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Detail for ZS11_A01G18550.t1

Genome:
ZS11: ZS11_A01G18550.t1
ZS11_v0: BnaA01T0165800ZS
WE: WE_A01G19320.t1
WE_v0: BnaA01T0086500WE
Darmor: A01p18470.1_BnaDAR
BH: BnaA01T182500BH
Quinta: BnaA01T0114000QU
ZS2: BnaA01T178000ZS2
SW: BnaA01T182700SW
Express61: A01p016650.1_BnaEXP
Xiaoyun: BnaA01G0172400XY
P202: BnaA01G012780P202.1
BL: BnaA01T182500BH
TA: BnaA01T178300TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g16770D
RB: BnaA01T182400RB
No2127: BnaA02T0132900NO
P130: BnaA01G015960P130.1
Length: 246
KOG ID: KOG3135
KOG E-value: 1.500000e-89
KOG Score: 265.0
KOG Annotation: General function prediction only
Biological Process: -
Cellular Component: -
Molecular Function: GO:0003955(NAD(P)H dehydrogenase (quinone) activity),GO:0010181(FMN binding),GO:0016491(oxidoreductase activity),GO:0005509(calcium ion binding)
KEGG Ortholog: K03809 wrbA; NAD(P)H dehydrogenase (quinone) [EC:1.6.5.2]
NR Protein: XP_009143255.2
NR E-value: 8.100000e-84
NR Score: 315.5
NR Annotation: XP_009143255.2 PREDICTED: probable NAD(P)H dehydrogenase (quinone) FQR1-like 1 isoform X1 [Brassica rapa]
SwissProt Protein: Q6NQE2|FQRL1_ARATH
SwissProt E-value: 4.700000e-89
SwissProt Score: 265.0
SwissProt Annotation: Probable NAD(P)H dehydrogenase (quinone) FQR1-like 1 OS=Arabidopsis thaliana OX=3702 GN=At4g27270 PE=1 SV=1
CDS Sequence (751 bp)
ATGGCCGGGAAGCTAGGAGGCGAGGGTCTGATCGGAGAGCTCTGCAACGGATTCGAGCTGTTGATGGACC
GAGAGAAAGGTGTCATCACGTTCGAGAGCCTCCGGCGTAACGCGGCGGCGGTGCTGGGTCTCGGAGATCT
GACGGACGAAGACGTAAGGTCTATGATCAAGGAAGGGGATTTCGACTGCGACGGGGCGTTGAACCAGATG
GAGTTCTGCGTGTTGATGTTCAGGCTTAGTCCCGACTTGATGGATGCGTCGAGGTGTCTGACGCTCCCAG
AAGATGTGCTCTCTAAGATGAGTGCACCGCCAAAGAGTGATGCTCCTCTTATCACCCCCAACGATCTTGC
CGAGGCTGATGGCTTTGTCTTTGCCTTCCCAACAAGGTTTGGTATGATGGCTGCTCAGTTCAAGGCCTTC
TTAGATTCAACTGGTGGCCTCTGGAGGACTCAGCAACTCGCCGGTAAGCCAGCTGCCGGAATCTTCTACA
GCACCGGGTCTCAAGGTGGCGGTCAAGAAACCACCGCATTAACTGCCATTACTCAGCTGGTTCATCACGG
TATGATATTTGTCCCGATGGGATACACGTTTGGTGCTGGTATGTTTGAGATGGAGAAGGTGAAAGGTGGA
ATCCCGTACGGTGCAGGAACATTCGCAGGAGACGGGTCGAGACAGCCAACGGAAGTCGGAATTGGAGTTG
GAGCAAGCATTCCACCAGGGGAAGTACATTGCCGCCATTAG
Upstream Sequence
ATGGCCGGGAAGCTAGGAGGCGAGGGTCTGATCGGAGAGCTCTGCAACGGATTCGAGCTGTTGATGGACC
GAGAGAAAGGTGTCATCACGTTCGAGAGCCTCCGGCGTAACGCGGCGGCGGTGCTGGGTCTCGGAGATCT
GACGGACGAAGACGTAAGGTCTATGATCAAGGAAGGGGATTTCGACTGCGACGGGGCGTTGAACCAGATG
GAGTTCTGCGTGTTGATGTTCAGGCTTAGTCCCGACTTGATGGATGCGTCGAGGTGTCTGACGCTCCCAG
AAGATGTGCTCTCTAAGATGAGTGCACCGCCAAAGAGTGATGCTCCTCTTATCACCCCCAACGATCTTGC
CGAGGCTGATGGCTTTGTCTTTGCCTTCCCAACAAGGTTTGGTATGATGGCTGCTCAGTTCAAGGCCTTC
TTAGATTCAACTGGTGGCCTCTGGAGGACTCAGCAACTCGCCGGTAAGCCAGCTGCCGGAATCTTCTACA
GCACCGGGTCTCAAGGTGGCGGTCAAGAAACCACCGCATTAACTGCCATTACTCAGCTGGTTCATCACGG
TATGATATTTGTCCCGATGGGATACACGTTTGGTGCTGGTATGTTTGAGATGGAGAAGGTGAAAGGTGGA
ATCCCGTACGGTGCAGGAACATTCGCAGGAGACGGGTCGAGACAGCCAACGGAAGTCGGAATTGGAGTTG
GAGCAAGCATTCCACCAGGGGAAGTACATTGCCGCCATTAG
Downstream Sequence
GGTTACGGAAGCCATCGAGGAGGAATACGGCCGGTATTGACACCGGAGAGAAAGGAAACA
CTTCCTTTGATTTTAACTGATTCATTTTTTACTTTTTCACATTTATTTGTATTCATTTCG
TAGAATTATACGTATAAATTGGATTATAAAACTCGGAAGTTACAGTTTATTTTTCTCGTA
TATTCACAGCTCAATAATTGATGCTTTGATAGATTAATCCAACCTATAAATTACAATGAA
AGGGTTTCTTAGCACTAAAACAAAATAAAGGGGGTGAAATATAAATAGTTTAAATTACGA
GGGATTGACCTGGAAATTCTCCAAAGAGAAATACGACTTGGACTTTTGTTTGAGCTCGAT
TTTTTCGGAATTAAGAATAATCAGAAGAAAAATATCGTGTATGTAGAGCAAATCATTTTC
TCCTTACGAAATGCTCAACAAATGTTGGATCATCAAGTAATCGATCGGTCAAGTTTGATT
GATCCGTGATCTGGACGTGTAGTGTCTCATCGTATAGTATGATTTTTATATTGCGAATCG
AAGATTTTAGCTATGGTTTAATGGCTGATCTTTGCAATTCGCGACAGTAATTGAATAGTT
TTCGTTGTTTGGTGATTTTAAATTGTAATCCCTGTGTATGTGTAGAACATCGATGATGAT
ACTCTTGTGATGAGTTTGAATTTGAAATAATGCTATTTAGGATGAGTGAGCCTCCCTTGT
TCTCTTTAGTGGTTTTTATTAAAATCATAATTCTAGGCTACAATGAGAGACAGGGTTTAG
AACTGATTATCAAAATCTTTGAAACAGACTTGGGGTTGAAGTTAGAAACTATAGTTCTTA
TATGTCTGAAAGAATGGGGGATACATATTTCTAGATTTTAACAATGTTTATTTCACTGAT
GCGTGTTTTCTGCAGCTACGTACATTAATTTTAACCTGCATTATTACTTTGGCATATTCT
CATCTCTTTGTGTGTGTTAATTAAAGACAATGTGTGCTTCTTTGAGTTCATATCATTAAA
CCTAAAGTTTGCTTGACTCTCTATCCTCTCAAAGAAAGAAGAAGACATTAATACTGAAAG
CATCGAGCTAAGTGTTTGTTCTTGACAGACGCTCCCAGAAGATGTGCTCTCTAAGATGAG
TGCACCGCCAAAGAGTGATGCTCCTCTTATCACCCCCAACGATCTTGCCGAGGCTGATGG
CTTTGTCTTTGCCTTCCCAACAAGGTTTGGTATGATGGCTGCTCAGTTCAAGGCCTTCTT
AGATTCAACTGGTGGCCTCTGGAGGACTCAGCAACTCGCCGGTAAGCCAGCTGCCGGAAT
CTTCTACAGCACCGGGTCTCAAGGTGGCGGTCAAGAAACCACCGCGTAAGTTTCTTTTCT
CAATCCAAAACAACACCTCATCAAAGAGACAAACTTGTTGTGTTGAGACTCTGAAAGACG
TGTCTACTGTGTAGATTAACTGCCATTACTCAGCTGGTTCATCACGGTATGATATTTGTC
CCGATGGGATACACGTTTGGTGCTGGTATGTTTGAGATGGAGAAGGTGAAAGGTGGAATC
CCGTACGGTGCAGGAACATTCGCAGGAGACGGGTCGAGACAGCCAACGGAAGTCGGAATT
GGAGTTGGAGCAAGCATTCCACCAGGGGAAGTACATTGCCGCCATTAGTAAGAAGCTCAA
GGGACCTGCTGCTGCTTAGATTCTCTCTGAAAAGATGAATTCTATTATATTCTTGATTCT
TTGATTCTACAATTTGGTATTTTGTGATTTTCTCGTTTTGGAATGATCTAACATCGAAAT
GAGTTACTTCAGCTCACAGCAATAAAAAACTATTGCTTTGACTTGTGTGTGTGTGTGTGT
GTGTGTGTGTGTGTGTGTGTGCCTACTCTCTCTATGTATGATCAATGGATCTTCTATTTT
CAGTTTTCACAGAGTATACACATGTAATGTTTCAAATTTTATCAAATTATATGATAGAAG
CCAATTGTGAAAGATGATTG
Pro Sequence
MAGKLGGEGLIGELCNGFELLMDREKGVITFESLRRNAAAVLGLGDLTDE
DVRSMIKEGDFDCDGALNQMEFCVLMFRLSPDLMDASRCLTLPEDVLSKM
SAPPKSDAPLITPNDLAEADGFVFAFPTRFGMMAAQFKAFLDSTGGLWRT
QQLAGKPAAGIFYSTGSQGGGQETTALTAITQLVHHGMIFVPMGYTFGAG
MFEMEKVKGGIPYGAGTFAGDGSRQPTEVGIGVGASIPPGEVHCRH
mRNA Sequence
ATGGCCGGGAAGCTAGGAGGCGAGGGTCTGATCGGAGAGCTCTGCAACGGATTCGAGCTGTTGATGGACC
GAGAGAAAGGTGTCATCACGTTCGAGAGCCTCCGGCGTAACGCGGCGGCGGTGCTGGGTCTCGGAGATCT
GACGGACGAAGACGTAAGGTCTATGATCAAGGAAGGGGATTTCGACTGCGACGGGGCGTTGAACCAGATG
GAGTTCTGCGTGTTGATGTTCAGGCTTAGTCCCGACTTGATGGATGCGTCGAGGTGTCTGACGCTCCCAG
AAGATGTGCTCTCTAAGATGAGTGCACCGCCAAAGAGTGATGCTCCTCTTATCACCCCCAACGATCTTGC
CGAGGCTGATGGCTTTGTCTTTGCCTTCCCAACAAGGTTTGGTATGATGGCTGCTCAGTTCAAGGCCTTC
TTAGATTCAACTGGTGGCCTCTGGAGGACTCAGCAACTCGCCGGTAAGCCAGCTGCCGGAATCTTCTACA
GCACCGGGTCTCAAGGTGGCGGTCAAGAAACCACCGCATTAACTGCCATTACTCAGCTGGTTCATCACGG
TATGATATTTGTCCCGATGGGATACACGTTTGGTGCTGGTATGTTTGAGATGGAGAAGGTGAAAGGTGGA
ATCCCGTACGGTGCAGGAACATTCGCAGGAGACGGGTCGAGACAGCCAACGGAAGTCGGAATTGGAGTTG
GAGCAAGCATTCCACCAGGGGAAGTACATTGCCGCCATTAG