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DETAIL

Detail for ZS11_A03G51110.t1

Genome:
ZS11: ZS11_A03G51110.t1
ZS11_v0: BnaA03T0455000ZS
WE: WE_A03G51120.t1
WE_v0: BnaA03T0462000WE
Darmor: C07p50580.1_BnaDAR
BH: BnaC07T459700BH
Quinta: BnaC02T0346900QU
ZS2: BnaC07T413600ZS2
SW: BnaC07T460000SW
Express61: A03p045140.1_BnaEXP
Xiaoyun: BnaA03G0467500XY
P202: BnaA03G040240P202.3
BL: BnaC07T459700BH
TA: BnaA03T456000TA
Da-Ae: Not available
RB: BnaC07T465200RB
No2127: BnaA03T0447500NO
P130: BnaA02G031840P130.1
Length: 356
KOG ID: KOG2903
KOG E-value: Not available
KOG Score: 582.0
KOG Annotation: Posttranslational modification, protein turnover, chaperones
Biological Process: GO:0006749(glutathione metabolic process)
Cellular Component: -
Molecular Function: GO:0005515(protein binding),GO:0004364(glutathione transferase activity)
KEGG Ortholog: K07393 ECM4, yqjG; glutathionyl-hydroquinone reductase [EC:1.8.5.7]
NR Protein: XP_009137021.1
NR E-value: 2.000000e-208
NR Score: 729.9
NR Annotation: XP_009137021.1 PREDICTED: uncharacterized protein LOC103861065 isoform X1 [Brassica rapa]
SwissProt Protein: P42620|YQJG_ECOLI
SwissProt E-value: 3.730000e-108
SwissProt Score: 322.0
SwissProt Annotation: Glutathionyl-hydroquinone reductase YqjG OS=Escherichia coli (strain K12) OX=83333 GN=yqjG PE=1 SV=1
CDS Sequence (1086 bp)
ATGTCTTTCTCCACGATCCTCAGCCACAACAGCTTCCTCTCTCTCGCTACAAAGTTCACTACTCGTGGTT
CTCGTCTTCAGTGTACAATAGCAATGGCTCGATCTGCGGTTGATGAGACATCAGACTCGGGAGCATTTCA
AAGAACTGCTTCAACATTCCGTAACTTCGTCTCAAGAGATTCTAACTCTCAGTTTCCAGCTGAATCTGGA
AGATACCATCTTTACATATCGTATGCTTGTCCATGGGCTTCTAGATGCATCTCATACTTGAAGATTAAAG
GACTTGACGATGCTATAAGCTTCTCGTCTGTTAAACCCATTTGGGGAAGAACAAAAGAAAGTGATGAGCA
TATGGGATGGGTCTTCCCGGATTCAGACAATGAGGTCGAAGGAGCTGAGCCGGACAATCTTAATGGTGCT
AAGAGTGTAAGAGAACTCTATGAGATTGCTAGCCCAAACTACACCGGGAAGTATACTGTTCCTGTTCTGT
GGGATAAGAAGCTCAAGACCGTTGTGAACAATGAGAGCGCAGAGATAATCAGGATGTTCAACACCGAGTT
CAATCATATTGCGAGAAACCCTGATCTTGACCTTTACCCTTCTCATCTCCAAGCTAAAATCGATGAAGCT
AACGAATGGATCTACAGTGGGATTAACAACGGTGTCTATAGATGTGGGTTTGCAAAAAAACAAGAACCTT
ACGAGGAGGCAGTGCAGCAAGTGTATGAAGCATTAGATAGATGCGAGGAGATTCTTGGAAAGCATCGTTA
CATCTGCGGTAACAATCTGACTGAAACAGATGTCAGATTGTTTGTGACACTTATAAGATTTGACGAGGTT
TATGCTGTTCACTTCAAATGTAACAAGAAACTATTAAGAGAGTATCCGAATCTGTTCAATTACACGAAAG
ATATATTTCAAGTCCCTGGTGTGAGTAGCACCGTGAACATGAACCACATCAAGCAGCATTACTATGGAAG
CCACCCTTCGATCAACCCTTTTGGGATCATCCCTCATGGACCAAACATCGATTACTCCTCGCCTCATGAT
CGACACAGATTCTCCAAATGA
Upstream Sequence
CTTTAGTTGATGTCTTTCTCCACGATCCTCAGCCACAACAGCTTCCTCTCTCTCGCTACAAAGTTCACTA
CTCGTGGTTCTCGTCTTCAGTGTACAATAGCAATGGCTCGATCTGCGGTTGATGAGACATCAGACTCGGG
AGCATTTCAAAGAACTGCTTCAACATTCCGTAACTTCGTCTCAAGAGATTCTAACTCTCAGTTTCCAGCT
GAATCTGGAAGATACCATCTTTACATATCGTATGCTTGTCCATGGGCTTCTAGATGCATCTCATACTTGA
AGATTAAAGGACTTGACGATGCTATAAGCTTCTCGTCTGTTAAACCCATTTGGGGAAGAACAAAAGAAAG
TGATGAGCATATGGGATGGGTCTTCCCGGATTCAGACAATGAGGTCGAAGGAGCTGAGCCGGACAATCTT
AATGGTGCTAAGAGTGTAAGAGAACTCTATGAGATTGCTAGCCCAAACTACACCGGGAAGTATACTGTTC
CTGTTCTGTGGGATAAGAAGCTCAAGACCGTTGTGAACAATGAGAGCGCAGAGATAATCAGGATGTTCAA
CACCGAGTTCAATCATATTGCGAGAAACCCTGATCTTGACCTTTACCCTTCTCATCTCCAAGCTAAAATC
GATGAAGCTAACGAATGGATCTACAGTGGGATTAACAACGGTGTCTATAGATGTGGGTTTGCAAAAAAAC
AAGAACCTTACGAGGAGGCAGTGCAGCAAGTGTATGAAGCATTAGATAGATGCGAGGAGATTCTTGGAAA
GCATCGTTACATCTGCGGTAACAATCTGACTGAAACAGATGTCAGATTGTTTGTGACACTTATAAGATTT
GACGAGGTTTATGCTGTTCACTTCAAATGTAACAAGAAACTATTAAGAGAGTATCCGAATCTGTTCAATT
ACACGAAAGATATATTTCAAGTCCCTGGTGTGAGTAGCACCGTGAACATGAACCACATCAAGCAGCATTA
CTATGGAAGCCACCCTTCGATCAACCCTTTTGGGATCATCCCTCATGGACCAAACATCGATTACTCCTCG
CCTCATGATCGACACAGATTCTCCAAATGAATAAAAATATCAAAGTTTTCACACTTGAGTTGAGTTGTGT
CTTCAGAAAGTTTCCAAATAAAGTTTTGTCTTTGTATGCTTTGAGAAAAATAAAAGGTTGATGTGTATAT
GGTATATCATGTTACAGTTTGCAGTCTCAGTAGTTGAGACAACGTTGGTATGATCATAAATAAACTCTTC
TTCCGGCTACAA
Downstream Sequence
GGTACACATCATCCCTTTCTTGTCTTTGATCAGAGTACTGATTTTGAGACAAAAGTTTCC
AACTTTCGATCCGTTTTTGTGTGTCCAAACTAAAATACTCTGTTTTTGTTCATGAAACCT
CTGTTTCTCATACTAGGATGCTCTGTTTTTGCTCTTAAACCTCTGTTTCTCAAACTAAAG
TCTGATCTTTTGATTTTTTTTTTGGCATAAGTGTACAATAGCAATGGCTCGATCTGCGGT
TGATGAGACATCAGACTCGGGAGCATTTCAAAGAACTGCTTCAACATTCCGTAACTTCGT
CTCAAGAGATTCTAACTCTCAGTTTCCAGCTGAATCTGGAAGATACCATCTTTACATATC
GTATGCTTGTCCATGGGCTTCTAGATGCATCTCATACTTGAAGATTAAAGGACTTGACGA
TGCTATAAGCTTCTCGGTTCGTTGACTCAAAAGCCCTTTTCAAACTGCTTATGTTCATTA
CAATAATAGTTTCCTTGTTTGGTTTGCATCAGTCTGTTAAACCCATTTGGGGAAGAACAA
AAGAAAGTGATGAGCATATGGGATGGGTCTTCCCGGATTCAGACAATGAGGTCGAAGGAG
CTGAGCCGGACAATCTTAATGGTGCTAAGAGTGTAAGAGAACTCTATGAGATTGCTAGCC
CAAACTACACCGGGAAGTATACTGTTCCTGTAAGTCTTTTTGTTTGTTTGTTTTTGTAAG
TCATCTTGAGTTGGAACTAGATGGGTTTCTTTAATGACAGGTTCTGTGGGATAAGAAGCT
CAAGACCGTTGTGAACAATGAGAGCGCAGAGATAATCAGGATGTTCAACACCGAGTTCAA
TCATATTGCGAGAAACCCTGATCTTGACCTTTACCCTTCTCATCTCCAAGCTAAAATCGA
TGAAGCTAACGAATGGATCTACAGTGGGATTAACAACGGTGTCTATAGATGTGGGTTTGC
AAAAAAACAAGAACCTTACGAGGAGGTAAGTGCTAGAAACGTTACATAGTGTTATTATTG
ATCCCACCCATGAGAGTTTTAAAAGTTGTTATGGTTCTTGTTTGTAGGCAGTGCAGCAAG
TGTATGAAGCATTAGATAGATGCGAGGAGATTCTTGGAAAGCATCGTTACATCTGCGGTA
ACAATCTGACTGAAACAGATGTCAGATTGTTTGTGACACTTATAAGATTTGACGAGGCAA
GTGAAACCGACAAGATAATTAGTTTTAATATTTTTGATTTTGATTTTGAAACGTTGATGA
TGCAGGTTTATGCTGTTCACTTCAAATGTAACAAGAAACTATTAAGAGAGTATCCGAATC
TGTTCAATTACACGAAAGATATATTTCAAGTCCCTGGTGTGAGTAGCACCGTGAACATGA
ACCACATCAAGCAGCATTACTATGGAAGCCACCCTTCGATCAACCCTTTTGGGATCATCC
CTCATGGACCAAACATCGATTACTCCTCGCCTCATGATCGACACAGATTCTCCAAATGAA
TAAAAATATCAAAGTTTTCACACTTGAGTTGAGTTGTGTCTTCAGAAAGTTTCCAAATAA
AGTTTTGTCTTTGTATGCTTTGAGAAAAATAAAAGGTTGATGTGTATATGGTATATCATG
TTACAGTTTGCAGTCTCAGTAGTTGAGACAACGTTGGTATGATCATAAATAAACTCTTCT
TCCGGCTACAACATTGGGTTTCCTGAAATTCAAGGCTTCATGTGAGATTTACAATCTTGC
TAGGAACCTCGTTGATAAAAATTATTGCAACTCAAATTTTTATTTAGCTTCGAAACAATT
TTGAATTTTCCAAGCCTGTAGCAGGTTTGTTTGTCTCCACAAAACTGAAAGTCCAGAACC
GGATTTTCCTGCTGCTATCTTAACCGGGATCCCTGAGGTCGTGGGCTTCTTTGATCAAAA
GCAAAATTAGAGAGCCAAACTGAAACAGAAACAAAATAGGGGGGTTTGTGTGAAATATTA
AGCCTGCGACCATTATCCAT
Pro Sequence
MSFSTILSHNSFLSLATKFTTRGSRLQCTIAMARSAVDETSDSGAFQRTA
STFRNFVSRDSNSQFPAESGRYHLYISYACPWASRCISYLKIKGLDDAIS
FSSVKPIWGRTKESDEHMGWVFPDSDNEVEGAEPDNLNGAKSVRELYEIA
SPNYTGKYTVPVLWDKKLKTVVNNESAEIIRMFNTEFNHIARNPDLDLYP
SHLQAKIDEANEWIYSGINNGVYRCGFAKKQEPYEEAVQQVYEALDRCEE
ILGKHRYICGNNLTETDVRLFVTLIRFDEVYAVHFKCNKKLLREYPNLFN
YTKDIFQVPGVSSTVNMNHIKQHYYGSHPSINPFGIIPHGPNIDYSSPHD
RHRFSK
mRNA Sequence
CTTTAGTTGATGTCTTTCTCCACGATCCTCAGCCACAACAGCTTCCTCTCTCTCGCTACAAAGTTCACTA
CTCGTGGTTCTCGTCTTCAGTGTACAATAGCAATGGCTCGATCTGCGGTTGATGAGACATCAGACTCGGG
AGCATTTCAAAGAACTGCTTCAACATTCCGTAACTTCGTCTCAAGAGATTCTAACTCTCAGTTTCCAGCT
GAATCTGGAAGATACCATCTTTACATATCGTATGCTTGTCCATGGGCTTCTAGATGCATCTCATACTTGA
AGATTAAAGGACTTGACGATGCTATAAGCTTCTCGTCTGTTAAACCCATTTGGGGAAGAACAAAAGAAAG
TGATGAGCATATGGGATGGGTCTTCCCGGATTCAGACAATGAGGTCGAAGGAGCTGAGCCGGACAATCTT
AATGGTGCTAAGAGTGTAAGAGAACTCTATGAGATTGCTAGCCCAAACTACACCGGGAAGTATACTGTTC
CTGTTCTGTGGGATAAGAAGCTCAAGACCGTTGTGAACAATGAGAGCGCAGAGATAATCAGGATGTTCAA
CACCGAGTTCAATCATATTGCGAGAAACCCTGATCTTGACCTTTACCCTTCTCATCTCCAAGCTAAAATC
GATGAAGCTAACGAATGGATCTACAGTGGGATTAACAACGGTGTCTATAGATGTGGGTTTGCAAAAAAAC
AAGAACCTTACGAGGAGGCAGTGCAGCAAGTGTATGAAGCATTAGATAGATGCGAGGAGATTCTTGGAAA
GCATCGTTACATCTGCGGTAACAATCTGACTGAAACAGATGTCAGATTGTTTGTGACACTTATAAGATTT
GACGAGGTTTATGCTGTTCACTTCAAATGTAACAAGAAACTATTAAGAGAGTATCCGAATCTGTTCAATT
ACACGAAAGATATATTTCAAGTCCCTGGTGTGAGTAGCACCGTGAACATGAACCACATCAAGCAGCATTA
CTATGGAAGCCACCCTTCGATCAACCCTTTTGGGATCATCCCTCATGGACCAAACATCGATTACTCCTCG
CCTCATGATCGACACAGATTCTCCAAATGAATAAAAATATCAAAGTTTTCACACTTGAGTTGAGTTGTGT
CTTCAGAAAGTTTCCAAATAAAGTTTTGTCTTTGTATGCTTTGAGAAAAATAAAAGGTTGATGTGTATAT
GGTATATCATGTTACAGTTTGCAGTCTCAGTAGTTGAGACAACGTTGGTATGATCATAAATAAACTCTTC
TTCCGGCTACAA