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首页> 外文期刊>Journal of experimental zoology, Part B. Molecular and developmental evolution >Evolution-development congruence in pattern formation dynamics: Bifurcations in gene expression and regulation of networks structures
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Evolution-development congruence in pattern formation dynamics: Bifurcations in gene expression and regulation of networks structures

机译:模式形成动力学中的进化-发展一致性:基因表达的分叉和网络结构的调控

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Search for possible relationships between phylogeny and ontogeny is important in evolutionary-developmental biology. Here we uncover such relationships by numerical evolution and unveil their origin in terms of dynamical systems theory. By representing developmental dynamics of spatially located cells with gene expression dynamics with cell-to-cell interaction under external morphogen gradient, gene regulation networks are evolved under mutation and selection with the fitness to approach a prescribed spatial pattern of expressed genes. For most numerical evolution experiments, evolution of pattern over generations and development of pattern by an evolved network exhibit remarkable congruence. Both in the evolution and development pattern changes consist of several epochs where stripes are formed in a short time, while for other temporal regimes, pattern hardly changes. In evolution, these quasi-stationary regimes are generations needed to hit relevant mutations, while in development, they are due to some gene expression that varies slowly and controls the pattern change. The morphogenesis is regulated by combinations of feedback or feedforward regulations, where the upstream feedforward network reads the external morphogen gradient, and generates a pattern used as a boundary condition for the later patterns. The ordering from up to downstream is common in evolution and development, while the successive epochal changes in development and evolution are represented as common bifurcations in dynamical-systems theory, which lead to the evolution-development congruence. Mechanism of exceptional violation of the congruence is also unveiled. Our results provide a new look on developmental stages, punctuated equilibrium, developmental bottlenecks, and evolutionary acquisition of novelty in morphogenesis. J. Exp. Zool. (Mol. Dev. Evol.) 326B:61-84, 2016. (c) 2015 The Authors. Journal of Experimental Zoology Part B: Molecular and Developmental Evolution Published by Wiley Periodicals, Inc.
机译:在进化-发展生物学中,寻找系统发育与个体发育之间可能的关系很重要。在这里,我们通过数值演化揭示了这种关系,并根据动力学系统理论揭示了它们的起源。通过在外部形态发生子梯度下通过具有细胞间相互作用的基因表达动态来表示空间定位细胞的发育动态,可以在突变和选择下适应性地发展基因调控网络,以接近表达基因的规定空间模式。对于大多数数值演化实验而言,历代模式的演化和演化网络对模式的发展都表现出惊人的一致性。进化和发展模式的变化都由几个时期组成,这些时期在短时间内形成条纹,而对于其他时间体制,模式几乎不变。在进化中,这些准平稳状态是击中相关突变所需的世代,而在发育中,它们是由于某些基因表达缓慢变化并控制模式改变而产生的。通过反馈或前馈规则的组合来调节形态发生,其中上游前馈网络读取外部形态发生子梯度,并生成用作后一种模式的边界条件的模式。从上到下的顺序在进化和发展中很普遍,而在发展和进化中连续的时代变化则表现为动力系统理论中的共同分歧,从而导致了进化-发展的一致性。还揭示了异常违反一致性的机制。我们的研究结果提供了关于形态发生新阶段的发展阶段,标点符号平衡,发展瓶颈和进化习得的新观点。 J. Exp。 Zool。 (分子开发演化)326B:61-84,2016.(c)2015作者。实验动物学杂志B部分:Wiley Periodicals,Inc.出版的分子和发育进化。

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