首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >Developmental expression of genes involved in neural estrogen biosynthesis and signaling in the brain of the orange-spotted grouper Epinephelus coioides during gonadal sex differentiation.
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Developmental expression of genes involved in neural estrogen biosynthesis and signaling in the brain of the orange-spotted grouper Epinephelus coioides during gonadal sex differentiation.

机译:在性腺性别分化过程中,橙色斑点石斑鱼石斑鱼的大脑中神经雌激素生物合成和信号传导相关基因的发育表达。

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In the brain, the synthesis of neurosteroids and receptor activation during gonadal sex differentiation in teleosts are poorly understood. In the present study, the protogynous orange-spotted grouper (Epinephelus coioides) was selected as a model fish, and we hypothesized that de novo synthesis of neural estrogen may play a role in the female grouper brain during gonadal sex differentiation. We investigated the temporal expression of the genes StAR, cyp19a1b and pcna and the sex steroid nuclear receptors for estrogen (ERalpha, ERbeta1 and ERbeta2), androgen (AR) and the plasma membrane-associated estrogen receptor (GPR30) in the brain during early developmental ages from 90 days after hatching (dah) to 180dah after gonadal sex differentiation. Our results revealed that mRNA for ERs and GPR30 but not AR was significantly increased at 110dah (a time close to gonadal sex differentiation) in the forebrain and midbrain and for cyp19a1b at 110dah in the forebrain. Brain aromatase activity and estradiol (E2) levels, but not testosterone (T), were increased in the forebrain at 110 and 120dah, respectively. Furthermore, exogenous E2 stimulated cyp19a1b transcripts in the forebrain and hypothalamus and immunoreactive (ir)Cyp19a1b (aromatase enzyme) in the forebrain. irCyp19a1b localized in the glial cells of the forebrain regions. Therefore, we identified a peak of functional aromatase activity and estrogen signaling in the early grouper brain during gonadal sex differentiation. Moreover, pcna transcripts (a marker for cell proliferation activity) were higher in the early brain at 110-150dah. Thus, a peak time of development in the brain is suggested to occur during gonadal sex differentiation in the grouper.
机译:在大脑中,对硬骨鱼的性腺性别分化过程中神经类固醇的合成和受体激活的了解很少。在本研究中,选择了原产于橙色的斑斑石斑鱼(Epinephelus coioides)作为模型鱼,并且我们假设从头合成神经雌激素可能在性腺性别分化过程中在雌性石斑鱼脑中发挥作用。我们研究了早期发育过程中大脑中StAR,cyp19a1b和pcna基因以及雌激素的性类固醇核受体(ERalpha,ERbeta1和ERbeta2),雄激素(AR)和质膜相关雌激素受体(GPR30)的时间表达从孵化后的90天(dah)到性腺性别分化后的180dah。我们的研究结果表明,在前脑和中脑的110dah(接近性腺性别分化的时间),ER和GPR30的mRNA显着增加,而在前脑的110dah的cyp19a1b则显着增加。脑芳香酶活性和雌二醇(E2)水平升高,而前睾酮(T)则没有升高,分别为110dah和120dah。此外,外源E2刺激前脑和下丘脑中的cyp19a1b转录本,以及前脑中的免疫反应性(ir)Cyp19a1b(芳香酶)。 irCyp19a1b定位在前脑区域的神经胶质细胞中。因此,我们确定了性腺性别分化过程中早期石斑鱼脑中功能性芳香化酶活性和雌激素信号的峰值。此外,pcna转录本(细胞增殖活性的标志)在早期大脑中较高,为110-150dah。因此,建议在石斑鱼的性腺性别分化过程中出现大脑发育的高峰时间。

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