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昆虫病原真菌的种子接种会影响蚜虫种群,同时还会调节跨植物科的植物次生代谢物谱。

Seed inoculations with entomopathogenic fungi affect aphid populations coinciding with modulation of plant secondary metabolite profiles across plant families.

机构信息

Department of Plant and Environmental Sciences, University of Copenhagen, Thorvaldesensvej 40, Frederiksberg C, 1871, Denmark.

Department of Agroecology, Aarhus University, Forsøgsvej 1, Slagelse, 4200, Denmark.

出版信息

New Phytol. 2021 Feb;229(3):1715-1727. doi: 10.1111/nph.16979. Epub 2020 Oct 30.

Abstract

Entomopathogenic fungi (EPF) can display a plant-associated lifestyle as endophytes. Seed application of EPF can affect insect herbivory above ground, but the mechanisms behind this are not documented. Here we applied three EPF isolates, Beauveria bassiana, Metarhizium brunneum and M. robertsii, as seed inoculation of wheat and bean, and evaluated the effects on population growth of aphids, Rhopalosiphum padi and Aphis fabae, respectively. In wheat and bean leaves, we quantified benzoxazinoids and flavonoids, respectively, in response to EPF inoculation and aphid infestation to elucidate the role of specific plant secondary metabolites (PSMs) in plant-fungus-herbivore interactions. Inoculations of wheat and bean with M. robertsii and B. bassiana reduced aphid populations compared with control treatments, whereas M. brunneum unexpectedly increased the populations of both aphids. Concentrations of the majority of PSMs were differentially altered in EPF-treated plants infested with aphids. Changes in aphid numbers were associated with PSMs regulation rather than EPF endophytic colonisation capacity. This study links the effects of EPF seed inoculations against aphids with unique PSM accumulation patterns in planta. The understanding of PSM regulation in tri-trophic interactions is important for the future development of EPF for pest management.

摘要

昆虫病原真菌 (EPF) 可以作为内生菌表现出与植物相关的生活方式。EPF 的种子接种可以影响地上的昆虫取食,但这背后的机制尚未记录。在这里,我们将三种 EPF 分离物,包括绿僵菌、玫烟色棒束孢和罗伯茨绿僵菌,作为小麦和豆类的种子接种,并分别评估它们对麦长管蚜和豆蚜种群增长的影响。在小麦和豆类叶片中,我们分别量化了苯并恶嗪类和类黄酮,以阐明特定植物次生代谢物(PSM)在植物-真菌-食草动物相互作用中的作用。与对照处理相比,小麦和豆类接种绿僵菌和绿僵菌可减少蚜虫种群,而玫烟色棒束孢出乎意料地增加了两种蚜虫的种群。在被蚜虫侵染的 EPF 处理植物中,大多数 PSM 的浓度都有不同程度的改变。蚜虫数量的变化与 PSM 的调节有关,而与 EPF 内生菌定植能力无关。本研究将 EPF 对蚜虫的种子接种的影响与植物体内独特的 PSM 积累模式联系起来。了解三营养级相互作用中 PSM 的调节对未来利用 EPF 进行害虫管理具有重要意义。

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