The Zymoseptoria tritici avirulence factor AvrStb6 accumulates in hyphae close to stomata and triggers a wheat defense response hindering fungal penetration

, the causal agent of septoria tritici blotch, is one of Europe's most damaging wheat pathogens, causing significant economic losses. Genetic resistance is a common strategy to control the disease, Stb6 being a resistance gene used for over 100 years in Europe. This study investigates the molec...

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Veröffentlicht in:Molecular plant-microbe interactions 2024-05, Vol.37 (5), p.432-444
Hauptverfasser: Alassimone, Julien, Praz, Coraline, Lorrain, Cécile, De Francesco, Agustina, Carrasco-López, Cristian, Faino, Luigi, Shen, Ziqi, Meile, Lukas, Sanchez Vallet, Andrea
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Sprache:eng
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Zusammenfassung:, the causal agent of septoria tritici blotch, is one of Europe's most damaging wheat pathogens, causing significant economic losses. Genetic resistance is a common strategy to control the disease, Stb6 being a resistance gene used for over 100 years in Europe. This study investigates the molecular mechanisms underlying Stb6-mediated resistance. Utilizing confocal microscopy imaging, we identified that epiphytic hyphae mainly accumulates the corresponding avirulence factor AvrStb6 in close proximity to stomata. Consequently, the progression of AvrStb6-expressing avirulent strains is hampered during penetration. The fungal growth inhibition co-occurs with a transcriptional reprogramming in wheat characterized by an induction of immune responses, genes involved in stomata regulation, and cell wall-related genes. Overall, we shed light on the gene-for-gene resistance mechanisms in the wheat - pathosystem at the cytological and transcriptomic level, and our results highlight that stomata penetration is a critical process for pathogenicity and resistance.
ISSN:0894-0282
1943-7706
1943-7706
DOI:10.1094/MPMI-11-23-0181-R