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三种细胞壁完整性必需的丝裂原活化蛋白激酶极大地促进了一种真菌昆虫病原物的生物防治潜力。

Three mitogen-activated protein kinases required for cell wall integrity contribute greatly to biocontrol potential of a fungal entomopathogen.

机构信息

Institute of Microbiology, College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang, People's Republic of China.

出版信息

PLoS One. 2014 Feb 3;9(2):e87948. doi: 10.1371/journal.pone.0087948. eCollection 2014.

Abstract

Bck1, Mkk1 and Slt2 are three mitogen-activated protein (MAP) kinases constituting cell wall integrity (CWI) pathway that may control multi-stress responses via crosstalk with high-osmolarity glycerol (HOG) pathway in budding yeast. In this study, Bck1, Mkk1 and Slt2 orthologues in Beauveria bassiana were confirmed as the three-module cascade essential for CWI because cell wall impairment occurred in the hyphae and conidia of Δbck1, Δmkk1 and Δslt2 examined in multiple experiments. Strikingly, all the deletion mutants became more sensitive to hyperosmotic NaCl and sorbitol with the Western blot of Hog1 phosphorylation being weakened in Δbck1 and absent in Δmkk1 and Δslt2. Apart from crossing responses to cell wall perturbation and high osmolarity, three deletion mutants exhibited faster growth and conidiation on nutrition-rich medium, much less virulence to Galleria mellonella larvae, and higher sensitivity to nutritional, fungicidal, thermal and UV-B irradiative stresses, accompanied with less accumulation of intracellular mannitol and trehalose. Moreover, Δmkk1 and Δslt2 were equally more sensitive to all the stresses of different types except wet-heat stress than wild type and more or less different from Δbck1 in sensitivity to most of the stresses despite their null responses to two oxidants. All the changes in three deletion mutants were restored by each targeted gene complementation. Taken together, the CWI-required Bck1, Mkk1 and Slt2 are all positive, but differential, regulators of multi-stress tolerance and virulence perhaps due to interplay with the HOG pathway essential for osmoregulation, thereby contributing greatly to the biocontrol potential of the fungal entomopathogen.

摘要

Bck1、Mkk1 和 Slt2 是三种丝裂原激活蛋白(MAP)激酶,构成了细胞壁完整性(CWI)途径,通过与出芽酵母中高渗透压甘油(HOG)途径的串扰,可能控制多应激反应。在本研究中,白僵菌中的 Bck1、Mkk1 和 Slt2 同源物被确认为 CWI 的三个模块级联所必需的,因为在多项实验中检查的 Δbck1、Δmkk1 和 Δslt2 的菌丝和分生孢子中出现了细胞壁损伤。引人注目的是,所有缺失突变体对高渗透压 NaCl 和山梨糖醇变得更加敏感,Hog1 磷酸化的 Western blot 在 Δbck1 中减弱,在 Δmkk1 和 Δslt2 中缺失。除了对细胞壁扰动和高渗透压的交叉反应外,三个缺失突变体在营养丰富的培养基上表现出更快的生长和分生孢子形成,对大蜡螟幼虫的毒力降低,对营养、杀真菌剂、热和 UV-B 辐射应激的敏感性更高,伴随着细胞内甘露醇和海藻糖的积累减少。此外,Δmkk1 和 Δslt2 对不同类型的所有应激的敏感性除湿热应激外均与野生型相同,而与 Δbck1 相比,在对大多数应激的敏感性方面或多或少不同,尽管它们对两种氧化剂的反应为零。三个缺失突变体的所有变化都通过每个靶向基因的互补得到了恢复。总之,CWI 所需的 Bck1、Mkk1 和 Slt2 都是多应激耐受和毒力的正调控因子,但因与渗透压调节必需的 HOG 途径的相互作用而有所不同,从而极大地促进了真菌昆虫病原物的生物防治潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4511/3912201/406ff9196828/pone.0087948.g001.jpg

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