Stanford University, Department of Biology, 371 Serra Mall, Stanford, California 94041, USA.
Endocrinology. 2011 Jan;152(1):291-302. doi: 10.1210/en.2010-0876. Epub 2010 Nov 17.
Reproduction in all vertebrates is controlled by the brain-pituitary-gonad (BPG) axis, which is regulated socially in males of the African cichlid fish Astatotilapia burtoni. Although social information influences GnRH1 neurons at the apex of the BPG axis, little is known about how the social environment and dominance affects the cellular and molecular composition of the testes to regulate reproductive capacity. We created an opportunity for reproductively suppressed males to ascend in status and then measured changes in gene expression and tissue morphology to discover how quickly the perception of this opportunity can influence the testes. Our results show rapid up-regulation of mRNA levels of FSH receptor and several steroid receptor subtypes in the testes during social ascent. In contrast, LH receptor was not elevated until 72 h after ascent, but this increase was coincident with elevated circulating androgens and early stages of spermatogenesis, suggesting a role in steroidogenesis. The spermatogenic potential of the testes, as measured by cellular composition, was also elevated before the overall increase in testes size. The presence of cysts at all stages of spermatogenesis, coupled with lower levels of gonadotropin and steroid receptors in subordinate males, suggests that the BPG axis and spermatogenesis are maintained at a subthreshold level in anticipation of the chance to gain a territory and become reproductively active. Our results show that the testis is stimulated extremely quickly after perception of social opportunity, presumably to allow suppressed males to rapidly achieve high reproductive success in a dynamic social environment.
所有脊椎动物的繁殖都受脑垂体性腺(BPG)轴的控制,在非洲丽鱼科鱼 Astatotilapia burtoni 的雄性中,这种轴受到社会因素的调节。尽管社会信息会影响 BPG 轴顶端的 GnRH1 神经元,但对于社会环境和支配地位如何影响睾丸的细胞和分子组成以调节生殖能力,人们知之甚少。我们为受生殖抑制的雄性提供了一个提升地位的机会,然后测量基因表达和组织形态的变化,以发现这种机会的感知能多快影响睾丸。我们的结果表明,在社会地位上升期间,睾丸中 FSH 受体和几种类固醇受体亚型的 mRNA 水平迅速上调。相比之下,LH 受体直到上升后 72 小时才升高,但这种增加与循环雄激素的升高和精子发生的早期阶段同时发生,表明其在类固醇生成中起作用。睾丸的精子发生潜力,如通过细胞组成来衡量,在睾丸总体增大之前就已经提高。在精子发生的各个阶段都存在囊肿,加上从属雄性的促性腺激素和类固醇受体水平较低,这表明 BPG 轴和精子发生在预期获得领地并变得具有生殖活性的情况下,维持在亚阈值水平。我们的结果表明,睾丸在感知社会机会后会迅速受到刺激,大概是为了让受抑制的雄性能够在动态的社会环境中迅速获得高生殖成功。