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PHYSIOLOGICAL ASPECTS OF METAL TOLERANCE IN PSEUDOMONAS BACTERIA ISOLATED FROM POLLUTED SITES IN OSTRAVA, CZECH REPUBLIC

Vojtkova, Hana, Janulkova, Bc. Romana, Svanova, Bc. Pavla

First published: 2012-06-18https://doi.org/10.5593/sgem2012/s16.v4018View metrics

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Title
PHYSIOLOGICAL ASPECTS OF METAL TOLERANCE IN PSEUDOMONAS BACTERIA ISOLATED FROM POLLUTED SITES IN OSTRAVA, CZECH REPUBLIC
Authors
Vojtkova, Hana, Janulkova, Bc. Romana, Svanova, Bc. Pavla
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; SGEM2012 12th International Multidisciplinary Scientific GeoConference
Publisher
Stef92 Technology
Year
2012
Pages
177 - 184 pp
ISSN
1314-2704
ISBN
Not available yet
Language
en
Publication type
Conference Paper
References44
  1. Anzai Y. & Kim H. & Park J.-Y. & Wakabayashi H. & Oyaizu H. Phylogenetic affiliation of the pseudomonads based on 16S rRNA sequence. International Journal of Systematic and Evolutionary Microbiology, vol. 50, pp. 1563-1589, 2000.

  2. Alexander M. Biodegradation and Bioremediation. Academic Press, San Diego, USA, 1994.

  3. Czech Collection of Microbiology: Oživování kultur ze želatinových disků (metodický postup). http://www.sci.muni.cz/ccm/downl/oziv_GD.pdf

  4. Filali B. K. & Taoufik J. & Zeroual Y. & Dzairi F. Z. & Talbi M. & Blaghen M. Waste water bacterial isolates resistant to heavy metals and antibiotics. Current Microbiology, vol. 41, pp. 151-156, 2000.

  5. Haefeli C. & Franklin C. & Hardy K. Plasmid-determined silver resistance in Pseudomonas stutzeri isolated from a silver mine. Journal of Bacteriology, vol. 158, pp. 389-392, 1984.

  6. Hal'ama D. & Augustín J. Degradation of aromatic hydrocarbons and derivatives by microorganisms. I. Metabolic pattern of a new isolated bacterial strain Pseudomonas putida. Biológia, vol. 35, pp. 889-896, 1980.

  7. Chakrabarty A. M. Plasmids in Pseudomonas. Annual Review of Genetics, vol. 10, pp. 7-30, 1976.

  8. Janáková I. & Vojtková, H. Adaptation of bacterial strain for the elimination of heavy metals in the sediments of Cerny Prikop. 2nd International Conference Biotechnology & Metals: 22. – 23. 9. 2011, Košice, Slovakia. Košice: Slovac Academy of Sciences – Kosice, pp. 29-33, 2011.

  9. Keramati P. & Hoodaji M. & Tahmourespour A. Multi-metal resistance study of bacteria highly resistant to mercury isolated from dental clinic effluent. African Journal of Microbiology Research, vol. 5, pp. 831-837, 2011.

  10. Kersters K. & Ludwig W. & Vancanneyt M. & De-Vos P. & Gillis M. & Schleifer K. H. Recentchange in the classification of the pseudomonads: an overview. Systematic and Applied Microbiology, vol. 19, pp. 465-477, 1996.

  11. Malik A. & Aleem A. Incidence of metal and antibiotic resistance in Pseudomonas sp. from the river water, agricultural soil irrigated with wastewater and groundwater. Environmental Monitoring and Assessment, vol. 178, pp. 293-308, 2011. SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org Soils

  12. Molaei S. & Yaghmaei S. & Ghobadi Z. A study of Acidithiobacillus ferrooxidans DSMZ 583 adaptation to heavy metals. Iranian Journal of Biotechnology, vol. 9, pp. 133-144, 2011.

  13. Nakahara H. & Ishikawa T. & Sarai Y. & Kondo I. & Kozokue H. & Silver S. Linkage of mercury, cadmium and arsenate and drug resistance in clinical isolates of Pseudomonas aeruginosa. Applied and Environmental Microbiology, vol. 33, pp. 975- 976, 1977.

  14. Palleroni N. J. Pseudomonas classification. Antonie van Leeuwenhoek, vol. 64, pp. 231-251, 1993.

  15. Ramos R. J. Pseudomonas Volume 1. Genomics, life style and molecular architecture. Springer-Verlag, New York, USA, 2004.

  16. Robinson N. J. & Whitehall S. K. & Clavet J. S. Microbial metallotioneins. Advances in Microbial Physiology, vol. 44, pp. 183-213, 2001.

  17. Sedlá ček I. Biochemical and physiological properties of gram-negative non- fermenting rods. Remedia Klinická Mikrobiologie, vol. 3, pp. 89-93, 2000.

  18. Shoeb, E. Genetic basic of heavy me tal tolerance in bacteria. Ph.D. thesis, University of Karachi, Pakistan, 2006.

  19. Silver S. & Mistra T. K. Plasmid-mediated heavy metal resistances. Annual Review of Microbiology, vol. 42, pp. 717-743, 1988.

  20. Spiers A. J. & Buckling A. & Rainey P. B. The causes of Pseudomonas diversity. Microbiology, vol. 146, pp. 2345-2350, 2000.

  21. Timmis K. N. Pseudomonas putida: a cosmopolitan opportunist par excellence. Evnironmental Microbiology, vol. 4, pp. 779-781, 2002.

  22. Wong P. K. & Lam K. C. & So C. M. Removal and recovery of Cu(II) from industrial effluent by immobilized cells of Pseudomonas putida II-11. Applied Microbiology and Biotechnology, vol. 39, pp. 127-131, 1993. SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org 12th International Multidisciplinary Scientific GeoConference SGEM 2012 SGEM2012 - www.sgem.org

  23. Anzai Y. & Kim H. & Park J.-Y. & Wakabayashi H. & Oyaizu H. Phylogenetic affiliation of the pseudomonads based on 16S rRNA sequence. International Journal of Systematic and Evolutionary Microbiology, vol. 50, pp. 1563-1589, 2000.

  24. Alexander M. Biodegradation and Bioremediation. Academic Press, San Diego, USA, 1994.

  25. Czech Collection of Microbiology: Oživování kultur ze želatinových disků (metodický postup). http://www.sci.muni.cz/ccm/downl/oziv_GD.pdf

  26. Filali B. K. & Taoufik J. & Zeroual Y. & Dzairi F. Z. & Talbi M. & Blaghen M. Waste water bacterial isolates resistant to heavy metals and antibiotics. Current Microbiology, vol. 41, pp. 151-156, 2000.

  27. Haefeli C. & Franklin C. & Hardy K. Plasmid-determined silver resistance in Pseudomonas stutzeri isolated from a silver mine. Journal of Bacteriology, vol. 158, pp. 389-392, 1984.

  28. Hal'ama D. & Augustín J. Degradation of aromatic hydrocarbons and derivatives by microorganisms. I. Metabolic pattern of a new isolated bacterial strain Pseudomonas putida. Biológia, vol. 35, pp. 889-896, 1980.

  29. Chakrabarty A. M. Plasmids in Pseudomonas. Annual Review of Genetics, vol. 10, pp. 7-30, 1976.

  30. Janáková I. & Vojtková, H. Adaptation of bacterial strain for the elimination of heavy metals in the sediments of Cerny Prikop. 2nd International Conference Biotechnology & Metals: 22. – 23. 9. 2011, Košice, Slovakia. Košice: Slovac Academy of Sciences – Kosice, pp. 29-33, 2011.

  31. Keramati P. & Hoodaji M. & Tahmourespour A. Multi-metal resistance study of bacteria highly resistant to mercury isolated from dental clinic effluent. African Journal of Microbiology Research, vol. 5, pp. 831-837, 2011.

  32. Kersters K. & Ludwig W. & Vancanneyt M. & De-Vos P. & Gillis M. & Schleifer K. H. Recentchange in the classification of the pseudomonads: an overview. Systematic and Applied Microbiology, vol. 19, pp. 465-477, 1996.

  33. Malik A. & Aleem A. Incidence of metal and antibiotic resistance in Pseudomonas sp. from the river water, agricultural soil irrigated with wastewater and groundwater. Environmental Monitoring and Assessment, vol. 178, pp. 293-308, 2011. SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org Soils

  34. Molaei S. & Yaghmaei S. & Ghobadi Z. A study of Acidithiobacillus ferrooxidans DSMZ 583 adaptation to heavy metals. Iranian Journal of Biotechnology, vol. 9, pp. 133-144, 2011.

  35. Nakahara H. & Ishikawa T. & Sarai Y. & Kondo I. & Kozokue H. & Silver S. Linkage of mercury, cadmium and arsenate and drug resistance in clinical isolates of Pseudomonas aeruginosa. Applied and Environmental Microbiology, vol. 33, pp. 975- 976, 1977.

  36. Palleroni N. J. Pseudomonas classification. Antonie van Leeuwenhoek, vol. 64, pp. 231-251, 1993.

  37. Ramos R. J. Pseudomonas Volume 1. Genomics, life style and molecular architecture. Springer-Verlag, New York, USA, 2004.

  38. Robinson N. J. & Whitehall S. K. & Clavet J. S. Microbial metallotioneins. Advances in Microbial Physiology, vol. 44, pp. 183-213, 2001.

  39. Sedlá ček I. Biochemical and physiological properties of gram-negative non- fermenting rods. Remedia Klinická Mikrobiologie, vol. 3, pp. 89-93, 2000.

  40. Shoeb, E. Genetic basic of heavy me tal tolerance in bacteria. Ph.D. thesis, University of Karachi, Pakistan, 2006.

  41. Silver S. & Mistra T. K. Plasmid-mediated heavy metal resistances. Annual Review of Microbiology, vol. 42, pp. 717-743, 1988.

  42. Spiers A. J. & Buckling A. & Rainey P. B. The causes of Pseudomonas diversity. Microbiology, vol. 146, pp. 2345-2350, 2000.

  43. Timmis K. N. Pseudomonas putida: a cosmopolitan opportunist par excellence. Evnironmental Microbiology, vol. 4, pp. 779-781, 2002.

  44. Wong P. K. & Lam K. C. & So C. M. Removal and recovery of Cu(II) from industrial effluent by immobilized cells of Pseudomonas putida II-11. Applied Microbiology and Biotechnology, vol. 39, pp. 127-131, 1993. SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org 12th International Multidisciplinary Scientific GeoConference SGEM 2012 SGEM2012 - www.sgem.org

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