首页> 外文期刊>Journal of Bioscience and Bioengineering >Improvement of Isoamyl Acetate Productivity in Sake Yeast by Isolating Mutants Resistant to Econazole
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Improvement of Isoamyl Acetate Productivity in Sake Yeast by Isolating Mutants Resistant to Econazole

机译:通过将抗抗体分离对生态唑唑来改善粘液中的异戊酯生产率

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Sake yeast strains were improved so as to produce larger amounts of isoamyl acetate that the parental strain by isolating econazole-resistant mutants. Econazole, an imidazole antimycotic, directly interacts with unsaturated fatty acids in the yeast cell membrane, where it also inhibits the synthesis of ergosterol and decrease the ratio of unsaturated to saturated fatty acids. In contrast, alcohol acetyltransferase (AATase), which catalyzes the synthesis of isoamyl acetate,is inhibited by unsaturated fatty acids. Fifty econazole-resistant mutants were isolated from a sake yeast, Kyokai no. 701, several of which produced approximately 1.4 to 2.4 times more isoamyl acetate and an almost equal amount of isoamyl alcohol compared with the parental strain. The AATase activities of the mutants in koji extract were 1.2 to 1.4 times higher, and the unsaturated to saturated fatty acid ratios were lower, than in the parental strain.
机译:改善了粘液酵母菌株,以产生较少量的乙酸异戊酯,即通过分离抗生态抗生素突变体来产生亲本菌株。 Econazole,咪唑抗霉,直接与酵母细胞膜中的不饱和脂肪酸直接相互作用,在那里它还抑制了Ergosterol的合成并降低了不饱和脂肪酸的不饱和比率。 相反,含有不饱和脂肪酸的醇乙酰转移酶(Aatase),其催化乙酸异戊酯的合成抑制。 从清除酵母,kyokai no孤立五十官仙抗突变体。 701,其中几种与亲本菌株相比,其产生约1.4至2.4倍的异戊酯和几乎等量的异戊醇。 Koji提取物中突变体的Aatase活性较高1.2至1.4倍,并且不饱和至饱和脂肪酸比率低于亲本菌株。

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