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首页> 外文期刊>Plant Pathology >Endophytic Beauveria bassiana activates expression of defence genes in grapevine and prevents infections by grapevine downy mildew Plasmopara viticola
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Endophytic Beauveria bassiana activates expression of defence genes in grapevine and prevents infections by grapevine downy mildew Plasmopara viticola

机译:EndophyticBeauveria bassiana激活葡萄树在葡萄中的外防基因的表达,并通过葡萄霜霉病霉菌疟原虫viticola的感染

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摘要

Fungal entomopathogens like Beauveria bassiana (Ascomycota: Hypocreales) are known as antagonists of insects with multiple functional and ecological roles, and have attracted increased attention as biocontrol agents in integrated pest management programmes. For some crop plants, it has been proven that endophytic B. bassiana, besides its entomopathogenic habit, can provide protection against plant pathogens or limit their damaging effects. However, for grapevine, limited knowledge is available on the influence of endophytic B. bassiana on fungal pathogens and about the mechanisms underlying putative protection effects. This study assessed the protective potential of endophytic B. bassiana against grapevine downy mildew Plasmopara viticola in greenhouse experiments. Three and seven days after a B. bassiana treatment, potted grapevine plants were inoculated with P. viticola and the evolving disease severity was assessed. Disease severity was significantly reduced in B. bassiana-treated plants compared to control plants, depending on the age of leaves. Furthermore, a microarray and an RT-qPCR analysis were performed to work out fundamental aspects of genes involved in the interaction between grapevine and B. bassiana. The results indicate an up-regulation of diverse defence-related genes in grapevine as a response to endophytic establishment of B. bassiana. Thus, endophytic establishment of an entomopathogenic fungus such as B. bassiana in grapevine plants would represent an alternative and sustainable plant protection strategy, with the potential for reducing pesticide applications in viticulture.
机译:嗜嗜血藻(Ascomycota:Descrocales)这样的真菌昆虫病原体被称为具有多种功能和生态作用的敌对的拮抗剂,并且在综合害虫管理计划中吸引了作为生物控制剂的增加。对于一些作物植物,已经证明,除了其昆虫致病习惯之外,生成的Bassiana可以为植物病原体提供保护或限制其损伤作用。然而,对于葡萄葡萄酒,有限的知识可用于内心B.Bassiana对真菌病原体的影响以及关于推定保护效应的机制。该研究评估了Endogytic B.Bassiana对葡萄霜霜霉病疟原虫疟原虫在温室实验中的保护潜力。 B.Bassiana治疗后的三到七天,用P.Viticola接种盆栽葡萄植物,评估了不断发展的疾病严重程度。与对照植物相比,B.Bassiana治疗植物的疾病严重程度显着降低,这取决于叶子的年龄。此外,进行了微阵列和RT-QPCR分析,以解决参与葡萄和B.Bassiana之间的相互作用的基因的基本基因的基本方面。结果表明,葡萄树中不同国防相关基因的上调作为对Basiana的内心建立的反应。因此,在葡萄植物中的昆虫致病真菌等内生成的昆虫致病真菌将代表替代和可持续的植物保护策略,其可能降低葡萄栽培农药应用的可能性。

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