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RTP_02272018_0_2um_scaffold_502_24

Organism: RTP_02272018_0_2um_Hydrogenophilales_62_27

near complete RP 49 / 55 MC: 2 BSCG 48 / 51 MC: 1 ASCG 13 / 38 MC: 2
Location: comp(20938..24036)

Top 3 Functional Annotations

Value Algorithm Source
Putative ATP-dependent exoDNAse (Exonuclease V) alpha subunit n=1 Tax=Thiobacillus denitrificans (strain ATCC 25259) RepID=Q3SI89_THIDA similarity UNIREF
DB: UNIREF100
  • Identity: 69.3
  • Coverage: 610.0
  • Bit_score: 800
  • Evalue 1.10e-228
ATP-dependent exoDNAse (exonuclease V) subunit alpha similarity KEGG
DB: KEGG
  • Identity: 69.3
  • Coverage: 610.0
  • Bit_score: 800
  • Evalue 3.10e-229
Putative ATP-dependent exoDNAse (Exonuclease V) alpha subunit {ECO:0000313|EMBL:AAZ97639.1}; Flags: Precursor;; TaxID=292415 species="Bacteria; Proteobacteria; Betaproteobacteria; Hydrogenophilales; Hydrogenophilaceae; Thiobacillus.;" source="Thiobacillus denitrificans (strain ATCC 25259).;" similarity UNIPROT
DB: UniProtKB
  • Identity: 69.3
  • Coverage: 610.0
  • Bit_score: 800
  • Evalue 1.50e-228

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Taxonomy

Thiobacillus denitrificans → Thiobacillus → Hydrogenophilales → Betaproteobacteria → Proteobacteria → Bacteria

Sequences

DNA sequence
Length: 3099
ATGCTGTCAGTTTCAGTGATAGGCGCAGGAGGAGAAGCCAGCGGCTACGCTGCCTACCAAGAAAGCGAAGTCGCATCGGCGCGAGAAGATTATTACGCCGCCGAAGGTGACGCTGGCCGCTGGACTGGCCGCGGCGCACAAGAAATGGGCCTGGCGGGCGACCTCAAGCCTGGTCAATTGCTGGCCGGCCTGCAAGGTTTCCATCCAGAAACCGGCGAGGCGCTATCAAAAAACGCAGGCGAGAAACACAAAGGCGGCTGGGATCTGACATTTTCAGCTCCTAAATCCGTCTCCTGCATATGGGCCGTGGCCGACCCCGAAACCCGCGCCGCCATGGAGTCGGCACAGAATGCCGCCGCAGCGCGAGCTCTCGCATTCCTTGAAGAATCCGGCGCGTTCCTGTCCCGTAGCCGGAACGAGTCCGCCCCGGTGGAAGGGGTGGCCGCCGCCATGTATCAGCACGGCACGAGCCGCGAAGCGGATCCTCAGCTTCACACCCACGTCGCCGTTCTCAACGTGCAACCAGACGGCACGGCGATGGATTTCGACACCCGCTGGAAGATGGCGGCAGGCGCGGTTTACCGCTGCGAGCTGGCCGCTGCAATGCAGAAGCTGGGTTTTCAGGTCGAAGCCGACGGCAAGAGTTTCCGCGTCGCGGGCGTGCCTGAAGCGGTTGAGAAAGAATTCTCAACCCGCCGTGCGCAGATCGTGGAAGCGCTTGCCGAAAAAGGCATGAATTCAGCCAAGGCCGCCGAAGTCGCCGCCCTGTCCACCCGAAAAAGCAAGGAGCCGGCCACGCGGCAAGAACTCTTTGCCGACTGGAAAATCCGCGCCGCCGCGCAAGGCCTCGACCAAGAAACCGTCCAAGCCTTGCGTGAAGCGCCCGAACACGAATTGCAGTACGACGCCGATCCCCTTTCCGGGCTGGCGCCTTTCATCAACGAAGCCAAGGAGCAAAACCATGAACAACCAGACCGATATGCAACAGATCCAGAGCGAATTCGCGCCGGGCGGCTTGCCGCCCTACGTGAGTCCGACCCTGGAAAAGTTGGACGCGAGCCTCCGCCCCAAGCCCTCAACCGTCTGCGAGGGTTGTCCGAGCTCGGTATGGTTCACGTCGCCGACCGGAGTGAAGTGTTACTGCCGGGTCATGTACCTCATAACATGGAGCACCAGCGAGCCGAACGTCCTGACCAGCTGCGACGGGGAAGTGATGGCGAACATGGCCAAAGCCGAGAAAAACTCGACCACGACGAGATCCTGAGCAATCTGACCCAGCAGGCATCCACCTTCACCCCCCATCAGATGGCGGCCGCCGTGGCCGTCGAGATGCAGGGCAATGGCGGCGCCGACGCAATCCAGAAAGCGTTACGCGACCTTCAAAAACATCCTGATCTCATCCGTCTAGAATCCGATAAGCCTTACCAATTAAGGCGCGGCGATCCGACCGAGATTCGTTACACCACGCGCGAAATGCTGGAAATCGAGCAAGGCCTTCTTGATAAATCTCAGGCCCGGAAATCCGAGGAAAAGCATCGAGTCGATACCTCAAACGCGATCGCGGCACGGCCCACCATAACCAGCGAGCAGAAAGCCGCGCTCAAACATGTCTGCGAGGCGCCGGGGGCAATCAAGATCGTCGAGGGCATGGCCGGCACCGGCAAAAGTTACATGCTGGGCGCAGCCCGCGAAAGCTGGGAGGCCGCTGGCTTTGAAGTGATCGGCGCGGCGCTGGCCGGTAAAGCTGCCGCCGGCCTTCAAGAGGGGGCAGGCATTGAATCCCAGACGGGACACTCTCTGCTTTTCCAACTCGACACCGGCCAGCGCCAACTTCACAACAAGTCGATTGTGGTGATCGACGAAGCCGGAATGATGGGTAGCCGCCAACTCTCCCGCATCCTGGATCACGTCCACAGGGCGGGCGCTAAGGCCGTGCTGGTCGGCGACAGCCAGCAACTTCAACCAATCGATGCTGGCGGCGCATTTCGCCTGCTCTCCCAACGGCTCGGTGCGGCGCGGCTGGAAAATATCGTCCGGCAAAAAAACGAAGCAGACCGTCAAGTTGTGCGCCTTTTTGCTGACGGCAAAGCCGCCGAGGCCATGCAATCCATGCGTGAGCGCGGTCTTCTGGCAATCACCGAAACCCGCGCCGAAGCCCTGCAAGAAATGGTGGGGGCTTGGGCTCAAGCCTGCGACCCATCCAAGCCAGGCGAGTCTCTGATGCTTGCCGCCACGCGGGCCGAAGTCGCCCAGATCAACGCAATGGCACGCCAAATTCTGAAAGCCGATGGCCGGCTGGCCGGGGCTCTACAAGTCCCCACGGCGTCGGGAATGAAAGAGTTTGCCGTCGGTGATCGGATTATTTTTTCCAAAAATGACGGGGCGGTTGGCGTGAGCAACGGCCACCTTGCCACAATCCAGAACATTAAATTCGACAAGACCGGGCAGGTTGAAATCACCGCTCGGCACGATAACGGCAAGCAAATCAAATTCGTTGCAGGACAGGGGAAAGGGCAGTTCGACAGCTTCGACCACGGCTATGGAATGACGGTTCACAAATCACAGAGCGTCACCGTGGATCGCGTCTTTATGCTGCCCAGCGACACCATGAGCTTTCGGGAATGGATTTACGTTGCCGCGTCTCGCGCGCGCTACGAAACACGCATGTTCCTTACGCGCGATTCAGTGGAAGCCCTCACCAAAACAATGAGCCGTGCGCAGGGAAAAGAAACCAGCCTGGACTTCAAACTTGCCACCACTCCGGAAAAATCCGCGGCCGCTGAAAAAACCGCCGCGCCAGAATTGGCTACAAGCCACGATCTTGCAGCGGTTGATACCAACCCATCAACCCATTCCGCAGAAAGCGCCGTAAACGTCGCAGACAGCAAGGTCGGCGGGCTTGAGTCCGCGCTGTCCGGAACGACAGATGCAGCAGCGAAGGCCCGGCTGCTTGCAAAAATCGAGCATGCAACACAAGACCGGGCGCACGCCGCGCGGCACCATGGGCAGCAAGAAATGGCCGGATGGTCGAAGGCGGTCGAACAGAAAATTGAAGCCTGCGAAATCAAAAAAGCGGAGCAGCAAGAGCTGTCGATCTAA
PROTEIN sequence
Length: 1033
MLSVSVIGAGGEASGYAAYQESEVASAREDYYAAEGDAGRWTGRGAQEMGLAGDLKPGQLLAGLQGFHPETGEALSKNAGEKHKGGWDLTFSAPKSVSCIWAVADPETRAAMESAQNAAAARALAFLEESGAFLSRSRNESAPVEGVAAAMYQHGTSREADPQLHTHVAVLNVQPDGTAMDFDTRWKMAAGAVYRCELAAAMQKLGFQVEADGKSFRVAGVPEAVEKEFSTRRAQIVEALAEKGMNSAKAAEVAALSTRKSKEPATRQELFADWKIRAAAQGLDQETVQALREAPEHELQYDADPLSGLAPFINEAKEQNHEQPDRYATDPERIRAGRLAALRESDPGKVGREPPPQALNRLRGLSELGMVHVADRSEVLLPGHVPHNMEHQRAERPDQLRRGSDGEHGQSREKLDHDEILSNLTQQASTFTPHQMAAAVAVEMQGNGGADAIQKALRDLQKHPDLIRLESDKPYQLRRGDPTEIRYTTREMLEIEQGLLDKSQARKSEEKHRVDTSNAIAARPTITSEQKAALKHVCEAPGAIKIVEGMAGTGKSYMLGAARESWEAAGFEVIGAALAGKAAAGLQEGAGIESQTGHSLLFQLDTGQRQLHNKSIVVIDEAGMMGSRQLSRILDHVHRAGAKAVLVGDSQQLQPIDAGGAFRLLSQRLGAARLENIVRQKNEADRQVVRLFADGKAAEAMQSMRERGLLAITETRAEALQEMVGAWAQACDPSKPGESLMLAATRAEVAQINAMARQILKADGRLAGALQVPTASGMKEFAVGDRIIFSKNDGAVGVSNGHLATIQNIKFDKTGQVEITARHDNGKQIKFVAGQGKGQFDSFDHGYGMTVHKSQSVTVDRVFMLPSDTMSFREWIYVAASRARYETRMFLTRDSVEALTKTMSRAQGKETSLDFKLATTPEKSAAAEKTAAPELATSHDLAAVDTNPSTHSAESAVNVADSKVGGLESALSGTTDAAAKARLLAKIEHATQDRAHAARHHGQQEMAGWSKAVEQKIEACEIKKAEQQELSI*