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黑鲷(Acanthopagrus schlegeli)性腺发育和性逆转过程中nr0b1和nr5a4的表达

The expression of nr0b1 and nr5a4 during gonad development and sex change in protandrous black porgy fish, Acanthopagrus schlegeli.

作者信息

Wu Guan-Chung, Tomy Sherly, Chang Ching-Fong

机构信息

Institute of Bioscience and Biotechnology, National Taiwan Ocean University, Keelung 202, Taiwan.

出版信息

Biol Reprod. 2008 Feb;78(2):200-10. doi: 10.1095/biolreprod.107.062612. Epub 2007 Oct 24.

Abstract

Protandrous black porgy fish, Acanthopagrus schlegeli, have a striking life cycle, with a mono-male sex differentiation at the juvenile stage and male-to-female sex change at 3 yr of age. We report for the first time integrative molecular data on these interesting phenomena. Sex differentiation occurred between 4 and 5 mo of age. Testicular nr5a4 transcripts increased to high levels during sex differentiation (5 mo old), whereas nr0b1 (Dax-1) did not increase until the age of 8 mo. High nr5a4 and nr0b1 expression in testicular tissue, in contrast to low nr5a4 and high nr0b1 expression in ovarian tissue, were found in the male phase of 0(+)- to 2-yr-old fish (before sex change). Increased nr5a4, decreased nr0b1, and increased cyp19a1a were found in the ovarian tissues undergoing development from primary oocytes to vitellogenic oocytes during the natural sex change in 2(+)-yr-old fish. Removal of testicular tissue in 1(+)-yr-old fish resulted in both increased ovarian nr5a4 and genes in the steroidogenic pathway and decreased nr0b1 together with the appearance of vitellogenic oocytes. Ovary developed into the active stage with the increased expression of star and steroidogenic enzymes, including aromatase, in concordance with the decreased expression of nr0b1 in the testis-excised fish. Long-term estradiol (E2) administration resulted in early sex change, but the ovaries were mainly with primary oocytes. Low nr5a4, high nr0b1, and low steroidogenic enzymes, including cyp19a1a expression, were also observed in these E2-fed ovarian tissues. Thus, nr5a4 but not nr0b1 was associated with male sex differentiation. Testicular development required cooperative functions of both nr5a4 and nr0b1. The present study suggests that nr5a4 and nr0b1 have an antagonistic interaction for the oocyte development. Testicular tissue exerted inhibitory effects on ovarian development. It is probable that nr0b1 regulates the timing of vitellogenic development and sex change in black porgy.

摘要

雄性先熟的黑鲷(Acanthopagrus schlegeli)具有独特的生命周期,幼鱼阶段为单雄性性别分化,3岁时发生雄性向雌性的性转变。我们首次报告了关于这些有趣现象的综合分子数据。性别分化发生在4至5月龄之间。睾丸中的nr5a4转录本在性别分化期间(5月龄)增加到高水平,而nr0b1(Dax-1)直到8月龄才增加。在0(+)至2岁鱼的雄性阶段(性转变前),发现睾丸组织中nr5a4和nr0b1表达高,而卵巢组织中nr5a4表达低且nr0b1表达高。在2(+)岁鱼自然性转变过程中,从初级卵母细胞发育到卵黄生成卵母细胞的卵巢组织中,nr5a4增加、nr0b1减少且cyp19a1a增加。切除1(+)岁鱼的睾丸组织导致卵巢nr5a4和类固醇生成途径中的基因增加,nr0b1减少,同时出现卵黄生成卵母细胞。卵巢发育到活跃阶段,伴随着star和类固醇生成酶(包括芳香化酶)表达增加,这与切除睾丸的鱼中nr0b1表达减少一致。长期给予雌二醇(E2)导致性转变提前,但卵巢主要含有初级卵母细胞。在这些喂食E2的卵巢组织中也观察到nr5a4低、nr0b1高以及包括cyp19a1a表达在内的类固醇生成酶低。因此,nr5a4而非nr0b1与雄性性别分化有关。睾丸发育需要nr5a4和nr0b1的协同作用。本研究表明,nr5a4和nr0b1对卵母细胞发育具有拮抗作用。睾丸组织对卵巢发育具有抑制作用。nr0b1可能调节黑鲷卵黄生成发育和性转变的时间。

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