Department of Biology, University of Maryland, College Park, MD 20742, USA.
Department of Biological Sciences, Towson University, Towson, MD 21252, USA.
Proc Biol Sci. 2022 Aug 10;289(1980):20220635. doi: 10.1098/rspb.2022.0635.
Comparative analyses of bats indicate that hibernation is associated with increased longevity among species. However, it is not yet known if hibernation affects biological ageing of individuals. Here, we use DNA methylation (DNAm) as an epigenetic biomarker of ageing to determine the effect of hibernation on the big brown bat, . First, we compare epigenetic age, as predicted by a multi-species epigenetic clock, between hibernating and non-hibernating animals and find that hibernation is associated with epigenetic age. Second, we identify genomic sites that exhibit hibernation-associated change in DNAm, independent of age, by comparing samples taken from the same individual in hibernating and active seasons. This paired comparison identified over 3000 differentially methylated positions (DMPs) in the genome. Genome-wide association comparisons to tissue-specific functional elements reveals that DMPs with elevated DNAm during winter occur at sites enriched for quiescent chromatin states, whereas DMPs with reduced DNAm during winter occur at sites enriched for transcription enhancers. Furthermore, genes nearest DMPs are involved in regulation of metabolic processes and innate immunity. Finally, significant overlap exists between genes nearest hibernation DMPs and genes nearest previously identified longevity DMPs. Taken together, these results are consistent with hibernation influencing ageing and longevity in bats.
对蝙蝠的比较分析表明,冬眠与物种的长寿有关。然而,目前还不清楚冬眠是否会影响个体的生物衰老。在这里,我们使用 DNA 甲基化 (DNAm) 作为衰老的表观遗传生物标志物,来确定冬眠对大棕蝠的影响。首先,我们比较了冬眠和非冬眠动物之间由多物种表观遗传时钟预测的表观遗传年龄,发现冬眠与表观遗传年龄有关。其次,我们通过比较同一个体在冬眠和活跃季节采集的样本,确定了与冬眠相关的 DNAm 变化的基因组位点,这些变化与年龄无关。这种配对比较在基因组中确定了 3000 多个差异甲基化位置 (DMP)。与组织特异性功能元件的全基因组关联比较表明,冬季 DNAm 升高的 DMP 出现在静息染色质状态丰富的位点,而冬季 DNAm 降低的 DMP 出现在转录增强子丰富的位点。此外,DMP 附近的基因参与代谢过程和先天免疫的调节。最后,冬眠 DMP 附近的基因与先前鉴定的长寿 DMP 附近的基因之间存在显著重叠。总之,这些结果表明冬眠会影响蝙蝠的衰老和长寿。