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比较转录组学研究鉴定了在 Ralstonia solanacearum 种复合体中,主要调控因子 PhcA 控制下的毒力因子的特定表达模式。

Comparative transcriptomic studies identify specific expression patterns of virulence factors under the control of the master regulator PhcA in the Ralstonia solanacearum species complex.

机构信息

LIPM, Université de Toulouse, INRA, CNRS, Castanet-Tolosan, France.

LIPM, Université de Toulouse, INRA, CNRS, Castanet-Tolosan, France.

出版信息

Microb Pathog. 2018 Mar;116:273-278. doi: 10.1016/j.micpath.2018.01.028. Epub 2018 Feb 20.

Abstract

The global regulator PhcA controls numerous traits associated to virulence and bacterial proliferation in strains of the plant pathogen Ralstonia solanacearum species complex. Here, we conducted a genome-wide RNA sequencing study of the GMI1000 wild-type strain and a derived phcA mutant grown in complete medium. The PhcA regulon we identified is the largest regulon described to date in the R. solanacearum species complex with 1581 regulated genes, representing about 30% of the bacterial genome. Among these genes, 166 transcription regulators were identified including known regulators controlling major cellular functions such as the Type 3 secretion system and 27 novel regulators that were not identified in previous transcriptomic studies. This study highlights that PhcA controls other functions beside pathogenicity stricto sensu which participate to the global cell homeostasis (metabolism, energy storage). We then compared the PhcA regulon identified in complete medium to the recently published PhcA regulon obtained in planta. This comparison of the set of GMI1000 genes subjected to PhcA regulation in both conditions revealed 383 common genes. Among them, 326 (85%) had a similar PhcA dependent regulation pattern in complete medium and in planta, and 57 (15%) displayed an opposite regulation pattern. A large majority of the genes repressed by PhcA in complete medium but activated in planta belong to the HrpG-HrpB regulon, which represents a set of key genes required for R. solanacearum pathogenesis. This latter class of genes appears to be specifically induced by PhcA in the plant environment whereas PhcA represses their expression in complete medium. The large set of direct and indirect targets identified in this study will contribute to enrich our knowledge of the intricate regulatory network coordinating the expression of virulence and metabolic functions in the model plant pathogen R. solanacearum.

摘要

全球调控因子 PhcA 控制着植物病原体丁香假单胞菌复合种菌株中与毒力和细菌增殖相关的许多特征。在这里,我们对 GMI1000 野生型菌株和衍生的 phcA 突变体在完全培养基中生长进行了全基因组 RNA 测序研究。我们鉴定的 PhcA 调控组是迄今为止在丁香假单胞菌复合种中描述的最大调控组,有 1581 个受调控基因,约占细菌基因组的 30%。在这些基因中,鉴定出 166 个转录调控因子,包括控制主要细胞功能的已知调控因子,如 III 型分泌系统,以及 27 个在以前的转录组研究中未鉴定出的新调控因子。这项研究强调,PhcA 除了严格意义上的致病性之外,还控制着参与全球细胞内稳态(代谢、能量储存)的其他功能。然后,我们比较了在完全培养基中鉴定的 PhcA 调控组与最近在植物中发表的 PhcA 调控组。在这两种条件下,对 GMI1000 基因受 PhcA 调控的集合进行比较,发现有 383 个共同的基因。其中,在完全培养基和植物中,326 个(85%)基因的 PhcA 依赖性调控模式相似,而 57 个(15%)基因的调控模式相反。在完全培养基中被 PhcA 抑制但在植物中被激活的基因绝大多数属于 HrpG-HrpB 调控组,该调控组是丁香假单胞菌致病所必需的一组关键基因。后一类基因似乎是 PhcA 在植物环境中特异性诱导的,而 PhcA 在完全培养基中抑制它们的表达。本研究中鉴定的大量直接和间接靶标将有助于丰富我们对调控网络的认识,该调控网络协调了模式植物病原体丁香假单胞菌复合种中毒力和代谢功能的表达。

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