Organismal and Evolutionary Biology Research Programme, University of Helsinki, Viikinkaari 9, 00014 Helsinki, Finland.
Organismal and Evolutionary Biology Research Programme, University of Helsinki, Viikinkaari 9, 00014 Helsinki, Finland.
Gen Comp Endocrinol. 2022 Sep 1;325:114055. doi: 10.1016/j.ygcen.2022.114055. Epub 2022 May 14.
Age at maturity is a major contributor to the diversity of life history strategies in organisms. The process of maturation is influenced by both genetics and the environment, and includes changes in levels of sex hormones and behavior, but the specific factors leading to variation in maturation timing are poorly understood. gnrh1 regulates the transcription of gonadotropin genes at pubertal onset in many species, but this gene is lacking in certain teleost species including Atlantic salmon (Salmo salar), which raises the possibility of the involvement of other important regulatory factors during this process. Earlier research has reported a strong association of alternative alleles of the vgll3 gene with maturation timing in Atlantic salmon, suggesting it as a potential candidate regulating reproductive axis genes. Here, we investigated the expression of reproductive axis genes in one-year-old Atlantic salmon males with immature gonads and different vgll3 genotypes during the spawning period. We detected strong vgll3 genotype-dependent differential expression of reproductive axis genes (such as fshb, lhb, amh and igf3) tested in the pituitary, and testis. In addition, we observed differential expression of jun (ap1) and nr5a1b (sf1), potential upstream regulators of gonadotropins in the pituitary, as well as axin2, id3, insl3, itch, ptgs2a and ptger4b, the downstream targets of amh and igf3 in the testis. Hereby, we provide evidence of strong vgll3 genotype-dependent transcriptional regulation of reproductive axis genes prior to sexual maturation and suggest alternative models for distinct actions of vgll3 genotypes on the related molecular processes.
成熟年龄是生物生活史策略多样性的主要决定因素。成熟过程受遗传和环境的影响,包括性激素和行为水平的变化,但导致成熟时间变化的具体因素知之甚少。gnrh1 在许多物种的青春期开始时调节促性腺激素基因的转录,但这种基因在某些鱼类物种中缺失,包括大西洋鲑(Salmo salar),这就提出了在这个过程中可能涉及其他重要调节因素的可能性。早期的研究报告称,vgll3 基因的替代等位基因与大西洋鲑的成熟时间强烈相关,这表明它可能是调节生殖轴基因的潜在候选基因。在这里,我们研究了在产卵期具有未成熟性腺和不同 vgll3 基因型的一岁大西洋鲑雄性的生殖轴基因的表达。我们检测到在垂体和睾丸中测试的生殖轴基因(如 fshb、lhb、amh 和 igf3)存在强烈的 vgll3 基因型依赖性差异表达。此外,我们观察到了垂体中潜在的促性腺激素上游调节剂 jun(ap1)和 nr5a1b(sf1)以及睾丸中 amh 和 igf3 的下游靶标 axin2、id3、insl3、itch、ptgs2a 和 ptger4b 的差异表达。因此,我们提供了在性成熟前生殖轴基因强烈的 vgll3 基因型依赖性转录调节的证据,并提出了 vgll3 基因型对相关分子过程的不同作用的替代模型。