• Title/Summary/Keyword: Weissella confusa

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Development of an Environmental Friend Additive Using Antibacterial Natural Product for Reducing Enteric Rumen Methane Emission (항균활성 천연물질을 이용한 반추위 메탄저감용 친환경 첨가제 개발)

  • Lee, A-Leum;Yang, Jinho;Cho, Sang-Buem;Na, Chong-Sam;Shim, Kwan-Seob;Kim, Young-Hoon;Bae, Gui-Seck;Chang, Moon-Baek;Choi, Bitna;Shin, Su-Jin;Choi, Nag-Jin
    • Korean Journal of Organic Agriculture
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    • v.22 no.3
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    • pp.491-502
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    • 2014
  • The present study was conducted to investigate effective starter culture to improve biological activity of Asarum sieboldii. Antibacterial activity, antioxidant activity and reduction of enteric rumen methane production were used as criterions for biological activity. Ground A. sieboldii was added in MRS broth at 10% (w/v) and fermented by different starter cultures. Weissella confusa NJ28, Weissella cibaria NJ33, Lactobacillus curvatus NJ40, Lactobacillus brevis NJ42, Lactobacillus plantarum NJ45 and Lactobacillus sakei NJ48 were used for starter culture strains. Each starter culture was inoculated with 1% (v/v) ratio and fermentation was performed at $30^{\circ}C$ with agitation (150 rpm) for 48 h. MRS broth for the control was employed without starter culture. Then the fermentation growth was dried and extracted using ethyl alcohol. The growth of starter culture was detected at NJ40, NJ42, NJ45 and NJ48. And the highest cell growth was found in NJ40. Antibacterial activity against to Staphylococcus aureus, Listeria monocytogens, Mannheimia haemolytica and Salmonella gallinarum were observed in the extract fermented by NJ40 and NJ45. All treatments showed antioxidant activities, however, there were no significant differences (p>0.05). In in vitro rumen fermentation, negative control (NC) and positive control (PC) were assigned to without extract and with non-fermented A. sieboldii extract. Significant suppression of gas productions were detected in positive control and treatments compared to negative control (p<0.05). However, total volatile fatty acid production was not suppressed. Significant methane reduction per total volatile fatty acid productions were found in positive control and NJ45 treatment (p<0.05). The present study suggested a fermentation of A. sieboldii using NJ45 strain could improve its biological activity and make possible for its use in bio additive for enteric rumen methane mitigation without suppression of animal productivity.

Effect of Low Salt Concentrations on Microbial Changes During Kimchi Fermentation Monitored by PCR-DGGE and Their Sensory Acceptance

  • Ahmadsah, Lenny S. F.;Min, Sung-Gi;Han, Seon-Kyeong;Hong, Yeun;Kim, Hae-Yeong
    • Journal of Microbiology and Biotechnology
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    • v.25 no.12
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    • pp.2049-2057
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    • 2015
  • Various salt concentrations (1.0%, 1.3%, 1.6%, 1.9%, and 2.1% labeled as sample A, B, C, D, and E, respectively) were investigated for microbial diversity, identification of Lactic Acid Bacteria (LAB) in salted kimchi cabbage, prepared under laboratory conditions. These samples were stored at 4°C for 5 weeks in proper aluminum-metalized pouch packaging with calcium hydroxide gas absorber. A culture-independent method known as polymerase chain reaction - denaturing gradient gel electrophoresis was carried out to identify LAB distributions among various salt concentration samples that had identified 2 Weissella (W. confusa and W. soli), 1 Lactobacillus (Lb. sakei), and 3 Leuconostoc (Lc. mesenteroides, Lc. lactis, and Lc. gelidum) in the overall kimchi samples. The pH, titratable acidity, viable cell counts, and coliform counts were not affected by salt variations. In order to assess sensory acceptance, the conducted sensory evaluation using a 9-point hedonic scale had revealed that samples with 1.3% salt concentration (lower than the manufacturer's regular salt concentration) was more preferred, indicating that the use of 1.3% salt concentration was acceptable in normal kimchi fermentation for its quality and safety. Despite similarities in pH, titratable acidity, viable cell counts, coliform counts, and LAB distributions among the various salt concentrations of kimchi samples, the sample with 1.3% salt concentration was shown to be the most preferred, indicating that this salt concentration was suitable in kimchi production in order to reduce salt intake through kimchi consumptions.

Comparison of Bacterial Community Changes in Fermenting Kimchi at Two Different Temperatures Using a Denaturing Gradient Gel Electrophoresis Analysis

  • Yeun, Hong;Yang, Hee-Seok;Chang, Hae-Choon;Kim, Hae-Yeong
    • Journal of Microbiology and Biotechnology
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    • v.23 no.1
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    • pp.76-84
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    • 2013
  • A polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) technique followed by sequencing of the 16S rDNA fragments eluted from the bands of interest on denaturing gradient gels was used to monitor changes in the bacterial microflora of two commercial kimchi, salted cabbage, and ingredient mix samples during 30 days of fermentation at $4^{\circ}C$ and $10^{\circ}C$. Leuconostoc (Lc.) was the dominant lactic acid bacteria (LAB) over Lactobacillus (Lb.) species at $4^{\circ}C$. Weissella confusa was detected in the ingredient mix and also in kimchi samples throughout fermentation in both samples at $4^{\circ}C$ and $10^{\circ}C$. Lc. gelidum was detected as the dominant LAB at $4^{\circ}C$ in both samples. The temperature affected the LAB profile of kimchi by varing the pH, which was primarily caused by the temperature-dependent competition among different LAB species in kimchi. At $4^{\circ}C$, the sample variations in pH and titratable acidity were more conspicuous owing to the delayed growth of LAB. Temperature affected only initial decreases in pH and initial increases in viable cell counts, but affected both the initial increases and final values of titratable acidity. The initial microflora in the kimchi sample was probably determined by the microflora of the ingredient mix, not by that of the salted cabbage. The microbial distributions in the samples used in this study resembled across the different kimchi samples and the different fermentation temperatures as the numbers of LAB increased and titratable acidity decreased.

A Bioconversion Study on the Zanthoxylum schinfolium by Fermenting Bacteria and Their Functional Enhancement (유용 발효미생물 활용 생물전환 공정을 활용한 산초열매의 기능성 증대 방안 연구)

  • Lim, Jeong-Muk;Lee, Se-Won;Lee, Seong-Hyeon;Lee, Jeong-Ho;Oh, Byung-Taek
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2018.04a
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    • pp.64-64
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    • 2018
  • 생물전환(Bioconversion)은 천연소재의 기능성을 증대시키기 위한 방안으로 많은 연구가 진행되고 있으며 다양한 산업에서도 활용되고 있어 유용미생물을 기반 차세대 기술로 각광받고 있다. 이러한 기술의 도입은 식품은 물론 의약품 및 화장품 산업에서도 활발히 사용되고 있으며, 특히 최근 기능성 제품에 대한 소비가 급증함에 따라 그 중요성이 높아지고 있다. 산초(Zanthoxylum schinfolium)는 limonene, citronellal, phellandrene 등의 다양한 유효물질을 함유하고 있으며 유효성분들로부터 유래되는 항산화 활성과 항암활성, 항균활성 등의 효능을 지니는 것으로 보고된바 있다. 본 연구의 생물전환 공정에 사용된 유산균들은 전통 발효식품으로 알려진 다양한 젓갈류로부터 분리하였으며, 16S rDNA 염기서열 분석을 통해 유전학적 특성을 확인하였다. 또한 확보된 유산균들을 사용하여 산초(전북 진안군) 분말의 발효공정을 수행하였으며, 산초의 최적 추출조건을 선정하고 추출물을 제조하여 생물전환 공정 전 후 활성의 변화추이를 관찰하였다. 추출물의 활성평가는 항산화 효능 및 유효성분 함량을 평가하기 위하여 DPPH radical scavenging activity와 total polyphenol 함량을 평가하고 세포주를 활용해 MTT assay, Nitric oxide(NO) 생성억제 효능을 확인하여 세포독성 및 항염증 활성을 확인하였다. 실험결과, 생물전환 공정에 사용할 유용 미생물을 확보하기 위한 실험을 통해 다양한 젓갈류에서 다양한 미생물을 확보할 수 있었으며 약 16종의 유산균을 분리하였다. 분리된 미생물을 사용하여 산초 분말의 생물전환 공정을 실시한 결과, 5종의 유용미생물 처리에서 무처리 대비 DPPH radical 소거능 및 polyphenol 함량이 유의적으로 증가됨을 확인할 수 있었다. 그 중 가장 높은 활성을 나타내는 균주를 16S rDNA 염기서열 분석을 통해 확인한 결과 Weissella confusa D1로 확인되었다. 선별 균주를 활용한 생물전환 공정 후 항산화 활성은 대조군 대비 약 120%의 활성을 나타냈으며, polyphenol의 함량은 약 126%로 증가하는 것을 확인할 수 있었다. 더 나아가 생물전환 공정 후 산초추출물의 세포독성은 처리전과 비교하여 월등히 감소하는 경향을 확인할 수 있었으며, 항염효능 또한 증가하는 경향을 나타내는 것이 확인되었다.

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