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Tomato locus Mi-1.1
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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Mi-1.1 is on PhyloGenes
TomDelDB genotype frequencies in tomato populations. chromosome SL2.50ch06, position: 2724013
Please cite Razifard et al.
TomDelDB genotype frequencies in tomato populations. chromosome SL2.50ch06, position: 2724548
Please cite Razifard et al.
Registry name: | None | [Associate registry name] |
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Image | Description | Type |
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![]() ![]() | [Associate accession] |
Alleles (0) | None | [Add new Allele] |
![]() ![]() | [Associate new locus] |
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![]() ![]() | View Mi-1.1 relationships in the stand-alone network browser |
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![]() ![]() | unprocessed genomic sequence region underlying this gene |
>Solyc06g008790.2 SL2.50ch06:2722296..2726237
ATGGAAAAACGAAAAGATAATGAAGAAACAAACAACTCATTGGTATGTTATTTTATAGAGTAAATTGTAAAGTATTGAATTATAGATATGTGGCTTTAAAATGTATTATTTTGGCAGGTGTTATTTTCTGCTCTTAGCAAGGACATTGCCGATGTTCTGGTTTACCTAGAGAATGAGGAAAATCAAAAAGCTCTTGACAAAGATCAAGTTGAAAAGCTAAAATTGAAAATGGCATTTATTTGTACATATGTTCAGCTTTCTTATTCCGATTTTGAGCAGTTTGAAGATATAATGACTAGAAAAAGACAAGAGGTTGAGAAACTGCTTCAACCACTTTTGGATGATGATGTCTTTACTAGCCTCACCAGTAATATGGATGATTGTATCAGCTTGTATAAATCAGATGCCATCATGATGGATGAGCAATTGGACTTCCTCCTTTTGAATCTGTATCATCTATCCAAGCATCACGCTGAAAAGATATTTCCTGGAGTGACTCAATATGAAGTTCTTCAGAATGTATGTGGCAACCTAAGAGATTTCCATGGGTTGATAGTGAATGGTTGCATTAAGCATGAGACGGTTGAGAATGTCTTACCTCTGTTTCAACTGATGGCTGAAAGAGTAGGACACTTCCTTTGGGAGGATCAGACTGATGAAGACTCTCGACTCTCCGAGCTAGATGCGGATGAACCAAATGATAGAGTCTCTCGACTTTTCAAGCTAGCACATCTACTCTTGAAGATTGTCCCGGTTGAACTGGAGGTTATGCACATATGTTATACAAACTTGAAAGCTTCAACTTCAGCTGAAGTTGGACTCTTCATTAAGCAGCTTCTAGAAACCTCTCCAGATATTCTGAGAGAATATCTAATTCATCTGCAAGAGCACATGGTAAGTGTTATTACCCCTAGCACTTCAGGGGCTCGAAACATTCATGTCATGCTGGAATTCCTGTTGATTATCCTTTCTGATATGCCCAAGGGCTTTATTCATCATGACAAACTTTTTGATCTCTTGGATCGTGTTGGAACACTTACCAGGGATGTATCAACTCTTGTACACGATTTGGAAGAGAAATTAAGGAATAAACAGGGTAACGACCAAACAAATCGTGCAACACTAGACTTGCTAAAAGATATTGAACTCCTCAAGGAAGACCTCAAACATGTTTATCTGAAGTCACCGGATTCATATCAATGTTTCTTCCCCATGAGTGATGGACCGCTCTTCATGCATATGTTGCACCTACACGTAAATGATTTGTTAGATTCAAATGCTTATTCAGTTTCTTTGATTAAGGAAGAAATTGAGCTGGTGAAGCAAGACCTGGAATTCATAAGATCATTCTTTGTGGATGCTGAGCAAGGATTGTATAAAGATATTTGGGCACGTATTCTAGATGTGGCTTATGAGGCAAAAGATGTCATTGATTCAATTATTGTTAGAGATAATGGTCTCTTACATCTTCTTTTCTCACTTCCCATTACCATAAAGAAGATGAAGCTTATCAAAGAAGAGGTTTCTGATTTACATGAGAAGATTCTGAAGAACAGAGGTCTCATTGTTGTGAACTCTCCCAAGAAACCAGTTGAGAGCAAGTCATTGACAACTGATAAAATAGTTGTAGGTTTTGAGGAGGAGACAAAATGGATACTTAGAAAGCTCACTAGTGGACCTACAGATCTAGATGTCATTTCGATCACTGGTATGCCGGGTTCAGGTAAAACTACTTTGGCATACAAAGTATACAATGATAAATCAGTTTCTAGCCATTTCGACCTTCATGCATGGTGCACGGTCGACCAAGGATGTGATGAGAAGAAGTTGTTGAATAAAATTTTCAAACAAGTTAGTGACTCAGATTCAAAATTGAGTGAGGATATTGATGTTGCTGATAAGCTACGGAAACAACTGTATGGAAAGAGGTATCTTATTGTCTTAGATGACGTGTGGGATACAACTACATGGGATGAGTTGACAAGACCTTTTCCTGAATCTAAGAAAGGAAGTAGGATTATTTTGACAACTCGAGAAAAGGAAGTGGCTTTGCATGGAAAGCTGAACACTGATCCTCTTGACCTTCGATTGCTAAGATCAGAAGAAAGTTGGGAATTATTACAGAAAAGGGCATTTGGAAACGAGAGTTGCCCTAATGAACTATTAGATGTCGGTAAAGAAATCGCCGAAAATTGTAAAGGTCTTCCTTTGGTGGCTGATCTAATTGCTGGAGTCATTGCTGGGAGGGAAAAGAAAAGGAGTGTGTGGCTTGAAGTTTTAAATAATTCGCATTCCTTTATTTTGAAGAATGAAGTGGAAGTGATGAAAGTTATTGAAATAAGTTATGACCACTTATCTGATCATCTGAAGCCATGCTTGCTGTATTTTGCAAGTTGGCCGAAGGACACTATAATGACAATCTATGAGTTGAATGGTTTTTTGGGTGGTGAAGGATTTGTGGGGAAGACAGAGATGAAGAGTATGGAAGAAGTGGTGAAGATTTATATGGATGATTTAATTTCGAGTAGCTTGGTAATTTGTTTCAATGAGATAGGTGAGTACCCGACTTACCAACTTCATGATCTTGTGCATGATTATTGTTTGATAAAAGCAAGAAAGGAAAATCTGTTTGATCGGATAAGATCAAGTGCTCCATCAGATTTGTTGCCTCGTCAAATTACCATTGATGATAAGGAGCACTTTGGGCTTAATTTTGTCATGTTCGATTCAAATAAGAAAAGGCATTCTGGTAAACACCTCTATTCTTTGGGGATAAATGGAGACCAACTGGATGACAGTGTTTCTGATGCATTTCACCTAAGACACTTGAGGCTTCTTAGAGTGTTGGACCTGGATAACTCTTTTATCATGGTGAATGATTCTTTGCTGAATGAAATATGCATGTTGAATCATTTGAGGTACTTAAGAATTGGGACAGAAGTTAAATATCTGCCTTTGTCTTTCTCAAACCTCTGGAATCTAGAAATCTTGTCGGTGAATAACAAAGAATCAACCTTGATACTATTACCAAGAATTTGGGATCTTGTAAAGCTGCGAGCGCTGTTCGTGAGTGCTTGTTCTTTCTTTGATATGGATGCAGATGAATCAATATTGATTGCAGAGGACACAAAGTTAGAGAACTTGAGAATATTAGGGGAACTGGTGATTTCCTATTTGAAAGATACAAAGAATATTTTCAAAAGGTTTCCCAATCTTCAGGTGCTTCAGTTTGAACTCAAGGAGTCATGGGATTATTCAACAGAGCAATATTGGTTCCCGAAATTGGATTGCCTAACTGAACTAGAACAACTCAGTGTAAGTTTTGAAAGTTCAAACACAAACCACATTGGGTCCTCTGTAGCGACAAATCGGCCGTGGGATTTTCACTTCCCTTCAAATTTGAAACAACTGTTGTTGTCTGACTTTCCTCTGACATCCGATTCGCTATCAACAATAGCGAGACTGCACAACCTAGAAGAGTTGTCCCTTTATGATGCAATCATCCAGGGAGAAGAATGGAACATGGGGGAGGAAGACACCTTTATGAATCTCAAATTTTTGAACTTGTGTCTACCGACTCTTTCCAAGTGGGAGGTTGGAGAGGAATCCTTCCCCAATCTTGAGAAATTAAAACTGCAGGGATGTGGTAAGCTTGAGGAGATTCCACCTAGTTTTGGAGATATTTATTCATTGAAATTTATCAAAATTGTAAAGAGTCCTCAACTTGAATATTCTGCTCTCAAGATTAAGGAATATGCTGAAGAGATGAGAGGAGGGAGCGAGCTTCAGATCCTTGGCCAAAAGAATATCCCCTTATTTAAGTAGCATTATGGTTGAACTTTGCTGGGTGACATTGTATATGACAAATATCATTTGTTAATTTGTCCATTTGAAGTGACTATCTGAAGTTCATATTTTTAAACATTAATCTTGTATACCAAA
ATGGAAAAACGAAAAGATAATGAAGAAACAAACAACTCATTGGTATGTTATTTTATAGAGTAAATTGTAAAGTATTGAATTATAGATATGTGGCTTTAAAATGTATTATTTTGGCAGGTGTTATTTTCTGCTCTTAGCAAGGACATTGCCGATGTTCTGGTTTACCTAGAGAATGAGGAAAATCAAAAAGCTCTTGACAAAGATCAAGTTGAAAAGCTAAAATTGAAAATGGCATTTATTTGTACATATGTTCAGCTTTCTTATTCCGATTTTGAGCAGTTTGAAGATATAATGACTAGAAAAAGACAAGAGGTTGAGAAACTGCTTCAACCACTTTTGGATGATGATGTCTTTACTAGCCTCACCAGTAATATGGATGATTGTATCAGCTTGTATAAATCAGATGCCATCATGATGGATGAGCAATTGGACTTCCTCCTTTTGAATCTGTATCATCTATCCAAGCATCACGCTGAAAAGATATTTCCTGGAGTGACTCAATATGAAGTTCTTCAGAATGTATGTGGCAACCTAAGAGATTTCCATGGGTTGATAGTGAATGGTTGCATTAAGCATGAGACGGTTGAGAATGTCTTACCTCTGTTTCAACTGATGGCTGAAAGAGTAGGACACTTCCTTTGGGAGGATCAGACTGATGAAGACTCTCGACTCTCCGAGCTAGATGCGGATGAACCAAATGATAGAGTCTCTCGACTTTTCAAGCTAGCACATCTACTCTTGAAGATTGTCCCGGTTGAACTGGAGGTTATGCACATATGTTATACAAACTTGAAAGCTTCAACTTCAGCTGAAGTTGGACTCTTCATTAAGCAGCTTCTAGAAACCTCTCCAGATATTCTGAGAGAATATCTAATTCATCTGCAAGAGCACATGGTAAGTGTTATTACCCCTAGCACTTCAGGGGCTCGAAACATTCATGTCATGCTGGAATTCCTGTTGATTATCCTTTCTGATATGCCCAAGGGCTTTATTCATCATGACAAACTTTTTGATCTCTTGGATCGTGTTGGAACACTTACCAGGGATGTATCAACTCTTGTACACGATTTGGAAGAGAAATTAAGGAATAAACAGGGTAACGACCAAACAAATCGTGCAACACTAGACTTGCTAAAAGATATTGAACTCCTCAAGGAAGACCTCAAACATGTTTATCTGAAGTCACCGGATTCATATCAATGTTTCTTCCCCATGAGTGATGGACCGCTCTTCATGCATATGTTGCACCTACACGTAAATGATTTGTTAGATTCAAATGCTTATTCAGTTTCTTTGATTAAGGAAGAAATTGAGCTGGTGAAGCAAGACCTGGAATTCATAAGATCATTCTTTGTGGATGCTGAGCAAGGATTGTATAAAGATATTTGGGCACGTATTCTAGATGTGGCTTATGAGGCAAAAGATGTCATTGATTCAATTATTGTTAGAGATAATGGTCTCTTACATCTTCTTTTCTCACTTCCCATTACCATAAAGAAGATGAAGCTTATCAAAGAAGAGGTTTCTGATTTACATGAGAAGATTCTGAAGAACAGAGGTCTCATTGTTGTGAACTCTCCCAAGAAACCAGTTGAGAGCAAGTCATTGACAACTGATAAAATAGTTGTAGGTTTTGAGGAGGAGACAAAATGGATACTTAGAAAGCTCACTAGTGGACCTACAGATCTAGATGTCATTTCGATCACTGGTATGCCGGGTTCAGGTAAAACTACTTTGGCATACAAAGTATACAATGATAAATCAGTTTCTAGCCATTTCGACCTTCATGCATGGTGCACGGTCGACCAAGGATGTGATGAGAAGAAGTTGTTGAATAAAATTTTCAAACAAGTTAGTGACTCAGATTCAAAATTGAGTGAGGATATTGATGTTGCTGATAAGCTACGGAAACAACTGTATGGAAAGAGGTATCTTATTGTCTTAGATGACGTGTGGGATACAACTACATGGGATGAGTTGACAAGACCTTTTCCTGAATCTAAGAAAGGAAGTAGGATTATTTTGACAACTCGAGAAAAGGAAGTGGCTTTGCATGGAAAGCTGAACACTGATCCTCTTGACCTTCGATTGCTAAGATCAGAAGAAAGTTGGGAATTATTACAGAAAAGGGCATTTGGAAACGAGAGTTGCCCTAATGAACTATTAGATGTCGGTAAAGAAATCGCCGAAAATTGTAAAGGTCTTCCTTTGGTGGCTGATCTAATTGCTGGAGTCATTGCTGGGAGGGAAAAGAAAAGGAGTGTGTGGCTTGAAGTTTTAAATAATTCGCATTCCTTTATTTTGAAGAATGAAGTGGAAGTGATGAAAGTTATTGAAATAAGTTATGACCACTTATCTGATCATCTGAAGCCATGCTTGCTGTATTTTGCAAGTTGGCCGAAGGACACTATAATGACAATCTATGAGTTGAATGGTTTTTTGGGTGGTGAAGGATTTGTGGGGAAGACAGAGATGAAGAGTATGGAAGAAGTGGTGAAGATTTATATGGATGATTTAATTTCGAGTAGCTTGGTAATTTGTTTCAATGAGATAGGTGAGTACCCGACTTACCAACTTCATGATCTTGTGCATGATTATTGTTTGATAAAAGCAAGAAAGGAAAATCTGTTTGATCGGATAAGATCAAGTGCTCCATCAGATTTGTTGCCTCGTCAAATTACCATTGATGATAAGGAGCACTTTGGGCTTAATTTTGTCATGTTCGATTCAAATAAGAAAAGGCATTCTGGTAAACACCTCTATTCTTTGGGGATAAATGGAGACCAACTGGATGACAGTGTTTCTGATGCATTTCACCTAAGACACTTGAGGCTTCTTAGAGTGTTGGACCTGGATAACTCTTTTATCATGGTGAATGATTCTTTGCTGAATGAAATATGCATGTTGAATCATTTGAGGTACTTAAGAATTGGGACAGAAGTTAAATATCTGCCTTTGTCTTTCTCAAACCTCTGGAATCTAGAAATCTTGTCGGTGAATAACAAAGAATCAACCTTGATACTATTACCAAGAATTTGGGATCTTGTAAAGCTGCGAGCGCTGTTCGTGAGTGCTTGTTCTTTCTTTGATATGGATGCAGATGAATCAATATTGATTGCAGAGGACACAAAGTTAGAGAACTTGAGAATATTAGGGGAACTGGTGATTTCCTATTTGAAAGATACAAAGAATATTTTCAAAAGGTTTCCCAATCTTCAGGTGCTTCAGTTTGAACTCAAGGAGTCATGGGATTATTCAACAGAGCAATATTGGTTCCCGAAATTGGATTGCCTAACTGAACTAGAACAACTCAGTGTAAGTTTTGAAAGTTCAAACACAAACCACATTGGGTCCTCTGTAGCGACAAATCGGCCGTGGGATTTTCACTTCCCTTCAAATTTGAAACAACTGTTGTTGTCTGACTTTCCTCTGACATCCGATTCGCTATCAACAATAGCGAGACTGCACAACCTAGAAGAGTTGTCCCTTTATGATGCAATCATCCAGGGAGAAGAATGGAACATGGGGGAGGAAGACACCTTTATGAATCTCAAATTTTTGAACTTGTGTCTACCGACTCTTTCCAAGTGGGAGGTTGGAGAGGAATCCTTCCCCAATCTTGAGAAATTAAAACTGCAGGGATGTGGTAAGCTTGAGGAGATTCCACCTAGTTTTGGAGATATTTATTCATTGAAATTTATCAAAATTGTAAAGAGTCCTCAACTTGAATATTCTGCTCTCAAGATTAAGGAATATGCTGAAGAGATGAGAGGAGGGAGCGAGCTTCAGATCCTTGGCCAAAAGAATATCCCCTTATTTAAGTAGCATTATGGTTGAACTTTGCTGGGTGACATTGTATATGACAAATATCATTTGTTAATTTGTCCATTTGAAGTGACTATCTGAAGTTCATATTTTTAAACATTAATCTTGTATACCAAA
Download sequence region |
Get flanking sequences on SL2.50ch06
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![]() ![]() | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>Solyc06g008790.2.1 Cc-nbs-lrr, resistance protein
ATGGAAAAACGAAAAGATAATGAAGAAACAAACAACTCATTGGTGTTATTTTCTGCTCTTAGCAAGGACATTGCCGATGTTCTGGTTTACCTAGAGAATGAGGAAAATCAAAAAGCTCTTGACAAAGATCAAGTTGAAAAGCTAAAATTGAAAATGGCATTTATTTGTACATATGTTCAGCTTTCTTATTCCGATTTTGAGCAGTTTGAAGATATAATGACTAGAAAAAGACAAGAGGTTGAGAAACTGCTTCAACCACTTTTGGATGATGATGTCTTTACTAGCCTCACCAGTAATATGGATGATTGTATCAGCTTGTATAAATCAGATGCCATCATGATGGATGAGCAATTGGACTTCCTCCTTTTGAATCTGTATCATCTATCCAAGCATCACGCTGAAAAGATATTTCCTGGAGTGACTCAATATGAAGTTCTTCAGAATGTATGTGGCAACCTAAGAGATTTCCATGGGTTGATAGTGAATGGTTGCATTAAGCATGAGACGGTTGAGAATGTCTTACCTCTGTTTCAACTGATGGCTGAAAGAGTAGGACACTTCCTTTGGGAGGATCAGACTGATGAAGACTCTCGACTCTCCGAGCTAGATGCGGATGAACCAAATGATAGAGTCTCTCGACTTTTCAAGCTAGCACATCTACTCTTGAAGATTGTCCCGGTTGAACTGGAGGTTATGCACATATGTTATACAAACTTGAAAGCTTCAACTTCAGCTGAAGTTGGACTCTTCATTAAGCAGCTTCTAGAAACCTCTCCAGATATTCTGAGAGAATATCTAATTCATCTGCAAGAGCACATGGTAAGTGTTATTACCCCTAGCACTTCAGGGGCTCGAAACATTCATGTCATGCTGGAATTCCTGTTGATTATCCTTTCTGATATGCCCAAGGGCTTTATTCATCATGACAAACTTTTTGATCTCTTGGATCGTGTTGGAACACTTACCAGGGATGTATCAACTCTTGTACACGATTTGGAAGAGAAATTAAGGAATAAACAGGGTAACGACCAAACAAATCGTGCAACACTAGACTTGCTAAAAGATATTGAACTCCTCAAGGAAGACCTCAAACATGTTTATCTGAAGTCACCGGATTCATATCAATGTTTCTTCCCCATGAGTGATGGACCGCTCTTCATGCATATGTTGCACCTACACGTAAATGATTTGTTAGATTCAAATGCTTATTCAGTTTCTTTGATTAAGGAAGAAATTGAGCTGGTGAAGCAAGACCTGGAATTCATAAGATCATTCTTTGTGGATGCTGAGCAAGGATTGTATAAAGATATTTGGGCACGTATTCTAGATGTGGCTTATGAGGCAAAAGATGTCATTGATTCAATTATTGTTAGAGATAATGGTCTCTTACATCTTCTTTTCTCACTTCCCATTACCATAAAGAAGATGAAGCTTATCAAAGAAGAGGTTTCTGATTTACATGAGAAGATTCTGAAGAACAGAGGTCTCATTGTTGTGAACTCTCCCAAGAAACCAGTTGAGAGCAAGTCATTGACAACTGATAAAATAGTTGTAGGTTTTGAGGAGGAGACAAAATGGATACTTAGAAAGCTCACTAGTGGACCTACAGATCTAGATGTCATTTCGATCACTGGTATGCCGGGTTCAGGTAAAACTACTTTGGCATACAAAGTATACAATGATAAATCAGTTTCTAGCCATTTCGACCTTCATGCATGGTGCACGGTCGACCAAGGATGTGATGAGAAGAAGTTGTTGAATAAAATTTTCAAACAAGTTAGTGACTCAGATTCAAAATTGAGTGAGGATATTGATGTTGCTGATAAGCTACGGAAACAACTGTATGGAAAGAGGTATCTTATTGTCTTAGATGACGTGTGGGATACAACTACATGGGATGAGTTGACAAGACCTTTTCCTGAATCTAAGAAAGGAAGTAGGATTATTTTGACAACTCGAGAAAAGGAAGTGGCTTTGCATGGAAAGCTGAACACTGATCCTCTTGACCTTCGATTGCTAAGATCAGAAGAAAGTTGGGAATTATTACAGAAAAGGGCATTTGGAAACGAGAGTTGCCCTAATGAACTATTAGATGTCGGTAAAGAAATCGCCGAAAATTGTAAAGGTCTTCCTTTGGTGGCTGATCTAATTGCTGGAGTCATTGCTGGGAGGGAAAAGAAAAGGAGTGTGTGGCTTGAAGTTTTAAATAATTCGCATTCCTTTATTTTGAAGAATGAAGTGGAAGTGATGAAAGTTATTGAAATAAGTTATGACCACTTATCTGATCATCTGAAGCCATGCTTGCTGTATTTTGCAAGTTGGCCGAAGGACACTATAATGACAATCTATGAGTTGAATGGTTTTTTGGGTGGTGAAGGATTTGTGGGGAAGACAGAGATGAAGAGTATGGAAGAAGTGGTGAAGATTTATATGGATGATTTAATTTCGAGTAGCTTGGTAATTTGTTTCAATGAGATAGGTGAGTACCCGACTTACCAACTTCATGATCTTGTGCATGATTATTGTTTGATAAAAGCAAGAAAGGAAAATCTGTTTGATCGGATAAGATCAAGTGCTCCATCAGATTTGTTGCCTCGTCAAATTACCATTGATGATAAGGAGCACTTTGGGCTTAATTTTGTCATGTTCGATTCAAATAAGAAAAGGCATTCTGGTAAACACCTCTATTCTTTGGGGATAAATGGAGACCAACTGGATGACAGTGTTTCTGATGCATTTCACCTAAGACACTTGAGGCTTCTTAGAGTGTTGGACCTGGATAACTCTTTTATCATGGTGAATGATTCTTTGCTGAATGAAATATGCATGTTGAATCATTTGAGGTACTTAAGAATTGGGACAGAAGTTAAATATCTGCCTTTGTCTTTCTCAAACCTCTGGAATCTAGAAATCTTGTCGGTGAATAACAAAGAATCAACCTTGATACTATTACCAAGAATTTGGGATCTTGTAAAGCTGCGAGCGCTGTTCGTGAGTGCTTGTTCTTTCTTTGATATGGATGCAGATGAATCAATATTGATTGCAGAGGACACAAAGTTAGAGAACTTGAGAATATTAGGGGAACTGGTGATTTCCTATTTGAAAGATACAAAGAATATTTTCAAAAGGTTTCCCAATCTTCAGGTGCTTCAGTTTGAACTCAAGGAGTCATGGGATTATTCAACAGAGCAATATTGGTTCCCGAAATTGGATTGCCTAACTGAACTAGAACAACTCAGTGTAAGTTTTGAAAGTTCAAACACAAACCACATTGGGTCCTCTGTAGCGACAAATCGGCCGTGGGATTTTCACTTCCCTTCAAATTTGAAACAACTGTTGTTGTCTGACTTTCCTCTGACATCCGATTCGCTATCAACAATAGCGAGACTGCACAACCTAGAAGAGTTGTCCCTTTATGATGCAATCATCCAGGGAGAAGAATGGAACATGGGGGAGGAAGACACCTTTATGAATCTCAAATTTTTGAACTTGTGTCTACCGACTCTTTCCAAGTGGGAGGTTGGAGAGGAATCCTTCCCCAATCTTGAGAAATTAAAACTGCAGGGATGTGGTAAGCTTGAGGAGATTCCACCTAGTTTTGGAGATATTTATTCATTGAAATTTATCAAAATTGTAAAGAGTCCTCAACTTGAATATTCTGCTCTCAAGATTAAGGAATATGCTGAAGAGATGAGAGGAGGGAGCGAGCTTCAGATCCTTGGCCAAAAGAATATCCCCTTATTTAAGTAGCATTATGGTTGAACTTTGCTGGGTGACATTGTATATGACAAATATCATTTGTTAATTTGTCCATTTGAAGTGACTATCTGAAGTTCATATTTTTAAACATTAATCTTGTATACCAAA
ATGGAAAAACGAAAAGATAATGAAGAAACAAACAACTCATTGGTGTTATTTTCTGCTCTTAGCAAGGACATTGCCGATGTTCTGGTTTACCTAGAGAATGAGGAAAATCAAAAAGCTCTTGACAAAGATCAAGTTGAAAAGCTAAAATTGAAAATGGCATTTATTTGTACATATGTTCAGCTTTCTTATTCCGATTTTGAGCAGTTTGAAGATATAATGACTAGAAAAAGACAAGAGGTTGAGAAACTGCTTCAACCACTTTTGGATGATGATGTCTTTACTAGCCTCACCAGTAATATGGATGATTGTATCAGCTTGTATAAATCAGATGCCATCATGATGGATGAGCAATTGGACTTCCTCCTTTTGAATCTGTATCATCTATCCAAGCATCACGCTGAAAAGATATTTCCTGGAGTGACTCAATATGAAGTTCTTCAGAATGTATGTGGCAACCTAAGAGATTTCCATGGGTTGATAGTGAATGGTTGCATTAAGCATGAGACGGTTGAGAATGTCTTACCTCTGTTTCAACTGATGGCTGAAAGAGTAGGACACTTCCTTTGGGAGGATCAGACTGATGAAGACTCTCGACTCTCCGAGCTAGATGCGGATGAACCAAATGATAGAGTCTCTCGACTTTTCAAGCTAGCACATCTACTCTTGAAGATTGTCCCGGTTGAACTGGAGGTTATGCACATATGTTATACAAACTTGAAAGCTTCAACTTCAGCTGAAGTTGGACTCTTCATTAAGCAGCTTCTAGAAACCTCTCCAGATATTCTGAGAGAATATCTAATTCATCTGCAAGAGCACATGGTAAGTGTTATTACCCCTAGCACTTCAGGGGCTCGAAACATTCATGTCATGCTGGAATTCCTGTTGATTATCCTTTCTGATATGCCCAAGGGCTTTATTCATCATGACAAACTTTTTGATCTCTTGGATCGTGTTGGAACACTTACCAGGGATGTATCAACTCTTGTACACGATTTGGAAGAGAAATTAAGGAATAAACAGGGTAACGACCAAACAAATCGTGCAACACTAGACTTGCTAAAAGATATTGAACTCCTCAAGGAAGACCTCAAACATGTTTATCTGAAGTCACCGGATTCATATCAATGTTTCTTCCCCATGAGTGATGGACCGCTCTTCATGCATATGTTGCACCTACACGTAAATGATTTGTTAGATTCAAATGCTTATTCAGTTTCTTTGATTAAGGAAGAAATTGAGCTGGTGAAGCAAGACCTGGAATTCATAAGATCATTCTTTGTGGATGCTGAGCAAGGATTGTATAAAGATATTTGGGCACGTATTCTAGATGTGGCTTATGAGGCAAAAGATGTCATTGATTCAATTATTGTTAGAGATAATGGTCTCTTACATCTTCTTTTCTCACTTCCCATTACCATAAAGAAGATGAAGCTTATCAAAGAAGAGGTTTCTGATTTACATGAGAAGATTCTGAAGAACAGAGGTCTCATTGTTGTGAACTCTCCCAAGAAACCAGTTGAGAGCAAGTCATTGACAACTGATAAAATAGTTGTAGGTTTTGAGGAGGAGACAAAATGGATACTTAGAAAGCTCACTAGTGGACCTACAGATCTAGATGTCATTTCGATCACTGGTATGCCGGGTTCAGGTAAAACTACTTTGGCATACAAAGTATACAATGATAAATCAGTTTCTAGCCATTTCGACCTTCATGCATGGTGCACGGTCGACCAAGGATGTGATGAGAAGAAGTTGTTGAATAAAATTTTCAAACAAGTTAGTGACTCAGATTCAAAATTGAGTGAGGATATTGATGTTGCTGATAAGCTACGGAAACAACTGTATGGAAAGAGGTATCTTATTGTCTTAGATGACGTGTGGGATACAACTACATGGGATGAGTTGACAAGACCTTTTCCTGAATCTAAGAAAGGAAGTAGGATTATTTTGACAACTCGAGAAAAGGAAGTGGCTTTGCATGGAAAGCTGAACACTGATCCTCTTGACCTTCGATTGCTAAGATCAGAAGAAAGTTGGGAATTATTACAGAAAAGGGCATTTGGAAACGAGAGTTGCCCTAATGAACTATTAGATGTCGGTAAAGAAATCGCCGAAAATTGTAAAGGTCTTCCTTTGGTGGCTGATCTAATTGCTGGAGTCATTGCTGGGAGGGAAAAGAAAAGGAGTGTGTGGCTTGAAGTTTTAAATAATTCGCATTCCTTTATTTTGAAGAATGAAGTGGAAGTGATGAAAGTTATTGAAATAAGTTATGACCACTTATCTGATCATCTGAAGCCATGCTTGCTGTATTTTGCAAGTTGGCCGAAGGACACTATAATGACAATCTATGAGTTGAATGGTTTTTTGGGTGGTGAAGGATTTGTGGGGAAGACAGAGATGAAGAGTATGGAAGAAGTGGTGAAGATTTATATGGATGATTTAATTTCGAGTAGCTTGGTAATTTGTTTCAATGAGATAGGTGAGTACCCGACTTACCAACTTCATGATCTTGTGCATGATTATTGTTTGATAAAAGCAAGAAAGGAAAATCTGTTTGATCGGATAAGATCAAGTGCTCCATCAGATTTGTTGCCTCGTCAAATTACCATTGATGATAAGGAGCACTTTGGGCTTAATTTTGTCATGTTCGATTCAAATAAGAAAAGGCATTCTGGTAAACACCTCTATTCTTTGGGGATAAATGGAGACCAACTGGATGACAGTGTTTCTGATGCATTTCACCTAAGACACTTGAGGCTTCTTAGAGTGTTGGACCTGGATAACTCTTTTATCATGGTGAATGATTCTTTGCTGAATGAAATATGCATGTTGAATCATTTGAGGTACTTAAGAATTGGGACAGAAGTTAAATATCTGCCTTTGTCTTTCTCAAACCTCTGGAATCTAGAAATCTTGTCGGTGAATAACAAAGAATCAACCTTGATACTATTACCAAGAATTTGGGATCTTGTAAAGCTGCGAGCGCTGTTCGTGAGTGCTTGTTCTTTCTTTGATATGGATGCAGATGAATCAATATTGATTGCAGAGGACACAAAGTTAGAGAACTTGAGAATATTAGGGGAACTGGTGATTTCCTATTTGAAAGATACAAAGAATATTTTCAAAAGGTTTCCCAATCTTCAGGTGCTTCAGTTTGAACTCAAGGAGTCATGGGATTATTCAACAGAGCAATATTGGTTCCCGAAATTGGATTGCCTAACTGAACTAGAACAACTCAGTGTAAGTTTTGAAAGTTCAAACACAAACCACATTGGGTCCTCTGTAGCGACAAATCGGCCGTGGGATTTTCACTTCCCTTCAAATTTGAAACAACTGTTGTTGTCTGACTTTCCTCTGACATCCGATTCGCTATCAACAATAGCGAGACTGCACAACCTAGAAGAGTTGTCCCTTTATGATGCAATCATCCAGGGAGAAGAATGGAACATGGGGGAGGAAGACACCTTTATGAATCTCAAATTTTTGAACTTGTGTCTACCGACTCTTTCCAAGTGGGAGGTTGGAGAGGAATCCTTCCCCAATCTTGAGAAATTAAAACTGCAGGGATGTGGTAAGCTTGAGGAGATTCCACCTAGTTTTGGAGATATTTATTCATTGAAATTTATCAAAATTGTAAAGAGTCCTCAACTTGAATATTCTGCTCTCAAGATTAAGGAATATGCTGAAGAGATGAGAGGAGGGAGCGAGCTTCAGATCCTTGGCCAAAAGAATATCCCCTTATTTAAGTAGCATTATGGTTGAACTTTGCTGGGTGACATTGTATATGACAAATATCATTTGTTAATTTGTCCATTTGAAGTGACTATCTGAAGTTCATATTTTTAAACATTAATCTTGTATACCAAA
![]() ![]() | translated polypeptide sequence |
>Solyc06g008790.2.1 Cc-nbs-lrr, resistance protein
MEKRKDNEETNNSLVLFSALSKDIADVLVYLENEENQKALDKDQVEKLKLKMAFICTYVQLSYSDFEQFEDIMTRKRQEVEKLLQPLLDDDVFTSLTSNMDDCISLYKSDAIMMDEQLDFLLLNLYHLSKHHAEKIFPGVTQYEVLQNVCGNLRDFHGLIVNGCIKHETVENVLPLFQLMAERVGHFLWEDQTDEDSRLSELDADEPNDRVSRLFKLAHLLLKIVPVELEVMHICYTNLKASTSAEVGLFIKQLLETSPDILREYLIHLQEHMVSVITPSTSGARNIHVMLEFLLIILSDMPKGFIHHDKLFDLLDRVGTLTRDVSTLVHDLEEKLRNKQGNDQTNRATLDLLKDIELLKEDLKHVYLKSPDSYQCFFPMSDGPLFMHMLHLHVNDLLDSNAYSVSLIKEEIELVKQDLEFIRSFFVDAEQGLYKDIWARILDVAYEAKDVIDSIIVRDNGLLHLLFSLPITIKKMKLIKEEVSDLHEKILKNRGLIVVNSPKKPVESKSLTTDKIVVGFEEETKWILRKLTSGPTDLDVISITGMPGSGKTTLAYKVYNDKSVSSHFDLHAWCTVDQGCDEKKLLNKIFKQVSDSDSKLSEDIDVADKLRKQLYGKRYLIVLDDVWDTTTWDELTRPFPESKKGSRIILTTREKEVALHGKLNTDPLDLRLLRSEESWELLQKRAFGNESCPNELLDVGKEIAENCKGLPLVADLIAGVIAGREKKRSVWLEVLNNSHSFILKNEVEVMKVIEISYDHLSDHLKPCLLYFASWPKDTIMTIYELNGFLGGEGFVGKTEMKSMEEVVKIYMDDLISSSLVICFNEIGEYPTYQLHDLVHDYCLIKARKENLFDRIRSSAPSDLLPRQITIDDKEHFGLNFVMFDSNKKRHSGKHLYSLGINGDQLDDSVSDAFHLRHLRLLRVLDLDNSFIMVNDSLLNEICMLNHLRYLRIGTEVKYLPLSFSNLWNLEILSVNNKESTLILLPRIWDLVKLRALFVSACSFFDMDADESILIAEDTKLENLRILGELVISYLKDTKNIFKRFPNLQVLQFELKESWDYSTEQYWFPKLDCLTELEQLSVSFESSNTNHIGSSVATNRPWDFHFPSNLKQLLLSDFPLTSDSLSTIARLHNLEELSLYDAIIQGEEWNMGEEDTFMNLKFLNLCLPTLSKWEVGEESFPNLEKLKLQGCGKLEEIPPSFGDIYSLKFIKIVKSPQLEYSALKIKEYAEEMRGGSELQILGQKNIPLFK*
MEKRKDNEETNNSLVLFSALSKDIADVLVYLENEENQKALDKDQVEKLKLKMAFICTYVQLSYSDFEQFEDIMTRKRQEVEKLLQPLLDDDVFTSLTSNMDDCISLYKSDAIMMDEQLDFLLLNLYHLSKHHAEKIFPGVTQYEVLQNVCGNLRDFHGLIVNGCIKHETVENVLPLFQLMAERVGHFLWEDQTDEDSRLSELDADEPNDRVSRLFKLAHLLLKIVPVELEVMHICYTNLKASTSAEVGLFIKQLLETSPDILREYLIHLQEHMVSVITPSTSGARNIHVMLEFLLIILSDMPKGFIHHDKLFDLLDRVGTLTRDVSTLVHDLEEKLRNKQGNDQTNRATLDLLKDIELLKEDLKHVYLKSPDSYQCFFPMSDGPLFMHMLHLHVNDLLDSNAYSVSLIKEEIELVKQDLEFIRSFFVDAEQGLYKDIWARILDVAYEAKDVIDSIIVRDNGLLHLLFSLPITIKKMKLIKEEVSDLHEKILKNRGLIVVNSPKKPVESKSLTTDKIVVGFEEETKWILRKLTSGPTDLDVISITGMPGSGKTTLAYKVYNDKSVSSHFDLHAWCTVDQGCDEKKLLNKIFKQVSDSDSKLSEDIDVADKLRKQLYGKRYLIVLDDVWDTTTWDELTRPFPESKKGSRIILTTREKEVALHGKLNTDPLDLRLLRSEESWELLQKRAFGNESCPNELLDVGKEIAENCKGLPLVADLIAGVIAGREKKRSVWLEVLNNSHSFILKNEVEVMKVIEISYDHLSDHLKPCLLYFASWPKDTIMTIYELNGFLGGEGFVGKTEMKSMEEVVKIYMDDLISSSLVICFNEIGEYPTYQLHDLVHDYCLIKARKENLFDRIRSSAPSDLLPRQITIDDKEHFGLNFVMFDSNKKRHSGKHLYSLGINGDQLDDSVSDAFHLRHLRLLRVLDLDNSFIMVNDSLLNEICMLNHLRYLRIGTEVKYLPLSFSNLWNLEILSVNNKESTLILLPRIWDLVKLRALFVSACSFFDMDADESILIAEDTKLENLRILGELVISYLKDTKNIFKRFPNLQVLQFELKESWDYSTEQYWFPKLDCLTELEQLSVSFESSNTNHIGSSVATNRPWDFHFPSNLKQLLLSDFPLTSDSLSTIARLHNLEELSLYDAIIQGEEWNMGEEDTFMNLKFLNLCLPTLSKWEVGEESFPNLEKLKLQGCGKLEEIPPSFGDIYSLKFIKIVKSPQLEYSALKIKEYAEEMRGGSELQILGQKNIPLFK*
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AF039681 Lycopersicon esculentum plant resistance protein (Mi-1.1) mRNA, complete cds.
Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
The root knot nematode resistance gene Mi from tomato is a member of the leucine zipper, nucleotide binding, leucine-rich repeat family of plant genes.
The Plant cell (1998)
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The Mi locus of tomato confers resistance to root knot nematodes. Tomato DNA spanning the locus was isolated as bacterial artificial chromosome clones, and 52 kb of contiguous DNA was sequenced. Three open reading frames were identified with similarity to cloned plant disease resistance genes. Two of them, Mi-1.1 and Mi-1.2, appear to be intact genes; the third is a pseudogene. A 4-kb mRNA hybridizing with these genes is present in tomato roots. Complementation studies using cloned copies of Mi-1.1 and Mi-1.2 indicated that Mi-1.2, but not Mi-1.1, is sufficient to confer resistance to a susceptible tomato line with the progeny of transformants segregating for resistance. The cloned gene most similar to Mi-1.2 is Prf, a tomato gene required for resistance to Pseudomonas syringae. Prf and Mi-1.2 share several structural motifs, including a nucleotide binding site and a leucine-rich repeat region, that are characteristic of a family of plant proteins, including several that are required for resistance against viruses, bacteria, fungi, and now, nematodes.
Milligan, SB. Bodeau, J. Yaghoobi, J. Kaloshian, I. Zabel, P. Williamson, VM.
The Plant cell.
1998.
10(8).
1307-19.
The nematode resistance gene Mi of tomato confers resistance against the potato aphid.
Proceedings of the National Academy of Sciences of the United States of America (1998)
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Resistance against the aphid Macrosiphum euphorbiae previously was observed in tomato and attributed to a novel gene, designated Meu-1, tightly linked to the nematode resistance gene, Mi. Recent cloning of Mi allowed us to determine whether Meu-1 and Mi are the same gene. We show that Mi is expressed in leaves, that aphid resistance is isolate-specific, and that susceptible tomato transformed with Mi is resistant to the same aphid isolates as the original resistant lines. We conclude that Mi and Meu-1 are the same gene and that Mi mediates resistance against both aphids and nematodes, organisms belonging to different phyla. Mi is the first example of a plant resistance gene active against two such distantly related organisms. Furthermore, it is the first isolate-specific insect resistance gene to be cloned and belongs to the nucleotide-binding, leucine-rich repeat family of resistance genes.
Rossi, M. Goggin, FL. Milligan, SB. Kaloshian, I. Ullman, DE. Williamson, VM.
Proceedings of the National Academy of Sciences of the United States of America.
1998.
95(17).
9750-4.
The MI-1-mediated pest resistance requires Hsp90 and Sgt1.
Plant physiology (2007)
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The tomato (Solanum lycopersicum) Mi-1 gene encodes a protein with putative coiled-coil nucleotide-binding site and leucine-rich repeat motifs. Mi-1 confers resistance to root-knot nematodes (Meloidogyne spp.), potato aphids (Macrosiphum euphorbiae), and sweet potato whitefly (Bemisia tabaci). To identify genes required in the Mi-1-mediated resistance to nematodes and aphids, we used tobacco rattle virus (TRV)-based virus-induced gene silencing (VIGS) to repress candidate genes and assay for nematode and aphid resistance. We targeted Sgt1 (suppressor of G-two allele of Skp1), Rar1 (required for Mla12 resistance), and Hsp90 (heat shock protein 90), which are known to participate early in resistance gene signaling pathways. Two Arabidopsis (Arabidopsis thaliana) Sgt1 genes exist and one has been implicated in disease resistance. Thus far the sequence of only one Sgt1 ortholog is known in tomato. To design gene-specific VIGS constructs, we cloned a second tomato Sgt1 gene, Sgt1-2. The gene-specific VIGS construct TRV-SlSgt1-1 resulted in lethality, while silencing Sgt1-2 using TRV-SlSgt1-2 did not result in lethal phenotype. Aphid and root-knot nematode assays of Sgt1-2-silenced plants indicated no role for Sgt1-2 in Mi-1-mediated resistance. A Nicotiana benthamiana Sgt1 VIGS construct silencing both Sgt1-1 and Sgt1-2 yielded live plants and identified a role for Sgt1 in Mi-1-mediated aphid resistance. Silencing of Rar1 did not affect Mi-1-mediated nematode and aphid resistance and demonstrated that Rar1 is not required for Mi-1 resistance. Silencing Hsp90-1 resulted in attenuation of Mi-1-mediated aphid and nematode resistance and indicated a role for Hsp90-1. The requirement for Sgt1 and Hsp90-1 in Mi-1-mediated resistance provides further evidence for common components in early resistance gene defense signaling against diverse pathogens and pests.
Bhattarai, Kishor. Li, Qi. Liu, Yule. Dinesh-Kumar, Savithramma. Kaloshian, Isgouhi.
Plant physiology.
2007.
144(1).
312-23.
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