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昆虫内共生体对土壤生物、植物和蚜虫之间相互作用的不可预测影响。

Unpredicted impacts of insect endosymbionts on interactions between soil organisms, plants and aphids.

机构信息

The James Hutton Institute, Invergowrie, Dundee DD2 5DA, UK.

出版信息

Proc Biol Sci. 2013 Aug 7;280(1768):20131275. doi: 10.1098/rspb.2013.1275. Print 2013 Oct 7.

Abstract

Ecologically significant symbiotic associations are frequently studied in isolation, but such studies of two-way interactions cannot always predict the responses of organisms in a community setting. To explore this issue, we adopt a community approach to examine the role of plant-microbial and insect-microbial symbioses in modulating a plant-herbivore interaction. Potato plants were grown under glass in controlled conditions and subjected to feeding from the potato aphid Macrosiphum euphorbiae. By comparing plant growth in sterile, uncultivated and cultivated soils and the performance of M. euphorbiae clones with and without the facultative endosymbiont Hamiltonella defensa, we provide evidence for complex indirect interactions between insect- and plant-microbial systems. Plant biomass responded positively to the live soil treatments, on average increasing by 15% relative to sterile soil, while aphid feeding produced shifts (increases in stem biomass and reductions in stolon biomass) in plant resource allocation irrespective of soil treatment. Aphid fecundity also responded to soil treatment with aphids on sterile soil exhibiting higher fecundities than those in the uncultivated treatment. The relative allocation of biomass to roots was reduced in the presence of aphids harbouring H. defensa compared with plants inoculated with H. defensa-free aphids and aphid-free control plants. This study provides evidence for the potential of plant and insect symbionts to shift the dynamics of plant-herbivore interactions.

摘要

生态意义重大的共生关系经常被孤立地研究,但这种对双向相互作用的研究并不能总是预测生物在群落环境中的反应。为了探讨这个问题,我们采用群落方法来研究植物-微生物和昆虫-微生物共生体在调节植物-草食动物相互作用中的作用。在控制条件下,我们在玻璃温室中种植马铃薯,并让马铃薯蚜虫(Macrosiphum euphorbiae)取食。通过比较无菌、未培养和培养土壤中植物的生长情况,以及有无兼性内共生菌 Hamiltonella defensa 的 M. euphorbiae 克隆的表现,我们为昆虫-和植物-微生物系统之间存在复杂的间接相互作用提供了证据。植物生物量对活体土壤处理有积极的响应,平均比无菌土壤增加 15%,而蚜虫取食导致植物资源分配发生变化(茎生物量增加,匍匐茎生物量减少),而与土壤处理无关。蚜虫的繁殖力也对土壤处理有反应,无菌土壤上的蚜虫繁殖力高于未培养土壤上的蚜虫。与接种无 H. defensa 蚜虫的植物和无蚜虫对照植物相比,携带 H. defensa 的蚜虫存在时,植物根系的相对生物量分配减少。本研究为植物和昆虫共生体改变植物-草食动物相互作用动态提供了证据。

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