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Tomato locus centromere protein C1
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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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] |
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Associated loci - graphical view | None |
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![]() ![]() | unprocessed genomic sequence region underlying this gene |
>Solyc03g120340.2 SL2.50ch03:68766831..68760244 (sequence from reverse strand)
CCGCTTCACACATATGGTGTGCTCTTTCTAGTTCCTGAAACTTCCAACCCCTTATTGGAAGATGGTGAACGAAGCTCTTATCTCCGATCCGGTGGATCCTCTCCACAGCCTTGCCGGACTTTCTCTACTCCCAACAACAGTTAGGGTTTCCACCGGCGCCTCAGTATCAGTAGACTCCAAAGACCTAGAGTCAATTCACAATTTCATGAAGTCCATGGTAATTTTCCGTTTGTTTTTCTTCACTTCTTTAGATTTCTAGCTCTTTTATAGATCTTACATGTTAATTTAGAGGAGAAGTAGTGTTAATGTCGTTACTATGGAGTTTTCGCTGTTCTTCGGTTCGTTCCTGCACTGAACTCCAACTTACAATTAGTACAATTAAAATGGAGTCTAACTTACATAATTGTTGTAGTTTGTCCGTTTACAATTGGCTAGTTATATGATTTTGGATGATGTTGTTCTCCTTCTTTATGATAATAAAAGGAAACCAAGGGTCCTGGGCTCTTGGAGGAGGCTAGGGAAATTGTGGATAACGGTGCGGAGCTTTTGAATACCAAGTTTACAAGTTTCATACGATCTAAAGGCATTGATGGGGATCTTGCAATCAAGGGAAAGGAGAAGGTCCAGGAGAGAAGACCAGGACTTGGGCGTAAAAGGGCTCGATTTTCCCTCAAGCCTAGTACAAGGTAAATTATAGACAGTTTTTCTTTATTCTCTAATTAGATCCTATTGAAACCATGGTGTTAGCTTACCTTGCTATGCAGTCAACCTACTGTCAGCATAGCTCCTCGTTTAGATATTGATCAACTATCAGATCCAGTGGAATTTTTCTCAGTTGCTGAAAAGCTAGAAGGTGATTTTGTTTCTTTTGTTATCTCTTAACTATCTGCTTGCAAATTTGATCCGTCGGCAACTAAAAACAGTATATATTATACTTAGAAAAATAACAGTTTTAGTGTTTTACATATGGTGAACTTACAGTTGCTGAGAAGGAAATAGAAAGACAGAAAGGTGGCAGTATCCATGATCCAGATGTGAATAATCCCCCAGCCAATGCTCGGCGTCGTCGACCAGGCATCTTGGGGTACACCTAGATACTCTTTGTTTTTTTACATGGAAATGCCTGTCCTACCTTTATCGTCCTCTCAACTTGTTGTTGCACCTTTTTAGAGTTCTCTTTTCTGTCTCAGCAAATCGGTGAAGTATAAGCACCGTTTCTCATCCTCCCAGCCTGAGAATGATGATGCATTTATATCATCTCAAGAGACATTGGAGGATGATATTCTGGTGGAACATGGTTCTCAGTTGCCAGAAGAGCTCCATGGCCTCAATGTTGAACTACAAGAAGCAGAACTCACAGGTTATTGGGTTTAACTAATCAAGATAGATACCTTCTGATTTCTAGATTATATTTTTAACTTCTCTATGAGCAGAATGTCATTTCAGAAGTGATAATTGCTTTCCAATTCAACAGGGCCAATAAAGAAATCAGAAAACAGAATCAACAAGATACTGGATGAATTACTGTCTGGTAGTGGTGAAGATCTAGACCGGGACATGGCAGTATCCAAATTGCAAGAGCAGTTGAAGATCAAGCCCATTGAACTAGGAACTTTATGTATTCCTGAGTTCCCTGTGACTGGAAAGTTTGATGGTAAGGCTCTTGGAGAGAGAATTCAGAAGCCTAGTAAGTTTTTTTTGGAGATAGCGGAGTTGGTTAAAAGTGCAACTGAGGGAACGCCATCCTCTCACAAACAGCATGAAGAAAGTCCTGCCAGTAAATTAGCATCACCCACTCCACCAAAAAGTCCATTTGGTTCATTGTCTTTGTTGAAAAAGAAACTTATGCAGTCAAATCCACTGAGAGATCCTTTTTCGCCTCTCAACATTGATCTGCAATCAGAGCATCCAGATTGGTCCGCGAAGAAGAAATCACAATGTGTAAATAATAATGTTGGACCTATTGAATCTCGTGGTTGTGAAAATACAAATATTATGGTCCCTTTAAGAGGTTCAGACTTAGTGCATGAGCAACCAATTGAAAAGAATCCAGGCAGAGATAGTGTAAAAACTGGGCCAAATGGATCTCGATCTGGAATGGAGCAACATAATGGCTATGATGATATTGATGCCAATACTAACGACAACTTAAATATGAGAAATGTGGATTCCCACCATGAGTCTGATGGGCTTGACAAAGTGAAAGATGATTCAGTTATAAAGAATGTTTTGAAGGCTCTACAAGGTCTTGAGACCAAATCCTACATTGACTGTCAAAAGCTGCAGGATAGTGAAGTTCTTGCTGAAACACTACCTTCTCTTCAAGCCCAAGGAAAAGCTGTCGATACAGCCAATTATACCATAGAAACAGCTGTTGAGGATTTTGGATCAACTGAAATTGATCCGCTGGCAAGTCTATCCACTTCTTACTATTATATGCTGCATTTGATACATTATTCCAGGAGTTATAATTCAAACTGTGACATTTTTTCATTCATACGTCATTAGCAGGTTGACAATATGCTACCAGAAACAGCGCCTTCTGCAGAACAAGATCATTACTTTGAGGATTCTGTCAAAGACTTAAATAGTGGTGAGATTCTATTTTGGATGATTTTTTTTATGCCAAGTCATCATTTATGAAGATGCGACATTTGAGCATTGTCTATTTCTTGCTAGATTCTTTTGTATACACAAATTTTTGTACGTATTCAAAACAATCTTTTTTATGTTTTAACACATCGCTTGAGTTTTACCCGGAATCATCTGCAGTCAACTATTCGTTTTTTGACCACTTATATTCAACTCTTAACTGGGTGATTCATGGTACTGGAACTGGACAATTCTTAGGTCTGCTACAGGCTATAGATTAAGGTGTGAAGTGCTGGAATTTAGTATACGAAGAAGTAACTGCCCATGTTTGCCAGAAATTGTACTGCAATAGACCAATACCTTGGTTGCTTGGAATGTTCTGTCATAACTTCTCTTTCCTTTTCCTTTTCATCTCTGGTTTTTTAATGGGAGGATGCATGTGATGCATCTTTATAAAAAATAGATGTGTAGAATTTTGAACTTGTAGTTGTCAAGAATCATGACTTTTGATCTTCATTTTTTTTAAAAAAGGTAATGACTCAATTGAGAAGATGGGGATAACGCTCTATCATTGTATACCATATTGAAAACCTTACAAAAGATATGGTTCTCAGCAAAAACACATGCATCACTATTTATCATGATGTTTTAAGTACTCCAAAAGTAACAAGATTTGTCTAATATGTTTGAACTTCACTTCTATCTTTCGAGCATCCTGTTAGGTACTAGATATAAATTAACGAGACGTAAGTTTGTACTGGTACATGCAAGTTATTGCTGCATTCTGATGTTCTATTGTGGTTATAGGAGCATTAAGGTGTCTATAGTGTCACGAGCAAAGCATTAGGGATGATTAATCATTAAAGTAACCCATGTACTGATAGCAAAAGATCATATGCCACATATTGATACCTATTGCGTAGTCACAAACTCAACCCTGCTCTTCAGAGTCAGAAGGCGCTTCCACTTAACCCAGTTTATAATTGGTTACTTGCTTTACTTTCTTTTATTTATAAAGTAATATGCTACCTCCAAATATGAACTTCAGCTGCTGAAATCATTCTCACATTGATCACCTTCTCTTTTGCAATGGTTCTTTGAGCTTGTGTCACTCTTTACATTATAAAGTTGTCATAGTACCTGTGCATTCTGAATATATGTTGTTTTTCTTGAACATATAGCTAGTTATTTTACCCACTCTACTTTGCATATCTTAACTAGTAATAACAGTCTAAAGTTTGGAAAGAACTTGAGAACCTTGGTATCTTTATACAGATCAATTGAACTCAGTGGGAGTTGAAGTTCCTTCTAGAGACGTGAGACCTAAATTTCCGGAGATGAGCCCTCAGCATCACAAGCAGGTTGCCTCCTTTCTTGAATGGTCCTTCATTATTTTTTATTTATATAGGAAACTCAAAGTGCCAAGTTAATCCTTTGGTATTCACACACACACATACACACTCTCTCTCTCTCTCTCCCAAAAGCAAATAATGATGGCAGGGTTTAAGGGGTCAAAATACTTGCGACATACAAAAGCCTGGTATTTGAGTGGAGAAGTGAGCACAATGTCCAAAATTTATGCTCCATACAGTTTCAAACCATTTGCCATTGGTCCTCAGAGTTTTTCGGATCGAAAACAATTATTGTTAAAGAGTCTACAATATCAAAGTCAGTAAAAATCGTCTGATTCTCCAATTGTAACTGTAAATTAGAAGACAGTAAAGCTGATTGCTTGTATGTAAACAAATCTGTAGATGCCTAAACACTAGGATAGGGTTTGTGCAAAAACATATCGCAATTCCCAAATTTAAAAAAAAACTAGCATGAACTGCGTTTGATAACCATGATTATTTTTTTGTTCTTTTGAAAAAAGTGCAATGATGTGACTGATTTAAGTTGCCAAATGTGTTGATTTCTGTCTAGGGTTAGGACATTTTAAAGCTGTCTACTGAAATGACCCTCTGATATTATTGGTGTTAAAATTTGACAACCAGTCTGTATAAGAGTCGATATTTCTGACGTGACAGTGGATATTGAATGATATTGATTGAACACATTAATAGTTTTAGCCCATCATGTCTCCTAATTTTGGGTTTACATGTGAATGCTTGTGCTCTTTGCAGTTGTATTTCTTTACCTGTATTGGTTATACTGATTGACATGCAATATTTCTGATGCATTAGGCAAAAGATAAGCAACAGAAAGCAAAGGAACTTGCTGTTGGAAGGCGTGAAAGAAAACATCTTTCTTCTAGGCCAAGTCTAGCAGGTTTTTACTCTTGCGACTATGGGGATGTCTTCATTTGAAGTCTTTCATTTGTGTTTTTGATAAAGAATTTCATGAATTTGACAGATGCTGGCACATCATTTGAAAGTGGGGTTAGACGAAGCAAACGAATGAAGACAAGGCCTTTGGAATATTGGAAAGGCGAAAGATTATTATATGGACGGGTTGATGAGGGTGAGTATTGTCTTGTAAATTCTTGTGTTGTTACTTTGCTGGGTTTCTGTTGGATTCATTTGTTAGACTTGGGTGATAGGGTAATAATTCATCTTGATCCTCAAATCTAGTTTTTCTTTTTTTGGCGCGTGCGTGTGAGAGAGAGATGTGTGAAACTAGGCCACAACATGCTAGACTTTATACTTATAGTCTTGGGAAGGTAACTACTCAAGGATATTTTCTTGTCCTTTAGATAGGATGTTTATCACACTAAACGACCTAATATTGGAGAGGTTGGTGGTAACATATGCACATTTTGCATAGAACTCTACAAGACAGCGAAAGAAAATATTAGGGACGGCTTAGCTATTAGAGAAGCATGGTAACTAGGTTACTTGCATGTCTGCTAAGAGAGTGCAAGTTAGGGTATCAGAATCTAGTTTTCAGGGATTAGTTTCGTACTTGGTCAAGTCTCTTCCAGCAGGAGATTAACTTAGTTAAGGCTCTCCTAGTTGGTGACTTACTAGCTCAGAATACTCATTGGAACTTGAATTACAGGAAATTAGGTAATTTGATCCTCAATATTTTTGTGCTTGAAAATCATCACCGAGATAATGTAGTAGACTTATTTCCTAAATCAGCCAACATGCTGAATTCCATAAATTGTCAAGCACAAAATTGAAGTAATTTTTGAAAACTAATCATTTCAATTTTGGATATTTCACTTAAGGGATGCCTTTAGTTACTTTGGCAAGTTTATTCTAGTTGAGCACTCTCTTATAGAAAGTAGAAACTTGAGCCATAGGAACTTAGGTAGTTTAACCCATCATATTTTCTTGCTTGAAAATTTATCATTGAGATAATAGATCAGACGTAGTTCATATATCATCCAACTTGCTGAATTCCATAAATGGTCAACAAAAATTAAAGTAATTCGAAAGTGATTGTTTCAGTGTAGAAGCAAATTGCAGCCAACATTGAGTAGCAGCTTTTGGATATTACTTCTATCGTAACTAGCAATTCAATACATTAAAGCATATGCTAAACACAATGAACTTATCTTTTCGACTGGTTGTTTCTATGTTTAACCTGTGGAGAAAACAACAGATTTAGTATATCCGTGTGTTTCTGTTGCAGGTTTGAAGCTTGTTGGCTTGAAATACATCTCTCCGGGAAAGGGATCATTTAAGGTGAAGTCTTACATTCCTGATGACTACAAAGACCTAGTTGATTTGGCAGCTCGCTATTGATTTTCTAACAGCATCGATGGATGGGTTAGCTTTCTGGATCTTGTCCCATGCTTCAGTTTTATAAACAAATGTAGCGTAATGTACCCGAGGTAGGTTTATAACATTGTGAGCCTTGAATTATTATCTTTAATTTGTTGAGCGCTGTTGGTCCATATATTGATTATCCCAAGAGCAAATGACTTCACAGTGCTTCAGACACTTTTGTTGACCTGTTAATTGAGGAAACTACAAGGCCAACCTGTAACAGCGAAGGGCTCTGTTTTGTTTCTGTGTTACTGACTTACTGTATCATATTTGTTAGTTGTTC
CCGCTTCACACATATGGTGTGCTCTTTCTAGTTCCTGAAACTTCCAACCCCTTATTGGAAGATGGTGAACGAAGCTCTTATCTCCGATCCGGTGGATCCTCTCCACAGCCTTGCCGGACTTTCTCTACTCCCAACAACAGTTAGGGTTTCCACCGGCGCCTCAGTATCAGTAGACTCCAAAGACCTAGAGTCAATTCACAATTTCATGAAGTCCATGGTAATTTTCCGTTTGTTTTTCTTCACTTCTTTAGATTTCTAGCTCTTTTATAGATCTTACATGTTAATTTAGAGGAGAAGTAGTGTTAATGTCGTTACTATGGAGTTTTCGCTGTTCTTCGGTTCGTTCCTGCACTGAACTCCAACTTACAATTAGTACAATTAAAATGGAGTCTAACTTACATAATTGTTGTAGTTTGTCCGTTTACAATTGGCTAGTTATATGATTTTGGATGATGTTGTTCTCCTTCTTTATGATAATAAAAGGAAACCAAGGGTCCTGGGCTCTTGGAGGAGGCTAGGGAAATTGTGGATAACGGTGCGGAGCTTTTGAATACCAAGTTTACAAGTTTCATACGATCTAAAGGCATTGATGGGGATCTTGCAATCAAGGGAAAGGAGAAGGTCCAGGAGAGAAGACCAGGACTTGGGCGTAAAAGGGCTCGATTTTCCCTCAAGCCTAGTACAAGGTAAATTATAGACAGTTTTTCTTTATTCTCTAATTAGATCCTATTGAAACCATGGTGTTAGCTTACCTTGCTATGCAGTCAACCTACTGTCAGCATAGCTCCTCGTTTAGATATTGATCAACTATCAGATCCAGTGGAATTTTTCTCAGTTGCTGAAAAGCTAGAAGGTGATTTTGTTTCTTTTGTTATCTCTTAACTATCTGCTTGCAAATTTGATCCGTCGGCAACTAAAAACAGTATATATTATACTTAGAAAAATAACAGTTTTAGTGTTTTACATATGGTGAACTTACAGTTGCTGAGAAGGAAATAGAAAGACAGAAAGGTGGCAGTATCCATGATCCAGATGTGAATAATCCCCCAGCCAATGCTCGGCGTCGTCGACCAGGCATCTTGGGGTACACCTAGATACTCTTTGTTTTTTTACATGGAAATGCCTGTCCTACCTTTATCGTCCTCTCAACTTGTTGTTGCACCTTTTTAGAGTTCTCTTTTCTGTCTCAGCAAATCGGTGAAGTATAAGCACCGTTTCTCATCCTCCCAGCCTGAGAATGATGATGCATTTATATCATCTCAAGAGACATTGGAGGATGATATTCTGGTGGAACATGGTTCTCAGTTGCCAGAAGAGCTCCATGGCCTCAATGTTGAACTACAAGAAGCAGAACTCACAGGTTATTGGGTTTAACTAATCAAGATAGATACCTTCTGATTTCTAGATTATATTTTTAACTTCTCTATGAGCAGAATGTCATTTCAGAAGTGATAATTGCTTTCCAATTCAACAGGGCCAATAAAGAAATCAGAAAACAGAATCAACAAGATACTGGATGAATTACTGTCTGGTAGTGGTGAAGATCTAGACCGGGACATGGCAGTATCCAAATTGCAAGAGCAGTTGAAGATCAAGCCCATTGAACTAGGAACTTTATGTATTCCTGAGTTCCCTGTGACTGGAAAGTTTGATGGTAAGGCTCTTGGAGAGAGAATTCAGAAGCCTAGTAAGTTTTTTTTGGAGATAGCGGAGTTGGTTAAAAGTGCAACTGAGGGAACGCCATCCTCTCACAAACAGCATGAAGAAAGTCCTGCCAGTAAATTAGCATCACCCACTCCACCAAAAAGTCCATTTGGTTCATTGTCTTTGTTGAAAAAGAAACTTATGCAGTCAAATCCACTGAGAGATCCTTTTTCGCCTCTCAACATTGATCTGCAATCAGAGCATCCAGATTGGTCCGCGAAGAAGAAATCACAATGTGTAAATAATAATGTTGGACCTATTGAATCTCGTGGTTGTGAAAATACAAATATTATGGTCCCTTTAAGAGGTTCAGACTTAGTGCATGAGCAACCAATTGAAAAGAATCCAGGCAGAGATAGTGTAAAAACTGGGCCAAATGGATCTCGATCTGGAATGGAGCAACATAATGGCTATGATGATATTGATGCCAATACTAACGACAACTTAAATATGAGAAATGTGGATTCCCACCATGAGTCTGATGGGCTTGACAAAGTGAAAGATGATTCAGTTATAAAGAATGTTTTGAAGGCTCTACAAGGTCTTGAGACCAAATCCTACATTGACTGTCAAAAGCTGCAGGATAGTGAAGTTCTTGCTGAAACACTACCTTCTCTTCAAGCCCAAGGAAAAGCTGTCGATACAGCCAATTATACCATAGAAACAGCTGTTGAGGATTTTGGATCAACTGAAATTGATCCGCTGGCAAGTCTATCCACTTCTTACTATTATATGCTGCATTTGATACATTATTCCAGGAGTTATAATTCAAACTGTGACATTTTTTCATTCATACGTCATTAGCAGGTTGACAATATGCTACCAGAAACAGCGCCTTCTGCAGAACAAGATCATTACTTTGAGGATTCTGTCAAAGACTTAAATAGTGGTGAGATTCTATTTTGGATGATTTTTTTTATGCCAAGTCATCATTTATGAAGATGCGACATTTGAGCATTGTCTATTTCTTGCTAGATTCTTTTGTATACACAAATTTTTGTACGTATTCAAAACAATCTTTTTTATGTTTTAACACATCGCTTGAGTTTTACCCGGAATCATCTGCAGTCAACTATTCGTTTTTTGACCACTTATATTCAACTCTTAACTGGGTGATTCATGGTACTGGAACTGGACAATTCTTAGGTCTGCTACAGGCTATAGATTAAGGTGTGAAGTGCTGGAATTTAGTATACGAAGAAGTAACTGCCCATGTTTGCCAGAAATTGTACTGCAATAGACCAATACCTTGGTTGCTTGGAATGTTCTGTCATAACTTCTCTTTCCTTTTCCTTTTCATCTCTGGTTTTTTAATGGGAGGATGCATGTGATGCATCTTTATAAAAAATAGATGTGTAGAATTTTGAACTTGTAGTTGTCAAGAATCATGACTTTTGATCTTCATTTTTTTTAAAAAAGGTAATGACTCAATTGAGAAGATGGGGATAACGCTCTATCATTGTATACCATATTGAAAACCTTACAAAAGATATGGTTCTCAGCAAAAACACATGCATCACTATTTATCATGATGTTTTAAGTACTCCAAAAGTAACAAGATTTGTCTAATATGTTTGAACTTCACTTCTATCTTTCGAGCATCCTGTTAGGTACTAGATATAAATTAACGAGACGTAAGTTTGTACTGGTACATGCAAGTTATTGCTGCATTCTGATGTTCTATTGTGGTTATAGGAGCATTAAGGTGTCTATAGTGTCACGAGCAAAGCATTAGGGATGATTAATCATTAAAGTAACCCATGTACTGATAGCAAAAGATCATATGCCACATATTGATACCTATTGCGTAGTCACAAACTCAACCCTGCTCTTCAGAGTCAGAAGGCGCTTCCACTTAACCCAGTTTATAATTGGTTACTTGCTTTACTTTCTTTTATTTATAAAGTAATATGCTACCTCCAAATATGAACTTCAGCTGCTGAAATCATTCTCACATTGATCACCTTCTCTTTTGCAATGGTTCTTTGAGCTTGTGTCACTCTTTACATTATAAAGTTGTCATAGTACCTGTGCATTCTGAATATATGTTGTTTTTCTTGAACATATAGCTAGTTATTTTACCCACTCTACTTTGCATATCTTAACTAGTAATAACAGTCTAAAGTTTGGAAAGAACTTGAGAACCTTGGTATCTTTATACAGATCAATTGAACTCAGTGGGAGTTGAAGTTCCTTCTAGAGACGTGAGACCTAAATTTCCGGAGATGAGCCCTCAGCATCACAAGCAGGTTGCCTCCTTTCTTGAATGGTCCTTCATTATTTTTTATTTATATAGGAAACTCAAAGTGCCAAGTTAATCCTTTGGTATTCACACACACACATACACACTCTCTCTCTCTCTCTCCCAAAAGCAAATAATGATGGCAGGGTTTAAGGGGTCAAAATACTTGCGACATACAAAAGCCTGGTATTTGAGTGGAGAAGTGAGCACAATGTCCAAAATTTATGCTCCATACAGTTTCAAACCATTTGCCATTGGTCCTCAGAGTTTTTCGGATCGAAAACAATTATTGTTAAAGAGTCTACAATATCAAAGTCAGTAAAAATCGTCTGATTCTCCAATTGTAACTGTAAATTAGAAGACAGTAAAGCTGATTGCTTGTATGTAAACAAATCTGTAGATGCCTAAACACTAGGATAGGGTTTGTGCAAAAACATATCGCAATTCCCAAATTTAAAAAAAAACTAGCATGAACTGCGTTTGATAACCATGATTATTTTTTTGTTCTTTTGAAAAAAGTGCAATGATGTGACTGATTTAAGTTGCCAAATGTGTTGATTTCTGTCTAGGGTTAGGACATTTTAAAGCTGTCTACTGAAATGACCCTCTGATATTATTGGTGTTAAAATTTGACAACCAGTCTGTATAAGAGTCGATATTTCTGACGTGACAGTGGATATTGAATGATATTGATTGAACACATTAATAGTTTTAGCCCATCATGTCTCCTAATTTTGGGTTTACATGTGAATGCTTGTGCTCTTTGCAGTTGTATTTCTTTACCTGTATTGGTTATACTGATTGACATGCAATATTTCTGATGCATTAGGCAAAAGATAAGCAACAGAAAGCAAAGGAACTTGCTGTTGGAAGGCGTGAAAGAAAACATCTTTCTTCTAGGCCAAGTCTAGCAGGTTTTTACTCTTGCGACTATGGGGATGTCTTCATTTGAAGTCTTTCATTTGTGTTTTTGATAAAGAATTTCATGAATTTGACAGATGCTGGCACATCATTTGAAAGTGGGGTTAGACGAAGCAAACGAATGAAGACAAGGCCTTTGGAATATTGGAAAGGCGAAAGATTATTATATGGACGGGTTGATGAGGGTGAGTATTGTCTTGTAAATTCTTGTGTTGTTACTTTGCTGGGTTTCTGTTGGATTCATTTGTTAGACTTGGGTGATAGGGTAATAATTCATCTTGATCCTCAAATCTAGTTTTTCTTTTTTTGGCGCGTGCGTGTGAGAGAGAGATGTGTGAAACTAGGCCACAACATGCTAGACTTTATACTTATAGTCTTGGGAAGGTAACTACTCAAGGATATTTTCTTGTCCTTTAGATAGGATGTTTATCACACTAAACGACCTAATATTGGAGAGGTTGGTGGTAACATATGCACATTTTGCATAGAACTCTACAAGACAGCGAAAGAAAATATTAGGGACGGCTTAGCTATTAGAGAAGCATGGTAACTAGGTTACTTGCATGTCTGCTAAGAGAGTGCAAGTTAGGGTATCAGAATCTAGTTTTCAGGGATTAGTTTCGTACTTGGTCAAGTCTCTTCCAGCAGGAGATTAACTTAGTTAAGGCTCTCCTAGTTGGTGACTTACTAGCTCAGAATACTCATTGGAACTTGAATTACAGGAAATTAGGTAATTTGATCCTCAATATTTTTGTGCTTGAAAATCATCACCGAGATAATGTAGTAGACTTATTTCCTAAATCAGCCAACATGCTGAATTCCATAAATTGTCAAGCACAAAATTGAAGTAATTTTTGAAAACTAATCATTTCAATTTTGGATATTTCACTTAAGGGATGCCTTTAGTTACTTTGGCAAGTTTATTCTAGTTGAGCACTCTCTTATAGAAAGTAGAAACTTGAGCCATAGGAACTTAGGTAGTTTAACCCATCATATTTTCTTGCTTGAAAATTTATCATTGAGATAATAGATCAGACGTAGTTCATATATCATCCAACTTGCTGAATTCCATAAATGGTCAACAAAAATTAAAGTAATTCGAAAGTGATTGTTTCAGTGTAGAAGCAAATTGCAGCCAACATTGAGTAGCAGCTTTTGGATATTACTTCTATCGTAACTAGCAATTCAATACATTAAAGCATATGCTAAACACAATGAACTTATCTTTTCGACTGGTTGTTTCTATGTTTAACCTGTGGAGAAAACAACAGATTTAGTATATCCGTGTGTTTCTGTTGCAGGTTTGAAGCTTGTTGGCTTGAAATACATCTCTCCGGGAAAGGGATCATTTAAGGTGAAGTCTTACATTCCTGATGACTACAAAGACCTAGTTGATTTGGCAGCTCGCTATTGATTTTCTAACAGCATCGATGGATGGGTTAGCTTTCTGGATCTTGTCCCATGCTTCAGTTTTATAAACAAATGTAGCGTAATGTACCCGAGGTAGGTTTATAACATTGTGAGCCTTGAATTATTATCTTTAATTTGTTGAGCGCTGTTGGTCCATATATTGATTATCCCAAGAGCAAATGACTTCACAGTGCTTCAGACACTTTTGTTGACCTGTTAATTGAGGAAACTACAAGGCCAACCTGTAACAGCGAAGGGCTCTGTTTTGTTTCTGTGTTACTGACTTACTGTATCATATTTGTTAGTTGTTC
Download sequence region |
Get flanking sequences on SL2.50ch03
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Ontology terms | None | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>Solyc03g120340.2.1 CENP-C (Fragment) (AHRD V1 *--- Q66LG8_SOLLC)
CCGCTTCACACATATGGTGTGCTCTTTCTAGTTCCTGAAACTTCCAACCCCTTATTGGAAGATGGTGAACGAAGCTCTTATCTCCGATCCGGTGGATCCTCTCCACAGCCTTGCCGGACTTTCTCTACTCCCAACAACAGTTAGGGTTTCCACCGGCGCCTCAGTATCAGTAGACTCCAAAGACCTAGAGTCAATTCACAATTTCATGAAGTCCATGGAAACCAAGGGTCCTGGGCTCTTGGAGGAGGCTAGGGAAATTGTGGATAACGGTGCGGAGCTTTTGAATACCAAGTTTACAAGTTTCATACGATCTAAAGGCATTGATGGGGATCTTGCAATCAAGGGAAAGGAGAAGGTCCAGGAGAGAAGACCAGGACTTGGGCGTAAAAGGGCTCGATTTTCCCTCAAGCCTAGTACAAGTCAACCTACTGTCAGCATAGCTCCTCGTTTAGATATTGATCAACTATCAGATCCAGTGGAATTTTTCTCAGTTGCTGAAAAGCTAGAAGTTGCTGAGAAGGAAATAGAAAGACAGAAAGGTGGCAGTATCCATGATCCAGATGTGAATAATCCCCCAGCCAATGCTCGGCGTCGTCGACCAGGCATCTTGGGCAAATCGGTGAAGTATAAGCACCGTTTCTCATCCTCCCAGCCTGAGAATGATGATGCATTTATATCATCTCAAGAGACATTGGAGGATGATATTCTGGTGGAACATGGTTCTCAGTTGCCAGAAGAGCTCCATGGCCTCAATGTTGAACTACAAGAAGCAGAACTCACAGGGCCAATAAAGAAATCAGAAAACAGAATCAACAAGATACTGGATGAATTACTGTCTGGTAGTGGTGAAGATCTAGACCGGGACATGGCAGTATCCAAATTGCAAGAGCAGTTGAAGATCAAGCCCATTGAACTAGGAACTTTATGTATTCCTGAGTTCCCTGTGACTGGAAAGTTTGATGGTAAGGCTCTTGGAGAGAGAATTCAGAAGCCTAGTAAGTTTTTTTTGGAGATAGCGGAGTTGGTTAAAAGTGCAACTGAGGGAACGCCATCCTCTCACAAACAGCATGAAGAAAGTCCTGCCAGTAAATTAGCATCACCCACTCCACCAAAAAGTCCATTTGGTTCATTGTCTTTGTTGAAAAAGAAACTTATGCAGTCAAATCCACTGAGAGATCCTTTTTCGCCTCTCAACATTGATCTGCAATCAGAGCATCCAGATTGGTCCGCGAAGAAGAAATCACAATGTGTAAATAATAATGTTGGACCTATTGAATCTCGTGGTTGTGAAAATACAAATATTATGGTCCCTTTAAGAGGTTCAGACTTAGTGCATGAGCAACCAATTGAAAAGAATCCAGGCAGAGATAGTGTAAAAACTGGGCCAAATGGATCTCGATCTGGAATGGAGCAACATAATGGCTATGATGATATTGATGCCAATACTAACGACAACTTAAATATGAGAAATGTGGATTCCCACCATGAGTCTGATGGGCTTGACAAAGTGAAAGATGATTCAGTTATAAAGAATGTTTTGAAGGCTCTACAAGGTCTTGAGACCAAATCCTACATTGACTGTCAAAAGCTGCAGGATAGTGAAGTTCTTGCTGAAACACTACCTTCTCTTCAAGCCCAAGGAAAAGCTGTCGATACAGCCAATTATACCATAGAAACAGCTGTTGAGGATTTTGGATCAACTGAAATTGATCCGCTGGTTGACAATATGCTACCAGAAACAGCGCCTTCTGCAGAACAAGATCATTACTTTGAGGATTCTGTCAAAGACTTAAATAGTGATCAATTGAACTCAGTGGGAGTTGAAGTTCCTTCTAGAGACGTGAGACCTAAATTTCCGGAGATGAGCCCTCAGCATCACAAGCAGGCAAAAGATAAGCAACAGAAAGCAAAGGAACTTGCTGTTGGAAGGCGTGAAAGAAAACATCTTTCTTCTAGGCCAAGTCTAGCAGATGCTGGCACATCATTTGAAAGTGGGGTTAGACGAAGCAAACGAATGAAGACAAGGCCTTTGGAATATTGGAAAGGCGAAAGATTATTATATGGACGGGTTGATGAGGGTTTGAAGCTTGTTGGCTTGAAATACATCTCTCCGGGAAAGGGATCATTTAAGGTGAAGTCTTACATTCCTGATGACTACAAAGACCTAGTTGATTTGGCAGCTCGCTATTGATTTTCTAACAGCATCGATGGATGGGTTAGCTTTCTGGATCTTGTCCCATGCTTCAGTTTTATAAACAAATGTAGCGTAATGTACCCGAGGTAGGTTTATAACATTGTGAGCCTTGAATTATTATCTTTAATTTGTTGAGCGCTGTTGGTCCATATATTGATTATCCCAAGAGCAAATGACTTCACAGTGCTTCAGACACTTTTGTTGACCTGTTAATTGAGGAAACTACAAGGCCAACCTGTAACAGCGAAGGGCTCTGTTTTGTTTCTGTGTTACTGACTTACTGTATCATATTTGTTAGTTGTTC
CCGCTTCACACATATGGTGTGCTCTTTCTAGTTCCTGAAACTTCCAACCCCTTATTGGAAGATGGTGAACGAAGCTCTTATCTCCGATCCGGTGGATCCTCTCCACAGCCTTGCCGGACTTTCTCTACTCCCAACAACAGTTAGGGTTTCCACCGGCGCCTCAGTATCAGTAGACTCCAAAGACCTAGAGTCAATTCACAATTTCATGAAGTCCATGGAAACCAAGGGTCCTGGGCTCTTGGAGGAGGCTAGGGAAATTGTGGATAACGGTGCGGAGCTTTTGAATACCAAGTTTACAAGTTTCATACGATCTAAAGGCATTGATGGGGATCTTGCAATCAAGGGAAAGGAGAAGGTCCAGGAGAGAAGACCAGGACTTGGGCGTAAAAGGGCTCGATTTTCCCTCAAGCCTAGTACAAGTCAACCTACTGTCAGCATAGCTCCTCGTTTAGATATTGATCAACTATCAGATCCAGTGGAATTTTTCTCAGTTGCTGAAAAGCTAGAAGTTGCTGAGAAGGAAATAGAAAGACAGAAAGGTGGCAGTATCCATGATCCAGATGTGAATAATCCCCCAGCCAATGCTCGGCGTCGTCGACCAGGCATCTTGGGCAAATCGGTGAAGTATAAGCACCGTTTCTCATCCTCCCAGCCTGAGAATGATGATGCATTTATATCATCTCAAGAGACATTGGAGGATGATATTCTGGTGGAACATGGTTCTCAGTTGCCAGAAGAGCTCCATGGCCTCAATGTTGAACTACAAGAAGCAGAACTCACAGGGCCAATAAAGAAATCAGAAAACAGAATCAACAAGATACTGGATGAATTACTGTCTGGTAGTGGTGAAGATCTAGACCGGGACATGGCAGTATCCAAATTGCAAGAGCAGTTGAAGATCAAGCCCATTGAACTAGGAACTTTATGTATTCCTGAGTTCCCTGTGACTGGAAAGTTTGATGGTAAGGCTCTTGGAGAGAGAATTCAGAAGCCTAGTAAGTTTTTTTTGGAGATAGCGGAGTTGGTTAAAAGTGCAACTGAGGGAACGCCATCCTCTCACAAACAGCATGAAGAAAGTCCTGCCAGTAAATTAGCATCACCCACTCCACCAAAAAGTCCATTTGGTTCATTGTCTTTGTTGAAAAAGAAACTTATGCAGTCAAATCCACTGAGAGATCCTTTTTCGCCTCTCAACATTGATCTGCAATCAGAGCATCCAGATTGGTCCGCGAAGAAGAAATCACAATGTGTAAATAATAATGTTGGACCTATTGAATCTCGTGGTTGTGAAAATACAAATATTATGGTCCCTTTAAGAGGTTCAGACTTAGTGCATGAGCAACCAATTGAAAAGAATCCAGGCAGAGATAGTGTAAAAACTGGGCCAAATGGATCTCGATCTGGAATGGAGCAACATAATGGCTATGATGATATTGATGCCAATACTAACGACAACTTAAATATGAGAAATGTGGATTCCCACCATGAGTCTGATGGGCTTGACAAAGTGAAAGATGATTCAGTTATAAAGAATGTTTTGAAGGCTCTACAAGGTCTTGAGACCAAATCCTACATTGACTGTCAAAAGCTGCAGGATAGTGAAGTTCTTGCTGAAACACTACCTTCTCTTCAAGCCCAAGGAAAAGCTGTCGATACAGCCAATTATACCATAGAAACAGCTGTTGAGGATTTTGGATCAACTGAAATTGATCCGCTGGTTGACAATATGCTACCAGAAACAGCGCCTTCTGCAGAACAAGATCATTACTTTGAGGATTCTGTCAAAGACTTAAATAGTGATCAATTGAACTCAGTGGGAGTTGAAGTTCCTTCTAGAGACGTGAGACCTAAATTTCCGGAGATGAGCCCTCAGCATCACAAGCAGGCAAAAGATAAGCAACAGAAAGCAAAGGAACTTGCTGTTGGAAGGCGTGAAAGAAAACATCTTTCTTCTAGGCCAAGTCTAGCAGATGCTGGCACATCATTTGAAAGTGGGGTTAGACGAAGCAAACGAATGAAGACAAGGCCTTTGGAATATTGGAAAGGCGAAAGATTATTATATGGACGGGTTGATGAGGGTTTGAAGCTTGTTGGCTTGAAATACATCTCTCCGGGAAAGGGATCATTTAAGGTGAAGTCTTACATTCCTGATGACTACAAAGACCTAGTTGATTTGGCAGCTCGCTATTGATTTTCTAACAGCATCGATGGATGGGTTAGCTTTCTGGATCTTGTCCCATGCTTCAGTTTTATAAACAAATGTAGCGTAATGTACCCGAGGTAGGTTTATAACATTGTGAGCCTTGAATTATTATCTTTAATTTGTTGAGCGCTGTTGGTCCATATATTGATTATCCCAAGAGCAAATGACTTCACAGTGCTTCAGACACTTTTGTTGACCTGTTAATTGAGGAAACTACAAGGCCAACCTGTAACAGCGAAGGGCTCTGTTTTGTTTCTGTGTTACTGACTTACTGTATCATATTTGTTAGTTGTTC
![]() ![]() | translated polypeptide sequence |
>Solyc03g120340.2.1 CENP-C (Fragment) (AHRD V1 *--- Q66LG8_SOLLC)
MVNEALISDPVDPLHSLAGLSLLPTTVRVSTGASVSVDSKDLESIHNFMKSMETKGPGLLEEAREIVDNGAELLNTKFTSFIRSKGIDGDLAIKGKEKVQERRPGLGRKRARFSLKPSTSQPTVSIAPRLDIDQLSDPVEFFSVAEKLEVAEKEIERQKGGSIHDPDVNNPPANARRRRPGILGKSVKYKHRFSSSQPENDDAFISSQETLEDDILVEHGSQLPEELHGLNVELQEAELTGPIKKSENRINKILDELLSGSGEDLDRDMAVSKLQEQLKIKPIELGTLCIPEFPVTGKFDGKALGERIQKPSKFFLEIAELVKSATEGTPSSHKQHEESPASKLASPTPPKSPFGSLSLLKKKLMQSNPLRDPFSPLNIDLQSEHPDWSAKKKSQCVNNNVGPIESRGCENTNIMVPLRGSDLVHEQPIEKNPGRDSVKTGPNGSRSGMEQHNGYDDIDANTNDNLNMRNVDSHHESDGLDKVKDDSVIKNVLKALQGLETKSYIDCQKLQDSEVLAETLPSLQAQGKAVDTANYTIETAVEDFGSTEIDPLVDNMLPETAPSAEQDHYFEDSVKDLNSDQLNSVGVEVPSRDVRPKFPEMSPQHHKQAKDKQQKAKELAVGRRERKHLSSRPSLADAGTSFESGVRRSKRMKTRPLEYWKGERLLYGRVDEGLKLVGLKYISPGKGSFKVKSYIPDDYKDLVDLAARY*
MVNEALISDPVDPLHSLAGLSLLPTTVRVSTGASVSVDSKDLESIHNFMKSMETKGPGLLEEAREIVDNGAELLNTKFTSFIRSKGIDGDLAIKGKEKVQERRPGLGRKRARFSLKPSTSQPTVSIAPRLDIDQLSDPVEFFSVAEKLEVAEKEIERQKGGSIHDPDVNNPPANARRRRPGILGKSVKYKHRFSSSQPENDDAFISSQETLEDDILVEHGSQLPEELHGLNVELQEAELTGPIKKSENRINKILDELLSGSGEDLDRDMAVSKLQEQLKIKPIELGTLCIPEFPVTGKFDGKALGERIQKPSKFFLEIAELVKSATEGTPSSHKQHEESPASKLASPTPPKSPFGSLSLLKKKLMQSNPLRDPFSPLNIDLQSEHPDWSAKKKSQCVNNNVGPIESRGCENTNIMVPLRGSDLVHEQPIEKNPGRDSVKTGPNGSRSGMEQHNGYDDIDANTNDNLNMRNVDSHHESDGLDKVKDDSVIKNVLKALQGLETKSYIDCQKLQDSEVLAETLPSLQAQGKAVDTANYTIETAVEDFGSTEIDPLVDNMLPETAPSAEQDHYFEDSVKDLNSDQLNSVGVEVPSRDVRPKFPEMSPQHHKQAKDKQQKAKELAVGRRERKHLSSRPSLADAGTSFESGVRRSKRMKTRPLEYWKGERLLYGRVDEGLKLVGLKYISPGKGSFKVKSYIPDDYKDLVDLAARY*
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Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
Adaptive evolution of centromere proteins in plants and animals.
Journal of biology (2004)
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BACKGROUND: Centromeres represent the last frontiers of plant and animal genomics. Although they perform a conserved function in chromosome segregation, centromeres are typically composed of repetitive satellite sequences that are rapidly evolving. The nucleosomes of centromeres are characterized by a special H3-like histone (CenH3), which evolves rapidly and adaptively in Drosophila and Arabidopsis. Most plant, animal and fungal centromeres also bind a large protein, centromere protein C (CENP-C), that is characterized by a single 24 amino-acid motif (CENPC motif). RESULTS: Whereas we find no evidence that mammalian CenH3 (CENP-A) has been evolving adaptively, mammalian CENP-C proteins contain adaptively evolving regions that overlap with regions of DNA-binding activity. In plants we find that CENP-C proteins have complex duplicated regions, with conserved amino and carboxyl termini that are dissimilar in sequence to their counterparts in animals and fungi. Comparisons of Cenpc genes from Arabidopsis species and from grasses revealed multiple regions that are under positive selection, including duplicated exons in some grasses. In contrast to plants and animals, yeast CENP-C (Mif2p) is under negative selection. CONCLUSIONS: CENP-Cs in all plant and animal lineages examined have regions that are rapidly and adaptively evolving. To explain these remarkable evolutionary features for a single-copy gene that is needed at every mitosis, we propose that CENP-Cs, like some CenH3s, suppress meiotic drive of centromeres during female meiosis. This process can account for the rapid evolution and the complexity of centromeric DNA in plants and animals as compared to fungi.
Talbert, PB. Bryson, TD. Henikoff, S.
Journal of biology.
2004.
3(4).
18.
The mismatch repair protein MLH1 marks a subset of strongly interfering crossovers in tomato.
The Plant cell (2007)
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In most eukaryotes, the prospective chromosomal positions of meiotic crossovers are marked during meiotic prophase by protein complexes called late recombination nodules (LNs). In tomato (Solanum lycopersicum), a cytological recombination map has been constructed based on LN positions. We demonstrate that the mismatch repair protein MLH1 occurs in LNs. We determined the positions of MLH1 foci along the 12 tomato chromosome pairs (bivalents) during meiotic prophase and compared the map of MLH1 focus positions with that of LN positions. On all 12 bivalents, the number of MLH1 foci was approximately 70% of the number of LNs. Bivalents with zero MLH1 foci were rare, which argues against random failure of detecting MLH1 in the LNs. We inferred that there are two types of LNs, MLH1-positive and MLH1-negative LNs, and that each bivalent gets an obligate MLH1-positive LN. The two LN types are differently distributed along the bivalents. Furthermore, cytological interference among MLH1 foci was much stronger than interference among LNs, implying that MLH1 marks the positions of a subset of strongly interfering crossovers. Based on the distances between MLH1 foci or LNs, we propose that MLH1-positive and MLH1-negative LNs stem from the same population of weakly interfering precursors.
Lhuissier, FG. Offenberg, HH. Wittich, PE. Vischer, NO. Heyting, C.
The Plant cell.
2007.
19(3).
862-76.
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