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产黄青霉的连续培养。在葡萄糖上的生长及青霉素生产。

Continuous cultivation of Penicillium chrysogenum. Growth on glucose and penicillin production.

作者信息

Christensen L H, Henriksen C M, Nielsen J, Villadsen J, Egel-Mitani M

机构信息

Department of Biotechnology, Technical University of Denmark, Lyngby, Denmark.

出版信息

J Biotechnol. 1995 Sep 29;42(2):95-107. doi: 10.1016/0168-1656(95)00056-v.

Abstract

A series of constant-mass, continuous cultivations of the penicillin producing mold Penicillium chrysogenum was carried out using a chemically defined medium with glucose as the growth-limiting component. The stoichiometry for growth of P. chrysogenum on glucose was characterized in terms of mass-yield and maintenance coefficients. Saturation kinetics with respect to glucose was used to describe the glucose consumption rate at steady-state conditions. Transient data indicate that the maximum rate of glucose consumption at a particular set of operating conditions is correlated to the metabolic 'capacity' of the mold as reflected by its intracellular RNA content. A progressive loss in the penicillin productivity in glucose limited chemostat cultures was correlated to the formation of two mutants. The two mutants were characterized by their sporulation when grown as surface cultures and by Southern dot-tests for delta-(L-alpha-aminoadipyl)-L-cysteinyl-D-valine synthetase (ACVS), isopenicillin-N synthase (IPNS) and acyl-CoA:6-APA acyltransferase (AT). The loss of penicillin productivity was caused by an increasing fraction of mutants which had lost the genes encoding for all three enzymes needed in the penicillin synthesizing pathway.

摘要

使用以葡萄糖作为生长限制成分的化学限定培养基,对产青霉素的霉菌产黄青霉进行了一系列恒质量连续培养。根据质量产率和维持系数对产黄青霉在葡萄糖上生长的化学计量学进行了表征。采用葡萄糖饱和动力学来描述稳态条件下的葡萄糖消耗速率。瞬态数据表明,在特定操作条件下葡萄糖的最大消耗速率与霉菌的代谢“能力”相关,这种能力通过其细胞内RNA含量得以体现。在葡萄糖限制的恒化器培养中,青霉素生产力的逐渐下降与两种突变体的形成有关。这两种突变体通过表面培养时的孢子形成以及对δ-(L-α-氨基己二酰基)-L-半胱氨酰-D-缬氨酸合成酶(ACVS)、异青霉素-N合成酶(IPNS)和酰基辅酶A:6-氨基青霉烷酸酰基转移酶(AT)的Southern斑点试验进行表征。青霉素生产力的丧失是由于突变体比例增加所致,这些突变体失去了青霉素合成途径中所需的全部三种酶的编码基因。

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