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Mechanisms controlling germline cyst breakdown and primordial follicle formation

机译:控制种系囊肿分解的机制和原始卵泡形成

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摘要

In fetal females, oogonia proliferate immediately after sex determination. The progress of mitosis in oogonia proceeds so rapidly that the incompletely divided cytoplasm of the sister cells forms cysts. The oogonia will then initiate meiosis and arrest at the diplotene stage of meiosis I, becoming oocytes. Within each germline cyst, oocytes with Balbiani bodies will survive after cyst breakdown (CBD). After CBD, each oocyte is enclosed by pregranulosa cells to form a primordial follicle (PF). Notably, the PF pool formed perinatally will be the sole lifelong oocyte source of a female. Thus, elucidating the mechanisms of CBD and PF formation is not only meaningful for solving mysteries related to ovarian development but also contributes to the preservation of reproduction. However, the mechanisms that regulate these phenomena are largely unknown. This review summarizes the progress of cellular and molecular research on these processes in mice and humans.
机译:在胎儿女性中,卵原细胞在性别决定后立即增殖。卵原细胞的有丝分裂进展如此之快,以至于姐妹细胞不完全分裂的细胞质形成囊肿。卵原细胞随后开始减数分裂,并在减数分裂I的二倍体阶段停止,成为卵母细胞。在每个种系囊肿中,带有巴尔比安体的卵母细胞在囊肿破裂(CBD)后仍能存活。CBD后,每个卵母细胞都被前颗粒细胞包围,形成一个原始卵泡(PF)。值得注意的是,围产期形成的PF池将是女性终生唯一的卵母细胞来源。因此,阐明CBD和PF的形成机制不仅对解开卵巢发育的谜团有意义,而且有助于保护生殖。然而,调节这些现象的机制在很大程度上是未知的。本文综述了在小鼠和人类中对这些过程的细胞和分子研究进展。

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