[Joint utilization of glucose and n-alkanes in citric acid synthesis by Saccharomycopsis lipolytica].

D Franke-Rinker, U Behrens, E Nöckel, C Forner, A Portnowa
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引用次数: 5

Abstract

Fermentations for the overproduction of citrate and isocitrate with S. lipolytica in media containing both glucose and n-alkanes as mixed C-source have been performed. Biomass and product yields strongly depend on the C-source of the inoculation culture. If the inoculation culture had been taken from media containing glucose as sole C-source both glucose and n-alkanes were utilized for cell growth in the main culture whereas only glucose was utilized if the inoculation medium contained only n-alkanes. For idiophasic citrate and isocitrate production both glucose and n-alkanes were consumed independently of the C-source of the inoculum but that C-source was preferentially utilized which has been the C-source of the inoculation culture. These findings are reflected by the activities of the isocitrate lyase and the pyruvate carboxylase, respectively. In S. lipolytica both anaplerotic pathways are coexisting but the C-source of the inoculation culture determines the level of the specific activities even if the ratio of the cell-mass of the inoculum to the cell mass of the main culture at the end of the growth phase is about 1:35.

[葡萄糖和正构烷烃在脂肪糖酵母菌合成柠檬酸中的联合利用]。
在含有葡萄糖和正构烷烃作为混合c源的培养基中,用聚脂酵母发酵过量生产柠檬酸盐和异柠檬酸盐。生物量和产量在很大程度上取决于接种培养的c源。如果接种培养基中含有葡萄糖作为唯一的c源,则在主培养中葡萄糖和正构烷烃都被用于细胞生长,而如果接种培养基中只含有正构烷烃,则只使用葡萄糖。对于特生柠檬酸盐和异柠檬酸盐的生产,葡萄糖和正构烷烃的消耗都独立于接种物的c源,但c源被优先利用,这是接种培养的c源。这些发现分别反映在异柠檬酸裂解酶和丙酮酸羧化酶的活性上。在脂质体链球菌中,这两种反歧途径是共存的,但即使在生长末期接种物的细胞质量与主培养物的细胞质量之比约为1:35,接种物的c源也决定了比活性的水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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