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两种蜥蜴类群的体型演化的替代途径转化为运动演化的常见模式。

Alternate pathways of body shape evolution translate into common patterns of locomotor evolution in two clades of lizards.

机构信息

Organismic and Evolutionary Biology, University of Massachusetts Amherst, Amherst, Massachusetts 01003, USA.

出版信息

Evolution. 2010 Jun;64(6):1569-82. doi: 10.1111/j.1558-5646.2009.00935.x. Epub 2009 Dec 28.

Abstract

Body shape has a fundamental impact on organismal function, but it is unknown how functional morphology and locomotor performance and kinematics relate across a diverse array of body shapes. We showed that although patterns of body shape evolution differed considerably between lizards of the Phrynosomatinae and Lerista, patterns of locomotor evolution coincided between clades. Specifically, we found that the phrynosomatines evolved a stocky phenotype through body widening and limb shortening, whereas Lerista evolved elongation through body lengthening and limb shortening. In both clades, relative limb length played a key role in locomotor evolution and kinematic strategies, with long-limbed species moving faster and taking longer strides. In Lerista, the body axis also influenced locomotor evolution. Similar patterns of locomotor evolution were likely due to constraints on how the body can move. However, these common patterns of locomotor evolution between the two clades resulted in different kinematic strategies and levels of performance among species because of their morphological differences. Furthermore, we found no evidence that distinct body shapes are adaptations to different substrates, as locomotor kinematics did not change on loose or solid substrates. Our findings illustrate the importance of studying kinematics to understand the mechanisms of locomotor evolution and phenotype-function relationships.

摘要

体形对生物功能有根本的影响,但目前还不清楚在各种体形中,功能形态和运动性能和运动学之间是如何相关的。我们表明,尽管 Phrynosomatinae 和 Lerista 蜥蜴的体形进化模式有很大的不同,但进化枝之间的运动进化模式是一致的。具体来说,我们发现,Phrynosomatinae 通过身体变宽和四肢缩短进化出了矮胖的表型,而 Lerista 通过身体变长和四肢缩短进化出了细长的体型。在这两个进化枝中,相对肢体长度在运动进化和运动学策略中起着关键作用,长肢物种移动速度更快,步幅更长。在 Lerista 中,身体轴线也影响了运动进化。运动进化的相似模式可能是由于身体运动的限制所致。然而,由于它们的形态差异,这两个进化枝之间的运动进化模式导致了不同的运动学策略和物种的性能水平。此外,我们没有发现明显的体形是适应不同基质的证据,因为在松散或坚实的基质上,运动学没有变化。我们的研究结果说明了研究运动学对于理解运动进化和表型-功能关系的机制的重要性。

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