首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Dual roles of cyp19a1a in gonadal sex differentiation and development in the protandrous black porgy, Acanthopagrus schlegeli.
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Dual roles of cyp19a1a in gonadal sex differentiation and development in the protandrous black porgy, Acanthopagrus schlegeli.

机译:cyp19a1a在原黑黑豚鼠Acanthopagrus schlegeli的性腺性别分化和发育中具有双重作用。

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Protandrous black porgy fish, Acanthopagrus schlegeli, have a striking life cycle, with male sex differentiation at the juvenile stage, a bisexual gonad during first 2 yr of life, and a male-to-female sex change (with vitellogenic oocytes) at 3 yr of age. The present study investigated the role of aromatase (cyp19a1a/Cyp19a1a) in gonadal development in this species, especially in relation to sexual differentiation and sex change. Fish of various ages were treated with estradiol (E2) or aromatase inhibitor (AI) to determine whether manipulation of the hormonal environment has an impact on these processes. We report an integrative immunohistochemical, cellular, and molecular data set describing these interesting phenomena. During male sex differentiation, high levels of cyp19a1a/Cyp19a1a expression were observed in the undifferentiated gonad (4 mo of age), in marked contrast to the low cyp19a1a/Cyp19a1a levels detected in the differentiated testis at the age of 5-6 mo. A low dose of E2 (0.25 mg/kg feed) stimulated testicular growth and function in sexually differentiated fish, whereas a high dose of E2 (6 mg/kg feed) induced female development. Furthermore, administration of AI suppressed male development and promoted female sexual differentiation. An increased number of figla transcripts (an oocyte-specific gene) were observed prior to cyp19a1a expression, concomitant with the development of oogonia and early primary oocytes in the ovaries of both E2- and AI-treated groups. Immunohistochemical Pcna staining showed that the regression of testicular tissue occurred prior to the development of ovarian tissue in both E2- and AI-induced females. The importance of cyp19a1a in female development was further demonstrated by the increase in cyp19a1a transcripts during the naturally occurring sex change. Transcripts of foxl2 increased in the gonads of 2- to 3-yr-old black porgy during the early stages of the natural sex change, followed by a gradual elevation of cyp19a1a levels. The levels of both genes peaked in theresulting ovarian tissue. Thus, cyp19a1a/Cyp19a1a plays dual roles in the gonadal development, namely, in testicular development during the initial period of sexual differentiation and later in ovarian development during the natural sex change.
机译:黑头海豚鱼(Acanthopagrus schlegeli)具有惊人的生命周期,在幼年期有雄性分化,在生命的前2年为双性腺,在3年时为雌雄性别改变(有卵黄卵母细胞)。年龄。本研究调查了芳香化酶(cyp19a1a / Cyp19a1a)在该物种性腺发育中的作用,特别是在性别分化和性别变化方面。用雌二醇(E2)或芳香化酶抑制剂(AI)处理不同年龄的鱼,以确定激素环境的操作是否对这些过程有影响。我们报告了描述这些有趣现象的综合免疫组化,细胞和分子数据集。在男性性别分化期间,未分化的性腺(年龄为4 mo)观察到高水平的cyp19a1a / Cyp19a1a表达,与5-6 mo的分化睾丸中低水平的cyp19a1a / Cyp19a1a水平形成鲜明对比。低剂量的E2(0.25 mg / kg饲料)刺激了有性别分化的鱼类的睾丸生长和功能,而高剂量的E2(6 mg / kg饲料)则诱导了雌性发育。此外,使用AI抑制了男性发育并促进了女性的性别分化。在cyp19a1a表达之前,观察到Figla转录物(一种卵母细胞特异性基因)数量增加,这与E2和AI治疗组卵巢中卵黄质的形成和早期原代卵母细胞的发展有关。免疫组化Pcna染色显示,在E2和AI诱导的雌性小鼠中,睾丸组织的退化发生在卵巢组织发育之前。在自然发生的性别变化过程中,cyp19a1a转录本的增加进一步证明了cyp19a1a在女性发育中的重要性。在自然性别变化的早期,foxl2的转录本在2至3岁的黑豚鼠的性腺中增加,然后cyp19a1a水平逐渐升高。这两个基因的水平在卵巢组织中达到峰值。因此,cyp19a1a / Cyp19a1a在性腺发育中起着双重作用,即在性别分化的初始阶段在睾丸发育中,在自然性别改变后在卵巢发育中扮演双重角色。

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