Phytopathology · 2018 · 10 citations · 53 references
BiologyPlant ImmunityPlant-parasite CoevolutionMolecular EcologyBotanyNatural SciencesGeneticsPathogenesisCultivated OatOat Crown RustPlant PathologyInduced ResistanceMicrobiologyPlant Pathogen EffectorHost ResistanceMedicinePlant-pathogen InteractionSalicylic Acid
Oat crown rust caused by Puccinia coronata f. sp. avenae is the most destructive foliar disease of cultivated oat. Characterization of genetic factors controlling resistance responses to Puccinia coronata f. sp. avenae in nonhost species could provide new resources for developing disease protection strategies in oat. We examined symptom development and fungal colonization levels of a collection of Brachypodium distachyon and B. hybridum accessions infected with three North American P. coronata f. sp. avenae isolates. Our results demonstrated that colonization phenotypes are dependent on both host and pathogen genotypes, indicating a role for race-specific responses in these interactions. These responses were independent of the accumulation of reactive oxygen species. Expression analysis of several defense-related genes suggested that salicylic acid and ethylene-mediated signaling but not jasmonic acid are components of resistance reaction to P. coronata f. sp. avenae. Our findings provide the basis to conduct a genetic inheritance study to examine whether effector-triggered immunity contributes to nonhost resistance to P. coronata f. sp. avenae in Brachypodium spp.
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Current Status of the Gene-For-Gene Concept
H. H. Flor · Annual Review of Phytopathology · 1971 · 3.1K citations
Hans Thordal‐Christensen, Ziguo Zhang, Yangdou Wei et al. · The Plant Journal · 1997 · 2.7K citations · Full text
Genome sequencing and analysis of the model grass Brachypodium distachyon