Institute for Biological Physics, University of Cologne, Zülpicher Straße 77, 50937 Köln, Germany.
Phys Rev Lett. 2018 Sep 14;121(11):118102. doi: 10.1103/PhysRevLett.121.118102.
Bacteria can adjust the structure of colonies and biofilms to enhance their survival rate under external stress. Here, we explore the link between bacterial interaction forces and colony structure. We show that the activity of extracellular pilus motors enhances local ordering and accelerates fusion dynamics of bacterial colonies. The radial distribution function of mature colonies shows local fluidlike order. The degree and dynamics of ordering are dependent on motor activity. At a larger scale, the fusion dynamics of two colonies shows liquidlike behavior whereby motor activity strongly affects surface tension and viscosity.
细菌可以调整菌落和生物膜的结构,以提高它们在外力作用下的存活率。在这里,我们探讨了细菌相互作用力与菌落结构之间的联系。我们表明,细胞外菌毛马达的活性增强了细菌菌落的局部有序性并加速了融合动力学。成熟菌落的径向分布函数显示出局部类流态有序性。有序性的程度和动力学取决于马达的活性。在更大的尺度上,两个菌落的融合动力学表现出类液态行为,其中马达的活性强烈影响表面张力和粘度。