• Title/Summary/Keyword: 중금속 내성 균주

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Influence of Competing Ions and Metabolic Inhibitors on Heavy Metal Accumulation in the Cell of Heavy Metal-Tolerant Microorganisms (중금속내성균의 중금속 축적에 미치는 경쟁이온 및 대사저해제의 영향)

  • Cho, Ju-Sik;Lee, Hong-Jae;Heo, Jong-Soo
    • Korean Journal of Environmental Agriculture
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    • v.16 no.2
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    • pp.142-148
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    • 1997
  • This study was performed to develop the biological treatment technology of wastewater polluted with heavy metals. Heavy metal-tolerant microorganisms, such as Pseudomonas putida, P. aeruginosa, P. chlororaphis and P. stutzeri possessing the ability to accumulate cadmium, lead, zinc and copper, respectively, were isolated from industrial wastewaters and mine wastewaters polluted with various heavy metals. The effect of competing ions and metabolic inhibitors on heavy metal accumulation in the cells was investigated. Heavy metal accumulation into cells was drastically decreased in the presence of competing cation, $Al^{3+}$, and also decreased, at a lesser extent, in the presence of competing anions, $CO_3\;^{2-}$ and $PO_4\;^{2-}$. But heavy metal accumulation was not influenced generally in the presence of the other rations and anions. The accumulation of Cd, Zn or Cu by Cd-, Zn- or Cu-tolerant microorganism was remarkably decreased in the presence of metabolic inhibitors, but the accumulation of Pb by Pb-tolerant microorganism was little affected in the presence of metabolic inhibitors. These results suggested that the accumulation of Cd, Zn or Cu by Cd-, Zn- or Cu-tolerant microorganism was concerned with the biological activity depending on energy, and the accumulation of Pb by Pb-tolerant microorganism depended on not the biological activity but the physical adsorption on the cell surface. Each heavy metal-tolerant microorganism also exhibited some ability to accumulate the other heavy metals in solution containing equal concentrations of cadmium, lead, zinc and copper, when measured at 48 hours after inoculation of the microorganisms, but the accumulation rates were somewhat low as compared to the accumulation rates of heavy metal fitting to each tolerance. These results suggested that the accumulation of each heavy metal by each heavy metal-tolerant microorganism was a selective accumulation process.

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Microbiological Characteristics of Heavy Metal Ion-Tolerant Microorganisms. (중금속 내성균주의 미생물학적 성질)

  • 유대식
    • Microbiology and Biotechnology Letters
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    • v.7 no.4
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    • pp.183-190
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    • 1979
  • Cadmium ion-tolerant microorganisms were isolated from the sludge and soil of a cadmium ion-polluted area, a zinc mineralized area, in Kyung Sang Pook Do, Korea. A strain, C-7, which showed tile highest tolerance to cadmium ion was selected by screening from 18 cadmium tolerant microorganisms. By the taxonomical characteristics of this strain, it was identified as a variant of Erwinia sp.. The strain grew in a medium cadmium ion up to a concentration of 2, 800 $\mu\textrm{g}$/ml and the maximum intercellular accumulation of Cd$^{2+}$ was measured to be 28.60 mg/g dried cells (57.2%) during incubation in medium containing 50 $\mu\textrm{g}$/ml under aerobic condition at 28$^{\circ}C$ for 24 hour.r.

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Distribution of Heavy Metal in the Cell Components of Heavy Metal-Tolerant Microorganisms (중금속내성균의 세포내 중금속 분포)

  • Cho, Ju-Sik;Lee, Won-Kyu;Choi, Hyoung-Sub;Heo, Jong-Soo
    • Korean Journal of Environmental Agriculture
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    • v.16 no.1
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    • pp.55-60
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    • 1997
  • Heavy metal-tolerant microorganisms, such as Pseudomonas putida, P. aeruginosa, P. chlororaphis and P. stutzeri which possessed the ability to accumulate cadmium, lead, zinc and copper, respectively, were isolated from industrial wastewaters and mine wastewaters polluted with various heavy metals. The distribution of heavy metal in the cell components, and amino acid compositions, was investigated. The distribution of heavy metal in the cell fractions of each heavy metal-tolerant microorganism grown for 20 hours in the basal medium containing 100mg/l of each heavy metal was investigated. In the case of cadmium-tolerant P. putida, lead-tolerant P. aeruginosa and copper-tolerant P. stutzeri, approximately $50{\sim}60%,\;30{\sim}40%$ and $10{\sim}17%$ of each heavy metal absorbed were distributed to cell wall, cell membrane and cytoplasm fractions, respectively. In the case of zinc-tolerant P. chlororaphis, approximately 32%, 55% and 13% of zinc were distributed to cell wall, cell membrane and cytoplasm fractions, respectively. These results indicated that the cell wall was a major adsorbing fraction of cadmium, lead and copper, and the cell membrane was that of zinc. Total amino acid content per gram of the cell grown in the culture media with heavy metal was higher than that of the cell grown in the culture media without heavy metal, and the content of acidic amino acids, such as aspartic acid(Asp.+Asn.) and glutamic acid(Glu.+Gln.) was higher than that of basic amino acids, such as histidine, lysine and arginine.

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Characterization of a Heavy Metal-Resistant and Plant Growth-Promoting Rhizobacterium, Methylobacterium sp. SY-NiR1 (중금속 내성 및 식물 생장 향상 근권세균 Methylobacterium sp. SY-NiR1의 분리 및 특성)

  • Koo, So-Yeon;Cho, Kyung-Suk
    • Microbiology and Biotechnology Letters
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    • v.35 no.1
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    • pp.58-65
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    • 2007
  • The role of soil microorganisms, specifically rhizobacteria, in the development of rhizoremediation techniques is important to speed up the process and to increase the rate of mobilization or absorption of heavy metals to the plant. In this study, Methylobacterium sp. SY-NiR1 was isolated from the rhizosphere soils of plants in oil and heavy metal-contaminated soil. Based on its pink pigmented colony, rod-shape cells, and belonging in $\alpha-Proteobacteria$, Methylobacterium sp. SY-NiR1 is considered a pink-pigmented facultative methylotroph. SY-NiR1 had the ability to produce indole acetic acid which is one of phytohormones. This bacterium showed resistance against multiple heavy metals such as Cd, Cr, Cu, Pb, Ni, Zn, and the order of its resistance based on $EC_{50}$ was Zn > Ni > Cu > Pb > Cd > Cr. Therefore, Methylobacterium sp. SY-NiR1 can stimulate seed germination and plant growth in soil contaminated with heavy metals.

Characterization of Heavy Metal Tolerant and Plant Growth-Promoting Rhizobacteria Isolated from Soil Contaminated with Heavy Metal and Diesel (중금속 및 디젤 오염 토양에서 분리한 중금속 내성 식물 생장 촉진 근권세균의 특성)

  • Lee, Soo Yeon;Lee, Yun-Yeong;Cho, Kyung-Suk
    • Microbiology and Biotechnology Letters
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    • v.49 no.3
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    • pp.413-424
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    • 2021
  • In order to enhance rhizoremediation performance, which remediates contaminated soils using the interactions between plants and microorganisms in rhizosphere, it is required to develop effective microbial resources that simultaneously degrade contaminants and promote plant growth. In this study, heavy metal-resistant rhizobacteria, which had been cultivated in soils contaminated with heavy metals (copper, cadmium, and lead) and diesel were isolated from rhizospheres of maize and tall fescue. After that, the isolates were qualitatively evaluated for plant growth promoting (PGP) activities, heavy metal tolerance, and diesel degradability. As a result, six strains with heavy metal tolerance, PGP activities, and diesel degradability were isolated. Strains CuM5 and CdM2 were isolated from the rhizosphere soils of maize, and were identified as belonging to the genus Cupriavidus. From the rhizosphere soils of tall fescue, strains CuT6, CdT2, CdT5, and PbT3 were isolated and were identified as Fulvimonas soli, Cupriavidus sp., Novosphingobium sp., and Bacillus sp., respectively. Cupriavidus sp. CuM5 and CdM2 showed a low heavy metal tolerance and diesel degradability, but exhibited an excellent PGP ability. Among the six isolates, Cupriavidus sp. CdT2 and Bacillus sp. PbT3 showed the best diesel degradability. Additionally, Bacillus sp. PbT3 also exhibited excellent heavy metal tolerance and PGP abilities. These results indicate that the isolates can be used as promising microbial resources to promote plant growth and restore soils with contaminated heavy metals and diesel.

Utilization of Microorganisms for Treating Wastewater Polluted with Heavy Metals (중금속 오염 폐수처리에의 미생물 이용 전망)

  • Heo, Jong-Soo;Cho, Ju-Sik
    • Korean Journal of Environmental Agriculture
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    • v.13 no.3
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    • pp.386-395
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    • 1994
  • As a basic research on applying the microbial strains which had been isolated and proved to remove heavy metals, such as Pb, Cd, Zn, and Cu in This laboratory to actual wastewater treatment, optimum condition of the treatment system with addition of single or multiple species of pollutants and microorganisms were investigated at small scale. Concentration of the bacterial inoculum was 3000mg/L and 1500mg/L of MLSS for treatment with single and multiple species, respectively. Removal rates of heavy metals were expressed at HRT’s (Hydraulic Retention Time) of 12, 24, and 48 hr. Removal rates of Pb, Cd, Zn, and Cu after 12 days at HRT of 24hr with addition of single and multiple species were 93%, 90%, 80%, and 39%, and 75%, 90%, 74%, and 48%, respectively. Judging from these results, treatment capability of the isolated strains is excellent. Hence, the microorganisms are expected to be applicable to actual wastewater treatment.

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Heavy Metal Accumulation in Cell of Heavy Metal-Tolerant Bacteria by Some Physical and Chemical Treatments (물리화학적 전처리에 의한 중금속 내성세균의 균체내 중금속 축적 변화)

  • Cho, Ju-Sik;Lee, Hong-Jae;Heo, Jong-Soo
    • Korean Journal of Environmental Agriculture
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    • v.16 no.4
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    • pp.311-319
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    • 1997
  • Heavy metal-tolerant microorganisms, such as Pseudomonas putida, P. aeruginosa, P. chlororaphis and P. stutzeri which possessed the ability to accumulate cadmium, lead, zinc and copper, respectively, were isolated from industrial wastewaters and mine wasewaters polluted with various heavy metals. Metal binding sites in the cells were investigated by extracting the components of the cells through pretreatments with hot water, acid, alkli, chloroform-methanol or chloroform-methanol/concentrated alkali. The heavy metal accumulation was drastically decreased by pretreatment with alkali or chloroform-methanol/concentrated alkali, but the heavy metal accumulation was not changed by pretreatment with chloroform-methanol. The amount of heavy metal accumulation was remarkably decreased by decreasing crude protein remaining in the cell. These results suggested that proteins of cell components played an important role on the heavy metal accumulation.

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Characterization of Growth Inhibition and Isolation of a Copper-Resistant Rhizobacterium, Alcaligenes sp. KC-1 (Cu 내성 근권 세균 Alcaligenes sp. KC-1의 분리 및 생장특성)

  • Hong, Sun-Hwa;Shin, Ki-Chul;Lee, Eun-Young
    • Microbiology and Biotechnology Letters
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    • v.39 no.2
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    • pp.182-187
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    • 2011
  • In this study, A bacterium with an ability to resist toxic heavy metals was isolated from reeds in wetland. The isolated strain was identified to Alcaligenes sp. KC-1 by 16S rDNA sequencing. Heavy metals such as Pb, $Cr^{6+}$, Cd, Zn and Cu were supplied to media. The ecotoxic treat of the heavy metals on the growth of strain KC-1 was performed when the isolated strain Alcaligenes sp. KC-1 cultured with Cu ranging from 0 mM to 20 mM. It showed the resistance of $EC_{50}$(7.34 mM) and cell growth ($OD_{600\;nm}$ : 0.83 after 42 hours) when it was cultured in Cu.

Characterization of Pseudomonas sp. BCNU 106. 154 and 171 tolerant to organic solvents

  • Choi, Seung-Tae;Kim, Soon-Jeong;Lee, Kyung;Moon, Ja-Young;Kim, Dong-Wan;Lee, Ho-Won;Seo, Jeoung-Yoon;Hwang, Choi-Won;Jeong, Young-Kee;Joo, Woo-Hong
    • 한국생물공학회:학술대회논문집
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    • 2001.11a
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    • pp.257-260
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    • 2001
  • BCNU 106, 154 and 171 was isolated in the areas contaminated by high concentrations of organic solvents. These strains had the tolerance to almost all kinds of organic solvents used in this study. Especially, it was interested that BCNU 106, and 171 had the tolerance to meta-, para- and ortho. xylene. And 3 strains had high MIC (minimal inhibition concentrations).

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Resistance of Some Metal Ions on Growth of Serratia marcescens Strain P (Serratia marcescens Strain P 성장에 미치는 중금속 내성)

  • 유관희;이호용
    • Microbiology and Biotechnology Letters
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    • v.20 no.6
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    • pp.693-698
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    • 1992
  • The resistant effect of several heavy metal ions to Serratia marcescens strain P was studied by the method of minimal inhibitory concentration(MIC), and testing for their metal biosorption. S. marcescens strain P showed a good survival in the presence of high concentrations of some metal ions, namely cadmium, lead, iron, magnesium, and manganese. Copper had the most inhibitory effect among tested. The MIC value was ranged from 0.79 to 1.58 mM. Cells of S. marcescens strain P exhibit an abnormally long lag phase when incubated in high concentrations of zinc and cadmium. Pigment production was reduced by zinc and cadmium, but enhanced by lead and iron. S. marcescens strain P was resistant to ampicillin, tetracycline, cefamandole and chloramphenicol with minimal inhibitory concentration of 128 $\mu$g/ml, 32 $\mu$g/ml, 256 $\mu$g/ml, and 8 $\mu$g/ml, respectively. The kinetics study of biosorptive uptake by S. marcescens strain P revealed that 16.59% of cadmium and 35.38% of lead were eliminated from the media.

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