King Eoghan, Wallner Adrian, Rimbault Isabelle, Barrachina Célia, Klonowska Agnieszka, Moulin Lionel, Czernic Pierre
IRD, CIRAD, University of Montpellier, IPME, Montpellier, France.
Montpellier GenomiX (MGX), c/o Institut de Génomique Fonctionnelle, Montpellier, France.
Front Plant Sci. 2019 Sep 24;10:1141. doi: 10.3389/fpls.2019.01141. eCollection 2019.
In the context of plant-pathogen and plant-mutualist interactions, the underlying molecular bases associated with host colonization have been extensively studied. However, it is not the case for non-mutualistic beneficial interactions or associative symbiosis with plants. Particularly, little is known about the transcriptional regulations associated with the immune tolerance of plants towards beneficial microbes. In this context, the study of the rice model is very promising to describe the molecular mechanisms involved in associative symbiosis. Indeed, several species of the () genus can colonize rice tissues and have beneficial effects; particularly, two species have been thoroughly studied: and . This study aims to compare the interaction of these species with rice and especially to identify common or specific plant responses. Therefore, we analyzed root colonization of the rice cultivar Nipponbare using DsRed-tagged bacterial strains and produced the transcriptomes of both roots and leaves 7 days after root inoculation. This led us to the identification of a co-expression jasmonic acid (JA)-related network exhibiting opposite regulation in response to the two strains in the leaves of inoculated plants. We then monitored by quantitative polymerase chain reaction (qPCR) the expression of JA-related genes during time course colonization by each strain. Our results reveal a temporal shift in this JA systemic response, which can be related to different colonization strategies of both strains.
在植物与病原体以及植物与互利共生体相互作用的背景下,与宿主定殖相关的潜在分子基础已得到广泛研究。然而,对于非互利性有益相互作用或与植物的联合共生而言,情况并非如此。特别是,关于植物对有益微生物的免疫耐受性相关的转录调控知之甚少。在此背景下,水稻模型的研究对于描述联合共生中涉及的分子机制非常有前景。事实上,(某属)的几个物种可以定殖水稻组织并产生有益作用;特别是,其中两个物种已得到深入研究:(物种一)和(物种二)。本研究旨在比较这些物种与水稻的相互作用,尤其是确定常见或特定的植物反应。因此,我们使用DsRed标记的细菌菌株分析了日本晴水稻品种的根部定殖情况,并在根部接种7天后生成了根和叶的转录组。这使我们在接种植物的叶片中鉴定出一个与茉莉酸(JA)相关的共表达网络,该网络对两种菌株的反应呈现相反的调控。然后,我们通过定量聚合酶链反应(qPCR)监测了每个菌株在定殖过程中JA相关基因的表达。我们的结果揭示了这种JA系统反应的时间变化,这可能与两种菌株不同的定殖策略有关。