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Original Articles

Phytoextraction and Assisted Phytoextraction of Metals from Agriculture Used Soil

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Pages 1862-1872 | Received 15 Sep 2011, Accepted 23 May 2012, Published online: 10 Jun 2013

References

  • Alvarez , M. , Huygens , D. , Fernandez , C. , Gacitúa , Y. , Olivares , E. , Saavedra , I. , Alberdi , M. and Valenzuela , E. 2009 . Effect of ectomycorrhizal colonization and drought on reactive oxygen species metabolism of Nothofagus dombeyi roots . Tree Physiology , 29 : 1047 – 1057 .
  • Bataillard , P. , Cambier , P. and Picot , C. 2003 . Short-term transformation of lead and cadmium compounds in soil after contamination . European Journal of Soil Science , 54 : 365 – 376 .
  • Baum , C. , Hrynkiewicz , K. , Leinweber , P. and Meissner , R. 2006 . Heavy-metal mobilization and uptake by mycorrhizal and nonmycorrhizal willows (Salix × dasyclados) . Journal of Plant Nutrition and Soil Science , 169 : 516 – 522 .
  • Begonia , G. B. , Davis , C. D. , Begonia , F. T. and Gray , C. N. 1998 . Growth responses of Indian mustard (Brassica juncea L. Czern.) and its phytoextraction of lead from a contaminated soil . Bulletin of Environmental Contamination and Toxicology , 61 : 38
  • Blaylock , M. J. and Huang , J. W. 1999 . “ Phytoextraction of metals ” . In Phytoremediation of toxic metals: Using plants to clean up the environment , Edited by: Raskin , I. and Ensley , B.D. 53 – 70 . New York : John Wiley & Sons .
  • Borghi , M. , Tognetti , R. , Monteforti , G. and Sebastiani , L. 2008 . Responses of two poplar species (Populus alba and Populus × canadensis) to high copper concentrations . Environmental and Experimental Botany , 62 : 290 – 299 .
  • Brennan , M. A. and Shelley , M. L. 1999 . A model of the uptake, translocation, and accumulation of lead (Pb) by maize for the purpose of phytoextraction . Ecological Engineering , 12 : 271
  • Burzyński , M. and Buczek , J. 1994 . The influence of Cd, Pb, Cu, and Ni on NO3 uptake by cucumber seedlings, II: In vivo and in vitro effects of Cd, Pb, Cu, and Ni on the plasmalemma ATPase and oxidoreductase from cucumber seedlings roots . Acta Physiologiae Plantarum , 16 : 297 – 302 .
  • Chaney , R. L. , Ryan , J. A. , Li , Y. M. and Brown , S. L. 1999 . “ Soil cadmium as a threat to human health ” . In Cadmium in soils and plants , Edited by: McLaughlin , M. J. and Singh , B. R. 219 – 256 . Dordrecht , , the Netherlands : Kluwer .
  • Clark , R. B. and Zeto , S. K. 2000 . Mineral acquisition by arbuscular mycorrhizal fungi . Journal of Plant Nutrition , 23 : 867 – 902 .
  • Dos Santos Utmazian , M. N. , Schweiger , P. , Sommer , P. , Gorfer , M. , Strauss , J. and Wenzel , W. W. 2007 . Influence of Cadophora finlandica and other microbial treatments on cadmium and zinc uptake in willows grown on polluted soil . Plant, Soil and Environment , 53 : 158 – 166 .
  • Galli , U. , Schuepp , H. and Brunold , C. 1994 . Heavy metal binding by mycorrhizal fungi . Physiologia Plantarum , 92 : 364 – 368 .
  • Gao , G. and Chang , C. 1996 . Changes in CEC and particle size distribution of soils associated with long-term annual applications of cattle feedlot manure . Soil Science , 161 : 115 – 120 .
  • Greger , M. and Landberg , T. 1999 . Use of willow in phytoextraction . International Journal of Phytoremediation , 1 : 115 – 123 .
  • Hammer , D. , Kayser , A. and Keller , C. 2003 . Phytoextraction of Cd and Zn with Salix viminalis in field trials . Soil Use and Management , 19 : 187 – 192 .
  • Houba , V. J. G. , Lexmond , T. M. , Novozamsky , I. and van der Lee , J. J. 1996 . State of the art and future developments in soil analysis for bioavailability assessment . Science of the Total Environment , 178 : 21 – 28 .
  • Joner , E. J. and Leyval , C. 2001 . Time course of heavy metal uptake in maize and clover as affected by root density and different mycorrhizal inoculation regimes . Biology and Fertility of Soils , 33 : 351 – 357 .
  • Kłobus , G. , Burzyńnski , M. and Buczek , J. 2002 . “ Heavy metal and nitrogen metabolism ” . In Physiology and biochemistry of metal toxicity and tolerance Edited by: Prasad , M. N. V. and Strzałka , K. 326 – 327 . Dordrecht , , the Netherlands: Kluwer
  • Koele , N. and Hildebrand , E. E. 2008 . The ecological significance of the coarse soil fraction for Picea abies (L.) Karst. seedling nutrition . Plant and Soil , 312 : 163 – 174 .
  • Koske , R. E. and Gemma , J. N. 1989 . A modified procedure for staining roots to detect V-A mycorrhizas . Mycological Research , 92 : 486 – 488 .
  • Leyval , C. , Turnau , K. and Haselwandter , K. 1997 . Effect of heavy metal pollution on mycorrhizal colonization and function: Physiological, ecological, and applied aspects . Mycorrhiza , 7 : 39 – 53 .
  • Mehta , S. K. and Gaur , J. P. 1999 . Heavy-metal-induced proline accumulation and its role in ameliorating metal toxicity in Chlorella vulgaris . New Phytologist , 143 : 253 – 259 .
  • Robinson , B. H. , Mills , T. M. , Petit , D. , Fung , L. E. , Green , S. R. and Clothier , B. E. 2000 . Natural and induced cadmium-accumulation in poplar and willows: Implications for phytoremediation . Plant and Soil , 227 : 301 – 306 .
  • Rauret , G. , Lopez-Sanchez , J. F. , Sahuquillo , A. , Barahona , E. , Lachica , M. , Ure , A. M. , Davidson , C. M. , Gomez , A. , Luck , D. , Bacon , J. , Yli-Halla , M. , Muntau , H. and Quevauviller , P. 2000 . Application of a modified BCR sequential extraction (three-step) procedure for the determination of extractable trace metal contents in a sewage-sludge-amended soil reference material (CRM 483), complemented by a three-year stability study of acetic acid and EDTA-extractable metal content . Journal of Environmental Monitoring , 2 : 228 – 233 .
  • Rosselli , W. , Keller , C. and Boschi , K. 2003 . Phytoextraction capacity of trees growing on a metal contaminated soil . Plant and Soil , 256 : 265 – 272 .
  • Shah , K. and Dubey , R. S. 1998 . Effect of cadmium on proline accumulation and ribonuclease activity in rice seedlings: Role of proline as a possible enzyme protectant . Biologia Plantarum , 40 : 121 – 130 .
  • Singh , S. P. , Tack , F. M. G. and Verloo , M. G. 1996 . Extractability and bioavailability of heavy metals in surface soils derived from dredged sediments . Chemical Speciation and Bioavailability , 8 : 105 – 110 .
  • Száková , J. , Tlustoš , P. , Goessler , W. , Frková , Z. and Najmanová , J. 2009 . Mobility of arsenic and its compounds in soil and soil solution: The effect of soil pretreatment and extraction methods . Journal of Hazardous Materials , 172 : 1244 – 1251 .
  • Trakal , L. , Neuberg , M. , Tlustoš , P. , Száková , J. , Tejnecký , V. and Drábek , O. 2011 . Dolomite limestone application as a chemical immobilization of metal contaminated soil . Plant, Soil, and Environment , 57 : 173 – 179 .
  • Vervaeke , P. , Tack , F. M. G. , Lust , N. and Verloo , M. 2004 . Short- and longer-term effects of the willow root system on metal extractability in contaminated dredged sediment . Journal of Environmental Quality , 33 : 976 – 983 .
  • Vosátka , M. , Albrechtová , J. and Patten , R. 2008 . “ The international market development for mycorrhizal technology ” . In Mycorrhiza: Genetics and molecular biology, eco-function, biotechnology, ecophysiology, structure, and systematics , 3rd , Edited by: Varma , A. 419 – 438 . Berlin : Springer .
  • Vysloužilová , M. , Tlustoš , P. , Száková , J. and Pavlíková , D. 2003 . As, Cd, Pb, and Zn uptake by different Salix spp. grown at soils enriched by high loads of these elements . Plant, Soil, and Environment , 49 : 191 – 196 .
  • Zbíral , J. 2000 . Determination of phosphorus in calcareous soils by Mehlich 3, Mehlich 2, CAL, and Egner extractants . Communications in Soil Science and Plant Analysis , 31 : 3037 – 3048 .
  • Zimmer , D. , Baum , C. , Leinweber , P. , Hrynkiewicz , K. and Meissner , R. 2009 . Associated bacteria increase the phytoextraction of cadmium and zinc from a metal-contaminated soil by mycorrhizal willows . International Journal of Phytoremediation , 11 : 200 – 213 .

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