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Detail for ZS11_C07G39240.t1

Genome:
ZS11: ZS11_C07G39240.t1
ZS11_v0: BnaC07T0310600ZS
WE: WE_C07G40010.t1
WE_v0: BnaC07T0303700WE
Darmor: C07p37060.1_BnaDAR
BH: BnaC07T326900BH
Quinta: BnaC07T0290000QU
ZS2: BnaC07T288400ZS2
SW: BnaC07T326200SW
Express61: C07p017830.1_BnaEXP
Xiaoyun: BnaC07G0324200XY
P202: BnaC07G075000P202.1
BL: BnaC07T326900BH
TA: BnaA06T344700TA
Da-Ae: Not available
RB: BnaC07T331800RB
No2127: BnaC07T0293500NO
P130: BnaC07G040880P130.1
Length: 196
KOG ID: KOG4530
KOG E-value: 1.170000e-126
KOG Score: 356.0
KOG Annotation: General function prediction only
Biological Process: -
Cellular Component: -
Molecular Function: GO:0016491(oxidoreductase activity)
KEGG Ortholog: K19784 chrR, NQR; chromate reductase, NAD(P)H dehydrogenase (quinone)
NR Protein: XP_013707464.1
NR E-value: 3.500000e-106
NR Score: 389.4
NR Annotation: XP_013707464.1 NADPH:quinone oxidoreductase [Brassica napus]
SwissProt Protein: Q9LK88|NQR_ARATH
SwissProt E-value: 4.970000e-126
SwissProt Score: 356.0
SwissProt Annotation: NADPH:quinone oxidoreductase OS=Arabidopsis thaliana OX=3702 GN=NQR PE=1 SV=1
CDS Sequence (599 bp)
ATGGAGGCAGTAACGGCGATGAAGCCACTGATCAAAGTCGCTGCAATCTCCGGTTCTCTCCGGAAAGGAT
CTTTCAACACCGGTCTCCTCCGCGCCGCGATGGAGTTGACGAAAGAATCGGTTCCGGGGTTGCAGATTGA
GCATATAGACATCTCTCCGTTGCCGTTGATCAACACCGATCTGGAATCCAACGGGACTTACCCTCCCGTC
GTCGAAGCTTTCCGGCAGAAGATACTTGAAGCCGACAGCATTCTATTCGCTTCCCCCGAGTACAATTTCT
CTGTCTCAGCTCCACTTAAGAACGCGATCGATTGGGCTTCAAGATCACCTAACGTTTGGGCTGACAAACC
TGCTGCCATCATAAGCACCGGTGGAGGTTTTGGTGGAGGAAGGTCGCAGTACCATCTTCGACAGATTGGA
GTGTTCCTTGATCTTCATTTCATCAACAAACCGGAGTTTACTCTCAATGCGTTTCAGCCGCCTCAGAAAT
TCGATGCAGGAGGAAACTTGGTCGATGAAGTGGCTAGGGAGAGGTTAAAACAAGTCCTTGTCTCGTTACA
GGCGTTTACTCTGCGACTTCAAGGTAAGTAG
Upstream Sequence
TAATCATTACAAGAAGAGCACTAGATAAGTGGAATCTCCTGTCTTTTCTATCGCTTCCTCCACCAAACTC
TAATCTCATCGTCTCCTTCTCAATCGGAGAAAAATGGAGGCAGTAACGGCGATGAAGCCACTGATCAAAG
TCGCTGCAATCTCCGGTTCTCTCCGGAAAGGATCTTTCAACACCGGTCTCCTCCGCGCCGCGATGGAGTT
GACGAAAGAATCGGTTCCGGGGTTGCAGATTGAGCATATAGACATCTCTCCGTTGCCGTTGATCAACACC
GATCTGGAATCCAACGGGACTTACCCTCCCGTCGTCGAAGCTTTCCGGCAGAAGATACTTGAAGCCGACA
GCATTCTATTCGCTTCCCCCGAGTACAATTTCTCTGTCTCAGCTCCACTTAAGAACGCGATCGATTGGGC
TTCAAGATCACCTAACGTTTGGGCTGACAAACCTGCTGCCATCATAAGCACCGGTGGAGGTTTTGGTGGA
GGAAGGTCGCAGTACCATCTTCGACAGATTGGAGTGTTCCTTGATCTTCATTTCATCAACAAACCGGAGT
TTACTCTCAATGCGTTTCAGCCGCCTCAGAAATTCGATGCAGGAGGAAACTTGGTCGATGAAGTGGCTAG
GGAGAGGTTAAAACAAGTCCTTGTCTCGTTACAGGCGTTTACTCTGCGACTTCAAGGTAAGTAGGTGGAG
GGCAGTTCTTGATCATTTGTGTGAGATTGATGTTCGTGTGATGAAAATAATGTCAGATTCTTGTGATAAG
AAGCAGTGTGTCATTGCCACTTGTCCTATGGAAATTTCTATTTCTCATTTATATCTATGTGTTTACATAT
ATGATACAACTATGTATATCAAACGAGTGATGCTTTTTGTTTCATTTTTTTTCTTTTAAATAAGACGTGA
ATAGATTTAGCATTGGAAATTCGGCT
Downstream Sequence
GGTTTATTCCTTTTCTTTAACACTCTCGTCCTCAATACTTGAGGTTTTCGTTTGCTTATA
ACGTTTGGGATTTTTATAATCAGCGATGGAGTTGACGAAAGAATCGGTTCCGGGGTTGCA
GATTGAGCATATAGACATCTCTCCGTTGCCGTTGATCAACACCGATCTGGAATCCAACGG
GACTTACCCTCCCGTCGTCGAAGCTTTCCGGCAGAAGATACTTGAAGCCGACAGCATTCT
ATTCGCTTCCCCCGAGTACAATTTCTCTGTCTCAGGTTACCCTTTTCATTCTTTGCCATT
AAGATTGTTTCTTTAGTTTGAGGTTTCTATCTGCTTAGCTCTGTGTATCAGAGATTTGAA
TAGACTCCATGGTTTTGGTTTACTACAAGACAGTATGTTTCTTTTGCCTTAATGTGTTGT
AGAAAGTAGTTAAGACATGTGATGTGAGTTGTCTGAAGAATCTAGTGTTATTGTTTTTTT
TTTTTTTAATCAAATCTTGTTTATCAACTATTCACCAATAAGTAAAAAGAAAAAAAACTA
TTCATCAGTAAGATACTGGTCCTTGGTCTATTAACCGTGTGATATTAGAAGGAGCTGACT
GAAACTACTGATTTGAGATTTAATAGTCTGATAAAATTTTGAAGACTCTCTAATGTTAAG
TTCCAAACTATATTGGTTTTGATGCAATGCTCTGTTTCCATCTGCTTAGCTTTGCAAACT
TCTGCTTAGTGTCGAGGACTGTAACATGTTTAATGTACTTGTTACTAATACCAGCTCCAC
TTAAGAACGCGATCGATTGGGCTTCAAGATCACCTAACGTTTGGGCTGACAAACCTGCTG
CCATCATAAGCACCGGTGGAGGTTTTGGTGGAGGAAGGTCGCAGTACCATCTTCGACAGA
TTGGAGTGTTCCTTGATCTTCATTTCATCAACAAACCGGAGTTTACTCTCAATGCGTTTC
AGCCGCCTCAGAAATTCGATGCAGGAGGAAACTTGGTCGATGAAGTGGCTAGGGAGAGGT
TAAAACAAGTCCTTGTCTCGTTACAGGCGTTTACTCTGCGACTTCAAGGTAAGTAGGTGG
AGGGCAGTTCTTGATCATTTGTGTGAGATTGATGTTCGTGTGATGAAAATAATGTCAGAT
TCTTGTGATAAGAAGCAGTGTGTCATTGCCACTTGTCCTATGGAAATTTCTATTTCTCAT
TTATATCTATGTGTTTACATATATGATACAACTATGTATATCAAACGAGTGATGCTTTTT
GTTTCATTTTTTTTCTTTTAAATAAGACGTGAATAGATTTAGCATTGGAAATTCGGCTAT
GAAACTAAAAATAGTTTTTAGATTTCTTATTTTAAATCTCAAGATACAATTATTAGTGTG
CGATAATAGCATTCCCACTGTTTTATAATATAAGTATTTTAAAGTTGTTTTTTGTTTTGT
TTTTAAGTATTTGTTATTTTTACATTTTTATGTAACTTATATATGTTAGATATTGTGTGA
CCAATTATCTAACTTTTTCATGATTAGTTGAATTATATTTAATTATCTTTTTAAGAAAAT
AAAATTTTGTTTAAGATCCACGCTTTAATGCAAATGAGGGAGCATGGAGGATCTTTTCTA
GTATCGAATTTCCACCTAATTTTCGAAATCCCACTTAGATAATTTGCACCCAAGTCATAA
AAGAGACAAATAAGTTAGTCATGAAGTGGAATCAATGATTTCGGTTAAAAACGCATGCAT
GAGTTTGGTCTCCACAACAGACTTTTGGAAATTACTCGGAAAGAAATGGTAAAATAGGAT
TTGGAAGTAGTGCAGCCAGGGAGTAATATTTATACAGTAGCTTTTAAAAATATTACTGTA
ACGTTGCAAATAGATTCTCAACCTTACATAGCTGCATCCACAAATTCAGAAAAAGCTCGT
CTATGATAACTACACTAATCTTTAATAATGATGTCGTCCAGTTAGGAATGTGTACTTCAT
TAGTTTACGCCTACGGAATG
Pro Sequence
MEAVTAMKPLIKVAAISGSLRKGSFNTGLLRAAMELTKESVPGLQIEHID
ISPLPLINTDLESNGTYPPVVEAFRQKILEADSILFASPEYNFSVSAPLK
NAIDWASRSPNVWADKPAAIISTGGGFGGGRSQYHLRQIGVFLDLHFINK
PEFTLNAFQPPQKFDAGGNLVDEVARERLKQVLVSLQAFTLRLQGK
mRNA Sequence
TAATCATTACAAGAAGAGCACTAGATAAGTGGAATCTCCTGTCTTTTCTATCGCTTCCTCCACCAAACTC
TAATCTCATCGTCTCCTTCTCAATCGGAGAAAAATGGAGGCAGTAACGGCGATGAAGCCACTGATCAAAG
TCGCTGCAATCTCCGGTTCTCTCCGGAAAGGATCTTTCAACACCGGTCTCCTCCGCGCCGCGATGGAGTT
GACGAAAGAATCGGTTCCGGGGTTGCAGATTGAGCATATAGACATCTCTCCGTTGCCGTTGATCAACACC
GATCTGGAATCCAACGGGACTTACCCTCCCGTCGTCGAAGCTTTCCGGCAGAAGATACTTGAAGCCGACA
GCATTCTATTCGCTTCCCCCGAGTACAATTTCTCTGTCTCAGCTCCACTTAAGAACGCGATCGATTGGGC
TTCAAGATCACCTAACGTTTGGGCTGACAAACCTGCTGCCATCATAAGCACCGGTGGAGGTTTTGGTGGA
GGAAGGTCGCAGTACCATCTTCGACAGATTGGAGTGTTCCTTGATCTTCATTTCATCAACAAACCGGAGT
TTACTCTCAATGCGTTTCAGCCGCCTCAGAAATTCGATGCAGGAGGAAACTTGGTCGATGAAGTGGCTAG
GGAGAGGTTAAAACAAGTCCTTGTCTCGTTACAGGCGTTTACTCTGCGACTTCAAGGTAAGTAGGTGGAG
GGCAGTTCTTGATCATTTGTGTGAGATTGATGTTCGTGTGATGAAAATAATGTCAGATTCTTGTGATAAG
AAGCAGTGTGTCATTGCCACTTGTCCTATGGAAATTTCTATTTCTCATTTATATCTATGTGTTTACATAT
ATGATACAACTATGTATATCAAACGAGTGATGCTTTTTGTTTCATTTTTTTTCTTTTAAATAAGACGTGA
ATAGATTTAGCATTGGAAATTCGGCT