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一种用于分析缓慢生长分枝杆菌属生长动力学的模型

A model for analyzing growth kinetics of a slowly growing Mycobacterium sp.

作者信息

Lambrecht R S, Carriere J F, Collins M T

机构信息

Department of Pathobiological Sciences, School of Veterinary Medicine, University of Wisconsin, Madison 53706.

出版信息

Appl Environ Microbiol. 1988 Apr;54(4):910-6. doi: 10.1128/aem.54.4.910-916.1988.

Abstract

This report describes a simple method for quantifying viable mycobacteria and for determining generation time. We used statistical models and computer analysis of growth curves generated for the slowly growing mycobacterium Mycobacterium paratuberculosis under controlled conditions to derive a mathematical formula relating the dependent variable, growth, to the independent variables, log10 number of organisms in the inoculum (inoculum size) and incubation time. Growth was measured by a radiometric method which detects 14CO2 release during metabolism of a 14C-labeled substrate. The radiometric method allowed for early detection of growth and detected as few as three viable bacteria. The coefficient of variation between culture vials inoculated with the same number of M. paratuberculosis was 0.083. Radiometric measurements were highly correlated to spectrophotometric and plate count methods for measuring growth (r = 0.962 and 0.992, respectively). The proportion of the total variability explained by the model in a goodness of fit test was 0.9994. Application of the model to broth cultures provided accurate estimates of the number of M. paratuberculosis (standard error = 0.21, log10 scale) and the growth rate (coefficient of variation, 0.03). Generation time was observed to be dependent upon the number of organisms in the inoculum. The model accurately described all phases of growth of M. paratuberculosis and can likely be applied to other slowly growing microorganisms.

摘要

本报告描述了一种用于定量活分枝杆菌和确定代时的简单方法。我们使用统计模型和对在受控条件下缓慢生长的副结核分枝杆菌所产生的生长曲线进行计算机分析,以得出一个数学公式,该公式将因变量生长与自变量接种物中生物体的对数(接种量)和孵育时间相关联。生长通过一种放射性方法进行测量,该方法可检测在14C标记底物代谢过程中释放的14CO2。这种放射性方法能够早期检测到生长,并且能够检测到低至三个活细菌。接种相同数量副结核分枝杆菌的培养瓶之间的变异系数为0.083。放射性测量与用于测量生长的分光光度法和平板计数法高度相关(相关系数分别为0.962和0.992)。在拟合优度检验中,模型解释的总变异性比例为0.9994。将该模型应用于肉汤培养物可准确估计副结核分枝杆菌的数量(标准误差 = 0.21,对数10刻度)和生长速率(变异系数,0.03)。观察到代时取决于接种物中生物体的数量。该模型准确描述了副结核分枝杆菌生长的所有阶段,并且可能适用于其他缓慢生长的微生物。

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