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首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Deciphering the modes of action of Golubevia sp., an antagonist against the causal agent of powdery mildew in wheat, using an mRNA-based systems approach
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Deciphering the modes of action of Golubevia sp., an antagonist against the causal agent of powdery mildew in wheat, using an mRNA-based systems approach

机译:使用MRNA的系统方法来解读Golubevia SP的作用方式。,对小麦粉末状霉菌原因的拮抗剂

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摘要

Biocontrol agents are living organisms with the potential to suppress populations of plant pathogens or pests in a cropping system. The complex interplay between the different players and the changing environment, results in a combination of different modes of action. Here, we applied an mRNA-based systems approach to gain insight into the antagonist-pathogen-host interaction of Golubevia sp. isolates BC0812 and BC0850 with the causal agent of wheat powdery mildew, Blumeria graminis f. sp. tritici, in planta over time. Bioassays were performed on potted wheat plants (water-treated control, antagonist, pathogen, antagonist+pathogen) under controlled conditions. A significantly higher percentage of mildew conidia were parasitized after treatment with Golubevia sp. BC0812 with 26% and BC0850 with 16% compared to the water control with 1%. Differential gene expression analysis of antagonists, pathogen and host 5, 6, 7, and 11 days after inoculation (dai) with the antagonist pointed to a combination of different modes of action: An interplay of modulating plant defense responses, impairing conidiogenesis of the pathogen by scavenging H2O2, facultative hyperparasitism and nitrogen competition. Microscopic observations supported the suggested hyperparasitism as thin mycelium could be observed on Bgt conidia at 6 dai and later.
机译:生防剂是一种有可能抑制作物系统中植物病原体或害虫数量的活生物体。不同参与者和不断变化的环境之间复杂的相互作用,导致了不同行动模式的组合。在这里,我们应用基于mRNA的系统方法来深入了解Golubevia sp.分离物BC0812和BC0850与小麦白粉病病原体Blumeria graminis f.sp.tritici在植物中随时间的相互作用。在受控条件下对盆栽小麦植株(水处理对照、拮抗剂、病原体、拮抗剂+病原体)进行了生物测定。与1%的水对照相比,用26%的Golubevia sp.BC0812和16%的BC0850处理后,霉菌分生孢子的寄生率显著提高。在接种拮抗剂(dai)后第5、6、7和11天,对拮抗剂、病原菌和寄主的差异基因表达分析表明了不同作用模式的组合:调节植物防御反应的相互作用,通过清除H2O2、兼性超寄生和氮竞争损害病原菌的分生孢子发生。显微镜下的观察结果支持了这种超寄生现象,因为在6日龄及以后,可以在Bgt分生孢子上观察到薄菌丝。

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