Townsend Jessica, Braz Camila U, Taylor Todd, Khatib Hasan
Department of Animal and Dairy Sciences, University of Wisconsin-Madison, 1675 Observatory Dr., Madison, WI 53706, USA.
Environ Epigenet. 2022 Dec 23;9(1):dvac029. doi: 10.1093/eep/dvac029. eCollection 2023.
Environmental effects on gene expression and offspring development can be mediated by epigenetic modifications. It is well established that maternal diet influences DNA methylation patterns and phenotypes in the offspring; however, the epigenetic effects of paternal diet on developing offspring warrants further investigation. Here, we examined how a prepubertal methionine-enriched paternal diet affected sperm DNA methylation and its subsequent effects on embryo gene expression. Three treatment and three control rams were bred to seven ewes, and blastocysts were flushed for RNA extraction. Semen was collected from all rams and submitted for reduced representation bisulfite sequencing analysis. In total, 166 differentially methylated cytosines were identified in the sperm from treatment versus control rams. Nine genes were found to be differentially expressed in embryos produced from treatment versus control rams, and seven differentially methylated cytosines in the sperm were found to be highly correlated with gene expression in the embryos. Our results demonstrate that sperm methylation differences induced by diet may influence fetal programming.
环境对基因表达和后代发育的影响可通过表观遗传修饰来介导。众所周知,母体饮食会影响后代的DNA甲基化模式和表型;然而,父体饮食对发育中后代的表观遗传效应值得进一步研究。在此,我们研究了青春期前富含蛋氨酸的父体饮食如何影响精子DNA甲基化及其对胚胎基因表达的后续影响。将三只处理公羊和三只对照公羊与七只母羊配种,冲洗出囊胚用于RNA提取。从所有公羊采集精液并进行简化代表性亚硫酸氢盐测序分析。总共在处理组公羊与对照组公羊的精子中鉴定出166个差异甲基化的胞嘧啶。发现九个基因在处理组公羊与对照组公羊产生的胚胎中差异表达,并且在精子中发现的七个差异甲基化的胞嘧啶与胚胎中的基因表达高度相关。我们的结果表明,饮食诱导的精子甲基化差异可能影响胎儿编程。