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Detail for ZS11_A03G03800.t1

Genome:
ZS11: ZS11_A03G03800.t1
ZS11_v0: BnaA03T0033600ZS
WE: WE_A10G30160.t1
WE_v0: BnaA03T0049500WE
Darmor: A03p03890.1_BnaDAR
BH: BnaA03T037800BH
Quinta: BnaA03T0033000QU
ZS2: BnaA03T032100ZS2
SW: BnaA10T281700SW
Express61: A10p024230.1_BnaEXP
Xiaoyun: BnaA10G0257600XY
P202: BnaA03G003090P202.1
BL: BnaA03T037800BH
TA: BnaC03T036700TA
Da-Ae: Not available
RB: BnaA03T037700RB
No2127: BnaA03T0036900NO
P130: BnaA03G003060P130.1
Length: 487
KOG ID: KOG2658
KOG E-value: Not available
KOG Score: 988.0
KOG Annotation: Energy production and conversion
Biological Process: -
Cellular Component: -
Molecular Function: GO:0051539(4 iron, 4 sulfur cluster binding),GO:0010181(FMN binding),GO:0051287(NAD binding)
KEGG Ortholog: K03942 NDUFV1; NADH dehydrogenase (ubiquinone) flavoprotein 1 [EC:7.1.1.2]
NR Protein: XP_009131078.1
NR E-value: 5.900000e-280
NR Score: 968.0
NR Annotation: XP_009131078.1 PREDICTED: NADH dehydrogenase [ubiquinone] flavoprotein 1, mitochondrial-like [Brassica rapa]
SwissProt Protein: Q9FNN5|NDUV1_ARATH
SwissProt E-value: Not available
SwissProt Score: 988.0
SwissProt Annotation: NADH dehydrogenase [ubiquinone] flavoprotein 1, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=At5g08530 PE=1 SV=1
CDS Sequence (1484 bp)
ATGGCACCCATGAGGGGGATTCTTGGCTTGCAGAGAGCAGTATCAATCTGGAAAGAGAGTAACAGATTGG
CTCCATCTTTGAGATCATTCAGCACCACCCAAGGTGCCTCCACTTCCGCCACTCCACAGCCACCACCACC
ACCTCCGCCTCCGGAAAAGACTCATTTCGGTGGTCTCAAGGATGAAGATCGGATTTTCACCAACCTCTAT
GGCCTACACGACCCTTTTCTCAAAGGGGCCATGAAGAGAGGTGATTGGCACAGGACCAAAGATTTGGTAC
TGAAAGGTACTGATTGGATTGTTAACGAGATGAAAAAGTCTGGTCTTCGTGGACGCGGTGGTGCTGGTTT
CCCTTCTGGTCTTAAGTGGTCTTTTATGCCTAAGGTTTCTGATGGACGTCCGTCTTATTTGGTTGTGAAC
GCTGATGAGAGTGAGCCGGGGACTTGTAAAGATAGGGAGATCATGCGTCATGACCCTCATAAGCTGTTGG
AAGGGTGTTTGATCGCTGGTGTTGGGATGAGAGCTAGCGCGGCGTATATTTACATCAGGGGTGAGTATGT
GAATGAGCGTTTGAATCTCGAGAAGGCTAGAAGGGAAGCTTATGCGGCTGGGCTCTTGGGGAAGAATGCG
TGTGGTTCTGGTTATGATTTCGATGTTTATATCCACTTTGGAGCTGGTGCGTACATTTGTGGTGAAGAGA
CAGCGCTTCTTGAGAGTCTCGAAGGGAAGCAAGGGAAGCCTAGGTTGAAGCCTCCGTTCCCTGCTAATGC
TGGTTTATATGGTTGTCCCACGACTGTCACCAATGTGGAAACAGTTGCTGTGTCTCCTACTATTCTAAGG
CGTGGACCTGAGTGGTTTTCGAGTTTCGGTAGGAAGAATAACGCTGGGACAAAGCTGTTTTGTATCTCAG
GGCATGTGAACAAGCCATGTACCGTTGAAGAGGAGATGAGCATACCTCTCAAGGAACTGATTGAGAGGCA
TTGTGGTGGCGTTAGGGGTGGATGGGACAACCTACTTGCTATCATTCCTGGAGGTTCCTCTGTCCCTTTG
ATTCCTAAGAACATATGCGAGGATGTGCTGATGGATTTCGATGCGCTCAAAGCTGTTCAGTCAGGGCTAG
GAACTGCAGCGGTGATTGTGATGGATAAATCAACCGATGTTGTTGATGCAATTTCAAGGCTCTCGTACTT
CTACAAGCATGAAAGCTGTGGGCAGTGCACTCCTTGCAGAGAAGGGACAGGTTGGCTTTGGATGATCATG
GAGAGGATGAAAGTTGGCAATGCAAAGCTGGAAGAGATTGATATGCTTCACGAGGTAACGAAGCAGATCG
AAGGACACACAATCTGTGCATTGGGAGATGCAGCTGCATGGCCCGTGCAAGGTCTGATAAGGCACTTTAG
GCCGGAGCTTGAGAGAAGGATCAGGGAACGTGCTGAAAGGGAGTTGCTACAGGCTGCTGCTTAA
Upstream Sequence
AAGCCCAATAAAGGCCTAGAAACATAGAAAGGTTAACGTCACGAAGACGCGGACTAATCTGAACCAAGCA
GTTATCTCGAGTTCGTCGGTCTCAGGTGCCGTTATCGCCTTCGTCCTCTACTTCCCCTCCGTGTAGCCTT
CTCGCTTAGAGGAACCAACACTAAGTCTCAGCTGTATTCATGGCACCCATGAGGGGGATTCTTGGCTTGC
AGAGAGCAGTATCAATCTGGAAAGAGAGTAACAGATTGGCTCCATCTTTGAGATCATTCAGCACCACCCA
AGGTGCCTCCACTTCCGCCACTCCACAGCCACCACCACCACCTCCGCCTCCGGAAAAGACTCATTTCGGT
GGTCTCAAGGATGAAGATCGGATTTTCACCAACCTCTATGGCCTACACGACCCTTTTCTCAAAGGGGCCA
TGAAGAGAGGTGATTGGCACAGGACCAAAGATTTGGTACTGAAAGGTACTGATTGGATTGTTAACGAGAT
GAAAAAGTCTGGTCTTCGTGGACGCGGTGGTGCTGGTTTCCCTTCTGGTCTTAAGTGGTCTTTTATGCCT
AAGGTTTCTGATGGACGTCCGTCTTATTTGGTTGTGAACGCTGATGAGAGTGAGCCGGGGACTTGTAAAG
ATAGGGAGATCATGCGTCATGACCCTCATAAGCTGTTGGAAGGGTGTTTGATCGCTGGTGTTGGGATGAG
AGCTAGCGCGGCGTATATTTACATCAGGGGTGAGTATGTGAATGAGCGTTTGAATCTCGAGAAGGCTAGA
AGGGAAGCTTATGCGGCTGGGCTCTTGGGGAAGAATGCGTGTGGTTCTGGTTATGATTTCGATGTTTATA
TCCACTTTGGAGCTGGTGCGTACATTTGTGGTGAAGAGACAGCGCTTCTTGAGAGTCTCGAAGGGAAGCA
AGGGAAGCCTAGGTTGAAGCCTCCGTTCCCTGCTAATGCTGGTTTATATGGTTGTCCCACGACTGTCACC
AATGTGGAAACAGTTGCTGTGTCTCCTACTATTCTAAGGCGTGGACCTGAGTGGTTTTCGAGTTTCGGTA
GGAAGAATAACGCTGGGACAAAGCTGTTTTGTATCTCAGGGCATGTGAACAAGCCATGTACCGTTGAAGA
GGAGATGAGCATACCTCTCAAGGAACTGATTGAGAGGCATTGTGGTGGCGTTAGGGGTGGATGGGACAAC
CTACTTGCTATCATTCCTGGAGGTTCCTCTGTCCCTTTGATTCCTAAGAACATATGCGAGGATGTGCTGA
TGGATTTCGATGCGCTCAAAGCTGTTCAGTCAGGGCTAGGAACTGCAGCGGTGATTGTGATGGATAAATC
AACCGATGTTGTTGATGCAATTTCAAGGCTCTCGTACTTCTACAAGCATGAAAGCTGTGGGCAGTGCACT
CCTTGCAGAGAAGGGACAGGTTGGCTTTGGATGATCATGGAGAGGATGAAAGTTGGCAATGCAAAGCTGG
AAGAGATTGATATGCTTCACGAGGTAACGAAGCAGATCGAAGGACACACAATCTGTGCATTGGGAGATGC
AGCTGCATGGCCCGTGCAAGGTCTGATAAGGCACTTTAGGCCGGAGCTTGAGAGAAGGATCAGGGAACGT
GCTGAAAGGGAGTTGCTACAGGCTGCTGCTTAAAAATCCTTGCTAACCACAGGGAATTTGCTATTATTCT
CCATGGAAATAAAATCTGAAGCATACTATTAGAGTTTTTGGGGGTTGCAAAGCTACTTGAGAAGGAGAAG
AAGGTAATGTGTATTTGTGTTGAATGCTTCATGTTAAAACTTTATTCAAGTTGTATCAGAAAGAGCTGTA
TTTGCTCTTTTGATTAGTCTTTCTTTCTTCAATGTTTGTTTGTTTTATTATGACTATATTGAGAGCACAT
TTTGGGAACAACCAAACAAAACCTTTTCATGTTTGAATAAAGGATGCTCCTTATTTTGGTTTAAA
Downstream Sequence
GGTACGTAATCAGTTTCATGCTCAGATGATCTTCGTTTTCATTTCTCGATCGCAAATGTT
AGGGTTTGTGGAATTAAAGACTTGATTTTTTTTGCAATTTTTTTTCTTCAAATTTTAGCT
GAATAATTGCAAAAGGTGGAGTCTTTTTCATATAGATCTAGCGGGTTGTTGTTGTTTTAT
AATTTAATTTAATTTAATTTGATCTGCTCATTGTTCTTTGAGATTATCGATGCTTTTGGG
GCAGATCATGCGTTTGAATGTTTGTTACTTTGAATCACCTTTGATAGGCACCCATGAGGG
GGATTCTTGGCTTGCAGAGAGCAGTATCAATCTGGAAAGAGAGTAACAGATTGGCTCCAT
CTTTGAGATCATTCAGCACCACCCAAGGTGCCTCCACTTCCGCCACTCCACAGCCACCAC
CACCACCTCCGCCTCCGGAAAAGACTCATTTCGGTGGTCTCAAGGATGAAGATCGGATTT
TCACCAACCTCTATGGCCTACACGACCCTTTTCTCAAAGGGGCCATGAAGAGAGGTGATT
GGCACAGGACCAAAGATTTGGTACTGAAAGGTACTGATTGGATTGTTAACGAGATGAAAA
AGTCTGGTCTTCGTGGACGCGGTGGTGCTGGTTTCCCTTCTGGTCTTAAGTGGTCTTTTA
TGCCTAAGGTTTCTGATGGACGTCCGTCTTATTTGGTTGTGAACGCTGATGAGAGTGAGC
CGGGGACTTGTAAAGATAGGGAGATCATGCGTCATGACCCTCATAAGCTGTTGGAAGGGT
GTTTGATCGCTGGTGTTGGGATGAGAGCTAGCGCGGCGTATATTTACATCAGGGGTGAGT
ATGTGAATGAGCGTTTGAATCTCGAGAAGGCTAGAAGGGAAGCTTATGCGGCTGGGCTCT
TGGGGAAGAATGCGTGTGGTTCTGGTTATGATTTCGATGTTTATATCCACTTTGGAGCTG
GTGCGTACATTTGTGGTGAAGAGACAGCGCTTCTTGAGAGTCTCGAAGGGAAGCAAGGGA
AGCCTAGGTTGAAGCCTCCGTTCCCTGCTAATGCTGGTTTATATGGTTGTCCCACGACTG
TCACCAATGTGGAAACAGTTGCTGTGTCTCCTACTATTCTAAGGCGTGGACCTGAGTGGT
TTTCGAGTTTCGGTAGGAAGAATAACGCTGGGACAAAGCTGTTTTGTATCTCAGGGCATG
TGAACAAGCCATGTACCGTTGAAGAGGAGATGAGCATACCTCTCAAGGAACTGATTGAGA
GGCATTGTGGTGGCGTTAGGGGTGGATGGGACAACCTACTTGCTATCATTCCTGGAGGTT
CCTCTGTCCCTTTGATTCCTAAGAACATATGCGAGGATGTGCTGATGGATTTCGATGCGC
TCAAAGCTGTTCAGTCAGGGCTAGGAACTGCAGCGGTGATTGTGATGGATAAATCAACCG
ATGTTGTTGATGCAATTTCAAGGCTCTCGTACTTCTACAAGCATGAAAGCTGTGGGCAGT
GCACTCCTTGCAGAGAAGGGACAGGTTGGCTTTGGATGATCATGGAGAGGATGAAAGTTG
GCAATGCAAAGCTGGAAGAGATTGATATGCTTCACGAGGTAACGAAGCAGATCGAAGGAC
ACACAATCTGTGCATTGGGAGATGCAGCTGCATGGCCCGTGCAAGGTCTGATAAGGCACT
TTAGGCCGGAGCTTGAGAGAAGGATCAGGGAACGTGCTGAAAGGGAGTTGCTACAGGCTG
CTGCTTAAAAATCCTTGCTAACCACAGGTTTGCATCTTCATTTTTTTTTTATCTCTTTTT
AATTTCTTGTTGCAAACTTAAAAGAAAAAATATTTAGATTTCACCTAGGTAAAAATGGTA
AGAGTTTTGTATGTCACTCTATTTCACTCTCTAGTCTCTCTTGGTTCTTCATAGTCTAAT
ATGCCTTTTGCAGGGAATTTGCTATTATTCTCCATGGAAATAAAATCTGAAGCATACTAT
TAGAGTTTTTGGGGGTTGCA
Pro Sequence
MAPMRGILGLQRAVSIWKESNRLAPSLRSFSTTQGASTSATPQPPPPPPP
PEKTHFGGLKDEDRIFTNLYGLHDPFLKGAMKRGDWHRTKDLVLKGTDWI
VNEMKKSGLRGRGGAGFPSGLKWSFMPKVSDGRPSYLVVNADESEPGTCK
DREIMRHDPHKLLEGCLIAGVGMRASAAYIYIRGEYVNERLNLEKARREA
YAAGLLGKNACGSGYDFDVYIHFGAGAYICGEETALLESLEGKQGKPRLK
PPFPANAGLYGCPTTVTNVETVAVSPTILRRGPEWFSSFGRKNNAGTKLF
CISGHVNKPCTVEEEMSIPLKELIERHCGGVRGGWDNLLAIIPGGSSVPL
IPKNICEDVLMDFDALKAVQSGLGTAAVIVMDKSTDVVDAISRLSYFYKH
ESCGQCTPCREGTGWLWMIMERMKVGNAKLEEIDMLHEVTKQIEGHTICA
LGDAAAWPVQGLIRHFRPELERRIRERAERELLQAAA
mRNA Sequence
AAGCCCAATAAAGGCCTAGAAACATAGAAAGGTTAACGTCACGAAGACGCGGACTAATCTGAACCAAGCA
GTTATCTCGAGTTCGTCGGTCTCAGGTGCCGTTATCGCCTTCGTCCTCTACTTCCCCTCCGTGTAGCCTT
CTCGCTTAGAGGAACCAACACTAAGTCTCAGCTGTATTCATGGCACCCATGAGGGGGATTCTTGGCTTGC
AGAGAGCAGTATCAATCTGGAAAGAGAGTAACAGATTGGCTCCATCTTTGAGATCATTCAGCACCACCCA
AGGTGCCTCCACTTCCGCCACTCCACAGCCACCACCACCACCTCCGCCTCCGGAAAAGACTCATTTCGGT
GGTCTCAAGGATGAAGATCGGATTTTCACCAACCTCTATGGCCTACACGACCCTTTTCTCAAAGGGGCCA
TGAAGAGAGGTGATTGGCACAGGACCAAAGATTTGGTACTGAAAGGTACTGATTGGATTGTTAACGAGAT
GAAAAAGTCTGGTCTTCGTGGACGCGGTGGTGCTGGTTTCCCTTCTGGTCTTAAGTGGTCTTTTATGCCT
AAGGTTTCTGATGGACGTCCGTCTTATTTGGTTGTGAACGCTGATGAGAGTGAGCCGGGGACTTGTAAAG
ATAGGGAGATCATGCGTCATGACCCTCATAAGCTGTTGGAAGGGTGTTTGATCGCTGGTGTTGGGATGAG
AGCTAGCGCGGCGTATATTTACATCAGGGGTGAGTATGTGAATGAGCGTTTGAATCTCGAGAAGGCTAGA
AGGGAAGCTTATGCGGCTGGGCTCTTGGGGAAGAATGCGTGTGGTTCTGGTTATGATTTCGATGTTTATA
TCCACTTTGGAGCTGGTGCGTACATTTGTGGTGAAGAGACAGCGCTTCTTGAGAGTCTCGAAGGGAAGCA
AGGGAAGCCTAGGTTGAAGCCTCCGTTCCCTGCTAATGCTGGTTTATATGGTTGTCCCACGACTGTCACC
AATGTGGAAACAGTTGCTGTGTCTCCTACTATTCTAAGGCGTGGACCTGAGTGGTTTTCGAGTTTCGGTA
GGAAGAATAACGCTGGGACAAAGCTGTTTTGTATCTCAGGGCATGTGAACAAGCCATGTACCGTTGAAGA
GGAGATGAGCATACCTCTCAAGGAACTGATTGAGAGGCATTGTGGTGGCGTTAGGGGTGGATGGGACAAC
CTACTTGCTATCATTCCTGGAGGTTCCTCTGTCCCTTTGATTCCTAAGAACATATGCGAGGATGTGCTGA
TGGATTTCGATGCGCTCAAAGCTGTTCAGTCAGGGCTAGGAACTGCAGCGGTGATTGTGATGGATAAATC
AACCGATGTTGTTGATGCAATTTCAAGGCTCTCGTACTTCTACAAGCATGAAAGCTGTGGGCAGTGCACT
CCTTGCAGAGAAGGGACAGGTTGGCTTTGGATGATCATGGAGAGGATGAAAGTTGGCAATGCAAAGCTGG
AAGAGATTGATATGCTTCACGAGGTAACGAAGCAGATCGAAGGACACACAATCTGTGCATTGGGAGATGC
AGCTGCATGGCCCGTGCAAGGTCTGATAAGGCACTTTAGGCCGGAGCTTGAGAGAAGGATCAGGGAACGT
GCTGAAAGGGAGTTGCTACAGGCTGCTGCTTAAAAATCCTTGCTAACCACAGGGAATTTGCTATTATTCT
CCATGGAAATAAAATCTGAAGCATACTATTAGAGTTTTTGGGGGTTGCAAAGCTACTTGAGAAGGAGAAG
AAGGTAATGTGTATTTGTGTTGAATGCTTCATGTTAAAACTTTATTCAAGTTGTATCAGAAAGAGCTGTA
TTTGCTCTTTTGATTAGTCTTTCTTTCTTCAATGTTTGTTTGTTTTATTATGACTATATTGAGAGCACAT
TTTGGGAACAACCAAACAAAACCTTTTCATGTTTGAATAAAGGATGCTCCTTATTTTGGTTTAAA