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BSR_Ace_UAPBR_effluent_at_17019_1

Organism: BSR_Ace_UAPBR_effluent_at_Phycisphaerae_63_30

near complete RP 48 / 55 MC: 2 BSCG 48 / 51 ASCG 11 / 38
Location: 1..3696

Top 3 Functional Annotations

Value Algorithm Source
DNA polymerase I (POL I) id=4456477 bin=GWF2_Planctomycetes_50_10 species=Methylomicrobium alcaliphilum genus=Methylomicrobium taxon_order=Methylococcales taxon_class=Gammaproteobacteria phylum=Proteobacteria tax=GWF2_Planctomycetes_50_10 organism_group=Planctomycetes similarity UNIREF
DB: UNIREF100
  • Identity: 59.5
  • Coverage: 929.0
  • Bit_score: 1078
  • Evalue 0.0
DNA polymerase I similarity KEGG
DB: KEGG
  • Identity: 47.5
  • Coverage: 911.0
  • Bit_score: 787
  • Evalue 3.30e-225
Tax=RBG_13_Planctomycetes_60_9_curated similarity UNIPROT
DB: UniProtKB
  • Identity: 70.8
  • Coverage: 931.0
  • Bit_score: 1322
  • Evalue 0.0

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Taxonomy

RBG_13_Planctomycetes_60_9_curated → Phycisphaerae → Planctomycetes → Bacteria

Sequences

DNA sequence
Length: 3696
CACTTTCCAGGGGTAGGGGGCCGGCGTCGGGTCGGCCCGGTTGTGGACCGGCGAGCGGGATGGCTCGCCCCTGGAGGTTGCGATGGATTCGAGACCGCTGGATCGCAGGTGTCGGCTGTGGAGGCGAGGGCCATCGAGGTCGTTGTGACCATTCCGTTGTGGCTGGCTCGGGCCGGCGTGGCGCTGGCGCTGCTGTGGCGACGCGTCCGCTACGGCTACGCCTTCCGCCGGATCGCCCTGACCAAAGGCCGCTACGCCATCGTCGATCCCGACGACTATCCGCGTCTGGCCCGCTACAACTGGCACGTGAGCGAGGGGACGCGGACGTATTACGCCGCCCGCAGCGCCCGCTTGAGTGACGGCCGGACGAAGACCGTCGCGATGCACCGCCAGGTGCTGCCGACGCCGTCCGGCGTGCTCGTCGATCACGTCAACCAGCACGGCTGGGACAATCGCAAGGCCAACCTGCGCGCCGCGACCCGCTCGCAGAACGCCCGCAACCGCGCCAAGTTCAGCCGGGGCGTCTATAGCTCAGCGTACAAGGGCGTCCGACGATGTCGCGACGCCGCCGGATGGGAGGCGACGATCACCGTCCATCGCCGCTCTATTTTCCTCGGCCGCTTCGAAAGCGAGATCGACGCCGCCCGCGCCTACGACCGCGCCGCCCTTCGCTACCACGGCCGCTTCGCAGCGCTGAACTTCCCTCGCCCCGCCCGCCTGCGCGAGCGCCTCATCGCCTTATTGATGCATCCGATCGGCCGGCACGTAGGGCGAGCGTCCCCGCTCGCCAATCCCATAGCGACGCGCTGCGCCCGGCCGAAGCGAAGAACGAGGTGGCGTCGTGCGGGAGCTTGCCCTGAGTCTGTCGAAAGGACGCACGACCTGCGAATTCGACGGCACAGGCGGATGGACGGGCGCTTGACAGGCGGTCGCGGCGGGCATAGAGTGGCGGCCATGCCCCAGACGCTCTATATCATCGACGGTCACGCCCACATCTACGCGGCGTATTTTGCGCCGATGCGCCAGCAGTTGACCAGCCCGTCGGGCGAGCCGACGAAGGCGACGTATATCTTCACCACGGCGGTGCTCGGCCTGATCGAAAAGTACAGGCCCGACATGCTCGTCGTGGCGATGGACAGCAAGGGGCCGACGTTTCGCAGCGCGATGTTCGCCGATTACAAGGCGCACCGGCCGCCGATGCCCGAGGATATGCCCGTGCAGATCGAGCGGATCGAGCAGGTGCTCGACGCGCTGCGGATTCCGATCCTGCGGGTCGATGGCTTCGAGGCCGACGACATCATCGGGACGCTGGCCAGGCGGGCGACGGCCGATGCGATCGACGTGCGCATCTGCTCGAAGGACAAGGACCTGCTGCAACTGATCGACGCGCGGGTCTGTACGTTCGATCTGAAGACCGGGCGGGTGACCGACGCCGAGGCGATGGAGCGGGAGATGGGGATCGGGCCGGGGCAGGTCGTCGATTGCCTTGCCCTGGAGGGCGACGCGGCCGACAACGTGCCCGGTGTGCCGTTGATCGGGCCCAAGACCGCCCGCGAGCTGATCCGCACCTACGGCGACCTCGACAACCTCTATGCCCACATCGACGAGATTCCGGGAAAGCGGGGCGAAAATCTCCGAACATCGAAGGACCTGGCGTACCTGAGCCGCAAGCTCGTGACGCTCGACTGCAATGTACCGATCGAAATCGACTACGAGACGCTGAAGCTCGAATCGCCGGACCGCGACAAGCTCTCGGCGCTCTTCACCGAGTTGGGCTTCTCGCGGCTGCTGACGCAGTTCGGCTTCAAGCAGGAAGGCCCCGCTGCGGCTGAGTCGCACGTCGTGACGCCGGCCCAGTCGCCTTCGGGTGAGCCGGCCTCGGCCCGGACCACGCCACACGAGTACACGCTGGTCGATACGCCCGAAGCCTTCGCGCGTTTTGTGTCCGAGTTGAAGCAGCAGGGGGGCTTTGCCGTCGATACGGAAACGACGTCGGTCGATCCGATGCGGGCGGACCTGGTGGGGCTGTCGTTCTGCTGGGAGCCGCAGCGGGCGTTCTATCTGCCCGTACGGGTGCCGCTGGGGGCCACGCATCTCGATGTCGCGACAGTGCGGCGGGAACTCGGGCCGATCCTGGCCGACGAGGGCGTTCGCAAGGTCGGGCAAAACATCAAATACGACTGGCTGGTGCTGCACAACGCCGGCATGCCGTTGCGGGGCGTGCATTTCGACACGATGGTCGCTTCGTACTGCCTCGATCCGGGCCGCAGCAGCCACTCTATGGACAATATGGCTCGCGATTATCTTGGCTACGAGTGCGTGCCGATCGTGGCCCTGATCGGCAAGGGCCGAAATCAGCTCACGTTCGATCTGGTCGATACTGCGGCGGCGTGCGAGTATGCGGCTGAGGATGCCGATGTCACGTGGCGGCTGTATCTGCACCTGCAGGAGCGGCTGGCCGCCGAGCCCGGGCTCGCCAGGCTCTTCGCCGAGGTGGAGATGCCGCTCGTTCCCGTGCTGGCGACGATGGAACTCCACGGCGTTTCGCTCGACACCGCGCTGCTGCGGAGGATGTCGGGCGAGCTGAGCGAGGCGCTGGAATTCCTCAGCGAGCGGATCTACGCCGAGGCGGGGACGGTGTTCAATATCGATTCGCCCAAGCAGCTCGGCGAGGTCCTGTTCGACCGGCTGGGCCTGGCGTCGGGACGGGTGGGCAAGACCGGCCGCAGCACCGATGCGAGCGTGCTGGAGCAGCTTTCGGCCGAGCATCCCGTCGCGGCCCTCGTGCTCGAGCACCGCACGCTGAGCAAGCTCAAGAACACCTACACCGACAAGCTGGCGGCAATGATCCACCCGCGCACCGGCCGGCTCCACGCTTCCTTCAATCAGACCGTCACAGCCACGGGCCGGCTCTCGTCGAGCGACCCGAACCTGCAAAACATTCCCATTCGCACGGAGTTGGGCCGGAAGATCCGAGCGGCTTTCGTTCCGCAGAGTCCCACCGACTGCATCCTCAGCGCCGACTACAGTCAGATCGAGCTGCGGCTGCTCGCGGAGTTCTCGCGCGACGAGGCCCTGCGCGCCGCCTTCGCCGCCGACCAGGACATCCATCGCTTCGTCGCCTCGCAGGTCTATGGCGTGCCGCTCGAGGCCGTCACGAGCGAGATGCGCTCGCGGAGCAAGGCCGTCAGCTTCGGGCTGATCTACGGGCAGGGGGCGTTTGGCCTGTCCCGCGCGACGGGGATGAGCGCCGCCGACGCTCGGCAGTTCATCGAAGACTATTTCGCGCGCTATGGCTCGGTGCGCGCGTTCCTCGATTCGTGCGTCGAGAAGGCCCGCCGGACCGGCTACGCCGAGACCGTCCTTGGCCGTCGCCGCCGCATCCTCGACATCAAGAGCCACAACGCCGGCCGCCGCGCCCAGGCCGAGCGGCTGGCCGTCAATACCGTCATCCAGGGCTCGGCCGCCGACCTCATCAAAATGGCGATGCTCGCCATCCAGAAAAAGATCGACGCCGAGAGCCTGCCCGTCCGCATGCTGCTTCAGGTCCACGACGAACTCGTTTTCGAGCTGCCGGCCGCCGAGGCCGAGACGCACGCCGCGTGGATCGCCGAGAAAATGACCACGGCCCTGCCCCTCGAAGTGCCCCTGAGGGTCGACGTCGCCCACGGCCCCTCCTGGCTCAGCGACAAGTGA
PROTEIN sequence
Length: 1232
HFPGVGGRRRVGPVVDRRAGWLAPGGCDGFETAGSQVSAVEARAIEVVVTIPLWLARAGVALALLWRRVRYGYAFRRIALTKGRYAIVDPDDYPRLARYNWHVSEGTRTYYAARSARLSDGRTKTVAMHRQVLPTPSGVLVDHVNQHGWDNRKANLRAATRSQNARNRAKFSRGVYSSAYKGVRRCRDAAGWEATITVHRRSIFLGRFESEIDAARAYDRAALRYHGRFAALNFPRPARLRERLIALLMHPIGRHVGRASPLANPIATRCARPKRRTRWRRAGACPESVERTHDLRIRRHRRMDGRLTGGRGGHRVAAMPQTLYIIDGHAHIYAAYFAPMRQQLTSPSGEPTKATYIFTTAVLGLIEKYRPDMLVVAMDSKGPTFRSAMFADYKAHRPPMPEDMPVQIERIEQVLDALRIPILRVDGFEADDIIGTLARRATADAIDVRICSKDKDLLQLIDARVCTFDLKTGRVTDAEAMEREMGIGPGQVVDCLALEGDAADNVPGVPLIGPKTARELIRTYGDLDNLYAHIDEIPGKRGENLRTSKDLAYLSRKLVTLDCNVPIEIDYETLKLESPDRDKLSALFTELGFSRLLTQFGFKQEGPAAAESHVVTPAQSPSGEPASARTTPHEYTLVDTPEAFARFVSELKQQGGFAVDTETTSVDPMRADLVGLSFCWEPQRAFYLPVRVPLGATHLDVATVRRELGPILADEGVRKVGQNIKYDWLVLHNAGMPLRGVHFDTMVASYCLDPGRSSHSMDNMARDYLGYECVPIVALIGKGRNQLTFDLVDTAAACEYAAEDADVTWRLYLHLQERLAAEPGLARLFAEVEMPLVPVLATMELHGVSLDTALLRRMSGELSEALEFLSERIYAEAGTVFNIDSPKQLGEVLFDRLGLASGRVGKTGRSTDASVLEQLSAEHPVAALVLEHRTLSKLKNTYTDKLAAMIHPRTGRLHASFNQTVTATGRLSSSDPNLQNIPIRTELGRKIRAAFVPQSPTDCILSADYSQIELRLLAEFSRDEALRAAFAADQDIHRFVASQVYGVPLEAVTSEMRSRSKAVSFGLIYGQGAFGLSRATGMSAADARQFIEDYFARYGSVRAFLDSCVEKARRTGYAETVLGRRRRILDIKSHNAGRRAQAERLAVNTVIQGSAADLIKMAMLAIQKKIDAESLPVRMLLQVHDELVFELPAAEAETHAAWIAEKMTTALPLEVPLRVDVAHGPSWLSDK*