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Influence of Eriophyid mites (Aculus olearius Castagnoli and Aceria oleae (Nalepa) (Acarina: Eriophyidae)) on some physical and chemical characteristics of Ayvalık variety olive fruit

Authors :
Hüseyin Çetin
Mehmet Musa Özcan
Derya Arslan
Source :
Journal of the Science of Food and Agriculture. 91:498-504
Publication Year :
2010
Publisher :
Wiley, 2010.

Abstract

BACKGROUND:Aculus olearius Castagnoli is a recently recorded species that damages olive fruits in the Mediterranean basin of Turkey. Thus, the effects of Eriophyid mites (Aculus olearius Castagnoli and Aceria oleae (Nalepa) (Acarina: Eriophyidae) on the olive fruits from Ayvalik variety in southern Turkey were studied for the first time in terms of some physical parameters and chemical constituents including some individual phenolics. RESULTS: The Eriophyid damaged fruits had higher L* values (lighter colour) and tyrosol level (37.53 mg kg−1) than the undamaged fruits (28.51 mg kg−1) in August. In contrast, Eriophyid damaged fruits were darker in colour and had lower levels (25.77 mg kg−1) of tyrosol than those of undamaged fruits (79.14 mg kg−1) in October. Eriophyid damaged samples had higher values of vanillic acid than the undamaged samples. An increase in the average concentrations of hydroxytyrosol and p-coumaric acid was observed in the fruits harvested in August, whilst the oleuropein content decreased. CONCLUSION: The harvest in October can be recommended regarding the higher dimensional values, total oil, dry matter and oleuropein contents. But the interaction between harvest time and Eriophyid damage was found effective in terms of tyrosol content and skin colour; as tyrosol values were lower in the fruits harvested in October and the fruits were darker. The resistance of undamaged fruits against Eriophyid damage can be linked to high tyrosol content of these fruits. Copyright © 2010 Society of Chemical Industry

Details

ISSN :
00225142
Volume :
91
Database :
OpenAIRE
Journal :
Journal of the Science of Food and Agriculture
Accession number :
edsair.doi...........7b1947940d3520c8a793ee18f4b71208