State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, College of Life Science and Technology, Guangxi University, Nanning 530004, China.
Plant Protection Research Institute, Guangxi Academy of Agricultural Science/Key Laboratory of Green Prevention and Control on Fruits and Vegetables in South China Ministry of Agriculture and Rural Affairs/Guangxi Key Laboratory of Biology for Crop Diseases and Insect Pests, Nanning 530007, China.
Int J Mol Sci. 2024 May 28;25(11):5887. doi: 10.3390/ijms25115887.
pv. () is a notorious plant pathogen. Like most bacterial pathogens, has evolved a complex regulatory network to modulate the expression of various genes related to pathogenicity. Here, we have identified TfmR, a transcriptional regulator belonging to the TetR family, as a key player in the virulence mechanisms of this phytopathogenic bacterium. We have demonstrated genetically that is involved in the hypersensitive response (HR), pathogenicity, motility and extracellular polysaccharide production of this phytopathogenic bacterium. Our investigations extended to exploring TfmR's interaction with RpfG and HrpX, two prominent virulence regulators in species. We found that TfmR directly binds to the promoter region of RpfG, thereby positively regulating its expression. Notably, constitutive expression of RpfG partly reinstates the pathogenicity compromised by TfmR-deletion mutants. Furthermore, our studies revealed that TfmR also exerts direct positive regulation on the expression of the T3SS regulator HrpX. Similar to RpfG, sustained expression of HrpX partially restores the pathogenicity of TfmR-deletion mutants. These findings underscore TfmR's multifaceted role as a central regulator governing key virulence pathways in . Importantly, our research sheds light on the intricate molecular mechanisms underlying the regulation of pathogenicity in this plant pathogen.
pv. () 是一种臭名昭著的植物病原体。与大多数细菌病原体一样,它已经进化出了一个复杂的调控网络来调节与致病性相关的各种基因的表达。在这里,我们已经确定了 TfmR,一种属于 TetR 家族的转录调节剂,是这种植物病原体毒力机制中的关键因素。我们已经从遗传学上证明,它参与了这种植物病原体的过敏反应 (HR)、致病性、运动性和胞外多糖产生。我们的研究还扩展到了探索 TfmR 与 RpfG 和 HrpX 的相互作用,RpfG 和 HrpX 是 物种中两个重要的毒力调节剂。我们发现 TfmR 直接结合到 RpfG 的启动子区域,从而正向调节其表达。值得注意的是,RpfG 的组成型表达部分恢复了 TfmR 缺失突变体的致病性受损。此外,我们的研究表明,TfmR 还对 T3SS 调节剂 HrpX 的表达进行直接正向调节。与 RpfG 相似,HrpX 的持续表达部分恢复了 TfmR 缺失突变体的致病性。这些发现强调了 TfmR 作为中央调控因子在 中调节关键毒力途径的多方面作用。重要的是,我们的研究揭示了这种植物病原体中致病性调节的复杂分子机制。