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Molecular mechanisms regulating lifespan and environmental stress responses

机译:调节寿命和环境应激反应的分子机制

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摘要

Throughout life, organisms are subjected to a variety of environmental perturbations, including temperature, nutrient conditions, and chemical agents. Exposure to external signals induces diverse changes in the physiological conditions of organisms. Genetically identical individuals exhibit highly phenotypic variations, which suggest that environmental variations among individuals can affect their phenotypes in a cumulative and inhomogeneous manner. The organismal phenotypes mediated by environmental conditions involve development, metabolic pathways, fertility, pathological processes, and even lifespan. It is clear that genetic factors influence the lifespan of organisms. Likewise, it is now increasingly recognized that environmental factors also have a large impact on the regulation of aging. Multiple studies have reported on the contribution of epigenetic signatures to the long-lasting phenotypic effects induced by environmental signals. Nevertheless, the mechanism of how environmental stimuli induce epigenetic changes at specific loci, which ultimately elicit phenotypic variations, is still largely unknown. Intriguingly, in some cases, the altered phenotypes associated with epigenetic changes could be stably passed on to the next generations. In this review, we discuss the environmental regulation of organismal viability, that is, longevity and stress resistance, and the relationship between this regulation and epigenetic factors, focusing on studies in the nematode C. elegans.
机译:在整个生命过程中,生物都会受到各种环境干扰,包括温度,营养条件和化学试剂。暴露于外部信号会引起生物体生理状况的多种变化。遗传上相同的个体表现出高度的表型变异,这表明个体之间的环境变异会以累积和不均匀的方式影响其表型。环境条件介导的生物表型涉及发育,代谢途径,繁殖力,病理过程,甚至寿命。显然,遗传因素会影响生物的寿命。同样,现在越来越认识到,环境因素也对老化的调节有很大影响。多项研究报告了表观遗传学特征对环境信号诱导的持久表型效应的贡献。尽管如此,环境刺激如何在特定基因座上诱导表观遗传变化并最终引发表型变异的机制仍是未知之数。有趣的是,在某些情况下,与表观遗传学改变相关的表型改变可以稳定地传给下一代。在这篇综述中,我们讨论了线虫秀丽隐杆线虫的研究,讨论了生物活性的环境调节,即长寿和抗逆性,以及这种调节与表观遗传因素之间的关系。

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