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Physicochemical and quality characteristics of the Korean and American blueberries

국내산과 미국산 블루베리의 이화학적 품질특성

  • Received : 2013.08.01
  • Accepted : 2013.08.12
  • Published : 2013.08.30

Abstract

We investigated the quality characteristics of the Korean and American blueberry. There was a similarity between the general composition and sugar content of the Korean and American values. The pH values showed a low of 3.46 in American blueberries to a high of 4.49 in Korean blueberries. The L (lightness), a (redness), and b (yellowness) value scores of the American blueberry were higher than the Korean blueberry. The levels of total phenol content and DPPH radical scavenging abilities were 205 mg%, 93.48% in the Korean blueberry and 182 mg%, 84.32% in the American blueberry, respectively. The free sugar levels showed fructose 2,514 mg%, glucose 2,315 mg%, and sucrose 69 mg% in the Korean blueberry, while the free sugar levels of the American blueberry showed fructose 2,106 mg%, glucose 1,825 mg%. The contents of organic acid were lactic acid and tartaric acid in the Korean blueberry, while the organic acid in the American blueberry contained tartaric acid, succinic acid, oxalic acid, and lactic acid. The Korean blueberry has 12 kinds of free amino acids, while the American blueberry has 9 kinds of free amino acids. Furthermore, the Korean blueberry contains 390 mg% of total amino acids, which was higher than 32% in the American blueberry with 295 mg% of total amino acids. The fatty acid contents of the American blueberry (2,897 mg%) was higher than that of the Korean blueberry (2,783 mg%) as well as in the oleic acid, linoleic acid, and palmitic acid. The mineral contents of all the samples were P>K>Ca>Mg, respectively. Given the above results, the Korean blueberry bioactive chemicals or properties were thought to be somewhat higher than the American blueberry.

국내산 블루베리와 미국산 블루베리의 이화학적 품질특성을 조사하였다. 일반성분과 당도를 분석한 결과 미국산과 국내산 값이 비슷하게 나타났다. pH는 국내산 4.49, 미국산 3.46으로 낮게 나타내었으며 색도는 L, a, b 값 모두 미국산이 국내산 보다 높게 나타났다. 총페놀성 화합물 함량은 국내산이 205.29 mg%, 미국산이 182.87 mg%로 나타났고, DPPH radical 소거 활성능은 국내산이 93.48%, 미국산이 84.32%를 나타내었다. 유리당 함량은 국내산은 fructose 2,514.10 mg%, glucose 2,315.81 mg%, sucrose 69.01 mg%가 함유되어 있었고, 미국산은 fructose 2,106.06 mg%와 glucose 1,825.20 mg%만이 함유되어 있었다. 유기산 함량에서 국내산은 lactic acid 3.65 mg%와 tartaric acid 0.30 mg%가 함유되어 있었고, 미국산은 tartaric acid 2.51 mg%, succinic acid 2.47 mg%, malic acid 1.34 mg%, oxalic acid 0.24 mg%, lactic acid 0.16 mg%가 함유되어 있었다. 유리아미노산 40종 중 국내산 12종, 미국산 9종의 유리아미노산을 함유하고 있었고, 총함량은 국내산 3,90.74 mg/100g, 미국산 295.61 mg/100g 으로 미국산에 비해 국내산이 32% 더 많이 함유한 것으로 나타났다. 지방산 함량은 미국산은 2,897.08 mg%로 국내산 2,783.51 mg%보다 조금 높았으며 oleic acid>linoleic aicd>palmitic acid 순을 나타났다. 무기질 P, K, Ca 함량에서 국내산은 각각 728.903 mg%, 460.281 mg%, 157.527 mg%, 미국산은 6,948.421 mg%, 491.750 mg%, 189.152 mg%로 나타났으며, P>K>Ca>Mg순으로 함유되어 있었다. 이상의 결과로 볼 때 국내산 블루베리가 유효 화학성분이나 생리활성적 특성이 미국산보다 다소 높은 것으로 생각된다.

Keywords

References

  1. Westwood MN (1993) Temperate-zone pomology. Timber Press, Portland, OR, USA, p 100-101
  2. RDA (2008) Standard Farming Handbook-164 Blueberry. Rural development administration Suwon, Korea, p 28
  3. Jeong HR, Jo YN, Jeong JH, Kim HJ, Heo HJ (2012) Nutritional composition and in vitro antioxidant activities of blueberry (Vaccinium asheii) leaf. Korean J Food Presserv, 19, 604-610 https://doi.org/10.11002/kjfp.2012.19.4.604
  4. Ji JR, Yoo SS (2010) Quality characteristics of cookies with varied concentrations of blueberry powder. J East Asian Soc Dietary Life, 20, 433-438
  5. Su, MS, Chien PJ (2007) Antioxidant activity, anthocyanins and phenolics of rabbityee blueberry (Vaccinium ashei) fluid products as arrected by fermentation. Food Chem, 104, 182-187 https://doi.org/10.1016/j.foodchem.2006.11.021
  6. Martineau LC, Couture A, Spoor D, Benhaddou AA, Harris C, Meddah B, Leduc C, Burt A, Vuong T, Le PM, Prentki M, Bennett SA, Arnason JT, Haddadd PS (2006) Anti-dia-betic properties of the Canadian loubush blueberry Vaccinium angustifolium Ait. Phytomedicine, 13, 612-123 https://doi.org/10.1016/j.phymed.2006.08.005
  7. Parry J, Su L, Moore J, Cheng Z, Luther M, Rao JN, Wang JY, Yu LL (2006) Chemical compositions antioxidant capacities and antiproliferative activitives of selected fruit seed flours. J Agric Food Chem, 54, 3773-3778 https://doi.org/10.1021/jf060325k
  8. Jeollabuk-do Agricultural Research & Extention Services (2009) Functional characteristics of fruit varieties of blueberries, breeding and cultivation technology research. Rural development administration, Suwon, Korea, p 5-6
  9. Naczk M, Shahidi F (2006) Phenolics in cereals, fruits and vegetables: Occurrence, extraction and analysis. J Pharm Biomed Anal, 41, 1523-1542 https://doi.org/10.1016/j.jpba.2006.04.002
  10. Bagchi D, Sen CK, Bagchi M, Atalay M (2004) Anti-angio-genic, antioxidant, and anti-carcinogenic properties of a novel anthocyanin-rich berry extract formula. Biochem, 69, 75-80
  11. O JY, Kang NL, Kang SW, Song HY, Kim HA, Hwang EY, Jeon YJ (2010) Antioxidant activity of extracts from Blueberry. Proceedings of the KAIS fall conference the Korea Academia-Industrial Cooperation Society. 744-747
  12. Jeon MH, Lee WJ (2011) Characteristics of blueberry added makgeolli. J Korean Soc Food Sci Nutr, 40, 444-449 https://doi.org/10.3746/jkfn.2011.40.3.444
  13. Jeong CH, Choi SG, Heo HJ (2008) Analysis of nutritional composition and antioxidative activities of Korean commercial blueberry and raspberry. J Korean Soc Food Sci Nutr, 37, 1375-1381 https://doi.org/10.3746/jkfn.2008.37.11.1375
  14. Hwang SH, Ko SH (2010) Quality characteristics of muffins contatining domestic blueberry (V. corymbosum). J East Asian Soc Dietary Life, 20, 727-734
  15. AOAC (1990) Official methods of analysis. 15th ed., Association of official analytical chemists. Washington, D.C, USA.
  16. Gutfinger T (1958) Polyphenols in olive oils. J Am Oil Chem Soc, 58, 966-968
  17. Blios, MS (1958) Antioxidant determinations by the use of a stable free radical. Nature, 181, 1199-1200 https://doi.org/10.1038/1811199a0
  18. Wilson AM, Work TM (1981) HPLC determination of fructose, glucose and sucrose in potatoes. J Food Sci, 46, 300-301 https://doi.org/10.1111/j.1365-2621.1981.tb14589.x
  19. Oh SL, Kim SS, Min BY, Chung DH (1990) Composition of free sugars, free amino acids, non-volatile organic acids and tannins in the extracts of L. chinensis M., A. acutiloba K., S. chinensis B. and A. sessiliflorum S. Korean J Food Sci Technol, 22, 76-81
  20. Metcalf LD, Schmits AA, Pelka JR (1966) Rapid preparation of fatty acid esters form lipids for gas chromatographic analysis. Anal Chem, 38, 514-515 https://doi.org/10.1021/ac60235a044
  21. Suh CS, Lee MJ, Kim SK (1992) Effect do dry-heat treatment on properties of corn starch. J Korean Agric Chem Soc, 35, 389-394
  22. Roosi M, Giussani E, Morelli R, Scalzo RL, Nani RC, Torreggiani D (2003) Effect of fruit blanching on phenolics and radical scavenging activity of highbush blueberry juice. Food Res Int, 36, 999-1005 https://doi.org/10.1016/j.foodres.2003.07.002
  23. Giacosa A, Filiberti R (1996) Free radicals, oxidative damage and degenerative degenerative desease. Eur J Prev, 5, 307-312 https://doi.org/10.1097/00008469-199610000-00001
  24. Lee SK, Yu MH, Lee SP, Lee IS (2008) Antioxidant activities and induction of apoptosis by methanol extracts from avocado. J Korean Soc Food Sci Nutr, 37, 269-225 https://doi.org/10.3746/jkfn.2008.37.3.269
  25. Park HM, Yang SJ, Kang EJ, Lee DH, Kim DI, Hong JH (2012) Quality characteristics and granule manufacture of mulberry and blueberry fruit extracts. Korean J Food Cookery Sci, 28, 375-382 https://doi.org/10.9724/kfcs.2012.28.4.375
  26. Su MS, Silva JL (2006) Antioxidant activity, anthocyanins, and phenolics of rabbiteye blueberry (Vaccinium ashei) by-products as affected by fermentation. Food Chem, 97, 447-451 https://doi.org/10.1016/j.foodchem.2005.05.023
  27. Cha HS, Lee MK, Hwang JB, Park MS, Park KM (2001) Physicochemical characteristics of Rubus coreanus Miquel. J Korean Soc Food Sci Nutr, 30, 1021-1025
  28. Oh HH, Hwang KT, Kim M, Lee HW, Kim SZ (2008) Chemical characteristics of raspberry and blackberry fruits produced in Korea. J Korean Soc Food Sci Nutr, 37, 738-743 https://doi.org/10.3746/jkfn.2008.37.6.738
  29. Jeong CH, Jang CW, Lee KY, Kim IH, Shim KH (2012) Chemical components and anti-oxidant activities of black currant. Korean J Food Preserv, 19, 263-270 https://doi.org/10.11002/kjfp.2012.19.2.263

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