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活性意大利面:蓝细菌中的集体组织。

Active Spaghetti: Collective Organization in Cyanobacteria.

机构信息

School of Science and Technology, Nottingham Trent University, Nottingham NG11 8NS, United Kingdom.

Malawi Institute of Technology, Malawi University of Science and Technology, S150 Road, Thyolo 310105, Malawi.

出版信息

Phys Rev Lett. 2023 Oct 13;131(15):158303. doi: 10.1103/PhysRevLett.131.158303.

Abstract

Filamentous cyanobacteria can show fascinating examples of nonequilibrium self-organization, which, however, are not well understood from a physical perspective. We investigate the motility and collective organization of colonies of these simple multicellular lifeforms. As their area density increases, linear chains of cells gliding on a substrate show a transition from an isotropic distribution to bundles of filaments arranged in a reticulate pattern. Based on our experimental observations of individual behavior and pairwise interactions, we introduce a nonreciprocal model accounting for the filaments' large aspect ratio, fluctuations in curvature, motility, and nematic interactions. This minimal model of active filaments recapitulates the observations, and rationalizes the appearance of a characteristic length scale in the system, based on the Péclet number of the cyanobacteria filaments.

摘要

丝状蓝藻可以展现出迷人的非平衡自组织现象,但从物理角度来看,这些现象还没有得到很好的理解。我们研究了这些简单多细胞生物的游动和集体组织。随着它们的面积密度增加,在基质上滑行的细胞线性链表现出从各向同性分布到丝状纤维的束状排列的转变,呈网状图案。基于我们对个体行为和成对相互作用的实验观察,我们引入了一个非互易模型,该模型考虑了纤维的大纵横比、曲率波动、运动性和向列相互作用。这种活性纤维的最小模型再现了观察结果,并基于蓝藻纤维的佩克莱数,合理化了系统中出现特征长度尺度的现象。

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