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PLM1_30_b1_sep16_scaffold_732_10

Organism: PLM1_30_b1_sep16_Actinobacteridae_Actinomycetales_73_13

near complete RP 48 / 55 MC: 6 BSCG 48 / 51 MC: 3 ASCG 13 / 38 MC: 1
Location: comp(7033..10932)

Top 3 Functional Annotations

Value Algorithm Source
ribonucleoside diphosphate reductase, B12-dependent (EC:1.17.4.1) similarity KEGG
DB: KEGG
  • Identity: 57.3
  • Coverage: 1026.0
  • Bit_score: 1081
  • Evalue 0.0
hypothetical protein Tax=Actinomadura atramentaria RepID=UPI000366CE77 similarity UNIREF
DB: UNIREF100
  • Identity: 56.9
  • Coverage: 1331.0
  • Bit_score: 1438
  • Evalue 0.0
Tax=RIFCSPHIGHO2_02_FULL_WOR_2_63_39_curated similarity UNIPROT
DB: UniProtKB
  • Identity: 55.4
  • Coverage: 1304.0
  • Bit_score: 1377
  • Evalue 0.0

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Taxonomy

R_WOR_2_63_39 → WOR-2 → Bacteria

Sequences

DNA sequence
Length: 3900
GTGGCCAAGACCCGGGATGCCCTGTCCGTCGAGCACGGCCCCGCCCGCCGGGGCCTACAGGTGCGCCGCCTGTTCACGAACAAGGGAACCCACCCCTACGACGAGCTGACCTGGGAGCGCAGGGACGCCGTCATCACCAACTGGCGCGATGGCACCACCGCCTTCGAGCAGCGCGACCTCGAGTTCCCCGTCAGCTGGTCGCAGAACGCCACCAACATCGTGGCCCAGAAGTACTTCCGCGGTCCCCTCGGTACCCCGCAGCGCGAGCACTCGGTACGCCAGATGGTGGACAGGGTCGCCGGTACCATCACGCGCTGGGGCGGCGAGGACGGCTACTTCGCCACCGACTCCGACGCCGAGTCCTTCCAGGCCGAGCTGACCCACCTGCTGGTCAACCAGAAGGCCGCCTTCAACTCGCCGGTCTGGTTCAACGTCGGGGTCGAGCCCGAGCCGCAGTGCTCGGCCTGTCAGCCGTACGACGCGCTGGTCAGCACCCCGACCGGCATGGTCCCGATCGGCGAGCTGGTCGAGCGTCGGGCGATCGGGACGGTCGTCTACGACGCCCACGGCGAAACCCGGGTGCGGGCGGTCAAGGCCAACGGCGACAAGCGGGTGTACCGGGTGCTCCTGCGCAACGGCTCGTTCGTCGAGGCCACCGCCGACCACCTGGTATACGCCGTGTCCGAGCGGCGGTCCGTCGGCGCGTGGCTGCGGGTCGACCAGCTCCGTCCGGGCATGCGCCTGCACCTGTACCCGCACCGCGGCTCCGCCGACGACCTGGTCGGCCCCCTTGCCACTGTCGAGCGGCGGGCCGAGGCTGGTGGCGGGACGGCGACCCTGGTCCGCACCGAGCCGGTCACCAGGGAGGCGTCCGAGGCCGCGCTCGCCGGTTGGCTGCAGGCGGACGGGTTCGTTGGCCAGTACGAGACCGGGACCAACACCTCCCTGACGATCGAGTTCCAGACCGTGACCGACGAGGAGTACGACTGGGTGCAGCGGCACCTACAAGTCGTCTTCCCCGACGTCCACCAGCACGTCAGGACGTTCGAGACCGCCGCCGCCACGCTCACCGGCCGCCGCATCCGACTCTACGGCGAGGTCCTGCGTCCGTTCGTGGAGTCCTGGGGCCTGCTGGCTCGGCGGCACGAGCTGCGGGTGCCGGCCAGGCTCTGGAACGCCCCCAACGAGGCCGTCGCCGCCTATCTCCGCAGCCTCTTCCAGGCCGACGGCTACGTCACCGTGCAGGGCGGCAGCGGGCGCGTGGCCTTCGCTGTCATCAGCGAGCGCTGGACCGAGGACATCCAGCTGCTGCTGCTGCGGCTCGGCATCTACTCGCGTCGGCTCCGCAAGGCCGATCCCCGTCCCGACCGTTCCGACCTCTTCGAGGTGCAGATCAGCATGCGCTCGGAGCGGTCGGCGTTCCGTTCCAAGGTCGGCTTCCTGTCGGCCGGCAAGGCGACCACCCTGGACGCCTCGCTGGAGCTGGACGGCAAGGCCTGCCCGTCGCTGCGTGAGGAGGAGATCGTCGCCATCGAGGACCGCGGCATGCAGCCCGTCTTCGACATCCAGACCGACAGCGGCGAGTACCTCTCCAACAATGTCCGCATTCACAACTGCTTCATCCTGTCGGTCGAGGACACCATGCCGTCGATCCTCAACTGCAACCTGTCGACCATCCGCTCGTCCAGGGAGCAGTTGGGCAACGGCGGCGAGGCCTCGGGCCCGGTGTCGTTCATGCGCGGGGCCGACCCCTCGGCCGGGACCATCAAGTCGGGCGGCAAGACCCGGCGGGCGGCCAAGATGGTCGTGCTCAACGTCGACCACCCCGACGTGCGCGACTTCATCTGGTGCAAGGCCCGCGAGGAGCACAAGGCGCGGGTGCTGCGTGACGCCGGGTTCGACATGGACCTGGACGGCCGCGACTCGATCAGCATCCAGTACCAGAACGCCAACAACTCGGTCCGGGTCAACGACGACTTCATGCGGGCCTATGAGGACGACGCCACCTTCGACCTCAAGACCGTGCTCGACGGGCGGGCGATGGAGACGCTCCGGGCCCGCGACCTGATGCGCGAGATCGCCCAGGCGGCCTGGGAGTGCGCCGACCCGGGCATGCAGTACGACACCACCATCAACGACTGGCACACCACGCCCGAGTCGGGCCGCATCAACGCCTCCAACCCGTGCTCGGAGTACATGCACCTGGACAACTCGGCCTGCAACCTGGCCAGCCTGAACCTGCTCAGGTTCCTCGGCAGCGACGGCCACTTCGACGTGGCGGCGTTCCGGCACGCGGTCGAGATCGTGTTCCTGGCCCAGGAGATCATCGTCGGGAACTCCTCCTACCCGACCGAGAAGATCACCCAGAACGCCAGGGACTTCCGGCAGCTCGGGCTCGGCTACGCCAACCTGGGGGCGCTGCTGATGGCGCTCGGCAAGGCGTACGACTCCGACGGCGGACGGGCCTGGGCCGGGTCGATCACCGCCCTCATGACCGGGCACGCCTACCGGACCAGCGCCCGGATCGCGCAGGTGACCGGGCCGTTCGCCGGCTACCCGAAGAACCGCGAGCCGATGCTGCGGGTGATGGGCAAGCACCGCGCGGCCGTCGACGAGATCGACGAAGCGCTGGTCCAGACGGACCTGTTCGAGGCCGCCCGCACCGCCTGGGACGAGGCCATCGAGCTGGGCACCGAGCACGGCTACCGCAACGCCCAGGCCAGCGTGCTCGCCCCGACCGGGACCATCGGCCTGCTGATGGACTGCGACACCACCGGGATCGAGCCCGACCTGGCCCTGGTCAAGACCAAGAAGCTGGTCGGCGGCGGGTCGATGTCGATCGTCAACCAGACGGTGCCGCGAGCGCTGCGGACCCTCGGCTACGCCGACGAGCACGTGCAGGCGATCACCGAGTACGTGGCCGAGAACAACTCGGTCAAGGGCGCGCCGGCGCTGCGGGCCGAGCACTACGACGTGTTCGACTGCGCCATGGGCGACGCGCCGATCCACTACATGGGCCACATCCGCATGATGGCCGCGGCCCAGCCGTTCCTCAGCGGGGCCATCTCCAAGACGGTGAACATGCCCGAGCACGTCACCGTCGAGGACGTGGAGCACGCCTACGTCGAAGGCTGGAAGCTCGGCCTCAAGGCGCTGGCCATCTACCGCGACAACTGCAAGGTCGGCCAGCCGCTGTCCGCCGACAAGAAGATCACCACCGACACCGGCGCGGTCATCGAGGTCGCCCAGGCGCCGGTGCGCAAGCGCCTCCCCAAGCAGCGTCCGTCCCGCACGACCTCGTTCCGGGTCGGGGACATCGAGGGGTACCTGACCGCCGGCTCCTACCCCGACGACGGGCTGGGCGAGATCTTCGTCAATGTCTCCAAGCAGGGCTCGACCCTGTCGGGCGTGATGGACGCCTTCTCCATCGCCGTCAGCGTCGGCCTGCAGTACGGGGTGCCGCTGGAGGCGCTGGTGTCCAAGTTCACCAACATGATCTTCGAGCCCAACGGCATGACCGACGACCCGGACATCCGCATCGCCCAGAGCCTGGTCGACTACCTGGCCCGCCGGCTGGCCATCGACTACCTGGACGTCGAGACCCGCCACGCGCTCGGGATCAAGACGACCGCCGAGCGCACCGCCGAAGTCAACGGCACCGCCGAGCCCGTCCTGGCCGAGCCCGCCGACGACCCGGCGCCCGCCCCGGCCCAGGTCGAGCCCCAGCAGCGCCCGGCCACCACGGCCGCCGCCCCGGCGCCTGCCTCCCAGGCCCCGGCGTTCACTCCGGGCATGTCCGCGGTCGACGCCCCCTACTGCTCGACCTGCGGGGTCCGTATGCGACCGGCCGGTTCCTGCTTCGTCTGCGAGTCCTGCGGCACAACCAGCGGGTGCAGCTGA
PROTEIN sequence
Length: 1300
VAKTRDALSVEHGPARRGLQVRRLFTNKGTHPYDELTWERRDAVITNWRDGTTAFEQRDLEFPVSWSQNATNIVAQKYFRGPLGTPQREHSVRQMVDRVAGTITRWGGEDGYFATDSDAESFQAELTHLLVNQKAAFNSPVWFNVGVEPEPQCSACQPYDALVSTPTGMVPIGELVERRAIGTVVYDAHGETRVRAVKANGDKRVYRVLLRNGSFVEATADHLVYAVSERRSVGAWLRVDQLRPGMRLHLYPHRGSADDLVGPLATVERRAEAGGGTATLVRTEPVTREASEAALAGWLQADGFVGQYETGTNTSLTIEFQTVTDEEYDWVQRHLQVVFPDVHQHVRTFETAAATLTGRRIRLYGEVLRPFVESWGLLARRHELRVPARLWNAPNEAVAAYLRSLFQADGYVTVQGGSGRVAFAVISERWTEDIQLLLLRLGIYSRRLRKADPRPDRSDLFEVQISMRSERSAFRSKVGFLSAGKATTLDASLELDGKACPSLREEEIVAIEDRGMQPVFDIQTDSGEYLSNNVRIHNCFILSVEDTMPSILNCNLSTIRSSREQLGNGGEASGPVSFMRGADPSAGTIKSGGKTRRAAKMVVLNVDHPDVRDFIWCKAREEHKARVLRDAGFDMDLDGRDSISIQYQNANNSVRVNDDFMRAYEDDATFDLKTVLDGRAMETLRARDLMREIAQAAWECADPGMQYDTTINDWHTTPESGRINASNPCSEYMHLDNSACNLASLNLLRFLGSDGHFDVAAFRHAVEIVFLAQEIIVGNSSYPTEKITQNARDFRQLGLGYANLGALLMALGKAYDSDGGRAWAGSITALMTGHAYRTSARIAQVTGPFAGYPKNREPMLRVMGKHRAAVDEIDEALVQTDLFEAARTAWDEAIELGTEHGYRNAQASVLAPTGTIGLLMDCDTTGIEPDLALVKTKKLVGGGSMSIVNQTVPRALRTLGYADEHVQAITEYVAENNSVKGAPALRAEHYDVFDCAMGDAPIHYMGHIRMMAAAQPFLSGAISKTVNMPEHVTVEDVEHAYVEGWKLGLKALAIYRDNCKVGQPLSADKKITTDTGAVIEVAQAPVRKRLPKQRPSRTTSFRVGDIEGYLTAGSYPDDGLGEIFVNVSKQGSTLSGVMDAFSIAVSVGLQYGVPLEALVSKFTNMIFEPNGMTDDPDIRIAQSLVDYLARRLAIDYLDVETRHALGIKTTAERTAEVNGTAEPVLAEPADDPAPAPAQVEPQQRPATTAAAPAPASQAPAFTPGMSAVDAPYCSTCGVRMRPAGSCFVCESCGTTSGCS*