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首页> 外文期刊>Progress in Biophysics and Molecular Biology: An International Review Journal >Origin of the vertebrate body plan via mechanically biased conservation of regular geometrical patterns in the structure of the blastula
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Origin of the vertebrate body plan via mechanically biased conservation of regular geometrical patterns in the structure of the blastula

机译:脊椎动物身体计划的起源,通过机械偏置保留囊胚结构中规则的几何图案

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摘要

We present a plausible account of the origin of the archetypal vertebrate bauplan. We offer a theoretical reconstruction of the geometrically regular structure of the blastula resulting from the sequential subdivision of the egg, followed by mechanical deformations of the blastula in subsequent stages of gastrulation. We suggest that the formation of the vertebrate bauplan during development, as well as fixation of its variants over the course of evolution, have been constrained and guided by global mechanical biases. Arguably, the role of such biases in directing morphology-though all but neglected in previous accounts of both development and macroevolution-is critical to any substantive explanation for the origin of the archetypal vertebrate bauplan. We surmise that the blastula inherently preserves the underlying geometry of the cuboidal array of eight cells produced by the first three cleavages that ultimately define the medial-lateral, dorsal-ventral, and anterior-posterior axes of the future body plan. Through graphical depictions, we demonstrate the formation of principal structures of the vertebrate body via mechanical deformation of predictable geometrical patterns during gastrulation. The descriptive rigor of our model is supported through comparisons with previous characterizations of the embryonic and adult vertebrate bauplane. Though speculative, the model addresses the poignant absence in the literature of any plausible account of the origin of vertebrate morphology. A robust solution to the problem of morphogenesis-currently an elusive goal-will only emerge from consideration of both top down (e.g., the mechanical constraints and geometric properties considered here) and bottom-up (e.g., molecular and mechano-chemical) influences. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:我们提出了原型脊椎动物包兰的起源的合理解释。我们提供了对卵囊几何规则结构的理论重建,该结构是由鸡蛋的连续细分产生的,然后在随后的胃形成阶段中,囊胚发生机械变形。我们建议,在整个发展过程中,脊椎动物bauplan的形成以及其变体的固定都受到全球机械偏见的约束和指导。可以说,这种偏向在指导形态学中的作用-尽管在先前关于发展和宏观进化的论述中几乎都被忽略了-对于对原型脊椎动物包兰起源的任何实质性解释都是至关重要的。我们推测囊泡固有地保留了由前三个乳沟产生的八个细胞的长方体阵列的基本几何形状,前三个乳沟最终定义了未来人体计划的内侧-外侧,背面-腹侧和前后轴。通过图形描述,我们证明了在气化过程中通过可预测的几何图案的机械变形形成了脊椎动物身体的主要结构。通过与胚胎和成年脊椎动物bauplane以前的特征进行比较,我们模型的描述严谨性得到了支持。尽管是推测性的,但该模型解决了文献中关于脊椎动物形态学起源的任何合理解释的严重缺乏。仅通过考虑自上而下的影响(例如此处考虑的机械约束和几何特性)和自下而上的影响(例如分子和机械化学)的影响,才能找到一种解决形态发生问题的有效方法(目前尚难以实现)。 (C)2016作者。由Elsevier Ltd.发布

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