兼性甲基化菌原单胞菌中类异戊二烯化合物的产生

Teizi Urakami, Makiko Hori-Okubo
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引用次数: 14

摘要

利用不同的培养条件和不同的突变,筛选了一株含有大量泛醌Q-10和多种类异戊二烯化合物的菌株。选取含有类胡萝卜素、啤酒花-22(29)-烯和啤酒花-22-醇的原单胞菌TK 0045,以细胞产量和泛醌Q-10含量为基础进行筛选。泛醌和甾醇含量随培养龄期的增加而增加,在固定期达到最大值。利用诱变方法,研究了该菌株产生的泛醌、甾醇类和类胡萝卜素色素的含量以及泛醌同源物的含量。类胡萝卜素含量增加或减少的突变体频率很高。大多数突变体含有不同含量的其他类异戊二烯化合物。通过诱变获得的泛素同源物变化频率高,分离出泛素水平升高的Q-9、Q-11和Q-12突变体。然而,这些突变体的主要泛素成分是Q-10,与野生菌株相同。通过反复诱变,泛醌的产量显著增加,第三代突变株HB-5的泛醌含量约为3.3 mg·g干细胞−1,是野生菌株的2.5倍。获得具有改变类胡萝卜素色素合成的突变体将有助于增加细菌细胞中泛醌Q-10的含量。
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Production of isoprenoid compounds in the facultative methylotroph Protomonas extorquens

Screening of a strain which contained a large amount of ubiquinone Q-10 and a variety of isoprenoid compounds using different culture conditions and mutations was carried out.

Protomonas extorquens TK 0045, which was found to contain carotenoid pigments, Hop-22(29)-ene, and Hopan-22-ol, was selected on the basis of cell yield and the content of ubiquinone Q-10. The contents of ubiquinone and sterols increased as the age of the culture increased, and reached a maximum level during the stationary phase.

The contents of ubiquinone, sterols and carotenoid pigments, and ubiquinone homologs produced by P. extorquens TK 0045 were varied using mutagenesis. Mutants that had increased or decreased contents of carotenoid pigments were obtained with a high frequency. Most mutants had varying contents of other isoprenoid compounds. The ubiquinone homologs obtained by mutagenesis varied with a high frequency, and mutants which possessed increased levels of ubiquinone Q-9, Q-11 or Q-12 were isolated. However, the major ubiquinone component in these mutants was Q-10 the same as that in the wild strain. The production of ubiquinone was increased considerablyby repeated mutagenesis, with the content of ubiquinone produced by the third generation mutant (strains HB-5) being approximately 3.3 mg·g dry cell−1 (2.5 times that of the wild strain). The acquisition of mutants exhibiting altered synthesis of carotenoid pigments would be useful for increasing the content of ubiquinone Q-10 in bacterial cells.

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