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卡尔斯伯酵母在磷酸盐限制条件下细胞生长和磷酸酶生物合成的数学模型。

Mathematical model of cell growth and phosphatase biosynthesis in Saccharomyces carlsbergensis under phosphate limitation.

作者信息

Toda K, Yabe I

出版信息

Biotechnol Bioeng. 1979 Mar;21(3):487-502. doi: 10.1002/bit.260210310.

Abstract

The rate kinetics of growth and acid phosphate formation in the batch culture of Saccharomyces carlsbergensis LAM 1068 was studied under varying degrees of phosphate limitation. The mathematical model that was developed is concerned with the time lag for exponential growth, the biphasic growth on a substrate (glucose) and its product (ethanol), sustained growth on conservative phosphate, and the derepression of acid phosphatase. The numerical calculations using appropriate parametric constants successfully described the variation in the cell mass, glucose, ethanol, and inorganic phosphate concentrations, and the enzyme activity of acid phosphatase during aerobic growth of S. carlsbergensis under five different conditions of phosphate starvation. A simulation study revealed that the optimum initial phosphate concentration in the medium giving a high productivity of acid phosphatase was 2.0 mg phosphorus/g glucose liter.

摘要

在不同程度的磷酸盐限制条件下,研究了卡尔斯伯酵母LAM 1068分批培养过程中的生长速率动力学和酸性磷酸酯的形成。所建立的数学模型涉及指数生长的时间滞后、在底物(葡萄糖)及其产物(乙醇)上的双相生长、在保守磷酸盐上的持续生长以及酸性磷酸酶的去阻遏作用。使用适当的参数常数进行的数值计算成功地描述了在五种不同磷酸盐饥饿条件下卡尔斯伯酵母有氧生长过程中细胞质量、葡萄糖、乙醇和无机磷酸盐浓度的变化以及酸性磷酸酶的酶活性。模拟研究表明,使酸性磷酸酶具有高生产率的培养基中最佳初始磷酸盐浓度为2.0毫克磷/克葡萄糖升。

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