雅罗维亚
代谢工程
琥珀酸
酵母
发酵
工业微生物学
生物化学
合成生物学
柠檬酸循环
食品科学
三羧酸
生物技术
化学
生物
新陈代谢
基因
生物信息学
作者
Zhe Jiang,Zhiyong Cui,Ziwei Zhu,Yinghang Liu,Ya‐Jie Tang,Jin Hou,Qingsheng Qi
标识
DOI:10.1186/s13068-021-01996-w
摘要
Abstract Background Succinic acid (SA) is a crucial metabolic intermediate and platform chemical. Development of biobased processes to achieve sustainable SA production has attracted more and more attention in biotechnology industry. Yarrowia lipolytica has a strong tricarboxylic acid cycle and tolerates low pH conditions, thus making it a potential platform for SA production. However, its SA titers in glucose media remain low. Results In this study, we screened mitochondrial carriers and C4-dicarboxylic acid transporters to enhance SA secretion in Y. lipolytica . PGC62-SYF-Mae strain with efficient growth and SA production was constructed by optimizing SA biosynthetic pathways and expressing the transporter SpMae1. In fed-batch fermentation, this strain produced 101.4 g/L SA with a productivity of 0.70 g/L/h and a yield of 0.37 g/g glucose, which is the highest SA titer achieved using yeast, with glucose as the sole carbon resource. Conclusion Our results indicated that transporter engineering is a powerful strategy to achieve the efficient secretion of SA in Y. lipolytica , which will promote the industrial production of bio-based SA.
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