| Literature DB >> 33124697 |
Carlos E Rodríguez-López1, Benke Hong1, Christian Paetz2, Yoko Nakamura1,2, Konstantinos Koudounas3, Valentina Passeri4, Luciana Baldoni4, Fiammetta Alagna5, Ornella Calderini4, Sarah E O'Connor1.
Abstract
Olive (Olea europaea) is an important crop in Europe, with high cultural, economic and nutritional significance. Olive oil flavor and quality depend on phenolic secoiridoids, but the biosynthetic pathway of these iridoids remains largely uncharacterized. We discovered two bifunctional cytochrome P450 enzymes, catalyzing the rare oxidative C-C bond cleavage of 7-epi-loganin to produce oleoside methyl ester (OeOMES) and secoxyloganin (OeSXS), both through a ketologanin intermediary. Although these enzymes are homologous to the previously reported Catharanthus roseus secologanin synthase (CrSLS), the substrate and product profiles differ. Biochemical assays provided mechanistic insights into the two-step OeOMES and CrSLS reactions. Model-guided mutations of OeOMES changed the product profile in a predictable manner, revealing insights into the molecular basis for this change in product specificity. Our results suggest that, in contrast to published hypotheses, in planta production of secoxy-iridoids is secologanin-independent. Notably, sequence data of cultivated and wild olives point to a relation between domestication and OeOMES expression. Thus, the discovery of this key biosynthetic gene suggests a link between domestication and secondary metabolism, and could potentially be used as a genetic marker to guide next-generation breeding programs.Entities:
Keywords: zzm321990Olea europaeazzm321990; C-C oxidative cleavage; cytochrome P450; iridoid biosynthesis; oleoside methyl ester; oleuropein; olive; phenolic secoiridoids
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Year: 2020 PMID: 33124697 DOI: 10.1111/nph.16975
Source DB: PubMed Journal: New Phytol ISSN: 0028-646X Impact factor: 10.151