Instituto de Investigaciones Químico Biológicas, Universidad Michoacana de San Nicolás de Hidalgo, 58030 Morelia, Mexico.
J Adv Res. 2022 Sep;40:45-58. doi: 10.1016/j.jare.2021.11.020. Epub 2021 Dec 4.
Research on beneficial mechanisms by plant-associated microbiomes, such as plant growth stimulation and protection from plant pathogens, has gained considerable attention over the past decades; however, the mechanisms used by plants to recruit their microbiome is largely unknown.
Here, we review the latest studies that have begun to reveal plant strategies in selectively recruiting beneficial microbiomes, and how they manage to exclude potential pathogens. Key Scientific concepts of Review: We examine how plants attract beneficial microbiota from the main areas of interaction, such as the rhizosphere, endosphere, and phyllosphere, and demonstrate that such process occurs by producing root exudates, and recognizing molecules produced by the beneficial microbiota or distinguishing pathogens using specific receptors, or by triggering signals that support plant-microbiome homeostasis. Second, we analyzed the main environmental or biotic factors that modulate the structure and successional dynamics of microbial communities. Finally, we review how the associated microbiome is capable of engaging with other synergistic microbes, hence providing an additional element of selection. Collectively, this study reveals the importance of understanding the complex network of plant interactions, which will improve the understanding of bioinoculant application in agriculture, based on a microbiome that interacts efficiently with plant organs under different environmental conditions.
过去几十年中,人们对植物相关微生物组的有益机制(如植物生长刺激和抵御植物病原体)进行了大量研究;然而,植物用来招募其微生物组的机制在很大程度上尚不清楚。
本文综述了最新的研究进展,这些研究开始揭示植物选择性招募有益微生物组的策略,以及它们如何设法排除潜在病原体。
我们研究了植物如何从主要的相互作用区域(如根际、内共生和叶际)吸引有益微生物群,并证明这种过程是通过产生根分泌物来实现的,或者通过识别有益微生物群产生的分子或利用特定受体区分病原体,或者通过触发支持植物-微生物组动态平衡的信号来实现的。其次,我们分析了调节微生物群落结构和演替动态的主要环境或生物因素。最后,我们综述了相关微生物组如何与其他协同微生物相互作用,从而提供了选择的另一个要素。综上所述,这项研究揭示了理解植物相互作用复杂网络的重要性,这将有助于根据在不同环境条件下与植物器官有效相互作用的微生物组,提高农业中生物接种剂应用的理解。