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Shoot the Message Not the Messenger—Combating Pathogenic Virulence in Plants by Inhibiting Quorum Sensing Mediated Signaling Molecules

机译:拍摄信息而不是信使—通过抑制群体感应介导的信号分子来消除植物中的致病性毒力

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摘要

Immunity, virulence, biofilm formation, and survival in the host environment are regulated by the versatile nature of density dependent microbial cell signaling, also called quorum sensing (QS). The QS molecules can associate with host plant tissues and, at times, cause a change in its gene expression at the downstream level through inter-kingdom cross talking. Progress in controlling QS through fungicide/bactericide in pathogenic microscopic organisms has lead to a rise of antibiotic resistance pathogens. Here, we review the application of selective quorum quenching (QQ) endophytes to control phytopathogens that are shared by most, if not all, terrestrial plant species as well as aquatic plants. Allowing the plants to posses endophytic colonies through biotization will be an additional and a sustainable encompassing methodology resulting in attenuated virulence rather than killing the pathogens. Furthermore, the introduced endophytes could serve as a potential biofertilizer and bioprotection agent, which in turn increases the PAMP- triggered immunity and hormonal systemic acquired resistance (SAR) in plants through SA-JA-ET signaling systems. This paper discusses major challenges imposed by QS and QQ application in biotechnology.
机译:宿主环境中的免疫力,毒力,生物膜形成和存活受密度依赖性微生物细胞信号传导(也称为群体感应(QS))的通用性所调节。 QS分子可以与宿主植物组织结合,有时会通过跨界串扰在下游水平引起其基因表达的变化。在病原体微生物中通过杀菌剂/杀菌剂控制QS的进展已导致抗生素抗性病原体的增加。在这里,我们回顾了选择性群体猝灭(QQ)内​​生菌在控制大多数(如果不是全部)陆生植物物种和水生植物共有的植物病原体中的应用。通过生化作用使植物具有内生菌落将是一种额外且可持续的包容性方法,可导致毒力减弱而不是杀死病原体。此外,引入的内生菌可以作为潜在的生物肥料和生物保护剂,进而通过SA-JA-ET信号系统增加植物中PAMP触发的免疫力和激素系统获得性抗性(SAR)。本文讨论了QS和QQ在生物技术中的应用所带来的主要挑战。

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