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无尾目动物的腱性构架呈现出一种通用形态。

Tendinous framework of anurans reveals an all-purpose morphology.

作者信息

Fratani Jéssica, Ponssa María Laura, Abdala Virginia

机构信息

Unidad Ejecutora Lillo (CONICET-Fundación Miguel Lillo), Tucumán, Argentina; Departamento de Vertebrados, Museu Nacional, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.

Unidad Ejecutora Lillo (CONICET-Fundación Miguel Lillo), Tucumán, Argentina.

出版信息

Zoology (Jena). 2018 Feb;126:172-184. doi: 10.1016/j.zool.2017.08.007. Epub 2017 Aug 31.

Abstract

Tendons are directly associated with movement, amplifying power and reducing muscular work. Taking into account habitat and locomotor challenges faced by anurans, we identify the more conspicuous superficial tendons of a neotropical anuran group and investigate their relation to the former factors. We show that tendons can be visualized as an anatomical framework connected through muscles and/or fascia, and describe the most superficial tendinous layer of the postcranium of Leptodactylus latinasus. To analyze the relation between tendon morphology and ecological characters, we test the relative length ratio of 10 tendon-muscle (t-m) elements in 45 leptodactylid species while taking phylogeny into account. We identify the evolutionary model that best explains our variables. Additionally, we optimize t-m ratio values, and the shape of the longissimus dorsi insertion onto a selected phylogeny of the species. Our data show the existence of an all-purpose morphology that seems to have evolved independently of ecology and functional requirements. This is indicated by no significant relation between morphometric data of the analyzed tendons and habitat use or locomotion, a strong phylogenetic component to most of the analyzed variables, and a generalized pattern of intermediate values for ancestral states. Ornstein-Uhlenbeck is the model that best explains most t-m variables, indicating that stabilizing selection or selective optima might be driving shifts in tendon length within Leptodactylidae. Herein, we show the substantial influence that phylogeny has on tendon morphology, demonstrating that a generalized and stable morphological configuration of tendons is adequate to enable versatile locomotor modes and habitat use. This is an attempt to present the tendinous system as a framework to body support in vertebrates, and can be considered a starting point for further ecomorphological research of this anatomical system in anurans.

摘要

肌腱与运动直接相关,可增强力量并减少肌肉做功。考虑到无尾两栖动物所面临的栖息地和运动挑战,我们识别了新热带区无尾两栖动物群中较为明显的浅表肌腱,并研究它们与上述因素的关系。我们发现肌腱可被视作一个通过肌肉和/或筋膜相连的解剖框架,并描述了细趾蟾的颅后最浅表肌腱层。为分析肌腱形态与生态特征之间的关系,我们在考虑系统发育的情况下,测试了45种细趾蟾科物种中10个肌腱-肌肉(t-m)元素的相对长度比。我们确定了最能解释我们变量的进化模型。此外,我们优化了t-m比值以及背最长肌在所选物种系统发育树上的插入形状。我们的数据显示存在一种通用形态,它似乎是独立于生态和功能需求而进化的。这体现在所分析肌腱的形态测量数据与栖息地利用或运动之间无显著关系、大多数分析变量具有很强的系统发育成分,以及祖先状态的中间值的普遍模式。奥恩斯坦-乌伦贝克模型是最能解释大多数t-m变量的模型,这表明稳定选择或选择最优值可能推动了细趾蟾科内肌腱长度的变化。在此,我们展示了系统发育对肌腱形态的重大影响,证明肌腱的一种通用且稳定的形态结构足以实现多种运动模式和栖息地利用。这是一次将肌腱系统作为脊椎动物身体支撑框架呈现的尝试,可被视为对无尾两栖动物这一解剖系统进行进一步生态形态学研究的起点。

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