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由生态进化和景观动态相互作用驱动的适应性辐射。

Adaptive radiation driven by the interplay of eco-evolutionary and landscape dynamics.

机构信息

Institut des Sciences de l'Évolution de Montpellier, Univ Montpellier II, CNRS UMR 5554, Montpellier, France.

出版信息

Evolution. 2013 May;67(5):1291-306. doi: 10.1111/evo.12008. Epub 2012 Dec 20.

Abstract

We investigate an individual-based model of adaptive radiation based on the biogeographical changes of the Great African Lakes where cichlid fishes radiated. In our model, the landscape consists of a mosaic of three habitat types which may or may not be separated by geographic barriers. We study the effect of the alternation between allopatry and sympatry called landscape dynamics. We show that landscape dynamics can generate a significantly higher diversity than allopatric or sympatric speciation alone. Diversification is mainly due to the joint action of allopatric, ecological divergence, and of disruptive selection increasing assortative mating and allowing for the coexistence in sympatry of species following reinforcement or character displacement. Landscape dynamics possibly increase diversity at each landscape change. The characteristics of the radiation depend on the speed of landscape dynamics and of the number of geographically isolated regions at steady state. Under fast dynamics of a landscape with many fragments, the model predicts a high diversity, possibly subject to the temporary collapse of all species into a hybrid swarm. When fast landscape dynamics induce the recurrent fusion of several sites, diversity is moderate but very stable over time. Under slow landscape dynamics, diversification proceeds similarly, although at a slower pace.

摘要

我们研究了一种基于大非洲湖生物地理变化的适应性辐射的个体基础模型,那里的慈鲷鱼发生了辐射。在我们的模型中,景观由三种栖息地类型的镶嵌体组成,这些栖息地类型可能或可能不被地理障碍隔开。我们研究了被称为景观动态的异地和同域交替的影响。我们表明,景观动态可以产生比异地或同域物种形成单独产生的更高的多样性。多样化主要是由于异地、生态分歧和破坏选择的共同作用,增加了交配的同型交配,并允许在强化或特征替代之后的物种在同域中共存。景观动态可能会在每次景观变化时增加多样性。辐射的特征取决于景观动态的速度和稳定状态下地理隔离区域的数量。在具有许多碎片的快速景观动态下,模型预测了高度的多样性,可能会暂时导致所有物种都陷入杂种群。当快速的景观动态导致几个地点的反复融合时,多样性是适度的,但随着时间的推移非常稳定。在缓慢的景观动态下,多样化的过程类似,尽管速度较慢。

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