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斑马鱼皮肤中的图灵模式形成研究。

Studies of Turing pattern formation in zebrafish skin.

机构信息

Graduate School of Frontier Biosciences, Osaka University, 1-3 Yamadaoka, Suita, Osaka 565-0871, Japan.

出版信息

Philos Trans A Math Phys Eng Sci. 2021 Dec 27;379(2213):20200274. doi: 10.1098/rsta.2020.0274. Epub 2021 Nov 8.

Abstract

Skin patterns are the first example of the existence of Turing patterns in living organisms. Extensive research on zebrafish, a model organism with stripes on its skin, has revealed the principles of pattern formation at the molecular and cellular levels. Surprisingly, although the networks of cell-cell interactions have been observed to satisfy the 'short-range activation and long-range inhibition' prerequisites for Turing pattern formation, numerous individual reactions were not envisioned based on the classical reaction-diffusion model. For example, in real skin, it is not an alteration in concentrations of chemicals, but autonomous migration and proliferation of pigment cells that establish patterns, and cell-cell interactions are mediated via direct contact through cell protrusions. Therefore, the classical reaction-diffusion mechanism cannot be used as it is for modelling skin pattern formation. Various studies are underway to adapt mathematical models to the experimental findings on research into skin patterns, and the purpose of this review is to organize and present them. These novel theoretical methods could be applied to autonomous pattern formation phenomena other than skin patterns. This article is part of the theme issue 'Recent progress and open frontiers in Turing's theory of morphogenesis'.

摘要

皮肤图案是生物中存在图灵模式的第一个例子。对斑马鱼这种皮肤有条纹的模式生物的广泛研究揭示了分子和细胞水平上的图案形成原理。令人惊讶的是,尽管已经观察到细胞-细胞相互作用的网络满足了图灵模式形成的“短程激活和长程抑制”前提条件,但基于经典的反应-扩散模型,并没有设想出许多单个反应。例如,在真正的皮肤中,不是化学物质浓度的改变,而是色素细胞的自主迁移和增殖建立了图案,细胞-细胞相互作用是通过细胞突起的直接接触来介导的。因此,经典的反应-扩散机制不能像在皮肤图案形成的研究中那样直接用于建模。目前正在进行各种研究,以将数学模型适应于皮肤图案研究的实验结果,本文的目的是对这些研究进行组织和呈现。这些新的理论方法可以应用于除皮肤图案以外的自主图案形成现象。本文是主题为“图灵形态发生理论的最新进展和前沿领域”的一部分。

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