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A Quantitative Genetic Signature of Senescence in a Short-Lived Perennial Plant

机译:短命多年生植物衰老的定量遗传特征。

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摘要

The evolution of senescence (the physiological decline of organisms with age) poses an apparent paradox because it represents a failure of natural selection to increase the survival and reproductive performance of organisms. The paradox can be resolved if natural selection becomes less effective with age, because the death of postreproductive individuals should have diminished effects on Darwinian fitness [1,2]. A substantial body of empirical work is consistent with this prediction for animals, which transmit their genes to progeny via an immortal germline. However, such evidence is still lacking in plants, which lack a germline and whose reproduction is diffuse and modular across the soma. Here, we provide experimental evidence for a genetic basisof senescence in the short-lived perennial plant Silene latifolia. Our pedigree-based analysis revealed a marked increase with age in the additive genetic variance of traits closely associated with fitness. This result thus extends to plants the quantitative genetic support for the evolutionary theory of senescence.
机译:衰老的演变(生物体随着年龄的增长而生理衰退)构成了一个明显的悖论,因为它代表了自然选择无法增加生物体的存活和生殖性能。如果自然选择随着年龄的增长而变得无效,则可以解决这一悖论,因为生殖后个体的死亡对达尔文健康的影响应该减弱[1,2]。大量的经验工作与对动物的这一预测是一致的,它们通过永生种系将其基因传递给后代。但是,在植物中仍然缺乏这样的证据,它们缺乏种系,并且其繁殖在整个体中是分散的和模块化的。在这里,我们提供了短命多年生植物Silene latifolia衰老的遗传基础的实验证据。我们基于谱系的分析显示,与适应性密切相关的性状的加性遗传方差随年龄增长显着。因此,该结果扩展到植物对衰老进化理论的定量遗传支持。

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