MOE Laboratory of Biosystems Homeostasis & Protection, Institute of Microbiology, College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang, 310058, China.
College of Agricultural and Food Science, Zhejiang A&F University, Lin'an, Zhejiang, 311300, China.
Environ Microbiol. 2020 Jul;22(7):2564-2580. doi: 10.1111/1462-2920.14940. Epub 2020 Feb 20.
Ubi4 is a polyubiquitin precursor well characterized in yeasts but unexplored in insect mycopathogens. Here, we report that orthologous Ubi4 plays a core role in ubiquitin- and asexual lifestyle-required cellular events in Beauveria bassiana. Deletion of ubi4 led to abolished ubiquitin accumulation, blocked autophagic process, severe defects in conidiation and conidial quality, reduced cell tolerance to oxidative, osmotic, cell wall perturbing and heat-shock stresses, decreased transcript levels of development-activating and antioxidant genes, but light effect on radial growth under normal conditions. The deletion mutant lost insect pathogenicity via normal cuticle infection and was severely compromised in virulence via cuticle-bypassing infection due to a block of dimorphic transition critical for acceleration of host mummification. Proteomic and ubiquitylomic analyses revealed 1081 proteins differentially expressed and 639 lysine residues significantly hyper- or hypo-ubiquitylated in the deletion mutant, including dozens of ubiquitin-activating, conjugating and ligating enzymes, core histones, and many more involved in proteasomes, autophagy-lysosome process and protein degradation. Singular deletions of seven ubiquitin-conjugating enzyme genes exerted differential Ubi4-like effects on conidiation level and conidial traits. These findings uncover an essential role of Ubi4 in ubiquitin transfer cascade and its pleiotropic effects on the in vitro and in vivo asexual cycle of B. bassiana.
Ubi4 是一种多泛素前体,在酵母中得到了很好的研究,但在昆虫病原真菌中尚未得到探索。在这里,我们报告说,在白僵菌中,同源的 Ubi4 在泛素和无性生活方式所必需的细胞事件中发挥核心作用。ubi4 的缺失导致泛素积累被消除,自噬过程被阻断,分生孢子形成和分生孢子质量严重缺陷,细胞对氧化、渗透、细胞壁破坏和热休克压力的耐受性降低,发育激活和抗氧化基因的转录水平降低,但在正常条件下对径向生长的光效应。缺失突变体通过正常的表皮感染失去了昆虫致病性,并且由于二态性转换的关键阻断,通过表皮旁路感染,其毒力严重受损,这对于加速宿主木乃伊化至关重要。蛋白质组学和泛素组学分析显示,在缺失突变体中有 1081 种蛋白质表达差异,639 个赖氨酸残基显著高或低泛素化,包括数十种泛素激活酶、连接酶和连接酶、核心组蛋白以及更多参与蛋白酶体、自噬溶酶体过程和蛋白质降解的蛋白质。七种泛素连接酶基因的单一缺失对分生孢子形成水平和分生孢子特征表现出不同的 Ubi4 样效应。这些发现揭示了 Ubi4 在泛素转移级联中的重要作用及其对 B. bassiana 体外和体内无性周期的多效性影响。