生物制造
代谢工程
生化工程
角鲨烯
生物技术
过程(计算)
可持续生产
生物
生产(经济)
食品加工
代谢途径
生物制药
食物供应
计算机科学
化学
工程类
脂质积聚
代谢组学
过程开发
辅因子
计算生物学
动物生产
持续性
作者
Ziwei Wang,Maocheng Tang,Siqi Liu,Junhao Chen,Qingru Hua,Jifan Lei,Huhu Liu,Jiufu Qin
标识
DOI:10.1016/j.jfutfo.2025.12.009
摘要
Squalene, a high-value food ingredient, faces unsustainable supply challenges. Microbial metabolic engineering offers a sustainable alternative, but achieving high-yield production requires systematic optimization beyond conventional approaches. This review provides a unique framework categorizing cutting-edge strategies from molecular to cellular and systemic levels: enzyme engineering, static/dynamic metabolic control, metabolic channeling, subcellular compartmentalization, cofactor engineering, lipid droplet management, membrane transport, and adaptive laboratory evolution. We further discuss integrating artificial intelligence and process intensification to bridge the gap between laboratory innovation and industrially viable, sustainable squalene biomanufacturing for the future food industry.
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