Institut de Ciències del Mar (ICM), Spanish National Research Council (CSIC), Barcelona, Spain.
Mol Ecol Resour. 2020 Mar;20(2):387-397. doi: 10.1111/1755-0998.13111. Epub 2019 Nov 25.
Age-related changes in DNA methylation do occur. Taking advantage of this, mammalian and avian epigenetic clocks have been constructed to predict age. In fish, studies on age-related DNA methylation changes are scarce and no epigenetic clocks have been constructed. However, in fisheries and population dynamics studies there is a need for accurate estimation of age, something that is often impossible for some economically important species with the currently available methods. Here, we used the European sea bass, a marine fish the age of which can be determined with accuracy, to construct a piscine epigenetic clock, the first one in a cold-blooded vertebrate. We used targeted bisulfite sequencing to amplify 48 CpGs from four genes in muscle samples and applied penalized regressions to predict age. We thus developed an age predictor in fish that is highly accurate (0.824) and precise (2.149 years). In juvenile fish, accelerated growth due to elevated temperatures had no effect on age prediction, indicating that the clock is able to predict the chronological age independently of environmentally-driven perturbations. An epigenetic clock developed using muscle samples accurately predicted age in samples of testis but not ovaries, possibly reflecting the reproductive biology of fish. In conclusion, we report the development of the first piscine epigenetic clock, paving the way for similar studies in other species. Piscine epigenetic clocks should be of great utility for fisheries management and conservation purposes, where age determination is of crucial importance.
年龄相关的 DNA 甲基化确实会发生。利用这一点,构建了哺乳动物和鸟类的表观遗传钟来预测年龄。在鱼类中,关于年龄相关的 DNA 甲基化变化的研究很少,也没有构建表观遗传钟。然而,在渔业和种群动态研究中,需要准确估计年龄,而对于一些具有重要经济价值的物种,目前可用的方法往往无法做到这一点。在这里,我们使用欧洲鲈鱼,一种可以准确确定年龄的海水鱼,构建了一种鱼类表观遗传钟,这是在冷血脊椎动物中首次构建。我们使用靶向亚硫酸氢盐测序来扩增肌肉样本中四个基因的 48 个 CpG,并应用惩罚回归来预测年龄。因此,我们开发了一种在鱼类中高度准确(0.824)和精确(2.149 年)的年龄预测器。在幼鱼中,由于温度升高而导致的生长加速对年龄预测没有影响,这表明该时钟能够独立于环境驱动的干扰来预测生物年龄。使用肌肉样本开发的表观遗传钟可以准确预测睾丸样本的年龄,但不能预测卵巢样本的年龄,这可能反映了鱼类的生殖生物学。总之,我们报告了第一个鱼类表观遗传钟的开发,为其他物种的类似研究铺平了道路。鱼类表观遗传钟在渔业管理和保护中具有重要的应用价值,因为年龄确定至关重要。