• 제목/요약/키워드: indigenous bacterium

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유류누출 지역에서 유래한 토착세균, Pseudoalteromonas sp. HK-3 배양에서 생물계면활성제의 최적 생산 (Optimized Production of Biosurfactant by the Indigenous Bacterium, Pseudoalteromonas sp. HK-3 Originating from Oil-Spilled Areas)

  • 조수희;마채우;오계헌
    • KSBB Journal
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    • 제26권1호
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    • pp.57-61
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    • 2011
  • The principal objective of this study was to determine the optimal conditions for the production of biosurfactant by the indigenous bacterium, Pseudoalteromonas sp. HK-3, originating from oil-spilled areas. The relationship between total biosurfactant production and the factors affecting biosurfactant production were evaluated by statistical analysis using SPSS software. The effects of various supplemental carbon sources (e.g., glucose, dextrose, mannitol, citrate, acetate) on the maximal production of biosurfactant by the test culture of Pseudoalteromonas sp. HK-3 was then evaluated. As a result, mannitol was found in this study to be the best supplemental carbon source for the production of biosurfactant. A spot inoculation of crude cultural liquid containing the HK-3 cells generated the largest clear zone, whereas only small clear zones appeared around the spots inoculated with either supernatant only or cell pellets following centrifugation. Our results demonstrated that the HK-3 test culture supplemented with 2% mannitol at an initial pH of 6 generated the maximal amount of biosurfactant within 72 h of incubation.

생물방제균 Pseduomonas fluorescens 2112의 선발과 고추역병균에 대한 항진균성 길항작용 (Selection and Antifungal Activity of Antagonistic Bacterium Pseudomonas sp. 2112 against Red-Pepper Rotting Phytophthora capsici)

  • 이은탁;김상달
    • 한국미생물·생명공학회지
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    • 제28권6호
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    • pp.334-340
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    • 2000
  • In order to select multifunctional powerful antagonistic biocontrol agent against red-pepper rotting fungi Phytophthora capsici, we isolated an indigenous antagonistic bacterium which produces antifungal substances and siderophores from a local soil of Kyongju, Korea. The isolated strain was identified as Pseudomonas fluorescens biotype F. The antibiotic produced from P. fluorescens 2112 inhibited hyphae growth and the zoospore germination of Phytophthora capsici. The favorable carbon, nitrogen source and salts for the production of antibiotic from P. fluorescens 2112 were glycerol, beef extract and LiCi at 1.0%, 0.5% and 5 mM, respectively. And antagonistic activity of P. fluorescens 2112 was confirmed against P. capsici in vivo.

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Isolation of an Indigenous Imidacloprid-Degrading Bacterium and Imidacloprid Bioremediation Under Simulated In Situ and Ex Situ Conditions

  • Hu, Guiping;Zhao, Yan;Liu, Bo;Song, Fengqing;You, Minsheng
    • Journal of Microbiology and Biotechnology
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    • 제23권11호
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    • pp.1617-1626
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    • 2013
  • The Bacterial community structure and its complexity of the enrichment culture during the isolation and screening of imidacloprid-degrading strain were studied using denaturating gradient gel electrophoresis analysis. The dominant bacteria in the original tea rhizosphere soil were uncultured bacteria, Rhizobium sp., Sinorhizobium, Ochrobactrum sp., Alcaligenes, Bacillus sp., Bacterium, Klebsiella sp., and Ensifer adhaerens. The bacterial community structure was altered extensively and its complexity reduced during the enrichment process, and four culturable bacteria, Ochrobactrum sp., Rhizobium sp., Geobacillus stearothermophilus, and Alcaligenes faecalis, remained in the final enrichment. Only one indigenous strain, BCL-1, with imidacloprid-degrading potential, was isolated from the sixth enrichment culture. This isolate was a gram-negative rod-shaped bacterium and identified as the genus Ochrobactrum based on its morphological, physiological, and biochemical properties and its 16S rRNA gene sequence. The degradation test showed that approximately 67.67% of the imidacloprid (50 mg/l) was degraded within 48 h by strain BCL-1. The optimum conditions for degradation were a pH of 8 and $30^{\circ}C$. The simulation of imidacloprid bioremediation by strain BCL-1 in soil demonstrated that the best performance in situ (tea soil) resulted in the degradation of 92.44% of the imidacloprid (100 mg/g) within 20 days, which was better than those observed in the ex situ simulations that were 64.66% (cabbage soil), 41.15% (potato soil), and 54.15% (tomato soil).

고체 당밀정화제와 종속영양 탈질미생물을 이용한 질산염 제거 (Denitrification by a Heterotrophic Denitrifier with an Aid of Slowly Released Molasses)

  • 이병선;이규연;신도연;최종학;김영진;남경필
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제15권4호
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    • pp.30-38
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    • 2010
  • This study was conducted to determine the potential applicability of slowly released molasses (SRM) to treat nitratecontaminated groundwater. SRM was made by dispersing molasses in hydroxy propyl methyl cellulose-silicamicrocrystalline cellulose matrix. Column test indicated that SRM could continuously release molasses with slowly decreasing release rates of $64.6mg-COD/L{\cdot}h$ up to 65 hrs, $12.1mg-COD/L{\cdot}h$ up to 215 hrs, and $4.4mg-COD/L{\cdot}h$up to 361 hrs. A batch test using an isolated indigenous heterotrophic denitrifier Pseudomonas sp. KY1 having nitrite reductase (nirK) and liquid molasses demonstrated that the bacterium decreased 100 mg-N/L of nitrate to less than 10 mg-N/L at the C/N ratio of 10/1 in 48 hours. In a Pseudomonas sp. KY1-attached Ottawa sand column which continuously received molasses from a SRM-containing reservoir, the bacterium successfully removed nitrate from 20 mg-N/L to 3 mg-N/L during the 361 hours of column operation. The results showed the possibility that SRM can be used as a reliable, longterm extra carbon source for indigenous heterotrophic denitrifiers.

산림 토착 미생물 군집에 미치는 유류 첨가제 노출 농도 및 시간의 영향 (Effect of Exposure Concentration and Time of Fuel Additives on the Indigenous Microbial Community in Forests)

  • 조원실;조경숙
    • 한국환경보건학회지
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    • 제34권5호
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    • pp.387-394
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    • 2008
  • The toxicity of methyl tert-butyl ether (MTBE), tert-butyl alcohol (TBA) and formaldehyde (FA) on the indigenous microbial community in forest soil was studied. MTBE, TBA and FA with different concentrations were added into microcosms containing forest soil samples. After 10 and 30 days, total viable cell number and dehydrogenase activity in the microcosms were evaluated. Bacterial communities in the microcosms were also analyzed using a denaturing gradient gel electrophoresis (DGGE). Dehydrogenase activity and total viable cell number were decreased according to the increase of MTBE, TBA and FA concentrations (P<0.05). FA toxicity was the highest, but TBA toxicity was the lowest. The results of principal component analysis using DGGE fingerprints showed that the microbial communities contaminated MTBE, TBA and FA were grouped by exposure time not exposure concentration. Dominant species in the microcosms were as follows: Photobacterium damselae sub sp. and Bacillus sp. KAR28 for MTBE; Mycobacterium sp. and Uncultured Clostridium sp. for TBA; and Uncultured Paenibacillaceae bacterium and Anxynobacillus, Flavithermus for FA.

토착미생물의 생지화학적 활동에 의한 지하수의 산화/환원전위 변화 특성 (Changes of the Oxidation/Reduction Potential of Groundwater by the Biogeochemical Activity of Indigenous Bacteria)

  • 이승엽;노열;정종태
    • 자원환경지질
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    • 제47권1호
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    • pp.61-69
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    • 2014
  • 중금속류나 방사성 물질로 오염된 지하수를 원위치에서 처리(정화 혹은 고정화)하고자 할 때, 반드시 고려해야 할 지화학적 요소 중의 하나는 지하수의 산화/환원전위 값이다. 우리는 생지화학적 작용에 의한 현장 지하수의 산화/환원전위 변화 특성을 알아보기 위해 실험실 조건에서 한국원자력연구원의 심부지하수를 대상으로 전자공여체(젖산), 전자수용체(황산염) 및 토착미생물을 주입하여 시간별로 산화/환원전위 변화를 관찰하였다. 질소가스-충전 글로브박스에 있는 순수 지하수는 시간이 경과함에 따라 미약한 Eh 상승(약산화)이 있었다. 하지만, 젖산, 황산염 혹은 미생물이 주입된 지하수 대부분의 Eh는 감소(환원)하는 특성을 보여주었다. 특히, 국내 토착 황산염환원미생물인 '바쿨라텀'이 주입되었을 때, 지하수의 Eh가 -500 mV 근처까지 감소하여 강환원성 지하수로 바뀌었다. 이처럼 일반 금속환원박테리아에 비해 황산염환원박테리아의 지하수 환원화 능력이 매우 우수함에도 불구하고, 용존 황산철을 필요로 하였고 최종적으로 황화광물(예; 맥키나와이트)이 생성되면서 추후 반응에 관한 예측을 어렵게 하였다. 결과적으로, 미생물 외에도 미량의 영양물질 주입 여하에 따라 지하수의 산화/환원전위가 크게 달라졌으며, 이는 산화/환원전위의 영향을 받는 용존 오염 물질의 산화수, 용해도 및 수착 등의 특성들이 생물자극법에 의해 바뀌거나 조절될 수 있음을 의미한다.

유류와 중금속으로 오염된 토양에서 분리한 미생물의 Pb와 Cd 생물흡착 특성 (Biosorption of Pb and Cd by Indigenous Bacteria Isolated from Soil Contaminated with Oil and Heavy Metals)

  • 김상호;전효택;이종운
    • 자원환경지질
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    • 제42권5호
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    • pp.427-434
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    • 2009
  • 유류 및 중금속으로 오염된 토양에서 Pb 및 Cd에 내성을 갖는 미생물을 분리하여 미생물 내 중금속 흡착 특성을 조사하였다. 분리한 토착미생물의 Pb 및 Cd의 흡착특성과 흡착에 영향을 미치는 요인 중에 생장단계, 중금속 농도, 생물량, pH, 온도에 따른 영향을 비교하였다. 또한 흡착등온식을 적용하여 중금속의 흡착용량과 흡착강도를 알아보았다. 낮은 중금속 초기 농도와 높은 생물량에서 높은 중금속 제거 효율을 가지며 중금속 마다 다른 흡착 효율을 보여 주었다. 흡착 효율은 미생물 생장 말기, pH 5~9 조건에서 최적의 효율을 나타내었으나, 25~$35^{\circ}C$에서 온도 변화에 따른 영향은 미미하였다. 생물흡착 과정을 Langmuir 등온 흡착식에 적용하면, 이론적 최대 흡착량은 Pb와 Cd에 대해서 각각 62.11과 192.31 mg/g로 나타났고, $R^2$가 0.71과 0.98로 계산되었다. Cd는 세포 표면의 단일 층에 단분자 흡착에 의한 생물흡착이 진행되었으나, Pb는 미생물 대사 작용을 통한 세포 내로의 축적 작용과 미생물 내 음이온과의 반응에 의한 침전물 형성작용 둥을 통하여 생물흡착이 진행된 것으로 판단된다.

Phototrophic Bacteria as Fish Feed Supplement

  • Banerjee, S.;Azad, S.A.;Vikineswary, S.;Selvaraj, O.S.;Mukherjee, T.K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제13권7호
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    • pp.991-994
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    • 2000
  • Single cell of an indigenous phototrophic bacterium, Rhodovulum sulfidophilum, was incorporated in commercial fish feed for Oreochromis niloticus. The bacterial cell was analyzed for nutritional value and tested for toxicity and acceptability as an aquaculture feed supplement. The results showed higher survival rate and significantly higher growth rate (p<0.001) in O. niloticus fed with the bacteria incorporated fish feed. It is suggested that R sulfidophilum can be utilized as an aquaculture feed supplement.

Arthrobacter sp. Strain KU001 Isolated from a Thai Soil Degrades Atrazine in the Presence of Inorganic Nitrogen Sources

  • Sajjaphan, Kannika;Heepngoen, Pimpak;Sadowsky, Michael J.;Boonkerd, Nantakorn
    • Journal of Microbiology and Biotechnology
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    • 제20권3호
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    • pp.602-608
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    • 2010
  • An atrazine-degrading bacterium, strain KU001, was obtained from a sugarcane field at the Cane and Sugar Research and Development Center at the Kasetsart University, Kamphaeng Saen Campus, Thailand. Strain KU001 had a rod-to-coccus morphological cycle during growth. Biolog carbon source analysis indicated that the isolated bacterium was Arthrobacter histidinolovorans. Sequence analysis of the PCR product indicated that the 16S rRNA gene in strain KU001 was 99% identical to the same region in Arthrobacter sp. The atrazine degradation pathway in strain KU001 consisted of the catabolic genes trzN, atzB, and atzC. Strain KU001 was able to use atrazine as a sole nitrogen source for growth, and surprisingly, atrazine degradation was not inhibited in cells grown on ammonium, nitrate, or urea, as compared with cells cultivated on growth-limiting nitrogen sources. During the atrazine degradation process, the supplementation of nitrate completely inhibited atrazine degradation activity in strain KU001, whereas ammonium and urea had no effect on atrazine degradation activity. The addition of strain KU001 to sterile or nonsterile soils resulted in the disappearance of atrazine at a rate that was 4- to 5-fold more than that achieved by the indigenous microbial community. The addition of citrate to soils resulted in enhanced atrazine degradation, where 80% of atrazine disappeared within one day following nutrient supplementation.

Hexavalent Chromium Reduction by Bacteria from Tannery Effluent

  • Batool, Rida;Yrjala, Kim;Hasnain, Shahida
    • Journal of Microbiology and Biotechnology
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    • 제22권4호
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    • pp.547-554
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    • 2012
  • Chromium is generated from several industrial processes. It occurs in different oxidation states, but Cr(III) and Cr(VI) are the most common ones. Cr(VI) is a toxic, soluble environmental contaminant. Some bacteria are able to reduce hexavalent chromium to the insoluble and less toxic Cr(III), and thus chromate bioremediation is of considerable interest. An indigenous chromium-reducing bacterial strain, Rb-2, isolated from a tannery water sample, was identified as Ochrobactrum intermedium, on the basis of 16S rRNA gene sequencing. The influence of factors like temperature of incubation, initial concentration of Cr, mobility of bacteria, and different carbon sources were studied to test the ability of the bacterium to reduce Cr(VI) under variable environmental conditions. The ability of the bacterial strain to reduce hexavalent chromium in artificial and industrial sewage water was evaluated. It was observed that the mechanism of resistance to metal was not due to the change in the permeability barrier of the cell membrane, and the enzyme activity was found to be inductive. Intracellular reduction of Cr(VI) was proven by reductase assay using cell-free extract. Scanning electron microscopy revealed chromium precipitates on bacterial cell surfaces, and transmission electron microscopy showed the outer as well as inner distribution of Cr(VI). This bacterial strain can be useful for Cr(VI) detoxification under a wide range of environmental conditions.