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BSR_Lac_UAPBR_inlet_p_1_118266_38

Organism: BSR_Lac_UAPBR_inlet_p_1_Firmicutes_40_18

near complete RP 49 / 55 BSCG 51 / 51 MC: 1 ASCG 14 / 38
Location: comp(26111..31090)

Top 3 Functional Annotations

Value Algorithm Source
Putative surface layer protein n=1 Tax=Oscillibacter valericigenes (strain DSM 18026 / NBRC 101213 / Sjm18-20) RepID=G4KTP9_OSCVS similarity UNIREF
DB: UNIREF100
  • Identity: 41.9
  • Coverage: 1765.0
  • Bit_score: 1092
  • Evalue 0.0
putative surface layer protein similarity KEGG
DB: KEGG
  • Identity: 41.9
  • Coverage: 1765.0
  • Bit_score: 1092
  • Evalue 0.0
Putative surface layer protein {ECO:0000313|EMBL:BAL00304.1}; TaxID=693746 species="Bacteria; Firmicutes; Clostridia; Clostridiales; Oscillospiraceae; Oscillibacter.;" source="Oscillibacter valericigenes (strain DSM 18026 / NBRC 101213 /; Sjm18-20).;" similarity UNIPROT
DB: UniProtKB
  • Identity: 41.9
  • Coverage: 1765.0
  • Bit_score: 1092
  • Evalue 0.0

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Taxonomy

Oscillibacter valericigenes → Oscillibacter → Clostridiales → Clostridia → Firmicutes → Bacteria

Sequences

DNA sequence
Length: 4980
ATGACTGAAAAAATGAAAAGAAGAATTACTGCAATTTTTCTCGTACTAGCAATGGCAGTGGGGGTAATGCCCACTATGTCTCAAAAGGCATACGCTGAACCATTGGCAAGTATAACACTGATTGCTGCCGCAAGCTTTACGTTTACCGGGGCTAACGAGGGATACGGAGAACAAGCACCTTATCAGGCAACGGTTCGTAATGAGGGCATCGAAGAAACAGGGGCATTATCTGTGGATTTAAGCGGCGACGATGCAGCGTTTACCCTTTCCACCGACAGTATTTCCAGTATTTCCGCCGGTGAGGAAAGTTATGTTTCGGTGAAGCCTGCATTGGGATTGAATGCGGGGACTTATACGGCTATGGTGACCATTTCGGGGAGTCAAGTGGACTCTAAAAGCTTTAATGTGAGTTTTACCGTAAGTCCTGCTGATGAAACCTATACCGCTACAATCCAGACATATCTAAACGGCACCCTTACGGATGTTGAAGGAGAGGTAGAGATTAGCAAAGATTCTACGAGAATTACGGTACCCAAAAAAGATGATGGTATTTATGAAACAACGGTAGCAAACGGAGATTATACTATTTTTATCGACGGAAACAGTACCAAGAGCCTTGTTGTGAGCGGTGAAAATAAAACAGTAACGTTAGAATATTTTACTGTGGAATTTTCTGCTTCTACGGAGGGTACGGCTGCTAACGGCTCCATTGGAGCCTCTGTGGACGGAAATGAGATTACAAGCGGAGACAAGGTGCTCTCAGGGATGACTATTTCCATGACAGCATCGGCAACGGATGCCGCTAGCTACACATATGCTTGGAGTGGTGCAGGAACAAACGGAGAAACTACGGCAACGTTAAATTTTGTGGTATCAAGTGCTATCAATGCGGCATGTGTAATTACGGGCAGTGGAACACCCATTGAATCTCCTGATTACCAAATCAATGACGAAGGATACAATTGGACAGGCTCTGATCAGACAATAGTAGTTTCTGGTACAAATGATACTTTGACCATACACGAAGCTCCCACTGCAGCTATCAAAATTGATGTGCAATCGGCAGACGGCTCAGAGGTTACGCTTGATGGTAGTTCCATTGCCTGTGCCAACACCACAGTGGTGGTATCCAACGGAATTACCCTGAATTTAAAAGATTTTGATATTACGGCACCCACAGGCAGCATGGAGGACTGGCGTTTATTTACAGCTCTTTTGCTGAAGGATTCTACCACAATTGATGTATCTGGTGATTGCAATATTAGCGGTAACTGTAATACGTCCGGCCCTTGGAATGGCCATGGAATTGCTTCGGAACAGGATAATACCACCCATATTACAGGAAGTGGAACATTGAATGTAACAGGAGGAAGTGCCAGCAACGGAAATGGCGGCTCAGCGATCAATATCATAACTTATACATACGGTACTGAAACAGGGGCAAAGCTATTCATTGAGGATGGGGTTACTGTTAACGCAACAGGAGGAAACTCTGCAAATAACCAAGCAGGCAGTGGCATTAATGCAGGTTGGGGCGATGTTATCATTGACCATGCAACAGTCAGCGCCATTGGCGGAGCAGCAACGGGAAGCACTGGTGGCGGTGGAACAGGCATTCTGGCTTCCAGCAGCAACGATCAAACTAAGGGGGGGAATATTACTGTTACCGACAGTACATTAACTGCTGAAGGAGGCGCATCAGCGGCGTCCAGCGGCGGGCGAGGCTTGGAGGCGTTTACGGATATTGCGGTCTCTGGCGGTATAGTTACTGTTACAGGAGGAAATGGTTATATTTATGGTGCACATGGAGTTTTTTCCTACCGTGGCATAATTACGATTGAAAATGGAACGGATTTAACTGCAGTAGGTGGTGACGGAACAACGAACCTTGGCGGTGTTGGGTTGCGTGCCTTTGGCAGTTCGGATAGTATCAGCTCCACACCGGGAATTGCAACAATTTCCAATACTGCTGGTGATGTTTATATCCGCGGGGGTAAAGGTGTGGCAGATTCCCAAAGAGATTCGATTATGGGCAAAGGCATTTACATCGGTACAGGTAATATTGGCACTATTATTATGGAAAGTGGTACATCTCGAAAAATTAAAAATATTCTAAGCGGAGATGACCTTTATTTGGTGAAGGTTGAAACAAATCCAGCTGATGATGTGGAAATCACATGTCAGGTGGAAGGGACACTAGGGGGCAGCTATACCTACCATGCAGTGGCAGATACTGATGGAACGGCTTGCCTTTGGCTTCCCGAAGGAACGCTGACACTATCATCTTCAGGGTATGCAGACCAAGGCTTGACTGTTTTATCAGATGATACAGCAAATAGTGTTATTTTATCCAAGGCATCGGAGGTTACGGCGTATGATTCAGACGAGCTGAAAACCTATATGGCGGCATCCTATGTGAATATCATCAATTTAATAAATGGTACAACCTATACCTACGACGGAACGGTTGTAACAGGAAATATAACAATAAACGGCAACGGTGCCACAATTGATGTTGGTACAGGGGTAAATGATACCATTGTAAAAAAAGAAGGCAACTCCGTCACCGGGCCTGTTTTTCTAGCTGTAGAGGGGGGAAGCTTAATTATAAAAAATGTTACACTTCGTGATGCTTCTACCAGAATTCTTGCTGCCATCAATGTGAAAACAGATGGTACCCTCCTATTGGACGGCGTAACATTTGAGGGATTCTTTGCAAATCTCAGCACAGACCCTTATCCTACAGCTTCTAACATTAACGGCAGTCATAATAATTTTGGTATTCATGCTGAGCCAGGCGCAATCTCAACCACCGTGAAAAACTGCACCTTTGGTTCGACGAATTCCTTCCGCAATACTATCGCAATCAGAAATGGTACTGCAGTTATAAAAGACAATACCTTTGTGGGAACTGCCACACCGGAAAGGCAGAATCAAACAGATGGATGCGAGTACGCAGTGTATCTCTATGGGGGAAATTGCACAGTTACTGGAAATGATATTAGCGGCTTCGACAGCGTTTTGCAGGCTATTGGGTATCACAGTGCTGGAATTACCACGTGTCCATATTATAGTTTAGTTGCAACGATTACGGGAAATCAATTATATAACAATGCTCGCGGCATTGACGGTGTTGGTGCATGGCATACCTATTCCCATCCTGCTGACGTTGAATTAAACGGTACCAAACTGACAACTAGTGAGGATGGCTTTAAAATTGGTGAGGCGCTCAGGAGTGCAAATACCCTTTCAAGTAATTCAGATGGAGATATTGCCATAAGCCTAGACCAAAATGATTACTATGTTGATGTGAACACAGGCGTAGAATATGGTCCTCCTGTATACTTTGCACCTCTGATTAAGGTAGGCAGTACAACAAGCAAGGGAGCAACCCTTAACTTCGATAACGGAATATGGGCACGTACCACCATTAACAATGCAAAGAGCTATGGCATTCAGGTTTCGGAGGACAACGGAACAACATGGAAGGCGGCTTCCGTAACAGAAACATTAAATGCTACTTCTACATCCGCAGAGATAGAGCTGAATGCAGGCAAAACCTATCTTCTTCGCATGGTTTTGGTGATTACAGCCAACACAAGACCTGTGGACTCGACGGATGATGTATTGGCTGATATTACCGGCTATTCCAATGTAGTGAGTGCAACCATTACATCTGGCGGTGGAAAGAATTCCTCTGGCGGCGGCTCTGCAATCGGAACATCAGGGGGCGTACCCGTCATTGTCAATGGGGAAACCAAAACGGCAGGGACAGCCCAAACTACCACCGACAAGGATGGTAGAACCACAGCCACAGTCACTGTGGATTCCACCAAGCTAGAGAGTATTCTTGCATCTAAAGAGGGAGGAGCAACGGTAATTATCCCTGTGACAGGTAAAGCAGACATTGCAGCAGGTGTTCTGACTGGTGAAATGGTCAAGAACATGGAAAACAGAGAAGCAACCCTTGTTGTTAAGACAGAAGGAGCCACTTATACGCTACCTGCAGAAGAAATCAATATCGAAGCCGTTTCAAAACAGCTTGGAACTAATGTTTCTCTTAAGGATATTACGGTATCTGTCAGCATTTCCGCGCCATCAAGTCAAATGAGTGAGGCGATGGAACGAGCGGTACAAAATGGTGGCTTTACCCCTGTAGTATCTGCTGTAGATTATACAGTTACCTGCAGTTATGGTGGACGTGCCGTTGATGTGAGAAGTTTTGAAGCCTATGTGGAACGAACCATTGCTATACCTGATGGGGTTGACCCGTCGAAAATTACCACGGGCATTGTAATTAATCCCGATGGTACGACCCATCATGTGCCCACAAAGGTAACGGTGATAGATGGTAAGTATTACGCTGTGATAAACAGCTTGACCAACAGCACTTACTCCGTTGTTTGGAATCCCATTACGTTTTCTGATATGAACAACCACTGGGCAAAGGCTTCCGTCAACAACATGGGATCAAGAATGGTTGTCAGCGGCGTTGGTGAGGACAGTTATGAGCCTGATAGAGACATGACTCGCGCAGAGTTTGCAGCTATTATGGTACGGGCATTGGGACTTGATGTGGAAATAGGCTCCGACAGCTTTTCCGATGTTCCTTCCTCGGCATGGTATAGCGGATATGTGAAAACGGCGGCGTCCTATGGCATTATAAAGGGTTATTCCGACACAGCCTTTGGTCCTAATGACAAAATTACCCGTGAGCAGGCAATGGCAATGCTTGCAAGGGCAATGAAAATTACGGGGCTGAATACCGAATTATCCACAGAGGAAGGAGAAGCACTCCTTTCGGCATTTAATGACAGCACCGCTATATCTGCCTTTGCCGTTGACAGTACACAGATGTGCCTAAAGAATGGTATTGTTTCTGGCAGAGAAAACAACACACTCAAGCCAAAGGCTTATATCACTCGCGCTGAGGTTGCGGCAATGATTGAACGATTACTACAAAAATCCAACCTGATATAG
PROTEIN sequence
Length: 1660
MTEKMKRRITAIFLVLAMAVGVMPTMSQKAYAEPLASITLIAAASFTFTGANEGYGEQAPYQATVRNEGIEETGALSVDLSGDDAAFTLSTDSISSISAGEESYVSVKPALGLNAGTYTAMVTISGSQVDSKSFNVSFTVSPADETYTATIQTYLNGTLTDVEGEVEISKDSTRITVPKKDDGIYETTVANGDYTIFIDGNSTKSLVVSGENKTVTLEYFTVEFSASTEGTAANGSIGASVDGNEITSGDKVLSGMTISMTASATDAASYTYAWSGAGTNGETTATLNFVVSSAINAACVITGSGTPIESPDYQINDEGYNWTGSDQTIVVSGTNDTLTIHEAPTAAIKIDVQSADGSEVTLDGSSIACANTTVVVSNGITLNLKDFDITAPTGSMEDWRLFTALLLKDSTTIDVSGDCNISGNCNTSGPWNGHGIASEQDNTTHITGSGTLNVTGGSASNGNGGSAINIITYTYGTETGAKLFIEDGVTVNATGGNSANNQAGSGINAGWGDVIIDHATVSAIGGAATGSTGGGGTGILASSSNDQTKGGNITVTDSTLTAEGGASAASSGGRGLEAFTDIAVSGGIVTVTGGNGYIYGAHGVFSYRGIITIENGTDLTAVGGDGTTNLGGVGLRAFGSSDSISSTPGIATISNTAGDVYIRGGKGVADSQRDSIMGKGIYIGTGNIGTIIMESGTSRKIKNILSGDDLYLVKVETNPADDVEITCQVEGTLGGSYTYHAVADTDGTACLWLPEGTLTLSSSGYADQGLTVLSDDTANSVILSKASEVTAYDSDELKTYMAASYVNIINLINGTTYTYDGTVVTGNITINGNGATIDVGTGVNDTIVKKEGNSVTGPVFLAVEGGSLIIKNVTLRDASTRILAAINVKTDGTLLLDGVTFEGFFANLSTDPYPTASNINGSHNNFGIHAEPGAISTTVKNCTFGSTNSFRNTIAIRNGTAVIKDNTFVGTATPERQNQTDGCEYAVYLYGGNCTVTGNDISGFDSVLQAIGYHSAGITTCPYYSLVATITGNQLYNNARGIDGVGAWHTYSHPADVELNGTKLTTSEDGFKIGEALRSANTLSSNSDGDIAISLDQNDYYVDVNTGVEYGPPVYFAPLIKVGSTTSKGATLNFDNGIWARTTINNAKSYGIQVSEDNGTTWKAASVTETLNATSTSAEIELNAGKTYLLRMVLVITANTRPVDSTDDVLADITGYSNVVSATITSGGGKNSSGGGSAIGTSGGVPVIVNGETKTAGTAQTTTDKDGRTTATVTVDSTKLESILASKEGGATVIIPVTGKADIAAGVLTGEMVKNMENREATLVVKTEGATYTLPAEEINIEAVSKQLGTNVSLKDITVSVSISAPSSQMSEAMERAVQNGGFTPVVSAVDYTVTCSYGGRAVDVRSFEAYVERTIAIPDGVDPSKITTGIVINPDGTTHHVPTKVTVIDGKYYAVINSLTNSTYSVVWNPITFSDMNNHWAKASVNNMGSRMVVSGVGEDSYEPDRDMTRAEFAAIMVRALGLDVEIGSDSFSDVPSSAWYSGYVKTAASYGIIKGYSDTAFGPNDKITREQAMAMLARAMKITGLNTELSTEEGEALLSAFNDSTAISAFAVDSTQMCLKNGIVSGRENNTLKPKAYITRAEVAAMIERLLQKSNLI*