ArticleThe New phytologist2023
OeBAS and CYP716C67 catalyze the biosynthesis of health-beneficial triterpenoids in olive (Olea europaea) fruits.
Article in The New phytologist, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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8 citing papers in PubMed, 15 citations in OpenAlex.
- Metabolomic Mapping of Greek Olive Leaves by Untargeted NMR-Based Profiling and LC-HRMS Dereplication.Analytical science advances · 2026Article
- Unveiling the genetic blueprint of verbascoside biosynthesis inHorticulture research · 2026Article
- Integrated transcriptomic and targeted triterpenoid profiling reveals key enzymes in triterpenoid biosynthesis of Oplopanax elatus.Scientific reports · 2026Article
- Identification of 2,3-oxidosqualene cyclase gene inHorticulture research · 2025Article
- Recent trends in the elucidation of complex triterpene biosynthetic pathways in horticultural trees.Horticulture research · 2025Article
- Roles of three cytochrome P450 monooxygenases in triterpene biosynthesis and their potential impact on growth and development.Plant physiology · 2024Article
- Genome assembly of Hibiscus sabdariffa L. provides insights into metabolisms of medicinal natural products.G3 (Bethesda, Md.) · 2024Article
- Genetics of Plant Metabolism.International journal of molecular sciences · 2023Article
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Authors and funding
11 authors at 4 institutions in 4 countries.
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Abstract
The bioactive properties of olive (Olea europaea) fruits and olive oil are largely attributed to terpenoid compounds, including diverse triterpenoids such as oleanolic, maslinic and ursolic acids, erythrodiol, and uvaol. They have applications in the agri-food, cosmetics, and pharmaceutical industries. Some key steps involved in the biosynthesis of these compounds are still unknown. Genome mining, biochemical analysis, and trait association studies have been used to identify major gene candidates controlling triterpenoid content of olive fruits. Here, we identify and functionally characterize an oxidosqualene cyclase (OeBAS) required for the production of the major triterpene scaffold β-amyrin, the precursor of erythrodiol, oleanolic and maslinic acids, and a cytochrome P450 (CYP716C67) that mediates 2α oxidation of the oleanane- and ursane-type triterpene scaffolds to produce maslinic and corosolic acids, respectively. To confirm the enzymatic functions of the entire pathway, we have reconstituted the olive biosynthetic pathway for oleanane- and ursane-type triterpenoids in the heterologous host, Nicotiana benthamiana. Finally, we have identified genetic markers associated with oleanolic and maslinic acid fruit content on the chromosomes carrying the OeBAS and CYP716C67 genes. Our results shed light on the biosynthesis of olive triterpenoids and provide new gene targets for germplasm screening and breeding for high triterpenoid content.
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