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Dmy initiates masculinity by altering Gsdf/Sox9a2/Rspo1 expression in medaka (Oryzias latipes)

机译:Dmy通过改变中的Gsdf / Sox9a2 / Rspo1表达来启动男性气质(Oryzias latipes)

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摘要

Despite identification of several sex-determining genes in non-mammalian vertebrates, their detailed molecular cascades of sex determination/differentiation are not known. Here, we used a novel RNAi to characterise the molecular mechanism of Dmy (the sex-determining gene of medaka)-mediated masculinity in XY fish. Dmy knockdown (Dmy-KD) suppressed male pathway (Gsdf, Sox9a2, etc.) and favoured female cascade (Rspo1, etc.) in embryonic XY gonads, resulting in a fertile male-to-female sex-reversal. Gsdf, Sox9a2, and Rspo1 directly interacted with Dmy, and co-injection of Gsdf and Sox9a2 re-established masculinity in XY-Dmy-KD transgenics, insinuating that Dmy initiates masculinity by stimulating and suppressing Gsdf/Sox9a2 and Rspo1 expression, respectively. Gonadal expression of Wt1a starts prior to Dmy and didn’t change upon Dmy-KD. Furthermore, Wt1a stimulated the promoter activity of Dmy, suggesting Wt1a as a regulator of Dmy. These findings provide new insights into the role of vertebrate sex-determining genes associated with the molecular interplay between the male and female pathways.
机译:尽管在非哺乳动物脊椎动物中鉴定了几种决定性别的基因,但它们关于性别确定/分化的详细分子级联尚不清楚。在这里,我们使用一种新颖的RNAi来表征XY鱼中Dmy(的性别决定基因)介导的男性气质的分子机制。 Dmy敲低(Dmy-KD)抑制了男性途径(Gsdf,Sox9a2等)并偏爱胚胎XY性腺中的雌性级联反应(Rspo1等),从而导致了可育的雌雄性逆转。 Gsdf,Sox9a2和Rspo1直接与Dmy相互作用,并且共同注射Gsdf和Sox9a2在XY-Dmy-KD转基因中重新建立了阳刚之气,这暗示Dmy通过分别刺激和抑制Gsdf / Spo9a2和R的表达而引发阳刚之气。 Wt1a的性腺表达在 Dmy 之前开始,而在 Dmy -KD时不变。此外,Wt1a刺激了 Dmy 的启动子活性,表明Wt1a是 Dmy 的调节剂。这些发现为与男性和女性途径之间的分子相互作用相关的脊椎动物性别决定基因的作用提供了新的见解。

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