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水螅分子网络在打破对称性并定义轴的时刻达到临界状态。

Hydra molecular network reaches criticality at the symmetry-breaking axis-defining moment.

作者信息

Soriano Jordi, Colombo Cyril, Ott Albrecht

机构信息

Experimentalphysik I, Universität Bayreuth, D-95440 Bayreuth, Germany.

出版信息

Phys Rev Lett. 2006 Dec 22;97(25):258102. doi: 10.1103/PhysRevLett.97.258102. Epub 2006 Dec 18.

Abstract

We study biological, multicellular symmetry breaking on a hollow cell sphere as it occurs during hydra regeneration from a random cell aggregate. We show that even a weak temperature gradient directs the axis of the regenerating animal--but only if it is applied during the symmetry-breaking moment. We observe that the spatial distribution of the early expressed, head-specific gene ks1 has become scale-free and fractal at that point. We suggest the self-organized critical state to reflect long range signaling, which is required for axis definition and arises from cell next-neighbor communication.

摘要

我们研究了中空细胞球体上的生物多细胞对称性破缺,这种现象发生在水螅从随机细胞聚集体再生的过程中。我们发现,即使是微弱的温度梯度也能引导再生动物的轴——但前提是在对称性破缺时刻施加该梯度。我们观察到,在那个时候,早期表达的头部特异性基因ks1的空间分布已变得无标度且呈分形。我们认为自组织临界状态反映了长程信号传导,这是轴的定义所必需的,并且源于细胞间的邻域通信。

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