UMR BDR, INRA, ENVA, Université Paris Saclay, 78350, Jouy-en-Josas, France; Sorbonne Université, Collège Doctoral, F-75005, Paris, France.
UMR BDR, INRA, ENVA, Université Paris Saclay, 78350, Jouy-en-Josas, France.
Semin Cell Dev Biol. 2020 Jan;97:172-180. doi: 10.1016/j.semcdb.2019.09.008. Epub 2019 Oct 4.
The literature about Developmental Origins of Health and Disease (DOHaD) studies is considerably growing. Maternal and paternal environment, during all the development of the individual from gametogenesis to weaning and beyond, as well as the psychosocial environment in childhood and teenage, can shape the adult and the elderly person's susceptibility to her/his own environment and diseases. This non-conventional, non-genetic, inheritance is underlain by several mechanisms among which epigenetics is obviously central, due to the notion of memory of early decisional events during development even when this stimulus is gone, that is implied in Waddington's developmental concept. This review first summarizes the different mechanisms by which the environment can model the epigenome: receptor signalling, energy metabolism and signal mechanotransduction from extracellular matrix to chromatin. Then an overview of the epigenetic changes in response to maternal environment during the vulnerability time windows, gametogenesis, early development, placentation and foetal growth, and postnatal period, is described, with the specific example of overnutrition and food deprivation. The implication of epigenetics in DOHaD is obvious, however the precise causal chain from early environment to the epigenome modifications to the phenotype still needs to be deciphered.
有关健康与疾病的发育起源(DOHaD)研究的文献正在迅速增加。从配子发生到断奶以及之后的个体发育过程中,母体和父体环境,以及儿童和青少年时期的心理社会环境,都可以影响个体成年和老年时对自身环境和疾病的易感性。这种非传统的、非遗传的继承是由几种机制所决定的,其中表观遗传学显然是核心,因为它包含了发育过程中早期决策事件的记忆概念,即使这种刺激已经消失,这一概念是由 Waddington 的发育概念所隐含的。这篇综述首先总结了环境可以塑造表观基因组的不同机制:受体信号、能量代谢和细胞外基质到染色质的信号机械转导。然后,描述了母体环境在易感性窗口期、配子发生、早期发育、胎盘形成和胎儿生长以及出生后时期对表观基因组的影响,特别提到了营养过剩和营养缺乏的情况。表观遗传学在 DOHaD 中的作用是显而易见的,然而,从早期环境到表观基因组修饰再到表型的精确因果链仍有待阐明。