SEARCH

DETAIL

Detail for ZS11_C02G45570.t1

Genome:
ZS11: ZS11_C02G45570.t1
ZS11_v0: BnaC02T0378400ZS
WE: WE_C02G49490.t1
WE_v0: BnaC02T0360400WE
Darmor: C02p43210.1_BnaDAR
BH: BnaC09T068300BH
Quinta: BnaC02T0330200QU
ZS2: BnaC09T210500ZS2
SW: BnaC09T198300SW
Express61: C02p048370.1_BnaEXP
Xiaoyun: BnaC09G0219200XY
P202: BnaC02G025850P202.1
BL: BnaC09T068300BH
TA: BnaA09T181400TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g02830D
RB: BnaC09T068900RB
No2127: BnaC02T0326500NO
P130: BnaC02G046690P130.1
Length: 233
KOG ID: KOG1502
KOG E-value: 4.410000e-117
KOG Score: 340.0
KOG Annotation: Defense mechanisms
Biological Process: -
Cellular Component: -
Molecular Function: -
KEGG Ortholog: K13082 DFR; bifunctional dihydroflavonol 4-reductase/flavanone 4-reductase [EC:1.1.1.219 1.1.1.234]
NR Protein: CDY21246.1
NR E-value: 1.500000e-108
NR Score: 397.5
NR Annotation: CDY21246.1 BnaC02g28770D [Brassica napus]
SwissProt Protein: P51102|DFRA_ARATH
SwissProt E-value: 1.870000e-116
SwissProt Score: 340.0
SwissProt Annotation: Dihydroflavonol 4-reductase OS=Arabidopsis thaliana OX=3702 GN=DFRA PE=1 SV=2
CDS Sequence (712 bp)
ATGGTTAGTCACAAAGAGACAGTGTGCGTGACTGGCGCATCGGGATTCATCGGTTCATGGCTCGTGATGC
GGCTACTCGAACGTGGTTACTTTGTCCGTGCTACTGTCCGCGACCCCATCCAACATCTTCTTGATTTGCC
AAAAGCCAACACGCAAGTTACTTTATGGAAAGCCGATTTATCTGACGAAGGAAGCTATGATGACGCCATA
AACGGATGCGATGGCGTTTTCCACAACGAAGTTATAAAACCGACAGTGAATGGAGTGTTGGGGATAATGA
AAGCATGTGCTAAGGCAAACACCGTACGAAGAATCGTGTTTACTTCGTCTATGTCTATATATGATGAAAA
CGATTGGAGTGATCTTGATTTTGTCATGTCCAAGAAGATGACAGGATGGACGTATTTCTTGTCGAAAACG
TTAGCAGAGAAAGCAGCGTGGAATTACGCGAACCTCATTACCGCACTCTCTCCTATCACACGGAACGAGG
CTCATTACTCGATCATAAGACACGGACAGACTAGACAGTATGTGTACTTGGACGACTTATGCAATGCTCA
TATATTCGTGTACGAACAAGGTGCTGCCAAGGGACGTTATGTTTGTTCCATGATGCAACAATTCTCACTA
TCTCCGAATTTCTTAGACAAAAATACCCAGAATAGAATAATAACTAGGTTGTTGGTAGAGATACCCATTT
GA
Upstream Sequence
ATGGTTAGTCACAAAGAGACAGTGTGCGTGACTGGCGCATCGGGATTCATCGGTTCATGGCTCGTGATGC
GGCTACTCGAACGTGGTTACTTTGTCCGTGCTACTGTCCGCGACCCCATCCAACATCTTCTTGATTTGCC
AAAAGCCAACACGCAAGTTACTTTATGGAAAGCCGATTTATCTGACGAAGGAAGCTATGATGACGCCATA
AACGGATGCGATGGCGTTTTCCACAACGAAGTTATAAAACCGACAGTGAATGGAGTGTTGGGGATAATGA
AAGCATGTGCTAAGGCAAACACCGTACGAAGAATCGTGTTTACTTCGTCTATGTCTATATATGATGAAAA
CGATTGGAGTGATCTTGATTTTGTCATGTCCAAGAAGATGACAGGATGGACGTATTTCTTGTCGAAAACG
TTAGCAGAGAAAGCAGCGTGGAATTACGCGAACCTCATTACCGCACTCTCTCCTATCACACGGAACGAGG
CTCATTACTCGATCATAAGACACGGACAGACTAGACAGTATGTGTACTTGGACGACTTATGCAATGCTCA
TATATTCGTGTACGAACAAGGTGCTGCCAAGGGACGTTATGTTTGTTCCATGATGCAACAATTCTCACTA
TCTCCGAATTTCTTAGACAAAAATACCCAGAATAGAATAATAACTAGGTTGTTGGTAGAGATACCCATTT
GA
Downstream Sequence
GTACGTATACATCTTCTCACAAACTCCTAAGATTATGTAAATAAATATGTATAACTTTCT
GTGGTTAATTAATTAACTAACGAATTTTATTGGACTATAAAGGAAATATGAAGAAAGTCC
TAGGGCGGGCAAATAAACCGAACCCGAAAATCCGAACCGAACCCGATCCGATGAAAATGA
ATCTGAACCGATCCGAACCCAACATAAATACCGAATGGATCTTGTTTTATGGTATTTTGG
GTTATGGGTATTATCCGAACCGAACCCGAAATTAAATGGATATCCGATAGAACCCGAAAC
ATTCAAAATGCCAAAAAAGAACTTGTACCAAACATGATTTCAATTCCTGATATGTAGCCA
AAATACACTAAGATATTATTAAACATCTACAATAACTGTCTACTACATGAAGGTTGATGG
TTGAAAGTGGCGGTTGAGGCTTGAAATTTTTAGATTTTGGTTTTATTTTCATTGAATAAT
TTTTTTCATTTCATGATAACTTAATTTTTCGTTTTATGATTTCATTTATTGGTTTTCTTT
CTATCAATAACAACATATACCTTTCATTTGACTTTGAATGATCATGTTTGATTTTTTTTC
TTATTTCTGAATCGATTTTACTTATGTTTTGGTTACAAAATAGGTACAAATCAAGTACTT
TAAACCCGAAGAACCGATTTTACTTATGTTTTGGTTACAAAATAGGTATAAATCAAGTAC
TTTAAAACCGAAGAACCGGATGGAACCCAAAACCCGAAAGAACACCGGGTTGTACCGGTT
CTTTGAAGATTTACTAACCCCGATCCGAACCCGATAAAACCCGAACCGGTCCCGAACCGA
ATTTTTATATAATCCGAATAGAGCTGATTTTGATAAACCCGAAAAACCGAGACCCGATTG
GACAAAACCGAAACCCGATTGGGACCCCGAATGCCCAGGCCTAGAAAGTCCAACATCTTC
TTGATTTGCCAAAAGCCAACACGCAAGTTACTTTATGGAAAGCCGATTTATCTGACGAAG
GAAGCTATGATGACGCCATAAACGGATGCGATGGCGTTTTCCACGTAGCAACACCCATGG
ATTTTGAACCAAAGGATCCTAAGGAGTGAGGTGAGTTATATTATGAAACTTTTGAGTTTA
TACCATCAACTCTAAATGATTTGTTGATTGAGTTTGTTTGAATCAGAACGAAGTTATAAA
ACCGACAGTGAATGGAGTGTTGGGGATAATGAAAGCATGTGCTAAGGCAAACACCGTACG
AAGAATCGTGTTTACTTCGTCTGCTGGAACGGTTAATGTCGAGGAACATGAAAAAGATGT
CTATATATGATGAAAACGATTGGAGTGATCTTGATTTTGTCATGTCCAAGAAGATGACAG
GATGGGTATATATATATTATAAATCATAGAGCAAATTAACACGAGGTTGATCTTCTTCAA
AGTAATTTGTGTTTTGATAAAATGTTTGGCAGACGTATTTCTTGTCGAAAACGTTAGCAG
AGAAAGCAGCGTGGAATTACGCGAAGTAAAAAGGAATAGATTTCATTAGTATTATCCCGA
CACTGGTGATCGGTCCATTCATAACAACATCTATTCCGCCTAGCCTCATTACCGCACTCT
CTCCTATCACACGTGAGCGCACTTTGTATCCCTTCTATTCTTCACCAGGAGCTATAAATG
TAGTTCCCCCTGCTAGGGACTAGGATGTTAATTAGTCTCTTCTATATTTTTAATTGGAAT
GTGAAAATATTAATATTTGTTTTACATCAAATGTGAAATGTTAATTTAAAGCCGTGAAAT
TTATTTAGGGAACGAGGCTCATTACTCGATCATAAGACACGGACAGACTAGACAGTATGT
GTACTTGGACGACTTATGCAATGCTCATATATTCGTGTACGAACAAGGTGCTGCCAAGGG
ACGTTATGTTTGTTCCATGATGCAACAATTCTCACTATCTCCGAATTTCTTAGACAAAAA
TACCCAGAATAGAATAATAA
Pro Sequence
MVSHKETVCVTGASGFIGSWLVMRLLERGYFVRATVRDPIQHLLDLPKAN
TQVTLWKADLSDEGSYDDAINGCDGVFHNEVIKPTVNGVLGIMKACAKAN
TVRRIVFTSSMSIYDENDWSDLDFVMSKKMTGWTYFLSKTLAEKAAWNYA
NLITALSPITRNEAHYSIIRHGQTRQYVYLDDLCNAHIFVYEQGAAKGRY
VCSMMQQFSLSPNFLDKNTQNRIITRLLVEIPI
mRNA Sequence
ATGGTTAGTCACAAAGAGACAGTGTGCGTGACTGGCGCATCGGGATTCATCGGTTCATGGCTCGTGATGC
GGCTACTCGAACGTGGTTACTTTGTCCGTGCTACTGTCCGCGACCCCATCCAACATCTTCTTGATTTGCC
AAAAGCCAACACGCAAGTTACTTTATGGAAAGCCGATTTATCTGACGAAGGAAGCTATGATGACGCCATA
AACGGATGCGATGGCGTTTTCCACAACGAAGTTATAAAACCGACAGTGAATGGAGTGTTGGGGATAATGA
AAGCATGTGCTAAGGCAAACACCGTACGAAGAATCGTGTTTACTTCGTCTATGTCTATATATGATGAAAA
CGATTGGAGTGATCTTGATTTTGTCATGTCCAAGAAGATGACAGGATGGACGTATTTCTTGTCGAAAACG
TTAGCAGAGAAAGCAGCGTGGAATTACGCGAACCTCATTACCGCACTCTCTCCTATCACACGGAACGAGG
CTCATTACTCGATCATAAGACACGGACAGACTAGACAGTATGTGTACTTGGACGACTTATGCAATGCTCA
TATATTCGTGTACGAACAAGGTGCTGCCAAGGGACGTTATGTTTGTTCCATGATGCAACAATTCTCACTA
TCTCCGAATTTCTTAGACAAAAATACCCAGAATAGAATAATAACTAGGTTGTTGGTAGAGATACCCATTT
GA