Be'er Avraham, Smith Rachel S, Zhang H P, Florin E-L, Payne Shelley M, Swinney Harry L
Center for Nonlinear Dynamics and Department of Physics, University of Texas at Austin, Austin, Texas 78712, USA.
J Bacteriol. 2009 Sep;191(18):5758-64. doi: 10.1128/JB.00660-09. Epub 2009 Jul 17.
Most research on growing bacterial colonies on agar plates has concerned the effect of genetic or morphotype variation. Some studies have indicated that there is a correlation between microscopic bacterial motion and macroscopic colonial expansion, especially for swarming strains, but no measurements have been obtained for a single strain to relate the microscopic scale to the macroscopic scale. We examined here a single strain (Paenibacillus dendritiformis type T; tip splitting) to determine both the macroscopic growth of colonies and the microscopic bacterial motion within the colonies. Our multiscale measurements for a variety of growth conditions revealed that motion on the microscopic scale and colonial growth are largely independent. Instead, the growth of the colony is strongly affected by the availability of a surfactant that reduces surface tension.
大多数关于在琼脂平板上培养细菌菌落的研究都关注遗传或形态型变异的影响。一些研究表明,微观细菌运动与宏观菌落扩展之间存在相关性,特别是对于群体运动菌株,但尚未对单一菌株进行测量以将微观尺度与宏观尺度联系起来。我们在此研究了单一菌株(树状芽孢杆菌T型;尖端分裂),以确定菌落的宏观生长以及菌落内的微观细菌运动。我们在各种生长条件下的多尺度测量表明,微观尺度上的运动和菌落生长在很大程度上是独立的。相反,菌落的生长受到降低表面张力的表面活性剂可用性的强烈影响。