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[从牛瘤胃液中分离的细菌菌株静息细胞系统对大豆苷元的生物转化]

[Biotransformation of daidzein by resting cell system of bacterial strain isolated from bovine rumen gastric juice].

作者信息

Zhang Qi, Wang Xiuling, Wang Shiying, Hao Qinghong, Guo Yunxia, Wang Shuxiang

机构信息

College of Life Sciences, Agricultural University of Hebei, Baoding 071001, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2010 Jan;26(1):35-41.

Abstract

In previous study we isolated a gram-positive bacterial strain, designated Niu-O16, from bovine rumen gastric juice. The growing cells of bacterial strain Niu-O16 is capable of biotransforming isoflavone daidzein into dihydrodaidzein efficiently under anaerobic conditions. In this study we investigated the optimal bioconversion conditions for the resting cells of bacterial strain Niu-O16 to convert daidzein into dihydrodaidzein. Single factor test showed that the optimal conditions for the initial pH of phosphate buffer, the concentration of the resting cell and the concentration of the substrate daidzein were 6.0-8.0, 32-64 mg/mL (wet weight) and 0.8-1.2 mmol/L, respectively. Orthogonal experiments were used to determine the optimal combination of the resting cell concentration, substrate concentration and biotransformation time. The results showed that the optimal combination included resting cell concentration 32 mg/mL, substrate concentration 0.8 mmol/L and the biotransformation time 24 h. Furthermore, the biotransformation kinetics under optimal conditions were studied, under which conditions the highest bioconversion rate was 63.9% in the resting cell system. The results might provide information for resting cell biotransforming of anaerobes as well as its industrial application.

摘要

在先前的研究中,我们从牛瘤胃液中分离出一株革兰氏阳性细菌菌株,命名为牛 - O16。细菌菌株牛 - O16的生长细胞能够在厌氧条件下将异黄酮大豆苷元高效地生物转化为二氢大豆苷元。在本研究中,我们研究了细菌菌株牛 - O16的静息细胞将大豆苷元转化为二氢大豆苷元的最佳生物转化条件。单因素试验表明,磷酸盐缓冲液的初始pH、静息细胞浓度和底物大豆苷元浓度的最佳条件分别为6.0 - 8.0、32 - 64 mg/mL(湿重)和0.8 - 1.2 mmol/L。采用正交试验确定静息细胞浓度、底物浓度和生物转化时间的最佳组合。结果表明,最佳组合包括静息细胞浓度32 mg/mL、底物浓度0.8 mmol/L和生物转化时间24 h。此外,研究了最佳条件下的生物转化动力学,在此条件下静息细胞系统中的最高生物转化率为63.9%。这些结果可能为厌氧菌静息细胞生物转化及其工业应用提供信息。

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