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Volatiles of pathogenic and non-pathogenic soil-borne fungi affect plant development and resistance to insects

机译:病原和非致病土壤 - 传播真菌的挥发会影响植物的开发和对昆虫的抵抗力

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Plants are ubiquitously exposed to a wide diversity of (micro)organisms, including mutualists and antagonists. Prior to direct contact, plants can perceive microbial organic and inorganic volatile compounds (hereafter: volatiles) from a distance that, in turn, may affect plant development and resistance. To date, however, the specificity of plant responses to volatiles emitted by pathogenic and non-pathogenic fungi and the ecological consequences of such responses remain largely elusive. We investigated whether Arabidopsis thaliana plants can differentiate between volatiles of pathogenic and non-pathogenic soil-borne fungi. We profiled volatile organic compounds (VOCs) and measured CO2 emission of 11 fungi. We assessed the main effects of fungal volatiles on plant development and insect resistance. Despite distinct differences in VOC profiles between the pathogenic and non-pathogenic fungi, plants did not discriminate, based on plant phenotypic responses, between pathogenic and non-pathogenic fungi. Overall, plant growth was promoted and flowering was accelerated upon exposure to fungal volatiles, irrespectively of fungal CO2 emission levels. In addition, plants became significantly more susceptible to a generalist insect leaf-chewing herbivore upon exposure to the volatiles of some of the fungi, demonstrating that a prior fungal volatile exposure can negatively affect plant resistance. These data indicate that plant development and resistance can be modulated in response to exposure to fungal volatiles.
机译:植物普遍暴露于各种各样的(微)生物体,包括共生主义者和拮抗剂。在直接接触之前,植物可以感知微生物有机和无机挥发性化合物(以下,挥发物)从距离反过来可能影响植物发育和抗性的距离。然而,迄今为止,植物对致病和非致病性真菌发出的挥发物的特异性以及这些反应的生态后果仍然很大程度上是难以捉摸的。我们调查了拟南芥植物是否可以区分致病和非致病土壤传播真菌的挥发物。我们分析了挥发性有机化合物(VOC)并测量了11个真菌的CO 2发射。我们评估了真菌挥发物对植物发育和抗虫性的主要影响。尽管病原和非致病真菌之间的VOC型差异不同,但植物在病原和非致病真菌之间基于植物表型反应而没有区分。总体而言,促进植物生长并在暴露于真菌挥发物时加速开花,无论真菌二氧化碳排放水平如何。此外,在暴露于某些真菌的挥发物时,植物在暴露于一些真菌的挥发物时变得明显更容易受到一般主义昆虫叶片,表明现有的真菌挥发性暴露可能会对植物抗性产生负面影响。这些数据表明植物的开发和阻力可以响应于暴露于真菌挥发物而调节。

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