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Detail for ZS11_A01G12900.t1

Genome:
ZS11: ZS11_A01G12900.t1
ZS11_v0: BnaA01T0117200ZS
WE: WE_A01G13520.t1
WE_v0: BnaA01T0036600WE
Darmor: A01p12900.1_BnaDAR
BH: BnaA01T129200BH
Quinta: BnaA01T0050000QU
ZS2: BnaA01T123600ZS2
SW: BnaA01T128800SW
Express61: C01p012780.1_BnaEXP
Xiaoyun: BnaA01G0122200XY
P202: BnaA01G009120P202.1
BL: BnaA01T129200BH
TA: BnaA01T124400TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g11690D
RB: BnaA01T126200RB
No2127: BnaA01T0085000NO
P130: BnaA01G011160P130.2
Length: 615
KOG ID: KOG1198
KOG E-value: Not available
KOG Score: 577.0
KOG Annotation: Energy production and conversion; General function prediction only
Biological Process: GO:0006308(DNA catabolic process)
Cellular Component: -
Molecular Function: GO:0016491(oxidoreductase activity),GO:0016788(hydrolase activity, acting on ester bonds),GO:0003676(nucleic acid binding),GO:0004519(endonuclease activity)
KEGG Ortholog: -
NR Protein: XP_013737048.1
NR E-value: 2.300000e-172
NR Score: 610.9
NR Annotation: XP_013737048.1 quinone oxidoreductase PIG3-like isoform X2 [Brassica napus]
SwissProt Protein: F4JJL0|ENDO4_ARATH
SwissProt E-value: Not available
SwissProt Score: 567.0
SwissProt Annotation: Endonuclease 4 OS=Arabidopsis thaliana OX=3702 GN=ENDO4 PE=1 SV=1
CDS Sequence (1874 bp)
ATGAAGGCGATCGTGATATCGGAGCCAGGAGCGCCGGAGGTTCTGCAACTCCGTGAAGTGGAAGACCCAC
AAGTGAAAGACGATGAGGTTCTCATCAGAGTTCACGCCACTGCTCTGAATCGCGCGGATACTCTCCAGAG
ACTTGGCTCTTACTCTCCACCACCTGGCTCTAGCCCTTACCCTGGTCTCGAGTGCTCCGGTACCATCGAA
TCCGTCGGCAACTCCGTCTCTCGTTGGAAGGTCGGAGACCAGGTGTGTGCTCTTCTCTCTGGAGGAGGTT
ACGCAGAGAAAGTTGCTGTACCTGTTGGACAAGTCCTTCCAATACCCGCTGGTATCTCTCTAAAAGATGC
AGCTGCTTTCCCTGAAGTGGCGTGCACTGTTTGGTCTACTGTCTTCATGATGGGCCGTCTCTCCCCTGCT
GAATCCTTCTTGGTTCATGGAGGTTCAAGTGGGATTGGTACATTTGCTATTCAGATGGCTAAACATCAAG
GAGTGAGAGTATTTGTCACAGCAGCTGCTTGCAAAGAGCTCGGAGCGGACGTTTGTATAAATTACAAAAC
CGAGGACTTTGTGGCAAGGGTGAAAGCTGAAACAGATGGGAAAGGTGTGGATGTTATCTTGGACTGCATT
GGAGCGCCGTATCTGCAGAAAAACCTGGACAGCTTAAACTTCGATGGAAGGTTATGTATCATCGGTTTAA
TGGGAGGAGCCAACGCAGAGATAAAACTAAGTAGTCTGCTTCCAAAGCGTCTCACTGTCTTAGGAGCTGC
GTTAAGACCAAGAAGCAAGGAGAACAAAGCGGTTGTTGTGGCGGAAGTGGAGAAGATTGTTTGGCCAGCG
ATAGAAGCAGGGAAGGTGAAACCAGTGATTTACAAATACTTACCGTTGTCGCAAGCAGCAGAAGCTCATA
GCCTGATGGAGAGTAGTAGCCATATTGTGAGGCGAGCAGCTGAATCAATTTTGGAAGAGCAAGATCAAAA
CTTTGTGAAGTATGAATTCCTCATCCACGGAGCTTTGAGCTGGGGCAAAGAAGGCCACTACACCGTCTGC
AAAATAGCCGAGAGCTACTTTGAGGAAGAAACTGTAGCTGCGGTGAAGAAACTTCTACCTGAATCAGCTC
AAGGAGACTTAGCTTCCGTTTGTTCATGGCCTGATGAGATCAAACACCATTGGCAGTGGCGTTGGACTAG
CCCTTTGCACTATGTTGACACTCCTGATTACAGATGCAACTACGAGTATTGCCGGGATTGTCATGATACT
CATAAGCATCAAGACAGGTGTGTGACTGGAGCCATTTTTAATTACACGATGCAGCTTATGTCGGGTTCTG
AAAACTCGAGGAGGATAGTCCACTACAACTTGACAGAGGCTCTTATGTTCTTATCACATTATATCGGGGA
TGTTCACCAGCCTTTGCATGTTGGTTTCCTGGGAGATGAAGGTGGAAACACTATAACAGTCCGCTGGTAC
CGTCGCAAAACAAATTTGCACCATGTGTGGGATAACATGATAATTGAGTCAGCTCTTAAAACATACTACA
ATAAGAGTCTTCCACTCATGATTCAAGCACTACAAGCCAATCTTACTCATGGCTGGTCAAATGATGTTCC
GTCGTGGGAATCATGTCAACTTAACCAAACGGCATGTCCAAATTCGTATGCATCTGAGAGCATAAGTCTG
GCCTGCAAGTATGCTTACAGGAACGCTACCCCAGGAACTACTTTAGGAGATGACTATTTTCTCTCTCGGT
TACCCATTGTGGAGAAGAGACTTGCACAAGGTGGGATTCGCTTGGCGGCCACTCTGAACCGGATCTTTTC
TTCAAAACCTAAGCTTGCTGCAGCATGA
Upstream Sequence
ATGAAGGCGATCGTGATATCGGAGCCAGGAGCGCCGGAGGTTCTGCAACTCCGTGAAGTGGAAGACCCAC
AAGTGAAAGACGATGAGGTTCTCATCAGAGTTCACGCCACTGCTCTGAATCGCGCGGATACTCTCCAGAG
ACTTGGCTCTTACTCTCCACCACCTGGCTCTAGCCCTTACCCTGGTCTCGAGTGCTCCGGTACCATCGAA
TCCGTCGGCAACTCCGTCTCTCGTTGGAAGGTCGGAGACCAGGTGTGTGCTCTTCTCTCTGGAGGAGGTT
ACGCAGAGAAAGTTGCTGTACCTGTTGGACAAGTCCTTCCAATACCCGCTGGTATCTCTCTAAAAGATGC
AGCTGCTTTCCCTGAAGTGGCGTGCACTGTTTGGTCTACTGTCTTCATGATGGGCCGTCTCTCCCCTGCT
GAATCCTTCTTGGTTCATGGAGGTTCAAGTGGGATTGGTACATTTGCTATTCAGATGGCTAAACATCAAG
GAGTGAGAGTATTTGTCACAGCAGCTGCTTGCAAAGAGCTCGGAGCGGACGTTTGTATAAATTACAAAAC
CGAGGACTTTGTGGCAAGGGTGAAAGCTGAAACAGATGGGAAAGGTGTGGATGTTATCTTGGACTGCATT
GGAGCGCCGTATCTGCAGAAAAACCTGGACAGCTTAAACTTCGATGGAAGGTTATGTATCATCGGTTTAA
TGGGAGGAGCCAACGCAGAGATAAAACTAAGTAGTCTGCTTCCAAAGCGTCTCACTGTCTTAGGAGCTGC
GTTAAGACCAAGAAGCAAGGAGAACAAAGCGGTTGTTGTGGCGGAAGTGGAGAAGATTGTTTGGCCAGCG
ATAGAAGCAGGGAAGGTGAAACCAGTGATTTACAAATACTTACCGTTGTCGCAAGCAGCAGAAGCTCATA
GCCTGATGGAGAGTAGTAGCCATATTGTGAGGCGAGCAGCTGAATCAATTTTGGAAGAGCAAGATCAAAA
CTTTGTGAAGTATGAATTCCTCATCCACGGAGCTTTGAGCTGGGGCAAAGAAGGCCACTACACCGTCTGC
AAAATAGCCGAGAGCTACTTTGAGGAAGAAACTGTAGCTGCGGTGAAGAAACTTCTACCTGAATCAGCTC
AAGGAGACTTAGCTTCCGTTTGTTCATGGCCTGATGAGATCAAACACCATTGGCAGTGGCGTTGGACTAG
CCCTTTGCACTATGTTGACACTCCTGATTACAGATGCAACTACGAGTATTGCCGGGATTGTCATGATACT
CATAAGCATCAAGACAGGTGTGTGACTGGAGCCATTTTTAATTACACGATGCAGCTTATGTCGGGTTCTG
AAAACTCGAGGAGGATAGTCCACTACAACTTGACAGAGGCTCTTATGTTCTTATCACATTATATCGGGGA
TGTTCACCAGCCTTTGCATGTTGGTTTCCTGGGAGATGAAGGTGGAAACACTATAACAGTCCGCTGGTAC
CGTCGCAAAACAAATTTGCACCATGTGTGGGATAACATGATAATTGAGTCAGCTCTTAAAACATACTACA
ATAAGAGTCTTCCACTCATGATTCAAGCACTACAAGCCAATCTTACTCATGGCTGGTCAAATGATGTTCC
GTCGTGGGAATCATGTCAACTTAACCAAACGGCATGTCCAAATTCGTATGCATCTGAGAGCATAAGTCTG
GCCTGCAAGTATGCTTACAGGAACGCTACCCCAGGAACTACTTTAGGAGATGACTATTTTCTCTCTCGGT
TACCCATTGTGGAGAAGAGACTTGCACAAGGTGGGATTCGCTTGGCGGCCACTCTGAACCGGATCTTTTC
TTCAAAACCTAAGCTTGCTGCAGCATGA
Downstream Sequence
GTAGTAATAAGATTAAGAAAAGATCACATCTTTGAATGCTTATTACAGTTTGCATTGTGT
TGCTTTCACTTTGCTTAGATTAAAGTTTTGAACTTTTTGATTTTTTTGTTTTCTATGTCT
CCAGGTGTGTGCTCTTCTCTCTGGAGGAGGTTACGCAGAGAAAGTTGCTGTACCTGTTGG
ACAAGTCCTTCCAATACCCGCTGGTATCTCTCTAAAAGATGCAGCTGCTTTCCCTGAAGT
GGCGTGCACTGTTTGGTCTACTGTCTTCATGATGGGCCGTCTCTCCCCTGCTGAATCCTT
CTTGGTATTTTCACTTCTCCCTGTTGCTATGACGCCATGTATATGCTCATGGCAATGTGA
GAAGCTGTTGAGTATTCCTTTATTTCAGTGTGTGATTGCTTCATAAAAAACTACTTCTTT
GGCTATGATTTTATAATGAGTGAATGATTCTGCGGATTTTGAAGTGACGAGTCATATTAC
TGGGACTATTAGAAGCAATTACTTCACTTTCTGTTTCTGTGTGTGTTTAGTGTTCTTGTC
TAGCTCCTTGCTAATGTTGATAGTTGCTGATATTTTAGGTTCATGGAGGTTCAAGTGGGA
TTGGTACATTTGCTATTCAGATGGCTAAACATCAAGGAGTGAGAGTATTTGTCACAGCAG
GTTTTGGTCTAAAGCTTCTGTTAATGAACAACCTTCTCATTTGTTGACAATTTTCTAATT
TTTGTTTTGACTAACATGAAACGAGGAGAAGCTAGCTGCTTGCAAAGAGCTCGGAGCGGA
CGTTTGTATAAATTACAAAACCGAGGACTTTGTGGCAAGGGTGAAAGCTGAAACAGATGG
GAAAGGTGTGGATGTTATCTTGGACTGCATTGGAGCGCCGTATCTGCAGAAAAACCTGGA
CAGCTTAAACTTCGATGGAAGGTTATGTATCATCGGTTTAATGGGAGGAGCCAACGCAGA
GATAAAACTAAGTAGTCTGCTTCCAAAGCGTCTCACTGTCTTAGGTACTCAAACACACAA
TCAATCAATCAAAATCCATATCCTATTGTAAATATTGATCTGTTTTTTGTTCTTACAGGA
GCTGCGTTAAGACCAAGAAGCAAGGAGAACAAAGCGGTTGTTGTGGCGGAAGTGGAGAAG
ATTGTTTGGCCAGCGATAGAAGCAGGGAAGGTGAAACCAGTGATTTACAAATACTTACCG
TTGTCGCAAGCAGCAGAAGCTCATAGCCTGATGGAGAGTAGTAGCCATATTGGTAAGATT
CTACTTGTTACTTGATAATCTCAGCAAAAGGGAGAAAGAAAATGTTCAGAGACACGAATC
ATGGAGGAAAATAATAAAGTCTGGTGGGTTGTGTTCATAGATGTACAAGAGTCTGTTCAT
TGGCTTTTATGTATCTCTGTGTTTTGGACTATGTAACTATGGAACATATATATCAATAAG
CTGTCTACACTTAAGTATTATGTTAACTTCTTCATATTCGGCAAAATATATTATGTTGTA
TATTCAAGAAACTATGGTCAAAATCAGTAAGAAACTATGGTTAAAATGAGATATATTTTT
GTTTAACAAGAAGCCATAAAGCCATATGGGCTATGAAGTTCATGAAAGTTTCATGTACAT
TGATGGTTTTTGCAACCGACTGTTCTTAACTGATGAGGATTAATGTCTATACCAAGGGAA
TAACCACCGATTTTCTCTTTTCACATGAATGAATTTCAACTATATAAAGAGTTTTTTCAT
AACTTTATGTGTTTGCAGTTTACGTTCAGCTATGGAATATAATAAGGAAAAGAAATGAAG
TGATATGACCAACAAATAATGAAATGATATGAGAATTTTACTATatagtacaaatgatAT
GTTGTATCTTTTTATGCCAATTGGTTTTGAAATGAATTACTATTTTTAAGTAGTTGATTT
TGAGCATGAGAAAAAGTTGATTTTGAGCTTAAAAATATACATATAAATATTCAGTGAGGC
GAGCAGCTGAATCAATTTTG
Pro Sequence
MKAIVISEPGAPEVLQLREVEDPQVKDDEVLIRVHATALNRADTLQRLGS
YSPPPGSSPYPGLECSGTIESVGNSVSRWKVGDQVCALLSGGGYAEKVAV
PVGQVLPIPAGISLKDAAAFPEVACTVWSTVFMMGRLSPAESFLVHGGSS
GIGTFAIQMAKHQGVRVFVTAAACKELGADVCINYKTEDFVARVKAETDG
KGVDVILDCIGAPYLQKNLDSLNFDGRLCIIGLMGGANAEIKLSSLLPKR
LTVLGAALRPRSKENKAVVVAEVEKIVWPAIEAGKVKPVIYKYLPLSQAA
EAHSLMESSSHIVRRAAESILEEQDQNFVKYEFLIHGALSWGKEGHYTVC
KIAESYFEEETVAAVKKLLPESAQGDLASVCSWPDEIKHHWQWRWTSPLH
YVDTPDYRCNYEYCRDCHDTHKHQDRCVTGAIFNYTMQLMSGSENSRRIV
HYNLTEALMFLSHYIGDVHQPLHVGFLGDEGGNTITVRWYRRKTNLHHVW
DNMIIESALKTYYNKSLPLMIQALQANLTHGWSNDVPSWESCQLNQTACP
NSYASESISLACKYAYRNATPGTTLGDDYFLSRLPIVEKRLAQGGIRLAA
TLNRIFSSKPKLAAA
mRNA Sequence
ATGAAGGCGATCGTGATATCGGAGCCAGGAGCGCCGGAGGTTCTGCAACTCCGTGAAGTGGAAGACCCAC
AAGTGAAAGACGATGAGGTTCTCATCAGAGTTCACGCCACTGCTCTGAATCGCGCGGATACTCTCCAGAG
ACTTGGCTCTTACTCTCCACCACCTGGCTCTAGCCCTTACCCTGGTCTCGAGTGCTCCGGTACCATCGAA
TCCGTCGGCAACTCCGTCTCTCGTTGGAAGGTCGGAGACCAGGTGTGTGCTCTTCTCTCTGGAGGAGGTT
ACGCAGAGAAAGTTGCTGTACCTGTTGGACAAGTCCTTCCAATACCCGCTGGTATCTCTCTAAAAGATGC
AGCTGCTTTCCCTGAAGTGGCGTGCACTGTTTGGTCTACTGTCTTCATGATGGGCCGTCTCTCCCCTGCT
GAATCCTTCTTGGTTCATGGAGGTTCAAGTGGGATTGGTACATTTGCTATTCAGATGGCTAAACATCAAG
GAGTGAGAGTATTTGTCACAGCAGCTGCTTGCAAAGAGCTCGGAGCGGACGTTTGTATAAATTACAAAAC
CGAGGACTTTGTGGCAAGGGTGAAAGCTGAAACAGATGGGAAAGGTGTGGATGTTATCTTGGACTGCATT
GGAGCGCCGTATCTGCAGAAAAACCTGGACAGCTTAAACTTCGATGGAAGGTTATGTATCATCGGTTTAA
TGGGAGGAGCCAACGCAGAGATAAAACTAAGTAGTCTGCTTCCAAAGCGTCTCACTGTCTTAGGAGCTGC
GTTAAGACCAAGAAGCAAGGAGAACAAAGCGGTTGTTGTGGCGGAAGTGGAGAAGATTGTTTGGCCAGCG
ATAGAAGCAGGGAAGGTGAAACCAGTGATTTACAAATACTTACCGTTGTCGCAAGCAGCAGAAGCTCATA
GCCTGATGGAGAGTAGTAGCCATATTGTGAGGCGAGCAGCTGAATCAATTTTGGAAGAGCAAGATCAAAA
CTTTGTGAAGTATGAATTCCTCATCCACGGAGCTTTGAGCTGGGGCAAAGAAGGCCACTACACCGTCTGC
AAAATAGCCGAGAGCTACTTTGAGGAAGAAACTGTAGCTGCGGTGAAGAAACTTCTACCTGAATCAGCTC
AAGGAGACTTAGCTTCCGTTTGTTCATGGCCTGATGAGATCAAACACCATTGGCAGTGGCGTTGGACTAG
CCCTTTGCACTATGTTGACACTCCTGATTACAGATGCAACTACGAGTATTGCCGGGATTGTCATGATACT
CATAAGCATCAAGACAGGTGTGTGACTGGAGCCATTTTTAATTACACGATGCAGCTTATGTCGGGTTCTG
AAAACTCGAGGAGGATAGTCCACTACAACTTGACAGAGGCTCTTATGTTCTTATCACATTATATCGGGGA
TGTTCACCAGCCTTTGCATGTTGGTTTCCTGGGAGATGAAGGTGGAAACACTATAACAGTCCGCTGGTAC
CGTCGCAAAACAAATTTGCACCATGTGTGGGATAACATGATAATTGAGTCAGCTCTTAAAACATACTACA
ATAAGAGTCTTCCACTCATGATTCAAGCACTACAAGCCAATCTTACTCATGGCTGGTCAAATGATGTTCC
GTCGTGGGAATCATGTCAACTTAACCAAACGGCATGTCCAAATTCGTATGCATCTGAGAGCATAAGTCTG
GCCTGCAAGTATGCTTACAGGAACGCTACCCCAGGAACTACTTTAGGAGATGACTATTTTCTCTCTCGGT
TACCCATTGTGGAGAAGAGACTTGCACAAGGTGGGATTCGCTTGGCGGCCACTCTGAACCGGATCTTTTC
TTCAAAACCTAAGCTTGCTGCAGCATGA