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Expression of gonadotropin and gonadotropin receptor genes during early sexual maturation in male Atlantic salmon parr.

机译:雄性大西洋鲑鱼幼体在性早熟过程中促性腺激素和促性腺激素受体基因的表达。

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Atlantic salmon males may mature already as small parr in freshwater. Sexual maturation in teleosts as in vertebrates is characterized by the activation of the brain-pituitary-gonad axis. The endocrine regulation of early puberty is still not well understood. In the present study, one-summer-old male Atlantic salmon parr were sampled regularly from December several months prior to the beginning of spermatogenesis until spawning in October. Pituitary expression levels of follicle-stimulating hormone (FSH) and luteinizing hormone (LH) beta subunit genes were analyzed in parallel with testis expression of FSH receptor (FSHR) and LH receptor (LHR) genes by RT-PCR and plasma 11-ketostestosterone (11-KT) was measured. Expression levels of FSHbeta, low during winter and spring started to increase prior to the onset of gonadal growth at the end of May while LHbeta mRNA levels were hardly detectable. Both gonadotropin receptor genes were expressed in immature testis with FSHR transcripts being more abundant (8-fold). FSHR transcript levels increased in parallel to FSHbeta levels from early spermatogenesis onwards, while LHR mRNA started to increase prior to any large changes in LHbeta expression. Both transcript levels of LHbeta and LHR were highest during spermiation. Plasma 11-KT increased at the beginning of spermatogenesis reaching highest levels at spermiogenesis suggesting a possible role of FSH in inducing 11-KT production during early spermatogenesis while LH stimulates via its specific receptor 11-KT production at spermiogenesis. The commitment into sexual maturation appears to be dependant on both the presence of FSHR in immature testis and the increase of FSH expression.
机译:在淡水中,大西洋鲑鱼的雄性可能已经成熟了。如在脊椎动物中,硬骨鱼的性成熟以脑-垂体-性腺轴的激活为特征。青春期早期的内分泌调节尚不十分清楚。在本研究中,从精子发生开始的前几个月(十二月)直到十月产卵,定期取样一岁的雄性大西洋鲑鱼。通过RT-PCR和血浆11-酮睾酮(FSH)和黄体生成素(LH)β亚基基因与FSH受体(FSHR)和LH受体(LHR)基因的睾丸表达平行分析垂体表达水平(测量11-KT)。在5月底,在性腺生长开始之前,冬季和春季低水平的FSHbeta表达水平开始增加,而LHbeta mRNA水平几乎无法检测到。两种促性腺激素受体基因均在未成熟的睾丸中表达,FSHR转录物更为丰富(8倍)。从早期精子发生开始,FSHR转录水平与FSHbeta水平平行增加,而LHR mRNA表达在LHbeta表达发生任何大变化之前就开始增加。 LHbeta和LHR的两个转录水平在精子期间最高。精子发生开始时血浆11-KT增加,达到精子发生时的最高水平,提示FSH可能在早期精子发生过程中诱导11-KT产生,而LH在精子发生时通过其特异性受体11-KT产生刺激。性成熟的承诺似乎取决于未成熟睾丸中FSHR的存在和FSH表达的增加。

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