论文标题

向内生长期间细菌菌落中的大规模定向顺序

Large-scale orientational order in bacterial colonies during inward growth

论文作者

Başaran, Mustafa, Yaman, Y. Ilker, Yuce, Tevfik Can, Vetter, Roman, Kocabas, Askin

论文摘要

在菌落生长过程中,复杂的相互作用调节细菌方向,从而形成大规模有序结构,包括拓扑缺陷和微域。这些结构可能使细菌菌株受益,从而在定殖过程中具有侵入性的优势。生长菌落的主动物质动态推动了这些有序结构的出现。但是,在此过程中,其他生物力学因素也起着重要作用。在这里,我们表明,当拥挤的人群入侵封闭区域时,成长菌落的速度曲线在向内增长过程中产生了强烈的径向取向。在此过程中,生长几何形状设置虚拟限制并决定速度曲线。在此,杆状细菌上流动诱导的对齐和扭矩平衡显着差异,从而在径向方向上产生了新的稳定定向平衡。我们的分析表明,这些定向缺陷的动力学取决于细菌的长度,可以促进最长的细菌在局部营养热点周围的生存。目前的结果表明结构秩序的基本机制,并提供了对复杂表面细菌生长动力学动力学的机械见解。

During colony growth, complex interactions regulate the bacterial orientation, leading to the formation of large-scale ordered structures, including topological defects and microdomains. These structures may benefit bacterial strains, providing invasive advantages during colonization. Active matter dynamics of growing colonies drives the emergence of these ordered structures. However, additional biomechanical factors also play a significant role during this process. Here we show that the velocity profile of growing colonies creates strong radial orientation during inward growth when crowded populations invade a closed area. During this process, growth geometry sets virtual confinement and dictates the velocity profile. Herein, flow-induced alignment and torque balance on the rod-shaped bacteria significantly differed, resulting in new stable orientational equilibrium in the radial direction. Our analysis revealed that the dynamics of these orientational defects depend on bacterial length and can promote the survival of the longest bacteria around localized nutritional hot spots. The present results indicate a new mechanism underlying structural order and provide mechanistic insights into the dynamics of bacterial growth on complex surfaces.

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