• Title/Summary/Keyword: Microfloral fermentation

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Microfloral Changes of the Lactic Acid Bacteria during Kimchi Fermentation and Identification of the Isolates (김치발효 중의 젖산균의 경시적 변화 및 분리 젖산균의 동정)

  • 이철우;고창영;하덕모
    • Microbiology and Biotechnology Letters
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    • v.20 no.1
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    • pp.102-109
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    • 1992
  • The microfloral changes of lactic acid bacteria during Kimchi fermentation at 5, 20 and $30^{\circ}C$ were compared by using various selective media, and the lactic acid bacterial strains were isolated and identified. The patterns of microfloral changes in each lactic acid bacterial group, leuconostoc, lactobacilli, streptococci and pediococci, were similar at different fermentation temperature, and the changes were accelerated by increased temperature. Among them, leuconostoc and lactobacilli showed high population, and at low temperature the number of leuconostoc were higher than at high temperature. Leuconostoc and streptococci were increased in number from the beginning, but they rapidly decreased after the optimum ripening period. Pediococci increased their number after streptococci, but they were rapidly decreased later. Lactobacilli were highly distributed throughout the whole fermentation period. However, they were slightly declined as the acidity increased. Those strains of leuconostoc, streptococci, pediococci and lactobacilli were identified as Luuconostoc mesenteroida subsp. musenteroides, Streptococcus fuecalzs, S, faeciurn, Pediococcus pentosaceus, Lactobacillus plarttarum, L. sake and L. brevis. Among lactobacilli, Id. sake and L. brmk, and L. plantarum were isolated mainly at the beginning and around the overripening period of fermentation, respectively.

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The Properties of Cucumber Kimchi of Different Species during Fermentation (국산 백침계 오이와 수출용 백침계 오이의 오이 물김치 제조가 저장 중 품질에 미치는 영향)

  • 이혜정;김정근;고종명;허명제
    • The Korean Journal of Food And Nutrition
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    • v.15 no.3
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    • pp.241-249
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    • 2002
  • In this research, we targeted to see if there was difference of shelf$.$lives of two different species cucumber. We pickled domestic and exporting cucumber to make comparison while they were fermented and stored. As for the domestic cucumber we choose CHICHEONG and for the exporting cucumber we choose special BAEKSEONG and SHARP 1. We blanched them and soaked them into hot saline water for 8 hours. Two kinds of Cucumber Kimchi were at room temperature for first day and 5'c from 2nd to 28th day. It was found, from the results, that all of samples of pH reached at 3.5 $\pm$ 0.1 on the 14th day of fermentation. The titratable acidity of the control increased on 14th day of fermentation, which was bit late than change of others. The reducing sugar contents of the control did not decrease until 7th day of fermentation while reducing sugar contents of others decreased gradually from the beginning. The patterns of Microfloral changes of two kinds of Cucumber Kimchi were similar during fermentation period. The number of total cell increased up to 14th day, similary the numbers of lactic acid bacteria increased up to 14th day then barely decreased. The hardness of the control was bit higher than others when it was measured on 14th day of fermentation. The sensory evaluation of Cucumber Kimchi with different species showed that both species had siginificant high negative scores in green color and crispness when those were compared between fermentation time and samples.

Properties Changes of Korean Turnip Dongchimi Innoculated with Leuconostoc citreum IH22 during Fermentation (순무 동치미 제조시 젖산균 접종이 저장 중 품질에 미치는 영향)

  • 이혜정;오순덕
    • The Korean Journal of Food And Nutrition
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    • v.15 no.1
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    • pp.70-76
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    • 2002
  • This study was examined in the chemical and sensory characteristics of Korean Turnip Dongchimi when innoculated with Leuconostoc citreum IH22 and Korean turnip Dongchimi. Both of Dongchimi were at room temperature for first day and at 4$\^{C}$ from 2nd to 28th day. The pH was somewhat lower in Korean tulip Dongchimi innoculated with Lecconostoc citreum IH22 than non-treated Dongchimi. As fermentation proceeded titratable acidity of both Korean turnip Dongchimi significantly increased but Korean turnip Dongchimi innoculated with Leuconostoc citreum IH22 was not changed from 21 th day to B8th day. The patterns of microfloral changes of both Dongchimi were similar during fermentation and the changes were increased in the number from the beginning, but they were rapidly decreased after the optimum ripening period. The hardness and fractureability of non-treated Dongchimi decreased rapidly after 14day of fermentation followed by a little increased until 28th day also Korean tulip Dongchimi innoculated with Leuconostoc citreum IH22 decreased gradually as the fermentation progressed. The evaluation of sensory qua] its of both of Dongchimi showed that the sour taste and fresh taste were similar but carbonated flavor and overall acceptability were higher than those of Korean turnip innoculated with Leuconostoc citreum IH22.

R & D Trend of The Traditional Fermented Foods in Korea (우리나라 전통발효식품(傳統醱酵食品)의 연구개발동향(硏究開發動向))

  • Lim, Bun-Sam
    • Journal of the Korean Society of Food Culture
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    • v.4 no.3
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    • pp.265-269
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    • 1989
  • Korean traditional fermented foods have been diversely developed to enhance taste and flavor while preserving them on a long term basis. For those furthur utilization and development, more efforts to commercialize these products focusing to the consumer's needs should be proceded. In that sence, the fermented foods might be classified into the bioproduct (biofood) and the sterilized. The former defines the non-sterilized such as Kimchi, Jeotkal (fermented fishes), and Jang (fermented soybean products) so as to include various kinds of microorganisms, enzymes and the unknown bioproducts, while the latter defines the sterilized such as soysauce and vinegars proper to the commercialization. In this paper, present R & D status has been reviewed laying stress on Kimchi, Jeotkal and Jang and the mixed fermentation system by the microflora was suggested as a Korean style model for the future R & D direction in these fields.

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Effects of Yeast Addition as Starter on Fermentation of Kimchi (효모 Starter 의 첨가가 김치발효에 미치는 영향)

  • Kim, Hye-Ja;Kang, Sang-Mo;Yang, Cha-Bum
    • Korean Journal of Food Science and Technology
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    • v.29 no.4
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    • pp.790-799
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    • 1997
  • The purpose of this study is to investigate the effects of yeast addition as starter on kimchi fermentation. The strains used as starter were Saccharomyces sp. YK-17 and Saccharomyces fermentati YK-19 isolated from kimchi, grew under anaerobic condition and low temperature, which showed the acid and base resistances. Chemical and microfloral changes, as well as the sensory properties of starter added kimchi during fermentation were compared with the control fermented without starter. The acidity of kimchi juice was lower and pH was higher in starter added kimchi than the control. Particularly addition of S. fermentati YK-19 prolonged the optimally fermented period (pH 4.0, acidity $0.6{\sim}0.8%$) up to more than 63%. The content of lactic acid, the major non-volatile organic acid in kimchi, was increased rapidly followed by S. sp. YK-17 and S. fermentati YK-19 group. The microfloral changes were found a little different among the samples. Among the microorganisms, Leuconostoc sp. and Lactobacillus sp. showed highest change, and Streptococcus sp. and Pediococcus sp. showed ralatively low change. The growth of Lactobacillus sp. which was the main acidifing microorganism was inhibited by starter addition, particularly by S. fermentati YK-19. The sensory characteristics of acidic and moldy flavor were significantly reduced by the addition, while fresh flavor was increased in starter added group.

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Microbilolgical Studies on the Takju (Makguly) Brewing : The Korean Local Wine (한국 고유주의 일종인 막걸리에 대한 미생물학적 연구)

  • Koh, Choon-Myung;Choi, Tae-Joo;Lew, Joon
    • Korean Journal of Microbiology
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    • v.11 no.4
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    • pp.167-174
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    • 1973
  • This study included two parts of investigation, the microfloral changes during the brewing process with the changes of pH, total acidity, temperature and alcoholic contents, as well as determination of survival times of major enteric pathogens in Takju. 1. Maximum number of Saccharomyces cerevisiae was $4.3{\times}10^7$ per milliliter on the 5th day of fermentation and gradually decreased. Saccharomyces cerevisiae was one of the predominant strains of the fermentation process. The number of Saccharomyces cerevisiae was $4.3{\times}10^6$ per milliliter at the completion of the brewing and human consumption. In a few days after the completion of the brewing. Bacillus subtilis and some species of Staphylococcus spp. began to grow and those organisms were responsible for the spoilage. 2. Maximum pH, during the brewing, was 5.8 on the first day of fermentation and rapidly decreased until 6th day of fermentation at pH 4.3. 3. Maximum alcholic content was 14.5 degree on the 4th day of fermentation, 10.3 degree on the 5th day and this degree was continued during the experimentation. 4. Maximum temperature, during Takju brewing was 34.deg.C on the 3rd day of fermentation and rapidly decreased up to 23.deg.C on the 6th day and this temperature was continued until the brewing process was finished. 5. Maximum total acidity was 0.57 percent on the 4th day of fermentation and gradually decreased by brewing process was completed. 6. Survival time of major enteric pathogenic bacteria in Takju was as follows : Shigella dysenteriae and Escherichia coli were isolated in two hours and 14 hours respectively, but Salmonella typhi, Vibrio parahemolyticus were not isolated even in an hour after the inoculation of those organisms in undiluted Takju. In diluted Takju, Salmonella typhi, Vibrio parahemolyticus were not isolated even in an hour after the inoculation of those organisms in undiluted Takju. In diluted Takju, Salmonella typhi, Shigella dysenteriae, and Escherichia coli were survived for 50-60 hours, but Vibrio cholerae and Vibrio parahemolyticus were not isolated even if treated within one hour.

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Properties Changes of Radish Variety Group of Altari Dongchimi Innoculated with Leuconostoc citreum IH22 during Fermentation (알타리 무 동치미 제조시 젖산균 첨가가 숙성중 품질에 미치는 영향)

  • 이혜정;오순덕
    • Journal of the East Asian Society of Dietary Life
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    • v.12 no.1
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    • pp.47-54
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    • 2002
  • This study examined the chemical and sensory characteristics of Altari Dongchimi with inoculation of Leuconostoc citreum IH22. Dongchimi was stored at room temperature for the first day and at 4$^{\circ}C$ from 2nd to 28th day. The pH was somewhat lower in Altari Dongchimi when first inoculated with Leuconostoc citreum IH22 than non -treated Dongchimi. As fermentation proceeded, titratable acidity of Altari Dongchimi significantly increased. The patterns of microflcral changes in both the inoculated and the control were similar during fermentation: the total number of bacteria increased at the beginning, but rapidly decreased right after the optimum ripening point. The hardness and fracturability of both Dongchimi's decreased gradually during fermentation. The evaluation of the sensory qualities showed that the sour taste and fresh taste resulted in similar scores in both Dongchimi's but overall acceptability of the control was higher than that of inoculated one with Leuconostoc citreum IH22.

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Effect of Salt Concentration on Soybean Leaf Kimchi Fermentation (콩잎 김치의 숙성에 미치는 소금농도의 효과)

  • 이숙희;최동진;김종국
    • Food Science and Preservation
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    • v.10 no.4
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    • pp.512-516
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    • 2003
  • Soybean leaf kimchi is one of the tyaditional special kimchies of Kyungnam-buk province in Kores This study was investigated to find optimum salt(NaCl) concentration on soybean leaf kimchi fermentation at the low temperature by inspecting physicochemical and microfloral changes. The young and green soybean leaves were harvested at the 4-6 weeks after sawing, and used as kimchi materials. After soybean leaf kimchi was stayed at room temperature far one day, it was fermentated at 5$^{\circ}C$ for 30 days. During fermentation, pH was slowly lowered, total acid content and salinity was increased. The total cell was increased up to 8th day and showed a little changes thereafter. The number of Lactic acid bacteria was rapidically incerased up to 4th day, was slowly increased thereafter. Sensory evaluation on soybean leaf kimehi of the 3.0%∼4.5 % salt treatment had good values.

Improvement of Kimchi Fermentation by Using Acid-Tolerant Mutant of Leuconostoc mesenteroides and Aromatic Yeast Saccharomyces fermentati as Starters

  • Kim, Young-Chan;Jung, Eun-Youg;Kim, Hyung-Joo;Jung, Dai-Hyun;Hong, Seong-Gil;Kwon, Tae-Jong;Kang, Sang-Mo
    • Journal of Microbiology and Biotechnology
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    • v.9 no.1
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    • pp.22-31
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    • 1999
  • Saccharomyces fermentati and Leuconostoc mesenteroides were isolated from a traditional kimchi, and then the Leu. mesenteroides was mutated to the acid-tolerant mutant Leu. mesenteroides M-l00. In the result of growth properties in MRS broth with various pHs adjusted with HCl and acid solution (latic acid:acetic acid=1:2), an acid-tolerant mutant Leu. mesenteroides M-100 showed more increased ability for growth than its wild strain at various temperatures. The strains were used as starters for the fermentation of kimchi. The experiments were performed with classified experimental groups (Group I, control kimchi; Group II, addition of YK-19 only; Group III, addition of M-100 only; Group IV, addition of mixture of M-100 and YK-19), and their pH, total acidity, reducing sugars content, organic acid productivity, organoleptic tests, and microfloral changes were compared. As a result, in pH and acidity, the optimal ripening period of Group IV was about 13.5 days (i.e. from the 8.5 to 22 days of fermentation). This result indicates that the optimal ripening period of Group IV was about 1.5 times longer than that of Group I. Furthermore, Group IV was edible to 28 days of fermentation. In addition, high contents of succinc acid was observed in Group IV. Group IV was also highly ranked on the organoleptic test. During the fermentation of kimchi, the number of Leuconostoc sp. in group I reduced after 7 days; however, the number of Leuconostoc sp. in Group II, III, and IV decresed after 14 days of fermentation. An especially high number of Leu. sp. was observed in Group IV, and this gave better flavor of kimchi than any other during the whole fermentation period. Citric acid, tartaric acid, succinic acid, fumaric acid, and lactic acid were detected in the kimchi, and a significant increase in the concentration of lactic acid during fermentation was observed in the all experimental groups.

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Production and Fermentation Characteristics of Mukeunji with a Mixed Starter (혼합 스타터를 이용한 묵은지의 제조 및 발효 특성)

  • Kim, Hyo Ju;Shin, Hyun-Kyung;Yang, Eun Ju
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.42 no.9
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    • pp.1467-1474
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    • 2013
  • To develop a starter culture system for the fermentation of mukeunji, we introduced lactic acid bacteria and yeast isolated from mukeunji into kimchi fermentation as a single or a mixed culture. On evaluating mukeunji flavor, we found that the mixed starter kimchi prepared with two strains, ML17 and MY7, gave the best sensory score. These strains were identified as Lactobacillus (Lb.) curvatus ML17 and Saccharomyces (S.) servazzii MY7 by molecular identification method. The fermentative characteristics of starter kimchi were investigated by measuring changes in the physicochemical and microfloral characteristics during the fermentation. The decrease in pH and increase in acidity in the starter kimchi were faster compared to respective values of control kimchi. There was a gradual decrease in hardness of starter kimchi, which was still slow compared to hardness decrease in control kimchi. Microbial analysis of starter kimchi revealed that Lb. curvatus ML17 and S. servazzii MY7 were the dominant organisms during the entire fermentation period. The lactic acid and citric acid contents of starter kimchi were higher than those of the control kimchi after 90 days of fermentation. By sensory evaluation, the starter kimchi scored higher in appearance, mukeunji flavor, sourness, carbonated flavor, savory taste, texture, and overall acceptability, but lower in off-flavor than the control kimchi.