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The Role of Evolutionary Integration in the Morphological Evolution of the Skull of Caviomorph Rodents (Rodentia: Hystricomorpha)

机译:进化整合在Caviomorph啮齿动物头骨形态演变中的作用(Rodentia:Hystricomorpha)

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摘要

The mammalian cranium is a complex structure composed by three partially independent modules: face, cranial base and cranial vault. At the same time, it interacts with the mandible by sharing the masticatory function. Since these units develop and work together, their function and evolution may occur through correlated changes. Here, we assessed the patterns of evolutionary shape variation and covariation (i.e. integration) of cranial modules and mandible among the highly ecomorphologically diverse caviomorph rodents, and the potential evolutionary consequences on the morphological evolution of this clade. Three-dimensional geometric morphometrics was used to describe cranio-mandibular shape. The phylogenetic signal and evolutionary allometric component of morphometric variables were analyzed; in addition, evolutionary covariation among cranial modules and mandible was assessed using phylogenetic comparative methods. Significant phylogenetic signal and evolutionary allometry were detected. Large covariance values, involving coordinated breadth increase as the main shape change, were recorded between cranial vault and base, followed by cranial vault and face, and face and mandible. Since the basicranium may be the main cranial integrator, the overall widening of the cranial base, derived from the enlargement of the auditory bullae, could be influencing the integrated evolution of skull. In caviomorphs, the cranio-mandibular morphological evolution would be the outcome of a tight covariation among the modular units, and this could be driven by several factors such as allometry and specializations to environmental niches.
机译:哺乳动物的头盖骨是由三个部分独立的模块组成的复杂结构:面部,颅底和颅顶。同时,它通过共享咀嚼功能与下颌骨相互作用。由于这些部门发展和协同工作,它们的功能和演变可能通过相关的变化发生。在这里,我们评估了高度生态形态多样的啮齿类啮齿动物中颅骨模块和下颌骨的进化形状变化和协变(即整合)的模式,以及对该进化枝的形态演变的潜在进化后果。使用三维几何形态计量学描述颅下颌形状。分析了形态计量变量的系统发育信号和进化异体成分;此外,使用系统发育比较方法评估了颅骨模块和下颌骨之间的进化协变。检测到重要的系统发育信号和进化异体。在颅穹顶和基底之间记录了较大的协方差值,其中协调宽度的增加是主要形状的变化,其次是颅穹顶和面部,以及面部和下颌骨。由于基本的颅骨可能是主要的颅骨整合者,因此,源自听性大疱扩大的颅底整体变宽可能会影响颅骨的整体进化。在穴形动物中,颅下颌形态演变是模块单元之间紧密协变的结果,这可能是由多种因素驱动的,例如异位症和对环境生态位的专门化。

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