UMR 1099 INRA-Agrocampus Ouest-Université Rennes 1 Biologie des Organismes et des Populations appliquée à la Protection des Plantes, Rennes Cedex, Le Rheu Cedex, France.
J Evol Biol. 2011 Apr;24(4):741-50. doi: 10.1111/j.1420-9101.2010.02207.x. Epub 2011 Jan 24.
Insects harbour a wild diversity of symbionts that can spread and persist within populations by providing benefits to their host. The pea aphid Acyrthosiphon pisum maintains a facultative symbiosis with the bacterium Hamiltonella defensa, which provides enhanced resistance against the aphid parasitoid Aphidius ervi. Although the mechanisms associated with this symbiotic-mediated protection have been investigated thoroughly, little is known about its evolutionary effects on parasitoid populations. We used an experimental evolution procedure in which parasitoids were exposed either to highly resistant aphids harbouring the symbiont or to low innate resistant hosts free of H. defensa. Parasitoids exposed to H. defensa gained virulence over time, reaching the same parasitism rate as those exposed to low aphid innate resistance only. A fitness reduction was associated with this adaptation as the size of parasitoids exposed to H. defensa decreased through generations. This study highlighted the considerable role of symbionts in host-parasite co-evolutionary dynamics.
昆虫体内携带着丰富多样的共生体,这些共生体可以通过为宿主提供益处而在种群中传播和持续存在。豌豆蚜 Acyrthosiphon pisum 与细菌 Hamiltonella defensa 保持着兼性共生关系,这种共生关系为其提供了对蚜虫寄生蜂 Aphidius ervi 的增强抗性。尽管与这种共生介导的保护相关的机制已经被深入研究,但对于其对寄生蜂种群的进化影响却知之甚少。我们使用了一种实验进化程序,其中寄生蜂要么暴露于携带共生体的具有高度抗性的蚜虫中,要么暴露于没有 H. defensa 的低先天抗性的宿主中。随着时间的推移,暴露于 H. defensa 的寄生蜂获得了毒力,其寄生率达到了仅暴露于低蚜虫先天抗性的寄生蜂的水平。这种适应伴随着适应的代价,因为暴露于 H. defensa 的寄生蜂的大小随着世代的推移而减少。这项研究强调了共生体在宿主-寄生虫共同进化动态中的重要作用。