Abstract
As part of our investigation of disease resistance in lettuce, we generated mutants that have lost resistance to Bremia lactucae, the casual fungus of downy mildew. Using a rapid and reliable screen, we identified 16 distinct mutants of Latuca sativa that have lost activity of one of four different downy mildew resistance genes (Dm). In all mutants, only a single Dm specificity was affected. Genetic analysis indicated that the lesions segregated as single, recessive mutations at the Dm loci. Dm3 was inactivated in nine of the mutants. One of five Dm 1 mutants was selected from a population of untreated seeds and therefore carried a spontaneous mutation. All other Dm1, Dm3, Dm5/8 and Dm7 mutants were derived from gamma- or fast neutron-irradiated seed. In two separate Dm 1 mutants and in each of the eight Dm3 mutants analyzed, at least one closely linked molecular marker was absent. Also, high molecular weight genomic DNA fragments that hybridized to a tightly linked molecular marker in wild type were either missing entirely or were truncated in two of the Dm3 mutants, providing additional evidence that deletions had occurred in these mutants. Absence of mutations at loci epistatic to the Dm genes suggested that such loci were either members of multigene families, were critical for plant survival, or encoded components of duplicated pathways for resistance; alternatively, the genes determining downy mildew resistance might be limited to the Dm loci.
MeSH Terms
Chromosome Mapping
Crosses, Genetic
Fast Neutrons
Gamma Rays
Gene Deletion
Genes, Plant
Genes, Recessive
Genetic Complementation Test
Immunity, Innate/genetics
Mutagenesis
Oomycetes/pathogenicity
Plant Diseases/genetics,microbiology
Seeds/radiation effects
Vegetables/genetics,microbiology
Virulence
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Okubara P A
Department of Vegetable Crops, University of California, Davis 95616.
Anderson P A
Ochoa O E
Michelmore R W
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