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http://dx.doi.org/10.9799/ksfan.2016.29.2.237

Quality Characteristics of Low-Salt Myungran Jeotkal Fermented by Vegetable-Origin Lactic Acid Bacteria and Salt from Deep Sea Water  

Lee, Deuk-Sik (Dept. of Foodservice & Nutrition, Hanzhong University)
Publication Information
The Korean Journal of Food And Nutrition / v.29, no.2, 2016 , pp. 237-245 More about this Journal
Abstract
In this study, the physicochemical and sensory characteristics of low-salt Myungran jeotkal (Alaskan pollock roe) were evaluated after fermentation at $4^{\circ}C$ and $20^{\circ}C$ with or without the addition of deep sea water, salt from deep sea water, and vegetable-origin lactic acid bacteria (Lactobacillus fermentum JS, LBF). When fermented at $20^{\circ}C$, the addition of LBF to Myungran jeotkal resulted in a slow increase in lactic acid content, followed by an abrupt increase after five days of fermentation. However, when fermented at $4^{\circ}C$, the lactic acid content did not change significantly. Further, when Myungran jeotkal fermented at $4^{\circ}C$, the pH decreased as lactic acid production increased. The salinity of Myungran jeotkal fermented at $4^{\circ}C$ and $20^{\circ}C$ was 7% and was not affected by fermentation period. When fermented at $20^{\circ}C$, volatile basic nitrogen and amino nitrogen contents increased with increasing duration of fermentation. Further, volatile acid content decreased, however, the content of amino nitrogen increased after 11 days of fermentation with LBF and no salt effects were observed. When fermented at $20^{\circ}C$ for 13 days, preference (sensory evaluation) was the highest in all experimental groups after 9 days of fermentation, and then decreased as the fermentation period increased. The free amino acid content was highest (1,648.8 mg/100 g) in Myungran jeotkal when sun-dried salt and LBF were added, 2.3 times higher than in the control.
Keywords
deep sea water; fermentation; Lactobacillus fermentum JS; Myungran jeotkal; vegetable-origin lactic acid bacteria;
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Times Cited By KSCI : 9  (Citation Analysis)
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1 Lee KH, Cho HS, Lee DH, Ryuk JH, Cho YJ, Suh JS, Kim DS. 1993. Utilization of ascidian, Holocynthia orretzi, 5. Processing and quality evaluation of fermented ascidian (I). Korean J Fish Aquat Sci 26:221-229
2 Lee KG, Kim SM. 2012. Quality changes in low-salted squid jeot-gal during fermentation and determination of shelf-life. J Korean Soc Food Sci Nutr 41:687-694   DOI
3 Lee NY, Jo CU, Lee WD, Kim JH, Byun MW. 2003. Physicochemical characteristics of gamma irradiated Changran jeotkal during storage at 10$^{\circ}C$. Korean J Food Sci Technol 35:1129-1134
4 Lee SW, Kim HJ, Moon DS, Kim AR, Jeong IH. 2007. Characteristics of tofu coagulants extracted from sea tangle using treated deep ocean water. J Korean Fish Soc 40:113-116
5 Moon DS, Kim HJ, Shin PK, Jung DH. 2005. Characteristics of chemical contents of horizontal spray salts from deep ocean water. J Korean Fish Soc 38:65-69
6 Park SH, Sim YB, Suh HW, Nam KS, Lee DJ, Choi SY, Lee DS. 2013. Effects of physiological activity on immune function, anti-hyperglycemia and intestinal motility promotion of vegetable Lactobacillus fermentum. Chinese Journal of Microbiology 25:782-788
7 Park SM, Park CK, Lee KT, Kim SM. 1998. Changes in taste compound of low salt fermented pollack tripe during controlled freezing point aging. Korean J Food Sci Technol 30:49-53
8 Yook HS, Cha BS, Kim DH, Lee JW, Byun MW. 2004. Genotoxicological safety of gamma-irradiated salted and fermented anchovy sauce. J Korean Soc Food Sci Nutr 33:1192-1200   DOI
9 Cha YJ, Lee EH. 1985. Studies on the processing of low salt fermented sea foods; 5. Processing conditions of low salt fermented anchovy and yellow corvenia (in Korean). Bull Korean Fish Soc 18:206-213
10 Chae SK, Kang KS, Ma SJ, Bang KW, Oh MH. 1999. Standard Food Analytics, Gi-Goo-Mun-Hwa-Sa Publishing Co., Ltd., Seoul, Republic of Korea, pp. 299-300
11 Chung SY, Lee EH. 1976. The taste compounds of fermented Acetes chinensis (in Korean). Bull Korean Fish Soc 9: 79-110
12 Ham SS, Kim SH, Yoo SJ, Oh HT, Choi HJ, Chung MJ. 2008. Biological activities of soybean sauce (Kanjang) supplemented with deep sea water and sea tangle. Korean J Food Preserv 15:272-279
13 Han JS, Cho HR, Cho HS. 2005. Study for the establishment of the quality index of low-salted Myungran-jeot. Korean J Food Cookery Sci 21:440-446
14 Kim DS, Lee HO, Rhee SK, Lee S. 2001. The processing of seasoned and fermented oyster and its quality changes during the fermentation. J Korean Soc Agric Chem Biotechnol 44:81-87
15 Jeong GJ. 2005. Picture Book to the Microbiology II. Kook-Jae-Pi-Al Publishing Co., Ltd., Seoul, Republic of Korea, pp. 49-55
16 Jung HK, Jeong YS, Youn KS, Kim DI, Hong JH. 2009a. Quality characteristics of soybean paste (Doenjang) prepared with Bacillus subtilis DH3 expressing high protease levels, and deep sea water. Korean J Food Preserv 16:348-354
17 Jung S, Choe JH, Kim B, Yun H, Kim YJ, Jo C. 2009b. Microbiological, physicochemical, and sensory characteristics of Myungran jeotgal treated by electron beam irradiation. Korean J Food Preserv 16:198-203
18 Kim EJ, Hahn YS. 2008. Studies on the manufacturing and fermentation characteristics of soy-sauce-Kimchi. Korean J Food Cookery Sci 24:517-524
19 Kim JH, Ryu GH, Ahn HJ, Lee KH, Lee HJ, Byun MW. 2000. Quality evaluation of commercial salted and fermented anchovy sauce. J Korean Soc Food Sci Nutr 29:837-842
20 Kim JW. 2008. Changes in physicochemical quality during the seasoned and fermented alaska pollack roe with vacuum fermentation. MS thesis, Hankyong National Univ. Anseong, Korea
21 Kim ML, Jeong JS, Lee GD. 2003. Change in growth of alcohol fermentation yeast with addition of deep seawater. Korean J Food Preser 10:417-420
22 Lee JG, Choe WK. 1974. Studies on the variation of microflora during the fermentation of anchovy, Engraulis japonica (in Korean). Bull Korean Fish Soc 7:105-114