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植物微生物组:系统层面的见解与展望。

The Plant Microbiota: Systems-Level Insights and Perspectives.

机构信息

Institute of Microbiology, ETH Zurich, 8093 Zurich, Switzerland; email:

Department of Plant Microbe Interactions, Max Planck Institute for Plant Breeding Research, 50829 Cologne, Germany.

出版信息

Annu Rev Genet. 2016 Nov 23;50:211-234. doi: 10.1146/annurev-genet-120215-034952. Epub 2016 Sep 14.

Abstract

Plants do not grow as axenic organisms in nature, but host a diverse community of microorganisms, termed the plant microbiota. There is an increasing awareness that the plant microbiota plays a role in plant growth and can provide protection from invading pathogens. Apart from intense research on crop plants, Arabidopsis is emerging as a valuable model system to investigate the drivers shaping stable bacterial communities on leaves and roots and as a tool to decipher the intricate relationship among the host and its colonizing microorganisms. Gnotobiotic experimental systems help establish causal relationships between plant and microbiota genotypes and phenotypes and test hypotheses on biotic and abiotic perturbations in a systematic way. We highlight major recent findings in plant microbiota research using comparative community profiling and omics analyses, and discuss these approaches in light of community establishment and beneficial traits like nutrient acquisition and plant health.

摘要

植物在自然界中并非以无菌状态生长,而是宿主着多种多样的微生物群落,被称为植物微生物组。人们越来越意识到,植物微生物组在植物生长中发挥作用,并能提供抵御入侵病原体的保护。除了对农作物的深入研究外,拟南芥作为一种有价值的模式系统,正在兴起,用于研究在叶片和根系上形成稳定细菌群落的驱动因素,并用于破译宿主与其定植微生物之间复杂的关系。无菌实验系统有助于在系统地用生物和非生物扰动来检验假设的情况下,在植物和微生物组基因型和表型之间建立因果关系。我们使用比较群落分析和组学分析来突出植物微生物组研究的主要最新发现,并根据群落建立和有益特性(如营养获取和植物健康)来讨论这些方法。

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