Simonsen L, Gordon D M, Stewart F M, Levin B R
Department of Zoology, University of Massachusetts, Amherst 01003.
J Gen Microbiol. 1990 Nov;136(11):2319-25. doi: 10.1099/00221287-136-11-2319.
We describe a method for determining the rate parameter of conjugative plasmid transfer that is based on single estimates of donor, recipient and transconjugant densities and the growth rate in exponential phase of the mating culture. The formula for estimating the plasmid transfer rate, gamma, was derived from a mathematical model describing cell growth and plasmid transfer in batch culture. Computer simulations were used to explore the sensitivity of this method to the realities of bacterial life, such as growth rate differences, plasmid segregation and transitory derepression of pilus synthesis. As predicted by the theory, mating experiments with the plasmid R1 in Escherichia coli K12 demonstrated that the estimate gamma is unaffected by cell density, donor:recipient ratio and mating time. Unlike previous techniques, our method allows us to investigate the effect of environmental factors on plasmid transfer rates when these factors also influence population growth rates. To illustrate this, we examined the effect of temperature on the rate of plasmid transfer.
我们描述了一种确定接合质粒转移速率参数的方法,该方法基于对供体、受体和转接合子密度的单次估计以及交配培养物指数生长期的生长速率。估计质粒转移速率γ的公式源自描述分批培养中细胞生长和质粒转移的数学模型。计算机模拟用于探索该方法对细菌生活实际情况的敏感性,例如生长速率差异、质粒分离和菌毛合成的短暂去阻遏。正如理论所预测的,在大肠杆菌K12中对质粒R1进行的交配实验表明,估计的γ不受细胞密度、供体:受体比例和交配时间的影响。与以前的技术不同,我们的方法使我们能够在环境因素也影响种群生长速率时,研究这些因素对质粒转移速率的影响。为了说明这一点,我们研究了温度对质粒转移速率的影响。