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Original Articles

Uptake of Arsenic by Maize Inoculated with Three Different Arbuscular Mycorrhizal Fungi

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Pages 735-743 | Received 27 Jun 2008, Accepted 10 Aug 2009, Published online: 09 Mar 2010

References

  • Ahmed , F. R. S. , Killham , K. and Alexander , I. 2006 . Influences of arbuscular mycorrhizal fungus Glomus mosseae on growth and nutrition of lentil irrigated with arsenic contaminated water . Plant and Soil , 283 : 33 – 41 .
  • Al Agely , A. , Sylvia , D. M. and Ma , L. Q. 2005 . Mycorrhizae increase arsenic uptake by the hyperaccumulator Chinese brake fern (Pteris vittata L.) . Journal of Environmental Quality , 34 : 2181 – 2186 .
  • Allen , S. E. 1989 . Chemical analysis of ecological materials , 2nd , Oxford : Blackwell Science Publishers .
  • Asher , C. J. and Reay , P. F. 1979 . Arsenic uptake by barley seedlings . Australian Journal of Plant Physiology , 6 : 459 – 466 .
  • Chen , B. D. , Zhu , Y. G. and Smith , F. A. 2006 . Effects of arbuscular mycorrhizal inoculation on uranium and arsenic accumulation by Chinese brake fern (Pteris vittata L.) from a uranium mining-impacted soil . Chemosphere , 62 : 1464 – 1473 .
  • Chen , B. D. , Xiao , X. Y. , Zhu , Y. G. , Smith , F. A. , Xie , Z. M. and Smith , S. E. 2007 . The arbuscular mycorrhizal fungus Glomus mosseae gives contradictory effects on phosphorus and arsenic acquisition by Medicago sativa Linn . Science of the Total Environment , 379 : 226 – 234 .
  • Cullen , W. R. and Reimer , K. J. 1989 . Arsenic speciation in the environment . Chemical Reviews , 89 : 713 – 764 .
  • de Andrade , S. A. L. , Jorge , R. A. and da Silveira , A. P. D. 2005 . Cadmium effect on the association of jackbean (Canavalia ensiformis) and arbuscular mycorrhizal fungi . Scientia Agricola , 62 : 389 – 394 .
  • Duan , G. L. , Zhu , Y. G. , Tong , Y. P. , Cai , C. and Kneer , R. 2005 . Characterization of arsenate reductase in the extract of roots and fronds of Chinese brake fern, an arsenic hyperaccumulator . Plant Physiology , 138 : 461 – 469 .
  • Fitz , W. J. and Wenzel , W. W. 2002 . Arsenic transformations in the soil–rhizosphere–plant system: Fundamentals and potential application to phytoremediation . Journal of Biotechnology , 99 : 259 – 278 .
  • Gonzalez-Chavez , C. , Harris , P. J. , Dodd , J. and Meharg , A. A. 2002 . Arbuscular mycorrhizal fungi confer enhanced arsenate resistance on Holcus lanatus . New Phytologist , 155 : 163 – 171 .
  • Graham , J. H. and Abbott , L. K. 2000 . Wheat responses to aggressive and non-aggressive arbuscular mycorrhizal fungi . Plant and Soil , 220 : 207 – 218 .
  • Jackson , B. P. and Miller , W. P. 2000 . Effectiveness of phosphate and hydroxide for desorption of arsenic and selenium species from iron oxides . Soil Science Society of America Journal , 64 : 1616 – 1622 .
  • Johnson , N. C. , Graham , J. H. and Smith , F. A. 1997 . Functioning of mycorrhizal associations along the mutualism–parasitism continuum . New Phytologist , 135 : 575 – 585 .
  • Leung , H. M. , Ye , Z. H. and Wong , M. H. 2006 . Interactions of mycorrhizal fungi with Pteris vittata (As hyperaccumulator) in As-contaminated soils . Environmental Pollution , 139 : 1 – 8 .
  • Liu , Y. , Zhu , Y. G. , Chen , B. D. , Christie , P. and Li , X. L. 2005 . Yield and arsenate uptake of arbuscular mycorrhizal tomato colonized by Glomus mosseae BEG167 in As spiked soil under glasshouse conditions . Environment International , 31 : 867 – 873 .
  • Marques , A. P. G. C. , Oliveira , R. S. , Rangel , A. O. S. S. and Castro , P. M. L. 2006 . Zinc accumulation in Solanum nigrum is enhanced by different arbuscular mycorrhizal fungi . Chemosphere , 65 : 1256 – 1263 .
  • Meharg , A. A. and Hartley-Whitaker , J. 2002 . Arsenic uptake and metabolism in arsenic resistant and nonresistant plant species . New Phytologist , 154 : 29 – 43 .
  • Meharg , A. A. and Macnair , M. R. 1992 . Suppression of the high affinity phosphate uptake system: A mechanism of arsenate tolerance in Holcus lanatus L . Journal of Experimental Botany , 43 : 519 – 524 .
  • Meharg , A. A. and Macnair , M. R. 1994 . Relationship between plant phosphorus status and the kinetics of arsenate influx in clones of Deschampsia cepitosa (L.) Beauv that differ in their tolerance to arsenate . Plant and Soil , 162 : 99 – 106 .
  • Peng , S. B. , Eissenstat , D. M. , Graham , J. H. , Williams , K. and Hodge , N. C. 1993 . Growth depression in mycorrhizal citrus at high-phosphorus supply: Analysis of carbon costs . Plant Physiology , 101 : 1063 – 1071 .
  • Phillips , J. M. and Hayman , D. S. 1970 . Improved procedures for clearing and staining parasitic and vesicular–arbuscular mycorrhizal fungi for rapid assessment of infection . Transactions of the British Mycological Society , 55 : 158 – 161 .
  • Sharples , J. M. , Meharg , A. A. , Chambers , S. M. and Cairney , J. W. G. 2000 . Evolution: Symbiotic solution to arsenic contamination . Nature , 404 : 951 – 952 .
  • Simard , S. W. and Durall , D. M. 2004 . Mycorrhizal networks: A review of their extent, function, and importance . Canadian Journal of Botany , 82 : 1140 – 1165 .
  • Smith , S. E. and Read , D. J. 1997 . Mycorrhizal symbiosis , 2nd , London : Academic Press .
  • Trotta , A. , Falaschi , P. , Cornara , L. , Minganti , V. , Fusconi , A. , Drava , G. and Berta , G. 2006 . Arbuscular mycorrhizae increase the arsenic translocation factor in the As hyperaccumulating fern Pteris vittata L . Chemosphere , 65 : 74 – 81 .
  • Ultra , V. U. , Tanaka , S. , Sakurai , K. and Iwasaki , K. 2007 . Effects of arbuscular mycorrhiza and phosphorus application on arsenic toxicity in sunflower (Helianthus annuus L.) and on the transformation of arsenic in the rhizosphere . Plant and Soil , 290 : 29 – 41 .
  • Wang , J. R. , Zhao , F. J. , Meharg , A. A. , Raab , A. , Feldmann , J. and McGrath , S. P. 2002 . Mechanisms of arsenic hyperaccumulation in Pteris vittata: Uptake kinetics, interactions with phosphate, and arsenic speciation . Plant Physiology , 130 : 1552 – 1561 .
  • Wang , F. Y. , Lin , X. G. and Yin , R. 2007 . Inoculation with arbuscular mycorrhizal fungus Acaulospora mellea decreases Cu phytoextraction by maize from Cu-contaminated soil . Pedobiologia , 51 : 99 – 109 .

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