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Using patterns of fin and limb phylogeny to test developmental-evolutionary scenarios

机译:使用翅片和肢体系统的模式测试发展进化场景

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Increasing fossil evidence surrounding the evolutionary origin of vertebrate limbs can be used to reconstruct the assembly of a limb ground-plan common to all tetrapods. The sequence of changes at the fin-to-limb transition can be compared to patterns of fin and limb ontogeny, and further comparisons can be made between phy-logenetic changes at pectoral and pelvic levels. Such comparisons inform questions about the evolution of developmental autonomy (modularity). Limb evolution mostly concerns terminal additions and losses; from a developmental standpoint, these probably result either from minor adjustments to limb bud proportions or from the relative timing of gene expression or tissue growth. Evolutionary radiations of large clades are widely assumed to be marked by periods of rapid morphological diversification, raising further questions about the impact of restrictions imposed not only by ecology, but also by development and genetics. The early tetrapod data set is now large enough to allow initial tests of evolutionary inference to be conducted. New results are revealing novel patterns of evolutionary rate-change, encompassing the traditional notion of the fish-to-tetrapod transition and the root of the modern (crown-group) tetrapod radiation.
机译:增加脊椎动物肢体进化起源的化石证据可用于重建对所有四藏品共同的肢体地面的组装。在翅片至肢体过渡变化的序列可以进行比较,以翅片和肢体个体发育的模式,并且可以在胸鳍和骨盆水平PHY-logenetic变化之间进行进一步的比较。这些比较为有关发育自主权(模块化)的演变的问题。肢体的演变主要涉及终端添加和损失;从发育角度来看,这些可能导致微小的调整到肢体芽比例或来自基因表达或组织生长的相对时序。大型换档的进化辐射被广泛认为是在快速形态多样化的时期标志,提高了关于限制的影响不仅受到生态学的影响,而且通过开发和遗传。早期的Tetrapod数据集现在足够大以允许进行进化推断的初始测试。新结果揭示了进化率变化的新型模式,包括传统的鱼到四脚孔过渡和现代(皇冠组)Tetrapod辐射的根源。

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