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Tomato locus cytochrome P450 AB190445
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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Locus | Solyc02g065750 |
Locus name | cytochrome P450 AB190445 |
Symbol | AB190445 |
Gene activity | cytochrome P450 |
Description | |
Chromosome | 2 |
Arm |
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cytochrome P450 AB190445 is on PhyloGenes
TomDelDB genotype frequencies in tomato populations. chromosome SL2.50ch02, position: 36900335
Please cite Razifard et al.
Registry name: | None | [Associate registry name] |
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Accession name:
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Alleles (0) | None | [Add new Allele] |
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Associated loci - graphical view | None |
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![]() ![]() | unprocessed genomic sequence region underlying this gene |
>Solyc02g065750.1 SL2.50ch02:36902472..36897234 (sequence from reverse strand)
ATGGCCATTTTCTTGATAATTTTTGTTGTGTTTTTTGGATTTTGCATTTTGAGTACTCCTCTATTTAGATGGATTGACAT
TGTGTACAACAAGAAAAATTTGCCTCCTGGAACTATGGGTTGGCCAATTTTTGGTGAGACTAGGGAATTTCTAAATCAAG
GTCCAAATTTCATGAAAAATCAAAGAGCAAGGTATATATATATATATATATATATTCTCATTTCTTTTACTTCTTTTTAC
TATTTTGTCTTAAATCTATGAAGGGGGTTTATATGTCNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNAAATTTACTATGAAAAATACAAAGAGCAAGTATATATATATATATATATATATTCTCATTTCTTTTACTCTTTTTACA
TTTTGCTTAAATCTATGAAGGGGGTTTATATGTCAATTTTATTTTTTTTTGTAGATTTTAATATGTTTTTTAAAATCCCT
ATTACAAGATCTTATGAACTAGTATCAAGACTAGAATTTTTGTTAATGCTTTAGGTAAAAGAAAAATAAGAAGGGTGATA
ATTTGTAGCAATTTCATCACAAATTTTATTTTTATCCTGGATTTGTCATTAGGTTAAGTATGTTTATGAATAATGATGTG
CTGAATGCAAAATTAGACTTATTCAATTTGGTCAATTAAAGTCCAACAATATCTATATCTATATTATATCTATATATATA
TATATAAGAATATTATTTTCATGAAACTTCATAAATTTTAACAACATCATATTAAAAGACAAAACACATTCACTATATCA
AAGTACAAGTGATCCAATTTATTAAAATATGAATTAAATAAGCTAATTTTATAAACATGTGCTAACATTTTCGATTTTAA
CATCATACGTTCGCTCTATCATAAATTTTTTATTATGAAATAATGATCTTGTTACAATTTACAAATGCTTGTGATGAGCC
AATCATCTATCTCAATTAAAGATTATTTTTTCCAAGTCTGTCATAAAATGTACGGGTAACAAAAAGTGATGTACTAAAAA
AGCAGATAAATCTATCACAAACCTAAACTTTATTTTCAAAACAAATAATAATTTATATAACGATCTTGAACCTCGTGAAT
ATGAGGTTGATTTAGTAGTCGAAGAATTTTGAGATTTCAAGTTCAAATCTTAGGTATTACTTTTTTTTTCCTGAACTCTC
TTAATGAAAATTTTGAATCTGTCACTGCTTTAGACAGAAACGATAATAATTATATAATCTTGCTTAATTAATGATGTTTT
TTTTTTGTTGTTGTAATAGGTATGGGAATTTCTTCAAATCCCACATACTTGGTTGCCCTACTGTTGTTTCAATGGATGCA
GGGTTGAATGTATATATTCTGAATAATGAAGCAAAGGGACTTATCCCAGGCTACCCACAGTCCATGTTAGACATTTTAGG
GAAATGCAATATTGCTGCTGTGCATGGTGCTACTCACAAGTACATTAGAGGAGCACTTTTATCTCTAATAAATCCCACAA
TGATCAAAGACCATATTTTGCCCAAAATTGATAAATTCATGAGATCACATTTGAGTGGTTGGGATAATTGCAATGTCATT
GATATTCAACAAATGACCAAAGAGGTGAGCTCACAAATCTAGTATATAATATAGTAGTATCTTCTTTTTTTTTAATCACT
AGTACTATGATTTAGTTTTCTATATACAATATATATACAATTAAGCTGCTTAAGATTCCAGCCTTAATATAATAGGGGGA
GAGTTTGGCTTGAACATAGGCTCAAACATAATTTGAAGGGTCCAAGCCGGAAATGATGAAATTGGGGAAAAACATGGAAG
ATATTGGCTGTAGAGAGAGTGCCTATCTCTCATAAGAGAAGGAGAGTCACTGTTTTTTTAGAGTATATTAACGAGTAGGA
CAATACTAGCTAGGGTGTGTTAGGTACTTAGGTTGGGAGTCTTTTTTTTTATTTTTATTTATTAAATATGAAGAAATATG
ATTTTATGGATAAAAATAATATGTGTATATATCTATTGATTTCTTGATTTTTATTTCTTAAGATTTCTTCGTGATTTAAT
GACCGTTAGGGGTTTATATTTTAAACTACGGTGATTTGGACTTGATTTTTATGAAATAATTTGTTTGTGAACGTTCTTGA
AGTACTTGATTATCAAGAAAAGTCTAGCATATTTTGATATCTTTACGAATATCAAGAATTCAATTACATGATGTTCAAAT
ATTTTGTTTACTTATTTCTTTTAGGAAAGATCAAAAGTTCTAGTGAAAATAGTGAAAACAAGTTTTATAACCGGGTTATA
TAAATACTTTTTGAGATTACTTATCAATTATTAGAAAACACTTGTAAAGTGCTAACAAATTGCTCTTAGATGGCATTTTT
CTCATCATTGGACCAAATTGGTGGGTTTGCAACAAGCTCATCAATAGCTCAAGAATTCAGGGCTGGATTCTTGAATATTG
CACTTGGAACTATTTCATTGCCTATCAACTTTCCCACCACAAACTATTATCGCGGATTACAGGTAAATAACGTACCATAG
ATTTAACTTATATACACTGATAATATAATTAATTACAGTATGAATGTGTTGATCCAGGGGCGGAAAACCATTGTCAAACT
ATTGAGGAAAATAATAGAAGATAGAAGAGGTAGCAAGAAAATTCAACAAGACATGCTTGGTTTGATGATGAATGAAGAAG
CAAAAAATAGATACACATTAAGTGATGAAGAGCTAATTGATCAAATTATAACAATAATGTATTCTGGATTTGAAACTGTC
TCCACTACTTCTATGATGGCTGTCAAGTATCTTCATGATCATCCAAAAGCACTTGAAGAAATTAGAGTAAGTATTTAATT
ATTAATAGACATTGCTTGATTTATTAAATCGTCTTATCAGAAGCAACCTCTCTTCCTTACCTCTGATCAGGTAAATGTAA
GGTCTGCGTACATTTTACTCTTTTCGACCTTACTATGTGGAACTATACTGAGTACGTTGTTGTAATATAACTTGTAATTT
TGTAGAAAGAACATTTTGCAATCAGAGAAAAGAAGAGTCTGGAGGATCCAATTGATTACAATGATTTTAAGGCTATGAGA
TTTACAAGGGCTGTATGTGTGACAATTTTTCATAAGATTGTTTGTGAAATTAATGCATGTTAGCAAATTGATTCTATTTT
AAATATTTTTTATTCTTCTTTTTTTTTGTGGTGCAGGTGATATATGAGACATTAAGGTTGGCAACAATTGTAAATGGTGT
TCTTAGGAAAACCACACAAGATATGGAATTAAATGGTAAGAAAAATTCTGTTGATACTATAGGTTAAAAAATTTATACTT
TAGTATGACAATCCTTATAATGATGGGGATCAGTGTTCTGGTAAATTACTATCACTAAATGACTTTTGTAATATATACCA
ACAAATTAGCGCAGATAAGAATGTTGAGATGGACGTATTGATTTACTAAGAGAGATAGGATCTAAAATAAAGATATTTAG
GACAAGCCGGAAGTAGAGTATCTCAAGTGGTGAACAAGATAAAAAGGTGAGATTGAGGCGGTGGACAAGATGAAAAGGAG
ATGCATACGAAAATGTCCTAGTGAGGAGGTTTGAGAGGTTGATTATCGTGGATTTTTTTGGAGAGATAAAGGTAGATCGA
AGAAATAGTAGAGAGAGGTGATTAGACAGGATCAGACATATCACACCTACAACTTATTGAGGACAGTTGCCCGGATTAGA
GTGTTAGAATGTTAGTAGGTAATCAAGCATCGTATAGTTTCCCTTTTCAGTAGTATTATTAGTTCTCCTACCATCGTATT
CTTCGTTTTTATTATTACATGTTATTTTCTCAATTATATTGGTGAATAATTTAACTTCTTACCCTTCATTTCATTGTTTT
GCAGGATACATGATTCCCAAAGGATGGAGGATATATGTGTACACAAGAGAGCTTAACTATGATCCATTGATTTATCCTGA
CCCGTATACCTTTAACCCATGGAGATGGCTGGTTAGCAATTATACTCTCTCTCTGTGTTTCATTTTACGTGACACCATTT
AACATCTAAATAAATATTGGACGTTACGATATGTAGGAAAATAACTTGGACCACCAAAGCTCTTTCTTGATGTTTGGAGG
AGGTACAAGGCTTTGTCCTGGAAAGGAACTAGGTGTGGCTGAAATTTCAACATTTCTTCATTACTTCGTTACAAGATACA
GGTAATATACAATATATATACATGTTTCACAACTATATTATATATATATATATAAAAGAATTGAATTTCTTATTTGAATT
ATAACATTATTATTAATGTTGTTGTGCACAGGTGGGAAGAGGTTGGAGGAAATAAGCTGATGAAATTTCCTAGAGTTGAA
GCACTAAATGGCCTATGGATTAAGGTTTCAGCTTACTAA
ATGGCCATTTTCTTGATAATTTTTGTTGTGTTTTTTGGATTTTGCATTTTGAGTACTCCTCTATTTAGATGGATTGACAT
TGTGTACAACAAGAAAAATTTGCCTCCTGGAACTATGGGTTGGCCAATTTTTGGTGAGACTAGGGAATTTCTAAATCAAG
GTCCAAATTTCATGAAAAATCAAAGAGCAAGGTATATATATATATATATATATATTCTCATTTCTTTTACTTCTTTTTAC
TATTTTGTCTTAAATCTATGAAGGGGGTTTATATGTCNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNAAATTTACTATGAAAAATACAAAGAGCAAGTATATATATATATATATATATATTCTCATTTCTTTTACTCTTTTTACA
TTTTGCTTAAATCTATGAAGGGGGTTTATATGTCAATTTTATTTTTTTTTGTAGATTTTAATATGTTTTTTAAAATCCCT
ATTACAAGATCTTATGAACTAGTATCAAGACTAGAATTTTTGTTAATGCTTTAGGTAAAAGAAAAATAAGAAGGGTGATA
ATTTGTAGCAATTTCATCACAAATTTTATTTTTATCCTGGATTTGTCATTAGGTTAAGTATGTTTATGAATAATGATGTG
CTGAATGCAAAATTAGACTTATTCAATTTGGTCAATTAAAGTCCAACAATATCTATATCTATATTATATCTATATATATA
TATATAAGAATATTATTTTCATGAAACTTCATAAATTTTAACAACATCATATTAAAAGACAAAACACATTCACTATATCA
AAGTACAAGTGATCCAATTTATTAAAATATGAATTAAATAAGCTAATTTTATAAACATGTGCTAACATTTTCGATTTTAA
CATCATACGTTCGCTCTATCATAAATTTTTTATTATGAAATAATGATCTTGTTACAATTTACAAATGCTTGTGATGAGCC
AATCATCTATCTCAATTAAAGATTATTTTTTCCAAGTCTGTCATAAAATGTACGGGTAACAAAAAGTGATGTACTAAAAA
AGCAGATAAATCTATCACAAACCTAAACTTTATTTTCAAAACAAATAATAATTTATATAACGATCTTGAACCTCGTGAAT
ATGAGGTTGATTTAGTAGTCGAAGAATTTTGAGATTTCAAGTTCAAATCTTAGGTATTACTTTTTTTTTCCTGAACTCTC
TTAATGAAAATTTTGAATCTGTCACTGCTTTAGACAGAAACGATAATAATTATATAATCTTGCTTAATTAATGATGTTTT
TTTTTTGTTGTTGTAATAGGTATGGGAATTTCTTCAAATCCCACATACTTGGTTGCCCTACTGTTGTTTCAATGGATGCA
GGGTTGAATGTATATATTCTGAATAATGAAGCAAAGGGACTTATCCCAGGCTACCCACAGTCCATGTTAGACATTTTAGG
GAAATGCAATATTGCTGCTGTGCATGGTGCTACTCACAAGTACATTAGAGGAGCACTTTTATCTCTAATAAATCCCACAA
TGATCAAAGACCATATTTTGCCCAAAATTGATAAATTCATGAGATCACATTTGAGTGGTTGGGATAATTGCAATGTCATT
GATATTCAACAAATGACCAAAGAGGTGAGCTCACAAATCTAGTATATAATATAGTAGTATCTTCTTTTTTTTTAATCACT
AGTACTATGATTTAGTTTTCTATATACAATATATATACAATTAAGCTGCTTAAGATTCCAGCCTTAATATAATAGGGGGA
GAGTTTGGCTTGAACATAGGCTCAAACATAATTTGAAGGGTCCAAGCCGGAAATGATGAAATTGGGGAAAAACATGGAAG
ATATTGGCTGTAGAGAGAGTGCCTATCTCTCATAAGAGAAGGAGAGTCACTGTTTTTTTAGAGTATATTAACGAGTAGGA
CAATACTAGCTAGGGTGTGTTAGGTACTTAGGTTGGGAGTCTTTTTTTTTATTTTTATTTATTAAATATGAAGAAATATG
ATTTTATGGATAAAAATAATATGTGTATATATCTATTGATTTCTTGATTTTTATTTCTTAAGATTTCTTCGTGATTTAAT
GACCGTTAGGGGTTTATATTTTAAACTACGGTGATTTGGACTTGATTTTTATGAAATAATTTGTTTGTGAACGTTCTTGA
AGTACTTGATTATCAAGAAAAGTCTAGCATATTTTGATATCTTTACGAATATCAAGAATTCAATTACATGATGTTCAAAT
ATTTTGTTTACTTATTTCTTTTAGGAAAGATCAAAAGTTCTAGTGAAAATAGTGAAAACAAGTTTTATAACCGGGTTATA
TAAATACTTTTTGAGATTACTTATCAATTATTAGAAAACACTTGTAAAGTGCTAACAAATTGCTCTTAGATGGCATTTTT
CTCATCATTGGACCAAATTGGTGGGTTTGCAACAAGCTCATCAATAGCTCAAGAATTCAGGGCTGGATTCTTGAATATTG
CACTTGGAACTATTTCATTGCCTATCAACTTTCCCACCACAAACTATTATCGCGGATTACAGGTAAATAACGTACCATAG
ATTTAACTTATATACACTGATAATATAATTAATTACAGTATGAATGTGTTGATCCAGGGGCGGAAAACCATTGTCAAACT
ATTGAGGAAAATAATAGAAGATAGAAGAGGTAGCAAGAAAATTCAACAAGACATGCTTGGTTTGATGATGAATGAAGAAG
CAAAAAATAGATACACATTAAGTGATGAAGAGCTAATTGATCAAATTATAACAATAATGTATTCTGGATTTGAAACTGTC
TCCACTACTTCTATGATGGCTGTCAAGTATCTTCATGATCATCCAAAAGCACTTGAAGAAATTAGAGTAAGTATTTAATT
ATTAATAGACATTGCTTGATTTATTAAATCGTCTTATCAGAAGCAACCTCTCTTCCTTACCTCTGATCAGGTAAATGTAA
GGTCTGCGTACATTTTACTCTTTTCGACCTTACTATGTGGAACTATACTGAGTACGTTGTTGTAATATAACTTGTAATTT
TGTAGAAAGAACATTTTGCAATCAGAGAAAAGAAGAGTCTGGAGGATCCAATTGATTACAATGATTTTAAGGCTATGAGA
TTTACAAGGGCTGTATGTGTGACAATTTTTCATAAGATTGTTTGTGAAATTAATGCATGTTAGCAAATTGATTCTATTTT
AAATATTTTTTATTCTTCTTTTTTTTTGTGGTGCAGGTGATATATGAGACATTAAGGTTGGCAACAATTGTAAATGGTGT
TCTTAGGAAAACCACACAAGATATGGAATTAAATGGTAAGAAAAATTCTGTTGATACTATAGGTTAAAAAATTTATACTT
TAGTATGACAATCCTTATAATGATGGGGATCAGTGTTCTGGTAAATTACTATCACTAAATGACTTTTGTAATATATACCA
ACAAATTAGCGCAGATAAGAATGTTGAGATGGACGTATTGATTTACTAAGAGAGATAGGATCTAAAATAAAGATATTTAG
GACAAGCCGGAAGTAGAGTATCTCAAGTGGTGAACAAGATAAAAAGGTGAGATTGAGGCGGTGGACAAGATGAAAAGGAG
ATGCATACGAAAATGTCCTAGTGAGGAGGTTTGAGAGGTTGATTATCGTGGATTTTTTTGGAGAGATAAAGGTAGATCGA
AGAAATAGTAGAGAGAGGTGATTAGACAGGATCAGACATATCACACCTACAACTTATTGAGGACAGTTGCCCGGATTAGA
GTGTTAGAATGTTAGTAGGTAATCAAGCATCGTATAGTTTCCCTTTTCAGTAGTATTATTAGTTCTCCTACCATCGTATT
CTTCGTTTTTATTATTACATGTTATTTTCTCAATTATATTGGTGAATAATTTAACTTCTTACCCTTCATTTCATTGTTTT
GCAGGATACATGATTCCCAAAGGATGGAGGATATATGTGTACACAAGAGAGCTTAACTATGATCCATTGATTTATCCTGA
CCCGTATACCTTTAACCCATGGAGATGGCTGGTTAGCAATTATACTCTCTCTCTGTGTTTCATTTTACGTGACACCATTT
AACATCTAAATAAATATTGGACGTTACGATATGTAGGAAAATAACTTGGACCACCAAAGCTCTTTCTTGATGTTTGGAGG
AGGTACAAGGCTTTGTCCTGGAAAGGAACTAGGTGTGGCTGAAATTTCAACATTTCTTCATTACTTCGTTACAAGATACA
GGTAATATACAATATATATACATGTTTCACAACTATATTATATATATATATATAAAAGAATTGAATTTCTTATTTGAATT
ATAACATTATTATTAATGTTGTTGTGCACAGGTGGGAAGAGGTTGGAGGAAATAAGCTGATGAAATTTCCTAGAGTTGAA
GCACTAAATGGCCTATGGATTAAGGTTTCAGCTTACTAA
Download sequence region |
Get flanking sequences on SL2.50ch02
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![]() ![]() |
![]() ![]() | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>Solyc02g065750.1.1 Cytochrome P450
ATGGCCATTTTCTTGATAATTTTTGTTGTGTTTTTTGGATTTTGCATTTTGAGTACTCCTCTATTTAGATGGATTGACAT
TGTGTACAACAAGAAAAATTTGCCTCCTGGAACTATGGGTTGGCCAATTTTTGGTGAGACTAGGGAATTTCTAAATCAAG
GTCCAAATTTCATGAAAAATCAAAGAGCAAGGTATGGGAATTTCTTCAAATCCCACATACTTGGTTGCCCTACTGTTGTT
TCAATGGATGCAGGGTTGAATGTATATATTCTGAATAATGAAGCAAAGGGACTTATCCCAGGCTACCCACAGTCCATGTT
AGACATTTTAGGGAAATGCAATATTGCTGCTGTGCATGGTGCTACTCACAAGTACATTAGAGGAGCACTTTTATCTCTAA
TAAATCCCACAATGATCAAAGACCATATTTTGCCCAAAATTGATAAATTCATGAGATCACATTTGAGTGGTTGGGATAAT
TGCAATGTCATTGATATTCAACAAATGACCAAAGAGATGGCATTTTTCTCATCATTGGACCAAATTGGTGGGTTTGCAAC
AAGCTCATCAATAGCTCAAGAATTCAGGGCTGGATTCTTGAATATTGCACTTGGAACTATTTCATTGCCTATCAACTTTC
CCACCACAAACTATTATCGCGGATTACAGGGGCGGAAAACCATTGTCAAACTATTGAGGAAAATAATAGAAGATAGAAGA
GGTAGCAAGAAAATTCAACAAGACATGCTTGGTTTGATGATGAATGAAGAAGCAAAAAATAGATACACATTAAGTGATGA
AGAGCTAATTGATCAAATTATAACAATAATGTATTCTGGATTTGAAACTGTCTCCACTACTTCTATGATGGCTGTCAAGT
ATCTTCATGATCATCCAAAAGCACTTGAAGAAATTAGAAAAGAACATTTTGCAATCAGAGAAAAGAAGAGTCTGGAGGAT
CCAATTGATTACAATGATTTTAAGGCTATGAGATTTACAAGGGCTGTGATATATGAGACATTAAGGTTGGCAACAATTGT
AAATGGTGTTCTTAGGAAAACCACACAAGATATGGAATTAAATGGATACATGATTCCCAAAGGATGGAGGATATATGTGT
ACACAAGAGAGCTTAACTATGATCCATTGATTTATCCTGACCCGTATACCTTTAACCCATGGAGATGGCTGGAAAATAAC
TTGGACCACCAAAGCTCTTTCTTGATGTTTGGAGGAGGTACAAGGCTTTGTCCTGGAAAGGAACTAGGTGTGGCTGAAAT
TTCAACATTTCTTCATTACTTCGTTACAAGATACAGGTGGGAAGAGGTTGGAGGAAATAAGCTGATGAAATTTCCTAGAG
TTGAAGCACTAAATGGCCTATGGATTAAGGTTTCAGCTTACTAA
ATGGCCATTTTCTTGATAATTTTTGTTGTGTTTTTTGGATTTTGCATTTTGAGTACTCCTCTATTTAGATGGATTGACAT
TGTGTACAACAAGAAAAATTTGCCTCCTGGAACTATGGGTTGGCCAATTTTTGGTGAGACTAGGGAATTTCTAAATCAAG
GTCCAAATTTCATGAAAAATCAAAGAGCAAGGTATGGGAATTTCTTCAAATCCCACATACTTGGTTGCCCTACTGTTGTT
TCAATGGATGCAGGGTTGAATGTATATATTCTGAATAATGAAGCAAAGGGACTTATCCCAGGCTACCCACAGTCCATGTT
AGACATTTTAGGGAAATGCAATATTGCTGCTGTGCATGGTGCTACTCACAAGTACATTAGAGGAGCACTTTTATCTCTAA
TAAATCCCACAATGATCAAAGACCATATTTTGCCCAAAATTGATAAATTCATGAGATCACATTTGAGTGGTTGGGATAAT
TGCAATGTCATTGATATTCAACAAATGACCAAAGAGATGGCATTTTTCTCATCATTGGACCAAATTGGTGGGTTTGCAAC
AAGCTCATCAATAGCTCAAGAATTCAGGGCTGGATTCTTGAATATTGCACTTGGAACTATTTCATTGCCTATCAACTTTC
CCACCACAAACTATTATCGCGGATTACAGGGGCGGAAAACCATTGTCAAACTATTGAGGAAAATAATAGAAGATAGAAGA
GGTAGCAAGAAAATTCAACAAGACATGCTTGGTTTGATGATGAATGAAGAAGCAAAAAATAGATACACATTAAGTGATGA
AGAGCTAATTGATCAAATTATAACAATAATGTATTCTGGATTTGAAACTGTCTCCACTACTTCTATGATGGCTGTCAAGT
ATCTTCATGATCATCCAAAAGCACTTGAAGAAATTAGAAAAGAACATTTTGCAATCAGAGAAAAGAAGAGTCTGGAGGAT
CCAATTGATTACAATGATTTTAAGGCTATGAGATTTACAAGGGCTGTGATATATGAGACATTAAGGTTGGCAACAATTGT
AAATGGTGTTCTTAGGAAAACCACACAAGATATGGAATTAAATGGATACATGATTCCCAAAGGATGGAGGATATATGTGT
ACACAAGAGAGCTTAACTATGATCCATTGATTTATCCTGACCCGTATACCTTTAACCCATGGAGATGGCTGGAAAATAAC
TTGGACCACCAAAGCTCTTTCTTGATGTTTGGAGGAGGTACAAGGCTTTGTCCTGGAAAGGAACTAGGTGTGGCTGAAAT
TTCAACATTTCTTCATTACTTCGTTACAAGATACAGGTGGGAAGAGGTTGGAGGAAATAAGCTGATGAAATTTCCTAGAG
TTGAAGCACTAAATGGCCTATGGATTAAGGTTTCAGCTTACTAA
![]() ![]() | translated polypeptide sequence |
>Solyc02g065750.1.1 Cytochrome P450
MAIFLIIFVVFFGFCILSTPLFRWIDIVYNKKNLPPGTMGWPIFGETREFLNQGPNFMKNQRARYGNFFKSHILGCPTVV
SMDAGLNVYILNNEAKGLIPGYPQSMLDILGKCNIAAVHGATHKYIRGALLSLINPTMIKDHILPKIDKFMRSHLSGWDN
CNVIDIQQMTKEMAFFSSLDQIGGFATSSSIAQEFRAGFLNIALGTISLPINFPTTNYYRGLQGRKTIVKLLRKIIEDRR
GSKKIQQDMLGLMMNEEAKNRYTLSDEELIDQIITIMYSGFETVSTTSMMAVKYLHDHPKALEEIRKEHFAIREKKSLED
PIDYNDFKAMRFTRAVIYETLRLATIVNGVLRKTTQDMELNGYMIPKGWRIYVYTRELNYDPLIYPDPYTFNPWRWLENN
LDHQSSFLMFGGGTRLCPGKELGVAEISTFLHYFVTRYRWEEVGGNKLMKFPRVEALNGLWIKVSAY*
MAIFLIIFVVFFGFCILSTPLFRWIDIVYNKKNLPPGTMGWPIFGETREFLNQGPNFMKNQRARYGNFFKSHILGCPTVV
SMDAGLNVYILNNEAKGLIPGYPQSMLDILGKCNIAAVHGATHKYIRGALLSLINPTMIKDHILPKIDKFMRSHLSGWDN
CNVIDIQQMTKEMAFFSSLDQIGGFATSSSIAQEFRAGFLNIALGTISLPINFPTTNYYRGLQGRKTIVKLLRKIIEDRR
GSKKIQQDMLGLMMNEEAKNRYTLSDEELIDQIITIMYSGFETVSTTSMMAVKYLHDHPKALEEIRKEHFAIREKKSLED
PIDYNDFKAMRFTRAVIYETLRLATIVNGVLRKTTQDMELNGYMIPKGWRIYVYTRELNYDPLIYPDPYTFNPWRWLENN
LDHQSSFLMFGGGTRLCPGKELGVAEISTFLHYFVTRYRWEEVGGNKLMKFPRVEALNGLWIKVSAY*
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![]() ![]() | [Associate new unigene] |
Unigene ID:
![]() ![]() | [Associate new genbank sequence] |
AB190445 Solanum lycopersicum mRNA for cytochrome P450 enzyme, complete cds.
Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
The last reaction producing brassinolide is catalyzed by cytochrome P-450s, CYP85A3 in tomato and CYP85A2 in Arabidopsis.
The Journal of biological chemistry (2005)
Show / hide abstract
Show / hide abstract
Brassinosteroids are steroidal hormones essential for the growth and development of plants. Brassinolide, the most biologically active brassinosteroid, has a seven-membered lactone ring that is formed by a Baeyer-Villiger oxidation of its immediate precursor castasterone. Despite its potential key role in controlling plant development, brassinolide synthase has not been identified. Previous work has shown that the formation of castasterone from 6-deoxocastasterone is catalyzed by members of the CYP85A family of cytochrome P-450 monooxygenases. A null mutation in the tomato Dwarf (CYP85A1) gene, extreme dwarf (d(x)), causes severe dwarfism due to brassinosteroid deficiency, but the d(x) mutant still produces fruits. Here, we show that d(x) fruits contain brassinolide at a higher level than wild-type fruits and that a new CYP85A gene, CYP85A3, is preferentially expressed in tomato fruits. Tomato CYP85A3 catalyzed the Baeyer-Villiger oxidation to produce brassinolide from castasterone in yeast, in addition to the conversion of 6-deoxocastasterone to castasterone. We also show that Arabidopsis CYP85A2, which was initially characterized as castasterone synthase, also has brassinolide synthase activity. Exogenous application of castasterone and brassinolide to the Arabidopsis cyp85a1/cyp85a2 double mutant suggests that castasterone can function as an active brassinosteroid but that its conversion into brassinolide is necessary for normal vegetative development in Arabidopsis. We postulate that castasterone is the major active brassinosteroid during vegetative growth in tomato, whereas brassinolide may play an organ-specific role in fruit development in this species.
Nomura, T. Kushiro, T. Yokota, T. Kamiya, Y. Bishop, GJ. Yamaguchi, S.
The Journal of biological chemistry.
2005.
280(18).
17873-9.
![]() ![]() | [Add ontology annotations] |
biological_process
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cellular_component
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molecular_function
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plant_anatomy
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- Genomic details
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