Jiang Xuejiao, Zghidi-Abouzid Ouafa, Oger-Desfeux Christine, Hommais Florence, Greliche Nicolas, Muskhelishvili Georgi, Nasser William, Reverchon Sylvie
Univ Lyon, Université Lyon 1, INSA-Lyon, CNRS, UMR5240, Microbiologie, Adaptation, Pathogénie, Département Biologie, F-69622, Villeurbanne, France.
Univ Lyon, Université Lyon 1, Pôle Rhône-Alpes de Bioinformatique, Département Biologie, F-69622, Villeurbanne, France.
Environ Microbiol. 2016 Nov;18(11):3651-3672. doi: 10.1111/1462-2920.13267. Epub 2016 Apr 28.
Dickeya species are soft rot disease-causing bacterial plant pathogens and an emerging agricultural threat in Europe. Environmental modulation of gene expression is critical for Dickeya dadantii pathogenesis. While the bacterium uses various environmental cues to distinguish between its habitats, an intricate transcriptional control system coordinating the expression of virulence genes ensures efficient infection. Understanding of this behaviour requires a detailed knowledge of expression patterns under a wide range of environmental conditions, which is currently lacking. To obtain a comprehensive picture of this adaptive response, we devised a strategy to examine the D. dadantii transcriptome in a series of 32 infection-relevant conditions encountered in the hosts. We propose a temporal map of the bacterial response to various stress conditions and show that D. dadantii elicits complex genetic behaviour combining common stress-response genes with distinct sets of genes specifically induced under each particular stress. Comparison of our dataset with an in planta expression profile reveals the combined impact of stress factors and enables us to predict the major stress confronting D. dadantii at a particular stage of infection. We provide a comprehensive catalog of D. dadantii genomic responses to environmentally relevant stimuli, thus facilitating future studies of this important plant pathogen.
迪基氏菌属是引起植物软腐病的细菌性植物病原体,在欧洲对农业构成了新的威胁。基因表达的环境调控对达旦迪基氏菌的致病机制至关重要。虽然该细菌利用各种环境线索来区分其栖息地,但一个协调毒力基因表达的复杂转录控制系统确保了有效的感染。要了解这种行为,需要详细了解在广泛环境条件下的表达模式,而目前这方面还很欠缺。为了全面了解这种适应性反应,我们设计了一种策略,在宿主中遇到的一系列32种与感染相关的条件下检测达旦迪基氏菌的转录组。我们提出了细菌对各种应激条件反应的时间图谱,并表明达旦迪基氏菌引发了复杂的遗传行为,将常见的应激反应基因与在每种特定应激下特异性诱导的不同基因组合在一起。将我们的数据集与植物体内表达谱进行比较,揭示了应激因素的综合影响,并使我们能够预测达旦迪基氏菌在感染特定阶段面临的主要应激。我们提供了达旦迪基氏菌对环境相关刺激的基因组反应的全面目录,从而促进对这种重要植物病原体的未来研究。