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母体效应衰老的进化。

Evolution of maternal effect senescence.

作者信息

Moorad Jacob A, Nussey Daniel H

机构信息

Institute of Evolutionary Biology, University of Edinburgh, Edinburgh EH9 3FL, United Kingdom

Institute of Evolutionary Biology, University of Edinburgh, Edinburgh EH9 3FL, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2016 Jan 12;113(2):362-7. doi: 10.1073/pnas.1520494113. Epub 2015 Dec 29.

Abstract

Increased maternal age at reproduction is often associated with decreased offspring performance in numerous species of plants and animals (including humans). Current evolutionary theory considers such maternal effect senescence as part of a unified process of reproductive senescence, which is under identical age-specific selective pressures to fertility. We offer a novel theoretical perspective by combining William Hamilton's evolutionary model for aging with a quantitative genetic model of indirect genetic effects. We demonstrate that fertility and maternal effect senescence are likely to experience different patterns of age-specific selection and thus can evolve to take divergent forms. Applied to neonatal survival, we find that selection for maternal effects is the product of age-specific fertility and Hamilton's age-specific force of selection for fertility. Population genetic models show that senescence for these maternal effects can evolve in the absence of reproductive or actuarial senescence; this implies that maternal effect aging is a fundamentally distinct demographic manifestation of the evolution of aging. However, brief periods of increasingly beneficial maternal effects can evolve when fertility increases with age faster than cumulative survival declines. This is most likely to occur early in life. Our integration of theory provides a general framework with which to model, measure, and compare the evolutionary determinants of the social manifestations of aging. Extension of our maternal effects model to other ecological and social contexts could provide important insights into the drivers of the astonishing diversity of lifespans and aging patterns observed among species.

摘要

在许多动植物物种(包括人类)中,繁殖时母亲年龄的增加通常与后代表现的下降有关。当前的进化理论将这种母体效应衰老视为生殖衰老统一过程的一部分,该过程受到与生育力相同的年龄特异性选择压力。我们通过将威廉·汉密尔顿的衰老进化模型与间接遗传效应的数量遗传模型相结合,提供了一种新颖的理论视角。我们证明,生育力和母体效应衰老可能会经历不同模式的年龄特异性选择,因此可以进化出不同的形式。应用于新生儿生存,我们发现对母体效应的选择是年龄特异性生育力和汉密尔顿年龄特异性生育力选择力的产物。群体遗传模型表明,这些母体效应的衰老可以在没有生殖或寿命衰老的情况下进化;这意味着母体效应衰老从根本上说是衰老进化的一种独特的人口统计学表现。然而,当生育力随年龄增长的速度快于累积生存率下降的速度时,短暂的时期内母体效应会越来越有益,这种情况最有可能发生在生命早期。我们的理论整合提供了一个通用框架,可用于对衰老社会表现的进化决定因素进行建模、测量和比较。将我们的母体效应模型扩展到其他生态和社会背景中,可能会为观察到的物种间惊人的寿命和衰老模式多样性的驱动因素提供重要见解。

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本文引用的文献

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THE EVOLUTION OF MATERNAL CHARACTERS.母体特征的演变
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