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Interactions between zebrafish pigment cells responsible for the generation of Turing patterns

机译:斑马鱼色素细胞之间的相互作用负责产生图灵模式

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摘要

The reaction-diffusion system is one of the most studied nonlinear mechanisms that generate spatially periodic structures autonomous. On the basis of many mathematical studies using computer simulations, it is assumed that animal skin patterns are the most typical examples of the Turing pattern (stationary periodic pattern produced by the reaction-diffusion system). However, the mechanism underlying pattern formation remains unknown because the molecular or cellular basis of the phenomenon has yet to be identified. In this study, we identified the interaction network between the pigment cells of zebrafish, and showed that this interaction network possesses the properties necessary to form the Turing pattern. When the pigment cells in a restricted region were killed with laser treatment, new pigment cells developed to regenerate the striped pattern. We also found that the development and survival of the cells were influenced by the positioning of the surrounding cells. When melanophores and xanthophores were located at adjacent positions, these cells excluded one another. However, melanophores required a mass of xanthophores distributed in a more distant region for both differentiation and survival. Interestingly, the local effect of these cells is opposite to that of their effects long range. This relationship satisfies the necessary conditions required for stable pattern formation in the reaction-diffusion model. Simulation calculations for the deduced network generated wild-type pigment patterns as well as other mutant patterns. Our findings here allow further investigation of Turing pattern formation within the context of cell biology.
机译:反应扩散系统是研究最广泛的非线性机制之一,能够自主产生空间周期性的结构。根据许多使用计算机模拟的数学研究,假定动物的皮肤模式是图灵模式(由反应扩散系统产生的平稳周期性模式)的最典型示例。但是,由于尚未确定该现象的分子基础或细胞基础,因此模式形成的基本机制仍然未知。在这项研究中,我们确定了斑马鱼的色素细胞之间的相互作用网络,并表明该相互作用网络具有形成图灵图案所需的特性。当用激光处理杀死限制区域中的色素细胞时,新的色素细胞发展为再生条纹图案。我们还发现,细胞的发育和存活受到周围细胞定位的影响。当黑素细胞和黄素细胞位于相邻位置时,这些细胞彼此排斥。然而,黑素细胞需要大量的黄原细胞分布在更远的区域,以用于分化和存活。有趣的是,这些细胞的局部作用与其远距离作用相反。该关系满足反应扩散模型中稳定图案形成所需的必要条件。推导网络的模拟计算生成了野生型色素图案以及其他突变体图案。我们的发现可以在细胞生物学的背景下进一步研究图灵模式的形成。

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  • 作者单位

    Department of Biological Science, Nagoya University, Chikusa-ku, Furo-cho, Nagoya 464-0815, Japan;

    Department of Biological Science, Nagoya University, Chikusa-ku, Furo-cho, Nagoya 464-0815, Japan;

    Department of Biological Science, Nagoya University, Chikusa-ku, Furo-cho, Nagoya 464-0815, Japan;

    Department of Biological Science, Nagoya University, Chikusa-ku, Furo-cho, Nagoya 464-0815, Japan Graduate School of Frontier Biosciences, Osaka University, Yamada-oka 1-3, Suita, Osaka 565-0871, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    nonlinear system; pattern formation; reaction-diffusion; stripes;

    机译:非线性系统模式形成;反应扩散条纹;

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