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Gonadotropin Signaling in Zebrafish Ovary and Testis Development: Insights From Gene Knockout Study

机译:斑马鱼卵巢和睾丸发育中的促性腺激素信号传导:基因敲除研究的见解

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摘要

Using the transcription activator-like effectors nucleases-mediated gene knockout technology, we have previously demonstrated that LH signaling is required for oocyte maturation and ovulation but is dispensable for testis development in zebrafish. Here, we have further established the fshb and fshr knockout zebrafish lines. In females, fshb mutant is subfertile, whereas fshr mutant is infertile. Folliculogenesis is partially affected in the fshb mutant but is completely arrested at the primary growth stage in the fshr mutant. In males, fshb and fshr mutant are fertile. The fertilization rate and histological structure of the testis is not affected. However, double knockout of fshb;lhb or fshr;lhr leads to all infertile male offspring. The key steroid hormones and steroidogenic genes are dramatically decreased in double knockout mutant (fshb;lhb and fshr;lhr) but not in single knockout mutant (fshb, lhb, fshr, and lhr) males. Furthermore, we have also demonstrated the constitutive activities of both FSH receptor (FSHR) and LH receptor in zebrafish and the compensatory role of LH by cross-reacting with FSHR in the fshb;lhr double mutant, thus explaining the phenotypic discrepancy observed among the ligand/receptor mutant lines. Taken together, our data established the following models on the roles of gonadotropin signaling in zebrafish gonad development. In females, FSH signaling is mainly responsible for promoting follicular growth, whereas LH signaling is mainly responsible for stimulating oocyte maturation and ovulation. In males, the functions of FSH and LH signaling overlap, and only disruption of both FSH and LH signaling could lead to the infertile phenotype. In the absence of FSH, LH could play a compensatory role by cross-reacting with FSHR in both male and female.
机译:使用转录激活因子样效应子核酸酶介导的基因敲除技术,我们以前已经证明LH信号是卵母细胞成熟和排卵所必需的,但对于斑马鱼的睾丸发育是必不可少的。在这里,我们进一步建立了fshb和fshr基因敲除斑马鱼品系。在女性中,fshb突变体是不育的,而fshr突变体是不育的。卵泡生成在fshb突变体中受到部分影响,但在fshr突变体的初级生长阶段被完全阻止。在男性中,fshb和fshr突变体可育。睾丸的受精率和组织结构不受影响。但是,双重敲除fshb; lhb或fshr; lhr会导致所有不育雄性后代。双敲除突变体(fshb; lhb和fshr; lhr)的关键类固醇激素和类固醇生成基因显着降低,而单敲除突变体( fshb lhb fshr lhr )男性。此外,我们还证明了 fshb; lhr 双突变体中FSH受体(FSHR)和LH受体在斑马鱼中的组成活性以及LH通过与FSHR交叉反应的补偿作用,从而解释了在配体/受体突变体系中观察到的表型差异。综上所述,我们的数据建立了关于促性腺激素信号在斑马鱼性腺发育中作用的以下模型。在女性中,FSH信号主要负责促进卵泡的生长,而LH信号主要负责刺激卵母细胞的成熟和排卵。在男性中,FSH和LH信号传导的功能重叠,并且只有破坏FSH和LH信号传导才可能导致不育表型。在没有FSH的情况下,LH可以通过与FSHR的男性和女性交叉反应而发挥补偿作用。

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