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Potato locus chloroplast chlorophyll a oxygenase
| 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] |
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Notes and figures (0)
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| Image | Description | Type |
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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 |
>PGSC0003DMG402000895 PGSC_DMv3_219_ch11:10460571..10465522
GTTGTTTACAGCATTTCTTAAATAGGTGGAGAGAAGAAATACAAAAAAAAAAAAACAAATCATTTTTTTTTATCATGACAGCCATTGCTACTGCTACTGCTATTTCTCTTTCTCTTCCTTTCTCTTTGTGCCGCTCTAACAAGTCTTATACTAGAAAGGTATTCTTTATTTTCTTTACCTTTTTTTTTTTGGGTGTTTTGTTTGCAAGAAACTAAAAAGATTGCTTATTTGTCTTGATTAACCTTGTTTATGGAGACCCTTTTTGAAATTGTAGTGAAAAAAGGATCATAAAAGTCAGTTTCTTGCTGTTGGTTATGTGTATAGAGATTTCAAAACACAAAGGGTTATGATCTTTTGCATTTTGAAACATGTTTTTAGTGTCAAAAGTGGATCAATTTTGACTAGTGATTGGTAAGATTTGTTGCATAGGTTGGTAATCTTAGTCAGTTAAGCTTACTGCACTCTGGTGGAGAGTTCTGATTCTTCACAATACTTGAAAGTTAGGTGCTTTTTGTCATGAAAATTTTGAGTGTTTGGAAAAAAAGAGTTTTCGTTTTCAAAAGTGAAAAATGGTAGTTAAGTTGATTGTCCATAGACTATCTGCAAGAATAAGCTCTGAGTCGTGTAATCGAGTACTCGCTTAGTCTATTTATCATGTTATATCAGAATGGAGATTCATATGTCACTTGCATTTTCCTTGTGTGAGCAAATTAGTTGATTGGTTACTGATTTTGCATCTTTTTCACAATCAGTTTGTCAAAGGGAGTTTTGGAGTATTTGCAGTGTATGGGGAGGAGGGTGGGATTCCAGATAAGAAAAGTTCCTGGTTGACACTCTTTAATGTGGAAGATCCCAGGACTAAAGTTCCACAAAGTAAAGGCAAGTTCTTGGATGCAAATCAAGCTTTAGAAGTTGCTAGATATGATCTACAATACTGTGATTGGAGAGCTAGGCAAGATGTACTTACTATAATGCTCCTACACGAAAAGGTACGTCTTTGAATTAATGTGTGTATTGAACTTGGAAACCTGGTAAAATACAACATCCACCGTCTTTATCTTGGTCTATTTACAAGTTTGTTGCATTGCTGTTTCTCATTTTCCTTACTTTCCAAATGGAGTTCACCTTTTTTACTTTCTGTTGTATACTTTCCTTAAGAGTTGTTTCAAATTTTCCTGATCTTCCTCGTATTCTACGTTGTATTCTAATCAGTTTATGCAACTAGGTTGTGGAAGTACTAAACCCTCTAGCACGCGATTATAAATCTATTGGAACCATGAAAAAGGAACTTGCAGAGTTGCAAGAAGAACTTTCTCAGGCCCACAACCAGGTTTGGAAAATTCATTTTCATACAAATTGCATTTTCTGGTTTCCAGTTTTCACAACTAGTGGATATTCAGGGTGATTTCCCTTTGATATGTCAAACTTATTGAAACGAGTCTTCTGAAAAATAAATGGAAAGTTATATAGAAAAACATTTCCAGGATATTGCTTATTTCTCATAAGTATAAAGCTTTATATCTTTAGTACCAATTCAACAGGTACATATATCAGAGACTCGGGTTTCTGCTGCTTTAGATAAGCTAGCTTACATGGAAGAGCTGGTTAACGATAGGCTTCTGCAAGAGAGAAGCACAGTAGAATCAGAATGCACGTCTTCCTCTGCAAGCACGTCAACAGGATTATTAGACACTCCTAAAAGCAAGCAACCCCGAAGAACGCTGAATGTCTCAGGTCCTGTTAAAGATTACAGTTCCCGTTTGAAGAACTTTTGGTACCCTGTAGCATTCTCCGCAGATCTTAAGGATGACACCATGGTGAGTCAATTCTCTCATATCTGCCATAGTCTCTTTTGCCTAAAAGAAAGAAAACATTTGATTTAAAACACAAAAAACCATGTAGATGCAAAATTATGATGCCAAAACAAATTAACAAGCTATATGATCTGCTCTCCTACTTTATGGTCTTCTGTTTATTCTTTTGGCTCTTCTATTGATGACTGTAAACTGTATCTTTTCAGTTACCGATTGATTGCTTTGAGCAATCGTGGGTGATCTTTCGTGGGGCTGATGGAAAACCTGGATGTGTCCGGAATACATGTGCACATAGAGCCTGCCCCCTTGATCTTGGCTCAGTGAATGAGGGTCGCATCCAATGCCCTTATCATGGTGAGATAAATTTGAATCCTTCCACTTTCAGACCAGAGTTCATATTTGGGAGATGAACATAACTTTTAAATGGGTTTTGTAGAGGACATGAAATAGCTAACACTAACTTTGATGTTTGTGAAATGAATTTAGGATGGGAGTATTCCACTGACGGGAAGTGTGAGAAAATGCCATCAACAAGATTACTGAATGTAAAGATCAAAGCACTGCCCTGCTTTGAGCAAGAGGGAATGATATGGATTTGGCCAGGAAATGATCCACCTGCAGCTACCCTTCCTTCTTTACTACCACCTTCTGGATTTCAGATCCATGCAGAGGTTTGAAATCACTACCGTTAGATTTTCAGTTGTTTATCTTACAACTCATGTTTGAGTATTTTGCCTTACGACTGTTTTCATTGAAACTGCAGATAGTCATGGAACTTCCGGTGGAACATGGACTACTTTTAGACAATCTTTTAGATCTTGCACATGCACCTTTCACTCATACATCAACTTTTGCTAAAGGATGGAGTGTACCAAGGTAGTAATGGACATGATCATATGATGCTTATTATTTAGACGTTTAGTACTAAATCAATAGTTCATCAAAGAGTAGATTGTTTTTCTATTTATTTTCATATGGTTTTCCAGAAAACTTGATTTTTCTGGTCCAAGTTATGAGTTTTAAGGCATAAGTGTGCTTTCAAGTTGTGCATTGTGTAGTGTACGAAGGTCTACGTACTTATAATTTACCATTTCTTTTTTTCATTTCAGCTTGGTAAAGTTCTTGACTCCTGCATCTGGTCTGCAAGGATATTGGGATCCATATCCAATAGATATGGAATTTAGACCACCTTGTATGGTTTTATCCACCATTGGCATCTCAAAGCCAGGCAAATTGGAGGGACAGAGCACCAAGCAGTGTTCTACGCACCTTCATCAACTGCATGTTTGCTTACCTGCATCACGACAGAAGACACGGTTATTATATAGAATGTCACTGGATTTTGCTCCCCTGCTGAAACACATCCCCTTCATGCAATACGTTTGGAGACATTTTGCTGAGCAGGTTTGTTTCTGTCCAAAACTTCGTAAAAAACGGTGATTACATTAACATCTTATAGAAGTCATCAGTCAGTGACTTCATGAAATATTGACTGCCTGATATATGAAAAACTGCATTCTTGGAAATTGATGCATTTTGAAGTTGGAAATACGCAAAACATAGAACAAAATCAGAGCTTAAACTCTAGGATTACCATCACATGGCTCTAGAAGCTCATAGTCGCAATAATATAGATTTGCGAACTCTTTGATTCGTGGAAGTTACTTAGACTTGCCTAAAATAGAACACACATAATTGTGAGCATAATCTTCTGAAATAGAATTTTGCCAAATATTAAATAAAATTTCACCTTCTGTAAAAGATATTTCTACATTTTCGCTTCTTCAGTAAGGTCTAAGGATAATGCTGCTAAGAACTTCCCCTTTATAAATATATATAGAGGGTATAAAATTAAAAAAATATGTTCTAACATTTTTCTCTTCTTTGTAAAATTGTATACAGGTTTTAAATGAAGACTTACGGCTTGTTCTTGGCCAGCAGGATCGCATGCTCAATGGCGCCAATATTTGGAACCTGCCAGTGTCTTATGATAAGCTAGGTGTGAGGTATAGAATATGGAGAGATGCTGTAGATAGTGGAGAAAAGGAACTACCTTTCAGCAAATAAATATTGCTCCATCAAGTACCGGGTTTTACTTTTCAAGATGACTTTGATCTCTTCATTGTCAGCTCACAGCAAAATTCAGTCCAGTTGTTGAGAAGCTCTCTCACTTACTGCAGTTTTCCATATTTTTTCTTGTGAGGAGTTACTTACACCCCTTCTGTAAATATAGCTGTACACAATTTTTTTGTAGGTTCGTGTACAGTTTGAGCAATCTTACATTCCTCACCAACAATTCTATCCTGTCCTGATTGGCACTTGGAAAATCTCATAGGTTCTTTGTAAGTGTCTAGAGTCTTCCCAGCAATGTCGTTCCACCTTGTCATAGAATAATTTCTGATCTCAGATTGCAATTAAGAGTATTCTTTTTGCCAAACAAGAAGCCAGAGATGTTTTGATCTTTGGTAGCAGTTTTGAGCTCAGTTGAATCAGCATGACAGTATTGAAATATTATATCCTTGTAGTAAAAGTATATTACTGTCGTCGATGTTCCTATGCTGAACAAGAGACAACTTGATGAATCCATGTTTTCATTTCTGAGTCTTGGCAAGGAAATACTGAGCTCAAAGTTGTGCAAGATGACACTTTAAACACACTAGCAGCAGATCCAAGAATCTCTTAAAAGTAGTGTGTACTTTTGGACAATATGCAAAACTGTTCCCTGATACAAAAACATTGTAAAAGCTGCTCATTATAGTGTAGATGACCACACAACTTCATACAAGGAAGTCTAATCAGAGTTCTCATTGAAGCAGCTAATGGTAGCCTCCAATGGTACAAATCTATTTGGGCAAGACCCAAACAACATATGGTGTTTAACATGTGAACTACTTTTGGAGCTATTTTTTTCAACAAAAAGCTTAGGATTATAGAGCAAAATTAGGTAGGCGTAGTAGTTCCCTTGCTGAGTCTTGTGAAAAATTTATTCCGTATGTAGTATAGCATTATCAAGGAATATTTTTCATTAACGAAACCAACAACTACATAATCAGTGAAATCCACATGTGGAGTCTAGGTAGGTTAGACTGTACATAGACTTTACCCCTACCTCATGATGGTAGAGAAGCTGTTTCAGAA
GTTGTTTACAGCATTTCTTAAATAGGTGGAGAGAAGAAATACAAAAAAAAAAAAACAAATCATTTTTTTTTATCATGACAGCCATTGCTACTGCTACTGCTATTTCTCTTTCTCTTCCTTTCTCTTTGTGCCGCTCTAACAAGTCTTATACTAGAAAGGTATTCTTTATTTTCTTTACCTTTTTTTTTTTGGGTGTTTTGTTTGCAAGAAACTAAAAAGATTGCTTATTTGTCTTGATTAACCTTGTTTATGGAGACCCTTTTTGAAATTGTAGTGAAAAAAGGATCATAAAAGTCAGTTTCTTGCTGTTGGTTATGTGTATAGAGATTTCAAAACACAAAGGGTTATGATCTTTTGCATTTTGAAACATGTTTTTAGTGTCAAAAGTGGATCAATTTTGACTAGTGATTGGTAAGATTTGTTGCATAGGTTGGTAATCTTAGTCAGTTAAGCTTACTGCACTCTGGTGGAGAGTTCTGATTCTTCACAATACTTGAAAGTTAGGTGCTTTTTGTCATGAAAATTTTGAGTGTTTGGAAAAAAAGAGTTTTCGTTTTCAAAAGTGAAAAATGGTAGTTAAGTTGATTGTCCATAGACTATCTGCAAGAATAAGCTCTGAGTCGTGTAATCGAGTACTCGCTTAGTCTATTTATCATGTTATATCAGAATGGAGATTCATATGTCACTTGCATTTTCCTTGTGTGAGCAAATTAGTTGATTGGTTACTGATTTTGCATCTTTTTCACAATCAGTTTGTCAAAGGGAGTTTTGGAGTATTTGCAGTGTATGGGGAGGAGGGTGGGATTCCAGATAAGAAAAGTTCCTGGTTGACACTCTTTAATGTGGAAGATCCCAGGACTAAAGTTCCACAAAGTAAAGGCAAGTTCTTGGATGCAAATCAAGCTTTAGAAGTTGCTAGATATGATCTACAATACTGTGATTGGAGAGCTAGGCAAGATGTACTTACTATAATGCTCCTACACGAAAAGGTACGTCTTTGAATTAATGTGTGTATTGAACTTGGAAACCTGGTAAAATACAACATCCACCGTCTTTATCTTGGTCTATTTACAAGTTTGTTGCATTGCTGTTTCTCATTTTCCTTACTTTCCAAATGGAGTTCACCTTTTTTACTTTCTGTTGTATACTTTCCTTAAGAGTTGTTTCAAATTTTCCTGATCTTCCTCGTATTCTACGTTGTATTCTAATCAGTTTATGCAACTAGGTTGTGGAAGTACTAAACCCTCTAGCACGCGATTATAAATCTATTGGAACCATGAAAAAGGAACTTGCAGAGTTGCAAGAAGAACTTTCTCAGGCCCACAACCAGGTTTGGAAAATTCATTTTCATACAAATTGCATTTTCTGGTTTCCAGTTTTCACAACTAGTGGATATTCAGGGTGATTTCCCTTTGATATGTCAAACTTATTGAAACGAGTCTTCTGAAAAATAAATGGAAAGTTATATAGAAAAACATTTCCAGGATATTGCTTATTTCTCATAAGTATAAAGCTTTATATCTTTAGTACCAATTCAACAGGTACATATATCAGAGACTCGGGTTTCTGCTGCTTTAGATAAGCTAGCTTACATGGAAGAGCTGGTTAACGATAGGCTTCTGCAAGAGAGAAGCACAGTAGAATCAGAATGCACGTCTTCCTCTGCAAGCACGTCAACAGGATTATTAGACACTCCTAAAAGCAAGCAACCCCGAAGAACGCTGAATGTCTCAGGTCCTGTTAAAGATTACAGTTCCCGTTTGAAGAACTTTTGGTACCCTGTAGCATTCTCCGCAGATCTTAAGGATGACACCATGGTGAGTCAATTCTCTCATATCTGCCATAGTCTCTTTTGCCTAAAAGAAAGAAAACATTTGATTTAAAACACAAAAAACCATGTAGATGCAAAATTATGATGCCAAAACAAATTAACAAGCTATATGATCTGCTCTCCTACTTTATGGTCTTCTGTTTATTCTTTTGGCTCTTCTATTGATGACTGTAAACTGTATCTTTTCAGTTACCGATTGATTGCTTTGAGCAATCGTGGGTGATCTTTCGTGGGGCTGATGGAAAACCTGGATGTGTCCGGAATACATGTGCACATAGAGCCTGCCCCCTTGATCTTGGCTCAGTGAATGAGGGTCGCATCCAATGCCCTTATCATGGTGAGATAAATTTGAATCCTTCCACTTTCAGACCAGAGTTCATATTTGGGAGATGAACATAACTTTTAAATGGGTTTTGTAGAGGACATGAAATAGCTAACACTAACTTTGATGTTTGTGAAATGAATTTAGGATGGGAGTATTCCACTGACGGGAAGTGTGAGAAAATGCCATCAACAAGATTACTGAATGTAAAGATCAAAGCACTGCCCTGCTTTGAGCAAGAGGGAATGATATGGATTTGGCCAGGAAATGATCCACCTGCAGCTACCCTTCCTTCTTTACTACCACCTTCTGGATTTCAGATCCATGCAGAGGTTTGAAATCACTACCGTTAGATTTTCAGTTGTTTATCTTACAACTCATGTTTGAGTATTTTGCCTTACGACTGTTTTCATTGAAACTGCAGATAGTCATGGAACTTCCGGTGGAACATGGACTACTTTTAGACAATCTTTTAGATCTTGCACATGCACCTTTCACTCATACATCAACTTTTGCTAAAGGATGGAGTGTACCAAGGTAGTAATGGACATGATCATATGATGCTTATTATTTAGACGTTTAGTACTAAATCAATAGTTCATCAAAGAGTAGATTGTTTTTCTATTTATTTTCATATGGTTTTCCAGAAAACTTGATTTTTCTGGTCCAAGTTATGAGTTTTAAGGCATAAGTGTGCTTTCAAGTTGTGCATTGTGTAGTGTACGAAGGTCTACGTACTTATAATTTACCATTTCTTTTTTTCATTTCAGCTTGGTAAAGTTCTTGACTCCTGCATCTGGTCTGCAAGGATATTGGGATCCATATCCAATAGATATGGAATTTAGACCACCTTGTATGGTTTTATCCACCATTGGCATCTCAAAGCCAGGCAAATTGGAGGGACAGAGCACCAAGCAGTGTTCTACGCACCTTCATCAACTGCATGTTTGCTTACCTGCATCACGACAGAAGACACGGTTATTATATAGAATGTCACTGGATTTTGCTCCCCTGCTGAAACACATCCCCTTCATGCAATACGTTTGGAGACATTTTGCTGAGCAGGTTTGTTTCTGTCCAAAACTTCGTAAAAAACGGTGATTACATTAACATCTTATAGAAGTCATCAGTCAGTGACTTCATGAAATATTGACTGCCTGATATATGAAAAACTGCATTCTTGGAAATTGATGCATTTTGAAGTTGGAAATACGCAAAACATAGAACAAAATCAGAGCTTAAACTCTAGGATTACCATCACATGGCTCTAGAAGCTCATAGTCGCAATAATATAGATTTGCGAACTCTTTGATTCGTGGAAGTTACTTAGACTTGCCTAAAATAGAACACACATAATTGTGAGCATAATCTTCTGAAATAGAATTTTGCCAAATATTAAATAAAATTTCACCTTCTGTAAAAGATATTTCTACATTTTCGCTTCTTCAGTAAGGTCTAAGGATAATGCTGCTAAGAACTTCCCCTTTATAAATATATATAGAGGGTATAAAATTAAAAAAATATGTTCTAACATTTTTCTCTTCTTTGTAAAATTGTATACAGGTTTTAAATGAAGACTTACGGCTTGTTCTTGGCCAGCAGGATCGCATGCTCAATGGCGCCAATATTTGGAACCTGCCAGTGTCTTATGATAAGCTAGGTGTGAGGTATAGAATATGGAGAGATGCTGTAGATAGTGGAGAAAAGGAACTACCTTTCAGCAAATAAATATTGCTCCATCAAGTACCGGGTTTTACTTTTCAAGATGACTTTGATCTCTTCATTGTCAGCTCACAGCAAAATTCAGTCCAGTTGTTGAGAAGCTCTCTCACTTACTGCAGTTTTCCATATTTTTTCTTGTGAGGAGTTACTTACACCCCTTCTGTAAATATAGCTGTACACAATTTTTTTGTAGGTTCGTGTACAGTTTGAGCAATCTTACATTCCTCACCAACAATTCTATCCTGTCCTGATTGGCACTTGGAAAATCTCATAGGTTCTTTGTAAGTGTCTAGAGTCTTCCCAGCAATGTCGTTCCACCTTGTCATAGAATAATTTCTGATCTCAGATTGCAATTAAGAGTATTCTTTTTGCCAAACAAGAAGCCAGAGATGTTTTGATCTTTGGTAGCAGTTTTGAGCTCAGTTGAATCAGCATGACAGTATTGAAATATTATATCCTTGTAGTAAAAGTATATTACTGTCGTCGATGTTCCTATGCTGAACAAGAGACAACTTGATGAATCCATGTTTTCATTTCTGAGTCTTGGCAAGGAAATACTGAGCTCAAAGTTGTGCAAGATGACACTTTAAACACACTAGCAGCAGATCCAAGAATCTCTTAAAAGTAGTGTGTACTTTTGGACAATATGCAAAACTGTTCCCTGATACAAAAACATTGTAAAAGCTGCTCATTATAGTGTAGATGACCACACAACTTCATACAAGGAAGTCTAATCAGAGTTCTCATTGAAGCAGCTAATGGTAGCCTCCAATGGTACAAATCTATTTGGGCAAGACCCAAACAACATATGGTGTTTAACATGTGAACTACTTTTGGAGCTATTTTTTTCAACAAAAAGCTTAGGATTATAGAGCAAAATTAGGTAGGCGTAGTAGTTCCCTTGCTGAGTCTTGTGAAAAATTTATTCCGTATGTAGTATAGCATTATCAAGGAATATTTTTCATTAACGAAACCAACAACTACATAATCAGTGAAATCCACATGTGGAGTCTAGGTAGGTTAGACTGTACATAGACTTTACCCCTACCTCATGATGGTAGAGAAGCTGTTTCAGAA
| Download sequence region |
Get flanking sequences on PGSC_DMv3_219_ch11
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mRNA PGSC0003DMT400002345
mRNA PGSC0003DMT400002345
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| Ontology terms | None | terms associated with this mRNA |
cDNA sequence
cDNA sequence
| spliced cDNA sequence, including UTRs |
>PGSC0003DMT400002345 Chlorophyll synthase
GTTGTTTACAGCATTTCTTAAATAGGTGGAGAGAAGAAATACAAAAAAAAAAAAACAAATCATTTTTTTTTATCATGACAGCCATTGCTACTGCTACTGCTATTTCTCTTTCTCTTCCTTTCTCTTTGTGCCGCTCTAACAAGTCTTATACTAGAAAGTTTGTCAAAGGGAGTTTTGGAGTATTTGCAGTGTATGGGGAGGAGGGTGGGATTCCAGATAAGAAAAGTTCCTGGTTGACACTCTTTAATGTGGAAGATCCCAGGACTAAAGTTCCACAAAGTAAAGGCAAGTTCTTGGATGCAAATCAAGCTTTAGAAGTTGCTAGATATGATCTACAATACTGTGATTGGAGAGCTAGGCAAGATGTACTTACTATAATGCTCCTACACGAAAAGGTTGTGGAAGTACTAAACCCTCTAGCACGCGATTATAAATCTATTGGAACCATGAAAAAGGAACTTGCAGAGTTGCAAGAAGAACTTTCTCAGGCCCACAACCAGGTACATATATCAGAGACTCGGGTTTCTGCTGCTTTAGATAAGCTAGCTTACATGGAAGAGCTGGTTAACGATAGGCTTCTGCAAGAGAGAAGCACAGTAGAATCAGAATGCACGTCTTCCTCTGCAAGCACGTCAACAGGATTATTAGACACTCCTAAAAGCAAGCAACCCCGAAGAACGCTGAATGTCTCAGGTCCTGTTAAAGATTACAGTTCCCGTTTGAAGAACTTTTGGTACCCTGTAGCATTCTCCGCAGATCTTAAGGATGACACCATGTTACCGATTGATTGCTTTGAGCAATCGTGGGTGATCTTTCGTGGGGCTGATGGAAAACCTGGATGTGTCCGGAATACATGTGCACATAGAGCCTGCCCCCTTGATCTTGGCTCAGTGAATGAGGGTCGCATCCAATGCCCTTATCATGGATGGGAGTATTCCACTGACGGGAAGTGTGAGAAAATGCCATCAACAAGATTACTGAATGTAAAGATCAAAGCACTGCCCTGCTTTGAGCAAGAGGGAATGATATGGATTTGGCCAGGAAATGATCCACCTGCAGCTACCCTTCCTTCTTTACTACCACCTTCTGGATTTCAGATCCATGCAGAGATAGTCATGGAACTTCCGGTGGAACATGGACTACTTTTAGACAATCTTTTAGATCTTGCACATGCACCTTTCACTCATACATCAACTTTTGCTAAAGGATGGAGTGTACCAAGCTTGGTAAAGTTCTTGACTCCTGCATCTGGTCTGCAAGGATATTGGGATCCATATCCAATAGATATGGAATTTAGACCACCTTGTATGGTTTTATCCACCATTGGCATCTCAAAGCCAGGCAAATTGGAGGGACAGAGCACCAAGCAGTGTTCTACGCACCTTCATCAACTGCATGTTTGCTTACCTGCATCACGACAGAAGACACGGTTATTATATAGAATGTCACTGGATTTTGCTCCCCTGCTGAAACACATCCCCTTCATGCAATACGTTTGGAGACATTTTGCTGAGCAGGTTTTAAATGAAGACTTACGGCTTGTTCTTGGCCAGCAGGATCGCATGCTCAATGGCGCCAATATTTGGAACCTGCCAGTGTCTTATGATAAGCTAGGTGTGAGGTATAGAATATGGAGAGATGCTGTAGATAGTGGAGAAAAGGAACTACCTTTCAGCAAATAAATATTGCTCCATCAAGTACCGGGTTTTACTTTTCAAGATGACTTTGATCTCTTCATTGTCAGCTCACAGCAAAATTCAGTCCAGTTGTTGAGAAGCTCTCTCACTTACTGCAGTTTTCCATATTTTTTCTTGTGAGGAGTTACTTACACCCCTTCTGTAAATATAGCTGTACACAATTTTTTTGTAGGTTCGTGTACAGTTTGAGCAATCTTACATTCCTCACCAACAATTCTATCCTGTCCTGATTGGCACTTGGAAAATCTCATAGGTTCTTTGTAAGTGTCTAGAGTCTTCCCAGCAATGTCGTTCCACCTTGTCATAGAATAATTTCTGATCTCAGATTGCAATTAAGAGTATTCTTTTTGCCAAACAAGAAGCCAGAGATGTTTTGATCTTTGGTAGCAGTTTTGAGCTCAGTTGAATCAGCATGACAGTATTGAAATATTATATCCTTGTAGTAAAAGTATATTACTGTCGTCGATGTTCCTATGCTGAACAAGAGACAACTTGATGAATCCATGTTTTCATTTCTGAGTCTTGGCAAGGAAATACTGAGCTCAAAGTTGTGCAAGATGACACTTTAAACACACTAGCAGCAGATCCAAGAATCTCTTAAAAGTAGTGTGTACTTTTGGACAATATGCAAAACTGTTCCCTGATACAAAAACATTGTAAAAGCTGCTCATTATAGTGTAGATGACCACACAACTTCATACAAGGAAGTCTAATCAGAGTTCTCATTGAAGCAGCTAATGGTAGCCTCCAATGGTACAAATCTATTTGGGCAAGACCCAAACAACATATGGTGTTTAACATGTGAACTACTTTTGGAGCTATTTTTTTCAACAAAAAGCTTAGGATTATAGAGCAAAATTAGGTAGGCGTAGTAGTTCCCTTGCTGAGTCTTGTGAAAAATTTATTCCGTATGTAGTATAGCATTATCAAGGAATATTTTTCATTAACGAAACCAACAACTACATAATCAGTGAAATCCACATGTGGAGTCTAGGTAGGTTAGACTGTACATAGACTTTACCCCTACCTCATGATGGTAGAGAAGCTGTTTCAGAA
GTTGTTTACAGCATTTCTTAAATAGGTGGAGAGAAGAAATACAAAAAAAAAAAAACAAATCATTTTTTTTTATCATGACAGCCATTGCTACTGCTACTGCTATTTCTCTTTCTCTTCCTTTCTCTTTGTGCCGCTCTAACAAGTCTTATACTAGAAAGTTTGTCAAAGGGAGTTTTGGAGTATTTGCAGTGTATGGGGAGGAGGGTGGGATTCCAGATAAGAAAAGTTCCTGGTTGACACTCTTTAATGTGGAAGATCCCAGGACTAAAGTTCCACAAAGTAAAGGCAAGTTCTTGGATGCAAATCAAGCTTTAGAAGTTGCTAGATATGATCTACAATACTGTGATTGGAGAGCTAGGCAAGATGTACTTACTATAATGCTCCTACACGAAAAGGTTGTGGAAGTACTAAACCCTCTAGCACGCGATTATAAATCTATTGGAACCATGAAAAAGGAACTTGCAGAGTTGCAAGAAGAACTTTCTCAGGCCCACAACCAGGTACATATATCAGAGACTCGGGTTTCTGCTGCTTTAGATAAGCTAGCTTACATGGAAGAGCTGGTTAACGATAGGCTTCTGCAAGAGAGAAGCACAGTAGAATCAGAATGCACGTCTTCCTCTGCAAGCACGTCAACAGGATTATTAGACACTCCTAAAAGCAAGCAACCCCGAAGAACGCTGAATGTCTCAGGTCCTGTTAAAGATTACAGTTCCCGTTTGAAGAACTTTTGGTACCCTGTAGCATTCTCCGCAGATCTTAAGGATGACACCATGTTACCGATTGATTGCTTTGAGCAATCGTGGGTGATCTTTCGTGGGGCTGATGGAAAACCTGGATGTGTCCGGAATACATGTGCACATAGAGCCTGCCCCCTTGATCTTGGCTCAGTGAATGAGGGTCGCATCCAATGCCCTTATCATGGATGGGAGTATTCCACTGACGGGAAGTGTGAGAAAATGCCATCAACAAGATTACTGAATGTAAAGATCAAAGCACTGCCCTGCTTTGAGCAAGAGGGAATGATATGGATTTGGCCAGGAAATGATCCACCTGCAGCTACCCTTCCTTCTTTACTACCACCTTCTGGATTTCAGATCCATGCAGAGATAGTCATGGAACTTCCGGTGGAACATGGACTACTTTTAGACAATCTTTTAGATCTTGCACATGCACCTTTCACTCATACATCAACTTTTGCTAAAGGATGGAGTGTACCAAGCTTGGTAAAGTTCTTGACTCCTGCATCTGGTCTGCAAGGATATTGGGATCCATATCCAATAGATATGGAATTTAGACCACCTTGTATGGTTTTATCCACCATTGGCATCTCAAAGCCAGGCAAATTGGAGGGACAGAGCACCAAGCAGTGTTCTACGCACCTTCATCAACTGCATGTTTGCTTACCTGCATCACGACAGAAGACACGGTTATTATATAGAATGTCACTGGATTTTGCTCCCCTGCTGAAACACATCCCCTTCATGCAATACGTTTGGAGACATTTTGCTGAGCAGGTTTTAAATGAAGACTTACGGCTTGTTCTTGGCCAGCAGGATCGCATGCTCAATGGCGCCAATATTTGGAACCTGCCAGTGTCTTATGATAAGCTAGGTGTGAGGTATAGAATATGGAGAGATGCTGTAGATAGTGGAGAAAAGGAACTACCTTTCAGCAAATAAATATTGCTCCATCAAGTACCGGGTTTTACTTTTCAAGATGACTTTGATCTCTTCATTGTCAGCTCACAGCAAAATTCAGTCCAGTTGTTGAGAAGCTCTCTCACTTACTGCAGTTTTCCATATTTTTTCTTGTGAGGAGTTACTTACACCCCTTCTGTAAATATAGCTGTACACAATTTTTTTGTAGGTTCGTGTACAGTTTGAGCAATCTTACATTCCTCACCAACAATTCTATCCTGTCCTGATTGGCACTTGGAAAATCTCATAGGTTCTTTGTAAGTGTCTAGAGTCTTCCCAGCAATGTCGTTCCACCTTGTCATAGAATAATTTCTGATCTCAGATTGCAATTAAGAGTATTCTTTTTGCCAAACAAGAAGCCAGAGATGTTTTGATCTTTGGTAGCAGTTTTGAGCTCAGTTGAATCAGCATGACAGTATTGAAATATTATATCCTTGTAGTAAAAGTATATTACTGTCGTCGATGTTCCTATGCTGAACAAGAGACAACTTGATGAATCCATGTTTTCATTTCTGAGTCTTGGCAAGGAAATACTGAGCTCAAAGTTGTGCAAGATGACACTTTAAACACACTAGCAGCAGATCCAAGAATCTCTTAAAAGTAGTGTGTACTTTTGGACAATATGCAAAACTGTTCCCTGATACAAAAACATTGTAAAAGCTGCTCATTATAGTGTAGATGACCACACAACTTCATACAAGGAAGTCTAATCAGAGTTCTCATTGAAGCAGCTAATGGTAGCCTCCAATGGTACAAATCTATTTGGGCAAGACCCAAACAACATATGGTGTTTAACATGTGAACTACTTTTGGAGCTATTTTTTTCAACAAAAAGCTTAGGATTATAGAGCAAAATTAGGTAGGCGTAGTAGTTCCCTTGCTGAGTCTTGTGAAAAATTTATTCCGTATGTAGTATAGCATTATCAAGGAATATTTTTCATTAACGAAACCAACAACTACATAATCAGTGAAATCCACATGTGGAGTCTAGGTAGGTTAGACTGTACATAGACTTTACCCCTACCTCATGATGGTAGAGAAGCTGTTTCAGAA
Protein sequence
Protein sequence
| translated polypeptide sequence |
>PGSC0003DMT400002345 Chlorophyll synthase
MTAIATATAISLSLPFSLCRSNKSYTRKFVKGSFGVFAVYGEEGGIPDKKSSWLTLFNVEDPRTKVPQSKGKFLDANQALEVARYDLQYCDWRARQDVLTIMLLHEKVVEVLNPLARDYKSIGTMKKELAELQEELSQAHNQVHISETRVSAALDKLAYMEELVNDRLLQERSTVESECTSSSASTSTGLLDTPKSKQPRRTLNVSGPVKDYSSRLKNFWYPVAFSADLKDDTMLPIDCFEQSWVIFRGADGKPGCVRNTCAHRACPLDLGSVNEGRIQCPYHGWEYSTDGKCEKMPSTRLLNVKIKALPCFEQEGMIWIWPGNDPPAATLPSLLPPSGFQIHAEIVMELPVEHGLLLDNLLDLAHAPFTHTSTFAKGWSVPSLVKFLTPASGLQGYWDPYPIDMEFRPPCMVLSTIGISKPGKLEGQSTKQCSTHLHQLHVCLPASRQKTRLLYRMSLDFAPLLKHIPFMQYVWRHFAEQVLNEDLRLVLGQQDRMLNGANIWNLPVSYDKLGVRYRIWRDAVDSGEKELPFSK*
MTAIATATAISLSLPFSLCRSNKSYTRKFVKGSFGVFAVYGEEGGIPDKKSSWLTLFNVEDPRTKVPQSKGKFLDANQALEVARYDLQYCDWRARQDVLTIMLLHEKVVEVLNPLARDYKSIGTMKKELAELQEELSQAHNQVHISETRVSAALDKLAYMEELVNDRLLQERSTVESECTSSSASTSTGLLDTPKSKQPRRTLNVSGPVKDYSSRLKNFWYPVAFSADLKDDTMLPIDCFEQSWVIFRGADGKPGCVRNTCAHRACPLDLGSVNEGRIQCPYHGWEYSTDGKCEKMPSTRLLNVKIKALPCFEQEGMIWIWPGNDPPAATLPSLLPPSGFQIHAEIVMELPVEHGLLLDNLLDLAHAPFTHTSTFAKGWSVPSLVKFLTPASGLQGYWDPYPIDMEFRPPCMVLSTIGISKPGKLEGQSTKQCSTHLHQLHVCLPASRQKTRLLYRMSLDFAPLLKHIPFMQYVWRHFAEQVLNEDLRLVLGQQDRMLNGANIWNLPVSYDKLGVRYRIWRDAVDSGEKELPFSK*
mRNA PGSC0003DMT400002344
mRNA PGSC0003DMT400002344
|
| Ontology terms | None | terms associated with this mRNA |
cDNA sequence
cDNA sequence
| spliced cDNA sequence, including UTRs |
>PGSC0003DMT400002344 Chlorophyll synthase
TCCAAATGGAGTTCACCTTTTTTACTTTCTGTTGTATACTTTCCTTAAGAGTTGTTTCAAATTTTCCTGATCTTCCTCGTATTCTACGTTGTATTCTAATCAGTTTATGCAACTAGGTTGTGGAAGTACTAAACCCTCTAGCACGCGATTATAAATCTATTGGAACCATGAAAAAGGAACTTGCAGAGTTGCAAGAAGAACTTTCTCAGGCCCACAACCAGGTACATATATCAGAGACTCGGGTTTCTGCTGCTTTAGATAAGCTAGCTTACATGGAAGAGCTGGTTAACGATAGGCTTCTGCAAGAGAGAAGCACAGTAGAATCAGAATGCACGTCTTCCTCTGCAAGCACGTCAACAGGATTATTAGACACTCCTAAAAGCAAGCAACCCCGAAGAACGCTGAATGTCTCAGGTCCTGTTAAAGATTACAGTTCCCGTTTGAAGAACTTTTGGTACCCTGTAGCATTCTCCGCAGATCTTAAGGATGACACCATGTTACCGATTGATTGCTTTGAGCAATCGTGGGTGATCTTTCGTGGGGCTGATGGAAAACCTGGATGTGTCCGGAATACATGTGCACATAGAGCCTGCCCCCTTGATCTTGGCTCAGTGAATGAGGGTCGCATCCAATGCCCTTATCATGGATGGGAGTATTCCACTGACGGGAAGTGTGAGAAAATGCCATCAACAAGATTACTGAATGTAAAGATCAAAGCACTGCCCTGCTTTGAGCAAGAGGGAATGATATGGATTTGGCCAGGAAATGATCCACCTGCAGCTACCCTTCCTTCTTTACTACCACCTTCTGGATTTCAGATCCATGCAGAGATAGTCATGGAACTTCCGGTGGAACATGGACTACTTTTAGACAATCTTTTAGATCTTGCACATGCACCTTTCACTCATACATCAACTTTTGCTAAAGGATGGAGTGTACCAAGCTTGGTAAAGTTCTTGACTCCTGCATCTGGTCTGCAAGGATATTGGGATCCATATCCAATAGATATGGAATTTAGACCACCTTGTATGGTTTTATCCACCATTGGCATCTCAAAGCCAGGCAAATTGGAGGGACAGAGCACCAAGCAGTGTTCTACGCACCTTCATCAACTGCATGTTTGCTTACCTGCATCACGACAGAAGACACGGTTATTATATAGAATGTCACTGGATTTTGCTCCCCTGCTGAAACACATCCCCTTCATGCAATACGTTTGGAGACATTTTGCTGAGCAGGTTTTAAATGAAGACTTACGGCTTGTTCTTGGCCAGCAGGATCGCATGCTCAATGGCGCCAATATTTGGAACCTGCCAGTGTCTTATGATAAGCTAGGTGTGAGGTATAGAATATGGAGAGATGCTGTAGATAGTGGAGAAAAGGAACTACCTTTCAGCAAATAAATATTGCTCCATCAAGTACCGGGTTTTACTTTTCAAGATGACTTTGATCTCTTCATTGTCAGCTCACAGCAAAATTCAGTCCAGTTGTTGAGAAGCTCTCTCACTTACTGCAGTTTTCCATATTTTTTCTTGTGAGGAGTTACTTACACCCCTTCTGTAAATATAGCTGTACACAATTTTTTTGTAGGTTCGTGTACAGTTTGAGCAATCTTACATTCCTCACCAACAATTCTATCCTGTCCTGATTGGCACTTGGAAAATCTCATAGGTTCTTTGTAAGTGTCTAGAGTCTTCCCAGCAATGTCGTTCCACCTTGTCATAGAATAATTTCTGATCTCAGATTGCAATTAAGAGTATTCTTTTTGCCAAACAAGAAGCCAGAGATGTTTTGATCTTTGGTAGCAGTTTTGAGCTCAGTTGAATCAGCATGACAGTATTGAAATATTATATCCTTGTAGTAAAAGTATATTACTGTCGTCGATGTTCCTATGCTGAACAAGAGACAACTTGATGAATCCATGTTTTCATTTCTGAGTCTTGGCAAGGAAATACTGAGCTCAAAGTTGTGCAAGATGACACTTTAAACACACTAGCAGCAGATCCAAGAATCTCTTAAAAGTAGTGTGTACTTTTGGACAATATGCAAAACTGTTCCCTGATACAAAAACATTGTAAAAGCTGCTCATTATAGTGTAGATGACCACACAACTTCATACAAGGAAGTCTAATCAGAGTTCTCATTGAAGCAGCTAATGGTAGCCTCCAATGGTACAAATCTATTTGGGCAAGACCCAAACAACATATGGTGTTTAACATGTGAACTACTTTTGGAGCTATTTTTTTCAACAAAAAGCTTAGGATTATAGAGCAAAATTAGGTAGGCGTAGTAGTTCCCTTGCTGAGTCTTGTGAAAAATTTATTCCGTATGTAGTATAGCATTATCAAGGAATATTTTTCATTAACGAAACCAACAACTACATAATCAGTGAAATCCACATGTGGAGTCTAGGTAGGTTAGACTGTACATAGACTTTACCCCTACCTCATGATGGTAGAGAAGCTGTTTCAGAA
TCCAAATGGAGTTCACCTTTTTTACTTTCTGTTGTATACTTTCCTTAAGAGTTGTTTCAAATTTTCCTGATCTTCCTCGTATTCTACGTTGTATTCTAATCAGTTTATGCAACTAGGTTGTGGAAGTACTAAACCCTCTAGCACGCGATTATAAATCTATTGGAACCATGAAAAAGGAACTTGCAGAGTTGCAAGAAGAACTTTCTCAGGCCCACAACCAGGTACATATATCAGAGACTCGGGTTTCTGCTGCTTTAGATAAGCTAGCTTACATGGAAGAGCTGGTTAACGATAGGCTTCTGCAAGAGAGAAGCACAGTAGAATCAGAATGCACGTCTTCCTCTGCAAGCACGTCAACAGGATTATTAGACACTCCTAAAAGCAAGCAACCCCGAAGAACGCTGAATGTCTCAGGTCCTGTTAAAGATTACAGTTCCCGTTTGAAGAACTTTTGGTACCCTGTAGCATTCTCCGCAGATCTTAAGGATGACACCATGTTACCGATTGATTGCTTTGAGCAATCGTGGGTGATCTTTCGTGGGGCTGATGGAAAACCTGGATGTGTCCGGAATACATGTGCACATAGAGCCTGCCCCCTTGATCTTGGCTCAGTGAATGAGGGTCGCATCCAATGCCCTTATCATGGATGGGAGTATTCCACTGACGGGAAGTGTGAGAAAATGCCATCAACAAGATTACTGAATGTAAAGATCAAAGCACTGCCCTGCTTTGAGCAAGAGGGAATGATATGGATTTGGCCAGGAAATGATCCACCTGCAGCTACCCTTCCTTCTTTACTACCACCTTCTGGATTTCAGATCCATGCAGAGATAGTCATGGAACTTCCGGTGGAACATGGACTACTTTTAGACAATCTTTTAGATCTTGCACATGCACCTTTCACTCATACATCAACTTTTGCTAAAGGATGGAGTGTACCAAGCTTGGTAAAGTTCTTGACTCCTGCATCTGGTCTGCAAGGATATTGGGATCCATATCCAATAGATATGGAATTTAGACCACCTTGTATGGTTTTATCCACCATTGGCATCTCAAAGCCAGGCAAATTGGAGGGACAGAGCACCAAGCAGTGTTCTACGCACCTTCATCAACTGCATGTTTGCTTACCTGCATCACGACAGAAGACACGGTTATTATATAGAATGTCACTGGATTTTGCTCCCCTGCTGAAACACATCCCCTTCATGCAATACGTTTGGAGACATTTTGCTGAGCAGGTTTTAAATGAAGACTTACGGCTTGTTCTTGGCCAGCAGGATCGCATGCTCAATGGCGCCAATATTTGGAACCTGCCAGTGTCTTATGATAAGCTAGGTGTGAGGTATAGAATATGGAGAGATGCTGTAGATAGTGGAGAAAAGGAACTACCTTTCAGCAAATAAATATTGCTCCATCAAGTACCGGGTTTTACTTTTCAAGATGACTTTGATCTCTTCATTGTCAGCTCACAGCAAAATTCAGTCCAGTTGTTGAGAAGCTCTCTCACTTACTGCAGTTTTCCATATTTTTTCTTGTGAGGAGTTACTTACACCCCTTCTGTAAATATAGCTGTACACAATTTTTTTGTAGGTTCGTGTACAGTTTGAGCAATCTTACATTCCTCACCAACAATTCTATCCTGTCCTGATTGGCACTTGGAAAATCTCATAGGTTCTTTGTAAGTGTCTAGAGTCTTCCCAGCAATGTCGTTCCACCTTGTCATAGAATAATTTCTGATCTCAGATTGCAATTAAGAGTATTCTTTTTGCCAAACAAGAAGCCAGAGATGTTTTGATCTTTGGTAGCAGTTTTGAGCTCAGTTGAATCAGCATGACAGTATTGAAATATTATATCCTTGTAGTAAAAGTATATTACTGTCGTCGATGTTCCTATGCTGAACAAGAGACAACTTGATGAATCCATGTTTTCATTTCTGAGTCTTGGCAAGGAAATACTGAGCTCAAAGTTGTGCAAGATGACACTTTAAACACACTAGCAGCAGATCCAAGAATCTCTTAAAAGTAGTGTGTACTTTTGGACAATATGCAAAACTGTTCCCTGATACAAAAACATTGTAAAAGCTGCTCATTATAGTGTAGATGACCACACAACTTCATACAAGGAAGTCTAATCAGAGTTCTCATTGAAGCAGCTAATGGTAGCCTCCAATGGTACAAATCTATTTGGGCAAGACCCAAACAACATATGGTGTTTAACATGTGAACTACTTTTGGAGCTATTTTTTTCAACAAAAAGCTTAGGATTATAGAGCAAAATTAGGTAGGCGTAGTAGTTCCCTTGCTGAGTCTTGTGAAAAATTTATTCCGTATGTAGTATAGCATTATCAAGGAATATTTTTCATTAACGAAACCAACAACTACATAATCAGTGAAATCCACATGTGGAGTCTAGGTAGGTTAGACTGTACATAGACTTTACCCCTACCTCATGATGGTAGAGAAGCTGTTTCAGAA
Protein sequence
Protein sequence
| translated polypeptide sequence |
>PGSC0003DMT400002344 Chlorophyll synthase
MKKELAELQEELSQAHNQVHISETRVSAALDKLAYMEELVNDRLLQERSTVESECTSSSASTSTGLLDTPKSKQPRRTLNVSGPVKDYSSRLKNFWYPVAFSADLKDDTMLPIDCFEQSWVIFRGADGKPGCVRNTCAHRACPLDLGSVNEGRIQCPYHGWEYSTDGKCEKMPSTRLLNVKIKALPCFEQEGMIWIWPGNDPPAATLPSLLPPSGFQIHAEIVMELPVEHGLLLDNLLDLAHAPFTHTSTFAKGWSVPSLVKFLTPASGLQGYWDPYPIDMEFRPPCMVLSTIGISKPGKLEGQSTKQCSTHLHQLHVCLPASRQKTRLLYRMSLDFAPLLKHIPFMQYVWRHFAEQVLNEDLRLVLGQQDRMLNGANIWNLPVSYDKLGVRYRIWRDAVDSGEKELPFSK*
MKKELAELQEELSQAHNQVHISETRVSAALDKLAYMEELVNDRLLQERSTVESECTSSSASTSTGLLDTPKSKQPRRTLNVSGPVKDYSSRLKNFWYPVAFSADLKDDTMLPIDCFEQSWVIFRGADGKPGCVRNTCAHRACPLDLGSVNEGRIQCPYHGWEYSTDGKCEKMPSTRLLNVKIKALPCFEQEGMIWIWPGNDPPAATLPSLLPPSGFQIHAEIVMELPVEHGLLLDNLLDLAHAPFTHTSTFAKGWSVPSLVKFLTPASGLQGYWDPYPIDMEFRPPCMVLSTIGISKPGKLEGQSTKQCSTHLHQLHVCLPASRQKTRLLYRMSLDFAPLLKHIPFMQYVWRHFAEQVLNEDLRLVLGQQDRMLNGANIWNLPVSYDKLGVRYRIWRDAVDSGEKELPFSK*
mRNA PGSC0003DMT400002343
mRNA PGSC0003DMT400002343
|
| Ontology terms | None | terms associated with this mRNA |
cDNA sequence
cDNA sequence
| spliced cDNA sequence, including UTRs |
>PGSC0003DMT400002343 Chlorophyll synthase
TTTAGTACCAATTCAACAGGTACATATATCAGAGACTCGGGTTTCTGCTGCTTTAGATAAGCTAGCTTACATGGAAGAGCTGGTTAACGATAGGCTTCTGCAAGAGAGAAGCACAGTAGAATCAGAATGCACGTCTTCCTCTGCAAGCACGTCAACAGGATTATTAGACACTCCTAAAAGCAAGCAACCCCGAAGAACGCTGAATGTCTCAGGTCCTGTTAAAGATTACAGTTCCCGTTTGAAGAACTTTTGGTACCCTGTAGCATTCTCCGCAGATCTTAAGGATGACACCATGTTACCGATTGATTGCTTTGAGCAATCGTGGGTGATCTTTCGTGGGGCTGATGGAAAACCTGGATGTGTCCGGAATACATGTGCACATAGAGCCTGCCCCCTTGATCTTGGCTCAGTGAATGAGGGTCGCATCCAATGCCCTTATCATGGATGGGAGTATTCCACTGACGGGAAGTGTGAGAAAATGCCATCAACAAGATTACTGAATGTAAAGATCAAAGCACTGCCCTGCTTTGAGCAAGAGGGAATGATATGGATTTGGCCAGGAAATGATCCACCTGCAGCTACCCTTCCTTCTTTACTACCACCTTCTGGATTTCAGATCCATGCAGAGATAGTCATGGAACTTCCGGTGGAACATGGACTACTTTTAGACAATCTTTTAGATCTTGCACATGCACCTTTCACTCATACATCAACTTTTGCTAAAGGATGGAGTGTACCAAGCTTGGTAAAGTTCTTGACTCCTGCATCTGGTCTGCAAGGATATTGGGATCCATATCCAATAGATATGGAATTTAGACCACCTTGTATGGTTTTATCCACCATTGGCATCTCAAAGCCAGGCAAATTGGAGGGACAGAGCACCAAGCAGTGTTCTACGCACCTTCATCAACTGCATGTTTGCTTACCTGCATCACGACAGAAGACACGGTTATTATATAGAATGTCACTGGATTTTGCTCCCCTGCTGAAACACATCCCCTTCATGCAATACGTTTGGAGACATTTTGCTGAGCAGGTTTTAAATGAAGACTTACGGCTTGTTCTTGGCCAGCAGGATCGCATGCTCAATGGCGCCAATATTTGGAACCTGCCAGTGTCTTATGATAAGCTAGGTGTGAGGTATAGAATATGGAGAGATGCTGTAGATAGTGGAGAAAAGGAACTACCTTTCAGCAAATAAATATTGCTCCATCAAGTACCGGGTTTTACTTTTCAAGATGACTTTGATCTCTTCATTGTCAGCTCACAGCAAAATTCAGTCCAGTTGTTGAGAAGCTCTCTCACTTACTGCAGTTTTCCATATTTTTTCTTGTGAGGAGTTACTTACACCCCTTCTGTAAATATAGCTGTACACAATTTTTTTGTAGGTTCGTGTACAGTTTGAGCAATCTTACATTCCTCACCAACAATTCTATCCTGTCCTGATTGGCACTTGGAAAATCTCATAGGTTCTTTGTAAGTGTCTAGAGTCTTCCCAGCAATGTCGTTCCACCTTGTCATAGAATAATTTCTGATCTCAGATTGCAATTAAGAGTATTCTTTTTGCCAAACAAGAAGCCAGAGATGTTTTGATCTTTGGTAGCAGTTTTGAGCTCAGTTGAATCAGCATGACAGTATTGAAATATTATATCCTTGTAGTAAAAGTATATTACTGTCGTCGATGTTCCTATGCTGAACAAGAGACAACTTGATGAATCCATGTTTTCATTTCTGAGTCTTGGCAAGGAAATACTGAGCTCAAAGTTGTGCAAGATGACACTTTAAACACACTAGCAGCAGATCCAAGAATCTCTTAAAAGTAGTGTGTACTTTTGGACAATATGCAAAACTGTTCCCTGATACAAAAACATTGTAAAAGCTGCTCATTATAGTGTAGATGACCACACAACTTCATACAAGGAAGTCTAATCAGAGTTCTCATTGAAGCAGCTAATGGTAGCCTCCAATGGTACAAATCTATTTGGGCAAGACCCAAACAACATATGGTGTTTAACATGTGAACTACTTTTGGAGCTATTTTTTTCAACAAAAAGCTTAGGATTATAGAGCAAAATTAGGTAGGCGTAGTAGTTCCCTTGCTGAGTCTTGTGAAAAATTTATTCCGTATGTAGTATAGCATTATCAAGGAATATTTTTCATTAACGAAACCAACAACTACATAATCAGTGAAATCCACATGTGGAGTCTAGGTAGGTTAGACTGTACATAGACTTTACCCCTACCTCATGATGGTAGAGAAGCTGTTTCAGAA
TTTAGTACCAATTCAACAGGTACATATATCAGAGACTCGGGTTTCTGCTGCTTTAGATAAGCTAGCTTACATGGAAGAGCTGGTTAACGATAGGCTTCTGCAAGAGAGAAGCACAGTAGAATCAGAATGCACGTCTTCCTCTGCAAGCACGTCAACAGGATTATTAGACACTCCTAAAAGCAAGCAACCCCGAAGAACGCTGAATGTCTCAGGTCCTGTTAAAGATTACAGTTCCCGTTTGAAGAACTTTTGGTACCCTGTAGCATTCTCCGCAGATCTTAAGGATGACACCATGTTACCGATTGATTGCTTTGAGCAATCGTGGGTGATCTTTCGTGGGGCTGATGGAAAACCTGGATGTGTCCGGAATACATGTGCACATAGAGCCTGCCCCCTTGATCTTGGCTCAGTGAATGAGGGTCGCATCCAATGCCCTTATCATGGATGGGAGTATTCCACTGACGGGAAGTGTGAGAAAATGCCATCAACAAGATTACTGAATGTAAAGATCAAAGCACTGCCCTGCTTTGAGCAAGAGGGAATGATATGGATTTGGCCAGGAAATGATCCACCTGCAGCTACCCTTCCTTCTTTACTACCACCTTCTGGATTTCAGATCCATGCAGAGATAGTCATGGAACTTCCGGTGGAACATGGACTACTTTTAGACAATCTTTTAGATCTTGCACATGCACCTTTCACTCATACATCAACTTTTGCTAAAGGATGGAGTGTACCAAGCTTGGTAAAGTTCTTGACTCCTGCATCTGGTCTGCAAGGATATTGGGATCCATATCCAATAGATATGGAATTTAGACCACCTTGTATGGTTTTATCCACCATTGGCATCTCAAAGCCAGGCAAATTGGAGGGACAGAGCACCAAGCAGTGTTCTACGCACCTTCATCAACTGCATGTTTGCTTACCTGCATCACGACAGAAGACACGGTTATTATATAGAATGTCACTGGATTTTGCTCCCCTGCTGAAACACATCCCCTTCATGCAATACGTTTGGAGACATTTTGCTGAGCAGGTTTTAAATGAAGACTTACGGCTTGTTCTTGGCCAGCAGGATCGCATGCTCAATGGCGCCAATATTTGGAACCTGCCAGTGTCTTATGATAAGCTAGGTGTGAGGTATAGAATATGGAGAGATGCTGTAGATAGTGGAGAAAAGGAACTACCTTTCAGCAAATAAATATTGCTCCATCAAGTACCGGGTTTTACTTTTCAAGATGACTTTGATCTCTTCATTGTCAGCTCACAGCAAAATTCAGTCCAGTTGTTGAGAAGCTCTCTCACTTACTGCAGTTTTCCATATTTTTTCTTGTGAGGAGTTACTTACACCCCTTCTGTAAATATAGCTGTACACAATTTTTTTGTAGGTTCGTGTACAGTTTGAGCAATCTTACATTCCTCACCAACAATTCTATCCTGTCCTGATTGGCACTTGGAAAATCTCATAGGTTCTTTGTAAGTGTCTAGAGTCTTCCCAGCAATGTCGTTCCACCTTGTCATAGAATAATTTCTGATCTCAGATTGCAATTAAGAGTATTCTTTTTGCCAAACAAGAAGCCAGAGATGTTTTGATCTTTGGTAGCAGTTTTGAGCTCAGTTGAATCAGCATGACAGTATTGAAATATTATATCCTTGTAGTAAAAGTATATTACTGTCGTCGATGTTCCTATGCTGAACAAGAGACAACTTGATGAATCCATGTTTTCATTTCTGAGTCTTGGCAAGGAAATACTGAGCTCAAAGTTGTGCAAGATGACACTTTAAACACACTAGCAGCAGATCCAAGAATCTCTTAAAAGTAGTGTGTACTTTTGGACAATATGCAAAACTGTTCCCTGATACAAAAACATTGTAAAAGCTGCTCATTATAGTGTAGATGACCACACAACTTCATACAAGGAAGTCTAATCAGAGTTCTCATTGAAGCAGCTAATGGTAGCCTCCAATGGTACAAATCTATTTGGGCAAGACCCAAACAACATATGGTGTTTAACATGTGAACTACTTTTGGAGCTATTTTTTTCAACAAAAAGCTTAGGATTATAGAGCAAAATTAGGTAGGCGTAGTAGTTCCCTTGCTGAGTCTTGTGAAAAATTTATTCCGTATGTAGTATAGCATTATCAAGGAATATTTTTCATTAACGAAACCAACAACTACATAATCAGTGAAATCCACATGTGGAGTCTAGGTAGGTTAGACTGTACATAGACTTTACCCCTACCTCATGATGGTAGAGAAGCTGTTTCAGAA
Protein sequence
Protein sequence
| translated polypeptide sequence |
>PGSC0003DMT400002343 Chlorophyll synthase
MEELVNDRLLQERSTVESECTSSSASTSTGLLDTPKSKQPRRTLNVSGPVKDYSSRLKNFWYPVAFSADLKDDTMLPIDCFEQSWVIFRGADGKPGCVRNTCAHRACPLDLGSVNEGRIQCPYHGWEYSTDGKCEKMPSTRLLNVKIKALPCFEQEGMIWIWPGNDPPAATLPSLLPPSGFQIHAEIVMELPVEHGLLLDNLLDLAHAPFTHTSTFAKGWSVPSLVKFLTPASGLQGYWDPYPIDMEFRPPCMVLSTIGISKPGKLEGQSTKQCSTHLHQLHVCLPASRQKTRLLYRMSLDFAPLLKHIPFMQYVWRHFAEQVLNEDLRLVLGQQDRMLNGANIWNLPVSYDKLGVRYRIWRDAVDSGEKELPFSK*
MEELVNDRLLQERSTVESECTSSSASTSTGLLDTPKSKQPRRTLNVSGPVKDYSSRLKNFWYPVAFSADLKDDTMLPIDCFEQSWVIFRGADGKPGCVRNTCAHRACPLDLGSVNEGRIQCPYHGWEYSTDGKCEKMPSTRLLNVKIKALPCFEQEGMIWIWPGNDPPAATLPSLLPPSGFQIHAEIVMELPVEHGLLLDNLLDLAHAPFTHTSTFAKGWSVPSLVKFLTPASGLQGYWDPYPIDMEFRPPCMVLSTIGISKPGKLEGQSTKQCSTHLHQLHVCLPASRQKTRLLYRMSLDFAPLLKHIPFMQYVWRHFAEQVLNEDLRLVLGQQDRMLNGANIWNLPVSYDKLGVRYRIWRDAVDSGEKELPFSK*
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] |
DQ423121 Solanum tuberosum cultivar TA3427 chloroplast chlorophyll a oxygenase (At1g44446) gene, partial cds; nuclear gene for chloroplast product.
| Other genome matches | None |
Literature annotations [1]
Literature annotations [1]
| [Associate publication] [Matching publications] |
Combining bioinformatics and phylogenetics to identify large sets of single-copy orthologous genes (COSII) for comparative, evolutionary and systematic studies: a test case in the euasterid plant clade.
Genetics (2006)
Show / hide abstract
Show / hide abstract
We report herein the application of a set of algorithms to identify a large number (2869) of single-copy orthologs (COSII), which are shared by most, if not all, euasterid plant species as well as the model species Arabidopsis. Alignments of the orthologous sequences across multiple species enabled the design of "universal PCR primers," which can be used to amplify the corresponding orthologs from a broad range of taxa, including those lacking any sequence databases. Functional annotation revealed that these conserved, single-copy orthologs encode a higher-than-expected frequency of proteins transported and utilized in organelles and a paucity of proteins associated with cell walls, protein kinases, transcription factors, and signal transduction. The enabling power of this new ortholog resource was demonstrated in phylogenetic studies, as well as in comparative mapping across the plant families tomato (family Solanaceae) and coffee (family Rubiaceae). The combined results of these studies provide compelling evidence that (1) the ancestral species that gave rise to the core euasterid families Solanaceae and Rubiaceae had a basic chromosome number of x=11 or 12.2) No whole-genome duplication event (i.e., polyploidization) occurred immediately prior to or after the radiation of either Solanaceae or Rubiaceae as has been recently suggested.
Wu, F. Mueller, LA. Crouzillat, D. Pétiard, V. Tanksley, SD.
Genetics.
2006.
174(3).
1407-20.
Ontology annotations (4)
Ontology annotations (4)
| [Add ontology annotations] |
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