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DETAIL

Detail for ZS11_A01G00220.t1

Genome:
ZS11: ZS11_A01G00220.t1
ZS11_v0: BnaA01T0004200ZS
WE: WE_scaffold0003G02880.t1
WE_v0: Bnascaffold286T0002600WE
Darmor: A01p00270.1_BnaDAR
BH: BnaA01T002500BH
Quinta: BnaC08T0451500QU
ZS2: BnaA01T002900ZS2
SW: BnaA01T003200SW
Express61: A01p000310.1_BnaEXP
Xiaoyun: BnaA01G0003200XY
P202: BnaA01G000280P202.2
BL: BnaA01T002500BH
TA: BnaC01T003800TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g00410D
RB: BnaA01T001700RB
No2127: BnaA09T0530100NO
P130: BnaA01G000270P130.1
Length: 344
KOG ID: KOG0691
KOG E-value: Not available
KOG Score: 636.0
KOG Annotation: Posttranslational modification, protein turnover, chaperones
Biological Process: -
Cellular Component: -
Molecular Function: -
KEGG Ortholog: -
NR Protein: XP_009106281.1
NR E-value: 1.300000e-188
NR Score: 664.1
NR Annotation: XP_009106281.1 PREDICTED: chaperone protein dnaJ 10 [Brassica rapa]
SwissProt Protein: Q8GYX8|DNJ10_ARATH
SwissProt E-value: 9.380000e-127
SwissProt Score: 372.0
SwissProt Annotation: Chaperone protein dnaJ 10 OS=Arabidopsis thaliana OX=3702 GN=ATJ10 PE=2 SV=2
CDS Sequence (1049 bp)
ATGGTGAAGGAGAGTGAGTATTACGACGTGTTAGGCGTCAAGACTGATGCCTCAGCTGCTGACATTAAGA
AAGCTTATTATATCAAAGCAAGGCAAGTTCATCCAGACAAGAACCCTAATGATCCTCAAGCTGCTAAAAA
CTTTCAGGTGCTAGGTGAAGCTTACCAAGTTCTTAGCGATCCGGAGAAACGAACTGCTTATGATAACTAC
GGCAAAGAAGGTGTTCAACAGGATGCAATGGTTGATCCTGCAGCTGTGTTCGGCATGCTCTTTGGCAGCG
AGTTGTTTGAGGACTACATTGGCCAACTTGCTCTTGCTTCCATTGCATCACTCGACGCTGAAGTTGAATC
CCATGAGCCTGAGATTAGGAAAAAACTGCTTCAAGACAAGATCAAAGCGATGCAAAAGGAAAGGGAAGAC
AAGCTTGTCACTACGCTGAAGAACAAACTCGAACCATTCGTGGAAGGACAAACCGATGAATTTGTGAATT
GGGCTACCGCTGAGGCTAGGCGACTCTCAACAGCTGGTTTTGGGGAAGCAATGCTGCACACTGTGGGTTA
CATTTACACAAGAAAAGCTGCGAAAGAACTCGGAAAGGACAAACGTCTCATGAAAGTGCCCTTCTTAGCT
GAATGGGTGCGTGACAAAGGCCACCAGATCAAATCTCAAGTGATGGCTGCTTCTGGTGCGGTTTCGTTAC
TTGTGTTGCAGGACGAAGTGAGCAAGCTGAACCAGGGAGAGAACAGAGAGGAGCATATTCAGAAAGCCAT
CGAAGCTAAAAAAGATGCAATGCTTCAGTCCCTTTGGCAAATCAATGTGCTTGACATCGAATCAACCTTA
TCTCGCGTCTGCCAAGCGGTGCTTAAAGATCCGAGTGTTTCAAAAGATGTTCTTCGAGCTAGAGCAAGAG
GATTGAGGAAGCTCGGAAACATTTTCCAGGGTTCTAAGAAACCCTACTCCAGAGAAAATAGCTTGCGCCA
CGAAGGTGCCGCCGTGAAACTTGATGCCGGAGATTCCTCTAAACCGGCGACTTAA
Upstream Sequence
CCAATCTCTTGCTCGTTTTTGTGCTCCACGAACATTCAAGATATAGAGTCTGAGGGTAATGGTGAAGGAG
AGTGAGTATTACGACGTGTTAGGCGTCAAGACTGATGCCTCAGCTGCTGACATTAAGAAAGCTTATTATA
TCAAAGCAAGGCAAGTTCATCCAGACAAGAACCCTAATGATCCTCAAGCTGCTAAAAACTTTCAGGTGCT
AGGTGAAGCTTACCAAGTTCTTAGCGATCCGGAGAAACGAACTGCTTATGATAACTACGGCAAAGAAGGT
GTTCAACAGGATGCAATGGTTGATCCTGCAGCTGTGTTCGGCATGCTCTTTGGCAGCGAGTTGTTTGAGG
ACTACATTGGCCAACTTGCTCTTGCTTCCATTGCATCACTCGACGCTGAAGTTGAATCCCATGAGCCTGA
GATTAGGAAAAAACTGCTTCAAGACAAGATCAAAGCGATGCAAAAGGAAAGGGAAGACAAGCTTGTCACT
ACGCTGAAGAACAAACTCGAACCATTCGTGGAAGGACAAACCGATGAATTTGTGAATTGGGCTACCGCTG
AGGCTAGGCGACTCTCAACAGCTGGTTTTGGGGAAGCAATGCTGCACACTGTGGGTTACATTTACACAAG
AAAAGCTGCGAAAGAACTCGGAAAGGACAAACGTCTCATGAAAGTGCCCTTCTTAGCTGAATGGGTGCGT
GACAAAGGCCACCAGATCAAATCTCAAGTGATGGCTGCTTCTGGTGCGGTTTCGTTACTTGTGTTGCAGG
ACGAAGTGAGCAAGCTGAACCAGGGAGAGAACAGAGAGGAGCATATTCAGAAAGCCATCGAAGCTAAAAA
AGATGCAATGCTTCAGTCCCTTTGGCAAATCAATGTGCTTGACATCGAATCAACCTTATCTCGCGTCTGC
CAAGCGGTGCTTAAAGATCCGAGTGTTTCAAAAGATGTTCTTCGAGCTAGAGCAAGAGGATTGAGGAAGC
TCGGAAACATTTTCCAGGGTTCTAAGAAACCCTACTCCAGAGAAAATAGCTTGCGCCACGAAGGTGCCGC
CGTGAAACTTGATGCCGGAGATTCCTCTAAACCGGCGACTTAAAGTTCGAACCAAAACGATCGGTTATTG
AATGTATTGAATGTTTATGTGAAGTGGTGGTTTCGTCTTTAAATTCCCTTTCTTTGCTTTATTGAATCTT
TTACCTTCCGTGTTGGCTTTCACAAAACTCAAGGTCGCGTGTTCTGTAAGGTACTTGTTACATGGACATG
GTTTTTTCGTGTTTTTTATAAGTTGGCCCCTCGAATATAATAAA
Downstream Sequence
AGTAACACACTCCCTCTTCCCCTTCTCTGTCTTATCATCACAGTTTTATATCTCTCCTGA
GTTTTAAGTAGTATCTTCTTGTCACATAGCTTTAGATTCGTAGATTTGGTTATGTAAATC
AGATCACATAAACAATTATTTTAAAAGAAAATTTCAAATTTGGAAGCTTTTGGTTATGAT
TATAAGATATATTTCCCTTTTTTTGTTCTTTAAATTAATGTGGGCAGGCAAGGCAAGTTC
ATCCAGACAAGAACCCTAATGATCCTCAAGCTGCTAAAAACTTTCAGGTGATTAATCATG
ACACAAAAAATGCTATCTTATAAGTTTGATTCACAAGGGTTATTAACGAACGTTTGAATA
AATCACTCTCGAATACTTACTACACTGCTCATGTGAATGAAGGTGCTAGGTGAAGCTTAC
CAAGTTCTTAGCGATCCGGAGAAACGAACTGCTTATGATAACTACGGCAAAGAAGGTGTT
CAACAGTAAGTCTACACACTCTATGCTCTCATATGAACAACTTTTTTGGTTTCTCCCTCG
CTAAAAGCAATTCATCCCCAATGTGACTGGTGTTAACGCTTAGTTGCTATTCCCATAATA
ATGTCGATTTTTTTTGTTGGTGCAGGGATGCAATGGTTGATCCTGCAGCTGTGTTCGGCA
TGCTCTTTGGCAGCGAGTTGTTTGAGGACTACATTGGCCAACTTGCTCTTGCTTCCATTG
CATCACTCGACGCTGAAGTTGAATCCCATGAGCCTGAGATTAGGAAAAAACTGCTTCAAG
ACAAGATCAAAGTACCTACCTTGTTTTTCTTTTTTCTTTTTTTCTTTCTCTTGAACTGTT
TTTTTTTATGGTTATAATTCCTCGTGAGCAGGCGATGCAAAAGGAAAGGGAAGACAAGCT
TGTCACTACGCTGAAGAACAAACTCGAACCATTCGTGGAAGGACAAACCGATGAATTTGT
GAATTGGGCTACCGCTGAGGCTAGGCGACTCTCAACAGCTGGTAATCAGAGTCACCCTAT
AATAACTTGTGTTTTATTTTTGCCGATCCTCAGTCAATGAAAGGCAAAAAAAAACTTTGG
GTGCTGTCAGGTTTTGGGGAAGCAATGCTGCACACTGTGGGTTACATTTACACAAGAAAA
GCTGCGAAAGAACTCGGAAAGGACAAACGTCTCATGAAAGTGCCCTTCTTAGCTGAATGG
GTGCGTGACAAAGGCCACCAGATCAAATCTCAAGTGATGGCTGCTTCTGGTAAACTAAAT
AAAACAAATCTTTTTAAGTTGAGTTTTCTTTGGGTAAACCAAAAACGATCCCTTTTTTTT
CTTCTTCTCTCTCGTAGGTGCGGTTTCGTTACTTGTGTTGCAGGACGAAGTGAGCAAGCT
GAACCAGGGAGAGAACAGAGAGGAGCATATTCAGAAAGCCATCGAAGCTAAAAAAGATGC
AATGCTTCAGTCCCTTTGGCAAATCAATGTGCTTGACATCGAATCAACCTTATCTCGCGT
CTGCCAAGCGGTATGTGATTTGGTTCACTACTACTACTGTTGATCCTATTGTTACATGAT
ATCATTACGTTGTTCTCTTGGTGTTTCTCAGGTGCTTAAAGATCCGAGTGTTTCAAAAGA
TGTTCTTCGAGCTAGAGCAAGAGGATTGAGGAAGCTCGGAAACATTTTCCAGGTGACCCA
TTAGCCCATATTAAACAACAATAAAAAAGTGTTTATTCTCTAACGTAACAGATCGAAACA
CTCTGCATCATTCTTACAGGGTTCTAAGAAACCCTACTCCAGAGAAAATAGCTTGCGCCA
CGAAGGTGCCGCCGTGAAACTTGATGCCGGAGATTCCTCTAAACCGGCGACTTAAAGTTC
GAACCAAAACGATCGGTTATTGAATGTATTGAATGTTTATGTGAAGTGGTGGTTTCGTCT
TTAAATTCCCTTTCTTTGCTTTATTGAATCTTTTACCTTCCGTGTTGGCTTTCACAAAAC
TCAAGGTCGCGTGTTCTGTA
Pro Sequence
MVKESEYYDVLGVKTDASAADIKKAYYIKARQVHPDKNPNDPQAAKNFQV
LGEAYQVLSDPEKRTAYDNYGKEGVQQDAMVDPAAVFGMLFGSELFEDYI
GQLALASIASLDAEVESHEPEIRKKLLQDKIKAMQKEREDKLVTTLKNKL
EPFVEGQTDEFVNWATAEARRLSTAGFGEAMLHTVGYIYTRKAAKELGKD
KRLMKVPFLAEWVRDKGHQIKSQVMAASGAVSLLVLQDEVSKLNQGENRE
EHIQKAIEAKKDAMLQSLWQINVLDIESTLSRVCQAVLKDPSVSKDVLRA
RARGLRKLGNIFQGSKKPYSRENSLRHEGAAVKLDAGDSSKPAT
mRNA Sequence
CCAATCTCTTGCTCGTTTTTGTGCTCCACGAACATTCAAGATATAGAGTCTGAGGGTAATGGTGAAGGAG
AGTGAGTATTACGACGTGTTAGGCGTCAAGACTGATGCCTCAGCTGCTGACATTAAGAAAGCTTATTATA
TCAAAGCAAGGCAAGTTCATCCAGACAAGAACCCTAATGATCCTCAAGCTGCTAAAAACTTTCAGGTGCT
AGGTGAAGCTTACCAAGTTCTTAGCGATCCGGAGAAACGAACTGCTTATGATAACTACGGCAAAGAAGGT
GTTCAACAGGATGCAATGGTTGATCCTGCAGCTGTGTTCGGCATGCTCTTTGGCAGCGAGTTGTTTGAGG
ACTACATTGGCCAACTTGCTCTTGCTTCCATTGCATCACTCGACGCTGAAGTTGAATCCCATGAGCCTGA
GATTAGGAAAAAACTGCTTCAAGACAAGATCAAAGCGATGCAAAAGGAAAGGGAAGACAAGCTTGTCACT
ACGCTGAAGAACAAACTCGAACCATTCGTGGAAGGACAAACCGATGAATTTGTGAATTGGGCTACCGCTG
AGGCTAGGCGACTCTCAACAGCTGGTTTTGGGGAAGCAATGCTGCACACTGTGGGTTACATTTACACAAG
AAAAGCTGCGAAAGAACTCGGAAAGGACAAACGTCTCATGAAAGTGCCCTTCTTAGCTGAATGGGTGCGT
GACAAAGGCCACCAGATCAAATCTCAAGTGATGGCTGCTTCTGGTGCGGTTTCGTTACTTGTGTTGCAGG
ACGAAGTGAGCAAGCTGAACCAGGGAGAGAACAGAGAGGAGCATATTCAGAAAGCCATCGAAGCTAAAAA
AGATGCAATGCTTCAGTCCCTTTGGCAAATCAATGTGCTTGACATCGAATCAACCTTATCTCGCGTCTGC
CAAGCGGTGCTTAAAGATCCGAGTGTTTCAAAAGATGTTCTTCGAGCTAGAGCAAGAGGATTGAGGAAGC
TCGGAAACATTTTCCAGGGTTCTAAGAAACCCTACTCCAGAGAAAATAGCTTGCGCCACGAAGGTGCCGC
CGTGAAACTTGATGCCGGAGATTCCTCTAAACCGGCGACTTAAAGTTCGAACCAAAACGATCGGTTATTG
AATGTATTGAATGTTTATGTGAAGTGGTGGTTTCGTCTTTAAATTCCCTTTCTTTGCTTTATTGAATCTT
TTACCTTCCGTGTTGGCTTTCACAAAACTCAAGGTCGCGTGTTCTGTAAGGTACTTGTTACATGGACATG
GTTTTTTCGTGTTTTTTATAAGTTGGCCCCTCGAATATAATAAA