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Detail for ZS11_A01G00130.t1

Genome:
ZS11: ZS11_A01G00130.t1
ZS11_v0: BnaA01T0003300ZS
WE: WE_A01G00410.t1
WE_v0: Bnascaffold286T0001700WE
Darmor: A01p00180.1_BnaDAR
BH: BnaA01T001800BH
Quinta: BnaC08T0453000QU
ZS2: BnaA01T002100ZS2
SW: BnaA01T002500SW
Express61: A01p000220.1_BnaEXP
Xiaoyun: BnaA01G0002300XY
P202: BnaA01G000200P202.2
BL: BnaA01T001800BH
TA: BnaA01T002000TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g37140D
RB: BnaA01T001000RB
No2127: BnaC08T0398500NO
P130: BnaA01G000200P130.2
Length: 538
KOG ID: KOG1347
KOG E-value: Not available
KOG Score: 755.0
KOG Annotation: General function prediction only
Biological Process: GO:0055085(transmembrane transport)
Cellular Component: GO:0016020(membrane)
Molecular Function: GO:0015297(antiporter activity),GO:0042910(xenobiotic transmembrane transporter activity)
KEGG Ortholog: -
NR Protein: XP_009146306.1
NR E-value: 8.500000e-296
NR Score: 1020.8
NR Annotation: XP_009146306.1 PREDICTED: protein DETOXIFICATION 47, chloroplastic [Brassica rapa]
SwissProt Protein: Q945F0|DTX47_ARATH
SwissProt E-value: Not available
SwissProt Score: 911.0
SwissProt Annotation: Protein DETOXIFICATION 47, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=DTX47 PE=2 SV=1
CDS Sequence (1640 bp)
ATGCTAATGAAAACGCAAAGACTCACTATCTCTCCTTTCCTTCCGACTAAATCTCACCAACCACTTATCC
GTTGTCTCGGTGGAGGCTCGGTGCTGACCCGGAGAAAACTCGGTGGGATCACCACAGCAGCTGCTCCGAT
TTTCCAGGGAAAGCCGGTGGTGACTCGTCGGGAAATAAAAACAGGGCGAATTACGAGGAACTGCGTCGAA
AATGATGGCGGAACTGAAGAAGAAGAAGAAGAAGAGAAGAAGAGCAGGGGTCTGGTGAAGGAGAGCGTAT
GGGAACAGATGAAAGAGATCGTCAAGTTCACAGGTCCGGCGATGGGGATGTGGGTTTGTGGTCCGTTGAT
GAGTCTCATCGACACGGTGGTCATCGGCCAAGGTAGCTCCGTCGAACTCGCCGCACTTGGACCGGGGACG
GTACTATGCGATCACATGAGTTACGTCTTCATGTTCCTCTCCGTGGCGACATCCAATATGGTCGCTACTT
CTCTTGCCAAACAGGACAAGAAAGAAGCACAACATCAAATCTCTGTCTTGCTCTTCATTGGATTGGTTTG
TGGACTAATGATGCTTTTGTTGACTAGATTATTTGGACCTTGGGCTGTTACTGCATTTACGAGAGGGAAA
AACATTGAGATTGTTCCTGCAGCCAATACATACGTTCAGATTCGAGGCTTAGCGTGGCCTTTTATTCTTG
TTGGATTGGTTGCTCAAAGCGCAAGTCTTGGAATGAAGAACTCATGGGGACCTCTTAAGGCATTAGCAGC
AGCAACGGTCATTAACGGTCTTGGAGATACGATCCTATGCTTGTTTCTCGGACAAGGTATCGCCGGAGCT
GCTTGGGCAACAACCATCTCTCAGGTTGTTTCGGCTTATATGATGATGGATTCTCTGAACAAAGAAGGCT
ACAATGCTTACTCCTTTGCGGTACCTACACCTCAAGAACTATGGAAGATCTCTGCACTCGCCGCACCTGT
CTTCATCTCAATTTTCTCCAAGATTGCTTTCTACTCTTTCATCATCTACTGTGCTACCTCCATGGGAACT
CACGTTTTAGCAGCTCATCAAGTGATGGCTCAGACGTACAGGATGTGCAATGTATGGGGTGAGCCACTCT
CTCAAACGGCTCAGTCATTTATGCCTGAGATGTTATATGGTGCGAACCGTAACCTTCCCAAGGCGAGAAC
GTTGCTCAAGTCCCTAATGATTATTGGAGCCACGCTTGGATTAGTATTGGGAATTATAGGAACATCGGTT
CCAGGCCTGTTTCCTGGTGTCTACACACATGATAAAGTCATCATAACCGAGATGCATAGACTGCTTATAC
CATTCTTCATggcgttgtctgcattgccaatgacaGTATCCCTGGAGGGTACATTGCTGGCGGGACGTGA
TCTGAAATTCGTCAGCTCGGTGATGAGTTCAAGCTTCGTTCTTGGTTGTCTTACACTAATGTTTGTGACA
CGAAGCGGATATGGTTTAGTCGGCTGTTGGATGGTTCTCGTCGGATTTCAGTGGGGTCGGTTTGGACTGT
ATCTACGGAGGCTGCTTTCACCTGGAGGCATACTTAACACGGATGTGCTGACGACTAAGAAGATCAAATC
AGTTTAA
Upstream Sequence
AACAATACAAGTCTTTGTAATAGTCTTTGATTATATACGTATCTTTGTTTTCTTCCGTCAGTCAATTCAT
TAGACATGAGTCAATTATATAGTTTCAAAGTTTTTAATTGTATATCTTCGAATCATAGATGTCCATGAAG
AATTCTTAATACATATTGGGAGAGTGACAGCTAGAAATGAAGGAGCAACACATGACCAAGTAGCAGAATA
AATAGGGGCACGTGCTCAGTAGAGTCTGTATATAGATCTTTCGCTCGCTTCCGATTTTCTCTCAATACAA
ATCTCGAGGAGGAGGCGCCAAAAGATAAACTGCATCACCGGCTTTTACAGAGATTTCTCCGGCGAAGATC
CGTCTCTGTAACGATTAACGACGACAAAATGCTAATGAAAACGCAAAGACTCACTATCTCTCCTTTCCTT
CCGACTAAATCTCACCAACCACTTATCCGTTGTCTCGGTGGAGGCTCGGTGCTGACCCGGAGAAAACTCG
GTGGGATCACCACAGCAGCTGCTCCGATTTTCCAGGGAAAGCCGGTGGTGACTCGTCGGGAAATAAAAAC
AGGGCGAATTACGAGGAACTGCGTCGAAAATGATGGCGGAACTGAAGAAGAAGAAGAAGAAGAGAAGAAG
AGCAGGGGTCTGGTGAAGGAGAGCGTATGGGAACAGATGAAAGAGATCGTCAAGTTCACAGGTCCGGCGA
TGGGGATGTGGGTTTGTGGTCCGTTGATGAGTCTCATCGACACGGTGGTCATCGGCCAAGGTAGCTCCGT
CGAACTCGCCGCACTTGGACCGGGGACGGTACTATGCGATCACATGAGTTACGTCTTCATGTTCCTCTCC
GTGGCGACATCCAATATGGTCGCTACTTCTCTTGCCAAACAGGACAAGAAAGAAGCACAACATCAAATCT
CTGTCTTGCTCTTCATTGGATTGGTTTGTGGACTAATGATGCTTTTGTTGACTAGATTATTTGGACCTTG
GGCTGTTACTGCATTTACGAGAGGGAAAAACATTGAGATTGTTCCTGCAGCCAATACATACGTTCAGATT
CGAGGCTTAGCGTGGCCTTTTATTCTTGTTGGATTGGTTGCTCAAAGCGCAAGTCTTGGAATGAAGAACT
CATGGGGACCTCTTAAGGCATTAGCAGCAGCAACGGTCATTAACGGTCTTGGAGATACGATCCTATGCTT
GTTTCTCGGACAAGGTATCGCCGGAGCTGCTTGGGCAACAACCATCTCTCAGGTTGTTTCGGCTTATATG
ATGATGGATTCTCTGAACAAAGAAGGCTACAATGCTTACTCCTTTGCGGTACCTACACCTCAAGAACTAT
GGAAGATCTCTGCACTCGCCGCACCTGTCTTCATCTCAATTTTCTCCAAGATTGCTTTCTACTCTTTCAT
CATCTACTGTGCTACCTCCATGGGAACTCACGTTTTAGCAGCTCATCAAGTGATGGCTCAGACGTACAGG
ATGTGCAATGTATGGGGTGAGCCACTCTCTCAAACGGCTCAGTCATTTATGCCTGAGATGTTATATGGTG
CGAACCGTAACCTTCCCAAGGCGAGAACGTTGCTCAAGTCCCTAATGATTATTGGAGCCACGCTTGGATT
AGTATTGGGAATTATAGGAACATCGGTTCCAGGCCTGTTTCCTGGTGTCTACACACATGATAAAGTCATC
ATAACCGAGATGCATAGACTGCTTATACCATTCTTCATggcgttgtctgcattgccaatgacaGTATCCC
TGGAGGGTACATTGCTGGCGGGACGTGATCTGAAATTCGTCAGCTCGGTGATGAGTTCAAGCTTCGTTCT
TGGTTGTCTTACACTAATGTTTGTGACACGAAGCGGATATGGTTTAGTCGGCTGTTGGATGGTTCTCGTC
GGATTTCAGTGGGGTCGGTTTGGACTGTATCTACGGAGGCTGCTTTCACCTGGAGGCATACTTAACACGG
ATGTGCTGACGACTAAGAAGATCAAATCAGTTTAAAGTCTCTCTCTCTCAATAATGAATTTTTGTTTCCT
AATTGTTGCCGAGAGCCCATCTCTATGGGGTTTTTTTGCCAATAAAAAGTGGCTATTTTATTTACATATA
TATCTCA
Downstream Sequence
GTACGCTTTTCTATAAAAACTTTAATTCTGATTTTATATTTCTTACATCATTTTGAAACT
TACTCTATATGATTTTATATTCTATTTATATAAATTCCAAACCGAACCGGACTTGTCCCC
AGTAGTAACATTTGCACCTTTAGATTGTTTAGTCTCTTTAGAAATCGGACCCATGTTGAC
CAATAATAATGACAGAAAAATATGTTAGGTAAGTGTCCCATCCTACCAGTTTTAAAGCTC
ATTATTACATCTGTCGGTCCACCAAATTTTAACGTGTTTGTAATGTCAAATTTGTGCCCA
ACTGCAAGATAAGCTTTTTACTTGCACAAATTATAATACTACTTGTTATCATATTCTCCA
TTTTTCTTATCAAAATTTCGTAGCACAGAAAATTAAATTTCAATTATTTGATTGAATAAG
ATTATGATGCGGAATGACTAAAAATATAAATACTCCAATAAATTGTGAAAGTGAGTGCTT
AATTCAATGGCTGAGTAAAAAATTTAACCGGTATAATAGGACCGGGGACGGTACTATGCG
ATCACATGAGTTACGTCTTCATGTTCCTCTCCGTGGCGACATCCAATATGGTCGCTACTT
CTCTTGCCAAACAGGTTAGTTATATTTGCCTGTTTCTTGTGTTCCAAGTTTTTAAAACTA
CTTACCAAGGAAACATCACTCTAACGGATTCATTTTGTGTGTGTTTCTTACAGGACAAGA
AAGAAGCACAACATCAAATCTCTGTCTTGCTCTTCATTGGATTGGTTTGTGGACTAATGA
TGCTTTTGTTGACTAGATTATTTGGACCTTGGGCTGTTACTGGTAAACCCTTTTCACTAC
TAAATCAAATATTTCCATTTCGAGTAATATTTGAATGACATGTATCTAAACTTTTGGCAG
CATTTACGAGAGGGAAAAACATTGAGATTGTTCCTGCAGCCAATACATACGTTCAGATTC
GAGGCTTAGCGTGGCCTTTTATTCTTGTTGGATTGGTTGCTCAAAGCGCAAGGTTTCTTT
AACTTTTTCTTCTTACTAACTTGGCTTCAATCTCCCTCTGTATTACTCAACTGATTGGAG
AGAATCTCTGTCTCAGTCTTGGAATGAAGAACTCATGGGGACCTCTTAAGGCATTAGCAG
CAGCAACGGTCATTAACGGTCTTGGAGATACGATCCTATGCTTGTTTCTCGGACAAGGTA
TCGCCGGAGCTGCTTGGGCAACAACCATCTCTCAGGTAAATACAAAATACCCTAAACTAG
TAAAATGTAAATTAAAAATGAAGAAGAATTCATAATGGGATTTGTGTGTTGTTATATAGG
TTGTTTCGGCTTATATGATGATGGATTCTCTGAACAAAGAAGGCTACAATGCTTACTCCT
TTGCGGTACCTACACCTCAAGAACTATGGAAGATCTCTGCACTCGCCGCACCTGTCTTCA
TCTCAATTTTCTCCAAGATTGCTTTCTACTCTTTCATCATCTACTGTGCTACCTCCATGG
GAACTCACGTTTTAGCAGCTCATCAAGTACCATTACAAATACAGATATCTCTACGCTTAA
TAATCGATGTTGATGTTTAGTATATTTATCTCTTCTTTTTTTTTTATTGGATAGGTGATG
GCTCAGACGTACAGGATGTGCAATGTATGGGGTGAGCCACTCTCTCAAACGGCTCAGTCA
TTTATGCCTGAGATGTTATATGGTGCGAACCGTAACCTTCCCAAGGCGAGAACGTTGCTC
AAGTCCCTAATGATTATTGGAGCCACGCTTGGATTAGTATTGGGAATTATAGGAACATCG
GTTCCAGGCCTGTTTCCTGGTGTCTACACACATGATAAAGTCATCATAACCGAGGTCTGT
TTTTCTGCTTTTCAAACCAAACATTAGTAGTTAACTTCCTGTGTGTGTTTCGAACCTAAC
TTGACTAAAATTATGATTATTGGATATGTGGGCAGATGCATAGACTGCTTATACCATTCT
TCATggcgttgtctgcattg
Pro Sequence
MLMKTQRLTISPFLPTKSHQPLIRCLGGGSVLTRRKLGGITTAAAPIFQG
KPVVTRREIKTGRITRNCVENDGGTEEEEEEEKKSRGLVKESVWEQMKEI
VKFTGPAMGMWVCGPLMSLIDTVVIGQGSSVELAALGPGTVLCDHMSYVF
MFLSVATSNMVATSLAKQDKKEAQHQISVLLFIGLVCGLMMLLLTRLFGP
WAVTAFTRGKNIEIVPAANTYVQIRGLAWPFILVGLVAQSASLGMKNSWG
PLKALAAATVINGLGDTILCLFLGQGIAGAAWATTISQVVSAYMMMDSLN
KEGYNAYSFAVPTPQELWKISALAAPVFISIFSKIAFYSFIIYCATSMGT
HVLAAHQVMAQTYRMCNVWGEPLSQTAQSFMPEMLYGANRNLPKARTLLK
SLMIIGATLGLVLGIIGTSVPGLFPGVYTHDKVIITEMHRLLIPFFMALS
ALPMTVSLEGTLLAGRDLKFVSSVMSSSFVLGCLTLMFVTRSGYGLVGCW
MVLVGFQWGRFGLYLRRLLSPGGILNTDVLTTKKIKSV
mRNA Sequence
AACAATACAAGTCTTTGTAATAGTCTTTGATTATATACGTATCTTTGTTTTCTTCCGTCAGTCAATTCAT
TAGACATGAGTCAATTATATAGTTTCAAAGTTTTTAATTGTATATCTTCGAATCATAGATGTCCATGAAG
AATTCTTAATACATATTGGGAGAGTGACAGCTAGAAATGAAGGAGCAACACATGACCAAGTAGCAGAATA
AATAGGGGCACGTGCTCAGTAGAGTCTGTATATAGATCTTTCGCTCGCTTCCGATTTTCTCTCAATACAA
ATCTCGAGGAGGAGGCGCCAAAAGATAAACTGCATCACCGGCTTTTACAGAGATTTCTCCGGCGAAGATC
CGTCTCTGTAACGATTAACGACGACAAAATGCTAATGAAAACGCAAAGACTCACTATCTCTCCTTTCCTT
CCGACTAAATCTCACCAACCACTTATCCGTTGTCTCGGTGGAGGCTCGGTGCTGACCCGGAGAAAACTCG
GTGGGATCACCACAGCAGCTGCTCCGATTTTCCAGGGAAAGCCGGTGGTGACTCGTCGGGAAATAAAAAC
AGGGCGAATTACGAGGAACTGCGTCGAAAATGATGGCGGAACTGAAGAAGAAGAAGAAGAAGAGAAGAAG
AGCAGGGGTCTGGTGAAGGAGAGCGTATGGGAACAGATGAAAGAGATCGTCAAGTTCACAGGTCCGGCGA
TGGGGATGTGGGTTTGTGGTCCGTTGATGAGTCTCATCGACACGGTGGTCATCGGCCAAGGTAGCTCCGT
CGAACTCGCCGCACTTGGACCGGGGACGGTACTATGCGATCACATGAGTTACGTCTTCATGTTCCTCTCC
GTGGCGACATCCAATATGGTCGCTACTTCTCTTGCCAAACAGGACAAGAAAGAAGCACAACATCAAATCT
CTGTCTTGCTCTTCATTGGATTGGTTTGTGGACTAATGATGCTTTTGTTGACTAGATTATTTGGACCTTG
GGCTGTTACTGCATTTACGAGAGGGAAAAACATTGAGATTGTTCCTGCAGCCAATACATACGTTCAGATT
CGAGGCTTAGCGTGGCCTTTTATTCTTGTTGGATTGGTTGCTCAAAGCGCAAGTCTTGGAATGAAGAACT
CATGGGGACCTCTTAAGGCATTAGCAGCAGCAACGGTCATTAACGGTCTTGGAGATACGATCCTATGCTT
GTTTCTCGGACAAGGTATCGCCGGAGCTGCTTGGGCAACAACCATCTCTCAGGTTGTTTCGGCTTATATG
ATGATGGATTCTCTGAACAAAGAAGGCTACAATGCTTACTCCTTTGCGGTACCTACACCTCAAGAACTAT
GGAAGATCTCTGCACTCGCCGCACCTGTCTTCATCTCAATTTTCTCCAAGATTGCTTTCTACTCTTTCAT
CATCTACTGTGCTACCTCCATGGGAACTCACGTTTTAGCAGCTCATCAAGTGATGGCTCAGACGTACAGG
ATGTGCAATGTATGGGGTGAGCCACTCTCTCAAACGGCTCAGTCATTTATGCCTGAGATGTTATATGGTG
CGAACCGTAACCTTCCCAAGGCGAGAACGTTGCTCAAGTCCCTAATGATTATTGGAGCCACGCTTGGATT
AGTATTGGGAATTATAGGAACATCGGTTCCAGGCCTGTTTCCTGGTGTCTACACACATGATAAAGTCATC
ATAACCGAGATGCATAGACTGCTTATACCATTCTTCATggcgttgtctgcattgccaatgacaGTATCCC
TGGAGGGTACATTGCTGGCGGGACGTGATCTGAAATTCGTCAGCTCGGTGATGAGTTCAAGCTTCGTTCT
TGGTTGTCTTACACTAATGTTTGTGACACGAAGCGGATATGGTTTAGTCGGCTGTTGGATGGTTCTCGTC
GGATTTCAGTGGGGTCGGTTTGGACTGTATCTACGGAGGCTGCTTTCACCTGGAGGCATACTTAACACGG
ATGTGCTGACGACTAAGAAGATCAAATCAGTTTAAAGTCTCTCTCTCTCAATAATGAATTTTTGTTTCCT
AATTGTTGCCGAGAGCCCATCTCTATGGGGTTTTTTTGCCAATAAAAAGTGGCTATTTTATTTACATATA
TATCTCA