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Pigment cell movement is not required for generation of Turing patterns in zebrafish skin

机译:斑马鱼皮肤中生成图灵模式不需要色素细胞移动

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摘要

© 2015 Macmillan Publishers Limited. The zebrafish is a model organism for pattern formation in vertebrates. Understanding what drives the formation of its coloured skin motifs could reveal pivotal to comprehend the mechanisms behind morphogenesis. The motifs look and behave like reaction-diffusion Turing patterns, but the nature of the underlying physico-chemical processes is very different, and the origin of the patterns is still unclear. Here we propose a minimal model for such pattern formation based on a regulatory mechanism deduced from experimental observations. This model is able to produce patterns with intrinsic wavelength, closely resembling the experimental ones. We mathematically prove that their origin is a Turing bifurcation occurring despite the absence of cell motion, through an effect that we call differential growth. This mechanism is qualitatively different from the reaction-diffusion originally proposed by Turing, although they both generate the short-range activation and the long-range inhibition required to form Turing patterns.
机译:©2015 Macmillan Publishers Limited。斑马鱼是脊椎动物中模式形成的模型生物。了解是什么驱动了其有色皮肤图案的形成,可能揭示了理解形态发生机制的关键。这些图案的外观和行为类似于反应扩散的图灵图案,但基本物理化学过程的性质却大不相同,并且图案的起源仍不清楚。在这里,我们根据从实验观察中得出的调节机制,提出了一种用于这种模式形成的最小模型。该模型能够产生具有固有波长的图案,与实验波长非常相似。通过数学上的差异,我们通过数学证明了它们的起源是发生图灵分叉,尽管没有细胞运动。这种机理在质量上与图灵最初提出的反应扩散不同,尽管它们都产生形成图灵模式所需的短程激活和长程抑制。

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