Ferreiro María-Dolores, Gallegos María-Trinidad
Department of Soil Microbiology and Symbiotic Systems, Estación Experimental del Zaidín (EEZ-CSIC), Granada, Spain.
Environ Microbiol. 2021 Oct;23(10):5670-5689. doi: 10.1111/1462-2920.15558. Epub 2021 Jun 13.
Productive plant-bacteria interactions, either beneficial or pathogenic, require that bacteria successfully sense, integrate and respond to continuously changing environmental and plant stimuli. They use complex signal transduction systems that control a vast array of genes and functions. The Gac-Rsm global regulatory pathway plays a key role in controlling fundamental aspects of the apparently different lifestyles of plant beneficial and phytopathogenic Pseudomonas as it coordinates adaptation and survival while either promoting plant health (biocontrol strains) or causing disease (pathogenic strains). Plant-interacting Pseudomonas stand out for possessing multiple Rsm proteins and Rsm RNAs, but the physiological significance of this redundancy is not yet clear. Strikingly, the components of the Gac-Rsm pathway and the controlled genes/pathways are similar, but the outcome of its regulation may be opposite. Therefore, identifying the target mRNAs bound by the Rsm proteins and their mode of action (repression or activation) is essential to explain the resulting phenotype. Some technical considerations to approach the study of this system are also given. Overall, several important features of the Gac-Rsm cascade are now understood in molecular detail, particularly in Pseudomonas protegens CHA0, but further questions remain to be solved in other plant-interacting Pseudomonas.
植物与细菌之间富有成效的相互作用,无论是有益的还是致病的,都要求细菌能够成功感知、整合并响应不断变化的环境和植物刺激。它们利用复杂的信号转导系统来控制大量的基因和功能。Gac-Rsm全局调控途径在控制植物有益假单胞菌和植物致病假单胞菌明显不同生活方式的基本方面起着关键作用,因为它在促进植物健康(生防菌株)或引起疾病(致病菌株)的同时,协调适应和生存。与植物相互作用的假单胞菌因拥有多种Rsm蛋白和Rsm RNA而引人注目,但这种冗余的生理意义尚不清楚。引人注目的是,Gac-Rsm途径的组成部分以及受控基因/途径是相似的,但其调控结果可能相反。因此,确定Rsm蛋白结合的靶mRNA及其作用方式(抑制或激活)对于解释最终表型至关重要。还给出了一些研究该系统的技术考量。总体而言,现在已经从分子细节上了解了Gac-Rsm级联的几个重要特征,特别是在恶臭假单胞菌CHA0中,但在其他与植物相互作用的假单胞菌中仍有进一步的问题有待解决。