雅罗维亚
发酵
代谢工程
生物技术
化学
多不饱和脂肪酸
脂肪酸
食品科学
酵母
生物
生物化学
基因
作者
Yixiong Tang,Wei Huang,Yuhui Wang,Hong Chen,Xiangyang Lu,Yun Tian,Xiao‐Jun Ji,Huhu Liu
标识
DOI:10.1016/j.biortech.2024.130978
摘要
Cis-13, 16-docosadienoic acid (DDA) is an omega-6 polyunsaturated fatty acid with great potential for application in medicine and health. Using microbial cell factories for DDA production is considered a viable alternative to extracting DDA from plant seeds. In this study, using Yarrowia lipolytica Po1f (Δku70) as a chassis, firstly, the adaptation of three elongases in Po1f (Δku70) were explored. Secondly, the DDA biosynthetic pathway was redesigned, resulting in a DDA content of 0.046 % of total fatty acids (TFAs). Thirdly, through the "push-pull" strategy, the DDA content increased to 0.078 % of TFAs. By enhancing the supply of acetyl-CoA, the DDA production in the engineered strain YL-7 reached 0.391 % of the TFAs (3.19 mg/L). Through optimizing the fermentation conditions, the DDA titer of YL-7 reached 29.34 mg/L. This research achieves the sustainable biological production of DDA in Y. lipolytica.
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