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Development of <scp>DNA</scp> methylation‐based epigenetic age predictors in loblolly pine ( <i>Pinus taeda</i> )
Steven T. Gardner, Emily M. Bertucci, Randall Sutton, Andy Horcher, Doug P. Aubrey, Benjamin B. Parrott
Molecular Ecology Resources · 2022 · ▲ 27 citations
Abstract
Biological ageing is connected to life history variation across ecological scales and informs a basic understanding of age-related declines in organismal function. Altered DNA methylation dynamics are a conserved aspect of biological ageing and have recently been modelled to predict chronological age among vertebrate species. In addition to their utility in estimating individual age, differences between chronological and predicted ages arise due to acceleration or deceleration of epigenetic ageing, and these discrepancies are linked to disease risk and multiple life history traits. Although evidence suggests that patterns of DNA methylation can describe ageing in plants, predictions with epigenetic clocks have yet to be performed. Here, we resolve the DNA methylome across CpG, CHG, and CHH-methylation contexts in the loblolly pine tree (Pinus taeda) and construct epigenetic clocks capable of predicting ages in this species within 6% of its maximum lifespan. Although patterns of CHH-methylation showed little association with age, both CpG and CHG-methylation contexts were strongly associated with ageing, largely becoming hypomethylated with age. Among age-associated loci were those in close proximity to malate dehydrogenase, NADH dehydrogenase, and 18S and 26S ribosomal RNA genes. This study reports one of the first epigenetic clocks in plants and demonstrates the universality of age-associated DNA methylation dynamics which can inform conservation and management practices, as well as our ecological and evolutionary understanding of biological ageing in plants.
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- DOI
- 10.1111/1755-0998.13698
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- 2026-07-22 MST
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APA
Gardner, S.T., Bertucci, E.M., Sutton, R., Horcher, A., Aubrey, D.P., & Parrott, B.B. (2022). Development of <scp>DNA</scp> methylation‐based epigenetic age predictors in loblolly pine ( <i>Pinus taeda</i> ). <em>Molecular Ecology Resources</em>. https://doi.org/10.1111/1755-0998.13698
Vancouver
Gardner ST, Bertucci EM, Sutton R, Horcher A, Aubrey DP, Parrott BB. Development of <scp>DNA</scp> methylation‐based epigenetic age predictors in loblolly pine ( <i>Pinus taeda</i> ). Molecular Ecology Resources. 2022. doi:10.1111/1755-0998.13698.
BibTeX
@article{steven2022Develo,
title = {Development of <scp>DNA</scp> methylation‐based epigenetic age predictors in loblolly pine ( <i>Pinus taeda</i> )},
author = {Steven T. Gardner and Emily M. Bertucci and Randall Sutton and Andy Horcher and Doug P. Aubrey and Benjamin B. Parrott},
journal = {Molecular Ecology Resources},
year = {2022},
doi = {10.1111/1755-0998.13698},
}
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