首页> 外文期刊>Sexual development: genetics, molecular biology, evolution, endocrinology, embryology, and pathology of sex determination and differentiation >Elevated amh gene expression in the brain of male tilapia (Oreochromis niloticus) during testis differentiation.
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Elevated amh gene expression in the brain of male tilapia (Oreochromis niloticus) during testis differentiation.

机译:睾丸分化过程中雄性罗非鱼(Oreochromis niloticus)大脑中的amh基因表达升高。

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Anti-mullerian hormone (AMH) is expressed in male embryos and represses development of mullerian ducts during testis differentiation in mammals, birds and reptiles. Amh orthologues have been identified in teleosts despite them lacking mullerian ducts. Previously we found sexually dimorphic aromatase activity in tilapia brains before ovarian differentiation. This prompted us to search for further dimorphisms in tilapia brains during sex differentiation and see whether amh is expressed. We cloned the tilapia amh gene and found that it contains 7 exons but no spliced forms. The putative protein presents highest homologies with Amh proteins of pejerrey and medaka as compared to other Perciformes. We analysed amh expression in adult tissues and found elevated levels in testes, ovary and brain. Amh expression was dimorphic with higher levels in XY male brains at 10-15 dpf, when the gonads were still undifferentiated and gonadal amh was not dimorphic. Male brains had 2.7-fold higher amh expression than gonads. Thereafter, amh levels decreased in the brain while they were up-regulated in differentiating testes. Our study indicates that amh is transcribed in male brains already at 10 dpf, suggesting that sexual differentiation may be occurring earlier in tilapia brain than in gonads.
机译:抗苗勒管激素(AMH)在雄性胚胎中表达,并在哺乳动物,鸟类和爬行动物的睾丸分化过程中抑制苗勒管的发育。尽管它们缺少苗勒氏管,但在硬骨鱼中已发现Amh直系同源物。以前,我们在卵巢分化之前在罗非鱼的大脑中发现了性二形芳香酶活性。这促使我们在性别分化过程中寻找罗非鱼大脑中进一步的二态性,并观察是否表达了amh。我们克隆了罗非鱼amh基因,发现它包含7个外显子,但没有剪接形式。与其他Perciformes相比,推定的蛋白质与pejerrey和medaka的Amh蛋白表现出最高的同源性。我们分析了成人组织中amh的表达,发现睾丸,卵巢和脑中的amh含量升高。当性腺仍未分化且性腺amh不是双态时,在10-15 dpf时XY男性大脑中Amh表达呈双态性,并具有较高的水平。男性大脑的性腺激素表达比性腺高2.7倍。此后,大脑中的amh水平下降,而分化睾丸中的amh水平则上调。我们的研究表明,amh已在10 dpf的男性大脑中转录,这表明罗非鱼大脑中的性分化可能比性腺更早。

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