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Early‐life telomere length predicts lifespan and lifetime reproductive success in a wild bird
Justin R. Eastwood, Michelle L. Hall, Niki Teunissen, Sjouke A. Kingma, Nataly Hidalgo Aranzamendi, Marie Fan, Michael J. Roast, Simon Verhulst, Anne Peters
Molecular Ecology · 2018 · ▲ 157 citations
Abstract
Poor conditions during early development can initiate trade-offs that favour current survival at the expense of somatic maintenance and subsequently, future reproduction. However, the mechanisms that link early and late life-history are largely unknown. Recently it has been suggested that telomeres, the nucleoprotein structures at the terminal end of chromosomes, could link early-life conditions to lifespan and fitness. In wild purple-crowned fairy-wrens, we combined measurements of nestling telomere(definition) length (TL) with detailed life-history data to investigate whether early-life TL predicts fitness prospects. Our study differs from previous studies in the completeness of our fitness estimates in a highly philopatric population. The association between TL and survival was age-dependent with early-life TL having a positive effect on lifespan only among individuals that survived their first year. Early-life TL was not associated with the probability or age of gaining a breeding position. Interestingly, early-life TL was positively related to breeding duration, contribution to population growth and lifetime reproductive success because of their association with lifespan. Thus, early-life TL, which reflects growth, accumulated early-life stress and inherited TL, predicted fitness in birds that reached adulthood but not noticeably among fledglings. These findings suggest that a lack of investment in somatic maintenance during development particularly affects late life performance. This study demonstrates that factors in early-life are related to fitness prospects through lifespan, and suggests that the study of telomeres may provide insight into the underlying physiological mechanisms linking early- and late-life performance and trade-offs across a lifetime.
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- 10.1111/mec.15002
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- 2026-09-08 MST
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APA
Eastwood, J.R., Hall, M.L., Teunissen, N., Kingma, S.A., Aranzamendi, N.H., Fan, M., Roast, M.J., Verhulst, S., & Peters, A. (2018). Early‐life telomere length predicts lifespan and lifetime reproductive success in a wild bird. <em>Molecular Ecology</em>. https://doi.org/10.1111/mec.15002
Vancouver
Eastwood JR, Hall ML, Teunissen N, Kingma SA, Aranzamendi NH, Fan M, et al. Early‐life telomere length predicts lifespan and lifetime reproductive success in a wild bird. Molecular Ecology. 2018. doi:10.1111/mec.15002.
BibTeX
@article{justin2018Earlyl,
title = {Early‐life telomere length predicts lifespan and lifetime reproductive success in a wild bird},
author = {Justin R. Eastwood and Michelle L. Hall and Niki Teunissen and Sjouke A. Kingma and Nataly Hidalgo Aranzamendi and Marie Fan and Michael J. Roast and Simon Verhulst and Anne Peters},
journal = {Molecular Ecology},
year = {2018},
doi = {10.1111/mec.15002},
}
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