雅罗维亚
合成生物学
代谢工程
计算生物学
生物制品
磷酸戊糖途径
生物
生物技术
酵母
钥匙(锁)
底盘
生化工程
代谢途径
酿酒酵母
脂质代谢
生物化学
特种化学品
代谢网络
蓖麻油酸
作者
Benedict Ryan Lukito,Naazneen Sofeo,Hui Jean Lim,Muhammad Harith bin Mohammad Taufik,Prakash Arumugam,Aiqun Yu,Adison Wong
标识
DOI:10.1016/j.biotechadv.2026.108835
摘要
Yarrowia lipolytica is a non-conventional yeast with innate oleaginous metabolism and unusual tolerance for hydrophobic substrates, positioning it as a prime chassis for waste-enabled precision fermentation. In this review, we consolidate advances associated with Yarrowia over the past decade into a coherent, trait-centered framework that links biological capabilities to manufacturing performance. We studied genetic toolkits, adaptive laboratory evolution and mating/fusion for strain hardening and phenotype expansion, and combinatorial metabolic engineering strategies (push-pull-block lipid routing, stage- and compartment-specific expression, export engineering) that together improved production titer, rate, and yield across various scales. By organizing metabolic products based on core pathways, namely, the tricarboxylic acid cycle, mevalonate pathway, pentose phosphate pathway, and fatty acid biosynthesis, and pairing each class with the specific chassis edits that enabled leading titers, we provide actionable guidance for target selection and de-risked development. Finally, we propose a roadmap leveraging emerging approaches, AI-guided design, intensified bioprocessing, and precision co-cultures, as key enablers of a scalable, circular bioeconomy with Y. lipolytica as a platform strain.
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