首页> 外文期刊>Molecular Plant-Microbe Interactions >The Mitogen-Activated Protein Kinase BcSak1 of Botrytis cinerea Is Required for Pathogenic Development and Has Broad Regulatory Functions Beyond Stress Response
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The Mitogen-Activated Protein Kinase BcSak1 of Botrytis cinerea Is Required for Pathogenic Development and Has Broad Regulatory Functions Beyond Stress Response

机译:灰葡萄孢的丝裂原活化蛋白激酶BcSak1是致病性发育所必需的,并且除了应激反应外还具有广泛的调控功能

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摘要

The mitogen-activated protein kinase (MAPK) BcSak1 of Botrytis cinerea is activated upon exposure to H2O2 and, hence, might be involved in coping with oxidative stress during infection. However, beside osmotic and oxidative stress sensitivity, delta bcsak1 mutants have a pleiotropic phenotype, as they do not produce conidia and are unable to penetrate unwounded host tissue. In this study, the role of BcSak1 was investigated in the stress response and during infection of French beans by Botrytis cinerea. Using a macroarray approach, it was shown that BcSak1 is only marginally involved in the specific oxidative stress response. In fact, the induction of several genes after oxidative stress treatment is BcSak1-dependent, but most of these genes are also induced under conditions of osmotic stress. The majority of genes regulated by BcSak1 are not involved in the stress response at all. Using a translational fusion of BcSak1 to green fluorescent protein, it was shown clearly that the localization of this MAPK depends on the type of stress being applied; it associates rapidly to the nucleus only under osmotic stress. Therefore, a model is proposed in which BcSak1 acts in the cytosol by activation of one or more transcription factors under oxidative stress and, at the same time, it reacts to osmotic stress by migrating to the nucleus. Interestingly, the MAPK is also involved in the regulation of secondary metabolism, as the major phytotoxins secreted by this fungus are reduced in the delta bcsak1 deletion mutant. Experiments done in planta underlined the essential role of BcSak1 in the early stages of infection, when it translocates to the nucleus and then changes to cytosolic distribution during hyphal growth within the tissue.
机译:灰葡萄孢的丝裂原活化蛋白激酶(MAPK)BcSak1在暴露于H2O2后被激活,因此可能在感染过程中参与应对氧化应激。但是,除了渗透压和氧化应激敏感性外,δbcsak1突变体还具有多效性表型,因为它们不产生分生孢子并且不能穿透未受伤的宿主组织。在这项研究中,研究了BcSak1在灰葡萄孢菌对法国豆的应激反应和感染过程中的作用。使用宏阵列方法显示,BcSak1仅在特定的氧化应激反应中有少量参与。实际上,氧化应激处理后几个基因的诱导是BcSak1依赖性的,但是大多数这些基因也是在渗透胁迫条件下诱导的。由BcSak1调控的大多数基因根本不参与应激反应。使用BcSak1与绿色荧光蛋白的翻译融合,可以清楚地表明,该MAPK的定位取决于所施加的压力类型。它仅在渗透胁迫下迅速与细胞核结合。因此,提出了一种模型,其中BcSak1通过在氧化应激下激活一个或多个转录因子在细胞质中起作用,同时,它通过迁移到细胞核而对渗透压作出反应。有趣的是,MAPK也参与了次级代谢的调节,因为这种真菌分泌的主要植物毒素在bcsak1缺失突变体中减少了。在植物中进行的实验强调了BcSak1在感染的早期阶段的重要作用,即BcSak1易位至细胞核,然后在组织内的菌丝生长过程中改变为胞质分布。

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