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DNA methylation in bull spermatozoa: evolutionary impacts, interindividual variability, and contribution to the embryo

机译:公牛精子中的DNA甲基化:进化的影响,接口变异性和对胚胎的贡献

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摘要

The DNA methylome of spermatozoa results from a unique epigenetic reprogramming crucial for chromatin compaction and the protection of the paternal genetic heritage. Although bull semen is widely used for artificial insemination (AI), little is known about the sperm epigenome in cattle. The purpose of this review is to synthetize recent work on the bull sperm methylome in light of the knowledge accumulated in humans and model species. We will address sperm-specific DNA methylation features and their potential evolutionary impacts, with particular emphasis on hypomethylated regions and repetitive elements. We will review recent examples of interindividual variability and intra-individual plasticity of the bull sperm methylome as related to fertility and age, respectively. Finally, we will address paternal methylome reprogramming after fertilization, as well as the mechanisms potentially involved in epigenetic inheritance, and provide some examples of disturbances that alter the dynamics of reprogramming in cattle. Because the selection of AI bulls is closely based on their genotypes, we will also discuss the complex interplay between sequence polymorphism and DNA methylation, which represents both a difficulty in addressing the role of DNA methylation in shaping phenotypes and an opportunity to better understand genome plasticity.
机译:精子的DNA甲基肟是由独特的表观遗传重编程结果对染色质压实和保护父亲遗传遗产的保护。虽然公牛精液广泛用于人工授精(AI),但很少是关于牛中的精子外延蛋白酶。本次审查的目的是鉴于在人类和模型物种中累积的知识,依赖于公牛精子甲基族的最新工作。我们将解决特定的特异性DNA甲基化特征及其潜在的进化撞击,特别强调甲基化区域和重复元件。我们将审查最近与生育和年龄相关的公牛精子甲基族的接口变异性和单独的个体可塑性。最后,我们将在受精后解决父母甲粒重编程,以及潜在涉及表观遗传的机制,并提供一些破坏的障碍例子,改变了牛重新编程的动态。因为AI公牛的选择是基于它们的基因型,我们还将讨论序列多态性和DNA甲基化之间的复杂相互作用,这表示难以解决DNA甲基化在成型表型中的作用和更好地理解基因组可塑性的机会。

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