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性二型现象和物种形成在两个生态位上:来自自然的模式和理论预测。

Sexual dimorphism and speciation on two ecological coins: patterns from nature and theoretical predictions.

机构信息

Department of Zoology, Michigan State University, Kellogg Biological Station, 3700 E Gull Lake Drive, Hickory Corners, Michigan 49060, USA.

出版信息

Evolution. 2011 Sep;65(9):2553-71. doi: 10.1111/j.1558-5646.2011.01332.x. Epub 2011 May 20.

Abstract

Adaptive divergence of phenotypes, such as sexual dimorphism or adaptive speciation, can result from disruptive selection via competition for limited resources. Theory indicates that speciation and sexual dimorphism can result from identical ecological conditions, but co-occurrence is unlikely because whichever evolves first should dissipate the disruptive selection necessary to drive evolution of the other. Here, we consider ecological conditions in which disruptive selection can act along multiple ecological axes. Speciation in lake populations of threespine sticklebacks (Gasterosteus aculeatus) has been attributed to disruptive selection due to competition for resources. Head shape in sticklebacks is thought to reflect adaptation to different resource acquisition strategies. We measure sexual dimorphism and species variation in head shape and body size in stickleback populations in two lakes in British Columbia, Canada. We find that sexual dimorphism in head shape is greater than interspecific differences. Using a numerical simulation model that contains two axes of ecological variation, we show that speciation and sexual dimorphism can readily co-occur when the effects of loci underlying sexually dimorphic traits are orthogonal to those underlying sexually selected traits.

摘要

表型的适应性分化,如性二型或适应性物种形成,可能是由于对有限资源的竞争而产生的破坏性选择的结果。理论表明,物种形成和性二型可以由相同的生态条件导致,但它们不太可能同时发生,因为无论哪一个首先进化,都会消除驱动另一个进化的破坏性选择。在这里,我们考虑了破坏性选择可以沿多个生态轴起作用的生态条件。由于资源竞争,三刺鱼(Gasterosteus aculeatus)的湖泊种群的物种形成归因于破坏性选择。刺鱼的头部形状被认为反映了对不同资源获取策略的适应。我们在加拿大不列颠哥伦比亚省的两个湖泊中测量了刺鱼种群的性二型和头部形状以及体型的种间差异。我们发现头部形状的性二型性大于种间差异。使用包含两个生态变异轴的数值模拟模型,我们表明,当控制性二型特征的基因座的作用与控制性选择特征的基因座正交时,物种形成和性二型很容易同时发生。

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