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肉桂链霉菌对丁酸盐和异丁酸盐的抗性:一种新型抗异丁酸盐(AIB)因子的产生及特性

Resistance of Streptomyces cinnamonensis to butyrate and isobutyrate: production and properties of a new anti-isobutyrate (AIB) factor.

作者信息

Pospísil S

机构信息

Institute of Microbiology, Czechoslovak Academy of Sciences, Prague.

出版信息

J Gen Microbiol. 1991 Sep;137(9):2141-6. doi: 10.1099/00221287-137-9-2141.

Abstract

Butyrate and isobutyrate (after isomerization to n-butyrate) are specific precursors for the biosynthesis of monensin A in Streptomyces cinnamonensis. High concentrations of both butyrate and isobutyrate (greater than 20 and 10 mM, respectively) were toxic to S. cinnamonensis plated on solid medium. Spontaneous mutants resistant to these substances were isolated. These new strains produced monensins at even higher concentrations of butyrate or isobutyrate, with an increased yield of monensin A. S. cinnamonensis produced an anti-isobutyrate (AIB) factor, which was originally found to be excreted by some isobutyrate-resistant stains growing on solid medium containing isobutyrate. On plates, the AIB factor efficiently counteracted toxic concentrations not only of isobutyrate, but also of acetate, propionate, butyrate, 2-methylbutyrate, valerate and isovalerate against S. cinnamonensis as well as other Streptomyces species. Although the AIB factor enabled normal growth, sporulation and monensin production on plates, it did not have positive effects on submerged cultures of S. cinnamonensis with isobutyrate. The partial purification of the AIB factor was achieved. The role of the AIB factor during spore germination on solid medium containing isobutyrate or its homologues is discussed.

摘要

丁酸和异丁酸(异构化为正丁酸后)是肉桂链霉菌中莫能菌素A生物合成的特定前体。高浓度的丁酸和异丁酸(分别大于20 mM和10 mM)对平板培养在固体培养基上的肉桂链霉菌有毒。分离出对这些物质具有抗性的自发突变体。这些新菌株在更高浓度的丁酸或异丁酸条件下产生莫能菌素,且莫能菌素A的产量增加。肉桂链霉菌产生一种抗异丁酸(AIB)因子,最初发现它是由一些在含有异丁酸的固体培养基上生长的异丁酸抗性菌株分泌的。在平板上,AIB因子不仅能有效对抗异丁酸的毒性浓度,还能对抗乙酸、丙酸、丁酸、2-甲基丁酸、戊酸和异戊酸对肉桂链霉菌以及其他链霉菌属物种的毒性浓度。尽管AIB因子能使平板上的肉桂链霉菌正常生长、产孢和产生莫能菌素,但它对含有异丁酸的肉桂链霉菌深层培养没有积极影响。实现了AIB因子的部分纯化。讨论了AIB因子在含有异丁酸或其同系物的固体培养基上孢子萌发过程中的作用。

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