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细菌在其细胞周期中是如何生长的?

How does a bacterium grow during its cell cycle?

作者信息

Burdett I D, Kirkwood T B

出版信息

J Theor Biol. 1983 Jul 7;103(1):11-20. doi: 10.1016/0022-5193(83)90195-9.

Abstract

Rod-shaped bacteria such as Escherichia coli and Bacillus subtilis appear to extend continuously in length between divisions. However, the kinetics of growth of the individual cell in the steady state is still unknown. A brief, critical account of the main approaches used to determine the pattern of surface extension is given. In general, these approaches are of three types. Firstly, attempts have been made to relate average cell size to growth rate of the culture and to determine possible stages in the cell cycle at which the rate of length extension might change. Secondly, comparisons have been made between the measured length distribution of cells and theoretical distributions, based on three primary hypotheses (linear, bilinear and exponential growth). Thirdly, the principle of Collins and Richmond, involving the calculation of growth rate from the length distributions of extant, separating and new-born cells, is described. It is emphasized that there is a strong element of variation in size at different stages of the cell cycle. This variation imposes severe limitations on models which utilize only average cellular dimensions. We conclude that the Collins-Richmond principle affords the most powerful approach to the analysis of bacterial growth kinetics. However, we propose that the method be modified to permit calculation of separate rates of growth of cells between discernible events in the cell cycle, as well as simply between birth and division.

摘要

诸如大肠杆菌和枯草芽孢杆菌等杆状细菌在分裂之间似乎会持续延长长度。然而,处于稳态的单个细胞的生长动力学仍然未知。本文简要且批判性地介绍了用于确定表面延伸模式的主要方法。一般来说,这些方法有三种类型。首先,人们试图将平均细胞大小与培养物的生长速率联系起来,并确定细胞周期中长度延伸速率可能发生变化的潜在阶段。其次,基于三个主要假设(线性、双线性和指数生长),对测量得到的细胞长度分布与理论分布进行了比较。第三,描述了柯林斯和里士满的原理,即根据现存、正在分离和新生细胞的长度分布来计算生长速率。需要强调的是,在细胞周期的不同阶段,细胞大小存在很大的变异性。这种变异性对仅利用平均细胞尺寸的模型施加了严重限制。我们得出结论,柯林斯 - 里士满原理为分析细菌生长动力学提供了最有力的方法。然而,我们建议对该方法进行修改,以便能够计算细胞周期中可识别事件之间以及简单地在出生和分裂之间的单独生长速率。

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