Kubitschek H E
Biophys J. 1969 Jun;9(6):792-809. doi: 10.1016/S0006-3495(69)86418-0.
Cell volume distributions were determined electronically for steady-state cultures of Escherichia coli, Bacillus megaterium, Bacillus subtilis, and Salmonella typhimurium by use of a Coulter transducer-multichannel analyzer system of good resolution. All of the cell volume distributions had the same general shape, even though cultures were grown at widely different rates. Some results were independent of any particular growth model. Both the variability in the volumes of dividing cells and the fraction of constricted and unseparated doublet cells increased with growth rate. The greater separation to single cells at slow growth rates is in agreement with the general finding that filamentous and hyphal forms are greatly reduced in slowly growing chemostat cultures. The distributions were fitted equally well by simple models which assumed that cell growth was either linear or exponential throughout the entire cell cycle. It is concluded that methods of determining growth rate by analysis of distributions of bacterial volumes do not yet have sufficient resolution to distinguish between a variety of alternative models for growth of bacteria.
使用分辨率良好的库尔特换能器 - 多通道分析仪系统,以电子方式测定了大肠杆菌、巨大芽孢杆菌、枯草芽孢杆菌和鼠伤寒沙门氏菌稳态培养物的细胞体积分布。尽管培养物以截然不同的速率生长,但所有细胞体积分布都具有相同的总体形状。一些结果与任何特定的生长模型无关。随着生长速率的增加,分裂细胞体积的变异性以及缢缩和未分离的双细胞分数均增加。在缓慢生长速率下,单细胞的分离度更高,这与在缓慢生长的恒化器培养物中丝状和菌丝形式大大减少的一般发现一致。通过假设细胞在整个细胞周期中生长为线性或指数性的简单模型,这些分布拟合得同样好。得出的结论是,通过分析细菌体积分布来确定生长速率的方法尚未具有足够的分辨率来区分各种替代的细菌生长模型。