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The evolution of development: Two portraits of skull ossification in pipoid frogs

机译:发展的演变:两幅类人猿头骨骨化的肖像

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Development creates morphology, and the study of developmental processes has repeatedly shed light on patterns of morphological evolution. However, development itself evolves as well, often concomitantly with changes in life history or in morphology. In this paper. two approaches are used to examine the evolution of skull development in pipoid frogs. Pipoids have highly unusual morphologies and life histories compared to other frogs, and their development also proves to be remarkable. First, a phylogenetic examination of skull bone ossification sequences reveals that jaw ossification occurs significantly earlier in pipoids than in other frogs; this represents a reversal to the primitive vertebrate condition. Early jaw ossification in pipoids is hypothesized to result from the absence of certain larval specializations possessed by other frogs, combined with unusual larval feeding behaviors. Second, thin-plate spline morphometric studies of ontogenetic shape change reveal important differences between pipoid skull development and that of other frogs. In the course of frog evolution, there has been a shift away from salamander-like patterns of ontogenetic shape change. The pipoids represent the culmination of this trend, and their morphologies are highly derived in numerous respects. This study represents the first detailed examination of the evolution of skull development in a diverse vertebrate clade within a phylogenetic framework. It is also the first study to examine ossification sequences across vertebrates, and the first to use thin-plate spline morphometrics to quantitatively describe ontogenetic trajectories. [References: 96]
机译:发展创造了形态,对发展过程的研究反复阐明了形态演化的模式。但是,发展本身也在发展,通常伴随着生活史或形态的变化。在本文中。有两种方法可用来检查类比蛙的头骨发育。与其他青蛙相比,类人猿具有非常不同寻常的形态和生活史,它们的发育也被证明是非凡的。首先,对颅骨骨化序列的系统发育检查表明,类人猿下颚骨化发生的时间比其他青蛙要早得多。这代表了原始脊椎动物状况的逆转。据推测,类人猿早期颌骨骨化是由于没有其他青蛙拥有的某些幼虫专长以及异常的幼虫摄食行为造成的。其次,关于个体发育形状变化的薄板样条形态学研究揭示了类比头骨发育与其他青蛙之间的重要区别。在青蛙进化的过程中,已经发生了从patterns状的个体发生形状变化的转变。类ip代表了这一趋势的顶点,它们的形态在许多方面都得到了高度推导。这项研究代表了首次详细检查系统发育框架内的多样化脊椎动物进化中的头骨发育的演变。这也是第一个研究整个脊椎动物骨化序列的研究,也是第一个使用薄板样条形态学来定量描述个体发生轨迹的研究。 [参考:96]

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