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Tomato locus Alternaria stem canker resistance
| 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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Accessions and images (3)
Accessions and images (3)
| [Associate accession] |
Alleles (1)
Alleles (1)
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Associated loci (0)
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| Associated loci - graphical view | None |
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 |
>Solyc03g114600.2 SL2.50ch03:64541385..64539642 (sequence from reverse strand)
AACAATTCGAAAACTTGTTCTGCAATTCATTTGAAACTACAACAATAGAAGAAGAAAAAAAAAGTTCAATTCAACAGATTTTTGAAAAAAAAAGTCAACAGATGAAAAACCTGGATCACATCGCTGCTTCGGTTGATTGGGAGAAAGAGTCTCTCCCTGAGTACCAGGATTTGATATTTCTCTTATTTTTTGCTCTCTTCTTCCCCGTTCTTCGATTCATACTCGACAGATTTGTTTTCGAGGTAGTAGCTCGGTTGGTTGGCTATCTCAACTAATTTTGATTAGTTTTTTTCCCAGTTTTCTTCCCTCCTCTGTTTTTTTTTTCTTTTCTGTTTGAAATTTGAGATTGATTTGGACGCGTGCTTATATTGTTTACTCTGATGCTAGGCATTGGCTAAGCGTATGATTTTTGGAAAGAAGACGGTTGTAAATATTAACGGTCGTGAAGAGAGGAAGAAGATCAACAAATTCAAAGAGTCAGCATGGAAATTTGTATATTTTCTATCTACTGAGCTACTTGCACTTTCTGTGACTTGTAATGAGCCTTGGTTCACAGATAGTCGGTATTTCTGGGCAGGACCTGGAGATGTGGTTTGGCCTAATTTGAAAATGAAGTAAAGCTCTTCTCATTTTTGAAGATTTTGTATTGATATCTGAATCAGAAAAGGAGTGTTTATAACCTGGTTGATTCGAATTTGGCAGATTAAAGCTAAAATTATTGTACATGTATGCTGGAGGATTCTACTTTTACTCCATATTCGCAACACTTTATTGGGAAACAAGACGCTATGATTTTGCTGCGCAGATAATTCATCATGTAACAACAGTGTCACTCATTGTGTTGTCTTACGTATACGGGTACAGCCATTTGCTCAGCTGTTATAAAAGTGTTGGTGTGAGTTGAGTTTTGAAGAATGTGAACATTCTGTTTTGCAGGTTTGCGCGTATTGGATCAGTGGTTCTAGCACTTCATGACGGAAGTGATGTATTCATGGAAATTGCAAAGATGTCGAAATACAGTGGCTTTGATTTGATTGCTGATATTTTCTTCTCTCTTTTCGCGTTGGTTTTTACATCACTTCGTATAATCTGCTATCCCTTCTGGATAATCCGAAGCACATGGTGAGTTCACTACCAACTGCATTTACAGTAAGCTTGTTTTCTGTTAGTTCATCGTCTCTAAGATTCGTTATTTCTTTCAACTTTGTGCAGCTACGAACTTCTTTATGTATTGGATATACAGAAGGAACGGACTACTGGGATCATACTTTACTTTGTTTTCAATGCATTGCTGATATGCTTGCTGGTTCTTCACCTCTTTTGGTTCAAAATCATACTGCGGATGGTCAAGAACCAAATCCTATCAAGAGGCCACATTACTGATGATGTTCGAGAAGGTAAAAGAATCATCTGCTTCATTGATCATATAAACTTCCAGCATGATAGCTTTTGATCTTACACTGCATTTTTGTTTATGATCTGCAGATTCTGAATCTGATGATGACCACAAAGACTGATCCTTCAGTAGCTAAGACCAAAAGTACAATTCATGGTCCAGGCTGATGTTTGAAGCATTTAAATATTTTGTATTTCTTGTAGAGGCAGCACTACTTGATGTCGATGAACAAATTGAACATAGGGAATTATAGTGAAAATCTTTATTCTGGGTTCCATTCATGAGTTTTGCCTGTATGTATAAGAAAAAAGTTGCACTGTTGGAATTATGTATATCCTGATATGCTAT
AACAATTCGAAAACTTGTTCTGCAATTCATTTGAAACTACAACAATAGAAGAAGAAAAAAAAAGTTCAATTCAACAGATTTTTGAAAAAAAAAGTCAACAGATGAAAAACCTGGATCACATCGCTGCTTCGGTTGATTGGGAGAAAGAGTCTCTCCCTGAGTACCAGGATTTGATATTTCTCTTATTTTTTGCTCTCTTCTTCCCCGTTCTTCGATTCATACTCGACAGATTTGTTTTCGAGGTAGTAGCTCGGTTGGTTGGCTATCTCAACTAATTTTGATTAGTTTTTTTCCCAGTTTTCTTCCCTCCTCTGTTTTTTTTTTCTTTTCTGTTTGAAATTTGAGATTGATTTGGACGCGTGCTTATATTGTTTACTCTGATGCTAGGCATTGGCTAAGCGTATGATTTTTGGAAAGAAGACGGTTGTAAATATTAACGGTCGTGAAGAGAGGAAGAAGATCAACAAATTCAAAGAGTCAGCATGGAAATTTGTATATTTTCTATCTACTGAGCTACTTGCACTTTCTGTGACTTGTAATGAGCCTTGGTTCACAGATAGTCGGTATTTCTGGGCAGGACCTGGAGATGTGGTTTGGCCTAATTTGAAAATGAAGTAAAGCTCTTCTCATTTTTGAAGATTTTGTATTGATATCTGAATCAGAAAAGGAGTGTTTATAACCTGGTTGATTCGAATTTGGCAGATTAAAGCTAAAATTATTGTACATGTATGCTGGAGGATTCTACTTTTACTCCATATTCGCAACACTTTATTGGGAAACAAGACGCTATGATTTTGCTGCGCAGATAATTCATCATGTAACAACAGTGTCACTCATTGTGTTGTCTTACGTATACGGGTACAGCCATTTGCTCAGCTGTTATAAAAGTGTTGGTGTGAGTTGAGTTTTGAAGAATGTGAACATTCTGTTTTGCAGGTTTGCGCGTATTGGATCAGTGGTTCTAGCACTTCATGACGGAAGTGATGTATTCATGGAAATTGCAAAGATGTCGAAATACAGTGGCTTTGATTTGATTGCTGATATTTTCTTCTCTCTTTTCGCGTTGGTTTTTACATCACTTCGTATAATCTGCTATCCCTTCTGGATAATCCGAAGCACATGGTGAGTTCACTACCAACTGCATTTACAGTAAGCTTGTTTTCTGTTAGTTCATCGTCTCTAAGATTCGTTATTTCTTTCAACTTTGTGCAGCTACGAACTTCTTTATGTATTGGATATACAGAAGGAACGGACTACTGGGATCATACTTTACTTTGTTTTCAATGCATTGCTGATATGCTTGCTGGTTCTTCACCTCTTTTGGTTCAAAATCATACTGCGGATGGTCAAGAACCAAATCCTATCAAGAGGCCACATTACTGATGATGTTCGAGAAGGTAAAAGAATCATCTGCTTCATTGATCATATAAACTTCCAGCATGATAGCTTTTGATCTTACACTGCATTTTTGTTTATGATCTGCAGATTCTGAATCTGATGATGACCACAAAGACTGATCCTTCAGTAGCTAAGACCAAAAGTACAATTCATGGTCCAGGCTGATGTTTGAAGCATTTAAATATTTTGTATTTCTTGTAGAGGCAGCACTACTTGATGTCGATGAACAAATTGAACATAGGGAATTATAGTGAAAATCTTTATTCTGGGTTCCATTCATGAGTTTTGCCTGTATGTATAAGAAAAAAGTTGCACTGTTGGAATTATGTATATCCTGATATGCTAT
| Download sequence region |
Get flanking sequences on SL2.50ch03
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mRNA Solyc03g114600.2.1
mRNA Solyc03g114600.2.1
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Ontology terms
Ontology terms
| terms associated with this mRNA |
cDNA sequence
cDNA sequence
| spliced cDNA sequence, including UTRs |
>Solyc03g114600.2.1 LAG1 longevity assurance homolog 2 (AHRD V1 **-- C1BLI2_OSMMO); contains Interpro domain(s) IPR006634 TRAM, LAG1 and CLN8 homology
AACAATTCGAAAACTTGTTCTGCAATTCATTTGAAACTACAACAATAGAAGAAGAAAAAAAAAGTTCAATTCAACAGATTTTTGAAAAAAAAAGTCAACAGATGAAAAACCTGGATCACATCGCTGCTTCGGTTGATTGGGAGAAAGAGTCTCTCCCTGAGTACCAGGATTTGATATTTCTCTTATTTTTTGCTCTCTTCTTCCCCGTTCTTCGATTCATACTCGACAGATTTGTTTTCGAGGCATTGGCTAAGCGTATGATTTTTGGAAAGAAGACGGTTGTAAATATTAACGGTCGTGAAGAGAGGAAGAAGATCAACAAATTCAAAGAGTCAGCATGGAAATTTGTATATTTTCTATCTACTGAGCTACTTGCACTTTCTGTGACTTGTAATGAGCCTTGGTTCACAGATAGTCGGTATTTCTGGGCAGGACCTGGAGATGTGGTTTGGCCTAATTTGAAAATGAAATTAAAGCTAAAATTATTGTACATGTATGCTGGAGGATTCTACTTTTACTCCATATTCGCAACACTTTATTGGGAAACAAGACGCTATGATTTTGCTGCGCAGATAATTCATCATGTAACAACAGTGTCACTCATTGTGTTGTCTTACGTATACGGGTTTGCGCGTATTGGATCAGTGGTTCTAGCACTTCATGACGGAAGTGATGTATTCATGGAAATTGCAAAGATGTCGAAATACAGTGGCTTTGATTTGATTGCTGATATTTTCTTCTCTCTTTTCGCGTTGGTTTTTACATCACTTCGTATAATCTGCTATCCCTTCTGGATAATCCGAAGCACATGCTACGAACTTCTTTATGTATTGGATATACAGAAGGAACGGACTACTGGGATCATACTTTACTTTGTTTTCAATGCATTGCTGATATGCTTGCTGGTTCTTCACCTCTTTTGGTTCAAAATCATACTGCGGATGGTCAAGAACCAAATCCTATCAAGAGGCCACATTACTGATGATGTTCGAGAAGATTCTGAATCTGATGATGACCACAAAGACTGATCCTTCAGTAGCTAAGACCAAAAGTACAATTCATGGTCCAGGCTGATGTTTGAAGCATTTAAATATTTTGTATTTCTTGTAGAGGCAGCACTACTTGATGTCGATGAACAAATTGAACATAGGGAATTATAGTGAAAATCTTTATTCTGGGTTCCATTCATGAGTTTTGCCTGTATGTATAAGAAAAAAGTTGCACTGTTGGAATTATGTATATCCTGATATGCTAT
AACAATTCGAAAACTTGTTCTGCAATTCATTTGAAACTACAACAATAGAAGAAGAAAAAAAAAGTTCAATTCAACAGATTTTTGAAAAAAAAAGTCAACAGATGAAAAACCTGGATCACATCGCTGCTTCGGTTGATTGGGAGAAAGAGTCTCTCCCTGAGTACCAGGATTTGATATTTCTCTTATTTTTTGCTCTCTTCTTCCCCGTTCTTCGATTCATACTCGACAGATTTGTTTTCGAGGCATTGGCTAAGCGTATGATTTTTGGAAAGAAGACGGTTGTAAATATTAACGGTCGTGAAGAGAGGAAGAAGATCAACAAATTCAAAGAGTCAGCATGGAAATTTGTATATTTTCTATCTACTGAGCTACTTGCACTTTCTGTGACTTGTAATGAGCCTTGGTTCACAGATAGTCGGTATTTCTGGGCAGGACCTGGAGATGTGGTTTGGCCTAATTTGAAAATGAAATTAAAGCTAAAATTATTGTACATGTATGCTGGAGGATTCTACTTTTACTCCATATTCGCAACACTTTATTGGGAAACAAGACGCTATGATTTTGCTGCGCAGATAATTCATCATGTAACAACAGTGTCACTCATTGTGTTGTCTTACGTATACGGGTTTGCGCGTATTGGATCAGTGGTTCTAGCACTTCATGACGGAAGTGATGTATTCATGGAAATTGCAAAGATGTCGAAATACAGTGGCTTTGATTTGATTGCTGATATTTTCTTCTCTCTTTTCGCGTTGGTTTTTACATCACTTCGTATAATCTGCTATCCCTTCTGGATAATCCGAAGCACATGCTACGAACTTCTTTATGTATTGGATATACAGAAGGAACGGACTACTGGGATCATACTTTACTTTGTTTTCAATGCATTGCTGATATGCTTGCTGGTTCTTCACCTCTTTTGGTTCAAAATCATACTGCGGATGGTCAAGAACCAAATCCTATCAAGAGGCCACATTACTGATGATGTTCGAGAAGATTCTGAATCTGATGATGACCACAAAGACTGATCCTTCAGTAGCTAAGACCAAAAGTACAATTCATGGTCCAGGCTGATGTTTGAAGCATTTAAATATTTTGTATTTCTTGTAGAGGCAGCACTACTTGATGTCGATGAACAAATTGAACATAGGGAATTATAGTGAAAATCTTTATTCTGGGTTCCATTCATGAGTTTTGCCTGTATGTATAAGAAAAAAGTTGCACTGTTGGAATTATGTATATCCTGATATGCTAT
Protein sequence
Protein sequence
| translated polypeptide sequence |
>Solyc03g114600.2.1 LAG1 longevity assurance homolog 2 (AHRD V1 **-- C1BLI2_OSMMO); contains Interpro domain(s) IPR006634 TRAM, LAG1 and CLN8 homology
MKNLDHIAASVDWEKESLPEYQDLIFLLFFALFFPVLRFILDRFVFEALAKRMIFGKKTVVNINGREERKKINKFKESAWKFVYFLSTELLALSVTCNEPWFTDSRYFWAGPGDVVWPNLKMKLKLKLLYMYAGGFYFYSIFATLYWETRRYDFAAQIIHHVTTVSLIVLSYVYGFARIGSVVLALHDGSDVFMEIAKMSKYSGFDLIADIFFSLFALVFTSLRIICYPFWIIRSTCYELLYVLDIQKERTTGIILYFVFNALLICLLVLHLFWFKIILRMVKNQILSRGHITDDVREDSESDDDHKD*
MKNLDHIAASVDWEKESLPEYQDLIFLLFFALFFPVLRFILDRFVFEALAKRMIFGKKTVVNINGREERKKINKFKESAWKFVYFLSTELLALSVTCNEPWFTDSRYFWAGPGDVVWPNLKMKLKLKLLYMYAGGFYFYSIFATLYWETRRYDFAAQIIHHVTTVSLIVLSYVYGFARIGSVVLALHDGSDVFMEIAKMSKYSGFDLIADIFFSLFALVFTSLRIICYPFWIIRSTCYELLYVLDIQKERTTGIILYFVFNALLICLLVLHLFWFKIILRMVKNQILSRGHITDDVREDSESDDDHKD*
Gene model matches
Gene model matches
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SGN Unigenes
SGN Unigenes
| [Associate new unigene] |
Unigene ID:
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GenBank accessions
GenBank accessions
| [Associate new genbank sequence] |
AJ312131 Lycopersicon esculentum mRNA for alternaria stem canker resistance protein, Asc-1 allele (Asc gene).
AJ416474 Lycopersicon esculentum mRNA for protein homologous to resistance protein of Alternaria alternata f.sp. lycopersici (asc-1 gene).
AF198177 Lycopersicon esculentum ASC1 (Asc) gene, Asc-1 allele, complete cds.
AJ416474 Lycopersicon esculentum mRNA for protein homologous to resistance protein of Alternaria alternata f.sp. lycopersici (asc-1 gene).
AF198177 Lycopersicon esculentum ASC1 (Asc) gene, Asc-1 allele, complete cds.
| Other genome matches | None |
Literature annotations [3]
Literature annotations [3]
| [Associate publication] [Matching publications] |
Genetic and physical analysis of a YAC contig spanning the fungal disease resistance locus Asc of tomato (Lycopersicon esculentum).
Molecular & general genetics : MGG (1999)
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The Alternaria stem canker disease of tomato is caused by the necrotrophic fungal pathogen Alternaria alternata f. sp. lycopersici (AAL). The fungus produces AAL toxins that kill the plant tissue. Resistance to the fungus segregates as a single locus, called Asc, and has been genetically mapped on chromosome 3 of tomato. We describe here the establishment of a 1383-kb YAC contig covering the Asc locus and a series of plants selected for recombination events around the Asc locus. It was shown that the YAC contig corresponds to a genetic distance of at least 11.2 cM. Thus, the recombination rate in the Asc region is six times higher (123 kb/cM) than the average for the tomato genome. Furthermore, the Asc locus could be localised to a 91-kb fragment, thus paving the way for the cloning and identification of the Asc gene(s) by complementation.
Mesbah, LA. Kneppers, TJ. Takken, FL. Laurent, P. Hille, J. Nijkamp, HJ.
Molecular & general genetics : MGG.
1999.
261(1).
50-7.
A longevity assurance gene homolog of tomato mediates resistance to Alternaria alternata f. sp. lycopersici toxins and fumonisin B1.
Proceedings of the National Academy of Sciences of the United States of America (2000)
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The phytopathogenic fungus Alternaria alternata f. sp. lycopersici (AAL) produces toxins that are essential for pathogenicity of the fungus on tomato (Lycopersicon esculentum). AAL toxins and fumonisins of the unrelated fungus Fusarium moniliforme are sphinganine-analog mycotoxins (SAMs), which cause inhibition of sphingolipid biosynthesis in vitro and are toxic for some plant species and mammalian cell lines. Sphingolipids can be determinants in the proliferation or death of cells. We investigated the tomato Alternaria stem canker (Asc) locus, which mediates resistance to SAM-induced apoptosis. Until now, mycotoxin resistance of plants has been associated with detoxification and altered affinity or absence of the toxin targets. Here we show that SAM resistance of tomato is determined by Asc-1, a gene homologous to the yeast longevity assurance gene LAG1 and that susceptibility is associated with a mutant Asc-1. Because both sphingolipid synthesis and LAG1 facilitate endocytosis of glycosylphosphatidylinositol-anchored proteins in yeast, we propose a role for Asc-1 in a salvage mechanism of sphingolipid-depleted plant cells.
Brandwagt, BF. Mesbah, LA. Takken, FL. Laurent, PL. Kneppers, TJ. Hille, J. Nijkamp, HJ.
Proceedings of the National Academy of Sciences of the United States of America.
2000.
97(9).
4961-6.
The plant disease resistance gene Asc-1 prevents disruption of sphingolipid metabolism during AAL-toxin-induced programmed cell death.
The Plant journal : for cell and molecular biology (2002)
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The nectrotrophic fungus Alternaria alternata f.sp. lycopersici infects tomato plants of the genotype asc/asc by utilizing a host-selective toxin, AAL-toxin, that kills the host cells by inducing programmed cell death. Asc-1 is homologous to genes found in most eukaryotes from yeast to humans, suggesting a conserved function. A yeast strain with deletions in the homologous genes LAG1 and LAC1 was functionally complemented by Asc-1, indicating that Asc-1 functions in an analogous manner to the yeast homologues. Examination of the yeast sphingolipids, which are almost absent in the lag1Deltalac1Delta mutant, showed that Asc-1 was able to restore the synthesis of sphingolipids. We therefore examined the biosynthesis of sphingolipids in tomato by labeling leaf discs with l-[3-3H]serine. In the absence of AAL-toxin, there was no detectable difference in sphingolipid labeling between leaf discs from Asc/Asc or asc/asc leaves. In the presence of pathologically significant concentrations of AAL-toxin however, asc/asc leaf discs showed severely reduced labeling of sphingolipids and increased label in dihydrosphingosine (DHS) and 3-ketodihydrosphingosine (3-KDHS). Leaf discs from Asc/Asc leaves responded to AAL-toxin treatment by incorporating label into different sphingolipid species. The effects of AAL-toxin on asc/asc leaflets could be partially blocked by the simultaneous application of AAL-toxin and myriocin. Leaf discs simultaneously treated with AAL-toxin and myriocin showed no incorporation of label into sphingolipids or long-chain bases as expected. These results indicate that the presence of Asc-1 is able to relieve an AAL-toxin-induced block on sphingolipid synthesis that would otherwise lead to programmed cell death.
Spassieva, SD. Markham, JE. Hille, J.
The Plant journal : for cell and molecular biology.
2002.
32(4).
561-72.
Ontology annotations (3)
Ontology annotations (3)
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