• Title/Summary/Keyword: Fermented anchovy

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Effects of Ingredients on the Its Quality Characteristics during Kimchi Fermentation (부재료가 김치의 품질 특성에 미치는 영향)

  • Ku, Kyung-Hyung;Sunwoo, Ji-Young;Park, Wan-Soo
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.34 no.2
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    • pp.267-276
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    • 2005
  • This study was carried out to investigate the effects of Kimchi ingredients, garlic, ginger, green onion and fermented fish sauces, on the Kimchi characteristics during fermentation. The experiment design of this study was the central composite design and response surfaces methodology. Garlic (X$_1$) of 0∼2%, ginger (X$_2$) of 0∼1.4%, green onion (X$_3$) of 0∼4% and fermented fish sauces (shrimp, X$_4$ and anchovy, X$_{5}$) of 0∼2% per salted Chinese cabbage of 100 g put in independent variables, respectively. The result of response surface regression analysis, independent variables of various ingredients and dependent variables, correlation coefficient ($R^2$) showed very difference value according to added ingredients. In the Kimchi samples fixed independent variables of garlic (X$_1$)-ginger (X$_2$), generally, it showed high correlation value more than samples fixed other independent variables of garlic (X$_1$)-green onion (X$_3$) and ginger (X$_2$)-green onion (X$_3$) over the fermentation period. And the correlation coefficient ($R^2$) of fermented fish sauces (shrimp of X$_4$, anchovy of X$_{5}$) showed value over 0.8 in the its characteristics of Kimchi samples except for textural properties of sensory evaluation. In the graph pattern of fermented fish sauces using response surfaces methodology, it showed a little increasing value of titratable acidity, lactic acid bacteria and 'a' of redness, 'b' of yellowish according to increasing addition fermented fish sauces. In the total acceptability of sensory evaluation, it showed high value according to increasing fermented fish sauce at the initial fermentation period of Kimchi. But it showed high value Kimchi sample added content of 1.0% fermented fish sauce in the middle (appropriate fermentation) and last (excessive) fermentation period.

Changes of Fatty Acid Composition and Lipid Oxidation in Anchovy During Fermentation with Salt (멸치젓 숙성중 지질의 산화와 지방산 조성의 변화)

  • SEO Hae-Jeom;JEONG Bo-Young;NAM Taek-Jeong;PYEUN Jae-Hyeung
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.31 no.2
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    • pp.195-201
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    • 1998
  • Anchor Engraulis japonica was fermented with $10\%$ and $20\%$ salt at $10^{\circ}C$ ($10\%$ 5A) and $20^{\circ}C$ ($20\%$ SA), respectively, and the changes in lipid content, fatty acid composition and lipid oxidation was observed for 105 days. Peroxide value (POV) in $10\%$ SA reached to the maximum (46.4 meq/kg) on 30 days of fermentation, while in $20\%$ SA, it reached the maximum (54.7 meq/kg) on 45 days of fermentation, and then decreased in both samples during fermentation. Thiobarbituric acid values revealed a similar tendency with the change of POV during the fermentation. These results indicated that lipid of the anchovy was oxidized faster in lower salt than high salt in the early stage. Total lipid (TL) content during the fermentation for 105 days decreased approximately $16\%$ in $10\%$ SA and approximately $33\%$ in $20\%$ SA. Phospholipid (PL) content also decreased in both samples and the content of neutral lipid (NL) was unchanged in $10\%$ SA, while it decreased in the same amount as PL in $20\%$ SA. The prominent fatty acids in TL of the anchovy sample were 14 : 0, 16 : 0, 16 : In-7, 18 : in-9, 20 5n-3 and 22 : 6n-3. After fermentation for 105 days, approximately $87\%$ and $67\%$ of the prominent fatty acids remained in $10\%$ SA and $20\%$ SA, respectively, but the kind of the fatty acids was unchanged.

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A Survey on the Sensory Preference for Making Summer Kimchi by Nationwide Region (여름철 배추김치 담금시 지역별 관능적 선호도 조사)

  • Cha, Yong-Jun;Kim, Hun;Cho, Wo-Jin;Jung, Yeon-Jung;Lee, Young-Mi;Kim, Eun-Jeong
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.32 no.3
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    • pp.393-399
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    • 2003
  • The purpose of this study was to investigate the preferred methods for making summer kimchi as a basic research of making commercial kimchi. Questionnaire were collected from 590 housewives nationwide in Korea, and the data were analyzed by SPSS program. The results were as follows: (1) The average salting time of Chinese cabbage was 3~5 hrs when the combined method of dry and brine salting was used, regardless of the region. (2) Seven jeotkals (salt-fermented fishes) including anchovy, anchovy juice, shrimp, northern sand lance juice, hair-tail viscera, flatfish and yellow corvenia were mainly used in kimchi. Among them, anchovy and anchovy juice jeotkals were preferred to all others in Southern area (Busan, Gwangju, Gyeongnam, Gyeongbuk, Jeonnam), while shrimp jeotkal in Seoul, Gwangju, Jeonbuk, Chungnam and Jeju, and northern sand lance juice jeotkal in Daegu, Daejeon and Gyeonggi, respectively. In most regions, however, blending type of 2 jeotkals was used in kimchi. (3) Eleven ingredients such as red pepper, garlic, ginger, green onion, radish, leek, onion, carrot, sugar, sesame and MSG were used as basic components for making kimchi. In particular, MSG was used as a basic ingredient regardless of region and age. However, a standard taste for making kimchi was depended on housewife in this study.

Quality Properties of Fermented Squid Viscera Product with Aspergillus oryzae Koji and Its Seasoning (Koji를 첨가하여 발효한 오징어 내장 조미료의 품질특성)

  • Choi, Seung-Hwa;Kim, Sang-Moo
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.40 no.1
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    • pp.94-101
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    • 2011
  • Squid (Todarodes pacificus) is processed as dried or seasoned-dried products and its catch gradually increased from 270,298 M/T in 2005 to 367,940 M/T in 2008 in Korea. Squid processing by-product (viscera) was usually discarded as a waste resulting in environmental problem. In order to utilize squid viscera for more value-added products, a natural squid seasoning was developed by fermenting with Aspergillus oryzae koji. Squid viscera at 5, 10 and 15% salt concentrations with fixed levels of 5% koji and 30% water was fermented at room temperature. The quality properties of squid fermented products such as amino-N, TMA, VBN, total viable cell count, pH and total acidity were determined at different fermentation periods. The contents of amino-N, TMA, and VBN of squid seasoning at 5% salt concentration fermented for 14 days were the highest. Based on amino-N content, squid viscera at 5% koji fermented for 14 days was selected for further assays: the content of moisture, crude protein, crude lipid, crude ash, and carbohydrate were 5.98, 35.19, 33.08, 11.30, and 14.45%, respectively. The content of glutamate, alanine, leusine and lysine were 7.06, 12.34, 9.90 and 10.22%, respectively. The $IC_{50}$ values of DPPH scavenging and $\beta$-glucuronidase inhibitory activity were 12.89 and 12.58 mg/mL, respectively. A natural squid seasoning was manufactured by mixing fermented squid viscera and an ingredient. Based on the results of sensory evaluation, the fermented squid viscera seasoning was almost equal to other natural complex seasonings such as anchovy, cow meat, and fisheries seasoning.

Studies on Identification and Composition of Nucleosides from Mustard Leaf and Mustard Leaf Kimchi (청갓과 청갓김치의 핵산관련물질의 동정 및 함량에 관한 연구)

  • 김재이;최재수;김우성;최홍식
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.29 no.5
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    • pp.796-801
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    • 2000
  • Kimchi is the Korean traditional food which is fermented properly from salted Korean cabbage of raddish with other various supplements. Kimchi therefore can be the major sources for various kinds of nutrients and other biological substances. The fermentation process accompanies with complicated reaction mechanism which bacteria, fungi and yeast are involved and they produced aroma, taste and bioactive components. To identify nucleoside, this study was conducted with freeze-dried mustard leaf, mustard leaf kimchi and fermented mustard leaf kimchi. Hexane, CH$_2$Cl$_2$, EtOAc and BuOH was used in order to extract their components. The isolated compounds I and II from mustard leaf and mustard leaf kimchi were identified as adenosine and uracil using UV, $^{1}H$-NMR, $^{13}C$-NMR and LC-MS, respectively. Compound I, II and nucleosides are the first report of its occurrence from mustard leaf and their kimchi, the standardized ratios of ingredients for kimchi were 10 of anchovy juice, 8 of red pepper powder, 3 of garlic, 1.5 of ginger, 6 of paste of glutinous rice. The nucleoside of mustard leaf and their kimchi was determined and compared. The order of nucleosides contents of mustard leaf was uridine>cytosine>uracil>adenine>guanosine>guanin, that of fresh mustard leaf kimchi was uridine>uracil>cytosine>guanine>adenosine>adenin>guanosine and that of fermented mustard leaf kimchi (5days at 15$^{\circ}C$) was guanine>adenine>adenosine>guanosine. The differences of nucleoside contents from those were due to various supplements and fermentation process.

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Properties of Tetragenococcus halophilus Strains Isolated from Myeolchi (anchovy)-jeotgal

  • Kim, Jeong A;Yao, Zhuang;Perumal, Venkatesh;Kim, Hyun-Jin;Kim, Jeong Hwan
    • Microbiology and Biotechnology Letters
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    • v.46 no.4
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    • pp.313-319
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    • 2018
  • Halophilic lactic acid bacteria (LAB) were isolated from myeolchi-jeotgal (23% NaCl, w/v) fermented in jangdok (Korean earthenware) located outside a house. They were identified as Tetragenococcus halophilus by 16S rRNA and recA gene sequencing. Four T. halophilus isolates showing high protease activities were selected for further studies. Four strains grew well, reaching $OD_{600}$ values of 0.75-0.92 at 18% NaCl content (w/v) and 0.28-0.44 at 23% salt. They showed rapid growth, attaining $OD_{600}$ values of 1.1-1.2 at $20-30^{\circ}C$, but did not grow at $4^{\circ}C$. At $15^{\circ}C$, the highest $OD_{600}$ values, which exceeded 0.6, were observed at 20 days, and were higher than those of cultures at $37^{\circ}C$ and $42^{\circ}C$ (approximately 0.5). Four isolates grew best in broth where the initial pH was adjusted to 8 and did not grow at $pH{\leq}4$. T. halophilus BS2-36 showed the highest survival ratio of 18.7% after 2 hours of exposure at pH 3. BS2-36 showed the highest survival ratio (1.29%) in presence of 0.3% bile salts. T. halophilus BS2-36 seems a promising candidate as a starter for jeotgal and other fermented foods with high salinities.

Difference of Component Changes in Salt-Fermented Spring and Autumn Anchovy, Engraulis japonicus Sauce during Fermentation ($\cdot$가을 멸치액젓의 숙성 중 성분변화의 차이)

  • IM Yeong Sun;PARK Hee Yeol;CHOI Young Joon;CHO Young Je
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.34 no.1
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    • pp.7-12
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    • 2001
  • To investigate difference of component changes in salt-fermented spring (SAS) and autumn (AAS) anchovy, Engraulis japonicus sauce during fermentation, various chemical properties were examined at $1.5\sim3$ months intervals during 18 months fermentation, The contents of total and amino nitrogen were higher in SAS than in AAS until 15.7 and 17.4 months fermentation, respectively, but there were no difference after that. The cross point of inosine (HxR) + hypoxanthine (Hx) and uric acid was faster in SAS with 10.6 months fermentation than in AAS with 11.5 months fermentation, After 18 months of fermentation, the SAS was rich in free amino acids, such as glutamic acid, alanine, aspartic acid, valine, lysine in that order, On the other hand, the AAS was rich in free amino acids, such as glutamic acid, leucine, alanine, lysine, isoleucine in that order. Absorbance at 453 nm were higher in SAS than in AAS, and increased gradually during fermentation.

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THE TASTE COMPOUNDS FERMENTED ACETES CHINENSIS (새우젓의 정미성분에 관한 연구)

  • CHUNG Seung-Yong;LEE Eung-Ho
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.9 no.2
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    • pp.79-110
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    • 1976
  • In Korea fermented fish and shellfish have traditionally been favored and consumed as seasonings or further processed for fish sauce. Three major items in production quantity among more than thirty kinds which are presently available in the market are fermented anchovy, oyster and small shrimp. They are usually used as a seasoning mixture of Kimchi in order to provide a distinctive flavor. Fermented small shrimp, Acetes chinensis is most widely and largely used ana occupies an important position in food industry of this country. But no study on its taste compounds has been reported. This study was attempted to establish the basic data for evaluating taste compounds of fermented small shrimp. The changes of such compounds during fermentation as free amino acids, nucleotides and their related compounds, TMAO, TMA, and betaine were analysed. In addition, change in microflora during the fermentation under the halophilic circumstance was also investigated. The samples were prepared with three different salt contents of 20, 30 and $40\%$ to obtain the proper degree of fermentation at a controlled tempeature of $20{\pm}2^{\circ}C$. The results are summarized as follows: Volatile basic nitrogen increased rapidly until 108 days of fermentation and afterwards it tended to increase slowly. Amino nitrogen also increased rapidly until 43 days of fermentation and then increased slowly. Extract nitrogen increased and marked the maximum value at 72 day fermentation and then decreased slowly. ADP, AMP and IMP tended to degrade rapidly while hypoxanthine increased remarkably at 27 day fermentation but slightly decreased at 72 day fermentation. It is presumed that the characteristic flavor of fermented small shrimp might be attributed to the relatively higher content of hypoxanthine. In the free amino acid composition of fresh small shrimp abundant amino acids were proline, arginine, alanine, glycine, lysine, glutamic acid, leucine, valine and threonine in order. Such amino acids like serine, methionine, isoleucine, phenylalanine, aspartic acid, tyrosine and histidine were poor. In small shrimp extract, proline, arginine, alanine, glycine, lysine and glutamic acid were dominant holding $18.5\%,\;14.6\%,\;10.8\%,\;8.7\%,\;8.1\%\;and\;7.7\%$ of total free amino acids respectively. The total free amino acid nitrogen in fresh small shrimp was $63.9\%$ of its extract nitrogen. The change of free amino acid composition in the extract of small shrimp during fermentation was not observed. Lysine, alanine glutamic acid, proline, glycine and leucine were abundant in both fresh sample and fermented products. The increase of total free amino acids during 72 day fermentation reached approximately more than 2 times as compared with that of fresh sample and then decreased slowly. Fermented small shrimp with $40\%$ of salt was too salty to be commercial quality as the results of organoleptic test showed. It is found that 72 day fermentation with $20\%\;and\;30\%$ of salt gave the most favorable flavor. It is convinced that the characteristic flavor of fermented small shrimp was also attributed to such amino acids as lysine, proline, alanine, glycine and serine known as sweet compounds, as glutamic acid with meaty taste, and as leucine known as bitter taste. The amount of betaine increased during fermentation and reached the maximum at 72 day fermentation and then decreased slowly TMA increased while TMAO decreased during fermentation. The amount of TMAO nitrogen in fermented small shrimp was $200mg\%$ on moisture and salt free base. Betaine and TMAO known as sweet compounds were abundant in fermented small shrimp. It is supposed that these compounds could also play a role as important taste compounds of fermented small shrimp. At the initial stage of fermentation, Achromobacter, Pseudomonas, Micrococcus denitrificans which belong to marine bacteria were isolated. After 40 day fermentation, they disappeared rapidly while Halabacterium, Pediococcus, Sarcian, Micrococcus morrhuae and the yeasts such as Saccharomyces sp. and Torulopsis sp. dominated. It is concluded that the most important taste compounds of fermented small shrimp were amino acids such as lysine, proline, alanine, glycine, serine, glutamic acid, and leucine, betaine, TMAO and hypoxanthine.

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Consumer Acceptance and Sensory Characteristics of Kimchi Prepared with Different Kinds of Subsidiary Ingredients (부재료를 달리하여 제조한 김치의 소비자 기호도 및 관능적 특성)

  • Park, So-Hee;Lee, Jong-Ho
    • Korean journal of food and cookery science
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    • v.22 no.3 s.93
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    • pp.370-378
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    • 2006
  • This study was carried out to investigate the effects of various subsidiary ingredients added to Kimchi on the acceptance and sensory characteristics. In appearance acceptance, Kimchi without red pepper powder rated the worst, while samples without salt-fermented anchovy extracts, garlic, ginger, radish, green onion and onion showed no significant difference(p<0.05) compared with the control, and were all rated highly in acceptance. In flavor, taste and overall acceptance, the sample without garlic rated the worst, indicating that garlic has the greatest effect on the acceptance of Kimchi. Red pepper powder had an effect only on the pungency of Kimchi's flavor characteristics. Salt-fermented anchovy extracts enhanced umami taste, sweetness and saltiness of Kimchi. Garlic also enhanced the general flavor such as sourness, umami taste, sweetness, carbonated flavor and fresh flavor, but inhibited the moldy flavor. Ginger had effects on pungency, fresh flavor of Kimchi, while radish, green onion and onion only had an effect on the fresh flavor of Kimchi. Garlic had significant effects on the moldy flavor and bitterness of Kimchi's sensory characteristics, and the amount of garlic added to Kimchi influenced the sourness, sweetness and fresh flavor, irrespective of the kinds of Kimchi and fermentation temperature.

Physicochemical and Sensory Properties of Kakdugi Prepared with Fermented Northern Sand Lance Sauce during Fermentation (까나리 액젓 첨가 깍두기의 이화학적ㆍ관능적 특성)

  • 김미리;오윤미;오수연
    • Korean journal of food and cookery science
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    • v.16 no.6
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    • pp.602-608
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    • 2000
  • Physicochemical and sensory properties of Kakdugi prepared with fermented northern sand lance sauce(Kakdugi-N) were compared with those of fermented anchovy sauce(Kakdugi-A) or shrimp(Kakdugi-S) through pH, acidity, reducing sugar content, color, microbial counts, TPA and sensory evaluation. The salt concentrations were similar among the treatments ranging 1.9 to 2.3%. Greater decrease in pH and reducing sugar content, and greater increase in acidity were observed in Kakdugi prepared with three kinds of fermented fish sauce than control. The greatest decrease in pH and reducing sugar content but the highest increase in acidity and lactobacilli counts were observed in Kakdugi-S, followed by Kakdugi-N and Kakdugi-A. Fermentation pattern of Kakdugi-N was similar to that of Kakdugi-A. The Hunter color L, a and b values increased gradually until day 11 and then decreased, and the a and b values of Kakdugi-N were similar to those of Kakdugi-A. The hardness and fracturability of Kakdugi determined by texture analyser, decreased during fermentation. Sensory evaluation showed that the score of overall acceptability was the highest in Kakdugi-S, followed by Kakdugi-N and Kakdugi-A.

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