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Can Epichloe endophytes enhance direct and indirect plant defence?

机译:Epichloe Endophytes可以增强直接和间接的植物防御吗?

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Induced or constitutive production of secondary metabolites is a successful plant defence strategy against herbivores which can be mediated by plant associated micro-organisms. Several grass species can be associated with an endophytic fungus of the genus Epichloe which produces herbivore toxic or deterring alkaloids. Besides these direct defences, herbivorous insects are controlled via indirect plant defence mechanisms by attracting predators. Recent studies indicate that Epichloe endophytes can improve the grass emitted volatile organic compounds towards herbivore deterrence. Due to their defensive mutualistic function, we hypothesize that Epichloe altered plant volatiles can attract aphid predators and contribute to an increased indirect plant defence. With a common garden study, we show that hoverfly (Syrphidae) larvae and pupae were more abundant on endophyte-infected plants compared to uninfected plants. Our results indicate that the Epichloe endophyte provides, besides direct defence (alkaloid), indirect plant defence by improving the plant odor attracting more olfactory foraging aphid predators. Future research is needed in order to understand: (I) whether endophyte-mediated changes in plant volatiles are induced herbivore specific, (II) whether there is a trade-off between endophytemediated direct and indirect plant defence, (Ill) whether the endophyte produces volatiles or induces a change in plant -derived volatiles, (IV) the role of plant signals in endophyte-mediated plant defence. (C) 2018 Elsevier Ltd and British Mycological Society. All rights reserved.
机译:次级代谢物的诱发或组成型产生是对食草食虫的成功植物防御策略,其可以由植物相关的微生物介导。几种草种可以与嗜哪种孢子属的内皮细菌有关,其产生食草动物有毒或阻燃生物碱。除了这些直接防御外,食草昆虫通过吸引捕食者通过间接植物防御机制控制。最近的研究表明,Epichloe Endophytes可以改善草发射的挥发性有机化合物朝向草食虫威慑。由于它们的防御性互动功能,我们假设Epichloe改变的植物挥发物可以吸引蚜虫捕食者并有助于增加间接植物防御。与常见的园林研究,与未感染的植物相比,我们表明Hoverfly(Syrphidae)幼虫和蛹更丰富。我们的结果表明,除了直接防御(生物碱),通过改善植物气味来提供更多的嗅觉觅食蚜虫捕食者,SPichloe Endophyte提供了间接植物防御。需要进行未来的研究以便理解:(i)植物挥发物的内心介导的变化是否诱导食草动物特异性,(ii)在内肺部的直接和间接植物防御之间是否存在权衡,(ILL)内心生成挥发物或诱导植物的挥发物(IV)在内心介导的植物防御中的作用。 (c)2018年Elsevier Ltd和英国Mycological社会。版权所有。

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