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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Sperm DNA Methylation Analysis in Swine Reveals Conserved and Species-Specific Methylation Patterns and Highlights an Altered Methylation at the GNAS Locus in Infertile Boars
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Sperm DNA Methylation Analysis in Swine Reveals Conserved and Species-Specific Methylation Patterns and Highlights an Altered Methylation at the GNAS Locus in Infertile Boars

机译:猪中的精子DNA甲基化分析揭示了保守和物种特异性甲基化模式,并在不育的猪中突出了GNAS基因座的改变的甲基化

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Male infertility is an increasing health issue in today's society for both human and livestock populations. In livestock, male infertility slows the improvement of animal selection programs and agricultural productivity. There is increasing evidence that epigenetic marks play an important role in the production of good-quality sperm. We therefore screened for specific or common epigenetic signatures of livestock infertility. To do so, we compared DNA methylation level in sperm DNA from fertile and infertile boars. We evaluated first the global level of sperm DNA methylation and found no difference between the two groups of boars. We then selected 42 loci of interest, most of them known to be imprinted in human or mice, and assessed the imprinting status of five of them not previously described in swine tissues: WT1, CNTN3, IMPACT, QPCT, and GRB10. DNA methylation level was then quantified in fertile and infertile boars at these 42 loci. Results from fertile boars indicated that the methylation level of the selected loci is highly conserved between pig, human, and mice, with a few exceptions, including the POU5F1 (OCT4) promoter and RTL1. Comparison between fertile and infertile boars revealed that one imprinted region, the GNAS locus, shows an increase in sperm DNA methylation in three out of eight infertile boars with low semen quality. This increase in DNA methylation is associated with an altered expression of the genes belonging to the GNAS locus, suggesting a new role for GNAS in the proper formation of functional gametes.
机译:男性不育症是当今人类和牲畜种群的当今社会中越来越多的健康问题。在牲畜中,男性不孕症减慢了动物选择计划的改善和农业生产力。越来越多的证据表明表观遗传标志在质量良好的精子的生产中发挥着重要作用。因此,我们筛查了牲畜不孕症的特定或常见的表观遗传签名。为此,我们将DNA甲基化水平与来自肥沃和不孕症的猪的精子DNA进行比较。我们首先评估了全球精子DNA甲基化水平,并发现两组公猪之间没有差异。然后,我们选择了42个兴趣点,大多数人都知道在人或小鼠中印记,并评估其五种以前未在猪组织中描述的压印状态:WT1,CNTN3,影响,QPCT和GRB10。然后在这42个基因座的肥沃和不育的猪中定量DNA甲基化水平。肥沃公猪的结果表明,所选基因座的甲基化水平在猪,人和小鼠之间高度保守,其中一些例外,包括POU5F1(OCT4)启动子和RTL1。肥沃和不孕症公猪之间的比较显示,一个印迹区域,GNAS基因座,表明精子DNA甲基化的增加,其中三种不孕猪具有低精液质量。 DNA甲基化的这种增加与属于GNA基因座的基因的改变表达有关,表明GNA在适当地形成功能性配子的新作用。

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