State Key Laboratory of Animal Nutrition, China Agricultural University, Beijing, China.
Beijing Key Laboratory of Bio-feed Additives, China Agricultural University, Beijing, China.
Adv Nutr. 2021 Oct 1;12(5):1877-1892. doi: 10.1093/advances/nmab038.
With the increasing maternal age and the use of assisted reproductive technology in various countries worldwide, the influence of epigenetic modification on embryonic development is increasingly notable and prominent. Epigenetic modification disorders caused by various nutritional imbalance would cause embryonic development abnormalities and even have an indelible impact on health in adulthood. In this scoping review, we summarize the main epigenetic modifications in mammals and the synergies among different epigenetic modifications, especially DNA methylation, histone acetylation, and histone methylation. We performed an in-depth analysis of the regulation of various epigenetic modifications on mammals from zygote formation to cleavage stage and blastocyst stage, and reviewed the modifications of key sites and their potential molecular mechanisms. In addition, we discuss the effects of nutrition (protein, lipids, and one-carbon metabolism) on epigenetic modification in embryos and emphasize the importance of various nutrients in embryonic development and epigenetics during pregnancy. Failures in epigenetic regulation have been implicated in mammalian and human early embryo loss and disease. With the use of reproductive technologies, it is becoming even more important to establish developmentally competent embryos. Therefore, it is essential to evaluate the extent to which embryos are sensitive to these epigenetic modifications and nutrition status. Understanding the epigenetic regulation of early embryo development will help us make better use of reproductive technologies and nutrition regulation to improve reproductive health in mammals.
随着全球各国产妇年龄的增长和辅助生殖技术的应用,表观遗传修饰对胚胎发育的影响越来越显著。各种营养失衡引起的表观遗传修饰障碍会导致胚胎发育异常,甚至对成年后的健康产生不可磨灭的影响。在本次范围性综述中,我们总结了哺乳动物中的主要表观遗传修饰以及不同表观遗传修饰之间的协同作用,特别是 DNA 甲基化、组蛋白乙酰化和组蛋白甲基化。我们深入分析了各种表观遗传修饰在哺乳动物从受精卵形成到卵裂期和囊胚期的调控作用,并综述了关键位点的修饰及其潜在的分子机制。此外,我们还讨论了营养(蛋白质、脂质和一碳代谢)对胚胎中表观遗传修饰的影响,并强调了各种营养素在胚胎发育和妊娠期间表观遗传学中的重要性。表观遗传调控的失败与哺乳动物和人类早期胚胎丢失和疾病有关。随着生殖技术的应用,建立具有发育能力的胚胎变得更加重要。因此,评估胚胎对这些表观遗传修饰和营养状况的敏感性程度至关重要。了解早期胚胎发育的表观遗传调控将有助于我们更好地利用生殖技术和营养调控来改善哺乳动物的生殖健康。