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生物胁迫诱导的根系分泌物变化通过改变根际微生物群落赋予植物胁迫耐受性。

Biotic stress-induced changes in root exudation confer plant stress tolerance by altering rhizospheric microbial community.

作者信息

Sharma Indrani, Kashyap Sampurna, Agarwala Niraj

机构信息

Department of Botany, Gauhati University, Gopinath Bordoloi Nagar, Jalukbari, Guwahati, Assam, India.

出版信息

Front Plant Sci. 2023 Mar 10;14:1132824. doi: 10.3389/fpls.2023.1132824. eCollection 2023.

Abstract

Every organism on the earth maintains some kind of interaction with its neighbours. As plants are sessile, they sense the varied above-ground and below-ground environmental stimuli and decipher these dialogues to the below-ground microbes and neighbouring plants root exudates as chemical signals resulting in the modulation of the rhizospheric microbial community. The composition of root exudates depends upon the host genotype, environmental cues, and interaction of plants with other biotic factors. Crosstalk of plants with biotic agents such as herbivores, microbes, and neighbouring plants can change host plant root exudate composition, which may permit either positive or negative interactions to generate a battlefield in the rhizosphere. Compatible microbes utilize the plant carbon sources as their organic nutrients and show robust co-evolutionary changes in changing circumstances. In this review, we have mainly focused on the different biotic factors responsible for the synthesis of alternative root exudate composition leading to the modulation of rhizosphere microbiota. Understanding the stress-induced root exudate composition and resulting change in microbial community can help us to devise strategies in engineering plant microbiomes to enhance plant adaptive capabilities in a stressful environment.

摘要

地球上的每一种生物都与它的邻居保持着某种相互作用。由于植物固着生长,它们感知地上和地下各种环境刺激,并将这些信息以化学信号的形式传递给地下微生物和邻近植物,根际分泌物作为化学信号,会导致根际微生物群落的调节。根际分泌物的组成取决于宿主基因型、环境线索以及植物与其他生物因子的相互作用。植物与食草动物、微生物和邻近植物等生物因子之间的相互作用会改变宿主植物根际分泌物的组成,这可能导致正向或负向相互作用,从而在根际形成一个“战场”。共生微生物利用植物碳源作为其有机营养物质,并在不断变化的环境中表现出强大的共同进化变化。在这篇综述中,我们主要关注了导致根际分泌物组成改变从而调节根际微生物群的不同生物因子。了解胁迫诱导的根际分泌物组成以及微生物群落的相应变化,有助于我们制定策略来构建植物微生物组,以增强植物在胁迫环境中的适应能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd63/10036841/a66855f035e3/fpls-14-1132824-g001.jpg

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