Gayford Joel H, Waghe Ronak, Sternes Phillip C, Tyabji Zoya
Department of Life Sciences Imperial College London London UK.
College of Science and Engineering James Cook University Townsville Australia.
Ecol Evol. 2024 Oct 10;14(10):e70414. doi: 10.1002/ece3.70414. eCollection 2024 Oct.
The versatility of the shark body form is suggested to be one of the key factors underlying their evolutionary success and persistence. Nevertheless, sharks exhibit a huge diversity of body forms and morphological adaptations. More subtly, it is increasingly evident that in many species, morphology varies through ontogeny. Multiple competing hypotheses exist explaining both the function of specific morphological structures and the interspecific distribution of these ontogenetic morphological shifts. However, existing studies are restricted to a small number of mostly large-bodied species. In this study, we report allometric scaling relationships from functionally important morphological structures in the spadenose shark (). We find that a mosaic of isometric and allometric growth underlies the scaling trends in this species and that cases of allometry are consistent with an ontogenetic shift in diet. Moreover, our results refute suggestions that small-bodied sharks grow isometrically. Given the small number of existing studies of ontogenetic morphometry in sharks and the life-history/ecological characteristics of , this study is a valuable contribution to our understanding of the adaptive value of ontogenetic morphological shifts in elasmobranchs.
鲨鱼身体形态的多功能性被认为是其进化成功和延续的关键因素之一。然而,鲨鱼呈现出多种多样的身体形态和形态适应性。更微妙的是,越来越明显的是,在许多物种中,形态会随着个体发育而变化。存在多种相互竞争的假说,用于解释特定形态结构的功能以及这些个体发育形态变化的种间分布。然而,现有研究仅限于少数几种大多体型较大的物种。在本研究中,我们报告了尖吻鲨()中功能重要的形态结构的异速生长比例关系。我们发现,等速生长和异速生长的镶嵌模式是该物种比例趋势的基础,并且异速生长的情况与饮食的个体发育转变一致。此外,我们的结果反驳了小型鲨鱼等速生长的观点。鉴于现有的关于鲨鱼个体发育形态测量的研究数量较少,以及(该物种)的生活史/生态特征,本研究对我们理解板鳃亚纲动物个体发育形态变化的适应性价值具有重要贡献。