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Detail for ZS11_C02G13720.t1

Genome:
ZS11: ZS11_C02G13720.t1
ZS11_v0: BnaC02T0121900ZS
WE: WE_A02G11310.t1
WE_v0: BnaC02T0115500WE
Darmor: C02p11940.1_BnaDAR
BH: BnaA02T110200BH
Quinta: BnaC02T0075500QU
ZS2: BnaC02T120100ZS2
SW: BnaA02T115700SW
Express61: C02p011150.1_BnaEXP
Xiaoyun: BnaC02G0117900XY
P202: BnaA03G008960P202.1
BL: BnaA02T110200BH
TA: BnaC02T123100TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g31580D
RB: BnaA02T114600RB
No2127: BnaC02T0076700NO
P130: BnaC02G012480P130.1
Length: 572
KOG ID: KOG1263
KOG E-value: Not available
KOG Score: 1089.0
KOG Annotation: Secondary metabolites biosynthesis, transport and catabolism
Biological Process: GO:0046274(lignin catabolic process)
Cellular Component: GO:0048046(apoplast)
Molecular Function: GO:0005507(copper ion binding),GO:0016491(oxidoreductase activity),GO:0052716(hydroquinone:oxygen oxidoreductase activity)
KEGG Ortholog: K05909 E1.10.3.2; laccase [EC:1.10.3.2]
NR Protein: XP_013613862.1
NR E-value: Not available
NR Score: 1199.9
NR Annotation: XP_013613862.1 PREDICTED: laccase-17-like [Brassica oleracea var. oleracea]
SwissProt Protein: Q9FJD5|LAC17_ARATH
SwissProt E-value: Not available
SwissProt Score: 1089.0
SwissProt Annotation: Laccase-17 OS=Arabidopsis thaliana OX=3702 GN=LAC17 PE=2 SV=1
CDS Sequence (1743 bp)
ATGGCGTCCTGGCTTCTCTTTTCTGTGTTCTCTTTTGTTCTTCTTCTTCCTGAACCTGCAGTTGGGATTA
CTAGGCATTATACGCTGGACATAAAAATGCATACCGTGACACGTCTTTGCCACACAAAGAGCCTTGTTTC
TGTAAACGGGAAGTTTCCAGGGCCTAAGATTATTGCTAGAGAAGGTGACCAGCTTCTGATCAAAGTTGTT
AACCATGTCCCAAACAATATCTCTCTCCACTGGCATGGGATCAGGCAATTAAGGTCTGGTTGGGCTGATG
GGCCAGCTTACATAACCCAATGTCCTATTCAGACAGGGCAAAGCTACCTATACAACTACACCGTTGTTGG
TCAAAGAGGCACTTTATGGTACCATGCTCACATCTCATGGCTCAGAGCAACGGTCTATGGTCCTCTTATC
ATTCTTCCCAAACACGGTGTTCCTTACCCCTTTCCCAAGCCTCACAAAGAAGTTCCCATGGTCTTTGGGG
AGTGGTTCAACGCAGACACTGAGGCAATCATCCGCCAAGCAACGCTGACAGGAGGTGGTCCTAATGTCTC
TGATGCTTACACAATCAACGGTCTTCCTGGTCCACTATACAACTGCTCAGCTAAAGATACATTCAGACTG
AGAGTGAAGCCAGGGAAGACATACCTTCTCAGGATAATCAACGCTGCACTTAATGACGAGCTCTTCTTCA
GCATCGCAAACCACACGGTCACAGTCGTTGAAGCTGATGCCGTCTACGTCAAACCATTCGAGACTAACAC
CATCTTGATCGCTCCTGGCCAGACCACAAACGTCCTGCTCAAGACCAAACCGAGTTACCCTAGCGCCTCT
TTCTTCATGACCGCTAGACCATACGCCACAGGTCAGGGGACTTTCGATAACACCACAGTCGCAGGCATCT
TAGAATATGAACAACCTAAACATGCAAAGACCAATATAAAGAATCTTCCTCTCTTCACACCGGTGCTCCC
CGCTTTAAACGATACAAACTTTGCTACCAAGTTCAGTAACAAGCTGCGTAGCTTGAACAGCGAGAAGTTC
CCGGCGAACGTGCCTCAGAAGGTTGATAGGAAGTTCTTTTTCACGGTGGGACTGGGGACGAACCCTTGTA
ACCATAAGAACAACCAGACGTGTCAGGGTCCTACTAACACCACAATGTTTGCTGCATCGATCAGCAACAT
CTCATTCACACTGCCAACGAAAGCTCTCCTTCAGTCTCACTACTCTGGGAGATCTGATGGAGTGTATTCT
CCAAACTTCCCGTGGAATCCTATTGTTCCTTTTAACTACACAGGCACTCCGCCTAACAACACCATGGTTA
GCACCGGGACGAACTTGATGGTTCTGAGGTATAACACTAGTGTGGAGCTTGTGATGCAGGACACTAGCAT
TCTTGGGGCGGAGAGCCATCCTCTTCACCTTCATGGGTTCAACTTCTTTGTCGTTGGCCAAGGGTTTGGG
AACTTTGATCCGAATAAGGATCCTAAGAAGTTTAATCTTGTTGATCCGATAGAGAGGAACACAGTTGGTG
TGCCTTCTGGTGGATGGGCTGCTATTAGGTTCCTTGCAGATAACCCAGGAGTGTGGTTCATGCACTGTCA
CTTGGAAGTACATACCAGTTGGGGTCTGAGGATGGCTTGGCTTGTTCTTGATGGAGATAAGCCTGATCAA
AAACTTCTTCCTCCTCCTGCTGACTTGCCCAAGTGCTGA
Upstream Sequence
GCAAGAACCCAACTTTCCTTTCTATATATACACTAAATGTTGAAACAATGAATCCACACAGAAAAACAAA
AAAAAAAAAGAACAGAGGCAGAGTATTAAGTAACCTTTTTCCAGCCTACTTAAACTTCCTAAGGATATAT
AACAAATGGCGTCCTGGCTTCTCTTTTCTGTGTTCTCTTTTGTTCTTCTTCTTCCTGAACCTGCAGTTGG
GATTACTAGGCATTATACGCTGGACATAAAAATGCATACCGTGACACGTCTTTGCCACACAAAGAGCCTT
GTTTCTGTAAACGGGAAGTTTCCAGGGCCTAAGATTATTGCTAGAGAAGGTGACCAGCTTCTGATCAAAG
TTGTTAACCATGTCCCAAACAATATCTCTCTCCACTGGCATGGGATCAGGCAATTAAGGTCTGGTTGGGC
TGATGGGCCAGCTTACATAACCCAATGTCCTATTCAGACAGGGCAAAGCTACCTATACAACTACACCGTT
GTTGGTCAAAGAGGCACTTTATGGTACCATGCTCACATCTCATGGCTCAGAGCAACGGTCTATGGTCCTC
TTATCATTCTTCCCAAACACGGTGTTCCTTACCCCTTTCCCAAGCCTCACAAAGAAGTTCCCATGGTCTT
TGGGGAGTGGTTCAACGCAGACACTGAGGCAATCATCCGCCAAGCAACGCTGACAGGAGGTGGTCCTAAT
GTCTCTGATGCTTACACAATCAACGGTCTTCCTGGTCCACTATACAACTGCTCAGCTAAAGATACATTCA
GACTGAGAGTGAAGCCAGGGAAGACATACCTTCTCAGGATAATCAACGCTGCACTTAATGACGAGCTCTT
CTTCAGCATCGCAAACCACACGGTCACAGTCGTTGAAGCTGATGCCGTCTACGTCAAACCATTCGAGACT
AACACCATCTTGATCGCTCCTGGCCAGACCACAAACGTCCTGCTCAAGACCAAACCGAGTTACCCTAGCG
CCTCTTTCTTCATGACCGCTAGACCATACGCCACAGGTCAGGGGACTTTCGATAACACCACAGTCGCAGG
CATCTTAGAATATGAACAACCTAAACATGCAAAGACCAATATAAAGAATCTTCCTCTCTTCACACCGGTG
CTCCCCGCTTTAAACGATACAAACTTTGCTACCAAGTTCAGTAACAAGCTGCGTAGCTTGAACAGCGAGA
AGTTCCCGGCGAACGTGCCTCAGAAGGTTGATAGGAAGTTCTTTTTCACGGTGGGACTGGGGACGAACCC
TTGTAACCATAAGAACAACCAGACGTGTCAGGGTCCTACTAACACCACAATGTTTGCTGCATCGATCAGC
AACATCTCATTCACACTGCCAACGAAAGCTCTCCTTCAGTCTCACTACTCTGGGAGATCTGATGGAGTGT
ATTCTCCAAACTTCCCGTGGAATCCTATTGTTCCTTTTAACTACACAGGCACTCCGCCTAACAACACCAT
GGTTAGCACCGGGACGAACTTGATGGTTCTGAGGTATAACACTAGTGTGGAGCTTGTGATGCAGGACACT
AGCATTCTTGGGGCGGAGAGCCATCCTCTTCACCTTCATGGGTTCAACTTCTTTGTCGTTGGCCAAGGGT
TTGGGAACTTTGATCCGAATAAGGATCCTAAGAAGTTTAATCTTGTTGATCCGATAGAGAGGAACACAGT
TGGTGTGCCTTCTGGTGGATGGGCTGCTATTAGGTTCCTTGCAGATAACCCAGGAGTGTGGTTCATGCAC
TGTCACTTGGAAGTACATACCAGTTGGGGTCTGAGGATGGCTTGGCTTGTTCTTGATGGAGATAAGCCTG
ATCAAAAACTTCTTCCTCCTCCTGCTGACTTGCCCAAGTGCTGATAAATCTTGCTATCTTTTTTGTTTCT
GGTCTCTTCTTTCTTCCAAGCTTCATGTATTTGTTTCTTTTTTTTTTGTTTACGGCCA
Downstream Sequence
CGTATGTAATGATTTGTTTATTCTGTTAAAATGTTGGGATTACACATGAAAGGTGGCAGA
TGATGATAAGATGTTTcatattttttGCAGATAAAAATGCATACCGTGACACGTCTTTGC
CACACAAAGAGCCTTGTTTCTGTAAACGGGAAGTTTCCAGGGCCTAAGATTATTGCTAGA
GAAGGTGACCAGCTTCTGATCAAAGTTGTTAACCATGTCCCAAACAATATCTCTCTCCAC
TGGTAATAATAATCTTTAAAACACTTTGAAGCACCATTAAGAAGCAATGTTTGATTACTA
TCACCTGAAAATCTCAGGCATGGGATCAGGCAATTAAGGTCTGGTTGGGCTGATGGGCCA
GCTTACATAACCCAATGTCCTATTCAGACAGGGCAAAGCTACCTATACAACTACACCGTT
GTTGGTCAAAGAGGCACTTTATGGTACCATGCTCACATCTCATGGCTCAGAGCAACGGTC
TATGGTCCTCTTATCATTCTTCCCAAACACGGTGTTCCTTACCCCTTTCCCAAGCCTCAC
AAAGAAGTTCCCATGGTCTTTGGTGAGGATGATGACTAAACAAACTGAGAATCTGATGAG
AATTTTTAAACATTAATTACTGATTTATTTTTAATGGTTGAAATTTTCAGGGGAGTGGTT
CAACGCAGACACTGAGGCAATCATCCGCCAAGCAACGCTGACAGGAGGTGGTCCTAATGT
CTCTGATGCTTACACAATCAACGGTCTTCCTGGTCCACTATACAACTGCTCAGCTAAAGG
CAAGTGTTGATTCCTACAACAACTAATAATGGTTTTGATAAAATATAACCACCAATGATG
TTAAAAAAAACAGATACATTCAGACTGAGAGTGAAGCCAGGGAAGACATACCTTCTCAGG
ATAATCAACGCTGCACTTAATGACGAGCTCTTCTTCAGCATCGCAAACCACACGGTCACA
GTCGTTGAAGCTGATGCCGTCTACGTCAAACCATTCGAGACTAACACCATCTTGATCGCT
CCTGGCCAGACCACAAACGTCCTGCTCAAGACCAAACCGAGTTACCCTAGCGCCTCTTTC
TTCATGACCGCTAGACCATACGCCACAGGTCAGGGGACTTTCGATAACACCACAGTCGCA
GGCATCTTAGAATATGAACAACCTAAACATGCAAAGACCAATATAAAGAATCTTCCTCTC
TTCACACCGGTGCTCCCCGCTTTAAACGATACAAACTTTGCTACCAAGTTCAGTAACAAG
CTGCGTAGCTTGAACAGCGAGAAGTTCCCGGCGAACGTGCCTCAGAAGGTTGATAGGAAG
TTCTTTTTCACGGTGGGACTGGGGACGAACCCTTGTAACCATAAGAACAACCAGACGTGT
CAGGGTCCTACTAACACCACAATGTTTGCTGCATCGATCAGCAACATCTCATTCACACTG
CCAACGAAAGCTCTCCTTCAGTCTCACTACTCTGGGAGATCTGATGGAGTGTATTCTCCA
AACTTCCCGTGGAATCCTATTGTTCCTTTTAACTACACAGGCACTCCGCCTAACAACACC
ATGGTTAGCACCGGGACGAACTTGATGGTTCTGAGGTATAACACTAGTGTGGAGCTTGTG
ATGCAGGACACTAGCATTCTTGGGGCGGAGAGCCATCCTCTTCACCTTCATGGGTTCAAC
TTCTTTGTCGTTGGCCAAGGGTTTGGGAACTTTGATCCGAATAAGGATCCTAAGAAGTTT
AATCTTGTTGATCCGATAGAGAGGAACACAGTTGGTGTGCCTTCTGGTGGATGGGCTGCT
ATTAGGTTCCTTGCAGATAACCCAGGTAAGAGAAAATAGGTTTACATTAGTCTATTCTGA
TATGAAAAGTATAACTAACTTTACAAAAATGTTTGGACAGGAGTGTGGTTCATGCACTGT
CACTTGGAAGTACATACCAGTTGGGGTCTGAGGATGGCTTGGCTTGTTCTTGATGGAGAT
AAGCCTGATCAAAAACTTCT
Pro Sequence
MASWLLFSVFSFVLLLPEPAVGITRHYTLDIKMHTVTRLCHTKSLVSVNG
KFPGPKIIAREGDQLLIKVVNHVPNNISLHWHGIRQLRSGWADGPAYITQ
CPIQTGQSYLYNYTVVGQRGTLWYHAHISWLRATVYGPLIILPKHGVPYP
FPKPHKEVPMVFGEWFNADTEAIIRQATLTGGGPNVSDAYTINGLPGPLY
NCSAKDTFRLRVKPGKTYLLRIINAALNDELFFSIANHTVTVVEADAVYV
KPFETNTILIAPGQTTNVLLKTKPSYPSASFFMTARPYATGQGTFDNTTV
AGILEYEQPKHAKTNIKNLPLFTPVLPALNDTNFATKFSNKLRSLNSEKF
PANVPQKVDRKFFFTVGLGTNPCNHKNNQTCQGPTNTTMFAASISNISFT
LPTKALLQSHYSGRSDGVYSPNFPWNPIVPFNYTGTPPNNTMVSTGTNLM
VLRYNTSVELVMQDTSILGAESHPLHLHGFNFFVVGQGFGNFDPNKDPKK
FNLVDPIERNTVGVPSGGWAAIRFLADNPGVWFMHCHLEVHTSWGLRMAW
LVLDGDKPDQKLLPPPADLPKC
mRNA Sequence
GCAAGAACCCAACTTTCCTTTCTATATATACACTAAATGTTGAAACAATGAATCCACACAGAAAAACAAA
AAAAAAAAAGAACAGAGGCAGAGTATTAAGTAACCTTTTTCCAGCCTACTTAAACTTCCTAAGGATATAT
AACAAATGGCGTCCTGGCTTCTCTTTTCTGTGTTCTCTTTTGTTCTTCTTCTTCCTGAACCTGCAGTTGG
GATTACTAGGCATTATACGCTGGACATAAAAATGCATACCGTGACACGTCTTTGCCACACAAAGAGCCTT
GTTTCTGTAAACGGGAAGTTTCCAGGGCCTAAGATTATTGCTAGAGAAGGTGACCAGCTTCTGATCAAAG
TTGTTAACCATGTCCCAAACAATATCTCTCTCCACTGGCATGGGATCAGGCAATTAAGGTCTGGTTGGGC
TGATGGGCCAGCTTACATAACCCAATGTCCTATTCAGACAGGGCAAAGCTACCTATACAACTACACCGTT
GTTGGTCAAAGAGGCACTTTATGGTACCATGCTCACATCTCATGGCTCAGAGCAACGGTCTATGGTCCTC
TTATCATTCTTCCCAAACACGGTGTTCCTTACCCCTTTCCCAAGCCTCACAAAGAAGTTCCCATGGTCTT
TGGGGAGTGGTTCAACGCAGACACTGAGGCAATCATCCGCCAAGCAACGCTGACAGGAGGTGGTCCTAAT
GTCTCTGATGCTTACACAATCAACGGTCTTCCTGGTCCACTATACAACTGCTCAGCTAAAGATACATTCA
GACTGAGAGTGAAGCCAGGGAAGACATACCTTCTCAGGATAATCAACGCTGCACTTAATGACGAGCTCTT
CTTCAGCATCGCAAACCACACGGTCACAGTCGTTGAAGCTGATGCCGTCTACGTCAAACCATTCGAGACT
AACACCATCTTGATCGCTCCTGGCCAGACCACAAACGTCCTGCTCAAGACCAAACCGAGTTACCCTAGCG
CCTCTTTCTTCATGACCGCTAGACCATACGCCACAGGTCAGGGGACTTTCGATAACACCACAGTCGCAGG
CATCTTAGAATATGAACAACCTAAACATGCAAAGACCAATATAAAGAATCTTCCTCTCTTCACACCGGTG
CTCCCCGCTTTAAACGATACAAACTTTGCTACCAAGTTCAGTAACAAGCTGCGTAGCTTGAACAGCGAGA
AGTTCCCGGCGAACGTGCCTCAGAAGGTTGATAGGAAGTTCTTTTTCACGGTGGGACTGGGGACGAACCC
TTGTAACCATAAGAACAACCAGACGTGTCAGGGTCCTACTAACACCACAATGTTTGCTGCATCGATCAGC
AACATCTCATTCACACTGCCAACGAAAGCTCTCCTTCAGTCTCACTACTCTGGGAGATCTGATGGAGTGT
ATTCTCCAAACTTCCCGTGGAATCCTATTGTTCCTTTTAACTACACAGGCACTCCGCCTAACAACACCAT
GGTTAGCACCGGGACGAACTTGATGGTTCTGAGGTATAACACTAGTGTGGAGCTTGTGATGCAGGACACT
AGCATTCTTGGGGCGGAGAGCCATCCTCTTCACCTTCATGGGTTCAACTTCTTTGTCGTTGGCCAAGGGT
TTGGGAACTTTGATCCGAATAAGGATCCTAAGAAGTTTAATCTTGTTGATCCGATAGAGAGGAACACAGT
TGGTGTGCCTTCTGGTGGATGGGCTGCTATTAGGTTCCTTGCAGATAACCCAGGAGTGTGGTTCATGCAC
TGTCACTTGGAAGTACATACCAGTTGGGGTCTGAGGATGGCTTGGCTTGTTCTTGATGGAGATAAGCCTG
ATCAAAAACTTCTTCCTCCTCCTGCTGACTTGCCCAAGTGCTGATAAATCTTGCTATCTTTTTTGTTTCT
GGTCTCTTCTTTCTTCCAAGCTTCATGTATTTGTTTCTTTTTTTTTTGTTTACGGCCA