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Tomato locus hydroperoxide lyase
| Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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Links to external databases
Links to external databases
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| Registry name: | None | [Associate registry name] |
Notes and figures (0)
Notes and figures (0)
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| Image | Description | Type |
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Accessions and images (0)
Accessions and images (0)
| [Associate accession] |
Accession name:
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| Alleles (0) | None | [Add new Allele] |
Associated loci (0)
Associated loci (0)
| [Associate new locus] |
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| Associated loci - graphical view | None |
SolCyc links
SolCyc links
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Sequence annotations
Sequence annotations
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Genome features
Genome features
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Genomic sequence
Genomic sequence
| unprocessed genomic sequence region underlying this gene |
>Solyc07g049690.2 SL2.50ch07:60046220..60052939
TAATCATAAAATAGTTTTATCATTGTACCACAACTGATATTGATAATGATATTCAGCTTACCACCCAACGCCCTCAACCTTGACTAGCCCTCCCTCAAACTCTCCTTTTTCACCAATCTCACTCTCCAAATAGTATTTTCTAGGTTTCATAGTGATAAGCACATCCACACAAGAGCTATGAAATTTCTGAAACAAACGTTACAATAGACACACGGCGTATTTATTTCCCTCAAGCAATCGTATCCCCTTAGCAGATCGAAAAAAAAAAAGATACCGATAATGAATTCTGCTCCTCTATCAACTCCGGCGCCGGTTACTCTGCCCGTCCGTTCGATTCCGGGCAGCTACGGATTGCCGTTAGTAGGGCCAATCGCGGATCGATTAGACTACTTCTGGTTCCAAAAACCGGAAAACTTCTTCACCAAGAGAATGGAAAAGCACAAGAGCACGGTTTTCAGAACGAACGTGCCGCCGTGTTTTCCGTTTTTCGGTAGTGTGAATCCAAATGTGGTGGCGGTTTTAGATGTGAAATCGTTTTCGCATCTGTTTGATATGGAGATTGTAGAGAAAGCTAATGTGCTTGTTGGGGATTTCATGCCCAGTGTTGTTTATACTGGAGATATGCGTGTTTGTGCTTATCTCGATACTTCTGAACCTAAACATGCCCAGGTACACTTTTTCATCTCCCTGAATTATGCAAAAATCAACCATGAAAATTGTTTGAACACAGACTTGTTAGTTGAATTTCGGATTAGAAAAAACTTCCAAAAACATATTTTCACCGACAGAAATTCATAAATATCTCTGATTTGTATTCATGTGTAAACACAATTTCAATAGTATCTACTCGAATTCACACGATTTTTTTCGAGGCTTGCGCTCAAAGTCCGTTAAAATCTGTTTGGATTGACTTAAAAAGATAGATCAAATCTACTTTTAATTGAATTTTTAATTTTTAAAAGTAATTGATAAACATAAAAAAAATATTTAAAATAAATTACAAAGTAAAATAAAAATTAACTTAAAATAAATTAGAAATCAAAAATAAACTTTTTATATTTTGATTATAAAATTATTTTAATTTGATTTTTTTATTTTTAACTTAAAAACTATTTTTTTAAAGTTAAATCTAAACTGGTTAATTTGGGGAAAGGTGATTAATATGTTGAATATCAAAATTAAGGTTTTTTTTAAAGAAAAATTATAATTAAGTTTTTTAATTTCTGACATAAACAAAAATAAAGATTCTTATAAAGTGATGTGACAAATTAAAATTTGAATGATATTTTTTAACCGAAGTAAAATTCTGGCTCCGCATATTCCAAATGCATTCCACGATGCAAAATGTTGTTTTCCTTTTGGCTGTTGAGAGTCCTCGTACTATGATTCGATAATTTAATAGTAGTGGGGTAATGAGGAGATTGTTATAGCCTATAGGATTGCTGCACGTATTAAGTTTAAATCAATTAAGATATTTGGGATTAAAATTTTTCGCGGTCCTTCGAGATGACTTAGTTAGTTTAGAGGATATCATTTAGTTAGTTTAGAGGATAGTTGTTTATACGGATGACTCGAAATTGATTCTTCCTCAATAACTTCTGAGTCGAGCTTGTCGCATAGGGCTGCTTAGTGCAGTTTACACTCCCTGTGTGGTTTGCAGGCTATTACATAGTGGGAGTTTACCCAATGCACACAGAGTGCTCACCCAAAAAGGGCAGAGGCTATGGCAGAAGTTGTAGCGATTGCGAGTTATTTTGGGGTTAAAAAGAAAAGAAAAAAAATTCTGTGACATTTAAAAATTTATTATAATTTCGTCGACTATAGGCTAAATGTTTATACAATGAAAATAAATTTGTGTTATGAGGATTAATTCAAAATAGATAAATTTAAATTGAATCATTTTATTTTAGTTGATTTGGGAAATTCCTAACTTAATGAGGGTAATTTTCTTTATTATTGAATATGTTGATAATAATAGGTGTATATTTGATTTTCTAAAATTTTCACCATTTCGTAATTTAATCATAAAAATTAGAAAATATCTGACGGAGATTAAAAGGTCTTTGTAAGCTAGCTTCAGCCATTCCTTTACATTTTGTCCTCACAATGAAGAAAATAGTATGATTTGATCACTTGCAGATTAAAAATAGTAGAAGAAAATGACTACAAATGACAATTGATTTTGATACTCTAAGTCGATAACAAAGTTATCTCAAAATTATAGTCTTGAAATTTATTTATTTTACTTTTTAGATGAGATCAAATAACATTAAATTTGAGGTATAATTTTTTCTTAAATTTAGTTATCTCTTTAATTAAATAAAGCACTATAAATTTAATTTTAAATATAATAGTGAGATATCTTTATCTTATGAACCAAATATTTGAAAATATTAGCACAGGTGCCAACATTTTACTAGTAATGACATTGAATATCTCCTTTCAGTCTTCACATCGTTTAAATACTATACAAAATTATAGTATCAAATTAAATTAATATGATTTTTTTTTTTGGATTATGAATTCGCAATTTGAGTCTCTTAAATTGTATATTTTTCTTCATGATAACTTCACAAATTATGACTACTATCAAAAGTTTCAGTTTTTATACAATCCTACCAGATTTCTTAGTTAATATTATCAATTTATTATTTCCAATGTATTTACGTAAATTTCCCATAAGAAAAAAGTTCCAATCATTATAAAAGCAACTAATCTTTTGCATTGCATTATAATAACAGGAGGGGAAGATGTTTATGAATTGTTTTTTGGGAAAACTACTTGATAAGACCACATTCATATCATATATACTAATTCTATCTGTACTTTCTGATAACTATACATATTTTACTTAGCGGAATTAGATATTTTAATGAGGGTTTAAAATCTGAGAAGTAAACATACGAACTAGTGGGAGGGGGTTCGACATCTATTGTATATATCTAAAAAATAATTTTAATCATGTATAAATAGTAATACTTTTTCACCGACTACATCCGCCCCTGATCTTACTATCAATTAAGAATTTTCTATCATATATTGAGAAACATACACCTAGTTACATATATTTTTGCTATCAGAAATATAAAAATAGAGAAAGGTGAACAAGATTGTCATGCATCTCAGATAAATATGAATCACACCAAATACATGTATATCAATTTAGTGTGATTCAAATATATCTAGGATACCAAATAAATAGAAAAGTAACGAGCGAAATTTGTTATATATTTCATATACATGCGAATCCAATTGTAATCCTCGATGAGTCTGAATTGGATATGCCTTGTTTTGTAACTCTTTGGAGAAATCACTTACATCTTAATAATATTACTCACGTCTTATGAACACTATACACTCTTTTGCTTTAATTTATGTGACATTTTTTTCTTTCTTGAGAGTCAAATCTAAGTTTGATCAAGAATTTGCATATGAAAATTTTAATTCTTTTGAATGAAATTTATATATATTTGTAAACTACGTAAAAAATATTAAAATAAATTACAATATTTAAAAATTTATTAAAAAATTTAAATAAAAATAAATTTATTTAAATCTTTAAATTTAAATCACGTAAATTAAAGGAGTATCAAGGACCACGGGATCATGTGCATGTTGTCCTAAAGCTACTATTGGGCCAAGTCACAAATTTGTCTTACGTATTATCCTCGTATTATTATTGGGATATAGATGACAAGTGAGCTGACATTTCAGTGTAACAACCAGTCTAGGAGCGTCCACATTTTATACATGGCAAGTTAGCAACAATCAATGTGAAAATATCCACCTTAAATCACTTGTAGATTTTTTTTATTACTCCTTCTGATTTATAAAGAATCTTGACATGGAGTTTAAAAAGTATAAAAAGAGTTTTGAATCTTGTTATCCTAAATTAAAATTAAGTTAAATGTAAAAAATTGTTCTTTGATCTTCTCACCTTAAATATATCACGTAAAAAATTAAAATTAAAATATTACAATAAAAAAAAGAGATTAATTTTTCTATAACAGACTAAAAAAAGAAAGGAGACTATTTTTTTAAAACCAAAAAAATGTGTCTTTTCAAGAACATAAATATGACAGTTTTTAAATTTCTTTTGTTTGTTATTTGTGCATGATTTGACTCGTGTGGCTCTTATGCCTTGATAAAACCAATATTTGTCTAAGAATATCTTGTGTTTTGAGTTTTATTTCCTTCATTTAGTAATTGTTATTCTTTCCGTCTCTAATTACTTATTCATTTTAAATTGATTTGTTCCTATAAATCATAAAGTGAACTAATTAAAATTTTAAGATTTTTAAAAAATTCTGTCTTTTTCAATATAATAAATTGAGGGTTTAATAAGTAAATTCTTTTTTATTCTTTTTTTATTTGTCAAAATGAACAAGTAATTAGGAACAACTAAGAAAAAGAAAATGGACAAATAATTAGGGACAGAAGGACTATTATTCACTCTCTCCATTTCATTTTGATTGTTTGGTGAGTAACTTGTCCTTTTCGTGTTTTCCAATTGCATAAGATGCTTTAATCTATTGCATACGTTCAATCAACCGTTGTCTTGTATTAACTTGACATGAATTTAAGAAAGTAGAGAAGAGTTTTGAATATTGTGATCTTAAATTAAAGACATGTAGAATATACCAAAATGTTATTTAATTATGTGGCTTTCAACATGTTGTGTGTATACTTTGCCAAACATTTCCAAAAGCTATTAATAAGTTTGACCAACTTTAAAATCAATCCAAACAGACTCATTAAACAAAAAATATAAGCATTATGTATTGGTAGTTAAAACAATTTTGATACTCCTTTGTTTTGAATTTTATATAGGTCATGTAACCAGCATGAGTTGTAATACAGTTATGATGAGATTGCTTTACTCTTGATTAGAGGTTTTGAGGTTTCGAATTTTTAACTTTGAATATTGAAAAAATCCTGTTAGAAGCGCCACTCCAAATGGTCTACTTGTCATGTGTAATTCAAGCAGTAAAATCCACAGAATCAACCTAGATATGATGCATCAACATAGCTTATGTACATCTTCTTAGAATACGACTCTTTCCAGAACCCTGCATGATCACAAGTTTATTCATGCACTTAACTACCTTCTTGACTAGCAACTTGATTGCTTTCTTTTGTTTTAGAGAAAATGGAATAAGAAATTCTTATACATTGTGTATTGTTGATTTTGCAGATTAAGAATTTTTCACAGGATATTCTAAAAAGAGGCTCAAAAACATGGGTGCCTACACTACTTAAAGAGCTTGATACAATGTTTACAACTTTTGAAGCAGATCTTTCAAAATCCAATACAGCTTCTCTTCTTCCTGCACTCCAAAAATTCCTCTTTAACTTCTTCTCCCTCACTATCCTCGGCGCTGATCCATCTGTCTCCCCAGAAATCGCCAATTCTGGCTACATCTTTCTTGATTCATGGCTAGCTATTCAATTAGCACCTACTGTCAGCATTGGTGTCCTTCAACCTCTTGAAGAAATTTTAGTCCATTCTTTTGCATACCCTTTTTTTCTTGTCAAAGGTAATTATGAAAAACTCGTTCAATTCGTCAAAAATGAAGCCAAGGAAGTTTTAAGCAGGGCACAAACAGAGTTTCAACTCACAGAACAAGAAGCCATTCATAACCTTTTGTTCATTCTTGGGTTCAATGCTTTTGGTGGCTTCTCCATTTTCTTGCCAACTCTTTTGGGAAATCTTGGAGATGAGAAAAACGCGGATATGCAAGAGAAACTGAGAAAAGAAGTGAGAGACAAAGTCGGCGTAAATCCAGAAAACTTGAGTTTTGAAAGTGTTAAAGAAATGGAACTTGTTCAGTCTTTTGTTTATGAAACACTTAGGCTTAGTCCACCAGTACCAAGTCAATATGCAAGAGCAAGAAAAGATTTTAAACTGAGTTCACATGATTCAGTTTACGAAATCAAGAAAGGGGAGCTTCTTTGTGGTTATCAGCCTTTAGTTATGAAAGATCCAAAGGTGTTTGATGAACCTGAAAAGTTTGTGTTGGAGAGATTTACAAAGGAAAAAGGGAAAGAATTGCTGAATTATTTGTTTTGGTCTAATGGTCCACAAACTGGGAGACCTACTGAATCAAACAAGCAATGTGCTGCTAAAGATATGGTTACTCTAACTGCTTCTTTGATTGTGGCTTACATTTTCCAAAAGTACGATTCTGTGAGTTTCTCATCTGGTTCACTCACATCTGTGAAAAAGGCTAGTTGAGTTCTGGGCTGTGTAGCTGCAAAATCTAAGCTTGCTAGACATGTTGATCTTAAGTCTCGGTGGCTGGCTTTTCCTTCCTCCCCCTATTGTGTAATATAATTTCACAAATAAAAGTTCAACATGAGTGTACTTATTTTCTGTTCTGACTTATGACTATTGTCTATCCTCTTACAAATTAAGTTGGAACATGAATCTAAGTTATAATTACAGAAATTTTAATTCATCACCAAGGCTCCAACAACCATTATATCTATCTATCTATATATTAATACATATATTTGCCCTTTAACTTGGACTCAACGGAAATTTATGCACTCCAATTGTGAGTGTGCACAAGTAGGCACTTAAACTATCCAAAAATTGAACAAGTACATTACATGGCATCCTATGTGTATTAAGTCTTACAGGACGTGTGTCTGTACTCGTTCAACTTTATACAAGTTTAAATGTCTACTTGTGCACAACTAAAGTTGTAGGGCATAGAT
TAATCATAAAATAGTTTTATCATTGTACCACAACTGATATTGATAATGATATTCAGCTTACCACCCAACGCCCTCAACCTTGACTAGCCCTCCCTCAAACTCTCCTTTTTCACCAATCTCACTCTCCAAATAGTATTTTCTAGGTTTCATAGTGATAAGCACATCCACACAAGAGCTATGAAATTTCTGAAACAAACGTTACAATAGACACACGGCGTATTTATTTCCCTCAAGCAATCGTATCCCCTTAGCAGATCGAAAAAAAAAAAGATACCGATAATGAATTCTGCTCCTCTATCAACTCCGGCGCCGGTTACTCTGCCCGTCCGTTCGATTCCGGGCAGCTACGGATTGCCGTTAGTAGGGCCAATCGCGGATCGATTAGACTACTTCTGGTTCCAAAAACCGGAAAACTTCTTCACCAAGAGAATGGAAAAGCACAAGAGCACGGTTTTCAGAACGAACGTGCCGCCGTGTTTTCCGTTTTTCGGTAGTGTGAATCCAAATGTGGTGGCGGTTTTAGATGTGAAATCGTTTTCGCATCTGTTTGATATGGAGATTGTAGAGAAAGCTAATGTGCTTGTTGGGGATTTCATGCCCAGTGTTGTTTATACTGGAGATATGCGTGTTTGTGCTTATCTCGATACTTCTGAACCTAAACATGCCCAGGTACACTTTTTCATCTCCCTGAATTATGCAAAAATCAACCATGAAAATTGTTTGAACACAGACTTGTTAGTTGAATTTCGGATTAGAAAAAACTTCCAAAAACATATTTTCACCGACAGAAATTCATAAATATCTCTGATTTGTATTCATGTGTAAACACAATTTCAATAGTATCTACTCGAATTCACACGATTTTTTTCGAGGCTTGCGCTCAAAGTCCGTTAAAATCTGTTTGGATTGACTTAAAAAGATAGATCAAATCTACTTTTAATTGAATTTTTAATTTTTAAAAGTAATTGATAAACATAAAAAAAATATTTAAAATAAATTACAAAGTAAAATAAAAATTAACTTAAAATAAATTAGAAATCAAAAATAAACTTTTTATATTTTGATTATAAAATTATTTTAATTTGATTTTTTTATTTTTAACTTAAAAACTATTTTTTTAAAGTTAAATCTAAACTGGTTAATTTGGGGAAAGGTGATTAATATGTTGAATATCAAAATTAAGGTTTTTTTTAAAGAAAAATTATAATTAAGTTTTTTAATTTCTGACATAAACAAAAATAAAGATTCTTATAAAGTGATGTGACAAATTAAAATTTGAATGATATTTTTTAACCGAAGTAAAATTCTGGCTCCGCATATTCCAAATGCATTCCACGATGCAAAATGTTGTTTTCCTTTTGGCTGTTGAGAGTCCTCGTACTATGATTCGATAATTTAATAGTAGTGGGGTAATGAGGAGATTGTTATAGCCTATAGGATTGCTGCACGTATTAAGTTTAAATCAATTAAGATATTTGGGATTAAAATTTTTCGCGGTCCTTCGAGATGACTTAGTTAGTTTAGAGGATATCATTTAGTTAGTTTAGAGGATAGTTGTTTATACGGATGACTCGAAATTGATTCTTCCTCAATAACTTCTGAGTCGAGCTTGTCGCATAGGGCTGCTTAGTGCAGTTTACACTCCCTGTGTGGTTTGCAGGCTATTACATAGTGGGAGTTTACCCAATGCACACAGAGTGCTCACCCAAAAAGGGCAGAGGCTATGGCAGAAGTTGTAGCGATTGCGAGTTATTTTGGGGTTAAAAAGAAAAGAAAAAAAATTCTGTGACATTTAAAAATTTATTATAATTTCGTCGACTATAGGCTAAATGTTTATACAATGAAAATAAATTTGTGTTATGAGGATTAATTCAAAATAGATAAATTTAAATTGAATCATTTTATTTTAGTTGATTTGGGAAATTCCTAACTTAATGAGGGTAATTTTCTTTATTATTGAATATGTTGATAATAATAGGTGTATATTTGATTTTCTAAAATTTTCACCATTTCGTAATTTAATCATAAAAATTAGAAAATATCTGACGGAGATTAAAAGGTCTTTGTAAGCTAGCTTCAGCCATTCCTTTACATTTTGTCCTCACAATGAAGAAAATAGTATGATTTGATCACTTGCAGATTAAAAATAGTAGAAGAAAATGACTACAAATGACAATTGATTTTGATACTCTAAGTCGATAACAAAGTTATCTCAAAATTATAGTCTTGAAATTTATTTATTTTACTTTTTAGATGAGATCAAATAACATTAAATTTGAGGTATAATTTTTTCTTAAATTTAGTTATCTCTTTAATTAAATAAAGCACTATAAATTTAATTTTAAATATAATAGTGAGATATCTTTATCTTATGAACCAAATATTTGAAAATATTAGCACAGGTGCCAACATTTTACTAGTAATGACATTGAATATCTCCTTTCAGTCTTCACATCGTTTAAATACTATACAAAATTATAGTATCAAATTAAATTAATATGATTTTTTTTTTTGGATTATGAATTCGCAATTTGAGTCTCTTAAATTGTATATTTTTCTTCATGATAACTTCACAAATTATGACTACTATCAAAAGTTTCAGTTTTTATACAATCCTACCAGATTTCTTAGTTAATATTATCAATTTATTATTTCCAATGTATTTACGTAAATTTCCCATAAGAAAAAAGTTCCAATCATTATAAAAGCAACTAATCTTTTGCATTGCATTATAATAACAGGAGGGGAAGATGTTTATGAATTGTTTTTTGGGAAAACTACTTGATAAGACCACATTCATATCATATATACTAATTCTATCTGTACTTTCTGATAACTATACATATTTTACTTAGCGGAATTAGATATTTTAATGAGGGTTTAAAATCTGAGAAGTAAACATACGAACTAGTGGGAGGGGGTTCGACATCTATTGTATATATCTAAAAAATAATTTTAATCATGTATAAATAGTAATACTTTTTCACCGACTACATCCGCCCCTGATCTTACTATCAATTAAGAATTTTCTATCATATATTGAGAAACATACACCTAGTTACATATATTTTTGCTATCAGAAATATAAAAATAGAGAAAGGTGAACAAGATTGTCATGCATCTCAGATAAATATGAATCACACCAAATACATGTATATCAATTTAGTGTGATTCAAATATATCTAGGATACCAAATAAATAGAAAAGTAACGAGCGAAATTTGTTATATATTTCATATACATGCGAATCCAATTGTAATCCTCGATGAGTCTGAATTGGATATGCCTTGTTTTGTAACTCTTTGGAGAAATCACTTACATCTTAATAATATTACTCACGTCTTATGAACACTATACACTCTTTTGCTTTAATTTATGTGACATTTTTTTCTTTCTTGAGAGTCAAATCTAAGTTTGATCAAGAATTTGCATATGAAAATTTTAATTCTTTTGAATGAAATTTATATATATTTGTAAACTACGTAAAAAATATTAAAATAAATTACAATATTTAAAAATTTATTAAAAAATTTAAATAAAAATAAATTTATTTAAATCTTTAAATTTAAATCACGTAAATTAAAGGAGTATCAAGGACCACGGGATCATGTGCATGTTGTCCTAAAGCTACTATTGGGCCAAGTCACAAATTTGTCTTACGTATTATCCTCGTATTATTATTGGGATATAGATGACAAGTGAGCTGACATTTCAGTGTAACAACCAGTCTAGGAGCGTCCACATTTTATACATGGCAAGTTAGCAACAATCAATGTGAAAATATCCACCTTAAATCACTTGTAGATTTTTTTTATTACTCCTTCTGATTTATAAAGAATCTTGACATGGAGTTTAAAAAGTATAAAAAGAGTTTTGAATCTTGTTATCCTAAATTAAAATTAAGTTAAATGTAAAAAATTGTTCTTTGATCTTCTCACCTTAAATATATCACGTAAAAAATTAAAATTAAAATATTACAATAAAAAAAAGAGATTAATTTTTCTATAACAGACTAAAAAAAGAAAGGAGACTATTTTTTTAAAACCAAAAAAATGTGTCTTTTCAAGAACATAAATATGACAGTTTTTAAATTTCTTTTGTTTGTTATTTGTGCATGATTTGACTCGTGTGGCTCTTATGCCTTGATAAAACCAATATTTGTCTAAGAATATCTTGTGTTTTGAGTTTTATTTCCTTCATTTAGTAATTGTTATTCTTTCCGTCTCTAATTACTTATTCATTTTAAATTGATTTGTTCCTATAAATCATAAAGTGAACTAATTAAAATTTTAAGATTTTTAAAAAATTCTGTCTTTTTCAATATAATAAATTGAGGGTTTAATAAGTAAATTCTTTTTTATTCTTTTTTTATTTGTCAAAATGAACAAGTAATTAGGAACAACTAAGAAAAAGAAAATGGACAAATAATTAGGGACAGAAGGACTATTATTCACTCTCTCCATTTCATTTTGATTGTTTGGTGAGTAACTTGTCCTTTTCGTGTTTTCCAATTGCATAAGATGCTTTAATCTATTGCATACGTTCAATCAACCGTTGTCTTGTATTAACTTGACATGAATTTAAGAAAGTAGAGAAGAGTTTTGAATATTGTGATCTTAAATTAAAGACATGTAGAATATACCAAAATGTTATTTAATTATGTGGCTTTCAACATGTTGTGTGTATACTTTGCCAAACATTTCCAAAAGCTATTAATAAGTTTGACCAACTTTAAAATCAATCCAAACAGACTCATTAAACAAAAAATATAAGCATTATGTATTGGTAGTTAAAACAATTTTGATACTCCTTTGTTTTGAATTTTATATAGGTCATGTAACCAGCATGAGTTGTAATACAGTTATGATGAGATTGCTTTACTCTTGATTAGAGGTTTTGAGGTTTCGAATTTTTAACTTTGAATATTGAAAAAATCCTGTTAGAAGCGCCACTCCAAATGGTCTACTTGTCATGTGTAATTCAAGCAGTAAAATCCACAGAATCAACCTAGATATGATGCATCAACATAGCTTATGTACATCTTCTTAGAATACGACTCTTTCCAGAACCCTGCATGATCACAAGTTTATTCATGCACTTAACTACCTTCTTGACTAGCAACTTGATTGCTTTCTTTTGTTTTAGAGAAAATGGAATAAGAAATTCTTATACATTGTGTATTGTTGATTTTGCAGATTAAGAATTTTTCACAGGATATTCTAAAAAGAGGCTCAAAAACATGGGTGCCTACACTACTTAAAGAGCTTGATACAATGTTTACAACTTTTGAAGCAGATCTTTCAAAATCCAATACAGCTTCTCTTCTTCCTGCACTCCAAAAATTCCTCTTTAACTTCTTCTCCCTCACTATCCTCGGCGCTGATCCATCTGTCTCCCCAGAAATCGCCAATTCTGGCTACATCTTTCTTGATTCATGGCTAGCTATTCAATTAGCACCTACTGTCAGCATTGGTGTCCTTCAACCTCTTGAAGAAATTTTAGTCCATTCTTTTGCATACCCTTTTTTTCTTGTCAAAGGTAATTATGAAAAACTCGTTCAATTCGTCAAAAATGAAGCCAAGGAAGTTTTAAGCAGGGCACAAACAGAGTTTCAACTCACAGAACAAGAAGCCATTCATAACCTTTTGTTCATTCTTGGGTTCAATGCTTTTGGTGGCTTCTCCATTTTCTTGCCAACTCTTTTGGGAAATCTTGGAGATGAGAAAAACGCGGATATGCAAGAGAAACTGAGAAAAGAAGTGAGAGACAAAGTCGGCGTAAATCCAGAAAACTTGAGTTTTGAAAGTGTTAAAGAAATGGAACTTGTTCAGTCTTTTGTTTATGAAACACTTAGGCTTAGTCCACCAGTACCAAGTCAATATGCAAGAGCAAGAAAAGATTTTAAACTGAGTTCACATGATTCAGTTTACGAAATCAAGAAAGGGGAGCTTCTTTGTGGTTATCAGCCTTTAGTTATGAAAGATCCAAAGGTGTTTGATGAACCTGAAAAGTTTGTGTTGGAGAGATTTACAAAGGAAAAAGGGAAAGAATTGCTGAATTATTTGTTTTGGTCTAATGGTCCACAAACTGGGAGACCTACTGAATCAAACAAGCAATGTGCTGCTAAAGATATGGTTACTCTAACTGCTTCTTTGATTGTGGCTTACATTTTCCAAAAGTACGATTCTGTGAGTTTCTCATCTGGTTCACTCACATCTGTGAAAAAGGCTAGTTGAGTTCTGGGCTGTGTAGCTGCAAAATCTAAGCTTGCTAGACATGTTGATCTTAAGTCTCGGTGGCTGGCTTTTCCTTCCTCCCCCTATTGTGTAATATAATTTCACAAATAAAAGTTCAACATGAGTGTACTTATTTTCTGTTCTGACTTATGACTATTGTCTATCCTCTTACAAATTAAGTTGGAACATGAATCTAAGTTATAATTACAGAAATTTTAATTCATCACCAAGGCTCCAACAACCATTATATCTATCTATCTATATATTAATACATATATTTGCCCTTTAACTTGGACTCAACGGAAATTTATGCACTCCAATTGTGAGTGTGCACAAGTAGGCACTTAAACTATCCAAAAATTGAACAAGTACATTACATGGCATCCTATGTGTATTAAGTCTTACAGGACGTGTGTCTGTACTCGTTCAACTTTATACAAGTTTAAATGTCTACTTGTGCACAACTAAAGTTGTAGGGCATAGAT
| Download sequence region |
Get flanking sequences on SL2.50ch07
|
mRNA Solyc07g049690.2.1
mRNA Solyc07g049690.2.1
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Ontology terms
Ontology terms
| terms associated with this mRNA |
cDNA sequence
cDNA sequence
| spliced cDNA sequence, including UTRs |
>Solyc07g049690.2.1 Cytochrome P450
TAATCATAAAATAGTTTTATCATTGTACCACAACTGATATTGATAATGATATTCAGCTTACCACCCAACGCCCTCAACCTTGACTAGCCCTCCCTCAAACTCTCCTTTTTCACCAATCTCACTCTCCAAATAGTATTTTCTAGGTTTCATAGTGATAAGCACATCCACACAAGAGCTATGAAATTTCTGAAACAAACGTTACAATAGACACACGGCGTATTTATTTCCCTCAAGCAATCGTATCCCCTTAGCAGATCGAAAAAAAAAAAGATACCGATAATGAATTCTGCTCCTCTATCAACTCCGGCGCCGGTTACTCTGCCCGTCCGTTCGATTCCGGGCAGCTACGGATTGCCGTTAGTAGGGCCAATCGCGGATCGATTAGACTACTTCTGGTTCCAAAAACCGGAAAACTTCTTCACCAAGAGAATGGAAAAGCACAAGAGCACGGTTTTCAGAACGAACGTGCCGCCGTGTTTTCCGTTTTTCGGTAGTGTGAATCCAAATGTGGTGGCGGTTTTAGATGTGAAATCGTTTTCGCATCTGTTTGATATGGAGATTGTAGAGAAAGCTAATGTGCTTGTTGGGGATTTCATGCCCAGTGTTGTTTATACTGGAGATATGCGTGTTTGTGCTTATCTCGATACTTCTGAACCTAAACATGCCCAGATTAAGAATTTTTCACAGGATATTCTAAAAAGAGGCTCAAAAACATGGGTGCCTACACTACTTAAAGAGCTTGATACAATGTTTACAACTTTTGAAGCAGATCTTTCAAAATCCAATACAGCTTCTCTTCTTCCTGCACTCCAAAAATTCCTCTTTAACTTCTTCTCCCTCACTATCCTCGGCGCTGATCCATCTGTCTCCCCAGAAATCGCCAATTCTGGCTACATCTTTCTTGATTCATGGCTAGCTATTCAATTAGCACCTACTGTCAGCATTGGTGTCCTTCAACCTCTTGAAGAAATTTTAGTCCATTCTTTTGCATACCCTTTTTTTCTTGTCAAAGGTAATTATGAAAAACTCGTTCAATTCGTCAAAAATGAAGCCAAGGAAGTTTTAAGCAGGGCACAAACAGAGTTTCAACTCACAGAACAAGAAGCCATTCATAACCTTTTGTTCATTCTTGGGTTCAATGCTTTTGGTGGCTTCTCCATTTTCTTGCCAACTCTTTTGGGAAATCTTGGAGATGAGAAAAACGCGGATATGCAAGAGAAACTGAGAAAAGAAGTGAGAGACAAAGTCGGCGTAAATCCAGAAAACTTGAGTTTTGAAAGTGTTAAAGAAATGGAACTTGTTCAGTCTTTTGTTTATGAAACACTTAGGCTTAGTCCACCAGTACCAAGTCAATATGCAAGAGCAAGAAAAGATTTTAAACTGAGTTCACATGATTCAGTTTACGAAATCAAGAAAGGGGAGCTTCTTTGTGGTTATCAGCCTTTAGTTATGAAAGATCCAAAGGTGTTTGATGAACCTGAAAAGTTTGTGTTGGAGAGATTTACAAAGGAAAAAGGGAAAGAATTGCTGAATTATTTGTTTTGGTCTAATGGTCCACAAACTGGGAGACCTACTGAATCAAACAAGCAATGTGCTGCTAAAGATATGGTTACTCTAACTGCTTCTTTGATTGTGGCTTACATTTTCCAAAAGTACGATTCTGTGAGTTTCTCATCTGGTTCACTCACATCTGTGAAAAAGGCTAGTTGAGTTCTGGGCTGTGTAGCTGCAAAATCTAAGCTTGCTAGACATGTTGATCTTAAGTCTCGGTGGCTGGCTTTTCCTTCCTCCCCCTATTGTGTAATATAATTTCACAAATAAAAGTTCAACATGAGTGTACTTATTTTCTGTTCTGACTTATGACTATTGTCTATCCTCTTACAAATTAAGTTGGAACATGAATCTAAGTTATAATTACAGAAATTTTAATTCATCACCAAGGGCATAGAT
TAATCATAAAATAGTTTTATCATTGTACCACAACTGATATTGATAATGATATTCAGCTTACCACCCAACGCCCTCAACCTTGACTAGCCCTCCCTCAAACTCTCCTTTTTCACCAATCTCACTCTCCAAATAGTATTTTCTAGGTTTCATAGTGATAAGCACATCCACACAAGAGCTATGAAATTTCTGAAACAAACGTTACAATAGACACACGGCGTATTTATTTCCCTCAAGCAATCGTATCCCCTTAGCAGATCGAAAAAAAAAAAGATACCGATAATGAATTCTGCTCCTCTATCAACTCCGGCGCCGGTTACTCTGCCCGTCCGTTCGATTCCGGGCAGCTACGGATTGCCGTTAGTAGGGCCAATCGCGGATCGATTAGACTACTTCTGGTTCCAAAAACCGGAAAACTTCTTCACCAAGAGAATGGAAAAGCACAAGAGCACGGTTTTCAGAACGAACGTGCCGCCGTGTTTTCCGTTTTTCGGTAGTGTGAATCCAAATGTGGTGGCGGTTTTAGATGTGAAATCGTTTTCGCATCTGTTTGATATGGAGATTGTAGAGAAAGCTAATGTGCTTGTTGGGGATTTCATGCCCAGTGTTGTTTATACTGGAGATATGCGTGTTTGTGCTTATCTCGATACTTCTGAACCTAAACATGCCCAGATTAAGAATTTTTCACAGGATATTCTAAAAAGAGGCTCAAAAACATGGGTGCCTACACTACTTAAAGAGCTTGATACAATGTTTACAACTTTTGAAGCAGATCTTTCAAAATCCAATACAGCTTCTCTTCTTCCTGCACTCCAAAAATTCCTCTTTAACTTCTTCTCCCTCACTATCCTCGGCGCTGATCCATCTGTCTCCCCAGAAATCGCCAATTCTGGCTACATCTTTCTTGATTCATGGCTAGCTATTCAATTAGCACCTACTGTCAGCATTGGTGTCCTTCAACCTCTTGAAGAAATTTTAGTCCATTCTTTTGCATACCCTTTTTTTCTTGTCAAAGGTAATTATGAAAAACTCGTTCAATTCGTCAAAAATGAAGCCAAGGAAGTTTTAAGCAGGGCACAAACAGAGTTTCAACTCACAGAACAAGAAGCCATTCATAACCTTTTGTTCATTCTTGGGTTCAATGCTTTTGGTGGCTTCTCCATTTTCTTGCCAACTCTTTTGGGAAATCTTGGAGATGAGAAAAACGCGGATATGCAAGAGAAACTGAGAAAAGAAGTGAGAGACAAAGTCGGCGTAAATCCAGAAAACTTGAGTTTTGAAAGTGTTAAAGAAATGGAACTTGTTCAGTCTTTTGTTTATGAAACACTTAGGCTTAGTCCACCAGTACCAAGTCAATATGCAAGAGCAAGAAAAGATTTTAAACTGAGTTCACATGATTCAGTTTACGAAATCAAGAAAGGGGAGCTTCTTTGTGGTTATCAGCCTTTAGTTATGAAAGATCCAAAGGTGTTTGATGAACCTGAAAAGTTTGTGTTGGAGAGATTTACAAAGGAAAAAGGGAAAGAATTGCTGAATTATTTGTTTTGGTCTAATGGTCCACAAACTGGGAGACCTACTGAATCAAACAAGCAATGTGCTGCTAAAGATATGGTTACTCTAACTGCTTCTTTGATTGTGGCTTACATTTTCCAAAAGTACGATTCTGTGAGTTTCTCATCTGGTTCACTCACATCTGTGAAAAAGGCTAGTTGAGTTCTGGGCTGTGTAGCTGCAAAATCTAAGCTTGCTAGACATGTTGATCTTAAGTCTCGGTGGCTGGCTTTTCCTTCCTCCCCCTATTGTGTAATATAATTTCACAAATAAAAGTTCAACATGAGTGTACTTATTTTCTGTTCTGACTTATGACTATTGTCTATCCTCTTACAAATTAAGTTGGAACATGAATCTAAGTTATAATTACAGAAATTTTAATTCATCACCAAGGGCATAGAT
Protein sequence
Protein sequence
| translated polypeptide sequence |
>Solyc07g049690.2.1 Cytochrome P450
MNSAPLSTPAPVTLPVRSIPGSYGLPLVGPIADRLDYFWFQKPENFFTKRMEKHKSTVFRTNVPPCFPFFGSVNPNVVAVLDVKSFSHLFDMEIVEKANVLVGDFMPSVVYTGDMRVCAYLDTSEPKHAQIKNFSQDILKRGSKTWVPTLLKELDTMFTTFEADLSKSNTASLLPALQKFLFNFFSLTILGADPSVSPEIANSGYIFLDSWLAIQLAPTVSIGVLQPLEEILVHSFAYPFFLVKGNYEKLVQFVKNEAKEVLSRAQTEFQLTEQEAIHNLLFILGFNAFGGFSIFLPTLLGNLGDEKNADMQEKLRKEVRDKVGVNPENLSFESVKEMELVQSFVYETLRLSPPVPSQYARARKDFKLSSHDSVYEIKKGELLCGYQPLVMKDPKVFDEPEKFVLERFTKEKGKELLNYLFWSNGPQTGRPTESNKQCAAKDMVTLTASLIVAYIFQKYDSVSFSSGSLTSVKKAS*
MNSAPLSTPAPVTLPVRSIPGSYGLPLVGPIADRLDYFWFQKPENFFTKRMEKHKSTVFRTNVPPCFPFFGSVNPNVVAVLDVKSFSHLFDMEIVEKANVLVGDFMPSVVYTGDMRVCAYLDTSEPKHAQIKNFSQDILKRGSKTWVPTLLKELDTMFTTFEADLSKSNTASLLPALQKFLFNFFSLTILGADPSVSPEIANSGYIFLDSWLAIQLAPTVSIGVLQPLEEILVHSFAYPFFLVKGNYEKLVQFVKNEAKEVLSRAQTEFQLTEQEAIHNLLFILGFNAFGGFSIFLPTLLGNLGDEKNADMQEKLRKEVRDKVGVNPENLSFESVKEMELVQSFVYETLRLSPPVPSQYARARKDFKLSSHDSVYEIKKGELLCGYQPLVMKDPKVFDEPEKFVLERFTKEKGKELLNYLFWSNGPQTGRPTESNKQCAAKDMVTLTASLIVAYIFQKYDSVSFSSGSLTSVKKAS*
Gene model matches
Gene model matches
|
SGN Unigenes
SGN Unigenes
| [Associate new unigene] |
Unigene ID:
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GenBank accessions
GenBank accessions
| [Associate new genbank sequence] |
| Other genome matches | None |
Literature annotations [1]
Literature annotations [1]
| [Associate publication] [Matching publications] |
Cytochrome P450-dependent metabolism of oxylipins in tomato. Cloning and expression of allene oxide synthase and fatty acid hydroperoxide lyase.
Plant physiology (2000)
Show / hide abstract
Show / hide abstract
Allene oxide synthase (AOS) and fatty acid hydroperoxide lyase (HPL) are plant-specific cytochrome P450s that commit fatty acid hydroperoxides to different branches of oxylipin metabolism. Here we report the cloning and characterization of AOS (LeAOS) and HPL (LeHPL) cDNAs from tomato (Lycopersicon esculentum). Functional expression of the cDNAs in Escherichia coli showed that LeAOS and LeHPL encode enzymes that metabolize 13- but not 9-hydroperoxide derivatives of C(18) fatty acids. LeAOS was active against both 13S-hydroperoxy-9(Z),11(E),15(Z)-octadecatrienoic acid (13-HPOT) and 13S-hydroperoxy-9(Z),11(E)-octadecadienoic acid, whereas LeHPL showed a strong preference for 13-HPOT. These results suggest a role for LeAOS and LeHPL in the metabolism of 13-HPOT to jasmonic acid and hexenal/traumatin, respectively. LeAOS expression was detected in all organs of the plant. In contrast, LeHPL expression was predominant in leaves and flowers. Damage inflicted to leaves by chewing insect larvae led to an increase in the local and systemic expression of both genes, with LeAOS showing the strongest induction. Wound-induced expression of LeAOS also occurred in the def-1 mutant that is deficient in octadecanoid-based signaling of defensive proteinase inhibitor genes. These results demonstrate that tomato uses genetically distinct signaling pathways for the regulation of different classes of wound responsive genes.
Howe, GA. Lee, GI. Itoh, A. Li, L. DeRocher, AE.
Plant physiology.
2000.
123(2).
711-24.
Ontology annotations (7)
Ontology annotations (7)
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