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谈论我的这一代人:环境变异性与队列效应。

Talkin' 'bout my generation: environmental variability and cohort effects.

作者信息

Beckerman Andrew P, Benton Tim G, Lapsley Craig T, Koesters Nils

机构信息

Institute of Biological Sciences, University of Stirling, Stirling FK9 4LA, United Kingdom.

出版信息

Am Nat. 2003 Dec;162(6):754-67. doi: 10.1086/381056. Epub 2003 Dec 4.

Abstract

In variable environments, it is probable that environmental conditions in the past can influence demographic performance now. Cohort effects occur when these delayed life-history effects are synchronized among groups of individuals in a population. Here we show how plasticity in density-dependent demographic traits throughout the life cycle can lead to cohort effects and that there can be substantial population dynamic consequences of these effects. We show experimentally that density and food conditions early in development can influence subsequent juvenile life-history traits. We also show that conditions early in development can interact with conditions at maturity to shape future adult performance. In fact, conditions such as food availability and density at maturity, like conditions early in development, can generate cohort effects in mature stages. Based on these data, and on current theory about the effects of plasticity generated by historical environments, we make predictions about the consequences of such changes on density-dependent demography and on mite population dynamics. We use a stochastic cohort effects model to generate a range of population dynamics. In accordance with the theory, we find the predicted changes in the strength of density dependence and associated changes in population dynamics and population variability.

摘要

在多变的环境中,过去的环境条件很可能会影响当下的种群统计学表现。当这些延迟的生活史效应在种群中的个体群体间同步时,就会出现队列效应。在这里,我们展示了整个生命周期中密度依赖的种群统计学特征的可塑性如何导致队列效应,以及这些效应可能会对种群动态产生重大影响。我们通过实验表明,发育早期的密度和食物条件会影响随后的幼体生活史特征。我们还表明,发育早期的条件可以与成熟时的条件相互作用,从而塑造未来成年个体的表现。事实上,成熟时的食物可利用性和密度等条件,与发育早期的条件一样,会在成熟阶段产生队列效应。基于这些数据以及当前关于历史环境产生的可塑性效应的理论,我们预测了此类变化对密度依赖种群统计学以及螨虫种群动态的影响。我们使用一个随机队列效应模型来生成一系列种群动态。根据该理论,我们发现了密度依赖强度的预测变化以及种群动态和种群变异性的相关变化。

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