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Role of Autophagy-Related Gene atg22 in Developmental Process and Virulence of Fusarium oxysporum

机译:自噬相关基因atg22在尖孢镰刀菌发育过程和毒力中的作用

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摘要

Autophagy is a universal catabolic process preserved in eukaryotes from yeast to plants and mammals. The main purpose of autophagy is to degrade cytoplasmic materials within the lysosome/vacuole lumen and generate an internal nutrient pool that is recycled back to the cytosol during nutrient stress. Here, Fusarium oxysporum was utilized as a model organism, and we found that autophagy assumes an imperative job in affecting the morphology, development, improvement and pathogenicity of F. oxysporum. The search of autophagy pathway components from the F. oxysporum genome database recognized putative orthologs of 16 core autophagy-related (ATG) genes of yeast, which additionally incorporate the ubiquitin-like protein atg22. Present study elucidates the unreported role of Foatg22 in formation of autophagosomes. The deletion mutant of Foatg22 did not demonstrate positive monodansylcadaverine (MDC) staining, which exposed that Foatg22 is required for autophagy in F. oxysporum. Moreover, the ∆Foatg22 strains exhibited a decrease in hyphal development and conidiation, and reduction in pathogenicity on potato tubers and leaves of potato plant. The hyphae of ∆Foatg22 mutants were less dense when contrasted with wild-type (WT) and overexpression (OE) mutants. Our perceptions demonstrated that Foatg22 might be a key regulator for the control of dry rot disease in tuber and root crops during postharvest stage.
机译:自噬是从酵母到植物和哺乳动物的真核生物中普遍存在的分解代谢过程。自噬的主要目的是降解溶酶体/真空管腔内的细胞质物质,并产生内部营养库,在营养胁迫期间将其循环回细胞质。在这里,尖孢镰刀菌被用作模型生物,我们发现自噬在影响尖孢镰刀菌的形态,发育,改良和致病性方面起着必不可少的作用。从豆腐枯萎病菌基因组数据库中搜索自噬途径的成分,可以识别酵母的16个核心自噬相关(ATG)基因的直系同源基因,这些基因还包含了泛素样蛋白atg22。目前的研究阐明了Foatg22在自噬小体形成中的未报道作用。 Foatg22的缺失突变体未显示出正单丹磺尸胺(MDC)染色,这表明Foatg22是在F. oxysporum中自噬所必需的。此外,∆Foatg22菌株在菌丝和马铃薯上的菌丝发育和分生孢子减少,并且致病性降低。与野生型(WT)和过表达(OE)突变体相比,ΔFoatg22突变体的菌丝密度较小。我们的看法表明,Foatg22可能是收获后阶段控制块茎和块根作物干腐病的关键调节剂。

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