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Detail for ZS11_A03G05250.t1

Genome:
ZS11: ZS11_A03G05250.t1
ZS11_v0: BnaA03T0046100ZS
WE: WE_A10G27870.t1
WE_v0: BnaA03T0064800WE
Darmor: A03p05190.1_BnaDAR
BH: BnaA03T052700BH
Quinta: BnaA03T0044300QU
ZS2: BnaC03T052300ZS2
SW: BnaA03T052600SW
Express61: A03p004550.1_BnaEXP
Xiaoyun: BnaA03G0048100XY
P202: BnaA03G004080P202.1
BL: BnaA03T052700BH
TA: BnaC03T050200TA
Da-Ae: Not available
RB: BnaA03T045700RB
No2127: BnaA03T0048200NO
P130: BnaA03G004210P130.1
Length: 217
KOG ID: KOG1687
KOG E-value: 6.290000e-156
KOG Score: 431.0
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_013726039.1
NR E-value: 8.400000e-117
NR Score: 424.9
NR Annotation: XP_013726039.1 NADH dehydrogenase [ubiquinone] iron-sulfur protein 7, mitochondrial isoform X1 [Brassica napus]
SwissProt Protein: Q42577|NDUS7_ARATH
SwissProt E-value: 2.670000e-155
SwissProt Score: 431.0
SwissProt Annotation: NADH dehydrogenase [ubiquinone] iron-sulfur protein 7, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=At5g11770 PE=1 SV=1
CDS Sequence (663 bp)
ATGGCTATGATCACGCGCAACACTGTCACGCGCCTCCCTCTCCTCCTCCAATCTCAACGCGCCACCGCTG
CGGTCTCTCACATACACACATCCCTTCCCGCTCTCTCCCCCTCGACATCGCCGACTTCATACACCAGACC
AGGTCCTCCTTCGACCTCATCTCCTCCTCCGCCGGGTCTCTCGAAGACGGCGGAGTTCGTGATCTCGAAG
GTCGACGATCTCATGAACTGGGCTCGCAGGGGGTCGATCTGGCCCATGACCTTCGGCCTCGCGTGCTGCG
CCGTGGAAATGATGCATACCGGTGCTGCTCGCTACGATCTGGATCGATTCGGTATCATCTTTAGGCCTAG
TCCTCGTCAATCGGATTGTATGATTGTCGCCGGGACGCTTACTAACAAGATGGCTCCTGCTCTTCGCAAG
GTTTATGACCAGATGCCGGAGCCAAGGTGGGTGATTTCAATGGGAAGCTGCGCCAACGGAGGTGGATACT
ACCACTACTCCTACTCAGTGGTTCGAGGGTGCGACAGAATTGTCCCAGTGGACATCTACGTCCCTGGATG
CCCTCCAACCGCTGAGGCATTGCTCTATGGACTCCTCCAGCTTCAGAAGAAAATCAACAGGCGCAAGGAT
TTCTTGCACTGGTGGAACAAGTGA
Upstream Sequence
ATGGCTATGATCACGCGCAACACTGTCACGCGCCTCCCTCTCCTCCTCCAATCTCAACGCGCCACCGCTG
CGGTCTCTCACATACACACATCCCTTCCCGCTCTCTCCCCCTCGACATCGCCGACTTCATACACCAGACC
AGGTCCTCCTTCGACCTCATCTCCTCCTCCGCCGGGTCTCTCGAAGACGGCGGAGTTCGTGATCTCGAAG
GTCGACGATCTCATGAACTGGGCTCGCAGGGGGTCGATCTGGCCCATGACCTTCGGCCTCGCGTGCTGCG
CCGTGGAAATGATGCATACCGGTGCTGCTCGCTACGATCTGGATCGATTCGGTATCATCTTTAGGCCTAG
TCCTCGTCAATCGGATTGTATGATTGTCGCCGGGACGCTTACTAACAAGATGGCTCCTGCTCTTCGCAAG
GTTTATGACCAGATGCCGGAGCCAAGGTGGGTGATTTCAATGGGAAGCTGCGCCAACGGAGGTGGATACT
ACCACTACTCCTACTCAGTGGTTCGAGGGTGCGACAGAATTGTCCCAGTGGACATCTACGTCCCTGGATG
CCCTCCAACCGCTGAGGCATTGCTCTATGGACTCCTCCAGCTTCAGAAGAAAATCAACAGGCGCAAGGAT
TTCTTGCACTGGTGGAACAAGTGA
Downstream Sequence
AGTACGCCTCTCTACTTCTCTCTCTCTCCCTTTCCTATGGATCTCGGATATCACTGAGAG
TAGAATTACGTTTTCAGGAGATTATGATTGTGATTGTTGGAGTTATCTCTTTCCCGGCGA
TGTAGGTTTCATATATTCTGATTGTGTTGCTTGGTCCCTGTCAAATTGAGAGTTTCTGTA
TGAATATATGACTGACCTGGGAAGCCATATCGTTCATATTCATTGTCTAGCGCAGAGTTC
TTGAGAAATTTTGGTTTGAAATTCATTAACTTAGGTGAAATCTAGTATACAGAGATGAAG
AGTAGCTATATCAGTGTAACCTCTGTGCTCGTCTTTTGTGGTGGGGAGATAAGGGTTTCA
TATTCTCTAGCTTTGGGAAAAATGTGTTAGTGTCGTCTCAGCCATCATTGTAATTAGGTT
TTGTTGTTCCTTTTTTGCTGACTGTTTAAAATCGTGCTTGTTTGATGATTTTGCTTGGTT
GTCTTTGAGACCTGATGTCCATTTTATTACGAGTTGTATTGTTAATGGAAAATTGACACA
TGAGGGACTTGATTCGATTCCTATCTCTCTTGTTTGATGTTATGAACCCTTCATTCAACT
GCATATCTTTGTTTTTTTTTTGCCGAGAATCATGTTTCTTAAAAATTGTATGCGTAAGGT
TTTTGTTTAGGAAGCTGAGCTCAATGATGTCTTTATGCCCAAACATGTAGATATAGAAAA
TATCGCAAGTCAATGTAATAGCCACAAGTAACCACCTTGTGGCTATTACATTGTGGCGAT
TTCAACCACTGAGCCGAGCAAATATTAGTTGCATCTGAGAGATTATTTGACTGCTTTTTA
TGAATTGGTATATGTTAGTTCTTGTGCTGAAGAAACTATCAGTGTTTAGAGATAGGTTCT
GAACTCGTCTCTTCGAATTGCCTTTTTTGTCTGGTAGTATTGAGGGAAGTGTATATGTGG
ATCATCTCTGATAATTTAAAGGTTCATTAGAAAATGTCCCAAGTCAACCTCAAAACATCT
ACCACTTAGACGAGCAAAATTATATGCATTTTCACTAGATCAGTCATCATGTTGAGTAAC
CTATCAGTGATCGAACTGGTATTTAGAGATATGTTCATAACGCTCTATTCAAATCAGTCT
TGGATCTGGCAGAATTGGCGTAGTCTATGTGGATGTTTTTTAAAGCTGCTGTTCTTGTGT
ATCATGTTTGAAAGAAGTTCCTTGTTTCTAATATCTGGAAACAATGAGACAGGGTTTATG
ACCAGATGCCGGAGCCAAGGTGGGTGATTTCAATGGGAAGCTGCGCCAACGGAGGTGGAT
ACTACCACTACTCCTACTCAGTGGTTCGAGGGTGCGACAGAATTGTCCCAGTGGACATCT
ACGTCCCTGGATGCCCTCCAACCGCTGAGGCATTGCTCTATGGACTCCTCCAGCTTCAGA
AGAAAATCAACAGGCGCAAGGATTTCTTGCACTGGTGGAACAAGTGATCAAAAACCCTCC
TTACCAATGCCAAAGCGAGTTTTCGCTTTCAGCCGATTGTTACCAAAGGCTTGGGTCCAA
TAAAACGTGGACGTTTCAATGCAATGTTTCTTGTGATGGAGATACCAAGTACACTTCTAA
GTTTTTTGTGGAAAACTTGAATAAACATAAGATTATGTTgtctgagagttctttttgtta
tatctatcagtttatcagctaagattcttccgactcttgttaaattATTCGCATGTGTGT
GTAATTTATTTATGCATAGACGAGCCAGTGGGCCTAAAGATTCTTCTGATTAATTGGGCC
GTTAACGGTAGGCCCATAACAACCCTAACCATACAAAATTGAAAAAGCCCATCTTTTTCT
CATAATATAGAAAATCTATAAATACCAATCGGCCGCTCAAGCGACACAGTATATTGTTAA
CCATCACCCAATCAGTAACCGATCGTCGCCGAGAAAAGACGTAAGCAATGTCTAACGAGC
ACAAGAAAAGACTCGAGTCA
Pro Sequence
MAMITRNTVTRLPLLLQSQRATAAVSHIHTSLPALSPSTSPTSYTRPGPP
STSSPPPPGLSKTAEFVISKVDDLMNWARRGSIWPMTFGLACCAVEMMHT
GAARYDLDRFGIIFRPSPRQSDCMIVAGTLTNKMAPALRKVYDQMPEPRW
VISMGSCANGGGYYHYSYSVVRGCDRIVPVDIYVPGCPPTAEALLYGLLQ
LQKKINRRKDFLHWWNK
mRNA Sequence
ATGGCTATGATCACGCGCAACACTGTCACGCGCCTCCCTCTCCTCCTCCAATCTCAACGCGCCACCGCTG
CGGTCTCTCACATACACACATCCCTTCCCGCTCTCTCCCCCTCGACATCGCCGACTTCATACACCAGACC
AGGTCCTCCTTCGACCTCATCTCCTCCTCCGCCGGGTCTCTCGAAGACGGCGGAGTTCGTGATCTCGAAG
GTCGACGATCTCATGAACTGGGCTCGCAGGGGGTCGATCTGGCCCATGACCTTCGGCCTCGCGTGCTGCG
CCGTGGAAATGATGCATACCGGTGCTGCTCGCTACGATCTGGATCGATTCGGTATCATCTTTAGGCCTAG
TCCTCGTCAATCGGATTGTATGATTGTCGCCGGGACGCTTACTAACAAGATGGCTCCTGCTCTTCGCAAG
GTTTATGACCAGATGCCGGAGCCAAGGTGGGTGATTTCAATGGGAAGCTGCGCCAACGGAGGTGGATACT
ACCACTACTCCTACTCAGTGGTTCGAGGGTGCGACAGAATTGTCCCAGTGGACATCTACGTCCCTGGATG
CCCTCCAACCGCTGAGGCATTGCTCTATGGACTCCTCCAGCTTCAGAAGAAAATCAACAGGCGCAAGGAT
TTCTTGCACTGGTGGAACAAGTGA