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通过分析蒙贝利亚尔公牛和荷斯坦公牛精子的RRBS数据来定义牛的CpG表观遗传多样性。

Defining bovine CpG epigenetic diversity by analyzing RRBS data from sperm of Montbéliarde and Holstein bulls.

作者信息

Capra Emanuele, Lazzari Barbara, Cozzi Paolo, Turri Federica, Negrini Riccardo, Ajmone-Marsan Paolo, Stella Alessandra

机构信息

Institute of Agricultural Biology and Biotechnology, National Research Council IBBA CNR, Lodi, Italy.

Department of Animal Science, Food and Nutrition - DIANA, and Romea and Enrica Invernizzi Research Center on Sustainable Dairy Production - CREI, Università Cattolica del Sacro Cuore, Piacenza, Italy.

出版信息

Front Cell Dev Biol. 2025 Feb 20;13:1532711. doi: 10.3389/fcell.2025.1532711. eCollection 2025.

Abstract

INTRODUCTION

Breed epigenetic diversity was recently detected in pig muscle and cattle blood, probably as a result of long-term selection for morphological adaptive and quantitative traits, persisting after embryo epigenetic reprogramming.

METHODS

In our study, breed epigenetic diversity in the male germline from Holstein (H) and Montbéliarde (M) bulls was investigated using Reduced Representation Bisulfite Sequencing (RRBS) data publicly available at the NCBI database. Open-source Whole Genome Sequencing (WGS) data from H and M animals were used to estimate genetic diversity between the two breeds and, thus, correctly assess CpG positions with low frequencies or absence of SNPs.

RESULTS

Sperm epigenetic diversity was studied in 356,635 SNP-free CpG positions, and a total of 6,074 differentially methylated cytosines (DMCs) were identified. The analysis of the DMCs pattern of distribution revealed that DMCs: i) are partially associated with genetic variation, ii) are consistent with epigenetic diversity previously observed in bovine blood, iii) present long-CpG stretches in specific genomic regions, and iv) are enriched in specific repeat elements, such as ERV-LTR transposable elements, ribosomal 5S rRNA, BTSAT4 Satellites and long interspersed nuclear elements (LINE).

DISCUSSION

This study, based on publicly available data from two cattle breeds, contributes to the identification and definition of distinct epigenetic signatures in sperm, that may have potential implications for mammalian embryo development.

摘要

引言

最近在猪肌肉和牛血液中检测到品种表观遗传多样性,这可能是长期选择形态适应性和数量性状的结果,在胚胎表观遗传重编程后仍然存在。

方法

在我们的研究中,利用NCBI数据库中公开的简化代表性亚硫酸氢盐测序(RRBS)数据,对荷斯坦(H)公牛和蒙贝利亚尔(M)公牛雄性生殖系中的品种表观遗传多样性进行了研究。来自H和M动物的开源全基因组测序(WGS)数据用于估计两个品种之间的遗传多样性,从而正确评估低频或无单核苷酸多态性(SNP)的CpG位点。

结果

在356,635个无SNP的CpG位点上研究了精子表观遗传多样性,共鉴定出6,074个差异甲基化胞嘧啶(DMC)。对DMC分布模式的分析表明,DMC:i)部分与遗传变异相关,ii)与先前在牛血液中观察到的表观遗传多样性一致,iii)在特定基因组区域呈现长CpG片段,iv)在特定重复元件中富集,如ERV-LTR转座元件、核糖体5S rRNA、BTSAT4卫星和长散在核元件(LINE)。

讨论

这项基于两个牛品种公开数据的研究,有助于识别和定义精子中独特的表观遗传特征,这可能对哺乳动物胚胎发育具有潜在影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9dd/11882585/f31e96728fe0/fcell-13-1532711-g001.jpg

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