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终生繁殖产出:个体随机性、方差及敏感性分析

Lifetime reproductive output: individual stochasticity, variance, and sensitivity analysis.

作者信息

van Daalen Silke F, Caswell Hal

机构信息

Institute for Biodiversity and Ecosystem Dynamics, University of Amsterdam, PO Box 94248, 1090 GE Amsterdam, The Netherlands.

出版信息

Theor Ecol. 2017;10(3):355-374. doi: 10.1007/s12080-017-0335-2. Epub 2017 Apr 17.

Abstract

Lifetime reproductive output (LRO) determines per-generation growth rates, establishes criteria for population growth or decline, and is an important component of fitness. Empirical measurements of LRO reveal high variance among individuals. This variance may result from genuine heterogeneity in individual properties, or from individual stochasticity, the outcome of probabilistic demographic events during the life cycle. To evaluate the extent of individual stochasticity requires the calculation of the statistics of LRO from a demographic model. Mean LRO is routinely calculated (as the net reproductive rate), but the calculation of variances has only recently received attention. Here, we present a complete, exact, analytical, closed-form solution for all the moments of LRO, for age- and stage-classified populations. Previous studies have relied on simulation, iterative solutions, or closed-form analytical solutions that capture only part of the sources of variance. We also present the sensitivity and elasticity of all of the statistics of LRO to parameters defining survival, stage transitions, and (st)age-specific fertility. Selection can operate on variance in LRO only if the variance results from genetic heterogeneity. The potential opportunity for selection is quantified by Crow's index , the ratio of the variance to the square of the mean. But variance due to individual stochasticity is only an opportunity for selection. In a comparison of a range of age-classified models for human populations, we find that proportional increases in mortality have very small effects on the mean and variance of LRO, but large positive effects on . Proportional increases in fertility increase both the mean and variance of LRO, but reduce . For a size-classified tree population, the elasticity of both mean and variance of LRO to stage-specific mortality are negative; the elasticities to stage-specific fertility are positive.

摘要

终生繁殖产出(LRO)决定了每一代的增长率,确立了种群增长或衰退的标准,并且是适合度的一个重要组成部分。对LRO的实证测量揭示了个体间的高变异性。这种变异性可能源于个体属性的真正异质性,或者源于个体随机性,即生命周期中概率性人口统计学事件的结果。要评估个体随机性的程度需要从人口统计学模型计算LRO的统计量。平均LRO通常被计算(作为净繁殖率),但方差的计算直到最近才受到关注。在这里,我们给出了年龄和阶段分类种群LRO所有矩的完整、精确、解析、封闭形式的解。以前的研究依赖于模拟、迭代解或仅捕捉部分方差来源的封闭形式解析解。我们还给出了LRO所有统计量对定义生存、阶段转换以及年龄(或阶段)特异性生育率的参数的敏感性和弹性。只有当方差源于遗传异质性时,选择才能作用于LRO的方差。选择的潜在机会由克劳指数量化,即方差与均值平方的比率。但由于个体随机性导致的方差只是一个选择机会。在对一系列人类年龄分类模型的比较中,我们发现死亡率的成比例增加对LRO的均值和方差影响非常小,但对克劳指数有很大的正向影响。生育率的成比例增加会提高LRO的均值和方差,但会降低克劳指数。对于大小分类的树木种群,LRO的均值和方差对阶段特异性死亡率的弹性均为负;对阶段特异性生育率的弹性为正。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fbe/6979506/ddaec507a20b/12080_2017_335_Fig1_HTML.jpg

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