Department of Earth and Environmental Sciences, University of Manchester, M13 9PL Manchester, UK.
Departamento de Ecología y Geología, Facultad de Ciencias, Universidad de Málaga, Málaga, Spain.
Proc Biol Sci. 2023 Nov 29;290(2011):20231400. doi: 10.1098/rspb.2023.1400.
Carnivores (cats, dogs and kin) are a diverse group of mammals that inhabit a remarkable range of ecological niches. While the relationship between ecology and morphology has long been of interest in carnivorans, the application of quantitative techniques has resulted in a recent explosion of work in the field. Therefore, they provide a case study of how quantitative techniques, such as geometric morphometrics (GMM), have impacted our ability to tease apart complex ecological signals from skeletal anatomy, and the implications for our understanding of the relationships between form, function and ecological specialization. This review provides a synthesis of current research on carnivoran ecomorphology, with the goal of illustrating the complex interaction between ecology and morphology in the skeleton. We explore the ecomorphological diversity across major carnivoran lineages and anatomical systems. We examine cranial elements (skull, sensory systems) and postcranial elements (limbs, vertebral column) to reveal mosaic patterns of adaptation related to feeding and hunting strategies, locomotion and habitat preference. We highlight the crucial role that new approaches have played in advancing our understanding of carnivoran ecomorphology, while addressing challenges that remain in the field, such as ecological classifications, form-function relationships and multi-element analysis, offering new avenues for future research.
食肉动物(猫科、犬科及其近亲)是一类多样化的哺乳动物,栖息在广泛的生态位中。尽管生态学和形态学之间的关系一直是食肉动物关注的焦点,但定量技术的应用导致该领域最近的研究成果大量涌现。因此,它们为我们提供了一个案例研究,说明定量技术(如几何形态测量学(GMM))如何影响我们从骨骼解剖结构中分离复杂生态信号的能力,以及对形态、功能和生态特化之间关系的理解的影响。这篇综述综合了当前对食肉动物生态形态学的研究,旨在说明骨骼中生态学和形态学之间的复杂相互作用。我们探讨了主要食肉动物谱系和解剖系统中的生态形态多样性。我们检查了颅部元素(颅骨、感觉系统)和后躯元素(四肢、脊柱),以揭示与觅食和狩猎策略、运动和栖息地偏好相关的适应的镶嵌模式。我们强调了新方法在推进我们对食肉动物生态形态学的理解方面所发挥的关键作用,同时解决了该领域仍然存在的挑战,如生态分类、形态-功能关系和多元素分析,并为未来的研究提供了新的途径。