雅罗维亚
代谢工程
聚酮合酶
酵母
生物化学
化学
生物合成
代谢途径
聚酮
食品科学
基因
生物
作者
Yuta Matsuoka,Naofumi Fujie,Mariko Nakano‐Okuno,Ayumi Koshiba,Akihiko Kondo,Tsutomu Tanaka
标识
DOI:10.1016/j.jbiosc.2023.07.006
摘要
An environmentally sustainable world can be realized by using microorganisms to produce value-added materials from renewable biomass. Triacetic acid lactone (TAL) is a high-value-added compound that is used as a precursor of various organic compounds such as food additives and pharmaceuticals. In this study, we used metabolic engineering to produce TAL from glucose using an oleaginous yeast Yarrowia lipolytica. We first introduced TAL-producing gene 2-pyrone synthase into Y. lipolytica, which enabled TAL production. Next, we increased TAL production by engineering acetyl-CoA and malonyl-CoA biosynthesis pathways by redirecting carbon flux to glycolysis. Finally, we optimized the carbon and nitrogen ratios in the medium, culminating in the production of 4078 mg/L TAL. The strategy presented in this study had the potential to improve the titer and yield of polyketide biosynthesis.
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