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qs_1_scaffold_1843_18

Organism: QS_1_Euk_56_21

megabin RP 45 / 55 MC: 34 BSCG 41 / 51 MC: 19 ASCG 27 / 38 MC: 10
Location: 14105..17728

Top 3 Functional Annotations

Value Algorithm Source
SNF2 family DNA-dependent ATPase n=1 Tax=Physcomitrella patens subsp. patens RepID=A9TVS7_PHYPA similarity UNIREF
DB: UNIREF100
  • Identity: 41.6
  • Coverage: 778.0
  • Bit_score: 523
  • Evalue 6.80e-145
SNF2 family DNA-dependent ATPase {ECO:0000313|EMBL:EDQ52468.1}; TaxID=3218 species="Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Bryophyta; Bryophytina; Bryopsida; Funariidae; Funariales; Funa similarity UNIPROT
DB: UniProtKB
  • Identity: 41.6
  • Coverage: 778.0
  • Bit_score: 523
  • Evalue 9.60e-145
SNF2-like protein similarity KEGG
DB: KEGG
  • Identity: 33.6
  • Coverage: 503.0
  • Bit_score: 273
  • Evalue 3.50e-70

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Taxonomy

Physcomitrella patens → Physcomitrella → Funariales → Funariidae → Streptophyta → Viridiplantae

Sequences

DNA sequence
Length: 3624
ATGCCCAGGGCGCCGCGCATGGGCGATGGGGAGTACACCCCTTCGGAGCTCTCAGAGAACGCGGATTCTTACCGCCGGACCATGGCTGAAAGCAGGTGCGCGATTGACCAAAGCGCGCGGGCGCGGGCGAGCGCACCGCGATCGGAACGACCCGAGGGAAAGTGCTTGGGCGATGCGCGTGGTTGCAGGACGAAGCATGGCGATGGCAATGCGGACGCCGCAGCAGCAGAGCCCCGGATGGCAAGATCGATGCGCGCGGGGAAACGCGCGCGGGAGCCATCAGCTCTGGAGGATCCGCTTGGCCACGTGGAAGAAGACGAGCTTGGTGACGTGCTCGACGATGGCGAGCCAACTGGGAACAATACGCAGCAGACGCTTACGCACCAGGCTAAGCAGGCACGGATGGACGCGAGCGAGTGGTTCTCCGCAGGCGCCCAAGTGGAAGTGTGTGACGGAATCGGATGGACTCCGGGCATATGCGATGCTGTACAGCCCGGTTGCGCATGGGTCACCCTTGCCAACGGCCGGAGTGTCGAAGCCTCTCCCGACAACACCTCCCGACTCCGCCCAGGCCGCTCGAATTCCGAACCGAAGCCCCTGGGACAGTACAAGCAGGGCGAGCGCGCCGAGGTGTGGCGCGAGCTGCACGGCGAGCGCTGCTGGTGCCGTGCTGAGGTGCTCGCTGCAGAGCCCCAGCACGTCACCGCCCGCTTCCCCGATACCGAGGAGAATTTCACCGTCCAGGGGAGCGAGGACATCCGCCCCGAGCGCATGTGGGACGGCTTCGGCAAGTGGCGAGCTGCCAGCAAGAAACGTCCCTACTTCGACGACCAGGACCCCTACATCAAGCTCTTGGCAGAATGCTCCAAATGCCGCGGCTCCACTGGCCGCCGAAGCATGGTGAAGTGCAGCAGCTGCCCACGACACTGGCACATCTACTGCCTTGACCCTCCTTGCAAAGATGTCCCGCCCAAACCCTGGCGCTGCCCTCAGTGCGAGGATGAGATGAAGGACACCGCTGCTGAGGAGGCTGCACGGACCAAAGGCAACGTGGATGTCATCATCGGCCAGCGGCAGAACCCTGAAAGCCTCGAATTCCTAGTCAAGTACGACAAGCGCGGGTACAAAGATGCTGAGTGGTTGCCCGAGCGAGCCGTCCGTACACTTGCCGACCGCAAGCTCAAAGCCTTCTGGCGTAAGCACGGAATGGACGGATGCGAGGCGCATATACCGCCCGACTACTGCCGCGTTGATCGCGTGATCCTCGCCCGCAAAGGCGCCCTGGACGCCACTGACGTCGGGCCGTGCGGCACATCACGTGCCGCTATTGGCAACGTCGAAAGTGCATCTCGCCCAACAGCAATGAGCGAGGACGGGGTTGCTGCAGAGGATGAGGACGATGGGCCTCTCTTGGCGGGAGGTGCATCTCAGCCACAGAAGCAGCCGAGCTCGGACGCGGGCCCGGTGCAGTTGCCACCACCGCCGCCGCCGTCTGGCAGAGAGGACGAGCGAGCCTTGCTTGTCAAGTGGCAGTCGCTTGGATACGATCAAGCGACTTGGGAGTGGGAGACGGACGTTAAGGGGTTGCAAAATGGCGAGTCGGAGCTCAGAGTATACGACTTTCGATCGCAGCAACCTAAGACGCATCCGAGCAAGACGACGAAGCAGTTGGACCGTCTCACTGACCAGCCAGAGGCCGTGCGTGAGTGTGGCGACCTGCACAGGCACCAGCTTGAGGGTGTCAATTGGTTATTGCAGAAATTACAAGCGAAGGAAGGTGCCATCCTTGGCGATGAGATGGGACTTGGAAAGACGATTCAGGCGGGTGCATTCCTTACGGTTGCATTTTCTGAGCGTCTGATGAACCAACCGGCGCTGGTTGTGGCGCCGCTGAGCACGCTCTCAAGCTGGGGAAAGGAGCTGAAACAGTGGTGTCCACACCTCAATGTCGTCACATATGTGGGCAGCGCGGAGTCAAGGCAACTGCTGCGACATTACGAGCTGAGTGCCACGTCGCCTCGGCTAGATGTGCTTCTCACAAGTTATGAGGTTGCTAATCAAGACAGCTGGATCTTTCAGCGCACAAAATTCAGTGCCACGATCGTGGACGAAGGCCATCGGCTAAAGAGCGCCGACAGTAAGCTCGCCAGAACACTTTCCGCCTTACAGGATGAATTTCGTCTCATTCTCACTGGAACGCCACTCCAAAATAATTTGGAGGAGCTCTTCGCACTCCTGCATTTCATCGACCCATGCAGATATCGTGACCCCACAGCACTTGCACAGACCTTTACGAAACAACAGCAGCAGCAGAAAAACCAGCACGAAAAGAACTTCCATGAAAACGGCTCGCTGCATCAGCAGCAGGAGGCTGGTGAATTGGGGCATCTCCATGATCTGCTACGGAAGCACATGCTCCGTCGATTGAAGCGTGAGGTTATGCCAGACATGCCGCTCAAGCGAAAGCGTGAAGTGCATTGCGGTCTCAGCTCGCTGCAACAGTCACTGTATGCGGACGTGCTCGCGCGAAATCATAAAGCTGTCAATCTATTCAACACGTCAAATAAGCGTGTTTCGCTGATTAACGTCCTGAAGGAGCTGCAAAAGGTCTGTAATCACCCCTTTCTCTTTCCTGGGGTCGAACCTGAGGCGAAAAAGGCGGAGGAGGGAACCTCCCTCCTTGTTGAGGCCAGCGGCAAGCTCTGCGTCCTCGCAAAGCTGCTGCCGCGCCTGCGCGCCGATGGCCATCGATGCCTGCTTTTTTGCCAAATGACCCAGATGCTTGATGTACTCGAAGACTTCATGCGTGAGCTGGGCTTGCCGTACTGCCGCATTGATGGGAGCACCTCCAGCAAGGAGCGCCAGCAAGTTATTGACCGCTTCAACGCGAATGACTCGGATGTTTTCATTTTCCTCATCAGCACTCGCGCTGGTGGCCTTGGCATCAACCTTCCATCAGCCGATACTGTCTTCATCTACGACCCGGATTTCAACCCGTTCGTAGACTTGCAGGCGCAAGGCAGAGCGCATCGTATTGGACAACGCCGAGAGGTGATGGTGTATCAACTCGTCACCGACGACACTGTGGAGGAGCAGATTCTCTCAAAGGCGAAGAAGAAGCTCGCCATAGAACGGCTCGTCGTTCGTGAGAAAGGCTCGGATGCTGTATCTTCGGACGAGCTGAAAGGCATCCTCACGCATGGTGCCGTCAATCTGCTCAACAAGGCACGCGGTGGAGTCGGCGGCCTTGCGGACGCTGGTGATTTTGGCAGCACGGCACGACTATATGCGACTGATAATATCGTCGACACTTTGATTGATCGCGAGAATGCGCCTGTCGTGGAGGACGATGTCGAATCACAGGGCTACCTTGGAAAGATCGAGTCGTACCAGGAGCAAGAGCAGCAGGCTCAACAGCATGAGGAAGACACCAATGCGAATGAGTCTTCGGCACTCGACCAGTTACTGCAAGAGCGCCACGCCAAGATAGAAGCTCAAGAGCAGAAGGACGATACTTCCGAGAGACGCCGCCAGCGCCGACAAGCACGCGCGCAGACGGAGTACAATCCTCCGGAAGGCAAGCTTGCGGATGATGATGATGGGCTCGACGATCCACCAGGTTAG
PROTEIN sequence
Length: 1208
MPRAPRMGDGEYTPSELSENADSYRRTMAESRCAIDQSARARASAPRSERPEGKCLGDARGCRTKHGDGNADAAAAEPRMARSMRAGKRAREPSALEDPLGHVEEDELGDVLDDGEPTGNNTQQTLTHQAKQARMDASEWFSAGAQVEVCDGIGWTPGICDAVQPGCAWVTLANGRSVEASPDNTSRLRPGRSNSEPKPLGQYKQGERAEVWRELHGERCWCRAEVLAAEPQHVTARFPDTEENFTVQGSEDIRPERMWDGFGKWRAASKKRPYFDDQDPYIKLLAECSKCRGSTGRRSMVKCSSCPRHWHIYCLDPPCKDVPPKPWRCPQCEDEMKDTAAEEAARTKGNVDVIIGQRQNPESLEFLVKYDKRGYKDAEWLPERAVRTLADRKLKAFWRKHGMDGCEAHIPPDYCRVDRVILARKGALDATDVGPCGTSRAAIGNVESASRPTAMSEDGVAAEDEDDGPLLAGGASQPQKQPSSDAGPVQLPPPPPPSGREDERALLVKWQSLGYDQATWEWETDVKGLQNGESELRVYDFRSQQPKTHPSKTTKQLDRLTDQPEAVRECGDLHRHQLEGVNWLLQKLQAKEGAILGDEMGLGKTIQAGAFLTVAFSERLMNQPALVVAPLSTLSSWGKELKQWCPHLNVVTYVGSAESRQLLRHYELSATSPRLDVLLTSYEVANQDSWIFQRTKFSATIVDEGHRLKSADSKLARTLSALQDEFRLILTGTPLQNNLEELFALLHFIDPCRYRDPTALAQTFTKQQQQQKNQHEKNFHENGSLHQQQEAGELGHLHDLLRKHMLRRLKREVMPDMPLKRKREVHCGLSSLQQSLYADVLARNHKAVNLFNTSNKRVSLINVLKELQKVCNHPFLFPGVEPEAKKAEEGTSLLVEASGKLCVLAKLLPRLRADGHRCLLFCQMTQMLDVLEDFMRELGLPYCRIDGSTSSKERQQVIDRFNANDSDVFIFLISTRAGGLGINLPSADTVFIYDPDFNPFVDLQAQGRAHRIGQRREVMVYQLVTDDTVEEQILSKAKKKLAIERLVVREKGSDAVSSDELKGILTHGAVNLLNKARGGVGGLADAGDFGSTARLYATDNIVDTLIDRENAPVVEDDVESQGYLGKIESYQEQEQQAQQHEEDTNANESSALDQLLQERHAKIEAQEQKDDTSERRRQRRQARAQTEYNPPEGKLADDDDGLDDPPG*