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e???-selection, e???-selection, effectiveness, and tolerance in competition: density-dependent selection revisited

机译:e ???选择,e ???选择,有效性和竞争耐受性:重新讨论密度依赖性选择

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In the Drosophila literature, selection for faster development and selection for adapting to high density are often confounded, leading, for example, to the expectation that selection for faster development should also lead to higher competitive ability. At the same time, results from experimental studies on evolution at high density do not agree with many of the predictions from classical density-dependent selection theory. We put together a number of theoretical and empirical results from the literature, and some new experimental results on Drosophila populations successfully subjected to selection for faster development, to argue for a broader interpretation of density-dependent selection. We show that incorporating notions of e???-selection, and the division of competitive ability into effectiveness and tolerance components, into the concept of density-dependent selection yields a formulation that allows for a better understanding of the empirical results. We also use this broader formulation to predict that selection for faster development in Drosophila should, in fact, lead to the correlated evolution of decreased competitive ability, even though it does lead to the evolution of greater efficiency and higher population growth rates at high density when in monotypic culture.
机译:在果蝇文献中,经常会混淆为更快发展而进行的选择和为适应高密度而进行的选择,例如,导致期望加快发展的选择也应导致更高的竞争能力。同时,高密度演化实验研究的结果与经典的依赖密度的选择理论的许多预测不一致。我们结合了文献中的许多理论和经验结果,以及对果蝇种群成功进行选择以加快发展的一些新实验结果,以期对密度依赖性选择进行更广泛的解释。我们表明,将e-选择的概念以及将竞争能力分为有效性和耐受性成分的概念纳入密度依赖型选择的概念中,得出的公式可以更好地理解经验结果。我们还使用这种更广泛的表述来预测果蝇更快发展的选择实际上会导致竞争能力下降的相关演变,即使它确实导致了高密度时更高的效率和更高的人口增长率的演变。在单型文化中。

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