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SCN18_30_10_14_R2_B_scaffold_4133_4

Organism: SCN18_30_10_14_R2_B_Bacteria_71_11

near complete RP 46 / 55 MC: 7 BSCG 45 / 51 MC: 4 ASCG 12 / 38 MC: 1
Location: comp(5776..9375)

Top 3 Functional Annotations

Value Algorithm Source
hypothetical protein n=1 Tax=Gemmata obscuriglobus RepID=UPI00016C47E8 similarity UNIREF
DB: UNIREF100
  • Identity: 40.2
  • Coverage: 1148.0
  • Bit_score: 773
  • Evalue 2.90e-220
Uncharacterized protein {ECO:0000313|EMBL:EXX68024.1}; TaxID=1432141 species="Eukaryota; Fungi; Glomeromycota; Glomeromycetes; Glomerales; Glomeraceae; Rhizophagus.;" source="Rhizophagus irregularis DAOM 197198w.;" similarity UNIPROT
DB: UniProtKB
  • Identity: 40.5
  • Coverage: 84.0
  • Bit_score: 69
  • Evalue 2.20e-08
mpr; ATP-binding protein similarity KEGG
DB: KEGG
  • Identity: 28.3
  • Coverage: 244.0
  • Bit_score: 66
  • Evalue 3.70e-08

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Taxonomy

CN-SCN_Eukaryote_66x → CN-SCN_Eukaryote_66x → CN-SCN_Eukaryote_66x → CN-SCN_Eukaryote_66x → CN-SCN_Eukaryote_66x → Eukaryote

Sequences

DNA sequence
Length: 3600
ATGTCCCGCTCTGCCGTCTGGTCGGTGTTCCTGTTCGGCATGGCCTGCGTCGCCCTCGGCTCGCCCGCCACCACCGCCCAGGCGCCGAAGGTCGATCCTAAGGCGCAGCCGCCGAAGACCGACCCGAAGCAGTCGCAGAAGGTCGATCCCAAGCAGCCGCCGAAGGTCGAACCCAAGCAGCCGCCGAAGACCGACACCAAGGCCACGCAGCCGCCGAAGGCCGAGCCCAAGCCGCCGCAGCCGAAGGCCGATCCGAAGCAGCCGGAGTCGGCCACCGAGCCGGAGGCGCCGGCGATCGACGGGCCGCCGAGCCCGCTGGAGCTCGTCCGCGGGCTGCGGAAGGAGGGGCTGTCGGACCTGGCCGTCGAGCTCATCGCCGAGTTGGCGACGAAACCCGGGGTGCCGCCGGCGGTGAAGGCCGAGCTCCCGCTCGAGCGCGCCCGCTGCCTCCTCGACGCCGCCGACGACGAGCCGGACGAGGCGACCCGGCTGAGTCTGATCGGCGAGGCGAAGGACGGGTTTGCCGCGTTCCTCAAGACGAGCTCCGCCCACCCCCGCGCCACCGAGGCGTACCTGGCGCTGGCCCGGCTCATGGCGCTGGAGGCGAAGGCCCAGGTCGCCAAGTCGAAGCGGGTCGAGATCCCCGAGGCCGGGCCGGAGAAGGACGCGGCGGAGAAGAAGCAGCGGGCCGAGGCCGAGGCCGCCCGCCCGCTGTTCCTCGGCGCCGCCAAGCAGTTCAAGTCGGCCGCCGACAAGATCGGCTCGCAGCTCGCCGGCGGCGGCCTCGACCCGGCCACCCGCCGCGCCCTGCTCCTCTCCAAGATCGACGCCGAGCTCGCCAGCGGGGTCAACCAGATGGCCCTCGGCGACACCTACGTCAACGCCACCGCCGACGAGAAGAAGCAGCGGTCGGAGGCGATCGAGAAGGCCCGCGGCGAGTTCACCGCCCTGGCGAACGCCAAGGACACGCCGGCCCGGGTGGCGTGGGTCGCCCGGGCGTGGATCGCCGAGTGCGAGTACCAGAAGGACAACAACAAGGTGTCCGAGGAGAAGTTCCAGGAGGTGCTCAAGGCCACCGGCGACGCCGAGGACGGCAGGCGGATGGCGCAATTCTTCCTCGTCCGCCACAAGTGGGAGGCGAGGGACGCCACGGCGATCGAGAAGGACAGTCGGACGTGGCTGAGCCAGTACGGGGCCAACCGCAAGGCGGCCGCCGAGGCGGTGGCGGTGAAGTGGTACCTCGCCCGGGTCCGTGAGGCCGCGGGCGACCAGGTCGTGGCGACGAACAAGACGGCGAAGGCCACCCCGCCGGGGGCCATGCCGGCGTACAAGGAGGCCGAGAAGCTGTACCGCCAGATCGGCCAGACGGACAACGAGTACACGTTCCGGGCGAACAAGCGGCGGATGTACGTCGTCCGCCGCATCCTCGGCGACGCGGACGACAAGCTGGAAACGTACAAGACGTTCGAGAACGCCCAGATGGCGTCCCTCATCCAGATCGCCAAGCTGATGGACGAGGAGAAGCTGGCCCCGCCCGAGGAGCCCGAGGCGCGGAAGAAGTACGACAAGGCGCTGGGCGACCGGCGGCACAAGATCGTCGCGCTCCTGGAACGCGCCCGCGAGATCGCCACCCCGCAGGACAACCCGTCCGACGTGACCGAGGTGCTGCTCCGCCTCATCTACTTCTACCAGCAGACCGACCAGGCGCAGCGCGCCGCCGTGCTCGGCGAGTACGTCGCCCGGCAGGTCCGCGGCACCGGCGGCAAGCCGGCCACCGGCGGGATGCTCGGCGTGAGTTCCTACGTCCGCGCCGCCCACACCATCCGCCTCACCGACGCGGCCGAGGCCGAGGCCGCCCGCCGCGCCGACCGCGAGCGGGCCATCCGCCTCGCCCGGTTCCTCGACGAGCGGTTCCCGAACGACACTGCCACCGACGGCGCCCGCCACCAGATGGCCGGGCTGCTGTACGAAGACGGCCGCCCGGTCGAGGCCTACGACACGGCCCTGAAGGTCCGCCCCGGGTACGACCGCCTCGCCTACGTCCGTCTGTTCCAGGGCGCCCTCGCCACGCAGCTGCTCACCGGCAAGGACTCGCCGCTCCCGCCCGAGCGCCGCACCGACGTGTACCGCCGGACCGTCGCCGACCTGGACAAGCTCCCCGCCCCGCCGCCGACGGCCGACGAGGCCGACGCCCGCACCTACCTCTCGGTCCGCGCCCGGCTGGCGTTCCTCTACCTCCTCCAGAGCCGCGTGGACGCCGACGCCGAGAAGGCCGGCGCCGGCACCGCGAAGGCCCGCGAGGTGGCCGAGGCTGCGGCCGCCGCGGTGCCGAACTACCCGGCGCTCCTGACCGCCGAGAAGAAGCCGAACCTCGACGGGTGGGAGGCGTTCCTGGCCGCCGAGGACGCCCGCACCCGGGCCGTGTTCCTGGAGGCCACCGGCCACTTCGTCGCCGGCAAGTACGACGACGTGTTCAACACCGCCGGCAAGGTGCTGGCCGAGATGAACCAGAACGGCCCGATCACCGTGCCGGTCAAGGCCGTCGAGGCGCCCGAGGCCGACGGCCCGCAGAAGGCCCGGGTCGAGAAGCTGGCCGAAGGCGTGGACAAGCTCCGCCGCGACCTCGTGGTGCTGTCGCTGAAGACCCGCGTCCAGCAGGGGCAGGCGGACAAGGGGGTCGAGCTGCTCGACCTGCTCAAGAAGTTCGGCGGCAGCATCGAGGCGAACGTGCCGACGCTGGAGCAGCTGACCCTGGAGATGAGCGGGCGGATCGAGAAGCTCCGCCGCGAGGGGAAGGGGGCCGAGGCGCAGGCGCTGGCCGGCGGGTTCGGCAAGCTCCTGGAGAAGGTGTCGGCCGAGCCGAACCTGCCGCCGGCCGTGCAGCTGTTCCTCGGGCAGGCGCTGATCGTGGTCGGCGAGTACGGGAAGGCCGAGGAGGCGCTGGCCCGGGTGCCGCGCCCGGCCAACCTGACGGCACCGCCGGCCGACGACGCCGCCCGCCGCGTGGCGGCCCAGTACCGCCGCGCCGCGCTCGACACCTTGCGCGCCAAGCGGATGGGGAAGAAGTACGACGACGCCGAGAAGATGATGGCCGAGGCGATGGGGACGAAGGACAAGCAGGGGTGGGCGTTCACGAGCCTCGACTTCCGCAAGGAGGCGTGCTCCCTGGCCGAGGCCCGCGGGGCCGACGAGAAGGACGCGAAGACCGCCAACAAACACTGGGGGATGGCGGTGAAGGGGTGGACCGAACTGCTGACGATCGCCCGCAACCGCGCCTCCGGCGCCCCCCCGAAGGACGCCAACGGGAACGAGGACAACAACGCCATCCAGCGGAACAAGAACGCCTTCTTCGACGCCTACTTCGACTACCACCGCTGCATCTTGAAGGCGAACCTCCAGTTGCTCGCCGGCAACCCGAAGCTCGACGAGCGGGTGAACGACACCGCCAAGCGGTTCGTCGAACTGGAGCAGAAGGAGGGGGCGAACATGTACGCCGACGTGAAGAACCGGTTCCACGACTTCCTCACCGACGTGCCGCAGTTGCGCAAGGCCTACGAGGCGCAGGGCGGGAAGCTGTTCCTCCGGGCGACCGAGGACTAA
PROTEIN sequence
Length: 1200
MSRSAVWSVFLFGMACVALGSPATTAQAPKVDPKAQPPKTDPKQSQKVDPKQPPKVEPKQPPKTDTKATQPPKAEPKPPQPKADPKQPESATEPEAPAIDGPPSPLELVRGLRKEGLSDLAVELIAELATKPGVPPAVKAELPLERARCLLDAADDEPDEATRLSLIGEAKDGFAAFLKTSSAHPRATEAYLALARLMALEAKAQVAKSKRVEIPEAGPEKDAAEKKQRAEAEAARPLFLGAAKQFKSAADKIGSQLAGGGLDPATRRALLLSKIDAELASGVNQMALGDTYVNATADEKKQRSEAIEKARGEFTALANAKDTPARVAWVARAWIAECEYQKDNNKVSEEKFQEVLKATGDAEDGRRMAQFFLVRHKWEARDATAIEKDSRTWLSQYGANRKAAAEAVAVKWYLARVREAAGDQVVATNKTAKATPPGAMPAYKEAEKLYRQIGQTDNEYTFRANKRRMYVVRRILGDADDKLETYKTFENAQMASLIQIAKLMDEEKLAPPEEPEARKKYDKALGDRRHKIVALLERAREIATPQDNPSDVTEVLLRLIYFYQQTDQAQRAAVLGEYVARQVRGTGGKPATGGMLGVSSYVRAAHTIRLTDAAEAEAARRADRERAIRLARFLDERFPNDTATDGARHQMAGLLYEDGRPVEAYDTALKVRPGYDRLAYVRLFQGALATQLLTGKDSPLPPERRTDVYRRTVADLDKLPAPPPTADEADARTYLSVRARLAFLYLLQSRVDADAEKAGAGTAKAREVAEAAAAAVPNYPALLTAEKKPNLDGWEAFLAAEDARTRAVFLEATGHFVAGKYDDVFNTAGKVLAEMNQNGPITVPVKAVEAPEADGPQKARVEKLAEGVDKLRRDLVVLSLKTRVQQGQADKGVELLDLLKKFGGSIEANVPTLEQLTLEMSGRIEKLRREGKGAEAQALAGGFGKLLEKVSAEPNLPPAVQLFLGQALIVVGEYGKAEEALARVPRPANLTAPPADDAARRVAAQYRRAALDTLRAKRMGKKYDDAEKMMAEAMGTKDKQGWAFTSLDFRKEACSLAEARGADEKDAKTANKHWGMAVKGWTELLTIARNRASGAPPKDANGNEDNNAIQRNKNAFFDAYFDYHRCILKANLQLLAGNPKLDERVNDTAKRFVELEQKEGANMYADVKNRFHDFLTDVPQLRKAYEAQGGKLFLRATED*