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Detail for ZS11_C04G58720.t1

Genome:
ZS11: ZS11_C04G58720.t1
ZS11_v0: BnaC04T0505200ZS
WE: WE_C04G61700.t1
WE_v0: BnaC04T0492100WE
Darmor: C04p60040.1_BnaDAR
BH: BnaC04T561500BH
Quinta: BnaC04T0447800QU
ZS2: BnaC04T489200ZS2
SW: BnaC04T537400SW
Express61: C04p044760.1_BnaEXP
Xiaoyun: BnaC04G0508000XY
P202: BnaC04G042040P202.1
BL: BnaC04T561500BH
TA: BnaC04T491700TA
Da-Ae: Not available
RB: BnaC04T546900RB
No2127: BnaC04T0462900NO
P130: BnaC04G062210P130.1
Length: 309
KOG ID: KOG1270
KOG E-value: Not available
KOG Score: 516.0
KOG Annotation: Coenzyme transport and metabolism
Biological Process: GO:0006744(ubiquinone biosynthetic process)
Cellular Component: -
Molecular Function: GO:0008425(2-polyprenyl-6-methoxy-1,4-benzoquinone methyltransferase activity)
KEGG Ortholog: K00591 COQ3; polyprenyldihydroxybenzoate methyltransferase / 3-demethylubiquinol 3-O-methyltransferase [EC:2.1.1.114 2.1.1.64]
NR Protein: XP_013698633.1
NR E-value: 4.800000e-174
NR Score: 615.5
NR Annotation: XP_013698633.1 ubiquinone biosynthesis O-methyltransferase, mitochondrial [Brassica napus]
SwissProt Protein: O49354|COQ3_ARATH
SwissProt E-value: Not available
SwissProt Score: 516.0
SwissProt Annotation: Ubiquinone biosynthesis O-methyltransferase, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=COQ3 PE=1 SV=2
CDS Sequence (943 bp)
ATGAATCAAATGCAAAGGATTCTCTCTGCTCGTCGACTATCTCACTCAATCATACCTCAATCGTGCTTTC
TTCACCGGCGGTGGTTCGCGACCTCAGAAACTGATGCTTCGTCGCCACCATTGTCTTCCGCGCATCAAAA
GATCCAAACTTTGGAAGACAAAGCTTCCAACAAAAGCCGAAGCACGGCGTTGACAACATCTTCTCTTAAT
GAACAAGAACTTGCCAAATTCTCTGCCATTGCTGATACCTGGTGGCATTCTGAAGGGCCGTTTAAGCCGT
TGCATCTGATGAATCCAACTCGGTTGGCTTTCATCCGCTCCACCTTATGCAGGCATTTCAGTAAGGATCC
GAGTTCTGCTAGGCCTTTTGAAGGGCTGAGACTTATTGATGTAGGTTGTGGCGGTGGACTTCTTTCCGAG
CCTCTAGCACGGTTGGGAGCAACTGTCACAGGGATTGATGCTGTTGATAAGAATGTCAAAATTGCTCGTC
TTCACGCTGATATGGATCCTATGACTTCAAAAATTGAATACCAATGCACTACAGCAGAAAAGCTAGTGGA
TGAAGGGAGGACGTTTGATGCTGTTCTTGCCTTAGAGGTCATCGAGCATGTAGCAAACCCTGCAGAGTTC
TGCAACTCGTTGTCAGCATTGACCATCCCCAACGGAGCCACGATACTTTCTACAATTAACCGCTCTATGC
GAGCGTATGCATCAGCCATTGTTGCAGCAGAGTACATTCTACAATGGCTTCCTAAAGGCACACACGAGTG
GTCAAGTTTTCTAACTCCTGAAGAACTTACTATGATACTACAACGCGCTTCAATCGATGTGAAGGAGATG
GCTGGATTTGTGTACAACCCAATAACAGGAAGATGGTTATTGTCAGATGACATAAGTGTGAACTTCATCG
CTTATGGGACGAAAAAATAA
Upstream Sequence
ACTAAATGGGCTAGCTCAGAGTAGCCCATATACATCAGTCACCACATTCCTTTTAAATTCCAATTTTACC
CCTCCCCTTCCATCACTTTCTCTGCGTCGGCGGCGAAAAACCCGACGTCACTCACCGCCTTTTGCTACAC
TCCTACACGCCATCTCTTCCTCATCATCTCGCAATCGCTATTATTTTCTCGAGGAAAATGAATCAAATGC
AAAGGATTCTCTCTGCTCGTCGACTATCTCACTCAATCATACCTCAATCGTGCTTTCTTCACCGGCGGTG
GTTCGCGACCTCAGAAACTGATGCTTCGTCGCCACCATTGTCTTCCGCGCATCAAAAGATCCAAACTTTG
GAAGACAAAGCTTCCAACAAAAGCCGAAGCACGGCGTTGACAACATCTTCTCTTAATGAACAAGAACTTG
CCAAATTCTCTGCCATTGCTGATACCTGGTGGCATTCTGAAGGGCCGTTTAAGCCGTTGCATCTGATGAA
TCCAACTCGGTTGGCTTTCATCCGCTCCACCTTATGCAGGCATTTCAGTAAGGATCCGAGTTCTGCTAGG
CCTTTTGAAGGGCTGAGACTTATTGATGTAGGTTGTGGCGGTGGACTTCTTTCCGAGCCTCTAGCACGGT
TGGGAGCAACTGTCACAGGGATTGATGCTGTTGATAAGAATGTCAAAATTGCTCGTCTTCACGCTGATAT
GGATCCTATGACTTCAAAAATTGAATACCAATGCACTACAGCAGAAAAGCTAGTGGATGAAGGGAGGACG
TTTGATGCTGTTCTTGCCTTAGAGGTCATCGAGCATGTAGCAAACCCTGCAGAGTTCTGCAACTCGTTGT
CAGCATTGACCATCCCCAACGGAGCCACGATACTTTCTACAATTAACCGCTCTATGCGAGCGTATGCATC
AGCCATTGTTGCAGCAGAGTACATTCTACAATGGCTTCCTAAAGGCACACACGAGTGGTCAAGTTTTCTA
ACTCCTGAAGAACTTACTATGATACTACAACGCGCTTCAATCGATGTGAAGGAGATGGCTGGATTTGTGT
ACAACCCAATAACAGGAAGATGGTTATTGTCAGATGACATAAGTGTGAACTTCATCGCTTATGGGACGAA
AAAATAA
Downstream Sequence
GTTCGTCTTCTAAGCTTGAATCAATGAAGTGTTGATGGGTTCTCTTTAAAATGATCAAAG
CTTGAGTCTTTGAGGGCTTTGCGTGATTTGCTTTGCTCTATGCTTTTAGGAATTGAACCT
TAGTGTGTAAAGGGTTTGTTACATTATGTTTAATTCGAGGTAAAGACTTCGAAGATGTGA
TCGGTGTTAATGGGTTCTCTTTAAAAAGATTAAAGCTTTGAGCTTTTAGGGCTTTGCATG
ATTTAATGTACTCTATTGGTATTATATGAAGGTGGCATTCTGAAGGGCCGTTTAAGCCGT
TGCATCTGATGAATCCAACTCGGTTGGCTTTCATCCGCTCCACCTTATGCAGGCATTTCA
GGTGCAAACTTCTTATGTATACTTTTTGTTTTCTTCTTTTATGTTGTATCCTTCTCTGTT
GGATTAACTCTGTGTTCTTCTCAGTAAGGATCCGAGTTCTGCTAGGCCTTTTGAAGGGCT
GAGACTTATTGATGTAGGTTGTGGCGGTGGACTTCTTTCCGAGGTATTCTTTTTCATCAG
TTACCTATTCATTAGAAGAGAGTTTGTGGTTACAGCTTGGAATGAAATTGATTTGGTGAC
TAGTGGCGTGTTGTTCTTTTTTTGGTTTGAAGCCTCTAGCACGGTTGGGAGCAACTGTCA
CAGGGATTGATGCTGTTGATAAGAATGTCAAAATTGCTCGTCTTCACGCTGTAAGGTCTC
TTACTTGATTGTATCATTGATTATGTAGATAACTTCGTGTCATCCATATGATGCACTTCT
TCTCTATCCTGACTTTCATTCTTTGTTGTATGTTTAATGAAATGTCTCTGCAGGATATGG
ATCCTATGACTTCAAAAATTGAATACCAATGCACTACAGCAGGTACTACTTTATCCTATT
ACCTTAGATGATGAACAATTTAAGTTAGTGTTTTGTGTTTTCTCTCCTATGTCTACTTGC
TTACATAGTATTCTCTTGGCCAGAAAAGCTAGTGGATGAAGGGAGGACGTTTGATGCTGT
TCTTGCCTTAGAGGTTTTGTCAAACTTCATCTCATATTTTATACTAGTTCCATTATTTAG
TGCTTTCCAGTTTCATTTTCATGGGCATTGTCTCTGATTTCTACAATGAAGGTCATCGAG
CATGTAGCAAACCCTGCAGAGTTCTGCAACTCGTTGTCAGCATTGACCATCCCCAACGGA
GCCACGATACTTTCTACAATTAACCGCTCTATGCGAGCGTATGCATCAGCCATTGTTGCA
GCAGAGTACATTCTACAATGGGTATCCTTCAGTTTCAAATCTCATCTATCCTCTGTTTCA
CACCATTTCCTGGCATGTGTTTGTTGATTTTTACATTTGATCCTTTGTATGATCAAATCA
CCTGCAGCTTCCTAAAGGCACACACGAGTGGTCAAGTTTTCTAACTCCTGAAGAACTTAC
TATGATACTACAACGCGCTTCAATCGATGTAAGCCAACTCCCTCCCCGTTTAGTAACACC
TATGTGGCAGTCTCAAGAACTTTATCTTAAGCTGACTGAAAGAGTCTCTCGATGTGAACA
AGAAGGATTGTTCATATGTTTATCTTTAGAGGATTGTTTCAAATATATACTGTGGTAGAA
ATGGTAACATGAAACTATGGTTTGCAGGTGAAGGAGATGGCTGGATTTGTGTACAACCCA
ATAACAGGAAGATGGTTATTGTCAGATGACATAAGTGTGAACTTCATCGCTTATGGGACG
AAAAAATAATGATCTTGAAGACATATAATCGATTGTTCTTCAATCTGTGTATCTCTCTGC
GCATCTGCTTCTGGAAGTTTCTTAGGACAGGACAGTAGTTAAATTTGaaataagtgagag
taatccgaggataccgttccaaactttattattataagtttacaAAGTGAAACAATTAAG
AAATTGTCAATGCTTACAAAATACTGGGAAAAACAAAAGAATCTGATATACAAATTAAGT
AAATCCAGATTTGTTTTTGT
Pro Sequence
MNQMQRILSARRLSHSIIPQSCFLHRRWFATSETDASSPPLSSAHQKIQT
LEDKASNKSRSTALTTSSLNEQELAKFSAIADTWWHSEGPFKPLHLMNPT
RLAFIRSTLCRHFSKDPSSARPFEGLRLIDVGCGGGLLSEPLARLGATVT
GIDAVDKNVKIARLHADMDPMTSKIEYQCTTAEKLVDEGRTFDAVLALEV
IEHVANPAEFCNSLSALTIPNGATILSTINRSMRAYASAIVAAEYILQWL
PKGTHEWSSFLTPEELTMILQRASIDVKEMAGFVYNPITGRWLLSDDISV
NFIAYGTKK
mRNA Sequence
ACTAAATGGGCTAGCTCAGAGTAGCCCATATACATCAGTCACCACATTCCTTTTAAATTCCAATTTTACC
CCTCCCCTTCCATCACTTTCTCTGCGTCGGCGGCGAAAAACCCGACGTCACTCACCGCCTTTTGCTACAC
TCCTACACGCCATCTCTTCCTCATCATCTCGCAATCGCTATTATTTTCTCGAGGAAAATGAATCAAATGC
AAAGGATTCTCTCTGCTCGTCGACTATCTCACTCAATCATACCTCAATCGTGCTTTCTTCACCGGCGGTG
GTTCGCGACCTCAGAAACTGATGCTTCGTCGCCACCATTGTCTTCCGCGCATCAAAAGATCCAAACTTTG
GAAGACAAAGCTTCCAACAAAAGCCGAAGCACGGCGTTGACAACATCTTCTCTTAATGAACAAGAACTTG
CCAAATTCTCTGCCATTGCTGATACCTGGTGGCATTCTGAAGGGCCGTTTAAGCCGTTGCATCTGATGAA
TCCAACTCGGTTGGCTTTCATCCGCTCCACCTTATGCAGGCATTTCAGTAAGGATCCGAGTTCTGCTAGG
CCTTTTGAAGGGCTGAGACTTATTGATGTAGGTTGTGGCGGTGGACTTCTTTCCGAGCCTCTAGCACGGT
TGGGAGCAACTGTCACAGGGATTGATGCTGTTGATAAGAATGTCAAAATTGCTCGTCTTCACGCTGATAT
GGATCCTATGACTTCAAAAATTGAATACCAATGCACTACAGCAGAAAAGCTAGTGGATGAAGGGAGGACG
TTTGATGCTGTTCTTGCCTTAGAGGTCATCGAGCATGTAGCAAACCCTGCAGAGTTCTGCAACTCGTTGT
CAGCATTGACCATCCCCAACGGAGCCACGATACTTTCTACAATTAACCGCTCTATGCGAGCGTATGCATC
AGCCATTGTTGCAGCAGAGTACATTCTACAATGGCTTCCTAAAGGCACACACGAGTGGTCAAGTTTTCTA
ACTCCTGAAGAACTTACTATGATACTACAACGCGCTTCAATCGATGTGAAGGAGATGGCTGGATTTGTGT
ACAACCCAATAACAGGAAGATGGTTATTGTCAGATGACATAAGTGTGAACTTCATCGCTTATGGGACGAA
AAAATAA