蝎子须肢的功能分化:肌肉骨骼专门化的对立性能最佳

IF 1.5 4区 医学 Q2 ANATOMY & MORPHOLOGY
Yuri Simone, Anthony Herrel, Renaud Boistel, Arie van der Meijden
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引用次数: 0

摘要

当不同功能的选择压力同时作用于一个结构时,形态多样化可以通过适应不同的功能优化来形成。系统可能沿着性能梯度进化,优化功能的不同方面以响应生态需求。我们研究了代表螯(钳)形状形态极端的两种蝎子。蝎子螯合物表现出与生态作用相关的形态多样性,其表现呈力-速度连续体变化。为了探索结构和肌肉适应如何影响性能,我们开发了一个集成同步加速器微断层扫描、肌肉结构和性能数据的生物力学模型。我们的研究结果表明,这些物种表现出独特的结构和肌肉安排,每种都针对不同的性能结果进行了优化。短指物种通过增加机械优势和更长的肌节来最大化闭合力,提高肌肉收缩效率。相比之下,细长螯类通过有利于快速加速的肌肉方向来优化闭合速度。虽然额外的功能需求可能会影响这些设计,但一种形态似乎专门用于快速捕获猎物,而另一种形态似乎适合于粉碎猎物。这些不同的最佳性能可能在形成蝎子的营养生态和影响其毒液的进化中发挥了关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Functional Divergence of Scorpion Pedipalps: Musculoskeletal Specialization Toward Opposing Performance Optima

When selective pressures for different functions act simultaneously on a structure, morphological diversification can be shaped by adaptation toward distinct functional optima. Systems may evolve along a performance gradient, optimizing different aspects of function in response to ecological demands. We investigated two scorpion species representing the morphological extremes of chela (pincer) shape. Scorpion chelae exhibit remarkable morphological diversity associated with ecological roles, and their performance varies along a force-velocity continuum. To explore how structural and muscular adaptations shape performance, we developed a biomechanical model integrating synchrotron microtomography, muscle architecture, and performance data. Our findings reveal that these species exhibit distinct structural and muscular arrangements, each optimized for a different performance outcome. The short-fingered species maximize closing force through increased mechanical advantage and longer sarcomeres, enhancing muscle contraction efficiency. In contrast, the slender-chela species optimizes closing velocity through muscle orientations that favor rapid acceleration. While additional functional demands likely influence these designs, one morphology appears specialized for quickly capturing prey, while the other seems to be adapted for prey crushing. These divergent performance optima may have played a key role in shaping the trophic ecology of scorpions and influencing the evolution of their venom.

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来源期刊
Journal of Morphology
Journal of Morphology 医学-解剖学与形态学
CiteScore
2.80
自引率
6.70%
发文量
119
审稿时长
1 months
期刊介绍: The Journal of Morphology welcomes articles of original research in cytology, protozoology, embryology, and general morphology. Articles generally should not exceed 35 printed pages. Preliminary notices or articles of a purely descriptive morphological or taxonomic nature are not included. No paper which has already been published will be accepted, nor will simultaneous publications elsewhere be allowed. The Journal of Morphology publishes research in functional, comparative, evolutionary and developmental morphology from vertebrates and invertebrates. Human and veterinary anatomy or paleontology are considered when an explicit connection to neontological animal morphology is presented, and the paper contains relevant information for the community of animal morphologists. Based on our long tradition, we continue to seek publishing the best papers in animal morphology.
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