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首页> 外文期刊>Annual Review of Phytopathology >Control of virulence and pathogenicity genes of Ralstonia solanacearum by an elaborate sensory network [Review]
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Control of virulence and pathogenicity genes of Ralstonia solanacearum by an elaborate sensory network [Review]

机译:精细感官网络控制青枯雷尔氏菌的致病力和致病性基因[综述]

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摘要

Ralstonia solanacearum causes a lethal bacterial wilt disease of diverse plants. It invades the xylem vessels of roots and disseminates into the stem where it multiplies and wilts by excessive exopolysaccharide production. Many of its key extracytoplasmic virulence and pathogenicity factors are transcriptionally controlled by an extensive network of distinct, interacting signal transduction pathways. The core of this sensory network is the five-gene Phc system that regulates exopolysaccharide, cell-wall-degrading exoenzymes, and other factors in response to a self-produced signal molecule that monitors the pathogen's growth status and environment. Four additional environmentally responsive two-component systems work independently and with the Phc system to fine-tune virulence gene expression. Another critical system is Prh which transduces plant cell-derived signals through a six-gene cascade to activate deployment of the Type III secretion pathway encoded by the hrp pathogenicity genes. Here I summarize knowledge about the regulated targets, signal transduction mechanisms, and crosstalk between Phc, Prh, and other systems. I also provide insight into why R. solanacearum has evolved such a sophisticated sensory apparatus, and how it functions in disease. [References: 138]
机译:青枯雷尔氏菌引起多种植物的致命细菌性枯萎病。它侵入根的木质部血管,并散布到茎中,并因过量的胞外多糖产生而繁殖和枯萎。它的许多关键胞质外毒力和致病性因子受不同的,相互作用的信号转导途径的广泛网络转录控制。该感官网络的核心是五基因Phc系统,该系统调节外泌多糖,降解细胞壁的外酶和其他因素,以响应监控病原体生长状况和环境的自产信号分子。四个附加的对环境敏感的两组分系统可独立运行,并可与Phc系统协同工作,以微调毒性基因的表达。另一个关键系统是Prh,它通过六基因级联转导植物细胞的信号,以激活由hrp致病性基因编码的III型分泌途径的展开。在这里,我总结了有关受调控目标,信号转导机制以及Phc,Prh和其他系统之间的串扰的知识。我还提供了有关茄青枯菌为何进化出如此先进的感觉装置及其在疾病中如何发挥作用的见解。 [参考:138]

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