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离子注入诱变选育高产 1,3-二羟丙酮的氧化葡萄糖酸杆菌。

Improvement of 1,3-dihydroxyacetone production from Gluconobacter oxydans by ion beam implantation.

机构信息

Institute of Bioengineering, Zhejiang University of Technology, Hangzhou, China.

出版信息

Prep Biochem Biotechnol. 2012;42(1):15-28. doi: 10.1080/10826068.2011.563400.

Abstract

Improvement of dihydroxyacetone (DHA) production by mutagenesis of ion beam implantation and medium optimization using response-surface methodology (RSM) were investigated in this work. More than 1000 mutant strains were selected through a mutagenesis method using N(+) ions implantation with a dose of 60 × (2.6 × 10(13)) ions/cm(2) and energy of 10 keV. Several high-yield mutant strains were showed the potent application for DHA production and the genetically stable mutant strain G. oxydans ZJB09113 was selected for optimization of cultivation condition by RSM. The optimal medium for DHA fermentation is composed (in g/L) of yeast extract 4.88, CaCO(3) 2.00, and glycerol 52.86 mL/L (initial pH 4.89). The maximal DHA concentration of 40.0 g/L was achieved after 24 hr of shaken flask fermentation at 30°C with 150 rpm, and 196.3% increase in DHA production in comparison with unoptimized conditions.

摘要

本工作采用离子注入诱变和响应面法(RSM)对培养基优化来提高二羟丙酮(DHA)的产量。通过剂量为 60×(2.6×10(13))ions/cm(2)和能量为 10keV 的 N(+)离子注入诱变方法,筛选出了超过 1000 株突变株。一些高产突变株显示出了 DHA 生产的潜在应用,并且选择了遗传稳定的突变株 G. oxydans ZJB09113 通过 RSM 优化培养条件。DHA 发酵的最佳培养基组成为(g/L)酵母提取物 4.88、CaCO(3) 2.00 和甘油 52.86 mL/L(初始 pH 4.89)。在 30°C、150rpm 摇瓶发酵 24 小时后,DHA 浓度达到 40.0g/L,与未优化条件相比,DHA 产量增加了 196.3%。

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