首页> 美国卫生研究院文献>The Plant Cell >N-Acyl-Homoserine Lactone Primes Plants for Cell WallReinforcement and Induces Resistance to Bacterial Pathogens via the SalicylicAcid/Oxylipin Pathway
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N-Acyl-Homoserine Lactone Primes Plants for Cell WallReinforcement and Induces Resistance to Bacterial Pathogens via the SalicylicAcid/Oxylipin Pathway

机译:N-酰基-高丝氨酸内酯引发细胞壁植物通过水杨酸增强并诱导对细菌病原体的抗性酸/羟脯氨酸途径

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摘要

The ability of plants to monitor their surroundings, for instance the perception of bacteria, is of crucial importance. The perception of microorganism-derived molecules and their effector proteins is the best understood of these monitoring processes. In addition, plants perceive bacterial quorum sensing (QS) molecules used for cell-to-cell communication between bacteria. Here, we propose a mechanism for how N-acyl-homoserine lactones (), a group of QS molecules, influence host defense and fortify resistance in Arabidopsis thaliana against bacterial pathogens. N-3-oxo-tetradecanoyl-l-homoserine lactone () primed plants for enhanced callose deposition, accumulation of phenolic compounds, and lignification of cell walls. Moreover, increased levels of oxylipins and salicylic acid favored closure of stomata in response to Pseudomonas syringae infection. The -induced resistance seems to differ from the systemic acquired and the induced systemic resistances, providing new insight into inter-kingdom communication. Consistent with the observation that short-chain , unlike , promote plant growth, treatments with C6-HSL, oxo-C10-HSL, or resulted in different transcriptional profiles in Arabidopsis. Understanding the priming induced by bacterial QS molecules augments our knowledge of plant reactions to bacteria and suggests strategies for using beneficial bacteria in plantprotection.
机译:植物监测周围环境的能力(例如细菌的感知)至关重要。在这些监测过程中,对微生物来源的分子及其效应蛋白的理解是最好的。此外,植物会感知细菌群体感应(QS)分子,这些分子用于细菌之间的细胞间通信。在这里,我们提出了一种机制,用于解决一组QS分子N-酰基高丝氨酸内酯()如何影响拟南芥对细菌病原体的宿主防御作用并增强其抗药性。 N-3-氧代十四烷酰基-1-高丝氨酸内酯()引发的植物增强了ose的沉积,酚类化合物的积累和细胞壁的木质化。此外,响应丁香假单胞菌感染,增加水平的脂蛋白和水杨酸有利于气孔的关闭。 -诱导的抵抗似乎不同于获得性的系统抵抗和诱导的系统抵抗,从而提供了对王国间交流的新见解。与观察到的短链与促进植物生长不同的是,C6-HSL,oxo-C10-HSL处理或在拟南芥中导致不同的转录谱,这与观察结果一致。了解细菌QS分子引发的启动作用可增强我们对植物对细菌反应的知识,并提出在植物中使用有益细菌的策略保护。

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