量化基因流对湖-溪三刺鱼系统适应性分化的限制影响。

Quantifying the constraining influence of gene flow on adaptive divergence in the lake-stream threespine stickleback system.

作者信息

Moore Jean-Sébastien, Gow Jennifer L, Taylor Eric B, Hendry Andrew P

机构信息

Redpath Museum and Department of Biology, McGill University, 859 Sherbrooke Street West, Montréal, Québec, H3A 2K6, Canada.

出版信息

Evolution. 2007 Aug;61(8):2015-26. doi: 10.1111/j.1558-5646.2007.00168.x.

Abstract

The constraining effect of gene flow on adaptive divergence is often inferred but rarely quantified. We illustrate ways of doing so using stream populations of threespine stickleback (Gasterosteus aculeatus) that experience different levels of gene flow from a parapatric lake population. In the Misty Lake watershed (British Columbia, Canada), the inlet stream population is morphologically divergent from the lake population, and presumably experiences little gene flow from the lake. The outlet stream population, however, shows an intermediate phenotype and may experience more gene flow from the lake. We first used microsatellite data to demonstrate that gene flow from the lake is low into the inlet but high into the outlet, and that gene flow from the lake remains relatively constant with distance along the outlet. We next combined gene flow data with morphological and habitat data to quantify the effect of gene flow on morphological divergence. In one approach, we assumed that inlet stickleback manifest well-adapted phenotypic trait values not constrained by gene flow. We then calculated the deviation between the observed and expected phenotypes for a given habitat in the outlet. In a second approach, we parameterized a quantitative genetic model of adaptive divergence. Both approaches suggest a large impact of gene flow, constraining adaptation by 80-86% in the outlet (i.e., only 14-20% of the expected morphological divergence in the absence of gene flow was observed). Such approaches may be useful in other taxa to estimate how important gene flow is in constraining adaptive divergence in nature.

摘要

基因流对适应性分化的限制作用常常是推断出来的,但很少被量化。我们用三刺鱼(Gasterosteus aculeatus)的溪流种群来说明进行量化的方法,这些溪流种群与一个邻域分布的湖泊种群存在不同程度的基因流。在迷雾湖流域(加拿大不列颠哥伦比亚省),入湖溪流种群在形态上与湖泊种群不同,推测其与湖泊之间的基因流很少。然而,出湖溪流种群表现出中间型表型,可能从湖泊中经历了更多的基因流。我们首先利用微卫星数据证明,从湖泊流入入湖溪流的基因流很低,而流入出湖溪流的基因流很高,并且从湖泊流出的基因流沿着出湖溪流随距离保持相对恒定。接下来,我们将基因流数据与形态和栖息地数据相结合,以量化基因流对形态分化的影响。在一种方法中,我们假设入湖溪流中的三刺鱼表现出不受基因流限制的适应性良好的表型特征值。然后我们计算出湖溪流中给定栖息地观察到的表型与预期表型之间的偏差。在第二种方法中,我们对适应性分化的数量遗传模型进行了参数化。两种方法都表明基因流有很大影响,在出湖溪流中限制适应性达80 - 86%(即,在没有基因流的情况下,仅观察到预期形态分化的14 - 20%)。此类方法在其他分类群中可能有助于估计基因流在限制自然环境中适应性分化方面的重要程度。

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