Pascale Alberto, Proietti Silvia, Pantelides Iakovos S, Stringlis Ioannis A
Department of Agricultural Sciences, University of Naples Federico II, Naples, Italy.
Department of Ecological and Biological Sciences, University of Tuscia, Viterbo, Italy.
Front Plant Sci. 2020 Jan 24;10:1741. doi: 10.3389/fpls.2019.01741. eCollection 2019.
Plants host a mesmerizing diversity of microbes inside and around their roots, known as the microbiome. The microbiome is composed mostly of fungi, bacteria, oomycetes, and archaea that can be either pathogenic or beneficial for plant health and fitness. To grow healthy, plants need to surveil soil niches around the roots for the detection of pathogenic microbes, and in parallel maximize the services of beneficial microbes in nutrients uptake and growth promotion. Plants employ a palette of mechanisms to modulate their microbiome including structural modifications, the exudation of secondary metabolites and the coordinated action of different defence responses. Here, we review the current understanding on the composition and activity of the root microbiome and how different plant molecules can shape the structure of the root-associated microbial communities. Examples are given on interactions that occur in the rhizosphere between plants and soilborne fungi. We also present some well-established examples of microbiome harnessing to highlight how plants can maximize their fitness by selecting their microbiome. Understanding how plants manipulate their microbiome can aid in the design of next-generation microbial inoculants for targeted disease suppression and enhanced plant growth.
植物的根系内部和周围存在着种类繁多、令人着迷的微生物,即微生物组。微生物组主要由真菌、细菌、卵菌和古生菌组成,它们对植物的健康和生长状况可能致病,也可能有益。为了实现健康生长,植物需要监测根系周围的土壤生态位,以检测致病微生物,同时最大限度地利用有益微生物在养分吸收和促进生长方面的作用。植物采用一系列机制来调节其微生物组,包括结构修饰、次生代谢产物的分泌以及不同防御反应的协同作用。在此,我们综述了目前对根际微生物组的组成和活性的理解,以及不同植物分子如何塑造与根相关的微生物群落结构。文中给出了植物与土传真菌在根际发生相互作用的实例。我们还列举了一些成熟的微生物组利用案例,以突出植物如何通过选择其微生物组来最大化自身的适应性。了解植物如何操控其微生物组有助于设计下一代微生物接种剂,以实现靶向病害抑制和促进植物生长。