From slenderness to robustness: Understanding long bone shape in sigmodontine rodents

IF 1.8 4区 医学 Q2 ANATOMY & MORPHOLOGY Anatomical Record-Advances in Integrative Anatomy and Evolutionary Biology Pub Date : 2024-06-15 DOI:10.1002/ar.25521
María José Tulli, Luz Valeria Carrizo
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Abstract

The morphological evolution of the appendicular skeleton may reflect the selective pressures specific to different environments, phylogenetic inheritance, or allometry. Covariation in bone shapes enhances morphological integration in response to ecological specializations. In contrast to previous multivariate studies using classical linear morphometry, we use a geometric morphometric approach to explore the morphological diversity of long bones and examine relationships between ecological categories and morphological characters in a species-rich and ecomorphologically diverse group of rodents. We examined the humerus, ulna, femur, and tibiofibula of 19 sigmodontine species with different locomotor types (ambulatory, quadrupedal-saltatorial, natatorial, semifossorial and scansorial) to investigate the influence of locomotor type and phylogeny on limb bone shape and morphological integration of the appendicular skeleton. This study represents the most detailed examination of the morphological diversity of long bones in sigmodontines, employing geometric morphometrics within an ecomorphological framework. Our results indicate that functional demands and evolutionary history jointly influence the shape of forelimb and hindlimb bones. The main variation in bone shape is associated with a slenderness-robustness gradient observed across all ecological categories. Quadrupedal-saltatorial species, with their need for agility, possess slender and elongated limbs, while natatorial and semifossorial species exhibit shorter and more robust bone shapes, suited for their respective environments. This gradient also influences bone covariation within limbs, demonstrating interconnectedness between elements. We found functional covariation between the ulna-tibiofibula and humerus-tibiofibula, likely important for propulsion, and anatomical covariation between the humerus-ulna and femur-tibiofibula, potentially reflecting overall limb structure. This study demonstrates that the versatile morphology of long bones in sigmodontines plays a critical role in their remarkable ecological and phylogenetic diversification.

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从纤细到粗壮:了解西格蒙德啮齿动物的长骨形状。
附属骨骼的形态演化可能反映了不同环境的特定选择压力、系统发育遗传或异体遗传。骨骼形状的变异增强了形态整合以应对生态特化。与以往使用经典线性形态计量学进行的多变量研究不同,我们使用几何形态计量学方法来探索长骨的形态多样性,并研究物种丰富、形态多样的啮齿类动物群中生态类别与形态特征之间的关系。我们研究了19种具有不同运动类型(伏地、四足-盐足、自然足、半足和扫描足)的西格蒙德啮齿类动物的肱骨、尺骨、股骨和胫腓骨,以探讨运动类型和系统发育对四肢骨形状和附肢骨骼形态整合的影响。这项研究是在生态形态学框架内采用几何形态计量学方法对长骨类的形态多样性进行的最详细的研究。我们的研究结果表明,功能需求和进化历史共同影响着前肢和后肢骨骼的形态。骨骼形状的主要变化与所有生态类别中观察到的纤细-粗壮梯度有关。四足盐生物种由于需要敏捷性,四肢纤细修长,而原生和半原生物种的骨骼形状则更短更粗壮,适合各自的环境。这种梯度也影响了肢体内部骨骼的共变性,显示了各元素之间的相互联系。我们发现尺骨-胫骨-腓骨和肱骨-胫骨-腓骨之间的功能共变性可能对推进力很重要,而肱骨-尺骨和股骨-胫骨-腓骨之间的解剖共变性可能反映了肢体的整体结构。这项研究表明,西格蒙德龙长骨的多变形态在其显著的生态和系统发育多样性中发挥了关键作用。
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来源期刊
CiteScore
4.80
自引率
15.00%
发文量
266
审稿时长
4 months
期刊介绍: The Anatomical Record
期刊最新文献
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