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Detail for ZS11_A07G26520.t1

Genome:
ZS11: ZS11_A07G26520.t1
ZS11_v0: BnaA07T0222600ZS
WE: WE_A07G27230.t1
WE_v0: BnaA07T0215300WE
Darmor: A07p26250.1_BnaDAR
BH: BnaC06T266600BH
Quinta: BnaA07T0181400QU
ZS2: BnaA07T225300ZS2
SW: BnaA07T236800SW
Express61: A07p020420.1_BnaEXP
Xiaoyun: BnaA07G0222500XY
P202: BnaC06G056760P202.1
BL: BnaC06T266600BH
TA: BnaA07T227500TA
Da-Ae: Not available
RB: BnaA07T239500RB
No2127: BnaC06T0227100NO
P130: BnaA07G024610P130.1
Length: 337
KOG ID: KOG1540
KOG E-value: Not available
KOG Score: 612.0
KOG Annotation: Coenzyme transport and metabolism
Biological Process: -
Cellular Component: -
Molecular Function: -
KEGG Ortholog: K12502 VTE3, APG1; MPBQ/MSBQ methyltransferase [EC:2.1.1.295]
NR Protein: XP_009104414.1
NR E-value: 3.600000e-199
NR Score: 699.1
NR Annotation: XP_009104414.1 PREDICTED: 2-methyl-6-phytyl-1,4-hydroquinone methyltransferase, chloroplastic [Brassica rapa]
SwissProt Protein: Q9LY74|BQMT_ARATH
SwissProt E-value: Not available
SwissProt Score: 612.0
SwissProt Annotation: 2-methyl-6-phytyl-1,4-hydroquinone methyltransferase, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=VTE3 PE=1 SV=1
CDS Sequence (1028 bp)
ATGGCTTCTCTCATGCTCAACGGGGCCATCACCTTCCCCAAGGGATTAGGCTTCCCCGCTTCCAATCTAC
ACGCCAGACCAAGTCCTCCGCTGAGTCTCGTCTCAAACACAGCCACGCGGAGACTCTCCGTGGCGACAAG
ATGCAGCAGCAGCAGCAGCGTGTCGGCGTCAAGGCCATCTGCGCAGCCTAGGTTCATCCAGCACAAGAAA
GAGGCCTACTGGTTCTACAGGTTCCTGTCCATCGTGTACGACCACATCATCAATCCCGGCCACTGGACGG
AGGATATGAGGGACGACGCTCTCGAGCCTGCGGATCTGAGCCATCCGGACATGCGAGTTGTCGACGTCGG
AGGCGGAACGGGTTTCACCACGCTGGGAATCGTCAAGACGGTGAAGGCTAAGAACGTGACGATTCTGGAC
CAGTCGCCGCATCAGCTGGCAAAGGCGAAGCAGAAGGAGCCGTTGAAGGAGTGCAAGATCGTTGAAGGAG
ATGCGGAGGATCTCCCTTTTCCTACTGATTATGCTGACAGATACGTCTCTGCTGGAAGCATTGAGTACTG
GCCCGACCCGCAGAGGGGGATAAGGGAAGCGTACAGAGTTCTCAAGATCGGTGGGAAAGCATGTCTCATT
GGCCCTGTCCACCCGACGTTTTGGCTTTCTCGTTTCTTTGCAGATGTGTGGATGCTTTTCCCCAAGGAGG
AGGAGTACATTGAGTGGTTCAAGAATGCTGGTTTCAAGGACGTTCAGCTTAAGAGGATTGGCCCCAAGTG
GTACCGTGGTGTTCGCAGGCACGGACTTATCATGGGATGCTCTGTTACTGGTGTCAAACCTGCCTCTGGA
GACTCTCCTCTCCAGCTTGGACCAAAGGAAGAGGACGTGGAGAAGCCTGTAAACAATCCTTTCTCCTTCT
TGGGACGCTTCCTCTTGGGAACCTTAGCGGCTGCCTGGTTTGTGTTAATCCCAATCTACATGTGGATCAA
GGATCAGATCGTTCCCAAAGACCAACCCATCTGA
Upstream Sequence
ATAATAAATAAATAAGGTATGTGGCTGCGAGTCATCACTCTCATATAAGGCCAGTGGTTTTGGCATCTGC
TCGTTCAGTGGTGATAAAGCGCCTCGTTTCCAACTACCCGATCTGATAAGCATTTCACGCTTCACCAATG
GCTTCTCTCATGCTCAACGGGGCCATCACCTTCCCCAAGGGATTAGGCTTCCCCGCTTCCAATCTACACG
CCAGACCAAGTCCTCCGCTGAGTCTCGTCTCAAACACAGCCACGCGGAGACTCTCCGTGGCGACAAGATG
CAGCAGCAGCAGCAGCGTGTCGGCGTCAAGGCCATCTGCGCAGCCTAGGTTCATCCAGCACAAGAAAGAG
GCCTACTGGTTCTACAGGTTCCTGTCCATCGTGTACGACCACATCATCAATCCCGGCCACTGGACGGAGG
ATATGAGGGACGACGCTCTCGAGCCTGCGGATCTGAGCCATCCGGACATGCGAGTTGTCGACGTCGGAGG
CGGAACGGGTTTCACCACGCTGGGAATCGTCAAGACGGTGAAGGCTAAGAACGTGACGATTCTGGACCAG
TCGCCGCATCAGCTGGCAAAGGCGAAGCAGAAGGAGCCGTTGAAGGAGTGCAAGATCGTTGAAGGAGATG
CGGAGGATCTCCCTTTTCCTACTGATTATGCTGACAGATACGTCTCTGCTGGAAGCATTGAGTACTGGCC
CGACCCGCAGAGGGGGATAAGGGAAGCGTACAGAGTTCTCAAGATCGGTGGGAAAGCATGTCTCATTGGC
CCTGTCCACCCGACGTTTTGGCTTTCTCGTTTCTTTGCAGATGTGTGGATGCTTTTCCCCAAGGAGGAGG
AGTACATTGAGTGGTTCAAGAATGCTGGTTTCAAGGACGTTCAGCTTAAGAGGATTGGCCCCAAGTGGTA
CCGTGGTGTTCGCAGGCACGGACTTATCATGGGATGCTCTGTTACTGGTGTCAAACCTGCCTCTGGAGAC
TCTCCTCTCCAGCTTGGACCAAAGGAAGAGGACGTGGAGAAGCCTGTAAACAATCCTTTCTCCTTCTTGG
GACGCTTCCTCTTGGGAACCTTAGCGGCTGCCTGGTTTGTGTTAATCCCAATCTACATGTGGATCAAGGA
TCAGATCGTTCCCAAAGACCAACCCATCTGATAACAACTTGTGATTTGTAATACACTCCTATGTTAGACG
CTTTTTTTTTTGTCCTCGTGACTATGTTGAGCCCTTTTCAAAAATATATCTATCACTCTATTCCACCATG
TTGATCTCAATTCTATGCTACTTGTTTGATATTGTTTCCTCACCTC
Downstream Sequence
GGTAACAAAAAAATAAAAAATTCAATTCATTTGGTTTGGAATTGTGGATTGATTGGGTTT
AGGGTTTATGTTTGGACAGCATTGAGTACTGGCCCGACCCGCAGAGGGGGATAAGGGAAG
CGTACAGAGTTCTCAAGATCGGTGGGAAAGCATGTCTCATTGGCCCTGTCCACCCGACGT
TTTGGCTTTCTCGTTTCTTTGCAGATGTGTGGATGCTTTTCCCCAAGGAGGAGGAGTACA
TTGAGTGGTTCAAGAATGCTGGTTTCAAGGACGTTCAGCTTAAGAGGATTGGCCCCAAGT
GGTACCGTGGTGTTCGCAGGCACGGACTTATCATGGGATGCTCTGTTACTGGTGTCAAAC
CTGCCTCTGGAGACTCTCCTCTCCAGGTTTGTATTTGCCCATTTCCTCCCTGTCCTCTCT
CTGTATACTTGAAGCTTTTGCTTTTTTTTTTTACTATCCATCATCTTGAAATGCTGTAGC
TTGGACCAAAGGAAGAGGACGTGGAGAAGCCTGTAAACAATCCTTTCTCCTTCTTGGGAC
GCTTCCTCTTGGGAACCTTAGCGGCTGCCTGGTTTGTGTTAATCCCAATCTACATGTGGA
TCAAGGATCAGATCGTTCCCAAAGACCAACCCATCTGATAACAACTTGTGATTTGTAATA
CACTCCTATGTTAGACGCTTTTTTTTTTGTCCTCGTGACTATGTTGAGCCCTTTTCAAAA
ATATATCTATCACTCTATTCCACCATGTTGATCTCAATTCTATGCTACTTGTTTGATATT
GTTTCCTCACCTCACCTTATAGACGTCCCAGTGTCGGTAAACATGAAAGTTAAGGACGCA
TATATTGATTAGTGAGTGTACCAGAGAACCCTCACATAATTGCGGAATAACTATGTTAAT
TGCTTGAACAAATATTGATATGCCTCCAAAATCATATTCTTTTTTGTTGCTGTATATAAT
AAATAGAGCTAAAAATTTTAAAAGATGCATGCCAAGCCGACAAAGAGACTTGGCGGAAGA
GCACAACATGAGTGACGCAAATGTAAGATAGGGTTTTGTAATATGTTCGGTACTGATCAC
TCTTTTGCAAAATTGATGGATTGACAACTCTTTCACATTTAATTGTAGTAGAAAGTTATG
AGCATTGTTGTTCTCAGGCTCTGTTGAAGACTCCTCTTTTATTAGTCTAATGTGAAATGA
GTCAGTAGACAATTTTCAAAGCAAATTAATAGTTTAGATTTATTCATAGATGTAAATACA
ATTCACGGGCCTGAAATAAATTTAGAAAATTGCAATCTACTGGTTGGCTTACAATAATGT
CACTGCCCTATGAACCTTAAGCCCATATCCAACGGAAGAAGCAAAGCTCAGGCAAATTAC
AATCCATCTTACTTTTTTTTTGGTTTGGTTTGGTTGACTTTTGACTGGTGGAGTGTGAAA
CGTACAACAATTAAACTGAAGGGCGTGAAATAAGAAATACAAAAGGCATGAGACAATTAG
TTTAGGAGGATCAGCTCATAAGTCTGCCTCCACAGGTGTAAGTGACGATGCACGACTCAT
CCACAAACACTGTATAGTTATGCGCAGGTTTTGCTAGCAATGGCGGAAGCCTAACCAGAA
GGTCGCACACGCACTCGTTGTCCATTTGCTTAAGCCACTTGCAGCACTCTTGTTGAGCAT
ACGTCTCTTCTGTGTGTCTGTGACTGTGATGATGATGATGGTGGTGGTGGTGGCGACGGC
GGTGGCGACGGTGGTTATGGTTGTTGTCGTGGTGGTCGTCATCATCGTGATCGTGATCAT
GATCGTGATCATGATCACGGTTGTGGTCATGGTCATTGTGATCATGGTCATCGTGATCGT
GGTCATGGTCATCATGGTCGTGATCGTGGTCATGGTCATCATGGTCGTGGTCATCGTCAT
CGTGGTCGTGATCATCATCATCATCGTCATGGTCGTGGTCGTGGTCATCGTCGTGGTCAT
GATCATGGTGAGGAGGAGGA
Pro Sequence
MASLMLNGAITFPKGLGFPASNLHARPSPPLSLVSNTATRRLSVATRCSS
SSSVSASRPSAQPRFIQHKKEAYWFYRFLSIVYDHIINPGHWTEDMRDDA
LEPADLSHPDMRVVDVGGGTGFTTLGIVKTVKAKNVTILDQSPHQLAKAK
QKEPLKECKIVEGDAEDLPFPTDYADRYVSAGSIEYWPDPQRGIREAYRV
LKIGGKACLIGPVHPTFWLSRFFADVWMLFPKEEEYIEWFKNAGFKDVQL
KRIGPKWYRGVRRHGLIMGCSVTGVKPASGDSPLQLGPKEEDVEKPVNNP
FSFLGRFLLGTLAAAWFVLIPIYMWIKDQIVPKDQPI
mRNA Sequence
ATAATAAATAAATAAGGTATGTGGCTGCGAGTCATCACTCTCATATAAGGCCAGTGGTTTTGGCATCTGC
TCGTTCAGTGGTGATAAAGCGCCTCGTTTCCAACTACCCGATCTGATAAGCATTTCACGCTTCACCAATG
GCTTCTCTCATGCTCAACGGGGCCATCACCTTCCCCAAGGGATTAGGCTTCCCCGCTTCCAATCTACACG
CCAGACCAAGTCCTCCGCTGAGTCTCGTCTCAAACACAGCCACGCGGAGACTCTCCGTGGCGACAAGATG
CAGCAGCAGCAGCAGCGTGTCGGCGTCAAGGCCATCTGCGCAGCCTAGGTTCATCCAGCACAAGAAAGAG
GCCTACTGGTTCTACAGGTTCCTGTCCATCGTGTACGACCACATCATCAATCCCGGCCACTGGACGGAGG
ATATGAGGGACGACGCTCTCGAGCCTGCGGATCTGAGCCATCCGGACATGCGAGTTGTCGACGTCGGAGG
CGGAACGGGTTTCACCACGCTGGGAATCGTCAAGACGGTGAAGGCTAAGAACGTGACGATTCTGGACCAG
TCGCCGCATCAGCTGGCAAAGGCGAAGCAGAAGGAGCCGTTGAAGGAGTGCAAGATCGTTGAAGGAGATG
CGGAGGATCTCCCTTTTCCTACTGATTATGCTGACAGATACGTCTCTGCTGGAAGCATTGAGTACTGGCC
CGACCCGCAGAGGGGGATAAGGGAAGCGTACAGAGTTCTCAAGATCGGTGGGAAAGCATGTCTCATTGGC
CCTGTCCACCCGACGTTTTGGCTTTCTCGTTTCTTTGCAGATGTGTGGATGCTTTTCCCCAAGGAGGAGG
AGTACATTGAGTGGTTCAAGAATGCTGGTTTCAAGGACGTTCAGCTTAAGAGGATTGGCCCCAAGTGGTA
CCGTGGTGTTCGCAGGCACGGACTTATCATGGGATGCTCTGTTACTGGTGTCAAACCTGCCTCTGGAGAC
TCTCCTCTCCAGCTTGGACCAAAGGAAGAGGACGTGGAGAAGCCTGTAAACAATCCTTTCTCCTTCTTGG
GACGCTTCCTCTTGGGAACCTTAGCGGCTGCCTGGTTTGTGTTAATCCCAATCTACATGTGGATCAAGGA
TCAGATCGTTCCCAAAGACCAACCCATCTGATAACAACTTGTGATTTGTAATACACTCCTATGTTAGACG
CTTTTTTTTTTGTCCTCGTGACTATGTTGAGCCCTTTTCAAAAATATATCTATCACTCTATTCCACCATG
TTGATCTCAATTCTATGCTACTTGTTTGATATTGTTTCCTCACCTC