Functional Characterization of Four Olive Squalene Synthases with Respect to the Squalene Content of the Virgin Olive Oil

J Agric Food Chem. 2023 Oct 25;71(42):15701-15712. doi: 10.1021/acs.jafc.3c05322. Epub 2023 Oct 10.

Abstract

The release of new olive cultivars with an increased squalene content in their virgin olive oil is considered an important target in olive breeding programs. In this work, the variability of the squalene content in a core collection of 36 olive cultivars was first studied, revealing two olive cultivars, 'Dokkar' and 'Klon-14', with extremely low and high squalene contents in their oils, respectively. Next, four cDNA sequences encoding squalene synthases (SQS) were cloned from olive. Sequence analysis and functional expression in bacteria confirmed that they encode squalene synthases. Transcriptional analysis in distinct olive tissues and cultivars indicated that expression levels of these four SQS genes are spatially and temporally regulated in a cultivar-dependent manner and pointed to OeSQS2 as the gene mainly involved in squalene biosynthesis in olive mesocarp and, therefore, in the olive oil. In addition, the biosynthesis of squalene appears to be transcriptionally regulated in water-stressed olive mesocarp.

Keywords: Olea europaea; SQS; core collection; gene expression; olive fruit; water stress.

MeSH terms

  • Olea* / genetics
  • Olive Oil / analysis
  • Plant Breeding
  • Plant Oils
  • Squalene / analysis

Substances

  • Olive Oil
  • Squalene
  • Plant Oils