Molecular, Cell and Developmental Biology, University of California Los Angeles, Los Angeles, CA, USA.
Department of Zoology, Dayalbagh Educational Institute (Deemed to Be University), Dayalbagh, Agra, UP, India.
Epigenetics. 2023 Dec;18(1):2240188. doi: 10.1080/15592294.2023.2240188.
DNA methylation has proven to be the most promising age-predictive biomarker in mammals resulting in the emergence of 'epigenetic clocks' that describe the relationship between methylation levels and age. Using Targeted bisulfite Sequencing, we evaluated blood DNA-methylation data from 96 domesticated cows () of which 88 were adults and 8 were calves. This allowed us to measure DNA methylation across three thousand regions in the genome that were conserved across mammals. The significant association of age with the changes in DNA methylation enabled us to construct an epigenetic clock that predicts the age of cows to within nine months. We also investigated whether factors exist that moderate the association between epigenetic age and actual age and found that milk production levels significantly increase the rate of epigenetic ageing, suggesting that the stress of excessive milk production might be accelerating epigenetic ageing in cows.
DNA 甲基化已被证明是最有前途的哺乳动物年龄预测生物标志物,这导致了“表观遗传时钟”的出现,该时钟描述了甲基化水平与年龄之间的关系。我们使用靶向亚硫酸氢盐测序,评估了 96 头家养奶牛()的血液 DNA 甲基化数据,其中 88 头是成年牛,8 头是小牛。这使我们能够测量基因组中跨越三千个区域的 DNA 甲基化,这些区域在哺乳动物中是保守的。年龄与 DNA 甲基化变化的显著相关性使我们能够构建一个表观遗传时钟,该时钟可以将牛的年龄预测到九个月内。我们还研究了是否存在调节表观遗传年龄与实际年龄之间关联的因素,发现产奶量水平显著增加了表观遗传衰老的速度,这表明过度产奶的压力可能正在加速奶牛的表观遗传衰老。