Sulfur metabolism-mediated fungal glutathione biosynthesis is essential for oxidative stress resistance and pathogenicity in the plant pathogenic fungus Fusarium graminearum.

硫代谢介导的真菌谷胱甘肽生物合成对于植物病原真菌禾谷镰刀菌的氧化应激抵抗力和致病性至关重要

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作者:Park Jiyeun, Han Jae Woo, Lee Nahyun, Kim Sieun, Choi Soyoung, Lee Hyun-Hee, Kim Jung-Eun, Seo Young-Su, Choi Gyung Ja, Lee Yin-Won, Kim Hun, Son Hokyoung
Fusarium graminearum is a destructive fungal pathogen that causes Fusarium head blight (FHB) on a wide range of cereal crops. To control fungal diseases, it is essential to comprehend the pathogenic mechanisms that enable fungi to overcome host defenses during infection. Pathogens require an oxidative stress response to overcome host-derived oxidative stress. Here, we identify the underlying mechanisms of the Fgbzip007-mediated oxidative stress response in F. graminearum. ChIP-seq and subsequent genetic analyses revealed that the role of glutathione in pathogenesis is not dependent on antioxidant functions in F. graminearum. Altogether, this study establishes a comprehensive framework for the Fgbzip007 regulon on pathogenicity and oxidative stress responses, offering a new perspective on the role of glutathione in pathogenicity.

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