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拟南芥干细胞稳态和模式形成的动态模型。

A dynamic model for stem cell homeostasis and patterning in Arabidopsis meristems.

机构信息

Department of Medical Genetics, University of Lausanne, Lausanne, Switzerland.

出版信息

PLoS One. 2010 Feb 12;5(2):e9189. doi: 10.1371/journal.pone.0009189.

Abstract

Plants maintain stem cells in their meristems as a source for new undifferentiated cells throughout their life. Meristems are small groups of cells that provide the microenvironment that allows stem cells to prosper. Homeostasis of a stem cell domain within a growing meristem is achieved by signalling between stem cells and surrounding cells. We have here simulated the origin and maintenance of a defined stem cell domain at the tip of Arabidopsis shoot meristems, based on the assumption that meristems are self-organizing systems. The model comprises two coupled feedback regulated genetic systems that control stem cell behaviour. Using a minimal set of spatial parameters, the mathematical model allows to predict the generation, shape and size of the stem cell domain, and the underlying organizing centre. We use the model to explore the parameter space that allows stem cell maintenance, and to simulate the consequences of mutations, gene misexpression and cell ablations.

摘要

植物在其分生组织中维持干细胞作为其整个生命周期中新的未分化细胞的来源。分生组织是一小群细胞,为干细胞的生长提供微环境。在生长中的分生组织中,干细胞域的稳态是通过干细胞和周围细胞之间的信号传递来实现的。在这里,我们基于分生组织是自我组织系统的假设,模拟了拟南芥茎分生组织顶端一个特定干细胞域的起源和维持。该模型包含两个耦合的反馈调节遗传系统,控制干细胞的行为。使用最小的一组空间参数,该数学模型允许预测干细胞域的生成、形状和大小,以及潜在的组织中心。我们使用该模型来探索允许干细胞维持的参数空间,并模拟突变、基因错误表达和细胞消融的后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab96/2820555/8d4efc255b1c/pone.0009189.g001.jpg

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