Zhang Xianlong, Wang Xiaoling, Nie Kai, Li Mingpeng, Sun Qingping
School of Civil Engineering, Wuhan University, Wuhan 430072, People's Republic of China.
Phys Biol. 2016 Jul 19;13(4):046002. doi: 10.1088/1478-3975/13/4/046002.
Various species of bacteria form highly organized spatially-structured aggregates known as biofilms. To understand how microenvironments impact biofilm growth dynamics, we propose a diffusion-reaction continuum model to simulate the formation of Bacillus subtilis biofilm on an agar plate. The extended finite element method combined with level set method are employed to perform the simulation, numerical results show the quantitative relationship between colony morphologies and nutrient depletion over time. Considering that the production of polysaccharide in wild-type cells may enhance biofilm spreading on the agar plate, we inoculate mutant colony incapable of producing polysaccharide to verify our results. Predictions of the glutamate source biofilm's shape parameters agree with the experimental mutant colony better than that of glycerol source biofilm, suggesting that glutamate is rate limiting nutrient for Bacillus subtilis biofilm growth on agar plate, and the diffusion-limited is a better description to the experiment. In addition, we find that the diffusion time scale is of the same magnitude as growth process, and the common-employed quasi-steady approximation is not applicable here.
多种细菌会形成高度组织化的空间结构聚集体,即生物膜。为了解微环境如何影响生物膜的生长动态,我们提出了一个扩散 - 反应连续体模型,以模拟枯草芽孢杆菌生物膜在琼脂平板上的形成。采用扩展有限元法结合水平集法进行模拟,数值结果显示了菌落形态与随时间的营养物质消耗之间的定量关系。考虑到野生型细胞中多糖的产生可能会增强生物膜在琼脂平板上的扩散,我们接种了无法产生多糖的突变菌落来验证我们的结果。谷氨酸源生物膜形状参数的预测结果比甘油源生物膜的预测结果与实验突变菌落更吻合,这表明谷氨酸是枯草芽孢杆菌生物膜在琼脂平板上生长的限速营养物质,并且扩散限制对实验的描述更好。此外,我们发现扩散时间尺度与生长过程具有相同的量级,并且常用的准稳态近似在此处不适用。