Corteva Agriscience, Johnston, Iowa, USA.
Department of Biological Sciences, Louisiana State University, Baton Rouge, Louisiana, USA.
J Bacteriol. 2024 Oct 24;206(10):e0030224. doi: 10.1128/jb.00302-24. Epub 2024 Sep 17.
Bacterial plant pathogens adjust their gene expression programs in response to environmental signals and host-derived compounds. This ensures that virulence genes or genes encoding proteins, which promote bacterial fitness in a host environment, are expressed only when needed. Such regulation is in the purview of transcription factors, many of which belong to the ubiquitous multiple antibiotic resistance regulator (MarR) protein family. PecS proteins constitute a subset of this large protein family. PecS has likely been distributed by horizontal gene transfer, along with the divergently encoded efflux pump PecM, suggesting its integration into existing gene regulatory networks. Here, we discuss the roles of PecS in the regulation of genes associated with virulence and fitness of bacterial plant pathogens. A comparison of phenotypes and differential gene expression associated with the disruption of shows that functional consequences of PecS integration into existing transcriptional networks are highly variable, resulting in distinct PecS regulons. Although PecS universally binds to the intergenic region to repress the expression of both genes, binding modes differ. A particularly relaxed sequence preference appears to apply for PecS, perhaps to optimize its integration as a global regulator and regulate genes ancestral to the acquisition of . Even inducing ligands for PecS are not universally conserved. It appears that PecS function has been optimized to match the unique regulatory needs of individual bacterial species and that its roles must be appreciated in the context of the regulatory networks into which it was recruited.
细菌植物病原体通过响应环境信号和宿主衍生化合物来调整其基因表达程序。这确保了仅在需要时才表达毒力基因或编码在宿主环境中促进细菌适应性的蛋白质的基因。这种调节属于转录因子的范畴,其中许多转录因子属于普遍存在的多种抗生素抗性调节剂 (MarR) 蛋白家族。PecS 蛋白构成了这个庞大蛋白家族的一个子集。PecS 可能与编码方向相反的外排泵 PecM 一起通过水平基因转移传播,表明其整合到现有的基因调控网络中。在这里,我们讨论了 PecS 在调节与细菌植物病原体的毒力和适应性相关的基因方面的作用。比较与 中断相关的表型和差异基因表达表明,PecS 整合到现有转录网络中的功能后果高度可变,导致不同的 PecS 调控子。尽管 PecS 普遍结合到 基因间区以抑制两个基因的表达,但结合模式不同。对于 PecS,似乎适用一种特别宽松的序列偏好,这可能优化了其作为全局调节剂的整合,并调节了获得 之前的基因。甚至 PecS 的诱导配体也不是普遍保守的。似乎 PecS 的功能已被优化以匹配单个细菌物种的独特调节需求,并且必须在其被招募的调节网络的背景下理解其作用。