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有证据表明,共生体间接赋予豌豆蚜对捕食性瓢虫异色瓢虫的保护。

Evidence of indirect symbiont conferred protection against the predatory lady beetle Harmonia axyridis in the pea aphid.

作者信息

Kovacs Jennifer L, Wolf Candice, Voisin Dené, Wolf Seth

机构信息

Spelman College, 350 Spelman Lane, S.W., Atlanta, GA, 30314, USA.

University of Vermont, Larner College of Medicine, 89 Beaumont Ave, Burlington, VT, 05405, USA.

出版信息

BMC Ecol. 2017 Jul 11;17(1):26. doi: 10.1186/s12898-017-0136-x.

Abstract

BACKGROUND

Defensive symbionts can provide significant fitness advantages to their hosts. Facultative symbionts can protect several species of aphid from fungal pathogens, heat shock, and parasitism by parasitoid wasps. Previous work found that two of these facultative symbionts can also indirectly protect pea aphids from predation by the lady beetle Hippocampus convergens. When aphids reproduce asexually, there is extremely high relatedness among aphid clone-mates and often very limited dispersal. Under these conditions, symbionts may indirectly protect aphid clone-mates from predation by negatively affecting the survival of a predator after the consumption of aphids harboring the same vertically transmitted facultative symbionts. In this study, we wanted to determine whether this indirect protection extended to another lady beetle species, Harmonia axyridis.

RESULTS

We fed Ha. axyridis larvae aphids from one of four aphid sub-clonal symbiont lines which all originated from the same naturally symbiont free clonal aphid lineage. Three of the sub-clonal lines harbor different facultative symbionts that were introduced to the lines via microinjection. Therefore these sub-clonal lineages vary primarily in their symbiont composition, not their genetic background. We found that aphid facultative symbionts affected larval survival as well as pupal survival in their predator Ha. axyridis. Additionally, Ha. axyridis larvae fed aphids with the Regiella symbiont had significantly longer larval developmental times than beetle larvae fed other aphids, and females fed aphids with the Regiella symbiont as larvae weighed less as adults. These fitness effects were different from those previously found in another aphid predator Hi. convergens suggesting that the fitness effects may not be the same in different aphid predators.

CONCLUSIONS

Overall, our findings suggest that some aphid symbionts may indirectly benefit their clonal aphid hosts by negatively impacting the development and survival of a lady beetle aphid predator Ha. axyridis. By directly affecting the survival of predatory lady beetles, aphid facultative symbionts may increase the survival of their clone-mates that are clustered nearby and have significant impacts across multiple trophic levels. We have now found evidence for multiple aphid facultative symbionts negatively impacting the survival of a second species of aphid predatory lady beetle. These same symbionts also protect their hosts from parasitism and fungal infections, though these fitness effects seem to depend on the aphid species, predator or parasitoid species, and symbiont type. This work further demonstrates that beneficial mutualisms depend upon complex interactions between a variety of players and should be studied in multiple ecologically relevant contexts.

摘要

背景

防御性共生体可为宿主提供显著的适应性优势。兼性共生体可保护多种蚜虫免受真菌病原体、热休克以及寄生蜂的寄生。此前的研究发现,其中两种兼性共生体还能间接保护豌豆蚜虫免受七星瓢虫的捕食。当蚜虫进行无性繁殖时,蚜虫克隆体之间的亲缘关系极高,且扩散往往非常有限。在这些条件下,共生体可能通过负面影响捕食者在取食携带相同垂直传播兼性共生体的蚜虫后的生存,从而间接保护蚜虫克隆体免受捕食。在本研究中,我们想确定这种间接保护是否也适用于另一种瓢虫物种,异色瓢虫。

结果

我们给异色瓢虫幼虫喂食来自四个蚜虫亚克隆共生体系之一的蚜虫,这四个体系均源自同一个自然无共生体的克隆蚜虫谱系。其中三个亚克隆系携带不同的兼性共生体,这些共生体是通过显微注射引入的。因此,这些亚克隆谱系的主要差异在于其共生体组成,而非遗传背景。我们发现蚜虫兼性共生体影响了其捕食者异色瓢虫的幼虫存活率和蛹存活率。此外,取食携带雷氏共生体蚜虫的异色瓢虫幼虫,其幼虫发育时间显著长于取食其他蚜虫的甲虫幼虫,而幼虫期取食携带雷氏共生体蚜虫的雌性成虫体重较轻。这些适应性效应与之前在另一种蚜虫捕食者——会聚七星瓢虫中发现的不同,这表明在不同的蚜虫捕食者中,适应性效应可能并不相同。

结论

总体而言,我们的研究结果表明,一些蚜虫共生体可能通过负面影响异色瓢虫这种蚜虫捕食者的发育和生存,间接地使其克隆蚜虫宿主受益。通过直接影响捕食性瓢虫的生存,蚜虫兼性共生体可能会提高其附近聚集的克隆体的存活率,并对多个营养级产生重大影响。我们现在已经发现证据表明,多种蚜虫兼性共生体对第二种蚜虫捕食性瓢虫的生存产生负面影响。这些相同的共生体还能保护其宿主免受寄生和真菌感染,不过这些适应性效应似乎取决于蚜虫物种、捕食者或寄生蜂物种以及共生体类型。这项工作进一步证明,有益的共生关系取决于多种参与者之间的复杂相互作用,应在多个生态相关背景下进行研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e44/5504669/dacc1b529368/12898_2017_136_Fig1_HTML.jpg

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