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Dickeya dadantii PecS 调控子在与拟南芥互作早期的转录组分析。

Transcriptome analysis of the Dickeya dadantii PecS regulon during the early stages of interaction with Arabidopsis thaliana.

机构信息

Interactions Plantes Pathogènes, AgroParisTech, INRA, UPMC Université Paris 06, Paris, 75005, France.

iEES (Institut d'Ecologie et des Sciences de l'Environnement de Paris), Sorbonne Universités, UPMC Université Paris 06, Diderot Université Paris 07, UPEC Université Paris 12, CNRS, INRA, IRD, Paris, 75005, France.

出版信息

Mol Plant Pathol. 2018 Mar;19(3):647-663. doi: 10.1111/mpp.12549. Epub 2017 May 3.

DOI:10.1111/mpp.12549
PMID:28295994
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6638149/
Abstract

PecS is one of the major global regulators controlling the virulence of Dickeya dadantii, a broad-host-range phytopathogenic bacterium causing soft rot on several plant families. To define the PecS regulon during plant colonization, we analysed the global transcriptome profiles in wild-type and pecS mutant strains during the early colonization of the leaf surfaces and in leaf tissue just before the onset of symptoms, and found that the PecS regulon consists of more than 600 genes. About one-half of these genes are down-regulated in the pecS mutant; therefore, PecS has both positive and negative regulatory roles that may be direct or indirect. Indeed, PecS also controls the regulation of a few dozen regulatory genes, demonstrating that this global regulator is at or near the top of a major regulatory cascade governing adaptation to growth in planta. Notably, PecS acts mainly at the very beginning of infection, not only to prevent virulence gene induction, but also playing an active role in the adaptation of the bacterium to the epiphytic habitat. Comparison of the patterns of gene expression inside leaf tissues and during early colonization of leaf surfaces in the wild-type bacterium revealed 637 genes modulated between these two environments. More than 40% of these modulated genes are part of the PecS regulon, emphasizing the prominent role of PecS during plant colonization.

摘要

PecS 是控制广泛宿主范围植物病原细菌 Dickeya dadantii 毒力的主要全球调控因子之一,该细菌可引起多个植物科的软腐病。为了在植物定植期间定义 PecS 调控子,我们分析了野生型和 pecS 突变菌株在叶片表面定植早期以及在症状出现前的叶片组织中的全基因组转录组谱,发现 PecS 调控子由 600 多个基因组成。这些基因中有大约一半在 pecS 突变体中下调;因此,PecS 具有正调控和负调控作用,可能是直接的或间接的。事实上,PecS 还控制着几十个调节基因的调节,这表明这个全局调节剂处于或接近控制适应植物生长的主要调节级联的顶端。值得注意的是,PecS 主要在感染的早期起作用,不仅可以防止毒力基因的诱导,而且在细菌适应附生栖息地方面也发挥着积极的作用。比较野生型细菌在叶片组织内和叶片表面定植早期的基因表达模式,揭示了这两种环境之间有 637 个基因被调节。这些被调节基因中有 40%以上是 PecS 调控子的一部分,这强调了 PecS 在植物定植期间的突出作用。

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Plant J. 2015 Apr;82(2):352-62. doi: 10.1111/tpj.12812.
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