Sep 2026· Journal of Agricultural and Food Chemistry· 0 citations· 155 references
Abstract
Oleanane-type pentacyclic triterpenoids are a class of naturally occurring specialized metabolites with diverse biological activities. Conventional plant extraction and chemical synthesis are constrained by low yields, high costs, and a reliance on natural resources. With the development of synthetic biology and metabolic engineering, the biosynthetic pathways of these compounds can now be systematically reconstructed and optimized, providing new opportunities for efficient production. This review summarizes the classification of oleanane-type pentacyclic triterpenoids and outlines their biosynthetic pathways and recent progress in production platforms such as plant in vitro culture and microbial cell factories. In addition, we discuss major engineering strategies used to improve triterpenoid production, including increasing precursor supply, reducing competing pathways, implementing enzyme engineering and engineering cofactors, improving protein performance, subcellular compartmentalization, enhancing transport, and optimizing fermentation conditions. In view of the current progress, this review also identifies persistent challenges in the biosynthesis of these compounds and outlines potential strategies to address them.
This review summarizes recent advances in monoterpenoid biosynthesis, multilevel regulation, and heterologous production, with particular emphasis on major bottlenecks and optimization strategies for sustainable and efficient biomanufacturing.
Jun-Chi Zhang, Jiale Cui, Shang Li et al.· Natural Products and Biopros...· 0 citations
Polyketides are among the most structurally diverse and therapeutically important classes of natural products, serving as antibiotics, anticancer agents, agrochemicals, and industrial pigments. Their structural complexity and limited natural availability have driven the development of microbial biosynthetic platforms a...
Significant advances in integrated strategies, particularly organelle engineering in Yarrowia lipolytica and Saccharomyces cerevisiae, have increased squalene titers to high levels and provide a useful basis for future metabolic engineering efforts aimed at improving squalene production and facilitating the synthesis o...
Tryptophan-derived metabolites are indole-containing compounds with applications in medicine, functional foods, and agriculture. Conventional production via plant extraction or chemical synthesis is often inefficient and unsustainable, prompting the development of microbial biosynthesis. In this review, these metabolit...
Chen-Xi Qiu, Hong-Wei Guo, Quan-Pu Ren et al.· Journal of Agricultural and...· 0 citations
Key challenges for industrial translation are highlighted, including low titers, incomplete enzyme characterization, host–pathway incompatibility, and scalable purification, and propose integrated strategies combining precursor-pathway rewiring, AI-assisted enzyme engineering, biosensor-based regulation, and process op...
Hong-Yu Li, Jia-Qi Liu, Jia-Shan Lu et al.· Microorganisms· 0 citations
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