTTCGCCGCCGCGTTCCTGCTGCTGGCCTGGCAATACTGGCGTAATCCCCGGCCGCTTCACGCGGCGCAACTGGTGGGGCTGCTGGGATTGTTCTGGATGCTGCCGAAAACCTTCATCTTGCCGTTCACCCTGAACATCATGTGCAGCCAGGTGATGCTGATGATTGCTGCCGCGGTCGCCCACGAGGCATATCAAATGGCGTTCCGCGACGAGCTCACCGGCCTGCCGGGACGTCGTGCCTTGAATGAGCGCATGCAGCGCCTGGGGCGCAATTACGTATTGGCGATGAGCGACGTGGACCATTTCAAGAAGTTCAACGACACCCACGGCCACGACGTCGGCGATCAAGTGCTGCGCCTGGTAGCCAGCAAGCTGTCAAAAATCGGCGGGGGCGGTAGGGCTTATCGCTATGGTGGTGAGGAATTTGCGCTGGTGTTCGCCGGTAAAACCATTGATGAGTGCATGCCCCATCTGGAAGTCATCCGTCAGTCCATCGAGACCTACGCTATTCAATTGCGTAATTCCGACAGTCGCCCCCAGGACGATCAGCAAGGGCGCCAGCGTCGCTCGGGCGCTGGCGCCTCCAGCGTATCGGTAACCGTCAGCATCGGCGTGGCCGAGCGCATCGAGCAGCGTACGCCCGAAGAGGTGCTCAAATCGGCGGACCAGGCGCTGTATAACGCCAAGGGCGCGGGGCGAAACTGTGTGGTCGCCTTCGGGCAGAGTCGTCGTGGTGCGGTGCGCATGGAGGCCGCCGCGGGTTGA	MPRSSAVRLSHFLPSLLLLLAGLAAAYVKDLNVFFTSLFNVLPTLVLLLGGAYCSVYRRQRELFLMVTVYIAYFLLDTQTDFYRDNGKVREDAAVVFHLVCLLLPLLFGLFAAWQERTHLFQDMVARFAVLLVFGSVALALEQSFPQALLLWLSEIRWPALHGAWMSLIQLSYPMFAAAFLLLAWQYWRNPRPLHAAQLVGLLGLFWMLPKTFILPFTLNIMCSQVMLMIAAAVAHEAYQMAFRDELTGLPGRRALNERMQRLGRNYVLAMSDVDHFKKFNDTHGHDVGDQVLRLVASKLSKIGGGGRAYRYGGEEFALVFAGKTIDECMPHLEVIRQSIETYAIQLRNSDSRPQDDQQGRQRRSGAGASSVSVTVSIGVAERIEQRTPEEVLKSADQALYNAKGAGRNCVVAFGQSRRGAVRMEAAAG				NA	NA	NA	NA	NA
D1-36_04683	1806	dmdC_4	COG1960	3-methylmercaptopropionyl-CoA dehydrogenase	ATGCCTGACTACAAGGCCCCCTTGCGTGATATTCGCTTCGTTCGTGACGAACTGCTCGGCTACGAAGCGCATTATCAGAGCCTTCCGGCTTGCCAGGACGCAACTCCAGACATGGTTGACGCCATTCTCGAAGAAGGCGCCAAGTTTTGTGAGCAGGTGCTGGCACCGCTGAACCGCGTGGGTGACCTTGAGGGTTGCACCTGGAGCGAGTCCGGCGTGAAAACTCCGACCGGCTTCAAGGAAGCCTACAAGCAGTTCGTCGAAGGCGGCTGGCCAAGCCTGGCCCATGACGTCGAGCACGGCGGCCAAGGCCTGCCGGAGTCCCTGGGCCTGGCGGTCAGCGAGATGGTCGGTGAAGCCAACTGGTCGTGGGGCATGTACCCAGGCTTGTCCCATGGCGCGATGAACACCATTTCCGAACACGGCACGCCCGAGCAGCAAGAGGCGTACCTGACCAAGCTGGTGTCCGGCGAATGGACCGGCACCATGTGCCTGACTGAACCTCACTGCGGCACCGACCTGGGTATGCTGCGCACCAAGGCCGAACCTCGGGCCGACGGTTCCTACAAAGTGACCGGCACCAAGATTTTCATCTCGGCTGGCGAACACGACATGGCCGACAACATTGTCCACATCGTGCTGGCACGCCTGCCGGATGCACCCGCCGGCACCAAGGGCATCTCGCTGTTCATCGTTCCAAAATTCCTGCCGAACGCCGACGGCACCGTCGGCCAGCGCAACGCCGTGAGCTGTGGTTCCCTGGAACACAAGATGGGCATCCACGGCAACGCCACCTGCGTGATGAACTTCGACGCGGCCACCGGTTTCCTGATCGGCCCGGCGAACAAGGGCCTGAACTGCATGTTCACCTTCATGAACACCGCACGCCTGGGCACTGCGCTGCAAGGCCTGGCCCACGCCGAGATCGGCTTCCAGGGCGGCCTGAAATATGCCCGTGATCGCCTGCAAATGCGTTCTTTGACCGGCCCGAAAGCGCCAGACAAGGCCGCCGACCCGATCATCGTGCACCCTGACGTGCGCCGCATGCTGTTGACCATGAAGGCCTTCGCCGAGGGCAACCGGGCGATGGTGTACTTCACCGCCAAGCAGGTGGATATCGTCAAGTACGGCGTGGATGAAGAAGAGAAGAAGAAAGCCGATGCGCTGCTGGCGTTCATGACGCCGATCGCCAAGGCCTTCATGACCGAAGTCGGCTTCGAATCGGCCAACCATGGCGTGCAGATCTACGGCGGCCACGGCTTCATCGCCGAGTGGGGCATGGAGCAGAACGTTCGCGACAGCCGCATCTCGATGCTGTACGAAGGCACCACCGGCATTCAGGCGCTCGACCTGCTGGGCCGTAAAGTCCTGATGACCCAGGGCGAAGCGCTCAAGGGCTTCACCAAGATCGTCCACAAGTTCTGCCAGGGCAACGAAGGCAACGAAGCGGTCAAGGAGTTCGTCGAACCCCTGGCTGCGCTGAACAAAGAATGGGGCGAGCTGACCATGAAGGTTGGCATGGCGGCCATGAAGGATCGCGAAGAAGTCGGCGCTGCCTCGGTGGATTACCTGATGTACTCCGGTTACGCCTGCCTGGCCTATTTCTGGGCCGACATGGCGCGTCTGGCAGCGGAAAAACTCGCAGCCGGCACCACCGAAGAAGCGTTCTACACCGCCAAGCTGCAGACCGCGCGCTTCTACTTCCAGCGCATCCTGCCGCGTACCCGCACCCATGTTGCGGCCATGTTGTCGGGCGCCAACAACCTGATGGACATGAAGGAAGAAGATTTCGCGCTGGGCTACTAA	MPDYKAPLRDIRFVRDELLGYEAHYQSLPACQDATPDMVDAILEEGAKFCEQVLAPLNRVGDLEGCTWSESGVKTPTGFKEAYKQFVEGGWPSLAHDVEHGGQGLPESLGLAVSEMVGEANWSWGMYPGLSHGAMNTISEHGTPEQQEAYLTKLVSGEWTGTMCLTEPHCGTDLGMLRTKAEPRADGSYKVTGTKIFISAGEHDMADNIVHIVLARLPDAPAGTKGISLFIVPKFLPNADGTVGQRNAVSCGSLEHKMGIHGNATCVMNFDAATGFLIGPANKGLNCMFTFMNTARLGTALQGLAHAEIGFQGGLKYARDRLQMRSLTGPKAPDKAADPIIVHPDVRRMLLTMKAFAEGNRAMVYFTAKQVDIVKYGVDEEEKKKADALLAFMTPIAKAFMTEVGFESANHGVQIYGGHGFIAEWGMEQNVRDSRISMLYEGTTGIQALDLLGRKVLMTQGEALKGFTKIVHKFCQGNEGNEAVKEFVEPLAALNKEWGELTMKVGMAAMKDREEVGAASVDYLMYSGYACLAYFWADMARLAAEKLAAGTTEEAFYTAKLQTARFYFQRILPRTRTHVAAMLSGANNLMDMKEEDFALGY	PGPT0008385_210	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249	NA	NA
D1-36_04684	297			hypothetical protein	ATGGAAATCTCAGGAAATACCGCGTTCTACGCTGGTCTGAGCACGATTCAGACGGGGCAGAACCGTGTCGACCAGGCCTCCAGCCAGATCGCCAACAATACGATCGAGCGTTCGGTCACCAGCCAATCCTCCGAAGTCCAGGTCGATCGCCTGCGCTCGGTGGATCGCAGCCGGCAATCGGACCTGGCCAGCAACATGGTGGACATGGCCCAAGGCAAGTTCCAGGTCCAATTGGGCGTGAACGTCGCCAAGGCTTCCGACGAAATGCTCGGCACTTTGATCAACACATTTGCCTGA	MEISGNTAFYAGLSTIQTGQNRVDQASSQIANNTIERSVTSQSSEVQVDRLRSVDRSRQSDLASNMVDMAQGKFQVQLGVNVAKASDEMLGTLINTFA				NA	NA	NA	NA	NA
D1-36_04685	681	bioD1	COG0132	ATP-dependent dethiobiotin synthetase BioD 1	ATGAGCCAGGCTTATTTCATCACCGGCACCGATACCGATGTGGGCAAGACCACCGTGGCGGCGGGCCTGCTGCACGCGGCGCGCCAGGCCGGCCTGAGCACGGCCGCCGGAAAACCGGTGGCTTCCGGTTGCGACGTGACGCCCAAAGGGCTGCGCAACGCCGATGCCTTGGCCTTGTTGGCCGAATGCTCGGTGCCGTTGAGTTATGCACAGGTCAATCCGGTGGCGTTCGAACCAGCCATTGCGCCGCACCTCGCCGCCCGGGAGGCGGGCGTCGCGCTCACGGTGCAGTCGCTGCTGGGGCCGATGCGTGAAGTGCTGGCGCTGGGCGCCGATTTCACTCTGATCGAGGGCGCGGGCGGTTGGCGCGTGCCGCTGGCCGGCCAGGACAATCTGTCCGACCTGGCGATTGCGCTGGGCTTGCCCGTTATCCTGGTGGTGGGCGTGCGCCTGGGCTGCATCAGCCACGCCTTGTTGACCGCCGAAGCAATCGCCCGCGACGGCTTGCAACTGGCCGGTTGGGTGGCGAACATCATCGATCCGGCCACCTCACGCCTGGAAGAAAACCTGGCAACCCTGGCCGAGCGCCTCCCGGCGCCTTGCCTGGGCAGGGTGGCGCGGATCCAGAGCGTAACCGCCGAGGCTGTGGCCGGGCACCTGCAGATGGACCTGTTGGACTGA	MSQAYFITGTDTDVGKTTVAAGLLHAARQAGLSTAAGKPVASGCDVTPKGLRNADALALLAECSVPLSYAQVNPVAFEPAIAPHLAAREAGVALTVQSLLGPMREVLALGADFTLIEGAGGWRVPLAGQDNLSDLAIALGLPVILVVGVRLGCISHALLTAEAIARDGLQLAGWVANIIDPATSRLEENLATLAERLPAPCLGRVARIQSVTAEAVAGHLQMDLLD	PGPT0022115_2054	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022115-bioD-K01935	NA	NA
D1-36_04686	813	bioC		Malonyl-[acyl-carrier protein] O-methyltransferase	ATGACTGACTTATCCGTTGTGAAGCTACCGGGTGCTTTGCCTGATAAACGTCAGGTAGCGGCCTCGTTTTCCCGGGCGGCGGCCAGTTATGACAGTGTTGCCGAGCTACAGCGCGATGTAGGCGGGCAATTGCTCGGGCGCTTGCCTTCGTCGCTCGATCCACAGCGCTGGTTGGACCTGGGCTGCGGCACGGGCTATTTCACCCGAGCGCTGGGCGCGCGGTTCGGCGAGGATGCGGGCCTGGCGCTGGATATCGCCGAGGGGATGCTCATCCATGCCCGCCCGCAGGGCGGTGCTGCGCATTTTATCGCTGGGGATGCGGAGCGTTTGCCTTTGCACTCGGCGAGCTGCGACTTGGTTTTTTCCAGCCTCGCGGTGCAGTGGTGCGATGATTTCGCCTCGGTGTTGCGCGAGGCCCATCGTGTTTTGAGGCCGGGTGGACTGTTTGCCTTTACTAGTCTGTGTGTCGGCACGTTGTACGAACTGCGAGACAGTTGGCGTCAGGTGGATGGCTTGGTACACGTCAACCGTTTCCGTGATTTCGAGACTTATCGACAGTTATGCGCAAGCAGTGGTTTGAACGTCCTAAGTCTGGAAAATCAGCCCCACGTCTTGCATTACCCGGATGTACGTAGCCTGACCCACGAATTGAAAGCATTGGGCGCCCATAATCTGAATCCCGGCCGTCCCGGTGGGTTGACGGGCAGGGCACGGATCCTGGCGCTGGTTGAAGCCTATGAACAGTTTCGCCAGGTCCAGGGCCTGCCCGCGACTTACCAGGCGGTCTACGCCGTGTTGGAGAAACCGCTATGA	MTDLSVVKLPGALPDKRQVAASFSRAAASYDSVAELQRDVGGQLLGRLPSSLDPQRWLDLGCGTGYFTRALGARFGEDAGLALDIAEGMLIHARPQGGAAHFIAGDAERLPLHSASCDLVFSSLAVQWCDDFASVLREAHRVLRPGGLFAFTSLCVGTLYELRDSWRQVDGLVHVNRFRDFETYRQLCASSGLNVLSLENQPHVLHYPDVRSLTHELKALGAHNLNPGRPGGLTGRARILALVEAYEQFRQVQGLPATYQAVYAVLEKPL	PGPT0022060_860	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022060-bioC-K02169	NA	NA
D1-36_04687	732	bioH		Pimeloyl-[acyl-carrier protein] methyl ester esterase	ATGCGTGATCGATTGATCTTGTTGCCAGGATGGGGCCTGGGTACTTCGCCCCTCGAACCGTTGGCTGCTGCGCTGCGAGGGCTCGATGAGCACTTGCAGGTGGAAATCGAACCCTTGCCCGCTTTGGCGTCGAGTGCGCTCGATGATTGGCTCGATGAGTTGGATGCTGCGTTGCCCCAGGATGCCTGGCTGGGAGGCTGGTCCCTGGGCGGCATGTTGGCCGCGGAACTGGCCGCGCGCCGGGGCGAGCGCTGCTGCGGCTTGCTGACCTTGGCCAGTAATGTGTCTTTCGTGGCCCATGAACAATGGCCGGGGGCGATGGCCCCAGAAATATTCGATGGGTTTCTTGCCGGGTGTGTTGCCGATCCGCGCCAGACGCTCAAGCGCTTCAGTTTGCTGTGCGCCCAAGGGTGCGACGACCCACGCGGGTTGTCGCGATTGCTGCTCGGCGGTGCACCGAACACCGCGCCTGACGTGTTGATGGCCGGGCTCGAATTATTGGCGCAACTCGATACCCGGGCTGCGTTGCAGGGCTTTCGCGGTCCTCAGCTGCATTTGTTTGCCGGGCTCGATGCCTTGGTGCCGGCCGAAGCGGCGGGCGAGTTGCTGGCGTTGCTGCCGGATGTCGAAATCGGCCTGATTGAACAGGCCGGCCACGGATTTCTGCTGGAGGATCCCCACGGCGTGGCGGGGGCGATCCAGGCTTTCTTGCATGAGTCCGGTGATGACTGA	MRDRLILLPGWGLGTSPLEPLAAALRGLDEHLQVEIEPLPALASSALDDWLDELDAALPQDAWLGGWSLGGMLAAELAARRGERCCGLLTLASNVSFVAHEQWPGAMAPEIFDGFLAGCVADPRQTLKRFSLLCAQGCDDPRGLSRLLLGGAPNTAPDVLMAGLELLAQLDTRAALQGFRGPQLHLFAGLDALVPAEAAGELLALLPDVEIGLIEQAGHGFLLEDPHGVAGAIQAFLHESGDD	PGPT0022065_953	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022065-bioH-K02170	NA	NA
D1-36_04688	1179	bioF	COG0156	8-amino-7-oxononanoate synthase	ATGCCCTTCGATCTCGCCGCACGCCTGGCTGCCCGTCGTGCCGAAAATCTATATCGCCAGCGACCGCTGCTCGAGAGCCCCCAGGGCCCGGAAGTCGTAGTGGACGGCCAGCCGTTGTTGGCGTTCTGCAACAACGACTACCTGGGCCTGGCCAATCACCCGCAAGTGATCGAGGCCTGGCGCGACGGCGCAGCGCGCTGGGGCGTCGGCGGTGGAGCGTCCCACCTGGTGGTCGGCCACAGCGCGCCTCACCACGCCTTGGAAGAAGCCCTGGCCGAGCTGACCGGCCGGCCGCGGGCGTTGCTGTTCACCACCGGCTACATGGCCAACCTTGGCGCGGTCACTGCCTTGGTGGGGCAGGGCGATACCGTGCTGGAGGATCGCCTCAACCACGCCTCGTTGCTCGATGCCGGGCTGTTATCCGGCGCGCGCTTCAATCGTTATCTGCACAACGATGCCCGAAGCCTGGCCCAGCGTTTGGAGAAAGCCATTGGCAACACGCTGGTGGTGACCGATGGTGTTTTCAGCATGGACGGGGATGTCGCGGATTTGCCGGCGCTCGCCCGCGAAGCCAAGGCCAAGGGCGCCTGGCTGATGGTCGATGACGCCCACGGCTTCGGCACGCTGGGCGTTACCGGCGGCGGTGTCGTCGAACATTTCGGCATGTGCCAGGAAGACGTGCCCGTGCTGGTCGGCACACTGGGCAAGGCGTTTGGCACCGCCGGCGCCTTTGTGGCGGGCAGTGAGGAACTGATCGAAAGCCTGGTCCAGTTCGCCCGGCCCTACATCTACACCACCAGCCAGCCACCCGCTTTGGCCTGCGCCACGCTCCGGAGCCTTGAACTGCTGCGCAGTGAGCGTTGGCGGCGAGAACATCTGAGGCAGTTGATCAGCCAGTTCCGCCAGGGCGCCGAGCAGATCGGCTTGCGCTTGATGGACAGTTTCACCCCGATCCAACCCATCCTGATCGGTGATGCGGGGCGGGCGATAGAGCTGTCCCGGATGCTGCGCGAGCGCGGGCTGATGGTCACGGCGATCCGGCCGCCCACCGTGCCGGCCGGTAGCGCCCGCCTGCGGGTCACCTTGACCGCCGCCCACAGCGAGGCCCAGGTCCAGCTATTGTTGGATGCATTGGCCGATTGTTATGCAAGGCTGGGACCGGAGCCAAACCATGCGTGA	MPFDLAARLAARRAENLYRQRPLLESPQGPEVVVDGQPLLAFCNNDYLGLANHPQVIEAWRDGAARWGVGGGASHLVVGHSAPHHALEEALAELTGRPRALLFTTGYMANLGAVTALVGQGDTVLEDRLNHASLLDAGLLSGARFNRYLHNDARSLAQRLEKAIGNTLVVTDGVFSMDGDVADLPALAREAKAKGAWLMVDDAHGFGTLGVTGGGVVEHFGMCQEDVPVLVGTLGKAFGTAGAFVAGSEELIESLVQFARPYIYTTSQPPALACATLRSLELLRSERWRREHLRQLISQFRQGAEQIGLRLMDSFTPIQPILIGDAGRAIELSRMLRERGLMVTAIRPPTVPAGSARLRVTLTAAHSEAQVQLLLDALADCYARLGPEPNHA	PGPT0022095_1910	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022095-bioF-K00652	NA	NA
D1-36_04689	1056	bioB	COG0502	Biotin synthase	ATGAGCGCCAGCACCACTGCCAACCTGCGTCATGACTGGTCTTTGGCCGAAGTCAAAGCACTCTTTGTCCAGCCATTCAATGATCTGTTGTTCCAGGCGCAGACCGTGCACCGCGCGCACTTCGACGCCAACCGCGTCCAGGTTTCCACGCTGCTGTCGATCAAAACCGGCGCTTGCCCGGAAGATTGCAAATATTGTCCGCAGTCCGGCCACTACAACACCGGGCTGGAAAAAGAGAAATTGCTCGAAGTGCAGAAGGTCCTCGAAGAGGCGGCGCGCGCCAAGGCCATCGGTTCGACCCGATTCTGCATGGGCGCGGCGTGGAAGCATCCGTCGGCCAAGGACATGCCTTACGTGCTGGAGATGGTCAAGGGCGTGAAGGCCATGGGGCTGGAAACCTGCATGACCCTCGGACGCCTCGACCAGGAGCAGACCGAAGCGCTGGCCCAGGCTGGCCTGGATTACTACAACCACAACCTGGACACCTCGCCTGAGTTCTACGGCAGCATCATCACCACCCGCACCTACAGCGAGCGCCTGCAGACCCTGGCCTATGTACGGGATTCGGGTATGAAAATCTGCTCCGGCGGCATCCTGGGCATGGGCGAATCCCTGGACGACCGTGCCAACCTGCTGATCCAACTGGCAAACCTGCCGGAGCACCCGGAATCGGTGCCGATCAACATGCTGGTCAAGGTCGCCGGCACGCCGCTGGAAAATGCCGAGGACGTCGATCCGTTCGATTTCATCCGCATGCTCGCCGTGGCGCGGATCATGATGCCCCAATCCCATGTACGTCTTTCCGCCGGCCGTGAAGCGATGAACGAGCAAATGCAGGCCCTGGCATTTTTTGCCGGCGCCAACTCGATTTTCTACGGCGACAAGCTGTTGACCACCGCCAACCCTCAGGCCGACAAGGACATGCAACTGTTCGCGCGCCTGGGCATCCAGCCGGAAGCCCGCGAAGAACACGCCGATGAAGTCCACCAGGCGGCCATCGAGCAGGCGCTGGTAGAGCACAAGAACAGCGAGCAGTTTTATAACGCTGCTGTTTGA	MSASTTANLRHDWSLAEVKALFVQPFNDLLFQAQTVHRAHFDANRVQVSTLLSIKTGACPEDCKYCPQSGHYNTGLEKEKLLEVQKVLEEAARAKAIGSTRFCMGAAWKHPSAKDMPYVLEMVKGVKAMGLETCMTLGRLDQEQTEALAQAGLDYYNHNLDTSPEFYGSIITTRTYSERLQTLAYVRDSGMKICSGGILGMGESLDDRANLLIQLANLPEHPESVPINMLVKVAGTPLENAEDVDPFDFIRMLAVARIMMPQSHVRLSAGREAMNEQMQALAFFAGANSIFYGDKLLTTANPQADKDMQLFARLGIQPEAREEHADEVHQAAIEQALVEHKNSEQFYNAAV	PGPT0022120_1288	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022120-bioB-K01012	NA	NA
D1-36_04690	741			hypothetical protein	ATGCGCTGTCAACCACGACACACAACATCGGTTTACATCTGGTTAAAAAACAAACAGACCTGTCTGCTGTGCGGCGAATCCACCGACACACCGCAACCCATCTGCACGCCGTGCGAAAGCGAGTTGCCCTGGCTCGGCGATCAATGCAGCGTCTGTGCGCTTCCGCTGCCGATGGCCGGGCTCCGCTGTGGACAATGCGCCACGCGACCGCCGGCCTTCGAACGGGTCGTGGCGCCATGGGTCTATGACTTTCCCGTGGACACGCTGGTCACCCGCTTCAAGCATCAGGCCAAGTGGCCGCTTGGCCGTTTGCTGGGCGAACTGTTGGCGCAGTCGGTCCAACATCATTTCGATGAAGGGCTGGAGCGACCCGATGCGCTGGTGCCGGTACCGCTGGCGGCTCGTCGACTGCGCCAACGCGGGTTCAACCAGGCGACATTGCTGGCCCGCTGGCTCAGCGGGCCGCTGCACATCCCTTGCGAAGAAAACCTGTTGCAGCGCATCCAGGACACGCCTGCACAACAAGCCCTCGATGCCCCGGCAAGACGTCGAAACCTGCGCCATGCCTTCGCCCTGACGCCCGACGCCACTTTGGCAAACCGTCACCTGGCGCTGGTGGACGATGTGCTCACCACAGGCGCGACGGCCCAGACGCTTGCGCATCTGCTACTCGAAGCCGGCGCCGCCCGGGTCGATGTGTATTGCCTGGCTCGCACGCCGAAACCCGGCGACCCGGCTTGA	MRCQPRHTTSVYIWLKNKQTCLLCGESTDTPQPICTPCESELPWLGDQCSVCALPLPMAGLRCGQCATRPPAFERVVAPWVYDFPVDTLVTRFKHQAKWPLGRLLGELLAQSVQHHFDEGLERPDALVPVPLAARRLRQRGFNQATLLARWLSGPLHIPCEENLLQRIQDTPAQQALDAPARRRNLRHAFALTPDATLANRHLALVDDVLTTGATAQTLAHLLLEAGAARVDVYCLARTPKPGDPA				NA	NA	NA	NA	NA
D1-36_04691	765	modE	COG2005	DNA-binding transcriptional dual regulator ModE	ATGTCATTGCCTACGCTCCTGACCCAACACATCGTCCGCCGACCACAACGCATCGCGCTGTTGCAGCACATCGCCGAGCAGGGCTCGATCACCCGGGCTGCCAAGAGCGCCGGGCTGAGCTACAAAGCGGCATGGGACGCGATCGATGAGTTGAATAACCTGGCCGACAGGCCACTGGTCGAGCGCAGCGTTGGCGGCAAGGGCGGAGGCGGTGCAAAGCTGTCGGAGGAAGGCCAGCGCGTGCTGCGTCTTTACCAGCGCCTGCAAACCTTGCAGGCGCAGCTTCTGGAAGCGAGCGAGGACGCAGGCGACCTGGGCTTGCTCGGACGCCTGATGCTGCGCACCAGCGCCCGAAACCAATTGCATGGCAAGGTCCTCGATATCACCGCCCAGGGCCACAACGATCGTGTTCGCCTTGAACTGGCCCGCGGGCTGGTCATTGAAGCGCAGATCACTCATGACAGTACGCAGCGGTTGGAGCTGGAGACCGGCACCGAAGTCGTCGCGCTGATCAAGGCCGGCTGGCTGGAACTGTACCCCTCCGATCAGCCGGAGGATCCGCCGACCAATACGCTCCACGGCATCATCGAACACATCGCCATCGCCGAAGACGGCCCCAGCGAAGTGCGTATCGGTCTGCCCAACGGTCAGACCCTTTGCGCCCTCGCCGCCCCGTCTCAATTGGGCGAACGCAACCTGACCTGCGATTCGCCGGTGCAGGTGCGGTTTTCTTCGACAAATGTACTGCTGGGCACGCCGCTATAA	MSLPTLLTQHIVRRPQRIALLQHIAEQGSITRAAKSAGLSYKAAWDAIDELNNLADRPLVERSVGGKGGGGAKLSEEGQRVLRLYQRLQTLQAQLLEASEDAGDLGLLGRLMLRTSARNQLHGKVLDITAQGHNDRVRLELARGLVIEAQITHDSTQRLELETGTEVVALIKAGWLELYPSDQPEDPPTNTLHGIIEHIAIAEDGPSEVRIGLPNGQTLCALAAPSQLGERNLTCDSPVQVRFSSTNVLLGTPL	PGPT0000520_941	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISM	PLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0000520-modE-K02019	NA	NA
D1-36_04692	1902			hypothetical protein	ATGAGCCTATTAGAAGAAAACCAATCCACCGATCTGGAAAAGATCGTCGGCCTGAGCCGTCGACGTTTCATCGGCGCGGGTGCCCTGTGCGGCGCGGCGATGTTCCTGGGCGGCAACCTGCTGAGCCGCAGCGTCATGGCCGCCGCCGTGAGCGAAGGCAACAAAAGCATGCTGGGCTTCGACAGCATTGCCGCCGCGACGACCGACACCATTACCCTCCCACCAGGCTACAAGGCCTCGGTGTTGATCAGTTGGGGCCAGCCGCTACAGAAAAACGCCCCGGCTTTCGACCCCAGCGGCAACGGCACCGCCCGCGCCCAGGAAGTGCAGTTTGGCGACAACAACGACGGCATGAGCCTGTTCCCGTTCCCTGGCGACGAAAACCGGGCGCTGATGGCGATCAACAATGAGTACACCAACTACCGCTACCTCTTCCCCCACGGCGGCCAACCGCAGTCGGCCGAAGAAGTGCACAAGGCCCAGGCCAGCGAAGGCGTGTCGGTGATCGAGATCGAGCGTCGTCAAGGCCAATGGCAGTTCGTCCAGGACTCGCGCTACAACCGCAGGATTCATGGCAACACGCCGATTCGCCTGAGCGGCCCGGCTGCCGGTCACGACTGGGTGAAAACCCTCGCCGACAAGAGCGGCAAGAATGTGCTGGGGACCTTCCAGAACTGCGCCAACGGCATGACGCCATGGGGCACTTACCTGACCTGCGAAGAAAACTTCACTGACTGCTTCGGCAGCAGCCAGCCCGACCTGAAATTCGATGACGGTCAAAAGCGCTACGGCGCCACCGTCACCAGCCGCGAAATCAACTGGCACCTGCACGACCCTCGCTTCGATCTTGCAAAGAACCCCAACGAACTCAATCGCCATGGCTGGGTGGTGGAAATCGATCCGTTCGATCCGACATCCACGCCGGTGAAACGCACCGCCCTGGGCCGTTTCAAACACGAAAACGCCGCCCTGGCGCAGACCGATGATGGGCGAGCGGTTGTGTACATGGGCGATGACGAACGTGGCGAATTCATCTACAAGTTCGTCAGCCGTGATCGCATCGATCACCGCAATGCCAAGGCCAACCGCGACCTCCTCGACCACGGCACCTTGTACGTGGCGCGCTTCGATGCCGGGGACGGCAATCCGGACCACCCCAAAGGCAAGGGCCAGTGGATCGAGCTGACCCATGGCAAACATGGCCTGGACGCGGCAAAAGGCTTCAATGACCAGGCCGAAGTCCTGATCCATGCGCGACTGGCCGCCAGCGTCGTTGGCGCAACTCGCATGGACCGCCCAGAGTGGATCGTGGTAAGCCCCAAGGACGGCCAGGTCTATTGCACCTTGACCAACAACGCCAAGCGCGGCGAAGACGGCCAGCCGGTGGACGGGCCCAACCCGCGGGCGAAAAACGTCTACGGGCAGATCCTGCGCTGGCGCACCGACCGCGACGATCACGCCGCCAACACCTTCGACTGGGACCTGTTCGTGGTCGCCGGCAACCCGACGGTACACGCCGGCACGCCCAAGGCCGGATCGTCCAACGTCAATGCGCAAAATATGTTCAACAGCCCTGACGGCCTGGGTTTCGACAAGAGCGGGCGGCTGTGGATCCAGACCGACGGCGACTCCAGCAACACGGGGGACTTTGCGGGAATGGGCAACAACCAGATGCTGTGCGCCGACCCCAACAGCGGTGAGATTCGCCGCTTCATGGTCGGACCGGTGGGCTGTGAAGTCACCGGGATCAGTTTCGCCCCGGACTACAAGGCCATATTCGTCGGCATCCAGCATCCAGGCGAAAACGGTGGCTCGACGTTCCCCGAGCATCTGCCCAACGGCAAGCCACGCTCTTCGGTGATGGTGATTACCCGCGAAGACGGCGGCGTCATCGGCGCCTGA	MSLLEENQSTDLEKIVGLSRRRFIGAGALCGAAMFLGGNLLSRSVMAAAVSEGNKSMLGFDSIAAATTDTITLPPGYKASVLISWGQPLQKNAPAFDPSGNGTARAQEVQFGDNNDGMSLFPFPGDENRALMAINNEYTNYRYLFPHGGQPQSAEEVHKAQASEGVSVIEIERRQGQWQFVQDSRYNRRIHGNTPIRLSGPAAGHDWVKTLADKSGKNVLGTFQNCANGMTPWGTYLTCEENFTDCFGSSQPDLKFDDGQKRYGATVTSREINWHLHDPRFDLAKNPNELNRHGWVVEIDPFDPTSTPVKRTALGRFKHENAALAQTDDGRAVVYMGDDERGEFIYKFVSRDRIDHRNAKANRDLLDHGTLYVARFDAGDGNPDHPKGKGQWIELTHGKHGLDAAKGFNDQAEVLIHARLAASVVGATRMDRPEWIVVSPKDGQVYCTLTNNAKRGEDGQPVDGPNPRAKNVYGQILRWRTDRDDHAANTFDWDLFVVAGNPTVHAGTPKAGSSNVNAQNMFNSPDGLGFDKSGRLWIQTDGDSSNTGDFAGMGNNQMLCADPNSGEIRRFMVGPVGCEVTGISFAPDYKAIFVGIQHPGENGGSTFPEHLPNGKPRSSVMVITREDGGVIGA				NA	NA	NA	NA	NA
D1-36_04693	975	rdoA	COG2334	Serine/threonine protein kinase RdoA	ATGTCCCATCCGTTTGAAACCCTCACGCCCGACCTGGTCCTGGATGCCGTCGAAAGCATCGGCTTTCTCAGTGATGCCCGGGTGCTGGCCCTCAACAGCTACGAAAACCGCGTTTATCAAGTGGGCATCGAAGATGCAGAACCGCTGATCGCCAAGTTTTATCGTCCGCAGCGCTGGACCAACGAAGCCATCCTGGAAGAGCACCGCTTCACCTTCGAACTGGCTGATCACGAAGTGCCGGTGGTGGCACCGTTGGTTCACAACGGCGCCAGCCTGCATGAGCACGCAGGGTTTCGTTTCACCCTGTTTCCCCGTCGAGGTGGACGAGCGCCGGAGCCGGGCAATCTCGATCAGCTCTATCGCCTGGGCCAACTGCTCGGGCGCTTGCATGCGATCGGAGCCACCCGCCCGTTCGAGCACCGTGAAGCGCTGGGCGTGAAGAACTTCGGCCATGACTCGCTGGAGACGGTACTGCAAAGTGGTTTCGTCCCCACGAGCCTGCTACCCGCCTACGAGTCGGTGGCCAGGGATCTGCTCAAGCGTGTCGAAGAGGTCTACGCCGCCACGCCCCATCAGAACATCCGCATGCATGGCGATTGCCATCCCGGCAACATGATGTGCCGCGACGAGGTGTTCCACATCGTCGACCTGGACGACTGTCGCATGGGCCCGGCCGTGCAGGATCTATGGATGATGCTCGCCGGGGATCGCCAGGAGTGCCTGGGCCAGCTATCGGAATTAATGGACGGCTATCAGGAATTCCATGACTTCGAACCGCGCGAACTGGCACTGATCGAACCCCTGCGTGCCCTGCGCCTGATGCACTACAGCGCCTGGCTGGCCCGCCGCTGGGATGATCCGGCGTTTCCGCGAAGCTTCCCGTGGTTTGGCAGTGAGCGTTATTGGGGCGACCAGGTGTTGGCATTGCGCGAGCAATTGGCGGCGCTCAATGAAGAGCCGCTGAAGTTGTTCTGA	MSHPFETLTPDLVLDAVESIGFLSDARVLALNSYENRVYQVGIEDAEPLIAKFYRPQRWTNEAILEEHRFTFELADHEVPVVAPLVHNGASLHEHAGFRFTLFPRRGGRAPEPGNLDQLYRLGQLLGRLHAIGATRPFEHREALGVKNFGHDSLETVLQSGFVPTSLLPAYESVARDLLKRVEEVYAATPHQNIRMHGDCHPGNMMCRDEVFHIVDLDDCRMGPAVQDLWMMLAGDRQECLGQLSELMDGYQEFHDFEPRELALIEPLRALRLMHYSAWLARRWDDPAFPRSFPWFGSERYWGDQVLALREQLAALNEEPLKLF				NA	NA	NA	NA	NA
D1-36_04694	888	rarD_2	COG2962	Protein RarD	ATGCAAGCCGCCAACCCGCGTCGCGGGTACACCCTGGGCCTGAGCGCCTACATCATCTGGGGTCTGTTCCCGATTTATTTCAAAGCCATCGCCAGCGTCCCATCGGTGGAAATCATCATCCACCGAGTACTCTGGTCGGCCTTGTTCGGCGGGGCGTTGCTGATGGTCTGGAAACACCCTGGCTGGTGGCGCGAGTTGCGGGACAATCCGCGTCGCCTGGCTATTCTGGCCCTGAGCGGCACGCTCATCGCGGCCAATTGGCTGACCTATGTCTGGGCTGTGAATAATGGTCGAATGCTCGAAGCCAGCCTGGGCTACTACATCAATCCGCTGGTCAACGTGTTGCTGGGCATGTTGATCCTGGGTGAGCGGCTGCGGCGCATGCAGTGGGTGGCCGTAGGGCTGGCGGCGGTTGGCGTGGCCCAGCAGGTCTGGCAGGTGGGCAGCCTGCCGTGGGTATCGCTGGTGCTGGCGCTGACTTTTGGCTTCTACGGCTTGATCCGTAAGCAAGCACCAGTGAAGGCTTTGCCTGGGCTGGTGGTGGAAACATGGATGCTGGTGCCGATTGCCATCGCGTGGCTGCTGTTCAACCCGACTGCCACCAGTGCCCAGGCCGCGTTCTGGACCACGTCCGAAGCGTGGTGGCTGGTGGCGGCCGGCCCCGTGACGCTCGTGCCATTGGTGTGCTTCAACGCGGCGGCGCGACACCTGCCCTATACCACGCTGGGTTTCCTGCAATACATCGCCCCAACCCTCGTGCTGCTGCTCGCAGTGCTGCTGTTCGACGAGCACCTGTCCTCCAGCACGCTGATGGCGTTCCTGTTCATCTGGGCCGGTTTGGCTGTGTACAGCATCGATGCCGTGATCGGCATGCGCCGTCGCAGCTGA	MQAANPRRGYTLGLSAYIIWGLFPIYFKAIASVPSVEIIIHRVLWSALFGGALLMVWKHPGWWRELRDNPRRLAILALSGTLIAANWLTYVWAVNNGRMLEASLGYYINPLVNVLLGMLILGERLRRMQWVAVGLAAVGVAQQVWQVGSLPWVSLVLALTFGFYGLIRKQAPVKALPGLVVETWMLVPIAIAWLLFNPTATSAQAAFWTTSEAWWLVAAGPVTLVPLVCFNAAARHLPYTTLGFLQYIAPTLVLLLAVLLFDEHLSSSTLMAFLFIWAGLAVYSIDAVIGMRRRS	PGPT0003906_2341	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTUDRUG_RELATED_REGULATION,PGPT0003906-rarD-K05786	NA	NA
D1-36_04695	519			hypothetical protein	ATGGACCATCTCGTCATTACTGTTTTCGCCCCGGACAAACCAGGGCAGGTCGAGCGAATCGCCCAATGCATCGCCGAACATGGCGGAAACTGGCTGGACAGCCGCATGTCCCACCTCGCCGGGCAGTTTGCCGGAATCCTGCGTCTCAGTGCCCCGGCCGAGTCCCATGAAGAATTGATCGAAGCCTTGCAAGGCCTGTCGGCCCATGGCATTCGCGTGCTGATCGCCGAGAACGCGATCGAAGAATCATGCACCTGGAAACCTATCGCGATGGAATTGGTGGGCAATGACCGTCCGGGTATCGTGCGCGACATCACTCGTCTGCTGAGCGAGCAGGGCGTGAACGTCGAGCGCTTGATCACCCAGGTGCGACCGGCACCGATGAGCAGCGAGTTGCTGTTCCATGCCGAGGCGATCCTTGGGGTGCCGTTGACCTTGTCGCTGGACACGCTGCAGGCATGCCTGGAAACCCTGGCCGATGAATTGATGGTTGAGTTGAAATTCAGCGACGAAACCTGA	MDHLVITVFAPDKPGQVERIAQCIAEHGGNWLDSRMSHLAGQFAGILRLSAPAESHEELIEALQGLSAHGIRVLIAENAIEESCTWKPIAMELVGNDRPGIVRDITRLLSEQGVNVERLITQVRPAPMSSELLFHAEAILGVPLTLSLDTLQACLETLADELMVELKFSDET				NA	NA	NA	NA	NA
D1-36_04696	2178	glcB	COG2225	Malate synthase G	ATGACTGAACACGTTCAAGTCGGTGGCCTGCAGGTCGCCAAAGTCCTGTTCGACTTCGTTAATAACGAAGCCATTCCCGGAACCGGCCTCACCGCCGACGCATTCTGGGCCGGGGCCGACAAGGTCATCCATGACCTGGCTCCGAAGAACAAAGCCCTACTCGCCAAACGCGACGACTTCCAGGCACGGATCGACGCCTGGCACCAGGCCCGTGCCGGCCAGGCCCACGACGCCGTGGCTTACAAAGCCTTCCTGCAAGACATTGGATACCTGCTGCCAGAAGCGGCGGATTTCCAGGCCACGACTCAAAACGTCGATGACGAAATCGCCCGCATGGCCGGCCCACAACTGGTAGTGCCGGTGATGAACGCCCGCTTCGCCCTCAACGCCTCGAATGCCCGCTGGGGTTCGTTGTACGACGCGTTGTACGGCACCGACGCCATCAGCGAAGCCGATGGCGCGGAAAAAGGCAAAGGCTACAACAAGGTGCGCGGCGACAAGGTCATCGCCTTCGCCCGCGCATTCCTCGACGAAGCGGCCCCCCTGGCGGCCGGCTCCCATGTTGATTCCACTGCCTACAAGATCGTCGACGGCAAGCTGGTGGTGGCCCTCAAGGGCGGCGCCAACAGCGGCCTGCGCGACGACGCCCAACTGATCGGTTTCCAAGGCGATATGTCGGCGCCGAGCGCGGTGCTGCTGAAACACAACGGCCTGCACTTCGAGATCCAGATCGACGCCAGCACCCCCGTCGGCCAAACCGACGCCGCCGGTGTCAAAGACATCCTGATGGAAGCCGCGCTGACCACCATCATGGACTGCGAAGACTCGGTTGCCGCGGTCGATGCCGATGACAAAGTGGTGATCTACCGCAACTGGCTCGGCTTGATGAAAGGCGACCTGTCCGAGCAAGTCGCCAAGGGCGGCCAGACCTTCACCCGCACCATGAACCCCGACCGCGCCTACACCGCCGTCGACGGTTCGGGCTTGACGCTGCACGGTCGCTCGCTGCTGTTCGTGCGCAACGTCGGTCACCTGATGACCATCGACGCGATCCTGGACAAGGACGGCAACGAAGTGCCGGAAGGCATCATCGACGGGCTGGTCACCAGCCTCGCGGCGATCCACAGCCTCAACGGCAACACCTCGCGCCGCAACAGCCGCACCGGTTCGGTGTACATCGTCAAGCCGAAGATGCACGGCCCGGAAGAAGTGGCGTTCACCAACGAACTGTTCGGCCGCGTCGAAGACGTGTTGAACCTGCCGCGCAACACGCTCAAGGTCGGCATCATGGACGAGGAGCGCCGTACCACGGTCAACCTCAAGGCCTGCATCAAGGCTGCCAGCGAGCGCGTGGTGTTCATAAACACCGGCTTCCTGGACCGCACCGGCGACGAAATCCACACCTCCATGGAAGCCGGCCCGATGGTGCGCAAGGCCGACATGAAGGCCGAGAAGTGGATCGGCGCCTATGAAAACTGGAACGTCGACATCGGCTTGAGCACCGGCTTGCAAGGCCGCGCGCAAATCGGCAAGGGCATGTGGGCGATGCCGGACCTGATGGCAGCGATGCTCGAACAAAAGATCGCTCACCCGATGGCCGGCGCCAACACCGCCTGGGTTCCGTCGCCGACCGCCGCCGCGCTGCATGCGCTGCACTACCACAAGGTCGACGTGTTCGCCCGCCAGGCCGAACTGGCCAAGCGTGCGCGCGCCTCGGTTGACGACATCCTGACCATCCCACTGGCCGTCAACCCGAACTGGACGGCAGAGCAGATCAAACACGAACTGGACAACAACGCCCAGGGCATCCTTGGCTACGTGGTGCGCTGGATCGACCAGGGTGTCGGCTGCTCCAAGGTGCCGGACATCAATGACATCGGCCTGATGGAAGACCGCGCGACGCTGCGCATTTCCAGCCAGCACATCGCCAACTGGTTGCGCCACGGCATCGTCACGCAAGAGCAGGTGATGGAAAGCCTCAAGCGCATGGCACCGGTCGTGGACCGCCAGAACGCCAGCGACCCGCTGTACCGCCCGCTGGCGCCGGACTTCGACAGCAACATCGCCTTCCAGGCGGCGGTCGAGCTGGTGATCGAAGGCACCCGGCAACCAAACGGCTACACCGAGCCGGTGCTGCACCGTCGCCGACGCGAGTTCAAGGCCGCCAATGGGCTGTGA	MTEHVQVGGLQVAKVLFDFVNNEAIPGTGLTADAFWAGADKVIHDLAPKNKALLAKRDDFQARIDAWHQARAGQAHDAVAYKAFLQDIGYLLPEAADFQATTQNVDDEIARMAGPQLVVPVMNARFALNASNARWGSLYDALYGTDAISEADGAEKGKGYNKVRGDKVIAFARAFLDEAAPLAAGSHVDSTAYKIVDGKLVVALKGGANSGLRDDAQLIGFQGDMSAPSAVLLKHNGLHFEIQIDASTPVGQTDAAGVKDILMEAALTTIMDCEDSVAAVDADDKVVIYRNWLGLMKGDLSEQVAKGGQTFTRTMNPDRAYTAVDGSGLTLHGRSLLFVRNVGHLMTIDAILDKDGNEVPEGIIDGLVTSLAAIHSLNGNTSRRNSRTGSVYIVKPKMHGPEEVAFTNELFGRVEDVLNLPRNTLKVGIMDEERRTTVNLKACIKAASERVVFINTGFLDRTGDEIHTSMEAGPMVRKADMKAEKWIGAYENWNVDIGLSTGLQGRAQIGKGMWAMPDLMAAMLEQKIAHPMAGANTAWVPSPTAAALHALHYHKVDVFARQAELAKRARASVDDILTIPLAVNPNWTAEQIKHELDNNAQGILGYVVRWIDQGVGCSKVPDINDIGLMEDRATLRISSQHIANWLRHGIVTQEQVMESLKRMAPVVDRQNASDPLYRPLAPDFDSNIAFQAAVELVIEGTRQPNGYTEPVLHRRRREFKAANGL	PGPT0001445_680	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-OXALACETIC_ACID_BIOSYNTHESIS,PGPT0001445-aceB|glcB-K01638	NA	NA
D1-36_04697	447	atoC_4	COG2204	Regulatory protein AtoC	ATGTCCGACCACGATATTTTGAGTGACGCCGAGCGCGAGGCGCTGAGTGCCGTCATGCTGGAACCCGACCTGCCGCCGCAGCGTGTGTTGATCGTCGATGACGACAAGGACGCCCGCGAGCTGTTGTCGGAAATCCTGGCATTGGACGGCATCCACTGCATGACCGCCGCGAGTGGCGAAACCGCGCTCAAGATGTTGGAGACCAAGCCGTCCATCGGCCTTCTGATCACGGACCTGCGCATGGGCAATGTCGATGGCCTTGAGCTGGTGCGCCTGGTGCGCGAGTCGGAGCGTGCGGCGCTGCCGATCATCATTGTGTCCGGCGACGCCGACGTGAAGGATGCCATCGAGGCGATGCACTTGAGCGTGGTGGATTTCCTGCTCAAGCCGATCGATACCGACAAGCTGCTGGGGCTGGTCAAGCATGAGTTGGGGATGGATCTCTAG	MSDHDILSDAEREALSAVMLEPDLPPQRVLIVDDDKDARELLSEILALDGIHCMTAASGETALKMLETKPSIGLLITDLRMGNVDGLELVRLVRESERAALPIIIVSGDADVKDAIEAMHLSVVDFLLKPIDTDKLLGLVKHELGMDL	PGPT0015690_1832	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	CHEMOTAXIS_PROTEINS	CHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015690-cheY|yneI-K03413	NA	NA
D1-36_04698	1935			hypothetical protein	ATGAAAAAAGCGGACGCCTTCATCCAGGCAGGGAAAACCGCCGTGTTGCAGAACATTCAGGGGACGTTGCAATTCCTCCAGCGCTTCCCCCCGTTCAACCAGATGGAAAACGCCCACCTGGCCTATCTGGTGGAGCAATGCCTGCTGCGCTTCTACGCGCCGGGCGAAACGATCATCAAGCCGGCCGACGGCCCGGTGGAACACTTCTATATCGTCAAGCAGGGCCGGGTGGTGGGCGAGCGTCCCCATTCGGCGAAGGGCGGCACCGAGACCACTTTTGAAATCACCACGGGCGAATGCTTCCCCCTCGCCGCCCTGTTGGGTGAGCGCGCTACCCGCACCGAGCATCGGGCCGGTGAAGATACGTTCTGTCTGCAACTGAACAAGTTGGCGTTCATCAAGCTGTTTGCCTTGTCCGGCCCGTTTCGCGACTTTGCCTTGCGCGGCGTCAGCAGCCTGCTCGACCTGGTCAACCAGCAAGTGCAGCAAAAATCTGCCCAGACGCTGGGCACGCAATATTCGCTGAACACCCGCCTGGGCGAGCTGGCGATGCGTCATCCGGTCAGTTGTTCACCTGAAACACCGTTGCGCGAAGCCGTCAAACTCATGCATGAGCAACAAGTCGGCAGCATCGTCGTGGTGAACGAACAGAAAGCGCCGGTAGGCATTTTCACCCTGCGCGACCTGCGTCAGGTCGTGGCCGACGGTACCGGGGATTTTTCCGAGTCGATTGCGATGCACATGACTCAGGCGCCGTTTTTCCTGTCACCGGAGCACAGCGCCTTCGATGCCGCCATTGCCATGACCGAGCGTCATATTGCCCATGTCTGCCTGGTCAAGGAGCATCGCCTGTGTGGCGTGGTGTCGGAACGGGATCTGTTTTCCTTGCAACGCGTCGACCTGGTGCATCTGGCGCGCACGATTCGTAATGCCCCTCGTGTGGAAAACCTGGTCACCCTGCGCGGAGAGATCGGCCAACTGGTGGAGCGCATGCTGGCCCACGGCGCGTCGTCGACCCAGATTACCCATATCATCACCTTGCTCAACGACCACACCGTGTGCCGGGTCATCGAACTGACCCTGGCCGATAAAGGCGACCCAGGCGTGCCCTTCAGTTGGCTGTGTTTCGGCAGCGAAGGCCGCCGCGAGCAGACCCTTCATACCGACCAGGACAACGGCATCCTGTTCGAAGCCCGGGACGCCGCCCACGCCGCGCAGATCCGTGGCCTGCTGTTGCCCATCGCCCAACAGGTCAACCAGAGCCTGGCGCTGTGCGGTTTCACCTTGTGCAAAGGCAACATCATGGCGGGCAACCCCGAGCTGTGCCTGTCCCGCGCGGAATGGGCGCGTCGCTTCGCGGCCTTCATCCGCGAAGCGACGCCGGAGAACCTGCTGGGCTCAAGCATCTATTTCGACCTGCGAGTGGTCTGGGGAGATGAACAAAGCTGCGAGCAACTGCGCCAGCAGATTCTCGATCAAGTGGCCGACAACCGATTGTTCCAGCGCATGATGGCCGAAAACGCTCTTCGCCACCGGCCGCCTGTTGGACGCTTCAGGGACTTTGTGCTGACCCGCAAGAACGGCGAAAAAGCCACCCTCGACTTGAAGGTACAAGGGCTGACGCCTTTCGTCGACGGCGCGCGACTGCTGGCCCTGGCCAATGGCATCGAAGCCAACAATACCCTGGAGCGCTTGCGGCAACTGGTGGTCAAGGAAGTCATCGAGCCGCTTGATGGCGCCGCTTATGAAGAGGCCTATCACTTCATCCAGCAGACCCGGATGCAACAACACCAATTGCAGACCCGGGAGAACCTTCCCTACTCCAACCGCGTCGATCCAGAGAGCCTCAACCACCTGGACCGGCGGATCCTGCGCGAATCTCTGCGCCAGGCCCAACGTCTGCAAAGCAGCCTGACGTTGAGGTATCAGCTGTGA	MKKADAFIQAGKTAVLQNIQGTLQFLQRFPPFNQMENAHLAYLVEQCLLRFYAPGETIIKPADGPVEHFYIVKQGRVVGERPHSAKGGTETTFEITTGECFPLAALLGERATRTEHRAGEDTFCLQLNKLAFIKLFALSGPFRDFALRGVSSLLDLVNQQVQQKSAQTLGTQYSLNTRLGELAMRHPVSCSPETPLREAVKLMHEQQVGSIVVVNEQKAPVGIFTLRDLRQVVADGTGDFSESIAMHMTQAPFFLSPEHSAFDAAIAMTERHIAHVCLVKEHRLCGVVSERDLFSLQRVDLVHLARTIRNAPRVENLVTLRGEIGQLVERMLAHGASSTQITHIITLLNDHTVCRVIELTLADKGDPGVPFSWLCFGSEGRREQTLHTDQDNGILFEARDAAHAAQIRGLLLPIAQQVNQSLALCGFTLCKGNIMAGNPELCLSRAEWARRFAAFIREATPENLLGSSIYFDLRVVWGDEQSCEQLRQQILDQVADNRLFQRMMAENALRHRPPVGRFRDFVLTRKNGEKATLDLKVQGLTPFVDGARLLALANGIEANNTLERLRQLVVKEVIEPLDGAAYEEAYHFIQQTRMQQHQLQTRENLPYSNRVDPESLNHLDRRILRESLRQAQRLQSSLTLRYQL				NA	NA	NA	NA	NA
D1-36_04699	708	polC_2	COG2176	DNA polymerase III PolC-type	GTGAGCCTGTTTTCCTGGCTGCGTCCGGTCCAGCCGACGTTGTCGCAGGATTTGCAACAGCGCCTGGAAGCCCTGCCCGCGGCAGCACAACTGAATGAATGCAGCCTGCGGGAACAGCGTTGGGTCGTGGTCGATCTGGAAACCACCGGCCTGAACCTGAACAAAGACCAAGTGTTGTCCATCGGTGCGGTGGTGATAGAAGACGGCGCCATCGACTTCAGCCAGCAGTTCGAGCGGACGTTGCAATGCGACAAACAAAAACTCGGGCCAAGCGTGTTGATACACGGGTTGGCGCCAAGCGCCATCGCCGCCGGCAGCGACCCGGCCGACGCGCTGCTGGCGTTCATGGAGTTCGTCGGCGACAGCCCACTGCTGGCGTTTCATGCGCCTTTCGACAGTCACATGCTCGGACGAGCGTTGAAGGAATACCTGGGCTATCGCTTGCAGCACCCCTTCATCGACGTGGCGGACCTGGCCCCGATGCTTTGCCCACAGGCTCATATCCGCCAAGGAGGCCTGGACGACTGGATCGACTGGTTCAAGTTGCAAGTCTTCGATCGCCACAACGCCAGCGCCGACGCCCTGGCCACCGCGGAGCTGGCGCTGATCCTGTTCAGCCGCGCCCGCCAGAAGGATATCCACAGCCCGCTCGACCTGCAGCAACGCCTGGGCCAATGGAAACGGCGGCAGCAGGCGCCTTCGCTTTAA	MSLFSWLRPVQPTLSQDLQQRLEALPAAAQLNECSLREQRWVVVDLETTGLNLNKDQVLSIGAVVIEDGAIDFSQQFERTLQCDKQKLGPSVLIHGLAPSAIAAGSDPADALLAFMEFVGDSPLLAFHAPFDSHMLGRALKEYLGYRLQHPFIDVADLAPMLCPQAHIRQGGLDDWIDWFKLQVFDRHNASADALATAELALILFSRARQKDIHSPLDLQQRLGQWKRRQQAPSL				NA	NA	NA	NA	NA
D1-36_04700	519	fecI_4	COG1595	putative RNA polymerase sigma factor FecI	GTGTCGTCAGTCCCCAGTCCTCATAGTGATCTGGTTGGTGCGTTATACCGCGACCATCGCGCTTGGCTATTGGGGTGGCTGCGACGCAACGTGGCCTGTGCGCAACGGGCCGAGGACCTGAGCCAGGACACCTTTGTGCGCTTGCTGGGTCGCGAGGAGTTGAAGGCGCCCCGCGAGCCGCGCGCGTTCCTGCTGGCGATCGCCAAGGGACTGTTGTTCGACTACTTCCGTAGGGCCGCGCTCGAACAGGCCTATCTGACCGAACTGATGCTGGTCCCGAAAGGCGAGCAGCCGTCGGTGGAAGAGCAACAACTGATTCTCGAAGACCTGAAGAATATCGATCGCCTGCTTGGAAAATTATCCAGCAAGGCCCGGGCGGCATTCCTCTACAACCGCCTCGACGGCCTCGGCCACGCTGAGATCGCCGAGCGCCTTGGCGTTTCGGTCCCGCGGGTACGGCAATACCTGGCCCAAGGCATGCGGCAATGCTACATCGCGCTTTATGGTGAGCCGACATGA	MSSVPSPHSDLVGALYRDHRAWLLGWLRRNVACAQRAEDLSQDTFVRLLGREELKAPREPRAFLLAIAKGLLFDYFRRAALEQAYLTELMLVPKGEQPSVEEQQLILEDLKNIDRLLGKLSSKARAAFLYNRLDGLGHAEIAERLGVSVPRVRQYLAQGMRQCYIALYGEPT	PGPT0003900_128	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003900-prhI|fecI-K23514	NA	NA
D1-36_04701	981	fecR_3	COG3712	Protein FecR	ATGACCGCAGCCCTTGGCAAACCGGTCTCGGCGCGCGTTCTCGATGCGGCCATTGCCTGGCAGCTGTCCCTGGATTCTGGCTGCGGCAGTCCCCAGGAGCGGGAAGCATTCGCTCAATGGCACGCCGCCGATGAAGAGCACGCCCGCGCCTGGCAACAGCTCGGCATGCTTGACCAACGCTTCAGCATCGCCAGCGGACCTGCCCGGGCCGCGTTGCTGCAATCGAAGGCCAGCATCCGGCGACGGGTGCGCAAGGTTGGCAGTGGCCTGGCCAGTGTCGTCGCGGTCATCGGCCTGGCGCTGTTCGCCGGCGACCGTTACCTGCCGCTGGATTATTGGCTGGCCGACCAGCGCACCGCCACGGGCGAACAGCGCACGTTGCGCCTGGCGGACGGCACGGTGGTCAACCTCAATACCCACAGTGCGCTGGATGTACGTTTCGACGACAAGCAGCGGCTTATCGTTTTGCAGGAAGGCGAGATTCTCGTGGAGACCGGCCACAACGATCCGCGGCCGTTCATCGTCGAGACTCGCGAAGGCAGCATGCGCGCCTTGGGCACGCGTTTTCTGGTCAAGCTCGAAGACCAGGGCACACGCTTGAGTGTGTTGAAATCGGCGGTGGCGGCGCACCCGCAGCGCAGCGAAGGAGAACAGATCCTGCGCGAAGGCCAGCAAGTGCTGATGCACCGGGATGGCCTCGGGCCGGCCGTGGCCTTGAACGCGGGGGCCGATGCCTGGACCCGCGGGATGCTGGTGGTGGACAACGCGCGCCTTGAAGATTTGATCCGGGAGCTGGGGCGTTACCGGCGTGGATATCTCGGCGTCGAGCCCCAGGTGGCGGACTTGCGCATCACCGGCAGCTTTCCGCTGCACGACACCGACCTGGCCCTGACCGCCCTGCTGCCGACTTTGCCGGTGCAGGTCGAGCATCACACGCGTTGGTGGGTGGTGGTGGGGCCTAGGGCTGAAGCCAAGCGCTGA	MTAALGKPVSARVLDAAIAWQLSLDSGCGSPQEREAFAQWHAADEEHARAWQQLGMLDQRFSIASGPARAALLQSKASIRRRVRKVGSGLASVVAVIGLALFAGDRYLPLDYWLADQRTATGEQRTLRLADGTVVNLNTHSALDVRFDDKQRLIVLQEGEILVETGHNDPRPFIVETREGSMRALGTRFLVKLEDQGTRLSVLKSAVAAHPQRSEGEQILREGQQVLMHRDGLGPAVALNAGADAWTRGMLVVDNARLEDLIRELGRYRRGYLGVEPQVADLRITGSFPLHDTDLALTALLPTLPVQVEHHTRWWVVVGPRAEAKR	PGPT0003910_4411	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QSR-AUTOINDUCER_PERCEPTION	CE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165	NA	NA
D1-36_04702	2439	fhuA_4	COG1629	Ferrichrome outer membrane transporter/phage receptor	ATGTCCCGTCCGTTTGAGACCCTGTTGCGCCCCAGTCTATTGGCCGTTGCCATTGCCTTGAGCACCCCGTTGGCCTGCGGCCCGTTGCTCGCCGCCGAACAGGCATCTGGCGTTCGTGCCTACAATCTGCCCGCGGCGCCATTGGCCAGCACCCTGAATCAGATCGCCAGCCAGGCCGGTCTCGCCTTGAGCCTGAACCCGTCATTGGCGTCGGGCAAGACCTCGGCCCCGGTCCAGGGCCAATTCGACGCCACCGGCGCCTTGCGCGAGGCCTTGCGCGGTACCGGCCTGCAACTGGAACAAAGCAGCGCCGGCACTTACAGCCTGGTGGCCGTGCCCGAAGGCGTCATGGTGCTGCCGGAAACCAGCGTGATCGGCGCGGGAATCAGCGAAACGGCGTGGGGGCCTAGCGAGGGCTACGCTGTGACCCGCACCGCCGCCGGCACCAAGACCGATACCCCGATAGTCGAGCTGCCACGCTCGGTCTCGGTGGTCACGCGCCAGCAGATGGAAGACCGCTCCGTCCTCAACCTCAATGACGCGCTGCGCTACACCGCCGGCGTGCAGAGCAGCGGCTACGGTTCGGACTCGCGTAACGATTGGCTATTGGTGCGCGGTTTCGTGCCAACGCAATTCCTCGATGGCCTGCCGCTGCCCAAGGGCAACTACATCACGACGAAAATCGAACCCTGGAACCTTGAGCGCATCGCGGTGCTTCGCGGCCCTGCTTCCTCGGTCTACGGCCAGACGCCCCCCGGCGGCATGCTCGACATGGTCAGCCGCCGCCCACAGGCTGAAAGCAGCAATGAAGTCCAATTGCAGGCCGGCAGCTACGAGCACAAGCAGATCAACTTCGACAGCACTGGCAAAGTCGATGACGAAGGCCAGTTCCTGTACCGACTCAGCGGCACGGTGCGCGACAGCAACTCCCAGGTCGACCACATCCCGGACAAACGCTACAACATTGCTCCAAGCCTGACGTGGAATATCAACGACGACACTCGCCTGACCTTCCTGTCGCAATACACCCGCGATGACACGGGTATCACTGGGCAATTCCTGCCGCTGCAAGGCACAAAGCTGGCCTCGCCGGCGGGCAAGATTTCTCATCACAAGAACCTGGGTGATCCGGACTGGGAGTTCTACGATCGCACCTACTATGCGCTGGGCTACAACTTCGAGCATCGCCTGAACGACACCTGGCAGTTCCGCCAGAATCTGCGCTATACCAAGAGCGATCTGGAATTTCAGGGCATCTCCGCCGGTGGGGCTTTTTTCCCAGATGGCCCGGACGAATCCGTGAGCGCCGATGGCACCGTCAGGCGCAGCGCCAGTATTGTTGATGAAGACATCAGCCAATACGCCGTGGATAACAATTTCCAGGCCGATTTCCAGACCGCAGCCTTGAGCCACACGCTGCTGCTGGGCCTGGACCACCAGCGCTCCAATAGCAACGCTCGCTGGCGCTGGGGTTCTGGTGGTGTGCCCACCAGCAACGTCAACAACCCGACTTACGGACAGGACTTCTCCAACGTCCAGTATTTCGACATGTACCACTACAACCAAAAAACCCACCAGACTGGCCTGTACATCCAAGACCAGATCGCTCTGGACAACTGGCGCCTGACCCTTGGCGGCCGTGAGGACTGGATTCACACCGGCACCGTTTTCCACAACCAGAACGACGCGACCAACACCCAGCGCGACAAGAAATTCAGCGGCAACGCCGCATTGAGCTATGTGTTCGATAACGGCGTGACACCGTACGTTTCCTTCGCCCAGTCGTTCCAGGCCGTGGCGGGCTCAGCCGTCAACAGCACTGACTCGTTCAAACCAACTGAAGGCGAGCAGTACGAAGTCGGCATCAAATATCAGCCACCGGGTACCAAAACCCTGTTGACCGCCGCGGTGTTCGACCTGACTCAGCAAAACAACTCCGTCACGGAGAACAACATCACCCGGCAGGTGGGCGAGGTCCGCGTGCGTGGCCTGGAACTGGAAGCGTCCGGCGACGTCACCGACAACCTGAAACTGGTCGGTTCCTACACCTACAACGACAGCGAAATCACCAAGGGCGCCGCGGCCGAAGAAGGCAAGCGCATGGCCCAGGTACCGCGTAACCAGGCCACCGCATGGGCCGACTACACCTGGCATAACGGCCCTCTGGACGGGTTCGGCGTGGGGGCTGGCGTGCGTTATGTCGGCGACACCTATGGCAACACCACCAACACCGATTGGGGTCACGTCGGCTCCTACACGGTGTACGACGCCTCGGCCCACTACGACCTGGGCCGTTTGAACAAGACGCTCAAGGGCGTCACGGTGGCAGTGGACGCGAAAAACATCTTCAACAAGGACTACCTGTCCACCTGCGATGGTTTCTATTGCTACTACGGCGACCAACGCAACGTCGTCGCCAGCGTGAATTACAAATGGTAA	MSRPFETLLRPSLLAVAIALSTPLACGPLLAAEQASGVRAYNLPAAPLASTLNQIASQAGLALSLNPSLASGKTSAPVQGQFDATGALREALRGTGLQLEQSSAGTYSLVAVPEGVMVLPETSVIGAGISETAWGPSEGYAVTRTAAGTKTDTPIVELPRSVSVVTRQQMEDRSVLNLNDALRYTAGVQSSGYGSDSRNDWLLVRGFVPTQFLDGLPLPKGNYITTKIEPWNLERIAVLRGPASSVYGQTPPGGMLDMVSRRPQAESSNEVQLQAGSYEHKQINFDSTGKVDDEGQFLYRLSGTVRDSNSQVDHIPDKRYNIAPSLTWNINDDTRLTFLSQYTRDDTGITGQFLPLQGTKLASPAGKISHHKNLGDPDWEFYDRTYYALGYNFEHRLNDTWQFRQNLRYTKSDLEFQGISAGGAFFPDGPDESVSADGTVRRSASIVDEDISQYAVDNNFQADFQTAALSHTLLLGLDHQRSNSNARWRWGSGGVPTSNVNNPTYGQDFSNVQYFDMYHYNQKTHQTGLYIQDQIALDNWRLTLGGREDWIHTGTVFHNQNDATNTQRDKKFSGNAALSYVFDNGVTPYVSFAQSFQAVAGSAVNSTDSFKPTEGEQYEVGIKYQPPGTKTLLTAAVFDLTQQNNSVTENNITRQVGEVRVRGLELEASGDVTDNLKLVGSYTYNDSEITKGAAAEEGKRMAQVPRNQATAWADYTWHNGPLDGFGVGAGVRYVGDTYGNTTNTDWGHVGSYTVYDASAHYDLGRLNKTLKGVTVAVDAKNIFNKDYLSTCDGFYCYYGDQRNVVASVNYKW	PGPT0003790_9137	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014	NA	NA
D1-36_04703	1131			hypothetical protein	ATGAAAAGCAAAACCATCCGCCGCTGGTCCTTCGTCCACACCTGGACCAGCCTGATCTGCACGGTGTTCCTGCTGATGTTGGCAATCACCGGGTTGCCGTTGATTTTCCATCATGAGATCGAGCACCTGTTGGGCGATGCGCCAGAGCTGCGGGAGATGCCGGCCGGCACGCCGCCGCTGGACCTGCAACAACTGGTGGAAAAAGCCAAGGCCCATCGTCCGGGCGAGGTGGTCCAGTATTTTGGCTGGGACGAGGACGACCCCAACGGCATCATCACCATCATGGCGCCGACGCCGGGCACCGAACCCAACTCCTCCCACACGTTCATGCTCGATGCACGCACGGGCGAAGCCCTGGAAATGCCCTCGGCCAACGGCGGTTTCATGATGGTCATGCTGCGCCTGCACGTGGACATGTTCGCCGGTTTGCCGGGCAAGTTGCTGCTGGCGTTCATGGGTTTGCTGTTCGTGATCGCCATCGTCTCCGGCGTGGTGCTGTATTTGCCATTCATGCGCCGCTTGAAGTTCGCCACGGTGCGCCAGGACAAATCCACGCGCCTGCGCTGGCTCGACCTGCACAACCTGATCGGTGTGGTCACCCTGGTCTGGGCGCTGACCGTCGGCGTGACTGGCGTGATCGCCGCCTGCGCCGACCTGATCATTGCCGCATGGCGCAACGATAGCCTCAGCGCCATGGTCGAGCCCTATCGCAACGCGCCACCATTGACCGAGCTGGCCCCGGCAACCCGCTTGCTGGACATTGCCAAGGATGTCGCTCCCGGCATGGAGCCGAGCTTCATCGCCTTCCCCGGCACGCTGTTTTCCAGCGAGCACCATTACAGCGTGTTCATGAAAGGCAGCACTCACCTGACCTCTCATCTGCTGACGCCTGTACTGATCGACGCCAGCACCCTGGACGTCACCGCCGTGGCCGAACGGCCCTGGTACATGGACATGATGAGCCTGTCCCTGCCCTTGCATTTCGGCGACTACGGTGGCCGGCCAATGCAGATCTTCTGGGCGACCCTGGACATCCTGACCATCATCGTCCTGGGCAGTGGTGTTTATCTGTGGGTGGTTCGGCGCAAGACCGCCAAGCGCGCAATCGTCGGCGCGGAGGTCGAAGCGTGA	MKSKTIRRWSFVHTWTSLICTVFLLMLAITGLPLIFHHEIEHLLGDAPELREMPAGTPPLDLQQLVEKAKAHRPGEVVQYFGWDEDDPNGIITIMAPTPGTEPNSSHTFMLDARTGEALEMPSANGGFMMVMLRLHVDMFAGLPGKLLLAFMGLLFVIAIVSGVVLYLPFMRRLKFATVRQDKSTRLRWLDLHNLIGVVTLVWALTVGVTGVIAACADLIIAAWRNDSLSAMVEPYRNAPPLTELAPATRLLDIAKDVAPGMEPSFIAFPGTLFSSEHHYSVFMKGSTHLTSHLLTPVLIDASTLDVTAVAERPWYMDMMSLSLPLHFGDYGGRPMQIFWATLDILTIIVLGSGVYLWVVRRKTAKRAIVGAEVEA				NA	NA	NA	NA	NA
D1-36_04704	180			hypothetical protein	GTGAGGCCTCGGCAGTCGAATTTCTGGAAGGTGTTTGGTATCCCCGTGGTCATCGGCGCTTTGAGCGCGGCGGGGCTGTTTTCGGCATTGTTGGGCGATGGCGCGTGGGATGCGGTGAGTTGGGTGGGCTTGGGCGTACCGACGGCGCTGGGGACTTGGGGTTTGTTCAAGCGCCGATAA	MRPRQSNFWKVFGIPVVIGALSAAGLFSALLGDGAWDAVSWVGLGVPTALGTWGLFKRR				NA	NA	NA	NA	NA
D1-36_04705	630	yibF_2	COG0625	putative GST-like protein YibF	ATGTCCAGCCCCAGCATGACCTTGTTCCACAACCCCGCGTCCCCCTTCGTCCGCAAGGTGCTGGTGCTGCTGCACGAAACCGGCCAGCAGGACCGTGTGGCGTTGCAGTTGAGTCAACTCACGCCGGTCAAGCCCGACCGGGCGCTGATCGAAGAAAACCCGTTGAGCAAGATCCCGGCCCTGCGCCTGGCCAACGGGACGGTGATCCACGACAGCCGCGTCATCCTTGATTACCTCGATCACCAGCATGTCGGCAACCCGCTGATCCCCCGCGAGGGCGCGGCCCGCTGGCGGCGCTTGACCTTGGCCTCCCTGGCCGACGGGATCATGGACGCGGCGGTGATGATCCGCTACGAGACCGCGCTGCGCCCCACGGAAAAACACTGGGCCGAATGGCTCGATGCGCAACGGGACAAGATTCGCCGTGCCGTGGCCCTGCTCGAAGCCGAGGCGATTGCCGAACTGGCCTGTCATTTCGACATCGCCTCCATCAGCGTCGCCTGCGCCCTGGGTTACCTGGACCTGCGCCATCCGGACCTGGAATGGCGCAAGTCCAATCCCCAGCTGGCGGCGTGGTTTGCCGAGGTGAGCTTGCGGCCTTCGATGCTCGAGACGGTGCCCAGGGTTTAA	MSSPSMTLFHNPASPFVRKVLVLLHETGQQDRVALQLSQLTPVKPDRALIEENPLSKIPALRLANGTVIHDSRVILDYLDHQHVGNPLIPREGAARWRRLTLASLADGIMDAAVMIRYETALRPTEKHWAEWLDAQRDKIRRAVALLEAEAIAELACHFDIASISVACALGYLDLRHPDLEWRKSNPQLAAWFAEVSLRPSMLETVPRV	PGPT0013170_14794	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799	NA	NA
D1-36_04706	180			hypothetical protein	ATGAGTCGGTCGCTGGGGTTGCGGGAGGATCAGTGGTTGGGAGAGCTGCTGGTGAAGCGAATTGCTGGGTTGTTTCCGATGGATCCGGAGCGCGGCCTTCGCGAGCAGGCTCGCTCCCAAAGGGACCACACGATCAATGGGGGGCGAGCCTGCTGGCGAAAAAGTCGTGATATTCAGTAA	MSRSLGLREDQWLGELLVKRIAGLFPMDPERGLREQARSQRDHTINGGRACWRKSRDIQ				NA	NA	NA	NA	NA
D1-36_04707	1374	creD	COG4452	Inner membrane protein CreD	ATGAACCGCAGTCTCGCTATAAAACTGGGCATGATTGCCCTCTTGATCCTCTTGCTGATGATTCCGTTGTTGATGATCAGCGGCCTTATCGATGAGCGCCAAGAGCTGCGCGACGGGGTGCTGCAGGACATCGCCCGCAGTTCCAGCCACAGCCAGCAACTGATCGGGCCGATGATCGTCGTCCCGTTTCGCAAGGACGTGAAAGTCTGGAGTACCAACGAAAAGACGGGCGTGCGTTTCCTGGAGACCGTCGAACGAAGTGGTGAGTTGTACTTTTTGCCGGAGCAATTCGAACTCGACGGCCAGGTGCGCACCGAAACCCGCGCCCGGGGTATCTACGAGGCGCGCTTGTTTCATGCTGACAATCGGATCGATGGGCGCTTCAAGGTGCCGGAGCGTTATGGCGTCGCCGCGAAGGATTTCGCCGACTATCGCTTTGACGAGCCGTACCTGAGCGTCGGTATCAGCGACATTCGCGGCATCGAGAATGCCTTGACCCTGACGCTGAACCAGCAAACCGTCGACTTCCTTCCCGGCTCGCGGCTTGGCTGGCTTGGGCAAGGCGTGCATGTACCGCTGCCCATGATCACCGCCCAAGGCAGCCCCGAGCTGACCTTCGGTTTCGACCTGCGCCTGCAAGGTACCGGTGAATTGCAGATCCTGCCGGTGGGCAAGTCCACCAAGGTGCACCTCTCCGCCGACTGGCCGCACCCCAGCTTTATCGGCAACTACCTGCCGGTCGATCGCGAGGTCAACGAGCAGGGCTTCAGTGCCGATTGGCAGACCTCGTTTTTCTCCACCAACCTCTTGGAAACATTGCAGGCATGCGAGCCCAGCGATGGCTGCGAAGCATTCCGCAGCCGTGCATTCGGCGTGAGTTTCGTCGATCCGGTGGACCAATACCTCAAGAGCGATCGGGCGATCAAATACGCGCTGCTGTTCATTGCGCTGACGTTCGCCGGGTTCTTCCTCTTCGAAGTGCTCAAGAGCCTGGCGGTGCACCCGGTCCAATACGCACTGGTGGGCGTGGCCCTGGCCTTCTTCTATCTATTGCTGTTGTCGCTTTCGGAACACATAGGCTTCACCCTGGCGTACCTGGTCTCGGCCAGTGCCTGCGTGGTGTTGATCGGCTTTTATGTCTGCCATGTGCTGCGCAGCGTCAGCCACGGCCTGGGTTTTTCAGCCGGGTTGGCGGGGTTGTACGGTTTGCTCTATGGGTTGCTAAGCGCTGAAGACTACGCGCTGTTGATGGGCTCGCTGCTGCTGTTCGGCCTGCTCGGTGTGTTCATGGTGTTGACCCGCAAGTTGGACTGGTACGGCGTGGGCGCGAAGCCTGTTGCGGCGATGAGCTTCGATCTGGGAGAGGTGAAATGA	MNRSLAIKLGMIALLILLLMIPLLMISGLIDERQELRDGVLQDIARSSSHSQQLIGPMIVVPFRKDVKVWSTNEKTGVRFLETVERSGELYFLPEQFELDGQVRTETRARGIYEARLFHADNRIDGRFKVPERYGVAAKDFADYRFDEPYLSVGISDIRGIENALTLTLNQQTVDFLPGSRLGWLGQGVHVPLPMITAQGSPELTFGFDLRLQGTGELQILPVGKSTKVHLSADWPHPSFIGNYLPVDREVNEQGFSADWQTSFFSTNLLETLQACEPSDGCEAFRSRAFGVSFVDPVDQYLKSDRAIKYALLFIALTFAGFFLFEVLKSLAVHPVQYALVGVALAFFYLLLLSLSEHIGFTLAYLVSASACVVLIGFYVCHVLRSVSHGLGFSAGLAGLYGLLYGLLSAEDYALLMGSLLLFGLLGVFMVLTRKLDWYGVGAKPVAAMSFDLGEVK				NA	NA	NA	NA	NA
D1-36_04708	1419	creC	COG0642	Sensor protein CreC	ATGTCACTGGGCATTCGTATCTTCCTTGCCTATGTGTTGTTTATTGGCTTGGCCGGGTATTTCGTGCTCAACACGGTCATGGAGGAAATCCGCCCCGGTGTGCGCCAGTCCACCGAGGAAACCCTGGTGGACACGGCCAACCTGATGGCTGAGATCCTGCGGGACGATTTCAAGGCCGGAACGCTTAGCCAGAACCGCTGGCCGCAACTGCTCAAATCCTATGGTGAGCGCCAGCCGGCCGCGACAATCTGGGGGCTGCCGAAAAACCAGGTCAGCCACCGCATCTACGTCACCGACGCCAAAGGCATCGTGGTGCTCGATTCCAGCGGCGCGGCAGTGGGGCAGGACTATTCGCGCTGGAACGACGTCTACCTGACGCTGCGCGGTCACTATGGCGCCCGTTCGACCCGCAGCGATCCGGATGACCCGGCGTCTTCGGTGATGCACGTCGGGGCGCCGATCCGTGACAACGGCCGGATCATAGGCGTGGTGACGGTGGCCAAGCCCAATAGCTCCTTGCAGCCTTACGTCGACCGCACGGAACGGCGTTTGCTCGCCTACGGCGCCGGTCTGATCGGCCTTGGCCTGTTGCTCGGCGCCTTGCTGTCGTGGTGGCTCAGCGCGGCATTGCGGCGCTTGACGGCTTATGCCCAGGCGGTCAGCCAGGGCCGTCGGGTGGAGGTGCCGCACTATCGCGGCGGCGAGTTCGAACAATTGGCGGGGGCGGTGGAGCATATGCGCACCCAGCTTGAAGGCAAGGCGTATGTCGAGCGATACGTACATACCCTGACCCATGAACTCAAGAGTCCGCTGGCGGCGATTCGCGGCGCCGCCGAGCTGCTGCAGAGCGACATGCCGGCCGCCCAGCACCAGCGTTTCGTCAGCAACATCGACAGCGAAAGCGTGCGGATGCAGCAGTTGATCGAGCGTTTGCTCAACCTGGCCCAGGTCGAGCAGCGGCAAGGCCTGGAGGAAGTGGTAGCGGTGCCGGTGGCGGCGTTGATGGATGAGTTGTTGCAAGCGCGTGGCGGCTGGATCGAAAGTCGCCAGTTAAAGATCGAGCAGCACATCGCTGCCGACCTGGCGCTGACCGGGGAGCCTTTTCTGTTGCGCCAGGCGTTGGGCAATCTGCTGGAAAATGCCCTGGACTTCACGCCTGTCGCGGGCCTGCTACGGCTCAGCGCCGAGCGTATCGGCAGCGCGGTCGAGATCCGCCTGTTCAACCAGGCCGAGCCAATTCCCGACTATGCGCTGCCTCGTTTGAGCGAGCGTTTTTACTCGTTGCCTCGCCCGGGTACTGGTCGCAAGAGCACGGGCCTGGGGCTGAACTTCGTCGAGGAAGTGGTGCAGTTGCATGGCGGGGCGTTCGGTATCGGCAATGTCGAGGGCGGGGTGGAGGTGGTGCTGCGGTTGCCCTGA	MSLGIRIFLAYVLFIGLAGYFVLNTVMEEIRPGVRQSTEETLVDTANLMAEILRDDFKAGTLSQNRWPQLLKSYGERQPAATIWGLPKNQVSHRIYVTDAKGIVVLDSSGAAVGQDYSRWNDVYLTLRGHYGARSTRSDPDDPASSVMHVGAPIRDNGRIIGVVTVAKPNSSLQPYVDRTERRLLAYGAGLIGLGLLLGALLSWWLSAALRRLTAYAQAVSQGRRVEVPHYRGGEFEQLAGAVEHMRTQLEGKAYVERYVHTLTHELKSPLAAIRGAAELLQSDMPAAQHQRFVSNIDSESVRMQQLIERLLNLAQVEQRQGLEEVVAVPVAALMDELLQARGGWIESRQLKIEQHIAADLALTGEPFLLRQALGNLLENALDFTPVAGLLRLSAERIGSAVEIRLFNQAEPIPDYALPRLSERFYSLPRPGTGRKSTGLGLNFVEEVVQLHGGAFGIGNVEGGVEVVLRLP	PGPT0015045_475	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CARBON_STARVATION_RESPONSE,PGPT0015045-creC-K07641	NA	NA
D1-36_04709	681	creB	COG0745	Transcriptional regulatory protein CreB	ATGCCTCATATTCTGATTGTCGAAGACGAAGCCGCCATTGCCGATACGCTGGTGTTTGCCCTGCAGGGCGAAGGCTTTGACACCACTTGGCTGAGCCTTGGCGCAGCTGCCCTCGAGCACCAGAAAAACACGCCGGCGGACCTGATCATTCTCGATGTAGGCCTGCCGGATATCAGTGGTTTTGAGACGTGTAAGAATCTCAGACGTTTCAGCGACGTCCCGGTCATCTTTCTTACAGCTCGGGACGGCGAGATTGATCGGGTGGTGGGCTTGGAGATTGGTGCCGACGACTACGTGGTCAAACCCTTCAGCCCTCGGGAAGTGGCCGCCAGGGTCCGCGCCATCCTCAAGCGAGTGGCGCCGCGACCGATCGCCGAAACGGGGACAGCGTTGTTCCAGGTCGACCCTGATCGCGTGCAGATCAACTATCGCGGCAAACCGCTGAACCTCACGCGCCACGAGTTTCGCTTGTTGCACTGTTTGCTGGACCAGCCCGAACGGGTCTTCAGCCGCGAACAGTTGCTCGATGCCCTGGGCGTGGCCAGCGACGCCGGTTACGAGCGCACGATCGACAGTCATATCAAGAGCCTGCGTGCCAAACTGCGCCTGGTCCGGGCCGAGGCCGAGCCGATCCAGACTCATCGGGGGCTCGGCTACAGCTACAGCCCGGGGCACAGCTGA	MPHILIVEDEAAIADTLVFALQGEGFDTTWLSLGAAALEHQKNTPADLIILDVGLPDISGFETCKNLRRFSDVPVIFLTARDGEIDRVVGLEIGADDYVVKPFSPREVAARVRAILKRVAPRPIAETGTALFQVDPDRVQINYRGKPLNLTRHEFRLLHCLLDQPERVFSREQLLDALGVASDAGYERTIDSHIKSLRAKLRLVRAEAEPIQTHRGLGYSYSPGHS	PGPT0015055_369	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-CARBON_STARVATION_RESPONSE,PGPT0015055-creB-K07663	NA	NA
D1-36_04710	507			hypothetical protein	ATGAAATCCGTTCTAGCCCTGCTTTCCCTGGTGGCCCTTCCAGTACTGGCCGCCGAACCCACCTTGTACGGGCGCTATGAATACATAGCGCTGCCGGAAATGGGCGGCGAAGTGCTCAAGGCGAAAATGGACACCGGTGCGCTGACCGCTTCGCTGTCGGCCAAGGACATCGAGACGTTTACCCGTGACGGCGATGACTGGGTACGGTTTCGCCTGGCAACCAAAGACGCGAGCAACAAGATCTATGAGCATAAGATTGCCCGCATCAGCAAGATCAAGACCCGTTCCGAAGAGGACGAGGACGACGATGAAAAGATCGCCCCGAGTAAACGTCCGGTGGTGGAACTGGAAATGTGCCTGGGTAACGTCAAGCGCACCGTCGAGGTCAACCTGACCGACCGCAGCAGCTTCAACTACCCGCTACTGATCGGCGCCAAGGCCTTGCGCGAATTCAAAGCGGCGGTCAACCCGGCACGGCGGTTTACAGCGGATAAACCGGACTGTTGA	MKSVLALLSLVALPVLAAEPTLYGRYEYIALPEMGGEVLKAKMDTGALTASLSAKDIETFTRDGDDWVRFRLATKDASNKIYEHKIARISKIKTRSEEDEDDDEKIAPSKRPVVELEMCLGNVKRTVEVNLTDRSSFNYPLLIGAKALREFKAAVNPARRFTADKPDC				NA	NA	NA	NA	NA
D1-36_04711	894	yihG_2	COG0204	putative acyltransferase YihG	ATGCGCCGCCTGCTCACCGGCTGTCTCGTCACCCTGTTGCTGCTGCTCAACACCTTGGTGCTGTTCGGACCGCTCATGGTATTTGCGCTCTTGAAACTGGTCCTGCCCGGGCGTTTTCGCGACTACGCCTCGTTGGCGGTCATGTGGATCGCCGAGACCTGGGCTGAAATCGACAAACTGATCTTTGCCCTGTGCATCCCCACTCGCTGGGACATTCGCGGTGGCGAAGGCCTGCGCGGCGACACCTCCTACCTGGTGATCAGCAACCACCAATCCTGGGTGGACATCCCCGCCCTGGTCCAGGCCCTCAACCGGCGCACGCCTTTTTTCAAGTTTTTCCTCAAGAAGGAACTGATCTGGGTGCCCTTCCTTGGCTTGGCCTGGTGGGCGCTGGATTACCCCTTCATGAAACGCTACACCAAGGCCTTCCTGGCGAAGAACCCGGAACTGGCTGGTCGCGATCTGGAAATCACCAAGGCCGCCTGTGAGCTGTTCAAGCGCCAACCGGTCACTGTGGTGAACTACCTTGAAGGCACGCGTTACACAACGGCCAAAAGCCAGGCGCAGCAATCGCCCTTCGCTCACCTGCTCAAGCCCAAGGCCGGCGGGGTGGCATTCGTGCTGGCGGCGATGGGCGAGCAACTGGACGCGGTGCTGGACGTAACAGTGGTCTACCCGCAAGAGCGGATTCCAGGTTTTTGGGACTTGATCAGCGGGGCGGTGCCCAAGGTCATCATCGACATCCAGACCCGCGAACTGGACCCGACGCTATGGCAGGGCGATTACGAGAACGACCCCGTGTTTCGCCAGCACGTCCAGGACTGGGTCAACTTGCTGTGGGCCGAAAAAGATCGGCGTATTGCTGCGCTGCGCAGCGAAGGCCGGCTTGGGTAA	MRRLLTGCLVTLLLLLNTLVLFGPLMVFALLKLVLPGRFRDYASLAVMWIAETWAEIDKLIFALCIPTRWDIRGGEGLRGDTSYLVISNHQSWVDIPALVQALNRRTPFFKFFLKKELIWVPFLGLAWWALDYPFMKRYTKAFLAKNPELAGRDLEITKAACELFKRQPVTVVNYLEGTRYTTAKSQAQQSPFAHLLKPKAGGVAFVLAAMGEQLDAVLDVTVVYPQERIPGFWDLISGAVPKVIIDIQTRELDPTLWQGDYENDPVFRQHVQDWVNLLWAEKDRRIAALRSEGRLG				NA	NA	NA	NA	NA
D1-36_04712	345			hypothetical protein	ATGATGCTGCTGATAATCGGCCATGTTCAGGCTGGAGAAGCTTCTTGTCCGGCCTTGACACAACTCCAGGACGACACTGCAACTGTCAATATCCAGGATGCTCCTGACTGGCAGAGCCAAACCATCGTGCAAGAGCTCAACCCTGCGTCACTACAATTCGACGAAGCGGAATTCGCGATCCAGGAACCTGACGAATATCAACAGGTCAGCGTGATCTACCAGCACTGCGAGACGAAACTTACCCTTGACTACCTTACACCGGGATTGAACGGTCATTGCACAAGCCTCGGCACCCGTGCTTGCCAATTTCGGAACAGCAGCGATTATTTCAGTCTCAGATTTTGA	MMLLIIGHVQAGEASCPALTQLQDDTATVNIQDAPDWQSQTIVQELNPASLQFDEAEFAIQEPDEYQQVSVIYQHCETKLTLDYLTPGLNGHCTSLGTRACQFRNSSDYFSLRF				NA	NA	NA	NA	NA
D1-36_04713	96			hypothetical protein	ATGAGTCCGTGGCGGATTTTCGAGGTCGCCACCTTCATCAAACACCTGCGCCAGCCGCACTGCGGGAAAGCCAGGCTGGCCGCCGCTGAAGAATAG	MSPWRIFEVATFIKHLRQPHCGKARLAAAEE				NA	NA	NA	NA	NA
D1-36_04714	429			hypothetical protein	ATGTTTAAGATACGAGCCCGCGGCGTGGGGGTATTGCTAGGGGTTATTGGCCAGGTTAACGCTGGCGAAATAACCTGCCCTGCGGCCACGGACATACACAGGAACATCGAGGCGGTAGAAGATGTTTACTTTGTCGAAGGGCACGATGAGTTCGAATGGCGGAGCGAAAACCTCGTGGATTCGGTCAACCCGAGAAAACTGTTATTCGAAGGCGCGGAATATGTACAGCACGAAGAGAGCGAGGACGAAGAAGAACTTGCCATTCGTACCACCATCACATGCCGATATGGCGATATGAATCTGGTCATGCAATATCCGCACGTTCAAGAACCCACCTTTTCGCCGTGGATAAACAACAACTGTAAAAGCCAGGATGTTAACGAGTGCCAACTCATCAATGCCGATTATTTTCAAGTCAGCTTTGATTAA	MFKIRARGVGVLLGVIGQVNAGEITCPAATDIHRNIEAVEDVYFVEGHDEFEWRSENLVDSVNPRKLLFEGAEYVQHEESEDEEELAIRTTITCRYGDMNLVMQYPHVQEPTFSPWINNNCKSQDVNECQLINADYFQVSFD				NA	NA	NA	NA	NA
D1-36_04715	1200	fdhA_3		Glutathione-independent formaldehyde dehydrogenase	ATGTCCGGTAATCGTGGTGTCGTGTATCTCGGCAACGGCAAGGTCGAAGTACAGAAAATCGACTATCCCAAAATGCAGGACCCGCGCGGCAGGAAGATCGAGCACGGCGTCATCCTGCGCGTAGTCTCCACCAACATCTGCGGCTCCGACCAACATATGGTGCGCGGTCGTACCACCGCCCAGACCGGGCTGGTCCTGGGCCATGAGATCACCGGTGAAGTGATCGAGAAGGGCAGCGACGTCGAGAACCTGAAAATCGGCGACCTGGTATCGGTACCGTTCAACGTGGCCTGCGGGCGCTGCCGTTCCTGCAAGGAAATGCACACCGGCGTCTGCCTGACCGTCAACCCGGCCCGTGCCGGCGGTGCCTACGGTTACGTCGACATGGGCGACTGGACCGGCGGCCAAGCCGAATACGTGCTGGTGCCGTACGCCGATTTCAACCTGCTGAAACTGCCGGATCGTGACAAGGCCATGGAGAAAATCCGTGACCTGACCTGCCTGTCCGACATCCTGCCCACCGGCTACCACGGCGCCGTCACCGCCGGCGTTGGCCCGGGCAGCACCGTCTACATCGCCGGTGCCGGTCCGGTTGGCCTGGCGGCCGCTGCGTCCGCTCGCCTGTTGGGCGCGGCCGTGGTCATCATCGGCGACGTGAATCCGGTCCGCCTGGCCCACGCCAAGGCCCAGGGCTTCGAAATTGCCGACCTGTCCCAGGACACTCCGCTGCATGAGCAGATCGCCGCGCTGCTGGGCGAGCCTGAAGTCGACTGCGCGGTCGACGCTGTAGGCTTCGAAGCTCGCGGCCATGGCCATGACGGCGTCAAGCACGAAGCCCCGGCCACCGTGCTCAACTCATTGATGGGCGTGGTCCGCGTCGCTGGCAAGATCGGCATCCCCGGCCTGTACGTCACCGAAGACCCGGGCGCGGTCGATGCCGCAGCGAAAATGGGCAGTCTGAGCATCCGCTTCGGCTTGGGCTGGGCTAAATCCCACAGCTTCCACACCGGCCAGACCCCGGTGATGAAATACAATCGCCAACTGATGCAGGCGATCATGTGGGACCGTATCAACATTGCCGAAATCGTGGGTGTGCAGGTCATCAGCCTGGACGACGCGCCGAAGGGGTATGGCGAGTTCGATGCGGGCGTGCCGAAGAAGTTTGTGATCGATCCGCACAAGTTGTTCAGCGCGGCGTAA	MSGNRGVVYLGNGKVEVQKIDYPKMQDPRGRKIEHGVILRVVSTNICGSDQHMVRGRTTAQTGLVLGHEITGEVIEKGSDVENLKIGDLVSVPFNVACGRCRSCKEMHTGVCLTVNPARAGGAYGYVDMGDWTGGQAEYVLVPYADFNLLKLPDRDKAMEKIRDLTCLSDILPTGYHGAVTAGVGPGSTVYIAGAGPVGLAAAASARLLGAAVVIIGDVNPVRLAHAKAQGFEIADLSQDTPLHEQIAALLGEPEVDCAVDAVGFEARGHGHDGVKHEAPATVLNSLMGVVRVAGKIGIPGLYVTEDPGAVDAAAKMGSLSIRFGLGWAKSHSFHTGQTPVMKYNRQLMQAIMWDRINIAEIVGVQVISLDDAPKGYGEFDAGVPKKFVIDPHKLFSAA	PGPT0002115_275	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_HYDROCARBONS|OIL_DEGRADATION	XENOBIOTIC_DICHLOROMETHANE_DEGRADATION,PGPT0002115-fdhA-K00148	NA	NA
D1-36_04716	858	purU_2	COG0788	Formyltetrahydrofolate deformylase	ATGAGCCGCGCCCCAGACACATGGATCCTGACTGCCGATTGCCCCAGCGTGCTCGGCACGGTGGACGCGGTGACCCGCTTTCTGTTCGAGCAGGGCTGCTACGTCACCGAACACCACTCGTTCGACGACCGACTCTCGGCGCGCTTCTTCATTCGCGTGGAGTTTCGCCAGCCTGACGGTTTCGATGAGCAGAGTTTCCGCGCCGGCCTGGCCGAGCGTGCCGAAGCCTTTGGCATGGTCTTCGAACTGACCCCGCCCAACTATCGACCCAAAGTGGTGATCATGGTCTCCAAGGCCGATCACTGCCTCAACGACTTGCTCTACCGCCAGCGCATCGGCCAGTTGTCGATGGACGTAGTGGCCGTGGTGTCCAACCACCCAGACCTCAAGCCGTTGGCCGACTGGCACCAGATTCCCTACTACCATTTCCCCCTTGACCCGAACGACAAACCGGCCCAGGAGCGGCAGGTGTGGCAGGTGATCGAAGACACCGGCGCCGAACTGGTGATCCTCGCCCGCTACATGCAAGTGCTGTCGCCAGAGTTGTGCCGCAAGCTTGATGGCAAGGCGATCAACATCCATCACTCGTTGCTGCCGGGGTTCAAGGGTGCCAAGCCGTATCACCAGGCCTACAACAAAGGCGTGAAGCTGGTGGGCGCCACGGCGCATTACATCAACAACGATCTGGACGAAGGGCCGATCATTGCCCAAGGCGTGGAAGTGGTGGACCACAGCCACTACCCCGAAGATTTGATTGCCAAGGGCAGGGATATCGAAGGGCTCACCTTGGCCCGGGCGGTGGGGTATCACATTGAGCGAAGGGTGTTCTTGAACGCCAATCGCACGGTTGTTCTTTAG	MSRAPDTWILTADCPSVLGTVDAVTRFLFEQGCYVTEHHSFDDRLSARFFIRVEFRQPDGFDEQSFRAGLAERAEAFGMVFELTPPNYRPKVVIMVSKADHCLNDLLYRQRIGQLSMDVVAVVSNHPDLKPLADWHQIPYYHFPLDPNDKPAQERQVWQVIEDTGAELVILARYMQVLSPELCRKLDGKAINIHHSLLPGFKGAKPYHQAYNKGVKLVGATAHYINNDLDEGPIIAQGVEVVDHSHYPEDLIAKGRDIEGLTLARAVGYHIERRVFLNANRTVVL	PGPT0008155_2162	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008155-purU-K01433	NA	NA
D1-36_04717	633	soxG		Sarcosine oxidase subunit gamma	ATGACCGCAGTCAACGTGTACCAACAACGCCCAACCACCGGGGCCAAGGCCGAGTCGTCGCTGCACCATGCCGACCTCGCAAGCCAGGTGGGCAAGGGTCGCAAGAACGCCGGCGTGACCGTGCGCGAGAAAAAACTCCTGGGCCACCTGACCATTCGTGGCGACGGCCATGACCCAGCGTTCGCCGCTGGCGTGCACAAGGCCCTGGGCCTGGAATTGCCGGCCGCGCTGACCGTCGTCATCAAGGGCGAAACCAGCCTGCAATGGCTCGGCCCGGATGAATGGCTGCTGGTGGTGCCCACCGGCGAGGAGTTCGCCGCCGAGCAAAAGCTGCGTGAAGCCCTCGGCGACCTGCACATCCAGATCGTCAATGTCAGCGGCGGCCAGCAGATCCTCGAACTGTCCGGCCCGAACGTGCGCGACGTGCTGATGAAATCCACCAGCTACGATGTACACCCAAGCAATTTCCCGGTGGGCAAAGCCGTGGGCACGGTGTTCGCCAAGTCGCAACTGGTGATCCGCCATACGGCTGAAGACACCTGGGAACTGGTGATCCGCCGCAGCTTCTCCGACTACTGGTGGCTGTGGTTGCAGGATGCCGCGGCGGAGTATGGGTTGAGCGTGCAGGCGTAA	MTAVNVYQQRPTTGAKAESSLHHADLASQVGKGRKNAGVTVREKKLLGHLTIRGDGHDPAFAAGVHKALGLELPAALTVVIKGETSLQWLGPDEWLLVVPTGEEFAAEQKLREALGDLHIQIVNVSGGQQILELSGPNVRDVLMKSTSYDVHPSNFPVGKAVGTVFAKSQLVIRHTAEDTWELVIRRSFSDYWWLWLQDAAAEYGLSVQA	PGPT0013525_188	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013525-soxG-K00305	NA	NA
D1-36_04718	3018	soxA		Sarcosine oxidase subunit alpha	ATGAGCCAGATCAATCGCCTGTCCAACGGCGGACGGATCGACCGTAACAAAGTGCTGAGCTTCACCTTCAACGGCCAGACCTACAAAGGCTTCGAGGGCGACTCCCTGGCCGCCGCGCTGCTGGCCAACGGTGTCGACATCATCGGTCGCAGCTTCAAGTATTCCCGTCCGCGCGGCATTTTCGCCGCCGGCGCCGAAGAGCCGAACGCGGTGCTGCAGATCGGTGCCACCGAAGCCACCCAGATTCCGAACGTAAGGGCCACGCAACAAGCGCTGTACCAAGGCCTGGTCGCCACCAGCACCAACGGCTGGCCGAACGTGAACAACGACATGATGGGGATCCTCGGCAAGGTCGGCGGCAAGCTGATGCCGCCGGGCTTCTACTACAAAACCTTCATGTACCCGCAATCGTTCTGGATGACCTACGAGAAGTACATCCGCAAGGCCGCAGGGTTGGGTCGCTCGCCGACCGAGAACGATCCGGACACCTACGACTACATGAACCGTCACTGCGACGTGCTGATCGTCGGCGCCGGCCCTGCTGGTCTGGCCGCCGCACTGGCCGCGGCCCGCAGCGGTGCGCGCGTGATCCTGGCTGACGAGCAGGAAGAGTTCGGTGGCAGCCTGCTCGATTCCCGCGAGAGTCTGGACGGCAAGCCGGCGACCGAGTGGGTCGCTGCCGCGGTGGCTGAACTGCGCTCGATGCCGGAAGTGGTGTTGCTGCATCGCGCCACGGTGAACGGCTACCACGACCATAACTTCCTGACCATCCATGAGCGCCTCACCGATCACCTGGGTGATCGCGCTCCGATCGGCCAGGTTCGCCAGCGCATCAACCGTGTCCGTGCCAAGCGCGTGGTGCTGGCGACCGGCGCCTGCGAGCGGCCATTGGTCTACGGCAACAACGACGTGCCGGGCAACATGCTGGCTGGCGCGGTTTCTACTTACATCCGCCGCTACGGCGTGGCGCCGGGCAAGAAACTGGTCCTGAGCACCAACAATGACCACGCCTATCGCGTGGCCCTGGACTGGTTCGACGCCGGCCTGCAAGTGGTTGCCGTGGCCGATGCCCGCAGCAACCCACGTGGCGCACTGGTGGAAGAAGCCCGCGCCAAGGGCATCCGCATCCTTACCGGCAGCGCCGTGATCGAAGCCCGTGGCAGCAAGCGCGTCACCGGGGCACGGGTTGCCGCGATCGATGTGCGCGCCCATACAGTCACCAGCCCCGGCGAATGGCTGGACTGCGACCTGGTGGCGAGCTCCGGCGGCTACAGCCCGGTGGTCCACCTGGCTTCGCACCTGGGCGGCAAGCCGATCTGGCGTGAAGACATCCTCGGTTTCGTACCGGGCGAAGCTCCGCAGAAACGGGTGTGCGTCGGCGGTGTAAATGGCGTGTACAGCCTCGGCGATAGCTTGGCCGACGGTTTCGAAGGCGGCGTGCGCGCGGCCAGCGAAGCGGGTTTCAAGGCAGTGGAGGGCGTGTTGCCCAAAGCCCTGAGCCGTCACGAAGAACCGACCCTGGCGCTGTTCCAGGTGCCCCACGAAAAAACCACCGCTCGGGCGCCGAAGCAATTCGTCGACCTGCAAAACGACGTCACCGCCGCCGCCATCGAACTCGCCACCCGCGAAGGCTTCGAGTCGGTGGAACACGTCAAGCGTTACACCGCCCTGGGCTTCGGCACTGACCAAGGCAAGCTGGGCAACGTCAACGGCCTGGCCATCGCGGCCCGTTCGCTGAACGTGAGCATCCCGCAGATGGGCACCACCATGTTCCGTCCGAACTACACGCCGGTGACTTTCGGCGCGGTGGCCGGCCGTCACTGCGGGCACATTTTCGAGCCGGTGCGCTTCACCGCGCTGCATGCCTGGCATGTAAAAAACGGTGCTGAGTTCGAAGACGTCGGCCAATGGAAGCGCCCTTGGTACTTCCCGAAGAACGGCGAAGACATGCACGCCGCAGTCAAGCGCGAATGCAAGGCCGTGCGCGACAGCGTCGGCCTGCTGGACGCCTCGACCCTGGGCAAGATCGATATCCAGGGCCCGGATGCCCGTGAGTTCCTCAACCGCATCTACACCAATGCCTGGACCAAGCTCGACGTGGGCAAGGCCCGCTACGGCCTGATGTGCAAGGAAGACGGCATGGTCTTCGACGACGGCGTGACAGCCTGTCTGGCGGACAACCATTTCCTGATGACCACCACCACTGGCGGCGCGGCTCGTGTGCTGCAATGGCTGGAGATCTACCAGCAGACCGAATGGCCGGACTTGAAGGTGTACTTCACCTCGGTCACCGACCACTGGGCAACCATGACCCTGTCGGGGCCCAACAGCCGCAAGCTGCTGAGCGAAGTCACCGACATCGACCTGGACAAGGACGGCTTCCCGTTCATGACCTGGAAGGAAGGCCTGGTGGGCGGCGTGCCGGCGCGGGTGTTCCGTATCTCGTTCACCGGTGAGCTGTCATACGAGATCAACGTGCAGGCCGACTACGCCATGGGTGTGCTCGAGCAGATCGTCGAGGCCGGCAAGAAATACAACCTGACCCCGTACGGCACCGAGACCATGCACGTCTTGCGGGCTGAGAAAGGCTTCATCATCGTCGGTCAGGACACCGACGGTTCGATGACCCCGGACGACCTGAACATGGGCTGGTGCGTCGGCCGCACCAAGCCGTTCTCTTGGATCGGCTGGCGCGGGATGAATCGCGAAGATTGCGTGCGCGAAAATCGCAAGCAACTGGTGGGGCTCAAGCCGATCGACCCGAATGTCTGGCTGCCGGAAGGCGCCCAGCTGGTGTTCAACCCCAAGCAGGCGATCCCGATGTCGATGGTCGGCCACGTCACCTCCAGCTATGCGCATAACTCTCTGGGTTATTCGTTTGCGATGGGTGTGGTCAAGGGTGGCTTGAAGCGCCTGGGCGAGCGGGTGTTCGCGCCATTGGCCGACGGCCGGGTGATCGAGGCAGAGATCGTTTCTTCGGTGTTCTTCGATCCGAAGGGGGATCGGCAGAACATCTGA	MSQINRLSNGGRIDRNKVLSFTFNGQTYKGFEGDSLAAALLANGVDIIGRSFKYSRPRGIFAAGAEEPNAVLQIGATEATQIPNVRATQQALYQGLVATSTNGWPNVNNDMMGILGKVGGKLMPPGFYYKTFMYPQSFWMTYEKYIRKAAGLGRSPTENDPDTYDYMNRHCDVLIVGAGPAGLAAALAAARSGARVILADEQEEFGGSLLDSRESLDGKPATEWVAAAVAELRSMPEVVLLHRATVNGYHDHNFLTIHERLTDHLGDRAPIGQVRQRINRVRAKRVVLATGACERPLVYGNNDVPGNMLAGAVSTYIRRYGVAPGKKLVLSTNNDHAYRVALDWFDAGLQVVAVADARSNPRGALVEEARAKGIRILTGSAVIEARGSKRVTGARVAAIDVRAHTVTSPGEWLDCDLVASSGGYSPVVHLASHLGGKPIWREDILGFVPGEAPQKRVCVGGVNGVYSLGDSLADGFEGGVRAASEAGFKAVEGVLPKALSRHEEPTLALFQVPHEKTTARAPKQFVDLQNDVTAAAIELATREGFESVEHVKRYTALGFGTDQGKLGNVNGLAIAARSLNVSIPQMGTTMFRPNYTPVTFGAVAGRHCGHIFEPVRFTALHAWHVKNGAEFEDVGQWKRPWYFPKNGEDMHAAVKRECKAVRDSVGLLDASTLGKIDIQGPDAREFLNRIYTNAWTKLDVGKARYGLMCKEDGMVFDDGVTACLADNHFLMTTTTGGAARVLQWLEIYQQTEWPDLKVYFTSVTDHWATMTLSGPNSRKLLSEVTDIDLDKDGFPFMTWKEGLVGGVPARVFRISFTGELSYEINVQADYAMGVLEQIVEAGKKYNLTPYGTETMHVLRAEKGFIIVGQDTDGSMTPDDLNMGWCVGRTKPFSWIGWRGMNREDCVRENRKQLVGLKPIDPNVWLPEGAQLVFNPKQAIPMSMVGHVTSSYAHNSLGYSFAMGVVKGGLKRLGERVFAPLADGRVIEAEIVSSVFFDPKGDRQNI	PGPT0013515_145	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0013515-soxA-K00302	NA	NA
D1-36_04719	330	soxD		Sarcosine oxidase subunit delta	ATGTTGCACATCTTCTGTCCTCACTGCGGCGAACTGCGCTCCGAAGAGGAATTCCATGCATCCGGCCAGGCGCATATCCCGCGTCCACTGGACCCGAACGCCTGCACCGACGAGGAGTGGGGCGACTACATGTTCTTCCGCGACAACCCTCGCGGCCTGCATCACGAGTTGTGGATCCATGCCGCCGGTTGCCGCCAGTACTTCAACGCGACCCGTGACACCGTGACCTACGAAATTCTCGAAACCTACAAGATCGGTCAAAAGCCGCAATTCACCGACAAGGCTGACAGTCCGAAAGCGGCCGCGCAGGCTCTGGGAGAGAAGGTATGA	MLHIFCPHCGELRSEEEFHASGQAHIPRPLDPNACTDEEWGDYMFFRDNPRGLHHELWIHAAGCRQYFNATRDTVTYEILETYKIGQKPQFTDKADSPKAAAQALGEKV	PGPT0013520_185	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013520-soxD-K00304	NA	NA
D1-36_04720	1251	soxB		Sarcosine oxidase subunit beta	ATGCAACGCTATTCGGGCTTCGGCCTCTTCAAACACTCACTCAGCCACCATGAAAACTGGCAGCGGATGTGGCGCACGCCGACGCCGAAAAAGGTTTATGACGTGGTCATCGTCGGCGGTGGCGGGCATGGCCTGGCGACCGCCTACTACCTGGCCAAGGAGCACGGCATCACCAACGTGGCCGTGGTCGAGAAGGGCTGGCTGGGCGGCGGTAACACCGCGCGCAACACCACCATCGTGCGCTCCAACTACCTGTGGGACGAGTCGGCCCACCTGTACGAACATGCGATGAAACTCTGGGAAGGCCTGTCCCAGGACCTGAACTACAACGTCATGTTTTCCCAGCGTGGCGTCTACAACCTGTGCCATACCCTGCAGGACATCCGTGATTCCGAGCGTCGCGTCAGCGCCAACCGCCTCAACGGCGTGGACGGCGAGCTGCTCAACGCCAAGCAAGTGGCCGACGAAATCCCATACCTGGATTGCTCGAAAAACACCCGCTACCCGGTGATGGGCGCCACCGTCCAGCGTCGCGGCGGCGTGGCCCGTCACGATGCCGTGGCCTGGGGCTTTGCCCGGGCGGCGGACGCGTTGGGCGTGGACCTGATCCAGCAGACCGAAGTGATCGGTTTCCGCAAGGAAAACGGCGTGTGCATCGGCGTCGAAACCAACAAGGGCTTCATCGGCGCCAAGCGCGTCGGCGTGGTGACCGCCGGTAACTCCGGGCATATGGCCAAGCTCGCGGGCTTCCGCCTGCCGGTTGAGTCCCATCCATTGCAAGCGTTGGTATCGGAGCCGATCAAGCCGATCATCGACAGCGTGATCATGTCCAACGCCGTACACGGCTACATCAGCCAGTCCGACAAGGGCGACCTGGTGATCGGCGCCGGTATCGACGGCTACAACGGCTACGGCCAGCGTGGTTCGTACCCGGTGATCGAGCACACCATCCAGGCCATCGTCGAAATGTTCCCGGTGCTCTCGCGGGTGCGCATGAACCGCCAGTGGGGCGGCATCGTCGACACCACCCCGGACGCCTGCCCGATCATCTCCAAGACCCCGGTGCCGAACATGTTCTTCAACTGCGGTTGGGGCACCGGTGGTTTCAAGGCCACACCTGGCTCGGGCAACGTGTTTGCCGCAAGCCTGGCCAAGGGTGAAATGCACCCGCTGGCCGCGCCGTTTTCCATCGACCGTTTCCACAACGGCGCACTCATTGACGAACACGGCGCTGCTGCCGTCGCCCACTAA	MQRYSGFGLFKHSLSHHENWQRMWRTPTPKKVYDVVIVGGGGHGLATAYYLAKEHGITNVAVVEKGWLGGGNTARNTTIVRSNYLWDESAHLYEHAMKLWEGLSQDLNYNVMFSQRGVYNLCHTLQDIRDSERRVSANRLNGVDGELLNAKQVADEIPYLDCSKNTRYPVMGATVQRRGGVARHDAVAWGFARAADALGVDLIQQTEVIGFRKENGVCIGVETNKGFIGAKRVGVVTAGNSGHMAKLAGFRLPVESHPLQALVSEPIKPIIDSVIMSNAVHGYISQSDKGDLVIGAGIDGYNGYGQRGSYPVIEHTIQAIVEMFPVLSRVRMNRQWGGIVDTTPDACPIISKTPVPNMFFNCGWGTGGFKATPGSGNVFAASLAKGEMHPLAAPFSIDRFHNGALIDEHGAAAVAH	PGPT0013510_380	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013510-soxB_-K00303	NA	NA
D1-36_04721	1254	glyA_2	COG0112	Serine hydroxymethyltransferase	ATGTTCAGCAAGCAAGACCAAATCCAAGGCTACGATGATGCACTGCTGGCGGCGATGAATGCCGAGGAGCAACGCCAGGAAGACCACATCGAACTGATCGCGTCCGAGAACTACACCAGCAAGCGTGTGATGCAGGCCCAGGGCAGCGGCTTGACCAACAAATACGCCGAAGGCTATCCGGGCAAGCGCTACTACGGTGGCTGCGAGCACGTCGACAAGGTCGAGGCCCTGGCCATCGAGCGCGCCAAGCAGTTGTTCGGCGCCGATTACGCCAACGTCCAGCCCCACTCCGGTTCGTCGGCCAACAGCGCCGTCTACCTGGCCCTGCTGCAAGCCGGTGACACCATCCTGGGCATGAGCCTGGCCCACGGCGGTCACCTGACTCACGGTGCGAAAGTGTCGTCCTCAGGCAAACTCTACAACGCGGTGCAATACGGCATCGACACCACCACCGGCCTGATCGACTACGACGAAGTCGAGCGCCTGGCGGTCGAGTGCAAGCCGAAGATGATCGTTGCCGGTTTCTCTGCCTACTCCAAGACCCTGGATTTTCCACGCTTCCGCCAGATCGCCGACAAGGTCGGTGCGCTGCTGTTCGTCGACATGGCCCACGTCGCTGGCCTGGTTGCCGCCGGCCTGTACCCAAACCCACTGCCGTACGCCGACGTGGTCACCACCACCACCCACAAGACCCTGCGCGGTCCCCGTGGCGGTCTGATCCTGGCCAAGTCCAACGAAGAAATCGAGAAGAAGCTCAACGCCGCGGTATTCCCCGGCGCCCAGGGCGGCCCGCTGATGCACGTGATCGCCGGCAAGGCCGTGTGCTTCAAGGAGGCCCTGGAACCAGGTTTCAAGGCCTATCAACAGCAAGTGATCGAAAACGCCCAGGCCATGGCTGGCGTGTTCATCAAGCGTGGCTACGATGTGGTATCCGGCGGCACCGATAATCACCTGTTCCTGGTCAGCCTGATTCGCCAGGGCCTGACGGGCAAGGACGCCGACGCCGCCCTGGGCCGCGCCCACATCACCGTCAACAAGAACGCCGTGCCGAACGACCCGCAATCGCCGTTCGTGACCTCGGGCCTGCGTATCGGTACCCCGGCGGTGACCACGCGCGGTTTCAAGGTCAGCCAGTGCGTCACGCTGGCCGGTTGGATCTGCGACATCCTCGACAACCTCGGCGATGCCGATGTCGAGGCCAATGTCGCGCAGCAAGTGGCGGCCCTGTGCGCGGACTTCCCGGTTTATCGCTGA	MFSKQDQIQGYDDALLAAMNAEEQRQEDHIELIASENYTSKRVMQAQGSGLTNKYAEGYPGKRYYGGCEHVDKVEALAIERAKQLFGADYANVQPHSGSSANSAVYLALLQAGDTILGMSLAHGGHLTHGAKVSSSGKLYNAVQYGIDTTTGLIDYDEVERLAVECKPKMIVAGFSAYSKTLDFPRFRQIADKVGALLFVDMAHVAGLVAAGLYPNPLPYADVVTTTTHKTLRGPRGGLILAKSNEEIEKKLNAAVFPGAQGGPLMHVIAGKAVCFKEALEPGFKAYQQQVIENAQAMAGVFIKRGYDVVSGGTDNHLFLVSLIRQGLTGKDADAALGRAHITVNKNAVPNDPQSPFVTSGLRIGTPAVTTRGFKVSQCVTLAGWICDILDNLGDADVEANVAQQVAALCADFPVYR	PGPT0008090_5742	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008090-glyA-K00600	NA	NA
D1-36_04722	711			hypothetical protein	ATGAGTCGACGCGACGGCGCCCTGGACCTGCTCAAGTGGCTGGCACTGTTGTCGATGGTCCTCGATCATCTGCGATATGTCGGTTTTTCCGTCGATTGGCTGTATGTGCCGGGGAGGTTGGCGTTTCCGTGGTTCTGCCTGGCGATGGCGGCAAACCTGGCGCGCAGCGGCGGCGCCGCCGGCACCGATGCGTGGCGCTACCTGGGCTGGCTGTTGCTGTTCAGCGCCGTCAGCGAAATTCCCTACCGCTTGTTCATTCCCGCCCCCGCCACCTTGAATGTCATGCCTACGTTGGTGCTTGGGTTATTGGTAGCGCGTTGTTGGCAGACGCCCACCTTGGAAGCGCGATGCCTGGCCGCGATGGCGTTGCTGCTGGCGGCGCTGTTTTCGTCGCGGTTGATGTTTGGCTTCTATGGGGTGCTGCTGCCACTGGCGACATTGCTGGCGTTCAAGCGCTCGCTGTTTCTGGCCTTGCTGCCGGGACTGGTGTGCGTGGCGGCCAATCAATGGCGGGTGCTGTATGGCGCCGCGTGGCTGGGGGATGCGGTGGCGTTGTGGGGGTTGGTGGCTTGCCTGATCGCGCCAGGGCTGGGCCTGGTGCTTTTGCGACACGCGGGTCGTTTTCATCCGGTGCCGATGCGACGTTGGGCCTATCTGCTCTATCCCGCGCACTTTCTGCTGTTGCTCGCGGTTCGCCAAGCCTTTGCATAA	MSRRDGALDLLKWLALLSMVLDHLRYVGFSVDWLYVPGRLAFPWFCLAMAANLARSGGAAGTDAWRYLGWLLLFSAVSEIPYRLFIPAPATLNVMPTLVLGLLVARCWQTPTLEARCLAAMALLLAALFSSRLMFGFYGVLLPLATLLAFKRSLFLALLPGLVCVAANQWRVLYGAAWLGDAVALWGLVACLIAPGLGLVLLRHAGRFHPVPMRRWAYLLYPAHFLLLLAVRQAFA				NA	NA	NA	NA	NA
D1-36_04723	1041	ltaE_2		Low specificity L-threonine aldolase	ATGACCGACAAGAGTCAACAATTTGCCAGCGACAACTATTCCGGCATCTGCCCTGAAGCCTGGGCGGCCATGGAAGAAGCCAACCAGGGCCACCAGCGCGCCTACGGCGACGACGAGTGGACCCATCGCGCGGCGGATGATTTCCGTGCCTTGTTCGAAACCGACTGCGAAGTGTTCTTCGCGTTCAACGGCACGGCGGCCAACTCCTTGGCGCTGTCCTCACTGTGCCAGAGTTATCACAGCGTGATCTGCTCGGAAACCGCCCACGTCGAGACCGACGAATGTGGCGCGCCGGAATTCTTCTCCAACGGCTCCAAGCTGCTGGTGGCACGCACCGAGAACGGCAAGCTGACGCCCGACTCGATCCGCGAGGTCGCCCTCAAGCGCCAGGATATCCACTACCCCAAGCCGCGCGTCGTGACCCTGACCCAGGCCACGGAAGTGGGCAGTGTCTACACGCCGGAGGAAATCCGCGCCATCAGCGTCACCTGCAAGGAGCTGGGCCTGAACCTGCACATGGACGGCGCGCGATTCTCCAACGCCTGCGCCTTCCTCGGCTGCACCCCGGCCGACCTGACCTGGAAGGCCGGCGTGGACGTGTTGTGCTTCGGCGGGACGAAAAACGGCATGGCGGTGGGCGAAGCAATTCTGTTCTTCAACCACGACCTGGCCGAAGACTTCGACTACCGCTGCAAACAGGCCGGGCAACTGGCGTCGAAAATGCGCTTCCTGTCCGCGCCCTGGGTCGGCCTGCTGCAAAACGACGCCTGGCTCAAGCACGCCCGCCACGCCAACCGCTGCGCGCAATTGCTGGCGGAGCTGGTCAGCGACATCGAGGGCGTGGAACTGATGTTCCCGGTCCAGGCCAACGGGGTGTTCCTGCAACTCTCGGAGCCGGCTATCGCCGCGCTGACGGCCAAGGGCTGGCGCTTCTACACCTTCATCGGCAAGGGCGGCGCACGCTTCATGTGCTCGTGGGATACAGAAGAGGCGCGGGTGCGGGAATTGGCGGCGGATATTCGGGAAGTGATGGCCGCCTGA	MTDKSQQFASDNYSGICPEAWAAMEEANQGHQRAYGDDEWTHRAADDFRALFETDCEVFFAFNGTAANSLALSSLCQSYHSVICSETAHVETDECGAPEFFSNGSKLLVARTENGKLTPDSIREVALKRQDIHYPKPRVVTLTQATEVGSVYTPEEIRAISVTCKELGLNLHMDGARFSNACAFLGCTPADLTWKAGVDVLCFGGTKNGMAVGEAILFFNHDLAEDFDYRCKQAGQLASKMRFLSAPWVGLLQNDAWLKHARHANRCAQLLAELVSDIEGVELMFPVQANGVFLQLSEPAIAALTAKGWRFYTFIGKGGARFMCSWDTEEARVRELAADIREVMAA	PGPT0020465_1946	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020465-ltaE-K01620	NA	NA
D1-36_04724	1101	hcr	COG1018	NADH oxidoreductase HCR	ATGTCCAATAATTTCCTGAACCCGGTCACCACCCAGACCTGGGCCAATGGCCGACATATCGTTCGTTGCGTCAAAGTCATCCAGGAAACCTGGGATGTGCGCACATTCTGTTTCATGGCCGACCAGCCGATCATGTTCTTTTTCAAGCCCGGGCAATTTGTCACCCTGGAGCTGGAAATCGAAGGCCAGCCGATCATGCGTTCCTACACCATTTCCAGTTCGCCGTCGGTGCCCTACAGCTTCTCGGTGACCATCAAGCGCGTGCCGGGGGGCAAGGTTTCCAACTGGCTGCACGATACGCTGCACGAGGGCCAGGAACTGGCGGTGCACGGGCCGGTGGGGCTGTTCAACGCCATCGATTTCCCGAGTCCGAAAGTGCTTTACCTCAGCGGTGGCGTGGGAATTACGCCGTGCATGTCCATGGCGCGTTGGTTCTACGATACCAACGCCAACGTCGACATGACCTTCGTCCACAGCGCTCGCTCGCCCAAGGACATCATCTACCACCGCGAGCTGGAGCACATGGCGTCGCGGATCGACAACTTCAGCTTGCACCTGATCTGCGAAAAACATGGCCTGGGCGAGCCGTGGGCCGGGTACCGCGGATACTTGAATCACAAGATGCTGGAATTGATGGTGCCCGATTTCCTCGAGCGCGAAGTGTTCTGCTGCGGCCCGACGCCGTACATGAGTGCGGTCAAGCGCCTGCTGGAAGCCGCCGGCTATGACATGAAGCGTTATCACGAGGAATCCTTTGGCGCCACGCCACCGGAAGCCCGCGCCGATGCGGTGGAACAGGCCGAACAGGCCGCTGACGCACCGGAAGTTGACCAGGCGGACCTGCACCAGGTGGAATTCGTCGCCTCCGGCAAGAGCATCGGCGTAGCACCGGGCGAAACCGTCCACGCGGCCGCCGCCAAGCTCGGCCTGATGATCCCCAAGGCTTGTGGCATGGGCATCTGCGGCACTTGCAAGGTGTTGAAGCTGGGCGGGGAAGTGGAGATGGAGCACAACGGCGGGATCACCGAGGACGACGAGGCCGAGGGTTATATCCTGTCGTGCTGCAGCGTGCCGAAGGGGGATGTGCGGATCGAGTTTTAA	MSNNFLNPVTTQTWANGRHIVRCVKVIQETWDVRTFCFMADQPIMFFFKPGQFVTLELEIEGQPIMRSYTISSSPSVPYSFSVTIKRVPGGKVSNWLHDTLHEGQELAVHGPVGLFNAIDFPSPKVLYLSGGVGITPCMSMARWFYDTNANVDMTFVHSARSPKDIIYHRELEHMASRIDNFSLHLICEKHGLGEPWAGYRGYLNHKMLELMVPDFLEREVFCCGPTPYMSAVKRLLEAAGYDMKRYHEESFGATPPEARADAVEQAEQAADAPEVDQADLHQVEFVASGKSIGVAPGETVHAAAAKLGLMIPKACGMGICGTCKVLKLGGEVEMEHNGGITEDDEAEGYILSCCSVPKGDVRIEF	PGPT0013685_414	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013685-gbcB-K21832	NA	NA
D1-36_04725	1296			Carnitine monooxygenase oxygenase subunit	ATGGACGTCACCACCACCCTGAGCCTGGGCGATCCGCTGGAACCCGCACGCAAGGCCACCGCGCAGATGCTGCAAGAGCGCGAGCGCACCTTTTCGCTGCCGCAGCCGTTCTACTCCGATGAGCGCCTGTTCGATATCGACATGCAGGAAATTTTCCAGAAGGAATGGTTGATCGCCGGCATGACCTGCGAAATCCCGGCCAAGGGCAACTACCTGACGCTGCAGATCGGCAAGAACCCGATCATTGTGATTCGCGGCGCCGAGGGCGTGGTGCATGCCTTCCATAACGTCTGCCGCCACCGTGGTTCGCGGCTGTGCACCAGCGACAAGGGCAAGGTCGCCAAACTGGTCTGCCATTACCACCAGTGGACCTACGAACTGGACGGTCGCCTGCTGTTCGCCGGCACCGAGATGGGTGCCGACTTCGACATGAAGCAGTACGGCCTCAAGCCGGTGAACGTGAAGACCGCCGGCGGCTACATCTTCATCAGCCTGGCCGAGAACCCACCGGCCATCGATGATTTCCTGTCGACCCTGAACCACTACATGGAACCCTACGACATGGAGAACACCAAGGTGGCGGTGCAAACCACCTTGATGGAAAAGGCCAACTGGAAACTGGTGCTGGAGAACAACCGCGAGTGCTACCACTGCAACGCCTCGCACCCTGAACTGCTAAAAACCTTGCTGGAATGGGACGACGTCACCGACCCACGCGCCGACCAGGCGTTCAAGGACCACGTGGCCGCTTCCGCCGCCGCCTGGGAAGCCGAGAAGATCCCTTACGCCCACGCCAGCTTCGGCCTGCGCAACCGCATCGTGCGCATGCCGCTGCTCAAGGGCACCGTGTCGATGACCATGGACGGCAAGCAGGGCTGCGCCAAGCTGATGGGCCGCATCAAGAACCCGGACCTGGGCTCGATGCGCATCCTGCACCTGCCGCACTCGTGGAACCACTGCATGGGCGACCACATCATCGTGTTCACCGTGTGGCCGATCAGCGCCCAGGAAACCATGGTCACCACCAAGTGGCTGGTGCACAAGGACGCGGTCGAAGGCGTCGACTACGACGTAGAGCGCATGCGCCAGGTCTGGGACGCCACCAACGACCAGGACCGTCGCCTGGCCGAGGAAAACCAGCGCGGCATCAACTCCACCGCCTACCAGCCGGGCCCGTACTCCAAGACCTATGAGTTCGGCGTGGTGAATTTCGTGGATTGGTACAGCGAGCGCTTGCTCAACAACCTGGGGGCTGAACCTGCGCCGTACCTCAAGGGCGTTCCGGTCCAGGGCTAA	MDVTTTLSLGDPLEPARKATAQMLQERERTFSLPQPFYSDERLFDIDMQEIFQKEWLIAGMTCEIPAKGNYLTLQIGKNPIIVIRGAEGVVHAFHNVCRHRGSRLCTSDKGKVAKLVCHYHQWTYELDGRLLFAGTEMGADFDMKQYGLKPVNVKTAGGYIFISLAENPPAIDDFLSTLNHYMEPYDMENTKVAVQTTLMEKANWKLVLENNRECYHCNASHPELLKTLLEWDDVTDPRADQAFKDHVAASAAAWEAEKIPYAHASFGLRNRIVRMPLLKGTVSMTMDGKQGCAKLMGRIKNPDLGSMRILHLPHSWNHCMGDHIIVFTVWPISAQETMVTTKWLVHKDAVEGVDYDVERMRQVWDATNDQDRRLAEENQRGINSTAYQPGPYSKTYEFGVVNFVDWYSERLLNNLGAEPAPYLKGVPVQG	PGPT0013680_89	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013680-gbcA-K00479	NA	NA
D1-36_04726	1245			hypothetical protein	ATGTCATTACTGCATCATTGGGAACATGAGTTCGACAAGGTCAAGGTCCGCCTGCATGGGTTGGTCACGCGGCTGGAAATGTCCTGGAAAAAACTCGTCAACGATCTTGAACCGGAGGAATTCCAGGCCATCGTCAAGCTGCTGCAGCGAGGCCATGACCAGGCCCGGCACGTCATCGATCACGGCGATCTGCCGGACGATGAGCCGGCCGTGCCCTGGGAGCTCGCTCATGGCTTGTCGATCCTGAAGATCGGCAACGCCAGCGCCTTGCCGCAAAGTGAAGACGAACTGCGCACCCGAGTACTCAAGGACGGCACCTTGCTGGGGTGCCGCAAATGGGAATTGCTGGACCTGCTGTGGAGCGAGGCGCTGCTCAAATGGATTGAAAACCTGCGCCACCACGCGACGTTCGCCACCACCCCGGCGCTGGTGAAAATGGACAACGACGTGGTGCTCGCCATCGCAGGCGACTGGGGCACCGGGCCGTTCGACAGTCACGCACCCGCGGTGGCCGTCGCCAACCAGATGCAACTGGCCCAGGCTGACTTCACCATCCACCTGGGCGATGTCTACTACGCCGGCACGCATTCCCAGGAAGATGTCGACATGGCCGGGTGGCCGCAGGGCAAGCATGGGTCGTTCACCCTCAACTCCAACCATGAGATGTACAGCGGCGCCCATGGCTACTTCAAGGAGCTGGCGTCGCGTTTTCCGGTGCAACAGGGCACCAGTTATTTCGCCTTGTACAACGACGACTGGCTGGTGGTCGGGCTCGACAGTGCCTACGCTTCGGACGCAATGAACCTGTACATGGACGGCACCCTCAACACCCAGCAGATCGAGTGGATGAAAACCCTGCCCAAGCGCAAGAAGCTCATGGTGCTCAGTCATCACCAAGGCTTCGACATTTCAGGGCACAACAAGACCGCGCTTTATCAACCGGTCTGCGACGCCCTGGGGCGCGAGCCGGATTATTGGTATTGGGGCCATTTGCACAATGGCATCTGTTACGCACCCCAAGGTGGGCTGCATGCGCGCTGCGCCGGGCACGGGGCGATTCCCTATGGCACCACCAGCGAGTTGAACGGGCATGCCCGGGTGTTATGGTCGGAAACTGAACTGGCGGGGGACGAGACGTATCCGGAGCGGGTGTTGAATGGGTATGTGAAGGTTCAGCTGAGGGGGGAGGAGATTGTCGAGACGTTTTATGGGGAGGATGGCAGTGTGCGGTGGTCTTCCAGGTAG	MSLLHHWEHEFDKVKVRLHGLVTRLEMSWKKLVNDLEPEEFQAIVKLLQRGHDQARHVIDHGDLPDDEPAVPWELAHGLSILKIGNASALPQSEDELRTRVLKDGTLLGCRKWELLDLLWSEALLKWIENLRHHATFATTPALVKMDNDVVLAIAGDWGTGPFDSHAPAVAVANQMQLAQADFTIHLGDVYYAGTHSQEDVDMAGWPQGKHGSFTLNSNHEMYSGAHGYFKELASRFPVQQGTSYFALYNDDWLVVGLDSAYASDAMNLYMDGTLNTQQIEWMKTLPKRKKLMVLSHHQGFDISGHNKTALYQPVCDALGREPDYWYWGHLHNGICYAPQGGLHARCAGHGAIPYGTTSELNGHARVLWSETELAGDETYPERVLNGYVKVQLRGEEIVETFYGEDGSVRWSSR				NA	NA	NA	NA	NA
D1-36_04727	1869			hypothetical protein	ATGAACGCTCACATCCGCTGGTTCCAACGCATCATCTGGATCGGCATCGTCATGAACATGGTCTTCGCGATCCCGGCGCTGTTCGCGCCGGCGTTGCTGACGTCCATGCTTGGCCTGCCGCCCGTGCTGTCCGATCCCTGGTTGGAGAACACCGGCATGTTGCTGGTGGGGATCAGCCTGTTCTACATGCCTTCGGGCTTCAACGCGCCGCGTTTCGTGGTGCATTCGTGGTTGTGCGTGCTGTCGCGGCTGGTGGCGGTGGTGTTCTGGATCTACCTGATCAACACCAACAACCAGGGCTCGTTGTTCGTGCCGATGTTGATGGGCGACCTGAGCATGTTCCTGATCCTGGGCGTGCTGCTTTACCTGGGCAGCCCGGTGGCCAACCGTCCGCTGGCCTTGCTCCAGGCCGGTTGGCGCGAGTGGCGCGCCGGCTGGGCGCTGCGCTGGCAGAGCCACGCGTTCAGGGTCGGCACGTTGGTGGTGGTCTTGTTGTTGGGTTTCATCGGCTACCAGACCTGGTACCAGATGATCCGGGAGGTGCCGCAACCGGACTTTGCATCCGATGAAGATCACTACAAATACGCCGCCATCGGCCTGGGCATCGAGGCGCGGATTCCCTATTACCTGTTCGCCGTGCTGCCGCAGATGTGTCCGGAAAAAATGCCCAAGCCAGGCGGCTACGAGGTGTTCGGTTTTCTCTATGAAAATGGCAACGACCTGCCCATCGGCATGGCCAAGCGGCAGCTCGGCTACCCCACCGTGGAGCCGAACTGCGCCCTGTGCCATACCGGTTCGTATCGGGCCAATGCCTCCGATGTCGCGGTGCCCGTCGCCGCCGCGCCGGCCAATACCCTGCAACTGCAAGCCTTCCAATGGTTCGCCTACGAGTGTGCCAGCGACCCGAAATTCACCCCCGACGCCGTCATGGCGGCGATCAACGGCAAGTTCCAGCTGGGCTTTTTCGAAAAGCTCTACAACCGCTACCTGATCATCCCAATGGCAAAAAGCGCGTTGCTCAAGCAGAAGCAGGCCTATGCCTGGCAGAAGCTGCGTCCGGCCCAGGGGCCAGGGCGGACCGACACCTTCAACCCGACCAAGATGGTGGTCTTTGGCTTCCCGGATGACTCCACCATCGGCACCGTGGACTTGCCCCAGGTGTGGAACCAGAAACCTCGCGAGTCCATGTACCTGCACTGGGACGGCAATAACAACAAGATCCACGAACGCAACTACGCCGCCGCCATGGCCGTGGGCGCGACGCCGGGATCGGTACTGCCGCCTAGTTTCAACCGCGTGACCAACTGGCTGCTTGGCCACAAGGCGCCGGCGTGGCCGTTCGCCCTGGACCAAGGGAAAGTTGCCCAGGGCAAGCCGATCTGGGATCAAAACTGCGCCGGTTGCCACGATTTCGGGCGCAGCGATACCGGGCAAGTCACCACCAATATCGACCAGTTGGGCACCGATCCCCATCGCCTGAACTCCTTTACCACCGGCCTGGTGAGCGCGTTCCACGGCTTCAAGAAACCACCGTTCGACTTTGGCGCCTACCGCAAGACCCAGAGCTACAGCAACACGCCCACCGACGGCATCTGGTTGCGTGCGCCGTACCTGCACAACGGTTCGGTGCCGACCTTGTGGGATTTGCTGCAAGCGCCGGAGCAGCGTCCGCAGGTCTTTTACACCGGCTCCGATATCTACGATCCGCAGAAGGTCGGCTTCATCACCAGCGGCGCGCAGATGAAGGCGTCGGCTGACTTCAAATACGACACCCGCCTGGAAGGCAATCACAACGGCGGTCACCTGTATGGCACGCAACTGTCGGACGTCGACAAGCGGGCCCTGATCGAATTCATGAAGACCCTGTAG	MNAHIRWFQRIIWIGIVMNMVFAIPALFAPALLTSMLGLPPVLSDPWLENTGMLLVGISLFYMPSGFNAPRFVVHSWLCVLSRLVAVVFWIYLINTNNQGSLFVPMLMGDLSMFLILGVLLYLGSPVANRPLALLQAGWREWRAGWALRWQSHAFRVGTLVVVLLLGFIGYQTWYQMIREVPQPDFASDEDHYKYAAIGLGIEARIPYYLFAVLPQMCPEKMPKPGGYEVFGFLYENGNDLPIGMAKRQLGYPTVEPNCALCHTGSYRANASDVAVPVAAAPANTLQLQAFQWFAYECASDPKFTPDAVMAAINGKFQLGFFEKLYNRYLIIPMAKSALLKQKQAYAWQKLRPAQGPGRTDTFNPTKMVVFGFPDDSTIGTVDLPQVWNQKPRESMYLHWDGNNNKIHERNYAAAMAVGATPGSVLPPSFNRVTNWLLGHKAPAWPFALDQGKVAQGKPIWDQNCAGCHDFGRSDTGQVTTNIDQLGTDPHRLNSFTTGLVSAFHGFKKPPFDFGAYRKTQSYSNTPTDGIWLRAPYLHNGSVPTLWDLLQAPEQRPQVFYTGSDIYDPQKVGFITSGAQMKASADFKYDTRLEGNHNGGHLYGTQLSDVDKRALIEFMKTL				NA	NA	NA	NA	NA
D1-36_04728	3453			hypothetical protein	ATGACACGGATCTCGACCCCCATCAGTGAAATCAAGGAGCACTACGACGTTATCGTCATTGGTTCCGGCTACGGCGGCGGTATCGCCGCGTCACGCTTGTCCCGGGCCGGGCGCAAGGTCTGTCTGCTGGAGCGCGGCCGGGAGATCCAGCCCGGCGAGTATCCCAATACCTTGCTCGCCGCCACCGAAGAATTGCAGGTGCATGACCCGGACGGCCACATCGGTTCGCGCACCGGGTTGTTCGACCTGCACGTCAACGCCCAGCAGAACGTCGTGGTCGGGTGTGGCCTGGGCGGTACCTCGCTGATCAACGCCAACGTAGCGCTGGAAGCCGAGCCCGGTGTCTTCGAGGACCCGCGCTGGCCCCTGGCGATGCGCGAGCACAGCGATACGTTGCTCAAGGACGGCTACGCCCGGGCCCGTGAAATGCTCAAGCCCAACCCTTATCCGGCGTCCTCGCCGAACCTGCCCAAGCTCGACGCCCACAAGAAGTCGGCGGACTACCTCAAGCAAGGCGCCCACTTCTACAAACCGCCGATCAACGTCACCTTCGACAAGCTGCCCAACAATCTCAATCACGTCGGCGTTGAGCAACTGCCGTGCAATGGCTGTGGCGACTGCGTCTCGGGCTGTAACAACAAGGCCAAGAACACCACGCTGATGAACTACCTGCCGGATGCCTGGAACCATGGCGCGGAGATTTTCTGCCAGGCCGAGGTGCGTCACCTGGAGCGCGAGGGTGACGGCTGGATCGTGCATTTCCAATACCTGGACAGCGGTCGCGAAATGTTTTCGGCGCCGACGCTCTTTGTGCGCGCGGACATCGTGGTGGTGTCCGCCGGCACCCTGGGTTCCACCGAAATCATGCTGCGCTCGCGGGACAAGGGCCTGTCGATGTCCGCCCAGTTGGGCGAAAACATGAGCGGCAACGGTGACATCCTCGGTTTCGGCCACAACTGCGATCAAGTGATCAACGGCATCGGCTTTGGTGCCCATTCGGCCAAGGAACTCGAGCCGGTGGGGCCATGCATTACGTCGGTCATCGACATGCGCACCGAGGGCGACTGGCGCAGCCGCATGGTGATCGAGGAAGGCTCGATCCCCGGCGCCCTCGGCCGAGCCATGGTGCCAAGCATGGCGGCGTTCGCCGAAACGATCGGCGTGCCCACCGACACCGGCTTCGGTGCCAGCCTCAAGTACAAGGGCCGCGAGGCCGAGAGTTTCCTGCGTGGGCCGTATTACGGCGCGCTGCACAACATGCAGACCTATTTGATCATGAGCCATGACAACGGCAAGGGCCGCATGGTGCTCGATAACAAGGACCAACTGCGCATCGACTGGCCCGGTGTCGGCGAGCAGGAAAACGTCACGCTTGGCAACGAGCGCCTGCACCAGAGCACCAAGGCCCTGGGCGGGATCTGGGTCGAGAATCCGATCTGGACCAAGTTGCTCAAGCACAGCATCGTTTCGGTTCATCCACTGGGCGGTTGCGTGATGGGCGAGGACGCGGTCCAGGGCGTGGTCAACCACAAGGGCCAGGTGTTCAGCGGCGCCAGCGGCACCGACGTCTACCCGGGCCTGTATGTGACGGACGGCTCGGTGATTCCGACCTCACTGGCGGTCAATCCCTTGCTGACGATTTCAGCAGTGAGTGAGCGCAACATGGGGCTGCTGGCGGCTGATCGCGGCTGGCTGATCGATTACACGCTACCGTCGGCGCCGCGCAAACCGGTGGCGGCGCCAACCCTCGGCGTGCAGTTCACCGAAACCATGAAGGGCTTCTTCTCCACGGCGTTCACCCAGCCCCAAGGCACCGACCTCAGCCTTTACGAAGTGGCGGCCAAGCGCGGCCAGGCGGACAACTCACCCATCGAGTTCACCCTGACCATCACCGCCGCCGACCTCAATCGCCTGATCAAGGAGCCGGAGCACGCCGCGACGCTGGTGGGCACCCTCGATGCGCCGCTGCTGTCGCCCAAGCCCCTGGTTGCCAGCAATGGCGTATTCAACCTGTTCGAGCAATACCAGGAACAGGTCGGCGTGCGGCACATGAACTACGACATGAAGCTGACCGCCGAAGACGGCAGCGATTATTACTTCAGCGCCTTCAAGACCGTGCCCGAGGACAACGGCGTGCTGAACATCTGGCACGACACCAGCACGCTATACGTCACGCTTTATCGCGGGCCGGACAAGACCGGCGCGGTGCTCGGCTCCGGCGTCATGCACATTCTGCCGGCCGACTTCGCCAAGCAGATGACCACCATGAAAGTGCTCAACGCCCGCAATGAGCGCGAGCGCGTGGAGGCGTTGGCGCGGTTCGGCAAGTTCTTCGCGGGTATCTTGTGGGAAAGCTACGGCGGCGTCTTCGCCGGCGACGTCTACTTCAACCCGGACGCGCCGCCACGCTTGAAACGCCCCTTGGATGCGCCGGCCCCGGTGGTGCATTTCTTCCAGACCGAAGATAACGTCGAGCTTCGCCTGACCCGCTACCAAGCTGGCAGCAAAGGCCCCGTGATGTTGGTGCATGGCCTGGGCGTGGGCTCGAATATCTTCTCCACCGACACCATCCACACCAACCTGCTGGAGTACCTGTGCAAGCACGAATATGACGTCTGGCTACTGGACCTGCGCGTCAGCATCCTGCTGCCGGCCAGCAAGCATGAATGGAATGGCGACCAGGTGGCCCAGTACGACTTCAAGGCGGCCATCGAGCAGATCCAGCAGGCAACCCTGGCCCGCGACGTGCAATGCGTGGTGCATTGCTATGGCGCGACGACCTTCTTCATGTCGATGCTCGCCGGGTTGCAGGGCGTGCGTTCGGTGGTTTGCTCGCAGATCGCGGCCGACACGGTGGTCGCCACCGCCACGGGGCTCAAGGCCGGTCTGCACCTGCCGGGAGTGCTCGATGCCATCGGCATCAAATCCATGACGGCCTACGCCGACACCAAGGAAAGCTGGTTCAACAAACTCTACGACAAGGCCCTCAATGGCTATGCCCGGATCGAGGCTCAGGGTTATTGCACCAACCCGGTCTGCCATCGCATCACGTTCATGTACGCCTCGCTGTACCGCCATGACACCCTCAACGAAACCCTGCACGACAACCTGCACGAGTTGTTCGGCGAGTCGAACATCCAGACCTTCGAGCATCTGGCGTTGATCGTGCGCAAGGGGCATCTGGTGGACTTCAAGGGCAACGACGTCTACATGCCGCATTTCGATCGGTTGAGTTTGCCGATCTGCTTCATCAGCGGTGCCGACAACCAGTGCTACCTGCCGCAAAGCACCCTCAAGACCTACGAGCGGCTGTGCGACATGCATGGCCCGCAACTGTTCAGCCGCCACGAGATACCCGGCTACGGTCACATCGACTGCATGTTCGGCAAGGATGCGGTGGTGGATGTGTATCCGATCATTCTTGAGCACCTGGAGAAAACGGCGCTGGGCTAG	MTRISTPISEIKEHYDVIVIGSGYGGGIAASRLSRAGRKVCLLERGREIQPGEYPNTLLAATEELQVHDPDGHIGSRTGLFDLHVNAQQNVVVGCGLGGTSLINANVALEAEPGVFEDPRWPLAMREHSDTLLKDGYARAREMLKPNPYPASSPNLPKLDAHKKSADYLKQGAHFYKPPINVTFDKLPNNLNHVGVEQLPCNGCGDCVSGCNNKAKNTTLMNYLPDAWNHGAEIFCQAEVRHLEREGDGWIVHFQYLDSGREMFSAPTLFVRADIVVVSAGTLGSTEIMLRSRDKGLSMSAQLGENMSGNGDILGFGHNCDQVINGIGFGAHSAKELEPVGPCITSVIDMRTEGDWRSRMVIEEGSIPGALGRAMVPSMAAFAETIGVPTDTGFGASLKYKGREAESFLRGPYYGALHNMQTYLIMSHDNGKGRMVLDNKDQLRIDWPGVGEQENVTLGNERLHQSTKALGGIWVENPIWTKLLKHSIVSVHPLGGCVMGEDAVQGVVNHKGQVFSGASGTDVYPGLYVTDGSVIPTSLAVNPLLTISAVSERNMGLLAADRGWLIDYTLPSAPRKPVAAPTLGVQFTETMKGFFSTAFTQPQGTDLSLYEVAAKRGQADNSPIEFTLTITAADLNRLIKEPEHAATLVGTLDAPLLSPKPLVASNGVFNLFEQYQEQVGVRHMNYDMKLTAEDGSDYYFSAFKTVPEDNGVLNIWHDTSTLYVTLYRGPDKTGAVLGSGVMHILPADFAKQMTTMKVLNARNERERVEALARFGKFFAGILWESYGGVFAGDVYFNPDAPPRLKRPLDAPAPVVHFFQTEDNVELRLTRYQAGSKGPVMLVHGLGVGSNIFSTDTIHTNLLEYLCKHEYDVWLLDLRVSILLPASKHEWNGDQVAQYDFKAAIEQIQQATLARDVQCVVHCYGATTFFMSMLAGLQGVRSVVCSQIAADTVVATATGLKAGLHLPGVLDAIGIKSMTAYADTKESWFNKLYDKALNGYARIEAQGYCTNPVCHRITFMYASLYRHDTLNETLHDNLHELFGESNIQTFEHLALIVRKGHLVDFKGNDVYMPHFDRLSLPICFISGADNQCYLPQSTLKTYERLCDMHGPQLFSRHEIPGYGHIDCMFGKDAVVDVYPIILEHLEKTALG	PGPT0006645_39	DIRECT EFFECT	BIO-REMEDIATION	XENOBIOTICS_BIODEGRADATION	XENOBIOTIC_STEROID|DERIVATE_DEGRADATION	XENOBIOTIC_CHOLESTEROL_DEGRADATION_,PGPT0006645-choD-K03333	NA	NA
D1-36_04729	771			hypothetical protein	ATGAGTACCCAAGTGATCAGCCTTGTCTCCATCGGCGCCCACCCGACCTCCGGTCGGCCACGGCGCGCCGAGCAAGACGCCCGTGCCGTGGAACTGGGCCTGCAGCTGGCCGGCAACGACCTGCAAGTGCTGCATGCCGGGGATGTGGCGGAACCGGCGTTGCGCGCTTATCTGGGCATGGGGCTGGATGAACTTCACGTCCTGGAAAACCCCGTCGGAGCCGACGCGCTGCCGGCCCTCACCGACTATCTGCGTGACGCCGGCGCCCAGGTGGTGCTGACCGGCAGCCAGGCGGAAACCGGCGAAGGTTCGGGCATGCTTCCATTTTTGCTGGCGGAGAGCCTCGGTTGGCCGCTGGTGGTGGGGCTGGCCCAGGTCGAATCCATCGAAAACGGCGCGGCCCTGGTGTTGCAAGCCTTGCCCCGTGGTCAGCGGCGGCGGCTCAAGGTGCGCTTGCCATTTCTCGCCACTGTGGATAACGCCGCGCCAAAACCTCGGCAAAGCGCCTACGGCCCGGCGCGGCGTGGGGCGTTGCATGCTGAGGAGGTCGAGGTCATTGACGATACGTTGTTGGCCGTGGCGACCCTGCAACCGGCCAAGCCAAGACCCAAGCGCCTGAAAGTGATCAAGGCCAAGAGCGGCGCCGATCGCATGAAAGCCGCCACGGCCAAGGCCAGCGGCGGGGGCGGGCAGGTGCTCAAGGGCGTGAGCCCGGAGGCAGGGGCAGAGGCAATTCTCAAATTGTTGGTAGAGGAAGGGGTGGTTCGTTAA	MSTQVISLVSIGAHPTSGRPRRAEQDARAVELGLQLAGNDLQVLHAGDVAEPALRAYLGMGLDELHVLENPVGADALPALTDYLRDAGAQVVLTGSQAETGEGSGMLPFLLAESLGWPLVVGLAQVESIENGAALVLQALPRGQRRRLKVRLPFLATVDNAAPKPRQSAYGPARRGALHAEEVEVIDDTLLAVATLQPAKPRPKRLKVIKAKSGADRMKAATAKASGGGGQVLKGVSPEAGAEAILKLLVEEGVVR	PGPT0001035_2268	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-REGULATION	NITROGEN_REGULATING_FUNCTIONS,PGPT0001035-fixA|etfB-K03521	NA	NA
D1-36_04730	1221	fixB		Protein FixB	ATGAGCGACATCATCCGCCGCGACCCTCGCGCCGAGTGGATTGCCCGCAACCGCCTGCACCCGTTGCACACGGCCATGCAACCGGTGCAGCACAGCTGGATGGGGCCCAACGGCGTCATTCGCAAGAACGTCCATGGCGTCGGTTTCATCGGCCCCAACGGCATTAAGCGCATCGACCGCAGCGGTGCCCAGCAGGGCGGTGCAACCAAGCGCACTGCCGCGACGCAAGTGCAATTGCCACTGCATCAAATCGTGCAACCGGCGTTCTATATCAGCGTTGTGCCGGATATGGTCGGCGGCCGCCTCAGCAGCCACGACCGCGATTTGCTGGGCCTGGCCCATCAGCTGGCCGGCAGTGACGGGGCGGTGCTGGCCGTGGTTTTCGGCGAACACAAGGAGAACACCTTCGCCACGGCGGGCGTGGACCGCTTGCTGGTGCTCGATGGCGAGGAATTCAGCGGTTATGCACCGGAGCAGCGGGTGCAAGGGTTACGGGCTGTGGATAACCAATTCAACCCACGCCACTGGCTGCTGCCCGACAGCCGCAGCGGTGGTGGCGAACTGGGTCGGCGCTTTGCCGCGGCCTTGGGCGAGCGCCCGGCCACGCGGGTCTGGCAGGTTAAGGACGAGGCCTGCGTCGGCCGCGCCGGTGCAGGGCTGCAAGACCTCGCTCGGCCATTGGCGCGGTTGATCCTGGCCGCCGCCGAATGCGCCGAGCCGGTCAGCGAAACCCGTCACGAAGCCCTGCCGGTGGAGTTATCCACAAGCGTGGCGCGCAGCCTGTCGCGCATTGAAGACCTCGGCGCGGTGGCGGTTGACCCGGGTGCGATTCCGATGGCCGAGGCCGAGTTCATTTTCTCCGGCGGCAACGGCGTCAAGGACTGGGCGCTTTTCCACAGGACAGCGGCGGCCTTGGGCGCGACCGAGGGTGCCTCGCGGGTAGCGGTGGACGACGGTTTCATGGCCCGGGATCGCCAGGTCGGTGCGTCCGGCACCTGGGTCACGGCGAGGGTCTACGTGGCCGTCGGGATTTCTGGGGCGATCCAGCACCTGCAAGGCATCGGCGCCTGCGACAAGGTGGTGGCGATCAACCTCGATCCGGGCTGCGACATGATCAAACGGGCGGACCTGTCGGTGATCGGTGACAGCGCGGCGATTCTCCAGGCCCTGATCGCGGCGGTAGAGGCTTACCGCAACGAAGCCAGGCGCGATGCGGCTTAA	MSDIIRRDPRAEWIARNRLHPLHTAMQPVQHSWMGPNGVIRKNVHGVGFIGPNGIKRIDRSGAQQGGATKRTAATQVQLPLHQIVQPAFYISVVPDMVGGRLSSHDRDLLGLAHQLAGSDGAVLAVVFGEHKENTFATAGVDRLLVLDGEEFSGYAPEQRVQGLRAVDNQFNPRHWLLPDSRSGGGELGRRFAAALGERPATRVWQVKDEACVGRAGAGLQDLARPLARLILAAAECAEPVSETRHEALPVELSTSVARSLSRIEDLGAVAVDPGAIPMAEAEFIFSGGNGVKDWALFHRTAAALGATEGASRVAVDDGFMARDRQVGASGTWVTARVYVAVGISGAIQHLQGIGACDKVVAINLDPGCDMIKRADLSVIGDSAAILQALIAAVEAYRNEARRDAA	PGPT0001040_276	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-REGULATION	NITROGEN_REGULATING_FUNCTIONS,PGPT0001040-fixB|etfA-K03522	NA	NA
D1-36_04731	1950			hypothetical protein	ATGTTGAACACCCTTCTTCCAATCCTGCTGTTCGCAGCCCTGGGCCTCGCTGCCCTCGGCGCCTTGCGGCGGGTGAACATGTGGCGCCGGGGACGACCGGCCAAGGTCGATCTGATCGGCGGACTTTTTGCCATGCCCAAACGCTACATGGTGGATCTGCACCATGTGGTGGCGCGGGACAAATACATTGCCAACACCCACGTCGCCACGGCGGGTGGTGCGGTGGCGTCGATTGTGTTGGCGATCCTGGTCCACGGTTTTGGCCTGCACAACCGCATCCTCGGCTACGCCTTGCTGCTGATGTCGGCGGTGATGTTCGTGGGCGCGATCTTCATGTACCTGCGTCGGCGCAACCCGCCGGCGCGCTTGTCGAAAGGCCCGTGGATGCGCCTGCCGAAAAGCCTGCTGGCCTTCTCGGTGTCGTTCTTTTTGGTGACGCTGCCGGTGGCGGGCATCCTTCCGGAAAACTTTGGCGGCTGGCTGGTGGCGGCGATCCTCGGTGTCGGCGTGTTGTGGGGCGTGTCGGAATTGTTCTTCGGCATGACCTGGGGTGGGCCGATGAAACACGCCTTCGCCGGTGCCCTGCACCTGGCCTGGCACCGCCGCGCCGAGCGCTTCGGTGGCGGCCGTTCCACCGGTCTCAAACCGTTGGACCTGAACGATCCTGCCGCACCGCTGGGCGTGGAAAAACCCAAGGACTTCACTTGGAACCAACTGCTGGGCTTTGACGCATGCGTGCAGTGCGGCAAGTGCGAAGCGGCTTGCCCGGCGTTCGCCGCCGGCCAGCCGTTGAACCCGAAGAAACTCATCCAGGACATGGTCGTCGGCCTGGCCGGCGGCACCGATGCGAAATTCGCCGGCAGCCCTTATCCAGGCAAACCGGTGGGTGAGCACGGCGGCAATCCACATCAGCCGATCGTCAACGGCCTGGTGGACGCCGAGACCCTGTGGTCCTGCACTACCTGCCGGGCTTGCGTCGAGGAATGCCCGATGATGATCGAGCACGTCGATGCCATCGTCGACATGCGCCGTCACCTGACCCTGGAAAAAGGCGCGACGCCGAACAAGGGCGCCGAAGTATTGGAAAACCTCATCGCCACCGATAACCCCGGCGGCTTCGCCCCGGGCGGGCGAATGAACTGGGCGGCGGACCTGAACCTCGACCTGCTCAGCGAGAAGAAATCCACCGACGTTCTGTTCTGGGTCGGCGACGGCGCCTTCGACATGCGCAACCAGCGCACCCTGCGCGCCTTCGTCAAAGTGCTCAAGGCGGCGAAAATCGACTTCGCCGTGCTCGGTCTCGAGGAGCGCGACAGCGGCGACGTGGCCCGGCGCCTGGGTGATGAAGCGACGTTCCAGCTGTTGGCCAAGCGCAATATCCAGACCCTGGCCAAATACAGCTTCAACCGCATCGTCACGTGCGACCCCCACAGCTTTCACGTGTTGAAAAACGAATACGGTGCCTTTGATGGCAATTACCTGGTGCAGCACCACAGCACCTATATGGCCGAGATCATCGACGCCGGCGCCCTGAATCTTGGTCAGCACAAGGGCGACAGCGTGACCTATCACGACCCTTGCTACCTGGGCCGCTACAACGGCGAATATGAAGCGCCGCGCCAAGTGCTTCGTGCGCTCGGCATCGAGGTGAAGGAAATGCAGCGTTCCGGTTTCCGTTCCCGTTGCTGCGGCGGTGGCGGCGGCGCGCCGATCACCGACATCCCGGGCAAGCAGCGCATCCCGGACATGCGCATGGAAGACATCCGTGAAACCGGCGCCGAGCTGGTGGCGGTGGGTTGTCCACAATGCACCGCGATGCTCGAAGGCGTGGTCGAACCTCGGCCGATGATCAAGGACATTGCCGAACTGGTGGCCGACGCGCTGCTTGAAGAAGCCGCGCCGCGCAAGCCTGTGGCGCCGGCCAAACGTGAACCTGCGGAGGTGCATTAA	MLNTLLPILLFAALGLAALGALRRVNMWRRGRPAKVDLIGGLFAMPKRYMVDLHHVVARDKYIANTHVATAGGAVASIVLAILVHGFGLHNRILGYALLLMSAVMFVGAIFMYLRRRNPPARLSKGPWMRLPKSLLAFSVSFFLVTLPVAGILPENFGGWLVAAILGVGVLWGVSELFFGMTWGGPMKHAFAGALHLAWHRRAERFGGGRSTGLKPLDLNDPAAPLGVEKPKDFTWNQLLGFDACVQCGKCEAACPAFAAGQPLNPKKLIQDMVVGLAGGTDAKFAGSPYPGKPVGEHGGNPHQPIVNGLVDAETLWSCTTCRACVEECPMMIEHVDAIVDMRRHLTLEKGATPNKGAEVLENLIATDNPGGFAPGGRMNWAADLNLDLLSEKKSTDVLFWVGDGAFDMRNQRTLRAFVKVLKAAKIDFAVLGLEERDSGDVARRLGDEATFQLLAKRNIQTLAKYSFNRIVTCDPHSFHVLKNEYGAFDGNYLVQHHSTYMAEIIDAGALNLGQHKGDSVTYHDPCYLGRYNGEYEAPRQVLRALGIEVKEMQRSGFRSRCCGGGGGAPITDIPGKQRIPDMRMEDIRETGAELVAVGCPQCTAMLEGVVEPRPMIKDIAELVADALLEEAAPRKPVAPAKREPAEVH				NA	NA	NA	NA	NA
D1-36_04732	2061	stcD_2		putative N-methylproline demethylase	ATGGCTTTTGAAGCAATGTTCCAGCCGATCCAGATCGGCAAGCTGACCATCCGCAACCGCGTGCTCAGCACCGCGCACGCGGAGGTCTACGCCACCGACGGCGGCATGACCACCGACCGGTACGTGAAATATTACGAAGAGAAGGCCAAGGGCGGCATCGGCCTGGCGATTTGCGGTGGCTCGTCGGTAGTTGCCATCGACAGCCCGCAGGAATGGTGGAGCTCGGTGAACCTGTCCACCGACCGTATCATCCCGCATTTCCAGAACCTGGCCGACGCCATGCACAAGCATGGCGCCAAGATCATGATCCAGATTACCCACATGGGCCGTCGCTCGCGTTGGGACGGCTTCAACTGGCCGACCCTGATGTCGCCGTCCGGCGTGCGTGAGCCGGTGCACCGTGCCACCTGCAAGACCATCGAGCCGGAAGAAATCTGGCGGGTGATCGGCAACTACGCCCAGGCCGCGCGGCGTGCCAAGGCCGGGGGCCTGGACGGCGTCGAGCTGTCGGCCGTGCACCAGCACATGATCGACCAGTTCTGGAGCCCGCGGGTCAACAAGCGTACCGACGAATGGGGCGGCAGCTTCGAAGGCCGCATGAAGTTCGGCCTGGAAGTGTTGAAGGCCGTGCGCGCCGAAGTGGGCGACGACTTCTGCGTGGGCATGCGCCTGTGCGGTGACGAGTTCCACCCGGACGGCTTATCCCACGAGGACATGAAGCAGATCGCCAAGTACTACGACGACACCGGCATGCTCGACTTCATCGGCGTCGTGGGTTCGGGTTGCGACACCCACAACACCCTGGCGAACGTCATTCCGAACATGAGTTATCCACCGGAGCCGTTCCTGCACCTGGCCGCCGGTATCAAGGAAGTGGTCAAAGTCCCGGTGCTGCACGCGCAGAACATCAAGGACCCGAACCAGGCCACGCGGATCCTGGAGGGCGGCTACGTCGACATGGTCGGCATGACTCGCGCCCACATTGCCGACCCACACCTGATCGCCAAGATCAAAATGGGCCAGGTCGACCAGATCAAGCAGTGCGTCGGCGCCAACTATTGCATCGACCGCCAGTACCAGGGCCTGGACGTGCTGTGCATCCAGAACGCCGCGACGTCCCGTGAATACATGGGCGTGCCGCACATCATCGAGAAGTCCACCGGGCCCAAGCGCAAAGTCGTGGTGGTCGGTGCCGGCCCGGCCGGGATGGAAGCGGCGCGCGTGGCCGCCGAACGTGGACACGACGTGACCCTGTTCGAGAAGAAGGAATTCATCGGCGGACAGATCACCACCGCCTCGAAAGCGCCGCAAAGGGACCAGATCGCCGGTATCACCCGCTGGTTCCAACTGGAACTCGCGCGGTTGAAAGTCGACCTGCGCCTGGGCGTGGCGGCGGACGCGCCGACCATCATGGACCTGCGTCCGGACGTGGTGGTGCTCGCCGTCGGCGGTCATCCGAACGTGGAGCAGAACGAACACTGGGGCGCCGCCGAAGGGCTGGTGGTCAGCAGCTGGGACGTGCTCGACGGCAAGGTCGCGCCGGGCAAGAACGTGCTGGTCTACGACACCATTTGCGAATTCACCGGCATGTCGGTGGCCGACTTCCTCGCCGACAAGGGCAGCCAGGTCGAGATCGTCACCGACGACATCAAGCCGGGCGTGGCCATTGGCGGGACTTCGTTCCCCACCTACTACCGCAGCATGTACCCCAAGGAAGTGATCATGACCGGGGACATGATGCTGGAAAAGGTCTACCGCGAAGGCGACAAGCTGGTGGCGGTGCTGGAGAACGAATACACCGGCGCCAAGGAAGAACGCGTGGTCGACCAAGTGGTGGTGGAGAACGGCGTGCGGCCGGACGAAGAAATCTACTACGCGCTCAAGGAAGGTTCGCGCAACAAGGGCCAGATCGACGTCGAAGCCCTGTTCGCGATCAAACCCCAGCCGTGCCTGGAGCAGAGCGGCGACGGTTACCTGCTGTTCCGCATCGGCGACTGCGTGGCCCAGCGTAATACCCACGCGGCCATCTACGACGCCCTGCGGTTGTGCAAGGATTTCTAA	MAFEAMFQPIQIGKLTIRNRVLSTAHAEVYATDGGMTTDRYVKYYEEKAKGGIGLAICGGSSVVAIDSPQEWWSSVNLSTDRIIPHFQNLADAMHKHGAKIMIQITHMGRRSRWDGFNWPTLMSPSGVREPVHRATCKTIEPEEIWRVIGNYAQAARRAKAGGLDGVELSAVHQHMIDQFWSPRVNKRTDEWGGSFEGRMKFGLEVLKAVRAEVGDDFCVGMRLCGDEFHPDGLSHEDMKQIAKYYDDTGMLDFIGVVGSGCDTHNTLANVIPNMSYPPEPFLHLAAGIKEVVKVPVLHAQNIKDPNQATRILEGGYVDMVGMTRAHIADPHLIAKIKMGQVDQIKQCVGANYCIDRQYQGLDVLCIQNAATSREYMGVPHIIEKSTGPKRKVVVVGAGPAGMEAARVAAERGHDVTLFEKKEFIGGQITTASKAPQRDQIAGITRWFQLELARLKVDLRLGVAADAPTIMDLRPDVVVLAVGGHPNVEQNEHWGAAEGLVVSSWDVLDGKVAPGKNVLVYDTICEFTGMSVADFLADKGSQVEIVTDDIKPGVAIGGTSFPTYYRSMYPKEVIMTGDMMLEKVYREGDKLVAVLENEYTGAKEERVVDQVVVENGVRPDEEIYYALKEGSRNKGQIDVEALFAIKPQPCLEQSGDGYLLFRIGDCVAQRNTHAAIYDALRLCKDF	PGPT0021970_155	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_STACHYDRINE_USAGE	PLANT_DERIVED_STACHYDRINE_DEGRADATION,PGPT0021970-hpbA-K22551	NA	NA
D1-36_04733	531			hypothetical protein	ATGGCCAAGATCGCCCCGCAACTGCCTATCGAAGTCGACAGCGAAACCGGTGTCTGGACCTCCGACGCCCTGCCGATGCTGTACGTGCCGCGCCACTTTTTCGTCAACAACCACATGGGCATCGAGGAAGTGCTGGGCGCCGACGCCTACGCCGAGATTCTCTACAAGGCTGGCTACAAATCCGCCTGGCACTGGTGTGAAAAAGAAGCCGAATGCCACGGCCTGGAAGGCGTCGCGGTGTTCGAGCACTACATGAAGCGCCTGTCGCAGCGTGGCTGGGGCCTGTTCAAGATCCAGGACATTGACCTGGACAAAGGCACCGCCAGCGTCAAGCTCGAACACTCGGCGTTCGTCTATGTGTACGGCAAGGTCGGGCGCAAGGTCGACTACATGTTCACCGGCTGGTTCGCCGGGGCCATGGACCAGATCCTCGCCGCGCGCGGCAGCCAGATCCGCACCGTGGCCGAGCAGGTCTACGGCGGTTCCGAAGAAGGCCACGACGACGGCCTGTTCATCGTCAAGCCGTTGTAA	MAKIAPQLPIEVDSETGVWTSDALPMLYVPRHFFVNNHMGIEEVLGADAYAEILYKAGYKSAWHWCEKEAECHGLEGVAVFEHYMKRLSQRGWGLFKIQDIDLDKGTASVKLEHSAFVYVYGKVGRKVDYMFTGWFAGAMDQILAARGSQIRTVAEQVYGGSEEGHDDGLFIVKPL				NA	NA	NA	NA	NA
D1-36_04734	978			hypothetical protein	ATGAGCCCAGCCGAATTGCACGCCGACAGCATCGTTATCGACGGGCTGATCATTGCCAAGTGGAACCGCGACCTGTTCGAAGACATGCGCAAGGGCGGCCTGACCGCAGCCAACTGCACGGTGTCGGTGTGGGAAGGTTTCCAGGCCACCATCAACAACATCGTTGCCAGCCAGAAACTGATCCGCGAGAACAGCGACCTGGTGATCCCGGTGAAAACCACCGCCGACATCCGCCGCGCCAAGGAACAGGGCAAGACCGGCATTATCTTTGGCTTCCAGAACGCCCATGCCTTCGAAGACCAGCTCGGCTACGTCGAGATCTTCAAGCAGCTCGGCGTCGGTGTGGTGCAGATGTGCTACAACACCCAGAACCTGGTGGGCACCGGTTGCTACGAGCGCGACGGCGGCCTGTCGGGCTTCGGTCGCGAAATCGTCGCCGAGATGAACCGCGTCGGCATCATGTGCGACCTGTCCCACGTTGGCTCCAAGACCTCCGAGGAAGTCATCCTCGAATCGAAGAAACCGGTCTGCTACTCCCACTGCCTGCCGTCCGGCCTCAAAGAACACCCGCGCAACAAATCCGATGAAGAGCTGAAGTTCATCGCCGATCACGGCGGTTTCGTCGGCGTGACCATGTTCGCGCCGTTCCTGGCCAAGGGCATCGATTCGACCATCGACGACTACGCCGAAGCCATCGAGTACACCATGAACATCGTCGGCGAGGACGCCATCGGCATCGGCACCGACTTCACCCAGGGTCACGGCCAGGACTTCTTCGAAATGCTGACCCACGACAAGGGCTACGCCCGTCGTCTGACCAGCTTCGGCAAGATCATCAACCCCCTGGGCATCCGCACCGTGGGCGAGTTTCCGAACCTCACCGAAACGCTGCTCAAGCGCGGTCACCCGGAGCGGGTGGTGCGCAAGATCATGGGCGAGAACTGGGTCAACATTTTGAAAGATGTCTGGGGCGAATAA	MSPAELHADSIVIDGLIIAKWNRDLFEDMRKGGLTAANCTVSVWEGFQATINNIVASQKLIRENSDLVIPVKTTADIRRAKEQGKTGIIFGFQNAHAFEDQLGYVEIFKQLGVGVVQMCYNTQNLVGTGCYERDGGLSGFGREIVAEMNRVGIMCDLSHVGSKTSEEVILESKKPVCYSHCLPSGLKEHPRNKSDEELKFIADHGGFVGVTMFAPFLAKGIDSTIDDYAEAIEYTMNIVGEDAIGIGTDFTQGHGQDFFEMLTHDKGYARRLTSFGKIINPLGIRTVGEFPNLTETLLKRGHPERVVRKIMGENWVNILKDVWGE	PGPT0020950_3009	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
D1-36_04735	402			hypothetical protein	ATGAAATCGATCTTCCTTGCCCTGGCACTGATCAGCACCGTCGCCCACGCGACCGAAGACACCGAGCCCAACCCCTGCGACGAAGTTGAAAACGACGTCCAGACCCTTGCCTGTTCCGCCTATGGCAAAGCCGCCGCCGAGCAGTTGCTCAGCGAAAACCTGCAGAGCCTCAACGAACGCCTGCAAACCCGCTACGCCAGCGACAAGGCCCAGCTCAACGACATCACCGCCAAGATCAAGGCCGCTCAACAACTCTGGCAAAAACAGCGCGAAGCCGACTGCGCCATCGCCGCCTTCCCGGCCAAGCCCGGCAGCGACGCCTACAAAATCGCCGAAAACGACTGCATGGCCCAGGTGAGCGATGACCGGTCGGAGTTCTTGGAATCGATTGGGCAGGAGTGA	MKSIFLALALISTVAHATEDTEPNPCDEVENDVQTLACSAYGKAAAEQLLSENLQSLNERLQTRYASDKAQLNDITAKIKAAQQLWQKQREADCAIAAFPAKPGSDAYKIAENDCMAQVSDDRSEFLESIGQE				NA	NA	NA	NA	NA
D1-36_04736	777			hypothetical protein	ATGCACTCTCTTACAGCCTTGCCCTTCTACGGGTTAGCCATCTTTATCGCCATCGTGCTGGGCATCGAGGCCGGTCGCCAAGTCGGCAACCGTCACCTGGCCCAGGACCCGGACGGCGCTCGCCAGGGCATCGGGGCCATCGAAGGCGCGGTGTTTGGCCTGCTAGCACTGCTGATTGCCTTCACCTTTTCCGGGGCGGCCTCGCGCCTGGACCAGCGCCGCGCGTTGATCGTTGCCGAAACCAATGCCATGGGCACCGCCTGGTTGCGCCTGGACCTTCTGCCCGCCAGCGAACAACCGGACATCCGCCAGGCATTCCGAGAGTATGTCGACGCCCGTATCGAGTATTACCGCGACTTGCGCGAAGACGAAGTCGACGAAGCGGCCCATGACCGAGCCAATGATCTGCAGCAAACCATCTGGAAACGTACCGTCGCCGCCCTGCAACAGATGCCCACCCCAACCTTGGGAACGCCTGTGCTGCAGGCGCAAAACGAAATGATCGACATCACCACGACGCGCGCCGTGGCTCACGAAACCCACCCACCCCTGACCATTTACCTGATGCTCGTGACCATGACCCTGATCAGCGCCATGCTGATCGGCTACGGCATGGCCGGCACCCGGCAGCGCAACTGGCTGCACAGCCTGGGCTATGCGGCGGTGATGGTCTGCGTGTTGTATGTGATCCTGGATTTCGAGTACCCGCGCTTTGGGGTGATCCGGGTCGACTATTTCGACAAGATCATGCTGGACCTGCGGGCGAGCATGAATTGA	MHSLTALPFYGLAIFIAIVLGIEAGRQVGNRHLAQDPDGARQGIGAIEGAVFGLLALLIAFTFSGAASRLDQRRALIVAETNAMGTAWLRLDLLPASEQPDIRQAFREYVDARIEYYRDLREDEVDEAAHDRANDLQQTIWKRTVAALQQMPTPTLGTPVLQAQNEMIDITTTRAVAHETHPPLTIYLMLVTMTLISAMLIGYGMAGTRQRNWLHSLGYAAVMVCVLYVILDFEYPRFGVIRVDYFDKIMLDLRASMN				NA	NA	NA	NA	NA
D1-36_04737	417			hypothetical protein	ATGATCATCTGCGGCATCGAAATCAAAGGCAGCGAAGCGATCATCGCCGTTGCCTCGCTGGACCAGCAGGCGTTGAGCCACGTCGCGCTGAACACCAAGAAAATCGCCCTGGACGATGACGACGAAGCCGCCAACGTCAAAGCCTTCGCCGCGCAAGTGCGGGCTTTCGTGGCGGACAATGGCATCGACCGCATCGCCATCAAGAAGCGCAGCAAGAAAGGTGAGTTCGCGGGCGGCCCGACCACCTTCAAGATCGAAGGCGTTTTCCAATTGCTCGAAGGCTGCGAAGTGACACTGCTGTCGCCACAGACCATCAACGCACAGAGCAAAAAACATGACTTCGCCCTGCCGACGACGCTGAACAAGTATCAGCATGAGGCATACAAGGCGGCGTGCTCGGCGTTGATGAAGAAGTAG	MIICGIEIKGSEAIIAVASLDQQALSHVALNTKKIALDDDDEAANVKAFAAQVRAFVADNGIDRIAIKKRSKKGEFAGGPTTFKIEGVFQLLEGCEVTLLSPQTINAQSKKHDFALPTTLNKYQHEAYKAACSALMKK				NA	NA	NA	NA	NA
D1-36_04738	960	cdhR_9	COG4977	HTH-type transcriptional regulator CdhR	ATGTCCCAGGATTTCTATTTCTTGTTGATGCCGGGTTTCTCGGCCATCGGTTTCATTTCGGCCATCGAGCCGTTACGGGTCGCCAATCGGTTTCGTGGCGAGCTTTACCGCTGGCATGTCCTGAGTGCCGATGGCGGAGCGGTGCTGGCGAGCAATGGCATGTCGGTCAACGCCGATGCTGCGCTGGAGCCGCTGAAGAAGGGCGCGACGCTCTGGATCGTGGCGGGCTTCGAGCCGTTGAAGTTCGTCAGCCCGGTGCTTGAGAGGTGGTTGCACCGGCTGGATAACGACGGTGTCATCCTCGGCGGAATCGACACCGGCAGCGTGGTGCTCGCGGAAGCGGGATTGCTGGATGGCCATCGCGTCACCCTGCACTGGGAGGCGATCGAGGCGTTCAAGGAGTCCTATTCCCAGCTCGCCGTGACCCAGGAGCTCTTCGAAATCGACCGCCGCCGCATCACTTGCGCCGGCGGCACTGCCTCGATTGACCTCATGCTCGACCTGATCGCGCAGGCCCACGGCCCGGAACTCGCAATCCAGGTCAGCGAGCAGTTCGTGCTCGGTCGCATTCGTCCACGCAAAGATCACCAGCGCATGGAAATCGCCACCCGCTACGGCATTCGCAACAAGAAGCTGGTGCATGTGATTGGAGAAATGGAAGCCAACAGCGAACCGCCACTGAGCACCCTGGCGCTGGCCGAATCGATCAACGTCACGCGCCGCCAGCTTGAACGCCTGTTCCGCCTGCACCTGAACGACACGCCGAGTAATTTCTACCTGCGCCTGCGCTTGGAAAAGGCCCGGCAACTGCTGCGCCAGACCGACATGAGTGTGCTGGAAGTCAGCATTGCCTGTGGATTCGAATCGCCGTCGTATTTCACCCGCAGCTACAGGGCACGGTTTGCCCGGTGTCCGCGGGAAGACCGGCGGCGGCAGGGGGATGAGCGGGAAGTGGTTTGA	MSQDFYFLLMPGFSAIGFISAIEPLRVANRFRGELYRWHVLSADGGAVLASNGMSVNADAALEPLKKGATLWIVAGFEPLKFVSPVLERWLHRLDNDGVILGGIDTGSVVLAEAGLLDGHRVTLHWEAIEAFKESYSQLAVTQELFEIDRRRITCAGGTASIDLMLDLIAQAHGPELAIQVSEQFVLGRIRPRKDHQRMEIATRYGIRNKKLVHVIGEMEANSEPPLSTLALAESINVTRRQLERLFRLHLNDTPSNFYLRLRLEKARQLLRQTDMSVLEVSIACGFESPSYFTRSYRARFARCPREDRRRQGDEREVV	PGPT0021945_164	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARNITHINE_USAGE	PLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021945-cdhR-K17736	NA	NA
D1-36_04739	945			hypothetical protein	ATGAAACGACTGATCAGCTGCTGCGTTATTGCACTCAGCACCACTTCTTTACTGAACCAGGCCGCCCTCGCAGCCGAACCCGCCGCCTGCCAGAATGTGCGCCTGGGCGTGGTCAACTGGACGGACGTCATTGCCACCAGCGCCCTGACCCAAGTGATGCTCGACGGCCTCGGCTACAAGACCAAGCAGACCAGCGCCTCCCAGCAGATCATTTTCGCCGGCATCCGCGATCAGCGCCTGGACATGTTCCTGGGCTACTGGAACCCGCTGATGACCCAGACCATCACCCCGTTCGTCGAAGCCAAGCAGGTCAAGGTGCTTGAGCAGCCCAGCCTGAAGGACGCCCGCGCCACCCTGGCCGTGCCGACTTACCTGGCCGACAAGGGTCTGAAGACGTTCGCCGACATCGCCAAATTCGAGAAGGAGCTGGGCGGCAAGATCTACGGCATCGAGCCCGGCTCCGGCGCCAACACCCAGATCAAGGCGATGATTGCCAAGAATCAGTTCGGCCTGGGCAAATTTCAACTGGTCGAGTCCAGCGAGGCCGGCATGCTCGCCGCCGTGGACCGCGCCGTGCGACGCAAGGAAGCCGTGGTGTTCTTCGGCTGGGCGCCGCACCCGATGAACGTCAACGTGCAAATGACCTACCTCACCGGCAGCGAAGACGCCCTCGGTCCGAACGAAGGCATGGCCACCGTGTGGACCGTCACCGCGCCGAACTACGCCGAGCAATGCCCGAACGTCAGCCGTCTGCTGAGCAACCTGACCTTCACCGCCGAAGACGAGAGCCGGATGATGCAGCCGCTGCTTGATCACAAGGATCCGCTCGAATCAGCCCGGCAATGGCTCAAGGACCATCCACAGGACAAACAGCGCTGGCTCGAAGGCGTGACCACCTTCGATGGCAAGCCGGCCGCCGACAACCTGAAACTCACCAGTAACTGA	MKRLISCCVIALSTTSLLNQAALAAEPAACQNVRLGVVNWTDVIATSALTQVMLDGLGYKTKQTSASQQIIFAGIRDQRLDMFLGYWNPLMTQTITPFVEAKQVKVLEQPSLKDARATLAVPTYLADKGLKTFADIAKFEKELGGKIYGIEPGSGANTQIKAMIAKNQFGLGKFQLVESSEAGMLAAVDRAVRRKEAVVFFGWAPHPMNVNVQMTYLTGSEDALGPNEGMATVWTVTAPNYAEQCPNVSRLLSNLTFTAEDESRMMQPLLDHKDPLESARQWLKDHPQDKQRWLEGVTTFDGKPAADNLKLTSN	PGPT0013640_2360	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
D1-36_04740	888	kce	COG3246	3-keto-5-aminohexanoate cleavage enzyme	ATGAACCACGACGTCATCATCACCTGCGCACTCACCGGTGCTGGCGACACGACCGCCAAGAGCCCTCACGTGCCGGTCACTCCGAAACAGATCGCCGCCGCTGCCGTCGAGGCCGCCAAGGCCGGCGCCACCGTTGTCCACTGCCACGTTCGCGATCCGCAAACCGGCAAGTTCAGCCGTGATGTGGCGCTGTATCGCGAAGTGATGGAGCGCATCCGTGAGGCGGACGTCGACATCATCGTCAACCTCACCGCTGGCATGGGCGGCGACCTGGAGATCGGTGCCGGCGAACGTCCGATGGAGTTCGGCCCCAACACTGACCTGGTGGGTCCACTGACCCGCCTGGCCCACGTTGAAGAGCTGCTGCCGGAAATCTGCACCCTGGATTGCGGCACCCTGAACTTCGGCGACGGCGACACCATTTACGTCTCCACTCCGGCGCAACTGCGGGCCGGCGCCAAGCGCATCACCGAGCTCGGCGTGAAGGCCGAGCTGGAGATCTTCGACACCGGCCACCTGTGGTTCGCCAAGCAACTGATCAAGGAAGGCCTGCTGGACAATCCGCTGTTCCAACTCTGCCTGGGCATTCCATGGGGCGCGCCGGCCGACACCACCACAATGAAAGCCATGGTCGACAACCTGCCCGCCGACGCGGTGTGGGCCGGCTTCGGCATCGGCCGCATGCAAATGCCAATGGCGGCCCAAGCCGTGCTGCTGGGTGGCAACGTACGGGTCGGGCTGGAAGACAACCTCTGGCTGGACAAAGGCGTGCTCGCCACCAATGGCCAACTGGTGGAGCGCGCCGGCGAAATCCTCAGCCGCCTCGGCGCACGGGTGCTTACGCCTGCCGAAGGTCGCAAGAAAATGGGCCTGGTCCAGCGCGGCTAA	MNHDVIITCALTGAGDTTAKSPHVPVTPKQIAAAAVEAAKAGATVVHCHVRDPQTGKFSRDVALYREVMERIREADVDIIVNLTAGMGGDLEIGAGERPMEFGPNTDLVGPLTRLAHVEELLPEICTLDCGTLNFGDGDTIYVSTPAQLRAGAKRITELGVKAELEIFDTGHLWFAKQLIKEGLLDNPLFQLCLGIPWGAPADTTTMKAMVDNLPADAVWAGFGIGRMQMPMAAQAVLLGGNVRVGLEDNLWLDKGVLATNGQLVERAGEILSRLGARVLTPAEGRKKMGLVQRG	PGPT0021956_2	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARNITHINE_USAGE	PLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021956-cdhC-NA	NA	NA
D1-36_04741	966	lcdH_1		L-carnitine dehydrogenase	ATGAGCTTTATCACCGACATCAAGACCTTCGCCGCCCTGGGCAGTGGCGTCATCGGCAGCGGCTGGGTCAGCCGCGCCCTGGCCCATGGCCTCGACGTGGTCGCCTGGGACCCGGCGCCCGGCGCCGAAGCCGCGTTGCGCAAGCGCGTCGCCAATGCTTGGGGCGCCCTGGAGAAACAAGGCCTGGCCCCTGGCGCTTCGCAGGATCGGCTGCGTTTTGTCGCGACCATCGAGGAATGCGTGCGCGACGCCGACTTCATCCAGGAAAGTGCCCCCGAGCGCCTGGAGCTCAAATTGCAGCTGCACAGCCAGATCAGCGCCGCCGCCAAGCCGAACGCATTGATCGGGTCGAGCACCTCCGGGCTGCTGCCGAGCGAATTCTATGAAAGCTCGACCCATCCGGAACGGTGCGTGGTCGGTCACCCGTTCAATCCGGTCTACCTGCTGCCCCTGGTGGAAGTGGTCGGCGGCAAAAACACCGCACCCGAGGCCGTGCAAGCGGCGATTCAAGTCTACGAATCCCTCGGCATGCGGCCGCTGCACGTGCGCAAGGAAGTGCCCGGTTTCATTGCCGACCGCTTGCTTGAAGCGCTCTGGCGCGAGGCGTTGCACCTGGTCAATGACGGCGTGGCAACCACCGGCGAAATCGACGATGCCATCCGTTTTGGCGCCGGCCTGCGCTGGTCATTCATGGGCACATTCCTGACCTACACCCTGGCCGGCGGCGACGCTGGGATGCGTCACTTCATGGCTCAGTTCGGCCCGGCGTTGCAACTGCCCTGGACCTACCTGCCGGCACCGGAACTGACCGAGAAACTGATCGACGATGTGGTGGACGGGACGAGCGAACAGTTGGGGCAGCACAGCATTTCAGCTTTGGAACGCTATCGTGATGATTGCCTGTTGGCGGTGCTGGAGGCGGTGAAGGCCACCAAGCAAAAGCACGGAATGATTTTTAGCGAATAA	MSFITDIKTFAALGSGVIGSGWVSRALAHGLDVVAWDPAPGAEAALRKRVANAWGALEKQGLAPGASQDRLRFVATIEECVRDADFIQESAPERLELKLQLHSQISAAAKPNALIGSSTSGLLPSEFYESSTHPERCVVGHPFNPVYLLPLVEVVGGKNTAPEAVQAAIQVYESLGMRPLHVRKEVPGFIADRLLEALWREALHLVNDGVATTGEIDDAIRFGAGLRWSFMGTFLTYTLAGGDAGMRHFMAQFGPALQLPWTYLPAPELTEKLIDDVVDGTSEQLGQHSISALERYRDDCLLAVLEAVKATKQKHGMIFSE	PGPT0021955_342	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARNITHINE_USAGE	PLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021955-lcdH|cdhA-K17735	NA	NA
D1-36_04742	477	lcdH_2		L-carnitine dehydrogenase	ATGCCCACCCTCACTACCTACCAAACCCGCATCCTCCCAGAATGGGTCGACTACAACGGCCACCTGCGCGACGCCTTCTACTTGCTGATCTTCAGCTACGCCACCGATGCGTTGATGGACCGGCTCGGCCTTGACAGCCAGAGCCGCGAAGCCAGCGGCCATTCGCTGTTCACCCTCGAGCTGCACCTGAACTACCTGCACGAAGTGAAGCTCGGCGCCGATGTCGAGGTGCATACGCACATCATCGGCAACGATGCCAAACGCCTGCACCTCTACCACAGCCTGCACTTGGCGGGCGGCGACAAAGAGCTGGCCGGCAATGAGCAGATGCTACTGCACGTCGATCTGGCGGGGCCACGTTCGGCGCCGTTTAGCGAACAGACCCTGGGCCAACTCAAAGCCCTGCTCGACAGCCAGTCCGACCTGCCGGCGCCATCCTGCATCGGGCGTGTCATCGCCCTGCCACCCGCCCGATAA	MPTLTTYQTRILPEWVDYNGHLRDAFYLLIFSYATDALMDRLGLDSQSREASGHSLFTLELHLNYLHEVKLGADVEVHTHIIGNDAKRLHLYHSLHLAGGDKELAGNEQMLLHVDLAGPRSAPFSEQTLGQLKALLDSQSDLPAPSCIGRVIALPPAR	PGPT0001850_1387	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0001850-ybgC-K07107	NA	NA
D1-36_04743	1164			Gamma-butyrobetaine dioxygenase	ATGCACACCGCCGCCGCAATTGCCGACTTCCGCAGCTACCCTCTGGTCCACGCCTTGACTGCCGCAATCCCCTTGGCCGACCGGGTTCACGTCACGTGGGCCGATGGTCGGATCAGTCCTTTTCATCACCAGTGGCTGCGGGACAACTGCCCTTGCCAGGCATGCGTCTACAGCGTGACCCGTGAGCAGGTCCTGGAGATTGTCGATGTGCCCGAAGATCTGGCGCCGGATGAAATCCGCGTTGATGGTGAAGGCCGCCTGCGCGTTGCCTGGCGGGACGGCCACCAAAGCCAATTCGACCCGGGCTGGCTGCGCGCTCACGCCTATGACGAAGTCTCCAGGGCCGAACGACTCGACGGCAGGCCGCAACGCCAGCTATGGCAGTGCGACTTGCAGCTGCCAGTGTTCGAATACCAGGCGCTGATGGAGGATGCCGACGCGCTGCTGCAATGGCTGCTGGCGGTACGCGACATCGGCCTGACCCAAGTGCGGGGCGTGCCCACCGAGCCCGGCTCGCTGAAACAGATTGCCCAACGCATTTCCTTCGTTCGCGAGAGCAATTTCGGCGTGCTCTTCAACGTGCAATCCAAGGCCGACGCCGACAGCAACGCCTACACCGCTTTTAACCTGCCGTTGCACAGCGACTTGCCGACGCGGGAATTGCAGCCGGGGTTGCAGTTCCTGCATTGCCTGGTGAACGAGGCCGTGGGTGGCGAGAGTATCTTCGTCGACGGTTTCGCCATTGCCCAGGCGCTGCGCCAGGAAGATCCCGATGCCTTCGAGGCGCTGTGCCAGATCCCGGTGGAATTTCGCAACAAGGACCGCCACAGCGACTACCGCTGCCTGGCGCCGATCATTGCGTTGGACGCCCTTGGGCAAGTCTCGGAGATCCGCATGGCGAACTTTCTGCGCGGCCCCTTTGATACCTCGGTGGAGCAGATGCCCAGGCTCTACCGCGCCTACCGCCGCTTCATCGCGCTGACCCGCGAGCCTCGCTTTCGCCTGGTGCAACGACTCGAACCCGGGCAGCTCTGGTGCTTCGACAACCGCCGCACGCTCCACGCGCGCAACGCCTTCGACCCTGCTACCGGGGCGCGGCATTTCCAAGGGTGTTATGTGGATCGGGATGAATTGCTGTCGCGCATTCTGGTGTTGCAACGTTAG	MHTAAAIADFRSYPLVHALTAAIPLADRVHVTWADGRISPFHHQWLRDNCPCQACVYSVTREQVLEIVDVPEDLAPDEIRVDGEGRLRVAWRDGHQSQFDPGWLRAHAYDEVSRAERLDGRPQRQLWQCDLQLPVFEYQALMEDADALLQWLLAVRDIGLTQVRGVPTEPGSLKQIAQRISFVRESNFGVLFNVQSKADADSNAYTAFNLPLHSDLPTRELQPGLQFLHCLVNEAVGGESIFVDGFAIAQALRQEDPDAFEALCQIPVEFRNKDRHSDYRCLAPIIALDALGQVSEIRMANFLRGPFDTSVEQMPRLYRAYRRFIALTREPRFRLVQRLEPGQLWCFDNRRTLHARNAFDPATGARHFQGCYVDRDELLSRILVLQR	PGPT0013696_407	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0013696-BBOX1_like-K00471	NA	NA
D1-36_04744	264			hypothetical protein	ATGATGTACGCCGATTTGATCGACCAGGAAGACCTGCTGGGCCATCTGAAGGCCCTGGGGTTGCAGATACCCAGTGGCGCGACTGCCGAGCAGGCGTGCGAGTGCGCCGTACGAGGCCTGGACAGGGCTCGCGCCAATGAGCTGCGCAGGCTGGTCAAGGAAATGTACACCAGCAGCGCGACCATCCTGCCGGCGGTGCGCCAGGCAATCGATCAGCAACTGTTGCCGGCGTTGGCGCAGTACCAGCAGAACCATAACGCCTGA	MMYADLIDQEDLLGHLKALGLQIPSGATAEQACECAVRGLDRARANELRRLVKEMYTSSATILPAVRQAIDQQLLPALAQYQQNHNA				NA	NA	NA	NA	NA
D1-36_04745	1104	cdhR_10	COG4977	HTH-type transcriptional regulator CdhR	ATGACGACGTCCAACTCCGGGGCCCAACCCCAGAACCGTGCGCCTCAATCCATCGGCTTTCTGCTGCTGGACAATTTCACGCTGATTTCCCTGGCGTCCGCGGTGGAACCGCTACGCATGGCCAACCAGCTGTCGGGGCGCGAGCTGTACCGCTGGACCACCCTGACCGTCGATGGCGGCCAGGTCTGGGCCAGTGACGGTTTGCAGATCACCCCGGACGCCTCCATGCACAAAGCCCCGGCCCTGGACACCGTCATCGTGTGCGGCGGCATCGGCATCCAGCGCACCGTAACCCGCGAACATGTCTCATGGCTGCAAGGCCAGGCCCGTCAATCCCGTCGTCTTGGCGCAGTCTGCACCGGCAGTTGGGCCCTGGCGTGCGCCGGCCTGCTGGACGGTTTCGATTGCAGCGTGCACTGGGAATGCCTGGCCGCGATGCAGGAAGCTTTCCCACGGGTTTCGATGAGCACGCGCCTGTTCACGCTTGACCGCAACCGCTTCACAAGCTCCGGCGGCACCGCGCCGCTGGACATGATGCTGCACTTGATCAGCCGTGATCACGGTCGCGAGTTGTCGGCGGCGATTTCGGAAATGTTTGTCTACGAGCGTATCCGCAACGAGCAGGATCACCAACGTGTGCCGCTCAAGCACATGCTTGGCACCAACCAGCCGAAGTTGCAGGAAATCGTCGCGCTGATGGAGGCCAATCTCGAGGAGCCGATCGACCTGGACGAGTTGGCGGTGTACGTCGCTGTGTCCCGCCGTCAGCTGGAGCGCCTGTTCCAGAAATACCTGCATTGTTCGCCGTCGCGCTATTACCTCAAGCTGCGACTGATTCGTGCGCGGCAACTGCTCAAGCAGACGCCGATGTCGATCATCGAAGTGGCCTCGGTGTGCGGCTTCGTCTCCACGCCGCATTTCTCCAAGTGCTACCGCGAATACTTCGGCATTCCGCCACGGGACGAGCGCGTCGGCTCCAACACCACGCAACAAGTGGCGATGATGCCGCTGCCGCAGGCGTTGGTGCTGTCGCCGCTGTCCGGCCCGCTGTCGGCGCTGAGCCAGGCGCGCAATGAGTCGACGTTTGCGAGTGTGAGGCTCTAA	MTTSNSGAQPQNRAPQSIGFLLLDNFTLISLASAVEPLRMANQLSGRELYRWTTLTVDGGQVWASDGLQITPDASMHKAPALDTVIVCGGIGIQRTVTREHVSWLQGQARQSRRLGAVCTGSWALACAGLLDGFDCSVHWECLAAMQEAFPRVSMSTRLFTLDRNRFTSSGGTAPLDMMLHLISRDHGRELSAAISEMFVYERIRNEQDHQRVPLKHMLGTNQPKLQEIVALMEANLEEPIDLDELAVYVAVSRRQLERLFQKYLHCSPSRYYLKLRLIRARQLLKQTPMSIIEVASVCGFVSTPHFSKCYREYFGIPPRDERVGSNTTQQVAMMPLPQALVLSPLSGPLSALSQARNESTFASVRL	PGPT0021945_104	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARNITHINE_USAGE	PLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021945-cdhR-K17736	NA	NA
D1-36_04746	1377	tdcG	COG1760	L-serine dehydratase TdcG	ATGGCCATCAGCGTGTTCGACCTGTTCAAGATTGGTATCGGCCCGTCCAGTTCCCACACCGTGGGGCCCATGCGCGCAGCGGCGCTGTTTGTCGAAGCGTTGCGGGCCAAGTCGCTTTTAAATGACGTGCGGCGGGTCGAGGTGCAATTGTTTGGTTCGCTGTCGGCCACCGGCATCGGTCACGGCAGCGATACCGCCACGATCATGGGCTTGATGGGCGAATGGCCTGACTTGATCGATCCGTCGCAAATCGGTACGCGCATCGAGCTGCTGCGCGAGACCCAGACCCTGCTGCTCGATAGCCGCCTGCCGGTGCCTTTCGTCTGGTCCCGCGATATGCGCCTGCTCGACGAAAACCTGCCGTTCCACCCCAACGCGATGACGCTGGTGGCGGAGGGTGAAAACGGCGACCTGCACCGCGACACCTATTATTCGGTCGGTGGCGGCTTTGTCGTCGACCAGGCCCAGGCGTCCAGCGGCGTGATGGACCTGGACACCACCGAGTTGCCTTACGATTTCTCCAGCGCCGAGGAACTGCTCGGGCTGTGTCGCACGCATAACCTGCGAGTGGCTGAGCTGATGATGGCCAACGAGAAGGTCTGGCGTTCGGAAGAAGAGATTCGCAGCGGCCTGATGAGACTCTGGCGGGCCATGCAGGACTGCGTCGAGCAGGGCCTCAAGCACGAAGGCATTCTGCCCGGTGGCTTGAATGTCCGTCGGCGCGCGGCCAAGTTGTACCGCAGCCTGCAAGAGCTGAACAAACCGAACGTGATCGGCTCGACCCTGAGCGCCATGGAGTGGGTCAACTTGTACGCCTTGGCCGTCAACGAGGAAAACGCCGCTGGCGGGCGCATGGTCACGGCGCCGACCAACGGCGCGGCGGGGATCATTCCGGCGGTGCTGCATTACTTCATGAAATTCAGCGAGGCCGTTACTGACGCCAACGTCGTGGATTATTTCCTCGGCGCGGCGGCGGTGGGCATCCTGTGCAAGAAGAACGCCTCGATCTCGGGCGCCGAAGTCGGCTGCCAGGGTGAAGTCGGCTCGGCCTGCGCCATGGCGGCGGCAGGCCTGGCGGAAATCCTCGGAGCCACGCCGGAGCAACTGTGCAACGCGGCGGAAATCGGCCTGGAGCACAACCTCGGCCTGACCTGCGATCCGGTGGGCGGCCTGGTCCAGGTGCCGTGTATCGAGCGCAACGCCATCGCCGCGGTGAAAGCAATCAATGCCGCGCAGATGGCCCTTCGGGGTGATGGTCAGCATTTCATCTCCCTGGACCGTGTGATCCGCACCATGCGCGATACCGGCGCCGACATGCACGACAAATATAAAGAGACTTCACGGGGCGGGCTGGCGGTAAGCGCGGTGGAATGCTGA	MAISVFDLFKIGIGPSSSHTVGPMRAAALFVEALRAKSLLNDVRRVEVQLFGSLSATGIGHGSDTATIMGLMGEWPDLIDPSQIGTRIELLRETQTLLLDSRLPVPFVWSRDMRLLDENLPFHPNAMTLVAEGENGDLHRDTYYSVGGGFVVDQAQASSGVMDLDTTELPYDFSSAEELLGLCRTHNLRVAELMMANEKVWRSEEEIRSGLMRLWRAMQDCVEQGLKHEGILPGGLNVRRRAAKLYRSLQELNKPNVIGSTLSAMEWVNLYALAVNEENAAGGRMVTAPTNGAAGIIPAVLHYFMKFSEAVTDANVVDYFLGAAAVGILCKKNASISGAEVGCQGEVGSACAMAAAGLAEILGATPEQLCNAAEIGLEHNLGLTCDPVGGLVQVPCIERNAIAAVKAINAAQMALRGDGQHFISLDRVIRTMRDTGADMHDKYKETSRGGLAVSAVEC	PGPT0001975_1923	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001975-sdaA|sdaB|tdcG-K01752	NA	NA
D1-36_04747	948			hypothetical protein	ATGAAAGGTTCCACGCCGTTGTTGTTGGCCGCCATGCTGAGTCTTCCGATGCTGGCCAACGCTGCAGAACCCGCCCAATGCAGTACCGTCAACTTCTCCGATGTCGGCTGGACGGACATCACCGTGACCACCGCCACCACCAGCGTCGTGCTCGACGCCCTCGGCTACAAGACCAAGACCACGATGATCTCCGTGCCGGTGACCTACAAGTCCCTGGCCGATGGCAAGAACATGGACGTGTTCCTCGGCAACTGGATGCCGACCATGGAAAACGACATCAAGGCCTATCGTGAAGCGGGCACCGTGGAAACCGTGCGCGCCAACCTGGAAAACGCCAAGTACACCCTGGCGGTCCCCGAAGAGCTGTACAACAAAGGCCTCAAGGATTTTGCCGACATCGCCAAGTTCAAGAAGGAACTGGACGGCAAGATCTACGGCATCGAACCGGGCAACGACGGCAACCGCTTGATCCAGAGCATGATCGACAAGAACGCCTTCGGCCTCAAGGACGCCGGCTTCAAGGTGGTCGAATCCAGCGAAGCCGGCATGCTGTCGCAGGTCGATCGCGCCCAGCGCCGTAACACCGCCGTGGTGTTCCTGGGCTGGGAACCGCACCCGATGAACACCCGCTTCAAGATGAAATACCTCACCGGTGGCGATGAATTCTTCGGTCCGAACTTCGGCCAGGCAACCATCTACACCAACACGCGCAAGGGCTATGTCCAGGAATGCGGCAACGTCGGCCAACTGTTGAAAAACCTGGTCTTCACCCTCGACATGGAAAGCACGCTGATGGGCAACGTGCTGGACGACAAGATGAAGCCTGAAGCCGCCGCCAAGGCCTGGTTGAAGAAAAACCCACAAGTACTCGATACCTGGCTCGCCGGCGTCACCACCGTTGACGGTAAACCTGGCCTGGAGGCCGTGAAAGCCAAGCTCGCGCAGTAA	MKGSTPLLLAAMLSLPMLANAAEPAQCSTVNFSDVGWTDITVTTATTSVVLDALGYKTKTTMISVPVTYKSLADGKNMDVFLGNWMPTMENDIKAYREAGTVETVRANLENAKYTLAVPEELYNKGLKDFADIAKFKKELDGKIYGIEPGNDGNRLIQSMIDKNAFGLKDAGFKVVESSEAGMLSQVDRAQRRNTAVVFLGWEPHPMNTRFKMKYLTGGDEFFGPNFGQATIYTNTRKGYVQECGNVGQLLKNLVFTLDMESTLMGNVLDDKMKPEAAAKAWLKKNPQVLDTWLAGVTTVDGKPGLEAVKAKLAQ	PGPT0013640_2114	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
D1-36_04748	846	opuAB_2	COG4176	Glycine betaine transport system permease protein OpuAB	ATGCTTATTGATCAGAAAATACCCTTGGGCCAGTACATCGCGGGCTTTGTCGAATGGTTGACGCAAAACGGCGCCGACACCTTCGATGCAATCGCAATGTTTCTGGAAACGATGATTCACGGCGTGACGTTTGCGCTGACCTGGTTCAATCCCCTGGTGCTTATCGGCCTCATCGCGCTACTGGCGCACTTCATCCAGCGCAAATGGGGCCTGACCGTTTTTGTTATCGCGTCCTTCTTGTTGATCCTCAACCTGGGTTACTGGCAAGAGACCATGGAAACCCTCGCCCAGGTGCTGTTCGCGACCCTGGTCTGCGTGCTTATCGGTGTGCCGCTGGGCATTGTTGCCGCGCACAAGCCGATGTTCTACACCATGATGCGTCCGGTGCTCGATCTGATGCAGACCGTACCGACCTTCGTCTACCTCATTCCTACCCTGACCCTGTTCGGTCTGGGTGTGGTCCCGGGCCTGATCTCCACGGTGGTATTCGCGATCGCCGCGCCCATCCGCCTGACCTACCTGGGCATCCGCGACGTTCCGGACGAACTGATGGACGCCGGTAAAGCCTTCGGCTGCTCCCGGCGCCAGCTCCTGTCGCGCATCGAACTGCCTCACGCCATGCCGAGCATCGCCGCCGGAATCACCCAATGCATCATGTTGTCGCTGTCGATGGTGGTCATCGCGGCACTGGTCGGTGCCGACGGCCTGGGCAAACCCGTGGTCAACGCATTGAACACCGCTGATATCGCCCTGGGCTTCGAAGCCGGCCTGGCGATCGTATTGCTGGCGATCATGCTCGACCGAATCTGCAAACAACCCGACGCCAAAGTAGGGGGTGACGCATGA	MLIDQKIPLGQYIAGFVEWLTQNGADTFDAIAMFLETMIHGVTFALTWFNPLVLIGLIALLAHFIQRKWGLTVFVIASFLLILNLGYWQETMETLAQVLFATLVCVLIGVPLGIVAAHKPMFYTMMRPVLDLMQTVPTFVYLIPTLTLFGLGVVPGLISTVVFAIAAPIRLTYLGIRDVPDELMDAGKAFGCSRRQLLSRIELPHAMPSIAAGITQCIMLSLSMVVIAALVGADGLGKPVVNALNTADIALGFEAGLAIVLLAIMLDRICKQPDAKVGGDA	PGPT0013635_2240	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
D1-36_04749	1179	btuD_9		Vitamin B12 import ATP-binding protein BtuD	ATGAGCATAATCCGCTTCGAAGAGGTCGACGTGATCTTCTCCAAAGATCCACGCGAAGCCCTCAAATTGCTCGACAAGGGCATGACGCGCAACGAAATCCTGAAGAAGACCGGGCAGATCGTCGGCGTGGAAAAAGCCAGCCTCGACATCGAAAAAGGCGAGATCTGCGTGCTGATGGGCCTTTCCGGCTCCGGCAAATCCAGCTTGCTGCGTTGCATCAACGGTTTGAACACCGTGAGTCGCGGCAAATTGTTCGTCGAGCACGAAGGCCGGCAGATCGATATCGCCTCCTGCACTCCCGCCGAACTGAAGATGATGCGCACCAAGCGCATCGCCATGGTGTTCCAGAAGTTCGCCCTGATGCCTTGGCTGACGGTGCGCGAAAACATCAGCTTCGGCCTGGAAATGCAGGGCCGGCCGGAGAAGGAACGCAAGAAGCTGGTGGATGAAAAACTCGAGCTGGTGGGCCTGACGCAGTGGCGCAACAAGAAGCCCGACGAGCTGTCTGGCGGCATGCAGCAACGGGTCGGCCTGGCCCGGGCCCTGGCGATGGACGCCGACATCCTGTTGATGGACGAACCATTCTCTGCCCTCGACCCGCTGATCCGCCAAGGCCTGCAGGACGAACTGCTGGAACTGCAACGCAAGCTGAGCAAGACCATCGTGTTCGTCAGCCACGACCTGGACGAAGCCCTGAAGCTGGGCAGCCGTATCGCGATCATGAAAGACGGCCGCATCATCCAGTACAGCAAGCCGGAACAGATCGTGTTGAACCCGGCGGACGACTATGTGCGCACGTTCGTCGCCCATACCAATCCGCTCAATGTGCTCTGCGGCCGCAGCCTGATGCGCACCCTGGACAACTGCAAGCGCATCAACGGCTCGGTGTGCCTGGATCCGGGCGGCGACTCCTGGCTTGACCTGGCCGAAGGCAACACCATCAAGGGCGCCCGGCAGAACGGCGCCGCCTTGGACCTGCAGAACTGGGCGCCAGGGCAGTCCGTCGAAGGCTTGGGGCGTTTCCCGACCTTGGTCGACTCCAGCATCGGCATGCGCGACGCGTTGCAGATCCGCTACCAGACCGGCAACAAACTGGTGCTTCACGATAATCAGCAAGTCGTCGGCATCCTCGGCGACAGCGAGCTGTATCACGCCCTGCTCGGCAAGAACCTGGGCTAA	MSIIRFEEVDVIFSKDPREALKLLDKGMTRNEILKKTGQIVGVEKASLDIEKGEICVLMGLSGSGKSSLLRCINGLNTVSRGKLFVEHEGRQIDIASCTPAELKMMRTKRIAMVFQKFALMPWLTVRENISFGLEMQGRPEKERKKLVDEKLELVGLTQWRNKKPDELSGGMQQRVGLARALAMDADILLMDEPFSALDPLIRQGLQDELLELQRKLSKTIVFVSHDLDEALKLGSRIAIMKDGRIIQYSKPEQIVLNPADDYVRTFVAHTNPLNVLCGRSLMRTLDNCKRINGSVCLDPGGDSWLDLAEGNTIKGARQNGAALDLQNWAPGQSVEGLGRFPTLVDSSIGMRDALQIRYQTGNKLVLHDNQQVVGILGDSELYHALLGKNLG	PGPT0013630_1422	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
D1-36_04750	1593	betT1	COG1292	Osmo-independent choline transporter BetT1	ATGAGTTCTGCCTTGCTAATAAAGACCCCGCCGCAGAAGGTGACGGTCAACGGTTGGGTGTTCTACACCTCCACCGCGCTGATTCTGTTGCTGACCGCCATTCTGATCATCGCCCCGCAGGAGGCCGGCCGTCTGCTCGGCATTGCCCAGGCGTGGTTGTCCCGCAGCTTCGGCTGGTACTACATGGTGGTCATCGCTGCCTATCTGGTGTTTGTGGTCGGCCTGGCATTTTCCTCCTATGGCAAGCTCAAGCTGGGCGGCAAGGACGATACGCCGGACTTCAGCTACGGCGCCTGGGCCGGGATGCTGTTTTCGTCGGGCATCGGCATTTCATTGCTGTACTTCGGCGCATCCGAGCCGCTGGACCATTTCTTCAACCCCCCTGAAGGCGTGGCCGGCAGCCAGATGGCCGCGCGCCAGGCCGTGCAATTGACGTTCTTGCACTGGGGCCTGCATGGTTGGGCGATCTATGCCCTGGTGGGCTTGGCCGTGGCGTATTTCGCCTATCGGCACAACCAGCCGCTGGCGCTGCGCTCGGCCCTGTATCCATTGGTGGGCGAGCGCTGGGTCAAGGGCGCGGCCGGCCATGCGGTGGACGGTTTCGGCATGTTCGTGACGTTGCTGGGGCTGGTGACCAACCTGGGGATCGGTTCGCTGCAAGTCGCGTCCGGTTTGGAAAACCTGTTTGGCATCGAGCACAGCAACACCAATTTGCTGATCGTGATCATCGTGATGAGCACCGTGGCGACTATCGCCGCCGTGTCCGGCGTGGAAAACGGCATCCGCCGGTTGTCCAACCTGAACATCGTGTTGTTCAGCGGCTTGCTGATTTTCGTGTTGCTGTTCGGTCCGACCCTGCACCTGCTCAACGGTTTCGTGCAGAACATCGGCGACTACCTCAACGGCGTGGTGCTCAAGACATTCGACCTGTACGTCTATGCCGACGACACCGCGAAATCGGGCCGTTGGATGGGCTTGTGGACCCTGTTCTACTGGGCCTGGTGGATCTCCTGGGCGCCTTTTGTCGGCATGTTCATCGCGCGCATTTCCCGTGGCCGCACCGTGCGTGAGTTGGTGGCGGGCGTGTTGCTGATTCCCCTGGGCTTCACCCTGGCCTGGTTGTCGATCTTCGGTAACTCGGCCCTGGACCTGGTGATGAACCACGGCGCGGTCGAGCTGGGCAAGACGGCGTTGACGCAGCCGTCGATGTCGATCTATCAGCTGCTCGAATACTATCCGGCGTCGAAGGTCGTGATCGGCGTGTCGATCTTCGTTGGTTTCGTCCTGTTCCTGACCCCGGCTGACTCCGGCGCGGTGATGATGGCGAACCTTTCGTGCCAGGGCGGCAACGTTGACGAAGACGCGCCGCATTGGCTGCGGATCTTCTGGTCGGTGGTGATCACGCTGGTGACCATCGGCCTGTTGTTCGCGGGCAACTTCGAGGCGATGCAAACCATGGTGGTGTTGGCTGGCCTGCCGTTCTCGGTGGTGCTGGTATGCTTCATGTTCGGGCTGCACAAGGCCATGCGCGAGGATGTGCGGGTTGAGCAGGAACGGGCGGAGTTGGCGGCGCTGGGTCGGGTCTTTAGCTGA	MSSALLIKTPPQKVTVNGWVFYTSTALILLLTAILIIAPQEAGRLLGIAQAWLSRSFGWYYMVVIAAYLVFVVGLAFSSYGKLKLGGKDDTPDFSYGAWAGMLFSSGIGISLLYFGASEPLDHFFNPPEGVAGSQMAARQAVQLTFLHWGLHGWAIYALVGLAVAYFAYRHNQPLALRSALYPLVGERWVKGAAGHAVDGFGMFVTLLGLVTNLGIGSLQVASGLENLFGIEHSNTNLLIVIIVMSTVATIAAVSGVENGIRRLSNLNIVLFSGLLIFVLLFGPTLHLLNGFVQNIGDYLNGVVLKTFDLYVYADDTAKSGRWMGLWTLFYWAWWISWAPFVGMFIARISRGRTVRELVAGVLLIPLGFTLAWLSIFGNSALDLVMNHGAVELGKTALTQPSMSIYQLLEYYPASKVVIGVSIFVGFVLFLTPADSGAVMMANLSCQGGNVDEDAPHWLRIFWSVVITLVTIGLLFAGNFEAMQTMVVLAGLPFSVVLVCFMFGLHKAMREDVRVEQERAELAALGRVFS				NA	NA	NA	NA	NA
D1-36_04751	621	betI_2	COG1309	HTH-type transcriptional regulator BetI	ATGCCCAAGGTCGGTATGCAACCCATCCGCCGCCAGCAATTGATCGAAGCCACTTTGCAGGCTGTCGATCAGGTCGGGATGGGGGACGCCAGCATTGCGCTGATCGCCCGTTTGGCCGGTGTTTCGAACGGCATCATCAGTCACTACTTTCAGGACAAGAATGGCCTGATCGCGGCTACGGCCCAGTACCTGATGACTGTCCTGAGCGAGAACGTCACCGCGCGTCGTCAAGCGCTGACGGACCCGAGCCCGCGAGCTCACCTGAAGGTGATCATCGAGGGCAACTTCGACGCCAGCCAGGTCAACGGCCCGGCAATGAAAACCTGGCTGGCCTTCTGGGCCACCAGCATGCATCACCCGTCATTGCACAGGTTGCAGCGGATCAACGATCACCGTCTGTATTCCAACCTGTGTTGCCAGTTCCGCCGCGTGTTGCCTGTCGACCAGGCACGCAGCGCGGCCCGGGGCCTGGCCGCTCTGATTGACGGTTTGTGGCTGCGCGGAGCGCTGTCGGGAGACGCGTTCGACACCGCCCAGGCACATCGGATCGCGTACGAATACATGGATTTCCAACTGGCCAAGGCAGGAGCGCCAGAGCACACAGAACCGCTCGACTCCTGA	MPKVGMQPIRRQQLIEATLQAVDQVGMGDASIALIARLAGVSNGIISHYFQDKNGLIAATAQYLMTVLSENVTARRQALTDPSPRAHLKVIIEGNFDASQVNGPAMKTWLAFWATSMHHPSLHRLQRINDHRLYSNLCCQFRRVLPVDQARSAARGLAALIDGLWLRGALSGDAFDTAQAHRIAYEYMDFQLAKAGAPEHTEPLDS	PGPT0013625_303	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013625-betI-K02167	NA	NA
D1-36_04752	1473	betB	COG1012	NAD/NADP-dependent betaine aldehyde dehydrogenase	ATGGCCCGTTTCGAACTGCAAAAACTCTACATCGATGGCGCGTACAGCGATGCCAGCGGCGACGCCACTTTCGAAGCCATCAACCCGGCGAACGGTGAAGTACTCGCCCTGGTGCAGCGCGCAACGAAAGAAGACGTCGAGCGTGCCGTGGTCAGCGCCGAAAAAGGCCAGAAAGTCTGGGCGGCGATGACCGCCATGCAGCGCTCGCGCATCCTGCGTCGCGCCGTGGACATCCTGCGCGAACGCAACGATGAGCTCGCGGCCCTGGAAACCCTGGACACCGGCAAGGCCTATTCCGAAACCCGCTACGTCGACATCGTCACCGGCGCCGACGTGCTGGAATATTACGCAGGCCTGGTGCCCGCTATCGAAGGCGAACAGGTTCCGCTGCGCACCACGTCGTTCGTCTACACCCGCCGCGAGCCCCTGGGCGTCGTCGCCGGTATCGGCGCATGGAACTACCCGATCCAGATCGCCCTGTGGAAATCTGCCCCGGCCCTGGCCGCTGGCAACGCGATGATCTTCAAGCCCAGCGAAGTCACCTCGCTGACCACCCTGAAACTGGCCGAGATCTACACCGAAGCCGGCGTTCCAGCAGGCGTGTTCAACGTGCTGACCGGCAGCGGCCTTGAAGTCGGCACCTGGCTGACCGAGCACCCGCGCATCGAGAAAATCTCCTTCACCGGCGGCACCGACACCGGCAAGAAGGTCATGGCCAGTGCCTCGAGCTCTTCGCTCAAGGACGTGACCATGGAGCTGGGCGGCAAGTCGCCGCTGATCATCTTCGACGACGCCGACCTGGACCGCGCCGCCGACACCGCGATGATGGCCAACTTCTACAGCTCCGGCCAAGTCTGCACCAACGGCACCCGGGTGTTCGTGCCGAGCCACCTGAAGGCTGCCTTCGAAGCCAAGATCGCCGAGCGCGTGGCGCGCATCCGCATCGGCAACCCGGAAGACGAGAACACCAACTTCGGCCCGCTGGTGAGCTTCGCCCACATGGAAAACGTGCTGGGCTACATCGATAAAGGCAAGGCCGAAGGCGCGCGCCTGCTGTGCGGCGGCGGTCGCCTGACGGAAGGCGAACTGGCCAAGGGCGCGTTCGTGGCCCCGACCGTGTTCACCGATTGCACCGATGACATGACCATCGTGCGTGAAGAAATCTTCGGCCCGGTGATGAGCATCCTCACCTTTGATACCGAAGAAGAAGTGATCCGCCGCGCCAACGACACCGACTTCGGCCTGGCCGCCGGTGTCGTGACCCGCGACCTGAACCGTGCGCACCGCGTGATCCACCAGCTCGAAGCGGGCATCTGCTGGATCAACGCCTGGGGCGAATCGGCGGCCGAAATGCCGGTCGGTGGCTACAAGCAATCGGGCGTGGGCCGGGAGAATGGGATCAGCTCGCTGACCAACTACACGCGCATCAAGTCGGTGCAGGTCGAAATGGGCGATTACACGTCGGTGTTCTGA	MARFELQKLYIDGAYSDASGDATFEAINPANGEVLALVQRATKEDVERAVVSAEKGQKVWAAMTAMQRSRILRRAVDILRERNDELAALETLDTGKAYSETRYVDIVTGADVLEYYAGLVPAIEGEQVPLRTTSFVYTRREPLGVVAGIGAWNYPIQIALWKSAPALAAGNAMIFKPSEVTSLTTLKLAEIYTEAGVPAGVFNVLTGSGLEVGTWLTEHPRIEKISFTGGTDTGKKVMASASSSSLKDVTMELGGKSPLIIFDDADLDRAADTAMMANFYSSGQVCTNGTRVFVPSHLKAAFEAKIAERVARIRIGNPEDENTNFGPLVSFAHMENVLGYIDKGKAEGARLLCGGGRLTEGELAKGAFVAPTVFTDCTDDMTIVREEIFGPVMSILTFDTEEEVIRRANDTDFGLAAGVVTRDLNRAHRVIHQLEAGICWINAWGESAAEMPVGGYKQSGVGRENGISSLTNYTRIKSVQVEMGDYTSVF	PGPT0007165_1424	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0007165-betB_homologous-K00130	NA	NA
D1-36_04753	1704	betA	COG2303	Oxygen-dependent choline dehydrogenase	ATGTCCCAAGAATTCGATTACATCATCATCGGTGCCGGCTCGGCCGGTAACACCCTGGCCACCCGCCTGACCGAAGACGAAGGCGTTACCGTCTTGCTGCTCGAAGCCGGCGGCCCGGACTATCGCCTCGACTTCCGTACCCAGATGCCCGCCGCCCTGGCATTTCCTCTCCAGGGTCGCCGCTACAACTGGGCCTACCAGACCGATCCGGAGCCGCACATGAACGGCCGTCGCATGGAATGCGGTCGCGGCAAGGGCCTGGGTGGTTCTTCGCTGATCAACGGCATGTGCTACATCCGCGGTAACGCGCTGGACTACGACAACTGGGCCAAGCTGCCCGGCCTGGAAGACTGGACCTACCTCGATTGCCTACCGTATTTCCGTAAAGCCGAAACCCGAGACATCGGCCCGAACGACTACCATGGCGGCGACGGCCCGGTCAGTGTGACCACGCCCAAGCCTGGCAACAATCCGCTGTTCCACGCCATGGTCGAAGCCGGCGTTCAGGCCGGTTACCCGCGTACCGAGGACCTCAACGGCTTCCAGCAGGAAGGTTTCGGCCCGATGGACCGTACCGTCACGCCCAATGGCCGTCGCGCCAGTACCGCGCGCGGTTACCTGGACGTCGCCAAGAAGCGCTCGACGCTGACCATCGTCAGCCACGCGCTGGCCGACAAGATCCTCTTCGAAGGCAAACGCGCGGTCGGCGTGCGTTACCTGGTGGGCGCCGCCGAAGAACGCGTCGAGGCCCGGGCGCGCAAGGAAGTGCTGCTGTGCTCCGGCGCCATCGCCTCGCCGCAGATCCTGCAACGCTCCGGCGTCGGCCCTGCCAAGCTGCTGGAAAACCTCGACATCCCGGTGGTCCACGACCTGCCTGGCGTCGGTGAAAACCTGCAGGACCACCTTGAGCTGTACCTGCAGTACGCCTGCACTCAACCGGTCTCGCTGTACCCGTCGCTGCTCTGGTACAACCAGCCGGCGATCGGTGCCGAGTGGCTGTTCAACGGCACTGGTATCGGCGCCAGCAACCAGTTCGAGGCCGGCGGCTTCATTCGTACGCGCCCCGAGTTCGATTGGCCGAACATCCAGTACCACTTCCTGCCGGTGGCGATTAACTACAACGGCAGCAACGGCGTGAAAGAGCACGGTTTCCAGGCGCACATGGGCTCCATGCGTTCGCCAAGCCGTGGCCGGATCCAGGCCAAGTCCAAGGACCCGCGCCAGCACCCGAGCATCCTGTTCAACTACATGGCCACCGAGCAGGACTGGCAGGAATTTCGCGACGGCATCCGCCTGACCCGCGAGATCATGCAGCAGCCGGCGCTCGATCCGTTCCGTGGTCGCGAAATCAGCCCGGGCATCGAGGTGCAGACGGACGAGCAATTGGACCAGTTCATCCGTGAGCACGCCGAAACCGCGTTCCACCCATCCTGCTCGTGCAAGATGGGCACCGATGATATGGCCGTGGTGGATGGCGAAGGCCGCGTGCACGGCATGGAAGGGTTGCGCGTGGTCGACGCCTCGATCATGCCGATCATCACCACCGGCAACCTGAACGCGCCGACGATCATGATCGCCGAGAAAATCGCCGACAAGATCCGTGGCCGCAAGCCTTTGCCGCGCAGCACCGCACCTTACTACGTCGCCGGCGACGCGCCGGTGCGCGGCAAGCCGTTGCGTGAAGTGGCGACGGCCGCGCAGTAA	MSQEFDYIIIGAGSAGNTLATRLTEDEGVTVLLLEAGGPDYRLDFRTQMPAALAFPLQGRRYNWAYQTDPEPHMNGRRMECGRGKGLGGSSLINGMCYIRGNALDYDNWAKLPGLEDWTYLDCLPYFRKAETRDIGPNDYHGGDGPVSVTTPKPGNNPLFHAMVEAGVQAGYPRTEDLNGFQQEGFGPMDRTVTPNGRRASTARGYLDVAKKRSTLTIVSHALADKILFEGKRAVGVRYLVGAAEERVEARARKEVLLCSGAIASPQILQRSGVGPAKLLENLDIPVVHDLPGVGENLQDHLELYLQYACTQPVSLYPSLLWYNQPAIGAEWLFNGTGIGASNQFEAGGFIRTRPEFDWPNIQYHFLPVAINYNGSNGVKEHGFQAHMGSMRSPSRGRIQAKSKDPRQHPSILFNYMATEQDWQEFRDGIRLTREIMQQPALDPFRGREISPGIEVQTDEQLDQFIREHAETAFHPSCSCKMGTDDMAVVDGEGRVHGMEGLRVVDASIMPIITTGNLNAPTIMIAEKIADKIRGRKPLPRSTAPYYVAGDAPVRGKPLREVATAAQ	PGPT0013615_1342	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013615-betA|CHDH-K00108	NA	NA
D1-36_04754	1443			hypothetical protein	ATGTTCGACTTCCAACCCCAGCTCAAGCAGCGTTTCGCTGCCTTGCGCACGGGCGCTGAGTTCTTTTCCCTGCGTTACGTACGCGAGTCCGGCCAACATTTGTCGGTGCGCAAGAACGTCGCCGAACCTCCGAGCCTGAGCCACGACGAAGGCGCCATGCTCACCGTGCGGGTCAATGGCGTCGAAACCTATGCGGCCACTAACGACCTTTCCCTGGCCGGCCTGCAAGCGGCGCTGGAGCGGGCCGAGCAATACGCTCGCCAGCTCAAGCCCCACGCCCTGCTGGACCTGCGCGACCAACCGGTGTCCAGCGACCGCGCCGACTACTTCTCGCCGCATTTCGACCAGGCCTTCCCGCCCCTGAGCGATTGCTACCAATTGCTCGGCGACGAATCGGCCGCGGTGCCCGCCGACGAGCGCCTGGTGAACTGGCAGGCCAGCATCGGCCTGACCCAGGTCGAGCAGATCTACCTCAACAGCGCCGGCGCTGAACTGCGCCAGGCCCAACGCTTCATCTACCCGGCCCTGGACGTCACCGCCTTCGACGGCAACGACAGCCAGACCCGCACCCTGGGCCGGGAAAATTTCGGCCAGCAAGGCGGTTTCGATGTGATCAGCCGTTGCGGCCTGATCGGCGCCGGTCCAAGGATCGCCGACCAGGCCCTGCAATTGCTCATGGCGCCCAACACGCCCCAAGGTCCCCGCGACCTGCTGCTGATGCCCGACCAGATGATGTTGCAGATCCACGAGTCCATCGGCCATCCGCTGGAACTGGACCGCATCCTCGGCGACGAGCGCAATTACGCCGGCACCAGCTTCGTCAAGACCGAGGATTTCGGCCACCTGCAGTACGGCTCCAGCCTGTTGAACGTGACCTTCGATCCGGACATTCCCGAGGAGTTGGCCAGTTACAGCCATGACGACGACGGCACGGCCGCCAGCAAGCAGTTCCTGATTCGCGAAGGCCTGTTGCTGCGCCCATTGGGCGGCGCGCTGTCGCAGTTCCGCGCCGGCCTCGACGGTGTTGCCAACAGCCGCGCCTGCGGTTGGAATCGTCCGCCCATCGACCGCATGGCAAACCTGAACATCGAGCCCGGCGACCAATCCCTGGAGCAGTTGATCCAAGGCATCGAGCATGGCGTGCTGATGCGCACCAACCGCTCCTGGTCCATTGACGACGCCCGCAACAAATTCCAGTTCGGCTGCGAATGGGGCCAGTTGATCGAGAACGGTGAGCTCAAGGGCGTAGTGAAGAACCCCAACTACCGGGGCATCTCCGCGCAGTTCTGGAAGAGCCTGCGGGCCGTGGGCGACGCCAGCACGTCCCAAGTGCTTGGCACACCGAATTGCGGCAAGGGCGAACCGAACCAGGTCATCCGCGTTGGCCATGCGTCGCCGGCCTGTGTGTTCAGCAAAGTGGATGTGTTTGGGGGAGACGCCTGA	MFDFQPQLKQRFAALRTGAEFFSLRYVRESGQHLSVRKNVAEPPSLSHDEGAMLTVRVNGVETYAATNDLSLAGLQAALERAEQYARQLKPHALLDLRDQPVSSDRADYFSPHFDQAFPPLSDCYQLLGDESAAVPADERLVNWQASIGLTQVEQIYLNSAGAELRQAQRFIYPALDVTAFDGNDSQTRTLGRENFGQQGGFDVISRCGLIGAGPRIADQALQLLMAPNTPQGPRDLLLMPDQMMLQIHESIGHPLELDRILGDERNYAGTSFVKTEDFGHLQYGSSLLNVTFDPDIPEELASYSHDDDGTAASKQFLIREGLLLRPLGGALSQFRAGLDGVANSRACGWNRPPIDRMANLNIEPGDQSLEQLIQGIEHGVLMRTNRSWSIDDARNKFQFGCEWGQLIENGELKGVVKNPNYRGISAQFWKSLRAVGDASTSQVLGTPNCGKGEPNQVIRVGHASPACVFSKVDVFGGDA				NA	NA	NA	NA	NA
D1-36_04755	1338			hypothetical protein	ATGAGCACCGTCGATAATCAAGCTGGAGCGTTCAAGGCGCTGGTCGATTGGCTGCGCGACGCGTTGCGCGAACCTGAGCAATTCACCCTCGGCTACGCCGCCGAGTCGTCGGCCTTCGTGCGCTTCAACCACGGCAAGGTCCGTCAGGCCGGCCAGGTGCAACAGGCCAACGTCAGTTTCAAGTTGATCAATGACGGCCGTCATGCCGATCTGCAGATCACCTTGTCCGGCGACACCGAGACCGACCTGCGACGCTTGGCCGACGGGTTGCAACAGTTGCGCGAGACGTTGCCGCTGCTGCCAGCCGATCCCTACCTGCTGCTCAACCACAACCATTGGCAGAGCAGCAACGTGCAGGACCATCCCCTGCCGGACACCGAGCAAGCCGTCGCTGAAATCAGCCGTGCCGCCGAGGGCCTGGACTTGGTCGGCTTTTACGCCGCAGGCCCCATCAGCCGTGGCTTCGCCAGTTCCTCGGGAGCGTTCGGCTGGCATCAGGCCAACAGTTTCAACTTCGACTTCAGCTTGTTCCATGAAAACGGCCAGGCCGTGAAGGCCAGCTACGCGGGACACGCCTGGAGCAGCGAAGGATTCGCCCAACGTTTCGAGCAGGCACGCCAGCAGCTGCAATTCCTCGGCCTGCCCCTACGTACGCTGCCGCCGGGCGAATACCGCGCCTACCTGGCGCCGGCCGCGCTGGAAGAAATCATGGGCATGCTCAGTTGGGGCGGATTCTCGGCCCGGGCGATCGCCAGCAAGCAAAGCCCGTTGCAGAAATTCTACGCCGGCGAAGCCCACTTCAGTCCCAACGTGTGGTTGACGGAGCAGGTCAGCGGCTCATTGAGCCCGGCATTTTCCGACGAAGGTTATCCCCGCGATGACCTGGGGCTGATCGCCAAGGGCATGGCCAACGCGCAACTGGTCAACTCCCGCAGCGCCGCCGAATACGGCCTCGCCGCCAACGGCGCCAGCAGCTATGAATACCCCACGGCGCTGGACATGCAGGGCGGGCAATTGGAACAGAAGTACATCCTCGAGCAGCTCGGCACCGGGCTGTACATCAGCAATCTCTGGTACCTGAACTACTCCGACCAACCGGCGGCGCGTCTGACCGGCATGACCCGCTTCGCCACGTTCTGGGTCGAGAACGGTCAGATCCAGGCGCCGGTGAGCACGATGCGCTTCGACGACAGCGTCTACAGTTTGCTCGGCTCGCAACTCGAAGCGCTGACCCGGGAGCGGGAACTTCTGCTTTCGGCCAGCACCTACAGCCAGCGGGCCACGGCCTCGATGTTGCTGCCGGGGGCGTTGGTCAAGAAGCTCACGTTGACGCTATAA	MSTVDNQAGAFKALVDWLRDALREPEQFTLGYAAESSAFVRFNHGKVRQAGQVQQANVSFKLINDGRHADLQITLSGDTETDLRRLADGLQQLRETLPLLPADPYLLLNHNHWQSSNVQDHPLPDTEQAVAEISRAAEGLDLVGFYAAGPISRGFASSSGAFGWHQANSFNFDFSLFHENGQAVKASYAGHAWSSEGFAQRFEQARQQLQFLGLPLRTLPPGEYRAYLAPAALEEIMGMLSWGGFSARAIASKQSPLQKFYAGEAHFSPNVWLTEQVSGSLSPAFSDEGYPRDDLGLIAKGMANAQLVNSRSAAEYGLAANGASSYEYPTALDMQGGQLEQKYILEQLGTGLYISNLWYLNYSDQPAARLTGMTRFATFWVENGQIQAPVSTMRFDDSVYSLLGSQLEALTRERELLLSASTYSQRATASMLLPGALVKKLTLTL				NA	NA	NA	NA	NA
D1-36_04756	1428	hsrA		putative transport protein HsrA	ATGCCCAACCGCGCTCCCCTCGACGCCGTCACCGCCCGCTGGCTTCCGTGGGTGGTGGCGATTGCCTTCTTCATGCAGTCCCTGGATGGCACCATCCTCAACACCGCCCTGCCCGCCATGGCCAGCGACCTGGCGGAAAACCCGCTGCGCATGCAAGGCGTGATCATTGCCTACATGCTCACCGTGGCCTTGCTGATCCCGGCCTCGGGCTGGATCGCCGACCGCTTCGGCACCAAGAAGATTTTCTTCGGCGCGATCCTGCTGTTCAGCTTCGGCTCGCTGCTGTGCGCCTTGTCTAACTCGTTGAGCATGTTGATCGGCGCACGGGTCGTCCAAGGCTTGGGCGGTGCGCTGATGTTGCCGGTGGGCCGGCTGGTGGTACTGCGGGCTTACCCGCGCTCGGAGTTGGTGCGAATCATGGGCTTCATCACCATCCCCGGGCTGCTCGGCCCGCTGATCGGCCCGACCATGGGCGGCTGGATGGTGGAGTACATGACCTGGCACTGGATTTTCCTCATCAATCTGCCGGTGGGCGTGGTCGGTTGTTACGCGGTATGGAAATTCATCCCGGACCTGCGCGGCACTGAGCGCACGCGCTTCGATGGCGTGGGCTTTCTGTTGTTCGGCGCGGCGATGGTGCTGATCACCGTCGCCATGGAGGGGCTGGGTGAACTGCACCTGCCGCACCTGCGGGTGATGCTGCTGCTGTTTGGCGGCATGGCTTGCCTGGCGGCTTACTGGGTGCGCGCCGGGCACGTCGAGAACGCGCTGTTTCCACCGTCGCTGTTCAAGACCCGGACCTTCGCGGTGGGCATCCTCGGCAACCTGTTCGCGCGCCTGGGCAGCGGTGCCCTGCCGTTCCTGGTGCCGTTGCTGTTGCAAGTCGCCCTGGGTTATTCACCGTCCCAGGCGGGGATGAGCATGCTGCCCCTGGCGGCCGCCGCGATGGTCGCGAAGTCCGTGGCCCGACCGCTGATCGAACGCTTTGGCTACCGCGCCGTGTTGACCAGCAACACCCTGGCCCTGGGCCTGATGCTGGCGAGCATGGGCTTGGTCAGCGAACAGACGCCGTACTGGCTGCTGCTGGCGCACCTGGCAATGCTGGGAGCGATCAACTCGCTGCAATTCACCGCGATGAACACCGTGACCCTGATCGACCTGGACGACGCCAGCGCCAGCAGTGGCAACAGCCTGCTGTCGGTGGTGGCGCAACTGTCCCTGAGCCTGGGCGTGGCTTGTGCAGGTGCCCTGCTGGGAGGTTTTACCGCCCAGGTCGGCAACGACGGCGTGGACACGGTGCTGGGCGCGTTTCAATTGACTTTTGTGACGGTGGGGATCATGGCGATGCTGGCGGCGACGATCTTTTCCCAGCTGTCGAAGCAGGATGGGCGACGGGTCAAGCGGCCGGATGAGCATATCGAGCACTAG	MPNRAPLDAVTARWLPWVVAIAFFMQSLDGTILNTALPAMASDLAENPLRMQGVIIAYMLTVALLIPASGWIADRFGTKKIFFGAILLFSFGSLLCALSNSLSMLIGARVVQGLGGALMLPVGRLVVLRAYPRSELVRIMGFITIPGLLGPLIGPTMGGWMVEYMTWHWIFLINLPVGVVGCYAVWKFIPDLRGTERTRFDGVGFLLFGAAMVLITVAMEGLGELHLPHLRVMLLLFGGMACLAAYWVRAGHVENALFPPSLFKTRTFAVGILGNLFARLGSGALPFLVPLLLQVALGYSPSQAGMSMLPLAAAAMVAKSVARPLIERFGYRAVLTSNTLALGLMLASMGLVSEQTPYWLLLAHLAMLGAINSLQFTAMNTVTLIDLDDASASSGNSLLSVVAQLSLSLGVACAGALLGGFTAQVGNDGVDTVLGAFQLTFVTVGIMAMLAATIFSQLSKQDGRRVKRPDEHIEH	PGPT0029180_246	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029180-mdtD-K18326	NA	NA
D1-36_04757	1386	dbpA	COG0513	ATP-dependent RNA helicase DbpA	GTGACCACCATCGCCACCGCTTTTAATACTTTGCCGTTGTCCGCCGCCATGCTGGCTAACCTCGAATCACTCGGTTATGCCCAGATGACGCCGATCCAGGCGCAAAGCTTGCCGGTGATCCTCAAGGGCATGGACCTGATCGCCCAGGCCAAGACCGGCAGCGGCAAGACCGCGGCCTTCGGCATCGGCCTGCTGAACCCGATCAACCCACGCTATTTCGGCTGCCAGGCCCTGGTGATGTGCCCGACCCGCGAGCTGGCCGACCAGGTCGCCAAGGAAATCCGCCGCCTGGCCCGCGCCGAAGATAACATCAAGGTCCTGACTCTGTGCGGCGGCGTGTCCTTCGGCCCGCAGATCGCCTCCCTCGAACACGGCGCCCACATCATCGTCGGCACGCCAGGGCGTATCCAACAGCACCTGCGCAAGGGTTCGCTGGTGCTCGATGGCCTCAACACACTGATTCTCGACGAAGCCGACCGCATGCTCGACATGGGCTTCTACGACGCCATCGAAGACATCATCCAGCAGACCCCGGAACGCCGCCAGACGCTGTTGTTCTCCGCGACCTACCCGGTGGGCATCAAGCAACTTGCTTCCAAATTCATGCGCGACCCGCAGCAGGTGAAGGCCGAAGCGCTGCACTCCGACGCGCAGATCGAACAGCGGTTCTACGAGATTTCTCCCGAGGAGCGCATGGACGCGGTGGTCAAGGTCCTGGCGCATTTCCGTCCGGCGTCTTGCGTGGCGTTCTGCTTCACCAAGCAGCAGGTCCAGGAAACCGTCGACCATCTGACGGCCAAGGGCATCTCCGCCGTCGGCCTGCACGGCGACCTGGAACAGCGCGACCGCGACCAGGTGTTGGCAATGTTCGCCAACCGCAGCACCTCGGTGCTGGTGGCCACCGACGTCGCGGCCCGCGGCCTGGACATCGATGCCCTGGACATGGTGATCAACGTCGAACTGGCAAGGGATTCGGAAATCCATATCCACCGCGTCGGCCGCACCGGTCGCGCCGGTGAGAAAGGCATCGCCATCAGCCTCGTGGCGCCCTCCGAAGCCCATCGCGCCCAGGCCATCGAGCAACTGCAGAAATCGCCGTTGAACTGGGACCAACTGGACAACCTCAAGCCTCAGGGAGGCGGCCCGTTGCTGCCGGCCATGAGCACCCTGTGCATCGGCGCCGGGCGCAAGGACAAAGTCCGCCCCGGTGACATCCTAGGCGCCCTGACCGGCGAGGCCGGCATCCCCGGCGCCCAGGTCGGCAAGATCGCAATCTTCGATTTCCAGGCCTATGTGGCCGTGGAACGCGGGATCGCCAAACAGGCGCTGCAACGCCTGAACGATGGCAAGATCAAGGGTCGGTCGTTGCGGGTGCGGATCCTCTGA	MTTIATAFNTLPLSAAMLANLESLGYAQMTPIQAQSLPVILKGMDLIAQAKTGSGKTAAFGIGLLNPINPRYFGCQALVMCPTRELADQVAKEIRRLARAEDNIKVLTLCGGVSFGPQIASLEHGAHIIVGTPGRIQQHLRKGSLVLDGLNTLILDEADRMLDMGFYDAIEDIIQQTPERRQTLLFSATYPVGIKQLASKFMRDPQQVKAEALHSDAQIEQRFYEISPEERMDAVVKVLAHFRPASCVAFCFTKQQVQETVDHLTAKGISAVGLHGDLEQRDRDQVLAMFANRSTSVLVATDVAARGLDIDALDMVINVELARDSEIHIHRVGRTGRAGEKGIAISLVAPSEAHRAQAIEQLQKSPLNWDQLDNLKPQGGGPLLPAMSTLCIGAGRKDKVRPGDILGALTGEAGIPGAQVGKIAIFDFQAYVAVERGIAKQALQRLNDGKIKGRSLRVRIL	PGPT0013740_2932	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927	NA	NA
D1-36_04758	1179		COG2081	putative protein	TTGCGCTCTACCGAAGTCGTGATCATTGGCGCTGGCGCCGCGGGGTTGATGTGTGCGCTCACCGCTGCCGCGCGCGGGCGCCAAGTGATGTTGCTGGACCACGCCAACAAGGCTGGCAAGAAAATCCTCATGTCGGGCGGTGGACGCTGCAATTTCACCAACATGTATACCGAGCCGGGCAATTTCCTTTCGCAGAACCCGCACTTCTGCAAGTCGGCCCTGGCCCGCTACACCCAGTGGGATTTCATCGCCCTGGTGGCCAAGCACGGCGTGCCCTATCACGAAAAAAAACTCGGTCAGTTGTTCTGCGACAACAAGTCCAGCGACATCCTTGGCCTGCTGCTGGATGAATGCGACCAGGCGGGCGTCAATCTGCACCTGGACACTTCCATCGAGCAGATCGAAAAGACCGACGGCGGCTACCAGTTGCAGACCACCCTCGGACCGATCGCCTGCCAGTCCCTGGTGATCGCCACCGGCGGGCTATCGATCCCGACCCTGGGCGCGACCGGTTTCGGTTATCAAGTCGCGAAGCAGTTCGGCCATCAACTGCTGCCGACCCGCGCCGGGTTGGTGCCGTTCACCATTACCGATCAACTCAAGGCCCTGTGTACCGAACTGTCGGGCACCTCGGTGGATTGCCTGGTGAGCTGCAACGACCAGAGTTTTCGCGAAAACATCCTGTTCACCCACCGCGGCCTGAGCGGTCCGGCGATCCTGCAGATTTCATCATTCTGGGAGCCAGGGGACACGGTGCAGATCAACTTGCTGCCCGACCATGACGTGCCGCAATGGCTGCAGCAGCAACAAGCCGAACGCCCCAACAGCGAGCTGAAGACCTTGCTGGGCGAGCTGTTCACCAAGAAAATGGCCAACCTGCTGGCGGACACCTGGTTCGTCTCCAAACCCATGAAGCAATACACCCACGCGGAGCTCGCCGACATCGCCGAAAAACTGGCGAGCTGGAACGTGGTGCCCGCCGGCACCGAAGGCTACCGCACCGCCGAAGTCACCCTGGGTGGCGTCGATACGCGGGAAGTCTCGTCCAAGACCATGGAATCGTTGAAAAGCCCTGGCCTGTATTTCATTGGCGAAGTGCTGGACGTCACCGGGCACCTGGGCGGGTTCAACTTCCAGTGGGCATGGGCGTCAGGGTATGCGGCGGCGCAGTACGTCTGA	MRSTEVVIIGAGAAGLMCALTAAARGRQVMLLDHANKAGKKILMSGGGRCNFTNMYTEPGNFLSQNPHFCKSALARYTQWDFIALVAKHGVPYHEKKLGQLFCDNKSSDILGLLLDECDQAGVNLHLDTSIEQIEKTDGGYQLQTTLGPIACQSLVIATGGLSIPTLGATGFGYQVAKQFGHQLLPTRAGLVPFTITDQLKALCTELSGTSVDCLVSCNDQSFRENILFTHRGLSGPAILQISSFWEPGDTVQINLLPDHDVPQWLQQQQAERPNSELKTLLGELFTKKMANLLADTWFVSKPMKQYTHAELADIAEKLASWNVVPAGTEGYRTAEVTLGGVDTREVSSKTMESLKSPGLYFIGEVLDVTGHLGGFNFQWAWASGYAAAQYV				NA	NA	NA	NA	NA
D1-36_04759	2184	yccS	COG1289	Inner membrane protein YccS	ATGTCATCGACCTCGTTTAGCCAGTCACTGCGTCGCCTTTGGGCGCTGGACAAGTTCAGTTATAGCGTGCGGGTGTTCATCGCCCTGACCGGCAGCATGGGGCTGTGCTGGTACCTGGACGAGATGGCGCTGCTGATTCCCCTGTTTTTGGGCATCATCGCCAGCGCCCTGGCCGAAACCGACGACAGCTGGCAAGGCCGCCTCAACGCACTCGCGGTGACGCTCGTGTGCTTCAGCGTCGCCGCGCTGTCGGTGGAATTGCTGTTCCCCTACCCCATCCTGTTCATCGTTGCCCTGGCCCTGGCGGCATTCGGCCTGACCATGCTCGGCGCACTGGGCGAGCGGTATGGCGCCATTGCTTCGGCGACTCTGATCCTGTCGGTCTATACCATGATCGGCGTGGACCAACGCGGTGGCGCGGTCACGGATTTCTGGCATGAACCCTTGCTTCTGGTGGCGGGCGCCGCATGGTACGGCCTGCTCTCGGTGGTGTGGCACGCGCTGTTTTCGAACCAGCCGGTGCAGCAGAGCCTGGCGCGACTTTTCCGTGAACTGGGGCGTTACCTCAAGCTCAAGTCGTCGTTGCTCGAACCGGTCCGACAATTGGACGTCGAGGCACGACGCCTGGAACTGGCCCAGCAGAACGGCCGGGTGGTCGCTGCGCTCAACAGCGCGAAGGAAATCATCCTGCACCGCGTCGGCAATGGCCGGCCGGGCTCGAAAGTCAGCCGCTACCTGAAACTCTATTTCCTCGCCCAGGACATCCACGAACGCGCGAGCTCGTCCCACTACCCCTATAACGCCCTGGCCGAGGCCTTCTTCCACAGCGATGTGCTGTTCCGTTGCCAGCGTCTGCTGCGCCAGCAAGGCAAGGCCTGCCAGGCATTGGCCGAGTCGATCCAGCTACGCCAACCGTTCGTCTACGACGACAGCTTCGCCGAAGCCTTGAATGACCTGCATGCGTCCCTTGAACACCTGCGCATCCAGAGCAACCCAGCCTGGCGTGGCTTGCTGCGCTCGCTGCGGGCGCTGTCGGTGAACCTGGGCACGATGGACCGCCTGCTCAGTGATGCGAGCAACCCCGACGCCCTGGCCGATGCCTCCGACAGCACCCTCCTCGACCGCTCGCCGCGCAACCTCAAGGACGTCTGGCTGCGCCTGCGCACACAGCTCACGCCCACTTCGCTGTTGTTTCGTCACGCCCTGCGCTTGCCCCTGGCCCTGAGCGTCGGCTACGCCATGGTGCATCTGATCCACCCTTCCCAGGGCTACTGGATCATCCTCACCACGTTGTTCGTCTGCCAACCCAATTACGGTGCCACCCGGCGCAAGCTCGGCCAGCGGATCATCGGCACCGCCATCGGCCTGACGGTGGCCTGGGCGCTGTTCGACCTGTTTCCCAACCCGCTGGTGCAATCGTGCTTCGCCATCGTCGCCGGAGTGGTGTTCTTCACCAACCGCACCACCCGCTACACCCTGGCCACCGCCGCCATCACGATCATGGTGCTGTTCTGCTTCAACCAGGTCGGGGACGGCTATGGACTGCTTCTGCCACGGTTGTTCGATACCCTGCTGGGCAGCCTGATCGCCGGGCTGGCGGTTTTCCTGTTCCTGCCCGACTGGCAAGGGCGGCGGCTGAACAAAGTCCTCGCCAATACGCTGACCTGCAACAGCATCTATCTGCGCCAGATCATGCAGCAATACGCGGCCGGCAAGCGCGACGACCTGGCCTATCGCCTGGCCCGACGCAACGCCCATAACGCCGACGCCGCGCTGTCCACGACGCTGGCGAACATGCTGATGGAGCCCGGGCACTTCCGTAAGGAAGCCGATGTCGGGTTCCGCTTCCTGGTGCTCTCCCATACCCTGCTCAGCTACCTGTCGGGCCTGGGCGCCCACCGGGGCACGGAATTGCCCACGGACGTGCGCGAGTACCTGATCGACGGCGCGGGGGTGAAACTGGCCACCAGCATCGACGAAATCGCCCAAGGCCTGGCGAGCAAGCAGCCGATTGCAATCCAGAGCGACGAGGAAGAAACCCTCGCCAGCGAGCTTGAGCAGATGCCCGATGAAATCGACGAAGGCCAGCGCCTGGTGCAGACGCAACTGGCATTGATCTGCCGCCAGCTGGGGCCGTTGCGCACCTTGGCGGCGCATTTGATCAAGGACACCAGTGAGGCTTGA	MSSTSFSQSLRRLWALDKFSYSVRVFIALTGSMGLCWYLDEMALLIPLFLGIIASALAETDDSWQGRLNALAVTLVCFSVAALSVELLFPYPILFIVALALAAFGLTMLGALGERYGAIASATLILSVYTMIGVDQRGGAVTDFWHEPLLLVAGAAWYGLLSVVWHALFSNQPVQQSLARLFRELGRYLKLKSSLLEPVRQLDVEARRLELAQQNGRVVAALNSAKEIILHRVGNGRPGSKVSRYLKLYFLAQDIHERASSSHYPYNALAEAFFHSDVLFRCQRLLRQQGKACQALAESIQLRQPFVYDDSFAEALNDLHASLEHLRIQSNPAWRGLLRSLRALSVNLGTMDRLLSDASNPDALADASDSTLLDRSPRNLKDVWLRLRTQLTPTSLLFRHALRLPLALSVGYAMVHLIHPSQGYWIILTTLFVCQPNYGATRRKLGQRIIGTAIGLTVAWALFDLFPNPLVQSCFAIVAGVVFFTNRTTRYTLATAAITIMVLFCFNQVGDGYGLLLPRLFDTLLGSLIAGLAVFLFLPDWQGRRLNKVLANTLTCNSIYLRQIMQQYAAGKRDDLAYRLARRNAHNADAALSTTLANMLMEPGHFRKEADVGFRFLVLSHTLLSYLSGLGAHRGTELPTDVREYLIDGAGVKLATSIDEIAQGLASKQPIAIQSDEEETLASELEQMPDEIDEGQRLVQTQLALICRQLGPLRTLAAHLIKDTSEA				NA	NA	NA	NA	NA
D1-36_04760	738			hypothetical protein	ATGCCGCGATTGCATCGAGCTCTTGCTTTGGTCGGACTGCTGTTGCTGAGCCACCACGCCTGCGCGCAGAAGTTGCGCCTGGTCGCGGATGCCTGGCCGCCCTTCACCGATTCGACGTTGATCAATGGCGGCTTGGCCACCGATATCGTCACCACTGCACTGGCACGGGCCGGTTATGCCAGCGACTTCGAGCAGGTGCCCTGGGCCCGGGCGATGCTGGGTATCAGTGAAGGGCGCTACGACGTGTTGATCAACGCTTGGTATGCCGAAGAGCGCACCCATGTGGGCCAGTTTTCGGCCGAATACCTGCTCAATCGCGTGCGCTTCATCAAGCGCAAGGACGCGGCCATCGAATTCGACAATCTGCAACAGCTTTACGCTTTTCCTGTCGCCGTGGTGCGCGGCTACGCCTATGCCAAGGCGTTCGACGAGGACGGGCAGATGCAGAAGGTCCCTGTGCATAACTTCGCGATGGCCGTGCGCATGGTGGCCGCCGACCGGGTGAAGCTGACCCTGGAAGACGAATACGTCGCCCGTTACTACCTGGCTCGAGAATCCCCCAAGGTGCGCAATGCCGTGGAATTCCTGCCCAAGCCCCTGAGCGAGAACAGCCTGCACATCCTGGTCAGCCTGAAGACCCCCGAGCATGAGCGGATCGTGGCCGGTTTCGATCGCGAGATTGCGGCGATGAAGGCCGATGGGAGTTATCAGCGGCTATTGAAGGCGCACGGGATGTGA	MPRLHRALALVGLLLLSHHACAQKLRLVADAWPPFTDSTLINGGLATDIVTTALARAGYASDFEQVPWARAMLGISEGRYDVLINAWYAEERTHVGQFSAEYLLNRVRFIKRKDAAIEFDNLQQLYAFPVAVVRGYAYAKAFDEDGQMQKVPVHNFAMAVRMVAADRVKLTLEDEYVARYYLARESPKVRNAVEFLPKPLSENSLHILVSLKTPEHERIVAGFDREIAAMKADGSYQRLLKAHGM	PGPT0020800_15680	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
D1-36_04761	453	elaA	COG2153	Protein ElaA	ATGGATATCGACTGGGTCTGCAAACATCACAACGACCTGAACAAGGAACAGCTGTACGCCATCCTCAAACTGCGCGCCGAGGTGTTCGTCGTAGAGCAGAACTGTGCCTATCCGGATGTCGACGGACTGGACCTTGAGGGCGACACGTGCCACCTGATGGCTTGGCGCGACAACCATCTGGTCGCCTACCTGCGCTTGCTCGATCCACATTCGCAAAACAGCGATGTGGTGATTGGTCGGGTGGTCATCGCGCCCGAAGCACGAGGCCAGGGGTTGGGACACGCGCTGATGGAACACGCCCTCAAGCAGGCGGAAAAACACTGGCCAGGTACGTCGATTTCATTGTCGGCCCAGGCGCATCTGCAAGGTTATTACGGGCGATATGGGTTTGAGGCGGTGGGCGTGGAGTACCTGGAAGATGGGATTCCACATATCGGTATGCATCGTCCCTGA	MDIDWVCKHHNDLNKEQLYAILKLRAEVFVVEQNCAYPDVDGLDLEGDTCHLMAWRDNHLVAYLRLLDPHSQNSDVVIGRVVIAPEARGQGLGHALMEHALKQAEKHWPGTSISLSAQAHLQGYYGRYGFEAVGVEYLEDGIPHIGMHRP				NA	NA	NA	NA	NA
D1-36_04762	297			hypothetical protein	ATGGACGTCAGCAAGACCAAGAGCAGCTTCTATCGTCGCCTGTATGTGGCTTACCTGATCGACAGCGACCTGGCCAGCAACATTCCCGCGCTCACCGAGGCCACCGGCATGCCACGGCGTACCGCGCAGGATACTGTCGCGGCATTGGCGGACCTGGACATCATCTGTGAGTTCGAACAGCAGCAAGGCGCGCGCAACCATGCCGGGCAGTATCGAATTCGTGATTGGGGGGCGATTGATCGGCGGTGGATCGAGCAGAACCTCGAGCGGATCAAGGCGGTGCTTGGGTATCCCTGA	MDVSKTKSSFYRRLYVAYLIDSDLASNIPALTEATGMPRRTAQDTVAALADLDIICEFEQQQGARNHAGQYRIRDWGAIDRRWIEQNLERIKAVLGYP				NA	NA	NA	NA	NA
D1-36_04763	504	ygjP	COG1451	UTP pyrophosphatase	ATGACCACGCTCAAGTACCTCCAGGCGTACCCCGCCGCCCTGCAAGCCCAGGTGCAGCAATTGATTGCCCAGGATCGGCTGGGCGACTACCTGCACCAGCGCTATCCCGGCCGCCATCCGATCCAGAGCGACAAGGCGTTGTATGGTTATGCGCTGCAAATCAAGCAGCAATACCTGCGCAACGCACCGGCGATCGACAAGGTGCTGTTCGACAACCGTCTCGACCTGACCCACCGCGCGCTCGGCCTGCACACGGCGGTCTCGCGGGTGCAGGGCGGCAAGCTCAAGGCCAAGAAGGAAATCCGCATTGCCTCGTTGTTCAAGGACGCGGCGCCTGAGTTTCTGAAGATGATCGTGGTTCACGAGCTCGCCCACTTCAAGGAGTCGGACCACAACAAGGCGTTCTATAACCTTTGCGAACACATGCTGCCGGGCTACCACCAGCTGGAATTCGACTTGCGCGTGTACCTGACCTGGCGCGACCTGCAACAAGACAAGGAATGA	MTTLKYLQAYPAALQAQVQQLIAQDRLGDYLHQRYPGRHPIQSDKALYGYALQIKQQYLRNAPAIDKVLFDNRLDLTHRALGLHTAVSRVQGGKLKAKKEIRIASLFKDAAPEFLKMIVVHELAHFKESDHNKAFYNLCEHMLPGYHQLEFDLRVYLTWRDLQQDKE				NA	NA	NA	NA	NA
D1-36_04764	2124	rcsC_23		Sensor histidine kinase RcsC	ATGGAATGCGCGCAACCCCCGTTTGGCGAAGACAGCTCCGTCCTTTTGATCGTTGATGACTACCCTGAAAACCTGCTCAGCATGCGAGCGTTGTTGCAGCGTCCGGATTGGCGGGTGATGACCGCCGCCTCTGGTGTCGAGGCGCTCAACATGCTCCTGGAACACGACATCGACCTGGTGCTGCTGGATGTGCAGATGCCGGACATGGACGGCTTCGAAGTGGCGCGCCTGATGCGTGGCAGCCAGCGCACGCGGCTTACGCCCATCATCTTCCTGACGGCCAATGAGCAATCCCAGGACGCGGTCATCAAGGGATACGCCAGTGGCGCGGTGGATTACCTGTTCAAGCCATTCGATCCACAGATCCTCAAGCCCAAGGTGCATGCCTTGCTGGAGCACCAGCGCAACCGGCGCGCGTTGCAGCGTCTGAGCCAGGATCTCGAGGCTGCCCGGGCCTTCAATGCCTCGGTGCTGGACAACGCCGCCGAGGGAATCCTCGTGGTGGATGAGAACGGATGCATCCGGTTCGCCAACCCTTCCACCTGCCGCTTGCTCAACGCCACCGCCGACCGGTTGCAAGGCATGGCGTTCCTCGATTTCCTGCAAAAACCCCACATTCCCGAATGGCTTGATTCCGACATCCATACCGCCTATATGCGCGGCGAAACCTGGCGCTTGCACGATGCCGTGTTGCGTACGGCGCCTGGCCAGCAGGTGTCGGTAGCCTTGTCCTGCGCGCCATTGCCTGCGGAGCAGAGGGCGATGGTGGTCACGCTTCAGGACATGTCGGTGGTTCGTCATCTGCATCAGCAACTCGAATTCCAGGCTGTCACCGACCCCTTGACCGGCCTGCTCAACCGCAGGGGGTTCTATCAGACGGCGGAAAACCTGCTGATGCGCAGCGAGCGGCTGGAAAGCAACTGGGTGTTGCTGTACCTGGATCTGGATGGATTCAAGCGGGTCAACGATTCCCTGGGCCACGATGCCGGTGACCGGGTGCTGCGCTGGGTCTCGGAGCAATTGAAGACGTGCCTGCGTCCGTTCGACATCCTGGCGCGCCTGGGGGGCGACGAATTCACCGCGCTGCTGGATCTGGAACTGCCTGAGCAGGCGGCGAAGATTGCCGAAAAGCTCATCGAGCGGGTCTCGGTCTGCCAGCAGATCGACGGCATGGACGTGACGCTGGGGGCGAGCATTGGTATCGCGACCTATCCGGACTGCGGCTCCAACCTCGACGGTTTGCTGCGCGCCTCCGACATCGCCATGTACGAAGCCAAGCGTGCCGGCCGCCAGCAATACCGTTTCTACGACCATGAAATGAACGGTCGAGCCCGTTCACGGCTCATGCTCGAAGAGAGCGTGCGTTCGGCAATCGAGAACCGTGATTTCAACATGGTCTATCAGCCGCAGGTCAGCATTCGCGATGGGCGCACTCGCGGCTTCGAAGCGCTGTTGCGCTGGCAGCATCCGAGCGTCGGCGACGTGCCGCCAGGCTTGTTCCTGCCGTTGCTTGAGGAGGTACGGTTGATCAGCCGGCTGGGCAGCTGGATTTATCATCGCAGCGCGGCCCAGCGCAAAGTCTGGGAACGCATGTTCGCGGATGACCTGGTGCTGGGTGTGAGCCTTAGCAGTACGCAGTTCGGCATGCCGAACCTGGTCACCGAATTACGCCAGGTGCTGGAGCGCCATGCCTTGAAGCCCCGGCAACTGGAGGTTGAAGTGACGGAAGATGCGTTGATGCGCAACCCCGACGAAACCCATAAGCAGTTGCGGCTGCTGCGTCACCTGGGCGTGCGGGTGGCATTGGACGATTTCGGTTCGGGCCCTTGCTCGCTGGCGCATCTGCGCGATCTTGAGCTCGATACCCTCAAGCTTGATCGGCATTTGATTGCCCGCTTGCCGGACTCGCCACGGGACGCCGCGTTGGCCGCCTCGGTGATCGATCTGTGCGGTCAACTGGGGTTGCGGGTGATCGCCGAGGGGGTTGAAACCGCGGCGCAGTACCAGTGGCTCAGGGATCACGGTTGTGAATATGTACAAGGTTTCCTGGTGGCCCGGCCCTTGATGGCCGAGGATACCGATGCCTTTGCCCGGCCCTTCGACTGGAGCGCGGTGCAGGCCTGA	MECAQPPFGEDSSVLLIVDDYPENLLSMRALLQRPDWRVMTAASGVEALNMLLEHDIDLVLLDVQMPDMDGFEVARLMRGSQRTRLTPIIFLTANEQSQDAVIKGYASGAVDYLFKPFDPQILKPKVHALLEHQRNRRALQRLSQDLEAARAFNASVLDNAAEGILVVDENGCIRFANPSTCRLLNATADRLQGMAFLDFLQKPHIPEWLDSDIHTAYMRGETWRLHDAVLRTAPGQQVSVALSCAPLPAEQRAMVVTLQDMSVVRHLHQQLEFQAVTDPLTGLLNRRGFYQTAENLLMRSERLESNWVLLYLDLDGFKRVNDSLGHDAGDRVLRWVSEQLKTCLRPFDILARLGGDEFTALLDLELPEQAAKIAEKLIERVSVCQQIDGMDVTLGASIGIATYPDCGSNLDGLLRASDIAMYEAKRAGRQQYRFYDHEMNGRARSRLMLEESVRSAIENRDFNMVYQPQVSIRDGRTRGFEALLRWQHPSVGDVPPGLFLPLLEEVRLISRLGSWIYHRSAAQRKVWERMFADDLVLGVSLSSTQFGMPNLVTELRQVLERHALKPRQLEVEVTEDALMRNPDETHKQLRLLRHLGVRVALDDFGSGPCSLAHLRDLELDTLKLDRHLIARLPDSPRDAALAASVIDLCGQLGLRVIAEGVETAAQYQWLRDHGCEYVQGFLVARPLMAEDTDAFARPFDWSAVQA	PGPT0023624_2342	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-GGDEF|EAL|PAC|PAS-DOMAIN-CONTAINING_PROTEIN,PGPT0023624-GGDEF|EAL|PAC|PAS_domain_containing_protein-NA	NA	NA
D1-36_04765	672	alyA_1		Alginate lyase	ATGATCGATCTCGCAACCTGGAACTTGAGCATCCCCGAAGGCAGCCCGGCGATGACCATCGACACCCCTCGCCTGGCCCAAGGGTTCAAGGACCAATATTTCAACGCCGAAACCGGCACCGTATTCTTTTGGGCGCCAGTGACCGGCACCAAAACGGCCAACGCGAGTTACCCGCGGAGCGAGCTGCGGGAAACCTTTCCCGACGGACGATTGCGCAACTGGCTCTACCCTGCGGCAGATAACACCTTACGCGCGACCGTGGCGGTCAACCAGGTGCCCAGCACCGGCAAGATCGTGATCGGCCAGATTCACACAAAGGACAGCAACAGCCCGATGGTGAAGCTGGAATACCAATACAAGACTAAAAGTTCGACCGGCAACATCGTCGCCAAAGTGCGCATGCGCCCGGATGACAAGGAGGGCCAGGTCATCACCGTCGCTACCGGTGTGACGCTCAACCGCAACTTTTCCTACATGATCCACCTGAGCCCCAAGGGCGCGTTGGGCATTTCCGCGGCGGGTTACAACTGGCGCACCACCGTTGACCCAAGCTGGAAAGTCAAACCGCTCTACTTCAAGGCAGGCGCGTACGTGCAAGACAACACCGGTTATGTCACTGAAGGCGGGAAAGTGACGTTCAGCAAGTTGGAAATCAAGCACACCACGCTTTGA	MIDLATWNLSIPEGSPAMTIDTPRLAQGFKDQYFNAETGTVFFWAPVTGTKTANASYPRSELRETFPDGRLRNWLYPAADNTLRATVAVNQVPSTGKIVIGQIHTKDSNSPMVKLEYQYKTKSSTGNIVAKVRMRPDDKEGQVITVATGVTLNRNFSYMIHLSPKGALGISAAGYNWRTTVDPSWKVKPLYFKAGAYVQDNTGYVTEGGKVTFSKLEIKHTTL	PGPT0019417_576	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERS	PLANT_DERIVED_ALGINATE_DEGRADATION,PGPT0019417-putative_alginate_lyase_2-NA	NA	NA
D1-36_04766	669	alyA_2		Alginate lyase	ATGGTCGATCTTGCAACCTGGAACCTGAGCATTCCCGAAGGCAGCCCGCCGAAAACCATCGAAACGCCGCGCCTGGTGGACGGGTTCAAGGATAAGTATTTCAATTCCCAAGGCAGCACGGTGTATTTCTGGTCGCCGGTGACGGGCTCCAAGACTGAAAATGCGATCTACCCGCGCAGTGAACTGCGCGAAACCTATAAAGACGGAAGGTTGCGCAATTGGGTCTACCCAGACGCCGACAACTTCCTGAGGGCAACGCTCGCCGTCAATCAAGTACCTAGCAGCGGCAAGATCGTCATCGGTCAGATCCATGCCAAGGACAGCAGCAAACCCATGGTCAAGCTGGAATACCAATACAAGGACGACAGCGACACCGGGAACATCGTCGCCAAGGTCCGCATGCGCCCCGATGACAGCGAAGGCAGGGTTATCACCGTCGCCACGGGGGTGAAGCTCAATCGGTCCTTCTCCTACCGGATTCACCTCGATCGTACCGGTGACCTGGGCATCACCGCGGCCGGCAACAGTTGGTACACCACCGTCGGCCGCGCCTGGCGCGACAAGCCGTTGTACTTCAAGGCCGGGGTATATGTGCAGGACAACTCGGGCTACACCAGCGAAGGCGGGAAGGTGACGTTCAGCGTGCTGGATATCGATCACAACACCTGA	MVDLATWNLSIPEGSPPKTIETPRLVDGFKDKYFNSQGSTVYFWSPVTGSKTENAIYPRSELRETYKDGRLRNWVYPDADNFLRATLAVNQVPSSGKIVIGQIHAKDSSKPMVKLEYQYKDDSDTGNIVAKVRMRPDDSEGRVITVATGVKLNRSFSYRIHLDRTGDLGITAAGNSWYTTVGRAWRDKPLYFKAGVYVQDNSGYTSEGGKVTFSVLDIDHNT	PGPT0019417_603	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERS	PLANT_DERIVED_ALGINATE_DEGRADATION,PGPT0019417-putative_alginate_lyase_2-NA	NA	NA
D1-36_04768	285			hypothetical protein	ATGAAAGCCGAACAATTGCCCACTCGCTTCACTCCGCTCACCCCGATCGCCACCACCCAGCCCGTCCTGTTCATCGATAAAACCGTCCCACTGACCGAGCTCCACGCCTGCGCCAGCGAACGCTTGCATGCCACGCTCGACTACCTGACGCTCATGGCCTGCGCCACCTTGCGCGACTCGGCTGCTGGCGACTTCAACACCCTAACGAACGTCGCCCGGATCCTCGACCAAGACGTGACGGACGTGTTCGGTGTCATTGAACAGCGCGGCCTCGAAGACCAATAG	MKAEQLPTRFTPLTPIATTQPVLFIDKTVPLTELHACASERLHATLDYLTLMACATLRDSAAGDFNTLTNVARILDQDVTDVFGVIEQRGLEDQ				NA	NA	NA	NA	NA
D1-36_04769	279			hypothetical protein	ATGCGTAGCACTCAACAGTTCAGCATCACGCTGCCTAACCAGATGGCTGACGTAGTGAAAGCCAAGGTGGCTGCCGGTGAGTACGCCACTGAAAGCGAAGTCATTCGGGATGGCCTCCGAGCACTGCTAGCTCGTGATCGTGCGTTGGAAAACTGGCTCGTAGGCCAAGTGGCCCCAGCTTATGACGCGTTGAAAACCGATCCCTCGCGAGCATTGAACGTGGACCAGGTGCGCTCCCGATTGGCGGCAGAGCACGAAAATTCCACTGTGAAACCGTGA	MRSTQQFSITLPNQMADVVKAKVAAGEYATESEVIRDGLRALLARDRALENWLVGQVAPAYDALKTDPSRALNVDQVRSRLAAEHENSTVKP	PGPT0027540_350	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-ParE-ParD|paaAR_TOXIN-ANTITOXIN_SYSTEM,PGPT0027540-antitoxin_parD1_3_4-K07746	NA	NA
D1-36_04770	315			hypothetical protein	ATGGCTTACACCGTCGAGTTTGCACCGGAAGCCCTTGAGCAATTAGCTGCCCTCTACCGCTACATTGCCACAGCGGCTTCGCCGGAAATGGCCCGTCGGTATACCGACGCCATCGTGACCTACTGTGAAGAACTACAGACGTTCCCGCACCGAGGGAACCAAAGGCACGAGATACGCCCGGGTTTGCATATCACAAACTACCGTAAACGGACCGTGATCGCCTTTGCTGTTGAAGCCGAGCTGGTTTCCATTCTGGGCGTGTTTTATGGCGGACAAGACTTTGAGGGCGCTTTGCAGAGTGGACTGGACGATTAA	MAYTVEFAPEALEQLAALYRYIATAASPEMARRYTDAIVTYCEELQTFPHRGNQRHEIRPGLHITNYRKRTVIAFAVEAELVSILGVFYGGQDFEGALQSGLDD	PGPT0027550_419	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEM	CE-BACTERIAL_FITNESS-ParE-ParD|paaAR_TOXIN-ANTITOXIN_SYSTEM,PGPT0027550-toxin_parE1_3_4-K19092	NA	NA
D1-36_04771	1065	cbbA		Fructose-bisphosphate aldolase	ATGGCACTTATCAGCATGCGTCAGATGCTGGACCACGCAGCCGAGTTCGGCTACGGCGTCCCAGCCTTTAACGTCAACAACCTTGAGCAGATGCGCGCCATCATGGAAGCCGCTGACAAGACTGACTCCCCGGTAATCGTCCAGGCCTCGGCCGGTGCCCGCAAATACGCCGGCGCGCCGTTCCTGCGCCACCTGATCCTGGCAGCGATCGAAGAATTCCCGCACATCCCGGTGTGCATGCACCAGGACCACGGCACCAGCCCTGACGTCTGCCAGCGCTCCATCCAACTGGGCTTCAGCTCGGTGATGATGGACGGCTCCCTCGGCGAAGACGGCAAGACCCCGACCGACTACGAATACAACGTGCGGGTCACCCAGCAGACCGTCGCCATGGCCCACGCCTGCGGCGTTTCGGTGGAAGGCGAACTGGGTTGCCTGGGCTCGCTGGAAACCGGCATGGCCGGCGAAGAAGACGGCATCGGCGCCGAAGGCGTGCTGGATCACAGCCAGATGCTGACCGACCCGGAAGAAGCCGCGGACTTCGTCAAGAAAACCCAGGTCGATGCCCTGGCCATCGCCATCGGCACCAGCCACGGCGCCTACAAGTTCACCAAGCCGCCTACCGGCGATGTACTGGCGATCGACCGCATCAAGGAAATCCACAAGCGCATCCCCAACACCCACCTGGTGATGCACGGCTCGTCCTCGGTACCGCAAGAGTGGCTGGCGATCATCAACCAGTACGGCGGCGACATCAAGGAAACCTACGGCGTGCCGGTTGAAGAAATCGTCGAAGGCATCAAGTACGGCGTGCGCAAGGTCAACATCGATACCGATTTGCGCCTGGCTTCTACCGGTGCCATGCGTCGGTTGATGGCGACCAATCCGAGCGAGTTCGACCCGCGTAAATTCTTTGGCGCGACCGTGACCGCTATGCGGGATGTGTGTATCGCGCGTTATGAGGCGTTTGGTACTGCGGGTAATGCTTCGAAGATTAAGCCGATCTCGTTGGAAGCCATGTATCAGCGGTATTTGAAGGGTGAGTTGAACGCTAAGGTCAACTGA	MALISMRQMLDHAAEFGYGVPAFNVNNLEQMRAIMEAADKTDSPVIVQASAGARKYAGAPFLRHLILAAIEEFPHIPVCMHQDHGTSPDVCQRSIQLGFSSVMMDGSLGEDGKTPTDYEYNVRVTQQTVAMAHACGVSVEGELGCLGSLETGMAGEEDGIGAEGVLDHSQMLTDPEEAADFVKKTQVDALAIAIGTSHGAYKFTKPPTGDVLAIDRIKEIHKRIPNTHLVMHGSSSVPQEWLAIINQYGGDIKETYGVPVEEIVEGIKYGVRKVNIDTDLRLASTGAMRRLMATNPSEFDPRKFFGATVTAMRDVCIARYEAFGTAGNASKIKPISLEAMYQRYLKGELNAKVN	PGPT0017615_1420	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
D1-36_04772	336			hypothetical protein	ATGAAAGGCTTTGTCGCCGTTGTGGCGTTGGCATTGTTGGCCGGTTGCTCGCAACTGGGTTTTCTACAATCGTCCGAGCCCGTTGCAGAAGGCTGGACGAGTTGGACATGTGATAGCGGGGCCAAGGTGCTCTGGCGTTATACCGATGCAACGCGCAAGGAAGTGGATGTTCGCCTGGGCGGCGCAGACAAGGTCTACCGTCTCAAGCTTGAGCCGGGCGCTGAAGGATCGCTGTACAGCGATGACATGCTGGCGCTGCACGTCAAGGGTGAGGAAGGCCTGGCGTATTGGGTCGCCACCAATGACTTGATTGGGCGTGGCTGCAAGGCTGACTGA	MKGFVAVVALALLAGCSQLGFLQSSEPVAEGWTSWTCDSGAKVLWRYTDATRKEVDVRLGGADKVYRLKLEPGAEGSLYSDDMLALHVKGEEGLAYWVATNDLIGRGCKAD				NA	NA	NA	NA	NA
D1-36_04773	225			hypothetical protein	ATGGTCAAGACGTTCATGGCGCTGATGGCCGCGACGTTGCTGGTAGCCTGCTCCAGCAGCCCGCAAGGCACGGCGCCAGATAATACGGTGCCGGCGCCCGAAAAAGGCTGTTACCAGGCTGACTGGCAGGCCGAGACCAATCCGGTGCTGAACAAGCGCTCAGGACCGGACGGCCTGGATAAATACGAGACGCAAGCGCCGGTCAAGGAACATGGTTGCCCTTGA	MVKTFMALMAATLLVACSSSPQGTAPDNTVPAPEKGCYQADWQAETNPVLNKRSGPDGLDKYETQAPVKEHGCP				NA	NA	NA	NA	NA
D1-36_04774	1164	pgk	COG0126	Phosphoglycerate kinase	ATGACCGTGTTGAAGATGTCCGACCTCGATCTGCAAGGTAAGCGCGTACTGATCCGCGAAGACCTCAACGTCCCCGTCAAGGACGGTGTCGTCACCAGCGACGCGCGCATCCTGGCCTCGCTGCCGACCATCAAGCTGGCCCTGGAAAAAGGCGCTGCGGTGATGGTCTGCTCGCACCTGGGCCGTCCGACCGAAGGCGAGTTCTCGGCGGAAAACAGCCTCAAGCCTGTCGCCGACTACCTGAGCAAGGCCCTGGGCCGTGACGTGCCCCTGGTGGCTGATTATCTGGGTGGTGTCGACGTCAAGGCTGGCGACGTCGTGTTGTTCGAAAACGTGCGCTTCAACAAAGGCGAGAAAAAGAACGCCGATGAACTGGCCCAGCAATACGCCGCCCTCTGCGACGTGTTCGTGATGGACGCCTTCGGCACCGCACACCGTGCCGAGGGCTCGACCCACGGCGTGGCGAAATTCGCCAAGGTCGCCGCTGCTGGCCCGTTGCTGGCTGCCGAGCTTGATGCGCTGGGCAAGGCCCTGGGCTCTCCAGCTCAACCGATGGCCGCGATCGTTGCTGGCTCCAAGGTGTCGACCAAGCTGGATGTACTCAACAGCCTGAGCCAGGTCTGCAACCAATTGATCGTCGGTGGCGGCATTGCCAACACCTTCCTCGCCGCCGCTGGACATCCCGTCGGCAAGTCGCTGTACGAGCCGGACCTGCTGGAAACCGCCCGTGAAATCGCCGCCAAGGTCAGCGTGCCGCTGCCGGTGGACGTGGTGGTCGCCAAGGAGTTCGCCGAGAGCGCCGCCGCGACGGTGAAGCTGATCGCTGATGTGGCCGAAGACGACATGATCCTCGACATTGGCCCGCAAACCGCAGCCAATTTCGCCGAACTGCTGAAATCCTCCCAGACCATCCTGTGGAACGGCCCGGTTGGCGTATTCGAATTCGATCAGTTCGGCAACGGCACCAAGGTACTGGCCCAGGCCATTGCCGAAAGCGCTGCGTTTTCCATCGCGGGCGGCGGCGACACCCTGGCCGCCATCGATAAATATGGCGTCGCCGAGCAGATCTCCTACATTTCTACCGGCGGTGGCGCGTTCCTCGAGTTCGTCGAGGGCAAAGTGCTGCCTGCCGTGGAAGTCCTGGAAAGCCGGGCCAAGGCCTGA	MTVLKMSDLDLQGKRVLIREDLNVPVKDGVVTSDARILASLPTIKLALEKGAAVMVCSHLGRPTEGEFSAENSLKPVADYLSKALGRDVPLVADYLGGVDVKAGDVVLFENVRFNKGEKKNADELAQQYAALCDVFVMDAFGTAHRAEGSTHGVAKFAKVAAAGPLLAAELDALGKALGSPAQPMAAIVAGSKVSTKLDVLNSLSQVCNQLIVGGGIANTFLAAAGHPVGKSLYEPDLLETAREIAAKVSVPLPVDVVVAKEFAESAAATVKLIADVAEDDMILDIGPQTAANFAELLKSSQTILWNGPVGVFEFDQFGNGTKVLAQAIAESAAFSIAGGGDTLAAIDKYGVAEQISYISTGGGAFLEFVEGKVLPAVEVLESRAKA	PGPT0018015_5909	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
D1-36_04775	1056	epd	COG0057	D-erythrose-4-phosphate dehydrogenase	ATGCCCCAACCTCGTCCCTACAAAGTTGCACTCAACGGCTACGGCCGCATTGGTCGTTGCGTCTTGCGTGCGTTGTTCGAGCGAGGAGCGAAGGCTGGGTTCGAGATCGTGGCCATCAACGATCTGGCCGACATGGCCAGCATCGAATACCTGACACGCTTTGACTCCACCCATGGCCGGTTCCCCGGCGAAGTGCGGGTCGAGGGCGACTGTCTGCATATCAATGGCGATTGCGTGAAGGTCCTGCGCAGTGCCACCCCCGAAGGCATCGATTGGGCGTCCCTGGGTGTCGACCTGGTGCTTGAATGCTCCGGCGCCTACAACACTCGCGACGATGGCCAGCGTTTCATCGCTGCGGGCGCGCCAAGGGTGCTGTTTTCTCAGCCGATGGCCAGCGAGGCGGACGTCGACGCCACCATCGTCTTTGGCGTCAACCAGGATTGCCTGACCGGCGAAGAGTTGCTGGTGTCCAACGCCTCATGCACCACCAACTGCGGCGTGCCGCTGTTGCGCCTGCTGGACCAGGCCATTGGCCTGGAATACGTGTCCATCACTACGATCCACTCGGCAATGAACGATCAGCCGGTGATCGACGCCTATCACCACGAGGACCTGCGCCGTACCCGCTCGGCCTTCCAGTCGGTGATCCCCGTGTCCACTGGTCTGGCGCGCGGCATCGAACGGCTGTTGCCGGAACTTGCCGGACGAATTCAGGCCAAAGCCGTGCGGGTGCCGACGGTCAACGTGTCCTGCCTCGACATCACGATGCAGACCGTGAGCGATACCGACGCCACCGAGGTCAACCGGATCCTGCGCGAAGCCGCCACCCGCGGCCCGCTCAAAGGCCTTCTGGCCTATACCGAGTTGCCTCATGCCAGCTGTGATTTTAACCACGACCCGCATTCGGCCATCGTCGATGCCAGCCAGACACGTGTTTCCGGGCCGAGGCTTGTGAACATCCTGGCGTGGTTCGACAACGAATGGGGTTTTGCCAATCGAATGCTGGACGTTGCCGAGCACTACCTGCAAACAGCTTCCAATAAACCTGCTCTCTAA	MPQPRPYKVALNGYGRIGRCVLRALFERGAKAGFEIVAINDLADMASIEYLTRFDSTHGRFPGEVRVEGDCLHINGDCVKVLRSATPEGIDWASLGVDLVLECSGAYNTRDDGQRFIAAGAPRVLFSQPMASEADVDATIVFGVNQDCLTGEELLVSNASCTTNCGVPLLRLLDQAIGLEYVSITTIHSAMNDQPVIDAYHHEDLRRTRSAFQSVIPVSTGLARGIERLLPELAGRIQAKAVRVPTVNVSCLDITMQTVSDTDATEVNRILREAATRGPLKGLLAYTELPHASCDFNHDPHSAIVDASQTRVSGPRLVNILAWFDNEWGFANRMLDVAEHYLQTASNKPAL	PGPT0009145_89	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009145-epd-K03472	NA	NA
D1-36_04776	1998	tktA	COG0021	Transketolase 1	ATGCCCAGCCGTCGTGAGCGTGCCAATGCCATTCGTGCCCTCAGCATGGATGCCGTGCAAAAAGCCAACAGCGGCCATCCCGGCGCCCCCATGGGTATGGCGGATATCGCCGAGGTGCTTTGGCGCGATTACCTCAAGCACAGCCCGAGCAACCCATCGTTCGCTGACCGTGACCGCTTCGTGCTGTCCAACGGCCACGGCTCGATGTTGATTTACTCGTTGCTGCACCTGACCGGTTATGACCTGTCGATCGATGACCTGAAGAACTTCCGCCAACTGCACAGCCGCACCCCGGGCCACCCGGAATACGGCTACACGCCAGGCGTGGAAACCACCACCGGTCCACTGGGCCAAGGCCTGGCCAACGCCGTGGGCTTCGCCCTGGCGGAAAAAGTCCTGGCGGCGCAGTTCAACCGTCCCGGCCACAACGTCGTCGACCATCACACCTACGTATTCCTGGGTGATGGCTGCATGATGGAAGGCATTTCCCACGAAGTCGCTTCCCTGGCTGGCACTCTCGGCCTGGACAAGCTGATCGCTTTCTACGATGACAACGGCATCTCCATCGACGGCGAAGTCGAAGGCTGGTTCACCGATGACACGCCCAAGCGTTTCGAAGCCTACAACTGGTTGGTGATCCGTAACGTCGACGGTCACGACCCGGAAGAAATCAAGATCGCCATCGAGACGGCCCGCAAGAGCGCTCAGCCAACCCTGATCTGCTGCAAGACCACCATCGGTTTCGGTTCGCCGAACAAGCAGGGCAAGGAAGACTGCCACGGCGCGCCATTGGGGGCCGAGGAAATCGCCTTGACCCGTGCCGCGCTGAAGTGGGAACACGGCCCGTTCGAAATCCCGGCCGACATCTATGCCGAATGGGACGCCAAGGAAAAAGGCCGCGCGGCCGAAGCCGAGTGGGACCAGCGTTTTGCGGCCTATTCCGCCGAATTCCCTGAACTCGCCAACGAACTGGTGCGTCGCCTCAGCGGCGAGCTGCCGGCCGATTTCGCCGAAAAAGCTTCGGCGTACATCGCCGAAATCGCGGCCAAGGGCGAAACCGTCGCCAGCCGCAAGGCCAGCCAGAACACCCTGAATGCCTTCGGCCCGCTGTTGCCGGAGTTGCTGGGCGGTTCGGCCGACCTGGCTGGTTCCAACCTGACCCTGTGGAAAGGCTGCAAAGGCGTGACGGCTGAGGACGCCAGCGGCAACTACATGTACTACGGCGTTCGTGAATTCGGCATGAGCGCGATCATGAACGGTGTTGCCTTGCATGGCGGCCTGGTGCCTTACGGCGCGACCTTCCTGATGTTCATGGAATACGCTCGCAACGCCGTGCGCATGTCGGCACTGATGAAAAAGCGGGTGCTGTATGTGTTCACCCACGACTCCATCGGCCTGGGCGAAGACGGCCCGACCCACCAGCCGATCGAGCAACTGGCGAGCCTGCGCTGCACGCCGAACCTGGACACCTGGCGCCCATGCGACGCCGTGGAGTCGGCCGTGGCCTGGAAACACGCCATCGAGCGCAACGACGGCCCGTCGGCGTTGATCTTCTCTCGCCAGAACCTGCAACACCAGGTCCGCGATGCCGGCCAGATCGGCGATATCAGCCGTGGCGGCTATGTGCTCAAGGACTGTATCGGCGAGCCTGAGCTGATCCTGATCGCCACCGGTTCGGAAGTTGGCCTGGCCGTCCAGGCCTACGACAAGCTGACCGAGCAGGGCCGCAACGTGCGCGTGGTTTCCATGCCATGCACCAGCGTGTTCGATGCCCAGGACGCCGGCTACAAGCAAGCGGTGTTGCCACTGCAAGTCAGCGCGCGGATTGCCATCGAAGCCGCTCACGCTGATTACTGGTACAAGTACGTGGGCCTGGAAGGTCGCGTGATCGGCATGACCACCTATGGCGAATCGGCGCCTGCCTCGGCGCTGTTCGAGGAATTCGGCTTCACCCTGGACAATATCCTGGGGCAGGCTGAAGAGCTGCTGGAAGACTGA	MPSRRERANAIRALSMDAVQKANSGHPGAPMGMADIAEVLWRDYLKHSPSNPSFADRDRFVLSNGHGSMLIYSLLHLTGYDLSIDDLKNFRQLHSRTPGHPEYGYTPGVETTTGPLGQGLANAVGFALAEKVLAAQFNRPGHNVVDHHTYVFLGDGCMMEGISHEVASLAGTLGLDKLIAFYDDNGISIDGEVEGWFTDDTPKRFEAYNWLVIRNVDGHDPEEIKIAIETARKSAQPTLICCKTTIGFGSPNKQGKEDCHGAPLGAEEIALTRAALKWEHGPFEIPADIYAEWDAKEKGRAAEAEWDQRFAAYSAEFPELANELVRRLSGELPADFAEKASAYIAEIAAKGETVASRKASQNTLNAFGPLLPELLGGSADLAGSNLTLWKGCKGVTAEDASGNYMYYGVREFGMSAIMNGVALHGGLVPYGATFLMFMEYARNAVRMSALMKKRVLYVFTHDSIGLGEDGPTHQPIEQLASLRCTPNLDTWRPCDAVESAVAWKHAIERNDGPSALIFSRQNLQHQVRDAGQIGDISRGGYVLKDCIGEPELILIATGSEVGLAVQAYDKLTEQGRNVRVVSMPCTSVFDAQDAGYKQAVLPLQVSARIAIEAAHADYWYKYVGLEGRVIGMTTYGESAPASALFEEFGFTLDNILGQAEELLED	PGPT0011200_3494	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
D1-36_04777	996	COQ3_1		Ubiquinone biosynthesis O-methyltransferase, mitochondrial	ATGAACTTACGCGTGCCTTCCATTCGCCATGATGACAGCGATGAGCTGGCGGCCCTTTGCAAGGCCGGCGGCGATCCGTTGCGGCTCAATGTATTGCGCGCCCTGGCGAACGACTCGTTCGGTGTATTGGAGCTGGCGCAGATCTTCGGCATTGGCCAGTCCGGCATGAGCCATCATCTCAAGGTCCTGGCCCAGGCCGACCTGGTGGCGACGCGGCGCGAAGGCAACGCGATCTTCTATCGGCGCGCCCTGCCCCACACCGAGCTTCTGGGTGGCAAGCTGCACGCCGCGCTGCTCGAAGAAGTGGACGAGCTGGACCTGCCGATGGAGGTACAGGACCGCATTGCCCAGGTCCACGGGCAACGCGCCGCCGCCAGCCAGGATTTTTTCGCACGAGTAGCAGAGAAATTTCGCGCCCAGCAGGACCTGATCGCCGGGCTGCCGCAATACCGTGACAGCGTCGTGGCACTGCTCGACAAGCTGAGCTTCGGCCCCTGTGCCACGGCGATGGAAGTCGGCCCCGGCGACGGCGCTTTCCTGCCGGAACTGGCGCGTCGCTTCAGCCAGGTGACAGCGTTGGACAACAGCCCGGCGATGCTCGAACTGGCCCGCCAGGTATGTGAGCGCGAGTCCCTGGCTAATGTCAGCCTGCAATTGGCCGATGCCCTGAACGGCGTGAGCCTGCGGGCCGATTGCGTTGTATTGAACATGGTGCTCCACCACTTTGCCGCACCGGCCGACGCGCTCAAGCACATGGCCAACCTGCTGCAACCGGGCGGTAGCCTGTTGGTGACAGAGTTATGCAGCCACAACCAGAGTTGGGCCAAGGAGGCCTGCGGTGATCTCTGGCTGGGGTTTGAACAGGACGATCTGGCCCGTTGGGCCACCGCTGCGGGCCTCGTGCCCGGGGAAAGCCTCTATGTAGGCTTACGTAATGGTTTCCAGATACAGGTCCGCCATTTTCAGCGGCCGGCTGGCGACACTCACCATCGGTAA	MNLRVPSIRHDDSDELAALCKAGGDPLRLNVLRALANDSFGVLELAQIFGIGQSGMSHHLKVLAQADLVATRREGNAIFYRRALPHTELLGGKLHAALLEEVDELDLPMEVQDRIAQVHGQRAAASQDFFARVAEKFRAQQDLIAGLPQYRDSVVALLDKLSFGPCATAMEVGPGDGAFLPELARRFSQVTALDNSPAMLELARQVCERESLANVSLQLADALNGVSLRADCVVLNMVLHHFAAPADALKHMANLLQPGGSLLVTELCSHNQSWAKEACGDLWLGFEQDDLARWATAAGLVPGESLYVGLRNGFQIQVRHFQRPAGDTHHR				NA	NA	NA	NA	NA
D1-36_04778	1191	metK	COG0192	S-adenosylmethionine synthase	ATGAGCGAATACTCCCTTTTCACCTCCGAGTCCGTGTCTGAAGGGCATCCGGACAAAATCGCCGACCAGATTTCTGATGCGGTGCTGGACGCCATCATTGCTGAAGACAAGTTCGCCCGCGTGGCGTGCGAGACTCTGGTGAAAACGGGCGTGGCGATCATCGCCGGCGAAGTCACCACCTCGGCCTGGGTCGACCTGGAACAGATCGTTCGCGACGTGATCCTCGGCATTGGCTACAACAGCTCCGACGTCGGCTTCGACGGCGCGACCTGCGGCGTGATGAACATCATCGGCAAGCAGTCCCCGGACATCAACCAGGGCGTTGACCGCGCCAAGCCAGAAGACCAGGGCGCCGGCGACCAGGGCCTGATGTTCGGCTATGCCAGCAACGAAACCGACGTGTTGATGCCGGCTCCGATCACCTTCTCGCACCAGTTGGTCCAGCGTCAGGCCGAAGCCCGCAAATCCGGCCTGCTGCCTTGGCTGCGCCCGGATGCCAAGTCGCAAGTGACCTGCCGCTACGAAGGCGGCAAGGTCGTCGGCATCGATGCCGTCGTGCTGTCGACCCAGCACAACCCGGAAGTGTCCTACAAGGACCTGCGCGAAGGCGTGATGGAACTGATCGTCAAGCACGTGCTGCCTGCCGAACTGCTGTCCAAGGACACCCAGTTCCATATCAACCCGACCGGCCAGTTCATCATTGGCGGCCCGGTGGGCGACTGCGGCCTGACCGGTCGCAAGATCATCGTCGACAGCTACGGCGGCATGGCGCGTCACGGCGGTGGCGCGTTCTCCGGCAAGGACCCATCCAAGGTTGACCGTTCGGCGGCGTACGCCGGTCGTTATGTCGCCAAGAACATCGTCGCCGCCGGCCTGGCCGAGCGTTGCGAGATTCAGGTTTCCTACGCCATCGGCGTAGCCCAACCTACGTCCATCTCGCTGAATACCTTCGGCACCGGCAAGATCGGCGACGACAAGATCATCCAGCTGGTGCGTGAAGTGTTCGACCTGCGTCCATACGCGATCACCACTATGCTCGACCTGCTGCACCCGATGTACCAGGACACCGCAGCCTACGGCCACTTCGGTCGCACGCCGCAGACCAAGACCGTGGGCGACGACACCTTCACCACGTTCACCTGGGAAAAAACCGACCGCGCCGACGCCCTGCGCGCCGCTGCTGGCCTGTAA	MSEYSLFTSESVSEGHPDKIADQISDAVLDAIIAEDKFARVACETLVKTGVAIIAGEVTTSAWVDLEQIVRDVILGIGYNSSDVGFDGATCGVMNIIGKQSPDINQGVDRAKPEDQGAGDQGLMFGYASNETDVLMPAPITFSHQLVQRQAEARKSGLLPWLRPDAKSQVTCRYEGGKVVGIDAVVLSTQHNPEVSYKDLREGVMELIVKHVLPAELLSKDTQFHINPTGQFIIGGPVGDCGLTGRKIIVDSYGGMARHGGGAFSGKDPSKVDRSAAYAGRYVAKNIVAAGLAERCEIQVSYAIGVAQPTSISLNTFGTGKIGDDKIIQLVREVFDLRPYAITTMLDLLHPMYQDTAAYGHFGRTPQTKTVGDDTFTTFTWEKTDRADALRAAAGL	PGPT0020000_3272	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
D1-36_04779	621	rhtB_5	COG1280	Homoserine/homoserine lactone efflux protein	ATGGACCTGACGACGCTCGCTGTCTTCATCCCTGCCTGCTTCGCGCTGAACATGGCGCCGGGCCCGAACAACCTGCTATCGATCAGTAACGCCTCGCGTTATGGTTTCGTCCGAGCGTGCAGCGGCGGAGTGGGTCGATTGGTGGCCTTTGCCATCATGATTGCCCTGGCGGCGGTGGGGCTGACGGCTGTGTTGCACACCTCGGAATTGTTGTTCCTGGGCATCAAGCTTGTCGGCGCCGGCTATCTTTTTTACCTCGCCGTGCAGTTATGGCGCGCGCAGCCTGACGCCGGCAGCGAGGCGGCGACCAACTTGATGAGCATGGCCAGCCTGGCGCGCCAGGAATTTCTGGTGGCAATCGGCAATCCCAAGGCGATTCTTTTATTTACCGCTTTCCTGCCGCAGTTCGTTGATCGTACTGGCACTGTCACTCAACAGTTCGCCGTATTGGGCGGGCTGTTCCTCGCCCTGGAATGCGTGGCGATCGGCTTGTATTGCTACATGGGCATTTATGCGCGGCGATTGTTTGCCCGGCCTAGCGGCAAGCGCTTGTTCAACCGGATGTGTGCGGCGTTGCTGGCGAGTGCTGCTTCGTTCTTGCTGGTGGCGCGGCGGACGTAG	MDLTTLAVFIPACFALNMAPGPNNLLSISNASRYGFVRACSGGVGRLVAFAIMIALAAVGLTAVLHTSELLFLGIKLVGAGYLFYLAVQLWRAQPDAGSEAATNLMSMASLARQEFLVAIGNPKAILLFTAFLPQFVDRTGTVTQQFAVLGGLFLALECVAIGLYCYMGIYARRLFARPSGKRLFNRMCAALLASAASFLLVARRT	PGPT0021036_932	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QUORUM_SENSING_RELATED_GENES	CE-QSR-PUTATIVE_TRANSPORTER,PGPT0021036-rhtB-K05834	NA	NA
D1-36_04780	1674	ligB	COG0272	DNA ligase B	ATGCTGCCGTTATTGCGCGTCTTCGCCTGTTATCTATCACTCGTGGCCCCGGCCATTGCTGCGCCGTGCCCCGATTGGCCCAAGGAGCGCGCCCAGGCGCAGGTCGACATCCTCCAGCGACAGGTCGACGCCTGGGACGATGCCTATCATCGCCTCGGCCGCGCCCTGGTGGCCGACGAGCTGTACGACCAGTCCCGCATGCAGCTGGAGCAATGGCGCCGTTGCCAGGGCCTAGCCCCCCTAGCCTCGTCCTTGCGAACGGCGGGCGGAAAAGTACCGCACCCTGTCGCTCATACGGGCCTGGATAAACTCCAGGATGCCAAAGCCGTGGGGAACTGGCTTGAAGGGCGATCGGACGTCTGGGTCCAGCCAAAGGTCGATGGTGTCGCGGTGACCCTTATCTATCACGGTGGGCACCTGCAACAGGCAATCAGCCGCGGCGATGGCAACCACGGGCACGACTGGACTTCGAACGCCCACAAGATCGAGGCCATTCCCCGCCAGTTGCGTCAACCCACGGACCTGCTCGTTCAGGGCGAGTTGTATTGGCGGCTCGACGATCATGTACAAGCCACTCGTGGCGGACTCAATGCCCGATCGGCGGTGGCCGGGTTGATGGCCCGCAAAGACCTGCCCCCCGGCCAGGCATCAGGAATCGGCCTGTTTGTTTGGGACTGGCCCGAGGGCCCGGCGACCCTGCCCGAACGGATCGCCGCGCTGAACGAGCTGGGCTTTGCCGATACGACCGGCTACAGCCAGCCTGTCGAGGCATTGGCCGATGCCGAACACTGGCGCAACCACTGGTATCGCACGCCCCTGCCATTTGCCAGCGATGGAATCGTGCTGCGCCAGAGCCACCGCCCACCGGCCGACCGCTGGCAGGCCCGGGCGCCGTTCTGGAGCGTGGCCTGGAAGTACCCGTACGCCCAGGCCCTGGCGCAGGTACGCAAGGTGCGTTTCAAGATCGGCCGTACCGGGCGCATCACACCCGTGCTGGAGCTTGAGCCCGTGACGCTCGATGATCGCCAGATCCAGCGGGTAAGCGTCAGCTCGCTCAAGCGTTGGGAGCAGATGGACATCCGCCCCGGCGACCAGGTGGCCATCAGCCTGGCCGGGTTGACCATTCCACGGCTCGACAGCGTTGTACTGCGCAGCGTCGAGCGCCCGGACCTCGAGGTACCGATCGCCGCCAACTACCACTTCCTGAGTTGCTGGCAGCCGACGCCCGGTTGCGAAAGCCAGTTCCTTGCGCGCTTGAACTGGCTCAGTGGCAAACATGGGCTCGGCCTGCCCCATGTCGGCCCCGGCACCTGGGAAAAGCTGCTGGCCGCGGGTCGACTCGACGGATTACTGGATTGGTTGACCCTCGATGCCACGGAGCTTGCTAACATTGCCGGTTTCGGCGAGCGCAGCAGCGCCCGCCTGCTGGCCAGCCTGCACAGCGCACGGCAGCAGCCTTTTCGGCGATGGCTCAAGGCCCTTGGCCTGCCGCCCACTGCTGAGGCCAAGCTGGACGGATCGTGGCAGGCGCTGGCTGGGCGCAGCATTGAACAATGGCAAGCCGAAGCCGGTATCGGGCCGGGACGCGCCGCGCAACTGAGCGCTTTTTTTCGCGACCCGCAGGTGCTGGCCTTGAGAGAAACACTACACACCGCTGGCGTCGACGGTTTCTGA	MLPLLRVFACYLSLVAPAIAAPCPDWPKERAQAQVDILQRQVDAWDDAYHRLGRALVADELYDQSRMQLEQWRRCQGLAPLASSLRTAGGKVPHPVAHTGLDKLQDAKAVGNWLEGRSDVWVQPKVDGVAVTLIYHGGHLQQAISRGDGNHGHDWTSNAHKIEAIPRQLRQPTDLLVQGELYWRLDDHVQATRGGLNARSAVAGLMARKDLPPGQASGIGLFVWDWPEGPATLPERIAALNELGFADTTGYSQPVEALADAEHWRNHWYRTPLPFASDGIVLRQSHRPPADRWQARAPFWSVAWKYPYAQALAQVRKVRFKIGRTGRITPVLELEPVTLDDRQIQRVSVSSLKRWEQMDIRPGDQVAISLAGLTIPRLDSVVLRSVERPDLEVPIAANYHFLSCWQPTPGCESQFLARLNWLSGKHGLGLPHVGPGTWEKLLAAGRLDGLLDWLTLDATELANIAGFGERSSARLLASLHSARQQPFRRWLKALGLPPTAEAKLDGSWQALAGRSIEQWQAEAGIGPGRAAQLSAFFRDPQVLALRETLHTAGVDGF				NA	NA	NA	NA	NA
D1-36_04781	396	yqjC		Protein YqjC	ATGAATTTCCTGTCCCCCGTTGCCCTGCTCGCCCTGTGCGGTGCCATGGCTTCGCCTTTGATGGCAACTGAGCAACCCCCGGAGCTGACCGGGTGCGCGGCAAAGCGCCAGGGCATCATCAACCAGATCGAACTGGCCAAGTCCCGAGGCAATTCGGCCCAGCAAGCCGGGCTCGAAACAGCGCTGAACGAAGTGACCACTCATTGCACGGACGCATCCTTGCGCAAGGAGCGGGAAAACAAGGTCCTCGAGGCCAAGCACGAGGTGAGTCGTCGCCAGGCCGACCTGGAAAAAGCCATGAAGAAAGGCGACGCGGAGCGAATCAACAAGCGTAAAGACAAACTGGCGGCTTCCCGCAAGGAATTGCAGGAAGCGGTGGATGAGTTGGATAAATAA	MNFLSPVALLALCGAMASPLMATEQPPELTGCAAKRQGIINQIELAKSRGNSAQQAGLETALNEVTTHCTDASLRKERENKVLEAKHEVSRRQADLEKAMKKGDAERINKRKDKLAASRKELQEAVDELDK				NA	NA	NA	NA	NA
D1-36_04782	450			hypothetical protein	ATGTTTGTAAGACGATTTTCCATGGCTGTGCTGGCCTGCCTGATGTTATCCGGCTGCGGTGGCGTCGATCCCAACTCTCCCCTGGGCCAGCGCAAGGCGATTTTCAAACAGATGCTCAAGACCAGTGAAGAACTGGGCGGCATGCTGCGCGGCCGAGTTCCGTTCGACGGCGTGCGTTTTGCCGACGGCGCGGTAAAGCTGGACCAACTGTCTCACGAACCTTGGAAGCACTTCCCGCCGGTTCGTGAAGAAGACCACACCAGCGCCACGGATGAGGTTTGGCAAAAGCAGGCGCGCTTTCAGGAACTGGCCCGCAATCTTGAGGCGGCCACCGGTGAATTGGTGACGGCCAGCAAGGTCCAGCCTTACAGGGCCAGCAACCTGGGGCCGGCGGTGCAGAAAGTCGAAGATGCGTGCAGTGCCTGCCATAAAGAGTTTCGCAATCACTGA	MFVRRFSMAVLACLMLSGCGGVDPNSPLGQRKAIFKQMLKTSEELGGMLRGRVPFDGVRFADGAVKLDQLSHEPWKHFPPVREEDHTSATDEVWQKQARFQELARNLEAATGELVTASKVQPYRASNLGPAVQKVEDACSACHKEFRNH				NA	NA	NA	NA	NA
D1-36_04783	1188	mltA	COG2821	Membrane-bound lytic murein transglycosylase A	ATGAATAGCCGCTTCAAGTCATGGCACAAAAACCTGGCGCTGACACTGCCGTTGATCGTGCTGCTGGCCGGCTGCAATCGCGGCGAAAAGGTCGAAGAACCCAAGACCCACGCCCTTGCCACTTACGTCAACGCACCTTGGGAAGCGTTGCCGCCGGTGTCCGATGAGGACCTGCTGGCCGGCTTCGGCTCCTGGCGCAGCGCGTGCGTCCGGCTCAAGGCGGACGCGAGCTGGGGCCCAACCTGCGCGGCAGCGGTGAATGTGCCGCAGACCCCACAGGATGTTCGCAACTTCCTCAAGCAGACCCTGGATGTCTATGGTCTGCGTTCGGGGGACAACAGCCCCAACGGCCTGATTACCGGCTACTACGAACCGGTCTATCCCGGCAGCCTCACCCAGACTGCCACCGCCAACGTGCCAGTCTACGGTGTACCGGAGGACATGATCATTGTGTCGCTGGACAGCATTTATCCCGAGCTCAAGGGCAAACGCCTGCGCGGCCGTCTCGAAGGCCGGGTGCTCAAGCCGTATGACGACGCCGCCACCATCGAGAACAGCGGGGTGAAGGCGCCTGTCATCGCCTGGCTGACAGATCCGATGAACCTGCAATTCCTGCAAATCCAGGGCTCGGGGCGCATCCGTCTCGATGATGGCCGCCAACTGCGCATCGGTTATGCCGACCAGAACGGCCACCCGTATCGCCCCATTGGCCGCTGGCTGGTTGAGCAGGGCGAGCTGAAAAAAGAAGACGTGACCATGGGCACCATCAGTGCCTGGGCCAAGGCCCACCCGAACCGTATTCCCGAATTGCTGGCCAGCAATCCGAGCTACGTATTCTTCAACCGCAACCCCGACAGCAATGAAGGCCCGCGAGGCTCGCTGAACGTCCCTTTGACCGCGGGCTACAGCGTGGCCGTGGACCGCAAGGTAATTCCCTTGGGCAGTCTGTTGTGGCTGTCCACGACTCGACCCGACGGCAGCGCTTTGAACCGCCCCGTTGCAGCACAGGACACGGGAGGTGCGATTACCGGCGAAGTGCGTGCGGACCTGTTCTGGGGCACGGGCGAGGCCGCCGGGCAATTGGCGGGGGATATGAAGCAACAAGGCCAGATCTGGATGCTGTGGCCCAAGGGGATGGCGTTGCCTCAGGTGCCGCAGGTGGCGAATGCGGTCAGCGCCAATCCTTGA	MNSRFKSWHKNLALTLPLIVLLAGCNRGEKVEEPKTHALATYVNAPWEALPPVSDEDLLAGFGSWRSACVRLKADASWGPTCAAAVNVPQTPQDVRNFLKQTLDVYGLRSGDNSPNGLITGYYEPVYPGSLTQTATANVPVYGVPEDMIIVSLDSIYPELKGKRLRGRLEGRVLKPYDDAATIENSGVKAPVIAWLTDPMNLQFLQIQGSGRIRLDDGRQLRIGYADQNGHPYRPIGRWLVEQGELKKEDVTMGTISAWAKAHPNRIPELLASNPSYVFFNRNPDSNEGPRGSLNVPLTAGYSVAVDRKVIPLGSLLWLSTTRPDGSALNRPVAAQDTGGAITGEVRADLFWGTGEAAGQLAGDMKQQGQIWMLWPKGMALPQVPQVANAVSANP	PGPT0023780_675	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-MUREIN_TRANSGLYCOSYLASE_ACTIVITY,PGPT0023780-mltA-K08304	NA	NA
D1-36_04784	384			hypothetical protein	ATGACAGTTGCCCTGTGGTGTGTTTTGATCGCTTTTCTCCTGCCTTACCTGTGTATCGGCATCGCCAAGGCAGGCGGGAAATATAGGCTGCAAGATAACCACGATCCCCGGGACTTTCTCGACTCACTCGAAGGTGCTCCCCGGCGCGCCTACGCCGCGCAACTGAACAGTTTCGAAATCGCTCCGTTCTTTGCCGCCGCCGTGATCGTTGCGCACCTGGCCGGCAATGCCGAACTGGTGACCATCAACGTCCTGGCTGTGTTGTTCATCACCAGCCGCCTGCTCTACATCATTTGCTATTTGGCCGACTGGGCAGTCTTGCGTTCGCTGGTATGGTTCGTGGGGGTAGGGTTGGTGGCGAGTTTCTTCTTCGTTTCGGCTTGA	MTVALWCVLIAFLLPYLCIGIAKAGGKYRLQDNHDPRDFLDSLEGAPRRAYAAQLNSFEIAPFFAAAVIVAHLAGNAELVTINVLAVLFITSRLLYIICYLADWAVLRSLVWFVGVGLVASFFFVSA				NA	NA	NA	NA	NA
D1-36_04785	1170	ydhP_4	COG2814	Inner membrane transport protein YdhP	ATGCCACTCGCCTTGCTTGCTTTGGCCGTTGCCGCTTTTGGCATCGGCACGACCGAATTCGTCATCATGGGCTTGCTGCCCGACGTCGCCCGAGACCTGGCCGTGAGTATTCCTCACGCCGGGTTGCTGATTACCGGTTATGCCCTGGGGGTTGTGTTCGGCGCGCCGATCCTGGCGATCGGCACCGCGAACATGCCGCGCAAGGCCACGCTGCTGGGAATGACCCTGATGTTCATTCTGGGCAACGTGCTCTGCGCCCTGGCGCCGAACTACACCACCCTCATGGCCGCCCGGGTCATCACTGCGTTATGCCACGGGGCGTTTTTTGGTATCGGCTCGGTGGTGGCGGCCGGGTTGGTGGCGCCGAACAAACGAGCCCAGGCGATCGCGATGATGTTCACCGGCCTGACCTTGGCGAATGTCCTGGGCGTGCCGCTGGGTACGGCCTTGGGCCAATATGCCGGCTGGCGGTCGACGTTCTGGGCTGTGTCGGTGATCGGTGTGATCGCGGCCATCGCCCAGTGGGTCTGGCTGCCAAAGGAAATCCCGATGGACAAGGCCAACCTCGCCAGCGAATTCAAGGTATTGGGCAAGGCCAACGTGTTATTGGCCCTGGGCATGAGCGTGCTGGCCTCCACCAGCCTGTTCAGCGTATTCACCTACATCGCGCCGATCCTGCAGGACATCACCGGCGTCAGCCCTCACGGTGTCACCGTCATGCTGTTGCTATTCGGGGTCGGCCTGACGGCGGGGAGTTTCCTCGGTGGACGCCTGGCCGACCGGCGCTTGCTGCCATCCCTGGTGGGCATGGCGCTGGCCGTGGTGCTGGTGCTCGCCGCCTTCAGCCAGACCAGCCGATCGGTGATCCCGGCGGCGATTACCCTGGTGCTGTGGGGCGTCTTTGCCTTCGCCCTTTGTCCGATCCTGCAACTGCTGATCATTGACCAGGCCCATGAGGCCCCGAACCTCGGCTCGACCCTGAACCAGAGCGCGTTCAACCTTGGCAATGCCGCCGGCGCGTGGATCGGCGGCCTGGTCGTCGCCAGCGGGGCCGACCTTGCGGATCTGCCGTGGACCGGCGCCCTGGTTGGCGGGCTGACCGTACTGGCCGCGCTTTACTTTATTTTTCGGCAGCGTCGCTTGGGCGCCGTGGCACGCCTTGCCGACTGA	MPLALLALAVAAFGIGTTEFVIMGLLPDVARDLAVSIPHAGLLITGYALGVVFGAPILAIGTANMPRKATLLGMTLMFILGNVLCALAPNYTTLMAARVITALCHGAFFGIGSVVAAGLVAPNKRAQAIAMMFTGLTLANVLGVPLGTALGQYAGWRSTFWAVSVIGVIAAIAQWVWLPKEIPMDKANLASEFKVLGKANVLLALGMSVLASTSLFSVFTYIAPILQDITGVSPHGVTVMLLLFGVGLTAGSFLGGRLADRRLLPSLVGMALAVVLVLAAFSQTSRSVIPAAITLVLWGVFAFALCPILQLLIIDQAHEAPNLGSTLNQSAFNLGNAAGAWIGGLVVASGADLADLPWTGALVGGLTVLAALYFIFRQRRLGAVARLAD	PGPT0028991_4002	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
D1-36_04786	885	yfdC	COG2116	Inner membrane protein YfdC	ATGGACACTCATAAAGACGGCAAGACCCCTGATCTCTCGGCAGAGGAGCAGCACGAAGTCGACCGCAACCAGCCGCCTCGCGCCGCGGTGTTGCATGAAATCATCCGCACCCAGGGTGACCAGGAATTGGAGCGCAGCGTGGCGGCGCTGTGGTGGTCGGCCCTTGCGGCCGGGTTGACCATGGGGCTGTCGCTGATGGCGATGGGGCTGCTCAACTCGCGGTTGCCGGATCATGAAGGTTTCAAGGTGATCGCCAGCCTCGGCTATTGCGCGGGCTTCCTGGCGGTGATCCTCGCGCGCCAGCAATTGTTTACCGAAAATACCCTGACCGCTGTGCTGCCGATCATGAGCAAGCCGACACTGGGCAACTTCGGCCGGTTGTTCCGGCTATGGAGCGTGGTGCTGGTGGGTAACCTCTGCGGCACGCTGCTGGTGGCCTACGTGATGCTGCATCTACCGATTTTCGACCAGCGCACCGACCTGGCCTTTCTCGATATCGGTCGCAAGGTCATGGAAAACGACACGGGCCAGATGTTCGCCAAGGGCATCATCTCCGGCTGGATGATCGCCACCATGGTCTGGATGATCCCGTCCATGGAAAGCGCCAAGATGTGGATCATCGTGCTGATCACTTACCTCATGGCGCTTGGGGATTTCACCCACATCGTCGTCGGCTCGGCCGAGGTGTCTTACCTGGTGTTTGCCGGCCAGCTGTCGTGGGAAGACTTCTGGATGGTGTTCGCCGCACCGACGTTGGCGGGGAACATTATTGGCGGCAGTTTCATCTTCGCGCTGATCAGCCACGCCCAAGTGCGCAGCGAGACCAATACGCCCCTCAGTCGGCAAGGCGTGCCACGGCGCCCAAGCGACGCTGCCGAAAAATAA	MDTHKDGKTPDLSAEEQHEVDRNQPPRAAVLHEIIRTQGDQELERSVAALWWSALAAGLTMGLSLMAMGLLNSRLPDHEGFKVIASLGYCAGFLAVILARQQLFTENTLTAVLPIMSKPTLGNFGRLFRLWSVVLVGNLCGTLLVAYVMLHLPIFDQRTDLAFLDIGRKVMENDTGQMFAKGIISGWMIATMVWMIPSMESAKMWIIVLITYLMALGDFTHIVVGSAEVSYLVFAGQLSWEDFWMVFAAPTLAGNIIGGSFIFALISHAQVRSETNTPLSRQGVPRRPSDAAEK	PGPT0000590_420	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_TRANSPORT	PLANT_DERIVED_FORMATE_TRANSPORT,PGPT0000590-yfdC-K21990	NA	NA
D1-36_04787	402			hypothetical protein	ATGAATTTCCACACCCGCAAATGGGTCAAGCCCGAAGACCTCAATCCCAATGGCACGCTGTTCGGTGGCAGCCTGTTGCGCTGGATCGACGAAGAGGCGGCCATCTATGCCATCGTCCAGCTGGGCAACCAGCGCGTGGTCACCAAGTACATCTCCGAAATCAATTTTGTCAGCGCTTCGCGCCAGGGCGACATCATCGAACTGGGTATCACCGCCACGGAGTTTGGTCGTACCTCCATCACCCTCACCTGCGAAGTGCGCAACAAGATCACCCGCAAAAGCATCCTGACGGTGGAAAAAATGGTCTTCGTCAATCTTGGCGAAGACGGCTTGCCCGCCCCCCATGGCCGGACCGAGATCAAGTACGTCAAGGATCAATTCCAGGACGATGCCATCGAATAG	MNFHTRKWVKPEDLNPNGTLFGGSLLRWIDEEAAIYAIVQLGNQRVVTKYISEINFVSASRQGDIIELGITATEFGRTSITLTCEVRNKITRKSILTVEKMVFVNLGEDGLPAPHGRTEIKYVKDQFQDDAIE	PGPT0001830_10	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001830-yciA-K10806	NA	NA
D1-36_04789	1410	ahcY	COG0499	Adenosylhomocysteinase	ATGAGCGCTGTTATCACGCCTGCTGCTTTTACCGACTACAAAGTCGCCGACATGTCCCTGGCTGACTGGGGCCGTCGCGAAATCATCATCGCCGAATCCGAAATGCCAGCCCTGATGGGCCTGCGTCGCAAATACTCTGGCGAACAGCCATTGAAGGGCGCGAAGATCCTCGGCTGCATCCATATGACCATCCAGACCGCCGTGCTGATCGAGACCCTGGTTGCACTGGGTGCCGAAGTGCGCTGGTCCTCCTGCAACATCTTCTCGACCCAGGACCAGGCTGCCGCCGCCATTGCCGCTGCCGGCATCCCGGTCTTCGCCTGGAAAGGCGAGACCGAGCAAGAGTACGAGTGGTGCCTGGAGCAGACCATCCTCAAGGATGGCCAGCCATGGGACACCAACATGATTCTTGACGACGGTGGCGACCTGACCGAGCTGCTGCACAAGAAGTACCCGGCCGTGCTGGACAAGGTCCATGGCGTGACCGAAGAAACCACCACTGGCGTACACCGCCTGCTGGACATGCTGGCCAAGGGCGAGCTGAAAATCCCGGCCATCAACGTCAACGACTCGGTGACCAAGAGCAAGAACGACAACAAGTACGGCTGCCGCCACAGCCTCAACGACGCCATCAAGCGCGGCACCGACCACTTGCTGTCCGGCAAGCAGGCCCTGGTGATCGGCTACGGTGACGTGGGCAAGGGCTCGGCCCAGTCCCTGCGTCAGGAAGGCATGATCGTCAAGGTGTCCGAAGTCGACCCAATCTGCGCCATGCAAGCCTGCATGGACGGCTTCGAACTGGTTTCGCCGTTCATCGACGGGATCAACGACGGCACCGAAGCCAGCATCGACAAAGCCCTGCTGGGCAAGATCGACCTGATCGTGACCACCACCGGCAACGTCAATGTCTGCGATGCCAACATGCTCAAGGCTTTGAAGAAGCGCGCCGTGGTCTGCAACATCGGCCACTTCGACAATGAGATCGACACCGCTTTCATGCGCAAGAACTGGGCATGGGAAGAAGTGAAGCCACAGGTCCACAAGGTTCACCGCACCGGCACTGGCAGCTTCGATCCGCAGAACGATGACTACCTGATCCTGCTGGCCGAAGGCCGCCTGGTCAACCTGGGCAACGCCACAGGCCACCCAAGCCGCATCATGGATGGCTCGTTCGCCAACCAGGTCCTGGCCCAGATCTTCCTGTTCGGCCAGAAATACGCCGACCTGCCACCGGCCCAGAAAGCCGAGCGCCTGACTGTGGAAGTACTGCCGAAAAAACTCGACGAAGAAGTGGCCCTGGAAATGGTCCGCGGTTTCGGCGGCGTGGTCACCAAGCTGACCAAGCAACAGGCTGACTACATCGGCGTTACCGTCGAAGGCCCGTTCAAGCCGCACGCTTACCGTTACTGA	MSAVITPAAFTDYKVADMSLADWGRREIIIAESEMPALMGLRRKYSGEQPLKGAKILGCIHMTIQTAVLIETLVALGAEVRWSSCNIFSTQDQAAAAIAAAGIPVFAWKGETEQEYEWCLEQTILKDGQPWDTNMILDDGGDLTELLHKKYPAVLDKVHGVTEETTTGVHRLLDMLAKGELKIPAINVNDSVTKSKNDNKYGCRHSLNDAIKRGTDHLLSGKQALVIGYGDVGKGSAQSLRQEGMIVKVSEVDPICAMQACMDGFELVSPFIDGINDGTEASIDKALLGKIDLIVTTTGNVNVCDANMLKALKKRAVVCNIGHFDNEIDTAFMRKNWAWEEVKPQVHKVHRTGTGSFDPQNDDYLILLAEGRLVNLGNATGHPSRIMDGSFANQVLAQIFLFGQKYADLPPAQKAERLTVEVLPKKLDEEVALEMVRGFGGVVTKLTKQQADYIGVTVEGPFKPHAYRY				NA	NA	NA	NA	NA
D1-36_04790	846	metF	COG0685	5,10-methylenetetrahydrofolate reductase	ATGTCCCAAGACCGTCGCTACAGCTTCGAATTCTTCCCGACGAAGACCGATGCTGGGCATGAAAAGCTGATCGCCACTGCCCGCCAGCTGGCAAGCTACAACCCTGATTTTTTCTCCTGCACCTACGGCGCTGGCGGTTCGACCCGCGACCGCACGATGAACACCGTGTTGCAGCTCGAAAGCGAAGTCAAAGTCCCCGCCGCGCCACACCTTTCTTGCGTGGGCGACAGCAAGGACGACCTGCGCAGCCTGCTGACCCAATACAAGGCAGCCGGCATCAAGCGCATCGTTGCCCTGCGCGGCGACCTTCCGTCGGGCATGGGCATGGCCAGCGGAGAGCTGCGCCACGCCAATGAACTGGTTGAATTCATTCGCGAGGAAACCGGCGAGCACTTCCACATCGAAATCGCCGCTTATCCGGAGATGCACCCGCAGGCGCGCAATTTTGAGGATGACCTGCACAACTTCGTGCGCAAGGCCAACGCCGGCGCCAACAGCGCGATCACCCAGTATTTCTTCAATGCCGACAGCTATTTCTACTTTGTCGAGCGTGTTCGCCAGATGGGTGTGGACATTCCCGTGGTTCCGGGAATCATGCCAATCACCAACTACAGCAAGCTGGCGCGTTTCTCGGACGCCTGCGGCGCGGAAATCCCGCGCTGGATCCGCAAGCAGCTGGAAGCCTATGGTGACGACACCGCCAGCATCCAGCGCTTCGGCGAAGAGGTCATCACGCAAATGTGTGAGCGTTTGTTACAAGGCGGCGCACCGGGGCTGCATTTCTATACCCTGAACCAGGCCGAGCCTAGCCTAGCGGTATGGAACAATCTCAAACTGCCGCGTTAA	MSQDRRYSFEFFPTKTDAGHEKLIATARQLASYNPDFFSCTYGAGGSTRDRTMNTVLQLESEVKVPAAPHLSCVGDSKDDLRSLLTQYKAAGIKRIVALRGDLPSGMGMASGELRHANELVEFIREETGEHFHIEIAAYPEMHPQARNFEDDLHNFVRKANAGANSAITQYFFNADSYFYFVERVRQMGVDIPVVPGIMPITNYSKLARFSDACGAEIPRWIRKQLEAYGDDTASIQRFGEEVITQMCERLLQGGAPGLHFYTLNQAEPSLAVWNNLKLPR	PGPT0008160_3558	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008160-metF-K00297	NA	NA
D1-36_04791	1083			hypothetical protein	ATGCCGAATGGTCAAAGGTCGACGACCCCACAACTTATCTATTTGGTCTATGGGGCCGAGACCTATCACCAGGAAGCGGTGTTCAGTATCGCCAGCGCCTTGGCGGGCCTGCGGGAGACCCCCGATGAGGCATTGGACATCCAAGTGTTCACCGACAATGCCGCGCCCTACGTGGATTTGCCCGTTCGAGTGCGCCACCTGGACAACGAAACGCGCCAAGGGTGGATCGCTCCCCACGGCTATCATTTCCGCGCCAAGCACGTGGTCATGCGGAAGGTGCTCGAGGAAAGCGACCTGGCATTGCTGATCGACACGGACACCTTCTTCCATTGCTCGCCGATCGAGCTGTTCAAGCGGATCGAGCCGGGCACACTGTTGTGCAATGCCGTCGGCATGAACTATGGCGCCAACAAGGATGCCGGGCTTTACCTGACCCTCGCCCAGCCCTTGGCTCAACGAGAACTGGCCGACGACAACATGCCGCTACTCAATTCCGGCGTGATTGGCCTGTACGCAGTCGATGCGGCAATCCTCGATCACTCCATTGCGCTGATGGACGAATTTTATCCGTTGGCCCAAGGAGCCTATACCCTGGAAGAGTTCTGCCTTTCGGTGGCGGCCTATCGCAAGGTCAAGGTGCGTGAATGTCCAGACCTGATCCACCACTACTGGAGCCGCAAGCAGCTGTTTCGGGCCAAGACCAAGGCCTGGTATGACAAACACCGCGCAGCCCCCGTGGGCCAACATGCCCTGGATGAAACGCGGCAAGTCACTGCCATACTACCGCGCCCACCTATCTTCCAGCGCCTGGCCTACAAATTCATTACCGTGGCGTTGCCCGGTCACAAACGTCAGTTCATGCGCGAGATCCTGTACGGCTGCTATCGCCATACCAATCCATTCGACCAGGCGTGCGGCCCGGTCTGGTGGGAAAAGGCCCTGGAGAACGTCGAGCACCGGTTGAAGAAGCCTTTGGAAGACCATGAGCTCAAACATTGGCTCAGCCATCCCGTGATTCGCCTGGTGCTGGGTAAACGCCGAGAAGCCATCTACCGACACCTGATGCAGACAAAGAGCAACTGA	MPNGQRSTTPQLIYLVYGAETYHQEAVFSIASALAGLRETPDEALDIQVFTDNAAPYVDLPVRVRHLDNETRQGWIAPHGYHFRAKHVVMRKVLEESDLALLIDTDTFFHCSPIELFKRIEPGTLLCNAVGMNYGANKDAGLYLTLAQPLAQRELADDNMPLLNSGVIGLYAVDAAILDHSIALMDEFYPLAQGAYTLEEFCLSVAAYRKVKVRECPDLIHHYWSRKQLFRAKTKAWYDKHRAAPVGQHALDETRQVTAILPRPPIFQRLAYKFITVALPGHKRQFMREILYGCYRHTNPFDQACGPVWWEKALENVEHRLKKPLEDHELKHWLSHPVIRLVLGKRREAIYRHLMQTKSN				NA	NA	NA	NA	NA
D1-36_04792	777			hypothetical protein	ATGCCCGTAATCCTCCCGTTGCTGACAGCCCTCCTTCTCTCGTGCCTGAGCGTTGCCGCCCAGGCCGAGAAGTTGCGCATTGTCACCGAACCCTGGGCACCTTATGTCTACGAGGAAAACGGCAAGACCCTTGGCCTGGACTATGAAACCACGGCCATTGTGTTCAAACGCCTGGGCATCGATGTGGAATGGCAACTGCTGCCGTGGAAGCGCTGCCTGGCCATGCTGGAGCAAGGTTTGGCAGACGGCGCGCTCGACATATTCCACAGCGACGAGCGCGATGCCCTTCTGCTATACCCCAGCGAACCGCTGTCGGAGGTTGAATTCGTCATGTTCTATGCCAACGCCCGCCCCCACCCTTTTCGCACGCTCGACGACCTGGACGGGCTGACCGTCGGCACGTCGCCCGGTTATCTGTATAGCCAGGCGTTCAGGGAATCGAGCCGATTCAAACGGGAAGCGGCTCCGACCCACGAAGCCAACTTCGGCAAGTTACAGCTGGGCCGCATCGACCTGCTCATCACCGACCGTCGTGTAGGCCGACACGCCGTCAAGGCGCTTCAACTGGACAACCAGATCACAGAGAATCCCACCGTGGTGAGCCGCCAGAGCCAATACCTGGCGGTACGACGCAAGGCGGGCATGGACTTGCTCGTGCAACGCTTCGGCGCCGAGCTCAAGCGTTTCAAGCATGAACCGGCCTATGCCGAGCTGAGTGCTCGTTATGGCGCTGCTCCGGCGGCCAAGGCGGCTGGGCACAACGCGGTGTCACGCTGA	MPVILPLLTALLLSCLSVAAQAEKLRIVTEPWAPYVYEENGKTLGLDYETTAIVFKRLGIDVEWQLLPWKRCLAMLEQGLADGALDIFHSDERDALLLYPSEPLSEVEFVMFYANARPHPFRTLDDLDGLTVGTSPGYLYSQAFRESSRFKREAAPTHEANFGKLQLGRIDLLITDRRVGRHAVKALQLDNQITENPTVVSRQSQYLAVRRKAGMDLLVQRFGAELKRFKHEPAYAELSARYGAAPAAKAAGHNAVSR	PGPT0020800_11498	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
D1-36_04793	1896	rhlE_3		ATP-dependent RNA helicase RhlE	ATGTCCTTTGCTTCCCTCGGTCTCTCCGAGGCTTTAGTCGGCGCCATCGAAGCCGCCGGCTACACCCAGCCTACCCCGGTGCAACAGCGGGCCATCCCCGCCGTGTTGCAAGGTCGCGACCTGATGGTCGCCGCACAGACAGGTACTGGCAAGACCGGCGGTTTCGCCCTTCCGATCCTGGAGCGGCTGTTCCCTAACGGTCACCCAGACAAATCCCAGCGCCACGGCCCGCGCCAACCGCGCGTCCTGGTCTTGACCCCGACCCGCGAACTGGCCGCCCAGGTGCACGAGAGCTTCAAGGTCTATGCGCGCGACCTGAAATTTGTCAGTGCCTGCATCTTTGGCGGTGTCGGCATGAACCCGCAGGTCCAGGCCATGGCGCGCGGCGTCGACGTGCTGGTGGCCTGCCCCGGTCGCCTGCTGGACCTCGCCGGCCAGGGCAGCGTCGATCTGTCCCACGTGGAAATCCTCGTGCTGGACGAAGCCGACCGCATGCTCGACATGGGTTTTGTCCATGACGTGAAGAAAGTGCTGGCACGCCTGCCGGCCAAGCGCCAGAACCTGTTGTTCTCGGCGACCTTCTCCAAGGACATCACCGACCTGGCCGGCAAGCTGTTGCACAACCCGGAACGCATCGAAGTCACGCCGCCGAACACCACGGTCGAGCGCATCGAACAGCGCGTGTTCCGCCTGCCGGCCAGCCACAAGCGTGCCCTGCTGGCGCATTTGATCACCACAGGCGCCTGGGAACAGGTCCTGGTGTTCACCCGCACCAAGCACGGCGCCAACCGCCTGGCTGAATACCTCGACAAACATGGCCTGCCGGCCGTGGCGATCCATGGCAACAAGAGCCAGAACGCTCGCACCAAGGCCCTGGCTGACTTCAAGGCCGGCGAAGTGCGCATCCTGGTCGCCACCGACATCGCCGCCCGTGGCCTGGATATCGACCAGTTGCCCCATGTGGTCAACTTCGAACTGCCGAACGTCGATGAAGACTACGTGCACCGTATCGGCCGTACCGGCCGGGCCGGTCGTTCGGGCGAAGCGATTTCCCTGGTCGCGCCGGACGAAGAAAAACTGCTCAAGAGCATTGAGCGCATGACCAAGCAGAAAATCCCCGACGGCGACCTGATGGGCTTCGATGCCAGCACGATCGAGGCCGAAAAGCCTGAAGTGCGCGAGCGTCCGGATGTGCGCAACCCGCGCAACCCACGTGGCCCGCGGGGCGACGGCCCGAATGGCAGTGGCGGCGGTCGCAAGGACAAGGGCAAGGACAAGGGCAAGGGCAAGGACAAATCGGCCAGCAACGGTCGCGGCGAGCGCCCGGCCCGCGAGCAGAAACCACGCGAAGGTACGCCGGCCCGCGAACAGCAGCGCCCTGCCCCTCGCGCCGCAGCCGATCGCGGCCCGGCCGATCGCGGCCCGGCCGATCGCGCCCCGGACGAGTTCCTCGACGACGATATCGATAACTTCGGTAACCGTGTCGACTACGTGCCACAGCAGAAACCGGCCCAGGGTCGCGGTCGCCGTCCTGGCGCCCCGGCACAAGGCGCAGGTTCGGGCGCACCGCGCGGTGGCCAGTCACAAGGTCGCCAGAACGGCCCGCGCAACAGCAACGGTTCTTCCACCGGCACCCCGCCGGCCAAGCGCAACGGCCCGCGCAGCGGCGCCCCACGTGACGGCCAGGCCCGGCGCGAAGACTCCCGACCTCGCCGCCAGGCCCGTGGTGACGACCAGCCTCGCCAGGAACCCGCCGTGCAGAACCCGCGAGGCAACCAGCCGAAAATCATCCACAAGGAATCGAAAACCGATCGTTTCCCGACGCCTGAGCAGCTGGACCAATTACCAAGCCGTCCGCGTGGCGAAAAACCGGCCTTGCTGACACGCAATCGCTGA	MSFASLGLSEALVGAIEAAGYTQPTPVQQRAIPAVLQGRDLMVAAQTGTGKTGGFALPILERLFPNGHPDKSQRHGPRQPRVLVLTPTRELAAQVHESFKVYARDLKFVSACIFGGVGMNPQVQAMARGVDVLVACPGRLLDLAGQGSVDLSHVEILVLDEADRMLDMGFVHDVKKVLARLPAKRQNLLFSATFSKDITDLAGKLLHNPERIEVTPPNTTVERIEQRVFRLPASHKRALLAHLITTGAWEQVLVFTRTKHGANRLAEYLDKHGLPAVAIHGNKSQNARTKALADFKAGEVRILVATDIAARGLDIDQLPHVVNFELPNVDEDYVHRIGRTGRAGRSGEAISLVAPDEEKLLKSIERMTKQKIPDGDLMGFDASTIEAEKPEVRERPDVRNPRNPRGPRGDGPNGSGGGRKDKGKDKGKGKDKSASNGRGERPAREQKPREGTPAREQQRPAPRAAADRGPADRGPADRAPDEFLDDDIDNFGNRVDYVPQQKPAQGRGRRPGAPAQGAGSGAPRGGQSQGRQNGPRNSNGSSTGTPPAKRNGPRSGAPRDGQARREDSRPRRQARGDDQPRQEPAVQNPRGNQPKIIHKESKTDRFPTPEQLDQLPSRPRGEKPALLTRNR	PGPT0013740_103	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927	NA	NA
D1-36_04794	615	yceI	COG2353	Protein YceI	ATGTTCAACCTCGACTCCAAAGGAATAGAAAGCATGTTGAAAAAGACGCTCGCCGCCCTGGCAATCGGTTCTGCCCTGCTGTCCGCCGGCCAGGCCATGGCCGCAGACTACGTGGTCGACAAGGAAGGCCAGCATGCCTTCGTTGATTTCAAGATCAGCCACCTGGGCTATAGCTTCATCACCGGTACCTTCAAGGATATTGACGGCAAGTTCAGCTTCGACGCCGCCAAGCCTGAAGACAGCAAGATCGAGTTCAACGTCAACACCGCCAGCGTGTTCACCAACCACGCCGAGCGCGACAAACACATCGCCAGCGCTGACTTCCTAAACGCCAGCAAATTCGGCAAGGCCACGTTCGTGTCCACCAGCGTCAAGTCCACCGGCGAAAACACCGCCGACGTGACCGGTGACCTGACGCTGATGGGCGTGACCAAGCCGGTTGTGGTCAAGGCGACCTTCCTGGGCGAAGGCAAAGACCCATGGGGTGGCTACCGTGCCGGCTTCGAAGGCACTACCACCATCAAGCGTTCCGACTTCGGCAAGCAGAAAGACCTGGGTCCGAAATCCGACGCGGTCGAGTTGTATGTCTCGTTTGAAGGCGTCAAGGCGAAGTAA	MFNLDSKGIESMLKKTLAALAIGSALLSAGQAMAADYVVDKEGQHAFVDFKISHLGYSFITGTFKDIDGKFSFDAAKPEDSKIEFNVNTASVFTNHAERDKHIASADFLNASKFGKATFVSTSVKSTGENTADVTGDLTLMGVTKPVVVKATFLGEGKDPWGGYRAGFEGTTTIKRSDFGKQKDLGPKSDAVELYVSFEGVKAK				NA	NA	NA	NA	NA
D1-36_04795	552	yceJ_2	COG3038	Cytochrome b561	ATGCAGCTTCGCAACTCCTCTTCTCGTTATGGCTGGGTCAGCATCGTTTCCCATTGGGCCGTTGCCTTGGCGGTGTATGGGCTGTTTGCGCTGGGCTTGTGGATGGTCGGTTTGGACTACTACAGCACCTGGCGCAAAGACGCGCCGGAGCTGCACAAAAGTATCGGCCTGGTGCTGTTGGCGGTGATGGTGTTGCGGGTGCTCTGGCGTTTTGTCAGCCCGCCGCCACCGACCCTGGAAACCTACGGGCGACTGACCCGCGTAGGCGCCAAGCTTGGCCACAGCGCGCTGTATCTCGGGCTGTTCGCCGTGATGATTGCCGGTTACCTGATTTCCACCGCAGACGGTGTCGGGATCTCGGTGTTTGGTCTGTTTGAAGTACCCGCGCTGGTGTTCGGACTGCCCGATCAGGCAGATGTCGCCGGCCAGATCCACTTTTACCTGGCATGGGCGTTGGTAATTTTTTCCGGCCTTCATGCGTTGGCAGCATTGAAACACCACTTTATCGACCGTGACGCGACCCTCAAGCGCATGCTGGGGCGCCAAGCCTGA	MQLRNSSSRYGWVSIVSHWAVALAVYGLFALGLWMVGLDYYSTWRKDAPELHKSIGLVLLAVMVLRVLWRFVSPPPPTLETYGRLTRVGAKLGHSALYLGLFAVMIAGYLISTADGVGISVFGLFEVPALVFGLPDQADVAGQIHFYLAWALVIFSGLHALAALKHHFIDRDATLKRMLGRQA				NA	NA	NA	NA	NA
D1-36_04796	162			hypothetical protein	ATGAAAATACTAATGGCAATGGTCGTATCGGTTTCGCTGTACGGGTGTGTGTATGGTGAATGTCGGGATCCCCTGATTATTCCGATGATTCCAGAACGGGACCCTCAGTTGGCGTACAAATGCACCTTTGATCCATATAAGCCTGAGTGCTCGGTTAATTGA	MKILMAMVVSVSLYGCVYGECRDPLIIPMIPERDPQLAYKCTFDPYKPECSVN				NA	NA	NA	NA	NA
D1-36_04797	1761	mnmC_2		tRNA 5-methylaminomethyl-2-thiouridine biosynthesis bifunctional protein MnmC	ATGTCTGCTGGTTGGCTGCGCGCCTGTGCGCTGGTGATGATAGGGCTGTTCAGCGTTTCGGCGCTGGCCAAGGACAAGCAACCGACGGCCATCGTCATCGGCGGTGGATTGGCCGGGCTGACGGCGGCCTACGAATTGCAGAACAAAGGCTGGGCCGTGACGCTGCTGGAAGCCAAGCCGAGCCTGGGCGGTCGCTCGGGCATGGCCACCAGTGAGTGGATCGGCAACGAAAAGACCCAGCCGGTGCTGAACAAATACGTCTCCACCTTCAAGCTGAGCACCACGCCGGCGCCGGAATTCGTGCGCACCCCGAGTTACCTGATCGACGGTGCTTATTTCACCGCCGCCGACCTGGCGACCAAGCAGCCCGCCACCGCCGAAGCGCTCAAGCGCTATGAAACCACCCTGGACGAGCTGGCGCGGTCCATCGACGATCCGCTGAACCCGACGGCCACCAACACGCTGCACGCCCTCGACCAGATCACCGTGTCCAACTGGCTCGACCGCTTGCAGCTGCCCGCTACCGCGCGGCAGTTGGTCAATCAGGAAATTCGCACGCGCTATGACGAGCCGTCCCGCCTGTCGCTGCTGTATTTCGCACAGCAGAACCGCGTCTATCGCGGCGTATCCGACCGTGACCTGCGCGCCTCGCGCCTGCTCGGTGGCAGCCCGGTATTGGCCCAGGCGTTCGTCAAGCAACTGAAAACTATCAAGACCGGCTCCCCGGTCTCGGCCATCTCCCAGGACAAGGACGGCGTCACCGTCAAGGTCGGCAGCGTGGGTTACCAGGCGGACTACGTCGTGCTCGCGGTGCCGCTGCGGGCGTTGAACAAGATCCAGCTGACCCCGGCCCTCGATGCCCAGCACCAGGGCGCGATCAAAGGCACCAATTACGGCTGGCGCGACCAGATCATGCTCAAGTTCAAGACCCCGGTCTGGGACAGCAAGGCGCGCATGTCGGGCGAGATCTACAGCAACGCCGGCCTGGGCATGATGTGGATCGAGCCGGCTTTGAAGGGCGGGGCGAATGTGGTCATCAACCTGTCCGGCGACAATGCCCGGGTGATGCAGGCTTTTGGCGACAAGCAGATGGTCGACCAAGTGCTGATCCGCCTGCATGCGTTTTATCCCCAAGCGCGCGGTGCGTTCACCGGTTATGAAATCCGTCGCTACAGCACCGACCCTTCCATGGGCGGCGCGTACCTGGCGTTTGGTCCGGGTCAGATCAGCAAATACTGGCGCCTGTGGGAAAAGCCTTTGCAGCGCGTAGCTTTTGCCGGTGAACACACCGACGCCATGTATCCAGGCACGTTGGAAGGCGCGCTACGCAGTGGCCAACGTGCCGCCAGCCAGGTGCAAGACTTGGCCGCCGGCAAATCATTCGAACCGGCTAAGGTGGCTCCGGTGGCGGCGGCGGCAGCGGGTGCGGTGGCTGCGAAGAAGGGCAACTTCTTCACCAACCTGTTCGGTGGCTCGGATGACGACAAAAAGCCGGAACCGGCCAAGGCTCCCGAGCCGGTAGCGCCGCCTCCAGCGCCGGCACCGGCCCCCGTCCCAGCCCCTGCGCCGGTGGAGCCACCCGCGCCGGCGCCGGCGAAGACCGAGCCAGCCAAGAAAGTCACGGCCAAGCCAGCGGCGAAGAAGCCGGCGGCCAAGACCCCGGCTAAAAAGGCCCCGGCCAAGGCTCCAGTGAAAAAGGCTGAGCCAGTGAAGAAACCCGCCGCCAAGCCGGCAGCGACTACTGAGATCAAGGCTCAGTAA	MSAGWLRACALVMIGLFSVSALAKDKQPTAIVIGGGLAGLTAAYELQNKGWAVTLLEAKPSLGGRSGMATSEWIGNEKTQPVLNKYVSTFKLSTTPAPEFVRTPSYLIDGAYFTAADLATKQPATAEALKRYETTLDELARSIDDPLNPTATNTLHALDQITVSNWLDRLQLPATARQLVNQEIRTRYDEPSRLSLLYFAQQNRVYRGVSDRDLRASRLLGGSPVLAQAFVKQLKTIKTGSPVSAISQDKDGVTVKVGSVGYQADYVVLAVPLRALNKIQLTPALDAQHQGAIKGTNYGWRDQIMLKFKTPVWDSKARMSGEIYSNAGLGMMWIEPALKGGANVVINLSGDNARVMQAFGDKQMVDQVLIRLHAFYPQARGAFTGYEIRRYSTDPSMGGAYLAFGPGQISKYWRLWEKPLQRVAFAGEHTDAMYPGTLEGALRSGQRAASQVQDLAAGKSFEPAKVAPVAAAAAGAVAAKKGNFFTNLFGGSDDDKKPEPAKAPEPVAPPPAPAPAPVPAPAPVEPPAPAPAKTEPAKKVTAKPAAKKPAAKTPAKKAPAKAPVKKAEPVKKPAAKPAATTEIKAQ	PGPT0007641_160	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINE_USAGE	PLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007641-aofH-K00274	NA	NA
D1-36_04798	1407	bioA		Adenosylmethionine-8-amino-7-oxononanoate aminotransferase	ATGGGCCTGAATAACCAGTGGATGCAACGCGATCTCGCGGTGCTGTGGCACCCCTGCACGCAGATGAAAGATCACGAACAGTTGCCGCTGATCCCCATCAAGCGCGGCGAAGGCGTGTGGCTGGAAGACTTCGAAGGCAAGCGCTACCTCGACGCGGTGAGTTCCTGGTGGGTCAACGTCTTCGGCCACGCCAACCCGCGCATCAACCAGCGCATCAAGGATCAGGTCGATCAACTGGAGCACGTGATTCTCGCCGGTTTCAGCCACCAGCCGGTGATCGAGCTGTCCGAGCGTCTCGTGAAGATGACGCCTGAAGGACTGACCCGGTGCTTCTACGCCGATAACGGTTCGTCCTGCATCGAAGTGGCGATGAAGATGAGCTTTCACTACTGGATCAATCGCGGCCGGCCGGACAAAAAACGCTTCGTCACCCTGAGCAACAGTTACCACGGCGAAACCATCGCGGCGATGTCGGTGGGCGACGTACCGCTGTTCACCGAAACCTACAAGGCGTTGCTGCTGGACACGATCAAGGTACCCAGCCCCGACTGCTACCACCGCCCCGAGGGCATGGGCTGGGAAGAGCACTCGCGAAACCTGTTCGCGGCCATGGAACAGACCCTCGCCGAACACCACGACAGCGTCGCCGCCGTGATTGTCGAACCGCTGATCCAGGGCGCCGGCGGCATGCGCATGTATCACCCGGTGTACCTGAAGCTGTTACGCGAAGCCTGCGACCGCTACGGCGTACACCTGATCCACGATGAAATCGCTGTCGGCTTCGGTCGCACCGGGACGATGTTTGCCTGTGAGCAGGCCGGCATCACCCCGGATTTCCTTTGCCTGTCCAAGGCACTGACCGGCGGCTACCTGCCGCTGGCGGCATGCATGACCACCGACGAGGTGTACAGCGCGTTCTACGACGACTACCCGACTCTGCGCGCCTTCCTGCATTCCCACAGCTACACGGGTAACCCGCTGGCCTGCGCCGCAGCCCTGGCAACGCTGGATATCTTCGAAGAAGACAACGTCATCGAAACCAACAAGGCCCTGGCCCAACGTATGGCGAGCGCCACCGCGCACCTGGCCGATCACCCGAACGTGGCCGAAGTGCGCCAGACCGGCATGGTGCTGGCCATCGAGATGGTCAAGGACAAGGCCAGCAAAACCGCCTATCCGTGGCAGGAACGGCGTGGGCTGGCGGTGTTCCAGCATGCCCTGGAGCGTGGTGCGTTGTTGCGGCCGCTGGGCAGCGTGGTGTATTTCCTGCCGCCTTATGTCATCACGCCGGAGCAGATCGATTTCCTGGCGCAAGTGGCCAGCGAAGGCATCGACATTGCCACCCGGGAAAAGGTTAGCGTGGCAGTGCCGAAGGACTTCCATCCGGGTTATCGCGATCCGGGCTGA	MGLNNQWMQRDLAVLWHPCTQMKDHEQLPLIPIKRGEGVWLEDFEGKRYLDAVSSWWVNVFGHANPRINQRIKDQVDQLEHVILAGFSHQPVIELSERLVKMTPEGLTRCFYADNGSSCIEVAMKMSFHYWINRGRPDKKRFVTLSNSYHGETIAAMSVGDVPLFTETYKALLLDTIKVPSPDCYHRPEGMGWEEHSRNLFAAMEQTLAEHHDSVAAVIVEPLIQGAGGMRMYHPVYLKLLREACDRYGVHLIHDEIAVGFGRTGTMFACEQAGITPDFLCLSKALTGGYLPLAACMTTDEVYSAFYDDYPTLRAFLHSHSYTGNPLACAAALATLDIFEEDNVIETNKALAQRMASATAHLADHPNVAEVRQTGMVLAIEMVKDKASKTAYPWQERRGLAVFQHALERGALLRPLGSVVYFLPPYVITPEQIDFLAQVASEGIDIATREKVSVAVPKDFHPGYRDPG	PGPT0022100_216	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022100-bioA-K00833	NA	NA
D1-36_04799	720	rsmE	COG1385	Ribosomal RNA small subunit methyltransferase E	ATGAGACTGTCCCGCTTCTTCATCGACACCCCCCTGAGCCTTGGCGATCACGAGTTGCCTGAAGCCCAGGCCCATTACATCGGCCGGGTGCTGCGCATGGCCGAGGGCGATGCGGTGCAGGTGTTCGATGGCTCGGGCCAGGAGTTTCGTGGCACCCTGGCCGAGGTCGGCAAGAAACGCGTGCGCGTGCAGCTCGACGAGCAATTTGCCGGGCAAGCCGAGTCGCCGTTGCGCATTCACTTGGGCCAGGGCCTGTCCCGGGGCGAGCGCATGGATTGGGCGATCCAGAAGGCCACCGAGCTGGGAGTCACCGAGATCACGCCGATCTTCACCGAGCGGTGCGAAGTGCGCCTCAAGGACGAGCGCGCCGACAAGCGCCTGCTGCATTGGCGCCAGGTGGCGATCAGCGCCTGCGAGCAATGCGGGCGCTCCACCGTGCCGGTGATCCACCCTCCACTGCTGCTGGCCGACTGGCTGAAGCAGACCGACGCCGAATTGAAACTGGTGTTGCACCCGGTGGCCGATCCGCTGACCAGCCATGCCAAGCCCTCGTCCCTGGCGTTCTTGATCGGCCCCGAGGGCGGGTTGTCGGATGGCGAGGTCGAGCAGGCCAAGGCCGCCGGCTACCACGCCGCCCGCCTCGGCCCCCGCGTGCTGCGCACCGAAACCGCTCCGGTGGTGGCGCTGGCGGTGGCGCAGCAGTTGTGGGGGGATTTCTGA	MRLSRFFIDTPLSLGDHELPEAQAHYIGRVLRMAEGDAVQVFDGSGQEFRGTLAEVGKKRVRVQLDEQFAGQAESPLRIHLGQGLSRGERMDWAIQKATELGVTEITPIFTERCEVRLKDERADKRLLHWRQVAISACEQCGRSTVPVIHPPLLLADWLKQTDAELKLVLHPVADPLTSHAKPSSLAFLIGPEGGLSDGEVEQAKAAGYHAARLGPRVLRTETAPVVALAVAQQLWGDF				NA	NA	NA	NA	NA
D1-36_04800	903	gltI_2	COG0834	Glutamate/aspartate import solute-binding protein	ATGCAAAGAATCACGTTGATCGGCTGCACCCTGAGCCTGCTGTTGAGCGCCCCGGCATTCGCCAACGAAGCGCCGCCGGCCGGCACGCTGGACAAGATCGCCAGCAGCAAGAGCATCACGCTGGGTTATCGCGACGCCTCGGTGCCGTTTTCCTATGTGGGGGACAACAGCGGCAAACCGATGGGCTACTCCGTGGAGCTGGCGAGCAAGATCGTCGAGCGGATCAAGCAGCAACTGGCGCTGCCGCAACTGAACGTGAAATACAACCTCGTCACTTCCCAGACCCGCATCCCACTGGTGCAGAACGGCACCGTGGACCTGGAATGCGGCTCCACTGGCGTAACGGCCGAGCGGCAGAAGCAAGTGGCGTTTTCCTACGGTTTCATTTACGTGAAGGGCCAGTTGCTGACGGCCAAGGACAGCGGCATTCACGGCTTCGCCGACCTGCGGGGCAAGAACGTGGTGACCACCGCCGGCACCACCAACGAGCGGTTCCTCAAAAGCTACAACCTGAACAACAAAGTCGAGATGTTCGTCATCAGCGCCAAGGACCACGGTGAAGCCTTCCAGATGCTCGAGACCGGTCGGGCGGCGGCGTTCTACATGGACGACGCGCTGCTCTATGGCGAACGGGCCAAGGCGCGCGATCCACACAAATGGGTCGTGGTCGGGGAAGAACAGTCGCGGGAAATCTACAGCTGCATGGTGCGCAAGGACGATCCGCAATTCCTGGCGCTGGTCAACGCGACCCTGGCGGACCTGTACAAATCAGGAGAAATCAACACCATCTACGACCGTTGGTTCCAGAAGCCGATCCCGCCGAAGGGGCTGAACCTGGAGTTCCCGATGACCAGCGAGTTGAAGGCGATCATTGCCAAGCCGACGAGCGATCCGGTGCAGTAG	MQRITLIGCTLSLLLSAPAFANEAPPAGTLDKIASSKSITLGYRDASVPFSYVGDNSGKPMGYSVELASKIVERIKQQLALPQLNVKYNLVTSQTRIPLVQNGTVDLECGSTGVTAERQKQVAFSYGFIYVKGQLLTAKDSGIHGFADLRGKNVVTTAGTTNERFLKSYNLNNKVEMFVISAKDHGEAFQMLETGRAAAFYMDDALLYGERAKARDPHKWVVVGEEQSREIYSCMVRKDDPQFLALVNATLADLYKSGEINTIYDRWFQKPIPPKGLNLEFPMTSELKAIIAKPTSDPVQ	PGPT0000750_535	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000750-gltI|aatJ-K10001	NA	NA
D1-36_04801	1239	dadA1_1	COG0665	D-amino acid dehydrogenase 1	ATGGCTCAGCGGGTTTGCATCATCGGTGGAGGCGTGATCGGGTTGGCGACGGCTTACGCGCTGGTCCGCGAAGGCGTCGATGTCACACTGGTGGAAGCCCGCGACGCGTTGGGCAGCGAAACCAGCTTCGCCAATGGCGGGCAGTTATCTTATCGCTACGTCACGCCGCTGGCGGATGCCGGGGTGCCGTGGCAGGCCCTTGGCTGGATGTTGCGCGCGGACTCGCCACTCAAGCTGCGCCCACGCCTCGACCCGGCCCAATGGCGCTGGATGGCGGCGTTTATCGCCGCGTGCCGGACCTCGGTCAACCGCCGCAACGGTGAACACCTGTTGCGTCTGGCACTGCTGAGCCAAGCGACATTGCAGACCTGGCGTGAAGAGGATCGCCTCGACGGCTTTGACTGGCGGCGCAACGGCAAATTGGTGACGTTTCGCAATGCCAGCCATTTCGAACACGCTCGGCGGCGGGTAACGGATCCTGCTCAGCACGTACTGGGCCACGCCGATTGCGCGAGCCTGGAACCCGCATTGGCCGACGTGCCGTTCGCGGGCGGGATCTATACGCCGGACGAGGAGGTTGGCGATTGCCATGGCTTCTGCCAGCAATTGGCGGCGCGGTTGCGGGCTTCGGGGCGTTGCGAGTTCCTGTTGGGGCGTGCGGTGACTGCTACCCATTATGCCAACGGTGAGGTGCAGGCTATCGACCTGGGCGGCCATCGCCTGGACGTGGACGCCTTGGTGATCGCCGCTGGCCACCGCAGCGCAGCGCTGGCGTTGCCTGGCGTACGAATGCCGTTGTACCCGCTCAAGGGCTACAGCCTGACGGTCCCCATCGAGGCGCGGCACCGGGCGCCGGACCTGAGCATCACCGACTATGACCGCAAGGTCGTCTACGCTCGCATCGGCGAACAATTGCGAGTGGCGGCGATGGTGGACATTGTCGGTTTTGACCCGGCACCGGACCCCAGGCGCCTGGCCTTGATCCGCCGCCAGGCCATGGAAACCTTCCCACAGGCCGGGGACTACGAACGCGCCGTCGAGTGGGCGGGCATGCGTCCGGCCACGCCCAGCGGCGTGCCCCTGATTGGCGCCACCGGCTATCGCAACCTGTGGCTCAACCTGGGCCATGGCGCCTTGGGCTTTACCCTGGCCTGTGGCAGCGGCCGCTTGCTCAGTGAACTGATCCGCCAACGTACACCTTCCATCGACATGCGAGGCCTCGCGCCCCGCGCCGCCTGA	MAQRVCIIGGGVIGLATAYALVREGVDVTLVEARDALGSETSFANGGQLSYRYVTPLADAGVPWQALGWMLRADSPLKLRPRLDPAQWRWMAAFIAACRTSVNRRNGEHLLRLALLSQATLQTWREEDRLDGFDWRRNGKLVTFRNASHFEHARRRVTDPAQHVLGHADCASLEPALADVPFAGGIYTPDEEVGDCHGFCQQLAARLRASGRCEFLLGRAVTATHYANGEVQAIDLGGHRLDVDALVIAAGHRSAALALPGVRMPLYPLKGYSLTVPIEARHRAPDLSITDYDRKVVYARIGEQLRVAAMVDIVGFDPAPDPRRLALIRRQAMETFPQAGDYERAVEWAGMRPATPSGVPLIGATGYRNLWLNLGHGALGFTLACGSGRLLSELIRQRTPSIDMRGLAPRAA	PGPT0020315_3110	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_D-AMINO_ACID_DEGRADATION,PGPT0020315-dadA-K00285	NA	NA
D1-36_04802	924			hypothetical protein	ATGCGCCTTCGTCATATCGAGATTTTCCAGGCCATCCGCCAGACCGGCTCCATCAGCGGGGCGGCGCAATTGTTGCACGTCTCCCAGCCGGCCGTGACCAAGGTGCTGCAGCATGCCGAACAGCAACTGGGGTTTGCGCTGTTCCTGCGGGTGCGCGGCAAGCTGCAGGCCACGCCCGAAGCGCTGGAACTGGAACGCGAGGTCGACAAGGTCAGCGAAAGCCTGCAAGGCGTTCGGCGCCTGGCCCAGAGCCTGCGCCGCGAGCCCGGCCACAGCCTGCGGATCGGCGCCACGCCAGCCTTGGCCTTGTCGCTGATGCCGGCGGCGATCCATCACTGGACCCGACTGTATCCAGACATCGTGTGCGAATTATCCAGCGCCCACAGCCGCGAATTGACGCAAAACCTGCTGATGCGTGAGATCGACGTCGCCCTGACTTTGCAACCGCCCGATCACCCCGGCCTCAAGGCCCAGCCCCTCGCCAGCGGCGTGCTGGTGGCCCTGGCGCCCAGCGGGCACTGGCCCGAAATGGCCATCGGCACGCCCATGCCATTGCAGGCCCTGGCCGATGCGCCGTTGATCGGCCTGTCCAGCACCGACCCGCTATCGGCCAGGCTGGACGGCTATCTCAAGTCAGTGGAACCGCCGCCGCGCATCAACATCGCCGTGCAGACGTACTCACTGGCCCGGGCCATGGTCGAGTCCGGTGCCGGGCTGGCGGTGATCGACCCGTTCACGGCCTTGGGCGCTTCGCGCACCCGCACGGCCATCCGCCCGTTGTCACCTGCGCTGCCCATTTCCCTGTACGCCGTGACCCGGGCCAACGAGGCCCCAGCCCATACAATGGGTGCCCTGCTGGAGATTTTCGCCAGCCAGGCCCAGGCGCAACTGGATCGTCTGTTTACAAGTGCTCAAAGCACATAG	MRLRHIEIFQAIRQTGSISGAAQLLHVSQPAVTKVLQHAEQQLGFALFLRVRGKLQATPEALELEREVDKVSESLQGVRRLAQSLRREPGHSLRIGATPALALSLMPAAIHHWTRLYPDIVCELSSAHSRELTQNLLMREIDVALTLQPPDHPGLKAQPLASGVLVALAPSGHWPEMAIGTPMPLQALADAPLIGLSSTDPLSARLDGYLKSVEPPPRINIAVQTYSLARAMVESGAGLAVIDPFTALGASRTRTAIRPLSPALPISLYAVTRANEAPAHTMGALLEIFASQAQAQLDRLFTSAQST				NA	NA	NA	NA	NA
D1-36_04803	618			hypothetical protein	ATGTATCACGGAGAACGACTCAACGCCTGGACGCACCTGGTTGGGGCTGTCGCGGCGTTTATCGGCGCGGTGTGGTTGTTGGTGATTGCCGGAATGGCCGGCGATCCCTGGAAGATTGTCAGCGTGGCAATCTACGGGTTCACCTTGCTGGCGCTCTACAGCGCCTCGACGGTTTATCACAGCGTGCGCGGACGCAAAAAAGAAATCATGCAGAAGGTCGATCATTTTTCGATCTACCTGTTGATTGCTGGCAGCTACACGCCGTTCTGCCTGGTGACCCTGCGCGGGCCGTGGGGCTGGACGTTATTCGGGATTGTCTGGGGACTGGCCCTGATCGGCATCCTGCAGGAGATCAAGCCACGCTCCGAAGCGCGGGTCCTCTCGATCGTCATATACGCGGTGATGGGCTGGATCGTCCTGGTGGCGGTCAAGCCGTTGTTGGCGGCGCTGGGTAGCACCGGGTTCGCCTGGCTGGCCTCGGGCGGCGTGCTCTACACCGTGGGCATCGTTTTTTTCGCGCTCGACCAACGCCTGCGCCATGCCCATGGCATCTGGCATTTGTTCGTCATTGCCGGCAGCCTGCTGCATTTCGTGGCGATTCTGTTCTATGTGCTTTGA	MYHGERLNAWTHLVGAVAAFIGAVWLLVIAGMAGDPWKIVSVAIYGFTLLALYSASTVYHSVRGRKKEIMQKVDHFSIYLLIAGSYTPFCLVTLRGPWGWTLFGIVWGLALIGILQEIKPRSEARVLSIVIYAVMGWIVLVAVKPLLAALGSTGFAWLASGGVLYTVGIVFFALDQRLRHAHGIWHLFVIAGSLLHFVAILFYVL				NA	NA	NA	NA	NA
D1-36_04804	915	gltC_4		HTH-type transcriptional regulator GltC	ATGCTGATCGACGAAGAATTGACCCTGAAAAAACTCGAGGTGTTCCTGGCCTTCATGCGCACCGGCAACCTGGCGCGGGCGGCGGCCGATCTGCAAACCAGCAACGTCAGCGTGCATCGGGCCATTCACTCCTTGGAGAGCGCCCTGCGTTGTCCATTGTTCAAGCATGAGGGCCGCAACCTCACGCCGCTGGAAAGCGCCTATGTATTGGAAGAGCGTGCGCAGAAATTGATCCAGGACGTGATCGAAAGCGTGCGCCTGACCCGTGAGGCGGCTGGTTTTTCCGCCGAGCGTTTCAAGCTGGGATCGTTGTATTCATTGACGGTCAAGACCGTGCCGCAGCTGATCATGGGCCTGAAGATCCGCCGCAGCGAGCTCAATATCGACTTGATCATGGGCTCCAACATCGACCTGTTGTACAAGCTCAAGAACATGGAAGTCGATGCGATCCTGGTGTCGCTGGACGACAGCGTCAACGACCCGGACTGCGAGCAGATCCAGCTGTTTTCCGATGACATCTTCCTCGCCACGCCGGCCGACTCCCCCTTCGCCCAGCGCAGCGAAGTGGACCTGGCCGAAGTGCGCGACGAGACCTTCATCACCCTGACCCAAGGCTTCGCCACGCATCAGGACGGCGTTCGGGTATTCAAGCAGGCGGGGTTCGAGCCGAAGGTGGCGATGCAGGTCAACGACATCTTCACCCTGCTGAGCATGGTCAGCTCAGGGGTAGGCTATGCCTTGCTGCCGGGCAGGATCGCGGCGGTGTACGAAAACCGGGTGAAACTGATCCCGTTGCAGGAAAAGTACCGTTTGCAGCAGCACATCGGCGTAGTCTTTTTGAAAGCCAAGGAGCGCGACCCGAACCTGCTGGCGCTGTTGGCGGAGTGCCGGATGTATGCCAATCGCCAGGCTTGA	MLIDEELTLKKLEVFLAFMRTGNLARAAADLQTSNVSVHRAIHSLESALRCPLFKHEGRNLTPLESAYVLEERAQKLIQDVIESVRLTREAAGFSAERFKLGSLYSLTVKTVPQLIMGLKIRRSELNIDLIMGSNIDLLYKLKNMEVDAILVSLDDSVNDPDCEQIQLFSDDIFLATPADSPFAQRSEVDLAEVRDETFITLTQGFATHQDGVRVFKQAGFEPKVAMQVNDIFTLLSMVSSGVGYALLPGRIAAVYENRVKLIPLQEKYRLQQHIGVVFLKAKERDPNLLALLAECRMYANRQA	PGPT0001715_186	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALONATE_UTILIZATION,PGPT0001715-mdcR-K13928	NA	NA
D1-36_04805	765			hypothetical protein	ATGTACGAATCCATGATGAAAGTCATCACCGGCTACGGCCTGATCAGTGGTTTTGCGATTGTCGGGATCACCATGTGGGTGTCCTACTGGATGAGTAACACGTTCACCAAAGGTCGCCTGCATGGCTCGGCCATCGCGATCCTGCTGGGCCTGGTGCTTTCATACATCGGCGGGGCCATGACCGGCGGGCAGAAGGGCGTAGTGGACATCCCGCTGCTGTCCGGGATCGGCTTGCTGGGTGGCGCGATGCTGCGTGATTTTGCGATTGTCGCCACGGCGTTCGGTGTCAGCGTCGAGGAGCTCAAGCGCGCCGGCTTCGTGGGGATACTGGCCTTGTTCGTCGGGGTCGGGACTTCATTTATCGCCGGTGTTGGGGTGGCGATGGCCTTCGGTTACACCGATGTGGTGAGCCTGACCACCATTGGCGCCGGGGCGGTGACCTATATTGTCGGGCCGGTGACCGGGGCAGCGATTGGCGCCAGTTCCGAGGTGATGGCGCTGTCCATCGCCGCCGGGTTGATCAAGGCGATCCTGGTGATGGTGGCGACGCCGTTCGTGGCGCCCTTCATCGGCCTCAACAACCCGCGCAGCGCGGTGATCTTCGGTGGGCTGATGGGTACTTCCAGTGGCGTGGCCGGCGGCCTGGCGGCGACCGATCCGAAGCTGGTGCCGTATGGCTGCCTGACGGCGGCGTTCTATACGGCGCTTGGCTGCTTGCTCGGGCCTTCGCTGTTGTTTCTGATCATGCGCGGGTTGATGGGGTAG	MYESMMKVITGYGLISGFAIVGITMWVSYWMSNTFTKGRLHGSAIAILLGLVLSYIGGAMTGGQKGVVDIPLLSGIGLLGGAMLRDFAIVATAFGVSVEELKRAGFVGILALFVGVGTSFIAGVGVAMAFGYTDVVSLTTIGAGAVTYIVGPVTGAAIGASSEVMALSIAAGLIKAILVMVATPFVAPFIGLNNPRSAVIFGGLMGTSSGVAGGLAATDPKLVPYGCLTAAFYTALGCLLGPSLLFLIMRGLMG				NA	NA	NA	NA	NA
D1-36_04806	393			hypothetical protein	ATGATTATCTACGGTGTGGCGTTTCTGGCCTTTTGTACCCTGGCGGGTATTTTCATCGGTGAGCTGCTGGGCAAATTGATCGGCGTGCCGGCCAACGTCGGCGGTGTCGGCATTGCGATGCTGCTATTGATCGGCCTGGGCAGCTATCTGAACAAGCGCGGCCTGTTCAAGGGCAAGTCTGAAGCTGGCGTGGAATTCTGGAGTGCCATCTATATCCCGATCGTGGTGGCGATGGCGGCGCAGCAAAACGTCTATGGCGCGCTGAAAGGCGGGCCGATGGCGATCCTGGCCGGGACCCTGGCCGTGGCGATTGCCTTTGCGTTGGTACCGGTGCTGGTGCGCATTGGTAACAAGGACCCTCAATCCAACGTGTCCGTGAAAACGGTCGGGTGA	MIIYGVAFLAFCTLAGIFIGELLGKLIGVPANVGGVGIAMLLLIGLGSYLNKRGLFKGKSEAGVEFWSAIYIPIVVAMAAQQNVYGALKGGPMAILAGTLAVAIAFALVPVLVRIGNKDPQSNVSVKTVG				NA	NA	NA	NA	NA
D1-36_04807	921	fabD_2	COG0331	Malonyl CoA-acyl carrier protein transacylase	GTGAGCAGCCTTTTCGTCTTTCCCGGCCAGGGTGCGCAGCGCGTGGGCATGCTCCATGGGTTGGCACCGCTGATCCTCGAAGAGGCGGGGGATGTGCTGGGTGAAGATGTATTGCGATTGGACAGTGCCCAGGCTTTGCAATCGACTCGCGCCGTGCAGCTGTGCCTGCTGATCGCAGGCGTGGCGGCGGCTCGTCGGTTGCTTGAGCAGGCTCGCGCTCCGGATTACGTCGCGGGGCTGTCCATCGGTGCTTATCCGGCGGCGGTCGTGGCTGGGGCGCTGGATTTTGCGGATGCGCTGCGCCTGGTCAGCCTGCGGGGCGAGCTGATGCAGCAGGCGTATCCACGAGGCTACGGCATGACGGCGATCATCGGCCTGGACCTCGCGGTGGTGGAGACCTTGCTTGCCCAGGTACACAGCGAAACAGCGCCGGTCTACCTCGCCAATATCAATGCCGATAACCAGGTAGTCATCGCCGGCAGCGACGAAGCCATGGGCCTCGTCGCCGAAAAGGCCCGGCGTCAAGGCGCGGGCAAGGCTTGCCGGCTGGCGGTCAGCGTGCCGTCCCATTGCCCGTTGCTGGAGGCACCGGCCCGGACGTTGGCCCAGGCATTCGCCGACGTGCCGTTGAAGGCGCCAACATTGGGCTATCTCAGTGGCAGCCGCGCCCGGCCGATGTTCAAGACCGATGCGTTGCGCGACGATCTGGCGTTCAACATGTGCCGTGTCGTCGATTGGCGCGGCACGGTGCAGAGCGCCTATGAGCGTGGCGTGCGCCTGCAAATCGAATTGCCGCCCGGCGCGGTGCTCACCGGGCTGGCGCGCCGGGTGTTCGAGCAAGGCACTGTCATGGCGTTTGATGGCGCGCGGCTGGATACGCTGCAAGCGCTACTGCATGAGGAGGGACGCCGCCAACCCTAG	MSSLFVFPGQGAQRVGMLHGLAPLILEEAGDVLGEDVLRLDSAQALQSTRAVQLCLLIAGVAAARRLLEQARAPDYVAGLSIGAYPAAVVAGALDFADALRLVSLRGELMQQAYPRGYGMTAIIGLDLAVVETLLAQVHSETAPVYLANINADNQVVIAGSDEAMGLVAEKARRQGAGKACRLAVSVPSHCPLLEAPARTLAQAFADVPLKAPTLGYLSGSRARPMFKTDALRDDLAFNMCRVVDWRGTVQSAYERGVRLQIELPPGAVLTGLARRVFEQGTVMAFDGARLDTLQALLHEEGRRQP	PGPT0019630_175	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALONATE_UTILIZATION,PGPT0019630-mdcH-K13935	NA	NA
D1-36_04808	624	mdcG		Phosphoribosyl-dephospho-CoA transferase	GTGGTGAGCACGTTCCTGGCCCATGACCTGCTCTGGGGGATGACTGCCTTGCAGTTGCCTGCGGATGCGCCGGGTTGGGCTGTCGAATCGCTCGACCTCGGGCAGCCGGTGGTGGTGCGTCGGGCGCTCACCTTGCCCGGGCACGTCGCGGTGGGCCTGCGCGGCCCCTCCCGGGAACAGCGTTACGCCGCGTCGATGCCTGTGGTTGCGGTCCAGCGCCGGGTACGCCCGGAAGATCTTTGTCATGTCGAATGCCGTCGTGACCTGCCTGCGCTGATCGCCCTGGCGCAGCTCCGCTCCTTGCTCGACGCCAGTGGTTGGATCTGGGGCGTGAGCGGCAGCGCCGGGTTCGAATTGGCCACGGGTGTCGAGGCGCTGCATGAACGCAGTGACTTGGATTTGATTCTGCGCGCGCCGCGTCGTCTGAATCGTCTCCAGGCCAAGGAACTGCTGGCGCTGTTGGATGCCTCGGTCTGCGCCGTGGACATGCAGTTGCAAACGCCTTGCGGCGCCGTCGCCCTACGCGAGTGGGCGGGCTCGTCGCGTCGGGTCTTGCTCAAGGATGATGTCCAGGCGCGCCTGGTGAGCGACCCTTGGCAATCTCCAGTGGAGCAGGTCGCGTGA	MVSTFLAHDLLWGMTALQLPADAPGWAVESLDLGQPVVVRRALTLPGHVAVGLRGPSREQRYAASMPVVAVQRRVRPEDLCHVECRRDLPALIALAQLRSLLDASGWIWGVSGSAGFELATGVEALHERSDLDLILRAPRRLNRLQAKELLALLDASVCAVDMQLQTPCGAVALREWAGSSRRVLLKDDVQARLVSDPWQSPVEQVA	PGPT0019625_352	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALONATE_UTILIZATION,PGPT0019625-mdcG-K13934	NA	NA
D1-36_04809	804			hypothetical protein	ATGAGTTCGTATTCAATGAGAGGCGCGCGCTGGTTCGAGGCCTTGAGCGGCGGCGCCAAGCCGTTGGATGGCTTGCCAGCTTCGCTGCAAGTGGCCGACGTCCAACTGGGCGAACAAACCGCGCGGTTGATCGCCGTGGTGGCCGATCCCGACAACCGTTTTCCTCGGGCGCGCAATGGCGAAGTCGGGTTGCTCGAAGGTTGGGGCTTGGCCAAGGCGGTGGACGATGCCATCGAAGCCGACCGCAACGCGCCTCGCAAACGTGCGCTGATCGCCATCGTCGATGTGCCCAGCCAGGCTTATGGCCGTCGCGAAGAAGCCCTCGGCATTCACCAAGCACTGGCTGGCGCGGCAGACAGTTATGTCCGCGCCCGATTGGCCGGGCACCCGGTGATTGGCTTGCTGGTGGGCAAGGCGATGTCCGGCGCGTTCCTGGCCCACGGCTACCAGGCCAACCGGCTGATTGCCCTGCGCGACCCGGGGGTGATGGTCCATGCCATGGGCAAGGCCTCGGCGGCGCGGGTGACCTTGCGCAGTGTCGAAGAACTTGAAGCCCTGGCTGCCAGCGTGCCGCCAATGGCCTATGACATCGACAGCTACGCCAGCCTGGGTTTGCTCTGGGAAACCTTGTCGGTTGAGCAGATCGAGCAACCGACGGCAGCGGATCTGGGGCGGGTGTCTGATTGCCTGCAACAGGCGATCAACGACGTGGCGGGTGCGCCTCGGGATCTGAGCGGGCGTTTGGGGGCGGCCCATCGCGCAGCTTCCAGCCAAGTTCGCCAGTTGTTGAGGGCGCAGTGGTGA	MSSYSMRGARWFEALSGGAKPLDGLPASLQVADVQLGEQTARLIAVVADPDNRFPRARNGEVGLLEGWGLAKAVDDAIEADRNAPRKRALIAIVDVPSQAYGRREEALGIHQALAGAADSYVRARLAGHPVIGLLVGKAMSGAFLAHGYQANRLIALRDPGVMVHAMGKASAARVTLRSVEELEALAASVPPMAYDIDSYASLGLLWETLSVEQIEQPTAADLGRVSDCLQQAINDVAGAPRDLSGRLGAAHRAASSQVRQLLRAQW	PGPT0019620_146	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALONATE_UTILIZATION,PGPT0019620-mdcE-K13933	NA	NA
D1-36_04810	852	madC		Malonyl-S-ACP:biotin-protein carboxyltransferase MADC	ATGACTGACAGCGCAACGCTGCTCAACAAGCACAGCTTCGTCGAACTCGGTGCCCGGCAACGGGCCAAGGCCTTGCTCGACGAGGGAACATTCCGTGAACTGCTCGACCCCTTCCAGCGCGTCATGTCGCCATGGCTGCTGCGCCAAGGCGTGGTGCCGCAGAGCGACGATGGCGTGGTGATCGCCAAGGGCACGCTCGATGGCCTACCGGTGGTGATCGCCGCCATCGAAGGTGCGTTCCAGGGCGGCAGCCTCGGCGAAGTCGGCGGGGCAAAAATTGCCGGTGCGCTGGAACTGGCGGCTGAAGACAACCGCAAAGGCATCGCGACCCGCGTCGTGCTGCTGCTGGAAACCGGCGGCGTGCGGTTGCAGGAGGCCAACCTCGGGCTCGCGGCGATCGCCGAGATCCACTCGGCGATCGTCGACCTGCGCCAATTCCAACCGGTGATCGGCGTGGTAGCGGGCAGCGTTGGCTGCTTTGGCGGCATGTCGATTGCCGCCGGGTTGTGCAGTTACCTGTTGGTGACCCAGGAAGCGCGGCTGGGGTTGAACGGCCCGCAAGTGATCGAGCAGGAGGCCGGCATCGACGAGTACGACTCCCGCGATCGTCCGTTCATCTGGAGCCTGACCGGCGGCGAGCAGCGCTACGCGACCGGGCTGGTGGACCGATACGTTGCCGATGACGTCGCGCAGATCCGTCGGCAGGTCGGCGAACTGTTGCACCTGGGTGTGCCCGACGAACACCGCAGCGGTCAGGCCGATTTGTTCCTGCAACGCCTGGCCCGCCTGGACACCGACGTGCAAATCGAACCGTCAGCGGTTCGCCAGCTGTATCAGGGAGAACGCCCATGA	MTDSATLLNKHSFVELGARQRAKALLDEGTFRELLDPFQRVMSPWLLRQGVVPQSDDGVVIAKGTLDGLPVVIAAIEGAFQGGSLGEVGGAKIAGALELAAEDNRKGIATRVVLLLETGGVRLQEANLGLAAIAEIHSAIVDLRQFQPVIGVVAGSVGCFGGMSIAAGLCSYLLVTQEARLGLNGPQVIEQEAGIDEYDSRDRPFIWSLTGGEQRYATGLVDRYVADDVAQIRRQVGELLHLGVPDEHRSGQADLFLQRLARLDTDVQIEPSAVRQLYQGERP	PGPT0019615_333	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALONATE_UTILIZATION,PGPT0019615-mdcD-K13932	NA	NA
D1-36_04811	300	mdcC		Malonate decarboxylase acyl carrier protein	ATGGAAACCTTGTCCTTTGAATTTTCCGCCGGACAGCCGCCACGAGGCCGGGCGCTGGTGGGCTGCGTCGGCTCGGGCGATCTGGAGGTGCTGATCGAACCGGGGCTGGCGGGAAAATTGACCATTCAGGTGCAGACCTCGGTCAATGGCAGCGAGCAACGCTGGCAGCATTTGTTCGCCCGCATGTTCGACGGCCAGACGCCCCCGGCGATGAACATCGACATCCATGATTTCGGCGCCACCCCAGGCGTGGTGCGTCTGCGCCTGGAACAAGGCTTCGAGGAGATCGGCCATGACTGA	METLSFEFSAGQPPRGRALVGCVGSGDLEVLIEPGLAGKLTIQVQTSVNGSEQRWQHLFARMFDGQTPPAMNIDIHDFGATPGVVRLRLEQGFEEIGHD	PGPT0019610_344	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALONATE_UTILIZATION,PGPT0019610-mdcC-K13931	NA	NA
D1-36_04812	876	citG	COG1767	2-(5''-triphosphoribosyl)-3'-dephosphocoenzyme-A synthase	ATGCGCGCCTTGAATCTGCAACCCAAGCCAATTTCCCTGGCTGAACGTCTGGCCGACCTGGCGGTGGACGCGTTGATCGATGAGGCCGACCTCTCGCCGAAACCGGCGCTGGTGGATCGGCGCGGCAGCGGTGCCCATACCGATCTGCACTTGGGTCTGATGCACGCTTCGGCGTTGTCATTGTGGCCGGCCTTCAAGGAAATGGCCGAAGCCGCCCTCGACTGTGGCGAGATCGGCCTGCCATTGCGCGAAGCCCTGGGCCGCATCGGCCGTGACGGTGAAGCCGCGATGCTCGCCACCACGGGTGGGGTGAATACTCATCGTGGCGCGATCTGGGCCTTGGGCCTGTTGATCGCTGCGGCGGCGCTGAAGCCTGAATCCAACGTCGCGGGCGCCGTCACCCTACGCGCCGCTCGTCTGGCCTTGCTCAACGACCGTTATGCGCCCCAATCCTTGAGCCATGGCGTCCAGGTCGCCCAGCGTTACGGCGTACGCGGTGCCCGGGAAGAAGCGCAGCTGGCGTTCCCGGCCGTCACCGGCCTGGGCCTGCCGCAACTCAAGCGCAGCCGCGCGGCTGGAGCGGGCGAACAGAACGCCCGGCTCGATGCCTTGCTGGCGATCATGACCACCCTGGCCGACACCTGCGTGCTCTACCGCGCCGGCGAAGCGGGGCTGCAAGCCATGCAACAGGGCGCCAAAGCGGTGCTCGACGCCGGTGGCAGCGCGAGCCTGGTGGGTCGCCGCCAACTCCATGCGCTGGACCAACAATTGATTGCCTTGAACGCCTCGCCCGGCGGCGCTGCCGACCTGCTTGCCGCCTGCCTCTTTCTCGACCGTATCGAGCGCGGCGATGACCTCTTTCCAGGAGTGTGCTGA	MRALNLQPKPISLAERLADLAVDALIDEADLSPKPALVDRRGSGAHTDLHLGLMHASALSLWPAFKEMAEAALDCGEIGLPLREALGRIGRDGEAAMLATTGGVNTHRGAIWALGLLIAAAALKPESNVAGAVTLRAARLALLNDRYAPQSLSHGVQVAQRYGVRGAREEAQLAFPAVTGLGLPQLKRSRAAGAGEQNARLDALLAIMTTLADTCVLYRAGEAGLQAMQQGAKAVLDAGGSASLVGRRQLHALDQQLIALNASPGGAADLLAACLFLDRIERGDDLFPGVC	PGPT0019605_235	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALONATE_UTILIZATION,PGPT0019605-mdcB-K13930	NA	NA
D1-36_04813	1671	madA		Acetyl-S-ACP:malonate ACP transferase	ATGACAACAACAATATCCCCCGACTCGCGATGGACGCGGCGGCGCAGCGAAAAGCAGCGGCGCCTGGCGTTGGTCAAGGACCTTGCCGATGGCGTGGTGTTGCCCACCGATAACATCGTTGCGGCGTTGGAGGCATTGATCTTGCCCGGCGACCGTGTGGTGCTGGAGGGCAATAACCAGAAGCAGGCGGATTTTCTTTCGCGCTCCCTTGCCAAGGCCGACCCATCGAAGCTGCACGACCTGCACATGATCATGCCCAGCGTCGGCCGTTCCGAGCACCTGGACCTCTTCGAGCGTGGCATCGCTCGCAAGCTGGATTTTTCCTTTGCCGGCACCCAAAGCCTGCGCATCAGCCAATTGCTGGAAGACGGCCTGCTGGAAATCGGCGCGATCCACACCTACATCGAACTCTATGCCCGGCTGGTGGTGGATTTGATTCCCAACGTTGTGCTCTCGGCCGGTTTCATGGCCGACCGCGCCGGCAATATCTACACCGGCCCCAGCACTGAAGACACCCCCGCGCTGATCGAACCGGCGGCTTTCAGCGATGGCATCGTCATTGTCCAGGTCAACCAATTGGTGGACGACGTCAGCGACCTGCCCCGTGTGGACATCCCGGCGTCCTGGGTGGATTTCGTGGTGGTGGCCGACAAGCCGTTCTACATCGAGCCGCTGTTCACCCGCGACCCGCGCCACATCAAGCCTGTGCATGTGCTGATGGCGATGATGGCCATCCGTGGGATCTACGAAAAACACAACGTCCAATCCTTGAACCACGGCATTGGGTTCAACACGGCCGCCATCGAATTGATCCTGCCGACCTACGGCGAATCCCTCGGCCTCAAAGGCAAGATCTGCCGCAACTGGACCCTCAACCCGCACCCGACCCTGATCCCGGCCATCGAAAGTGGCTGGGTCGAAAGCGTGCATTGCTTCGGCACCGAACTGGGCATGGAGAACTACATCGCCGCCCGGCCCGACGTGTTCTTCACCGGCCATGACGGCTCGCTGCGTTCAAATCGCATGGTCTGCCAACTGGCCGGGCAATACGCGGTGGACCTGTTCATCGGCGCTACCCTGCAAGTGGACGGCGACGGTCATTCCTCAACCGTGACCCGTGGCCGACTCGCCGGTTTTGGCGGCGCGCCGAACATGGGCCACGACCCGCGCGGCCGTCGTCATGGCACCCCGGCCTGGCTCGACATGCGCCACGGCGACGGCGAAGCGCCGCTGCTCGAGCGCGGCAAGAAGCTGGTGGTGCAGATGGTCGAGACGTTCCAGGAGGGCGGCAAACCGACCTTCGTCGACACCCTCGACGCGGTGGACGTGGCGAAGCAGGCCGGCATGCCCCTGGCGCCGATCATGATCTACGGCGACGACGTTACCCACCTGCTCACCGAAGAAGGCATCGCCTACCTGTACAAGGCCCGCTCCCTCGAAGAGCGCCAGGCGATGATCGCCGCCGTGGCCGGGGTGACGGCCGTCGGCTTGCGCCATGACCCGAAAGACACCGCGCGCATGCGCCGCGAAGGGTTGATTGCCTTGCCCGAAGACCTCGGTATCCGCCGCACCGACGCCACCCGCGAGCTGCTCGCGGCCAAGAGCGTGGCCGATCTGGTGGAGTGGTCCGGTGGCCTCTACAACCCGCCCGCCAAGTTCAGGAGCTGGTAA	MTTTISPDSRWTRRRSEKQRRLALVKDLADGVVLPTDNIVAALEALILPGDRVVLEGNNQKQADFLSRSLAKADPSKLHDLHMIMPSVGRSEHLDLFERGIARKLDFSFAGTQSLRISQLLEDGLLEIGAIHTYIELYARLVVDLIPNVVLSAGFMADRAGNIYTGPSTEDTPALIEPAAFSDGIVIVQVNQLVDDVSDLPRVDIPASWVDFVVVADKPFYIEPLFTRDPRHIKPVHVLMAMMAIRGIYEKHNVQSLNHGIGFNTAAIELILPTYGESLGLKGKICRNWTLNPHPTLIPAIESGWVESVHCFGTELGMENYIAARPDVFFTGHDGSLRSNRMVCQLAGQYAVDLFIGATLQVDGDGHSSTVTRGRLAGFGGAPNMGHDPRGRRHGTPAWLDMRHGDGEAPLLERGKKLVVQMVETFQEGGKPTFVDTLDAVDVAKQAGMPLAPIMIYGDDVTHLLTEEGIAYLYKARSLEERQAMIAAVAGVTAVGLRHDPKDTARMRREGLIALPEDLGIRRTDATRELLAAKSVADLVEWSGGLYNPPAKFRSW	PGPT0019600_95	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_MALONATE_UTILIZATION,PGPT0019600-mdcA-K13929	NA	NA
D1-36_04814	462			hypothetical protein	ATGGATGAATTTCGCGCCAGTCATCTCACCGGGTTATTGCTGCCCTTGGCCGACCGGCATCTGGTATTGCCCAATGTCGCGGTGGCGGAGCTGATCGACTACCAAAGCAGCGCGTTCGACATGGACACACCGCCCTGGTTTCTGGGCTGGGTGAGCTGGCGCGAACGCCAGATCCCACTGCTGAGTTTCGAGTCGGCCTGTGGCCAGAAAACCATGATCGGCGAGCGCGCGCGCATCGTCGTGCTCAACGCCCTGGGCGGCCGCCCGGAGTTGCGCTTCATTGCCCTGCTGGTCCAAGGCATCCCGCGTTCCTACAAGCTCGACAGCCAGTTGAGCTACGTTGACGTGCCGCTGTGCGGGCTGGAGCAGGCCGCCGTGCAGGTCGGGGAACATGTGGCGAAAGTACCGGATCTGTTGGCGTTGGAGGAGCTGGTGATTGCCGCGGGGCTGTCCCAGAGCTGA	MDEFRASHLTGLLLPLADRHLVLPNVAVAELIDYQSSAFDMDTPPWFLGWVSWRERQIPLLSFESACGQKTMIGERARIVVLNALGGRPELRFIALLVQGIPRSYKLDSQLSYVDVPLCGLEQAAVQVGEHVAKVPDLLALEELVIAAGLSQS	PGPT0015795_184	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0015795-chpC-K06598	NA	NA
D1-36_04815	5928	rcsC_24		Sensor histidine kinase RcsC	ATGGGTGATCGGCACGACTACGTGGCCCTGGAGTGGGTCAAGGGCGAGATTGCCGAAACGCTGAGGCAGGCTCATCTGGCACTCAATCGTCCGGAGGACGACCCGCAGGCGCCGGATGCACTTGCCCTATGCCTGGCCTGTATCCATCAGGTCCACGGTGGCCTGCAGATGGTCGAGTTTTATGGCGCGGCGTTACTCGCCGAAGAAATGGAGCAACTGTGCATCGCGCTGCAGGACAATCGTATTGCCCACCGCGACGAGGCCGTCAGCCTGTTGCGCCAGGCCCTGGGCCAATTGCCGGCCTATCTTGAACGTGTGCAAGGCGCCCGTCGCGACCTGCCGCTGGTGGTGCTGCCGTTGATCAACGACTTGCGCAGCGCCAGGGGCGAAAGCCTGTTGTCGGAGACCAGCCTGTTCAGCCCGCAGTTGCCTGATGTCGCGCCTCTCAGGGATGACGCCTTGAAACGGCTCGAACCCGCCGACCTGCCAGGCACCCTGCGCAAGCTGCGCCAAACCTTGCAGGTCGCGTTGGTGGGGTTGTTGCGCGAACAAGACGACGCCACTCACCTCGGCTACCTGGCCAAGGTCTTCCACCGTTTGGAAACGCTGTGCGCCGGGGCGCCACTCAATGCGTTGTGGCAGGTCGCTTCGGCATTGGTCGAGGGCATGCGCGAGGGGCGCATCGCCAACAGCCCGGCGTTGCGCAGCCTGTTCAAGGATGCCGACAAGGAGCTCAAGCGCCTGCTGGTGCAGGGCATGCCAGGCGTCAATCAACCGGCCCCGTCACACCTGGTCAAGAGCCTGTTGTTCTATATTGCCAAGGCCGAACATCCCAGCGGGCAGATGCAGATCATGAAAGAACGCTACTCACTGGACGACGCGCTGCCCGACAGCGCCATGGTCGATGAGGAACGGGCCCGCCTGGCCGGGCCCGACCGCGATGCCATGCGCTCGGTGCTGGCGGCGCTCTGCGAGGAACTGGTCCGGGTCAAGGAACGCCTGGACCTTTTCGTGCGCAGCGATCGGCAGCACGTCACGGAGCTGGACAGCTTGCTGGCGCCCCTGCGCCAGATCGCCGACACCCTGGCGGTGCTGGGTTTCGGCCAGCCCCGAAAAGTGATCATCGACCAGTTGGCGGTGGTCCTGAGCCTGGCCCAGGGCCAACGCGAGCCGGATGACGCGACCCTGATGGACGTCGCCGGTGCCCTGCTCTATGTCGAGGCGACCCTGGCTGGCATGGTCGGCACTGTCGAGCCGGAGAGCCGCGAAGACAACCGTCTGCCGACCACCGACCTGACCCAGATCCACCAGATCGTCATCAAGGAAGCCCACACCTGCCTGCAGCAGGCCAAGGACCTGATCGTCGACTACATCGACGCGGACTGGAACAGCGAGCAGCTCCAGCCATTGCCGGCGCTGCTGACCCAGGTGCGCGGTGCGCTGGCGATGATCCCGTTGACCCGTGCTGCCAGCCTCGTGGAGGCTTGCCACGGTTTCATCCACGAGCACCTGTTGCTCGAGCATGCCCGACCGGGCTGGGAAGAGCTGGATCACCTGGCCGACGTGATCACCGGCCTGGAATATTACCTGGAGCGCTTGAGCGAAGACCCCCACAAGCCTGCCGAGAACCTGCTTGATGGGGTCGAGCGCAGCCTGGGCGCCCTCGGGTATTTCCCCGACGAAGCCCGCGTGCCGTTACTCGATGACGTGCTCAGCCCCAACGAAGCCCAGGTCATGCAGGATCTGCAAGAGCTGGACGACCCGCAGACCGTGCAATCCTTGGCCGAAGTCCTGGCCAGCCCGGTCTCGGCGGTCAACCCGCCGGCGAGAAACATGCCGGCCAGCCTGCTGCCGCCCCCGGCGGACGAAAGCCCGATAGACGATGAGCTGCGCGAGGTGTTCCTCGAGGAAACCGCCGAAGTGCTCGATGTCTTGAACGAGTACCTGCCGCGCTGGGCTGCCCATCCGGACGATCATGGCGCCCTCACAGAACTGCGCCGAGCCTTCCACACCGTCAAGGGCAGCGGCCGGATGGTTCGGGCGCTGATCCTCGGTGAGTTGGCCTGGGCCGTGGAAAACCTGCTCAACCGGGTGCTGGAACGCAGCGTGGAGCCAGGCGCTTCGGTCCGGCAGTTGATTGAAGAAACGGTGCAACTGCTGCCGGCCCTGGTCGCCGAATTCGCCGCGCACCGCCAATCCCAGCGTGACGACGTCGATCGTCTGGCGGCTCGCGCCCATGCTCTTGCCAAGGGCAGCGATGAAGACGATGACGACGAGCGAGACGTGACGGCTCTCGATCCGCTGCTCCTGAACATTTTCGACAACGAAGCCCAAGGGCACCTCGCCACGCTCGATCGCTTCCTTGATCAAGCCGCCGAACAACTGCCGTTGCAGGCCAGCGACGAACTGCAACGGGCGTTGCACACCCTCAAGGGCAGCGCATCGATGGCCGGTGTGCTGCCCATTGCCGAGCTTGCCGGGGCGCTGGACGAGCTGGCCCGGGAATACAAGGCGCATTCGCTGGCGCTGGACCTGGATGAGATTGAACTGCTGCTTGAGGGCGAGGGGCTGTTGAGACGCGGCCTGCGCCAGTTGCACAGCGAACCGTTGGCTTCGATAGCCGGTGCCGCCGACTTGATCCAGCGGGCCCGGGCGCTGCTGGCCGAGCGCTTGCAGGCGGCGGTTGGCGCGGTGGATCAAGGCGCGCGGACCAAGCGTGATCCGCAGTTGATCAATAACTTCCTCGCCCAAGGCATGGATATCCTGTTGGACGCAGAGAACCTGTTGCAGCGTTGGCAGCAGCATCCCGCTGAAAGCCAGGAATTGAGTGCCTTGCTCGATGAGCTGACCACCCTGGGCGAAGGCGCGCACCTGGCCGACCTGCACCCGGTGGACGAGCTCTGCGAAGCGTTGCTCGACCTCTACGGCGCGGTGGAGGAAAGCAGCCTCGCAGTCAGCGACGCCTTTTTCCAGGAAGCGCAACGCGCCCACGAAGCGTTGATCGACATGCTCGACGAGTTGGCGGCCGGCCAGCATGTGCATTCGCGGTCCGAGCGGGTGCAAGCCCTGCGCAAACTGCTCGAAGAGAGTCTCGACCCAGCCGCCACGGGGCTGATTCGCAGCGACGGCAGTCGCACCCTTAGCATCCGCGAGCTGGGACAGGCGACCGCCGAAATGGAGCAGGGCGCGACCACCGAGACCTCGGTCGACGACGACATCGCCTCGATCTTCCTCGAAGAGGCGCAGGACATCCTGGAAAGCGCCGCCCAGGCCTTGCAGCGCTGGCTCGCCGATCCGGACAACGGCGCGCCGCTGTCGTCGCTGCAGCGCGATCTGCATACGCTCAAGGGCGGCGCGCGCATGGCGAATATCCGGCCGGTCAGTGACCTCGCCCAGGAGCTCGAAAGCCTCTATGAGGGACTGGTGGATCGCCGCTACAGCTACAGCGAGGAACTGGCGCAACTGCTCGACAGCAGCCATGCGCGCCTCGATCTTTTGCTCGGGCAGTTGCAGCAAGGCCAGCCACTGGGCGATCCCGTTGCGCTGATCGACGCTATCCACCGGTTCCGCCAGGACCGGCCGAACGCCATCGAGACACCGGGGGCGAGTCCGAGCGATGCCACGGGGCATGACCCGGAGCTGCTGGAAATCTTTCTCGAGGAGGGTTTCGACATCCTCGACAGTTCCGGCGCTGCTTTGCTGCGCTGGCAGGAAGACCCGGGCAACCGCCAGGCCGTGGAAACCTTGCTGAGGGACTTGCATACCCTCAAGGGCGGCGCACGGATGGTGGAAATCGCCCCCATCGGCGATCTCGCCCATGAACTGGAAAACCTTTACGAAGGCCTGTCGGCGGGTCTGCTGCAACCGGGCCCCGAGCTATTTGTCCTGCTGCAAAGCAGTCATGACCGACTGGCGCAGATGCTCGACGCGGTCCGCGCAGGGCAGCCGTGTCCGCCAGGCGATCGGTTGATCGCGCGGATCCACGCGGTGGGCCATCCGCAGGAGAACGAGGCGCCCGAACCTGTTGCAACACCGGAGCCTGCCTCGATCCAGGCGCCAGCAACGCTGCCGTCGCGACCCGAGCCCGCAATGTCGGGCGACGGCGTGGACACAGTGAAGGTCTCCGCCGAATTGCTCGACGACCTGGTCAACCTCGCTGGCGAAACATCGATCTTCCGTGGCCGTATCGAGCAACAAGTCAACGACGCGCGTATTGCCCTGGGCGAGATGGAAACCACCATCGAGCGCATGCGCGATCAGTTGCGTCGCCTGGATACCGAAACCCAGGGGCGCATTCTCAGCCGCCAGCAAGCGGAAGCCGAGCGGTTGGGCTACGAAGAATTCGACCCCTTGGAGATGGACCGCCATTCCCAGTTGCAGCAATTGTCCCGGGCGCTGTTCGAGTCCGCTTCGGACTTGCTCGATCTCAAGGAAACCCTTGACCGCAGCAATCACGACGCGGAAAACCTGCTGCAACAGCAAGGGCGCATCAATACCGAGCTCCAGGAAGGCCTGATGCGTACGCGCATGGTGCCGTTCGAGCGCATGGTGCCGAGACTCAAGCGCATCGTCCGGCAAGTCGCCCAAGAACTGGGCAAGGACGTCGAGTTCGTGGTCGACAATGCCGAGGGCGAGATGGACCGCAACGTGCTCGAACGCATGGCGGCGCCTTTGGAGCATATGTTGCGCAACGCCGTCGACCATGGCCTTGAACCCGCCGATGTGCGTATCGCCGCCGGAAAGCCGGCCAAGGGGCGCATCAGCCTCGACTTGTCCCGGGAGGGGGGCGACATCATCTTCGACATTCGCGACGACGGTGCGGGAGTGCCACTGGACGCGGTGCGGCGCAAGGCGATCAAGCGTGGCTTGCTGGCGCCCGACAGCGACATCAGTGACCGTGATGTGCTGCAGTTCATTCTCCAGCCAGGCTTTTCCACGGCGGAAAAAATTACCCAGATTTCCGGGCGTGGCGTCGGCATGGACGTGGTCCACGAAGAGGTGCGGCAGTTGGGCGGCACCATGTCCATCGACTCGACGCCGGGGCAGGGTGTGCACTTTCGCATTCGCCTGCCGTTCACGGTGTCGGTGAACCGGGCGTTGATGGTGCAGTGCCATGAAGACCAGTACGCAATTCCGTTGAACACCATCGATAGCATCGTCCGGGTATTGCCCGCTGAACTGGACGGCTATTACCAGCTCGATCCGCCCACCTACACCTACGCCGGGCAGCGCTACGAGCTGTGTTACTTGGGGGAGCTGCTGAAAACCGCGGCCCGCCCGAAATTACTGGGGCAAAGCCAGCCCTTGCCGGTGCTGCTGGTGCAGTGCAACGAACGGCACGTCGCGGTGCAGGTGGACGCCACCGCTGGGACCCGGGAGATCGTGGTCAAGAGTCTCGGCTCGCAGTTCTCAGCGGTACGGGGCCTGTCCGGGGCGACAATCCTGGGAGACGGCCGGGTGGTGCTGATCCTCGACCTGCTGGCGCCGATCCGCGCCTTGCCGCACCAGGTGCCGCGCCGCCAGTTGTCTACCCAAAGTGAGAGCGAACCCCAGCGACCGCTGCTGATTTTGGTGGTGGACGACTCGGTGACGGTGCGCAAGGTTACCAGCCGCTTGCTGGAGCGCCATGGCATGCATGTCCTCACGGCCAAGGACGGAGTTGACGCCATGGCCCTGTTGAGCGAACACACGCCTGACCTGATGCTGTTGGACATCGAAATGCCGCGCATGGATGGCTTCGAAGTCGCCACCCAAGTGCGCAACGACCCAAGCCTGGCGCACTTGCCGATCATCATGATCACCTCCCGCACCGGCCAGAAGCATCGCGACCGCGCGATGACCATCGGTGTCAACGATTACCTGGGCAAGCCGTACCAGGAATCGGTGCTGCTCGACAGCATCGCCTACTGGAGCAAAAACCATGGATGA	MGDRHDYVALEWVKGEIAETLRQAHLALNRPEDDPQAPDALALCLACIHQVHGGLQMVEFYGAALLAEEMEQLCIALQDNRIAHRDEAVSLLRQALGQLPAYLERVQGARRDLPLVVLPLINDLRSARGESLLSETSLFSPQLPDVAPLRDDALKRLEPADLPGTLRKLRQTLQVALVGLLREQDDATHLGYLAKVFHRLETLCAGAPLNALWQVASALVEGMREGRIANSPALRSLFKDADKELKRLLVQGMPGVNQPAPSHLVKSLLFYIAKAEHPSGQMQIMKERYSLDDALPDSAMVDEERARLAGPDRDAMRSVLAALCEELVRVKERLDLFVRSDRQHVTELDSLLAPLRQIADTLAVLGFGQPRKVIIDQLAVVLSLAQGQREPDDATLMDVAGALLYVEATLAGMVGTVEPESREDNRLPTTDLTQIHQIVIKEAHTCLQQAKDLIVDYIDADWNSEQLQPLPALLTQVRGALAMIPLTRAASLVEACHGFIHEHLLLEHARPGWEELDHLADVITGLEYYLERLSEDPHKPAENLLDGVERSLGALGYFPDEARVPLLDDVLSPNEAQVMQDLQELDDPQTVQSLAEVLASPVSAVNPPARNMPASLLPPPADESPIDDELREVFLEETAEVLDVLNEYLPRWAAHPDDHGALTELRRAFHTVKGSGRMVRALILGELAWAVENLLNRVLERSVEPGASVRQLIEETVQLLPALVAEFAAHRQSQRDDVDRLAARAHALAKGSDEDDDDERDVTALDPLLLNIFDNEAQGHLATLDRFLDQAAEQLPLQASDELQRALHTLKGSASMAGVLPIAELAGALDELAREYKAHSLALDLDEIELLLEGEGLLRRGLRQLHSEPLASIAGAADLIQRARALLAERLQAAVGAVDQGARTKRDPQLINNFLAQGMDILLDAENLLQRWQQHPAESQELSALLDELTTLGEGAHLADLHPVDELCEALLDLYGAVEESSLAVSDAFFQEAQRAHEALIDMLDELAAGQHVHSRSERVQALRKLLEESLDPAATGLIRSDGSRTLSIRELGQATAEMEQGATTETSVDDDIASIFLEEAQDILESAAQALQRWLADPDNGAPLSSLQRDLHTLKGGARMANIRPVSDLAQELESLYEGLVDRRYSYSEELAQLLDSSHARLDLLLGQLQQGQPLGDPVALIDAIHRFRQDRPNAIETPGASPSDATGHDPELLEIFLEEGFDILDSSGAALLRWQEDPGNRQAVETLLRDLHTLKGGARMVEIAPIGDLAHELENLYEGLSAGLLQPGPELFVLLQSSHDRLAQMLDAVRAGQPCPPGDRLIARIHAVGHPQENEAPEPVATPEPASIQAPATLPSRPEPAMSGDGVDTVKVSAELLDDLVNLAGETSIFRGRIEQQVNDARIALGEMETTIERMRDQLRRLDTETQGRILSRQQAEAERLGYEEFDPLEMDRHSQLQQLSRALFESASDLLDLKETLDRSNHDAENLLQQQGRINTELQEGLMRTRMVPFERMVPRLKRIVRQVAQELGKDVEFVVDNAEGEMDRNVLERMAAPLEHMLRNAVDHGLEPADVRIAAGKPAKGRISLDLSREGGDIIFDIRDDGAGVPLDAVRRKAIKRGLLAPDSDISDRDVLQFILQPGFSTAEKITQISGRGVGMDVVHEEVRQLGGTMSIDSTPGQGVHFRIRLPFTVSVNRALMVQCHEDQYAIPLNTIDSIVRVLPAELDGYYQLDPPTYTYAGQRYELCYLGELLKTAARPKLLGQSQPLPVLLVQCNERHVAVQVDATAGTREIVVKSLGSQFSAVRGLSGATILGDGRVVLILDLLAPIRALPHQVPRRQLSTQSESEPQRPLLILVVDDSVTVRKVTSRLLERHGMHVLTAKDGVDAMALLSEHTPDLMLLDIEMPRMDGFEVATQVRNDPSLAHLPIIMITSRTGQKHRDRAMTIGVNDYLGKPYQESVLLDSIAYWSKNHG	PGPT0015785_296	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-OTHER_QSR|BF_RELATED_SYSTEMS	CE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0015785-chpA-K06596	NA	NA
D1-36_04816	2061			hypothetical protein	ATGATCAAAGCAAAAACAGGCAAGCCACTGGAAGCGTCGCGCAGTCGTTCGCAGATCATCGTGCTGTTCGTCGCGCTGATTGTCTTCATCATGCTGTTGTTCGCCAATTTCGCGTACCTCAACGTCCAGTCCACCTATGACAAACAGTACATCGGCCATGCCGGTGAGCTGCGGGTGTTGTCCCAGCGCATCGCCAAGAACGCCACCGAGGCCGCGGCCGGCAAGGCGGCTGCGTTCAAGCTGCTGAGCGATGCGCGCAACGACTTCGCCCAGCGCTGGGGCTACCTGAAACAGGGCGATCCGGTGACCGGCCTGCCGCCGGCGCCCGCCACCCTGCGGCCGCAGATGCGTGCCGTGCAGTTGGACTGGGAGCGGCTGCTGAAGAATACCGATGCCATCCTCTCCAGCGAGCAAACCGTCCTGTCGCTGCATCAAGTCGCGGCGACCCTGGCCGAAACCGTTCCGCAACTGCAGGTCGAGTATGAAAAAGTCGTCGAGATCCTCCTGCAACGTGGAGCGCCGGCCGCCCAGGTGGCCATGGCCCAGCGCCAGTCGCTGCTGGCCGAACGCATCCTCGGCGCGGTGAATACCGTATTGGCCGGCGATGAAAATGCCAGCCAGGCCGCCGATACCTTTGGCCGCGACGCCGCGCGTTTCGGCCAGGTGCTCAACGGCATGCTGCAAGGGGACCCGACCTTGAAGATCCCCCAGGTACAGGATCGCGATGCCCGGGCGCGCCTGTCGGAAATCAGCGAGCTGTTCGAGTTCGTCTCGGGCTCGGTGGATGAAATCCTCGAGACCTCCCCGGAGCTGTTCAAGGTCCGCGAGTCGGCGAGCAATATCTTCAGCCTGTCGCAAACCCTCCTCGATGAGGCCTCGCACCTGGCCACGGCGTTCGAGAACCTGGCGGGCGGGCGTTCGGTCAACACCATTGGCGGCTATGTATTGGGCCTGCTGGCGCTGATGTCGATTATCCTTATCGGCCTGGTCATGGTTCGCGAAACCAACCGCCAGTTGAGAGAGACGGCGGAAAAGAACGAGCGCAACCAGAATGCAATCATGCGATTGCTCGACGAAATCGAGGACCTGGCCGACGGCGACCTGACCGTCACTGCCTCGGTCACCGAGGATTTCACCGGGACCATCGCCGACTCGATCAACTACTCGGTGGATCAGTTGCGTGATCTGGTGGCGACCATCAACCTCACCGCCGGCCAGGTCGCTGCCGCCGTGCAGGAAACCCAGGCCACGGCGATGCACCTGGCCCAGGCATCCGAGCACCAGGCCCAGCAAATTTCCGAAGCATCGACTTCAATCAATGAAATGGCGCAATCCATCGACCAGGTTTCGGCCAATGCCGCCGAGTCGTCGGCGGTGGCCGAGCGCTCCGTGGAAATCGCCAACAAGGGCAACGAGGTGGTGCACAACACCATCCATGGCATGGATAACATTCGCGAACAGATCCAGGACACCGCCAAGCGCATCAAGCGGTTGGGCGAGTCGTCCCAGGAAATTGGCGACATTGTCAGCCTGATCGACGACATCGCCGACCAGACCAACATCCTGGCACTCAACGCGGCGATCCAGGCGTCCATGGCCGGTGATGCCGGTCGCGGCTTCGCAGTGGTGGCCGACGAAGTGCAGCGGTTGGCGGAGCGTTCCTCGGCGGCGACCCGGCAGATCGAAACGCTGGTGCGGGCGATCCAGGCCGACACCAATGAAGCGGTGATCTCCATGGAACAGACCACCACCGAAGTGGTGCGCGGTGCCCGCCTGGCCCAGGACGCCGGCGTCGCCCTGGAGGAAATCGAAGGTGTGTCCAAGACCCTGGCGGCACTGATCCAGAGCATTTCCAACGCGGCGCAGCAGCAGACCACCTCCGCAGGGCAGATTTCCTTGACCATGAACGTGATTCAGCAGATCACCTCGCAGACCTCGTCCGGCTCCACCGCCACCGCCGAGAGCATCGGCAACCTGGCGAAGATGGCCAGCCAACTGCGCCGCTCGGTGTCGGGTTTCACCTTGCCGCCAGCACCGGCTGGCGATGAGGACAAGCAGTGA	MIKAKTGKPLEASRSRSQIIVLFVALIVFIMLLFANFAYLNVQSTYDKQYIGHAGELRVLSQRIAKNATEAAAGKAAAFKLLSDARNDFAQRWGYLKQGDPVTGLPPAPATLRPQMRAVQLDWERLLKNTDAILSSEQTVLSLHQVAATLAETVPQLQVEYEKVVEILLQRGAPAAQVAMAQRQSLLAERILGAVNTVLAGDENASQAADTFGRDAARFGQVLNGMLQGDPTLKIPQVQDRDARARLSEISELFEFVSGSVDEILETSPELFKVRESASNIFSLSQTLLDEASHLATAFENLAGGRSVNTIGGYVLGLLALMSIILIGLVMVRETNRQLRETAEKNERNQNAIMRLLDEIEDLADGDLTVTASVTEDFTGTIADSINYSVDQLRDLVATINLTAGQVAAAVQETQATAMHLAQASEHQAQQISEASTSINEMAQSIDQVSANAAESSAVAERSVEIANKGNEVVHNTIHGMDNIREQIQDTAKRIKRLGESSQEIGDIVSLIDDIADQTNILALNAAIQASMAGDAGRGFAVVADEVQRLAERSSAATRQIETLVRAIQADTNEAVISMEQTTTEVVRGARLAQDAGVALEEIEGVSKTLAALIQSISNAAQQQTTSAGQISLTMNVIQQITSQTSSGSTATAESIGNLAKMASQLRRSVSGFTLPPAPAGDEDKQ	PGPT0015850_441	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015850-pilJ-K02660	NA	NA
D1-36_04817	540			hypothetical protein	ATGAGCCACTCCCTGACCGCATTCGAACTGTTGCTTCAGATCGATCGACGCTGCCGGTTGCTGGGCGCGGACCTCCCGTCCCAGCCCATGCACCGGGACAGCTGGAGCGGCATCGGTTTTCGCCTGGGCGAACATTGGTACGTGGCGCCCATGGGCGAAGTGAGTGAAGTGCTGCATGAGCCGCGCCACACCTCGTTGCCCGGGGTCAAGCCATGGGTTCGCGGAGTCGCCAACCTGCGGGGGCGTTTGTTGCCGCTGATGGACCTGTGCGGTTTTTTCGGCCATGAACTGTCCAGCGTGCGCAAGCAGCGGCGGGTATTGGTGGTGGACCATGACGAAGTCTTCGCCGGTTTGCTGGTGGACGAAGTGCTCGGCTTGCAGCATTTTGCCAAGGACAGCCTTGAAGCGATTCCCACGGCCTCCTTGGATCGCCCGGAATCGGCGTACGTCCAGGGCCGTTTCGCCGGCGAGCGGCAATGGCAGGTGTTCAGCCCGTTTGCCTTGGCGCGTTCGCCGGGGTTCATGGATGTGGCGGTTTAA	MSHSLTAFELLLQIDRRCRLLGADLPSQPMHRDSWSGIGFRLGEHWYVAPMGEVSEVLHEPRHTSLPGVKPWVRGVANLRGRLLPLMDLCGFFGHELSSVRKQRRVLVVDHDEVFAGLLVDEVLGLQHFAKDSLEAIPTASLDRPESAYVQGRFAGERQWQVFSPFALARSPGFMDVAV	PGPT0015845_190	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015845-pilI-K02659	NA	NA
D1-36_04818	378	pleD		Response regulator PleD	ATGGGGAACACCATGGCACGCGTTCTGATCGTCGATGATTCGCCGACTGAGATGTACAAGCTCACTGGCATGCTGGAAAAGCACGGCCACGAGGTCCTGAAGGCCGAAAACGGCGCCGATGGCGTGGCATTGGCCCGCCAGGAAAAACCCGATGCGGTATTGATGGATATCGTCATGCCCGGCCTCAACGGTTTCCAGGCCACGCGCCAGCTGACCAAGGACCCTGATACCGGACACATCCCCGTGATCATCATCACGACCAAGGACCAGGACACCGACAAGGTCTGGGGTACGCGCCAGGGTGCGAAGGACTATCTGACCAAGCCGGTGGACGAGGACACCCTGATCACGACCCTGAACAAAGTGCTGGAAGGCTGA	MGNTMARVLIVDDSPTEMYKLTGMLEKHGHEVLKAENGADGVALARQEKPDAVLMDIVMPGLNGFQATRQLTKDPDTGHIPVIIITTKDQDTDKVWGTRQGAKDYLTKPVDEDTLITTLNKVLEG	PGPT0015840_238	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015840-pilH-K02658	NA	NA
D1-36_04819	429	walR	COG0745	Transcriptional regulatory protein WalR	ATGGCAGAGCATCTTACGCAGCAGCAACCCAGCGCTTTGAAGGTGATGGTCATCGACGACTCGAAGACCATCCGCCGCACCGCCGAAACCCTGCTGCGCAACGTTGGTTGCGAAGTGATAACGGCGGTCGACGGCTTCGATGCCCTGGCCAAGATCGTCGATCATCATCCAGGCATTATCTTTGTCGATATCATGATGCCGCGCCTGGACGGTTACCAGACCTGCGCCCTGATCAAGAACAACAGCGCCTTCAAGGCGACGCCCGTGATCATGCTGTCGTCCCGCGATGGTCTGTTCGACAAGGCCAAGGGGCGCATCGTCGGCTCCGATCAATTCCTGACCAAGCCTTTCAGCAAGGAAGAACTGCTGGGCGCGATACAGGCCCATGTCCCGGGCTTTGCCGCTGTCCAGTCGCACCAGGCACATTAA	MAEHLTQQQPSALKVMVIDDSKTIRRTAETLLRNVGCEVITAVDGFDALAKIVDHHPGIIFVDIMMPRLDGYQTCALIKNNSAFKATPVIMLSSRDGLFDKAKGRIVGSDQFLTKPFSKEELLGAIQAHVPGFAAVQSHQAH	PGPT0015835_119	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015835-pilG-K02657	NA	NA
D1-36_04820	972	gshB	COG0189	Glutathione synthetase	ATGAGCGTACGCGTCGGCATTGTCATGGACCCAATCGCCAGCATTTCCTATAAGAAGGATAGCTCGCTGGCCATGCTGCTGGCCGCTCAAAAGCGCGGCTGGGAGTTGTTCTACATGGAACAGCGCGACCTCTACCAGGCCGAAGGCCAGGCCCGGGCACGGATGAAGCCGCTGAAAGTCTTCGCCAACCCCGAGAAATGGTTCGAACTGGGTGACGAGAACGACGCGCTGCTAAGCGACCTGGACGTGATCCTGATGCGCAAGGATCCGCCGTTCGACATGGAATTCGTGTATTCCACTTATCTGCTGGAACAAGCTGAAAGCGCCGGCGTGCTGGTGGTCAACAAGCCGCAGAGCCTGCGCGACTGCAACGAAAAGCTGTTCGCCACGCTATTCCCGCAATGCACGCCGCCCACCATCGTCAGCCGTCGCCCGGACGTGTTGCGCGAATTTGCCGATCATCATGGCGACGTCATCCTCAAGCCCCTGGACGGCATGGGCGGCTCTTCGATCTTCCGCCACACCGCAGGCCATCCGAACCTGTCGGTGATCCTGGAAACCCTGACCTTGCATGGCCAGCAACAGATCATGATCCAGGGCTACCTGCCGGCTATCGTCGACGGCGACAAGCGCATCCTGATGATCGACGGCGAACCCGTCGATTATTGCCTGGCGCGCATCCCGGCGGCCGGCGAAACCCGTGGCAACCTGGCGGCCGGTGGTCGTGGCGAAGCTCGTCCGCTGACCGACAAGGATCGCTGGATCGCCGCCCAGGTCGGCCCGACGCTGCGCGAGAAAGGCCTTCTGTTCGTCGGCCTGGACGTGATCGGCGAGCATCTGACGGAGATCAACGTCACCAGCCCGACCTGCATCCGCGAGATCGACAATGCCTTCGGCACGGACATCGGCGGCATGCTGATGGACGCCATCGAGAAGCAGCTGCAAGCGGCAAGCCACACGCGGCAAGCTTGA	MSVRVGIVMDPIASISYKKDSSLAMLLAAQKRGWELFYMEQRDLYQAEGQARARMKPLKVFANPEKWFELGDENDALLSDLDVILMRKDPPFDMEFVYSTYLLEQAESAGVLVVNKPQSLRDCNEKLFATLFPQCTPPTIVSRRPDVLREFADHHGDVILKPLDGMGGSSIFRHTAGHPNLSVILETLTLHGQQQIMIQGYLPAIVDGDKRILMIDGEPVDYCLARIPAAGETRGNLAAGGRGEARPLTDKDRWIAAQVGPTLREKGLLFVGLDVIGEHLTEINVTSPTCIREIDNAFGTDIGGMLMDAIEKQLQAASHTRQA	PGPT0013040_441	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013040-gshB-K01920	NA	NA
D1-36_04821	897			hypothetical protein	ATGACACTCCCGTCCGATCTGCCCCAAGAGCTCGCCCATCGTGGCGTGCGCCCGGCTGATCGCCTTGGCTTCACCCTTTTCCTGGCGGCATTGATCCACCTGGCGCTGTTGTTGGGCGTCGGCTTTGCCACGGTCGAACCCAAGCAGATCAGCCAGACCCTGGAAATCACCCTGGCCACCTTCAAGAGCGAAACCAAGCCACAGAAGGCGGACTTCCTGGCCCAGGAAAACCAGCAGGGCAGTGGCACCCTGGAAAAGAAAGCGACCCCCAAGACCACCGAGATCGCGCCGTTTCAAGACAATAAAGTGCAGAAGGTGACCCCGCCGCCCACGGCCAAGCCGGAGGTCCAGGAGACGGCGCCCAAGGCTGCCGTGACCACCGTGGCGCCGAAGCCGAAAAAAGCCCCGGTAAAGGAAGAGGTCAAGCCCGATCCGAAACCCAAGGCGCCAGAACCGACTTTCGACAGCTCGCAGTTGTCCAGCGATATCGCCAGCCTGGAAGCCGAACTGGCCCAGGAACAGCAGTTGTACGCCAAGCGCCCGCGCATCCATCGCCTGAGCGCAGCTTCGACCATGCGCGACAAGGGCGCCTGGTACAAGGACGAGTGGCGCAAGAAGGTCGAGCGCATCGGCAACCTGAACTACCCCGACGAAGCCCGGCGCAAGCAGATCTACGGCAACCTGAGATTGATGGTTTCGATCAACCGCGATGGCTCGCTGTACGAAGTGCTGGTGCTCGAATCCTCCGGCCAGCCGCTGCTGGACCAGGCGGCCCAGCGAATCGTGCGCCTGGCCGCGCCCTTCGCACCGTTTACCGGTGACCTGTCGGACATCGACCGCCTGGAAATCATCCGCACCTGGAAGTTCGCCCGGGGTGATCGGCTGTCCAGTAACTGA	MTLPSDLPQELAHRGVRPADRLGFTLFLAALIHLALLLGVGFATVEPKQISQTLEITLATFKSETKPQKADFLAQENQQGSGTLEKKATPKTTEIAPFQDNKVQKVTPPPTAKPEVQETAPKAAVTTVAPKPKKAPVKEEVKPDPKPKAPEPTFDSSQLSSDIASLEAELAQEQQLYAKRPRIHRLSAASTMRDKGAWYKDEWRKKVERIGNLNYPDEARRKQIYGNLRLMVSINRDGSLYEVLVLESSGQPLLDQAAQRIVRLAAPFAPFTGDLSDIDRLEIIRTWKFARGDRLSSN	PGPT0003745_813	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	OTHER_HEAVY_METAL_RESISTANCE_SYSTEMS	HEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003745-tonB-K03832	NA	NA
D1-36_04822	570			hypothetical protein	ATGAAAAACGTCAGCCCCACCTACCTCAAGCATCACTTCCTGATCGCCATGCCGCACATGGCCGATCCGAATTTTGCCCATACCTTGACCTACATCGTCGAGCACACGGCCAATGGGGCCATGGGACTGGTGGTCAATCGCCCACAGGAGCTGAACCTGGCGGACATCCTCGAGCAACTGCGCCCCGAGGTCGAGCCGCCATTGCTGTGCCAGCATGTGCCGATTTTCATCGGTGGCCCGGTGCAGACCGATCGCGGTTTCGTGCTCCACCCGTCGGGTCCCAAATTCCAGGCCACCGTCGATTTGAACGGTGTGTCGCTGTCCACATCCCAGGACGTGCTGTTTGCCATCGCCGACGGCGTCGGCCCGGAAAAGAGCCTGATCGCCCTTGGCTATGCCGGCTGGGAACCCGGGCAACTGGAGGCCGAACTGGCCGACAATGCCTGGCTGACCTGCCCGTTCGACGCCGACATCCTGTTCAACACCAGCAGCGAACTGCGCCTGGAAGCGGCCGCCAGCAGGCTGGGCGTCAACCTCAGCTTGCTCACCAGCCAGGCAGGACACGCCTGA	MKNVSPTYLKHHFLIAMPHMADPNFAHTLTYIVEHTANGAMGLVVNRPQELNLADILEQLRPEVEPPLLCQHVPIFIGGPVQTDRGFVLHPSGPKFQATVDLNGVSLSTSQDVLFAIADGVGPEKSLIALGYAGWEPGQLEAELADNAWLTCPFDADILFNTSSELRLEAAASRLGVNLSLLTSQAGHA	PGPT0026120_1291	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026120-algH-K07735	NA	NA
D1-36_04823	438	yqgF	COG0816	Putative pre-16S rRNA nuclease	ATGGCTCTCCGCCTGCTGCTGGGCTTCGACTACGGCACCAAACAGATCGGCGTTGCGGTCGGCCAGGTCGTCACCGGCCAGGCCCGCGAACTGTGTACCTTGAAGGCACAGAACGGCGTTCCGGACTGGAACCAGGTCGAAGCGCTGATCAAGGAATGGAAACCCGACGCCGTGGTGGTCGGCCTGCCGTTGAACATGGACGGCACGCCCAGCGACATGTGCGTGCGCGCGGAGAAATTCGCCCGACGGCTCAACGGCCGCTTCAATCTGCCCTTCTATACCCATGACGAACGCCTGACCACGTTCGAGGCCAAGGGCGAACGCCTGGTCCGCGGTGGGCAGAAAGGCAGTTACCGCGACAACCCGGTGGACGCCATCGCCGCCGCCCTGCTGCTGCAAGGCTGGCTCGATGCCAACGCCGCCCTGTTCGAAACCTGA	MALRLLLGFDYGTKQIGVAVGQVVTGQARELCTLKAQNGVPDWNQVEALIKEWKPDAVVVGLPLNMDGTPSDMCVRAEKFARRLNGRFNLPFYTHDERLTTFEAKGERLVRGGQKGSYRDNPVDAIAAALLLQGWLDANAALFET				NA	NA	NA	NA	NA
D1-36_04824	507	pyrR		Bifunctional protein PyrR	ATGAGCCTGCCCAATCCCGCCGAACTGATCAGCCAGATGGCGATCCGTCTCACGGCGCACCTGGAACAACGCGGCATCAGCGAACCGCGCTACATCGGCATTCGCACCGGCGGCGTCTGGGTTGCCCAGGCCTTGCTCGATGAACTGGGCAGCGATTCGCCGCTGGGTACCCTGGATGTGTCCTTCTACCGCGATGACTTCAGCCAGAACGGCCTGCATCCACAAGTACGTCCCTCGGCCCTGCCGTTCGAGATCGAAGGCCAGCACCTGGTGCTGATCGACGACGTGCTGATGAGCGGCCGGACCATCCGCGCCGCCATGAACGAATTGTTCGACTACGGTCGCCCGGCCAGCGTGACGCTGGTGTGCCTGCTGGACCTGGACGCCGCCGAGCTGCCGATCCGCCCGAACGTGGTCGGCGCGACGCTGGCGCTGGCCGCCCACGAGCGGGTCAAGCTCTCAGGGCCGTCGCCGCTGCAACTCGAACTGCAAGACCTTGCCCTTTAA	MSLPNPAELISQMAIRLTAHLEQRGISEPRYIGIRTGGVWVAQALLDELGSDSPLGTLDVSFYRDDFSQNGLHPQVRPSALPFEIEGQHLVLIDDVLMSGRTIRAAMNELFDYGRPASVTLVCLLDLDAAELPIRPNVVGATLALAAHERVKLSGPSPLQLELQDLAL	PGPT0021245_2461	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021245-pyrR-K02825	NA	NA
D1-36_04825	1005	pyrB		Aspartate carbamoyltransferase	ATGACGCCTCTCGAAACCAAGCGCCCGCTGCAGCTCAACGATCAGGGCCAGCTGCGGCATTTCCTGTCCCTCGACGGCCTGCGCCGCGAGCTGCTGACGGAAATCCTCGATACCGCCGACTCGTTCCTCGAAGTCGGTGCCCGAGCGGTGAAGAAAGTCCCGTTGCTGCGCGGCAAGACCGTGTGCAACGTCTTTTTTGAAAACTCCACCCGCACCCGCACCACCTTCGAACTGGCGGCCCAGCGGCTGTCGGCGGATGTGATCAGCCTCAACGTGTCCACATCCTCGGCGAGCAAGGGCGAGACCCTGCTCGACACTCTGCGCAACCTCGAGGCCATGGCCGCCGACATGTTCGTCGTGCGCCACGGTGACTCCGGCGCGGCACACTTCATCGCTGAACATGTCTGCCCGCAAGTGGCGATCATCAACGGCGGCGACGGCCGTCACGCCCACCCGACCCAGGGCATGCTCGACATGCTGACCATCCGTCGTCACAAAGGCAGCTTTGAAAACCTGTCGGTAGCGATCGTTGGCGACATCCTGCATTCGCGGGTGGCGCGCTCGAACATGCTGGCCCTCAAGACGCTGGGCTGCCCGGACATCCGCGTAATCGCGCCGAAAACCCTGCTGCCCATCGGCGTCGAGCAGTACGGCGTGAAGGTCTACACCGACATGACCGAAGGCTTGAAGGACGTGGACGTGGTGATCATGCTGCGCCTGCAACGCGAGCGTATGACCGGCGGCCTGCTGCCCAGCGAAGGCGAGTTCTACCGCCTGTTCGGCCTGACCACGGCACGCCTGGCCGGAGCCAAGCCGGACGCCATCGTCATGCACCCGGGGCCGATCAACCGCGGCGTGGAGATCGAGTCGGCGGTGGCCGACGGGCCGCGTTCGGTGATTCTCAACCAAGTGACCTACGGCATCGCCATCCGCATGGCCGTGCTGTCCATGGCCATGAGCGGGCAAACGGCCCAGCGCCAACTCGACCAGGAGAACGCCCAGTGA	MTPLETKRPLQLNDQGQLRHFLSLDGLRRELLTEILDTADSFLEVGARAVKKVPLLRGKTVCNVFFENSTRTRTTFELAAQRLSADVISLNVSTSSASKGETLLDTLRNLEAMAADMFVVRHGDSGAAHFIAEHVCPQVAIINGGDGRHAHPTQGMLDMLTIRRHKGSFENLSVAIVGDILHSRVARSNMLALKTLGCPDIRVIAPKTLLPIGVEQYGVKVYTDMTEGLKDVDVVIMLRLQRERMTGGLLPSEGEFYRLFGLTTARLAGAKPDAIVMHPGPINRGVEIESAVADGPRSVILNQVTYGIAIRMAVLSMAMSGQTAQRQLDQENAQ	PGPT0021160_893	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021160-pyrB-K00609	NA	NA
D1-36_04826	1272	pyrC'	COG0044	Dihydroorotase-like protein	GTGAAGCTCAGCATTCTCGGCGCACGCGTGATCGATCCGGCCAGCGGCCTGGATCAAGTGACTGACATTCATATCGATGCCTGCAAGATCGTCGCTCTGGGCGCCGCGCCGACAGGCTTCGCGGCGGTCGAGACCCTCGACGCCCACGGCCTGGTAGCCGCCCCCGGTCTGGTTGACCTCAACGTCGCCCTGCGCGAGCCGGGCTACAGCCGCAAAGGCAGCATCATCAGCGAAACCCGGGCGGCCGCCGCCGGTGGCGTGACCAGCCTGTGCTGCCCACCGCAAACCAAACCGGTGCTGGACACCTCGGCCGTGGCCGAACTGATCCTCGACCGCGCCCGCGAAGCCGGCAACACCAAGGTCTTTCCCATTGGCGCACTGAGCAAGGGCCTGGAAGGCGAGCAACTGGCCGAGCTCATCGCCCTGCGCGACGCCGGTTGCGTGGCGTTCGGCAATGGCCTGAACAATTTCCGCAACACCCGTACCCTGTGCCGCGCGCTGGAATATGCGGCGACCTTCGGCCTGACGGTGATCTTCAACTCGCAGGACCTTGACCTGGCCGAAGGCGGCCTGGCCCACGAAGGCCCCACCGCCAGTTTCCTTGGCCTGCCGGGCATCCCGGAAACCGCCGAGACCGTGGCACTTGCCCGGGACCTGCTGCTGGTGGAGCAAAGCGGCGTGCGCGCGCACTTCAGCCAACTGACCAGCGCCCGCGGCGCCGCGCTGATCGCCCAGGCCCAGGCACGTGGTTTGCCAGTGACCGCCGATGTGGCGCTGTACCAGTTGATCCTCACCGACGAAGCGCTGATCGACTTCAATAGCGTCTATCACGTCCAGCCGCCGCTGCGCACCCGCGCCGACCGCGATGGCTTGCGCGAGGCGGTGAAGTCCGGGGTGATCTCGGCCATTTCCAGCCATCACCAACCCCACGAGCGCGATGCCAAGCTGGCCCCCTTCGGCGCCACCGAGCCGGGCATCAGCAGCGTCGAGCTGTTGCTGCCGCTGGCCATGACACTGGTGGAAGACGGATTACTGGATCTACCGACCCTGCTGGCACGCCTGAGCGCCGGCCCGGCCCAGGCGCTGCAATTGCCTGCCGGGAAACTGGCCGTGGGTGCCGCGGCGGACCTGGTGCTGTTCGACCCCGCCGCGTCCACCGTGGCCGGTGAAGCCTGGCGCTCCAAGGGTGACAACTGTCCGTTCCTGGGTCACAGCCTGCCGGGGGTGGTGCGCTATACCCTGATGGATGGGCGGATCACTCACCAGGTTTGA	MKLSILGARVIDPASGLDQVTDIHIDACKIVALGAAPTGFAAVETLDAHGLVAAPGLVDLNVALREPGYSRKGSIISETRAAAAGGVTSLCCPPQTKPVLDTSAVAELILDRAREAGNTKVFPIGALSKGLEGEQLAELIALRDAGCVAFGNGLNNFRNTRTLCRALEYAATFGLTVIFNSQDLDLAEGGLAHEGPTASFLGLPGIPETAETVALARDLLLVEQSGVRAHFSQLTSARGAALIAQAQARGLPVTADVALYQLILTDEALIDFNSVYHVQPPLRTRADRDGLREAVKSGVISAISSHHQPHERDAKLAPFGATEPGISSVELLLPLAMTLVEDGLLDLPTLLARLSAGPAQALQLPAGKLAVGAAADLVLFDPAASTVAGEAWRSKGDNCPFLGHSLPGVVRYTLMDGRITHQV	PGPT0021145_4114	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021145-pyrC-K01465	NA	NA
D1-36_04827	429			hypothetical protein	ATGAACAGCTATCAACAGGACGCAATCCGCGATACCCACAGCAAAGTCATCGGGTATCTGCTCTGGATTCTCGGGTTTACCGGCGCTCACCGTTTCTATTACGGCAAGCCGGTGACCGGCACGATCTGGTTTTTCACCTTCGGCCTGCTGGGCATTGGCTGGCTGATCGACCTGTTCCTGATCCCTGCCATGGACCGCGAAGCGGACCTGCGCTTTACCCCTGGCCCCATCGAATACAGCGTGGCGTGGATCCTGCTCACGTTCCTCGGGGTGCTTGGTGTGCATCGCATGTACCAAGGCAAGTGGCTCAGTGGGCTCCTTTACCTGCTGACCGGTGGGGTGTTTTTCCTGGGGGTGCTGTATGACTTCTGGACGCTGAATGACCAGGTCTCGATTCGTAATGCGCAGAAGCGTGGGGCTTTCCATTAA	MNSYQQDAIRDTHSKVIGYLLWILGFTGAHRFYYGKPVTGTIWFFTFGLLGIGWLIDLFLIPAMDREADLRFTPGPIEYSVAWILLTFLGVLGVHRMYQGKWLSGLLYLLTGGVFFLGVLYDFWTLNDQVSIRNAQKRGAFH				NA	NA	NA	NA	NA
D1-36_04828	612			hypothetical protein	ATGCGTCCATTTTTAAAGACATGGCTGACCATCTGCCTATTATTGCCACTGGCCGCCCACGCCACCAACCGTGAGCAACGTCTTCCCAACATCAATGGCTACACCCCTAAATCCCATGTTTCTGCTCCGTCGAGCAAGAACAAGCAAGGCGTCCAGCGCGTGAGCACGGCTCAGAGTCGACTGGTGCCACCCATGGCGACCAAGACCACCAGCAATGTCTTGAGCCGCGCCGTGAATGTACTCGGCACACCTTACCGTTGGGGCGGCAGCAGCCCAAGTAAAGGTTTCGATTGCAGTGGGCTGGTGAAATACGCCTTCAACGACGCCACCTTCGATTTGCCGCGCACATCCAACGCGATGGCAGCCGGCCACGGTGAAAAAATCGAGCGCAAGGACTTGAAGCCTGGGGACCTGATTTTCTTCAAGCTCAAGAGCCGGCGAGTCAACCATGTGGCCATCTACCTGGGCAATGACCGCTTCATCCACGCCCCGCGCCGTGGCAAGTCGGTGACCATCGACACGCTGAACAAGCCGTATTGGAACACCCATTACGTGGTTGCCAAGCGGGTACTGCCCAAAGAGCCGGGTGCGATGCGGGTGGTTCAGCGCTGA	MRPFLKTWLTICLLLPLAAHATNREQRLPNINGYTPKSHVSAPSSKNKQGVQRVSTAQSRLVPPMATKTTSNVLSRAVNVLGTPYRWGGSSPSKGFDCSGLVKYAFNDATFDLPRTSNAMAAGHGEKIERKDLKPGDLIFFKLKSRRVNHVAIYLGNDRFIHAPRRGKSVTIDTLNKPYWNTHYVVAKRVLPKEPGAMRVVQR	PGPT0023830_383	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-MUREIN_DD-ENDOPEPTIDASE_ACTIVITY,PGPT0023830-mepH-K19303	NA	NA
D1-36_04829	1035	pilT_2	COG2805	Twitching mobility protein	ATGGATATCACTGAACTGCTGGCGTTCAGCGCCAAACAGGGGGCGTCGGACCTGCATCTGTCCGCCGGGTTGCCACCAATGATCCGTGTCGATGGCGATGTGCGGCGTATCAACCTGCCGGCGTTGGACCACAAGCAGGTCCATGAACTGATCTACGACATCATGAATGACCGGCAACGAGTGGATTACGAAAAGTTTCTGGAGACCGACTTTTCCTTCGACGTGCCAGGCGTTGCGCGGTTTCGGGTCAATGCCTTCAACCAGAATCGTGGCGCGGGGGCGGTGTTCCGGACCATCCCTTCGAAAGTCCTGACCATGGAAGACCTGGGTATGGGCGAGGTGTTTCGCAAGATCACCGAGGCCCCACGTGGGCTCGTGCTGGTGACCGGGCCGACGGGGTCCGGCAAGTCCACCACCCTGGCCGCGATGATCGATTACCTGAACAGCCACAAGCATCATCACATCCTCACCATCGAGGACCCGATCGAATTCGTCCATGAACCGCGCAAATGCCTGATCAACCAGCGCGAGGTGCACCGCGATACCCAGGGCTTTTCCACGGCGCTGCGCTCGGCCCTGCGGGAAGATCCGGACGTGATCCTGGTGGGGGAAATGCGCGACCTGGAAACCATCCGGCTGGCGCTGACTGCCGCAGAAACCGGGCACTTGGTGTTTGGCACGCTGCACACCACATCGGCGGCCAAGACCATTGACCGGGTGGTGGACGTGTTTCCCGGTGACGAGAAGTCCATGGTTCGTTCGATGCTGTCGGAGTCGTTGCAGGCGGTGATCTCCCAGACGCTGGTCAAGAAGATCGGCGGCGGCCGGGTTGCGGCGCATGAAATCATGCTCGGCACCTCGGCGATCCGCAATCTCATCCGGGAAGACAAGATCGCGCAGATGTATTCGTCGATTCAGACCGGCGGCTCGCTGGGGATGCAGACGCTGGACATGTGCCTGAAGGAGTTGGTGAACAAGGGACTGATCAGCCGCGAGCATGCGCGGGAGCGGGCGCGTACGCCGGATAATTTCTAG	MDITELLAFSAKQGASDLHLSAGLPPMIRVDGDVRRINLPALDHKQVHELIYDIMNDRQRVDYEKFLETDFSFDVPGVARFRVNAFNQNRGAGAVFRTIPSKVLTMEDLGMGEVFRKITEAPRGLVLVTGPTGSGKSTTLAAMIDYLNSHKHHHILTIEDPIEFVHEPRKCLINQREVHRDTQGFSTALRSALREDPDVILVGEMRDLETIRLALTAAETGHLVFGTLHTTSAAKTIDRVVDVFPGDEKSMVRSMLSESLQAVISQTLVKKIGGGRVAAHEIMLGTSAIRNLIREDKIAQMYSSIQTGGSLGMQTLDMCLKELVNKGLISREHARERARTPDNF	PGPT0015875_2287	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015875-pilT-K02669	NA	NA
D1-36_04830	693	yggS	COG0325	Pyridoxal phosphate homeostasis protein	ATGACCACGATAGCAGACAACATTGCTCAGGTTAGATCGCGCATCCATGCGGCGGAACAGGCCGCCCGACGCGCCGGACACAGCGTCCATCTACTGGCCGTCAGCAAGACCAAGCCCGCCCAGGCCCTGCGCGAAGCCTACGCCGCCGGCCTGCGTGACTTCGGCGAGAACTACTTGCAAGAAGCCTTGGGCAAGCAGGCCGAACTGACTGACCTGCCCTTGATCTGGCACTTCATCGGCCCCATTCAATCGAACAAGACGCGCGCTATCGCCGAACATTTCGACTGGGTGCATTCCGTGGATCGCTTGAAAATTGCACAGCGCCTGTCCGAGCAGCGGCCAGCCGAGCTGCCACCATTGAACATCTGCATTCAGGTCAACGTCAGCGGCGAAGCCAGTAAATCCGGCTGCGCGCCAGCGGACCTGCCCGCCCTTGCCAGCGCCATCAGCACGTTGCCACGCCTCACGTTGCGCGGGTTGATGGCGATTCCCGAACCGACCGACGATCGCGCTGAACAGGACGCGGCTTTTGCTGCTGTCCAGCGCCTGCAAGCCAGCCTGGACCTGCCCCTGGATACGCTGTCCATGGGCATGAGCCATGACCTCGAATCCGCCATTGCTCAAGGCGCCACCTGGGTGCGCGTCGGTACTGCGCTGTTTGGGGCTCGCGACTACGGTCAATCGCCCAGCTGA	MTTIADNIAQVRSRIHAAEQAARRAGHSVHLLAVSKTKPAQALREAYAAGLRDFGENYLQEALGKQAELTDLPLIWHFIGPIQSNKTRAIAEHFDWVHSVDRLKIAQRLSEQRPAELPPLNICIQVNVSGEASKSGCAPADLPALASAISTLPRLTLRGLMAIPEPTDDRAEQDAAFAAVQRLQASLDLPLDTLSMGMSHDLESAIAQGATWVRVGTALFGARDYGQSPS				NA	NA	NA	NA	NA
D1-36_04831	819	proC_2	COG0345	Pyrroline-5-carboxylate reductase	ATGAGCAACACGCGTATTGCCTTTATCGGCGCCGGCAACATGGCCGCCAGCCTGATCGGCGGCCTGCGGGCCAAGGGCCTGGATGCAGCGCAGATCCGCGCCAGCGATCCGGGTGAAGAAACCCGCCAGCGGGTGAGCGCAGAGCACGGCATCGAAGCCTTCGCCGACAACGCCCAGGCCATCGACGGCGTGGACGTCGTGGTGCTCGCGGTCAAGCCGCAAGCAATGAAAAGCGTGTGCGAAGCCCTTCGCCCGCATCTCAAGCCACATCAACTGATCGTGTCGATTGCCGCTGGTATTACTTGCGCGAGCATGAACAACTGGCTCGGCGCCCAGCCCATCGTGCGCTGCATGCCCAACACCCCGGCACTGCTGCGCCAGGGCGTCAGCGGCCTGTTCGCCACCGAACAGGTGACGGCCGCCCAACGCCAGCAGGCTGAAGAATTGCTGTCGGCCGTGGGTCTTGCGCTGTGGCTGGAAACCGAGCAGCAACTGGACGCGGTCACCGCCGTCTCCGGCTCTGGCCCGGCGTACTTCTTCCTGCTGATCGAAGCCATGACCGCCGCCGGCGAGAAACTCGGCCTGCCCCGGGAAACCGCCGCTCAGCTGACCTTGCAGACTGCCCTGGGCGCCGCGCATATGGCGGTCGCCAGCGATGTCGATGCGGCGGAGCTGCGTCGCCGCGTGACTTCGCCGGCCGGTACCACCGAAGCGGCCATCAAATCATTCCAGGCCGGAGGCTTCGAAGCCCTGGTTGAAAAAGCACTCGGCGCCGCCGCGCACCGCTCGGCCGAAATGGCCGAACAACTGGGCCAATAA	MSNTRIAFIGAGNMAASLIGGLRAKGLDAAQIRASDPGEETRQRVSAEHGIEAFADNAQAIDGVDVVVLAVKPQAMKSVCEALRPHLKPHQLIVSIAAGITCASMNNWLGAQPIVRCMPNTPALLRQGVSGLFATEQVTAAQRQQAEELLSAVGLALWLETEQQLDAVTAVSGSGPAYFFLLIEAMTAAGEKLGLPRETAAQLTLQTALGAAHMAVASDVDAAELRRRVTSPAGTTEAAIKSFQAGGFEALVEKALGAAAHRSAEMAEQLGQ	PGPT0014225_2817	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_PROLINE_DEGRADATION,PGPT0014225-proC-K00286	NA	NA
D1-36_04832	591			hypothetical protein	ATGATTGGATTGAACACTGCAGCGGTCTATGTCCTGCAAACCCTCGGCAGCCTGTACCTGCTGATCGTGCTGATGCGCTTCGTGCTGCAACTGGTGCGCGCCAACTTCTACAACCCGTTGTGCCAGTTCATCGTCAAGGCGACCCAACCGCTGCTTAAACCATTGCGCCGGATCATTCCGAGCCTGTTCGGCCTGGACATGTCCTCGCTGTTGCTGGCGATCCTGTTGCAAATGGCGCTGATGGCCCTGACGCTGCTGCTGACCTATGGCATCACCGGCAATCCGCTGCAATTGCTGATCTGGTCGATCATCGGCGTTACCGCACTGTTCCTGAAGATATTTTTCTTTGCCCTGATCATCAGCGTGATCCTGTCCTGGGTCGCGCCGGGCAGCCACAACCCGGGCGCCGAACTGGTGAACCAGATCTGCGAGCCGGCCCTGGCGCCGTTCCGCCGCATCGTGCCGAACCTCGGCGGCCTGGACATCTCGCCGATCCTGGCATTCATGGTGCTCAAACTGATCGACATGCTGGTGATCAACAACCTGGCGGCGATGACGATGATGCCGGAGATCCTGCGGGTGCTGATCTAA	MIGLNTAAVYVLQTLGSLYLLIVLMRFVLQLVRANFYNPLCQFIVKATQPLLKPLRRIIPSLFGLDMSSLLLAILLQMALMALTLLLTYGITGNPLQLLIWSIIGVTALFLKIFFFALIISVILSWVAPGSHNPGAELVNQICEPALAPFRRIVPNLGGLDISPILAFMVLKLIDMLVINNLAAMTMMPEILRVLI	PGPT0013730_248	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
D1-36_04833	1140	metXS	COG2021	Homoserine O-succinyltransferase	ATGCCAGCTGCCTTTCCCCCCGATTCCGTTGGTCTGGTGACGCCGCAAATGGCGCATTTCAGCGAGCCCCTGGCCCTGGCCTGCGGCCGTTCGTTGCCAGCCTATGACCTGATCTACGAAACCTACGGCACCCTCAACGCCACGGCGAGCAATGCCGTGCTGATTTGCCACGCCTTGTCGGGGCATCACCACGCCGCCGGCTACCACAGCGTCGATGACCGCAAGCCCGGCTGGTGGGACAGTTGCATCGGCCCCGGCAAGCCCATCGACACCAACCGGTTCTTCGTGGTCAGCCTGAACAACCTCGGCGGTTGCAACGGCTCCACCGGCCCCAGCAGCCTCAACCCCGACACCGGCAAGCCCTTCGGCGCCGATTTCCCGGTACTGACCGTGGAAGACTGGGTCCACAGCCAGGCCCGCCTGGCCGACCGCCTCGGCATCGGTCAATGGGCGGCGGTGATCGGTGGCAGCCTCGGCGGCATGCAGGCCCTGCAATGGACCATCACCTACCCGGATCGCGTGCGCCATTGCCTGGCAATCGCCTCGGCGCCCAAGCTGTCGGCGCAGAACATTGCCTTCAACGAAGTGGCGCGCCAGGCGATCCTCACCGACCCCGAGTTTCACGGAGGTTCGTTCCAGGAACATGGCGTGATTCCCAAGCGCGGGTTGATGCTGGCGCGGATGGTCGGGCACATCACCTACCTGTCCGACGATTCCATGGGTGAAAAATTCGGCCGAGGCCTCAAGAGCGAAAAGCTCAACTACGACTTCCACAGCGTGGAATTCCAGGTCGAGAGCTACCTGCGTTATCAGGGCGAGGAATTCTCCGGGCGCTTCGACGCCAACACCTACCTGCTGATGACCAAGGCGCTGGACTACTTCGATCCGGCGGCGAACTTCGACGATGACCTGGCGAAAACCTTCGCCAATGCCACCGCCAAGTTCTGCGTGATGTCGTTCACCACCGACTGGCGCTTCTCCCCGGCCCGTTCCCGGGAGCTGGTGGACGCACTGATGGCCGCGCGCAAGGACGTCTGCTACCTGGAAATCGACGCCCCCCAGGGCCACGACGCCTTTTTGATTCCGATCCCGCGCTACCTGCAGGCGTTCGGCAACTACATGAACCGTATTACGCTGTGA	MPAAFPPDSVGLVTPQMAHFSEPLALACGRSLPAYDLIYETYGTLNATASNAVLICHALSGHHHAAGYHSVDDRKPGWWDSCIGPGKPIDTNRFFVVSLNNLGGCNGSTGPSSLNPDTGKPFGADFPVLTVEDWVHSQARLADRLGIGQWAAVIGGSLGGMQALQWTITYPDRVRHCLAIASAPKLSAQNIAFNEVARQAILTDPEFHGGSFQEHGVIPKRGLMLARMVGHITYLSDDSMGEKFGRGLKSEKLNYDFHSVEFQVESYLRYQGEEFSGRFDANTYLLMTKALDYFDPAANFDDDLAKTFANATAKFCVMSFTTDWRFSPARSRELVDALMAARKDVCYLEIDAPQGHDAFLIPIPRYLQAFGNYMNRITL				NA	NA	NA	NA	NA
D1-36_04834	621	metXA	COG0500	Bifunctional methionine biosynthesis protein MetXA/MetW	ATGAGAGCCGATCTGGACATCATCCAGGAATGGATCCCCGCCGGCAGCCGCGTGCTCGACTTGGGCTGCGGCAACGGCGAACTGCTGACCTGGCTGCGGGACAACAAGCAAGTGACGGGCTACGGGCTGGAAAACGACCCGGACAACATCGCCGAATGCGTGGCCAAGGGCATCAACGTCATCGAACAAGACCTGGACAAAGGGCTGGGCAACTTCGCCAGCAACAGCTTCGACATCGTCGTCATGACCCAGGCCCTGCAAGCCGTGCATTACCCAGACAAGATTCTCGACGAAATGCTGCGCGTCGGGCGCCAGTGCATCATTACCTTCCCCAACTTCGGCCACTGGCGCTGCCGCTGGTACCTGGCGAGCAAGGGACGGATGCCGGTGTCGGAATTCCTGCCCTATACCTGGTACAACACCCCGAACATCCATTTCTGTACGTTCGAGGATTTCGAAGAACTGTGCCGCGAGCGCAAGGCCAAGGTCATCGACCGGCTGGCGGTGGACCAGCAGCACCGCCACGGGTGGGCCAGCAAGCTATGGCCTAATCTGTTAGGTGAGATTGGCATTTACCGGGTCAGCAGCCCGGGCCTTGCCGACCATCAGGTCGCGGTGTGA	MRADLDIIQEWIPAGSRVLDLGCGNGELLTWLRDNKQVTGYGLENDPDNIAECVAKGINVIEQDLDKGLGNFASNSFDIVVMTQALQAVHYPDKILDEMLRVGRQCIITFPNFGHWRCRWYLASKGRMPVSEFLPYTWYNTPNIHFCTFEDFEELCRERKAKVIDRLAVDQQHRHGWASKLWPNLLGEIGIYRVSSPGLADHQVAV				NA	NA	NA	NA	NA
D1-36_04835	435			hypothetical protein	ATGAAGCGTCTAGCGTTGCTGTTAATCACCTCCTGCCTGAGCATCGGCGCCATGGCCGCCGATGTCATCAAGGCCGAGCGCAAGGAAGTGTTCGGTGACGTCACCGTTCACTACAACACGTTCAACTCCACCTTCCTGACCCCGGACATCGCCAAGGGCGCCGAGCTGATTCGCAGCAAGCACCAGGGCGTCATCAACGTCTCGGTGATCAAGGAAGGCAAGCCGTTGATGGCCCAGGTCAGCGGTACGGTCAAGGACCTGACCAGCAAGACAGTCCCGCTCACCTTCCGTCAGGTCACCGAAGCAGGCGCGATCTACTACATCGCCCAATATCCAGTGGAACAGCAGGAAACCCGCACCTTCGAGATCAAGGTGCAAACCGGCGACAAAATCAACACCATCAACTTCAACCAGGAACTGTTTCCGGGCCAATGA	MKRLALLLITSCLSIGAMAADVIKAERKEVFGDVTVHYNTFNSTFLTPDIAKGAELIRSKHQGVINVSVIKEGKPLMAQVSGTVKDLTSKTVPLTFRQVTEAGAIYYIAQYPVEQQETRTFEIKVQTGDKINTINFNQELFPGQ				NA	NA	NA	NA	NA
D1-36_04836	597	rdgB	COG0127	dITP/XTP pyrophosphatase	ATGATCAACCTTACCCAACTCGTACTGGCCAGCCACAACGCCGGCAAACTCAAGGAACTCCAGGCGATGCTCGGCGGATCGGTGCAGCTGCGCTCGATCGATGAATTCAGCCAGGTCGAGCCGGAGGAAACCGGTTTGTCGTTCGTCGAGAACGCCATCCTCAAGGCCCGCAATGCGGCGCGCATTTCCGGCCTGCCGGCGCTGGCCGACGATTCCGGTCTGGCGGTGGACTTCCTCGGCGGCGCGCCGGGCATCTATTCGGCCCGTTACGCCGATGGCAAAGGTGACGCAGCGAACAACGCCAAGCTGCTCGAAGCCCTCAAGGACGTGCCCGAAGCCGAGCGCGGCGCGCAATTCGTTTGTGTGCTGGCGCTTGTGCGCCATGCCGACGATCCACTGCCGATCCTCTGCGAAGGCCTGTGGCACGGGCGCATCCTCGCCAAGGCCAGCGGCGAACACGGCTTTGGCTACGACCCGTTGTTCTGGGTGCCTGAGCGCAATTGTTCCAGCGCCGAGCTGGGCCCCGTTGAAAAGAACCAACTGAGCCACCGCGCCCGCGCCATGGCCCTGCTGCGCCAACGCCTGGGCCTGCAATGA	MINLTQLVLASHNAGKLKELQAMLGGSVQLRSIDEFSQVEPEETGLSFVENAILKARNAARISGLPALADDSGLAVDFLGGAPGIYSARYADGKGDAANNAKLLEALKDVPEAERGAQFVCVLALVRHADDPLPILCEGLWHGRILAKASGEHGFGYDPLFWVPERNCSSAELGPVEKNQLSHRARAMALLRQRLGLQ	PGPT0021590_4207	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021590-rdgB-K02428	NA	NA
D1-36_04837	1200	hemW	COG0635	Heme chaperone HemW	ATGACCACCGACTCCCCCGCACCGCTGATCCACGGCGGCGCACAGACACCTCGGGCGCCGCTGCCCATGCTGCCGCCCTTGGCGTTGTACATCCATATCCCCTGGTGCGTGCGCAAATGCCCGTATTGCGACTTCAACTCCCACACCGCCAGCCCGCAGCTGCCGGAGGAGGAATACGTCGACGCCTTGCTGGCCGATCTCAACCAGGATTTGCATGGGGTTCACGGCCGGCCGTTGTCCTCCATTTTCTTTGGCGGCGGCACGCCGAGCCTGTTCAGCGCCCAAGCCCTGGGGCGTCTGCTGCGGGGCGTCGAGGCGCGCATCCCTTTTGCGCCCGATATTGAAATCACCCTGGAAGCCAACCCAGGCACCTTTGAGCAAGAGAAATTCGTCGCCTACCGGGCGCTGGGCATCAATCGTCTGTCCATTGGCATCCAGAGCTTCCAACAGGCCAAGCTCCAAGCGCTTGGCCGAATCCATAACGGCGACGAGGCGGTGCGTGCCGCTGGCATGGCCCGCCAGGCCGGGTTCGATAATTTCAATCTCGACTTGATGCATGGCCTGCCGGATCAATCCCTCGAAGATGCCTTGAGCGATCTGCGCCAGGCCATTGCCCTGAAGCCCACCCATTTGTCCTGGTATCAACTGACGCTGGAGCCGAACACGGTGTTCTGGAACCAGCCGCCAATCTTGCCGGAAGACGACACGCTGTGGGACATCCAGGAAGCCGGGCAGGCGCTGCTCGCCGAGCATGGCTACGACCAATATGAGGTCTCCGCCTATGCCCAGCCAGGGCGCGCGGCGCGTCACAACCTCAATTATTGGAGCTTCGGTGACTTCATCGGCATCGGCGCCGGGGCCCACGGCAAGCTCAGCCATCCGGACGGGCGCATCGTGCGCACCTGGAAGACTCGCCTGCCCAAGGATTATCTCAACCCGGCCAAACGTTTCCTGGCCGGCGAAAAGAGCCTGGCCAACGAAGAACTGCCTTTCGAGTTCCTGATGAACGCGCTGCGTCTTACCGAAGGTGTAGCGGCGCAGCTTTATCCACAGCGCACCGGCCTGTCTTTGGAAAGCCTGGCCGACGGCCGGCGCGAGGCCGAACAAAGTGGGTTGTTGCAGGTCGAACCGTCACGTCTGGCGGCGACCGAGCGCGGACAGCTGTTTCTCAACGACTTGCTGCAGAAATTTCTGAGCTGA	MTTDSPAPLIHGGAQTPRAPLPMLPPLALYIHIPWCVRKCPYCDFNSHTASPQLPEEEYVDALLADLNQDLHGVHGRPLSSIFFGGGTPSLFSAQALGRLLRGVEARIPFAPDIEITLEANPGTFEQEKFVAYRALGINRLSIGIQSFQQAKLQALGRIHNGDEAVRAAGMARQAGFDNFNLDLMHGLPDQSLEDALSDLRQAIALKPTHLSWYQLTLEPNTVFWNQPPILPEDDTLWDIQEAGQALLAEHGYDQYEVSAYAQPGRAARHNLNYWSFGDFIGIGAGAHGKLSHPDGRIVRTWKTRLPKDYLNPAKRFLAGEKSLANEELPFEFLMNALRLTEGVAAQLYPQRTGLSLESLADGRREAEQSGLLQVEPSRLAATERGQLFLNDLLQKFLS				NA	NA	NA	NA	NA
D1-36_04838	324			hypothetical protein	ATGGATCTGGTACTCGACCTGCTCGCCACCGTATCCCGCTGGAGCCGCAGCAACCTGTCGGAAATCTCCCTGGCGTTGGTAGGCTGCCTGCTGGTGTTGTTTGGTGCGGATATCAAGGGCTGGGTCGAACAGCGCCTGGGCAGCATCGCCGGCGCCTTGCGCGTCCCGCTGATCGCCCTGCTATGCATGATCGGCAGCGGCGCCGCGCTGATCTACGCCACGCCGTGGATCGTCCGGGGCTTGAGCCAGTTCAACAACTACAGCCTGGCGCCGGTGTTATTGGTGGTGCTGGTGTTGATTGGTGTGGTGGCTGACCGCCGCTGA	MDLVLDLLATVSRWSRSNLSEISLALVGCLLVLFGADIKGWVEQRLGSIAGALRVPLIALLCMIGSGAALIYATPWIVRGLSQFNNYSLAPVLLVVLVLIGVVADRR				NA	NA	NA	NA	NA
D1-36_04839	726	trmB	COG0220	tRNA (guanine-N(7)-)-methyltransferase	ATGACTGAATCGAACGACACGCCTGTCCTGCCGGAAGAAGGCGAAGAGCGCCAGCACCGCCGCATCAAGAGTTTCGTGATGCGCGCCGGGCGCATGACCGAAGGCCAGCAACGCGGCCTGGAACAGGGCGCCCCGCTGTATGTCCTGCCCCTGGCCGATGCACCGGTCGACTTCGACCAGGTCTTCGGACGCTCGGCGCCGCGCTCGCTGGAAATCGGTTTTGGCATGGGCCACTCGCTTCTGGAGATGGCCGCCGCCGCGCCGGAACAGGATTTCATCGGCGTGGAGGTCCATCGTCCGGGTGTCGGTGCGCTGCTCAACGGTGTGCTGACCCAAGGGCTGACCAACCTGCGGGTCTACGATTGCGACGCTATCGAAGTGCTTAATCGTTGCGTGGCCGATAACAGCCTCGATCGGCTGATGCTGTTCTTCCCGGATCCGTGGCACAAAAGCCGACACCACAAGCGCCGGATCGTCCAGGCGTCGTTCGCTGAGCTGGTGCGTAGCAAGTTGAAGGTCGGCGGTGTGTTGCACATGGCCACCGACTGGGAGCCCTACGCCGAATACATGCTGGAAGTGATGAACGTCGCGCCGGGTTATCGCAACCTGGCCGAGGACGGCAAGTGCGTACCGCGCCCGGCTGAACGGCCGATCACCAAGTTCGAACGTCGTGGCGAACGGCTCGGGCATGGGGTTTGGGACTTGAAGTTCGAGAAGCTGCCTTAA	MTESNDTPVLPEEGEERQHRRIKSFVMRAGRMTEGQQRGLEQGAPLYVLPLADAPVDFDQVFGRSAPRSLEIGFGMGHSLLEMAAAAPEQDFIGVEVHRPGVGALLNGVLTQGLTNLRVYDCDAIEVLNRCVADNSLDRLMLFFPDPWHKSRHHKRRIVQASFAELVRSKLKVGGVLHMATDWEPYAEYMLEVMNVAPGYRNLAEDGKCVPRPAERPITKFERRGERLGHGVWDLKFEKLP				NA	NA	NA	NA	NA
D1-36_04840	795	thiG	COG2022	Thiazole synthase	ATGAGCATCGTTCGTAGCGACAAGCCCTTCGTCCTGGCCGGTCGTACCTACCAGTCGCGCTTGCTGGTAGGTACCGGCAAATACCGCGACATGGAAGAAACCCGCCTGGCCATCGAGGCCTCGGGCGCCGAAATCGTGACCGTCGCCGTGCGCCGCACCAACATCGGCCAGAACCCGGGCGAACCGAACCTGCTGGATATCCTGCCGCCGGATCGCTACACGATCCTGCCGAACACCGCTGGTTGCTTCGACGCCATCGAGGCCGTGCGCACCTGTCGCCTGGCCCGTGAACTGCTCGACGGTCACAACCTGGTGAAGCTGGAAGTGCTGGCGGACCAGAAAACCCTGTTCCCCAACGTGATCGAAACCCTCAAGGCCGCCGAGACCCTGGTCAAGGAAGGTTTTGACGTGATGGTCTACACCAGCGATGACCCGATCATCGCCCGTCAGTTGGCGGAAATCGGCTGCATCGCGGTCATGCCGTTGGCCGGCCTGATCGGCACCGGCCTGGGGATCTGCAACCCATACAACCTGCAGATCATCCTGGAAGAAGCCAAGATCCCGGTGCTGGTGGATGCCGGTGTCGGTACCGCTTCCGACGCCACCATCGCCATGGAGCTGGGTTGCGAAGCGGTGCTGATGAACTCGGCCATCGCCCATGCCCAGCAGCCGGTCCTGATGGCCGAAGCCATGAAGCACGCCATCGTTGCCGGCCGCTTGGCCTACCTGGCCGGCCGCATGCCGAAAAAACTCTACGCCAGCGCGTCCTCGCCGCTGGATGGTCTGATCAAGTAA	MSIVRSDKPFVLAGRTYQSRLLVGTGKYRDMEETRLAIEASGAEIVTVAVRRTNIGQNPGEPNLLDILPPDRYTILPNTAGCFDAIEAVRTCRLARELLDGHNLVKLEVLADQKTLFPNVIETLKAAETLVKEGFDVMVYTSDDPIIARQLAEIGCIAVMPLAGLIGTGLGICNPYNLQIILEEAKIPVLVDAGVGTASDATIAMELGCEAVLMNSAIAHAQQPVLMAEAMKHAIVAGRLAYLAGRMPKKLYASASSPLDGLIK	PGPT0008965_1029	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008965-thiG-K03149	NA	NA
D1-36_04841	219			hypothetical protein	ATGATGGCGGCATCCGGCATGCGCATTCAGTTGAACGGCGAACCCCTTGATCTGCCCGACGGTGAAACCGTCGCGGCCCTGCTGACCCGTCTGGAACTCACCGGACGCCGCGTCGCGGTGGAACTCAATCTGGATATCGTCCCGCGCAGCCAGCACGCCGAAACCAAATTGAACGACGGTGATAGCGTCGAAGTGGTCCACGCCATCGGTGGCGGTTAG	MMAASGMRIQLNGEPLDLPDGETVAALLTRLELTGRRVAVELNLDIVPRSQHAETKLNDGDSVEVVHAIGGG	PGPT0008970_470	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
D1-36_04842	381			hypothetical protein	ATGTTGCGTAGCTTTCTGATGCTGGCGGCTTTTTTCGGCTTCACGGGCGTGGCGCTGGGGGCGTTTGCCGCCCATGGCCTGAAAAACCGCCTGAGCGCCGATTATCTGGCGATTTTCCACACTGGGGTGACCTACCAACTGGTGCATACCCTGGCGCTGTTCGGCGTTGCGCTGTTGGCCACGCACATCCCGGGTCGTATCGTCACTTGGGCCGGAATTTCATTCGTGATCGGCATCCTGCTGTTCTCCGGCAGCCTGTATCTGCTGACCCTTACCGGTGTCACCAAGCTGGGCATGATCACGCCCCTGGGCGGCGTGGCTTTCCTGATCGGTTGGTTGTGCCTGGGCATCGCGGCCTGGCGCCTGCAACTTGCCGCTTGA	MLRSFLMLAAFFGFTGVALGAFAAHGLKNRLSADYLAIFHTGVTYQLVHTLALFGVALLATHIPGRIVTWAGISFVIGILLFSGSLYLLTLTGVTKLGMITPLGGVAFLIGWLCLGIAAWRLQLAA				NA	NA	NA	NA	NA
D1-36_04843	723	mtgA	COG0744	Biosynthetic peptidoglycan transglycosylase	ATGCTGCGTTCATTGTTTCGACGATTCATTAAAGCCCTGTTCTGGTTCGCCGCCTGCAGCGTTGTGCTGGTGCTGCTGTTTCGCGTGGTGCCACCGCCGTTCACCGCGCTGATGATCGAGCGCAAGGTGCAATCCTGGTTCGGAGGCGAACCGATCGACCTGCAGCGTGACTGGCAACCCTGGGACAAGATTTCCAATCATCTCAAGGTTGCGGTCATTGCCGGGGAAGACCAGAAATTTCCCGAGCATTGGGGCTTTGACATCGGCGCAATCCAGGCCGCGTTCGCCCACAACGGGCGCGGCGGTTCGATTCGTGGCGCCAGCACCCTTAGCCAGCAGGTTTCCAAGAACCTTTTCCTGTGGTCGGGCCGCAGTTGGCTGCGCAAGGGGCTGGAGGCCTGGTTCACCGCGCTGATCGAAGTGTTCTGGCCCAAGCAGCGGATCCTCGAGGTGTACCTCAATAGCGTCGAGTGGGACGACGGGGTGTTTGGGGCCGAAGCGGCGGCGCGGCATCATTTTCGTGTCGGTGCAAACGCCTTGTCCCGACAACAGGCCAGCCTGTTGGCCGCAGTCCTGCCCAACCCGAGGGCCTGGAGCGCCAGTCGGCCGAGCCCTTATGTGCTCAGGCGTGCGAGTTGGATTCGCCAGCAGATGAGCCAATTGGGAGGTGATGGTTATCTGTTGCGGTTAGATGAGTCTCGGCCGGCGCCCTGGGCTCAATAG	MLRSLFRRFIKALFWFAACSVVLVLLFRVVPPPFTALMIERKVQSWFGGEPIDLQRDWQPWDKISNHLKVAVIAGEDQKFPEHWGFDIGAIQAAFAHNGRGGSIRGASTLSQQVSKNLFLWSGRSWLRKGLEAWFTALIEVFWPKQRILEVYLNSVEWDDGVFGAEAAARHHFRVGANALSRQQASLLAAVLPNPRAWSASRPSPYVLRRASWIRQQMSQLGGDGYLLRLDESRPAPWAQ	PGPT0024110_953	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024110-mtgA-K03814	NA	NA
D1-36_04844	855	rpoH	COG0568	RNA polymerase sigma factor RpoH	ATGACCACTTCTTTGCAACCTGCTTATGCTCTGGTCCCAGGTGCGAACCTGGAGGCCTATGTGCACACGGTCAACAGCATCCCGCTGCTGACCCCCGAGCAGGAGCGTGAACTGGCCGAGAGTCTCTACTATGAGCAGGATCTTGAGGCGGCTCGGCAGATGGTGCTCGCCCACCTGCGTTTTGTCGTACATATTGCCCGCAGCTATTCCGGCTACGGGCTGGCCCAGGCCGACCTGATCCAGGAAGGCAACGTTGGCCTGATGAAGGCGGTCAAGCGTTTCAACCCGGAAATGGGTGTGCGCCTGGTGTCGTTTGCAGTGCACTGGATCAAGGCGGAAATCCACGAGTTCATCCTGCGCAACTGGCGCATCGTGAAGGTCGCGACCACCAAGGCCCAGCGCAAGCTGTTTTTCAACCTGCGCAGCCAGAAGAAGCGCCTGGCTTGGTTGAACAACGAGGAAGTCCATCGCGTGGCCGAGAGCCTCGGTGTGGAACCTCGTGAAGTGCGCGAAATGGAAAGTCGCCTGACCGGCCATGACATGGCTTTTGACCCGGCCGCCGAAGCGGACGACGACAGCGCTTTCCAATCGCCGGCCAACTACCTGGAAGACCACCGGTACGACCCGGCGCGTCAACTGGAGGACGCCGACTGGAGTGACAACTCCAACACCAACCTGCACGAAGCGCTGGAAGTGCTGGACGAGCGCAGCCGCGACATTCTCTACCAGCGCTGGCTGGCCGAGGAGAAAGCCACGCTGCACGACCTGGCGCAAAAGTACAACGTGTCGGCCGAGCGAATTCGCCAGCTTGAGAAGAGCGCGATGAACAAGCTCAAGGTGTCGATTGCGGCTTGA	MTTSLQPAYALVPGANLEAYVHTVNSIPLLTPEQERELAESLYYEQDLEAARQMVLAHLRFVVHIARSYSGYGLAQADLIQEGNVGLMKAVKRFNPEMGVRLVSFAVHWIKAEIHEFILRNWRIVKVATTKAQRKLFFNLRSQKKRLAWLNNEEVHRVAESLGVEPREVREMESRLTGHDMAFDPAAEADDDSAFQSPANYLEDHRYDPARQLEDADWSDNSNTNLHEALEVLDERSRDILYQRWLAEEKATLHDLAQKYNVSAERIRQLEKSAMNKLKVSIAA				NA	NA	NA	NA	NA
D1-36_04845	1023	ftsX	COG2177	Cell division protein FtsX	ATGAGTGCTACTCGCAGCCCGAAAGTGGCCGAACGCGTGGCCCCGAAGGGCACCGATCCGCAGCCGCAGAAGAAAAAGCGCGACGATGACGATGGCCCGGATTTCACCACGCTGTTGCACGCCTGGATCGAAAGCCATCGCGCCAGCCTGCTGGACAGCCTTCGGCGCCTGGGCAAGCAACCGATCGGCAGCTTCTTTACCTGCATGGTGATGGCGGTGGCCTTGAGCCTGCCCATGGGCCTGTCATTGCTGCTGAGTAATGTGGAGCGCCTGGGCGGTTCCTGGCAGCGCGCGGCGCAGATCTCCCTTTATTTGCAACTGGATGCGACGCCAGGCGAAGGCGAGGCGCTGCGTGAGCAGATCAAGACCATGCCGGGCGTGGCCGATGCCGAATACGTGGGTCGCGAGCAGGCGCTGGAAGAGTTCCAGCAGCAGTCGGGGCTGGGCGAAGCCCTCAAGGAGCTGCCGGAGAACCCGCTGCCAGGCGTTGTGCTGGTCACCCCAAATGAGGTCGACAAGCCGACCCTTGAAGCATTAAGACAAAGACTTTCCGAGCTGCCGAAGGTACAACAGGCGCAACTTGATCTAGTCTGGGTCGAGCGTCTTGCGGCGATCCTCAAGCTCGGCGACAGGTTTGTCTTCGGCCTGACGGTGCTCTTGGTTTCTGCATTACTTTTGGTGATAGGCAATACCATTCGTCTTCATATTGAAAACCGCCGCACCGAGATAGAAGTGATTAAACTCGTCGGCGGTACGGACAGTTATGTACGCAGGCCTTTCCTTTATATGGGAGCGTTGTATGGCTTCGGCGCAGGCATCCTGTCCTGGGGCGTATTGGCGTTCGGCCTGGACTGGCTGAACGATGCGGTAGTGGGACTGGCCGGTTTGTATGGCAGTGACTTCGCGCTGGCCGGAGTGCCAGTCGCTGACGGTCTGTCGCTCTTGCTTGGCGCGGTGCTGTTGGGTTATATCGGTGCATGGATTGCGGTAGCACGCCACCTACGTGAGCTTGCGCCAAAATAG	MSATRSPKVAERVAPKGTDPQPQKKKRDDDDGPDFTTLLHAWIESHRASLLDSLRRLGKQPIGSFFTCMVMAVALSLPMGLSLLLSNVERLGGSWQRAAQISLYLQLDATPGEGEALREQIKTMPGVADAEYVGREQALEEFQQQSGLGEALKELPENPLPGVVLVTPNEVDKPTLEALRQRLSELPKVQQAQLDLVWVERLAAILKLGDRFVFGLTVLLVSALLLVIGNTIRLHIENRRTEIEVIKLVGGTDSYVRRPFLYMGALYGFGAGILSWGVLAFGLDWLNDAVVGLAGLYGSDFALAGVPVADGLSLLLGAVLLGYIGAWIAVARHLRELAPK				NA	NA	NA	NA	NA
D1-36_04846	672	ftsE	COG2884	Cell division ATP-binding protein FtsE	ATGATTCGTTTCGAACAGGTCGGTAAACGCTATCCGAACGGTCACGTCGGCTTGCACGAGCTGAGCTTTCGGGTCCGTCGGGGCGAGTTTCTGTTTGTGACCGGCCACTCCGGTGCCGGTAAAAGTACCTTGCTGCGCCTGCTGCTGGCGATGGAACGGCCCACCACCGGCAAGCTGCTGCTGGCCGGCCAGGATTTGAGCACCATCAGCAACGCCCAGATCCCTTATCTGCGGCGCCAGATCGGCGTGGTATTCCAGAATCACCAACTGCTGTTCGATCGCACGGTATTCAATAACGTGGCGCTGCCTTTGCAGATCCTTGGGCTGTCCAAGGCCGAAATCAACAAACGCGTTGATTCGGCCCTGGAGCGCGTGGCTCTGTCGGACAAGACCGATCTGTACCCGGGCGACCTGTCCACCGGCCAGCAACAGCGCGTCGGCATTGCCCGCGCCATCGTCCATCGCCCGGCCTTGCTGTTGGCGGACGAACCCACCGGTAACCTCGACCCGCGACTGGCGGCGGAGATCATGGGCGTATTCGAAGACATCAACCGCTTGGGCACCAGCGTGCTGATCGCCAGCCACGACCTGGCACTGATCGCGCGTATGCGTCACCGCATGCTGACCTTGCAACGCGGTCGACTGATCGGCGACGGGGAGGCAGGCGTATGA	MIRFEQVGKRYPNGHVGLHELSFRVRRGEFLFVTGHSGAGKSTLLRLLLAMERPTTGKLLLAGQDLSTISNAQIPYLRRQIGVVFQNHQLLFDRTVFNNVALPLQILGLSKAEINKRVDSALERVALSDKTDLYPGDLSTGQQQRVGIARAIVHRPALLLADEPTGNLDPRLAAEIMGVFEDINRLGTSVLIASHDLALIARMRHRMLTLQRGRLIGDGEAGV	PGPT0020520_444	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020520-metN-K02071	NA	NA
D1-36_04847	1428	ftsY	COG0552	Signal recognition particle receptor FtsY	ATGTTTGGTTCCAACGACGACAAGAAGACCCCAGCTGCGGCTGGCGAGAAAAAAAGCCTGTTCGGATGGCTGCGCAAGAAGCCGCAGGAAACCGTGGGTGAACAGCCGCAACCGCAGCCTGAGCCCGCCGACGAGACGGTGGTCGAAGAGGCTGCGCCCATTGTCCTGCCGATCGCCGAGCCGGTGCTGCAACCGGCCGAGGCCGAAGCCGAGCCAGTGGCTGAACCGGTGGATGAGCCGGTGCTCGAGCAACCCCTGACCCCGCCTCCCGGGCAGGCCCCTTGGCTCACCTTGCCCGTGGCGGAAGAACCGGTCGCGCTGGTAGAGGACGCCCAGGCGCCCCACGTCACGCCGCCAATCCCAGCCCCGATGCAACCGGAGGAGGCGCCAGCTGCCGTGCTCGCGCCTTCGACCCCGGAGCTCGCCCCCGAGCCGGAACCTGTCGTGGTAGAGGCTTCGGCCCCGGTCGAACCGCCGCGGCCCGTTGAAGAGAGCAAGGTCGGTTTTTTTGCCCGCCTCAAGCAGGGCCTGTCCAAGACCAGCGCCAGTATTGGCGAGGGCATGGCCAGCCTGTTCCTGGGCAAGAAAGTCATCGATGACGAGCTGCTGGAAGACATCGAGACCCGCCTGCTCACCGCCGACGTAGGCGTCGAGGCCACCTCGGTGATCATCCAGAGCCTGACCCAGAAAGTCGCGCGTAAACAATTGACCGATGCCGATGCGCTGTACAAGTCCCTCCAGGGTGAACTGACCAACCTGCTCAAGCCCGTGGAGCAGCCGCTGGTGATTGCCTCGCAGAACAAGCCGTTCGTGATTCTGGTCGTTGGCGTCAACGGTGCCGGCAAGACCACCACCATCGGCAAGCTGGCGAAGAAGCTGCAGCTCGAAGGCAAGAAGGTCATGCTTGCCGCCGGCGACACCTTCCGCGCCGCCGCTGTCGAGCAACTGCAAGTGTGGGGCGAGCGCAACAAGATCCCGGTCATCGCCCAGCACACCGGTGCCGACTCCGCTTCGGTGATCTTCGACGCCGTGCAGGCCGCCAAGGCCCGTGGCATCGATGTGCTGATCGCCGACACGGCCGGTCGCCTGCACACCAAAGACAACCTGATGGAAGAGTTGAAGAAGGTCCGCCGGGTGATCGGCAAGCTCGACGCCGATGCGCCCCACGAAGTGTTGCTGGTGCTGGATGCCGGGACCGGCCAGAACGCCATCAACCAGGCCAAGCAGTTCAACCAGACCGTCGAACTGACCGGGCTGGCCCTGACCAAGCTCGACGGTACCGCCAAGGGCGGGGTGATCTTCGCCCTGGCCAAGCAGTTTGGCCTGCCAATTCGCTACATCGGCGTGGGTGAAGGCATCGATGACCTGCGCACCTTCGAAGCCGAGCCCTTTGTCCAGGCGCTGTTTGCCGAGCGGGAGCATTCATGA	MFGSNDDKKTPAAAGEKKSLFGWLRKKPQETVGEQPQPQPEPADETVVEEAAPIVLPIAEPVLQPAEAEAEPVAEPVDEPVLEQPLTPPPGQAPWLTLPVAEEPVALVEDAQAPHVTPPIPAPMQPEEAPAAVLAPSTPELAPEPEPVVVEASAPVEPPRPVEESKVGFFARLKQGLSKTSASIGEGMASLFLGKKVIDDELLEDIETRLLTADVGVEATSVIIQSLTQKVARKQLTDADALYKSLQGELTNLLKPVEQPLVIASQNKPFVILVVGVNGAGKTTTIGKLAKKLQLEGKKVMLAAGDTFRAAAVEQLQVWGERNKIPVIAQHTGADSASVIFDAVQAAKARGIDVLIADTAGRLHTKDNLMEELKKVRRVIGKLDADAPHEVLLVLDAGTGQNAINQAKQFNQTVELTGLALTKLDGTAKGGVIFALAKQFGLPIRYIGVGEGIDDLRTFEAEPFVQALFAEREHS	PGPT0025740_1167	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-SEC-SECRETION_PATHWAY	CE-SEC-SRP_CORE_COMPONENTS,PGPT0025740-ftsY-K03110	NA	NA
D1-36_04848	1356		COG0612	putative zinc protease	ATGAATGCTCTTGCCCGCCGCGCCGCAGGCCTGCTGCTCAGCACGGTTTGTCTGCCCTTTTCAGTCTTTGCTGCCGATCCACAACCTACCCACGAATTCACCCTCGACAACGGCCTCAAGGTCGTGGTGCGTGAAGACCATCGCGCCCCGGTCGTGGTTTCCCAGGTCTGGTACAAGGTCGGCTCCAGCTACGAAACGCCGGGCCAGACCGGTTTGTCCCATGCCTTGGAACACATGATGTTCAAAGGCAGCGATAAAATCGGCCCCGGCGAAGCATCGTTGATCCTGCGCGACCTGGGCGCCGAAGAAAACGCCTTCACCAGCGATGACTTCACTGCCTACTACCAAGTGCTGGCCCGGGATCGCCTGGGCGTCGCCTTCGAACTTGAAGCCGATCGCATGGCCAGCCTGCGCCTGCCGCCGGAAGAGTTCAGCCGCGAGATCGAGGTGATCAAGGAGGAGCGCCGCATGCGCACCGACGACAAGCCGATGTCGAAGGCCTTCGAGCGCTTCAAGGCCATGGCCTATCCAGCCAGCGGCTATCACACGCCGACCATCGGCTGGATGGCCGATCTGGACCGGATGACCGTCGGCGAGCTACGTCACTGGTACGAATCCTGGTACGCCCCGAACAACGCAACCCTGGTGGTGGTGGGTGACGTGACGCCGGATGAGGTCAAGAACCTGGCCCAGCGCTATTTCGGTCCGATAGCGCGGCGCGCGGTGCCCGCCGCCAAGATCCCACTGGAGCTGGCCGAACCGGGCGAGCGCAAGCTCACCCTGCATGTACAGACCCAACTGCCCAGCGTCATGCTGGCCTTCAACGTGCCCAGCATCGCCACCGCGACGGATAAGGGTTCGGTCAACGCGCTTCGCTTGATCTCGGCCTTGCTGGACGGCGGCTACAGCGGCCGGATTCCGACCCAGCTGGAGCGTGGCGAGGAACTGGTGTCGGGGGGCTCGTCGAATTATGACGCATTCACCCGTGGCGACTCGTTGTTCACTTTGTCGGCAACGCCTAACACACAGAAAAACAAAACCCTCGCCCAGGCCGAAGCAGGTTTGTGGCGCTTGCTCGAACAACTGAAAACCACGGCCCCGACCGTCGACGAACTGGAGCGCGTCCGCGCCCAGGTCATCGCCGGGTTGGTGTATGAGCGCGACTCGATCACCAGCCAGGCCACCGCCATCGGGCAATTGGAAACCGTCGGCCTGTCCTGGAAGCTGATGGACACCGAGCTTGCCGAACTGCAAAGCGTGACCCCGCAGGATATCCAGAAGGCAGCCCAGCTGTATTTCACCCGCTCGCGCTTGAGCGTTGCGCACGTCCTGCCCGAGGAGAAAGCCCATGAGTAA	MNALARRAAGLLLSTVCLPFSVFAADPQPTHEFTLDNGLKVVVREDHRAPVVVSQVWYKVGSSYETPGQTGLSHALEHMMFKGSDKIGPGEASLILRDLGAEENAFTSDDFTAYYQVLARDRLGVAFELEADRMASLRLPPEEFSREIEVIKEERRMRTDDKPMSKAFERFKAMAYPASGYHTPTIGWMADLDRMTVGELRHWYESWYAPNNATLVVVGDVTPDEVKNLAQRYFGPIARRAVPAAKIPLELAEPGERKLTLHVQTQLPSVMLAFNVPSIATATDKGSVNALRLISALLDGGYSGRIPTQLERGEELVSGGSSNYDAFTRGDSLFTLSATPNTQKNKTLAQAEAGLWRLLEQLKTTAPTVDELERVRAQVIAGLVYERDSITSQATAIGQLETVGLSWKLMDTELAELQSVTPQDIQKAAQLYFTRSRLSVAHVLPEEKAHE	PGPT0001280_4182	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-GLUCONIC_ACID-PQQ_PATHWAY,PGPT0001280-pqqL|yddC-K07263	NA	NA
D1-36_04849	1491			hypothetical protein	ATGAGTAAGCGCCAATCATCACGCCTGGTGCTGATGGGCCTGGTGTTGGTTGCCCTGGCCGGTTCCCTGGCCGTCTACCTGTCGCCATCGAAGAACACCGATGCCAGCCAGGCATTGGACAAGGCCAAGTCAGGCAACAAGTTGCAATCGCTGGCCGAACTGGATGACAAGGCACCGAGCCGCCGCCAGCTCGATGTGCAGACCTGGAAAACCGCTGACGGCGCCAAGGTCCTGTTCGTCGAGGCCCGGGAATTGCCAATGTTCGACCTGCGCCTGACCTTTGCCGCCGGCAGCAGCCAGGACGGCGACGCCCCCGGCCTGGCCCTGCTGACCAATGCCATGCTCAACGAAGGCGTGGCCGGCAAGGATGTCAGCGCCATCGCCCAAGGCTTCGAAAGCCTCGGCGCGGACTTCGGCAACGGCGCCTATCGGGACATGGCCGTGGCCTCCCTGCGCAGCCTCAGCGCGACGGACAAGCGTGAGCCGGCGCTGAAGCTGTTTGCCGAAGTCGTCGGCAAACCGACCTTCCCCGCCGACTCGTTCGCCCGAATCAAGAACCAGATGCTCGCCGGTTTCGAGTATCAGAAGCAGAACCCCGGCAAACTGGCGGGCTTGGAGTTGATGAAGCGCCTGTATGGCGATCATCCGTACGCCCACTCCAGCGACGGCACCGAACAGAGCATTCCACCGATTACCCTGGCCCAAACCCGGGCCTTCCATGCCAAGGCCTATGCCGCCGGCAACGCCGTGATCGCCCTGGTGGGGGACCTGTCCCGCGCTGACGCCGAAGCCATCGCCAACCAAGTATCAGCCGCGCTGCCCAAGGGCCCTGCGCTGGCCAAGACCCCGCCACCGGTGGAGCCGAAAGCGAGCGTCAACCATATCGAGTTCCCGTCCAAGCAGACCAACCTTATGCTCGCGCAGTTGGGCATCGACCGGGACGATCCGGATTATGCCGCCGTGTCCCTGGGCAACCAGATCCTGGGCGGCGGGGGTTTCGGTACACGACTGATGACCGAGGTCCGGGAAAAACGCGGCCTGACCTATGGCGTGTACTCCGGCTTCACGGCAATGCAGGCTCGCGGTCCGTTCATGATCAATCTGCAAACCCGCGCGGAAATGAGCGAGGGCACGCTCAAGCTGGTGCAGGACGTGTTTGCCGATTACCTCAACAATGGCCCGACCCAGAAAGAACTCGACGACGCCAAGCGCGAGTTGGCCGGGAGCTTCCCGCTGTCCACCGCCAGCAATGCCGACATCGTTGGCCAGCTCGGCGCGATGGGCTTCTATGATTTGCCGCTGAGCTACCTGGAAGATTTCATGCGCCAGTCCCAGGCGCTGACGGTCGAGCAGGTCAAGGCTGCGTTGAATAAACACCTGAGCACCGACAAGATGGTCATCGTCACCGCTGGCCCGACCGTGCCGCAAAAGCCATTGCCGGCCCCCACTGACAAACCTGCCGAGCAGCCGCTCGGGGTTCCGGAGCACTAA	MSKRQSSRLVLMGLVLVALAGSLAVYLSPSKNTDASQALDKAKSGNKLQSLAELDDKAPSRRQLDVQTWKTADGAKVLFVEARELPMFDLRLTFAAGSSQDGDAPGLALLTNAMLNEGVAGKDVSAIAQGFESLGADFGNGAYRDMAVASLRSLSATDKREPALKLFAEVVGKPTFPADSFARIKNQMLAGFEYQKQNPGKLAGLELMKRLYGDHPYAHSSDGTEQSIPPITLAQTRAFHAKAYAAGNAVIALVGDLSRADAEAIANQVSAALPKGPALAKTPPPVEPKASVNHIEFPSKQTNLMLAQLGIDRDDPDYAAVSLGNQILGGGGFGTRLMTEVREKRGLTYGVYSGFTAMQARGPFMINLQTRAEMSEGTLKLVQDVFADYLNNGPTQKELDDAKRELAGSFPLSTASNADIVGQLGAMGFYDLPLSYLEDFMRQSQALTVEQVKAALNKHLSTDKMVIVTAGPTVPQKPLPAPTDKPAEQPLGVPEH	PGPT0001280_2752	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-GLUCONIC_ACID-PQQ_PATHWAY,PGPT0001280-pqqL|yddC-K07263	NA	NA
D1-36_04850	612	rsmD	COG0742	Ribosomal RNA small subunit methyltransferase D	ATGGCCCGCCCATCCAATTCCAGCAAGAAACCCGTGCACAACGGCGTGAACCAGTTGCGCATCATTGGCGGCGAATGGCGCAGCCGGCGGCTGAGTTTTCCGGATGCTCCAGGATTGCGACCGACACCGGACCGGGTTCGTGAAACCCTGTTCAACTGGCTAGCGCCTTACGTGGCGGGCGCCAAGGTGCTCGACCCGTTTGCCGGCAGCGGCGCACTGTTTCTCGAGGCGTTGTCCCGTGGTGCCGCCATGGGCCAGGCGCTGGACGCCAGCAGCCTGGCCGTGTCCAGCCTGAAGGAACACCTCGGCACCCTACGCTGCACCGTCGGCCAGGTGCAGACAGCCGATGCGCTGCGTTACCTTGACAGCCAGCCGGCAACTCCATTCGACCTCGTCTTCCTCGACCCGCCATTCAACCAGAATCTGCTGCCGACGGTATGCGCCTTGCTCGAGGAACGTCAGTGGCTGGCCGAGGATGCCTGGGTCTACACTGAAAGCGAGACCGCTCCGTCCACCCTGGGCTTGCCGAGCAATTGGCGCTTGCATCGCGAGCAGAAATCCGGACAGGTGCATTACGCGTTGTGGCAGCGTTTACCAAAGGACATTGGCTGA	MARPSNSSKKPVHNGVNQLRIIGGEWRSRRLSFPDAPGLRPTPDRVRETLFNWLAPYVAGAKVLDPFAGSGALFLEALSRGAAMGQALDASSLAVSSLKEHLGTLRCTVGQVQTADALRYLDSQPATPFDLVFLDPPFNQNLLPTVCALLEERQWLAEDAWVYTESETAPSTLGLPSNWRLHREQKSGQVHYALWQRLPKDIG				NA	NA	NA	NA	NA
D1-36_04851	999			hypothetical protein	ATGTCCGCCGCATCCGAACCTTTCGTCCCTGCCCCTGGGCTTGGCAACCCGCACCTGCAAACATTGTGGGGGCCGTTATGGCGGAAGTCCTGCCCCATCGATCGCGAACGGGAGCGGCTGTGGCTGGAAGACGGCGACTTCCTCGACCTCGACTGGTATGGACCCCATAGCGCCGAGGCGCCATTGGTACTGGTACTTCACGGGCTGACCGGTTCTTCCAACTCGCCCTACGTGACCGGGCTGCAACAAGCACTCAACGACCAAGGCTGGGCCAGCGTCGCGTTGAACTGGCGCGGGTGTTCGGGGGAGCCGAACCTGCTGCCCCGCAGCTACCATTCAGGAGTGAGCGAAGACCTGGCCGCCGCCCTGACGCATCTGCGCACCCGGCGACCTCTGGCGCCATTGTTTGCCGTGGGCTATTCACTGGGCGGCAACGTCTTGCTCAAGCATCTGGGCGAGACCGGCAGCGACAGCCAACTGCTGGGCGCGGTGGCCGTTTCGGTGCCGTTTCGCCTGGACCAGTGCGCCGATCGTATCGGGCAGGGCTTCTCCAAATTCTACCAAGCGCATTTCATGAGGGAGATGGTCGCCTACATGCGCAACAAACAGCGCCAATTCCAGCACGACGGACGCCAGGAAGGGCTTGCGGCCCTGGCCGCGCTGGGCTCGCTGGACAATATGCGCACGTTTTGGGATTTCGATGGGCGCGTCACCGCGCCCCTACACGGATTCTCGGATGCGGCGGACTATTATCGTCGCGCCTCCAGCCGCTATTTCATGGCGGAGATCAAAACGCCGACCTTGCTTATCCAGGCCGCCGACGATCCGTTCGTATTTCCCCACAGCCTGCCCGCCCCTGAAGAGTTGTCAGCGTCGACCCGGCTTGAATTGCATGCCCGAGGCGGACATGTCGGATTCGTCGACGGGACGTTACGGCGTCCCGGCTACTATCTGGAACGACGCATCCCCAAATGGCTCGCCACCCTGGGCCATGGCTGA	MSAASEPFVPAPGLGNPHLQTLWGPLWRKSCPIDRERERLWLEDGDFLDLDWYGPHSAEAPLVLVLHGLTGSSNSPYVTGLQQALNDQGWASVALNWRGCSGEPNLLPRSYHSGVSEDLAAALTHLRTRRPLAPLFAVGYSLGGNVLLKHLGETGSDSQLLGAVAVSVPFRLDQCADRIGQGFSKFYQAHFMREMVAYMRNKQRQFQHDGRQEGLAALAALGSLDNMRTFWDFDGRVTAPLHGFSDAADYYRRASSRYFMAEIKTPTLLIQAADDPFVFPHSLPAPEELSASTRLELHARGGHVGFVDGTLRRPGYYLERRIPKWLATLGHG				NA	NA	NA	NA	NA
D1-36_04852	855	sseB	COG2897	Putative thiosulfate sulfurtransferase SseB	ATGCCCATCGCGCAACTCATCAGCCCCCAGGCCCTAGAACAGAGGCGATCACAGCCTGGGCTGGTGATCCTTGATTGTCGTTTTGCCCTGGAGGACCCGGACTACGGCCAGCGCAGTTATGCCGAAGGCCATATCGCCGGTGCGTCTCACGCGGACCTTGAGCGCGACCTGAGCGGTCCGGTGGTCAAAGGCGTGACCGGGCGCCATCCTTTGCCCGCACCTGAGGCCTTGGTTACGCGTCTGCAGGCCTGGGGCATTAACAATGAGAGTGACGTCGTGCTGTACGACGATGGTCCCGGTACCTACGCTGCCCGGGCCTGGTGGCTGCTGGCCTGGCTGGGCAAGCGCGAGGGCGTCTACATTCTCGACGGCGGGCTCAAGGCCTGGCACACGGTCGGTTTGCCCCTGAGTCTCGATCCGCCGGCCATCCAGGCCGGCTCCTTCAGTGGTTCGCCGGACGCGAATCTGCTGGTCAGTGCCGACATATTGCAGCAACGCCTCGGCCAGCCGGACATGACGTTGCTGGATGCGCGGGCGTTGCCGCGATTCAAAGGTGAGGTCGAGCCGATCGATCCGGTGGCCGGGCATATCCCGGGCGCGCAATGCGCGGCCTTCACCGATAACCTTGGCGCCGATGGGCGGTTCCTGCCGACCGACCAGCTCAAGCAGCGCTTTGCCGCAAAATTCGGCGATCGCTCGCCGAGCGGCCTGGTGGCCTATTGCGGCTCGGGCGTGACAGCATGCCATAACCTGTTCGCCTTGTGCCTGGCAGGGTATCCGTTGGGCAAGCTGTACGCCGGCTCGTGGAGCGAGTGGATCAATGATCCGCGGCGGGGCGTGGCGAAGGGCGAATAA	MPIAQLISPQALEQRRSQPGLVILDCRFALEDPDYGQRSYAEGHIAGASHADLERDLSGPVVKGVTGRHPLPAPEALVTRLQAWGINNESDVVLYDDGPGTYAARAWWLLAWLGKREGVYILDGGLKAWHTVGLPLSLDPPAIQAGSFSGSPDANLLVSADILQQRLGQPDMTLLDARALPRFKGEVEPIDPVAGHIPGAQCAAFTDNLGADGRFLPTDQLKQRFAAKFGDRSPSGLVAYCGSGVTACHNLFALCLAGYPLGKLYAGSWSEWINDPRRGVAKGE	PGPT0002045_3095	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
D1-36_04853	672			hypothetical protein	ATGGCCCCACGAATGAAAACCAGCGAGCGCATCGTGCAGAACAGCCTCGAGTTGTTCAACCGCCAGGGCGAGCGCAGCGTCAGCACCAACCATATTGCCGCTCACATGGAGATGTCCCCTGGCAACCTCTACTACCACTTCCCCAACAAGCAGGCGATCATCGCCGTGCTGTTCAGTGAGTATGAAAACCTGGTGGACAGCTTCTTGCGCCCGCCCCAAGGCCGCCTGGCCACGGTGGACGACAAGCGCTTTTATCTGCAAGAGCTGCTGTCGGCGATGTGGCGTTACCGGTTCCTGCATCGCGACCTGGAACACCTGCTCGACAGCGACCCGGAACTTGCGGCGCGTTATCGGCGGTTTTCCCAGCGCTGCCTGATCCATGGCACCGCCATCTACGAGGGCTTCGTCGAAGCCGGTATCCTGAAGATGGACCGTGTGCAGATCGAATCCCTGACCCTCAACGCCTGGATCATCCTCACGTCCTGGGTACGGTTCCTGTGCACGACCCGTGAAAACTCCAGCCACTTGAGCGAACAAGCCATCAAGCGTGGCGTATACCAGGTCCTGGTGCTCGAGGCGGGTTTCGTGACTGACCAGGCCCGTGAAGCGGTGGATGCGTTGTTCAAAGAATTTTATGTCCCCCTGGCCCAGACCCTGGAGGAAGGGCAATAA	MAPRMKTSERIVQNSLELFNRQGERSVSTNHIAAHMEMSPGNLYYHFPNKQAIIAVLFSEYENLVDSFLRPPQGRLATVDDKRFYLQELLSAMWRYRFLHRDLEHLLDSDPELAARYRRFSQRCLIHGTAIYEGFVEAGILKMDRVQIESLTLNAWIILTSWVRFLCTTRENSSHLSEQAIKRGVYQVLVLEAGFVTDQAREAVDALFKEFYVPLAQTLEEGQ				NA	NA	NA	NA	NA
D1-36_04854	1431	calB		Coniferyl aldehyde dehydrogenase	ATGCCTGCTGATGTCGCTTACCTGCACGAGTCTCAACAGCAGCTGGACGAGCTCCAAGCGCTCTTCATCGCCCAGCGCCAAGCCTACGCGGCTCACCCGATGCCACCGGCGGCGCAGCGACTGCAATGGCTCAAGGCATTGGGCGAACTGTTGAGCAATGAACGGCAGGCCTTGATCGACGCCATCAGCGAGGATTTCAGCCACCGCAGCGCGGACGAAACATTGTTGGCCGAGCTGATGCCGAGCCTGCACGGTATCCATTACGCCAGGCGACACCTCAAAGGCTGGATGAAGCCCTCTCGACGCAAGGTTGGCCTGGCCTTCCAGCCGGCATCGGCCAAAGTGGTCTATCAGCCGCTGGGGGTGGTCGGGGTCATCGTGCCCTGGAACTATCCGCTCTTCCTGGCCATAGGGCCTTTGGTCGGAGCCTTGTCGGCGGGCAACCGGGTGATGCTAAAACTCAGCGAATCGACCCCTGCCACCGGCTTGTTGCTCAAGCAACTGCTGGCCCGGATATTTCCCCAGGACCTGGTGTCCGTCGTGCTTGGCGAAGCAGACGTAGGCATCGCGTTCTCCAGGCTGCCGTTCGATCACCTGCTGTTTACCGGCGCCACCAGCATCGGCAAGCACGTCATGCGTGCGGCCGCGGAAAACCTGACGCCCATCACCCTGGAACTGGGCGGAAAATCTCCGGCCATCGTTTCCGATGACGTCCCGCTTGAACACGCTGCCGAGCGCATCGCCTTCGGCAAGACCCTCAACGCCGGGCAAACCTGTGTCGCACCGGATTACGTGCTGGTGCCGCAAAATCGTGTCGGGGCGTTCGTCGAGGCGTATCGCGAGGCCGTACGCGGGTTCTATCCGACGTTGATTGACAACCCGGACTACACCGCCGTAATTAACGAACGACAACTGGCACGGCTTAACGGCTACATCGGCGATGCAACAAGCAAAGGGGCGTTGCTGATCGAGCTGTTCGAGCAAAGCCAGGGACAACGCATGGCCCACAGCCTTTTGCTCAATGTCACGGACGACATGACGGTCATGCAGGACGAGATTTTCGGGCCGCTGCTCCCCATCGTCCCTTATGAGAACCTCGACCAGGCATTTGCCTACATCAATCAGCGACCTCGCCCCTTGGCGCTCTACTATTTCGGCTACAACAAGACCGAACAGAATCGCGTACTCGACGAAACCCATTCCGGCGGCGTCTGCCTCAACGACACGCTGTTGCACGTGGCCCAGGACGATATGCCGTTTGGCGGTATTGGCGCCTCGGGGATGGGGCACTACCACGGACATGAGGGGTTCCTGACCTTCAGCAAGGCCAAGGGCGTGCTGGTCAAGCAGCGGTTCAACGCGGCGAAACTGATCTACCCGCCCTATGGAAAGCCGTTGCAGAAACTGATCCAGAAGCTGTTTATCCGCTAA	MPADVAYLHESQQQLDELQALFIAQRQAYAAHPMPPAAQRLQWLKALGELLSNERQALIDAISEDFSHRSADETLLAELMPSLHGIHYARRHLKGWMKPSRRKVGLAFQPASAKVVYQPLGVVGVIVPWNYPLFLAIGPLVGALSAGNRVMLKLSESTPATGLLLKQLLARIFPQDLVSVVLGEADVGIAFSRLPFDHLLFTGATSIGKHVMRAAAENLTPITLELGGKSPAIVSDDVPLEHAAERIAFGKTLNAGQTCVAPDYVLVPQNRVGAFVEAYREAVRGFYPTLIDNPDYTAVINERQLARLNGYIGDATSKGALLIELFEQSQGQRMAHSLLLNVTDDMTVMQDEIFGPLLPIVPYENLDQAFAYINQRPRPLALYYFGYNKTEQNRVLDETHSGGVCLNDTLLHVAQDDMPFGGIGASGMGHYHGHEGFLTFSKAKGVLVKQRFNAAKLIYPPYGKPLQKLIQKLFIR	PGPT0019970_576	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATION	PLANT_LIGNIN_DEGRADATION|LIGNINASES	PLANT_LIGNIN_DEGRADATION-DEHYDROGENASE_ACTIVITY,PGPT0019970-calB-K00154	NA	NA
D1-36_04855	546			hypothetical protein	ATGAACCCAAGCCTGACCGATAAGCCCGTCCTGTCACGACGCGGTTTACTGCAACTGAGCTTCGGCGCCAGCGCCTTCCTGGCCACGGTGGGATTGGGCGCCAGCCTGAGCGGCTGCTCCTCCAGCCAACCGGCCCTCGGGCTGGCGGCATTGCGCGACAGCGACTTGCCGTTCTTGCGTGCCGTGATAGCCGTCATGCTCGACGGGGCCACAACAGCTGGAACGCTCCCCGCCGCCACCGATGCCACGCTGCAAAGCCTGGATCGAGGGCTGGCGCACCTGTCGCCCGCCATGCTCAAGCTAACGCACCAGCTATTCGACGTGCTGACGCTGGGGATTACCCGCGGGCCGCTGACCGGGATCTGGGGCGCGTGGGAAAACGCCAGCGCCGATGACATTCGACAGTTTCTGACGCGGTGGGAAAACAGCTCGCTGAGCTTGTTGCGCCAAGGCCACGGCTCGTTGCTGCAAATGGTGATGATGGCGTGGTACAGCCGGCCCGAGTCCTGGGCCCATTGCGGGTACCCGGGACCACCGATGGTTTGA	MNPSLTDKPVLSRRGLLQLSFGASAFLATVGLGASLSGCSSSQPALGLAALRDSDLPFLRAVIAVMLDGATTAGTLPAATDATLQSLDRGLAHLSPAMLKLTHQLFDVLTLGITRGPLTGIWGAWENASADDIRQFLTRWENSSLSLLRQGHGSLLQMVMMAWYSRPESWAHCGYPGPPMV				NA	NA	NA	NA	NA
D1-36_04856	1596		COG2303	putative GMC-type oxidoreductase	ATGCCCGTACCCGACCCGTTCCGTGAAGGCCTCGCCCGTGGCTGGACCACCTACAACGGCGCGCAACTGAGCCAGGACCTCACGCTGGAAGCGGACGTGGCGATCATCGGCAGCGGCGCCGGCGGTGGCACCACGGCGGAAATCCTCAGCGCCGCCGGTTACAAGGTATTGCTCATCGAAGAAGGGCCGCTGAAGACCAGCCACGACTTCACGCTGCGGGAGGACCAGGCCTATACCAGCCTGTACCAGGAAGGCCTCGGACGCATGAGCAAGGACGGCGCCATCACCATCCTCCAGGGACGTGCGGTGGGCGGCACGACGTTGATCAATTGGACTTCAAGCTTGCGCACCCCAACGCAAACCCTTGAGCACTGGGCGGCCGAACACAACGTCAAAGGCCACGGCCCCGCCGACATGGCCCCTTGGTTTGAACGGATGGAACAACGCCTCGGCGTGGCACCCTGGATGATTCCACCCAACGCCAACAACGACGTGATCCGCAAGGGCTGTGACCAATTGGGCTACGCCTGGCATGTCATCCCACGCAACGTGCGAGGTTGCTGGAACCTGGGATACTGCGGCATGGGCTGCCCGACCAACGCCAAGCAATCGATGCTCGTCACCACCATACCCGCCACGCTGGACAAGGGCGGCGCGCTGCTTTACCTCGCGAGGGCTGAGCGTCTGGTCATCAAAAACGATGCGGTCGTCGGCTTGGATTGCCTGGCCATGGACGAGCATTGCGTGGCACCGACCGGGCGGCGCATCACGATCAAGGCGCGGCATTATGTATTGGCCGGCGGCGGTATCAACAGCCCTGCCCTGCTGTTGCGCTCCGAGGCACCGGACCCGCACGGACGGCTGGGCCAGCGCACGTTCCTGCACCTCGTGAACATGTCGGCCGGCCAGTTCGATGAAGTGATCAACCCCTTCTACGGCGCTCCGCAGTCGATTTATTCGGATCATTTCCAATGGCAGGACGGCGTCAGCGGCAGGATGTCGTACAAGCTGGAAGTGCCGCCATTACATCCCGCCCTTGCCGCCACGCTGCTGGGTGGCTTCGGCGGCGAAAATGCGGCGCACATGGCTCACCTGCCCCATACCCATGCCATGCTGGCGTTGCTGCGTGACGGCTTCCATCCGGATAGCCCCGGCGGCAGCGTCGAATTGCGCAGCGACGGCACGCCAGTGCTCGACTATCAGCTGTCGCCCTACGCCTGGGATGGCCTGCGCCGGGCATTTCACAGCATGGCCGAAATCCAGTTCGCCGGAGGCGCCCGGGCCGTGATGCCCCTGCACAGCGATGCCCATTATGTGAAAACCCTGGCGCAGGCCCGCGAAATGATCGACGGGCTTGATATGGTCCTGTACCGCACGCGCCTGGGCAGTGCCCATGTCATGGGCGGCTGCGCCATGGGAGAAGATCCGAAGGCTGCCGTGACGGACAGCCTCGGCCGACATCATCAATTGGGCAATCTCTCCATTCACGACGGCTCGCTGTTCCCCACCAGCATCGGCGCCAACCCGCAATTGTCGGTGTATGGATTGACGGCACAACTGGCGACATCCCTGGTCGAACGTCTGGAAAAACCTTGA	MPVPDPFREGLARGWTTYNGAQLSQDLTLEADVAIIGSGAGGGTTAEILSAAGYKVLLIEEGPLKTSHDFTLREDQAYTSLYQEGLGRMSKDGAITILQGRAVGGTTLINWTSSLRTPTQTLEHWAAEHNVKGHGPADMAPWFERMEQRLGVAPWMIPPNANNDVIRKGCDQLGYAWHVIPRNVRGCWNLGYCGMGCPTNAKQSMLVTTIPATLDKGGALLYLARAERLVIKNDAVVGLDCLAMDEHCVAPTGRRITIKARHYVLAGGGINSPALLLRSEAPDPHGRLGQRTFLHLVNMSAGQFDEVINPFYGAPQSIYSDHFQWQDGVSGRMSYKLEVPPLHPALAATLLGGFGGENAAHMAHLPHTHAMLALLRDGFHPDSPGGSVELRSDGTPVLDYQLSPYAWDGLRRAFHSMAEIQFAGGARAVMPLHSDAHYVKTLAQAREMIDGLDMVLYRTRLGSAHVMGGCAMGEDPKAAVTDSLGRHHQLGNLSIHDGSLFPTSIGANPQLSVYGLTAQLATSLVERLEKP	PGPT0013615_4094	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_OSMOTIC_STRESS	OSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013615-betA|CHDH-K00108	NA	NA
D1-36_04857	480	coaD	COG0669	Phosphopantetheine adenylyltransferase	ATGAACCGAGTGTTGTACCCAGGTACCTTCGACCCTATTACCAAGGGCCATGGCGATCTGGTCGAACGCGCCTCGCGCCTGTTCGACCATGTGATCATCGCCGTCGCCGCCAGCCCGAAGAAAAACCCGCTGTTCCCGCTGGAACAACGAGTGGAGCTGGCCCGCGAGGTCACCAAGCACCTGCCCAACGTGGAAGTGGTCGGTTTCTCGACCCTGCTCGCGCATTTTGCCAAGGAAAAGAACGCCAACGTGTTCCTTCGTGGCCTGCGAGCGGTCTCGGATTTCGAGTACGAGTTCCAATTGGCGAACATGAATCGCCAGCTGGCGCCGGACGTCGAGAGTCTTTTCCTGACGCCGTCGGAACGCTATTCCTTCATTTCTTCGACGCTGGTGCGAGAAATCGCGGCCCTGGGCGGCGATATCACCAAGTTCGTCCACCCGGCGGTGGCCGACGCGCTGACCCTGCGCTTCAAGAAATAA	MNRVLYPGTFDPITKGHGDLVERASRLFDHVIIAVAASPKKNPLFPLEQRVELAREVTKHLPNVEVVGFSTLLAHFAKEKNANVFLRGLRAVSDFEYEFQLANMNRQLAPDVESLFLTPSERYSFISSTLVREIAALGGDITKFVHPAVADALTLRFKK	PGPT0008825_3471	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
D1-36_04858	252	fdx_2	COG1145	Ferredoxin	ATGTCCCTTATCATCACCGACGACTGCATCAACTGCGACGTCTGCGAACCCGAGTGCCCGAACGAGGCCATTTCCCAAGGCGAAGAGATCTACGTCATCGACCCGAACCTGTGCACCCAGTGCGTCGGCCATTACGACGAACCCCAGTGCCAGCAAGTCTGCCCGGTGGATTGCATCCCGCTGGACGAGGCTCATCCGGAGACGGAAGAACAGCTGATGGCGAAATATCGCAGGATTACTGGCAAGGCTTGA	MSLIITDDCINCDVCEPECPNEAISQGEEIYVIDPNLCTQCVGHYDEPQCQQVCPVDCIPLDEAHPETEEQLMAKYRRITGKA	PGPT0003976_164	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_RESISTANCE-BACTERIOFERRITIN-ASSOCIATED_FERREDOXIN,PGPT0003976-yfhL-NA	NA	NA
D1-36_04859	321			hypothetical protein	ATGAGTCTCATTCGAACTGTCGTTCTGGCGCTCTCGCTGAGTGTCGGTTTGCCTGTATTCGCAAACACCGAAAGCGGTGATCCGCGCTACACCATCCAGAACCCACCGGCCTACGCCATGATCGGCGACTTGCTGATCGCGCGACCGCTGCTGCTCGCTGCCACTGTGATCGGCGCCGGCGCGTTTGTCGTGTCGTTACCCTTTACCGCGCTGGGCGGCGGCGTGGGCGATGCGGGCAAGGCGTTGGTGGTGGACCCGGCGAAGGCCACATTCGTGCGATGCCTGGGGTGTATCGGTGAGGGGTTCGAGCGGCAGGAGTGA	MSLIRTVVLALSLSVGLPVFANTESGDPRYTIQNPPAYAMIGDLLIARPLLLAATVIGAGAFVVSLPFTALGGGVGDAGKALVVDPAKATFVRCLGCIGEGFERQE				NA	NA	NA	NA	NA
D1-36_04860	813	mutM	COG0266	Formamidopyrimidine-DNA glycosylase	ATGCCAGAACTGCCGGAAGTCGAAACCACTCGCCGCGGAATCGCGCCACATCTCGAGGGGCAGCGGGTCAGCCGCGTGGTGGTGCGCGATCACCGCTTGCGCTGGCCGATTCCTGAAGACCTCGATGTGCGCCTCTCGGGGCAGCGCATCGTTCAAGTGGAACGGCGGGCCAAGTATTTGCTGATCAACGCCGAAGTCGGCACGTTGATCAGTCATCTGGGCATGTCCGGCAATTTGCGGCTGGTTGAAACCGGCATGCCCGCCGCGAGGCATGAGCATGTCGATATCGAACTGGAGTCGGGCCTGGCTCTGCGCTACACCGACCCTCGTCGCTTCGGCGCGATGCTCTGGAGTCTTGATCCGCTCAACCACGAACTCCTGATCCGCCTTGGGCCTGAGCCGCTGACCGATCTGTTCGACGGCGAACGGCTTTTCCAGCTTTCCCGCGGCCGCTCGATGGCGGTCAAGCCGTTCATTATGGATAACGCGATCGTCGTGGGCGTGGGCAATATTTATGCGACGGAAGCGCTGTTCGCCGCCGGAATCGACCCGCGCCGCGAAGCGGGGGGCATTTCCCGGGCGCGCTATTTGAAACTGGCGATCGAGATCAAACGCATCCTCGCCCATGCCATCGAGCGCGGCGGGACCACGCTGCGGGATTTCATTGGCGGCGACGGCCAGCCTGGGTATTTCCAGCAGGAATTGTTCGTGTACGGACGAGGCGGGCAGACGTGCAAGATGTGCGGCACGGGGCTGCGGGAGATCCGCCTGGGGCAGCGAGCGAGTGTCTGGTGTCCACGCTGCCAGAGTTGA	MPELPEVETTRRGIAPHLEGQRVSRVVVRDHRLRWPIPEDLDVRLSGQRIVQVERRAKYLLINAEVGTLISHLGMSGNLRLVETGMPAARHEHVDIELESGLALRYTDPRRFGAMLWSLDPLNHELLIRLGPEPLTDLFDGERLFQLSRGRSMAVKPFIMDNAIVVGVGNIYATEALFAAGIDPRREAGGISRARYLKLAIEIKRILAHAIERGGTTLRDFIGGDGQPGYFQQELFVYGRGGQTCKMCGTGLREIRLGQRASVWCPRCQS	PGPT0021790_1	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_LIPID_METABOLISM	PLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021790-ECHS1-K07511	NA	NA
D1-36_04861	870			hypothetical protein	ATGTCCAAAGAGCTTTCCACCGAACAGATCCAACAGTCCCTGCAAGGGATCAGCGTCCCGCCGCAGCCGCAAATCATGGTGGATCTGCAGATGGAGCAGTACATGCCCGATCCGGACCTGGAGACCATCGCCAAGCTGATTTCCCAGGATCCGGGCCTCTCCGGGGCCTTGCTCAAGATCGTCAATTCGCCGTATTACGGCTTGAGCAACAAGATCACCTCGATCCAGCGCGCGGTGAACCTGCTGGGCAGCCGTTCGATCATTAACCTGATCAATGCCCAATCGATCAAGGGAGAGTTGCACGACGACACCATCGTGACCTTGAATCGTTTCTGGGACACCGCCCAGGACGTGGCGATGACCTGCCTGACCCTGGCCAAGCGCCTCGGTATGCAGAATGGTGACGAAGCCTACGCCCTCGGGCTGTTCCACGACTGTGGCGTGCCGCTGATGCTCAAGCAATTCCCAACCTACATGAGCGTGCTGGAGGAGGCCTACGCCAACGCCAGTGCCGAATGCCGGGTGGTGGACACCGAAAACCGTGTGTTCAATACCAACCATGCCGTGGTCGGTTACTACACGTCCAAGTCCTGGCGCCTGCCGGACCATGTCAGCCAGGCCATCGCCAATCACCACAACGCCCTGGCGATCTTCAGCGACGAAAATGCGCGCAATAACTGCCCGCTGAAAAACCTGCTGGCGATCCTGAAGATGTCGGAAAACATCTGCTCGTCCCACCGCGTGCTGGGTAACCAGGCCGACGATCACGAGTGGGAATGCGTCGGACCGCTGGTGCTCGACTATATCGGGTTGTCGGAATATGACTTCCAGACCCAGAAACAGGAAATACGCGACCTGGCCAGTCGTTGA	MSKELSTEQIQQSLQGISVPPQPQIMVDLQMEQYMPDPDLETIAKLISQDPGLSGALLKIVNSPYYGLSNKITSIQRAVNLLGSRSIINLINAQSIKGELHDDTIVTLNRFWDTAQDVAMTCLTLAKRLGMQNGDEAYALGLFHDCGVPLMLKQFPTYMSVLEEAYANASAECRVVDTENRVFNTNHAVVGYYTSKSWRLPDHVSQAIANHHNALAIFSDENARNNCPLKNLLAILKMSENICSSHRVLGNQADDHEWECVGPLVLDYIGLSEYDFQTQKQEIRDLASR				NA	NA	NA	NA	NA
D1-36_04862	540	yraA	COG0693	Putative cysteine protease YraA	ATGCCCGGCTCCCTGAATGACAAACGCGTGGCCATCCTGGTGACAAATGGTTTTGAACAGGCCGAACTGACCGGTCCGAAGCAGGCGCTGGAGCAGGCCGGGGCCAAGGTGGAAATCGTTTCGGCCAGCGAAGGCCAGGTCAAAGGGTGGAACCATGACCAGCCGGCCGACGATTTCCAGGTCGACCTGACGTTCAAGGCCGCCAATGTCGAGCAATACGATGCCGTGGTGCTGCCCGGTGGGGTACAGAACTCCGACACGATCCGTATCGACCCCGACGCCCAGAACCTGGTCAAGGGCTTCGAGGCGGCCGGCAAGCCCATCGCAGTGATTTGCCATGGCGGCTGGTTGCTGGTGTCGAGCGGGCTGGTCAAAGGCAAGACCATGACCAGCTACAAGACCCTCAAGGATGATTTGACCAATGCCGGCGCGAACTGGGTCGATCAGGAAGTGGTCAAGGATGGCAAACTGATCAGCAGCCGCCAGCCTGATGACATTCCTGCTTTCAACCGCGAGCTGATCAGCGCGCTGTCCGCCTGA	MPGSLNDKRVAILVTNGFEQAELTGPKQALEQAGAKVEIVSASEGQVKGWNHDQPADDFQVDLTFKAANVEQYDAVVLPGGVQNSDTIRIDPDAQNLVKGFEAAGKPIAVICHGGWLLVSSGLVKGKTMTSYKTLKDDLTNAGANWVDQEVVKDGKLISSRQPDDIPAFNRELISALSA	PGPT0015010_2593	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
D1-36_04863	1197	rlmI_2	COG1092	Ribosomal RNA large subunit methyltransferase I	ATGTCCCTGCCTAGCCTGCGCCTCAAAGCCAACGCCGACCGTCGCCTGCGCGCCGGCCATTTGTGGGTCTACAGTAACGAAATCGACGTAGCCGCCACCCCGCTGCACGGTTTCAAGGCTGGCGACCAGGCCATCCTGGAGGCTGCGGGCGGCAAGCCGCTGGGCATCGTCGCGATGAGCCCCAACAACCTGATCTGCGCCCGATTGCTGTCCCGTGACGTGAAGCTGCCCCTGGACAAATCCCTGCTGGTGCATCGCCTCAACGTGGCGTTGTCCCTGCGCGAGCGCCTGTTCGACAAGCCGTTCTATCGCTTGGTCTATGGTGATTCCGATTTGCTGCCGGGGCTGGTGGTCGACCGTTTCGGCGACATCCTGGTGGTCCAGATCGCTTCCGCCACTATGGAAGCCCATAAAGACGACGTGATCGCCGCCCTGACCCAGGTCCTCAAGCCAAGCGGCATCCTGTTCAAGAACGACTCCGCGGCCCGTGACGCCGAAGGCCTCGAACGCTACGTCGAGACCGTGTTCGGCCTGGTACCGGAATGGGTCGCCCTGGAAGAGAACGGCGTGAAGTTCGAAGCCCCGGTGAGGGAAGGCCAGAAGACCGGCTGGTTCTATGACCATCGCATGAACCGCGCGCGCCTGGCGCCGTATGCCAAGGGCAAGCGCGTGCTGGACCTGTTCAGCTACATTGGCGGCTGGGGCGTGCAAGCCGCCGCGTTCGGGGCCAGCGAAGTCTTCTGCGTCGACGCATCGGCATTCGCCCTTGACGGCGTGGAGCGCAACGCTGCCCTGAACGGCTTCGCCGAACGGCTGACCTGCATCGAAGGCGATGTATTCGAAGCCTTGAAGGAGCTCAAGGCCGGCGAGGAGCGTTTCGACGTCATCGTGGCCGACCCGCCCGCCTTCATCAAGCGCAAGAAGGATCTGAAGAACGGCGAAGGCGCCTACCGACGCCTCAACGAGCAAGCCATGCGCCTGCTCAGCAAGGACGGCATCCTGGTCAGCGCTTCGTGCTCGATGCACTTGCCCGAGGACGACCTGCAAAACATCCTGCTGACCAGCGCCCGTCACCTGGACCGCAACATCCAATTGCTCGAACGCGGCGGCCAAGGCCCAGACCATCCGGTGCATCCGGCAATCGCCGAAACGCGCTACATCAAGAGCATTACCTGCCGTCTGCTGCCCAACAGCTAA	MSLPSLRLKANADRRLRAGHLWVYSNEIDVAATPLHGFKAGDQAILEAAGGKPLGIVAMSPNNLICARLLSRDVKLPLDKSLLVHRLNVALSLRERLFDKPFYRLVYGDSDLLPGLVVDRFGDILVVQIASATMEAHKDDVIAALTQVLKPSGILFKNDSAARDAEGLERYVETVFGLVPEWVALEENGVKFEAPVREGQKTGWFYDHRMNRARLAPYAKGKRVLDLFSYIGGWGVQAAAFGASEVFCVDASAFALDGVERNAALNGFAERLTCIEGDVFEALKELKAGEERFDVIVADPPAFIKRKKDLKNGEGAYRRLNEQAMRLLSKDGILVSASCSMHLPEDDLQNILLTSARHLDRNIQLLERGGQGPDHPVHPAIAETRYIKSITCRLLPNS				NA	NA	NA	NA	NA
D1-36_04864	1068			hypothetical protein	ATGCAAATAAACCCTTGCCTGTTCATATTGGCGCGCCCACCCCATCAAGTCGTATGGAATTATGAACAACACACCCAGTTCGAACTGGACATCTATTACGCAACCAGACTGGCGCAACTTATAAACGACCCTTCACGATTCGATCGTTCAAACCCCATCGACAGGGAATTTGCCAAAGTCGATATATTGGTCGAGGGTCGGACTAAGAATATTGACTGGAAGTGGGACGAACTCTCCAGGATCTTTCATATCGGAACAAAAAACATTCCCTGCGAGAGCGTCCCCCAGGATGTGGACGAATGGGCGACGCTTTACCTGCACCATTGCGCCGAAGTCCTCTCCTCTCCCGCGCCCCCAGCCAGGACAACACCCTGTCCCGTCGGGCGAACCGTCCTTGAGCGCCCTTCATGGGATGAACTCAAAGAGGTGTCGCTGGTACGGACGCTCGTCAGCCGAAGCACCTCCCGCTCATTCGACAATCGCGCCATTTCCATTGCTCAGGTCAGCACTCTCCTTTACCTGGCCTTGGGTTACCTGAACGAACGATCATGCCCTCTCGAACGGTTCGCCGCGCGAAGAAGCAGCCCCTCGGGTGGTGGTCTTAATGCCTGCGAAGGTTATTTGTACGTGCGTAACGTCACGGGACTTGATGCGGGCCTCTATGCCTATCACCCGGACGAACATTCGGTCAGCCTGATCCGGACGCTGCCGGATGAATCCCTGGGCCAGCTGCTGTGCGGCCAGCATTTCATCAACAACCTGCCGTTCGGGCTGTTCATTACTTCGCGCTTCGACAAGCTCTGGTGGAAGTACGAACATTCGCGCGCCTATCGGATGGCTTTTGTCGAGACCGGCCATGTCTCCCAGAGCTTCCTGATGGTAGCCACCGCCATGGGCCTCGATACATGGCTGACAGGGGCCTTGGCCGACTGCCAGGTGGAGCACTTGCTCGGCCTTGAGGGAACCCCCGAACAACCGTTGTTCTTTGTCGGCTGCGGCCACGGTGACGGCCAGGTCCACTGCCGCGAGTTGATATCGTTGCTCGACGAACAGGACGCTGCGCCATGA	MQINPCLFILARPPHQVVWNYEQHTQFELDIYYATRLAQLINDPSRFDRSNPIDREFAKVDILVEGRTKNIDWKWDELSRIFHIGTKNIPCESVPQDVDEWATLYLHHCAEVLSSPAPPARTTPCPVGRTVLERPSWDELKEVSLVRTLVSRSTSRSFDNRAISIAQVSTLLYLALGYLNERSCPLERFAARRSSPSGGGLNACEGYLYVRNVTGLDAGLYAYHPDEHSVSLIRTLPDESLGQLLCGQHFINNLPFGLFITSRFDKLWWKYEHSRAYRMAFVETGHVSQSFLMVATAMGLDTWLTGALADCQVEHLLGLEGTPEQPLFFVGCGHGDGQVHCRELISLLDEQDAAP				NA	NA	NA	NA	NA
D1-36_04865	954			hypothetical protein	ATGAGCGAGCAGACCTTTGTCCAGCCACCGCTTTACTCCTTGGCCGACTGGAATCGCAAAGCCGCCGTACGAGCAGGTAAGGACGACTATCGCCTGCCTGACGATCTGGAGCGGCAGTTATCGAGCCGGCACTGGTTTCCACCAGCCTTCATTCCCTATGTCGAACACCCGTTGGTCATACACGCAGGTCAATCCGTTGCCCAACGGCTGGCGGCCAATCACCTGGTGTACTTCCTCGATTACACGACGATGCTGGAACACCGGATCGTCAACCGCTCCGTGGAGGCACTGGTCCATGGCGAACTGGCCGTGCCGATTCCGACCGAAATGAAAACCGCGGCCCTGCAGCTGTATACGGACGAGGGCTACCACGCACTGTTTTCCAACGAGGTGGCTGAACAGATCGCTGCCTTGTACGGCATCCAGGATCGCCCTCCGGCCAGGCGAATCGGTCGGCTGTTGGGCGTGATCCAAAAATGCCCACCCCCGGACCGCCCCCTCGCGTGGTTCCTGTTGGGGTTTGTCTCCGAAACGATCATTGCCCGGGAGCTGCTCACCCTCACCCGGAAAACCTTGGTCTGTACGGTCTACCGCATGCTCAAAACTCATCTGCAGGACGAAGCGCGCCACAGCCGATACTTCAGCGAGGTCTTCGGCTACCTCTGGCCGATTCTCGACGCAACACAACACGAGTGGGCGGCGAGGCTGCTGTTGGAGATCATCGGGCTTTATTTCGAACCGGATATCCCCTGGTTGATGGGCAGCCTCGCCAGCGTGGGCTTCGACGAGACGGCATCCCTCCAGATCGTTGCCGACATCGTGCCGCCACACGCCCATGCCGCACGGGTTCGCTCAGGTGCGGTATCGACATTCGCGGCCATGCAACGAGCCGGTTTTTTTGACAATGACCACAACCGAGCGCTCTTTTGCGAGGCGGGGTTCCTTGATGGCTGA	MSEQTFVQPPLYSLADWNRKAAVRAGKDDYRLPDDLERQLSSRHWFPPAFIPYVEHPLVIHAGQSVAQRLAANHLVYFLDYTTMLEHRIVNRSVEALVHGELAVPIPTEMKTAALQLYTDEGYHALFSNEVAEQIAALYGIQDRPPARRIGRLLGVIQKCPPPDRPLAWFLLGFVSETIIARELLTLTRKTLVCTVYRMLKTHLQDEARHSRYFSEVFGYLWPILDATQHEWAARLLLEIIGLYFEPDIPWLMGSLASVGFDETASLQIVADIVPPHAHAARVRSGAVSTFAAMQRAGFFDNDHNRALFCEAGFLDG				NA	NA	NA	NA	NA
D1-36_04866	1206	mdtL		Multidrug resistance protein MdtL	ATGGCTGACCTATCCAGTCGTCCATCTGCGGACAAGCCAGCCATCGTCGGGCTCCTGACGATGTTGACGCTGCTTGGCGTGTTTCCGATCGATGTTGTACTGCCTTCGTTTCCGGCGCTGGCTGGGCACTTTCGCAACTCATCCTCAGACATTGCCCTGTCTGTCAGCCTGTTTGCCGTAGGCATTGCGCTCTCACAGCTATTGATTGGCCCGCTTTCCGATGCCATGGGCCGCAAGACACTGTTGTTGGTCGGCATCGCCGTCTCGGTTGTCGGCGCAGCGGGGTGCACCTTGACTGACGACTTCCGGCTGTTCCTGGTTTTTCGAATCATCCAGGCGTTGGGGTGCGGTTGCTTTGTGCTCTCCCAGGCACTGGTCCAGGACCTGTTTACCGGAACGCAACAGCAGCGGCTGCGTATCTTTCTGGTCACCTGCGGCGGCGTCTTTATTTCCATCTCGCCACTGGCCGGCACTGGCCTCCAAGGTTGGATGGGGTGGCGCGGCAGTTTTCTGGTGTTCATCGTACTGGCAATCGGCGCATTTGCCGGCGCCTGTCTTTTACTTGAAGGCCCGGCCCAAAACTGCCGATCCACGCGGATGAACTTCTTTGCGTCTTATCGCAGAGTCTGCGGTCATTTCAGCTTCATGGCCTATTGGCTGATTTCGGCACTCGCGTTTTCCTGTCATTTTTCATTCATTGTCATTTCGCCATTGATCTTCATCGACCAATTGCAGCTCTCGCAGCAGGCTTTCTCAGTGATGCTGCTGGGCTATGGGCTGGCCTATATCGGCGGCGGCGCATTCGCGACCGTACTCGACAACCGAATCGACTCGCACACCCAGATCATCACTGGCCTGAGCCTGATCCTAACGGCGGGTCTATCGATGCTGGTGCTTTTCTACATCATTGGCCTGTCCATCACGACCGTTCTGCTGCCCATGGTTGTATGCACCACTGGCACAACGATTGCGCGCGCCGCCGCCCATACCCGGGCGATGAACACCTTTGCGGAGCAAGCGGGTACCTCCGCATCGGCGGGCAGCGTGCTGATCTTCATCACGGGCGGCCTGGCCAGCGCCGGCATCAGCCTCTCTCCCTTACCCTTGCCTTTCACGCTTGCGCTATGCCTGATCGCATTCAGCCTCCTTGGCATGACGCTCAACACGCTGGTCAGGCTTCGTCACCGAAGGTTATTGCCCGGCTGA	MADLSSRPSADKPAIVGLLTMLTLLGVFPIDVVLPSFPALAGHFRNSSSDIALSVSLFAVGIALSQLLIGPLSDAMGRKTLLLVGIAVSVVGAAGCTLTDDFRLFLVFRIIQALGCGCFVLSQALVQDLFTGTQQQRLRIFLVTCGGVFISISPLAGTGLQGWMGWRGSFLVFIVLAIGAFAGACLLLEGPAQNCRSTRMNFFASYRRVCGHFSFMAYWLISALAFSCHFSFIVISPLIFIDQLQLSQQAFSVMLLGYGLAYIGGGAFATVLDNRIDSHTQIITGLSLILTAGLSMLVLFYIIGLSITTVLLPMVVCTTGTTIARAAAHTRAMNTFAEQAGTSASAGSVLIFITGGLASAGISLSPLPLPFTLALCLIAFSLLGMTLNTLVRLRHRRLLPG	PGPT0029005_3161	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
D1-36_04867	1842	ilvD	COG0129	Dihydroxy-acid dehydratase	ATGCCTGATTACCGTTCGAAAACATCCACCCATGGCCGCAACATGGCCGGCGCCCGTGCATTGTGGCGCGCCACGGGGATGAAGGATGACGACTTCAAGAAGCCGATCATCGCCATTGCCAACTCTTTCACCCAGTTCGTACCGGGTCACGTCCACCTCAAGGACCTGGGCCAATTGGTTGCCCGTGAAATCGAACGTGCCGGCGGTGTTGCCAAGGAATTCAACACCATCGCCGTGGACGACGGCATCGCGATGGGCCACGACGGCATGCTTTATTCGCTGCCCAGTCGCGAGATCATCGCCGACTCGGTCGAGTACATGGTCAACGCCCACTGTGCCGACGCCATCGTCTGTATCTCCAACTGCGACAAGATCACCCCCGGCATGCTCATGGCCGCACTGCGCCTGAACATCCCGGTGATCTTCGTTTCCGGCGGCCCGATGGAAGCCGGCAAGACCAAGCTCGCCAGCCACGGCCTCGACCTGGTGGACGCGATGGTAATCGCCGCCGACTCCAGCGCTTCTGACGAGAAGGTCGCCGAGTACGAGCGCAGCGCCTGTCCGACCTGCGGTTCGTGCTCCGGCATGTTCACCGCCAACTCGATGAACTGCCTGACCGAAGCCCTGGGCCTGGCATTGCCAGGCAACGGTTCGACCCTGGCCACCCACAGCGACCGCGAGCAACTGTTCCTGCAGGCCGGCCGGACCATCGTCGAGCTGTGCAAGCGTTACTACGGCGAAAACGATGAATCGGTGCTGCCACGCAACATTGCCAACTTCAAGGCGTTCGAGAATGCCATGACGCTGGACATCGCCATGGGCGGTTCCACCAACACCATCCTGCACTTGCTCGCTGCCGCTCAGGAAGCCGAGATCGACTTCGATCTGCGCGACATCGACCGCCTGTCCCGTCACGTACCGCAGCTGTGCAAAGTCGCGCCGAACATCCAGAAGTACCATATGGAAGACGTGCACCGCGCCGGCGGCATCTTCAGCATCCTCGGCTCCCTGGCCCGAGGCGGTCTGTTGCATACCGACCTGCCAACGGTACACAGCAAGACCATGGCCGAGGCCATCGCCAAGTGGGACATCACCCAGACCACCGACGAAGCCGTGCATCACTTCTTCAAGGCCGGCCCGGCGGGCATCCCGACCCAAACTGCCTTCAGCCAATCGACTCGCTGGGAAACCCTGGATGACGACCGTGAAAACGGCTGCATCCGCAGCGTCGAGCACGCCTACTCCAAGGAAGGTGGCCTGGCTGTGTTGTACGGCAACATTGCCTTGGACGGCTGCGTGGTAAAAACCGCCGGCGTCGACGAGTCGATCCATGTATTCGAAGGCAACGCCAAGATCTTCGAAAGCCAGGACAGCGCCGTGCGCGGCATCCTTGCCGATGAAGTGAAGGCCGGCGATATCGTGATCATTCGCTACGAAGGCCCTAAAGGCGGCCCGGGCATGCAGGAAATGCTCTACCCGACGTCCTACCTGAAGTCCAAAGGCCTGGGCAAAGCCTGCGCGCTGCTGACGGACGGGCGGTTCTCTGGCGGCACCTCTGGCCTGTCCATTGGCCACGCTTCGCCGGAAGCGGCGGCTGGCGGCGCCATTGGCCTGGTGCGCGATGGCGACAAGGTATTGATCGACATTCCCAACCGCTCGATCAACCTGCTGATCAGCGACGAAGAATTGGCCGAACGCCGCGTCGAGCAGGACAAGAAAGGCTGGAAGCCGGTGGAAGTGCGTCCGCGCAAAGTCACCACCGCCCTAAAGGCCTACGCCCTCCTCGCCACCAGCGCCGACAAAGGTGCGGTGCGCAACAAGGCGATGCTTGACGGGTTATAA	MPDYRSKTSTHGRNMAGARALWRATGMKDDDFKKPIIAIANSFTQFVPGHVHLKDLGQLVAREIERAGGVAKEFNTIAVDDGIAMGHDGMLYSLPSREIIADSVEYMVNAHCADAIVCISNCDKITPGMLMAALRLNIPVIFVSGGPMEAGKTKLASHGLDLVDAMVIAADSSASDEKVAEYERSACPTCGSCSGMFTANSMNCLTEALGLALPGNGSTLATHSDREQLFLQAGRTIVELCKRYYGENDESVLPRNIANFKAFENAMTLDIAMGGSTNTILHLLAAAQEAEIDFDLRDIDRLSRHVPQLCKVAPNIQKYHMEDVHRAGGIFSILGSLARGGLLHTDLPTVHSKTMAEAIAKWDITQTTDEAVHHFFKAGPAGIPTQTAFSQSTRWETLDDDRENGCIRSVEHAYSKEGGLAVLYGNIALDGCVVKTAGVDESIHVFEGNAKIFESQDSAVRGILADEVKAGDIVIIRYEGPKGGPGMQEMLYPTSYLKSKGLGKACALLTDGRFSGGTSGLSIGHASPEAAAGGAIGLVRDGDKVLIDIPNRSINLLISDEELAERRVEQDKKGWKPVEVRPRKVTTALKAYALLATSADKGAVRNKAMLDGL	PGPT0001875_1553	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
D1-36_04868	1056			hypothetical protein	ATGAAGCTCGTACCGCACCTGCTCGCTGTCGCTCTAGGCTTGGGCCTCGTCGGCCAAGCGCTCGCCACCGATCTCAAGCACTGGCCGACGGAACAGGCCAAGGCGCTGGAAGCGATGATCGCGGCCAACGCCAACAAGGGTAACTACGCGGTCTTTGACATGGACAACACCAGCTACCGCTACGACCTGGAGGAGTCGCTGTTGCCGTTCATGGAGAACAAGGGCCTCATCAGCCGTGAAACCCTGGACCCATCCCTGAAGCTGATGCCGTTCAAGGATACGGCTGAACACAAGGAAAGCCTCTTCAGCTATTACTACCGCCTGTGCGAACTGGACGACATGGTTTGCTACCCGTGGGTGGCCCAGGTGTTCTCTGGGTTCACGCTCAAGGAGCTGAAGGGTTATGTCGATGAATTGATGGCTTCAGGCAAACCGGTGCCGACCACCTATTACGATGGCGACAAGGTGGTCCAGTACAACGTCAACCCGCCGAAAATCTTCACCGGCCAGACCGAGCTGTACAACAAACTGATGGAAAACGGTATCGAGGTCTACGTCATGACCGCGGCTTCCGAAGAGCTGGTGCGCATGGTCGCGGCCGATCCGAAGTACGGCTACAACCTCAAGCCGCAGAACGTGATCGGCGTGACCACGCTGCTCAAGGACCGCAAGACCGGCGAGCTGACCACCGCGCGCAAACAGATCACAAACGGCAAATACGACGAGAAGGCCAACCTGGGCCTGGAGTACACCCCCTACCTCTGGACCCCGGCGACCTGGATGGCCGGCAAGCATGCGGCGATCCTGACCTACATCGACGAATGGAAAAAACCCGTACTCGTCGCCGGCGATACGCCGAGCAGCGACGGCTACATGTTGTTCCACGATGTGGACGTGGCCAAGGACGGCATCCACCTGTGGGTCAACCGCAAGGACAAGTACATGACCCAGATCAACGGCATGATGGCCAAGCACGCCGCCGCCCAGGCCAAGGAAGGATTGCCGGTGACGGCTGACAAGAACTGGGTGATCGTCAAGCCCGAGGACATTCAGTAA	MKLVPHLLAVALGLGLVGQALATDLKHWPTEQAKALEAMIAANANKGNYAVFDMDNTSYRYDLEESLLPFMENKGLISRETLDPSLKLMPFKDTAEHKESLFSYYYRLCELDDMVCYPWVAQVFSGFTLKELKGYVDELMASGKPVPTTYYDGDKVVQYNVNPPKIFTGQTELYNKLMENGIEVYVMTAASEELVRMVAADPKYGYNLKPQNVIGVTTLLKDRKTGELTTARKQITNGKYDEKANLGLEYTPYLWTPATWMAGKHAAILTYIDEWKKPVLVAGDTPSSDGYMLFHDVDVAKDGIHLWVNRKDKYMTQINGMMAKHAAAQAKEGLPVTADKNWVIVKPEDIQ				NA	NA	NA	NA	NA
D1-36_04869	1392	tcyP	COG1823	L-cystine uptake protein TcyP	ATGAATGTGCCGCTGATACTCAATCTGCTGGTGTTCATTGGCCTGCTGTTCGGCCTGGCGCAAACCCGCCACAGCACCTGGAGCCTGGCCAAAAAGGTCTTGCTGGCGCTGGCGCTGGGCGTGGTGTTCGGTATCGCCCTGCATACGATTTATGGGGCAGCGAATCCCGTGCTCAAAGCGTCGATCGGTTGGTTCGACCTCGTGGGCAATGGCTATGTGCAGTTGCTGCAGATGATCGTGATCCCGCTGGTCTTCGCCTCGATCCTCAGCGCCGTGGCCCGCCTGCACAATGCCGCGTCCCTGGGCAAGATCAGCTTCCTGACCATCGGTACGCTGCTGTTCACCACCGCCATCGCGGCGCTGATCGGCATCGGCCTGACCAACCTGTTCGGCCTCACCGCCGAGGGCCTGGTGGCCGGCACCCAGGAACTGGCGCGCCTGCAAGTGATCCAGGGCGACTACGCCGCAAAGGTCGCCAACCTGAACATTCCGCAGCTGCTGCTTTCGTTCATTCCACAGAATCCTTTTGCCGACCTCGCCCGGGCGAAGCCGACGTCGATCATCAGCGTGGTGATTTTCGCCGCGTTCCTCGGTGTCGCCGCGTTGCAGTTGCTCAAGGATGACGCCGAGAAAGGCCAGAAGGTGGTCGACGCCATCGACACCCTGCAAAGCTGGGTGACGCGCCTGGTGCGCCTGGTGATGAAGCTCACGCCATACGGCGTGCTGGCGCTGATGACGAAGGTGGTCGCCGGCTCGAATCTGCAGGACATCATCAAGCTCGGTAGTTTCGTAGTGGTGTCGTACCTGGGGCTGGGCTTGATGTTCGTGGTCCATGGCCTGCTGGTGTCGGCCGCCGGGATCAACCCGCTGCGTTTCTTCCGCAAGATCTGGCCGGTGTTGACGTTCGCCTTCACCAGCCGTTCCAGCGCCGCGACCATTCCGTTGAGCATCGAGGCCCAGACCAGTCGCCTCGGCATTCCCCGGGCGATCGCCAGCTTCAGCGCCTCGTTCGGCGCCACCATCGGCCAGAACGGTTGTGCCGGGCTGTATCCGGCGATGCTGGCGGTGATGGTCGCGCCCACCGTGGGCATCAACCCGCTGGATCCGGTGTGGATCGCAACGCTGGTCGCCATCGTGACCTTGAGTTCGGCGGGCGTGGCAGGAGTCGGTGGTGGCGCGACGTTCGCCGCGCTGATCGTGCTGCCGGCCATGGGTTTGCCGGTCTCGCTGGTGGCGCTGCTTATTTCGGTGGAGCCGCTGATCGACATGGGCCGCACTGCATTGAATGTCAGTGGCTCGATCACTGCGGGGGCGATTACCAGCCAGGTGATGCAGCAGACTGACAAAGCACTGCTCGATGCCGACGAGCATGGGGAGTTGGCGCAGGCTTGA	MNVPLILNLLVFIGLLFGLAQTRHSTWSLAKKVLLALALGVVFGIALHTIYGAANPVLKASIGWFDLVGNGYVQLLQMIVIPLVFASILSAVARLHNAASLGKISFLTIGTLLFTTAIAALIGIGLTNLFGLTAEGLVAGTQELARLQVIQGDYAAKVANLNIPQLLLSFIPQNPFADLARAKPTSIISVVIFAAFLGVAALQLLKDDAEKGQKVVDAIDTLQSWVTRLVRLVMKLTPYGVLALMTKVVAGSNLQDIIKLGSFVVVSYLGLGLMFVVHGLLVSAAGINPLRFFRKIWPVLTFAFTSRSSAATIPLSIEAQTSRLGIPRAIASFSASFGATIGQNGCAGLYPAMLAVMVAPTVGINPLDPVWIATLVAIVTLSSAGVAGVGGGATFAALIVLPAMGLPVSLVALLISVEPLIDMGRTALNVSGSITAGAITSQVMQQTDKALLDADEHGELAQA				NA	NA	NA	NA	NA
D1-36_04870	513			IS1595 family transposase ISSsu9	ATGAAAAAAACTCTTCCCTTAAGCCTGATCGCAGCCCTCGGTGAAAACCGTGTGATCGGCATCGACAACACCATGCCCTGGCACTTGCCGGGGGATTTCAAATATTTCAAGGCCACCACTCTGGGCAAGCCGATCATCATGGGCCGCAAGACCTGGGACTCCCTCGGTCGACCGCTGCCGGGTCGCTTGAATATCGTGGTGAGCCGCCAACCCGGCCTGGTTTTGGAAGGCGCGCAGGTTTATTCCACGCTTGAAGCCGCAGTGGAACGGGCCGAAGCCTGGGCGCTGGAACAAGGCGTGGACGAGCTGATGCTGATCGGCGGTGCCCAGCTCTATGCCCAGGCATTGGATCAGGCGGATCGGCTGTACCTGACCCGCGTGGCGCTGAGCCCGGAAGGGGATGCTTGGTTCCCGGCGTTTGATTCGAACCAGTGGAAGCTGGTTTCGAACCAGCCGAATCCGGCCGAAGGGGACAAGCCGGCCTACAGTTTCGAAGTCTGGGAAAAACGCTGA	MKKTLPLSLIAALGENRVIGIDNTMPWHLPGDFKYFKATTLGKPIIMGRKTWDSLGRPLPGRLNIVVSRQPGLVLEGAQVYSTLEAAVERAEAWALEQGVDELMLIGGAQLYAQALDQADRLYLTRVALSPEGDAWFPAFDSNQWKLVSNQPNPAEGDKPAYSFEVWEKR	PGPT0007945_1425	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007945-folA-K00287	NA	NA
D1-36_04871	1368			putative membrane protein	GTGACAGAACTGCAGAACCTCTGGTTGACCGAGACGATACGCCTGCGTGAAGAACACGCCGGCCCGCTCGAGGACCAGGAAGCCAATCGCCTGGCCCGCGCGGCAGGAGGCGATCTATCCACCCGCATCCGCCACCGCGCCCGCTGGCTGGCCGACCGCGACGGCCTTGCTCAAGCCCTGCGCCACTGGCTGCAGGGAGCGCGGCTGGCGCTGATGGCGTTGGCGGTGCTCGCCATCGCCAGCGGCGCCGGCCTGGGGTTCGCCGCCCTCGGCGATGGACGCGCGCCGGTCAACGTTTTCTGGGCCTTGGGCAGCCTGTTGGGGCTGAACCTGCTCCTGCTCATTGGCTGGCTCCTGGGCCTGCTGTTCGCTGGGGAGCAAGGCGCCACGCTGGGACGCCTTTGGCTGTGGCTCAGCGAAAAACTGGCGCGCGATGCCAAGGCTGCCCAACTGGCGCCAGCCCTGCTGCTGTTGTTGCAACGGCACCGGCTCAATCGCTGGGCGCTCGGCGTGCTGGTCAACGGCTTGTGGCTACTGGCGATGCTCAGCGCGCTGGTCATCGTACTGATGCTGATGGCGACCCGGCGTTATGGCTTCGTCTGGGAAACCACGATTCTGGGCGGCGATACCTTTGTCGCCATGACCCAGGCCCTCGGTGCGCTGCCCGCCCTGCTGGGCTTCAGCGTGCCGACCGTCGAGATGATCCGCGCCAGCGGTGACGCCGCGTTGGATATCGAGAGCGCCCGCCAGGCCTGGGCCGGGTGGTTGGTCGGCGTCTTGCTGGTCTACGGCGTGCTGCCGCGCCTGTGCCTGACGCTGCTGTGCCTGTGGCGATGGCGTCGTGGCCGCGCCAGACTTCGCCTGGACTTGAACCTGCCCGGTTACGCGCAGTTGCGCGAGCGGTTGATGCCCAGCAGCGAGCGCCTGGGGGTCAACGATGCCGCGCCCGCACAGTTGCACAGAATCGACAGCGCCGTCGGGGCAATGGAAAGTGACGGCGCGTTGCTGGTGGCGATCGAGCTGGACGAACGTCCCTGGCCGCCCAAGCTGCCCGACTCCGTTAAAAACGCCGGCATCCTCGACAGCCGCGAGTCCCGCCACAGACTCTTGGAACAACTGTCGCGTTTCCCACCCGCGCGCCTGGCGATTGCCTGCGACCCCCGGCGTTCGCCGGACCGTGGAAGCCTAGCGTTGATTGCCGAGCTGGCCCGCAGCGCCAGCGCTACCCGTATCTGGTTATTGCAGGCGCCACCCGGCGAAGCGCTGGACGGCGAGCGCCTGGGTGATTGGCATAACGCGCTGCAACAGTTGGAGTTGCCGTTCGCCGATTGCGCCCCGATGAACTGGCTGGAGACCGGCCATGACTGA	MTELQNLWLTETIRLREEHAGPLEDQEANRLARAAGGDLSTRIRHRARWLADRDGLAQALRHWLQGARLALMALAVLAIASGAGLGFAALGDGRAPVNVFWALGSLLGLNLLLLIGWLLGLLFAGEQGATLGRLWLWLSEKLARDAKAAQLAPALLLLLQRHRLNRWALGVLVNGLWLLAMLSALVIVLMLMATRRYGFVWETTILGGDTFVAMTQALGALPALLGFSVPTVEMIRASGDAALDIESARQAWAGWLVGVLLVYGVLPRLCLTLLCLWRWRRGRARLRLDLNLPGYAQLRERLMPSSERLGVNDAAPAQLHRIDSAVGAMESDGALLVAIELDERPWPPKLPDSVKNAGILDSRESRHRLLEQLSRFPPARLAIACDPRRSPDRGSLALIAELARSASATRIWLLQAPPGEALDGERLGDWHNALQQLELPFADCAPMNWLETGHD				NA	NA	NA	NA	NA
D1-36_04872	1374			hypothetical protein	ATGACTGAATCCATCAAGCCCCTGAAGCTCGCGGTGGTCGGCCACACCAATGTCGGCAAGACCTCCTTGCTGCGCACCCTGACCCGCGACGTCGGCTTCGGCGAGGTGTCCCATCGCCCGAGCACCACCCGTCACGTCGAAGGGGCTCGCCTGTCGGTGGATGGCCAGGCGCTGCTGGAACTGTACGACACGCCGGGGCTGGAAGACGCCATCGCCCTGCTCGATTACCTGGAACGCCTGGAGCGGCCGGGCGAACGCCTGGACGGCCCGGCACGCCTGGCGCGCTTCCTCGATGGCAGTGAGGCCCGGCAACGCTTTGAGCAGGAAGCCAAGGTGCTGCGGCAGTTGCTCGCCAGCGATGCCGGACTGTATGTCATTGATGCCCGCGAGCCAGTGCTGGCCAAATACCGCGATGAGTTGGAAGTCCTCGCCAGTTGCGGCAAACCGCTGCTACCGGTGCTCAACTTCGTCAGCAGCGCCCAGCATCGCGAACCTGAGTGGCGCGAAGCCCTGGCGCGATTGGGCCTGCATGCGCTGGTGCGCTTCGACAGCGTCGCCCCGCCGGAAGACGGCGAACGGCGCCTGTACGAAAGCCTTGCGCTGTTGCTGGAAAACGCTCGCGAACAGCTGGAGCGACTGATCGATGATCAACAGGCCCAGCGCCAGGCTCGCCAGCAGAGCGCAAAGCGCCTGATCGCCGAACTTCTGATCGACTGTGCCGCCTGCCGACGCAGCGTCGCCAGCGATGCGGATCTGGAGCACCAGGCCATCGGCCAATTGCGCGACGCCGTCCGTCAGCGCGAGCAGCGCTGCGTTGAAGCGCTGCTCAAGCTTTACGCTTTCCGTGCCCAGGACGCGGCCGCCAGCGATTTGCCTCTGCTGGACGGTCGTTGGGGCGATGACCTGTTCAATCCCGACACCCTCAAGCAATTGGGCGTGCGAGTCGGTGGCGGGATCGCGGCCGGGGCAGCGGCGGGTGCGGGCGTGGATTTGCTGGTGGGAGGGTTGACCCTTGGCGCCGCAGCCCTGGCCGGAGCCATTGCCGGCGGTGCGCTGCAAACCGCCCGCAGCTATGGCAACCGGTTGATGGGCAAGCTCAAGGGCCAGCGCGAACTGACCGTGGACGACAGCGTGCTGCGCCTCCTGGCCTTGCGCCAACGGCAATTGCTGCAAGCGATCAATCAGCGCGGTCATGCGGCGATGGACAGTATCCGTATCGCCACGCCCCACGATAAGACATGGCGCGAAGGCAGGTTGCCCGAAGCATTGAACAAGGCCCGGGCGTATCCGCAGTGGTCGTCGCTCAACCCCAGTCCCCGCTTGAGCCAGGCCGAGCGGCAAGAGCAGATCGAGCTATTGGCCGAGCAGCTTTAG	MTESIKPLKLAVVGHTNVGKTSLLRTLTRDVGFGEVSHRPSTTRHVEGARLSVDGQALLELYDTPGLEDAIALLDYLERLERPGERLDGPARLARFLDGSEARQRFEQEAKVLRQLLASDAGLYVIDAREPVLAKYRDELEVLASCGKPLLPVLNFVSSAQHREPEWREALARLGLHALVRFDSVAPPEDGERRLYESLALLLENAREQLERLIDDQQAQRQARQQSAKRLIAELLIDCAACRRSVASDADLEHQAIGQLRDAVRQREQRCVEALLKLYAFRAQDAAASDLPLLDGRWGDDLFNPDTLKQLGVRVGGGIAAGAAAGAGVDLLVGGLTLGAAALAGAIAGGALQTARSYGNRLMGKLKGQRELTVDDSVLRLLALRQRQLLQAINQRGHAAMDSIRIATPHDKTWREGRLPEALNKARAYPQWSSLNPSPRLSQAERQEQIELLAEQL				NA	NA	NA	NA	NA
D1-36_04873	492			hypothetical protein	ATGGAAAAAATCCTAGTCAGTCGCTGTCTGCTCGGTCATCGCGTGCGTTACGACGGTGGCGCCAGCGGGCCATTCGATCAGCTCCAGCAATGGCTCGACGAGGGTCGTGTCGTGCCGCTGTGCCCGGAGGTCGCCGGCGGCTTGCCCACGCCCCGGCCGGCGGCGGAGATTCCTGGCGGGCAAGGAGTGAAAGTGCTCGATGGCGACGCGGCGGTCATCACCACCGATGGCGAGGATGTGAGCGCGCAGTTTTTGTCGGGTGCCTATCAAGCGTTGGATTTGGTGCGCGAACACGGCATCCGGATCGCCGTGCTGAAGGCCAACAGCCCCTCCTGCGGCAACCTGCTCACCTATGACGGGACATTCAGCGGTGTGAAAGTCCTCGGCGAGGGCGTGACGGCGGCGTTGCTCAAGCGCCATGGCGTACGGGTGTTCAGCGAGCTGGAGCTGGCGGAAGCGGCGTCGGCGCTAAAAGCGTTGGCCGCGGAATAA	MEKILVSRCLLGHRVRYDGGASGPFDQLQQWLDEGRVVPLCPEVAGGLPTPRPAAEIPGGQGVKVLDGDAAVITTDGEDVSAQFLSGAYQALDLVREHGIRIAVLKANSPSCGNLLTYDGTFSGVKVLGEGVTAALLKRHGVRVFSELELAEAASALKALAAE	PGPT0013380_8	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISM	ROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013380-punA-K03783	NA	NA
D1-36_04874	630			hypothetical protein	ATGCGCGCCATGCAAATACCTTCTGATCATCCGTTGCTGTTACGTATCGTCGACGACCTGGCCGAGCGCGGCTGGTCGCAGCAGAACATCTTCCTGCCGGATGCGCTGACGCGCGCCTTGGCGGCCGAGTGCCGCCAGCGCGCCGCTGAAGGTGAACTGGCCCCGGCCGCCGTTGGACGCGGGCCGTTTTCGGAAATTCGCGAAGGGATCCGTGGCGATCACATCCAGTGGATCGAGCCCGGCCAGATTGACGCCTGCGACCGTTACCTGGGGTTGATGGACAGCCTGCGCGAGGCCTTGAACCGCGGCCTGTTCCTGGGCCTGGAGGATTTCGAGAGCCACTTCGCCCTGTACCCGCCCGGCGCGTTCTACCTCAAGCACGTCGACCGCTTCCGTGACGATGACCGGCGCATGGTCTCGGCGGTGCTCTATCTCAATGACGCGTGGCTGCCGGAACACGGCGGTCAGTTGCGCATGTACCTGGGCGAAAGTGAGCACGATGTAGTGCCCACCGGCGGCTGCCTGGTGGTGTTTCTCTCGGGGGACATTCCCCATGAAGTGCTGCCGGCGACGCGTGAGCGCCTGTCCTTGACCGGTTGGTTCCGACGCCGCGGCAACGAGTTGTTCTGA	MRAMQIPSDHPLLLRIVDDLAERGWSQQNIFLPDALTRALAAECRQRAAEGELAPAAVGRGPFSEIREGIRGDHIQWIEPGQIDACDRYLGLMDSLREALNRGLFLGLEDFESHFALYPPGAFYLKHVDRFRDDDRRMVSAVLYLNDAWLPEHGGQLRMYLGESEHDVVPTGGCLVVFLSGDIPHEVLPATRERLSLTGWFRRRGNELF				NA	NA	NA	NA	NA
D1-36_04875	744			hypothetical protein	ATGCGCCGTTTGCTTTTCTCACTGTTGATGTTCTGCGTATTGCCCGCCTGGGCAGACAGCTACGACCAGTTGTATAAGGTCGCCGGCTGGCCGGAACAACGGGCGCATTTCAATGACGCCTTGAATGCCGCGCAGCAGCGCTATCAGAACAGCCTGCCGCCAGCGGTATTCCAGGCGTTGGTGAACAACAGCAACCAACGGTTCGCGCCCCAGGCCATGGACCAGCGGGCCGAGGCCCAGCTGCGCAAGAACCTTGCCGACCCGGACCCGGCCCTGACCTTTTTCCAATCGCCCCTGGGCCGCAAAGTCGTCGCGGCCGAACTGCTCGCCACCCGCCGCGACCAATTGGCGAAGAACGCCAAGGGCCTGCCTAAGATGCAGGCCAGCGATAACCGCCTGCTGATCATCGGCCATCTGGCCCAGGCCCTGCCCGCCCGTGAAGCCGGTGCCGAAGTCAGCCTGGCGATCGCCGGCGTGGCGGCCGACAGCCTGAGTTCGATGATTCCAGGCTTGCTGGGCGGCGGGCAGGCTCAAGGCATGTTGAACGGCCAGCGCCAGCGCCTGATGGACCAGATCGGTGCGGACCTGAACAACACGTTGCTGTACGTCTACCGTGACCTGACCGACACCGAGCTGGAAGAATTCGCCACCTTCGCCGAGTCGGCCGAGGGGCAGGCCTATTACCAGGCGGCGCTGGCGGCGATTCGGGCGGGGTTGGCGGTGGGGCAGAACTTAGGGCAGTAG	MRRLLFSLLMFCVLPAWADSYDQLYKVAGWPEQRAHFNDALNAAQQRYQNSLPPAVFQALVNNSNQRFAPQAMDQRAEAQLRKNLADPDPALTFFQSPLGRKVVAAELLATRRDQLAKNAKGLPKMQASDNRLLIIGHLAQALPAREAGAEVSLAIAGVAADSLSSMIPGLLGGGQAQGMLNGQRQRLMDQIGADLNNTLLYVYRDLTDTELEEFATFAESAEGQAYYQAALAAIRAGLAVGQNLGQ				NA	NA	NA	NA	NA
D1-36_04876	948			hypothetical protein	ATGCCCGCTTCTTTTGACCCTGATCATCTGCGCGCCAGCCTGCAACCTTTGGCGCAGTGGCAGCCGCTGTCTGCGCAAGCGCAGGCCTACCAGCAATTCTATGGACTGGATTTCCCGGCACGCACGCTGCGCAGCGGCCTGGGTCGTTTCGACGTTGCGGGGTATGAGCTGGTCGGCCAGGTCTGGTGGCCGGAAAAAGCCGTGGCGACCCTGTTCCTTTTCCATGGCTATTACGACCACATGGGCCTTTACCGGCACTTGATCGACTGGGCGCTGGAGCAGCGGTTCGTGGTGATCAGCTGCGACTTGCCGGGCCATGGATTGTCCAGTGGCGAGCGCGCCAGCATCGGCGATTTCGCCGACTACCAGGCGACATTGCAAGGTTTGCTGGCAGAAGGGGACAGCCTTGGCTTGCCGCAACCCTGGCACCTGTGCGGACAAAGCACCGGCGGGGCAATTGTGGTCGACCATGTCCTCAACCAGGGCGCAAACAGCCCGGCCCAGGGCCAGGTCATCCTGTTGTCGCCCCTGGTCCGGCCTCGCGCCTGGGGCTGGTCGCGCCTCAGTTATTACCTGCTCAAGCCGTTCGTGACCGGCATTGCCCGGCGGTTCACCGAGAATTCCACCGACCCGGATTTCCTTCCGTTCCTGCAGGCCGACCCGCTGCAACCGCTGCGCCTGCCCACCGCGTGGGTCGGGGCGCTCGCGCAGTGGATCAAGCGCATAGAGGCGGCGCCGAGCAGCCCGCGCCAGCCGTTGATCGTCCAGGGGCAGGCGGACATGACGGTGGATTGGCGACACAACTTGCAAGTGTTGCAGGCCAAATTCGACCGGCCGCAGGTTCTGATGTTGCCGCAGGGGCGGCATCACCTGGCGAATGAGAGGTTGGCGATGCGTCAGGAAATGTTTGAGTTCTTGAGCAGGCGGATGAGTCGGGTCCGGCGGTGA	MPASFDPDHLRASLQPLAQWQPLSAQAQAYQQFYGLDFPARTLRSGLGRFDVAGYELVGQVWWPEKAVATLFLFHGYYDHMGLYRHLIDWALEQRFVVISCDLPGHGLSSGERASIGDFADYQATLQGLLAEGDSLGLPQPWHLCGQSTGGAIVVDHVLNQGANSPAQGQVILLSPLVRPRAWGWSRLSYYLLKPFVTGIARRFTENSTDPDFLPFLQADPLQPLRLPTAWVGALAQWIKRIEAAPSSPRQPLIVQGQADMTVDWRHNLQVLQAKFDRPQVLMLPQGRHHLANERLAMRQEMFEFLSRRMSRVRR				NA	NA	NA	NA	NA
D1-36_04877	588			hypothetical protein	ATGCGCCCGTCCCACCGCACGACCTTGCTTGCCAGCCTGCTCGCCCTCGCGTGCGCCGTCGTGCTGTGGCTCGCCTACGACTGGTTCCAGGGCCGATTCCTGAGGACGTTCAGCCAACACACGGCAGTATTTTCCGGCGACCCCCTGCGCCTGCCGCCCGACCTGGCCGGCCCCGGCGCAATCCGCCTGGTGCATTTCTGGGATCCGGCCTGCCCGTGCAACGTTGGCAATCAGCAGCACCTCTCCGAGCTGGTCGAGAAATACACCCCCCTTGGCGTGGCGTTCTACGCAGTACAAAAAACCGGCAGCCTGGGCCGCCTGCCTGCCACGCTGAATAGCCTCAAGACACTGCCGGCGCTTCCCGGTTCGGAACAGATTCCTGCCAGCCCCGCCGTGGCGATCTGGGACCGCCACGGCAAACTGGCGTATTTCGGCCCGTACAGCGAAGGCTTGACCTGCAATTCGAGCAACAGCTTTATCGAACCGATTCTCGAAGCGTTGAGTACCGGCCGGCAAGTCGACGCAACCCACACCATGGCGGTGGGTTGTTATTGTCCGTGGGCCCAGGACACATCCAGCAAACAGTAG	MRPSHRTTLLASLLALACAVVLWLAYDWFQGRFLRTFSQHTAVFSGDPLRLPPDLAGPGAIRLVHFWDPACPCNVGNQQHLSELVEKYTPLGVAFYAVQKTGSLGRLPATLNSLKTLPALPGSEQIPASPAVAIWDRHGKLAYFGPYSEGLTCNSSNSFIEPILEALSTGRQVDATHTMAVGCYCPWAQDTSSKQ				NA	NA	NA	NA	NA
D1-36_04878	2409	quiP_2	COG2366	Acyl-homoserine lactone acylase QuiP	ATGAAACGGACCCTCGTTGCCTTCCTGTCACTGGTCGTCACCGCCGTTATCGTCGCGGGCGGCTACCTCTACAGCAAGCAGCCCACCCGCCAGGGCACGGTGCAGTTGCAAGGGCTGCAAGGCTCGGTGACGGTGCGCTACGACGAACGCGGCGTGCCGCATATTCGCGCCGAGAACGAAACCGACCTGTACCGTGCCCTCGGTTACGTCCACGCCCAGGATCGGCTGTTCCAGATGGAGATCATGCGGCGCCTCGCCCGGGGCGAGTTGGCCGAGATCCTCGGGCCCAAGTTGCTCGACACCGACAAGCTGATGCGCAGCCTGCGCATTCGCGAGCGCGCCGCCAGCTACGTCGCCGAGCAGGATCGACAGTCGCCGGCCTGGATCGCTACGCAAGCGTACCTGGACGGCATCAACGCCTATCAGCAAACCCACACGCGGCCGCTGGAGTTCGATGTGCTGGGCATTCCCAAGCGTCCCTTTACCGCTGAAGACACCGCCAGCATCGTCGGCTACATGGCCTACAGCTTCGCCGCGGCCTTTCGCACCGAACCCTTGCTGAGCTATGTGCGCGACGAACTCGGTGCCGAGTACCTGAAGATTTTCGACCTCGACTGGCAGCCCCAGGGCGTCCTGCCTCAGGATCCGGCAGGCGGCACGACATTGTCCGCCACTGACTGGAAAGACCTCAACGCCCTCGCCCGCCTGAGTGAGCAGGCCTTGGCCGACCATGGCCTGCCGCAGTTCGAAGGCAGCAACGCCTGGGCGGTCTCGGGCAACCGCACCCACAGCGGCAAGCCTTTGCTGGCGGGCGATCCGCATATCCGCTTTTCCACGCCGTCGGTGTGGTACGAAGCCCACCTGTCGGCGCTAGGTTTCGAACTCTACGGCCAGTATCAGGCCCTCATGCCGTTCGCCTCCCTGGGCATGAACAAGGATTTCGGCTGGAGCATCACCATGTTCCAGAACGACGACCTGGACCTGATCGCCGAGAAGATCAACCCGGACAACCCCGAACAGGTCTGGTACCGCGGCCAATGGGTGGACATGACCCGCAGCGAACAGCAGATCGCCGTCAAAGGCCAGGCGACGGTAACGCTGGTGTTGCGCCAGTCGCCCCACGGCCCGATCGTCAACGATGCCCTCGGCGCCAATGCGGGCAAGACGCCAATCGCCATGTGGTGGGGGTTCCTGGAAAGCCGCAATCCGATCCTCGAGGCGTTCTACCAGCTCAACCGCGCCGACACCTTGGTGAAGGCCCGCGGTGCGTCGGCCAATATCCATGCGCCGGGGCTAAACGTGGTCTGGGCCAATGCCAAGGGCGACATCGGCTGGTGGGCCGCGGCGCAATTGCCCAAGCGGCCGGCTGGCGTGAAACCCGGCTTCATTCTCGACGGCACCAGCGCCGAAGCGGAAAAAGACGGTTTCTACCCTTTCAGCAGCAATCCCCAGGAAGAGAACCCGGCCCGGGGCTACATCCTCTCAGCCAATTTCCAGCCGGTGGCGGCCAGCGGGATCGAGATCCCTGGCTACTACAACCTCGCCGACCGGGGTCAGCAACTCGACCGACAACTGAGCGACAAACAGGCCAAATGGGACATCCAGACCACCCAGAAACTGCAACTGGGCACCACCACCGCCTATGGCCCGCGCCTGCTTGCACCTTTGTTGCCGATCCTGCGCGAAGCGGTCAGCGACCCGCAGGAGCGCAAGTGGGTGGAACAACTGGCTGAGTGGAAGGGCGACTACCCGCTGGACTCCATCAGCGCCACGCTGTTCAACCAGTTCCTGTATGACCTGGCCAACACCGCCCTGCGGGACGAACTGGGCGACGGATTCTTCGAAACCGCGCTATCGACCCGTGTCATCGACGCCGCGCTGCCACGCCTGGCCGCCGAGAAAGACTCGCCGTGGTGGGACGACCGATCGACGCTGGGCACCGAAACCCGCGCCGACACGGTGATCAAAGCCTGGGACAAATCCCTGGCGCACTTGAGGGCGACGCTGGGGGCCGACCCCGCCCAATGGCGGTGGGGTCAGGCACACACCCTGACCCATGGGCATCCCTTGGGCCAGCAAAAGCCGCTGGACCGGGTCTTCAACGTTGGACCGTTCGCCGCACCCGGCACCCATGAAGTACCGAACAATCTCTCGGCCAAGATCGGACCAGCGCCCTGGCCCGTGACCTATGGCCCTTCCACCCGGCGCATCATTGACTTCGCCGACCCGGCCCACAGCGTCACCATCAACCCTGTCGGCCAGAGCGGCGTACCATTCGACAAGCACTACAAGGACCAGGCCGACGCCTATATCGAAGGGCTGTATCACCAGGCGCACCTGGCCGAGGAAGAAGTCACCGCCAACACCCACGGCACACTGAAACTGCTGCCCGCCAGGGCCGAGCCCTGA	MKRTLVAFLSLVVTAVIVAGGYLYSKQPTRQGTVQLQGLQGSVTVRYDERGVPHIRAENETDLYRALGYVHAQDRLFQMEIMRRLARGELAEILGPKLLDTDKLMRSLRIRERAASYVAEQDRQSPAWIATQAYLDGINAYQQTHTRPLEFDVLGIPKRPFTAEDTASIVGYMAYSFAAAFRTEPLLSYVRDELGAEYLKIFDLDWQPQGVLPQDPAGGTTLSATDWKDLNALARLSEQALADHGLPQFEGSNAWAVSGNRTHSGKPLLAGDPHIRFSTPSVWYEAHLSALGFELYGQYQALMPFASLGMNKDFGWSITMFQNDDLDLIAEKINPDNPEQVWYRGQWVDMTRSEQQIAVKGQATVTLVLRQSPHGPIVNDALGANAGKTPIAMWWGFLESRNPILEAFYQLNRADTLVKARGASANIHAPGLNVVWANAKGDIGWWAAAQLPKRPAGVKPGFILDGTSAEAEKDGFYPFSSNPQEENPARGYILSANFQPVAASGIEIPGYYNLADRGQQLDRQLSDKQAKWDIQTTQKLQLGTTTAYGPRLLAPLLPILREAVSDPQERKWVEQLAEWKGDYPLDSISATLFNQFLYDLANTALRDELGDGFFETALSTRVIDAALPRLAAEKDSPWWDDRSTLGTETRADTVIKAWDKSLAHLRATLGADPAQWRWGQAHTLTHGHPLGQQKPLDRVFNVGPFAAPGTHEVPNNLSAKIGPAPWPVTYGPSTRRIIDFADPAHSVTINPVGQSGVPFDKHYKDQADAYIEGLYHQAHLAEEEVTANTHGTLKLLPARAEP	PGPT0028075_1011	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
D1-36_04879	342			hypothetical protein	ATGTTCAATAACTGGTCCGAACTGCTGCCCACCATCAAGAGCGCCTTTGGCGCCCTGGGCAAAAGCAATCCGAAAATGGTCAAGGCCTACATGGCCCTGGATGAGGCTGCCGCCGAGAACAACGTGCTCGACGCCAAGACCCGTGAACTGATCTCCATCGCCGTGGCGATCACCACCCGATGTGACGGCTGCATCGGCGTACACACCGACGCCGCGATCAAGGCCGGCGCGACCCGCGAAGAAATCGCCGCCACCCTGGCAACGGCGGTCTCGCTGAATGCCGGAGCGGCTTATATCTATTCCCTGCGGGCGCTGGAGGCCCATGACGCACTGAAAAAATGA	MFNNWSELLPTIKSAFGALGKSNPKMVKAYMALDEAAAENNVLDAKTRELISIAVAITTRCDGCIGVHTDAAIKAGATREEIAATLATAVSLNAGAAYIYSLRALEAHDALKK				NA	NA	NA	NA	NA
D1-36_04880	966	cdhR_11	COG4977	HTH-type transcriptional regulator CdhR	ATGGAAAAAACCGTCGCCATCGTGGTGTTCACGGGCGTCCAGTCCCTGGACGTCAGCGGCCCCCTGGATGTGTTCTGCGAAGCCAATCGCTTTCTCGCCGCGCAGGATCACTATCGGCTGGAAGTGATCGGCGTCGAGCGCGGTGCGACGTCTTGCTCCAACGGCATGTCCCTCAATCCCCACCGCCATTTCAGCGCAGCGTCAGGGCCGTACGACCTGCTGCTGGTCGCGGGCGGGCCGCAATTGCCGTTCATGGACGTTGGCCCAGCGTTCAATGCCTGGCTGCGCGAAGCCTGCGCCCGGGCACGGCGCTTCGGTTCGATCTGCAATGGCGCGTTCATGCTCGCTCGGGCGGGATTGCTCCAGGGGCGGACCGTCACCACCCATTGGGGCGATGCTTCGGCGCTGGCGCAGCTGTGCCCCTCGACCCGGATCGAAGCCGATCGGCTGTACGTGCAGGACGGCGAGCTGTATACCTCGGCGGGCGTTACGGCGGGAATCGACCTGTCACTGTTTCTGCTGGCTCAGGACCATGGGCCGGAGGTGGCACTGAATGTCGCCAAGCGGCTGGTGGTGTTCACCCAGCGTTCAGGCGGTCAATCACAGTTCAGTCCGTTTCTCGCGCCCCATGCCGAGCCGACCTCCACCGTGGCCCAGGTCCAGGCGTACGTGCTGGCGAATCTCAACGGTGATCTGGGCATCGCCAACCTCGCCAGCGCGGCGAACATGAGCCCACGCAATTTCTCCCGCGTGTTCGCCCGGGAGGCGAAGGTCACGCCAGCCGAGTTCGTCGAACAGGCCCGGGTAGACGCGGCGCGCGTGATGCTGGAAAGCACTCGGGCACCGCTCAAGACCGTCGCTTACCAATGCGGCTTTCGCGATGCCCAACACATGCGCAGCGTCTTCAATCGGCGGTTGGGCGTGACGCCGCAACAGTTCAGGTTGAATTTTGCCGCGTTGCTTTAA	MEKTVAIVVFTGVQSLDVSGPLDVFCEANRFLAAQDHYRLEVIGVERGATSCSNGMSLNPHRHFSAASGPYDLLLVAGGPQLPFMDVGPAFNAWLREACARARRFGSICNGAFMLARAGLLQGRTVTTHWGDASALAQLCPSTRIEADRLYVQDGELYTSAGVTAGIDLSLFLLAQDHGPEVALNVAKRLVVFTQRSGGQSQFSPFLAPHAEPTSTVAQVQAYVLANLNGDLGIANLASAANMSPRNFSRVFAREAKVTPAEFVEQARVDAARVMLESTRAPLKTVAYQCGFRDAQHMRSVFNRRLGVTPQQFRLNFAALL				NA	NA	NA	NA	NA
D1-36_04881	639			hypothetical protein	ATGACCCGCATCGCCGGCATCCAGATTCCCGACAGCGCCCTCGCCCGGGCCACCACCGAATACATCCGCGACATTGAATCGGACCTGCTGTATCACCATTCCCGCCGGGTGTTCCTGTTCGGCGCCTTGAGCGGCCAGCGCCAGCAGTTGGCTTACGATCCGCAGCTGCTCTACGTCGGCGCGATGTTCCACGACCTCGGGTTGGTGGAAGGCTACCGCAGCGACGATGAGCGCTTCGAAGTGGACGGCGCGAATGCCGCCGCGGCCTTCCTCAAACCCTACGGGTTGAGCGATGACGACATCGAGCAAGTGTGGCTGTCGATCGCGCTGCACACCACGCCCGGCGTGCCGAAGCACCTGCGCCCCAACGTCGCCCTGGTGACCGCTGGCGTGGAAATGGACGTGCTGGGCATGGATTACGCCGCGTTCCCCGCCGCACAGCGCGACGCCGTGGTGCATGCGCATCCCCGGGGAGAAGGCTTCAAGGAGTGCATCATCTGCGCCTTCGCCGACGGCTTGCGGCATCGTCCACATACCACCTTCGGCAATGTGAAAACCGATGTGCTGAGGGATCAGGAGCCGGGGTTCAAGCCGATGAACTTCGTTGAAGTGATCCGCAGCTCGCCCTGGAATTCATAG	MTRIAGIQIPDSALARATTEYIRDIESDLLYHHSRRVFLFGALSGQRQQLAYDPQLLYVGAMFHDLGLVEGYRSDDERFEVDGANAAAAFLKPYGLSDDDIEQVWLSIALHTTPGVPKHLRPNVALVTAGVEMDVLGMDYAAFPAAQRDAVVHAHPRGEGFKECIICAFADGLRHRPHTTFGNVKTDVLRDQEPGFKPMNFVEVIRSSPWNS				NA	NA	NA	NA	NA
D1-36_04882	888	ydcV_4		Inner membrane ABC transporter permease protein YdcV	ATGAAGCGCTTCAGTTTTTCAAGCCTGATGCTGGTGGTGGGTCTGTTGTTCATCTACGCGCCGATGCTGATTCTGGTGATCTACTCGTTCAACGCCTCCAAACTGGTGACGGTGTGGGGCGGTTGGTCAGTCAAGTGGTACGTCGGCCTGCTGGACAACAGCCAGCTGATGGGCTCGGTGATGCGCTCGTTGGAAATCGCCTGCTACACGGCGATTGCCGCGGTGGCCCTGGGCACGCTGGCGGCCTTCGTGCTGACCCGCATCACCCACTTCAAGGGTCGGACGCTGTTCGGCGGCCTGGTCACCGCGCCATTGGTGATGCCGGAAGTGATCACCGGCCTGTCGCTGTTGCTGTTGTTCGTGGCCATGGCGCAAATGATCGGCTGGCCTCAGGAACGTGGCATCGTCACGATCTGGATCGCCCACACGACGTTCTGCGCGGCCTACGTGGCGGTGGTGGTCTCGGCGCGCTTGCGTGAGCTGGACCTGTCCATCGAAGAGGCGGCCATGGACCTCGGCGCGCGGCCGTGGAAGGTGTTCTTCCTGATCACCATTCCAATGATCGCGCCGTCGCTGGCGGCGGGCGGCATGATGTCGTTCGCGCTGTCCCTCGACGACCTGGTGCTGGCAAGCTTCGTCTCCGGCCCTGGCTCGACCACCTTGCCGATGGAAGTCTTCTCGGCGGTGCGCCTGGGGGTGAAACCGGAAATCAACGCCGTGGCGAGCCTGATCCTGCTGGCGGTGTCCCTGGTGACCTTCCTGGTCTGGTACTTCAGCCGCCGTGCCGAAGAAAACCGCAAGCGGGCGATCCAGCAAGCGATCGAGGAAAGCGCCGCCGATTCCTGGAAGCAACCGGAAGTACGCCGGGCGGAAACCGCTTCGGCCTAA	MKRFSFSSLMLVVGLLFIYAPMLILVIYSFNASKLVTVWGGWSVKWYVGLLDNSQLMGSVMRSLEIACYTAIAAVALGTLAAFVLTRITHFKGRTLFGGLVTAPLVMPEVITGLSLLLLFVAMAQMIGWPQERGIVTIWIAHTTFCAAYVAVVVSARLRELDLSIEEAAMDLGARPWKVFFLITIPMIAPSLAAGGMMSFALSLDDLVLASFVSGPGSTTLPMEVFSAVRLGVKPEINAVASLILLAVSLVTFLVWYFSRRAEENRKRAIQQAIEESAADSWKQPEVRRAETASA	PGPT0007815_107	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007815-potI-K11074	NA	NA
D1-36_04883	918	potH	COG1176	Putrescine transport system permease protein PotH	ATGAACATGCGCAAGTTCAAACGCCGTCTCGCCCGAATAACGCCCGGTGGCCGTCAGATGGTCATCGGGGTGCCCTTCATCTGGCTGTTCCTGTTCTTCATGCTGCCGTTCTTCATCGTCCTGAAGATCAGTTTCGCCGAAGCCGACGTGGCGATCCCGCCTTACACCGAAATCTACAGCTACATCGACCAGAAGCTGCAGGTGCTGCTCAACCTTGGCAACTATGTGATGCTCAGCGAGGATGAGCTGTACATCTCCGCCTATCTCGGCTCGCTGAAGATGGCGCTGATCAGCACCACGTTGTGCCTGCTGATCGGCTACCCCATGGCCTATGGCATCGCCAACGCCCGCAAAGAGATGCAGACGGTGCTGGTGCTGCTGATCATGATGCCGACCTGGACCGCGATCCTGATTCGCGTCTACGCGTGGATGGGTATCCTCAGCAACAACGGCTTGCTTAACGGCTTTCTGATGAGCATGGGTTGGATCAGCGAACCCCTGCAAATTCTCAACACCAACCTGGCGGTCTATATCGGCGTGGTCTATTCCTACCTGCCGTTCATGATCCTGCCGCTCTACGCCAACCTGGTAAAGCATGATGCCAGCCTGCTGGAAGCCGCGTCGGACCTGGGTTCGAGCACCTTCAACAGCTTCTGGAAGATCACCGTGCCGCTGTCCAAGAACGGCATCATCGCCGGCTGCATGCTGGTGTTCATCCCGGTGGTGGGCGAGTTCGTGATTCCGGAACTGCTGGGCGGCCCGGAAACGCTAATGATCGGCAAAGTGCTGTGGCAGGAATTCTTCAATAATCGAGACTGGCCGGTGGCATCCGCTTTGGCGGTGGTGATGCTGGCGATCCTGATCGTGCCCATCATCCTGTTCAACCGCAGTCAGGCCAAAGAAATGGAGGGCAAGTAA	MNMRKFKRRLARITPGGRQMVIGVPFIWLFLFFMLPFFIVLKISFAEADVAIPPYTEIYSYIDQKLQVLLNLGNYVMLSEDELYISAYLGSLKMALISTTLCLLIGYPMAYGIANARKEMQTVLVLLIMMPTWTAILIRVYAWMGILSNNGLLNGFLMSMGWISEPLQILNTNLAVYIGVVYSYLPFMILPLYANLVKHDASLLEAASDLGSSTFNSFWKITVPLSKNGIIAGCMLVFIPVVGEFVIPELLGGPETLMIGKVLWQEFFNNRDWPVASALAVVMLAILIVPIILFNRSQAKEMEGK	PGPT0007820_581	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007820-potH-K11075	NA	NA
D1-36_04884	1143	potA_3	COG3842	Spermidine/putrescine import ATP-binding protein PotA	ATGGCAGTTGCCTCCGGCGCCTATAAGAAAGCCCTCGAGGGCGACCAGACACCCAAGCAGGTGCTGGTCAAGATCGACCGGGTCACGAAGAAGTTCGACGAGACGATTGCCGTGGACGACGTGTCCCTGGAAATCAAGAAAGGCGAGATCTTTGCCTTGCTCGGCGGTTCGGGATCGGGCAAATCCACTTTGCTGCGCATGCTGGCAGGCTTCGAGCGGCCCACGGAGGGGCGGATTTTCCTCGATGGCGTGGACATCACCGACCTGCCGCCCTACGAGCGGCCGATCAACATGATGTTCCAGTCCTACGCCTTGTTCCCCCACATGACCGTGGCACAGAACATCGCCTTCGGCCTGCAACAGGACAAGATCCCGAAAGCCGAGATCGACGCCCGCGTGGCTGAAATGCTCAAGCTGGTGCAGATGAGCCAGTACGCCAAGCGCAAGCCGCACCAACTCTCTGGTGGCCAGCGCCAGCGCGTGGCCCTGGCCCGATCCCTGGCCAAGCGGCCCAAACTCTTGCTGCTCGACGAGCCAATGGGCGCTCTGGACAAGAAGCTGCGCTCGCAGATGCAACTTGAGCTGGTGGAGATCATCGAGCGGGTCGGCGTGACTTGCGTGATGGTGACTCACGACCAGGAAGAGGCCATGACGATGGCCGAGCGCATTGCGATCATGCACCTGGGATGGATCGCCCAGATCGGCAGCCCGATCGATATCTACGAGACCCCGACCAGCCGCCTGGTCTGTGAATTCATCGGCAACGTCAACATCTTCGAGACCGAAGTGGTGGACGACGCCGAGGGCCACGCGGTGCTGACGTGCAAGGACCTGGACCGCAACATTTACGTCGGCCACGGCATCAGCACCTCGGTGCAGGACAAGTCCGTCACCTACGCCATCCGCCCGGAAAAACTCTTGGTCACGCCCGAGCAGCCAACCTGCGAGCACAACTGGTCCAGTGGCAAGGTCCATGACATCGCCTACCTGGGCGGCCACTCGGTGTTTTACGTCGAGCTGCCGAGTGGCAAGCTGGTGCAGTCGTTCGTCGCCAACGCCGAACGCCGAGGCCAGCGTCCGACCTGGGGCGACCAGGTATTCGTCTGGTGGGAAGACGACAGCGGCGTGGTGCTTCGCTCATGA	MAVASGAYKKALEGDQTPKQVLVKIDRVTKKFDETIAVDDVSLEIKKGEIFALLGGSGSGKSTLLRMLAGFERPTEGRIFLDGVDITDLPPYERPINMMFQSYALFPHMTVAQNIAFGLQQDKIPKAEIDARVAEMLKLVQMSQYAKRKPHQLSGGQRQRVALARSLAKRPKLLLLDEPMGALDKKLRSQMQLELVEIIERVGVTCVMVTHDQEEAMTMAERIAIMHLGWIAQIGSPIDIYETPTSRLVCEFIGNVNIFETEVVDDAEGHAVLTCKDLDRNIYVGHGISTSVQDKSVTYAIRPEKLLVTPEQPTCEHNWSSGKVHDIAYLGGHSVFYVELPSGKLVQSFVANAERRGQRPTWGDQVFVWWEDDSGVVLRS	PGPT0007810_490	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007810-potG-K11076	NA	NA
D1-36_04885	1098	spuE	COG0687	Spermidine-binding periplasmic protein SpuE	GTGCCTGTCTTTTCTTTGTTGCGCAACGCCTTGCTGGTCGGTGCTGGCCTGACACTCGCTGTCAGTGCCCAAGCGGCTTCCATCGTGCATATTTATAACTGGTCGGACTACATCGGCGAATCCACCCTGGCGGACTTCGAGAAAGCCACCGGGATCAAGCCGGTCTACGATGTGTTCGATTCCAACGAAACCCTGGAAGGCAAGTTGCTGGCCGGTCGCACCGGTTACGACGTGGTCGTGCCGTCCAACCATTTCCTGGGCAAGCAGATCAAGGCCGGGGCGTTCCAGAAGCTCGACAAATCGCAGCTGCCGAACTACGCCAACCTCGATCCTTCGCTGCTCAAGCGTCTGGAAAAAAACGACTCGGGCAATCAATACGCCGTGCCTTACCTGTGGGGCACCAACGGCATCGGCTATAACGTCGAGAAGATCAAGGCGGTACTGGGTGTCGAAAAAATCGACTCGTGGGCCATGCTGTTTGAACCGGAAAACATCAAGAAGCTGTCCAGCTGCGGCGTTTCGTTCCTCGACTCGGGCGACGAGATGATCCCGGCGATGCTCAACTACCTGGGCCTGGACCCCAACAGCCAGAACCCCGAAGACTACAAGAAGGCCGAGGCCCAGCTCCTCAAGATCCGGCCTTACGTGACCTACTTCAACTCCTCCAAGTACATCTCGGACCTGGCCAACGGCAACATCTGCGTGGCTGCCGGATTCTCCGGCGATATTTTCCAGGCCCGTGAACGTGCCAGCGAGGCCGGCAAGGGCGTCGAAATCGCCTACGTGATTCCCAAGGAAGGCGGCAACCTCTGGTTCGACATGCTGGCAATCCCACGCGACGCCGCCAACGTCAAGGAGGCCCACGCGTTCATGAACTATCTGCTCAAGCCTGAGGTCATCGCCCAGGTGAGCGACTACGTCGGTTATGCCAACCCGAACCCCAAGGCTGGCGAACTGATGGACCAGGAAGTGCGCACCGACGAAGCGGTTTATCCCCCGCAGGAGGTTGTCGACAAGCTCTACGTCAACTCCGAGTTGCCGCCCAAGATCCAACGACTCATGACCCGCAGCTGGACCAAGGTCAAGTCGGGTAAATAG	MPVFSLLRNALLVGAGLTLAVSAQAASIVHIYNWSDYIGESTLADFEKATGIKPVYDVFDSNETLEGKLLAGRTGYDVVVPSNHFLGKQIKAGAFQKLDKSQLPNYANLDPSLLKRLEKNDSGNQYAVPYLWGTNGIGYNVEKIKAVLGVEKIDSWAMLFEPENIKKLSSCGVSFLDSGDEMIPAMLNYLGLDPNSQNPEDYKKAEAQLLKIRPYVTYFNSSKYISDLANGNICVAAGFSGDIFQARERASEAGKGVEIAYVIPKEGGNLWFDMLAIPRDAANVKEAHAFMNYLLKPEVIAQVSDYVGYANPNPKAGELMDQEVRTDEAVYPPQEVVDKLYVNSELPPKIQRLMTRSWTKVKSGK	PGPT0007805_1116	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007805-potF-K11073	NA	NA
D1-36_04886	1128	spuD_1	COG0687	Putrescine-binding periplasmic protein SpuD	ATGAAGGCATTAGGCATGAAGACATTAGGTATGAAGTTAGCTGGCAAGACCCTCCTCGCCATGTCCCTGATGGGCGTGATGGCGGGCGCCGTCCAGGCGGACGACAAGGTGCTGCACGTCTATAACTGGTCCGACTACATCGCGCCGGACACGGTCGCCAAGTTCGAGAAGGAAACGGGGATCAAGGTCGTCTACGACGTATTCGACAGTAACGAGACGCTGGAAGCCAAGTTGCTGGCCGGCAAATCCGGCTATGACGTCGTGGTGCCGTCGAACAACTTCCTCGCCAAGCAGATCAAGGCCGGCGTCTACCAGGAGCTGGACAAGTCCAAGCTGCCGAACTGGAAGAACCTGGACCCCGACCTGCTCAAGGCCGTCGGCGATGCCAGCGACCAGGGCAACAAGCACGCGTTTCCGTACATGTGGGGCACCATCGGCATCGGGTACAACCCCGAGAAGGTCAAGGCCGCGTTGGGCGTCGACAAGATCGACTCCTGGGACGTGCTGCTCAAGCCCGAGAACATTGCCAAGCTCAAGAGCTGCGGCGTGAGCTTCCTCGATTCGCCAACCGAAATGATTCCCGTGGCTCTGCATTACCTCGGCTACCCGACCGACAGCCAGGACAAGAAGCAACTGGCCGAAGCCGAAGCACTGTTCCTCAAGCTGCGCCCATCGATCGGTTACTTCCACTCTTCCAAGTACATTTCGGACCTGGCCAACGGCAACATCTGCGTGGCCGTGGGTTACTCGGGTGATATCGAGCAATCCAAGAGCCGTGCGGCTGAAGCTGGCGGCAAGGTGAAAGTGGCCTACACCATTCCGAAGGAAGGTGCCGGTTCGTTCTACGACATGGTCGCCATTCCAAAAGATGCCGAAAACGTCGAAGCCGCCTACAAGTGGATGAACTTCATCATGCAGCCGGAAATCATGGCTGAGATCACCGACAACGTGCGTTTCCCTAACGGCAACAAGGCCGCCACCGCGCTGGTGGACAAGGAAATCTCCGGTGACCCGAGCATCTACCCATCGGACGAAGTGAAGGCCAAGCTGTACGCCATCGCCGACCTGCCGTCGGCGACCCAGCGGATCCTGACCCGCAGCTGGACCAAGATCAAATCCGGCAAATAA	MKALGMKTLGMKLAGKTLLAMSLMGVMAGAVQADDKVLHVYNWSDYIAPDTVAKFEKETGIKVVYDVFDSNETLEAKLLAGKSGYDVVVPSNNFLAKQIKAGVYQELDKSKLPNWKNLDPDLLKAVGDASDQGNKHAFPYMWGTIGIGYNPEKVKAALGVDKIDSWDVLLKPENIAKLKSCGVSFLDSPTEMIPVALHYLGYPTDSQDKKQLAEAEALFLKLRPSIGYFHSSKYISDLANGNICVAVGYSGDIEQSKSRAAEAGGKVKVAYTIPKEGAGSFYDMVAIPKDAENVEAAYKWMNFIMQPEIMAEITDNVRFPNGNKAATALVDKEISGDPSIYPSDEVKAKLYAIADLPSATQRILTRSWTKIKSGK	PGPT0007805_1157	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007805-potF-K11073	NA	NA
D1-36_04887	1365	spuC_3	COG0161	Putrescine--pyruvate aminotransferase	ATGACCCGCAACAACCCGCAAACTCGCGAATGGCAGGCTCTTAGCAGCGATCATCACCTGGCACCGTTCAGCGACTTCAAGCAACTGAAAGAGAAAGGCCCGCGCATCATCACCCACGCCAAGGGCGTGTACCTCTGGGACAGTGAAGGCAACAAGATTCTCGACGGCATGGCCGGCCTCTGGTGTGTGGCCGTTGGTTACGGTCGCGATGAACTGGCGGACGCCGCCAGCCAACAGATGCGTGAGCTGCCGTACTACAACCTCTTCTTCCAGACCGCTCACCCGCCCGTGCTGGAATTGTCCAAGGCCATCGCCGATATCGCGCCGCAAGGCATGAACCACGTGTTCTTCACCGGCTCTGGCTCCGAAGGCAACGACACCATGTTGCGCATGGTCCGCCACTACTGGGCGATCAAGGGCCAGCCGAGCAAGAAAGTCATCATCAGTCGCAAGAACGGTTATCACGGTTCGACCGTGGCCGGCGCGAGCCTGGGCGGCATGACTTACATGCACGAGCAAGGCGACCTGCCGATCCCGGGCATCGTCCACATCGCCCAACCGTACTGGTTCGGTGAAGGCGGCGACATGAGCCCTGAAGAGTTCGGCATCTGGGCGGCCAATCAGCTGGAAGAAAAAATCCTCGAGATCGGCGTGGATAACGTCGGTGCGTTCATCGCCGAGCCGATCCAGGGCGCCGGTGGCGTGATCGTGCCGCCGGACAGCTACTGGCCGCGCATGAAGGAAATCCTCGCCAAGTACGACATCCTCTTCGTGGCCGACGAGGTCATCTGTGGTTTCGGGCGCACCGGCGAGTGGTTCGGTACCGACCATTACGGGTTGAAACCACACATGATGACCATCGCCAAGGGCCTGACCTCCGGCTACATCCCCATGGGTGGCCTGATCGTGCGCGACGACGTGGTCGCGGTGCTCAACGAAGGCGGCGACTTCAACCACGGGTTCACCTACTCCGGCCATCCGGTGGCTGCGGCAGTGGCCCTGGAAAATATCAGGATCCTGCGCGACGAGAAGATCATCGAGCGTGTCCACGGCGAGACGGCACCCTATTTGCAGCAACGTCTGCGGGAACTGAACGATCATCCGCTGGTGGGTGAAGTGCGCGGCGTCGGTTTGCTGGGGGCGATCGAGCTGGTCCAGGACAAGGCCACGCGCAAGCGTTACGAAGGCAAGGGCGTGGGCATGATCTGCCGGCAGTTCTGCTTCGATAATGGGCTGATCATGCGCGCCGTGGGCGACACCATGATCATTGCGCCACCGCTGGTGATCAGCAAGGCCGAGATCGACGAACTGGTGGCCAAGGCGCGGCAATGCCTGGACCTGACGCTCAGTGCGTTGCAGGGCTAA	MTRNNPQTREWQALSSDHHLAPFSDFKQLKEKGPRIITHAKGVYLWDSEGNKILDGMAGLWCVAVGYGRDELADAASQQMRELPYYNLFFQTAHPPVLELSKAIADIAPQGMNHVFFTGSGSEGNDTMLRMVRHYWAIKGQPSKKVIISRKNGYHGSTVAGASLGGMTYMHEQGDLPIPGIVHIAQPYWFGEGGDMSPEEFGIWAANQLEEKILEIGVDNVGAFIAEPIQGAGGVIVPPDSYWPRMKEILAKYDILFVADEVICGFGRTGEWFGTDHYGLKPHMMTIAKGLTSGYIPMGGLIVRDDVVAVLNEGGDFNHGFTYSGHPVAAAVALENIRILRDEKIIERVHGETAPYLQQRLRELNDHPLVGEVRGVGLLGAIELVQDKATRKRYEGKGVGMICRQFCFDNGLIMRAVGDTMIIAPPLVISKAEIDELVAKARQCLDLTLSALQG	PGPT0007865_729	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007865-spuC-K12256	NA	NA
D1-36_04888	1359	puuA_2	COG0174	Gamma-glutamylputrescine synthetase PuuA	ATGAGTAACAACCTCGACCAGCTCACCGATTGGTTGAAAGACCACAAGATCACAGAAGTCGAATGCATGATTGGCGACCTGACCGGCATCACCCGGGGCAAGATTTCGCCGACCAACAAGTTCATTGCCGAAAAAGGCATGCGCCTGCCCGAGAGCGTCCTGCTCCAGACCGTAACGGGCGACTATGTCGAAGACGACATCTATTACGAACTGCTCGACCCTGCCGACATCGACATGATGTGCCGCCCGGACGAAAACGCAGTCTTCCTGGTGCCCTGGGCCATCGAGCCCACCGCTCAAGTGATCCATGACTCCTACGACAAGCAGGGCAACCCCATCGAGCTGTCGCCCCGCAACGTATTGAAGAAGGTGCTCAAGCTCTACGCGGACAAGGGCTGGCAGCCGATTGTCGCGCCGGAGATGGAGTTCTACCTGACCAAGCGCAGCGACGACCCGGACTTTCCGCTGCAACCACCGATCGGCCGCTCCGGCCGGCCGGAAACCGGTCGCCAGTCGTTCTCGATCGAAGCGGCCAACGAATTCGACCCGCTGTTCGAAGACGTCTATGACTGGTGCGAATTGCAGGAGTTGGACCTCGACACGCTGATCCACGAGGACGGCACCGCGCAGATGGAAATCAATTTCCGTCACGGCGATGCGCTGTCCCTGGCCGACCAGATCCTGGTGTTCAAACGCACCATGCGCGAGGCCGCGCTCAAGCACGACGTGGCCGCCACGTTCATGGCCAAGCCCATGACCGGCGAGCCGGGCAGCGCCATGCACCTGCACCAGAGCATTATCGACAAGGAAACAGGCAAGAACGTCTTCTCCAATGAAGACGGGACCATGAGCGATCTGTTCCTGCACCACATCGGTGGCCTGCAGAAATTCATCCCTGAGCTGTTGCCGCTGTTTGCACCCAACGTCAACTCGTTCCGCCGCTTCCTGCCCGACACCTCGGCGCCGGTGAACGTGGAGTGGGGCGAAGAGAACCGCACCGTGGGCCTGCGGGTGCCGGATGCCGGGCCGCAGAACCGTCGGGTGGAAAACCGCCTGCCGGGCGCCGACGCCAACCCGTACCTGGCGATTGCCGCCAGCCTGCTGTGCGGCTACATCGGCATGGTCGAAGGCATCAACCCGAGCGCGCCGGTGGTGGGTCGAGGGTATGAGCGCCGCAACCTGCGCCTGCCGCTGACCATCGAAGACGCCCTGGAACGCATGGAGAACAGCACCACCATCGAGAAGTACCTGGGCAAGAAATTCATCACGGGCTACGTCGCGGTCAAACGGGCCGAGCATGAAAACTTCAAGCGCGTCATCAGTTCGTGGGAGCGGGAATTCCTGCTCTTTGCCGTCTGA	MSNNLDQLTDWLKDHKITEVECMIGDLTGITRGKISPTNKFIAEKGMRLPESVLLQTVTGDYVEDDIYYELLDPADIDMMCRPDENAVFLVPWAIEPTAQVIHDSYDKQGNPIELSPRNVLKKVLKLYADKGWQPIVAPEMEFYLTKRSDDPDFPLQPPIGRSGRPETGRQSFSIEAANEFDPLFEDVYDWCELQELDLDTLIHEDGTAQMEINFRHGDALSLADQILVFKRTMREAALKHDVAATFMAKPMTGEPGSAMHLHQSIIDKETGKNVFSNEDGTMSDLFLHHIGGLQKFIPELLPLFAPNVNSFRRFLPDTSAPVNVEWGEENRTVGLRVPDAGPQNRRVENRLPGADANPYLAIAASLLCGYIGMVEGINPSAPVVGRGYERRNLRLPLTIEDALERMENSTTIEKYLGKKFITGYVAVKRAEHENFKRVISSWEREFLLFAV	PGPT0000645_6271	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
D1-36_04889	777	puuD_2	COG2071	Gamma-glutamyl-gamma-aminobutyrate hydrolase PuuD	ATGTCTCGCCTGCCGTTAATCGGCGTCACCACCTGCTCCAGGCAGATCGGTTTGCATGCGTATCACACCACTGGCGACAAATATGCCCGGGCTGTCGCAACAGCCGCCAAGGGTTTGCCAGTGCTGATTCCCTCCCTGGCGGATCTGTTCGCACCGTCCGATATTCTGGACGCCCTGGACGGTATTCTTTTTACCGGCTCTCCTTCCAATGTAGAACCTTTTCACTATCAAGGCCCGGCTAGCGCGCCAGGCACTGCCCATGATCCTGCACGGGATGCCATTACCCTTCCACTGATACGCGCTGCCGTCGATGCGGGCGTTCCGGTGCTGGGCATCTGTCGGGGTTTCCAGGAGGTGAACGTAGCCTTTGGCGGCAGCCTGCATCAGAAAGTTCATGAAGTCGGAACCTTCATCGATCATCGTGAAGACGACACCCAGCCGGTGGACATTCAATACGGCCCCGCCCATGCCGTGCATGTCCAGCCAGGCGGGGTCCTCGCGGCCCTGGGCCTGCCGCCGAACATTGAGGTCAACTCGATTCACAGCCAGGGCATCGAGCGCCTGGCACCGGGGCTGCGGGTTGAAGCGCTGGCGCCGGATGGCCTGATCGAAGCCGTCTCGGTTGTACAAGGCAAGGCTTTTGCTTTAGGTGTGCAATGGCACCCGGAATGGGCGGTAGGCTCTAATCCGAACTATCTTGCGATTTTCCAGGCATTTGGCGATGCCTGCCGAGCAAGGGCAACACAACGCGACGCCGATGCGTCAAACAACGCCTGA	MSRLPLIGVTTCSRQIGLHAYHTTGDKYARAVATAAKGLPVLIPSLADLFAPSDILDALDGILFTGSPSNVEPFHYQGPASAPGTAHDPARDAITLPLIRAAVDAGVPVLGICRGFQEVNVAFGGSLHQKVHEVGTFIDHREDDTQPVDIQYGPAHAVHVQPGGVLAALGLPPNIEVNSIHSQGIERLAPGLRVEALAPDGLIEAVSVVQGKAFALGVQWHPEWAVGSNPNYLAIFQAFGDACRARATQRDADASNNA	PGPT0007640_56	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINE_USAGE	PLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007640-puuD-K09473	NA	NA
D1-36_04891	1377	puuA_3	COG0174	Gamma-glutamylputrescine synthetase PuuA	ATGTCGGTACCCCCGCGTGCCGTTCAGCTTAACGAAGCGAACGCGTTCCTTAAGGAACATCCTGAGGTTCTGTACGTTGACCTTCTGATTGCGGATATGAATGGTGTGGTGCGCGGCAAGCGCATCGAACGCACCAGCCTCCACAAGGTTTACGAGAAAGGCATCAACCTGCCGGCCTCTCTATTTGCCCTGGATATCAACGGCTCGACGGTGGAAAGCACCGGCCTGGGCCTGGACATCGGCGATGCGGACCGCATCTGCTATCCCATCCCCGGCACCCTGAGCAATGAACCCTGGCAGAAGCGCCCGACCGCGCAACTGCTGATGACCATGCACGAACTCGAAGGCGACCCGTTCTTCGCCGACCCTCGGGAAGTCTTGCGCCAGGTCGTGACCAAGTTCGACGAATTGGGCCTGACCATTTGCGCGGCATTCGAGCTGGAGTTCTACCTGATCGACCAGGAGAACGTGAACGGCCGTCCGCAACCACCCCGCTCACCGATCTCCGGCAAACGCCCGCATTCGACCCAGGTCTACCTGATCGATGACCTGGACGAATACGTCGATTGCCTCCAGGACATCCTCGAAGGGGCCAAGGAGCAAGGCATTCCCGCCGACGCCATCGTCAAGGAAAGCGCCCCGGCGCAGTTCGAAGTGAACCTGCACCACGTGGCCGACCCGATCAAGGCCTGCGACTACGCGGTACTGCTCAAGCGCCTGATCAAGAACATTGCCTACGACCATGAAATGGACACCACCTTCATGGCCAAGCCGTATCCGGGCCAGGCGGGCAACGGCCTGCATGTCCACATCTCGATCCTGGACAAAGACGGCAAGAATATCTTTGCCAGCGAGGATCCCGAGCAGAACGCCGCGCTGCGTCACGCGATCGGCGGTGTGCTCGAGACCCTGCCCGCGCAGATGGCTTTCCTCTGCCCGAACGTCAACTCCTATCGTCGTTTCGGCGCGCAATTCTACGTGCCGAACTCGCCGTCCTGGGGCCTGGACAACCGCACCGTGGCCTTGCGCGTGCCGACCGGCTCAGCCGATGCCGTGCGCCTGGAACACCGGGTTGCCGGCGCCGACGCCAACCCGTACCTGCTGATGGCCTCCGTGCTGGCGGGCGTTCACCACGGCCTCGTCAACAAGATCGAGCCCGGCGCGCCGGTCGAAGGCAACAGCTACGAGCAGAACGAGCAGAGCCTGCCGAACAACCTGCGCGATGCCTTGCGCGAACTTGACGACAGCGAAGTCATGGCCAAGTACATCGACCCGAAATACATCGATATCTTCGTGGCCTGCAAGGAAAGTGAGCTGGAAGAGTTCGAACATTCCATCTCCGACCTTGAATACAACTGGTACCTGCATACCGTGTAA	MSVPPRAVQLNEANAFLKEHPEVLYVDLLIADMNGVVRGKRIERTSLHKVYEKGINLPASLFALDINGSTVESTGLGLDIGDADRICYPIPGTLSNEPWQKRPTAQLLMTMHELEGDPFFADPREVLRQVVTKFDELGLTICAAFELEFYLIDQENVNGRPQPPRSPISGKRPHSTQVYLIDDLDEYVDCLQDILEGAKEQGIPADAIVKESAPAQFEVNLHHVADPIKACDYAVLLKRLIKNIAYDHEMDTTFMAKPYPGQAGNGLHVHISILDKDGKNIFASEDPEQNAALRHAIGGVLETLPAQMAFLCPNVNSYRRFGAQFYVPNSPSWGLDNRTVALRVPTGSADAVRLEHRVAGADANPYLLMASVLAGVHHGLVNKIEPGAPVEGNSYEQNEQSLPNNLRDALRELDDSEVMAKYIDPKYIDIFVACKESELEEFEHSISDLEYNWYLHTV	PGPT0000645_5086	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
D1-36_04892	633			hypothetical protein	ATGACGCGCATCGCCACCCCTCGCAAACCTCGCGCACGCAGCCAGGCCCGGATCGACTCGATCCTCGATGCCGCCCGTACGCTGCTTGCCGCCGAAGGCGTGGCCAGCCTGTCGATCTACAGCGTCGCCGAACGCGCGGGGATCCCGCCCTCCTCCGTCTACCACTTCTTTGCCAGCGTCCCGGCACTGCTCGAAGCCCTGACTGCCGACGTTCACGCCGCCTTTCGCGCCTGCCTGCAAGCACCGATCGACCATGGCGCGCTGAACCATTGGCACGACCTGTCGCGGCTGGTGGAACAACGGATGCTGGTGATCTACAGCGAGGACGCCGCCGCTCGGCAACTGATCCTGGCCCAGCATGGCCTCACCGAAGTCACCCAGGCTGACCGCCAGCACGACCTGGAACTGGGCGCGTTGATGCACACCGTGTTCGCCCGGCATTTCGAGCTGCCGACGCTCCCCTCCGACGTCGACGTATTCGCCCTGGCCATGGAATTGGGCGACCGCGTCTATGCCCGCTCGGTCCAGCAACAGGGCCAGATCACTCCGCGAATGGCTGAAGAAGGCATGCGTGTGTTTGACGCGTACCTGGGGCTGTATCTGCCACCGTATCTGCCCAAGCGCCCTGATTGA	MTRIATPRKPRARSQARIDSILDAARTLLAAEGVASLSIYSVAERAGIPPSSVYHFFASVPALLEALTADVHAAFRACLQAPIDHGALNHWHDLSRLVEQRMLVIYSEDAAARQLILAQHGLTEVTQADRQHDLELGALMHTVFARHFELPTLPSDVDVFALAMELGDRVYARSVQQQGQITPRMAEEGMRVFDAYLGLYLPPYLPKRPD				NA	NA	NA	NA	NA
D1-36_04893	216			hypothetical protein	ATGACCATCAAAGCCATCAACGTACGCAACCAGTTCAAAGGCACCATCAAGGAAATCGTCGAAGGCGACGTGCTGTCGGAAATCGATGTGCAGACCGCTTCGGGCATCGTCACGTCGGTCATCACCACGCGTTCGGTCAAGGAGTTGGAGTTGGCGATCGGCAGCGAAGTGATTGCCTTCGTCAAATCCACCGAGGTGTCGATCGCCAAGTTGTGA	MTIKAINVRNQFKGTIKEIVEGDVLSEIDVQTASGIVTSVITTRSVKELELAIGSEVIAFVKSTEVSIAKL				NA	NA	NA	NA	NA
D1-36_04894	807	ssuB	COG1116	Aliphatic sulfonates import ATP-binding protein SsuB	ATGACCGCCCAACAACCACCGCGCCTGCTGCGAGGCATTCCGCTGGCGGTGCGCAATCTTCAGAAGACGTTTGGCTCGCGACAGGTATTGCGTGACATCGACCTGCATATCCCGGCTGGGCAGTTCGTCGCGGTAGTGGGGCGCAGTGGCTGCGGTAAAAGCACCTTGCTGCGTTTGTTGGCCGGGTTGGATCAGCCCTCGGGCGGCCAGTTGCTGGCCGGCTCGGCAGCGCTGAGCGCCGCGCGAGAAGACACTCGGCTGATGTTCCAGGAAGCGCGTCTGCTGCCTTGGAAGAAGATCATCGACAACGTCGGCCTTGGCCTGAAGGGCAACTGGCGGCCACAAGCCTTGCAGGCGCTCGATGCCGTAGGCCTGGCGGATCGTGCCCATGAATGGCCGGCGGCGTTGTCCGGCGGCCAGAAGCAACGGGTGGCGTTGGCTCGCGCGCTGATCCATCAACCGCGCCTGTTGTTGCTGGACGAGCCCTTGGGCGCGCTCGATGCCTTGACCCGGATAGAAATGCAGCAACTGATCGAGCGTCTGTGGCAGCAACACGGCTTTACCGTGCTGCTGGTGACCCATGACGTCAGCGAAGCAGTGGCGATTGCCGATCGGGTCATCCTGATCGAGGACGGCCAGATCGGTCTCGACCTGGCCATCGACCTGCCACGCCCCCGTGCTCGCGGCTCGCATCGCCTGGCGAGCCTGGAAACCGAAGTCCTCAACCGTGTGCTGTCCTTGCCCGGCCAACCGCCGGAACCCGAACCCGTTTCACCCTTGCCCACGCAGTTGCGTTGGGCGCAATAA	MTAQQPPRLLRGIPLAVRNLQKTFGSRQVLRDIDLHIPAGQFVAVVGRSGCGKSTLLRLLAGLDQPSGGQLLAGSAALSAAREDTRLMFQEARLLPWKKIIDNVGLGLKGNWRPQALQALDAVGLADRAHEWPAALSGGQKQRVALARALIHQPRLLLLDEPLGALDALTRIEMQQLIERLWQQHGFTVLLVTHDVSEAVAIADRVILIEDGQIGLDLAIDLPRPRARGSHRLASLETEVLNRVLSLPGQPPEPEPVSPLPTQLRWAQ	PGPT0003035_673	DIRECT EFFECT	BIO-FERTILIZATION	SULFUR_ASSIMILATION|MINERALIZATION	S-ASSSIMILATION-SULFUR_METABOLISM	S-METABOLISM-ALKANESULFONATE_TRANSPORT,PGPT0003035-ssuC-K15555	NA	NA
D1-36_04895	783	ssuC_3	COG0600	Putative aliphatic sulfonates transport permease protein SsuC	ATGAAGAAAGTTATCCACAACCTGGCGCCGTGGGCGGTGCCGCTGCTGTTATTGGCGGTGTGGCAATTGTCGGTATCGGCCGGCTGGCTCTCCACGCGGATCCTGCCGGCGCCAGTGGCAGTGATCGAGGCTGGCGTGAGCCTGGTGCGCAGCGGCGAGATCTGGACTCACCTGGCGATCAGCGGTTGGCGCGCGGCGGTCGGCTTCCTGATCGGCGGCGGCATCGGCCTCGCGCTGGGCTTTATCACCGGCCTGTCGAAGTGGGGCGAGCGGCTGCTGGACAGCTCTGTGCAGATGGTGCGGAACGTGCCGCACCTGGCATTGATTCCGCTGGTGATCCTGTGGTTCGGCATCGACGAGTCGGCGAAGATTTTCCTGGTGGCGCTGGGCACGCTGTTTCCCATCTACCTCAACACTTACCACGGGATCCGTAACGTCGACCCGGCGCTGGTGGAAATGTCCCGCAGCTACGGCTTGTCCGGTTTCAGCCTGTTTCGCCAGGTGATCCTGCCGGGCGCCTTGCCTTCGATCCTCGTGGGTGTGCGTTTCGCCCTGGGCTTCATGTGGTTGACGCTGATCGTGGCGGAAACCATCTCGGCCAGTTCCGGCATCGGTTACCTGGCGATGAATGCCCGGGAATTCTTGCAAACCGATGTGGTGGTGCTGGCGATTCTTCTGTACGCCGTGCTTGGCAAGCTGGCTGACCTCGCCGCCCGTGGCCTTGAACGGGTCTGGCTGCGCTGGCATCCGGCCTACCAAGTGAACAAGGGAGGTGTCGCATGA	MKKVIHNLAPWAVPLLLLAVWQLSVSAGWLSTRILPAPVAVIEAGVSLVRSGEIWTHLAISGWRAAVGFLIGGGIGLALGFITGLSKWGERLLDSSVQMVRNVPHLALIPLVILWFGIDESAKIFLVALGTLFPIYLNTYHGIRNVDPALVEMSRSYGLSGFSLFRQVILPGALPSILVGVRFALGFMWLTLIVAETISASSGIGYLAMNAREFLQTDVVVLAILLYAVLGKLADLAARGLERVWLRWHPAYQVNKGGVA	PGPT0003030_1923	DIRECT EFFECT	BIO-FERTILIZATION	SULFUR_ASSIMILATION|MINERALIZATION	S-ASSSIMILATION-SULFUR_METABOLISM	S-METABOLISM-ALKANESULFONATE_TRANSPORT,PGPT0003030-ssuB-K15554	NA	NA
D1-36_04896	1149	ssuD	COG2141	Alkanesulfonate monooxygenase	ATGAGCCTTAATATTTTCTGGTTCCTGCCCACCCACGGCGACGGCCATTACCTTGGCACCGCTGAAGGCGCCCGCGCCGTCGATCATGGTTACTTGCAACAAATTGCCCAGGCGGCCGATCGACTGGGTTTCGGCGGCGTGCTGATTCCTACCGGGCGTTCCTGCGAAGACTCCTGGCTGGTGGCCGCTTCCCTGATTCCGGTGACCCAGCGCTTGAAATTCCTGGTAGCCCTGCGGCCCGGGATCATTTCCCCGACGGTGGCGGCGCGTCAGGCCGCGACGTTGGATCGACTCTCGGGAGGACGCGCGCTGTTCAACCTGGTCACTGGCGGCGACCCGGACGAACTGGCCGGCGACGGGCTGTTCCTCGATCACGAACAGCGCTACCAGGCCTCGGTGGAATTCACCCGGATCTGGCGCCGGGTGCTGGAAGGCGAGACCGTGGATTACGACGGCGAACACATCAGCGTGAAGGGCGCCAAGCTGCTCTATCCGCCGATCCAGCAACCGCGCCCGCCGCTGTACTTCGGTGGCTCGTCGGAAGCTGCCCAGGACCTGGCCGCCGAGCAGGTGGAAATGGTGCTGACCTGGGGCGAACCGCCCGCAGCCGTCGCCGAAAAAATCCAACAGGTGCGGGCCAAGGCCGCAAAGCAAGGACGCACCGTGCGCTTCGGCATTCGCCTGCATGTGATCGTGCGGGAAACCAATGCCGAAGCCTGGCAAGCGGCCGACCGCTTGATCTCCCATTTGGACGACGAAACCATCGCTCGCGCCCAGGCCTCCCTCGCGCGCTTCGACTCGGTGGGTCAGCAGCGGATGGCCGCGCTGCACGGCGGTCGCCGCGACAAACTGGAGGTGAGCCCCAATCTGTGGGCCGGTGTCGGCCTGGTTCGCGGCGGTGCCGGGACGGCGCTGGTGGGCGATGGCCCGACCGTGGCCGCGCGGGTGAAGGAGTACGCCGACTTGGGCATCGACACGTTCATCTTCTCGGGTTATCCACACCTGGAAGAGTCGTATCGGGTGGCGGAGCTGCTGTTTCCGCACCTGGACGTGGAACGCCCGCAATTGCCGAAAAGCCAGGGCTACGTGAGCCCGTTCGGTGAGATGGTCGCCAACGACATTCTGCCCAAAGCCGCGTCCCAGAGTTGA	MSLNIFWFLPTHGDGHYLGTAEGARAVDHGYLQQIAQAADRLGFGGVLIPTGRSCEDSWLVAASLIPVTQRLKFLVALRPGIISPTVAARQAATLDRLSGGRALFNLVTGGDPDELAGDGLFLDHEQRYQASVEFTRIWRRVLEGETVDYDGEHISVKGAKLLYPPIQQPRPPLYFGGSSEAAQDLAAEQVEMVLTWGEPPAAVAEKIQQVRAKAAKQGRTVRFGIRLHVIVRETNAEAWQAADRLISHLDDETIARAQASLARFDSVGQQRMAALHGGRRDKLEVSPNLWAGVGLVRGGAGTALVGDGPTVAARVKEYADLGIDTFIFSGYPHLEESYRVAELLFPHLDVERPQLPKSQGYVSPFGEMVANDILPKAASQS	PGPT0003040_937	DIRECT EFFECT	BIO-FERTILIZATION	SULFUR_ASSIMILATION|MINERALIZATION	S-ASSSIMILATION-SULFUR_METABOLISM	S-METABOLISM-ALKANESULFONATE_DEGRADATION,PGPT0003040-ssuD-K04091	NA	NA
D1-36_04897	966	ssuA		Putative aliphatic sulfonates-binding protein	ATGCGCACTGTCATTTTGCGTCGCGGGCTGGTCGCTCTGTTTGCTGCGGCTGTGTCCTTCGGCGTCATCACCCAGGCTCAAGCCGAAACCTTGCGGATCGGTTATCAAAAGTACGGCACCTTGGTGCTGCTCAAGGCCAAGGGCACCCTGGAAAAACGCCTCGCCGCCCAAGGCGTGGACGTGCAATGGACCGAGTTTCCTGGCGGCCCGCAACTGCTTGAAGGCTTGAACGTCGGCTCCATCGATTTTGGCGTGACCGGCGAAACCCCGCCGGTGTTTGCCCAGGCAGCCGGCGCGGACCTGCTCTATGTGGCCTACGAACCGCCGGCTCCCAACAGTGAAGCGATCCTGGTGCCCAAGGGCTCGCCGATCCAATCGGTGCAGGATCTCAAGGGCAAGAAAATCGCGCTGAACAAAGGCTCCAACGTCCATTACCTGCTGGTACGGGCGCTGGAAGATGCGGGCCTGCAATACACCGACGTCCAGACGGTTTTCCTGCCACCGGCCGATGCCCGCGCGGCGTTCGAACGAGGCAGCGTGGACGCCTGGGTGATCTGGGATCCGTACCAGGCCGCCGCTGAGCAGCAATTGCAGGCGCGCACCCTGCGTGACGGCAAAGGCATCGTCGACAACCACCAGTTCTACCTCGCCACCAAACCCTATGCGCAGAAAAATCCCCAGGTGATTACGGCTCTGGTGGAAGAGGTGCGGGCGGTAGGGGAGTGGTCCAGGGCCAATCCTGAAGACGTGACGCGGCAGGTCTCGCCGCTGCTCGGCTTGCCTGCCGATATCACGCTTACCTCGGTCAAGCGGCAAGGCTACGGGGCGTTGTTCCTGACGCCGGAAGTCGTCGCGGCGCAGCAGAAAATCGCCGACAGCTTCTACCAGCTCAAATTGATTCCCAAGCCCTTGAGTATCAAGGACGTGATCTGGACGCCGCGGGCGGCCGTTGCGAACGCGCAGTAA	MRTVILRRGLVALFAAAVSFGVITQAQAETLRIGYQKYGTLVLLKAKGTLEKRLAAQGVDVQWTEFPGGPQLLEGLNVGSIDFGVTGETPPVFAQAAGADLLYVAYEPPAPNSEAILVPKGSPIQSVQDLKGKKIALNKGSNVHYLLVRALEDAGLQYTDVQTVFLPPADARAAFERGSVDAWVIWDPYQAAAEQQLQARTLRDGKGIVDNHQFYLATKPYAQKNPQVITALVEEVRAVGEWSRANPEDVTRQVSPLLGLPADITLTSVKRQGYGALFLTPEVVAAQQKIADSFYQLKLIPKPLSIKDVIWTPRAAVANAQ	PGPT0003025_2485	DIRECT EFFECT	BIO-FERTILIZATION	SULFUR_ASSIMILATION|MINERALIZATION	S-ASSSIMILATION-SULFUR_METABOLISM	S-METABOLISM-ALKANESULFONATE_TRANSPORT,PGPT0003025-ssuA-K15553	NA	NA
D1-36_04898	594	ssuE	COG0431	FMN reductase (NADPH)	ATGTTGGTTGTCTCGCTCGGCGGCAGTCCCAGCCAGCGCTCACGTTCAGGTGTGCTGTTGGAGCGCTCGCAACGTTGGTTGCAACATCAAGGTGTGGAAGTGGTGAGTTATCAGGTACGGGACTTCCCGGCCGAGGATCTGCTCCATGCCCGCTTCGACAGTCCCAAGGTGGTAGACCTGCTGGCACAGATCGAAAACGCCGATGGCCTGTTGATCGCCACGCCGGTATACAAGGCGTCTTTTTCCGGTGCGTTGAAGACCGTCCTTGATCTGCTGCCGGAACGGGCCCTGGCCCACAAGGTGGTGTTGCCCATGGCGACAGGTGGCAGCATCGCCCACATGCTGGCGGTGGATTATGCCCTCAAGCCGGTGCTGTCGGCGCTCAAGGCCCAGGAGATGCTCCATGGGATCTTCGCTGAAGACAACCAGATAGCCTACGGCGAAGGCAGCGCTCAAGCGCGGTTGACGCCTGCCTTGCAACAGCGCCTGGATGAAGCGCTGGAGCAGTTCTACAGCGCCATGGCCCGTCGGCCCAAACCGTTGGATCCCAGCGTACTGAACGAACGTCTGTTGAGTGCTCGCTGGAGCATTTGA	MLVVSLGGSPSQRSRSGVLLERSQRWLQHQGVEVVSYQVRDFPAEDLLHARFDSPKVVDLLAQIENADGLLIATPVYKASFSGALKTVLDLLPERALAHKVVLPMATGGSIAHMLAVDYALKPVLSALKAQEMLHGIFAEDNQIAYGEGSAQARLTPALQQRLDEALEQFYSAMARRPKPLDPSVLNERLLSARWSI	PGPT0003045_825	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
D1-36_04899	639		COG0450	Peroxiredoxin	ATGAGCCTCAGACTCGGCGACATCGCCCCCGATTTCGAACAGGATTCCAGCGCCGGCAAGATTCGCTTCCACGAATGGCTCGGCGACAGCTGGGGCGTGTTGTTCTCCCATCCGGCGGACTTCACCCCGGTGTGCACCACCGAGTTGGGTCTCACTGCCAAGCTCAAGGACGAGTTCGCCAAACGCGGCGTCAAGGCCATCGCCCTGTCGGTGGACCCGGTGGACTCGCACCACAAGTGGATCGACGACATCAACGAAACCCAGAACGCCGTGGTCAATTTCCCGATCCTGGCCGATGCCGACCGCAAGGTGTCCGACCTGTACGACCTGATCCATCCCAACGCCAGCGACACCTTGACCGTGCGCTCATTGTTCGTGATCGACCCGAACAAAAAAATTCGCCTGACCATCACCTACCCGGCCAGTACCGGGCGCAACTTCAACGAAATCCTCCGGGTGATCGACTCCCTGCAGCTGACCGACAACTACAAAGTCGCCACGCCCGCCAATTGGCAGGACGGTGATGAAGTGGTGATCGTGCCGTCGCTCAAGGATGAAGAAGAACTCAAGCAGCGCTTCCCCAAGGGCTACCGTGCCGTGAAGCCCTATCTGCGCCTCACGCCTCAACCTAATCGTTGA	MSLRLGDIAPDFEQDSSAGKIRFHEWLGDSWGVLFSHPADFTPVCTTELGLTAKLKDEFAKRGVKAIALSVDPVDSHHKWIDDINETQNAVVNFPILADADRKVSDLYDLIHPNASDTLTVRSLFVIDPNKKIRLTITYPASTGRNFNEILRVIDSLQLTDNYKVATPANWQDGDEVVIVPSLKDEEELKQRFPKGYRAVKPYLRLTPQPNR	PGPT0007245_2	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-CYTOKININ_METABOLISM	PHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007245-hflX-K03665	NA	NA
D1-36_04900	1320	oprD_5		Porin D	ATGAAGAAGTCTACCTTGGCCATGGCAGTGGCCTTTGGGGTATTGGCGCAGCAGGCAGGCGCCGCCGGTTTTATCGAAGACAGCAAGGCGTCGGTCAGTTCCCGTACGCTGTACTTCAACAACGACAACCACGAGACGGGCAGTGAAGACCTGCGCGAAACGGGCACCGGCCTTAAGTTCGACTACAAGTCTGGCTTCACGCAAGGTGTCGTTGGCTTCGGTATCGACGCCCAGGCTCTGGTGGGTATCCGTCTCGATGGCGGCAGGGGTCGTAACAACGGTTCCTATATGCCAGCCGATACCGATGGCGCGGCGGTCCACGAGTGGAGCCGTTTGTCCGGTAACGTAAAGGCTCTTTTCTCCAAGACCGAAGCTCACCTGGGCGGTGCCTTGGCGCCTAGCCTGCCGATCCTGGTGGCCAACGACAGCCGCCTGCTGCCGCAGACCTTCGAGGGTGGCACCATCACCTCCAAGGAAATCGACAACGTCACGCTCAACGCTGGTCAGCTGGAGCAGGCCACTGGCCGTGCATCGAGCAACAGCACTGGCCTGGCCGTGGCGGGCGGTACCCAGGACAGTAACCAGTTCCGTTACGCGGGTGCTGATTGGAAGGTCACCAAAGACCTGACGCTGCAGTACTACTACGCGAACCTGCAGGATTACTACAAGCAACACTTCCTGGGCGCGGTCCATGTTTTCCCGATCAGCGAAGGTCAATCCTTCAAGACTGACCTGCGTTACTTCGACAGCAGTTCGGATGGCCGCAACGGTGACCTGGGCTATCGCTTCAACAACAACGGTGGCTATGCCAAGAACCCGGGCGAGGTCGATAACAAGACCTGGAGCGCCATGTTCACCTACACCCTGGGTGGCAGTGCCTTCCTGTTGGGTCATCAACAAGTCGGCGATGACGGTGGCTTCGTCTACCTGAACCAAGGCAACGTGGTTGACGGCAACAACCGTCCTGAAGGTGCTGGTGGTGCGAGCTTCTACCTGTTCACCGACAGCATGATCAACGGTTTTGTCCGTGCCGGTGAGAACACCACCTTCGGCCAGTACTCCTACGACTTCGCTTCCATGGGCGTTCCAGGCCTGAAAGCCTCGGTTGCCTACCTGCGTGGCGACGACGTCAAGACCGCTAGCGGCACAAGCGATTACTCCGAGTGGGAACGCGACATGCGTGTGGATTACGTGATCCAGCAAGGCGCGTTGAAAGGCTTCGGTACTACTGTGCGTCACGGTAGCTACCGCAGCGGCGGTGTCGGCGACGACCAGGATCAGACCCGCGTAATCTTCAACTACACTTACAGCTTCATGTAA	MKKSTLAMAVAFGVLAQQAGAAGFIEDSKASVSSRTLYFNNDNHETGSEDLRETGTGLKFDYKSGFTQGVVGFGIDAQALVGIRLDGGRGRNNGSYMPADTDGAAVHEWSRLSGNVKALFSKTEAHLGGALAPSLPILVANDSRLLPQTFEGGTITSKEIDNVTLNAGQLEQATGRASSNSTGLAVAGGTQDSNQFRYAGADWKVTKDLTLQYYYANLQDYYKQHFLGAVHVFPISEGQSFKTDLRYFDSSSDGRNGDLGYRFNNNGGYAKNPGEVDNKTWSAMFTYTLGGSAFLLGHQQVGDDGGFVYLNQGNVVDGNNRPEGAGGASFYLFTDSMINGFVRAGENTTFGQYSYDFASMGVPGLKASVAYLRGDDVKTASGTSDYSEWERDMRVDYVIQQGALKGFGTTVRHGSYRSGGVGDDQDQTRVIFNYTYSFM				NA	NA	NA	NA	NA
D1-36_04901	1299	argA	COG0548	Amino-acid acetyltransferase	ATGCCCGAATACGTCAATTGGCTTCGTCACGCTTCGCCTTACATCAATGCCCACCGCGATTGCACCTTCATCGTCATGCTGCCTGGCGACGGGGTCGAGCACCCCAACTTCGGCAACATCGTCCATGACCTGGTGCTGCTGCACAGCCTCGGCGTGCGCCTGGTGCTGGTCCATGGTTCTCGCCCGCAGATTGAAACCCGCCTGGCCGCACGGGGCCTGACGCCCCATTACCATCACGGCATGCGCATCACCGATGCCGCGACGCTGGAATGCGTGATCGACGCGGTCGGCCAGTTGCGCATCGCCATCGAGGCACGCCTGTCCATGGACATGGCGTCATCGCCGATGCAGGGTTCGCGGTTGCGGGTCGCCAGTGGGAACCTGGTCACCGCCCGGCCGATCGGCGTGCTCGAGGGTGTGGATTATCACCACACCGGCGAAGTGCGCCGGGTCGATCGCAAGGGCATCAATCGCCTGCTGGACGAGCGTTCCATCGTGCTGCTGTCGCCGTTGGGCTATTCGCCCACCGGGGAGATCTTCAACCTCGCCTGCGAAGACGTCGCCACTCGGGCCGCCATCGACCTGGCGGCGGACAAGCTGCTGCTGTTCGGCGCCGAGCAAGGCCTGATCGGCGAAGATGGCCGACTGGTCCGTGAGCTGCGCCCGCAACAGGTCCCGGCCCATATGCAGCGCTTGGGCAGCGACTACCAAGCCGAACTGCTGGATGCGGCGGCCCAGGCCTGCCGCGGCGGTGTTGCCCGCAGCCATATCGTCAGCTATGCCGAAAACGGCGCGCTGCTGGCCGAATTGTTCACTCGCGATGGCAGCGGCACACTGGTGGCCCAGGAGCAGTTCGAGGTGGTGCGCGAAGCGGCCATCGAAGACGTCGGCGGATTGCTCGACCTCATCAGTCCTCTGGAAGAACAGGGCATCCTGGTGCGCCGTTCCCGTGAGGTGTTGGAGCGTGAGATCGAACAGTTCAGCGTGGTAGAGCGCGAAGGAATGATCATCGCTTGCGCGGCGCTCTACCAGATCGCCGATTCGGATGCCGGTGAACTGGCCTGTCTGGCGGTGAATCCGGAGTATCGCCACGGTGGCCGGGGCGATGAATTGCTGGAACGGATCGAAACCCGGGCCCGTGCCCAGGGGCTCAAGACGTTGTTCGTATTGACGACGCGCACGGCCCATTGGTTTCGTGAGCGGGGCTTCGAACCCAGCAGCGTCGAGCGCCTGCCTGCGGCCCGGGCATCGCTTTACAACTACCAGCGCAATTCGAAAATCTTCGAAAAAACCCTGTAG	MPEYVNWLRHASPYINAHRDCTFIVMLPGDGVEHPNFGNIVHDLVLLHSLGVRLVLVHGSRPQIETRLAARGLTPHYHHGMRITDAATLECVIDAVGQLRIAIEARLSMDMASSPMQGSRLRVASGNLVTARPIGVLEGVDYHHTGEVRRVDRKGINRLLDERSIVLLSPLGYSPTGEIFNLACEDVATRAAIDLAADKLLLFGAEQGLIGEDGRLVRELRPQQVPAHMQRLGSDYQAELLDAAAQACRGGVARSHIVSYAENGALLAELFTRDGSGTLVAQEQFEVVREAAIEDVGGLLDLISPLEEQGILVRRSREVLEREIEQFSVVEREGMIIACAALYQIADSDAGELACLAVNPEYRHGGRGDELLERIETRARAQGLKTLFVLTTRTAHWFRERGFEPSSVERLPAARASLYNYQRNSKIFEKTL	PGPT0014243_1219	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014243-argAB-K14682	NA	NA
D1-36_04902	1158	argE_3		Acetylornithine deacetylase	ATGCCTTTGCCGTCCATGAAAGACCAATTCGCTGCCCTGATCGCTGCACCGTCGGTCAGCTGCACCCAGCCCGCGCTGGATCAGTCCAACGGCACCGTCATCGAACTGCTGGCGGGCTGGCTCTCCGAGCTTGGGTTTCGCTGCGACATCCAACAGGTCAGCCCCGGCAAGTTCAACCTTTTGGCCAGTTTCGGCACGGGCCCTGGCGGGCTGGTACTGGCCGGCCACAGTGACACGGTGCCGTTCGACGGCGCGTTATGGCAGACCGATCCGCTGAAGCTCACCGAAATCGATGGGCGTTGGGTGGGCCTGGGCAGTTGCGACATGAAAGGCTTCTTCGCCCTGGCCATCGAGGCGGTCAGGCCGCTGCTGGACCAACCGTTCAAGCAACCGTTGCAGATCCTCGCCACCTGCGATGAAGAGAGCTCCATGGCCGGCGCCCGGGCCCTGGCGGATGCCGGTCGTCCGTTGGGCCGCGCTGCGGTGATCGGCGAGCCCACCGGCCTGCGACCGATTCGCCTGCACAAGGGCGTGATGATGGAGCGCATCGACATCCTCGGGCGCAGCGGCCATTCATCCGACCCAAGCCTGGGCCACAGCGCCCTCGAGGCCATGCACGACGCCATGGGCGAACTGCGCGGTTTGCGCCTGCAATGGCAGCGTGAATTCCGTAATCCACAATTCACCGTGCCGCAACCGACGCTGAATTTCGGCTGCATCCACGGCGGCGACAATCCCAATCGAATTTGTGGGCAATGTTCCATGGAGTTCGACTTGCGCCCCCTTCCGGGCATGGACCCTGAAGTGCTGCGGGCGGCGATCCGGCAGAAGCTCGACCCCATCGCCGAGCGGCATAAGGTCAAGATCGACTACGCTCCGTTGTTCCCTGAAGTCCCTCCGTTCGAACAGCCCGAAGACTGCGCATTGGTGCGCGTAGCCGAGCGGCTGACCGGTTATCGCGCCGAAGCAGTGGCGTTCGGCACCGAAGCGCCTTATCTTCAGCGCCTTGGCTGCGAAACCCTGGTGTTGGGCCCTGGCGATATCGCCTGCGCTCATCAGCCGGGCGAGTACCTTGAAATGTCACGTTTGCAACCTACCGTGCAATTGCTCCGTCAGTTGATCGGTCATTACTGCCTGACGCCGACCACGGCCGATTAA	MPLPSMKDQFAALIAAPSVSCTQPALDQSNGTVIELLAGWLSELGFRCDIQQVSPGKFNLLASFGTGPGGLVLAGHSDTVPFDGALWQTDPLKLTEIDGRWVGLGSCDMKGFFALAIEAVRPLLDQPFKQPLQILATCDEESSMAGARALADAGRPLGRAAVIGEPTGLRPIRLHKGVMMERIDILGRSGHSSDPSLGHSALEAMHDAMGELRGLRLQWQREFRNPQFTVPQPTLNFGCIHGGDNPNRICGQCSMEFDLRPLPGMDPEVLRAAIRQKLDPIAERHKVKIDYAPLFPEVPPFEQPEDCALVRVAERLTGYRAEAVAFGTEAPYLQRLGCETLVLGPGDIACAHQPGEYLEMSRLQPTVQLLRQLIGHYCLTPTTAD	PGPT0014254_1868	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014254-argE-K01438	NA	NA
D1-36_04903	1368			hypothetical protein	ATGCAGAAAGAAACCGAAATCAAACTCCGCGTCAGCCGCGAGACCCTGGCAGCGTTGCGTGAGCATCCGCTGTTGAAAAAACGCAACAAGAGTGGCTGGGAACGCCACGAACTGATGAACCAGTACTTCGACACACCAGAGCGCGACCTGGCTCGGGCCAAGGTCGCCCTGCGCCTGCGTCGCGATGGCGAAGCAGTGATCCAGACCCTCAAGACGCGGGGCCAGAGCATCGCTGGCCTATCCGAGCGCAACGAATACGATTGGCACCTGCCCAAGGCCAAGCTCGATCTGAAGAAACTCGACGGCGAATGCTGGCCCGAGGCGCTGGCTGACCTGGACAAAAAAACCCTCAAAGCGATCTTCACCACCGACTTCGTTCGCGAACGCGCCGAAATCGCCTGGGGCCGTGGCAAGAGCAAAGTGGTCATCGAAGCCGCCCTGGACCTGGGCCACGTCGTGGTGGGCAAGCAGAAGGAAGAAATCTGCGAGCTGGAACTTGAACTGCGCGAAGGCGAACCCGCCGCCTTGCTGGAACTGGCCGCCGAACTGGCCGTGACCCTGCCCTTGATGCCGTGCGACATCAGCAAGGCCGAACGCGGCTATCGCCTGCAAGATGCGAGCAGTTATGCCCTGAGCCTTCCGGCCCCGCAATTGACCGCTGAAACGCCGCTGGACGACGCCTTCGCCGCATTGAGCTGGCACCTGCTAGGGAGCAGCCAGCGCCTGGCCGAGCAGTACCGTTTCAACGGCCATTGGCGCCTGCTGCAAGACTGGGTGGAAAATCTCGCCGAACTGCGTGCCCTGCTCAGCAGCCTCGGCCAGGCCGCGCCGCGCCAGTCGACCCACGACCTGCGGGTGGCCCTGGACGCGCTGCTGGAGGACTGGCGTCCACTGGTTCAGGCCGGCATCGAAGACGAAGACGTGCGCAAGGCCGCGCCGGAGCAATTCCTCGAGGAGCTGCAGGACCCGCGTTGGGGCCTCTTCTCTCTCCAAGCGTCACGCTGGCTGCTGGCCCGCAGTTGGGCCGCCGACCGCAACACCCGGGGCAATCGCCAGGGCGCGGCGCAACTGGGCAGTTGGCTGCCACGGCTGCTGGGCGAAGAAGCTTCGTCGCTGCAACTGCAACGCTACCAACAGCAGCCGGAAGACCTCGCCGAACAACTGCCGCGCATCGAACGCATCCAGGCCTGGCTGCATCACGCCCGCCAGGTGCTGGAAATCCCTGAAATGGACCGACTCTACGGTGAGCTGAACAAGCTGGCGCAGCTGGCCAACGAACCGATCACCGACGAACTCCTGGACGCGCGCAAGCAACAGGCGATCGCGGTGTATCAGAATCGGGCCTGGAAGACTTTGTTGCGCCTGTAA	MQKETEIKLRVSRETLAALREHPLLKKRNKSGWERHELMNQYFDTPERDLARAKVALRLRRDGEAVIQTLKTRGQSIAGLSERNEYDWHLPKAKLDLKKLDGECWPEALADLDKKTLKAIFTTDFVRERAEIAWGRGKSKVVIEAALDLGHVVVGKQKEEICELELELREGEPAALLELAAELAVTLPLMPCDISKAERGYRLQDASSYALSLPAPQLTAETPLDDAFAALSWHLLGSSQRLAEQYRFNGHWRLLQDWVENLAELRALLSSLGQAAPRQSTHDLRVALDALLEDWRPLVQAGIEDEDVRKAAPEQFLEELQDPRWGLFSLQASRWLLARSWAADRNTRGNRQGAAQLGSWLPRLLGEEASSLQLQRYQQQPEDLAEQLPRIERIQAWLHHARQVLEIPEMDRLYGELNKLAQLANEPITDELLDARKQQAIAVYQNRAWKTLLRL				NA	NA	NA	NA	NA
D1-36_04904	471	decR	COG1522	DNA-binding transcriptional activator DecR	ATGCAGAGCGAGCTGGACGGGTTTGATCGCAAGATATTGGCCTTGTTGCAGGACGACGCTTCGCTCTCCAGCGCGCAGATCGCCGAACGGGTAGGTTTGTCCCAATCGCCATGCTGGCGGCGGATTCAGCGGATGAAGGAAGAAGGGATCATTCGCGGGCAGGTGACGTTGCTGGATCGTAAGAAAATCGGCCTGAACACGCAGATCTTCGCCGAAATCAAACTCAACGCCCATGGACGCTCGAATTTTACCGAGTTCACGGAGGCGATCCGCGGCTTTCCGGACGTGTTGGAATGCTACGTGCTGATGGGGTCGGTGGATTTCTTGCTGCGCATTGTCACGGCGGACATCGAGGCCTACGAGCGCTTCTTTTTCGAGAAGCTGTCGATGGTGCCGGGGATCCAGGAAGTGAATTCGATCGTGGCGCTGTCGGAGATCAAGTCGACGACGAGTTTGCCGGTGGTGCGCTGA	MQSELDGFDRKILALLQDDASLSSAQIAERVGLSQSPCWRRIQRMKEEGIIRGQVTLLDRKKIGLNTQIFAEIKLNAHGRSNFTEFTEAIRGFPDVLECYVLMGSVDFLLRIVTADIEAYERFFFEKLSMVPGIQEVNSIVALSEIKSTTSLPVVR				NA	NA	NA	NA	NA
D1-36_04905	339			hypothetical protein	ATGCCCTCTTTGCAAGCCCCCGGCACCGCCGCGCTCCGCGCCGACGTCTGGCACACCGCCAATCCCTATTGTCGCGCCCGCTTTCATTTGCTCGGGGAAGCCGAGGCGGACCTGCCCTGCCGGGTGCTCAACCTGTTCGCCTTGCAGGGCCTTGTTCCGGAAACCGCACGCATCGAACGTCTCGACGAATTGCTCTCGATGGAATGCCTCCTGACCGGGCTGAGCTGGCACCGCGCCCAAGTCATCGCTGGAAAATTGCGTAACCTGATAAGCGTCTGTTCAGTCGACTTGCAAGACGCTGATATCGCGCGGGCCGAGCCGATGCTGGCGGCAGGTTGA	MPSLQAPGTAALRADVWHTANPYCRARFHLLGEAEADLPCRVLNLFALQGLVPETARIERLDELLSMECLLTGLSWHRAQVIAGKLRNLISVCSVDLQDADIARAEPMLAAG				NA	NA	NA	NA	NA
D1-36_04906	1785			hypothetical protein	ATGTCCACCAAACACGCCACTCAGGACCGCTGGCTGGACCTCAACGACCTGCTGCGCCAACTGGTTGCCCAAGGCCTCATCAGCCAGGACTCTGCCGAGACTGCGCTCAATGCCCGCCGGCGCCATAACGCCAACAGCCAGCTGCATCCACTGGAGTTCATCGCCAACCAGCATCTCGACGACCTCAGCCGTCCCGGCAAGCGCCTGGACCTGGAAAACCTGACGTTGTGGCTGGCCCAGCAGGCCGACCAGCCCTACATGCGCATCGACCCATTGAAGATCAACGTCGCGGCCGTTACGCCGCTGATGTCCTACGCCTTTGCGCAACGCCACAAGATTCTCGCGGTAGCGGTGGACCGGGACGCCGTGACGGTCGCCAGCGCCCAGCCCTATGTCAGCAGCTGGGAAGCGGACCTGACCCACGTACTGAAGTTGCCGGTCAAGCGCGTGGTGGCCAACCCTGTGGACATCCAGCGCCTGAGCGTGGAGTTCTATCGACTGGCCAAGTCGGTCAGCGGCGCGACCACGGTCGACCAGCAACCCAGCAATCTGACCAACTTCGAACAACTGCTCAACCTGGGCGCCAGCGATCAGGAGCCGGATGCCAACGACGCGCATATCGTCAATATCGTCGACTGGCTGTTCCAATACGCCTTCCAGCAACGGGCCAGCGATATCCATATCGAACCGCGCCGCGAGCAAGGCACCGTGCGCTTCCGCATCGACGGCGTGCTGCACACCGTCTATCAATTTCCGCCACAGGTGACGATGGCCATCATCAGCCGGCTCAAGAGCCTGGGCCGGATGAACGTTGCCGAAAAGCGCAAGCCCCAGGACGGCCGCGTGAAGACCAAGACCCCGGACGGCGGCGAGGTGGAGTTGCGACTGTCGACCTTGCCGACCGCGTTCGGCGAGAAAATGGTCATGCGGATCTTCGACCCGGAAGTGCTGCTCAAGGATTTCGACCAGCTCGGCTTCTCTGTCGACGACCTGCGCCGCTGGCAGGACATGACTCGCCAGCCCAACGGCATCATCCTGGTCACGGGCCCCACCGGGTCTGGCAAGACCACGACCCTGTACACCACGCTGAAGAAACTGGCGACGCCTGAAGTGAATCTCTGCACCATCGAAGATCCGATTGAAATGGTCGAGGCGTCATTCAACCAGATGCAGGTCCAGCACAACATCGACCTGTCGTTTGCCGCGGGGGTACGCGCATTGATGCGGCAAGACCCGGACATCATCATGATCGGCGAGATCCGCGACCTCGAGACCGCTGAAATGGCGATCCAGGCAGCGCTCACCGGGCACCTCGTGCTCTCGACCCTGCACACCAACGATGCACCGAGCGCCATCAGCCGGCTGCTCGAACTCGGCGTGCCGCATTACCTGATCAAAGCGACGGTGCTCGGCGTCATGGCCCAGCGCCTGGTGCGAACATTGTGCCCGCATTGCAAGGCTCCCCTGACCCTGGACGAAGACGACTGGCAAACCCTGACGCGTCCCTGGCAGGCGCCGTTGCCCACCAATGCCCAGCAGGCCGTGGGTTGCTCGGAATGCCGTGACACCGGTTATCGCGGTCGCGCCGGGGTGTACGAGATCATGCAACTGAGCGACAGCGTCAGAGCCTTGATCCATCCCGACACCGACCTGCTTGCGGTGCGCCGCCAGGCGTTCAAGGAAGGCATGCGAAGCTTGCGACTCTCGGGCGCGCAAAAGGTGGCGGCGGGCTTGACCACGGTCGAGGAAGTATTACGAGTGACACCACAGAGCGAGCAGAAGTAG	MSTKHATQDRWLDLNDLLRQLVAQGLISQDSAETALNARRRHNANSQLHPLEFIANQHLDDLSRPGKRLDLENLTLWLAQQADQPYMRIDPLKINVAAVTPLMSYAFAQRHKILAVAVDRDAVTVASAQPYVSSWEADLTHVLKLPVKRVVANPVDIQRLSVEFYRLAKSVSGATTVDQQPSNLTNFEQLLNLGASDQEPDANDAHIVNIVDWLFQYAFQQRASDIHIEPRREQGTVRFRIDGVLHTVYQFPPQVTMAIISRLKSLGRMNVAEKRKPQDGRVKTKTPDGGEVELRLSTLPTAFGEKMVMRIFDPEVLLKDFDQLGFSVDDLRRWQDMTRQPNGIILVTGPTGSGKTTTLYTTLKKLATPEVNLCTIEDPIEMVEASFNQMQVQHNIDLSFAAGVRALMRQDPDIIMIGEIRDLETAEMAIQAALTGHLVLSTLHTNDAPSAISRLLELGVPHYLIKATVLGVMAQRLVRTLCPHCKAPLTLDEDDWQTLTRPWQAPLPTNAQQAVGCSECRDTGYRGRAGVYEIMQLSDSVRALIHPDTDLLAVRRQAFKEGMRSLRLSGAQKVAAGLTTVEEVLRVTPQSEQK	PGPT0026430_334	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-TYPE_II_SECRETION_SYSTEMS	CE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026430-gspE|epsE-K02454	NA	NA
D1-36_04907	921	qmcA	COG0330	Protein QmcA	ATGCAGATCGGCAGCGTGCTTCTACTCTTCATCGGCCTCGTGGTCGCCATCCTGTTCATGGGGTTCAAGGTGGTGCCCCAGGGTTATCAATGGACGGTCGAGCGGTTCGGCCGCTATACCAATACGCTCAAGCCTGGCCTGAACATCATCATTCCCGTGATGGACCGCATCGGGCGCAAGATCAACGTCATGGAAAGCGTGCTGGACATCCCGCCCCAGGAAGTCATCACCGCCGACAACGCTACAGTGCAGATCGACGCCGTGTGCTTCTTCCAGGTGGTCAATACCGCCCAGGCCGCCTACGAGGTCAACAACCTCGAACACGCCATCCGCAACCTGTTGCAGACCAACATCCGCACGGTGCTGGGCTCCATGGAACTGGACGCCATGTTGAGCCAGCGCGACGGTATCAACGAGAAGTTGCTGCGCACGGTCGACGAAGCCACGGCGCCGTGGGGCATCAAGATCACGCGGATCGAGATCAAGGACATCAGCCCGCCGGCCGACCTGATGGCCGCCATGTCGGGGCAGATGAAAGCCGAACGTATCAAGCGTGCACAGATCCTGGAAGCCGAGGGGCTGCGAGCGTCGGCGATTCTTACCGCCGAGGGCAAGAAACAGGCCCAGATCCTCGAAGCCGAGGGCAGCCGCCAGGCCGCGTTCCTTGAATCCGAGGCACGTGAACGCCAGGCGCAAGCCGAAGCCCTCGCCACCCAGGTGGTGTCCCAGGCAATCGCCGACGGTAACGTACAGGCCGTGAACTACTTCGTTGCGCAAAAATACATCGACGCGCTGGGGCAACTGGCCTCGGCCAACAACAGCAAGGTGATCCTGATGCCGCTGGAAGCCAGCCAGGTCATCGGTGCGGTGGGCGGCATTGGCGAAATCGTCAAGGCCACCTTCGACAACAAGAAAGCCTGA	MQIGSVLLLFIGLVVAILFMGFKVVPQGYQWTVERFGRYTNTLKPGLNIIIPVMDRIGRKINVMESVLDIPPQEVITADNATVQIDAVCFFQVVNTAQAAYEVNNLEHAIRNLLQTNIRTVLGSMELDAMLSQRDGINEKLLRTVDEATAPWGIKITRIEIKDISPPADLMAAMSGQMKAERIKRAQILEAEGLRASAILTAEGKKQAQILEAEGSRQAAFLESEARERQAQAEALATQVVSQAIADGNVQAVNYFVAQKYIDALGQLASANNSKVILMPLEASQVIGAVGGIGEIVKATFDNKKA				NA	NA	NA	NA	NA
D1-36_04908	450	ybbJ	COG1585	Inner membrane protein YbbJ	ATGTGGCTGTTCCTGCAGCAATTGTCTTATTGGGACTGGCTGGCGCTGGGCGTCATCCTGTTGATATTGGAAGTGTTCGGCGCGGGCGGATACCTGCTGTGGATTGGCATGGCCGCCGCAGCGGTCGGCGTGCTGACGTTCGTCCTGCCGCAATTGGTGTGGGAGATCCAGCTCCTGCTGTTCGGCCTGTTCGCTATCGCGACAGCCCTGTATTGGTGGCGACGCCAGCGCAGCGCCATCCGCCAAAGCGACCAGCCGCACCTGAACCTGCGCGGGCAGGAGCTGATCGGCAAGGTGTTCCAGGTCCACGAGGCGATTGTCGATGGGCGCGGCAAGATCAGGGTGGCCGACGGCGTCTGGTTGGCGAAGGGTCCCGACCTGTCCATTGGCACGCGGGTCAGGGTGGTGGCACAGGAAGGTACGGTATTGACAGTGGAAAGGGCTGACTAA	MWLFLQQLSYWDWLALGVILLILEVFGAGGYLLWIGMAAAAVGVLTFVLPQLVWEIQLLLFGLFAIATALYWWRRQRSAIRQSDQPHLNLRGQELIGKVFQVHEAIVDGRGKIRVADGVWLAKGPDLSIGTRVRVVAQEGTVLTVERAD	PGPT0024505_779	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINS	CE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024505-ybbJ-K07340	NA	NA
D1-36_04909	318			hypothetical protein	ATGCGTCTCAAACTTGCTGTCGCGACCCTGGCCTTGCTTTCTCTCCCCGTGGGCTCGGCAATGGCCGACACGTTTTGGCGTAACGTCATTTCGTCCGGCGCAACCACCGGTTCCACCTACCTGACCTTCAAGGATAACAAGCTGATCGTCGCCGCCCAGGACGACGCCGGCAGCTTCGTCGCCAGTGACGGCGGCATTCGTGGCCCTTACCTGGAAGCGGCCATGCAGAAAGTCCGTGCCGACAACCCTGGCCTGCAAGCCACCGACATGGAACTGGCCAACGCGATCCTGGCGAAGAACGCCATCGCCCAGGAGTGA	MRLKLAVATLALLSLPVGSAMADTFWRNVISSGATTGSTYLTFKDNKLIVAAQDDAGSFVASDGGIRGPYLEAAMQKVRADNPGLQATDMELANAILAKNAIAQE				NA	NA	NA	NA	NA
D1-36_04910	669	pagN	COG3637	Outer membrane protein PagN	ATGAACAAGCCATGCCTTTCGTTGCTGCTGATCACCGCCACACTTAGCACCACGTCACATGCCGAGGGCCTATACGGCTCGATAAAAATCCTGAGCGTGCAGCAAGATCTTTCCGATGCCCTCCTTACCAGTCCCAGGGTCAACAATCGTGTTGTCAGCCCGACCAGCAACAAAGACGTTGGCGGATCTGTAGCGGTTGGCTATGGATTCGAAGGCAACTGGCGGCTGGAAACCGAGTATTCACTCAAACAGAATTCGGAGTTCAAGAGTCATTGGGCGCCGTTCGATGCCAACGTCAACAATATGCAAGTTTCGTCCAGCCGCTTGATGATCAACGGGTACAAAAACTTCCCGCTTAACCAACATTTTTCGCTGTACGCCATGGCTGGCCTGGGTGTGGCGTTTATCGATTCCGAGGGTTACCAGTCCAACCCTTCGCGACGATTCGCAAACAACAGCCAGAACAACTTCGCCTATGCACTGGGCGTAGGGGCGGATATCAAGCTCAGCCAGCAACTCACCCTTGGCACTGGTTATCGCTACGTTGACATGGGCGATATCGAAACCGGTTACAACACCTTTGCCAATCGCATCAACGCTCGGGACGAACAGCTCAAGGGCAAATTGCGCGAACAGAACCTCTACGTCGAGGCACGGATGGCGTTCTGA	MNKPCLSLLLITATLSTTSHAEGLYGSIKILSVQQDLSDALLTSPRVNNRVVSPTSNKDVGGSVAVGYGFEGNWRLETEYSLKQNSEFKSHWAPFDANVNNMQVSSSRLMINGYKNFPLNQHFSLYAMAGLGVAFIDSEGYQSNPSRRFANNSQNNFAYALGVGADIKLSQQLTLGTGYRYVDMGDIETGYNTFANRINARDEQLKGKLREQNLYVEARMAF				NA	NA	NA	NA	NA
D1-36_04911	384	gcvH_2	COG0509	Glycine cleavage system H protein	ATGAGCGATATCCCTGCCGAACTGCGTTTTGCCGAAAGCCACGAGTGGGCACGCCTGGAAGCCGACGGTACCGTCACCGTGGGCATCAGCGACCATGCACAGGAAGCGTTGGGCGACGTGGTGTTTGTCGAGCTGACTGAAGTCGGTAAAGTTTTTGCTGCAGGCGATCAAGCCGGCGTGGTGGAATCGGTCAAGGCCGCTTCCGATATCTATGCCCCTGTTTCGGGAGAAGTGATTGCAATCAACGAAGAGCTGGGTGGTTCACCAGAGCTGCTGAACTCTGATCCGTACGGCGCCTGGATTTTCAAGCTCAAGCCAAGCGACGAGGCCGAGCTGGACAAGTTGCTTGATGCGGCCGGCTACAAAGCTGCAATCGGCGAATAA	MSDIPAELRFAESHEWARLEADGTVTVGISDHAQEALGDVVFVELTEVGKVFAAGDQAGVVESVKAASDIYAPVSGEVIAINEELGGSPELLNSDPYGAWIFKLKPSDEAELDKLLDAAGYKAAIGE				NA	NA	NA	NA	NA
D1-36_04912	1083	gcvT_2	COG0404	Aminomethyltransferase	ATGGGACAGCGTACGCCTCTGTATGACCTTCATCTCGCCCTCGGCGCGAAAATGGTCGATTTTGGCGGTTGGGATATGCCCTTGCACTATGGATCGCAAGTTGAAGAGCACCATCAGGTGCGTCGCGACTGCGGTGTGTTCGATGTATCCCACATGACCGTGATCGATGTAGCCGGCCCCCAGGCCAAAGCCTGGCTGCAGCGCCTGCTGGCCAACGACGTCGATCGCTTGCAGGACACTGGTCGCGCGTTGTACAGCGCGATGCTCAACGAGCGCGGCGGCATTGTCGACGACATGATCATCTATCGTGTCGAGGACGGTTACCGGTTGGTGTTCAACGCCTCGACACGCGACCAGGACCTGGCCTGGATGCAAGCGCAACTCGGCGATTACGCAGTGCAGCTGCACGAGCGTGCCGAACTGGCGATGCTGGCTATCCAAGGCCCCCAGGCCCGGCACAAGATTGCCGAGCTGGTTACGCAACCACGCGGCCAGTTGATCCAGCAACTCAAGCCCTTCGAAGGTCGCGCCGACGGTGATTGGTTCATTGCCCGTACCGGCTATACCGGAGAAGACGGCCTGGAAATTGTCCTGCCGGCCCGTGAGGCCCCGAGTTTCTTCAACGACCTGGTGGGTGCCGGTATTCCTCCCATCGGACTCGGCGCCCGCGATACCTTGCGCCTGGAAGCCGGCATGAACCTCTACGGCCAGGACATCCACCAGGATATTTCACCGTTGGCCTCGAACATGGCCTGGAGCATTGCCTGGGAACCGGCGAGCCGTCAGTTCATCGGTCGCGCTGCGCTGGAGGCTGAACTTGCCGCCGGCGTGCAGCACAAACTGGTGGGGTTGGTGCTGGAAGAGCGCGGTGTATTGCGCGCTCACCAAGTGGTCCGTATCGCCAATGTTGGCGAAGGAGAGATCACCAGTGGTAGTTTTTCTCCTACGCTTAGCAAGTCGATTGCCCTGGCACGCGTTCCGATGGCTACCGCCGACCGTGCCGAGGTGGAAATTCGTGGCAAGTGGTACCCGGTACGAGTGGTCAAGCCGACCTTCGTCCGCCATGGCAAAACCCTGATCTGA	MGQRTPLYDLHLALGAKMVDFGGWDMPLHYGSQVEEHHQVRRDCGVFDVSHMTVIDVAGPQAKAWLQRLLANDVDRLQDTGRALYSAMLNERGGIVDDMIIYRVEDGYRLVFNASTRDQDLAWMQAQLGDYAVQLHERAELAMLAIQGPQARHKIAELVTQPRGQLIQQLKPFEGRADGDWFIARTGYTGEDGLEIVLPAREAPSFFNDLVGAGIPPIGLGARDTLRLEAGMNLYGQDIHQDISPLASNMAWSIAWEPASRQFIGRAALEAELAAGVQHKLVGLVLEERGVLRAHQVVRIANVGEGEITSGSFSPTLSKSIALARVPMATADRAEVEIRGKWYPVRVVKPTFVRHGKTLI	PGPT0008130_4326	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008130-gcvT-K00605	NA	NA
D1-36_04913	1626			hypothetical protein	TTGACCCACCCCGCCCAACGCCGCTGGTATCCCCTGGTCTTCGCCGTCGCTGCGCTAGTCTTGTTGCCCTTGAGCGTGCTGCTGCTGTCCTGGCAGAGCATTGATCTACAAATCTGGTCCCATTTGTGGGACACCCAGATGCCACGCCTGTTGGGTAACACCCTCACGCTGATCTTTGGTGTAGGTGTTGGGGTGACGCTGCTGGGCGTGAGCCTGGCCTGGCTCACGAGCCTTTGCGAATTTCCCGGCCGTCGATGGCTCGACTGGGCGCTGATGCTGCCGTTCGCGGTGCCTGCCTATGTATTGGCATTTGTCTTCGTAGGCCTGCTGGACTTTGCCGGTCCGGTGCAAACGTTGCTGCGCGAATGGTTTGGCAGTGGCCTGCGCCTGCCTCGGGTGCGTTCCACTGGCGGTGTGATCCTGGTGCTGGTCCTGGTGTTCTACCCCTATGTCTACCTGCTGGCGCGAAGCGCTTTCCTGGCGCAAGGCAAGGGCCTGATGGAAGCGGCGCGGGTGCTCGGGCAATCGCCTTGGCAGGCGTTCTGGCGTGTGGCGCTGCCGATGGCCAGGCCGGCAATCGGCGCCGGCGTGGCGCTGGCGCTGATGGAAACCCTGGCGGACTTCGGTGCGGTATCAGTGTTCAACTTCGACACCTTCACCACGGCCATCTACAAGACCTGGTACGGGTTTTTCAGCCTTTCCAGCGCAGCCCAGCTGGCCAGTCTCCTGTTGTTGACGGTCATGGTGGTCCTCTACGGCGAACGCCGCGCCCGGGGCGCCCAGCGGGCCGGCAACGAGCGACCGCGAGCCCAGGCGCTATACCACCTGCGAGGACTCAAGGCGGTGGCGGCCAGCGGCTGGTGCCTGCTGGTTTTCGCCTGTGCGTTTGTCATTCCGCTCATGCAATTGGTGGTCTGGTTTTGGCAGCGCGGTCGTTTCGACCTGGATGAGCGTTACGCCGGGTTGATTCTCCATACCCTCTATCTGGGCGGACTCGCGGCACTTGTCACGGTTTGCGTCGCCTTGCTGCTTGCCTTCGCTCGACGTCTGGCGCCGACCCGGTCGATCCGCGCCGGGGTCGGTCTGGCGAATCTGGGCTACGCCTTGCCCGGTTCGGTGCTGGCGGTATCGATCATGCTTGCGTTCAGTTATCTGGATCGCGAGCTGGTCATCCCGCTGTCGACACTGCTCGGAGGCGCGGGCAAGCCGTTGCTGCTGGGCAGTTTGTCGGCACTGTTGCTGGCGTACCTGGTGCGTTTCCTGGCCGTGGCCTATGGCCCGTTGGAAAGCAGCCTGGCGCGTATTCGCCCGTCGTTGCCCGAAGCCGCACGAAGTCTCGGGGTGAGTGGGCCGCGACTGTTTTTCAAAGTGTATCTGCCGTTGCTGCTTCCTGGCACCCTGAGCGCCGCGCTGCTGGTATTCGTCGATGTGCTCAAGGAAATGCCGGCGACTTTGCTGATGCGCCCGTTTGGCTGGGACACGCTGGCGGTACGGATCTTTGAAATGACCAGCGAAGGGGAGTGGGCGCGGGCCGCCCTACCGGCGCTGAGCCTGGTGCTGGTGGGGCTGCTGCCAGTCATCGGATTGATACGGCGTTCGGCCCATCGACGCGTTCTGAGTGAATAG	MTHPAQRRWYPLVFAVAALVLLPLSVLLLSWQSIDLQIWSHLWDTQMPRLLGNTLTLIFGVGVGVTLLGVSLAWLTSLCEFPGRRWLDWALMLPFAVPAYVLAFVFVGLLDFAGPVQTLLREWFGSGLRLPRVRSTGGVILVLVLVFYPYVYLLARSAFLAQGKGLMEAARVLGQSPWQAFWRVALPMARPAIGAGVALALMETLADFGAVSVFNFDTFTTAIYKTWYGFFSLSSAAQLASLLLLTVMVVLYGERRARGAQRAGNERPRAQALYHLRGLKAVAASGWCLLVFACAFVIPLMQLVVWFWQRGRFDLDERYAGLILHTLYLGGLAALVTVCVALLLAFARRLAPTRSIRAGVGLANLGYALPGSVLAVSIMLAFSYLDRELVIPLSTLLGGAGKPLLLGSLSALLLAYLVRFLAVAYGPLESSLARIRPSLPEAARSLGVSGPRLFFKVYLPLLLPGTLSAALLVFVDVLKEMPATLLMRPFGWDTLAVRIFEMTSEGEWARAALPALSLVLVGLLPVIGLIRRSAHRRVLSE	PGPT0003730_3687	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003730-afuB|fbpB-K02011	NA	NA
D1-36_04914	1005		COG1840	putative binding protein component of ABC iron transporter	ATGTCGGCCACAAAACGCCTGCTGTCCGCCCTCGCCTTGGCCCTGATTGGCACTACCACGGCCCAGGCCGCCGATGAGGTGGTGGTCTATTCCTCGCGCATCGATGAATTGATCAAACCGGTTTTCGACGCGTATACCAAGAAGACCGGCGTAGCGGTGAAGTTCATTACCGACAAGGAAGCGCCGTTGATGCAGCGGATCAAGGCCGAAGGTGAAAACGCCACCGCCGACCTGTTGCTCACCGTGGACGCCGGGAACCTCTGGCAGGCCGAGCAGATGGGGATCCTGCAGCCCTTCACCTCGTCGGTCATCGACGCCAACATCCCGCCTCAATATCGCGCGTCCTCCCATGCCTGGACTGGCCTGAGCCTGCGGGCGCGGACAATCGCCTATTCCACTGACCGGGTCAAACCGGGTGAGTTGACCACTTATGAGGCGCTGGCGGGCAAGGAGTGGGAAGGCCGCCTGTGCCTGCGGACGTCGAAGAAAGTCTACAACCAGTCCCTGACCGCGACGCTGATCGAAACCCACGGCGCGGAAAAAACCGAGGAAATCCTCAAGGGTTGGGTCAAGAACCTCTCCACCGACGTGTTCTCCGACGACACTGCGCTGCTTGAAGCGATCAATGCCGGCCAGTGTGATGTCGGCATCGTCAACACCTATTACTACGGTCGCCTGCACCAGCAGAAGCCGGACCTGAAGGTCAAGTTGTTCTGGCCGAACCAGGCCGATCGGGGCGTGCACATCAACCTCTCGGGCATCGGCCTGACCAAGCACGCGCCGCACCCGGAAGCCGCGAAGAAGTTGGTGGAATGGATGACCACGCCTGAAGCGCAAAGCATCTTTGCTGACGTGAACCAGGAGTTTCCGGCGAATCCAAAAGTGGAACCCTCCAAGGAAGTCGCTGCCTGGGGCAAGTTCAAGGCCGATACCTTGCCAGTGGAAGTGGCCGGTAAGCGCCAGGCCGAAGCCATCCGCATGATGGACCGTGCTGGCTGGAATTGA	MSATKRLLSALALALIGTTTAQAADEVVVYSSRIDELIKPVFDAYTKKTGVAVKFITDKEAPLMQRIKAEGENATADLLLTVDAGNLWQAEQMGILQPFTSSVIDANIPPQYRASSHAWTGLSLRARTIAYSTDRVKPGELTTYEALAGKEWEGRLCLRTSKKVYNQSLTATLIETHGAEKTEEILKGWVKNLSTDVFSDDTALLEAINAGQCDVGIVNTYYYGRLHQQKPDLKVKLFWPNQADRGVHINLSGIGLTKHAPHPEAAKKLVEWMTTPEAQSIFADVNQEFPANPKVEPSKEVAAWGKFKADTLPVEVAGKRQAEAIRMMDRAGWN	PGPT0003725_4320	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003725-afuA|fbpA-K02012	NA	NA
D1-36_04915	1224	ubiI	COG0654	2-octaprenylphenol hydroxylase	ATGGAATTGCGTGCAGATCTGTTGATTGTCGGTGCCGGCATGGTCGGCAGCGCCCTGGCGCTGGCGTTGCAGGGCAGTGGCCTGCAAGTGCTGCTGCTCGACGGCAGCCCGATGAGCGTCAAGCCCTTTGATGCCCAGGCCGCATTCGAGCCACGGGTCAGTGCTCTGTCGGCAGCCAGCCAACGGATCCTCGAACGCCTGGGTGTCTGGGACGGGATCACCGGCCGACGGGCCAGCCCATACACCGACATGCACGTCTGGGATGGCAGCGGCACTGGGCAGATTCACTTTTCCGCCGCCAGTCTGCATGCCGACGTGCTGGGGCATATCGTTGAAAACCGCGTCGTCCAGGACGCGCTGCTGGACCGACTGCACGATTGTGATTTAGGCCTGCTTGCCAACGCGCGCCTGGAGCAGATGCGCCGCTCAGGTGATGACTGGCTACTGACGCTGGCCGACGGCCGTACCTTGCGCGCGCCGCTGGTGATTGCCGCCGACGGCGCGAATTCAGCCGTGCGTCGCCTGACCGGGGTGGCCACGCGGGAGTGGGATTACCTGCACCACGCTATTGTCACCAGCGTGCGTAGCGCCCGTCCTCATCGGACGACGGCTTGGCAGCGTTTCACCGACAACGGCCCGCTGGCGTTTCTGCCACTGGCCCGCGAGGGTCAGGAAGACTGGTGTTCGATCGTCTGGTCCACCACTCCCGATGAAGCGCAGCGCTTGATGGCTCTTGATGACACTGTGTTTTGCAACGAGCTGGAGCGTGCCTTCGAAGGCCAGCTCGGCACGGTACTGAGCGCCGACCCGCGCCTGTGCGTGCCACTGCGCCAGCGCCATGCCAAGCGCTATGTGGCCGAAGGGCTGGCACTGATCGGTGATGCGGCCCACACCATCCATCCGCTGGCCGGGCAGGGCGTGAACCTGGGCTTGCTGGATGCCGCCGTGCTGGCCGAAGTGCTGCTGCAAGCGGCCGGGCGTGGCGAACGCTTGGCTGACGTGAAGGTATTGAGCCGCTACGAGCGCCGCCGCATGCCCCATAACCTGGCGTTGATGGCGGCGATGGAAGGTTTCGAGCGGTTGTTCCAGGCTGATCCGTTGCCGGTTCGCTGGTTGCGCAACGCCGGTCTGAAGTTGGTGGACCGCCTGCCTGAAGCCAAGGCGTTGTTCGTGCGCGAGGCGCTGGGGTTGACCGGGGATTTGCCGGAACTGGCCAGGGCCTGA	MELRADLLIVGAGMVGSALALALQGSGLQVLLLDGSPMSVKPFDAQAAFEPRVSALSAASQRILERLGVWDGITGRRASPYTDMHVWDGSGTGQIHFSAASLHADVLGHIVENRVVQDALLDRLHDCDLGLLANARLEQMRRSGDDWLLTLADGRTLRAPLVIAADGANSAVRRLTGVATREWDYLHHAIVTSVRSARPHRTTAWQRFTDNGPLAFLPLAREGQEDWCSIVWSTTPDEAQRLMALDDTVFCNELERAFEGQLGTVLSADPRLCVPLRQRHAKRYVAEGLALIGDAAHTIHPLAGQGVNLGLLDAAVLAEVLLQAAGRGERLADVKVLSRYERRRMPHNLALMAAMEGFERLFQADPLPVRWLRNAGLKLVDRLPEAKALFVREALGLTGDLPELARA	PGPT0009555_366	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009555-ubiI-K18800	NA	NA
D1-36_04916	1188	ubiH	COG0654	2-octaprenyl-6-methoxyphenol hydroxylase	ATGAACCGGGTCAACGTTGCAATCATCGGTGGCGGCCTGGTCGGCGCGAGCCTGGCACTGGCGCTGCAAGCCGGTGCCAAGGCACGGGGTTGGAAGATCATGCTGATCGAGCCCTTCGCTCCCGGTGACGCCTGGCAGCCGAGCTACGATGCGCGCTCGTCGGCGCTTTCGTTCGGCGCGCGGCAAATTTATCAACGCTTGGGCCTGTGGCAGGAAGTTTCCCGCCGGGCCGAGCCGATCAAGCAGATCCACGTGTCCGACCGCGGGCGGTTTTCGACGGCGCGGTTGTCGGCCATGGAGGAGGGCGTGCCGGCCCTTGGCTACGTCGTGGAGAATGCCTGGCTCGGCCAATGCCTGTGGCAAGGCTTGGACAAGGATGTCGTCAGTTGGCGCTGCCCCGCGCAGGTCGCTCGGATGGAGCCGCAAATCGCGGGCTATCGCCTGACGCTGGACGACGAAACTGTTGTGGAATGCGACCTCGCGGTATTGGCCGACGGCGGTCGCTCCGGCCTGCGGGAGCAGATGGGGGTCGGGGTGCGCAATCGTCCCTACGACCAGAGCGCCTTGATTGCCAACATCACGCCCAGCGAAGCGCACAACGGCATGGCTTTCGAGCGCTTCACCGATGACGGCCCGATGGCGTTGTTGCCGCTGCCGGAAAATCGCTGTGCATTGGTCTGGACTCGCCAGGGCATGGATGCGCAACGACTCGCGGCCCTTGACGAGCGCAGCTTCCTCAGTGAATTGCAGAATGTGTTCGGCTATCGCCTGGGCACGCTGAAGCAAGTAGGCGCGCGTCATCTTTATCCATTGGCGCTGGTGGAAGCCGAGGAACAGGTGCGTCCGCACCTGGCCATCCTGGGCAATGCTGCCCACAGCTTGCATCCGATTGCCGGGCAAGGCTTCAACCTGTCCCTGCGTGACGCCCAGGCCTTGGCCGATACCTTGCTTGAGAGCGACAGCACGCCCGGCGACTTCACCGTATTGCAAGCCTATCGCGAGCGTCAGCGGATGGATCAGGCCTTGACCGTGGGCTTCTCCGACCGGGTGACGCGGCTGTTCAGCAGCGATCTGCCGCTGGTGTCCCTGGGCCGTAATCTCGGCCTGCTGGGCCTGGACCTGCTGCCGCCCGCCAAGCGCTGGTTCGCCCGTCAGGCCATGGGTTTGGGAACACGCCCTGATGCTTGA	MNRVNVAIIGGGLVGASLALALQAGAKARGWKIMLIEPFAPGDAWQPSYDARSSALSFGARQIYQRLGLWQEVSRRAEPIKQIHVSDRGRFSTARLSAMEEGVPALGYVVENAWLGQCLWQGLDKDVVSWRCPAQVARMEPQIAGYRLTLDDETVVECDLAVLADGGRSGLREQMGVGVRNRPYDQSALIANITPSEAHNGMAFERFTDDGPMALLPLPENRCALVWTRQGMDAQRLAALDERSFLSELQNVFGYRLGTLKQVGARHLYPLALVEAEEQVRPHLAILGNAAHSLHPIAGQGFNLSLRDAQALADTLLESDSTPGDFTVLQAYRERQRMDQALTVGFSDRVTRLFSSDLPLVSLGRNLGLLGLDLLPPAKRWFARQAMGLGTRPDA	PGPT0009550_1624	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009550-ubiH-K03185	NA	NA
D1-36_04917	1335	pepP	COG0006	Xaa-Pro aminopeptidase	ATGATTCATATCCCGAAGTCGGAATACAGCCGTCGCCGCAAGGCCCTGATGGCGCAGATGGAGCCCAACAGTATCGCAATCCTGCCCGCCGCCGCCGTTGCGATCCGCAACCGCGACGTCGAGCATGTCTATCGCCAGGACAGTGATTTCCAATACCTGAGCGGCTTTCCCGAGCCGCAGGCCGTCATCGTGTTGATGCCCGGCCGGGCCCATGGCGAATACATCCTCTTCTGCCGCGAGCGCAATGCCGAGCGGGAAATGTGGGATGGCCTGCGTGCCGGCCAGGAGGGAGCGATCCGTGACTATGGCGCCGACGACGCGTTCCCCATCACCGACATCGACGACATCCTGCCGGGGCTGATCGAAGGCCGCGACCGGGTGTACTCGGCCATGGGCAGCAACCCGGAGTTCGACCGGCACCTGATGGAGTGGATCAACGTGATCCGCTCCAAGGCCCACCTCGGTGCCCAGCCGCCGAACGAATTCGTTGCCCTGGATCATCTGCTGCACGACATGCGCCTGTATAAATCGGCGGCGGAAGTGAAGGTGATGCGCGAAGCGGCGCGGATCTCCGCCCAGGCACATATCCGGGCGATGCAGGCGGCGCGGCCTGGGCTGTATGAGTACAGCCTGGAAGCCGAGCTCGATTATGAGTTTCGCAAGGGCGGGGCAAAGATGCCGGCGTACGGTTCCATCGTCGCGGCGGGGCGCAACAGCTGCATTTTGCATTACCAGCAAAATGATGCCGTGCTCAAGGATGGCGACCTGGTGTTGATCGATGCCGGGTGCGAAATCGATTGTTATGCCAGCGATATCACCCGCACCTGGCCGGTCAGCGGGAAGTTTTCTGCCGAGCAGAAGGCGATCTACGAAGTGGTGCTGGCGGCCCAGGAAGCCGCATTTGCGCAAATCGCGCCGAACAAACATTGGAACCAGGCCCACGAGGCGACCGTCAGGGTAATTACCGAGGGGCTGGTCCGCCTGGGGCTGCTGGAAGGCGAAGTGGACGAACTGATCGCAAGCGAAGCCCACCGGGCGTTCTACATGCACCGCGCCGGCCACTGGCTGGGAATGGATGTACACGATGTGGGCGAATACCGCGTGGGTGGCGAGTGGCGAGTGCTGGAGGTCGGAATGACTTTGACCGTCGAGCCGGGCATCTACATTGCCCCGGACAATCGCGGCGTAGCGAAGAAATGGCGCGGCATTGGCGTGCGCATCGAGGATGACGTGGTAGTGACCAAGACCGGTTGTGAAATCCTGACCCGCGGCGTACCGAAGACGGTCGCCGAAATCGAGGCCTTGATGGCCGCCGCACGGACTCAAGCGGCATGA	MIHIPKSEYSRRRKALMAQMEPNSIAILPAAAVAIRNRDVEHVYRQDSDFQYLSGFPEPQAVIVLMPGRAHGEYILFCRERNAEREMWDGLRAGQEGAIRDYGADDAFPITDIDDILPGLIEGRDRVYSAMGSNPEFDRHLMEWINVIRSKAHLGAQPPNEFVALDHLLHDMRLYKSAAEVKVMREAARISAQAHIRAMQAARPGLYEYSLEAELDYEFRKGGAKMPAYGSIVAAGRNSCILHYQQNDAVLKDGDLVLIDAGCEIDCYASDITRTWPVSGKFSAEQKAIYEVVLAAQEAAFAQIAPNKHWNQAHEATVRVITEGLVRLGLLEGEVDELIASEAHRAFYMHRAGHWLGMDVHDVGEYRVGGEWRVLEVGMTLTVEPGIYIAPDNRGVAKKWRGIGVRIEDDVVVTKTGCEILTRGVPKTVAEIEALMAAARTQAA	PGPT0006770_4175	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
D1-36_04918	555			hypothetical protein	ATGCCCATTCAGAATTCCCCGTATCAAGCGTTCGCCACCCTGCTGAGCACCAGCGGTCATCCTGTCTCGCCCGCCGAACTCCACGGCCTGTTGCTTGGCCGCAGCTGCGCCGGCGCCGGCTTCGAGGCCGACGGCTGGTTGGCCGACGCCGCCGAGCTGCTCGAAGGCGAGCCGGCGGACAACGTGCGTAATGCGCTCATCGGCCTGCAGGAAATGGTCAAGGGCGAGCTGACCAGCGATGACATGACCGTCGTCCTGCTGCTGCCGACTGACGATGCGCCGCTGAGCGAGCGCGCCGCTGCGCTGGGCCAGTGGTGCCAGGGCTTTCTCGCCGGTTTCGGCCTGACCCGCCGCGAATACGCCCTGAGCGATGAAGCGAAGGAAGTCCTGCAAGACCTGGCGGCGATTTCCCAGGTACAGGATGCCCTGGAAGAGTCCGACGACGGCGAAAGCGACTATATGGAAGTGATGGAGTACCTGCGGGTCGCGCCTCTGCTCCTGTTCACCGAGACCAAGAAGACCGCTGAACCGGCCGCCAAACCGTCCTTGCACTGA	MPIQNSPYQAFATLLSTSGHPVSPAELHGLLLGRSCAGAGFEADGWLADAAELLEGEPADNVRNALIGLQEMVKGELTSDDMTVVLLLPTDDAPLSERAAALGQWCQGFLAGFGLTRREYALSDEAKEVLQDLAAISQVQDALEESDDGESDYMEVMEYLRVAPLLLFTETKKTAEPAAKPSLH				NA	NA	NA	NA	NA
D1-36_04919	210			hypothetical protein	ATGGAAGACACCGACCTGCAAGCGCTGATGGCCAGACTCGAGCTGCTAATTGAACGGGTCGAGCAACTTAAGAGCCAAAACGGACTCCTATTAGCTCAGGAAAAAACCTGGCGCGAGGAACGCGCGCACCTCATTGAAAAAAACGAAATCGCCCGGCGTAAGGTCGAATCGATGATTTCGCGCCTCAAGGCCCTGGAGCAAGACTCATGA	MEDTDLQALMARLELLIERVEQLKSQNGLLLAQEKTWREERAHLIEKNEIARRKVESMISRLKALEQDS				NA	NA	NA	NA	NA
D1-36_04920	318	zapA	COG3027	Cell division protein ZapA	ATGAGTTCAAGCAATAGCGTTACCGTGCAGATCCTCGATAAAGAATATTCGATCATCTGCCCCCAGGAAGAGCGTAGCAACCTGGTGAGTGCCGCCCGTTACCTGGACGGCAAGATGCGCGAGATCCGCAGCAGCGGCAAAGTCATCGGCGCCGATCGCATCGCCGTGATGGCCGCCTTGAACATCACCCACGACCTGCTGCACCGCCAGGATACGCCGGACGTACAGGTCAGCGGCTCGACCCGCGAACAAGTCCGCGACCTACTGGATCGAGTGGATTTGGTACTGGCCACCGATCCGGACGTCAGCAAGGGCTGA	MSSSNSVTVQILDKEYSIICPQEERSNLVSAARYLDGKMREIRSSGKVIGADRIAVMAALNITHDLLHRQDTPDVQVSGSTREQVRDLLDRVDLVLATDPDVSKG				NA	NA	NA	NA	NA
D1-36_04922	603		COG0212	5-formyltetrahydrofolate cyclo-ligase	ATGACCGAACCTGCGTTGCCGACCCGCCCGCAACTTCGCCGCCTGCTGCGCCAGGCGCGTCGCTCCCTGACCCCGGCCCAGCAACGGGACGCCGCCCAAGGCCTCTACAGGCAACTGGCCCAGCACCCGCTGTTTCGCCGCGCGCGACACATCGCCCTGTACCTGCCCAACGACGGCGAGATCGATCCACGCCTGCTACTGCGCGCGGCCCAGCGTCGGGGCAAGGCGACTTACCTGCCGGTGCTCAGCCCATGGCCGCAGACGAAAATGGTTTTCCAGCGAATCCATCCCGGCGAGAAGATGCAGCCCAATCGCTTTCGCATCCCGGAACCACGCAAGAATATAGCCCGGCAACGCAAGGTCTGGACGTTGGACCTGGTGCTGTTGCCGCTGGTCGGGTTTGACGATGCCGGGGGTCGGCTGGGCATGGGCGGGGGATTCTACGATCGCAGCCTGGCGTATCTGTCGCGCCGCAAACAATGGCGCAAGCCGACCTTGCTGGGGCTGGCCCACGAATGCCAACGGGTCGAGCGATTGGTACAGGCAAGCTGGGACGTGCCGCTGCAAGGAACAGTCAGCGACAGGCGTTGGTACATCGCATGA	MTEPALPTRPQLRRLLRQARRSLTPAQQRDAAQGLYRQLAQHPLFRRARHIALYLPNDGEIDPRLLLRAAQRRGKATYLPVLSPWPQTKMVFQRIHPGEKMQPNRFRIPEPRKNIARQRKVWTLDLVLLPLVGFDDAGGRLGMGGGFYDRSLAYLSRRKQWRKPTLLGLAHECQRVERLVQASWDVPLQGTVSDRRWYIA	PGPT0008170_2096	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
D1-36_04923	147			hypothetical protein	ATGAAACGCAAACCGGATTTGTTGTGGATACTGGTCATTCTGTTCGGCCTGGGTGTCGTGACCACGGGTTACGCCCAGAGCTTGTGGAGCAGCAAGAACGATGTTCCGATGAACATCGCCCAGCCTGCCCCATCGCTCAAGCGCTGA	MKRKPDLLWILVILFGLGVVTTGYAQSLWSSKNDVPMNIAQPAPSLKR				NA	NA	NA	NA	NA
D1-36_04924	453			hypothetical protein	ATGGCTTATTGGCTGATGAAATCCGAGCCCGACGAATTGTCCATCCAGGACTTGGAAAAGCTCGGCCAAGCTCGCTGGGACGGAGTTCGCAACTATCAGGCACGCAATTTCCTGCGCGCCATGGCAGAAGGCGATTTATTTTTTTTCTATCACTCCAGCTGCCCGGAGCCTGGCATCGCGGGCACCGGAAAAATCATCAAGGCCGCCTACCCCGATCCCACGGCGCTGGAGCCTGACAGCCACTACTTCGACGCCAAGGCCAGCCCGGAGAAAAACCCCTGGACCGCGATCGACGTGGCCCATGTCGAAACGTTTCGCCACGTCCTGAAGCTCGACCACCTCAAGCAACAGACCGCTCTGGCAGAAATGCCGCTGGTGCAGAAAGGCTCGCGACTGTCAGTGATGCCGGTGACGGCGGAGCAATGGGCGGCGGTGGTTGCTCTGAAGCCTTGA	MAYWLMKSEPDELSIQDLEKLGQARWDGVRNYQARNFLRAMAEGDLFFFYHSSCPEPGIAGTGKIIKAAYPDPTALEPDSHYFDAKASPEKNPWTAIDVAHVETFRHVLKLDHLKQQTALAEMPLVQKGSRLSVMPVTAEQWAAVVALKP				NA	NA	NA	NA	NA
D1-36_04925	441			hypothetical protein	ATGCTGGGCCGCAAACCGGATGAGGAGTGGAATGTGAAAGCGTGGATGATGTTGATGCTGGCCCTGTCGCTGCCTGTGGCGGCGATGGCCGAAGAGAGCAAGGAAGGCGAGGCACCCAAGGTCAGTTACATCACGTTGAGCCCGCCGTTCGTGGGCAACTATGGGCTGGATGGTACGACCAAGCTGAAGGTCTACAAGGCTGACGTCGCCTTGCGCGTGACCGGCGATGCCGCCGCTGCGGCGGTGAAAGCGAACGAGCCGTTGATTCGCAACCAATTGGTCGCGCTGTTCGCTCAGCAGACGACCGAGACCATGAACAACCTTGAAGCCAAGGAAAAGCTGCGTCAGGAAGCGTTGAAGCAGACCCAGCAAGTGATGAACGACGAGACCGGCAAGCCGATGGTTGAGGATCTGTTGTTCAACAACCTGATCATTCAATAA	MLGRKPDEEWNVKAWMMLMLALSLPVAAMAEESKEGEAPKVSYITLSPPFVGNYGLDGTTKLKVYKADVALRVTGDAAAAAVKANEPLIRNQLVALFAQQTTETMNNLEAKEKLRQEALKQTQQVMNDETGKPMVEDLLFNNLIIQ	PGPT0015525_2769	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-MOTILITY|CHEMOTAXIS	MOTILITY-FLAGELLAR_ASSEMBLY	MOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015525-fliL-K02415	NA	NA
D1-36_04926	978	qorA_3	COG0604	Quinone oxidoreductase 1	ATGAAAGCCGTGCTGTGCAAAGAATTCGGTCCCGCCGAATCGCTGGTGCTGGAAGACGTCGCCAGCCCTGTCGCAAAGAAGAATGAAGTGTTGCTGGATGTGCACGCCGCCGGGGTGAATTTTCCTGACACGCTGATCATCGAGGGCAAATACCAGTTCAAGCCGCCCTTCCCGTTTTCCCCGGGTGGCGAAGCGGCCGGGGTCATCAGCGAAGTAGGGGAAAAGGTCAGCCACCTGAAAGTTGGTGATCGGGTCATGGCCCTGACCGGCTGGGGCAGCTTCGCCGAGCAAGTAGCGGTACCGGGCTACAACGTGCTGCCGATTCCCTCCGCCATGGATTTCAACACCGCGGCCGCGTTCAGCATGACCTACGGCACGTCGATGCACGCCCTCAAGCAGCGCGCCAACCTGAAGCCCGGAGAAACCCTGCTGGTGCTCGGTGCCTCCGGCGGGGTCGGCCTGGCGGCGGTGGAAATCGGCAAGGCCATGGGTGCGCGAGTCATCGCGGCCGCCAGCAGCGCGGAAAAACTCGCCGTGGCAAAGGCCGCCGGTGCTGACGAGTTGATCAACTACAACGAAACCAGCCTGAAGGACGAAATCAAGCGCCTCACCGACGGCCAGGGCGCCGATGTCATCTACGACCCGGTGGGCGGCGACCTGTTCGACCAGGCCGTGCGCGCCATCGCCTGGAACGGCCGGTTGTTGGTGGTTGGCTTTGCCAGCGGGCGCATTCCCGAATTGCCGGTGAACCTGGCCTTGCTCAAGGGCGCCTCGGTGGTCGGTGTGTTCTGGGGCTCCTTCGCCCAGCGCCAGCCCCAGGACAACGCCGCCAACTTCCAGCAGCTGTTCGGCTGGTTCGCCGAAGGCAAGCTCAAGCCGCTGGTGTCGCAGGTCTACCCGCTGGACGATGCCGCCCAGGCGATCAATGACTTGGGGCAGCGCAAGGCGGTCGGCAAGGTGGTGGTGCAGGTTCGCTGA	MKAVLCKEFGPAESLVLEDVASPVAKKNEVLLDVHAAGVNFPDTLIIEGKYQFKPPFPFSPGGEAAGVISEVGEKVSHLKVGDRVMALTGWGSFAEQVAVPGYNVLPIPSAMDFNTAAAFSMTYGTSMHALKQRANLKPGETLLVLGASGGVGLAAVEIGKAMGARVIAAASSAEKLAVAKAAGADELINYNETSLKDEIKRLTDGQGADVIYDPVGGDLFDQAVRAIAWNGRLLVVGFASGRIPELPVNLALLKGASVVGVFWGSFAQRQPQDNAANFQQLFGWFAEGKLKPLVSQVYPLDDAAQAINDLGQRKAVGKVVVQVR	PGPT0013255_6116	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344	NA	NA
D1-36_04927	1350	glpT_2	COG2271	Glycerol-3-phosphate transporter	ATGTTTGCTTTCTTTCGACCCGCCGCACATCAGGCAACCCTGCCTGAAGAAAAAATAGACAGCACCTACCGACGCCTTCGCTGGCAGATCTTCGCGGGGATTTTCATCGGCTATGCCGGTTACTACCTGCTGCGCAAAAACTTCTCCCTGGCCATGCCCTACCTCATCGACGAGGGCTACACCCGTGGTCAACTCGGCCTGGCCATGTCGGCCATCGCGATTGCCTATGGCTTGTCGAAGTTCTTGATGGGCCTGGTGTCCGACCGCTCGAACCCCCGCTATTTCCTGCCATTCGGCTTGCTGGTATCAGCCGGCGTGATGTTCATTTTCGGTTTTGCGCCCTGGGCGACGTCCAGCGTGACGATCATGTTCATCCTGCTGTTCATCAACGGCTGGGCACAAGGCATGGGCTGGCCACCGAGCGGACGGACCATGGTGCACTGGTGGTCGCAGAAGGAACGCGGCGGCGTGGTGTCGGTGTGGAACGTGGCGCACAACGTCGGCGGCGGCCTTATCGGCCCGTTGTTCCTGCTGGGCATGGGCTGGTTCAATGACTGGCATGCGGCATTCTATGTGCCCGCTACCGTAGCACTTGCCGTTGCGGTGTTTGCCTTCGCGACCATGCGCGACACCCCGCAATCGGTGGGCCTGCCGCCGATCGAGAAGTACAAGGACGATTATCCGGAAGGCTACGACGACAGCCACGAAAAGGAATTCAGCGCCAAGGAAATTTTCGTCAAGTACGTGCTGCGCAACAAGATGCTCTGGTACATCGCCATGGCTAACGTCTTCGTCTACCTGCTGCGCTACGGGGTGCTGGACTGGGCACCGACCTACCTGAAGGAAGCCAAGGGCTTCACGGTGGACAAGAGCTCCTGGGCCTATTTCTTCTACGAGTGGGCGGGCATTCCCGGCACGCTGCTGTGTGGCTGGATGTCGGACAAGATCTTCCGTGGCAATCGTGGCCTGACCGGCATGGTATTCATGGCCCTGGTGACCGTGGCCACCCTGGTGTACTGGCTGAACCCGGCCGGCAACCCGACCGTCGATATGATTGCCCTGGTATCCATCGGCTTCCTGATCTATGGCCCAGTCATGCTGATCGGCTTGCAGGCATTGGAACTGGCGCCGAAAAAAGCCGCCGGCACCGCCGCCGGTTTCACCGGCCTGTTCGGGTACCTGGGTGGTTCGGTCGCGGCCAGCGCCGCCATGGGCTATACCGTCGACCATTTCGGCTGGGACGGCGGTTTTGTACTGCTGGTCGGCGCTTGTCTGCTGGCGATGGCGTTCCTTGCGCCAACCTTGTGGCACAAGCAGATCGCCAGTCAGAGCCGCGAAGCGGTCGCCTGA	MFAFFRPAAHQATLPEEKIDSTYRRLRWQIFAGIFIGYAGYYLLRKNFSLAMPYLIDEGYTRGQLGLAMSAIAIAYGLSKFLMGLVSDRSNPRYFLPFGLLVSAGVMFIFGFAPWATSSVTIMFILLFINGWAQGMGWPPSGRTMVHWWSQKERGGVVSVWNVAHNVGGGLIGPLFLLGMGWFNDWHAAFYVPATVALAVAVFAFATMRDTPQSVGLPPIEKYKDDYPEGYDDSHEKEFSAKEIFVKYVLRNKMLWYIAMANVFVYLLRYGVLDWAPTYLKEAKGFTVDKSSWAYFFYEWAGIPGTLLCGWMSDKIFRGNRGLTGMVFMALVTVATLVYWLNPAGNPTVDMIALVSIGFLIYGPVMLIGLQALELAPKKAAGTAAGFTGLFGYLGGSVAASAAMGYTVDHFGWDGGFVLLVGACLLAMAFLAPTLWHKQIASQSREAVA	PGPT0016821_539	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	ROOT_COLONIZATION	ROOT_COLONIZATION_BY_NODULATION	ROOT_NODULATION_GLYCEROL_TRANSPORT,PGPT0016821-glpT-K02445	NA	NA
D1-36_04928	669	chaC	COG3703	Glutathione-specific gamma-glutamylcyclotransferase	ATGACCGCTATCGAATCCGCCATTACCTGCGCCTTATACCCGCCACGACTCGAGCTGGGTGCGCAGCTGACCCATGAACAACTGCTCGCCTCGATGCGATTGACCATGAGTCTCCACCAGGGCGGTCCGGTCTGGTTGTTCGCGTACGGTTCATTGATCTGGCGGCCGGAATGCACGGCGGTGGAGCGCGTGCGCGGTCGGGTCCATGGCTACCATCGCGGTTTATACCTGTGGTCCCACGAACATCGCGGCACTCCGGAGTTGCCAGGGTTGGTGTTCGGACTGGATCGCGGCGGTTCGTGCAGCGGTTTCGCCTACCGGCTGCCGGAGGAAAACCTCGAGGATTCGCTGTTCGCGTTGTGGCAGCGGGAAATGCCGGTGCCGTCCTATCGCCCGCACTGGCTCAGTTGCCGTCTCGAGGATGGCAGCCGGGTGCAAGCCTTGGGTTTTGTGTTGGAGCGACACCTGCCGAGCTATGCCGGCAACTTGCCGGACCACGTGCTGAGCCAGGTCTTTGAAAGCGCCTGTGGGCGTTACGGCACCACTCGCGATTATGTCGAGCAGACCGTCCACGCCCTGCGCAGCCACGCCATGCCAGACCGGAACCTGGAGGCGCGGCTCAAGCGCTGCCAATCAATGTGGGATCAGGCGACCGCTTCGCGGCTCTGA	MTAIESAITCALYPPRLELGAQLTHEQLLASMRLTMSLHQGGPVWLFAYGSLIWRPECTAVERVRGRVHGYHRGLYLWSHEHRGTPELPGLVFGLDRGGSCSGFAYRLPEENLEDSLFALWQREMPVPSYRPHWLSCRLEDGSRVQALGFVLERHLPSYAGNLPDHVLSQVFESACGRYGTTRDYVEQTVHALRSHAMPDRNLEARLKRCQSMWDQATASRL				NA	NA	NA	NA	NA
D1-36_04929	969	ascD		CDP-6-deoxy-L-threo-D-glycero-4-hexulose-3-dehydrase reductase	ATGCGTGTAACCTTGCAGCCTTCCGGCGCGGTGCTGGAGATACAGCCGGCCGAGCGGATTCTCGACGGCGCGCGGCGCCTGGGCTACGACTGCCCCCAAAGCTGTCGTAATGGCAACTGCCATGTCTGTGGCGCATTGTTGGTGGAAGGTCGCGTGGAGCAGGCCGGTGAAGTGCGTGACCATGGCGAGATCTTCACGTGCATCGCCGAGCCGCTGGAGGACTGCGTGGTGTTGTGGGATGGCGTGTTGGCACCGGGCGAGCTGCCGGTGCGCAACCTGGCGTGCCAGGTCAGCGAATGCGTTGAAGTGGGCGGCGACGTCTGGCGGGTACGCTTGCGCGCGCCAGCGGGCAAACCGCCGCGCTACCACGCCGGGCAATACCTGTTGATCGAGCGCGACAACGGTGAAAAATCAGCCTTCTCCCTCGCTTCGGCGCCGCACTCGGGGCGCGACCTGCAACTACACGTGCTGGTGCGCGAAAGCAGTGCGCAAAAGCTCTTGGAGCAACTGCAGCGCAACCCCAATGTGCGCATCGAGATGCCGTTTGGCGACACCCACCTGTCCGAGCTTCCTGACGGTCCGCTCGTGCTGATCGCCGCCGGGACCGGCATGGCGCAGATGCACAGCTTGATCGAGCACTGCCGCGCGGCGGGCTTCAAGCACCCGGTGCACCTGTATTGGGGCGTACGGCGACCGGAAGATTTCTACGAAATCGAGCATTGGGACGAATGGAAAAAACTGCCGAACCTGTTCCTGCATAAAGTCGTCAGCGACTTGTGTGGCTGGGAAGGGCGCTGCGGGATGCTCCATGAGGCGGTGTGCGAGGACATCAGCGACCTTTCTGGTGTGCACGTCTACGCCAGCGGCTCGCCGGCCATGATCTATGCCACCCTCGACGCCCTGGTGGAAGCCGGCATGGACGCTCACCAGATGCGCGCCGATGTGTTTGCGTATGCGCCAAGGGCCTGA	MRVTLQPSGAVLEIQPAERILDGARRLGYDCPQSCRNGNCHVCGALLVEGRVEQAGEVRDHGEIFTCIAEPLEDCVVLWDGVLAPGELPVRNLACQVSECVEVGGDVWRVRLRAPAGKPPRYHAGQYLLIERDNGEKSAFSLASAPHSGRDLQLHVLVRESSAQKLLEQLQRNPNVRIEMPFGDTHLSELPDGPLVLIAAGTGMAQMHSLIEHCRAAGFKHPVHLYWGVRRPEDFYEIEHWDEWKKLPNLFLHKVVSDLCGWEGRCGMLHEAVCEDISDLSGVHVYASGSPAMIYATLDALVEAGMDAHQMRADVFAYAPRA	PGPT0022595_828	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-REMODELLINGLPS|LIPID|IVA_METABOLISM	CE-REMODELLING_LPS-PARATOSE|TRYLOSE|ABEQUOSE|ASCARYLOSE_MODIFICATION,PGPT0022595-ascD|ddhD|rfbI-K00523	NA	NA
D1-36_04930	1467	ubiD	COG0043	3-octaprenyl-4-hydroxybenzoate carboxy-lyase	ATGCAGTATCGCGACTTGCGCGACTTTATCAGCGGTCTGGAACAGCGCGGCGAACTCAAGCGCATCCAGGTGCCGGTGTCACCCGTCCTGGAAATGACCGAGGTCTGCGACCGCACCCTGCGCGCAAAAGGCCCGGCGCTGCTGTTTGAAAACCCCACGGGTTATGACATTCCGGTGCTGGGCAACCTGTTTGGCACGCCGGAGCGCGTGGCCCTGGGCATGGGCGCCGAGGCGGTCAGCGAGCTGCGCGAGATTGGCAAGCTGCTGGCGTTCCTCAAGGAGCCCGAGCCGCCGAAAGGGCTGAAGGACGCTTGGTCCAAGCTGCCGATTTTCCGCAAGATCATTTCCATGGCACCGAAGGTGGTCAAGGACGCGGTCTGCCAGGAAGTGGTGATCGAGGGTGACGATGTCGACCTGGCCATGCTTCCGGTGCAGACCTGCTGGCCGGGCGACGTCGGGCCGCTGATCACCTGGGGCCTGACCGTCACCAAAGGCCCGAACAAGGACCGTCAGAACCTGGGTATCTACCGTCAGCAGGTGATTGGCCGCAACAAGGTCATCATGCGTTGGCTGAGCCATCGGGGCGGCGCGCTGGATTATCGGGAGTGGTGCGAAAAGCATCCCGGCCAGCCATTCCCGGTGTCGGTCGCGTTGGGCGCCGATCCGGCGACCATCCTCGGCGCTGTCACGCCCGTGCCCGACAGCCTCTCCGAATATGCGTTTGCCGGCCTGCTGCGCGGCAACCGTACGGAGCTGGTGAAGTGCCGGGGCAACGATTTGCAAGTGCCGGCCACCGCAGAAATCATCCTTGAAGGCGTGATCCACCCCGGCGAAATGGCCGATGAAGGTCCCTACGGCGATCACACCGGTTATTACAACGAGGTAGACAGCTTCCCGGTGTTCACTGTCGAGCGCATCACTCACCGGATCAAGCCGATCTACCACAGCACCTACACCGGTCGTCCGCCTGATGAGCCGGCGATTCTTGGCGTGGCGCTGAACGAAGTGTTCGTGCCGATCCTGCAGAAGCAGTTTCCGGAAATCACCGATTTCTACTTGCCGCCCGAAGGTTGTTCCTATCGCATGGCCGTGGTGACGATGAAGAAGTCGTATCCTGGGCACGCCAAGCGAGTGATGCTGGGCGTCTGGTCGTTTTTACGACAGTTCATGTACACCAAGTTCGTTATCGTCACCGACGACGATATCAACGCACGGGATTGGAACGACGTGATCTGGGCCATCACGACGCGCATGGACCCCAAGCGCGACACGGTGATGATCGAGAACACGCCGATCGACTACCTCGACTTCGCCTCGCCGGTATCCGGCCTCGGGTCGAAGATGGGGCTCGATGCCACGCATAAATGGCCCGGTGAAACCACCCGCGAGTGGGGTCGGGTTATCGTCAAGGATGAAGCCGTTACCCAACGGATCGATGCCATTTGGAATCAGTTAGGAATAGATTGA	MQYRDLRDFISGLEQRGELKRIQVPVSPVLEMTEVCDRTLRAKGPALLFENPTGYDIPVLGNLFGTPERVALGMGAEAVSELREIGKLLAFLKEPEPPKGLKDAWSKLPIFRKIISMAPKVVKDAVCQEVVIEGDDVDLAMLPVQTCWPGDVGPLITWGLTVTKGPNKDRQNLGIYRQQVIGRNKVIMRWLSHRGGALDYREWCEKHPGQPFPVSVALGADPATILGAVTPVPDSLSEYAFAGLLRGNRTELVKCRGNDLQVPATAEIILEGVIHPGEMADEGPYGDHTGYYNEVDSFPVFTVERITHRIKPIYHSTYTGRPPDEPAILGVALNEVFVPILQKQFPEITDFYLPPEGCSYRMAVVTMKKSYPGHAKRVMLGVWSFLRQFMYTKFVIVTDDDINARDWNDVIWAITTRMDPKRDTVMIENTPIDYLDFASPVSGLGSKMGLDATHKWPGETTREWGRVIVKDEAVTQRIDAIWNQLGID	PGPT0009530_1764	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009530-ubiD-K03182	NA	NA
D1-36_04931	1260	rho	COG1158	Transcription termination factor Rho	ATGAATCTGACTGAACTCAAGCAAAAGCCGATTACCGAACTGCTCGAATTGGCCGAACAGATGGGCATAGAAAATATGGCCCGTTCGCGCAAGCAGGACGTGATTTTCTCCCTGCTCAAGAAGCACGCGAAAAGCGGCGAGGAAATCTCCGGTGATGGCGTGCTGGAGATTCTCCAGGACGGCTTCGGCTTCCTCCGCTCCGCAGACGCTTCCTATCTCGCCGGCCCGGACGATATCTACGTCTCGCCGAGCCAGATCCGTCGCTTCAACTTGCGCACCGGTGACACCATCGTTGGCAAGATCCGCCCTCCTAAGGAAGGCGAGCGTTACTTCGCACTGCTCAAGGTCGACACCATCAACTTCGACCGTCCGGAAAACGCGAAGAACAAGATTCTCTTCGAGAACCTGACTCCGCTGTTCCCGACCGTGCGCATGAAGATGGAAGCCGGCAACGGTTCCACCGAAGACCTCACCGGTCGTGTCATCGACCTGTGCGCACCTATCGGCAAGGGCCAGCGTGGCCTGATCGTGGCGCCGCCGAAGGCGGGCAAGACGATCATGCTGCAGAACATCGCGGCCAACATCGCCCGTAACAACCCTGAAGTCCACCTGATCGTGTTGCTGATCGATGAGCGTCCGGAAGAAGTGACCGAGATGCAGCGCACCGTGCGCGGCGAAGTGGTTGCCTCGACGTTCGACGAGCCGCCGACCCGTCACGTGCAGGTTGCCGAAATGGTGATTGAGAAGGCCAAGCGCCTGGTCGAGCACAAGAAGGACGTGGTGATTCTGCTCGACTCCATCACGCGTCTGGCCCGTGCCTACAACACCGTCATCCCGAGTTCCGGCAAGGTACTGACCGGTGGTGTCGATGCCCATGCCCTGGAAAAGCCGAAGCGTTTCTTTGGCGCCGCGCGAAACATCGAAGAAGGCGGTTCGCTGACCATCATCGCCACCGCGCTGGTCGAAACCGGCTCGAAGATGGACGAAGTGATCTACGAAGAGTTCAAGGGTACCGGTAACATGGAACTGCCCCTGGACCGTCGCATCGCCGAGAAACGTGTATTCCCGGCCATCAACATCAACCGTTCCGGTACCCGTCGCGAAGAATTGCTGACGGCCGATGACGAGTTGCAGCGCATGTGGATCCTGCGCAAGCTGCTGCATCCGATGGATGAAGTCGCGGCCATCGAGTTCCTGGTCGACAAGCTGAAAACGACCAAGACCAACGATGAGTTCTTCCTGTCGATGAAACGCAAGTAA	MNLTELKQKPITELLELAEQMGIENMARSRKQDVIFSLLKKHAKSGEEISGDGVLEILQDGFGFLRSADASYLAGPDDIYVSPSQIRRFNLRTGDTIVGKIRPPKEGERYFALLKVDTINFDRPENAKNKILFENLTPLFPTVRMKMEAGNGSTEDLTGRVIDLCAPIGKGQRGLIVAPPKAGKTIMLQNIAANIARNNPEVHLIVLLIDERPEEVTEMQRTVRGEVVASTFDEPPTRHVQVAEMVIEKAKRLVEHKKDVVILLDSITRLARAYNTVIPSSGKVLTGGVDAHALEKPKRFFGAARNIEEGGSLTIIATALVETGSKMDEVIYEEFKGTGNMELPLDRRIAEKRVFPAININRSGTRREELLTADDELQRMWILRKLLHPMDEVAAIEFLVDKLKTTKTNDEFFLSMKRK				NA	NA	NA	NA	NA
D1-36_04933	372	trxA	COG0526	Thioredoxin 1	ATGATGGGCCACGTTTTTTTGCTGATTACCCCGGAGATTTCCATGAGCAGCGATCTGATCAAACACGTTAGCGACGCTAGCTTCGAAGCTGACGTACTCAAAGCCGAAGGCGCAGTGCTGGTCGACTATTGGGCTGAGTGGTGCGGTCCTTGCAAAATGATCGCTCCGGTCCTGGACGAAATTGCCGAGACCTACAAGGGCAAGCTGACCGTTGCCAAGCTGAACATCGACGAAAACCAGGAAACCCCGGCCAAGCATGGCGTGCGTGGCATTCCGACCCTGATGCTGTTCAAGAACGGCAACGTCGAAGCCACCAAGGTCGGCGCGCTGTCGAAGTCGCAACTGGCCGCGTTCCTCGACGCCAACATCTAA	MMGHVFLLITPEISMSSDLIKHVSDASFEADVLKAEGAVLVDYWAEWCGPCKMIAPVLDEIAETYKGKLTVAKLNIDENQETPAKHGVRGIPTLMLFKNGNVEATKVGALSKSQLAAFLDANI	PGPT0013055_3845	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013055-trxA-K03671	NA	NA
D1-36_04934	708	glcC_2	COG2186	Glc operon transcriptional activator	ATGAATTCCATCGCTCGTGCCGTGCCTGAAGTGGCGCTGCAAGCCATCCGCAAACTCATCGTCGACGAAGGCTTCGGCCCGGGCGATGCGCTGCCCTCTCAACGGGACCTGGCCTTGCAACTGGGCGTCAGCCGGGCGTCTCTGCGCGAGGCGCTGTCATCGTTGAGCGCCCTGGGGTTGATCAGCGTCCAACCGGGTAGGGGCGTTTTCGTCCAGGGAGCAGCGCAGGTCGCGCGCGACGACTCGACAGCGCGCTGGCCGTTCGCCGCCCAGGCCTCGCCGGTGGATATCTTCCAGCTGCGCTATGCCCTTGAAGGTTTCGCGGCCGGATTGGCGGCCGTGACGTTGAGCGCCGATGAACTCGACGCACTGGATGACAACGTCGAGGCCATGCGCCGCGAATTGAAGGCCGGGGAGTTCGACGCAGCGGCACAACTGGATTTCGAATTTCACCGGCGCATTCTGCTGGCCAGCGGCAACCAGGCGATGTTGAGCATTCTCACCGCCAGCGCCGATATCTTCCTTGAGAGTCAGAAGCTACCGTTCATCAGGGCGGAGCGGGCGATGGAAACGTGGCAGGAACACCGCAAGATCCTTCGCGCCCTGGCCCGTCGCGCATCGGTTTCGGCGCACAAAACCATGCAAGAACATGTACGTAATGCTGCGTTGCGCACCGGTATTTCCTTCATCGCCCCGACCGCTTCCTGA	MNSIARAVPEVALQAIRKLIVDEGFGPGDALPSQRDLALQLGVSRASLREALSSLSALGLISVQPGRGVFVQGAAQVARDDSTARWPFAAQASPVDIFQLRYALEGFAAGLAAVTLSADELDALDDNVEAMRRELKAGEFDAAAQLDFEFHRRILLASGNQAMLSILTASADIFLESQKLPFIRAERAMETWQEHRKILRALARRASVSAHKTMQEHVRNAALRTGISFIAPTAS				NA	NA	NA	NA	NA
D1-36_04935	786	artJ_2	COG0834	ABC transporter arginine-binding protein 1	ATGATCCAGCGTTGCAGCGTCCTGCTCACTGCCCTGTTTGCCAGCCTGATGCTTTGCCAATTGCCCGCCCACGCCGATGGCCTGGAAGACGTGGTAAAACGCGGCACGCTCAAGGTCGCGGTGCCCCAGGATTTTCCACCGTTCGGTTCGGTCGGCCCGGACATGAAGCCGCGCGGCCTGGATATCGACACGGCGAAACTGCTGGCCGACCAGCTCAAGGTCAAACTGGAATTGACGCCGGTCAACAGCACCAACCGCATCCCTTTCCTGACCACAGGCAAGGTCGACCTGGTGATTTCCAGCCTGGGCAAGAATCCGGAGCGTGAAAAGGTCATCGATTTCTCCAGCGCCTATGCGCCCTTCTACCTCGCCGTGTTCGGCCCGCCCGATGCCGCAATCACCGGCCTGGACGACCTCAAGGGCAAGACCATCAGCGTCACCCGTGGCGCTATCGAGGACATCGAGTTGACCAAGGTCGCCCCCGAAGGCGCCACCATCAAGCGTTTCGAAGACAACAACTCGACGATCGCCGCCTACCTGGCCGGTCAGGTGGACCTGATCGCCAGCGGCAACGTGGTGATGGTCGCCATCAGCGAGCGCAACCCCAAGCGCGTCCCGGCGCTGAAAGTGAAACTCAAGGATTCTCCGGTCTACGTGGGCGTGAACAAGAACGAGCCGGCGTTGCTGGACAAGGTCAACCAGATTCTCGCCACCGCCAAGACGGACGGAAGCCTGGAAAAGAACGCGCAGACCTGGCTCAAGCAACCGCTGCCGGCCGACCTCTGA	MIQRCSVLLTALFASLMLCQLPAHADGLEDVVKRGTLKVAVPQDFPPFGSVGPDMKPRGLDIDTAKLLADQLKVKLELTPVNSTNRIPFLTTGKVDLVISSLGKNPEREKVIDFSSAYAPFYLAVFGPPDAAITGLDDLKGKTISVTRGAIEDIELTKVAPEGATIKRFEDNNSTIAAYLAGQVDLIASGNVVMVAISERNPKRVPALKVKLKDSPVYVGVNKNEPALLDKVNQILATAKTDGSLEKNAQTWLKQPLPADL	PGPT0020800_11692	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
D1-36_04936	669	yecS_3	COG0765	L-cystine transport system permease protein YecS	ATGGCTTACCAGTTCGATTTTCTGCCGGTGGTGCAAAACACCGAGCTGCTGTTGCGCGGTGCGCTGTTCACCGTGGAACTGACAGCCATCGGCGCGTTGCTCGGGGTTGGCCTGGGCATCGTCGGCGCGGTGGTGCGGGCGTGGAATATCCGTCCGTTCGCGGCGATCTTTGGCGTGTACGTGGAGCTGATCCGCAACACGCCGTTCCTGGTCCAACTGTTTTTCATCTTCTTCGGCTTGCCGTCCCTTGGCTTGCAGATTTCCGAGTGGCAAGCGGCGGTGCTGGCGATGGTGATCAACCTGGGGGCGTATTCCACCGAGATCATCCGGGCCGGTATCCAGGCCATTGCACGAGGGCAACTGGAAGCCGCCGCGGCGTTGGCGATGAGCCGCTTCGAAGCGTTCCGCCACGTGGTGCTGCTGCCGGCGCTGGGCAAGGTCTGGCCGGCCTTGAGCAGCCAGATCATCATCGTGATGCTCGGCTCAGCGGTCTGTTCGCAGATCGCCACCGAAGAGCTGAGTTTCGCCGCCAACTTCATCCAATCGCGCAATTTCCGCGCCTTTGAAACCTACGCACTGACGACGCTGATCTACCTGTGCATGGCACTGCTGATCCGCCAGTTCCTGAATTGGGTCGGGCGTCGCTACATCGCCAGGAGCAGCCAATGA	MAYQFDFLPVVQNTELLLRGALFTVELTAIGALLGVGLGIVGAVVRAWNIRPFAAIFGVYVELIRNTPFLVQLFFIFFGLPSLGLQISEWQAAVLAMVINLGAYSTEIIRAGIQAIARGQLEAAAALAMSRFEAFRHVVLLPALGKVWPALSSQIIIVMLGSAVCSQIATEELSFAANFIQSRNFRAFETYALTTLIYLCMALLIRQFLNWVGRRYIARSSQ	PGPT0020795_8055	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
D1-36_04937	651	yecS_4	COG0765	L-cystine transport system permease protein YecS	ATGAGCGATTTCACGTTCTGGGACGTGGTGCGCAACCTGCTCACCGGCCTGCAATGGACTCTGGCGCTTTCGCTGGTGGCGTTTATCGGCGGTGGTGTGGTCGGCTTGTTGGTGATGGTGCTGCGCATCTCCAAACGCGCCCTGCCCCGCAACATTGCCCGCACGTATATCGAGCTGTTCCAAGGCACGCCGCTGTTGATGCAGCTGTTTTTGGTGTTCTTCGGCGTGGCCCTGGCCGGGGTGGAGATTTCGCCGTGGATGGCGGCGGCGATTGCCCTGACGCTGTTCACCAGCGCTTACCTGGCGGAGATCTGGCGCGGTTGTGTCGACTCGATTGCCAACGGCCAATGGGAAGCCTCCGCGAGCCTGGCCCTCAACCCGTTGGAGCAGTTGCGCTACGTGATCCTGCCCCAGGCCCTGCGCATCGCCGTGGCGCCGACCGTTGGCTTTTCCGTGCAGGTGGTCAAGGGCACGGCCGTGACGTCGATCATCGGTTTTACCGAACTGACCAAGACCGGCGGCATGCTCGCCAACGCCACGTTCGAGCCGTTCATGGTGTATGGCCTGGTCGCCCTCGGTTATTTCCTCCTTTGCTACCCCCTGTCCCTCAGCGCGCGCTACCTGGAAAGGAGACTGCATGCCTCTGCTTAG	MSDFTFWDVVRNLLTGLQWTLALSLVAFIGGGVVGLLVMVLRISKRALPRNIARTYIELFQGTPLLMQLFLVFFGVALAGVEISPWMAAAIALTLFTSAYLAEIWRGCVDSIANGQWEASASLALNPLEQLRYVILPQALRIAVAPTVGFSVQVVKGTAVTSIIGFTELTKTGGMLANATFEPFMVYGLVALGYFLLCYPLSLSARYLERRLHASA	PGPT0020795_10707	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
D1-36_04938	735	glnQ_9		Glutamine transport ATP-binding protein GlnQ	ATGCCTCTGCTTAGAATTTCCGCCCTGCATAAATACTACGGCGATCACCATGTGCTCAAAGGCATCGACCTGAGTATCGAAGAAGGCCAGGTGGTGGCGATCATCGGTCGCAGCGGCTCGGGCAAATCCACCCTGCTGCGCACCCTCAATGGCCTGGAATCGATCAACGATGGCGTGATCGAAGTGGACGGCGAATACCTCGACGCGGCCCGCGCCGACCTGCGCAGCCTGCGGCAGAAAGTCGGGATGGTGTTCCAGCAGTTCAATCTGTTCCCGCACCTGACCGTCGGCGAAAACGTCATGCTCGCGCCGCAGGTTGTACAAAAAGTGCCCAAGGCCAAGGCGGTGGAACTGGCCCGCCAGATGCTCGAACGGGTCGGGCTCGGCGAAAAATTCGACGCCTTCCCCGACCGCTTGTCTGGCGGGCAGCAGCAACGGGTGGCGATCGCCCGTGCCTTGGCGATGTCGCCGAAAGTCTTGCTTTGCGATGAAATCACCTCGGCGCTGGACCCAGAGCTGGTCAACGAAGTGCTCAGCGTAGTGCGGCAACTGGCCAAGGAAGGCATGACACTGATCATGGTCACCCATGAAATGCGTTTCGCCCGGGAAGTGGGCGACAAACTGGTGTTCATGCACCAGGGCAAGGTGCACGAGGTGGGTGATCCCAAGCTGCTGTTCGCCGATCCGCAGACGGCGGAGCTGGCGAACTTCATCGGGACGGTGGAGCCTGCCTGA	MPLLRISALHKYYGDHHVLKGIDLSIEEGQVVAIIGRSGSGKSTLLRTLNGLESINDGVIEVDGEYLDAARADLRSLRQKVGMVFQQFNLFPHLTVGENVMLAPQVVQKVPKAKAVELARQMLERVGLGEKFDAFPDRLSGGQQQRVAIARALAMSPKVLLCDEITSALDPELVNEVLSVVRQLAKEGMTLIMVTHEMRFAREVGDKLVFMHQGKVHEVGDPKLLFADPQTAELANFIGTVEPA	PGPT0020790_4538	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
D1-36_04939	1503	ppx	COG0248	Exopolyphosphatase	ATGCCGCCATCCCAAGCCAAGAATCTGTCCCTGATCGCCGCTATCGACCTGGGCTCCAACAGCTTCCATATGGTCGTCGCGAAGGCCCAGAACGGGGAAATCCGCATTCTTGAGCGGCTCGGTGAAAAGGTTCAGCTGGCCGCCGGGATCGACGAAGAACGCAGGTTGAGCGAGGAGTCCATCCAACGCGGGCTCGATTGCCTCAAGCGATTCGCCCAGTTGATCAACGGCATGCCCTTGGGCGCGGTGCGGATCGTGGGCACCAACGCCCTGCGCGAGGCGCGCAACCGTGGCGAGTTCATCCATCGCGCCGAAGCGATCCTCGGCCATCCGGTGGAAGTCATTTCCGGCCGTGAAGAGGCCCGCCTGATCTACCTCGGCGTTTCCCACACCCTGGCTGACACCCCCGGCAAACGCCTGGTGGCGGACATTGGCGGTGGCAGCACCGAGTTCATCATCGGCCAGCGCTTCGAACCGCTGTTGCGCGAAAGCCTCCAGATGGGTTGCGTCAGCTACACCCAGCGTTATTTCCGCGACGGCAAGATCACCCCGGCCCGCTATGCCCAGGCCTACACCGCAGCTCGCCTGGAAATCATGAGCATCGAACATGCCTTGCACCGGTTGACCTGGGACGAAGCCATCGGCTCCTCGGGGACCATCCGCGCCATCGGCCTGGCTCTCAAGGCTGGCGGCCACGGCACCGGTGAAGTCAACGCCGAGGGCCTGGCCTGGCTCAAGCGCAAGGTGTTCAAGCTTGGCGATTCGGACAAGATCGACTTCGAGGGCATCAAGCCTGATCGCCGGGCGATTTTCCCGGCGGGCCTTGCGATCCTCGAGGCGATCTTCGACGCGCTCGAATTGCAACGCATGGACCATTGCGAAGGCGCCCTGCGTGAGGGCGTGCTCTACGACTTGCTCGGGCGGCATCATCACGAAGACGTGCGCGAACGCACCCTGGGCTCGCTCATGGAGCGTTATCACGTCGACCAGGAGCAGGCGGCGCGGGTCGAGCGCAAGGCGCTGCATGCCTTCGACCAGGTGGCCGACGATTGGGACCTGAACGACGGCGTTTGGCGCGAACTGCTGGGTTGGGCCGCCAAGGTGCATGAAGTGGGCCTGGACATCGCCCACTACCATTACCACAAGCACGGCGCCTACCTGATCGAGCACTCCGATCTGGCGGGTTTCTCACGCGAAGACCAGCAAATGCTGGCGCTATTGGTACGTGGTCATCGACGCAATATTCCCAAGGACAAATTCGCCGAATTCGGCAATGACGGCATCAAGCTGATTCGCCTGTGCGTGCTGTTGCGCTTCGCGATCCTGTTCCACCACATCCGCGGCACCCAGCAAATGCCCCAGGTTACCCTGCACGCCGACGGCGATCAGTTGGATGTGATATTCCCCGAAGGCTGGCTGGACGAGAACCAACTGACCCAGGCGGACTTTGCCCAGGAAGCCGAATGGCTGACGCGGGTGGGGATTTTGCTGAACATTCACTGA	MPPSQAKNLSLIAAIDLGSNSFHMVVAKAQNGEIRILERLGEKVQLAAGIDEERRLSEESIQRGLDCLKRFAQLINGMPLGAVRIVGTNALREARNRGEFIHRAEAILGHPVEVISGREEARLIYLGVSHTLADTPGKRLVADIGGGSTEFIIGQRFEPLLRESLQMGCVSYTQRYFRDGKITPARYAQAYTAARLEIMSIEHALHRLTWDEAIGSSGTIRAIGLALKAGGHGTGEVNAEGLAWLKRKVFKLGDSDKIDFEGIKPDRRAIFPAGLAILEAIFDALELQRMDHCEGALREGVLYDLLGRHHHEDVRERTLGSLMERYHVDQEQAARVERKALHAFDQVADDWDLNDGVWRELLGWAAKVHEVGLDIAHYHYHKHGAYLIEHSDLAGFSREDQQMLALLVRGHRRNIPKDKFAEFGNDGIKLIRLCVLLRFAILFHHIRGTQQMPQVTLHADGDQLDVIFPEGWLDENQLTQADFAQEAEWLTRVGILLNIH	PGPT0002595_2271	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
D1-36_04940	2217	ppk		Polyphosphate kinase	ATGAATACCGAAGGACTCACAGAAGTTGCCGTAAAAGACGCTCAGCCCGTGGTCGAGCCAGTCGCCGAAACGCCTCCGGAGCTGGAACCGGCCCCCGCTGCCGCGCCCGAGCCGGCCCCAGCGCCGGCGATTGCGGTGCCCAACCTGGATGACAGCAGCCTGTACATCCATCGTGAGCTGTCGCAACTGCAATTCAACATCCGCGTCCTTGAACAGGCGCTGGATGAGTCCTACCCACTGCTGGAGCGGCTGAAATTCCTGCTGATCTTCTCCAGCAACCTGGACGAGTTCTTCGAGATTCGCGTCGCCGGGCTGAAAAAGCAGATCACCTTCGCCCGCGAGCAGGCCGGTGCCGACGGCCTGCAACCGCACCAGGCCCTGGCGCGCATCAGCGAACTGGTGCACGGTCATGTCGATCGCCAGTACGCGATCCTCAACGATATCCTGTTGCCGGAGCTGGAAAAGCACCAGGTGCGCTTCATCCGTCGCCGCTACTGGACCACCAAGCTCAAGACCTGGGTACGCCGTTACTTCCGTGACGAAATCGCTCCGATCATCACCCCGATCGGCCTCGACCCGACTCACCCGTTCCCATTGCTGGTGAACAAGAGCCTGAACTTCATCGTCGAGCTGGAAGGCATCGACGCCTTTGGCCGTGATTCCGGCCTGGCGATCATCCCGGCGCCACGCCTGTTGCCGCGGATCATCCGCGTCCCGGAAGACGTCGGCGGCCCGGGCGACAACTATGTGTTCCTGTCGTCGATGATCCACGCCCACGCCGATGACCTGTTCCAGGGCATGAAGGTGAAGGGCTGCTACCAATTCCGCCTGACCCGCAACGCCGACCTGTCGGTGGATACCGAGGATGTAGAAGACCTGGCCCGCGCACTGCGCGGCGAGTTGTTCTCCCGTCGCTATGGCGATGCGGTGCGCCTGGAAGTGGCCGATACCTGTCCGAAACACCTGTCCGACTACCTGCTCAAGCAGTTCAACCTGCATGAGACCGAGCTGTACCAGGTCAATGGTCCGGTGAACCTGACGCGGCTGTTCAGCATCACCGGCCTGGACAGCCATCCGGAGCTGCAATATTCGCCGTTTACACCGCAGATCCCGAAACTGCTGCAAAACAGCGAAAACATTTTCAGTGTCGTCAGCAAGCAGGACATCCTGCTGTTGCACCCCTTCGAGTCGTTCACCCCGGTGGTCGACTTGCTGCGCCAGGCCGCCAAGGACCCACATGTCCTGGCGGTGCGCCAGACGCTGTACCGCAGTGGCGCCAACTCCGAGATCGTCGATGCCCTGGTGGACGCGGCGCGAAACGGCAAGGAGGTCACGGCGGTGATCGAATTGCGCGCGCGCTTCGATGAAGAGTCCAACCTGCAACTGGCCAGCCGTCTGCAAGCGGCCGGTGCGGTGGTGATTTACGGCGTGGTGGGCTTCAAAACCCACGCCAAGATGATGCTCATCCTGCGGCGCGAGGCCGGCGAGATCGTGCGCTACGCTCACTTGGGCACCGGCAACTACCACGCGGCCAACGCCCGCCTGTACACCGACTACAGCTTGCTGACGTCCGACGACGCCTTGTGTGAAGACGTCGGCAAGTTGTTCAGCCAGTTGATCGGCATGGGCAAGACGTTGCGGATGAAGAAGCTGCTGCATGCACCGTTCACCCTCAAGAAGGGCATGCTCGACATGATCGCCCGGGAAACCCAGTTCGCCCTGGACGGCAAGCCTGCGCACATCATCGCCAAGTTCAACTCGTTGACCGATCCGAAAGTCATCCGTGCGTTGTACAAGGCCAGCCAGTCGGGCGTGCGCATCGACCTGGTGGTGCGTGGCATGTGCTGCCTGCGGCCGGGTATCCCGGGGGTGTCCCATAACATCCACGTGCGCTCGATCATCGGGCGTTTCCTGGAGCACACGCGGGTGTTCTATTTCCTCAATGGTGGCGAAGAGCAGATGTTTCTTTCCAGTGCCGACTGGATGGAGCGCAACCTCGACAAGCGCGTCGAGACCTGCTTCCCGGTGGAAGGCAAGAAGCTGATCCTGCGGGTCAAGAAAGAGCTGGAGAGTTACCTCACCGACAACACTCACAGCTGGAGCTTGCAGTCGGACGGTCGCTACATCCGCAACACACCGACCGGCAACCAGAACCCGCGCAGCGCCCAAGCGACTTTGCTGGAGCGCTTGAGCAGCCCGGTGTTGGCGGTTAGTTAA	MNTEGLTEVAVKDAQPVVEPVAETPPELEPAPAAAPEPAPAPAIAVPNLDDSSLYIHRELSQLQFNIRVLEQALDESYPLLERLKFLLIFSSNLDEFFEIRVAGLKKQITFAREQAGADGLQPHQALARISELVHGHVDRQYAILNDILLPELEKHQVRFIRRRYWTTKLKTWVRRYFRDEIAPIITPIGLDPTHPFPLLVNKSLNFIVELEGIDAFGRDSGLAIIPAPRLLPRIIRVPEDVGGPGDNYVFLSSMIHAHADDLFQGMKVKGCYQFRLTRNADLSVDTEDVEDLARALRGELFSRRYGDAVRLEVADTCPKHLSDYLLKQFNLHETELYQVNGPVNLTRLFSITGLDSHPELQYSPFTPQIPKLLQNSENIFSVVSKQDILLLHPFESFTPVVDLLRQAAKDPHVLAVRQTLYRSGANSEIVDALVDAARNGKEVTAVIELRARFDEESNLQLASRLQAAGAVVIYGVVGFKTHAKMMLILRREAGEIVRYAHLGTGNYHAANARLYTDYSLLTSDDALCEDVGKLFSQLIGMGKTLRMKKLLHAPFTLKKGMLDMIARETQFALDGKPAHIIAKFNSLTDPKVIRALYKASQSGVRIDLVVRGMCCLRPGIPGVSHNIHVRSIIGRFLEHTRVFYFLNGGEEQMFLSSADWMERNLDKRVETCFPVEGKKLILRVKKELESYLTDNTHSWSLQSDGRYIRNTPTGNQNPRSAQATLLERLSSPVLAVS	PGPT0002685_699	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATE_METABOLISM	P-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002685-ppk-K00937	NA	NA
D1-36_04941	1014	hemB_2	COG0113	Delta-aminolevulinic acid dehydratase	GTGAGCTTTACCCCCGCCAACCGTCTGTTTCCCGCCACTCGCCTGCGTCGCAATCGCCGGGATGAGTTTTCTCGTCGGCTCGTGCGCGAAAACGTGCTGACCACCGACGACCTGATCCTGCCGGTGTTCGTGCTGGACGGCGAGAATCGCCGTGAGGCGGTGGCCTCGATGCCAGGCGTGGAGCGCCTGACCATCGACCTGTTGCTGGAAGCGGCGGCCGAGTGGGTCGAGCTGGGTATCCCGGCGTTGGCACTGTTTCCTGTCACGCCGCCGGGCCTGAAATCCCTGGATGCCGCCGAAGCCTGGAACCCCGAGGGCATCGCACAGCGCGCGACCCGTGCCCTGCGCGCACGTTTCCCGGAGCTGGGGGTGATTACCGACGTGGCGCTGGACCCGTTCACCACCCACGGGCAGGACGGCATTCTCGACGAAGAAGGCTATGTGCAGAACGACATCACCGTCGATGCGCTGGTCAGGCAGGCGCTGTCCCACGCCGAGGCCGGTGCCCAGGTGGTGGCGCCGTCGGACATGATGGACGGCAGGATCCAGGCAATCCGCGAAGCCTTGGAAGTGGCCGGGCATGTCAATGTGCGCATCATGGCCTACTCGGCCAAGTACGCCAGCGCCTATTACGGCCCGTTCCGCGACGCGGTCGGCTCGGCCCTGAACCTGGGCAAGGCCAACAAGGCCTCCTATCAGATGGACCCGGCCAATGCCCACGAAGCCCTGCACGAAGTGGCTGCCGACTTGTCAGAAGGGGCAGACATGGTCATGGTCAAGCCGGGGATGCCTTACCTCGACATTCTCTGTCGGGTAAAGGATGAATTCAAAGTGCCGACCTTTGTTTATCAGGTCAGCGGCGAGTATGCGATGCACATGGCGGCGATCCAGAACGGCTGGCTGAGCGAAGGGGTGATTCTCGAATCCCTGACCGCTTTCAAGCGCGCGGGTGCTGATGGCATCCTGACGTACTTTGCCGTGCGCGCCGCCCAATTGTTACGAGAGCAGAAATAG	MSFTPANRLFPATRLRRNRRDEFSRRLVRENVLTTDDLILPVFVLDGENRREAVASMPGVERLTIDLLLEAAAEWVELGIPALALFPVTPPGLKSLDAAEAWNPEGIAQRATRALRARFPELGVITDVALDPFTTHGQDGILDEEGYVQNDITVDALVRQALSHAEAGAQVVAPSDMMDGRIQAIREALEVAGHVNVRIMAYSAKYASAYYGPFRDAVGSALNLGKANKASYQMDPANAHEALHEVAADLSEGADMVMVKPGMPYLDILCRVKDEFKVPTFVYQVSGEYAMHMAAIQNGWLSEGVILESLTAFKRAGADGILTYFAVRAAQLLREQK	PGPT0003655_1209	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003655-hemB-K01698	NA	NA
D1-36_04942	621			hypothetical protein	ATGCTCCAACAATTTCTCCACGACTTCGGCTACCTGGCCCTGTTCATCGGCACGTTCTTCGAAGGTGAAACCATCCTCGTGCTCGCAGGTTTCCTGGCGTTCCGTGGCTACATGGACATCAACCTGGTGGTCGTCGTGGCGTTTTGCGGCAGCTACGCCGGTGACCAGCTGTGGTATTTCCTGGGGCGCAAGCACGGTCGCAAGCTGCTGGCGCGCAAACCGCGGTGGCAGTTGATGGGTGACCGGGCGCTGGAGCACATCCGCCGGCATCCGGACATCTGGGTCCTGAGCTTCCGCTTCGTGTATGGCCTGCGCACCGTGATGCCAGTGGCGATCGGCTTGTCAGGCTATCCACCGGGCCGCTATCTGTTGCTCAACGGTATCGGTGCGGCGATTTGGGCCACGGCGCTAGCTGCCGCCGCGTATCACTTTGGCGCGGTGCTCGAAGGCATGCTGGGCAGTATCAAGAAATACGAACTGTGGGTACTCGGCGCCCTGCTGTTGCTGGGCTTGGGCCTGTGGCTGCGCCGTCGCATCAAAAATGCCCGGCTGGCCAGGAAAAATCTCGAGACCGAGCGACAGGAACAAGCCAGGGCCAGCGAATCTACGCCAGGCGAGTGA	MLQQFLHDFGYLALFIGTFFEGETILVLAGFLAFRGYMDINLVVVVAFCGSYAGDQLWYFLGRKHGRKLLARKPRWQLMGDRALEHIRRHPDIWVLSFRFVYGLRTVMPVAIGLSGYPPGRYLLLNGIGAAIWATALAAAAYHFGAVLEGMLGSIKKYELWVLGALLLLGLGLWLRRRIKNARLARKNLETERQEQARASESTPGE				NA	NA	NA	NA	NA
D1-36_04943	1233			hypothetical protein	ATGAATTTCATTCTGTATGCCGTGCCGTTTTTCTTCGTGTTGATCGCCGTCGAGTTGCTCGCCGATCGTTGGCGCGGCGTGAGCCATTATCGGCTGGCGGACGCCATCAACAGCCTGAGTACCGGCGTGCTGTCGACCACCACCGGGCTGCTGACCAAAGGTGTCGGCTTGGTCACCTATGCCTTTGCACTGGAGCACCTGGCAATCTTCCAACTGCCGGCTGATCAGGCCTGGACCTGGGTGGCTGCCTTCGTCTTCTATGACTTCTGCTACTACTGGCTGCACCGCATGGGCCATGAACGCAATATCCTCTGGGCCGCTCATTCGGTGCATCACCAGAGCGAGGATTACAACCTCTCCACCGCCTTGCGCCAGACCAGCACCGGCTTTCTGCTGAGCTGGATTTTCTATCTGCCGCTGGCGATCCTGGGCGTGCCGCTGGTGGTGTTCGTCAGTGTCGCGGCGCTGAACCTGCTGTATCAGTTCTGGGTCCACACCCAACACATTCCAAAGCTCGGCTGGCTGGAATGGTGCTTCGTCACGCCGTCCAATCATCGTGCCCACCATGCGCAGAACCCTCTCTACATGGATCGCAACTACGGCGGCGTGTTCATTATTTGGGACCGTCTGTTTGGCACCTTCCAGGAAGAGGACGAGGATGAGCCGGTGGTGTTTGGCGTGACTACGCCGCTGGCGAGCTGGAATCCGTTGTGGGCGAACGTGCAGTTCTATGGGCAGCTCTGGGCTGATGCCCGGCGGGCCGAGCGTTGGTGGGACAAGCTGCGGATCTGGTTCATGCCCACCGGTTGGCGCCCGGCCGATGTGGCCGCCAGATACCCGCTGAACAAGCCTGACCTGTCCCAATTCCGCAAATTCGAAGTGCCGCTGGACGCACGCCAGCGGTGGTATGTGGCGCTGCAGTTCTGTATCTACATCGCCTTGGGCAGCTATCTGATGAACCTTGAAAACAGCCTGCCGGTTGCCGCCCTGGTATTGGGCTGGGGGGCGATTGCGTTGGGGCTGTTTGCCTTGGGCGTGGCCCTTGAGAATCGCCCTTGGGCGCTGAAGCTGGAGTTGCTGCGGCTGGCGGCGAACCTGCCGCTGGTAGGGTTGGCGCCGGTGGCAGGGTTGTGGCCAGCGAGCCCGGTGGCTTGGGTGGGGTTGTTGAGCTACAGCCTGGTCAGTGGCATCGGGCTTTACTGCTGTCGCAACCGACTCACTCGCCTGGCGTAG	MNFILYAVPFFFVLIAVELLADRWRGVSHYRLADAINSLSTGVLSTTTGLLTKGVGLVTYAFALEHLAIFQLPADQAWTWVAAFVFYDFCYYWLHRMGHERNILWAAHSVHHQSEDYNLSTALRQTSTGFLLSWIFYLPLAILGVPLVVFVSVAALNLLYQFWVHTQHIPKLGWLEWCFVTPSNHRAHHAQNPLYMDRNYGGVFIIWDRLFGTFQEEDEDEPVVFGVTTPLASWNPLWANVQFYGQLWADARRAERWWDKLRIWFMPTGWRPADVAARYPLNKPDLSQFRKFEVPLDARQRWYVALQFCIYIALGSYLMNLENSLPVAALVLGWGAIALGLFALGVALENRPWALKLELLRLAANLPLVGLAPVAGLWPASPVAWVGLLSYSLVSGIGLYCCRNRLTRLA				NA	NA	NA	NA	NA
D1-36_04944	669	elbB	COG3155	Glyoxalase ElbB	ATGAGCAAAAAAGTTGCAGTGATCCTTTCCGGCTGTGGCGTGTACGACGGCGCGGAGATTCACGAAAGCGTGATTACCTTGCTGCGTCTCGACCAGCGTGGCGCACAGGTCCAATGCTTCGCCCCCAACATTGCCCAGCTGCATGTCATCAACCATCTGACTGGCGAGGAAATGCCCGAAAGCCGCAACGTGCTGGTGGAGTCGGCGCGCATCGCCCGAGGCGATGTGAAAGACCTGCGCGAAGCCAAGGCCGAGGACTTTGACGCGCTGATCGTGCCCGGTGGTTTCGGCTCGGCGAAAAACCTGTCCAACTTCGCTGTCGAAGGGGCCGGTTGCGTCGTGCAGCCGGACGTCCTGGCGCTCACCGAGGCTTTCGCCGAAGCGGGGAAACCCGTGGGGCTGATGTGCATCTCACCGGCCCTGGCGGCGAAGATCTACGGCCCCGGCGTGACGTGCACCATCGGCACGGATGCCGATACCGCCGCTGCCGTGACCAAGATGGGCGGCACCCATGAAGAATGCCTGGTCACCGATATCGTCGAGGACACTGCGCGCAAACTCGTCAGCACACCCGCCTATATGCTGGCGAAGAACATCAGCGAGGCGGCTTCGGGGATCAACAAGCTGGTGGACCGGGTGTTGGAATTGACCCACGAGAACGACGCCTGA	MSKKVAVILSGCGVYDGAEIHESVITLLRLDQRGAQVQCFAPNIAQLHVINHLTGEEMPESRNVLVESARIARGDVKDLREAKAEDFDALIVPGGFGSAKNLSNFAVEGAGCVVQPDVLALTEAFAEAGKPVGLMCISPALAAKIYGPGVTCTIGTDADTAAAVTKMGGTHEECLVTDIVEDTARKLVSTPAYMLAKNISEAASGINKLVDRVLELTHENDA				NA	NA	NA	NA	NA
D1-36_04945	456			hypothetical protein	ATGCGCGTATGGATCGACGCTGACGCCTGCCCCAAGGCCGCGAAGGAACTGGTGGTCAAGTTCGCCTTGAAGCGCCAGTTCGAAGTGGTGCTGGTCGCTGGGCAGCCGCAAATAAAGCCGGGCCTGGCCCTGGTCAAGCTGATCGTGGTGCCAAGCGGTCCTGATGCGGCGGATGACTACCTGGTGGAGCACGCCGTCCCGGGTGAGTTGGTCATCTGCAGCGACGTGCCGCTGGCGGACCGCCTGGTCAAGAAGGGCGTCGCCGCCCTCGATCCGAGGGGCAAGGAATTCGACGCGCAGAACATGGGCGATCGACTGGCGGTGCGCAACCTGTTTACCGACTTGCGTGAGCAGGGCCATGTGGGCGGCGGCCCGGCGGCGTACAGCGAGCGGGACAAGCAGGGTTTCGCCAATGCGCTGGATCGGATATTGACGCGGTTGGCTCGCTTGTCCTGA	MRVWIDADACPKAAKELVVKFALKRQFEVVLVAGQPQIKPGLALVKLIVVPSGPDAADDYLVEHAVPGELVICSDVPLADRLVKKGVAALDPRGKEFDAQNMGDRLAVRNLFTDLREQGHVGGGPAAYSERDKQGFANALDRILTRLARLS				NA	NA	NA	NA	NA
D1-36_04946	1899			hypothetical protein	ATGCCTGCCCCGTTTCGTTTCCTGGCTTGGCTAGCGCTGCCGTTGTTGGCGCTGTGCAGCGCCGATCTGCTGGCCGATACCACTGAAGGCGCTCCCCAGGCCTTGCACCTGCTTGATTACATCGGCGCGGATTACCCAGCGACTGTCGAAGCGGGAAAAGTCATCGATGATTCGGAATACCGCGAGCAACTGGAGTTCACCCAAGTGTTGGAGGGGTTGATTGCTGCGCTGCCGGCCAAGCCGGAAAAGGCTGAGTTGACCCAAGGCATCGGCACGTTGCGCGGGGCTATCACCGAACGCCGGGACGGCGACGACGTCGCCCGCCTGGCTCGGCAGTTGGGGGCAAGGCTGGCGGTGGCGTACGAAGTCAGCCAAGCGCCGATCATTACCCCGGATCCGGCGCGCGGTGCGCCGTTGTACGCGCAGAATTGCTCGGTTTGCCATGGTGACACCGGTGCTGGCGATGGTCCGGCCGGCGTCGGCCTGGAGCCGCCACCGGCGAACCTGCGTGATGGCCAGCGCCTGGATCGCCTGAGCCTCTACGCGATCTACAACACCCTGAGCATGGGCGTCGAGGGCACGGACATGCCAGCTTTCGCCGACCAGCTCGACGACCGCCAGCGCTGGGACCTGGCAACTTACATTGCCAGCTTCAGCGCCGACCCGGCCGCGACAAAAAGCGAGCTGACCTACAACCTGGCCGATCTGGCCCGCCAGACTCCGGCCGAAATCCTGGCTGCCCAAGGGCCCGCGGCAGCAGCGACGTTTCGCGCCCAACGTGCCCAGCCGCCGCAAGTGCAGCGCGGCCCGGCGCAGTTGCTCGACTACACCGCCACGACGTTGGACAAAAGCATCGCGGCGTATCGCGCCGGTGATCATGACCAGGCCTACGACCTTTCGGTCGCGGCTTACCTGGAAGGCTTCGAGCTGGTGGAGAGTTCGCTCGATAACGTCGACGCCAATGTGCGCAAAGACACCGAAAAGGCGTTGATGGCTTTCCGTCAGTGTTTACAGGATGGCTTGCCAGTGGACCAGGCCCAACAACGCCTGGACGCGGCGAAGGCCAAGTTGAAGGAATCCGCCGGCCTGTTGGGTGGCGATGGCTTGAGCTGGTCGTTGAGCTACATCTCTGGCTTGCTGATCCTGTTGCGCGAGGGGTTGGAAGCGATCCTGGTGCTCGCGGCAATCCTGGCATTCTTGCGCAACACCGGCCAGCAGTCGGCGGTTCGCAGCGTCAACATCGGCTGGGGGCTGGCATTGCTCGCTGGTCTGGCGACGTGGGGGCTGGCCGCCTATGTGATCGACGTCAGCGGCGCCCAGCGTGAGTTGCTCGAAGGCGCCACCGCGTTGTTCGCCAGCGTGATGGTGTTGTGGCTGGGTGTCTGGATGCATGACCGGCGTCACGCCGCGGCCTGGCAGGATTACATCAAAAGCAGCCTGGTGGGCGGCGGTGGCCGTTTCGGATTCGCGATCCTGGCGTTTTTCTCGGTCTATCGCGAATTGTTCGAAGTGATCCTGTTCTACGAAACCCTGTGGCTGCAGGCCGGTCCCGCCGGTCATGACGCCGTATTGGCTGGCGGCGCGACGGCGCTGGTGTTGCTGGTCGGGTTGGCCTGGGTGATCTTGCGGGGCTCTGCGAAACTGCCCCTGGCGCTGTTCTTCAGCATCAACGCCGCGTTGCTTTGTGCGCTGTCGGTGGTGTTCGCTGGCCATGGCGTGAAGGCGCTGCAGGAAGCCGGGATATTCGGCACGCGGCCGGTGGCATTCTTCGAGTTCGACTGGCTGGGCATTCATGCCGATGCTTATTCGCTGACCGCCCAGGTGGTGGCGATCCTGGCGATCGTCGTACTGTACGGGCGCAGTTGGGTGGCGGAGAAGCGTCGGGTCCAGGTTTCCTGA	MPAPFRFLAWLALPLLALCSADLLADTTEGAPQALHLLDYIGADYPATVEAGKVIDDSEYREQLEFTQVLEGLIAALPAKPEKAELTQGIGTLRGAITERRDGDDVARLARQLGARLAVAYEVSQAPIITPDPARGAPLYAQNCSVCHGDTGAGDGPAGVGLEPPPANLRDGQRLDRLSLYAIYNTLSMGVEGTDMPAFADQLDDRQRWDLATYIASFSADPAATKSELTYNLADLARQTPAEILAAQGPAAAATFRAQRAQPPQVQRGPAQLLDYTATTLDKSIAAYRAGDHDQAYDLSVAAYLEGFELVESSLDNVDANVRKDTEKALMAFRQCLQDGLPVDQAQQRLDAAKAKLKESAGLLGGDGLSWSLSYISGLLILLREGLEAILVLAAILAFLRNTGQQSAVRSVNIGWGLALLAGLATWGLAAYVIDVSGAQRELLEGATALFASVMVLWLGVWMHDRRHAAAWQDYIKSSLVGGGGRFGFAILAFFSVYRELFEVILFYETLWLQAGPAGHDAVLAGGATALVLLVGLAWVILRGSAKLPLALFFSINAALLCALSVVFAGHGVKALQEAGIFGTRPVAFFEFDWLGIHADAYSLTAQVVAILAIVVLYGRSWVAEKRRVQVS	PGPT0003710_437	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_IRON_RESISTANCE	IRON_TRANSPORT-IRON_II_TRANSPORT_SYSTEM,PGPT0003710-efeU|FTR|FTH1-K07243	NA	NA
D1-36_04947	612			hypothetical protein	ATGGCATCCCGTGCCTGTTTTCCGGTCGCCCTCTGCGCGATCACTCTGCTGTCCGGCTGCTCGGCCTTTCGCAACTACGACAGTGAATTGGCCCAGACCAATCAGCAATTGACCTCCGGCAATGTCGACGCGGCGCTGGCCCTGCTGGAGAAGAACAACTCCAGCCAAGATAAAGACCTGCTGTATTTCTTCGAGAAGGGCGAATTGCTGCGGGCCAAGGGTGACCTCTCCGGCAGCCAGGCGGCCTGGGGCAGCGCAGACCAGCAGGTTGGCCAATGGGAAGACGCGGTCAAGCTCGACACCGCCAAGTACCTGGCGCAGTTCGGCAGCTTCCTGGTCAACGACAAGGTCCGGCGCTACGAGGGTTATGACTATGAGAAGGTCATGCTCACCACGCAGATGGCCTTGAACCTGCTGGCGGTGAATGACTTCGACGGCGCACGGATGCAGATCAAAAAGACCCACGAGCGCGAAGCGGTGATTGCCGACCTGCGGGACAAGGATATCTCAAGCGTGAAGAGGACGCCGAAAAGCAAGGAGTCCAGACCGAATACAAGGACCTCAAGGGTTACCCGGTTGCCAGCCTGGACGCACCGGAAGTGGTCAGCCTGA	MASRACFPVALCAITLLSGCSAFRNYDSELAQTNQQLTSGNVDAALALLEKNNSSQDKDLLYFFEKGELLRAKGDLSGSQAAWGSADQQVGQWEDAVKLDTAKYLAQFGSFLVNDKVRRYEGYDYEKVMLTTQMALNLLAVNDFDGARMQIKKTHEREAVIADLRDKDISSVKRTPKSKESRPNTRTSRVTRLPAWTHRKWSA				NA	NA	NA	NA	NA
D1-36_04948	795			hypothetical protein	GTGGTCAGCCTGAAAAACAGTTACCAGAGCGCGTTCAGCCATTACCTGGCGGGCTTCGTGTACGAGGCGTTGGGCGAAAAAGACCTGGCCGCGCCGGGTTACCGTAAAGCCGCCGAACTGCGCCCCAATACCCCTCTGCTGGAGCAGGCGCTGCTCAATCTCGACAAGCCCGCCGCCAAGGACGACGACAGCGATATCCTGATCGTGGTGCAGAGCGGGCTGGCGCCCTCCCGGGATTCGATCCGTATCCCGCTGCCCCTGCCCATCAGCGGCAACGTGGTTATCACGCCGTTGTCATTCCCGCTGATCAAGCCGGACACGTCCACCGCCACCTTCGCCCAGATCGGCGTCGACGGCCGGCAACTGGACCTGACCTCACTCAACAGCACCACGGCCATGTCGCGCCGCGCCCTGCGCGATGACATGCCGGGGATCATCCTGCGTACCACCGTACGCGCGGTGAGCCGTGGCGTGGCGCAAAAGCAGATCAACGAAACCAATCCCCTGGCCGGCCTGGCCGTGGGCATTACCTCGGCCGTGCTTGAAGGGGCCGACACCCGGACCTGGCGCACCCTGCCGGATTACACCCAGGTGGTGCGCCTGCGCCTGAAAAAAGGCGAGCACCAGGTCACCTTGCCAAGCGTGGTCGGCGGCTCGGTGGTGAAGGTCAAGGTCGATCAGCGTTACCAGGTCATCACCCTGCGGGCGGTGGGCAACCAGGTGTTCGCCGGCGGCCTGGCGGCCCAGGTAATCCCGAGCGCCAATCCCACCGCCATCGCCCTCAAGCAACCTTAA	MVSLKNSYQSAFSHYLAGFVYEALGEKDLAAPGYRKAAELRPNTPLLEQALLNLDKPAAKDDDSDILIVVQSGLAPSRDSIRIPLPLPISGNVVITPLSFPLIKPDTSTATFAQIGVDGRQLDLTSLNSTTAMSRRALRDDMPGIILRTTVRAVSRGVAQKQINETNPLAGLAVGITSAVLEGADTRTWRTLPDYTQVVRLRLKKGEHQVTLPSVVGGSVVKVKVDQRYQVITLRAVGNQVFAGGLAAQVIPSANPTAIALKQP				NA	NA	NA	NA	NA
D1-36_04949	372			hypothetical protein	ATGCGTTTAAAACTGATCGCCGTCGGCGCCCTGGCCTTGCTGGCCGGCTGCGCCACCCCACCGCCACCGGAGCCGGGCAGCGCCGCCAGCAAGGTCGTGGCAATGGGCAAGACCAAGAACATCGTGGTGGGCGCCATGCGCGTCGCTCGGGAAAACGGCTACATGACCGTCAATGTGCAGCTGAGCAACACCAGTTTCAACAACAAGAACATGTATTACCGCTTCGCCTGGCTGGGACCGGAAGGCTTCCCCATCGCCGAGGAAGAAAGCTGGAAAAGCCTGACGCTGTACGGCGAACAGACCCGCTTCCTGCCGGCCATCGCACCGACACCCAAGGCGGTGGATTTCCGACTGGAAATCAACACCCCGTGA	MRLKLIAVGALALLAGCATPPPPEPGSAASKVVAMGKTKNIVVGAMRVARENGYMTVNVQLSNTSFNNKNMYYRFAWLGPEGFPIAEEESWKSLTLYGEQTRFLPAIAPTPKAVDFRLEINTP				NA	NA	NA	NA	NA
D1-36_04950	588			hypothetical protein	ATGTTCCTACGCATTTCCTCCCTTGCCCTCGCCGCCCTGCTCGTCAGCGGCTGTGCGAACAATTCACCGGTCCTGGGCAACAAGAACATCAGCTATGGCGACACCAAGGCCGTGGAAACCGTCACCAACGAATTCGGCTCCACCGATCTGCAAATGATCGCCGAATCCATGACCCGCTCCCTCGCCCAGTCCGGCGTGCTGCAGGGTCGCCCAGTGGTCCAGGTCTATGACGTGAAGAACAAGACCAGCGAGTACATCGATACCCGGGAAATCACCACTAGCATCAAGACCCAACTCATGAAGACTGGCGCGGCGCGCTTCGCCAGCGACAACAACGCCATGGACAGCCAGGTCGACCAGCTGAAGTTGCAGAACCAGAGCGGCCTGTACAAAAAGAGCACCGTAGCCAAGACCGGCAACATGATCGCCGCCAAATATCGTATCGAGGGCTCCATCAGCTCGATCGTCAAGCGCAGCGAAGATTACAAGGACGTGTTCTACAAGTTCAGCCTGCAACTGATCGACGTCGAAAGCGGCCTGGCCGAATGGATGGACGAAAAAGAAATCCGCAAGACCACGGAGCGTTAA	MFLRISSLALAALLVSGCANNSPVLGNKNISYGDTKAVETVTNEFGSTDLQMIAESMTRSLAQSGVLQGRPVVQVYDVKNKTSEYIDTREITTSIKTQLMKTGAARFASDNNAMDSQVDQLKLQNQSGLYKKSTVAKTGNMIAAKYRIEGSISSIVKRSEDYKDVFYKFSLQLIDVESGLAEWMDEKEIRKTTER	PGPT0023869_598	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023869-lpoB|ycfM-K07337	NA	NA
D1-36_04951	744			hypothetical protein	ATGCGCACATGGATCGCAATGATGGCCCTGGCTTGCGCATTCACTGCGCAAGCGGCCCCAAAAGTCGCGGTGACGGATCTGGCGTACCAAGAACGCGTCGAGGAATACATCCACACGGTTTCGGCCCAAAGCAACTTCCAGGCAAGCCCGTACAGCGCCAGCGCGTCGTCGAGCTACGACGAGATGGAGGCCACCAGCAGTTACATCGAGCAGGGTGAGCTGCGCAAGTTCACCGGTGATATCAAGGGCGAGATGCTGCGCAGCGGCATGTTCCAGCTGGTGCAGGGTACGCCGTATACCGCGTCGTCCAAGGGCGACGTATACGACGTAATCAAGCGTATCAAGGCGGGGAACTTCAAGGGGGCCGACTACGTGCTGTTCGGCACTGTGTCGGACATCGACTTCACCCGCGACATCAATGAACTTGGCACTGCCGACAGCTACTCGGCGGTGCTGGCCCTGACGTTGGTGGCGGATTTCAGCCTGATCAACACCAAGACCTTTGAGATCACCTCGGCCTTCACCGCCATGGGCGAAGGCCAGGACACCAAGCTACTGAACCACCGTGACGTGCGCATCAGCCTCAATCGTCCGCGGGTCGTGCGTGAAGTGTCCAAGGCGCTGGGGGAGGATGTGGCACGGCAGTTGAGCGAACAGCTCGGCGGCCCGATCCAGGAGCAAGCCGGCGAACCTGTGCAGCGCAACAATCTGCCGAGGGACACGGCGCCGGTGATCCTGCGCTGA	MRTWIAMMALACAFTAQAAPKVAVTDLAYQERVEEYIHTVSAQSNFQASPYSASASSSYDEMEATSSYIEQGELRKFTGDIKGEMLRSGMFQLVQGTPYTASSKGDVYDVIKRIKAGNFKGADYVLFGTVSDIDFTRDINELGTADSYSAVLALTLVADFSLINTKTFEITSAFTAMGEGQDTKLLNHRDVRISLNRPRVVREVSKALGEDVARQLSEQLGGPIQEQAGEPVQRNNLPRDTAPVILR				NA	NA	NA	NA	NA
D1-36_04952	633	rhtB_6	COG1280	Homoserine/homoserine lactone efflux protein	ATGTTGCTGGAAACGTGGCTGGCGTTTTTCGCCGCTTGCTGGGTCATCAGTCTTTCGCCGGGCGCCGGTGCCATTGCATCGATGTCCAGTGGCTTGCAATACGGCTTCTGGCGCGGTTATTGGAACGCCTTGGGCCTGCAATTGGGCCTGGCGCTGCAAATCGCAATTGTCGCGGCAGGCGTGGGCGCGATCCTCACCGCGTCGGCAACCGCCTTCTATGCAATCAAGTGGTTCGGCGTGGCGTACCTGGTCTACCTGGGCGTCAAGCAGTGGCGGGCCGTCCCCGGCGACCTCAGCGACGACGCGGCGGTGCGCCCCATCGGCAAGCCCTTGGCGCTGGTGTTTCGCGGCTTTCTGGTCAACATCAGCAACCCCAAGGCCCTGGTGTTCATGCTCGCCGTGCTGCCACAGTTCATCGATCCCCATGCACCTTTGGTCAAGCAATACCTGATCCTTGGCGTGACGATGATTTGCGTCGATCTGATTGTCATGGCCGGGTACACCGGACTGGCGTCCAAGGTGTTGCGCCTGTTGCGAACCCCTAAGCAGCAACGGCGGATGAACCGGACCTTTGCCGGATTGTTCATTGGCGCGGCGGGTTTGCTGGCGACGATCCGCAAGGCTGCGGTGTAA	MLLETWLAFFAACWVISLSPGAGAIASMSSGLQYGFWRGYWNALGLQLGLALQIAIVAAGVGAILTASATAFYAIKWFGVAYLVYLGVKQWRAVPGDLSDDAAVRPIGKPLALVFRGFLVNISNPKALVFMLAVLPQFIDPHAPLVKQYLILGVTMICVDLIVMAGYTGLASKVLRLLRTPKQQRRMNRTFAGLFIGAAGLLATIRKAAV	PGPT0021036_300	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-QUORUM_SENSING_RELATED_GENES	CE-QSR-PUTATIVE_TRANSPORTER,PGPT0021036-rhtB-K05834	NA	NA
D1-36_04953	582			hypothetical protein	ATGGAAGCGTTGTCCTTGCCCATACCGGTCCTGTGGATCGAGCCGATCTGGCTCGGTGTGCAAATCCTGCTGATCCTGTTGGTAGGTTATGTTGCCCAGCGGTTCGTGGCGCGCTTCCTCACGGGGCTCGGCGAGCGCTATCCATTGCCGACCCAGCTGATGATCATCCTGCGCGGCGTGCTGCGCTGGTTGATCATGGGCAGCGCAGTGCTGGTGGCGCTGGAGCGCCTCGGTGTCTCGGCCACGGTGCTCTGGACCGCGCTGTCGGGGTTCGTTGCCGTTGCGGCGGTCGCGTTCTTTGCCATCTGGAGCGTATTGTCGAATTTGCTGTGTGCCATCCTGATCTACACCGTCGGCCCGTTCCGCCTGGGCGACGTAGTCGAGCTGGTGGAAGCCACCGACAAGCCAGGCATCAAGGGGCGGGTGGTGGCGATCAATCTGCTCTACACCACGTTGATCGAACCCGAGGAACTCGGCACCGGCAGTTCCATGGTTCAGGTGCCCAATAGCCTGTTTTTCCAACGGTCGGTGCGGCGCTGGCGCGGCAGCGAGGCGTTTCCGGTCGGCGGTTTCGTCGAATAA	MEALSLPIPVLWIEPIWLGVQILLILLVGYVAQRFVARFLTGLGERYPLPTQLMIILRGVLRWLIMGSAVLVALERLGVSATVLWTALSGFVAVAAVAFFAIWSVLSNLLCAILIYTVGPFRLGDVVELVEATDKPGIKGRVVAINLLYTTLIEPEELGTGSSMVQVPNSLFFQRSVRRWRGSEAFPVGGFVE				NA	NA	NA	NA	NA
D1-36_04954	1911	yheS	COG0488	putative ABC transporter ATP-binding protein YheS	ATGATTCGACTTCAGAACCTGACTTTACAGCGTGGCCCGCAACGTCTGCTAGAAGACGCCGAGCTGACCCTGCACGCCGGCCACAAAGCCGGCCTCATCGGTGCCAACGGCGCCGGCAAATCGAGCCTGTTCGCCTTGTTGCGCGGCGAGTTGCACCCGGACTCCGGCAATTGCTTGCTGCCCGCCGATTGGCGCATCGCCCATATGCGTCAGGAGGTCGACACCCTCGAACGCCTGGCGGTGGATTATGTGCTCGATGGCGACCTGCGCCTGCGTCAGGTCCAGCGCGACCTCGCCGCAGCCGAAGCCGACCATGACGGCGCCGCCCAAGCTCGCCTGCACGCGGAGCTCGACAGCGCCGACGGTTATACCGCCGACGCCCGGGCTCGTAAATTGCTCGCCGGGCTGGGCTTTACCAATGAACAGATGGACCGTCAGGTCGGTGATTTCTCCGGGGGTTGGCGGATGCGCCTGAACCTGGCGCAAGCCCTGATGTGCCCGTCGGACTTGCTGTTGCTCGACGAACCGACCAACCACTTGGACCTCGACGCCATCATCTGGCTCGAAGACTGGCTCAAGAGCTATCCGGGCACGTTGTTGTTGATTTCCCACGACCGGGATTTCCTTGACGCCGTGGTGGACCACGTGGCCCATGTCGATCAGCGCAAGCTCACCTTGTATCGCGGCGGCTACAGCGCCTTCGAGCGTGCCCGCGCCGAGCGCTTGGCCCAGCAACAGCAAGCCTATGAGAAACAGCAGGCGCAGCGCGCGCACATGGAAAGCTACATCGCTCGCTTCAAGGCCCAAGCCACCAAGGCTCGCCAGGCGCAGAGCCGGATCAAGGCCCTGGAGCGGATGGAAGAGCTGTCGGCGGCCCATGTCGATTCGCCATTCGATTTTGTTTTCCGCGAGTCGTCGAAGATCTCCAGCCCGTTGATTGACCTGTCGGATGCACGACTGGGCTATGGCGAAAAAACCGTGCTGGAGAAGGTCAAGTTGCAACTGACCCCCGGCGCGCGGATCGGTCTGTTGGGGCCTAACGGCGCCGGTAAATCGACCCTGATCAAAAACCTTTCCGGTGAGCTCCAGCCCCTGGCCGGGCGCCTGACGCGCGGTGAAAACACCGTGGTCGGCTACTTTGCCCAGCATCAGCTGGATTCCCTCGATGCCAAGGCCAGCCCGCTGCTGCACTTGCAGCGCCTGGCGCCAACCGAGCGTGAGCAGACACTCAGGGACTTCCTCGGTGGTTTCGATTTCCGCGGGGCGCGCATCGACGAGCCGGTTCTGAATTTCTCCGGCGGCGAAAAAGCCCGCCTGGCCCTGGCGTTGATCGCCTGGGGGCGGCCGAACCTGCTGTTGCTCGACGAACCGACCAACCACCTGGACCTGGAGATGCGCCTGGCCCTGACCATGGCCTTGCAGGAATTCAGCGGCGCGGTGCTGGTGGTTTCCCACGACCGGCACTTGCTCAAGAGCACCACGGACAACTTTTATCTGGTCGCGGACGGTAAAGTCGAAGAGTTCGACGGCGACCTTGAAGACTATGCGCGCTGGCTGGTGGATTATCGCCAGCGCAACGCACCGGTTAGCAGCGCGCCGGTCAACCCGGACAAAACCGACAAGAAAGCCCAACGCCAGGCCGCCGCGGCGTTGCGCCAGCAACTGGCGCCGCACAAGCGCGAAGCCGACAAGCTCGAAGGCGAGCTGGGCAAGCTGCATGAAAAGCTGCAAAAAATCGAAACCAGCCTCGGGGACAGTGGTCTCTACGAGGCGGCACGCAAGGACGAGCTGCGTGATCTGCTGGCTGAACAGGCCAAGCTGAAGGTTCGGGAAGCGGAACTTGAGGAGGCGTGGATGCAAGCCCTGGAGTTGCTGGAAAACCTGCAAGCGGAGCTGGAGGCGTTGTCCTGA	MIRLQNLTLQRGPQRLLEDAELTLHAGHKAGLIGANGAGKSSLFALLRGELHPDSGNCLLPADWRIAHMRQEVDTLERLAVDYVLDGDLRLRQVQRDLAAAEADHDGAAQARLHAELDSADGYTADARARKLLAGLGFTNEQMDRQVGDFSGGWRMRLNLAQALMCPSDLLLLDEPTNHLDLDAIIWLEDWLKSYPGTLLLISHDRDFLDAVVDHVAHVDQRKLTLYRGGYSAFERARAERLAQQQQAYEKQQAQRAHMESYIARFKAQATKARQAQSRIKALERMEELSAAHVDSPFDFVFRESSKISSPLIDLSDARLGYGEKTVLEKVKLQLTPGARIGLLGPNGAGKSTLIKNLSGELQPLAGRLTRGENTVVGYFAQHQLDSLDAKASPLLHLQRLAPTEREQTLRDFLGGFDFRGARIDEPVLNFSGGEKARLALALIAWGRPNLLLLDEPTNHLDLEMRLALTMALQEFSGAVLVVSHDRHLLKSTTDNFYLVADGKVEEFDGDLEDYARWLVDYRQRNAPVSSAPVNPDKTDKKAQRQAAAALRQQLAPHKREADKLEGELGKLHEKLQKIETSLGDSGLYEAARKDELRDLLAEQAKLKVREAELEEAWMQALELLENLQAELEALS				NA	NA	NA	NA	NA
D1-36_04955	465			hypothetical protein	ATGTCGTCTGATCTGTGGAGCTTTTCGATCAACCTCTACGCCAAGCCTGGTGTGGAATCCGCGTGCCTGGCACTACAGACAGGTGGCGCGAACGTGTGCCTGCTGCTCTGTGGGCTGTGGTTGGAACAACGCGGCGTGAGCTGTGATGAGCAAAAGCTGCAGCAGCTTAAGCATCTGGCCGGACCATGGGACTCGACCGTCGTGCAACCGTTGCGCAAGTTACGCACCCAATGGAAAAACCTTGCCCTTCAGGATCCAGGGCTGGGTGGCTTGCGCGAACAGGTCAAGAAACTGGAACTGGAAGCCGAACGGCTATTGCTTGAGCGGCTGGAGGCAACGGTCAAGGAATGGCCAACGGGACAATCCTTGGATTCAGCGCAGTGGCTGCAAAGGCTTGCGGCAAATGCCGGCCAAGCCAACCACGACGCGCTGCATCAGCTGCGCGTCGCGGTTTCCGGCACTTAG	MSSDLWSFSINLYAKPGVESACLALQTGGANVCLLLCGLWLEQRGVSCDEQKLQQLKHLAGPWDSTVVQPLRKLRTQWKNLALQDPGLGGLREQVKKLELEAERLLLERLEATVKEWPTGQSLDSAQWLQRLAANAGQANHDALHQLRVAVSGT				NA	NA	NA	NA	NA
D1-36_04956	1188			hypothetical protein	ATGTCGGCCACTAAGAAGCCTGTAAACACTCCGTTGCACTTGCTCCAACAACTGTCGGGCAGCTTGCTCGAGCATCTGGAAAATGCCTGCTCCCAAGCCCTGGCTGATGCTGAAAAACTACTCGCCAAGCTGGAAAAACAACGCGGCAAGGCGCAGGAAAAACTTCACAAGTCGCGCACCAAACTGCAAGACGCGGCAACCGCTGGCAAAGCCAAGGCACAAGCCAAGGCCAAGGATGCCGTGAAGGAACTCGAGAACCTGCTCGATGCCCTGAAGGATCGTCAATCCGAAACCCGCGCCTACATCCTGCAACTCAAGCGTGACGCCCAGGAAAGCCTGAAGCTGGCCCAAGGCGTGGGTCGTGTCCAGGAAGCCGCAGGCAAGGCGCTGACGCTTCGCGCGGCAAAGCCTGCCGCTGTATCGGCCAAGAAGCCAGCGGCTAAACCTGTCGCGGCAAAAACTCCAACAAAAGTGGCCGCCAAGCCGGTGACCAAGGTAGGCGCGAAGGCAGCCAGCAAACCAGTGGCCAAACCTGCCGTGAAAAAACCGGTTGCTGCCAGCGCGGCGAAACCCGTTGCGAAAAAATCGGCCGCCAAAGCTGCCGCCAAGCCTGCCGCCAAGCCTGCCGTAAAAGCAGCCGCTGCCAAACCTGTCGCCGCTAAGCCTGCTGCCAAAGTGGCTGCCAAGCCCGCTGCGAAAACCGCTGCCGCCAAGCCTGCGGCAACGAAAGCCACCGCTGCCAAACCGGCTGTGAAAGCGGTCGCCAAACCCGCTGCGAAGCCGGCTGCCAAGCCAACTGCGACCAAGGCCACTGCTGCCAAACGTGCTGCTGCCAAACCTGCTGCGAAATCCGCGGCCAAGCCAGTCGCCGCCAAGGCGCCTGCCAAAGCTGCGGCTAAGCCTGCGGCTAAACCGGCTGCAGCCAAACCAGCGAGCACCGCTGCCGCCAAGCCTGCCGCGACCAAGCCTGCCGCCAAACCTGCCGCCGCCAAGCCCGCTGCGAAGCCGGCCGTGAAAAAGCCAGCCGCCGCCAAGCCAGCCGCTGCAAAACCGGCAACCGCTCCGGCTGCCAAACCTGCTGCGCCAGCTCCGGCGGCGACCCCCGCGCCAACGGTTGGTACGCCAGCACCGGCACTGAACCCGAGTGTAGCCACCGTCCCAAGCCCCACTCCAACCCGCGCTTCCTAA	MSATKKPVNTPLHLLQQLSGSLLEHLENACSQALADAEKLLAKLEKQRGKAQEKLHKSRTKLQDAATAGKAKAQAKAKDAVKELENLLDALKDRQSETRAYILQLKRDAQESLKLAQGVGRVQEAAGKALTLRAAKPAAVSAKKPAAKPVAAKTPTKVAAKPVTKVGAKAASKPVAKPAVKKPVAASAAKPVAKKSAAKAAAKPAAKPAVKAAAAKPVAAKPAAKVAAKPAAKTAAAKPAATKATAAKPAVKAVAKPAAKPAAKPTATKATAAKRAAAKPAAKSAAKPVAAKAPAKAAAKPAAKPAAAKPASTAAAKPAATKPAAKPAAAKPAAKPAVKKPAAAKPAAAKPATAPAAKPAAPAPAATPAPTVGTPAPALNPSVATVPSPTPTRAS				NA	NA	NA	NA	NA
D1-36_04957	666	mip	COG0545	Outer membrane protein MIP	ATGTCGCGTCATCTTTTTTTACTTCTTTGCATGATTTTCCCAGTGGCCCAAGCCACAGAAAAACCCAACGCAAACGAAGCCCGGGAGCTGGCCTACAGTCTTGGCGCGAGCCTGGGGGAACGCCTGCGCCAAGACGTACCCGACCTGCAGATACAAGCCTTGGTCGAAGGCCTGCAACAGGCCTATCTTGGCAAGCCGCTGGCGTTGGATGATGAACGCATCGAAAGGATCCTGGCCGAACACCAGGCGCAGTTGACGGCGCAATCGGCGACGCCGCAAGACCAAGTGGCGCTGAAGACCGAGCAGAAGTTTCTCAACGAGGAAAAAGGCCGGCCAGGCGTCCAGCAATTGCCGGACGGCATCCTGTTGACCGAACTCAAGCCGGGCAGTGGCACGAAAGCCGGCCCCCACGGCAAGGTCCAAGTGTTGTATGTCGGTCGTCTGCCGGACGGCACGGTGTTCGATTCCAACCATCAGGCACAGTGGTTCAATCTTGATAGCGTGATCGATGGCTGGCGCAGTGCATTACCGCAGATGCCCGTAGGCGCAAAGTGGCGGTTGGTGATTCCTTCAGCCTTGGCCTATGGCGCCGAAGGTGCCGGAGACGTTATTCCACCTTTCACGCCCCTGGTATTTGAAATTGAACTGCTGGGCGCGACGACTTGA	MSRHLFLLLCMIFPVAQATEKPNANEARELAYSLGASLGERLRQDVPDLQIQALVEGLQQAYLGKPLALDDERIERILAEHQAQLTAQSATPQDQVALKTEQKFLNEEKGRPGVQQLPDGILLTELKPGSGTKAGPHGKVQVLYVGRLPDGTVFDSNHQAQWFNLDSVIDGWRSALPQMPVGAKWRLVIPSALAYGAEGAGDVIPPFTPLVFEIELLGATT				NA	NA	NA	NA	NA
D1-36_04958	459	rsd	COG3160	Regulator of sigma D	ATGCTCGAAAGTTGTCAGAATGCTCAGGAACGCTGGGGTGGGGTGCATCTGCTGATCGACCGCTGGTTGCAGGAGCGTCACGAACTGGTTCGAGCCTATGATGCTCTTGGCGACAAGCCTGAAGCACTGAGTGAAAGCCGCAAGCCCTTGCAAGAGTTCTGTGGTGTGCTGGTGGACTATGTGTCCGCGGGTCATTTCGAGATCTACGAGCAACTCACGGGCGAGGCCAAGGCCTTCAATGACAAGCGCGGCCTGGAACTGGCCGACACGATTTACCCGCGCATCGATGTCATCACCGAGAAGCTGCTGGCCTTCAACGACCTGTGCGATGAAGGCAAATGCGTGGCGGAAAAATTCAAGGAACTGGGCGGCTTGTTGCACGAGCGTTTCGAGCTGGAAGACTGCCTGATCGAAGTGCTGCACAACGCCCACAAGGAAGAAGCTGCGGTCCAGGCTTGA	MLESCQNAQERWGGVHLLIDRWLQERHELVRAYDALGDKPEALSESRKPLQEFCGVLVDYVSAGHFEIYEQLTGEAKAFNDKRGLELADTIYPRIDVITEKLLAFNDLCDEGKCVAEKFKELGGLLHERFELEDCLIEVLHNAHKEEAAVQA				NA	NA	NA	NA	NA
D1-36_04959	543	dsbB_2		Disulfide bond formation protein B	ATGTCTCTGGCCAGCTCACGCTTCTTGTTTCTCATGGCTTCCATCGCTGCTGCCCTGGCTATGGGCGTCGCCAGTTATCTGGAATACGCGGTTGGCCTGTCCCCTTGCAGCCTGTGTATCTTGCAGCGGCTGTGCCTGATGCTCTTCCTGGTGAATTGCCTCGTGGCGTGCGTGCATGGCCCAACCCGCAAGGGCTGCATCGCCTATGCAGCGATGGGGGCTGCCTTTGCATCGGCAGGGTTGGCGTTGGCTTGGCGCAATGTACTGGTGCAAAGCGAGTCACATGAGCTGCTGCCTGACTGCATGGCCCAATTGCCGGAGGTGGACTCGTGGTGGAGTGCCGCGCATCGCGTCGCCAATGGTGCCCCCGACTGTGCGAGTGTCACCTGGACGCTGTTCGACCTGAGCATCCCCGAATGGAGCCTGCTGTTCTTCCTCGCCGTTGCTGTCTCGATGACTTACCTGCTGTTGCGCCTGGTCTGGGATGCCCTGGTACGGCCGCTCGGCGGCGAGACGTCGCAGTTGGTCCGGGCGCTGGATTAA	MSLASSRFLFLMASIAAALAMGVASYLEYAVGLSPCSLCILQRLCLMLFLVNCLVACVHGPTRKGCIAYAAMGAAFASAGLALAWRNVLVQSESHELLPDCMAQLPEVDSWWSAAHRVANGAPDCASVTWTLFDLSIPEWSLLFFLAVAVSMTYLLLRLVWDALVRPLGGETSQLVRALD				NA	NA	NA	NA	NA
D1-36_04960	1248	hemY	COG3071	Protein HemY	ATGAAGCGCCTCTACGTGATTCTGTTCGTGGCCATCGCCGTTGCCGCTGTGCTGGGCGTCGCGATTGCCGAGCATTCGGGTTACGTGTTGGTGGCGTACAAGAACTTCCGCTACGAGGCCGGGTTGTGGGTCACGCTGGCATTGATCGCGGTGCTTTGGTTGCTGTGGCGAGGTGTCACCGCGCTGATTGGGCTGGTGACCACCTCGACCGGCGTGGTCAACCCGTGGTCGCGGCGCAACCGCAGTCGTCGAATCCAGGTTGCAATCGAGCACGGACAGTTGGACCTGGCAGAGGGACGCTGGGCCAGCGCCCAACGGCACTTGCATCGTGCCGCCGAAGCCGAGCGGCAGCCGTTGCTGTATTACCTCGGCGCCGCTCGCGCTGCCAACGAGCAGGGCCTTTACGATCAGAGCGATAGCTTGCTGGAGCGCGCCTTGGAGCGTCAGCCCCAGGCGGAGCTGGCTATCGCGCTGACTCACGCCCAGTTGCAGATGGACCGTGGCGACACAGACGGTGCATTGACTACCCTGCAAGCCATGCACGAACGCTACCCCCATAACACCCAGGCCTTGCGTCAGCTGCAACGCTTGCACCAGCAGCGGGGGGATTGGCCGGCGGTGATCCGGTTGCTGCCCGAGTTGCGCAAGGACAAGGTCCTGCCTGCCGCCGAACTGGCAGAACTGGAGCGCCGGGCCTGGGGCGAAAACCTCACCCTGGCAGCCCACCGCGAGGCCGATGGCAGTGTCGGCCTGCAATCGCTTGATCGCGCGTGGCAGCAACTGACTTCCGCCCAGCGCCAGGAACCGGCACTGGTATTGGCCTACGCCGAGCAGCTTCGGCAGCTGGGTGCCCAGGTAGAGGCGGAAGAGGTGCTGCGCGCTGCGCTCAAGCGCAACTACGACAGCCACCTGGCGCGCCTGTATGGCCTGGTTCGTGGCGCGGATTCGAGCCGGCAACTGCAGGTGGCTGAAGGCTGGCTCAAGGATCATCCGAATGATCCGAGCCTGCTCCTGACGCTCGGGCGCCTGTGCCTGCAGAACAGCCTGTGGGGCAAGGCAAGGGATTATCTGGAAAGCAGCCTGCGCATGCAGCGCAACCCCGAAGCTTGCGCCGAGTTGGCGCGGCTGCTGGCGCAGTTGGGGGATGCCGAGCGAAGCAACCAGCTGTTCCAGGAGGGGTTGGGGTTGCTGGATGAGCGCTTGCTTGCGGCGCCGCTACCGGTTTCGCCTCAAGTCCTGTCGACTTGA	MKRLYVILFVAIAVAAVLGVAIAEHSGYVLVAYKNFRYEAGLWVTLALIAVLWLLWRGVTALIGLVTTSTGVVNPWSRRNRSRRIQVAIEHGQLDLAEGRWASAQRHLHRAAEAERQPLLYYLGAARAANEQGLYDQSDSLLERALERQPQAELAIALTHAQLQMDRGDTDGALTTLQAMHERYPHNTQALRQLQRLHQQRGDWPAVIRLLPELRKDKVLPAAELAELERRAWGENLTLAAHREADGSVGLQSLDRAWQQLTSAQRQEPALVLAYAEQLRQLGAQVEAEEVLRAALKRNYDSHLARLYGLVRGADSSRQLQVAEGWLKDHPNDPSLLLTLGRLCLQNSLWGKARDYLESSLRMQRNPEACAELARLLAQLGDAERSNQLFQEGLGLLDERLLAAPLPVSPQVLST				NA	NA	NA	NA	NA
D1-36_04961	1914			hypothetical protein	GTGACGGGATGGCGGCTGCTACTGACCCGGCCGGCGGACGAGTCGTCTGCGTTGGCGGCCGTTCTGGCGCAGGCGGGCATCCATAGCAGCGCCATGCCGCTGCTGGATATCACGCCGGTCCCCCTGTCCGAGTCCGAGCGAGACAAGTTCCAGGCTCTGGATCGGTACAGCGCGGTGATCGTCGTCAGCAAGCCTGCGGCACGCTTGGCCGTGGAGTTGCTGCGTCAATACTGGCCGCGCCTTCCAGAGCAACCCTGGTTCAGCGTAGGCGCCGCGACCGGGCAAATTCTGGCCGATGCCGGCCTCCGCGTTTTTTACCCCGAAAACGGTGACGACAGCGAAGCCCTGCTTGAGCTGGCGGCGTTGCGCCAGGCTATCGACCGGCCTGACGCACGTGTCTTGATTGTGCGTGGCGAGGGTGGGCGCGGTTTGCTGGCAGAGCGTTTGCGAGAGCAAGGTGCTAGTGTCGACTACCTGGAGTTGTACCGTCGCGGCTTGCCGCACTACGGCGAAGGCGAGTTGCCAGCGAAGGTCGAGGCGGAACGCTTGAACGCGCTGGTGGTCAGCAGTGGGCAGAGCTTCGAGCATCTGCACCGGCTGGCCGGTGACGCGTGGCCCGCCCTGGCGCGGCTACCCTTGTTTGTTCCAAGCCCCAGGGTCGCCGAGATGGCGCGTGCCGCCGGGGCCAGGACAGTTGTGGATTGTCGTGGCGCCAGTGCCGCGGCTTTGCTGGCGGCTTTACGGGAACAGTCCGTGCCGTTTTCTAATGCAAAGGATGGATACGTGAGCGAAACAGCCTTGCCAAAAGATCAAGATCAGCCAGCGGTCGAAGCTCCGACTGACCCGTCGGTGCCGGTGGCGCCGCGCCGCGGTAACGGGCTTGCGATTGTCGCGTTATTGTTGGGCGCTGCCGGCGTGGCCGTGGGCGGATGGGGTATCTGGCAAGTGCGTCACCTGCAAGCCAATACCCAGCAGCAGGCCGCTCAGGTCCAGGCACTCAACGACCAGGCCCAGAACCTCAAGCTCAACGAGCAGCGGCTGAGCGAACGCCTGGAGCAGTTGCCTGCGGCTCAAGAGCTGGAAGAGCGGCGACGTCAGGTCGCCCAGTTGCAAGGCGACCAGCAGCGCCTGAACCAGCGCCTGGAAACCGTGCTTGGTTCCAGCCGCAAGGACTGGCGCCTGGCCGAAGCCGAGCACCTGTTGCGCCTGGCCAGCCTGCGACTTTCCGCCCTGCAAGACATCAACAGTGCCCAGGCCCTTGTGCAGGGTGCCGATGAAATCCTTCGCGAGCAAAACGATCCCGGGTCCTTCGCTGCCCGCGAACAGCTGGCCAAGACCCTCGCTGCGTTGCGCAGCACAGAGCAGCCAGATCGCACCGGCCTGTTCCTCCAGTTGGGCGCCCTGCGTGACCAGGTCTTGCAGTTGTCGGAAATCGCTCCCGAATACAAGGACCGCGGTGAATCCCTGCTGGGGCTGACCGCCGATGGCGACGGCGCCAGCCAGTGGTCGCAGTGGTGGGATCGTATTTCGCGCTACATCCGCATCGATTTCAATGCCGATGAAAATGTCCGTCCGCTCCTCGCCGGCCAGAGCCTGATGCAGGTGCGCCTGGCCTTGAGCCTGGCCCTGGAGCAGGCGCAATGGGCCGCCCTCAACGGCCAGGCGCCGGTGTACACCCAGGCACTGGCCGAAGCCCGTGACGTCCTCAAGAACAATTTCAACCAGGACAACCCGCAAAGCAAAATCATGCTGGAACGAGTCGTTGAGCTGGGCAAGATGCCGGTGACGGTGGTCACGCCAGACCTTACCGGCACGCTCAGCGCCGTCCAGGCCTATCTTGAACGCCGCAACGTGAACGCCGAAGAATCGGTCAAGCCGTTGCCCAAGGCAGGTGAGCAGGAGGCCACGCCATGA	MTGWRLLLTRPADESSALAAVLAQAGIHSSAMPLLDITPVPLSESERDKFQALDRYSAVIVVSKPAARLAVELLRQYWPRLPEQPWFSVGAATGQILADAGLRVFYPENGDDSEALLELAALRQAIDRPDARVLIVRGEGGRGLLAERLREQGASVDYLELYRRGLPHYGEGELPAKVEAERLNALVVSSGQSFEHLHRLAGDAWPALARLPLFVPSPRVAEMARAAGARTVVDCRGASAAALLAALREQSVPFSNAKDGYVSETALPKDQDQPAVEAPTDPSVPVAPRRGNGLAIVALLLGAAGVAVGGWGIWQVRHLQANTQQQAAQVQALNDQAQNLKLNEQRLSERLEQLPAAQELEERRRQVAQLQGDQQRLNQRLETVLGSSRKDWRLAEAEHLLRLASLRLSALQDINSAQALVQGADEILREQNDPGSFAAREQLAKTLAALRSTEQPDRTGLFLQLGALRDQVLQLSEIAPEYKDRGESLLGLTADGDGASQWSQWWDRISRYIRIDFNADENVRPLLAGQSLMQVRLALSLALEQAQWAALNGQAPVYTQALAEARDVLKNNFNQDNPQSKIMLERVVELGKMPVTVVTPDLTGTLSAVQAYLERRNVNAEESVKPLPKAGEQEATP	PGPT0003675_114	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003675-hemDX-K13543	NA	NA
D1-36_04962	942	hemC	COG0181	Porphobilinogen deaminase	ATGTCCCCTCGCGAGATCCGCATCGCCACCCGTAAAAGCGCCTTGGCCCTCTGGCAGGCCGAATACGTCAAAGCCCGCCTCGAAACGGCCCATCCGGGGCTGGTCGTGACGCTGGTGCCCATGGTCAGTCGCGGCGACAAGCTGCTGGACTCGCCACTCTCGAAAATCGGTGGCAAGGGCTTGTTCGTCAAGGAACTGGAAACAGCCTTGCTGAACAATGAAGCCGATATCGCCGTGCATTCAATGAAAGACGTGCCCATGGACTTCCCCGAAGGCCTGGGCCTTTTTTGCATCTGCGAACGAGAAGATCCGCGCGACGCATTCGTCTCAAACGACTTTTCCAGCCTTGACGCGCTGCCCGCCGCGAGTGTGGTGGGCACATCGAGCCTGCGCCGCCAGGCACAGCTGCTGGCCCGTCGCCCTGATCTGCAGATCCGCTTCCTGCGGGGCAACGTCAACACGCGCCTGGCCAAGCTCGACGCCGGCGAGTACGACGCGATCATCCTCGCCGCAGCGGGCCTGATCCGTCTGGGTTTCGAAGAACGCATCACCTCGGCCATCAGCGTCGATGACAGCCTGCCGGCCGGAGGGCAGGGGGCGGTGGGCATTGAATGCCGCAGCGCCGACAGCGAGATTCACGCTCTGCTGGCACCGCTGCACCATGAAGACACGGCTATCCGAGTCTTCGCCGAGCGGGCACTCAACAAGCATCTGAACGGCGGCTGCCAGGTGCCGATCGCCTGCTACGCCGTCCTTGAAGGTGAGCAGGTCTGGTTGCGGGGCCTGGTGGGCGATCCGAGTGGCGGCCAACTGCTCGCCGCCGAGGCCCGGGCGCCGCGTCGCGATGCCGAGGCGTTGGGCGTGCGCGTCGCCGAGGACCTGTTGAGCCAAGGCGCCGACGATATTCTCAAGAAAGTCTACGGCGAGGCCGGCGACGCGTGA	MSPREIRIATRKSALALWQAEYVKARLETAHPGLVVTLVPMVSRGDKLLDSPLSKIGGKGLFVKELETALLNNEADIAVHSMKDVPMDFPEGLGLFCICEREDPRDAFVSNDFSSLDALPAASVVGTSSLRRQAQLLARRPDLQIRFLRGNVNTRLAKLDAGEYDAIILAAAGLIRLGFEERITSAISVDDSLPAGGQGAVGIECRSADSEIHALLAPLHHEDTAIRVFAERALNKHLNGGCQVPIACYAVLEGEQVWLRGLVGDPSGGQLLAAEARAPRRDAEALGVRVAEDLLSQGADDILKKVYGEAGDA	PGPT0003660_2431	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_VITAMIN_PRODUCTION	PLANT_VITAMIN_RELATED_HEME_METABOLISM	PLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003660-hemC-K01749	NA	NA
D1-36_04963	747	lytR	COG3279	Sensory transduction protein LytR	ATGAATGTCCTGATCGTTGACGACGAACCACTGGCCCGCGAGGACCTGAGCCGATTGCTCCGTGAACTCGAGGGTTACAGTGTCCTGGAGCCGAGCGCCACCAATGGCGAAGAGGCATTGGCCCTAATCGACAGCCACAAGCCGGATATCGTGCTGCTCGACATTCGCATGCCGGGTCTCGACGGCTTGCAGGTCGCGGCGAAGCTCTGCGAGCGCGAGTCACCTCCGGCGGTGGTGTTTTGCACCACGCGTGACGAGTTTCCTCCCGAGGTATTGCAGACCGGTGCCGTGGGCTATCTGCTCAAGCCAGTGTCCATCCAGGCGCTGGAGGAGGCGTTGCGCAAGGCCGAGCGGCCGAACCGCACGCAGTTGGCGGCGCTCACCCGCCCGGCCGCCGAGAGTGGCAGTGGCCCACGCAGCCACATCAGCGCGCGGACCCGCAAGGGCATCGAATTGATCCCCTTGAACCAAGTGGTTTATTTCATAGCCGACCACAAGTACGTGACCTTGCGTCACGAAAGCGGTGAAGTGTTGCTGGACGAGCCGCTCAAGGCTCTCGAGGATGAGTTCGGCGAGCGGTTCGTGCGTATCCACCGCAACGCCCTGGTGGCCCGCGAACGTATCGAGCGCTTGCAGCGTACGCCGCTGGGGCATTTCCAGCTGTACCTGAAGGGATTGAATGGCGATGCGCTGATCGTCAGTCGGCGGCATGTCGCCGGCGTGCGCAAGATGATGCAGCAGCTCTAG	MNVLIVDDEPLAREDLSRLLRELEGYSVLEPSATNGEEALALIDSHKPDIVLLDIRMPGLDGLQVAAKLCERESPPAVVFCTTRDEFPPEVLQTGAVGYLLKPVSIQALEEALRKAERPNRTQLAALTRPAAESGSGPRSHISARTRKGIELIPLNQVVYFIADHKYVTLRHESGEVLLDEPLKALEDEFGERFVRIHRNALVARERIERLQRTPLGHFQLYLKGLNGDALIVSRRHVAGVRKMMQQL	PGPT0026145_228	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_EXTERNAL_SIGNAL_SENSING,PGPT0026145-algR-K08083	NA	NA
D1-36_04964	1395	argH	COG0165	Argininosuccinate lyase	ATGAGCACTGACAAGACCAATCAGTCCTGGGGCGGCCGCTTCAGTGAACCCGTCGACGCTTTCGTCGCCCGCTTCACCGCCTCCGTCAACTTCGACCAGCGCCTGTATCGCCACGACATCATGGGCTCGATTGCCCACGCCACCATGCTGGCCAAGGTCGGCGTGCTGACCGATGCCGAGCGCGACAGCATCATCGATGGCCTGAAGACCATCCAGGGCGAGATCGAGGCCGGCCAATTCGATTGGCGCGTTGACCTCGAAGACGTGCACATGAACATCGAAGCGCGCCTGACCGATCGCATTGGCGTGACCGGCAAGAAACTGCACACCGGCCGCAGCCGCAACGACCAGGTCGCCACCGATATCCGCTTGTGGCTGCGCGATGAGATCGACCTGATCCTGGCCGAAATCACCCGCTTGCAAAAAGGTCTGCTGGAACAAGCCGAGCGCGAGGCCGAGAGCATCATGCCGGGCTTCACGCACCTGCAGACCGCCCAACCTGTAACGTTTGGGCATCACATGCTGGCCTGGTTCGAAATGCTCAGCCGTGACTACGAGCGCCTGGTGGATTGCCGCAAGCGCACCAACCGCATGCCCCTGGGCAGCGCCGCGCTGGCCGGCACCACCTACCCGATCGACCGTGAATACACCGCCCAGTTGCTGGGCTTCGACACCGTCGGTGGCAATTCGCTGGATAATGTCTCGGACCGCGATTTCGCCATCGAATTCTGCGCCGCCGCGAGCATTGCCATGATGCACTTGTCGCGCTTCTCCGAAGAGCTGGTGCTCTGGACCAGCGCGCAATTCCAGTTCATCGATTTGCCCGACCGTTTCTGCACCGGCAGCTCGATCATGCCGCAAAAGAAAAACCCCGACGTACCGGAACTGGTACGCGGCAAGAGCGGCCGGGTGTTCGGCGCATTGATGGGCCTGCTGACCCTGATGAAAGGCCAACCGCTGGCCTACAACAAGGACAACCAGGAAGACAAGGAGCCGCTGTTCGACGCTGCCGACACCCTGCGTGATTCGCTGCGGGCGTTCGCCGACATGATCCCAGCCATCAAGCCCAAGCATGCGGTCATGCGCGAAGCGGCCCTGCGCGGCTTCTCCACCGCCACTGACCTGGCCGATTACCTGGTGCGCCGTGGCCTGCCGTTCCGGGACTGCCATGAAATCGTCGGCCATGCCGTGAAGTATGGCGTAGACAGCGGCAAGGACCTGGCAGAGATGAGCCTGGACGAACTGCGCCAGTTCAGCGACCAGATCGAGCAAGACGTGTTCGCCGTGCTGACCTTGGAAGGTTCGGTCAATGCACGTGATCACATTGGCGGCACCGCACCGGCGCAGGTCAAGGCCGCCGTGATGCGTGGCCAGGCGCTGATTGCCAGCCGCTAA	MSTDKTNQSWGGRFSEPVDAFVARFTASVNFDQRLYRHDIMGSIAHATMLAKVGVLTDAERDSIIDGLKTIQGEIEAGQFDWRVDLEDVHMNIEARLTDRIGVTGKKLHTGRSRNDQVATDIRLWLRDEIDLILAEITRLQKGLLEQAEREAESIMPGFTHLQTAQPVTFGHHMLAWFEMLSRDYERLVDCRKRTNRMPLGSAALAGTTYPIDREYTAQLLGFDTVGGNSLDNVSDRDFAIEFCAAASIAMMHLSRFSEELVLWTSAQFQFIDLPDRFCTGSSIMPQKKNPDVPELVRGKSGRVFGALMGLLTLMKGQPLAYNKDNQEDKEPLFDAADTLRDSLRAFADMIPAIKPKHAVMREAALRGFSTATDLADYLVRRGLPFRDCHEIVGHAVKYGVDSGKDLAEMSLDELRQFSDQIEQDVFAVLTLEGSVNARDHIGGTAPAQVKAAVMRGQALIASR	PGPT0014242_85	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014242-argHA-K14681	NA	NA
D1-36_04965	660			Glutathione S-transferase	ATGCTCAAGCTTTATGGTTTTTCTGTCAGCAATTATTACAACATGGTCAAGCTGGCTCTCCTGGAGAAGGGAGTGCCCTTCGAAGAAGTCCAGTTCTTTGGCGCCCAGACTCCGGAAGCGCTGGCCATCAGCCCGCGCGGCAAGGTTCCGGTGCTGAAGACCGAGCAGGGTTTCATCAACGAGACCAGCGTGATCCTTGAGTACATCGAGCAAACCCAGCCAGGCAAGGCCTTGCTGCCAACGGACCCGTTCGGGCGAGCCCAGGTATTGGCCTTGTGCCGGGAAATCGAGCTGTACATCGAGCTGCCGGGGCGCGCCTGTTATCCGGAAGCGTTTTTCGGCATGTCGGTGCCCGATGCGATCAAGGAAAAGGCCAGAGGTGAATTGCTGTTGGGGTTCGCTTCGCTCCGCCGGCACGGCAAGTTTTCGCCTTATGTGGCGGGAGAGGCGTTCAGCATCGCGGACCTGTATTTCTACTACAGCCTTTCGTTGGTTTTGCAGGTGGGCCGGAAAGTCTTCGACATCGATCTGTTGGCGGACATGCCGGCAGCCAGGAACTTGATGGAGTTGTTGGAGCAGAATCCGCACGTGAAGCGGATCGCGGCGGATCGGGATGCTGAGATGCCCGCGTTTTTGGCGAAGACCGCGGCCAGGAAATGA	MLKLYGFSVSNYYNMVKLALLEKGVPFEEVQFFGAQTPEALAISPRGKVPVLKTEQGFINETSVILEYIEQTQPGKALLPTDPFGRAQVLALCREIELYIELPGRACYPEAFFGMSVPDAIKEKARGELLLGFASLRRHGKFSPYVAGEAFSIADLYFYYSLSLVLQVGRKVFDIDLLADMPAARNLMELLEQNPHVKRIAADRDAEMPAFLAKTAARK	PGPT0013170_10929	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799	NA	NA
D1-36_04966	291			hypothetical protein	ATGAGCGAGCCCATCGACAACGGCAACGACATTGACGAAGAAGAGTTCGTCGAGAATACGCTGATCCAGGCCATCGAGAATCAGATCGAAAGCGACAATCCACCAGCGGCCAAGGCCACGTTCAACAAGCTGACCCTGGTGGGTTATGAGCGTGAAGAAATTCTCAACCTGATGGCCCACGTACTGGCGGTGGAAATCGACGCGATCCTCGAAGAAGACCGTCCGTTCAATACCGAGTGGTACGAAGCTGCATTGCGCGCCCTGCCCGAGTTGCCGCCGGAAAAAAACTAA	MSEPIDNGNDIDEEEFVENTLIQAIENQIESDNPPAAKATFNKLTLVGYEREEILNLMAHVLAVEIDAILEEDRPFNTEWYEAALRALPELPPEKN				NA	NA	NA	NA	NA
D1-36_04967	246			hypothetical protein	ATGTCGCTTACCCCTGAGCTGGTTGCCGAACTGGAAATCCTTGCACTCTTCAACCTGGACAGTTCCCAGGAAGGCCTGAAAATTCATCAGACCGCTGCCCCCAAAGCCATCGCCGCTGCCCAACGCCTGTTTGACAAAGAACTCATCACCCAACCCGATGGCGGTTACCTGACCAGCCTGGGCCGTGATGCCGCACAGAATGTGCAAACGGTTCTGACGATTCTTAGCGTCCAAGAAACCGCCTGA	MSLTPELVAELEILALFNLDSSQEGLKIHQTAAPKAIAAAQRLFDKELITQPDGGYLTSLGRDAAQNVQTVLTILSVQETA				NA	NA	NA	NA	NA
D1-36_04968	2844	cyaA	COG3072	Adenylate cyclase	ATGACCCGCAACCATGAAATACGCCCCGATCTGGACCAGGGAATCGACCGCAAGGTCCTGAGCCAGCTGCGCGCGCGTTTCCTCAAGCTCAACAGCGGCCGAATGGAGCGCGCCCTCGAAGGGCTGTCGACCCGCCAGCAGGGCGTGTTGACGCTGCTTCCGCTGTTTTTTCATGTCAACCATCCCTTGTTGCCCGGTTATGTCTCGGGCAGCACACCGGCCGGGCTGTCCAATTACGAACCCGACACCGACGTCCTCGCCGAGGCTCAGCGGCTGACTCGCTCGTTCTCGTACAAACCTCGCCACGGCAGCAACCCACCGCGGCCCATCCTCGGCCTGTTCCTGATGGGCAGTCTCGGCACCTTGGCCCAGGCCGATCAGAGCGACATGGACGTTTGGGTGTGCCATGGCCCGGACCTGAGCGACGACGAACTGGCCGAACTGCGAAAGAAATGCCAGTTGCTGGAAACCTGGGCGGCCACCCAGGGCGCCGAAGCGCACTTCTTCCTCATCGACCCGCAGCGATTCGTCCGCGGCGAACGGGACAATCAGCTCAGCTCCGACGACTGTGGAACCACCCAGCATTATCTGTTGCTGGATGAGTTCTATCGCACCGCGATCTGGCTGGCCGGGCGCACGCCAATCTGGTGGCTGGTGCCGGTCTACGAAGAAGAAAACTACCAGCAGTACACCCATACGCTGATCTCCAAACGCTTCATTCGTGCGGACGAGACTCTGGACTTGGGTCACCTGGCCTACATCCCGCCGGGAGAATTCATCGGCGCCGGGCTCTGGCAGTTATTCAAGGGAATCGAATCGCCCTACAAGTCGGTGCTCAAGCTACTGCTGACCGAGGTCTACGCCAGCGAACATCCGGATGTCCGCTGCCTGAGCCTGCGTTTCAAGCAGGCGGTGTTCGCCAATCACCTGGATCTGGATGAGCTGGATCCGTACATGGTCGTTTATCGCCGCCTCGAGGAATACCTGATCGCCCGCGGCGAGCCGGAACGTCTGGAACTGATCCGGCGCGCCCTGTACCTGAAGGTCAATCGCAAGCTCACCGGCCATGCTCGCAGTAGCGGCTGGCAGCGCAACCTGCTGGAGCGCCTGGCCCGGGATTGGGGCTGGGACCAACGTCAACTGGCGCTGCTGGACAGCCGCAGCCAGTGGAAGGTGCGCCAAGTCAGCAACGAGCGGCGGGCCCTGGTCAACGAGCTGACCTACAGCTATCGCTTCCTGACCCAGTTCGCCCGCACCGAGAAAACCGTCAGCCTGATCAACAAGCGCGACCTCAATGTTCTCGGACGCCGGCTGTACGCGGCCTTCGAGCGCAAGGCTGACAAGGTCGAGTTCATCAATCCCGGGATTGCCCCGGACCTGGCGGAAGACACCCTGACCCTGGTCCAGTCGCCGAACAAGAAAGAGCCCGGGCAAAACCAATGGGGTTTGTACAACGGCAGCCTGAACGCGCTGGAATGGGAAAATTTCGCCCCCATCAAACGCAGCCGCGAGCTGCTTGAATTACTCACCTGGTGCCATCGCAACGGTGTGATCGACAGCAGCACGCGTCTGGCGCTGCACCCGGGCGAAAGCGACCTGAGCGAGTTTGAACTGTTCAACCTGTTGGGCAGTTTGCAGCAGGCCATCGCTTTGCCCCTGGCCACGGTCGACGAAGAACAGTTGCTCCACGCCAGCGTGCCCAGTGAAGTGTTGATTCTGGTAAACGTGGGCGTCGACCCACTCAAGCATCACCGCGACCTGAACATCCTGATGACCACCGAGCGCACCGATTCCCTGAGCTACGCCGGGGTCCGGGAAAACCTGGTGCTGACCCTCGACCAGGTCACGCTCAATAGCTGGAATGAAGTGCTGGTCAACCGCTTCGACGGCGAGCATGCCCTGCTCGATTGCTTGCGCGACTACCTCAACGCCTTGCCTGCGATACAACGCCAGCCGCGCTTGCAGGTCCGGTGCTTCTGTCACAACCGCGCGCAATTCATCGCACGCCGGGTCGAAGAAGTCATCGAGACCACCCAGACCCTGCTATTGAGCAAGCTCAATTACCGTTATCTGCTGCAAGTCCAGCAGCACTACCACGTACTGGAATTGGTGCCGGGCCAGGTCAGCCACGTGGCGCTGGGCAGCCTGTCGGCATTGATGGATTACCTGGGGGAAGAGCTGACGGCCTATAGCCCGCTGCACCTGGATTCAATGGCGTTGGAAGATCACGATGTGGCGCTGATCCTGCCCATGGGCCAACCCGAGTGCATCCAGGTGTTCTACCGGGTCTATGAGGACGAAGCCGAGCTGTACGTGCTCGATGAGCTCAACGCCTTGTGGCAGCAGCGCTTGCCTTATCACGACGAACAGAGCCTGCTGGTACCGCTGCAGCGGTTCCTGCAATCGGTGCTGTACCGCCGCGATGCCTTGCTACCGATGGACGCTGCCCAGCCGGTCACGCTGGAAATGCTCTATTACCAGCTCCTGCCTTCAGGGAACGGGCGGGCCCGGAGGGTCGAGTCACGACAGGCGCCGCAGACGCCGGTCAACAAACCGTTCTATGACGTACAAGCAATCATCGGCAAAGCGGCGCACGGACAAGTGCACGTCACCCTGTATTGCGATCAGCGGGAATTTTCGGAACTGGAGCATGGCGACCAATTGTTTCATGTGGTCGCCAGGGAAATTGTCGGGCAGCGCCGCGACGCCGAACGCTATCGTTGCTACATCACCGACCTGGACCTCTCGGGCCTGGTGGGTGACGGCGCCAGCCCAAGTATCCTGTTCCTGCGCTACAAAGCCGACCTGGAACGGGCACTGAACGAGGCGCTGAACCAGGTCTGA	MTRNHEIRPDLDQGIDRKVLSQLRARFLKLNSGRMERALEGLSTRQQGVLTLLPLFFHVNHPLLPGYVSGSTPAGLSNYEPDTDVLAEAQRLTRSFSYKPRHGSNPPRPILGLFLMGSLGTLAQADQSDMDVWVCHGPDLSDDELAELRKKCQLLETWAATQGAEAHFFLIDPQRFVRGERDNQLSSDDCGTTQHYLLLDEFYRTAIWLAGRTPIWWLVPVYEEENYQQYTHTLISKRFIRADETLDLGHLAYIPPGEFIGAGLWQLFKGIESPYKSVLKLLLTEVYASEHPDVRCLSLRFKQAVFANHLDLDELDPYMVVYRRLEEYLIARGEPERLELIRRALYLKVNRKLTGHARSSGWQRNLLERLARDWGWDQRQLALLDSRSQWKVRQVSNERRALVNELTYSYRFLTQFARTEKTVSLINKRDLNVLGRRLYAAFERKADKVEFINPGIAPDLAEDTLTLVQSPNKKEPGQNQWGLYNGSLNALEWENFAPIKRSRELLELLTWCHRNGVIDSSTRLALHPGESDLSEFELFNLLGSLQQAIALPLATVDEEQLLHASVPSEVLILVNVGVDPLKHHRDLNILMTTERTDSLSYAGVRENLVLTLDQVTLNSWNEVLVNRFDGEHALLDCLRDYLNALPAIQRQPRLQVRCFCHNRAQFIARRVEEVIETTQTLLLSKLNYRYLLQVQQHYHVLELVPGQVSHVALGSLSALMDYLGEELTAYSPLHLDSMALEDHDVALILPMGQPECIQVFYRVYEDEAELYVLDELNALWQQRLPYHDEQSLLVPLQRFLQSVLYRRDALLPMDAAQPVTLEMLYYQLLPSGNGRARRVESRQAPQTPVNKPFYDVQAIIGKAAHGQVHVTLYCDQREFSELEHGDQLFHVVAREIVGQRRDAERYRCYITDLDLSGLVGDGASPSILFLRYKADLERALNEALNQV	PGPT0015070_112	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-OTHER_BACTERIAL_DEFENSE_SYSTEMS	CE-BACTERIAL_FITNESS-BACTERIAL_TOXINS,PGPT0015070-cyaA-K05851	NA	NA
D1-36_04969	411	rnk	COG0782	Regulator of nucleoside diphosphate kinase	ATGACCGCACCTTCCATCACCCTTACTCGCTTGGACGTGCAGCGTCTGGAGCGTTTGATCGACAGCCTGGATGAAACGCTTCCCGGCGTGATCGCCTTGCAAACCGAACTGGATCGCGCCGAGAACCTGGTGGGTCACGATGAAGTGCCTGCCGATGTCGTAACCATGAACTCGCGGGTGCACTGTCGCGAGGAAAGCAGCGGCAAGGATTATCACCTGACGCTGGTCTACCCCAAGGATGCCAACGCCGACGAGGGCAAGATTTCGATCCTGGCGCCAGTGGGCAGCGCCTTGCTGGGCTTGAAAGTCGGCCAGCACATCGACTGGCCGGCGCCGGGCGGCAAGACCTTGAAGCTGACATTGCTGGAGGTCGAGTCGCAGCCGGTCAACGGTGGCGACTGCGCATTCTGA	MTAPSITLTRLDVQRLERLIDSLDETLPGVIALQTELDRAENLVGHDEVPADVVTMNSRVHCREESSGKDYHLTLVYPKDANADEGKISILAPVGSALLGLKVGQHIDWPAPGGKTLKLTLLEVESQPVNGGDCAF				NA	NA	NA	NA	NA
D1-36_04971	219			hypothetical protein	GTGAGCCAGACCGTCCCGGCGCGGCCGCCCAAGCCGCTCTACAGCAATGTCAGCCCGGCCGTGCCGTCGCCGTGCACCAGTGTGTGCAAGCTCGATGAACGCAAGGTCTGCCTGGGTTGTTTCCGGCATGTGGAGGACATACGCGAATGGCGCTCGGCTGATGATGAGCGTCGGCGGTTGATTTGCGCCGAGGCGCTCAAGCGCAAGTCGCTGGTTTAA	MSQTVPARPPKPLYSNVSPAVPSPCTSVCKLDERKVCLGCFRHVEDIREWRSADDERRRLICAEALKRKSLV	PGPT0013210_1338	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013210-ydhL-K06938	NA	NA
D1-36_04972	333	cyaY	COG1965	Iron-sulfur cluster assembly protein CyaY	ATGAGTTTGACTGAAGCCCGTTTCCACGATCTGGTCGATGAAACCCAGGAAAAGCTGGAGGATATCTTCGACGAGAGCGACCTGGACATCGACCTGGAAATCTCCGCCGGCGTACTGACCGTCAAGTTCGAAAATGGCAGCCAGCTGATTTTCAGCCGCCAGGAGCCGTTGCGGCAGTTGTGGCTGGCGGCGGTGTCCGGTGGTTTCCACTTCGACTACGACGAGGAAAGCGAGCGCTGGATGTGTGACAAGAGCGAAGAGCAACTGGGCGAGATGCTCGAGCGCATCGTCAAGCAGCAGGCTGGCGTCGAATTCGATTTCGAAGGTTTGTGA	MSLTEARFHDLVDETQEKLEDIFDESDLDIDLEISAGVLTVKFENGSQLIFSRQEPLRQLWLAAVSGGFHFDYDEESERWMCDKSEEQLGEMLERIVKQQAGVEFDFEGL	PGPT0004050_220	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-OXIDATIVE_STRESS_RELATED_PROTEIN,PGPT0004050-cyaY-K06202	NA	NA
D1-36_04973	171			hypothetical protein	ATGAAGCGCCTGATCTCTTCCCTTGCTGCGCTCGTCGCGGTTGCCTGCCTTGTGACAGCCTGTGGTCAAAAAGGTCCGCTGTACCTGCCTGATGACAGCAAGTCCCCTGAAGAGCAGGCCAAGTCGTCGCAATCCAAGTCCCACTCGCACGACACCCAGACCACTTACTAA	MKRLISSLAALVAVACLVTACGQKGPLYLPDDSKSPEEQAKSSQSKSHSHDTQTTY				NA	NA	NA	NA	NA
D1-36_04974	1248	lysA	COG0019	Diaminopimelate decarboxylase	ATGGACGCTTTTAACTACCGTGGCGGGGAGCTGTTCGCGGAAGGGGTTGCCCTGTCCGCGATCGCCGAACGTTTCGGCACGCCGACCTACGTCTATTCCCGGGCCCACATCGAAGCCCAGTACCGGACGTTCGCCGATGCCCTCGAAGGCATGCCGCACCTGGTGTGCTTCGCTGTAAAAGCGAACTCGAACCTGGGCGTGCTCAACGTCCTGGCGCGCCTGGGCGCAGGCTTCGACATCGTGTCAGGTGGCGAGCTGGAGCGCGTGCTGGCCGCGGGCGGCAGTGCCGACAAAATCGTGTTCTCCGGCGTCGGCAAGACCCGCGAAGACATGCGTCGCGCCCTGGAAGTCGGCGTGCACTGCTTCAACATCGAATCCACTGACGAACTGGAGCGCCTGCAAGTCGTCGCCGCCGAACTGGGTGTTCGTGCGCCGGTTTCCCTGCGCGTGAACCCGGACGTCGACGCCGGCACCCACCCGTACATTTCCACGGGCCTTAAGGAAAACAAGTTCGGCATCGCCATTGCCGACGCCGAGGACGTGTACGTACGCGCCGCCCAACTGCCGAACCTGGAAGTGCTGGGCGTCGATTGCCACATCGGCTCGCAACTGACCACCCTGGAACCGTTCATTGACGCCCTCGACCGCCTGCTGGCGCTTGTCGATCGCCTCGGCGATTGCGGCATCTACCTGCGTCACATCGACCTGGGCGGCGGTGTCGGCGTGCGCTATCGCGATGAAGAGCCACCGCTGGTGGCCGACTACATCAAGACCGTGCGCGAGCGCCTCGAAGGCCGTGACCTGGCGCTGATGTTCGAGCCCGGCCGCTACATCGTCGCTAACGCCGGCGTGCTGTTGACCCAGGTCGAGTACCTCAAGCACACCGAGCACAAGGATTTCGCCATCGTCGACGCGGCGATGAATGACCTGATCCGCCCGGCGCTGTACCAGGCCTGGATGGACGTCACAGCCGTGCGCCCTCGCGATACCGCGGCCCGCCCCTACGACATCGTCGGGCCGATCTGCGAAACCGGCGACTTCCTTGCCAAGGGCCGGGAGTTGGCGCTGGAAGAAGGCGATCTGCTGGCCGTTCATTCGGCGGGCGCCTACGGGTTTGTCATGAGTTCCAACTACAACACCCGCGGCCGCTGCGCCGAGGTGCTGGTGGACGGTGATCAGGCATTCGAAGTACGCCGCCGCGAGACGGTAGCCGAACTGTTTGCCGGCGAAAGCCTGCTGCCGGAGTAA	MDAFNYRGGELFAEGVALSAIAERFGTPTYVYSRAHIEAQYRTFADALEGMPHLVCFAVKANSNLGVLNVLARLGAGFDIVSGGELERVLAAGGSADKIVFSGVGKTREDMRRALEVGVHCFNIESTDELERLQVVAAELGVRAPVSLRVNPDVDAGTHPYISTGLKENKFGIAIADAEDVYVRAAQLPNLEVLGVDCHIGSQLTTLEPFIDALDRLLALVDRLGDCGIYLRHIDLGGGVGVRYRDEEPPLVADYIKTVRERLEGRDLALMFEPGRYIVANAGVLLTQVEYLKHTEHKDFAIVDAAMNDLIRPALYQAWMDVTAVRPRDTAARPYDIVGPICETGDFLAKGRELALEEGDLLAVHSAGAYGFVMSSNYNTRGRCAEVLVDGDQAFEVRRRETVAELFAGESLLPE	PGPT0023875_1	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023875-mrcA-K05366	NA	NA
D1-36_04975	831	dapF_2	COG0253	Diaminopimelate epimerase	ATGCTGCTGCGTTTTACCAAGATGCACGGCCTGGGCAATGACTTCATGGTCCTCGACCTGGTCAGCCAGCACGCGCATATCCTGCCCAAGCACGCCAAACAATGGGGCGACCGGCACACCGGCATCGGTTTCGACCAATTGCTGATCGTCGAGGCACCAAACAACCCGGACGTGGATTTCCGCTACCGGATCTTCAATGCCGACGGTTCGGAAGTGGAGCAGTGCGGCAACGGCGCGCGCTGTTTCGCCCGTTTCGTGCTGGACAAGCGCCTGACCGCCAAGCGGCAGATTCGCGTCGAGACCAAAAGCGGCATCATCGAACTGGATGTGCGCAGTGACGGCCAGATCGGCGTCAACATGGGCGCCCCGCGCCTGGTGCCGGCGGATATCCCATTCCAAGCGCCAGCCCAAGCCCTGAGCTATACCGTGGACGTCGACGGCACCGCGGTGGAACTGGCGGCGATCTCCATGGGCAACCCCCATGCCGTACTGCGCGTGGACGACATCAACAGCGCTGCCGTACACGACCTGGGACCAAAGATCGAAAACCATCCGCGCTTCCCGGCGCGCGTCAACGTCGGCTTCCTGCAGGTCATCGATCGCCACCGCGCCCAATTGCGTGTATGGGAACGTGGCGCCGGGGAAACCCAGGCATGCGGCACGGGCGCCTGCGCCGCCGCCGTCGCCGCGATCAGCCAGGGGTGGATGGATTCGCCGCTGCTGATCGACCTGCCCGGCGGGCGTCTGTCCATCGAATGGGCAGGTCCAGGCCAACCGGTGATGATGACCGGCCCGGCCGTACGTGTATACGAAGGACAAGTTCGTCTTTGA	MLLRFTKMHGLGNDFMVLDLVSQHAHILPKHAKQWGDRHTGIGFDQLLIVEAPNNPDVDFRYRIFNADGSEVEQCGNGARCFARFVLDKRLTAKRQIRVETKSGIIELDVRSDGQIGVNMGAPRLVPADIPFQAPAQALSYTVDVDGTAVELAAISMGNPHAVLRVDDINSAAVHDLGPKIENHPRFPARVNVGFLQVIDRHRAQLRVWERGAGETQACGTGACAAAVAAISQGWMDSPLLIDLPGGRLSIEWAGPGQPVMMTGPAVRVYEGQVRL	PGPT0007230_3010	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTION	PHYTOHORMONE-CYTOKININ_METABOLISM	PHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007230-dapF-K01778	NA	NA
D1-36_04976	723			hypothetical protein	ATGACCGACAAGCCAAAGGTTCCAGCCCCGCAGCCCGACGAATCCTCGAGCCCCTCAGACGCCGCGGCCGTGGCCGCCTACCTGGAGGCGCATCCGGACTTCTTCGTCGAGCATGAAGACCTGCTTGCAACGATGCGGATCCCCCACCGGCGCGGCGATACCGTGTCGCTGGTCGAGCACCAGATGAAGATCCTGCGTGAGCGCAACATCGAAATGCGCCATCGCCTCTCGCACCTGATGGACGTCGCCCGGGACAACGACCGGCTCTTCGACAAGACCCGTCGGCTGATCCTCGCGCTGATGGACGCCAGTACTCTTGAAGACCTGGTAATGAGCGTCGAAGACAGCCTGCGCCAGGATTTCCAGGTGCCCTTTGTCAGCCTGATCCTGTTTGGCGACAACGCGATGCCGGTGGGCCGCTGGGTCACCCACGCGGACGCGCAGACGGCCATTGGCGGGCTGCTTACCGAAAACAAAAGCGTCAGTGGCAGCCTGCGCGAACATGAGCTGGATTTCCTGTTTGGCGAAGAACAGCGCAAGCAGATCGGCTCCACCGCCGTTGTCGCCATCGCCCACCAAGGCGTGCATGGCGTGCTGGCCATCGCCAGTCGCGATCCGCAGCACTACAAGAGCTCGGTGGGTACGCTGTTCCTGAGCTATATCGCCGAAGTGACCGGCCGTGTGCTGCCACGGGTTGCCGGTTCGCTGCGTTCGGTACGCTGA	MTDKPKVPAPQPDESSSPSDAAAVAAYLEAHPDFFVEHEDLLATMRIPHRRGDTVSLVEHQMKILRERNIEMRHRLSHLMDVARDNDRLFDKTRRLILALMDASTLEDLVMSVEDSLRQDFQVPFVSLILFGDNAMPVGRWVTHADAQTAIGGLLTENKSVSGSLREHELDFLFGEEQRKQIGSTAVVAIAHQGVHGVLAIASRDPQHYKSSVGTLFLSYIAEVTGRVLPRVAGSLRSVR				NA	NA	NA	NA	NA
D1-36_04977	903	xerC	COG4973	Tyrosine recombinase XerC	ATGATGGAGCGGCAACTGGACGCCTACTGCGAACACCTGCGCAGTGAGCGCCAGGTGTCCCCTCACACCCTGTCGGCCTACCGTCGTGACCTCGAAAAGGTGCGGGGCTGGTGCCAGAAGCAAAACATCGACAACTGGTCGGCCCTCGATATCCAGCGCCTGCGCAGCCTCGTTGCTCGCCTGCATCAGCAAGGGCAATCCTCCCGCAGCCTGGCGCGACTGTTGTCGGCGGTGCGCGGCCTGTATCAATACCTCAATCGCGAGGGCCTGTGCGATCACGATCCAGCCACAGGCCTGGCACCCCCCAAGGGCGAACGCCGGTTGCCGAAGACCCTCGACACCGACCGTGCCTTGCAATTGCTCGATGGCGCCGTCGAGGATGATTTCATGGCGCGACGGGACCAGGCGATCCTCGAACTCTTCTACTCCTCAGGCCTGCGGCTTTCCGAGCTGACGGGGCTGAACCTGGACCAATTGGACTTGGCCGACGGCCTGGTTCAGGTACTCGGTAAAGGCAGCAAGACCCGCTTGCTGCCTATCGGCCGCAAGGCCCGCGAAGCCCTGGAGCTTTGGTTGCCACTACGAGCGCTGACCAACCCCGTCGATGACGCGGTCTTCGTCAGCCTGCAAGGCCGACGCCTGGGCCCACGTACCATCCAGCTGCGGGTCAAGGCCGCCGGCGAACGGGAGCTCGGTCAGAACCTGCACCCGCATATGCTCCGGCATTCGTTCGCCAGTCATCTGCTGGAATCTTCCCAGGACCTGCGTGCCGTCCAGGAACTGCTTGGCCACTCGGACATCAAGACGACCCAGATCTATACCCACCTGGATTTCCAGCACCTGGCGTCGGTCTATGACAGTGCCCACCCCAGGGCCAAACGCATCAAAGGCGACGAATCATGA	MMERQLDAYCEHLRSERQVSPHTLSAYRRDLEKVRGWCQKQNIDNWSALDIQRLRSLVARLHQQGQSSRSLARLLSAVRGLYQYLNREGLCDHDPATGLAPPKGERRLPKTLDTDRALQLLDGAVEDDFMARRDQAILELFYSSGLRLSELTGLNLDQLDLADGLVQVLGKGSKTRLLPIGRKAREALELWLPLRALTNPVDDAVFVSLQGRRLGPRTIQLRVKAAGERELGQNLHPHMLRHSFASHLLESSQDLRAVQELLGHSDIKTTQIYTHLDFQHLASVYDSAHPRAKRIKGDES	PGPT0021995_3490	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MOBILE_ELEMENTS	CE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0021995-xerC-K03733	NA	NA
D1-36_04978	705	yigB	COG1011	5-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase YigB	ATGACCATCGAGCTCATCACCTTCGACCTGGACGACACGCTGTGGGACACCGCGCCGGTGATCGCCAGCGCCGAAGCCGTACTACGTCAATGGCTGACCGACAACGCACCCGACCTGGGCGATTTTCCCGTGGAGCGCTTGTGGGCGATCCGCGCCCAAGTGCTCAGCGAAGAACCGAACCTCAAGCACCGCATCAGTGCGTTGCGCAGGCGCGTGCTGTTCCGGGCGCTGCAAGATGCCGGCTACGACCAGTGGCGAGCCTCTGAGTTGGCGGACCAAGGATTCGAAGCATTCCTGCATGCCCGCCATCAACTGGAGATCTTTCCAGACGTACAGCCGACCCTGGAAATCCTCGCCAATCATTTCGCCCTTGGCGTCGTCACCAACGGCAACGCCGACGTGCGACGCCTGGGGCTGGCGGATTATTTCAAGTTTGCCCTGTGCGCCGAGGACATTGGCATCGCCAAGCCTGACGCAAGACTGTTCGAGGAAGCCTTGCAGCGTGGCGGTGCCACGGCACAGACCGCCGTGCATGTAGGCGATCACCCGGGCGACGACATCGCCGGCGCCCAGCAGGCCGGCCTGCGTGCGGTGTGGTTCAACCCGATGGGCAAGGCCTGGGATGCCGATCACGCACCGGATGCGGAGATTCGCAGCCTGACCGAACTGCCAGGGTTATTGGCGGCGTGGCATAGCCAACCCTGA	MTIELITFDLDDTLWDTAPVIASAEAVLRQWLTDNAPDLGDFPVERLWAIRAQVLSEEPNLKHRISALRRRVLFRALQDAGYDQWRASELADQGFEAFLHARHQLEIFPDVQPTLEILANHFALGVVTNGNADVRRLGLADYFKFALCAEDIGIAKPDARLFEEALQRGGATAQTAVHVGDHPGDDIAGAQQAGLRAVWFNPMGKAWDADHAPDAEIRSLTELPGLLAAWHSQP	PGPT0008585_730	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
D1-36_04979	324	sutA		Transcriptional regulator SutA	ATGAGCGACGATGATCTGGAAAACGACGACCTCGAAGTAGGTGACGAAGACGAGACCGAAGAAGGCCTGGAAGCGGCGGCTGAAGATGTTGCCGACGACGAAGGTGCCGATGTTCCGGTCCCCACTGCCAAAGGCAAGGCCAAGGCAGCGGTATCAGTCGACGAGTTACCGAGCGTAGAGGCCAAGAACAAGGAGCGTGACGCGCTTGCCAAGGCCATGGAGGAATTCCTGGCCAGGGGCGGAAAGGTGCAGGAAGTGGAGGCCAACGTGGTCGCCGATCCGCCCAAGAAGCCTGACAACAAGTATGGCAGTCGCCCTATCTGA	MSDDDLENDDLEVGDEDETEEGLEAAAEDVADDEGADVPVPTAKGKAKAAVSVDELPSVEAKNKERDALAKAMEEFLARGGKVQEVEANVVADPPKKPDNKYGSRPI				NA	NA	NA	NA	NA
D1-36_04980	453			hypothetical protein	ATGCGCGCCGAACGTGCGGAGATCTGTATGTGGCAACAGACGTTGATAACCCTGCGGGCGAGGCCCCGGGGCTTTCATCTGGTGACGGACGAGCTACTCGCCGGCCTGCCTGAACTCAAGGCATGTCGTGTCGGTCTGTTGCATCTGTGGCTGCAGCACACCTCGGCCTCGTTGACCATCAACGAGAACGCCGATCCGGCGGTACGTCGAGACTTCGAACGATTTTTCAATCGGCTGATCCCACAAGGAACCGCCGGCTATGAGCACAACGACGAAGGCCTGGACGACCTCCCGGCGCACTTCAAGGCCAGTGTGCTGGGATGTCAGCTCAGCCTTCCGGTGACGGCGGGACGGTTGGCGTTGGGTACCTGGCAAGGCGTTTATCTGGGCGAGCACCGAGATCATGGCGGTGCTCGTAAAGTCCTCGCCACCTTGCACGGTGAAGGGGCATGA	MRAERAEICMWQQTLITLRARPRGFHLVTDELLAGLPELKACRVGLLHLWLQHTSASLTINENADPAVRRDFERFFNRLIPQGTAGYEHNDEGLDDLPAHFKASVLGCQLSLPVTAGRLALGTWQGVYLGEHRDHGGARKVLATLHGEGA				NA	NA	NA	NA	NA
D1-36_04981	1335	amtB_2		Ammonia channel	ATGACTCTGCGTAAATTCGCAGGGCTAGGAGCCCTGTTGTCCTTCGTAATGCCTGGCCTGGCCATGGCGGAAGAAGCGGCAGCCCCAGTCCTCAACTCCGGCGACACTGCCTGGATGTTGACTGCCACGATTCTTGTCCTGTTCATGACCATCCCTGGCCTTGCGCTGTTCTACGGCGGCATGGTTCGGTCGAAAAACATTCTTTCGGTGATGATGCAGTGCTTCGCCATCACCGGTCTGATCAGCGTCCTGTGGGTCATCTACGGCTACAGCATCGCATTCGACACCACTGGCATGGAACAGGGCGTCGTCAACTTCAATTCCTTCATCGGCGGCCTGGGCAAGGCATTCCTGGCGGGCGTCACCCCGGCCAGCCTGACCGGTCCGGCTGCATTGTTTCCAGAAGCGGTGTTCATCACTTTCCAGATGACCTTCGCCATCATCACCCCAGCGCTGATCGTCGGTGCCTTTGCCGAGCGGATGAAATTCTCCGCCATGCTGATCTTCATGGGCGTGTGGTTCACCCTGGTGTATGCGCCGATTGCGCACATGGTCTGGTCCGGCAACGGCGGCCTGATGTGGGATTGGGGCGTGCTGGACTTCGCCGGCGGCACCGTGGTGCATATCAACGCCGGTATCGCCGGTCTCGTAGCCTGTCTGGTATTGGGCAAGCGCAAAGGCTTCCCGACCACCCCAATGGCACCGCATAACCTGGGTTATACCCTGATGGGCGCGGCCATGCTGTGGGTAGGCTGGTTCGGCTTCAACGCCGGCTCCGCCGTCGCGGCCAACGGCACTGCCGGCATGGCGATGCTGGTCACCCAGATCGCCACGGCTGCCGCGGCACTGGGCTGGATGTTTGCCGAGTGGATCACCCACGGCAAGCCAAGCGCGCTGGGCATTGCCTCGGGCGTGGTGGCCGGCCTGGTTGCAATCACCCCGGCTGCCGGCACCGTGGGCCCGATGGGCGCCTTGGTCATCGGCCTGGCGGCGGGCGTGGTGTGCTTCTTCTGCGCCACCACCCTTAAGCGCAAGCTCGGCTATGACGACTCCCTGGATGCCTTCGGCGTACATGGCATCGGCGGTATCCTCGGGGCGATCCTGACCGGTGTATTCGCTGCACCGGCACTGGGTGGCTTCGGCACCGTGACCGATATCGGCGCACAAGTGTGGATTCAATTCAAAGGCGTGGGTTTCACCGTGATCTATACCGCGGTCGTGACCTTCATCATTCTCAAGGTACTGGACGCCGTCATGGGCCTGCGTGTCTCCGAGGAAGAAGAAGCCGTGGGCCTGGACTTGGCCCAGCACAACGAGCGTGGTTACAACCTGTAA	MTLRKFAGLGALLSFVMPGLAMAEEAAAPVLNSGDTAWMLTATILVLFMTIPGLALFYGGMVRSKNILSVMMQCFAITGLISVLWVIYGYSIAFDTTGMEQGVVNFNSFIGGLGKAFLAGVTPASLTGPAALFPEAVFITFQMTFAIITPALIVGAFAERMKFSAMLIFMGVWFTLVYAPIAHMVWSGNGGLMWDWGVLDFAGGTVVHINAGIAGLVACLVLGKRKGFPTTPMAPHNLGYTLMGAAMLWVGWFGFNAGSAVAANGTAGMAMLVTQIATAAAALGWMFAEWITHGKPSALGIASGVVAGLVAITPAAGTVGPMGALVIGLAAGVVCFFCATTLKRKLGYDDSLDAFGVHGIGGILGAILTGVFAAPALGGFGTVTDIGAQVWIQFKGVGFTVIYTAVVTFIILKVLDAVMGLRVSEEEEAVGLDLAQHNERGYNL	PGPT0000840_4074	DIRECT EFFECT	BIO-FERTILIZATION	NITROGEN_ACQUISITION	N-AQUISITION-AMMONIUM_ASSIMILATION|USAGE	N-AQUISITION-AMMONIUM_TRANSPORT,PGPT0000840-amtB|ybaG|amt-K03320	NA	NA
D1-36_04982	339	glnK	COG0347	Nitrogen regulatory protein P-II 2	ATGAAGCTAGTCACTGCCATCATCAAGCCGTTCAAGCTGGACGACGTACGCGAGTCGCTGTCCGAAATCGGCGTGCAGGGCATTACCGTTACTGAAGTCAAAGGCTTCGGTCGGCAGAAAGGCCATACCGAGCTGTATCGCGGCGCGGAATACGTGGTCGACTTCCTGCCCAAGGTGAAGATCGATGTCGCCATCGACGACAAGGATCTTGATCGGGTCATCGAGGCGATTACCAAGGCCGCCAACACCGGCAAGATTGGTGACGGAAAGATCTTCGTGGTCAATCTGGAACAGGCCATTCGCATCCGTACCGGCGAAACCGATACCGACGCTATCTAA	MKLVTAIIKPFKLDDVRESLSEIGVQGITVTEVKGFGRQKGHTELYRGAEYVVDFLPKVKIDVAIDDKDLDRVIEAITKAANTGKIGDGKIFVVNLEQAIRIRTGETDTDAI	PGPT0000675_31	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000675-glnK|glnZ-K04752	NA	NA
D1-36_04983	261	ubiK		Ubiquinone biosynthesis accessory factor UbiK	ATGCTCGCGCCCAAAGACCTCCTCGACGCCCTGAGCGGCCACGCCTCCCGCCTGTTGAGCGGCGACACGCCACTCCCCAAGAATGAAATCGAAAGCCAGTTCAAGGCCCTGCTGCAAAGCGGGTTCAGCAAGCTGGACCTGGTCAGCCGGGAAGAATTCGACAGCCAGATGGTCGTGCTGGCCCGGACCCGGGCACGGCTGGAGAGCCTGGAAGCCAAGGTGGCCGAGCTGGAGGCGCGACTCGACCCCAAGGACGAGTGA	MLAPKDLLDALSGHASRLLSGDTPLPKNEIESQFKALLQSGFSKLDLVSREEFDSQMVVLARTRARLESLEAKVAELEARLDPKDE				NA	NA	NA	NA	NA
D1-36_04984	1494	comM	COG0606	Competence protein ComM	ATGTCGCTCGCCATCGTCCACAGCCGCGCCCAAGTGGGGGTCGAAGCCCCTGCCGTTACCGTTGAGGTTCATCTGGCCAACGGCTTGCCGTCACTGACGATGGTCGGCCTGCCGGAGGCGGCGGTGAAGGAGAGCAAGGACCGGGTGCGCAGCGCGATCATCAATTCAGGGCTCAATTTCCCGGCGCGGCGCATCACCCTGAACCTGGCGCCAGCGGATCTCCCCAAGGACGGAGGCCGGTTCGACCTGGCGATTGCCTTGGGAATCCTGTCGGCCAGCGTGCAGGTGCCGACCTTGATGCTGGACGACGTGGAGTGCCTCGGCGAACTGGCATTGTCCGGCGCCGTGAGACCGGTACGCGGCGTGCTCCCCGCGGCGCTGGCGGCACGCAAGGCTGGACACATGCTGTTGGTACCCCGGGCCAACGCCGAGGAAGCTTGCCTGGCGTCGGGGCTGAAGGTGATCGCCGTGGACCATCTGCTCGAAGCAGTGGCGCATTTCAACGGCCACGTCCCAGTCGAGCCTTTTGTGTCCAACGGGCTGCTCTCGGCCAGCAAACCCTATCCCGACCTCAGCGAAGTACAAGGTCAAGCCGGAGCCAAGCGCGCCCTGCTGATCGCGGCAGCGGGAGCTCACAACCTGTTGTTCAGTGGCCCACCCGGTACGGGCAAGACGCTGCTGGCGAGTCGTTTGCCGGGGTTGCTGCCACCGCTGGCCGAAAGCGAGGCCCTGGAGGTCGCGGCTATACAGTCGGTCGCCAGTTGCGTGCCCTTGAGCCATTGGCCGCAACGGCCGTTCCGCCAGCCACACCATTCGGCGTCCGGCCCTGCCCTGGTGGGTGGAGGCTCCAAGCCGCAACCGGGGGAAATCACCCTCGCCCACCACGGCGTGCTGTTCCTGGACGAGCTTCCAGAGTTTGATCGCAAGGTATTGGAAGTCCTGAGGGAGCCCTTGGAGTCGGGGCATATCGTGGTTTCGCGCGCCCGCGATCGCGTGCGCTTCCCGGCCCGCTTCCAGTTGGTAGCGGCCATGAACCCCTGCCCCTGTGGATACCTTGGCGAGCCCAGCGGCCGCTGCTCGTGCACACCGGACATGGTGCAGCGCTATCGCAACAAGCTGTCCGGCCCCTTGCTCGACCGCATCGACCTGCACCTGACCGTGGCGCGGGAAGCCACGGCGCTCAATCCCAAAGGCGAACCGGGTGACGACACCGCCACCGCGGCCGAGCGGGTGGCCGAAGCCCGGGAACGCCAGCAAACCCGCCAAGGCTGTGCCAACGCATTCCTAGATCTACCGGGGCTGCGCCGCCATTGCAAACTGTCCTCGACCGACGAGGCGTGGCTGGAAACCGCCTGCGAACGACTGTCCCTGTCGCTGCGAGCCGCCCACCGCTTGCTGAAGGTCGCCCGCACGCTGGCCGACCTTCAGCAGTTGGAACGGATCAGCCGCGAGCACCTGGCCGAAGCCCTGCAATACCGGCCCGCAACGCCATGA	MSLAIVHSRAQVGVEAPAVTVEVHLANGLPSLTMVGLPEAAVKESKDRVRSAIINSGLNFPARRITLNLAPADLPKDGGRFDLAIALGILSASVQVPTLMLDDVECLGELALSGAVRPVRGVLPAALAARKAGHMLLVPRANAEEACLASGLKVIAVDHLLEAVAHFNGHVPVEPFVSNGLLSASKPYPDLSEVQGQAGAKRALLIAAAGAHNLLFSGPPGTGKTLLASRLPGLLPPLAESEALEVAAIQSVASCVPLSHWPQRPFRQPHHSASGPALVGGGSKPQPGEITLAHHGVLFLDELPEFDRKVLEVLREPLESGHIVVSRARDRVRFPARFQLVAAMNPCPCGYLGEPSGRCSCTPDMVQRYRNKLSGPLLDRIDLHLTVAREATALNPKGEPGDDTATAAERVAEARERQQTRQGCANAFLDLPGLRRHCKLSSTDEAWLETACERLSLSLRAAHRLLKVARTLADLQQLERISREHLAEALQYRPATP				NA	NA	NA	NA	NA
D1-36_04985	1215			hypothetical protein	ATGAATTCCCTAAGACTCTTCGTTGCCCTCGGCGCCTTGGGCGTAGCTTCCCATGCGATGGCGTGGGATTACGTACTGCTCGACTCCGATAAAGCCGCCCAACCCTGGCAAATCACCAGCCAACAACTGGGCGTGAAAACCGATAAGCCGTTTTCCGTGACGATGCGCACCCTCCACGGGGGGCGTCAGGAAGGCGTGAGCATTGTCGACATCGACAACGGCACTCTGAAGCTGTCAGTCGTCCCGACCCGTGGCATGAACGTGCTTCAAGCCTCGGTCGGCGATGTGCGTATGGGCTGGGATTCGCCGGTCAAAGAAGTGGTCAATCCAGCATTCATCGAACTCAACGGCCGAGGTGGCCTGGGCTGGCTTGAAGGCTTCAATGAGTTGGTGACCCGCTGCGGCTATGAGTGGGTCGGCCACCCCGGCATCGACAACGGTGAGCTGCTGACCTTGCATGGGCGCGCCGCGAACATTTCGGCGAACAAAGTCACCTTGCACATTGATGAAAAGCCACCTTACGCCATCACCCTGCGAGGCGAGTTGAAGGAGCAGGCGTTCAAGAAGGTTGACTTCTCGGTCCAGACTGAATTGGTCACCGAGCCCGGCAGCGTGACCTTTTCCCTCAACGACACGCTGACCAACAATGGCGATTATCCAAAGGAATACCAGGCGCTCTATCACAGCAATTTCAGCACGCCATTCCTGGAGCAGGGGGCCCGCTTCGCCGCCCCGGTCAAACAGGTTTCGCCGTTCAACGACAAGGCCAAGGGCGACCTGAAGGATTGGACCACCTATCGAGCTCCCACCAAGGACTACGATGAAACCGTTTACAACGTCGTGCCTTACGCCGACGCCAAGGGCGATACGCTGACCGTCCTGCACAACAAGGCCGGTAGCCTCGGCGTTTCCGTGGGCTTCAATACAGGGACGCTTCCGGTGTTTTCCCTGTGGAAAAACACCGATACCCAAGGCCAGGGCTACGTGACCGGCTTGGAGCCAGGTACCAGTTTTTCCTATAACCGCCGCTACCAGCGTCCGCTGGGCCTGGTGCCCAGCATCGCACCGAAAGAGCGCAAGCAGTTCCAGATCCACTACAGTCTTCTGGCGGACAAGGGGGCCGTGGACAAAGCCCTCAAGCGCATTGATGACATCCAGGGCGATCGAAAAGTCGAGGTGCGAGACACACCGCTGGTGGACCTGAGCAAGCCGTGA	MNSLRLFVALGALGVASHAMAWDYVLLDSDKAAQPWQITSQQLGVKTDKPFSVTMRTLHGGRQEGVSIVDIDNGTLKLSVVPTRGMNVLQASVGDVRMGWDSPVKEVVNPAFIELNGRGGLGWLEGFNELVTRCGYEWVGHPGIDNGELLTLHGRAANISANKVTLHIDEKPPYAITLRGELKEQAFKKVDFSVQTELVTEPGSVTFSLNDTLTNNGDYPKEYQALYHSNFSTPFLEQGARFAAPVKQVSPFNDKAKGDLKDWTTYRAPTKDYDETVYNVVPYADAKGDTLTVLHNKAGSLGVSVGFNTGTLPVFSLWKNTDTQGQGYVTGLEPGTSFSYNRRYQRPLGLVPSIAPKERKQFQIHYSLLADKGAVDKALKRIDDIQGDRKVEVRDTPLVDLSKP				NA	NA	NA	NA	NA
D1-36_04986	1977			hypothetical protein	ATGTCTCAACCTCGTGCCCGGATCGCCTCACAGCTAGGCCTTGCCCTTGCCGTGATACTGGCGGTCGTGATCTCCGGCAGTACTGTCTTTGCCTTGCGTTCGCTTGACGCTGCAAACCTTTCTACCCGTGAAGAGCATCTCGCGAGCGAAGCGCGGCTGATGGCCGATCAGCTCAACACGTTCCACAGCACGTTGCGCGAAAGCACCCAACGGCTGGCGGGTCTGTTCGAAAAGCGTTTCAGCGCCGGCTTGAGCGTGCATCCGGACCAGCCGGTGACGGTGGCGGGCGTTCAGACGCCTGGCTTGAGCCTTGGCAGCGAAGTGTTGAACAACAATTTCAAGGAAGTGGATGATTTCAAGACGATGACCGCCGGCGTGGCCACGGTATTCGTGCGCAGCGGCGACGATTTTGTCCGCGTCAGTACATCCGTCAGCAAACAGGACGGTACGCGCGCCATCGGTACTGTGCTCGACCGCGCCGGACCGGCCTACGGCCCGGTGATCAGCGGCCAGAGCTACATTGGCCGGGCGTTGCTGTTCGGGCGCTTCTACATGTCGCAGTACACGCCTGTGCGTGATGGCAGCGGCAAGATCATTGCCGTGTTGTACGTAGGATTCGATTACACCGATGCGCAGAATGCGCAGTTCGAAAACCTCAAGCGCTTCCGAATCGGACAGACCGGCTCGCTGGCGTTATTGGACGAGCAGAACAAATGGTTGGTGCCGCCGGCCGGTGTGCAGGCACTGGACCGTGCTACCGCGGCCATCACAGCGTTGGTCAAGAAGCCTGGCAAGGGTGCTTTCTGGGACGACACCGCGGAGGAGTTCTATAGCGTTGCCGTGCCGTTCGAGGGCGGGCCCTGGTCGGTCGTGGCGAGCATGCCGAAAACCGAGATCAACGCAGTGACCTGGAACGTCGGTACGCAACTGGCGATCGGCAGTTTGCTGGCGATGTTGCTGGCGGTCGGTGCGGCGGTATGGCTGTTGCGCAGCAAACTGGCTCCCCTCGGTGACTTGGTGCGTCAGGCCGAGGCCTTGGGCGCCGGCGACCTGAGCGTGCGCCTGAATGTGTCGAGCCACGACGAGATCGGCCAACTGGCCCGTGCGTTCAACCAGATGAGCCAAGCCTTGTCGACCATGGTCGAGCACATTCGCAAAGCCTCCCAAGAGGTCAACAGCCGTGCCCAGGCGCTCTCCGGATTGTCCAGTGGCGCCTATGAAGGGATGGAGCAACAGTCCGGCGAGATCACCAGCATGGCCGGGGCGGTGGAAGAATTCAGCGCCACCTCCCTGAACATCGCCGACAACATGGGCAATACCGAGCGCCTGGCCCAGGACAATGCCCAACAGACTCGCATCGGCCGTACCTCGATGGACGAAGCGTCATCGTCCCTGGAACAGATCGCGGGCGCCTTGAACAGCACTGCAACGGTCATCAACACGCTGGGCCAGCGCTCCCAGGAGATCGGCGGCATTGTCGGTGTGATCACTTCGATCGCCGAGCAAACCAACCTGCTGGCGTTGAACGCCGCCATCGAAGCTGCACGGGCGGGCGAGCAGGGTCGTGGTTTTGCCGTGGTAGCTGACGAGGTTCGGAGCCTGGCCTCGCGCACTCGCCAGGCCACTGACGAAATTTCCGGCATGATCAACAGCATCCAGCAGGAAACCGGCAACGCCATCAGCACCATGGAGAAGGGCAACCTGCTCATGCAGGAAGGCCTGTCGCGTAACGCCAACGTGGCCTCGGCCCTGGCGCGTATCGATGAGCAAAGCCGCTCGGCCGGCCAGCAATTCGCCGCGATCACTACGGCTACGCAGGAGCAAAGCAGCACCGCGACCCTGCTCAGCAGCAACCTGCAGAGTATTGCCATGGCCAACAGCGAACAGCGCGAAGTGGTTTCGAACCTGGCGATCACCGCCAAGGAACTGGAAAAACTGGCGCAGGACCTCCGCAAAGAAGTCGATCGGTTCCGCTGA	MSQPRARIASQLGLALAVILAVVISGSTVFALRSLDAANLSTREEHLASEARLMADQLNTFHSTLRESTQRLAGLFEKRFSAGLSVHPDQPVTVAGVQTPGLSLGSEVLNNNFKEVDDFKTMTAGVATVFVRSGDDFVRVSTSVSKQDGTRAIGTVLDRAGPAYGPVISGQSYIGRALLFGRFYMSQYTPVRDGSGKIIAVLYVGFDYTDAQNAQFENLKRFRIGQTGSLALLDEQNKWLVPPAGVQALDRATAAITALVKKPGKGAFWDDTAEEFYSVAVPFEGGPWSVVASMPKTEINAVTWNVGTQLAIGSLLAMLLAVGAAVWLLRSKLAPLGDLVRQAEALGAGDLSVRLNVSSHDEIGQLARAFNQMSQALSTMVEHIRKASQEVNSRAQALSGLSSGAYEGMEQQSGEITSMAGAVEEFSATSLNIADNMGNTERLAQDNAQQTRIGRTSMDEASSSLEQIAGALNSTATVINTLGQRSQEIGGIVGVITSIAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRSLASRTRQATDEISGMINSIQQETGNAISTMEKGNLLMQEGLSRNANVASALARIDEQSRSAGQQFAAITTATQEQSSTATLLSSNLQSIAMANSEQREVVSNLAITAKELEKLAQDLRKEVDRFR	PGPT0015710_8044	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEM	CE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406	NA	NA
D1-36_04987	921	gcvA_8		Glycine cleavage system transcriptional activator	ATGTCACGCCGTCTTCCTCCGCTTTATGCGCTACGGGCATTCGAAGCCGCGGCGCGCTACAGCTCGTTTACCCGCGCCGCCGAGGAGCTGTCGATCACCCAGAGCGCCGTCAGCCGGCACATCCGCACACTCGAAGATCACTTTGCCTGTCGACTGTTCCAGCGCAGCGGGCGCAACCTGCAACTGACCGAGTCGGCGCGCCTGCTGCTGCCGGGCGTGCGGGAGGGCTTCATGGCGCTGGAGCGGGCTTGCCACACATTGCACGGAGAAGACGGCATCCTGCGGATGAAGGCGCCATCGACCCTGACCATGCGCTGGCTGCTGGCGCGCCTGAGCCGCTTTCGCCATCTGCAACCGGGCAACGAAGTGCAGCTGACAAGCGCCTGGATGGACATCGACTCGGTGGATTTCAATACCGAGCCCTTCGATTGCGCAGTCCTGCTGGGCAATGGGCATTTCCCTGCGGACTGGGAGGCCAGCCTGCTGTTTCCCGAGGAGTTGATACCGGTCGGCGCTCCGAACCTGCTCAATGACCAACCCTGGGATGTGGCGCGATTGGCCAAGGCCGAGCTATTGCATCCCACTCCGGATCGCCGCGACTGGCGCAATTGGCTGCAGCGCATGGGCTTGGCTGACAAAGTCTCGCTCAGGGGCGGTCAGGTGTTCGATACCCTGGAACTGGGCATGATCGCGGCCGCGCGCGGCTACGGCGTATCCATGGGCGATTTGTTGATGGTGGCCGAGGACGTTGCCCAGGGGCGCTTGAGCCTGCCATGGCCAACCGCTGTCGCCAGCGGCGAGCATTACTACCTGGTCTGGCCGAAAACCCGGCCCGGGGGTGAACGTTTGCGCCGGCTCAGCGACTTTCTCCAGAGCGAGGTGAAGGCCATGCAACTACCTGAGGTCAAGCGCCTGGGCTGA	MSRRLPPLYALRAFEAAARYSSFTRAAEELSITQSAVSRHIRTLEDHFACRLFQRSGRNLQLTESARLLLPGVREGFMALERACHTLHGEDGILRMKAPSTLTMRWLLARLSRFRHLQPGNEVQLTSAWMDIDSVDFNTEPFDCAVLLGNGHFPADWEASLLFPEELIPVGAPNLLNDQPWDVARLAKAELLHPTPDRRDWRNWLQRMGLADKVSLRGGQVFDTLELGMIAAARGYGVSMGDLLMVAEDVAQGRLSLPWPTAVASGEHYYLVWPKTRPGGERLRRLSDFLQSEVKAMQLPEVKRLG	PGPT0026360_2492	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566	NA	NA
D1-36_04988	1395	mdtK	COG0534	Multidrug resistance protein MdtK	ATGCGGCATCCTGTGCGTACCGAACTCTGGGCCATCCTGCGCCTGGCGGGACCGTTGATTGCTTCGCAGTTGGCGCACATGCTGATGGTGCTGACGGACACCCTGATGATGGCTCGCCTGAGCCCCGAAGCCCTGGCAGGCGGCGGGCTCGGGGCGGCGAGCTATTCATTCGTATCGATTTTCTGCATCGGCGTGATCGCGGCGGTGGGCACCCTGGTAGCGATCCGCCAGGGCGCGGGCGACATCGAAGGCGCCACCCGGCTGACCCAGGCCGGATTATGGCTGGCCTGGTTGATGGCGCTGGTGGCGGGCCTGCTGTTGTGGAATCTCAAGCCGGTGCTGTTGATGTTCGGCCAGACCGAAACCAACGTGCTCTCTGCCGGGCAATTCCTGCTGGCACTGCCGTTCGCCCTGCCCGGTTACCTGAGTTTCATGGCCCTGCGTGGCTTTACCAGCGCCATCGGGCGGGCCACGCCGGTGATGGTGATCAGCCTCGGCGGCACGGTGGCCAACTTCCTTCTCAACTATGCGCTCATCACCGGCATGTTCGGCCTGCCGAAGCTCGGCCTGATGGGGATCGGCCTGGTCACGGCCATCGTCGCCAACTGCATGGCCCTGGCGCTGGCCTGGCACATTCATCGGCACTCGGCCTACCGCGCTTATCCATTGCTTGCCGGCCTGTCGCGACCCAATCGCCAATACCTCAAGGAACTGTGGCGACTGGGCTTGCCGATTGGTGGTACTTACGCGGTGGAAGTCGGCCTGTTCGCATTCGCCGCCCTGTGCATGGGCACCATGGGCAGCACGCCGCTGGCGGCCCACCAGATCGCGCTGCAAATCGTCTCGGTGGCCTTCATGGTTCCGGCGGGCATGTCCTACGCCATCACCATGCGTATCGGCCAGCATTACGGTGCCGGGCAATTGCTCATGGCGCGCCTGGCCGGGAGGGTCGGGATTGGTTTTGGCGCGGCCGCCATGCTGGCGTTCGCCATGGTGTTCTGGCTGCTGCCGAATCAATTGATCGGCCTGTTCCTGGACCATGAGGACCCGGCGTTCCGCGCGGTCATCGACCTGGCGGTGAGCCTGTTGGCCGTGGCGGCGTGGTTCGAGCTGTTCGACGGCACACAAACCATTGCGATGGGCTGCATCCGCGGATTGAAGGACGCCAAGACCACGTTCCTGGTGGGCCTGGGTTGCTATTGGTTGATCGGCGCGCCGGCGGCGTGGTGGATGGCGTTCCATTTGCATTGGGGCCCGACCGGCGTCTGGTGGGGCCTCGCCCTGGGCCTGGCCTGCGCGGCGGTGAGCCTGACGTTGGCGTTCGAGTGGAAGATGAAGCGGATGATTCGCAGCGAGCCGGGACAGCAAGGTTTCGAAGCGATCCAGGCCAAATGA	MRHPVRTELWAILRLAGPLIASQLAHMLMVLTDTLMMARLSPEALAGGGLGAASYSFVSIFCIGVIAAVGTLVAIRQGAGDIEGATRLTQAGLWLAWLMALVAGLLLWNLKPVLLMFGQTETNVLSAGQFLLALPFALPGYLSFMALRGFTSAIGRATPVMVISLGGTVANFLLNYALITGMFGLPKLGLMGIGLVTAIVANCMALALAWHIHRHSAYRAYPLLAGLSRPNRQYLKELWRLGLPIGGTYAVEVGLFAFAALCMGTMGSTPLAAHQIALQIVSVAFMVPAGMSYAITMRIGQHYGAGQLLMARLAGRVGIGFGAAAMLAFAMVFWLLPNQLIGLFLDHEDPAFRAVIDLAVSLLAVAAWFELFDGTQTIAMGCIRGLKDAKTTFLVGLGCYWLIGAPAAWWMAFHLHWGPTGVWWGLALGLACAAVSLTLAFEWKMKRMIRSEPGQQGFEAIQAK	PGPT0029115_6077	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029115-TC_MATE|norM|mdtK|dinF-K03327	NA	NA
D1-36_04989	1671			hypothetical protein	TTGTCCACGCCTGTCGAACCCTTGCGTTTGCTGTTGTTGGCCGAAACGCCTGAGTGGTCAGCGATATTGCGCGAGTGCCTGGCGCCCATGGGGCCCTCGGTCGTGTTGATCAGCGCCCCGAACTGGGACTCGGTCAGCAGCTTGTTCGAGGACAACCGCAACGCGGTGCTGCTCACCGTTGCCGCCCTGCAGCCGGCACCGGGTCGTTGTCGTTTGCCGACAGTTCTGTTGCTCGAGCATGAACCTTCGGTTTCCCCGGATGGCGTCAGCGACTGGCTGGTGCGCGACGCCCTCGATGAGGCGACCCTGCGTCGTTGCCTGCGTCACGTGCGCGAGCGGGGGATGCTCGAAAACACCCTGCAACGGCTCGCCGAGCAGGACCCGTTGACAGGCATCGCCAACCGCCAGGGTTTTCAGACCTTGCTGGCGGCTCGCCTGGCTGAAAACGAAGGCCGTGGCCTGGCCCTGGGTCACCTGGACCTCGACAATTTCCGCCACGCCAATGACGCCCTCGGCCACCAGGCCGGCGATCGGCTGATCCTGCAGGTTGTCTCGCGGCTCAAAGGCGCGCTTGAGGCCGGTGATCAGCTGGCACGGCTGGGGAGCGACGAGTTCGCCTTGTTGATAGACACCCGCCGGGCGCCCCAGCGAGCGGAGTGGATGGCCGAGCGCATCATCGAAGCCATGGCCGAACCCTACTGGGTCGACGGTGAAAGCCTGTTGATCGGTTGCAGCCTGGGCATTGCCCACGCCCGGGCGCAAGCCGGTGCGGACCCCTTGATGTGGCACGCCCATATCGCGATGCAGCAGGCCAAGAGCACCCAAGGCTGCACCTTTCATATTTTCAACGAGCGCATCAACCGCAACGCCCGCAGCCTCGCCGACCTGGAAAGCGAGCTGCGGCGGGCGTTGCGACGTGATGAGCTGGAATTGCATTACCAGCCTCGGCTGAACCTGGCAGATGGCACGATTGTCGGCCTCGAAGCCCTGGTGCGCTGGCGCCATGGCGAGCGCGGCTTGTTGCCACCGAGTGAGTTCGTGCCGCTGGCCGAGCAGAGCGGGCTCATCGTGCCGTTGGGTTACTGGGTGATTGCCCGGGCCCTTCGGGACATGCAGGACCTGCGTGAACGTGGGCAGGCGCCGTTGCACATGGCGATCAACCTTTCGTTCCGGCAGTTCCAGGACAGCCAGTTGCTGCCGACCCTGAGCCGGTTGATCGCCGAGCGGGGTGTCGAGGCCCAATGGCTGGAGTTCGAGCTCACCGAAACCGCCGTGATGCGTCGCAGCGAACTGGTCAAACAGACCATGGATGCCCTGGGTCGCCTGGGGGTACGGTTCTCCCTGGATGATTTCGGCACCGGATTCTCCTCGTTCGTGCACCTCAACAGCCTGCCCATCGCCCTGCTCAAGATCGACAAGAGCTTCGTCGGCGGCATGGAGCAGCGCGAAGAGAACCGCAAGCTGGTCCACGCGATGATCAACCTGGCCCATAACCTCAACCTCGAGGTGGTGGCTGAAGGCGTCGAGACCCGCGAGCAACTGGAGTTGCTGCACGGTTTCGGATGCGACCAGGTGCAGGGGTTCCTGATCAGCAAGCCGTTGCCGCTGGCGGAGTTGGTTGAATACCTGATGTCCGAGGGTGATCAGCAGTCGATGCTGGAAATCAGCTAA	MSTPVEPLRLLLLAETPEWSAILRECLAPMGPSVVLISAPNWDSVSSLFEDNRNAVLLTVAALQPAPGRCRLPTVLLLEHEPSVSPDGVSDWLVRDALDEATLRRCLRHVRERGMLENTLQRLAEQDPLTGIANRQGFQTLLAARLAENEGRGLALGHLDLDNFRHANDALGHQAGDRLILQVVSRLKGALEAGDQLARLGSDEFALLIDTRRAPQRAEWMAERIIEAMAEPYWVDGESLLIGCSLGIAHARAQAGADPLMWHAHIAMQQAKSTQGCTFHIFNERINRNARSLADLESELRRALRRDELELHYQPRLNLADGTIVGLEALVRWRHGERGLLPPSEFVPLAEQSGLIVPLGYWVIARALRDMQDLRERGQAPLHMAINLSFRQFQDSQLLPTLSRLIAERGVEAQWLEFELTETAVMRRSELVKQTMDALGRLGVRFSLDDFGTGFSSFVHLNSLPIALLKIDKSFVGGMEQREENRKLVHAMINLAHNLNLEVVAEGVETREQLELLHGFGCDQVQGFLISKPLPLAELVEYLMSEGDQQSMLEIS	PGPT0026010_2783	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0026010-mucR-K21023	NA	NA
D1-36_04990	2049	rep_2	COG0210	ATP-dependent DNA helicase Rep	ATGCCGGCCCATTTCGCAAACGACTCCCTGAACCCTGTCATGTCCCGACTCAACCCCCGGCAGCAAGAAGCCGTGAACTATGTCGGCGGCCCTCTTTTGGTGCTCGCCGGTGCAGGCTCCGGCAAGACCAGCGTGATCACCCGCAAGATCGCGCACCTGATCCAGAATTGTGGCATCCGCGCCCAGTACATCGTCGCCATGACCTTCACCAACAAGGCCGCCCGGGAAATGAAAGAGCGGGTCGGCGGCCTGCTGCGCGCCGGCGAAGGTCGCGGCCTGACGGTCTGCACCTTCCACAACCTGGGCTTGAACATCATCCGCAAGGAACATGCGCGGCTGGGCTACAAACCGGGCTTCTCGATCTTCGACGAGGCCGACGTCAAGGCCCTGATGACCGACATCATGCAGAAGGAATATTCCGGCGACGACGGCGTGGATGAGATCAAGAACATGATCGGCGCCTGGAAAAACGACCTGATCCTGCCGCCCGAAGCACTGGAAAACGCCCGCAACCCCAAGGAACAGACCGCCGCTATCGTCTACGCCCATTACCAGCGCACGCTCAAGGCGTTCAATGCGGTGGACTTCGACGACCTGATCCTGTTGCCGGTCAAACTGTTCCAGGACCACGCCGACATCCTCGAGAAATGGCAGAACAAGGTCCGCTACCTGCTCGTGGACGAATACCAGGACACCAACGCCAGCCAGTATCTGCTGGTGAAACTGCTGATCGGCAAACGCAACCAGTTCACCGTGGTGGGCGACGATGACCAGTCGATTTACGCCTGGCGCGGCGCGCGGCCGGAAAACCTGATGCTGCTCAAGGAAGACTACCCGTCGCTCAAAGTGGTGATGCTGGAACAGAACTACCGCTCCACCAGCCGGATCCTGCGCTGCGCCAACGTGCTGATTTCCAACAACCCCCATGAGTTCGAAAAACAACTGTGGAGCGAGATGGGCCACGGCGACGAGATCCGCGTGATCCGTTGCCGCAACGAAGACGCCGAAGCCGAGCGCGTGGCCATGGAAATCCTCAGCCTGCACTTGCGCACCGACCGGCCGTACAGCGATTTTGCGATCCTGTACCGCGGCAACTACCAGGCCAAGCTGATCGAGCTGAAACTGCAGCATCACCAGGTCCCGTATCGTCTGTCGGGGGGGAACAGCTTTTTCGGCCGCCAGGAAGTGAAGGACCTGATGGCCTACTTCCGCCTGATCGTGAACCCGGACGACGACAACGCCTTCTTGCGGGTGATCAACGTGCCGCGCCGGGAAATCGGTTCGACCACCCTGGAAAAACTCGGCAACTACGCCACCGAGCGCAAGATCTCGATGTACGCCGCCACCGACGAAATCGGCCTTGGCGAGCATCTGGACAGCCGCTTCACCGATCGCCTGGCGCGCTTCAAGCGTTTCATGGACAAGGTCCGCGAGCAGTGCGCCGGGGAAGATCCGATCTCTGCGCTGCGCAGCATGGTCATGGACATCGACTACGAAAACTGGCTGCGCACCAACAGCTCCAGCGACAAGGCCGCCGATTACCGTATGAGCAACGTCTGGTTCTTGATCGAGGCGTTGAAGAACACCTTGGAAAAAGACGAAGACGGCGACATGACCGTCGAGGACGCCATCGGCAAGCTCGTGCTGCGGGACATGCTCGAACGCCAGCAGGAAGAGGAAGAAGGCGCCGAAGGTGTGCAGATGATGACGCTGCACGCCTCCAAAGGCCTGGAGTTTCCCTACGTGTTCATCATGGGCATGGAAGAAGAAATCCTGCCGCACCGTTCCAGCATCGAGGCCGACACCATCGAAGAAGAACGGCGCCTGGCCTACGTCGGGATTACCCGGGCACGCCAGACGCTGGCCTTCACCTTCGCCGCCAAGCGCAAGCAATACGGCGAAGTGATCGACTGCGCCCCGAGCCGCTTCCTCGATGAGTTGCCGCCGGACGACCTGGCCTGGGAAGGCAACGACGATACGCCGACAGAGGTCAAAGCCGTTCGCGGCAACAGTGCCTTGGCGGATATACGCGCGATGTTGAAGCGCTAG	MPAHFANDSLNPVMSRLNPRQQEAVNYVGGPLLVLAGAGSGKTSVITRKIAHLIQNCGIRAQYIVAMTFTNKAAREMKERVGGLLRAGEGRGLTVCTFHNLGLNIIRKEHARLGYKPGFSIFDEADVKALMTDIMQKEYSGDDGVDEIKNMIGAWKNDLILPPEALENARNPKEQTAAIVYAHYQRTLKAFNAVDFDDLILLPVKLFQDHADILEKWQNKVRYLLVDEYQDTNASQYLLVKLLIGKRNQFTVVGDDDQSIYAWRGARPENLMLLKEDYPSLKVVMLEQNYRSTSRILRCANVLISNNPHEFEKQLWSEMGHGDEIRVIRCRNEDAEAERVAMEILSLHLRTDRPYSDFAILYRGNYQAKLIELKLQHHQVPYRLSGGNSFFGRQEVKDLMAYFRLIVNPDDDNAFLRVINVPRREIGSTTLEKLGNYATERKISMYAATDEIGLGEHLDSRFTDRLARFKRFMDKVREQCAGEDPISALRSMVMDIDYENWLRTNSSSDKAADYRMSNVWFLIEALKNTLEKDEDGDMTVEDAIGKLVLRDMLERQQEEEEGAEGVQMMTLHASKGLEFPYVFIMGMEEEILPHRSSIEADTIEEERRLAYVGITRARQTLAFTFAAKRKQYGEVIDCAPSRFLDELPPDDLAWEGNDDTPTEVKAVRGNSALADIRAMLKR				NA	NA	NA	NA	NA
D1-36_04991	573	xpt	COG0503	Xanthine phosphoribosyltransferase	ATGGAAGCCCTGCACCAGAAAATCCGAGAGCTAGGCATCGTGCTGTCCGACCAGGTATTGAAGGTCGATGCGTTTCTCAACCACCAGATCGATCCGCAGTTGATGAAGCTGATCGGTGATGAATTTGCCGCACTGTTCAAGGATTCGGGCATCACCAAGATCGTCACCATCGAAGCCTCGGGCATCGCCCCGGCGATCATGACCGGGCTGAATCTTGGCGTGCCGGTGATCTTCGCCCGCAAGCAACAGTCCCTGACCCTGACGGAGAACCTGCTGTCGGCCACCGTGTATTCCTTCACCAAGAAGACCGAAAGCACCGTCGCCATCAGCCCGCGCCACCTGACCAGCAGCGACCGCGTGCTGATCATTGATGATTTCCTGGCCAACGGCAAAGCCTCCCAGGCGCTGATTTCCATCATCAAGCAGGCCGGCGCCACCGTCGCCGGGCTGGGGATCGTGATCGAGAAGTCGTTCCAGGGCGGCCGCGCCGAACTGGATGCCCAGGGCTATCGCGTCGAATCGTTGGCCCGGGTGAAGTCGTTGGCGGGTGGGGTTGTGACCTTCCTAGACTAA	MEALHQKIRELGIVLSDQVLKVDAFLNHQIDPQLMKLIGDEFAALFKDSGITKIVTIEASGIAPAIMTGLNLGVPVIFARKQQSLTLTENLLSATVYSFTKKTESTVAISPRHLTSSDRVLIIDDFLANGKASQALISIIKQAGATVAGLGIVIEKSFQGGRAELDAQGYRVESLARVKSLAGGVVTFLD	PGPT0007305_856	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0007305-xpt-K03816	NA	NA
D1-36_04992	1923			butyrate:acetyl-CoA coenzyme A-transferase	ATGGTGCAGTTGTGTTCAATCGAACAGGCGGTGGATGACGTACTCGAGCGTCTGCCCGCGCATATCCACCTCGGCATGCCCCTTGGGCTGGGCAAACCCAATCTGTTCGCCAACGCGCTGTACCGGCGCATCGCGCAACTGCCCGAGCGACAGCTGACCATTTACACCGCCTTGAGCCTGGGGCGGCCGACCTTGGGCGATGGGTTGCAGAAGCGCTTCCTCGAACCCTTCGTCGAACGGGTCTTTGGCGATTATCCCGAACTCGATTACCTGGCCGACCTGCAGCGCGATAGCCTGCCGGCCAATATCCGCGTCCAACAATTCTTCATGCAGCCCGGCAGCCTTTTACACAGCGCGTCGGCCCAGCAGGACTATGTCAGCAGTAACTACAGCCACGCGGCCCGGGACATCAACGGGGCAGGCTTGAACCTGATCGCCCAACTGGTGGCGAGCGACCCGGAGCACCCGGATCGCCTTAGCCTGAGTTGCAATCCGGACATTACCCTGGATCTGTTGCCGATGATCGCCAAGCGGCGCGAGGCGGGGGAGACCATTCTCCTGGTGGGCCAAGTCCACAGCGACTTGCCGTACATGCCCGGTGACGCGGAAATCGGCATCGATGGCTTCGACTTGTTGATCGACGAGAAGGACAGCCACACGTTGTTTTCCACGCCCAACATGCCGGTGGGGTTCCAGGATCACTTGATCGGCCTGCATGCCAGCACCCTGGTGCGCGATGGCGGTACGTTGCAAATCGGCATCGGCTCCATGGGCGACGCACTGACAGCGGCACTGCTGGCGCGCCAAGCCGATAACGCCGGTTACCAGGCTCTGTTGGCGGAACTGAACCTCAGCCAGTGGGCGCAATTGATCGAGCGCGAAGGCGGGGTCGAGCCTTTCGCCAAGGGGTTGTACGGTTGCAGTGAGATGTTCGTCAACGGTTTGCTGGTGCTGGCGGAAGCCGGAATTATCCGGCGCAAGGTCTACCCCGACGAGCCGACCCAGGAGCGGGCCATTGCCGGAACCCTCGACGAGGCGGCGCAACCCGATGGCATCTGCATTCATGGCGGGTTCTTCCTCGGCCCGCGCAGTTTCTACGAGCGCTTGCGCGAGTTGCCGCAGAGCCGTCTGCTTGAATTCAACATGACGCGTATCAGCTACATCAACGAGCTGTACGGTCAGGAGCAGCTCAAGCGCTTGCAGCGCCTCGATGCTCGGTTCATCAACACGGTCTTCACCATGACTTTGATGGGCGCGGGAGTGGCTGACCAATTGGAAAACGGGCGGGTGCTCAGCGGCGTCGGTGGGCAGTATAACTTCGTCGCCCAGGGCCACGCGCTTGAAGGGGCGCGTTCGATACTGCTGTTGCGTAGCTGGCGGGAATCGGGAGGGGTGGTCAGTTCGAACATTGTCTGGGAATACGGTCACTGCACGATTCCACGCCATTTGCGTGACATTGTGGTAACCGAGTACGGCATCGCCGACCTGCGGGGCAAGACCGACGCCTCGGTGATCGAGGCGTTGCTGAACATCAGCGATTCACGCTTCCAACCCGGATTGATCGAGCAAGCGCAAAATGCCGGCAAGCTGCCGAAGGACTTTCGCCTCGATCCACGCTTTGCCGACAACACCTCGGAGCGTTTGCAGGGGATCCAGGCGCGGCATCCCAACCTGTTTCCGGAGTACCCGTTGGGCTGTGATTTCGATGAGGTCGAGCGGGACTTATTGCGGGCGCTGAATTGGCTGAAAAGCAAATTCAAGCTCACCGAGATCCTGGATCTGGGCAAAGCCGCCCTGGATGCGCCGCAGCCCTGGGAATATGCCGGGCATCTGGAGCGAATGCAGCTGACGAGCCCGGAGGGGCTGAAGGAAGAGCTGTATCAGCGGCTGTTGCTGGCGGGGCTCAAGGCGACCGCGCCTTAG	MVQLCSIEQAVDDVLERLPAHIHLGMPLGLGKPNLFANALYRRIAQLPERQLTIYTALSLGRPTLGDGLQKRFLEPFVERVFGDYPELDYLADLQRDSLPANIRVQQFFMQPGSLLHSASAQQDYVSSNYSHAARDINGAGLNLIAQLVASDPEHPDRLSLSCNPDITLDLLPMIAKRREAGETILLVGQVHSDLPYMPGDAEIGIDGFDLLIDEKDSHTLFSTPNMPVGFQDHLIGLHASTLVRDGGTLQIGIGSMGDALTAALLARQADNAGYQALLAELNLSQWAQLIEREGGVEPFAKGLYGCSEMFVNGLLVLAEAGIIRRKVYPDEPTQERAIAGTLDEAAQPDGICIHGGFFLGPRSFYERLRELPQSRLLEFNMTRISYINELYGQEQLKRLQRLDARFINTVFTMTLMGAGVADQLENGRVLSGVGGQYNFVAQGHALEGARSILLLRSWRESGGVVSSNIVWEYGHCTIPRHLRDIVVTEYGIADLRGKTDASVIEALLNISDSRFQPGLIEQAQNAGKLPKDFRLDPRFADNTSERLQGIQARHPNLFPEYPLGCDFDEVERDLLRALNWLKSKFKLTEILDLGKAALDAPQPWEYAGHLERMQLTSPEGLKEELYQRLLLAGLKATAP				NA	NA	NA	NA	NA
D1-36_04993	426			hypothetical protein	GTGAACCTAATTATGAAAATGCTGGCTGCACCAGCAACCGTATTGGCCCTATGGGCTGCGAGCGCTCAAGCGGCGCCCAACGATGACATCGCCAAGCGCCTTGAACCCGTCGGCCAGGTTTGCGTCCAGGGCAAGGAATGCAAGGGGATGGAAGTGGCTACAGCGGCGGGCGGTGCCGGCGGTGCCAAGGCGCCAAAAGACGTCATTGCCAAACATTGCAACGCTTGCCACGGTACTGGTCTGCTGGGCGCGCCGAAAATCGGTGACAAGGCAGCCTGGAAAGAACGCGCCGACCACCAGGGCGGTCTCGATGGCATCCTGGCCAAGGCCATCACGGGCGTCAACGCCATGCCGCCTAAAGGCACCTGCGCCGATTGCACCGATGATGAACTCAAAGGCGCCATCAAAGAGATGTCCGGTCTGTAA	MNLIMKMLAAPATVLALWAASAQAAPNDDIAKRLEPVGQVCVQGKECKGMEVATAAGGAGGAKAPKDVIAKHCNACHGTGLLGAPKIGDKAAWKERADHQGGLDGILAKAITGVNAMPPKGTCADCTDDELKGAIKEMSGL				NA	NA	NA	NA	NA
D1-36_04994	549	puuR		HTH-type transcriptional regulator PuuR	TTGGACGTCGGTGAACGACTGCAATCCATTCGTAAACTCAAAGGCCTTTCCCAGCGTGAACTCGCCAAGCGCGCGGGCGTCACCAACAGCACCATTTCGATGATCGAGAAAAACAGCGTGAGCCCCTCGATCAGCTCGCTGCGCAAGGTCCTTGGCGGGATTCCCATGTCCATGGTCGAGTTTTTCTCCGAAGAAATCCTCCAGGAGAAACCGACCCAGATCGTCTACAAAGCCAACGAACTGATCGACATCTCCGATGGCGCCGTGACCATGAAACTGGTGGGCCGGGCGCATCCGAGCCGGGCGATTGCGTTTTTGAACGAAATCTATCCGCCTGGCGCCGACACGGGCGACGAGATGCTCACCCACGAAGGCGAAGAAACCGGGATCCTGGTGGAAGGGCGGTTGGAATTGGTGGTGGGCGCCGAAACCTTCGTGCTCGAAGCCGGTGACAGCTACTATTTCGAAAGCACCAAGCCCCACCGCTTCCGTAACCCGTTCGACGTGCCGGCGCGACTGATCAGCGCAGCCACACCGGCCAATTTCTAG	MDVGERLQSIRKLKGLSQRELAKRAGVTNSTISMIEKNSVSPSISSLRKVLGGIPMSMVEFFSEEILQEKPTQIVYKANELIDISDGAVTMKLVGRAHPSRAIAFLNEIYPPGADTGDEMLTHEGEETGILVEGRLELVVGAETFVLEAGDSYYFESTKPHRFRNPFDVPARLISAATPANF	PGPT0019781_117	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINE_USAGE	PLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0019781-puuR-K14056	NA	NA
D1-36_04995	1074	alr		Alanine racemase	ATGCGTCCTGCCCGTGCCCTGATCGACCTCCAAGCCTTGCGTCATAACTATCAATTGGCCCGCGAAGTCACTGGGGCCAAAGCCCTTGCGGTGATCAAGGCCGACGCCTATGGGCACGGGGCGGTGCGCTGCGCCGAAGCCTTGCAGGAAACGGCCGACGGGTTTGCCGTGGCCTGTATCGAAGAGGCCCTGGAGCTGCGAGCGGGCGGTATTGGTGGACCGATCCTGCTGCTGGAAGGATTTTTCGAGGCCGATGAGCTTGCCTTGATCGTCGAACATGATTTCTGGTGCGTGGTGCATGCGTTGTGGCAACTCGAAGCGATCGAGCGCGCGACGCTGGGCAAGCCGATCACGGTCTGGCTCAAGCTCGATTCGGGTATGCATCGGGTCGGATTGCATCAGGACGAGTTCCAGCCGGCGTATCGTCGCCTCCTGGCCAGTGGAAACGTGGCGAAGATCGTATTAATGAGTCACTTCGCCCGTGCCGATGAACTGCATGACCCCAGCAGCCTGCAACAATTAGCAGTATTCGAGCAGGCCCGCCAGGGCCTGATGGCAGAGGTCAGCCTGCGCAATTCTCCGGCGGTGCTGGGTTGGCCGCAGATCCCCAGCGACTGGGTGCGGCCCGGCATCATGCTGTACGGCGCAACGCCTTTCGAGGAGGCCAATGCCGTTGCTTCGCGCCTGCAGCCGGTTATGACGCTGGAGTCTAGAATCATCAGCGTGCGCGAGCTTCCCGTCGGCGAGCCCGTGGGTTATGGCGCACGCTTTGTCACGGCGCAACCGACACGCGTGGGCGTGGTCGCCATGGGCTACGCCGACGGCTACCCGCGCCAGGCGCCCAACGGCACGCCGGTGCTGGTGGACGGGCAGCGTAGCCAACTGGTCGGGCGGGTATCGATGGACATGCTGTGCGTGGACTTGACCCATATCCCCCAGGCCGGGCTCGGCTCCACGGTCGAGCTATGGGGCAAAAATGTCCTCGCCAGCGACGTGGCGATGGCTGCCGGCACGATTCCCTACCAGATATTCTGCAACCTGCGGCGGGTGCCAAGGCTCTATTCCAAGGGGTGA	MRPARALIDLQALRHNYQLAREVTGAKALAVIKADAYGHGAVRCAEALQETADGFAVACIEEALELRAGGIGGPILLLEGFFEADELALIVEHDFWCVVHALWQLEAIERATLGKPITVWLKLDSGMHRVGLHQDEFQPAYRRLLASGNVAKIVLMSHFARADELHDPSSLQQLAVFEQARQGLMAEVSLRNSPAVLGWPQIPSDWVRPGIMLYGATPFEEANAVASRLQPVMTLESRIISVRELPVGEPVGYGARFVTAQPTRVGVVAMGYADGYPRQAPNGTPVLVDGQRSQLVGRVSMDMLCVDLTHIPQAGLGSTVELWGKNVLASDVAMAAGTIPYQIFCNLRRVPRLYSKG	PGPT0020040_4758	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-PEPTIDOGLYCAN_REMODELLING	CE-PG_REMODELLING_RELATED_RACEMASES,PGPT0020040-alr-K01775	NA	NA
D1-36_04996	1305	dadA1_2	COG0665	D-amino acid dehydrogenase 1	ATGCGCGTTCTGGTCTTGGGTAGCGGCGTCATCGGTACCGTCAGTGCTTACTATCTGGCCCGTGCCGGGTTTGAAGTGGTGGTGGTCGACCGTCAGCCGGCGCCGGCCATGGAAACCAGCTTCGCCAACGCCGGCCAGGTGTCGCCGGGTTACGCCTCGCCGTGGGCCGCGCCCGGTGTGCCGCTCAAGGCCATCAAGTGGCTGTTGCAGCGTCACGCGCCGTTGGCGATCAAGGCCACTGCCGACATCGATCAATACCTCTGGATGGCGCAGATGCTGCGCAATTGCACTGCCAGCCGCTACGCAATCAACAAGGAGCGCATGGTCCGCCTGTCCGAGTACAGCCGTGACTGCCTGGACGAGTTGCGCGCCGAGACCGGCATTGCTTACGAGGGCCGCAGCCTGGGAACTACTCAACTGTTCCGCACCCAGGCCCAGCTCGATGGCGCGGCCAAGGACATCGCCGTGTTGAAGGAGTCTGGCGTGCCGTTCGAAGTGCTCGACCGCGCAGGCATCGCCCGGGTCGAGCCGGCGTTGGCCAACGTCACCGACATCCTCGCTGGTGCGCTGCGCCTGCCCAATGACCAGACCGGCGACTGCCAGATGTTCACCACCCGCCTGGCGGAAATGGCTGTCCAGCTCGGCGTGCAATTTCGGTTCGACCAGAATATCGAGCGCCTGGATTTCGCCGGTGACCGCATCAACGGCGTCTGGATCGACGGCAAGCTGGAAACAGCCGACCGCTACGTCCTGGCCTTGGGCAGCTACTCGCCACAGTTGCTCAAGCCCCTCGGTATCCGCGCGCCGGTGTATCCGCTCAAGGGCTATTCCCTGACCGTGCCGATTACCGACCCGGCGATGGCGCCGACCTCGACCATCCTCGATGAGACCTACAAGGTCGCGATCACCCGGTTCGACAATCGTATTCGCGTCGGCGGCATGGCCGAAATCGCTGGATTCGACCTTTCGCTGAACCCGCGTCGGCGCGAAACCCTGGAGATGATCGTCAACGACCTTTATCCTCGGGGCGGCGACCTGGCCCAGGCCAGTTTCTGGACAGGCCTGCGCCCAACTACACCGGACGGCACGCCTATTGTGGGCGCTACCCCGTTCAAGAATCTGTTCCTGAACACTGGCCACGGCACCCTCGGTTGGACCATGGCCTGTGGTTCCGGTCGCCTGCTGGCGGACCTGATGGCGAAGAAAAAGCCACAGATCAGCGCCGAAGGCCTCGACATTTCCCGTTATGGCAGCAAACCCCAGGAGTCCGCAAAACATGGCAATCCAGCGCCAGCTCACCAATGA	MRVLVLGSGVIGTVSAYYLARAGFEVVVVDRQPAPAMETSFANAGQVSPGYASPWAAPGVPLKAIKWLLQRHAPLAIKATADIDQYLWMAQMLRNCTASRYAINKERMVRLSEYSRDCLDELRAETGIAYEGRSLGTTQLFRTQAQLDGAAKDIAVLKESGVPFEVLDRAGIARVEPALANVTDILAGALRLPNDQTGDCQMFTTRLAEMAVQLGVQFRFDQNIERLDFAGDRINGVWIDGKLETADRYVLALGSYSPQLLKPLGIRAPVYPLKGYSLTVPITDPAMAPTSTILDETYKVAITRFDNRIRVGGMAEIAGFDLSLNPRRRETLEMIVNDLYPRGGDLAQASFWTGLRPTTPDGTPIVGATPFKNLFLNTGHGTLGWTMACGSGRLLADLMAKKKPQISAEGLDISRYGSKPQESAKHGNPAPAHQ	PGPT0020315_363	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_D-AMINO_ACID_DEGRADATION,PGPT0020315-dadA-K00285	NA	NA
D1-36_04997	489	lrp_7	COG1522	Leucine-responsive regulatory protein	GTGCGTACCAATACCCAGACCAAGCGCGAGCTGGACAAGATCGACCGCAACATTCTGCGCATCCTCCAGGCGGACGGGCGGATTTCCTTCACCGAACTGGGCGAAAAGGTCGGTCTCTCCACCACGCCATGTACCGAGCGGGTCCGGCGCCTGGAGCGCGAAGGCATCATCATGGGCTACAACGCCCGGCTCAATCCGCAGCACCTGAAGGGCAGCCTGCTGGTGTTTGTCGAGATCAGCCTCGACTACAAGTCCGGCGATACCTTCGAAGAATTCCGACGCGCAGTGCTGAAATTGCCACACGTCCTGGAATGCCACCTGGTGTCGGGCGACTTCGATTATCTGGTGAAGGCGCGGATTTCCGAGATGGCCTCGTACCGCAAGCTGCTGGGCGACATTCTGCTCAAGCTGCCCCACGTGCGTGAGTCCAAGAGCTATATCGTGATGGAAGAAGTGAAGGAGAGCCTGAACCTGCCGATCCCGGATTGA	MRTNTQTKRELDKIDRNILRILQADGRISFTELGEKVGLSTTPCTERVRRLEREGIIMGYNARLNPQHLKGSLLVFVEISLDYKSGDTFEEFRRAVLKLPHVLECHLVSGDFDYLVKARISEMASYRKLLGDILLKLPHVRESKSYIVMEEVKESLNLPIPD	PGPT0014049_198	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014049-doeX-K15782	NA	NA
D1-36_04998	354			hypothetical protein	ATGAGCTGCAACAGCCAAAAAATCCGCACGCTGCGTCAGCAGATCCCTACGTTTGAGTGCGTGCCGGGCTGTCACGACTGCTGCGGCCCGGTGACCACCTCGCCCGAGGAAATGTCCCGGCTACCGCGCAAGACCCGCGCCGAACAGGACGCCGCCATGGAAGCGCTCGATTGCGTGCACTTGGGGCCGAACGGTTGCACGGTCTACGACGAGCGGCCGTTGATCTGCCGTCTGTTCGGCACCACGGCGACCTTGCCATGTCCCAATGGTCGACGCCCGGTGGAGCTGATCCACCCGCGTGTCGAGAAGCAGATTCATGAGTACATGGCGAGTACCCGGCAGGTGTTGGTCTAG	MSCNSQKIRTLRQQIPTFECVPGCHDCCGPVTTSPEEMSRLPRKTRAEQDAAMEALDCVHLGPNGCTVYDERPLICRLFGTTATLPCPNGRRPVELIHPRVEKQIHEYMASTRQVLV				NA	NA	NA	NA	NA
D1-36_04999	1314	puuB_4		Gamma-glutamylputrescine oxidoreductase	ATGAACGCCCGTGTTCAGCAACCTGTCCCGAGCCACGCGCACGCCGCCTCTTATTACGCCGCCAGCAGCCTGCCGCAGCCGGACCATCCGGTGTTGCAAGGCGAGCTGATCGCGGACGTCTGTGTGGTGGGCGGCGGGTTCTCCGGGTTGAACACGGCCATCGAACTGGCCGAGCGCGGGATGAGCGTGGTGTTGCTCGAAGCACATAAAATTGGCTGGGGTGCCAGCGGACGCAACGGCGGCCAGTTGATTCGCGGCGTTGGGCACGGCCTCGACCAGTTTGCTTCGGTCGTCGGTAACGACGGCGTCCGTCAGATGAAACTGATGGGGCTTGAGGCGGTGGAAATCGTCCGACAACGAGTCGAGCGCTTTCAGATTTCTTGCGACCTGACCTGGGGTTATTGTGACCTTGCCAACAAACCCGGCGACCTCGAGGGCTTCGCCGAAGACGCCGAAGAATTGCGCAGCCTGGGCTACCGCTACGAGACCCGACTGCTGCGCGCTGACGAAATGCACAGCGTGGTGGGCTCGGATCGTTACGTTGGCGGCTTGGTCGACATGGGTTCGGGTCACCTGCATCCGCTCAACCTGGCGCTGGGAGAAGCCACGGCGGCCCAGCAATTGGGAGTTCGACTGTTCGAACGATCAGCCGTCACCCGCATCGACTATGGCCATCAAGTAAAAGTACATACCGAGCACGGCTCGGTCCGCGCCAATACCCTGGTGCTGGGCTGCAACGCCTACCTCAATGGCTTGAACCAGGAGTTGAGCGGCAAAGTGCTGCCGGCCGGCAGCTACATCATCGCGACCGAGCCGTTGAGCGAAACGCAGGCACATGCGCTATTACCGCAGAACATGGCCGTTTGTGATCAGCGGGTGGCGCTGGATTATTACCGGCTTTCGGCGGATCGCCGCTTGTTGTTCGGCGGGGCTTGTCATTATTCCGGGCGCGATCCGCAGGACATCGGCGCCTATATGCGTCCGAAAATGCTCAAGGTTTTCCCTCAGTTAGCGGACGCGAAAATCGATTATCAATGGGGCGGGATGATCGGCATCGGCGCCAACCGCTTGCCACAGATCGGCCGCCTCAAGGGTCAGCCGAACGTGTATTACGCTCAGGCCTACTCGGGCCATGGCGTAAACGCCACGCACCTGGCGGGCAAACTGCTGGCCGAAGCAATCAGTGGGCAACAGGGAGGTGGCTTCGATCTTTTTGCAAAGGTGCCGCACATGACATTCCCAGGGGGCAAACATTTGCGCTCACCGCTGCTGGCATTGGGGATGTTGTGGCATAGATTGAAAGAACTGGTGTGA	MNARVQQPVPSHAHAASYYAASSLPQPDHPVLQGELIADVCVVGGGFSGLNTAIELAERGMSVVLLEAHKIGWGASGRNGGQLIRGVGHGLDQFASVVGNDGVRQMKLMGLEAVEIVRQRVERFQISCDLTWGYCDLANKPGDLEGFAEDAEELRSLGYRYETRLLRADEMHSVVGSDRYVGGLVDMGSGHLHPLNLALGEATAAQQLGVRLFERSAVTRIDYGHQVKVHTEHGSVRANTLVLGCNAYLNGLNQELSGKVLPAGSYIIATEPLSETQAHALLPQNMAVCDQRVALDYYRLSADRRLLFGGACHYSGRDPQDIGAYMRPKMLKVFPQLADAKIDYQWGGMIGIGANRLPQIGRLKGQPNVYYAQAYSGHGVNATHLAGKLLAEAISGQQGGGFDLFAKVPHMTFPGGKHLRSPLLALGMLWHRLKELV	PGPT0007637_416	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINE_USAGE	PLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007637-puuB|ordL-K09471	NA	NA
D1-36_05000	246			hypothetical protein	ATGAACGGCTTGAGCGATGTACGGCTGACGTTACACAGTCAGGAACTGGCGGCTGGGCAGGAAAAGGAGCTGCGCAGCGGGGCTTTGCGCAATGCGCCAGCCGGCCTGAGTCGCTGGGGACTGTTCTGGCATCGTTTGCATACACGCAAAGCCCTGTTGGACATGTCGACCGAACAGTTGCGTGATATTGGACTGAGTCGGGAGCAGGCGCGGGCGGAAGGCTTGAAGCCGTTCTGGCGGATTTGA	MNGLSDVRLTLHSQELAAGQEKELRSGALRNAPAGLSRWGLFWHRLHTRKALLDMSTEQLRDIGLSREQARAEGLKPFWRI				NA	NA	NA	NA	NA
D1-36_05001	1431	norG_5	COG1167	HTH-type transcriptional regulator NorG	ATGACGCTGTACGTGAACCTCGCCGAGCTGCTCGGCACCCGTATCGAACAAGGCTTCTACCGCCCCGGTGACCGGCTGCCGTCGGTGCGCGCCTTGAGCACCGAACACGGGGTCAGCCTGAGCACGGTCCAGCAGGCCTATCGCGTGCTGGAGGACAGCGGGCTGGCAATGCCGAAACCCAAGTCTGGCTATTTCGTGCCGGTCAGCCGGGAACTGCCGGACCTGCCGGCGGTGGGCCGTCCAGCCCAGCGCCCGGTGGACATTTCACAATGGGACCAAGTGCTGGAACTGATACGCGCCGTACCGCGCAAAGACGTGGTGCAGCTGGGTCGCGGGATGCCGGATATCCATTCGCCAACCATGAAGCCATTACTTCGCAGCCTGGCGCAGATCAGCCGACGGCAAGACATGCCCGGCCTGTATTACGACAACATCTATGGCAACTTGGAACTGCGGGAACAGATCGCCCGGCTGTCCTTGGACTCCGGCTGCCAACTGGGCGCCAACGACCTGATTGTCACTACCGGCTGCCACGAAGCGTTGTCAGTGAGCGTCCGCGCCACCTGCGAGCCAGGTGACATCGTCGCGGTGGATTCACCCAGCTTCCATGGCGCCATGCAGACGCTGAAAGGCCTGGGCATGAAAGCCCTGGAAATCCCCACCGACCCACTCACTGGCATCAGCCTGGAAGCTTTGGAACTGGCGTTGGAGCAATGGCCGATCAAGGCCATACAGTTGACCCCGAGCTGCAATAACCCGTTGGGTTACATCATGCCCGAGGCCAACAAACGAGCCCTCTTGACCTTGGCACAGCGCTTTGATGTGGCGATTATCGAAGACGATGTGTATGGCGAACTGGCTTACACCTACCCGCGTCCGCGCACCATAAAGTCTTTCGACGAAGATGGGCGCGTCCTGCTCTGCAGTTCTTTTTCCAAGACCTTGGCGCCGGGCCTGCGAGTGGGTTGGGTTGCCCCCGGCCGCTATCTGGAACGGGTGCTGCACATGAAATACATCAGCACGGGATCTACCGCGCCGCAGCCCCAGATCGCTATTGCCGAGTTTCTCAAGGCTGGTCATTTCGAGCCGCATTTACGCCGCATGCGCGGGCAATACCAGCGCAATCGCGACGTAATGATGGACTGGGTCAGCCGATATTTCCCCCAGGGCACCCGCGCCAGCCGCCCTCGTGGCAGCTTCATGCTCTGGGTCGAGTTGCCGGAAGGCTTCGATACGCTGAAGCTCAACCGCATGCTTCATGACCAAGGGGTCCAGATCGCGGTCGGCAGTATTTTCTCGGCATCTGGCAAATACCGTAATTGCCTGCGCATGAACTACGCTGCCAAGCCAACGGCGCAAATCGAAGATGCTGTACGCAAGGTGGGTGCCGCCGCGAGCAAGCTGTTGAGCGATGTCGCCAACGTCCAATGA	MTLYVNLAELLGTRIEQGFYRPGDRLPSVRALSTEHGVSLSTVQQAYRVLEDSGLAMPKPKSGYFVPVSRELPDLPAVGRPAQRPVDISQWDQVLELIRAVPRKDVVQLGRGMPDIHSPTMKPLLRSLAQISRRQDMPGLYYDNIYGNLELREQIARLSLDSGCQLGANDLIVTTGCHEALSVSVRATCEPGDIVAVDSPSFHGAMQTLKGLGMKALEIPTDPLTGISLEALELALEQWPIKAIQLTPSCNNPLGYIMPEANKRALLTLAQRFDVAIIEDDVYGELAYTYPRPRTIKSFDEDGRVLLCSSFSKTLAPGLRVGWVAPGRYLERVLHMKYISTGSTAPQPQIAIAEFLKAGHFEPHLRRMRGQYQRNRDVMMDWVSRYFPQGTRASRPRGSFMLWVELPEGFDTLKLNRMLHDQGVQIAVGSIFSASGKYRNCLRMNYAAKPTAQIEDAVRKVGAAASKLLSDVANVQ				NA	NA	NA	NA	NA
D1-36_05002	2415	yraJ	COG3188	Outer membrane usher protein YraJ	GTGGGCCTGGGTGTCTTCTGGCGGCCTGTCGGCAGCCTGGTCCTGATGTCGATTGCCTGGACCGAAGCCTCGGCACAGGCGTCCGATGAATTTGACCGTTCGGTGCTCGAAGCGCGAGGGATCGATCCGAATGTCGCCGAGTACTTTCGCAGCGCCGCGCGGTTTGCCGCAGGACGCAACCGCGTCGCCCTGAATGTCAATGGCGTACCTTCCGGGCAGATCTCCGTGACGTTCGATGACGAAGGGCAGTTGTGCGCCGATGCGAACTTGTTTGAGCACGTGGGAATCGCCGCGCCGTCGAACGTGAATCCAGGCGTTGATGAGGCGCTTTGCCTGTCTGCCGTACAAGCGTTGGCCGGCTTCCAGGTGCAGCTTGATCCGGGACAGAACCTGGTTTCATTGGTGGTGCCCGCCGACTTGCTGGCGACGCCAGGGCAGCGTCCCGGCGGCTGGGACTCCGGAGGGGTGGCGGGTGTGTGGAATTACGATGCTCTGGTCATCGACGGTTCCGCTGCGGGGCAGTCCAGCCACTATCGCAGCTTGGGCACTGAGCTGGGTTTCAATGCCGGAGATTGGGTCGTACGCAGCCGCCAGAATTACACGTCGTTCCAGGGCGTGACGCGTTTCGAGACGCTGTACACCCAAGCATCCAAGACCTGGGAGCGATTTGGCGCGCAGGTGCAGTTGGGCCAGTTGAACATGCGTTCCTCGTTGTTTTCCACGGGCCCGTTCACCGGGGTGCAAATCTTCCCGGAAACGGCGCTTTCCGCGGATGCGGGTGGGCTGGGCGCGGGATCCGAGGTCCAAGGGTTGGCCTATTCGACGGCCCGAGTCGAGGTCCGCCAGAGTGCCATCGTGATCTATACCACTCTGGTCCCCCCCGGGCCGTTCACCTTGCGCGACCTGCCGCTGATCAGTGATAGGCTGGATCTGGAAGTCAGCGTGTTCGAAGAAAGCGGTGAGCGTCGCGACTTTCATGTGCCTGCCGCGCAAGTGCGTCCCGCGAGACTAGGCACCCTGCCCAGTTATGGATTGGCGGCAGGCAGGATCCGGCAGATCGGGCGTGACCATGACACCCCATCATTTTTTGCCGCCAGCCGGGACTGGCGATGGGGCCCTCGGACGCAGACGAGCGCAGGGTGGATGGGGGCCGACGGTTACCAATCCTTTGGATGGGGCGTTTCTCAAGCGCTGACCCCAGCGACCGTGCTGACCCTGCAGCAGCTCGGTTCACGCACGACACGAGGCATCGGCGGCCAAGAGATCCAGGCCACACTCAACACGACGCTGGGCGACGGGCTATCGGTCGGTTTGACAGCGGGCCAGCGCAGCCCTGGGTTTCGATACTTGTCTGAGGCCGGGCGTGATGCCGTTGGAGGTGACCCGTTTGCCCGCGCGGCCAATCACTGGAGCCTATCGCTGAGGAGAGCGGATCCGGCTTGGGGTGCGCTGAGCGGATCATTGGCTCGCTATCAGGGCGGGGGTGGAAAAGCTCATTCGAGGGTCAGCGCGGCATGGTCGCGGGGTTTCGACTGGGCGACGTTTTCGCTGAGCCTTGAACACGACAGGTTTGAGCAAGCGGGTAGATCAGGTGCGTTCGTCAACGTGGGTGTTCCCCTGGGACGCAACCGAAGAATAAGCACTTCTGTACGTTACGATGATTCGAGAGGAGTGCGCAGTGGCGCACGTTATTCGGAGCAGGTCAGTGACAGCCTTGGCTACAGCATCGGTGCCGATCGCTTCGCCGACGACCGGAACGACTTCAACGCCAGGCTTAACGCCGTGCCCCGTTATACCAGCGCAGAACTGGGGTATTCCCGGAGCAGCGCCGGCGCGCGCCATTATGACCTGACGCTACGCGGCGGGTTGGCTTTGCACGACGAGGGCGTGACGCCTTCGCCGTATCCGCTGCGCGACACGTTCGGCCTGCTCAAAGTCGGCGACTACGCCGGAGTGAAGATTGGAACGCCCCAGGGGCCCGTCTGGACCGATGGAGCCGGGCGTGCGGTGGCGGCTGAACTGCCGCCTTACCAGGCGAGCCGTGTTGAAATCGACACGGTCAGCCTCCCTCGCAACATTGAGGTGCCAAATGGTTACCAAGAAGTGCGGGCAGCGCGCGGCGCTGTGCCGCGGCTCGACTTCCAGGCCGCCAGGGTTCGTCGCTTGTTGCTATACGTGCGCAACGAAGAGGGGGTACCCATGGCCAAGGGCCTTGGGGTTTATGACCACGCGGGTCAGTACTTGACGACGGTGGTCGACACGGGCCTGGTATATCTGGAGGATGCCCCTGTCGTGGCAAAACTCTCTATAGCGCTTGCCGATGAGCAAATCTGCCGCTTGGAAATCGATACTCGCCAGATGCCGGCATCCTCAGCGCCTATCGATCGTCTTGAGGTGGCTTGCCAGGTTGGCTGA	MGLGVFWRPVGSLVLMSIAWTEASAQASDEFDRSVLEARGIDPNVAEYFRSAARFAAGRNRVALNVNGVPSGQISVTFDDEGQLCADANLFEHVGIAAPSNVNPGVDEALCLSAVQALAGFQVQLDPGQNLVSLVVPADLLATPGQRPGGWDSGGVAGVWNYDALVIDGSAAGQSSHYRSLGTELGFNAGDWVVRSRQNYTSFQGVTRFETLYTQASKTWERFGAQVQLGQLNMRSSLFSTGPFTGVQIFPETALSADAGGLGAGSEVQGLAYSTARVEVRQSAIVIYTTLVPPGPFTLRDLPLISDRLDLEVSVFEESGERRDFHVPAAQVRPARLGTLPSYGLAAGRIRQIGRDHDTPSFFAASRDWRWGPRTQTSAGWMGADGYQSFGWGVSQALTPATVLTLQQLGSRTTRGIGGQEIQATLNTTLGDGLSVGLTAGQRSPGFRYLSEAGRDAVGGDPFARAANHWSLSLRRADPAWGALSGSLARYQGGGGKAHSRVSAAWSRGFDWATFSLSLEHDRFEQAGRSGAFVNVGVPLGRNRRISTSVRYDDSRGVRSGARYSEQVSDSLGYSIGADRFADDRNDFNARLNAVPRYTSAELGYSRSSAGARHYDLTLRGGLALHDEGVTPSPYPLRDTFGLLKVGDYAGVKIGTPQGPVWTDGAGRAVAAELPPYQASRVEIDTVSLPRNIEVPNGYQEVRAARGAVPRLDFQAARVRRLLLYVRNEEGVPMAKGLGVYDHAGQYLTTVVDTGLVYLEDAPVVAKLSIALADEQICRLEIDTRQMPASSAPIDRLEVACQVG				NA	NA	NA	NA	NA
D1-36_05003	669			hypothetical protein	ATGGCAGCGCTGTGCCTGCCATTCATAGGCCTTGGCGCCCAGGCGGCCGGAATGGTCCCGGAAACGCCGGTTGTGATTGTCGACCAGGGCATAGGGGAGGCGACCCTGAATGTCAGGAATACGGACGATCAACCGGCATTGCTCTATAGCGCTGTCCTTGACCTTCCGCAGGACAAGGAACCGTTGCTCCTGGTCAACCCTCCCGTGGCTCGACTGGAACCCGGCCAGAGCCAGCAAGTGCGTTTTATCCTTCACAGTGCCGCTGTCTTGCAGACGGAGCGGCTCAAGCGCGTCGTGTTCGAGGGCATCAAAGCGCGTCCGGCGGCGAGCGGCGCACAAATCTCCATGGGCGTGCGCCAGAACATCCCGGTGATTATTCGTCCGGCTGGCCTGGCAACGGAGCGAATGCCTTGGAAACGGCTGGTCTGGAGCGCCAGGACCGGTGAGATAAGCGTGAGCAATCCCAGCCCCTATGTTGTGAGGCTGGCGCGATCGGTGAGTCTGATTCCCGGTGGTGCAACACTGGATATCGGCCGTACCTATATCCTGCCGGGGGAAACGCTGGCGTTCGCCACGCCATCGAGCCTGGGCACACATGTCCGGTTGTTCCCAGCCACCACCTACGGGTTTGCCGCTGGTAGCCACGACGCACGCTTGAGCTTGCAGTAG	MAALCLPFIGLGAQAAGMVPETPVVIVDQGIGEATLNVRNTDDQPALLYSAVLDLPQDKEPLLLVNPPVARLEPGQSQQVRFILHSAAVLQTERLKRVVFEGIKARPAASGAQISMGVRQNIPVIIRPAGLATERMPWKRLVWSARTGEISVSNPSPYVVRLARSVSLIPGGATLDIGRTYILPGETLAFATPSSLGTHVRLFPATTYGFAAGSHDARLSLQ				NA	NA	NA	NA	NA
D1-36_05004	651	gltF		Protein GltF	ATGAAAAAAATATTCCTGGCCAGCATGCTGGCTGCTGCTTCCACGCCCATGATCGCCCAGGCGGCCAGTGTTGATTTGAATGTAACTGGCCGGGTCATTCCGACCTCCTGCGTTCCGGCATTTGCCGGTGGTAGCGATGTCAACCTAGGCCGGATTTTTTCGTCCACCCTGGCCCCCGATCGGCAGAACGATCTTCCTCAGCGGGACGTCAGCCTGCAAATCACCTGCTCCGCTCCGGCGGCCGTGGAAATTGCCGTGACTGACAACCGCGGTGCTTCCAAAGTGCCGGGCCTGTCCTTCAACGGAAGCCGAGGCGATGATCTGTATTACGGCCTGGGTAGCACCCAGGGGGTCGGCATCGGTGGTTTCGGTTTGTTGGGTGGCCAGCCTCGGGCCGACGGCGCTTTGCAGTCACTGCTGCTACGAACGGCGGCCAATCCGGGCTGGAGCGTGCCGACCAATGGTTTGGTGACCAATGCGCCAACGACTTACTCCTGGGGGGGTAGCCCGGCAGCCGGTCCCGCACCGGCTCGTCTTCACACCTTCCCGATGAAAGTCGCCGCGGTCATTCGCGCCACGTCCGAATTACCGGCTACCACCGATGACTTCGATCTCGACGGTTCGGTTACGTTCGATGTGTTTTACCTCTGA	MKKIFLASMLAAASTPMIAQAASVDLNVTGRVIPTSCVPAFAGGSDVNLGRIFSSTLAPDRQNDLPQRDVSLQITCSAPAAVEIAVTDNRGASKVPGLSFNGSRGDDLYYGLGSTQGVGIGGFGLLGGQPRADGALQSLLLRTAANPGWSVPTNGLVTNAPTTYSWGGSPAAGPAPARLHTFPMKVAAVIRATSELPATTDDFDLDGSVTFDVFYL				NA	NA	NA	NA	NA
D1-36_05005	243			hypothetical protein	ATGCGATGGCTATCAGGGAAGGAAACCAGCCACCGGCAGCAATGCCTGCGTATCGTTGCCTACCAGATGGGATTTTTCTGTAGGAAAAGGCTCCTCGACGCGCCATGTTTTTCAGCAAAACGCGTGGCTCTCTTGGCCTTGGAGGCGGTGTCCCACACCCAAGGGGCATCGCATCTCGCAGGCATGACGGATCAAAAAGCCGTGCCATACTCCTTCGCAACGACCCGGGATGATTCGACTTGA	MRWLSGKETSHRQQCLRIVAYQMGFFCRKRLLDAPCFSAKRVALLALEAVSHTQGASHLAGMTDQKAVPYSFATTRDDST				NA	NA	NA	NA	NA
D1-36_05006	1566	clsC	COG1502	Cardiolipin synthase C	TTGAAACCCCACGTTCCCCTGACATTCGCTCTGTTGCTCGCCACGACTCTCTGCGGCTGCGCGAGCCTGGATATCACTCGCGAGCCCAGCCAGGCGCTAGCGGCGGAGCATTCGACCTTCGGTCGCTCAGTCCAGGCCCAAGCCGCTCTTCACGAGGGCCGCTCGGGCTTTCGTCTACTGTCGGACAGCTCCGAGGCCTTCACCGCCCGGGCCGAATTGATCCGCAACGCTCAAGGCAGCCTGGACTTGCAGTACTACATCGTCCATGACGGGATCAGCACGCGAATGCTGGTGGACGAGTTGCTCAAGGCCGCCGACCGGGGCGTACGCGTGCGCATCTTGCTGGATGACACCACCAGCGACGGGCAAGAGGAGACCATCGCGACGCTCGCTGCCCACCCCAACGTCCAGATCCGCCTGTTCAACCCTTTGCATCTTGGCCGCGCCACCGGCGTGACCCGCGGCCTCGGGCGGCTGTTCAACCTGTCGTTGCAGCATCGAAGGATGCACAACAAGCTTTGGCTGGCGGACAACAGCATGGCGATCGTCGGAGGCCGAAACCTGGGGGATGAGTATTTCGATGCCGAACCCAACCTGAACTTCACCGACATCGACCTGCTCGGCGTCGGGCCGGTGGCCGAGCAGCTGGGACATAGCTTCGACCAGTATTGGAACAGCGCCCTGAGCAAGCCCATCGAGCAGTTCATGTCCCATCGGCCCACTGCCCAGGACTTGGCCGACAGCCGCTTGCGCCTGCAAGCGTCCCTTGATCAGACGCACAAGGAAAACCAGGCGCTGTATCAACAGCTGACCACCTACAAGACCCAGCCACGCCTGGACACCTGGCGCAGTCAATTGATCTGGGCCTGGAACCAGGCATTGTGGGACGCGCCTAGCAAAGTACTGTCAAGGGATGAGCCTGACCCCCAATTGCTGCTGACAACGCAACTGGGGCCGGAGCTGACCGGAGTGAGCAAGGAATTGATCATGATCTCGGCCTACTTCGTCCCCGGCCAGCCGGGCCTGGTGTACCTGACCAGTCGCGCCGATGCCGGCGTGTCGGTGAGCCTGCTGACCAACTCCCTGGAAGCCACTGATGTGCCCGCTGTTCATGGCGGCTACGCGCCGTATCGCAAGGCCCTGTTGCAGCACGGCGTGCGCCTGTTCGAACTGCGACGACAGCCGGGCGACAATGGCAGCAGCCCACATCTGTTCTATAGCAAATCCTACGGCGAGTCGGACTCCAGCCTGCACAGCAAGGCGATCATCTTCGACCGGCAGAAGTCCTTCATCGGCTCGTTCAACTTCGACCCGCGTTCGGTCCTGTGGAACACCGAGGTCGGTGTCCTGGTGGACAGCCCGGAGCTTGCCGACCAGGTGCGCGAGCTGGCGTTACAGGGGATGGCGCCGACCCTGAGTTATCAAGCGCGGCTTGAAGAGGGAAGAATGGTATGGACCACCGAAGACAACGGCAAGCTACACGACTTGGACCGCGAGCCAGGCAGTTGGTGGCGCCGGTTCAATGCCTGGTTCGCCACGACGATCGGGCTTGAGAGCATGCTCTGA	MKPHVPLTFALLLATTLCGCASLDITREPSQALAAEHSTFGRSVQAQAALHEGRSGFRLLSDSSEAFTARAELIRNAQGSLDLQYYIVHDGISTRMLVDELLKAADRGVRVRILLDDTTSDGQEETIATLAAHPNVQIRLFNPLHLGRATGVTRGLGRLFNLSLQHRRMHNKLWLADNSMAIVGGRNLGDEYFDAEPNLNFTDIDLLGVGPVAEQLGHSFDQYWNSALSKPIEQFMSHRPTAQDLADSRLRLQASLDQTHKENQALYQQLTTYKTQPRLDTWRSQLIWAWNQALWDAPSKVLSRDEPDPQLLLTTQLGPELTGVSKELIMISAYFVPGQPGLVYLTSRADAGVSVSLLTNSLEATDVPAVHGGYAPYRKALLQHGVRLFELRRQPGDNGSSPHLFYSKSYGESDSSLHSKAIIFDRQKSFIGSFNFDPRSVLWNTEVGVLVDSPELADQVRELALQGMAPTLSYQARLEEGRMVWTTEDNGKLHDLDREPGSWWRRFNAWFATTIGLESML	PGPT0007730_457	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-GLYCEROPHOSPHOLIPID_REMODELLING	CE-REMODELLING_GPL_GLYCEROPHOSPHOLIPID-CARDIOLIPIN_SYNTHASE_ACTIVITY,PGPT0007730-clsC|ymdC-K06132	NA	NA
D1-36_05007	1143	ycaD_2		putative MFS-type transporter YcaD	ATGCGTTGGGCGACTTATTTCGCCGTGTTGGCGTCTGTCCTGAGTGTCGGCCTGGCCCTGGGCGTGAGCATGCCGCTGGTGTCGCTGCGCCTGGAGGGCTGGGGTTACGGTTCGTTCGCCATCGGCGTTATGGCCGCCATGCCGGCCGTTGGGGTGCTGGTCGGGGCCAAGGTATCGAGCCGACTGGCGGCGCGCTTCGGCACGGCGGCATTGATGCGCCTGTGCCTCTGGGGCGGGGCGCTGTCCATCGGGTTGCTGGCGCTGTTGCCCAGTTATCCGGTGTGGTTGCTGCTGCGGCTGTTGATCGGCGTGGTCCTGACGCTGGTGTTCATCCTTGGCGAGAGCTGGATCAATCAATTGGTCGTCGAACAATGGCGCGGCCGGTTGGTCGCGCTGTACGGCAGCAGCTATGCGTTGAGCCAACTGTCCGGTCCGTTGCTGCTCGGCGCCCTTGGGACCGACCACGACTATGGCTTCTGGGTGGGCGTCGGCCTGCTGCTGGTCTCGCCCTTATTGTTGCTTGGCCGTAGCGGGGCGCCCAGCAGTGAAGCCAGCAGTGTCACCTTCAAAGATCTCTGGGGCTTTTGCCGGGGCTTGCCGGCGATTGGTTGGGCCGTGTCGTTGTTCGCCGCCTTTGAAGCCATGATCCTGACGTTACTGCCCGTCTATTGCTTGCGCCAGGGCTTCAGCGCCGATGTCGCACTGGCGATGGTCAGCACAGTGGTGGTCGGCGATGCCTTGCTGCAATTGCCCATCGGTGCCCTGGCCGATCGTCTTTCGCGTCGCTCGCTGTTCACTGGCTGCGCGGTGGTCTTGATGTTGTCCAGCCTGGCAGTGCCGCTGCTGATCGACACGCTCTTCATCTGGCCGCTGTGGGTGCTGTTTGGTGCCAGCGCGGGAGGGCTGTTCACCTTGTCGCTGATTTTGATCGGCGAGCGTTATCGCGACGATGCGCTGGTCCGGGCCAACGCTCATATTGCCCAGCTTTGGGGCATTGGATGCCTGGTTGGACCTTTGTTGGCGGGGGCGGGCAGCCAATGGATCAGCGGGCACGCGCTGCCCCTGTTCATGGCTGCGGGGGCGTTCGGGTTGGTGATTCTGTTGTTGCGACAAGGCGCGTTCGGAGCGACACAGCCCGCCTGA	MRWATYFAVLASVLSVGLALGVSMPLVSLRLEGWGYGSFAIGVMAAMPAVGVLVGAKVSSRLAARFGTAALMRLCLWGGALSIGLLALLPSYPVWLLLRLLIGVVLTLVFILGESWINQLVVEQWRGRLVALYGSSYALSQLSGPLLLGALGTDHDYGFWVGVGLLLVSPLLLLGRSGAPSSEASSVTFKDLWGFCRGLPAIGWAVSLFAAFEAMILTLLPVYCLRQGFSADVALAMVSTVVVGDALLQLPIGALADRLSRRSLFTGCAVVLMLSSLAVPLLIDTLFIWPLWVLFGASAGGLFTLSLILIGERYRDDALVRANAHIAQLWGIGCLVGPLLAGAGSQWISGHALPLFMAAGAFGLVILLLRQGAFGATQPA				NA	NA	NA	NA	NA
D1-36_05008	1494	puuC_2	COG1012	NADP/NAD-dependent aldehyde dehydrogenase PuuC	ATGACCACCCTGACTCGTGCCGACTGGGAACAGCGTGCCCGCGACCTGAAGATCGAAGGCCGCGCTTTCATCAACGGCGAATACACCGATGCGGTGTCCGGCGAAACCTTCGATTGCCTCAGCCCGGTCGATGGCCGCCTGCTGGGCAAGGTCGCCAGCTGTGACGTGGCCGATGCCCAGCGCGCCGTCGAAAATGCTCGCGCCACGTTCGATTCCGGCGTCTGGTCGCGCCTGGCGCCGAGCAAGCGCAAAGCCGCCATGATTCGCTTCGCCGGGCTGCTCAAGCAGAACGCCGAGGAGCTGGCCCTGCTGGAAACCCTGGACATGGGCAAGCCGATCAGCGATTCGCTGAATATCGACGTGCCCGGGGCCGCCCAGGCGCTGAGCTGGAGCGGTGAAGCCATCGACAAGATCTACGACGAAGTGGCCGCGACGCCCCACGATCAGTTAGGCCTGGTGACCCGCGAACCCGTCGGCGTGGTCGGCGCCATCGTGCCGTGGAACTTCCCGCTGATGATGGCTTGCTGGAAGCTCGGCCCTGCGTTGTCCACCGGTAACTCCGTGGTGCTGAAACCATCGGAAAAATCCCCGCTGACCGCGATCCGTATCGCCGCCCTGGCAATTGAGGCGGGTATTCCCAAAGGTGTGCTGAACGTTCTGCCGGGCTACGGCCATACCGTTGGCAAGGCGCTGGCCTTGCACATGGATGTCGATACGCTGGTATTCACCGGCTCGACCCGGATCGCCAAGCAACTGATGGTCTATTCCGGAGAGTCCAACATGAAGCGCGTCTGGCTGGAAGCCGGCGGCAAGAGCCCGAACATCGTGTTTGCCGATGCCCCGGACCTACAAGCCGCCGCCGAATCCGCCGCCAGTGCCATTGCCTTCAACCAGGGCGAAGTCTGCACCGCCGGCTCGCGCCTGCTGGTGGAGCGTTCCATCAAGGACACCTTCCTGCCGCTGGTGATCGAGGCCCTCAAGGGCTGGAAGCCTGGCAACCCGCTGGACCCGGCCACCAATGTCGGTGCCCTGGTCGATACCCAGCAGATGAATACCGTGTTGTCCTACATCGAGGCCGGTCACAGCGACGGCGCCACGCTGGTGGCGGGCGGCAAGCGGATCCTCGAAGAGACCGGCGGCACTTACGTTGAACCGACGATCTTCGATGGCGTGAGCAACGCAATGAAGATCGCCCAGGAAGAAATCTTCGGCCCGGTATTGTCCGTCATCGCCTTCGACAGCGCCGAAGAAGCCATCCAGATCGCCAACGACACGCCATACGGCTTGGCTGCCGCGGTGTGGACCAAGGACATCTCCAAGGCCCACCTGACCGCCAAGGCGCTGCGCGCCGGCAGCGTCTGGGTCAACCAGTACGACGGCGGTGACATGACCGCGCCGTTCGGTGGCTTCAAGCAGTCGGGTAACGGCCGGGACAAGTCGTTGCATGCGTTCGACAAATACACCGAGCTGAAGGCGACCTGGATCAAGCTCTGA	MTTLTRADWEQRARDLKIEGRAFINGEYTDAVSGETFDCLSPVDGRLLGKVASCDVADAQRAVENARATFDSGVWSRLAPSKRKAAMIRFAGLLKQNAEELALLETLDMGKPISDSLNIDVPGAAQALSWSGEAIDKIYDEVAATPHDQLGLVTREPVGVVGAIVPWNFPLMMACWKLGPALSTGNSVVLKPSEKSPLTAIRIAALAIEAGIPKGVLNVLPGYGHTVGKALALHMDVDTLVFTGSTRIAKQLMVYSGESNMKRVWLEAGGKSPNIVFADAPDLQAAAESAASAIAFNQGEVCTAGSRLLVERSIKDTFLPLVIEALKGWKPGNPLDPATNVGALVDTQQMNTVLSYIEAGHSDGATLVAGGKRILEETGGTYVEPTIFDGVSNAMKIAQEEIFGPVLSVIAFDSAEEAIQIANDTPYGLAAAVWTKDISKAHLTAKALRAGSVWVNQYDGGDMTAPFGGFKQSGNGRDKSLHAFDKYTELKATWIKL	PGPT0007645_177	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINE_USAGE	PLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007645-puuC|kauB-K12254	NA	NA
D1-36_05009	363			hypothetical protein	ATGCATATCCAGGACATCGTCGATTTCAGCCAGGCCAATACTACCCCCGAACGCTATCGCCCGGACCCCACCAAAATACTCAAGGGTGATCCTGAACAGGCGGTGTTCAATCATTACAACAGCCCATGCGGCCAGATGAATGCCGGGGTCTGGGAAGGTGCGGTCGGCCAGTGGACGGTCAACTATACGGAACACGAATACTGCGAAATCGTTCAGGGCGTATCGGTGCTGCGGGATGCCGAAGGCAATGCCAAGACACTTCGGGCGGGCGATCGCTTCGTGATTCCGGCCGGGTTCAAGGGCACCTGGGAAGTGCTAGAGCCTTGCCGCAAGATTTATGTGGTGTTCGAGCAGAAGGTCTGA	MHIQDIVDFSQANTTPERYRPDPTKILKGDPEQAVFNHYNSPCGQMNAGVWEGAVGQWTVNYTEHEYCEIVQGVSVLRDAEGNAKTLRAGDRFVIPAGFKGTWEVLEPCRKIYVVFEQKV				NA	NA	NA	NA	NA
D1-36_05010	156	rpmG	COG0267	50S ribosomal protein L33	ATGCGTGAATTGATTCGTTTGATCTCGAGCGCCGGTACTGGTCACTTCTACACTACCGACAAGAACAAGCGTACTACCCCGGACAAAATCGAGATCAAGAAATATGATCCGGTTGTTCGCAAGCACGTGATCTACAAGGAAGGCAAAATCAAGTAA	MRELIRLISSAGTGHFYTTDKNKRTTPDKIEIKKYDPVVRKHVIYKEGKIK				NA	NA	NA	NA	NA
D1-36_05011	234	rpmB	COG0227	50S ribosomal protein L28	ATGTCGAGAGTCTGTCAAGTTACCGGTAAGGGTCCGGTGACTGGGAATAACATTTCCCACGCAAACAACAAAACCCGTCGTCGTTTCCTGCCGAACCTGCAGCATCACCGCTTCTGGGTTGAAGAAGAGAAACGTTTTGTACGTCTGCGCGTATCTGCCAAGGGCATGCGCATCATCGACAAGCGTGGCATCAGTGTCGTGCTGGCCGAACTTCGTCGCGATGGCAAGGTTTAA	MSRVCQVTGKGPVTGNNISHANNKTRRRFLPNLQHHRFWVEEEKRFVRLRVSAKGMRIIDKRGISVVLAELRRDGKV				NA	NA	NA	NA	NA
D1-36_05012	1587	dppA_5	COG0747	Periplasmic dipeptide transport protein	ATGCGCCTCGCTGCCCTACCACTGATGCTCGCCCCTCTGCTGATCAGCCCGCTGGCCCAGGCCGCCGCCCTGAGCGTATGTACCGAGGCCAGCCCGGAAGGGTTCGATGTCGTTCAATACAACTCGTTGACCACCACCAATGCTTCGGCCGACGTGCTGATGAACCGCCTGGTGGACTTCGATACGGCCAGCGGGAAAGTGGTCCCGAGCCTGGCCGACAGCTGGGAAGTGTCGCCCGATGGACTCACCTATGTGTTCAAGCTGCGTCCACGGGTCAAGTTCCACCACACCGACTATTTCACACCGCACCGCGACTTGACCGCCGAAGACGTCAAGTTCAGCTTCGACCGCATGCTGGATCCCGCCAACCCTTGGCATAAAGTGGCGCAGAGTGGCTTCCCACACGCTCAATCCATGCAATTGCCGTCGCTGATCACAAAAATCGACGCCCTGGACCCGCTAACGGTGCGATTCACACTGGACCATGCCGATTCGACCTTCCTGGCGACGCTGAGCATGGGCTTTGCGTCAATCTATTCAGCCGAATACGCAGACCAGTTGCTGAAGGCCGGCAAGCCGGAACAACTCAACAGCCAGCCCATTGGCACCGGCCCGTTCATTTTCAGCCGTTTCCAGAAAGACGCCTCGATCCGCTACAAGGCCAACAGCGAATACTTTGGCGGCAAGCCTCAGGTCGACCCCCTGATTTTCGCCATCACCCCGGACGCCAATGTTCGCCTGCAGAAACTGCGGCGCAATGAATGCCAGATCGCGTTGTCGCCCAAGCCGTTGGACGTACAGGCCGCCAAGCAAGAGCCTACGTTGAAAGTGGAACAGACTGACGCCTTCATGACCGCCTTCCTGGCGATTAATAGCCAGCATCCCCCCTTGGACAAACCTGAAGTCCGTCAGGCTATCAATCTCGCGTTTGACAAGCCCAGCTACCTCAAGACCGTTTTCGAAGGCACCGCCGAAGCGGCCAACGGTCCTTACCCCCCAAACACCTGGAGCTACGCCAAAAACCTGCCCGGCTATGCCCATGATCCGGCCAAAGCTCGGGACCTGCTGGCCAAGGCCGGGTTGAAAGAGGGCTTCAAGACCACCATCTGGACTCGCCCTTCCGGCAGTCTGCTCAACCCCAACCCGAGCCTTGGCGCCCAACTGCTGCAATCGGACCTGGCGGAAATCGGCATCCAGGCGGAAATCCGCGTGATCGAATGGGGCGAGCTGATCCGCCGCGCCAAGGCTGGCGAGCATGACCTGCTGTTCATGGGCTGGGCCGGTGATAACGGCGATCCGGACAATTTCCTCACGCCGCAATTTTCCTGCGCGGCGGTCAAGTCCGGCACCAACTTTGCCCGTTATTGCAACCCGGACCTGGACAAGCTGATCAGTGCCGGCAAGACCACTGGCGAGCAAGGTGTCCGCACCAAGCTCTACGAACAGGCACAGGCTCAGATCCAGCAGCAGGCCCTTTGGCTGCCGTTGGCGCACCCGACCGCCTTCGCATTGACCCGCAAGGATGTGCAGGGGTATGCGGTGAGCCCGTTTGGGCGCCAGGACTATTCCAAGGTCAGTCTCAAGTAA	MRLAALPLMLAPLLISPLAQAAALSVCTEASPEGFDVVQYNSLTTTNASADVLMNRLVDFDTASGKVVPSLADSWEVSPDGLTYVFKLRPRVKFHHTDYFTPHRDLTAEDVKFSFDRMLDPANPWHKVAQSGFPHAQSMQLPSLITKIDALDPLTVRFTLDHADSTFLATLSMGFASIYSAEYADQLLKAGKPEQLNSQPIGTGPFIFSRFQKDASIRYKANSEYFGGKPQVDPLIFAITPDANVRLQKLRRNECQIALSPKPLDVQAAKQEPTLKVEQTDAFMTAFLAINSQHPPLDKPEVRQAINLAFDKPSYLKTVFEGTAEAANGPYPPNTWSYAKNLPGYAHDPAKARDLLAKAGLKEGFKTTIWTRPSGSLLNPNPSLGAQLLQSDLAEIGIQAEIRVIEWGELIRRAKAGEHDLLFMGWAGDNGDPDNFLTPQFSCAAVKSGTNFARYCNPDLDKLISAGKTTGEQGVRTKLYEQAQAQIQQQALWLPLAHPTAFALTRKDVQGYAVSPFGRQDYSKVSLK	PGPT0004500_1554	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004500-dppA-K12368	NA	NA
D1-36_05013	675			hypothetical protein	ATGAGTATTCGGGATTGGCCCGTGGCCGAGCGGCCGCGGGAAAGGTTACTGGCGTCGGGAGCGGAGAGTCTTTCGGACGCCGAGTTGCTGGCGATTTTCTTGCGCACGGGAGTGGCGGGCAGAAGCGCGGTGGATCTGGCGCGACACCTATTGAGTCAATTTGGCTGCCTGCGCGCGCTGCTTGAAGCGGACCAGGTTACGTTCAGCGGTCAGATGGGCCTGGGCCCGGCGAAATTCGCACAATTGCGGGCCGTTCTTGAAATGGGCCGGCGACATCTGGCAGAGCGGATGCGGCAAAAATCAATGCTTGAGGATCCGCAGGCCGTTCGTGACTATCTGAAGTCAATGCTGCGCCACGAGCCTCATGAGGTTTTTGGTTGTCTGTTCCTTGATTCACGGCACCAGGTGCTGGCGTTTGAAGCACTGTTTCGCGGCTCGATCGCCACGGCCACCGTTCACCCTCGGCAAGTGGTCAAGCGGGCCCTGGCCCACAATTGCGCTGCCGTGATCCTGTGCCACAACCACCCCTCCGGCAACACCGAGCCCAGCCAGGCCGACCGAATGCTCACCGAGCGGCTTCAGGAGGCGCTGGAGCTGATCGATGTGCGGGTGCTCGATCATTTCATCGTTGGCGATGGGGAGCCACTGTCCATGGCGGAGTATGGGTGGATGTAG	MSIRDWPVAERPRERLLASGAESLSDAELLAIFLRTGVAGRSAVDLARHLLSQFGCLRALLEADQVTFSGQMGLGPAKFAQLRAVLEMGRRHLAERMRQKSMLEDPQAVRDYLKSMLRHEPHEVFGCLFLDSRHQVLAFEALFRGSIATATVHPRQVVKRALAHNCAAVILCHNHPSGNTEPSQADRMLTERLQEALELIDVRVLDHFIVGDGEPLSMAEYGWM				NA	NA	NA	NA	NA
D1-36_05014	1209	coaBC	COG0452	Coenzyme A biosynthesis bifunctional protein CoaBC	ATGCAGCGGCTGTATCGGAAACGCATCGTTCTGGGCGTCGGCGGCGGCATTGCCGCCTACAAGAGCGCCGAGCTGGTTCGCAGGCTTATCGACCAGGGCGCGGAAGTGCGGGTCGTCATGACCCGTGGCGGCAGTGAATTCATCACGCCGCTGACCATGCAGGCCCTGTCCGGCCACCCGGTCCACCTGGATCTGCTCGACCCGGCGGCTGAAGCCGCCATGGGCCATATCGAACTGGCCAAGTGGGCCGACCTGGTGTTGATCGCCCCGGCCACGGCCGACCTCATCGCCCGCCTGGCCCAGGGCATCGCCAATGACCTGTTGACCACCCTGGTGCTCGCCACCGACGCGGTGGTCGCCGTGGCACCGGCCATGAACCAGGCCATGTGGCGCGACCCGGCCACCCAGGCCAATCTGGAACTGCTTGAAAGTCGCAACCTGAAAGTCTTCGGTCCAGCTTCCGGCAGCCAGGCCTGCGGCGATGTCGGGATGGGCCGCATGCTAGAAGCCACCGACCTGGCCCAATGCGCCGCCGACTGCTTCAAGCGCGAAGCCCTGACGGGCAAGCACGTATTGATCACCGCCGGGCCGACCCAGGAAAACATCGACCCGGTGCGCTACATCACCAACCACAGCTCAGGGAAAATGGGCTTCGCCCTGGCCGAAGCCGCCGTAGAGGCTGGCGCCCGGGTGACGCTGATTACCGGCCCCGTGCACCTGCCGACCCCAGACCGGGTTACGCGCATCGACGTCGTCAGCGCCCGGGACATGCTTGCCGCCTGCGAAGCCGCCATCCCGTGCGACCTCTTCATCGCCTCGGCGGCAGTGGCGGACTACCGGCCTGAAGTCGTCGCCCCGCAAAAATTGAAGAAAGACCCTACGAGCGGCGACGGCCTGCTCCTGCAAATGGTGCGCAATCCTGACATTCTGGCCACCATTGCCACCCGCCCCGACCGTCCGTTCAGTGTGGGTTTCGCCGCCGAGACCGAACACCTCCTCGATTACGCCGCGCGCAAGCTCAAGGACAAGAATCTGGACCTGATCGTCGCCAACGACGTCGCCAACCCGAGCATTGGGTTCAACAGCGAGGAAAACGCCTGCAGCGTGATCGACCGCCAGTTGCACGCCACGCTTTTCGCCCAGACCAGCAAGGGCAAGATCGCCCGCCAACTGATCACTTTCATCGCCGAACGGCTGAACCAGGTTTAA	MQRLYRKRIVLGVGGGIAAYKSAELVRRLIDQGAEVRVVMTRGGSEFITPLTMQALSGHPVHLDLLDPAAEAAMGHIELAKWADLVLIAPATADLIARLAQGIANDLLTTLVLATDAVVAVAPAMNQAMWRDPATQANLELLESRNLKVFGPASGSQACGDVGMGRMLEATDLAQCAADCFKREALTGKHVLITAGPTQENIDPVRYITNHSSGKMGFALAEAAVEAGARVTLITGPVHLPTPDRVTRIDVVSARDMLAACEAAIPCDLFIASAAVADYRPEVVAPQKLKKDPTSGDGLLLQMVRNPDILATIATRPDRPFSVGFAAETEHLLDYAARKLKDKNLDLIVANDVANPSIGFNSEENACSVIDRQLHATLFAQTSKGKIARQLITFIAERLNQV	PGPT0008815_2873	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
D1-36_05015	456	dut	COG0756	Deoxyuridine 5'-triphosphate nucleotidohydrolase	ATGCACGCTCTACAAGCCAAGATCCTCGACCCACGCATCGGCAACGAATTTCCATTGCCGCAGTACGCCACACCGGGCTCCGCCGGCCTCGACCTGCGGGCCATGCTCAAGCAGGACACCGTCCTGGAGCCGGGCCAGACCCTGCTGATTCCGACCGGCCTGTCGGTCTATATCGGTGACCCGGGCCTTGCCGCGCTGATCCTGCCACGCTCGGGCCTGGGCCATAAGCACGGCATCGTGCTGGGCAACCTGGTCGGGCTGATCGATTCGGACTACCAGGGCGAACTGATGGTGTCCTGCTGGAACCGTGGCCAGACCGCTTTTAACATCGCAGTGGGCGAACGCATCGCTCAGCTTGTGCTGGTGCCAGTGGTCCAGGCCCACTTCGAACTGGTCCAGGAATTCGACGAAAGCCAACGTGGCGCCGGCGGCTTCGGGCATTCCGGCAGTCATTGA	MHALQAKILDPRIGNEFPLPQYATPGSAGLDLRAMLKQDTVLEPGQTLLIPTGLSVYIGDPGLAALILPRSGLGHKHGIVLGNLVGLIDSDYQGELMVSCWNRGQTAFNIAVGERIAQLVLVPVVQAHFELVQEFDESQRGAGGFGHSGSH	PGPT0021355_2681	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021355-dut-K01520	NA	NA
D1-36_05016	1512	algC	COG1109	Phosphomannomutase/phosphoglucomutase	ATGGCACGCTCCCACCGCGAACTCTCTGCCAAAAACGCCGTCATACCCTTCAGCTTGAGCCTGCCGACGCCCCTGTCGGCGTGTCCAGTCACTTTCCTGATAGAGCGCCCGCCCATGAACACCCCAGCCGCAATCGCCCCGATCTTTCCTGACAGTATCTTCCGCGCCTACGACATCCGTGGCGTCGTGCCGGAAACCCTGACGGCTGAAACCGCTTACTGGATTGGCCGCGCCATTGGTTCCCAGAGCCTGGCCCAGGGCGAACCGAACGTGAACGTCGGCCGCGATGGTCGTTTGTCCGGCCCGGAACTGGTCGAGCAATTGATCAAGGGCATTGCCGACAGTGGTTGCCATGTCAGCGACGTCGGCCTGGTGCCTACACCGGCGCTGTACTACGCCGCCAACGTGCTGGCTGGTAAATCCGGCGTGATGCTCACCGGCAGCCACAACCCGTCGAACTACAACGGCTTCAAGATCGTCATCGCCGGCGACACCCTCGCCAACGAGCAGATCCAGGCCCTGCACACCCGCCTCAAGACCAATGACTTGAGCAGCGGCCAGGGCAGCGTGACCAAGGTCGACATCCTCCCGCGCTACAACGATGAGATCGTCAAGGACGTGAAGCTCGATCGCCGCCTGAAAGTGGTGGTCGATTGCGGCAACGGCGCGGCTGGCGTGATCGCCCCCCAACTGATCGAAGCCCTGAACTGCGAAGTTATCCCGCTGTTCTGCGAAGTCGACGGCAACTTCCCGAACCACCACCCGGACCCGGGCAAGCTGGAAAACCTGCAAGACCTGATCGCCAAGGTCAAGGAAACCAATGCCGACCTCGGCCTGGCCTTCGACGGCGACGGCGACCGCGTGGGCGTGGTGACCGAGACCGGTAGCGTCGTGTTCCCGGACCGCCTGCTGATGCTGTTCGCCAAGGACGTCGTGGCACGCAACCCCGATGCGGAAATCATCTTCGACGTGAAGTGCACCCGTCGCCTGGTGCCGCTGATCAAGGAATACGGCGGCCGTCCGCTGATGTGGAAAACCGGCCATTCGTTGATCAAAAAGAAAATGAAACAGAGCGGTGCCCTGCTGGCCGGCGAAATGAGCGGCCACATCTTCTTCAAGGAGCGTTGGTTCGGTTTTGATGACGGCATCTACAGCGCGGCACGCCTGCTGGAGATTCTGAGCAAGGAAAAATCCACTGCGGAAGAACTGTTCGCAACCTTCCCGAACGATATTTCTACGCCGGAAATCAATATCCATGTGACCGAAGAGAGCAAATTCAGCATCATTGATGCACTGCACGATGCCCAGTGGGGCGAAGGCGCCGAACTGACCACCATCGACGGTGTGCGGGTCGACTACCCACAAGGCTGGGGCCTGGTTCGCGCCTCCAACACCACGCCGGTGCTGGTGCTGCGCTTCGAGGCCGACAACGAGGCCGAACTGCAGCGCATCAAGGACGTGTTCCACACCCAACTCAAACGTGTTGCACCCGATCTCCAACTACCGTTCTGA	MARSHRELSAKNAVIPFSLSLPTPLSACPVTFLIERPPMNTPAAIAPIFPDSIFRAYDIRGVVPETLTAETAYWIGRAIGSQSLAQGEPNVNVGRDGRLSGPELVEQLIKGIADSGCHVSDVGLVPTPALYYAANVLAGKSGVMLTGSHNPSNYNGFKIVIAGDTLANEQIQALHTRLKTNDLSSGQGSVTKVDILPRYNDEIVKDVKLDRRLKVVVDCGNGAAGVIAPQLIEALNCEVIPLFCEVDGNFPNHHPDPGKLENLQDLIAKVKETNADLGLAFDGDGDRVGVVTETGSVVFPDRLLMLFAKDVVARNPDAEIIFDVKCTRRLVPLIKEYGGRPLMWKTGHSLIKKKMKQSGALLAGEMSGHIFFKERWFGFDDGIYSAARLLEILSKEKSTAEELFATFPNDISTPEINIHVTEESKFSIIDALHDAQWGEGAELTTIDGVRVDYPQGWGLVRASNTTPVLVLRFEADNEAELQRIKDVFHTQLKRVAPDLQLPF	PGPT0017725_648	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-ALGINATE_METABOLISM	CE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0017725-pmm_pgm-K15778	NA	NA
D1-36_05017	906	argB	COG0548	Acetylglutamate kinase	ATGACCCTCGAACGCGAAGCCGCCGCCAACACCGCCAAGGTCCTGTCCGAAGCGTTGCCTTATATCCGACGCTATGTCGGCAAGACCCTGGTGATCAAGTACGGCGGCAACGCGATGGAAAGCGAGGAGCTGAAAACCGGCTTTGCCCGCGACATCGTGCTGATGAAGGCCGTGGGCATCAACCCGGTGGTGGTGCACGGTGGTGGCCCGCAGATCGGCGACCTGCTCAAGCGCCTCTCCATCGAGAGCCATTTCATCGACGGCATGCGCGTCACTGACGCACAGACCATGGATGTAGTGGAAATGGTGCTCGGCGGCCAGGTAAACAAGGACATCGTCAACCTGATCAACCGTCACGGCGGCAGCGCCATCGGCCTGACCGGCAAGGACGCCGAGCTGATCCGCGCGAAGAAGCTCACCGTTACGCGCCAGACCCCGGAGATGACCCAGCCGGAAATCATCGACATCGGCCAGGTGGGCGAAGTGGTCGGCATCAACACCGACCTGCTGAATTTGCTGGTCAAGGGCGACTTCATCCCGGTCATCGCGCCAATCGGCGTGGGCGCCAACGGTGAGTCGTACAACATCAACGCCGACCTGGTGGCCGGTAAGGTCGCCGAGGCGCTGAAGGCCGAGAAGCTGATGCTGCTCACCAACATTGCCGGCCTGATGGACAAGACCGGCAAGGTCCTGACCGGCTTGTCGACCCAGCAAGTCGACGACTTGATCGCCGACGGCACCATCTACGGCGGCATGCTGCCGAAGATTCGTTGCGCGCTGGAAGCGGTACAGGGCGGTGTTGGCAGCTCGCTGATCATCGACGGTCGCGTGCCGAATGCGATCCTGCTGGAGATCTTCACCGATACCGGCGTGGGTACGTTGATCAGCAATCGCAAGCGTCCTTAA	MTLEREAAANTAKVLSEALPYIRRYVGKTLVIKYGGNAMESEELKTGFARDIVLMKAVGINPVVVHGGGPQIGDLLKRLSIESHFIDGMRVTDAQTMDVVEMVLGGQVNKDIVNLINRHGGSAIGLTGKDAELIRAKKLTVTRQTPEMTQPEIIDIGQVGEVVGINTDLLNLLVKGDFIPVIAPIGVGANGESYNINADLVAGKVAEALKAEKLMLLTNIAGLMDKTGKVLTGLSTQQVDDLIADGTIYGGMLPKIRCALEAVQGGVGSSLIIDGRVPNAILLEIFTDTGVGTLISNRKRP	PGPT0014249_1163	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-PROLINE_METABOLISM,PGPT0014249-argB-K00930	NA	NA
D1-36_05018	645	pyrE	COG0461	Orotate phosphoribosyltransferase	ATGCAGGCGTATCAGCGCGATTTCATTCGCTTTGCCATCGATCGCGGTGTTCTGCGCTTCGGTGAGTTCACTCTCAAGTCCGGGCGCACCAGTCCGTACTTCTTCAACGCCGGCCTGTTCAACAGCGGCACCGCCCTGGCGCAGTTGGGTCGGTTCTATGCCGCGGCCATCGTCGAGAGCGGCATCCCGTTCGACGTATTGTTCGGGCCCGCCTACAAAGGCATCCCGCTGGCCGCCACCACCGCCGTCGCCCTGGCCGAACACCATGGCCGCGACCTGCCCTGGTGCTTCAACCGCAAGGAAGCCAAGGCCCATGGCGAGGGCGGTAGCCTGGTCGGCGCGCCGCTGACCGGCGATGTGCTTATCATCGATGACGTCATCACCGCCGGCACCGCCATTCGCGAAGTGATGCAGATCATCGCCTCGCAAGAAGGCGCCAAGGCCGCCGGCGTGCTGATCGCCCTGAACCGCCAGGAGCGCGGCAATGGTGAGCTTTCGGCAATTCAGGAAGTTGAGCGCGACTTCGGCATTCCGGTGATCAGCATTGTCTCGCTGAACCAGGTGCTGGAATTCTTGGCCGATGATCCGCAGCTCAAGCAGCATCTGCCGGCGGTGGAAGCCTACCGCGCCCAGTTCGGCGTCTAA	MQAYQRDFIRFAIDRGVLRFGEFTLKSGRTSPYFFNAGLFNSGTALAQLGRFYAAAIVESGIPFDVLFGPAYKGIPLAATTAVALAEHHGRDLPWCFNRKEAKAHGEGGSLVGAPLTGDVLIIDDVITAGTAIREVMQIIASQEGAKAAGVLIALNRQERGNGELSAIQEVERDFGIPVISIVSLNQVLEFLADDPQLKQHLPAVEAYRAQFGV	PGPT0021200_1488	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021200-pyrE-K00762	NA	NA
D1-36_05019	780	exoA	COG0708	Exodeoxyribonuclease	ATGCGGATCATCAGTGTGAACGTCAATGGTATTCAGGCTGCAGTGGAGCGTGGTTTGCTCAGTTGGCTGCAAGCACAGAATGCCGACGTCATCTGCCTGCAGGACACCCGCGCCTCCGCCTTTGAACTGGACGATGCAGCCTTCCAACTGGATGGTTACTTCCTTTATGCCTGCGATGCCGAAGTCCCCGCCCAGGGTGGCGTGGCTTTGTACTCGCGGCTGCAACCGAAGGCTGTCATCAACGGTCTCGGTTTCGAGACGGCGGACCGCTACGGGCGCTACCTGCAAGCCGATTTCGACAAGGTCAGCATCGCGACCTTACTGCTCCCTTCGGGGCAGAACGGCGATGAAGATTTGAATCAGAAATTCAAGTTGATGGACGACTTCGCCCGTTACCTTGATAAACAGCGGCGCAAACGTCGCGAGTACATTTATTGTGGCTCGCTGTACGTGGCGCAACAGAAGCTGGATATCAAGAACTGGCGCGACAGCCAGCAATCTCCTGGTTTCCTGGCGCCGGAACGGGCCTGGATGGACGAGATCATTGGCAACATGGGCTATGTCGACGCCCTGCGTGAAGTCAGCCGCGAAGGCGACCAGTACAGCTGGTGGCCGGACAACGAGCAGGCCGAGATGCTCAATCTCGGCTGGCGTTTCGACTACCAGTTGCTGACGCCTGGGCTGCGCCGCTTCGTACGCAGCGCCCGCCTGCCGCGCCAGCCACGGTTCTCGCAGCACGCGCCGCTGATCGTGGACTACGATTGGACGCTGACGGTCTAA	MRIISVNVNGIQAAVERGLLSWLQAQNADVICLQDTRASAFELDDAAFQLDGYFLYACDAEVPAQGGVALYSRLQPKAVINGLGFETADRYGRYLQADFDKVSIATLLLPSGQNGDEDLNQKFKLMDDFARYLDKQRRKRREYIYCGSLYVAQQKLDIKNWRDSQQSPGFLAPERAWMDEIIGNMGYVDALREVSREGDQYSWWPDNEQAEMLNLGWRFDYQLLTPGLRRFVRSARLPRQPRFSQHAPLIVDYDWTLTV				NA	NA	NA	NA	NA
D1-36_05020	369			hypothetical protein	ATGAGTGATGAGCAAGTCCTGTTGCCCCAACCGAGCAAAGAAGCGCGGCAATGGGCAATGTTTTGTCACCTGTCTGCACTGTTGGGAATTTTCATTCCGTTCGGTTCGCTGATCGGGCCGCTGGTCATCTGGCAGCTCAAGCGTGAGTCCGACCCGTTCATCGATGCCCAGGGCAAGGAAGCGCTGAACTTCCAAATCACTGTGGCGATCGCTGCGGCGATCAGCTTGCTGCTGATGATCGTGGTGATCGGTTTCTTCCTGTTTGGCCTGGTCGCCATCGGTGCGCTGGTGCTGACCATTATTGGCGGTGTGAAAGCCAATGAGGGGCAGCCGTACCGATATCCCTTTACCTGGCGGTTGGTTAAATAG	MSDEQVLLPQPSKEARQWAMFCHLSALLGIFIPFGSLIGPLVIWQLKRESDPFIDAQGKEALNFQITVAIAAAISLLLMIVVIGFFLFGLVAIGALVLTIIGGVKANEGQPYRYPFTWRLVK				NA	NA	NA	NA	NA
D1-36_05021	723	rph	COG0689	Ribonuclease PH	ATGAAACGTCCAAGTGGTCGCGTTGCCGATCAGCTTCGCTCGATCCGCATTACCCGCAACTACACCAAACACGCCGAGGGATCTGTACTGGTCGAATTCGGTGATACCAAGGTCATCTGCACCGTCAGCGTCGAAAACGGCGTGCCTCGCTTCCTGAAGGGCCAGGGGCAAGGCTGGTTGACCGCCGAATACGGCATGCTGCCGCGCGCCACCGGCGAGCGGAACCAGCGCGAGGCCAGCCGTGGCAAGCAGGGCGGCCGGACCCTGGAGATCCAGCGATTGATCGGCCGTTCCCTGCGCGCTGCGCTGGACATGTCCAAGCTTGGTGATGTGACGCTGTATGTCGATTGCGATGTGATCCAGGCTGACGGCGGCACCCGCACCGCTTCCATCACCGGCGCGATGGTTGCGTTGGTCGACGCCTTGAAAGTGATCAAGAAACGCGGTGGCCTCAAGGGCGGTGACCCGCTCAAGCAAATGATCGCCGCGGTGTCGGTGGGCATGTACCAGGGCGAGCCGGTGCTGGACCTGGACTACCTCGAAGACTCCGCCGCCGAAACCGACCTGAACGTGGTCATGACCAGCGCTGGCGGCTTCATCGAAGTCCAGGGCACTGCCGAAGGCGCGCCGTTCCAGCCGCAAGAGTTGAACGCTATGCTGGAGCTGGCGAAGAAAGGCATGACCGAAATCTTCGAATTGCAAAAGGCCGCGTTGGCCGACTGA	MKRPSGRVADQLRSIRITRNYTKHAEGSVLVEFGDTKVICTVSVENGVPRFLKGQGQGWLTAEYGMLPRATGERNQREASRGKQGGRTLEIQRLIGRSLRAALDMSKLGDVTLYVDCDVIQADGGTRTASITGAMVALVDALKVIKKRGGLKGGDPLKQMIAAVSVGMYQGEPVLDLDYLEDSAAETDLNVVMTSAGGFIEVQGTAEGAPFQPQELNAMLELAKKGMTEIFELQKAALAD	PGPT0021590_6	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021590-rdgB-K02428	NA	NA
D1-36_05022	864			hypothetical protein	ATGGTGCACAGCATGACCGCCTTCGCCCGAGTCGAAAAGGCCGGCGCCCAAGGCACGCTGAGCTGGGAATTGCGCTCGGTCAACAGCCGCTACCTGGAGCCGCATCTGCGCCTGCCCGAATCCTTCCGCGACCTGGAAGGCAGCGTGCGCGAAGCGCTGCGCCAGGGCTTGTCCCGGGGCAAATTGGAATGCACCCTGCGCTTCACCGAAGAAAGCAGTGGCAAGACGCTGCAGGTCGATCGCGAACGCGCCGCGCAACTGGTCGCGGCCGCAGAAACCGTCGCAGGCTTGATCAAGAACCCCGCCGCCCTCAATCCGCTGGAAATACTGGCCTGGCCAGGCGTACTGGTCGGCGATGCGAGCGATCCCCAAGCGCTGAATGCCGAGGCGCTGGCACTCTTCACTCAAGGGCTGAAGGAACTCAAGGCGGGTCGCGAGCGTGAAGGCGCGGAGCTGGCCCGTCTGATCAACGAGCGCCTGACTTCTATTGAAGAAGATGTCGTCACCCTGCGCGAACTGGTCCCGCAAATGCTCGCCACCCAACGCCAGAAAGTCCTCGACCGCTTCGCCGACATGCAGGCCGAGCTGGACCCGCAGCGCCTGGAACAGGAAATGGTCATGCTCGCGCAAAAAAGCGACGTGGCCGAAGAACTGGATCGCCTGAGCACCCACATCATCGAAGTTCGCCGGGTGCTCAAGTCCGGCGGCGCGGCCGGTCGCCGCCTCGACTTCCTGATGCAGGAGCTCAACCGCGAAGCCAATACACTGGGCTCCAAAGCCTTCGACCCGCGCAGCACGCAGGCGGCGGTCAACCTCAAGGTGTTGATCGAGCAAATGCGCGAACAAGTGCAGAACATTGAGTAA	MVHSMTAFARVEKAGAQGTLSWELRSVNSRYLEPHLRLPESFRDLEGSVREALRQGLSRGKLECTLRFTEESSGKTLQVDRERAAQLVAAAETVAGLIKNPAALNPLEILAWPGVLVGDASDPQALNAEALALFTQGLKELKAGREREGAELARLINERLTSIEEDVVTLRELVPQMLATQRQKVLDRFADMQAELDPQRLEQEMVMLAQKSDVAEELDRLSTHIIEVRRVLKSGGAAGRRLDFLMQELNREANTLGSKAFDPRSTQAAVNLKVLIEQMREQVQNIE				NA	NA	NA	NA	NA
D1-36_05023	621	gmk	COG0194	Guanylate kinase	ATGACCCACAGCACCGGCACTCTCTACATCATTTCCGCGCCCTCGGGCGCTGGCAAGACCAGCCTGGTCAAGGCATTGATCGATGCCGAGCCGCAGATCCGCGTCTCGGTCTCGCACACAACCCGCGCCATGCGCCCGGGCGAAGTGAATGGCGTGAACTATCACTTCGTTGACCGTGAAGAGTTCGTGAGGATGGCCGAGCACGGCGATTTCCTCGAGCGCGCCGAAGTCTTCGGCAACCTCTACGGCACTTCGCAGAGCTACCTCCAGCAAACCCTCGACGAAGGCCACGACCTGATCCTGGAAATCGACTGGCAAGGCGCCGAACAAGTTCGCAAGCTGATGCCCCAGGCCCGCTCCATCTTCATCCTGCCGCCGAGCCAGCAAGCCTTGCGCCAACGCCTGACCAACCGCGGCCAGGACAGCGATGAAATCATCGAAGGCCGGATGCGTGAAGCGGTCAGCGAAATGAGCCATTACGTCGATTACGATTATCTGATCATCAATGACGATTTTGCCCACGCGCTGGACGACCTGAAGGCGATTTTCCGCGCCAGCCAGCTGCAACAGAAGCGCCAACAGCAACGTTTCGGCAAGCTTTTGGCTGAACTGCTGGGCTGA	MTHSTGTLYIISAPSGAGKTSLVKALIDAEPQIRVSVSHTTRAMRPGEVNGVNYHFVDREEFVRMAEHGDFLERAEVFGNLYGTSQSYLQQTLDEGHDLILEIDWQGAEQVRKLMPQARSIFILPPSQQALRQRLTNRGQDSDEIIEGRMREAVSEMSHYVDYDYLIINDDFAHALDDLKAIFRASQLQQKRQQQRFGKLLAELLG	PGPT0021475_2762	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021475-gmk-K00942	NA	NA
D1-36_05024	264	rpoZ		DNA-directed RNA polymerase subunit omega	ATGGCCCGCGTAACCGTTGAAGACTGCCTAGAACACGTGGAAAACCGCTTTGAGCTGGTCATGCTCTCTACCAAGCGTGCCCGTCAACTGGCCACCGGCGGCAAAGAGCCATTGGTCCAGTGGGAAAACGACAAGCCTACCGTGGTAGCGCTGCGTGAAATCGCCGAAGGCCTGATGAGCTACGAGTTCATCGCCAACGCTGAAATCGTTGAAGACGAACCGCTGTTCGCAGCGTTCGAGGACGAGTCCAACGAGGCGGTCTAA	MARVTVEDCLEHVENRFELVMLSTKRARQLATGGKEPLVQWENDKPTVVALREIAEGLMSYEFIANAEIVEDEPLFAAFEDESNEAV				NA	NA	NA	NA	NA
D1-36_05025	2106	spoT	COG0317	Bifunctional (p)ppGpp synthase/hydrolase SpoT	ATGCCGAGCATAGACGCCCTCGCCGATCGCTTATCGGCCTACCTCGGCACGGACCAGGTCAACCTGGTCCGCCGAGCCTATTTCTACGCCGAACAAGCCCACGACGGCCAGCGCCGCCGCAGCGGCGAGGCGTACGTCACGCACCCGCTCGCGGTGGCGAATATCCTTGCCGACATGCACATGGACCATCAGAGCCTGATGGCGGCCATGCTCCATGACGTGATCGAAGACACCGGCATTGCCAAGGAAGCGCTGCAAGCGCAGTTCGGCGAAACCGTGGCCGAACTGGTCGACGGGGTCAGCAAGCTGACCCAGATGAACTTCGAAACCAAGGCCGAGGCCCAGGCCGAAAACTTCCAGAAAATGGCCATGGCCATGGCCCGCGATATCCGCGTGATCCTGGTCAAGCTCGCCGACCGCCTGCACAACATGCGCACGCTGGAAGTGCTGTCCGGCGAGAAACGCCGGCGAATCGCCAAGGAAACCCTCGAAATCTACGCACCCATCGCCAATCGCCTGGGCATGCACGCAATTCGCATCGAGTTCGAGGACCTGGGTTTCAAGGCGATGCACCCGATGCGTTCGGCGCGCATCAACCAGGCCGTCAAGCGCGCCCGGGGCAATCGCAAGGAAATCGTCAACAAGATCGAAGAGTCCCTGAGCCACTGTCTGGCCATCGACGGCATCGAAGGCGAAGTCAGCGGGCGGCAGAAACACCTGTACGGCATCTACAAGAAAATGCGCGGCAAGCGCCGGGCCTTCAACGAAATCATGGACGTCTATGCGTTCCGGATCATCGTCGACAAGGTCGATACCTGCTACCGCGTGCTGGGTGCTGTCCATAATTTGTACAAACCGCTGCCTGGGCGCTTCAAGGATTACATCGCGATTCCCAAGGCCAACGGTTACCAGTCGCTGCACACCACGCTGTTCGGCATGCACGGCGTACCGATCGAAATCCAGATCCGCACCCGTGAAATGGAAGAGATGGCCAACAACGGCATCGCCGCCCATTGGTTGTACAAATCCAGTGGCGACGAGCAACCCAAGAGCACTCACGCCCGCGCGCGGCAGTGGGTCAAGGGCGTGCTGGAAATGCAGCAACGGGCCGGCAATTCCCTGGAATTCATCGAGAGCGTGAAGATCGACCTGTTCCCGGACGAGGTCTACGTCTTCACGCCCAAGGGCCGGATCATGGAGCTGCCCAAAGGGTCCACAGCGGTGGATTTCGCCTACGCCGTGCACACCGACGTCGGCAACAGCTGCATTGCCTGTCGCATCAATCGTCGCCTGGCACCGTTGTCCGAACCGCTGCAAAGCGGCTCCACTGTGGAAATCGTCAGCGCCCCCGGCGCGCGCCCCAACCCGGCGTGGCTCAACTTTGTGGTCACCGGCAAGGCCCGCACGCATATCCGCCATGCGCTGAAGCTGCAACGTCGCTCCGAGTCCATCAGCCTGGGCGAACGCCTGCTGAACAAGGTACTGAACGGCTTCGACAGTTCCCTGGACAAGATCCCGGCCGAGCGCGTACAGGTCATGCTCCACGAATACCGTCTCGAATTGATCGAAGATCTGCTCGAGGACATCGGTTTGGGCAATCGCATGGCCTACGTCGTCGCCCGCCGACTGCTCGGCGAAGGCGAACAATTGCCGAGCCCTGAAGGTCCGCTGGCGATTCGCGGCACCGAAGGCCTGGTCCTCAGTTACGCCAAGTGTTGTACGCCGATTCCTGGCGATCCGATTGTCGGCCATCTGTCCGCCGGCAAAGGGATGGTGGTGCACCTGGACAACTGCCGCAATATCAGCGAAATCCGCCACAACCCGGAAAAATGCATCCAGCTTTCGTGGGCCAAGGATGTCACCGGCGAATTCAATGTCGAACTGCGCGTCGAGCTGGAGCACCAGCGCGGCCTGATCGCACTGCTGGCCAGCAGCGTCAACGCCGCCGACGGCAACATCGAGAAAATCAGCATGGACGAACGCGACGGTCGCATCAGCGTCGTCCAACTGGTGGTCAGCGTGCACGACCGCGTACACCTGGCCCGCGTGATCAAGAAACTGCGCGCCCTGACAGGGGTCATCCGCATCACTCGCATGCGCGCATAG	MPSIDALADRLSAYLGTDQVNLVRRAYFYAEQAHDGQRRRSGEAYVTHPLAVANILADMHMDHQSLMAAMLHDVIEDTGIAKEALQAQFGETVAELVDGVSKLTQMNFETKAEAQAENFQKMAMAMARDIRVILVKLADRLHNMRTLEVLSGEKRRRIAKETLEIYAPIANRLGMHAIRIEFEDLGFKAMHPMRSARINQAVKRARGNRKEIVNKIEESLSHCLAIDGIEGEVSGRQKHLYGIYKKMRGKRRAFNEIMDVYAFRIIVDKVDTCYRVLGAVHNLYKPLPGRFKDYIAIPKANGYQSLHTTLFGMHGVPIEIQIRTREMEEMANNGIAAHWLYKSSGDEQPKSTHARARQWVKGVLEMQQRAGNSLEFIESVKIDLFPDEVYVFTPKGRIMELPKGSTAVDFAYAVHTDVGNSCIACRINRRLAPLSEPLQSGSTVEIVSAPGARPNPAWLNFVVTGKARTHIRHALKLQRRSESISLGERLLNKVLNGFDSSLDKIPAERVQVMLHEYRLELIEDLLEDIGLGNRMAYVVARRLLGEGEQLPSPEGPLAIRGTEGLVLSYAKCCTPIPGDPIVGHLSAGKGMVVHLDNCRNISEIRHNPEKCIQLSWAKDVTGEFNVELRVELEHQRGLIALLASSVNAADGNIEKISMDERDGRISVVQLVVSVHDRVHLARVIKKLRALTGVIRITRMRA	PGPT0014310_4366	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-BIOFILM_REGULATORS	CE-OTHER_BIOFILM_REGULATORS,PGPT0014310-spoT-K01139	NA	NA
D1-36_05026	381	yabJ_2	COG0251	2-iminobutanoate/2-iminopropanoate deaminase	ATGACCAAGACCGTTATCTCCAGCGACAAGGCCCCGGCCGCCATCGGTACTTATTCCCAGGCGATCAAGGCGGGCAACACCGTTTACATGTCGGGGCAAATCCCGCTGGACCCGAAAACCATGGAGCTGGTCGAGGGCTTCGAAGCCCAGACCGTGCAAGTGTTCGAGAACCTGAAAGCCGTGGCCGAAGCTGCCGGCGGCTCGTTCAAGGACATCGTCAAACTCAACATCTTCCTCACCGACCTGAGCCACTTCGCCAAGGTCAACGAGATCATGGGCAAGTATTTCGACCAGCCTTACCCTGCCCGCGCTGCCATTGGCGTGGCTGCCTTGCCAAAAGGCGCCCAGGTCGAGATGGATGCCATCCTGGTCATCGAGTAA	MTKTVISSDKAPAAIGTYSQAIKAGNTVYMSGQIPLDPKTMELVEGFEAQTVQVFENLKAVAEAAGGSFKDIVKLNIFLTDLSHFAKVNEIMGKYFDQPYPARAAIGVAALPKGAQVEMDAILVIE	PGPT0020030_3176	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020030-ridA|tdcF-K09022	NA	NA
D1-36_05027	741			hypothetical protein	ATGCGCAAAGCGCTTGCTTTCTCCCTGCTCGCCCTGCTCCTGGGCGGCTGCGCCAGCGACCCTGCAGACCGTGACATCAGCGGCACCTGGATCAACCAGGCCGCCATCGACGCTGCCGCCAAAGGCGGCCCGCTTCGCGAAGCATTGCAGGCCTATGGCCCGAACCTGGAATGGGACGTCAACACCCGGGCTGGCCAGGCGCGTTACACCAATGGTTTTGAGAATGTCGAAGGCAAGTTGCTGGGCGAAGAAGACGGCGCCTGGAAAGTCGACTTCTACGGCAGCTCGGCCAGCGAACTCAAGCGCGACGGCGACCAGTTGAGCCAGGCCGCCACCGAAAACGAACCACAGCAAGTGTTCGACCGCGCCCAAGTACAGGTACCGGAAGGCGCGCCGATTGGCGCCAGTTTCGAGCGCGCCCTGTATTCGGCTTATCTCGGCGGCATCTGGAACATTGCCGAAGGTCCTGGCCAGGGCGCCACCGTGCAATTCCAGCCCGATGGTCAAGTCAGCGGCTTGCCGGGCACTGATCGCTACGCCTTGTGCCTGGCTGGCGACTGCGCCTCCATGAGCGGTGGCAACGACAACATCTGGCTGCAACAGAACGGTCAGGGCAACACTTGGATTTTTTCCCGCGACGGCAAGAAACTGGAAATCTTCCAGACCGTGAACGCGGCGCTGGCGGATGAAATGCCGTCATTCACGCCGGGTGATCGCAAATGGGTGCTTGAAAAGCAATAA	MRKALAFSLLALLLGGCASDPADRDISGTWINQAAIDAAAKGGPLREALQAYGPNLEWDVNTRAGQARYTNGFENVEGKLLGEEDGAWKVDFYGSSASELKRDGDQLSQAATENEPQQVFDRAQVQVPEGAPIGASFERALYSAYLGGIWNIAEGPGQGATVQFQPDGQVSGLPGTDRYALCLAGDCASMSGGNDNIWLQQNGQGNTWIFSRDGKKLEIFQTVNAALADEMPSFTPGDRKWVLEKQ				NA	NA	NA	NA	NA
D1-36_05028	858			hypothetical protein	ATGTCCGCGCCTTCTGTTTTGATCGCCGGTTGTGGTGATATAGGCGGCCGCCTGGCGAGCCAGCTCGTGGCCGAACATTGGCGGGTCCATGGCTTGCGGCGTACGGTTTCGAACCTGCCGGCCGGGGTTGTCGGTGTCGCGGGGGACCTGTTCAGTGCGCAGTGTCCCGTCGACTGGCCTGTGGGGTCGTTGGATTATCTGGTGTACAGCGCCGCCGCTACCGATCATGACGAGGCGGGCTATCGTGCCGCTTATGTCGAAGGGTTACAGCATGTGTTGGGCTGGCTGGAACAGCATGGCCAGCGGCCCAAACGATTGCTCTTTGTGTCCAGCAGCAGCGTGTATGGACAGCAGGGCGGGGAGTGGGTGGACGAAAGCTCGCCCACCGAGGCGGGCGGTTATTCCGGGCGAGTGATGCTGGAAGCCGAGCAGGTGGCACTCGACAGCGGCATCCCGGCCAGTCGCATACGCCTGACCGGCATCTACGGACCGGGGCGGGAATGGCTGCTGAGCCAGGTGCGCCAAGGTTATCGCGTGGTGACCGACCCGCCGCTCTATGCCAACCGCATCCACGCCGACGATGCCGCCGGCCTGCTGGCGTTTCTGCTGAAAGCTGATCATCAGGGCAAGACGCTGGAAGACTGCTACATCGGCGTCGATGACACCCCCGCGCCGCTGGCCGAGGTGGTGGGTTGGTTGCGTGACTACATGGGCGTTACCGAATGGGCCGACGACGCCAGCGTGCGCCGCGCCGGCAGCAAGCGCTGCAGCAACGCCCGGGCCAAGGCGTTGGGCTGGACGCCGCGTTATCCGAGCTTTCGCGAGGGGTATGCGGCGATTCTGGAAGGTCGTTGCTGA	MSAPSVLIAGCGDIGGRLASQLVAEHWRVHGLRRTVSNLPAGVVGVAGDLFSAQCPVDWPVGSLDYLVYSAAATDHDEAGYRAAYVEGLQHVLGWLEQHGQRPKRLLFVSSSSVYGQQGGEWVDESSPTEAGGYSGRVMLEAEQVALDSGIPASRIRLTGIYGPGREWLLSQVRQGYRVVTDPPLYANRIHADDAAGLLAFLLKADHQGKTLEDCYIGVDDTPAPLAEVVGWLRDYMGVTEWADDASVRRAGSKRCSNARAKALGWTPRYPSFREGYAAILEGRC				NA	NA	NA	NA	NA
D1-36_05029	972	tolQ_4		Tol-Pal system protein TolQ	ATGACACGTTCTTTCTCTTCCGCTTCGCCAACCAACCGACCCCGCGCCTGGGGCGCCGTGGCAGCCTTGCTGCTCAGTCTGATGCTGGCGCCGAGCGCCGCCTTCGCTGATGCGCAGACGCCCGCATCGACCCCCGCCACCACGCCTGCTGCCACCCAGGCACCGGCGGACCCGGCCGCACCTGCTGCAACGCCCGTGGCCACCGATCCGAGCCAGGCCGTCGAGGCCGAGGCGCCTCAAGTGCTCGAAGCCGACAATACCCTGGGCATGGCCCACGACCTGTCGCCGTGGGGCATGTACAAAAACGCCGACGTGGTCGTCAAAGCCGTGATGATCGGCCTGGCCATCGCCTCGATCATCACTTGGACGATCTGGATCGCCAAGGGCTTTGAACTGCTTGGCGCCAAGCGTCGCCTGCGGGGTGAAATCGCCGCGCTGAAAAAAGCCACCACTCTCAAGGAAGCCAGTGCCACCGCCGGCAAGGAAGGCACACTCGCCAACCTGCTGGTCCACGATGCGCTCGAAGAAATGCGCCTGTCGGCCAACAGCCGCGAGAAGGAGGGCATCAAGGAGCGCGTGAGCTTCCGCCTCGAGCGCCTGGTCGCGGCCTGCGGTCGCAACATGAGCAGCGGCACCGGCGTACTCGCCACCATCGGTTCCACTGCGCCGTTCGTCGGCCTGTTCGGCACCGTGTGGGGGATCATGAACAGCTTCATCGGCATCGCCAAGACCCAGACCACCAACCTTGCCGTCGTTGCCCCCGGTATCGCCGAGGCCTTGCTGGCGACCGCATTGGGCCTGGTCGCGGCCATCCCGGCGGTGGTTATCTACAACGTCTTCGCCCGCTCCATCGCCGGTTACAAGGCCCAGGTTTCCGACGCTTCGGCCGAAGTCCTGTTGCTGGTCAGTCGCGACCTCGATCACCTGCCGCCCGAGCGTGGCTCGCAACCACACATGGTGAAAGTGGGGTAA	MTRSFSSASPTNRPRAWGAVAALLLSLMLAPSAAFADAQTPASTPATTPAATQAPADPAAPAATPVATDPSQAVEAEAPQVLEADNTLGMAHDLSPWGMYKNADVVVKAVMIGLAIASIITWTIWIAKGFELLGAKRRLRGEIAALKKATTLKEASATAGKEGTLANLLVHDALEEMRLSANSREKEGIKERVSFRLERLVAACGRNMSSGTGVLATIGSTAPFVGLFGTVWGIMNSFIGIAKTQTTNLAVVAPGIAEALLATALGLVAAIPAVVIYNVFARSIAGYKAQVSDASAEVLLLVSRDLDHLPPERGSQPHMVKVG	PGPT0003750_985	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	OTHER_HEAVY_METAL_RESISTANCE_SYSTEMS	HEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003750-exbB-K03561	NA	NA
D1-36_05030	429	exbD_3	COG0848	Biopolymer transport protein ExbD	ATGGGCCTGCATTTGAAAGAAGGCGCAGACGACGATCTGGCCGAGAACCACGAAATCAATGTCACGCCGTTCATCGACGTGATGCTGGTGCTGTTGATCATCTTCATGGTGGCCGCCCCGCTCGCCACCGTGGACATCAAGGTTGACCTTCCCGCGTCCACGGCCAAGCCGTCGCCACGACCCGAGAAACCGGTGTTCCTGAGCGTCAAGGCGGACCAGCGCCTGTTCCTGGGCGAAGAGGAAATCAAGGTCGAGAGCCTCGGCCCGACCCTCGATGCCAAGACCCAGGGCAAGAAAGACACGACGATCTTCTTCCAGGCCGACAAAGGCGTGGACTATGGCGACCTGATGAGCGTGATGGACGCCCTGCGCGGCGCCGGTTACTTGAAGGTCGGCCTGGTCGGACTCGAGACGGCGCCGAAGAAATGA	MGLHLKEGADDDLAENHEINVTPFIDVMLVLLIIFMVAAPLATVDIKVDLPASTAKPSPRPEKPVFLSVKADQRLFLGEEEIKVESLGPTLDAKTQGKKDTTIFFQADKGVDYGDLMSVMDALRGAGYLKVGLVGLETAPKK	PGPT0003755_1487	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	OTHER_HEAVY_METAL_RESISTANCE_SYSTEMS	HEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003755-exbD-K03559	NA	NA
D1-36_05031	756			hypothetical protein	ATGATCACGACGCGCCAAAAACTGACGCGTTACAGCGGTAGCCTCGCCGTGGTGCTGGGCGTGCACGCGCTTGCCATCGCGCTGGCGCTGAACTGGACGACGCGTCCGCCCCTCGAATTGCCGCCCCAGGCGATGATGGTCGAGCTGGCGCCGGTTCCTGCCCCGCCACCGCCCGCACCGCCGAAAGTCGTCACACCGCCGACGCCTCCGGAGCCGGTGGAAGAGCTGCCATTGCCAAAACTGGCCGAAGCACCGAAGGCGGAAATCGCCGTGCCCAAGCCGGTCAAGCCCAAGCCGAAGCCCCAGCCGCCCAAGCCCAAGCCAGTGGAGAAAAAACCGGAGCCGCCGAAGGAAACGCCGTCGGAGCAAAAGCCCGCCGACACTCAGCCCACCCAGGCGCCGACCGAAAAGTCCGCACAACCGGCCCCAGGCCCGTCGCCCGCGCAAATGGCGGCCAAGGCGAGCTGGCAAGGCACACTGCTGGCGCACCTGGGCAAATACAAGAAGTACCCGGCCAGCGCCCAGGCACGCGGCAAGGAAGGCATGAACCGCCTGCGGTTCGTGGTGGATGCCGAAGGCAACGTGTTGTCCTTCGAACTGGTGGGCAAGTCAGGCAACGCCGATCTGGACCGGGCCACCCTGGACATGATCCGTCGCGCCCAACCGCTGCCCAAGCCACCGGCCGACCTGCTGACCAACGGCACGGTCGAGCTGACGGCGCCGTTCCTGTACTCCATCGACAAGCGACGCCGCTGA	MITTRQKLTRYSGSLAVVLGVHALAIALALNWTTRPPLELPPQAMMVELAPVPAPPPPAPPKVVTPPTPPEPVEELPLPKLAEAPKAEIAVPKPVKPKPKPQPPKPKPVEKKPEPPKETPSEQKPADTQPTQAPTEKSAQPAPGPSPAQMAAKASWQGTLLAHLGKYKKYPASAQARGKEGMNRLRFVVDAEGNVLSFELVGKSGNADLDRATLDMIRRAQPLPKPPADLLTNGTVELTAPFLYSIDKRRR	PGPT0003745_3634	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	OTHER_HEAVY_METAL_RESISTANCE_SYSTEMS	HEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003745-tonB-K03832	NA	NA
D1-36_05032	921	oxyR		Hydrogen peroxide-inducible genes activator	ATGACCCTCACAGAATTACGCTACATCGTGACCCTCGCCCAAGAGCAGCATTTCGGCCATGCGGCCGAGCGTTGCCATGTCAGCCAGCCGACACTGTCGGTGGGTGTGAAAAAGCTTGAAGACGAACTCGGTGTGCTTATTTTCGAGCGCAGCAAAAGCGCGGTGCGCCTGACCCCGGTCGGTGAAGGCATCGTGGCCCAGGCGCAAAAGGTCCTGGAACAGGCCCAGGGCATTCGCGAGCTGGCCCAGGCCGGCAAGAACCAGCTGACCGCCCCATTGAAAGTCGGCGCGATCTACACCGTTGGCCCGTACCTGTTCCCGCACCTGATTCCACAACTGCACCGGGTCGCCCCGCAGATGCCGTTGTACATCGAAGAAAACTTCACCCACGTGCTGCGCGACAAGCTGCGCAACGGCGAGCTGGACGCAATCATCATCGCCCTGCCGTTCAACGAAGCCGATGTCCTGACCCTGCCGCTCTACGACGAGCCGTTCTACGTCCTGATGCCGGCCCAGCACCCCTGGACCCAGAAAAAAACCATCGACGCCGGTCTGCTCAACGACAAGAGCCTGTTGTTGCTGGGCGAAGGCCACTGCTTCCGCGACCAGGTGCTGGAAGCCTGCCCGACGTTGACCAAGGGCAGCGAAGGCGCCAAACACACCACGGTGGAATCCAGCTCTCTGGAAACCATTCGCCACATGGTTGCTTCCGGCCTGGGCATTTCCATCCTGCCGTTGTCGGCGGTGGACAGCCATCATTACTCCCCCGGCGTGATCGAAGTCCGCCCATTGACCGCGCCCGTGCCGTTCCGCACCGTTGCCATTGCCTGGCGCGCCAGCTTCCCGCGACCCAAGGCCATCGAGATCCTCGCCGACTCGATCCGCCTGTGTTCCGTGGCCAAGCCGCCCGCCGCCAAGTAA	MTLTELRYIVTLAQEQHFGHAAERCHVSQPTLSVGVKKLEDELGVLIFERSKSAVRLTPVGEGIVAQAQKVLEQAQGIRELAQAGKNQLTAPLKVGAIYTVGPYLFPHLIPQLHRVAPQMPLYIEENFTHVLRDKLRNGELDAIIIALPFNEADVLTLPLYDEPFYVLMPAQHPWTQKKTIDAGLLNDKSLLLLGEGHCFRDQVLEACPTLTKGSEGAKHTTVESSSLETIRHMVASGLGISILPLSAVDSHHYSPGVIEVRPLTAPVPFRTVAIAWRASFPRPKAIEILADSIRLCSVAKPPAAK	PGPT0012965_1704	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
D1-36_05033	2076	recG	COG1200	ATP-dependent DNA helicase RecG	ATGACTGAGCTGTCGAAAGTGCCGGTCACGGCACTCAAGGGTGTCGGTGAAGCCATGGCCGAAAAGTTGGCCAAGGTCGGCCTGGAAACCCTCCAGGACGTGCTGTTCCACCTGCCGCTGCGTTATCAGGATCGCACCCGCGTGGTGCCCATCGGCCATTTGCGGCCTGGGCAGGATGCAGTGGTGGAAGGCACCGTCAGCGGCGCCGACGTGGTCATGGGCCGGCGTCGTAGCCTGGTGGTGCGCCTGCAGGACGGCACCGGCGGGCTCAGTCTGCGTTTCTATCATTTCAGCAATGCGCAAAAGGAAGGCCTCAAGCGTGGCACCCGCGTGCGCTGCTACGGCGAGGCGCGGCCCGGAGCCTCGGGGCTGGAGATCTATCATCCGGAATACCGCGCCATCACCGGCGACGAACCGCCGCCCGTCGCGGAAACCCTGACGCCGGTCTACCCGCTCACCGAAGGCCTGACCCAACAGCGCCTGCGCCAACTCTGCCAGCAGACCCTGACAATGCTCGGCCCCACCAGCCTGCCGGACTGGCTGCCCAAGGAGTTGGCCCGGGACTATCAGCTCGCGCCACTGGCCGACGCGATTCGCTATCTGCATCACCCGCCCGCCGATGCAGATGTGGAAGAGCTCGCTCTCGGACATCACTGGGCCCAGCATCGCCTTGCCTTTGAAGAACTGCTGACCCATCAACTGTCCCAGCAACGCCTGCGCGAAAGCCTGCGCTCGCTGCGCGCCCCGGCCATGCCCAAGGCGACGAAGCTGCCGGCCCGTTACCTGGCCAACCTCGGTTTCACCCCCACCGGCGCGCAGCAGCGGGTCGGCAACGAAATCGCCTACGACCTGAGCCAGCCAGAGCCGATGCTGCGGCTGATCCAGGGCGACGTCGGCGCGGGCAAGACCGTGGTCGCCGCCCTCGCCGCGCTGCAAGCGTTGGAAGCCGGTTATCAAGTGGCCTTGATGGCGCCCACGGAGATCCTGGCCGAGCAACATTTCATCACCTTCCAGCGCTGGCTCGAACCTCTGGGCATCGAAGTCGCCTGGCTGGCCGGCAAGCTCAAGGGCAAGAACCGCGCCGCCGCCCTCGCGCAAATCGCCGAGGGCGCGCCGATGGTGGTCGGCACCCACGCTCTGTTCCAGGACGAAGTGCAGTTCAAGAACCTGGCCCTGGTGATCATCGACGAACAACACCGCTTCGGCGTCCAACAGCGCCTGGCCCTGCGGCAGAAAGGCGTCGGCGGGCGCATGTGCCCGCACCAGTTGATCATGACCGCGACGCCGATCCCACGGACCCTGGCGATGAGCGCCTACGCCGACCTCGACACCTCGATCCTCGACGAACTGCCTCCCGGTCGCACGCCGGTCAATACCGTGCTGGTCACCGACACCCGGCGGGTCGAAGTGATCGAGCGCGTACGCAGCGCCTGCGCCGAAGGCCGGCAAGCCTATTGGGTGTGCACCCTGATCGAAGAGTCGGAAGAGCTGACCTGCCAGGCAGCCGAGACTACTTTTGAAGACCTCACCGCCGCCCTCGGCGAGTTGAAAGTCGGGCTGATCCACGGCCGCATGAAGCCTGCCGAAAAAGCGGCGGTCATGGCCGAGTTCAAGGCCGGCGTCCTGCAACTGCTGGTCGCCACCACCGTGATCGAGGTCGGCGTCGATGTTCCCAACGCCAGCTTGATGATCATCGAAAACCCCGAGCGCCTGGGCCTGGCGCAGTTGCACCAGCTGCGCGGCCGGGTCGGCCGGGGCAGTGCCGCCAGCCATTGCGTGCTGCTTTATCACCCGCCGCTGTCACAGATCGGTCGCCAGCGCTTGGGCATCATGCGCGAAACCAACGACGGTTTCGTGATCGCCGAAAAAGACCTCGAACTGCGCGGCCCAGGCGAAATGCTCGGCACGCGCCAGACCGGTCTGCTTCAATTCAAGGTGGCCGACCTGATGCGCGACGCCGACCTGCTCCCGGCGGTTCGCGACGCCGCCCAGGCGCTGCTGGAGCGCTGGCCCGACCATGTGAGCCCGCTGCTGGATCGCTGGCTGCGCCATGGGCAGCAATACGGCCAAGTGTGA	MTELSKVPVTALKGVGEAMAEKLAKVGLETLQDVLFHLPLRYQDRTRVVPIGHLRPGQDAVVEGTVSGADVVMGRRRSLVVRLQDGTGGLSLRFYHFSNAQKEGLKRGTRVRCYGEARPGASGLEIYHPEYRAITGDEPPPVAETLTPVYPLTEGLTQQRLRQLCQQTLTMLGPTSLPDWLPKELARDYQLAPLADAIRYLHHPPADADVEELALGHHWAQHRLAFEELLTHQLSQQRLRESLRSLRAPAMPKATKLPARYLANLGFTPTGAQQRVGNEIAYDLSQPEPMLRLIQGDVGAGKTVVAALAALQALEAGYQVALMAPTEILAEQHFITFQRWLEPLGIEVAWLAGKLKGKNRAAALAQIAEGAPMVVGTHALFQDEVQFKNLALVIIDEQHRFGVQQRLALRQKGVGGRMCPHQLIMTATPIPRTLAMSAYADLDTSILDELPPGRTPVNTVLVTDTRRVEVIERVRSACAEGRQAYWVCTLIEESEELTCQAAETTFEDLTAALGELKVGLIHGRMKPAEKAAVMAEFKAGVLQLLVATTVIEVGVDVPNASLMIIENPERLGLAQLHQLRGRVGRGSAASHCVLLYHPPLSQIGRQRLGIMRETNDGFVIAEKDLELRGPGEMLGTRQTGLLQFKVADLMRDADLLPAVRDAAQALLERWPDHVSPLLDRWLRHGQQYGQV				NA	NA	NA	NA	NA
D1-36_05034	1398			hypothetical protein	ATGACCGAAGCTGCCCTCGTCCCCGTAACCCCGCACGCTCCGTCTGTTATTCGGCAATTGCTCGAAAAACTGGGCATCGCCTTCGACGAAATCATCGAGCGACCGGGCCTGAATCCTGCTCGCAAAGTGCAAGCCGTGCTGCTGCACGATGCCGTCGGCGCGCTCATGGTCCTGTTTCCACAAAATCAGTTGCTGGACCTCAACCGTCTGGCCGAACTCACTGGCCGCAAACTCACGGCGGTGCCGACCGAGCGCCTGGAGCGCATGCTGGGCAAGCACAGCCTAAGCCTGCTGCCGGGCCTACCCGCGCTGACCAGCTCGCCATGCCTGTACGAAGAAGGCTTGCTGCGCGAGCCCAAGCTGCTGATCAACTCAGGCGAGCCGGGGCTGCTGCTGGAAGTCACCAGCGAAGCCTTCAAGACCATGCTCACCAAGGCCAGCGCCGCGACGTTTGGCGAACCCTTGGGCAATATCTCCCCGAACCTGGACCGCCCGGATGACGACCGCAAGGAAATCACCCAAGCCGTTCAGGCATTCACCGCCCGGCGTATCCAGCAACGGCTGGAAGAGACCATCGAGATCCCGCCGCTGGCCGAAACCGCGCAAAAAATCATCAAGCTGCGGGTCGACCCTGACGCCACCATCGACGACATCACCGGCGTGGTCGAAACCGACCCCGCACTGGCCGCCCAAGTGGTGAGCTGGGCCGCATCGCCGTATTACGCATCGCCGGGCAAGATCCGCTCGGTGGAAGACGCCATCGTCCGGGTGCTGGGCTTCGACCTGGTGATCAACCTGGCGCTGGGCCTGGCCCTGGGCAAGACCCTGAGCCTGCCCAAGGACCACCCGCAACACACCACGCCGTACTGGCAGCAATCGATCTACACCGCCGCCGTCATCGAAGGCCTGACCCGCGCCATGCCCCGCGCCCAGCGCCCGGAGGGCGGCCTGACCTACCTGTCGGGCTTGCTGCACAATTTTGGCTACCTGCTGCTGGCCCACGTCTTCCCGCCGCATTTCTCCTTGATCTGCCGGCACCTGGAAGTCAACCCGCACCTGTGCCACAGCTATGTGGAGCAACACCTGCTGGGCATCAGCCGCGAGCAGATCGGCGCCTGGCTGATGCGCTACTGGGACATGCCCGACGAACTGGCCACCGCCCTGCGCTTCCAGCACGACCCCCACTACGACGGCGAATACGCCGCCTACCCGAACCTGGTGTGCCTGGCCGTACGCCTGCTGCGCTCACGCAGCATCGGCTCCGGACCGGATGAGGACATCCCCGATGCCCTGCTCGAACGCGTTGGGCTGACTCGGGAAAAGGCCAATGATGTGGTGAGCAAGGTGCTTGAAGCCGAGGTGCTACTGCGGGAATTGGCTTCGCAGTTCAGCCATTAA	MTEAALVPVTPHAPSVIRQLLEKLGIAFDEIIERPGLNPARKVQAVLLHDAVGALMVLFPQNQLLDLNRLAELTGRKLTAVPTERLERMLGKHSLSLLPGLPALTSSPCLYEEGLLREPKLLINSGEPGLLLEVTSEAFKTMLTKASAATFGEPLGNISPNLDRPDDDRKEITQAVQAFTARRIQQRLEETIEIPPLAETAQKIIKLRVDPDATIDDITGVVETDPALAAQVVSWAASPYYASPGKIRSVEDAIVRVLGFDLVINLALGLALGKTLSLPKDHPQHTTPYWQQSIYTAAVIEGLTRAMPRAQRPEGGLTYLSGLLHNFGYLLLAHVFPPHFSLICRHLEVNPHLCHSYVEQHLLGISREQIGAWLMRYWDMPDELATALRFQHDPHYDGEYAAYPNLVCLAVRLLRSRSIGSGPDEDIPDALLERVGLTREKANDVVSKVLEAEVLLRELASQFSH				NA	NA	NA	NA	NA
D1-36_05035	381			hypothetical protein	ATGAAATTTCGTTTCTTGCTGTGGATGCTGGGGTGGTTGATGGGCAAGGCCAGCCGCACCAATCCGGCTTTCCAGCAGCAGCTGGGCGACAAGGAGCTGGTGTTTCAACTGCAAACCCTGGACGGCAAGGTCGCTCGGTATTTCACCGTGAAGAACCAGCGCATCACCAGCCAGTCGGGTGTTTATCCAACGCCGGCCTTCGCCATCGCGTTCAAGGATGCAGGCTATGGCTTCGCCACGATGCAGGCGAAGAACAAGCAACTGGCGTTCATGACCGGGATCCAGGACAAGTCGATCCAGATCAAGGGTAATCCGGCGCTGGTGATCTGGTTTCAGGGGTTGATGAAGTATTTGAAGCCGAGGAAGGCCAAGAAGGTCTAG	MKFRFLLWMLGWLMGKASRTNPAFQQQLGDKELVFQLQTLDGKVARYFTVKNQRITSQSGVYPTPAFAIAFKDAGYGFATMQAKNKQLAFMTGIQDKSIQIKGNPALVIWFQGLMKYLKPRKAKKV				NA	NA	NA	NA	NA
D1-36_05037	942			hypothetical protein	ATGCTTTTCTCCCGTAAACCTTTTGCTTCGGTTTCCAAGCGTCATTTGCTGATGGTTGCTGTGGGCTTCAGCACCGTACTGACTGGCTGCGCTTCGTCGCCGACGTCCAAGGTCGCCTCGAGCACCAAGGTCGAGTACTACCCCAACTGCTACGAGCCGGTGCAGCACCTGCGCTCCACCGAAGGGAACATGACCAAGTCGGTCGTCACCGGCGCAGCCGTCGGTGCCGTCGGTGGTGCGCTGCTGGGCGCCTTGACCGCCGACAAGGAAGACCGTGGCCGTAACGCCGCCATCGGTGCCGCGGGCGGCGCCTTGGCCGGTGGCGCTACCGGTTACTACACCGAGCGCCAGAAGCAGATCGCCGATGACAACATGCGCATCGCCTCCTACGCCGCCGACGTCAGCAAGAGCGCTTCGGACATCGACCGCAGCACCGCCTACGCCAAGGCGTCGCAACAGTGCTACCAGAACGCGTTCAGCAAACTGGTCGCCGACCGCAAGGCCAAGACCGTCAACGACACCGAAGGCCGCAAGCGCCTGGCAGAAATCGTTGCCGGCCTGAAAGAATCCAATGACCTGATCGTCGCGGTGAACGGCAAGGCTTCCGAAGACCTGAACAACTACACCCAGGCCTACGAGAAGGACCTGCAGCAAGTGGGTGTGCAGCGTACTGACGTGGTGACCGTGGCCACTGCCGACACCACGCAGGTTGTGGCGGCGCAGACCAGCACCAAGACCAAGAAGAAAGTGACGCCGGCGAAGAAGAAAGAACTGCCAGCCGTGCCGAAAGAAGCGGTCGCTACCGAGAAGACCCTGCAGACCGCCAAGGCCAAGCAGGATGAAAGCAAACAGGTTGCCAGCGCGGGTACTACGCAGGTGAACAGCATGTGCAAAAACCCGGACCTGGGCGATTGGGCACCGGTGCCTTGCCCGAATGTTTGA	MLFSRKPFASVSKRHLLMVAVGFSTVLTGCASSPTSKVASSTKVEYYPNCYEPVQHLRSTEGNMTKSVVTGAAVGAVGGALLGALTADKEDRGRNAAIGAAGGALAGGATGYYTERQKQIADDNMRIASYAADVSKSASDIDRSTAYAKASQQCYQNAFSKLVADRKAKTVNDTEGRKRLAEIVAGLKESNDLIVAVNGKASEDLNNYTQAYEKDLQQVGVQRTDVVTVATADTTQVVAAQTSTKTKKKVTPAKKKELPAVPKEAVATEKTLQTAKAKQDESKQVASAGTTQVNSMCKNPDLGDWAPVPCPNV				NA	NA	NA	NA	NA
D1-36_05038	1728			hypothetical protein	ATGTATAAGTTATTGGGCGCCGCCGTGGCGCTGAGCCTGGCCGGTCTGGTCTGTGCCGATGAAGGCACGGACAAGCTGGACAACCCCAAGCCGTTGCCCGACGACGTCAGCCTGCCGCTGCCGTGTGAAGGGCAAATGGTGTTTCGCTACGTCTACATTCTTGCCCAAGGGACCCTGGACGACCGCGAGATCAGCCTCGGCTACCCGTTCAGCGAAGGCGAGGCCGGCTACCAGCAGTCGTTCATTTCCGGCTACCGGCGTGACTTCATCAATGGCCAGTTCACCCTCAAGGATTTGCCCAAGGATTGGAACAAGACCATCACGCCGTTGATGCCCAAGACCGACGCCAAGACGCCGCTCAAGCCGATGCTGTACTTCATCGGCAAATACGAAGTCACCGCTCGCCAGTACGCTCAGGTCATGGCCCAGGCGCAATCCCTGGCCAGCGGCGAGCCGGCGCCGGCCTGCGAAGCCTTGCAAGCCGAGTTGCCCCAGGGTATGGCCGGGCGCTTGCCGAAGGTGAAACTGTCGAAATTCGAGGCCGAGCGCTTTGCGGCGGTGTACAGCGCCTGGCTGATGAAATACCACAAGGACCTGCTGCCAGTGAGCGGTCGCGGCGCATCCGCCGAAGACGGCGGCCTGGGCTTCGTGCGCCTGCCCACCGAAGTGGAGTGGGAGTTCGCCGCCCGAGGTGGGCAAGCTGTGAGCCGTCAGGACCTGGAAGGGCGCTTGTTCCCCCGGCGCCTTGAAGGCAGTGAAAGCGACGGGCCGCTGGCCGATTGGGCAGTGTTCAACCAAGTCGCCGGCGGCACGGGCCAAGCGGCGCGTTTGATGCCCATCGGCACCAAGTTGCCGAACCCCATCGGCCTGTTCGACGTGGTGGGCAACGCCGCCGAAATGGTCCAGGAATCATTCCAGCTGGTGCACGCCGGTCGCCGTCAGGGCGCCTATGGCGGCTTCGTGGTCAAGGGCGGCAACTACCTGGAAGGCGAGGGCACGTTGTTCACCGGCATGCGCCGCGAGTACCCGTTGTTCGCCGCGGACGGCACCGAGCAAAACAACGAAACCACCGGTTTCCGTGTGGCTGTCGGCGCGTTGTCGGCGCCGCGTTCGCGCTACAAGGAACTGTTCGCCCAGTGGCAGAAAGAGGGCCGGCTCGCGTCCCTGACCGACGCCATCGACGACGCCGAAGACCCGACCAAGCGTCTGGACAGCATCATCGCCGCCAGCGTCGACCCGCGCCTTCAAGCGGAGTTGGGCCTGGTCAACGAAGAGCTCAAGCGCAACGTCTCGCTCATCGCCCAACAGCGCGAGGAAGCGGCGGGCAACCTGATCCAGTCTTCGGCCCTGGTGGCCGAGACCATCAACAACTACAACATTCGCCTGACCAACCTGCAGAACAGTCGGCAGGCGGCCCTGGATGCCAAGGACGACGCCAGCGCCACGCTGTTTGCCACGGCCATTGAAAATGGTCGCAGTGCGCTGGACGGCGCGGTGGCGATCTACATCGACAACCTGGCGACCGGCACGCGCTACACCGATGCCGTGATCCAGGCGCAATTGCAGCGCATCAAGGAAGAGCTTGAGCGCAAACCGGTACTGGGCAAGAGCCTGGTGGCGCGTGCAACGTTATTCGTTCGCCATGTCGGGGATTATCGTCAGCAGAAACGAGCCGACCCGGCGGCGATATTGAAGCAATTGCTCGCATCGAGCGCTCAGCGGTCTTGA	MYKLLGAAVALSLAGLVCADEGTDKLDNPKPLPDDVSLPLPCEGQMVFRYVYILAQGTLDDREISLGYPFSEGEAGYQQSFISGYRRDFINGQFTLKDLPKDWNKTITPLMPKTDAKTPLKPMLYFIGKYEVTARQYAQVMAQAQSLASGEPAPACEALQAELPQGMAGRLPKVKLSKFEAERFAAVYSAWLMKYHKDLLPVSGRGASAEDGGLGFVRLPTEVEWEFAARGGQAVSRQDLEGRLFPRRLEGSESDGPLADWAVFNQVAGGTGQAARLMPIGTKLPNPIGLFDVVGNAAEMVQESFQLVHAGRRQGAYGGFVVKGGNYLEGEGTLFTGMRREYPLFAADGTEQNNETTGFRVAVGALSAPRSRYKELFAQWQKEGRLASLTDAIDDAEDPTKRLDSIIAASVDPRLQAELGLVNEELKRNVSLIAQQREEAAGNLIQSSALVAETINNYNIRLTNLQNSRQAALDAKDDASATLFATAIENGRSALDGAVAIYIDNLATGTRYTDAVIQAQLQRIKEELERKPVLGKSLVARATLFVRHVGDYRQQKRADPAAILKQLLASSAQRS				NA	NA	NA	NA	NA
D1-36_05039	1197			hypothetical protein	ATGCGCGGCGCGCTGGTGGCTTCCCTGGCCTGGCAGGATTACCGCAACGACGCTTGGCTGTCGGCGTGTTCGGTGCTGGCGTTGGTGGCCGTGGTGGCGCCGTTGCTGGTGCTGTTTGGCCTGAAGTTCGGCCTGGTCAGCAGCCTGACCGAGCGTCTGGAACGTGACCCGGCTACCCGGGAAATCATCCCGTTGGGCGGTGGCCGTTTCAGTGCCGCCTTCGTCGAGCAATTGGGACAGCGCAGCGACGTCGCCTTCGCCTTGCCGCGCACCCGACAGATCGCGGCCACGGCGGATCTGAGCAGCGAGGCTGCCGCCGTCACGGTCGAGATGATTCCCACGGCCGCTGGCGACCCTTTGTTCGATCGCCTGCCGGTGCCGCAGGGCTTGGATCAAGTGGTGCTCAGCCAGACCGCCGCCGAGAAACTCGGCGCCAAGGCTGGTGATTGGTTGCAGGCCGGTTTCGGCCGGCAAGTGGCCGGTCGCAGCGAGGCGCAGCGCGCTCGCGTGCAGGTGATGCATGTGCTGCCACTGGAAGCCTTCGCCCGGGACGGCCTGTTTGCCCCGCTGGCGTTGCTGGAGGCCGCCGAGGATTACCGCGACGGCCGTGCCGTGCCCGCGTTCGGCTGGCCGGGCGATGCAGTGGGCGAGGTTGGGCAGCGGGTCTATCCGGCGTTCCGCCTGTACGCGCGCAACCTTGGTGATGTCGAGCCGCTGCGCCAGTACTTCGCCAGGCAGAACCTGTTGGTGTCGACCCAGGCCCAGACCATCGCACAGGTGCAATCGTTGAGCCGCAACCTGTCGATCGTGTTCTGGATCATCGCCGGGTTGGCGTTGGCCGGCGCGTTCGCAGCGATTTTTGCCGGGGCCCTGGCAGCGGTGGAGCGCAAGCGTCGGGAGCTGTCGGTGCTGCGCCTGCTGGGCGTGTCCACGGCGGCGCTGTTGTTGTTCGTGGTGTTGCAGGCGCTCTACAGCGCCACGTTTGCGGCCCTGCTGAGCGCCGGGCTGTATGGCCTGGCGCAGTCGGGCCTCAATTATTTATTTGCGCAGATGCCCGGCGAGTACGCCAGCCATCTGCTGGTGCGTCATTACACCTTGGCCCTGGTGGCCGTGCTCGGCATCAGCGCCGTCGCGGCGGCGTGTGGCGGCTGGCGGGTGGCGCGCATCCAGGCATGTGAAGGAATTCGCGATGTATAA	MRGALVASLAWQDYRNDAWLSACSVLALVAVVAPLLVLFGLKFGLVSSLTERLERDPATREIIPLGGGRFSAAFVEQLGQRSDVAFALPRTRQIAATADLSSEAAAVTVEMIPTAAGDPLFDRLPVPQGLDQVVLSQTAAEKLGAKAGDWLQAGFGRQVAGRSEAQRARVQVMHVLPLEAFARDGLFAPLALLEAAEDYRDGRAVPAFGWPGDAVGEVGQRVYPAFRLYARNLGDVEPLRQYFARQNLLVSTQAQTIAQVQSLSRNLSIVFWIIAGLALAGAFAAIFAGALAAVERKRRELSVLRLLGVSTAALLLFVVLQALYSATFAALLSAGLYGLAQSGLNYLFAQMPGEYASHLLVRHYTLALVAVLGISAVAAACGGWRVARIQACEGIRDV	PGPT0013350_18897	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004	NA	NA
D1-36_05040	717	btuD_10		Vitamin B12 import ATP-binding protein BtuD	ATGCTGAACCTGAGCGCAGTGCACAAGAGCCGGGGCGCCGGTGGCCAACGCTACAGCCTGGTGATTCCACGGCTGCAACTGCGCGCCGGTGAACAGCTGGCGGTGGTCGGTCCCAGCGGCTGCGGCAAGAGCACCTTGCTGGACTTGCTGGCGCTGGTGCTGGCGCCGGATCAGGCGGGGCAGTTCGACTTCACGCCGGCCAACGCGCCGCTGGACATCGCCAAACTGTGGCGCACGTCGCAACAAGGCACCTTGGCTGAGTTGCGCGGCCGCCACCTGGGCTATGTTCTGCAAACCGGTGGCCTGCTGGGCTTCCTGGACGTACGCGGCAACATCGCGTTGTCGCGCAAACTGCTGGGCTTGAAGGATGACGGCAGCGTGAAGCGCCTGGCCGGACAATTGGACATTGCCGATCAACTGGACAAGAAACCCGCGGATCTTTCCGTCGGCCAGCGCCAGCGGGTCAGTTGCGCCCGCGCCTTGGCCCATGGCCCGCGCCTGCTGCTGGCCGACGAACCGACCGCCGCCCTCGACCCGCTGAACGCCGAGCGCGTCATGCAGTTGTTGGTCACCCAGGCCCGCGAGCAGGGTGTCTGCTGTGTGGTCGCCACCCATGACGAGGCGCTGGCCCGCGCCAGCGGCTTGCAAGTGCTGCGCATCAGTTGCCGCCGCGATGCCGACGGCGGCGTCACCGCTACGCTCGGGGAGGCCTGCTGA	MLNLSAVHKSRGAGGQRYSLVIPRLQLRAGEQLAVVGPSGCGKSTLLDLLALVLAPDQAGQFDFTPANAPLDIAKLWRTSQQGTLAELRGRHLGYVLQTGGLLGFLDVRGNIALSRKLLGLKDDGSVKRLAGQLDIADQLDKKPADLSVGQRQRVSCARALAHGPRLLLADEPTAALDPLNAERVMQLLVTQAREQGVCCVVATHDEALARASGLQVLRISCRRDADGGVTATLGEAC	PGPT0013345_7063	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	OXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003	NA	NA
D1-36_05041	3063	pknD_3		Serine/threonine-protein kinase PknD	ATGAGCTTGACCCTTAACCTTGTCATCCCCGGTTACGACATCGACGGCGAGATCGGCGAAGGCGCGATGGCCAGCGTGTACCTGGCGACCCAGCGTTCGCTGGAGCGCAAGGTGGCATTGAAAGTCATGGCGGCAGCCCTGGCCGCTGACCCGACGTTTTGCGAGCGTTTCCTGCGCGAAGGCAAGACCCTGGCGCGCTTGTCCCACCCGCACACGGTCACCATCCATGACATCGGCAACGTCGGTGAGCTGTATTACATGGCGATGGAATACCTGCCCAACGGCACGCTCAAGGAACGCATCGCCGCGGGCCTGACGCCGGAGCAGGGCCTGACCTACATTCGCCAAATCGCCTCGGCCCTTGGGTATGCCCACGGCTTGGGGTTGGTCCACCGCGACGTGAAGCCGGCCAACATCCTCTTTCGCGCCGACGGCACGGCGGTGCTGTCGGACTTCGGCATCGCCAAATCCCTGGACGACCGCACCCAGTTCACCCAAGCCGGTTTCGCCGTTGGCACACCGAGCTACATGAGCCCGGAACAGGCCCGTGGGCAAGACATCGACGGTCGCGCCGACCTGTACGCCTTGGGCGTGGTGCTCTATGAAATCCTCGTCGGCAAGTTGCCGTACACCGGCAACGATGCACTGTCCACGGCCCTGGCGCACCTGACCGAGCCCTTGCCGGAACTGCCGGTGCACCATGGCCGTTACCAGGACGTGCTGCGCAAGTTGCTGGCGAAGGATCCGGCGGAGCGTTTCCCGGATGCGGCGGCGCTGCTGCGGGTGCTGGATAACTTGCCGGAGCAATCGTCGGAAGCGACGCTGATCCGGCCGTTGTCGTTTGAACTGCCGGTCGTGCCGCCTGCGGTGGATGACTTGGCGGGCTTGACGCCCATGTCCATCGACATTCCCAGCGGCCCGGCTTACTCGCCGCCACAACCCAAGCCTGTGCCACCGCCGCTCAAGCCAACAGCGCAATCCACGGTTTCGGAGCAACGCAAGGGTCCGGTGTTTGCCCTCGCGGCTGTTGCGGTGGCCGTGGCGTTGGCGCTGGGTGGCGCGGGTTATTGGTGGTTGTCTGGCAATGACGGCAAAGAGATGAAAACGCCGATTGCCAAGACGACCTCGGCCAAGCCCCCGGAAGTCACCCCGCCGAAAGCCCCTGACGTACCTGCGGTCAAGCCGCCCGTGGCGACCGATGCCGATGGCGGCCAGCGTCCGCTGCTGATGGCTGGCAAGAAAACCCTGTTCCAGCGCGTGCTCAGCAAACCGGGGGCCAAGTTGGCCGCCGAGCCTGGCGCTGCGCCGGGCAAGGCGTTGCCGGCGTTCTCCGTGCTGTACGTCTACCAGCGCAAGGACGTGGACGGCAGCGCCTGGGTGCGCGTCGGCGCCGCCACCGACGGGCGCAGCGACGGCTGGTTGCCCGCCGCTCAGGTCAGCGATTGGAAACAGAGCCTGGTGCTCAAGTTCACCGAGCGCTCCGGCCGTGCGCCGGTGATGTTCCTGCGTCAGCCCGGCGAAGTGGAGAAGCTACTGGCCAACCCGGCCGCCGCCAAAAACGCGTTGCTCAAAGCTCAGCAGAACCCCCAGGACGATCAGCAAGTGCTGGCTCTGGAGCCGGCCGCCAGCGCCGTGCCGCAGAATCAGTTCTATCTGCTGCCAATCTTCGATTCCCGCGAGAGCTTCGACGATAACGGACAGCCGGTGCAGTTGCTGAACGTGGCGTCCATCGACCCTGGCACCGCCCAAAAGGCTGCGACCAACACGCCGGTCACTGCCGCCAACGCCGACGCGTTCCGTACCGCCGTGGTGCTGGTGGTGGACACCACCGTGTCCATGCAGCCCTACATCGATCAGGTCCGTGACGTGGTGCATCAATTGCAGACTCGCATCGGCGAACGTGGCGAGCTTGATAGCGTCAGTTTCGGCATGGTGGGTTTTCGCAGCAGCATCAAGAAAACCCCAGGCCTGGAATACACCGCCAAGACCTTGATCACCCTGGAACAGGGCCGCGACCCGCAACGCTTCCTGGAGATGGCGCGGCAGGTCAAGGCATCTACCGTGTCGAGCCATTCGTTCAATGAAGATGCGTTTGCCGGTGTCATGGAGGCGGTGGAAGGGATGGACTGGTCCGGCTACGGCGGCCGGCTGATCCTGCTCGTCACCGACGCCGGTGCGCTGCGCAAGAACGACCCATTTGCCGCCACGCAAATGAACGAGGCCGAAGTGCGCCAGGCGGCGTTGGGCAAGCAAATCAAGATATACGCCCTGCACCTGCTCAGCGACGCCGGCAAGAAAACCCACGCCGGCGCACAGTCCCAGTACCGCACACTGACTGCCGACGCCAACCCGCAAATCGGTGACCTGTACATTGCGGTGCCGGGTGCCGACGTACGTAAGTTCGGCGAGCGGGTCGACGAAATCGGCTCGGTGTTCGCCGACCTCGTCCACCAGGTGCGCAGCAACAAGCCGCAAAGCGTGCCGCTGCTCAGCGCCGCGCCGAGCCTGGCCGACAAATCGGCAGCGGTCGGCTACGCGATGCACATGGACTTCCTGGGGCGCAAAGCCGCCAGCCAGGCGCCGCAATTGGTCAGCGCCTGGACCGCCGACCGCGACCTGACCAACCCGGCGCTGCCGGCATTCCAGGTCTGCGTAATGCTGACCAAGCTGCAACTCAACGACCTGCAGCAATCGCTGAAACTCATCGTCGACGCGGCCCGCAAAACCCAGAGCTCGCCCAAGGATTTCTTCCAGGAAATCGCCAGCGCGAGCGCCTATATGAGCCGCGACCCATCGGCCCTGCGCAAAGGGGGCAACCTCGCCACGGGTGGGATTCTCGGCGAGTACCTGGAAGGGCTGCCGTACCGCAGCAAATCGCTGAACATGACCCAGGATTTGTGGCTGTCGTTGAGCGTGGCCGAGCAGGAGGATTTCATCGACGAGCTGGAATCGAAGATCCGCCTCTACGAAACCTTCCACAACGACCTCGCCAATTGGGTGCGCTTCGGCGATGCCGAGCCGGGCGACGCCTTGTACCGCGTTCCGTTGTCGACGCTGCCGTGA	MSLTLNLVIPGYDIDGEIGEGAMASVYLATQRSLERKVALKVMAAALAADPTFCERFLREGKTLARLSHPHTVTIHDIGNVGELYYMAMEYLPNGTLKERIAAGLTPEQGLTYIRQIASALGYAHGLGLVHRDVKPANILFRADGTAVLSDFGIAKSLDDRTQFTQAGFAVGTPSYMSPEQARGQDIDGRADLYALGVVLYEILVGKLPYTGNDALSTALAHLTEPLPELPVHHGRYQDVLRKLLAKDPAERFPDAAALLRVLDNLPEQSSEATLIRPLSFELPVVPPAVDDLAGLTPMSIDIPSGPAYSPPQPKPVPPPLKPTAQSTVSEQRKGPVFALAAVAVAVALALGGAGYWWLSGNDGKEMKTPIAKTTSAKPPEVTPPKAPDVPAVKPPVATDADGGQRPLLMAGKKTLFQRVLSKPGAKLAAEPGAAPGKALPAFSVLYVYQRKDVDGSAWVRVGAATDGRSDGWLPAAQVSDWKQSLVLKFTERSGRAPVMFLRQPGEVEKLLANPAAAKNALLKAQQNPQDDQQVLALEPAASAVPQNQFYLLPIFDSRESFDDNGQPVQLLNVASIDPGTAQKAATNTPVTAANADAFRTAVVLVVDTTVSMQPYIDQVRDVVHQLQTRIGERGELDSVSFGMVGFRSSIKKTPGLEYTAKTLITLEQGRDPQRFLEMARQVKASTVSSHSFNEDAFAGVMEAVEGMDWSGYGGRLILLVTDAGALRKNDPFAATQMNEAEVRQAALGKQIKIYALHLLSDAGKKTHAGAQSQYRTLTADANPQIGDLYIAVPGADVRKFGERVDEIGSVFADLVHQVRSNKPQSVPLLSAAPSLADKSAAVGYAMHMDFLGRKAASQAPQLVSAWTADRDLTNPALPAFQVCVMLTKLQLNDLQQSLKLIVDAARKTQSSPKDFFQEIASASAYMSRDPSALRKGGNLATGGILGEYLEGLPYRSKSLNMTQDLWLSLSVAEQEDFIDELESKIRLYETFHNDLANWVRFGDAEPGDALYRVPLSTLP	PGPT0025905_14	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_REGULATION,PGPT0025905-ppkA-K11912	NA	NA
D1-36_05042	678	prpC_2	COG0631	Protein phosphatase PrpC	ATGGTCCGCCAGGTCAACGAAGATGCCTGCCTGGACATGCCTGAAAACGGCCTGTGGGTGGTCGCCGATGGCATGGGCGGGCACGCGGCGGGCGACTACGTCAGCAGCCTGATCATCGACAGCCTGCGCAGCATTGCCGTGGGCCGTTCCCTGGATGAATACATCGCGGCACTGCAAAGCGACCTGTTGCGGGTGAACGCCGCCGTGCGCGAAGAAACCGCCAACCGTGGCGTGACCATGATGGGCAGCACCGTGGTGGTACTGGCCGCCCGCGACCTGCGCGGCATGTGCCTGTGGGCCGGTGACAGCCGGTTGTATCGCCTGCGCGATGGCGTGCTCGAAAGCATTTCCCGGGACCACAGCTACGTCCAGGACTTGCAAGACAGCGGCCTGCTCAGCGAAGCCGAAGCCCGCGTGCATCCACGCGCCAACATCGTCACCCGCGCCATCGGCGTCGAGGCGCAACTGAACCTGGCGCTGGCCGAATTGCTGCTGGTGCCCGGCGACAGCTACCTACTGTGCAGCGACGGCCTGACCAAGACCGTCGAGGACGAGGAAATCCGTGAAGTATTGAGCCACGACGAGCCCGGCGAGATCGCCAGTAGCCTGGTGTCCCTGGGCCTGATGCGCGGCGCGCCGGACAACATCACCGTGGTCGTCGTGAAGGTGCCGTCATGA	MVRQVNEDACLDMPENGLWVVADGMGGHAAGDYVSSLIIDSLRSIAVGRSLDEYIAALQSDLLRVNAAVREETANRGVTMMGSTVVVLAARDLRGMCLWAGDSRLYRLRDGVLESISRDHSYVQDLQDSGLLSEAEARVHPRANIVTRAIGVEAQLNLALAELLLVPGDSYLLCSDGLTKTVEDEEIREVLSHDEPGEIASSLVSLGLMRGAPDNITVVVVKVPS	PGPT0002605_43	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_REGULATION,PGPT0002605-stp1|pppA-K11915	NA	NA
D1-36_05043	654			hypothetical protein	ATGAGTACGCCGGGCTTCTATGGAAAGTTGGCCAGCCGCGGGGATTTCGTCAGCCGAGGCTTGCCCCAGAGTTTTATCAAACCGTGGGACTCCTGGCTGGCGGCGGGTTTGCTCGCCAGCCAGAGCAGCCTCGGCGAGCGTTGGTTGGACGCCTATCTGGTCAGCCCGCTATGGCGCTTCATGGTCGCGCCCGGCGTGTGCGGCCCGGACGCTGCCGTCGGGGTGGTGATGCCCAGCATCGACCGGGTCGGGCGCTATTTCCCGCTGACCGTCGCGGTATTGATGGACGCGGAGGCGGACCCAGCCTCGGTGGTCGGTGGCGCGGACGACTGGTTCGGGCGAGTGGAGAACCTGTTGCTGAGCACATTGAGCGTGGAAGCCAGTTTCGAAGCGTTCAGCGAAGAGCTTGAAACCCTTGGCAGCCCAATGTGCCTGCCGCGCACCTTGAGCAGTCGCTTCGCCAGCCTGCATCGTTTCGATGCCACCGATCCGCAGCGAAGGATGAGCGCCCTGGCCGAGTCGGCCTGTGAAGGCGCAAGCCTGTGGTGGGGCCTGGGTTCGGAGCGCATCGCGCCCGGTTTGATGCGCTGCCAGGGATTACCGGCGGCGGCTGATTTTGCGCAATTTTTGCTCGGCCAAGAAGGTGTTGTGTAG	MSTPGFYGKLASRGDFVSRGLPQSFIKPWDSWLAAGLLASQSSLGERWLDAYLVSPLWRFMVAPGVCGPDAAVGVVMPSIDRVGRYFPLTVAVLMDAEADPASVVGGADDWFGRVENLLLSTLSVEASFEAFSEELETLGSPMCLPRTLSSRFASLHRFDATDPQRRMSALAESACEGASLWWGLGSERIAPGLMRCQGLPAAADFAQFLLGQEGVV	PGPT0025965_585	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025965-impM-K11890	NA	NA
D1-36_05044	3501			hypothetical protein	GTGAAGGCGTTTTTCAGTTTCATGATCCGCTGGGTCATTCCATTGCTGGGCCTGATCGCCCTCAGCCTGATCATCTGGTTCGTTGGCCCGCTGCTCGATTGGCTGGTGCCTGAAGGCCGCCGCTGGGCGTTGATCATTCTGGTGTTCGCAGTGTGGATCGCCTACCGGGTGTTGCGCATTATCCAGGCTCGGCGCCAAGCCGCCGAAGTGATGCGCAGCCTGGCCGCGCAGACGCCGCCGGACCCCACCAGCATCGCCACCGCCGAGGAACTCGAAACCCTGCGCCAGCGCATGGACGAAGCCTTGGCGTTGCTCAAGAAAGCCAAGCTCGGCGGTGACGAGCGGCGCAACCTCTACGAGCTGCCGTGGTACGTGATCATCGGCCCGCCCGGTTCCGGCAAGACCACCGCGCTGGTCAACTCCGGCCTGCATTTCCCGTTGGCCGCGCAGCTCGGCGCCGGTGCGGTGCGCGGCGTCGGCGGTACGCGCAATTGCGACTGGTGGTTCACCGACCAGGCCGTGCTGCTCGACACCGCTGGCCGCTACACCACCCAGGACAGTGACGCGGCCGTCGACAAGGCAGCATGGCTGGGCTTCCTCGGCCTGCTGAAAAAACAACGGGCACGTCGCCCCATCGACGGCGCGTTCATCGCCATCAGCCTCTCGGACCTGCTGCTGGGCAGCGACGCCGAACGCGCGGCCCACGCCGCGGCGATTCGCTTGCGCATCCAGGAGTTGTACACCCAACTGGGCGTGCGTTTCCCGGTCTACCTCATGCTCACCAAGCTCGACCTGGTGCCAGGCTTCATGGAGTACTTCGATAGCCTCAGCAAGGAAGAACGCGCCCAGGTCTGGGGCATGACCTTCGCCCTGGACGATGGCAAGAGCAACGACAGTCCGTTGGCGCACCTGCAAAGCGAATTCGCCCTGTTGGAACAGCGCCTGAACGACCGCTTGGTCGAGCGCTTGCAACAAGAGCGCGACCCGGCGCGGCGCGACCTGATCTACGGCTTCGCGCAGCAGTTCGGTGCGTTGAAGGATTGCCTGCAAAGCTTCCTCGACGGCGTGTTCAAACCCAACGCCTTTGAAGAGCGGGTATTGCTGCGCGGTGTGTACTTCACCAGCGGCACCCAGGAAGGCAGCCCGATCGATCGTCTGATCGGCTCCATGGCCCAGAGCATGAACCTGGACCGCCAGCACCTGGCGCGCCAGACCGGCACCGGACGCAGCTACTTCATCGAAAAACTGTTCAGCGCCGTGGCGTTTGCCGAGCGCGGGCTGGTGGGGGTGGACCCGAAAGTCGAGCGCCGGCGCAAGTGGATCGCTCGTGGCGTGCTCGCGTCAACCGTCGTGCTGGTGTTGGTGGTCAGTACGTTGTGGTGGGTCAGCTATCGCGCCAACCAGGCCTACATCGCCCAGGTCGACCAGAAGGTCGCGCCGCTGGGCCAGACCGTGCAGAACCTCAGCCCGGCCCAGCGCGACGTGCTTGCGGTGTTGCCGCTGCTCAACGCCGTGAAACACCTGGCCGACGACGCCCCCGATTGGGCTGAAGGTTTGGGCCTCTATCAGGGCGACATGCTGGAAGCCGAGTCCGGTAGCGTCTACCGCAAGCTGTTGATCGCGGTGTTCGCGCCACGCCTGCTGACGCGCATCGAAGAGCAACTGCACAGCGGCGGCAATTCGGACTTCCTCTACGAAGGCTTGAAGGCCTATCTGATGCTCGCCGATAACGAGCATTACGACGCCGACTTCATCAAGGCCTGGATCGCTTTGGATTGGGATCGCAGCTTGCCACGGGACTTGCCAGCCGAGCAGCGCCAAGCCCTGACCGGACATTTGCAGGCACTGTTCGAACGGCGTCCGCCGACCGCGCGCCTGGACCCACGGCTGATCGAAGACCTGCGCCGCCAGTTGCAACAGTTGCCGGTGGCCCAGCGCGTCTACGACCGCATCAAGCGCCAGAAGCTGCCAGAAGGCATTCCGGACTTCCGCATCAACGAAGCCGCCGGGCGTGACGCTGCGCTGGTGTTCAGCCGCAAGAGCGGCAAGCCGTTGGGCGAACCGTTGAGTGGGTTCTTCACGGTCAAAGGGTATCGCCAGGGCTTTTTGCTCAGCAGCCTGAGCCAGACTGGCACCTTGGCTGAAGAGCAATGGGTGCTGGGCCATGAAGAGGCCGACCAACAGAACGTCGCCAGCCTGGCCGCCGATGTGCGTCGCCTGTATTTCCAGGACTACATGCGCCAATGGGACGCCTTGCTGGCCGACATCGACTTCGTGCCGATCACCAGCGTGGCCCAGGCCGCCGATGTGCTGCGGGTGATTTCCGGCCCGACCTCGCCGCTGAAAAAACTGCTGGTGGCAGTGGCGAAGGAAACCGACCTGCAACAGGATGAGCGCCTGCTGGCCGCCCAAGGTGCGCCGGTGGAGGGCAGCGTGGACAAGCTCAAGGAGCGCCTCGGCAGCCTGCTCGGCCAGGAACAGGCGACGTCGAACGCGCCGACGGCGAGCGATGATCCGATCACCGCGCATTTCGCCGAGCTCAACAGCATCGTCAACAAGAACGAAGGCGAACCGGCGGCCATCGACGGCCTGTTGTCCGACATGAACGCGCTGTACGTGCAAGTCAGCGCCATGGTCGGCGCCAGCGGCGATGCCTTGCTCGGCGAGGCCAAGAACCAGGCGTCGGCCGCCGCTACCCGGGTGAGCCTCAACGCCGAACGCCAGCCGCCACTTGTGCAGGGCTTGGTCAAGTCAGTGGTCAATTCCACCACCAACACCATGATGGGCGGGGTGCGCAATCAACTGAACGCGGCCTGGACCAGCGAAGTGGTGAACATCTACCGCCAGTCCCTGGCCGGGCGTTACCCGATGTCGCCAGGCAGTGCGCGGGACGCGACCCTGGATGACTTCGGCCAGTTCTTCGGCGTCGGCGGGGTGATGGACAACTACTTCCGCAAGTACCTGCAACCGTACGTGGATACCTCGGCGCAAACCTGGCGCTGGCAGCCGGGCGCGGCGCAGAAGCTCGGGATTTCTCCTGGCGTGTTGCAGACCTTCCAGCGCGCGGCGACCATCCGCGATGCGTTTTTCCGCTCCGGCGGCACCCAGCCGATGGTGCGCTTCGAGCTCAAGCCGGTGGCGATGGATTCGACCATCACCCAGTTCCTGCTCGACCTCGACGGTCAGCAGCTGAGCTACGACCACGGCCCGAGCCGCCCGACCGCGTTGCAGTGGCCGAACCCCGGCAGCATCGGCGTGGTGCGGATTTCGATCATGCCACCTTCCTCCAGCGGTCGTTCCGGTATCACCCTGGATGGGCCATGGGCCTGGTTCCGCCTGCTGGAACAATCGGACCTGACCGCCGGCAACTCGCCGGATCGCTTCAACCTGCGCCTGCGGGTCGATGGCGCAAGCGCCTCTTATGAGCTGCGGGCCAACAGTGCTTTCAACCCGTTCAAGAGCCGCGTGCTCAGCGGCTTCAGCCTGCCGGAGCGTCTATGA	MKAFFSFMIRWVIPLLGLIALSLIIWFVGPLLDWLVPEGRRWALIILVFAVWIAYRVLRIIQARRQAAEVMRSLAAQTPPDPTSIATAEELETLRQRMDEALALLKKAKLGGDERRNLYELPWYVIIGPPGSGKTTALVNSGLHFPLAAQLGAGAVRGVGGTRNCDWWFTDQAVLLDTAGRYTTQDSDAAVDKAAWLGFLGLLKKQRARRPIDGAFIAISLSDLLLGSDAERAAHAAAIRLRIQELYTQLGVRFPVYLMLTKLDLVPGFMEYFDSLSKEERAQVWGMTFALDDGKSNDSPLAHLQSEFALLEQRLNDRLVERLQQERDPARRDLIYGFAQQFGALKDCLQSFLDGVFKPNAFEERVLLRGVYFTSGTQEGSPIDRLIGSMAQSMNLDRQHLARQTGTGRSYFIEKLFSAVAFAERGLVGVDPKVERRRKWIARGVLASTVVLVLVVSTLWWVSYRANQAYIAQVDQKVAPLGQTVQNLSPAQRDVLAVLPLLNAVKHLADDAPDWAEGLGLYQGDMLEAESGSVYRKLLIAVFAPRLLTRIEEQLHSGGNSDFLYEGLKAYLMLADNEHYDADFIKAWIALDWDRSLPRDLPAEQRQALTGHLQALFERRPPTARLDPRLIEDLRRQLQQLPVAQRVYDRIKRQKLPEGIPDFRINEAAGRDAALVFSRKSGKPLGEPLSGFFTVKGYRQGFLLSSLSQTGTLAEEQWVLGHEEADQQNVASLAADVRRLYFQDYMRQWDALLADIDFVPITSVAQAADVLRVISGPTSPLKKLLVAVAKETDLQQDERLLAAQGAPVEGSVDKLKERLGSLLGQEQATSNAPTASDDPITAHFAELNSIVNKNEGEPAAIDGLLSDMNALYVQVSAMVGASGDALLGEAKNQASAAATRVSLNAERQPPLVQGLVKSVVNSTTNTMMGGVRNQLNAAWTSEVVNIYRQSLAGRYPMSPGSARDATLDDFGQFFGVGGVMDNYFRKYLQPYVDTSAQTWRWQPGAAQKLGISPGVLQTFQRAATIRDAFFRSGGTQPMVRFELKPVAMDSTITQFLLDLDGQQLSYDHGPSRPTALQWPNPGSIGVVRISIMPPSSSGRSGITLDGPWAWFRLLEQSDLTAGNSPDRFNLRLRVDGASASYELRANSAFNPFKSRVLSGFSLPERL	PGPT0025960_1205	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025960-impL|vasK|icmF-K11891	NA	NA
D1-36_05045	1305			hypothetical protein	ATGAGCAACGACGATCGTACCCAGTTCATGCCGACGCCCGGTGGCCGCGGCGCGGATCCGTTCCGTCCGGACCCGGCACGCCAACAGCCGACGCCCGCGCCGTTGTCGATGCCGGCCGCGCCGGTCCTGACCGGCAAGGCCCAGGGCCTCAACCCGTTGGAAGGCGCCGCCGGCCCGTTGCTGGCCCTGCTGACGCGCTTGCGCAACACCATCGCCCACCCGGCGCCGGCCAGCTTGCGCGCGCAACTGTTGGCCTACCTGCGCCAGTTCGAAGAGCGCGCCGAGGCCGCCGGCGTGGTGCGCAACGACGTGTTGCTGGCCCGCTACGCCTTGTGTACCGCCCTGGATGAAGCGGTGTTGAGCACCCCATGGGGTGGCACCAGCGATTGGGGCAAGCAAAGCCTTTTGATCACCGTGCATAACGAAGCCTGGGGCGGCGAGAAGGTGTTCCAGTTGCTGGAGCACTGCCTGCAAAGCCCGCGCGAGCGCTTGTATCTGCTGGAGCTTTTGTACCTGTGCATGTGCCTCGGGTTCGAAGGCCGTTATCGGGTAATGAACGACGGCCGCAGTCAATTGGAGGCGTTGCGCGAGCGTACCGCGGGCGTCATTCGCAGCGCTCGTGGCGACTACGAGCGCGAGCTGTCGCCGCACTGGCGCGGTGTCACCGTGGCCCGTGATCGCCTGGCGCAATTCATGCCGCCGTGGATCGCCGTGGCCATCGGCGCGGCGCTGCTGCTGGCGCTGCTGTTCGGCCTGCGCATGAAGCTGGCCTCCGACGCCGAGCCGGTGTTCAAGAACATCCACTTCCTCGGTGAAATCCCGGTGCAGACCATCGACCGTCCAGTGGTTCAGCCCAAATTGATCGAGCGCCCACGCCTGGCCGGTTTCCTCGCCGATGAAATCCGCTCCGGCAAGGTGGCCGTGGAAGACGCCGTCGACCGCTCGGTGGTGACCATCCGTGGCGATGAACTGTTCGCCTCCGGCAGCGCCAGCATCAAAGACGATTTCCAACCGCTGATGCTGCGCATCGCCGACGCGGTGCGCAAGGTCAAGGGCCAGGTGCTGGTGACTGGCCACAGCGACAATCGCCCGATCGCCACCCTGAGATTCCCGTCCAACTGGGCCTTGTCCGAGGCGCGGGCCCGGTCGGTGCTGGACATTCTTTCGGCCAAGACCGGCCAACCCGAGCGCTTCAGCGCCGAGGGCCGCAGCGACACCGAGCCGCTGGCGTCCAACGCCACGACCGAGGGGCGCGCGCGCAATCGACGGGTTGAAATCACAGTGTTGGCGGAGGGGGTCGAGTGA	MSNDDRTQFMPTPGGRGADPFRPDPARQQPTPAPLSMPAAPVLTGKAQGLNPLEGAAGPLLALLTRLRNTIAHPAPASLRAQLLAYLRQFEERAEAAGVVRNDVLLARYALCTALDEAVLSTPWGGTSDWGKQSLLITVHNEAWGGEKVFQLLEHCLQSPRERLYLLELLYLCMCLGFEGRYRVMNDGRSQLEALRERTAGVIRSARGDYERELSPHWRGVTVARDRLAQFMPPWIAVAIGAALLLALLFGLRMKLASDAEPVFKNIHFLGEIPVQTIDRPVVQPKLIERPRLAGFLADEIRSGKVAVEDAVDRSVVTIRGDELFASGSASIKDDFQPLMLRIADAVRKVKGQVLVTGHSDNRPIATLRFPSNWALSEARARSVLDILSAKTGQPERFSAEGRSDTEPLASNATTEGRARNRRVEITVLAEGVE	PGPT0025955_352	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025955-impK|ompA|vasF|dotU-K11892	NA	NA
D1-36_05046	1335			hypothetical protein	ATGTCCTGGAACAATCGCGTGGTCTGGTCGGAAGGCATGTTCATTGGAACGCAGCACTTCCAGCAGCATGACCGTTACCTGGAAAACCTCATCGACGCCCGCAGCCGCCCCTTGTCGGCCGGTGCCTGGGGTTTTTCCGAATTGCTGATCGACCAGGGCCTGCTGGCCCAGGGCAAGCTGGCCATCCTCTCGGCGCGGGGCCTGCTGCCGGACGGCACGCCGTTCAACATTCCCCAGGATGATTTGGCGCCGACCCCACTGAACATCGACGACAACCTGCGCGATGGCGTGGTGTACCTGGCGTTGCCGCTCAAGCGCGCCGGTGCCCGCGACACCGTGGACGAAGGTGAAGACCTCGGTGCTGCGCGTTATGTCAGCCAGGTGTGTGAAGTGCGCGACGACAACGCGCCGTTCGAAAACCGCGCGCCGGTGGCCGTGGGTTCCCGGGCGTTGCGCTTGTTGACCGAACAGGATGGCATCGGCGACTACGCCGCGATTGGCGTGGTGCGCATCAAGGAAAAACGCGCCGACCGGGCCCTGGTCCTCGACGACAGCTACATTCCACCGCTGCTGGATGTGGCGGCTTCCAAGCCACTGGCGGCGTTTCGCAGCGAACTGCTGGGCCTGCTGCATCAACGCGGTGAAGCCTTGGCCGGGCGGGTGGTGGCCTCGGGGGCCGGTGGCGCCTCGGAGATCGCTGATTTCATGCTGCTGCAACTGGTCAACCGCGCCCAGCCGCTGATCCAGCACCTGAGCCAGTTGACGCCGCTGCACCCCGAGCGCTTCTACAGCGAACTCGTCAGCCTGGCGGGAGAATTCTCGACCTTTACCGCGTCAGCACGGCGGCCGCAGCCCTATCCGCAGTACCAGCACGATGACCTGGCGCTCAGCTACGCGCCGGTGATGCAGGCCTTGCGTGAGGCCCTGTCGATGTTGATCGACAGCAAGGCCACGCCGATCCCGATTGTTGAAAAAGCCTACGGCATTCACGTGGCGATGCTGGCCGACAAAACCCTGCTCGACAGCGCCAGTTTCATCCTGGTGGTACGCGCCGACGTGCCCGCCGAAACCCTGCGCGGCCGGTTCGGCCAGCAGAGCAAGGTCGGCTCGGTGGAGCACATCCGCGACCTGGTCAACTTGCAATTGCCGGGCATCGGCCTGCTGCCGTTGCCGGTAGCGCCACGCCAACTGCCGTACCACGCCGGTTCCACCTATTACGAGCTCGACCGGGGCAGCGATCACTGGCAGCAGTTGAGCAACTCCGGCGGCTTTGCGTTCCACATCGCCGGCCAGTTCCCGGGGCTGAACCTGGCGTTCTGGGCGATCCGAGGATAA	MSWNNRVVWSEGMFIGTQHFQQHDRYLENLIDARSRPLSAGAWGFSELLIDQGLLAQGKLAILSARGLLPDGTPFNIPQDDLAPTPLNIDDNLRDGVVYLALPLKRAGARDTVDEGEDLGAARYVSQVCEVRDDNAPFENRAPVAVGSRALRLLTEQDGIGDYAAIGVVRIKEKRADRALVLDDSYIPPLLDVAASKPLAAFRSELLGLLHQRGEALAGRVVASGAGGASEIADFMLLQLVNRAQPLIQHLSQLTPLHPERFYSELVSLAGEFSTFTASARRPQPYPQYQHDDLALSYAPVMQALREALSMLIDSKATPIPIVEKAYGIHVAMLADKTLLDSASFILVVRADVPAETLRGRFGQQSKVGSVEHIRDLVNLQLPGIGLLPLPVAPRQLPYHAGSTYYELDRGSDHWQQLSNSGGFAFHIAGQFPGLNLAFWAIRG	PGPT0025950_1264	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025950-impJ|vasE-K11893	NA	NA
D1-36_05047	507			hypothetical protein	ATGATCCCCAGGTTTTTACTCGCAGTCGCCGTAGCGCTTCTGCTGACGGCGTGCGCCAAGGATGCGGCCCAACCCCAGCCCGAAGAAGCTGAGGCCGACACCGCCGCCGTCGAGCTGCACTTCCATTCCATCGCCGGGCTCAACCCCGGTGCCTCCGGCCAGCCAGCGCCGGTGCGGGTGCGTATTTTTGAACTGAAGAATGCGGCCACTTTTGGCCGCGCCGATTATTTCGCCTTGGCCGAGCGGGCCCAGGCGACGCTCGGTGCGGACCTGATCGACCAGGACGAAGTGCTGATCCAGCCGGACCAGCAATTGAGCCTGAAACGTGAGCTCGACCCGGCCACTCGGCACATCGGAATACTGGTGGGCTATCGCGAGTTGGACCAGTCGCTATGGCGCACGGTGATGAATGTACCGGCGCGCGAATACACCGAATACCAGATCAGCCTCGACGTGCGCGCCGTGCGCAGCGCCGTCGTCGTTCCCCCATCCAGCCCTGCCCAATAA	MIPRFLLAVAVALLLTACAKDAAQPQPEEAEADTAAVELHFHSIAGLNPGASGQPAPVRVRIFELKNAATFGRADYFALAERAQATLGADLIDQDEVLIQPDQQLSLKRELDPATRHIGILVGYRELDQSLWRTVMNVPAREYTEYQISLDVRAVRSAVVVPPSSPAQ	PGPT0030425_773	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0030425-vasD|lip-K11906	NA	NA
D1-36_05048	1428			hypothetical protein	ATGCCGCTGTGTTTGACTATCACTAGTTATCACAAGATTACCCCCGGACAATGTTCTGAAAAGACCTTGGGTCAGGGTGTGATGGCAATTGGCCGTAGTTCCGATAATGATTGGGTTCTGCCGGATCCGGAACGCCTGGTCTCGGGCAAGCATTGCGTTATCCAATACAAGGACGGGCGTTATTACTTGACCGATAACAGCACTAACGGTGTGGAGTTGGTCAAGGCCGGTATTCGCCTGCGCAAAGGCAATAGCGAGCCGTTGCAGGACGGCGAGATCATCCGCATTGGCGATTATGAGATCCAGGCGCGGGTCGACTTCGACCTGCCGATGACCGACAGCAATCCGTTCGCCGAAGCCCCCAGCAGTTTCGAAGCCTTGATGGGCCGTCAGAGCGCATCCGTGAATACGCCTTCGCCGATGCCCGTCGCCATGCCGGCCCACTTCCAGGGCGTATCGTCCATGGACACACTGCCGGACCTGTTCGACTTCCTCACCCCGCCCAGCGTCCCGCCGGCCACCCAGCCGGATCATGTGCCGGCCGAGCAGCACGATTTCCGTGCGCCTACGCCGATCCCCCGCCCGACCCCCCCGCAGGTGGCTGAGCCGGTGTTCGAGCCAGTGGCGGGAACGCCGGCCCCGGTCATTCCGGCAGACTGGGATCTGTTCAGCGACAAGCCAGCGCCCGTGGCGCCGATTCCCGTTGCGCCGCTGCCCGAGCCGGTTCCCGTACCGGCAATCCCTGTGGTTGAGGTCGTTGCGCCGATTGAACCCGCGCCGCGACCAGAAGCGCCCGTCAGCCGCGTCGAACCGACGACCTCCCCGGTGCAAACCTCTCAACCCGACCTGCTCCAGGCTTTCCTGCGCGGCGCCGGGCTGGATCAGTTGCGCCTGGACAAGGCCAACGCCGAGGCGCAGATGGAGAGCATCGGGCGCAGTTATCGCTTGATGGTCGAAGGGCTGATCGATGTACTGCGCGCCCGCAGCAGCCTCAAGGGTGAATTCCGCATCCAGCAGACGATGATCCAGCCGGTGGAAAACAACCCGCTGAAGTTCGCCCCCAATGTCGATGAAGCCCTGCTGTTGCTGTTGCGCCATGGCAACCAGGCATTCATGGCCCCGGACGTGGCGGTGCGTGACAGTTTCGATGATCTGCGCGCCCACCAGTTGGCGGTCATGGCCGGCGTGGAAGCGGCGATCAAGCATTTGCTGGCGCGCTTCGAGCCGGCGCAACTGGAAGAACGCATGGCCAAGCCTGGTGGACTTTCAGGCATTTTCAGCGGCTCGCGACAGGCCCAGTACTGGCAGCAATTCACCGAGCTCTACAGCAACATTTCCCGGGAAGCCCAAGAGGATTTCCAGGACCTGTTCGGTCGTGAGTTCAGCCGCGCTTACGAAGAGCACAGCACACGACAGCGACGCCGTTGA	MPLCLTITSYHKITPGQCSEKTLGQGVMAIGRSSDNDWVLPDPERLVSGKHCVIQYKDGRYYLTDNSTNGVELVKAGIRLRKGNSEPLQDGEIIRIGDYEIQARVDFDLPMTDSNPFAEAPSSFEALMGRQSASVNTPSPMPVAMPAHFQGVSSMDTLPDLFDFLTPPSVPPATQPDHVPAEQHDFRAPTPIPRPTPPQVAEPVFEPVAGTPAPVIPADWDLFSDKPAPVAPIPVAPLPEPVPVPAIPVVEVVAPIEPAPRPEAPVSRVEPTTSPVQTSQPDLLQAFLRGAGLDQLRLDKANAEAQMESIGRSYRLMVEGLIDVLRARSSLKGEFRIQQTMIQPVENNPLKFAPNVDEALLLLLRHGNQAFMAPDVAVRDSFDDLRAHQLAVMAGVEAAIKHLLARFEPAQLEERMAKPGGLSGIFSGSRQAQYWQQFTELYSNISREAQEDFQDLFGREFSRAYEEHSTRQRRR	PGPT0030440_73	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0030440-fha1-K11913	NA	NA
D1-36_05049	1026			hypothetical protein	GTGGATGTGCCTTTGTTGCTCGCCGCCGTTTCCGCGAATTCGCCTTGCGGTGAAGACCTGGAATATGACGCGGATTTCTTGCGCCTGGAGCGTGATTCCCGAGGCCAGCCCGAACGCAGCATGGGCGATTCGATCCTGCCCGCCGAACCCCCTGAATGGCGCAGCATCCAGCAGCAGAGCCTGGACCTGTTGCAGCGCAGCAAAGACCTGCGCATCACTCATTTCCTGTTGCAGAGCTCCCTGGCCCTGGAAGGTATTCCCGGCCTCGCCCGCGCATTGACGCTGATCAGCGAGTTGCTCAAGCAATACTGGGCCGACCTGCACCCGCGCCTGGACGCCGATGACGACAACGACCCCACCGTGCGCATCAATGCCCTCGCCGGCCTGACGTCGGACGTCACCATTCGCCTGTTGCGCGAGAGCATCCTGGCCCGCTCGCGAACGTTCGGCGCCGTCAGCCTGCGCGCCGCCGCCAATGCCAGCGGCTTGCAAAGTTTCCCCGATGAAAGTCTCGGCGCCGAACAGCTCGCCGGCGCCCTGCTCGACAGCGACCCCGAGCAGCTGGAAGTCATCCGTGCCGCCCTGCTGGAAGCCCGCAGCGCCGCCGAAGCCATCGAACAGCAGGTCAGCGACCAGGTCGGTTCCGCCCAAGGCGTGGACCTCGGCCCGTTGAAGCAGCCGCTGAAAATGGCGTTGCAGATACTCGGTCAGTTCGCCCCGCAGAGCGGCGACAGCGACCTTGCCGATCCTGTCGAAACCGACGACACCGCACCCGTCGAATACACCAGCTCACCAGGCGCGCCCCGCAGTACCGTCCCGGGGGAAATCAACAACCGTGACGACGTGCTGCGCAGCCTGGACCGGATCCTGGCGTACTACACCCGCCATGAGCCCTCCAGCCCGCTGCCGGTGCTGTTGAATCGGGCGAAGAATCTGGTGCACGCCGACTTCGCGGCGATCGTGCGCAATCTGATTCCCGACGGCATGAGTCAATTTGAAAACCTGCGCGGCCCGGAAAGCGAATAA	MDVPLLLAAVSANSPCGEDLEYDADFLRLERDSRGQPERSMGDSILPAEPPEWRSIQQQSLDLLQRSKDLRITHFLLQSSLALEGIPGLARALTLISELLKQYWADLHPRLDADDDNDPTVRINALAGLTSDVTIRLLRESILARSRTFGAVSLRAAANASGLQSFPDESLGAEQLAGALLDSDPEQLEVIRAALLEARSAAEAIEQQVSDQVGSAQGVDLGPLKQPLKMALQILGQFAPQSGDSDLADPVETDDTAPVEYTSSPGAPRSTVPGEINNRDDVLRSLDRILAYYTRHEPSSPLPVLLNRAKNLVHADFAAIVRNLIPDGMSQFENLRGPESE	PGPT0025910_734	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025910-impA-K11902	NA	NA
D1-36_05050	516			hypothetical protein	GTGGCGAAGCAAAGTTCTCAGAAATTCATCGCGCGCAACCGCGCGCCTCGAGTGCAGATCGAGTACGACGTCGAGCTCTACGGCGCCGAGAAAAAGGTCCAGTTGCCCTTCGTCATGGGGGTAATGGCCGACCTCGCCGGCAAGCCCGCCGAGCCTCTGGCACCGGTGGCCGATCGCAAGTTCCTCGAGATCGACGTCGACAATTTCGACTCGCGCCTCAAGGCCATGCAGCCGCGCGTGGCGTTCCATGTGCCTAACGAATTGACCGGCGAAGGCAACCTGAGCCTGGACCTGACCTTCGAAAGCATGGACGACTTCAGCCCGGCAGCCGTGGCGCGCAAGATCGACTCGCTGAACAAGCTGCTCGAAGCGCGTACCCAATTGGCCAACCTGCTGACCTACATGGACGGCAAGACCGGCGCCGAGGAAATCATCATGAAGGCGATCAAGGACCCAGCGCTGTTGCAGGCCCTGGCGAGCGCGCCGAAGCCCGCCGACGCAGAGCCCAAGGCTTAA	MAKQSSQKFIARNRAPRVQIEYDVELYGAEKKVQLPFVMGVMADLAGKPAEPLAPVADRKFLEIDVDNFDSRLKAMQPRVAFHVPNELTGEGNLSLDLTFESMDDFSPAAVARKIDSLNKLLEARTQLANLLTYMDGKTGAEEIIMKAIKDPALLQALASAPKPADAEPKA	PGPT0025915_592	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025915-impB-K11901	NA	NA
D1-36_05051	1497			hypothetical protein	ATGAACGATTTGGTACGCGACAATCAGCCCCAGAACCTGGGCGCCACCGAAGAAACCAGCGAGTTCGCCTCGCTGCTGCTGCAAGAATTCAAACCCAAGACCGAACGTGCCCGCGAAGCCGTCGAGACCGCCGTGCGCACCCTGGCCGAACAGGCCCTGGCGCAGACCGACCTGGTGTCCAACGACGCCATCAAGTCGATCGAGTCGATCATCGCCGCCATCGACGCCAAGCTCACCGCCCAGGTCAACCAGGTCATCCACCACCCGGATTTCCAGCAATTGGAAAGCGCCTGGCGTGGCCTGCACTACCTGGTCAACAACACCGAGACCGATGAGCAGCTCAAGATCCGCGTGCTCAACATCTCCAAGCCTGACCTGCACAAGACCCTGAAGAAATTCAAGGGCACCGCGTGGGACCAGAGCCCGATCTTCAAGAAGATGTACGAAGAAGAATACGGCCAGTTCGGCGGCGAGCCTTACGGCTGCCTGGTGGGCGACTACTACTTCGACCAGTCGCCACCGGACGTGGAACTGCTGGGCGAACTGTCGAAAGTCTGCGCCGCGATGCACGCGCCGTTCATTGCCGCTGCCTCGCCAACCGTGATGGGCATGGGCTCCTGGCAGGAACTGTCGAACCCGCGCGACCTGACCAAGATCTTTACCACGCCGGAATACGCCGGCTGGCGTTCGCTGCGTGAGTCGGAAGACTCGCGCTACATCGGCCTGACCATGCCGCGCTTCCTGGCGCGCTTGCCGTACGGCGCCAAGACCGACCCGGTGGAAGCCTTCGCCTTCGAAGAAAACACCGACGGCGCCGACAGCTCCAAGTACACCTGGGCCAACGCTGCCTACGCGATGGCGGTGAACATCAACCGTTCCTTCAAACACTTCGGCTGGTGCTCGCGCATCCGTGGCGTGGAGTCGGGCGGTGAAGTGGAAAACCTGCCGGCCCACACGTTCCCGACCGACGACGGTGGCGTGGACATGAAGTGCCCGACTGAAATCGCTATCTCGGACCGCCGTGAAGCGGAACTGGCGAAGAACGGTTTCATGCCGCTGCTGCACAAGAAAAACACCGACTTCGCCGCGTTCATCGGCGCCCAGTCCCTGCAGAAACCGGCCGAATACGACGACCCGGACGCCACCGCCAACGCCAACCTGGCCGCGCGCCTGCCGTACCTGTTCGCCACCTGCCGTTTCGCCCACTACCTCAAGTGCATCGTGCGCGACAAGATCGGCTCCTTCAAAGAGAAGGACGAAATGCAGCGCTGGTTGCAGGACTGGATCCTGAACTACGTCGACGGTGATCCGGCGCACTCCACCGAGACCACCAAGGCCCAGCACCCGCTTGCTGCCGCCGAAGTGATCGTCGAAGAAGTCGAAGGCAACCCGGGGTACTACAACTCCAAGTTCTACCTGCGTCCGCACTACCAGCTCGAAGGGCTGACCGTGTCGCTGCGCCTGGTATCGAAACTGCCTTCGGCCAAGGGCGCTTAA	MNDLVRDNQPQNLGATEETSEFASLLLQEFKPKTERAREAVETAVRTLAEQALAQTDLVSNDAIKSIESIIAAIDAKLTAQVNQVIHHPDFQQLESAWRGLHYLVNNTETDEQLKIRVLNISKPDLHKTLKKFKGTAWDQSPIFKKMYEEEYGQFGGEPYGCLVGDYYFDQSPPDVELLGELSKVCAAMHAPFIAAASPTVMGMGSWQELSNPRDLTKIFTTPEYAGWRSLRESEDSRYIGLTMPRFLARLPYGAKTDPVEAFAFEENTDGADSSKYTWANAAYAMAVNINRSFKHFGWCSRIRGVESGGEVENLPAHTFPTDDGGVDMKCPTEIAISDRREAELAKNGFMPLLHKKNTDFAAFIGAQSLQKPAEYDDPDATANANLAARLPYLFATCRFAHYLKCIVRDKIGSFKEKDEMQRWLQDWILNYVDGDPAHSTETTKAQHPLAAAEVIVEEVEGNPGYYNSKFYLRPHYQLEGLTVSLRLVSKLPSAKGA	PGPT0025920_727	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025920-impC-K11900	NA	NA
D1-36_05052	489	hcp1	COG3157	Protein hcp1	ATGGCTGTTGATATTTTCATCAAGATCGGCGACATCAAGGGCGAGTCCATGGACAAGGTCCACAAGGACGAGATCGACGTCCTGAACTGGAGCTGGGGCATGTCCCAGACCGGCAACATGCACGTGGGCAGTGGCGGTGGCGCGGGCAAGGTGAGCATCCAGGACCTGTCTCTGACCAAGTACGTCGACAAGGCTTCACCGAACCTGATGATGCACTGCGCCAGCGGCAAGCACGTCGACAAGGTCAAGCTGACCGTGCGCAAGGCCGGCGGCGAAAACCAGGTCGAGTACATGATCATCAACCTGGAAGAAGTGCTGATCACTTCCCTGAGCACCGGCGGCTCGGGTGGCGATGATCGCCTGACCGAAAACGTCACCCTGAACTTCGCCAAGGTGCTGGTGGACTACCAGCCGCAGAAAGCCGACGGCACCAAGGAAGGCGGCCCGGTCAAGTTCGGCTGGAACATCCGTCAGAACGTCAAGGTGTAA	MAVDIFIKIGDIKGESMDKVHKDEIDVLNWSWGMSQTGNMHVGSGGGAGKVSIQDLSLTKYVDKASPNLMMHCASGKHVDKVKLTVRKAGGENQVEYMIINLEEVLITSLSTGGSGGDDRLTENVTLNFAKVLVDYQPQKADGTKEGGPVKFGWNIRQNVKV	PGPT0025980_990	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_PROTEINS,PGPT0025980-hcp-K11903	NA	NA
D1-36_05053	453			hypothetical protein	ATGGCCAAGCCTGCGTTTATCAATTTGTGGAAAGCGTATTCCGATTTGCGGATAACCCATCCCGATGCAAAGCCTTGCGACGGTCCGTGGGCCAACCAGTGCGCCATACGCATGAGCGTGACGCTCAATGCCGAGAAGACTATCAAAGTCAATAAATTCACCTACACCGAACCCAAGTGTGCCCATGAACACGCCAGGGGCGCCGAATCGTTGGCGAACTGGTTGTGGAAGCACCATCTGGGGCGTCCTACCATCCTCAGCAATAGCGCCGCCGACCGGCAGAAGTTGATGAGCAAGACCGGGTTGATATTCTTCAAAGACTGTTATCGGCAACAGGGCCAGACCGAGGAAAACCGCACCGGCGATCACATCGATCTATGGAACCGGGGCGTGACTCAAACCGGTGATCTTTTCTACAGGTCCAAGGCTGTCTGGTTCTGGGAGCTGACATGA	MAKPAFINLWKAYSDLRITHPDAKPCDGPWANQCAIRMSVTLNAEKTIKVNKFTYTEPKCAHEHARGAESLANWLWKHHLGRPTILSNSAADRQKLMSKTGLIFFKDCYRQQGQTEENRTGDHIDLWNRGVTQTGDLFYRSKAVWFWELT				NA	NA	NA	NA	NA
D1-36_05054	426			hypothetical protein	ATGATGAAAAAGCACCTGCTCGCTGCTTGCCTGGCGATGAATCTGGTTTGCCTGAGCGCATGTGCCGAACATACCGAGACGACGGCAACCCGAGCTGTTTTCGCTGGGCAAGCACTTAGCCTGATTGACGATCAAGGCCAGTGCGCACTGCTCAAATCCGACCAGAGCCGCATGCAATTGGATATGGAATGGCCCTGCAGCTTTATGTTGGACAAGCAGCAGCTGCGCGTGGAGAAGTTCAACGAAGTACCGATATTTGCGGTTTGGCGTAGCGAGCACATGCCCGCGCCCAGTCGCGATTGCATCACCAAGATGCAGGCTATCCGTCAGATGCCGCAGGGCTTTGAAGCAGCTCCGGTAAGCATCTATGCATTCTGCGGCCCGGGAGCGGACCAGAAAATGTACGTAGCGCCATTCACGTGGTAA	MMKKHLLAACLAMNLVCLSACAEHTETTATRAVFAGQALSLIDDQGQCALLKSDQSRMQLDMEWPCSFMLDKQQLRVEKFNEVPIFAVWRSEHMPAPSRDCITKMQAIRQMPQGFEAAPVSIYAFCGPGADQKMYVAPFTW				NA	NA	NA	NA	NA
D1-36_05055	513			hypothetical protein	GTGGTAACCGAAATCGCCACCCGCGATCGCTTGCAACCGTCCCTGCTGGACCGGCTGACCGACGACGATCCGACCAACCCCAAGGAAAGCGCCGACAAGCGCGTGCTTTCCCTGACGCAATTGAAAGCCTCGGTGCTGCGTGACCTGGCGTGGCTGCTCAACACCACCTCGCTGCTCGACGGCGATGCCACGCTGCACACGCCGGCGGGCACGTCGGTGGTGAATTTCGGCCTGCCGGCGCTGGCGGGCAACAGCGCGTCGAACGTCGACGTCGCCGCCCTGGAGACCTTGATCCATCAGGCCATCGCCACGTTCGAACCGCGCATCCTGCGTCACACGTTGCGCGTGCGAGCCCGGGCGACGGCCGAGATGAACCACAACGCCCTGAGCTTCGAGATCGAAGGCGACCTCTGGGCGCAGCCGGTGCCGCTGCGCCTGATGCTGCAAACCGACCTGGACCTGGAAACCGGCCACGTGCGCGTCGTCAACGCCGACCAGCGGAGACGCCCATGA	MVTEIATRDRLQPSLLDRLTDDDPTNPKESADKRVLSLTQLKASVLRDLAWLLNTTSLLDGDATLHTPAGTSVVNFGLPALAGNSASNVDVAALETLIHQAIATFEPRILRHTLRVRARATAEMNHNALSFEIEGDLWAQPVPLRLMLQTDLDLETGHVRVVNADQRRRP	PGPT0025930_295	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025930-impF-K11897	NA	NA
D1-36_05056	1860			hypothetical protein	ATGAACCCGCGCCTGCTGGAGCTGTACAACCAGGAATTGCACCACGTGCGCGAAAGCGCCGCGGAGTTCGCCAAGGAATACCCCAAGATCGCCAGCCGGCTGACCTTGGCCGGGATGGACTGCGCCGACCCGTATGTCGAGCGCCTGCTGGAAGGCTTCGCCTATCTGACGGCGCGGGTACAACTCAAGCTCGACGCCGAGTACCCGACCTTCACCCACAACCTGCTGGAAATCGCCTACCCGCACTACCTGGCGCCGACGCCGTCGATGACCGTGGTGCAAATGCAGGCCGACCCGGACGAAGGCTCGCTGAGCAGCGGTTTCCCGCTGCCCCGCGATACCGTACTGCGCGCCGCCCTGGGTCGCGAATCCCAGACTTGCTGCGAGTACCGCACCGCTCACCCGGTGACGTTGTGGCCGTTGCAGGTCAGCCAGGCCGAATATTTCGGCAACCCGTCCGCCGTGCTCGGGCGCCTGGCCGCCAGCGAACCGAAAGCCAAGGCCGGCCTGCGCCTGACCCTGCGCACCGGCGCCGAGCTGCCGTTCAACAGCCTGGCCCTGGACAACCTGCCGCTGTACCTCAGCGGCGCCGACGAACAGCCCTTCCGCCTTTACGAACAGCTGCTGGGCAACGCCTGCGCGGTGTTCGCGCGCCAGCCCGGCGGCAATTGGGTCGAACGGTTGCCCCAAGATGCATTGCGTTCCCAAGGCTTCGATGACGCCGAGGCCGCATTGCCGGTGGTGTCGCGGGCTTTCCAGGGCTATCGGCTGCTGCAGGAATATTTCGCCCTGCCCCATCGCTTCCTGTTCGTCGACTTCACCCAGCTCAGCCGCGCGGTCAAGCGCTGCGAAGGCCAGGAGCTGGAATTGATCGTGCTGTTCGACCGTCACGATCCGAGCCTGGAAGGCAGCGTTGGCGCTTCGCAGTTCCTGCCGTTCTGCACCCCGGCGATCAACCTGTTTCCCAAGCGCCTGGACCGCATTCACTTGTCGGACCGCGTCAACGAACATCACGTGATCGCCGACCGCACCCGGCCGATGGATTTCGAAGTGCATTCGCTGACGGGGCTGACCGGCCACGGCACCGGGCCGGAGCAACCGTTCCTGCCGTTCTACGCCGTGCGCGATCCGTCCCGCTATGGCCGCGACAAAGCCTATTACACGGTACGCCGTGAGCCGCGCGTGCTGTCCAGCGACCAGCGCCGCAACGGCCCGCGCTCGACCTACGTCGGCAGCGAGACCTTTGTCAGCCTGGTGGACAGCCAGCAAGCGCCCTATCGCCACGACTTGCGCCAGCTGGGGGTGACCGCGCTGTGCACCAACCGCGATCTTCCGCTGTTCATGAGCGTGGGCAACGGCAAGACCGATTTCACCCTGGCCGACAGTGCGCCGGTGGGCGCGGTGCGTTGCGTGGCAGGTCCCAGTCGTCCACGGGCCAGCCATGCCCATGACGCCAAGGCCTGGCGATTGATCAGCCAGTTGTCCCTGAACTACCTGTCGTTGAGCGAACAGGGCCAAGGCGCCGCCGCCCTGCGTGAGCTGCTGCGACTGTACGGCGACAGCAACGACGCCGCGCTGCAATTGCAGATCGAAGGCTTACGGGAGGTCAGCAGCAAGGCGTGCACCCGACGCCTGCCGATGCCCGGCCCGATCGTCTTTGGGCGTGGCCTGGAGATCATCCTGGAATTCGATGAAAACGCGTTTCGCGGCACCGGGGTGTTCCTGCTCGGCGCGGTACTGGAGCGCTTCCTGGCACGCTACGTGTCGATCAACAGTTTTACCGAGACGGTGATCCGTACCACCGAACGCGGCGAGATCATGCGATGGAAAGCCAAGCCCGGACGTCGTCCGACCCTTTGA	MNPRLLELYNQELHHVRESAAEFAKEYPKIASRLTLAGMDCADPYVERLLEGFAYLTARVQLKLDAEYPTFTHNLLEIAYPHYLAPTPSMTVVQMQADPDEGSLSSGFPLPRDTVLRAALGRESQTCCEYRTAHPVTLWPLQVSQAEYFGNPSAVLGRLAASEPKAKAGLRLTLRTGAELPFNSLALDNLPLYLSGADEQPFRLYEQLLGNACAVFARQPGGNWVERLPQDALRSQGFDDAEAALPVVSRAFQGYRLLQEYFALPHRFLFVDFTQLSRAVKRCEGQELELIVLFDRHDPSLEGSVGASQFLPFCTPAINLFPKRLDRIHLSDRVNEHHVIADRTRPMDFEVHSLTGLTGHGTGPEQPFLPFYAVRDPSRYGRDKAYYTVRREPRVLSSDQRRNGPRSTYVGSETFVSLVDSQQAPYRHDLRQLGVTALCTNRDLPLFMSVGNGKTDFTLADSAPVGAVRCVAGPSRPRASHAHDAKAWRLISQLSLNYLSLSEQGQGAAALRELLRLYGDSNDAALQLQIEGLREVSSKACTRRLPMPGPIVFGRGLEIILEFDENAFRGTGVFLLGAVLERFLARYVSINSFTETVIRTTERGEIMRWKAKPGRRPTL	PGPT0025935_554	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025935-impG|vasA-K11896	NA	NA
D1-36_05057	1053			hypothetical protein	ATGGAAAGCCAAGCCCGGACGTCGTCCGACCCTTTGAGTACCCTGGAGGCGATGCACCAGGAACCCTGGGAATACGACTTTTTCCAGGCGTTGCGGCGCATCGAATGTGAAACCCCCGAACTGCCGCGCCTGGGCCATTCCCTGCGCCTGGCCGATGACCCGTTGCGCCTCGGGCAACAGGCCGACTGTACCTTCGCCCCGGCGACCCTGGCCTCGGTGCAACCGGGCGTGGACGGCGCGCCGGCGCGCCTGGAACAGTTCTTCTTCGGCCTCGGCGGCCCCAACGGCCCGATGCCGCTGCACATCACCGAATACGTGCGCGAACGCCAGCGCAACAATGGCGACAGCACCAGCAAGCGCTTCCTCGACGTGTTCCACCATCGCCTGCTCAGCCTGTTCTACCGGGCCTGGGCCGAAGCGCGGCCGACCGTCAGCCACGATCGCCCGGACGATGACTATTGGTCGGCGCGCCTGGCGGCACTCAGCGGCCGGGGCATGCCGAGCCTGCTCAACCAAGGGTTGATCCCCGACACGGCGAAGCTGCACTACAGTGGCCACCTCTCGGCGCAAACCCGTTATCCGGACGGCCTGAAGGCGATCCTCAGCGAGTATTTCGGCCTGCCGGTGGAAATCGAAGAATACGTCGGCCAGTGGCTGGAACTGCCGGAGCGCAGCCGCGTCGGTGTCAGCGCCCATCAGTTGGGCGTGGACTTCTGCCTGGGCCGTTTCGTGTGGGACCGCCAGCACAAATTTCGCATTCGCCTGGGCCCGCTCAAGCTCGATGACTACATGGGCATGCTGCCCGGCAGCCAACCGTTCAACGAGCTGGTGGCCTGGGTCGCCGAATACCTGGGACACGAGCTGGACTGGGACCTGAACCTGGTGCTGGAACAGCCCGAAGTGCCCGCACTACAACTCAATGGCCGTTTCCGCCTGGGCTTCAACACCTGGCTGGGACGACCTGAAAAAGATGCCAACGATCTAATACTGGCCCGGCACTACGCCGAACAGGCCAACACCTCACAGACCTCAAGGAGCCATGAGCATGGGTGA	MESQARTSSDPLSTLEAMHQEPWEYDFFQALRRIECETPELPRLGHSLRLADDPLRLGQQADCTFAPATLASVQPGVDGAPARLEQFFFGLGGPNGPMPLHITEYVRERQRNNGDSTSKRFLDVFHHRLLSLFYRAWAEARPTVSHDRPDDDYWSARLAALSGRGMPSLLNQGLIPDTAKLHYSGHLSAQTRYPDGLKAILSEYFGLPVEIEEYVGQWLELPERSRVGVSAHQLGVDFCLGRFVWDRQHKFRIRLGPLKLDDYMGMLPGSQPFNELVAWVAEYLGHELDWDLNLVLEQPEVPALQLNGRFRLGFNTWLGRPEKDANDLILARHYAEQANTSQTSRSHEHG	PGPT0025940_741	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025940-impH|vasB-K11895	NA	NA
D1-36_05058	2691	clpV1_2	COG0542	Protein ClpV1	ATGGGTGAAATCAGTCGCGCCGCGTTGTTCGGCAAACTCAACAGCGTGGCCTACAAAGCCATCGAAGCCGCCACCGTGTTCTGCAAATTGCGCGGTAACCCTTATGTGGAGCTGGCCCACTGGTTTCATCAATTGCTGCAACTGCAGGACTCGGACCTGCACCGCATCATCCGCCAGTTCAACATCGAGCCGGCGCGCCTGGCCCGTGACCTGACCGAGGCACTGGATCGTTTGCCACGCGGTTCGACATCGATCACCGACCTGTCCTCCCACGTTGAAGAAGCCGTGGAACGTGGCTGGGTCTACGGCAGCCTGATGTTCGGCGAAAGCCAGGTGCGCACCGGTTATTTGGTGCTGGGCATCCTCAAGACGCCGAGCCTGCGCCACGCGCTGCTGGGCCTGTCGTCGGAGTTCGACAAAGTCAAGGTTGAAGCCTTGAGCGAACGCTTCGATGAATACGTTGGCGACTCGCCGGAAAACGCCCTGGCCGCCAGCGACGGTTTCAACGCCGGCGCGGTGCCGGGCGAGGCCAGCGGCGCGATGGCCCCTAGCGCCATGGGCAAGCAGGAAGCGCTCAAGCGCTTTACCGTCGACCTCACCGAGCAGGCCCGCAGCGGCAAGCTCGACCCCATCGTCGGCCGTGACGAAGAGATCCGCCAACTGGTGGACATCCTCATGCGCCGTCGGCAGAACAACCCGATCCTCACCGGTGAAGCCGGCGTGGGCAAGACCGCCGTGGTCGAAGGCTTTGCCTTGCGCATCGTCGCCGGCGACGTGCCGCCGTCCCTCAAGGACGTGGAGCTGCGCAGCCTCGACGTGGGCCTGTTGCAGGCCGGCGCGAGCATGAAAGGCGAATTCGAACAACGCTTGCGCCAGGTCATCGAAGACGTCCAGGCCTCGCCCAAGCCGATCATCCTGTTCATCGACGAAGCCCACACCCTGGTGGGTGCCGGTGGCGCCGCCGGCACGGGCGACGCGGCCAACCTGCTCAAGCCGGCCCTGGCCCGCGGCACCTTGCGCACCGTGGCCGCCACGACCTGGGCCGAGTACAAGAAGCACATCGAAAAAGACCCCGCCCTGACCCGCCGCTTCCAAGTGGTGCAAGTCGCCGAACCGTCTGAAGACAAAGCCCTGCTGATGATGCGGGGCGTGGCCTCGACCATGGAAAAACACCATCAGGTGCAGATCCTCGACGAAGCCCTGGAAGCCTCGGTCAAGTTGTCCCACCGCTACATTCCCGCGCGCCAGTTGCCGGATAAATCCGTGAGCCTGCTGGACACCGCCTGCGCCCGCGTCGCCATCAGCCTGCACGCCGTGCCCGCCGAAGTGGACGACAGCCGCCGCCGTATCGAAGCGCTGGAAACCGAGCTGCAAATCATTGCCCGCGAGCACGCCATCGGCGTGGCCATCGGCAGCCGCCAGACCCAGAGCGAAAGCCTGCTGGGCGCCGAACGTGAGCGTCTGGCGGAGCTGGAAAGCCGCTGGGCCGGAGAGAAAACCCTGGTGGACCAATTGCTGGAAACCCGCGCCACCCTGCGCGAGCGCGTCGGCGCGGTGGACAGCGAAGACCGCAGCGAAGCTTCTGACAACGAAAGCCACGCCCTGCGCGAGAAACTGGTGGACCTGCAACAGCGCCTGACCGCCCTGCAAGGTGAAAACCCATTGATCCTGCCGACCGTGGATTATCAGGCCGTGGCCTCGGTGGTTGCCGATTGGACCGGTATCCCGGTGGGCCGCATGGCCCGCAACGAGCTGGAAACCGTGCTCAACCTCGACCAGCACCTGAAAAAACGCATCATCGGCCAGGACCATGCCTTGCAGATGATCGCCAAGCGCATCCAGACCTCCCGCGCCGGCCTCGACAACCCGAGCAAGCCGATTGGCGTGTTCATGCTCGCCGGCACCTCCGGCGTGGGCAAGACCGAAACCGCTCTGGCCCTGGCCGAAGCCATGTACGGCGGCGAGCAGAACGTCATCACCATCAACATGAGCGAGTTCCAGGAAGCCCACACCGTGTCCACCCTCAAGGGCGCGCCACCGGGCTACATCGGCTACGGCGAAGGCGGCGTGCTGACCGAAGCCGTGCGGCGCAAACCGTACAGCGTGGTGCTGCTGGACGAGGTTGAAAAAGCCCACCCGGACGTACATGAGATCTTTTTCCAGGTATTCGACAAGGGCGTGATGGAAGACGGCGAAGGCCGGGTGATCGACTTCAAGAACACCCTGATCCTGCTGACCACCAACGCCGGCACCGAGCTGATCGCCCAGGTCTGCAAGGACCCGCAAAACGTGCCCGAGCCGGAAGAGATCGCCAAGGCCCTGCGTCAACCGCTGCTGGAAATTTTCCCGCCGGCGCTGCTGGGTCGCCTGGTGACGATCCCGTATTACCCGCTCAGCGATGAGATGCTCAAGGCCATTACCCGCCTGCAACTCAACCGCATCAAGAAGCGCGTGGAGAGCACCCATAAAGTGGCCTTCGACTACGACGACGCGGTGATCGACCTGATCGTCTCGCGGTGCACCGAAACCGAAAGCGGCGGGCGCATGATCGACACCATCCTGACCAACAGCCTGCTGCCGGACATGAGCCGCGAGTTCCTCACCCGCATGCTCGAAGGCAAGGCCATGGCCGGCGTGCGGATCAGCGCGGTGGACAATGAACTGAAGTACGATTTCAGCGATGCGGCCTGA	MGEISRAALFGKLNSVAYKAIEAATVFCKLRGNPYVELAHWFHQLLQLQDSDLHRIIRQFNIEPARLARDLTEALDRLPRGSTSITDLSSHVEEAVERGWVYGSLMFGESQVRTGYLVLGILKTPSLRHALLGLSSEFDKVKVEALSERFDEYVGDSPENALAASDGFNAGAVPGEASGAMAPSAMGKQEALKRFTVDLTEQARSGKLDPIVGRDEEIRQLVDILMRRRQNNPILTGEAGVGKTAVVEGFALRIVAGDVPPSLKDVELRSLDVGLLQAGASMKGEFEQRLRQVIEDVQASPKPIILFIDEAHTLVGAGGAAGTGDAANLLKPALARGTLRTVAATTWAEYKKHIEKDPALTRRFQVVQVAEPSEDKALLMMRGVASTMEKHHQVQILDEALEASVKLSHRYIPARQLPDKSVSLLDTACARVAISLHAVPAEVDDSRRRIEALETELQIIAREHAIGVAIGSRQTQSESLLGAERERLAELESRWAGEKTLVDQLLETRATLRERVGAVDSEDRSEASDNESHALREKLVDLQQRLTALQGENPLILPTVDYQAVASVVADWTGIPVGRMARNELETVLNLDQHLKKRIIGQDHALQMIAKRIQTSRAGLDNPSKPIGVFMLAGTSGVGKTETALALAEAMYGGEQNVITINMSEFQEAHTVSTLKGAPPGYIGYGEGGVLTEAVRRKPYSVVLLDEVEKAHPDVHEIFFQVFDKGVMEDGEGRVIDFKNTLILLTTNAGTELIAQVCKDPQNVPEPEEIAKALRQPLLEIFPPALLGRLVTIPYYPLSDEMLKAITRLQLNRIKKRVESTHKVAFDYDDAVIDLIVSRCTETESGGRMIDTILTNSLLPDMSREFLTRMLEGKAMAGVRISAVDNELKYDFSDAA	PGPT0025985_483	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025985-vasG|clpV-K11907	NA	NA
D1-36_05059	1938	vgrG1_4	COG3501	Actin cross-linking toxin VgrG1	ATGCTATTCAACCAAGCCTCACGCCTGGCCAAGATCACCAGCCCGCTGGGGCCCGAGGTGTTGTTGCTCAAGGACATGGGCGGCGGCGAAGAGCTGGGGCGGCTGTTCAACTATGAGTTGCAGCTGCACTCGCTGGACAACGCCATCGACCTCAATCAGGTGCTCGGCAAACCGATGTGCGTGAGCGTTCAGCTGGACGGTGGCGGCGAACGGCATTTCCACGGCATCGTTGCGCGCTTCAGCCAGAACGTCGACCAGGGCCAGTTCGCCAGTTACCAGGCCACGCTGCGCCCTTGGTTGTGGTTGCTGACACGCACCTCCGACTGCCGGATTTTCCAGAACCTGACCATCCCGCAGATCATCAAGCAGGTGTTTCGCGACCTGGGTTTTTCCGACTTCGAAGACACCCTCAGCCGCCCGTATCGCGAGTGGGAATACTGCGTCCAGTACCGCGAGACCAGCTTCGATTTCGTCAGTCGACTGATGGAACAGGAAGGCATCTATTACTTTTTCCGCCATGAACAGGGCCGTCATGTGCTGGTGCTGGCCGACGCCTACGGCGCCCACACCACGGCGCCCGGCTATGGATCGGTGCCTTACTACCCGAAGAACGAGCAGCAGCGCGAGCGCGACCATATCCACGACTGGCACCTGGCCCAGGAAGTCCAGCCGGGTTCGCTGGAGCTTAACGACTATGATTTCCAGCGCCCCAGCGCGCGCATCGACGTGCGCTCGGCCATGCCCCGCCCGCACGCTGCCGGCGACTATCCGCTGTTCGATTACCCGGGCACCTACGTGCAAAGCGAAGACGGCGAGCACTACGCCCGCACCCGAATCGAAGCCTTGCAGACCCAGCACGAGCAGGTCGAGCTGGCGGGCAACGCCCGGGGCCTGGGGTCGGGGCATCTGTTCAGCCTCACCGGCTTCACCCGACAGGACCAGAACCGCGAATACCTGATCGTCGGCGCGCGCTATTACATCTCCCAGGAAAGCGGCGAGAGCGGCGTCGGCGCGCCTTCGGCACAGTTCGAAAGCAGCCTGACCTGTATCGACGCCCAACAGAGCTTCCGGCCGATGGCGATCACCCACCGGCCCATCGTCAAGGGACCGCAGACCGCGTTGGTGGTCGGCCCCAAGGGCGAGGAAATCTGGACCGATCAGTTCGGCCGGGTGAAGGTGCACTTCTATTGGGACCGGCACGACCAATCCAACGAAAACAGCTCGTGCTGGATTCGCGTGTCGCAGTCCTGGGCTGGCAAGAACTGGGGCTCGATGCAGATTCCACGCATCGGCCAGGAAGTCATCGTGAGCTTCCTCGAGGGCGACCCTGACCGGCCGATCATCACCGGTCGTGTCTACAACGCCGAGCAGACCGTGCCCTACGACCTGCCTGAAAATGCCACCCAGAGCGGCATGAAGAGCCGTTCGAGCAAAGGCGGCACGCCGGCGAACTTCAACGAAATCCGCATGGAAGACAAGAAAGGCGCCGAGCAGTTGTACATCCACGCCGAGCGCAACCAGGACATCGTAGTCGAGGTGGACGAAAGCCATTCGGTGGGCCACGACCGCAACAAAAGCATTGGCCACAACGAAACCGTGACCATCGGCAACAACCGCCTGCGCATCGTCAAGCAGGAGGACATTTTGTCGGTGGGCCAGCGCAAGACCGACAGCATCAGCCAGAGCTACGTCATCGAAGTGGGCGAGAACCTGCGCCTGGTGTGCGGTGAAAGCATCCTGGAGCTCAACGCCAGCGGCCAGATCAACCTGACCGGCGTGCAAATCAGCTTTTACGCCAGCGGCGATGCCGAATTCAACACCGGCGGCGTGCTGCACCTGAACAATGGCGGCGGCCCCGGCGCCACGCCGGACGGCCAGGGCGTCAAGGCCAGCATCGACGCGAACGTCGCCGCCGCGTTCCCGGCGCCCAAGGGCTAA	MLFNQASRLAKITSPLGPEVLLLKDMGGGEELGRLFNYELQLHSLDNAIDLNQVLGKPMCVSVQLDGGGERHFHGIVARFSQNVDQGQFASYQATLRPWLWLLTRTSDCRIFQNLTIPQIIKQVFRDLGFSDFEDTLSRPYREWEYCVQYRETSFDFVSRLMEQEGIYYFFRHEQGRHVLVLADAYGAHTTAPGYGSVPYYPKNEQQRERDHIHDWHLAQEVQPGSLELNDYDFQRPSARIDVRSAMPRPHAAGDYPLFDYPGTYVQSEDGEHYARTRIEALQTQHEQVELAGNARGLGSGHLFSLTGFTRQDQNREYLIVGARYYISQESGESGVGAPSAQFESSLTCIDAQQSFRPMAITHRPIVKGPQTALVVGPKGEEIWTDQFGRVKVHFYWDRHDQSNENSSCWIRVSQSWAGKNWGSMQIPRIGQEVIVSFLEGDPDRPIITGRVYNAEQTVPYDLPENATQSGMKSRSSKGGTPANFNEIRMEDKKGAEQLYIHAERNQDIVVEVDESHSVGHDRNKSIGHNETVTIGNNRLRIVKQEDILSVGQRKTDSISQSYVIEVGENLRLVCGESILELNASGQINLTGVQISFYASGDAEFNTGGVLHLNNGGGPGATPDGQGVKASIDANVAAAFPAPKG	PGPT0030410_3814	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_VI_SECRETION_SYSTEMS	CE-Type_VI_SECRETION_PROTEINS,PGPT0030410-vgrG-K11904	NA	NA
D1-36_05060	423			hypothetical protein	ATGACTTACCGCCTCAACGAATTCCAGCTGCAACTGCCGCCCGCCGAGTTGCTCGACGCCTCGATCAATATCCTCAAGTTCCCTGAACTGGGCACGTCGCTGATCGTCAGCCGCAGCCTGCTGGCCGAGGGTGAAACCTTGCAAAGCAATCTCGACGAGCAGCTCAAGCGCTTGGAGAAACAAGTCCAGGACCTGCGCTGCCAGCCGGGCGCCACCCTGCGCGTGGGTGCGAACCAGGAAGTCGAAGCCATTGAATTACGCAGCCAGTTCAACAAGGGCAACGAGAAGGTCTTCCAGTATCAACTGGCGCTGGTATTGCCGGGCACGCGCAAGATGCTTGCCTTGAGCTATGTAAAAGCCCAGAAGCTGGGCGATGCCGAGGCAGCGCACTGGGCGACGATCAAGGGCTCGTTGACGTTTTGA	MTYRLNEFQLQLPPAELLDASINILKFPELGTSLIVSRSLLAEGETLQSNLDEQLKRLEKQVQDLRCQPGATLRVGANQEVEAIELRSQFNKGNEKVFQYQLALVLPGTRKMLALSYVKAQKLGDAEAAHWATIKGSLTF				NA	NA	NA	NA	NA
D1-36_05061	534			hypothetical protein	ATGAACAACCCGCAAGACAACGTGCTGCTGTTGGCCCTCGCCAATGATGAATTGGATAAATTCCTGGTGGGCGAGCCGTTCTACTTTCTCGAGGCCAAGAACGACAACGACGAGCCCCAAAACGTAGTCGCGGCGTTCGACCGGTTGCTCATGCCCTACTGGCTCCAGACCCATGACCCGAGTTTCCCGGCGCGATTCGTGGCGGGCCTGTTGCGGATGCTGGCGACATATCCAGACCGGACACGGGCGATCTACATCGCTGCCGATTGGGTCTGGTATTACCGTTTCTGCCAGGACAAGCAGCGCCAGCAGCCGCTGGGCCCCTACGGCGATCTGTTCGACGTGGACATGGGCGGCGTCGCCTTGGCCCTCAAGCGCCTGTTGGAAAACCACAAGGCCGAACTGGTGGCCGATACGCGGTGGGCCGGTGCGGCGTGGAACAGCCCGGACGGCATGTGGACGCCCTTGATGCGTTCGGCGGTGATGGTGCGGGACAAGTTGGGCGGGCCGGATTTCGTGCCGGCCAATATCTGA	MNNPQDNVLLLALANDELDKFLVGEPFYFLEAKNDNDEPQNVVAAFDRLLMPYWLQTHDPSFPARFVAGLLRMLATYPDRTRAIYIAADWVWYYRFCQDKQRQQPLGPYGDLFDVDMGGVALALKRLLENHKAELVADTRWAGAAWNSPDGMWTPLMRSAVMVRDKLGGPDFVPANI				NA	NA	NA	NA	NA
D1-36_05062	1296			hypothetical protein	ATGGACATGCTGGCTGCTGCGCGCCTTGGCGATGAAATAGCCCACGGTTTTGGTGTCGCCGCGATGGTCGCCGGTGCCGTGGCCGGGGCATTGATCGGCGCGGCGGTTGTGGCGGCCACCGTGGCGACCGGGGGCGTGGCGCTGGCAATCATGGCCGGTTCGATTGCCGCCGGCGGGTTGTCGATGTTCCAGATCCTCAAGGGCCTGAACACCATTTTCAACTTGCCCGAGCCCACGACAGGGGCGTTGATCATGGGCAGTCTCAACGTGCACATCAACCGACGCAATGCCATGCGCGCTGGCGTCGACATGTCGGCCGGTTGCACGGGGCTGCCAATGAACCATCCGATCTGGCCGTTCCCGGTGCTGATCGCCGAAGGCAGCGCCACGGTCTACATCAATGGGAAACCGGCGGCGCGGTTGCAGAGCAAGATGGTCTGCGGCGCCCACATCAAGACTGGCAGCGCGAATACGTTCATCGGCGGGCCGACGGTCTCGGTGGCGTTTGTTCTCGACATCGAAGGCTGGCTGCACACCGGACTTGAAGCATTGGGGTTGGTGGCCATGGGCGCTGCCGCCGTGTTGGCGGCGATGGCCGGGGCGGCGGCTTTTGCCGGGTTCGTGGTCATCGGTGGCGCCATGATGGGCGGCATGGCGCTGCTGGGCGACCTGGGCGACCGCCTCGGCCCCGGTTATCGCGATCTGCTTCAAGGCATCGCCGGCATGGCGCTGCTGGGGCTGGGGCCGAAAATGGCGCGTCTCGGCGCGGGGCCAAAACCGCGTGTCGCGGCCTACAAGCCAGGCACGACCGAGGCCGATATCATGGCGATCCCCAAGGGCAGCCGGCCACCGCCGAGCGACTATCTCGAAGGCCCATACATCGACAAGCACCTCAAGACCTTCGAGGATGAGGGCGGCAGTTTCCTCTTCACCGCCGACGATATTTCCAACCCCAAATACGGGTCGTTCAACCCGAACAAGTTCGTCATGGCGAAGTCGGACCTGAACGCGGTGGTCGCCGAGTACAAAAAAACCGGCGACGTTTCGGTACTGGAATCGGCCTTGGGTTACGATCCGGGGTCGCTGGTGGGCAAGGACATCTACATGATGAACCTGGACAAGCCCAAGGTGCTGATGCCGACCGGCAACGAGGGCGGTGTGAACTCCCTATGGCGACCCGGCGGCCTGACCCATCCAGGCGGCATGCGCGAAGCCGTGCTGGACAACGTGCCCATCGCCCACGGCAACGACATCAATGCGCTGATGACGACCCGAGACGTAGTGAGAATCCAATGA	MDMLAAARLGDEIAHGFGVAAMVAGAVAGALIGAAVVAATVATGGVALAIMAGSIAAGGLSMFQILKGLNTIFNLPEPTTGALIMGSLNVHINRRNAMRAGVDMSAGCTGLPMNHPIWPFPVLIAEGSATVYINGKPAARLQSKMVCGAHIKTGSANTFIGGPTVSVAFVLDIEGWLHTGLEALGLVAMGAAAVLAAMAGAAAFAGFVVIGGAMMGGMALLGDLGDRLGPGYRDLLQGIAGMALLGLGPKMARLGAGPKPRVAAYKPGTTEADIMAIPKGSRPPPSDYLEGPYIDKHLKTFEDEGGSFLFTADDISNPKYGSFNPNKFVMAKSDLNAVVAEYKKTGDVSVLESALGYDPGSLVGKDIYMMNLDKPKVLMPTGNEGGVNSLWRPGGLTHPGGMREAVLDNVPIAHGNDINALMTTRDVVRIQ				NA	NA	NA	NA	NA
D1-36_05063	435			hypothetical protein	ATGACGCTCTACCGCCTCCACGAAGCCGATCTCGACATCCCTGACAGTTGGCAGGACCAGAGCATCAATATCTTCAAGCTGCCTGCCGTTGGCGGTGCCAAGGAAGCCAGTTTCGTCATCAGCCGCGATCCGAGCCGGGGCGATACGCCGTTCAACGACTATGTAGACCAACAACTGGCGAGCGCCGAACAGCAGTTACCGGGTTTCAAGCTGATCAAGCGTTGGGATTTCTTGCTGCACGAGCGCGCCGCAGTGTTGCTTGATTACAGCTGGCAGCGCGAAGGGCGAGAGTTGATGCTGCGCCAGGTGTTTATCGACCGCCAGCCCGTGGGGCTGATTACCACGCTGACCACAACGCCGAACGATCTCGTGTTTCACGAGCCGGCCTGGAAAGCGGCCATGCATTCGTTCAAGGTCTTGCCGGCGACCGCCTGA	MTLYRLHEADLDIPDSWQDQSINIFKLPAVGGAKEASFVISRDPSRGDTPFNDYVDQQLASAEQQLPGFKLIKRWDFLLHERAAVLLDYSWQREGRELMLRQVFIDRQPVGLITTLTTTPNDLVFHEPAWKAAMHSFKVLPATA				NA	NA	NA	NA	NA
D1-36_05064	651		COG0546	5'-nucleotidase	ATGCACTACCAGACTGTACTCTTCGACCTCGACGGCACCCTTACCGACCCCAGGGAAGGCATCACCCGTTCGATCCAGTTCGCCCTGAGCAAACTGGGCATCGACGAACCCGACCTGACCCGCCTCGAACACTTCATCGGCCCGCCTCTGTTGCAGGCTTTCATGCAGTTCTACGGCTTCGATGAAGCGAAAGCCTGGGAGGCGGTGTCTTTCTATCGCGAGCGCTTCAAGGTCACCGGCCTGTACGAAAACCGCGTGTTCGATGGCGTCCTGCCGCTGCTGGAAACCCTCGCCGATCAAAATCGGCAGCTGTACATCGCCACGTCCAAGCCCTGGGTTTTCGCCCGGGAAATTGCCCGCCATTTCGACTTCGCCAAGCACTTCAAGGTGATCTACGGCAGCGAACTGGACGGCACCCGCACAGACAAGGTCGAGCTCATCGCCCATCTCATGGCCGAAGAAAGCCTGGACCCGGCCGCCACCCTGATGATCGGCGATCGCAAACACGACCTGATCGGTGCCCGCAGCAACGGCCTGGACGCCGCAGCAGTGGGGTATGGGTTTGGCAGTTTCGAGGAATTGAGCGCGGAAAACCCGGTGCACCACTTCCAGACGTTGGATGAGCTGCACCGGGCATTCCTGCGAACCTGA	MHYQTVLFDLDGTLTDPREGITRSIQFALSKLGIDEPDLTRLEHFIGPPLLQAFMQFYGFDEAKAWEAVSFYRERFKVTGLYENRVFDGVLPLLETLADQNRQLYIATSKPWVFAREIARHFDFAKHFKVIYGSELDGTRTDKVELIAHLMAEESLDPAATLMIGDRKHDLIGARSNGLDAAAVGYGFGSFEELSAENPVHHFQTLDELHRAFLRT	PGPT0001730_6046	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0001730-gph-K01091	NA	NA
D1-36_05065	546	yrdA_2	COG0663	Protein YrdA	GTGACCCTTCGCACGTACCAGAATCACAGCCCGCGGCTTGCCCGTGGGGCTTTTGTCGACAGCACCGCGGTGGTGATCGGCGACGTCGAAATCGGCGAAGACAGCTCCGTCTGGCCGCTGACGGTCATCCGCGGCGACATGCACCGCATCCGCATTGGCGCGCGCACCAGCGTCCAGGACGGCTGCGTGCTGCACATCACCCACGCCGGCCCGTTCAACCCCGATGGCTTTCCGTTATTGATCGGCGATGACGTGACCATCGCCCACAAAGTCATGCTCCATGGTTGCGCCGTCGGCAGTCGAATTCTGATCGGCATGGGCAGCATCGTCATGGACGGCGCGGTGGTCGAGGACGACGTCATCATCGGCGCCGGCAGCCTCGTGCCGCCGGGCAAGCGCCTGGAGAGCGGCTTCCTGTACGTCGGCAGCCCGGTGAAACAGGTCCGCCCCCTGACCGACAAGGAACGCGCATTCTTCACCTACAGCGCGGCGAACTACGTAAAGCTCAAGGACCTGCATCTGGCCGAAGGCTACGACCAGCCCTGA	MTLRTYQNHSPRLARGAFVDSTAVVIGDVEIGEDSSVWPLTVIRGDMHRIRIGARTSVQDGCVLHITHAGPFNPDGFPLLIGDDVTIAHKVMLHGCAVGSRILIGMGSIVMDGAVVEDDVIIGAGSLVPPGKRLESGFLYVGSPVKQVRPLTDKERAFFTYSAANYVKLKDLHLAEGYDQP	PGPT0002425_585	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILISATION-OTHER_ACID_METABOLISMS	K-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002425-GAMMACA_like-K01726	NA	NA
D1-36_05066	2052	prlC_1	COG0339	Oligopeptidase A	GTGAGCGTGAACAACCCTCTTTTGCAGCCCTACGACCTGCCGCCATTCTCGGCGATCCGCGCCGAACACGTGCAACCGGCCATCGAGCAGATCCTGGCTGACAACCGTGCCGCCATCGCCGAAATTCTCAAGACCCAAGTCAAGCAGCCTACCTGGGCCGGCCTGGTATTGGCGATGGACGAGCTCAACGATCGCCTCGGCGCGGCCTGGAGCCCGGTGAGCCATCTGAACGCCGTGCGCAACAGCCCCGAACTGCGCGAAGCCTACGAGGCATGCCTGCCGGCGCTCAGTGCCTACTCCACCGAACTGGGCCAGAACCGCGAGCTGTTCCAGGCCTTCGAAGCCCTGGCGAACAGCCCCGAGGCGGCCGGTTTCGATGTGGCGCAAAAAACCATCCTGGAACATTCCCTGCGCGATTTCCGCCTGTCGGGCATCGACCTGCCGCCCGAGCAGCAGAAGCGCTACGCCGAAGTGCAAAGCAAATTGTCCGAGCTGGGCAGCCGCTTTTCCAACCAGTTGCTCGACGCGACCCAGGCCTGGACCAAGCACGTCACGGACGAGGCCGCCCTCGCCGGCCTGACCGACTCGGCCAAGGCGCAAATGGCTGCCGCCGCCCAGGCCAAAGGGCTGGATGGCTGGCTGATCAACCTGGAATTCCCTAGCTACTACGCCGTGATGACCTACGCCGAAGACCGCGCCCTGCGCGAAGAAGTCTACGCGGCCTACTGCACTCGCGCCTCGGACCAGGGCCCGAACGCCGGTCAGAACGACAACGGCCCGGTGATGGAACAGATCCTCGACCTGCGCCAGGAACTGGCCCACCTGCTGGGCTTCGCCAATTTCGCCGAGTTGAGCCTGGCGACCAAGATGGCCGAGTCCAGCGACCAGGTGCTCAGCTTCCTGCGTGACCTGGCCAAGCGCAGCAAACCGTTTGCCGCCCAGGACCTGGAGCAACTGAAAGCGTTCGCCGCCGAACAGGGCTGCCCCGACCTGCAAAGTTGGGACAGCGGCTTCTATGGCGAGAAACTCCGCCAGCAGCGCTACAGCGTCGCCCAGGAAGCCCTGCGCGCCTACTTCCCGATCGATAACGTGCTGAGCGGCCTGTTCACCATTGTGCAGCGCCTCTATGGGATCGAGATCGCCGAGCTGAAGGGCTTCGACAGCTGGCACCCGGATGTGCGCCTGTTCGAGATCAAGGAAAACGGCCAGCACGTCGGCCGGTTCTTCTTCGACCTCTATGCCCGCGCCAACAAGCGTGGCGGCGCCTGGATGGACGGCGCACGTGATCGCCGCCGCACCGTCGACGGCGTCTTGCAAAGCCCGGTCGCCAACCTGGTGTGCAACTTCACCCCGGCCGACAGCGGCAAGCCGGCGCTGCTGACCCACGACGAAGTCACCACCTTGTTCCACGAGTTCGGCCATGGCCTGCATCACCTGTTGACCCGCGTCGAACATGCCGGCGTGTCCGGCATCAACGGTGTGGCTTGGGACGCCGTGGAGCTGCCTAGCCAGTTCATGGAAAACTGGTGCTGGGAACCCGAAGGCCTGGCGCTGATTTCCGGCCATTATGAAACCGGCGAACCGCTACCCCAGGACCTGCTGGAAAAAATGCTCGCGGCGAAAAATTTCCAGTCCGGCCTGATGATGGTTCGCCAGTTGGAGTTCTCGCTGTTCGACTTCGAGCTGCACGCCACCCACGGCGACGGCCGTAACGTACTGGAAGTGCTCGAAGGCGTGCGCGACGAGGTGTCGGTGATGCGTCCGCCGGCCTACAACCGCTTCCCCAACAGTTTTGCGCACATCTTCGCTGGCGGCTACGCGGCGGGTTACTACAGCTACAAATGGGCGGAAGTGCTGTCTGCCGATGCGTTCTCCAAGTTCGAAGAGGACGGCGTGCTCAACGCCGACACCGGTCGCGCCTTCCGCGAAGCGATCCTGGCGCGCGGCGGCTCCCAGGAGCCAATGGTGCTGTTCGTCGACTTCCGTGGCCGCGAGCCGTCGATTGACGCACTCTTGCGTCATAGCGGCCTGAGCGAGGACGCGGCAGCATGA	MSVNNPLLQPYDLPPFSAIRAEHVQPAIEQILADNRAAIAEILKTQVKQPTWAGLVLAMDELNDRLGAAWSPVSHLNAVRNSPELREAYEACLPALSAYSTELGQNRELFQAFEALANSPEAAGFDVAQKTILEHSLRDFRLSGIDLPPEQQKRYAEVQSKLSELGSRFSNQLLDATQAWTKHVTDEAALAGLTDSAKAQMAAAAQAKGLDGWLINLEFPSYYAVMTYAEDRALREEVYAAYCTRASDQGPNAGQNDNGPVMEQILDLRQELAHLLGFANFAELSLATKMAESSDQVLSFLRDLAKRSKPFAAQDLEQLKAFAAEQGCPDLQSWDSGFYGEKLRQQRYSVAQEALRAYFPIDNVLSGLFTIVQRLYGIEIAELKGFDSWHPDVRLFEIKENGQHVGRFFFDLYARANKRGGAWMDGARDRRRTVDGVLQSPVANLVCNFTPADSGKPALLTHDEVTTLFHEFGHGLHHLLTRVEHAGVSGINGVAWDAVELPSQFMENWCWEPEGLALISGHYETGEPLPQDLLEKMLAAKNFQSGLMMVRQLEFSLFDFELHATHGDGRNVLEVLEGVRDEVSVMRPPAYNRFPNSFAHIFAGGYAAGYYSYKWAEVLSADAFSKFEEDGVLNADTGRAFREAILARGGSQEPMVLFVDFRGREPSIDALLRHSGLSEDAAA	PGPT0020985_921	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020985-prlC-K01414	NA	NA
D1-36_05067	279			hypothetical protein	ATGAGCGAGGGGCCTGTGATTACCAAACGACGCTTTATTGCCGGGGCGGTCTGCCCCGCGTGCAGCGAGCCGGACAAGTTGATGATGTGGAACGAAGACGGCGTGCCCCATCGCGAATGCGTGGCCTGCGGTTATTCCGACACGCTCAACGAGCAAGGCCTGTCGGTGCCCAAGGAATTGGGCACCCGGGTCAACACATCGGCGCTCAAGACGCCCGATGCGAAAGTCCAGGCGGTGCAGTTTTTTCCCAACCCGAAATTGAAGAAAAAAAACGACTGA	MSEGPVITKRRFIAGAVCPACSEPDKLMMWNEDGVPHRECVACGYSDTLNEQGLSVPKELGTRVNTSALKTPDAKVQAVQFFPNPKLKKKND				NA	NA	NA	NA	NA
D1-36_05068	2016	prlC_2	COG0339	Oligopeptidase A	ATGCAACACGCTGATAACCCCCTGCTGCAGCCTTACGACCTGCCGCCCTTTTCGAAGATCCAGGCCGAACACTTCTCCCCGGCCCTTGACCAGATTCTTGCCGAGAGCCGGGCCAAGGTCGCCGAGATCATCGAGACCCAGGCCCCCTTCCCGACGTGGGACGACCTGGTGCTGGCGATGGACGAAATCCATGGGCGACTGAAAGGCTTCGGCTATGTACTGGACCGCATGGCATCCACCAGAAGTGGCGAGGCCTGGGCGCGGGCTTCACTCGACTGCGAGGAGCGCCTGGATGATTTCCAGCGATCGCTGCTGCGCAATACCCAATTGTTTCAACTTTACCAGCGCCTGGCGGACAGTGAGATCGCCGTGCATTTTTCCCCGGTCAGGAAAAGAACGCTGAAAAAAATCCTGCGGCAGTGGCACCGGGACGGGATGGGCTCCGCCGCGCAGGAAACCCTGGAAGATTTGAAGGCGCGTATGGAGGGTGCGCGAAGCCTGTTCTTGGAACACTTGCATGAGGCAAACAAGGCCTGGAGCAAGTCCTTCCAGGATGAAGCAGCATTGGGCGGCCTGCCCGTTGCGTTCAAGCAGCAAATGGCCAGGCAAGCGCGCGAACAGGGCCAGTCCGGTTGGTTGCTGACACTTGACGATGAATCGTTTCGCATCGTCACCCGCTATGCCGACGACTCCAGCCTGCGCAAGCAAATGTACGTCGCCTACAGCACGCGCGCTTCGGATCAAGGACCCCATGCCGGGATTTACGACAACGGCGAAGTGCTGCGCCAGTTGCTCGAGGATCGCCATGAATTCGCGACGCTGCTCGGTTATTCGAATTACGCGCAGATGGCGATCGAGCCGGAGCAAGCACAGTCGCCAGAGGAGGTCCTGTCATTTCTCAACGGGCAGCTCGAACAGCACCAAGCCTCGTTCGACGAGGACAAGAAGCAGCTCGATGCATTCGCCAGGACGCAAGGCTTCAGCAAGGTGGAGCCTTGGGATTATCTCTACCTGGCCCAGCAGCTTCGTCGGCAAACGGCCGGCGTTTCGGAACAGGACGTCAGCGCCTGGTTCCCGTTGGAGCCGACGTTCGCACGGATGCTTTTGGTCGCTCGGGACCTGTTTGGCGTGGATATCATCGTGCGTGCGGACGTGACGACCTGGCACCCGCAGGTGCGGCTTTTCGAGGTCAGCGAGCGAGGCGAAACCGTTGGCTATTTCTATTTCGACCCTTTCGAACACGCGGACCAGAATGGCTTTCCACAAACCAGCACCCTGCGAAACCGCCGCATCACCGCCGAGGGGCGGCCTCGTTATCCTGTGGCAGTGCTGAACGGCTGGTTGCCACAAGGCTCCGCTGCGACCCCGCTGTTGCTGGACCATCGTCAGTTACGAGTGCTTTCTCACGAATTGGGACATTGCCTGCACCATGTGTTGAGCCGGGTCGAATACCGCGACGTGTCGGGCATCAGCGAGCTCAGTCGGGACGCCGCCGAATTCGCTGGCGAACTGTTCGAACGGTGGTGCTTCTCCAAACAATTTCTGATCCGAGTATCGAAGCACCACCAGACCGGGGCATCGTTGCCGAACGAAGTCGCCGACCGATTGCTGACGTATCTGAAGACCCAAACGAGTTGGGTCGATGCGGGGCTTTTGCGCGCTGCGTTATTCGACATGGAGCTGCACCGCAGCCACGGCGACGGGCGCACGCCCCAGCAAGTGTTCGATCAGGTCCGCGAGCAAGTCGGCCATTTGCCGGCGTTCGAGAACGAACGCTGGCCCAATGGCCTGGATTACATGGTCACGGGCTATGACGCCGGGATTTATGCCTACGCCTGGTCCCGAACCCTGGCCAAGACCGTATTCAAGCGGTTCAAGCGCAACGGGTTGTTTGACCGAAAGACCGGCAAGGCGCTACGCGAAACGATATTGGAACGCGGCGATTCACGGCCACTGTCCGAGTCCATCGCGGATTTCTTGCAGGCGACCGATCAACGGGAAGGAACAAGCGTCTGA	MQHADNPLLQPYDLPPFSKIQAEHFSPALDQILAESRAKVAEIIETQAPFPTWDDLVLAMDEIHGRLKGFGYVLDRMASTRSGEAWARASLDCEERLDDFQRSLLRNTQLFQLYQRLADSEIAVHFSPVRKRTLKKILRQWHRDGMGSAAQETLEDLKARMEGARSLFLEHLHEANKAWSKSFQDEAALGGLPVAFKQQMARQAREQGQSGWLLTLDDESFRIVTRYADDSSLRKQMYVAYSTRASDQGPHAGIYDNGEVLRQLLEDRHEFATLLGYSNYAQMAIEPEQAQSPEEVLSFLNGQLEQHQASFDEDKKQLDAFARTQGFSKVEPWDYLYLAQQLRRQTAGVSEQDVSAWFPLEPTFARMLLVARDLFGVDIIVRADVTTWHPQVRLFEVSERGETVGYFYFDPFEHADQNGFPQTSTLRNRRITAEGRPRYPVAVLNGWLPQGSAATPLLLDHRQLRVLSHELGHCLHHVLSRVEYRDVSGISELSRDAAEFAGELFERWCFSKQFLIRVSKHHQTGASLPNEVADRLLTYLKTQTSWVDAGLLRAALFDMELHRSHGDGRTPQQVFDQVREQVGHLPAFENERWPNGLDYMVTGYDAGIYAYAWSRTLAKTVFKRFKRNGLFDRKTGKALRETILERGDSRPLSESIADFLQATDQREGTSV	PGPT0020985_2026	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020985-prlC-K01414	NA	NA
D1-36_05069	681			hypothetical protein	ATGCTCAAGTTCCGCCTTCACCCCGTGTCCTGCCTGGTTCTGCTGCTGATGCTCGCCGCCCCCGCAACCCAGGCTGCGGAGACGACGCAGGCGCGGCCTGCCGAATGGGCCGAGCCGGTGGGAAAGCAGTACAACCTCTACCAGATGTCCCCGACGTTATACCGCAGCGCGTTGCCGGATGAAGGCGCCGTCTCCCTGCTAAAAAGACTCAATATCGGCACGGTCATCAACTTCTTGCCCGATTCGGATGCCAGTTGGCTGGCGGCTCCGGGCATCGAGCGGGTTCAATTGCCTTATCGCACCAATCACGTCGACGACAGCGATATTCTAAAGGCCCTTCGAACCATCGAGGATGCCGAGGCTCATGGCCCGGTGCTCATGCATTGCAAGCATGGCTCGGACCGCACCGGCTTAGTGGCCGCCATGTACAGGATTGTCGTCCAAGGCTGGAGCAAGGAGGACGCGCTGGAAGAGATGACCGAGGGCGGCTTCGGTGACAGTCATTCTTTCAAGGACGGGGTCCGCTACGTCATGCGGGTTGACGTGGAGAAACTGCGCACGGCATTGAAGAACGGCGATTGCAGCACCAGCGTTTTTGCCCTGTGCTCGCTCAAGAGCTGGGTCAACTCAACGACGACGGCGCATCATCTCGACCCTCAGACGCTTGTTCCTTCCCGTTGA	MLKFRLHPVSCLVLLLMLAAPATQAAETTQARPAEWAEPVGKQYNLYQMSPTLYRSALPDEGAVSLLKRLNIGTVINFLPDSDASWLAAPGIERVQLPYRTNHVDDSDILKALRTIEDAEAHGPVLMHCKHGSDRTGLVAAMYRIVVQGWSKEDALEEMTEGGFGDSHSFKDGVRYVMRVDVEKLRTALKNGDCSTSVFALCSLKSWVNSTTTAHHLDPQTLVPSR				NA	NA	NA	NA	NA
D1-36_05070	384			hypothetical protein	ATGACGCGCGTGAATGTTTCTCTCAAAGCCCTGCTGATATCTGCTGCCCTGGTTCTGCCTGGATTGGCGATGGCTGCCGAGCCTGCAATGGAGAAGGATGGCATGTTCACTGACCACAAGGGTATGACCCTTTATACCTTTGCCAAGGACTCGGCCGGCAAGTCCGCATGCAATGGCCAGTGCGCGGTTAATTGGCCGCCGCTGATGGCCGAGAAAGGAGATGAATCCAAGGGGGACTGGACCGTGATCAAGCGTGACGATGACTCGATGCAGTGGGCCTACAAGGGTAAACCACTGTACACCTTCGTAATGGACAAGAAGGCCGGAGACATGACTGGCGACGGCAAGATGGACGGTGCATGGAAAGTGGCCAAGACTAAATGA	MTRVNVSLKALLISAALVLPGLAMAAEPAMEKDGMFTDHKGMTLYTFAKDSAGKSACNGQCAVNWPPLMAEKGDESKGDWTVIKRDDDSMQWAYKGKPLYTFVMDKKAGDMTGDGKMDGAWKVAKTK				NA	NA	NA	NA	NA
D1-36_05071	690	phoB	COG0745	Phosphate regulon transcriptional regulatory protein PhoB	ATGGTTGGCAGGAGCATTCTGATCGTCGACGACGAGGCGCCCATTCGCGAGATGATCGCCGTTGCGTTGGAGATGGCCGGCTATGACTGCATGGAAGCAGAGAACTCCCAACAGGCCCACGCCATCATCGTCGACCGCAAGCCGGACCTGATTTTGCTGGACTGGATGCTGCCCGGCACGTCTGGCATCGAATTGGCGCGGCGCCTCAAGCGCGATGAGCTGACCGGCGACATTCCGATCATCATGCTCACCGCCAAGGGCGAAGAGGACAACAAGATCCAGGGCCTGGAAGTCGGCGCCGACGACTACATCACCAAGCCGTTTTCCCCTCGGGAACTGGTGGCGCGCCTCAAGGCCGTGCTGCGTCGTGCCGGGCCGACGGATGGCGAAGCGCCCATCGAAGTCGGCGGCCTGCTGCTCGACCCGATCAGCCACCGGGTGACCATCGACGGCAAGCCCGCCGAGATGGGCCCGACCGAATACCGCCTGCTGCAATTCTTCATGACTCACCAGGAGCGCGCCTACACCCGCGGGCAGCTGCTGGACCAGGTCTGGGGCGGCAACGTGTACGTCGAGGAACGCACCGTGGACGTACACATCCGGCGCCTGCGCAAGGCCCTCGGCGATGCCTACGAGAATCTGGTACAAACCGTGCGCGGCACCGGGTATCGTTTCTCGACAAAGGCCTGA	MVGRSILIVDDEAPIREMIAVALEMAGYDCMEAENSQQAHAIIVDRKPDLILLDWMLPGTSGIELARRLKRDELTGDIPIIMLTAKGEEDNKIQGLEVGADDYITKPFSPRELVARLKAVLRRAGPTDGEAPIEVGGLLLDPISHRVTIDGKPAEMGPTEYRLLQFFMTHQERAYTRGQLLDQVWGGNVYVEERTVDVHIRRLRKALGDAYENLVQTVRGTGYRFSTKA	PGPT0002660_1206	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-EXOPOLYSACCHARIDE_PRODUCTION|EPS	CE-EPS-GLYCAN_METABOLISM	CE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0002660-phoB-K07657	NA	NA
D1-36_05072	1323	phoR		Phosphate regulon sensor protein PhoR	GTGAATCAAAACTGGCATGGCACCCTCATCCGCCATATGTTGTTGCTGGTTACCGGATGCCTGTTGATCGGCCTGATCACCGGATATTACGGCTGGAGCCTGGCCGTGGGGCTGGCGCTTTACCTTGCCTGGACCCTCAAGCAATTGCTGCGCCTGCATGAGTGGCTGCGCCTGCACCAACCCGACGAAGCCCCGCCCGATGGCTACGGGCTGTGGGGCGAGGTGTTCGACAGCATCTATCATCTGCAACGGCGCGACCAGCGCGTTCGTGGCCGCCTGCAAGCGGTGATCGACCGCGTCCAGGAATCCACCGCGGCGCTCAAAGACGCGGTGATCATGCTCGACAGCGAAGGCAACCTGGAGTGGTGGAACCGCGCCGCCGAAACCCTGCTGGGCCTCAAGACCCCCCAGGACAGTGGCCAACCGGTGACCAACCTGGTTCGCCATCCGCGGTTCAAGGAATATTTCGAGCAGGACAACTACGCCGAACCGCTGGAAATCCCTTCGCCCACCAACGATCGATTGCGCATCCAGCTCTACATCACCCGCTACGGCAACAACGAGCATTTGATGCTGGTGCGGGACGTGACGCGCATCCATCAGCTGGAACAGATGCGCAAGGATTTCATCGCCAACGTATCCCACGAGCTGCGTACCCCGCTGACGGTGATCTGCGGTTACCTGGAAACCTTGCTCGACAACGTCGAGGAAGTGAACCCGCGCTGGAGCCGGGCCTTGCAGCAGATGCAGCAACAAGGCGGGCGCATGCAGACCTTGCTCAACGATTTGCTGCTGCTGGCGAAACTGGAAGCCACCGATTACCCGTCGGACAACCAGCCGGTACCCATCGACGAACTTCTGCAGATCATCGTCCAGGATGCACAGGAACTGTCCGGCCCCAAGCAACAGGCCATCACCCTCGAAGCCGACCCGGCCGTCCAGCTCAAAGGCAGCGAGGCGGAACTGCGCAGCGCGTTTTCCAACCTGGTGTTCAACGCGGTCAAGTACACGCCCGAACAAGGACGGATCCACGTCCGCTGGTGGGGCGATGAACAGGGCGCGCACCTGAGCGTGCGCGATTCCGGTATCGGCATCGACAGCAAGCACCTGCCGCGCTTGACCGAACGCTTCTACCGGGTCGACTCCAGCCGCAACTCCAACACCGGCGGCACGGGGCTGGGACTGGCCATCGTCAAACACGTCTTGCTGCGCCACCGTGCACGCATGGAAATCAGCAGCGTGCCCGGCCACGGCAGTACCTTCACCTGCCATTTCGCTCCAGCACAGGTGGTTCGCACGCGCCTTCCCAACCGCGACGAGTGA	MNQNWHGTLIRHMLLLVTGCLLIGLITGYYGWSLAVGLALYLAWTLKQLLRLHEWLRLHQPDEAPPDGYGLWGEVFDSIYHLQRRDQRVRGRLQAVIDRVQESTAALKDAVIMLDSEGNLEWWNRAAETLLGLKTPQDSGQPVTNLVRHPRFKEYFEQDNYAEPLEIPSPTNDRLRIQLYITRYGNNEHLMLVRDVTRIHQLEQMRKDFIANVSHELRTPLTVICGYLETLLDNVEEVNPRWSRALQQMQQQGGRMQTLLNDLLLLAKLEATDYPSDNQPVPIDELLQIIVQDAQELSGPKQQAITLEADPAVQLKGSEAELRSAFSNLVFNAVKYTPEQGRIHVRWWGDEQGAHLSVRDSGIGIDSKHLPRLTERFYRVDSSRNSNTGGTGLGLAIVKHVLLRHRARMEISSVPGHGSTFTCHFAPAQVVRTRLPNRDE	PGPT0002705_2477	DIRECT EFFECT	BIO-FERTILIZATION	PHOSPHATE_SOLUBILIZATION	P-SOLUBILISATION-PHOSPHATE_METABOLISM	P-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002705-phoR-K07636	NA	NA
D1-36_05073	1341			hypothetical protein	ATGGACCCTTCCCCTGGCTTGTCCCTCGTTACGCTCTTCGCCGAATTCGGCATGATTCTCTTTGCTTTGATCCTGGTCCTGCTCAACGGATTTTTCGTTGCGGCGGAGTTCGCCATGGTCAAGCTGCGCTCGACCCGGGTCGAGGCCATCGCCGAGCAGCATGGCTGGCGTGGGCATATCCTGCGCACTGTCCATAGCCAGCTCGACGCCTACCTGTCGGCTTGCCAGCTGGGTATTACCCTCGCCTCCCTGGGCCTGGGCTGGGTCGGTGAGCCGGCGTTCGCCCATATCCTCGAGCCGTTGCTGGGCGCGATCGGTGTCGAGTCGCCGGAAGTGATCAAGGGCGTGTCGTTCTTCACTGCGTTCTTCATCATTTCCTACCTGCACATCGTGGTCGGCGAGCTGGCGCCCAAATCCTGGGCGATTCGCAAACCCGAGCTGCTGTCCCTGTGGACGGCCGCGCCGTTGTACCTGTTCTACTGGGCCATGTACCCGGCGATCTACCTGCTCAATGCCAGCGCCAACGCCATCCTGCGCATCGCCGGCCAAGGCGAGCCCGGGCCTCATCATGAACACCACTACAGCCGCGAAGAGTTGAAGCTGATCCTGCACTCCAGCCGTGGCCAGGACCCAAGCGACCAAGGCATGCGCGTGCTGGCTTCCGCCGTGGAAATGGGCGAGCTGGAAGTGGTGGACTGGGCCAACTCCCGGGAAGACCTGGTGACGCTGGAGTTCAACGCGCCGCTCAAGGAAATCCTGGCGATGTTCCGCCGCCACAAGTTCAGCCGTTATCCGGTGTACGACAGCGAGCGCCAGGAGTTCGTCGGCCTGCTGCACATCAAGGACCTGCTGCTGGAACTGGCGGCCCTGGATCACATTCCCGAATCGTTCAACCTGGCCGAACTGACCCGGCCATTGGAGCGCGTGTCGCGGCACATGCCGTTGTCGCAATTACTGGAACAATTCCGCAAGGGCGGCTCGCACTTCGCCGTGGTCGAAGAGGCCGATGGCAACATCATCGGCTACCTGACCATGGAAGACGTGCTGGAAGTGCTGGTGGGCGACATCCAGGACGAACACCGCAAGGCCGAGCGCGGCATCCTGGCCTACCAGCCGGGCAAGCTGCTGGTGCGCGGCGACACGCCGCTGTTCAAGGTCGAACGCCTGTTGGGGATCGACCTGGACCACATCGAAGCCGAGACCCTGGCCGGGCTGGTCTATGAAACCCTCAAGCGCGTGCCGGAAGAGGAAGAAGTGCTGGAAGTCGAAGGCCTGCGGATCATCATCAAGAAGATGAAGGGGCCCAAGATCATCCTGGCGAAGGTGTTGATGCTCGATTGA	MDPSPGLSLVTLFAEFGMILFALILVLLNGFFVAAEFAMVKLRSTRVEAIAEQHGWRGHILRTVHSQLDAYLSACQLGITLASLGLGWVGEPAFAHILEPLLGAIGVESPEVIKGVSFFTAFFIISYLHIVVGELAPKSWAIRKPELLSLWTAAPLYLFYWAMYPAIYLLNASANAILRIAGQGEPGPHHEHHYSREELKLILHSSRGQDPSDQGMRVLASAVEMGELEVVDWANSREDLVTLEFNAPLKEILAMFRRHKFSRYPVYDSERQEFVGLLHIKDLLLELAALDHIPESFNLAELTRPLERVSRHMPLSQLLEQFRKGGSHFAVVEEADGNIIGYLTMEDVLEVLVGDIQDEHRKAERGILAYQPGKLLVRGDTPLFKVERLLGIDLDHIEAETLAGLVYETLKRVPEEEEVLEVEGLRIIIKKMKGPKIILAKVLMLD				NA	NA	NA	NA	NA
D1-36_05074	897			hypothetical protein	ATGCTCGTGCCGTTGTTGTTCGCCTGTGGTCTCGTCCTGGCCGCCACCCCGGCCCTGGCCATGACCATCTACAAATCCACCGATGCCAATGGCGTGGTTTCCTATAGCGACCGCCCCAGCAAAGGCGCCCAGGTGTTCGTGTTCCGTGATCGGATGGTCGAACGCCTGGAGCGGCAGGTGTTCCTCGATATCAAGAAGCAGAAGGGCGCGGACGCGGTTTACGTGCGCAATGACCTGTATGCGCCCGTCGAGATCGAGCTGAGTTTCGTCGGGTTGCGCAACGTCAGCGGGGCGCCGAGCCGGCCGATTCGTCGGGTGATGCCAGCGCGCAGCAACCTGCGCCTGGCGCTGCTCACCGCCACCCGGCCCGGCAGGCCCCTCGTGTACACCCCAAGGTTCGAATATTCCCTGGGCGACCCGGCAGGCACCGCGCAGGCGTATCGCTACCCGCTGCCCTGGGTCGGCGGGCCGTTTCGATTGAGCCAGGGTGCCAATGGCCAATACAGCCACTACGGTCCCAAGAACCGCTACGCCATGGACATCGCGATGCCCGAGGGCACGCCGATCATCGCGGCGCGGGGCGGCGTGGTGGTCAAGACCGAAAACTCGCAGACCGGACGCGGCACCGACCCTTCCGGCAACTTCGTGCGCGTGCTGCATGACGACGGGACCATGGGTGTCTATCTGCACCTGCAAAAGGGCTCGGTGAGCGTACGGGAAGGGCAGCGGGTGGCGGTCGGTACGCCGTTGGCGCTCTCGGGAAACACCGGCAACAGCTCCGGCCCGCACCTGCATTTCGTGGTACAGCGCAATACCGGGTTGGGGCTGGTGTCGATTCCCTACCAGTTCAACCAACCGGTGGGCGACCTGCCCAATTTTGCGGTGGGTAAGCAGTAG	MLVPLLFACGLVLAATPALAMTIYKSTDANGVVSYSDRPSKGAQVFVFRDRMVERLERQVFLDIKKQKGADAVYVRNDLYAPVEIELSFVGLRNVSGAPSRPIRRVMPARSNLRLALLTATRPGRPLVYTPRFEYSLGDPAGTAQAYRYPLPWVGGPFRLSQGANGQYSHYGPKNRYAMDIAMPEGTPIIAARGGVVVKTENSQTGRGTDPSGNFVRVLHDDGTMGVYLHLQKGSVSVREGQRVAVGTPLALSGNTGNSSGPHLHFVVQRNTGLGLVSIPYQFNQPVGDLPNFAVGKQ				NA	NA	NA	NA	NA
D1-36_05075	924	cheB_6		Protein-glutamate methylesterase/protein-glutamine glutaminase	ATGAGTAAGGTCAGTGTGTTGGTCGTGGACGATGCTTCGTTCATTCGTGACTTGGTGAAGAAGTGCCTGCGCAACTACTTCCCAGGTATCCGCATTGAAGACGCGGTGAACGGCAAGAAAGCCCAGGCCCTGCTGGCCCGTGAAGCGTTCGACCTGGTGCTGTGCGACTGGGAAATGCCGGAGATGTCCGGCCTGGAACTGTTGACCTGGTGCCGCCAGCAGGACAACCTCAAAGGCATGCCCTTCGTGATGGTGACCAGCCGTGGCGACAAGGAGAACGTGGTCCAGGCCATCCAGGCCGGCGTATCCGGCTACGTCAGCAAGCCTTTCACCAATGAACAGCTGCTGACCAAGGTCAAACAGGCCCTGAACAAGGTTGGCAAGCTCGACACACTCATGAACAGCGCGCCGACCAAGATGAACTCGGCGTTTGGCAATGACTCCCTCAGCGCCCTGACCGGTGGCAAGCCCCCGACGGCGGCTGTTGCGTCGGCCCCCGCCGCCCCTGTGCCCGCCCCAGCTGCTCCAGCCCGTGGTTTGCTCAACAGCCCGCCGGTCAAGGCACCGGCCGCCACCACTTCGCCGACCAACCGTGGCCAAGGCCAGTTGCGCCTGTCCAGCGGCACCCAGCAATGCGTGATCAAGGCCCTGAGCCTCAAGGAAGCGCTGCTGGTGGTCAAGCGCACCGATACGCTGCCGCAAGTGCTGGAAAGCTCGGTACTGGATATGGAACAAGGCGACAACGCCGAGACCGCTCGTCTGAACGGCTACCTGCACGCCATCGTCGCCCATGAGCAGACGCCCGACAGCGAATGGTTGCAACTGACCTTCCGCTTCGTCGACAAAGACCCGCAGAAACTCGACTACATCTCCCGCCTGATCGCCCGCGGCACCGCCCAGAAGCACTTCGTACCGGGCGCCTGA	MSKVSVLVVDDASFIRDLVKKCLRNYFPGIRIEDAVNGKKAQALLAREAFDLVLCDWEMPEMSGLELLTWCRQQDNLKGMPFVMVTSRGDKENVVQAIQAGVSGYVSKPFTNEQLLTKVKQALNKVGKLDTLMNSAPTKMNSAFGNDSLSALTGGKPPTAAVASAPAAPVPAPAAPARGLLNSPPVKAPAATTSPTNRGQGQLRLSSGTQQCVIKALSLKEALLVVKRTDTLPQVLESSVLDMEQGDNAETARLNGYLHAIVAHEQTPDSEWLQLTFRFVDKDPQKLDYISRLIARGTAQKHFVPGA				NA	NA	NA	NA	NA
D1-36_05076	762	phoU	COG0704	Phosphate-specific transport system accessory protein PhoU	ATGATTTCGAAGGAAGGCCTCACTCATCACATTTCCGCGCAATTCAACGCCGAGCTTGAAGAGGTGCGCAGCCACCTGCTGGCGATGGGCGGGCTGGTGGAAAAGCAGGTCAACGACGCGGTGACCGCGCTGATCGAGGCTGATTCCGGCCTGGCCCAGCAGGTGCGCGAGATCGATGACCAGATCAACCAGATGGAACGCAACATCGACGAAGAGTGCCTGCGCATCCTTGCCCGTCGCCAGCCGGCCGCTTCCGACCTGCGCCTGATCATCAGCATTTCCAAGTCGGTGATCGACCTTGAGCGGATCGGCGACGAAGCCACCAAGATCGCCCGTCGTGCCATCCAATTGTGCGAAGAAGGCGAAGCCCCGCGCGGTTACGTCGAGGTTCGCCACATTGGTGACCAGGTGCGCAACATGGTCCGCGACGCGCTGGACGCCTTTGCCCGTTTCGACGCCGACCTGGCGCTGTCGGTGGCGCAGTACGACAAGATCATCGACCGCGAATACAAGACCGCCCTGCGTGAACTGGCGACCTACATGATGGAAGACCCACGCTCTATCTCGCGGGTGTTGAGCATCATCTGGGTGCTGCGTTCCCTGGAGCGTATCGGCGATCATGCGCGCAACATCTCCGAATTGGTCATCTACCTGGTGCGTGGCACCGATGTGCGCCACATGGGGCTCAAGCGGATGAAGGAAGAAGTGGAGGGCACCCCGTCCGAAACCGCTAATGTTCCCGGTGAAACTGACGATAAGTAA	MISKEGLTHHISAQFNAELEEVRSHLLAMGGLVEKQVNDAVTALIEADSGLAQQVREIDDQINQMERNIDEECLRILARRQPAASDLRLIISISKSVIDLERIGDEATKIARRAIQLCEEGEAPRGYVEVRHIGDQVRNMVRDALDAFARFDADLALSVAQYDKIIDREYKTALRELATYMMEDPRSISRVLSIIWVLRSLERIGDHARNISELVIYLVRGTDVRHMGLKRMKEEVEGTPSETANVPGETDDK	PGPT0002630_180	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ARSENIC_RESISTANCE	ARSENIC_RESISTANCE-PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002630-phoU|phoY-K02039	NA	NA
D1-36_05077	834	pstB	COG1117	Phosphate import ATP-binding protein PstB	ATGCAACACGAAGCACACACACACGGCATCAACATGTCGGCCCTGGGCCGCGACAAGCAGAGCTTGAACCTGGCTCAGGAAACCGTCGCCATCGAAGTGCCCGGCCTGAACCTGTTCTACGGCCAGAAGCAGGCGTTATACGACGTCAGCCTGAACATCCCGAAACAGCGCGTCACCGCGTTCATCGGCCCGTCGGGCTGCGGCAAGTCGACCTTGCTGCGCACCTTCAACCGCATGAACGACCTGGTGGACGGTTGCCGCGTCGAAGGCGAGATCAACCTCTACGGCAACAACATCTACCGCAAGGGCGAAGACGTGGCCGAGCTGCGCCGCCGCGTTGGCATGGTGTTCCAGAAGCCCAACCCGTTCCCGAAAACCATCTACGAGAACGTGGTCTACGGCCTGCGCATCCAGGGCATCAACAAGAAGCGGGTCCTCGACGAAGCCGTGGAATGGGCCCTCAAGGGCGCGGCGCTGTGGGACGAGGTCAAGGATCGCCTGCACGATTCGGCCCTGGGCCTGTCCGGCGGTCAGCAGCAACGTCTGGTCATCGCCCGCACCATCGCGGTGGAGCCGGAAGTCCTGCTGCTCGACGAACCTTGCTCGGCACTGGACCCGATCTCGACACTGAAGGTCGAGGAGCTGATCTACGAGCTCAAGTCCAAGTTCACCATCGTCATCGTGACCCACAACATGCAGCAGGCGGCGCGTGTGTCCGACTACACCGCGTTCATGTACATGGGCAAGCTGGTGGAGTTCGGTGACACCGATACCTTGTTTACCAATCCGGCCATGAAGCAGACCGAGGACTACATCACAGGTCGCTATGGCTAG	MQHEAHTHGINMSALGRDKQSLNLAQETVAIEVPGLNLFYGQKQALYDVSLNIPKQRVTAFIGPSGCGKSTLLRTFNRMNDLVDGCRVEGEINLYGNNIYRKGEDVAELRRRVGMVFQKPNPFPKTIYENVVYGLRIQGINKKRVLDEAVEWALKGAALWDEVKDRLHDSALGLSGGQQQRLVIARTIAVEPEVLLLDEPCSALDPISTLKVEELIYELKSKFTIVIVTHNMQQAARVSDYTAFMYMGKLVEFGDTDTLFTNPAMKQTEDYITGRYG	PGPT0002615_923	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
D1-36_05078	1671			hypothetical protein	GTGAAACAGAACTCCCTGAAAGGATGGTTCAAGAGCGGCGCCCCTGGCGTCTGGATCAGCGGTGGCGCGGTGTCCATCGCGGTCATCATGACCATTGGCCTGCTGGCGGTGATTGCCGTGCGCGGCCTCGGCCACTTCTGGCCGGCGGACCTGATCCACGCCAATTACAACGTGCCGGGCATGCCTGCGCACCTGGTGGTAGGCGAAGTCGTACAGAAAGAAGAAGTGCCTCGCGAGCGCCTGAAAAGTGCTGGCCTGCCGGTGCCGGACGAAGGCCCTGAGTTCATGACCCGTGAATTGGTCAAGGTCGGCAATCGTGACCTCAACGGCACCGATTTCACCTGGATCGTCGGCGACTGGCTGACCAACCAGACCACACCACCGGAGCTGATGGCCCTTGAGCGCCGCGAGTGGGGCAATTTCTACGGCTACCTGGTCAACGTCAAGGAACAAGGCAAGGTCATCGCCGAGGGCGAAGCGGCGTGGCCGCAGTTGCAGGCGCGTATCGAGCGGGTCAACCAATTGGCCGACGAGCTCAAGACCCTGGAAAAAACCGACATCGGCGCGATCAACGCTGGCCTGGAGCGCATCCGCCTGCACGGTCGCAAGCTGGAGCTGGACGGCAAGCTCGACGCCGCCGCCCAGGCCGACCTGGAAAGCGAACGCGCCGAACTCAACGCTCGCTACAAGGACATCGAGGCGCGCCTGGCCGACCTGCATGGCCAGTTCAATCGCGACAGCCTGACGGCCCGCGATGCCAACGGCAAGGAAGTGGAAATCGAAATCGGCAAAGTGGTGCATGCCTACCAGCCAAACGGCATGGGCACGCTCACCAAGCTGGGTTTCTATTTCAGCAAGGTCTGGGAATTCCTCAGCGACGATCCGCGTGAAGCCAACACCGAAGGCGGTATCTTCCCGGCGATTTTCGGCACCGTGATGATGACCCTCATCATGGCAATGATCGTGACGCCGTTCGGCGTGCTGGCGGCGGTTTACCTGCGTGAATACGCGCGCCAGGGGACGATGACCCGTCTGATCCGCATTGCGGTGAACAACCTCGCCGGTGTCCCGGCCATCGTCTACGGCGTGTTCGGCCTGGGCTTCTTCGTCTACGTGCTGGGCGGTTCGGTTGACCGACTGTTCTTCCCCGAAGCCTTGCCGGCGCCGACTTTCGGTACCCCAGGCCTGCTCTGGGCATCGTTGACCCTGGCGTTGCTGGCGGTGCCGGTGGTAATCGTCGCCACCGAAGAAGGTCTGGCAAGGATTCCACGTACCGTGCGCGAAGGCTCTCTGGCCCTCGGCGCGACCAAGGCCGAGACCCTGTGGAAAATCGTCCTGCCGATGGCGAGCCCGGCGATGATGACAGGCATGATCCTCGCGGTGGCCCGTGCCGCTGGCGAAGTTGCGCCGTTGATGTTGGTGGGTGTGGTGAAACTTGCGCCGTCGCTGCCGCTGGATGGCAACTACCCGTACCTGCACCTGGACCAGAAGATCATGCACCTGGGCTTCCATATCTATGACGTCGGCTTCCAGAGCCCGAACGTAGAGGCTGCCCGGCCGTTGGTCTACGCCACGGCGCTGCTGCTGGTGCTGGTGATCGCGATCCTGAACCTGTCGGCGGTGTGGATTCGTAACCACCTGCGCGAAAAGTACAAAGCACTGGATAGTTGA	MKQNSLKGWFKSGAPGVWISGGAVSIAVIMTIGLLAVIAVRGLGHFWPADLIHANYNVPGMPAHLVVGEVVQKEEVPRERLKSAGLPVPDEGPEFMTRELVKVGNRDLNGTDFTWIVGDWLTNQTTPPELMALERREWGNFYGYLVNVKEQGKVIAEGEAAWPQLQARIERVNQLADELKTLEKTDIGAINAGLERIRLHGRKLELDGKLDAAAQADLESERAELNARYKDIEARLADLHGQFNRDSLTARDANGKEVEIEIGKVVHAYQPNGMGTLTKLGFYFSKVWEFLSDDPREANTEGGIFPAIFGTVMMTLIMAMIVTPFGVLAAVYLREYARQGTMTRLIRIAVNNLAGVPAIVYGVFGLGFFVYVLGGSVDRLFFPEALPAPTFGTPGLLWASLTLALLAVPVVIVATEEGLARIPRTVREGSLALGATKAETLWKIVLPMASPAMMTGMILAVARAAGEVAPLMLVGVVKLAPSLPLDGNYPYLHLDQKIMHLGFHIYDVGFQSPNVEAARPLVYATALLLVLVIAILNLSAVWIRNHLREKYKALDS	PGPT0002610_287	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_ANTIMONY_RESISTANCE	ANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002610-pstA-K02038	NA	NA
D1-36_05080	999	pstS_2	COG0226	Phosphate-binding protein PstS	ATGAAACTGAAGCGTTTGATGGCGGCAATGACCTTTGTCGCTGCTGGCGTTGCGACTGCCAACGCGGTTGCCGCTGTTGACCCTGCGATCCCGAGCTACACCAAGACCACTGGTGTGTCGGGCAACCTGTCCAGCGTCGGCTCCGATACCCTGGCCAACCTGATGACCTTGTGGGCCGAGAACTACAAGAAAGAATACCCGAACGTAAACATCCAGATTCAGGCCGCCGGTTCCTCCACCGCGCCACCCGCACTCACCGAAGGCACCGCCAACCTGGGCCCGATGAGCCGCAAGATGAAAGACAACGAGCTGCAGGCCTTCGAACAGAAGTACGGCTACAAGCCAACCGCTATCCCGGTTGCCGTGGACGCCCTGGCCGTGTTCGTGCACAAGGACAACCCGATCAAGCACCTGACCATGGCCCAGGTCGATGCGATCTTCTCCTCGACTCGCCTGTGCGGCGCCAAGGCTGACGTCAAGACCTGGGGCGACCTGGGCGTGACCGGCGACCTGGCCAACAAGCCAGTCCAGCTGTTCGGTCGCAACTCGGTGTCCGGCACCTACGGCTACTTCAAGGAAGAAGCCCTGTGCAAGGGCGACTACAAGCCAAACGTCAACGAGCAGCCGGGTTCGGCTTCGGTTGTGCAGTCGATCAGCAGCTCGCTTAACGGCATCGGCTACTCGGGTATCGGCTACAAGACCGCCAGCGTGAAAACCGTTGCCCTGGCCAAGAAAGAAGGCGGCGAGTTCATCGAAGACACCGAAGAAAACGCTCTGAACGGCAAGTACCCGCTGTCGCGTTTCCTCTACGTCTACGTCAACAAGGCGCCGAACAAGCCTCTGGCCCCGCTGGAAGCCGAGTTCGTGAAGCTGATCCTGTCCAAGCAAGGCCAGGAAGTCGTGGTCAAGGACGGCTACATCCCGGTTCCAGCCAAAGTTGCCGCCAAGGCACTGGCTGACCTGGGTCTGCAGGAAGGCGGCAACGTCGCCAAGCAGTAA	MKLKRLMAAMTFVAAGVATANAVAAVDPAIPSYTKTTGVSGNLSSVGSDTLANLMTLWAENYKKEYPNVNIQIQAAGSSTAPPALTEGTANLGPMSRKMKDNELQAFEQKYGYKPTAIPVAVDALAVFVHKDNPIKHLTMAQVDAIFSSTRLCGAKADVKTWGDLGVTGDLANKPVQLFGRNSVSGTYGYFKEEALCKGDYKPNVNEQPGSASVVQSISSSLNGIGYSGIGYKTASVKTVALAKKEGGEFIEDTEENALNGKYPLSRFLYVYVNKAPNKPLAPLEAEFVKLILSKQGQEVVVKDGYIPVPAKVAAKALADLGLQEGGNVAKQ	PGPT0002625_4355	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
D1-36_05081	1299	abaF		Fosfomycin resistance protein AbaF	ATGACCACTGCGCCTTCGAGCACGGCGACGCCCGCACAACCCGCCCGTCCGCTGACCCGTAACGACTACAAGACCCTGTCGCTTTCTGCCCTGGGCGGCGCGCTGGAGTTCTACGATTTCATTATTTTCGTGTTCTTCGCCACCGTGGTCGGCAAGCTGTTCTTCCCCGCTGAAATGCCCGAATGGCTGCGCCTGATGCAAACGTTTGGCATTTTTGCCGCTGGATATCTGGCCCGGCCGCTGGGCGGGATCATCATGGCTCACTTCGGCGACCTGCTGGGGCGCAAGAAAATGTTCACCCTGAGCATTTTCATGATGGCCGTGCCGACCCTGATCATGGGTTTGTTGCCGACCTACGCGCAGATCGGCATGTGGGCGCCGATTCTCTTGTTGCTGATGCGCGTGATCCAGGGGGCGGCGATCGGTGGCGAGGTACCGGGGGCCTGGGTATTCGTTTCCGAGCACGTGCCGGCGCGCCACATCGGCTACGCCTGCGGCACCCTGACCTGCGGCCTGACGGCGGGGATTCTGTTGGGTTCGTTGGTCGCCACCGCCATCAATAGCATTTATACGCCGGTGGAAGTGGCGGATTACGCTTGGCGAATCCCGTTCCTGCTGGGCGGCGTGTTCGGCCTGTTTTCGGTGTACCTGCGTCGCTGGCTGCACGAAACCCCGGTGTTTGCCGAACTGCAATTGCGCAAGGCCTTGGCCGAAGAAGTGCCGTTGCGCGCCGTGCTGCGCGACCATCGTGGAGCCATTGTCATTTCCATGCTGTTGACTTGGCTGCTGTCGGCCGGCGTCATCGTAGTCATCCTGATGACCCCGACGGTGTTGCAGACGGTGCACCACTTCAGCCCGACTACGGCGCTGCAGGCCAATAGCCTGGCAATCGTATTCCTGAGTTTCGGTTGCATTGGCGCCGGTGTATTGGCCGACCGCTTTGGTGCCGGCCGGGTGTTCGTGTTTGGCAGCGGTTTGTTGTTGATCACGTTCTGGACCTTCTATCACAGCCTGTTCACTCACCCTGAGTGGCTGTTCCCGCTCTACGCCTTGAGTGGCTTGCTGGTGGGCACCATCGGCGCAGTGCCCTACGTCATGGTCAATGCCTTCCCGGCCGTGGTGCGCTTCAGTGGGCTATCGTTTTCCTACAACCTGGCCTACGCAATCTTCGGCGGTTTGACGCCAATGATCGTGACCCTGCTGTTGAAAGAAAGCCCGATGGGGCCGGCGTATTACGTCGCGATCATCTGCGGCATCGGGATGGTGATCGGTGGGTATCTTTGGAAGAAAGGCCGCTAA	MTTAPSSTATPAQPARPLTRNDYKTLSLSALGGALEFYDFIIFVFFATVVGKLFFPAEMPEWLRLMQTFGIFAAGYLARPLGGIIMAHFGDLLGRKKMFTLSIFMMAVPTLIMGLLPTYAQIGMWAPILLLLMRVIQGAAIGGEVPGAWVFVSEHVPARHIGYACGTLTCGLTAGILLGSLVATAINSIYTPVEVADYAWRIPFLLGGVFGLFSVYLRRWLHETPVFAELQLRKALAEEVPLRAVLRDHRGAIVISMLLTWLLSAGVIVVILMTPTVLQTVHHFSPTTALQANSLAIVFLSFGCIGAGVLADRFGAGRVFVFGSGLLLITFWTFYHSLFTHPEWLFPLYALSGLLVGTIGAVPYVMVNAFPAVVRFSGLSFSYNLAYAIFGGLTPMIVTLLLKESPMGPAYYVAIICGIGMVIGGYLWKKGR				NA	NA	NA	NA	NA
D1-36_05082	405		COG1607	putative acyl-CoA thioester hydrolase	ATGATAGAGCTCGAACAAGAAGATCCAATCCCGCAAGGCGACCTGGCCCTGCAAATCACCGCGCTTCCCCGTGATACCAACGGCTTCGGCGACATTTTCGGCGGCTGGCTGGTGTCCCAGATGGACCTGGCGGGCACTGCGATGGCCAGCAAGGTGGCGGGCGGCCGCGTGGCGACCGTGGCGATTGATCGCATGGCGTTCCTGGTGCCGGTGGCGGTGGGTGCGCAGTTGTCCTTCTATACCCAGGCGTTGGAGATCGGCCGCAGCTCGATCCAGATGATGGTCGAGGTGTGGAGCGATGATCCGTTGTCCAGCGAATGGCGCAAGGTCACCGAAGCGGTGTTCGTCTTCGTCGCCATCGACGGCAGTGGCCGCACTCGCTCGGTTCCACCACGCGCCCGTTAA	MIELEQEDPIPQGDLALQITALPRDTNGFGDIFGGWLVSQMDLAGTAMASKVAGGRVATVAIDRMAFLVPVAVGAQLSFYTQALEIGRSSIQMMVEVWSDDPLSSEWRKVTEAVFVFVAIDGSGRTRSVPPRAR	PGPT0001830_309	DIRECT EFFECT	BIO-FERTILIZATION	POTASSIUM_SOLUBILIZATION	K-SOLUBILIZATION-ORGANIC_ACID_METABOLISM	K-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001830-yciA-K10806	NA	NA
D1-36_05083	900	yeaD_2	COG0676	Putative glucose-6-phosphate 1-epimerase	ATGCCTACGCCCAATGTCGAAGCCGTCAAACTGGATGAACTGAACGGTTGGCGCATCCGCCACGGTCAGGCCGAGTTGCTGGTGGCCCAGCAAGGCGCGCATATCCTCAGCTATCAGGTGGATGGCCAGCCGCCGCTGATCTGGCTCAATGACCAGGCTACGTTCAAGGCGGGCAAGAGCATCCGCGCCGGTGTGCCGGTGTGCTGGCCCTGGTTCGGCAACCTGACCCGCAACCCCGACAGCATCCAGGCCATGCGCGTCAGCAATGAACCGGCCACGGCCCACGGCCTGGTGCGAGCGATGGATTGGGAATTGAAAGGCATCGAGGCCGTGGGCGAGCGCCTGAAAATCGAATTCGTGCTGCCCTACCCGGAAAACGGGCTGCCTGGGTGGCCCCATCAGGTCGACCTGACGCTGACCATCGTGATGGATGAGCAACTGCATATCCGCCTCACCAGCCATAACCGAGGCAGCGAGACCGTCAGCCTCAGCCAGGCGCTGCACAGCTATTTCGCGGTCAGCGATGTGCGCAACGTACAGGTCGACGGGGTCGACGGCCTGGACTACATCGAGACGCTGGACGACTGGAATACACACACCCAGGCGGGCGACCTGCGCTTCATCGGTGAAACCGACCGTATCTATCTCGATACCCCACCGACACTGAGCATCGTCGACCCCCATTGGAATCGACGCATAGAACTGACCGCTAGCGGATCACGCTCGGCGGTGATCTGGAACCCCTGGACCGAGCGCGCCAAGGCCTTCAGCGACATGGCCGACGATGGCTGGCAGCGCATGCTTTGCATCGAGACGGCCAACGTGATGGATGATGCGGTGACGTTGTTGCCGGACGCCAGCCATACCCTTGGCGTGAGTATTTGCAGCAAGCCGCTCTGA	MPTPNVEAVKLDELNGWRIRHGQAELLVAQQGAHILSYQVDGQPPLIWLNDQATFKAGKSIRAGVPVCWPWFGNLTRNPDSIQAMRVSNEPATAHGLVRAMDWELKGIEAVGERLKIEFVLPYPENGLPGWPHQVDLTLTIVMDEQLHIRLTSHNRGSETVSLSQALHSYFAVSDVRNVQVDGVDGLDYIETLDDWNTHTQAGDLRFIGETDRIYLDTPPTLSIVDPHWNRRIELTASGSRSAVIWNPWTERAKAFSDMADDGWQRMLCIETANVMDDAVTLLPDASHTLGVSICSKPL	PGPT0001875_3	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
D1-36_05084	537			hypothetical protein	ATGCGCCGTCTAGTGTTGACCCTTCTTTTGCTGGGCAGTGGCCTGGCCCACGCCGCCGAGCTACCGGAAACCGACTGGCTCGAACTGATGCCCAAGTCGGACCAGAAAGCCCTCGAGGCGATGCCCGAGATCGATCACGACTCCCCCGAAGCCAGTGGCACCTTCACCGAAAAAGGTGGCCTCAAGCAAAGCAAAGGCTTGCCGGCGGTGATGTACTCGACCAAGACCGTGGCGTCGATGAATGACAAGCACCTGCGCATTGGCGGCTATCCGGTTCCTTTGGAAACCGACGCCAAAGGCCGCAGTACGCTGTTTTTCCTGGTGCCTTACCCGGGCGCCTGCATCCACGTTCCCCCGCCGCCGCCCAATCAATTGGTACTGGTGCGCTATCCTAAGGGCGTGAAGCTCGACGACATCTATACGCCGCTGTGGGTCACCGGCACCCTGAAGATCGAGAAGGTCGACAACGACCTGGCGAGCGCGGCGTATGCGCTGGATGCGGAGAAGGTGAGGGTGGTGCAGGAGGCGGATTTGTGA	MRRLVLTLLLLGSGLAHAAELPETDWLELMPKSDQKALEAMPEIDHDSPEASGTFTEKGGLKQSKGLPAVMYSTKTVASMNDKHLRIGGYPVPLETDAKGRSTLFFLVPYPGACIHVPPPPPNQLVLVRYPKGVKLDDIYTPLWVTGTLKIEKVDNDLASAAYALDAEKVRVVQEADL				NA	NA	NA	NA	NA
D1-36_05085	246			hypothetical protein	ATGGGAATCATCGGAACCATTTTAATCGGCTTGATCGTTGGCCTGCTCGCACGCTTCCTGAAGCCCGGCGATGACAGCATGGGCTGGATCATGACTATCCTGCTCGGTATCGGCGGTTCGTTGGCGGCCACTTACGGCGGCCAGGCCCTGGGCATCTATCAGGCCGGCGAAGGCGCGGGCTTCATCGGCGCCCTGGTGGGTGCCATCGTGTTGCTGGTGATCTACGGCCTGATCAAAAGAAACTGA	MGIIGTILIGLIVGLLARFLKPGDDSMGWIMTILLGIGGSLAATYGGQALGIYQAGEGAGFIGALVGAIVLLVIYGLIKRN				NA	NA	NA	NA	NA
D1-36_05086	1086	purK	COG0026	N5-carboxyaminoimidazole ribonucleotide synthase	ATGAAGATCGGTGTAATCGGTGGCGGCCAGTTGGGTCGCATGTTGGCCCTGGCGGGTACGCCGCTGGGGATGAACTTCGCTTTCCTGGACCCGGCGCCGGACGCCTGTGCCGCTGCCTTGGGTGAACACCTGCGGGCCGATTATGGCGACCAGGATCACTTGCGCCAATTGGCCGATGAGGTCGACCTGGTGACCTTCGAGTTCGAAAGCGTCCCGGCTGAAACCGTGGCCTTCCTGTCCCAGTTCGTCCCGGTCTACCCGAGCGCCGAAGCCCTGCGTATCGCCCGCGACCGTTGGTTCGAAAAGAACATGTTCAAGGACCTGGGCATCCCGACGCCGGCCTTTGCCGACATCCAGTCCCAGGCTGACCTGGAAGCCGCGGTCGCTTCAATCGGCCTGCCGGCCGTGCTCAAGACCCGTACCCTGGGTTACGACGGCAAGGGCCAGAAAGTCCTGCGCAACCCTGAAGATGTCGCCGGCACCTTTGCCGAGCTGGGCAGCGTCGGCTGCCTGCTGGAAGGTTTCGTGCCGTTCACCGGTGAAGTCTCGCTCATCGCCGTGCGTGCCCGCGACGGTGAAATCCGCTTCTACCCGCTGGTGCACAACACCCACAAGGACGGGATTCTCAAGCTGTCCGTCGCCAGCACCGACCATCCACTGCAAGCCCTGGCCGAAGACTACTCCAGCCGCGTGCTCAAGCAGCTTGACTACGTTGGTGTGATGGCGTTCGAGTTCTTCGAAGTGGACGGGGGCCTCAAGGCCAACGAAATCGCCCCGCGTGTCCACAACTCCGGGCACTGGACCACTGAAGGCGCCGAGTGCAGCCAGTTCGAAAACCACCTGCGGGCGGTCGCTGGGTTGCCGCTGGGGTCGACCGCCAAGGTCGGTGAAAGCGCGATGCTGAATTTCATCGGCAAAGTGCCGGACACCGAGAAAGTCCTGGCAATCGCCGACTGCCACCTGCATCACTATGGCAAGGCTTTCAAAGTGGGGCGCAAGGTTGGCCACGCCAACCTGCGTTGCGCCGACCGTGCCACGTTGGCCCAGCAGATCATCAAGGTCGAAACGCTGATCGCCGAACAATAG	MKIGVIGGGQLGRMLALAGTPLGMNFAFLDPAPDACAAALGEHLRADYGDQDHLRQLADEVDLVTFEFESVPAETVAFLSQFVPVYPSAEALRIARDRWFEKNMFKDLGIPTPAFADIQSQADLEAAVASIGLPAVLKTRTLGYDGKGQKVLRNPEDVAGTFAELGSVGCLLEGFVPFTGEVSLIAVRARDGEIRFYPLVHNTHKDGILKLSVASTDHPLQALAEDYSSRVLKQLDYVGVMAFEFFEVDGGLKANEIAPRVHNSGHWTTEGAECSQFENHLRAVAGLPLGSTAKVGESAMLNFIGKVPDTEKVLAIADCHLHHYGKAFKVGRKVGHANLRCADRATLAQQIIKVETLIAEQ	PGPT0021550_3367	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021550-purK-K01589	NA	NA
D1-36_05087	492	purE	COG0041	N5-carboxyaminoimidazole ribonucleotide mutase	ATGAGTGCACTGGTTGGCGTGATCATGGGCTCCAAGTCCGATTGGTCCACCCTTAGCCACACCGCCGATATGCTGGAAAAGCTCGGCATCCCTTACGAGGTGAAAGTGGTGTCTGCCCACCGTACCCCGGACCTGCTGTTCCAGTACGCCGAAGAAGCCGACGCGCGTGGCATCGAAGTGATCATCGCCGGCGCCGGTGGTGCGGCCCACTTGCCAGGCATGTGTGCGGCCAAGACTCATTTGCCAGTACTGGGCGTGCCGGTGCAGTCCTCGATGCTCTCGGGTGTCGATTCGTTGCTATCGATCGTGCAGATGCCGGCCGGCATTCCGGTCGCTACCCTGGCCATCGGCAAGGCCGGCGCGATCAATGCCGCCCTGCTGTCGGCGAGTATCCTGGGCGCCAAGCATCCCCAATTTCATACCGTGCTGAAAAAATTCCGCGCTGAGCAGACAGACAGCGTCCTGGACAATCCGGACCCACGCATTGCCTGA	MSALVGVIMGSKSDWSTLSHTADMLEKLGIPYEVKVVSAHRTPDLLFQYAEEADARGIEVIIAGAGGAAHLPGMCAAKTHLPVLGVPVQSSMLSGVDSLLSIVQMPAGIPVATLAIGKAGAINAALLSASILGAKHPQFHTVLKKFRAEQTDSVLDNPDPRIA	PGPT0021545_2795	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0021545-purE-K01588	NA	NA
D1-36_05088	918	yjiE_3		HTH-type transcriptional regulator YjiE	ATGAATCTAGAAAGCAAATGGCTCGAGGACTTCAGTGCCTTGGCCGCGACGCGCAGCTTTTCCCAGGCGGCCGAACGCCGCTTCGTGACGCAACCGGCCTTCAGCCGACGGATCCGCAGCCTTGAAGCGGCGCTGGGGCTGACGCTGGTCAACCGCTCGCGCACGCCGATCGAATTGACGGCGGCGGGGCAGTTATTTCTGGTGACGGCGCGCACGGTGGTCGAGCAATTGGGCGAAGTGCTGCGGCATTTGCATCATCTCGAAGGCGGGCAGGGAGAAGTCATCCAGGTGGCGGCGGCCCACTCCCTGGCGCTGGGCTTCTTCCCCCGTTGGATCGCTCAACTGCGTAACGAAGGTATGAACATCGCCACGCGGCTGGTCGCCACGAACGTCGGCGATGCCGTGCACGCCTTGCGCGAGGGCGGTTGTGACTTGATGCTGGCTTTTTATGACCCCGATTCAGCCATGCAGATGGATCCAGAGATTTTCCCTTCGTTGCACTTGGGCCAGACCGAGATGCTGCCGGTGTGCGCGGCCGATCCACACGCAAGGCCGTTGTTCGACCTCGAAGGCGAAGCCAGCGTGCCGCTGTTGGCCTACAGCGCGGGGGCGTTTCTCGGGCGTTCGGTGAACCAATTGCTGCGCCAGCGTGCGCTGCGCTTTACCACGGTGTACGAGACGGCCATGGCCGACAGCCTGAAAAGCATGGCCCTGGAAGGGCTGGGCATCGCCTGGGTGCCTCACCTGAGCGTGCGCAACGAACTGGCCCGGGGCGAGCTGGTGATCTGCGGCGGGGCGCAATGGCATGTCCCGCTGGAGATCCGCCTGTACCGCTGCGCCCTGGTGCGCAAGGCCAATGTGCGGTTGCTGTGGCGCAAGCTCGAGGGTGGGGTGGTGCAGGGTGTCACGGGATCTTGA	MNLESKWLEDFSALAATRSFSQAAERRFVTQPAFSRRIRSLEAALGLTLVNRSRTPIELTAAGQLFLVTARTVVEQLGEVLRHLHHLEGGQGEVIQVAAAHSLALGFFPRWIAQLRNEGMNIATRLVATNVGDAVHALREGGCDLMLAFYDPDSAMQMDPEIFPSLHLGQTEMLPVCAADPHARPLFDLEGEASVPLLAYSAGAFLGRSVNQLLRQRALRFTTVYETAMADSLKSMALEGLGIAWVPHLSVRNELARGELVICGGAQWHVPLEIRLYRCALVRKANVRLLWRKLEGGVVQGVTGS				NA	NA	NA	NA	NA
D1-36_05089	1425	aspA	COG1027	Aspartate ammonia-lyase	ATGTCCTCCGCTGCATCATTCCGCACAGAAAAAGACCTGCTTGGCGTACTCGATGTACCGGCGCAAGCGTATTACGGCATCCAGACCCTACGAGCGATCAACAACTTTCGTCTCTCCGGTGTCCCGATCTCGCATTACCCTAAACTGGTGGTCGGTCTGGCAATGGTCAAGCAAGCCGCCGCTGACGCCAACCGTGAGTTGGGCCAGCTCAGCGAAGCCAAGCACGCCGCGATCAGCGAAGCCTGTGCACGGTTGATCCGCGGAGATTTCCACGAAGAATTCGTGGTGGACATGATCCAGGGCGGCGCCGGCACGTCGACCAACATGAATGCAAACGAAGTCATCGCCAACATCGCGCTGGAGGCCATGGGTCACCAGAAGGGCGAATACCAGTACCTGCACCCCAACAACGACGTGAACATGGCGCAGTCCACCAACGACGCCTACCCGACCGCGATCCGCCTGGGTCTGCTGCTGGGCCACGACGCGTTGCTGGCCAGCCTCGACAGCCTGATCCAGGCGTTTGCCGCCAAGGGCGAGGAATTCAGCCACGTCTTGAAAATGGGCCGCACCCAACTGCAAGACGCCGTGCCGATGACCCTCGGCCAGGAATTCCGTGCCTTCGCCACCACCCTGAGCGAAGACCTGGCGCGCCTGAAGACCCTGGCGCCCGAGCTGCTGACCGAAGTGAACCTGGGCGGCACCGCCATCGGCACCGGCATCAATGCCGACCCACGCTATCAGGCCCTGGCCGTACAGCGCCTGGCAACCATCAGCGGCCAGCCGCTGGTGCCGGCCGCCGACCTGATCGAAGCCACCTCCGACATGGGCGCCTTCGTGCTGTTCTCCGGCATGCTCAAGCGCACCGCGGTCAAGCTCTCGAAGATCTGCAACGACCTGCGCCTGCTGTCCAGCGGCCCACGCACCGGCATCAACGAAATCAACCTGCCGGCCCGCCAGCCAGGCAGCTCGATCATGCCGGGCAAGGTCAACCCGGTGATTCCGGAAGCGGTCAACCAAGTGGCATTCCAGATCATCGGCAACGACCTGGCCCTGACCATGGCGGCCGAAGGCGGCCAACTACAACTGAACGTGATGGAGCCGCTGATCGCCTTCAAGATCTTCGACTCGATCCGCCTGCTGCAACGGGCCATGGACATGCTGCGCGAGCACTGCATCGTCGGCATCACCGCCAACGAAGCGCGCTGCCGCGAGCTGGTCGAGCACTCGATCGGCCTGGTCACCGCCCTGAACCCGTACATCGGCTATGAAAACGCCACCCGCATCGCCCGTGTTGCCCTGGAAAGCGGCCGCGGCGTGCTGGAGCTGGTGCGCGAAGAAGGCTTGCTCGACGACGCCATGCTCGACGACATCCTGCGCCCGGAAAACATGATTGCTCCGCGTCTGGTCCCGCTCAAGGCTTGA	MSSAASFRTEKDLLGVLDVPAQAYYGIQTLRAINNFRLSGVPISHYPKLVVGLAMVKQAAADANRELGQLSEAKHAAISEACARLIRGDFHEEFVVDMIQGGAGTSTNMNANEVIANIALEAMGHQKGEYQYLHPNNDVNMAQSTNDAYPTAIRLGLLLGHDALLASLDSLIQAFAAKGEEFSHVLKMGRTQLQDAVPMTLGQEFRAFATTLSEDLARLKTLAPELLTEVNLGGTAIGTGINADPRYQALAVQRLATISGQPLVPAADLIEATSDMGAFVLFSGMLKRTAVKLSKICNDLRLLSSGPRTGINEINLPARQPGSSIMPGKVNPVIPEAVNQVAFQIIGNDLALTMAAEGGQLQLNVMEPLIAFKIFDSIRLLQRAMDMLREHCIVGITANEARCRELVEHSIGLVTALNPYIGYENATRIARVALESGRGVLELVREEGLLDDAMLDDILRPENMIAPRLVPLKA	PGPT0020125_1138	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_UTILIZATION	PLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0020125-aspA-K01744	NA	NA
D1-36_05090	1452	alsT	COG1115	Amino-acid carrier protein AlsT	ATGCTCGAAGTCATCAACGACTTCCTCTCAGGGAAAGTGCTGATCGCGCTCATTGTCGGGCTCGGTGGCTACTTCACGATCCGCTCGCGTTTCGTCCAGTTCCGTCATTTCTTTCATATGTTCGCGGTGTTCCGTGACAGCCTGAAAAGCAGCACCGACCAGCTCAGTTCGTTCCAGGCCTTGATGCTCAGCCTGGCCGGCCGCGTCGGCGCGGGCAACATCGCCGGTGTCGGCATTGCGGTGACCCTCGGTGGTCCGGGTGCGGTGTTCTGGATGTGGGTGACCGCGCTGGTCGGCATGTCCAGCAGCTTCTTCGAATGCTCCCTCGGCCAGCTCTACAAGCGCTGCGACTCCGAAGGCCAGTACCGTGGCGGCCCGTCCTATTACATCCAGCACGGGCTGCAGAAGCGCTGGTTGGGCATGATCATGGCATTCCTGCTGCTGATCACCTTTGGCTTCGCCTTCAACGGCCTGCAAGCCCACGCCGTGACTCACTCGTTGAACAACGCCTTTGGCCTCGACACCACCTACACCGGTTTGGGCCTGGCGGTATTGCTGGGCCTGGTGTTCATCGGCGGGATCAAGCGTATCGCCAAAGTGGCCGACCTGCTGGTACCGGTCAAGACCCTGGCGTATATCGCCGTGACCCTCTACGTGATCGTGCTGCAGTTCGAACACGTGCCGGGCATGCTGGCGACTATCGTCAAGAGCGCCTTTGGCCTGGACCAGGCTTTCGGTGGCCTGATTGGCAGCGCCATTGTCATGGGCGTCAAGCGTGGCGTATTCGCCAACGAAGCCGGCCTGGGCAGCGCGCCTAACGTCGCGGCCGTTGCGTCCGTCGAGCACCCGGTCGCCCAAGGCGTGGTCCAGGCGTTCAGCGTGTTCCTGGATACCTTCGTGATCTGCACCTGCACCGCGCTGCTGATCCTGTTGTCGGGCTTCTACACTCCAGGTTTCGAAGGCGACGGCATTGCCCTGACCCAGAACTCCCTGGCGGCCGTGGTCGGTGACTGGGGCCGGGTCTTCATCTCCGTGGCCCTGTCGTTGTTCGTCTTCACCTCGATCCTCTACAACTACTACCTGGGCGAAAACAACCTGCGCTTCATGCTGGGTGAAAACCGCAAGGCGCTGATGGCGTATCGCACCCTGGTCCTGGCACTGATTTTCTGGGGCGCCATCGAGAACCTGGGCACCGTGTTCGCGTTCGCCGACATCACCATGACCCTGCTGGCGTTCGTGAACCTGATCGCGCTGTTCCTGCTGTTCAAAGTCGGCATGCGCATCCTGCGCGACTACGACGACCAGCGCTCGGCCGGCATCAAGGTGCCTGTCTTCGATTCGAGCAAGTTCCCTGACCTGGACCTGGACCGCAAAGCCTGGCCAGCGAGCCCGTCGGCGCCTGCCGCCGATTCCGGCAACGCTCCGGCAAGCCTGGCTGCAGCGCAACGCTGA	MLEVINDFLSGKVLIALIVGLGGYFTIRSRFVQFRHFFHMFAVFRDSLKSSTDQLSSFQALMLSLAGRVGAGNIAGVGIAVTLGGPGAVFWMWVTALVGMSSSFFECSLGQLYKRCDSEGQYRGGPSYYIQHGLQKRWLGMIMAFLLLITFGFAFNGLQAHAVTHSLNNAFGLDTTYTGLGLAVLLGLVFIGGIKRIAKVADLLVPVKTLAYIAVTLYVIVLQFEHVPGMLATIVKSAFGLDQAFGGLIGSAIVMGVKRGVFANEAGLGSAPNVAAVASVEHPVAQGVVQAFSVFLDTFVICTCTALLILLSGFYTPGFEGDGIALTQNSLAAVVGDWGRVFISVALSLFVFTSILYNYYLGENNLRFMLGENRKALMAYRTLVLALIFWGAIENLGTVFAFADITMTLLAFVNLIALFLLFKVGMRILRDYDDQRSAGIKVPVFDSSKFPDLDLDRKAWPASPSAPAADSGNAPASLAAAQR	PGPT0014405_1766	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_TRANSPORT	PLANT_DERIVED_GLYCINE_TRANSPORT,PGPT0014405-yflA|TC_AGCS-K03310	NA	NA
D1-36_05091	1005	ansA	COG0252	L-asparaginase 1	ATGAATGCCTCGACCTATCCTGCCGCCCAGCACGTCATGGTGCTCTACACCGGCGGCACCATCGGCATGCAAGCCAGCGCCAACGGCCTGGCCCCGGCATCCGGCTTCGAAGCGCGGATGCGCGACTACCTGCACAGCCAACCCGAACTGGTCGTGCCCCAGTGGCGCTTCCGGGAAATGGCGCCGCTGATCGACAGCGCCAACATGACGCCAGCGTACTGGCAGCAACTGCGCGAAGCGGTGGTCGATGCCGTGGATGTGCAAGGCTGCGACAGCGTGCTGATCCTCCACGGCACCGACACGCTGGCCTACAGCGCCGCTGCGATGAGCTTCCAGTTGCTGGGCCTGCATGGGCGGGTCTGCTTCACCGGTTCGATGCTGCCCGCCGGCGTGACCGACAGCGATGCCTGGGAAAACCTCAGCGGCGCGCTGGTCGCCCTCGGCCAAGGCCTGGCGCCGGGCGTACACCTTTATTTCCACGGTGAACTGCTGGCGCCGACCCGTTGCGCGAAAGTGCGCAGCTTCGGCCGTCATCCGTTCAAGCGCCTGGAACGTCAGGGCGGGGGCATCAAGGCGGCTTCCCTGCCAACGCAGCTGAATTACAACCAGCCCAAACACTTGGCGAATGTCGCGGCGTTGCCGCTGTTTCCCGGCATCGGTGCCGAGATCATCGATGGCCTGCTGGGCAGCGGCATCCAGGGCCTGGTGCTGGAGTGCTACGGCAGCGGCACCGGGCCGAGCGACAGCCCGGCGTTCCTCGCCAGCCTGGCACGGGCGCGGGACAGCGGCGTGGTGGTCGTGGCGGTGACGCAGTGCCATGAAGGCGGCGTCGAGCTGGACGTGTACGAAGCCGGCAGCCGTTTGCGCGGCGTTGGCGTGCTGTCCGGCGGCGGCATGACCCGCGAGGCGGCGTTCGGCAAGTTGCAGGCATTGATTGGCGCGGGGTTGCCGGTGGATGAGGTTCGCCGGCTGGTTGAGCTGGATCTGTGTGGCGAGCTGAGCTGA	MNASTYPAAQHVMVLYTGGTIGMQASANGLAPASGFEARMRDYLHSQPELVVPQWRFREMAPLIDSANMTPAYWQQLREAVVDAVDVQGCDSVLILHGTDTLAYSAAAMSFQLLGLHGRVCFTGSMLPAGVTDSDAWENLSGALVALGQGLAPGVHLYFHGELLAPTRCAKVRSFGRHPFKRLERQGGGIKAASLPTQLNYNQPKHLANVAALPLFPGIGAEIIDGLLGSGIQGLVLECYGSGTGPSDSPAFLASLARARDSGVVVVAVTQCHEGGVELDVYEAGSRLRGVGVLSGGGMTREAAFGKLQALIGAGLPVDEVRRLVELDLCGELS	PGPT0020180_2297	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
D1-36_05092	993			putative HTH-type transcriptional regulator	ATGTTGCATTCCCACCTCACCACCCTCAACGCCGTCTCCCTGGTACTCGATGCCTTCAAGCACGATGGCCTGCCCAGTGATGCATTGCTGGCCGGCAGCGGCATCAGCACGGCGGACTTGAGCCGGGCCGACACGCGCATCACCACCAACCAAGAGATGCAGGTCTGTGCCAACGCCGTGGCCCTCAAGCGCGACATTGGCTTGGAATTGGGGCGCAACATGCACGTTTCTTCCTACGGCATGCTGGGATACGCCCTGCTCACGAGTGCCACCTTAGGTGACGCTTTGCGCCTGGCGTTGCGCTACCCGGCGCTGTTGGGAACACTCTTCGAGCTGGCCTTGGAGGACGACGGCGAGCACATCTGGCTCAGCGCCGGCGACTACCGGGAGAACCCGGCCCTGGCGGTGTTCAACGCCGAGTTCTGCATGGTGTCGCTGAAGGTGATCTGCAACGACCTGCTCGGTCACCCGCTGCCCTTGCGCGCGGCGCGCTTCGAACACTCGGCGCCGGACTACCAGGCGCGCTACGCCTACCTGTTTGACTGCCCGGTGCGCTTCGACAGCTTCGATAACGCCTTCGCCTTCGATCGCTACTGGCTGGAACAACCCTTGCCGCTGGCCGACCCCATCACCCACCAAGCCATGGCCGAACGTTGTCGGCGGCAAAACACGGAATTCACCGGCCGCCAAGCCTGGCTGGGACGAATCCGCCAACTGCTCGGCGCGCAACTGGACGCCGCCCCGGGCCTGGAAGGCCTGGCCGAGCAAATGAACTGCTCGGCGCGCACCCTGCGCCGGCACCTCAAGGACCTGGGTTGCAGCTACCAAGAACTGCTCGATGAACTGCGCTTCGAGCGGGCCAAGCAGATGCTCTGCGAGGATCAGCTGCCGATCTACCGGATCGCCGAACTGCTTGGCTTCAGTGAAACAGCGAGCTTTCGCCATGCCTTCGTGCGCTGGAGCGGCGTGGCGCCGAGTCGGTTCAGGGCGTGA	MLHSHLTTLNAVSLVLDAFKHDGLPSDALLAGSGISTADLSRADTRITTNQEMQVCANAVALKRDIGLELGRNMHVSSYGMLGYALLTSATLGDALRLALRYPALLGTLFELALEDDGEHIWLSAGDYRENPALAVFNAEFCMVSLKVICNDLLGHPLPLRAARFEHSAPDYQARYAYLFDCPVRFDSFDNAFAFDRYWLEQPLPLADPITHQAMAERCRRQNTEFTGRQAWLGRIRQLLGAQLDAAPGLEGLAEQMNCSARTLRRHLKDLGCSYQELLDELRFERAKQMLCEDQLPIYRIAELLGFSETASFRHAFVRWSGVAPSRFRA				NA	NA	NA	NA	NA
D1-36_05093	1032	aphA	COG0123	Acetylpolyamine amidohydrolase 1	ATGCTGACGATCTACTCAGACGATCACCACCTGCACCACGGACGCTGCGAATTGATGGATGGGCAGTTGATGCCCTGTTTCGAAATGCCGTCCCGGGCCGACCATGTGTTGGAGCGGGTCAAGGCTCGGGCGTTGGGGCCGGTGGAGGCGCCGAAGGACTTCGGCCTCGCGCCGATCCAGCGTGTCCACAGCCCGGCGTACCTGGAATTTTTCAAAGGCGCCTGGGAGCGTTGGACCGAGTTCAATCGCGACGGTGACCTGCTGCCCTACACCTGGCCGGCCCGCACCTTGCGCTCGGTGATCCCGACCAGCCTGCACGGCCAGCTCGGCTATTACAGCTTTGATGGAGGAGCGCCGATTACCGCCGGTACCTGGCAAGCGGCGTACAGCGCAGCCCAGGTCGCCCTCACCGCCCAGGCCGACATCCAGCGTGGCGCCCGTAGCGCCTTCGCGTTGTGTCGCCCACCGGGACACCACGCTGCCAGCGACTTGATGGGTGGTTATTGCTACCTCAACAATGCCGCCATCGCAGCACAGGCCTTTCTTGACCAGGGGCACAAAAAGGTTGCGATCCTCGACGTGGACTACCACCACGGCAACGGCACCCAATCGATTTTCTACGAGCGCAGCGACGTGCTGTTCGCGTCGATCCACGGCCACCCGGAGGCCGAGTTCCCGTTCTTTCTGGGCTACGAAGATGAGCGCGGCGAAGGTGCCGGCGCGGGCTTTAACTTCAACTACCCTTTGCCGGCGGGCTCGGGTTGGGAAACCTGGAGCGCCGCGCTGGAGCAAGCCTGCGGCGAAGTCCAACGCTACGATGCCGATGTCATCGTCGTGTCTCTGGGCGTGGACACCTTCAAGGAAGATCCGATCTCGCAATTCAAGCTCGACAGCCCGGATTACCTGGCGATGGGCAAACGCATCGCCGCCCTCGGCAAACCGACCTTGTTCGTGATGGAAGGCGGCTACGCAGTGGCAGAAATCGGCATCAACGCCGTGAACGTCCTTGAAGGTTTCCAAAGCGCCCAATGA	MLTIYSDDHHLHHGRCELMDGQLMPCFEMPSRADHVLERVKARALGPVEAPKDFGLAPIQRVHSPAYLEFFKGAWERWTEFNRDGDLLPYTWPARTLRSVIPTSLHGQLGYYSFDGGAPITAGTWQAAYSAAQVALTAQADIQRGARSAFALCRPPGHHAASDLMGGYCYLNNAAIAAQAFLDQGHKKVAILDVDYHHGNGTQSIFYERSDVLFASIHGHPEAEFPFFLGYEDERGEGAGAGFNFNYPLPAGSGWETWSAALEQACGEVQRYDADVIVVSLGVDTFKEDPISQFKLDSPDYLAMGKRIAALGKPTLFVMEGGYAVAEIGINAVNVLEGFQSAQ				NA	NA	NA	NA	NA
D1-36_05094	1101	spuD_2	COG0687	Putrescine-binding periplasmic protein SpuD	ATGAACAGACTCAAGCGTTTGATGGCCCCGGCCCTGTGCGCCGCGCTGCTGTGTGGCGCCGCTCAGGCCGAGGAGCGCACATTGCGCGTCTACAACTGGTTCGACTACATCACGCCCAAGGCCTTGGATGACTTCAAGGCGCAGAACAGCCAGGTCAAGCTGATCTACGACATCTTCGACACCAACGAAGCCCTGGAGGCCAAGCTGCTGACGGGCAACGCTGGCTACGACGTGGTGGTGCCGTCCAACGTGTTTCTGGCCAAGCAGATCGAAGCCGGGGTGTTCCAGCCCTTGGATCGCAGCAAGCTGCCGAATTGGAACCACCTCGATCCCAAGCTGATGAAGCTGATCGAGGCCAACGACCCAGGCAACAAATTCGCCGTGCCTTACATGTACGGCACCATCCTGATCGGCTTCAACCCGGACAAGGTCAAGGCCGCGCTGGGTGAAAACGCGCCGGTGGACAGCTGGGACCTGATCTTCAAGGAAGAAAACATCAGCAAGCTCAAGCAGTGCGGCGTGGCCTTGCTCGATTCGCCCTCGGAAATCCTGCCCCTGGCCTTGCAGCACCTGGGCCTGGACCCCAACAGCAATAAGCCGGCGGACTACGCCAAGGCCCAAGCGCTGCTGTTGAAGATTCGGCCCTACATCACCTATTTCCACTCCTCCAAATACATGGCGGATATCGCCAACGGCGATATCTGCGTGGCCGTCGGTTATTCCGGCAGCTTCTCCCAGGCGGCCAACCGCGCCAAGGAAGCCAAGAACGGCGTGACGGTGGACATGCGCCTGCCCAAGGAGGGCGCGCCGATCTGGTTCGACATGCTCGCCATTCCTAAAGGGGCGAAAAACCCGGACGACGCCTACACCTTCATCAATTACTTGTTGCAACCGCAGGTGATCGCGCCGATCAGTGATTTTGTCGGTTATCCGAACCCGAACAAAGACGCTACCGAAAGCGTCGACCCAGCGATCCGCGGCAACTCCAACCTGTACCCGACCGAAGCGGCCATGGCGACGCTGTATACGCTTCAACCGTTGCCGAGGGATGCCGAGCGCGCACGCACGCGAGCCTGGACGCGAATCAAATCCGGCCAGTAA	MNRLKRLMAPALCAALLCGAAQAEERTLRVYNWFDYITPKALDDFKAQNSQVKLIYDIFDTNEALEAKLLTGNAGYDVVVPSNVFLAKQIEAGVFQPLDRSKLPNWNHLDPKLMKLIEANDPGNKFAVPYMYGTILIGFNPDKVKAALGENAPVDSWDLIFKEENISKLKQCGVALLDSPSEILPLALQHLGLDPNSNKPADYAKAQALLLKIRPYITYFHSSKYMADIANGDICVAVGYSGSFSQAANRAKEAKNGVTVDMRLPKEGAPIWFDMLAIPKGAKNPDDAYTFINYLLQPQVIAPISDFVGYPNPNKDATESVDPAIRGNSNLYPTEAAMATLYTLQPLPRDAERARTRAWTRIKSGQ	PGPT0007805_888	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATION	CE-ENVIRONMENTAL_QSR|BF_SIGNALLING	CE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007805-potF-K11073	NA	NA
D1-36_05095	4587			hypothetical protein	ATGACACTCGACTCGACTGACACAGGCCCTACGTCCGACGCAAGCATCAAGGCAGCATTGCTCAACCAATTGCTTGCAGGCCCCACCTACCCGGAAGTGGCCGCCGGACTCCTGCAAGGTGCGCTCAAGGACCTTTATCCGTCCTTGGACCTGGACCCCTACACAACCGTCCTCGCCGAACCGGCCTGGGACATCGTCGGCGGCGAAATCGTAGCGTTGCCAACCCGTTATGAGTCACTGAGCAACTTACTGGCCGATCAGATCGACCAGAAACATCCGACCTTGTTGATTGAGGGTTTGCACTTCCTGACCCGGCTGCCGATTACCGAACCCGAAGTGCATTTGCCGGTGCGCATCGAGCAAATCGGAAGGTTGATCAATGAGCTGGCGCCCGCGATGTTGAAGGCCAACCAGGAACAACAACTGGCTTACTGGAACATGCCATTCGGTCATTACGGTGCCCGCTGGCATGAGCTGTCCAATACATTGCGCAAATTCTGGGACGTGCGGCAACTCAAGGGCTGGACGGCGGACGAATGTGCCATGGCCAGGCAACTTTACCTGTACCCCGACCCGCAAGACCGTAAGGATAAATTCCAAAGCCACGCGTACCTGGTCGACGTCGATGCAGTCGCTGGCACTCAGGTCACTCGCTTGAACGAAAACTCGCTGGTCGTCCTGATCGGTCAGATCGATGACAAGGAGGTCATCCTTACGCACTCGTTGTACAGCGGTTATGAGAAGTTCGAGACACGTGACGCATTGGGCCAGTCCCTTACCGATCATCTATCGCTCTCTCACCCCACCACCGCGATACGCTGGCGGCTCTATGAACCGCGCGCAAACATTTTCGACAGCAAGGCCTGTGGACTTATTGGTGTGCAGGTCAGGGTGCTCGGAAACCCTCGTACGGAGTCGGACGCTGTCGCTGCTGAGCCCGAAATACCCATCAGTGGAATCGCGGTCGGACCAGGCGAGGCGTGGTTCAAGCAGCAGATACCCGATTGGTTACGCAACGCACCAGTAGCCGACCAGACGTTGTTCGCTCAATACATGAAAAACCTGTCGGCGCTGGGCAGTTCCCACGCCGGCGAAACTTACCTGGAGGATATCCCTTCGATCAAGGACTACGCGTCAAATGCCTTGAAAACCCAGATGCAATCCGACCACAGCGATGTTTCGACTCTGAAACCGGAAACAATCGTCATCGAGATAACAAGCCCGGTGGTCTGGGGGACCTTTGTCGTTCCGTTCAAGTTCGACACAACCGAGTTCAACTTAATCGATCTCGCCTTGCAAAACCTGATTGCGCTTCCACAGGGCAACAAAACCGTGAAGTCCGTGGACGGGACCGAGCTCCCCGAATGGGTGACGGTGGACTACCTTGAGCGCCTTATTACCCAGGTCGATATCGGTCGCGTCTATCCAGAGCTGATCAAACGAAAACTACTCGACGATCCAACGCAATCGTCCCGTCGAGAGCGCCTGTTCAGTTCACAGCTACGCATACAGCTGCCCCTGCTTGCGCTGGAAAGTAAATTGAAGGGGCTGGGCGATATCGATGATCGCGGCTGTCGTTACGTCGCGGCGCTGATGGAGCCGCTGGAAGCCGACCGCAAGGTTGACGGGCAAGCCATTGTCCTGCGCAAGCTGGCGTTCGTGCCAGAGTTGCAGCTCGGTATTTCCGAGGACATCGTGGCCAATATGTTTGTGATCGGCCCGCAGACACCCAGCGCCGGCCCCTGTCTGCTCTACCGCCCTCTACTCGAACCGCAGCTGTGCCAGTTCCCCTCGTTCAGCAATTTGCTCTATGCCATCAAGCAGTCAGCCACGTTGCGCCAATCGGTACTGGCGTGGCTGCCCGATGGGGTGCGGGACACTTACAGCCGACTGGTTTTCCCGGGCGCCCTGCCTTCGCCCTGGGCCGCTTTGGAGTTCGTGGCGACCCCCATCACATCATTAGCCAGCGCGGGGCCCATCACCTTAAGCGACGAATCCTTGGGAGCCGATTTCATGCCGCTGTTGTTCAAGGCCAACGCCAACGCCCTGGTGACACTCGCCGATAAACAATCGGTTTCCAACAGCGAGAGCCGTTGGGAGTCGTTCAAACAGGCGGGGTGGTTGATTTTCAATCTGGCGTTGCCCTATCTCGGCACCACGGCGAACACCGCGACCTGGCTCTGGCAGATACTGGAGGACTTGGAACGGTTAGCGCAGGACGACGGAGAGCGCAAGGACCAGACCAAGTGGGAGGCCGTCGTGGATTTGCTGTTAAACGTGGCGTTAGGCGTGGTCAATATTGCTATCGATCGCTCCAAAGCAGGCAGCCGCGAACGACCAACACAAGCGCCTGAAGTAGCCCCGAAACAAAATGTGCCAGCACCACTTTCCAAACCAAGCATCGAGACACTTTCGCCACTCGTGCAAAAAGAACTGTCACAAGAGCACTACGAGTTCATCCATACCAGTGGCGCCTTGATGGGTAAATCCGGCAGTCACGCCGGGCTTCTCGCTAGCTTCAGCATCGATGCGCCCGATAACCTCGGGCATCCCGAGAGCGAAGGCGTGTTCAAAGGCCTCTACCCGAAAAATGGGAAGTGGTACGCAAAGCTGGCGAGCCAGTGTTTTGAAGTCAGCGTCGAGGGCGAGCAGGTCAGCATCATCAAGGACACACGCTCCGGCCCCCCCTTGCTCCGGGACGAGCGTGACCAGTGGAGAATCGATAGTCGCTTGCGATTAAAGGGCAGCGGATCGAAAGGCGTCAGGCAGAAAGTCGTCGTCGCGGCACAACGCCGCAACATTGAATTGCTTGCCGAACTCAATAAATTTGAAGAAAGCAGAACGTATAACGAATGGGCGCTGAATATCGGTGCTCAAAACATGGAGCGGGCATCGGCCGATACCAGGGACATTTTTGCTGAAGCTTATAGAGTCTCCCTGCAAACGCAGCGGCAAAACTATGAACGGGCATTGAGCGCTTTGATGGAGTGGCCGGTCTTCCAGGCGAGGCCGGATGCTCCGCGCGTGAGCCTTGGTTACCTGAACGCGCAAATAAATTTCACTTTCGCTGACATGGACATATTGCGGGAACAATTTCTGCCCGCCATGGCGCAGGCGAGGGACATGATCACCCCTCGCTTCCAAATGCGCGAGCAACGACACGTCGATGCTGCCAACAGCATGATTCAGCTCGGTGACAACATGATCGAGCGTCTGGAATATATTGAGACACGCTTTTCCAAGCTCAAGAAACTCGGGCTCGGAGGCTTTGAGTTTGTGCGCGAATACCGCAGAAAAATGCCTTCCTACACCAGTGACGATCTACGAATTCTTCAATTGGAAATGTATCGCCACCTCTGCCTGACCCTCGACAGCGTTAAAACAATGCCCGAAGGTTGGCTGGAGATTGACCGACTGATCGACAATGCGATGGTGGCCTTCCAAACCTTGCGCGAGGCGCTCGATGAAACAACCAAGATCCGGCTGGACGAACAAATCGATGCACTCGGCAGCCTGACGGAACAGTTCACGGCCATCCAAGAGCACCTGGACTACATGGGAAACGAATATCAGGACAGCGCTAACACTCAACAACTCAAGCATCTGGGTAATCGAATAACCAAGGCAAAAGAGCGAGCGTTGCGTCATTTGGCCAAGGCCCTCGACGAGCGAAGCAATAAACGACAATCGCTGACTGTGTATGAGGAACGCCCCCGCTCCAGGAGGAAGTTCATCAGAGGCCGCTTCTGGGGAGTCGTCAGCGGCGTGGCTCGCCTGACCAGCTCGTACGAAGAAACGGGTTGGGTCGAGGTGAGGAATCCGTTATCCGGTGAAATGATCGCTTTATTCCACCGCAAAGAAACCGGTGAATGGGTCCCCCATATCGAGGCCAACGAACCTCCGGCGATCCCCGCTCTGAAAACCAGCGTCAAGAAAGGCAAAGCCCTGATCAAAGGACTCTCTGCCTTCAAAACACAAGTCCAAGATGACGTGCAGCAGCCAGACCGTACACCGTCCGGTATTTCATTGATCATGGGCGCCCATGCGAGCCGGTTCGATACAGTCGCCAATGCAATCGAAAAGGCGCTCGACCGGGCCAGGAACGAAACGGTCGAACTTGCGCCAGAAGAACGGAGTTCCGCCGAATCCTTGCGATTGCAGCTCAAGAGCGAAGCGACGGCGCTACGCGCCGAGGAACACGAGACCGTACTGGGGCTCATCAAACGAAGCCCGCCCAACATGAGCGGCGTCACTTGGCTAAACGAACGAAACCTCATCCACGTGACTAAACGAATCAACCGAAAGCGCATCAAGACCCCGGCGGGAAAGAGATACCTCGACCGGTATGAAATTCAGGACAAACAAAGCGGCAAGCCGCTATGGTTCGCGGACTTTCACTACTCCACCTTTTGGGGGGTCGACCTTAAGTTTCTTTCGGCACACCTGAGAACCCCTGAGCAGGCCAAGTCAGGCATGGCAGACATCTCCTTGGATCGATTGAACCAACGTCAATTGATTGATCGTTACCGCAGCGAAATTGCCGTGGATCAGGCCATACATGTGTTCTTTCCAAAGAAACGGCCATGA	MTLDSTDTGPTSDASIKAALLNQLLAGPTYPEVAAGLLQGALKDLYPSLDLDPYTTVLAEPAWDIVGGEIVALPTRYESLSNLLADQIDQKHPTLLIEGLHFLTRLPITEPEVHLPVRIEQIGRLINELAPAMLKANQEQQLAYWNMPFGHYGARWHELSNTLRKFWDVRQLKGWTADECAMARQLYLYPDPQDRKDKFQSHAYLVDVDAVAGTQVTRLNENSLVVLIGQIDDKEVILTHSLYSGYEKFETRDALGQSLTDHLSLSHPTTAIRWRLYEPRANIFDSKACGLIGVQVRVLGNPRTESDAVAAEPEIPISGIAVGPGEAWFKQQIPDWLRNAPVADQTLFAQYMKNLSALGSSHAGETYLEDIPSIKDYASNALKTQMQSDHSDVSTLKPETIVIEITSPVVWGTFVVPFKFDTTEFNLIDLALQNLIALPQGNKTVKSVDGTELPEWVTVDYLERLITQVDIGRVYPELIKRKLLDDPTQSSRRERLFSSQLRIQLPLLALESKLKGLGDIDDRGCRYVAALMEPLEADRKVDGQAIVLRKLAFVPELQLGISEDIVANMFVIGPQTPSAGPCLLYRPLLEPQLCQFPSFSNLLYAIKQSATLRQSVLAWLPDGVRDTYSRLVFPGALPSPWAALEFVATPITSLASAGPITLSDESLGADFMPLLFKANANALVTLADKQSVSNSESRWESFKQAGWLIFNLALPYLGTTANTATWLWQILEDLERLAQDDGERKDQTKWEAVVDLLLNVALGVVNIAIDRSKAGSRERPTQAPEVAPKQNVPAPLSKPSIETLSPLVQKELSQEHYEFIHTSGALMGKSGSHAGLLASFSIDAPDNLGHPESEGVFKGLYPKNGKWYAKLASQCFEVSVEGEQVSIIKDTRSGPPLLRDERDQWRIDSRLRLKGSGSKGVRQKVVVAAQRRNIELLAELNKFEESRTYNEWALNIGAQNMERASADTRDIFAEAYRVSLQTQRQNYERALSALMEWPVFQARPDAPRVSLGYLNAQINFTFADMDILREQFLPAMAQARDMITPRFQMREQRHVDAANSMIQLGDNMIERLEYIETRFSKLKKLGLGGFEFVREYRRKMPSYTSDDLRILQLEMYRHLCLTLDSVKTMPEGWLEIDRLIDNAMVAFQTLREALDETTKIRLDEQIDALGSLTEQFTAIQEHLDYMGNEYQDSANTQQLKHLGNRITKAKERALRHLAKALDERSNKRQSLTVYEERPRSRRKFIRGRFWGVVSGVARLTSSYEETGWVEVRNPLSGEMIALFHRKETGEWVPHIEANEPPAIPALKTSVKKGKALIKGLSAFKTQVQDDVQQPDRTPSGISLIMGAHASRFDTVANAIEKALDRARNETVELAPEERSSAESLRLQLKSEATALRAEEHETVLGLIKRSPPNMSGVTWLNERNLIHVTKRINRKRIKTPAGKRYLDRYEIQDKQSGKPLWFADFHYSTFWGVDLKFLSAHLRTPEQAKSGMADISLDRLNQRQLIDRYRSEIAVDQAIHVFFPKKRP				NA	NA	NA	NA	NA
D1-36_05096	1545	gabR_2	COG1167	HTH-type transcriptional regulatory protein GabR	ATGAACAACCCCGTGCCGCCGCTGTCGTTCAACCCCGCTGGAATCGAACTGGATCGCCGCCACGGGCTCAGCCGGCAGCTTTATCAGGCATTGCGGGCCCGCGTCCTGGATGGTCGCCTTGCAAGCGGCACGCGCCTGCCAGCTAGCCGCGACCTGGCGGCGGCCTTGTCCATTTCCCGCAACAGCGTGGTGCGTGCGTACGACCAGCTCTTTGCCGAAGGTTTTATCGAAGGACGCGTCGGTGACGGAACCTATGTGGCGAATCTGTCCGCAGTGGCGTTGCCGCTGAAGAAATTATCCACAAAAGCATCCACAGGCTTTTCAACAGGCTTACCCACAGGTTTATCCACAGAATGGCTCGATTTACCTGTGGGCCCATCCAGTAAAGTTATCCACAGCGACGCGCTGCTACGTGTCGAAAAGCATCATCTGGCCCAGCCGCCGGCGGGACCACCGCGTGCATTCCGGGTGGGTGTGCCGGCCTTCGACCTGTTCCCTTTTGATGTCTGGGCCAAGCTGAACGGGGCTTTCTGGCGCAAGCCGGATCTTCAACAGCTGTGCTACGGCGATTCTCAAGGAGACGAACGCTTGCGTGGCCTGATTGCGGCTTACCTGCGCAGTTCGAGGGGCCTGCAGTGCACGGCTGAACAAATTGTGATCACCAGCGGCGCGCAGCAGGGCATCAGCCTTTGTGCACAGCTGTTGGTCGATCCCGGTGACGTGGTGGCCGTGGAAAACCCAGGTTATCGCGCTGCGGGGCATGCGTTTGCGGTGGCTGGAGCCGACGTCCGAGGCGTGCCGGTGGACAGCGATGGCTTGGATTGCGCGGCGCTCGCGGCGTTGAGCCATTGTCGGCTGACCTATGTCACGCCCTCCCATCAATACCCGACCGGGGTGGTCATGAGCCTTGCGCGGCGGCTGGAGCTGCTGGGTTGGGCCGAACGCAACGACGGCTGGATCGTCGAGGACGATTACGACGGCGAATACCGCTACAGCGGCGCGCCGCTGGCGCCGTTGGCCGCGCTGGATCGCCAGGGCCGGGTACTTTACGTCGGCACCTTCGGCAAGGTGGCGTTCCCGGCCCTGCGCCTGGGTTATCTGGTGTTGCCGCCGGGCCTGGTCGACGCCTTCGCCCGACGGCGCGCCGTGGATGTGCGCCACTCCGAAGTCAGCACCCAGGCCGTGATGGCCGAGTTCATGGCCGCCGGGCATTTCCAGCGACACATCAGGCGCATGCGTCGGGCGGCCCTGGCTCGGCGGGATGCGTTGTTGGCGGGTTGGCCCAAGGCTGTCGAGGGTGTTGGCGCCATGCCCACGGTCGTCGCCGGGCTGCATGTCACGGTGCCCGTGGACAGCGTCGAGCGTGAAGGTGAATTGATTGCCCAGGCGGCCAGCATCGGCGTGGAGATCAATGGCCTGAGCGGCTATTGGTTGCCTACCACGCCTGCGCAGGTCCGCGCCGGGCTGGTGCTGGGGTTCGCGGCAGTCCCGCCCGCGGCGATCGGCACGGCGCTGGCGAGCCTGGCTAAGGCCTGGGATGTCTGA	MNNPVPPLSFNPAGIELDRRHGLSRQLYQALRARVLDGRLASGTRLPASRDLAAALSISRNSVVRAYDQLFAEGFIEGRVGDGTYVANLSAVALPLKKLSTKASTGFSTGLPTGLSTEWLDLPVGPSSKVIHSDALLRVEKHHLAQPPAGPPRAFRVGVPAFDLFPFDVWAKLNGAFWRKPDLQQLCYGDSQGDERLRGLIAAYLRSSRGLQCTAEQIVITSGAQQGISLCAQLLVDPGDVVAVENPGYRAAGHAFAVAGADVRGVPVDSDGLDCAALAALSHCRLTYVTPSHQYPTGVVMSLARRLELLGWAERNDGWIVEDDYDGEYRYSGAPLAPLAALDRQGRVLYVGTFGKVAFPALRLGYLVLPPGLVDAFARRRAVDVRHSEVSTQAVMAEFMAAGHFQRHIRRMRRAALARRDALLAGWPKAVEGVGAMPTVVAGLHVTVPVDSVEREGELIAQAASIGVEINGLSGYWLPTTPAQVRAGLVLGFAAVPPAAIGTALASLAKAWDV	PGPT0016790_365	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYS	PLANT_DERIVED_OPINE_METABOLISM,PGPT0016790-mocR-K00375	NA	NA
D1-36_05097	642	paiB	COG2808	Protease synthase and sporulation protein PAI 2	ATGTACAACCCAAAAGCCTTCGCCGTCCAAAACATACCCCAGTTACATCAAATGATGAACGATTGCCGCTTGGCCGTACTGGTCACCCAGGGTGAACACGGCCTACAGGCCAGCCACTTGCCGCTGCTGCTGGATACGCGACAGGGTCCCCACGGAAGCCTGCGCGGGCACATGGCCCGGGCCAATCCGCAATGGCGCGACCTGGAGGCCGGGGCCGAGGCCCTGGTGATATTTCCCGGCGCCGATGCCTACGTCAGCCCGGGCCTGTACCCCAGCAAGGCCGAACACGGCAAAGTGGTGCCGACCTGGAACTACCTGGCCGTACACGCCTATGGCACAGCCGAAGTTTTCAGCGACGCCCATCGCCTGCGCGAAGTAGTCGGCGCCCTCACCGAACGTCACGAAACCGGCCGCGCCCAACCCTGGAAACTCGATGATGCACCGGCCGAGTACGTCGAAGCGATGCTCAAGGCCATCGTTGGTTTTTCGCTGCCTATCCAGCGCCTGGAAGGCAAACGCAAGCTCAGCCAAAACCGCAGCCCCGAAGATATCGCCGGAGTGCGCAACGGTCTCGCCACGAGCACCGATCCGCAAGATCAGGCGCTGTCACGCCTGATGCCTGATGCATCCACCAAGGAGTGA	MYNPKAFAVQNIPQLHQMMNDCRLAVLVTQGEHGLQASHLPLLLDTRQGPHGSLRGHMARANPQWRDLEAGAEALVIFPGADAYVSPGLYPSKAEHGKVVPTWNYLAVHAYGTAEVFSDAHRLREVVGALTERHETGRAQPWKLDDAPAEYVEAMLKAIVGFSLPIQRLEGKRKLSQNRSPEDIAGVRNGLATSTDPQDQALSRLMPDASTKE	PGPT0014760_523	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-CELL_ENVELOPE_REMODELLING	CE-ENVELOPE_REMODELLING_REGULATION	CE-ENVELOPE_REMODELLING_REGULATION_FACTOR,PGPT0014760-paiB|yumE-K07734	NA	NA
D1-36_05098	447			hypothetical protein	ATGAGCCACACCGAGATCCGCCTCGTCACTGCTGAAGACCACGCTGCCTGGCTGCCGCTATGGCAGGCTTACCTACGGTTCTACAACACCGAACTGCCGGAAGCGGTGACCCACAGCACCTGGCAGCGCCTGCTCGACGATCGCGAACCAACCCACGGCGCCCTCGCCTGGCACGGCGATACGGCGGTGGGCCTGGTGCATTTCATTTACCACCGCTCGAACTGGAGCATAGAGAACTCCTGCTACTTGCAGGACTTGCTGGTGACCGAGCAAAGTCGGGGCACCGGTGTTGGTCGGCAATTGATCGAATTCGTCTATGCCACGGCCAAGGCCGACGGTTGTGCCAAGGTCCACTGGCTGACCCACGAGACCAACACGACCGCGATCCAACTCTACGAACGCATCGCCGAACGCCCAGGCTTCATTCAATTTCGCAAAGCCTTGTAA	MSHTEIRLVTAEDHAAWLPLWQAYLRFYNTELPEAVTHSTWQRLLDDREPTHGALAWHGDTAVGLVHFIYHRSNWSIENSCYLQDLLVTEQSRGTGVGRQLIEFVYATAKADGCAKVHWLTHETNTTAIQLYERIAERPGFIQFRKAL				NA	NA	NA	NA	NA
D1-36_05099	669			hypothetical protein	ATGTCGACCCCGCTTACCGATTGGAAAGGTGTCTCGGCGCCATCTACGCGCTTGCTCGAAGGGCGATTCATCCGCCTGGAAAAACTCGACCCGGCGCGTCATGCCGAGGGTCTTTGGCAAGCCCTCGAAGGCCCCGGGGCCGATCCGAAACTCTGGGACTACTTGCCCTACGGTCCCTTCAAGGTTCGTGGCGACTTCGACGCCTGGCTGGACAACCATGCAGCCAACACCGACCCGTATTTTTTCAGCGTGATCGACCGTGCCAGCGGCGAGGTGCAAGGGATCCTCAGCCTGATGTCCATCGTGCCGGCCCACGGCCGCATCGAGATCGGCCACGTCACTTTTGGCGCGCCGATGCAGCGATCGCCGAAAAGCACCGAGGCGGTTTATCTGCTGGCCAAGGAGTCGTTCGCCCTCGGCTACCGTCGCCTCGAATGGAAGTGCAACAACGGCAACGCCCGCTCCAAATATGCCGCCGAGCGGCTGGGCTTCACATTTGAGGGGGTGTTCCGCCAGCACATGGTCGTCAAGGGCCAGAACCGCGACACGGCGTGGTATTCGATGCTCGACTCGGAGTGGCCGGCGATCGGAGCGGCATTTGAACGATGGCTTAGCGAAGAAAATCAACGCGAAGGCGGGCAGGTCCGAAGCTTGGCTGCTTGCCGTTGA	MSTPLTDWKGVSAPSTRLLEGRFIRLEKLDPARHAEGLWQALEGPGADPKLWDYLPYGPFKVRGDFDAWLDNHAANTDPYFFSVIDRASGEVQGILSLMSIVPAHGRIEIGHVTFGAPMQRSPKSTEAVYLLAKESFALGYRRLEWKCNNGNARSKYAAERLGFTFEGVFRQHMVVKGQNRDTAWYSMLDSEWPAIGAAFERWLSEENQREGGQVRSLAACR				NA	NA	NA	NA	NA
D1-36_05100	5310			hypothetical protein	ATGACCTTATTTCTTAACGACGAACCAGGCGTGCCGCTCCAGGCGCCTGGCATCACGCTAACGCCTATTCATTCACTACCCGACGGCCATGCATTCGAGCCGCACACGTTCGCCGATCAGTGGTTGCTGGAGTTGGGACTGCTGGGTGATACACCGCTTCGTGTGACTTACCGGGAAGTTGGAGCCGCTGGTTTGGCTGCTGAAGATAGAATCGCATCGGTTCCCTTGCGTGCCGCTGTCACGCAGGGTTTTCTCAAGGCCTATCAAAGCAAGCTTATTGCTTCCCTCGCGGCTTTCAACCGATGCGAGGATTGGATCGAGTATCCCCACAGAAGCCATATGAAGCGGGATTTTTCGGCACTTCGTATCGACGGCTTTGTGCTTCCAAGAAACCTGTTGCAGAAGTTGCAAGCAGGCGTGCCGCCGGGCTACAGGGGGCCTGGGCTCGCTTTCGAGACCGATTCCGTCAATCAAGTTAACCCGCTTGCCCCTCAAGAAGAGGCTCGCCCTAAACAGCTGAAACATCTGGCCCCCCATAAGGCCGATCTGGATCGTTTGTTCGCAGGCTTGCCCACGTTCGACACGGCGCTGAAGAATTTGCTGGTCAATTCGATCAGGGAAAAGATCGAGCCGAACAAATTCCGTGGCGCAGCGCTATTGGCGATCGACCCGGACAATTGTTATGTGAATCACTTCACGACAGATTCCCTCGGGGCGCGCTCATGGGTTTCTTCAATGAGTTTCAGCGAAGTCATGATGGACTGTTTGTCTACTGACGAGCCTCCTGTATACGCCCAGGGAAGCGTAGGTTTTTTCACTCGCTCGGACACCGTGCAAGAGACCGAAAGCCTATTCGTCGACCCGGTGGATGCGCATATCCTGGCGGCCATGACGTCGGCGTTCCATATCGAGAACCCGACCACCAATATTCACCTGAGACGTCAGTTCCTTGATGATCTGGCCGCATTTCGCATGAAGGAGACCGTGAGAGATGCCCTCGACCCGGTTATCCCCTCTACCGCGCAAGATGAGCTGGTGCTCAGGCTTTCCCAACGATTCCTGTATTTATTCGATTTATACAAAGCCGATCGAGATCCCTCTGCACGGTTAACCCATGCGGAGCAGATCCTGCGCAATGACGAGGATCGCCTGCTGAGCATCATCACGACTCACCCTTCAGAGTCGGCCAGGGGAAGTTTGATGAGGAAAGAGCATCTTCCCCATGTATATAAGGTCATGCTTGAAATGGAGGGCGACTTGTCGCAGAAGTGGCCGGCCGCGATGGTGATCAAACAAAGTGATCAGCCGGCTTTATTTCTGTACTCCATGGAAGGAGGCATACAGCGGTTCGATGAGTTCCACGAGTTGGTGAATTCGGTAAGCCCGGTCTATCAAGGACAGCAGCGCAAAATCCAAAGTATTGACCAGGCGCTTCCTGAGCATGTATTCGAGCAGGCAGCAAACGACCTGCTTGATCTTCAGTACGCGGCGTTACAAGCCGTTCTAAAAGCACCGGAACGGGTGCAGTTCGATTTGGCCCGCTTTGCCCTGGATGCTGAGAAATCGCTGGAACTGCCGATGCTGGCGCTCGACGGTGTGCTGATCGCCCGAAGCGAAACCTTGTTCAAGAACAGTCGTCCGAGCGCCTACAAAATCGCGACGGTTGCGCAGAAGCGCATTTATCGCTTCCTCGAAGATGAGGCGCTGACAGCGGAAGGCGAAATTGCCAAAAGACGCGTTAAGACACTGTCGGAGTTCTCTCGCGAAAAAATCGTCGCTTATCTCCAGGAGCATCTGCACAAGGACATTGATCCCGATCCAGACCGGACGTTGATTACCCTGTTTCAAGGGCGCGCGTGTACCTCGAAGGACTCGCGGGCCACCAGCCTGACCCAACTGATGATCGAGAATACGCGCCCTTCGCAGTACCCCAATGCCATGAAGGAAATCCGGCCTGTCTATCTGGTCGATCAGGACGGCCAACCCATCAGCCATCCACTGACCCGTCGTTTCATTCTTTTAAAGGGGCCTGAGCTTGCCGAGATGGCGACAAGCCTTGATATCGGCGGCTGCTACGAGACGTACCTCAAGGAAAAAATGAATGCGCCCGACTACAAGGAGGCCTGGTGGGACGCTTACCTGGCCAATATGTCCCTCAAGGGCTACGAAGCCGTCCTCAAAGATGATGATGTACTCAAAGAGACCGTGACGGATGTCAGCGTCCATCCAGCACGCACCGAAAAACGGGTCGTGCTCTGGCAGGATGCGGTTATCAAATCAACGAGGGCAAAGGATCGCGCAAGAGTACAGGGAAGGGAGGTGCATGTTTACGGTCTGCTGTTGTGCGGGACCGTAGGCGTTGGAGGCCAGCATGGCAACTTGGGCAACGCAACCAGTGTCGACGGTGTGTTGATTTTTTCAGATCAGGACGGGCCGACAATACAGGGAACCGTTGGCGTCTATTTTCCGGACAGTCCCGGTGGCGATGATCTCCATGAGTTTGCCAATCTCAATGATGGTGTTGCGCAGCTTCTTCAGCGGGAAGAATGGCAGGTCTATTTCTCCTCCCGCATCGCCACTAACAATCCTGAAGAACTGAAACAAATATTCGGAACGCGAAGCGGTCGCCCCTTGGTTCGGGGCGCGTTGATCAGCGGTGATTTGTCTGAAGCGCTGCATCAGGCGCATGTGAGATTTCGAATTGCCCATGCCGATCATCGTTCCAACAGCAACCGCAACATCCTGCACCAAACCATTTTCAACCTTACCGTGATGGCGTTCGAAACGGTCCTGGACGTGGTTTCGTTTCTGGCACCCGGTTACGCCGCATTGCAGATGTACTTGACGGTGGCCAAGACCGGCCAAATCCCGCTTCACCTGAACATCGTCAAATACTTGATCCGCGCCGGCATCGCGCCGCGACCTGTCGGTGGTGCGATGGGCACCTCACGAAAGACATCGTTCTCCCGAGAGGTATTGGCTCGTCTAAGCCAACAGGAAAAACCGATTGGGTTGCCATTGGAACAAGCAATCTACGGCCCCTACGCGGTGAAGGATGCAACGGTTATACGAGGGCTGACCCCGGACGCTGGTGGGTTTTACCGCGTTACCGTTCGGGATGCAGCGACAGGCGCTGTCTCCGCTCGCCCGGTGTATGTGCGACAACCGGAGGGAATGGTGCTCCGGGTGCACGACAATACCAAGCTGAACGCAACCGAGGCGACCTTGGTCGATCCCGTTTCAGGGTCGAGCATCCGCTCCAGTGGCGTGATGAGAAGCACCGTGGCACGCATGCCGGATGGGGAATGGCGTGCGGTCGGGTTCGGCCGGGGAGGTGGCGGGGACCGTCCAACGCGGCAGTCCTCGCGGCCGGGCCCGTCAAGCTCGGGCACTGCTGGCCAGACGCTCGAGGACATGATCGCTGTGCTGGAACAGCCCGGCCAATGGGATTTTCTGCTGATGGATATCGTTCCCGAACTCGTGCCCCGTATTCCGAACTGGCCGCAAAACCGGGGCCTGGTCATCATGGATGTCAGGCCCGGGAGGCTCCCTTCCACCCTGCGGTTCTCGCACCAGGCAGGCCCGGAACGTTTGTCGAGCCGTCCGGATTACGCCACGGATGTGGTGGTGAGACGGTCGAGCGACAGCCACTATGACTTGATCCAGGCAGGTCGTGTCATTCCAATCCGAAGCCTCGGTGACTGTTTCTTCTCGGCGGTTACCCAGGGCTTGGACGAACTTGAGGGAAGGGTTGTTTTCTCCCCGACAGAGTTGCGCCTGGCGTCGGCAAGATACATTCGCGAAAACCTTGAATCGTTTCGCCATCTGGAAGTTCAGGACGCCCCCCGCCGAATGCAGCCGTCGGGTAGCCAGGGGGAGGAGGCGGTCGCGGAGGCGGGGCAGGTGTTTGTGAAAACGGAGACCACGCTTGAAAATCTTCTGGGCAGGGAGACCCTGGATGTTGTAACGAGGCTGCTCGCTGGCGCGCCTAACCCTTATAGGTTGTTTAGATCGCCGCGGGTACGCCTGTCGCTGCGTGCAGGTTTGGCTGCGGTCGGTTCCTCGTCGGAACTCTGGAGGCAAATCGAGCAGTTGGCGCCGGTCCGGCCTTTGTATGGATTGGCAACCTCATTCACGCCCTACACACCCGCCCAGAGAAGCGTTGTCGAAGAGCTCCTGGATATGACGCTGGTCGGCAACGAAGGTGGGAGAACGATCGATCTTCTGGCCAGGGATGGCTATTTTCAGTTGAACCGGGATTCGATTCATATCTTGCTTGAGTACGGCGTAGGTATCGATGAGTGGTACAAATTTTATCCCAAGAGCCCGACAGCCTATATTCCGAGCAGCGAGGCGGGTGCTGGGGATGTGCGGGGGCTCCTTAACGGCAGGGAGTTGGTGCATCCACATCAGTTGGCCGAGCTTGCCAATACACTTAACCTGAATCCCGGCAAGGGAAGGCCGACCAGCGGAATGATCGAGTTATTCCGCTATAGAAAAATGACTGGACGCACCGTTGGGTTACTTCGAGGTGCCCTGCGCAATAAAGGTAGGTTGTTGGCCCGGGCTGAGCGGGTTCTAGCCTCTCGTGTGATCGAAACCAATCTTGGCGGTGCGTTGCCCGTCTCTGTATTTTCAAGGTGGATAAGTCATCCGGCGCTCAGCTCGGCGAAGCTTGAGTTTATTGCCAGATATGCCGAAACCCGTGTGCAGGAGCTATTGAATACCGGCGATATCGATATCCGATGGATCCACGGGTTCACCGACAAGACGCTGAGAACCATCGAAATACATTCAGCACCGCTAGCAGCTTTTGTTCGTTTCCTGGAGCCACAATCGGGAAGTGCTACAGATATCGGTATGGCGGGTATCGCCAGATTGCTAACCGGCCCCGATGGCGTTCCGTCGAACTCCAGAACTATTATTTTGCTCGACGTCCCTAACTTGTTGGCTAATCTGACCCACAATTTTACCCGCGAGGAAGCCAGGAGTATTTGGACAGAGTTGATCAGCCCTTACTACAGTGACCTGAATATCTACGACGCGCTTGGGCAGGTCCGCCCGTTGAACTCCGAAGCGAATTTCACCTCGGCGTTGATCAACGCTCTCCAGCAGGATGTGGCACGCGCGCACCAGCTGATTGACCGTGTCTTTGCCGATCCCACGACCTCGGCGCAGGTACTGAATCACCTGTATCGCTTTGACTTTACGGCGAATCGAGCGGAACACAGCCTTCTGATGTTCGCAGAATACGTGAGTTGTTTTAACCGAATACCGGACTGGGCATGGCAATACAAAAAATATAAATAA	MTLFLNDEPGVPLQAPGITLTPIHSLPDGHAFEPHTFADQWLLELGLLGDTPLRVTYREVGAAGLAAEDRIASVPLRAAVTQGFLKAYQSKLIASLAAFNRCEDWIEYPHRSHMKRDFSALRIDGFVLPRNLLQKLQAGVPPGYRGPGLAFETDSVNQVNPLAPQEEARPKQLKHLAPHKADLDRLFAGLPTFDTALKNLLVNSIREKIEPNKFRGAALLAIDPDNCYVNHFTTDSLGARSWVSSMSFSEVMMDCLSTDEPPVYAQGSVGFFTRSDTVQETESLFVDPVDAHILAAMTSAFHIENPTTNIHLRRQFLDDLAAFRMKETVRDALDPVIPSTAQDELVLRLSQRFLYLFDLYKADRDPSARLTHAEQILRNDEDRLLSIITTHPSESARGSLMRKEHLPHVYKVMLEMEGDLSQKWPAAMVIKQSDQPALFLYSMEGGIQRFDEFHELVNSVSPVYQGQQRKIQSIDQALPEHVFEQAANDLLDLQYAALQAVLKAPERVQFDLARFALDAEKSLELPMLALDGVLIARSETLFKNSRPSAYKIATVAQKRIYRFLEDEALTAEGEIAKRRVKTLSEFSREKIVAYLQEHLHKDIDPDPDRTLITLFQGRACTSKDSRATSLTQLMIENTRPSQYPNAMKEIRPVYLVDQDGQPISHPLTRRFILLKGPELAEMATSLDIGGCYETYLKEKMNAPDYKEAWWDAYLANMSLKGYEAVLKDDDVLKETVTDVSVHPARTEKRVVLWQDAVIKSTRAKDRARVQGREVHVYGLLLCGTVGVGGQHGNLGNATSVDGVLIFSDQDGPTIQGTVGVYFPDSPGGDDLHEFANLNDGVAQLLQREEWQVYFSSRIATNNPEELKQIFGTRSGRPLVRGALISGDLSEALHQAHVRFRIAHADHRSNSNRNILHQTIFNLTVMAFETVLDVVSFLAPGYAALQMYLTVAKTGQIPLHLNIVKYLIRAGIAPRPVGGAMGTSRKTSFSREVLARLSQQEKPIGLPLEQAIYGPYAVKDATVIRGLTPDAGGFYRVTVRDAATGAVSARPVYVRQPEGMVLRVHDNTKLNATEATLVDPVSGSSIRSSGVMRSTVARMPDGEWRAVGFGRGGGGDRPTRQSSRPGPSSSGTAGQTLEDMIAVLEQPGQWDFLLMDIVPELVPRIPNWPQNRGLVIMDVRPGRLPSTLRFSHQAGPERLSSRPDYATDVVVRRSSDSHYDLIQAGRVIPIRSLGDCFFSAVTQGLDELEGRVVFSPTELRLASARYIRENLESFRHLEVQDAPRRMQPSGSQGEEAVAEAGQVFVKTETTLENLLGRETLDVVTRLLAGAPNPYRLFRSPRVRLSLRAGLAAVGSSSELWRQIEQLAPVRPLYGLATSFTPYTPAQRSVVEELLDMTLVGNEGGRTIDLLARDGYFQLNRDSIHILLEYGVGIDEWYKFYPKSPTAYIPSSEAGAGDVRGLLNGRELVHPHQLAELANTLNLNPGKGRPTSGMIELFRYRKMTGRTVGLLRGALRNKGRLLARAERVLASRVIETNLGGALPVSVFSRWISHPALSSAKLEFIARYAETRVQELLNTGDIDIRWIHGFTDKTLRTIEIHSAPLAAFVRFLEPQSGSATDIGMAGIARLLTGPDGVPSNSRTIILLDVPNLLANLTHNFTREEARSIWTELISPYYSDLNIYDALGQVRPLNSEANFTSALINALQQDVARAHQLIDRVFADPTTSAQVLNHLYRFDFTANRAEHSLLMFAEYVSCFNRIPDWAWQYKKYK				NA	NA	NA	NA	NA
D1-36_05101	5004			hypothetical protein	ATGCCCTCTGATTCGACAAATCAACCCAGCCCCCTCCCGATACCCAACGCGGCGCCATTGAGTGGTGACCGCCAGCCGTCCTGCGAGCCTGTACCAACAGAAACGCTCATGCCAGACGGCGACCTGAGCGCCGCCGGCAAAGAGCAGCTGCGGCAATCAAAGCTGCTGGACGCCAACCAGAAGAGCCTGGCGCTTCTATTCGCCGGCCTGCCGAATTTCGATTCGGTGATCAATAATCTGTTGGTCAGCTCGATCAAGAAAAAAATACCCGAGCGTAAGCTCCGTCCATCGCTGCTTGAACACATCGACCCTGATCATTGCTACGTGAATCACTTCGCCATCGATCCGAATGGCGGGCGCGCGTTGACGCACTCGCAGAGTTTTACCGACGTGATGCGTAGCAGTTTGAAAACCGATACGCCGCCCACCTATACGGCCGGTGCCGTGGGTTTCTACATTCGCCCGGATACCGTGGACGAAGCTGACAGCATTTTTTCCTCCCCTGCGGATAGCAAAATCCTACAAGCGATGGAGTCGGCGTTTTACATAGCTGGCCCGACCACCAACGAGACGGTGAGGCAGCAATTGCGTGACGACCTCAGTCTCTTTCGCAACAGCGAGCGCTGGGCGGGCATCCTCGACAGGGCAGGCTCATCGACGGCGCAAGCGGTTTTCGCTCATCTGCTTTCAAGGCGCTTCCTGCACCTTTGCAGCCTGTACAAAGCCGACCGCAAGCCGGCTGCCTCACCGAATGAGCGAACGCAGCAGGCCGAGGATGACCGCCTGTTGAACATCATCAGCACTCACCCCTCCATGCTCGACAGGGGGCGCTTGCAGCGAGCGCCCATCCCGCATGTCTATGCGGTCATGCTCGATATGGGGCGCGCAACGCCGCAGCAGTGGGCCGCCGCAATGGTGATCAAACAAACTGAACGACAACGGTTGTTTTTATATTCCCTGGAAGGCGGCTTGCAGGGCTTCCCGTCCTTCGAGGCAATGACCGCTGCGGTGAAGCCGCTCTATGACGGGCAGGAACGCACGATCCTGAATATTTCCTCCGAGCTGTCCGAACATGTGTTTGAAGTGGCGGCCTCGGCTCTTTTCCAGCGGCAAAGCGCAGCGCTCGAGAAATTCCTGAGCACACCCATCGACGGGACGATGACCTTGGAAGCTTTTGCCCAACAGGCAGAAGAAGCCCTGAGTCTGCCTGTGCTATCGCTCTCCGGGCCATTGGCGGTGCGTCGGTTGACCCGAGTCGAAAACAACCGTCCGGTCTTCTACGCATCCGCGACACTGTCTGAGCAAGCGACCTATCGTCGTCTGGAAGCGCAGGTGTACCAGGGGGTTTATGAACTGAGTGGTCGCGTCCAGTCGCTCGTGCAATTCACTCAGGAGAAGATCAAGCAATACCTTAAGCAAACGTTGCACCCGGCCATTAAGCCCGATCCGGATCGGACCCAGGTGACGCTGTCTTTTGGCAACAAAGCCAACCCAAGACAGTCGCGCACCGTCAGCCTGACCCAGCTGATGCTAGATAATCTCCGCCCGCCAGATTATCCGGAGGCAATGAGCGAAGTGTCGACGGTCTATCTTGTCGATCAGCACTGCCAGCGCATTCGACACCCGGATAATGACGTTCCGCTCACCCTGACCGGGAGCGAACTCGCCCGCATGGCCAAGAGCCTGGATGCCGGCGGCAACTATGAAATCCTGCTGCGAGAGGAGATGAACAAACCGCAATACAAGGCGGCATGGCAAGCGGCGTATCTGGCGAACTTGAAGTTCAAGGGCTACGAGGCCGGGCTGAGGGGCGACAGCGTGTTCAAGGCTACTGGCCTGGACAAGACCGGCAACCCACCGAAGCTGCAAAAGCTGGTGCCTCTCTGGTTGGCCGCCGTGTTGAAGTCTCCGATGGCGGAGGCTCGTGCCCAAGTCTTCGGACGAAGGGTGCATGTCCATGGCCTGCTGCTCGGAGGAAGCGTGGGGGCGGGAGGGCAGCATGGAACGATGGGCAACGCCTTCAGCGTGGATGGCGCGCTGATTTTTACCGATCAGCTCGGACCAGAAATCAAGGGCCCCGTCGGGGTGTACTTTCCAGACAGCCCTGATGGCGACGACTTCCAGGAATTTTCCGATCTGGGTGAGGGCGTCGGGAAGCTTCTGCCGCAAGAAAAATGGCAGGCGTATTTCCGCTCGCGGATTTCCGCGCCCGATGCTGACGAATTGAAGGGTTCATCAGCGCAGCGGCGCGGTCGGCCGTTGATTCGGGGCTGCTTGATTACGGGTGACTTGTTGGAGGCGCTTCATCGAGCTTATGTAGATTTTCATAGCGCCCATGCCGATCACTTGTCCAACAGCAACCTGGACGTCCAGCGTCACTACGCTGTCCGGGTGTTCTTGATGACGGTCGGTATTCTGTTGGAAGTAGCAGGTGTGCTGGCGGTGCCGGGTGTCCAGCTATTCAAGCGAGCCGTGAGAACCGGCTCGTTCATGCTCAGGAGCGGTGTGGTTCCTCGGGATCTCGATACCTTGGTCTTCATCGACAAAGTGGCTAACCGTCTTGGGCAGGGCGGTGCCCACGGATGGATGATCCCATCACGAGGCCAAGCCTCGTTTTTGGCGGTGAAAGCTCGTCAACAGGCAGACGAAGCGTTGGCCGGATTGCCCCTGGAGGACGCGATCTATCATCGTTACGCCGTTAAGGACACGGCTCCGATCCGAGGGCTGACCCCTGATGCCCAAGGCTTCTATCGTCCCAGGCTCAACAATGACGGCACGGCACAGGTCTATGTGCGGCAACCCGACGGGACGGTTTTTCGCGTACACGATCACACGAAGATGACCGCCACCGAGGCCACGATCGTCGATCCATTGACGGGTCTGAGTATCCGTTCCAGTGGTGTGATGAGAAGTACCGTGGCACGCATGCCCAATGGCGAATGGCGCGCCGTGGGATTCGGCCAGGGCGGGGGTAAACGGCCTTCCCAAACGCCGCCTCCGTCGGGCCCTTCCAAGCCCAAGGTCCCTGCCCTGACTGACCCGGGTATCGCCGACGCCGTTCGTACCTTGGGCAACTGGGACAACGAGATCATGGACCTGGTCCCCTCCATCATCACGCAGGTACCGAGTTGGCCACAGAGTCGCAGCTTGTTGATCATTGATGAAGTATCCGCCAGCCGCGCATGGTCAGTGCGCTACACCCCAGGGCGGGACGAACGTGTATATCCAAGCAGTGTTCATCCCGACAGAGCGAACACGGATGTTGTCCTGCGGCGCACGGGCCAAAATCATTACAGCCTGGTCTTGGGCAATCGCGTCATGGAGATCACCGCCGACGGTGACTGCTTTTTTAACGCCGTTGCTCGCGGCCTGAATGATGGGAGGCTACAGGGGGACTTCTCGATAAGAGGGCTGCGTAATGCCGCCGCCGATTACATCGATCAGCACCCCAATATCCGTAGTTTTCTAACGCCGCAAGTCTCCGGGATACGGCAGGCGCTTGTCGATAATGCGCCAACGTTGGAGCAACTTCTGGGAAAGGCGGCGGTGCTTGACCTGACGCAAATTATTCATGGGGCCCCCAATCCGCATCGCTTGTTCCAACCGATCATGAACTATTTGCGTTCATACGCCGAAGCTTCGCTGCGTGACTATTTGCGAAATGTACAATCCTTGAGCTTGCCTCCGGAAATGCTGCATAGCATCGCCAGACATTTCTCGCCACGAACGCCTGGCCAATTGATACAGAGCGATTTTCCTTTTTACCAGGCCAACGAAGACGACCTGATCAAGTTTTTCGAGGACATATTATTGGGTCCAATTGTTGATCGAGAAATTCTCGAACTGATGAACAACGAATACCTCATGCTCTCCCAGGACGTCTTGCACATCATGCTTGAATACGGCCTGAGGGCCCGGGAGCTGACCGATCACCATCCCCGGAATCTCATGGCCTACGTCAAGTTTGACCAGGCCTTGCACGGCGAAATGAGCCATGAACAGTTGGATGAGCTGGTGGGGGATGCTTATCTGATAGATCGGGGTGACCTCAAGGATGTCCAGCGCAGACTTGAGCGCGAAACAGGCAAGCTTGTTAGTGACGATGCGCGGTTGATGGATCAGTACATTTACTATGACCGCGCCGAAGACCTTGTCGACTTGCTCAGGGTAGCCCTTGGCCGGTTTCCCGATTTGCTCAGGCGCGCCGAAATCGCTTTGCAGTCCCCAGTTATCACTTCCAACCTGGGCGGCATGCTGCCATTGAGCGTGGTGTCGCAGTGGATACGCGATCCGAGCCTTACCGATGGGCGGCTTCGGCTCATTGCCGCCTATACCACTACTCGTTATACGGAAGTCGTGATTACCGGCGATATCGATATCGGTTGGATGCGGGCGTTTGACGACGATAACGTCCGGGACATTATTTTCCATCAGCGGCCGTTGGTGAACTTCATGCGATTCATTGGCGGCGTGCGCGGGAACCTGATGGACAACGATCTACCCGCCGTCGCCAGACTGTTCAGCACGCCAGGAAATCCTCCTTCTAATAGCCGGGTCTCTTTGTTGTTGCAAACCCCTGCCGTCTGGAGCTCGATTCACAATATGGCCGCAATCACAGCCGAGGGGGCCAGAAGCCTCTGGGACGATCTGGTCAGCGTGCAATACAGCGACGACCTGATTCGCGAAACGCTCCAGCGGCCTGGTTCGCTGGCGTCCGAATCGGCTTTCGCGGGCGCGTTGGTGGACAGCCTGCTAAACGAGGAAGCTCGTGCGCACCAACTGCTTCTGGGGACTTACGCAGTGAGCCAAGGAGAGGCCCAGCAATTGCTGCGGCGCTTCAGGTTTTCAGGCAACCGGGCGGAGCACAGTCGTCTGAGCTTCGCACGCTACCTGAGTCATCACGGGGGAATACCCGAATGGGCCTGGCAGTATGCCAACGAGGGCGTGACACCCGAATCCCTCAGTCGATTTCTAACCACGAGACGACCACCAAAAGCGGAGTGA	MPSDSTNQPSPLPIPNAAPLSGDRQPSCEPVPTETLMPDGDLSAAGKEQLRQSKLLDANQKSLALLFAGLPNFDSVINNLLVSSIKKKIPERKLRPSLLEHIDPDHCYVNHFAIDPNGGRALTHSQSFTDVMRSSLKTDTPPTYTAGAVGFYIRPDTVDEADSIFSSPADSKILQAMESAFYIAGPTTNETVRQQLRDDLSLFRNSERWAGILDRAGSSTAQAVFAHLLSRRFLHLCSLYKADRKPAASPNERTQQAEDDRLLNIISTHPSMLDRGRLQRAPIPHVYAVMLDMGRATPQQWAAAMVIKQTERQRLFLYSLEGGLQGFPSFEAMTAAVKPLYDGQERTILNISSELSEHVFEVAASALFQRQSAALEKFLSTPIDGTMTLEAFAQQAEEALSLPVLSLSGPLAVRRLTRVENNRPVFYASATLSEQATYRRLEAQVYQGVYELSGRVQSLVQFTQEKIKQYLKQTLHPAIKPDPDRTQVTLSFGNKANPRQSRTVSLTQLMLDNLRPPDYPEAMSEVSTVYLVDQHCQRIRHPDNDVPLTLTGSELARMAKSLDAGGNYEILLREEMNKPQYKAAWQAAYLANLKFKGYEAGLRGDSVFKATGLDKTGNPPKLQKLVPLWLAAVLKSPMAEARAQVFGRRVHVHGLLLGGSVGAGGQHGTMGNAFSVDGALIFTDQLGPEIKGPVGVYFPDSPDGDDFQEFSDLGEGVGKLLPQEKWQAYFRSRISAPDADELKGSSAQRRGRPLIRGCLITGDLLEALHRAYVDFHSAHADHLSNSNLDVQRHYAVRVFLMTVGILLEVAGVLAVPGVQLFKRAVRTGSFMLRSGVVPRDLDTLVFIDKVANRLGQGGAHGWMIPSRGQASFLAVKARQQADEALAGLPLEDAIYHRYAVKDTAPIRGLTPDAQGFYRPRLNNDGTAQVYVRQPDGTVFRVHDHTKMTATEATIVDPLTGLSIRSSGVMRSTVARMPNGEWRAVGFGQGGGKRPSQTPPPSGPSKPKVPALTDPGIADAVRTLGNWDNEIMDLVPSIITQVPSWPQSRSLLIIDEVSASRAWSVRYTPGRDERVYPSSVHPDRANTDVVLRRTGQNHYSLVLGNRVMEITADGDCFFNAVARGLNDGRLQGDFSIRGLRNAAADYIDQHPNIRSFLTPQVSGIRQALVDNAPTLEQLLGKAAVLDLTQIIHGAPNPHRLFQPIMNYLRSYAEASLRDYLRNVQSLSLPPEMLHSIARHFSPRTPGQLIQSDFPFYQANEDDLIKFFEDILLGPIVDREILELMNNEYLMLSQDVLHIMLEYGLRARELTDHHPRNLMAYVKFDQALHGEMSHEQLDELVGDAYLIDRGDLKDVQRRLERETGKLVSDDARLMDQYIYYDRAEDLVDLLRVALGRFPDLLRRAEIALQSPVITSNLGGMLPLSVVSQWIRDPSLTDGRLRLIAAYTTTRYTEVVITGDIDIGWMRAFDDDNVRDIIFHQRPLVNFMRFIGGVRGNLMDNDLPAVARLFSTPGNPPSNSRVSLLLQTPAVWSSIHNMAAITAEGARSLWDDLVSVQYSDDLIRETLQRPGSLASESAFAGALVDSLLNEEARAHQLLLGTYAVSQGEAQQLLRRFRFSGNRAEHSRLSFARYLSHHGGIPEWAWQYANEGVTPESLSRFLTTRRPPKAE				NA	NA	NA	NA	NA
D1-36_05102	897	mmuM	COG2040	Homocysteine S-methyltransferase	ATGGGCGTAGCAACAGTCATTCTCGATGGTGGCATGGGCCGTGAATTGCAACGCCGTGGCGCGCCGTTTCGACAGCCCGAGTGGTCGGCGCTGGCATTGAGCGAAGCGCCCCAGGCAGTGGAAGATGTCCATGCCGCTTATATCGCCAGCGGCGCCAACGTGATCACCAGCAACAGTTACGCCGTGGTGCCGTTCCATATTGGCGAGGCGCGTTTTGCCGCCGAAGGTCAGGCACTGGCGGCTTTGGCCGGTGAACTGGCGCGGCGGGCGGTGCAGGCTTCAGGCAAAACCGTACGAGTGGCCGGGTCGCTGCCGCCGCTGTTCGGTTCCTACCGTCCCGATCTGTTCGATGCGTCCCGTGCAAGTGAGCTGCTGGCGCCTTTGGTGGCGGGACTGGCGCCCCACGTCGACCTGTGGCTGGCAGAAACCCAAAGCTCAACGGTCGAGGCACGAGCCATCCGTGCCGGGATCCCACGGGATGGCAAGCCGTTCTGGCTCTCGTTCACCTTGAAAGACGAGGACACGGATGAAGTGCCGCGCCTGCGTTCCGGTGAACCCGTGGCGGATGCCGCGGCCGTCGCAGCGCAGCTGGGCGTCGAGACGCTCCTGTTCAACTGCAGTCAGCCGGAGGTGATCGGTGGCGCCATCGATGCCGCGCGGCAGACGTTCGAGCGCCTGGGCGTGAAAATCCACATCGGTGCCTACGCCAACGCGTTTCCGCCGCAGCCCAAGGAGGCGACCGCCAACGACGGGTTGGACCCATTGCGCGACGACCTTGATCCACCGGGGTATCTTCAGTGGGCAACGGACTGGCAAAAGCGCGGGGCCAGTCACCTGGGGGGCTGCTGCGGAATCGGGCCGGAGCATATCGCCGTCCTGGCGCGACGATTGGGTTGA	MGVATVILDGGMGRELQRRGAPFRQPEWSALALSEAPQAVEDVHAAYIASGANVITSNSYAVVPFHIGEARFAAEGQALAALAGELARRAVQASGKTVRVAGSLPPLFGSYRPDLFDASRASELLAPLVAGLAPHVDLWLAETQSSTVEARAIRAGIPRDGKPFWLSFTLKDEDTDEVPRLRSGEPVADAAAVAAQLGVETLLFNCSQPEVIGGAIDAARQTFERLGVKIHIGAYANAFPPQPKEATANDGLDPLRDDLDPPGYLQWATDWQKRGASHLGGCCGIGPEHIAVLARRLG				NA	NA	NA	NA	NA
D1-36_05103	822	fliY_2	COG0834	L-cystine-binding protein FliY	ATGAAATTTCAACCGTTGCTGGCCCTGGGCCTGGGTCTGCTGGCTGCGTCTTCCCAAGCGCTCGCAGGTATCACCCTGGATCGTATCGAACAGAAAAAAGAGCTCGTCGGCGTGTTGATGGAAAGCTATCCCCCTTTCTCGTTCCTCAATGACCAGAACCAGCTTGACGGTTTCGACGTGGACGTCGCCAAGGCCGTCGCGCAGAAACTGGGTGTGAAGCTGCGCCTGGAAACGCCGTCCTGGGACGTGATTGCGACCGGTCGCTGGAGCGGGCGCTACGATATCTGCATCTGCTCCATGACACCGAGCAAGGCCCGCGCCGAGGTGTTCGATTTCCCGGTGCAGTACTACGCCTCGCCAGCGGTCATCGTGGTCAATGCCAAGGACGACAGCATCCATGGCGCCAAGGATCTGAGCGGCAAGAAGGTCGGCCTGACCAGCGCGTCCAGCTATGAGAGCTACTTGAACAAGAACCTGGTCATTGAAGGCGCGGAAGATACCCGGTTGAGCTATCCGTTCGAGAACGTACAGATCGCCCCGTATGACACCGATAACGTGGCGTTCCAAGACCTCGGCCTGGGCGCCGGAGTGCGCCTGGACGCGGTGCTGACCAACCTGGTGACCGCTCAGCCACGCCTGACCGAAGACAAGCGCTTCAAACTCGCTGGCGAAGCGCTGTATGCCGAGCCGAACTCGGTCGCCATCGAAAAGGGTGACGCCGAGTGGAACAGCAAAGTGCAAGAAGTCTTCGCCCAACTGAAACAGGACGGCACCCTGAGCAAGCTCTCGCAAAAATGGATCGGCGCCGACATCAGCCAATGA	MKFQPLLALGLGLLAASSQALAGITLDRIEQKKELVGVLMESYPPFSFLNDQNQLDGFDVDVAKAVAQKLGVKLRLETPSWDVIATGRWSGRYDICICSMTPSKARAEVFDFPVQYYASPAVIVVNAKDDSIHGAKDLSGKKVGLTSASSYESYLNKNLVIEGAEDTRLSYPFENVQIAPYDTDNVAFQDLGLGAGVRLDAVLTNLVTAQPRLTEDKRFKLAGEALYAEPNSVAIEKGDAEWNSKVQEVFAQLKQDGTLSKLSQKWIGADISQ	PGPT0020800_8200	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
D1-36_05104	837			hypothetical protein	ATGACTTCCATTCCGCCTCCTGTCCAGCTACCGCCACCGGTGACTGAGTCGCGCCTGCATAAAATCTTCGGCTTTCGCACACGCTTGTACGTGACGTGGGCGGTCATGCTGGTGCTGTTCGCCAGTTTTTTCCTGAGTTTCGACCTGAAGTTCTCGATCATCCTCGACAAACTGCCGAACCTGCTCGGTTTGCATCTGGCCCCCAACGGCTTCCTGCAGGGCGCGGTGCTGACGTTGTTCCTGTGCCTGTGCTCGATCGTCGCGTCGTCACTCCTGGGCTTCATCACCGCGCTGGCGCGGCTGTCCAGCAGTGCGGTGGCGTTCGGCATCGCCAGCTTCTATGCGTCGTTCTTTCGCGGCACCCCGCTGTTGATCCAGATTTTGCTGATCTACCTGGGCCTGCCCCAGCTGGGCATCGTTCCTGGCGCCATTGCCGCCGGCATCATCGCGTTGTCACTGAACTACGGCGCCTACCTGAGCGAAATCTTCCGCGCCGGCATCCTCGGCGTTCCCCACGGCCAACGCGAAGCCTCCCTCGCCCTGGGCATGGGCGAAACCGTGATCTTCTGGCGCGTCACCCTGCCCCAGGCCATGCGCACCATCATCCCGCCGACCACCAACCAATTCATCTCCATGCTCAAGGACTCCTCCCTGATCTCGGTGATGGGCGTCTGGGAAGTGATGTTCCTGGCGCAATCTTATGGTCGCTCCAGCTATCGCTATATCGAAATGCTGACCACGGCGGCGATTATCTACTGGCTGATGTCCATTGCGCTGGAGCTGATTCAAGCGCGGATGGAGCGGCATTATGGAAAGGCTTATCTAAAGCGCAGCTGA	MTSIPPPVQLPPPVTESRLHKIFGFRTRLYVTWAVMLVLFASFFLSFDLKFSIILDKLPNLLGLHLAPNGFLQGAVLTLFLCLCSIVASSLLGFITALARLSSSAVAFGIASFYASFFRGTPLLIQILLIYLGLPQLGIVPGAIAAGIIALSLNYGAYLSEIFRAGILGVPHGQREASLALGMGETVIFWRVTLPQAMRTIIPPTTNQFISMLKDSSLISVMGVWEVMFLAQSYGRSSYRYIEMLTTAAIIYWLMSIALELIQARMERHYGKAYLKRS	PGPT0020795_2544	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
D1-36_05105	2013			Extracellular serine protease	ATGGCCCAGTCAGTTACCGAGGACGCCCGCCCCGTTGAAACAACCGCGAAGATGCAGGCGAGGCTCAAGGCGTTCGCGGCGGCGCCGGATACAAACATCGAACCGGTCATCAAGGCGCAGGAAGCGCCCCTATCGATGAGCGACGGCAATGACCTGGTGATTGTCAGTAAGCAAGGCGAACTTTTCGGGCCCACTGACGGCGGCGGCGGTACCAATGTTCTGCAGTTGGATATCAGCAAGGGAGGCGTAATCGGCCCAACCGGCAACTTCAACGATCTATACCTCAAGCAAGGCGAATGGTCGAACGGTGGCGCGCTCACCGGTGCAAGCCTGGTTGACTCAAAGGCAAAGCTGGCCAACACCGGTCAGATAACGGGCGCGGTGCATGTGCTTGGCGTATTCCATAACCCAGGTACCGTGACCGGGCCTGTGTTCGTTGGAAAAAACGGCACGTTCAGCGGCAACGGGACGGTCGACGCGCTGGATGTGGCGGGTTTGATTGAAGTCGGTCCAATCATGGGTGCCCCCTCGGTTACCCATGACCTCAAGCTGTCCAAAAGCGCGACGCTGGCTTATGGAGTCGACGCGGAGAAAGGCGGCGCCACGATCAAGGTTGGCGGTACCGCGACGTTAGGCAATGCAACGTTGAAGATCACGTCTCTGTCGGGCGAGTCCATCGCTGAGAACAAACACATCGTGATAAAAGCGCAAAAAGTCGAAGGGAAGTTCGGGAACGTCATCAACGAACTGGCCTTGATGACGGCAACACCTGAGTACGCCACGGGAGAGGTAGGATTGACCCTTGCGCTTAAGGACAAGGTGCCCAACGAGATCGCGCCCACGGTTAATAGCCAAGCGGTTATAGGCAGTATCGTGGAACACCATGCCGAAGCAACGGAGGCTGGCCCCGTCGTCGCTTTACCCGCTGAACAAATATCCGCCACAGAATCGCAAACCCGTCATCCCGAGTCATATCCCAACGAACCCGCGAAAGTGGCAGCCAACCCCAAACCCAACGCCGCCATCAACGCCCTGCTCGGTACCAACATGGCCACCGCCGCCGATGCCATCGACCAACTGGGCGGTTACGACACGGCAGACCTGGGCAGTGCGACTTTAAGCAGCGTCGCACCGATCAGCTCGGGAATGCTCTCCGCCATGGGCCGGAACAACCCGACGGGTGAGCATGGCAATGGCCAGGTCTGGGTCCAGGCCATCGGCAACAACGGCAGCCTCGCCAAGCAATTGGGCAGCTTTGCCCTGAAGCATTCGACCAAAGGTTTGATGCTGGGAACCGACTGGGCCGTCAGCCCCGATTGGCGCCTGGGCGTCATCGGCAGCAAAACCCAGACACGGCTGGACAGCTATCAATTCGACGGCGCGCTCGACAGTTGGCTGGTGGGTGCCTATGCCTTGCGCCAGGACGGGCCAGTGGCCCTGCGCCTGGGTGCCGTTTATGGCAGCCATGACGGAAGCACCAAACGCCATGTTGCGTTCAATGGTTTCAGGGATCACCTCAAGGGTCGCTACGACGCCACGACACAACAGGTCTTTGGACAGGTCGGCTACAACCTGGACGTCGGACACTTCGATATGGAGCCCTACATCCAGGTGGGTTACCAACGCTACCAACGCGACGCCTATGCAGAAAAAGGTGGCGATGCTGCATTGCAATACCACGACCAGAGCCAGGAACACTTCAGCAGCGATCTCGGCCTGCGTATCGCCCACCCTTTTGCGTTCGACCAAGGCATGCGGTTGACGCCACGCGTGGATGTCGGCTGGAAACACCTATACGGCGACATCAGGGGCAGCTCCCATCAACGCCTGGCTAACGGTGGCAGCACCTACATCATCCAAGGGGTGGAACTGGACCGGGACAGCCTGCTCTTGCAAGCGGGGTTGGACCTGGCCATGTCGCCACGTCACACCCTGGGGTTGAGCTACAGCGCAGAAACGGGCCAGGACAACCGTAACGGCGCGTTGACCGGGCAATGGCGGATGGCGTTCTAA	MAQSVTEDARPVETTAKMQARLKAFAAAPDTNIEPVIKAQEAPLSMSDGNDLVIVSKQGELFGPTDGGGGTNVLQLDISKGGVIGPTGNFNDLYLKQGEWSNGGALTGASLVDSKAKLANTGQITGAVHVLGVFHNPGTVTGPVFVGKNGTFSGNGTVDALDVAGLIEVGPIMGAPSVTHDLKLSKSATLAYGVDAEKGGATIKVGGTATLGNATLKITSLSGESIAENKHIVIKAQKVEGKFGNVINELALMTATPEYATGEVGLTLALKDKVPNEIAPTVNSQAVIGSIVEHHAEATEAGPVVALPAEQISATESQTRHPESYPNEPAKVAANPKPNAAINALLGTNMATAADAIDQLGGYDTADLGSATLSSVAPISSGMLSAMGRNNPTGEHGNGQVWVQAIGNNGSLAKQLGSFALKHSTKGLMLGTDWAVSPDWRLGVIGSKTQTRLDSYQFDGALDSWLVGAYALRQDGPVALRLGAVYGSHDGSTKRHVAFNGFRDHLKGRYDATTQQVFGQVGYNLDVGHFDMEPYIQVGYQRYQRDAYAEKGGDAALQYHDQSQEHFSSDLGLRIAHPFAFDQGMRLTPRVDVGWKHLYGDIRGSSHQRLANGGSTYIIQGVELDRDSLLLQAGLDLAMSPRHTLGLSYSAETGQDNRNGALTGQWRMAF	PGPT0030315_506	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_SECRETION	CE-Type_V_SECRETION_SYSTEMS	CE-T5a_AUTOTRANSPORTER_SECRETION,PGPT0030315-ssp|pspB|pspA|ssph1|ssph2-K12685	NA	NA
D1-36_05106	1809	oadA	COG0511	Oxaloacetate decarboxylase alpha chain	ATGTCCAAGAAGATCCACGTAACCGACACAATCCTGCGCGACGCCCACCAATCGCTGCTCGCCACTCGCATGCGCACCGAAGACATGCTGCCGATCTGCGACAAGCTCGACAAAGTCGGCTATTGGTCCCTGGAAGTCTGGGGCGGCGCAACCTTCGACGCCTGCGTGCGCTTTCTGAAGGAAGACCCGTGGGAGCGCCTGCGCCAACTGCGTGCGGCGCTGCCCAACACCCGCCTGCAAATGCTCCTGCGCGGCCAGAACCTGCTGGGCTACCGCCATTACAGCGACGACGTGGTCAAGGCGTTCGTGGCCAAGGCTGCGGTCAACGGCATCGATGTGTTCCGTATCTTCGATGCGATGAACGACGTGCGTAACCTGCGGGTCGCCATCGAAGCGGTGAAGGCTGCCGGCAAGCATGCCCAGGGCACCATCGCCTATACCACCAGTCCGGTGCACACCATCGAAGCATTCGTGGCCCAGGCCAAGCAGATGGAAGCCATGGGTTGCGACTCGGTGGCGATCAAGGACATGGCCGGGCTGCTGACCCCCTACGCCACTGGCGAATTGGTCAAAGCCCTGAAAGCCGAGCAATCGCTGCCGGTCTTCATCCATTCCCACGACACCGCCGGCCTCGCCGCGATGTGCCAGCTCAAGGCTGTCGAAAACGGCGCCGATCACATCGATACCGCGATCTCCAGCTTCGCCTGGGGCACCAGCCATCCAGGCACCGAGTCGATGGTCGCCGCTCTCAAGGGCAGCGAATTCGACACCGGCCTGGACCTGGAACTGCTGCAGGAAATCGGCCTGTACTTCTACGCCGTTCGCAAAAAATATCATCAGTTCGAGAGTGAATTCACCGCGGTGGACACCCGCGTCCAAGTCAACCAGGTTCCGGGTGGAATGATTTCCAACCTGGCCAACCAGTTGAAAGAGCAGGGCGCACTGAACCGCATGAACGAAGTGCTGGCGGAAATCCCACGAGTACGCGAAGACCTCGGCTTCCCGCCGCTGGTGACCCCGACCTCGCAGATCGTCGGCACCCAGGCGTTCTTCAACGTATTGGCCGGTGAGCGCTACAAGACCATCACCAACGAAGTGAAGCTCTACCTGCAAGGCGGATACGGCAAGGCACCTGGCGCGGTGAACGAGAAGCTGCGTCGCCAGGCCATCGGCAGCGAAGAAGTAATCGACGTGCGTCCGGCCGATTTGCTCAAGCCGGAAATGACCCGGTTGCGTGGTGAAATCGGTGCCTTGGCCAAATCCGAGGAAGACGTGCTGACCTACGCGATGTTCCCGGACATCGGGCGCAAGTTCCTCGAGGAGCGTGAAGCCGGCACCTTGACCCCCGAAGTACTGCTGCCTATCCCAGAGGCGGGCAGCGTGAGCTCCGCTGGCGGCGAAGGTGTACCGACCGAATTCGTCATCGATGTCCACGGCGAAACCTATCGCGTCGACATCACCGGCGTAGGCGTCAAGGCCGAGGGCAAGCGGCATTTTTATCTCTCCATCGATGGTATGCCGGAAGAGGTCGTGTTCGAACCGCTCAATGAGTTCGTCAGCGGCGGCAGCAGCAAGCGCAAGCAAGCCACCGCGCCGGGCCACGTCAGCACCACCATGCCAGGCAACATCGTTGATGTGCTGGTCAAGGAGGGCGACGTGGTGAAGGCCGGCCAAGCAGTGCTGATTACCGAAGCCATGAAAATGGAGACCGAAGTCCAGGCCGCCATCCCAGGCAAGGTCACGGCGATTCATGTAGCCAAGGGCGACCGGGTCAATCCGGGCGAAATCCTGGTGGAAATCGAAGGCTGA	MSKKIHVTDTILRDAHQSLLATRMRTEDMLPICDKLDKVGYWSLEVWGGATFDACVRFLKEDPWERLRQLRAALPNTRLQMLLRGQNLLGYRHYSDDVVKAFVAKAAVNGIDVFRIFDAMNDVRNLRVAIEAVKAAGKHAQGTIAYTTSPVHTIEAFVAQAKQMEAMGCDSVAIKDMAGLLTPYATGELVKALKAEQSLPVFIHSHDTAGLAAMCQLKAVENGADHIDTAISSFAWGTSHPGTESMVAALKGSEFDTGLDLELLQEIGLYFYAVRKKYHQFESEFTAVDTRVQVNQVPGGMISNLANQLKEQGALNRMNEVLAEIPRVREDLGFPPLVTPTSQIVGTQAFFNVLAGERYKTITNEVKLYLQGGYGKAPGAVNEKLRRQAIGSEEVIDVRPADLLKPEMTRLRGEIGALAKSEEDVLTYAMFPDIGRKFLEEREAGTLTPEVLLPIPEAGSVSSAGGEGVPTEFVIDVHGETYRVDITGVGVKAEGKRHFYLSIDGMPEEVVFEPLNEFVSGGSSKRKQATAPGHVSTTMPGNIVDVLVKEGDVVKAGQAVLITEAMKMETEVQAAIPGKVTAIHVAKGDRVNPGEILVEIEG	PGPT0001430_262	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001430-pycB-K01960	NA	NA
D1-36_05107	1446	cfiB	COG0439	2-oxoglutarate carboxylase small subunit	GTGGTATCACCGGCTCAAGGGAACCTCCAATTGATAACAAAGATCCTGATCGCCAACCGTGGTGAGATTGCCGTCCGCATCGTGCGCGCCTGCGCCGAGATGGGCATTCGCTCGGTCGCGGTCTACTCCGACGCGGACCGCCATGCGCTGCATGTCAAGCGTGCGGACGAGGCCCACAGCATTGGCGCCGATCCGCTGGCCGGTTACCTCAACCCGCGCAAATTGGTCAACCTCGCCGTGGAAACAGGCTGCGATGCCTTGCACCCCGGCTATGGCTTTCTGTCGGAAAACGCCGAGCTGGCAGATATCTGCGCTGAACGCGGAATAAAATTCATCGGTCCGTCGGCGGAAGTCATTCGGCGGATGGGCGACAAGACCGAAGCGCGCCGCAGCATGATCAAGGCGGGCGTACCGGTGACGCCAGGCACCGAAGGCAACGTCGCGGGCATCGAAGAAGCCCTGGCCGAAGGCGACCGAATCGGTTACCCGGTAATGCTTAAGGCTACGTCCGGTGGCGGCGGTCGGGGTATCCGTCGCTGCAACAGCCGCGAAGAACTCGAACAGGCCTTCCCGCGTGTCATCTCCGAAGCCACGAAGGCGTTTGGATCGGCGGAAGTGTTCCTCGAAAAATGCATCGTCAATCCCAAGCACATCGAAGCGCAGATCCTGGGCGACAGTTTCGGCAATGTGGTGCACCTGTTCGAACGGGACTGCTCGATCCAGCGCCGCAACCAGAAGCTGATCGAAATCGCCCCCAGCCCGCAACTGACCCCCGAACAGCGTGCCTATATCGGCGACCTGTCTGTGCGCGCCGCCAAGGCTGTCGGTTACGAGAATGCCGGTACCGTTGAGTTCCTGCTCGCCGAAGGCGAGGTGTACTTCATGGAGATGAACACCCGGGTCCAGGTAGAGCACACCATTACCGAAGAAATCACCGGTATCGATGTGGTGCGCGAGCAGATTCGCATCGCCTCCGGGCTGCCGCTGTCGGTCAAGCAGGAAGACATCCAGCACCGCGGCTTTGCGTTGCAGTTCCGCATCAACGCCGAGGACCCGAAAAACAACTTCCTGCCCAGCTTCGGCAAGATCACCCGCTACTACGCCCCGGGTGGCCCGGGCGTGCGCACCGACACGGCGATCTACACCGGTTACACCATTCCGCCGTTCTACGATTCGATGTGCCTGAAGCTGGTGGTCTGGGCGCTGACCTGGGAAGAAGCGATGGACCGCGGCTTGCGGGCCCTGGATGACATGCGCCTGCAAGGGGTCAAGACCACCGCCGCGTATTACCAGGAAATCCTGCGCAATCCGGAGTTCCGCAGCGGCCAGTTCAATACCAGCTTCGTTGAAAGCCATCCGGAACTGACCAACTACTCGATCAAGCGCAAACCCGAAGAGCTGGCCCTGGCCATCGCCGCCGCCATTGCCGCCCACGCAGGCCTGTAA	MVSPAQGNLQLITKILIANRGEIAVRIVRACAEMGIRSVAVYSDADRHALHVKRADEAHSIGADPLAGYLNPRKLVNLAVETGCDALHPGYGFLSENAELADICAERGIKFIGPSAEVIRRMGDKTEARRSMIKAGVPVTPGTEGNVAGIEEALAEGDRIGYPVMLKATSGGGGRGIRRCNSREELEQAFPRVISEATKAFGSAEVFLEKCIVNPKHIEAQILGDSFGNVVHLFERDCSIQRRNQKLIEIAPSPQLTPEQRAYIGDLSVRAAKAVGYENAGTVEFLLAEGEVYFMEMNTRVQVEHTITEEITGIDVVREQIRIASGLPLSVKQEDIQHRGFALQFRINAEDPKNNFLPSFGKITRYYAPGGPGVRTDTAIYTGYTIPPFYDSMCLKLVVWALTWEEAMDRGLRALDDMRLQGVKTTAAYYQEILRNPEFRSGQFNTSFVESHPELTNYSIKRKPEELALAIAAAIAAHAGL	PGPT0001425_167	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_ORGANIC_ACID_UTILIZATION	PLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001425-pycA-K01959	NA	NA
D1-36_05108	963	cmpR_5	COG0583	HTH-type transcriptional activator CmpR	ATGCGTAAGTCATTGATGCGTATGACGTTGCGTCAGCTGCAAATCTTCAATGAGGTGTGCGATCTGAGGTCCTACAGCCGTGCGGCGGATGAAATGTCTCTCACGCAACCGGCCGTTAGCCTACAGATTCGATCCCTGGAAGAGCTGATCGGCCAGCCGTTGTTTGAGTATGTCGGCAAAAAACTCTACATGACCGAAGCCGCCGAAGCGCTGCAACGCGCCAGCCGGGATATCTTCGGGCGTTTGGAAAACCTCGATATGCAGCTTTCCGACATGCAGGGCTCGCTGCAAGGCCAGCTGAAGCTTGCGGTGGAGTCCAGCGCCAAGTACTTCGTCCCGCATCTGTTCGCCGCGTTCAAGCGCCAGCATCCGGAGGTCAACCTGAACCTTACGGTGGTCAATCGCGGCCAAGTCATCCGCAGGCTTTCGGATAACCGGGATGACCTGGTGATCATGTCCATGGTGCCCCAGGACATGGGCCTGGAGTTTCTGCCGTTTCTCAATAATCCCATCGTTGCGGTGGCGCCGCCCGATCATCCGCTGTGCCACATGGGCTCATTGCGCTTGCAAGACCTGGAACCCTATACGCAGCTGTTGCGCGAGCCGGGTTCAGGCACGCGGCTGGCCTGTGAGGAATATTTCAAGGAGAAACGGGTGCATTTCACCCAGACGCTGGAGGTGGCGTCTGCGGAAGCCCAGCGTGAATGCGTGGTGGCCGGGCTGGGCGTGGCGCTCTTGACGCGCCACGCCGTGAGCCGGGAATTGTCGTCGGGCGCGCTCATCGAGTTGCCGGTGGAGGAGCTTCCGCTGTATCGCAGCTGGTGCCTTGTACAGGCCCGGGCCAAGCGCCTATCACCGGTGGCTCATGCGTTTCTGGCATTCGTTCGCGGCGAACGTGCGCAGATCATCGGCTTGGTTGAGCGTTTCGACGGGAAACCGCCGGCGTTGCCTGCCAGTAATTGA	MRKSLMRMTLRQLQIFNEVCDLRSYSRAADEMSLTQPAVSLQIRSLEELIGQPLFEYVGKKLYMTEAAEALQRASRDIFGRLENLDMQLSDMQGSLQGQLKLAVESSAKYFVPHLFAAFKRQHPEVNLNLTVVNRGQVIRRLSDNRDDLVIMSMVPQDMGLEFLPFLNNPIVAVAPPDHPLCHMGSLRLQDLEPYTQLLREPGSGTRLACEEYFKEKRVHFTQTLEVASAEAQRECVVAGLGVALLTRHAVSRELSSGALIELPVEELPLYRSWCLVQARAKRLSPVAHAFLAFVRGERAQIIGLVERFDGKPPALPASN	PGPT0001160_217	DIRECT EFFECT	BIO-FERTILIZATION	CARBON_DIOXID_FIXATION	CO2_FIXATION-RuBisCo	CO2_FIXATION-RuBisCo_BIOSYNTHESIS_REGULATION,PGPT0001160-cbbR|cmpR|ndhR-K21703	NA	NA
D1-36_05109	210			hypothetical protein	ATGACCCAGTCCTACGAAGAACGCAGCGCCGCCAAAACCCGTCGCCAGCAGGAAGACCAGCGCCGCATGGCGTTCCGTCGTGCCATCGAAGACCGCTATGAGCAGCGTCAGCTCCTGGCGCAAATAAGCGAATATCCTGACCTGATGGAAATCAATTACTGGCAGGCAACGCCGGCGGTTTCCCGTCGAAACGCTCAACCAAGCCGATGA	MTQSYEERSAAKTRRQQEDQRRMAFRRAIEDRYEQRQLLAQISEYPDLMEINYWQATPAVSRRNAQPSR				NA	NA	NA	NA	NA
D1-36_05110	105			hypothetical protein	ATGACGGTGAGGGATGACGGTTTGGCGGCGCGAGCGTTACAGAACGATGAATTCGGCCAAATGCCCCGTGGTGAGGGAGCTCGCTCCCTCGCCCAAAAGCCCTGA	MTVRDDGLAARALQNDEFGQMPRGEGARSLAQKP				NA	NA	NA	NA	NA
D1-36_05111	867	hexR_3	COG1737	HTH-type transcriptional regulator HexR	TTGAACCTGTTGCAACACATTGCCCAGTCACGCCACTTGCTGCGCAAATCGGAGCTGAAAGTCGCCGATCATGTACTGCTTGATCCCGCGGCCGTGATGCACAGTTCCATGGCCGATCTGGCCCACAGCGTTGGCATCAGCGAACCAACCATCGTGCGTTTTTGCCGGGCTATCGGTTGCTCGGGTTTCCAGGACTTAAAGCTCAAATTGGCGCAAAGCCTGGCGGCCGGTGCCAGTTTCGGGCAGTTCGCTATTCATGAAGACGATTCGGTCGCCGACTATAGCCTGAAAATTTTCGACACGACGCTGCACACCCTGATGGAGGTCCGCGAGAAACTTGACCCGGTCGCGCTGCAGAAAGCCGTGACGGCAATGTCCCAGGCCCAACGTGTCGAGTTCTACGGGTTCGGCGCCTCGGGTGCGGTGGCGGCCGACGCCCAGCACAAGTTTTTCCGGTTGCTGCTGACGGCGGCGGCTTATTCCGACCCGCACATGCAAGCCATGTCGGCCGTCACGTTGAAGCCGACCGACGTGGCGATCTGTATTTCCCAGTCGGGGCGCTCCAAGGATCTGTTGATCACTGCCAATCTGGTGCGTGAAAGCGGCGCCTCGCTGATCACCTTGTGTCCGAGCCAGACACCGCTGGCTGAGCTCTCCACCGTGAACCTGGCGATCGACGTGCATGAAGACACGGAAATCTATACGCCATTGACGTCGCGCATTGCCCACCTGGTGGTTATCGATGTGCTGGCGATGGGCGTCGCCATGGCGCGTGGCCCAAGCCTGGTCAACCACCTCAAGAGCGTGAAGCGCAGCCTTCGCAGCTTGCGGTTGTCACCCAAGTCGGTGAAAGCGCTGGACGACTGA	MNLLQHIAQSRHLLRKSELKVADHVLLDPAAVMHSSMADLAHSVGISEPTIVRFCRAIGCSGFQDLKLKLAQSLAAGASFGQFAIHEDDSVADYSLKIFDTTLHTLMEVREKLDPVALQKAVTAMSQAQRVEFYGFGASGAVAADAQHKFFRLLLTAAAYSDPHMQAMSAVTLKPTDVAICISQSGRSKDLLITANLVRESGASLITLCPSQTPLAELSTVNLAIDVHEDTEIYTPLTSRIAHLVVIDVLAMGVAMARGPSLVNHLKSVKRSLRSLRLSPKSVKALDD	PGPT0017985_592	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
D1-36_05112	2865			hypothetical protein	ATGACCTTCAATTCCGATCTGGCAGGCGCGCGTGTAGAGCCGCGGATTATCTGCAAGCAGTACGCCACGGAAATGGCGGTCGAACGCACCAGGTTGTTGTACCAGGGCTCGCTGCTGCCCACATTGTTCATGCTGATCAACGGTCTGGTCTGCGCGGCGCTGCTGTGGGAGCCTCAGCGCTATTTCCTGGTCAGCGTGTGGCTGGTCTGGTTACTGTCGCTGGTCGCGCTGCGGGTGATCCAGGTGGCCGCTTTCGATTCGGCGATACCAAGCCGCCAGGCCCACCCGGTCTGGTTGCGCATGTTTCTTCTGGGCTCGGCCATGACCGGCCTGACGCTGGCCGGTGCGGGCATTGCCCTGGTGCCGGCAGACAGTTTCCAGCAACAGGCTTGGGTGTTCGGCCTGATCGGCGCCGCGACCCTCTCTGCCAGTGTCGCTTACGCCGTGAGTCTACCGGCGTTCCTGTCCTTTACCTTGCCCTGTCTTTTGCCGGCTATCGCTTATCTTTTCTGGGGGCCGGACGAGCATCAACGTGGCTGGGGTTGGCTCGGGCTGGTGGTGCTGGTCTCGCTGAGCGTGGTGGCCTGGCAGGTCAACCGGCTGATACAGAACGGGATGTTGCGACGGTTCCAGAACCAGGCGTTGATCGAGCATTTGCAGCAGGCACAAAGCCGCGGCGCGCAGCTCAACGAGGCGTTGGCCCGGGAGGTCGAACAGCGTCGCTCCGCCGAGGCCCAATTGCGCACGGCGCAGGTTGGCCTGGAGGCGCGGGTAGCGCAGCGCAGCCTCGAACTGGAGGCGGCCAGCCAGGCCCTGGTCAAGAGTGAAGCGCGCCTGGCGTTGGCCCTCAAGGCCAGTGAGCTGGGGTTGTGGGACTGGAACCTGCAGACCGACGAGGTTCATCACACCCAGCTCAAGGAGCTATTTGGTCTGGAACCCGAATACATCACGGCCATGCTCAGTCATCTCACCCCGCGCCTTCATCCCCAAGACCTTCCGGCGCTCAAGCGTGCCCTTGTCGAACATCTGAAGGGCCGCAGCGAGGATTACCAGATCGAATACCGCGTGCGCCACGGCGACGGCCATTGGGTCTGGATCGAAGACCGCGGCCGGGCCGTGGAGCGCAGCGCGAATGGGCGGGTACTGCGCATGGTCGGTACGCGCCGCAACATCAGCGTCGGCAAGGAGCTGGAACAGCAGCGCCAACTGGCCGCCACGGTGTTCGAGGCCGCCAGTGAGGGTATCGTGATTTTGGATCCCAATTACGCGCTGCTTGCCGCCAACCAGGCGTTTACACGAGTGACCGGCTTCGATATCGCGGACATGCTGGGGCGCAATGTGGTTGATCTGCCTTGCAGTCGCGACGCGCGTCGGCACTATCCGGTGATTCGCCAAGCGCTCAAGCAGCACGGCACCTGGCAAGGCGAGCTGGTTGAGGCGCGCGCCAACGGCGAGCTCTACCCACAGTGGCTCCAGTTGAATGTCGTGCGGGACTCGCGGGGAAATATCAGCCATATAGTCGGTTTTTTCGCCGATCTTTCAGCGCGGCGCGAATCCGAAGAGCGGATGCGCTATCTGACCCATTATGACGAGCTGACCGGGCTGGCGAACCGCTCGCTGTTCCGTGAGCGCTTGAACGAAGCCCATCAGCGGGTGCGCCAGGGAGGACGGCGTAGCCTGGCCTTGCTGCACATCAACCTCGACCGTTTCAAACTGCTCAACGACAGCCTCGGCCATGACATCGCCGACCAGCTTTTGCAGAAAATGGCTCGGCGCCTGATCAACGCATTGCCCGAAGCCGACACCATCGCCCGGCTGTCCGGCGATGAGTTTGCGGTACTGTTCGACGCCTACGGCAATCTTTCGAGCCTGGCGCGAGTGGCGACCCGACTGGCCACCAAGCTTCGCGTGCCGGTGACGATCGATGGTCACGAACTGGTGGTCAGCGCCTCCATAGGCATCAGCCTGCTGCCGGATAACGCGCGGGAAATTTCCACCCTGGTCAGCCAGGCCAACATGGCCATGCAACACGCCAAGCACTTGGGCGGGAATAATTTCCAGTTCTACACCGACAGCCTGCAAGCCAGCACGCTGGAGCGTCTGCAGTTGGAGAACCAGTTGCGCAAGGCGTTGGAAGAACAACAACTGAAAGTGTTCTACCAACCCAAGCTATGCCTGGCGACGGGGCGTCTGAATGCCGCCGAAGCGTTGGTGCGCTGGGAGCATCCGAGCATGGGCCAGATTCCACCCGGGGAGTTTATCGGTCTCGCCGAAGAAACCGGGCTGATCGGTCCGATCGGCGAGTTCGTGCTGCGCCAGGCTTGTTGGCAGGCGTGTGAATGGCAGCGCCAGGGGCTGGAGTCCATTCGTGTCTCGGTCAACCTTTCGGTGCATCAGTTGCGCCAGGGCAAGTTGGTCAGCCTGGTGCGCCAAGTGCTCGAAGAAACCGGCCTGGCTCCGCATTATTTGGAGCTGGAACTCACGGAGAGCCAGTTGCTTGACAGCGTCGAGCACATCATCGCTACGTTCCAACAGCTGCGGGATCTGGGAGTCAAGCTGGCCATCGATGACTTTGGCACCGGTTATTCGTCCCTGAGCTACCTCAAGCGCATCCCGGTGGATTACGTGAAGATCGACCAGGCCTTCGTTCGTGGGCTGGAGGAGGGGGGCGAGGACGCGGCCATCACCCGCGCGATCATTGCCATGGCCCACGGACTGTCGCTCAAGGTTGTGGCCGAAGGTGTCGAGCGGGAGGGACAGCTTGAGTTCCTGAAGAATGAGCACTGCGACGAAGTCCAGGGTTATCTCATCAGTCGACCGGTTGGAGCCGAAGGCCTCGCCCGTCTGCTGCGGGAGCAGGGATAG	MTFNSDLAGARVEPRIICKQYATEMAVERTRLLYQGSLLPTLFMLINGLVCAALLWEPQRYFLVSVWLVWLLSLVALRVIQVAAFDSAIPSRQAHPVWLRMFLLGSAMTGLTLAGAGIALVPADSFQQQAWVFGLIGAATLSASVAYAVSLPAFLSFTLPCLLPAIAYLFWGPDEHQRGWGWLGLVVLVSLSVVAWQVNRLIQNGMLRRFQNQALIEHLQQAQSRGAQLNEALAREVEQRRSAEAQLRTAQVGLEARVAQRSLELEAASQALVKSEARLALALKASELGLWDWNLQTDEVHHTQLKELFGLEPEYITAMLSHLTPRLHPQDLPALKRALVEHLKGRSEDYQIEYRVRHGDGHWVWIEDRGRAVERSANGRVLRMVGTRRNISVGKELEQQRQLAATVFEAASEGIVILDPNYALLAANQAFTRVTGFDIADMLGRNVVDLPCSRDARRHYPVIRQALKQHGTWQGELVEARANGELYPQWLQLNVVRDSRGNISHIVGFFADLSARRESEERMRYLTHYDELTGLANRSLFRERLNEAHQRVRQGGRRSLALLHINLDRFKLLNDSLGHDIADQLLQKMARRLINALPEADTIARLSGDEFAVLFDAYGNLSSLARVATRLATKLRVPVTIDGHELVVSASIGISLLPDNAREISTLVSQANMAMQHAKHLGGNNFQFYTDSLQASTLERLQLENQLRKALEEQQLKVFYQPKLCLATGRLNAAEALVRWEHPSMGQIPPGEFIGLAEETGLIGPIGEFVLRQACWQACEWQRQGLESIRVSVNLSVHQLRQGKLVSLVRQVLEETGLAPHYLELELTESQLLDSVEHIIATFQQLRDLGVKLAIDDFGTGYSSLSYLKRIPVDYVKIDQAFVRGLEEGGEDAAITRAIIAMAHGLSLKVVAEGVEREGQLEFLKNEHCDEVQGYLISRPVGAEGLARLLREQG	PGPT0023624_603	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	OTHER_COLONIZATION_RELATED_PROTEINS	COLONIZATION-HOST_INVASION_FACTORS	HOST_INVASION-GGDEF|EAL|PAC|PAS-DOMAIN-CONTAINING_PROTEIN,PGPT0023624-GGDEF|EAL|PAC|PAS_domain_containing_protein-NA	NA	NA
D1-36_05113	2184	uvrD	COG0210	DNA helicase II	ATGCGCGATGATCTCTCCCTTCTGCTGAACTCCCTAAACGATGCCCAACGCCAGGCAGTTGCTGCCTCCGTGGGCCGTCAATTGGTCCTGGCCGGTGCCGGCTCCGGCAAGACCCGAGTGCTGGTGCACCGTATCGCCTGGTTGATCCAGGTCGAGAACGCCTCGCCCCATTCGATCCTGTCGGTCACCTTTACCAACAAGGCTGCCGCCGAGATGCGCCATCGCATCGAACAGTTGATGGGCATCAACCCGGCTGGCATGTGGGTCGGTACGTTCCACGGCCTGGCCCATCGCCTGTTGCGCGCCCATTGGCAGGAAGCCGGCCTGAGCCAGACCTTCCAGATCCTGGACAGCGACGATCAACAACGGTTGGTCAAGCGCGTGATTCGCGAACTTGGGTTGGACGAACAACGCTGGCCCGCCCGCCAGGCTCAGTGGTTCATCAATGGTCAGAAGGACGAAGGCCTGCGCCCGCAGCATATCCAGGCCAGCGGTGACCTGTTCCTGGCAACCATGCGCAGCATCTACGAAGCCTACGAGGCGGCCTGCCAGCGTGCGGGGGTTATCGACTTCTCGGAACTGTTGCTGCGGGCGCTGGACCTGTGGCGTGACCACCCGGGGCTGCTGGAGCATTACCAGAGGCGCTTCCGGCATGTCCTGGTGGACGAATTCCAAGACACCAACGCCGTTCAATACGCGTGGTTGCGCCTGCTCGCCAAGGGCGGCGACAGCCTGATGGTCGTGGGCGACGACGACCAGTCGATCTACGGCTGGCGTGGCGCCAAGATCGAGAACATCCACCAGTACTCGGCGGACTTTCCCGACGCCGAGGTGATTCGCCTGGAACAGAACTACCGCTCCACCGCTGGCATCCTCAAGGCCGCCAACGCCCTGATCGCCAACAACACCGGTCGCCTGGGCAAGGAGTTGTGGACCGAGGGCAACGAAGGCGAGGCGATCAATCTCTACGCCGCGTTCAACGAACACGATGAGGCCCGCTATGTGGTGGAAACCATCGAGAGCGCGTTGAAAACCGGCCTGGCCCGCAGCGACATCGCCATCCTTTATCGCTCCAACGCCCAGTCGCGAGTGCTTGAAGAGGCCTTGCTTCGCGAACGGATCCCTTACCGTATCTATGGCGGCCAGCGCTTCTTTGAACGCGCCGAAATCAAGAACGCCATGGCCTACCTGCGCCTGATCGAAGGACGAGGCAACGACGCGGCCCTGGAGCGGGTAATCAATGTGCCGACGCGGGGCATCGGCGAGAAAACCGTCGAGGCGATTCGCGACCATGCCCGTCACAGCCATGTGTCGATGTGGGAAGCCATGCGCCAGCTGGTGGACAACAAAGGCGTCACCGGCCGTGCCGCCGGCGCCCTGAAGGCTTTCATGGACCTGATAGAAGACCTGACCGCCAAATGCGGGGAAATGCCCCTTCACTTGATGACCCAGACCGTCATCGAGCAGTCCGGCCTGATTGCCTACCATGAAGCTGAAAAAGGCGAGAAAGGCCAGGCCCGGGTGGAAAACCTTGAGGAACTGGTCAGCGCTGCGCGCAACTTCGAAAACACCGAAGAAGATGAAGACCTGTCGCCGTTGTCGGCCTTCCTCGGCCACGCCTCCCTGGAGGCCGGCGACACCCAGGCGGACGAGCATGAAGACAGCATTCAGCTCATGACCCTGCATAGCGCCAAGGGCCTAGAATTCCCCTACGTCTTCCTGGTGGGCATGGAAGAAGGTCTGTTTCCCCACAAGATGAGCCTGGAAGAGCCCGGACGCCTGGAAGAGGAACGGCGCCTGGCTTATGTCGGCATCACGCGTGCCATGCAGAACCTGGTGATGACCTACGCTGAAACCCGGCGTTTGTATGGCAGCGAGACCTACAACAAAGTGTCGCGATTCGTACGTGAAGTGCCGAAGGGTCTGATCCAGGAAGTACGTCTTTCCAACAGTGTCAGTCGACCGTTCGGCGGCAGTCAGCAACAAGGCACCAGCAGCCTGTTTGGCGGCAGCGACATCCCGGAGACCGGCTTCAGCCTGGGCCAGGCCGTCCGACATTCGGTATTCGGCGAAGGCGTGATTCTCAACTTCGAAGGCGCCGGTGCCCAGGCTCGGGTCCAAGTCAACTTCAGCGAAGGCAGCAAATGGCTGATGCTGGGGTATGCCAAGTTGGAAGCGATCTAA	MRDDLSLLLNSLNDAQRQAVAASVGRQLVLAGAGSGKTRVLVHRIAWLIQVENASPHSILSVTFTNKAAAEMRHRIEQLMGINPAGMWVGTFHGLAHRLLRAHWQEAGLSQTFQILDSDDQQRLVKRVIRELGLDEQRWPARQAQWFINGQKDEGLRPQHIQASGDLFLATMRSIYEAYEAACQRAGVIDFSELLLRALDLWRDHPGLLEHYQRRFRHVLVDEFQDTNAVQYAWLRLLAKGGDSLMVVGDDDQSIYGWRGAKIENIHQYSADFPDAEVIRLEQNYRSTAGILKAANALIANNTGRLGKELWTEGNEGEAINLYAAFNEHDEARYVVETIESALKTGLARSDIAILYRSNAQSRVLEEALLRERIPYRIYGGQRFFERAEIKNAMAYLRLIEGRGNDAALERVINVPTRGIGEKTVEAIRDHARHSHVSMWEAMRQLVDNKGVTGRAAGALKAFMDLIEDLTAKCGEMPLHLMTQTVIEQSGLIAYHEAEKGEKGQARVENLEELVSAARNFENTEEDEDLSPLSAFLGHASLEAGDTQADEHEDSIQLMTLHSAKGLEFPYVFLVGMEEGLFPHKMSLEEPGRLEEERRLAYVGITRAMQNLVMTYAETRRLYGSETYNKVSRFVREVPKGLIQEVRLSNSVSRPFGGSQQQGTSSLFGGSDIPETGFSLGQAVRHSVFGEGVILNFEGAGAQARVQVNFSEGSKWLMLGYAKLEAI				NA	NA	NA	NA	NA
D1-36_05114	873			hypothetical protein	ATGAAACGTTTTCTTAGCATCGCCATGGCGTTGTGCATCGGCCTGACGATGGCCATCGACGCCAATGCCGCCAAGCGTTTTGGCGGTGGTAAAAGTTCGGGCGCAGCCCCGACTCATCAGACCAGCCAGATGGCGCCGTCGTCTGCCGCCGGGTCCACTGCCGCCACCGCGGGCGCGGCAGGTGCTGCTGGCGCGGCCACCAAGGCCAGCGGCGCTTCGCGCTGGCTCGGCCCCCTGGCCGGTATCGCGGCCGGTGGTCTGCTCGCTTCCATGTTCATGGGCGACGGCTTCCAGGGCATGCAGATCTTCGACATCCTGATCATGGCGGTCATTGCCTTCCTGGTCTTCCGTTTCATCGCAGCCCGTCGTCGCAAGCAGCAGGAGCAATTCGCTCCGGCCGGCCATGCGCCGATGCAGCGTGAAGTGTTCAACCAACAACCTGCCGGTGGCTCGATCTTCGGTGGCGCGGCTGCTCCAGTGGCGCGCCCGGTGATCAACGCACCTGCCTGGTTCAACGAAGAACGCTTCATCGAAGCGGCACGCAGCCATTTCATGTCCCTGCAGCAGCATTGGGACGCAAACGAAATGGACAAGATCGCCGAGTTCGTCACCCCGCAATTGCTGGAGTTCCTCAAGCGCGAGCGGGCCGAGTTGGGTGATGGCTATCAGTCCACCTACATCGACAACCTCCAGATACAACTCGAAGGCGTCGACGATCGCGCCGACAAGACTATCGCCACCCTGACCTTCGTCGGCGTGTCGAAAGACTCTCGCTTCGACCAAGGTGAAGCGTTCAGCGAAAGCTGGAACATGGAACGTGCCCAAGGCGAAAACCAGCCTTGGCTGGTCGCAGGTATCCGCCAGAACGGTTGA	MKRFLSIAMALCIGLTMAIDANAAKRFGGGKSSGAAPTHQTSQMAPSSAAGSTAATAGAAGAAGAATKASGASRWLGPLAGIAAGGLLASMFMGDGFQGMQIFDILIMAVIAFLVFRFIAARRRKQQEQFAPAGHAPMQREVFNQQPAGGSIFGGAAAPVARPVINAPAWFNEERFIEAARSHFMSLQQHWDANEMDKIAEFVTPQLLEFLKRERAELGDGYQSTYIDNLQIQLEGVDDRADKTIATLTFVGVSKDSRFDQGEAFSESWNMERAQGENQPWLVAGIRQNG				NA	NA	NA	NA	NA
D1-36_05115	408			hypothetical protein	GTGGAAGAAATCATCGAACAATTACGCGAAGCCAACGAACCCGTACCGGTTCCATTGGAATTGCCCGACGAAGACTTGCTGGTGGAAATCGAAGAGCAGCTATTCATCGATATTCCGTTCGTGTTCCGGGAGTTTTTGCTCACCGTCAGCGATGTCGTCTACGGCAGCCTGGAGCCGGTGACCGTTACCGATCCGCAGTCCCATACCTACCTGCCGGATGTGGCCGCCAATGCCTGGGATGCCGGTGTTGATCGAAGCCTGATTCCGATCTGCCAGGACGGCGATGACTACTACTGTGTCGAAGAAGACGGCACCGTAGTGCTATGGCAGGCAGAAGAGGAGCTGATCGCCGAGGAAACGTGGGAATCGGTATGGCACTGGGCAAGGGATGTCTGGTTGGAAAGTTGA	MEEIIEQLREANEPVPVPLELPDEDLLVEIEEQLFIDIPFVFREFLLTVSDVVYGSLEPVTVTDPQSHTYLPDVAANAWDAGVDRSLIPICQDGDDYYCVEEDGTVVLWQAEEELIAEETWESVWHWARDVWLES				NA	NA	NA	NA	NA
D1-36_05116	1764	kefB		Glutathione-regulated potassium-efflux system protein KefB	ATGCACGCCATCAGTTTCATTCAAGACCTGGCGATCATCTTGCTGGCGGCCGGGTTGGTCACCGTACTGTTCCATCGTTTCAAGCAACCGGTGGTGCTGGGCTACATTGTCGCCGGCTTTATCATCGGCCCGCATACGCCGCCGTTCGGCTTCATTCACGATGAAGAAACGATCAAGACCCTGGCCGAGCTCGGCGTGATCTTCCTCATGTTCTCCCTGGGCCTGGAGTTCAGCCTGCGCAAACTGTTCAAGGTGGGAGCCACGGCGTTTATCGCTGCGTTCCTAGAGATCGTATTGATGATATGGATCGGCTATGAAATTGGTCGCTGGTTCGACTGGAGCGCCATGGACTCGCTGTTTCTCGGCGCGATCCTCGCGATTTCCTCAACCACGATTATTGTCAAAGCCTTGAATGACCTGAAGATGAAAAACGAGCGCTTTGCGCAGTTGATCTTCGGGGTGTTGATCGTTGAGGACATCCTCGGCATCGGTATCATCGCTTTACTGTCGAGCATCGCTGTCAGCGGCACCGTAAGCTCCGGCGAGGTGTTTTCCACGGTCGGCAAGCTGTCGCTGTTCATGGTCGTCGCGTTGGTCGTCGGCATCCTGCTGGTGCCGCGATTGCTGGCGTACGTGGCGAAGTTCGACAGCAACGAGATGTTGTTGATTACCGTACTGGGGCTTTGTTTCGGCTTCTGCCTGCTGGTGGTAAAGCTGGAATACAGCATGGTGCTTGGGGCGTTCCTGATCGGTGCGATCATGGCCGAGTCTCGACAATTGCTGAAGATCGAGCGATTGGTGGAGCCTGTGCGCGATCTGTTCAGCGCAATATTTTTCGTGGCTATCGGGCTGATGCTCGATCCGGCCATTGTGCTTCAATATGCGTGGCCGATCGCAGTCATTACCTGCGCGGTGGTATTGGGCAAGATATTTTCTTGTGGTCTCGGCGCCTTTATCGCGGGAAATGATGGACGCACCTCTCTACGAGTCGGGATGGGGCTTTCACAGATTGGCGAATTTTCTTTCATTATCGCTTCGTTGGGGATGACCCTGCAGGTGACCAGCGATTTCCTTTATCCGGTCGCTGTGGCTGTCTCGGTGCTCACGACATTGTCGACCCCTTATCTGATTCGGGCCGCTGATCCGTTGTCGGTCAGATTGGCGTCGGCAATGCCGCAGCGATTGACGCGCGTGCTGGGCATGTATGGAGAATGGTTGCGCAGCATCCAGCCACAGGGTGAGGGAGCCATGCTGGCTTCCATCATCAGGCGCATCATGCTGCAGGTGGGTGTCAACCTGGCATTGGTGATCGCGATTTTTGTCTCGGGGGGGTATTTTGCCGAACGAGTGTCTGCCTATCTGCAAGACTGGATCAGCGATCCGAGCTGGCAGAAAGCGTTGATCTGGGGCGGCTCGCTGTTCCTGTCGCTACCGTTCCTGATCGCGGCGTACCGCAAGCTCAAGGCGTTGTCGATGCTGCTGGCGGAAATGGGTGTAAAGCCGGAGATGGCCGGCCGCCACACCCAGCGCGTGCGTCGCGTGATCGCCGAAGTGATTCCGCTCCTTTCGCTGCTGGTGATTTTCCTGCTGCTGGCAGCCTTGTCAGCCAGTATCTTGCCGACCAACAAGCTGCTGGTATGGATCGCAGTGGTCGCGATTGCCTTGGCGGCCCTGCTTTGGCGCTGGTTTGTCCGCCTGCATACACGAATGCAGGTGGCCTTGCTCGAAACGCTGGACAATCACAAGGGATCGTCCGGGCATTGA	MHAISFIQDLAIILLAAGLVTVLFHRFKQPVVLGYIVAGFIIGPHTPPFGFIHDEETIKTLAELGVIFLMFSLGLEFSLRKLFKVGATAFIAAFLEIVLMIWIGYEIGRWFDWSAMDSLFLGAILAISSTTIIVKALNDLKMKNERFAQLIFGVLIVEDILGIGIIALLSSIAVSGTVSSGEVFSTVGKLSLFMVVALVVGILLVPRLLAYVAKFDSNEMLLITVLGLCFGFCLLVVKLEYSMVLGAFLIGAIMAESRQLLKIERLVEPVRDLFSAIFFVAIGLMLDPAIVLQYAWPIAVITCAVVLGKIFSCGLGAFIAGNDGRTSLRVGMGLSQIGEFSFIIASLGMTLQVTSDFLYPVAVAVSVLTTLSTPYLIRAADPLSVRLASAMPQRLTRVLGMYGEWLRSIQPQGEGAMLASIIRRIMLQVGVNLALVIAIFVSGGYFAERVSAYLQDWISDPSWQKALIWGGSLFLSLPFLIAAYRKLKALSMLLAEMGVKPEMAGRHTQRVRRVIAEVIPLLSLLVIFLLLAALSASILPTNKLLVWIAVVAIALAALLWRWFVRLHTRMQVALLETLDNHKGSSGH	PGPT0014395_1951	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-H+_ANTIPORTER,PGPT0014395-ybaL|TC_KEF-K03455	NA	NA
D1-36_05117	114			hypothetical protein	ATGACGGGTTTTTTGCAGGTTAACACCGGGACTTCTTACGAAAAGACGGTGCAATATATGGAAACAGATCCACCCAAGCGTGACGGCAAGTCGTGGCGCAGCGTCCCGATATGA	MTGFLQVNTGTSYEKTVQYMETDPPKRDGKSWRSVPI				NA	NA	NA	NA	NA
D1-36_05118	570			hypothetical protein	ATGAGTGGTTTGAACCCGCTAACCACATTCCAGCGCCCGCAGAGGCGCGCCCTCGAAACTGCTGCCTTGAACCGTGAGAACGTTATGGAACCCGGAAACGCCCAGCTGTCGATGACGGTGTTGATGACCCCCGATATGGCCAACTTCTCTGGCAATGTCCATGGCGGCACCTTGCTCAAGTACCTGGATGAGGTGGCCTACGCTTGTGCCAGCCGCTATGCCGGCCGATACGTGGTGACATTGTCGGTAGACCAGGTGATTTTTCGCGAGCCGATTCATGTCGGCGAGTTGGTCACCTTCCTGGCGTCGGTGAACTACACCGGCAATACCTCGATGGAAGTGGGCATCAAAGTCGTGACCGAGAACATTCGTGAGCGCTCGGTTCGCCATACCAATAGCTGCTTCTTCACCATGGTAGCGGTGGATGACCAGCGCAAGCCGGCGCCCGTCCCGCCGCTGCAACCGCAGAACAGCGAAGAGAAGCGCCGCTACGAACAAGCGCAGCAACGTCGCCAGATTCGCCAGGAACTGGAGAGGCGTTATCAGGAAATCAAGGCGGACGGGCCGTAA	MSGLNPLTTFQRPQRRALETAALNRENVMEPGNAQLSMTVLMTPDMANFSGNVHGGTLLKYLDEVAYACASRYAGRYVVTLSVDQVIFREPIHVGELVTFLASVNYTGNTSMEVGIKVVTENIRERSVRHTNSCFFTMVAVDDQRKPAPVPPLQPQNSEEKRRYEQAQQRRQIRQELERRYQEIKADGP				NA	NA	NA	NA	NA
D1-36_05119	873	pdxY	COG2240	Pyridoxal kinase PdxY	ATGAAACGCACGCCGCATCTGCTTGCCATACAGTCCCACGTGATATTCGGCCATGCCGGCAACAGCGCCGCCGTGTTTGCGATGCAGCGGGTCGGCGTAAACGTGTGGCCGCTCAACACCGTGCAGTTTTCCAATCACACCCAATACGGGCAGTGGGCCGGTGAAGTGCTCCCGCCGGACCAGATACCGCTGTTGGTAGAGGGCATCGCGGCCATTGGCGAGCTGGGCAATTGCGACGCGGTGCTGTCCGGTTATCTGGGTAGCGCAGCCCAGGGACAGGCGATCCTGTCGGGTGTGGCGCGCATCAAGCGTTGTAATCCCAAGGCGTTGTATCTGTGCGACCCGGTCATGGGGCATGCGGAGAAGGGCTGCATTGTCGCGCCCGAGGTGGGCAGGTTCCTGCTGGAAGAGGCCGCTGCCGTGGCTGACATCATGTGTCCTAACCAGCTGGAGCTGGACAGTTTTTCCGGCCGCAAGGCGCAATCACTACTCGACTGCCTGGCGATGGCCCGTGCGCTGTTGGCCCGTGGCCCGAAAGTCGTGCTGGTCAAGCACCTGGCTTATCCCGGCAAGCCCGAAGACAGCTTCGAGATGCTGTTGGTCACGGCTGAAGGCAGCTGGCACTTGCGCCGTCCATTGCTGGCGTTCCCCCGCCAACCGGTCGGAGTCGGCGACCTGACGTCGGGGCTGTTCCTGGCGCGGATACTGTTGGGGGACAGCCTGTCGGCAGCCTTTGAATTCACCGCTGCGGCCGTGCATGAGGTGCTGTTGGAAACCCAGGCGTGTGCAAGCTACGAATTGCAGCTGGTCCGCGCCCAGGACCGTATTGCCCATCCTCGCGTGCGATTCGAGGCCATGCCGATCAGCCTTTGA	MKRTPHLLAIQSHVIFGHAGNSAAVFAMQRVGVNVWPLNTVQFSNHTQYGQWAGEVLPPDQIPLLVEGIAAIGELGNCDAVLSGYLGSAAQGQAILSGVARIKRCNPKALYLCDPVMGHAEKGCIVAPEVGRFLLEEAAAVADIMCPNQLELDSFSGRKAQSLLDCLAMARALLARGPKVVLVKHLAYPGKPEDSFEMLLVTAEGSWHLRRPLLAFPRQPVGVGDLTSGLFLARILLGDSLSAAFEFTAAAVHEVLLETQACASYELQLVRAQDRIAHPRVRFEAMPISL	PGPT0009125_962	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
D1-36_05120	423			hypothetical protein	ATGCTGACCCTTGGAAACATTTTCGTGCTGATGCTGCTGGCTACCGGCGGCGCCTGGCTGTGGCACAACCATGGCTTGCGCGAACGAGCCTTGGCGAGGGTCATGCAACATTGCGCCAACCTGAAGATCGAGCTGCTGGACGGCAACGTGGCGCTGCGAAAGATCGGATTCGTCAAGGACGCCAACGGACGGCGGCGCCTGGCACGTATCTATAATTTCGAATTCACGGTGACGGGCGAGACCCGTCATACCGGCACCATCACTCAGTTCGGTGCCCACAGCGCGCATATCGAACTGGCTCCCTACCCGATGCCCTTCGAAGAGGCCCCGCCCACGCCAGTTGAGCCGGTGCAGACCCGGCCCAGGGCTGAAGTCATCGAACTGAGCCAGTGGCGTCAGGAGCACAACAAATGGAAGCCTTGA	MLTLGNIFVLMLLATGGAWLWHNHGLRERALARVMQHCANLKIELLDGNVALRKIGFVKDANGRRRLARIYNFEFTVTGETRHTGTITQFGAHSAHIELAPYPMPFEEAPPTPVEPVQTRPRAEVIELSQWRQEHNKWKP				NA	NA	NA	NA	NA
D1-36_05121	966	yeiR	COG0523	Zinc-binding GTPase YeiR	ATGTTGCAGCACATCCCCACTCATGTCATAGCCGGCCCTTTGGGCGCCGGCAAGACCAGCCTGATCAGGCATCTTCTGGCCCAGCGCCCGGCCAGCGAGCGCTGGGCGGTGCTGATCAACGAGTTCGGTCAGATCGGCCTGGATGCCGCGTTACTGACCCAGGCTGGCGATGGTATCGCACTGGGCGAAGTGGCCGGCGGTTGTTTGTGCTGCGTCAACGGCGCGCCGTTTCAGATCGGCCTTGGGCGTCTACTGCGCAAGGCTCGGCCGGATCGGCTGTTCATCGAACCCTCGGGCCTCGGCCATCCGGTGCAGTTGGTGCGGCAGCTGAACGAAGCACCCTGGCTTGGTGTACTGGCGGTGCAACCCTGCGTGCTGGTGTTGGATGCCCAGGCGATGGCGGACGGCAAGCCGTTGCCCGATGCGCAGCGACAAACCCTGGCGGATGCCGGACTGCTGGTGCTGAACAAATCCGAGACCCTTACGCAAGCCGACCGGGAACGGCTGGCGATGCAACTGCCAGGACGGACGCTGTACTGGACGCAGCACGCAGCGTTGCCGATCGACCAATTGCCTGGCCTGGCGGCTCGGGGCAGCGAGGCTGTGGATAACTTGAGCCTGCCCAAAAGCCTGGGTCGAATGGCGGCCATATGGACCGACCCGGCGGTGCCGATCCGCCTGTATCAACAGCAGGAGGGCGGCTGGAGTATCGGCTGGCGCTGGCACCCCAGCCAGCAATTCGACGCAGCGGCGCTTACGCATTGGCTAAAAGATCATCACTGGAAGCGCGCGAAGATGGTTATCCACAGTGCCGACGGTTGGGTTTCCGCCAATGCATTGGAAGGGGCGGCACTGCAATGGCAAGCCAGTGAATGGCGCGAAGACTCGCGGATCGAGCTGATATTCGACCAGCCGCAAGACATTGATCGCCTGCAAACGGGTCTGTTGATTGCTCGGTGCACCTGA	MLQHIPTHVIAGPLGAGKTSLIRHLLAQRPASERWAVLINEFGQIGLDAALLTQAGDGIALGEVAGGCLCCVNGAPFQIGLGRLLRKARPDRLFIEPSGLGHPVQLVRQLNEAPWLGVLAVQPCVLVLDAQAMADGKPLPDAQRQTLADAGLLVLNKSETLTQADRERLAMQLPGRTLYWTQHAALPIDQLPGLAARGSEAVDNLSLPKSLGRMAAIWTDPAVPIRLYQQQEGGWSIGWRWHPSQQFDAAALTHWLKDHHWKRAKMVIHSADGWVSANALEGAALQWQASEWREDSRIELIFDQPQDIDRLQTGLLIARCT				NA	NA	NA	NA	NA
D1-36_05122	354			hypothetical protein	ATGCGAATGATCGGCTGGTTGTTACTGGCGCTGACGTCGAACCAGGTACTGGCCCAGGCTTGCGTGGTCCACAGCCAGGCGGAGCGGCTCGATGTGAAAGTCTGCCAGCAGAACCGCAACATTCCGCAGAAGCTGTTTGCCGATGGCTTCTGCCAGCCAAACCTGGCCGGCCAGAAGGTCGAGGTGCAATACGTCGATCAGTGCCCCGGCGGCGCGTTCGGCGTTTGCCGCAACGCTCAGGTCGCCAATATGCCTTACCGCCAGGATATTCACTACTACGGCGTGGCGACCGATGCCGCTTACCTACAGCCATTTTGCGAAGGGCAAAGCCAGGGCACCTGGCATAAGCCTTAA	MRMIGWLLLALTSNQVLAQACVVHSQAERLDVKVCQQNRNIPQKLFADGFCQPNLAGQKVEVQYVDQCPGGAFGVCRNAQVANMPYRQDIHYYGVATDAAYLQPFCEGQSQGTWHKP				NA	NA	NA	NA	NA
D1-36_05123	651			hypothetical protein	ATGCTGGCGCCGAGTCTGAAAAGGGCATTGCAGGTACAGCAGGTCCAAGGCGATACACCGGAGATACTCACGAAGATCCTGGACGACGGCACCAACCTGGCGGTCTGGCAACGTCAGCTTCCCGCGCACATCGGCGATTTCGCGGCACTGGTACTTGCGTTGGACCAGCCATTGACCGAATCACGGGTGCTCGACTTGCCGGATGATGACGCCCAGCCAGCGCTGCAAGGCCTGGCTGCAGGCTTCAGCGACCTGCACGGCTATGAAGGCTTTATCGCCGACGTCTCTTGGCTGGTTTGCGCATTTGCTTGCCTGTTGGGGGCGCAACGGGTCGGTCTGCGTCTTCGCACGTTGGACAAGGCCATGTGCCCGCGCTTTCACGTTGATCACGTACCGGTGCGGCTGCTGACCACCTATGGGGGCGTCGGCAGCCAGTGGCTCAAGGAGGGCGTCATGGATCGCCAGCGCCTGGGGCAACCTGAGGCCGAACCGGTGGATCCACAAGTGATCGAGCAGTTCTGTTGCGGTGATGTCGGCTTGCTTAAAGGCGAGAAATGGCACGGCAACGAGGGGTTTGGCCTGATCCACCGCTCACCGGAACCCGCCCCGCAAGAGCGTCGCCTGATTCTCACGCTGGACTGGTTGGCTTAA	MLAPSLKRALQVQQVQGDTPEILTKILDDGTNLAVWQRQLPAHIGDFAALVLALDQPLTESRVLDLPDDDAQPALQGLAAGFSDLHGYEGFIADVSWLVCAFACLLGAQRVGLRLRTLDKAMCPRFHVDHVPVRLLTTYGGVGSQWLKEGVMDRQRLGQPEAEPVDPQVIEQFCCGDVGLLKGEKWHGNEGFGLIHRSPEPAPQERRLILTLDWLA				NA	NA	NA	NA	NA
D1-36_05124	1209	yciC	COG0523	Putative metal chaperone YciC	ATGACCAAGCGTCTCCCTGTGACCGTGCTTTCCGGATTTCTCGGTGCCGGAAAAAGTACCCTGCTTAATCACGTCCTGCGCAATCGGGATAACCTTCGCGTTGCCGTCATCGTCAACGATATGAGCGAGATCAACATCGATGGAAGCGAAGTCCAGCGAGACGTCAGCTTGAGCCGGTCGGAAGAGAAACTGGTGGAAATGAGCAACGGATGCATTTGTTGCACGTTGCGTGAGGACTTGCTTGAAGAAGTCGGGCAACTTGCCCGGGAAGGGCGCTTCGATTATCTGCTGATCGAATCCACAGGCATCTCCGAGCCGTTGCCAGTGGCCGAAACCTTCACGTTTCGTGACGAGGAGGGCCGAAGCCTGGCCGATGTGGCGCGGCTCGACACCATGGTGACGGTGGTCGATGGGGTGAATTTCCTGCTGGATTATCAGGCCGCGGAAAGCCTGGCGTCACGGGGGGAAACTCTGGGCGAGGACGACGAACGCTCGATCACCGACCTGCTGATCGAACAGATCGAGTTTGCCGACGTGATTCTGATCAGCAAGATCGACCTGATCAGCCAACACGAGCGGGAAGAGTTGACCGCGATTCTGCAGCGTCTCAACGCCCAGGCGCAGATCATTCCAATGGTCATGGGTCAGGTACCGCTGGGCCGTATTCTCGACACCGGCCTTTTCGACTTTGAGCGCGCCGCCCAGGCGCCTGGCTGGCTACAGGAACTGCGTGGCGAGCATGTACCTGAGACAGAGGAATATGGCATTGCCTCGACCGCCTACCGGGCACGTCGGCCGTTTCATCCCCAGCGTTTCTTCAACTTCATCGACCGTCCGTGGCCAAATGGCAAGCTCCTGCGCTCCAAGGGGTTCTTCTGGTTGGCCAGCAAACCTGAGGAGGCGGGGAGCTGGTCCCAGGCCGGCGGCCTGATGCGCCACGGATTTGCCGGGCGCTGGTGGCGGTTCGTACCAGAAAACCAATGGCCGCAGGACCAAGAGAGCACCGCGGCCATCATGAAGAACTGGTCTGTGGCCACCGGCGATTGCCGTCAGGAGCTGGTGTTTATTGGCCAGGACATCGACTTTGGTCAACTCACCGCCGAATTGGACGCCTGCCTGCTCACCGACGAGGAATTGGCCCTTGGTGTCGAAAGTTGGCGGCTATTGTCCGATCCATTCGGCCCATGGCATGAAGAGGCGGCAGTGTGA	MTKRLPVTVLSGFLGAGKSTLLNHVLRNRDNLRVAVIVNDMSEINIDGSEVQRDVSLSRSEEKLVEMSNGCICCTLREDLLEEVGQLAREGRFDYLLIESTGISEPLPVAETFTFRDEEGRSLADVARLDTMVTVVDGVNFLLDYQAAESLASRGETLGEDDERSITDLLIEQIEFADVILISKIDLISQHEREELTAILQRLNAQAQIIPMVMGQVPLGRILDTGLFDFERAAQAPGWLQELRGEHVPETEEYGIASTAYRARRPFHPQRFFNFIDRPWPNGKLLRSKGFFWLASKPEEAGSWSQAGGLMRHGFAGRWWRFVPENQWPQDQESTAAIMKNWSVATGDCRQELVFIGQDIDFGQLTAELDACLLTDEELALGVESWRLLSDPFGPWHEEAAV				NA	NA	NA	NA	NA
D1-36_05125	966	folE2		GTP cyclohydrolase FolE2	ATGAAAAAGGCCTCGTCGCTTTTATTGTTATACTATAACATTCAAGCGAACCTCTTCTGGACCTTCAAGATGAATGCGTTAACTCTGCCAGACGTCGCGGCACAGGCATCTCGCCAGAACTTGCCGCTAGATTGGGTCGGCATGTGCGGCATTGCTGTACCGCTGTTGATCGACGGTCAACGCTTGAGCGCAACTGCTGACGCGGGCGTCAGCCTCGATGATGGCGAAGCTCGTGGCATCCATATGTCACGCTTGTATCTGGCGCTGGAGCCGCTCGAAAACTCCCCACTTTCGCCGTCTCTTTTACGACAGATTTTACAGAGCTTCCTTGATAGCCATGGGGGATTGTCCCGGCGCGCCTCGCTTAGCCTGAAGACGGATCTCATGTACAAACGCTCCGCCTTGATCAGCCCTCTTGCTGGGTGGAAGCTGTACCCCACCAAGGTGGACGCTCACTTGGACGATTCGATGTTCCACGTGGAACTTGAGATTCAAGTTCCGTATTCATCCACCTGTCCCTGCTCGGCAGCGCTCGCGCGTCAGCTCATTCAGCAACAATTCATCGAGGATTTTGCAAACAAAGCGCTCGAGCATGCCGACGTGCTCGCTTGGCTGGGCTCATCAAAAGGCATCGTCGCTACCCCTCATAGCCAACGCAGCCTCGCCACCTTGAAAGTGCGGCTGAACACCGATATCCGTGAATTACCATGGCTGGCTCTGATCAACGAGGCCGAGGCTGCCCTGGGCACCGCTGTACAAACCGCCGTGAAGCGTGCGGACGAACAAGCCTTTGCCTTGGCCAACGGCCAGAACCTGATGTTCTGTGAAGACGCTGCGCGTCGATTGAACGTCGCGTTGCAAAAGATGCCCTGGATCTCCTCATTTGACGTGCGGGTGGTTCACGCTGAAAGCCTCCATGCCCACGATGCCGTCGCCCAGAGTCACTGGGTCCGGGAGGCCTCATGA	MKKASSLLLLYYNIQANLFWTFKMNALTLPDVAAQASRQNLPLDWVGMCGIAVPLLIDGQRLSATADAGVSLDDGEARGIHMSRLYLALEPLENSPLSPSLLRQILQSFLDSHGGLSRRASLSLKTDLMYKRSALISPLAGWKLYPTKVDAHLDDSMFHVELEIQVPYSSTCPCSAALARQLIQQQFIEDFANKALEHADVLAWLGSSKGIVATPHSQRSLATLKVRLNTDIRELPWLALINEAEAALGTAVQTAVKRADEQAFALANGQNLMFCEDAARRLNVALQKMPWISSFDVRVVHAESLHAHDAVAQSHWVREAS	PGPT0007880_447	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007880-folE2-K09007	NA	NA
D1-36_05126	669	scaC_2	COG1121	Manganese import ATP-binding protein ScaC	ATGATTCGTTGCCAAGCCTTGAGATGGGGTGCGCCGGGTCAACCGCTCACGCCCCCGCTGGACATGGAACGACCTGAAGGCAGCCTGACCGCCATCATCGGCGCCAACGGCTCCGGAAAAAGCAGCCTTTTAAAAGTGCTGGCCGGGTTGCAAAAGCCGCTATCGGGAACAGCTTCATTGAATGTGCCTCGGCGCGGCGGTGTTTCATTCCTGCCCCAGCAACAACACTTGGACCGGCATTTCCCGATCAGCCTGCAAGAGCTGGTTGCAGCAGGCTCATGGGGCCTTCGACAAAATCCTGCGACTCGAAACCAGCGACTCAAGGCCGTCCTGGACGATTGGAATCTAAGCGGCCTCGAACATCGCCCGCTGATGGCTCTGTCGGGTGGTGAGCTACAGCGTTCCCTGCTCGCCCGGTTGAGCTTGGCCGAGGCACCCGTCCTGCTGCTCGACGAGCCTCATGCTGCGCTCGACGAAATGGGCCAGGCGCTGTTGTGGAAACATATTCACCAATGGCACCGAGAAGGTCGGACCTTAATGGTGGTCTGTCACGACCTCGCTGCGGTACATCGGCATGTTCCCCACACCTTGCTGATCAGTCCTACAGGTTGCGCATTGGGCCGCAGCGTCGACTTGATCGAACGGCCTCAGTACACGCAGGTCGCCTGA	MIRCQALRWGAPGQPLTPPLDMERPEGSLTAIIGANGSGKSSLLKVLAGLQKPLSGTASLNVPRRGGVSFLPQQQHLDRHFPISLQELVAAGSWGLRQNPATRNQRLKAVLDDWNLSGLEHRPLMALSGGELQRSLLARLSLAEAPVLLLDEPHAALDEMGQALLWKHIHQWHREGRTLMVVCHDLAAVHRHVPHTLLISPTGCALGRSVDLIERPQYTQVA	PGPT0004265_1460	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_MANGANESE_RESISTANCE	MANGANESE_RESISTANCE-MANGANESE_TRANSPORT,PGPT0004265-ABC_ZM_A-K02074	NA	NA
D1-36_05127	867	mntC	COG1108	Manganese transport system membrane protein MntC	ATGCTCAGCGCAACCCACCTATGGCAGCCCTTCCTGGATTTCCTGTTCATGCGCCGGGCGTTGTTGGGCGGACTGGTACTGGCGTGCAGCACGGCTCCACTAGGGGTGTTTCTGATTCTGCGGCGGATGAGCCTGATCGGCGATGCCGTGGCTCACGGCATCCTGCCGGGCGCAGCGCTCGGGTTCTGGTTCGCCGGCTTGAGCCTGCCTGCCCTGACCGTCGGAGGCCTGGGGGCCGGCCTGAGCATGGCCGGGCTCGCAGCGTGGATTACCCGCCGCACTGGACTGCGAGAGGACGCCAGCCTGGCGGCGATCTATCCCATATCCCTGGCGGCCGGCGTACTGATTCTCGGCATGGCCGGCAAACGCCTGGACTTGCTGCACCTGTTATTTGGTTCCGCACTGGCAGTAGACAGTCCGACACTCACCGGCATGCTCTGGGTTTGCGCCGCAAGCCTGGGTGCAATGGCGCTGATCTATCGCCCGCTGTTGCTCGATACCCTGGACCCCTTGTTTCTGCGGACAGTCAGTCGTCTGGGTCCGTTGGCCCACGGCGTGTTCCTGACACTTGTGGTGTTGAACCTGGTGATTGGCTTCCAGGCCATCGGAGCGCTGATGGTTGTGGGCCTGATGATGTTGCCTGCCGCGGCTTCGCGGTTCTGGAGCCGCCGCCTGCCGGCCCTGATGGCTTTGGCCGCACTATTCGGCTGCCTTTCGGTGTGGCTGGGCCTGCTGCTGTCCTTCTACTTCTCGCTGCCCAGCGGACCGGCCATCGTACTGATGGCGGGCGTGCTCTATTTGCTGTCCGTAGTATTCGGTCCGGTGCATGGCTTGCTGCGCCGCCCGCCTTTGCTCACATCCCAATGA	MLSATHLWQPFLDFLFMRRALLGGLVLACSTAPLGVFLILRRMSLIGDAVAHGILPGAALGFWFAGLSLPALTVGGLGAGLSMAGLAAWITRRTGLREDASLAAIYPISLAAGVLILGMAGKRLDLLHLLFGSALAVDSPTLTGMLWVCAASLGAMALIYRPLLLDTLDPLFLRTVSRLGPLAHGVFLTLVVLNLVIGFQAIGALMVVGLMMLPAAASRFWSRRLPALMALAALFGCLSVWLGLLLSFYFSLPSGPAIVLMAGVLYLLSVVFGPVHGLLRRPPLLTSQ	PGPT0004270_755	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_MANGANESE_RESISTANCE	MANGANESE_RESISTANCE-MANGANESE_TRANSPORT,PGPT0004270-ABC_ZM_P-K02075	NA	NA
D1-36_05128	876	mtsA	COG0803	Metal ABC transporter substrate-binding lipoprotein	ATGCGCGCCCTGCTCCTGATATTCAGCTTGATGGTGTCCATGTCCTCCCCTGCTGCCGAAAAGCTGCAGGTTGTCACCAGCTTCAGCATCCTTGCCGACATGACCCAACAGGTCGGCGGCGAACACGTTCAGATCGTCAACATGGTCGGTCCCGACGCCGATGCACACACCTACGAGCCCACCCCAGACGATGCCAAGGCGCTGCTGAAAGCCAAGGTGATCATCAAGAATGGATTGGGCTTCGAGCCGTGGCTGGATCGCCTGGTCACCAGCACCGAAACCACCGCGCCGGTAATCAGTGCCAGCCGTGGCGTGATTCCACGTTCGTTGGACGAAGACGGGGAGACCATCCCAGACCCGCATGCGTGGCACAACCTTGCCAACGCCGTGCTCTACGTCGGCAACATCACGAAGGCATTGGAAGCAGCCGACCCGGCCAACAAGGCCGATTACGAACGTAACAGCCAGGCGTACCTGAAAAAGATCCATGCCCTACTCGCCGAAGCCAAGGCGAAGTTCACCGCTTTGCCACCCGGCAATCGCAAGATCGTCACTTCTCACGACGCCTTCGGTTATCTGGGCCAAGCCTACGGCATCGATTTCATGGCACCGCAAGGCTTGTCCACTGAACGCGAGCCATCGGCTGCCGAAGTGGCTGCCTTGATCACGCCAATCCGCCAGGCCAAAGTCAAAGCGGTGTTCATGGAAAACATCAAGGACGCACGCCTGCTCAAGCAAATTGCCGATGAAAGCGGCGCGCACATCGGCGGCACCTTGTACTCCGACGCCCTCGCCGCCAGCGGACCCGCGAGCACGTTTACCGGCCTGTTCGAGTACAACCTCAACACCCTGTACGAAGCGTTGAGCCAGCCCTGA	MRALLLIFSLMVSMSSPAAEKLQVVTSFSILADMTQQVGGEHVQIVNMVGPDADAHTYEPTPDDAKALLKAKVIIKNGLGFEPWLDRLVTSTETTAPVISASRGVIPRSLDEDGETIPDPHAWHNLANAVLYVGNITKALEAADPANKADYERNSQAYLKKIHALLAEAKAKFTALPPGNRKIVTSHDAFGYLGQAYGIDFMAPQGLSTEREPSAAEVAALITPIRQAKVKAVFMENIKDARLLKQIADESGAHIGGTLYSDALAASGPASTFTGLFEYNLNTLYEALSQP	PGPT0004275_1900	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_MANGANESE_RESISTANCE	MANGANESE_RESISTANCE-MANGANESE_TRANSPORT,PGPT0004275-ABC_ZM_S-K02077	NA	NA
D1-36_05129	522			hypothetical protein	ATGAAAGTTCGCCTGCTGGGTTTGGCCTTGGCCATTGGTTTCTCGGTTCCTGTAGCGGCTCATGCGCAGACGCTTCAACCGGGCCTGTGGGAACTGACGACAAGCAACATGAAGGTCGATAACCAGAATCTGCCTGACCTGCAATTGATCCTCGGCCAGTTGCAGAACCAGATGACGCCCGAGCAGCGAGCGATGCTGGAAAAGCAAGGCATCACCATGGGTGGTAAAGGTATTCGGGTATGCCTGACGCCGGAGCAAGTCCAGACCAACGACATCCCGCTGCAGGATCCGCAGTCAGGGTGCAAGCAGCAGATCACCGAGCGGACCGGCAACCAATGGAAGTTTCGCTTCAGTTGTCCGAAAGCCCAGGGCAGCGGCATCGCGACCTTCCAGAGTGATCGCGAATTCACCACCAAGGTCAATGGCACGTTCAACGCCACGGGCATCCAGCAGAACGGTAGCCTGGATACCCGCGCCGTGTGGCTGGGGCAGGATTGCGGAACGGTCAAGCCGAGGGCTTGA	MKVRLLGLALAIGFSVPVAAHAQTLQPGLWELTTSNMKVDNQNLPDLQLILGQLQNQMTPEQRAMLEKQGITMGGKGIRVCLTPEQVQTNDIPLQDPQSGCKQQITERTGNQWKFRFSCPKAQGSGIATFQSDREFTTKVNGTFNATGIQQNGSLDTRAVWLGQDCGTVKPRA				NA	NA	NA	NA	NA
D1-36_05130	1440	clsA_2	COG1502	Major cardiolipin synthase ClsA	ATGGACTATTACGGCCCGCATGTTTTCGGTTACCTGATCGCGCTGCTCCACACCCTCGGTTCCATCGCCGCGGTCCATGCGGTACTCACCGTGCGAACCGCCCAAGGCTCGATCGCCTGGGCCCTGTCACTGGTGTTCATCCCTTATCTGACGCTTATTCCCTACCTGGTTTTTGGCCGCAGTACTTTCGACGGTTACATCAAGGCGCGACGACAGGCCAACGAAGAGATGCGCAAGGCGATCTCCGAGCTGAACTGGCGGCCTTGGGTCGAAGAGGCGCTCACAGCCCGCGCGTCTCACGCTTATGCTTCCTTGCGCGCCATGCCGAAGCTCGGACGCGCGCCTTGCCTGGCGAATAACCAGGTGCGGCTGCTGGTGGATGGCCACGCCACGTTCGAGGCGATTTTCCAGGCCATGGAAAGTGCGCGGGAAGCCATTCTGATCCAATTCTTCATCATCCATGACGACCGTCTCGGCCAACGCTTGCACGCGTTACTGTTGAAGAAAGCAGCCGAGGGCGTGGCGGTATACCTGCTTTATGACCGTATCGGCAGTCACTCCCTGCCCCACCGTTATGTCCAGGCACTGCGCGACGGCGGCGTCCATGTGAAAGCCTTTGCCACCCGCAGCGGTTGGTTGAACCGGTTCCAGGTCAACTTCCGCAACCATCGCAAGATCGTGGCCGTGGACGGCGTCCTGGGGTTTGTCGGTGGTCACAACGTGGGCGACGAATACCTGGGCGAAAAGCCTCCGTTGGCCCCATGGCGCGACACCCACGTCGAAGTGCGCGGCCCCGTGGTGGCGAGCATGCAGGAATCCTTTGCGGAAGACTGGTTCTGGGCCGCCCGTTCGTTGCCGCCATTGATCCTGCCGGACACCTATCCGGATGGCGGCGTGCTCTGCCAACTGCTGGCCAGCGGTCCGGCGGACGCGCAGGAAACCTGCTCGTTGTTTTTCGTCGAAGCGATCCACGCCGCAAACGAGCGAATCTGGATCACCACGCCCTACTTCATCCCTGACGAAGCGGTCTTTGCGGCGCTGCGCCTGGCCGTCTTGCGCGGCGTGGATGTGCGTATCCTGCTACCTTCGCGGCCCGATCATAAAATCGTCTACGCGGCGTCCAGCCTCTATGCATTCGAAGCGGTGCGGGCCGGCGTCCGGGTGTTTCGTTATGAGCCAGGATTCCTGCACCAGAAAGTCGTACTGATCGATCAGGAAATAAGCGCGATCGGCAGTGCGAACCTGGATAACCGTTCGTTTCGATTGAATTTCGAAGTCATGCTGCTGACCGTTGATATCGCGTTTGCCAGCGAAGTGGAGCAAATGCTCGAGAAGGATTTTGCCCAAGCCCACGAAGTGGCCAAACAAGAAAGCCGGGAGACCCACCGCCTGCAAAAAATCGGCATGCGAATCGCCCGGCTCATTTCGCCGATTCTTTAA	MDYYGPHVFGYLIALLHTLGSIAAVHAVLTVRTAQGSIAWALSLVFIPYLTLIPYLVFGRSTFDGYIKARRQANEEMRKAISELNWRPWVEEALTARASHAYASLRAMPKLGRAPCLANNQVRLLVDGHATFEAIFQAMESAREAILIQFFIIHDDRLGQRLHALLLKKAAEGVAVYLLYDRIGSHSLPHRYVQALRDGGVHVKAFATRSGWLNRFQVNFRNHRKIVAVDGVLGFVGGHNVGDEYLGEKPPLAPWRDTHVEVRGPVVASMQESFAEDWFWAARSLPPLILPDTYPDGGVLCQLLASGPADAQETCSLFFVEAIHAANERIWITTPYFIPDEAVFAALRLAVLRGVDVRILLPSRPDHKIVYAASSLYAFEAVRAGVRVFRYEPGFLHQKVVLIDQEISAIGSANLDNRSFRLNFEVMLLTVDIAFASEVEQMLEKDFAQAHEVAKQESRETHRLQKIGMRIARLISPIL	PGPT0007725_2799	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
D1-36_05131	1188	COQ3_2		Ubiquinone biosynthesis O-methyltransferase, mitochondrial	ATGCTCGCTAAACTTCCGCCGGCCTTACAGAATCTGCATCTACCGCTTCGTTTGCGGCTCTGGAATGGCCATGAGTTCACGCTCGGTGCCGATCCCAGCGTCACGATTGTGGTCAAGGACCCTCAAGTGGTCGCGCAATTCACCCACCCCAGCCTGGATGCACTGGGTGCAGCGTTTGTCGAAGGCAAACTCGAGCTTGAAGGCTCTATCAATGAAGTCATTCGTGTATGTGACGAGCTGAGCCAGGCCCTGGTGGACGAAGACGACAGCAACTTGCCGGTGCGTACTGTCCACGACAAGGAAACCGACGCCAAGGCGATCTCCTATCACTACGACCTGTCCAATGCGTTTTATCAGCTCTGGCTCGACAGCGACATGGTGTATTCATGCGCTTATTTCGAGACCGGCAGCGAAACCCTCGAACAAGCGCAACAAGCGAAATTCCGCCATTTGTGCCGCAAGCTGCGCCTGCAACCCGGAGACTATCTGTTGGACGTTGGCTGTGGCTGGGGCGGGTTGGCGCGTTTCGCGGCGCGGGAATTCGGAGCCAAGGTGTTTGGCATTACCCTGAGCAAGGCGCAGCTCGCCCTGGCTCGGGAGCGGGTCAAGGCTGAAGGCCTAGAAGATCAGGTGGAGCTGCAGTTGCTGGACTATCGGGACCTGCCCCAGGATGGACGTTTTGACAAAGTGGTCAGTGTCGGCATGTTCGAACACGTGGGGCACGCCAACCTGGCCCAGTACTGCAAGACGCTGTTCGGTGCCGTCCGTGAAGGTGGCTTGGTGATGAACCACGGCATTACCGCCAAGCACACCGACGGCCGTCCGGTAGGGCGCGGGGCGGGCGAATTCATCGAGAAATACGTGTTTCCCAATGGTGAGTTGCCGCATCTGTCGATGATCTCTGCCGAAATCAGCGAAGCCGGGTTGGAAATCGTCGATGTAGAAAGCCTGCGCATGCACTACGCGCGCACCCTCGATCATTGGAGCGAGCGTTTGGAGGACAACCTCGAAGCCGCGTCCAGGGAAGTGCCGGAGCAGGCCTTGCGAATCTGGCGGCTGTATCTGGCGGGCTGCGCCTATGCGTTCGCCAAGGGCTGGATAAACCTGCACCAGATTCTCGCGGTCAAGGCCCATGCCGATGGCAGCCATGAATTGCCTTGGACTCGCGACGACATCTACACGCCTTAA	MLAKLPPALQNLHLPLRLRLWNGHEFTLGADPSVTIVVKDPQVVAQFTHPSLDALGAAFVEGKLELEGSINEVIRVCDELSQALVDEDDSNLPVRTVHDKETDAKAISYHYDLSNAFYQLWLDSDMVYSCAYFETGSETLEQAQQAKFRHLCRKLRLQPGDYLLDVGCGWGGLARFAAREFGAKVFGITLSKAQLALARERVKAEGLEDQVELQLLDYRDLPQDGRFDKVVSVGMFEHVGHANLAQYCKTLFGAVREGGLVMNHGITAKHTDGRPVGRGAGEFIEKYVFPNGELPHLSMISAEISEAGLEIVDVESLRMHYARTLDHWSERLEDNLEAASREVPEQALRIWRLYLAGCAYAFAKGWINLHQILAVKAHADGSHELPWTRDDIYTP	PGPT0007680_3403	DIRECT EFFECT	PHYTOHORMONE|PLANT_SIGNAL_PRODUCTION	PLANT_SIGNAL-PHOSPHOLIPID_PRODUCTION	PLANT_SIGNAL-PHOSPOLIPID_METABOLISM	PLANT_SIGNAL-CYCLOPROPANE-FATTY-ACYL-PHOSPHOLIPID_BIOSYNTHESIS,PGPT0007680-cfa-K00574	NA	NA
D1-36_05132	1896	cadA_2		Cadmium-transporting ATPase	ATGACTGCTCAAGCCACTGCCTCACCGATGTTGTCTTCTGCCGAACAGCGTGCAGCCGCTCGGCAGCTGACCTTGGCGATGCTCGCACTCGGGCTGCTCGCCTTGGGCCTGGCATGGCGCGGTTGGTCGCCAGGGCAAAACGGTGTCAGCCAGTTGTTGTTGGGTGCTGCCTCGTTGCTGGTAGCGGTGCCGGTAATGCGTTCCGCCTGGTACAGCTTGCGGTATCCGAGCTTGCATGGGATCACGGATCAACTCATCGCCTTGGCAATGCTTGGGGCCTGGGCCACCGGCGATCTGCTGACGGCCGCGCTGTTGCCCATCATCATGATCTTCGGTCACGTGCTGGAAGAACGCAGTGTGATCGGCTCCCAGGAAGCCATCCACGCCCTCGGCCAGTTGACCCGCAGCCAAGGTCGCAAAGTGCAGGCCGACGGCTCGGTCATCGAAGTCGATAACGGCACGCTACGACCAGGCGATGTGGTGGAGGTTCGCGCCGGTGACAGGGTGCCTGCCGACGGGCGAGTCTTGTCCGGGCAAGCGAGCCTCGACACCGCGCCCATCACGGGCGAGTCCGTACCCGTGGAGGCGGTCGCGGGGATGGATGTGTTTGGCGGCGCGATCAACCTCGACGGTTTGCTGCGCCTGGAAGTGACGCGCATTGGCGAAGCGTCGACGCTGGGCAAGGTCATTGCCCTGATGCAAAACGCCGAGCGTTCCAAGCCGCCGATTACCCGCTTGCTCGAACGCTACGCCGGTCGTTACCTGGTGCTGGTGTTGCTGCTGGCGGCGGTGACCTGGTTTGTCACGAACGATGCCCAGGCGATGCTCGCGGTCCTGGTGGCGGCGTGTCCCTGCGCCTTGGTGCTGTCAGCGCCGGCAACGGCCATTGCCGGGATTGCGGTGGCTGCACGCCACGGGATCCTGATTCGCAGCTCGGCTTTCTTGGAGGAGCTGGCCGACCTGACCTCGCTGGTCATCGACAAGACCGGAACCTTGACCTACGGCACATTGCAACTGCAATCGATACAAGGCGTCTCGGCGGATCGCTCCGAGCTGCTGCCTTTGGCCGCCAGCCTCGGATCGGCCAGCAGTCATCCGGTCAGCCGCGCGCTGGCAGGGCAGGTGGCTGCGCAACATTATCTGCCGCTTAGCGATGTACACGAACGCCAGGGCCTGGGCGTGGTGGCCATGACCGGACGGGGCGAAGCCGCACTTGGTCGTCCCGAGCTGTTCGCCCGGCTGGGAATCGAGACGCCGGCCATTCCCGAGCATGACGGCCCAATCGCCGGCTTGGCCCTCGATGGGCAATTTCTCGCCTGGTTGCTGCTGGCCGACAGCGTCAAACCTGAAGCGCGGGCGGCCATGGCCGAGTTGCGCGAGCTTGGCCTGGGTCGCCAATTGTTGTTGACCGGAGATCGCCAAAGCGTGGCGACTGCGTTGGCGCAGCAGGTTGGTATCAATGATCTGCAAGCGCAGGCTTTGCCGGAAGACAAACTTAAACGGGTCATGGCCGAAATCGGTCACGGCTTCCGGCCGATGGTGGTGGGTGACGGGATCAATGATTCCCTGGCGCTGAAGGCCGGGGTGGTGGGGGTCGCAATGGGTGCCGGCGGGGCGGATATCGCGCTTGCGTCGGCGGATATCGTCCTGATTGGCAGTGATCTGAGGCGCCTTGGAACCTGTGTACGGTTGAGCCGGCAGTGCCGACGAACGTTGCAGGTCAATGTCATCATCGGCCTGGGCTGGACGCTCGCTATCGTTGCCTTCGCCGCATTTGGCTGGCTGGGCGCGGCGGGTGCGATGATCGCCGCGTTGCTGCACAACTTGAGCACCCTGTTGGTGCTGGGAAACGCTGGGCGTCTGCTGCGGTTCCAGGAACCGCTGTTGAGAATCTAA	MTAQATASPMLSSAEQRAAARQLTLAMLALGLLALGLAWRGWSPGQNGVSQLLLGAASLLVAVPVMRSAWYSLRYPSLHGITDQLIALAMLGAWATGDLLTAALLPIIMIFGHVLEERSVIGSQEAIHALGQLTRSQGRKVQADGSVIEVDNGTLRPGDVVEVRAGDRVPADGRVLSGQASLDTAPITGESVPVEAVAGMDVFGGAINLDGLLRLEVTRIGEASTLGKVIALMQNAERSKPPITRLLERYAGRYLVLVLLLAAVTWFVTNDAQAMLAVLVAACPCALVLSAPATAIAGIAVAARHGILIRSSAFLEELADLTSLVIDKTGTLTYGTLQLQSIQGVSADRSELLPLAASLGSASSHPVSRALAGQVAAQHYLPLSDVHERQGLGVVAMTGRGEAALGRPELFARLGIETPAIPEHDGPIAGLALDGQFLAWLLLADSVKPEARAAMAELRELGLGRQLLLTGDRQSVATALAQQVGINDLQAQALPEDKLKRVMAEIGHGFRPMVVGDGINDSLALKAGVVGVAMGAGGADIALASADIVLIGSDLRRLGTCVRLSRQCRRTLQVNVIIGLGWTLAIVAFAAFGWLGAAGAMIAALLHNLSTLLVLGNAGRLLRFQEPLLRI	PGPT0004200_3143	DIRECT EFFECT	BIO-REMEDIATION	HEAVY_METAL_DETOXIFICATION	HEAVY_METAL_LEAD_RESISTANCE	LEAD_RESISTANCE-PBR_TRANSPORT_SYSTEM,PGPT0004200-zntA|cadA-K01534	NA	NA
D1-36_05133	1053			hypothetical protein	ATGAGTTTGGTTCCACGTGGAACAAACGAGCTGTCCAGTCCATGGATTCAGGCCGGACGCCTGTCGTTCCTTGCGCTTTACGCGGTCACTGTCCTTGCCGCGTTGGCCTGGTTGTTCGCCAACGTGCGGCAGGTTGCTCCGCAGGACCGCGCGATGGTTTTGCACTTTGGCGCACTGGATCGTGTCCAGAACGCGGGACTTTTATGGGCATGGCCTCGTCCCGTGGAACAGGTGATCCTACTGCCGGCGGCGGATCGAGTTCTGGAACGCCGCGTAGAAAATCTGCTCCGCTCGGATGCGGCGCTACAGGCCGATCGAGTGGCCAGCTTCGCTTCGCCAGTGACGGATGCCTTGGCGGGTTCTGGTTATTTATTGACCGGTGACGCCGGCGTGGTGCAGCTGGACGTGCGGGTTTTCTACAAGGTCACCGACCCTTACGCGTTTGTCCTGCAAGGCGAGCACGTCTTGCCGGCCCTGGATCGGTTGGCGACCCGCAGTGCCGTGGCTCTTGCCGCAGCCCGGGACCTGGACACGATCCTGGTGGCTCGCCCCGAATTGTTGGGTAGCGATAGCCAGGCCGCGGAGCGTCGGGAGCGCCTTCGTGGCGATCTGGTGCAAGGTATCAACCGGCGACTCGCTGATCTTGCCGCGACAGGGCAGGGGTTGGGAATCGAAGTGGTGCGAGTCGACGTGCAGTCGAGCCTGCCCGGGCCTGCCGTGGGGGCTTTCAACGCAGTACTGACCGCCAGCCAGCAGGCCGACAAAGCTGTCGCCAGCGCGCGTACCGACGCGGAAAAACAGACCCAGTCAGCCCGCCAGGAAGCCGACCGGGCCTTGCAGGTGGCCCATGCCCAGGCTGGCGAACGGCTCGCCAAAGCGTCGTCCGACACCGCTTCGGTGTTCGGCTTGGCCAAGACCCAGGGCAGCGATCCGCAGATGCCGTGGCGGCTGTACCGTGAACGCATGCCTGAAATCCTGCGTCGGGCCGGGTCGGTGACCACGGTCGATCCGAAAGATGATTCCCGCTTGATTATCCAAGGAGCCGGGCAATGA	MSLVPRGTNELSSPWIQAGRLSFLALYAVTVLAALAWLFANVRQVAPQDRAMVLHFGALDRVQNAGLLWAWPRPVEQVILLPAADRVLERRVENLLRSDAALQADRVASFASPVTDALAGSGYLLTGDAGVVQLDVRVFYKVTDPYAFVLQGEHVLPALDRLATRSAVALAAARDLDTILVARPELLGSDSQAAERRERLRGDLVQGINRRLADLAATGQGLGIEVVRVDVQSSLPGPAVGAFNAVLTASQQADKAVASARTDAEKQTQSARQEADRALQVAHAQAGERLAKASSDTASVFGLAKTQGSDPQMPWRLYRERMPEILRRAGSVTTVDPKDDSRLIIQGAGQ				NA	NA	NA	NA	NA
D1-36_05134	909			hypothetical protein	ATGGGCTGGGCAACGCTGTTGGTAGTGTTTGCCATAGCGGCTGCCAGCCTGGTGCAAGTGCGCTCGGGGGAGGCCACCGTTATCACCCGTTTTGGCAACCCGGCGCGAGTGCTGCTGGAACCAGGCCTGGGCTGGCGCTGGCCGGCGCCATTCGAAGCAGCGGTCCCGGTGGATTTGCGGTTACGTACCAGCTCCAGCGGATTGCAGGATGTCGGTACTCGCGATGGGCTGCGAATCATTGTTCAGGCCTATGTCACGTGGCAGGTGCAAGCGGACCCGGAAAATGTGCAGCGTTTCATGCGGGCAGTGCAGAACCAGCCAGACGAAGCCGCACGGCAAATACGCACGTTTGTCGGCTCGGCGCTGGAGACCACGGCCGCCAGTTTCGATTTGGCGAATCTGGTCAATACCGATGCCAGCCAAGTGCGCATCGTCGATTTTGAAACCCAACTGCGTCAACAGATCGAGCAGCAACTGCTGACAACCTATGGTGTGCGGGTCTTGCAAGTGGGCATCGAGCGCCTGACTTTGCCTTCGGTAACGCTTACCGCAACCGTGGACCGCATGCGTGCCGAACGAGAAACCATCGCCACGGAGCGCACCGCCATCGGTAAGCGTGAAGCAGCACAAATTCGTTCGGCGGCTGAACGTGACGCGCGAATCATGCAAGCCGACGCCACCGTCAAAGCTGCCGAGATAGAGGCACAATCTCGCGTGGAGGCGGCGCAGATCTATGGAAAGGCCTATGCGGGTTCGCCCCAGCTTTACAATCTGCTCCGCTCGCTGGACACCTTGGAGACCATCGTCAGCCCGGGCACCAAGCTGATTCTGCGCACAGACGCGGCGCCATTCCGGGTGTTGGTGGACGGCCCCCCTTCACTGGAACCCAAGGGCGGGACCCAGCCATGA	MGWATLLVVFAIAAASLVQVRSGEATVITRFGNPARVLLEPGLGWRWPAPFEAAVPVDLRLRTSSSGLQDVGTRDGLRIIVQAYVTWQVQADPENVQRFMRAVQNQPDEAARQIRTFVGSALETTAASFDLANLVNTDASQVRIVDFETQLRQQIEQQLLTTYGVRVLQVGIERLTLPSVTLTATVDRMRAERETIATERTAIGKREAAQIRSAAERDARIMQADATVKAAEIEAQSRVEAAQIYGKAYAGSPQLYNLLRSLDTLETIVSPGTKLILRTDAAPFRVLVDGPPSLEPKGGTQP				NA	NA	NA	NA	NA
D1-36_05135	1977			hypothetical protein	ATGCGCTGGGATGACATGCAAGTCGATCTAGAAATCGAAGGGGCACGGGTGGCCGAGTGGCCGCGCTTTCAGCGTGCTGCGCTCCAGACACGCCGCTTGAAGCGGATCGCGTTGGCGCTGGCCGGCCTGGCGGGATTGGGCCTGGTAGTGGCGTTTTTCATCGGATTGTTCTCGCCGCAATCCTTGTGGCCTGCCCTGTTGGTCAGCCAAAGCGCCGGCCTTGTTGTGTTGTTGGCGAGCCTGCAATCGGCCGGGTGGGTGACGCGTTGGCGCAGCGAGGCGCTGGCGCCTGCGGTGGACAACGCACCTGTTATAACTGAGCCGGTTGAAGACTCGGGTTGGTATGAGCGGATGCTCGAGGGGATCAGCGCCCGCTGGGTCGGTCTGCTGAAGCAAATCGGGGCGCCCGCGTTGTGGCTTTCCGGTTGGGCGCTCCTGGCGTTGCTGAGCCTTGAGCAAGCCTGGAATCTAGATTTGCCTGCTGCATCGCTTGGGGTGTCGGCGAGTGTCGGGGCGGTGGTTTCGTTATTGCTGGCGTTCAGCTTGCTGGTGTTTGAACGCCAACTGGCCCAGCAACCGCCAATCGAGTGGCCGGAAGCCTTGCCATTGGCACAGCTCGCGCGGGTGGCGATCGCCGTGCTTGTCCTTGGCGCATTGTGCCTGCTGTTCGCCGCCGATACGTCGATCTGGCCGACGCGCCTGGGAGTGTTGATCGGGGTGTTGCCAGGGCTGGTCGCGGTGGAGCTGCTGTTGCGCGCCATACTCTCCTTATTCAGCCCGCGCCGCGACTCCCTCGAGCCGACGCTGATGGGTCGCAGCTTTGTCGCCGATCTGCTGCGCTGGCCGCCGCAACCGTTGCTGGTCTTGCAGCACGAGTTGCACAACCGTTTCGGCATCGACCTGCGTCAGATCTGGGCGTTCAGCTATATGCGCCGGGCTTTCTTTCCTGTGCTGGCGCTGGTGGCGCTGGTGGGCTGGTCGCTCACCGGCGTGCATGAAGTGGCGTTGCAGGAGCGCGGGATCTACGAGCGATTCGGCGAGCCGGTGCAAGTCCTTGGCCCAGGCCTGCATGGGGGCCTCCCTTGGCCGTGGGGCAGGGTGCTCAAAGTGGAAAATGGTGTCGTGCATGAATTGGCGACCAGCGTTGGCGATAGCAACGCGCTTGTGCAAGCGGAACCGGCCGAAGGACCGGCGCCGGTCAACGCCAATCGGTTATGGGACGCCACGCATGTGAACGATAAATCCCAAGTCATCGCCAGCCGGCGTGCCGATAAACAAAGCTTCGAGATCGTCAACATGGATGTGCGCTTTGTATATCGCATCGGCCTGACGGATGCCGCAGCGCTTGCCGCGACGTACAACAGTGCCGATGTGCCAACGCTGATCCGCAGCACGGCCAGCCGCATCCTCGTGCATGAATTCGCATCGCGCACGCTGGACGGTTTGCTGGGCGCGGACCGGGTCAGCCTGGCCGACGAGATCGGCCGTGCGGTGCAGGCTGACTTGCAATCGTTGGACAGCGGCGTTGAGATTCTTGCGACAGTGGTCGAGGCGATCCATCCTCCGGCTGGCGCGGCGAATGCCTATCACGGTGTGCAAGCGGCGCAGATCGGCGCGCAGGCACTGATCGCCCGGGAGCGCGGCGCCGCGGCTGAACAGACCAACCAGGCGCAACTGCAAGCCAGCATCGCCTATGACCAGGCCCAAGCCACGGCGAGGGAAATCAACGCCGCCGCCGAAGCCGCGGGCCTGCGCTTCGATGCCGAACGCCAAGCCTATGCGAAGGCAGGCCACGCCTTCCTCCTTGAGCAGTACTTCAGCCAACTGAGCCATGGCCTGAACAAGGCCAATCTGCTGATTCTCGATCATCGCGTGGGCGGCAGCGGCAACGCGCCGACCCTGGATCTGCGCACTTTCCCGCTGCCGGCGGACCCTGCGTCGCCACGTAACCCTGTCCTGCCAGGAGCTGCCCATTGA	MRWDDMQVDLEIEGARVAEWPRFQRAALQTRRLKRIALALAGLAGLGLVVAFFIGLFSPQSLWPALLVSQSAGLVVLLASLQSAGWVTRWRSEALAPAVDNAPVITEPVEDSGWYERMLEGISARWVGLLKQIGAPALWLSGWALLALLSLEQAWNLDLPAASLGVSASVGAVVSLLLAFSLLVFERQLAQQPPIEWPEALPLAQLARVAIAVLVLGALCLLFAADTSIWPTRLGVLIGVLPGLVAVELLLRAILSLFSPRRDSLEPTLMGRSFVADLLRWPPQPLLVLQHELHNRFGIDLRQIWAFSYMRRAFFPVLALVALVGWSLTGVHEVALQERGIYERFGEPVQVLGPGLHGGLPWPWGRVLKVENGVVHELATSVGDSNALVQAEPAEGPAPVNANRLWDATHVNDKSQVIASRRADKQSFEIVNMDVRFVYRIGLTDAAALAATYNSADVPTLIRSTASRILVHEFASRTLDGLLGADRVSLADEIGRAVQADLQSLDSGVEILATVVEAIHPPAGAANAYHGVQAAQIGAQALIARERGAAAEQTNQAQLQASIAYDQAQATAREINAAAEAAGLRFDAERQAYAKAGHAFLLEQYFSQLSHGLNKANLLILDHRVGGSGNAPTLDLRTFPLPADPASPRNPVLPGAAH				NA	NA	NA	NA	NA
D1-36_05136	642	lpd3	COG1249	Dihydrolipoyl dehydrogenase 3	ATGAGCGATTACGACGTGATCATTCTGGGCGGCGGTCCCGGCGGCTATAACGCCATTGGCCGCCGGCCTTACACACAAGGGCTGGGGCTGGAAAATGTCGGGTTGACGACCGACCCGCGTGGCCTGCTCGCCAACAAGCGCCACCGCACTGAGGCGCCCGGTGTCTGGGTGATCGGCGATGTCACGTCCGGGCCGATGCTCGCCCACAAGGCCGAAGACGAGGCCATGGCCTGCATCGAGCAGATTGCCGGCAAGGCCGGCGAGGTCAATTACGACCTGATCCCCAACGTGATCTATACCCGGCCGGAACTGGCCAGCGTCGGCAAGACCGAGGAACAGCTCAAGGCTGCGGGCCGCGCCTACAAAGTCGGGAAATTCCCTTTTACGGCCAACAGCCGGGCGAAGATCAATCACGAAACCGAAGGGTTCGCCAAAGTGTTGGCCGATGAGCACACCGACGAGATCCTCGGCGTGCATCTGGTTGGCCCAAGCGTCAGCGAAATGATTGGCGAATACTGCGTAGCGATGGAATTCGGCGCCTCGGCCGAAGACATCGCCCTGATCTGCCACCCTCACCCGACCCGCTCGGAGGCATTGCGCCAGGCGGCGATGAATGTGGAAGGAATGGCGACGCAGATGTAG	MSDYDVIILGGGPGGYNAIGRRPYTQGLGLENVGLTTDPRGLLANKRHRTEAPGVWVIGDVTSGPMLAHKAEDEAMACIEQIAGKAGEVNYDLIPNVIYTRPELASVGKTEEQLKAAGRAYKVGKFPFTANSRAKINHETEGFAKVLADEHTDEILGVHLVGPSVSEMIGEYCVAMEFGASAEDIALICHPHPTRSEALRQAAMNVEGMATQM	PGPT0001380_6489	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
D1-36_05137	2151			hypothetical protein	ATGTCTACCCGTAAGTGGCCTCGTCGCCTGCTATGCCTGAGCCTCAGCCTGCCCATGGGCCAGGCGCTGGCCTGTGGACCGGAGTTCCCCATGCGCCTGCTGGATAACCGGGCCCAATCCTTGGCGGAGTTGCCCGAAGGCAGCTTTCGTTTCGAGGTCAGCCGTCTCGGTCAGGCCATTGCGGGGTTGAAGCCAACCACGGATGCGACGCGCAACCCCGACTACAGTTATGACGATGTGGCCTCCTACGTTGAACAACGCAACAAAGCCGAACAGCTCGGCCTGACGCCACCGCAACAAGCGGTGGTAGAGCGGCTGCGAGCAGTAGGCGATGTTGAGCAGGTCGCCAGCGAAGCGGCGAACCTGCCCGCCGAGCTGCGCTTGTACGCCGTGGGCGCGGCGGCTTTCAACGCGGGCGATCACCAGCGCGCCGCCGAATCATTCCAACAATTGCTGGCGCTGCCCGCCGACGAGCGCCGCCTGCGCAGCACCTGGGCAGCCTATTCCCTGGGCCGCGCGTTGTTCGCCATGAGCACCGAGGCCGGTCGCGGCGACCCCACTATTTTGCGGGATCAGGCGCGCCAAGCCTTTCGCCAGGCCCGAGAGTTGAGCGTCGCCGGTTTCAGCGACCCGTTGGAACTGGGCGTCGCCAGTCTCGGTGAGGAGGCCAGGGTGGCCTATACCGCCGATGACTGGGACAGTGCCATCGGGCTGTACGCGACCCAGAACCTGCAGGGTTCTCCGGTCGGCTACAGCTCGTTGTTGCAGTTGGCGAGTAGCCTGAAGCTCGAATCCGACGAGCGCCTGAGGGAATTGCTCAAGACCAAAGGCGTCCAGCGCCTGGCGACGGCGTATTTGCTCAGCCGCGTCGGCTGGTGGGACGGCGAAGAGCCATCCGGCGAGAAACAACTCGTCAAGTTGCTGCAGGCCAGCGCCCGGGGCAACCTGGACGATGCGGATCGCCTGGCTGCGGTGAGTTATCAACACGGCGACTACTCCGGCGCCAAGGCTTTCGTGGATAAAGCCGCCGACACTGGGCTGGCCTGGTGGGTGCGCGCCAAACTCGCCCTGCGCGACGGAGACAAGGTTGCTGCGGCGGCGGCTTATGCCAAGGCCGCCCAGGCATTTCCGAAGGAGGAATCCTGGGGCGATCGGCGCACGCCGGACTGGGACTACGAGACGGTCCAGCCCAAGTGCCGGGTCGAAGGTGAAAGCGCGATCCTAGCGTTGCAGCGTGGTGATTACCTGCAAGCGTTCGATCAGCTTTATCGCGGCGGCAACAATTATTGGTACGACGCCGCGACGGTCGCCGAGCGCGTGCTGACGGTCGATGAACTCAAGCAATACGTAGACGCCCAGGTTACGGCTCCGCCGCCATTGAGCCAGGAAGAGCGGGACAATTATGTACAACTGTCGGTGCCGGCGAAACTGCGTAACCTGCTGGGTCGTCGTCTGCTGCGCGAGGGGCGCTACGACGAAGCACCGGCGTATTTCGACAGCGTTCAGCTGCAGGTAAGTGCCGAATATTACGGGCAAATGCGCAAGGATGCCGAGTCCAAATGGTGGCCGACCGGACGCGCCAAGGCGTATTTCCTTGCGTCCACGGTAGCGCGCGACATGGGCATGCAGCTGCTCGCTTATGAGATGGCGCCGGATTACGCCAGTCTGGAAGGCAACTACAGTTTTGAACCAGTGGAACTGAAGGTTGGCCCCTTATTGTCTGAAGGCGAGGTGCAAAGGCAACAGGCCAGCGCAGCCGAACCGGACCAGCGATATCACTATCGGTTTGTCGCCACTGCATTGGCGAGTCGGGCGGCGGACAATCTACCCCATACCAGCCAGGCGTTTGCAGCGGTGCTGTGTTATGCATGGAGATACAATTCAAGCCCTGAAGAGCAGGGAGCGTTGTACCGGCGGTATATAGAGGAAGGGCCTTACGTGGAATGGGGATGGCTTTTTGGGGAGTTATGTCCATTTCCGGACTTTGACAAGGCTGACAAGCGCTACGTCACGCAGGCGCTAAGTCCGATTCGCTCGGCGTTGCGGCCCTATAAAATCTGGGTGCAAATGGGCAGCGTAGTGCTGGTGGTAGCCGTTGGGCTGGCATTGATCAGCCGTCGCCAGCGCAAGGCACGGTTGGCGGCGCGCTGA	MSTRKWPRRLLCLSLSLPMGQALACGPEFPMRLLDNRAQSLAELPEGSFRFEVSRLGQAIAGLKPTTDATRNPDYSYDDVASYVEQRNKAEQLGLTPPQQAVVERLRAVGDVEQVASEAANLPAELRLYAVGAAAFNAGDHQRAAESFQQLLALPADERRLRSTWAAYSLGRALFAMSTEAGRGDPTILRDQARQAFRQARELSVAGFSDPLELGVASLGEEARVAYTADDWDSAIGLYATQNLQGSPVGYSSLLQLASSLKLESDERLRELLKTKGVQRLATAYLLSRVGWWDGEEPSGEKQLVKLLQASARGNLDDADRLAAVSYQHGDYSGAKAFVDKAADTGLAWWVRAKLALRDGDKVAAAAAYAKAAQAFPKEESWGDRRTPDWDYETVQPKCRVEGESAILALQRGDYLQAFDQLYRGGNNYWYDAATVAERVLTVDELKQYVDAQVTAPPPLSQEERDNYVQLSVPAKLRNLLGRRLLREGRYDEAPAYFDSVQLQVSAEYYGQMRKDAESKWWPTGRAKAYFLASTVARDMGMQLLAYEMAPDYASLEGNYSFEPVELKVGPLLSEGEVQRQQASAAEPDQRYHYRFVATALASRAADNLPHTSQAFAAVLCYAWRYNSSPEEQGALYRRYIEEGPYVEWGWLFGELCPFPDFDKADKRYVTQALSPIRSALRPYKIWVQMGSVVLVVAVGLALISRRQRKARLAAR				NA	NA	NA	NA	NA
D1-36_05138	1194			hypothetical protein	ATGACTTTTATCCACAGGCTGGCGCTGGTCTTCGCCGCGTTGTTCCTGAGCGGCTGTGACCAGCCCGCGCCTGCCGTCCTTGATCAACAGCTCTATGTCTGGCAACGCCAGTGGACGCCGGCCCACGAAGGCGCGCTGCGCCAAAGCCACGGCGATTTTTCCAGCTTGCGGGTGTTGGCGTTGCAGGCGTTTCCGGGAGCCGGCTGGAGCCGTGCGCGTATTGACCCCGCATTGCTCAAGGCTGACGGCCGACCGCTGGTTGCGGTGATCCGTCTGGACGGCCAGCTCAGATCTCTGGACCAGGACGATGTAATCGCACAGATCCAACAGTTGCTGGCCCAGTGGCGGGCCCAGGGCCTGGTGCCGAAGGGTGTGGAAATCGATCACGATGCGGGCACTGCGCGGCTACCGGCTTACCGGACCTTTCTCACCCGGTTGCGACAAACCTTACCCACCACGCTACAGCTCAGCATCACGGCGCTGCCGGCCTGGCTCGATAGCCCCGAGTTGCCTGAATTGTTGGCGACCGTGGACAGTAGCGTCTTGCAGGTCCATGCGGTCAGCGATCCTCGCCAAGGTCTGTTCGATGCGCAACAGGCCAGGCGTTGGGCCGAACGCTGGGGCGAGATCACCGCGCGGCCGTTCTATTTGGCCTTGCCGGCGTATGGTGTCGCGCTGCTGACCCAGGAAAACGGTGCGCCCGTGGTGGAAAGCGAAGTGCCTATCGACCGGGGCGGCGAACGCCGGGAATTGCGGGCCGATCCACAACAGGTCGCCGACCTGACGGCAAAGCTGCGCGCCGAACCGCCTGGGCACCTGGCCGGGATCGTCTGGTTTCGGTTACCGCTGCCGGGAGATCGACGGGCATGGAGCCTGGCCACCCTTGGCGCGGTGGCCCGTGGCGACAGGCTCCACAGTCGTATGGCGGTGCGCATTGACGAGCAGGACGGCCTCTACGATATCTGGCTGGTGAACCAGGGCAATCTCGACAGCCCTTGGCCCCAGCGGCTGACGCTGGCGGTGGGCGCATGTGACGGGGTCGATGCCCTGTCAGGTTATGCATTGCAACAAACCCCCGGAGTGCTTACCTTCACGCGCATTCAGGAAGGTCGCCTGGCTGCCGGTGCCCAACGGGCGATCGGCTGGGCGCGCTGCACAAAAATTGACCAAGGAGGTTTCAATGTCTACCCGTAA	MTFIHRLALVFAALFLSGCDQPAPAVLDQQLYVWQRQWTPAHEGALRQSHGDFSSLRVLALQAFPGAGWSRARIDPALLKADGRPLVAVIRLDGQLRSLDQDDVIAQIQQLLAQWRAQGLVPKGVEIDHDAGTARLPAYRTFLTRLRQTLPTTLQLSITALPAWLDSPELPELLATVDSSVLQVHAVSDPRQGLFDAQQARRWAERWGEITARPFYLALPAYGVALLTQENGAPVVESEVPIDRGGERRELRADPQQVADLTAKLRAEPPGHLAGIVWFRLPLPGDRRAWSLATLGAVARGDRLHSRMAVRIDEQDGLYDIWLVNQGNLDSPWPQRLTLAVGACDGVDALSGYALQQTPGVLTFTRIQEGRLAAGAQRAIGWARCTKIDQGGFNVYP				NA	NA	NA	NA	NA
D1-36_05139	627	nagL_2		Maleylpyruvate isomerase	ATGAACCCTATCAAGCTCTATCACTTTCCACTCTCGGGCCACGCCCACCGTGTGCAGCTGATGCTCTCGTTACTCGATCTGCCTGTGGAGATCAGCTTTGTCGACCTGGCCAAGGGCGCGCACAAACAAGCGGATTTCCTGGCGATCAACCCGTTTGGCCAGGTGCCGGCCATTGATGACAACGGCGTGGTATTGGCTGACTCCAACGCGATCCTGGTGTACCTGGCAAACAAGTACGGCCAGGGCCGTTGGCTGCCAACGGACCCGGTCGGCGCCGCTCGCGTCCAGCGCTGGTTGTCGGTAGCCGCCGGGCCACTGCATGCCGGACCGGCCACGGCGCGGCTGATCACGGTGTTCGGTGCCTCTCATAATGCCGAAGAGGTGATCGCCCGTGCCCACAGCCTGCTCAAAGTCATCGACCAAGCCCTGGGCAACAGCGCCTATCTGGTCGGCGACGCCCCGACCATTGCCGACATCGCCAGTTACAGCTACATCGCCCACGCGCCCGAGGGTAATGTTTCGTTGCAAGACTATCCCCATGTGCGCGCATGGCTGGCGCGGATCGAAGCCCTGCCTGGCTTCGTCGGGATGCCGCGTACGGCTGCGGGATTGCAGACAGAAGTCTGA	MNPIKLYHFPLSGHAHRVQLMLSLLDLPVEISFVDLAKGAHKQADFLAINPFGQVPAIDDNGVVLADSNAILVYLANKYGQGRWLPTDPVGAARVQRWLSVAAGPLHAGPATARLITVFGASHNAEEVIARAHSLLKVIDQALGNSAYLVGDAPTIADIASYSYIAHAPEGNVSLQDYPHVRAWLARIEALPGFVGMPRTAAGLQTEV	PGPT0013170_18338	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGING	DETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799	NA	NA
D1-36_05140	903	dmlR_23		HTH-type transcriptional regulator DmlR	ATGGACAGGTTCCAGGAAATGCAGGTGTTTGTCGCCGTGGCCCAGGAGTCGGGATTCTCATCGGCTGCGCGACGCCTGGGTTTGTCGGCGGCCAGCGTGACGCGCGCAGTGGCGGCGTTGGAGCAACGCATCGGTACGCCGTTGTTGGTACGGACTACACGCAACGTCTACCTGAGTGAAGCCGGCCAGCGCTTTCTCGATGACAGCCGGCGGATCCTGGGCGACCTGCAGGAAGCCGAGGATTCCGCCGCGGGCAGTCACGCCCAACCCCGCGGGCAATTGACCATCACGGCACCCGTGCTGTTCGGACAGCTGTTTGTCACGCCATTGCTGGTGGATTATCTGGGTCGCTTCTGCGAGGTCTGCGTCAACGCCTTGCTGCTCGATCGCACCGTCAGCATGGTGGAGGAGGGCATAGACGTGGCCGTGCGCATCGGCGAGCTGCCCGACAGCAGCCTGCACGCCGTACGTGTCGGTGAGGTGCGGCGGGTGGTGTGTGGCTCCCCGGATTTCTTTGCCCGCCACGACCGTCCGCGGCACCCTCAAGACCTCGAGCGGATGCCGGTGGTGTCTTCATCGGCGATCGGCCAGATCAAGAACTGGACCTTTGTCGAGGCCGGCCAGCCATTGTCCGTCCGGCCCGCGCCGCGGCTGGTGGTGACGGCCAATCAGGCCGCCATCACTGCGGCGTGCCAAGGCTTGGGGATGACGCGGGTGCTGTCTTACCAAGTGGCCGGCAACCTGGCTGCCGGTGAGCTGGAAATCGTCCTGGAGGAATTCGAGCTGCCGCCCCTGCCGATCCACGTGGTGTATCAGGGCGGGCGCAATGCGTCGGCGCGGGTGCGCAGCTTTGTCGACTTCATGGTCGGCGCGTTGCGAGAACACCCGGCCTTGAAAGGCTGA	MDRFQEMQVFVAVAQESGFSSAARRLGLSAASVTRAVAALEQRIGTPLLVRTTRNVYLSEAGQRFLDDSRRILGDLQEAEDSAAGSHAQPRGQLTITAPVLFGQLFVTPLLVDYLGRFCEVCVNALLLDRTVSMVEEGIDVAVRIGELPDSSLHAVRVGEVRRVVCGSPDFFARHDRPRHPQDLERMPVVSSSAIGQIKNWTFVEAGQPLSVRPAPRLVVTANQAAITAACQGLGMTRVLSYQVAGNLAAGELEIVLEEFELPPLPIHVVYQGGRNASARVRSFVDFMVGALREHPALKG				NA	NA	NA	NA	NA
D1-36_05141	2214	mdoB_2		Phosphoglycerol transferase I	GTGAATATTGTCCACCGACCCCTGACTCATCCCCTCGCGCGCCTCATCGCCTTGGCGGGATGCGTCCTCTTGGTCCCCATGGGGCTGCGCGTCGCATTGGGCTGGTCCGACCCGCTGGGCTATCTCTCGGATATCGCCATTGGCACCCTGCTGGTCGTCCTGCTCTATCGGCGTCCATGGTGGTTGGCCTTGCCCGTGTTGCTGGCATGGTGTGTATTGACGCTCACCAGTATCGAGCTGGTCAACGCGGTCGGGCGGATGCCAACGCCTGCGGACATCCAGTACCTGACCGACCCACAATTCGTCGAGAACTCCAGCAGCGGCGGCTTCGCGCATCCCTGGCTCGCGGCAGTCATGTTGACAGCCCTGGTGCTTTGCCTGGCCGTCCAGTGGGCCAATCGAAGCCGCCAGGCCCCGCCCTTGCCGCGCCACGCCTGGGCCATGCCGACAATGCTGTTGCTGGCCCATGCCGGCGTTCAAAGCTGGCGCCCCAGCGAGGCGGATCAGTGGAACCTGTTCAACCTGCCCCACCAGCTCATGACCGCCAGCGTCGCCGCCGGGCAAGAACATCTGGAGCAGTGGCTGGCAGGCAACACGCCGGAACCGCTTCCCCCCATGGAAGGGCTGACCCGGCTGGACCTGGAGGGGCAAAAGCTGCTTGCCGCCCCGGGCCGCGCGCGCAATGTGCTGATCATCGCCCTGGAAGGCATTCCGGGTGCCTATCTGGAAACCAACCGCCAGGCTTTGCAAAGCAGCTATCACGCGAATCTGATGCCGCGCCTCAGCGCCTGGTCGGAGCGCGGGATGAACACGCCCGACTATGTGCTGCACAGCCACCAGACCATCCGTGGCCTGTACGCAATGCTGTGCGGGGATTACGACAAACTCGACAACGGCACGCCCAAGGGCGTCGAGATGCTGAACCAGACCCAGCGCAACCAGGCCTGCCTGCCCGCCCAGTTGCGCAAGCACGGATTCTCCACCCACTTCCTGCAAGGTGCCGGGCTGCGGTTCATGGCCAAGGACCGGATCATGCCGCATATCGGCTTCGATACGACCCTGGGCATGGAGTGGTTCACTCGACCGGCTTACCTGGGGTTTCCCTGGGGCAAGGATGACAAGACCTTTTTCGAAGGCGCGCTGGATTACGTCGGGCAACTGCAACAAGCGGACAAGCCGTGGATGCTCACCCTGCTGACGGTAGGCACGCACCAACCCTACTCGGCACCGGACGATTATCTGGAGCGCTACGACACCGCCAAGCAGGCGGCCGTGGGCTATCTGGACGACGCGCTGGACGTCTTCCTGACGAGCCTTGAACACCAGGGAATTCTGGACAACACCCTGGTGGTCATCACCTCGGACGAGTCCCATGGCATCGACGACGTGCGCCTGGCATCGTCCTGGGGTTTCAACCTGACTCTGGCACCAGAGCCCTTGCCGGCAATCAAGCAAGGGGTGCATGGCCATGTCGACCTGACCGCTTCGGTGCTCGATTACTTCGGTTTCGACGTGCCAACGTCCCTGTCCGGCCGCTCGATGTTCAGGCACTACGCGACAGGCCGGGAAATCATGTCGTTCACCAACGGCAAGCTGCGCTATCACGATGGCAAGGGCACCTTCACCGAATGCGATTTCCTGCAACGTTGCCGTGACTACAAGAGCGAGGGTTTCATCGCCGATCGCGCCACTTACGCCGGGCAATACAGCGGCCAGCGCGCCCGGCTGATCGCCGCGCGGGCCACCGCCCTGGACCAAACGCTGCTGGCGACGCCCCTGAACCAGCATTTCCAGTTTGGCAGTAACGAAAAAATCCCGCTGCCCGCCCAGGTTTCCAACGATTGGACCGACAACCTGATCGGCGCCCAATACCTGGAAATGCCCAAGGGCACCCGCACACGCGTCAGCCTGACCATTCGCGCGGTGGACACTGACCACGCCGCATACATTTCACTCAAGGCCAAGGAATTCGAGCAGGACGTGCCGATGGACTTGCCCACCGACGTGGCGGTTACCATGGATCAACCGCTGGTGATGGACATCCATTTCGACAACCCGCAACCGCGCAAGGCGTTCTCTTTCCACTTGCTGGGTCATGGTGTGGGCGCTATCGAAATCAGCGACTTCAGCGTTGTGACCGAGCTGCCCGACCAGACCGACCAACCGGAATATCTGGATGACATGCAGGACGACAGCGAGGCGCAGTCCAGCTGA	MNIVHRPLTHPLARLIALAGCVLLVPMGLRVALGWSDPLGYLSDIAIGTLLVVLLYRRPWWLALPVLLAWCVLTLTSIELVNAVGRMPTPADIQYLTDPQFVENSSSGGFAHPWLAAVMLTALVLCLAVQWANRSRQAPPLPRHAWAMPTMLLLAHAGVQSWRPSEADQWNLFNLPHQLMTASVAAGQEHLEQWLAGNTPEPLPPMEGLTRLDLEGQKLLAAPGRARNVLIIALEGIPGAYLETNRQALQSSYHANLMPRLSAWSERGMNTPDYVLHSHQTIRGLYAMLCGDYDKLDNGTPKGVEMLNQTQRNQACLPAQLRKHGFSTHFLQGAGLRFMAKDRIMPHIGFDTTLGMEWFTRPAYLGFPWGKDDKTFFEGALDYVGQLQQADKPWMLTLLTVGTHQPYSAPDDYLERYDTAKQAAVGYLDDALDVFLTSLEHQGILDNTLVVITSDESHGIDDVRLASSWGFNLTLAPEPLPAIKQGVHGHVDLTASVLDYFGFDVPTSLSGRSMFRHYATGREIMSFTNGKLRYHDGKGTFTECDFLQRCRDYKSEGFIADRATYAGQYSGQRARLIAARATALDQTLLATPLNQHFQFGSNEKIPLPAQVSNDWTDNLIGAQYLEMPKGTRTRVSLTIRAVDTDHAAYISLKAKEFEQDVPMDLPTDVAVTMDQPLVMDIHFDNPQPRKAFSFHLLGHGVGAIEISDFSVVTELPDQTDQPEYLDDMQDDSEAQSS				NA	NA	NA	NA	NA
D1-36_05142	990	asd_2	COG0136	Aspartate-semialdehyde dehydrogenase	ATGAAGAAAGTCGCCGTGGTGGGTTGCACCGGTGCAGTGGGCATGACCATGCTGCAATTGCTTGAAGAAACCGACTACGAAGTGGTCTGCATGGCCTCTGAGCGTTCGGCCGGCAAGCGCTTGAAGGCTGGCAATACCGAGCACCTGATCGAGCCTTTTTCGGTCGAAGGCTGCGCTTCGTGCGATATCGTCTTCCTGTGCGTTTCCGGATCGTTTGCCTTGGAATATGGCGAGCGCCTGGCTGAAAACTCTTATGTCATCGATAACTCATCGGCTTTTCGTTATCACCCAGACATTCCGCTACTGGTACCGCCGATCAATGGTCAGCGCTACAAGGGCGAAAAGCTGATCGCCAACCCCAACTGTTCCTCGGCCATTGCGCTGATGGTGCTGGGGCCGTTGCACGAAACCTTCGGGCTCGAAAGCGCGATCATTTCAACCTACCAGGCCGCCAGCGGCGCGGGGCAGCCGGCCATGCTCGAGCTGCGGGAAAAGGCCAAGGCGTTCAGCGACTACGGCGACCAGGACGGTAGCGAGAATTTCGCCCATAACCTGGCGTTCAACGTCATCCCTCAAGTCGATTCGTTCGAAGACAACGGCTACACCCGCGAAGAGATGAAAGTGGTCTGGGAGCTGCGCAAGGTCCTGGGCGAACCGGAGCTGGCCATCAGCACCACGGCGGTGCGGGTGCCGACCCTGCGCTCCCATGCCGAGAGCCTGAGCCTGCGCTTCAAGAAACCGGTGCAATCGCTGGCCCAGGTGCGCGAGTTGCTAGCGGCTGCGCCGGGCGTCGAAGTGGTGGACGAACCCCAGCAGGGCGTTTATCCAATGCCCATGACATCGACCTACAAGCATGCGGTCGAGGTTGGCCGGATTCGCTACAACCTGATCTACGGCGAACACGGCTTGGACCTGTTCATCAGCGGCGATCAGTTGCTGCGGGGCGCGGCGTTGAATGCCTTCGAGATCATGCAACTGGTCAGTGACTGA	MKKVAVVGCTGAVGMTMLQLLEETDYEVVCMASERSAGKRLKAGNTEHLIEPFSVEGCASCDIVFLCVSGSFALEYGERLAENSYVIDNSSAFRYHPDIPLLVPPINGQRYKGEKLIANPNCSSAIALMVLGPLHETFGLESAIISTYQAASGAGQPAMLELREKAKAFSDYGDQDGSENFAHNLAFNVIPQVDSFEDNGYTREEMKVVWELRKVLGEPELAISTTAVRVPTLRSHAESLSLRFKKPVQSLAQVRELLAAAPGVEVVDEPQQGVYPMPMTSTYKHAVEVGRIRYNLIYGEHGLDLFISGDQLLRGAALNAFEIMQLVSD	PGPT0014045_5591	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	NEUTRALIZING_ABIOTIC_STRESS	NEUTRALIZING_SALINITY_STRESS	SALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014045-asd-K00133	NA	NA
D1-36_05143	930	rarD_3	COG2962	Protein RarD	ATGACCGCCAAGAATGAATCCGGACAAGGCGTCGCCTTCGGGCTCGGCGCCACGCTGCTCTGGGGCTCGTACCCGCTCTGGTACAAGCCGCTGGCCGGGCTCGATGCCTATCATCTGCTGTCCTGGCGGGTGGTCTTCGCCGAGCTGTTTCTCCTCGCCCTGGTACTGTTGACCGCCCGGGTAGGAACGTTGCGTTCGACCCTCAAGACGGTGCGTCCGGCGAATGTGCTGACAGTGTCGGCGGTCCTCGGGCTGTGGTGGCTGATGTACATCTACGGGATCATGACTGGGCGCGTGCTGGAGGTGGCTTTCGGCTATTTCCTCAGCCCGATCATGAGCATGGTGGTCTCGCGGGTCATCTTCAAGGAGCGCCTCACGTCATTGCAGACCTGGGCGATATTCCTGGCCGTCACTGGCGTGACGCTGATGGCGTTCGAACTGCTGAACCTGCATTCCTTCCCGTGGATCGCATTGGTCATCGGCTTCTGCTATTCCTTCTATGGCATTTTCAAGAAAAAGGTCCCGGGCGATCCGGTGGTCATCCAGACCTTGGAAATTGCCGTACTGTTGCCGTTCGCTGCGCTGTTCCTGCTGCTGGCCCAAGCCCAGGGCGTAGGGCATCAGTTCCTGCAATCGGGCACCCGCGACGTGTTGCTGATCGCGACGGGCCTGATCACGGTGCTGCCGTTGTGGTGGTACAGTCTGGCGGCCAAGCAGTTGTCGATGATCACGCTGGGCTTCTTGCAGTTTGTCCCGCCAATTTGCAACTTCCTGTTGGCGGCGTTCGTTTATGGTGAACCGGTCTCGTCGTTGAAACTGGCGGCGTTTTCGTTCATCTGGCTGGCGCTTGCATTGTTCACGTTGAATTCCATTCGGGTCCAGCGTGCAGCGGCAGCCGCCAGGTTGTCCGTGCAAATGCGTACGGCATGA	MTAKNESGQGVAFGLGATLLWGSYPLWYKPLAGLDAYHLLSWRVVFAELFLLALVLLTARVGTLRSTLKTVRPANVLTVSAVLGLWWLMYIYGIMTGRVLEVAFGYFLSPIMSMVVSRVIFKERLTSLQTWAIFLAVTGVTLMAFELLNLHSFPWIALVIGFCYSFYGIFKKKVPGDPVVIQTLEIAVLLPFAALFLLLAQAQGVGHQFLQSGTRDVLLIATGLITVLPLWWYSLAAKQLSMITLGFLQFVPPICNFLLAAFVYGEPVSSLKLAAFSFIWLALALFTLNSIRVQRAAAAARLSVQMRTA	PGPT0003906_545	DIRECT EFFECT	COMPETITIVE_EXCLUSION|CE	CE-BACTERIAL_FITNESS	CE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE	CE-BACTERIAL_FITNESS-MULTUDRUG_RELATED_REGULATION,PGPT0003906-rarD-K05786	NA	NA
D1-36_05144	747	besC		4-chloro-allylglycine synthase	ATGTCCATTACCCAAGAAACATTCCAGTCCGAAACCGCTTACGTCGTGCGCAACGAAGGTGTCGACCTGGAACTTCAGTCGTTCATGGATGAGCAGATCGACTACATTCTCAAGCATCGAGCGACCGAACATCCGTTCCTCAATGCCTACGCCCAGCACGGCCTGCCGCCGGAGCAAAGCAAGGTGCTGTACCTGGAAACCCTTCATTACTTCAAGTACCTGCCGTTCTACGTATGTGGCATTTCCACCATCACTCGTGACGAAGCGGTGCTGCGCACGATCGCGTTCAATGCCCGCGACGAACTGGGTGAAACGCACTCCCACTCCGACCTGTATCGCAAGTTCCTGCACGACAAGGGCATCAGCGAAGAGCAGATCGAAGCCTACAAGTGCTTGCCCAGCACCCAGGCCTTGAATGACGGAATTTGCGCGCTCTACAGCAAGCCGCCCCTGCAAAAGGCCCTGGGCGGATTGTTCGCCGACGAGGCGATGTCGGCCTCGATGGTTTCCAAGTACAACGATGGCCTGATCAAGGAAGGCGTCAGCGAGCGTGGACGGTTCTTCTGGACGCTGCATATGGAAGTCGAAGTCGGGCATTCCAACGCTGTGTTCAATGTCATGGAAAAGCACCTGCAAACACCGCAAGAGCGTCGCCTGTTCGCCGAAGGCATTGAACAGTACCTGCACCTGATGGAAGTGTACTGGGATGGTATCGAGCGCAAACTCAACGCCGGAGGACGTCAATGA	MSITQETFQSETAYVVRNEGVDLELQSFMDEQIDYILKHRATEHPFLNAYAQHGLPPEQSKVLYLETLHYFKYLPFYVCGISTITRDEAVLRTIAFNARDELGETHSHSDLYRKFLHDKGISEEQIEAYKCLPSTQALNDGICALYSKPPLQKALGGLFADEAMSASMVSKYNDGLIKEGVSERGRFFWTLHMEVEVGHSNAVFNVMEKHLQTPQERRLFAEGIEQYLHLMEVYWDGIERKLNAGGRQ				NA	NA	NA	NA	NA
D1-36_05145	795	besD		L-lysine 4-chlorinase	ATGAGCGAACAAACATCCAGCTTGGTCATTGAAGCCATGGAGCAACAACTGGCCAGGCATTTCCAGGCTATTTTGCAAGATGAAAACCGGATGAAGCAGATTCGTAATGAATTTCGCCGCGACGGTTATTTCAACTTCAAGAACTTTTCCTTTCTGCCAAAAAGAATCCTGGAAAACGTTCACACCGAAGTTCATGCCTTGCTGGATGAATATTCGGTACGTCGCGATGTTACGGTTCCTTCCACCGGTAATACTTACCGCAAGATGTACAACGTCAACCAACCAGAGATCGCCGAGGGCGGGACGTTCATCCCTGCGCTCTACCAATCGGAGTCGCTGCGCAATTTTCTCGGCAACATCGCGGGCGATGACCTGGCGTCCTGCTGGGAGCAAGAGCAATACCTGATCACCAAGCTGAGCCACCCGGGCGATACCCACGGCTGGCATTGGGGCGATTACCCCTACACGATGATCTGGATCATCGAAGCACCCGAGGACCCGGCGATCGGCGGCGTGCTGCAATGCGTGCCCCACAGCGAGTGGGACAAGCAGAACCCGCAGATCTGGCAGTACATCCTCAACAACCCGATCAAGTCCTACCACCACCTCAAGGGCGATGTGTATTTCCTCAAGTCCGACACCACGTTGCACCACGTCGTGCCAATCCAACAGGAAACCACTCGGATCATCCTCAACACCTGTTGGGCAAGCGCCCATGACCGGCGAACCGACGTCGCCCACGAAAGCATTGAAGTGATCTGGGACACCAAGGCCCGGAGCACCGAAGAAGCCTGA	MSEQTSSLVIEAMEQQLARHFQAILQDENRMKQIRNEFRRDGYFNFKNFSFLPKRILENVHTEVHALLDEYSVRRDVTVPSTGNTYRKMYNVNQPEIAEGGTFIPALYQSESLRNFLGNIAGDDLASCWEQEQYLITKLSHPGDTHGWHWGDYPYTMIWIIEAPEDPAIGGVLQCVPHSEWDKQNPQIWQYILNNPIKSYHHLKGDVYFLKSDTTLHHVVPIQQETTRIILNTCWASAHDRRTDVAHESIEVIWDTKARSTEEA				NA	NA	NA	NA	NA
D1-36_05146	1281	gerN	COG0475	Na(+)/H(+)-K(+) antiporter GerN	ATGTTGCTGATCCAGATTCTGTTTGTGATGTTGTCAGCAAAACTTTTGGGCGCGCTATTCAATCGCTTGGGGCAACCTCAGGTTGTTGGCGAAATGATAGCCGGCTTTGTATTGGGGCCTGTTGTACTCGGTCAGTTGTTTCCCGCCTTCCATCAGCAGTTATTTGACAGCACTGCCATTACCCAACTCAAAGTATTGAGTGAACTGGGCATCTTGTTGTTCATGTTCGTCATCGGTGCCGAGTTTCGCTTCCCTCTCAAGCAAAGCAAGACCGGCTTCAAGGCCATGGTCATCGGCGCTTTCAGCATAGTGATCCCTTTTTCCCTCGGCGCCGCGATAGCCCCTTGGCTGTTCGAGCATTTCGCCACGCCCGGAACCTCTCGGTTGGGTTTCGTCCTGTTCATCGGCACCGTGTTCTCCGTGACCGCTTTTCCAGTTCTGGCGCGGATCCTCAAGGAGCGAGGCATGCTCGGCACGCAAACCGGTGCGATTGCCTTGCTGGCTGCCGCCATGAGCGACGTGGTGGCGTGGATGTTGATAGCAGCCGTCGCCATGGTGAATGGCCAGGACGACAACTGGATGGCCCTGGGTTTGCGAGGCGCCTGTCTGTTGTCGCTGGTGGTCTTTTCGTTCCTGGTGCTCAAGCCGTTGCTGGCGCGCTGGCTCGCCGCTGAAGGAAAACTCGCGCAACCCATGGTGCTGGTGGCGCTGCTGGCCGGAGTGATGATCTACGGCAGCCTGACCCACGCGCTGCAAGTACACGCCGTGTTCGGGGCTTTCCTGTTCGGCCTGTGCCTGCCACGGGACCAGGGCCTGCTGGACATGATCATCGAGCGGCTGGAACACGTGTCGTTGATCATATTGATGCCGTGCTTCTTCGCCCTTGCAGGTTTGAGCACAACCTCCTCGGCCTTCTCGGGCCTTGGCGTCTGGGTGCTGCTGGTAATCCTGGCGGTGGCTGTCACCGGCAAAGTGGCCGGCAGCGCCCTGGGCGCCCGGCTGGTGGGATGCTCCTGGTCCGATTCCCTGACCGTCGGGGCCCTGATGAATACCCGCGGGCTGATGGAGCTGGTAGTGCTCAAGATCGGCCTGGACATGGGGATCATCGGCAGCGAGCTGTTTACCGCCCTGGTGGTGATGACCATCGTCACCACGCTGATGACCGGCCCGCTGATGAATCTGCATAACAAGAAAGTTGCGACCGGCACTCCGTCAATGGCGAGAGTGTCATCCCCCAACGGATTTGTAACACCGACCGATAACAATGGAATGGAGCGATAA	MLLIQILFVMLSAKLLGALFNRLGQPQVVGEMIAGFVLGPVVLGQLFPAFHQQLFDSTAITQLKVLSELGILLFMFVIGAEFRFPLKQSKTGFKAMVIGAFSIVIPFSLGAAIAPWLFEHFATPGTSRLGFVLFIGTVFSVTAFPVLARILKERGMLGTQTGAIALLAAAMSDVVAWMLIAAVAMVNGQDDNWMALGLRGACLLSLVVFSFLVLKPLLARWLAAEGKLAQPMVLVALLAGVMIYGSLTHALQVHAVFGAFLFGLCLPRDQGLLDMIIERLEHVSLIILMPCFFALAGLSTTSSAFSGLGVWVLLVILAVAVTGKVAGSALGARLVGCSWSDSLTVGALMNTRGLMELVVLKIGLDMGIIGSELFTALVVMTIVTTLMTGPLMNLHNKKVATGTPSMARVSSPNGFVTPTDNNGMER				NA	NA	NA	NA	NA
D1-36_05147	996	cdhR_12	COG4977	HTH-type transcriptional regulator CdhR	ATGCACGCTCATCCCGGAACAGTGGCAATCCTCGTTTATGAGGGCCTTTGCGTATTCGAGTTCGGTATCGCCCTGGAGATATTCGGGCTGCCACGCCCAGAATTGGACGTCCCTTGGTACACCCATCGCATCGTCGCGGTCGACCAGGGCCCGATGCACGCGCTGGGGGGCTTGCAGATTTCCGTCGATGCCGGCCTGGAAGCGCTTGAAACCGCACAAACCATCATCGTGCCCGGTTGGCGCAGTCGTCTCGAGCCGCCTCCAGAGGCGTTGTTGCAGGCCCTTAGGCGAGCCCACGCCCGCGGGGCACGCTTGCTGTCGATCTGCTCGGGGGTCTTCGTACTCGCCGCCACGGGGCTGCTCGACGGCGAGACCGTGACCACCCATTGGCAATTCTCCCAGGAACTGGCCGAGCGATACCCCAGCATCAAGGTCGACCCCAACGTGCTCTACGTCGATCTGGGGCAACTGATCACCTCAGCCGGCAGCGCCGCCGGGATTGACGCCTGTCTGCATCTGATCGCACGGGATTTCGGCACGCATATCGCCAATTCGGTGGCGCGGCGCCTGGTCATGGCGCCACAACGAACCGGCGGGCAATCGCAATTCATCGTCGCGCCGGTGTGCAAGTCACCGCGCAACGAGCTGACGCGCGTGCTGCAATGGATTCGCGAGAACCTCGATCAACCGCTGAGCGTGGCCGACATGGCGGCTCGCGTGGCGATGAGCGAGCGCACGTTTTTGCGGCGTTTCATTGAGACAACCGGCCTGTCGCCCAAGGTCTGGCTGCAGCAGGAACGGCTGAACCGGGCAAGGGAAATGCTGGAAAGCACGGACCAGAACACCGCCGGCATCGCACACGCCTGTGGCTACCGGTCAGTGGAAAGTTTTCGCGCGGCCTTCCGCAACGCGGTAGGCCTGGCTCCCTCCGCCTATCGCGAAAGGTTCGGCAGCGGCGAGATCAGCAAACAGGCTGCCTGGGTCGCCAACTGCTGA	MHAHPGTVAILVYEGLCVFEFGIALEIFGLPRPELDVPWYTHRIVAVDQGPMHALGGLQISVDAGLEALETAQTIIVPGWRSRLEPPPEALLQALRRAHARGARLLSICSGVFVLAATGLLDGETVTTHWQFSQELAERYPSIKVDPNVLYVDLGQLITSAGSAAGIDACLHLIARDFGTHIANSVARRLVMAPQRTGGQSQFIVAPVCKSPRNELTRVLQWIRENLDQPLSVADMAARVAMSERTFLRRFIETTGLSPKVWLQQERLNRAREMLESTDQNTAGIAHACGYRSVESFRAAFRNAVGLAPSAYRERFGSGEISKQAAWVANC	PGPT0014658_5	DIRECT EFFECT	STRESS_CONTROL|BIOCONTROL	UNIVERSAL_STRESS_RESPONSE	STRESS_SIGNALLING_PROTEINS	STRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014658-ypdC-NA	NA	NA
D1-36_05148	597	nudK		GDP-mannose pyrophosphatase NudK	ATGACACAGGCCATCAGCACCAAGGATCGCGTGCGCATCAAGCACGTCGAAGTTCTCTCGGACAATTGGTACATCCTGCGCAAGACGACCTACGACTACCTCGGCCGCGACGGCCAATGGCGTGAATTGGCGCGTGAAACCTATGATCGCGGCAACGGCGCCACCATCCTGCTTTACAGCAAGGCCAAGCAAACGGTGGTGTTGACCCGGCAGTTCCGCTTCCCGGCGTTCGTCAACGGGCACGACGGCTTGCTGATCGAAACCTGCGCCGGCCTGCTGGATAACGATGATCCACAAACCTGCATCCGCAAGGAAACCCAGGAGGAAACCGGGTACATCGTCCAGGACGTGCGCAAGGTGTTCGAGGCATTCATGAGCCCGGGATCGGTGACCGAGCGCGTGCATTTTTTCGTCGGTGAATATTTCGACGAGGACAAGCAGCACGAAGGAGGAGGGCTCGAGGCCGAAGGTGAGGAGATCGAAGTATTGGAAATGCCGCTCGACCAGGCCCTGGGCATGATCGAGACGGGGGAGATCTGTGACGGCAAGACCATCATGCTGTTGCAGTACGCCAAGCTGCATCGGTTGCTCGATTGA	MTQAISTKDRVRIKHVEVLSDNWYILRKTTYDYLGRDGQWRELARETYDRGNGATILLYSKAKQTVVLTRQFRFPAFVNGHDGLLIETCAGLLDNDDPQTCIRKETQEETGYIVQDVRKVFEAFMSPGSVTERVHFFVGEYFDEDKQHEGGGLEAEGEEIEVLEMPLDQALGMIETGEICDGKTIMLLQYAKLHRLLD	PGPT0017890_153	DIRECT EFFECT	COLONIZING_PLANT_SYSTEM	COLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGE	PLANT_DERIVED_NUCLEOSIDE_METABOLISM	PLANT_DERIVED_PURINE_METABOLISM,PGPT0017890-nudK-K12945	NA	NA
D1-36_05149	1353		COG0277	putative FAD-linked oxidoreductase	ATGGCCAGCTACCTGACAGACTGGCGCAACGCCTATCAAGGCCAGGCCGCGTTGGTGGTCAGGCCCGCCACCACCGAGGAAGTGGCGGCAGTGGTGCGGCTTTGCCATGACGCGAGGGTGGCGGTGGTGCCCCAGGGCGGCAATACCGGCTTATGCGGTGGCTCGATTCCGGATGCTTCCGGCACCGAGCTGGTGTTGTCCCTGACCCGGATGAAACGCATCCGCGACATCGACCTGGCCAATGAAACCGTCACGGTCGAGGCGGGGGTCATCCTGCGGCAATTGCAGGAAGCCGCCAGTGAGGCCGGGCGCCTGTTCCCATTGTCGCTGGGGGCGGAGGGCAGTTGTACGGTGGGCGGCAATCTGGCGACCAACGCGGGCGGTACAGCGGTGCTGCGCTACGGCAACATGCGCGAACTGACGCTGGGCCTGGAGGTGGTATTGCCGGACGGCCGAATCTGGAACGGCTTGCGTGGCTTGCGCAAGGACAACACCGGCTACGATCTCAAACATTGGTTCATTGGCTCGGAGGGTACGCTGGGCATCATCACGGCGGCGGTACTCAAGTTGTTCCCGGCCACCCACAGCAAGGCCACCGCCTGGGTCGCGCTGCCCTCGCCGCAGGCGGCGGTGGACTTGATCGGCCATGTCCGTGGCCTCTGCGCCGACCGTTTGACAGGCTTCGAGATGATGTCGCGCCAGAGCGTGGAGTTCGTCCTGGAACATGTTGCCGGCTGCAGCGACCCCTTGGCGGAGCCACACCCGTGGTATGCGTTGATCGAACTGCGCGACACGGTGCCCGATGCGCCGCTGGCCCAATTGCTTGAAACCGGGCTCGGCCATGCTTTCGAAAAGGCTTGGGTCCTGGATGCAGTCATCGCCAGCAATCATACCCAGGCCGCTGCGTTGTGGGCCCTGCGCGAGGGTATCTCCGAAGCACAGAATCATGAGGGGCCCAGCCTCAAGCACGATATCAGTGTGCCGGTCAGCCAGATCCCGGCATTCATCGAGCATACCGACCGGGCCTTGCAAGACCAGTTTCCCGGCGTGCGCATTGTGTCCTACGGCCACATGGGCGACGGCAACCTGCACTACAACATCAGCAAACCGCTGGGCCACGCCGATGCCGCGTTCAAGTCGCAGGAGCAGGCGATCATGAACGTCATCTACCGGATGACCAGCTCCTACAACGGCAGCATCAGTGCCGAGCACGGGCTTGGACAAGCCAAGCCCCGGGCCGCGGCCCAGTTCAAGGACCCGCTGGAAATGGAACTGATGCGGACCATAAAGCGCACGCTGGATCCCCTGGGGTTGATGAACCCAGGCAAAGTGTTCGCCGCTGGGCTGGAGTGA	MASYLTDWRNAYQGQAALVVRPATTEEVAAVVRLCHDARVAVVPQGGNTGLCGGSIPDASGTELVLSLTRMKRIRDIDLANETVTVEAGVILRQLQEAASEAGRLFPLSLGAEGSCTVGGNLATNAGGTAVLRYGNMRELTLGLEVVLPDGRIWNGLRGLRKDNTGYDLKHWFIGSEGTLGIITAAVLKLFPATHSKATAWVALPSPQAAVDLIGHVRGLCADRLTGFEMMSRQSVEFVLEHVAGCSDPLAEPHPWYALIELRDTVPDAPLAQLLETGLGHAFEKAWVLDAVIASNHTQAAALWALREGISEAQNHEGPSLKHDISVPVSQIPAFIEHTDRALQDQFPGVRIVSYGHMGDGNLHYNISKPLGHADAAFKSQEQAIMNVIYRMTSSYNGSISAEHGLGQAKPRAAAQFKDPLEMELMRTIKRTLDPLGLMNPGKVFAAGLE	PGPT0001440_2	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
