Multi-species and multi-tissue methylation clocks for age estimation in toothed whales and dolphins

Todd Robeck and Zhe Fei et al. use DNA methylation profiling to develop an epigenetic clock to measure age in odontocete species, including toothed whales and dolphins. The clocks were highly accurate and represent a valuable tool to help in wildlife conservation efforts.

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Autores principales: Todd R. Robeck, Zhe Fei, Ake T. Lu, Amin Haghani, Eve Jourdain, Joseph A. Zoller, Caesar Z. Li, Karen J. Steinman, Stacy DiRocco, Todd Schmitt, Steve Osborn, Bill Van Bonn, Etsuko Katsumata, June Mergl, Javier Almunia, Magdalena Rodriguez, Martin Haulena, Christopher Dold, Steve Horvath
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/ebe5111aa18c4d848b2f625b0cb719b7
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spelling oai:doaj.org-article:ebe5111aa18c4d848b2f625b0cb719b72021-12-02T15:56:49ZMulti-species and multi-tissue methylation clocks for age estimation in toothed whales and dolphins10.1038/s42003-021-02179-x2399-3642https://doaj.org/article/ebe5111aa18c4d848b2f625b0cb719b72021-05-01T00:00:00Zhttps://doi.org/10.1038/s42003-021-02179-xhttps://doaj.org/toc/2399-3642Todd Robeck and Zhe Fei et al. use DNA methylation profiling to develop an epigenetic clock to measure age in odontocete species, including toothed whales and dolphins. The clocks were highly accurate and represent a valuable tool to help in wildlife conservation efforts.Todd R. RobeckZhe FeiAke T. LuAmin HaghaniEve JourdainJoseph A. ZollerCaesar Z. LiKaren J. SteinmanStacy DiRoccoTodd SchmittSteve OsbornBill Van BonnEtsuko KatsumataJune MerglJavier AlmuniaMagdalena RodriguezMartin HaulenaChristopher DoldSteve HorvathNature PortfolioarticleBiology (General)QH301-705.5ENCommunications Biology, Vol 4, Iss 1, Pp 1-11 (2021)
institution DOAJ
collection DOAJ
language EN
topic Biology (General)
QH301-705.5
spellingShingle Biology (General)
QH301-705.5
Todd R. Robeck
Zhe Fei
Ake T. Lu
Amin Haghani
Eve Jourdain
Joseph A. Zoller
Caesar Z. Li
Karen J. Steinman
Stacy DiRocco
Todd Schmitt
Steve Osborn
Bill Van Bonn
Etsuko Katsumata
June Mergl
Javier Almunia
Magdalena Rodriguez
Martin Haulena
Christopher Dold
Steve Horvath
Multi-species and multi-tissue methylation clocks for age estimation in toothed whales and dolphins
description Todd Robeck and Zhe Fei et al. use DNA methylation profiling to develop an epigenetic clock to measure age in odontocete species, including toothed whales and dolphins. The clocks were highly accurate and represent a valuable tool to help in wildlife conservation efforts.
format article
author Todd R. Robeck
Zhe Fei
Ake T. Lu
Amin Haghani
Eve Jourdain
Joseph A. Zoller
Caesar Z. Li
Karen J. Steinman
Stacy DiRocco
Todd Schmitt
Steve Osborn
Bill Van Bonn
Etsuko Katsumata
June Mergl
Javier Almunia
Magdalena Rodriguez
Martin Haulena
Christopher Dold
Steve Horvath
author_facet Todd R. Robeck
Zhe Fei
Ake T. Lu
Amin Haghani
Eve Jourdain
Joseph A. Zoller
Caesar Z. Li
Karen J. Steinman
Stacy DiRocco
Todd Schmitt
Steve Osborn
Bill Van Bonn
Etsuko Katsumata
June Mergl
Javier Almunia
Magdalena Rodriguez
Martin Haulena
Christopher Dold
Steve Horvath
author_sort Todd R. Robeck
title Multi-species and multi-tissue methylation clocks for age estimation in toothed whales and dolphins
title_short Multi-species and multi-tissue methylation clocks for age estimation in toothed whales and dolphins
title_full Multi-species and multi-tissue methylation clocks for age estimation in toothed whales and dolphins
title_fullStr Multi-species and multi-tissue methylation clocks for age estimation in toothed whales and dolphins
title_full_unstemmed Multi-species and multi-tissue methylation clocks for age estimation in toothed whales and dolphins
title_sort multi-species and multi-tissue methylation clocks for age estimation in toothed whales and dolphins
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/ebe5111aa18c4d848b2f625b0cb719b7
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