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The potential of a population genomics approach to analyse geographic mosaics of plant--insect coevolution

机译:种群基因组学方法分析植物-昆虫共同进化的地理潜力

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摘要

A central issue in the evolutionary ecology of species interactions is coevolution, which involves the reciprocal selection between individuals of interacting species. Understanding the importance of coevolution in shaping species interactions requires the consideration of spatial variation in their strength. This is exactly what the, recently developed, geographic mosaic theory of coevolution addresses. Another major development in the study of population ecology is the introduction of the population genomics approach in this field of research. This approach addresses spatial processes through molecular methods. It is of particular interest that population genomics is especially applicable to natural populations of non-model species. We describe how population genomics can be used in the context of the geographic mosaic of coevolution, specifically to identify coevolutionary hot-spots, and to attribute genetic variation found at specific loci to processes of selection versus trait remixing. The proposed integration of the population genomics approach with the conceptual framework of the geographic mosaic of coevolution is illustrated with a few selected, particularly demonstrative, examples from the realm of insect--plant interactions.
机译:物种相互作用的进化生态学中的一个中心问题是协同进化,它涉及相互作用物种之间个体的相互选择。要了解协同进化在影响物种相互作用中的重要性,需要考虑其强度的空间变化。这正是最近开发的地理协同进化理论所要解决的问题。人口生态学研究的另一个重要进展是在该研究领域中引入了人口基因组学方法。这种方法通过分子方法解决空间过程。特别令人感兴趣的是,种群基因组学特别适用于非模型物种的自然种群。我们描述了种群基因组学如何在共同进化的地理镶嵌背景下使用,特别是识别共同进化的热点,并将在特定基因座发现的遗传变异归因于选择与性状再混合的过程。提出的将种群基因组学方法与协同进化的地理镶嵌概念框架整合在一起的方法,从昆虫与植物相互作用的领域中选取了一些特别是示范性的例子进行了说明。

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