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Tinkering with constraints in the evolution of the vertebrate limb anterior-posterior polarity

机译:在脊椎动物肢体前后极性的演变中滋补限制

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Genes belonging to both HoxA and HoxD clusters are required for proper vertebrate limb development. Mice lacking all, or parts of, Hoxa and Hoxd functions in forelimbs, as well as mice with a gain of function of these genes in the early limb bud, have helped us to understand functional and regulatory issues associated with these genes, such that, for example, the tight mechanistic interdependency that exists between the production of the limb and its anterior to posterior (AP) polarity. Our studies suggest that the evolutionary recruitment of Hox gene function into growing appendages was crucial to implement hedgehog signalling, subsequently leading to the distal extension of tetrapod appendages, with an already built-in AP polarity. We propose that this process results from the evolutionary co-option, in the developing limbs, of a particular regulatory mechanism (collinearity), which is necessary to pattern the developing trunk. This major regulatory constraint imposed a polarity to our limbs as the most parsimonious solution to grow appendages.
机译:适当的脊椎动物肢体开发需要属于Hoxa和Hoxd集群的基因。缺乏全部或部分的小鼠或在早期肢体芽中具有这些基因功能的小鼠的小鼠,帮助我们了解与这些基因相关的功能和监管问题,使得例如,存在于肢体的生产和其前后(AP)极性之间存在的紧密机械相互依赖性。我们的研究表明,Hox的基因功能的进化招募越来越多的附属物是实现hedgehog信号,随后导致了四足动物附肢末端延伸,与已内置AP极性至关重要。我们提出该过程从进化的辅助选择,在显影肢体中的特定调节机制(共同性)中产生,这对于塑造显影躯干是必要的。这一主要的监管限制对我们的四肢产生了极性,作为增长附属物的最具典范的解决方案。

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