Department of Biology, Trent University, Peterborough, ON, Canada.
J Evol Biol. 2010 Apr;23(4):776-82. doi: 10.1111/j.1420-9101.2010.01947.x. Epub 2010 Feb 12.
The extent to which divergent selection can drive genome-wide population differentiation remains unclear. Theory predicts that in the face of ongoing gene flow, population differentiation should be apparent only at those markers that are directly or indirectly (i.e. through linkage) under selection. However, if reproductive barriers limit gene flow, genome-wide population differentiation may occur even in geographically proximate populations. Some insight into the link between selection and genetic differentiation in the presence of ongoing gene flow can come from long-term experiments such as The Park Grass Experiment, which has been running for over 150 years, and provides a unique example of a heterogeneous environment with a long and detailed history. Fertilizer treatments applied in the Park Grass Experiment have led to rapid evolutionary change in sweet vernal grass Anthoxanthum odoratum, but until now, nothing was known of how these changes would be reflected in neutral molecular markers. We have genotyped ten A. odoratum populations from the Park Grass Experiment using Amplified Fragment Length Polymorphisms (AFLPs). Our data show that nutrient additions have resulted in genome-wide divergence among plots despite the high potential for ongoing gene flow. This provides a well-documented example of concordance between genomes and environmental conditions that has arisen in continuous populations across a time span of fewer than 75 generations.
选择的程度可以在多大程度上推动全基因组的种群分化尚不清楚。理论预测,在持续的基因流面前,种群分化应该只出现在那些直接或间接(即通过连锁)受到选择的标记上。然而,如果生殖障碍限制了基因流,即使在地理上相近的种群中,也可能发生全基因组的种群分化。在持续的基因流中,选择和遗传分化之间的联系可以从长期实验中获得一些见解,例如已经运行了 150 多年的“帕克草实验”,它为具有长期详细历史的异质环境提供了一个独特的例子。帕克草实验中的肥料处理导致了甜茅Anthoxanthum odoratum 的快速进化变化,但直到现在,人们还不知道这些变化将如何反映在中性分子标记上。我们使用扩增片段长度多态性(AFLPs)对来自帕克草实验的 10 个 A. odoratum 种群进行了基因型分析。我们的数据表明,尽管存在持续的基因流的高潜力,但养分添加导致了各实验小区之间的全基因组分化。这提供了一个在不到 75 代的时间跨度内,在连续种群中出现的基因组与环境条件之间一致性的很好的例子。