• Title/Summary/Keyword: 혐기성세균

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Significance of Dissimilatory Fe(III) Reduction in Organic Matter Oxidation and Bioremediation of Environmental Contaminants in Anoxic Marine Environments (혐기성 해양환경에서 철 환원세균에 의한 유기물 분해 및 생물정화)

  • Hyun Junc-Ho
    • The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY
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    • v.10 no.3
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    • pp.145-153
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    • 2005
  • I reviewed an ecological and environmental significance of microbial carbon respiration coupled to dis-similatory reduction of fe(III) to Fe(II) which is one of the major processes controlling mineralization of organic matter and behavior of metals and nutrients in various anaerobic environments. Relative significance of Fe(III) reduction in the mineralization of organic matter in diverse marine environments appeared to be extremely variable, ranging from negligible up to $100\%$. Cenerally, Fe(III) reduction dominated anaerobic car-bon mineralization when concentrations of reactive Fe(III) were higher, indicating that availability of reactive Fe(III) was a major factor determining the relative significance of Fe(III) reduction in anaerobic carbon mineralization. In anaerobic coastal sediments where $O_2$ supply is limited, tidal flushing, bioturbation and vegetation were most likely responsible for regulating the availability of Fe(III) for Fe(III) reducing bacteria (FeRB). Capabilities of FeRB in mineralization of organic matter and conversion of metals implied that FeRB may function as a useful eco-technological tool for the bioremediation of anoxic coastal environments contaminated by toxic organic and metal pollutants.

Relationship between the Production of Fermentational Off-flavor and Presence of Microbial Endophytes in Bloody Watermelon (수박의 이상 발효(피수박)와 내생세균의 존재와의 연관성)

  • Choi, Jae-Eul;Choi, Chun-Hwan;Ryuk, Jln-Ah;An, Gil-Hwan;Hwang, Yong-Soo
    • Research in Plant Disease
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    • v.10 no.4
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    • pp.285-289
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    • 2004
  • The bloody watermelon exhibiting dark red and fermentation off-flavor results in a great economic loss. As an effort to clarify the cause of the bloody watermelon, relationship between the fermentational off-flavor and the presence of endophytic bacteria was studied. The number of endophytes was 2.2-37.0 ${\times}10^3$ cfu/g fw (fresh weight) in normal watermelons, compared to 1.26-1.75 ${\times}10^6$ cfu/g fw in bloody ones. Seventeen bacteria among 56 isolates from bloody watermelons could induce bloody watermelons. The bacteria responsible for bloody watermelons were mainly Gram negative: aerobic Pseudomonas spp and some anaerobic bacteria. The results in this study strongly suggested that the bloody watermelons were produced by abnormal fermentation and growth of endophytic Gram negative bacteria.

COMPARISON OF ULTRASONIC AND SONIC ROOT END PREPARATIONS USING ANAEROBIC BACTERIAL LEAKAGE MODEL (ANAEROBIC BACTERIAL LEAKAGE MODEL을 이용한 음파와 초음파 치근단 와동 형성 기구에 대한 비교)

  • Cho, Nak-Yeon;Park, Dong-Sung;Yoo, Hyeon-Mee;Oh, Tae-Seok
    • Restorative Dentistry and Endodontics
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    • v.27 no.5
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    • pp.530-534
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    • 2002
  • 최근 치근단 와동 형성 시 초음파 또는 음파 기구를 이용하는 것이 보편화되어 있고 여러 측면에서 평가되어져 왔다. 본 연구의 목적은 혐기성 세균을 이용한 미세 누출 모델을 이용하여 초음파와 음파 기구를 사용, 치근단 와동 형성을 하였을 때 두 기구의 사용이 충전된 치근단 와동의 미세 누출에 미치는 영향을 비교 평가하는 것이다. 48개의 단근치의 근관을 crown-down방법을 이용 Profile로 .06 black까지 근관 성형을 시행하고 수직 가압법을 사용하여 gutta-percha와 AH26 sealer를 이용하여 근관 충전을 시행하였다. 각 충전된 시편의 치근단 3mm를 절제하였다. 각 시편은 이미로 4군으로 나누었으며 1군에서는 치근단 와동을 초음파 기구로 형성하였고 2군에서는 음파 기구로 형성하였다. 3군은 음성대조군으로 4군은 양성대조군으로 분류하였다. 형성된 치근단 와동은 공기 분사침을 이용하여 건조 후 super EBA 시멘트로 충전하였으며 Anaerobic chamber에서 Fusobacterium nucleatum (VPI 10197)을 사용한 혐기성 세균 미세누출 모델을 이용하여 30일간 미세 누출을 관찰한 결과, 초음파 기구를 사용한 군에서는 80%에서 음파 기구를 사용한 군에서는 75%에서 미세누출이 나타났으나 통계적으로 유의성 있는 차이는 보이지 않았다.

Isolation of High-molecular-weight-compound degrading microorganisms and sulfate reducing Bacteria involved in Composting Process (퇴비화 과정에 관여하는 생체 고분자 분해 미생물 및 황산 환원균의 분리)

  • Lee, Seong-Taek;Lee, Jae-Jeong;Na, Hyun-Jun
    • Journal of the Korea Organic Resources Recycling Association
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    • v.2 no.2
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    • pp.31-37
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    • 1994
  • For a microbiological study of composting process, screening and assay method for biopolymer degrading enzymes and microorganisms were developed and for the study of the possibility of composting in anaerobic state, distribution of sulfate reducing bacteria which plays a final role in anaerobic degradation was investigated. Substrates used for the development of assay methods for biopolymer degradation are ${\beta}-glucan$, xylan, dextran, CMC(carboxy methly cellulose), casein, and collagen. These substrates were made insoluble by a cross-linking agent and linked with dye to make chromogenic substrates. ${\beta}-glucan$ and xylan substrates could substitute congo-red method for screening of polymer degrading microorganisms without damaging the colonies. Sulfate reducing bacteria contained in the sample sludge showed preference to lactic acid, propionic acid, butyric acid and formic acid and could use acetic acid and valeric acid.

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Antibacterial Activity of $NANOVER^{TM}$ Against Oral Malodor Generating Microorganisms 1. The Effect of Nanosilver on Growth of Oral Malodor Generating Microorganisms (구취유발세균에 대한 $NANOVER^{TM}$의 항균효과 검사 1. Nanosilver가 구취 세균의 증식에 미치는 영향)

  • Jung, Young-Hee;Mo, Hye-Won;Jeong, Ji-Suk;Choi, Kyung-Ho;Choi, Jae-Kap;Hur, Yun-Kyung;Lee, Sang-Heun
    • Journal of Oral Medicine and Pain
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    • v.34 no.1
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    • pp.39-48
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    • 2009
  • Recently there is much interest in the antibacterial activity of nano-sized silver particle (nanosilver) since silver is known to be safe and effective as disinfectant for a long time. Oral malodor is considered to originate in the oral cavity primarily as a result of production of malodorous compounds by oral bacteria. Major compounds responsible for oral malodor are volatile sulfur compounds, which is thought to be generated by the G(-) anaerobic bacteria found normally in the oral cavity, especially on the dorsum of the tongue. The purposes of this study were to investigate the effect of nanosilver on growth of oral malodor generating microorganisms, including Fusobacterium nucleatum, Prevotella melaninogenica, Klebsiella pneumonia, and to determine the optimal culture condition of them. The results were as follows: 1. The optimal culture condition for P. melaninogenica was vacuum culture using desiccator after evacuation of air by vacuum pump in chopped beef meat media. 2. The growth of K. pneumonia was temporarily inhibited by nanosilver (5 ppm and 10 ppm). 3. The morphological alteration and cell damage caused by nanosilver were observed in K. pneumonia.

Antimicrobial Activity of Areca catachu L. Extract of against Intestinal Pathogens (장내 유해세균에 대한 빈랑 추출물의 항균 활성)

  • 이갑상;김성효;전승호;박성수;박정순;신용서
    • The Korean Journal of Food And Nutrition
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    • v.11 no.1
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    • pp.36-40
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    • 1998
  • Areca catachu L. which was showed antimicrobial activity against intestinal pathogens through screening herbs related treatments of intestinal diseases, were extracted by methanol and fractionated by n-hexane, ethylether, ethylacetate, and water. Antimicrobial activities of the methanol extract and each fractionates were then investigated under the anaerobic broth system. All fractions of Areca catachu L. except of n-hexane showed antimicrobial activity against all tested pathogens. Especially, ethylacetate fraction of them had the most significant inhibition activity. There is no significant difference of antimicrobial activity among each fractionates. Fraction of Areca catachu L. ethylacetate fractionate, which were fractionated by Sephadex G-200 and Silica gel column chromatography revealed the strongest antimicrobial activity at 5 to 7 and 20 of fraction number, respectively.

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육포 원료 돈육의 미생물 분포 및 병원성 미생물의 분리

  • Kim, Tae-Im;Kim, Hyeon-Uk;Kim, Hye-Jeong;Nam, Gi-Jin;Kim, Cheon-Je;Baek, Hyeon-Dong
    • Proceedings of the Korean Society for Food Science of Animal Resources Conference
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    • 2005.05a
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    • pp.207-211
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    • 2005
  • 시중의 정육점 및 백화점 등에서 유통 중인 10종의 돈육 원료에 대한 일반 세균수, 저온균수, 고온균, 혐기성균 및 진균류, 대장균군에 대한 미생물학적 분포와 병원성 미생물에 대한 분리${\cdot}$동정을 실시하였다. 실험결과 원료 돈육에서 중온균은 $3.9{\times}10^2{\sim}3.9{\times}10^5\;cfu/g$으로 높은 분포를 보였고, 저온균은 $1.5{\times}10^3{\sim}8.6{\times}10^2\;cfu/g$, 혐기성균은 중온균, 저온균과 유사한 분포를 보였으나 상대적으로 적게 검출되었고, 고온균은 모든 검체에서 검출되지 않았다. 대장균군 또한 모든 검체에 대해서 검출되지 않았으며, 곰팡이와 효모 등 진균류는 $3.8{\times}10^1{\sim}5.1{\times}10^2\;cfu/g$으로 검출되었다. B. cereus 는 돈육 sample B와 J에서 분리되었고, S. aureus의 경우 돈육 sample B에서만 검출되었다. B. cereus는 99.8%의 상동성을 보였고, S. aureus는 97.8%의 상동성을 보였다.

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Draft genome sequence of lytic bacteriophage CP3 infecting anaerobic bacterial pathogen Clostridium perfringens (혐기성 병원균 Clostridium perfringens를 감염시키는 용균 박테리오파지 CP3의 유전체 염기서열 초안)

  • Kim, Youngju;Ko, Seyoung;Yeon, Young Eun;Le, Hoa Thi;Han, Beom Ku;Kim, Hyunil;Oh, Chang-Sik;Kim, Donghyuk
    • Korean Journal of Microbiology
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    • v.54 no.2
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    • pp.149-151
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    • 2018
  • Clostridium perfringens is a Gram-positive, rod-shaped, anaerobic, spore-forming pathogenic bacterium, which belongs to the Clostridiaceae family. C. perfringens causes diseases including food poisoning in vertebrates and intestinal tract of humans. Bacteriophages that can kill target bacteria specifically have been considered as one of control methods for bacterial pathogens. Here, we report a draft genome sequence of the bacteriophage CP3 effective to C. perfringens. The phage genome comprises 52,068 bp with a G + C content of 34.0%. The draft genome has 74 protein-coding genes, 29 of which have predicted functions from BLASTp analysis. Others are conserved proteins with unknown functions. No RNAs were found in the genome.

Bacterial- and Archaeal Communities in Variously Environmental Conditioned Basins of Several Wastewater Treatment Plants (다양한 환경 조건의 하수처리시설 반응조 내 세균 및 고세균 군집)

  • Cho, Sunja;Ha, Tal Soo;Lee, Young Ok
    • The Journal of the Korea Contents Association
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    • v.20 no.8
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    • pp.674-684
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    • 2020
  • To investigate the differences of bacterial- and archaeal communities depending on kind of wastewater (municipal/livestock) and on treating conditions of basins, sludges were sampled from 10 basins of 3 municipal wastewater treatment plants(WWTP) with A2O and a activated sludge sample from a livestock WWTP. The metagenomic DNAs of the sludge samples were extracted and amplified with primers, 27F/518R for bacteria and Arch519F/A958R for archaea, and pyrosequenced with Roche 454 GS-FLX Titanium. As results, the bacterial communities in basins of municipal WWTPs were quite different from those of livestock WWTP, but within the same municipal WWTP their community structures were similar to each other regardless of different environmental conditions such as O2. And their archaeal communities resulted from anaerobic·anoxic basins were clustered only within communities originated from the same WWTP. Furthermore Seo-bu WWTP with high bacterial diversity and species richness performed better N/P-removal compared to the orther WWTPs.

Prokaryotic Communities of Halophilic Methylotrophs Enriched from a Solar Saltern (염전으로부터 농화배양된 호염 메틸영양미생물 군집의 특성)

  • Kim, Jong-Geol;Park, Soo-Je;Rhee, Sung-Keun
    • Korean Journal of Microbiology
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    • v.46 no.3
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    • pp.286-290
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    • 2010
  • C-1 compounds are observed in anaerobic sediment of high salt environments. Thus, surface sediments and waters from these environments are therefore potential habitats for aerobic methylotrophic microorganisms. The soil samples collected from saltern and tidal flat as inoculums and methanol as carbon and energy source was supplied. After subculture depending on the salt concentration, methanol oxidizing bacteria growth condition investigated, the results of methanol oxidizing bacteria can grow in salt conditions, and the maximum concentration was 20%. Analysis based on denaturing gradient gel electrophoresis of 16S rRNA genes indicates that Methelyophaga-like bacteria were dominants of methylotrophs in the enrichment culture. Quantitative PCR showed that archaeal cells were about 1-10% of bacterial cells. Additionally archaea were assumed not to be involved in methanol oxidation since bacterial antibiotics completely blocked the methanol oxidation. Our results suggest that Methelyophaga-like bacteria could be involved in C-1 compounds oxidation in hypersaline environments although those activities are sensitive to salinity above 20%.