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Physiological and Biochemical Response to Fusarium culmorum Infection in Three Durum Wheat Genotypes at Seedling and Full Anthesis Stage

Jakub Pastuszak, Anna Szczerba, Michał Dziurka, Marta Hornyák, Przemysław Kopeć, Marek Szklarczyk, Agnieszka Płażek

2021International Journal of Molecular Sciences27 citationsDOIOpen Access PDF

Abstract

Fusarium culmorum is a worldwide, soil-borne plant pathogen. It causes diseases of cereals, reduces their yield, and fills the grain with toxins. The main direction of modern breeding is to select wheat genotypes the most resistant to Fusarium diseases. This study uses seedlings and plants at the anthesis stage to analyze total soluble carbohydrates, total and cell-wall bound phenolics, chlorophyll content, antioxidant activity, hydrogen peroxide content, mycotoxin accumulation, visual symptoms of the disease, and Fusarium head blight index (FHBi). These results determine the resistance of three durum wheat accessions. We identify physiological or biochemical markers of durum wheat resistance to F. culmorum. Our results confirm correlations between FHBi and mycotoxin accumulation in the grain, which results in grain yield decrease. The degree of spike infection (FHBi) may indicate accumulation mainly of deoxynivalenol and nivalenol in the grain. High catalase activity in the infected leaves could be considered a biochemical marker of durum sensitivity to this fungus. These findings allowed us to formulate a strategy for rapid evaluation of the disease severity and the selection of plants with higher level, or resistance to F. culmorum infection.

Topics & Concepts

Fusarium culmorumMycotoxinBiologyFusariumAnthesisAgronomyPoint of deliverySeedlingCatalaseFungusInoculationPlant disease resistanceHorticultureBotanyAntioxidantCultivarBiochemistryGeneMycotoxins in Agriculture and FoodPlant Pathogens and Fungal DiseasesWheat and Barley Genetics and Pathology
Physiological and Biochemical Response to Fusarium culmorum Infection in Three Durum Wheat Genotypes at Seedling and Full Anthesis Stage | Litcius