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植物通过增强与根系相关的细菌的抗真菌基因表达来应对病原体感染。

Plants respond to pathogen infection by enhancing the antifungal gene expression of root-associated bacteria.

机构信息

Georg-August University, Gottingen, Germany.

出版信息

Mol Plant Microbe Interact. 2011 Mar;24(3):352-8. doi: 10.1094/MPMI-09-10-0208.

Abstract

Plant health and fitness widely depend on interactions with soil microorganisms. Some bacteria such as pseudomonads can inhibit pathogens by producing antibiotics, and controlling these bacteria could help improve plant fitness. In the present study, we tested whether plants induce changes in the antifungal activity of root-associated bacteria as a response to root pathogens. We grew barley plants in a split-root system with one side of the root system challenged by the pathogen Pythium ultimum and the other side inoculated with the biocontrol strain Pseudomonas fluorescens CHA0. We used reporter genes to follow the expression of ribosomal RNA indicative of the metabolic state and of the gene phlA, required for production of 2,4-diacetylphloroglucinol, a key component of antifungal activity. Infection increased the expression of the antifungal gene phlA. No contact with the pathogen was required, indicating that barley influenced gene expression by the bacteria in a systemic way. This effect relied on increased exudation of diffusible molecules increasing phlA expression, suggesting that communication with rhizosphere bacteria is part of the pathogen response of plants. Tripartite interactions among plants, pathogens, and bacteria appear as a novel determinant of plant response to root pathogens.

摘要

植物的健康和活力在很大程度上取决于与土壤微生物的相互作用。一些细菌,如假单胞菌,可以通过产生抗生素来抑制病原体,控制这些细菌有助于提高植物的活力。在本研究中,我们测试了植物是否会因根病原体的存在而改变与根相关的细菌的抗真菌活性。我们使用分根系统种植大麦植株,一侧根系受到病原菌终极腐霉的挑战,另一侧根系接种生防菌荧光假单胞菌 CHA0。我们使用报告基因来跟踪核糖体 RNA 指示的代谢状态和 phlA 基因的表达,phlA 基因是产生 2,4-二乙酰基间苯三酚的关键成分,2,4-二乙酰基间苯三酚是抗真菌活性的关键成分。感染增加了抗真菌基因 phlA 的表达。不需要与病原体接触,这表明大麦以系统的方式影响细菌的基因表达。这种效应依赖于可扩散分子的分泌增加,从而增加了 phlA 的表达,这表明与根际细菌的交流是植物对根病原体反应的一部分。植物、病原体和细菌之间的三方相互作用似乎是植物对根病原体反应的一个新决定因素。

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