雅罗维亚
代谢工程
DNA连接酶
甲戊酸途径
克隆(编程)
生物
计算生物学
生产过剩
酵母
合成生物学
萜类
代谢途径
生物化学
遗传学
DNA
生物合成
基因
计算机科学
程序设计语言
作者
Ya-Wen Li,Cai-Ling Yang,Qijun Shen,Qianqian Peng,Qi Guo,Zhi-Kui Nie,Xiao‐Man Sun,Tian‐Qiong Shi,Xiao‐Jun Ji,He Huang
标识
DOI:10.3389/fbioe.2021.816980
摘要
Non-homologous end-joining (NHEJ)-mediated random integration in Yarrowia lipolytica has been demonstrated to be an effective strategy for screening hyperproducer strains. However, there was no multigene assembly method applied for NHEJ integration, which made it challenging to construct and integrate metabolic pathways. In this study, a Golden Gate modular cloning system (YALIcloneNHEJ) was established to develop a robust DNA assembly platform in Y. lipolytica. By optimizing key factors, including the amounts of ligase and the reaction cycles, the assembly efficiency of 4, 7, and 10 fragments reached up to 90, 75, and 50%, respectively. This YALIcloneNHEJ system was subsequently applied for the overproduction of the sesquiterpene (-)-α-bisabolol by constructing a biosynthesis route and enhancing the flux in the mevalonate pathway. The resulting strain produced 4.4 g/L (-)-α-bisabolol, the highest titer reported in yeast to date. Our study expands the toolbox of metabolic engineering and is expected to enable a highly efficient production of various terpenoids.
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