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Detail for ZS11_A02G00910.t1

Genome:
ZS11: ZS11_A02G00910.t1
ZS11_v0: BnaA02T0011500ZS
WE: WE_A02G00920.t1
WE_v0: BnaA02T0010700WE
Darmor: C02p00920.1_BnaDAR
BH: BnaC09T503000BH
Quinta: BnaA02T0008300QU
ZS2: BnaA02T008200ZS2
SW: BnaA02T008800SW
Express61: A02p000650.2_BnaEXP
Xiaoyun: BnaC02G0008800XY
P202: BnaA02G005950P202.2
BL: BnaC09T503000BH
TA: BnaC02T009100TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g31580D
RB: BnaA02T008900RB
No2127: BnaA02T0010200NO
P130: BnaA02G000670P130.1
Length: 560
KOG ID: KOG1263
KOG E-value: Not available
KOG Score: 1068.0
KOG Annotation: Secondary metabolites biosynthesis, transport and catabolism
Biological Process: GO:0046274(lignin catabolic process)
Cellular Component: GO:0048046(apoplast)
Molecular Function: GO:0052716(hydroquinone:oxygen oxidoreductase activity),GO:0005507(copper ion binding),GO:0016491(oxidoreductase activity)
KEGG Ortholog: K05909 E1.10.3.2; laccase [EC:1.10.3.2]
NR Protein: XP_013720144.1
NR E-value: Not available
NR Score: 1187.2
NR Annotation: XP_013720144.1 laccase-11 [Brassica napus]
SwissProt Protein: Q8VZA1|LAC11_ARATH
SwissProt E-value: Not available
SwissProt Score: 1068.0
SwissProt Annotation: Laccase-11 OS=Arabidopsis thaliana OX=3702 GN=LAC11 PE=2 SV=1
CDS Sequence (1707 bp)
ATGAAGATCCTAAACCCGGGTTTTCTCTTTCTTTTCTTTTATCTTCTTGGGTTTCTTGGCGATTCTCCGG
TGGATGCGGCGGTGAAGAAGTACCAATTCGATGTTCAAATGAAGAACGTAAGCCGGTTATGCAATGCTAA
ACCGATTGTCACAGTTAATGGAATGTTCCCTGGACCAACGGTTTACGCAAGAGAAGGTGATCGAGTCATT
ATCAACGTCACCAACCACGTAAAATACAACTTGTCCATCCATTGGCATGGACTTAAACAGTACCGAAATG
GTTGGGCAGATGGTCCAGCGTACATAACTCAATGTCCGATGCAGACCGGACAAAGTTATGTTTATGATTT
CAACGTGACTGGACAACGTGGGACTCTCTGGTGGCATGCACACATCCTCTGGCTAAGAGCCACCGTGTAT
GGAGCTATTGTCATCTTGCCTCAACCAGGAAAACCATATCCTTTCCCACAACCATACCAAGAAACCAACA
TAGTCCTCGGAGAATGGTGGAACGGAGACGTTGAGACAGCGGTTAACCAAGCCAACCAGTTGGGTGCACC
GCCTCCAATGTCAGATGCTCATACCATAAACGGAAAACCAGGACCGTTCTTTCCATGTTCCGAGAAACAC
ACATTCGTGGTGGAGGTGGAAGCCGGTAAAACATACCTTCTGAGGATCATCAACGCTGCACTAAATGACG
AGCTATTCTTCGGGATTGCCGGTCACGACATGACCGTGGTGGAGATCGATGCAGTCTACACCAAACCATT
CACAACCAAGTTTATTCTAATCGGACCAGGTCAGACCACAAACGTTTTAGTCAAAACTGACCGTTCTCCA
AACCGTTACTTCATGGCAGCTGGTCCGTTCATGGACGCTCCGGTATCCGTAGACAACAAAACCGCAACCG
CGATCCTTCAATACAAAGGCGTACCAAACACGGTCATACCGATCTTACCAAAGCTTCCTTCACCTAACGA
CACATCATTTGCTTTGGACTATAACGGAAAGCTTAGGAGTCTCAACACACCAAACTTTCCAGCTCTTGTT
CCTTTAAAAGTCGACCGTAGATTGTTCTACACGATCGGGCTAGGCATTAACGCTTGCCCGACCTGTGTGA
ACGGGACCAATCTCGCGGCTTCCATAAACAACATCACTTTCGTTATGCCGAAAATCGCGCTTTTGAAAGC
TCATTACTTCAACCTCCCAGGAGTTTTCAGGACAGACTTCCCTGATAGACCGCCTAAAGCGTTTAACTAC
ACCGGTGTGCCACTCACGGCTAACCTCGGGACATCTACGGGGACAAGACTGAGCCGAGTTAAGTTCAACA
CGACAATTGAGCTAGTTTTGCAAGACACCAATCTCCTAACCGTTGAGTCACACCCTTTTCATCTTCACGG
CTACAACTTCTTCGTTGTTGGAACCGGTGTTGGGAACTTTGACCCCAAGACAGATCCGGCTAAATTTAAT
CTCATTGACCCGCCCGAGAGAAACACAGTTGGAGTACCTACGGGTGGTTGGGCCGCCATTAGATTCAGGG
CTGATAATCCAGGTGTTTGGTTTATGCACTGTCACTTGGAAGTCCACACAATGTGGGGTTTAAAGATGGC
TTTCGTTGTTGAAAACGGGAATACACCTGAGCTTTCAGTTCTACCACCGCCCAAGGACTATCCATCATGT
TAA
Upstream Sequence
TATAACCAAGAGCAATAAAAGTTTAAATACAAATAAAACCTGATCATTGCATATACCGGAAGATTGAACC
GGAAATGAAGATCCTAAACCCGGGTTTTCTCTTTCTTTTCTTTTATCTTCTTGGGTTTCTTGGCGATTCT
CCGGTGGATGCGGCGGTGAAGAAGTACCAATTCGATGTTCAAATGAAGAACGTAAGCCGGTTATGCAATG
CTAAACCGATTGTCACAGTTAATGGAATGTTCCCTGGACCAACGGTTTACGCAAGAGAAGGTGATCGAGT
CATTATCAACGTCACCAACCACGTAAAATACAACTTGTCCATCCATTGGCATGGACTTAAACAGTACCGA
AATGGTTGGGCAGATGGTCCAGCGTACATAACTCAATGTCCGATGCAGACCGGACAAAGTTATGTTTATG
ATTTCAACGTGACTGGACAACGTGGGACTCTCTGGTGGCATGCACACATCCTCTGGCTAAGAGCCACCGT
GTATGGAGCTATTGTCATCTTGCCTCAACCAGGAAAACCATATCCTTTCCCACAACCATACCAAGAAACC
AACATAGTCCTCGGAGAATGGTGGAACGGAGACGTTGAGACAGCGGTTAACCAAGCCAACCAGTTGGGTG
CACCGCCTCCAATGTCAGATGCTCATACCATAAACGGAAAACCAGGACCGTTCTTTCCATGTTCCGAGAA
ACACACATTCGTGGTGGAGGTGGAAGCCGGTAAAACATACCTTCTGAGGATCATCAACGCTGCACTAAAT
GACGAGCTATTCTTCGGGATTGCCGGTCACGACATGACCGTGGTGGAGATCGATGCAGTCTACACCAAAC
CATTCACAACCAAGTTTATTCTAATCGGACCAGGTCAGACCACAAACGTTTTAGTCAAAACTGACCGTTC
TCCAAACCGTTACTTCATGGCAGCTGGTCCGTTCATGGACGCTCCGGTATCCGTAGACAACAAAACCGCA
ACCGCGATCCTTCAATACAAAGGCGTACCAAACACGGTCATACCGATCTTACCAAAGCTTCCTTCACCTA
ACGACACATCATTTGCTTTGGACTATAACGGAAAGCTTAGGAGTCTCAACACACCAAACTTTCCAGCTCT
TGTTCCTTTAAAAGTCGACCGTAGATTGTTCTACACGATCGGGCTAGGCATTAACGCTTGCCCGACCTGT
GTGAACGGGACCAATCTCGCGGCTTCCATAAACAACATCACTTTCGTTATGCCGAAAATCGCGCTTTTGA
AAGCTCATTACTTCAACCTCCCAGGAGTTTTCAGGACAGACTTCCCTGATAGACCGCCTAAAGCGTTTAA
CTACACCGGTGTGCCACTCACGGCTAACCTCGGGACATCTACGGGGACAAGACTGAGCCGAGTTAAGTTC
AACACGACAATTGAGCTAGTTTTGCAAGACACCAATCTCCTAACCGTTGAGTCACACCCTTTTCATCTTC
ACGGCTACAACTTCTTCGTTGTTGGAACCGGTGTTGGGAACTTTGACCCCAAGACAGATCCGGCTAAATT
TAATCTCATTGACCCGCCCGAGAGAAACACAGTTGGAGTACCTACGGGTGGTTGGGCCGCCATTAGATTC
AGGGCTGATAATCCAGGTGTTTGGTTTATGCACTGTCACTTGGAAGTCCACACAATGTGGGGTTTAAAGA
TGGCTTTCGTTGTTGAAAACGGGAATACACCTGAGCTTTCAGTTCTACCACCGCCCAAGGACTATCCATC
ATGTTAAGAATCTGAAACCGGAACACATTCACTCGATTCTTCTTCTTCCTATATATTTGTTTAAGTCGCT
GATGACATTCTTTGTTGATTGTATTTTTCTTTCTGTTGCTTTGTGTGCTTGAGATTGTTTCATGTGGGGC
TGAACAACAACAACAAGACCCC
Downstream Sequence
TGTACGTATTTGATTTCCCGGTGAATATAAACCGTAACCTAAACTATATACTGGTTTGAC
TACCTGGtttatattgttgagttatactaTTACTATATATGTAGGGTTTTGTTGTATATC
AACGTTTGAAATTTTGAACAGGTTCAAATGAAGAACGTAAGCCGGTTATGCAATGCTAAA
CCGATTGTCACAGTTAATGGAATGTTCCCTGGACCAACGGTTTACGCAAGAGAAGGTGAT
CGAGTCATTATCAACGTCACCAACCACGTAAAATACAACTTGTCCATCCATTGGTAAAAT
CTCTCTTTCCTACGTCTCAAACCCGTTTAGTCTATGTTTTTTTGTGAGCCAATTTTTAAC
GTTTTGTTTTTATAGGCATGGACTTAAACAGTACCGAAATGGTTGGGCAGATGGTCCAGC
GTACATAACTCAATGTCCGATGCAGACCGGACAAAGTTATGTTTATGATTTCAACGTGAC
TGGACAACGTGGGACTCTCTGGTGGCATGCACACATCCTCTGGCTAAGAGCCACCGTGTA
TGGAGCTATTGTCATCTTGCCTCAACCAGGAAAACCATATCCTTTCCCACAACCATACCA
AGAAACCAACATAGTCCTCGGTTAGTGAATATAATTAAAACCGGTTTGGTCTAGCCTGCT
CAAATTTACCGGGCTTTTTCTCATATTTTTTAAAAAACATTGTTTATAGGAGAATGGTGG
AACGGAGACGTTGAGACAGCGGTTAACCAAGCCAACCAGTTGGGTGCACCGCCTCCAATG
TCAGATGCTCATACCATAAACGGAAAACCAGGACCGTTCTTTCCATGTTCCGAGAAACGT
ATAACTTCTTAACCTTATAAAACCGGTTTTAACCGGATCATATCTTTTTTTTTTGAATAG
AAACAAATAATAATATAAATTGCATATTTTAAAACAAGATTATTATAACATCTAGTTAAC
TTTTAATTAAACTAAACCAGATCATATCATTTTAGTTAAAATATTTGTTTCTGTATAGAC
ACATTCGTGGTGGAGGTGGAAGCCGGTAAAACATACCTTCTGAGGATCATCAACGCTGCA
CTAAATGACGAGCTATTCTTCGGGATTGCCGGTCACGACATGACCGTGGTGGAGATCGAT
GCAGTCTACACCAAACCATTCACAACCAAGTTTATTCTAATCGGACCAGGTCAGACCACA
AACGTTTTAGTCAAAACTGACCGTTCTCCAAACCGTTACTTCATGGCAGCTGGTCCGTTC
ATGGACGCTCCGGTATCCGTAGACAACAAAACCGCAACCGCGATCCTTCAATACAAAGGC
GTACCAAACACGGTCATACCGATCTTACCAAAGCTTCCTTCACCTAACGACACATCATTT
GCTTTGGACTATAACGGAAAGCTTAGGAGTCTCAACACACCAAACTTTCCAGCTCTTGTT
CCTTTAAAAGTCGACCGTAGATTGTTCTACACGATCGGGCTAGGCATTAACGCTTGCCCG
ACCTGTGTGAACGGGACCAATCTCGCGGCTTCCATAAACAACATCACTTTCGTTATGCCG
AAAATCGCGCTTTTGAAAGCTCATTACTTCAACCTCCCAGGAGTTTTCAGGACAGACTTC
CCTGATAGACCGCCTAAAGCGTTTAACTACACCGGTGTGCCACTCACGGCTAACCTCGGG
ACATCTACGGGGACAAGACTGAGCCGAGTTAAGTTCAACACGACAATTGAGCTAGTTTTG
CAAGACACCAATCTCCTAACCGTTGAGTCACACCCTTTTCATCTTCACGGCTACAACTTC
TTCGTTGTTGGAACCGGTGTTGGGAACTTTGACCCCAAGACAGATCCGGCTAAATTTAAT
CTCATTGACCCGCCCGAGAGAAACACAGTTGGAGTACCTACGGGTGGTTGGGCCGCCATT
AGATTCAGGGCTGATAATCCAGGTATGATCTCTCAATGCACATACATCATGAGAATGGTC
ACATATAATAAATGATAAGC
Pro Sequence
MKILNPGFLFLFFYLLGFLGDSPVDAAVKKYQFDVQMKNVSRLCNAKPIV
TVNGMFPGPTVYAREGDRVIINVTNHVKYNLSIHWHGLKQYRNGWADGPA
YITQCPMQTGQSYVYDFNVTGQRGTLWWHAHILWLRATVYGAIVILPQPG
KPYPFPQPYQETNIVLGEWWNGDVETAVNQANQLGAPPPMSDAHTINGKP
GPFFPCSEKHTFVVEVEAGKTYLLRIINAALNDELFFGIAGHDMTVVEID
AVYTKPFTTKFILIGPGQTTNVLVKTDRSPNRYFMAAGPFMDAPVSVDNK
TATAILQYKGVPNTVIPILPKLPSPNDTSFALDYNGKLRSLNTPNFPALV
PLKVDRRLFYTIGLGINACPTCVNGTNLAASINNITFVMPKIALLKAHYF
NLPGVFRTDFPDRPPKAFNYTGVPLTANLGTSTGTRLSRVKFNTTIELVL
QDTNLLTVESHPFHLHGYNFFVVGTGVGNFDPKTDPAKFNLIDPPERNTV
GVPTGGWAAIRFRADNPGVWFMHCHLEVHTMWGLKMAFVVENGNTPELSV
LPPPKDYPSC
mRNA Sequence
TATAACCAAGAGCAATAAAAGTTTAAATACAAATAAAACCTGATCATTGCATATACCGGAAGATTGAACC
GGAAATGAAGATCCTAAACCCGGGTTTTCTCTTTCTTTTCTTTTATCTTCTTGGGTTTCTTGGCGATTCT
CCGGTGGATGCGGCGGTGAAGAAGTACCAATTCGATGTTCAAATGAAGAACGTAAGCCGGTTATGCAATG
CTAAACCGATTGTCACAGTTAATGGAATGTTCCCTGGACCAACGGTTTACGCAAGAGAAGGTGATCGAGT
CATTATCAACGTCACCAACCACGTAAAATACAACTTGTCCATCCATTGGCATGGACTTAAACAGTACCGA
AATGGTTGGGCAGATGGTCCAGCGTACATAACTCAATGTCCGATGCAGACCGGACAAAGTTATGTTTATG
ATTTCAACGTGACTGGACAACGTGGGACTCTCTGGTGGCATGCACACATCCTCTGGCTAAGAGCCACCGT
GTATGGAGCTATTGTCATCTTGCCTCAACCAGGAAAACCATATCCTTTCCCACAACCATACCAAGAAACC
AACATAGTCCTCGGAGAATGGTGGAACGGAGACGTTGAGACAGCGGTTAACCAAGCCAACCAGTTGGGTG
CACCGCCTCCAATGTCAGATGCTCATACCATAAACGGAAAACCAGGACCGTTCTTTCCATGTTCCGAGAA
ACACACATTCGTGGTGGAGGTGGAAGCCGGTAAAACATACCTTCTGAGGATCATCAACGCTGCACTAAAT
GACGAGCTATTCTTCGGGATTGCCGGTCACGACATGACCGTGGTGGAGATCGATGCAGTCTACACCAAAC
CATTCACAACCAAGTTTATTCTAATCGGACCAGGTCAGACCACAAACGTTTTAGTCAAAACTGACCGTTC
TCCAAACCGTTACTTCATGGCAGCTGGTCCGTTCATGGACGCTCCGGTATCCGTAGACAACAAAACCGCA
ACCGCGATCCTTCAATACAAAGGCGTACCAAACACGGTCATACCGATCTTACCAAAGCTTCCTTCACCTA
ACGACACATCATTTGCTTTGGACTATAACGGAAAGCTTAGGAGTCTCAACACACCAAACTTTCCAGCTCT
TGTTCCTTTAAAAGTCGACCGTAGATTGTTCTACACGATCGGGCTAGGCATTAACGCTTGCCCGACCTGT
GTGAACGGGACCAATCTCGCGGCTTCCATAAACAACATCACTTTCGTTATGCCGAAAATCGCGCTTTTGA
AAGCTCATTACTTCAACCTCCCAGGAGTTTTCAGGACAGACTTCCCTGATAGACCGCCTAAAGCGTTTAA
CTACACCGGTGTGCCACTCACGGCTAACCTCGGGACATCTACGGGGACAAGACTGAGCCGAGTTAAGTTC
AACACGACAATTGAGCTAGTTTTGCAAGACACCAATCTCCTAACCGTTGAGTCACACCCTTTTCATCTTC
ACGGCTACAACTTCTTCGTTGTTGGAACCGGTGTTGGGAACTTTGACCCCAAGACAGATCCGGCTAAATT
TAATCTCATTGACCCGCCCGAGAGAAACACAGTTGGAGTACCTACGGGTGGTTGGGCCGCCATTAGATTC
AGGGCTGATAATCCAGGTGTTTGGTTTATGCACTGTCACTTGGAAGTCCACACAATGTGGGGTTTAAAGA
TGGCTTTCGTTGTTGAAAACGGGAATACACCTGAGCTTTCAGTTCTACCACCGCCCAAGGACTATCCATC
ATGTTAAGAATCTGAAACCGGAACACATTCACTCGATTCTTCTTCTTCCTATATATTTGTTTAAGTCGCT
GATGACATTCTTTGTTGATTGTATTTTTCTTTCTGTTGCTTTGTGTGCTTGAGATTGTTTCATGTGGGGC
TGAACAACAACAACAAGACCCC