首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >The phenomenology of niche evolution via quantitative traits in a black-hole sink.
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The phenomenology of niche evolution via quantitative traits in a black-hole sink.

机译:通过黑洞水槽中数量特征的生态位进化现象学。

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摘要

Previous studies of adaptive evolution in sink habitats (in which isolated populations of a species cannot persist deterministically) have highlighted the importance of demographic constraints in slowing such evolution, and of immigration in facilitating adaptation. These studies have relied upon either single-locus models or deterministic quantitative genetic formulations. We use individual-based simulations to examine adaptive evolution in a 'black-hole' sink environment where fitness is governed by a polygenic character. The simulations track both the number of individuals and their multi-locus genotypes, and incorporate, in a natural manner, both demographic and genetic stochastic processes. In agreement with previous studies, our findings reveal the central parts played by demographic constraints and immigration in adaptation within a sink (adaptation is more difficult in environments with low absolute fitness, and higher immigration can accelerate adaptation). A novel finding is that there is a 'punctuational' pattern in adaptive evolution in sink environments. Populations typically stay maladapted for a long time, and then rapidly shift into a relatively adapted state, in which persistence no longer depends upon recurrent immigration.
机译:先前对汇区栖息地(其中物种的孤立种群无法确定地持续存在)的适应性进化的研究强调了人口统计学的约束对于减缓这种进化的重要性,以及移民在促进适应性发展中的重要性。这些研究依赖于单基因座模型或确定性的定量遗传公式。我们使用基于个体的模拟来检验“黑洞”水槽环境中的适应性进化,在该环境中,适应性受多基因性状支配。模拟既跟踪个体的数量,又跟踪其多基因位基因型,并以自然方式纳入人口统计和遗传随机过程。与之前的研究一致,我们的研究结果揭示了人口制约和移民在水槽内的适应过程中所发挥的核心作用(在绝对适应度较低的环境中适应更加困难,而更高的移民则可以加速适应)。一个新颖的发现是,在汇环境中,适应性进化中存在“标点”模式。人口通常会长期处于适应不良状态,然后迅速转变为相对适应的状态,在这种状态下,持久性不再取决于反复的移民。

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