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13_1_40cm_scaffold_12_27

Organism: 13_1_40CM_Acidobacteria_65_14

near complete RP 47 / 55 MC: 2 BSCG 42 / 51 ASCG 12 / 38
Location: 30263..33169

Top 3 Functional Annotations

Value Algorithm Source
family 2 glycosyl transferase Tax=RIFCSPLOWO2_02_FULL_Acidobacteria_67_21_curated similarity UNIPROT
DB: UniProtKB
  • Identity: 58.5
  • Coverage: 911.0
  • Bit_score: 1040
  • Evalue 0.0
Putative Glycosyl transferase, family 2 id=2882460 bin=GWF2_OP3_43_52 species=mine drainage metagenome genus=unknown taxon_order=unknown taxon_class=unknown phylum=unknown tax=GWF2_OP3_43_52 organism_group=OP3 (Omnitrophica) organism_desc=Same as C2_44_8 similarity UNIREF
DB: UNIREF100
  • Identity: 43.5
  • Coverage: 377.0
  • Bit_score: 321
  • Evalue 2.40e-84
family 2 glycosyl transferase similarity KEGG
DB: KEGG
  • Identity: 41.7
  • Coverage: 384.0
  • Bit_score: 275
  • Evalue 7.30e-71

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Taxonomy

R_Acidobacteria_67_21 → Acidobacteria → Bacteria

Sequences

DNA sequence
Length: 2907
ATGCGTGTTCTCGCGTCACGCACGATCACGATCGCGGTCAGTGTGCTCGTCATGCTGACGACTGCCGCCGCGCCTGGCAAATGGACGCGCGGCACGGCCACCGCCATGTCGAGCGCGACGAGAGCGGCCGAGCCTCCGCGGGCCTTCGTCGACACGACGTTTCCGACGCTTGGGCGGCACACGATTCACGTGCCCGCCGGTGGCGACCTGCAACGGGCGCTCGACCAAGCGCGGGGCGGCGACCTGATCACGCTGGAGGCACGCGCCGTGTATCGCGGCCCGTTTCATTTGCCGGCGAAAGAAGGGACCGGCTGGATCGTCGTCTCTGCGCCGCTGCCGGGCCTCCCGGCACAGGGACGCCGGATCGACCCGTCGTACGCGTCGGTCATGCCGAAGCTCGTCGCCTCGTCCGGCGCCGTGCTCGCCGCCGACCGCCGCGCCCATCATTATCGCTTCGTCGGTCTGGACATCGCCCCGGCAGACGGCGTCTTCCTCCACGCGCTCGTGCAACTCGGGCACGACGACGTCGGCGTGGAGACGCTGCCGCACCATCTCATCTTCGACCGCTGCTACCTGCACGGGGACGCGACGCGCGGCGGCCGTCGGGGCATCGCGATGAACTCGCGGCAGACGGCTGTCATCGACTCGTACCTGTCGGACTTCAAGGAACGCGGCGCCGACTCGCAAGCGATCGCCGGCTGGAACGGCGACGGCCCGTTCAAGATCGCCAACAGCTACCTCGAAGCTGCCGGCGAGAACATCATGTTCGGCGGCGCCGATCCCACCATTCGCGATCTCGTGCCCGCCGACATCGAGATCCGCCAGAATCACCTGGCGAAACCGATGTCGTGGAAGATCGGTCACGAGGCGTTCGCCGGCGCCGAATGGACCATCAAGAACCTGTTCGAGCTCAAGAACGCCCGGCGCGTGCTCGTTGACGGTAACCTGTTCGAGTACAACTGGCCGCAGGCCCAGAACGGCTTTGCCATCCTCTTCACGGTGCGCAATCAGGATGGTCGCGCGCCCTGGTCGACCGTCCAGGACGTCGTCTTCGCGAACAACGTCGTCCGGCACGTCGCGGCGGGCGTCAACATGCTCGGCCGCGACGACAACTACCCGAGCCAACGGCTCGAGCGTCTCGAAATCCGGAACAACCTGTTCCTCGACGTCGGTGGATCCTGGGGCAGCGGGCGGCTCTTCCAGCTCCTGGACGGCACGAGCGACGTGCTGATCGATCACAACACGGCGCTTCAAACCGGTGGGCTGCTATCTGGCGGCGATCATGCGCCGCACACCGGGTTCAGGTTCGAGAACAACATCACGCTTCACAATCGCCACGGCATCGCCGGCAGCGGCACCAGCGCCGGCCTTCCTGCGCTGGACCGCTACTTTCCCGCGTCGGTCGTGCGCCGCAACGTCATCGTCGGAGGCAGCGCGTCCGAGTATCCGCGCGACAACTTCTTCCCACCCGCGCTCGACGATGTCGGTTTCGCGTCGCATCGAGACGGGCGCTTCCGTCTGACACGGCACAGTCCGTTTTCGCGCGCCGCGACCGACGGCCGCGATCCGGGCGCCGACATCGACGCGCCCGGTCCGGCCGCCAGCAGTCTCGCGCTGCTCGGCGCTCGAGACGACACGGCGCGAACGCCCGGGGCCGTGCTCCCCGCCGGAGGTGCCGCACCCGAGATCGGAGTGGTCCTCTTCTGGCTGGCATTTGCGCTCTTGGGTTACGTGTATCTGGGGTATCCGCTCGTCGCGGCGTTGACTGCGCTCGTTCAGTCCAAGCCGCACCATCGAGCGCCGATCGAGCCGACCGTGTCGGTGATTGTGCTCGCATACAACGAAGGCGAGCGTCTCGCGGCACGAATCGAAAACCTGCTCGCGCTCGACTACCCGCGGGATCGTCTCGAGATTGTCGTCGGCTCCGATGGATCGACCGACGATACGGTCGCATGCGCGCGCCAATACGCGCAGCGGGGCGTGAATGTGCGGCCGTTCCCGGTGCGCCGTGGTAAGCCGGCCGTGATCAACGAGCTGGTGCCGAGCGCGCGAGGGGAGATCGTCGTCTTCGCCGACGCCCGACAACGCTTCGATCGCGGCGCGGTGCGGGCGCTCGTGGCCAATTTCGCCGACCGGCGCGTGGGGGCCGTGAGCGGCGAGCTGATGCTGAGAGCGCACCACGACGCGGCCGCGGCTGGACACGGCACCGCCTTCTACTGGCGGTACGAGAAGCTGATCCGATTGACGGAGAGCCGCGTCGATTCGACGGTGGGTGCAACCGGGGCGATCTACGCCATTCGCCGCGAGCTCTTCGAACCGGTTCCAGCCGACACGATTCTGGATGACGTGCTCATTCCGCTGAGAATCGTCCGCCGCGGGTATCGGGTGGTCTTCGAGCCCGAGGCGCGGGCCTACGATCACACGTCGACAACGGCGGGTCAGGAGCTGGCGCGACGGGCGCGAACCATCGCCGGGACGTTCCAACTGTTTGCACGCGAGCGGTGGCTCCACAATCCGCTGCGCAATCGTTTGTGGCTGCAAACGATTTCTCACAAGGGACTGCGGCTCATGCTGCCCGCGCTGCACGTGCTGTTCTTCGCAGCGAACGTCGCGCTGGTCCAACTCGCGCCGTATTGCTGGATGCTGGCGGCGCAATCGGCGTTCTACGCCGCCGCGCTCGTGGGGTGTGGCCGACGCCCGGCGCAACGGCATCTGAGAATCGTCAGCGTCCCCCACACGATTTGTCTTCTAAGCTGGGCCACCATCATCGGATTCGCGAGGATGGTGACCCAGACTCAGCCCGTGACGTGGGAGCGCGCGTGCGGACTCGCGCCGGCGGCTCCGCTGAATCAGCCCCGCGGCTTCGCCTTGCCGATGGATGGCAACGACGGCGGCCGCGCGAACTGA
PROTEIN sequence
Length: 969
MRVLASRTITIAVSVLVMLTTAAAPGKWTRGTATAMSSATRAAEPPRAFVDTTFPTLGRHTIHVPAGGDLQRALDQARGGDLITLEARAVYRGPFHLPAKEGTGWIVVSAPLPGLPAQGRRIDPSYASVMPKLVASSGAVLAADRRAHHYRFVGLDIAPADGVFLHALVQLGHDDVGVETLPHHLIFDRCYLHGDATRGGRRGIAMNSRQTAVIDSYLSDFKERGADSQAIAGWNGDGPFKIANSYLEAAGENIMFGGADPTIRDLVPADIEIRQNHLAKPMSWKIGHEAFAGAEWTIKNLFELKNARRVLVDGNLFEYNWPQAQNGFAILFTVRNQDGRAPWSTVQDVVFANNVVRHVAAGVNMLGRDDNYPSQRLERLEIRNNLFLDVGGSWGSGRLFQLLDGTSDVLIDHNTALQTGGLLSGGDHAPHTGFRFENNITLHNRHGIAGSGTSAGLPALDRYFPASVVRRNVIVGGSASEYPRDNFFPPALDDVGFASHRDGRFRLTRHSPFSRAATDGRDPGADIDAPGPAASSLALLGARDDTARTPGAVLPAGGAAPEIGVVLFWLAFALLGYVYLGYPLVAALTALVQSKPHHRAPIEPTVSVIVLAYNEGERLAARIENLLALDYPRDRLEIVVGSDGSTDDTVACARQYAQRGVNVRPFPVRRGKPAVINELVPSARGEIVVFADARQRFDRGAVRALVANFADRRVGAVSGELMLRAHHDAAAAGHGTAFYWRYEKLIRLTESRVDSTVGATGAIYAIRRELFEPVPADTILDDVLIPLRIVRRGYRVVFEPEARAYDHTSTTAGQELARRARTIAGTFQLFARERWLHNPLRNRLWLQTISHKGLRLMLPALHVLFFAANVALVQLAPYCWMLAAQSAFYAAALVGCGRRPAQRHLRIVSVPHTICLLSWATIIGFARMVTQTQPVTWERACGLAPAAPLNQPRGFALPMDGNDGGRAN*