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hsd17b1 是西伯利亚鲟卵巢分化的关键基因。

hsd17b1 is a key gene for ovarian differentiation of the Siberian sturgeon.

机构信息

Laboratorio de Fisiología de la Reproducción y Ecología de Peces, Instituto de Biología, Facultad de Ciencias, Universidad de la República Oriental del Uruguay, Montevideo, Uruguay.

Institut de Génomique Fonctionnelle de Lyon, UMR5242, Ecole Normale Supérieure de Lyon, Centre National de la Recherche Scientifique, Université Claude Bernard, Lyon, France.

出版信息

Mol Reprod Dev. 2024 Jan;91(1):e23729. doi: 10.1002/mrd.23729.

Abstract

This is the first work using gonads from undifferentiated, genetically-sexed Siberian sturgeon describing expression changes in genes related to steroid synthesis and female and male sex differentiation. One factor identified as relevant for ovarian differentiation was the gene coding for the enzyme Hsd17b1, which converts estrone into estradiol-17β. hsd17b1 was highly activated in female gonads at 2.5 months of age, around the onset of sex differentiation, preceding activation of two other genes involved in estrogen production (cyp19a1 and foxl2). hsd17b1 was also strongly repressed in males. Two known foxl2 paralogs are found in Siberian sturgeon-foxl2 and foxl2l-but only foxl2 appeared to be associated with ovarian differentiation. With regard to the male pathway, neither 11-oxygenated androgens nor classic male genes (amh, dmrt1, sox9, and dhh) were found to be involved in male sex differentiation, leaving open the question of which genes participate in early male gonad development in this ancient fish. Taken together, these results indicate an estrogen-dependence of female sex differentiation and 11-oxygenated androgen-independence of male sex differentiation.

摘要

这是首次利用未分化的遗传性别鉴定的西伯利亚鲟性腺来描述与类固醇合成以及雌性和雄性性别分化相关的基因表达变化的研究。鉴定出与卵巢分化相关的一个因素是编码酶 Hsd17b1 的基因,该酶将雌酮转化为雌二醇-17β。hsd17b1 在 2.5 月龄时(性别分化开始前后)在雌性性腺中高度激活,早于参与雌激素产生的另外两个基因(cyp19a1 和 foxl2)的激活。hsd17b1 在雄性中也被强烈抑制。西伯利亚鲟中发现了两个已知的 foxl2 旁系同源物——foxl2 和 foxl2l——但似乎只有 foxl2 与卵巢分化有关。关于雄性途径,既没有发现 11-氧化雄激素,也没有发现经典的雄性基因(amh、dmrt1、sox9 和 dhh)参与雄性性别分化,这使得早期雄性性腺发育中哪些基因参与这一古老鱼类的雄性性别分化的问题仍然存在。综上所述,这些结果表明雌性性别分化依赖于雌激素,而雄性性别分化依赖于 11-氧化雄激素。

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