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Lead Tolerance Profile of Pseudomonas Stuzeri in Liquid Culture

  • Kim, Su-Jung (Department of Biological Environment, College of Agriculture and Life Sciences, Kangwon National University) ;
  • Jung, A-Young (Department of Biological Environment, College of Agriculture and Life Sciences, Kangwon National University) ;
  • Joo, Jin-Ho (Department of Biological Environment, College of Agriculture and Life Sciences, Kangwon National University)
  • 발행 : 2007.12.31

초록

Pseudomonas stutzeri strain KCCM 34719 was used in this experiment to determine the effects of increasing Pb(II) concentrations on its growth rate. To obtain optimum growth conditions, strain KCCM 34719 was cultivated in nutrient broth under various conditions, such as temperature, pH, and NaCl concentration. Optimal conditions for cell growth were $30^{\circ}C$ of temperature, 8.0 of pH, and 3% of NaCl concentration, respectively. Growth response of bacterial cell to Pb(II) showed tolerance to concentrations ranging from 10 to 100 mg ${\ell}^{-1}$ in liquid culture, following a growth pattern similar to the control. Growth rate was greatly inhibited at 200 mg ${\ell}^{-1}$ of Pb(II).

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참고문헌

  1. Sengupta, M. (1993) Environmental impacts of mining: monitoring, restoration, and control. CRC Press, Boca Raton, FL, USA. pp. 167-259
  2. British geological survey. (2006) Annual report of the British geological survey 2005-2006. Natural Environment Research Council. The United Kingdom of Great Britain. www.bgs.ac.uk/ annualreport/ 0506
  3. Adriano, D. C., Bollag, J. -M., Frankenberger, W. T. Jr. and Sims, R. C. (1999) Bioremediation of contaminated soils. ASA-CSA-SSSA, Madison, WI, USA. pp. 53-88
  4. Eccles, H. (1999) Treatment of metal-contaminated wastes: why select a biological process? T. Biotech. 17, 462-165 https://doi.org/10.1016/S0167-7799(99)01381-5
  5. Paul, E. A. (2007) Soil microbiology, ecology, and biochemistry. Elsevier Inc., Burlington, MA, USA. pp. 389-432
  6. Hughes, M. N. and Poole, R. K. (1989) Metals and microorganisms. Chapman & Hall, New York, USA. p 412
  7. Harbhajan, S. (2006) Mycoremediation: fungal bioremediation. John Wiley & Sons, Inc., Hoboken, NJ. USA. pp. 484-532
  8. Amils, R. and Ballester, A. (1999) Biohydrometallurgy and the environment toward the mining of the 21st century. Part B. Elsevier, Amsterdam. pp. 725-730
  9. Poole, R. K. and Gadd, G. M. (1989) Metal- microbe interactions. Special publications of the society for general microbiology. Volume 26. IRL Press, Oxford. pp. 119-130
  10. Poole, R. K. and Gadd, G. M. (1989) Metal- microbe interactions. Special publications of the society for general microbiology. Volume 26. IRL Press, Oxford. pp. 85-98
  11. Laskin, A. I., Bennett, J. W. and Geoffrey, G. (2001) Advances in applied microbiology. Academic Press, San Diego. pp. 135-169
  12. Chen, C. and Wang, J. (2007) Influence of metal ionic characteristics on their biosorpiton capacity by Saccharomyces cerevisiae. Appl. Microbiol. Biotechnol. 74, 911-917 https://doi.org/10.1007/s00253-006-0739-1
  13. Singleton, P. and Sainsbury, D. (1987) Dictionary of microbiology and molecular biology. John Wiley & Sons Ltd., New York, NY, USA. p. 721
  14. Cho, J.-S., Han, M.-G., Lee, H.-J. and Heo, J.-S. (1997) Copper accumulation in cells of copper- tolerant bacteria, Pseudomonas stutzeri. Korean J. Environ. Agric. 16, 48-54
  15. Prescott, L. M., Harley, J. P. and Klein, D. A. (2005) Microbiology. McGraw-Hill, New York, NY, USA. pp. 109-132
  16. Sparks, D. L. (2003) Environmental soil chemistry. Academic Press. San Diego, CA, USA. pp.133-185
  17. White, C., Wilkinson, S. C. and Gadd, G. M. (1995) The role of microorganisms in biosorption of toxic metals and radionuclides. Int. Biodeter. Biodegradation. 36, 17-40
  18. Yilmaz, E. I. (2003) Metal tolerance and biosorption capacity of Bacillus circulans strain EB1. Res. Microbio. 154, 409-415 https://doi.org/10.1016/S0923-2508(03)00116-5

피인용 문헌

  1. Current research trends for heavy metals of agricultural soils and crop uptake in Korea vol.31, pp.1, 2012, https://doi.org/10.5338/KJEA.2012.31.1.75