SEARCH

DETAIL

Detail for ZS11_A09G00840.t1

Genome:
ZS11: ZS11_A09G00840.t1
ZS11_v0: BnaA09T0016800ZS
WE: WE_C09G00890.t1
WE_v0: BnaA09T0008900WE
Darmor: C09p00840.1_BnaDAR
BH: BnaA09T005900BH
Quinta: BnaA09T0002300QU
ZS2: BnaA09T009100ZS2
SW: BnaC09T001000SW
Express61: C09p000630.1_BnaEXP
Xiaoyun: BnaA09G0007700XY
P202: BnaC09G000670P202.1
BL: BnaA09T005900BH
TA: BnaA09T002400TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g01990D
RB: BnaA09T008800RB
No2127: BnaA09T0012300NO
P130: BnaA09G000680P130.1
Length: 254
KOG ID: KOG1192
KOG E-value: 3.850000e-96
KOG Score: 291.0
KOG Annotation: Energy production and conversion; Carbohydrate transport and metabolism
Biological Process: -
Cellular Component: -
Molecular Function: -
KEGG Ortholog: K08237 E2.4.1.218; hydroquinone glucosyltransferase [EC:2.4.1.218]
NR Protein: RID43193.1
NR E-value: 1.400000e-91
NR Score: 341.3
NR Annotation: RID43193.1 hypothetical protein BRARA_I00068 [Brassica rapa]
SwissProt Protein: Q9M156|U72B1_ARATH
SwissProt E-value: 1.630000e-95
SwissProt Score: 291.0
SwissProt Annotation: UDP-glycosyltransferase 72B1 OS=Arabidopsis thaliana OX=3702 GN=UGT72B1 PE=1 SV=1
CDS Sequence (775 bp)
ATGCACTCTCTATATAAAGCCATTACTCAATACCTCATCAAATACAAAAAAGAAAGAAAAAAAAGTTACG
CAATCATAAAACTTTCAAAAGAACAAAAAAAGTTTGCATCAATGGAAGAATCAAAAGCGCCTCACGTTGC
GATCATACCGAGTCCAGGAATGGGTCACCTCATCCCACTCGTGCAGTTCGCTAAACGACTCGTTCAACGC
CACGGCTTCTCCGTAACCTTCATCGTCGTCGGCGAAGGTCCACCGTCAAAAGCTCAGAGAACCGTTCTTG
ACTCTCTCCCGTCTTCCTTCTCCTCCGTCTTTCTCCCTCCCGCTGACCTCACCGACCTCCCTCCGACGGC
TCGCATCGAGACTCGCATCTCCCTCACCGTGAGCCGTTCAAACCCGGAGCTCCGGCGAGTCTTCGAGACG
TTCGCGGCGGAGGGGCGTTTGCCGACGGTGCTCGTCGTCGATCTTTTTGGTACGGACGCTTTCGACGTAG
CCAAGGAGTTCCACGTGTCGCCTTATATTTTCTTCCCATCAACGGCCAACGTCTTGTCTTTTTTTCTCCA
TTTTCCTAAACTCGACGAAACGATGTTGTGTGACTTTGGTGAGTTAACCGAACCGGTTAAGGTCCCCGGT
GTGTACTGTTGTCTGGAAAAGATGTTCTTGACCCGGCTCAAGATCGGAAAAATGACGCGTACAAATGGCT
TCTCCACAACACCAAGAGGTACAAAGAAGCAGAAGGGATTCTTGTTAATAGTTTTCTCGAGCTAG
Upstream Sequence
CCCCTGTTAATATGATACACACATGCACTCTCTATATAAAGCCATTACTCAATACCTCATCAAATACAAA
AAAGAAAGAAAAAAAAGTTACGCAATCATAAAACTTTCAAAAGAACAAAAAAAGTTTGCATCAATGGAAG
AATCAAAAGCGCCTCACGTTGCGATCATACCGAGTCCAGGAATGGGTCACCTCATCCCACTCGTGCAGTT
CGCTAAACGACTCGTTCAACGCCACGGCTTCTCCGTAACCTTCATCGTCGTCGGCGAAGGTCCACCGTCA
AAAGCTCAGAGAACCGTTCTTGACTCTCTCCCGTCTTCCTTCTCCTCCGTCTTTCTCCCTCCCGCTGACC
TCACCGACCTCCCTCCGACGGCTCGCATCGAGACTCGCATCTCCCTCACCGTGAGCCGTTCAAACCCGGA
GCTCCGGCGAGTCTTCGAGACGTTCGCGGCGGAGGGGCGTTTGCCGACGGTGCTCGTCGTCGATCTTTTT
GGTACGGACGCTTTCGACGTAGCCAAGGAGTTCCACGTGTCGCCTTATATTTTCTTCCCATCAACGGCCA
ACGTCTTGTCTTTTTTTCTCCATTTTCCTAAACTCGACGAAACGATGTTGTGTGACTTTGGTGAGTTAAC
CGAACCGGTTAAGGTCCCCGGTGTGTACTGTTGTCTGGAAAAGATGTTCTTGACCCGGCTCAAGATCGGA
AAAATGACGCGTACAAATGGCTTCTCCACAACACCAAGAGGTACAAAGAAGCAGAAGGGATTCTTGTTAA
TAGTTTTCTCGAGCTAGAGCCAAATGCTATCAAGGCCTTGCAAGAACCGGGTTTAGATAAACCACCGGTT
TATCCGATCGGACCGTTGGTTAACATTGGTCAGCAAGAGGGTAGTAACGGGGTGGAAAAGGCCGAGTGTT
TGAAGTGGTTGGATAAACAACCGCTCGGTTCGGTTTTGTATGTTTCGTTTGGGAGTGGTGGTGCACTAAC
GCTCGAGCAGCAAAATGAGCTTGCTCTTGGTCTTGCAGACAGCGAGCAACGGTTCCTTTGGGTCATACGT
AGTCCGAGTCAAGTTGCGGACGCTTCGTTTTTCAATTCACATAGCGAATCCGACCCGTTAAGCTATTTAC
CACCCGGTTTCTTGGAACGGACCAAAGGCAGAGGTTTTATGATCCCTTCATGGGCTCCACAAGCCCAAAT
TCTAGCTCATTCGTCTACAGGAGGGTTTTTGACTCATTGTGGATGGAACTCGACTCTAGAGAGTATAGTA
AGTGGTGTTCCGCTCATTGCATGGCCATTATACGCTGAGCAGAAGATGAATGCGGTTTCGTTGGCCGAAG
ATATTCGAGTTGCGATCAGGGCTCGTGCCGGGGAGGATGGGGTGGTGAGAAGAGAAGAGGTGGTTAGAGT
GGTTAAGGGATTAATGGAAGGTGAAGAAGGTAAATGTGTGAGGAATAAGATGAAGGCAATGAAGGAAGGA
GCTAGTAGGGTGTTGAGTGATGATGGGTCCTCTACAAAGGCACTTAGTCTTGTTGCATTAAAGTGGAAAG
ACCACCAAAAAGG
Downstream Sequence
AGCCAAATGCTATCAAGGCCTTGCAAGAACCGGGTTTAGATAAACCACCGGTTTATCCGA
TCGGACCGTTGGTTAACATTGGTCAGCAAGAGGGTAGTAACGGGGTGGAAAAGGCCGAGT
GTTTGAAGTGGTTGGATAAACAACCGCTCGGTTCGGTTTTGTATGTTTCGTTTGGGAGTG
GTGGTGCACTAACGCTCGAGCAGCAAAATGAGCTTGCTCTTGGTCTTGCAGACAGCGAGC
AACGGTTCCTTTGGGTCATACGTAGTCCGAGTCAAGTTGCGGACGCTTCGTTTTTCAATT
CACATAGCGAATCCGACCCGTTAAGCTATTTACCACCCGGTTTCTTGGAACGGACCAAAG
GCAGAGGTTTTATGATCCCTTCATGGGCTCCACAAGCCCAAATTCTAGCTCATTCGTCTA
CAGGAGGGTTTTTGACTCATTGTGGATGGAACTCGACTCTAGAGAGTATAGTAAGTGGTG
TTCCGCTCATTGCATGGCCATTATACGCTGAGCAGAAGATGAATGCGGTTTCGTTGGCCG
AAGATATTCGAGTTGCGATCAGGGCTCGTGCCGGGGAGGATGGGGTGGTGAGAAGAGAAG
AGGTGGTTAGAGTGGTTAAGGGATTAATGGAAGGTGAAGAAGGTAAATGTGTGAGGAATA
AGATGAAGGCAATGAAGGAAGGAGCTAGTAGGGTGTTGAGTGATGATGGGTCCTCTACAA
AGGCACTTAGTCTTGTTGCATTAAAGTGGAAAGACCACCAAAAAGGGTTAGTGCAAAATG
GCAAGCACTGAATATGAAATTGTTTATGTATGTGTCTCGTATGTGTTTTGTGCAGTTGTG
TTTGTCTATGCATGTTTATAGTTTTATTGCTGCTTTTGTGTCATCAACTACTTTTTCCTT
AATGATGTTAGCTTTTGATTTATTGGTAACTAAGTAAGCTTTAGATGCATGGTGCAGTTA
AGACCTGTACAGTGCTACAAATGGTCCAATTAATACTTTCTCATTTTCAAAATAATTGAT
ATTTACTAACGGTGTGCTGAGTTAGTGATTTAGCGCAAAAACTTATATACATTGTGTTCC
ATGTTAGCTTCCCGTTGAAATGAATGTTTTAGACCTTGTTATAACAAATTGATATTATAT
TTTTTTTGGTTTTAAATTAGATAATATTTTCAAATGTCAATACAAATTAATTATCGTTTA
TGTCTTAAGACCATTTGTAATATGCATTATGTTTAACTATTTACTAATTGTATTTAACTA
AATAAATAGTGATATTTTGTTTATAAAAAAATCAAATAAATGTGTTTAACCTGTGTAAAA
CCCATAAACATATACTATTTCAAAATGAATATAATAATATCTAAGAAAAAAAAATACTAT
AATTAAAGATATAAATTTTGTCAGAGTCCATTTGTCTGAATTTGTAGCAAGCTTTTTGTT
TGAATTTGTAGTAGGCGTTTTAGTTGAATTTGGAAGCGGATGGTCTAATGACAGGATTGA
ACTTTTGTTATTCACTATGCATGGTAACCGTGATTTGTGACAAATGGTTTCAGCTTTGAA
GTGATTCTTCAAATACCCGTTTGTTTCAGTTGTAACACTTGTTTAAATCTCGTCACTCAT
CATATATCAGTCAGACATCGATTTCAGACCATTTTGTTTGCGTATTACTTTGTAACGTTT
TTGTTTAGTGGTAACTGGTAACCGACGAAAATCAATGGGAGGAAAAAGACCCCACAAATG
GACGAAGAAGAAATAAATGTGTGTGTGTGTGTGTGTGTGGAGTAGGTGAAATAGCGTTTA
ATCGCCACAACACAAAGAACATGAGTGGGACCTGAAGACAGCGTGTCGTTTTATGACTTG
TAAAACGTTGAAGTAGGGGGTTATTTTCGATTTTCCAATGTGTTTAAGCTGTGTTAGAAA
TACACATTACATTTACTTTCCTTCTAGAATGCTCTTTGACCGATTCATATTTGTTGCATC
AGACTTTATCTTAAGAAGTA
Pro Sequence
MHSLYKAITQYLIKYKKERKKSYAIIKLSKEQKKFASMEESKAPHVAIIP
SPGMGHLIPLVQFAKRLVQRHGFSVTFIVVGEGPPSKAQRTVLDSLPSSF
SSVFLPPADLTDLPPTARIETRISLTVSRSNPELRRVFETFAAEGRLPTV
LVVDLFGTDAFDVAKEFHVSPYIFFPSTANVLSFFLHFPKLDETMLCDFG
ELTEPVKVPGVYCCLEKMFLTRLKIGKMTRTNGFSTTPRGTKKQKGFLLI
VFSS
mRNA Sequence
CCCCTGTTAATATGATACACACATGCACTCTCTATATAAAGCCATTACTCAATACCTCATCAAATACAAA
AAAGAAAGAAAAAAAAGTTACGCAATCATAAAACTTTCAAAAGAACAAAAAAAGTTTGCATCAATGGAAG
AATCAAAAGCGCCTCACGTTGCGATCATACCGAGTCCAGGAATGGGTCACCTCATCCCACTCGTGCAGTT
CGCTAAACGACTCGTTCAACGCCACGGCTTCTCCGTAACCTTCATCGTCGTCGGCGAAGGTCCACCGTCA
AAAGCTCAGAGAACCGTTCTTGACTCTCTCCCGTCTTCCTTCTCCTCCGTCTTTCTCCCTCCCGCTGACC
TCACCGACCTCCCTCCGACGGCTCGCATCGAGACTCGCATCTCCCTCACCGTGAGCCGTTCAAACCCGGA
GCTCCGGCGAGTCTTCGAGACGTTCGCGGCGGAGGGGCGTTTGCCGACGGTGCTCGTCGTCGATCTTTTT
GGTACGGACGCTTTCGACGTAGCCAAGGAGTTCCACGTGTCGCCTTATATTTTCTTCCCATCAACGGCCA
ACGTCTTGTCTTTTTTTCTCCATTTTCCTAAACTCGACGAAACGATGTTGTGTGACTTTGGTGAGTTAAC
CGAACCGGTTAAGGTCCCCGGTGTGTACTGTTGTCTGGAAAAGATGTTCTTGACCCGGCTCAAGATCGGA
AAAATGACGCGTACAAATGGCTTCTCCACAACACCAAGAGGTACAAAGAAGCAGAAGGGATTCTTGTTAA
TAGTTTTCTCGAGCTAGAGCCAAATGCTATCAAGGCCTTGCAAGAACCGGGTTTAGATAAACCACCGGTT
TATCCGATCGGACCGTTGGTTAACATTGGTCAGCAAGAGGGTAGTAACGGGGTGGAAAAGGCCGAGTGTT
TGAAGTGGTTGGATAAACAACCGCTCGGTTCGGTTTTGTATGTTTCGTTTGGGAGTGGTGGTGCACTAAC
GCTCGAGCAGCAAAATGAGCTTGCTCTTGGTCTTGCAGACAGCGAGCAACGGTTCCTTTGGGTCATACGT
AGTCCGAGTCAAGTTGCGGACGCTTCGTTTTTCAATTCACATAGCGAATCCGACCCGTTAAGCTATTTAC
CACCCGGTTTCTTGGAACGGACCAAAGGCAGAGGTTTTATGATCCCTTCATGGGCTCCACAAGCCCAAAT
TCTAGCTCATTCGTCTACAGGAGGGTTTTTGACTCATTGTGGATGGAACTCGACTCTAGAGAGTATAGTA
AGTGGTGTTCCGCTCATTGCATGGCCATTATACGCTGAGCAGAAGATGAATGCGGTTTCGTTGGCCGAAG
ATATTCGAGTTGCGATCAGGGCTCGTGCCGGGGAGGATGGGGTGGTGAGAAGAGAAGAGGTGGTTAGAGT
GGTTAAGGGATTAATGGAAGGTGAAGAAGGTAAATGTGTGAGGAATAAGATGAAGGCAATGAAGGAAGGA
GCTAGTAGGGTGTTGAGTGATGATGGGTCCTCTACAAAGGCACTTAGTCTTGTTGCATTAAAGTGGAAAG
ACCACCAAAAAGG