新孔虫的运动变化、茎柱比例和异速发育的演变。

IF 2.1
P J Bishop, S E Pierce
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引用次数: 0

摘要

突触类动物的运动进化涉及许多功能变化,这些变化与从四肢伸展到直立的肢体姿势转变有关。鉴于骨结构经常反映功能需求,本研究调查了肱骨和股骨突触体比例的进化变化,以此作为评估功能随时间变化的视角。总共测量了936块骨头,代表了3.2亿多年突触动物历史上的330个物种。该数据集用于测试茎柱比例的变化是否与骨负荷力学、关节和肌肉力量的排列、肩部和髋关节的肌肉控制以及前肢和后肢对体重的差异支持的推断变化一致。由于骨骼尺寸的变化也可能与骨骼或体型有关,本研究首先开发了一种计算物种特异性的、尺寸校正的骨骼比例的新方法。通过将身体大小的影响与骨几何结构中记录的功能信号分离开来,这就可以对骨异速生长本身如何随着时间的推移而进化进行节点到节点的评估。经过尺寸校正的茎柱比例的祖先状态重建揭示了一些趋势,这些趋势广泛地支持了沿兽类茎系运动生物力学的许多假设转变。然而,转化的模式往往是复杂的,表明功能镶嵌,并且通常直到冠状Theria本身才实现典型的Theria整体的茎柱比例。还推断了几个暂时趋势逆转的例子,特别是在非哺乳动物犬齿动物中,表明这一群体的功能或生态多样化程度更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Locomotor shifts, stylopod proportions, and the evolution of allometry in Synapsida.

Locomotor evolution in synapsids involved numerous functional shifts associated with the transition from sprawled to erect limb postures on the line to therian mammals. Given that bone structure frequently reflects functional requirements, this study investigated evolutionary changes in synapsid humerus and femur proportions as a lens to evaluate functional shifts through time. A total of 936 bones were measured, representing 330 species across the full 320+ million years of synapsid history. This dataset was used to test whether transformations in stylopod proportions are consistent with inferred changes in bone loading mechanics, alignment of joint and muscle forces, muscular control of the shoulder and hip, and differential support of body weight by the fore- and hindlimbs. As variation in bone dimensions may also correlate with bone or body size, this study first developed a novel approach for calculating species-specific, size-corrected measures of bone proportions. By disentangling the effect of body size from functional signals recorded in bone geometry, this then enabled a node-to-node appraisal of how bone allometry itself evolved through time. Ancestral state reconstruction of size-corrected stylopod proportions reveals trends that broadly support many hypothesized shifts in locomotor biomechanics along the therian stem lineage. However, patterns of transformation are frequently complex, suggesting functional mosaicism, and stylopod proportions that typify therians as a whole are often not achieved until crown Theria itself. Several instances of temporary trend reversal are also inferred, particularly within non-mammalian cynodonts, indicating greater functional or ecological diversification in this group.

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