• Title/Summary/Keyword: L. lactis

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Effect of Citrus Fermented by Lactococcus lactis W-44 Isolated from Kimchi on Growth of Cultured Flounder, Paralichthys olivaceus (김치에서 분리한 Lactococcus lactis W-44에 의한 감귤발효물의 양식 넙치 성장에 미치는 영향)

  • Kim, Min-Soo;Moon, Sang-Wook;Lee, Young-Don;Kim, Se-Jae;Kim, Yeong-Jin;Lee, Jun-Won;Lee, Jeong-Hee;Lee, Jung-Sook;Kim, Bo-Yeon;Ahn, Jong-Seog;Ahn, Soon-Cheol
    • Korean Journal of Microbiology
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    • v.43 no.2
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    • pp.124-129
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    • 2007
  • We evaluated the use of citrus fruit fermented by lactic acid bacteria, as a feed supplement for flounder (Paralichthys olivaceus) cultivation. For the fermentation, a lactic acid bacterial strain W-44 showing antibacterial activity was isolated from kimchi. From the phylogenetic analysis based on, 16S rDNA sequence, the strain W-44 was identified as Lactococcus lactis. After the fermentation of citrus fruit with L. lactis W-44, the contents of naringenin and hesperetin, bioactive flavonoid aglycones, were increased about ten-fold and six-fold, respectively. The effects of fermented citrus fruit-based feed additives (CFBFA) were tested on the growth of flounder, Paralichthys olivaceus. There were significant differences in average total length and body weight between the experimental and control group. The growth rate of the experimental group fed with the 0.2% CFBFA-supplemented diet was increased 4.5% and 20.9% more than the control group in total length and body weight, respectively. These results suggest that the fermented citrus fruit could be used as a functional feed additive for flounder cultivation.

Growth of Lactic Acid Bacteria in Soy Milk and Flavor of Soy Yogurt (두유(豆乳)에서 젖산균의 생육(生育)과 대두(大豆)요구르트의 향미(香味))

  • Mun, Sung-Ae;Kim, Young-Bae;Ko, Young-Tae
    • Korean Journal of Food Science and Technology
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    • v.18 no.2
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    • pp.118-123
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    • 1986
  • Soy milk prepared from soy protein concentrate was fermented with Lactobacillus acidophilus, L. bulgaricus, L. casci, Streptococcus lactis or S. cremoris. Growth and acid production of each organism in soy milk and flavor of soy yogurt beverages were investigated. Volatile compounds in soy milk and soy yogurts were also determined. Among the five organisms tested, L. bulgaricus produced most amount of acid in soy milk while S. cremoris produced least amount of acid in soy mile. Sensory evaluation showed that the flavor of soy yogurt beverages was inferior to that of milk yogurt beverage and the flavor of soy yogurt beverage prepared by L. bulgaricus was better than that of other soy yogurt beverages. Soy milk fermented with L. bulgaricus was more acceptable than unfermented soy milk. Lactic fermentation reduced n-hexanal in soy milk while it produced diacetyl that was not detected in unfermented soy milk.

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Formation of Fruit Aroma Compounds from Whey by Kluyverumyces lactis (Kluyveromyces lactis에 의한 유청으로부터 과일향 성분의 생성)

  • 김소미;이형주
    • Microbiology and Biotechnology Letters
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    • v.19 no.5
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    • pp.536-541
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    • 1991
  • To enhance the productivity of fruit flavor compounds from whey by the lactose fermenting yeast, Kluyveromyces lactzs ATCC 8585 was treated with N-methyI-N'-nitro-N-nitrosoguanidine (NTG). After the NTG treatments, a mutant showing resistance to antifungal activity of geraniol, and strong fruity but low yeasty flavor was selected and named as K. lactis 450 K. Flavor compounds from 3-day culture broth were extracted with pentane-dichloromethane (2:l) and the concentrated oleoresins were analyzed by gas chromatography. The mutant strain produced more classes and larger amount of flavor compounds than the parent stlain. Tentatively identified volatile compounds from the culture of the mutant were: terpenes such as myrcenol; alcohols such as cis-3-hexenol, n-hexanol; esters such as ethyl isovalerate, cis- 3-hexenyl n-butyrate, n-amyl-n-hexanoate, phenyl ethyl n-propioate; ketones such as methyl vinyl ketones; other compounds such as vanillin, 3-methylcoumarin.

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Identification of a Prophage-encoded Abortive Infection System in Levilactobacillus brevis

  • Feyereisen, Marine;Mahony, Jennifer;O'Sullivan, Tadhg;Boer, Viktor;van Sinderen, Douwe
    • Microbiology and Biotechnology Letters
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    • v.48 no.3
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    • pp.322-327
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    • 2020
  • Abortive infection systems (Abi) are phage resistance systems that can be prophage-encoded. Here, two genes encoding an Abi system were identified on a prophage sequence contained by the chromosome of the Levilactobacillus brevis strain UCCLBBS124. This Abi system is similar to the two-component AbiL system encoded by Lactococcus lactis biovar. diacetylactis LD10-1. The UCCLBBS124 prophage-derived Abi system (designated here as AbiL124) was shown to exhibit specific activity against phages infecting L. brevis and L. lactis strains. Expression of the AbiL124 system was shown to cause reduction in the efficiency of plaquing and cell lysis delay for phages of both species.

Isolation of Lactococci Inhibiting Listeria monocytogenes from Kimchi Habitat and Its Identification by 16S rDNA Analysis (김치 서식처에서 Listeria monocytogenes를 억제하는 lactococci의 분리와 16S rDNA분석에 의한 동정)

  • 박은주;한홍의;민봉희
    • The Korean Journal of Ecology
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    • v.22 no.1
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    • pp.45-50
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    • 1999
  • A bacteriocin-producing strain was isolated from kimchi at the early stage of kimchi fermentation. It was identified as Lactococcus lactis by morphological, cultural and physiological characteristics and partial sequence of 16S rDNA. The bacteriocin from isolate had antimicrobial activity against gram positive pathogenic bacteria, such as Listeria monocytogenes. Staphylococcus aureus and several strains of lactic acid bacteria but not to gram negative bacteria, Yersinia enterocolitica. The bacteriocin was sensitive to protease, protease ⅩⅣ, a-chymotrypsin and pepsin but not to lipase, trypsin and lysozyme. The bacteriocin activity was stable at pH 2-11 and temperature of 100 for 10 min. Thus, Listeria monocytogenes could be inhibited by Lactococcus lactis at early stage of fermentation.

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Expression of Starch-degrading Genes in Escherichia Coli and Kactococcus Lactis

  • Jeong, Jong-Jin;Kim, Tea-Youn;Moon, Gi-Seong;Lee, Hyo-Jeong;Kim, Jong-Sang;Kim, Jeong -Hwan
    • Preventive Nutrition and Food Science
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    • v.3 no.1
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    • pp.98-104
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    • 1998
  • As an efffort ot construct LAB (latice acid bacteria), capable of utilizing starch as fermentation substrate without the aid of externally supplied enzymes, plasmid vectors containing the amyL($\alpha$-amylase/pullulansase gene) from Clostridium thermophydrosulfuricum, and glucoamylase cDNA from Asperigillus shirousamii were constructed and introduced itno E. coli and L. lactis. For expression in procaryotes , 1.9kb glucoamylase cDNA encoding the mature form of enzyme was PCR amplified and translationaly fused to a PCR amplified 260 bp fragment containing the promotor and secretion signals of amyl in the same reading frame. The production of $\alpha$-amylase, Apu, and glucoamlase in E. coli and L. lactis was confirmed by enzyme assay and zymography . Enzymeswere detected in both cellpellets and supernatants, indicating theworking of scretion signals in heterologous hosts. The efficiencies of secretion were varibale depending on the gene and host. The highest $\alpha$- amylase acitivity observed was 1.1 units and most activiity was detected from thecell pellets. The degree of gene expression in both hosts and the effect on the growth of hosts were examined.

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Lactic Acid Fermentation of Lupinseed Milk (루우핀 두유의 유산발효에 관한 연구)

  • Ouk Han;Tae, Won-Taik;Kim, Young-Wook;Lee, Joon-Kyoung;Lee, Cherl-Ho
    • Microbiology and Biotechnology Letters
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    • v.13 no.3
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    • pp.191-198
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    • 1985
  • Seven different strains of lactic bacteria and 13 combinations of these microorganisms were tested for their acid forming capacity on a vegetable milk made from lupinseed protein concentrate(LPC). L acidophilus, L casei, S. lactis, L. mesenteroides, mixed culture of L. acidophilus and S. thermophilus, and mixed culture of S. lactis and L. mesenteroides were selected and further tested for their growth pattern and acid forming property on lupinseed milk both untreated and partly hydrolized one with carbohydrate decomposing enzymes. The enzyme hydrolized lupinseed milk had 1.5 folds of total free sugar, 8.2 folds of fructose, 3 folds glucose, 2.3 folds maltose, compared to the untreated lupinseed milk. For the untreated lupinseed milk, L. mesenteroides was appeared to be most suitable microorganism having the maximum cell concentration of 1.0 $\times$ 10$^{9}$ $m\ell$ and the final pH 4.40 with the acidity 0.46%. For the enzyme treated lupinseed milk, mixed culture of L. acidophilus and S. thermophilus showed the best performance having 1.9$\times$10$^{9}$ $m\ell$ maximum cell number and the final pH and acidity were 3.69 and 1.13%, respectively. Lactic acid fermentation altered the physical property of lupinseed milk; by fermentation the viscosity generally increased with untreated lupinseed milk, but decreased with enzyme hydrolized one. The viscosity change and sedimentation rate of fermented milk varied with the type of lactic bacteria. The results of sensory evaluation indicated that S. lactis, L. casei, mixed culture of S. lactis and L. mesenteroides, and mixed culture of L. acidophilus and S. thermophilus, grown on enzyme hydrolized lupinseed milk, could produce acceptable lactic beverage.

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Development of a Food-Grade Integration Vector for Heterologous Gene Expression and Protein Secretion in Lactococcus lactis

  • Jeong, Do-Won;Lee, Jong-Hoon;Kim, Kyoung-Heon;Lee, Hyong-Joo
    • Journal of Microbiology and Biotechnology
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    • v.16 no.11
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    • pp.1799-1808
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    • 2006
  • A food-grade integration vector based on site-specific recombination was constructed. The 5.7-kb vector, pIMA20, contained an integrase gene and a phage attachment site originating from bacteriophage A2, with the ${\alpha}$-galactosidase gene from Lactobacillus plantarum KCTC 3104 as a selection marker. pIMA20 was also equipped with a controllable promoter of nisA ($P_{nisA}$) and a signal peptide-encoding sequence of usp45 ($SP_{usp45}$) for the production and secretion of foreign proteins. pIMA20 and its derivatives mediated site-specific integration into the attB-like site on the Lactococcus lactis NZ9800 chromosome. The vector-integrated recombinant lactococci were easily detected by the appearance of blue colonies on a medium containing $X-{\alpha}-gal$ and also by their ability to grow on a medium containing melibiose as the sole carbon source. Recombinant lactococci maintained these traits in the absence of selection pressure during 100 generations. The ${\alpha}-amylase$ gene from Bacillus licheniformis, lacking a signal peptide-encoding. sequence, was inserted downstream of $P_{nisA}\;and\;SP_{usp45}$ in pIMA20, and the plasmid was integrated into the L. lactis chromosome. ${\alpha}-Amylase$ was successfully produced and secreted by the recombinant L. lactis, controlled by the addition and concentration of nisin.

Oral Administration of Mice with Cell Extracts of Recombinant Lactococcus lactis IL1403 Expressing Mouse Receptor Activator of NF-kB Ligand (RANKL)

  • Xuan, Biao;Park, Jongbin;Lee, Geun-Shik;Kim, Eun Bae
    • Food Science of Animal Resources
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    • v.42 no.6
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    • pp.1061-1073
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    • 2022
  • Receptor activator of NF-kB ligand (RANKL) is known to play a major role in bone metabolism and the immune system, and its recombinant form has been expressed in bacterial systems for research since the last two decades. However, most of these recombinant forms are used after purification or directly using living cells. Here, there were cell extracts of recombinant Lactococcus lactis expressing mouse RANKL (mRANKL) used to evaluate its biological activity in mice. Mice were divided into three groups that were fed phosphate-buffered saline (PBS), wild-type L. lactis IL1403 (WT_CE), and recombinant L. lactis expressing mRANKL (mRANKL_CE). The small intestinal transcriptome and fecal microbiome were then profiled. The biological activity of mRANKL_CE was confirmed by studying RANK-RANKL signaling in vitro and in vivo. For small intestinal transcriptome, differentially expressed genes (DEGs) were identified in the mRANKL_CE group, and no DEGs were found in the WT_CE group. In the PBS vs. mRANKL_CE gene enrichment analysis, upregulated genes were enriched for heat shock protein binding, regulation of bone resorption, and calcium ion binding. In the gut microbiome analysis, there were no critical changes among the three groups. However, Lactobacillus and Sphingomonas were more abundant in the mRANKL_CE group than in the other two groups. Our results indicate that cell extracts of mRANKL_CE can play an effective role without a significant impact on the intestine. This strategy may be useful for the development of protein drugs.

Reduction of Allergic Potential of Meju by Three Step Fermentation (3단계 발효에 의한 콩 알레르기성의 저하)

  • Ryu, Chung-Ho;Lee, Jeong-Ok;Son, Dae-Yeul
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.41 no.8
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    • pp.1066-1071
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    • 2012
  • In this study we investigated the change in antigenicity and allergenicity of Meju, a traditional Korean soybean product, by fermentation via 3 different microorganisms. The steamed soybeans were fermented with Lactococcus lactis subsp. lactis and/or Aspergillus oryzae and/or Bacillus subtilis. Proteins in soybean were degraded after fermentation. Antigenicity or allergenicity were analysed by immunoblotting and ELISA using soybean protein-specific polyclonal antibodies or soybean allergic patient sera. The best degradation was achieved by three step fermentation using nisin-producing Lactococcus lactis subsp. lactis IFO12007, A. oryzae and B. subtilis. Allergenicity and antigenicity were also starkly reduced after three step fermentation. The three-step fermentation method developed in our lab suggests an excellent alternative to reduce the allergenicity of soybeans.