212
Views
46
CrossRef citations to date
0
Altmetric
Original Articles

Chemical Mutagenesis—A Promising Technique to Increase Metal Concentration and Extraction in Sunflowers

, , , &
Pages 149-165 | Published online: 01 Jun 2007

REFERENCES

  • Assunçao , A. G.L. , Schat , H. and Aarts , M. G.M. 2003 . Thlaspi caerulescens, an attractive model plant species to study heavy metal hyperconcentration in plants . New Phytol. , 159 : 351 – 360 .
  • Camargo , C. E.O. , Ferreira Filho , A. W.P. and Tulmann Neto , A. 1995 . “ Genetic diversity in wheat and breeding for tolerance to acid soils ” . In Induced Mutations and Molecular Techniques for Crop Improvement , 321 – 323 . Vienna, Austria : IAEA .
  • Chandrappa , H.M. 1982 . “ Mutagenesis in sunflower (Helianthus annuus L). Thesis Abstract 8, 256–257 ” . In Die Züchtung der Sonnenblumen (Helianthus annuus L.) Advances in Plant Breeding 14, supplement to Journal of Plant Breeding , Edited by: Schuster , W.H. 155 Berlin and Hamburg, , Germany : Paul Parey Scientific .
  • Chaney , R. , Li , Y.M. , Angle , J. , Baker , A. , Reeves , R. , Brown , S. , Homer , F. , Malik , M. and Chin , M. 1999 . “ Improving metal-hyperaccumulator wild plants to develop commercial phytoextraction system: Approaches and progress ” . In Phytoremediation of Contaminated Soil and Water , Edited by: Terry , N. and Banuelos , G. Boca Raton, FL : Lewis .
  • Chardonnens , A.N. , Koevoets , P. L.M. , Van Zanten , A. , Schat , H. and Verkleij , J. A.C. 1999 . Properties of enhanced tonoplast zinc transport in naturally selected zinc tolerant Silene vulgaris . Plant Physiol. , 120 : 779 – 785 .
  • Christov , M. 1996 . A new sunflower mutant form . Helia , 19 : 39 – 56 .
  • Clemens , S. , Kim , E.J. , Neumann , D. and Schroeder , J.I. 1999 . Tolerance to toxic metals by a gene family of phytochelatin synthases from plants and yeast . EMBO Journal , 18 : 3325 – 3333 .
  • Delhaize , E. 1996 . A metal-accumulator mutant of Arabidopsis thaliana . Plant Physiol. , 111 : 849 – 855 .
  • Eapen , S. and D’Souza , S.F. 2005 . Prospects of genetic engineering of plants for phytoremediation of toxic metals . Biotechnol. Adv. , 23 : 97 – 114 .
  • Forster , B.P. , Packnyat , H. , Simpson , C.G. and Handley , L.L. 1995 . “ Genetic control of salt tolerance in barley ” . In Induced Mutations and Molecular Techniques for Crop Improvement , 343 – 347 . Vienna, Austria : IAEA .
  • Grichko , V.P. , Filby , B. and Glick , B.R. 2000 . Increased ability of transgenic plants in the bioremediation of soils contaminated with trace elements . Appl. Microbiol. Biotechnol. , 55 : 661 – 672 .
  • Guadagnini , M. , Herzig , R. , Erismann , K.H. and Müller-Schärer , H. 1998 . Im Labor gezüchtete Pflanzen für die Bodensanierung . BioWorld , 3 : 3 – 6 .
  • Guadagnini , M. , Herzig , R. , Erismann , K.H. and Müller-Schärer , H. 1999 . In vitro Züchtung, Selektion und Erprobung von metal-akkumulierenden Tabakvarianten zur Bodensanierung . TerraTech , 6 : 52 – 54 .
  • Hall , J.L. 2002 . Cellular mechanisms for heavy metal detoxification and tolerance . J. Exp. Bot , 53 : 1 – 11 .
  • Herzig , R. , Guadagnini , M. , Erismann , K.H. and Müller-Schärer , H. 1997 . Chancen der Phytoextraktion. Sanfte Bodendekontamination von Schwermetallen mit Hilfe biotechnisch verbesserter Akkumulatorpflanzen . TerraTech , 2 : 49 – 52 .
  • Herzig , R. , Nehnevajova , E. , Ruttens , A. and Vangronsveld , J. 2005 . “ Evaluation of phytoremediation ” . In Final Report of PHYTAC Project: Development of Systems to Improve Phytoremediation of Metal Contaminated Soils through Improved Phytoconcentration 161 – 190 . (Project QLRT-2001–00429 for collaborative RTD, 5th Framework Programme, 1.1.2002–30.6.2005), 249 p.
  • Howden , R. , Goldsbrough , P.B. , Andersen , C.R. and Cobbett , C.S. 1995 . Cadmium-sensitive, cad1 mutants of Arabidopsis thaliana are phytochelatin deficient . Plant Physiol. , 107 : 1059 – 1066 .
  • Kamnev , A.A. and Van Der Lelie , D. 2000 . Chemical and biological parameters as tools to evaluate and improve heavy metal phytoremediation . Biosci. Rep. , 20 : 239 – 258 .
  • Kayser , A. , Wenger , K. , Keller , A. , Attiger , W. , Felix , H.R. , Gupta , S.K. and Schulin , R. 2000 . Enhancement of phytoextraction of Zn, Cd, and Cu from calcareous soil: The use of NTA and sulfur amendments . Environ. Sci. Technol. , 34 : 1778 – 1783 .
  • Kärenlampi , S. , Schat , H. , Vangronsveld , J. , Verkleij , J. A.C. , Van Der Lelie , C. , Mergeay , M. and Tervahauta , A.I. 2000 . Genetic engineering in the improvement of plants for phytoremediation of metal polluted soils . Environ. Pollut. , 107 : 225 – 231 .
  • Keller , C. , Hammer , D. , Kayser , A. , Richner , W. , Brodbeck , M. and Sennhauser , M. 2003 . Root development and heavy metal phytoextraction efficiency: Comparison of different plant species in the field . Plant and Soil , 249 : 67 – 81 .
  • Krämer , U. and Chardonnens , A.N. 2001 . The use of transgenic plants in the bioremediation of soils contaminated with trace elements . Appl. Microbiol. Biotechnol. , 55 : 661 – 672 .
  • Krämer , U. , Cotter-Howells , J.D. , Charnock , J.M. , Baker , A. J.M. and Smith , J. A.C. 1996 . Free histidine as a metal chelator in plants that accumulate nickel . Nature , 379 : 635 – 639 .
  • Krebs-Hartmann , R. 1996 . In situ immobilization of heavy metals in polluted agricultural soil—an approach to gentle soil remediation . Thesis 11838, ETH Zurich, Switzerland
  • Kübler , I. 1984 . Veränderungen verschiedener Inhaltsstoffe in einzelnen Sonnenblumen—früchten nach mutagener Behandlung in M2 und M3 . Fette-Seifen-Anstrichmittel , 2 : 62 – 70 .
  • Ma , J.F. , Tamai , K. , Ichii , M. and Wu , G.F. 2002 . A rice mutant defective in Si uptake . Plant Physiol. , 130 : 2111 – 2117 .
  • Maluszynski , M. , Ahloowalia , B.S. and Sigubjörnsson , B. 1995 . Application of in vivo and in vitro mutation techniques for crop improvement . Euphytica , 85 : 303 – 315 .
  • Maluszynski , M. , van Zanten , L. , Ashri , A. , Brunner , H , Alhoowalia , B.S. , Zapata , F.J. and Weck , E. 1995 . “ Mutation techniques in plant breeding ” . In Induced Mutations and Molecular Techniques for Crop Improvement , 489 – 505 . Vienna, Austria : IAEA .
  • McGrath , S.P. and Zhao , F.J. 2003 . Phytoextraction of metals and metalloids from contaminated soil . Curr. Opin. Biotechnol. , 14 : 277 – 282 .
  • Mench , M. , Morel , J.L. and Guckert , A. 1987 . Metal binding properties of high molecular weight soluble exudates from maize (Zea mays L.) roots . Biol. Fertil. Soil , 3 : 165 – 169 .
  • Navarro , S. , Dziewatkoski , M. and Enyedi , A. 1999 . Isolation of cadmium excluding mutants of Arabidopsis thaliana using a vertical mesh transfer system and ICP-MS . J. Environ. Sci. Health , 34 : 1797 – 1813 .
  • Nawrot , M. , Szarejko , I. and Maluszynski , M. 2001 . Barley mutants with increased tolerance to aluminium toxicity . Euphytica , 120 : 345 – 356 .
  • Nehnevajova , E. 2006 . Non-GMO approach for the improvement of heavy metal accumulation and extraction of high yielding crop species for efficient phytoextraction of contaminated soil . Thesis 3414, EPFL, Lausanne, Switzerland, 146 p.
  • Nehnevajova , E. , Herzig , R. , Federer , G. , Erismann , K.H. and Schwitzguébel , J.P. 2005 . Screening of sunflower cultivars for metal phytoextraction in a contaminated field prior to mutagenesis . Int.J. Phytorem , 7 : 337 – 349 .
  • Osorio , J. , Fernández-Martínez , J. , Mancha , M. and Garcés , R. 1995 . Mutant sunflowers with high concentration of saturated fatty acids in the oil . Crop Sci. , 35 : 739 – 742 .
  • Pich , A. , Scholz , G. and Stephan , U.W. 1994 . Iron-dependent changes of heavy metals, nicotianamine, and citrate in different plant organs and in the xylem exudates of two tomato genotypes. Nicotianamine as possible cooper translocator . Plant Soil , 171 : 333 – 339 .
  • Quaghebeur , M. and Rengel , Z. 2004 . Arsenic uptake, translocation and speciation in pho1 and pho2 mutants of Arabidopsis thaliana . Physiol. Plant. , 120 : 280 – 286 .
  • Rauser , W.E. 1999 . Structure and function of metal chelators produced by plants: The case for organic acids, amino acids, phytin and metallothioneins . Cell Biochem. Biophys. , 31 : 19 – 48 .
  • Reddy , S.K. , Rao , A. M.M. and Farook , S.A. 1993 . Mutagenic effectiveness and efficiency of SA, dES and gamma rays on Helianthus annuus L . Asian J. Plant Sci , 5 : 51 – 55 .
  • Rugh , C.L. 2001 . Mercury detoxification with transgenic plants and other biotechnological breakthroughs for phytoremediation . In Vitro Cell. Dev. Biol. Plant , 37 : 321 – 325 .
  • Salt , D.E. , Blaylock , M. , Nanda , K. , Dushenkov , V. , Ensley , D.B. , Chet , I. and Raskin , I. 1995 . Phytoremediation: A novel strategy for the removal of toxic metals from the environment using plants . Biotechnology , 13 : 468 – 474 .
  • Schwitzguébel , J.P. , Van Der Lelie , D. , Baker , A. , Glass , D.J. and Vangronsveld , J. 2002 . Phytoremediation: European and American trends, success, obstacles and needs . J. Soils Sediments , 2 : 91 – 99 .
  • Schwitzguébel , J.P. , Nehnevajova , E. , Federer , G. and Herzig , R. 2005 . “ Metal concentration and metabolism in higher plants: Potential for phytoremediation ” . In Soil and Sediments Remediation, Mechanisms, Technologies and Applications, Ch. 15 , Edited by: Lens , P. , Grotenhuis , T. , Malina , G. and Tabak , H. 289 – 307 . London and Seattle : IWA .
  • Senden , M. H.M.N. , Van Der Meer , A. J.G.M. , Verburg , T.G. and Wolterbeek , H.T. 1995 . Citric acid in tomato plant roots and its effect on cadmium uptake and distribution . Plant Soil , 171 : 333 – 339 .
  • Vassilev , A. , Schwitzguébel , J.P. , Thewys , T. , van der Lelie and Vangronsveld , J. 2004 . The use of plants for remediation of metal-contaminated soils . Sci. World J. , 4 : 9 – 34 .
  • Verkleij , J. A.C. , Koevoets , P. L.M. , Mechteld , M.A. , Blake-Kalff , M. M.A. and Chardonnens , A.N. 1998 . Evidence for an important role of tonoplast in the mechanism of naturally selected zinc tolerance in Silene vulgaris . J. Plant Physiol. , 153 : 188 – 191 .
  • Wenger , K. 2000 . Ligand-assisted phytoextraction of heavy metals from contaminated soil using common crop plants . Thesis 13900, ETH Zurich, Switzerland.
  • Zhu , M.Y. , Jianwei , P. , Wang , L. , Gu , Q. and Huang , C. 2003 . Mutation induced enhancement of Al tolerance in barley cell lines . Plant Sci. , 164 : 17 – 23 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.