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拉尔夫酮类物质参与雷尔氏菌属菌株 OE1-1 的群体感应信号通路和毒力。

Involvement of ralfuranones in the quorum sensing signalling pathway and virulence of Ralstonia solanacearum strain OE1-1.

机构信息

Laboratory of Plant Pathology and Biotechnology, Kochi University, Nankoku, Kochi, 783-8502, Japan.

Graduate School of Life and Environmental Sciences, Osaka Prefecture University, Sakai, Osaka, 599-8531, Japan.

出版信息

Mol Plant Pathol. 2018 Feb;19(2):454-463. doi: 10.1111/mpp.12537. Epub 2017 Mar 9.

Abstract

The soil-borne, plant-pathogenic Ralstonia solanacearum strain OE1-1 produces and secretes methyl 3-hydroxymyristate (3-OH MAME) as a quorum sensing (QS) signal, which contributes to its virulence. A global virulence regulator, PhcA, functioning through the QS system, positively regulates the expression of ralA, which encodes furanone synthase, to produce aryl-furanone secondary metabolites, ralfuranones. A ralfuranone-deficient mutant (ΔralA) is weakly virulent when directly inoculated into tomato xylem vessels. To investigate the functions of ralfuranones, we analysed R. solanacearum transcriptome data generated by RNA sequencing technology. ΔralA expressed phcB, which is associated with 3-OH MAME production, and phcA at levels similar to those in strain OE1-1. In addition, ΔralA exhibited down-regulated expression of more than 90% of the QS positively regulated genes, and up-regulated expression of more than 75% of the QS negatively regulated genes. These results suggest that ralfuranones affect the QS feedback loop. Ralfuranone supplementation restored the ability of ΔralA cells to aggregate. In addition, ralfuranones A and B restored the swimming motility of ΔralA to wild-type levels. However, the application of exogenous ralfuranones did not affect the production of the major exopolysaccharide, EPS I, in ΔralA. Quantitative real-time polymerase chain reaction assays revealed that the deletion of ralA results in the down-regulated expression of vsrAD and vsrBC, which encode a sensor kinase and a response regulator, respectively, in the two-component regulatory systems that influence EPS I production. The application of ralfuranone B restored the expression of these two genes. Overall, our findings indicate that integrated signalling via ralfuranones influences the QS and virulence of R. solanacearum.

摘要

土壤传播的植物病原 Ralstonia solanacearum OE1-1 菌株产生并分泌甲基 3-羟肉豆蔻酸(3-OH MAME)作为群体感应(QS)信号,这有助于其毒力。一个全局毒力调节剂 PhcA 通过 QS 系统正向调节 ralA 的表达,ralA 编码呋喃酮合酶,产生芳基呋喃酮次生代谢物 ralfuranones。当直接接种到番茄木质部时,ralfuranone 缺陷突变体(ΔralA)的毒力较弱。为了研究 ralfuranones 的功能,我们分析了 RNA 测序技术生成的 R. solanacearum 转录组数据。ΔralA 表达了与 3-OH MAME 产生相关的 phcB 和 phcA,其水平与 OE1-1 菌株相似。此外,ΔralA 表现出超过 90%的 QS 正向调节基因下调表达,超过 75%的 QS 负向调节基因上调表达。这些结果表明 ralfuranones 影响 QS 反馈回路。ralfuranone 的补充恢复了ΔralA 细胞聚集的能力。此外,ralfuranones A 和 B 将ΔralA 的泳动运动恢复到野生型水平。然而,外源性 ralfuranones 的应用并不影响ΔralA 中主要胞外多糖 EPS I 的产生。实时定量聚合酶链反应检测显示,ralA 的缺失导致影响 EPS I 产生的两个组分调节系统中传感器激酶和响应调节子的编码基因 vsrAD 和 vsrBC 的下调表达。ralfuranone B 的应用恢复了这两个基因的表达。总的来说,我们的研究结果表明,ralfuranones 的整合信号通过影响 R. solanacearum 的 QS 和毒力。

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