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Quality Characteristics of Anchovy Sauce Prepared with Sea Tangle, Ume, Tochukaso and Chitosan during Storage

다시마, 청매실, 동충하초 및 키토산이 첨가된 멸치액젓의 저장 중 품질특성

  • 최근표 (강원전문대학 식품생명과학과) ;
  • 김상무 (강릉대학교 해양생명공학부)
  • Published : 2005.02.01

Abstract

Fish sauce is one of the most popular fermented fish products over the world. But it is usually manufactured with high salt concentration (>25%) and long periods of elaboration. In order to increase the consumption of fish sauce, the functional anchovy sauces with low salt concentrations (14 and 17%) were manufactured by adding sea tangle (Kjellamaniealla crassifolia), ume (Prunus mume Sieb. et Zucc), tochukaso (Paecilomyces japonica), and chitosan. On 50 days of storage, pH of all treatments decreased to 5.1, while the amount of lactic acid increased continuously as storage period increased. The amounts of VBN, amino-N, and TBA were highest on 50 days of storage and then kept constantly or decreased a little thereafter. The numbers of total viable cell, lactic acid bacteria, proteolytic bacteria, and fungi increased very slowly as storage period increased.

소비자의 기호 및 상품성을 높이고 다시마, 청매실, 동충하초, 키토산의 여러 성분과 영양 및 기능성이 향상된 저염 멸치액젓을 개발하고자, 5년간 숙성시킨 멸치액젓(식염 26%)에 끓인 물로 염 농도를 14 및 17%으로 조정한 후 다시마, 청매실, 동충하초, 키토산을 첨가하여 150일 동안 후 숙성하면서 나타나는 제품의 품질특성을 분석하였다. 저장기간 동안에 pH는 서서히 감소하였고, 아미노질소 및 휘발성 염기 질소량은 저장 50일째까지 증가하였다가, 일정한 값을 유지하였으며, TBA 값은 저장 50일째까지 증가하였다가 감소하였다. 생균수를 비롯한 젖산균, 단백질분해균 및 곰팡이균은 후 숙성이 진행됨에 따라 다소 일정한 증가율을 나타내었다. 다시마, 청매실, 동충하초 및 키토산 첨가에 따른 제품 열화현상은 저장 150일째까지는 나타나지 않아서, 저염 멸치액젓으로 상품화의 개발이 가능함을 확인하였다. 하지만 숙성 150일부터는 관능적으로 다소 감소함을 볼 수 있어서 유통기한에 대한 실험과 제조된 저염 멸치액젓에 대한 기능성 검증에 대한 실험이 추가적으로 필요하다고 본다.

Keywords

References

  1. Kim SK, Ahn CB, Kang OJ. 1993. Preparation of imitation sauce from enzymatic hydrolysate of cod skin gelatin. J Korean Soc Food Nutr 22: 470-475
  2. Cho YJ, Im YS, Park HY, Choi YJ. 2000. Quality characteristics of southeast asian salt-fermented fish sauces. J Korean Fish Soc 32: 98-102
  3. 해양수산부. 2003. 해양수산통계연보 품종별 수산가공품 생산량
  4. Koo JG, Jo KS, Do JR, Woo SJ. 1995. Isolation and purification of fucoidans from Laminaria rerigiosa and Undaria pinnatifida in Korea. J Korean Fish Soc 28: 227-236
  5. Ayako Y, Koichi Y, Keiichi O. 1992. Iodine distribution in blades of several Laminarias grown in the same sea area. Nippon Suisan Gakkaishi 58: 1373-1379 https://doi.org/10.2331/suisan.58.1373
  6. Ryu BH, Kim DS, Cho KJ, Sim DB. 1989. Antitumer activity of seaweeds toward sarcoma-180. J Korean Food Sci Technol 21: 595-600
  7. Cha HS, Hwang JB, Park JS, Park YK, Jo JS. 1999. Change in chemical composition of mune fruits during maturation. Korean J Postharvest Sci Technol 6: 481-487
  8. Lee EH, Choi OJ, Shim KH. 2004. Properties on the quality characteristics of muffin added with sugaring ume puree. Food Ind and Nutr 9: 58-65
  9. Dh SW, Kim SH, Song HN, Han DS. 2004. Comparative chemical compositions of four kinds of Tochukaso. Korean J Food Sci Technol 35: 15-22
  10. Lee JS, Lee HY, Park SM, Ahn DH. 2002. Effect of chitosan on drained solution and quality of soybean curd. J Chitin Chitosan 7: 201-207
  11. Jeon YJ, Park PJ, Kim SK. 2001. Antimicrobial effect of chitooligosaccharides produced by bioreactor. Carbohydrate Polymers 44: 71-76 https://doi.org/10.1016/S0144-8617(00)00200-9
  12. Jean YJ, Kim SK. 2002. Antitumor activity of chitosan oligosaccharides produced in an ultrafiltration membrain reactor system. J Microbial Biotechnol 12: 503-507
  13. Park PJ, Je JY, Kim SK. 2003. Angiotensin I converting enzyme (ACE) inhibitory activity of hetero-chitooligosaccharides prepared from partially different deacetylated chitosans. J Agric Food Chem 51: 4930-4934 https://doi.org/10.1021/jf0340557
  14. AOAC. 1995. Official methods of analysis. 15th ed. Association of official analytical chemists, Washington DC. p 31
  15. Conway EJ. 1950. Microdiffusion analysis and volumetric error. Croby Lookwood and Son Ltd., London
  16. Lee KY, Kim HS, Lee HG, Han O, Chang UJ. 1997. Studies on the prediction of the shelf-life of kochujang through the physicochemical and sensory analyses during storage. J Korean Soc Food Sci Nutr 26: 588-594
  17. Tarladgis BG, Matts BM, Younathan MT. 1960. A distillation method for the quantitative determination on malonaldehyde in rancid food. J Am Oil Chem Soc 37: 44-48 https://doi.org/10.1007/BF02630824
  18. Cha YJ, Lee EH. 1985. Studies on the processing of low salt fermented seafoods. Bull Korean Fish Soc 18: 206-211
  19. Oh KS. 1996. Studies on the processing of sterilized saltfermented anchovy sauce. Korean J Food Sci Technol 28: 1038-1044
  20. Korea Food Drug & Administration. 2000. Food Code. Seoul
  21. Lee EH, Ahn CB, Kim JS, Lim CW, Lee SW, Choi YA. 1988. Processing and taste compounds of fish sauces from filefish scrap. J Korean Soc Food Nutr 17: 326-335
  22. Cha YJ, Cho SY, Oh KS, Lee EH. 1983. Studies on the processing of low salt fermented seafoods. 2. The taste compound of low salt fermented sardine. Bull Korean Fish Soc 16: 140-146
  23. Lee KH. 1969. Microbioloical and enzymological studies on the flavor components of sea food pickles. J Korean Agric Chem Soc 11: 1-27

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