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通过竞争实现物种形成:一项批判性综述。

Speciation through competition: a critical review.

作者信息

Polechová Jitka, Barton Nicholas H

机构信息

School of Biological Sciences, University of Edinburgh, King's Buildings, West Mains Road, Edinburgh EH9 3JT, United Kingdom.

出版信息

Evolution. 2005 Jun;59(6):1194-210.

Abstract

We examined causes of speciation in asexual populations in both sympatry and parapatry, providing an alternative explanation for the speciation patterns reported by Dieckmann and Doebeli (1999) and Doebeli and Dieckmann (2003). Both in sympatry and parapatry, they find that speciation occurs relatively easily. We reveal that in the sympatric clonal model, the equilibrium distribution is continuous and the disruptive selection driving evolution of discrete clusters is only transient. Hence, if discrete phenotypes are to remain stable in the sympatric sexual model, there should be some source of nontransient disruptive selection that will drive evolution of assortment. We analyze sexually reproducing populations using the Bulmer's infinitesimal model and show that cost-free assortment alone leads to speciation and disruptive selection only arises when the optimal distribution cannot be matched--in this example, because the phenotypic range is limited. In addition, Doebeli and Dieckmann's analyses assumed a high genetic variance and a high mutation rate. Thus, these theoretical models do not support the conclusion that sympatric speciation is a likely outcome of competition for resources. In their parapatric model (Doebeli and Dieckmann 2003), clustering into distinct phenotypes is driven by edge effects, rather than by frequency-dependent competition.

摘要

我们研究了同域和邻域中无性种群的物种形成原因,为迪特曼和德贝利(1999年)以及德贝利和迪特曼(2003年)报道的物种形成模式提供了另一种解释。在同域和邻域中,他们都发现物种形成相对容易发生。我们揭示,在同域克隆模型中,平衡分布是连续的,驱动离散簇进化的歧化选择只是暂时的。因此,如果离散表型要在同域有性模型中保持稳定,应该有某种非暂时的歧化选择来源来驱动分类的进化。我们使用布尔默的无穷小模型分析有性繁殖种群,并表明仅无成本的分类就会导致物种形成,并且只有当最优分布无法匹配时才会出现歧化选择——在这个例子中,是因为表型范围有限。此外,德贝利和迪特曼的分析假设了高遗传方差和高突变率。因此,这些理论模型并不支持同域物种形成是资源竞争可能结果的结论。在他们的邻域模型(德贝利和迪特曼,2003年)中,聚集成不同的表型是由边缘效应驱动的,而不是由频率依赖竞争驱动的。

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