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Detail for ZS11_C08G21100.t1

Genome:
ZS11: ZS11_C08G21100.t1
ZS11_v0: BnaC08T0183900ZS
WE: WE_C08G23400.t1
WE_v0: BnaC08T0136200WE
Darmor: C08p11520.1_BnaDAR
BH: BnaC08T180300BH
Quinta: BnaC08T0142900QU
ZS2: BnaC08T158200ZS2
SW: BnaC08T173700SW
Express61: C08p013570.1_BnaEXP
Xiaoyun: BnaC08G0181000XY
P202: BnaC08G044770P202.1
BL: BnaC08T180300BH
TA: BnaA08T304600TA
Da-Ae: Not available
RB: BnaC08T177500RB
No2127: BnaC08T0153800NO
P130: BnaC08G026250P130.1
Length: 141
KOG ID: -
KOG E-value: Not available
KOG Score: Not available
KOG Annotation: -
Biological Process: -
Cellular Component: GO:0005749(mitochondrial respiratory chain complex II, succinate dehydrogenase complex (ubiquinone))
Molecular Function: -
KEGG Ortholog: -
NR Protein: XP_013600329.1
NR E-value: 2.300000e-75
NR Score: 286.6
NR Annotation: XP_013600329.1 PREDICTED: succinate dehydrogenase subunit 6, mitochondrial-like [Brassica oleracea var. oleracea]
SwissProt Protein: Q941A6|SDH6_ARATH
SwissProt E-value: 8.870000e-84
SwissProt Score: 244.0
SwissProt Annotation: Succinate dehydrogenase subunit 6, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=SDH6 PE=1 SV=1
CDS Sequence (432 bp)
ATGGGAGATTCGCGATCGTCTCTGGATAGATTCAAGGGGTTCTGGGAGGAGAGGTTATCGTTCCTGGAGA
ATTACACGAGGTTCACCAAACGTGACGCGCCTCTTCCTTCTTGGTCTTCCTCCGACGTCGACGAGTTCAT
AGCTTCCGATCCCGTCAATGGACCCACCCTGAAAACTGCTAGGGAAGCTGCGGCTTTTGGTGCTACTGGA
GCTGCACTTGGAGCTGTATCTACTGCTGCTTTTGCCTGGAAATACTCGAAGAGTCCACATGGTGCTGCAC
TGTCATTCTTAGGAGGAGGTCTTTTTGGTTGGACCTTTGGGCAAGAAGTCGCGAACCACACGATGCAACT
GTATAAGCTGGACACGATGGCTGCTCAAGTTAAGTTCATGGAATGGTGGGAACGCAAGTCTCAAGGAAGG
TCCTGA
Upstream Sequence
AGCGGCGTAGAGGAGCGACGCTCGTCTCCGATGGAATCAATCAGAACAAAAATAATCGATATCGATCTGA
GAAAGATAAAAGAGAGAAAGTGTGCGAAGAAGAATGGGAGATTCGCGATCGTCTCTGGATAGATTCAAGG
GGTTCTGGGAGGAGAGGTTATCGTTCCTGGAGAATTACACGAGGTTCACCAAACGTGACGCGCCTCTTCC
TTCTTGGTCTTCCTCCGACGTCGACGAGTTCATAGCTTCCGATCCCGTCAATGGACCCACCCTGAAAACT
GCTAGGGAAGCTGCGGCTTTTGGTGCTACTGGAGCTGCACTTGGAGCTGTATCTACTGCTGCTTTTGCCT
GGAAATACTCGAAGAGTCCACATGGTGCTGCACTGTCATTCTTAGGAGGAGGTCTTTTTGGTTGGACCTT
TGGGCAAGAAGTCGCGAACCACACGATGCAACTGTATAAGCTGGACACGATGGCTGCTCAAGTTAAGTTC
ATGGAATGGTGGGAACGCAAGTCTCAAGGAAGGTCCTGAACCCAAAAACAGAGAGACGCGTGCTACTTTC
TCTGCCAAGATTGTCTTGCAAACAACGTGAGATGGTGGTAGCAGTTAAATCCATTTTCAGACTCTCTTTC
GAACCTTTCTTATGATCTCAGTCTCCAAAACGTGTTTGTTTTCCTTGTCTCAATAATTCAACAATGCCCC
ATGGAGAATGTTGAGTAGATGAACTGAAACAGTCTGATTTGGATTTATAATAAGAAGCTCATAATGGCCT
TTGGTACTTGAAGAAACAA
Downstream Sequence
GTATTTTTATCCCTCTCTCTCTCTCTCTCTGGTTGTGATATCCATGGATTATTTGATTGA
TTTTGTTTGTTATCTCCTCGGGTTAGTATTTGATTCACTGATTGAGCTTGTGATTTTGAC
TGATTGTTCGTGGCTCTTTGATCTATGTGATTTTTTTTTGAAGTTGAGAGCTCTGTTATT
GAATAGATTCAGTGAATCCTCAGTGAGTTTACACTATTCTTAGCAAAGATTTTGGATGTG
AATATATTAGGAAGGAATAGATTATCGTTTAATGGAGTGAAAAGATATTGAATGTTAGAA
GAAACTTGATGAAAGAGAAGGCTGGGGGAGTTATTAATATATAGTCACTAGAGCAGAATG
TGATCAACACTGAGGGGATTTTTATTAAGGGTTGGGAGAGTGTGGTGGATTTTTTTTATG
ATCCAAGCCTTGTTCCATGTTTAACATCTTCCTCAGATTTATTATCCCCATACATGCACG
TTTTTTTTTTTGGCATTTCTTACTCAAGAATCAAGATGTAGGCGTTTTGGTTCTCAGAGA
GGTGGACTTACGTTGTGTTCATCCTATTGAAGCTGAAAACTGCTAGGGAAGCTGCGGCTT
TTGGTGCTACTGGAGCTGCACTTGGAGCTGTATCTACTGCTGCTTTTGCCTGGAAATACT
CGAAGAGTCCACATGGTAAAGATGTTTTCTCTCTCTATGAATAAACCTTTTAATCTTTAC
ACAAAATGAACACCTTCTGGTGTAAGTTAAATACTGCAAATACTGAACTGTATGTGTATA
TCTCTCGTGATAAGTCTGACACCTCTGTAACTGCTGCTTGGTGCGACAGGTGCTGCACTG
TCATTCTTAGGAGGAGGTCTTTTTGGTTGGACCTTTGGGCAAGAAGTCGCGAACCACACG
ATGCAACTGTATAAGCTGGACACGATGGCTGCTCAAGTTAAGTTCATGGAATGGTGGGAA
CGCAAGTCTCAAGGAAGGTCCTGAACCCAAAAACAGAGAGACGCGTGCTACTTTCTCTGC
CAAGATTGTCTTGCAAACAACGTGAGATGGTGGTAGCAGTTAAATCCATTTTCAGACTCT
CTTTCGAACCTTTCTTATGATCTCAGTCTCCAAAACGTGTTTGTTTTCCTTGTCTCAATA
ATTCAACAATGCCCCATGGAGAATGTTGAGTAGATGAACTGAAACAGTCTGATTTGGATT
TATAATAAGAAGCTCATAATGGCCTTTGGTACTTGAAGAAACAACATTCTCTTGCCTTTA
TTATATGACTAGTATATACCCCGTGCGTACGCACGGTAATAATTTTGTTATATCCTGTTA
TAAATCAAAATCGGCCATGGACCAGCCCGTACTGCAGGTCCAATCCGAAACATGATAAAG
ACAACCAGAGACTATGTGTTTATCTAGTATATATTCTATGCAGGCCCAATCCGAAACATG
ATAAAGACAACCAGAGACTATGTGTTTATCTAGTATATATTCTATGTATATCTGTAACAT
AGTGTTTATCCTTATCCTTATCTTGTTAGGATAAACATGACCTTATGACGGTCTAATACC
TTGTATATATATGGATCTTCTGGTCGACAGTAATGATAACAGAAGTATTTCCCCAACACT
TTATTTACAACACGTTATCAGCACGACGTTGCTCTCATAAACCCTAACCATAAAATCCAG
AAATAAATCCGAGCAGTAAAAACCCTAATTCCCGACGAACTTCAAACAGCTCTATCCCTC
AACTCCTGTGGATCCAGACGACGAGCCAGATATCAAATTAAAGCTCTTGACGAGACGAAG
CCAACGCCGCTAACCCCGCATCAATCGGAGTTCGGACGCGCCCTCACGCTAAGCTACAAT
ACAGGCGGAAAATTTGTTCCAGAAACCAAAATCTCTCTCAACCATATACCAGTCTCCTAT
TCCAACAAGCAGCAACTAAAAACAATAATTCCGAGCAATCCATCATCTAACCAGGAAGAT
CTCTAATTGATAAACCGATC
Pro Sequence
MGDSRSSLDRFKGFWEERLSFLENYTRFTKRDAPLPSWSSSDVDEFIASD
PVNGPTLKTAREAAAFGATGAALGAVSTAAFAWKYSKSPHGAALSFLGGG
LFGWTFGQEVANHTMQLYKLDTMAAQVKFMEWWERKSQGRS
mRNA Sequence
AGCGGCGTAGAGGAGCGACGCTCGTCTCCGATGGAATCAATCAGAACAAAAATAATCGATATCGATCTGA
GAAAGATAAAAGAGAGAAAGTGTGCGAAGAAGAATGGGAGATTCGCGATCGTCTCTGGATAGATTCAAGG
GGTTCTGGGAGGAGAGGTTATCGTTCCTGGAGAATTACACGAGGTTCACCAAACGTGACGCGCCTCTTCC
TTCTTGGTCTTCCTCCGACGTCGACGAGTTCATAGCTTCCGATCCCGTCAATGGACCCACCCTGAAAACT
GCTAGGGAAGCTGCGGCTTTTGGTGCTACTGGAGCTGCACTTGGAGCTGTATCTACTGCTGCTTTTGCCT
GGAAATACTCGAAGAGTCCACATGGTGCTGCACTGTCATTCTTAGGAGGAGGTCTTTTTGGTTGGACCTT
TGGGCAAGAAGTCGCGAACCACACGATGCAACTGTATAAGCTGGACACGATGGCTGCTCAAGTTAAGTTC
ATGGAATGGTGGGAACGCAAGTCTCAAGGAAGGTCCTGAACCCAAAAACAGAGAGACGCGTGCTACTTTC
TCTGCCAAGATTGTCTTGCAAACAACGTGAGATGGTGGTAGCAGTTAAATCCATTTTCAGACTCTCTTTC
GAACCTTTCTTATGATCTCAGTCTCCAAAACGTGTTTGTTTTCCTTGTCTCAATAATTCAACAATGCCCC
ATGGAGAATGTTGAGTAGATGAACTGAAACAGTCTGATTTGGATTTATAATAAGAAGCTCATAATGGCCT
TTGGTACTTGAAGAAACAA