• Title/Summary/Keyword: L brevis

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Retardation of Kimchi Fermentation and Growth Inhibition of Related Microorganisms by Tea Catechins (차엽카테킨의 김치발효 지연 및 관련 미생물의 증식억제)

  • Wee, Ji-Hyang;Park, Keun-Hyung
    • Korean Journal of Food Science and Technology
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    • v.29 no.6
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    • pp.1275-1280
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    • 1997
  • The possible use of tea catechins as natural preservatives for kimchi was investigated in this study. Tea catechins separated from tea leaves had antimicrobial activity against microorganisms related to kimchi fermentation, such as Leuconostoc mesenteroides, Lactobacillus plantarum, Lactobacillus brevis, Pediococcus cerevisiae, Streptococcus faecalis. The degree of antimicrobial activity of catechins were different among microorganisms; that is 2 mg/mL to Leuconostoc mesenteroides, Lactobacillus plantarum, and Pediococcus cerevisiae, 4 mg/mL to Streptococcus faecalis, and 5 mg/mL to Lactobacillus brevis; however, Saccharomyces cerevisiae can not be inhibited. The effect of tea catechins on retardation of kimchi fermentation was tested by measuring changes in pH and acidity. The changes of pH and acidity of baechu-kimchi and mul-kimchi were remarkably inhibited by adding the tea catechins at the level of 2 mg/g fresh baechu. These results suggest that the tea catechins can be successfully used for the extension of shelf-life of kimchi.

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Biotransformation of Ginsenoside by Lactobacillus brevis THK-D57 Isolated from Kimchi (김치에서 분리한 Lactobacillus brevis THK-D57에 의한 인삼 사포닌의 생물학적 전환)

  • Yi, Eun-Ji;Lee, Jung-Min;Yi, Tae-Hoo;Cho, Seok-Cheol;Park, Yong-Jin;Kook, Moo-Chang
    • The Korean Journal of Food And Nutrition
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    • v.25 no.3
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    • pp.629-636
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    • 2012
  • Ginsenosides, ginseng saponin, are the principal components responsible for the pharmacological and biological activities of ginseng. In order to improve absorption and biological activities, the biotransformation of major ginsenoside to minor ginsenoside, as the more active compound, is required. In this study, we isolated Lactobacillus brevis THK-D57, which has high ${\beta}$-glycosidase activity, from Kimchi. The major ginsenoside Rb1 was converted to the minor ginsenoside 'compound K' during the fermentation of L. brevis THK-D57. The results propose that the biotransformation pathway to produce compound K is as follows: ginsenoside $Rb_1{\rightarrow}ginsenoside$ $Rd{\rightarrow}ginsenoside$ $F_2{\rightarrow}ginsenoside$ compound K.

Characterization of the Production of Biogenic Amines and Gamma-Aminobutyric Acid in the Soybean Pastes Fermented by Aspergillus oryzae and Lactobacillus brevis

  • Kim, Nam Yeun;Ji, Geun Eog
    • Journal of Microbiology and Biotechnology
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    • v.25 no.4
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    • pp.464-468
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    • 2015
  • The production of gamma-aminobutyric acid (GABA) using GABA-producing lactic acid bacteria (LAB) has been considered to be an attractive strategy. However, some LAB may produce biogenic amines (BA), which may be of concern from the safety viewpoint. The aim of the present study was to characterize the production of GABA and BA in the soybean pastes fermented by Aspergillus oryzae (A. oryzae) FMB S46471 and GABA-producing Lactobacillus brevis (L. brevis) GABA 100. After a ripening period of 90 days, the levels of BA (putrescine, cadaverine, histamine, and tyramine) and GABA in the fermented soybean were assessed by highperformance liquid chromatography. The soybean pastes fermented by A. oryzae and L. brevis showed a range of 7,130-11,592 mg/kg for GABA, 178-305 mg/kg for tyramine, 139-163 mg/kg for putrescine, 7.4-10.8 mg/kg for histamine, and 7.1-7.9 mg/kg for cadaverine, whereas the soybean pastes fermented by A. oryzae only showed a range of 30-1,671 mg/kg for GABA, 0.8-189 mg/kg for tyramine, 1.3-85 mg/kg for putrescine, up to 3.6 mg/kg for histamine, and 0.2-2.4 mg/kg for cadaverine. The results showed that the production of GABA was accompanied by the increase in the production of BA, even though the production levels of histamine and cadaverine were very low. This is the first study to simultaneously characterize the production of BA and GABA in GABA-enriched fermented soybean pastes, and warrants further study to minimize the production of BA while optimizing the production of GABA.

Properties of a Novel Glutamate Decarboxylase (GAD) from Levilactobacillus brevis B737 Isolated from Cabbage Kimchi

  • Tae Jin Kim;Min Jae Kim;Bong Sin Kim;Ji Yeon Yoo;Yun Ji Kang;Jeong Hwan Kim
    • Microbiology and Biotechnology Letters
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    • v.50 no.3
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    • pp.319-327
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    • 2022
  • γ-Aminobutyric acid (GABA) is a multi-functional compound with broad applications for food industry. GABA producing bacteria were isolated from cabbage kimchi. Among them, B737 was the best GABA producer when culture supernatants were analyzed by TLC. B737 was identified as Levilactobacillus brevis by 16S rRNA gene sequencing. Its glutamate decarboxylase (GAD) gene was cloned by PCR and the nucleotide sequence determined. B737 GAD consisting of 485 amino acids is the largest in size among GADs reported from LAB so far. gadB from L. brevis B737 was overexpressed in Escherichia. coli BL21(DE3) using pET26b(+).pET26b(+). The recombinant GAD was purified and its size was 55 kDa by SDS-PAGE. Maximum GAD activity was observed at pH 5 and 40℃ and the activity was dependent on pyridoxal 5'-phosphate. Km and Vmax of recombinant GAD were 6.2 ± 0.06 mM and 0.34 ± 0.002 mM/min, respectively. L. brevis B737 can be used as a starter for fermented foods with high GABA contents.

Changes of Chemical Composition and Microflora in Commercial Kimchi (시판 김치의 발효 온도별 성분과 미생물 변화)

  • Shin, Dong-Hwa;Kim, Moon-Sook;Han, Ji-Sook;Lim, Dae-Kwan;Bak, Wan-Soo
    • Korean Journal of Food Science and Technology
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    • v.28 no.1
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    • pp.137-145
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    • 1996
  • Chemical changes, lactic acid bacteria and yeast counts in kimchi prepared by a commercial manufacturer in large scale were monitored at different fermentation temperature. The optimum pH of kimchi, around pH 4.2, reached within 2 days at $25^{\circ}C$, 3 days at $15^{\circ}C$ and 23 days at $5^{\circ}C$ fermentation, respectively. The optimum acidity calculated as lactic acid was not exactly coincident with pH. The total viable count reached at maximum within 2 days at $25^{\circ}C$, 6 days at $15^{\circ}C$ and 12 days at $5^{\circ}C$ fermentation, respectively. The identified strains of Lactobacilli during kimchi fermentation were L. brevis, L. plantarum and L. acidophilus with 3 unidentified strains. L. brevis, L. plantarum appeared from the first stage of fermentation to the terminal at $15^{\circ}C$ and $25^{\circ}C$ with keeping a constant level of viable number. In case of Leuconostoc species, L. mesenteroides subsp. mesenteroides was identified. This strain increased in viable number at the beginning of fermentation and dropped sharply at all fermentation temperatures. Pediococcus species including P. pentosaceus and one unidentified strain increased at the first stage of fermentation and decreased after on. Streptococcus faecium subsp. casseliflavus which appeared at the middle stage and Aerococcus viridans which was sole strain were also confirmed during kimchi fermentation. Cryptococcus laurenti was identified at all fermentation temperature and disappeared at the first stage of fermentation. It was reappeared 10 days only after fermentation at $25^{\circ}C$.

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Changes in Carotene Content of Chinese Cabbage Kimchi Containing Various Submaterials and Lactic Acid Bacteria during Fermentation (배추김치의 숙성중 부재료와 젖산균에 따른 Carotene 의 함량변화)

  • 장경숙;김미정;오영애;강명수;김순동
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.20 no.1
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    • pp.5-12
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    • 1991
  • the Chinese cabbage kimchi was fermented with the various submaterials such as hot pep-per garlic ginger leek green onion fermented anchovy juice and sugar according to the average contents of each submaterial described in the 39 kinds of references. And then the effects of each submaterial and lactic acid bacteria such as L. brevis. Leu. mesenteroides. P cerevisiae and L. plantarum on the content of carotenes were investigated, The major carotene in kimchi was $\beta$-carotene. And also $\delta$-carotene and $\alpha$-carotene were detected. Contents of $\beta$-carotene and total carotene were high in the kimchi containing leek red pepper powder green onion and fermented anchovy juice as a submaterial. But the kimchi containing or omitting the other submaterials were litter affected to the contents of carotene. Contents of $\beta$-carotene and total carotene were high in kimchi fermented with Leu. msenteroides L. brevis and P. cerevi-siae as a starter but was low with L plasntarum.

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Identification and Fermentation Characteristics of Lactic Acid Bacteria Isolated from Dongchimi as Starter for Radish Juice (무 쥬스 제조를 위한 starter로써 동치미에서 분리한 유산균의 동정 및 발효 특성)

  • Kim, Jung-Hee;Kim, Jong-Il
    • Korean Journal of Microbiology
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    • v.35 no.4
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    • pp.307-314
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    • 1999
  • This study was aimed at the investigation of the possibility of the addition of lactic acid bacteria as "starter"for the preparation of radish juice. Forty strains of lactic acid bacteria were isolated from dongchimi that was fermented by a traditional method. The isolates were assorted into 5groups, Leuconostoc mesenteroides subsp. mesenteroides (J-9), Lacobacillus brevis (J-12), Lactobacillus fermentum (J-7), Lactobacillus sake (J-20), and Lactobacillus plantarum (J-39). Leuconostoc mesenteroides was predominated in the sample of dongchimi with frequency of 52.5%. Each of the strain, which exhibited the beat growth in the species, was selected in the 5species, and investigation of the fermentation characteristcis was carried out. The fermentation were performed for 9 days at 25${\circ}C$ after the inoculation of 0.3% ($10^{6}$ cfu/㎖) to each ultra-filtrated radish juice. The pH, total acidity, content of non-volatile organic acids were examined during the fermentation period. Lactobacillus plantarum showed the highest growth rate and the growth rate of Lactobacillus sake was the lowest. The pH (6.3-6.36) and total acidity (0.09-1.0 %) fo the ultrafiltrated radish juice before fermentation were changed to 3.2-4.3 and 0.65-1.2% after 9days, respectively. The changes of the pH and total acidity were related with the growth of the lactic acid bacteria; the better growth of lactic acid bacteria, the more rapid decrease of pH and increase of the total acidity. when the amount of non-volatile organic acids were estimated during fermentation, citric acid, malic acid, malonic acid, and succinic acid were decreased in all cases. However, the content of lactic acid increased with the progression of fermentation. L. mesenteroides (J-9), L. brevis (J-12) and L. fermentum (J-7) were chosen for the candidates of the starter for the lactic fermentation of radish juice based on the biochemical analysis and sensory evaluation.

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Characterization and Anti-Helicobactor pylori Activity of Xanthium strumarium L. Extract on Lactic acid Fermentation (도꼬마리 추출물의 유산발효 특성 및 Helicobactor pylori에 대한 항균활성)

  • Kang, Dong-Hee;Kim, Hyun-Soo
    • KSBB Journal
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    • v.25 no.3
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    • pp.244-250
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    • 2010
  • This study characterized the anti-Helicobactor pylori activity of Xanthium strumarium L. extract obtained by lactic acid fermentation. The growth of the Lactobacillus strains was typically robust upon lactic acid production in monocultures containing Xanthium strumarium L. extract. Lactic acid fermentation in mixed cultures of Lactobacillus brevis KCTC 3498 and Lactobacillus casei KCTC 3109 produced higher of anti- H. pylori activity than monocultures. Concerning antioxidant activity of fermented extracts, total polyphenol contents were the highest in co-cultures of Lactobacillus brevis KCTC 3498 and Lactobacillus helveticus KCTC 3545. Electron donating ability using diphenyl picryl hydrazyl (DPPH) showed 70% scavenging in Lactobacillus casei KCTC 3109.

Effect of Dandelion (Traxancum platycarpum D.) Extracts on the Growth of Lactic Acid Bacteria and Gas Formation from Kimchi (민들레 (Traxancum platycarpum D.) 추출물이 젖산균의 생육과 김치의 가스발생에 미치는 영향)

  • Kim, Soon-Dong;Kim, Mee-Hyang;Kim, Duck-Hee
    • Food Science and Preservation
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    • v.7 no.3
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    • pp.321-325
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    • 2000
  • This study was conducted to investigate the effect of the extracts (water, 70% ethanol and ethylacetate) from dandelion (Traxancum platycarpum D.) leaf and root on the inhibitory activities of Leuconostoc mesenteroides, Lactobacillus brevis, Lactobacillus plantarum and Lactobacillus acidophilus. And also, the amounts of gas formation from kimchi with different concentration of the ethylacetate extracts (EE) were analyzed. EE of dandelion leaf inhibited the growth of Leuc. mesenteroides and L. acidophilus, and L. brevis by 50 and 33% at concentration of 0.5%, respectively. But no affected in L. plantarum estimated by pH, acidity, turbidity and clear zone. And no difference was founded in leaf and root. Gas was formed from the soaking day to 5-6 days of fermentation at $20^{\circ}C$, and the accumulated gas volumes were 80 ml/100 g in control, 30 ml/100 g in 0.5% EE, 8 ml/100 g in 1.0% EE.

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Effect of sword bean (Canavalia ensiformis) fermentation filtrate on the antioxidant, anti-inflammatory, and antimicrobial activities (작두콩(Canavalia ensiformis) 발효액이 항산화, 항염증 및 항균 활성에 미치는 영향)

  • Hye-Lim Jang
    • Food Science and Preservation
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    • v.30 no.6
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    • pp.1072-1081
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    • 2023
  • In the present study, various experiments were performed to evaluate the biological activities, such as the antioxidant, anti-inflammation, and antimicrobial activities of sword bean (Canavalia ensiformis) fermentation filtrate by Lactobacillus plantarum (L. plantarum) and Lactobacillus brevis (L. brevis). Total polyphenol (TPC) and flavonoid contents (TFC) of sword bean were significantly decreased after fermentation regardless of Lactobacillus sp. (p<0.05). The DPPH radical scavenging activity of sword beans also decreased after fermentation. However, nitric oxide (NO) radical scavenging activity conspicuous increased after fermentation (p<0.001) in a treated concentration-dependent manner, and the effect for L. brevis was higher than for L. plantarum. In addition, the sword bean fermentation filtrate showed a strong inhibitory effect against Pseudomonas aeruginosa, Staphylococcus sp., and Escherichia coli. Cell cytotoxicity was not exhibited in all experimental groups (data not shown). These findings suggest that the sword bean fermentation filtrate may be used effectively in various industries due to its high anti-inflammatory and antimicrobial activities.