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基于膨胀蛭石递送系统提高蓖麻油酸合成γ-癸内酯的生物转化效率

Enhanced Biotransformation Productivity of Gamma-Decalactone from Ricinoleic Acid Based on the Expanded Vermiculite Delivery System.

作者信息

Guan Shimin, Rong Shaofeng, Wang Mengze, Cai Baoguo, Li Qianqian, Zhang Shuo

机构信息

Department of Biological Engineering, Shanghai Institute of Technology, Shanghai 201418, P.R. China.

出版信息

J Microbiol Biotechnol. 2019 Jul 28;29(7):1071-1077. doi: 10.4014/jmb.1904.04058.

Abstract

Natural gamma-decalactone (GDL) produced by biotransformation is an essential food additive with a peach-like aroma. However, the difficulty of effectively controlling the concentration of the substrate ricinoleic acid (RA) in water limits the biotransformation productivity, which is a bottleneck for industrialization. In this study, expanded vermiculite (E-V) was utilized as a carrier of RA to increase its distribution in the medium. E-V and three commonly used organic compounds were compared with respect to their effects on the biotransformation process, and the mechanism was revealed. Scanning electron microscopy, Fourier transform infrared spectroscopy and thermogravimetric analysis indicated that RA was physically adsorbed onto the surface of and inside E-V instead of undergoing a chemical reaction, which increased the opportunity for interactions between microorganisms and the substrate. The highest concentration of GDL obtained in the medium with E-V was 6.2 g/l, which was 50% higher than that in the reference sample. In addition, the presence of E-V had no negative effect on the viability of the microorganisms. This study provides a new method for producing natural GDL through biotransformation on an industrial scale.

摘要

通过生物转化产生的天然γ-癸内酯(GDL)是一种具有桃子香气的重要食品添加剂。然而,有效控制水中蓖麻油酸(RA)底物浓度的困难限制了生物转化的生产率,这是工业化的一个瓶颈。在本研究中,膨胀蛭石(E-V)被用作RA的载体,以增加其在培养基中的分布。比较了E-V和三种常用有机化合物对生物转化过程的影响,并揭示了其作用机制。扫描电子显微镜、傅里叶变换红外光谱和热重分析表明,RA被物理吸附在E-V的表面和内部,而不是发生化学反应,这增加了微生物与底物之间相互作用的机会。在含有E-V的培养基中获得的GDL最高浓度为6.2 g/l,比参考样品高50%。此外,E-V的存在对微生物的活力没有负面影响。本研究为通过生物转化大规模生产天然GDL提供了一种新方法。

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