Fishov I, Zaritsky A, Grover N B
Department of Life Sciences, Ben-Gurion University of the Negev, Be'er-Sheva, Israel.
Mol Microbiol. 1995 Mar;15(5):789-94. doi: 10.1111/j.1365-2958.1995.tb02349.x.
It is crucial to the reproducibility of results and their proper interpretation that the conditions under which experiments are carried out be defined with rigour and consistency. In this review we attempt to clarify the differences and interrelationships among steady, balanced and exponential states of culture growth. Basic thermodynamic concepts are used to introduce the idea of steady-state growth in open, biological systems. The classical, sometimes conflicting, definitions of steady-state and balanced growth are presented, and a consistent terminology is proposed. The conditions under which a culture in balanced growth is also in exponential growth and in steady-state growth are indicated. It is pointed out that steady-state growth always implies both balanced and exponential growth, and examples in which the converse does not hold are described. More complex situations are then characterized and the terminology extended accordingly. This leads to the notion of normal growth and growth that can be synchronous or otherwise unbalanced but still reproducible, and to the condition of approximate steady state manifested by growth in batch culture and by asymmetrically dividing cells, which is analysed in some detail.
实验进行的条件必须严格且一致地定义,这对于结果的可重复性及其正确解释至关重要。在本综述中,我们试图阐明培养物生长的稳定、平衡和指数状态之间的差异及相互关系。运用基本热力学概念来引入开放生物系统中稳态生长的概念。介绍了稳态和平衡生长的经典定义,这些定义有时相互冲突,并提出了一致的术语。指出了平衡生长的培养物同时处于指数生长和稳态生长的条件。强调稳态生长总是意味着平衡生长和指数生长,并描述了反之不成立的例子。接着对更复杂的情况进行了描述,并相应地扩展了术语。这引出了正常生长以及可以是同步的或以其他方式不平衡但仍可重复的生长的概念,以及分批培养和不对称分裂细胞生长所表现出的近似稳态条件,并对其进行了详细分析。