• Title/Summary/Keyword: Kimchi fermentation

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The Effect of Red Ginseng and Black Raspberry fermented by Lactobacillus acidophilus C in High Fat Diet-fed Mice (김치로부터 분리한 Lactobacillus acidophilus C로 발효한 홍삼 및 복분자 발효물의 비만예방 효과)

  • Moon, Hye-Jung;Lee, Joo-Hee;Lee, Sang-Cheon;Lee, Chang-Hyun;Choi, Kyung-Min;Cha, Jeong-Dan;Hwang, Seung-Mi;Ko, Eun-Sil;Lee, Min-Jung;Jang, Ji-Eun;Choi, Hye-Ran;Park, Jong-Hyuk
    • Journal of Dairy Science and Biotechnology
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    • v.33 no.2
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    • pp.159-166
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    • 2015
  • We investigated the anti-obesity effects of Lactobacillus acidophilus C isolated from kimchi and red ginseng and black raspberry mixture fermented by this strain. Experimental samples were prepared with 10% skim milk, 1% red ginseng extract and 1% immature black raspberry powder and without red ginseng extract and black raspberry fermented by this strain at $37^{\circ}C$ for 24 hour. Male C57BL/6J mice were randomly divided into 4 groups (a normal diet group (N), a high-fat diet group (HF), a high fat diet with L. acidophilus C (C), and a high fat diet with fermented mixture (CEx)) and were orally administered daily for 6 weeks at concentration of 2,000 mg/kg body weight. The results showed that weight gain, weight of periepididymal fat and perirenal fat, adipocyte size, lipid accumulation in liver, serum glucose concentration, serum GOT and GPT concentration and serum leptin were decreased and concentration of HDL-cholesterol and serum adiponectin were increased compared to HF group. These results suggest that fermented mixture (CEx) might be helpful in improvement of high-fat diet-induced obesity than only L. acidophilus C intake.

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Chemosensitization of Fusarium graminearum to Chemical Fungicides Using Cyclic Lipopeptides Produced by Bacillus amyloliquefaciens Strain JCK-12

  • Kim, K.;Lee, Y.;Ha, A.;Kim, Ji-In;Park, A.R.;Yu, N.H.;Son, H.;Choi, G.J.;Park, H.W.;Lee, C.W.;Lee, T.;Lee, Y.W.;Kim, J.C.
    • 한국균학회소식:학술대회논문집
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    • 2018.05a
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    • pp.44-44
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    • 2018
  • Fusarium head blight (FHB) caused by infection with Fusarium graminearum leads to enormous losses to crop growers, and may contaminate grains with a number of Fusarium mycotoxins that pose serious risks to human and animal health. Antagonistic bacteria that are used to prevent FHB offer attractive alternatives or supplements to synthetic fungicides for controlling FHB without the negative effects of chemical management. Out of 500 bacterial strains isolated from soil, Bacillus amyloliquefaciens JCK-12 showed strong antifungal activity and was considered a potential source for control strategies to reduce FHB. B. amyloliquefaciens JCK-12 produces several cyclic lipopeptides (CLPs) including iturin A, fengycin, and surfactin. Iturin A inhibits spore germination of F. graminearum. Fengycin or surfactin alone did not display any inhibitory activity against spore germination at concentrations less than 30 ug/ml, but a mixture of iturin A, fengycin, and surfactin showed a remarkable synergistic inhibitory effect on F. graminearum spore germination. The fermentation broth and formulation of B. amyloliquefaciens JCK-12 strain reduced the disease incidence of FHB in wheat. Furthermore, co-application of B. amyloliquefaciens JCK-12 and chemical fungicides resulted in synergistic in vitro antifungal effects and significant disease control efficacy against FHB under greenhouse and field conditions, suggesting that B. amyloliquefaciens JCK-12 has a strong chemosensitizing effect. The synergistic antifungal effect of B. amyloliquefaciens JCK-12 and chemical fungicides in combination may result from the cell wall damage and altered cell membrane permeability in the phytopathogenic fungi caused by the CLP mixtures and subsequent increased sensitivity of F. graminearum to fungicides. In addition, B. amyloliquefaciens JCK-12 showed the potential to reduce trichothecenes mycotoxin production. The results of this study indicate that B. amyloliquefaciens JCK-12 could be used as an available biocontrol agent or as a chemosensitizer to chemical fungicides for controlling FHB disease and as a strategy for preventing the contamination of harvested crops with mycotoxins.

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Antimicrobial and ACE Inhibitory Activities of Citrus unshiu Fermented with Lactic Acid Bacteria (감귤 유산균 발효물의 항균 활성과 ACE 저해능)

  • Choi, So-Yeon;Kim, Si-Kyung;Youn, Un-Young;Kang, Dae-Ook;Choi, Nack-Shick;Mun, Mi-Sun;Lee, Seung-Cheol
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.44 no.7
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    • pp.1084-1089
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    • 2015
  • To develop high quality citrus products, seven lactic acid bacteria were innoculated onto ground citrus (Citrus unshiu) and cultured for 10 days. On culture days 0, 3, 5, 7, and 10, citrus ferments were withdrawn, and their antimicrobial and angiotensin-I converting enzyme (ACE) inhibitory activities were evaluated. Citrus ferments innoculated with CL-1 and CL-2, which were isolated from kimchi, showed relatively higher antimicrobial activities against food poisoning bacteria. Citrus ferments innoculated with CL-1 and CL-2 also showed stronger ACE inhibitory activities than other ferments. CL-1 and CL-2 showed more than 99% homogeny with Pediococcus acidilactici and Lactobacillus sakei, respectively, by 16S rRNA gene analysis. These results indicate that fermentation with P. acidilactici and L. sakei might contribute to the increased antimicrobial and anti-hypertensive activities of citrus.

Improvement of Antioxidative Activity by Enzyme Treatment and Lactic Acid Bacteria Cultivation in Black Garlic (효소 처리와 유산균 배양에 의한 흑마늘의 항산화 활성 향상)

  • Chae, Hee-Jeong;Park, Dong-Il;Lee, Sung-Chul;Oh, Chul-Hwan;Oh, Nam-Soon;Kim, Dong-Chung;Won, Sun-Im;In, Man-Jin
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.40 no.5
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    • pp.660-664
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    • 2011
  • We investigated the improvement of the antioxidative activity of black garlic with enzymatic treatment and lactic acid bacteria cultivation conditions. Celluclast, a commercially-available polysaccharide hydrolyase, was selected to obtain high total polyphenol content in a black garlic suspension. A lactic acid bacterial strain showing fast growth and high acid production in a black garlic suspension was isolated from Kimchi. This strain was identified as Lactobacillus pentosus 310-7. Enzymatically hydrolyzed black garlic was fermented using the L. pentosus 310-7 strain at $30^{\circ}C$ for 15 hr. The pH and titratable acidity achieved were 4.24 and 0.35%, respectively, after 15 hr fermentation. The viable cell population of L. pentosus 310-7 slowly increased to 7.54 log CFU/g. The polyphenolic compound content, known antioxidants, in black garlic was enhanced with Celluclast treatment and L. pentosus 310-7 cultivation. Total polyphenolic compounds were increased to approximately 60% of the initial concentration, and electron donating ability was also improved, from 39.8 to 65.9%.

Characteristics of ${\beta}-Galactosidase$ Produced from Lactobacillus acidophilus (Lactobacillus acidophilus가 생성하는 ${\beta}-Galactosidase$의 성질)

  • Kim, Soon-Dong;Jang, Kyung-Sook;Oh, Young-Ae;Kim, Mee-Jung;Kang, Meung-Su;Lee, Meung-Suk;Kim, Mee-Hyang
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.21 no.1
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    • pp.54-59
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    • 1992
  • The characteristics of endogenous and exogenous ${\beta}-galactosidase\;({\beta}-Galase)$ produced from L. acidophilus were investigated as one of the serial studies on the fermentation of Chinese cabbage kimchi using L. acidophilus. Apparent molecular weight of endogenous and exogenous of the ${\beta}-Galase$ were investigated to be 550,000 and 740,000 daltons by the method of gel filtration and Km values of the both enzymes were 1.67mg/ml, 1.33mg/ml and $V_{max}$ were $8.5\;{\mu}\;mol/mg/30min.$, $2.65\;{\mu}\;mol/ml/30min.$, respectively. The optimum pH of the enzymes were 7 and 8, respectively. The optimum temperatures and salt concentrations of the both enzyme were the same and appeared to $30^{\circ}C$and$4{\sim}5%$, respectively. The activities of the endogenous and exogenous ${\beta}-Galase$ were decreased by increasing of temperature from $60^{\circ}C$to$90^{\circ}C$ and the decreasing rate of the enzyme activities on the processing of the heating times showed high at first 2 minutes of heating.

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Nematicidal Activity of Kojic Acid Produced by Aspergillus oryzae against Meloidogyne incognita

  • Kim, Tae Yoon;Jang, Ja Yeong;Jeon, Sun Jeong;Lee, Hye Won;Bae, Chang-Hwan;Yeo, Joo Hong;Lee, Hyang Burm;Kim, In Seon;Park, Hae Woong;Kim, Jin-Cheol
    • Journal of Microbiology and Biotechnology
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    • v.26 no.8
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    • pp.1383-1391
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    • 2016
  • The fungal strain EML-DML3PNa1 isolated from leaf of white dogwood (Cornus alba L.) showed strong nematicidal activity with juvenile mortality of 87.6% at a concentration of 20% fermentation broth filtrate at 3 days after treatment. The active fungal strain was identified as Aspergillus oryzae, which belongs to section Flavi, based on the morphological characteristics and sequence analysis of the ITS rDNA, calmodulin (CaM), and β-tubulin (BenA) genes. The strain reduced the pH value to 5.62 after 7 days of incubation. Organic acid analysis revealed the presence of citric acid (515.0 mg/kg), malic acid (506.6 mg/kg), and fumaric acid (21.7 mg/kg). The three organic acids showed moderate nematicidal activities, but the mixture of citric acid, malic acid, and fumaric acid did not exhibit the full nematicidal activity of the culture filtrate of EML- DML3PNa1. Bioassay-guided fractionation coupled with 1H- and 13C-NMR and EI-MS analyses led to identification of kojic acid as the major nematicidal metabolite. Kojic acid exhibited dose-dependent mortality and inhibited the hatchability of M. incognita, showing EC50 values of 195.2 μg/ml and 238.3 μg/ml, respectively, at 72 h post-exposure. These results suggest that A. oryzae EML-DML3PNa1 and kojic acid have potential as a biological control agent against M. incognita.

Culture Conditions of Garlic Resistant Lactic Acid Bacteria for Feed Additives (사료첨가용 생균제 개발을 위한 마늘 내성 유산균의 배양 조건)

  • Kim, Yu-Jin;Jang, Seo-Jung;Park, Jung-Min;Kim, Chang-Uk;Park, Young-Seo
    • Food Engineering Progress
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    • v.14 no.1
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    • pp.65-74
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    • 2010
  • Culture conditions of L. plantarum TJ-LP-002, the garlic resistant strain isolated from pakimchi (green onion kimchi), were investigated for the use of feed additives. Acetic acid, citric acid, lactic acid, and tartaric acid were detected in the culture supernatant, and especially the concentrations of lactic acid and acetic acid significantly increased during cultivation. The antimicrobial activity of L. plantarum TJ-LP-002 was not affected by proteases, calatase or cellulase, which showed that the antimicrobial activity might be due to the production of acids rather than proteinaceous antimicrobial substances. L. plantarum TJ-LP-002 was resistant to neomycin sulfate, spectinomycin dihydrochloride, and lincomycin hydrochloride, sensitive to streptomycin sulfate, and intermediate resistant to ampicillin trihydrate, chloramphenicol, erythromycin, tetracycline hydrochloride, and kanamycin sulfate. The optimum initial pH of medium, fermentation temperature and time for the cell growth and antibacterial activity were pH 7.0, 30${^{\circ}C}$ and 24hr, respectively. The optimal composition of culture medium for the cell growth and antimicrobial activity was 3%(w/v) glucose as a carbon source, 3%(w/v) yeast extract as a nitrogen source, and manganese sulfate and ammonium citrate as inorganic salts. The combinatorial supplementation of these inorganic salts, rather than sole addition as an inorganic salt, resulted in better antibacterial activity.

Antioxidation and Anti-photoaging Effects of White Taraxacum Coreanum Extract by Lactobacillus plantarum (Lactobacillus plantarum에 의한 흰 민들레 발효물의 항산화 및 광노화 억제 효과)

  • Hong, Ji Woo;Park, Ha Young;Kim, Jun Hee;Yeom, Suh Hee;Kim, Jin Woo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.22 no.4
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    • pp.554-562
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    • 2021
  • Lactobacillus plantarum SM4, a strain producing β-glucosidase, was isolated from kimchi and fermented with white Taraxacum coreanum to enhance the production of bioactive compounds. The total polyphenol content(TPC), total flavonoid content(TFC), radical scavenging activity(RSA), tyrosinase inhibitory activities(TIA), and collagenase inhibitory activities(CIA) were measured to evaluate the skin whitening and anti-wrinkle effects of the fermented product. The TPC of fermented white T. coreanum was 41.8±0.26 mg GAE/g DW, which was approximately two times higher than the hot-water extraction of 21.4±0.67 mg GAE/g DW. RSA, an indicator of antioxidant activity, was 65.6±4.7% in fermentation, which is four times higher than that of the hot-water extract. TAI and CAI, which are indicators of the whitening and anti-wrinkle effects, were 87.9±4.73% and 66.7±3.48%, respectively, which were 2.4 and 1.5 times higher than those of hot-water extraction. When comparing the UVA(320 nm) protection effects of fermented and hot-water extraction, the fermented white T. coreanum showed higher protection with an absorption rate of 64.7% and 15.2%, respectively. The white T. coreanum fermented product showed higher bioactive properties and improved skin whitening, anti-wrinkle, and UV protection effects through the production of β-glucosidase from L. plantarum SM4.

Increased Antioxidative Activity of Fermented Ligusticum striatum Makino Ethanol Extract by Bioconversion using Lactobacillus plantarum BHN-LAB 129 (Lactobacillus plantarum BHN-LAB 129의 생물전환공정을 통한 천궁 발효 추출물의 항산화 활성 증대)

  • Kim, Byung-Hyuk;Jeong, Su Jin;Jang, Jong-Ok;Lee, Jun-Hyeong;Park, YeEun;Kim, Jung-Gyu;Kwon, Gi-Seok;Hwang, Hak-Soo;Lee, Jung-Bok
    • Journal of Life Science
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    • v.29 no.8
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    • pp.846-853
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    • 2019
  • Phytochemical compounds of Ligusticum striatum Makino are used as traditional medicinal herbs in Asia. These compounds are reported to have pain relief and antioxidant activities in gynecological and brain diseases. In this study, we investigated the antioxidant effects of Ligusticum fermented ethanol extract from Lactobacillus plantarum BHN-LAB 129 isolated from Kimchi, a Korean traditional food. The total polyphenol and total flavonoid contents increased by about 116.2% and 281.0% respectively, in the fermented Ligusticum extract as compared with those in the nonfermented Ligusticum ethanol extract. Superoxide dismutase-like (SOD), DPPH radical scavenging, ABTS radical scavenging, and reducing power activities increased by around 139.9%, 199.6%, 301.0%, and 137.1%, respectively, in the fermented Ligusticum ethanol extract as compared with these parameters in the nonfermented Ligusticum ethanol extract, respectively. In conclusion, the fermented Ligusticum ethanol extract with L. plantarum BHN-LAB 129 was effective in increasing the antioxidant effects. The bioconversion process in this study points to the potential of using Ligusticum to produce phytochemical-enriched natural antioxidant agents with high added value. The findings may prove useful in the development of improved foods and cosmetic materials.

In vitro investigation of food effects on human gut microbiota (In vitro 상에서 식품이 장내미생물에 미치는 영향)

  • Jeon, Dabin;Singh, Vineet;Unno, Tatsuya
    • Journal of Applied Biological Chemistry
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    • v.64 no.1
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    • pp.75-81
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    • 2021
  • Recent gut microbiota studies have revealed the important roles of gut microbiota for our health. Increasing numbers of health functional foods have been developed every year. Development of functional food often includes ex- and in-vivo experiment to verify the beneficial effects of the functional food. To investigate effects of functional food on gut microbiota, animal models were often conducted. Beneficial effects of food can be evaluated based on how gut microbiota was shifted by food, which results in either increase in beneficial bacteria, decrease in potentially pathogenic bacteria or both. As animal experiments are generally time-consuming and laborious, we investigate how well in-vitro investigation of fecal microbiota may reflect dietary health benefits. Here, we tested 15 kinds of diets using two human subjects' fecal materials. Our results showed varying gut microbiota shifts according to diets, which suggested generally known beneficial diets (i.e. Kimchi, Chunggukjang) increased Lactobacillus and Bifidobacterium. Therefore, we suggest that in vitro fecal microbiota analysis could be used to evaluate beneficial effects of diets. Moreover, this method may be ideal to establish personalized diet.