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地理镶嵌体中的寄生虫局部适应性

Parasite local adaptation in a geographic mosaic.

作者信息

Nuismer Scott L

机构信息

Department of Biological Sciences, University of Idaho, Moscow 83844, USA.

出版信息

Evolution. 2006 Jan;60(1):24-30.

Abstract

A central prediction of the geographic mosaic theory of coevolution is that coevolving interspecific interactions will show varying degrees of local maladaptation. According to the theory, much of this local maladaptation is driven by selection mosaics and spatially intermingled coevolutionary hot and cold spots, rather than a simple balance between gene flow and selection. Here I develop a genetic model of host-parasite coevolution that is sufficiently general to incorporate selection mosaics, coevolutionary hot and cold spots, and a diverse array of genetic systems of infection/resistance. Results from this model show that the selection mosaics experienced by the interacting species are an important determinant of the sign and magnitude of local maladaptation. In some cases, this effect may be stronger than a previously described effect of relative rates of parasite and host gene flow. These results provide the first theoretical evidence that selection mosaics and coevolutionary hot and cold spots per se determine the magnitude and sign of local maladaptation. At the same time, however, these results demonstrate that coevolution in a geographic mosaic can lead to virtually any pattern of local adaptation or local maladaptation. Consequently, empirical studies that describe only patterns of local adaptation or maladaptation do not provide evidence either for or against the theory.

摘要

协同进化的地理镶嵌理论的一个核心预测是,共同进化的种间相互作用将呈现出不同程度的局部不适应。根据该理论,这种局部不适应大多是由选择镶嵌以及空间上相互交织的协同进化热点和冷点驱动的,而非基因流动与选择之间的简单平衡。在此,我构建了一个宿主 - 寄生虫协同进化的遗传模型,该模型具有足够的通用性,能够纳入选择镶嵌、协同进化热点和冷点,以及各种各样的感染/抗性遗传系统。该模型的结果表明,相互作用的物种所经历的选择镶嵌是局部不适应的方向和程度的一个重要决定因素。在某些情况下,这种效应可能比先前描述的寄生虫和宿主基因流动相对速率的效应更强。这些结果提供了首个理论证据,证明选择镶嵌和协同进化热点及冷点本身决定了局部不适应的程度和方向。然而,与此同时,这些结果表明,地理镶嵌中的协同进化实际上可以导致几乎任何一种局部适应或局部不适应的模式。因此,仅描述局部适应或不适应模式的实证研究并不能为该理论提供支持或反对的证据。

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