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Genome-wide functional analysis reveals that infection-associated fungal autophagy is necessary for rice blast disease

机译:全基因组功能分析表明与感染相关的真菌自噬是稻瘟病的必要条件

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摘要

To cause rice blast disease, the fungus Magnaporthe oryzae elaborates specialized infection structures called appressoria, which use enormous turgor to rupture the tough outer cuticle of a rice leaf. Here, we report the generation of a set of 22 isogenic M. oryzae mutants each differing by a single component of the predicted autophagic machinery of the fungus. Analysis of this set of targeted deletion mutants demonstrated that loss of any of the 16 genes necessary for nonselective macroautophagy renders the fungus unable to cause rice blast disease, due to impairment of both conidial programmed cell death and appressorium maturation. In contrast, genes necessary only for selective forms of autophagy, such as pexophagy and mitophagy, are dispensable for appressorium-mediated plant infection. A genome-wide analysis therefore demonstrates the importance of infection-associated, nonselective autophagy for the establishment of rice blast disease.
机译:为了引起稻瘟病,真菌Magnaporthe oryzae精心设计了称为“压根”的特殊感染结构,该结构会用巨大的膨胀力来破坏稻米叶片坚韧的外表皮。在这里,我们报告了一组22个同基因的米曲霉突变体的产生,每个突变体的区别在于预测的真菌自噬机制的单个组成部分。对这套靶向缺失突变体的分析表明,由于分生孢子程序性细胞死亡和前肢成熟的损害,非选择性宏自噬必需的16个基因中的任何一个的丧失都使真菌无法引起稻瘟病。相反,仅对于选择性自噬形式(例如前吞噬和线粒体吞噬)必需的基因对于食堂介导的植物感染是必不可少的。因此,全基因组分析证明了感染相关的非选择性自噬对于稻瘟病的重要性。

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