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Topraktaki Ağır Metallerin Absorbsiyonu Üzerine Bakteri İzolatlarının Etkisi

Year 2017, Volume: 4 Issue: 3, 355 - 365, 25.07.2017

Abstract

Bu çalışmada da toprakların ağır metal içerikleri üzerine çeşitli
bakteri izolatlarının etkileri araştırılmıştır. Araştırmada materyal olarak; 13
farklı bakteri izolatı ve çimento fabrikası baca dumanlarına maruz kalmış tarım
topraklarından alınan toprak örnekleri kullanılmıştır. Çalışma 2 aşamada
yürütülmüştür. I. Aşamada 8 adet ağır metal (Fe, Cu, Zn, Mn, Al, Ni, Cd ve Pb)
ihtiva eden Nutrient Broth besiyeri içerisine 13 farklı bakteri izolatları
ilave edilmiş, 2 saatlik inkübasyon sonrası bakteriler tarafından
gerçekleştirilen metal absorbsiyon kapasiteleri belirlenmiştir. II. Aşamada ise
toprak örneklerine I. Aşamadan elde edilen ve etkinliği belirlenen 5 farklı
bakteri (Staphylococcus cohnii, Sphingobium yanoikuyae, Vibrio hollisae, Xanthobacter flavus, Acinetobacter
lwoffi
) izolatları topraklara aşılanmış, 6 haftalık inkübasyon sonrası
bakterilerin topraktaki metal absorbsiyon kapasiteleri belirlenmiştir.
Araştırma sonuçlarına göre, S. cohnii izolatının toprakta en yüksek oranda Pb metalini, S. Yanoikuyae, V. Hollisae, X. flavus ve A. lwoffi izolatının en yüksek oranda Al metalini absorbe
ettikleri belirlenmiştir.
Elde edilen sonuçlar ağır metal içeren
toprakların bioremediasyon çalışmalarında bazı bakterilerin kullanımının büyük
oranda katkı sağlayacağı sonucunu ortaya koymuştur.



 

References

  • Abdel-El-Haleem, D. 2003. Acinetobacter: environmental and biotechnological applications. African Journal of Biotechnology Vol. 2(4): 71-74.
  • Alexander, M. 1999. Biodegradation and bioremediation second edition, Academic Press New York.
  • Anonim, 1994. DSİ Teknik Bülteni. Devlet Su İşleri Genel Müdürlüğü, No: 80, Ankara.
  • Anonim, 2006. Kirleticiler-1, Ağır Metaller, Çevre için hekimler derneği. www.cevrehekim.org
  • Ansari, M.I. and Malik, A. 2007. Biosorption of nickel and cadmium by metal resistant bacterial isolates from agricultural soil irrigated with industrial waste water> bioresource Technology. 98 (16): 3149-3153.
  • Boswell, C.D, Dick, R.E, Eccles, H, Macaskie, L.E. 2001. Phosphate uptake and release by Acinetobacter johnsonii in continuous culture and coupling of phosphate release to heavy metal accumulation. Journal of Industrial Microbiology and Biotechnology. 26: 333-340
  • Bosecker, K. 2001. Microbial leaching in environmental clean-up programmes, Hydrometallurgy, 59: 245-248. Bai, Y., Bartkiewicz, B. 2009. Removal of cadmium from wastewater using ion exchange resin amberjet 1200H columns. Pol. J. Environ. Stud. 18: 1191.
  • Chubar, N., Carvalho, J., Correia, M., 2004. Heavy metals biosorption on cork biomass: effect of the pre-treatment, Physicochem. Eng. Aspects 238: 51-58.
  • Cookson, J.T. 1995. Bioremediation engineering: Design and Applications. Mc Graw Hill, New York. 524 p. Cunliffe, M., Kertesz, M.A. 2006. Effect of Sphingobium yanoikuyae B1 inoculation on bacterial community dynamics and polycyclic aromatic hydrocarbon degradation in aged and freshly PAH-contaminated soils. Environment Pollution 144(1): 228-237.
  • Daugulis, A.J., Janikowski, T.B. 2002. Scale-up performance of a partitioning bioreactor for the degradation of polyaromatic hydrocarbons by Sphingomonas aromaticivorans. Biotechnol Lett 24: 591-594
  • Demiralay, İ., 1993. Toprak fiziksel analizleri, Atatürk Üniversitesi, Ziraat Fakültesi Yayın No: 143, Erzurum. D.İ.E., Devlet istatistik Enstitüsü, 2003, 14 mayıs.2001 Yılına Ait Belediye Katı Atık İstatistikleri Anketinin Geçici Sonuçları, Ankara.
  • El-Hendawy, H.H., Dena, A., El-Shatoury, E.H., Ghanem, S.M. 2009. Bioaccumulation of heavy metals by Vibrio alginolyticus isolated from wastes of Iron and Steal Factory, Helwan, Egypt. Egypt. Acad. J. biolog. Sci., 1(1): 23-28.
  • Francisco, R., Alpoim, M.C., Morais, P.V. 2002. Diversity of chromium-resistant and reducing bacteria in a chromium-contaminated activated sludge. J. Appl. Microbiol. 92: 837-43.
  • Freeze, R.A., Cherry, J.A. 1997. Groundwater Prentice Hall, Inc. Englewood Cliffs, New Jersey, U.S.A.
  • Gee, G.W., Bauder, J.W. 1986. Practicle-size analysis. Methods of soil analysis Part I.Physical and Mineralogical Methods, Second Edition. American Society of Agronomy, Soil Sci. Society of America-Madison, Visconsin, USA, 383-409.
  • Germida, J.J. 1993. Cultural methods for soil microorganisms. In: Martin RC, editor. Soil Sampling and Methods of Analysis. Boca Raton, FL, USA: Lewis Publishers, pp. 263-275.
  • Goh, T. Boon., Arnaud, R.J.St., Mermut, A.R. 1993. Carbonaters. Chapter 20, Soil sampling and methods of analysis. Edited by: Martin R. Carter. Canadian Society of Soil Science. Lewis Publishers. Boca Raton, Florida, 177-185.
  • Hardman, D.J., Gowland, P.C., Slater. J.H. 1986. Large plasmids from soil bacteria enriched on halogenated alkanoic acids. Appl. Environ. Microbiol. 51: 44-51.
  • Hendershot, W.H., Lalande, H., Duquette, M. 1993. Soil reaction and excahngeable acidity. Chapter 16, Soil Sampling and Methods of Analysis. Edited by: Martin R.Carter. Canadian Society of Soil Science. Lewis Publishers. Boca Raton, Florida, 141-145.
  • Hussein, H., Ibrahim, S.F., Kandeel, K., Moawad, H. 2004. Biosorption of heavy metals from wastewater using Pseudomonas sp. Electron J. Biotechn, 7: 38-46.
  • Ilier, R., Mavituna, F. 1991. Biosorption of copper from aqueous solutions by immobilised Rhizopus arrhizus. In: 1.st International Symposium on Enviromental Pollution, June, 1: 74-79, İzmir, Türkiye.
  • Islam, K.R., Weil, R.R. 2000. Land use effect on soil quality in tropicaln forest ecosystem of Bangladesh. Agric. Ecosyst. Environ. 79: 9-16.
  • Kızıloğlu, F.T., Bilen, S. 1997. Toprak mikrobiyolojisi laboratuvar uygulamaları. Atatürk. Üniversitesi Ziraat Fakültesi Yayın No: 193, Erzurum.
  • Knudsen, D., Peterson, G.A., Pratt, P.F. 1982. Lithium, sodium and potasium. Methods of Soil Analysis Part 2. Chemical and Microbiological Properties Second Edition. American Society of Agronomy, Soil Science Society of America-Madison, Visconsin, USA, 225-245.
  • Laukova, A. 1994. Resistance to heavy metals in ruminal staphylococci. Vet. Med. (Praha). 39(7): 389-95.
  • Lee, W.S., Park, C.S., Kim, J.E., Yoon, B.D., Oh, H.M. 2002. Characterizztion of TCE degrading bacteria and their application to wastewater treatment. J. Microbiol. Biotechnol. 12: 569- 575.
  • Mc Gill, W.B., Figueiredo, C.T. 1993. Total nitrogen. Chapter 22. Soil Sampling and Methods of Analysis. Edited by: Martin R.Carter. Canadian Society of Soil Sci. Lewis Publishers. Boca Raton, Florida, 201-211.
  • Mertens, D. 2005. AOAC Official Method 975.03. Metal in Plants and Pet Foods. Official Methods of Analysis, 18th edn. Horwitz, W., Latimer, G.W. (Eds). Chapter 3, pp 3-4, Gaitherburg, Maryland 20877-2417, USA
  • Olaniran, A.O., Babalola, G.O. Okoh, A.I. 2001. Aerobic dehalogenation potentials of 4 bacterial species isolated from soil and sewage sludge. Chemosphere 45: 45-50.
  • Olsen, S.R., Sommers, L.E. 1982. Phosphorus. Methods of Soil Analysis Part 2, Chemical and Microbiological Properties. Second Edition. American Society of Agronomy. Soil Sci. Society of Amerika-Madison, Visconsin, USA, 403-427.
  • Rhoades, J.D. 1982. Cation exchange capacity. Methods of Soil Analysis Part 2, Chemical and Microbiological Properties. Second Edition American Soci. Of Argon. Soil Science Society of Amerika-Madison, Visconsin, USA, 149-157.
  • Roane, T.M. 1999. Lead resistance in two bacterial isolates from heavy metalcontaminated soils. Microb. Ecol. 37: 218-224.
  • Rusansky, S., Avigad, R., Michaeli, S., Gutnick, D.L. 1987. Involvement of a plasmid in growth on and dispersion of crude oil by Acinetobacter calcoaceticus RA57. Appl. Environ. Microbiol. 53: 1918-1923.
  • Saygılı, H. 1995. Fitobakteriyoloji, Ege Üni.Ziraat Fak. Bitki Koruma Böl. Ders Kitabı, Doğruluk Matbaası, Bornova-İzmir.
  • Smith, J.L., Colllins, H.P. 2007. Management of organisms and their processes in soils. In Soil Microbiology, ecology and biochem. ed by Eldor A.P.. Elsevier Inc., Bulington, USA pp.389-430.
  • Song, J.S., Lee, D.H., Lee K., Kim, C.K. 2003. Characteristics of Several Bacterial Isolates Capable of Degrading Chloroaliphatic Compounds via Hydrolytic Dechlorination. The Journal of Microbiology, p.277-283.
  • Tiessen, H., Moir, J.O. 1993. Total organic carbon. Chapter 21.Soil Sampling and Methods of Analysis. Edited by: Martin R.Carter. Canadian Soc. of Soil Science. Lewis Publishers. Boca Raton, Florida, 187-199.
  • USDA, Soil Survey Staff. 1999. Soil Taxonomy a Basic System of Soil Classification for Making and Interpreting Soil Surveys 2nd ed. US Dept. Agric. Soil Conservation Service Washington.
  • Volesky B. 2003. Sorption and Biosorption. Montreal, Kanada: BV Sorbex, Inc, 316.
  • Volesky B. 2004. Sorption and Biosorption. St. Lambert, Quebec: BV Sorbex, Inc, 103-28.
  • Wang, C., Wang, F., Hong, Q., Zhang, Y., Kengara, F.O., Li, Z., Jiang, X. 2013. Isolation and characterization of a toxic metal-tolerant Phenanthrene-degrader Sphingobium sp. in a two-liquid-phase partitioning bioreactor (TPPB). Environmental Earth Sciences, Volume 70, Issue 4, pp. 1765–1773.
  • Wuana, A.R., Okieimen, F.E. 2011. Heavy Metals in Contaminated Soils: A Review of Sources, Chemistry, Risks and Best Available Strategies for Remediation. International Scholarly Research Network ISRN Ecology, Article ID 402647, p.20.
  • Yıldız, N., Bircan, H. 1991. Araştırma ve Deneme Metotları, Atatürk Üniv. Yay. No: 697, Zira. Fak. Yay. No: 305, Ders Kitapları Serisi No:57, Erzurum.
Year 2017, Volume: 4 Issue: 3, 355 - 365, 25.07.2017

Abstract

References

  • Abdel-El-Haleem, D. 2003. Acinetobacter: environmental and biotechnological applications. African Journal of Biotechnology Vol. 2(4): 71-74.
  • Alexander, M. 1999. Biodegradation and bioremediation second edition, Academic Press New York.
  • Anonim, 1994. DSİ Teknik Bülteni. Devlet Su İşleri Genel Müdürlüğü, No: 80, Ankara.
  • Anonim, 2006. Kirleticiler-1, Ağır Metaller, Çevre için hekimler derneği. www.cevrehekim.org
  • Ansari, M.I. and Malik, A. 2007. Biosorption of nickel and cadmium by metal resistant bacterial isolates from agricultural soil irrigated with industrial waste water> bioresource Technology. 98 (16): 3149-3153.
  • Boswell, C.D, Dick, R.E, Eccles, H, Macaskie, L.E. 2001. Phosphate uptake and release by Acinetobacter johnsonii in continuous culture and coupling of phosphate release to heavy metal accumulation. Journal of Industrial Microbiology and Biotechnology. 26: 333-340
  • Bosecker, K. 2001. Microbial leaching in environmental clean-up programmes, Hydrometallurgy, 59: 245-248. Bai, Y., Bartkiewicz, B. 2009. Removal of cadmium from wastewater using ion exchange resin amberjet 1200H columns. Pol. J. Environ. Stud. 18: 1191.
  • Chubar, N., Carvalho, J., Correia, M., 2004. Heavy metals biosorption on cork biomass: effect of the pre-treatment, Physicochem. Eng. Aspects 238: 51-58.
  • Cookson, J.T. 1995. Bioremediation engineering: Design and Applications. Mc Graw Hill, New York. 524 p. Cunliffe, M., Kertesz, M.A. 2006. Effect of Sphingobium yanoikuyae B1 inoculation on bacterial community dynamics and polycyclic aromatic hydrocarbon degradation in aged and freshly PAH-contaminated soils. Environment Pollution 144(1): 228-237.
  • Daugulis, A.J., Janikowski, T.B. 2002. Scale-up performance of a partitioning bioreactor for the degradation of polyaromatic hydrocarbons by Sphingomonas aromaticivorans. Biotechnol Lett 24: 591-594
  • Demiralay, İ., 1993. Toprak fiziksel analizleri, Atatürk Üniversitesi, Ziraat Fakültesi Yayın No: 143, Erzurum. D.İ.E., Devlet istatistik Enstitüsü, 2003, 14 mayıs.2001 Yılına Ait Belediye Katı Atık İstatistikleri Anketinin Geçici Sonuçları, Ankara.
  • El-Hendawy, H.H., Dena, A., El-Shatoury, E.H., Ghanem, S.M. 2009. Bioaccumulation of heavy metals by Vibrio alginolyticus isolated from wastes of Iron and Steal Factory, Helwan, Egypt. Egypt. Acad. J. biolog. Sci., 1(1): 23-28.
  • Francisco, R., Alpoim, M.C., Morais, P.V. 2002. Diversity of chromium-resistant and reducing bacteria in a chromium-contaminated activated sludge. J. Appl. Microbiol. 92: 837-43.
  • Freeze, R.A., Cherry, J.A. 1997. Groundwater Prentice Hall, Inc. Englewood Cliffs, New Jersey, U.S.A.
  • Gee, G.W., Bauder, J.W. 1986. Practicle-size analysis. Methods of soil analysis Part I.Physical and Mineralogical Methods, Second Edition. American Society of Agronomy, Soil Sci. Society of America-Madison, Visconsin, USA, 383-409.
  • Germida, J.J. 1993. Cultural methods for soil microorganisms. In: Martin RC, editor. Soil Sampling and Methods of Analysis. Boca Raton, FL, USA: Lewis Publishers, pp. 263-275.
  • Goh, T. Boon., Arnaud, R.J.St., Mermut, A.R. 1993. Carbonaters. Chapter 20, Soil sampling and methods of analysis. Edited by: Martin R. Carter. Canadian Society of Soil Science. Lewis Publishers. Boca Raton, Florida, 177-185.
  • Hardman, D.J., Gowland, P.C., Slater. J.H. 1986. Large plasmids from soil bacteria enriched on halogenated alkanoic acids. Appl. Environ. Microbiol. 51: 44-51.
  • Hendershot, W.H., Lalande, H., Duquette, M. 1993. Soil reaction and excahngeable acidity. Chapter 16, Soil Sampling and Methods of Analysis. Edited by: Martin R.Carter. Canadian Society of Soil Science. Lewis Publishers. Boca Raton, Florida, 141-145.
  • Hussein, H., Ibrahim, S.F., Kandeel, K., Moawad, H. 2004. Biosorption of heavy metals from wastewater using Pseudomonas sp. Electron J. Biotechn, 7: 38-46.
  • Ilier, R., Mavituna, F. 1991. Biosorption of copper from aqueous solutions by immobilised Rhizopus arrhizus. In: 1.st International Symposium on Enviromental Pollution, June, 1: 74-79, İzmir, Türkiye.
  • Islam, K.R., Weil, R.R. 2000. Land use effect on soil quality in tropicaln forest ecosystem of Bangladesh. Agric. Ecosyst. Environ. 79: 9-16.
  • Kızıloğlu, F.T., Bilen, S. 1997. Toprak mikrobiyolojisi laboratuvar uygulamaları. Atatürk. Üniversitesi Ziraat Fakültesi Yayın No: 193, Erzurum.
  • Knudsen, D., Peterson, G.A., Pratt, P.F. 1982. Lithium, sodium and potasium. Methods of Soil Analysis Part 2. Chemical and Microbiological Properties Second Edition. American Society of Agronomy, Soil Science Society of America-Madison, Visconsin, USA, 225-245.
  • Laukova, A. 1994. Resistance to heavy metals in ruminal staphylococci. Vet. Med. (Praha). 39(7): 389-95.
  • Lee, W.S., Park, C.S., Kim, J.E., Yoon, B.D., Oh, H.M. 2002. Characterizztion of TCE degrading bacteria and their application to wastewater treatment. J. Microbiol. Biotechnol. 12: 569- 575.
  • Mc Gill, W.B., Figueiredo, C.T. 1993. Total nitrogen. Chapter 22. Soil Sampling and Methods of Analysis. Edited by: Martin R.Carter. Canadian Society of Soil Sci. Lewis Publishers. Boca Raton, Florida, 201-211.
  • Mertens, D. 2005. AOAC Official Method 975.03. Metal in Plants and Pet Foods. Official Methods of Analysis, 18th edn. Horwitz, W., Latimer, G.W. (Eds). Chapter 3, pp 3-4, Gaitherburg, Maryland 20877-2417, USA
  • Olaniran, A.O., Babalola, G.O. Okoh, A.I. 2001. Aerobic dehalogenation potentials of 4 bacterial species isolated from soil and sewage sludge. Chemosphere 45: 45-50.
  • Olsen, S.R., Sommers, L.E. 1982. Phosphorus. Methods of Soil Analysis Part 2, Chemical and Microbiological Properties. Second Edition. American Society of Agronomy. Soil Sci. Society of Amerika-Madison, Visconsin, USA, 403-427.
  • Rhoades, J.D. 1982. Cation exchange capacity. Methods of Soil Analysis Part 2, Chemical and Microbiological Properties. Second Edition American Soci. Of Argon. Soil Science Society of Amerika-Madison, Visconsin, USA, 149-157.
  • Roane, T.M. 1999. Lead resistance in two bacterial isolates from heavy metalcontaminated soils. Microb. Ecol. 37: 218-224.
  • Rusansky, S., Avigad, R., Michaeli, S., Gutnick, D.L. 1987. Involvement of a plasmid in growth on and dispersion of crude oil by Acinetobacter calcoaceticus RA57. Appl. Environ. Microbiol. 53: 1918-1923.
  • Saygılı, H. 1995. Fitobakteriyoloji, Ege Üni.Ziraat Fak. Bitki Koruma Böl. Ders Kitabı, Doğruluk Matbaası, Bornova-İzmir.
  • Smith, J.L., Colllins, H.P. 2007. Management of organisms and their processes in soils. In Soil Microbiology, ecology and biochem. ed by Eldor A.P.. Elsevier Inc., Bulington, USA pp.389-430.
  • Song, J.S., Lee, D.H., Lee K., Kim, C.K. 2003. Characteristics of Several Bacterial Isolates Capable of Degrading Chloroaliphatic Compounds via Hydrolytic Dechlorination. The Journal of Microbiology, p.277-283.
  • Tiessen, H., Moir, J.O. 1993. Total organic carbon. Chapter 21.Soil Sampling and Methods of Analysis. Edited by: Martin R.Carter. Canadian Soc. of Soil Science. Lewis Publishers. Boca Raton, Florida, 187-199.
  • USDA, Soil Survey Staff. 1999. Soil Taxonomy a Basic System of Soil Classification for Making and Interpreting Soil Surveys 2nd ed. US Dept. Agric. Soil Conservation Service Washington.
  • Volesky B. 2003. Sorption and Biosorption. Montreal, Kanada: BV Sorbex, Inc, 316.
  • Volesky B. 2004. Sorption and Biosorption. St. Lambert, Quebec: BV Sorbex, Inc, 103-28.
  • Wang, C., Wang, F., Hong, Q., Zhang, Y., Kengara, F.O., Li, Z., Jiang, X. 2013. Isolation and characterization of a toxic metal-tolerant Phenanthrene-degrader Sphingobium sp. in a two-liquid-phase partitioning bioreactor (TPPB). Environmental Earth Sciences, Volume 70, Issue 4, pp. 1765–1773.
  • Wuana, A.R., Okieimen, F.E. 2011. Heavy Metals in Contaminated Soils: A Review of Sources, Chemistry, Risks and Best Available Strategies for Remediation. International Scholarly Research Network ISRN Ecology, Article ID 402647, p.20.
  • Yıldız, N., Bircan, H. 1991. Araştırma ve Deneme Metotları, Atatürk Üniv. Yay. No: 697, Zira. Fak. Yay. No: 305, Ders Kitapları Serisi No:57, Erzurum.
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Details

Journal Section Research Articles
Authors

Serdar Bilen

Emrah Yıldırım This is me

Publication Date July 25, 2017
Submission Date July 25, 2017
Published in Issue Year 2017 Volume: 4 Issue: 3

Cite

APA Bilen, S., & Yıldırım, E. (2017). Topraktaki Ağır Metallerin Absorbsiyonu Üzerine Bakteri İzolatlarının Etkisi. Turkish Journal of Agricultural and Natural Sciences, 4(3), 355-365.