淀粉
丁酸盐
丁酸
食品科学
化学
水解
乙酰丁酸梭菌
淀粉酶
梭菌
生物化学
发酵
丁醇
酶
细菌
生物
乙醇
遗传学
作者
Xiaolong Guo,Xin Li,Jun Feng,Yue Zhi,Hongxin Fu,Jufang Wang
标识
DOI:10.1016/j.biortech.2023.129914
摘要
Clostridium tyrobutyricum has been successfully engineered to produce butyrate, butanol, butyl butyrate, and γ-aminobutyric acid. It would be interesting to produce bio-chemicals and bio-fuels directly using starch from non-food crop, e.g., cassava, by engineered C. tyrobutyricum. In this study, heterologous α-amylases were screened and expressed in C. tyrobutyricum, resulting in successfully starch hydrolyzation. Furthermore, α-glucosidase (AgluI) was co-expressed with α-amylases, resulting in enhancement in the capacity of starch hydrolyzation and butyrate production. When increasing the cassava starch concentration to 100 g/L, the engineered strain CTAA05 produced 27.0 g/L butyrate. In addition, when introducing butyl butyrate synthetic pathway, strain MU3-AAV produced 26.8 g/L butyl butyrate with 100 g/L cassava starch as substrate. This study showed a generalizable framework to engineered anaerobes for anaerobic production of bio-chemicals and bio-fuels from starchy biomass.
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