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植物信号预测丁香假单胞菌 pv 型 III 分泌系统的诱导,促进有效的温度依赖效应子易位。

Plant Signals Anticipate the Induction of the Type III Secretion System in Pseudomonas syringae pv. , Facilitating Efficient Temperature-Dependent Effector Translocation.

机构信息

Department of Biotechnology, University of Veronagrid.5611.3, Verona, Italy.

Department of Biology, LAQV-REQUIMTE, Faculty of Sciences, University of Portogrid.5808.5, Porto, Portugal.

出版信息

Microbiol Spectr. 2022 Dec 21;10(6):e0207322. doi: 10.1128/spectrum.02073-22. Epub 2022 Oct 26.

Abstract

Disease resistance in plants depends on a molecular dialogue with microbes that involves many known chemical effectors, but the time course of the interaction and the influence of the environment are largely unknown. The outcome of host-pathogen interactions is thought to reflect the offensive and defensive capabilities of both players. When plants interact with Pseudomonas syringae, several well-characterized virulence factors contribute to early bacterial pathogenicity, including the type III secretion system (T3SS), which must be activated by signals from the plant and environment to allow the secretion of virulence effectors. The manner in which these signals regulate T3SS activity is still unclear. Here, we strengthen the paradigm of the plant-pathogen molecular dialogue by addressing overlooked details concerning the timing of interactions, specifically the role of plant signals and temperature on the regulation of bacterial virulence during the first few hours of the interaction. Whole-genome expression profiling after 1 h revealed that the perception of plant signals from kiwifruit or tomato extracts anticipated T3SS expression in P. syringae pv. compared to apoplast-like conditions, facilitating more efficient effector transport , as revealed by the induction of a temperature-dependent hypersensitive response in the nonhost plant Arabidopsis thaliana Columbia-0 (Col-0). Our results show that in the arms race between plants and bacteria, the temperature-dependent timing of bacterial virulence versus the induction of plant defenses is probably one of the fundamental parameters governing the outcome of the interaction. Plant diseases-their occurrence and severity-result from the impact of three factors: the host, the pathogen, and the environmental conditions, interconnected in the disease triangle. Time was further included as a fourth factor accounting for plant disease, leading to a more realistic three-dimensional disease pyramid to represent the evolution of disease over time. However, this representation still considers time only as a parameter determining when and to what extent a disease will occur, at a scale from days to months. Here, we show that time is a factor regulating the arms race between plants and pathogens, at a scale from minutes to hours, and strictly depends on environmental factors. Thus, besides the arms possessed by pathogens and plants , the opportunity and the timing of arms mobilization make the difference in determining the outcome of an interaction and thus the occurrence of plant disease.

摘要

植物的抗病性取决于与微生物的分子对话,其中涉及许多已知的化学效应物,但这种相互作用的时间进程和环境的影响在很大程度上是未知的。宿主-病原体相互作用的结果被认为反映了双方的进攻和防御能力。当植物与丁香假单胞菌相互作用时,几种特征明确的毒力因子有助于早期细菌的致病性,包括 III 型分泌系统(T3SS),该系统必须被植物和环境的信号激活,以允许毒力效应物的分泌。这些信号调节 T3SS 活性的方式仍不清楚。在这里,我们通过解决关于相互作用时间的被忽视的细节,特别是植物信号和温度在相互作用的最初几个小时内对细菌毒力调节的作用,加强了植物-病原体分子对话的范例。在与质外体条件相比时,1 小时后全基因组表达谱分析显示,从猕猴桃或番茄提取物中感知植物信号会使丁香假单胞菌 pv。在 kiwifruit 或 tomato 提取物存在的情况下,与质外体条件相比,更早地表达 T3SS,从而促进了效应物的更有效运输,这是通过非宿主植物拟南芥哥伦比亚-0(Col-0)中诱导温度依赖性过敏反应来揭示的。我们的结果表明,在植物和细菌之间的军备竞赛中,细菌毒力的温度依赖性时间与植物防御的诱导之间的关系可能是决定相互作用结果的基本参数之一。植物病害——其发生和严重程度——是由三个因素的影响造成的:宿主、病原体和环境条件,它们在病害三角体中相互关联。时间进一步被纳入第四个因素,用于解释植物病害,从而产生更现实的三维病害金字塔,以代表随着时间的推移疾病的演变。然而,这种表示仍然只将时间视为确定疾病何时以及在何种程度上发生的参数,其时间尺度从几天到几个月不等。在这里,我们表明,时间是调节植物与病原体之间军备竞赛的一个因素,其时间尺度从几分钟到几个小时不等,并且严格依赖于环境因素。因此,除了病原体和植物所拥有的武器外,武器调动的机会和时机也会对确定相互作用的结果以及植物病害的发生产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a65/9770001/fe16776521b3/spectrum.02073-22-f001.jpg

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