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肉食性动物前肢形态演变和运动性能的三维分析。

A three-dimensional analysis of morphological evolution and locomotor performance of the carnivoran forelimb.

机构信息

Departamento de Ecología y Geología, Facultad de Ciencias, Universidad de Málaga, Málaga, Spain.

出版信息

PLoS One. 2014 Jan 15;9(1):e85574. doi: 10.1371/journal.pone.0085574. eCollection 2014.

Abstract

In this study, three-dimensional landmark-based methods of geometric morphometrics are used for estimating the influence of phylogeny, allometry and locomotor performance on forelimb shape in living and extinct carnivorans (Mammalia, Carnivora). The main objective is to investigate morphological convergences towards similar locomotor strategies in the shape of the major forelimb bones. Results indicate that both size and phylogeny have strong effects on the anatomy of all forelimb bones. In contrast, bone shape does not correlate in the living taxa with maximum running speed or daily movement distance, two proxies closely related to locomotor performance. A phylomorphospace approach showed that shape variation in forelimb bones mainly relates to changes in bone robustness. This indicates the presence of biomechanical constraints resulting from opposite demands for energetic efficiency in locomotion -which would require a slender forelimb- and resistance to stress -which would be satisfied by a robust forelimb-. Thus, we interpret that the need of maintaining a trade-off between both functional demands would limit shape variability in forelimb bones. Given that different situations can lead to one or another morphological solution, depending on the specific ecology of taxa, the evolution of forelimb morphology represents a remarkable "one-to-many mapping" case between anatomy and ecology.

摘要

在这项研究中,我们使用基于三维标志点的几何形态测量学方法来估计系统发育、体型和运动表现对现生和已灭绝食肉动物(哺乳纲,食肉目)前肢形态的影响。主要目的是研究主要前肢骨骼形状上向相似运动策略的形态趋同。结果表明,体型和系统发育对所有前肢骨骼的解剖结构都有很强的影响。相比之下,在现生物种中,骨骼形状与最大奔跑速度或每日移动距离没有相关性,这两个指标与运动表现密切相关。支序形态空间分析表明,前肢骨骼形状的变化主要与骨骼粗壮度的变化有关。这表明存在生物力学限制,这是由于运动中对能量效率的相反需求(这需要一个细长的前肢)和对压力的抵抗力(这可以通过一个粗壮的前肢来满足)。因此,我们认为,在维持两者之间的功能需求之间的权衡的需要将限制前肢骨骼的形状变异性。鉴于不同的情况可能导致一种或另一种形态解决方案,这取决于分类群的特定生态,前肢形态的进化代表了解剖结构和生态学之间的一个显著的“一对多映射”案例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb24/3893248/ba98fdb8b7bf/pone.0085574.g001.jpg

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