Relation of anabolic-catabolic glucose utilization in growth-limited cultures of Streptomyces griseus.

A Christner, E J Bormann, R Reiche
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Abstract

Phenotypically different submerged mycelium conserves had been produced from a spore conserve of the HP-strain Streptomyces griseus and proofed in a product formation culture as a test system. The phenotypical characters induced on the base of the genotype proved in a cultivation cycle during 30-34 reduplications of the biomass constant. Employing the HP phenotype we investigated the possibility of economizing the substrate turnover by utilizing the anabolic potential for the synthesis of secondary substances and/or reducing the conservation catabolism during the stationary growth stage. As criteria for that served the stoichiometric turnover equation of the streptomycin biosynthesis and the quotient qO2/qGluc taking at full substrate oxidation the numerical value 6. During the stationary growth stage the relation of maintenance anabolism to maintenance catabolism in addition to the formation as secondary substances is not fixed in the tested HP phenotypes, but in a striking manner variable. The relation of by-product synthesis to secondary metabolism synthesis, too, is variable in the stationary growth stage with constant maintenance catabolism. Due to those response reactions on phenotypical manipulations an economization of the substrate turnover during the product formation stage with stationary growth is not possible in the streptomycin producer Streptomyces griseus.

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灰色链霉菌生长受限培养中合成代谢-分解代谢葡萄糖利用的关系。
从hp菌株的灰链霉菌孢子保存中产生了不同表型的淹没菌丝体保存,并在产品形成培养中作为测试系统进行了验证。根据基因型诱导的表型性状在生物量常数30 ~ 34次重复的栽培周期中得到证实。利用HP表型,我们研究了通过利用合成代谢潜力合成次生物质和/或减少固定生长阶段的保守分解代谢来节约底物周转的可能性。链霉素生物合成的化学计量转换方程和底物完全氧化时商qO2/qGluc的数值为6。在稳定生长阶段,维持合成代谢和维持分解代谢的关系以及作为次生物质的形成在HP表型中不是固定的,而是以一种引人注目的方式变化。副产物合成与次级代谢合成的关系,在稳定生长阶段也具有恒定的维持分解代谢。由于这些对表型操作的响应反应,在产物形成阶段与稳定生长的底物周转的节约在链霉素生产商灰色链霉菌中是不可能的。
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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17 Mikrobielle Vielfalt, Evolution und Systematik 13 Mikrobielle Gärungen 10 Transport durch die Cytoplasmamembran 18 Die Rolle von Mikroorganismen im Stoffkreislauf und in der Natur 12 Oxidation anorganischer Verbindungen: chemolithotrophe Lebensweise
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