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在基因型与环境互作下,寄生的温度依赖性成本及多态性的维持

Temperature-dependent costs of parasitism and maintenance of polymorphism under genotype-by-environment interactions.

作者信息

Vale P F, Stjernman M, Little T J

机构信息

Institute of Evolutionary Biology, School of Biological Sciences, Ashworth Labs, University of Edinburgh, Edinburgh, UK.

出版信息

J Evol Biol. 2008 Sep;21(5):1418-27. doi: 10.1111/j.1420-9101.2008.01555.x. Epub 2008 Jun 28.

Abstract

The maintenance of genetic variation for infection-related traits is often attributed to coevolution between hosts and parasites, but it can also be maintained by environmental variation if the relative fitness of different genotypes changes with environmental variation. To gain insight into how infection-related traits are sensitive to environmental variation, we exposed a single host genotype of the freshwater crustacean Daphnia magna to four parasite isolates (which we assume to represent different genotypes) of its naturally co-occurring parasite Pasteuria ramosa at 15, 20 and 25 degrees C. We found that the cost to the host of becoming infected varied with temperature, but the magnitude of this cost did not depend on the parasite isolate. Temperature influenced parasite fitness traits; we found parasite genotype-by-environment (G x E) interactions for parasite transmission stage production, suggesting the potential for temperature variation to maintain genetic variation in this trait. Finally, we tested for temperature-dependent relationships between host and parasite fitness traits that form a key component of models of virulence evolution, and we found them to be stable across temperatures.

摘要

感染相关性状的遗传变异维持通常归因于宿主与寄生虫之间的共同进化,但如果不同基因型的相对适合度随环境变化而改变,那么遗传变异也可由环境变化维持。为深入了解感染相关性状对环境变化的敏感程度,我们将淡水甲壳动物大型溞的单一宿主基因型暴露于其天然共生寄生虫罗氏巴氏杆菌的四种寄生虫分离株(我们假定它们代表不同基因型)中,温度分别为15、20和25摄氏度。我们发现宿主被感染的代价随温度变化,但这种代价的大小并不取决于寄生虫分离株。温度影响寄生虫的适合度性状;我们发现寄生虫传播阶段产生存在寄生虫基因型与环境(G×E)的相互作用,这表明温度变化有可能维持该性状的遗传变异。最后,我们测试了构成毒力进化模型关键组成部分的宿主与寄生虫适合度性状之间的温度依赖性关系,发现它们在不同温度下是稳定的。

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