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生长加速导致生命后期端粒缩短加速。

Growth acceleration results in faster telomere shortening later in life.

机构信息

Institute of Biodiversity, Animal Health and Comparative Medicine, University of Glasgow, Graham Kerr Building, Glasgow G12 8QQ, UK.

出版信息

Proc Biol Sci. 2021 Aug 11;288(1956):20211118. doi: 10.1098/rspb.2021.1118.

Abstract

There is a wealth of evidence for a lifespan penalty when environmental conditions influence an individual's growth trajectory, such that growth rate is accelerated to attain a target size within a limited time period. Given this empirically demonstrated relationship between accelerated growth and lifespan, and the links between lifespan and telomere dynamics, increased telomere loss could underpin this growth-lifespan trade. We experimentally modified the growth trajectory of nestling zebra finches (), inducing a group of nestlings to accelerate their growth between 7 and 15 days of age, the main phase of body growth. We then sequentially measured their telomere length in red blood cells at various time points from 7 days to full adulthood (120 days). Accelerated growth between 7 and 15 days was not associated with a detectable increase in telomere shortening during this period compared with controls. However, only in the treatment group induced to show growth acceleration was the rate of growth during the experimental period positively related to the amount of telomere shortening between 15 and 120 days. Our findings provide evidence of a long-term influence of growth rate on later-life telomere shortening, but only when individuals have accelerated growth in response to environmental circumstances.

摘要

当环境条件影响个体的生长轨迹时,会产生大量的寿命惩罚证据,例如通过加速生长速率在有限的时间内达到目标大小。鉴于加速生长和寿命之间的这种经验关系,以及寿命和端粒动力学之间的联系,端粒丢失的增加可能是这种生长-寿命权衡的基础。我们通过实验改变了雏鸟斑马雀()的生长轨迹,在 7 到 15 天龄(身体生长的主要阶段)之间诱导一组雏鸟加速生长。然后,我们从 7 天到完全成年(120 天)的各个时间点连续测量了它们红细胞中的端粒长度。与对照组相比,7 至 15 天的加速生长并没有导致端粒缩短的可检测增加。然而,只有在被诱导表现出生长加速的治疗组中,实验期间的生长速率与 15 至 120 天之间的端粒缩短量呈正相关。我们的研究结果提供了生长速率对后期寿命端粒缩短的长期影响的证据,但仅当个体因环境情况而加速生长时才会出现这种情况。

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