The Pex3-mediated peroxisome biogenesis plays a critical role in metabolic biosynthesis, stress response, and pathogenicity in Alternaria alternata

MICROBIOLOGICAL RESEARCH(2023)

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摘要
Peroxisomes are microbodies involved in the metabolism of fatty acids and hydrogen peroxide (H2O2) in eu-karyotes. In the current study, an AaPex3 gene encoding a peroxisome membrane protein was demonstrated to be required for peroxisome biogenesis and resistance to peroxides and superoxide-generating compounds. Deleting AaPex3 affected the expression of the genes encoding the NADPH oxidase (NoxA) and the Yap1 stress-responsive transcription regulator, both of which have been implicated in ROS resistance. The AaPex3-mediated peroxisome biogenesis negatively affected resistance to singlet oxygen-generating compounds, 2-chloro-5-hydroxypyridine (CHP), and 2,3,5-triiodobenzoic acid (TIBA), novel phenotypes associated with peroxisomes. Nile red staining revealed that Delta AaPex3 accumulated more lipid bodies than the wild type. Delta AaPex3 conidia had thinner cell walls than the wild type, suggesting the involvement of AaPex3 in maintaining cell wall integrity. Genetic evidence has also demonstrated that the AaPex3-mediated peroxisome biogenesis is required for conidiogenesis, conidia germination, siderophore biosynthesis, toxin production, and virulence. Biotin or lipids could restore Delta AaPex3 growth in axenic culture and on the surface of citrus leaves. In contrast, co-application of Delta AaPex3 with biotin and oleic acid on citrus leaves failed to induce necrotic lesions. Our results revealed the multifaceted functions of peroxisomes in the phytopathogenic fungus.
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关键词
Microbodies,Oxidative stress,Peroxin,Peroxisomes,Virulence
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