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端粒长度变异性的遗传性:一切都与环境有关!

Heritability of telomere variation: it is all about the environment!

机构信息

Faculty of Biological Sciences, School of Biology, University of Leeds, Leeds LS2 9JT, UK.

School of Biological Sciences, University of East Anglia, Norwich Research Park, Norwich, Norfolk NR4 7TJ, UK

出版信息

Philos Trans R Soc Lond B Biol Sci. 2018 Mar 5;373(1741). doi: 10.1098/rstb.2016.0450.

Abstract

Individual differences in telomere length have been linked to survival and senescence. Understanding the heritability of telomere length can provide important insight into individual differences and facilitate our understanding of the evolution of telomeres. However, to gain accurate and meaningful estimates of telomere heritability it is vital that the impact of the environment, and how this may vary, is understood and accounted for. The aim of this review is to raise awareness of this important, but much under-appreciated point. We outline the factors known to impact telomere length and discuss the fact that telomere length is a trait that changes with age. We highlight statistical methods that can separate genetic from environmental effects and control for confounding variables. We then review how well previous studies in vertebrate populations including humans have taken these factors into account. We argue that studies to date either use methodological techniques that confound environmental and genetic effects, or use appropriate methods but lack sufficient power to fully separate these components. We discuss potential solutions. We conclude that we need larger studies, which also span longer time periods, to account for changing environmental effects, if we are to determine meaningful estimates of the genetic component of telomere length.This article is part of the theme issue 'Understanding diversity in telomere dynamics'.

摘要

端粒长度的个体差异与存活和衰老有关。了解端粒长度的遗传性可以为个体差异提供重要的见解,并有助于我们理解端粒的进化。然而,要获得端粒遗传率的准确和有意义的估计,就必须了解并考虑环境的影响以及这种影响可能会如何变化。本文的目的是提高人们对这一重要但尚未得到充分重视的观点的认识。我们概述了已知会影响端粒长度的因素,并讨论了端粒长度是随年龄变化的特征这一事实。我们强调了可以分离遗传和环境效应并控制混杂变量的统计方法。然后,我们回顾了脊椎动物群体(包括人类)中的先前研究在多大程度上考虑了这些因素。我们认为,迄今为止的研究要么使用混淆环境和遗传效应的方法,要么使用适当的方法,但缺乏充分的能力来完全分离这些成分。我们讨论了潜在的解决方案。我们的结论是,如果我们要确定端粒长度遗传成分的有意义的估计,就需要进行更大规模的研究,并且这些研究还需要涵盖更长的时间段,以考虑不断变化的环境影响。本文是“理解端粒动力学多样性”主题特刊的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7031/5784070/bfbb7a275126/rstb20160450-g1.jpg

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