Koch A L
Biology Department Indiana University Bloomington 47405-6801.
Antonie Van Leeuwenhoek. 1993 Jan;63(1):45-53. doi: 10.1007/BF00871731.
There has been considerable discussion by Kubitschek and Cooper concerning the growth rate of cells of E. coli throughout the cell cycle. Consequently, it is relevant to test Kubitschek's linear model against the exponential model espoused by Cooper (and many others) with another organism and another technique. Burdett et al. measured, by electron microscopy and computer analysis of the microphotographs, the distribution of lengths of a population of cells of Bacillus subtilis grown in 0.4% succinate in a minimal medium. The data were fitted to the extended Collins-Richmond method of Kirkwood & Burdett which subdivided the cell cycle into several phases. I have taken their results and compared them with the linear and exponential growth models for the entire cell cycle after applying correction to the data for the shape of completed and forming poles; i.e., to put the data on a cell-volume basis instead of a cell-length basis. Most of the correction involves no arbitrary assumptions. The conclusion is that global volume growth rate is nearly proportional to cell volume; i.e. growth of Bacillus subtilis is nearly exponential for almost every cell in the growing culture.
库比切克和库珀就大肠杆菌细胞在整个细胞周期中的生长速率进行了大量讨论。因此,用另一种生物体和另一种技术,将库比切克的线性模型与库珀(以及其他许多人)支持的指数模型进行比较是有意义的。伯德特等人通过电子显微镜和对显微照片的计算机分析,测量了在基本培养基中于0.4%琥珀酸盐中生长的枯草芽孢杆菌细胞群体的长度分布。数据采用柯克伍德和伯德特扩展的柯林斯 - 里士满方法进行拟合,该方法将细胞周期细分为几个阶段。我采用了他们的结果,并在对完整和正在形成的极的形状数据进行校正后,将其与整个细胞周期的线性和指数生长模型进行了比较;也就是说,将数据以细胞体积为基础而非细胞长度为基础。大多数校正不涉及任意假设。结论是总体积生长速率几乎与细胞体积成正比;即对于生长培养物中的几乎每个细胞,枯草芽孢杆菌的生长几乎是指数式的。