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牛精子中的 DNA 甲基化图谱与后代的生育能力有关。

DNA methylation profiles in bovine sperm are associated with daughter fertility.

机构信息

Centre de Recherche en Reproduction, Développement et Santé Intergénérationnelle, Faculté des Sciences de l'Agriculture et de l'Alimentation, Département des Sciences Animales, Pavillon INAF, Université Laval, Québec, Canada.

SEMEX Boviteq, Saint-Hyacinthe, QC, Canada.

出版信息

Epigenetics. 2023 Dec;18(1):2280889. doi: 10.1080/15592294.2023.2280889. Epub 2023 Nov 20.

Abstract

The current decline in dairy cattle fertility has resulted in significant financial losses for dairy farmers. In the past, most efforts to improve dairy cattle fertility have been focused on either management or genetics, while epigenetics have received less attention. In this study, 12 bulls were selected from a provided 100 bull list and studied (High daughter fertility = 6, Low daughter fertility = 6) for Enzymatic methylation sequencing in the Illumina HiSeq platform according to the Canadian daughter fertility index (DFI), sires with high and low daughter fertility have average DFI of 92 and 112.6, respectively. And the bull list provided shows a mean DFI of 103.4. 252 CpGs with methylation differences greater than 20% (q < 0.01) were identified, as well as the top 10 promising DMRs with a 15% methylation difference (q < 1.1e). Interestingly, the DMCs and DMRs were found to be distributed more on the X chromosome than on the autosome, and they were covered by gene clusters linked to germ cell formation and development. In conclusion, these findings could enhance our ability to make informed decisions when deciding on superior bulls and advance our understanding of paternal epigenetic inheritance.

摘要

目前奶牛繁殖力的下降给奶牛养殖户带来了巨大的经济损失。过去,大多数提高奶牛繁殖力的努力都集中在管理或遗传学上,而表观遗传学的关注较少。在这项研究中,根据加拿大女儿生育指数(DFI),从提供的 100 头公牛名单中选择了 12 头公牛进行研究(高女儿生育能力= 6,低女儿生育能力= 6),在 Illumina HiSeq 平台上进行酶促甲基化测序,高女儿生育能力和低女儿生育能力的公牛的平均 DFI 分别为 92 和 112.6。而提供的公牛名单显示平均 DFI 为 103.4。鉴定出了 252 个甲基化差异大于 20%(q < 0.01)的 CpG 位点,以及 10%甲基化差异(q < 1.1e)的前 10 个有希望的 DMRs。有趣的是,DMCs 和 DMRs 分布在 X 染色体上的比例高于常染色体,它们被与生殖细胞形成和发育相关的基因簇所覆盖。总之,这些发现可以提高我们在选择优秀公牛时做出明智决策的能力,并加深我们对父系表观遗传继承的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa40/10732624/007c4a124d07/KEPI_A_2280889_F0001_OC.jpg

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