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Genome-wide functional analysis reveals that autophagy is necessary for growth sporulation deoxynivalenol production and virulence in Fusarium graminearum

机译:全基因组功能分析表明自噬对于禾谷镰刀菌的生长孢子形成脱氧雪腐酚产生和毒力是必需的

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摘要

Autophagy is a conserved cellular recycling and trafficking pathway in eukaryotic cells and has been reported to be important in the virulence of a number of microbial pathogens. Here, we report genome-wide identification and characterization of autophagy-related genes (ATGs) in the wheat pathogenic fungus Fusarium graminearum. We identified twenty-eight genes associated with the regulation and operation of autophagy in F. graminearum. Using targeted gene deletion, we generated a set of 28 isogenic mutants. Autophagy mutants were classified into two groups by differences in their growth patterns. Radial growth of 18 Group 1 ATG mutants was significantly reduced compared to the wild-type strain PH-1, while 10 Group 2 mutants grew normally. Loss of any of the ATG genes, except FgATG17, prevented the fungus from causing Fusarium head blight disease. Moreover, subsets of autophagy genes were necessary for asexual/sexual differentiation and deoxynivalenol (DON) production, respectively. FgATG1 and FgATG5 were investigated in detail and showed severe defects in autophagy. Taken together, we conclude that autophagy plays a critical role in growth, asexual/sexual sporulation, deoxynivalenol production and virulence in F. graminearum.
机译:自噬是真核细胞中保守的细胞再循环和运输途径,据报道在许多微生物病原体的毒力中很重要。在这里,我们报告了小麦致病性镰刀镰孢中自噬相关基因(ATG)的全基因组范围的鉴定和表征。我们确定了与禾谷镰刀菌自噬的调控和操作相关的28个基因。使用靶向基因缺失,我们产生了一组28个同基因突变体。自噬突变体根据其生长方式的不同分为两类。与野生型菌株PH-1相比,18个第1组ATG突变体的径向生长显着降低,而10个第2组突变体正常生长。除FgATG17以外,任何ATG基因的缺失都阻止了真菌引起镰刀菌病。此外,自噬基因的子集对于无性/性分化和脱氧雪腐烯醇(DON)的产生分别是必需的。 FgATG1和FgATG5进行了详细研究,并显示出自噬的严重缺陷。两者合计,我们得出结论,自噬在禾谷镰刀菌的生长,无性/性孢子形成,脱氧雪腐烯醇的产生和毒力中起关键作用。

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