论文标题
集体机械响应动态调谐细菌菌落中的细胞大小分布
Collective mechano-response dynamically tunes cell-size distributions in growing bacterial colonies
论文作者
论文摘要
由环境因素引起的机械应力是细胞行为和生理学的关键决定因素。然而,自我诱导的生物力学应激在不断发展的细菌菌落中的作用仍未开发。在这里,我们证明了集体机械强迫如何在生长细菌细胞大小的动力学中起重要作用。我们观察到,根据每个个体周围的自由区域的不同,\ textit {escherichia coli}细胞的测得的伸长率会随着时间的推移而降低,并将这种行为与生长细胞对机械应力的反应相关联。通过一个细胞分辨模型,构成了集体力对个体细胞生长的反馈,我们量化了这种机械反应对生长细菌菌落的结构和组成的影响,包括每个细胞的局部环境。最后,我们预测,具有不同生长速率的竞争细菌菌株之间的机械交叉反应会影响其大小分布。
Mechanical stresses stemming from environmental factors are a key determinant of cellular behavior and physiology. Yet, the role of self-induced biomechanical stresses in growing bacterial colonies has remained largely unexplored. Here, we demonstrate how collective mechanical forcing plays an important role in the dynamics of the cell size of growing bacteria. We observe that the measured elongation rate of well-nourished \textit{Escherichia coli} cells decreases over time, depending on the free area around each individual, and associate this behavior with the response of the growing cells to mechanical stresses. Via a cell-resolved model accounting for the feedback of collective forces on individual cell growth, we quantify the effect of this mechano-response on the structure and composition of growing bacterial colonies, including the local environment of each cell. Finally, we predict that a mechano-cross-response between competing bacterial strains with distinct growth rates affects their size distributions.