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多年生木本植物健康的根际微生物组组装、驱动因素和功能。

Rhizosphere microbiome assembly, drivers and functions in perennial ligneous plant health.

机构信息

Université de Reims Champagne-Ardenne, INRAE, RIBP, USC 1488, UFR Sciences, Reims 51100, France.

Centre INRAE Grand Est-Nancy, UMR Interactions Arbres-Microorganismes, Champenoux 54280, France.

出版信息

Microbiol Res. 2024 Oct;287:127860. doi: 10.1016/j.micres.2024.127860. Epub 2024 Jul 29.

Abstract

Plants shape and interact continuously with their rhizospheric microbiota, which play a key role in plant health and resilience. However, plant-associated microbial community can be shaped by several factors including plant phenotype and cropping system. Thus, understanding the interplay between microbiome assembly during the onset of plant-pathogen interactions and long-lasting resistance traits in ligneous plants remains a major challenge. To date, such attempts were mainly investigated in herbaceous plants, due to their phenotypic characteristics and their short life cycle. However, only few studies have focused on the microbial structure, dynamic and their drivers in perennial ligneous plants. Ligneous plants coevolved in interaction with specific fungal and bacterial communities that differ from those of annual plants. The specificities of such ligneous plants in shaping their own functional microbial communities could be dependent on their high heterozygosis, physiological and molecular status associated to seasonality and their aging processes, root system and above-ground architectures, long-lasting climatic variations, and specific cultural practices. This article provides an overview of the specific characteristics of perennial ligneous plants that are likely to modulate symbiotic interactions in the rhizosphere, thus affecting the plant's fitness and systemic immunity. Plant and microbial traits contributing to the establishment of plant-microbiome interactions and the adaptation of this holobiont are also discussed.

摘要

植物与根际微生物群持续相互作用,根际微生物群在植物健康和弹性中发挥着关键作用。然而,植物相关微生物群落可能受到多种因素的影响,包括植物表型和种植制度。因此,了解植物-病原体相互作用开始时微生物组组装与木质植物持久抗性特征之间的相互作用仍然是一个主要挑战。迄今为止,由于其表型特征和生命周期短,此类尝试主要在草本植物中进行。然而,只有少数研究集中在多年生木质植物中的微生物结构、动态及其驱动因素上。木质植物与特定的真菌和细菌群落共同进化,这些群落与一年生植物的群落不同。这些木质植物塑造自身功能微生物群落的特殊性可能取决于它们的高度杂合性、与季节性和衰老过程相关的生理和分子状态、根系和地上结构、长期的气候变化以及特定的文化实践。本文概述了可能调节根际共生相互作用从而影响植物适应性和系统免疫的多年生木质植物的特定特征。还讨论了有助于建立植物-微生物组相互作用和该整体生物适应的植物和微生物特征。

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