生物
卵泡发生
性腺
Wnt信号通路
卵巢
体细胞
细胞生物学
生殖细胞
卵泡
双性恋
细胞命运测定
抗苗勒氏激素
WNT4型
转录因子
遗传学
内分泌学
激素
基因
信号转导
胚胎
胚胎发生
核糖核酸
RNA剪接
作者
Maëlle Pannetier,Anne‐Amandine Chassot,Marie‐Christine Chaboissier,Éric Pailhoux
摘要
In mammals, sex determination is a process through which the gonad is committed to differentiate into a testis or an ovary. This process relies on a delicate balance between genetic pathways that promote one fate and inhibit the other. Once the gonad is committed to the female pathway, ovarian differentiation begins and, depending on the species, is completed during gestation or shortly after birth. During this step, granulosa cell precursors, steroidogenic cells, and primordial germ cells start to express female-specific markers in a sex-dimorphic manner. The germ cells then arrest at prophase I of meiosis and, together with somatic cells, assemble into functional structures. This organization gives the ovary its definitive morphology and functionality during folliculogenesis. Until now, 2 main genetic cascades have been shown to be involved in female sex differentiation. The first is driven by FOXL2, a transcription factor that also plays a crucial role in folliculogenesis and ovarian fate maintenance in adults. The other operates through the WNT/CTNNB1 canonical pathway and is regulated primarily by R-spondin1. Here, we discuss the roles of FOXL2 and RSPO1/WNT/ CTNNB1 during ovarian development and homeostasis in different models, such as humans, goats, and rodents.
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