Laboratorio de Fisiología de la Reproducción y Ecología de Peces, Instituto de Biología, Facultad de Ciencias, Universidad de la República Oriental del Uruguay, Montevideo, Uruguay.
Mol Reprod Dev. 2012 Aug;79(8):504-16. doi: 10.1002/mrd.22053. Epub 2012 Jul 12.
The molecular mechanisms underlying testis differentiation in basal actinopterygian fish remains poorly understood. The sex differentiation period was investigated in the Siberian sturgeon, Acipenser baerii, by expression profiling of Sertoli cell transcription factors (dmrt1, sox9) that control testis differentiation in vertebrates; Leydig cell factors (cyp17a1, star) affecting androgen production; the androgen receptor (ar); a growth factor controlling testis development (igf1); and a gene coding for a gonadotropin hormone (lh). Two genes were characterised for the first time in the Siberian sturgeon (dmrt1, cyp17a1), while the others came from public databases. Sturgeon gonad development is very slow, with a late sexual differentiation time during their juvenile stage, and are still immature at 3 years of age. Immature fish showed a sex-dimorphic pattern; all the genes studied displayed a higher expression level in male gonads. We took advantage of the presence of juvenile fish with pre- and post-differentiated gonads (16 and 18 months old) to characterise them at the molecular level. The post-differentiated fish displayed a sex dimorphism of gene expression in their gonads for all genes studied, with the exception of sox9. The trends in undifferentiated fish lead us to propose that sturgeons undergoing male differentiation express high levels of Sertoli cell factors (dmrt1, sox9) and of genes involved in the production and receptivity of androgens (cyp17a1, star and ar) together with lh. Expression profiles and phylogenetic studies suggest that these genes are potential regulators of testis development in the Siberian sturgeon.
基底辐射鳍鱼类睾丸分化的分子机制仍知之甚少。本研究通过对西伯利亚鲟(Acipenser baerii)中睾丸分化的 Sertoli 细胞转录因子(dmrt1、sox9)、影响雄激素产生的 Leydig 细胞因子(cyp17a1、star)、雄激素受体(ar)、控制睾丸发育的生长因子(igf1)和促性腺激素基因(lh)的表达谱,研究了其性分化时期。本研究首次在西伯利亚鲟中对两个基因(dmrt1、cyp17a1)进行了特征描述,而其他基因则来自公共数据库。鲟鱼的性腺发育非常缓慢,在其幼体阶段性分化时间较晚,3 岁时仍未成熟。未成熟的鱼表现出性别二态性;所有研究的基因在雄性性腺中表达水平更高。我们利用具有未分化和已分化性腺的幼鱼(16 和 18 个月龄)的优势,在分子水平上对其进行了特征描述。在已分化的鱼中,除 sox9 外,所有研究基因的性腺表达均表现出性别二态性。未分化鱼的表达趋势使我们提出,正在经历雄性分化的鲟鱼高表达 Sertoli 细胞因子(dmrt1、sox9)和雄激素产生及受体(cyp17a1、star 和 ar)以及 lh 的基因。表达谱和系统发育研究表明,这些基因可能是西伯利亚鲟睾丸发育的潜在调节因子。