Kannan Harish, Sun Hui, Warren Mya, Çağlar Tolga, Yao Pantong, Taylor Brian R, Sahu Kinshuk, Ge Daotong, Mori Matteo, Kleinfeld David, Dong JiaJia, Li Bo, Hwa Terence
Department of Mathematics, University of California, San Diego, La Jolla, CA, USA.
Department of Mathematics and Statistics, California State University, Long Beach, CA, USA.
Nat Commun. 2025 May 26;16(1):4878. doi: 10.1038/s41467-025-60004-z.
Bacterial colonies growing on solid surfaces can exhibit robust expansion kinetics, with constant radial growth and saturating vertical expansion, suggesting a common developmental program. Here, we study this process for Escherichia coli cells using a combination of modeling and experiments. We show that linear radial colony expansion is set by the verticalization of interior cells due to mechanical constraints rather than radial nutrient gradients as commonly assumed. In contrast, vertical expansion slows down from an initial linear regime even while radial expansion continues linearly. This vertical slowdown is due to limitation of cell growth caused by vertical nutrient gradients, exacerbated by concurrent oxygen depletion. Starvation in the colony interior results in a distinct death zone which sets in as vertical expansion slows down, with the death zone increasing in size along with the expanding colony. Thus, our study reveals complex heterogeneity within simple monoclonal bacterial colonies, especially along the vertical dimension. The intricate dynamics of such emergent behavior can be understood quantitatively from an interplay of mechanical constraints and nutrient gradients arising from obligatory metabolic processes.
生长在固体表面的细菌菌落可呈现出强劲的扩张动力学,具有恒定的径向生长和饱和的垂直扩张,这表明存在一个共同的发育程序。在此,我们结合建模和实验来研究大肠杆菌细胞的这一过程。我们表明,线性径向菌落扩张是由内部细胞因机械约束而垂直化所决定的,而非如通常所认为的由径向营养梯度决定。相比之下,即使径向扩张继续呈线性,垂直扩张也会从最初的线性阶段放缓。这种垂直放缓是由于垂直营养梯度导致的细胞生长受限,同时氧气消耗加剧了这种情况。菌落内部的饥饿导致一个独特的死亡区域,随着垂直扩张放缓而出现,且死亡区域的大小随着菌落的扩张而增加。因此,我们的研究揭示了简单单克隆细菌菌落内的复杂异质性,尤其是在垂直维度上。这种涌现行为的复杂动态可以从机械约束和由必需代谢过程产生的营养梯度的相互作用中得到定量理解。