首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >Autophagy-related gene ATG7 participates in the asexual development, stress response and virulence of filamentous insect pathogenic fungus Beauveria bassiana
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Autophagy-related gene ATG7 participates in the asexual development, stress response and virulence of filamentous insect pathogenic fungus Beauveria bassiana

机译:与自噬相关基因ATG7参与丝状昆虫致病真菌Beauveria Bassiana的无性发育,应激反应和毒力

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摘要

Autophagy is a sophisticated mechanism for maintaining cellular homeostasis, in which E1-like enzyme (ATG7) controls the activation of ubiquitin-like conjugation system in the autophagy pathway. In the insect pathogenic fungus Beauveria bassiana, a yeast ortholog of ATG7 was identified and functionally analyzed. Ablation of BbATG7 gene blocks the autophagic process under starvation stress. The mutant Delta BbATG7 exhibited impaired growth on the media with chitin as single nitrogen source. On rich media, gene loss did not cause notable effect on vegetative growth, but resulted in a considerable reduction in conidiation (71.6%) and blastospore yield (61.1%) in the mutant. In addition, the Delta BbATG7 mutant displayed increased sensitivity to stress caused by menadione and Congo red. The virulence of Delta BbATG7 mutant was significantly attenuated as indicated in topical and intrahemocoel injection assays. Our study indicates that BbATG7 contributes to B. bassiana virulence via regulating autophagy pathway and playing non-autophagic functions in the infection cycle.
机译:自噬是维持细胞稳态的复杂机制,其中E1样酶(ATG7)控制自噬途径中泛素样缀合系统的活化。在昆虫致病真菌Beauveria Bassiana中,鉴定了ATG7的酵母直向理性并在功能上分析。 BBATG7基因的消融阻断饥饿应激下的自噬过程。突变体Delta Bbatg7在用几丁质作为单一氮源的培养基上表现出损伤。在富含培养基上,基因丧失对植物生长产生显着影响,但导致突变体中的结合(71.6%)和囊缺血率(61.1%)降低了相当大的。此外,Delta Bbatg7突变体显示出对由男女淋树和刚果红色引起的压力的敏感性增加。如局部和内胚层注射测定中所述,Delta Bbatg7突变体的毒力显着减弱。我们的研究表明,BBATG7通过调节自噬途径和在感染周期中发挥非自噬作用,有助于B. Bassiana毒力。

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