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生命参数个体异质性和人口随机性。

Individual heterogeneity in vital parameters and demographic stochasticity.

机构信息

Centre for Conservation Biology, Department of Biology, Norwegian University of Science and Technology, Trondheim, Norway.

出版信息

Am Nat. 2008 Apr;171(4):455-67. doi: 10.1086/528965.

Abstract

Most population models assume that individuals have equal opportunities for survival and reproduction, although many natural populations consist of individuals with different vital parameters that remain different over time. Individual heterogeneity in vital parameters, which may depend on age or stage, can alter many population characteristics compared with a homogeneous population, affecting both deterministic and stochastic properties of the population process. Demographic variance is an important parameter influenced by heterogeneity. However, whether heterogeneity leads to increased or decreased demographic variance has been an unresolved question, except for special cases. Here, we present a general stochastic matrix model for a heterogeneous population that allows us to examine effects of heterogeneity on population dynamics, even when the degree of heterogeneity depends on age. Using this model, we found that the demographic variance may increase, decrease, or remain unaltered compared with a homogeneous comparison model, depending on the vital parameter values and on how these are distributed among individuals at each time step. Furthermore, if the reproductive value is the same for all individuals, heterogeneity has no effect on the demographic variance. Thus, we provide a general theoretical framework for analyzing how individual heterogeneity caused by different biological mechanisms affects fluctuations of especially small populations.

摘要

大多数种群模型假设个体具有平等的生存和繁殖机会,尽管许多自然种群由具有不同生命参数的个体组成,这些参数随时间保持不同。与同质种群相比,生命参数的个体异质性(可能取决于年龄或阶段)会改变许多种群特征,影响种群过程的确定性和随机性特征。人口方差是一个受异质性影响的重要参数。然而,除了特殊情况外,异质性是否会导致人口方差增加或减少一直是一个悬而未决的问题。在这里,我们提出了一个用于异质种群的一般随机矩阵模型,该模型使我们能够研究异质性对种群动态的影响,即使异质性的程度取决于年龄。使用该模型,我们发现与同质比较模型相比,人口方差可能会增加、减少或保持不变,具体取决于生命参数值以及它们在每个时间步如何在个体之间分布。此外,如果所有个体的生殖值相同,异质性对人口方差没有影响。因此,我们提供了一个一般的理论框架,用于分析由不同生物学机制引起的个体异质性如何影响特别是小种群的波动。

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