4.7 Article

Characterization of monovarietal virgin olive oils by phenols profiling

Journal

TALANTA
Volume 132, Issue -, Pages 424-432

Publisher

ELSEVIER
DOI: 10.1016/j.talanta.2014.09.039

Keywords

Monovarietal virgin olive oil; Phenolic compounds; LC-MS/MS; Secoiridoids; Data dependent methods; Precursor ion scanning; Neutral loss scanning

Funding

  1. Spanish Ministerio de Economia y Competitividad (MINECO) [CTQ2012-37428]
  2. FEDER program
  3. Ministerio de Ciencia e Innovacion (MICINN) [RYC-2009-03921]

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The phenolic profiles of seven monovarietal virgin olive oils (VOOs) - viz. Arbequina, Arbosana, Cornicabra, FS-17, Hojiblanca, Picual and Sikitita - were characterized by using a quantitative strategy based on LC-MS/MS and the selected reaction monitoring (SRM) mode. Data dependent methods, based on precursor ion scanning, product ion scanning and neutral loss scanning, were developed for confirmatory analysis of secoiridoid derivatives. The observed phenolic profiles were used to find correlation between pairs of phenols and similarity trends among the monovarietal VOOs. A Pearson analysis revealed several correlations among phenols with p-value <0.01 and correlation coefficient (R) > 0.75 in the seven monovarietal VOOs. Cluster analysis showed two main clusters between VOOs, formed by Arbequina/Hojiblanca/Cornicabra/Picual and Sikitita/Arbosana/FS-17. High correlations (R> 0.7) were observed for the following pairs of VOOs: Arbequina/Hojiblanca (R=0.77), essentially supported on levels of hydroxytyrosol acetate (3,4-DHPEA-AC) and dialdehydic forms of secoiridoids; Cornicabra/FS-17 (R=0.81) and Picual/FS-17 (R=0.79), by correlation of flavonoids and secoiridoid derivatives in general. The highest correlation was observed for the pair Picual/Cornicabra (R=0.99). This preliminary study allowed setting similarities and dissimilarities between monovarietal VOOs by analysis of the phenolic profile. The observed connections between phenols for different varieties have been tentatively interpreted according to the main pathways for phenols biosynthesis. (C) 2014 Elsevier B.V. All rights reserved.

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