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Tomato locus SlMlo1
| Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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Links to external databases
Links to external databases
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| Registry name: | None | [Associate registry name] |
Notes and figures (0)
Notes and figures (0)
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| Image | Description | Type |
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Accessions and images (1)
Accessions and images (1)
| [Associate accession] |
Alleles (1)
Alleles (1)
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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 |
>Solyc04g049090.2 SL2.50ch04:39558181..39552675 (sequence from reverse strand)
GACTTATTGTTTGAAACTTGCAACTACAATTCTTCTTTATCATCATTTGACATTTCCCCTTCTTCTTATTCCTATTTTTATTTAAATATAGGAATATTTCTTTCAAAGGAAGAAAATATATATTTCCTTCAACACCACTATATATAGACTTAATTCCATAATCCTGTTAATTTAATTGATGGCTAAAGAACGGTCTATGGAGGCAACCCCTACGTGGGCAATTGCTGTGGTTTGCTTCATCTTGCTCGCTATTTCTATTTTTATTGAACAAATTATTCATCACATTGGAGAGGTACCTACTATATAATTTCAAAATCTTTTACTAGATCGATATGAACAAAATATGCTTATTAATTGTTGGGAAAACCATTTTCTTTTTTAGTGGTTACTGGAAAAGCGGAAAAAGTCTCTATATGAAGCACTTGAAAAGATCAAAGCTGGTAAATTCAAAATACAGTCTTGTATTATAAAATAATATAGTTTAAAGATGGATCATACTCATGACATTTTTGGTGTGTGTGTGTCGGACAGAACTTATGCTGTTGGGATTCTTATCACTGTTGTTGACAGTGTTGCAAGATCCAGTTTCTAACTTATGTGTCCCCAAGAGTGTTGGTTATTCATGGCATCCTTGTATGGCAAAGGAAGATGCCAAGTCTGAGTATGATGACCCTTGTCTACCAAAGGTACGCAATATACGATAAGTTAAGCTCAAGTATCATATTTTTATATGATATTAGAGGTCGTAGGATTAAATTTCACTACCACCTAACTTAAAAAGAATTTTTTACGTGTTTAATCATCCATAAAAAGGAATTAGGTCTACATGTGAGGGGCATCATTGAGAATATTATTAACTAATAAAAAGTATGTGATCACATAGGGATGGTATTTCACATCATTCATTTAGGGATGACAACTTTTTATCTGAATTAATTTTTGAGGTAGAATCAAAATTTATTTCTTTGCGGTTTCTTATGAAATTTAATTTTAAATATGCAGGGAAAAGTGCAATTTGCATCTTCATATGCAATACACCAGCTCCATATCTTCATCTTTGTATTGGCAGTTGCTCATGTATTGTACTGTATAGCAACTTTTGCTTTGGGCAGGCTAAAGGTTTATATATATATATATCTATATTCATCTTTGGTCATTAATCCATATGATTTTCTTTTTCTCTTCTTTGGTCAATAATTTTCTATCTTAATTTGTAGATGAGAAAATGGAGGGCATGGGAGGATGAAACAAAAACAATGGAGTACCAATTCTACAACGGTTAGTATACAAGAATTTGAATATTATTTGAATATTTGTCATTTAAAATTAATTAAGAAATTTTACGTCATTAAAGTATAGAAGTATACATCATCTCAAGCCTTGTAAATAATATTCCTTCCCTCCATTTAAAAACTAATAATTTAGTTTGAGAATTCAAGAAATAAAAAAGGACTTTTGTAATTTTATAATAAAATTATATCACATGTGTTAAAATATCTTTTACTCTTCTTATTTTAAATATATTATGTAAAAAATTTAAATTAAAATATCATCAAAAATGATAAAAAATTATTTTATCGTATAAAGACACTCAAAAGAAAATCTGTCATTATTTTTGAAACTATAAAAGTATGAAAAGACAACTCTGCCCCTTAATCATTAGATATTTAGAACCTTAGACCTAAGGTGGAGTTGATTCAAAAATAGAAATATATTAAATGCTATTAAAAAATAAGCCCACAAACATTTCAATTTAGCTACAAATTGATGTGACATATATCTAAAAAGTTTGGACACGTCTATTGTTATTTATTTTTTAAATATTCTTGGACCCCAAGTGGTAGCTATTGCCTATTGGATAAGTAATGTGAATAAAGGGAATCATTTGCAAGTTGCACCTTTTAATACCAAATTAATTGACCGACACTTCATTCGTACATTCTTAGTTTATTTCGATTAGTATATCACTATTTTTATGATGTAAATATAAAAGAATTTTATAATTTATACTACTATTAATATAATATGTAATTAATATAATTTTAAGAAATTAATTAAATTGACTTTTTATTTTTTTTAAAAAAACATGGCAATTACAAATAAACTGAGGGAGTACTTATTATTGCTAGCTCTCTTTCTAGTTTGGTCCCCTTTGAGGTTTGACTTACTTATTTTTCCATTACTTGTTTGGTTTTCTTTGGACAATTTTATATTCTAACTTGGCAGTTTACACGTTAAGATTATAAATAAAATATATTTTGAAATTTAAAATTATACGAAGAAAATTAATCATGAGAAGTCAAAATGAAAGAAAATTAAAATTATTATTGTTGACTTTATTTATTGGTATTTGATGGTTGCAGACCCTGAGAGATTCAGATTTGCAAGGGAGACCTCGTTTGGACGTAGGCATTTGCATTTCTGGAGCAAGTCCCCCGTGTTGCTCTCGATAGTGAGTCCATCCATTATATATAATATAATATTATTTTTATTACGTTATAATTGTTATGATTGAAATAATTAGATTGAATGAGTAAATAAGTCCTCAAAAAATTATGAATAAAAAGATAAACGAGAAACATATTGAAAGATACAAATTAACGTGATTCAGTCAATCGATTTATATCCATAAGAGAAATGAGCAATCTACTGTATAAATATATATAAAAAAATATTAAGAAAAATAACGGTACAATTTACTCAAAATAATAAGAAGTTAATACTTGTGTCTAATCGTTTCTCCCCCGTACAAAACTCAAAGAATGAACTTCTATATATTTCTGTTTATAGAGTTAAAAAAAAATAAACTATCCAAATATGAAAACATTATTATTTTCCTTTAAAGAAACAAAAAGGAAAACCCTTAAGAAACTAGGGCAAACAATATCCCATATTTATCATAAAATTTATTACTAGTAGCATAAATAATTATTGTGTAAGGATTCATTAAACTGATATTTTTGTGATTCTATTTACAGGTTTGTTTCTTTCGGCAATTCTTCTCATCAGTTGCAAAAGTTGACTATTTAACCCTTAGACATGGGTTCATGATGGTAAGTCAATCTAGCACCAATATAACGTGAAATTATACGATATCCAAGATACTATTGAAAAATAATTATTTTTTTTGGATCCATGTAATTAACTGCAGGCACATTTAACTCCACAAAATCAAAATAATTTTGATTTTCAATTATACATTAACAGAGCAGTTGACAAAGACTTCAAAGTTGTTGTTGGAATAAGGTTTACATCTTTCTTCATTGGCATAATACCTAATTTGACTTTAAATTTTTACTTGACCTTCAATTTTTATAATGCACAAACATACACTTTACTTATCAAACTTTTAAATAAATAAACACATGAATCATACATGACACAATACACGTAAGATACCACGTAGGATAAAAAATGACACATAGAACATGTGTGCCTATTTGTTCGACTTTGTACAATTTTAAGTATCTACTTGTGCATATCCAAAATTAAAAGACATAAATATAATTTAAAGCCAAATTAAAGGATATATTTATGTATTATGCCTTCTTTATTTCCTCAAGCAATTCTTCTTTTACTATTAAAGCTATACCATGATAATTATAATAACACTATTTATGTTGCAGTCCTGCATTATGGCTCTTCACGGTGCTATATTTTCTGACTACTACCGATCGTACGTATTAAATTGGCCTTATTTCACATTTATATATTCTAATTTTGAGTGTAAATAAGTAGATATATAGTTCTGCGTGTCATAATACATGTATGAAGCAAATTATCACGTATGACATGTATGTTTATTTATTTTTACAAATTTGAATATCTACTTATTTGCACTCAAAATTGGAGGATATAAATGTGAATCGGGACCACACATATTTATGTGTTATGGCATTGAAAGGATTATTAATTAGTTGAATAAAGCATATGTAATTGAAAGTTGTTACTTTTAATATTGGACAGGATTGTACTCGTATCTTTGGGTGCCATTTATCCCACTTGTAGTAAGTTCATTATTAATTCATTAATAATAAGAGTAATAAGTATGTTCATGATTGACTAAAGTATAAAATGAAATTGAATTAATGAAAATGCAGATAATATTGCTAGTTGGCACAAAACTTCAAATGATCATAACAGAAATGGGAGTAAGGATTTCAGAAAGGGGAGACATAGTAAAAGGTGTACCTGTGGTGGAGACTGGTGACCATCTTTTCTGGTTTAATCGCCCTGCCCTTGTCCTATTCTTGATTAACTTTGTACTCTTTCAGGTACCCTTTTTTAAACTCTCACTTACTTTTATTTTTAGTTGATCGATTTATATATAAAAAGAATCATCTATTATTTCTTTTTCATATATTAATTTATGATGATCACAAAATTGAAAAGAAAAACTATGTAATTTTTTTTTAAAAAAAAATAAACGAAAAGAGTATATAAAATCGGTACAAACTCCTAACTTGGAATCTCATAATGATTTTTTTTTTGGTTTGGCAGAATGCGTTTCAAGTTGCTTTCTTTTTTTGGAGTTGGGTAAGGAGTTGGATTTCCATTTTTCCTTTTTTTCTTTTGGAATGAAATTTAAATATATTGTCCTGAATATTTTTTTTTCCTTCAAATTTTCAGTGGAAATTTGGTTTCCCATCTTGCTTTCATAAGAATGCTGCAGACCTAGCCATAAGGCTAACCATGGGGTGAGTTTCACTTGCAACTAAAAAACACAGACACATTACACTTTTAAACTCTCACCTGTTTCAGATAAAAAATTTCAAAAGTCTTTCATTGTTTCTTAAAGTTTATGTCAAGTCAAAACATTATGGAAGTTGATGCATATATATATTCAGGGTGATCATACAGGTCCATTGCAGCTATGTGACTCTCCCTCTTTATGCCTTAGTTACACAGGTAGGTACTCTGATCTACATTATGAAAATGTTATATATATATATATATATATATATATATATATATATATACTTATATAGAGAAATTCTGTAGATGGGTTCATCAATGAAGCCTATCATCTTTGGTGATAATGTGGCAACAGCTCTTAGAAGCTGGCACCATACAGCGAAAAAACGGGTGAAACATGGGCTATCAGGACATACCACCCCTGCAAACAGCAGACCAACCACACCATTGCGTGGTACCTCCCCTGTTCACTTATTACGCGGTTATCCACAATATAATGAGGACAGTGTTCAAGCATCTCCTCGGACATCCAATGTCGAAAATGAAGGGTGGGCTAATGAAAATCAGGAGGGAGAGATCCTGCAGCATGCCTCCACTGATCATAACAAGCAAATTGAGATTACAATGTCAGATTTTACTTTTGGAAACAAATAAATGTAAAAACGAATTTTCTTCTTCATTGTTTTAAGTTCATTACTGTAGTTCAAATGGCAATGATTTTGTAAAATTTTATACAGAGGTACTCATGCATGGTGCTCTTCATTTCAAGGTAAGAACCTTCTTATATCGATTTATAGCTACTTTACATCTCA
GACTTATTGTTTGAAACTTGCAACTACAATTCTTCTTTATCATCATTTGACATTTCCCCTTCTTCTTATTCCTATTTTTATTTAAATATAGGAATATTTCTTTCAAAGGAAGAAAATATATATTTCCTTCAACACCACTATATATAGACTTAATTCCATAATCCTGTTAATTTAATTGATGGCTAAAGAACGGTCTATGGAGGCAACCCCTACGTGGGCAATTGCTGTGGTTTGCTTCATCTTGCTCGCTATTTCTATTTTTATTGAACAAATTATTCATCACATTGGAGAGGTACCTACTATATAATTTCAAAATCTTTTACTAGATCGATATGAACAAAATATGCTTATTAATTGTTGGGAAAACCATTTTCTTTTTTAGTGGTTACTGGAAAAGCGGAAAAAGTCTCTATATGAAGCACTTGAAAAGATCAAAGCTGGTAAATTCAAAATACAGTCTTGTATTATAAAATAATATAGTTTAAAGATGGATCATACTCATGACATTTTTGGTGTGTGTGTGTCGGACAGAACTTATGCTGTTGGGATTCTTATCACTGTTGTTGACAGTGTTGCAAGATCCAGTTTCTAACTTATGTGTCCCCAAGAGTGTTGGTTATTCATGGCATCCTTGTATGGCAAAGGAAGATGCCAAGTCTGAGTATGATGACCCTTGTCTACCAAAGGTACGCAATATACGATAAGTTAAGCTCAAGTATCATATTTTTATATGATATTAGAGGTCGTAGGATTAAATTTCACTACCACCTAACTTAAAAAGAATTTTTTACGTGTTTAATCATCCATAAAAAGGAATTAGGTCTACATGTGAGGGGCATCATTGAGAATATTATTAACTAATAAAAAGTATGTGATCACATAGGGATGGTATTTCACATCATTCATTTAGGGATGACAACTTTTTATCTGAATTAATTTTTGAGGTAGAATCAAAATTTATTTCTTTGCGGTTTCTTATGAAATTTAATTTTAAATATGCAGGGAAAAGTGCAATTTGCATCTTCATATGCAATACACCAGCTCCATATCTTCATCTTTGTATTGGCAGTTGCTCATGTATTGTACTGTATAGCAACTTTTGCTTTGGGCAGGCTAAAGGTTTATATATATATATATCTATATTCATCTTTGGTCATTAATCCATATGATTTTCTTTTTCTCTTCTTTGGTCAATAATTTTCTATCTTAATTTGTAGATGAGAAAATGGAGGGCATGGGAGGATGAAACAAAAACAATGGAGTACCAATTCTACAACGGTTAGTATACAAGAATTTGAATATTATTTGAATATTTGTCATTTAAAATTAATTAAGAAATTTTACGTCATTAAAGTATAGAAGTATACATCATCTCAAGCCTTGTAAATAATATTCCTTCCCTCCATTTAAAAACTAATAATTTAGTTTGAGAATTCAAGAAATAAAAAAGGACTTTTGTAATTTTATAATAAAATTATATCACATGTGTTAAAATATCTTTTACTCTTCTTATTTTAAATATATTATGTAAAAAATTTAAATTAAAATATCATCAAAAATGATAAAAAATTATTTTATCGTATAAAGACACTCAAAAGAAAATCTGTCATTATTTTTGAAACTATAAAAGTATGAAAAGACAACTCTGCCCCTTAATCATTAGATATTTAGAACCTTAGACCTAAGGTGGAGTTGATTCAAAAATAGAAATATATTAAATGCTATTAAAAAATAAGCCCACAAACATTTCAATTTAGCTACAAATTGATGTGACATATATCTAAAAAGTTTGGACACGTCTATTGTTATTTATTTTTTAAATATTCTTGGACCCCAAGTGGTAGCTATTGCCTATTGGATAAGTAATGTGAATAAAGGGAATCATTTGCAAGTTGCACCTTTTAATACCAAATTAATTGACCGACACTTCATTCGTACATTCTTAGTTTATTTCGATTAGTATATCACTATTTTTATGATGTAAATATAAAAGAATTTTATAATTTATACTACTATTAATATAATATGTAATTAATATAATTTTAAGAAATTAATTAAATTGACTTTTTATTTTTTTTAAAAAAACATGGCAATTACAAATAAACTGAGGGAGTACTTATTATTGCTAGCTCTCTTTCTAGTTTGGTCCCCTTTGAGGTTTGACTTACTTATTTTTCCATTACTTGTTTGGTTTTCTTTGGACAATTTTATATTCTAACTTGGCAGTTTACACGTTAAGATTATAAATAAAATATATTTTGAAATTTAAAATTATACGAAGAAAATTAATCATGAGAAGTCAAAATGAAAGAAAATTAAAATTATTATTGTTGACTTTATTTATTGGTATTTGATGGTTGCAGACCCTGAGAGATTCAGATTTGCAAGGGAGACCTCGTTTGGACGTAGGCATTTGCATTTCTGGAGCAAGTCCCCCGTGTTGCTCTCGATAGTGAGTCCATCCATTATATATAATATAATATTATTTTTATTACGTTATAATTGTTATGATTGAAATAATTAGATTGAATGAGTAAATAAGTCCTCAAAAAATTATGAATAAAAAGATAAACGAGAAACATATTGAAAGATACAAATTAACGTGATTCAGTCAATCGATTTATATCCATAAGAGAAATGAGCAATCTACTGTATAAATATATATAAAAAAATATTAAGAAAAATAACGGTACAATTTACTCAAAATAATAAGAAGTTAATACTTGTGTCTAATCGTTTCTCCCCCGTACAAAACTCAAAGAATGAACTTCTATATATTTCTGTTTATAGAGTTAAAAAAAAATAAACTATCCAAATATGAAAACATTATTATTTTCCTTTAAAGAAACAAAAAGGAAAACCCTTAAGAAACTAGGGCAAACAATATCCCATATTTATCATAAAATTTATTACTAGTAGCATAAATAATTATTGTGTAAGGATTCATTAAACTGATATTTTTGTGATTCTATTTACAGGTTTGTTTCTTTCGGCAATTCTTCTCATCAGTTGCAAAAGTTGACTATTTAACCCTTAGACATGGGTTCATGATGGTAAGTCAATCTAGCACCAATATAACGTGAAATTATACGATATCCAAGATACTATTGAAAAATAATTATTTTTTTTGGATCCATGTAATTAACTGCAGGCACATTTAACTCCACAAAATCAAAATAATTTTGATTTTCAATTATACATTAACAGAGCAGTTGACAAAGACTTCAAAGTTGTTGTTGGAATAAGGTTTACATCTTTCTTCATTGGCATAATACCTAATTTGACTTTAAATTTTTACTTGACCTTCAATTTTTATAATGCACAAACATACACTTTACTTATCAAACTTTTAAATAAATAAACACATGAATCATACATGACACAATACACGTAAGATACCACGTAGGATAAAAAATGACACATAGAACATGTGTGCCTATTTGTTCGACTTTGTACAATTTTAAGTATCTACTTGTGCATATCCAAAATTAAAAGACATAAATATAATTTAAAGCCAAATTAAAGGATATATTTATGTATTATGCCTTCTTTATTTCCTCAAGCAATTCTTCTTTTACTATTAAAGCTATACCATGATAATTATAATAACACTATTTATGTTGCAGTCCTGCATTATGGCTCTTCACGGTGCTATATTTTCTGACTACTACCGATCGTACGTATTAAATTGGCCTTATTTCACATTTATATATTCTAATTTTGAGTGTAAATAAGTAGATATATAGTTCTGCGTGTCATAATACATGTATGAAGCAAATTATCACGTATGACATGTATGTTTATTTATTTTTACAAATTTGAATATCTACTTATTTGCACTCAAAATTGGAGGATATAAATGTGAATCGGGACCACACATATTTATGTGTTATGGCATTGAAAGGATTATTAATTAGTTGAATAAAGCATATGTAATTGAAAGTTGTTACTTTTAATATTGGACAGGATTGTACTCGTATCTTTGGGTGCCATTTATCCCACTTGTAGTAAGTTCATTATTAATTCATTAATAATAAGAGTAATAAGTATGTTCATGATTGACTAAAGTATAAAATGAAATTGAATTAATGAAAATGCAGATAATATTGCTAGTTGGCACAAAACTTCAAATGATCATAACAGAAATGGGAGTAAGGATTTCAGAAAGGGGAGACATAGTAAAAGGTGTACCTGTGGTGGAGACTGGTGACCATCTTTTCTGGTTTAATCGCCCTGCCCTTGTCCTATTCTTGATTAACTTTGTACTCTTTCAGGTACCCTTTTTTAAACTCTCACTTACTTTTATTTTTAGTTGATCGATTTATATATAAAAAGAATCATCTATTATTTCTTTTTCATATATTAATTTATGATGATCACAAAATTGAAAAGAAAAACTATGTAATTTTTTTTTAAAAAAAAATAAACGAAAAGAGTATATAAAATCGGTACAAACTCCTAACTTGGAATCTCATAATGATTTTTTTTTTGGTTTGGCAGAATGCGTTTCAAGTTGCTTTCTTTTTTTGGAGTTGGGTAAGGAGTTGGATTTCCATTTTTCCTTTTTTTCTTTTGGAATGAAATTTAAATATATTGTCCTGAATATTTTTTTTTCCTTCAAATTTTCAGTGGAAATTTGGTTTCCCATCTTGCTTTCATAAGAATGCTGCAGACCTAGCCATAAGGCTAACCATGGGGTGAGTTTCACTTGCAACTAAAAAACACAGACACATTACACTTTTAAACTCTCACCTGTTTCAGATAAAAAATTTCAAAAGTCTTTCATTGTTTCTTAAAGTTTATGTCAAGTCAAAACATTATGGAAGTTGATGCATATATATATTCAGGGTGATCATACAGGTCCATTGCAGCTATGTGACTCTCCCTCTTTATGCCTTAGTTACACAGGTAGGTACTCTGATCTACATTATGAAAATGTTATATATATATATATATATATATATATATATATATATATACTTATATAGAGAAATTCTGTAGATGGGTTCATCAATGAAGCCTATCATCTTTGGTGATAATGTGGCAACAGCTCTTAGAAGCTGGCACCATACAGCGAAAAAACGGGTGAAACATGGGCTATCAGGACATACCACCCCTGCAAACAGCAGACCAACCACACCATTGCGTGGTACCTCCCCTGTTCACTTATTACGCGGTTATCCACAATATAATGAGGACAGTGTTCAAGCATCTCCTCGGACATCCAATGTCGAAAATGAAGGGTGGGCTAATGAAAATCAGGAGGGAGAGATCCTGCAGCATGCCTCCACTGATCATAACAAGCAAATTGAGATTACAATGTCAGATTTTACTTTTGGAAACAAATAAATGTAAAAACGAATTTTCTTCTTCATTGTTTTAAGTTCATTACTGTAGTTCAAATGGCAATGATTTTGTAAAATTTTATACAGAGGTACTCATGCATGGTGCTCTTCATTTCAAGGTAAGAACCTTCTTATATCGATTTATAGCTACTTTACATCTCA
| Download sequence region |
Get flanking sequences on SL2.50ch04
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mRNA Solyc04g049090.2.1
mRNA Solyc04g049090.2.1
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Ontology terms
Ontology terms
| terms associated with this mRNA |
cDNA sequence
cDNA sequence
| spliced cDNA sequence, including UTRs |
>Solyc04g049090.2.1 MLO-like protein 17 (AHRD V1 ***- C6EWF0_VITVI); contains Interpro domain(s) IPR004326 Mlo-related protein
GACTTATTGTTTGAAACTTGCAACTACAATTCTTCTTTATCATCATTTGACATTTCCCCTTCTTCTTATTCCTATTTTTATTTAAATATAGGAATATTTCTTTCAAAGGAAGAAAATATATATTTCCTTCAACACCACTATATATAGACTTAATTCCATAATCCTGTTAATTTAATTGATGGCTAAAGAACGGTCTATGGAGGCAACCCCTACGTGGGCAATTGCTGTGGTTTGCTTCATCTTGCTCGCTATTTCTATTTTTATTGAACAAATTATTCATCACATTGGAGAGTGGTTACTGGAAAAGCGGAAAAAGTCTCTATATGAAGCACTTGAAAAGATCAAAGCTGAACTTATGCTGTTGGGATTCTTATCACTGTTGTTGACAGTGTTGCAAGATCCAGTTTCTAACTTATGTGTCCCCAAGAGTGTTGGTTATTCATGGCATCCTTGTATGGCAAAGGAAGATGCCAAGTCTGAGTATGATGACCCTTGTCTACCAAAGGGAAAAGTGCAATTTGCATCTTCATATGCAATACACCAGCTCCATATCTTCATCTTTGTATTGGCAGTTGCTCATGTATTGTACTGTATAGCAACTTTTGCTTTGGGCAGGCTAAAGATGAGAAAATGGAGGGCATGGGAGGATGAAACAAAAACAATGGAGTACCAATTCTACAACGACCCTGAGAGATTCAGATTTGCAAGGGAGACCTCGTTTGGACGTAGGCATTTGCATTTCTGGAGCAAGTCCCCCGTGTTGCTCTCGATAGTTTGTTTCTTTCGGCAATTCTTCTCATCAGTTGCAAAAGTTGACTATTTAACCCTTAGACATGGGTTCATGATGGCACATTTAACTCCACAAAATCAAAATAATTTTGATTTTCAATTATACATTAACAGAGCAGTTGACAAAGACTTCAAAGTTGTTGTTGGAATAAGTCCTGCATTATGGCTCTTCACGGTGCTATATTTTCTGACTACTACCGATCGATTGTACTCGTATCTTTGGGTGCCATTTATCCCACTTGTAATAATATTGCTAGTTGGCACAAAACTTCAAATGATCATAACAGAAATGGGAGTAAGGATTTCAGAAAGGGGAGACATAGTAAAAGGTGTACCTGTGGTGGAGACTGGTGACCATCTTTTCTGGTTTAATCGCCCTGCCCTTGTCCTATTCTTGATTAACTTTGTACTCTTTCAGAATGCGTTTCAAGTTGCTTTCTTTTTTTGGAGTTGGTGGAAATTTGGTTTCCCATCTTGCTTTCATAAGAATGCTGCAGACCTAGCCATAAGGCTAACCATGGGGGTGATCATACAGGTCCATTGCAGCTATGTGACTCTCCCTCTTTATGCCTTAGTTACACAGATGGGTTCATCAATGAAGCCTATCATCTTTGGTGATAATGTGGCAACAGCTCTTAGAAGCTGGCACCATACAGCGAAAAAACGGGTGAAACATGGGCTATCAGGACATACCACCCCTGCAAACAGCAGACCAACCACACCATTGCGTGGTACCTCCCCTGTTCACTTATTACGCGGTTATCCACAATATAATGAGGACAGTGTTCAAGCATCTCCTCGGACATCCAATGTCGAAAATGAAGGGTGGGCTAATGAAAATCAGGAGGGAGAGATCCTGCAGCATGCCTCCACTGATCATAACAAGCAAATTGAGATTACAATGTCAGATTTTACTTTTGGAAACAAATAAATGTAAAAACGAATTTTCTTCTTCATTGTTTTAAGTTCATTACTGTAGTTCAAATGGCAATGATTTTGTAAAATTTTATACAGAGGTACTCATGCATGGTGCTCTTCATTTCAAGGTAAGAACCTTCTTATATCGATTTATAGCTACTTTACATCTCA
GACTTATTGTTTGAAACTTGCAACTACAATTCTTCTTTATCATCATTTGACATTTCCCCTTCTTCTTATTCCTATTTTTATTTAAATATAGGAATATTTCTTTCAAAGGAAGAAAATATATATTTCCTTCAACACCACTATATATAGACTTAATTCCATAATCCTGTTAATTTAATTGATGGCTAAAGAACGGTCTATGGAGGCAACCCCTACGTGGGCAATTGCTGTGGTTTGCTTCATCTTGCTCGCTATTTCTATTTTTATTGAACAAATTATTCATCACATTGGAGAGTGGTTACTGGAAAAGCGGAAAAAGTCTCTATATGAAGCACTTGAAAAGATCAAAGCTGAACTTATGCTGTTGGGATTCTTATCACTGTTGTTGACAGTGTTGCAAGATCCAGTTTCTAACTTATGTGTCCCCAAGAGTGTTGGTTATTCATGGCATCCTTGTATGGCAAAGGAAGATGCCAAGTCTGAGTATGATGACCCTTGTCTACCAAAGGGAAAAGTGCAATTTGCATCTTCATATGCAATACACCAGCTCCATATCTTCATCTTTGTATTGGCAGTTGCTCATGTATTGTACTGTATAGCAACTTTTGCTTTGGGCAGGCTAAAGATGAGAAAATGGAGGGCATGGGAGGATGAAACAAAAACAATGGAGTACCAATTCTACAACGACCCTGAGAGATTCAGATTTGCAAGGGAGACCTCGTTTGGACGTAGGCATTTGCATTTCTGGAGCAAGTCCCCCGTGTTGCTCTCGATAGTTTGTTTCTTTCGGCAATTCTTCTCATCAGTTGCAAAAGTTGACTATTTAACCCTTAGACATGGGTTCATGATGGCACATTTAACTCCACAAAATCAAAATAATTTTGATTTTCAATTATACATTAACAGAGCAGTTGACAAAGACTTCAAAGTTGTTGTTGGAATAAGTCCTGCATTATGGCTCTTCACGGTGCTATATTTTCTGACTACTACCGATCGATTGTACTCGTATCTTTGGGTGCCATTTATCCCACTTGTAATAATATTGCTAGTTGGCACAAAACTTCAAATGATCATAACAGAAATGGGAGTAAGGATTTCAGAAAGGGGAGACATAGTAAAAGGTGTACCTGTGGTGGAGACTGGTGACCATCTTTTCTGGTTTAATCGCCCTGCCCTTGTCCTATTCTTGATTAACTTTGTACTCTTTCAGAATGCGTTTCAAGTTGCTTTCTTTTTTTGGAGTTGGTGGAAATTTGGTTTCCCATCTTGCTTTCATAAGAATGCTGCAGACCTAGCCATAAGGCTAACCATGGGGGTGATCATACAGGTCCATTGCAGCTATGTGACTCTCCCTCTTTATGCCTTAGTTACACAGATGGGTTCATCAATGAAGCCTATCATCTTTGGTGATAATGTGGCAACAGCTCTTAGAAGCTGGCACCATACAGCGAAAAAACGGGTGAAACATGGGCTATCAGGACATACCACCCCTGCAAACAGCAGACCAACCACACCATTGCGTGGTACCTCCCCTGTTCACTTATTACGCGGTTATCCACAATATAATGAGGACAGTGTTCAAGCATCTCCTCGGACATCCAATGTCGAAAATGAAGGGTGGGCTAATGAAAATCAGGAGGGAGAGATCCTGCAGCATGCCTCCACTGATCATAACAAGCAAATTGAGATTACAATGTCAGATTTTACTTTTGGAAACAAATAAATGTAAAAACGAATTTTCTTCTTCATTGTTTTAAGTTCATTACTGTAGTTCAAATGGCAATGATTTTGTAAAATTTTATACAGAGGTACTCATGCATGGTGCTCTTCATTTCAAGGTAAGAACCTTCTTATATCGATTTATAGCTACTTTACATCTCA
Protein sequence
Protein sequence
| translated polypeptide sequence |
>Solyc04g049090.2.1 MLO-like protein 17 (AHRD V1 ***- C6EWF0_VITVI); contains Interpro domain(s) IPR004326 Mlo-related protein
MEATPTWAIAVVCFILLAISIFIEQIIHHIGEWLLEKRKKSLYEALEKIKAELMLLGFLSLLLTVLQDPVSNLCVPKSVGYSWHPCMAKEDAKSEYDDPCLPKGKVQFASSYAIHQLHIFIFVLAVAHVLYCIATFALGRLKMRKWRAWEDETKTMEYQFYNDPERFRFARETSFGRRHLHFWSKSPVLLSIVCFFRQFFSSVAKVDYLTLRHGFMMAHLTPQNQNNFDFQLYINRAVDKDFKVVVGISPALWLFTVLYFLTTTDRLYSYLWVPFIPLVIILLVGTKLQMIITEMGVRISERGDIVKGVPVVETGDHLFWFNRPALVLFLINFVLFQNAFQVAFFFWSWWKFGFPSCFHKNAADLAIRLTMGVIIQVHCSYVTLPLYALVTQMGSSMKPIIFGDNVATALRSWHHTAKKRVKHGLSGHTTPANSRPTTPLRGTSPVHLLRGYPQYNEDSVQASPRTSNVENEGWANENQEGEILQHASTDHNKQIEITMSDFTFGNK*
MEATPTWAIAVVCFILLAISIFIEQIIHHIGEWLLEKRKKSLYEALEKIKAELMLLGFLSLLLTVLQDPVSNLCVPKSVGYSWHPCMAKEDAKSEYDDPCLPKGKVQFASSYAIHQLHIFIFVLAVAHVLYCIATFALGRLKMRKWRAWEDETKTMEYQFYNDPERFRFARETSFGRRHLHFWSKSPVLLSIVCFFRQFFSSVAKVDYLTLRHGFMMAHLTPQNQNNFDFQLYINRAVDKDFKVVVGISPALWLFTVLYFLTTTDRLYSYLWVPFIPLVIILLVGTKLQMIITEMGVRISERGDIVKGVPVVETGDHLFWFNRPALVLFLINFVLFQNAFQVAFFFWSWWKFGFPSCFHKNAADLAIRLTMGVIIQVHCSYVTLPLYALVTQMGSSMKPIIFGDNVATALRSWHHTAKKRVKHGLSGHTTPANSRPTTPLRGTSPVHLLRGYPQYNEDSVQASPRTSNVENEGWANENQEGEILQHASTDHNKQIEITMSDFTFGNK*
Gene model matches
Gene model matches
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SGN Unigenes
SGN Unigenes
| [Associate new unigene] |
Unigene ID:
[loading...]
GenBank accessions
GenBank accessions
| [Associate new genbank sequence] |
AY967408 Lycopersicon esculentum MLO1 (MLO1) mRNA, complete cds.
| Other genome matches | None |
Literature annotations [2]
Literature annotations [2]
| [Associate publication] [Matching publications] |
Discovery of novel conserved peptide domains by ortholog comparison within plant multi-protein families.
Plant molecular biology (2005)
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Assigning individual functions to the proteins encoded by the genome of the dicotyledonous reference species Arabidopsis thaliana is one of the major challenges in current plant molecular biology. Frequently, Arabidopsis protein families are biocomputationally analyzed by multiple amino acid sequence alignments of the respective family members for detection of conserved peptide motifs that might be of functional relevance. Mere sequence alignment of paralogous sequences may obscure amino acid patches that are highly conserved amongst orthologs and thus potentially relevant for isoform-specific protein function(s). Here I exemplarily illustrate this potential pitfall by amino acid sequence alignments of the heptahelical MLO proteins using either the suite of 15 isoforms (paralogs) encoded by the Arabidopsis genome or a collection of 13 ortholog sequences derived from a set of both monocotyledonous and dicotyledonous plant species. The findings are corroborated by an analogous analysis of the distinct plant multi-protein family of CONSTANS-like transcription regulators. The data reveal that the generally higher sequence similarity of orthologs versus paralogs is not uniformly distributed among the amino acid positions of the orthologs but at least partially clustered in distinct sites/domains, suggesting conservation of isoform-specific functional modules across taxa.
Panstruga, R.
Plant molecular biology.
2005.
59(3).
485-500.
Naturally occurring broad-spectrum powdery mildew resistance in a central american tomato accession is caused by loss of mlo function.
Molecular plant-microbe interactions : MPMI (2008)
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The resistant cherry tomato (Solanum lycopersicum var. cerasiforme) line LC-95, derived from an accession collected in Ecuador, harbors a natural allele (ol-2) that confers broad-spectrum and recessively inherited resistance to powdery mildew (Oidium neolycopersici). As both the genetic and phytopathological characteristics of ol-2-mediated resistance are reminiscent of powdery mildew immunity conferred by loss-of-function mlo alleles in barley and Arabidopsis, we initiated a candidate-gene approach to clone Ol-2. A tomato Mlo gene (SlMlo1) with high sequence-relatedness to barley Mlo and Arabidopsis AtMLO2 mapped to the chromosomal region harboring the Ol-2 locus. Complementation experiments using transgenic tomato lines as well as virus-induced gene silencing assays suggested that loss of SlMlo1 function is responsible for powdery mildew resistance conferred by ol-2. In progeny of a cross between a resistant line bearing ol-2 and the susceptible tomato cultivar Moneymaker, a 19-bp deletion disrupting the SlMlo1 coding region cosegregated with resistance. This polymorphism results in a frameshift and, thus, a truncated nonfunctional SlMlo1 protein. Our findings reveal the second example of a natural mlo mutant that possibly arose post-domestication, suggesting that natural mlo alleles might be evolutionarily short-lived due to fitness costs related to loss of mlo function.
Bai, Yuling. Pavan, Stefano. Zheng, Zheng. Zappel, Nana. Reinstädler, Anja. Lotti, Concetta. De, Giovanni. Ricciardi, Luigi. Lindhout, Pim. Visser, Richard. Theres, Klaus. Panstruga, Ralph.
Molecular plant-microbe interactions : MPMI.
2008.
21(1).
30-9.
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