Department of Organismic and Evolutionary Biology, Harvard University, Cambridge, Massachusetts, United States of America.
PLoS One. 2010 Sep 27;5(9):e13019. doi: 10.1371/journal.pone.0013019.
Pacific salmon include several species that are both commercially important and endangered. Understanding the causes of loss in genetic variation is essential for designing better conservation strategies. Here we use a coalescent approach to analyze a model of the complex life history of salmon, and derive the coalescent effective population (CES). With the aid of Kronecker products and a convergence theorem for Markov chains with two time scales, we derive a simple formula for the CES and thereby establish its existence. Our results may be used to address important questions regarding salmon biology, in particular about the loss of genetic variation. To illustrate the utility of our approach, we consider the effects of fluctuations in population size over time. Our analysis enables the application of several tools of coalescent theory to the case of salmon.
太平洋鲑鱼包括一些商业上重要和濒危的物种。了解遗传变异丧失的原因对于设计更好的保护策略至关重要。在这里,我们使用合并方法分析鲑鱼复杂生活史的模型,并推导出合并有效种群 (CES)。借助 Kronecker 积和两个时间尺度上的马尔可夫链的收敛定理,我们推导出 CES 的一个简单公式,并由此证明其存在。我们的结果可用于解决鲑鱼生物学中的一些重要问题,特别是关于遗传变异丧失的问题。为了说明我们方法的实用性,我们考虑了种群大小随时间波动的影响。我们的分析使合并理论的几个工具能够应用于鲑鱼的情况。