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Last updated: 2022/11/18
NameA_SariMG_comp29119_c0_seq2
Scaffold_id
NCBI non-redundant
(nr)
PREDICTED:_fanconi-associated_nuclease_1-like_[Amyelois_transitella]
Ontology
GO:0000724 P double-strand break repair via homologous recombination
GO:0003677 F DNA binding
GO:0004518 F nuclease activity
GO:0004519 F endonuclease activity
GO:0004527 F exonuclease activity
GO:0004528 F phosphodiesterase I activity
GO:0005634 C nucleus
GO:0006281 P DNA repair
GO:0006289 P nucleotide-excision repair
GO:0006974 P cellular response to DNA damage stimulus
GO:0008409 F 5'-3' exonuclease activity
GO:0016787 F hydrolase activity
GO:0016788 F hydrolase activity, acting on ester bonds
GO:0017108 F 5'-flap endonuclease activity
GO:0033683 P nucleotide-excision repair, DNA incision
GO:0036297 P interstrand cross-link repair
GO:0043130 F ubiquitin binding
GO:0046872 F metal ion binding
GO:0070336 F flap-structured DNA binding
Transcript
Level
FPKM:4.18 TPM:4.20
ORF EntryO_SariMG10758_complete:A_SariMG_comp29119_c0_seq2
Sequence
(Nucleotide)
ATTTCGATGAAATTTGGTATGTTAATAACCTGAATTCCACGCGAGCGATTTCGCGGGCAC
AGATAGTACATAATAAATTCTAAAATATAAAAAAGAAAAATTTGTGACAAATTAACATAC
AAATAATATTTGAATAAAAACATAAAGTTTATTGATCTATAAATAAATGCAAATAGAGTT
AAGACTGGAATGAGTGATAGTGAAGCATTTATTCGAGTCCTTTCGACAGTTCAAAGATAA
TTGTGATGTTTTATTTTATGTATTGTCGTCAATAAAACTTATGAAACTGCAAATAAGTCC
GCGACTTCACAATATTGTTTAATCAACTCTCTCTAACTTTAAATCACCAACCCCGCTCGA
ATCCAGTCAAATTACATTAAAAAAAAAACTGTCGACGTTTTCGTCAGACATAACTCGAAT
GAAATCCTATTTTTTCAATCTTTTAAATATTTCAGTGCGCTATATTACCCCGTAAACCTG
ATAAAATTACTATCGCATTGTTAAAAAAAAGACGCGAGAATGTGTATCATTACATATTAT
TAAAATAAAAATTTAATTTAATTTGAAACCAAATATTAATTTTAAAAAAAACTGTTAACC
ATTGGCCAAAATCCCTGTAAGTTCGTAAAACAAACTAATTTTAAAGCTTTATCTATATCA
ATTCAGATTACTATAAATATATTCCTGTTAACATTTATTATCACAGCCAATTTTCTTTTT
AAAATTTGCCCTTAAAGATCCTAACGTTGTTTTACATATATTAATTAGCCATTAATCCTT
AGCACTAAAGCAACTACCACTGAAATATGTAAAAATATTTTTTAATGAAAATGTTATAAT
AATGTATCTTTTGTTTATGTCATGAGTTTTGTATATTTTTTAGAAACATAGACATAATTT
ACAACAAACAATCGTCTTTCGTGGAAAATAAACTTAGTCTAATATAGCAAATAGTGACAA
TATTAAATATATAAAAATAAATACAGGAAATTTTTTTGCAATGTCACTTCCTGTATTACA
ATAAACATCAATGTACTTCCCATTAAATGGCGTGTGTTTAATGCAAATAGATGAAATCCA
TATAAACTTATTATCAGATTACACCTAAGTTTTAATTAGTATTAAAATTTCAAAGTGTTT
CATTTGATTTCAATAATGGAAAACCATAAACATCAAGTATAAATCTAATATACAAATTCC
CATAAAACTCAATTACTTAACGGTAAAAATGTATTTTCAAAGTTTTTAGTGTGATATCTT
AGTATGTCTTGTAGTGTTTTGATATGTTATTCATAAACTTGCCGTATTAAACACAACATT
GTGTAATATTGGTGGCCTTTTACATGATATAGATCATCGTGCATAAGTGCATTAGATACA
GAAATAATTACATGTAATGTGAATTGTGATATGGTACAAAAACTCCCTAGAACATTCTAG
CAAAATGGACATCATTTTACAAGAGCGTTGAAAAGTTAATATAAAAATAGAAAGTGTGGC
TTGGCTGCATGATGCACATTCCTTCGCCATTACCTTAGAAAGAAAGAAAATTGCAACAAA
AAGAATGTGCATATTTTAGGACCTCATTTGTCTACATTTTTATTTTTTTTTTAATCCTTA
GACTGTTATCTTGTGCACAAACGGTAAATATTTATTTATTATCATTTTAAAGATCATTAT
CGACATCATCATTATCATCACATTCGTCGAAGGGTTGAGACGCTCTCGCTTTATTGCGAT
CCGGATTTGCTCCAACATAAAAGAATCCTGTATCAATACCATTATTATGAAGGTAATGCA
TCCATTGTATCTGTTTTATTGAAGGTTTGTCCGAATCAGATTTCACTTCTAAGAACTTTA
TCTTTTTTGTTTTACTGTTCCACGCTGTCACATCAGGGAAACCGGCGACAGCATATCCGT
AGTTCATGGCGAGCCTTTTACAGATAACTGCAACTTTTTCAGGACCTAGACAGGCTGATA
CCATACTGATATTGTCCCAACCGATTTTACGGTCTATGTCCGAGAGTTCATAATCTGGTC
TTTTCAGCCATACGCTCTTCATATCGTCGAGGAGCTGTTCCTCAGTAAACTGAGCAATCT
TCGACAATTTGTCATTGATTAAAACCTTTCTGTTGTTATAAAAACTATCGCAGTACATAT
CGAGTGGGTAACGCTGATAGTACGTGAGGAACACACCGGAGATGCCACGAGGTTTCTCAT
ATATTATATCCCAGAAGAGTAGGTAAAATATACTTTTAATTATTCTGCCCTCCCAGTGTT
CAGCGTGTGTAAAGCCTCCATCTGTCATACAATGATAAACGCAATATTCCTCAACGTTCA
TATATTGTTTTTCTTCGTCTGTTTGTACTATGAATTTAATTTTGCCTCGTTTACCGTCAT
TGTCCATAGGTTGTTTAAAAATAAATTCAGAAGGGATATCTTTCTCAAGTTTACTTTCTT
TTGTAGCGTAAAGTCGTAATTTTTCTCTCAAATCCTCAGTGATAAATGTATTTTGTTGTC
TACTTATCCTGATAGCGCGCGGATGCATCATCTCTTTCGCTACATCCGACGCATCCGACT
CAAAACCTTCAATTAATAACATAGCCGCCTCATCATGCCGATGGAGATATGTATGCAATA
TGAGAGCCTTCTCAACATACCAACTCCCTATATTCTGTTGCTTAAATGTGTTCTGCTTTA
TCAGAGTTGTTAGAATTTCCAAAGCGAATAAATAACTGTTTGGTTCCTTTTGGCGTTTTA
AATCTTTCACTCCTTTCTCGAGGATTTTTATATAAATATGTGGTGGAGTAAACTTATAAA
GCCATTCGGGGTAAGTCATGTATCTCTTCATATCTCCATCCTCAATGTCCAGGTAAGATT
TGTAAACCGTTCGCACGATTTTACATTTCTCATCATTGTCGATTTCCGCGAGAAAACTTT
CGTATACCGAATATGCGTTTAAATAACTTTCGAATTCCTGGCGCGAACTGAAAACACAAC
TTGCATTGTCCAGTATCATGGTTTTATCTATTGGAAAAGTTTCCTTCCTTATATTGTCGT
AAATGATTGTCCATTCTAATTTCTTCTCCCTTATTATTTTATACTGAATACCTAAATACA
TTATCAAGTATAATTTATGTAGTGCTGTCTTTGCAGAATCTGACAATTTGTAACAATTTC
CCGCTTTTGTTCTTAATATATTCATAACCCTGTCTTCATTTGTAACTACAGATTTACTTT
TAAAATATGTACTGATAGACTTCTGTTGGCAATATTTTTTTAAAGACTTAACAGCACTTT
CTTTTGACTGTCTCTTGATATTTAAATCTTTGCAAACTTGCTGTAATTCATCATTGCTTA
ATGTTTTTGTAAGTTCCTCAAATTTTGCATTACTTGTACCTTGGGAAGAATTCTGCACCA
GTATACCCATTTCCACCAAAGAATGAAGTATCAATTCTAATCCAGCAGAATCCATACTGT
CATATTTACAAATTTTCAACAATTTGTGCAATTTGTACCAAATGTGTTGGCGCCAGTAAA
GCCTACTAATAAGATATAAGCCAGGATGCTTCACAAGTAGACATTTATTCAAAATTTTTT
GTGACTGGTCATCAAGTAAACTGAACAATGTTGTATCTTTTGTAATATTTTTAATATTTT
TCAATAAAATTAAACTCTTATTATCTATCATATCATCCTGCGATGAATCTAAATCTTCAG
TGTTATCTTCAATTTGAAACAATTTTTTAGCTGGACTCATTTTTTTGTTTCCATTTGTGA
CTAAGCGGTTCTTGGTGGGTGAGAAAAATTTTTGTTGTATTCTTTTAGTTGGAGTTAATT
TTCTTTTTGGTGTAGTAACTGGTTTCATTATCACAGGTTCAACTAATTCACATTTTGATT
GTAGTGTTGAGTTAAGGAAATTAGATATTTTTTCTGGAGTGGTTGATGTATTTTCATTTT
TTATAGTCATAGATTCATTTAATTCAACATTAAATTGGGGAGTCAAGTATGGCACACCAA
ATTTTTCTTCAGAATCGATTATTTCACTAATATCTTTTACAGATTTCATTATTTCCCCAC
TTGATTGTGGTGTCAAGTCAAACAAATTTGATGTTTCTTGTGAAGTTAATAGTGTGTTTT
CTTTTTCTATTGCCATAGATTTAATTATTCCGCAATTTGATAGCGGTATTAAGTTAGGTA
AATTAGGTTTTTTCTGTGGAGTGATTGGCATGCTTTCACTTTTTATATTTACTGATTCCG
TTAACTCAAAGTTTGATTGAGTTAATGACTTTATCAAATCATTTTCTTCAAGATTTTGTG
CAGATTCGGAGTCTGATTCACCGTCGCTGCAAAGATTTATTATTACGCCTACAGCTGAAT
TTTCCACAGCTATTTTTGCTTTCGCTACTTTTTGTATTGTGGAAAGGTCCGAACTTGATC
TTTTCCTACTAATACCACTTGATTGTTCAATAATCGATGGTTTATTTGATTTCATTCTGA
AAAACTCATTTAACGAACTTTGTCGGCTCATAGTGTAATTCAAAGTTTACTTAATATATT
TCAAAAATTGAATGGCAAATTGGTATTCATAATCATGTATCTATAACAAACCCAGTAAAC
ATAAATCAGCGATAAAGTTTTTATATTTATAAACTTATTATTCACTTCACTTCTTATGAG
AAT
(4683 bp)

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