首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Origin and evolution of circular waves and spirals in Dictyostelium discoideum territories.
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Origin and evolution of circular waves and spirals in Dictyostelium discoideum territories.

机译:盘基网柄菌属领域中圆波和螺旋的起源和演化。

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摘要

Randomly distributed Dictyostelium discoideum cells form cooperative territories by signaling to each other with cAMP. Cells initiate the process by sending out pulsatile signals, which propagate as waves. With time, circular and spiral patterns form. We show that by adding spatial and temporal noise to the levels of an important regulator of external cAMP levels, the cAMP phosphodiesterase inhibitor, we can explain the natural progression of the system from randomly firing cells to circular waves whose symmetries break to form double- and single- or multi-armed spirals. When phosphodiesterase inhibitor is increased with time, mimicking experimental data, the wavelength of the spirals shortens, and a proportion of them evolve into pairs of connected spirals. We compare these results to recent experiments, finding that the temporal and spatial correspondence between experiment and model is very close.
机译:随机分布的盘基网柄菌盘状细胞通过与cAMP相互发信号形成协作区域。细胞通过发出搏动信号来启动该过程,搏动信号以波的形式传播。随着时间的流逝,形成圆形和螺旋形图案。我们表明,通过将空间和时间噪声添加到外部cAMP水平的重要调节剂cAMP磷酸二酯酶抑制剂的水平,我们可以解释系统的自然发展过程,即从随机激发细胞到对称性破裂形成双倍和单臂或多臂螺旋。当磷酸二酯酶抑制剂随时间增加而模仿实验数据时,螺旋的波长会缩短,并且其中一部分会演变成成对的连接螺旋。我们将这些结果与最近的实验进行比较,发现实验与模型之间的时间和空间对应关系非常紧密。

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