• 제목/요약/키워드: metal reducing bacteria

검색결과 67건 처리시간 0.029초

황환원 세균의 quorum-sensing 유사 현상

  • 박지은;장덕진
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2001년도 추계학술발표대회
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    • pp.545-548
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    • 2001
  • Microbiologically influenced corrosion (MIC) of metal is common in the natural environment and sulfate reducing bacteria are representative microorganisms for MIC. We found that biofilm fomlation by SRB on the metal surface might be controlled by quorum sensing, which is a cell density dependent regulation of cell metabolism. As cell free culture fluids (spent media) of Desulfovibrio vulgaris and D. desulfuricans were tested for quontrn sensing related test strains, it was found that spent media of two SRB induced increased luminescence of Vibrio harveyi BB886 (sensor 1+, sensor 2-) and BB170 (sensor 1-, sensor 2+). Quorum activities of D. vulgaris and D. desulfuricans appeared to be parallel to growth patterns, i.e., it was low in the lag phase, highly increased in the exponential phase, and reached maximum in the stationary phase. Interestingly, however, luminescence of V. harveyi BB886 and BB170 induced by a unit cell mass of the SHB showed a maximal peak in the late lag phase. Hence, it was suspected that quorum sensing of these two SHB play unknown roles in shifting cells from dormant to growth stages.

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Oxidative DNA damage by Ethanol Extract of Green Tea

  • Park You-Gyoung;Kwon Hoonjeong
    • 한국환경성돌연변이발암원학회지
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    • 제25권2호
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    • pp.71-75
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    • 2005
  • Green tea and their major constituents such as catechins are famous materials for their anti-oxidative and anti-carcinogenic activity, but many compounds with reducing power can promote the oxidation in their oxidized form or in the presence of metal ion. We investigated the pro-oxidative effect of the ethanol extract equivalent up to 30mg of dried weight of green tea leaves in four in vitro systems which could be used for detecting DNA damage. Although ethanol extract of green tea did not show significant mutagenicity in Salmonella typhimurium TA102, which is sensitive strain to oxidative stress, it degraded deoxyribose extensively in the presence of $FeCl_3-EDTA$ complex, promoted 8-oxoguanine formation in the live bacteria cell, Salmonella typhimurium TAI04, and cleaved super coiled DNA strand with the help of copper ion. It suggested that green tea, famous anti-oxidative material, can be pro-oxidant according to the condition of extraction or metal existence.

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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.

Desulfovibrio Desulfuricans과 제올라이트를 이용한 해양 내의 Zn, As 제거용 미생물 담체 개발 (Development of Microbe Carrier for Bioremediation of Zn, As by using Desulfovibrio Desulfuricans and Zeolite in Artificial Sea Water)

  • 김인화;최진하;주정옥;오병근
    • KSBB Journal
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    • 제30권3호
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    • pp.114-118
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    • 2015
  • In this study, we have developed a microbe-carrier that combined Desulfovibrio desulfuricans and zeolite for removal of Zn and As in contaminated seawater. Desulfovibrio desulfuricans, one of the sulfate-reducing bacteria (SRB) microorganism was exhibited stable growth characteristics in highly salted water and strong resistance to Zn and As contaminated seawater. Moreover, zeolites are one of the most useful carrier to remove heavy metals from wastewaters. The results showed that SRB immobilized zeolite carrier can enhance removal ratio of Zn and As. In addition, heavy metals tended to be better removed in medium at conditions of $37^{\circ}C$. In case of heavy metal concentration, they were effectively removed ranging from 50 to 100 ppm. These results show that SRB-zeolite carriers hold great potential to remove cationic heavy metal species from industrial wastewater in marine environment.

Effects of Extracellular Electron Shuttles on Microbial Iron Reduction and Heavy Metals Release from Contaminated Soils

  • Hwang, Yun Ho;Shim, Moo Joon;Oh, Du Hyun;Yang, Jung-Seok;Kwon, Man Jae
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제19권2호
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    • pp.16-24
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    • 2014
  • To test the potential effects of extracellular electron shuttles (EES) on the rate and extent of heavy metal release from contaminated soils during microbial iron reduction, we created anaerobic batch systems with anthraquinone-2,6-disulfonate (AQDS) as a surrogate of EES, and with contaminated soils as mixed iron (hydr)oxides and microbial sources. Two types of soils were tested: Zn-contaminated soil A and As/Pb-contaminated soil B. In soil A, the rate of iron reduction was fastest in the presence of AQDS and > 3500 mg/L of total Fe(II) was produced within 2 d. This suggests that indigenous microorganisms can utilize AQDS as EES to stimulate iron reduction. In the incubations with soil B, the rate and extent of iron reduction did not increase in the presence of AQDS likely because of the low pH (< 5.5). In addition, less than 2000 mg/L of total Fe(II) was produced in soil B within 52 d suggesting that iron reduction by subsurface microorganisms in soil B was not as effective as that in soil A. Relatively high amount of As (~500 mg/L) was released to the aqueous phase during microbial iron reduction in soil B. The release of As might be due to the reduction of As-associated iron (hydr)oxides and/or direct enzymatic reduction of As(V) to As(III) by As-reducing microorganisms. However, given that Pb in liquid phase was < 0.3 mg/L for the entire experiment, the microbial reduction As(V) to As(III) by As-reducing microorganisms has most likely occurred in this system. This study suggests that heavy metal release from contaminated soils can be strongly controlled by subsurface microorganisms, soil pH, presence of EES, and/or nature of heavy metals.

구연산철 환원 조건하에서 Shewanella sp. HN-41에 의한 6가 크롬의 환원 (Reduction of Hexavalent Chromium by Shewanella sp. HN-41 in the Presence of Ferric-Citrate)

  • 박혜민;곽진협;이지훈
    • 한국환경농학회지
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    • 제42권3호
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    • pp.253-258
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    • 2023
  • In the environment, chromium often exists in a highly mobile and toxic form of Cr(VI). Therefore, the reduction of Cr(VI) to less toxic Cr(III) is considered an effective remediation strategy for Cr(VI)-contamination. In this study, the biological reduction of hexavalent chromium was examined at the concentrations of 0.01 mM, 0.1 mM, and 1 mM Cr(VI) by the dissimilatory metal-reducing bacterium, Shewanella sp. HN-41 in the presence of ferric-citrate. With the relatively condensed cell densities, the aqueous phase Cr(VI) was reduced at the proportions of 42%, 23%, and 31%, respectively for the 0.01 mM, 0.1 mM, and 1 mM Cr(VI) incubations, while Fe(III)-citrate was reduced at 95%, 88%, and 73%, respectively. Although the strain HN-41 was not considered to reduce Cr(VI) as the sole electron acceptor for anaerobic metabolism in the preliminary experiment, it has been presumed that outer-membrane c-type cytochromes such as MtrC and OmcA reduced Cr(VI) in the presence of ferric-citrate as the electron acceptor. Since this study indicated the potential of relatively high cell density for Cr(VI) reduction, it might propose a bioremediation strategy for Cr(VI) removal from contaminated waters using engineered systems such as bioreactors employing high cell growths.

미생물학적 황산염 환원에 의한 토양 내 비소와 구리의 원위치 침전 (In-situ Precipitation of Arsenic and Copper in Soil by Microbiological Sulfate Reduction)

  • 장해영;전효택;이종운
    • 자원환경지질
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    • 제42권5호
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    • pp.445-455
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    • 2009
  • 미생물학적 황산염 환원은 황산염을 전자수용체로 이용하는 황산염 환원 박테리아에 의해 황산염이 황화이온으로 변환되는 과정이다. 형성된 황화이온은 주변의 용존 금속 이온과 결합하여 용해도가 낮은 금속 황화물로 침전된다. 이 연구에서는 비소와 중금속으로 오염된 송천 금은광산 일대 토양을 대상으로 하여 토착 박테리아에 의한 황산염 환원을 유도함으로써 독성 원소의 원위치 고정화 기술의 효율성을 평가하였다. 왕수 분해 결과, 대상 토양 내 비소, 구리, 납의 함량은 각각 1,311 mg/kg, 146 mg/kg, 294 mg/kg 등으로 나타나 특히 비소의 오염이 심각한 상태였다. 회분식 실험 결과, 미생물학적 황산염 환원에 의하여 pH 증가, 산화환원전위 감소, 황산염 함량 감소, 비소와 구리 함량 감소 등이 관찰되었다. 이 때 가장 높은 중금속 침전 효율을 유도하는 탄소원과 황산염의 농도 범위는 각각 0.2~0.5%, 100~200 mg/L로 나타났다. 미생물학적 또는 화학적으로 황화물 침전을 유도하게 고안된 컬럼 실험 수행 결과, 비소와 구리는 두 컬럼에서 모두 98% 이상 제거되었다. 그러나 산소를 다량 포함한 용액을 주입한 후, 화학적으로 황화물 침전을 유도한 컬럼에서는 즉각적인 비소와 구리의 재용출 현상이 나타났으나, 미생물학적 황산염 환원을 유도한 컬럼에서는 침전물이 30일 이상 장기간 안정성을 보였다. 미생물학적 컬럼 내에 형성된 검은색 침전물을 분석한 결과 FeS와 CuS로 나타났으며 비소는 대부분 철 황화물에 흡착되어 있는 것으로 확인되었다.

국내 일부 오염 토양 및 퇴적물 내 토착 미생물에 의한 중금속의 지구화학적 거동 연구 (Study on Geochemical Behavior of Heavy Metals by Indigenous Bacteria in Contaminated Soil and Sediment)

  • 송대성;이종운;고일원;김경웅
    • 자원환경지질
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    • 제40권5호
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    • pp.575-585
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    • 2007
  • 지하 심부 토양 및 퇴적물 내 토착 미생물의 활성화에 따른 중금속 거동을 이해하기 위하여, 독성 중금속으로 오염된 국내 일부 지역의 시료를 대상으로 혐기적 환경에서 유산염(lactate)을 탄소원으로 투입한 후 약 25일간에 걸친 비소 및 중금속(카드뮴, 구리, 납, 아연) 함량 변화를 관찰하였다. 실험 결과, 미생물이 투입된 시료의 경우 미생물이 투입되지 않은 비교시료에 비하여 용존 카드뮴, 납, 아연이 효과적으로 제거되었으며, 이는 토착 황산염 환원(sulfate-reducing) 박테리아의 활성화로 인해 생성된 환원상태의 황이 이들 중금속과 황화물을 형성하며 침전시켰기 때문으로 여겨진다. 비소의 경우, 미생물을 투입한 시료 중 황산염의 함량이 높은 덕음 토양에서는 제거율이 높은 반면 황산염의 함량이 상대적으로 낮은 화북 토양, 동두천 퇴적물에서는 지속적으로 그 함량이 증가하였다. 적절한 탄소원 및 황산염을 투입해 독성 중금속으로 오염된 지질 매체 내의 토착 미생물을 활성화시킨다면 이들 중금속의 원위치(in situ) 고정화를 통한 이동도 감소의 효과를 볼 수 있을 것으로 여겨지나, 비소로 동시에 오염된 경우 발생할 수 있는 비소 용출 가능성에 대한 고려가 필요하다.

공장냉각수에서 Biocide (NaOCl)가 생물막 형성 및 금속 부식에 미치는 영향 (Effect of Biocide (NaOCl) in Industrial Cooling Water on Biofilm Formation and Metal Corrosion.)

  • 강용호;박대규
    • 한국미생물·생명공학회지
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    • 제30권1호
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    • pp.86-90
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    • 2002
  • 포항제철소에서 사용하는 살균제와 공장냉각수를 사용하여 실험실에서 생물막 형성과 금속부식에 대한 연구를 수행하였다. 부유성 미생물은 biocide (NaOCl, 0.2% w/v)을 첨가하면 1.5 시간 내에 모두 사멸하였으나, 생물막에 있는 고착성 미생물은 일주일이 지나도 사멸이 되지 않았다. 생물막 형성은 공장냉각수를 고온고압으로 멸균하거나, biocide(NaOCl)를 첨가하였을 경우에는 주황색의 생물막이 형성되었으나, 공장냉각수를 그대로 사용하였을 경우에는 SRB 활성에 의한 흑색(FeS)의 생물막이 형성되었다. 흑색의 생물막이 형성된 곳에서의 금속부식 속도는 주황색의 생물막이 형성된 곳의 금속부식 속도보다 2.3배 더 빨리 진행되었다.