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Ras1 和 Ras2 蛋白在调控球孢白僵菌萌发、生长、产孢、多胁迫耐受和毒力中的分化功能。

Differentiated functions of Ras1 and Ras2 proteins in regulating the germination, growth, conidiation, multi-stress tolerance and virulence of Beauveria bassiana.

机构信息

Institute of Microbiology, College of Life Sciences, Zhejiang University, Hangzhou, 310058 Zhejiang, China.

出版信息

Environ Microbiol. 2013 Feb;15(2):447-62. doi: 10.1111/j.1462-2920.2012.02871.x. Epub 2012 Sep 7.

Abstract

Ras1 and Ras2 are two distinct Ras GTPases in Beauveria bassiana, an entomopathogenic fungus whose biocontrol potential against insect pests depends largely on virulence and multi-stress tolerance. The functions of both proteins were characterized for the first time by constructing dominant-active (GTP-bound) Ras1(G19V) and dominant-negative (GDP-bound) Ras1(D126A) and integrating them and normal Ras1 into wild type and ΔRas2 for a series of phenotypic and transcriptional analyses. The resultant mutants showed gradient changes of multiple phenotypes but little difference in conidial thermotolerance. Expression of Ras1(D126A) caused vigorous hyphal growth, severely defective conidiation, and increased tolerances to oxidation, cell wall disturbance, fungicide and UV-A/UV-B irradiations, but affected slightly germination, osmosensitivity and virulence. These phenotypes were antagonistically altered by mRas1(G19V) expressed in either wild type or ΔRas2, which was severely defective in conidial germination and hyphal growth and displayed intermediate changes in other mentioned phenotypes between paired mutants expressing Ras1(G19V) or Ras1(D126A) in wild type and ΔRas2. Their growth, UV tolerance or virulence was significantly correlated with cellular response to oxidation or cell wall disturbance. Transcriptional changes of 35 downstream effector genes involved in conidiation and multi-stress responses also related to most of the phenotypic changes among the mutants. Our findings highlight that Ras1 and Ras2 regulate differentially or antagonistically the germination, growth, conidiation, multi-stress tolerance and virulence of B. bassiana, thereby exerting profound effects on the fungal biocontrol potential.

摘要

白僵菌是一种昆虫病原真菌,其生物防治潜力在很大程度上依赖于毒力和多胁迫耐受性。Ras1 和 Ras2 是白僵菌中两种不同的 Ras GTPases,这两种蛋白的功能首次通过构建显性激活(GTP 结合)Ras1(G19V)和显性失活(GDP 结合)Ras1(D126A),并将它们与正常 Ras1 整合到野生型和 ΔRas2 中进行一系列表型和转录分析来进行了表征。所得突变体表现出多种表型的梯度变化,但在分生孢子耐热性方面差异不大。Ras1(D126A)的表达导致菌丝生长旺盛,分生孢子形成严重缺陷,并增加了对氧化、细胞壁干扰、杀真菌剂和 UV-A/UV-B 辐射的耐受性,但对萌发、渗透压敏感性和毒力影响较小。这些表型通过在野生型或 ΔRas2 中表达的 mRas1(G19V)拮抗改变,mRas1(G19V)在野生型和 ΔRas2 中表达时,分生孢子萌发和菌丝生长严重缺陷,并在配对突变体中表达 Ras1(G19V)或 Ras1(D126A)时表现出中间变化其他表型。它们的生长、UV 耐受性或毒力与细胞对氧化或细胞壁干扰的反应显著相关。涉及分生孢子形成和多胁迫反应的 35 个下游效应基因的转录变化也与突变体之间的大多数表型变化有关。我们的研究结果强调,Ras1 和 Ras2 以不同的方式或拮抗方式调节白僵菌的萌发、生长、分生孢子形成、多胁迫耐受性和毒力,从而对真菌的生物防治潜力产生深远影响。

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