• Title/Summary/Keyword: Lactobacillus Fermentation

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Production of Probiotic Mango Juice by Fermentation of Lactic Acid Bacteria (유산균 발효에 의한 프로바이틱 망고 주스의 생산)

  • Reddy, Lebaka Veeranjaneya;Min, Ju-Hee;Wee, Young-Jung
    • Microbiology and Biotechnology Letters
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    • v.43 no.2
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    • pp.120-125
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    • 2015
  • In this study, the probiotification of mango juice was carried out by lactic acid bacteria fermentation. Mango juice fermentation was performed at 30℃ for 72 h under micro-aerophilic conditions. The microbial population, pH, titrable acidity, sugar, and organic acid metabolism were measured during the fermentation period and the viability of the strains was determined under the storage conditions at 4℃ for 4 weeks. The lactic acid bacteria reduced the pH to as low as 3.2 from 4.5 within 72 h of fermentation. The substrate concentration was reduced to 5.8% (w/v) from 12% (w/v). Lactobacillus plantarum exhibited the fastest utilization of sugar and reduction of pH in the mango juice when compared to the other strains used. The viability of the cells was maintained at 1.0 × 107 CFU/ml throughout the storage period. From this investigation, it can be concluded that mango juice is suitable for the production of probiotic beverage.

Properties of Lactic Acid Bacteria That Cause Decrease in Post-Fermentation to Apply Product (후산 발효 적합 균주 선발 및 특성)

  • Sohn, Ji Yang;Kim, Sae Hun
    • Journal of Dairy Science and Biotechnology
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    • v.31 no.1
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    • pp.51-58
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    • 2013
  • Emerging studies suggest that vegetables or fruit juices deemed to be potential alternative base medium for lactic acid bacteria fermentation. Until now, limited studies have been carried out to evaluate such applications. Thus, the objective of present study is that lactic acid bacteria were evaluated for their viability at low pH, growth during storage at low temperature, and $CO_2$ formation. Furthermore, the effects of grapefruit extract with respect to cell viability, sensory ability, and organic acid production were evaluated for these strains. The probiotic properties of the strains, including acid tolerance, bile tolerance, and adhesion to human intestinal epithelial cells (HT-29 cells), prebiotic characteristics, and safety features were examined. All strains survived in MRS medium broth adjusted to pH 3.8, at $10^{\circ}C$ for 6 days, and did not produce $CO_2$ to check post fermentation. The medium of grapefruit extract fermentation by Lactobacillus plantarum CJIH 203 resulted in maximal viable counts, compared with other strains, and the extract subsequently tasted sour due to the presence of lactic acid. Lactobacillus plantarum CJIH203 was highly resistant to artificial gastric juice and intestinal juice, while Lactococcus lactis SJ09 strongly adhered to HT-29 cells. Tagatose showed the greatest ability to enhance the growth of L. plantarum SJ21, relative to the other strains. All strains were verified by safety tests such as hemolysis, gelatin hydration, and urea degradation. Therefore, these strains could be promising candidates for use in reducing excessive post-fermentation and functional products.

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Fermentation Characteristics and Microbial Diversity of Tropical Grass-legumes Silages

  • Ridwan, Roni;Rusmana, Iman;Widyastuti, Yantyati;Wiryawan, Komang G.;Prasetya, Bambang;Sakamoto, Mitsuo;Ohkuma, Moriya
    • Asian-Australasian Journal of Animal Sciences
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    • v.28 no.4
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    • pp.511-518
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    • 2015
  • Calliandra calothyrsus preserved in silage is an alternative method for improving the crude protein content of feeds for sustainable ruminant production. The aim of this research was to evaluate the quality of silage which contained different levels of C. calothyrsus by examining the fermentation characteristics and microbial diversity. Silage was made in a completely randomized design consisting of five treatments with three replications i.e.: R0, Pennisetum purpureum 100%; R1, P. purpureum 75%+C. calothyrsus 25%;, R2, P. purpureum 50%+C. calothyrsus 50%; R3, P. purpureum 25%+C. calothyrsus 75%; and R4, C. calothyrsus 100%. All silages were prepared using plastic jar silos (600 g) and incubated at room temperature for 30 days. Silages were analyzed for fermentation characteristics and microbial diversity. Increased levels of C. calothyrsus in silage had a significant effect (p<0.01) on the fermentation characteristics. The microbial diversity index decreased and activity was inhibited with increasing levels of C. calothyrsus. The microbial community indicated that there was a population of Lactobacillus plantarum, L. casei, L. brevis, Lactococcus lactis, Chryseobacterium sp., and uncultured bacteria. The result confirmed that silage with a combination of grass and C. calothyrsus had good fermentation characteristics and microbial communities were dominated by L. plantarum.

Enhancement of the Antioxidant and Anti-inflammatory Activity of Hizikia fusiforme Water Extract by Lactic Acid Bacteria Fermentation (유산균 발효에 의한 톳 (Hizikia fusiforme) 추출액의 항산화 및 항염증 활성 증가)

  • Song, Ho-Su;Eom, Sung-Hwan;Kang, Young-Mi;Choi, Jong-Duck;Kim, Young-Mog
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.44 no.2
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    • pp.111-117
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    • 2011
  • We previously reported that fermentation by Lactobacillus brevis LB-20 isolated from Kimchi resulted in improvement of the sensory quality of Hizikia fusiforme water extract. This study was conducted to evaluate the possible application of lactic acid bacteria fermentation to improve the functional qualities of H. fusiforme extract. L. brevis LB-20 was inoculated and cultivated in H. fusiforme extract. The antioxidant and anti-inflammatory activities of extract were then assayed both before and following fermentation for two days. Antioxidant activity was determined by assaying levels of radical scavenging activity against 1,1-diphenyl-2-picrylhydrazyl (DPPH), hydroxyl, superoxide, and alkyl radical. Lactic acid bacterial fermentation of H. fusiforme extract resulted in enhancement of antioxidant activity. The greatest enhancement of antioxidant activity was seen in the hydroxyl radical scavenging assay that incorporated 0.5 mg/mL of raw and fermented H. fusiforme extract. Fermented extract exhibited greater (21.95%) inhibition of nitric oxide synthesis than did raw extract (14.66%) at a concentration of 1 mg/mL. The fermented extract exerted its potent anti-inflammatory activity via attenuation of expression of inflammation-related cytokine proteins (TNF-${\alpha}$ and iNOS).

Biochemical Studies on Korean Fermented Foods. (IX) Variation of Vitamin $B_{12}$ during the Kimchi Fermentation Period (한국 발효식품에 대한 생물화학적 연구 (제9보) 침채류의 발효에 따르는 $VitaminB_{12}$의 변화에 대하여)

  • Lee, In-Jae;Haw, Kum;Kim, Sung-Ikk
    • YAKHAK HOEJI
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    • v.4 no.1
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    • pp.53-55
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    • 1959
  • In order to confirm on production of vitamin $B_{12}$ during the kimchi fermentation period, the variation of its content is studied in this paper As a sample of kimchi for this fermentation study due to the seasonal condition, nabakkimchi which is aseasonal one in early spring, is prepared by author. The content of vitamin $B_{12}$ is estimated by the microbiological assay method using lactobacillus leichmannii A Tee 7830. Details for assay are indicated in the original part. And the pseudo-vitamin $B_{12}$ substances as thymidine which is active to the growth of lactobacillus leichmannii, are eliminated by the alkali treatment method of sample solution, According to the results shown in table 2 and 3 and figures 1 to 4, the following conclusions are summerized; 1. Vitamin $B_{12}$ produced during the fermentation period of kimchi. And the content of this vitamin during its optimum fermentation period, is much higher content compared with the theoretically calculated amount from its materials, This has been confirmed at the repeated experiment. The trend of variation during its period is indicated at the figures. 2. The sterilized kimchi inhibited the fermentation by sterilization at the preparation, did not increased its content showing only its theoretically calculated amount.

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Fermentation characteristics, chemical composition and microbial community of tropical forage silage under different temperatures

  • Li, Dongxia;Ni, Kuikui;Zhang, Yingchao;Lin, Yanli;Yang, Fuyu
    • Asian-Australasian Journal of Animal Sciences
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    • v.32 no.5
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    • pp.665-674
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    • 2019
  • Objective: In tropical regions, as in temperate regions where seasonality of forage production occurs, well-preserved forage is necessary for animal production during periods of forage shortage. However, the unique climate conditions (hot and humid) and forage characteristics (high moisture content and low soluble carbohydrate) in the tropics make forage preservation more difficult. The current study used natural ensiling of tropical forage as a model to evaluate silage characteristics under different temperatures ($28^{\circ}C$ and $40^{\circ}C$). Methods: Four tropical forages (king grass, paspalum, white popinac, and stylo) were ensiled under different temperatures ($28^{\circ}C$ and $40^{\circ}C$). After ensiling for 30 and 60 days, samples were collected to examine the fermentation quality, chemical composition and microbial community. Results: High concentrations of acetic acid (ranging from 7.8 to 38.5 g/kg dry matter [DM]) were detected in silages of king grass, paspalum and stylo with relatively low DM (ranging from 23.9% to 30.8% fresh material [FM]) content, acetic acid production was promoted with increased temperature and prolonged ensiling. Small concentrations of organic acid (ranging from 0.3 to 3.1 g/kg DM) were detected in silage of white popinac with high DM content (50.8% FM). The microbial diversity analysis indicated that Cyanobacteria originally dominated the bacterial community for these four tropical forages and was replaced by Lactobacillus and Enterobacter after ensiling. Conclusion: The results suggested that forage silages under tropical climate conditions showed enhanced acetate fermentation, while high DM materials showed limited fermentation. Lactobacillus and Enterobacter were the most probable genera responsible for tropical silage fermentation.

Selection of indigenous starter culture for safety and its effect on reduction of biogenic amine content in Moo som

  • Tangwatcharin, Pussadee;Nithisantawakhup, Jiraroj;Sorapukdee, Supaluk
    • Asian-Australasian Journal of Animal Sciences
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    • v.32 no.10
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    • pp.1580-1590
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    • 2019
  • Objective: The aims of this study were to select one strain of Lactobacillus plantarum (L. plantarum) for a potential indigenous safe starter culture with low level antibiotic resistant and low biogenic amine production and evaluate its effect on biogenic amines reduction in Moo som. Methods: Three strains of indigenous L. plantarum starter culture (KL101, KL102, and KL103) were selected based on their safety including antibiotic resistance and decarboxylase activity, and fermentation property as compared with a commercial starter culture (L. plantarum TISIR543). Subsequently, the effect of the selected indigenous safe starter culture on biogenic amines formation during Moo som fermentation was studied. Results: KL102 and TISIR 543 were susceptible to penicillin G, tetracycline, chloramphenicol, erythromycin, gentamycin, streptomycin, vancomycin, ciprofloxacin and trimethoprim (MIC90 ranging from 0.25 to $4{\mu}g/mL$). All strains were negative amino acid-decarboxylase for lysis of biogenic amines in screening medium. For fermentation in Moo som broth, a relatively high maximum growth rate of KL102 and TISIR543 resulted in a generation time than in the other strains (p<0.05). These strain counts were constant during the end of fermentation. Similarly, KL102 or TISIR543 addition supported increases of lactic acid bacterial count and total acidity in Moo som fermentation. For biogenic amine reduction, tyramine, putrescine, histamine and spermine contents in Moo som decreased significantly by the addition KL102 during 1 d of fermentation (p<0.05). In final product, histamine, spermine and tryptamine contents in Moo som inoculated with KL102 were lower amount those with TISIR543 (p<0.05). Conclusion: KL102 was a suitable starter culture to reduce the biogenic amine formation in Moo som.

Fermentation Properties of the Mixed Yogurt Prepared with Bovine Milk and Soybean Milk (우유와 두유를 혼합한 요구르트의 발효 특성)

  • Bae, Hyoung-Churl;Nam, Myoung-Soo
    • Food Science of Animal Resources
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    • v.25 no.4
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    • pp.483-493
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    • 2005
  • This experiment was carried out to examine the fermentation properties of yogurt prepared with bovine milk and soybean milk at the mixed ratios of 3:1, 2:1, 1:1, 1:2 and 1:3. The effect of bovine milk and soybean milk on promoting the fermentation was higher un pH was $3.75\~4.16$ when Lactobacillus salivarius ssp. salivarius CNU27, lactic culture 1(Lactobacillus delbrueckii ssp. bulgaricus(LB12)), Streptococcus salivarius ssp. thermophilus (ST36) and Lactobacillus acidophilus KCTC3150 were used. Titratable acidity was the highest when lactic culture 1[Lactobacillus delbrueckii ssp. bulgaricus(LB12), Streptococcus salivarius ssp. thermophilus(ST36)] was mea and the mixed ratio of bovine milk and soybean milk was 2:1. The average viable counts of lactic acid bacteria was the highest level of $2.17\times10^9$ cfu/ml when Lactobacillus salivarius ssp. salivarius CNU27 was used, and the mixed ratio of bovine milk and soybean milk was 1:3. the highest lactic acid production was 412.52mM when lactic culture 1[Lactobacillus delbrueckii ssp. bulgaricus (LB12), Streptococcus salivarius ssp. thermophilus (ST36)] was used, and the mixed ratio of bovine milk and soybean milk was 1:1. The production of acetic acid was the highest and the concentration was 394.01mM when lactic culture 2(Bifidobacterium longum, Lactobacillus acidophilus, Streptococcus salivarius ssp. thermophilus) was used and the mixed ratio of bovine milk and soy bean milk was 3:1. Tn the carbohydrate hydrolysis, stachyose was hydrolyzed $53.92\%$ as compared with the control when Lactobacillus salivarius subsp salivarius CNU27 was used, and the mixed ratio of bovine milk and soy bean milk was 1:3. The highest viscosity of yogurt was $1,300\~1,660$ cP when the mixed ratio of bovine milk and soybean milk was 1:3. The overall acceptability, $4.17\pm0.69$, was the highest when Lactobacillus acidophilus KCTC3150 was used and when the mixed ratio of bovine milk and soybean milk was 2:1.

Optimization of Bread Fermentation with Lactic Acid Bactria & Yeast Isolated from Kimchi (김치로부터 분리한 유산균과 효모 혼합 발효액의 제빵 최적화)

  • 신언환;정성제
    • Culinary science and hospitality research
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    • v.9 no.3
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    • pp.130-140
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    • 2003
  • The studies were carried out to optimize a new starter for bread fermentation. Two strains of lactic acid bacteria and yeast were isolated from Kimchi. These strains showed good condition for quality bread fermented. The strains identified as Leuconostoc mesenteroides, Lactobacillus brevis, Saccharomyces fermentati and Saccharomyces cerevisiae. The mixed culture of four strains was due to the synergistic effect by interaction of these strains.

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Nutraceutical Properties of Dioscorea opposita Thunb. (Yam) Fermented by Lactobacillus bulgaricus and Streptococcus thermophilus

  • Jeon, Byung Ju;Ko, Eun Jung;Kwak, Hae-Soo
    • Journal of Dairy Science and Biotechnology
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    • v.30 no.2
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    • pp.69-74
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    • 2012
  • This study was performed to determine by the ability of the mixed culture of Lactobacillus bulgaricus and Streptococcus thermophilus to ferment Dioscorea opposita Thunb. (yam) and to evaluate the nutraceutical value of fermented yam. The titratable acidity (TA) value increased from 2 to 6% with increased concentrations in both raw yam and extracted lactic acid bacteria (LAB) fermented yam (LFY). The viable cell counts and the allantoin and diosgenin contents were higher in raw LFY at large concentrations (6%) than in extracted LFY samples at all fermentation periods up to 32 h. Based on these data, it confirmed that raw yam fermented by the combination culture of L. bulgaricus and S. thermophilus for various fermentation periods favors the symbiotic growth of LAB and results in higher nutraceutical content.

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