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植物招募有益微生物以抑制土壤传播病原体的证据。

Evidence for the plant recruitment of beneficial microbes to suppress soil-borne pathogens.

作者信息

Liu Hongwei, Li Jiayu, Carvalhais Lilia C, Percy Cassandra D, Prakash Verma Jay, Schenk Peer M, Singh Brajesh K

机构信息

Hawkesbury Institute for the Environment, Western Sydney University, Penrith, NSW, 2753, Australia.

School of Agriculture and Food Sciences, The University of Queensland, Saint Lucia, Qld, 4072, Australia.

出版信息

New Phytol. 2021 Mar;229(5):2873-2885. doi: 10.1111/nph.17057. Epub 2020 Dec 1.

Abstract

An emerging experimental framework suggests that plants under biotic stress may actively seek help from soil microbes, but empirical evidence underlying such a 'cry for help' strategy is limited. We used integrated microbial community profiling, pathogen and plant transcriptive gene quantification and culture-based methods to systematically investigate a three-way interaction between the wheat plant, wheat-associated microbiomes and Fusarium pseudograminearum (Fp). A clear enrichment of a dominant bacterium, Stenotrophomonas rhizophila (SR80), was observed in both the rhizosphere and root endosphere of Fp-infected wheat. SR80 reached 3.7 × 10 cells g in the rhizosphere and accounted for up to 11.4% of the microbes in the root endosphere. Its abundance had a positive linear correlation with the pathogen load at base stems and expression of multiple defence genes in top leaves. Upon re-introduction in soils, SR80 enhanced plant growth, both the below-ground and above-ground, and induced strong disease resistance by boosting plant defence in the above-ground plant parts, but only when the pathogen was present. Together, the bacterium SR80 seems to have acted as an early warning system for plant defence. This work provides novel evidence for the potential protection of plants against pathogens by an enriched beneficial microbe via modulation of the plant immune system.

摘要

一个新兴的实验框架表明,遭受生物胁迫的植物可能会积极寻求土壤微生物的帮助,但这种“呼救”策略的实证依据有限。我们使用综合微生物群落分析、病原体和植物转录基因定量以及基于培养的方法,系统地研究了小麦植株、与小麦相关的微生物群和拟禾本科镰刀菌(Fp)之间的三方相互作用。在受Fp感染的小麦根际和根内皮层中,均观察到一种优势细菌嗜根寡养单胞菌(SR80)明显富集。SR80在根际达到3.7×10个细胞/克,占根内皮层微生物的11.4%。其丰度与基部茎杆处的病原体负荷以及顶部叶片中多个防御基因的表达呈正线性相关。在重新引入土壤后,SR80促进了植物地上和地下部分的生长,并通过增强地上部分的植物防御诱导了强烈的抗病性,但仅在病原体存在时如此。总之,细菌SR80似乎充当了植物防御的早期预警系统。这项工作为一种富集的有益微生物通过调节植物免疫系统对植物抵御病原体的潜在保护作用提供了新证据。

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