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PLM4_65_b1_redo_sep16_scaffold_6795_15

Organism: PLM4_65_b1_sep16_Acidobacteria_68_8

near complete RP 42 / 55 BSCG 44 / 51 ASCG 12 / 38 MC: 1
Location: comp(10528..13302)

Top 3 Functional Annotations

Value Algorithm Source
Predicted metal-dependent amidohydrolase with the TIM-barrel fold bin=GWA2_Ignavibacteria_55_11 species=Idiomarina loihiensis genus=Idiomarina taxon_order=Alteromonadales taxon_class=Gammaproteobacteria phylum=Proteobacteria tax=GWA2_Ignavibacteria_55_11 organism_group=Ignavibacteria organism_desc=Closely related to GWC2 genome similarity UNIREF
DB: UNIREF100
  • Identity: 30.1
  • Coverage: 432.0
  • Bit_score: 174
  • Evalue 4.50e-40
putative metal-dependent hydrolase similarity KEGG
DB: KEGG
  • Identity: 26.8
  • Coverage: 422.0
  • Bit_score: 124
  • Evalue 1.20e-25
Tax=CG_Anaero_04 similarity UNIPROT
DB: UniProtKB
  • Identity: 42.9
  • Coverage: 422.0
  • Bit_score: 330
  • Evalue 4.10e-87

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Taxonomy

CG_Anaero_04 → Anaerolineales → Anaerolineae → Chloroflexi → Bacteria

Sequences

DNA sequence
Length: 2775
ATGCGACCTGGACTCACCATTTTGCTCGCAATGACGCTGATCTCCGCCACGGCCGGCGCAGCCAGGCCGCAACACCCGGCGGCGGACACCATCTACTTCAACGGTTCGGTCGAGGTGCTCGACGCAGCGTTCACTCGCGCGCATGCCCTGGCGGTCAGGAACGGCCGAATTCTCGCCGTGGGCCACGCCTGGCAGGTCTTTCGCTACTCCGGAAGGCACACACGCTATGTGAATCTCCACGGGCGCGCGCTCCTGCCCGGATTCGTCGACTCCCACAGCCATCTGTTTAACGATGCCGATAATGTCGGCCTGACGCTCGCGGAGGCCCAGGCCCTCGGCCTGGAGAACGGAATCACCACCCTGGGCGATCTGTTCGTCACCCCAGCGCACCTCGCGGAGATGACGACCTTCCAGACGTCCGGAGAGCTGCGCATCCGGACGAGCCTCTATCTTGCCTACGCCGACAATTGCGGCAACATCTTGGGCACCTGGTATCTGGATCATCCTCCGGCGCGGGACCCGGGAGCGATGCTCCGCATCCCGGGAATCAAGATCACCACCGACGGCGGCACCTGTGGTCCGGTCGCGATCACCTTTCCGTGGTGGAGCCCGCCGCTCGTCCCGCCGTTCGGCAACCTCTGGTTCGACCAACCCACTCTGGACGCGGCAGTGGCTGAGGCCGACGCCGCCGGCTACCAGGTCGCCATCCATGCCATGGGAGATCGGGCGCGTGACGTCGCCATGACGGCGATCGGCAACGCCCTGGGTCCGACGCCAAACGTCCTGCGCCACCGGATCGAGCACGATCTATTCATGCGGCCCGACCAGATCGAGTACTACGCCCACACAGGGATCGTGCCGACGTTGTTGACCTCGCAGACCTGCAATCAGAATCTCAATCCGCTCGAGGCGCACTTCCCTGAGTATGTCCAACCCTGGTTCCGGCCGCTGCCGGACATGCTGGCCGCGGGGCTCCCGGTTGCCTGGGCCTCCGACTGGCCGTACCGGCCGATCGACACCCTGCGGTTCCATCTCTACAACCTGGTCACCCGCAAGCAGGTCGACGAAGACGGCGTCACCGTGTGCGAGCCGAGCGCCTTCTATGCCGCCGGGCGAGTCACGACGAAGCAGGCGCTGCGCATGATGACGCTCCGCGGGGCCTATGCGCTGCACATGGAGCGCGTCGTCGGCAGTCTCGAGCCCGGAAAGTTCGCCGACCTCATCGTGCTCTCGGAGGACCCCTTAGCCGTCGGACCCGATGCGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNGTTCTGCGCTCCCGGCGCGGAGGAGCTGTGCGAAGAGTGAGGAGCTGTTGCAGGGGCGAGTGGCTCGAGGGCTCCGAGGAGAACGACATGCTGAAAGTACCATTGCGATGGGCAAGGCTTCTACCAGGGCTCCTGCTGACACTGGGAACTGGTGGCGCTGCTTGCGCCGCAGACGGCGACCTCGATCCCAGCTTCTGGGGCGACGGAAAGGTCACCGTGGGCGGCGTCGACGAATACTGGGCTGCCGATGATCTCGAAGTCGCGCCCAACGGCCGCCTGGTCCATGCCGGCCTGGTAGGGGGCACGACGAGTCTCTTCTGGCAAGAGCTCAACGACGGTCCGTTGGGGCCAGTGGCCTGCGTTTTCCAGCCGCCCGGAGGAGCCAGCGGTGTTTACGACGCCGAGATCGATTTCGATGCCCAGGGCCGGCTGGTGCTCGCGGGTGCCGTCAGCTACGCTGGGCTCGGCATCCTTCCCGTGATCGCGCGCTTCCTCTATCCGGACTGCACGCTCGACACGAGCTTCGACGGCGACGGCTACGCCACCTACGACCTCTTCACCGGCGACGACTTCACCCTGATTAGGGCCTTCACGATCGACAGCGACGGCAAGTATGTGCTCGGCGGGGAACACGGCTCGGACCTGCAGCCACCGGGGGACTGGTTCCTGATGCGTGTCCTCGGGACCACCGGCGCTCTCGACTCGAGCTTCTCGACGAACGGCTGGCTGGTCGACGACTTCGGCGGCACCGCCCCCTCTTCCGAAGTCTGGGACCTCCTGACACTGGTCAACCTCCTCGGCCCGGACCCGATCGTCGCGGTCGGTACAGCCCAGCAGGGTAACGGATATAGAGCCGCGCTCGTCAAGCTCACCGGGAGCGGCGGCTTCGACCCTATTTTCGGCGGCGGCGACGGCATCATTCTGACGTTGTTCGATGCCGCCGGCGCGAAGGGCCGAGCCGTCGCCCGCGATCCCGTGGGCGGTCGCCTCTATGTCGCGGGCGTCTCGGCGGGTCCGGGCCAGACCCTCGGCGGCGGCATCCGGTCGTTTACCTCCACTGGCGAGTATGACGCCGGGTTCGGGCTCGTCCTGCTCTCGGATGCAGACCCGTTCGTCCACCCCGAGCGCCTCCTGGTCGATTCCCTGGGCCGGCTGGTGACCGCGGGATACGCGGCATACATCGAATCGGGTCAGGAGGATTTCTACGTCGCGCGCCACTGGCCATCAGGCCTGCCTGACACGACGTTCGGCGACAACGGCGTGGTGATCGTCCCCTTCGATCTCGGCACAACGGGCTTCGAACACGACCAAGCCACCGCAGTCGTGTTGCAGAGCGGCCGCATCGCGCTCGCGGGCTGGGTGGAGGTGGATGACAGCTCGGCCAAGGCGGCCGTGGTGCGGCTCGACGTCGCCTTGATTTTCGCCGACGGCTACGAGCGCGGGAATACCGGCGCCTGGTCGTCGACCACGCTCTGA
PROTEIN sequence
Length: 925
MRPGLTILLAMTLISATAGAARPQHPAADTIYFNGSVEVLDAAFTRAHALAVRNGRILAVGHAWQVFRYSGRHTRYVNLHGRALLPGFVDSHSHLFNDADNVGLTLAEAQALGLENGITTLGDLFVTPAHLAEMTTFQTSGELRIRTSLYLAYADNCGNILGTWYLDHPPARDPGAMLRIPGIKITTDGGTCGPVAITFPWWSPPLVPPFGNLWFDQPTLDAAVAEADAAGYQVAIHAMGDRARDVAMTAIGNALGPTPNVLRHRIEHDLFMRPDQIEYYAHTGIVPTLLTSQTCNQNLNPLEAHFPEYVQPWFRPLPDMLAAGLPVAWASDWPYRPIDTLRFHLYNLVTRKQVDEDGVTVCEPSAFYAAGRVTTKQALRMMTLRGAYALHMERVVGSLEPGKFADLIVLSEDPLAVGPDAXXXXXXXXXXXXVLRSRRGGAVRRVRSCCRGEWLEGSEENDMLKVPLRWARLLPGLLLTLGTGGAACAADGDLDPSFWGDGKVTVGGVDEYWAADDLEVAPNGRLVHAGLVGGTTSLFWQELNDGPLGPVACVFQPPGGASGVYDAEIDFDAQGRLVLAGAVSYAGLGILPVIARFLYPDCTLDTSFDGDGYATYDLFTGDDFTLIRAFTIDSDGKYVLGGEHGSDLQPPGDWFLMRVLGTTGALDSSFSTNGWLVDDFGGTAPSSEVWDLLTLVNLLGPDPIVAVGTAQQGNGYRAALVKLTGSGGFDPIFGGGDGIILTLFDAAGAKGRAVARDPVGGRLYVAGVSAGPGQTLGGGIRSFTSTGEYDAGFGLVLLSDADPFVHPERLLVDSLGRLVTAGYAAYIESGQEDFYVARHWPSGLPDTTFGDNGVVIVPFDLGTTGFEHDQATAVVLQSGRIALAGWVEVDDSSAKAAVVRLDVALIFADGYERGNTGAWSSTTL*