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牛胎盘进化中内源性逆转录病毒的渐进性适应。

Progressive Exaptation of Endogenous Retroviruses in Placental Evolution in Cattle.

机构信息

School of Pharmaceutical Science, Ohu University, 31-1 Misumido, Koriyama 963-8611, Fukushima, Japan.

Department of Endocrine Pharmacology, Tokyo University of Pharmacy and Life Sciences, 1432-1 Horinouchi, Hachioji 192-0392, Tokyo, Japan.

出版信息

Biomolecules. 2023 Nov 21;13(12):1680. doi: 10.3390/biom13121680.

Abstract

Viviparity is made possible by the placenta, a structure acquired relatively recently in the evolutionary history of eutherian mammals. Compared to oviparity, it increases the survival rate of the fetus, owing to the eutherian placenta. Questions such as "How was the placenta acquired?" and "Why is there diversity in placental morphology among mammalian species?" remain largely unsolved. Our present understanding of the molecules regulating placental development remains unclear, owing in no small part to the persistent obscurity surrounding the molecular mechanisms underlying placental acquisition. Numerous genes associated with the development of eutherian placental morphology likely evolved to function at the fetal-maternal interface in conjunction with those participating in embryogenesis. Therefore, identifying these genes, how they were acquired, and how they came to be expressed specifically at the fetal-maternal interface will shed light on some crucial molecular mechanisms underlying placental evolution. Exhaustive studies support the hypothesis that endogenous retroviruses (ERVs) could be evolutional driving forces for trophoblast cell fusion and placental structure in mammalian placentas including those of the bovine species. This review focuses on bovine ERVs (BERVs) and their expression and function in the placenta.

摘要

胎生是通过胎盘实现的,胎盘是真兽亚纲哺乳动物进化史上相对较新获得的结构。与卵生相比,由于真兽胎盘的存在,胎生大大提高了胎儿的存活率。“胎盘是如何获得的?”和“为什么哺乳动物物种的胎盘形态存在多样性?”等问题仍然没有得到很好的解决。由于胎盘获得的分子机制持续存在模糊性,我们目前对调节胎盘发育的分子的理解仍然不清楚。许多与真兽胎盘形态发育相关的基因可能与参与胚胎发生的基因一起在胎儿-母体界面发挥作用而进化。因此,鉴定这些基因、它们是如何获得的以及它们如何特异性地在胎儿-母体界面表达,将揭示胎盘进化的一些关键分子机制。详尽的研究支持这样的假设,即内源性逆转录病毒(ERVs)可能是哺乳动物胎盘包括牛种胎盘的滋养层细胞融合和胎盘结构的进化驱动力。本综述重点介绍牛内源性逆转录病毒(BERVs)及其在胎盘组织中的表达和功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8197/10741562/38d2a3b7c8e0/biomolecules-13-01680-g001.jpg

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