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温度振荡诱导裂殖酵母同步生长的测量与模型

Measurements and models of synchronous growth of fission yeast induced by temperature oscillations.

作者信息

Agar D W, Bailey J E

机构信息

Department of Chemical Engineering, University of Houston, Houston, Texas 77004, USA.

出版信息

Biotechnol Bioeng. 1982 Jan;24(1):217-36. doi: 10.1002/bit.260240118.

Abstract

Pulsing of temperature in a fermentor at intervals coincident with cell generation time was used to induce synchrony in a population of the fission yeast Schizosaccharomyces pombe. Measurements of culture protein, RNA, and DNA during synchronous growth confirm continuous synthesis of protein and RNA and discontinuous synthesis of DNA as previously reported. Flow microfluorometry of populations at different times during the synchrony cycle was used to monitor the changes in single-cell protein. RNA, and DNA frequency functions. These measurements illustrate very clearly the degree of synchrony and patterns of macromolecular synthesis and also confirm previous estimates of the cellular protein contents characteristic of dividing cells. Additional insights into single-cell kinetics and division controls are provided by two-parameter flow microfluorometry measurements and by mathematical modeling of population dynamics. Such data are necessary foundations for robust population balance models of microbial processes.

摘要

在与裂殖酵母粟酒裂殖酵母细胞生成时间一致的间隔下对发酵罐温度进行脉冲处理,以诱导该裂殖酵母群体达到同步生长。同步生长期间对培养物中的蛋白质、RNA和DNA进行测量,证实了蛋白质和RNA的持续合成以及DNA的间断合成,这与之前的报道一致。在同步循环的不同时间对群体进行流式细胞荧光测定,以监测单细胞蛋白质、RNA和DNA频率函数的变化。这些测量非常清楚地说明了同步程度以及大分子合成模式,也证实了之前对分裂细胞特征性细胞蛋白质含量的估计。双参数流式细胞荧光测定以及群体动态的数学建模为单细胞动力学和分裂控制提供了更多见解。此类数据是微生物过程稳健群体平衡模型的必要基础。

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