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Temperature-dependent growth kinetics of Escherichia coli ML 30 in glucose-limited continuous culture.

机译:葡萄糖受限连续培养中大肠杆菌ML 30的温度依赖性生长动力学。

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摘要

Detailed comparison of growth kinetics at temperatures below and above the optimal temperature was carried out with Escherichia coli ML 30 (DSM 1329) in continuous culture. The culture was grown with glucose as the sole limiting source of carbon and energy (100 mg liter(-1) in feed medium), and the resulting steady-state concentrations of glucose were measured as a function of the dilution rate at 17.4, 28.4, 37, and 40 degrees C. The experimental data could not be described by the conventional Monod equation over the entire temperature range, but an extended form of the Monod model [mu = mu(max) x (s - s(min))/(Ks + s - s(min))], which predicts a finite substrate concentration at 0 growth rate (s(min)), provided a good fit. The two parameters mu(max) and s(min) were temperature dependent, whereas, surprisingly, fitting the model to the experimental data yielded virtually identical Ks values (approximately 33 microg liter(-1)) at all temperatures. A model that describes steady-state glucose concentrations as a function of temperature at constant growth rates is presented. In similar experiments with mixtures of glucose and galactose (1:1 mixture), the two sugars were utilized simultaneously at all temperatures examined, and their steady-state concentrations were reduced compared with to growth with either glucose or galactose alone. The results of laboratory-scale kinetic experiments are discussed with respect to the concentrations observed in natural environments.
机译:在连续培养中,用大肠杆菌ML 30(DSM 1329)进行了低于和高于最佳温度的生长动力学的详细比较。用葡萄糖作为碳和能量的唯一限制源(饲料培养基中100 mg升(-1))培养培养物,并测量所得到的稳态葡萄糖浓度作为稀释率的函数,分别为17.4、28.4 ,37和40摄氏度。实验数据无法通过传统的Monod方程在整个温度范围内描述,而是Monod模型的扩展形式[mu = mu(max)x(s-s(min)) /(Ks + s-s(min))],它预测了0生长速率(s(min))时有限的底物浓度,提供了很好的拟合度。两个参数mu(max)和s(min)取决于温度,而令人惊讶的是,将模型拟合到实验数据在所有温度下都产生了几乎相同的Ks值(约33微升-1)。提出了一个模型,该模型描述了恒定生长速率下稳态葡萄糖浓度与温度的关系。在葡萄糖和半乳糖混合物(1:1混合物)的类似实验中,两种糖在所有检查温度下同时使用,与单独使用葡萄糖或半乳糖的生长相比,它们的稳态浓度降低。关于在自然环境中观察到的浓度,讨论了实验室规模的动力学实验的结果。

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