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A Preliminary Analysis of Correlated Evolution in Mammalian Chewing Motor Patterns

机译:哺乳动物咀嚼运动模式相关进化的初步分析

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摘要

Descriptive and quantitative analyses of electromyograms (EMG) from the jaw adductors during feeding in mammals have demonstrated both similarities and differences among species in chewing motor patterns. These observations have led to a number of hypotheses of the evolution of motor patterns, the most comprehensive of which was proposed by Weijs in 1994. Since then, new data have been collected and additional hypotheses for the evolution of motor patterns have been proposed. Here, we take advantage of these new data and a well-resolved species-level phylogeny for mammals to test for the correlated evolution of specific components of mammalian chewing motor patterns. We focus on the evolution of the coordination of working-side (WS) and balancing-side (BS) jaw adductors (i.e., Weijs’ Triplets I and II), the evolution of WS and BS muscle recruitment levels, and the evolution of asynchrony between pairs of muscles. We converted existing chewing EMG data into binary traits to incorporate as much data as possible and facilitate robust phylogenetic analyses. We then tested hypotheses of correlated evolution of these traits across our phylogeny using a maximum likelihood method and the Bayesian Markov Chain Monte Carlo method. Both sets of analyses yielded similar results highlighting the evolutionary changes that have occurred across mammals in chewing motor patterns. We find support for the correlated evolution of (1) Triplets I and II, (2) BS deep masseter asynchrony and Triplets I and II, (3) a relative delay in the activity of the BS deep masseter and a decrease in the ratio of WS to BS muscle recruitment levels, and (4) a relative delay in the activity of the BS deep masseter and a delay in the activity of the BS posterior temporalis. In contrast, changes in relative WS and BS activity levels across mammals are not correlated with Triplets I and II. Results from this work can be integrated with dietary and morphological data to better understand how feeding and the masticatory apparatus have evolved across mammals in the context of new masticatory demands.
机译:哺乳期间下颌内收肌的肌电图(EMG)的描述性和定量分析表明,咀嚼运动模式的物种之间既有相似之处,也有差异。这些观察结果导致了许多关于运动模式演变的假设,其中最全面的由Weijs在1994年提出。从那时起,已经收集了新的数据,并提出了关于运动模式演变的其他假设。在这里,我们利用这些新数据和对哺乳动物的良好解析的物种水平系统发育来测试哺乳动物咀嚼运动模式的特定成分的相关进化。我们专注于工作侧(WS)和平衡侧(BS)下颌内收肌协调作用的演变(即Weijs的Triplets I和II),WS和BS肌肉补充水平的演变以及异步性的演变在成对的肌肉之间。我们将现有的咀嚼肌电图数据转换为二进制特征,以纳入尽可能多的数据,并促进可靠的系统发育分析。然后,我们使用最大似然方法和贝叶斯马尔可夫链蒙特卡洛方法检验了这些性状在整个系统发育中相关进化的假设。两组分析均得出相似的结果,突显了咀嚼运动模式在整个哺乳动物中发生的进化变化。我们发现支持以下相关进化:(1)三联体I和II,(2)BS深咬肌异步和三联体I和II,(3)BS深咬肌活动的相对延迟和比率的降低WS至BS肌肉的募集水平,以及(4)BS深度咬肌活动的相对延迟和BS颞颞部活动的延迟。相反,跨哺乳动物的相对WS和BS活性水平的变化与三胞胎I和II不相关。这项工作的结果可以与饮食和形态数据相结合,以更好地了解在新的咀嚼需求的背景下,哺乳和咀嚼装置是如何在哺乳动物中进化的。

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