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The Use of PTI-Marker Genes to Identify Novel Compounds that Establish Induced Resistance in Rice

机译:利用PTI标记基因鉴定在水稻中建立诱导抗性的新化合物

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摘要

Compounds that establish induced resistance (IR) in plants are promising alternatives for the pesticides that are progressively being banned worldwide. Screening platforms to identify IR-establishing compounds have been developed, but none were specifically designed for monocot plants. Here, we propose the use of an RT-qPCR screening platform, based on conserved immunity marker genes of rice as proxy for IR induction. Central regulators of biotic stress responses of rice were identified with a weighted gene co-expression network analysis (WGCNA), using more than 350 microarray datasets of rice under various sorts of biotic stress. Candidate genes were narrowed down to six immunity marker genes, based on consistent association with pattern-triggered immunity (PTI), both in rice plants as in rice cell suspension cultures (RCSCs). By monitoring the expression of these genes in RCSCs upon treatment with candidate IR-inducing compounds, we showed that our marker genes can predict IR induction in rice. Diproline, a novel IR-establishing compound for monocots that was detected with these marker genes, was shown to induce rice resistance against root-knot nematodes, without fitness costs. Gene expression profiling of the here-described PTI-marker genes can be executed on fully-grown plants or in RCSCs, providing a novel and versatile tool to predict IR induction.
机译:在植物中建立诱导抗性(IR)的化合物是农药的有希望的替代品,该农药已在全球范围内逐步被禁止。已经开发了用于鉴定建立IR的化合物的筛选平台,但是没有一个平台是专门为单子叶植物设计的。在这里,我们建议使用基于水稻保守免疫标记基因的RT-qPCR筛选平台作为IR诱导的代理。利用加权基因共表达网络分析(WGCNA),利用350多种水稻在各种生物胁迫下的微阵列数据集,确定了水稻生物胁迫响应的中央调控因子。基于与模式触发免疫(PTI)的一致关联,候选基因被缩小为六个免疫标记基因,无论是在水稻植物中还是在水稻细胞悬浮培养物(RCSC)中。通过监测候选RC诱导化合物处理后RCSC中这些基因的表达,我们表明我们的标记基因可以预测水稻中的IR诱导。 Diproline是一种用这些标记基因检测到的用于单子叶植物的新型IR建立化合物,已显示出它可以诱导水稻对根结线虫的抗性,而无需花费任何健身费用。可以在完全生长的植物上或在RCSC中执行此处描述的PTI标记基因的基因表达谱分析,为预测IR诱导提供了一种新颖而通用的工具。

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