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DETAIL

Detail for ZS11_C09G15610.t1

Genome:
ZS11: ZS11_C09G15610.t1
ZS11_v0: BnaC09T0132000ZS
WE: WE_A09G13260.t1
WE_v0: BnaC09T0138300WE
Darmor: C09p15230.1_BnaDAR
BH: BnaA09T153900BH
Quinta: BnaA09T0117300QU
ZS2: BnaA09T124500ZS2
SW: BnaA09T154600SW
Express61: A09p010850.1_BnaEXP
Xiaoyun: BnaC09G0136700XY
P202: BnaC09G018610P202.1
BL: BnaA09T153900BH
TA: BnaA09T118200TA
Da-Ae: Not available
RB: BnaA09T126600RB
No2127: BnaC09T0099100NO
P130: BnaC09G012580P130.1
Length: 403
KOG ID: KOG2865
KOG E-value: Not available
KOG Score: 700.0
KOG Annotation: Energy production and conversion
Biological Process: -
Cellular Component: -
Molecular Function: -
KEGG Ortholog: K03953 NDUFA9; NADH dehydrogenase (ubiquinone) 1 alpha subcomplex subunit 9
NR Protein: XP_013606812.1
NR E-value: 4.000000e-229
NR Score: 798.9
NR Annotation: XP_013606812.1 PREDICTED: NADH dehydrogenase [ubiquinone] 1 alpha subcomplex subunit 9, mitochondrial-like [Brassica oleracea var. oleracea]
SwissProt Protein: Q9SK66|NDUA9_ARATH
SwissProt E-value: Not available
SwissProt Score: 716.0
SwissProt Annotation: NADH dehydrogenase [ubiquinone] 1 alpha subcomplex subunit 9, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=At2g20360 PE=1 SV=2
CDS Sequence (1229 bp)
ATGATGCAAGCAGTTTCCAGGAGATTAGTCCAACGGCCTCTCGCCGGAGAAACTTCCATCTATTCATCGT
CTTCTCTCAGATCGCTCTATGGTGTCCCAGATTACCTGAATGGAAGTGATAATCGTCGCTACTCGTCTTC
CCTTGCTACTAAGGGCGTGGGGCACCTCGCTCGCAAGGGTACTGGTGGCAGATCTTCCGTCAGTGGCATT
GTAGCTACGGTGTTTGGAGCCACTGGGTTTCTTGGTCGTTATCTTGTGCAGCAGCTAGCTAAAATGGGAT
CACAAGTGCTAGTGCCTTTCCGAGGCTCTGAGGACAACCCTCGACATCTCAAGTTGATGGGAGATTTAGG
ACAGGTAGTACCAATGAAATTTGATCCGAGAGATGAAGACTCCATTAAGGCTGTCATGGCAAAGGCTAAT
GTCGTTATCAATCTCATTGGAAGAGAGTACGAGACCAGAAATTTCAGTTTCGAAGAGGTGAATCATCACA
TGGCTGAGAAACTTGCATTGGTGGCTAAGGAACATGGTGGGATAATGAGATTTATTCAGGTTTCTTGTCT
GGGAGCTTCTGTGTCATCTCCTTCAAGAATGCAGAGGGCTAAAGCTGCTGCTGAGGAAGCTGTCTTCAGT
GCGCTGCCTGAGGCGACAGTCATGAGACCTGCGACCATGATTGGCACAGAGGACAGAATCTTGAACCCCT
GGGCAATGTTCGTTAAAAAATATGGTTTCTTCCCGCTCATAGGTGGTGGCACCAACAAATTCCAGCCCGT
ATATGTGGTTGATGTTGCTGCTGCAATCGTTGCAGCTCTCAAGGATGATGGCTCCAGCATGGGGAAAACC
TATGAATTAGGTGGTCCAGATGTCTTTACCCCTCGTGATTTGGCGGAGATCATGTTTGATATGATTCGTG
AATGGCCTCGATATGTGAAGCTTCCATTTCCAATTGCTAAGGCAATGGCGGGTCCTCGGGATTTCATGGT
GAACAAGGTCCCGTTCCCTTTACCATCCCCACAGATCTTCAATCTGGATCAAATCAATGCGCTTACAACC
GATACACTTGTATCTGACAAGGCCTTGACTTTTCAGGATTTGGACCTTGTCCCTCATAAATTGAAGGGAT
ATCCAGTCGAGTTTCTTATCCAGTATCGCAAGGGTGGTCCTAATTTCGGTTCTACCGTCAGTGAAAAGAT
ACCAACAGACTTCTACAATTGA
Upstream Sequence
GCCCGGCCCGGCCCAGCCATCTACCTGTATCATCTTTCTCTCTCTCTCGCATATCTGTGTTTGTTGTCAC
TCGATCGATCGTGCGACTGAGGACGATGATGCAAGCAGTTTCCAGGAGATTAGTCCAACGGCCTCTCGCC
GGAGAAACTTCCATCTATTCATCGTCTTCTCTCAGATCGCTCTATGGTGTCCCAGATTACCTGAATGGAA
GTGATAATCGTCGCTACTCGTCTTCCCTTGCTACTAAGGGCGTGGGGCACCTCGCTCGCAAGGGTACTGG
TGGCAGATCTTCCGTCAGTGGCATTGTAGCTACGGTGTTTGGAGCCACTGGGTTTCTTGGTCGTTATCTT
GTGCAGCAGCTAGCTAAAATGGGATCACAAGTGCTAGTGCCTTTCCGAGGCTCTGAGGACAACCCTCGAC
ATCTCAAGTTGATGGGAGATTTAGGACAGGTAGTACCAATGAAATTTGATCCGAGAGATGAAGACTCCAT
TAAGGCTGTCATGGCAAAGGCTAATGTCGTTATCAATCTCATTGGAAGAGAGTACGAGACCAGAAATTTC
AGTTTCGAAGAGGTGAATCATCACATGGCTGAGAAACTTGCATTGGTGGCTAAGGAACATGGTGGGATAA
TGAGATTTATTCAGGTTTCTTGTCTGGGAGCTTCTGTGTCATCTCCTTCAAGAATGCAGAGGGCTAAAGC
TGCTGCTGAGGAAGCTGTCTTCAGTGCGCTGCCTGAGGCGACAGTCATGAGACCTGCGACCATGATTGGC
ACAGAGGACAGAATCTTGAACCCCTGGGCAATGTTCGTTAAAAAATATGGTTTCTTCCCGCTCATAGGTG
GTGGCACCAACAAATTCCAGCCCGTATATGTGGTTGATGTTGCTGCTGCAATCGTTGCAGCTCTCAAGGA
TGATGGCTCCAGCATGGGGAAAACCTATGAATTAGGTGGTCCAGATGTCTTTACCCCTCGTGATTTGGCG
GAGATCATGTTTGATATGATTCGTGAATGGCCTCGATATGTGAAGCTTCCATTTCCAATTGCTAAGGCAA
TGGCGGGTCCTCGGGATTTCATGGTGAACAAGGTCCCGTTCCCTTTACCATCCCCACAGATCTTCAATCT
GGATCAAATCAATGCGCTTACAACCGATACACTTGTATCTGACAAGGCCTTGACTTTTCAGGATTTGGAC
CTTGTCCCTCATAAATTGAAGGGATATCCAGTCGAGTTTCTTATCCAGTATCGCAAGGGTGGTCCTAATT
TCGGTTCTACCGTCAGTGAAAAGATACCAACAGACTTCTACAATTGATGATGCTTCTACTCAAAGGTCGT
TTTCCTGGACTAATTTTGATTCATGCAAGTCTCACAGTGAAATGGCAGAAACTAGATATGGTATTTTGGT
GCCTTTCATTTTCTTCTGTCAAATAATAAAAGGGTTTCCTCTTCTCTTTGTTGTGTTCTGAAAGAAAGTG
TAACCCGTCAACATGATTATAAGTTAGAGAGGAGACGTTTTCTGTCTTTTTTGAATGGGAGATTTATTCC
CCGTATGATTATGTAGTTTCTGGTTCGTTTGAAACTTCATGTGCTACTTTGCTCTTGAGTCTTGAATATA
ACTAAGCCCATGTGCTTCCGTT
Downstream Sequence
GTTAAGTCTCTTGCGATTGAATTTAATTTCATTCGCATTTTCTAGGTTTTAATAATGAGA
TAATATATGGTTTTCTGATTCAGTGAATGGAAGTGATAATCGTCGCTACTCGTCTTCCCT
TGCTACTAAGGGCGTGGGGCACCTCGCTCGCAAGGGTACTGGTGGCAGATCTTCCGTCAG
GTAAATGCTGGAACTACAATTCTCGTAGAAGAAGAAGAAGAAGAAATGTTTTTTGGTCTG
TCTTAGGATAACGCCAAGCTTAAAAATGAAAAACAATGTAGCATGGTTTTGCGGTAGCTT
CAGTATAATGAAAATCTTGATTTGTCCTTTGTTTTTGCCAGTGGCATTGTAGCTACGGTG
TTTGGAGCCACTGGGTTTCTTGGTCGTTATCTTGTGCAGCAGCTAGGTGAGTTTGGTTTT
TAGCATATCTAATACCCATCCTAGTATACATCAATCTTGTCCTTCCTTTTACATGTTTTT
TTTTTTTTGGTTTTCTAATTATGTTGCAAATGAATTGCTCCTTCCAGCTAAAATGGGATC
ACAAGTGCTAGTGCCTTTCCGAGGCTCTGAGGACAACCCTCGACATCTCAAGTTGATGGG
AGATTTAGGACAGGTAATATCTTTTTTTTTTGTTTAACACAATGCTTATAAGGGTATGTC
CCAAGAACACACCTTTTTTTGTATGTTAGACTTTGGAGCAACAAATTTGTGATGTATATT
CCAGGTAGTACCAATGAAATTTGATCCGAGAGATGAAGACTCCATTAAGGCTGTCATGGC
AAAGGCTAATGTCGTTATCAATCTCATTGGTACTTATTTTGTTTTGATCTTTTAAAAAGC
AACACTGTTCTTTTAATCTGTGGATGATATCTATTCTAATCCTCAGGAAGAGAGTACGAG
ACCAGAAATTTCAGTTTCGAAGAGGTGAATCATCACATGGCTGAGAAACTTGCATTGGTA
TGTTCCGGAAACTCTGGTGAAGAGGCTTCCATTTTCTTACTCATGGGATTGTTGGGTACT
TCGGAAATGAGCTACGCATTTTTAAGCTTCAGGGTAATACGGTCTGCTCTTTTAGTTATG
TCTAATTAGATTGGGGATTGGTGGATTTGTTGTTTCAGGTGGCTAAGGAACATGGTGGGA
TAATGAGATTTATTCAGGTTTCTTGTCTGGGAGCTTCTGTGTCATCTCCTTCAAGAATGC
AGAGGGCTAAAGCTGCTGCTGAGGAAGCTGTCTTCAGTGCGCTGCCTGAGGTAAACTTAT
CGCAGCTTTTGGAACCTAAAACGCTCTCTTCTGTAACATATTTCATTCACTATTGCTATG
ATTCTGCTTGATGTCAGATATAAGGTATATCCTCTAGTTGTTTCTTGTGTAGAACTGGAA
AAACAGTATATGAAGTTATTATTGAACTCTAAATTTTAAAGCAACAATGTACCTGGAATG
GCTTGCATATGCATTTATTCATCAGCCTGCTGCTTCTAGTCAGTTGATGGTGTATATTTA
TTTGTTTCCTAGGCGACAGTCATGAGACCTGCGACCATGATTGGCACAGAGGACAGAATC
TTGAACCCCTGGGCAATGTTCGTTAAAAAATATGGTTTCTTCCCGCTCATAGGTGGTGGC
ACCAACAAGTATGTCCTAAACCTTTGTCTAGTTCTTTTCACCGGTTTTCTTACCCTAACC
ATAACTTAATTGCAGATTCCAGCCCGTATATGTGGTTGATGTTGCTGCTGCAATCGTTGC
AGCTCTCAAGGATGATGGCTCCAGCATGGGGAAAACCTATGAATTAGGTGGTCCAGATGT
CTTTACCCCTCGTGATTTGGTAAATTCATATTGTCCTTCATTCTCTCTGTCACTGTTTTA
GCTCGTTAGGGCTAATTTTGCAAGTGTTTCCTTGCAGGCGGAGATCATGTTTGATATGAT
TCGTGAATGGCCTCGATATGTGAAGCTTCCATTTCCAATTGCTAAGGTAACAGATCAAAT
CGTTCGCCGTCTAGGGTAAA
Pro Sequence
MMQAVSRRLVQRPLAGETSIYSSSSLRSLYGVPDYLNGSDNRRYSSSLAT
KGVGHLARKGTGGRSSVSGIVATVFGATGFLGRYLVQQLAKMGSQVLVPF
RGSEDNPRHLKLMGDLGQVVPMKFDPRDEDSIKAVMAKANVVINLIGREY
ETRNFSFEEVNHHMAEKLALVAKEHGGIMRFIQVSCLGASVSSPSRMQRA
KAAAEEAVFSALPEATVMRPATMIGTEDRILNPWAMFVKKYGFFPLIGGG
TNKFQPVYVVDVAAAIVAALKDDGSSMGKTYELGGPDVFTPRDLAEIMFD
MIREWPRYVKLPFPIAKAMAGPRDFMVNKVPFPLPSPQIFNLDQINALTT
DTLVSDKALTFQDLDLVPHKLKGYPVEFLIQYRKGGPNFGSTVSEKIPTD
FYN
mRNA Sequence
GCCCGGCCCGGCCCAGCCATCTACCTGTATCATCTTTCTCTCTCTCTCGCATATCTGTGTTTGTTGTCAC
TCGATCGATCGTGCGACTGAGGACGATGATGCAAGCAGTTTCCAGGAGATTAGTCCAACGGCCTCTCGCC
GGAGAAACTTCCATCTATTCATCGTCTTCTCTCAGATCGCTCTATGGTGTCCCAGATTACCTGAATGGAA
GTGATAATCGTCGCTACTCGTCTTCCCTTGCTACTAAGGGCGTGGGGCACCTCGCTCGCAAGGGTACTGG
TGGCAGATCTTCCGTCAGTGGCATTGTAGCTACGGTGTTTGGAGCCACTGGGTTTCTTGGTCGTTATCTT
GTGCAGCAGCTAGCTAAAATGGGATCACAAGTGCTAGTGCCTTTCCGAGGCTCTGAGGACAACCCTCGAC
ATCTCAAGTTGATGGGAGATTTAGGACAGGTAGTACCAATGAAATTTGATCCGAGAGATGAAGACTCCAT
TAAGGCTGTCATGGCAAAGGCTAATGTCGTTATCAATCTCATTGGAAGAGAGTACGAGACCAGAAATTTC
AGTTTCGAAGAGGTGAATCATCACATGGCTGAGAAACTTGCATTGGTGGCTAAGGAACATGGTGGGATAA
TGAGATTTATTCAGGTTTCTTGTCTGGGAGCTTCTGTGTCATCTCCTTCAAGAATGCAGAGGGCTAAAGC
TGCTGCTGAGGAAGCTGTCTTCAGTGCGCTGCCTGAGGCGACAGTCATGAGACCTGCGACCATGATTGGC
ACAGAGGACAGAATCTTGAACCCCTGGGCAATGTTCGTTAAAAAATATGGTTTCTTCCCGCTCATAGGTG
GTGGCACCAACAAATTCCAGCCCGTATATGTGGTTGATGTTGCTGCTGCAATCGTTGCAGCTCTCAAGGA
TGATGGCTCCAGCATGGGGAAAACCTATGAATTAGGTGGTCCAGATGTCTTTACCCCTCGTGATTTGGCG
GAGATCATGTTTGATATGATTCGTGAATGGCCTCGATATGTGAAGCTTCCATTTCCAATTGCTAAGGCAA
TGGCGGGTCCTCGGGATTTCATGGTGAACAAGGTCCCGTTCCCTTTACCATCCCCACAGATCTTCAATCT
GGATCAAATCAATGCGCTTACAACCGATACACTTGTATCTGACAAGGCCTTGACTTTTCAGGATTTGGAC
CTTGTCCCTCATAAATTGAAGGGATATCCAGTCGAGTTTCTTATCCAGTATCGCAAGGGTGGTCCTAATT
TCGGTTCTACCGTCAGTGAAAAGATACCAACAGACTTCTACAATTGATGATGCTTCTACTCAAAGGTCGT
TTTCCTGGACTAATTTTGATTCATGCAAGTCTCACAGTGAAATGGCAGAAACTAGATATGGTATTTTGGT
GCCTTTCATTTTCTTCTGTCAAATAATAAAAGGGTTTCCTCTTCTCTTTGTTGTGTTCTGAAAGAAAGTG
TAACCCGTCAACATGATTATAAGTTAGAGAGGAGACGTTTTCTGTCTTTTTTGAATGGGAGATTTATTCC
CCGTATGATTATGTAGTTTCTGGTTCGTTTGAAACTTCATGTGCTACTTTGCTCTTGAGTCTTGAATATA
ACTAAGCCCATGTGCTTCCGTT