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首页> 外文期刊>Frontiers in Endocrinology >Overexpression of Anti-müllerian Hormone Gene in vivo Affects Gonad Sex Differentiation in Undifferentiated Orange-Spotted Groupers ( Epinephelus coioides)
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Overexpression of Anti-müllerian Hormone Gene in vivo Affects Gonad Sex Differentiation in Undifferentiated Orange-Spotted Groupers ( Epinephelus coioides)

机译:体内抗苗勒激素基因过高表达影响未分化橙斑斑鱼的性腺性别分化( Epinephelus coioides

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Sex differentiation in teleost fishes occurs in response to sex determination signals, which induce the gonad to develop as either an ovary or testis. However, sex differentiation mechanisms in fishes are diverse, and information on gonad differentiation in sex changing fishes remains limited. The orange-spotted grouper ( Epinephelus coioides ) is a protogynous hermaphroditic fish that provides an ideal model for investigating gonad differentiation in vertebrates. In this study, Transcriptome data showed that expression levels of amh and amhrII in gonads were increased during sex differentiation. Then we investigated the effect of overexpression anti-Müllerian hormone (Amh) on gonad development in juvenile orange-spotted groupers. Expression levels of female-related genes and serum 17β-estradiol levels were decreased, while expression of male-related genes and serum 11-ketotestosterone levels were increased in fish fed with amh -plasmid. Overexpression of Amh was also promoted the spermatogonia proliferation and induced the development of male gonads in undifferentiated orange-spotted groupers, but that this male tendency was preceded by female differentiation. In summary, these results illustrated that Amh overexpression by amh -plasmid feeding induced male gonad development in undifferentiated groupers.
机译:硬骨鱼类的性别分化是根据性别确定信号而发生的,这会导致性腺发育成卵巢或睾丸。然而,鱼类中的性别分化机制是多种多样的,并且关于变性鱼中性腺分化的信息仍然有限。橙斑石斑鱼(Epinephelus coioides)是一种雌雄同体的雌雄同体鱼类,为研究脊椎动物性腺分化提供了理想的模型。在这项研究中,转录组数据显示,在性别分化过程中性腺中amh和amhrII的表达水平增加。然后,我们调查了过度表达的抗苗勒氏管激素(Amh)对少年橙斑斑鱼性腺发育的影响。喂有amh质粒的鱼的雌性相关基因的表达水平和血清17β-雌二醇水平降低,而雄性相关基因的表达和血清11-酮睾酮水平升高。 Amh的过表达还促进了未分化的橙色斑点石斑鱼的精原细胞增殖并诱导了雄性腺的发育,但是这种雄性趋势先于雌性分化。总之,这些结果表明,通过amh-质粒喂养的Amh过表达诱导了未分化石斑鱼的雄性腺发育。

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