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父亲的 RNA 为何重要的历史

A history of why fathers' RNA matters.

机构信息

Animal Genomics Group, Center for Research in Agricultural Genomics (CRAG) (CSIC-IRTA-UAB-UB), Cerdanyola del Vallès (Barcelona), Catalonia, Spain.

Department of Obstetrics and Gynecology, Wayne State University, Detroit, Michigan, USA.

出版信息

Biol Reprod. 2018 Jul 1;99(1):147-159. doi: 10.1093/biolre/ioy007.

Abstract

Having been debated for many years, the presence and role of spermatozoal RNAs is resolving, and their contribution to development is now appreciated. Data from different species continue show that sperm contain a complex suite of coding and noncoding RNAs that play a role in an individual's life course. Mature sperm RNAs provide a retrospective of spermatogenesis, with their presence and abundance reflecting sperm maturation, fertility potential, and the paternal contribution to the developmental path the offspring may follow.Sperm RNAs delivered upon fertilization provide some of the initial contacts with the oocyte, directly confront the maternal with the paternal contribution as a prelude to genome consolidation. Following syngamy, early embryo development may in part be modulated by paternal RNAs that can include epidydimal passengers. This provides a direct path to relay an experience and then initiate a paternal response to the environment to the oocyte and beyond. Their epigenetic impact is likely felt prior to embryonic genome activation when the population of sperm delivered transcripts markedly changes. Here, we review the insights gained from sperm RNAs over the years, the subtypes, and the caveats of the RNAs described. We discuss the role of sperm RNAs in fertilization and embryo development, and their possible mechanism(s) influencing offspring phenotype. Approaches to meet the future challenges as the study of sperm RNAs continues, include, elucidating the potential mechanisms underlying how paternal allostatic load, the constant adaptation of health to external conditions, may be relayed by sperm RNAs to affect future generations.

摘要

多年来一直存在争议的是精子 RNA 的存在和作用正在得到解决,人们现在开始认识到它们对发育的贡献。来自不同物种的研究数据继续表明,精子包含一套复杂的编码和非编码 RNA,它们在个体的生命过程中发挥作用。成熟精子 RNA 提供了精子发生的回溯,其存在和丰度反映了精子成熟度、生育能力和父亲对后代可能遵循的发育途径的贡献。受精时传递的精子 RNA 提供了与卵子最初接触的一些机会,直接将父亲的贡献与母亲的贡献相对抗,作为基因组整合的前奏。合子形成后,早期胚胎发育可能部分受到精子 RNA 的调节,这些 RNA 可以包括附睾乘客。这为将经验传递并引发父亲对环境的反应提供了一条直接途径,直到卵子和其他细胞。它们的表观遗传影响可能在胚胎基因组激活之前就感受到了,因为传递的精子转录本的数量明显发生了变化。在这里,我们回顾了多年来从精子 RNA 中获得的见解,讨论了精子 RNA 的亚型和描述的 RNA 的注意事项。我们讨论了精子 RNA 在受精和胚胎发育中的作用,以及它们影响后代表型的可能机制。随着对精子 RNA 研究的继续,我们需要采取一些方法来应对未来的挑战,包括阐明父本应激负荷的潜在机制,即健康对外界条件的持续适应,如何通过精子 RNA 传递来影响后代。

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