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Detail for ZS11_A02G04340.t1

Genome:
ZS11: ZS11_A02G04340.t1
ZS11_v0: BnaA02T0042000ZS
WE: WE_A10G27870.t1
WE_v0: BnaA02T0042300WE
Darmor: A02p01190.1_BnaDAR
BH: BnaA02T046700BH
Quinta: BnaA02T0039800QU
ZS2: BnaA02T043400ZS2
SW: BnaC03T051300SW
Express61: A02p003840.1_BnaEXP
Xiaoyun: BnaC02G0042100XY
P202: BnaA02G003060P202.1
BL: BnaA02T046700BH
TA: BnaA02T021500TA
Da-Ae: Not available
RB: BnaA02T046200RB
No2127: BnaA02T0041700NO
P130: BnaA02G003680P130.1
Length: 219
KOG ID: KOG1687
KOG E-value: 6.910000e-146
KOG Score: 406.0
KOG Annotation: Energy production and conversion
Biological Process: -
Cellular Component: -
Molecular Function: GO:0008137(NADH dehydrogenase (ubiquinone) activity),GO:0048038(quinone binding),GO:0051539(4 iron, 4 sulfur cluster binding),GO:0051536(iron-sulfur cluster binding)
KEGG Ortholog: K03940 NDUFS7; NADH dehydrogenase (ubiquinone) Fe-S protein 7 [EC:7.1.1.2]
NR Protein: XP_013679181.1
NR E-value: 1.600000e-123
NR Score: 447.2
NR Annotation: XP_013679181.1 NADH dehydrogenase [ubiquinone] iron-sulfur protein 7, mitochondrial-like [Brassica napus]
SwissProt Protein: P42027|NDUS7_BRAOL
SwissProt E-value: 7.220000e-154
SwissProt Score: 428.0
SwissProt Annotation: NADH dehydrogenase [ubiquinone] iron-sulfur protein 7, mitochondrial OS=Brassica oleracea OX=3712 PE=2 SV=1
CDS Sequence (669 bp)
ATGGCCATGCTCACGCGCAACGCCGCCACGCGCCTCCCTCTCCTCCTCCAATCTCAACGCGCCTCCGCCG
CCGCCGCCGCCGTCTCTCACATCCACACATCCCTCCCGTCCCTCTCCCCCTCGACATCACCAACATCCTA
CGCCCGTCCAGGCCCTCCTTCAACCTCCCCTCCTCCGCCGGGTCTCTCGAAGACGGCGGAGTTCGTGATC
TCCAAGGTCGACGACCTCATGAACTGGGCTCGCAGGGGATCGATCTGGCCCATGACGTTCGGCCTAGCCT
GCTGCGCCGTGGAGATGATGCACACCGGCGCCGCTCGCTACGATCTCGATCGGTTCGGTATCATCTTTAG
GCCGAGTCCTCGCCAATCGGATTGTATGATTGTCGCCGGGACACTTACTAACAAGATGGCTCCTGCTCTT
CGCAAGGTATATGATCAAATGCCGGAGCCAAGGTGGGTGATATCGATGGGAAGCTGCGCCAATGGAGGTG
GATACTATCACTACTCCTACTCGGTGGTTCGAGGGTGTGACAGGATTGTGCCAGTGGACATCTACGTCCC
TGGGTGTCCTCCAACCGCTGAGGCTTTGCTGTATGGACTCCTCCAGCTTCAGAAGAAAATCAACAGGCGC
AAGGATTTCTTGCATTGGTGGAACAAGTGA
Upstream Sequence
GTAAACGCTTTAAAGAGTTCACCTGGCCACCACAACTCCACGACAAAATGGCCATGCTCACGCGCAACGC
CGCCACGCGCCTCCCTCTCCTCCTCCAATCTCAACGCGCCTCCGCCGCCGCCGCCGCCGTCTCTCACATC
CACACATCCCTCCCGTCCCTCTCCCCCTCGACATCACCAACATCCTACGCCCGTCCAGGCCCTCCTTCAA
CCTCCCCTCCTCCGCCGGGTCTCTCGAAGACGGCGGAGTTCGTGATCTCCAAGGTCGACGACCTCATGAA
CTGGGCTCGCAGGGGATCGATCTGGCCCATGACGTTCGGCCTAGCCTGCTGCGCCGTGGAGATGATGCAC
ACCGGCGCCGCTCGCTACGATCTCGATCGGTTCGGTATCATCTTTAGGCCGAGTCCTCGCCAATCGGATT
GTATGATTGTCGCCGGGACACTTACTAACAAGATGGCTCCTGCTCTTCGCAAGGTATATGATCAAATGCC
GGAGCCAAGGTGGGTGATATCGATGGGAAGCTGCGCCAATGGAGGTGGATACTATCACTACTCCTACTCG
GTGGTTCGAGGGTGTGACAGGATTGTGCCAGTGGACATCTACGTCCCTGGGTGTCCTCCAACCGCTGAGG
CTTTGCTGTATGGACTCCTCCAGCTTCAGAAGAAAATCAACAGGCGCAAGGATTTCTTGCATTGGTGGAA
CAAGTGATCAAAGCTTTAAAGTCTCATCCTTCTTCCAATGTGAAAGGGAGAGTTTTTTTTTTAGACAAAG
GTTCGGGTAATAAAATGTGG
Downstream Sequence
AGTAAACGCCTCTCTTGAAAATCTCTGATCGTGGTTGTTGAATTGATGATAGAATCGTGT
AATTAGGGTTTCGTGATTTGGGATTGTTATCTGATTTAGGGTTCATTTAGTCTATGGCCA
TGTTCGTTTACCTATCACGCGACATGCCACCTGCGACATGTGACTGGTCGCAGTTTGTTG
TTCGTTTTCTTGTCGCGTAACCTGCGCATGCGATTGATCGCATGTCGCAAGTCGCAGTTA
GTTTTCCTGTCGTGTAACCTACGACATGCGCGATTGATCGCATGTCGCAAGTCGCAGGTT
GTTGTTCGTTTTGATGTCGCGCGATCGCGACCAGTCGCGGGTTCCATTCAAGTCGCCCGA
AAAAACAGCGACTAAAAATTAAGAAAATTTTGATCGCGCGACTGGTCGCAGATGTCGCAA
GTTGGGCGACACGTAAACGAACGTAATCTTAGTCGCAGGTCTCAGGTCGCGCGACCCGTA
AACTAACATGGCCAATGTGAATCGACTCAAATGTTTTTTTTTTAATTAAAGCTGTTGTTC
TTGTTTAATTTGTGTTCTAGTGTTTAATATATGGAAACAATGAGACAGGGTATATGATCA
AATGCCGGAGCCAAGGTGGGTGATATCGATGGGAAGCTGCGCCAATGGAGGTGGATACTA
TCACTACTCCTACTCGGTGGTTCGAGGGTGTGACAGGATTGTGCCAGTGGACATCTACGT
CCCTGGGTGTCCTCCAACCGCTGAGGCTTTGCTGTATGGACTCCTCCAGCTTCAGAAGAA
AATCAACAGGCGCAAGGATTTCTTGCATTGGTGGAACAAGTGATCAAAGCTTTAAAGTCT
CATCCTTCTTCCAATGTGAAAGGGAGAGTTTTTTTTTTAGACAAAGGTTCGGGTAATAAA
ATGTGGATGTTTCAGTGCATGTTTCTTTGTGGAGATGCCATGTAAACGAGTGATTTTTTT
ATAAGTTTTATGTGGATTCTTATTTATTGGATCTATTCACAAGCTCTTTGTTCTCCCTTC
TTTCGTTTAGTTAGAATGTTGTATTCATACCTTCTTGGTTAACACCAATAGTTGAAAAGG
ATTAACATATGGATGTTTATGAGTATTTCAATAAAATGATGTGTTTTGAAGAAAAAAGAG
ATTTAATTTTTATGTTGATTCAAAAATGGCACAACATTTGCTTTGTGGGGAACAATATGG
ATTGTTCAATAGAGTCCAATATGTGACTTAAGATCAAATCGTCACTAAAAAAACATCAAG
ACTTTTGTTTGAAGAGAGTAGACAACTTTCTTTTATGATTTGATTATTAAGGTGCTAATG
CTTCTTAAGAGCGTTCATCTTGTCTCTGAGGTAATAAAGTTTGGCTCTTCTTACTCTCTT
CTTGTCCAACACCTTAATCTCCCTCAGGTTTGGCGAATACCTGTGTCACCCCCCACACAT
ATAAGTTTCGCCTTTCGTTCATGCTATATCAAGCTCATAGTAAGTACAGTGTTAAAAGTA
CTTACAAGGGAAACATGGATTCGACACCGACTCCAGCAACAAGCCTTCTAATCCTAAAAG
TAGAGTTAAGACCAGCATTACGCCTCGCTATGACAATGCCTTTTACGATTGAAACACGCC
TCTTGTTCTCAGGCACTTCCTGTTTCAAACAACAAAGTTAAATGCACAATTCTGATATAC
ATCTCTACGAGTTCGATAGTAGTTACCACTTTAAGCTGCACAATGTAACCGGGCCTTATC
TCTGGTATCTCTCTACCATTTCTCACTTCCTCAACCGCCTCCTTGTCTACAATCTGCACA
AGATTGCGACTTTTGTAAACATGACAGCAGAGATTTATCACATTACCTAATCATCAAAAT
TCGAATTGTTGTACCTGCATTATATGCTTGGCGGTTTTATCAAGCCGCTTGAACTTGATT
CTCGGAGGCACATCAGGAGCTGACACAACAGGGAATCCTTGAGGAACAGAGTCTCCAACG
GTGGAAAAGCACCTCGACGA
Pro Sequence
MAMLTRNAATRLPLLLQSQRASAAAAAVSHIHTSLPSLSPSTSPTSYARP
GPPSTSPPPPGLSKTAEFVISKVDDLMNWARRGSIWPMTFGLACCAVEMM
HTGAARYDLDRFGIIFRPSPRQSDCMIVAGTLTNKMAPALRKVYDQMPEP
RWVISMGSCANGGGYYHYSYSVVRGCDRIVPVDIYVPGCPPTAEALLYGL
LQLQKKINRRKDFLHWWNK
mRNA Sequence
GTAAACGCTTTAAAGAGTTCACCTGGCCACCACAACTCCACGACAAAATGGCCATGCTCACGCGCAACGC
CGCCACGCGCCTCCCTCTCCTCCTCCAATCTCAACGCGCCTCCGCCGCCGCCGCCGCCGTCTCTCACATC
CACACATCCCTCCCGTCCCTCTCCCCCTCGACATCACCAACATCCTACGCCCGTCCAGGCCCTCCTTCAA
CCTCCCCTCCTCCGCCGGGTCTCTCGAAGACGGCGGAGTTCGTGATCTCCAAGGTCGACGACCTCATGAA
CTGGGCTCGCAGGGGATCGATCTGGCCCATGACGTTCGGCCTAGCCTGCTGCGCCGTGGAGATGATGCAC
ACCGGCGCCGCTCGCTACGATCTCGATCGGTTCGGTATCATCTTTAGGCCGAGTCCTCGCCAATCGGATT
GTATGATTGTCGCCGGGACACTTACTAACAAGATGGCTCCTGCTCTTCGCAAGGTATATGATCAAATGCC
GGAGCCAAGGTGGGTGATATCGATGGGAAGCTGCGCCAATGGAGGTGGATACTATCACTACTCCTACTCG
GTGGTTCGAGGGTGTGACAGGATTGTGCCAGTGGACATCTACGTCCCTGGGTGTCCTCCAACCGCTGAGG
CTTTGCTGTATGGACTCCTCCAGCTTCAGAAGAAAATCAACAGGCGCAAGGATTTCTTGCATTGGTGGAA
CAAGTGATCAAAGCTTTAAAGTCTCATCCTTCTTCCAATGTGAAAGGGAGAGTTTTTTTTTTAGACAAAG
GTTCGGGTAATAAAATGTGG