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早期端粒长度何时预测生存?一项病例研究和荟萃分析。

When does early-life telomere length predict survival? A case study and meta-analysis.

机构信息

School of Biological Sciences, Monash University, Clayton, Victoria, Australia.

CNRS Sorbonne Université, UMR 7618, iEES Paris, Université Pierre et Marie Curie, Paris, France.

出版信息

Mol Ecol. 2023 Jun;32(11):3000-3013. doi: 10.1111/mec.16894. Epub 2023 Mar 7.

Abstract

Suboptimal conditions during development can shorten telomeres, the protective DNA caps on the end of chromosomes. Shorter early-life telomere length (TL) can indicate reduced somatic maintenance, leading to lower survival and shorter lifespan. However, despite some clear evidence, not all studies show a relationship between early-life TL and survival or lifespan, which may be due to differences in biology or study design (e.g., survival period measured). In superb fairy-wrens (Malurus cyaneus), we assessed whether early-life TL predicts mortality across different life-history stages (fledgling, juvenile, adult). However, in contrast to a similar study on a congener, early-life TL did not predict mortality across any life stage in this species. We then performed a meta-analysis including 32 effect sizes from 23 studies (15 birds and three mammals) to quantify the effect of early-life TL on mortality whilst taking into consideration potential sources of biological and methodological variation. Overall, the effect of early-life TL on mortality was significant, corresponding to a 15% reduction in mortality risk with each standard deviation increase in TL. However, the effect became weaker when correcting for publication bias. Contrary to our predictions, there was no evidence that effects of early-life TL on mortality varied with species lifespan or the period over which survival was measured. However, negative effects of early-life TL on mortality risk were pervasive throughout life. These results imply that effects of early-life TL on mortality are more likely to be context-dependent than age-dependent, although substantial power and publication bias issues highlight the need for more research.

摘要

发育过程中的不理想条件会缩短端粒,即染色体末端的保护性 DNA 帽。端粒在生命早期较短(TL)可能表明体细胞维护减少,导致生存能力降低和寿命缩短。然而,尽管有一些明确的证据,但并非所有研究都表明生命早期 TL 与生存或寿命之间存在关系,这可能是由于生物学或研究设计的差异(例如,测量的生存期)。在超级仙女鸟(Malurus cyaneus)中,我们评估了生命早期 TL 是否可以预测不同生命史阶段(雏鸟、幼鸟、成鸟)的死亡率。然而,与类似的同属种研究相反,在这个物种中,生命早期 TL 并没有预测任何生命阶段的死亡率。然后,我们进行了荟萃分析,包括来自 23 项研究(15 种鸟类和 3 种哺乳动物)的 32 个效应量,以量化生命早期 TL 对死亡率的影响,同时考虑到生物学和方法学变异的潜在来源。总体而言,生命早期 TL 对死亡率的影响是显著的,TL 每增加一个标准差,死亡率的风险就降低 15%。然而,当校正出版偏倚时,这种影响会减弱。与我们的预测相反,没有证据表明生命早期 TL 对死亡率的影响随物种寿命或测量生存的时期而变化。然而,生命早期 TL 对死亡率风险的负面影响是普遍存在的。这些结果表明,生命早期 TL 对死亡率的影响更可能是依赖于环境的,而不是依赖于年龄的,尽管存在大量的权力和出版偏见问题,这突出了需要更多的研究。

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