Abstract
AbstractTwo hundred and twenty-three olive samples of different olive cultivars (Koroneiki, Asprolia, Lianolia, Ntopia, Thiaki, Mavrolia, and Others) grown in the Ionian islands (Kefalonia, Kerkyra, Leukada, and Zakynthos) were subjected to headspace solid phase microextraction coupled to gas chromatography/mass spectrometry analysis. The aim of the study was to characterize the aroma pattern of these olive oil cultivars, and track whether specific volatile compounds could be used for olive oil cultivar authentication using chemometrics. Multivariate analysis of variance implemented on the semi-quantitative data of volatile compounds (alcohols, aldehydes, benzene derivatives, esters, hydrocarbons, ketones, and terpenoids), showed that olive cultivar had a significant impact on the volatile composition of olive oil samples. Factor analysis and linear discriminant analysis indicated those specific volatile compounds that could be related to olive oil cultivar and established statistical models for the olive oil cultivar authentication from Ionian islands, thus indicating a characteristic aroma fingerprint of these olive oils.
Publisher
Springer Science and Business Media LLC
Reference31 articles.
1. United States Department of Agriculture (USDA) (2020) National Agricultural Statistics Service Pacific Regional Office, P.O. Box 1258 Sacramento, CA 95812.
2. D. Rongai, N. Sabatini, L. Del Coco, E. Perri, P. Del Re, N. Simone, D. Marchegiani, F.P. Fanizzi, 1H NMR and multivariate analysis for geographic characterization of commercial extra virgin olive oil: a possible correlation with climate data. Foods 6(11), 96 (2017). https://doi.org/10.3390/foods6110096
3. N. Caporaso, Virgin olive oils: environmental conditions, agronomical factors and processing technology affecting the chemistry of flavor profile. J. Food Chem. Nanotechnol. 2(1), 21–31 (2016). https://doi.org/10.17756/jfcn.2016-007
4. C.M. Kalua, R.J. Mailer, J. Ayton, M.S. Allen, D.R. Bedgood, A.G. Bishop, P.D. Prenzler, Discrimination of olive oils and fruits into cultivars and maturity stages based on phenolic and volatile compounds. J. Agric. Food Chem. 54(21), 8390 (2006). https://doi.org/10.1021/jf068011k
5. European Commission 182/2009 of 6 March 2009 amending Regulation (EC) no. 1019/2002 on marketing standards for olive oil. Off. J. Eur. Union. 2009, L63, 6–8.