Lu Jiasheng, Jiang Wankui, Dong Weiliang, Zhou Jie, Zhang Wenming, Jiang Yujia, Xin Fengxue, Jiang Min
State Key Laboratory of Materials-Oriented Chemical Engineering, College of Biotechnology and Pharmaceutical Engineering, Nanjing Tech University, Nanjing 211816, P. R. China.
Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM), Nanjing Tech University, Nanjing 211816, P. R. China.
J Agric Food Chem. 2023 Feb 2. doi: 10.1021/acs.jafc.2c07650.
Butyl butyrate has shown wide applications in food, cosmetic, and biofuel sectors. Currently, biosynthesis of butyl butyrate still requires exogenous addition of precursors and lipase, which increases the production cost and limits further large-scale development. In this study, a microbial consortium was first designed to realize direct butyl butyrate production from lignocellulose. The highest butyl butyrate concentration of 34.42 g/L was detected in the solvent phase from 60 g/L glucose using a microbial coculture system composed of NJ4 and LD with the elimination of butyric acid supplementation. Meanwhile, 13.52 g/L butyl butyrate was synthesized from 60 g/L glucose using a microbial consortium composed of three strains including strain NJ4, strain LD, and BL21- pET-29a(+)-LE without the addition of any exogenous precursors and lipase. In addition, 2.94 g/L butyl butyrate could be directly produced from 60 g/L microcrystalline cellulose when was added to the above-mentioned three-strain microbial consortium. This four-strain microbial consortium represents the first study regarding the direct butyl butyrate production from lignocellulose without the supplementation of exogenous precursors and lipase, which may be extended to the biosynthesis of other short-chain esters, such as ethyl acetate and butyl lactate.
丁酸丁酯已在食品、化妆品和生物燃料领域展现出广泛应用。目前,丁酸丁酯的生物合成仍需外源添加前体和脂肪酶,这增加了生产成本并限制了进一步的大规模发展。在本研究中,首次设计了一个微生物群落以实现从木质纤维素直接生产丁酸丁酯。使用由NJ4和LD组成的微生物共培养系统,在不添加丁酸的情况下,从60 g/L葡萄糖的溶剂相中检测到最高丁酸丁酯浓度为34.42 g/L。同时,使用由包括菌株NJ4、菌株LD和BL21-pET-29a(+)-LE在内的三株菌组成的微生物群落,在不添加任何外源前体和脂肪酶的情况下,从60 g/L葡萄糖合成了13.52 g/L丁酸丁酯。此外,当将[具体物质未给出]添加到上述三株菌的微生物群落中时,可从60 g/L微晶纤维素直接生产2.94 g/L丁酸丁酯。这个四株菌的微生物群落代表了第一项关于在不添加外源前体和脂肪酶的情况下从木质纤维素直接生产丁酸丁酯的研究,这可能会扩展到其他短链酯的生物合成,如乙酸乙酯和乳酸丁酯。