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牛鲨 Carcharhinus leucas 身体形态的个体发育变化。

Ontogenetic shifts in body form in the bull shark Carcharhinus leucas.

机构信息

Department of Life Sciences, Silwood Park Campus, Imperial College London, Berks, UK.

Investigación Tiburones Mexico A.C, La Paz, Mexico.

出版信息

J Morphol. 2024 Feb;285(2):e21673. doi: 10.1002/jmor.21673.

Abstract

Recent studies have uncovered mosaic patterns of allometric and isometric growth underlying ontogenetic shifts in the body form of elasmobranch species (shark and rays). It is thought that shifts in trophic and spatial ecology through ontogeny drive these morphological changes; however, additional hypotheses relating to developmental constraints have also been posed. The bull shark (Carcharhinus leucas) is a large-bodied coastal shark that exhibits strong ontogenetic shifts in trophic and spatial ecology. In this study, we utilise a large data set covering a large number of morphological structures to reveal ontogenetic shifts in the body form of C. leucas, stratifying analyses by sex and size classes to provide fine-scale, more ecomorphologically relevant results. Our results indicate shifts in functional demands across the body through ontogeny, driven by selective pressures relating to trophic and spatial ecology driving the evolution of allometry. We also find significant differences in scaling trends between life stages, and between the sexes, highlighting the importance of utilising large, diverse datasets that can be stratified in this way to improve our understanding of elasmobranch morphological evolution. Ultimately, we discuss the implications of these results for existing ecomorphological hypotheses regarding the evolution of specific morphological structures, and pose novel hypotheses where relevant.

摘要

最近的研究揭示了软骨鱼类(鲨鱼和鳐鱼)个体发育过程中体型发生变化的异速生长和等速生长的镶嵌模式。人们认为,通过个体发育,营养和空间生态的转变驱动了这些形态变化;然而,也提出了与发育限制有关的其他假说。牛鲨(Carcharhinus leucas)是一种大型沿海鲨鱼,其营养和空间生态在个体发育过程中发生了强烈的转变。在这项研究中,我们利用了一个涵盖大量形态结构的大型数据集,揭示了 C. leucas 体型的个体发育变化,通过性别和大小类别分层分析,提供了更精细、更生态形态相关的结果。我们的研究结果表明,通过与营养和空间生态相关的选择压力,功能需求在个体发育过程中在整个身体中发生了转变,从而推动了异速生长的进化。我们还发现了不同生命阶段和性别之间的显著的缩放趋势差异,突出了利用可以按这种方式分层的大型、多样化数据集来提高我们对软骨鱼类形态进化的理解的重要性。最后,我们讨论了这些结果对现有关于特定形态结构进化的生态形态学假说的影响,并提出了相关的新假说。

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