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功能丧失和获得分析揭示 Cyp19a1 在红耳龟卵巢决定中的重要作用。

Loss- and gain-of-function analyses reveal the essential role of Cyp19a1 in ovarian determination of the red-eared slider turtle.

机构信息

Institute of Animal Sex and Development, Zhejiang Wanli University, Ningbo 315100, China.

College of Biological and Environmental Sciences, Zhejiang Wanli University, Ningbo 315100, China.

出版信息

Genetics. 2023 May 4;224(1). doi: 10.1093/genetics/iyad041.

Abstract

Estrogen signaling exerts a decisive role in female sex determination and differentiation in chicken and fish. Aromatase encoded by Cyp19a1 is the key enzyme that catalyzes the conversion of androgen to estrogen. Correlative analyses implicate the potential involvement of aromatase in reptilian sexual development, however, the direct genetic evidence is lacking. Herein, we found that Cyp19a1 exhibited temperature-dependent sexually dimorphic expression, and located in the medullary somatic cells in early female embryos of the red-eared slider turtle (Trachemys scripta elegans), before the gonad is distinct. To determine the functional role of Cyp19a1 in turtle ovarian determination, we established loss- and gain-of-function models through in ovo lentivirus-mediated genetic manipulation. At female-producing temperature, inhibition of aromatase or knockdown of Cyp19a1 in turtle embryos resulted in female-to-male sex reversal, with the formation of a testis-like structure and a male distribution pattern of germ cells, as well as ectopic expression of male-specific markers (SOX9 and AMH) and disappearance of ovarian regulator FOXL2. On the contrary, overexpression of Cyp19a1 at male-producing temperature led to male-to-female sex reversal. In conclusion, our results suggest that Cyp19a1 is both necessary and sufficient for ovarian determination in the red-eared slider turtle, establishing causality and a direct genetic link between aromatase and reptilian sex determination and differentiation.

摘要

雌激素信号在鸡和鱼类的雌性性别决定和分化中发挥决定性作用。由 Cyp19a1 编码的芳香酶是催化雄激素转化为雌激素的关键酶。相关性分析表明芳香酶可能参与爬行动物的性发育,但缺乏直接的遗传证据。在此,我们发现 Cyp19a1 表现出温度依赖性的性别二态性表达,并且在红耳滑龟(Trachemys scripta elegans)早期雌性胚胎的髓质体细胞中定位,此时性腺尚未分化。为了确定 Cyp19a1 在龟卵巢决定中的功能作用,我们通过胚胎内慢病毒介导的遗传操作建立了缺失和获得功能模型。在雌性产生温度下,抑制芳香酶或在龟胚胎中敲低 Cyp19a1 会导致雌性到雄性的性别反转,形成类似于睾丸的结构和雄性生殖细胞的分布模式,以及雄性特异性标记物(SOX9 和 AMH)的异位表达和卵巢调节剂 FOXL2 的消失。相反,在雄性产生温度下过表达 Cyp19a1 会导致雄性到雌性的性别反转。总之,我们的结果表明 Cyp19a1 对于红耳滑龟的卵巢决定是必要和充分的,在芳香酶和爬行动物的性别决定和分化之间建立了因果关系和直接的遗传联系。

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