Variations of phenolic compounds, fatty acids and some qualitative characteristics of Sarıulak olive oil as induced by growing area

The extra virgin olive oils of “Sarıulak” olive variety were produced from olives cultivated in three different locations (Antalya, Karaman, Mersin) in the south region of Turkey and were analyzed to select varieties and conditions that produce oil with favorable quality regarding oxidative stabilit...

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Published inFood research international Vol. 54; no. 2; pp. 1897 - 1906
Main Authors Arslan, Derya, Karabekir, Yeşim, Schreiner, Matthias
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.12.2013
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Abstract The extra virgin olive oils of “Sarıulak” olive variety were produced from olives cultivated in three different locations (Antalya, Karaman, Mersin) in the south region of Turkey and were analyzed to select varieties and conditions that produce oil with favorable quality regarding oxidative stability, taste and nutritional properties. Peroxide value, free acidity, chlorophyll and carotene content, color values, and fatty acid compositions were measured and the contents of secoiridoid aglycones and lignans were determined with a qualitative and quantitative analysis performed by GC-MS to characterize the different subclasses. In particular the following sub-classes of phenols were identified and calibrated: simple phenols such as tyrosol and hydroxytyrosol (3,4-DHPEA and p-HPEA), their respective acetates (3,4-DHPEA-AC and p-HPEA-AC), secoiridoid derivatives such as the dialdehydic form of elenolic acid linked to 3,4-DHPEA or p-HPEA (3,4-DHPEA-EDA, p-HPEA-EDA, where EDA is elenolic acid dialdehyde) and isomers of oleuropein and ligstroside aglycones (3,4-DHPEA-EA and p-HPEA-EA, where EA is elenolic acid aldehyde), lignans such as (+)-1-acetoxypinoresinol, and (+)-1-pinoresinol and hydroxy-pinoresinol. Significant differences were observed in most of the parameters between the olive oils produced from different locations. •Phenolic content of olive oil is more related to the rainfall than altitude.•H-tyrosol, pinoresinol, apigenin, 3,4-DHPEA-EDA show positive correlation with TEAC.•Olive oils with higher amounts of total secoiridoids show high antioxidant activity.
AbstractList The extra virgin olive oils of “Sarıulak” olive variety were produced from olives cultivated in three different locations (Antalya, Karaman, Mersin) in the south region of Turkey and were analyzed to select varieties and conditions that produce oil with favorable quality regarding oxidative stability, taste and nutritional properties. Peroxide value, free acidity, chlorophyll and carotene content, color values, and fatty acid compositions were measured and the contents of secoiridoid aglycones and lignans were determined with a qualitative and quantitative analysis performed by GC-MS to characterize the different subclasses. In particular the following sub-classes of phenols were identified and calibrated: simple phenols such as tyrosol and hydroxytyrosol (3,4-DHPEA and p-HPEA), their respective acetates (3,4-DHPEA-AC and p-HPEA-AC), secoiridoid derivatives such as the dialdehydic form of elenolic acid linked to 3,4-DHPEA or p-HPEA (3,4-DHPEA-EDA, p-HPEA-EDA, where EDA is elenolic acid dialdehyde) and isomers of oleuropein and ligstroside aglycones (3,4-DHPEA-EA and p-HPEA-EA, where EA is elenolic acid aldehyde), lignans such as (+)-1-acetoxypinoresinol, and (+)-1-pinoresinol and hydroxy-pinoresinol. Significant differences were observed in most of the parameters between the olive oils produced from different locations. •Phenolic content of olive oil is more related to the rainfall than altitude.•H-tyrosol, pinoresinol, apigenin, 3,4-DHPEA-EDA show positive correlation with TEAC.•Olive oils with higher amounts of total secoiridoids show high antioxidant activity.
The extra virgin olive oils of "Sariulak" olive variety were produced from olives cultivated in three different locations (Antalya, Karaman, Mersin) in the south region of Turkey and were analyzed to select varieties and conditions that produce oil with favorable quality regarding oxidative stability, taste and nutritional properties. Peroxide value, free acidity, chlorophyll and carotene content, color values, and fatty acid compositions were measured and the contents of secoiridoid aglycones and lignans were determined with a qualitative and quantitative analysis performed by GC-MS to characterize the different subclasses. In particular the following sub-classes of phenols were identified and calibrated: simple phenols such as tyrosol and hydroxytyrosol (3,4-DHPEA and p-HPEA), their respective acetates (3,4-DHPEA-AC and p-HPEA-AC), secoiridoid derivatives such as the dialdehydic form of elenolic acid linked to 3,4-DHPEA or p-HPEA (3,4-DHPEA-EDA, p-HPEA-EDA, where EDA is elenolic acid dialdehyde) and isomers of oleuropein and ligstroside aglycones (3,4-DHPEA-EA and p-HPEA-EA, where EA is elenolic acid aldehyde), lignans such as (+)-1-acetoxypinoresinol, and (+)-1-pinoresinol and hydroxy-pinoresinol. Significant differences were observed in most of the parameters between the olive oils produced from different locations.
The extra virgin olive oils of “Sarıulak” olive variety were produced from olives cultivated in three different locations (Antalya, Karaman, Mersin) in the south region of Turkey and were analyzed to select varieties and conditions that produce oil with favorable quality regarding oxidative stability, taste and nutritional properties. Peroxide value, free acidity, chlorophyll and carotene content, color values, and fatty acid compositions were measured and the contents of secoiridoid aglycones and lignans were determined with a qualitative and quantitative analysis performed by GC-MS to characterize the different subclasses. In particular the following sub-classes of phenols were identified and calibrated: simple phenols such as tyrosol and hydroxytyrosol (3,4-DHPEA and p-HPEA), their respective acetates (3,4-DHPEA-AC and p-HPEA-AC), secoiridoid derivatives such as the dialdehydic form of elenolic acid linked to 3,4-DHPEA or p-HPEA (3,4-DHPEA-EDA, p-HPEA-EDA, where EDA is elenolic acid dialdehyde) and isomers of oleuropein and ligstroside aglycones (3,4-DHPEA-EA and p-HPEA-EA, where EA is elenolic acid aldehyde), lignans such as (+)-1-acetoxypinoresinol, and (+)-1-pinoresinol and hydroxy-pinoresinol. Significant differences were observed in most of the parameters between the olive oils produced from different locations.
Author Schreiner, Matthias
Arslan, Derya
Karabekir, Yeşim
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Keywords Individual phenolic compounds
Virgin olive oil
Variety
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Snippet The extra virgin olive oils of “Sarıulak” olive variety were produced from olives cultivated in three different locations (Antalya, Karaman, Mersin) in the...
The extra virgin olive oils of "Sariulak" olive variety were produced from olives cultivated in three different locations (Antalya, Karaman, Mersin) in the...
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SubjectTerms Acetates
acidity
Aldehydes
carotenes
chlorophyll
Chlorophylls
color
extra-virgin olive oil
Fatty acids
gas chromatography
Growing area
Individual phenolic compounds
isomers
Lignans
mass spectrometry
nutritive value
oleuropein
Olive oil
Olives
oxidative stability
peroxide value
Phenols
quantitative analysis
taste
Variety
Virgin olive oil
Title Variations of phenolic compounds, fatty acids and some qualitative characteristics of Sarıulak olive oil as induced by growing area
URI https://dx.doi.org/10.1016/j.foodres.2013.06.016
https://search.proquest.com/docview/1531029271
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