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Measuring telomere length and telomere dynamics in evolutionary biology and ecology
Daniel H. Nussey, Duncan M. Baird, Emma Barrett, Winnie Boner, Jennifer Fairlie, Neil J. Gemmell, Nils Hartmann, Thorsten Horn, Mark F. Haussmann, Mats Olsson, Christopher Turbill, Simon Verhulst, Sandrine Zahn, Pat Monaghan
Methods in Ecology and Evolution · 2014 · ▲ 199 citations
Abstract
Telomeres play a fundamental role in the protection of chromosomal DNA and in the regulation of cellular senescence(definition). Recent work in human epidemiology and evolutionary ecology suggests adult telomere(definition) length (TL) may reflect past physiological stress and predict subsequent morbidity and mortality, independent of chronological age.Several different methods have been developed to measure TL, each offering its own technical challenges. The aim of this review is to provide an overview of the advantages and drawbacks of each method for researchers, with a particular focus on issues that are likely to face ecologists and evolutionary biologists collecting samples in the field or in organisms that may never have been studied in this context before.We discuss the key issues to consider and wherever possible try to provide current consensus view regarding best practice with regard to sample collection and storage, DNA extraction and storage, and the five main methods currently available to measure TL.Decisions regarding which tissues to sample, how to store them, how to extract DNA, and which TL measurement method to use cannot be prescribed, and are dependent on the biological question addressed and the constraints imposed by the study system. What is essential for future studies of telomere dynamics in evolution and ecology is that researchers publish full details of their methods and the quality control thresholds they employ.
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- 10.1111/2041-210x.12161
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- 2026-06-09 MST
Cite this
APA
Nussey, D.H., Baird, D.M., Barrett, E., Boner, W., Fairlie, J., Gemmell, N.J., Hartmann, N., Horn, T., Haussmann, M.F., Olsson, M., Turbill, C., Verhulst, S., Zahn, S., & Monaghan, P. (2014). Measuring telomere length and telomere dynamics in evolutionary biology and ecology. <em>Methods in Ecology and Evolution</em>. https://doi.org/10.1111/2041-210x.12161
Vancouver
Nussey DH, Baird DM, Barrett E, Boner W, Fairlie J, Gemmell NJ, et al. Measuring telomere length and telomere dynamics in evolutionary biology and ecology. Methods in Ecology and Evolution. 2014. doi:10.1111/2041-210x.12161.
BibTeX
@article{daniel2014Measur,
title = {Measuring telomere length and telomere dynamics in evolutionary biology and ecology},
author = {Daniel H. Nussey and Duncan M. Baird and Emma Barrett and Winnie Boner and Jennifer Fairlie and Neil J. Gemmell and Nils Hartmann and Thorsten Horn and Mark F. Haussmann and Mats Olsson and Christopher Turbill and Simon Verhulst and Sandrine Zahn and Pat Monaghan},
journal = {Methods in Ecology and Evolution},
year = {2014},
doi = {10.1111/2041-210x.12161},
}
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