Weyrich A, Jeschek M, Schrapers K T, Lenz D, Chung T H, Rübensam K, Yasar S, Schneemann M, Ortmann S, Jewgenow K, Fickel J
Leibniz-Institute for Zoo and Wildlife Research (IZW), Alfred-Kowalke-Street 17, D-10315 Berlin, Germany.
Berlin Center for Genomics in Biodiversity Research, Koenigin-Luise-Street 6-8, 14195 Berlin, Germany.
Environ Epigenet. 2018 Jun 29;4(2):dvy011. doi: 10.1093/eep/dvy011. eCollection 2018 Apr.
Epigenetic modifications, of which DNA methylation is the most stable, are a mechanism conveying environmental information to subsequent generations via parental germ lines. The paternal contribution to adaptive processes in the offspring might be crucial, but has been widely neglected in comparison to the maternal one. To address the paternal impact on the offspring's adaptability to changes in diet composition, we investigated if low protein diet (LPD) in F0 males caused epigenetic alterations in their subsequently sired sons. We therefore fed F0 male Wild guinea pigs with a diet lowered in protein content (LPD) and investigated DNA methylation in sons sired before and after their father's LPD treatment in both, liver and testis tissues. Our results point to a 'heritable epigenetic response' of the sons to the fathers' dietary change. Because we detected methylation changes also in the testis tissue, they are likely to be transmitted to the F2 generation. Gene-network analyses of differentially methylated genes in liver identified main metabolic pathways indicating a metabolic reprogramming ('metabolic shift'). Epigenetic mechanisms, allowing an immediate and inherited adaptation may thus be important for the survival of species in the context of a persistently changing environment, such as climate change.
表观遗传修饰是一种通过亲代生殖系将环境信息传递给后代的机制,其中DNA甲基化最为稳定。父本对后代适应性过程的贡献可能至关重要,但与母本相比却被广泛忽视。为了研究父本对后代饮食成分变化适应性的影响,我们调查了F0代雄性低蛋白饮食(LPD)是否会导致其后代雄性出现表观遗传改变。因此,我们用低蛋白含量的饮食(LPD)喂养F0代雄性野生豚鼠,并研究了在其父本LPD处理前后所生儿子的肝脏和睾丸组织中的DNA甲基化情况。我们的结果表明,儿子对父亲饮食变化存在“可遗传的表观遗传反应”。由于我们在睾丸组织中也检测到了甲基化变化,这些变化很可能会传递给F2代。对肝脏中差异甲基化基因的基因网络分析确定了主要代谢途径,表明存在代谢重编程(“代谢转变”)。因此,表观遗传机制允许立即和遗传适应,这对于物种在持续变化的环境(如气候变化)中生存可能很重要。