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Potato locus PGSC0003DMG400027384
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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Links to external databases | None |
Registry name: | None | [Associate registry name] |
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Image | Description | Type |
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![]() ![]() | [Associate accession] |
Accession name:
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Alleles (0) | None | [Add new Allele] |
![]() ![]() | [Associate new locus] |
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![]() ![]() | View PGSC0003DMG400027384 relationships in the stand-alone network browser |
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![]() ![]() | unprocessed genomic sequence region underlying this gene |
>PGSC0003DMG400027384 PGSC_DMv3_219_ch11:41004164..41008897
TTATACAATAAGCTAATAAGAAAATTAAAGAAACACAAAGCTAATTATAAAAAGCTATTTTTTTCAACAATAGAATACAAGTCGTTTGGTTCATGGAATGAGATAGGATATTTCGTAATTAAGTTTGAAATTAAATTTACACTTCGTTTAGTTACCTTAATCAAACAAAGTATAAATTTAATTTTAATTATCCCATCGAATTTGGTGTTATTTCAACTTACCTTTTAAGTGGGATGAATCAGTTTAAGAACTATAATCTCGAAATAACTTAATTTCCAAACCAAACGATCCCAAAGAGAACATTCTTTGGATCAAAGAATTATGCATCGGTCTCTTTTTCGGCCTTTTCTTCCATTGCTCTGTGAAGTGGGTTTCACACTTCTACTTTGTACCGTCTTCATTCGCCTCCTGTAGTCAATATATAAATAGCGAATTTAAACCATGTAACTTAAGATAAAACCAAAAATGACACCAAATATGAATTGATGAGTTAAAATATTTATCGTATTTTAATTAAAAGGAAGTTAAAACTTTGACCAATATATACAATATTATTTTTTATAGAGATAGGACATTCTTCTGATAGAAAAATATTCGATTGACCACTCTATGATCTAGGTGGCTATGCTATTATTTGCACATCAGAAATATTTCATGGTCGATATTACATGATTCGAAATTCAAAGATAATAAATCAACCCTTCTACTATTTGTAACTTAAATGCAATAACTTAATTATGTCTCAATTCAAATAAGTTAGCTCAGCCGAATAAATCTTCATTAATCATGTTTCTCATTTAACTTTAATGACATTTTCATACTCAAAAAATAAATAAGAGAAAATAAGTTAAATGTTAAACTTTTATTTGAGATAAGTTTCGAATCATAACGTGCATCTAACTCAGGCATCACGTGCACGGTTTTAATAAAACCACTGGACGAATAGTTCTTTCTTTTCTAACACGTCTTTAATAATGTAAATATGAAAAGAAAACAATTTTCCTACCAAAATTTTCTCCATTTTTTTTATTTAAGAAAATCATGAGTTATTTTTCTTTATTGATTTTCTGTAAATTAAAAAAAATAAAATCAAAAAGTACCCCCCCTCCCCCCCGCGCCTCAAGAGAACCCAACTAAAAGGGAATAACATCTATTTATTCCAAAAAGTAGTGAAAAATCAAATCCAATTAGTTATGCGTTGAGATTAAGCTAAACTGAATAAAATCTAACTCTTCTTTTTGTAAAGATTTTATCACTTTATCAGATACCTTGCAATAATTAACTATGCCTCAAACCGAAAAATCAAGCGAAAATGATAGGTCGATGCACAAAAAATCTCACTTTACTGTAAGGCTCAAGGAAGAACCACTCCAAAGAAGTTAGCGCAAACAACCTGCTTGACTCAAACATCAAGGACTTCCGCATAAACGTATGATTCAAAGAAAGGCCGCAACCTAAGAAGTGTGATATACGTAGCCCACCTGATGCAAACATTGAAGGTTGATTTCACAACTTGAACCGATAACCTATATACCATACGAAGATAACTGAATCATTGCTCCAACGCTCCCTTCCTCAAAATTAGATTCTATACAGCTTGAAAATGGCATTTGGACAGAGGAGATTTGTTCGAAAAGAAGGAAAGAGGAAGAGATTGGAAAGAAGATAAAAAGGGAAAAGGAGAATTATGGAAGTGATATTAGTAGAAGGAATGTAAAAAGTTTTATGAAATCGTCAAGCGAGAACGAAAGCTAGAAGCAGGCGGGTTACACGTTCCATTGTCCTGAGATGAGATACAAGTGGTGATGATCACCCCAAAGTACGCACTAGCGCCTTTGGCAGACAATTTTGAACTTCATTTCGCGACCTTTCACTTCATGAAACCATAGTCTTCGAGACTGAGGAACAATGGGCTCAACCTCCTATCCTTCTTCACTTGTGCATTAGACTTGGATCGCTTGGCACAAGGGTCAAACTTGTGCCCTACGACACAAGTCCGTCAAAACTCAAAACTTCTTAGACCATAAAGAGCAAGTAAACACAAGAGTTAAAAAGGCAAAGCAAACAAATGCAAGAATATGAAATACCAATGAAATTACTCAATCAAAAGGTTTCAAAAAAGGACATTCAAGGTCCCTAATTGTAGAAAGGTTTGAATACCAAATGCTGAAGAGTTACTAACAACCAAACTACTAAAATGGGAATAGAGCAGAAAAGCATATACCAAAGAACAGCACTACAAAACAATGCAAATAGGAGAACAGGCAAGCACCAAAACAAAGCTAATAATGTCAAAGAACACATCCTAACCGGAAACAGAAACCTCATCAAACTTATCTGCCGTTCCTTTTTTTTTCCCTTTTATGTTGTACTTCCAATTTTAAAGATTAAGATGAGTTGATCAATTCTCACTTGGCCATCATGACCTTGACGAACTCGTCATAGTTGATCTGTCCGTCACCATCCACGTCAGCTTCGCGAATCATTTCATCAACCTCTTCGTCTGTAAGCTTCTCACCTAGGTTAGTCATGACATGGCGAAGCTCAGCAGCAGAGATAAATCCATTCTGATCCTTGTCAAACACTCTAAAAGCTTCCTTGAGCTCCTCCTCGGAATCAGTGTCCTTCATCTTGCGAGCCATCAGGTTAAGGAACTCAGGGAAGTCAATGGTCCCATTCCCATCAGCATCAACTTCATTGATCATGTCTTGAAGCTCAGCCTCAGTTGGGTTCTGCCCCAATGACCGCATCACGGTTCCAAGCTCCTTAGTTGTGATGCAACCTGCAGCACAGTTGCACATAGTTATTGGACATGTTAAGTTTTAAGAGCTTACAAGTTACGAACACTTACAACTAGCAATTCACATCCTCCCCCCCCCCCTCCCCCCTCTCTTTGGTTCTTCTTTATGTATAGATGGGAAAAGGCTTCAACAACAATATGGAAGCCTCAATCCCAAACAAGTTGGGACCGGTTACCTCACTCCTCCATTCAGAGTGTAAGAAAAGGAGAAACAGAAACACAAGTTTCATCACAATACAGTTAACCATCATTAATAAGAATTCTATGCGTCGATCTCCAGATATAAGAAGCCTATGAATGATCCCAACAATGAGGAATACAGTTAACCATCATTAATAAGAATTCTACGCATCAATCTCCAGCTATAAGGAAAATCAAATGGAAACTCATTTCCAAACAGAACAGAAATAAAATTGGCAAAATCACTTGAATTCCATTCATCTAAAAGCATCAACTATTTCAAAAGACAGCAGCTACTCATATTCGAGTACTTACTCTTGCTACCACTATATTTTACTTATTACTGCTATATTCCAATGGCATACTACCAGCCAGTGGATGTTTATAGTTACATACATATAATTACAAACTTGGGTTTTTCTCAAGCACATCTATAGACTTGAACGCACTTTACCTCCCGTGATAAAGCAATGAATGGAAGGTTGTGAAACCCACCATCACAAACACATTACCACATTGAACAAATGGAGACAATCCATCAAGAAATAAAGTCAAAGATATCATGACAAACTAGGTAAATCCACAAATAGAAAAAAAAAAAAAAAGGCAATTGACTTATATAACTTGATATAATCAAGAAAAATGCAACATCCAAAAACACGCTTTTCAAAACTTGCCAAACAAACAAATTCCCTAACTACCAAGAAATATCAGCCAAAGAATTCAACACATTGACCCAAAATCTAGAAGCCACCAATTTCTTTTGCACCCAAGGGTATCGCCTAGTTGTCATTTGTCAATGCAGTGAGTTGGTTCAAATCCCAGCGGATGTAAAAACAATAGGTGATTTCTTCCCACTTAACCAGTACTTGTGGCGGAGGTAAAAAGTACCTAATGAATTAGTCGAAGTGCGTGCAAACTAACCCAATACCACCATTATCAAAAGAAAAAAAGGATCTAGAAGCCACCAGCTTCACAATGGATCCATCAAAAACCAAACCCAAACACAAATTGAAACTACCCAGCTAAAGAAACAGCATGTCCAAGGATCAAACACCGAATCCCAGAATTTCCCCGTAATGAACACAAATCTCATAATTTGCACATCAATATCAAATCATGTATCAAAACAACTGCCATTCCAAATTCTAGAGGCTACCAGTTTATCATAAACCCATCTTCATATCCATTTCTATCAAAACAGCATAACAAAGAATTAAACACCAAATCCAACAATATTCCCTTAAGAAACAAAAACTCTTATCAGTAACACATCAACATCAAATCATAGATCACAGCACTGTCAATCGAAAGCAACATTAACCAAAAGAATTCAACATACTGAACTCAGAATCCGTCAGTTTCACAAATAAATTCATCAGATCAAATCCAAACACAAAAATTGAAACTACCCAACACGGAACACGACAATTAGCAGCACATCAACATCAAATCATAGATCAAAACACTGTTCAACAAATTAGAGGATAAAAAATGAAAAACTCAACGATTGGATCTGAGGTAAAATCAAAAGTTATAAAAGGGAAAAAGAAGAGACCATCTCCATCCTTGTCGAATAGGCTAAAAGCTTCTTTGAACTCCGAGATCTGATCGTCAGTGAGCTGATCCGCCATTATCGATTAATTCACAGAGCTTTTTTTTTAGTGTGTGTGTGTGAGAAAATGGAGAAGGCAAAGAGGTGTTATTATAATGGTCCAAAAATTCCTAAAGGGTACATCGTGGGTGGCCAAGCA
TTATACAATAAGCTAATAAGAAAATTAAAGAAACACAAAGCTAATTATAAAAAGCTATTTTTTTCAACAATAGAATACAAGTCGTTTGGTTCATGGAATGAGATAGGATATTTCGTAATTAAGTTTGAAATTAAATTTACACTTCGTTTAGTTACCTTAATCAAACAAAGTATAAATTTAATTTTAATTATCCCATCGAATTTGGTGTTATTTCAACTTACCTTTTAAGTGGGATGAATCAGTTTAAGAACTATAATCTCGAAATAACTTAATTTCCAAACCAAACGATCCCAAAGAGAACATTCTTTGGATCAAAGAATTATGCATCGGTCTCTTTTTCGGCCTTTTCTTCCATTGCTCTGTGAAGTGGGTTTCACACTTCTACTTTGTACCGTCTTCATTCGCCTCCTGTAGTCAATATATAAATAGCGAATTTAAACCATGTAACTTAAGATAAAACCAAAAATGACACCAAATATGAATTGATGAGTTAAAATATTTATCGTATTTTAATTAAAAGGAAGTTAAAACTTTGACCAATATATACAATATTATTTTTTATAGAGATAGGACATTCTTCTGATAGAAAAATATTCGATTGACCACTCTATGATCTAGGTGGCTATGCTATTATTTGCACATCAGAAATATTTCATGGTCGATATTACATGATTCGAAATTCAAAGATAATAAATCAACCCTTCTACTATTTGTAACTTAAATGCAATAACTTAATTATGTCTCAATTCAAATAAGTTAGCTCAGCCGAATAAATCTTCATTAATCATGTTTCTCATTTAACTTTAATGACATTTTCATACTCAAAAAATAAATAAGAGAAAATAAGTTAAATGTTAAACTTTTATTTGAGATAAGTTTCGAATCATAACGTGCATCTAACTCAGGCATCACGTGCACGGTTTTAATAAAACCACTGGACGAATAGTTCTTTCTTTTCTAACACGTCTTTAATAATGTAAATATGAAAAGAAAACAATTTTCCTACCAAAATTTTCTCCATTTTTTTTATTTAAGAAAATCATGAGTTATTTTTCTTTATTGATTTTCTGTAAATTAAAAAAAATAAAATCAAAAAGTACCCCCCCTCCCCCCCGCGCCTCAAGAGAACCCAACTAAAAGGGAATAACATCTATTTATTCCAAAAAGTAGTGAAAAATCAAATCCAATTAGTTATGCGTTGAGATTAAGCTAAACTGAATAAAATCTAACTCTTCTTTTTGTAAAGATTTTATCACTTTATCAGATACCTTGCAATAATTAACTATGCCTCAAACCGAAAAATCAAGCGAAAATGATAGGTCGATGCACAAAAAATCTCACTTTACTGTAAGGCTCAAGGAAGAACCACTCCAAAGAAGTTAGCGCAAACAACCTGCTTGACTCAAACATCAAGGACTTCCGCATAAACGTATGATTCAAAGAAAGGCCGCAACCTAAGAAGTGTGATATACGTAGCCCACCTGATGCAAACATTGAAGGTTGATTTCACAACTTGAACCGATAACCTATATACCATACGAAGATAACTGAATCATTGCTCCAACGCTCCCTTCCTCAAAATTAGATTCTATACAGCTTGAAAATGGCATTTGGACAGAGGAGATTTGTTCGAAAAGAAGGAAAGAGGAAGAGATTGGAAAGAAGATAAAAAGGGAAAAGGAGAATTATGGAAGTGATATTAGTAGAAGGAATGTAAAAAGTTTTATGAAATCGTCAAGCGAGAACGAAAGCTAGAAGCAGGCGGGTTACACGTTCCATTGTCCTGAGATGAGATACAAGTGGTGATGATCACCCCAAAGTACGCACTAGCGCCTTTGGCAGACAATTTTGAACTTCATTTCGCGACCTTTCACTTCATGAAACCATAGTCTTCGAGACTGAGGAACAATGGGCTCAACCTCCTATCCTTCTTCACTTGTGCATTAGACTTGGATCGCTTGGCACAAGGGTCAAACTTGTGCCCTACGACACAAGTCCGTCAAAACTCAAAACTTCTTAGACCATAAAGAGCAAGTAAACACAAGAGTTAAAAAGGCAAAGCAAACAAATGCAAGAATATGAAATACCAATGAAATTACTCAATCAAAAGGTTTCAAAAAAGGACATTCAAGGTCCCTAATTGTAGAAAGGTTTGAATACCAAATGCTGAAGAGTTACTAACAACCAAACTACTAAAATGGGAATAGAGCAGAAAAGCATATACCAAAGAACAGCACTACAAAACAATGCAAATAGGAGAACAGGCAAGCACCAAAACAAAGCTAATAATGTCAAAGAACACATCCTAACCGGAAACAGAAACCTCATCAAACTTATCTGCCGTTCCTTTTTTTTTCCCTTTTATGTTGTACTTCCAATTTTAAAGATTAAGATGAGTTGATCAATTCTCACTTGGCCATCATGACCTTGACGAACTCGTCATAGTTGATCTGTCCGTCACCATCCACGTCAGCTTCGCGAATCATTTCATCAACCTCTTCGTCTGTAAGCTTCTCACCTAGGTTAGTCATGACATGGCGAAGCTCAGCAGCAGAGATAAATCCATTCTGATCCTTGTCAAACACTCTAAAAGCTTCCTTGAGCTCCTCCTCGGAATCAGTGTCCTTCATCTTGCGAGCCATCAGGTTAAGGAACTCAGGGAAGTCAATGGTCCCATTCCCATCAGCATCAACTTCATTGATCATGTCTTGAAGCTCAGCCTCAGTTGGGTTCTGCCCCAATGACCGCATCACGGTTCCAAGCTCCTTAGTTGTGATGCAACCTGCAGCACAGTTGCACATAGTTATTGGACATGTTAAGTTTTAAGAGCTTACAAGTTACGAACACTTACAACTAGCAATTCACATCCTCCCCCCCCCCCTCCCCCCTCTCTTTGGTTCTTCTTTATGTATAGATGGGAAAAGGCTTCAACAACAATATGGAAGCCTCAATCCCAAACAAGTTGGGACCGGTTACCTCACTCCTCCATTCAGAGTGTAAGAAAAGGAGAAACAGAAACACAAGTTTCATCACAATACAGTTAACCATCATTAATAAGAATTCTATGCGTCGATCTCCAGATATAAGAAGCCTATGAATGATCCCAACAATGAGGAATACAGTTAACCATCATTAATAAGAATTCTACGCATCAATCTCCAGCTATAAGGAAAATCAAATGGAAACTCATTTCCAAACAGAACAGAAATAAAATTGGCAAAATCACTTGAATTCCATTCATCTAAAAGCATCAACTATTTCAAAAGACAGCAGCTACTCATATTCGAGTACTTACTCTTGCTACCACTATATTTTACTTATTACTGCTATATTCCAATGGCATACTACCAGCCAGTGGATGTTTATAGTTACATACATATAATTACAAACTTGGGTTTTTCTCAAGCACATCTATAGACTTGAACGCACTTTACCTCCCGTGATAAAGCAATGAATGGAAGGTTGTGAAACCCACCATCACAAACACATTACCACATTGAACAAATGGAGACAATCCATCAAGAAATAAAGTCAAAGATATCATGACAAACTAGGTAAATCCACAAATAGAAAAAAAAAAAAAAAGGCAATTGACTTATATAACTTGATATAATCAAGAAAAATGCAACATCCAAAAACACGCTTTTCAAAACTTGCCAAACAAACAAATTCCCTAACTACCAAGAAATATCAGCCAAAGAATTCAACACATTGACCCAAAATCTAGAAGCCACCAATTTCTTTTGCACCCAAGGGTATCGCCTAGTTGTCATTTGTCAATGCAGTGAGTTGGTTCAAATCCCAGCGGATGTAAAAACAATAGGTGATTTCTTCCCACTTAACCAGTACTTGTGGCGGAGGTAAAAAGTACCTAATGAATTAGTCGAAGTGCGTGCAAACTAACCCAATACCACCATTATCAAAAGAAAAAAAGGATCTAGAAGCCACCAGCTTCACAATGGATCCATCAAAAACCAAACCCAAACACAAATTGAAACTACCCAGCTAAAGAAACAGCATGTCCAAGGATCAAACACCGAATCCCAGAATTTCCCCGTAATGAACACAAATCTCATAATTTGCACATCAATATCAAATCATGTATCAAAACAACTGCCATTCCAAATTCTAGAGGCTACCAGTTTATCATAAACCCATCTTCATATCCATTTCTATCAAAACAGCATAACAAAGAATTAAACACCAAATCCAACAATATTCCCTTAAGAAACAAAAACTCTTATCAGTAACACATCAACATCAAATCATAGATCACAGCACTGTCAATCGAAAGCAACATTAACCAAAAGAATTCAACATACTGAACTCAGAATCCGTCAGTTTCACAAATAAATTCATCAGATCAAATCCAAACACAAAAATTGAAACTACCCAACACGGAACACGACAATTAGCAGCACATCAACATCAAATCATAGATCAAAACACTGTTCAACAAATTAGAGGATAAAAAATGAAAAACTCAACGATTGGATCTGAGGTAAAATCAAAAGTTATAAAAGGGAAAAAGAAGAGACCATCTCCATCCTTGTCGAATAGGCTAAAAGCTTCTTTGAACTCCGAGATCTGATCGTCAGTGAGCTGATCCGCCATTATCGATTAATTCACAGAGCTTTTTTTTTAGTGTGTGTGTGTGAGAAAATGGAGAAGGCAAAGAGGTGTTATTATAATGGTCCAAAAATTCCTAAAGGGTACATCGTGGGTGGCCAAGCA
Download sequence region |
Get flanking sequences on PGSC_DMv3_219_ch11
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Ontology terms | None | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>PGSC0003DMT400070439 Calmodulin
TTTTTTTCTATTTGTGGATTTACCTAGTTTGTCATGATATCTTTGACTTTATTTCTTGATGGATTGTCTCCATTTGTTCAATGTGGTAATGTGTTTGTGATGGTGGGTTTCACAACCTTCCATTCATTGCTTTATCACGGGAGGTAAAGTGCGTTCAAGTCTATAGATGTGCTTGAGAAAAACCCAAGTTTGTAATTATATGTATGTAACTATAAACATCCACTGGCTGGTAGTATGCCATTGGAATATAGCAGTAATAAGTAAAATATAGTGGTAGCAAGAGTAAGTACTCGAATATGAGTAGCTGCTGTCTTTTGAAATAGTTGATGCTTTTAGATGAATGGAATTCAAGTGATTTTGCCAATTTTATTTCTGTTCTGTTTGGAAATGAGTTTCCATTTGATTTTCCTTATAGCTGGAGATTGATGCGTAGAATTCTTATTAATGATGGTTAACTGTATTCCTCATTGTTGGGATCATTCATAGGCTTCTTATATCTGGAGATCGACGCATAGAATTCTTATTAATGATGGTTAACTGTATTGTGATGAAACTTGTGTTTCTGTTTCTCCTTTTCTTACACTCTGAATGGAGGAGTGAGGTAACCGGTCCCAACTTGTTTGGGATTGAGGCTTCCATATTGTTGTTGAAGCCTTTTCCCATCTATACATAAAGAAGAACCAAAGAGAGGGGGGAGGGGGGGGGGGAGGATGTGAATTGCTAGTTGTAAGTGTTCGTAACTTGTAAGCTCTTAAAACTTAACATGTCCAATAACTATGTGCAACTGTGCTGCAGGTTGCATCACAACTAAGGAGCTTGGAACCGTGATGCGGTCATTGGGGCAGAACCCAACTGAGGCTGAGCTTCAAGACATGATCAATGAAGTTGATGCTGATGGGAATGGGACCATTGACTTCCCTGAGTTCCTTAACCTGATGGCTCGCAAGATGAAGGACACTGATTCCGAGGAGGAGCTCAAGGAAGCTTTTAGAGTGTTTGACAAGGATCAGAATGGATTTATCTCTGCTGCTGAGCTTCGCCATGTCATGACTAACCTAGGTGAGAAGCTTACAGACGAAGAGGTTGATGAAATGATTCGCGAAGCTGACGTGGATGGTGACGGACAGATCAACTATGACGAGTTCGTCAAGGTCATGATGGCCAAGTGAGAATTGATCAACTCATCTTAATCTTTAAAATTGGAAGTACAACATAAAAGGGAAAAAAAAAGGAACGGCAGATAAGTTTGATGAGGTTTCTGTTTCCGGTTAGGATGTGTTCTTTGACATTATTAGCTTTGTTTTGGTGCTTGCCTGTTCTCCTATTTGCATTGTTTTGTAGTGCTGTTCTTTGGTATATGCTTTTCTGCTCTATTCCCATTTTAGTAGTTTGGTTGTTAGTAACTCTTCAGCATTTGGTATTCAAACCTTTCTACAATTAGGGACCTTGAATGTCCTTTTTTGAAACCTTTTGATTGAGTAATTTCATTGGTATTTCATATTCTTGCATTTGTTTGCTTTGCCTTTTTAACTCTTGTGTTTACTTGCTCTTTATGGTCTAAGAAGTTTTGAGTTTTGACGGACTTGTGTCGTAGGGCACAAGTTTGACCCTTGTGCCAAGCGATCCAAGTCTAATGCACAAGTGAAGAAGGATAGGAGGTTGAGCCCATTGTTCCTCAGTCTCGAAGACTATGGTTTCATGAAGTGAAAGGTCGCGAAATGAAGTTCAAAATTGTCTGCCAAAGGCGCTAGTGCGTACTTTGGGGTGATCATCACCACTTGTATCTCATCTCAGGACAATGGAACGTGTAACCCGCCTGCTTCTAGCTTTCGTTCTCGCTTGACGATTTCATAAAACTTTTTACATTCCTTCTACTAATATCACTTCCATAATTCTCCTTTTCCCTTTTTATCTTCTTTCCAATCTCTTCCTCTTTCCTTCTTTTCGAACAAATCTCCTCTGTCCAAATGCCATTTTCAAGCTGTATAGAATCTAATTTTGAGGAAGGGAGCGTTGGAGCAATGATTCAGTTATCTTCGTATGGTATATAGGTTATCGGTTCAAGTTGTGAAATCAACCTTCAATGTTTGCATCAGGTGGGCTACGTATATCACACTTCTTAGGTTGCGGCCTTTCTTTGAATCATACGTTTATGCGGAAGTCCTTGATGTTTGAGTCAAGCAGGTTGTTTGCGCTAACTTCTTTGGAGTGGTTCTTCCTTGAGCCTTACAGTAAAGTGAGATTTTTTGTGCATCGACCTATCATTTTCGCTTGATTTTTCGGTTTGAGGCATAGTTAATTATTGCAAGGTATCTGATAAAGTGATAAAATCTTTACAAAAAGAAGAGTTAGATTTTATTCAGTTTAGCTTAATCTCAACGCATAACTAATTGGATTTGATTTTTCACTACTTTTTGGAATAAATAGATGTTATTCCCTTTTAGTTGGGTTCTCTTGAGGCGCGGGGGGGAGGGGGGGTACTTTTTGATTTTATTTTTTTTAATTTACAGAAAATCAATAAAGAAAAATAACTCATGATTTTCTTAAATAAAAAAAATGGAGAAAATTTTGGTAGGAAAATTGTTTTCTTTTCATATTTACATTATTAAAGACGTGTTAGAAAAGAAAGAACTATTCGTCCAGTGGTTTTATTAAAACCGTGCACGTGATGCCTGAGTTAGATGCACGTTATGATTCGAAACTTATCTCAAATAAAAGTTTAACATTTAACTTATTTTCTCTTATTTATTTTTTGAGTATGAAAATGTCATTAAAGTTAAATGAGAAACATGATTAATGAAGATTTATTCGGCTGAGCTAACTTATTTGAATTGAGACATAATTAAGTTATTGCATTTAAGTTACAAATAGTAGAAGGGTTGATTTATTATCTTTGAATTTCGAATCATGTAATATCGACCATGAAATATTTCTGATGTGCAAATAATAGCATAGCCACCTAGATCATAGAGTGGTCAATCGAATATTTTTCTATCAGAAGAATGTCCTATCTCTATAAAAAATAATATTGTATATATTGGTCAAAGTTTTAACTTCCTTTTAATTAAAATACGATAAATATTTTAACTCATCAATTCATATTTGGTGTCATTTTTGGTTTTATCTTAAGTTACATGGTTTAAATTCGCTATTTATATATTGACTACAGGAGGCGAATGAAGACGGTACAAAGTAGAAGTGTGAAACCCACTTCACAGAGCAATGGAAGAAAAGGCCGAAAAAGAGACCGATGCATAATTCTTTGATCCAAAGAATGTTCTCTTTGGGATCGTTTGGTTTGGAAATTAAGTTATTTCGAGATTATAGTTCTTAAACTGATTCATCCCACTTAAAAGGTAAGTTGAAATAACACCAAATTCGATGGGATAATTAAAATTAAATTTATACTTTGTTTGATTAAGGTAACTAAACGAAGTGTAAATTTAATTTCAAACTTAATTACGAAATATCCTATCTCATTCCATGAACCAAACGACTTGTATTCTATTGTTGAAAAAAATAGCTTTTTATAATTAGCTTTGTGTTTCTTTAATTTTCTTATTAGCTTATTGTATAA
TTTTTTTCTATTTGTGGATTTACCTAGTTTGTCATGATATCTTTGACTTTATTTCTTGATGGATTGTCTCCATTTGTTCAATGTGGTAATGTGTTTGTGATGGTGGGTTTCACAACCTTCCATTCATTGCTTTATCACGGGAGGTAAAGTGCGTTCAAGTCTATAGATGTGCTTGAGAAAAACCCAAGTTTGTAATTATATGTATGTAACTATAAACATCCACTGGCTGGTAGTATGCCATTGGAATATAGCAGTAATAAGTAAAATATAGTGGTAGCAAGAGTAAGTACTCGAATATGAGTAGCTGCTGTCTTTTGAAATAGTTGATGCTTTTAGATGAATGGAATTCAAGTGATTTTGCCAATTTTATTTCTGTTCTGTTTGGAAATGAGTTTCCATTTGATTTTCCTTATAGCTGGAGATTGATGCGTAGAATTCTTATTAATGATGGTTAACTGTATTCCTCATTGTTGGGATCATTCATAGGCTTCTTATATCTGGAGATCGACGCATAGAATTCTTATTAATGATGGTTAACTGTATTGTGATGAAACTTGTGTTTCTGTTTCTCCTTTTCTTACACTCTGAATGGAGGAGTGAGGTAACCGGTCCCAACTTGTTTGGGATTGAGGCTTCCATATTGTTGTTGAAGCCTTTTCCCATCTATACATAAAGAAGAACCAAAGAGAGGGGGGAGGGGGGGGGGGAGGATGTGAATTGCTAGTTGTAAGTGTTCGTAACTTGTAAGCTCTTAAAACTTAACATGTCCAATAACTATGTGCAACTGTGCTGCAGGTTGCATCACAACTAAGGAGCTTGGAACCGTGATGCGGTCATTGGGGCAGAACCCAACTGAGGCTGAGCTTCAAGACATGATCAATGAAGTTGATGCTGATGGGAATGGGACCATTGACTTCCCTGAGTTCCTTAACCTGATGGCTCGCAAGATGAAGGACACTGATTCCGAGGAGGAGCTCAAGGAAGCTTTTAGAGTGTTTGACAAGGATCAGAATGGATTTATCTCTGCTGCTGAGCTTCGCCATGTCATGACTAACCTAGGTGAGAAGCTTACAGACGAAGAGGTTGATGAAATGATTCGCGAAGCTGACGTGGATGGTGACGGACAGATCAACTATGACGAGTTCGTCAAGGTCATGATGGCCAAGTGAGAATTGATCAACTCATCTTAATCTTTAAAATTGGAAGTACAACATAAAAGGGAAAAAAAAAGGAACGGCAGATAAGTTTGATGAGGTTTCTGTTTCCGGTTAGGATGTGTTCTTTGACATTATTAGCTTTGTTTTGGTGCTTGCCTGTTCTCCTATTTGCATTGTTTTGTAGTGCTGTTCTTTGGTATATGCTTTTCTGCTCTATTCCCATTTTAGTAGTTTGGTTGTTAGTAACTCTTCAGCATTTGGTATTCAAACCTTTCTACAATTAGGGACCTTGAATGTCCTTTTTTGAAACCTTTTGATTGAGTAATTTCATTGGTATTTCATATTCTTGCATTTGTTTGCTTTGCCTTTTTAACTCTTGTGTTTACTTGCTCTTTATGGTCTAAGAAGTTTTGAGTTTTGACGGACTTGTGTCGTAGGGCACAAGTTTGACCCTTGTGCCAAGCGATCCAAGTCTAATGCACAAGTGAAGAAGGATAGGAGGTTGAGCCCATTGTTCCTCAGTCTCGAAGACTATGGTTTCATGAAGTGAAAGGTCGCGAAATGAAGTTCAAAATTGTCTGCCAAAGGCGCTAGTGCGTACTTTGGGGTGATCATCACCACTTGTATCTCATCTCAGGACAATGGAACGTGTAACCCGCCTGCTTCTAGCTTTCGTTCTCGCTTGACGATTTCATAAAACTTTTTACATTCCTTCTACTAATATCACTTCCATAATTCTCCTTTTCCCTTTTTATCTTCTTTCCAATCTCTTCCTCTTTCCTTCTTTTCGAACAAATCTCCTCTGTCCAAATGCCATTTTCAAGCTGTATAGAATCTAATTTTGAGGAAGGGAGCGTTGGAGCAATGATTCAGTTATCTTCGTATGGTATATAGGTTATCGGTTCAAGTTGTGAAATCAACCTTCAATGTTTGCATCAGGTGGGCTACGTATATCACACTTCTTAGGTTGCGGCCTTTCTTTGAATCATACGTTTATGCGGAAGTCCTTGATGTTTGAGTCAAGCAGGTTGTTTGCGCTAACTTCTTTGGAGTGGTTCTTCCTTGAGCCTTACAGTAAAGTGAGATTTTTTGTGCATCGACCTATCATTTTCGCTTGATTTTTCGGTTTGAGGCATAGTTAATTATTGCAAGGTATCTGATAAAGTGATAAAATCTTTACAAAAAGAAGAGTTAGATTTTATTCAGTTTAGCTTAATCTCAACGCATAACTAATTGGATTTGATTTTTCACTACTTTTTGGAATAAATAGATGTTATTCCCTTTTAGTTGGGTTCTCTTGAGGCGCGGGGGGGAGGGGGGGTACTTTTTGATTTTATTTTTTTTAATTTACAGAAAATCAATAAAGAAAAATAACTCATGATTTTCTTAAATAAAAAAAATGGAGAAAATTTTGGTAGGAAAATTGTTTTCTTTTCATATTTACATTATTAAAGACGTGTTAGAAAAGAAAGAACTATTCGTCCAGTGGTTTTATTAAAACCGTGCACGTGATGCCTGAGTTAGATGCACGTTATGATTCGAAACTTATCTCAAATAAAAGTTTAACATTTAACTTATTTTCTCTTATTTATTTTTTGAGTATGAAAATGTCATTAAAGTTAAATGAGAAACATGATTAATGAAGATTTATTCGGCTGAGCTAACTTATTTGAATTGAGACATAATTAAGTTATTGCATTTAAGTTACAAATAGTAGAAGGGTTGATTTATTATCTTTGAATTTCGAATCATGTAATATCGACCATGAAATATTTCTGATGTGCAAATAATAGCATAGCCACCTAGATCATAGAGTGGTCAATCGAATATTTTTCTATCAGAAGAATGTCCTATCTCTATAAAAAATAATATTGTATATATTGGTCAAAGTTTTAACTTCCTTTTAATTAAAATACGATAAATATTTTAACTCATCAATTCATATTTGGTGTCATTTTTGGTTTTATCTTAAGTTACATGGTTTAAATTCGCTATTTATATATTGACTACAGGAGGCGAATGAAGACGGTACAAAGTAGAAGTGTGAAACCCACTTCACAGAGCAATGGAAGAAAAGGCCGAAAAAGAGACCGATGCATAATTCTTTGATCCAAAGAATGTTCTCTTTGGGATCGTTTGGTTTGGAAATTAAGTTATTTCGAGATTATAGTTCTTAAACTGATTCATCCCACTTAAAAGGTAAGTTGAAATAACACCAAATTCGATGGGATAATTAAAATTAAATTTATACTTTGTTTGATTAAGGTAACTAAACGAAGTGTAAATTTAATTTCAAACTTAATTACGAAATATCCTATCTCATTCCATGAACCAAACGACTTGTATTCTATTGTTGAAAAAAATAGCTTTTTATAATTAGCTTTGTGTTTCTTTAATTTTCTTATTAGCTTATTGTATAA
![]() ![]() | translated polypeptide sequence |
>PGSC0003DMT400070439 Calmodulin
MCNCAAGCITTKELGTVMRSLGQNPTEAELQDMINEVDADGNGTIDFPEFLNLMARKMKDTDSEEELKEAFRVFDKDQNGFISAAELRHVMTNLGEKLTDEEVDEMIREADVDGDGQINYDEFVKVMMAK*
MCNCAAGCITTKELGTVMRSLGQNPTEAELQDMINEVDADGNGTIDFPEFLNLMARKMKDTDSEEELKEAFRVFDKDQNGFISAAELRHVMTNLGEKLTDEEVDEMIREADVDGDGQINYDEFVKVMMAK*
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Ontology terms | None | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>PGSC0003DMT400070437 Calmodulin
TGCTTGGCCACCCACGATGTACCCTTTAGGAATTTTTGGACCATTATAATAACACCTCTTTGCCTTCTCCATTTTCTCACACACACACACTAAAAAAAAAGCTCTGTGAATTAATCGATAATGGCGGATCAGCTCACTGACGATCAGATCTCGGAGTTCAAAGAAGCTTTTAGCCTATTCGACAAGGATGGAGATGGTTGCATCACAACTAAGGAGCTTGGAACCGTGATGCGGTCATTGGGGCAGAACCCAACTGAGGCTGAGCTTCAAGACATGATCAATGAAGTTGATGCTGATGGGAATGGGACCATTGACTTCCCTGAGTTCCTTAACCTGATGGCTCGCAAGATGAAGGACACTGATTCCGAGGAGGAGCTCAAGGAAGCTTTTAGAGTGTTTGACAAGGATCAGAATGGATTTATCTCTGCTGCTGAGCTTCGCCATGTCATGACTAACCTAGGTGAGAAGCTTACAGACGAAGAGGTTGATGAAATGATTCGCGAAGCTGACGTGGATGGTGACGGACAGATCAACTATGACGAGTTCGTCAAGGTCATGATGGCCAAGTGAGAATTGATCAACTCATCTTAATCTTTAAAATTGGAAGTACAACATAAAAGGGAAAAAAAAAGGAACGGCAGATAAGTTTGATGAGGTTTCTGTTTCCGGTTAGGATGTGTTCTTTGACATTATTAGCTTTGTTTTGGTGCTTGCCTGTTCTCCTATTTGCATTGTTTTGTAGTGCTGTTCTTTGGTATATGCTTTTCTGCTCTATTCCCATTTTAGTAGTTTGGTTGTTAGTAACTCTTCAGCATTTGGTATTCAAACCTTTCTACAATTAGGGACCTTGAATGTCCTTTTTTGAAACCTTTTGATTGAGTAATTTCATTGGTATTTCATATTCTTGCATTTGTTTGCTTTGCCTTTTTAACTCTTGTGTTTACTTGCTCTTTATGGTCTAAGAAGTTTTGAGTTTTGACGGACTTGTGTCGTAGGGCACAAGTTTGACCCTTGTGCCAAGCGATCCAAGTCTAATGCACAAGTGAAGAAGGATAGGAGGTTGAGCCCATTGTTCCTCAGTCTCGAAGACTATGGTTTCATGAAGTGAAAGGTCGCGAAATGAAGTTCAAAATTGTCTGCCAAAGGCGCTAGTGCGTACTTTGGGGTGATCATCACCACTTGTATCTCATCTCAGGACAATGGAACGTGTAACCCGCCTGCTTCTAGCTTTCGTTCTCGCTTGACGATTTCATAAAACTTTTTACATTCCTTCTACTAATATCACTTCCATAATTCTCCTTTTCCCTTTTTATCTTCTTTCCAATCTCTTCCTCTTTCCTTCTTTTCGAACAAATCTCCTCTGTCCAAATGCCATTTTCAAGCTGTATAGAATCTAATTTTGAGGAAGGGAGCGTTGGAGCAATGATTCAGTTATCTTCGTATGGTATATAGGTTATCGGTTCAAGTTGTGAAATCAACCTTCAATGTTTGCATCAGGTGGGCTACGTATATCACACTTCTTAGGTTGCGGCCTTTCTTTGAATCATACGTTTATGCGGAAGTCCTTGATGTTTGAGTCAAGCAGGTTGTTTGCGCTAACTTCTTTGGAGTGGTTCTTCCTTGAGCCTTACAGTAAAGTGAGATTTTTTGTGCATCGACCTATCATTTTCGCTTGATTTTTCGGTTTGAGGCATAGTTAATTATTGCAAGGTATCTGATAAAGTGATAAAATCTTTACAAAAAGAAGAGTTAGATTTTATTCAGTTTAGCTTAATCTCAACGCATAACTAATTGGATTTGATTTTTCACTACTTTTTGGAATAAATAGATGTTATTCCCTTTTAGTTGGGTT
TGCTTGGCCACCCACGATGTACCCTTTAGGAATTTTTGGACCATTATAATAACACCTCTTTGCCTTCTCCATTTTCTCACACACACACACTAAAAAAAAAGCTCTGTGAATTAATCGATAATGGCGGATCAGCTCACTGACGATCAGATCTCGGAGTTCAAAGAAGCTTTTAGCCTATTCGACAAGGATGGAGATGGTTGCATCACAACTAAGGAGCTTGGAACCGTGATGCGGTCATTGGGGCAGAACCCAACTGAGGCTGAGCTTCAAGACATGATCAATGAAGTTGATGCTGATGGGAATGGGACCATTGACTTCCCTGAGTTCCTTAACCTGATGGCTCGCAAGATGAAGGACACTGATTCCGAGGAGGAGCTCAAGGAAGCTTTTAGAGTGTTTGACAAGGATCAGAATGGATTTATCTCTGCTGCTGAGCTTCGCCATGTCATGACTAACCTAGGTGAGAAGCTTACAGACGAAGAGGTTGATGAAATGATTCGCGAAGCTGACGTGGATGGTGACGGACAGATCAACTATGACGAGTTCGTCAAGGTCATGATGGCCAAGTGAGAATTGATCAACTCATCTTAATCTTTAAAATTGGAAGTACAACATAAAAGGGAAAAAAAAAGGAACGGCAGATAAGTTTGATGAGGTTTCTGTTTCCGGTTAGGATGTGTTCTTTGACATTATTAGCTTTGTTTTGGTGCTTGCCTGTTCTCCTATTTGCATTGTTTTGTAGTGCTGTTCTTTGGTATATGCTTTTCTGCTCTATTCCCATTTTAGTAGTTTGGTTGTTAGTAACTCTTCAGCATTTGGTATTCAAACCTTTCTACAATTAGGGACCTTGAATGTCCTTTTTTGAAACCTTTTGATTGAGTAATTTCATTGGTATTTCATATTCTTGCATTTGTTTGCTTTGCCTTTTTAACTCTTGTGTTTACTTGCTCTTTATGGTCTAAGAAGTTTTGAGTTTTGACGGACTTGTGTCGTAGGGCACAAGTTTGACCCTTGTGCCAAGCGATCCAAGTCTAATGCACAAGTGAAGAAGGATAGGAGGTTGAGCCCATTGTTCCTCAGTCTCGAAGACTATGGTTTCATGAAGTGAAAGGTCGCGAAATGAAGTTCAAAATTGTCTGCCAAAGGCGCTAGTGCGTACTTTGGGGTGATCATCACCACTTGTATCTCATCTCAGGACAATGGAACGTGTAACCCGCCTGCTTCTAGCTTTCGTTCTCGCTTGACGATTTCATAAAACTTTTTACATTCCTTCTACTAATATCACTTCCATAATTCTCCTTTTCCCTTTTTATCTTCTTTCCAATCTCTTCCTCTTTCCTTCTTTTCGAACAAATCTCCTCTGTCCAAATGCCATTTTCAAGCTGTATAGAATCTAATTTTGAGGAAGGGAGCGTTGGAGCAATGATTCAGTTATCTTCGTATGGTATATAGGTTATCGGTTCAAGTTGTGAAATCAACCTTCAATGTTTGCATCAGGTGGGCTACGTATATCACACTTCTTAGGTTGCGGCCTTTCTTTGAATCATACGTTTATGCGGAAGTCCTTGATGTTTGAGTCAAGCAGGTTGTTTGCGCTAACTTCTTTGGAGTGGTTCTTCCTTGAGCCTTACAGTAAAGTGAGATTTTTTGTGCATCGACCTATCATTTTCGCTTGATTTTTCGGTTTGAGGCATAGTTAATTATTGCAAGGTATCTGATAAAGTGATAAAATCTTTACAAAAAGAAGAGTTAGATTTTATTCAGTTTAGCTTAATCTCAACGCATAACTAATTGGATTTGATTTTTCACTACTTTTTGGAATAAATAGATGTTATTCCCTTTTAGTTGGGTT
![]() ![]() | translated polypeptide sequence |
>PGSC0003DMT400070437 Calmodulin
MADQLTDDQISEFKEAFSLFDKDGDGCITTKELGTVMRSLGQNPTEAELQDMINEVDADGNGTIDFPEFLNLMARKMKDTDSEEELKEAFRVFDKDQNGFISAAELRHVMTNLGEKLTDEEVDEMIREADVDGDGQINYDEFVKVMMAK*
MADQLTDDQISEFKEAFSLFDKDGDGCITTKELGTVMRSLGQNPTEAELQDMINEVDADGNGTIDFPEFLNLMARKMKDTDSEEELKEAFRVFDKDQNGFISAAELRHVMTNLGEKLTDEEVDEMIREADVDGDGQINYDEFVKVMMAK*
![]() ![]() |
Ontology terms | None | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>PGSC0003DMT400070438 Calmodulin
TGCTTGGCCACCCACGATGTACCCTTTAGGAATTTTTGGACCATTATAATAACACCTCTTTGCCTTCTCCATTTTCTCACACACACACACTAAAAAAAAAGCTCTGTGAATTAATCGATAATGGCGGATCAGCTCACTGACGATCAGATCTCGGAGTTCAAAGAAGCTTTTAGCCTATTCGACAAGGATGGAGATGGTCTCTTCTTTTTCCCTTTTATAACTTTTGATTTTACCTCAGATCCAATCGTTGAGTTTTTCATTTTTTATCCTCTAATTTGTTGAACAGTGTTTTGATCTATGATTTGATGTTGATGTGCTGCTAATTGTCGTGTTCCGTGTTGGGTAGTTTCAATTTTTGTGTTTGGATTTGATCTGATGAATTTATTTGTGAAACTGACGGATTCTGAGTTCAGTATGTTGAATTCTTTTGGTTAATGTTGCTTTCGATTGACAGTGCTGTGATCTATGATTTGATGTTGATGTGTTACTGATAAGAGTTTTTGTTTCTTAAGGGAATATTGTTGGATTTGGTGTTTAATTCTTTGTTATGCTGTTTTGATAGAAATGGATATGAAGATGGGTTTATGATAAACTGGTAGCCTCTAGAATTTGGAATGGCAGTTGTTTTGATACATGATTTGATATTGATGTGCAAATTATGAGATTTGTGTTCATTACGGGGAAATTCTGGGATTCGGTGTTTGATCCTTGGACATGCTGTTTCTTTAGCTGGGTAGTTTCAATTTGTGTTTGGGTTTGGTTTTTGATGGATCCATTGTGAAGCTGGTGGCTTCTAGATCCTTTTTTTCTTTTGATAATGGTGGTATTGGGTTAGTTTGCACGCACTTCGACTAATTCATTAGGTACTTTTTACCTCCGCCACAAGTACTGGTTAAGTGGGAAGAAATCACCTATTGTTTTTACATCCGCTGGGATTTGAACCAACTCACTGCATTGACAAATGACAACTAGGCGATACCCTTGGGTGCAAAAGAAATTGGTGGCTTCTAGATTTTGGGTCAATGTGTTGAATTCTTTGGCTGATATTTCTTGGTAGTTAGGGAATTTGTTTGTTTGGCAAGTTTTGAAAAG
TGCTTGGCCACCCACGATGTACCCTTTAGGAATTTTTGGACCATTATAATAACACCTCTTTGCCTTCTCCATTTTCTCACACACACACACTAAAAAAAAAGCTCTGTGAATTAATCGATAATGGCGGATCAGCTCACTGACGATCAGATCTCGGAGTTCAAAGAAGCTTTTAGCCTATTCGACAAGGATGGAGATGGTCTCTTCTTTTTCCCTTTTATAACTTTTGATTTTACCTCAGATCCAATCGTTGAGTTTTTCATTTTTTATCCTCTAATTTGTTGAACAGTGTTTTGATCTATGATTTGATGTTGATGTGCTGCTAATTGTCGTGTTCCGTGTTGGGTAGTTTCAATTTTTGTGTTTGGATTTGATCTGATGAATTTATTTGTGAAACTGACGGATTCTGAGTTCAGTATGTTGAATTCTTTTGGTTAATGTTGCTTTCGATTGACAGTGCTGTGATCTATGATTTGATGTTGATGTGTTACTGATAAGAGTTTTTGTTTCTTAAGGGAATATTGTTGGATTTGGTGTTTAATTCTTTGTTATGCTGTTTTGATAGAAATGGATATGAAGATGGGTTTATGATAAACTGGTAGCCTCTAGAATTTGGAATGGCAGTTGTTTTGATACATGATTTGATATTGATGTGCAAATTATGAGATTTGTGTTCATTACGGGGAAATTCTGGGATTCGGTGTTTGATCCTTGGACATGCTGTTTCTTTAGCTGGGTAGTTTCAATTTGTGTTTGGGTTTGGTTTTTGATGGATCCATTGTGAAGCTGGTGGCTTCTAGATCCTTTTTTTCTTTTGATAATGGTGGTATTGGGTTAGTTTGCACGCACTTCGACTAATTCATTAGGTACTTTTTACCTCCGCCACAAGTACTGGTTAAGTGGGAAGAAATCACCTATTGTTTTTACATCCGCTGGGATTTGAACCAACTCACTGCATTGACAAATGACAACTAGGCGATACCCTTGGGTGCAAAAGAAATTGGTGGCTTCTAGATTTTGGGTCAATGTGTTGAATTCTTTGGCTGATATTTCTTGGTAGTTAGGGAATTTGTTTGTTTGGCAAGTTTTGAAAAG
![]() ![]() | translated polypeptide sequence |
>PGSC0003DMT400070438 Calmodulin
MADQLTDDQISEFKEAFSLFDKDGDGLFFFPFITFDFTSDPIVEFFIFYPLIC*
MADQLTDDQISEFKEAFSLFDKDGDGLFFFPFITFDFTSDPIVEFFIFYPLIC*
![]() ![]() |
![]() ![]() | [Associate new unigene] |
Unigene ID:
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GenBank accessions | None | [Associate new genbank sequence] |
Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
Genome-wide identification and functional analyses of calmodulin genes in Solanaceous species.
BMC plant biology (2013)
Show / hide abstract
Show / hide abstract
BACKGROUND: Calmodulin (CaM) is a major calcium sensor in all eukaryotes. It binds calcium and modulates the activity of a wide range of downstream proteins in response to calcium signals. However, little is known about the CaM gene family in Solanaceous species, including the economically important species, tomato (Solanum lycopersicum), and the gene silencing model plant, Nicotiana benthamiana. Moreover, the potential function of CaM in plant disease resistance remains largely unclear. RESULTS: We performed genome-wide identification of CaM gene families in Solanaceous species. Employing bioinformatics approaches, multiple full-length CaM genes were identified from tomato, N. benthamiana and potato (S. tuberosum) genomes, with tomato having 6 CaM genes, N. benthamiana having 7 CaM genes, and potato having 4 CaM genes. Sequence comparison analyses showed that three tomato genes, SlCaM3/4/5, two potato genes StCaM2/3, and two sets of N. benthamiana genes, NbCaM1/2/3/4 and NbCaM5/6, encode identical CaM proteins, yet the genes contain different intron/exon organization and are located on different chromosomes. Further sequence comparisons and gene structural and phylogenetic analyses reveal that Solanaceous species gained a new group of CaM genes during evolution. These new CaM genes are unusual in that they contain three introns in contrast to only a single intron typical of known CaM genes in plants. The tomato CaM (SlCaM) genes were found to be expressed in all organs. Prediction of cis-acting elements in 5[prime] upstream sequences and expression analyses demonstrated that SlCaM genes have potential to be highly responsive to a variety of biotic and abiotic stimuli. Additionally, silencing of SlCaM2 and SlCaM6 altered expression of a set of signaling and defense-related genes and resulted in significantly lower resistance to Tobacco rattle virus and the oomycete pathogen, Pythium aphanidermatum. CONCLUSIONS: The CaM gene families in the Solanaceous species tomato, N. benthamiana and potato were identified through a genome-wide analysis. All three plant species harbor a small set of genes that encode identical CaM proteins, which may manifest a strategy of plants to retain redundancy or enhanced quantitative gene function. In addition, Solanaceous species have evolved one new group of CaM genes during evolution. CaM genes play important roles in plant disease resistance to a variety of pathogens.
Zhao, Y. Liu, W. Xu, YP. Cao, JY. Braam, J. Cai, XZ.
BMC plant biology.
2013.
13(1).
70.
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