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rifcsphigho2_01_scaffold_15095_11

Organism: RIFCSPHIGHO2_01_FULL_Archaea_Pacearchaeota_37_200

partial RP 35 / 55 MC: 5 BSCG 5 / 51 ASCG 28 / 38
Location: 8597..14407

Top 3 Functional Annotations

Value Algorithm Source
Lytic murein transglycosylase n=1 Tax=Melioribacter roseus (strain P3M) RepID=I6Z887_MELRP id=5103087 bin=GW2011_AR20_complete species=GW2011_AR20 genus=GW2011_AR20 taxon_order=GW2011_AR20 taxon_class=GW2011_AR20 phylum=Archaeon tax=GW2011_AR20_complete organism_group=Woesearchaeota organism_desc=GWA2_A_30_20A_AR20 Complete genome similarity UNIREF
DB: UNIREF100
  • Identity: 27.4
  • Coverage: 999.99
  • Bit_score: 363
  • Evalue 1.10e-96
Lytic murein transglycosylase KEGG
DB: KEGG
  • Identity: 27.4
  • Coverage: 999.99
  • Bit_score: 363
  • Evalue 3.10e-97
Lytic murein transglycosylase Tax=RIFOXYA2_FULL_Ignavibacteria_37_17_curated similarity UNIPROT
DB: UniProtKB
  • Identity: 34.3
  • Coverage: 999.99
  • Bit_score: 890
  • Evalue 3.70e-255

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Taxonomy

RIFOXYA2_FULL_Ignavibacteria_37_17_curated → Ignavibacteriales → Ignavibacteria → Ignavibacteriae → Bacteria

Sequences

DNA sequence
Length: 5811
GTGAAATCTAAGATTTATTTATTTTTAATTTTAGCAGGCATTATAGTCATGAATGTATTTTTAGTAAGTGCTGTAGGAGGATTTAGCTCCAGCTCATCCAGCTTTACTTATGTAAATCATCCTAACTTAAGGTCTGGATTTTCTTCTTATTATGGCTCTAATGCCGGAATTTACTGGCCAATATTTCAGAATTCTTCACAATGCAAATCGCAAGAAGATGTATTGCTTTATGTAAGACCTGGAGCGTGTCAGCCAGCGGTAGTTAGAAGCGACCTTCTTGCAGAGCAAAACGTGCCGGTATTTTGCCAGATTGACGCAATAAAACTTAACCCTCTAATGGATATAAAAGAGATAAGAGATATCGGATTTAGCGGAAAATATCCCAAGGAAATAGCAACCGTAGGATTTCATCCAGCGTATGCCGCATTGCGCACACATGATATATTGCTAGGTGATCCTGTTTTGAACAATATAGGATATGCTGTTGTTGTATTAAAGAAACAAGCCAATGAATCTTCTCTGCCTGAATTTATCAATGTGACTATGTCTGGAACAGTAAGATACGATGCAGGCAATGCTCTAGGCATTGGAAGAAGCGAGTTCATGCTTCAAGACGTAGGCGAGAGAGATTGGCAGCTTGAACAAAACAAACAGACATTCTGGAACGGAAGATTCTCTGTAAGAGCCGAAAATATACAGCAGGAGAGTTTGCTCTTAACAATATATGACGGAGGAAGGAGAGTCTCAAGCAGTGTTTTAGCAAGAGGCAAGATTTCCGATACATTATATCTTCCTGGAGGGTACTGTCCGGTTGGAGTGCGTGCAGTATATGAGGGAATGGAGCCGGAGAGAATAAGTGCACGCCTAGAGATAAGCGCAAGTGACCAAGGAGTTGATAAAATAGATGTTTATCAAGGAAGCAAAATATTTGACAGATGCAGTGTAAATAAAGTAGTAAGCACTAGCATCAACAATGCAGGATTCATTGAGTTAAGCTGCCCTGGTGAGCCACTTTTACGCTTGAGCATAAATGCAAGAACTTCTAAATTTTCAGAGGGAGACATAATTCCGGGCGATAAAAGAATATACACAGGAGTTAAATTAGAGAATAAAGGAGTTTTGAGCGATGTTGGTTCGTATACATGGAGTTCAATATTTGATTCCTCCAGATTTAATTCTCCTTTAGTGTGCGAGGTTAACATAACTGCCGGAGACATTGCTGCTTCCGGAATAGAGCCACATACTGACTTCTTACCAGGATTATATTCTGCAGGAAAACAAGGAGAGGGAGAGATATGGAGACTTAGATATAGAAGTGATTACAGTATTAAAGAAAAAGACGCTTTAGAAATCCAGACAAGTTTAGGAGGGTGGTCGGCAAAATTAAAGGACGAGCTTGTAAGAAAGTGCGAGGGAAGAATCCTATCGGAGAAAAGTTACGACAATGCAACGGAAAAATATTTCACAGATAGCATTCAAGCATATGAGAAAGTAGCAGAAGATTATCCCTTAGAAAGAGATAAGGATATAGATTCAAGCGAGGGCTATGGGGCAAGAGCTTTCCAGGAAGCAATAAACTTAGCAGATAAATATGGCAAGCATGAAACAAAGATAAGACTTATGCAGAATTTCATAGAAACTTATCCTTCACATAATAAGAGAATTCAATATGAAAGCGAGATAAATAATCTTCTAGCTTTTGACTATAAGTCCTCCGGTACCACAGTACTTATCAACGGAAGATACAGAACTATTAGATTAGTTGGTTTTACTCTTCCTAAAGCAGACAGCACTTCAGCCAGCTTCCTAATTGAAGGAAGAGAAATTAAGCTTGCTCCTGGAGAAGTCCGTACTTTTGAGACCAGGAGTGGCAATGAAGGAAGCGTCTTATTGCAGGAAATAACTGATAGCGAGAGAGCAGAAATAAGAATTTCTTGTCCGGATGAAAGTCCTACTTTAAGAGCCGACTTAGAGAATGCTAAAAAGAGATTGCAAAGTCAGCCAGAGAAGGCAAGAGAAAAAGAAATAATGAGTATATATGCAAGCTACTTCAATGATAAATTTTATTCTCTTTCTCCACACAACCTACGCGTTGGAGCAAGTGTCAGCGCATGCGGAGTTCCTCTTGTTCTTAATGATATAAACATAGGAAAAGTCGCCAGAGTCCGACTTGAACCTGCTGATGTCGGGAGAGCAGAATCAAAAGCAAATGTAACTGTACATATTGGAATAGAAAAGAGAGCCATAAAACTTTCTCCTGAAAAATCTCTTGAAAAAATAGCCAATCTTAATACGAGCATTCAACAGTGGGAGAGTATATCCAAGAGATTAAGCACGGTAGTTACCGGCTTGAAAGGCGCTTGTTTTGCAACAGCAGGAGTTTTAACTGTAAAGAATTTCATTGATGGAATAGACGGCACAACTTTGGCCAGAGAGCATGCAATGTCTGGCTCAACAGGATGGAAGCAAAGATGCAAAGATGCAATTGACAGTCCAGACCATGTAATTGACAGAGGCAATGGAGAGAAGGCTTCAGTTTCTTATCGTACTTTGACAGAGTGTTTCAATGGAGAAAAAGAATATATCAATTCCGAAGTTGAAGCCAGAACAAAATCATTAGCAAATGTCAATACACAACTTAAACAGTTGGAGAAACAACCAGAAATTACTTCAGGAGCATTTGCCGGAGGAAAGAGCGTTAACACAGTGGAAGCCACAAGAAATTACTTAAAAGACTTGAATGAGATGTGCAATTCAAATCAATTGGAACAGTCAACTTGCGATTATATCAAGAGTTTAAATGAACCTGATGAAAAAGGAAATGCGGCTTACAGATACAGTGACTTAAGAGAACTTCATTACAATGCTTTATTAAAACAACAAGGATATACCAGCGCAGGTAAACAGATAGATGAAACAAAGAAAAGAATAGATGAGTCCAAGAAATTCTACGAAGCATACCAAAAAACAAGCGACTTTACTTATTCTAATTACAAGATGGTTGCGGCTTCCGCAGGCAATATAGCTGACATTCAGAGGCCAGTTCAGGGAAGCATAGGAGAGCTTAAGCCACTAGGAAAGAATGCGGAAAGCGTAAGCAGTTATCAACTTAACGGGAAGGAAATAAAGATTTCTCAGGATGTTAACGTGATAGACAACGCTCAAGCGGCAATGATTGTTGCAGGAGCCAGGACGGAGAGAGGCGCTTTAGGAGAAGAGAAAGTAGTTGCCAAGAAGTTCTTAGTTGTAGGAAACAAAGTAGGAAATAGATTAGAGCCAACAAATGTTTACGAAATGGAACAGAGCGATTCTAATGGACAGTACAGCATTACAAGTCAAGCGTATGCTCCAAGCACAATGGATAAGTTCAGGGCAGAGTATCAGATAAGCGTGCTTGAAAATTCAGACAGCGTTTACATGAATTCCATAAGGCAGGAAGATTGGAAGGTTAGGTATTTTGAAACAGGAGTAGACAAAGGATTTGCAGCTTTAGTTCCATTTGACGTAACGCATGGATGGTATGTGAAAGTTAAATCTAATCTTCCTGTTGGGAATGAAATAGCAGCTTATGACAGTTCAGGATTGCCTAAATTATGGTATATATGCAATGCAGGAAGCGATACAAGAATAGACGAGAGCGACCAGTGCCAGTCAGTCTTCGAAGGCATATCTTCAGATGCCAGAGTTTTCGGGCTTTCAAATGATGAATCAAGAAAGCTAATAAGAGAATCAAGAGAAGCTTTATTTGAAGCTAATAGGCAACGCAATGATCCTCGCGGAGCGACAATAAATAATAATAGGCTTCAGAGAGGAACTCCGGTAACGCCATACGAAGGAGTGCAGTGTCAGGATTTCATGAGTCCTGGAGATTGCAAGCTGTTGTTCAATGTCTGCGATCCAGTAATATGCCCGCCAACCAGATGCAATCTAGGAGGACAATATCCTGTAGCCGATGTCGTGCAAACGGGAATAATTGGAAGCACACTTTTATGCCTTCCCAATTACAGAGAAGGAGTTTACATTCCAGTCTGCCTGACAGGAATACAGGCAGGAATAGATTCATATGTTTCAATATTAAAGAGTTACAGAGATTGCCTGCAGGAGAATGTGAAGAGCGGGCAGCTCGTAGGAATATGCGACCAGGTTACTTCTGTTTATTTGTGTGAATTCTTCTGGAGACAAGTTGCTCCAGTTGCTAAGGTTTTGCTGCCTAAATTAGTTGAAAGCGCGTATGGGCAGGGAGCAAGAGGAGGAGGGGAATATTTGACAGTAATGCATGCTTGGCAAAATATGGAGAATTCAGTAAATTACTTTAAGCAAAGCTATGCTGTAAATGCTTTCAATGCATTCAAGCTTAGGTCTATAGAAGAAGCGGGAACTCCTTTCTGCAAGTCATTCATATCGGCTAAATCACCTACACAATTCAAGAGTCTTCTTGAACCTGAAAGCCCGCCACAATTTCACGCATGGTTTAGCAGTATTCCATTTACAAGCGCAACTTTGCCAGCAACTTCACAGTATAAAGTGTTTTATCATATATTTGGAGGAAAAGATTCAGGAGTGTATTATCGCGTTTACTTAAAGAATCCTCCAGGTTCTGAATACTACGCTGCTGCCCCCATAATTGTAGTTGACTCGGCATTTATTCCGAGAGGGCAATACAAGACTGAAACAAAAGACTTTACCGCTCCAGAAGGATATAATGAGCTTTGCATACAGATAAACGGGAAAGAGGAATGCGGATTTGGGCAAGTTTCAACCAGTTTCGCTACAAATTATTTAAGAGACATTTATGTAAAAGAAGAGCTAGAGCAGAATGACATTACTTCAGAGAGAGCGTGCATAAGCGGGAGCCCAAGCCCTAAAGCACTTCTTGCAAATACTAATCCACAGGCGGCTTTAGAAGAAGCTGCTATTCCCCAAGCTTATGAGAGAGGAATAATAAGGATATGCGCAAATGAAAATCCAGGAGGCTCTACAGAGCCAAGCAGATATGTTGACATGGGACATTGCGGAGATCCTAAGCTACGTTGCTGGTTAGACCAGAAAAGTGTAGACAATGCAATAACAGAAGATAATTTATATCTAAAGAATAAAACTCTGGAAGAAATACGTTCAACACAGAGAGAGAGATTAGAAGCCAATGGCGAGATACTTCCTGAAAGTGATGCCAATGCTCTTATAAGGTTCCATAGGTTTGCCAGTGAAGAAATTGCCAGCCAATACGAGAGAGATACAAAAACTAGCGATGTAGTGCAGAGCGTTGCACGCGAGCGTGAGAGAATTGACAATGATTTCGGGAGAGACTTGGAATACCTATTCTTAAATCATCATAAAGCCGCAGTTTTAATGATTAAAGCGGAGCTTACAAGAACTATTGCTATAGTTGCTCATAATTCTTATGCCGGCAAAGGAAGTAAAAGTAGTTCTGATCAAGTCCCAACTAGCAGGCAAAATCAAGATTTAAGCGGATTCAGAGATTCAGGTTATTTTATAATATCTGAACAAGATTTAGGCACGGTAGCGCAGAAAAAGAGCGATGGAACAAACGTCAAGATTAAGCTATATTATAATTACAGCAGTAAATTTTTTGTTATGAATGAAAAAGGAAAATGGAAAAACGCAGCTCAAAGTGATGTTTCAGGAAATATAAATGTTATATCCGTTCCAACGGATAGGGCGTTGGCGCAAGAGCGCGCATTTATAATCGCAATGCAAAATCAGAAAGCAAAGCTTTCAAATGGAAACATATATTTCAAGATTGATACTCAAACACAAGCGACAGATGGAAGAGCTATTGGAGGAAGATAA
PROTEIN sequence
Length: 1937
VKSKIYLFLILAGIIVMNVFLVSAVGGFSSSSSSFTYVNHPNLRSGFSSYYGSNAGIYWPIFQNSSQCKSQEDVLLYVRPGACQPAVVRSDLLAEQNVPVFCQIDAIKLNPLMDIKEIRDIGFSGKYPKEIATVGFHPAYAALRTHDILLGDPVLNNIGYAVVVLKKQANESSLPEFINVTMSGTVRYDAGNALGIGRSEFMLQDVGERDWQLEQNKQTFWNGRFSVRAENIQQESLLLTIYDGGRRVSSSVLARGKISDTLYLPGGYCPVGVRAVYEGMEPERISARLEISASDQGVDKIDVYQGSKIFDRCSVNKVVSTSINNAGFIELSCPGEPLLRLSINARTSKFSEGDIIPGDKRIYTGVKLENKGVLSDVGSYTWSSIFDSSRFNSPLVCEVNITAGDIAASGIEPHTDFLPGLYSAGKQGEGEIWRLRYRSDYSIKEKDALEIQTSLGGWSAKLKDELVRKCEGRILSEKSYDNATEKYFTDSIQAYEKVAEDYPLERDKDIDSSEGYGARAFQEAINLADKYGKHETKIRLMQNFIETYPSHNKRIQYESEINNLLAFDYKSSGTTVLINGRYRTIRLVGFTLPKADSTSASFLIEGREIKLAPGEVRTFETRSGNEGSVLLQEITDSERAEIRISCPDESPTLRADLENAKKRLQSQPEKAREKEIMSIYASYFNDKFYSLSPHNLRVGASVSACGVPLVLNDINIGKVARVRLEPADVGRAESKANVTVHIGIEKRAIKLSPEKSLEKIANLNTSIQQWESISKRLSTVVTGLKGACFATAGVLTVKNFIDGIDGTTLAREHAMSGSTGWKQRCKDAIDSPDHVIDRGNGEKASVSYRTLTECFNGEKEYINSEVEARTKSLANVNTQLKQLEKQPEITSGAFAGGKSVNTVEATRNYLKDLNEMCNSNQLEQSTCDYIKSLNEPDEKGNAAYRYSDLRELHYNALLKQQGYTSAGKQIDETKKRIDESKKFYEAYQKTSDFTYSNYKMVAASAGNIADIQRPVQGSIGELKPLGKNAESVSSYQLNGKEIKISQDVNVIDNAQAAMIVAGARTERGALGEEKVVAKKFLVVGNKVGNRLEPTNVYEMEQSDSNGQYSITSQAYAPSTMDKFRAEYQISVLENSDSVYMNSIRQEDWKVRYFETGVDKGFAALVPFDVTHGWYVKVKSNLPVGNEIAAYDSSGLPKLWYICNAGSDTRIDESDQCQSVFEGISSDARVFGLSNDESRKLIRESREALFEANRQRNDPRGATINNNRLQRGTPVTPYEGVQCQDFMSPGDCKLLFNVCDPVICPPTRCNLGGQYPVADVVQTGIIGSTLLCLPNYREGVYIPVCLTGIQAGIDSYVSILKSYRDCLQENVKSGQLVGICDQVTSVYLCEFFWRQVAPVAKVLLPKLVESAYGQGARGGGEYLTVMHAWQNMENSVNYFKQSYAVNAFNAFKLRSIEEAGTPFCKSFISAKSPTQFKSLLEPESPPQFHAWFSSIPFTSATLPATSQYKVFYHIFGGKDSGVYYRVYLKNPPGSEYYAAAPIIVVDSAFIPRGQYKTETKDFTAPEGYNELCIQINGKEECGFGQVSTSFATNYLRDIYVKEELEQNDITSERACISGSPSPKALLANTNPQAALEEAAIPQAYERGIIRICANENPGGSTEPSRYVDMGHCGDPKLRCWLDQKSVDNAITEDNLYLKNKTLEEIRSTQRERLEANGEILPESDANALIRFHRFASEEIASQYERDTKTSDVVQSVARERERIDNDFGRDLEYLFLNHHKAAVLMIKAELTRTIAIVAHNSYAGKGSKSSSDQVPTSRQNQDLSGFRDSGYFIISEQDLGTVAQKKSDGTNVKIKLYYNYSSKFFVMNEKGKWKNAAQSDVSGNINVISVPTDRALAQERAFIIAMQNQKAKLSNGNIYFKIDTQTQATDGRAIGGR*