Zhang Zhong-Tian, Taylor Steven, Wang Yi
Department of Biosystems Engineering, Auburn University, 215 Tom E. Corley Building, Auburn, Alabama 36849.
Center for Bioenergy and Bioproducts, Auburn University, Auburn, Alabama.
Biotechnol Bioeng. 2017 Jul;114(7):1428-1437. doi: 10.1002/bit.26289. Epub 2017 Apr 18.
Butyl butyrate (BB) is a valuable chemical that can be used as flavor, fragrance, extractant, and so on in various industries. Meanwhile, BB can also be used as a fuel source with excellent compatibility as gasoline, aviation kerosene, and diesel components. The conventional industrial production of BB is highly energy-consuming and generates various environmental pollutants. Recently, there have been tremendous interests in producing BB from renewable resources through biological routes. In this study, based on the fermentation using the hyper-butyrate producing strain Clostridium tyrobutyricum ATCC 25755, efficient BB production through in situ esterification was achieved by supplementation of lipase and butanol into the fermentation. Three commercially available lipases were assessed and the one from Candida sp. (recombinant, expressed in Aspergillus niger) was identified with highest catalytic activity for BB production. Various conditions that might affect BB production in the fermentation have been further evaluated, including the extractant type, enzyme loading, agitation, pH, and butanol supplementation strategy. Under the optimized conditions (5.0 g L of enzyme loading, pH at 5.5, butanol kept at 10.0 g L ), 34.7 g L BB was obtained with complete consumption of 50 g L glucose as the starting substrate. To our best knowledge, the BB production achieved in this study is the highest among the ever reported from the batch fermentation process. Our results demonstrated an excellent biological platform for renewable BB production from low-value carbon sources. Biotechnol. Bioeng. 2017;114: 1428-1437. © 2017 Wiley Periodicals, Inc.
丁酸丁酯(BB)是一种有价值的化学品,可在各个行业用作香料、香精、萃取剂等。同时,BB还可作为一种燃料来源,与汽油、航空煤油和柴油组分具有出色的兼容性。传统的BB工业生产能耗高且会产生各种环境污染物。最近,人们对通过生物途径从可再生资源生产BB产生了浓厚兴趣。在本研究中,基于使用高产丁酸菌株酪丁酸梭菌ATCC 25755进行的发酵,通过向发酵中补充脂肪酶和丁醇,实现了通过原位酯化高效生产BB。评估了三种市售脂肪酶,发现来自假丝酵母属(重组体,在黑曲霉中表达)的脂肪酶对BB生产具有最高的催化活性。进一步评估了可能影响发酵中BB生产的各种条件,包括萃取剂类型、酶负载量、搅拌、pH值和丁醇补充策略。在优化条件下(酶负载量为5.0 g/L,pH值为5.5,丁醇保持在10.0 g/L),以50 g/L葡萄糖作为起始底物完全消耗时,获得了34.7 g/L的BB。据我们所知,本研究中实现的BB产量是分批发酵过程中报道的最高产量。我们的结果展示了一个从低价值碳源生产可再生BB的出色生物平台。《生物技术与生物工程》2017年;114:1428 - 1437。© 2017威利期刊公司