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补充叶酸可减少环境污染物暴露引起的多代精子miRNA紊乱。

Folic acid supplementation reduces multigenerational sperm miRNA perturbation induced by environmental contaminant exposure.

作者信息

Herst P M, Dalvai M, Lessard M, Charest P L, Navarro P, Joly-Beauparlant C, Droit A, Trasler J M, Kimmins S, MacFarlane A J, Benoit-Biancamano M-O, Bailey J L

机构信息

Department of Animal Sciences, Faculty of Agricultural and Food Sciences, Centre de recherche en reproduction, développement et santé intergénérationnelle, Laval University, Quebec City, Canada.

Department of Nutrition, Faculty of Agricultural and Food Sciences, Institute of Nutrition and Functional Foods, Centre de recherche en reproduction, développement et santé intergénérationnelle, Laval University, Quebec City, Canada.

出版信息

Environ Epigenet. 2019 Dec 14;5(4):dvz024. doi: 10.1093/eep/dvz024. eCollection 2019 Oct.

Abstract

Persistent organic pollutants (POPs) can induce epigenetic changes in the paternal germline. Here, we report that folic acid (FA) supplementation mitigates sperm miRNA profiles transgenerationally following paternal exposure to POPs in a rat model. Pregnant founder dams were exposed to an environmentally relevant POPs mixture (or corn oil) ± FA supplementation and subsequent F1-F4 male descendants were not exposed to POPs and were fed the FA control diet. Sperm miRNA profiles of intergenerational (F1, F2) and transgenerational (F3, F4) lineages were investigated using miRNA deep sequencing. Across the F1-F4 generations, sperm miRNA profiles were less perturbed with POPs+FA compared to sperm from descendants of dams treated with POPs alone. POPs exposure consistently led to alteration of three sperm miRNAs across two generations, and similarly one sperm miRNA due to POPs+FA; which was in common with one POPs intergenerationally altered sperm miRNA. The sperm miRNAs that were affected by POPs alone are known to target genes involved in mammary gland and embryonic organ development in F1, sex differentiation and reproductive system development in F2 and cognition and brain development in F3. When the POPs treatment was combined with FA supplementation, however, these same miRNA-targeted gene pathways were perturbed to a lesser extend and only in F1 sperm. These findings suggest that FA partially mitigates the effect of POPs on paternally derived miRNA in a intergenerational manner.

摘要

持久性有机污染物(POPs)可诱导父系生殖细胞发生表观遗传变化。在此,我们报告,在大鼠模型中,父系暴露于POPs后,补充叶酸(FA)可跨代减轻精子miRNA谱的变化。怀孕的亲代母鼠暴露于环境相关的POPs混合物(或玉米油)±补充FA,随后F1-F4雄性后代未暴露于POPs,并给予FA对照饮食。使用miRNA深度测序研究了代际(F1、F2)和跨代(F3、F4)谱系的精子miRNA谱。在F1-F4代中,与仅用POPs处理的母鼠后代的精子相比,POPs+FA处理的精子miRNA谱受到的干扰较小。POPs暴露在两代中持续导致三种精子miRNA发生改变,同样,由于POPs+FA导致一种精子miRNA发生改变;这与一种在代际中因POPs而改变的精子miRNA相同。已知仅受POPs影响的精子miRNA靶向参与F1期乳腺和胚胎器官发育、F2期性别分化和生殖系统发育以及F3期认知和大脑发育的基因。然而,当POPs处理与补充FA相结合时,这些相同的miRNA靶向基因途径仅在F1精子中受到较小程度的干扰。这些发现表明,FA以代际方式部分减轻了POPs对父系来源miRNA的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3461/6911352/241c3c40eade/dvz024f1.jpg

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