Environmental alkalization suppresses deployment of virulence strategies in Pseudomonas syringae pv. tomato DC3000.

IF 2.7 3区 生物学 Q3 MICROBIOLOGY
Journal of Bacteriology Pub Date : 2024-11-21 Epub Date: 2024-10-24 DOI:10.1128/jb.00086-24
Zichu Yang, Haibi Wang, Robert Keebler, Amelia Lovelace, Hsiao-Chun Chen, Brian Kvitko, Bryan Swingle
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引用次数: 0

Abstract

Plant pathogenic bacteria encounter a drastic increase in apoplastic pH during the early stages of plant immunity. The effects of alkalization on pathogen-host interactions have not been comprehensively characterized. Here, we used a global transcriptomic approach to assess the impact of environmental alkalization on Pseudomonas syringae pv. tomato DC3000 in vitro. In addition to the Type 3 Secretion System, we found expression of genes encoding other virulence factors such as iron uptake and coronatine biosynthesis to be strongly affected by environmental alkalization. We also found that the activity of AlgU, an important regulator of virulence gene expression, was induced at pH 5.5 and suppressed at pH 7.8, which are pH levels that this pathogen would likely experience before and during pattern-triggered immunity, respectively. This pH-dependent control requires the presence of periplasmic proteases, AlgW and MucP, that function as part of the environmental sensing system that activates AlgU in specific conditions. This is the first example of pH-dependency of AlgU activity, suggesting a regulatory pathway model where pH affects the proteolysis-dependent activation of AlgU. These results contribute to deeper understanding of the role apoplastic pH has on host-pathogen interactions.IMPORTANCEPlant pathogenic bacteria, like Pseudomonas syringae, encounter many environmental changes including oxidative stress and alkalization during plant immunity, but the ecological effects of the individual responses are not well understood. In this study, we found that transcription of many previously characterized virulence factors in P. syringae pv. tomato DC3000 is downregulated by the level of environmental alkalization these bacteria encounter during the early stages of plant immune activation. We also report for the first time the sigma factor AlgU is post-translationally activated by low environmental pH through its natural activation pathway, which partially accounts for the expression Type 3 Secretion System virulence genes at acidic pH. The results of this study demonstrate the importance of extracellular pH on global regulation of virulence-related gene transcription in plant pathogenic bacteria.

环境碱化抑制西红柿假单胞菌病菌 DC3000 的毒力策略部署。
植物病原菌在植物免疫的早期阶段会遇到凋亡体 pH 值急剧升高的情况。碱化对病原菌-宿主相互作用的影响尚未得到全面描述。在这里,我们使用了一种全局转录组学方法来评估环境碱化对番茄假单胞菌 DC3000 在体外的影响。除 3 型分泌系统外,我们还发现编码铁吸收和冠突霉素生物合成等其他毒力因子的基因的表达也受到环境碱化的强烈影响。我们还发现,毒力基因表达的一个重要调节因子 AlgU 的活性在 pH 值为 5.5 时被诱导,而在 pH 值为 7.8 时被抑制,这两个 pH 值分别是这种病原体在模式触发免疫之前和期间可能会经历的 pH 值。这种依赖于 pH 值的控制需要外质蛋白酶 AlgW 和 MucP 的存在,它们作为环境传感系统的一部分,在特定条件下激活 AlgU。这是 AlgU 活性依赖于 pH 值的第一个实例,它提出了一个 pH 值影响 AlgU 蛋白分解激活的调控途径模型。IMPORTANCEP植物病原菌(如丁香假单胞菌)在植物免疫过程中会遇到许多环境变化,包括氧化胁迫和碱化,但对这些个体反应的生态效应还不甚了解。在这项研究中,我们发现,在植物免疫激活的早期阶段,P. syringae pv. tomato DC3000 中许多以前表征过的毒力因子的转录会因这些细菌遇到的环境碱化水平而下调。我们还首次报道了σ因子 AlgU 通过其自然激活途径被低环境 pH 值激活,这部分解释了 3 型分泌系统毒力基因在酸性 pH 值下的表达。这项研究结果证明了细胞外 pH 值对植物病原菌毒力相关基因转录的全局调控的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Bacteriology
Journal of Bacteriology 生物-微生物学
CiteScore
6.10
自引率
9.40%
发文量
324
审稿时长
1.3 months
期刊介绍: The Journal of Bacteriology (JB) publishes research articles that probe fundamental processes in bacteria, archaea and their viruses, and the molecular mechanisms by which they interact with each other and with their hosts and their environments.
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