The glutathione peroxidase‐mediated reactive oxygen species resistance, fungicide sensitivity and cell wall construction in the citrus fungal pathogen Alternaria alternata

生物 活性氧 微生物学 分生孢子 毒力 突变体 氧化应激 细胞壁 过氧化物酶 谷胱甘肽 生物化学 基因
作者
Siwy Ling Yang,Pei‐Ling Yu,Kuang‐Ren Chung
出处
期刊:Environmental Microbiology [Wiley]
卷期号:18 (3): 923-935 被引量:68
标识
DOI:10.1111/1462-2920.13125
摘要

Summary The ability to detoxify reactive oxygen species ( ROS ) is critical for pathogenicity in the necrotrophic fungus A lternaria alternata . We report a glutathione peroxidase 3 ( AaGPx3 ) involved in the complex signalling network that is essential for the detoxification of cellular stresses induced by ROS and for A . alternata pathogenesis in citrus. AaGPx3 deletion mutants displayed increased sensitivity to H 2 O 2 and many ROS ‐generating compounds. AaGPx3 is required for correct fungal development as the AaGPx3 mutant strains showed a severe reduction in conidiation. AaGPx3 mutants accumulated higher chitin content than the wild‐type and were less sensitive to the cell wall‐targeting compounds calcofluor white and C ongo red, as well as the fungicides fludioxonil and vinclozolin, suggesting a role of the glutathione systems in fungal cell wall construction. Virulence assays revealed that AaGPx3 is required for full virulence. The expression of AaGPx3 was downregulated in fungal strains carrying defective NADPH oxidase ( N ox) or the oxidative stress responsive regulators YAP 1 and HOG 1, all implicated in ROS resistance. These results further support the important role of ROS detoxification during A . alternata pathogenesis in citrus. Overall, our study provides genetic evidence to define the central role of AaGPx3 in the biological and pathological functions of A . alternata .
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