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Detail for ZS11_A02G34380.t1

Genome:
ZS11: ZS11_A02G34380.t1
ZS11_v0: BnaA02T0290300ZS
WE: WE_A02G34980.t1
WE_v0: BnaA02T0287300WE
Darmor: A02p28780.1_BnaDAR
BH: BnaC02T273000BH
Quinta: BnaC02T0346900QU
ZS2: BnaA02T301600ZS2
SW: BnaA02T325000SW
Express61: A02p028080.1_BnaEXP
Xiaoyun: BnaA02G0290300XY
P202: BnaC02G029160P202.1
BL: BnaC02T273000BH
TA: BnaC02T401400TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g02370D
RB: BnaA02T262200RB
No2127: BnaA02T0282900NO
P130: BnaA02G031840P130.1
Length: 593
KOG ID: KOG2903
KOG E-value: Not available
KOG Score: 632.0
KOG Annotation: Posttranslational modification, protein turnover, chaperones
Biological Process: GO:0007165(signal transduction),GO:0006749(glutathione metabolic process)
Cellular Component: -
Molecular Function: GO:0004364(glutathione transferase activity),GO:0005515(protein binding)
KEGG Ortholog: K07393 ECM4, yqjG; glutathionyl-hydroquinone reductase [EC:1.8.5.7]
NR Protein: XP_013698454.1
NR E-value: 9.400000e-195
NR Score: 685.3
NR Annotation: XP_013698454.1 uncharacterized protein LOC106402294 [Brassica napus]
SwissProt Protein: P42620|YQJG_ECOLI
SwissProt E-value: 2.490000e-94
SwissProt Score: 295.0
SwissProt Annotation: Glutathionyl-hydroquinone reductase YqjG OS=Escherichia coli (strain K12) OX=83333 GN=yqjG PE=1 SV=1
CDS Sequence (1807 bp)
ATGGCAGAGCCACAACCATACCAACGTCCTCCTCAGGTGTTCATCAGTTTCCACGGAGATGAATTGCGTG
ACAACTTCATCAGATATCTTGTGTGGGGACTGAGAGACGAAAGACTCAACCTTTTCATTGACAGAGGAGA
AGCAAATAGGAGAGAGATACGAAACGTTTTCACAAAGATCGAGGATTCAAACATCGCGGTCGTCATCTTC
TCCAAGAGGTATACAGAGTCAGAGATGTGCTTGAACGAGCTTCAAAAGATTCACGAACACTCTGAACAAA
ACAGACTCTTGGTGATTCCTGTGTTCTACGATGTGAGCAAGAGGGACGTGAAGAGCCTCGAGGGTGAATT
CGGCAATCATTTCAAGGAAATGAGGGAGAAATATAAAAATGACCCTCTTAGGATCCTGACTTGGGAGGAT
TCCTTGAGTTCAATAGCTGACACAACCGGTTTGACCTCAGAAGAACACGGAACGGGATTAGGTCTTGTCA
GAGAAATAGTTAGCACGGTTAAAAGCAAGCTACTAAACTCCGCTGGAGGAAGAAGAAGACGAAGTATGTC
GATCGGACTAGTGTTTGTTTTGGCTTCAACTGCGGTTTTCCTCTTTATTATCTTCATAGCGCGTAATTTT
TGCGCTGATGTGAGAATTTACAAGGCTGTTAAGTGTTTGCTAGGTGTTCCGGTTTTGGCAAAAGTCATTT
TCTCCTTCCTTCCTTATCGCCACAAAAAGTCATCGTTCAAAAAGAGCGACTTTCACTCTCTATCTTTGTT
GGATCTTGTCTTCAAACACACACCATCATCAGATATGGCCAGGTCTGGGGTAGATGAGACATCAGAATCA
GGAGCTTTTGTAAGAACAGCGTCTACATTCCGCAGCTTTGTCTCACAAGATCCTGCTTCCCAGTTCCCAC
CTGAATCCGGAAGATACCATCTTTACATTTCCTACGCTTGTCCATGGGCTTGTAGATGTCTCTCTTTCTT
GATGCTCAAAGGTCTTGACCAAGCTATCACCTTCTCGTCGTGCCACACAATTTGGGGAAGAACTAAAGAA
ACTGATGACCATAGAGGATGGGTTTTCCCTGATTCGAACTCTGAGCTCCCTGGAGCTGAGCCTGATTATC
TTAATGGTGCTAAGACTGTTAGAGAGCTCTATGAGATTGCTAGCCCCAACTATGTGGGAAAGTACACTGT
TCCCATTCTGTGGGATAAGAAGCTTAAGACTGTGGTTAACAATGAGAGTTCAGAGATAATCAGGATGCTC
AACACTGAGTTCAACGGTGTTGCGAAAAATCCGTCACTAGATCTTTACCCTTCTCATCTTAAAGAAGCAA
TTGATGAGACTAATGAATGGGTTTTCAACGGGATAAACAACGGTgtttatagatgtgggtttgctaggaa
aCAAGAACCCTACGATGAGGCAGTGAACCAAGTGTTTGAAGCAGTAGATAGATGTGAGGCAGTACTCGGA
AAACAACGATACATCTGTGGGAACACTTTCACCGAGGCAGATGTTCGATTATTCGTCACCCTCATAAGAT
TTGATGAGGTTTACGCGGTTCACTTCAAATGCAACAAGAGACTCTTAAGAGAGTATCCGAATATCTTCAA
CTACATAAAAGATGTATACCAAATCAATGGAATGAGCAGCACTGTGAAAATGGATCACATCAAGCAACAT
TATTACGGAAGCCACCCTACGTTAAACCCGTTTGGGATCATCCCTCATGGACCAAACATCGATTACTCTT
CGCTTCACGACCGTGACAGATTCTCCTCGTGA
Upstream Sequence
ATGGCAGAGCCACAACCATACCAACGTCCTCCTCAGGTGTTCATCAGTTTCCACGGAGATGAATTGCGTG
ACAACTTCATCAGATATCTTGTGTGGGGACTGAGAGACGAAAGACTCAACCTTTTCATTGACAGAGGAGA
AGCAAATAGGAGAGAGATACGAAACGTTTTCACAAAGATCGAGGATTCAAACATCGCGGTCGTCATCTTC
TCCAAGAGGTATACAGAGTCAGAGATGTGCTTGAACGAGCTTCAAAAGATTCACGAACACTCTGAACAAA
ACAGACTCTTGGTGATTCCTGTGTTCTACGATGTGAGCAAGAGGGACGTGAAGAGCCTCGAGGGTGAATT
CGGCAATCATTTCAAGGAAATGAGGGAGAAATATAAAAATGACCCTCTTAGGATCCTGACTTGGGAGGAT
TCCTTGAGTTCAATAGCTGACACAACCGGTTTGACCTCAGAAGAACACGGAACGGGATTAGGTCTTGTCA
GAGAAATAGTTAGCACGGTTAAAAGCAAGCTACTAAACTCCGCTGGAGGAAGAAGAAGACGAAGTATGTC
GATCGGACTAGTGTTTGTTTTGGCTTCAACTGCGGTTTTCCTCTTTATTATCTTCATAGCGCGTAATTTT
TGCGCTGATGTGAGAATTTACAAGGCTGTTAAGTGTTTGCTAGGTGTTCCGGTTTTGGCAAAAGTCATTT
TCTCCTTCCTTCCTTATCGCCACAAAAAGTCATCGTTCAAAAAGAGCGACTTTCACTCTCTATCTTTGTT
GGATCTTGTCTTCAAACACACACCATCATCAGATATGGCCAGGTCTGGGGTAGATGAGACATCAGAATCA
GGAGCTTTTGTAAGAACAGCGTCTACATTCCGCAGCTTTGTCTCACAAGATCCTGCTTCCCAGTTCCCAC
CTGAATCCGGAAGATACCATCTTTACATTTCCTACGCTTGTCCATGGGCTTGTAGATGTCTCTCTTTCTT
GATGCTCAAAGGTCTTGACCAAGCTATCACCTTCTCGTCGTGCCACACAATTTGGGGAAGAACTAAAGAA
ACTGATGACCATAGAGGATGGGTTTTCCCTGATTCGAACTCTGAGCTCCCTGGAGCTGAGCCTGATTATC
TTAATGGTGCTAAGACTGTTAGAGAGCTCTATGAGATTGCTAGCCCCAACTATGTGGGAAAGTACACTGT
TCCCATTCTGTGGGATAAGAAGCTTAAGACTGTGGTTAACAATGAGAGTTCAGAGATAATCAGGATGCTC
AACACTGAGTTCAACGGTGTTGCGAAAAATCCGTCACTAGATCTTTACCCTTCTCATCTTAAAGAAGCAA
TTGATGAGACTAATGAATGGGTTTTCAACGGGATAAACAACGGTgtttatagatgtgggtttgctaggaa
aCAAGAACCCTACGATGAGGCAGTGAACCAAGTGTTTGAAGCAGTAGATAGATGTGAGGCAGTACTCGGA
AAACAACGATACATCTGTGGGAACACTTTCACCGAGGCAGATGTTCGATTATTCGTCACCCTCATAAGAT
TTGATGAGGTTTACGCGGTTCACTTCAAATGCAACAAGAGACTCTTAAGAGAGTATCCGAATATCTTCAA
CTACATAAAAGATGTATACCAAATCAATGGAATGAGCAGCACTGTGAAAATGGATCACATCAAGCAACAT
TATTACGGAAGCCACCCTACGTTAAACCCGTTTGGGATCATCCCTCATGGACCAAACATCGATTACTCTT
CGCTTCACGACCGTGACAGATTCTCCTCGTGA
Downstream Sequence
GTAATGAATTTCTTGATGAATTTATATAACAATTGTTTTTGTTTTTTTTTGTAACACTGA
TATAACAATATCTAATCCATCACTTGCACACATTATCAATCAGTTCTCATTAATTACTTA
TCAAAACAAAAACAGTACTCATCCATGCTTGTTAGGTCTAATCGAACAGTTGTTATCCAT
GCTTGCAGAACGGGATTAGGTCTTGTCAGAGAAATAGTTAGCACGGTTAAAAGCAAGCTA
CTAAACTCCGCTGGAGGAAGAAGAAGACGAAGTATGTCGATCGGACTAGTGTTTGTTTTG
GCTTCAACTGCGGTTTTCCTCTTTATTATCTTCATAGCGCGTAATTTTTGCGCTGATGTG
AGAATTTACAAGGCTGTTAAGTGTTTGCTAGGTGTTCCGGTTTTGGTTGGTGTCTTGCAC
CAGCTTTATTGTCTATCAACACATAACAGATAAATAGATAATATCTCTTGATCGATCACC
AACTCTAATTAGTCAAATGGCTTCACGCTGTTTTTGTTGTACATCTGTTTAGTTGTATTT
AGTATTTACAATCTCAAAGAACAAAATGTTTCCTTTATTACGCTGCTTCTGTCTGTGAGC
TTATAATTTTCTGGTTCTGAATATATATATGGTGTCTTTAGTTGAGATGAAAAATATGGA
AAAGGCTATTTcagtgtatatatatatttatatattagtttattatttaaaaattTATTG
TAATGTAATGTAATGCGTATATTGTTTTGTATTACCATTTGAATTTCACTTTTGTATAAT
ATTTTTTTCTAAaatatataaaagtaacctattttcatatgttagttgctttttctatct
agttatccaaccatcccatatttgagtaTTAGAATAGTTAATTGATGTCAAGAGAAAGAC
AACGTAGACCTCATAATAAAACTTATACATAAATTAGAGTTATATTGCGATTTGACTGTG
GAAGATTTACCACCCGTGATAGACTCTGAATTTAAAAAAAAACCCACCAATCCACCATGA
GATGTTCATTCAACCACCCGTGAGATCTAGAAGTAGAGAAGAGTGATGTAGTTTCTCTTG
TCGTTCCTAAATATTAAACAAACACTGAGAAACGCGTTCTTTATTTAGAAACAAAAACCC
TGAGAAACGCGTAGAGACGTTGACCCTGAATATAAGATTAATCTCTAATTATGTCTCAAC
AGCTATATCATCTTTTGTCTCTCAGACGACTAACAGATCATTCCAATGGGTGTAAAGGCC
AAGTCCAAAGTACATGTGCGTCCCCCTCAGGTGTTCATCAACTTCCGTGGCGATGAGCTC
AGAGAAAACTTTGTGAATCAACTCGTAAGGGCCTTAAGAAAGGGTGAGATCAATGTCTTT
ATAGACGTCCATGAGTTGAAGGGGAGAACACTAAAAACTCTCTTCACAAGGATCCAGTGT
AAGATCATTTGGTGGGGTCACATATGTTAAGGAATAAATGTGATAGAGCCATTAATCAAT
TAGTCTATTTAAGTGGTTACTATTGTGAATAAGGTAAAAGTTTGGGCATAATTGTTATGA
AATATTTATATGTGGATACCTTAAGTAATTTCTAGTTTAATGAATGACTGAACTAGAAAT
TAATTCTCTATATAAAGAGGGTTATAGTCCCCAAAGTAACCCTAGCCGAAAATACAGAAT
CTCTCTATATCCCATCAATAGAGAACTAAAGTCAAATAGGGTTTGATTTGGAAGATCCAT
TCCCTAATTTCAGATCCTAAAAACGATGGATACAGGTACGCTTCCGCTTAAGTATATTCA
ATCAGAGTATCATATGGTTAAAGGATTCATTATTGATGAATCATTGTTGAATTAATCCAA
CAATTGGTATCAGAGCACCATATTGATTTTTTGTTTGGATCTAAAAGAAATTCGAATTTA
TTTAAAGTTTATAATATAAATTCGGATTTTATTATTGTgTGAAAAATTTAGATTATTGAA
TATGTTTTTTCACTAAGTTT
Pro Sequence
MAEPQPYQRPPQVFISFHGDELRDNFIRYLVWGLRDERLNLFIDRGEANR
REIRNVFTKIEDSNIAVVIFSKRYTESEMCLNELQKIHEHSEQNRLLVIP
VFYDVSKRDVKSLEGEFGNHFKEMREKYKNDPLRILTWEDSLSSIADTTG
LTSEEHGTGLGLVREIVSTVKSKLLNSAGGRRRRSMSIGLVFVLASTAVF
LFIIFIARNFCADVRIYKAVKCLLGVPVLAKVIFSFLPYRHKKSSFKKSD
FHSLSLLDLVFKHTPSSDMARSGVDETSESGAFVRTASTFRSFVSQDPAS
QFPPESGRYHLYISYACPWACRCLSFLMLKGLDQAITFSSCHTIWGRTKE
TDDHRGWVFPDSNSELPGAEPDYLNGAKTVRELYEIASPNYVGKYTVPIL
WDKKLKTVVNNESSEIIRMLNTEFNGVAKNPSLDLYPSHLKEAIDETNEW
VFNGINNGVYRCGFARKQEPYDEAVNQVFEAVDRCEAVLGKQRYICGNTF
TEADVRLFVTLIRFDEVYAVHFKCNKRLLREYPNIFNYIKDVYQINGMSS
TVKMDHIKQHYYGSHPTLNPFGIIPHGPNIDYSSLHDRDRFSS
mRNA Sequence
ATGGCAGAGCCACAACCATACCAACGTCCTCCTCAGGTGTTCATCAGTTTCCACGGAGATGAATTGCGTG
ACAACTTCATCAGATATCTTGTGTGGGGACTGAGAGACGAAAGACTCAACCTTTTCATTGACAGAGGAGA
AGCAAATAGGAGAGAGATACGAAACGTTTTCACAAAGATCGAGGATTCAAACATCGCGGTCGTCATCTTC
TCCAAGAGGTATACAGAGTCAGAGATGTGCTTGAACGAGCTTCAAAAGATTCACGAACACTCTGAACAAA
ACAGACTCTTGGTGATTCCTGTGTTCTACGATGTGAGCAAGAGGGACGTGAAGAGCCTCGAGGGTGAATT
CGGCAATCATTTCAAGGAAATGAGGGAGAAATATAAAAATGACCCTCTTAGGATCCTGACTTGGGAGGAT
TCCTTGAGTTCAATAGCTGACACAACCGGTTTGACCTCAGAAGAACACGGAACGGGATTAGGTCTTGTCA
GAGAAATAGTTAGCACGGTTAAAAGCAAGCTACTAAACTCCGCTGGAGGAAGAAGAAGACGAAGTATGTC
GATCGGACTAGTGTTTGTTTTGGCTTCAACTGCGGTTTTCCTCTTTATTATCTTCATAGCGCGTAATTTT
TGCGCTGATGTGAGAATTTACAAGGCTGTTAAGTGTTTGCTAGGTGTTCCGGTTTTGGCAAAAGTCATTT
TCTCCTTCCTTCCTTATCGCCACAAAAAGTCATCGTTCAAAAAGAGCGACTTTCACTCTCTATCTTTGTT
GGATCTTGTCTTCAAACACACACCATCATCAGATATGGCCAGGTCTGGGGTAGATGAGACATCAGAATCA
GGAGCTTTTGTAAGAACAGCGTCTACATTCCGCAGCTTTGTCTCACAAGATCCTGCTTCCCAGTTCCCAC
CTGAATCCGGAAGATACCATCTTTACATTTCCTACGCTTGTCCATGGGCTTGTAGATGTCTCTCTTTCTT
GATGCTCAAAGGTCTTGACCAAGCTATCACCTTCTCGTCGTGCCACACAATTTGGGGAAGAACTAAAGAA
ACTGATGACCATAGAGGATGGGTTTTCCCTGATTCGAACTCTGAGCTCCCTGGAGCTGAGCCTGATTATC
TTAATGGTGCTAAGACTGTTAGAGAGCTCTATGAGATTGCTAGCCCCAACTATGTGGGAAAGTACACTGT
TCCCATTCTGTGGGATAAGAAGCTTAAGACTGTGGTTAACAATGAGAGTTCAGAGATAATCAGGATGCTC
AACACTGAGTTCAACGGTGTTGCGAAAAATCCGTCACTAGATCTTTACCCTTCTCATCTTAAAGAAGCAA
TTGATGAGACTAATGAATGGGTTTTCAACGGGATAAACAACGGTgtttatagatgtgggtttgctaggaa
aCAAGAACCCTACGATGAGGCAGTGAACCAAGTGTTTGAAGCAGTAGATAGATGTGAGGCAGTACTCGGA
AAACAACGATACATCTGTGGGAACACTTTCACCGAGGCAGATGTTCGATTATTCGTCACCCTCATAAGAT
TTGATGAGGTTTACGCGGTTCACTTCAAATGCAACAAGAGACTCTTAAGAGAGTATCCGAATATCTTCAA
CTACATAAAAGATGTATACCAAATCAATGGAATGAGCAGCACTGTGAAAATGGATCACATCAAGCAACAT
TATTACGGAAGCCACCCTACGTTAAACCCGTTTGGGATCATCCCTCATGGACCAAACATCGATTACTCTT
CGCTTCACGACCGTGACAGATTCTCCTCGTGA