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豌豆蚜感染不同株系的螺旋体的进化成本和收益。

Evolutionary costs and benefits of infection with diverse strains of Spiroplasma in pea aphids.

机构信息

Eawag, Swiss Federal Institute of Aquatic Science and Technology, Überlandstrasse 133, 8600, Dübendorf, Switzerland.

Current Address: LIEC UMR 7360, Université de Lorraine and CNRS, Metz, France.

出版信息

Evolution. 2019 Jul;73(7):1466-1481. doi: 10.1111/evo.13740. Epub 2019 Apr 25.

Abstract

The heritable endosymbiont Spiroplasma infects many insects and has repeatedly evolved the ability to protect its hosts against different parasites. Defenses do not come for free to the host, and theory predicts that more costly symbionts need to provide stronger benefits to persist in host populations. We investigated the costs and benefits of Spiroplasma infections in pea aphids (Acyrthosiphon pisum), testing 12 bacterial strains from three different clades. Virtually all strains decreased aphid lifespan and reproduction, but only two had a (weak) protective effect against the parasitoid Aphidius ervi, an important natural enemy of pea aphids. Spiroplasma-induced fitness costs were variable, with strains from the most slowly evolving clade reaching higher titers and curtailing aphid lifespan more strongly than other strains. Some Spiroplasma strains shared their host with a second endosymbiont, Regiella insecticola. Although the result of an unfortunate handling error, these co-infections proved instructive, because they showed that the cost of infection with Spiroplasma may be attenuated in the presence of Regiella. These results suggest that mechanisms other than protection against A. ervi maintain pea aphid infections with diverse strains of Spiroplasma, and that studying them in isolation will not provide a complete picture of their effects on host fitness.

摘要

可遗传的内共生体螺旋体感染了许多昆虫,并反复进化出保护宿主免受不同寄生虫侵害的能力。防御措施对宿主来说并非免费的,理论预测更昂贵的共生体会为了在宿主种群中持续存在而提供更强的好处。我们研究了豌豆蚜(Acyrthosiphon pisum)中螺旋体感染的成本和收益,测试了来自三个不同进化枝的 12 种细菌株。几乎所有的菌株都降低了蚜虫的寿命和繁殖力,但只有两种对寄生蜂 A. ervi 有(弱)保护作用,A. ervi 是豌豆蚜的重要天敌。螺旋体诱导的适合度成本是可变的,来自进化最慢的进化枝的菌株达到更高的滴度,并比其他菌株更强烈地缩短蚜虫的寿命。一些螺旋体菌株与第二种内共生体 Regiella insecticola 共享宿主。尽管这是一个不幸的处理错误的结果,但这些共感染证明是有启发性的,因为它们表明在 Regiella 存在的情况下,感染螺旋体的成本可能会降低。这些结果表明,除了抵御 A. ervi 之外,还有其他机制维持着豌豆蚜与多种螺旋体菌株的感染,而单独研究它们将无法提供其对宿主适应性影响的完整图景。

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