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结合流式细胞术和使用化学物质进行传统筛选以分离高产谷胱甘肽的酵母突变体。

A combination of flow cytometry and traditional screening using chemicals to isolate high glutathione-producing yeast mutants.

作者信息

Nishiuchi Hiroaki, Tabira Yukiko, Yamagishi Kazuo

机构信息

Ajinomoto Co., Inc., Kanagawa, Japan.

出版信息

Biosci Biotechnol Biochem. 2012;76(6):1085-90. doi: 10.1271/bbb.110883. Epub 2012 Jun 7.

Abstract

Traditional screening using chemicals or flow cytometry (FCM) alone is not sufficient to isolate the high glutathione (GSH)-producing yeast strains used in food production. Therefore, to improve screening efficiency, we investigated a combination of both methods. A mutated Saccharomyces cerevisiae strain was labeled with 5-chloromethylfluorescein diacetate and sorted by FCM according to emitted fluorescence intensity. Moderate GSH (1%-2%)-producing mutants were isolated, whereas high GSH (>2%)-producing mutants were not. Traditional screening using cerulenin resulted in similar findings, but a combination of both methods resulted in a 40% increase in the screening yield of high GSH-producing mutants. An analysis of model strains indicated that the ratio of high GSH-producing cells in a sample affected the FCM results. By combining FCM with traditional screening using chemicals, we succeeded in isolating high GSH-producing mutants from several parental strains.

摘要

仅使用化学方法或流式细胞术(FCM)进行传统筛选不足以分离出食品生产中使用的高产谷胱甘肽(GSH)酵母菌株。因此,为了提高筛选效率,我们研究了两种方法的组合。用5-氯甲基荧光素二乙酸酯标记一株突变酿酒酵母菌株,并根据发射的荧光强度通过FCM进行分选。分离出了中产GSH(1%-2%)的突变体,但未分离出高产GSH(>2%)的突变体。使用浅蓝菌素进行传统筛选也得到了类似的结果,但两种方法结合使用使高产GSH突变体的筛选产量提高了40%。对模型菌株的分析表明,样品中高产GSH细胞的比例会影响FCM结果。通过将FCM与使用化学物质的传统筛选相结合,我们成功地从几个亲本菌株中分离出了高产GSH的突变体。

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