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两个 FRQ 蛋白(Frq1 和 Frq2)在球孢白僵菌毒力、感染周期和 Calcofluor 特异性信号中的重要作用。

Essential Roles of Two FRQ Proteins (Frq1 and Frq2) in Beauveria bassiana's Virulence, Infection Cycle, and Calcofluor-Specific Signaling.

机构信息

College of Agricultural and Food Science, Zhejiang A & F University, Lin'an, Zhejiang, China

MOE Laboratory of Biosystems Homeostasis & Protection, Institute of Microbiology, Institute of Microbiology, College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang, China.

出版信息

Appl Environ Microbiol. 2021 Feb 26;87(6). doi: 10.1128/AEM.02545-20.

Abstract

Two FRQ proteins (Frq1 and Frq2) distinct in molecular mass and structure coexist in , an asexual insect-pathogenic fungus. Frq1 and Frq2 have been proven to have opposite nuclear rhythms that can persistently activate developmental activator genes and hence orchestrate nonrhythmic conidiation under light or in darkness. Here, we report the essentiality of either FRQ, but Frq2 being more important than Frq1, for the fungal virulence and infection cycle. The fungal virulence was attenuated significantly more in the absence of than in the absence of through either normal cuticle infection or cuticle-bypassing infection by intrahemocoel injection, accompanied by differentially reduced secretion of Pr1 proteases required for the cuticle infection and delayed development of hyphal bodies , which usually propagate by yeast-like budding in the host hemocoel to accelerate insect death from mycosis. Despite insignificant changes in radial growth under normal, oxidative, and hyperosmotic culture conditions, conidial yields of the Δ and Δ mutants on insect cadavers were sharply reduced, and the reduction increased with shortening daylight length on day 9 or 12 after death, indicating that both Frq1 and Frq2 are required for the fungal infection cycle in host habitats. Intriguingly, the Δ and Δ mutants showed hypersensitivity and high resistance to cell wall-perturbing calcofluor white, coinciding respectively with the calcofluor-triggered cells' hypo- and hyperphosphorylated signals of Slt2, a mitogen-activated protein kinase (MAPK) required for mediation of cell wall integrity. This finding offers a novel insight into opposite roles of Frq1 and Frq2 in calcofluor-specific signal transduction via the fungal Slt2 cascade. Opposite nuclear rhythms of two distinct FRQ proteins (Frq1 and Frq2) coexisting in an asexual fungal insect pathogen have been shown to orchestrate the fungal nonrhythmic conidiation in a circadian day independent of photoperiod change. This paper reports essential roles of both Frq1 and Frq2, but a greater role for Frq2, in sustaining the fungal virulence and infection cycle since either or deletion led to marked delay of lethal action against a model insect and drastic reduction of conidial yield on insect cadavers. Moreover, the and mutants display hypersensitivity and high resistance to cell wall perturbation and have hypo- and hyperphosphorylated MAPK/Slt2 in calcofluor white-triggered cells, respectively. These findings uncover a requirement of Frq1 and Frq2 for the fungal infection cycle in host habitats and provide a novel insight into their opposite roles in calcofluor-specific signal transduction through the MAPK/Slt2 cascade.

摘要

两种 FRQ 蛋白(Frq1 和 Frq2)在分子质量和结构上存在差异,共同存在于无性昆虫病原真菌中。已经证明 Frq1 和 Frq2 具有相反的核节律,可以持续激活发育激活剂基因,从而在光照或黑暗下协调非节律性分生孢子形成。在这里,我们报告了 FRQ 的必要性,但 Frq2 比 Frq1 更重要,因为真菌的毒力和感染周期。通过正常的表皮感染或通过体内血腔注射绕过表皮感染,在没有 的情况下,真菌的毒力显著降低,同时伴随用于表皮感染的 Pr1 蛋白酶的分泌显著减少,以及菌丝体的发育延迟,菌丝体通常在宿主血腔中通过酵母样出芽繁殖,以加速昆虫因真菌病而死亡。尽管在正常、氧化和高渗培养条件下,径向生长没有明显变化,但Δ 和 Δ 突变体在昆虫尸体上的分生孢子产量急剧减少,并且随着死亡后第 9 天或第 12 天白天长度的缩短,减少量增加,表明 Frq1 和 Frq2 都需要在宿主栖息地的真菌感染周期中。有趣的是,Δ 和 Δ 突变体表现出对细胞壁破坏剂钙调素白的超敏性和高抗性,分别与钙调素触发的细胞 Slt2 的低磷酸化和高磷酸化信号相一致,Slt2 是一种丝裂原激活蛋白激酶 (MAPK),是介导细胞壁完整性所必需的。这一发现为 Frq1 和 Frq2 在真菌 Slt2 级联中通过钙调素特异性信号转导的相反作用提供了新的见解。两种不同的 FRQ 蛋白(Frq1 和 Frq2)在无性真菌昆虫病原体中共存的相反核节律,已被证明在与光周期变化无关的昼夜节律日协调真菌的非节律性分生孢子形成。本文报道了 Frq1 和 Frq2 的重要作用,但 Frq2 的作用更大,因为缺失 或 都会导致对模型昆虫的致命作用明显延迟,并导致昆虫尸体上分生孢子产量大幅减少。此外,Δ 和 Δ 突变体对细胞壁扰动表现出超敏性和高抗性,并且钙调素白触发的细胞中的 MAPK/Slt2 分别呈现低磷酸化和高磷酸化。这些发现揭示了 Frq1 和 Frq2 在宿主栖息地中对真菌感染周期的要求,并为它们在钙调素特异性信号转导通过 MAPK/Slt2 级联中的相反作用提供了新的见解。

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