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为平原斑马开发的表观遗传模型可预测家马和濒危马科动物的年龄。

Epigenetic models developed for plains zebras predict age in domestic horses and endangered equids.

机构信息

Department of Ecology and Evolutionary Biology, University of California, Los Angeles, CA, 90095, USA.

Center for Tropical Research, Institute of the Environment and Sustainability, University of California, Los Angeles, CA, 90095, USA.

出版信息

Commun Biol. 2021 Dec 17;4(1):1412. doi: 10.1038/s42003-021-02935-z.

Abstract

Effective conservation and management of threatened wildlife populations require an accurate assessment of age structure to estimate demographic trends and population viability. Epigenetic aging models are promising developments because they estimate individual age with high accuracy, accurately predict age in related species, and do not require invasive sampling or intensive long-term studies. Using blood and biopsy samples from known age plains zebras (Equus quagga), we model epigenetic aging using two approaches: the epigenetic clock (EC) and the epigenetic pacemaker (EPM). The plains zebra EC has the potential for broad application within the genus Equus given that five of the seven extant wild species of the genus are threatened. We test the EC's ability to predict age in sister taxa, including two endangered species and the more distantly related domestic horse, demonstrating high accuracy in all cases. By comparing chronological and estimated age in plains zebras, we investigate age acceleration as a proxy of health status. An interaction between chronological age and inbreeding is associated with age acceleration estimated by the EPM, suggesting a cumulative effect of inbreeding on biological aging throughout life.

摘要

有效保护和管理濒危野生动物种群需要准确评估年龄结构,以估计人口趋势和种群生存能力。表观遗传衰老模型是很有前途的发展方向,因为它们可以高精度地估计个体年龄,准确预测相关物种的年龄,并且不需要侵入性采样或密集的长期研究。我们使用已知年龄的平原斑马(Equus quagga)的血液和活检样本,使用两种方法来建立表观遗传衰老模型:表观遗传时钟(EC)和表观遗传起搏器(EPM)。鉴于该属现存的七个野生物种中有五个受到威胁,平原斑马的 EC 有可能在马属内广泛应用。我们测试了 EC 在姐妹分类群中预测年龄的能力,包括两个濒危物种和更远缘的家养马,所有情况下都显示出了很高的准确性。通过比较平原斑马的实际年龄和估计年龄,我们研究了作为健康状况指标的年龄加速现象。EPM 估计的年龄加速与亲缘系数之间存在相互作用,这表明近亲繁殖对整个生命周期生物衰老的累积影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2ed/8683477/901b221af788/42003_2021_2935_Fig1_HTML.jpg

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