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衰老是否是有机生命的必然特征还是一种进化适应?

Is Aging an Inevitable Characteristic of Organic Life or an Evolutionary Adaptation?

机构信息

Department of Microbiology and Immunology, University of California San Francisco, CA, USA.

University of California Berkeley, CA, USA.

出版信息

Biochemistry (Mosc). 2022 Dec;87(12):1413-1445. doi: 10.1134/S0006297922120021.

Abstract

Aging is an evolutionary paradox. Several hypotheses have been proposed to explain it, but none fully explains all the biochemical and ecologic data accumulated over decades of research. We suggest that senescence is a primitive immune strategy which acts to protect an individual's kin from chronic infections. Older organisms are exposed to pathogens for a longer period of time and have a higher likelihood of acquiring infectious diseases. Accordingly, the parasitic load in aged individuals is higher than in younger ones. Given that the probability of pathogen transmission is higher within the kin, the inclusive fitness cost of infection might exceed the benefit of living longer. In this case, programmed lifespan termination might be an evolutionarily stable strategy. Here, we discuss the classical evolutionary hypotheses of aging and compare them with the pathogen control hypothesis, discuss the consistency of these hypotheses with existing empirical data, and present a revised conceptual framework to understand the evolution of aging.

摘要

衰老是一个进化悖论。有几个假说被提出来解释它,但没有一个能完全解释几十年来积累的所有生化和生态学数据。我们提出,衰老(senescence)是一种原始的免疫策略,旨在保护个体的亲属免受慢性感染。年老的个体暴露于病原体的时间更长,更有可能患上传染病。因此,老年个体的寄生虫负担比年轻个体更高。鉴于亲缘内病原体传播的概率更高,感染的内含适合度成本可能超过长寿的益处。在这种情况下,程序化的寿命终止可能是一种进化稳定策略。在这里,我们讨论了衰老的经典进化假说,并将其与病原体控制假说进行了比较,讨论了这些假说与现有经验数据的一致性,并提出了一个修正的概念框架来理解衰老的进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26da/9839256/389566136345/10541_2022_2399_Fig1_HTML.jpg

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