啮齿脊椎动物不对称步态的进化。

E. McElroy, M. Granatosky
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引用次数: 1

摘要

与对称步态相比,量化不对称肢体运动的困难导致了有关这些运动模式的力学和适应性益处的信息缺乏。此外,还没有研究利用系统发育比较技术探索不对称步态的进化史。大多数基础工作表明,对称步态是一种祖先特征,而不对称步态是哺乳动物、一些鳄鱼、一些海龟、无尾动物和一些鱼类的一种衍生特征。在本研究中,我们检索了现有颌口动物使用不对称步态的证据,并从该样本(n=308种)中模拟了四种不同情景下不对称步态的进化。我们的分析有力地支持了一种进化模型,即不对称的步态在底栖动物行走过程中是噬口动物的祖先,在随后的噬口动物进化过程中可能既丧失又获得。我们无法确定地重建四足动物、羊膜动物、海龟和鳄鱼淋巴结是否存在不对称步态。采取不对称步态的能力可能是哺乳动物的祖先,但可能不是两栖类和鳞翅目动物的祖先。在某些血统中,步态不对称可能是由于神经肌肉和/或解剖学上的限制和/或与这些步态无关的运动缓慢。这一发现增加了早期颌口动物和四足动物可能使用多种步态的研究,包括肢体循环的不对称模式。
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The evolution of asymmetrical gaits in gnathostome vertebrates.
The difficulty of quantifying asymmetrical limb movements, compared with symmetrical gaits, has resulted in a dearth of information concerning the mechanics and adaptive benefits of these locomotor patterns. Further, no study has explored the evolutionary history of asymmetrical gaits using phylogenetic comparative techniques. Most foundational work suggests that symmetrical gaits are an ancestral feature and asymmetrical gaits are a more derived feature of mammals, some crocodilians, some turtles, anurans and some fish species. In this study, we searched the literature for evidence of the use of asymmetrical gaits across extant gnathostomes, and from this sample (n=308 species) modeled the evolution of asymmetrical gaits assuming four different scenarios. Our analysis shows strongest support for an evolutionary model where asymmetrical gaits are ancestral for gnathostomes during benthic walking and could be both lost and gained during subsequent gnathostome evolution. We were unable to reconstruct the presence/absence of asymmetrical gaits at the tetrapod, amniote, turtle and crocodilian nodes with certainty. The ability to adopt asymmetrical gaits was likely ancestral for Mammalia but was probably not ancestral for Amphibia and Lepidosauria. The absence of asymmetrical gaits in certain lineages may be attributable to neuromuscular and/or anatomical constraints and/or generally slow movement not associated with these gaits. This finding adds to the growing body of work showing the early gnathostomes and tetrapods may have used a diversity of gaits, including asymmetrical patterns of limb cycling.
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