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Morphogenesis can be driven by properly parametrised mechanical feedback

机译:形态发生可以通过适当地参数化机械反馈来驱动

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摘要

A fundamental problem of morphogenesis is whether it presents itself as a succession of links that are each driven by its own specific cause-effect relationship, or whether all of the links can be embraced by a common law that is possible to formulate in physical terms. We suggest that a common biophysical background for most, if not all, morphogenetic processes is based upon feedback between mechanical stresses (MS) that are imposed to a given part of a developing embryo by its other parts and MS that are actively generated within that part. The latter are directed toward hyper-restoration (restoration with an overshoot) of the initial MS values. We show that under mechanical constraints imposed by other parts, these tendencies drive forth development. To provide specificity for morphogenetic reactions, this feedback should be modulated by long-term parameters and/or initial conditions that are set up by genetic factors. The experimental and model data related to this concept are reviewed.
机译:形态发生的一个基本问题是,它是将自己表现为一连串的链接,每个链接都由其自身特定的因果关系驱动,还是所有链接都可以由可以用物理术语表述的普通法则所包含。我们建议,对于大多数(即使不是全部)形态发生过程,共同的生物物理背景是基于机械应力(MS)之间的反馈,该应力由发育中的胚胎的其他部分施加到给定部分,而该部分则是主动产生的。后者针对初始MS值的超恢复(带有过冲的恢复)。我们表明,在其他零件施加的机械约束下,这些趋势推动了发展。为了提供形态发生反应的特异性,应该通过长期参数和/或遗传因素设定的初始条件来调节这种反馈。审查了与此概念有关的实验和模型数据。

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