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Detail for ZS11_A10G29430.t1

Genome:
ZS11: ZS11_A10G29430.t1
ZS11_v0: BnaA10T0251100ZS
WE: WE_C09G71350.t1
WE_v0: BnaC09T0536900WE
Darmor: C09p68240.1_BnaDAR
BH: BnaC09T452900BH
Quinta: BnaC09T0527700QU
ZS2: BnaA10T255300ZS2
SW: BnaA10T272700SW
Express61: C09p052230.1_BnaEXP
Xiaoyun: BnaA10G0256000XY
P202: BnaC09G110480P202.2
BL: BnaC09T452900BH
TA: BnaA10T254700TA
Da-Ae: Not available
RB: BnaA10T266300RB
No2127: BnaC09T0500300NO
P130: BnaA10G026500P130.3
Length: 525
KOG ID: KOG2495
KOG E-value: 1.150000e-19
KOG Score: 93.6
KOG Annotation: Energy production and conversion
Biological Process: -
Cellular Component: -
Molecular Function: GO:0016491(oxidoreductase activity)
KEGG Ortholog: K17872 NDC1, ndbB; demethylphylloquinone reductase [EC:1.6.5.12]
NR Protein: XP_013715482.1
NR E-value: 6.200000e-291
NR Score: 1004.6
NR Annotation: XP_013715482.1 alternative NAD(P)H-ubiquinone oxidoreductase C1, chloroplastic/mitochondrial [Brassica napus]
SwissProt Protein: Q8GXR9|NDC1_ARATH
SwissProt E-value: Not available
SwissProt Score: 909.0
SwissProt Annotation: Alternative NAD(P)H-ubiquinone oxidoreductase C1, chloroplastic/mitochondrial OS=Arabidopsis thaliana OX=3702 GN=NDC1 PE=1 SV=2
CDS Sequence (1600 bp)
ATGGCCCTTCTCTCAGCCGTATCTTCTCTCTTACCTTTCTCTTATGGAGCAACGAGACTAAGCAGTAAAG
CCTCTTTAGCTTCTACAACATCTGGATTCAACCTCTCTTCTCTTAGGAACTCCCCTAGAAACCCCCTTCG
CTTATATGTGTCGAGGGCCATCGCAGACAACGGTGGATACACAGAAGTTTCTGAGATTGAAACACCTCCT
CCAAGGACTTACACATGGCCTGATAACAAGAGGCCAAGAGTTTGTATTCTAGGTGGCGGCTTTGGAGGAT
TGTACACAGCTTTGAGGCTTGAATCTCTTGTGTGGCCCGACGACAAGAAACCTCAGGTGGTTTTGGTTGA
CCAGTCTGAACGTTTTGTGTTCAAGCCGATGTTGTATGAGCTTCTCTCTGGAGAAGTTGATGTGTGGGAG
ATTGCTCCTCGTTTCTCGGATTTGCTTACAAACACAGGAATCCAGTTTCTCCGAGATAGAGTCAAAACGC
TGCTTCCTTGTGACGGTTTAGGAGTCAATGGCTATGAAAGTTCCGTTACTGGAGGAACCGTCTTGCTCGA
AAGCGGTTTTAACATTGAATACGATTGGCTGGTTCTTGCTCTTGGCGCTGAACCTAAGCTTGATCTTGTT
CCCGGCGCAATGGAGTTTGCTTTACCGTTTTACACTCTTAACGATGCTATTAGGGTGAACGAGAAGCTGA
GCAAACTGGAGAGAAGGAACTTCAAAAACGGCTCTGCCATTAAAGTAGCTGTCGTTGGGTGCGGTTACGG
AGGAGTTGAGTTAGCTGCAACCATCTCAGAGAGACTGCAAGACCGCGGAACGGTTCAAGCCATCAACGTG
TCCAAGAGTATATTAACATCAGCCCCTGATGGGAACAGAGAGGCAGCTATGAAGGTTCTTGCGTCGAGAA
AAGTTGAGTTACTCTTGGGTTATCTTGTTCGTTGCATAAAGAAAGCAACCGGTTCAGAAGAAGAAGATGG
AGGAGGAGGGTATGTGTTAGAGCTTGAGCCTACAGAGAAAGGAGTAGAGAGTCAAGTTATAGAAGCGGAT
ATGGTGTTATGGACGGTGGGGACTAAGCCTTTGCTTACCGAGCTAGAACAGCCTTCAGGAGGTCCTAGTG
TCCTTCCTTTGAACGTTAGAGGACAAGCGGAAACAGACGAGACGCTCCGTGTCAAGGGACATCCTCGGAT
ATTCGCGTTAGGTGACTCTTCTTCCTTGAGAGACTCAAACGGAAAGCTTCTTCCTACAACAGCTCAGGTT
GCTTTTCAAGAAGCAGACTTCACTGGTTGGAATATTTGGGCTGCCATTAACAACCGTCCTTTGTTACCAT
TCAGGTTTCAGAATCTAGGTGAGATGATGACTCTTGGAAGATATGATGCTGCTATTTCGCCGAGTTTCAT
TGAAGGGCTTACGCTTGACGGTCCGGTTGGTCACGCGGCTAGAAAGCTGGCGTATTTGATCAGACTACCA
ACGGATGAACACAGGTTTAAAGTAGGAGTCAGCTGGTTTGCTAAATCTGCTGTTGAGTCAGTTGCTTTGC
TTCAGAGCAATCTTGCCAAGGTCTTTTCTAGTTCTTGA
Upstream Sequence
AAACTAGGGAGCGTGGAACCCCCAGCTTCCATAAGAAAACTAGACGCCTGAGACTTCGACGATGGCCCTT
CTCTCAGCCGTATCTTCTCTCTTACCTTTCTCTTATGGAGCAACGAGACTAAGCAGTAAAGCCTCTTTAG
CTTCTACAACATCTGGATTCAACCTCTCTTCTCTTAGGAACTCCCCTAGAAACCCCCTTCGCTTATATGT
GTCGAGGGCCATCGCAGACAACGGTGGATACACAGAAGTTTCTGAGATTGAAACACCTCCTCCAAGGACT
TACACATGGCCTGATAACAAGAGGCCAAGAGTTTGTATTCTAGGTGGCGGCTTTGGAGGATTGTACACAG
CTTTGAGGCTTGAATCTCTTGTGTGGCCCGACGACAAGAAACCTCAGGTGGTTTTGGTTGACCAGTCTGA
ACGTTTTGTGTTCAAGCCGATGTTGTATGAGCTTCTCTCTGGAGAAGTTGATGTGTGGGAGATTGCTCCT
CGTTTCTCGGATTTGCTTACAAACACAGGAATCCAGTTTCTCCGAGATAGAGTCAAAACGCTGCTTCCTT
GTGACGGTTTAGGAGTCAATGGCTATGAAAGTTCCGTTACTGGAGGAACCGTCTTGCTCGAAAGCGGTTT
TAACATTGAATACGATTGGCTGGTTCTTGCTCTTGGCGCTGAACCTAAGCTTGATCTTGTTCCCGGCGCA
ATGGAGTTTGCTTTACCGTTTTACACTCTTAACGATGCTATTAGGGTGAACGAGAAGCTGAGCAAACTGG
AGAGAAGGAACTTCAAAAACGGCTCTGCCATTAAAGTAGCTGTCGTTGGGTGCGGTTACGGAGGAGTTGA
GTTAGCTGCAACCATCTCAGAGAGACTGCAAGACCGCGGAACGGTTCAAGCCATCAACGTGTCCAAGAGT
ATATTAACATCAGCCCCTGATGGGAACAGAGAGGCAGCTATGAAGGTTCTTGCGTCGAGAAAAGTTGAGT
TACTCTTGGGTTATCTTGTTCGTTGCATAAAGAAAGCAACCGGTTCAGAAGAAGAAGATGGAGGAGGAGG
GTATGTGTTAGAGCTTGAGCCTACAGAGAAAGGAGTAGAGAGTCAAGTTATAGAAGCGGATATGGTGTTA
TGGACGGTGGGGACTAAGCCTTTGCTTACCGAGCTAGAACAGCCTTCAGGAGGTCCTAGTGTCCTTCCTT
TGAACGTTAGAGGACAAGCGGAAACAGACGAGACGCTCCGTGTCAAGGGACATCCTCGGATATTCGCGTT
AGGTGACTCTTCTTCCTTGAGAGACTCAAACGGAAAGCTTCTTCCTACAACAGCTCAGGTTGCTTTTCAA
GAAGCAGACTTCACTGGTTGGAATATTTGGGCTGCCATTAACAACCGTCCTTTGTTACCATTCAGGTTTC
AGAATCTAGGTGAGATGATGACTCTTGGAAGATATGATGCTGCTATTTCGCCGAGTTTCATTGAAGGGCT
TACGCTTGACGGTCCGGTTGGTCACGCGGCTAGAAAGCTGGCGTATTTGATCAGACTACCAACGGATGAA
CACAGGTTTAAAGTAGGAGTCAGCTGGTTTGCTAAATCTGCTGTTGAGTCAGTTGCTTTGCTTCAGAGCA
ATCTTGCCAAGGTCTTTTCTAGTTCTTGATTTCAAAAACGGTTCTGTATGGTTAGACAAATGTAATACTT
GATGGGAATATAATAGACTCTCTGAGGATTGAGATTAAAAAACAATAAAACTTTATGAATGCATTTTTAA
TAGTACATGAGAAGCAATCTCATTCTGTAAACTTTCGTACACATATCCTCATGATATTATAATATAGTCT
TCAAACACAGATTTTGATATTTAACTTTTCGGCA
Downstream Sequence
GTAAGTTCTGTTTCTCCTCAATCCAATCTGTTTTTCCGATTTGGTTTTCAAGACAATTAG
ATCAAAGTGTGAACCTTTCTGATTCGATTGATCTTTTTATAGGAGACTGAGAATCATTTT
GCTTACTTCACTTCCAAATTATACTCTTTTTGTTTTTGATTCGGAGTTTAGAATATAAAT
GTTGAAGCTTTTCGTGTTTATATTCTCAATGTGTTTCAGATGGAGCAACGAGACTAAGCA
GTAAAGCCTCTTTAGCTTCTACAACATCTGGATTCAACCTCTCTTCTCTTAGGAACTCCC
CTAGAAACCCCCTTCGCTTATATGTGTCGAGGGCCATCGCAGACAACGGTGGATACACAG
AAGTTTCTGAGATTGAAACACCTCCTCCAAGGACTTACACATGGCCTGATAACAAGGTTT
GTTAAAGCATTCTTGTGTAAGATCTCTTTAAGCAAGACTGTGTAAATATAAGCTCTCTGT
TTACAGAGGCCAAGAGTTTGTATTCTAGGTGGCGGCTTTGGAGGATTGTACACAGCTTTG
AGGCTTGAATCTCTTGTGTGGCCCGACGACAAGAAACCTCAGGTGATAATGTTTTTTTTT
GTTAGAGCATTATGTTGCAAAAGACTTAAATTGTTAAATTCATTTTTGATCAGGTGGTTT
TGGTTGACCAGTCTGAACGTTTTGTGTTCAAGCCGATGTTGTATGAGCTTCTCTCTGGAG
GTTAGACTTAGTTATGCTTCTCGCTCGATCTTTGGACTTTCTGTGTGTGTTTGATTTAGT
TTTATTGTTTGATATGCAGAAGTTGATGTGTGGGAGATTGCTCCTCGTTTCTCGGATTTG
CTTACAAACACAGGAATCCAGTTTCTCCGAGATAGAGTCAAAACGCTGCTTCCTTGTGAC
GGTTTAGGAGTCAATGGCTATGAAAGTTCCGTTACTGGAGGAACCGTCTTGCTCGAAAGC
GGTTTTAACATTGAATACGATTGGTACCATGTTTTACACATTTGTCTGCTTTGTTGTTGT
TTATAGACTCTTAAACTGTGTATATGTCTGGACTCATTATCTTTCTTTTTCTACAGCTAG
GCTGGTTCTTGCTCTTGGCGCTGAACCTAAGCTTGATCTTGTTCCCGGCGCAATGGAGTT
TGCTTTACCGTTTTACACTCTTAACGATGCTATTGTAAGAGTTGGATTGTTTTATTTTTT
TCACTTATAGGACACTCTTCATCTAAAGCATGGTTGCTACAATGTCATTGCAGAGGGTGA
ACGAGAAGCTGAGCAAACTGGAGAGAAGGAACTTCAAAAACGGCTCTGCCATTAAAGTAG
CTGTCGTTGGGTGCGGTTACGGAGGAGTTGAGTTAGCTGCAACCATCTCAGAGAGACTGC
AAGACCGCGGAACGGTTCAAGCCATCAACGTGTCCAAGAGTATATTAACATCAGCCCCTG
ATGGGAACAGAGAGGCAGCTATGAAGGTTCTTGCGTCGAGAAAAGTTGAGTTACTCTTGG
GTTATCTTGTTCGTTGCATAAAGAAAGCAACCGGTTCAGAAGAAGAAGATGGAGGAGGAG
GGTATGTGTTAGAGCTTGAGCCTACAGAGAAAGGAGTAGAGAGTCAAGTTATAGAAGCGG
ATATGGTGTTATGGACGGTGGGGACTAAGCCTTTGCTTACCGAGCTAGAACAGCCTTCAG
GAGGTCCTAGTGTCCTTCCTTTGAACGTTAGAGGACAAGCGGAAACAGACGAGACGCTCC
GTGTCAAGGGACATCCTCGGATATTCGCGTTAGGTGACTCTTCTTCCTTGAGAGACTCAA
ACGGAAAGCTTCTTCCTACAACAGCTCAGGTTGCTTTTCAAGAAGCAGACTTCACTGGTT
GGAATATTTGGGCTGCCATTAACAACCGTCCTTTGTTACCATTCAGGTAAAAGTGAAAAA
AAAATACTTTTTAACTGTGGTCTGTGTGATTAAACTCTTTCTTGTTGCAGGTTTCAGAAT
CTAGGTGAGATGATGACTCT
Pro Sequence
MALLSAVSSLLPFSYGATRLSSKASLASTTSGFNLSSLRNSPRNPLRLYV
SRAIADNGGYTEVSEIETPPPRTYTWPDNKRPRVCILGGGFGGLYTALRL
ESLVWPDDKKPQVVLVDQSERFVFKPMLYELLSGEVDVWEIAPRFSDLLT
NTGIQFLRDRVKTLLPCDGLGVNGYESSVTGGTVLLESGFNIEYDWLVLA
LGAEPKLDLVPGAMEFALPFYTLNDAIRVNEKLSKLERRNFKNGSAIKVA
VVGCGYGGVELAATISERLQDRGTVQAINVSKSILTSAPDGNREAAMKVL
ASRKVELLLGYLVRCIKKATGSEEEDGGGGYVLELEPTEKGVESQVIEAD
MVLWTVGTKPLLTELEQPSGGPSVLPLNVRGQAETDETLRVKGHPRIFAL
GDSSSLRDSNGKLLPTTAQVAFQEADFTGWNIWAAINNRPLLPFRFQNLG
EMMTLGRYDAAISPSFIEGLTLDGPVGHAARKLAYLIRLPTDEHRFKVGV
SWFAKSAVESVALLQSNLAKVFSSS
mRNA Sequence
AAACTAGGGAGCGTGGAACCCCCAGCTTCCATAAGAAAACTAGACGCCTGAGACTTCGACGATGGCCCTT
CTCTCAGCCGTATCTTCTCTCTTACCTTTCTCTTATGGAGCAACGAGACTAAGCAGTAAAGCCTCTTTAG
CTTCTACAACATCTGGATTCAACCTCTCTTCTCTTAGGAACTCCCCTAGAAACCCCCTTCGCTTATATGT
GTCGAGGGCCATCGCAGACAACGGTGGATACACAGAAGTTTCTGAGATTGAAACACCTCCTCCAAGGACT
TACACATGGCCTGATAACAAGAGGCCAAGAGTTTGTATTCTAGGTGGCGGCTTTGGAGGATTGTACACAG
CTTTGAGGCTTGAATCTCTTGTGTGGCCCGACGACAAGAAACCTCAGGTGGTTTTGGTTGACCAGTCTGA
ACGTTTTGTGTTCAAGCCGATGTTGTATGAGCTTCTCTCTGGAGAAGTTGATGTGTGGGAGATTGCTCCT
CGTTTCTCGGATTTGCTTACAAACACAGGAATCCAGTTTCTCCGAGATAGAGTCAAAACGCTGCTTCCTT
GTGACGGTTTAGGAGTCAATGGCTATGAAAGTTCCGTTACTGGAGGAACCGTCTTGCTCGAAAGCGGTTT
TAACATTGAATACGATTGGCTGGTTCTTGCTCTTGGCGCTGAACCTAAGCTTGATCTTGTTCCCGGCGCA
ATGGAGTTTGCTTTACCGTTTTACACTCTTAACGATGCTATTAGGGTGAACGAGAAGCTGAGCAAACTGG
AGAGAAGGAACTTCAAAAACGGCTCTGCCATTAAAGTAGCTGTCGTTGGGTGCGGTTACGGAGGAGTTGA
GTTAGCTGCAACCATCTCAGAGAGACTGCAAGACCGCGGAACGGTTCAAGCCATCAACGTGTCCAAGAGT
ATATTAACATCAGCCCCTGATGGGAACAGAGAGGCAGCTATGAAGGTTCTTGCGTCGAGAAAAGTTGAGT
TACTCTTGGGTTATCTTGTTCGTTGCATAAAGAAAGCAACCGGTTCAGAAGAAGAAGATGGAGGAGGAGG
GTATGTGTTAGAGCTTGAGCCTACAGAGAAAGGAGTAGAGAGTCAAGTTATAGAAGCGGATATGGTGTTA
TGGACGGTGGGGACTAAGCCTTTGCTTACCGAGCTAGAACAGCCTTCAGGAGGTCCTAGTGTCCTTCCTT
TGAACGTTAGAGGACAAGCGGAAACAGACGAGACGCTCCGTGTCAAGGGACATCCTCGGATATTCGCGTT
AGGTGACTCTTCTTCCTTGAGAGACTCAAACGGAAAGCTTCTTCCTACAACAGCTCAGGTTGCTTTTCAA
GAAGCAGACTTCACTGGTTGGAATATTTGGGCTGCCATTAACAACCGTCCTTTGTTACCATTCAGGTTTC
AGAATCTAGGTGAGATGATGACTCTTGGAAGATATGATGCTGCTATTTCGCCGAGTTTCATTGAAGGGCT
TACGCTTGACGGTCCGGTTGGTCACGCGGCTAGAAAGCTGGCGTATTTGATCAGACTACCAACGGATGAA
CACAGGTTTAAAGTAGGAGTCAGCTGGTTTGCTAAATCTGCTGTTGAGTCAGTTGCTTTGCTTCAGAGCA
ATCTTGCCAAGGTCTTTTCTAGTTCTTGATTTCAAAAACGGTTCTGTATGGTTAGACAAATGTAATACTT
GATGGGAATATAATAGACTCTCTGAGGATTGAGATTAAAAAACAATAAAACTTTATGAATGCATTTTTAA
TAGTACATGAGAAGCAATCTCATTCTGTAAACTTTCGTACACATATCCTCATGATATTATAATATAGTCT
TCAAACACAGATTTTGATATTTAACTTTTCGGCA