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一种蜥蜴中雄性体型大于雌性的性大小二态性的发育:性成熟后很久达到峰值,且与雄性的显著生长重叠。

Development of male-larger sexual size dimorphism in a lizard: peak long after sexual maturity overlaps with pronounced growth in males.

作者信息

Meter Brandon, Kratochvíl Lukáš, Kubička Lukáš, Starostová Zuzana

机构信息

Department of Zoology, Faculty of Science, Charles University in Prague, Prague, Czechia.

Department of Ecology, Faculty of Science, Charles University in Prague, Prague, Czechia.

出版信息

Front Physiol. 2022 Aug 10;13:917460. doi: 10.3389/fphys.2022.917460. eCollection 2022.

Abstract

Squamate reptiles have been considered to be indeterminate growers for a long time. However, recent studies demonstrate that bone prolongation is stopped in many lizards by the closure of bone growth plates. This shift in the paradigm of lizard growth has important consequences for questions concerning the proximate causes of sexual size dimorphism. The traditional model of highly plastic and indeterminate growth would correspond more to a long-term action of a sex-specific growth regulator. On the other hand, determinate growth would be more consistent with a regulator acting in a sex-specific manner on the activity of bone growth plates operating during the phase when a dimorphism in size develops. We followed the growth of males and females of the male-larger Madagascar ground gecko () and monitored the activity of bone growth plates, gonad size, levels of steroids, expression of their receptors (), and expression of genes from the insulin-like growth factor network (, , and ) in livers. Specifically, we measured gene expression before the onset of dimorphic growth, at the time when males have more active bone growth plates and sexual size dimorphism was clearly visible, and after a period of pronounced growth in both sexes. We found a significant spike in the expression of in males around the time when dimorphism develops. This overexpression in males comes long after an increase in circulating testosterone levels and sexual maturation in males, and it might be suppressed by ovarian hormones in females. The results suggest that sexual size dimorphism in male-larger lizards can be caused by a positive effect of high levels of on bone growth. The peak in resembles the situation during the pubertal growth spurt in humans, but in lizards, it seems to be sex-specific and disconnected from sexual maturation.

摘要

很长一段时间以来,有鳞类爬行动物一直被认为是无限生长的。然而,最近的研究表明,许多蜥蜴的骨骼延长会因骨生长板的闭合而停止。蜥蜴生长模式的这种转变对于有关两性体型差异近因的问题具有重要影响。高度可塑性和无限生长的传统模型更符合性别特异性生长调节因子的长期作用。另一方面,有限生长更符合一种调节因子,该调节因子在体型差异形成阶段以性别特异性方式作用于骨生长板的活性。我们追踪了雄性体型更大的马达加斯加地虎(学名未给出)的雄性和雌性个体的生长情况,并监测了骨生长板的活性、性腺大小、类固醇水平、其受体(未给出具体名称)的表达以及肝脏中胰岛素样生长因子网络相关基因(未给出具体名称)的表达。具体而言,我们在两性体型差异生长开始前、雄性骨生长板更活跃且两性体型差异清晰可见时以及两性经过一段显著生长后测量了基因表达。我们发现,在两性体型差异形成前后,雄性个体中某基因(未给出具体名称)的表达出现显著峰值。雄性个体中的这种过表达发生在循环睾酮水平升高和雄性性成熟之后很久,并且可能会被雌性个体中的卵巢激素所抑制。结果表明,雄性体型更大的蜥蜴的两性体型差异可能是由高水平的某物质(未给出具体名称)对骨骼生长的积极作用导致的。该物质(未给出具体名称)的峰值类似于人类青春期生长突增时的情况,但在蜥蜴中,它似乎是性别特异性的,且与性成熟无关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ece/9399403/38901b2a4869/fphys-13-917460-g001.jpg

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