Antioxidant capacity and phytochemical properties of raspberry species in Iran

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Research Paper 01/06/2013
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Antioxidant capacity and phytochemical properties of raspberry species in Iran

Aezam Rezaee Kivi, Ramazan-Ali Khavari-Nejad, Gholamreza Dehgan, Farzaneh Najafi, Jafar Hajilo
Int. J. Biosci.3( 6), 145-152, June 2013.
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Abstract

Raspberry (Rubus sp) is a naturally growing in North of Iran. Antioxidant capacity, total anthocyanins, total phenols, ascorbic acid and total flavonoids of a number of selected raspberry species were investigated. The total phenolic contents of raspberry species were in the range of 414-683.25 mg Gallic acid per 100 g Fruit Weight. R. hyrcanus had the highest total antioxidant capacity (67.75) and total flavonoid (295.5 mg Quercetin per 100 g FW). The highest total anthocyanin was observed in R. hyrcanus (45.36 mg cyaniding-3-glucoside equivalents/100g FW). The range of ascorbic acid content of species was 15.63 -22.44 mg per 100 g FW. There are linear relationships between the antioxidant capacities with total phenols, total flavonoid and ascorbic acid. The present study demonstrates the potential of certain raspberry species, notably R. hyrcanus, for improvement of nutritional value through germplasm enhancement programs.

VIEWS 17

Agata MP, Fabian C, Alessandra B.2010. Quali-quantitative analysis of flavonoids of Cornus mas L. (Cornaceae) fruits. Food Chemistry  119 (3), 1257-1261. http://dx.doi.org/10.1016/j.foodchem.2009.07.063

Beekwilder J, Hall RD, Devose C H. 2005. Identification and dietary relevance of antioxidants from raspberry. BioFactors 23 (4), 197-205. http://dx.doi.org/10.1002/biof.5520230404

Benvenuti S, Pellati F, Melegari M, Bertelli D. 2004. Polyphenols, anthocyanins, ascorbic acud and radical scavenging activity of Rubus, Ribes, and Aronia. Food Science 69 (3), 164-169. http://dx.doi.org/10.1111/j.1365-2621.2004.tb13352

Benzie IF, Strain JJ. 1999. Ferric reducing/antioxidant power assay. Direct measure of total antioxidant activity of biological fluids and modified version for simultaneous measurement of total antioxidant power and ascorbic acid concentration. Methods Enzymol 299,15-27.

Cantos, Espin JC, Tomas-Barberan FA. 2002. Varietal differences among the polyphenol profiles of seven table grape cultivars studied by LC-DAD-MSMS. Journal of Agriculture Food Chemistry 50 (20), 5691-5696. http://dx.doi.org/10:1021/jfo204102

Cavallos-Casals BA, Byrne D, Okie WR, Cisneros-Zevallos L. 2006. Selecting new peach and plum genotypes rich in phenolic compounds and enhanced functional properties. Food Chemistry 96 (2), 273-280. http://dx.doi.org/10.1016/j.foodchem.2005.02.032

Chiou A, Karathanose VT, Mylona A, Salta FN, Preventi F, Andriopoulos NK. 2007. Currants (Vitis vinifera L.) content of simple phenolics and antioxidant activity. Food Chemistry 102 (2), 516-522. http://dx.doi.org/10.1016/j.foodchem.2006.06.009

Cordenunsi BR, Nascimento J RO, Lajolo FM. 2003. Physico-chemical changes related to quality of five strawberry fruit cultivars during cool storage. Food Chemistry 83 (2), 167-173. http://dx.doi.org/10.1016/so308-8146(03)00059-1

Ercisli S, Orhan E, Ozdemir O, Sengul M . 2007. The genotypic effects on the chemical composition and antioxidant activity of sea buckthorn (Hippophae rhamnoides L.) berries grown in Turkey. Scientia Horticulturae 115 (1), 27-33. http://dx.doi.org/10.1016/j.scienta.2007.07.004

Erica K, Helmut D, Evelin S, Sabine R, Petra K. 2011. Cultivar, storage conditions and ripening effects on physical and chemical qualities of red raspberry fruit. Postharvest Biology and Technology 60 (1), 31-37. http://dx.doi.org/10.1016/j.postharbio.2010.12.001

Hulya-Orak H. 2007. Total antioxidant activities, phenolics, anthocyanins and polyphenoloxidase activities of selected red grape cultivars and their correlation. Scientia Horticulturae 111 (3), 235-241. http://dx.doi.org/10.1016/j.scienta.2006.10.019

Kadir UY, Sezai E, Yasar Z, Memmmune S, Ebru  YK.  2009.  Preliminary  characterization  of cornelian cherry (Conus mas L.) genotypes for their physic-chemical properties. Food Chemistry 114 (2), 408-412. http://dx.doi.org/10.1016/j.foodchem.2008.09.055

Liaqat A, Birgitta S, BeatrixW, Alsanius M. 2011. Late season harvest and storage of Rubus berries-Major antioxidant and sugar levels. Scientia Horticulturae 129 (3), 376-381. http://dx.doi.org/10.1016/j.scienta.2011.03.047

Mullen W, Stewart A J, Lean ME J, Gardner P, Duthie G G, Crozier A. 2002. Effect of freezing and storage on the on the phenolics, ellagitanins, flavonoids, and antioxidant capacity of red raspberries. Journal of Agriculture and Food Chemistry 50 (18), 5197-5201. http://dx.doi.org/10.1021/jfo20141f

Ovaskainen M L, Torronen R, Koponen JM, Sinkko H, Hellstrom J, Reinivuo H. 2008. Dietary intake and major food sources of polyphenols in Finnish adults. Journal of Nutrition 138 (3), 562-566.

Pantelidisa GE, Vasilakisa M, Manganaris GA, Diamantaidisa G. 2007. Antioxidant capacity, Phenol, anthocyanin and ascorbic acid contents in raspberries, black berries, red currants, goose berries and cornelian cherries. Food Chemistry 102 (3), 777-783. http://dx.doi.org/10.1016/j.foodchem.2006.06.021

Paredes-Lopez O, Cervantes-Ceja ML, Vigna-Perez M, & Hernandez-Perez T. 2010. Berries: Improving human health and healthy aging, and promoting quality life-A review. Plant Foods for Human Nutrition 65 (3), 299-308. http://dx.doi.org/10.1007/s11130-010-0177-1

Ramune B, Pranas V, Petras RV. 2011. Variation of  total  phenolics,  anthocyanins,  ellagic  acid  and radical scavenging capacity in various raspberry (Rubus spp.) cultivars. Food Chemistry 137(11), 456-462. http://dx.doi.org/10.1016/j.foodchem.2011.11.137

Sara T, Burno M, Franco C, Stefano B, Jules B, Chris D, Ezra C, Arnauda B, MaurizioB. 2008. Antioxidant phenol compounds, and nutritional quality of different strawberry genotypes. Journal of Agriculture and Food Chemistry 56 (3), 696-704. http://dx.doi.org/10.1021/jfo719959

Scalzo J, Politi A, Pellegrini N, Mezzetti B, Battino M. 2005. Plant genotype affects total antioxidant  capacity  and  phenol  contents  in  fruit. Nutrition 21 (2), 207-213. http://dx.doi.org/10.1016/j.nut.2004.03.025

Shiow Y, Wang Chi-Tsun, C ChienY, Wang. 2009. The influence of light and maturity on fruit quality and flavonoid content of red raspberries. Food Chemistry 112 (3), 676-684. http://dx.doi.org/10.1016/j.foodchem.2003.06.032

Slinkard K, Singleton VL. 1977. Total phenol analyses: automation and comparison with manual methods. American Journal of Enology and Viticulture 28 (1), 49-55.

Terada M, WatanabeY, Kunitoma M, Hayashi E. 1978. Differential rapid analysis of ascorbic acid and ascorbic acid 2-sulfate by dinitrophenilhydrazine method. Annals of Clinical Biochemistry 84 (2), 604-608.

Yanping Z, Yannua A, Dongzhi W. 2004. Antioxidant activity of a flavonoid rich extract of Hypericum perforatum L. in vitro. Journal of Agriculture and Food Chemistry 52 (16), 5032-5039. http://dx.doi.org/10.1021/jfo49571r