CHEMICAL COMPOSITION OF THE FIXED AND ESSENTIAL OILS OF NIGELLA SATIVA L. FROM TURKEY
Abstract
Nigella sativa L. is an annual herbaceous plant which has medicinal and culinary uses. The seeds and extracts have antioxidant and antimicrobial effects. Besides, the seed oil is rich in unsaturated fatty acids. This research was conducted to determine the essential and fixed oil components of ten Nigella sativa populations in Eskisehir ecological conditions. Besides, yield component were also studied. Ten population were used in the research. The experimental design was randomized block design with three replications.
Statistically significant differences were found between populations in terms of seed yield and yield components. The highest seed yield was obtained from Kozluca Town, Burdur population (1885 kg/ha), the highest fixed oil yield was obtained from Kure, Sogut, Bilecik population (410.8 kg/ha).
Main essential oil components were 67.7 % thymoquinone, 8.4 % carvacrol,
4.8 % junipene, % 2.3 p-cymen, 1.9 % 4-Terpineol, 0.6 % longipinene, 0.5
% bornylacetate. The main unsaturated fatty acid was linoleic acid (39.20-43.74
%) followed by oleic acid (33.41-37.75 %).The total MUFAs, PUFAs, and SAFAs
compositions were between 36.31-38.55%, 39.27-44.17% and 19.51- 22.23%,
respectively. There were variations between populations in terms of seed yield
and yield components, essential and fixed oil composition. This differences
would be helpful for selecting genotypes in order to obtain new varieties with
high seed and fixed oil yields. In addition, high
amount of thymoquinone content in the essential oil was found for the Kure, Sogut, Bilecik
population.
Keywords
References
- Reference1 Abu-Al-Basalc, M.A., 2009. In vitro and in vivo anti-microbial effects of Nigella sativa Linn. seed extracts against clinical isolates from skin wound infections. American Journal of Applied Sciences, 6(8): 1440-1447.
- Reference2 Ahmed, N.U. and Haque K.R., 1986. Effect of row spacing and time sowing on the yield of black cumin (Nigella sativa L.). Bangladesh J. Agric. Hortic., 11: 21-24.
- Reference3 Al-Neqeeb, G., Ismail, M. and Al-Zubairi, A., 2009. ‘Fatty acid profile, alphatocopherol content and total antioxidant activity of oil extracted from Nigella sativa seeds’. International Journal of Pharmacology, 5 (4):244-250.
- Reference4 Ashraf, M., Ali, Q. and Rha, E.S., 2005. The effect of applied nitrogen on the growth and nutrient concentration of Kalonji (Nigella sativa). Australian Journal of Experimental Agriculture, 45: 459-463.
- Reference5 Atta, M.B., 2003. Some characteristics of nigella (Nigella sativa L.) seed cultivated in Egypt and its lipid profile. Food Chem.,83: 63–68.
- Reference6 Bannayan, M., Nadjafi, F., Azizi M., Tabrizi, L. and Rastgoo, M., 2008. Yield and seed quality of Plantago ovata and Nigella sativa under different irrigation treatments. Industrial crops and products, 2 (7):11–16.
- Reference7 Baytop, T., 1984. Treatment with plants in Turkey (past and present). Istanbul University publications, No: 3255. Sanal Matbaacilik, İstanbul.
- Reference8 Burits, M. and Bucar, F., 2000. Antioxidant activity of Nigella sativa essential oil. Institute of Pharmacognosy, Karl-Franzens University of Graz, Austria Phytotherapy Research, 14: 323-328.
Details
Primary Language
English
Subjects
-
Journal Section
Research Article
Publication Date
July 28, 2018
Submission Date
May 26, 2018
Acceptance Date
July 8, 2018
Published in Issue
Year 2018 Volume: 1 Number: 1







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