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Detail for ZS11_A01G18240.t1

Genome:
ZS11: ZS11_A01G18240.t1
ZS11_v0: BnaA01T0163200ZS
WE: WE_A01G19030.t1
WE_v0: BnaA01T0083900WE
Darmor: A01p18140.1_BnaDAR
BH: BnaA01T180300BH
Quinta: BnaA01T0111100QU
ZS2: BnaA01T175300ZS2
SW: BnaA01T180600SW
Express61: A01p016400.1_BnaEXP
Xiaoyun: BnaA01G0169700XY
P202: BnaA01G012570P202.1
BL: BnaA01T180300BH
TA: BnaA01T175600TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g16470D
RB: BnaA01T180100RB
No2127: BnaA01T0131600NO
P130: BnaA01G015720P130.1
Length: 185
KOG ID: -
KOG E-value: Not available
KOG Score: Not available
KOG Annotation: -
Biological Process: GO:0032981(mitochondrial respiratory chain complex I assembly)
Cellular Component: GO:0016020(membrane)
Molecular Function: -
KEGG Ortholog: K18160 NDUFAF2; NADH dehydrogenase [ubiquinone] 1 alpha subcomplex assembly factor 2
NR Protein: XP_022573217.1
NR E-value: 1.800000e-99
NR Score: 367.1
NR Annotation: XP_022573217.1 uncharacterized protein LOC106444875 isoform X2 [Brassica napus]
SwissProt Protein: -
SwissProt E-value: Not available
SwissProt Score: Not available
SwissProt Annotation: -
CDS Sequence (565 bp)
ATGTCGAGGCTATGGGGGAGAGTTGCCGGAATGTTCAGAAGCAAGAGTTTCATCGGAGCAGACATGACTG
GTAACAAGTACTTCTCCAGAACGGAGCAGATTGACGGTCTGGTGAAGGAGAAAAGATGGGTTGTCTTTAG
ACGAGAAGAGGACCCAACCTCTATTCCTGTTGAATGGATATGTTGGCTCAATGGGCAGCGGAAAAGAGCT
CCTACTCCTGAGGAAATGGCTGAACTTGATGCAAGGCGTGAGCGTGTGAAGCTTAATGTTGCTCTTCTCA
AGAAAGAAGAGGAGGAGAAGAAAGCTAGAGAAGGAACTGGACGCAAAATCACGAGCATCGGTAAAGCTGA
GGGTCCAGAATTGACAAGCTTTGTTCGCCATTTCCCAGCGGATTCAAAAGGTGATAAACCAGATGAAGCT
AGTAAAGAAGCAGATCAATCAAGGGTCAAGGAACATGAACCCGAGATAGTTACTGCAGAACCACCTGAAC
CAAAGACAACAGAGCCATCAGGGTCTGGATCATCATTTAGGCCCGGGACATGGCAGCCCCCATCCTAA
Upstream Sequence
CACCTCTGATAGGAGAACAATTCTTCTGGGACCATAGAAAAGAAAGCAAAATGTCGAGGCTATGGGGGAG
AGTTGCCGGAATGTTCAGAAGCAAGAGTTTCATCGGAGCAGACATGACTGGTAACAAGTACTTCTCCAGA
ACGGAGCAGATTGACGGTCTGGTGAAGGAGAAAAGATGGGTTGTCTTTAGACGAGAAGAGGACCCAACCT
CTATTCCTGTTGAATGGATATGTTGGCTCAATGGGCAGCGGAAAAGAGCTCCTACTCCTGAGGAAATGGC
TGAACTTGATGCAAGGCGTGAGCGTGTGAAGCTTAATGTTGCTCTTCTCAAGAAAGAAGAGGAGGAGAAG
AAAGCTAGAGAAGGAACTGGACGCAAAATCACGAGCATCGGTAAAGCTGAGGGTCCAGAATTGACAAGCT
TTGTTCGCCATTTCCCAGCGGATTCAAAAGGTGATAAACCAGATGAAGCTAGTAAAGAAGCAGATCAATC
AAGGGTCAAGGAACATGAACCCGAGATAGTTACTGCAGAACCACCTGAACCAAAGACAACAGAGCCATCA
GGGTCTGGATCATCATTTAGGCCCGGGACATGGCAGCCCCCATCCTAAACACATCTCATTCTCACGTAGA
TAAACAACCAACTGATTTTTTGTGCAATCATC
Downstream Sequence
GCGAGTATTGTTCCTCCAATCTTACTGTCTTTGGTTTATGATCCGTGTCCAAAGGCTTGT
TTTTTTTTTTTTTCAATTCATGGGTTTGAATTCTGATTGATCAGCGATGCTTAAACGAGT
CCTATTCTATTCTACTTGTGATCGTGTAATAAGTACTGGTTTGATCATGTGTTTGATACT
CAGTACATATATGAAACTGACATAACTTATTTATAAACGTTTCTTGTATTGTGAAGTAAC
ATGTTCTGATTTTGCTTCTTTCTACTTTGCAGTGAAGGAGAAAAGATGGGTTGTCTTTAG
ACGAGAAGAGGACCCAACCTCTATTCCTGGTAACTTTCAAACTTCATCAAATTGCTTGTT
TCATGGTTTTGTTTGTATGTATGATCATATGTATATGTTCATTCTTTCTTGGGGTTTAAG
ATAGGCTTACACCTGATTATTTGCATAGATCTAGTTACATTTTTCTTGTTTGATCGATGT
TGTTGTAGTTGAATGGATATGTTGGCTCAATGGGCAGCGGAAAAGAGCTCCTACTCCTGA
GGTAAGAAAGATCAACTCCTCTTTCACCTGAATTATTTTGTAATGAGCATAGCGTTCTTC
ACGTTCATGGTTTCGTTGCATTTAGTTTCTGATGTTGTTGTTTCTTAATGGTCCAGGAAA
TGGCTGAACTTGATGCAAGGCGTGAGCGTGTGAAGCTTAATGTTGCTCGTATGTGTTTCC
AGATTCATTCCTTACAAGCTACCTATCCTTGTGTATTAGCGAGTCAAGAAATTTTTGTGC
GTTTTTATCTATTTGGTGTTGCTTCAATTTCGTTGAAAATGTTAATTGTTTTTTCTTTTG
CCTTCTCAAGTTCTCAAGAAAGAAGAGGAGGAGAAGAAAGCTAGAGAAGGAACTGGACGC
AAAATCACGAGCATCGGTAAATAACATTTAGAGAGTTCCCACAAAAGTTGTTCAATTTGT
TTTCTTCATTTAAGAAGTGGACACTTAATGTTGGCTCTCTTTGTATAAAGGTAAAGCTGA
GGGTCCAGAATTGACAAGCTTTGTTCGCCATTTCCCAGCGGATTCAAAAGGTACTACATT
TTCTCTGTGTCAATTGATTAAGGGATAAAGTGCTGAAGACTAGCCTCTTAGGTTTAGTGT
GATCTGATAAAAATTGTTACGGACAGGCATTTACACTTATAACTAAATCTATCTTGGTAA
AGTGTCTTTGGAATGACGTCCATATGCGTGATAAGAAATGCTTCTGAGGGAATTGGTGGA
TGATGCTTGTTCTGCTGTTCTGCGTGTATCTGTTGCAGTGATGATCAGAGTAGTTTTGTT
GTAACTTGAATGAGAAACATATTGTGCATTGCCTTGTGAAATTCTGTTGCTATGATAGTA
AAAGTGTTTCATGTACGTCCATTGTGGTTGGGATAGATTAGAAGGGCAATAACAGATTTT
TCACTGTCATTTGTTGATTCTTAGGGTGAGGTTCCTACAGTTGCTAGTTTTCGTATAACA
CAATAAAGAAATTTATTCTGCCATAAACTCATGAAAGCAGGACTGACAGATTTTTTTTGT
TTGTTAATGCTTTAAGGTGATAAACCAGATGAAGCTAGTAAAGAAGCAGATCAATCAAGG
TAAAATATCTATGCACACATCATATCTTGTGTTAAATCTTTTCATGCTGAATGGAAAACA
CAGCATCTTTCACACCATAAGCAAATGTTCTACACGTTGCTTTTACAGGGTCAAGGAACA
TGAACCCGAGATAGTTACTGCAGAACCACCTGAACCAAAGTAAGTCTACCTTTTTAAACC
TAACACACATATTAAGAGTGATGTATATTAAACTTTTAACTTCTTTCTAATTGTTACAGA
CCACTAGCAAGTAGAATCTGTTCTCTGTGCTAATATTTTTTTTTGGCATGCTTAAATCCA
GACTAATGACACTGATGATGATAATGCAGGACAACAGAGCCATCAGGGTCTGGATCATCA
TTTAGGCCCGGGACATGGCA
Pro Sequence
MSRLWGRVAGMFRSKSFIGADMTGNKYFSRTEQIDGLVKEKRWVVFRREE
DPTSIPVEWICWLNGQRKRAPTPEEMAELDARRERVKLNVALLKKEEEEK
KAREGTGRKITSIGKAEGPELTSFVRHFPADSKGDKPDEASKEADQSRVK
EHEPEIVTAEPPEPKTTEPSGSGSSFRPGTWQPPS
mRNA Sequence
CACCTCTGATAGGAGAACAATTCTTCTGGGACCATAGAAAAGAAAGCAAAATGTCGAGGCTATGGGGGAG
AGTTGCCGGAATGTTCAGAAGCAAGAGTTTCATCGGAGCAGACATGACTGGTAACAAGTACTTCTCCAGA
ACGGAGCAGATTGACGGTCTGGTGAAGGAGAAAAGATGGGTTGTCTTTAGACGAGAAGAGGACCCAACCT
CTATTCCTGTTGAATGGATATGTTGGCTCAATGGGCAGCGGAAAAGAGCTCCTACTCCTGAGGAAATGGC
TGAACTTGATGCAAGGCGTGAGCGTGTGAAGCTTAATGTTGCTCTTCTCAAGAAAGAAGAGGAGGAGAAG
AAAGCTAGAGAAGGAACTGGACGCAAAATCACGAGCATCGGTAAAGCTGAGGGTCCAGAATTGACAAGCT
TTGTTCGCCATTTCCCAGCGGATTCAAAAGGTGATAAACCAGATGAAGCTAGTAAAGAAGCAGATCAATC
AAGGGTCAAGGAACATGAACCCGAGATAGTTACTGCAGAACCACCTGAACCAAAGACAACAGAGCCATCA
GGGTCTGGATCATCATTTAGGCCCGGGACATGGCAGCCCCCATCCTAAACACATCTCATTCTCACGTAGA
TAAACAACCAACTGATTTTTTGTGCAATCATC