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SR1-18-Sp65_coassembly_scaffold_333001_28

Organism: SR1-18-Sp65_coassembly_Chloroflexi_56_22

near complete RP 51 / 55 MC: 1 BSCG 50 / 51 ASCG 15 / 38 MC: 3
Location: 25514..29287

Top 3 Functional Annotations

Value Algorithm Source
multi-sensor signal transduction histidine kinase (EC:2.7.13.3) similarity KEGG
DB: KEGG
  • Identity: 26.5
  • Coverage: 744.0
  • Bit_score: 215
  • Evalue 5.20e-53
multi-sensor hybrid histidine kinase id=14629663 bin=bin8_Chloro species=unknown genus=unknown taxon_order=unknown taxon_class=unknown phylum=unknown tax=bin8_Chloro organism_group=Chloroflexi similarity UNIREF
DB: UNIREF100
  • Identity: 27.8
  • Coverage: 753.0
  • Bit_score: 262
  • Evalue 1.30e-66
Tax=CG_Anaero_04 similarity UNIPROT
DB: UniProtKB
  • Identity: 36.3
  • Coverage: 703.0
  • Bit_score: 413
  • Evalue 8.50e-112

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Taxonomy

CG_Anaero_04 → Anaerolineales → Anaerolineae → Chloroflexi → Bacteria

Sequences

DNA sequence
Length: 3774
ATGTCGGCATCCAACCCCTCCTCACCTCCCACCCGGAGCATCCCCCGCTCCCAATTCATTCTGGTTGTCATCCTGTTGGTCGTCGGGGTGGGAGCCGAAATCCTAATCCTGCTCAATTACCTCCAACTCTCAGACAACCTCAACACTTCCTTCACCCCTGCCGTCAACCTCCTGCCCCGGCTCTCTGCTCTGCAGACCGAGGTGCTTCAACTGCACGCTGAAACCAGCGACGTGCTCCAGTCCGACTTGCCGGAGTACGCAATCATGATTGCCCTCCGCGCCAGCGTCGCCGACCGGCTGAACGAACTTCGAACAGCCGCCGCCGGGAATGACAAATACAACGCATCCTTCGAGGCCGTCGAACTCTTACTGCAAACCTTTGACGCGCAGATGATCATTTTCCAGAATGATCCATCTCAGGAGCGACTACCAACCATCATCTTTGAGTTGCATCGAGCATTTACCAACGCCGAAACCGAACTGGGCAACTTATACCTCGGCGAACAGGCGGATTTCTACCAGGTCACTTCCAACACCTTCAACGCCATTCGCGGCACTCAGATCATCCTGTTCAGCCTCGGCGGCCTGATCTTTGCCCTCGGCGTGGTGCTCATCATCACTACCCGGCGAAGCGTCCAGCGTGAACTGGGCCGCGTCGCCGATCAACTGCAAGTGGCCGCCGACGTGGGCCGGGCGGCCTCATCCTTCCTCAGCCTGGACGAACTGTTCGACACCACCCTGAGCCTGATCCGCAATCGCTTCGGCTTCTATCACGCATCCATTTTCCTGCTCGACGACAAAGGCGAGTATGCCGTGCTCCGGGCCTCGACCGGCGAAGTGGGAACCAATCTGCTGAAAAGCGGCTACAAACTGCTTGTCGGCTCAAACTCAATCATCGGCTACGTCACGGCCAACAACGCGCCGCGCATCGTGTCGGACGTGAGCCGGGACCCCGTCTACTTTAGAAACGAGCTTCTCTCCAGCACCCGCTCCGAATTGGCAGTGCCGCTCCGGCAGGCCGGGCAAGTCATCGGCGCTCTCGACGTGCAGTCTGTTGAAAGCAACGTTTTCTCCAAAGACGAAGTCTCGGTCATCCAGACCCTGGCCGACGAAAGCGCCGTCGCCATCGGCAATGCCGCCCAGTACACCCGCGAAAAAGCCCGCGCCCAGCAATTGGCGGCGCTGTCGGAATCGTCCGTCGAATTGAGCATCCCCCAAACCAACCTCGACGCCCTGCTGGACTTGATTGCCCGCCGCGCTCTGACGCTCTTGAAAGCCAACGACGCCGGCATCTGGTTGCACGCCGGCGACGATGAAATTGAGCTAAGAGCAAACATCGCCGAACCGGCGCTGGTGGGTCAACGCCTGCGCAAGGGCGAAGGCCTGTCGAGCCAGGTCTTTGTCAGCGGGCGCCCCCTGCGAGTGGAAGATTACAGCCGCTGGGAGAGCCGGGCCGGCGCGTTTGCCAACGCCAATTACCGCGCCGCGCTGGCGGCGCCTATGAACTGGCAAGGCTCCGTCGTCGGCGTGTTGACTCTGACTCACTCCCAGCCCGGCTGGTTCTCAGCTGAGGACGAACGCATTGCTCAACTTTTCGCCTCGCAGGCGGCGGCGGCTATCGAAAACACCCGGCTCCTGCAAGAGACACAAAGCCGCCTCGGCGAGTTGTACACCCTCAACCAGATCGGGCAAGCCGTTGCCGCCCAGACCGAACTGCGCGGCCTGTTCGACGTGATTCGCCGGGAAGTGCTCAGGGTGATCAGCGCCCCCGTTTTGTATATCAGCCTCTACGATGCCAAGAGCGAAATGCTCGAAATTCCTTACTTTTACGATAACGGCCAAATCACGACGATAGATCCGTTTGCTCTGGGGCGAGGGCTGACCAGCATCATCATTCAAACCCGGCAACCTCTGATCATCAATACCGCCGATGAAGCCGCCGCTCACGGCGCAATCATTGACGGCGCTTCTGCCGAGTCTTACCTCGGCGTGCCGATCATCGTGCGCGACAACATCATCGGCGTTCTCTCGGTGCAGGATTACGACAGGCCGGACCTCTACACCCAAGCCGATGCCCGCCTGTTGTCAACCATTGCCTCGCAGGTCGGCCTGGGCATTCAGAGCATCCAGCTTTACCAGCAAGTCCAGCGCCGCGCCGACCAATTGACCGCCGCTTCTGAAGTCAGCCGGACTTCTATTTCCGTGCTCGACCCCGGGAAGTTGATCGTAGAGGCAGTCGAACTGATCCGCGACCGCTTCAACCTGTATTACGCCGCGCTCTTTTTGGTGGACGACGAGGGCGGCTGGGCCGTGCTCCGGCATGCCACCGGCGAAGCCGGGCAGAAACTGCTGGAGATCGGCCACCGGCTTGAAGTCGGCGGCAACTCGATGGTGGGCGCGGCCATTGCCCACCGCCAGGCGCGCATTGCCCTCGACGTGGGCAAGGAGCCGGTGCGCTTCGCCAATCCCTACCTGCCCGACACCCGCTCCGAAATGGCCCTGCCTCTTCTGGTTGGCGAGACGGTGCTGGGCGCGCTCGACGTGCAATCCACCCTGCGGAACGCCTTTACCGAATCCGATATTGCCGTTCTGCAAACCATGGCCGACCAGATCGGCACTGCCATCCGCAACGCCCAACTGATTGACAACTCCCAGCGGGCGCTAAAGGCGTTGGACTACGAAACCTACCTGCTCCAAACGCTCCTCGAAAACGTCCCCGACAAAATTTACTTCAAAGATCAGGAGAGCCACTTTATTCGCGTGAGCCGGGCCGTGGCCGAGCAGTTCAAGCTCTCGCCCGAGGAAGTGATTGGCAGATGGGACTTCGACTTTTTCGACGAAGGCCATGCCCGCCGGGCCTACGAAGACGAGCAGGAAGTCCTGCGCACCGGCCAGCCCATCATCAGCAAGATTGAAAAGGAAAACTGGCCCGACGGCTCTACCACCTGGGCCTTGACCACCAAACTGCCGTTGCGCGACAGTGACGGCAACATCATCGGCACCTTCGGCGTCTCGCGCGATGTGACCGAATTGAAGGCGGCGGAAGAGGCCTCCCGCCGCCGCGCCCAGCAGTTGGCCGCCGCCGCCGAAGTCAGCCGCGCAACCATTTCCGTTTTGGACCCCGATCAACTGATCGTCAAAGCTGTGGAACTGATCCGCACCCGATTCGACCTGTACTATGCCGCCATCTTCCTGGTGGACTCGGACGGGGCCTGGGCCGTGTTACAACACGCCACCGGCGAAGCCGGGCAAAAACTGCGGGAGATCGGCCACCGGCTCGAAGTCGGCGGCAACTCGATGGTGGGCGCGGCCGTTGCCCGCCGCCAGGCGCGCATTGCCCTCGACGTGGGCGATGAGCGGGTGCGCTTTGTCAATCCCTACCTGCCCGACACCCGCTCCGAAATGGCCCTGCCCCTCATCGTCGGCAAAACCGTTCTGAGCGCGCTCGACCTGCAGTCGACCCAGGCCAATGCCTTCTCTGAAGCCGACATCTCGGTACTGCAAACCATGACCGACCAGATCGCCGTCGCCATTCAGAATGCCCGGCTGTATCTCCAGGTCAACCACCGCGCCCAGTTGGAGCAACTCATCAACCACCTCACCGCTAAAATCCGCCGCTCTATTGACGCCGAAGGCATCATCGCCACCACCCTCAGCGAACTCAGCGAGGTTCTGCCCGCCCGCCGGGTGGTGGCCCGGCTCGGCCCCGGCCCGGAATTGCTCCCCCGGAAAACCGGCCAGAGCAACGGAAACGGCGGGCACCCGACGGACTGA
PROTEIN sequence
Length: 1258
MSASNPSSPPTRSIPRSQFILVVILLVVGVGAEILILLNYLQLSDNLNTSFTPAVNLLPRLSALQTEVLQLHAETSDVLQSDLPEYAIMIALRASVADRLNELRTAAAGNDKYNASFEAVELLLQTFDAQMIIFQNDPSQERLPTIIFELHRAFTNAETELGNLYLGEQADFYQVTSNTFNAIRGTQIILFSLGGLIFALGVVLIITTRRSVQRELGRVADQLQVAADVGRAASSFLSLDELFDTTLSLIRNRFGFYHASIFLLDDKGEYAVLRASTGEVGTNLLKSGYKLLVGSNSIIGYVTANNAPRIVSDVSRDPVYFRNELLSSTRSELAVPLRQAGQVIGALDVQSVESNVFSKDEVSVIQTLADESAVAIGNAAQYTREKARAQQLAALSESSVELSIPQTNLDALLDLIARRALTLLKANDAGIWLHAGDDEIELRANIAEPALVGQRLRKGEGLSSQVFVSGRPLRVEDYSRWESRAGAFANANYRAALAAPMNWQGSVVGVLTLTHSQPGWFSAEDERIAQLFASQAAAAIENTRLLQETQSRLGELYTLNQIGQAVAAQTELRGLFDVIRREVLRVISAPVLYISLYDAKSEMLEIPYFYDNGQITTIDPFALGRGLTSIIIQTRQPLIINTADEAAAHGAIIDGASAESYLGVPIIVRDNIIGVLSVQDYDRPDLYTQADARLLSTIASQVGLGIQSIQLYQQVQRRADQLTAASEVSRTSISVLDPGKLIVEAVELIRDRFNLYYAALFLVDDEGGWAVLRHATGEAGQKLLEIGHRLEVGGNSMVGAAIAHRQARIALDVGKEPVRFANPYLPDTRSEMALPLLVGETVLGALDVQSTLRNAFTESDIAVLQTMADQIGTAIRNAQLIDNSQRALKALDYETYLLQTLLENVPDKIYFKDQESHFIRVSRAVAEQFKLSPEEVIGRWDFDFFDEGHARRAYEDEQEVLRTGQPIISKIEKENWPDGSTTWALTTKLPLRDSDGNIIGTFGVSRDVTELKAAEEASRRRAQQLAAAAEVSRATISVLDPDQLIVKAVELIRTRFDLYYAAIFLVDSDGAWAVLQHATGEAGQKLREIGHRLEVGGNSMVGAAVARRQARIALDVGDERVRFVNPYLPDTRSEMALPLIVGKTVLSALDLQSTQANAFSEADISVLQTMTDQIAVAIQNARLYLQVNHRAQLEQLINHLTAKIRRSIDAEGIIATTLSELSEVLPARRVVARLGPGPELLPRKTGQSNGNGGHPTD*