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gwc1_scaffold_60_6

Organism: GWC1_OD1_45_14

near complete RP 43 / 55 MC: 2 BSCG 44 / 51 ASCG 11 / 38
Location: comp(4750..8292)

Top 3 Functional Annotations

Value Algorithm Source
DNA polymerase III DnaE, DNA polymerase III subunit alpha {ECO:0000313|EMBL:KKT95442.1}; EC=2.7.7.7 {ECO:0000313|EMBL:KKT95442.1};; TaxID=1618915 species="Bacteria; Parcubacteria.;" source="Parcubacte UNIPROT
DB: UniProtKB
  • Identity: 100.0
  • Coverage: 999.99
  • Bit_score: 2354
  • Evalue 0.0
DNA polymerase III catalytic subunit, DnaE type (EC:2.7.7.7) KEGG
DB: KEGG
  • Identity: 49.2
  • Coverage: 999.99
  • Bit_score: 1027
  • Evalue 0.0
pth:PTH_2220 dnaE; DNA polymerase III DnaE (EC:2.7.7.7); K02337 DNA polymerase III subunit alpha [EC:2.7.7.7] alias=ACD11_C00007G00034,ACD11_4234.67825.30G0034,ACD11_4234.67825.30_34 id=2860 tax=ACD11 species=Pelotomaculum thermopropionicum genus=Pelotomaculum taxon_order=Clostridiales taxon_class=Clostridia phylum=Firmicutes organism_group=OD1-i organism_desc=OD1-i similarity UNIREF
DB: UNIREF90
  • Identity: 85.9
  • Coverage: null
  • Bit_score: 2050
  • Evalue 0.0

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Taxonomy

GWC1_OD1_45_14 → Parcubacteria → Bacteria

Sequences

DNA sequence
Length: 3543
ATGAATACTCCCAAATATACCCACTTACACGTACATAGTCATTACTCGCTGTTAGACGGCCTCGGGAAAATTCCCGACCTCATGGACCGCGCCAAAGAACTCGGGATGGATTCGATAGCGCTGACAGACCACGGCGTGCTTTACGGAGCAATCGACCTTTTCATCACGGCCAAGGAAAAAGGAATCAAGCCGATTTTGGGTTGCGAGATGTATGTGACGCCGAACGATCTGCATTCGAAGAATCCGACCGCCGAAGACAGGAAAAGATACCACCTCATCCTGCTGGTGAAAAATGAAAAGGGTTACAAAAACCTGATGAAATTGGTTTCCATCGCGCATTTGGAAGGGTTTTATTACAAACCCAGAATCGACAGGAAGATTCTGCGCCAATATGGCGAAGGACTCGTGGGCCTTTCGGCCTGCGCGGAAGGAGAGATCCCTGCCCAAATAGTGATGGGAAACTACGACAAGGCCAAGGAGCTCGCTTTGGAATACATGGACATTTTCGACGAAGGGTCCTTCTTTTTGGAAGTACAGAGTCATCCCAACTTCCCAAACCAAAAGATAGCCAACGACGGGATATTCAAACTCTCCAAAGAACTCAACATTCCGGTCGTGGCGACCTGCGACGTGCATTACGTCAAAAAAGAAGATGCGACCGCTCAAGACATCCTTCTTTGCGTGCAAACCAACAGAAAGGTACAGGAAACAGACAGAATGAATCTTATGGACTTCGATCTTTCACTCCGATCCCCTGAGGAAGTCCTATCCAGTTTCCCGGACCACCCCGAGGTTCTGGAGAACACGCAGAAAGTCGTGGAGCTCTGCGATTTCCACCTCAAGCTCGGCGAAACCCAGCTCCCGCATTTTGAAGTTCCGGAAGGTTTCACCGATGTCACATACTTACGCCATCTCACCAAGGAAGGACTTGAGAAAAGATACAAAGGACAGCACACCAATGTGCACGAAGAAAGGATGGACTATGAACTTTCCGTTATTGAAAAATGCGGCTACTCCTCATACTTTTTGATCGTCCAGGATTTCGTCAATTGGGCTAAAGAAAACGGAATCGTCGTGGGTCCAGGCAGAGGAAGCGCGGCCGGAAGTTTCGTATCCTACCTAGTAGGAATCACCAACGTGGATCCCATACAATACGACCTTCTTTTCGAAAGATTCCTTAATCCGGAAAGAGTGTCCATGCCCGACGTCGATATGGATTTCGCCGACGACAGACGCGACGACGTCCTTGCATACGTAAGGAAGAAATATGGCGACGACCATGTGGCGCAAATCATAACTTTTGGAACGATGGCTGCGCGAGCCGCCATCCGCGACACAGGAAGAGCACTTGGACTTCCCTATGATTTTTGCGACAAGACCTCCAAGATGATCCCAATGTTCACCTCCATTAAAAAAGCCCTGGAGGAAGTACCTGAATTCAAAACGCATTATGAATCCGGAGAGGATGCAAAAAAACTCATCAACAACGCCATGCGACTCGAAGGAGTTTCGCGCCACGCCGGTATGCATGCCTGCGGAGTTGTGATTACGAAAGAACCGGTAACAGAATACACTCCCATCCAGAACATCACCGGGGCGCGCGAAGGGACGGTGACCCAATATTCATCTTCCACTAAAACTAGTTACGTGGAAAAGATCGGCCTTCTCAAGATGGACTTTTTGGGACTCAAAAACCTCACCATCATCCAAAACGCCATCCGCATCATCAAAAAAACCAAAGGAGTCGAAATAAACATCGACGAACTTCCGGTCGACGATGAGCTTGCTTACAAGCTTTTCCAGGACGGCAAAACGACCGGCGTGTTCCAATTCGAAAGCTCGGGGATGAAAAGATATCTCAAGCTTCTCAAGCCCACCGTCATCGAAGACATCATCGCCATGGTGGCTCTTTATCGTCCCGGACCGATGGATTGGATTCCGGACTTCATTTCCGGAAAGCATGGCACCAGGAAGGTCAGCTATGTCCACCCCAAGCTTGAACCGATCCTCAAAAACACCTATGGAGTAGCGGTCTACCAGGAACAGGTCATGCAGATCGCCAGGGCCTTGGCCGGTTTTTCCATGGGAGAAGCGGACGTGCTTCGAAAAGCCATGGGAAAGAAAATCCTCGACCTCATTCAGGAACAGAAAATAAAATTCGTGGAAGGTTGCGTCAAAAACGGAGTCAGCAAGGAAATCGGCGAAAAAGTATTCTCATTCATCGAACCGTTCGCCGGCTACGGTTTCAACCGTTCGCATGCGGCCTGCTACGCCCTCATCGGTTATCAGACGGCATATCTAAAAGCGCACTACCCCGAAGCTTTCATGGCTGCGCTCCTCACTTCCGACCAGGACAACATCGACCGCATCGCTATCGAAGTGGACGAAACGCGCGACATGGGAATCGAAGTCCTCCCTCCGGACGTCAATGAAAGTTTTGAAAACTTCGCGGTGATTTTAGGAGACGATGGCAAAAACAGGATCCGCTTCGGACTTAACGCCATCAAAAACGTCGGCCATGTCGTCGCAGAAGAGATCGTCAAAGAAAGGAAAGCGAACGGCAAATTCAAATCGCTGGCCGACCTTGTCGAACGCGTGCAAACCAAAGACCTCAACAAAAAATCCATTGAAGCCCTGGCGAAAGTCGGCGCGCTCGACGATCTTGGAGAAAGGAAACAGATTATCGAGAACATCGAGAATATCATAAGCTTTTCCAAAAATATCCAGAAAAATAAAGATTCAAACCAGGTGAGTCTTTTCGGCGCGGAAATCCTGGAGTCGCCGACTATACAAATGACGGAATGCGAACCTTCCACGAAAAAAGAAAGATTGAAATGGGAAAAAGAACTCCTGGGACTCTATGTGACAGACCACCCGGTCGCCGAATTCCAAGATTTCCTAGACGAAGCCGCTACTCCGATTGCCAGCCTCTCCAAGGAAATGGTCGGACAAAGAATCAAGGTCGGGGGCGTCATCCAGAAAGTCCAGAAAATTCTGACCAAGCGCCATGAAACCATGCTTTTCGTCACGCTCGAGGACACCAAGGGCAGGATTGAGCTTTTGGTTTTTCCAAGGGTATTGGAAAAGACCCAAAGCGCCTGGGAGGAAGAAAGGATGATAATCGCCGAAGGACGCCTCTCGGACAAGGACGGGTCCTTCAAACTCATTGCCGACGAAGCGAACGAGCTTAACCGCCACGAAGTCGACGAATTCATGCGCATCAGGCTGACACAAAAAACGTATCACCAGGAAAACAAGAACGATGACGACCAGACTCCTCCGCCAGCACCCTCGACGGATCAGCCATCTCAAAACCATACAGCTCCCACAGGAAGCCTTCTTATAAAACTTCCCCACAACGCCACGCCGGAAATCATCCATCGGCTAGGGAAATTTTTCAAGGACTGCAAAAGCGGTGACACCAAGGTCGTTCTCCATCACAATGAAACCAAGCTTCAGACTCCGTTCTCCATAGAACACACGGACGAAATCATCGAGGAGTTGAAATCCATCGTCCTGCATGGCAGCGTGGAACTTGCTTAG
PROTEIN sequence
Length: 1181
MNTPKYTHLHVHSHYSLLDGLGKIPDLMDRAKELGMDSIALTDHGVLYGAIDLFITAKEKGIKPILGCEMYVTPNDLHSKNPTAEDRKRYHLILLVKNEKGYKNLMKLVSIAHLEGFYYKPRIDRKILRQYGEGLVGLSACAEGEIPAQIVMGNYDKAKELALEYMDIFDEGSFFLEVQSHPNFPNQKIANDGIFKLSKELNIPVVATCDVHYVKKEDATAQDILLCVQTNRKVQETDRMNLMDFDLSLRSPEEVLSSFPDHPEVLENTQKVVELCDFHLKLGETQLPHFEVPEGFTDVTYLRHLTKEGLEKRYKGQHTNVHEERMDYELSVIEKCGYSSYFLIVQDFVNWAKENGIVVGPGRGSAAGSFVSYLVGITNVDPIQYDLLFERFLNPERVSMPDVDMDFADDRRDDVLAYVRKKYGDDHVAQIITFGTMAARAAIRDTGRALGLPYDFCDKTSKMIPMFTSIKKALEEVPEFKTHYESGEDAKKLINNAMRLEGVSRHAGMHACGVVITKEPVTEYTPIQNITGAREGTVTQYSSSTKTSYVEKIGLLKMDFLGLKNLTIIQNAIRIIKKTKGVEINIDELPVDDELAYKLFQDGKTTGVFQFESSGMKRYLKLLKPTVIEDIIAMVALYRPGPMDWIPDFISGKHGTRKVSYVHPKLEPILKNTYGVAVYQEQVMQIARALAGFSMGEADVLRKAMGKKILDLIQEQKIKFVEGCVKNGVSKEIGEKVFSFIEPFAGYGFNRSHAACYALIGYQTAYLKAHYPEAFMAALLTSDQDNIDRIAIEVDETRDMGIEVLPPDVNESFENFAVILGDDGKNRIRFGLNAIKNVGHVVAEEIVKERKANGKFKSLADLVERVQTKDLNKKSIEALAKVGALDDLGERKQIIENIENIISFSKNIQKNKDSNQVSLFGAEILESPTIQMTECEPSTKKERLKWEKELLGLYVTDHPVAEFQDFLDEAATPIASLSKEMVGQRIKVGGVIQKVQKILTKRHETMLFVTLEDTKGRIELLVFPRVLEKTQSAWEEERMIIAEGRLSDKDGSFKLIADEANELNRHEVDEFMRIRLTQKTYHQENKNDDDQTPPPAPSTDQPSQNHTAPTGSLLIKLPHNATPEIIHRLGKFFKDCKSGDTKVVLHHNETKLQTPFSIEHTDEIIEELKSIVLHGSVELA*