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在壁虎(有鳞目:壁虎科:裸耳蜥属)中,椎骨数量的变化不会导致性大小二型、种间变异性或体型表型可塑性。

Variability in vertebral numbers does not contribute to sexual size dimorphism, interspecific variability, or phenotypic plasticity in body size in geckos (Squamata: Gekkota: Paroedura).

机构信息

Department of Ecology, Faculty of Science, Charles University, Prague 2, Czech Republic.

Department of Zoology, Faculty of Science, Charles University, Prague 2, Czech Republic.

出版信息

J Exp Zool A Ecol Integr Physiol. 2018 Apr;329(4-5):185-190. doi: 10.1002/jez.2159. Epub 2018 Apr 18.

Abstract

Body size is a fundamental trait correlated with nearly every aspect of animal life. It is influenced by numerous genetic and non-genetic factors. Despite its central importance, proximate mechanisms of intra- and interspecific variability in body size are still not well understood even in such a largely studied group as reptiles. For our study, we concentrated on the gecko species Paroedura picta. We investigated whether differences in sexual size dimorphism and in final and asymptotic snout-vent length (induced by a range of incubation and rearing temperatures) are correlated with differences in the number of presacral vertebrae. Moreover, we tested whether changes in this number were associated with evolutionary changes in sexual size dimorphism and body size in the genus Paroedura. We found that the variation in the number of presacral vertebrae is very limited both intra- and interspecifically, ranging between 26 and 28 vertebrae with most individuals possessing the modal number of 27. We conclude that changes in the number of vertebrae do not contribute to developmental plasticity or evolutionary changes in body size nor, in contrast to some other squamate lineages, to sexual size dimorphism.

摘要

体型是与动物生活几乎各个方面都相关的基本特征。它受到许多遗传和非遗传因素的影响。尽管体型非常重要,但即使在像爬行动物这样被广泛研究的群体中,体型的种内和种间变异的近因机制仍未得到很好的理解。在我们的研究中,我们集中研究了壁虎物种 Paroedura picta。我们调查了性二态性和最终及渐近吻肛长(由一系列孵化和饲养温度引起)的差异是否与荐前椎骨数量的差异有关。此外,我们还测试了这个数量的变化是否与 Paroedura 属的性二态性和体型的进化变化有关。我们发现,荐前椎骨数量的变化在种内和种间都非常有限,范围在 26 到 28 个椎骨之间,大多数个体具有 27 个椎骨的模式数量。我们得出的结论是,椎骨数量的变化不会导致体型的发育可塑性或进化变化,也不会像其他一些有鳞目谱系那样导致性二态性。

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