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在野生幼年鲑鱼中,亲代性状、环境恶劣程度与生长速率之间在决定端粒长度方面的相互作用。

Interactions between parental traits, environmental harshness and growth rate in determining telomere length in wild juvenile salmon.

作者信息

McLennan D, Armstrong J D, Stewart D C, Mckelvey S, Boner W, Monaghan P, Metcalfe N B

机构信息

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

Marine Scotland - Science, Freshwater Laboratory, Faskally, Pitlochry, PH16 5LB, UK.

出版信息

Mol Ecol. 2016 Nov;25(21):5425-5438. doi: 10.1111/mec.13857. Epub 2016 Oct 14.

Abstract

A larger body size confers many benefits, such as increased reproductive success, ability to evade predators and increased competitive ability and social status. However, individuals rarely maximize their growth rates, suggesting that this carries costs. One such cost could be faster attrition of the telomeres that cap the ends of eukaryotic chromosomes and play an important role in chromosome protection. A relatively short telomere length is indicative of poor biological state, including poorer tissue and organ performance, reduced potential longevity and increased disease susceptibility. Telomere loss during growth may also be accelerated by environmental factors, but these have rarely been subjected to experimental manipulation in the natural environment. Using a wild system involving experimental manipulations of juvenile Atlantic salmon Salmo salar in Scottish streams, we found that telomere length in juvenile fish was influenced by parental traits and by direct environmental effects. We found that faster-growing fish had shorter telomeres and there was a greater cost (in terms of reduced telomere length) if the growth occurred in a harsher environment. We also found a positive association between offspring telomere length and the growth history of their fathers (but not mothers), represented by the number of years fathers had spent at sea. This suggests that there may be long-term consequences of growth conditions and parental life history for individual longevity.

摘要

更大的体型带来许多益处,比如繁殖成功率提高、躲避捕食者的能力增强、竞争能力和社会地位提升。然而,个体很少将其生长速率最大化,这表明这会带来代价。其中一个代价可能是端粒更快地损耗,端粒位于真核染色体末端,对染色体保护起着重要作用。相对较短的端粒长度表明生物状态不佳,包括组织和器官功能较差、潜在寿命缩短以及疾病易感性增加。生长过程中端粒的丢失也可能因环境因素而加速,但在自然环境中这些因素很少受到实验操控。利用一个涉及对苏格兰溪流中幼年大西洋鲑(Salmo salar)进行实验操控的野生系统,我们发现幼年鱼的端粒长度受亲本性状和直接环境效应的影响。我们发现生长较快的鱼端粒较短,并且如果生长发生在更恶劣的环境中,代价(以端粒长度缩短衡量)会更大。我们还发现子代端粒长度与它们父亲(而非母亲)的生长史之间存在正相关,父亲在海上度过的年数代表其生长史。这表明生长条件和亲本生活史可能对个体寿命产生长期影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e885/5091633/73780086eedc/MEC-25-5425-g001.jpg

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