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种群对干扰的响应:特质分析的重要性——通过一个微宇宙实验得到例证。

Population responses to perturbations: the importance of trait-based analysis illustrated through a microcosm experiment.

机构信息

Department of Life Sciences, Imperial College London, Silwood Park, Ascot, Berkshire SL5 7PY, United Kingdom.

出版信息

Am Nat. 2012 May;179(5):582-94. doi: 10.1086/664999. Epub 2012 Apr 2.

Abstract

Environmental change continually perturbs populations from a stable state, leading to transient dynamics that can last multiple generations. Several long-term studies have reported changes in trait distributions along with demographic response to environmental change. Here we conducted an experimental study on soil mites and investigated the interaction between demography and an individual trait over a period of nonstationary dynamics. By following individual fates and body sizes at each life-history stage, we investigated how body size and population density influenced demographic rates. By comparing the ability of two alternative approaches, a matrix projection model and an integral projection model, we investigated whether consideration of trait-based demography enhances our ability to predict transient dynamics. By utilizing a prospective perturbation analysis, we addressed which stage-specific demographic or trait-transition rate had the greatest influence on population dynamics. Both body size and population density had important effects on most rates; however, these effects differed substantially among life-history stages. Considering the observed trait-demography relationships resulted in better predictions of a population's response to perturbations, which highlights the role of phenotypic plasticity in transient dynamics. Although the perturbation analyses provided comparable predictions of stage-specific elasticities between the matrix and integral projection models, the order of importance of the life-history stages differed between the two analyses. In conclusion, we demonstrate how a trait-based demographic approach provides further insight into transient population dynamics.

摘要

环境变化会不断使种群从稳定状态中偏离,从而导致可能持续多代的瞬时动态。几项长期研究报告了随着对环境变化的反应,特征分布的变化和种群动态的变化。在这里,我们对土壤螨进行了一项实验研究,并在非平稳动态期间研究了种群动态与个体特征之间的相互作用。通过跟踪每个生命史阶段的个体命运和体型大小,我们研究了体型大小和种群密度如何影响人口增长率。通过比较两种替代方法,矩阵投影模型和积分投影模型的能力,我们研究了考虑基于特征的种群动态是否可以提高我们预测瞬时动态的能力。通过利用前瞻性干扰分析,我们研究了哪些特定阶段的人口或特征转变率对种群动态的影响最大。体型大小和种群密度对大多数增长率都有重要影响;然而,这些影响在生命史阶段之间有很大差异。考虑到观察到的特征与种群动态的关系,可以更好地预测种群对干扰的反应,这突出了表型可塑性在瞬时动态中的作用。尽管扰动分析在矩阵和积分投影模型之间提供了可比的特定阶段弹性预测,但两种分析中生命史阶段的重要性顺序不同。总之,我们展示了基于特征的人口动态方法如何为瞬时种群动态提供更深入的见解。

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