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首页> 外文期刊>Fish Physiology and Biochemistry >Increase in estrogen signaling in the early brain of orange-spotted grouper Epinephelus coioides: a mini-review.
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Increase in estrogen signaling in the early brain of orange-spotted grouper Epinephelus coioides: a mini-review.

机译:橙斑石斑鱼石斑鱼(Epinephelus coioides)早期大脑中雌激素信号传导的增加:一项小型综述。

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Despite neurosteroidogenic enzymes are playing important roles in the regulation of brain development and function, the potential link between brain and gonad by the action of steroid hormones during gonadal sex differentiation is still not clear in teleosts. In this mini-review, we summarized our understanding on the early brain development related to the synthesis of neurosteroids and receptor signaling during gonadal sex differentiation in protogynous orange-spotted grouper, Epinephelus coioides (functional females for the first 6 years of life and start to sex change around the age of 7 years) and protandrous black porgy (functional males for the first 2 years of life but begin to change sex during the third year). We found a similar profile in the increased expression of brain aromatase gene (aromatatse B or cyp19a1b), aromatase activity, estradiol (E2), and estrogen signaling in the brain of both grouper and black porgy fish during gonadal sex differentiation. In contrast to mammals, teleost fish Cyp19a1b expressed in a unique cell type, a radial glial cell, which is acted as progenitors in the brain of developing and adult fish. In agreement with these pioneer studies, we demonstrated that the grouper cyp19a1b/Cyp19a1b was expressed in radial glial cells. Further, in vivo data in the grouper brain showed that exogenous E2 upregulated Cyp19a1b immunoreactivity (ir) in radial glial cells. These data suggest the possible roles of Cyp19a1b and E2 in early brain development which is presumably related to gonadal sex differentiation.
机译:尽管神经类固醇生成酶在调节大脑发育和功能中起着重要作用,但硬骨鱼尚不清楚在性腺性别分化过程中类固醇​​激素的作用,大脑与性腺之间的潜在联系。在本小篇综述中,我们总结了我们对与早期橙色斑点石斑鱼石斑鱼(Epinephelus coioides)(功能性雌性在生命的最初6年开始并开始大约7岁时发生了性变化)和原黑black(生活中的前两年为正常男性,但在第三年开始发生性变化)。我们发现在石斑鱼和黑豚鱼的大脑中,芳香化酶基因(芳香化酶B或cyp19a1b)的表达增加,芳香化酶活性,雌二醇(E 2 )和雌激素信号传导增加,具有相似的特征。性腺性别分化。与哺乳动物相反,硬骨鱼Cyp19a1b以独特的细胞类型,即放射状神经胶质细胞表达,在发育和成鱼的大脑中起着祖细胞的作用。与这些先驱研究一致,我们证明了石斑鱼cyp19a1b / Cyp19a1b在放射状神经胶质细胞中表达。此外,石斑鱼脑中的体内数据显示,外源性E 2 在radial神经胶质细胞中上调了Cyp19a1b免疫反应性(ir)。这些数据表明Cyp19a1b和E 2 在早期大脑发育中的可能作用可能与性腺性别分化有关。

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