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首页> 外文期刊>Proceedings of the Nutrition Society >Plasticity of lifespan: a reaction norm perspective
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Plasticity of lifespan: a reaction norm perspective

机译:寿命的可塑性:反应规范视角

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It is a well-appreciated fact that in many organisms the process of ageing reacts highly plastically, so that lifespan increases or decreases when the environment changes. The perhaps best-known example of such lifespan plasticity is dietary restriction (DR), a phenomenon whereby reduced food intake without malnutrition extends lifespan (typically at the expense of reduced fecundity) and which has been documented in numerous species, from invertebrates to mammals. For the evolutionary biologist, DR and other cases of lifespan plasticity are examples of a more general phenomenon called phenotypic plasticity, the ability of a single genotype to produce different phenotypes (e. g. lifespan) in response to changes in the environment (e. g. changes in diet). To analyse phenotypic plasticity, evolutionary biologists (and epidemiologists) often use a conceptual and statistical framework based on reaction norms (genotype-specific response curves) and genotype x environment interactions (G x E; differences in the plastic response among genotypes), concepts that biologists who are working on molecular aspects of ageing are usually not familiar with. Here I briefly discuss what has been learned about lifespan plasticity or, more generally, about plasticity of somatic maintenance and survival ability. In particular, I argue that adopting the conceptual framework of reaction norms and G x E interactions, as used by evolutionary biologists, is crucially important for our understanding of the mechanisms underlying DR and other forms of lifespan or survival plasticity.
机译:这是一个良好的感谢,在许多生物中,老化的过程高度塑性反应,因此在环境变化时寿命增加或减少。可能是这种寿命可塑性的最着名的例子是饮食限制(DR),一种现象,即没有营养不良的食物摄入量减少延伸(通常以减少的繁殖力),并且已经以许多物种记录在无脊椎动物到哺乳动物。对于进化生物学家,博士和其他寿命塑性的病例是一种叫做表型可塑性的更通用现象的示例,单个基因型产生不同表型(例如寿命)的能力,以应对环境的变化(例如饮食的变化) 。为了分析表型可塑性,进化生物学家(和流行病学家)通常使用基于反应规范(基因型特异性响应曲线)和基因型X环境相互作用的概念和统计框架(G X E;基因型之间的塑性反应差异),概念正在致电的分子方面的生物学家通常不熟悉。在这里,我简要介绍了关于寿命可塑性的知识或更常见的是躯体维持和生存能力的可塑性。特别是,我认为采用进化生物学家所使用的反应规范和G X E相互作用的概念框架对于我们对德国博士和其他形式的寿命或生存可塑性的机制来说是至关重要的。

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