生物膜
动力学(音乐)
细菌生长
生物系统
扩散
环境科学
生物
细菌
物理
热力学
声学
遗传学
作者
Pablo Bravo,Siu Lung Ng,Kathryn A. MacGillivray,Brian K. Hammer,Peter J. Yunker
标识
DOI:10.1073/pnas.2214211120
摘要
During the biofilm life cycle, bacteria attach to a surface and then reproduce, forming crowded, growing communities. Many theoretical models of biofilm growth dynamics have been proposed; however, difficulties in accurately measuring biofilm height across relevant time and length scales have prevented testing these models, or their biophysical underpinnings, empirically. Using white light interferometry, we measure the heights of microbial colonies with nanometer precision from inoculation to their final equilibrium height, producing a detailed empirical characterization of vertical growth dynamics. We propose a heuristic model for vertical growth dynamics based on basic biophysical processes inside a biofilm: diffusion and consumption of nutrients and growth and decay of the colony. This model captures the vertical growth dynamics from short to long time scales (10 min to 14 d) of diverse microorganisms, including bacteria and fungi.
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