Nutritional value of salad Crimean onion
https://doi.org/10.18619/2072-9146-2020-1-74-79
Abstract
Relevance. Allium cepa L. is considered to be one of the most important agricultural crops in most countries of the world. High nutritional value is especially pronounced in salad onion which vegetation needs high temperature and significant insulation.
Material and methods. The first biochemical characteristics are given for 9 Crimean salad onion genotypes and varieties (red onions Festivalny, Yaltinsky plus, Yaltinsky foros, Yaltinsky rybin, Yaltinsky 6А, Yaltinsky 7А, Yaltinsky 8А and yellow cultivars Kendy and Bean promine) with the comparison with the appropriate data for popular Italian sweet onion cultivar Tropea and semi-pungent varieties grown in Moscow region, Italy and Stavropol region (Zolotnichok, Cherny prince).
Results. Warm climate is shown to increase the amount of antioxidants, monosaccharides and organic acids in onion bulbs. Compared to the Italian Tropea variety Crimean genotypes were characterized by higher levels of ascorbic acid (12.8±1.4 mg/100 g fresh weight) and organic acids (1.58±0.03 mg malic acid per g of dry weight), relatively similar levels of polyphenols (21.0±2.3 mg-eq Gallic acid per g of dry weight), and quercetine. (3.09±0.42 mg-eq Gallic acid per g of dry weight) and antocyanines (2.78±1.03 mg/g fresh weight). New genotypes Yaltinsky 6A, Yaltinsky 7A, Yaltinsky 8A were shown to accumulate higher levels of antioxidants. A direct correlation between the peel/inner layers ratio of antioxidant activities with the appropriate ratio for polyphenols was demonstrated (r=+0.93). A direct correlation between flavonoids content in peel and inner layers was also revealed (r=+0.83). Polyphenols and flavonoids ratios between peel and inner layers were shown to be higher for the Crimean genotypes compared to semi-pungent Moscow region varieties which indicates the prospects of utilization of the Crimean onion peel in production of functional food products with elevated levels of antioxidants.
About the Authors
N. A. GolubkinaRussian Federation
Nadezhda A. Golubkina – Doc. Sci. (Agriculture), Chief Researcher.
14, Selectsionnaya str., VNIISSOK, Odintsovo district, Moscow region, 143072
V. I. Nemtinov
Russian Federation
Viсtor I. Nemtinov – Doc. Sci. (Agriculture), Chief Researcher.
150, Kievskaya str., Simferopol, Crimea, 295453
Yu. N. Kostanchuk
Russian Federation
Julia N. Kostanchuk – Senior Researcher.
150, Kievskaya str., Simferopol, Crimea, 295453
G. Caruso
Italy
Caruso Gianluca – PhD, prof.
Portici (Naples), 80055
A. F. Agafonov
Russian Federation
Alexander F. Agafonov – Cand. Sci. (Agriculture), Senior Researcher.
14, Selectsionnaya str., VNIISSOK, Odintsovo district, Moscow region, 143072
I. S. Mastyaev
Russian Federation
Ivan S. Mastyaev – graduate student.
14, Selectsionnaya str., VNIISSOK, Odintsovo district, Moscow region, 143072
S. M. Nadezhkin
Russian Federation
Sergey M. Nadezhkin – Doc. Sci. (Biology).
14, Selectsionnaya str., VNIISSOK, Odintsovo district, Moscow region, 143072
References
1. Griffiths, G., Trueman, L., Crowther, T., Thomas, B., Smith, B. Onions - a global benefit to health. Phytother. Res. 2002;(16):603–615. doi: 10.1002/ptr.1222.
2. Golubkina N.A., Kekina H.G., Antoshkina M.S., Nadezhkin S.M., Agafonov A.F. Intervarietal differences in accumulation of biologically active compounds by Allium cepa L. Vestnil Rossiyskoy selskokhozaystvennoy academ. 2016;(2):23-29. (In Russ.)
3. Nemtinov V.I., Kostanchuk Y.N., Golubkina N.А. Salad onion cultivar Yaltinskiy plus is a promising innovative product of the Crimea. Vegetable crops of Russia. 2018;(3):43-46. (In Russ.) https://doi.org/10.18619/2072-9146-2018-3-43-46
4. Geetha M., Ponmozhi P., Saravanakumar M., Suganyadevi P. Extraction of anthocyanin and analyzing its antioxidant properties from different onion (Allium cepa) varieties. Int. J. Res. Pharm. Sci. 2011;2(3):497-506.
5. Kidin V.V., Deryagin I.P., Kobzenko V.I. Workshop of agrochemistry. MoscowKolos, 2008. 230-240 p. (In Russ.)
6. Golubkina N.A., Kekina H.G., Molchanova A.V., Antoshkina M.S., Nadezhkin S.M., Soldatenko A.V. Plants antioxidants and methods of their determination. Moscow, 2018. (Шт Russ.)
7. GOST Р 51434-99 Fruit and vegetable juice. Method of titratable acidity determination.
8. Anthon G.E., Barrett D.M. Modified method for the determination of pyruvic acid with dinitrophenyl hydrazine in the assessment of onion pungency. J.Sci.Food Agric. 2003;(83):1210-1213. DOI: 10.1002/jsfa.1525.
9. Ardizzi M.C. Pozzo, Aschkar G., Pellejero G. Caracterizacion de distintos cultivares de cebolla (Allium cepa L.) segun las sustancias de reserva durante la conservacion en el Valle Inferior de rıo Negro. Proceedings of the Actas del 26th Congreso Argentino de Horticultura, Parana, Argentina, 2003.
10. Caruso G., Conti S., Villari G., Borrelli C., Melchionna G., Minutolo M., Russo G., Amalfitano C. Effects of transplanting time and plant density on yield, quality and antioxidant content of onion (Allium cepa L.) in southern Italy. Sci. Hortic. 2014;(166):111–120.
11. Cheng A., Chen X., Jin Q., Wang W., Shi J., Liu Y. Comparison of phenolic content and anti-oxidant capacity of red and yellow onions. Czech J. Food Sci. 2013;(31):501–508.
12. Nahla M M Hassan, Hala S Sayed, Mokhtar Harb Abd-El-Khalek. The Effect of Using Onion Skin Powder as a Source of Dietary Fiber and Antioxidants on Properties of Dried and Fried Noodles. Current Sci. Int. 2014;3(4):468-475.
13. Gawlik-Dziki U., Świeca M., Dziki D., Baraniak B., Tomiło J., Czyż J. Quality and antioxidant properties of bread enriched with dry onion skin. Food Chem. 2013;138(2-3):1621-1628.
14. Ifesan B.O. Chemical Composition of Onion Peel (Allium cepa) and its Ability to Serve as a Preservative in Cooked Beef. Int.J.Sci Res. Methodology. 2017;7(4):25-34.
15. Park J., Kim J., Kim M.K. Flesh and Onion Peel Enhance Antioxidant Status in Aged Rats. J. Nutr. Sci. Vitaminol. 2007;(S3):21-29.
16. Waldron K. Useful ingredients from onion waste. Food Sci. Technol. 2001;(15):38-41.
17. Lee S.U., Lee J.H., Choi S.H., Lee J.S., Ohnisi-Kameyama M., Kozukue N. Flavonoid content in fresh, home-processed, and light-exposed onions and in dehydrated commercial onion products. J. Agric. Food Chem. 2008;(56):8541–8548. doi: 10.1021/jf801009p.
18. Masella R., Santangelo C., D'Archivio M., Li Volti G., Giovannini C., Galvano F. Protocatechic acid and human disease prevention: biological activities and molecular mechanisms. Curr. Med. Chem. 2011;19(18):2901-2917.
19. Lines T.C., Ono M. FRS 1000, an extract of red onion peel, strongly inhibits phosphodiesterase 5A (PDE 5A). Phytomedicine. 2006;(13):236–239.
20. Abouzid S.F., Elsherbeiny G.M. Increase in flavonoids content in red onion peel by mechanical shredding. J. Med. Plants Res. 2008;2(9):258-260.
21. Shirley B.W. Biosynthesis of flavonoids and effects of stress. Curr. Opin, Plant Biol. 2002;5(3):218-223.
22. Kashino Y., Murota K., Matsuda N., Tomotake M., Hamano T., Mukai R., Terao J. Effect of Processed Onions on the Plasma Concentration of Quercetin in Rats and Humans. J. Food Sci. 2015;80(11):2597-2602. doi: 10.1111/17503841.13079.
23. Price S.F., Breen P.J., Valladao M., Watson B.T. Cluster sun exposure and quercetin in pinot noir grapes and wine. Am. J. Enol. Vitic. 1995;(46):187-194.
Review
For citations:
Golubkina N.A., Nemtinov V.I., Kostanchuk Yu.N., Caruso G., Agafonov A.F., Mastyaev I.S., Nadezhkin S.M. Nutritional value of salad Crimean onion. Vegetable crops of Russia. 2020;(1):74-79. (In Russ.) https://doi.org/10.18619/2072-9146-2020-1-74-79