番茄红素
雅罗维亚
类胡萝卜素
生物化学
代谢工程
生物合成
酵母
化学
甲戊酸途径
食品科学
抗氧化剂
代谢途径
异源表达
生物生产
甲戊酸
过氧化物酶体
红酵母
微生物
生物
叶黄素
甘油
颜料
异源的
焊剂(冶金)
脂肪酸
丁酸盐
角鲨烯
代谢中间体
水解物
虾青素
作者
Paweł Moroz,Aleksandra Bartusiak,Julia Niewiadomska,Kacper Szymański,Tomasz Janek,Anna Kancelista,Anna Gliszczyńska,Zbigniew Lazar
出处
期刊:Molecules
[Multidisciplinary Digital Publishing Institute]
日期:2025-11-06
卷期号:30 (21): 4321-4321
标识
DOI:10.3390/molecules30214321
摘要
Lycopene, a natural carotenoid with antioxidant and health-promoting properties, has attracted attention as a valuable compound for the food, pharmaceutical, and cosmetic industries. Conventional production methods based on plant extraction or chemical synthesis are limited by low yields, high costs, and environmental concerns. In this study, the oleaginous yeast Yarrowia lipolytica was engineered as an alternative microbial cell factory for sustainable lycopene biosynthesis using short-chain fatty acids (SCFAs)-such as acetate, butyrate, and propionate-as inexpensive, renewable carbon sources. Four heterologous genes from Pantoea agglomerans (crtI, crtB, crtE, and idi) were codon-optimized and integrated into the Y. lipolytica genome using different expression systems, including the Golden Gate Assembly strategy. Among the tested strains, PS05/4lyc/GGA, characterized by enhanced phospholipid biosynthesis, demonstrated the highest lycopene yield of 462.9 mg/g dry cell weight and a titer of 3.41 g/L on butyrate medium-values comparable to or exceeding those reported for bioreactor-scale fermentations. The results indicate that co-activation of phospholipid and carotenoid biosynthesis pathways creates favorable intracellular conditions for hydrophobic pigment accumulation. Moreover, the use of SCFAs improved acetyl-CoA availability and redirected carbon flux through the mevalonate pathway, enhancing productivity. Strains with elevated membrane lipid biosynthesis also exhibited higher metabolic stability and stress tolerance.
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