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一种用于周期性模式形成的细胞振荡器模型。

A cellular oscillator model for periodic pattern formation.

作者信息

Jaeger J, Goodwin B C

机构信息

Schumacher College, Totnes, Devon, UK.

出版信息

J Theor Biol. 2001 Nov 21;213(2):171-81. doi: 10.1006/jtbi.2001.2414.

Abstract

In this paper, we present a model for pattern formation in developing organisms that is based on cellular oscillators (CO). An oscillatory process within cells serves as a developmental clock whose period is tightly regulated by cell autonomous or non-autonomous mechanisms. A spatial pattern is generated as a result of an initial temporal ordering of the cell oscillators freezing into spatial order as the clocks slow down and stop at different times or phases in their cycles. We apply a CO model to vertebrate somitogenesis and show that we can reproduce the dynamics of periodic gene expression patterns observed in the pre-somitic mesoderm. We also show how varying somite lengths can be generated with the CO model. We then discuss the model in view of experimental evidence and its relevance to other instances of biological pattern formation, showing its versatility as a pattern generator.

摘要

在本文中,我们提出了一种基于细胞振荡器(CO)的发育生物体中模式形成的模型。细胞内的振荡过程充当发育时钟,其周期由细胞自主或非自主机制严格调控。由于细胞振荡器的初始时间排序,随着时钟在其周期的不同时间或阶段减慢并停止,这种排序冻结为空间顺序,从而产生空间模式。我们将CO模型应用于脊椎动物体节发生,并表明我们可以重现体节中胚层中观察到的周期性基因表达模式的动态。我们还展示了如何用CO模型生成不同长度的体节。然后,我们根据实验证据讨论该模型及其与生物模式形成的其他实例的相关性,展示其作为模式生成器的通用性。

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