ggKbase home page

L2_026_000M1_scaffold_3467_1

Organism: dasL2_026_000M1_concoct_38_sub_fa

partial RP 36 / 55 MC: 3 BSCG 40 / 51 MC: 5 ASCG 12 / 38 MC: 1
Location: comp(3..3602)

Top 3 Functional Annotations

Value Algorithm Source
Fibronectin type III domain protein n=1 Tax=Ruminococcus sp. CAG:57 RepID=R6SZY6_9FIRM similarity UNIREF
DB: UNIREF100
  • Identity: 99.0
  • Coverage: 1200.0
  • Bit_score: 2438
  • Evalue 0.0
Fibronectin type III domain protein {ECO:0000313|EMBL:CDC66773.1}; TaxID=1262962 species="Bacteria; Firmicutes; Clostridia; Clostridiales; Ruminococcaceae; Ruminococcus; environmental samples.;" source="Ruminococcus sp. CAG:57.;" similarity UNIPROT
DB: UniProtKB
  • Identity: 99.0
  • Coverage: 1200.0
  • Bit_score: 2438
  • Evalue 0.0
Glycoside Hydrolase Family 5 protein / Carbohydrate-Binding Module Family 23 protein similarity KEGG
DB: KEGG
  • Identity: 98.2
  • Coverage: 1200.0
  • Bit_score: 2427
  • Evalue 0.0

Lists

This feature is not on any list.

Notes

This feature has no notes.

Taxonomy

Ruminococcus sp. CAG:57 → Ruminococcus → Clostridiales → Clostridia → Firmicutes → Bacteria

Sequences

DNA sequence
Length: 3600
ATGACAGGAGTAATGAGAAGATTTTCTGCGGCTCTGGCGGCTGCTGCAATGGCTGTTAGTATTGTGCCTTTCGCAGATATCAGCGCATATGCGGAGTATGCGGCGACACACCCGGAGGGATTTGTTTATGCTGACGGCTCAAAGTTTATGTGCGACGGAAGCCCTTACTATTACGGCGGCACGAACTGCTATTATCTCACCTATAAGTCAAAGAGTGAGGTAAAGAATGTTTTCGATGACGCTTCAAAAATGGGGCTTAAAGTAATAAGAATTTGGGGAAATCTTGACGTTGGTAGGAAAACAGGCGAGATCGACTCGCAGTCTGGTCATGAGACCTTTGAGGGCAACAATGACGGAACGGGCGAAAAGGACGGAGTTTACTTCCAGTATTGGGACGATGAGGCTGGAAAGCCTGTTGTGAACGAGGGCGAGGACGGTCTGAGACATCTTGATTATATTATCAAGCAGGCTGAAGAACATGATATGAAGCTTGTTATCACTTTCACGAACTATTGGGAAGCGTTCGGCGGAATGGGTCAGTATGTAAAGTGGTATCAGATGTCACAGGGCAAGAGCGTTGGTAATAGCAAAGTGGACGAAAAGGACACCTGCGATTTTTACACTAATGAAACTATCAAGGGTTGGTATAAGGATTATATCAAGACTTTGTTAAATCACACCAACTACTACACAGGCGAGAAGCTTATGGATTCTGAAGCTGTTTTTTCTTGGGAGCTTTCAAACGAGCCGAGATGTACTGTTGACGAGTTCTGCAAGGACGATATTCTTTATAACTGGGCAAAGGAAATGTCAGCATATGTAAAGTCTATCGACCCTTATCACATGGTATCAGTTGGCGACGAGGGCTTTTATAACCTTGGCTATCAGGAAGCTGCAAGGCAAGATCTTCCGTCTTCCGCATATTCAGGCTACTACGGTGTTGACTTTGACAAGCTTATGACTATCGACACTGTAGACTTTGGAACACCGCATATGTACGTTGATCAGTGGGGCTTTGACCTTGGCGATGATGACCTCGAGTGGATAAAGCGCCATGCCCAGACCACATCTTCCGCTGACAAGCCTATTATCTTTGAGGAATTCGGTCTTACAGACAAAACAAAGCGTGACGCCGCTTATTCCGATTGGCTGGATATTGTAACAGGGGACTACTATGAGGGTGTCGAATATCAGGGCTTCAACTATTGGATGATAGCTTCCTATCTTGATGACGGCACTCTTTATCAGGACTATGACGGCTACACCGTTTACGGCCCTGAGGGTATCGAAAAGACGGACAGCACAAGAACTCTTATGATGAACGCTGCTGCAAAAATGGAAAAGAAGAACATTGTAAACACTACTGACAAGTCTACATACAGTTTTGACAGAAGCAAGTCAGGTAACGTTGTGGTGAATGTTTCTATGAAAGAGGGCAGCATAAGCGGTGTTGAGGTCGGCGGAAAGAAACTCTCGTCAGACGATTACACCATAAGTGGCAACGCTGTTACTATCAAGGCTTCTTATCTTAAAAGGCAGGAGCTTGCAAAGTATTCGTGCAGGATACTCACAACAGGCGGCAATCAGCCTAAGTTCAATCTGACGGTGAGCGACAGCTCTATCCCTAAGCCGATTATCTCACCTGAGATAATCTCTGTTGACGTAAACCCTAAGAAGTGCAGTGATGTTGATATCACTATGGATCGCAAGACAAGCGAGTTCAGAGGCATTGTTGCTGATGGAAAAGCACTCGCAGAGGGTACAGATTACACAACTTCGGGCGACACTGTGACCCTTAAAAGTGCATATCTCAAAACGCTTTCAGCAGGCATTGTGACGCTTAAGTTCGATTTCTATGAGGGCGAGGATAGAGAGCTTACAATAAATGTTTCCGACACCACAGGCCTTGATGAGCTTGACACATTTGAGAGCTATTCAAATGATAAGGCACTTTGGTCGTCTTATTCAAGAAACACAGGCGGCAATGAAGTTTCACTTTCTCTTGCTACAAAGAACGGTTCAAAGGCGCTTGCTTTCGGATATGATATCGGCTCGCCAAACGGCTACTGCGGAGTAAACCACCCTATTGCAGTAAGAAATGCTTCATCATTTGCAGGCGTTGAGCTTTGGGTAGAGGGGGACGGCACAGGCAACAGCCTTACTGTTCAGCTTAGAGACGCAAACGACAATTATTTTGAAGCGCAGATAGCACTTGATTTCGCAGGTGGAAAAAATATCAAGATACCATTCGCTGACTTTAAAGCGCCAAGCTGGCAGTCGGGCGGAAATCTTGATACATCAAAACTTAACCAGTTCTCGTTCTATATGGGCGAAGATTCTGCTCAAAAGACAGGTACAGTTTACATAGACGATGTTGTTTTCTATGAGGACGGACAGATCGAGAAGCCACACCTTTCCACAAAGTCAGGCATATTTGACGCTGATGCTCCAAGCGGTGTGAGAACAGACCTTGTGCTTTATGGAAAGAGCGTTGAGTCTATCATAGTAAACGGCAAGAAGCTTACAGGCGGCTTAGATTATTCTACAAGCGGAAGTCAGATAATGCTCAACGAAAGCTGGCTCAAGACGCTTGCAAATGGTAATTACACACTTACATACACATTCTCAGACGGAAACACAGATACATTTGCACTCACTGTCAAGAATGTTAAGTCATCACACACTCACAGCTACACCGCAAAGGTAACAAAGGAAGCTACTTGCACAACAGAGGGCGAGAGAATTTACACTTGTACTTGCGGAGACAAGTACACTGAAACTATCCCTGCCAAGGGTCACAGCTGGGTAAAGGGCGAGACAGTTGCTCCTACAGAGAACGAAAAGGGCTACACTATCTACACATGCGCTTCCTGCGGCGAGACAAAGAAGGACGATTACACCGACCCTATCGGTCACAGGCACAGCTATACCCTCACATCAACAAAGGCTGCAACTTGCGAAACTGACGGCGAAAAGGTATACACTTGCTCATGCGGTGAAAAGTACACTGAAACTATCCCTGCGACAGGTCACAGCGAAAGCGCATGGATAATCGACAAGGCGGCTACTGCGACAGAAAATGGCTCAAAGCACACTGAGTGTACAACTTGCGGCAAGGTGATAAAGACAGAGGTTATCCCTGCAACTGGAGAGGTAAGTGACAAAAAGGAAACTGTTATCTTCACAGGCTCGGCAAAGACATCAGGCTGGGGTCAGGCTATTACACTTTCCACAACTAAGGAGGGCGGCAGCTTTGACAGCTCAGTTATCGAAAAGGACGGATATTTTGAAGTTCAGTTCAAGGGCGGCACAGACAAGGCGGAGATCATTCTCCAGAGTTGGTCAGGCGGTGCAGACTGGGCGAGAGTTTCACCAACTGAGGTAACAGAAAAGGACGGCATTGTATACGCAAAGTACAGCTACGACGATGTTGCTGCGGCATTCGGAACAACAGATTTCTCTAAAGTAGACCGCTTCCATGTTGGTGCGGCTAACGGAGATATCGAAGTTCTTAGTGTTAAGTATATTGTCGGAAAGTCAACAAAGCCGGTTGATCCGGTAGATCCTGTTGACCCTGATAAGCCGGAGCAGGATCCATAT
PROTEIN sequence
Length: 1200
MTGVMRRFSAALAAAAMAVSIVPFADISAYAEYAATHPEGFVYADGSKFMCDGSPYYYGGTNCYYLTYKSKSEVKNVFDDASKMGLKVIRIWGNLDVGRKTGEIDSQSGHETFEGNNDGTGEKDGVYFQYWDDEAGKPVVNEGEDGLRHLDYIIKQAEEHDMKLVITFTNYWEAFGGMGQYVKWYQMSQGKSVGNSKVDEKDTCDFYTNETIKGWYKDYIKTLLNHTNYYTGEKLMDSEAVFSWELSNEPRCTVDEFCKDDILYNWAKEMSAYVKSIDPYHMVSVGDEGFYNLGYQEAARQDLPSSAYSGYYGVDFDKLMTIDTVDFGTPHMYVDQWGFDLGDDDLEWIKRHAQTTSSADKPIIFEEFGLTDKTKRDAAYSDWLDIVTGDYYEGVEYQGFNYWMIASYLDDGTLYQDYDGYTVYGPEGIEKTDSTRTLMMNAAAKMEKKNIVNTTDKSTYSFDRSKSGNVVVNVSMKEGSISGVEVGGKKLSSDDYTISGNAVTIKASYLKRQELAKYSCRILTTGGNQPKFNLTVSDSSIPKPIISPEIISVDVNPKKCSDVDITMDRKTSEFRGIVADGKALAEGTDYTTSGDTVTLKSAYLKTLSAGIVTLKFDFYEGEDRELTINVSDTTGLDELDTFESYSNDKALWSSYSRNTGGNEVSLSLATKNGSKALAFGYDIGSPNGYCGVNHPIAVRNASSFAGVELWVEGDGTGNSLTVQLRDANDNYFEAQIALDFAGGKNIKIPFADFKAPSWQSGGNLDTSKLNQFSFYMGEDSAQKTGTVYIDDVVFYEDGQIEKPHLSTKSGIFDADAPSGVRTDLVLYGKSVESIIVNGKKLTGGLDYSTSGSQIMLNESWLKTLANGNYTLTYTFSDGNTDTFALTVKNVKSSHTHSYTAKVTKEATCTTEGERIYTCTCGDKYTETIPAKGHSWVKGETVAPTENEKGYTIYTCASCGETKKDDYTDPIGHRHSYTLTSTKAATCETDGEKVYTCSCGEKYTETIPATGHSESAWIIDKAATATENGSKHTECTTCGKVIKTEVIPATGEVSDKKETVIFTGSAKTSGWGQAITLSTTKEGGSFDSSVIEKDGYFEVQFKGGTDKAEIILQSWSGGADWARVSPTEVTEKDGIVYAKYSYDDVAAAFGTTDFSKVDRFHVGAANGDIEVLSVKYIVGKSTKPVDPVDPVDPDKPEQDPY