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Detail for ZS11_C06G53690.t1

Genome:
ZS11: ZS11_C06G53690.t1
ZS11_v0: BnaC06T0446200ZS
WE: WE_A07G45080.t1
WE_v0: BnaC06T0472400WE
Darmor: C06p52880.1_BnaDAR
BH: BnaC06T479100BH
Quinta: BnaC06T0432500QU
ZS2: BnaC06T439600ZS2
SW: BnaC06T474800SW
Express61: C06p040560.1_BnaEXP
Xiaoyun: BnaC06G0450900XY
P202: BnaA07G021120P202.2
BL: BnaC06T479100BH
TA: BnaC06T449800TA
Da-Ae: Not available
RB: BnaC06T465200RB
No2127: BnaC06T0439400NO
P130: BnaA06G011100P130.1
Length: 242
KOG ID: KOG3256
KOG E-value: 1.330000e-161
KOG Score: 447.0
KOG Annotation: Energy production and conversion
Biological Process: -
Cellular Component: GO:0016020(membrane)
Molecular Function: GO:0016651(oxidoreductase activity, acting on NAD(P)H),GO:0051539(4 iron, 4 sulfur cluster binding)
KEGG Ortholog: K03941 NDUFS8; NADH dehydrogenase (ubiquinone) Fe-S protein 8 [EC:7.1.1.2]
NR Protein: XP_013591304.1
NR E-value: 1.300000e-97
NR Score: 361.3
NR Annotation: XP_013591304.1 PREDICTED: NADH dehydrogenase [ubiquinone] iron-sulfur protein 8-A, mitochondrial [Brassica oleracea var. oleracea]
SwissProt Protein: Q42599|NDS8A_ARATH
SwissProt E-value: 5.620000e-161
SwissProt Score: 447.0
SwissProt Annotation: NADH dehydrogenase [ubiquinone] iron-sulfur protein 8-A, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=At1g79010 PE=1 SV=1
CDS Sequence (739 bp)
ATGGCGTCGATGCTTGCTCGCAGGTCTCTGGATACTCTCCGTGCTCGACATCTCGTTTTGTCAGGGCAAG
CTTTGCAGGGATCTCATCTTTCTCGGCTGCAGTCCCGTGCTATTTCTTATGGCTCCAAGAAAGATGATGA
AGAAGAGGAGCAACTTGCTAAGGAAATCTCCAAGGACTGGAATACTGTCTTTGAACGGAGCATAAACACC
CTGTTTCTCACTGAAATGGTCCGTGGTTTGTCGTTGACCCTCAAGTACTTCTTTGATCCCAAAGTTACTA
TCAATTATCCATTCGAGAAGGGTCCACTGAGCCCTCGTTTCCGTGGTGAGCATGCTCTTCGACGTTATCC
TACTGGGGAGGAACGCTGCATTGCCTGCAAACTCTGCGAAGCTGTCTGTCCAGCTCAGGCAATTACAATA
GAAGCAGAAGAGCGAGAAGATGGAAGCCGCAGAACCACAAGGTACGACATCGACATGACAAAATGCATTT
ACTGTGGCTTCTGCCAAGAAGCTTGCCCCGTTGATGCAATCGTCGAAGGACCCAACTTCGAATTCGCAAC
CGAGACACACGAGGAGCTTCTGTATGACAAAGAAAAGCTGCTTGAGAATGGAGATCGATGGGAGACTGAG
ATCGCTGAGAATCTCAAATCAGAGAGTCTCTACCCTCCTTTGTGTGAATCAATTCAAAGCTCTATTAAGC
AGAGGACGGACGAGCTAATCAGGAGATGA
Upstream Sequence
ATGGCGTCGATGCTTGCTCGCAGGTCTCTGGATACTCTCCGTGCTCGACATCTCGTTTTGTCAGGGCAAG
CTTTGCAGGGATCTCATCTTTCTCGGCTGCAGTCCCGTGCTATTTCTTATGGCTCCAAGAAAGATGATGA
AGAAGAGGAGCAACTTGCTAAGGAAATCTCCAAGGACTGGAATACTGTCTTTGAACGGAGCATAAACACC
CTGTTTCTCACTGAAATGGTCCGTGGTTTGTCGTTGACCCTCAAGTACTTCTTTGATCCCAAAGTTACTA
TCAATTATCCATTCGAGAAGGGTCCACTGAGCCCTCGTTTCCGTGGTGAGCATGCTCTTCGACGTTATCC
TACTGGGGAGGAACGCTGCATTGCCTGCAAACTCTGCGAAGCTGTCTGTCCAGCTCAGGCAATTACAATA
GAAGCAGAAGAGCGAGAAGATGGAAGCCGCAGAACCACAAGGTACGACATCGACATGACAAAATGCATTT
ACTGTGGCTTCTGCCAAGAAGCTTGCCCCGTTGATGCAATCGTCGAAGGACCCAACTTCGAATTCGCAAC
CGAGACACACGAGGAGCTTCTGTATGACAAAGAAAAGCTGCTTGAGAATGGAGATCGATGGGAGACTGAG
ATCGCTGAGAATCTCAAATCAGAGAGTCTCTACCCTCCTTTGTGTGAATCAATTCAAAGCTCTATTAAGC
AGAGGACGGACGAGCTAATCAGGAGATGA
Downstream Sequence
CGTATGAATCAATCTCGTTCTCTCTCTCTCTCGTTTACTTCGATTTGTTTGGATTGCGTA
GAAATGAGGATTGGATTCTCACTCTCTGTCTCTCGTTTTGTTTTCGAATTGGACTAGGGA
TTGTATCTCAATCGATGTAGAGTTTTAGCTGGGTGATGGATGAATCATAAGAAGGAGAGT
TTATCATGATCTAGGTCTAAGCTAATCTTTATGTTTGTGTTACTGAGAGCGTTTTTTTTT
GCAAGTTTTCATTTTTTTCTATGGTGTGTGTAAGTTATGGTTAGTGCTCTTATTAACTTG
TCTTTGTTGGATAGGTTTTGTCAGGGCAAGCTTTGCAGGGATCTCATCTTTCTCGGCTGC
AGTCCCGTGCTATTTCTTATGGCTCCAAGAAAGGTATATATATTCTCGCCTCTGTTATTT
TTTTTTCAGGGATCTCTTAGTGAATCAGATTGAAGTGTGAGTTTTCCTCTTTCTATGGAC
CGTTGATTACTTATGTGTGTTTTCTGGTGCGTTGATGATGACTTGTGTGTTTGCTTCTTT
TATATTCAGATGATGAAGAAGAGGAGCAACTTGCTAAGGAAATCTCCAAGGACTGGAATA
CTGGTAttctaataTGATCTAGACGCCTTTTTTGTTTGTTTTCTTTTTTCTCATACTTAT
TCTCGCGGTTTTGCATTTTTTTTTGCAGTCTTTGAACGGAGCATAAACACCCTGTTTCTC
ACTGAAATGGTCCGTGGTTTGTCGTTGACCCTCAAGTACTTCTTTGATCCCAAAGTTACT
GTGAGTGACATCTCTCCCAGTCTTTTCAAATCTTCTGAATGAAAAGAAATCTGTATGATT
CTGAAGCTGTTTGTTTGTGTATGCAGATCAATTATCCATTCGAGAAGGGTCCACTGAGCC
CTCGTTTCCGTGGTGAGCATGCTCTTCGACGTTATCCTACTGGGGAGGAACGCTGCATTG
CCTGCAAACTCTGCGAAGCTGTGAGTCTTTAGATCTATGCTGAGGCGTAATTTAATGTTT
TCTTTGTATTCATAGCTCTTGCAAGGCATCTCAGGACGATGCGTACCTTTACATTGATTT
AACAAATATTGTTAACCCGTCATGCTGTGTTAAACCGGTTCTGCTTATATGGTTTATAAC
TCAGGATCATAGGCTGATGATGCCTATGGAGCTTATCCTAGTGGTTAGGAGAATCATTTA
ATTCGCTAGAACTCTGTAGAAATGCTCATATTTGCTGACAATCAATTGCTTAATGTGTGA
AGATCATATGGTATCTTAGACTGCAATGGTATAACTTCAGATTGTGATTTTGAGAGGGAT
ACTTTGTCTATTTAATCAGGTCTGTCCAGCTCAGGCAATTACAATAGAAGCAGAAGAGCG
AGAAGATGGAAGCCGCAGAACCACAAGGTCACTTATCCCCTTTACTTCAAATCCACTAAC
CATATGCTTTCTTTTCCACCATTTCGTGTGTAGTAATGATCTAAGACCCTCTACAGGTAC
GACATCGACATGACAAAATGCATTTACTGTGGCTTCTGCCAAGAAGCTTGCCCCGTTGAT
GCAATCGTCGAAGGACCCAACTTCGAATTCGCAACCGAGACACACGAGGTCAGGCTTATC
ACAAATTTTCTCTAAGACATAATAAATGATTCCGTGGCATGTAACATTGAACGTTGTGTA
TGTTCCACTTTCACAGGAGCTTCTGTATGACAAAGAAAAGCTGCTTGAGAATGGAGATCG
ATGGGAGACTGAGATCGCTGAGAATCTCAAATCAGAGAGTCTCTACCGTTGATGAGAGCA
GTCCTTTTTTTTACTTCATTtTTTTTTTTTTTTGTGAAAGAAATAAAAGACGAGTGCTTA
TGCGTTTGTTGTATAACCAGCTGTGTGGCtgtgtaattgaattgtttgtaaaaccacttt
gattccggtttaaccggttacgccaattatcgcatttcagacatgaaattaatatataTA
TTTTTTTTTGGGTTACTATT
Pro Sequence
MASMLARRSLDTLRARHLVLSGQALQGSHLSRLQSRAISYGSKKDDEEEE
QLAKEISKDWNTVFERSINTLFLTEMVRGLSLTLKYFFDPKVTINYPFEK
GPLSPRFRGEHALRRYPTGEERCIACKLCEAVCPAQAITIEAEEREDGSR
RTTRYDIDMTKCIYCGFCQEACPVDAIVEGPNFEFATETHEELLYDKEKL
LENGDRWETEIAENLKSESLYPPLCESIQSSIKQRTDELIRR
mRNA Sequence
ATGGCGTCGATGCTTGCTCGCAGGTCTCTGGATACTCTCCGTGCTCGACATCTCGTTTTGTCAGGGCAAG
CTTTGCAGGGATCTCATCTTTCTCGGCTGCAGTCCCGTGCTATTTCTTATGGCTCCAAGAAAGATGATGA
AGAAGAGGAGCAACTTGCTAAGGAAATCTCCAAGGACTGGAATACTGTCTTTGAACGGAGCATAAACACC
CTGTTTCTCACTGAAATGGTCCGTGGTTTGTCGTTGACCCTCAAGTACTTCTTTGATCCCAAAGTTACTA
TCAATTATCCATTCGAGAAGGGTCCACTGAGCCCTCGTTTCCGTGGTGAGCATGCTCTTCGACGTTATCC
TACTGGGGAGGAACGCTGCATTGCCTGCAAACTCTGCGAAGCTGTCTGTCCAGCTCAGGCAATTACAATA
GAAGCAGAAGAGCGAGAAGATGGAAGCCGCAGAACCACAAGGTACGACATCGACATGACAAAATGCATTT
ACTGTGGCTTCTGCCAAGAAGCTTGCCCCGTTGATGCAATCGTCGAAGGACCCAACTTCGAATTCGCAAC
CGAGACACACGAGGAGCTTCTGTATGACAAAGAAAAGCTGCTTGAGAATGGAGATCGATGGGAGACTGAG
ATCGCTGAGAATCTCAAATCAGAGAGTCTCTACCCTCCTTTGTGTGAATCAATTCAAAGCTCTATTAAGC
AGAGGACGGACGAGCTAATCAGGAGATGA